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.cargo-home/registry/src/index.crates.io-1949cf8c6b5b557f/ring-0.17.14/pregenerated/sha256-armv8-linux64.S
// This file is generated from a similarly-named Perl script in the BoringSSL // source tree. Do not edit by hand. #include <ring-core/asm_base.h> #if !defined(OPENSSL_NO_ASM) && defined(OPENSSL_AARCH64) && defined(__ELF__) // Copyright 2014-2020 The OpenSSL Project Authors. All Rights Reserved. // // Licensed under the Apache License, Version 2.0 (the "License"); // you may not use this file except in compliance with the License. // You may obtain a copy of the License at // // https://www.apache.org/licenses/LICENSE-2.0 // // Unless required by applicable law or agreed to in writing, software // distributed under the License is distributed on an "AS IS" BASIS, // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. // See the License for the specific language governing permissions and // limitations under the License. // ==================================================================== // Written by Andy Polyakov <appro@openssl.org> for the OpenSSL // project. // ==================================================================== // // SHA256/512 for ARMv8. // // Performance in cycles per processed byte and improvement coefficient // over code generated with "default" compiler: // // SHA256-hw SHA256(*) SHA512 // Apple A7 1.97 10.5 (+33%) 6.73 (-1%(**)) // Cortex-A53 2.38 15.5 (+115%) 10.0 (+150%(***)) // Cortex-A57 2.31 11.6 (+86%) 7.51 (+260%(***)) // Denver 2.01 10.5 (+26%) 6.70 (+8%) // X-Gene 20.0 (+100%) 12.8 (+300%(***)) // Mongoose 2.36 13.0 (+50%) 8.36 (+33%) // Kryo 1.92 17.4 (+30%) 11.2 (+8%) // // (*) Software SHA256 results are of lesser relevance, presented // mostly for informational purposes. // (**) The result is a trade-off: it's possible to improve it by // 10% (or by 1 cycle per round), but at the cost of 20% loss // on Cortex-A53 (or by 4 cycles per round). // (***) Super-impressive coefficients over gcc-generated code are // indication of some compiler "pathology", most notably code // generated with -mgeneral-regs-only is significantly faster // and the gap is only 40-90%. #ifndef __KERNEL__ #endif .text .globl sha256_block_data_order_nohw .hidden sha256_block_data_order_nohw .type sha256_block_data_order_nohw,%function .align 6 sha256_block_data_order_nohw: AARCH64_SIGN_LINK_REGISTER stp x29,x30,[sp,#-128]! add x29,sp,#0 stp x19,x20,[sp,#16] stp x21,x22,[sp,#32] stp x23,x24,[sp,#48] stp x25,x26,[sp,#64] stp x27,x28,[sp,#80] sub sp,sp,#4*4 ldp w20,w21,[x0] // load context ldp w22,w23,[x0,#2*4] ldp w24,w25,[x0,#4*4] add x2,x1,x2,lsl#6 // end of input ldp w26,w27,[x0,#6*4] adrp x30,.LK256 add x30,x30,:lo12:.LK256 stp x0,x2,[x29,#96] .Loop: ldp w3,w4,[x1],#2*4 ldr w19,[x30],#4 // *K++ eor w28,w21,w22 // magic seed str x1,[x29,#112] #ifndef __AARCH64EB__ rev w3,w3 // 0 #endif ror w16,w24,#6 add w27,w27,w19 // h+=K[i] eor w6,w24,w24,ror#14 and w17,w25,w24 bic w19,w26,w24 add w27,w27,w3 // h+=X[i] orr w17,w17,w19 // Ch(e,f,g) eor w19,w20,w21 // a^b, b^c in next round eor w16,w16,w6,ror#11 // Sigma1(e) ror w6,w20,#2 add w27,w27,w17 // h+=Ch(e,f,g) eor w17,w20,w20,ror#9 add w27,w27,w16 // h+=Sigma1(e) and w28,w28,w19 // (b^c)&=(a^b) add w23,w23,w27 // d+=h eor w28,w28,w21 // Maj(a,b,c) eor w17,w6,w17,ror#13 // Sigma0(a) add w27,w27,w28 // h+=Maj(a,b,c) ldr w28,[x30],#4 // *K++, w19 in next round //add w27,w27,w17 // h+=Sigma0(a) #ifndef __AARCH64EB__ rev w4,w4 // 1 #endif ldp w5,w6,[x1],#2*4 add w27,w27,w17 // h+=Sigma0(a) ror w16,w23,#6 add w26,w26,w28 // h+=K[i] eor w7,w23,w23,ror#14 and w17,w24,w23 bic w28,w25,w23 add w26,w26,w4 // h+=X[i] orr w17,w17,w28 // Ch(e,f,g) eor w28,w27,w20 // a^b, b^c in next round eor w16,w16,w7,ror#11 // Sigma1(e) ror w7,w27,#2 add w26,w26,w17 // h+=Ch(e,f,g) eor w17,w27,w27,ror#9 add w26,w26,w16 // h+=Sigma1(e) and w19,w19,w28 // (b^c)&=(a^b) add w22,w22,w26 // d+=h eor w19,w19,w20 // Maj(a,b,c) eor w17,w7,w17,ror#13 // Sigma0(a) add w26,w26,w19 // h+=Maj(a,b,c) ldr w19,[x30],#4 // *K++, w28 in next round //add w26,w26,w17 // h+=Sigma0(a) #ifndef __AARCH64EB__ rev w5,w5 // 2 #endif add w26,w26,w17 // h+=Sigma0(a) ror w16,w22,#6 add w25,w25,w19 // h+=K[i] eor w8,w22,w22,ror#14 and w17,w23,w22 bic w19,w24,w22 add w25,w25,w5 // h+=X[i] orr w17,w17,w19 // Ch(e,f,g) eor w19,w26,w27 // a^b, b^c in next round eor w16,w16,w8,ror#11 // Sigma1(e) ror w8,w26,#2 add w25,w25,w17 // h+=Ch(e,f,g) eor w17,w26,w26,ror#9 add w25,w25,w16 // h+=Sigma1(e) and w28,w28,w19 // (b^c)&=(a^b) add w21,w21,w25 // d+=h eor w28,w28,w27 // Maj(a,b,c) eor w17,w8,w17,ror#13 // Sigma0(a) add w25,w25,w28 // h+=Maj(a,b,c) ldr w28,[x30],#4 // *K++, w19 in next round //add w25,w25,w17 // h+=Sigma0(a) #ifndef __AARCH64EB__ rev w6,w6 // 3 #endif ldp w7,w8,[x1],#2*4 add w25,w25,w17 // h+=Sigma0(a) ror w16,w21,#6 add w24,w24,w28 // h+=K[i] eor w9,w21,w21,ror#14 and w17,w22,w21 bic w28,w23,w21 add w24,w24,w6 // h+=X[i] orr w17,w17,w28 // Ch(e,f,g) eor w28,w25,w26 // a^b, b^c in next round eor w16,w16,w9,ror#11 // Sigma1(e) ror w9,w25,#2 add w24,w24,w17 // h+=Ch(e,f,g) eor w17,w25,w25,ror#9 add w24,w24,w16 // h+=Sigma1(e) and w19,w19,w28 // (b^c)&=(a^b) add w20,w20,w24 // d+=h eor w19,w19,w26 // Maj(a,b,c) eor w17,w9,w17,ror#13 // Sigma0(a) add w24,w24,w19 // h+=Maj(a,b,c) ldr w19,[x30],#4 // *K++, w28 in next round //add w24,w24,w17 // h+=Sigma0(a) #ifndef __AARCH64EB__ rev w7,w7 // 4 #endif add w24,w24,w17 // h+=Sigma0(a) ror w16,w20,#6 add w23,w23,w19 // h+=K[i] eor w10,w20,w20,ror#14 and w17,w21,w20 bic w19,w22,w20 add w23,w23,w7 // h+=X[i] orr w17,w17,w19 // Ch(e,f,g) eor w19,w24,w25 // a^b, b^c in next round eor w16,w16,w10,ror#11 // Sigma1(e) ror w10,w24,#2 add w23,w23,w17 // h+=Ch(e,f,g) eor w17,w24,w24,ror#9 add w23,w23,w16 // h+=Sigma1(e) and w28,w28,w19 // (b^c)&=(a^b) add w27,w27,w23 // d+=h eor w28,w28,w25 // Maj(a,b,c) eor w17,w10,w17,ror#13 // Sigma0(a) add w23,w23,w28 // h+=Maj(a,b,c) ldr w28,[x30],#4 // *K++, w19 in next round //add w23,w23,w17 // h+=Sigma0(a) #ifndef __AARCH64EB__ rev w8,w8 // 5 #endif ldp w9,w10,[x1],#2*4 add w23,w23,w17 // h+=Sigma0(a) ror w16,w27,#6 add w22,w22,w28 // h+=K[i] eor w11,w27,w27,ror#14 and w17,w20,w27 bic w28,w21,w27 add w22,w22,w8 // h+=X[i] orr w17,w17,w28 // Ch(e,f,g) eor w28,w23,w24 // a^b, b^c in next round eor w16,w16,w11,ror#11 // Sigma1(e) ror w11,w23,#2 add w22,w22,w17 // h+=Ch(e,f,g) eor w17,w23,w23,ror#9 add w22,w22,w16 // h+=Sigma1(e) and w19,w19,w28 // (b^c)&=(a^b) add w26,w26,w22 // d+=h eor w19,w19,w24 // Maj(a,b,c) eor w17,w11,w17,ror#13 // Sigma0(a) add w22,w22,w19 // h+=Maj(a,b,c) ldr w19,[x30],#4 // *K++, w28 in next round //add w22,w22,w17 // h+=Sigma0(a) #ifndef __AARCH64EB__ rev w9,w9 // 6 #endif add w22,w22,w17 // h+=Sigma0(a) ror w16,w26,#6 add w21,w21,w19 // h+=K[i] eor w12,w26,w26,ror#14 and w17,w27,w26 bic w19,w20,w26 add w21,w21,w9 // h+=X[i] orr w17,w17,w19 // Ch(e,f,g) eor w19,w22,w23 // a^b, b^c in next round eor w16,w16,w12,ror#11 // Sigma1(e) ror w12,w22,#2 add w21,w21,w17 // h+=Ch(e,f,g) eor w17,w22,w22,ror#9 add w21,w21,w16 // h+=Sigma1(e) and w28,w28,w19 // (b^c)&=(a^b) add w25,w25,w21 // d+=h eor w28,w28,w23 // Maj(a,b,c) eor w17,w12,w17,ror#13 // Sigma0(a) add w21,w21,w28 // h+=Maj(a,b,c) ldr w28,[x30],#4 // *K++, w19 in next round //add w21,w21,w17 // h+=Sigma0(a) #ifndef __AARCH64EB__ rev w10,w10 // 7 #endif ldp w11,w12,[x1],#2*4 add w21,w21,w17 // h+=Sigma0(a) ror w16,w25,#6 add w20,w20,w28 // h+=K[i] eor w13,w25,w25,ror#14 and w17,w26,w25 bic w28,w27,w25 add w20,w20,w10 // h+=X[i] orr w17,w17,w28 // Ch(e,f,g) eor w28,w21,w22 // a^b, b^c in next round eor w16,w16,w13,ror#11 // Sigma1(e) ror w13,w21,#2 add w20,w20,w17 // h+=Ch(e,f,g) eor w17,w21,w21,ror#9 add w20,w20,w16 // h+=Sigma1(e) and w19,w19,w28 // (b^c)&=(a^b) add w24,w24,w20 // d+=h eor w19,w19,w22 // Maj(a,b,c) eor w17,w13,w17,ror#13 // Sigma0(a) add w20,w20,w19 // h+=Maj(a,b,c) ldr w19,[x30],#4 // *K++, w28 in next round //add w20,w20,w17 // h+=Sigma0(a) #ifndef __AARCH64EB__ rev w11,w11 // 8 #endif add w20,w20,w17 // h+=Sigma0(a) ror w16,w24,#6 add w27,w27,w19 // h+=K[i] eor w14,w24,w24,ror#14 and w17,w25,w24 bic w19,w26,w24 add w27,w27,w11 // h+=X[i] orr w17,w17,w19 // Ch(e,f,g) eor w19,w20,w21 // a^b, b^c in next round eor w16,w16,w14,ror#11 // Sigma1(e) ror w14,w20,#2 add w27,w27,w17 // h+=Ch(e,f,g) eor w17,w20,w20,ror#9 add w27,w27,w16 // h+=Sigma1(e) and w28,w28,w19 // (b^c)&=(a^b) add w23,w23,w27 // d+=h eor w28,w28,w21 // Maj(a,b,c) eor w17,w14,w17,ror#13 // Sigma0(a) add w27,w27,w28 // h+=Maj(a,b,c) ldr w28,[x30],#4 // *K++, w19 in next round //add w27,w27,w17 // h+=Sigma0(a) #ifndef __AARCH64EB__ rev w12,w12 // 9 #endif ldp w13,w14,[x1],#2*4 add w27,w27,w17 // h+=Sigma0(a) ror w16,w23,#6 add w26,w26,w28 // h+=K[i] eor w15,w23,w23,ror#14 and w17,w24,w23 bic w28,w25,w23 add w26,w26,w12 // h+=X[i] orr w17,w17,w28 // Ch(e,f,g) eor w28,w27,w20 // a^b, b^c in next round eor w16,w16,w15,ror#11 // Sigma1(e) ror w15,w27,#2 add w26,w26,w17 // h+=Ch(e,f,g) eor w17,w27,w27,ror#9 add w26,w26,w16 // h+=Sigma1(e) and w19,w19,w28 // (b^c)&=(a^b) add w22,w22,w26 // d+=h eor w19,w19,w20 // Maj(a,b,c) eor w17,w15,w17,ror#13 // Sigma0(a) add w26,w26,w19 // h+=Maj(a,b,c) ldr w19,[x30],#4 // *K++, w28 in next round //add w26,w26,w17 // h+=Sigma0(a) #ifndef __AARCH64EB__ rev w13,w13 // 10 #endif add w26,w26,w17 // h+=Sigma0(a) ror w16,w22,#6 add w25,w25,w19 // h+=K[i] eor w0,w22,w22,ror#14 and w17,w23,w22 bic w19,w24,w22 add w25,w25,w13 // h+=X[i] orr w17,w17,w19 // Ch(e,f,g) eor w19,w26,w27 // a^b, b^c in next round eor w16,w16,w0,ror#11 // Sigma1(e) ror w0,w26,#2 add w25,w25,w17 // h+=Ch(e,f,g) eor w17,w26,w26,ror#9 add w25,w25,w16 // h+=Sigma1(e) and w28,w28,w19 // (b^c)&=(a^b) add w21,w21,w25 // d+=h eor w28,w28,w27 // Maj(a,b,c) eor w17,w0,w17,ror#13 // Sigma0(a) add w25,w25,w28 // h+=Maj(a,b,c) ldr w28,[x30],#4 // *K++, w19 in next round //add w25,w25,w17 // h+=Sigma0(a) #ifndef __AARCH64EB__ rev w14,w14 // 11 #endif ldp w15,w0,[x1],#2*4 add w25,w25,w17 // h+=Sigma0(a) str w6,[sp,#12] ror w16,w21,#6 add w24,w24,w28 // h+=K[i] eor w6,w21,w21,ror#14 and w17,w22,w21 bic w28,w23,w21 add w24,w24,w14 // h+=X[i] orr w17,w17,w28 // Ch(e,f,g) eor w28,w25,w26 // a^b, b^c in next round eor w16,w16,w6,ror#11 // Sigma1(e) ror w6,w25,#2 add w24,w24,w17 // h+=Ch(e,f,g) eor w17,w25,w25,ror#9 add w24,w24,w16 // h+=Sigma1(e) and w19,w19,w28 // (b^c)&=(a^b) add w20,w20,w24 // d+=h eor w19,w19,w26 // Maj(a,b,c) eor w17,w6,w17,ror#13 // Sigma0(a) add w24,w24,w19 // h+=Maj(a,b,c) ldr w19,[x30],#4 // *K++, w28 in next round //add w24,w24,w17 // h+=Sigma0(a) #ifndef __AARCH64EB__ rev w15,w15 // 12 #endif add w24,w24,w17 // h+=Sigma0(a) str w7,[sp,#0] ror w16,w20,#6 add w23,w23,w19 // h+=K[i] eor w7,w20,w20,ror#14 and w17,w21,w20 bic w19,w22,w20 add w23,w23,w15 // h+=X[i] orr w17,w17,w19 // Ch(e,f,g) eor w19,w24,w25 // a^b, b^c in next round eor w16,w16,w7,ror#11 // Sigma1(e) ror w7,w24,#2 add w23,w23,w17 // h+=Ch(e,f,g) eor w17,w24,w24,ror#9 add w23,w23,w16 // h+=Sigma1(e) and w28,w28,w19 // (b^c)&=(a^b) add w27,w27,w23 // d+=h eor w28,w28,w25 // Maj(a,b,c) eor w17,w7,w17,ror#13 // Sigma0(a) add w23,w23,w28 // h+=Maj(a,b,c) ldr w28,[x30],#4 // *K++, w19 in next round //add w23,w23,w17 // h+=Sigma0(a) #ifndef __AARCH64EB__ rev w0,w0 // 13 #endif ldp w1,w2,[x1] add w23,w23,w17 // h+=Sigma0(a) str w8,[sp,#4] ror w16,w27,#6 add w22,w22,w28 // h+=K[i] eor w8,w27,w27,ror#14 and w17,w20,w27 bic w28,w21,w27 add w22,w22,w0 // h+=X[i] orr w17,w17,w28 // Ch(e,f,g) eor w28,w23,w24 // a^b, b^c in next round eor w16,w16,w8,ror#11 // Sigma1(e) ror w8,w23,#2 add w22,w22,w17 // h+=Ch(e,f,g) eor w17,w23,w23,ror#9 add w22,w22,w16 // h+=Sigma1(e) and w19,w19,w28 // (b^c)&=(a^b) add w26,w26,w22 // d+=h eor w19,w19,w24 // Maj(a,b,c) eor w17,w8,w17,ror#13 // Sigma0(a) add w22,w22,w19 // h+=Maj(a,b,c) ldr w19,[x30],#4 // *K++, w28 in next round //add w22,w22,w17 // h+=Sigma0(a) #ifndef __AARCH64EB__ rev w1,w1 // 14 #endif ldr w6,[sp,#12] add w22,w22,w17 // h+=Sigma0(a) str w9,[sp,#8] ror w16,w26,#6 add w21,w21,w19 // h+=K[i] eor w9,w26,w26,ror#14 and w17,w27,w26 bic w19,w20,w26 add w21,w21,w1 // h+=X[i] orr w17,w17,w19 // Ch(e,f,g) eor w19,w22,w23 // a^b, b^c in next round eor w16,w16,w9,ror#11 // Sigma1(e) ror w9,w22,#2 add w21,w21,w17 // h+=Ch(e,f,g) eor w17,w22,w22,ror#9 add w21,w21,w16 // h+=Sigma1(e) and w28,w28,w19 // (b^c)&=(a^b) add w25,w25,w21 // d+=h eor w28,w28,w23 // Maj(a,b,c) eor w17,w9,w17,ror#13 // Sigma0(a) add w21,w21,w28 // h+=Maj(a,b,c) ldr w28,[x30],#4 // *K++, w19 in next round //add w21,w21,w17 // h+=Sigma0(a) #ifndef __AARCH64EB__ rev w2,w2 // 15 #endif ldr w7,[sp,#0] add w21,w21,w17 // h+=Sigma0(a) str w10,[sp,#12] ror w16,w25,#6 add w20,w20,w28 // h+=K[i] ror w9,w4,#7 and w17,w26,w25 ror w8,w1,#17 bic w28,w27,w25 ror w10,w21,#2 add w20,w20,w2 // h+=X[i] eor w16,w16,w25,ror#11 eor w9,w9,w4,ror#18 orr w17,w17,w28 // Ch(e,f,g) eor w28,w21,w22 // a^b, b^c in next round eor w16,w16,w25,ror#25 // Sigma1(e) eor w10,w10,w21,ror#13 add w20,w20,w17 // h+=Ch(e,f,g) and w19,w19,w28 // (b^c)&=(a^b) eor w8,w8,w1,ror#19 eor w9,w9,w4,lsr#3 // sigma0(X[i+1]) add w20,w20,w16 // h+=Sigma1(e) eor w19,w19,w22 // Maj(a,b,c) eor w17,w10,w21,ror#22 // Sigma0(a) eor w8,w8,w1,lsr#10 // sigma1(X[i+14]) add w3,w3,w12 add w24,w24,w20 // d+=h add w20,w20,w19 // h+=Maj(a,b,c) ldr w19,[x30],#4 // *K++, w28 in next round add w3,w3,w9 add w20,w20,w17 // h+=Sigma0(a) add w3,w3,w8 .Loop_16_xx: ldr w8,[sp,#4] str w11,[sp,#0] ror w16,w24,#6 add w27,w27,w19 // h+=K[i] ror w10,w5,#7 and w17,w25,w24 ror w9,w2,#17 bic w19,w26,w24 ror w11,w20,#2 add w27,w27,w3 // h+=X[i] eor w16,w16,w24,ror#11 eor w10,w10,w5,ror#18 orr w17,w17,w19 // Ch(e,f,g) eor w19,w20,w21 // a^b, b^c in next round eor w16,w16,w24,ror#25 // Sigma1(e) eor w11,w11,w20,ror#13 add w27,w27,w17 // h+=Ch(e,f,g) and w28,w28,w19 // (b^c)&=(a^b) eor w9,w9,w2,ror#19 eor w10,w10,w5,lsr#3 // sigma0(X[i+1]) add w27,w27,w16 // h+=Sigma1(e) eor w28,w28,w21 // Maj(a,b,c) eor w17,w11,w20,ror#22 // Sigma0(a) eor w9,w9,w2,lsr#10 // sigma1(X[i+14]) add w4,w4,w13 add w23,w23,w27 // d+=h add w27,w27,w28 // h+=Maj(a,b,c) ldr w28,[x30],#4 // *K++, w19 in next round add w4,w4,w10 add w27,w27,w17 // h+=Sigma0(a) add w4,w4,w9 ldr w9,[sp,#8] str w12,[sp,#4] ror w16,w23,#6 add w26,w26,w28 // h+=K[i] ror w11,w6,#7 and w17,w24,w23 ror w10,w3,#17 bic w28,w25,w23 ror w12,w27,#2 add w26,w26,w4 // h+=X[i] eor w16,w16,w23,ror#11 eor w11,w11,w6,ror#18 orr w17,w17,w28 // Ch(e,f,g) eor w28,w27,w20 // a^b, b^c in next round eor w16,w16,w23,ror#25 // Sigma1(e) eor w12,w12,w27,ror#13 add w26,w26,w17 // h+=Ch(e,f,g) and w19,w19,w28 // (b^c)&=(a^b) eor w10,w10,w3,ror#19 eor w11,w11,w6,lsr#3 // sigma0(X[i+1]) add w26,w26,w16 // h+=Sigma1(e) eor w19,w19,w20 // Maj(a,b,c) eor w17,w12,w27,ror#22 // Sigma0(a) eor w10,w10,w3,lsr#10 // sigma1(X[i+14]) add w5,w5,w14 add w22,w22,w26 // d+=h add w26,w26,w19 // h+=Maj(a,b,c) ldr w19,[x30],#4 // *K++, w28 in next round add w5,w5,w11 add w26,w26,w17 // h+=Sigma0(a) add w5,w5,w10 ldr w10,[sp,#12] str w13,[sp,#8] ror w16,w22,#6 add w25,w25,w19 // h+=K[i] ror w12,w7,#7 and w17,w23,w22 ror w11,w4,#17 bic w19,w24,w22 ror w13,w26,#2 add w25,w25,w5 // h+=X[i] eor w16,w16,w22,ror#11 eor w12,w12,w7,ror#18 orr w17,w17,w19 // Ch(e,f,g) eor w19,w26,w27 // a^b, b^c in next round eor w16,w16,w22,ror#25 // Sigma1(e) eor w13,w13,w26,ror#13 add w25,w25,w17 // h+=Ch(e,f,g) and w28,w28,w19 // (b^c)&=(a^b) eor w11,w11,w4,ror#19 eor w12,w12,w7,lsr#3 // sigma0(X[i+1]) add w25,w25,w16 // h+=Sigma1(e) eor w28,w28,w27 // Maj(a,b,c) eor w17,w13,w26,ror#22 // Sigma0(a) eor w11,w11,w4,lsr#10 // sigma1(X[i+14]) add w6,w6,w15 add w21,w21,w25 // d+=h add w25,w25,w28 // h+=Maj(a,b,c) ldr w28,[x30],#4 // *K++, w19 in next round add w6,w6,w12 add w25,w25,w17 // h+=Sigma0(a) add w6,w6,w11 ldr w11,[sp,#0] str w14,[sp,#12] ror w16,w21,#6 add w24,w24,w28 // h+=K[i] ror w13,w8,#7 and w17,w22,w21 ror w12,w5,#17 bic w28,w23,w21 ror w14,w25,#2 add w24,w24,w6 // h+=X[i] eor w16,w16,w21,ror#11 eor w13,w13,w8,ror#18 orr w17,w17,w28 // Ch(e,f,g) eor w28,w25,w26 // a^b, b^c in next round eor w16,w16,w21,ror#25 // Sigma1(e) eor w14,w14,w25,ror#13 add w24,w24,w17 // h+=Ch(e,f,g) and w19,w19,w28 // (b^c)&=(a^b) eor w12,w12,w5,ror#19 eor w13,w13,w8,lsr#3 // sigma0(X[i+1]) add w24,w24,w16 // h+=Sigma1(e) eor w19,w19,w26 // Maj(a,b,c) eor w17,w14,w25,ror#22 // Sigma0(a) eor w12,w12,w5,lsr#10 // sigma1(X[i+14]) add w7,w7,w0 add w20,w20,w24 // d+=h add w24,w24,w19 // h+=Maj(a,b,c) ldr w19,[x30],#4 // *K++, w28 in next round add w7,w7,w13 add w24,w24,w17 // h+=Sigma0(a) add w7,w7,w12 ldr w12,[sp,#4] str w15,[sp,#0] ror w16,w20,#6 add w23,w23,w19 // h+=K[i] ror w14,w9,#7 and w17,w21,w20 ror w13,w6,#17 bic w19,w22,w20 ror w15,w24,#2 add w23,w23,w7 // h+=X[i] eor w16,w16,w20,ror#11 eor w14,w14,w9,ror#18 orr w17,w17,w19 // Ch(e,f,g) eor w19,w24,w25 // a^b, b^c in next round eor w16,w16,w20,ror#25 // Sigma1(e) eor w15,w15,w24,ror#13 add w23,w23,w17 // h+=Ch(e,f,g) and w28,w28,w19 // (b^c)&=(a^b) eor w13,w13,w6,ror#19 eor w14,w14,w9,lsr#3 // sigma0(X[i+1]) add w23,w23,w16 // h+=Sigma1(e) eor w28,w28,w25 // Maj(a,b,c) eor w17,w15,w24,ror#22 // Sigma0(a) eor w13,w13,w6,lsr#10 // sigma1(X[i+14]) add w8,w8,w1 add w27,w27,w23 // d+=h add w23,w23,w28 // h+=Maj(a,b,c) ldr w28,[x30],#4 // *K++, w19 in next round add w8,w8,w14 add w23,w23,w17 // h+=Sigma0(a) add w8,w8,w13 ldr w13,[sp,#8] str w0,[sp,#4] ror w16,w27,#6 add w22,w22,w28 // h+=K[i] ror w15,w10,#7 and w17,w20,w27 ror w14,w7,#17 bic w28,w21,w27 ror w0,w23,#2 add w22,w22,w8 // h+=X[i] eor w16,w16,w27,ror#11 eor w15,w15,w10,ror#18 orr w17,w17,w28 // Ch(e,f,g) eor w28,w23,w24 // a^b, b^c in next round eor w16,w16,w27,ror#25 // Sigma1(e) eor w0,w0,w23,ror#13 add w22,w22,w17 // h+=Ch(e,f,g) and w19,w19,w28 // (b^c)&=(a^b) eor w14,w14,w7,ror#19 eor w15,w15,w10,lsr#3 // sigma0(X[i+1]) add w22,w22,w16 // h+=Sigma1(e) eor w19,w19,w24 // Maj(a,b,c) eor w17,w0,w23,ror#22 // Sigma0(a) eor w14,w14,w7,lsr#10 // sigma1(X[i+14]) add w9,w9,w2 add w26,w26,w22 // d+=h add w22,w22,w19 // h+=Maj(a,b,c) ldr w19,[x30],#4 // *K++, w28 in next round add w9,w9,w15 add w22,w22,w17 // h+=Sigma0(a) add w9,w9,w14 ldr w14,[sp,#12] str w1,[sp,#8] ror w16,w26,#6 add w21,w21,w19 // h+=K[i] ror w0,w11,#7 and w17,w27,w26 ror w15,w8,#17 bic w19,w20,w26 ror w1,w22,#2 add w21,w21,w9 // h+=X[i] eor w16,w16,w26,ror#11 eor w0,w0,w11,ror#18 orr w17,w17,w19 // Ch(e,f,g) eor w19,w22,w23 // a^b, b^c in next round eor w16,w16,w26,ror#25 // Sigma1(e) eor w1,w1,w22,ror#13 add w21,w21,w17 // h+=Ch(e,f,g) and w28,w28,w19 // (b^c)&=(a^b) eor w15,w15,w8,ror#19 eor w0,w0,w11,lsr#3 // sigma0(X[i+1]) add w21,w21,w16 // h+=Sigma1(e) eor w28,w28,w23 // Maj(a,b,c) eor w17,w1,w22,ror#22 // Sigma0(a) eor w15,w15,w8,lsr#10 // sigma1(X[i+14]) add w10,w10,w3 add w25,w25,w21 // d+=h add w21,w21,w28 // h+=Maj(a,b,c) ldr w28,[x30],#4 // *K++, w19 in next round add w10,w10,w0 add w21,w21,w17 // h+=Sigma0(a) add w10,w10,w15 ldr w15,[sp,#0] str w2,[sp,#12] ror w16,w25,#6 add w20,w20,w28 // h+=K[i] ror w1,w12,#7 and w17,w26,w25 ror w0,w9,#17 bic w28,w27,w25 ror w2,w21,#2 add w20,w20,w10 // h+=X[i] eor w16,w16,w25,ror#11 eor w1,w1,w12,ror#18 orr w17,w17,w28 // Ch(e,f,g) eor w28,w21,w22 // a^b, b^c in next round eor w16,w16,w25,ror#25 // Sigma1(e) eor w2,w2,w21,ror#13 add w20,w20,w17 // h+=Ch(e,f,g) and w19,w19,w28 // (b^c)&=(a^b) eor w0,w0,w9,ror#19 eor w1,w1,w12,lsr#3 // sigma0(X[i+1]) add w20,w20,w16 // h+=Sigma1(e) eor w19,w19,w22 // Maj(a,b,c) eor w17,w2,w21,ror#22 // Sigma0(a) eor w0,w0,w9,lsr#10 // sigma1(X[i+14]) add w11,w11,w4 add w24,w24,w20 // d+=h add w20,w20,w19 // h+=Maj(a,b,c) ldr w19,[x30],#4 // *K++, w28 in next round add w11,w11,w1 add w20,w20,w17 // h+=Sigma0(a) add w11,w11,w0 ldr w0,[sp,#4] str w3,[sp,#0] ror w16,w24,#6 add w27,w27,w19 // h+=K[i] ror w2,w13,#7 and w17,w25,w24 ror w1,w10,#17 bic w19,w26,w24 ror w3,w20,#2 add w27,w27,w11 // h+=X[i] eor w16,w16,w24,ror#11 eor w2,w2,w13,ror#18 orr w17,w17,w19 // Ch(e,f,g) eor w19,w20,w21 // a^b, b^c in next round eor w16,w16,w24,ror#25 // Sigma1(e) eor w3,w3,w20,ror#13 add w27,w27,w17 // h+=Ch(e,f,g) and w28,w28,w19 // (b^c)&=(a^b) eor w1,w1,w10,ror#19 eor w2,w2,w13,lsr#3 // sigma0(X[i+1]) add w27,w27,w16 // h+=Sigma1(e) eor w28,w28,w21 // Maj(a,b,c) eor w17,w3,w20,ror#22 // Sigma0(a) eor w1,w1,w10,lsr#10 // sigma1(X[i+14]) add w12,w12,w5 add w23,w23,w27 // d+=h add w27,w27,w28 // h+=Maj(a,b,c) ldr w28,[x30],#4 // *K++, w19 in next round add w12,w12,w2 add w27,w27,w17 // h+=Sigma0(a) add w12,w12,w1 ldr w1,[sp,#8] str w4,[sp,#4] ror w16,w23,#6 add w26,w26,w28 // h+=K[i] ror w3,w14,#7 and w17,w24,w23 ror w2,w11,#17 bic w28,w25,w23 ror w4,w27,#2 add w26,w26,w12 // h+=X[i] eor w16,w16,w23,ror#11 eor w3,w3,w14,ror#18 orr w17,w17,w28 // Ch(e,f,g) eor w28,w27,w20 // a^b, b^c in next round eor w16,w16,w23,ror#25 // Sigma1(e) eor w4,w4,w27,ror#13 add w26,w26,w17 // h+=Ch(e,f,g) and w19,w19,w28 // (b^c)&=(a^b) eor w2,w2,w11,ror#19 eor w3,w3,w14,lsr#3 // sigma0(X[i+1]) add w26,w26,w16 // h+=Sigma1(e) eor w19,w19,w20 // Maj(a,b,c) eor w17,w4,w27,ror#22 // Sigma0(a) eor w2,w2,w11,lsr#10 // sigma1(X[i+14]) add w13,w13,w6 add w22,w22,w26 // d+=h add w26,w26,w19 // h+=Maj(a,b,c) ldr w19,[x30],#4 // *K++, w28 in next round add w13,w13,w3 add w26,w26,w17 // h+=Sigma0(a) add w13,w13,w2 ldr w2,[sp,#12] str w5,[sp,#8] ror w16,w22,#6 add w25,w25,w19 // h+=K[i] ror w4,w15,#7 and w17,w23,w22 ror w3,w12,#17 bic w19,w24,w22 ror w5,w26,#2 add w25,w25,w13 // h+=X[i] eor w16,w16,w22,ror#11 eor w4,w4,w15,ror#18 orr w17,w17,w19 // Ch(e,f,g) eor w19,w26,w27 // a^b, b^c in next round eor w16,w16,w22,ror#25 // Sigma1(e) eor w5,w5,w26,ror#13 add w25,w25,w17 // h+=Ch(e,f,g) and w28,w28,w19 // (b^c)&=(a^b) eor w3,w3,w12,ror#19 eor w4,w4,w15,lsr#3 // sigma0(X[i+1]) add w25,w25,w16 // h+=Sigma1(e) eor w28,w28,w27 // Maj(a,b,c) eor w17,w5,w26,ror#22 // Sigma0(a) eor w3,w3,w12,lsr#10 // sigma1(X[i+14]) add w14,w14,w7 add w21,w21,w25 // d+=h add w25,w25,w28 // h+=Maj(a,b,c) ldr w28,[x30],#4 // *K++, w19 in next round add w14,w14,w4 add w25,w25,w17 // h+=Sigma0(a) add w14,w14,w3 ldr w3,[sp,#0] str w6,[sp,#12] ror w16,w21,#6 add w24,w24,w28 // h+=K[i] ror w5,w0,#7 and w17,w22,w21 ror w4,w13,#17 bic w28,w23,w21 ror w6,w25,#2 add w24,w24,w14 // h+=X[i] eor w16,w16,w21,ror#11 eor w5,w5,w0,ror#18 orr w17,w17,w28 // Ch(e,f,g) eor w28,w25,w26 // a^b, b^c in next round eor w16,w16,w21,ror#25 // Sigma1(e) eor w6,w6,w25,ror#13 add w24,w24,w17 // h+=Ch(e,f,g) and w19,w19,w28 // (b^c)&=(a^b) eor w4,w4,w13,ror#19 eor w5,w5,w0,lsr#3 // sigma0(X[i+1]) add w24,w24,w16 // h+=Sigma1(e) eor w19,w19,w26 // Maj(a,b,c) eor w17,w6,w25,ror#22 // Sigma0(a) eor w4,w4,w13,lsr#10 // sigma1(X[i+14]) add w15,w15,w8 add w20,w20,w24 // d+=h add w24,w24,w19 // h+=Maj(a,b,c) ldr w19,[x30],#4 // *K++, w28 in next round add w15,w15,w5 add w24,w24,w17 // h+=Sigma0(a) add w15,w15,w4 ldr w4,[sp,#4] str w7,[sp,#0] ror w16,w20,#6 add w23,w23,w19 // h+=K[i] ror w6,w1,#7 and w17,w21,w20 ror w5,w14,#17 bic w19,w22,w20 ror w7,w24,#2 add w23,w23,w15 // h+=X[i] eor w16,w16,w20,ror#11 eor w6,w6,w1,ror#18 orr w17,w17,w19 // Ch(e,f,g) eor w19,w24,w25 // a^b, b^c in next round eor w16,w16,w20,ror#25 // Sigma1(e) eor w7,w7,w24,ror#13 add w23,w23,w17 // h+=Ch(e,f,g) and w28,w28,w19 // (b^c)&=(a^b) eor w5,w5,w14,ror#19 eor w6,w6,w1,lsr#3 // sigma0(X[i+1]) add w23,w23,w16 // h+=Sigma1(e) eor w28,w28,w25 // Maj(a,b,c) eor w17,w7,w24,ror#22 // Sigma0(a) eor w5,w5,w14,lsr#10 // sigma1(X[i+14]) add w0,w0,w9 add w27,w27,w23 // d+=h add w23,w23,w28 // h+=Maj(a,b,c) ldr w28,[x30],#4 // *K++, w19 in next round add w0,w0,w6 add w23,w23,w17 // h+=Sigma0(a) add w0,w0,w5 ldr w5,[sp,#8] str w8,[sp,#4] ror w16,w27,#6 add w22,w22,w28 // h+=K[i] ror w7,w2,#7 and w17,w20,w27 ror w6,w15,#17 bic w28,w21,w27 ror w8,w23,#2 add w22,w22,w0 // h+=X[i] eor w16,w16,w27,ror#11 eor w7,w7,w2,ror#18 orr w17,w17,w28 // Ch(e,f,g) eor w28,w23,w24 // a^b, b^c in next round eor w16,w16,w27,ror#25 // Sigma1(e) eor w8,w8,w23,ror#13 add w22,w22,w17 // h+=Ch(e,f,g) and w19,w19,w28 // (b^c)&=(a^b) eor w6,w6,w15,ror#19 eor w7,w7,w2,lsr#3 // sigma0(X[i+1]) add w22,w22,w16 // h+=Sigma1(e) eor w19,w19,w24 // Maj(a,b,c) eor w17,w8,w23,ror#22 // Sigma0(a) eor w6,w6,w15,lsr#10 // sigma1(X[i+14]) add w1,w1,w10 add w26,w26,w22 // d+=h add w22,w22,w19 // h+=Maj(a,b,c) ldr w19,[x30],#4 // *K++, w28 in next round add w1,w1,w7 add w22,w22,w17 // h+=Sigma0(a) add w1,w1,w6 ldr w6,[sp,#12] str w9,[sp,#8] ror w16,w26,#6 add w21,w21,w19 // h+=K[i] ror w8,w3,#7 and w17,w27,w26 ror w7,w0,#17 bic w19,w20,w26 ror w9,w22,#2 add w21,w21,w1 // h+=X[i] eor w16,w16,w26,ror#11 eor w8,w8,w3,ror#18 orr w17,w17,w19 // Ch(e,f,g) eor w19,w22,w23 // a^b, b^c in next round eor w16,w16,w26,ror#25 // Sigma1(e) eor w9,w9,w22,ror#13 add w21,w21,w17 // h+=Ch(e,f,g) and w28,w28,w19 // (b^c)&=(a^b) eor w7,w7,w0,ror#19 eor w8,w8,w3,lsr#3 // sigma0(X[i+1]) add w21,w21,w16 // h+=Sigma1(e) eor w28,w28,w23 // Maj(a,b,c) eor w17,w9,w22,ror#22 // Sigma0(a) eor w7,w7,w0,lsr#10 // sigma1(X[i+14]) add w2,w2,w11 add w25,w25,w21 // d+=h add w21,w21,w28 // h+=Maj(a,b,c) ldr w28,[x30],#4 // *K++, w19 in next round add w2,w2,w8 add w21,w21,w17 // h+=Sigma0(a) add w2,w2,w7 ldr w7,[sp,#0] str w10,[sp,#12] ror w16,w25,#6 add w20,w20,w28 // h+=K[i] ror w9,w4,#7 and w17,w26,w25 ror w8,w1,#17 bic w28,w27,w25 ror w10,w21,#2 add w20,w20,w2 // h+=X[i] eor w16,w16,w25,ror#11 eor w9,w9,w4,ror#18 orr w17,w17,w28 // Ch(e,f,g) eor w28,w21,w22 // a^b, b^c in next round eor w16,w16,w25,ror#25 // Sigma1(e) eor w10,w10,w21,ror#13 add w20,w20,w17 // h+=Ch(e,f,g) and w19,w19,w28 // (b^c)&=(a^b) eor w8,w8,w1,ror#19 eor w9,w9,w4,lsr#3 // sigma0(X[i+1]) add w20,w20,w16 // h+=Sigma1(e) eor w19,w19,w22 // Maj(a,b,c) eor w17,w10,w21,ror#22 // Sigma0(a) eor w8,w8,w1,lsr#10 // sigma1(X[i+14]) add w3,w3,w12 add w24,w24,w20 // d+=h add w20,w20,w19 // h+=Maj(a,b,c) ldr w19,[x30],#4 // *K++, w28 in next round add w3,w3,w9 add w20,w20,w17 // h+=Sigma0(a) add w3,w3,w8 cbnz w19,.Loop_16_xx ldp x0,x2,[x29,#96] ldr x1,[x29,#112] sub x30,x30,#260 // rewind ldp w3,w4,[x0] ldp w5,w6,[x0,#2*4] add x1,x1,#14*4 // advance input pointer ldp w7,w8,[x0,#4*4] add w20,w20,w3 ldp w9,w10,[x0,#6*4] add w21,w21,w4 add w22,w22,w5 add w23,w23,w6 stp w20,w21,[x0] add w24,w24,w7 add w25,w25,w8 stp w22,w23,[x0,#2*4] add w26,w26,w9 add w27,w27,w10 cmp x1,x2 stp w24,w25,[x0,#4*4] stp w26,w27,[x0,#6*4] b.ne .Loop ldp x19,x20,[x29,#16] add sp,sp,#4*4 ldp x21,x22,[x29,#32] ldp x23,x24,[x29,#48] ldp x25,x26,[x29,#64] ldp x27,x28,[x29,#80] ldp x29,x30,[sp],#128 AARCH64_VALIDATE_LINK_REGISTER ret .size sha256_block_data_order_nohw,.-sha256_block_data_order_nohw .section .rodata .align 6 .type .LK256,%object .LK256: .long 0x428a2f98,0x71374491,0xb5c0fbcf,0xe9b5dba5 .long 0x3956c25b,0x59f111f1,0x923f82a4,0xab1c5ed5 .long 0xd807aa98,0x12835b01,0x243185be,0x550c7dc3 .long 0x72be5d74,0x80deb1fe,0x9bdc06a7,0xc19bf174 .long 0xe49b69c1,0xefbe4786,0x0fc19dc6,0x240ca1cc .long 0x2de92c6f,0x4a7484aa,0x5cb0a9dc,0x76f988da .long 0x983e5152,0xa831c66d,0xb00327c8,0xbf597fc7 .long 0xc6e00bf3,0xd5a79147,0x06ca6351,0x14292967 .long 0x27b70a85,0x2e1b2138,0x4d2c6dfc,0x53380d13 .long 0x650a7354,0x766a0abb,0x81c2c92e,0x92722c85 .long 0xa2bfe8a1,0xa81a664b,0xc24b8b70,0xc76c51a3 .long 0xd192e819,0xd6990624,0xf40e3585,0x106aa070 .long 0x19a4c116,0x1e376c08,0x2748774c,0x34b0bcb5 .long 0x391c0cb3,0x4ed8aa4a,0x5b9cca4f,0x682e6ff3 .long 0x748f82ee,0x78a5636f,0x84c87814,0x8cc70208 .long 0x90befffa,0xa4506ceb,0xbef9a3f7,0xc67178f2 .long 0 //terminator .size .LK256,.-.LK256 .byte 83,72,65,50,53,54,32,98,108,111,99,107,32,116,114,97,110,115,102,111,114,109,32,102,111,114,32,65,82,77,118,56,44,32,67,82,89,80,84,79,71,65,77,83,32,98,121,32,60,97,112,112,114,111,64,111,112,101,110,115,115,108,46,111,114,103,62,0 .align 2 .align 2 .text #ifndef __KERNEL__ .globl sha256_block_data_order_hw .hidden sha256_block_data_order_hw .type sha256_block_data_order_hw,%function .align 6 sha256_block_data_order_hw: // Armv8.3-A PAuth: even though x30 is pushed to stack it is not popped later. AARCH64_VALID_CALL_TARGET stp x29,x30,[sp,#-16]! add x29,sp,#0 ld1 {v0.4s,v1.4s},[x0] adrp x3,.LK256 add x3,x3,:lo12:.LK256 .Loop_hw: ld1 {v4.16b,v5.16b,v6.16b,v7.16b},[x1],#64 sub x2,x2,#1 ld1 {v16.4s},[x3],#16 rev32 v4.16b,v4.16b rev32 v5.16b,v5.16b rev32 v6.16b,v6.16b rev32 v7.16b,v7.16b orr v18.16b,v0.16b,v0.16b // offload orr v19.16b,v1.16b,v1.16b ld1 {v17.4s},[x3],#16 add v16.4s,v16.4s,v4.4s .inst 0x5e2828a4 //sha256su0 v4.16b,v5.16b orr v2.16b,v0.16b,v0.16b .inst 0x5e104020 //sha256h v0.16b,v1.16b,v16.4s .inst 0x5e105041 //sha256h2 v1.16b,v2.16b,v16.4s .inst 0x5e0760c4 //sha256su1 v4.16b,v6.16b,v7.16b ld1 {v16.4s},[x3],#16 add v17.4s,v17.4s,v5.4s .inst 0x5e2828c5 //sha256su0 v5.16b,v6.16b orr v2.16b,v0.16b,v0.16b .inst 0x5e114020 //sha256h v0.16b,v1.16b,v17.4s .inst 0x5e115041 //sha256h2 v1.16b,v2.16b,v17.4s .inst 0x5e0460e5 //sha256su1 v5.16b,v7.16b,v4.16b ld1 {v17.4s},[x3],#16 add v16.4s,v16.4s,v6.4s .inst 0x5e2828e6 //sha256su0 v6.16b,v7.16b orr v2.16b,v0.16b,v0.16b .inst 0x5e104020 //sha256h v0.16b,v1.16b,v16.4s .inst 0x5e105041 //sha256h2 v1.16b,v2.16b,v16.4s .inst 0x5e056086 //sha256su1 v6.16b,v4.16b,v5.16b ld1 {v16.4s},[x3],#16 add v17.4s,v17.4s,v7.4s .inst 0x5e282887 //sha256su0 v7.16b,v4.16b orr v2.16b,v0.16b,v0.16b .inst 0x5e114020 //sha256h v0.16b,v1.16b,v17.4s .inst 0x5e115041 //sha256h2 v1.16b,v2.16b,v17.4s .inst 0x5e0660a7 //sha256su1 v7.16b,v5.16b,v6.16b ld1 {v17.4s},[x3],#16 add v16.4s,v16.4s,v4.4s .inst 0x5e2828a4 //sha256su0 v4.16b,v5.16b orr v2.16b,v0.16b,v0.16b .inst 0x5e104020 //sha256h v0.16b,v1.16b,v16.4s .inst 0x5e105041 //sha256h2 v1.16b,v2.16b,v16.4s .inst 0x5e0760c4 //sha256su1 v4.16b,v6.16b,v7.16b ld1 {v16.4s},[x3],#16 add v17.4s,v17.4s,v5.4s .inst 0x5e2828c5 //sha256su0 v5.16b,v6.16b orr v2.16b,v0.16b,v0.16b .inst 0x5e114020 //sha256h v0.16b,v1.16b,v17.4s .inst 0x5e115041 //sha256h2 v1.16b,v2.16b,v17.4s .inst 0x5e0460e5 //sha256su1 v5.16b,v7.16b,v4.16b ld1 {v17.4s},[x3],#16 add v16.4s,v16.4s,v6.4s .inst 0x5e2828e6 //sha256su0 v6.16b,v7.16b orr v2.16b,v0.16b,v0.16b .inst 0x5e104020 //sha256h v0.16b,v1.16b,v16.4s .inst 0x5e105041 //sha256h2 v1.16b,v2.16b,v16.4s .inst 0x5e056086 //sha256su1 v6.16b,v4.16b,v5.16b ld1 {v16.4s},[x3],#16 add v17.4s,v17.4s,v7.4s .inst 0x5e282887 //sha256su0 v7.16b,v4.16b orr v2.16b,v0.16b,v0.16b .inst 0x5e114020 //sha256h v0.16b,v1.16b,v17.4s .inst 0x5e115041 //sha256h2 v1.16b,v2.16b,v17.4s .inst 0x5e0660a7 //sha256su1 v7.16b,v5.16b,v6.16b ld1 {v17.4s},[x3],#16 add v16.4s,v16.4s,v4.4s .inst 0x5e2828a4 //sha256su0 v4.16b,v5.16b orr v2.16b,v0.16b,v0.16b .inst 0x5e104020 //sha256h v0.16b,v1.16b,v16.4s .inst 0x5e105041 //sha256h2 v1.16b,v2.16b,v16.4s .inst 0x5e0760c4 //sha256su1 v4.16b,v6.16b,v7.16b ld1 {v16.4s},[x3],#16 add v17.4s,v17.4s,v5.4s .inst 0x5e2828c5 //sha256su0 v5.16b,v6.16b orr v2.16b,v0.16b,v0.16b .inst 0x5e114020 //sha256h v0.16b,v1.16b,v17.4s .inst 0x5e115041 //sha256h2 v1.16b,v2.16b,v17.4s .inst 0x5e0460e5 //sha256su1 v5.16b,v7.16b,v4.16b ld1 {v17.4s},[x3],#16 add v16.4s,v16.4s,v6.4s .inst 0x5e2828e6 //sha256su0 v6.16b,v7.16b orr v2.16b,v0.16b,v0.16b .inst 0x5e104020 //sha256h v0.16b,v1.16b,v16.4s .inst 0x5e105041 //sha256h2 v1.16b,v2.16b,v16.4s .inst 0x5e056086 //sha256su1 v6.16b,v4.16b,v5.16b ld1 {v16.4s},[x3],#16 add v17.4s,v17.4s,v7.4s .inst 0x5e282887 //sha256su0 v7.16b,v4.16b orr v2.16b,v0.16b,v0.16b .inst 0x5e114020 //sha256h v0.16b,v1.16b,v17.4s .inst 0x5e115041 //sha256h2 v1.16b,v2.16b,v17.4s .inst 0x5e0660a7 //sha256su1 v7.16b,v5.16b,v6.16b ld1 {v17.4s},[x3],#16 add v16.4s,v16.4s,v4.4s orr v2.16b,v0.16b,v0.16b .inst 0x5e104020 //sha256h v0.16b,v1.16b,v16.4s .inst 0x5e105041 //sha256h2 v1.16b,v2.16b,v16.4s ld1 {v16.4s},[x3],#16 add v17.4s,v17.4s,v5.4s orr v2.16b,v0.16b,v0.16b .inst 0x5e114020 //sha256h v0.16b,v1.16b,v17.4s .inst 0x5e115041 //sha256h2 v1.16b,v2.16b,v17.4s ld1 {v17.4s},[x3] add v16.4s,v16.4s,v6.4s sub x3,x3,#64*4-16 // rewind orr v2.16b,v0.16b,v0.16b .inst 0x5e104020 //sha256h v0.16b,v1.16b,v16.4s .inst 0x5e105041 //sha256h2 v1.16b,v2.16b,v16.4s add v17.4s,v17.4s,v7.4s orr v2.16b,v0.16b,v0.16b .inst 0x5e114020 //sha256h v0.16b,v1.16b,v17.4s .inst 0x5e115041 //sha256h2 v1.16b,v2.16b,v17.4s add v0.4s,v0.4s,v18.4s add v1.4s,v1.4s,v19.4s cbnz x2,.Loop_hw st1 {v0.4s,v1.4s},[x0] ldr x29,[sp],#16 ret .size sha256_block_data_order_hw,.-sha256_block_data_order_hw #endif #endif // !OPENSSL_NO_ASM && defined(OPENSSL_AARCH64) && defined(__ELF__)
mktmansour/MKT-KSA-Geolocation-Security
26,206
.cargo-home/registry/src/index.crates.io-1949cf8c6b5b557f/ring-0.17.14/pregenerated/vpaes-armv8-linux64.S
// This file is generated from a similarly-named Perl script in the BoringSSL // source tree. Do not edit by hand. #include <ring-core/asm_base.h> #if !defined(OPENSSL_NO_ASM) && defined(OPENSSL_AARCH64) && defined(__ELF__) .section .rodata .type _vpaes_consts,%object .align 7 // totally strategic alignment _vpaes_consts: .Lk_mc_forward: // mc_forward .quad 0x0407060500030201, 0x0C0F0E0D080B0A09 .quad 0x080B0A0904070605, 0x000302010C0F0E0D .quad 0x0C0F0E0D080B0A09, 0x0407060500030201 .quad 0x000302010C0F0E0D, 0x080B0A0904070605 .Lk_mc_backward: // mc_backward .quad 0x0605040702010003, 0x0E0D0C0F0A09080B .quad 0x020100030E0D0C0F, 0x0A09080B06050407 .quad 0x0E0D0C0F0A09080B, 0x0605040702010003 .quad 0x0A09080B06050407, 0x020100030E0D0C0F .Lk_sr: // sr .quad 0x0706050403020100, 0x0F0E0D0C0B0A0908 .quad 0x030E09040F0A0500, 0x0B06010C07020D08 .quad 0x0F060D040B020900, 0x070E050C030A0108 .quad 0x0B0E0104070A0D00, 0x0306090C0F020508 // // "Hot" constants // .Lk_inv: // inv, inva .quad 0x0E05060F0D080180, 0x040703090A0B0C02 .quad 0x01040A060F0B0780, 0x030D0E0C02050809 .Lk_ipt: // input transform (lo, hi) .quad 0xC2B2E8985A2A7000, 0xCABAE09052227808 .quad 0x4C01307D317C4D00, 0xCD80B1FCB0FDCC81 .Lk_sbo: // sbou, sbot .quad 0xD0D26D176FBDC700, 0x15AABF7AC502A878 .quad 0xCFE474A55FBB6A00, 0x8E1E90D1412B35FA .Lk_sb1: // sb1u, sb1t .quad 0x3618D415FAE22300, 0x3BF7CCC10D2ED9EF .quad 0xB19BE18FCB503E00, 0xA5DF7A6E142AF544 .Lk_sb2: // sb2u, sb2t .quad 0x69EB88400AE12900, 0xC2A163C8AB82234A .quad 0xE27A93C60B712400, 0x5EB7E955BC982FCD // // Key schedule constants // .Lk_dksd: // decryption key schedule: invskew x*D .quad 0xFEB91A5DA3E44700, 0x0740E3A45A1DBEF9 .quad 0x41C277F4B5368300, 0x5FDC69EAAB289D1E .Lk_dksb: // decryption key schedule: invskew x*B .quad 0x9A4FCA1F8550D500, 0x03D653861CC94C99 .quad 0x115BEDA7B6FC4A00, 0xD993256F7E3482C8 .Lk_dkse: // decryption key schedule: invskew x*E + 0x63 .quad 0xD5031CCA1FC9D600, 0x53859A4C994F5086 .quad 0xA23196054FDC7BE8, 0xCD5EF96A20B31487 .Lk_dks9: // decryption key schedule: invskew x*9 .quad 0xB6116FC87ED9A700, 0x4AED933482255BFC .quad 0x4576516227143300, 0x8BB89FACE9DAFDCE .Lk_rcon: // rcon .quad 0x1F8391B9AF9DEEB6, 0x702A98084D7C7D81 .Lk_opt: // output transform .quad 0xFF9F4929D6B66000, 0xF7974121DEBE6808 .quad 0x01EDBD5150BCEC00, 0xE10D5DB1B05C0CE0 .Lk_deskew: // deskew tables: inverts the sbox's "skew" .quad 0x07E4A34047A4E300, 0x1DFEB95A5DBEF91A .quad 0x5F36B5DC83EA6900, 0x2841C2ABF49D1E77 .byte 86,101,99,116,111,114,32,80,101,114,109,117,116,97,116,105,111,110,32,65,69,83,32,102,111,114,32,65,82,77,118,56,44,32,77,105,107,101,32,72,97,109,98,117,114,103,32,40,83,116,97,110,102,111,114,100,32,85,110,105,118,101,114,115,105,116,121,41,0 .align 2 .size _vpaes_consts,.-_vpaes_consts .align 6 .text ## ## _aes_preheat ## ## Fills register %r10 -> .aes_consts (so you can -fPIC) ## and %xmm9-%xmm15 as specified below. ## .type _vpaes_encrypt_preheat,%function .align 4 _vpaes_encrypt_preheat: adrp x10, .Lk_inv add x10, x10, :lo12:.Lk_inv movi v17.16b, #0x0f ld1 {v18.2d,v19.2d}, [x10],#32 // .Lk_inv ld1 {v20.2d,v21.2d,v22.2d,v23.2d}, [x10],#64 // .Lk_ipt, .Lk_sbo ld1 {v24.2d,v25.2d,v26.2d,v27.2d}, [x10] // .Lk_sb1, .Lk_sb2 ret .size _vpaes_encrypt_preheat,.-_vpaes_encrypt_preheat ## ## _aes_encrypt_core ## ## AES-encrypt %xmm0. ## ## Inputs: ## %xmm0 = input ## %xmm9-%xmm15 as in _vpaes_preheat ## (%rdx) = scheduled keys ## ## Output in %xmm0 ## Clobbers %xmm1-%xmm5, %r9, %r10, %r11, %rax ## Preserves %xmm6 - %xmm8 so you get some local vectors ## ## .type _vpaes_encrypt_core,%function .align 4 _vpaes_encrypt_core: mov x9, x2 ldr w8, [x2,#240] // pull rounds adrp x11, .Lk_mc_forward+16 add x11, x11, :lo12:.Lk_mc_forward+16 // vmovdqa .Lk_ipt(%rip), %xmm2 # iptlo ld1 {v16.2d}, [x9], #16 // vmovdqu (%r9), %xmm5 # round0 key and v1.16b, v7.16b, v17.16b // vpand %xmm9, %xmm0, %xmm1 ushr v0.16b, v7.16b, #4 // vpsrlb $4, %xmm0, %xmm0 tbl v1.16b, {v20.16b}, v1.16b // vpshufb %xmm1, %xmm2, %xmm1 // vmovdqa .Lk_ipt+16(%rip), %xmm3 # ipthi tbl v2.16b, {v21.16b}, v0.16b // vpshufb %xmm0, %xmm3, %xmm2 eor v0.16b, v1.16b, v16.16b // vpxor %xmm5, %xmm1, %xmm0 eor v0.16b, v0.16b, v2.16b // vpxor %xmm2, %xmm0, %xmm0 b .Lenc_entry .align 4 .Lenc_loop: // middle of middle round add x10, x11, #0x40 tbl v4.16b, {v25.16b}, v2.16b // vpshufb %xmm2, %xmm13, %xmm4 # 4 = sb1u ld1 {v1.2d}, [x11], #16 // vmovdqa -0x40(%r11,%r10), %xmm1 # .Lk_mc_forward[] tbl v0.16b, {v24.16b}, v3.16b // vpshufb %xmm3, %xmm12, %xmm0 # 0 = sb1t eor v4.16b, v4.16b, v16.16b // vpxor %xmm5, %xmm4, %xmm4 # 4 = sb1u + k tbl v5.16b, {v27.16b}, v2.16b // vpshufb %xmm2, %xmm15, %xmm5 # 4 = sb2u eor v0.16b, v0.16b, v4.16b // vpxor %xmm4, %xmm0, %xmm0 # 0 = A tbl v2.16b, {v26.16b}, v3.16b // vpshufb %xmm3, %xmm14, %xmm2 # 2 = sb2t ld1 {v4.2d}, [x10] // vmovdqa (%r11,%r10), %xmm4 # .Lk_mc_backward[] tbl v3.16b, {v0.16b}, v1.16b // vpshufb %xmm1, %xmm0, %xmm3 # 0 = B eor v2.16b, v2.16b, v5.16b // vpxor %xmm5, %xmm2, %xmm2 # 2 = 2A tbl v0.16b, {v0.16b}, v4.16b // vpshufb %xmm4, %xmm0, %xmm0 # 3 = D eor v3.16b, v3.16b, v2.16b // vpxor %xmm2, %xmm3, %xmm3 # 0 = 2A+B tbl v4.16b, {v3.16b}, v1.16b // vpshufb %xmm1, %xmm3, %xmm4 # 0 = 2B+C eor v0.16b, v0.16b, v3.16b // vpxor %xmm3, %xmm0, %xmm0 # 3 = 2A+B+D and x11, x11, #~(1<<6) // and $0x30, %r11 # ... mod 4 eor v0.16b, v0.16b, v4.16b // vpxor %xmm4, %xmm0, %xmm0 # 0 = 2A+3B+C+D sub w8, w8, #1 // nr-- .Lenc_entry: // top of round and v1.16b, v0.16b, v17.16b // vpand %xmm0, %xmm9, %xmm1 # 0 = k ushr v0.16b, v0.16b, #4 // vpsrlb $4, %xmm0, %xmm0 # 1 = i tbl v5.16b, {v19.16b}, v1.16b // vpshufb %xmm1, %xmm11, %xmm5 # 2 = a/k eor v1.16b, v1.16b, v0.16b // vpxor %xmm0, %xmm1, %xmm1 # 0 = j tbl v3.16b, {v18.16b}, v0.16b // vpshufb %xmm0, %xmm10, %xmm3 # 3 = 1/i tbl v4.16b, {v18.16b}, v1.16b // vpshufb %xmm1, %xmm10, %xmm4 # 4 = 1/j eor v3.16b, v3.16b, v5.16b // vpxor %xmm5, %xmm3, %xmm3 # 3 = iak = 1/i + a/k eor v4.16b, v4.16b, v5.16b // vpxor %xmm5, %xmm4, %xmm4 # 4 = jak = 1/j + a/k tbl v2.16b, {v18.16b}, v3.16b // vpshufb %xmm3, %xmm10, %xmm2 # 2 = 1/iak tbl v3.16b, {v18.16b}, v4.16b // vpshufb %xmm4, %xmm10, %xmm3 # 3 = 1/jak eor v2.16b, v2.16b, v1.16b // vpxor %xmm1, %xmm2, %xmm2 # 2 = io eor v3.16b, v3.16b, v0.16b // vpxor %xmm0, %xmm3, %xmm3 # 3 = jo ld1 {v16.2d}, [x9],#16 // vmovdqu (%r9), %xmm5 cbnz w8, .Lenc_loop // middle of last round add x10, x11, #0x80 // vmovdqa -0x60(%r10), %xmm4 # 3 : sbou .Lk_sbo // vmovdqa -0x50(%r10), %xmm0 # 0 : sbot .Lk_sbo+16 tbl v4.16b, {v22.16b}, v2.16b // vpshufb %xmm2, %xmm4, %xmm4 # 4 = sbou ld1 {v1.2d}, [x10] // vmovdqa 0x40(%r11,%r10), %xmm1 # .Lk_sr[] tbl v0.16b, {v23.16b}, v3.16b // vpshufb %xmm3, %xmm0, %xmm0 # 0 = sb1t eor v4.16b, v4.16b, v16.16b // vpxor %xmm5, %xmm4, %xmm4 # 4 = sb1u + k eor v0.16b, v0.16b, v4.16b // vpxor %xmm4, %xmm0, %xmm0 # 0 = A tbl v0.16b, {v0.16b}, v1.16b // vpshufb %xmm1, %xmm0, %xmm0 ret .size _vpaes_encrypt_core,.-_vpaes_encrypt_core .type _vpaes_encrypt_2x,%function .align 4 _vpaes_encrypt_2x: mov x9, x2 ldr w8, [x2,#240] // pull rounds adrp x11, .Lk_mc_forward+16 add x11, x11, :lo12:.Lk_mc_forward+16 // vmovdqa .Lk_ipt(%rip), %xmm2 # iptlo ld1 {v16.2d}, [x9], #16 // vmovdqu (%r9), %xmm5 # round0 key and v1.16b, v14.16b, v17.16b // vpand %xmm9, %xmm0, %xmm1 ushr v0.16b, v14.16b, #4 // vpsrlb $4, %xmm0, %xmm0 and v9.16b, v15.16b, v17.16b ushr v8.16b, v15.16b, #4 tbl v1.16b, {v20.16b}, v1.16b // vpshufb %xmm1, %xmm2, %xmm1 tbl v9.16b, {v20.16b}, v9.16b // vmovdqa .Lk_ipt+16(%rip), %xmm3 # ipthi tbl v2.16b, {v21.16b}, v0.16b // vpshufb %xmm0, %xmm3, %xmm2 tbl v10.16b, {v21.16b}, v8.16b eor v0.16b, v1.16b, v16.16b // vpxor %xmm5, %xmm1, %xmm0 eor v8.16b, v9.16b, v16.16b eor v0.16b, v0.16b, v2.16b // vpxor %xmm2, %xmm0, %xmm0 eor v8.16b, v8.16b, v10.16b b .Lenc_2x_entry .align 4 .Lenc_2x_loop: // middle of middle round add x10, x11, #0x40 tbl v4.16b, {v25.16b}, v2.16b // vpshufb %xmm2, %xmm13, %xmm4 # 4 = sb1u tbl v12.16b, {v25.16b}, v10.16b ld1 {v1.2d}, [x11], #16 // vmovdqa -0x40(%r11,%r10), %xmm1 # .Lk_mc_forward[] tbl v0.16b, {v24.16b}, v3.16b // vpshufb %xmm3, %xmm12, %xmm0 # 0 = sb1t tbl v8.16b, {v24.16b}, v11.16b eor v4.16b, v4.16b, v16.16b // vpxor %xmm5, %xmm4, %xmm4 # 4 = sb1u + k eor v12.16b, v12.16b, v16.16b tbl v5.16b, {v27.16b}, v2.16b // vpshufb %xmm2, %xmm15, %xmm5 # 4 = sb2u tbl v13.16b, {v27.16b}, v10.16b eor v0.16b, v0.16b, v4.16b // vpxor %xmm4, %xmm0, %xmm0 # 0 = A eor v8.16b, v8.16b, v12.16b tbl v2.16b, {v26.16b}, v3.16b // vpshufb %xmm3, %xmm14, %xmm2 # 2 = sb2t tbl v10.16b, {v26.16b}, v11.16b ld1 {v4.2d}, [x10] // vmovdqa (%r11,%r10), %xmm4 # .Lk_mc_backward[] tbl v3.16b, {v0.16b}, v1.16b // vpshufb %xmm1, %xmm0, %xmm3 # 0 = B tbl v11.16b, {v8.16b}, v1.16b eor v2.16b, v2.16b, v5.16b // vpxor %xmm5, %xmm2, %xmm2 # 2 = 2A eor v10.16b, v10.16b, v13.16b tbl v0.16b, {v0.16b}, v4.16b // vpshufb %xmm4, %xmm0, %xmm0 # 3 = D tbl v8.16b, {v8.16b}, v4.16b eor v3.16b, v3.16b, v2.16b // vpxor %xmm2, %xmm3, %xmm3 # 0 = 2A+B eor v11.16b, v11.16b, v10.16b tbl v4.16b, {v3.16b}, v1.16b // vpshufb %xmm1, %xmm3, %xmm4 # 0 = 2B+C tbl v12.16b, {v11.16b},v1.16b eor v0.16b, v0.16b, v3.16b // vpxor %xmm3, %xmm0, %xmm0 # 3 = 2A+B+D eor v8.16b, v8.16b, v11.16b and x11, x11, #~(1<<6) // and $0x30, %r11 # ... mod 4 eor v0.16b, v0.16b, v4.16b // vpxor %xmm4, %xmm0, %xmm0 # 0 = 2A+3B+C+D eor v8.16b, v8.16b, v12.16b sub w8, w8, #1 // nr-- .Lenc_2x_entry: // top of round and v1.16b, v0.16b, v17.16b // vpand %xmm0, %xmm9, %xmm1 # 0 = k ushr v0.16b, v0.16b, #4 // vpsrlb $4, %xmm0, %xmm0 # 1 = i and v9.16b, v8.16b, v17.16b ushr v8.16b, v8.16b, #4 tbl v5.16b, {v19.16b},v1.16b // vpshufb %xmm1, %xmm11, %xmm5 # 2 = a/k tbl v13.16b, {v19.16b},v9.16b eor v1.16b, v1.16b, v0.16b // vpxor %xmm0, %xmm1, %xmm1 # 0 = j eor v9.16b, v9.16b, v8.16b tbl v3.16b, {v18.16b},v0.16b // vpshufb %xmm0, %xmm10, %xmm3 # 3 = 1/i tbl v11.16b, {v18.16b},v8.16b tbl v4.16b, {v18.16b},v1.16b // vpshufb %xmm1, %xmm10, %xmm4 # 4 = 1/j tbl v12.16b, {v18.16b},v9.16b eor v3.16b, v3.16b, v5.16b // vpxor %xmm5, %xmm3, %xmm3 # 3 = iak = 1/i + a/k eor v11.16b, v11.16b, v13.16b eor v4.16b, v4.16b, v5.16b // vpxor %xmm5, %xmm4, %xmm4 # 4 = jak = 1/j + a/k eor v12.16b, v12.16b, v13.16b tbl v2.16b, {v18.16b},v3.16b // vpshufb %xmm3, %xmm10, %xmm2 # 2 = 1/iak tbl v10.16b, {v18.16b},v11.16b tbl v3.16b, {v18.16b},v4.16b // vpshufb %xmm4, %xmm10, %xmm3 # 3 = 1/jak tbl v11.16b, {v18.16b},v12.16b eor v2.16b, v2.16b, v1.16b // vpxor %xmm1, %xmm2, %xmm2 # 2 = io eor v10.16b, v10.16b, v9.16b eor v3.16b, v3.16b, v0.16b // vpxor %xmm0, %xmm3, %xmm3 # 3 = jo eor v11.16b, v11.16b, v8.16b ld1 {v16.2d}, [x9],#16 // vmovdqu (%r9), %xmm5 cbnz w8, .Lenc_2x_loop // middle of last round add x10, x11, #0x80 // vmovdqa -0x60(%r10), %xmm4 # 3 : sbou .Lk_sbo // vmovdqa -0x50(%r10), %xmm0 # 0 : sbot .Lk_sbo+16 tbl v4.16b, {v22.16b}, v2.16b // vpshufb %xmm2, %xmm4, %xmm4 # 4 = sbou tbl v12.16b, {v22.16b}, v10.16b ld1 {v1.2d}, [x10] // vmovdqa 0x40(%r11,%r10), %xmm1 # .Lk_sr[] tbl v0.16b, {v23.16b}, v3.16b // vpshufb %xmm3, %xmm0, %xmm0 # 0 = sb1t tbl v8.16b, {v23.16b}, v11.16b eor v4.16b, v4.16b, v16.16b // vpxor %xmm5, %xmm4, %xmm4 # 4 = sb1u + k eor v12.16b, v12.16b, v16.16b eor v0.16b, v0.16b, v4.16b // vpxor %xmm4, %xmm0, %xmm0 # 0 = A eor v8.16b, v8.16b, v12.16b tbl v0.16b, {v0.16b},v1.16b // vpshufb %xmm1, %xmm0, %xmm0 tbl v1.16b, {v8.16b},v1.16b ret .size _vpaes_encrypt_2x,.-_vpaes_encrypt_2x ######################################################## ## ## ## AES key schedule ## ## ## ######################################################## .type _vpaes_key_preheat,%function .align 4 _vpaes_key_preheat: adrp x10, .Lk_inv add x10, x10, :lo12:.Lk_inv movi v16.16b, #0x5b // .Lk_s63 adrp x11, .Lk_sb1 add x11, x11, :lo12:.Lk_sb1 movi v17.16b, #0x0f // .Lk_s0F ld1 {v18.2d,v19.2d,v20.2d,v21.2d}, [x10] // .Lk_inv, .Lk_ipt adrp x10, .Lk_dksd add x10, x10, :lo12:.Lk_dksd ld1 {v22.2d,v23.2d}, [x11] // .Lk_sb1 adrp x11, .Lk_mc_forward add x11, x11, :lo12:.Lk_mc_forward ld1 {v24.2d,v25.2d,v26.2d,v27.2d}, [x10],#64 // .Lk_dksd, .Lk_dksb ld1 {v28.2d,v29.2d,v30.2d,v31.2d}, [x10],#64 // .Lk_dkse, .Lk_dks9 ld1 {v8.2d}, [x10] // .Lk_rcon ld1 {v9.2d}, [x11] // .Lk_mc_forward[0] ret .size _vpaes_key_preheat,.-_vpaes_key_preheat .type _vpaes_schedule_core,%function .align 4 _vpaes_schedule_core: AARCH64_SIGN_LINK_REGISTER stp x29, x30, [sp,#-16]! add x29,sp,#0 bl _vpaes_key_preheat // load the tables ld1 {v0.16b}, [x0],#16 // vmovdqu (%rdi), %xmm0 # load key (unaligned) // input transform mov v3.16b, v0.16b // vmovdqa %xmm0, %xmm3 bl _vpaes_schedule_transform mov v7.16b, v0.16b // vmovdqa %xmm0, %xmm7 adrp x10, .Lk_sr // lea .Lk_sr(%rip),%r10 add x10, x10, :lo12:.Lk_sr add x8, x8, x10 // encrypting, output zeroth round key after transform st1 {v0.2d}, [x2] // vmovdqu %xmm0, (%rdx) cmp w1, #192 // cmp $192, %esi b.hi .Lschedule_256 b.eq .Lschedule_192 // 128: fall though ## ## .schedule_128 ## ## 128-bit specific part of key schedule. ## ## This schedule is really simple, because all its parts ## are accomplished by the subroutines. ## .Lschedule_128: mov x0, #10 // mov $10, %esi .Loop_schedule_128: sub x0, x0, #1 // dec %esi bl _vpaes_schedule_round cbz x0, .Lschedule_mangle_last bl _vpaes_schedule_mangle // write output b .Loop_schedule_128 ## ## .aes_schedule_192 ## ## 192-bit specific part of key schedule. ## ## The main body of this schedule is the same as the 128-bit ## schedule, but with more smearing. The long, high side is ## stored in %xmm7 as before, and the short, low side is in ## the high bits of %xmm6. ## ## This schedule is somewhat nastier, however, because each ## round produces 192 bits of key material, or 1.5 round keys. ## Therefore, on each cycle we do 2 rounds and produce 3 round ## keys. ## .align 4 .Lschedule_192: sub x0, x0, #8 ld1 {v0.16b}, [x0] // vmovdqu 8(%rdi),%xmm0 # load key part 2 (very unaligned) bl _vpaes_schedule_transform // input transform mov v6.16b, v0.16b // vmovdqa %xmm0, %xmm6 # save short part eor v4.16b, v4.16b, v4.16b // vpxor %xmm4, %xmm4, %xmm4 # clear 4 ins v6.d[0], v4.d[0] // vmovhlps %xmm4, %xmm6, %xmm6 # clobber low side with zeros mov x0, #4 // mov $4, %esi .Loop_schedule_192: sub x0, x0, #1 // dec %esi bl _vpaes_schedule_round ext v0.16b, v6.16b, v0.16b, #8 // vpalignr $8,%xmm6,%xmm0,%xmm0 bl _vpaes_schedule_mangle // save key n bl _vpaes_schedule_192_smear bl _vpaes_schedule_mangle // save key n+1 bl _vpaes_schedule_round cbz x0, .Lschedule_mangle_last bl _vpaes_schedule_mangle // save key n+2 bl _vpaes_schedule_192_smear b .Loop_schedule_192 ## ## .aes_schedule_256 ## ## 256-bit specific part of key schedule. ## ## The structure here is very similar to the 128-bit ## schedule, but with an additional "low side" in ## %xmm6. The low side's rounds are the same as the ## high side's, except no rcon and no rotation. ## .align 4 .Lschedule_256: ld1 {v0.16b}, [x0] // vmovdqu 16(%rdi),%xmm0 # load key part 2 (unaligned) bl _vpaes_schedule_transform // input transform mov x0, #7 // mov $7, %esi .Loop_schedule_256: sub x0, x0, #1 // dec %esi bl _vpaes_schedule_mangle // output low result mov v6.16b, v0.16b // vmovdqa %xmm0, %xmm6 # save cur_lo in xmm6 // high round bl _vpaes_schedule_round cbz x0, .Lschedule_mangle_last bl _vpaes_schedule_mangle // low round. swap xmm7 and xmm6 dup v0.4s, v0.s[3] // vpshufd $0xFF, %xmm0, %xmm0 movi v4.16b, #0 mov v5.16b, v7.16b // vmovdqa %xmm7, %xmm5 mov v7.16b, v6.16b // vmovdqa %xmm6, %xmm7 bl _vpaes_schedule_low_round mov v7.16b, v5.16b // vmovdqa %xmm5, %xmm7 b .Loop_schedule_256 ## ## .aes_schedule_mangle_last ## ## Mangler for last round of key schedule ## Mangles %xmm0 ## when encrypting, outputs out(%xmm0) ^ 63 ## when decrypting, outputs unskew(%xmm0) ## ## Always called right before return... jumps to cleanup and exits ## .align 4 .Lschedule_mangle_last: // schedule last round key from xmm0 adrp x11, .Lk_deskew // lea .Lk_deskew(%rip),%r11 # prepare to deskew add x11, x11, :lo12:.Lk_deskew cbnz w3, .Lschedule_mangle_last_dec // encrypting ld1 {v1.2d}, [x8] // vmovdqa (%r8,%r10),%xmm1 adrp x11, .Lk_opt // lea .Lk_opt(%rip), %r11 # prepare to output transform add x11, x11, :lo12:.Lk_opt add x2, x2, #32 // add $32, %rdx tbl v0.16b, {v0.16b}, v1.16b // vpshufb %xmm1, %xmm0, %xmm0 # output permute .Lschedule_mangle_last_dec: ld1 {v20.2d,v21.2d}, [x11] // reload constants sub x2, x2, #16 // add $-16, %rdx eor v0.16b, v0.16b, v16.16b // vpxor .Lk_s63(%rip), %xmm0, %xmm0 bl _vpaes_schedule_transform // output transform st1 {v0.2d}, [x2] // vmovdqu %xmm0, (%rdx) # save last key // cleanup eor v0.16b, v0.16b, v0.16b // vpxor %xmm0, %xmm0, %xmm0 eor v1.16b, v1.16b, v1.16b // vpxor %xmm1, %xmm1, %xmm1 eor v2.16b, v2.16b, v2.16b // vpxor %xmm2, %xmm2, %xmm2 eor v3.16b, v3.16b, v3.16b // vpxor %xmm3, %xmm3, %xmm3 eor v4.16b, v4.16b, v4.16b // vpxor %xmm4, %xmm4, %xmm4 eor v5.16b, v5.16b, v5.16b // vpxor %xmm5, %xmm5, %xmm5 eor v6.16b, v6.16b, v6.16b // vpxor %xmm6, %xmm6, %xmm6 eor v7.16b, v7.16b, v7.16b // vpxor %xmm7, %xmm7, %xmm7 ldp x29, x30, [sp],#16 AARCH64_VALIDATE_LINK_REGISTER ret .size _vpaes_schedule_core,.-_vpaes_schedule_core ## ## .aes_schedule_192_smear ## ## Smear the short, low side in the 192-bit key schedule. ## ## Inputs: ## %xmm7: high side, b a x y ## %xmm6: low side, d c 0 0 ## %xmm13: 0 ## ## Outputs: ## %xmm6: b+c+d b+c 0 0 ## %xmm0: b+c+d b+c b a ## .type _vpaes_schedule_192_smear,%function .align 4 _vpaes_schedule_192_smear: movi v1.16b, #0 dup v0.4s, v7.s[3] ins v1.s[3], v6.s[2] // vpshufd $0x80, %xmm6, %xmm1 # d c 0 0 -> c 0 0 0 ins v0.s[0], v7.s[2] // vpshufd $0xFE, %xmm7, %xmm0 # b a _ _ -> b b b a eor v6.16b, v6.16b, v1.16b // vpxor %xmm1, %xmm6, %xmm6 # -> c+d c 0 0 eor v1.16b, v1.16b, v1.16b // vpxor %xmm1, %xmm1, %xmm1 eor v6.16b, v6.16b, v0.16b // vpxor %xmm0, %xmm6, %xmm6 # -> b+c+d b+c b a mov v0.16b, v6.16b // vmovdqa %xmm6, %xmm0 ins v6.d[0], v1.d[0] // vmovhlps %xmm1, %xmm6, %xmm6 # clobber low side with zeros ret .size _vpaes_schedule_192_smear,.-_vpaes_schedule_192_smear ## ## .aes_schedule_round ## ## Runs one main round of the key schedule on %xmm0, %xmm7 ## ## Specifically, runs subbytes on the high dword of %xmm0 ## then rotates it by one byte and xors into the low dword of ## %xmm7. ## ## Adds rcon from low byte of %xmm8, then rotates %xmm8 for ## next rcon. ## ## Smears the dwords of %xmm7 by xoring the low into the ## second low, result into third, result into highest. ## ## Returns results in %xmm7 = %xmm0. ## Clobbers %xmm1-%xmm4, %r11. ## .type _vpaes_schedule_round,%function .align 4 _vpaes_schedule_round: // extract rcon from xmm8 movi v4.16b, #0 // vpxor %xmm4, %xmm4, %xmm4 ext v1.16b, v8.16b, v4.16b, #15 // vpalignr $15, %xmm8, %xmm4, %xmm1 ext v8.16b, v8.16b, v8.16b, #15 // vpalignr $15, %xmm8, %xmm8, %xmm8 eor v7.16b, v7.16b, v1.16b // vpxor %xmm1, %xmm7, %xmm7 // rotate dup v0.4s, v0.s[3] // vpshufd $0xFF, %xmm0, %xmm0 ext v0.16b, v0.16b, v0.16b, #1 // vpalignr $1, %xmm0, %xmm0, %xmm0 // fall through... // low round: same as high round, but no rotation and no rcon. _vpaes_schedule_low_round: // smear xmm7 ext v1.16b, v4.16b, v7.16b, #12 // vpslldq $4, %xmm7, %xmm1 eor v7.16b, v7.16b, v1.16b // vpxor %xmm1, %xmm7, %xmm7 ext v4.16b, v4.16b, v7.16b, #8 // vpslldq $8, %xmm7, %xmm4 // subbytes and v1.16b, v0.16b, v17.16b // vpand %xmm9, %xmm0, %xmm1 # 0 = k ushr v0.16b, v0.16b, #4 // vpsrlb $4, %xmm0, %xmm0 # 1 = i eor v7.16b, v7.16b, v4.16b // vpxor %xmm4, %xmm7, %xmm7 tbl v2.16b, {v19.16b}, v1.16b // vpshufb %xmm1, %xmm11, %xmm2 # 2 = a/k eor v1.16b, v1.16b, v0.16b // vpxor %xmm0, %xmm1, %xmm1 # 0 = j tbl v3.16b, {v18.16b}, v0.16b // vpshufb %xmm0, %xmm10, %xmm3 # 3 = 1/i eor v3.16b, v3.16b, v2.16b // vpxor %xmm2, %xmm3, %xmm3 # 3 = iak = 1/i + a/k tbl v4.16b, {v18.16b}, v1.16b // vpshufb %xmm1, %xmm10, %xmm4 # 4 = 1/j eor v7.16b, v7.16b, v16.16b // vpxor .Lk_s63(%rip), %xmm7, %xmm7 tbl v3.16b, {v18.16b}, v3.16b // vpshufb %xmm3, %xmm10, %xmm3 # 2 = 1/iak eor v4.16b, v4.16b, v2.16b // vpxor %xmm2, %xmm4, %xmm4 # 4 = jak = 1/j + a/k tbl v2.16b, {v18.16b}, v4.16b // vpshufb %xmm4, %xmm10, %xmm2 # 3 = 1/jak eor v3.16b, v3.16b, v1.16b // vpxor %xmm1, %xmm3, %xmm3 # 2 = io eor v2.16b, v2.16b, v0.16b // vpxor %xmm0, %xmm2, %xmm2 # 3 = jo tbl v4.16b, {v23.16b}, v3.16b // vpshufb %xmm3, %xmm13, %xmm4 # 4 = sbou tbl v1.16b, {v22.16b}, v2.16b // vpshufb %xmm2, %xmm12, %xmm1 # 0 = sb1t eor v1.16b, v1.16b, v4.16b // vpxor %xmm4, %xmm1, %xmm1 # 0 = sbox output // add in smeared stuff eor v0.16b, v1.16b, v7.16b // vpxor %xmm7, %xmm1, %xmm0 eor v7.16b, v1.16b, v7.16b // vmovdqa %xmm0, %xmm7 ret .size _vpaes_schedule_round,.-_vpaes_schedule_round ## ## .aes_schedule_transform ## ## Linear-transform %xmm0 according to tables at (%r11) ## ## Requires that %xmm9 = 0x0F0F... as in preheat ## Output in %xmm0 ## Clobbers %xmm1, %xmm2 ## .type _vpaes_schedule_transform,%function .align 4 _vpaes_schedule_transform: and v1.16b, v0.16b, v17.16b // vpand %xmm9, %xmm0, %xmm1 ushr v0.16b, v0.16b, #4 // vpsrlb $4, %xmm0, %xmm0 // vmovdqa (%r11), %xmm2 # lo tbl v2.16b, {v20.16b}, v1.16b // vpshufb %xmm1, %xmm2, %xmm2 // vmovdqa 16(%r11), %xmm1 # hi tbl v0.16b, {v21.16b}, v0.16b // vpshufb %xmm0, %xmm1, %xmm0 eor v0.16b, v0.16b, v2.16b // vpxor %xmm2, %xmm0, %xmm0 ret .size _vpaes_schedule_transform,.-_vpaes_schedule_transform ## ## .aes_schedule_mangle ## ## Mangle xmm0 from (basis-transformed) standard version ## to our version. ## ## On encrypt, ## xor with 0x63 ## multiply by circulant 0,1,1,1 ## apply shiftrows transform ## ## On decrypt, ## xor with 0x63 ## multiply by "inverse mixcolumns" circulant E,B,D,9 ## deskew ## apply shiftrows transform ## ## ## Writes out to (%rdx), and increments or decrements it ## Keeps track of round number mod 4 in %r8 ## Preserves xmm0 ## Clobbers xmm1-xmm5 ## .type _vpaes_schedule_mangle,%function .align 4 _vpaes_schedule_mangle: mov v4.16b, v0.16b // vmovdqa %xmm0, %xmm4 # save xmm0 for later // vmovdqa .Lk_mc_forward(%rip),%xmm5 // encrypting eor v4.16b, v0.16b, v16.16b // vpxor .Lk_s63(%rip), %xmm0, %xmm4 add x2, x2, #16 // add $16, %rdx tbl v4.16b, {v4.16b}, v9.16b // vpshufb %xmm5, %xmm4, %xmm4 tbl v1.16b, {v4.16b}, v9.16b // vpshufb %xmm5, %xmm4, %xmm1 tbl v3.16b, {v1.16b}, v9.16b // vpshufb %xmm5, %xmm1, %xmm3 eor v4.16b, v4.16b, v1.16b // vpxor %xmm1, %xmm4, %xmm4 ld1 {v1.2d}, [x8] // vmovdqa (%r8,%r10), %xmm1 eor v3.16b, v3.16b, v4.16b // vpxor %xmm4, %xmm3, %xmm3 .Lschedule_mangle_both: tbl v3.16b, {v3.16b}, v1.16b // vpshufb %xmm1, %xmm3, %xmm3 add x8, x8, #48 // add $-16, %r8 and x8, x8, #~(1<<6) // and $0x30, %r8 st1 {v3.2d}, [x2] // vmovdqu %xmm3, (%rdx) ret .size _vpaes_schedule_mangle,.-_vpaes_schedule_mangle .globl vpaes_set_encrypt_key .hidden vpaes_set_encrypt_key .type vpaes_set_encrypt_key,%function .align 4 vpaes_set_encrypt_key: AARCH64_SIGN_LINK_REGISTER stp x29,x30,[sp,#-16]! add x29,sp,#0 stp d8,d9,[sp,#-16]! // ABI spec says so lsr w9, w1, #5 // shr $5,%eax add w9, w9, #5 // $5,%eax str w9, [x2,#240] // mov %eax,240(%rdx) # AES_KEY->rounds = nbits/32+5; mov w3, #0 // mov $0,%ecx mov x8, #0x30 // mov $0x30,%r8d bl _vpaes_schedule_core eor x0, x0, x0 ldp d8,d9,[sp],#16 ldp x29,x30,[sp],#16 AARCH64_VALIDATE_LINK_REGISTER ret .size vpaes_set_encrypt_key,.-vpaes_set_encrypt_key .globl vpaes_ctr32_encrypt_blocks .hidden vpaes_ctr32_encrypt_blocks .type vpaes_ctr32_encrypt_blocks,%function .align 4 vpaes_ctr32_encrypt_blocks: AARCH64_SIGN_LINK_REGISTER stp x29,x30,[sp,#-16]! add x29,sp,#0 stp d8,d9,[sp,#-16]! // ABI spec says so stp d10,d11,[sp,#-16]! stp d12,d13,[sp,#-16]! stp d14,d15,[sp,#-16]! cbz x2, .Lctr32_done // Note, unlike the other functions, x2 here is measured in blocks, // not bytes. mov x17, x2 mov x2, x3 // Load the IV and counter portion. ldr w6, [x4, #12] ld1 {v7.16b}, [x4] bl _vpaes_encrypt_preheat tst x17, #1 rev w6, w6 // The counter is big-endian. b.eq .Lctr32_prep_loop // Handle one block so the remaining block count is even for // _vpaes_encrypt_2x. ld1 {v6.16b}, [x0], #16 // .Load input ahead of time bl _vpaes_encrypt_core eor v0.16b, v0.16b, v6.16b // XOR input and result st1 {v0.16b}, [x1], #16 subs x17, x17, #1 // Update the counter. add w6, w6, #1 rev w7, w6 mov v7.s[3], w7 b.ls .Lctr32_done .Lctr32_prep_loop: // _vpaes_encrypt_core takes its input from v7, while _vpaes_encrypt_2x // uses v14 and v15. mov v15.16b, v7.16b mov v14.16b, v7.16b add w6, w6, #1 rev w7, w6 mov v15.s[3], w7 .Lctr32_loop: ld1 {v6.16b,v7.16b}, [x0], #32 // .Load input ahead of time bl _vpaes_encrypt_2x eor v0.16b, v0.16b, v6.16b // XOR input and result eor v1.16b, v1.16b, v7.16b // XOR input and result (#2) st1 {v0.16b,v1.16b}, [x1], #32 subs x17, x17, #2 // Update the counter. add w7, w6, #1 add w6, w6, #2 rev w7, w7 mov v14.s[3], w7 rev w7, w6 mov v15.s[3], w7 b.hi .Lctr32_loop .Lctr32_done: ldp d14,d15,[sp],#16 ldp d12,d13,[sp],#16 ldp d10,d11,[sp],#16 ldp d8,d9,[sp],#16 ldp x29,x30,[sp],#16 AARCH64_VALIDATE_LINK_REGISTER ret .size vpaes_ctr32_encrypt_blocks,.-vpaes_ctr32_encrypt_blocks #endif // !OPENSSL_NO_ASM && defined(OPENSSL_AARCH64) && defined(__ELF__)
mktmansour/MKT-KSA-Geolocation-Security
28,780
.cargo-home/registry/src/index.crates.io-1949cf8c6b5b557f/ring-0.17.14/pregenerated/chacha-armv4-linux32.S
// This file is generated from a similarly-named Perl script in the BoringSSL // source tree. Do not edit by hand. #include <ring-core/asm_base.h> #if !defined(OPENSSL_NO_ASM) && defined(OPENSSL_ARM) && defined(__ELF__) @ Silence ARMv8 deprecated IT instruction warnings. This file is used by both @ ARMv7 and ARMv8 processors and does not use ARMv8 instructions. .arch armv7-a .text #if defined(__thumb2__) || defined(__clang__) .syntax unified #endif #if defined(__thumb2__) .thumb #else .code 32 #endif #if defined(__thumb2__) || defined(__clang__) #define ldrhsb ldrbhs #endif .align 5 .Lsigma: .long 0x61707865,0x3320646e,0x79622d32,0x6b206574 @ endian-neutral .Lone: .long 1,0,0,0 .globl ChaCha20_ctr32_nohw .hidden ChaCha20_ctr32_nohw .type ChaCha20_ctr32_nohw,%function .align 5 ChaCha20_ctr32_nohw: ldr r12,[sp,#0] @ pull pointer to counter and nonce stmdb sp!,{r0,r1,r2,r4-r11,lr} adr r14,.Lsigma ldmia r12,{r4,r5,r6,r7} @ load counter and nonce sub sp,sp,#4*(16) @ off-load area stmdb sp!,{r4,r5,r6,r7} @ copy counter and nonce ldmia r3,{r4,r5,r6,r7,r8,r9,r10,r11} @ load key ldmia r14,{r0,r1,r2,r3} @ load sigma stmdb sp!,{r4,r5,r6,r7,r8,r9,r10,r11} @ copy key stmdb sp!,{r0,r1,r2,r3} @ copy sigma str r10,[sp,#4*(16+10)] @ off-load "rx" str r11,[sp,#4*(16+11)] @ off-load "rx" b .Loop_outer_enter .align 4 .Loop_outer: ldmia sp,{r0,r1,r2,r3,r4,r5,r6,r7,r8,r9} @ load key material str r11,[sp,#4*(32+2)] @ save len str r12, [sp,#4*(32+1)] @ save inp str r14, [sp,#4*(32+0)] @ save out .Loop_outer_enter: ldr r11, [sp,#4*(15)] ldr r12,[sp,#4*(12)] @ modulo-scheduled load ldr r10, [sp,#4*(13)] ldr r14,[sp,#4*(14)] str r11, [sp,#4*(16+15)] mov r11,#10 b .Loop .align 4 .Loop: subs r11,r11,#1 add r0,r0,r4 mov r12,r12,ror#16 add r1,r1,r5 mov r10,r10,ror#16 eor r12,r12,r0,ror#16 eor r10,r10,r1,ror#16 add r8,r8,r12 mov r4,r4,ror#20 add r9,r9,r10 mov r5,r5,ror#20 eor r4,r4,r8,ror#20 eor r5,r5,r9,ror#20 add r0,r0,r4 mov r12,r12,ror#24 add r1,r1,r5 mov r10,r10,ror#24 eor r12,r12,r0,ror#24 eor r10,r10,r1,ror#24 add r8,r8,r12 mov r4,r4,ror#25 add r9,r9,r10 mov r5,r5,ror#25 str r10,[sp,#4*(16+13)] ldr r10,[sp,#4*(16+15)] eor r4,r4,r8,ror#25 eor r5,r5,r9,ror#25 str r8,[sp,#4*(16+8)] ldr r8,[sp,#4*(16+10)] add r2,r2,r6 mov r14,r14,ror#16 str r9,[sp,#4*(16+9)] ldr r9,[sp,#4*(16+11)] add r3,r3,r7 mov r10,r10,ror#16 eor r14,r14,r2,ror#16 eor r10,r10,r3,ror#16 add r8,r8,r14 mov r6,r6,ror#20 add r9,r9,r10 mov r7,r7,ror#20 eor r6,r6,r8,ror#20 eor r7,r7,r9,ror#20 add r2,r2,r6 mov r14,r14,ror#24 add r3,r3,r7 mov r10,r10,ror#24 eor r14,r14,r2,ror#24 eor r10,r10,r3,ror#24 add r8,r8,r14 mov r6,r6,ror#25 add r9,r9,r10 mov r7,r7,ror#25 eor r6,r6,r8,ror#25 eor r7,r7,r9,ror#25 add r0,r0,r5 mov r10,r10,ror#16 add r1,r1,r6 mov r12,r12,ror#16 eor r10,r10,r0,ror#16 eor r12,r12,r1,ror#16 add r8,r8,r10 mov r5,r5,ror#20 add r9,r9,r12 mov r6,r6,ror#20 eor r5,r5,r8,ror#20 eor r6,r6,r9,ror#20 add r0,r0,r5 mov r10,r10,ror#24 add r1,r1,r6 mov r12,r12,ror#24 eor r10,r10,r0,ror#24 eor r12,r12,r1,ror#24 add r8,r8,r10 mov r5,r5,ror#25 str r10,[sp,#4*(16+15)] ldr r10,[sp,#4*(16+13)] add r9,r9,r12 mov r6,r6,ror#25 eor r5,r5,r8,ror#25 eor r6,r6,r9,ror#25 str r8,[sp,#4*(16+10)] ldr r8,[sp,#4*(16+8)] add r2,r2,r7 mov r10,r10,ror#16 str r9,[sp,#4*(16+11)] ldr r9,[sp,#4*(16+9)] add r3,r3,r4 mov r14,r14,ror#16 eor r10,r10,r2,ror#16 eor r14,r14,r3,ror#16 add r8,r8,r10 mov r7,r7,ror#20 add r9,r9,r14 mov r4,r4,ror#20 eor r7,r7,r8,ror#20 eor r4,r4,r9,ror#20 add r2,r2,r7 mov r10,r10,ror#24 add r3,r3,r4 mov r14,r14,ror#24 eor r10,r10,r2,ror#24 eor r14,r14,r3,ror#24 add r8,r8,r10 mov r7,r7,ror#25 add r9,r9,r14 mov r4,r4,ror#25 eor r7,r7,r8,ror#25 eor r4,r4,r9,ror#25 bne .Loop ldr r11,[sp,#4*(32+2)] @ load len str r8, [sp,#4*(16+8)] @ modulo-scheduled store str r9, [sp,#4*(16+9)] str r12,[sp,#4*(16+12)] str r10, [sp,#4*(16+13)] str r14,[sp,#4*(16+14)] @ at this point we have first half of 512-bit result in @ rx and second half at sp+4*(16+8) cmp r11,#64 @ done yet? #ifdef __thumb2__ itete lo #endif addlo r12,sp,#4*(0) @ shortcut or ... ldrhs r12,[sp,#4*(32+1)] @ ... load inp addlo r14,sp,#4*(0) @ shortcut or ... ldrhs r14,[sp,#4*(32+0)] @ ... load out ldr r8,[sp,#4*(0)] @ load key material ldr r9,[sp,#4*(1)] #if __ARM_ARCH>=6 || !defined(__ARMEB__) # if __ARM_ARCH<7 orr r10,r12,r14 tst r10,#3 @ are input and output aligned? ldr r10,[sp,#4*(2)] bne .Lunaligned cmp r11,#64 @ restore flags # else ldr r10,[sp,#4*(2)] # endif ldr r11,[sp,#4*(3)] add r0,r0,r8 @ accumulate key material add r1,r1,r9 # ifdef __thumb2__ itt hs # endif ldrhs r8,[r12],#16 @ load input ldrhs r9,[r12,#-12] add r2,r2,r10 add r3,r3,r11 # ifdef __thumb2__ itt hs # endif ldrhs r10,[r12,#-8] ldrhs r11,[r12,#-4] # if __ARM_ARCH>=6 && defined(__ARMEB__) rev r0,r0 rev r1,r1 rev r2,r2 rev r3,r3 # endif # ifdef __thumb2__ itt hs # endif eorhs r0,r0,r8 @ xor with input eorhs r1,r1,r9 add r8,sp,#4*(4) str r0,[r14],#16 @ store output # ifdef __thumb2__ itt hs # endif eorhs r2,r2,r10 eorhs r3,r3,r11 ldmia r8,{r8,r9,r10,r11} @ load key material str r1,[r14,#-12] str r2,[r14,#-8] str r3,[r14,#-4] add r4,r4,r8 @ accumulate key material add r5,r5,r9 # ifdef __thumb2__ itt hs # endif ldrhs r8,[r12],#16 @ load input ldrhs r9,[r12,#-12] add r6,r6,r10 add r7,r7,r11 # ifdef __thumb2__ itt hs # endif ldrhs r10,[r12,#-8] ldrhs r11,[r12,#-4] # if __ARM_ARCH>=6 && defined(__ARMEB__) rev r4,r4 rev r5,r5 rev r6,r6 rev r7,r7 # endif # ifdef __thumb2__ itt hs # endif eorhs r4,r4,r8 eorhs r5,r5,r9 add r8,sp,#4*(8) str r4,[r14],#16 @ store output # ifdef __thumb2__ itt hs # endif eorhs r6,r6,r10 eorhs r7,r7,r11 str r5,[r14,#-12] ldmia r8,{r8,r9,r10,r11} @ load key material str r6,[r14,#-8] add r0,sp,#4*(16+8) str r7,[r14,#-4] ldmia r0,{r0,r1,r2,r3,r4,r5,r6,r7} @ load second half add r0,r0,r8 @ accumulate key material add r1,r1,r9 # ifdef __thumb2__ itt hs # endif ldrhs r8,[r12],#16 @ load input ldrhs r9,[r12,#-12] # ifdef __thumb2__ itt hi # endif strhi r10,[sp,#4*(16+10)] @ copy "rx" while at it strhi r11,[sp,#4*(16+11)] @ copy "rx" while at it add r2,r2,r10 add r3,r3,r11 # ifdef __thumb2__ itt hs # endif ldrhs r10,[r12,#-8] ldrhs r11,[r12,#-4] # if __ARM_ARCH>=6 && defined(__ARMEB__) rev r0,r0 rev r1,r1 rev r2,r2 rev r3,r3 # endif # ifdef __thumb2__ itt hs # endif eorhs r0,r0,r8 eorhs r1,r1,r9 add r8,sp,#4*(12) str r0,[r14],#16 @ store output # ifdef __thumb2__ itt hs # endif eorhs r2,r2,r10 eorhs r3,r3,r11 str r1,[r14,#-12] ldmia r8,{r8,r9,r10,r11} @ load key material str r2,[r14,#-8] str r3,[r14,#-4] add r4,r4,r8 @ accumulate key material add r5,r5,r9 # ifdef __thumb2__ itt hi # endif addhi r8,r8,#1 @ next counter value strhi r8,[sp,#4*(12)] @ save next counter value # ifdef __thumb2__ itt hs # endif ldrhs r8,[r12],#16 @ load input ldrhs r9,[r12,#-12] add r6,r6,r10 add r7,r7,r11 # ifdef __thumb2__ itt hs # endif ldrhs r10,[r12,#-8] ldrhs r11,[r12,#-4] # if __ARM_ARCH>=6 && defined(__ARMEB__) rev r4,r4 rev r5,r5 rev r6,r6 rev r7,r7 # endif # ifdef __thumb2__ itt hs # endif eorhs r4,r4,r8 eorhs r5,r5,r9 # ifdef __thumb2__ it ne # endif ldrne r8,[sp,#4*(32+2)] @ re-load len # ifdef __thumb2__ itt hs # endif eorhs r6,r6,r10 eorhs r7,r7,r11 str r4,[r14],#16 @ store output str r5,[r14,#-12] # ifdef __thumb2__ it hs # endif subhs r11,r8,#64 @ len-=64 str r6,[r14,#-8] str r7,[r14,#-4] bhi .Loop_outer beq .Ldone # if __ARM_ARCH<7 b .Ltail .align 4 .Lunaligned:@ unaligned endian-neutral path cmp r11,#64 @ restore flags # endif #endif #if __ARM_ARCH<7 ldr r11,[sp,#4*(3)] add r0,r0,r8 @ accumulate key material add r1,r1,r9 add r2,r2,r10 # ifdef __thumb2__ itete lo # endif eorlo r8,r8,r8 @ zero or ... ldrhsb r8,[r12],#16 @ ... load input eorlo r9,r9,r9 ldrhsb r9,[r12,#-12] add r3,r3,r11 # ifdef __thumb2__ itete lo # endif eorlo r10,r10,r10 ldrhsb r10,[r12,#-8] eorlo r11,r11,r11 ldrhsb r11,[r12,#-4] eor r0,r8,r0 @ xor with input (or zero) eor r1,r9,r1 # ifdef __thumb2__ itt hs # endif ldrhsb r8,[r12,#-15] @ load more input ldrhsb r9,[r12,#-11] eor r2,r10,r2 strb r0,[r14],#16 @ store output eor r3,r11,r3 # ifdef __thumb2__ itt hs # endif ldrhsb r10,[r12,#-7] ldrhsb r11,[r12,#-3] strb r1,[r14,#-12] eor r0,r8,r0,lsr#8 strb r2,[r14,#-8] eor r1,r9,r1,lsr#8 # ifdef __thumb2__ itt hs # endif ldrhsb r8,[r12,#-14] @ load more input ldrhsb r9,[r12,#-10] strb r3,[r14,#-4] eor r2,r10,r2,lsr#8 strb r0,[r14,#-15] eor r3,r11,r3,lsr#8 # ifdef __thumb2__ itt hs # endif ldrhsb r10,[r12,#-6] ldrhsb r11,[r12,#-2] strb r1,[r14,#-11] eor r0,r8,r0,lsr#8 strb r2,[r14,#-7] eor r1,r9,r1,lsr#8 # ifdef __thumb2__ itt hs # endif ldrhsb r8,[r12,#-13] @ load more input ldrhsb r9,[r12,#-9] strb r3,[r14,#-3] eor r2,r10,r2,lsr#8 strb r0,[r14,#-14] eor r3,r11,r3,lsr#8 # ifdef __thumb2__ itt hs # endif ldrhsb r10,[r12,#-5] ldrhsb r11,[r12,#-1] strb r1,[r14,#-10] strb r2,[r14,#-6] eor r0,r8,r0,lsr#8 strb r3,[r14,#-2] eor r1,r9,r1,lsr#8 strb r0,[r14,#-13] eor r2,r10,r2,lsr#8 strb r1,[r14,#-9] eor r3,r11,r3,lsr#8 strb r2,[r14,#-5] strb r3,[r14,#-1] add r8,sp,#4*(4+0) ldmia r8,{r8,r9,r10,r11} @ load key material add r0,sp,#4*(16+8) add r4,r4,r8 @ accumulate key material add r5,r5,r9 add r6,r6,r10 # ifdef __thumb2__ itete lo # endif eorlo r8,r8,r8 @ zero or ... ldrhsb r8,[r12],#16 @ ... load input eorlo r9,r9,r9 ldrhsb r9,[r12,#-12] add r7,r7,r11 # ifdef __thumb2__ itete lo # endif eorlo r10,r10,r10 ldrhsb r10,[r12,#-8] eorlo r11,r11,r11 ldrhsb r11,[r12,#-4] eor r4,r8,r4 @ xor with input (or zero) eor r5,r9,r5 # ifdef __thumb2__ itt hs # endif ldrhsb r8,[r12,#-15] @ load more input ldrhsb r9,[r12,#-11] eor r6,r10,r6 strb r4,[r14],#16 @ store output eor r7,r11,r7 # ifdef __thumb2__ itt hs # endif ldrhsb r10,[r12,#-7] ldrhsb r11,[r12,#-3] strb r5,[r14,#-12] eor r4,r8,r4,lsr#8 strb r6,[r14,#-8] eor r5,r9,r5,lsr#8 # ifdef __thumb2__ itt hs # endif ldrhsb r8,[r12,#-14] @ load more input ldrhsb r9,[r12,#-10] strb r7,[r14,#-4] eor r6,r10,r6,lsr#8 strb r4,[r14,#-15] eor r7,r11,r7,lsr#8 # ifdef __thumb2__ itt hs # endif ldrhsb r10,[r12,#-6] ldrhsb r11,[r12,#-2] strb r5,[r14,#-11] eor r4,r8,r4,lsr#8 strb r6,[r14,#-7] eor r5,r9,r5,lsr#8 # ifdef __thumb2__ itt hs # endif ldrhsb r8,[r12,#-13] @ load more input ldrhsb r9,[r12,#-9] strb r7,[r14,#-3] eor r6,r10,r6,lsr#8 strb r4,[r14,#-14] eor r7,r11,r7,lsr#8 # ifdef __thumb2__ itt hs # endif ldrhsb r10,[r12,#-5] ldrhsb r11,[r12,#-1] strb r5,[r14,#-10] strb r6,[r14,#-6] eor r4,r8,r4,lsr#8 strb r7,[r14,#-2] eor r5,r9,r5,lsr#8 strb r4,[r14,#-13] eor r6,r10,r6,lsr#8 strb r5,[r14,#-9] eor r7,r11,r7,lsr#8 strb r6,[r14,#-5] strb r7,[r14,#-1] add r8,sp,#4*(4+4) ldmia r8,{r8,r9,r10,r11} @ load key material ldmia r0,{r0,r1,r2,r3,r4,r5,r6,r7} @ load second half # ifdef __thumb2__ itt hi # endif strhi r10,[sp,#4*(16+10)] @ copy "rx" strhi r11,[sp,#4*(16+11)] @ copy "rx" add r0,r0,r8 @ accumulate key material add r1,r1,r9 add r2,r2,r10 # ifdef __thumb2__ itete lo # endif eorlo r8,r8,r8 @ zero or ... ldrhsb r8,[r12],#16 @ ... load input eorlo r9,r9,r9 ldrhsb r9,[r12,#-12] add r3,r3,r11 # ifdef __thumb2__ itete lo # endif eorlo r10,r10,r10 ldrhsb r10,[r12,#-8] eorlo r11,r11,r11 ldrhsb r11,[r12,#-4] eor r0,r8,r0 @ xor with input (or zero) eor r1,r9,r1 # ifdef __thumb2__ itt hs # endif ldrhsb r8,[r12,#-15] @ load more input ldrhsb r9,[r12,#-11] eor r2,r10,r2 strb r0,[r14],#16 @ store output eor r3,r11,r3 # ifdef __thumb2__ itt hs # endif ldrhsb r10,[r12,#-7] ldrhsb r11,[r12,#-3] strb r1,[r14,#-12] eor r0,r8,r0,lsr#8 strb r2,[r14,#-8] eor r1,r9,r1,lsr#8 # ifdef __thumb2__ itt hs # endif ldrhsb r8,[r12,#-14] @ load more input ldrhsb r9,[r12,#-10] strb r3,[r14,#-4] eor r2,r10,r2,lsr#8 strb r0,[r14,#-15] eor r3,r11,r3,lsr#8 # ifdef __thumb2__ itt hs # endif ldrhsb r10,[r12,#-6] ldrhsb r11,[r12,#-2] strb r1,[r14,#-11] eor r0,r8,r0,lsr#8 strb r2,[r14,#-7] eor r1,r9,r1,lsr#8 # ifdef __thumb2__ itt hs # endif ldrhsb r8,[r12,#-13] @ load more input ldrhsb r9,[r12,#-9] strb r3,[r14,#-3] eor r2,r10,r2,lsr#8 strb r0,[r14,#-14] eor r3,r11,r3,lsr#8 # ifdef __thumb2__ itt hs # endif ldrhsb r10,[r12,#-5] ldrhsb r11,[r12,#-1] strb r1,[r14,#-10] strb r2,[r14,#-6] eor r0,r8,r0,lsr#8 strb r3,[r14,#-2] eor r1,r9,r1,lsr#8 strb r0,[r14,#-13] eor r2,r10,r2,lsr#8 strb r1,[r14,#-9] eor r3,r11,r3,lsr#8 strb r2,[r14,#-5] strb r3,[r14,#-1] add r8,sp,#4*(4+8) ldmia r8,{r8,r9,r10,r11} @ load key material add r4,r4,r8 @ accumulate key material # ifdef __thumb2__ itt hi # endif addhi r8,r8,#1 @ next counter value strhi r8,[sp,#4*(12)] @ save next counter value add r5,r5,r9 add r6,r6,r10 # ifdef __thumb2__ itete lo # endif eorlo r8,r8,r8 @ zero or ... ldrhsb r8,[r12],#16 @ ... load input eorlo r9,r9,r9 ldrhsb r9,[r12,#-12] add r7,r7,r11 # ifdef __thumb2__ itete lo # endif eorlo r10,r10,r10 ldrhsb r10,[r12,#-8] eorlo r11,r11,r11 ldrhsb r11,[r12,#-4] eor r4,r8,r4 @ xor with input (or zero) eor r5,r9,r5 # ifdef __thumb2__ itt hs # endif ldrhsb r8,[r12,#-15] @ load more input ldrhsb r9,[r12,#-11] eor r6,r10,r6 strb r4,[r14],#16 @ store output eor r7,r11,r7 # ifdef __thumb2__ itt hs # endif ldrhsb r10,[r12,#-7] ldrhsb r11,[r12,#-3] strb r5,[r14,#-12] eor r4,r8,r4,lsr#8 strb r6,[r14,#-8] eor r5,r9,r5,lsr#8 # ifdef __thumb2__ itt hs # endif ldrhsb r8,[r12,#-14] @ load more input ldrhsb r9,[r12,#-10] strb r7,[r14,#-4] eor r6,r10,r6,lsr#8 strb r4,[r14,#-15] eor r7,r11,r7,lsr#8 # ifdef __thumb2__ itt hs # endif ldrhsb r10,[r12,#-6] ldrhsb r11,[r12,#-2] strb r5,[r14,#-11] eor r4,r8,r4,lsr#8 strb r6,[r14,#-7] eor r5,r9,r5,lsr#8 # ifdef __thumb2__ itt hs # endif ldrhsb r8,[r12,#-13] @ load more input ldrhsb r9,[r12,#-9] strb r7,[r14,#-3] eor r6,r10,r6,lsr#8 strb r4,[r14,#-14] eor r7,r11,r7,lsr#8 # ifdef __thumb2__ itt hs # endif ldrhsb r10,[r12,#-5] ldrhsb r11,[r12,#-1] strb r5,[r14,#-10] strb r6,[r14,#-6] eor r4,r8,r4,lsr#8 strb r7,[r14,#-2] eor r5,r9,r5,lsr#8 strb r4,[r14,#-13] eor r6,r10,r6,lsr#8 strb r5,[r14,#-9] eor r7,r11,r7,lsr#8 strb r6,[r14,#-5] strb r7,[r14,#-1] # ifdef __thumb2__ it ne # endif ldrne r8,[sp,#4*(32+2)] @ re-load len # ifdef __thumb2__ it hs # endif subhs r11,r8,#64 @ len-=64 bhi .Loop_outer beq .Ldone #endif .Ltail: ldr r12,[sp,#4*(32+1)] @ load inp add r9,sp,#4*(0) ldr r14,[sp,#4*(32+0)] @ load out .Loop_tail: ldrb r10,[r9],#1 @ read buffer on stack ldrb r11,[r12],#1 @ read input subs r8,r8,#1 eor r11,r11,r10 strb r11,[r14],#1 @ store output bne .Loop_tail .Ldone: add sp,sp,#4*(32+3) ldmia sp!,{r4,r5,r6,r7,r8,r9,r10,r11,pc} .size ChaCha20_ctr32_nohw,.-ChaCha20_ctr32_nohw #if __ARM_MAX_ARCH__>=7 .arch armv7-a .fpu neon .globl ChaCha20_ctr32_neon .hidden ChaCha20_ctr32_neon .type ChaCha20_ctr32_neon,%function .align 5 ChaCha20_ctr32_neon: ldr r12,[sp,#0] @ pull pointer to counter and nonce stmdb sp!,{r0,r1,r2,r4-r11,lr} adr r14,.Lsigma vstmdb sp!,{d8,d9,d10,d11,d12,d13,d14,d15} @ ABI spec says so stmdb sp!,{r0,r1,r2,r3} vld1.32 {q1,q2},[r3] @ load key ldmia r3,{r4,r5,r6,r7,r8,r9,r10,r11} @ load key sub sp,sp,#4*(16+16) vld1.32 {q3},[r12] @ load counter and nonce add r12,sp,#4*8 ldmia r14,{r0,r1,r2,r3} @ load sigma vld1.32 {q0},[r14]! @ load sigma vld1.32 {q12},[r14] @ one vst1.32 {q2,q3},[r12] @ copy 1/2key|counter|nonce vst1.32 {q0,q1},[sp] @ copy sigma|1/2key str r10,[sp,#4*(16+10)] @ off-load "rx" str r11,[sp,#4*(16+11)] @ off-load "rx" vshl.i32 d26,d24,#1 @ two vstr d24,[sp,#4*(16+0)] vshl.i32 d28,d24,#2 @ four vstr d26,[sp,#4*(16+2)] vmov q4,q0 vstr d28,[sp,#4*(16+4)] vmov q8,q0 vmov q5,q1 vmov q9,q1 b .Loop_neon_enter .align 4 .Loop_neon_outer: ldmia sp,{r0,r1,r2,r3,r4,r5,r6,r7,r8,r9} @ load key material cmp r11,#64*2 @ if len<=64*2 bls .Lbreak_neon @ switch to integer-only vmov q4,q0 str r11,[sp,#4*(32+2)] @ save len vmov q8,q0 str r12, [sp,#4*(32+1)] @ save inp vmov q5,q1 str r14, [sp,#4*(32+0)] @ save out vmov q9,q1 .Loop_neon_enter: ldr r11, [sp,#4*(15)] vadd.i32 q7,q3,q12 @ counter+1 ldr r12,[sp,#4*(12)] @ modulo-scheduled load vmov q6,q2 ldr r10, [sp,#4*(13)] vmov q10,q2 ldr r14,[sp,#4*(14)] vadd.i32 q11,q7,q12 @ counter+2 str r11, [sp,#4*(16+15)] mov r11,#10 add r12,r12,#3 @ counter+3 b .Loop_neon .align 4 .Loop_neon: subs r11,r11,#1 vadd.i32 q0,q0,q1 add r0,r0,r4 vadd.i32 q4,q4,q5 mov r12,r12,ror#16 vadd.i32 q8,q8,q9 add r1,r1,r5 veor q3,q3,q0 mov r10,r10,ror#16 veor q7,q7,q4 eor r12,r12,r0,ror#16 veor q11,q11,q8 eor r10,r10,r1,ror#16 vrev32.16 q3,q3 add r8,r8,r12 vrev32.16 q7,q7 mov r4,r4,ror#20 vrev32.16 q11,q11 add r9,r9,r10 vadd.i32 q2,q2,q3 mov r5,r5,ror#20 vadd.i32 q6,q6,q7 eor r4,r4,r8,ror#20 vadd.i32 q10,q10,q11 eor r5,r5,r9,ror#20 veor q12,q1,q2 add r0,r0,r4 veor q13,q5,q6 mov r12,r12,ror#24 veor q14,q9,q10 add r1,r1,r5 vshr.u32 q1,q12,#20 mov r10,r10,ror#24 vshr.u32 q5,q13,#20 eor r12,r12,r0,ror#24 vshr.u32 q9,q14,#20 eor r10,r10,r1,ror#24 vsli.32 q1,q12,#12 add r8,r8,r12 vsli.32 q5,q13,#12 mov r4,r4,ror#25 vsli.32 q9,q14,#12 add r9,r9,r10 vadd.i32 q0,q0,q1 mov r5,r5,ror#25 vadd.i32 q4,q4,q5 str r10,[sp,#4*(16+13)] vadd.i32 q8,q8,q9 ldr r10,[sp,#4*(16+15)] veor q12,q3,q0 eor r4,r4,r8,ror#25 veor q13,q7,q4 eor r5,r5,r9,ror#25 veor q14,q11,q8 str r8,[sp,#4*(16+8)] vshr.u32 q3,q12,#24 ldr r8,[sp,#4*(16+10)] vshr.u32 q7,q13,#24 add r2,r2,r6 vshr.u32 q11,q14,#24 mov r14,r14,ror#16 vsli.32 q3,q12,#8 str r9,[sp,#4*(16+9)] vsli.32 q7,q13,#8 ldr r9,[sp,#4*(16+11)] vsli.32 q11,q14,#8 add r3,r3,r7 vadd.i32 q2,q2,q3 mov r10,r10,ror#16 vadd.i32 q6,q6,q7 eor r14,r14,r2,ror#16 vadd.i32 q10,q10,q11 eor r10,r10,r3,ror#16 veor q12,q1,q2 add r8,r8,r14 veor q13,q5,q6 mov r6,r6,ror#20 veor q14,q9,q10 add r9,r9,r10 vshr.u32 q1,q12,#25 mov r7,r7,ror#20 vshr.u32 q5,q13,#25 eor r6,r6,r8,ror#20 vshr.u32 q9,q14,#25 eor r7,r7,r9,ror#20 vsli.32 q1,q12,#7 add r2,r2,r6 vsli.32 q5,q13,#7 mov r14,r14,ror#24 vsli.32 q9,q14,#7 add r3,r3,r7 vext.8 q2,q2,q2,#8 mov r10,r10,ror#24 vext.8 q6,q6,q6,#8 eor r14,r14,r2,ror#24 vext.8 q10,q10,q10,#8 eor r10,r10,r3,ror#24 vext.8 q1,q1,q1,#4 add r8,r8,r14 vext.8 q5,q5,q5,#4 mov r6,r6,ror#25 vext.8 q9,q9,q9,#4 add r9,r9,r10 vext.8 q3,q3,q3,#12 mov r7,r7,ror#25 vext.8 q7,q7,q7,#12 eor r6,r6,r8,ror#25 vext.8 q11,q11,q11,#12 eor r7,r7,r9,ror#25 vadd.i32 q0,q0,q1 add r0,r0,r5 vadd.i32 q4,q4,q5 mov r10,r10,ror#16 vadd.i32 q8,q8,q9 add r1,r1,r6 veor q3,q3,q0 mov r12,r12,ror#16 veor q7,q7,q4 eor r10,r10,r0,ror#16 veor q11,q11,q8 eor r12,r12,r1,ror#16 vrev32.16 q3,q3 add r8,r8,r10 vrev32.16 q7,q7 mov r5,r5,ror#20 vrev32.16 q11,q11 add r9,r9,r12 vadd.i32 q2,q2,q3 mov r6,r6,ror#20 vadd.i32 q6,q6,q7 eor r5,r5,r8,ror#20 vadd.i32 q10,q10,q11 eor r6,r6,r9,ror#20 veor q12,q1,q2 add r0,r0,r5 veor q13,q5,q6 mov r10,r10,ror#24 veor q14,q9,q10 add r1,r1,r6 vshr.u32 q1,q12,#20 mov r12,r12,ror#24 vshr.u32 q5,q13,#20 eor r10,r10,r0,ror#24 vshr.u32 q9,q14,#20 eor r12,r12,r1,ror#24 vsli.32 q1,q12,#12 add r8,r8,r10 vsli.32 q5,q13,#12 mov r5,r5,ror#25 vsli.32 q9,q14,#12 str r10,[sp,#4*(16+15)] vadd.i32 q0,q0,q1 ldr r10,[sp,#4*(16+13)] vadd.i32 q4,q4,q5 add r9,r9,r12 vadd.i32 q8,q8,q9 mov r6,r6,ror#25 veor q12,q3,q0 eor r5,r5,r8,ror#25 veor q13,q7,q4 eor r6,r6,r9,ror#25 veor q14,q11,q8 str r8,[sp,#4*(16+10)] vshr.u32 q3,q12,#24 ldr r8,[sp,#4*(16+8)] vshr.u32 q7,q13,#24 add r2,r2,r7 vshr.u32 q11,q14,#24 mov r10,r10,ror#16 vsli.32 q3,q12,#8 str r9,[sp,#4*(16+11)] vsli.32 q7,q13,#8 ldr r9,[sp,#4*(16+9)] vsli.32 q11,q14,#8 add r3,r3,r4 vadd.i32 q2,q2,q3 mov r14,r14,ror#16 vadd.i32 q6,q6,q7 eor r10,r10,r2,ror#16 vadd.i32 q10,q10,q11 eor r14,r14,r3,ror#16 veor q12,q1,q2 add r8,r8,r10 veor q13,q5,q6 mov r7,r7,ror#20 veor q14,q9,q10 add r9,r9,r14 vshr.u32 q1,q12,#25 mov r4,r4,ror#20 vshr.u32 q5,q13,#25 eor r7,r7,r8,ror#20 vshr.u32 q9,q14,#25 eor r4,r4,r9,ror#20 vsli.32 q1,q12,#7 add r2,r2,r7 vsli.32 q5,q13,#7 mov r10,r10,ror#24 vsli.32 q9,q14,#7 add r3,r3,r4 vext.8 q2,q2,q2,#8 mov r14,r14,ror#24 vext.8 q6,q6,q6,#8 eor r10,r10,r2,ror#24 vext.8 q10,q10,q10,#8 eor r14,r14,r3,ror#24 vext.8 q1,q1,q1,#12 add r8,r8,r10 vext.8 q5,q5,q5,#12 mov r7,r7,ror#25 vext.8 q9,q9,q9,#12 add r9,r9,r14 vext.8 q3,q3,q3,#4 mov r4,r4,ror#25 vext.8 q7,q7,q7,#4 eor r7,r7,r8,ror#25 vext.8 q11,q11,q11,#4 eor r4,r4,r9,ror#25 bne .Loop_neon add r11,sp,#32 vld1.32 {q12,q13},[sp] @ load key material vld1.32 {q14,q15},[r11] ldr r11,[sp,#4*(32+2)] @ load len str r8, [sp,#4*(16+8)] @ modulo-scheduled store str r9, [sp,#4*(16+9)] str r12,[sp,#4*(16+12)] str r10, [sp,#4*(16+13)] str r14,[sp,#4*(16+14)] @ at this point we have first half of 512-bit result in @ rx and second half at sp+4*(16+8) ldr r12,[sp,#4*(32+1)] @ load inp ldr r14,[sp,#4*(32+0)] @ load out vadd.i32 q0,q0,q12 @ accumulate key material vadd.i32 q4,q4,q12 vadd.i32 q8,q8,q12 vldr d24,[sp,#4*(16+0)] @ one vadd.i32 q1,q1,q13 vadd.i32 q5,q5,q13 vadd.i32 q9,q9,q13 vldr d26,[sp,#4*(16+2)] @ two vadd.i32 q2,q2,q14 vadd.i32 q6,q6,q14 vadd.i32 q10,q10,q14 vadd.i32 d14,d14,d24 @ counter+1 vadd.i32 d22,d22,d26 @ counter+2 vadd.i32 q3,q3,q15 vadd.i32 q7,q7,q15 vadd.i32 q11,q11,q15 cmp r11,#64*4 blo .Ltail_neon vld1.8 {q12,q13},[r12]! @ load input mov r11,sp vld1.8 {q14,q15},[r12]! veor q0,q0,q12 @ xor with input veor q1,q1,q13 vld1.8 {q12,q13},[r12]! veor q2,q2,q14 veor q3,q3,q15 vld1.8 {q14,q15},[r12]! veor q4,q4,q12 vst1.8 {q0,q1},[r14]! @ store output veor q5,q5,q13 vld1.8 {q12,q13},[r12]! veor q6,q6,q14 vst1.8 {q2,q3},[r14]! veor q7,q7,q15 vld1.8 {q14,q15},[r12]! veor q8,q8,q12 vld1.32 {q0,q1},[r11]! @ load for next iteration veor d25,d25,d25 vldr d24,[sp,#4*(16+4)] @ four veor q9,q9,q13 vld1.32 {q2,q3},[r11] veor q10,q10,q14 vst1.8 {q4,q5},[r14]! veor q11,q11,q15 vst1.8 {q6,q7},[r14]! vadd.i32 d6,d6,d24 @ next counter value vldr d24,[sp,#4*(16+0)] @ one ldmia sp,{r8,r9,r10,r11} @ load key material add r0,r0,r8 @ accumulate key material ldr r8,[r12],#16 @ load input vst1.8 {q8,q9},[r14]! add r1,r1,r9 ldr r9,[r12,#-12] vst1.8 {q10,q11},[r14]! add r2,r2,r10 ldr r10,[r12,#-8] add r3,r3,r11 ldr r11,[r12,#-4] # ifdef __ARMEB__ rev r0,r0 rev r1,r1 rev r2,r2 rev r3,r3 # endif eor r0,r0,r8 @ xor with input add r8,sp,#4*(4) eor r1,r1,r9 str r0,[r14],#16 @ store output eor r2,r2,r10 str r1,[r14,#-12] eor r3,r3,r11 ldmia r8,{r8,r9,r10,r11} @ load key material str r2,[r14,#-8] str r3,[r14,#-4] add r4,r4,r8 @ accumulate key material ldr r8,[r12],#16 @ load input add r5,r5,r9 ldr r9,[r12,#-12] add r6,r6,r10 ldr r10,[r12,#-8] add r7,r7,r11 ldr r11,[r12,#-4] # ifdef __ARMEB__ rev r4,r4 rev r5,r5 rev r6,r6 rev r7,r7 # endif eor r4,r4,r8 add r8,sp,#4*(8) eor r5,r5,r9 str r4,[r14],#16 @ store output eor r6,r6,r10 str r5,[r14,#-12] eor r7,r7,r11 ldmia r8,{r8,r9,r10,r11} @ load key material str r6,[r14,#-8] add r0,sp,#4*(16+8) str r7,[r14,#-4] ldmia r0,{r0,r1,r2,r3,r4,r5,r6,r7} @ load second half add r0,r0,r8 @ accumulate key material ldr r8,[r12],#16 @ load input add r1,r1,r9 ldr r9,[r12,#-12] # ifdef __thumb2__ it hi # endif strhi r10,[sp,#4*(16+10)] @ copy "rx" while at it add r2,r2,r10 ldr r10,[r12,#-8] # ifdef __thumb2__ it hi # endif strhi r11,[sp,#4*(16+11)] @ copy "rx" while at it add r3,r3,r11 ldr r11,[r12,#-4] # ifdef __ARMEB__ rev r0,r0 rev r1,r1 rev r2,r2 rev r3,r3 # endif eor r0,r0,r8 add r8,sp,#4*(12) eor r1,r1,r9 str r0,[r14],#16 @ store output eor r2,r2,r10 str r1,[r14,#-12] eor r3,r3,r11 ldmia r8,{r8,r9,r10,r11} @ load key material str r2,[r14,#-8] str r3,[r14,#-4] add r4,r4,r8 @ accumulate key material add r8,r8,#4 @ next counter value add r5,r5,r9 str r8,[sp,#4*(12)] @ save next counter value ldr r8,[r12],#16 @ load input add r6,r6,r10 add r4,r4,#3 @ counter+3 ldr r9,[r12,#-12] add r7,r7,r11 ldr r10,[r12,#-8] ldr r11,[r12,#-4] # ifdef __ARMEB__ rev r4,r4 rev r5,r5 rev r6,r6 rev r7,r7 # endif eor r4,r4,r8 # ifdef __thumb2__ it hi # endif ldrhi r8,[sp,#4*(32+2)] @ re-load len eor r5,r5,r9 eor r6,r6,r10 str r4,[r14],#16 @ store output eor r7,r7,r11 str r5,[r14,#-12] sub r11,r8,#64*4 @ len-=64*4 str r6,[r14,#-8] str r7,[r14,#-4] bhi .Loop_neon_outer b .Ldone_neon .align 4 .Lbreak_neon: @ harmonize NEON and integer-only stack frames: load data @ from NEON frame, but save to integer-only one; distance @ between the two is 4*(32+4+16-32)=4*(20). str r11, [sp,#4*(20+32+2)] @ save len add r11,sp,#4*(32+4) str r12, [sp,#4*(20+32+1)] @ save inp str r14, [sp,#4*(20+32+0)] @ save out ldr r12,[sp,#4*(16+10)] ldr r14,[sp,#4*(16+11)] vldmia r11,{d8,d9,d10,d11,d12,d13,d14,d15} @ fulfill ABI requirement str r12,[sp,#4*(20+16+10)] @ copy "rx" str r14,[sp,#4*(20+16+11)] @ copy "rx" ldr r11, [sp,#4*(15)] ldr r12,[sp,#4*(12)] @ modulo-scheduled load ldr r10, [sp,#4*(13)] ldr r14,[sp,#4*(14)] str r11, [sp,#4*(20+16+15)] add r11,sp,#4*(20) vst1.32 {q0,q1},[r11]! @ copy key add sp,sp,#4*(20) @ switch frame vst1.32 {q2,q3},[r11] mov r11,#10 b .Loop @ go integer-only .align 4 .Ltail_neon: cmp r11,#64*3 bhs .L192_or_more_neon cmp r11,#64*2 bhs .L128_or_more_neon cmp r11,#64*1 bhs .L64_or_more_neon add r8,sp,#4*(8) vst1.8 {q0,q1},[sp] add r10,sp,#4*(0) vst1.8 {q2,q3},[r8] b .Loop_tail_neon .align 4 .L64_or_more_neon: vld1.8 {q12,q13},[r12]! vld1.8 {q14,q15},[r12]! veor q0,q0,q12 veor q1,q1,q13 veor q2,q2,q14 veor q3,q3,q15 vst1.8 {q0,q1},[r14]! vst1.8 {q2,q3},[r14]! beq .Ldone_neon add r8,sp,#4*(8) vst1.8 {q4,q5},[sp] add r10,sp,#4*(0) vst1.8 {q6,q7},[r8] sub r11,r11,#64*1 @ len-=64*1 b .Loop_tail_neon .align 4 .L128_or_more_neon: vld1.8 {q12,q13},[r12]! vld1.8 {q14,q15},[r12]! veor q0,q0,q12 veor q1,q1,q13 vld1.8 {q12,q13},[r12]! veor q2,q2,q14 veor q3,q3,q15 vld1.8 {q14,q15},[r12]! veor q4,q4,q12 veor q5,q5,q13 vst1.8 {q0,q1},[r14]! veor q6,q6,q14 vst1.8 {q2,q3},[r14]! veor q7,q7,q15 vst1.8 {q4,q5},[r14]! vst1.8 {q6,q7},[r14]! beq .Ldone_neon add r8,sp,#4*(8) vst1.8 {q8,q9},[sp] add r10,sp,#4*(0) vst1.8 {q10,q11},[r8] sub r11,r11,#64*2 @ len-=64*2 b .Loop_tail_neon .align 4 .L192_or_more_neon: vld1.8 {q12,q13},[r12]! vld1.8 {q14,q15},[r12]! veor q0,q0,q12 veor q1,q1,q13 vld1.8 {q12,q13},[r12]! veor q2,q2,q14 veor q3,q3,q15 vld1.8 {q14,q15},[r12]! veor q4,q4,q12 veor q5,q5,q13 vld1.8 {q12,q13},[r12]! veor q6,q6,q14 vst1.8 {q0,q1},[r14]! veor q7,q7,q15 vld1.8 {q14,q15},[r12]! veor q8,q8,q12 vst1.8 {q2,q3},[r14]! veor q9,q9,q13 vst1.8 {q4,q5},[r14]! veor q10,q10,q14 vst1.8 {q6,q7},[r14]! veor q11,q11,q15 vst1.8 {q8,q9},[r14]! vst1.8 {q10,q11},[r14]! beq .Ldone_neon ldmia sp,{r8,r9,r10,r11} @ load key material add r0,r0,r8 @ accumulate key material add r8,sp,#4*(4) add r1,r1,r9 add r2,r2,r10 add r3,r3,r11 ldmia r8,{r8,r9,r10,r11} @ load key material add r4,r4,r8 @ accumulate key material add r8,sp,#4*(8) add r5,r5,r9 add r6,r6,r10 add r7,r7,r11 ldmia r8,{r8,r9,r10,r11} @ load key material # ifdef __ARMEB__ rev r0,r0 rev r1,r1 rev r2,r2 rev r3,r3 rev r4,r4 rev r5,r5 rev r6,r6 rev r7,r7 # endif stmia sp,{r0,r1,r2,r3,r4,r5,r6,r7} add r0,sp,#4*(16+8) ldmia r0,{r0,r1,r2,r3,r4,r5,r6,r7} @ load second half add r0,r0,r8 @ accumulate key material add r8,sp,#4*(12) add r1,r1,r9 add r2,r2,r10 add r3,r3,r11 ldmia r8,{r8,r9,r10,r11} @ load key material add r4,r4,r8 @ accumulate key material add r8,sp,#4*(8) add r5,r5,r9 add r4,r4,#3 @ counter+3 add r6,r6,r10 add r7,r7,r11 ldr r11,[sp,#4*(32+2)] @ re-load len # ifdef __ARMEB__ rev r0,r0 rev r1,r1 rev r2,r2 rev r3,r3 rev r4,r4 rev r5,r5 rev r6,r6 rev r7,r7 # endif stmia r8,{r0,r1,r2,r3,r4,r5,r6,r7} add r10,sp,#4*(0) sub r11,r11,#64*3 @ len-=64*3 .Loop_tail_neon: ldrb r8,[r10],#1 @ read buffer on stack ldrb r9,[r12],#1 @ read input subs r11,r11,#1 eor r8,r8,r9 strb r8,[r14],#1 @ store output bne .Loop_tail_neon .Ldone_neon: add sp,sp,#4*(32+4) vldmia sp,{d8,d9,d10,d11,d12,d13,d14,d15} add sp,sp,#4*(16+3) ldmia sp!,{r4,r5,r6,r7,r8,r9,r10,r11,pc} .size ChaCha20_ctr32_neon,.-ChaCha20_ctr32_neon #endif #endif // !OPENSSL_NO_ASM && defined(OPENSSL_ARM) && defined(__ELF__)
mktmansour/MKT-KSA-Geolocation-Security
68,707
.cargo-home/registry/src/index.crates.io-1949cf8c6b5b557f/ring-0.17.14/pregenerated/p256-x86_64-asm-macosx.S
// This file is generated from a similarly-named Perl script in the BoringSSL // source tree. Do not edit by hand. #include <ring-core/asm_base.h> #if !defined(OPENSSL_NO_ASM) && defined(OPENSSL_X86_64) && defined(__APPLE__) .text .section __DATA,__const .p2align 6 L$poly: .quad 0xffffffffffffffff, 0x00000000ffffffff, 0x0000000000000000, 0xffffffff00000001 L$One: .long 1,1,1,1,1,1,1,1 L$Two: .long 2,2,2,2,2,2,2,2 L$Three: .long 3,3,3,3,3,3,3,3 L$ONE_mont: .quad 0x0000000000000001, 0xffffffff00000000, 0xffffffffffffffff, 0x00000000fffffffe L$ord: .quad 0xf3b9cac2fc632551, 0xbce6faada7179e84, 0xffffffffffffffff, 0xffffffff00000000 L$ordK: .quad 0xccd1c8aaee00bc4f .text .globl _ecp_nistz256_neg .private_extern _ecp_nistz256_neg .p2align 5 _ecp_nistz256_neg: _CET_ENDBR pushq %r12 pushq %r13 L$neg_body: xorq %r8,%r8 xorq %r9,%r9 xorq %r10,%r10 xorq %r11,%r11 xorq %r13,%r13 subq 0(%rsi),%r8 sbbq 8(%rsi),%r9 sbbq 16(%rsi),%r10 movq %r8,%rax sbbq 24(%rsi),%r11 leaq L$poly(%rip),%rsi movq %r9,%rdx sbbq $0,%r13 addq 0(%rsi),%r8 movq %r10,%rcx adcq 8(%rsi),%r9 adcq 16(%rsi),%r10 movq %r11,%r12 adcq 24(%rsi),%r11 testq %r13,%r13 cmovzq %rax,%r8 cmovzq %rdx,%r9 movq %r8,0(%rdi) cmovzq %rcx,%r10 movq %r9,8(%rdi) cmovzq %r12,%r11 movq %r10,16(%rdi) movq %r11,24(%rdi) movq 0(%rsp),%r13 movq 8(%rsp),%r12 leaq 16(%rsp),%rsp L$neg_epilogue: ret .globl _ecp_nistz256_ord_mul_mont_nohw .private_extern _ecp_nistz256_ord_mul_mont_nohw .p2align 5 _ecp_nistz256_ord_mul_mont_nohw: _CET_ENDBR pushq %rbp pushq %rbx pushq %r12 pushq %r13 pushq %r14 pushq %r15 L$ord_mul_body: movq 0(%rdx),%rax movq %rdx,%rbx leaq L$ord(%rip),%r14 movq L$ordK(%rip),%r15 movq %rax,%rcx mulq 0(%rsi) movq %rax,%r8 movq %rcx,%rax movq %rdx,%r9 mulq 8(%rsi) addq %rax,%r9 movq %rcx,%rax adcq $0,%rdx movq %rdx,%r10 mulq 16(%rsi) addq %rax,%r10 movq %rcx,%rax adcq $0,%rdx movq %r8,%r13 imulq %r15,%r8 movq %rdx,%r11 mulq 24(%rsi) addq %rax,%r11 movq %r8,%rax adcq $0,%rdx movq %rdx,%r12 mulq 0(%r14) movq %r8,%rbp addq %rax,%r13 movq %r8,%rax adcq $0,%rdx movq %rdx,%rcx subq %r8,%r10 sbbq $0,%r8 mulq 8(%r14) addq %rcx,%r9 adcq $0,%rdx addq %rax,%r9 movq %rbp,%rax adcq %rdx,%r10 movq %rbp,%rdx adcq $0,%r8 shlq $32,%rax shrq $32,%rdx subq %rax,%r11 movq 8(%rbx),%rax sbbq %rdx,%rbp addq %r8,%r11 adcq %rbp,%r12 adcq $0,%r13 movq %rax,%rcx mulq 0(%rsi) addq %rax,%r9 movq %rcx,%rax adcq $0,%rdx movq %rdx,%rbp mulq 8(%rsi) addq %rbp,%r10 adcq $0,%rdx addq %rax,%r10 movq %rcx,%rax adcq $0,%rdx movq %rdx,%rbp mulq 16(%rsi) addq %rbp,%r11 adcq $0,%rdx addq %rax,%r11 movq %rcx,%rax adcq $0,%rdx movq %r9,%rcx imulq %r15,%r9 movq %rdx,%rbp mulq 24(%rsi) addq %rbp,%r12 adcq $0,%rdx xorq %r8,%r8 addq %rax,%r12 movq %r9,%rax adcq %rdx,%r13 adcq $0,%r8 mulq 0(%r14) movq %r9,%rbp addq %rax,%rcx movq %r9,%rax adcq %rdx,%rcx subq %r9,%r11 sbbq $0,%r9 mulq 8(%r14) addq %rcx,%r10 adcq $0,%rdx addq %rax,%r10 movq %rbp,%rax adcq %rdx,%r11 movq %rbp,%rdx adcq $0,%r9 shlq $32,%rax shrq $32,%rdx subq %rax,%r12 movq 16(%rbx),%rax sbbq %rdx,%rbp addq %r9,%r12 adcq %rbp,%r13 adcq $0,%r8 movq %rax,%rcx mulq 0(%rsi) addq %rax,%r10 movq %rcx,%rax adcq $0,%rdx movq %rdx,%rbp mulq 8(%rsi) addq %rbp,%r11 adcq $0,%rdx addq %rax,%r11 movq %rcx,%rax adcq $0,%rdx movq %rdx,%rbp mulq 16(%rsi) addq %rbp,%r12 adcq $0,%rdx addq %rax,%r12 movq %rcx,%rax adcq $0,%rdx movq %r10,%rcx imulq %r15,%r10 movq %rdx,%rbp mulq 24(%rsi) addq %rbp,%r13 adcq $0,%rdx xorq %r9,%r9 addq %rax,%r13 movq %r10,%rax adcq %rdx,%r8 adcq $0,%r9 mulq 0(%r14) movq %r10,%rbp addq %rax,%rcx movq %r10,%rax adcq %rdx,%rcx subq %r10,%r12 sbbq $0,%r10 mulq 8(%r14) addq %rcx,%r11 adcq $0,%rdx addq %rax,%r11 movq %rbp,%rax adcq %rdx,%r12 movq %rbp,%rdx adcq $0,%r10 shlq $32,%rax shrq $32,%rdx subq %rax,%r13 movq 24(%rbx),%rax sbbq %rdx,%rbp addq %r10,%r13 adcq %rbp,%r8 adcq $0,%r9 movq %rax,%rcx mulq 0(%rsi) addq %rax,%r11 movq %rcx,%rax adcq $0,%rdx movq %rdx,%rbp mulq 8(%rsi) addq %rbp,%r12 adcq $0,%rdx addq %rax,%r12 movq %rcx,%rax adcq $0,%rdx movq %rdx,%rbp mulq 16(%rsi) addq %rbp,%r13 adcq $0,%rdx addq %rax,%r13 movq %rcx,%rax adcq $0,%rdx movq %r11,%rcx imulq %r15,%r11 movq %rdx,%rbp mulq 24(%rsi) addq %rbp,%r8 adcq $0,%rdx xorq %r10,%r10 addq %rax,%r8 movq %r11,%rax adcq %rdx,%r9 adcq $0,%r10 mulq 0(%r14) movq %r11,%rbp addq %rax,%rcx movq %r11,%rax adcq %rdx,%rcx subq %r11,%r13 sbbq $0,%r11 mulq 8(%r14) addq %rcx,%r12 adcq $0,%rdx addq %rax,%r12 movq %rbp,%rax adcq %rdx,%r13 movq %rbp,%rdx adcq $0,%r11 shlq $32,%rax shrq $32,%rdx subq %rax,%r8 sbbq %rdx,%rbp addq %r11,%r8 adcq %rbp,%r9 adcq $0,%r10 movq %r12,%rsi subq 0(%r14),%r12 movq %r13,%r11 sbbq 8(%r14),%r13 movq %r8,%rcx sbbq 16(%r14),%r8 movq %r9,%rbp sbbq 24(%r14),%r9 sbbq $0,%r10 cmovcq %rsi,%r12 cmovcq %r11,%r13 cmovcq %rcx,%r8 cmovcq %rbp,%r9 movq %r12,0(%rdi) movq %r13,8(%rdi) movq %r8,16(%rdi) movq %r9,24(%rdi) movq 0(%rsp),%r15 movq 8(%rsp),%r14 movq 16(%rsp),%r13 movq 24(%rsp),%r12 movq 32(%rsp),%rbx movq 40(%rsp),%rbp leaq 48(%rsp),%rsp L$ord_mul_epilogue: ret .globl _ecp_nistz256_ord_sqr_mont_nohw .private_extern _ecp_nistz256_ord_sqr_mont_nohw .p2align 5 _ecp_nistz256_ord_sqr_mont_nohw: _CET_ENDBR pushq %rbp pushq %rbx pushq %r12 pushq %r13 pushq %r14 pushq %r15 L$ord_sqr_body: movq 0(%rsi),%r8 movq 8(%rsi),%rax movq 16(%rsi),%r14 movq 24(%rsi),%r15 leaq L$ord(%rip),%rsi movq %rdx,%rbx jmp L$oop_ord_sqr .p2align 5 L$oop_ord_sqr: movq %rax,%rbp mulq %r8 movq %rax,%r9 .byte 102,72,15,110,205 movq %r14,%rax movq %rdx,%r10 mulq %r8 addq %rax,%r10 movq %r15,%rax .byte 102,73,15,110,214 adcq $0,%rdx movq %rdx,%r11 mulq %r8 addq %rax,%r11 movq %r15,%rax .byte 102,73,15,110,223 adcq $0,%rdx movq %rdx,%r12 mulq %r14 movq %rax,%r13 movq %r14,%rax movq %rdx,%r14 mulq %rbp addq %rax,%r11 movq %r15,%rax adcq $0,%rdx movq %rdx,%r15 mulq %rbp addq %rax,%r12 adcq $0,%rdx addq %r15,%r12 adcq %rdx,%r13 adcq $0,%r14 xorq %r15,%r15 movq %r8,%rax addq %r9,%r9 adcq %r10,%r10 adcq %r11,%r11 adcq %r12,%r12 adcq %r13,%r13 adcq %r14,%r14 adcq $0,%r15 mulq %rax movq %rax,%r8 .byte 102,72,15,126,200 movq %rdx,%rbp mulq %rax addq %rbp,%r9 adcq %rax,%r10 .byte 102,72,15,126,208 adcq $0,%rdx movq %rdx,%rbp mulq %rax addq %rbp,%r11 adcq %rax,%r12 .byte 102,72,15,126,216 adcq $0,%rdx movq %rdx,%rbp movq %r8,%rcx imulq 32(%rsi),%r8 mulq %rax addq %rbp,%r13 adcq %rax,%r14 movq 0(%rsi),%rax adcq %rdx,%r15 mulq %r8 movq %r8,%rbp addq %rax,%rcx movq 8(%rsi),%rax adcq %rdx,%rcx subq %r8,%r10 sbbq $0,%rbp mulq %r8 addq %rcx,%r9 adcq $0,%rdx addq %rax,%r9 movq %r8,%rax adcq %rdx,%r10 movq %r8,%rdx adcq $0,%rbp movq %r9,%rcx imulq 32(%rsi),%r9 shlq $32,%rax shrq $32,%rdx subq %rax,%r11 movq 0(%rsi),%rax sbbq %rdx,%r8 addq %rbp,%r11 adcq $0,%r8 mulq %r9 movq %r9,%rbp addq %rax,%rcx movq 8(%rsi),%rax adcq %rdx,%rcx subq %r9,%r11 sbbq $0,%rbp mulq %r9 addq %rcx,%r10 adcq $0,%rdx addq %rax,%r10 movq %r9,%rax adcq %rdx,%r11 movq %r9,%rdx adcq $0,%rbp movq %r10,%rcx imulq 32(%rsi),%r10 shlq $32,%rax shrq $32,%rdx subq %rax,%r8 movq 0(%rsi),%rax sbbq %rdx,%r9 addq %rbp,%r8 adcq $0,%r9 mulq %r10 movq %r10,%rbp addq %rax,%rcx movq 8(%rsi),%rax adcq %rdx,%rcx subq %r10,%r8 sbbq $0,%rbp mulq %r10 addq %rcx,%r11 adcq $0,%rdx addq %rax,%r11 movq %r10,%rax adcq %rdx,%r8 movq %r10,%rdx adcq $0,%rbp movq %r11,%rcx imulq 32(%rsi),%r11 shlq $32,%rax shrq $32,%rdx subq %rax,%r9 movq 0(%rsi),%rax sbbq %rdx,%r10 addq %rbp,%r9 adcq $0,%r10 mulq %r11 movq %r11,%rbp addq %rax,%rcx movq 8(%rsi),%rax adcq %rdx,%rcx subq %r11,%r9 sbbq $0,%rbp mulq %r11 addq %rcx,%r8 adcq $0,%rdx addq %rax,%r8 movq %r11,%rax adcq %rdx,%r9 movq %r11,%rdx adcq $0,%rbp shlq $32,%rax shrq $32,%rdx subq %rax,%r10 sbbq %rdx,%r11 addq %rbp,%r10 adcq $0,%r11 xorq %rdx,%rdx addq %r12,%r8 adcq %r13,%r9 movq %r8,%r12 adcq %r14,%r10 adcq %r15,%r11 movq %r9,%rax adcq $0,%rdx subq 0(%rsi),%r8 movq %r10,%r14 sbbq 8(%rsi),%r9 sbbq 16(%rsi),%r10 movq %r11,%r15 sbbq 24(%rsi),%r11 sbbq $0,%rdx cmovcq %r12,%r8 cmovncq %r9,%rax cmovncq %r10,%r14 cmovncq %r11,%r15 decq %rbx jnz L$oop_ord_sqr movq %r8,0(%rdi) movq %rax,8(%rdi) pxor %xmm1,%xmm1 movq %r14,16(%rdi) pxor %xmm2,%xmm2 movq %r15,24(%rdi) pxor %xmm3,%xmm3 movq 0(%rsp),%r15 movq 8(%rsp),%r14 movq 16(%rsp),%r13 movq 24(%rsp),%r12 movq 32(%rsp),%rbx movq 40(%rsp),%rbp leaq 48(%rsp),%rsp L$ord_sqr_epilogue: ret .globl _ecp_nistz256_ord_mul_mont_adx .private_extern _ecp_nistz256_ord_mul_mont_adx .p2align 5 _ecp_nistz256_ord_mul_mont_adx: L$ecp_nistz256_ord_mul_mont_adx: _CET_ENDBR pushq %rbp pushq %rbx pushq %r12 pushq %r13 pushq %r14 pushq %r15 L$ord_mulx_body: movq %rdx,%rbx movq 0(%rdx),%rdx movq 0(%rsi),%r9 movq 8(%rsi),%r10 movq 16(%rsi),%r11 movq 24(%rsi),%r12 leaq -128(%rsi),%rsi leaq L$ord-128(%rip),%r14 movq L$ordK(%rip),%r15 mulxq %r9,%r8,%r9 mulxq %r10,%rcx,%r10 mulxq %r11,%rbp,%r11 addq %rcx,%r9 mulxq %r12,%rcx,%r12 movq %r8,%rdx mulxq %r15,%rdx,%rax adcq %rbp,%r10 adcq %rcx,%r11 adcq $0,%r12 xorq %r13,%r13 mulxq 0+128(%r14),%rcx,%rbp adcxq %rcx,%r8 adoxq %rbp,%r9 mulxq 8+128(%r14),%rcx,%rbp adcxq %rcx,%r9 adoxq %rbp,%r10 mulxq 16+128(%r14),%rcx,%rbp adcxq %rcx,%r10 adoxq %rbp,%r11 mulxq 24+128(%r14),%rcx,%rbp movq 8(%rbx),%rdx adcxq %rcx,%r11 adoxq %rbp,%r12 adcxq %r8,%r12 adoxq %r8,%r13 adcq $0,%r13 mulxq 0+128(%rsi),%rcx,%rbp adcxq %rcx,%r9 adoxq %rbp,%r10 mulxq 8+128(%rsi),%rcx,%rbp adcxq %rcx,%r10 adoxq %rbp,%r11 mulxq 16+128(%rsi),%rcx,%rbp adcxq %rcx,%r11 adoxq %rbp,%r12 mulxq 24+128(%rsi),%rcx,%rbp movq %r9,%rdx mulxq %r15,%rdx,%rax adcxq %rcx,%r12 adoxq %rbp,%r13 adcxq %r8,%r13 adoxq %r8,%r8 adcq $0,%r8 mulxq 0+128(%r14),%rcx,%rbp adcxq %rcx,%r9 adoxq %rbp,%r10 mulxq 8+128(%r14),%rcx,%rbp adcxq %rcx,%r10 adoxq %rbp,%r11 mulxq 16+128(%r14),%rcx,%rbp adcxq %rcx,%r11 adoxq %rbp,%r12 mulxq 24+128(%r14),%rcx,%rbp movq 16(%rbx),%rdx adcxq %rcx,%r12 adoxq %rbp,%r13 adcxq %r9,%r13 adoxq %r9,%r8 adcq $0,%r8 mulxq 0+128(%rsi),%rcx,%rbp adcxq %rcx,%r10 adoxq %rbp,%r11 mulxq 8+128(%rsi),%rcx,%rbp adcxq %rcx,%r11 adoxq %rbp,%r12 mulxq 16+128(%rsi),%rcx,%rbp adcxq %rcx,%r12 adoxq %rbp,%r13 mulxq 24+128(%rsi),%rcx,%rbp movq %r10,%rdx mulxq %r15,%rdx,%rax adcxq %rcx,%r13 adoxq %rbp,%r8 adcxq %r9,%r8 adoxq %r9,%r9 adcq $0,%r9 mulxq 0+128(%r14),%rcx,%rbp adcxq %rcx,%r10 adoxq %rbp,%r11 mulxq 8+128(%r14),%rcx,%rbp adcxq %rcx,%r11 adoxq %rbp,%r12 mulxq 16+128(%r14),%rcx,%rbp adcxq %rcx,%r12 adoxq %rbp,%r13 mulxq 24+128(%r14),%rcx,%rbp movq 24(%rbx),%rdx adcxq %rcx,%r13 adoxq %rbp,%r8 adcxq %r10,%r8 adoxq %r10,%r9 adcq $0,%r9 mulxq 0+128(%rsi),%rcx,%rbp adcxq %rcx,%r11 adoxq %rbp,%r12 mulxq 8+128(%rsi),%rcx,%rbp adcxq %rcx,%r12 adoxq %rbp,%r13 mulxq 16+128(%rsi),%rcx,%rbp adcxq %rcx,%r13 adoxq %rbp,%r8 mulxq 24+128(%rsi),%rcx,%rbp movq %r11,%rdx mulxq %r15,%rdx,%rax adcxq %rcx,%r8 adoxq %rbp,%r9 adcxq %r10,%r9 adoxq %r10,%r10 adcq $0,%r10 mulxq 0+128(%r14),%rcx,%rbp adcxq %rcx,%r11 adoxq %rbp,%r12 mulxq 8+128(%r14),%rcx,%rbp adcxq %rcx,%r12 adoxq %rbp,%r13 mulxq 16+128(%r14),%rcx,%rbp adcxq %rcx,%r13 adoxq %rbp,%r8 mulxq 24+128(%r14),%rcx,%rbp leaq 128(%r14),%r14 movq %r12,%rbx adcxq %rcx,%r8 adoxq %rbp,%r9 movq %r13,%rdx adcxq %r11,%r9 adoxq %r11,%r10 adcq $0,%r10 movq %r8,%rcx subq 0(%r14),%r12 sbbq 8(%r14),%r13 sbbq 16(%r14),%r8 movq %r9,%rbp sbbq 24(%r14),%r9 sbbq $0,%r10 cmovcq %rbx,%r12 cmovcq %rdx,%r13 cmovcq %rcx,%r8 cmovcq %rbp,%r9 movq %r12,0(%rdi) movq %r13,8(%rdi) movq %r8,16(%rdi) movq %r9,24(%rdi) movq 0(%rsp),%r15 movq 8(%rsp),%r14 movq 16(%rsp),%r13 movq 24(%rsp),%r12 movq 32(%rsp),%rbx movq 40(%rsp),%rbp leaq 48(%rsp),%rsp L$ord_mulx_epilogue: ret .globl _ecp_nistz256_ord_sqr_mont_adx .private_extern _ecp_nistz256_ord_sqr_mont_adx .p2align 5 _ecp_nistz256_ord_sqr_mont_adx: _CET_ENDBR L$ecp_nistz256_ord_sqr_mont_adx: pushq %rbp pushq %rbx pushq %r12 pushq %r13 pushq %r14 pushq %r15 L$ord_sqrx_body: movq %rdx,%rbx movq 0(%rsi),%rdx movq 8(%rsi),%r14 movq 16(%rsi),%r15 movq 24(%rsi),%r8 leaq L$ord(%rip),%rsi jmp L$oop_ord_sqrx .p2align 5 L$oop_ord_sqrx: mulxq %r14,%r9,%r10 mulxq %r15,%rcx,%r11 movq %rdx,%rax .byte 102,73,15,110,206 mulxq %r8,%rbp,%r12 movq %r14,%rdx addq %rcx,%r10 .byte 102,73,15,110,215 adcq %rbp,%r11 adcq $0,%r12 xorq %r13,%r13 mulxq %r15,%rcx,%rbp adcxq %rcx,%r11 adoxq %rbp,%r12 mulxq %r8,%rcx,%rbp movq %r15,%rdx adcxq %rcx,%r12 adoxq %rbp,%r13 adcq $0,%r13 mulxq %r8,%rcx,%r14 movq %rax,%rdx .byte 102,73,15,110,216 xorq %r15,%r15 adcxq %r9,%r9 adoxq %rcx,%r13 adcxq %r10,%r10 adoxq %r15,%r14 mulxq %rdx,%r8,%rbp .byte 102,72,15,126,202 adcxq %r11,%r11 adoxq %rbp,%r9 adcxq %r12,%r12 mulxq %rdx,%rcx,%rax .byte 102,72,15,126,210 adcxq %r13,%r13 adoxq %rcx,%r10 adcxq %r14,%r14 mulxq %rdx,%rcx,%rbp .byte 0x67 .byte 102,72,15,126,218 adoxq %rax,%r11 adcxq %r15,%r15 adoxq %rcx,%r12 adoxq %rbp,%r13 mulxq %rdx,%rcx,%rax adoxq %rcx,%r14 adoxq %rax,%r15 movq %r8,%rdx mulxq 32(%rsi),%rdx,%rcx xorq %rax,%rax mulxq 0(%rsi),%rcx,%rbp adcxq %rcx,%r8 adoxq %rbp,%r9 mulxq 8(%rsi),%rcx,%rbp adcxq %rcx,%r9 adoxq %rbp,%r10 mulxq 16(%rsi),%rcx,%rbp adcxq %rcx,%r10 adoxq %rbp,%r11 mulxq 24(%rsi),%rcx,%rbp adcxq %rcx,%r11 adoxq %rbp,%r8 adcxq %rax,%r8 movq %r9,%rdx mulxq 32(%rsi),%rdx,%rcx mulxq 0(%rsi),%rcx,%rbp adoxq %rcx,%r9 adcxq %rbp,%r10 mulxq 8(%rsi),%rcx,%rbp adoxq %rcx,%r10 adcxq %rbp,%r11 mulxq 16(%rsi),%rcx,%rbp adoxq %rcx,%r11 adcxq %rbp,%r8 mulxq 24(%rsi),%rcx,%rbp adoxq %rcx,%r8 adcxq %rbp,%r9 adoxq %rax,%r9 movq %r10,%rdx mulxq 32(%rsi),%rdx,%rcx mulxq 0(%rsi),%rcx,%rbp adcxq %rcx,%r10 adoxq %rbp,%r11 mulxq 8(%rsi),%rcx,%rbp adcxq %rcx,%r11 adoxq %rbp,%r8 mulxq 16(%rsi),%rcx,%rbp adcxq %rcx,%r8 adoxq %rbp,%r9 mulxq 24(%rsi),%rcx,%rbp adcxq %rcx,%r9 adoxq %rbp,%r10 adcxq %rax,%r10 movq %r11,%rdx mulxq 32(%rsi),%rdx,%rcx mulxq 0(%rsi),%rcx,%rbp adoxq %rcx,%r11 adcxq %rbp,%r8 mulxq 8(%rsi),%rcx,%rbp adoxq %rcx,%r8 adcxq %rbp,%r9 mulxq 16(%rsi),%rcx,%rbp adoxq %rcx,%r9 adcxq %rbp,%r10 mulxq 24(%rsi),%rcx,%rbp adoxq %rcx,%r10 adcxq %rbp,%r11 adoxq %rax,%r11 addq %r8,%r12 adcq %r13,%r9 movq %r12,%rdx adcq %r14,%r10 adcq %r15,%r11 movq %r9,%r14 adcq $0,%rax subq 0(%rsi),%r12 movq %r10,%r15 sbbq 8(%rsi),%r9 sbbq 16(%rsi),%r10 movq %r11,%r8 sbbq 24(%rsi),%r11 sbbq $0,%rax cmovncq %r12,%rdx cmovncq %r9,%r14 cmovncq %r10,%r15 cmovncq %r11,%r8 decq %rbx jnz L$oop_ord_sqrx movq %rdx,0(%rdi) movq %r14,8(%rdi) pxor %xmm1,%xmm1 movq %r15,16(%rdi) pxor %xmm2,%xmm2 movq %r8,24(%rdi) pxor %xmm3,%xmm3 movq 0(%rsp),%r15 movq 8(%rsp),%r14 movq 16(%rsp),%r13 movq 24(%rsp),%r12 movq 32(%rsp),%rbx movq 40(%rsp),%rbp leaq 48(%rsp),%rsp L$ord_sqrx_epilogue: ret .globl _ecp_nistz256_mul_mont_nohw .private_extern _ecp_nistz256_mul_mont_nohw .p2align 5 _ecp_nistz256_mul_mont_nohw: _CET_ENDBR pushq %rbp pushq %rbx pushq %r12 pushq %r13 pushq %r14 pushq %r15 L$mul_body: movq %rdx,%rbx movq 0(%rdx),%rax movq 0(%rsi),%r9 movq 8(%rsi),%r10 movq 16(%rsi),%r11 movq 24(%rsi),%r12 call __ecp_nistz256_mul_montq movq 0(%rsp),%r15 movq 8(%rsp),%r14 movq 16(%rsp),%r13 movq 24(%rsp),%r12 movq 32(%rsp),%rbx movq 40(%rsp),%rbp leaq 48(%rsp),%rsp L$mul_epilogue: ret .p2align 5 __ecp_nistz256_mul_montq: movq %rax,%rbp mulq %r9 movq L$poly+8(%rip),%r14 movq %rax,%r8 movq %rbp,%rax movq %rdx,%r9 mulq %r10 movq L$poly+24(%rip),%r15 addq %rax,%r9 movq %rbp,%rax adcq $0,%rdx movq %rdx,%r10 mulq %r11 addq %rax,%r10 movq %rbp,%rax adcq $0,%rdx movq %rdx,%r11 mulq %r12 addq %rax,%r11 movq %r8,%rax adcq $0,%rdx xorq %r13,%r13 movq %rdx,%r12 movq %r8,%rbp shlq $32,%r8 mulq %r15 shrq $32,%rbp addq %r8,%r9 adcq %rbp,%r10 adcq %rax,%r11 movq 8(%rbx),%rax adcq %rdx,%r12 adcq $0,%r13 xorq %r8,%r8 movq %rax,%rbp mulq 0(%rsi) addq %rax,%r9 movq %rbp,%rax adcq $0,%rdx movq %rdx,%rcx mulq 8(%rsi) addq %rcx,%r10 adcq $0,%rdx addq %rax,%r10 movq %rbp,%rax adcq $0,%rdx movq %rdx,%rcx mulq 16(%rsi) addq %rcx,%r11 adcq $0,%rdx addq %rax,%r11 movq %rbp,%rax adcq $0,%rdx movq %rdx,%rcx mulq 24(%rsi) addq %rcx,%r12 adcq $0,%rdx addq %rax,%r12 movq %r9,%rax adcq %rdx,%r13 adcq $0,%r8 movq %r9,%rbp shlq $32,%r9 mulq %r15 shrq $32,%rbp addq %r9,%r10 adcq %rbp,%r11 adcq %rax,%r12 movq 16(%rbx),%rax adcq %rdx,%r13 adcq $0,%r8 xorq %r9,%r9 movq %rax,%rbp mulq 0(%rsi) addq %rax,%r10 movq %rbp,%rax adcq $0,%rdx movq %rdx,%rcx mulq 8(%rsi) addq %rcx,%r11 adcq $0,%rdx addq %rax,%r11 movq %rbp,%rax adcq $0,%rdx movq %rdx,%rcx mulq 16(%rsi) addq %rcx,%r12 adcq $0,%rdx addq %rax,%r12 movq %rbp,%rax adcq $0,%rdx movq %rdx,%rcx mulq 24(%rsi) addq %rcx,%r13 adcq $0,%rdx addq %rax,%r13 movq %r10,%rax adcq %rdx,%r8 adcq $0,%r9 movq %r10,%rbp shlq $32,%r10 mulq %r15 shrq $32,%rbp addq %r10,%r11 adcq %rbp,%r12 adcq %rax,%r13 movq 24(%rbx),%rax adcq %rdx,%r8 adcq $0,%r9 xorq %r10,%r10 movq %rax,%rbp mulq 0(%rsi) addq %rax,%r11 movq %rbp,%rax adcq $0,%rdx movq %rdx,%rcx mulq 8(%rsi) addq %rcx,%r12 adcq $0,%rdx addq %rax,%r12 movq %rbp,%rax adcq $0,%rdx movq %rdx,%rcx mulq 16(%rsi) addq %rcx,%r13 adcq $0,%rdx addq %rax,%r13 movq %rbp,%rax adcq $0,%rdx movq %rdx,%rcx mulq 24(%rsi) addq %rcx,%r8 adcq $0,%rdx addq %rax,%r8 movq %r11,%rax adcq %rdx,%r9 adcq $0,%r10 movq %r11,%rbp shlq $32,%r11 mulq %r15 shrq $32,%rbp addq %r11,%r12 adcq %rbp,%r13 movq %r12,%rcx adcq %rax,%r8 adcq %rdx,%r9 movq %r13,%rbp adcq $0,%r10 subq $-1,%r12 movq %r8,%rbx sbbq %r14,%r13 sbbq $0,%r8 movq %r9,%rdx sbbq %r15,%r9 sbbq $0,%r10 cmovcq %rcx,%r12 cmovcq %rbp,%r13 movq %r12,0(%rdi) cmovcq %rbx,%r8 movq %r13,8(%rdi) cmovcq %rdx,%r9 movq %r8,16(%rdi) movq %r9,24(%rdi) ret .globl _ecp_nistz256_sqr_mont_nohw .private_extern _ecp_nistz256_sqr_mont_nohw .p2align 5 _ecp_nistz256_sqr_mont_nohw: _CET_ENDBR pushq %rbp pushq %rbx pushq %r12 pushq %r13 pushq %r14 pushq %r15 L$sqr_body: movq 0(%rsi),%rax movq 8(%rsi),%r14 movq 16(%rsi),%r15 movq 24(%rsi),%r8 call __ecp_nistz256_sqr_montq movq 0(%rsp),%r15 movq 8(%rsp),%r14 movq 16(%rsp),%r13 movq 24(%rsp),%r12 movq 32(%rsp),%rbx movq 40(%rsp),%rbp leaq 48(%rsp),%rsp L$sqr_epilogue: ret .p2align 5 __ecp_nistz256_sqr_montq: movq %rax,%r13 mulq %r14 movq %rax,%r9 movq %r15,%rax movq %rdx,%r10 mulq %r13 addq %rax,%r10 movq %r8,%rax adcq $0,%rdx movq %rdx,%r11 mulq %r13 addq %rax,%r11 movq %r15,%rax adcq $0,%rdx movq %rdx,%r12 mulq %r14 addq %rax,%r11 movq %r8,%rax adcq $0,%rdx movq %rdx,%rbp mulq %r14 addq %rax,%r12 movq %r8,%rax adcq $0,%rdx addq %rbp,%r12 movq %rdx,%r13 adcq $0,%r13 mulq %r15 xorq %r15,%r15 addq %rax,%r13 movq 0(%rsi),%rax movq %rdx,%r14 adcq $0,%r14 addq %r9,%r9 adcq %r10,%r10 adcq %r11,%r11 adcq %r12,%r12 adcq %r13,%r13 adcq %r14,%r14 adcq $0,%r15 mulq %rax movq %rax,%r8 movq 8(%rsi),%rax movq %rdx,%rcx mulq %rax addq %rcx,%r9 adcq %rax,%r10 movq 16(%rsi),%rax adcq $0,%rdx movq %rdx,%rcx mulq %rax addq %rcx,%r11 adcq %rax,%r12 movq 24(%rsi),%rax adcq $0,%rdx movq %rdx,%rcx mulq %rax addq %rcx,%r13 adcq %rax,%r14 movq %r8,%rax adcq %rdx,%r15 movq L$poly+8(%rip),%rsi movq L$poly+24(%rip),%rbp movq %r8,%rcx shlq $32,%r8 mulq %rbp shrq $32,%rcx addq %r8,%r9 adcq %rcx,%r10 adcq %rax,%r11 movq %r9,%rax adcq $0,%rdx movq %r9,%rcx shlq $32,%r9 movq %rdx,%r8 mulq %rbp shrq $32,%rcx addq %r9,%r10 adcq %rcx,%r11 adcq %rax,%r8 movq %r10,%rax adcq $0,%rdx movq %r10,%rcx shlq $32,%r10 movq %rdx,%r9 mulq %rbp shrq $32,%rcx addq %r10,%r11 adcq %rcx,%r8 adcq %rax,%r9 movq %r11,%rax adcq $0,%rdx movq %r11,%rcx shlq $32,%r11 movq %rdx,%r10 mulq %rbp shrq $32,%rcx addq %r11,%r8 adcq %rcx,%r9 adcq %rax,%r10 adcq $0,%rdx xorq %r11,%r11 addq %r8,%r12 adcq %r9,%r13 movq %r12,%r8 adcq %r10,%r14 adcq %rdx,%r15 movq %r13,%r9 adcq $0,%r11 subq $-1,%r12 movq %r14,%r10 sbbq %rsi,%r13 sbbq $0,%r14 movq %r15,%rcx sbbq %rbp,%r15 sbbq $0,%r11 cmovcq %r8,%r12 cmovcq %r9,%r13 movq %r12,0(%rdi) cmovcq %r10,%r14 movq %r13,8(%rdi) cmovcq %rcx,%r15 movq %r14,16(%rdi) movq %r15,24(%rdi) ret .globl _ecp_nistz256_mul_mont_adx .private_extern _ecp_nistz256_mul_mont_adx .p2align 5 _ecp_nistz256_mul_mont_adx: _CET_ENDBR pushq %rbp pushq %rbx pushq %r12 pushq %r13 pushq %r14 pushq %r15 L$mulx_body: movq %rdx,%rbx movq 0(%rdx),%rdx movq 0(%rsi),%r9 movq 8(%rsi),%r10 movq 16(%rsi),%r11 movq 24(%rsi),%r12 leaq -128(%rsi),%rsi call __ecp_nistz256_mul_montx movq 0(%rsp),%r15 movq 8(%rsp),%r14 movq 16(%rsp),%r13 movq 24(%rsp),%r12 movq 32(%rsp),%rbx movq 40(%rsp),%rbp leaq 48(%rsp),%rsp L$mulx_epilogue: ret .p2align 5 __ecp_nistz256_mul_montx: mulxq %r9,%r8,%r9 mulxq %r10,%rcx,%r10 movq $32,%r14 xorq %r13,%r13 mulxq %r11,%rbp,%r11 movq L$poly+24(%rip),%r15 adcq %rcx,%r9 mulxq %r12,%rcx,%r12 movq %r8,%rdx adcq %rbp,%r10 shlxq %r14,%r8,%rbp adcq %rcx,%r11 shrxq %r14,%r8,%rcx adcq $0,%r12 addq %rbp,%r9 adcq %rcx,%r10 mulxq %r15,%rcx,%rbp movq 8(%rbx),%rdx adcq %rcx,%r11 adcq %rbp,%r12 adcq $0,%r13 xorq %r8,%r8 mulxq 0+128(%rsi),%rcx,%rbp adcxq %rcx,%r9 adoxq %rbp,%r10 mulxq 8+128(%rsi),%rcx,%rbp adcxq %rcx,%r10 adoxq %rbp,%r11 mulxq 16+128(%rsi),%rcx,%rbp adcxq %rcx,%r11 adoxq %rbp,%r12 mulxq 24+128(%rsi),%rcx,%rbp movq %r9,%rdx adcxq %rcx,%r12 shlxq %r14,%r9,%rcx adoxq %rbp,%r13 shrxq %r14,%r9,%rbp adcxq %r8,%r13 adoxq %r8,%r8 adcq $0,%r8 addq %rcx,%r10 adcq %rbp,%r11 mulxq %r15,%rcx,%rbp movq 16(%rbx),%rdx adcq %rcx,%r12 adcq %rbp,%r13 adcq $0,%r8 xorq %r9,%r9 mulxq 0+128(%rsi),%rcx,%rbp adcxq %rcx,%r10 adoxq %rbp,%r11 mulxq 8+128(%rsi),%rcx,%rbp adcxq %rcx,%r11 adoxq %rbp,%r12 mulxq 16+128(%rsi),%rcx,%rbp adcxq %rcx,%r12 adoxq %rbp,%r13 mulxq 24+128(%rsi),%rcx,%rbp movq %r10,%rdx adcxq %rcx,%r13 shlxq %r14,%r10,%rcx adoxq %rbp,%r8 shrxq %r14,%r10,%rbp adcxq %r9,%r8 adoxq %r9,%r9 adcq $0,%r9 addq %rcx,%r11 adcq %rbp,%r12 mulxq %r15,%rcx,%rbp movq 24(%rbx),%rdx adcq %rcx,%r13 adcq %rbp,%r8 adcq $0,%r9 xorq %r10,%r10 mulxq 0+128(%rsi),%rcx,%rbp adcxq %rcx,%r11 adoxq %rbp,%r12 mulxq 8+128(%rsi),%rcx,%rbp adcxq %rcx,%r12 adoxq %rbp,%r13 mulxq 16+128(%rsi),%rcx,%rbp adcxq %rcx,%r13 adoxq %rbp,%r8 mulxq 24+128(%rsi),%rcx,%rbp movq %r11,%rdx adcxq %rcx,%r8 shlxq %r14,%r11,%rcx adoxq %rbp,%r9 shrxq %r14,%r11,%rbp adcxq %r10,%r9 adoxq %r10,%r10 adcq $0,%r10 addq %rcx,%r12 adcq %rbp,%r13 mulxq %r15,%rcx,%rbp movq %r12,%rbx movq L$poly+8(%rip),%r14 adcq %rcx,%r8 movq %r13,%rdx adcq %rbp,%r9 adcq $0,%r10 xorl %eax,%eax movq %r8,%rcx sbbq $-1,%r12 sbbq %r14,%r13 sbbq $0,%r8 movq %r9,%rbp sbbq %r15,%r9 sbbq $0,%r10 cmovcq %rbx,%r12 cmovcq %rdx,%r13 movq %r12,0(%rdi) cmovcq %rcx,%r8 movq %r13,8(%rdi) cmovcq %rbp,%r9 movq %r8,16(%rdi) movq %r9,24(%rdi) ret .globl _ecp_nistz256_sqr_mont_adx .private_extern _ecp_nistz256_sqr_mont_adx .p2align 5 _ecp_nistz256_sqr_mont_adx: _CET_ENDBR pushq %rbp pushq %rbx pushq %r12 pushq %r13 pushq %r14 pushq %r15 L$sqrx_body: movq 0(%rsi),%rdx movq 8(%rsi),%r14 movq 16(%rsi),%r15 movq 24(%rsi),%r8 leaq -128(%rsi),%rsi call __ecp_nistz256_sqr_montx movq 0(%rsp),%r15 movq 8(%rsp),%r14 movq 16(%rsp),%r13 movq 24(%rsp),%r12 movq 32(%rsp),%rbx movq 40(%rsp),%rbp leaq 48(%rsp),%rsp L$sqrx_epilogue: ret .p2align 5 __ecp_nistz256_sqr_montx: mulxq %r14,%r9,%r10 mulxq %r15,%rcx,%r11 xorl %eax,%eax adcq %rcx,%r10 mulxq %r8,%rbp,%r12 movq %r14,%rdx adcq %rbp,%r11 adcq $0,%r12 xorq %r13,%r13 mulxq %r15,%rcx,%rbp adcxq %rcx,%r11 adoxq %rbp,%r12 mulxq %r8,%rcx,%rbp movq %r15,%rdx adcxq %rcx,%r12 adoxq %rbp,%r13 adcq $0,%r13 mulxq %r8,%rcx,%r14 movq 0+128(%rsi),%rdx xorq %r15,%r15 adcxq %r9,%r9 adoxq %rcx,%r13 adcxq %r10,%r10 adoxq %r15,%r14 mulxq %rdx,%r8,%rbp movq 8+128(%rsi),%rdx adcxq %r11,%r11 adoxq %rbp,%r9 adcxq %r12,%r12 mulxq %rdx,%rcx,%rax movq 16+128(%rsi),%rdx adcxq %r13,%r13 adoxq %rcx,%r10 adcxq %r14,%r14 .byte 0x67 mulxq %rdx,%rcx,%rbp movq 24+128(%rsi),%rdx adoxq %rax,%r11 adcxq %r15,%r15 adoxq %rcx,%r12 movq $32,%rsi adoxq %rbp,%r13 .byte 0x67,0x67 mulxq %rdx,%rcx,%rax movq L$poly+24(%rip),%rdx adoxq %rcx,%r14 shlxq %rsi,%r8,%rcx adoxq %rax,%r15 shrxq %rsi,%r8,%rax movq %rdx,%rbp addq %rcx,%r9 adcq %rax,%r10 mulxq %r8,%rcx,%r8 adcq %rcx,%r11 shlxq %rsi,%r9,%rcx adcq $0,%r8 shrxq %rsi,%r9,%rax addq %rcx,%r10 adcq %rax,%r11 mulxq %r9,%rcx,%r9 adcq %rcx,%r8 shlxq %rsi,%r10,%rcx adcq $0,%r9 shrxq %rsi,%r10,%rax addq %rcx,%r11 adcq %rax,%r8 mulxq %r10,%rcx,%r10 adcq %rcx,%r9 shlxq %rsi,%r11,%rcx adcq $0,%r10 shrxq %rsi,%r11,%rax addq %rcx,%r8 adcq %rax,%r9 mulxq %r11,%rcx,%r11 adcq %rcx,%r10 adcq $0,%r11 xorq %rdx,%rdx addq %r8,%r12 movq L$poly+8(%rip),%rsi adcq %r9,%r13 movq %r12,%r8 adcq %r10,%r14 adcq %r11,%r15 movq %r13,%r9 adcq $0,%rdx subq $-1,%r12 movq %r14,%r10 sbbq %rsi,%r13 sbbq $0,%r14 movq %r15,%r11 sbbq %rbp,%r15 sbbq $0,%rdx cmovcq %r8,%r12 cmovcq %r9,%r13 movq %r12,0(%rdi) cmovcq %r10,%r14 movq %r13,8(%rdi) cmovcq %r11,%r15 movq %r14,16(%rdi) movq %r15,24(%rdi) ret .globl _ecp_nistz256_select_w5_nohw .private_extern _ecp_nistz256_select_w5_nohw .p2align 5 _ecp_nistz256_select_w5_nohw: _CET_ENDBR movdqa L$One(%rip),%xmm0 movd %edx,%xmm1 pxor %xmm2,%xmm2 pxor %xmm3,%xmm3 pxor %xmm4,%xmm4 pxor %xmm5,%xmm5 pxor %xmm6,%xmm6 pxor %xmm7,%xmm7 movdqa %xmm0,%xmm8 pshufd $0,%xmm1,%xmm1 movq $16,%rax L$select_loop_sse_w5: movdqa %xmm8,%xmm15 paddd %xmm0,%xmm8 pcmpeqd %xmm1,%xmm15 movdqa 0(%rsi),%xmm9 movdqa 16(%rsi),%xmm10 movdqa 32(%rsi),%xmm11 movdqa 48(%rsi),%xmm12 movdqa 64(%rsi),%xmm13 movdqa 80(%rsi),%xmm14 leaq 96(%rsi),%rsi pand %xmm15,%xmm9 pand %xmm15,%xmm10 por %xmm9,%xmm2 pand %xmm15,%xmm11 por %xmm10,%xmm3 pand %xmm15,%xmm12 por %xmm11,%xmm4 pand %xmm15,%xmm13 por %xmm12,%xmm5 pand %xmm15,%xmm14 por %xmm13,%xmm6 por %xmm14,%xmm7 decq %rax jnz L$select_loop_sse_w5 movdqu %xmm2,0(%rdi) movdqu %xmm3,16(%rdi) movdqu %xmm4,32(%rdi) movdqu %xmm5,48(%rdi) movdqu %xmm6,64(%rdi) movdqu %xmm7,80(%rdi) ret L$SEH_end_ecp_nistz256_select_w5_nohw: .globl _ecp_nistz256_select_w7_nohw .private_extern _ecp_nistz256_select_w7_nohw .p2align 5 _ecp_nistz256_select_w7_nohw: _CET_ENDBR movdqa L$One(%rip),%xmm8 movd %edx,%xmm1 pxor %xmm2,%xmm2 pxor %xmm3,%xmm3 pxor %xmm4,%xmm4 pxor %xmm5,%xmm5 movdqa %xmm8,%xmm0 pshufd $0,%xmm1,%xmm1 movq $64,%rax L$select_loop_sse_w7: movdqa %xmm8,%xmm15 paddd %xmm0,%xmm8 movdqa 0(%rsi),%xmm9 movdqa 16(%rsi),%xmm10 pcmpeqd %xmm1,%xmm15 movdqa 32(%rsi),%xmm11 movdqa 48(%rsi),%xmm12 leaq 64(%rsi),%rsi pand %xmm15,%xmm9 pand %xmm15,%xmm10 por %xmm9,%xmm2 pand %xmm15,%xmm11 por %xmm10,%xmm3 pand %xmm15,%xmm12 por %xmm11,%xmm4 prefetcht0 255(%rsi) por %xmm12,%xmm5 decq %rax jnz L$select_loop_sse_w7 movdqu %xmm2,0(%rdi) movdqu %xmm3,16(%rdi) movdqu %xmm4,32(%rdi) movdqu %xmm5,48(%rdi) ret L$SEH_end_ecp_nistz256_select_w7_nohw: .globl _ecp_nistz256_select_w5_avx2 .private_extern _ecp_nistz256_select_w5_avx2 .p2align 5 _ecp_nistz256_select_w5_avx2: _CET_ENDBR vzeroupper vmovdqa L$Two(%rip),%ymm0 vpxor %ymm2,%ymm2,%ymm2 vpxor %ymm3,%ymm3,%ymm3 vpxor %ymm4,%ymm4,%ymm4 vmovdqa L$One(%rip),%ymm5 vmovdqa L$Two(%rip),%ymm10 vmovd %edx,%xmm1 vpermd %ymm1,%ymm2,%ymm1 movq $8,%rax L$select_loop_avx2_w5: vmovdqa 0(%rsi),%ymm6 vmovdqa 32(%rsi),%ymm7 vmovdqa 64(%rsi),%ymm8 vmovdqa 96(%rsi),%ymm11 vmovdqa 128(%rsi),%ymm12 vmovdqa 160(%rsi),%ymm13 vpcmpeqd %ymm1,%ymm5,%ymm9 vpcmpeqd %ymm1,%ymm10,%ymm14 vpaddd %ymm0,%ymm5,%ymm5 vpaddd %ymm0,%ymm10,%ymm10 leaq 192(%rsi),%rsi vpand %ymm9,%ymm6,%ymm6 vpand %ymm9,%ymm7,%ymm7 vpand %ymm9,%ymm8,%ymm8 vpand %ymm14,%ymm11,%ymm11 vpand %ymm14,%ymm12,%ymm12 vpand %ymm14,%ymm13,%ymm13 vpxor %ymm6,%ymm2,%ymm2 vpxor %ymm7,%ymm3,%ymm3 vpxor %ymm8,%ymm4,%ymm4 vpxor %ymm11,%ymm2,%ymm2 vpxor %ymm12,%ymm3,%ymm3 vpxor %ymm13,%ymm4,%ymm4 decq %rax jnz L$select_loop_avx2_w5 vmovdqu %ymm2,0(%rdi) vmovdqu %ymm3,32(%rdi) vmovdqu %ymm4,64(%rdi) vzeroupper ret L$SEH_end_ecp_nistz256_select_w5_avx2: .globl _ecp_nistz256_select_w7_avx2 .private_extern _ecp_nistz256_select_w7_avx2 .p2align 5 _ecp_nistz256_select_w7_avx2: _CET_ENDBR vzeroupper vmovdqa L$Three(%rip),%ymm0 vpxor %ymm2,%ymm2,%ymm2 vpxor %ymm3,%ymm3,%ymm3 vmovdqa L$One(%rip),%ymm4 vmovdqa L$Two(%rip),%ymm8 vmovdqa L$Three(%rip),%ymm12 vmovd %edx,%xmm1 vpermd %ymm1,%ymm2,%ymm1 movq $21,%rax L$select_loop_avx2_w7: vmovdqa 0(%rsi),%ymm5 vmovdqa 32(%rsi),%ymm6 vmovdqa 64(%rsi),%ymm9 vmovdqa 96(%rsi),%ymm10 vmovdqa 128(%rsi),%ymm13 vmovdqa 160(%rsi),%ymm14 vpcmpeqd %ymm1,%ymm4,%ymm7 vpcmpeqd %ymm1,%ymm8,%ymm11 vpcmpeqd %ymm1,%ymm12,%ymm15 vpaddd %ymm0,%ymm4,%ymm4 vpaddd %ymm0,%ymm8,%ymm8 vpaddd %ymm0,%ymm12,%ymm12 leaq 192(%rsi),%rsi vpand %ymm7,%ymm5,%ymm5 vpand %ymm7,%ymm6,%ymm6 vpand %ymm11,%ymm9,%ymm9 vpand %ymm11,%ymm10,%ymm10 vpand %ymm15,%ymm13,%ymm13 vpand %ymm15,%ymm14,%ymm14 vpxor %ymm5,%ymm2,%ymm2 vpxor %ymm6,%ymm3,%ymm3 vpxor %ymm9,%ymm2,%ymm2 vpxor %ymm10,%ymm3,%ymm3 vpxor %ymm13,%ymm2,%ymm2 vpxor %ymm14,%ymm3,%ymm3 decq %rax jnz L$select_loop_avx2_w7 vmovdqa 0(%rsi),%ymm5 vmovdqa 32(%rsi),%ymm6 vpcmpeqd %ymm1,%ymm4,%ymm7 vpand %ymm7,%ymm5,%ymm5 vpand %ymm7,%ymm6,%ymm6 vpxor %ymm5,%ymm2,%ymm2 vpxor %ymm6,%ymm3,%ymm3 vmovdqu %ymm2,0(%rdi) vmovdqu %ymm3,32(%rdi) vzeroupper ret L$SEH_end_ecp_nistz256_select_w7_avx2: .p2align 5 __ecp_nistz256_add_toq: xorq %r11,%r11 addq 0(%rbx),%r12 adcq 8(%rbx),%r13 movq %r12,%rax adcq 16(%rbx),%r8 adcq 24(%rbx),%r9 movq %r13,%rbp adcq $0,%r11 subq $-1,%r12 movq %r8,%rcx sbbq %r14,%r13 sbbq $0,%r8 movq %r9,%r10 sbbq %r15,%r9 sbbq $0,%r11 cmovcq %rax,%r12 cmovcq %rbp,%r13 movq %r12,0(%rdi) cmovcq %rcx,%r8 movq %r13,8(%rdi) cmovcq %r10,%r9 movq %r8,16(%rdi) movq %r9,24(%rdi) ret .p2align 5 __ecp_nistz256_sub_fromq: subq 0(%rbx),%r12 sbbq 8(%rbx),%r13 movq %r12,%rax sbbq 16(%rbx),%r8 sbbq 24(%rbx),%r9 movq %r13,%rbp sbbq %r11,%r11 addq $-1,%r12 movq %r8,%rcx adcq %r14,%r13 adcq $0,%r8 movq %r9,%r10 adcq %r15,%r9 testq %r11,%r11 cmovzq %rax,%r12 cmovzq %rbp,%r13 movq %r12,0(%rdi) cmovzq %rcx,%r8 movq %r13,8(%rdi) cmovzq %r10,%r9 movq %r8,16(%rdi) movq %r9,24(%rdi) ret .p2align 5 __ecp_nistz256_subq: subq %r12,%rax sbbq %r13,%rbp movq %rax,%r12 sbbq %r8,%rcx sbbq %r9,%r10 movq %rbp,%r13 sbbq %r11,%r11 addq $-1,%rax movq %rcx,%r8 adcq %r14,%rbp adcq $0,%rcx movq %r10,%r9 adcq %r15,%r10 testq %r11,%r11 cmovnzq %rax,%r12 cmovnzq %rbp,%r13 cmovnzq %rcx,%r8 cmovnzq %r10,%r9 ret .p2align 5 __ecp_nistz256_mul_by_2q: xorq %r11,%r11 addq %r12,%r12 adcq %r13,%r13 movq %r12,%rax adcq %r8,%r8 adcq %r9,%r9 movq %r13,%rbp adcq $0,%r11 subq $-1,%r12 movq %r8,%rcx sbbq %r14,%r13 sbbq $0,%r8 movq %r9,%r10 sbbq %r15,%r9 sbbq $0,%r11 cmovcq %rax,%r12 cmovcq %rbp,%r13 movq %r12,0(%rdi) cmovcq %rcx,%r8 movq %r13,8(%rdi) cmovcq %r10,%r9 movq %r8,16(%rdi) movq %r9,24(%rdi) ret .globl _ecp_nistz256_point_double_nohw .private_extern _ecp_nistz256_point_double_nohw .p2align 5 _ecp_nistz256_point_double_nohw: _CET_ENDBR pushq %rbp pushq %rbx pushq %r12 pushq %r13 pushq %r14 pushq %r15 subq $160+8,%rsp L$point_doubleq_body: L$point_double_shortcutq: movdqu 0(%rsi),%xmm0 movq %rsi,%rbx movdqu 16(%rsi),%xmm1 movq 32+0(%rsi),%r12 movq 32+8(%rsi),%r13 movq 32+16(%rsi),%r8 movq 32+24(%rsi),%r9 movq L$poly+8(%rip),%r14 movq L$poly+24(%rip),%r15 movdqa %xmm0,96(%rsp) movdqa %xmm1,96+16(%rsp) leaq 32(%rdi),%r10 leaq 64(%rdi),%r11 .byte 102,72,15,110,199 .byte 102,73,15,110,202 .byte 102,73,15,110,211 leaq 0(%rsp),%rdi call __ecp_nistz256_mul_by_2q movq 64+0(%rsi),%rax movq 64+8(%rsi),%r14 movq 64+16(%rsi),%r15 movq 64+24(%rsi),%r8 leaq 64-0(%rsi),%rsi leaq 64(%rsp),%rdi call __ecp_nistz256_sqr_montq movq 0+0(%rsp),%rax movq 8+0(%rsp),%r14 leaq 0+0(%rsp),%rsi movq 16+0(%rsp),%r15 movq 24+0(%rsp),%r8 leaq 0(%rsp),%rdi call __ecp_nistz256_sqr_montq movq 32(%rbx),%rax movq 64+0(%rbx),%r9 movq 64+8(%rbx),%r10 movq 64+16(%rbx),%r11 movq 64+24(%rbx),%r12 leaq 64-0(%rbx),%rsi leaq 32(%rbx),%rbx .byte 102,72,15,126,215 call __ecp_nistz256_mul_montq call __ecp_nistz256_mul_by_2q movq 96+0(%rsp),%r12 movq 96+8(%rsp),%r13 leaq 64(%rsp),%rbx movq 96+16(%rsp),%r8 movq 96+24(%rsp),%r9 leaq 32(%rsp),%rdi call __ecp_nistz256_add_toq movq 96+0(%rsp),%r12 movq 96+8(%rsp),%r13 leaq 64(%rsp),%rbx movq 96+16(%rsp),%r8 movq 96+24(%rsp),%r9 leaq 64(%rsp),%rdi call __ecp_nistz256_sub_fromq movq 0+0(%rsp),%rax movq 8+0(%rsp),%r14 leaq 0+0(%rsp),%rsi movq 16+0(%rsp),%r15 movq 24+0(%rsp),%r8 .byte 102,72,15,126,207 call __ecp_nistz256_sqr_montq xorq %r9,%r9 movq %r12,%rax addq $-1,%r12 movq %r13,%r10 adcq %rsi,%r13 movq %r14,%rcx adcq $0,%r14 movq %r15,%r8 adcq %rbp,%r15 adcq $0,%r9 xorq %rsi,%rsi testq $1,%rax cmovzq %rax,%r12 cmovzq %r10,%r13 cmovzq %rcx,%r14 cmovzq %r8,%r15 cmovzq %rsi,%r9 movq %r13,%rax shrq $1,%r12 shlq $63,%rax movq %r14,%r10 shrq $1,%r13 orq %rax,%r12 shlq $63,%r10 movq %r15,%rcx shrq $1,%r14 orq %r10,%r13 shlq $63,%rcx movq %r12,0(%rdi) shrq $1,%r15 movq %r13,8(%rdi) shlq $63,%r9 orq %rcx,%r14 orq %r9,%r15 movq %r14,16(%rdi) movq %r15,24(%rdi) movq 64(%rsp),%rax leaq 64(%rsp),%rbx movq 0+32(%rsp),%r9 movq 8+32(%rsp),%r10 leaq 0+32(%rsp),%rsi movq 16+32(%rsp),%r11 movq 24+32(%rsp),%r12 leaq 32(%rsp),%rdi call __ecp_nistz256_mul_montq leaq 128(%rsp),%rdi call __ecp_nistz256_mul_by_2q leaq 32(%rsp),%rbx leaq 32(%rsp),%rdi call __ecp_nistz256_add_toq movq 96(%rsp),%rax leaq 96(%rsp),%rbx movq 0+0(%rsp),%r9 movq 8+0(%rsp),%r10 leaq 0+0(%rsp),%rsi movq 16+0(%rsp),%r11 movq 24+0(%rsp),%r12 leaq 0(%rsp),%rdi call __ecp_nistz256_mul_montq leaq 128(%rsp),%rdi call __ecp_nistz256_mul_by_2q movq 0+32(%rsp),%rax movq 8+32(%rsp),%r14 leaq 0+32(%rsp),%rsi movq 16+32(%rsp),%r15 movq 24+32(%rsp),%r8 .byte 102,72,15,126,199 call __ecp_nistz256_sqr_montq leaq 128(%rsp),%rbx movq %r14,%r8 movq %r15,%r9 movq %rsi,%r14 movq %rbp,%r15 call __ecp_nistz256_sub_fromq movq 0+0(%rsp),%rax movq 0+8(%rsp),%rbp movq 0+16(%rsp),%rcx movq 0+24(%rsp),%r10 leaq 0(%rsp),%rdi call __ecp_nistz256_subq movq 32(%rsp),%rax leaq 32(%rsp),%rbx movq %r12,%r14 xorl %ecx,%ecx movq %r12,0+0(%rsp) movq %r13,%r10 movq %r13,0+8(%rsp) cmovzq %r8,%r11 movq %r8,0+16(%rsp) leaq 0-0(%rsp),%rsi cmovzq %r9,%r12 movq %r9,0+24(%rsp) movq %r14,%r9 leaq 0(%rsp),%rdi call __ecp_nistz256_mul_montq .byte 102,72,15,126,203 .byte 102,72,15,126,207 call __ecp_nistz256_sub_fromq leaq 160+56(%rsp),%rsi movq -48(%rsi),%r15 movq -40(%rsi),%r14 movq -32(%rsi),%r13 movq -24(%rsi),%r12 movq -16(%rsi),%rbx movq -8(%rsi),%rbp leaq (%rsi),%rsp L$point_doubleq_epilogue: ret .globl _ecp_nistz256_point_add_nohw .private_extern _ecp_nistz256_point_add_nohw .p2align 5 _ecp_nistz256_point_add_nohw: _CET_ENDBR pushq %rbp pushq %rbx pushq %r12 pushq %r13 pushq %r14 pushq %r15 subq $576+8,%rsp L$point_addq_body: movdqu 0(%rsi),%xmm0 movdqu 16(%rsi),%xmm1 movdqu 32(%rsi),%xmm2 movdqu 48(%rsi),%xmm3 movdqu 64(%rsi),%xmm4 movdqu 80(%rsi),%xmm5 movq %rsi,%rbx movq %rdx,%rsi movdqa %xmm0,384(%rsp) movdqa %xmm1,384+16(%rsp) movdqa %xmm2,416(%rsp) movdqa %xmm3,416+16(%rsp) movdqa %xmm4,448(%rsp) movdqa %xmm5,448+16(%rsp) por %xmm4,%xmm5 movdqu 0(%rsi),%xmm0 pshufd $0xb1,%xmm5,%xmm3 movdqu 16(%rsi),%xmm1 movdqu 32(%rsi),%xmm2 por %xmm3,%xmm5 movdqu 48(%rsi),%xmm3 movq 64+0(%rsi),%rax movq 64+8(%rsi),%r14 movq 64+16(%rsi),%r15 movq 64+24(%rsi),%r8 movdqa %xmm0,480(%rsp) pshufd $0x1e,%xmm5,%xmm4 movdqa %xmm1,480+16(%rsp) movdqu 64(%rsi),%xmm0 movdqu 80(%rsi),%xmm1 movdqa %xmm2,512(%rsp) movdqa %xmm3,512+16(%rsp) por %xmm4,%xmm5 pxor %xmm4,%xmm4 por %xmm0,%xmm1 .byte 102,72,15,110,199 leaq 64-0(%rsi),%rsi movq %rax,544+0(%rsp) movq %r14,544+8(%rsp) movq %r15,544+16(%rsp) movq %r8,544+24(%rsp) leaq 96(%rsp),%rdi call __ecp_nistz256_sqr_montq pcmpeqd %xmm4,%xmm5 pshufd $0xb1,%xmm1,%xmm4 por %xmm1,%xmm4 pshufd $0,%xmm5,%xmm5 pshufd $0x1e,%xmm4,%xmm3 por %xmm3,%xmm4 pxor %xmm3,%xmm3 pcmpeqd %xmm3,%xmm4 pshufd $0,%xmm4,%xmm4 movq 64+0(%rbx),%rax movq 64+8(%rbx),%r14 movq 64+16(%rbx),%r15 movq 64+24(%rbx),%r8 .byte 102,72,15,110,203 leaq 64-0(%rbx),%rsi leaq 32(%rsp),%rdi call __ecp_nistz256_sqr_montq movq 544(%rsp),%rax leaq 544(%rsp),%rbx movq 0+96(%rsp),%r9 movq 8+96(%rsp),%r10 leaq 0+96(%rsp),%rsi movq 16+96(%rsp),%r11 movq 24+96(%rsp),%r12 leaq 224(%rsp),%rdi call __ecp_nistz256_mul_montq movq 448(%rsp),%rax leaq 448(%rsp),%rbx movq 0+32(%rsp),%r9 movq 8+32(%rsp),%r10 leaq 0+32(%rsp),%rsi movq 16+32(%rsp),%r11 movq 24+32(%rsp),%r12 leaq 256(%rsp),%rdi call __ecp_nistz256_mul_montq movq 416(%rsp),%rax leaq 416(%rsp),%rbx movq 0+224(%rsp),%r9 movq 8+224(%rsp),%r10 leaq 0+224(%rsp),%rsi movq 16+224(%rsp),%r11 movq 24+224(%rsp),%r12 leaq 224(%rsp),%rdi call __ecp_nistz256_mul_montq movq 512(%rsp),%rax leaq 512(%rsp),%rbx movq 0+256(%rsp),%r9 movq 8+256(%rsp),%r10 leaq 0+256(%rsp),%rsi movq 16+256(%rsp),%r11 movq 24+256(%rsp),%r12 leaq 256(%rsp),%rdi call __ecp_nistz256_mul_montq leaq 224(%rsp),%rbx leaq 64(%rsp),%rdi call __ecp_nistz256_sub_fromq orq %r13,%r12 movdqa %xmm4,%xmm2 orq %r8,%r12 orq %r9,%r12 por %xmm5,%xmm2 .byte 102,73,15,110,220 movq 384(%rsp),%rax leaq 384(%rsp),%rbx movq 0+96(%rsp),%r9 movq 8+96(%rsp),%r10 leaq 0+96(%rsp),%rsi movq 16+96(%rsp),%r11 movq 24+96(%rsp),%r12 leaq 160(%rsp),%rdi call __ecp_nistz256_mul_montq movq 480(%rsp),%rax leaq 480(%rsp),%rbx movq 0+32(%rsp),%r9 movq 8+32(%rsp),%r10 leaq 0+32(%rsp),%rsi movq 16+32(%rsp),%r11 movq 24+32(%rsp),%r12 leaq 192(%rsp),%rdi call __ecp_nistz256_mul_montq leaq 160(%rsp),%rbx leaq 0(%rsp),%rdi call __ecp_nistz256_sub_fromq orq %r13,%r12 orq %r8,%r12 orq %r9,%r12 .byte 102,73,15,126,208 .byte 102,73,15,126,217 orq %r8,%r12 .byte 0x3e jnz L$add_proceedq testq %r9,%r9 jz L$add_doubleq .byte 102,72,15,126,199 pxor %xmm0,%xmm0 movdqu %xmm0,0(%rdi) movdqu %xmm0,16(%rdi) movdqu %xmm0,32(%rdi) movdqu %xmm0,48(%rdi) movdqu %xmm0,64(%rdi) movdqu %xmm0,80(%rdi) jmp L$add_doneq .p2align 5 L$add_doubleq: .byte 102,72,15,126,206 .byte 102,72,15,126,199 addq $416,%rsp jmp L$point_double_shortcutq .p2align 5 L$add_proceedq: movq 0+64(%rsp),%rax movq 8+64(%rsp),%r14 leaq 0+64(%rsp),%rsi movq 16+64(%rsp),%r15 movq 24+64(%rsp),%r8 leaq 96(%rsp),%rdi call __ecp_nistz256_sqr_montq movq 448(%rsp),%rax leaq 448(%rsp),%rbx movq 0+0(%rsp),%r9 movq 8+0(%rsp),%r10 leaq 0+0(%rsp),%rsi movq 16+0(%rsp),%r11 movq 24+0(%rsp),%r12 leaq 352(%rsp),%rdi call __ecp_nistz256_mul_montq movq 0+0(%rsp),%rax movq 8+0(%rsp),%r14 leaq 0+0(%rsp),%rsi movq 16+0(%rsp),%r15 movq 24+0(%rsp),%r8 leaq 32(%rsp),%rdi call __ecp_nistz256_sqr_montq movq 544(%rsp),%rax leaq 544(%rsp),%rbx movq 0+352(%rsp),%r9 movq 8+352(%rsp),%r10 leaq 0+352(%rsp),%rsi movq 16+352(%rsp),%r11 movq 24+352(%rsp),%r12 leaq 352(%rsp),%rdi call __ecp_nistz256_mul_montq movq 0(%rsp),%rax leaq 0(%rsp),%rbx movq 0+32(%rsp),%r9 movq 8+32(%rsp),%r10 leaq 0+32(%rsp),%rsi movq 16+32(%rsp),%r11 movq 24+32(%rsp),%r12 leaq 128(%rsp),%rdi call __ecp_nistz256_mul_montq movq 160(%rsp),%rax leaq 160(%rsp),%rbx movq 0+32(%rsp),%r9 movq 8+32(%rsp),%r10 leaq 0+32(%rsp),%rsi movq 16+32(%rsp),%r11 movq 24+32(%rsp),%r12 leaq 192(%rsp),%rdi call __ecp_nistz256_mul_montq xorq %r11,%r11 addq %r12,%r12 leaq 96(%rsp),%rsi adcq %r13,%r13 movq %r12,%rax adcq %r8,%r8 adcq %r9,%r9 movq %r13,%rbp adcq $0,%r11 subq $-1,%r12 movq %r8,%rcx sbbq %r14,%r13 sbbq $0,%r8 movq %r9,%r10 sbbq %r15,%r9 sbbq $0,%r11 cmovcq %rax,%r12 movq 0(%rsi),%rax cmovcq %rbp,%r13 movq 8(%rsi),%rbp cmovcq %rcx,%r8 movq 16(%rsi),%rcx cmovcq %r10,%r9 movq 24(%rsi),%r10 call __ecp_nistz256_subq leaq 128(%rsp),%rbx leaq 288(%rsp),%rdi call __ecp_nistz256_sub_fromq movq 192+0(%rsp),%rax movq 192+8(%rsp),%rbp movq 192+16(%rsp),%rcx movq 192+24(%rsp),%r10 leaq 320(%rsp),%rdi call __ecp_nistz256_subq movq %r12,0(%rdi) movq %r13,8(%rdi) movq %r8,16(%rdi) movq %r9,24(%rdi) movq 128(%rsp),%rax leaq 128(%rsp),%rbx movq 0+224(%rsp),%r9 movq 8+224(%rsp),%r10 leaq 0+224(%rsp),%rsi movq 16+224(%rsp),%r11 movq 24+224(%rsp),%r12 leaq 256(%rsp),%rdi call __ecp_nistz256_mul_montq movq 320(%rsp),%rax leaq 320(%rsp),%rbx movq 0+64(%rsp),%r9 movq 8+64(%rsp),%r10 leaq 0+64(%rsp),%rsi movq 16+64(%rsp),%r11 movq 24+64(%rsp),%r12 leaq 320(%rsp),%rdi call __ecp_nistz256_mul_montq leaq 256(%rsp),%rbx leaq 320(%rsp),%rdi call __ecp_nistz256_sub_fromq .byte 102,72,15,126,199 movdqa %xmm5,%xmm0 movdqa %xmm5,%xmm1 pandn 352(%rsp),%xmm0 movdqa %xmm5,%xmm2 pandn 352+16(%rsp),%xmm1 movdqa %xmm5,%xmm3 pand 544(%rsp),%xmm2 pand 544+16(%rsp),%xmm3 por %xmm0,%xmm2 por %xmm1,%xmm3 movdqa %xmm4,%xmm0 movdqa %xmm4,%xmm1 pandn %xmm2,%xmm0 movdqa %xmm4,%xmm2 pandn %xmm3,%xmm1 movdqa %xmm4,%xmm3 pand 448(%rsp),%xmm2 pand 448+16(%rsp),%xmm3 por %xmm0,%xmm2 por %xmm1,%xmm3 movdqu %xmm2,64(%rdi) movdqu %xmm3,80(%rdi) movdqa %xmm5,%xmm0 movdqa %xmm5,%xmm1 pandn 288(%rsp),%xmm0 movdqa %xmm5,%xmm2 pandn 288+16(%rsp),%xmm1 movdqa %xmm5,%xmm3 pand 480(%rsp),%xmm2 pand 480+16(%rsp),%xmm3 por %xmm0,%xmm2 por %xmm1,%xmm3 movdqa %xmm4,%xmm0 movdqa %xmm4,%xmm1 pandn %xmm2,%xmm0 movdqa %xmm4,%xmm2 pandn %xmm3,%xmm1 movdqa %xmm4,%xmm3 pand 384(%rsp),%xmm2 pand 384+16(%rsp),%xmm3 por %xmm0,%xmm2 por %xmm1,%xmm3 movdqu %xmm2,0(%rdi) movdqu %xmm3,16(%rdi) movdqa %xmm5,%xmm0 movdqa %xmm5,%xmm1 pandn 320(%rsp),%xmm0 movdqa %xmm5,%xmm2 pandn 320+16(%rsp),%xmm1 movdqa %xmm5,%xmm3 pand 512(%rsp),%xmm2 pand 512+16(%rsp),%xmm3 por %xmm0,%xmm2 por %xmm1,%xmm3 movdqa %xmm4,%xmm0 movdqa %xmm4,%xmm1 pandn %xmm2,%xmm0 movdqa %xmm4,%xmm2 pandn %xmm3,%xmm1 movdqa %xmm4,%xmm3 pand 416(%rsp),%xmm2 pand 416+16(%rsp),%xmm3 por %xmm0,%xmm2 por %xmm1,%xmm3 movdqu %xmm2,32(%rdi) movdqu %xmm3,48(%rdi) L$add_doneq: leaq 576+56(%rsp),%rsi movq -48(%rsi),%r15 movq -40(%rsi),%r14 movq -32(%rsi),%r13 movq -24(%rsi),%r12 movq -16(%rsi),%rbx movq -8(%rsi),%rbp leaq (%rsi),%rsp L$point_addq_epilogue: ret .globl _ecp_nistz256_point_add_affine_nohw .private_extern _ecp_nistz256_point_add_affine_nohw .p2align 5 _ecp_nistz256_point_add_affine_nohw: _CET_ENDBR pushq %rbp pushq %rbx pushq %r12 pushq %r13 pushq %r14 pushq %r15 subq $480+8,%rsp L$add_affineq_body: movdqu 0(%rsi),%xmm0 movq %rdx,%rbx movdqu 16(%rsi),%xmm1 movdqu 32(%rsi),%xmm2 movdqu 48(%rsi),%xmm3 movdqu 64(%rsi),%xmm4 movdqu 80(%rsi),%xmm5 movq 64+0(%rsi),%rax movq 64+8(%rsi),%r14 movq 64+16(%rsi),%r15 movq 64+24(%rsi),%r8 movdqa %xmm0,320(%rsp) movdqa %xmm1,320+16(%rsp) movdqa %xmm2,352(%rsp) movdqa %xmm3,352+16(%rsp) movdqa %xmm4,384(%rsp) movdqa %xmm5,384+16(%rsp) por %xmm4,%xmm5 movdqu 0(%rbx),%xmm0 pshufd $0xb1,%xmm5,%xmm3 movdqu 16(%rbx),%xmm1 movdqu 32(%rbx),%xmm2 por %xmm3,%xmm5 movdqu 48(%rbx),%xmm3 movdqa %xmm0,416(%rsp) pshufd $0x1e,%xmm5,%xmm4 movdqa %xmm1,416+16(%rsp) por %xmm0,%xmm1 .byte 102,72,15,110,199 movdqa %xmm2,448(%rsp) movdqa %xmm3,448+16(%rsp) por %xmm2,%xmm3 por %xmm4,%xmm5 pxor %xmm4,%xmm4 por %xmm1,%xmm3 leaq 64-0(%rsi),%rsi leaq 32(%rsp),%rdi call __ecp_nistz256_sqr_montq pcmpeqd %xmm4,%xmm5 pshufd $0xb1,%xmm3,%xmm4 movq 0(%rbx),%rax movq %r12,%r9 por %xmm3,%xmm4 pshufd $0,%xmm5,%xmm5 pshufd $0x1e,%xmm4,%xmm3 movq %r13,%r10 por %xmm3,%xmm4 pxor %xmm3,%xmm3 movq %r14,%r11 pcmpeqd %xmm3,%xmm4 pshufd $0,%xmm4,%xmm4 leaq 32-0(%rsp),%rsi movq %r15,%r12 leaq 0(%rsp),%rdi call __ecp_nistz256_mul_montq leaq 320(%rsp),%rbx leaq 64(%rsp),%rdi call __ecp_nistz256_sub_fromq movq 384(%rsp),%rax leaq 384(%rsp),%rbx movq 0+32(%rsp),%r9 movq 8+32(%rsp),%r10 leaq 0+32(%rsp),%rsi movq 16+32(%rsp),%r11 movq 24+32(%rsp),%r12 leaq 32(%rsp),%rdi call __ecp_nistz256_mul_montq movq 384(%rsp),%rax leaq 384(%rsp),%rbx movq 0+64(%rsp),%r9 movq 8+64(%rsp),%r10 leaq 0+64(%rsp),%rsi movq 16+64(%rsp),%r11 movq 24+64(%rsp),%r12 leaq 288(%rsp),%rdi call __ecp_nistz256_mul_montq movq 448(%rsp),%rax leaq 448(%rsp),%rbx movq 0+32(%rsp),%r9 movq 8+32(%rsp),%r10 leaq 0+32(%rsp),%rsi movq 16+32(%rsp),%r11 movq 24+32(%rsp),%r12 leaq 32(%rsp),%rdi call __ecp_nistz256_mul_montq leaq 352(%rsp),%rbx leaq 96(%rsp),%rdi call __ecp_nistz256_sub_fromq movq 0+64(%rsp),%rax movq 8+64(%rsp),%r14 leaq 0+64(%rsp),%rsi movq 16+64(%rsp),%r15 movq 24+64(%rsp),%r8 leaq 128(%rsp),%rdi call __ecp_nistz256_sqr_montq movq 0+96(%rsp),%rax movq 8+96(%rsp),%r14 leaq 0+96(%rsp),%rsi movq 16+96(%rsp),%r15 movq 24+96(%rsp),%r8 leaq 192(%rsp),%rdi call __ecp_nistz256_sqr_montq movq 128(%rsp),%rax leaq 128(%rsp),%rbx movq 0+64(%rsp),%r9 movq 8+64(%rsp),%r10 leaq 0+64(%rsp),%rsi movq 16+64(%rsp),%r11 movq 24+64(%rsp),%r12 leaq 160(%rsp),%rdi call __ecp_nistz256_mul_montq movq 320(%rsp),%rax leaq 320(%rsp),%rbx movq 0+128(%rsp),%r9 movq 8+128(%rsp),%r10 leaq 0+128(%rsp),%rsi movq 16+128(%rsp),%r11 movq 24+128(%rsp),%r12 leaq 0(%rsp),%rdi call __ecp_nistz256_mul_montq xorq %r11,%r11 addq %r12,%r12 leaq 192(%rsp),%rsi adcq %r13,%r13 movq %r12,%rax adcq %r8,%r8 adcq %r9,%r9 movq %r13,%rbp adcq $0,%r11 subq $-1,%r12 movq %r8,%rcx sbbq %r14,%r13 sbbq $0,%r8 movq %r9,%r10 sbbq %r15,%r9 sbbq $0,%r11 cmovcq %rax,%r12 movq 0(%rsi),%rax cmovcq %rbp,%r13 movq 8(%rsi),%rbp cmovcq %rcx,%r8 movq 16(%rsi),%rcx cmovcq %r10,%r9 movq 24(%rsi),%r10 call __ecp_nistz256_subq leaq 160(%rsp),%rbx leaq 224(%rsp),%rdi call __ecp_nistz256_sub_fromq movq 0+0(%rsp),%rax movq 0+8(%rsp),%rbp movq 0+16(%rsp),%rcx movq 0+24(%rsp),%r10 leaq 64(%rsp),%rdi call __ecp_nistz256_subq movq %r12,0(%rdi) movq %r13,8(%rdi) movq %r8,16(%rdi) movq %r9,24(%rdi) movq 352(%rsp),%rax leaq 352(%rsp),%rbx movq 0+160(%rsp),%r9 movq 8+160(%rsp),%r10 leaq 0+160(%rsp),%rsi movq 16+160(%rsp),%r11 movq 24+160(%rsp),%r12 leaq 32(%rsp),%rdi call __ecp_nistz256_mul_montq movq 96(%rsp),%rax leaq 96(%rsp),%rbx movq 0+64(%rsp),%r9 movq 8+64(%rsp),%r10 leaq 0+64(%rsp),%rsi movq 16+64(%rsp),%r11 movq 24+64(%rsp),%r12 leaq 64(%rsp),%rdi call __ecp_nistz256_mul_montq leaq 32(%rsp),%rbx leaq 256(%rsp),%rdi call __ecp_nistz256_sub_fromq .byte 102,72,15,126,199 movdqa %xmm5,%xmm0 movdqa %xmm5,%xmm1 pandn 288(%rsp),%xmm0 movdqa %xmm5,%xmm2 pandn 288+16(%rsp),%xmm1 movdqa %xmm5,%xmm3 pand L$ONE_mont(%rip),%xmm2 pand L$ONE_mont+16(%rip),%xmm3 por %xmm0,%xmm2 por %xmm1,%xmm3 movdqa %xmm4,%xmm0 movdqa %xmm4,%xmm1 pandn %xmm2,%xmm0 movdqa %xmm4,%xmm2 pandn %xmm3,%xmm1 movdqa %xmm4,%xmm3 pand 384(%rsp),%xmm2 pand 384+16(%rsp),%xmm3 por %xmm0,%xmm2 por %xmm1,%xmm3 movdqu %xmm2,64(%rdi) movdqu %xmm3,80(%rdi) movdqa %xmm5,%xmm0 movdqa %xmm5,%xmm1 pandn 224(%rsp),%xmm0 movdqa %xmm5,%xmm2 pandn 224+16(%rsp),%xmm1 movdqa %xmm5,%xmm3 pand 416(%rsp),%xmm2 pand 416+16(%rsp),%xmm3 por %xmm0,%xmm2 por %xmm1,%xmm3 movdqa %xmm4,%xmm0 movdqa %xmm4,%xmm1 pandn %xmm2,%xmm0 movdqa %xmm4,%xmm2 pandn %xmm3,%xmm1 movdqa %xmm4,%xmm3 pand 320(%rsp),%xmm2 pand 320+16(%rsp),%xmm3 por %xmm0,%xmm2 por %xmm1,%xmm3 movdqu %xmm2,0(%rdi) movdqu %xmm3,16(%rdi) movdqa %xmm5,%xmm0 movdqa %xmm5,%xmm1 pandn 256(%rsp),%xmm0 movdqa %xmm5,%xmm2 pandn 256+16(%rsp),%xmm1 movdqa %xmm5,%xmm3 pand 448(%rsp),%xmm2 pand 448+16(%rsp),%xmm3 por %xmm0,%xmm2 por %xmm1,%xmm3 movdqa %xmm4,%xmm0 movdqa %xmm4,%xmm1 pandn %xmm2,%xmm0 movdqa %xmm4,%xmm2 pandn %xmm3,%xmm1 movdqa %xmm4,%xmm3 pand 352(%rsp),%xmm2 pand 352+16(%rsp),%xmm3 por %xmm0,%xmm2 por %xmm1,%xmm3 movdqu %xmm2,32(%rdi) movdqu %xmm3,48(%rdi) leaq 480+56(%rsp),%rsi movq -48(%rsi),%r15 movq -40(%rsi),%r14 movq -32(%rsi),%r13 movq -24(%rsi),%r12 movq -16(%rsi),%rbx movq -8(%rsi),%rbp leaq (%rsi),%rsp L$add_affineq_epilogue: ret .p2align 5 __ecp_nistz256_add_tox: xorq %r11,%r11 adcq 0(%rbx),%r12 adcq 8(%rbx),%r13 movq %r12,%rax adcq 16(%rbx),%r8 adcq 24(%rbx),%r9 movq %r13,%rbp adcq $0,%r11 xorq %r10,%r10 sbbq $-1,%r12 movq %r8,%rcx sbbq %r14,%r13 sbbq $0,%r8 movq %r9,%r10 sbbq %r15,%r9 sbbq $0,%r11 cmovcq %rax,%r12 cmovcq %rbp,%r13 movq %r12,0(%rdi) cmovcq %rcx,%r8 movq %r13,8(%rdi) cmovcq %r10,%r9 movq %r8,16(%rdi) movq %r9,24(%rdi) ret .p2align 5 __ecp_nistz256_sub_fromx: xorq %r11,%r11 sbbq 0(%rbx),%r12 sbbq 8(%rbx),%r13 movq %r12,%rax sbbq 16(%rbx),%r8 sbbq 24(%rbx),%r9 movq %r13,%rbp sbbq $0,%r11 xorq %r10,%r10 adcq $-1,%r12 movq %r8,%rcx adcq %r14,%r13 adcq $0,%r8 movq %r9,%r10 adcq %r15,%r9 btq $0,%r11 cmovncq %rax,%r12 cmovncq %rbp,%r13 movq %r12,0(%rdi) cmovncq %rcx,%r8 movq %r13,8(%rdi) cmovncq %r10,%r9 movq %r8,16(%rdi) movq %r9,24(%rdi) ret .p2align 5 __ecp_nistz256_subx: xorq %r11,%r11 sbbq %r12,%rax sbbq %r13,%rbp movq %rax,%r12 sbbq %r8,%rcx sbbq %r9,%r10 movq %rbp,%r13 sbbq $0,%r11 xorq %r9,%r9 adcq $-1,%rax movq %rcx,%r8 adcq %r14,%rbp adcq $0,%rcx movq %r10,%r9 adcq %r15,%r10 btq $0,%r11 cmovcq %rax,%r12 cmovcq %rbp,%r13 cmovcq %rcx,%r8 cmovcq %r10,%r9 ret .p2align 5 __ecp_nistz256_mul_by_2x: xorq %r11,%r11 adcq %r12,%r12 adcq %r13,%r13 movq %r12,%rax adcq %r8,%r8 adcq %r9,%r9 movq %r13,%rbp adcq $0,%r11 xorq %r10,%r10 sbbq $-1,%r12 movq %r8,%rcx sbbq %r14,%r13 sbbq $0,%r8 movq %r9,%r10 sbbq %r15,%r9 sbbq $0,%r11 cmovcq %rax,%r12 cmovcq %rbp,%r13 movq %r12,0(%rdi) cmovcq %rcx,%r8 movq %r13,8(%rdi) cmovcq %r10,%r9 movq %r8,16(%rdi) movq %r9,24(%rdi) ret .globl _ecp_nistz256_point_double_adx .private_extern _ecp_nistz256_point_double_adx .p2align 5 _ecp_nistz256_point_double_adx: _CET_ENDBR pushq %rbp pushq %rbx pushq %r12 pushq %r13 pushq %r14 pushq %r15 subq $160+8,%rsp L$point_doublex_body: L$point_double_shortcutx: movdqu 0(%rsi),%xmm0 movq %rsi,%rbx movdqu 16(%rsi),%xmm1 movq 32+0(%rsi),%r12 movq 32+8(%rsi),%r13 movq 32+16(%rsi),%r8 movq 32+24(%rsi),%r9 movq L$poly+8(%rip),%r14 movq L$poly+24(%rip),%r15 movdqa %xmm0,96(%rsp) movdqa %xmm1,96+16(%rsp) leaq 32(%rdi),%r10 leaq 64(%rdi),%r11 .byte 102,72,15,110,199 .byte 102,73,15,110,202 .byte 102,73,15,110,211 leaq 0(%rsp),%rdi call __ecp_nistz256_mul_by_2x movq 64+0(%rsi),%rdx movq 64+8(%rsi),%r14 movq 64+16(%rsi),%r15 movq 64+24(%rsi),%r8 leaq 64-128(%rsi),%rsi leaq 64(%rsp),%rdi call __ecp_nistz256_sqr_montx movq 0+0(%rsp),%rdx movq 8+0(%rsp),%r14 leaq -128+0(%rsp),%rsi movq 16+0(%rsp),%r15 movq 24+0(%rsp),%r8 leaq 0(%rsp),%rdi call __ecp_nistz256_sqr_montx movq 32(%rbx),%rdx movq 64+0(%rbx),%r9 movq 64+8(%rbx),%r10 movq 64+16(%rbx),%r11 movq 64+24(%rbx),%r12 leaq 64-128(%rbx),%rsi leaq 32(%rbx),%rbx .byte 102,72,15,126,215 call __ecp_nistz256_mul_montx call __ecp_nistz256_mul_by_2x movq 96+0(%rsp),%r12 movq 96+8(%rsp),%r13 leaq 64(%rsp),%rbx movq 96+16(%rsp),%r8 movq 96+24(%rsp),%r9 leaq 32(%rsp),%rdi call __ecp_nistz256_add_tox movq 96+0(%rsp),%r12 movq 96+8(%rsp),%r13 leaq 64(%rsp),%rbx movq 96+16(%rsp),%r8 movq 96+24(%rsp),%r9 leaq 64(%rsp),%rdi call __ecp_nistz256_sub_fromx movq 0+0(%rsp),%rdx movq 8+0(%rsp),%r14 leaq -128+0(%rsp),%rsi movq 16+0(%rsp),%r15 movq 24+0(%rsp),%r8 .byte 102,72,15,126,207 call __ecp_nistz256_sqr_montx xorq %r9,%r9 movq %r12,%rax addq $-1,%r12 movq %r13,%r10 adcq %rsi,%r13 movq %r14,%rcx adcq $0,%r14 movq %r15,%r8 adcq %rbp,%r15 adcq $0,%r9 xorq %rsi,%rsi testq $1,%rax cmovzq %rax,%r12 cmovzq %r10,%r13 cmovzq %rcx,%r14 cmovzq %r8,%r15 cmovzq %rsi,%r9 movq %r13,%rax shrq $1,%r12 shlq $63,%rax movq %r14,%r10 shrq $1,%r13 orq %rax,%r12 shlq $63,%r10 movq %r15,%rcx shrq $1,%r14 orq %r10,%r13 shlq $63,%rcx movq %r12,0(%rdi) shrq $1,%r15 movq %r13,8(%rdi) shlq $63,%r9 orq %rcx,%r14 orq %r9,%r15 movq %r14,16(%rdi) movq %r15,24(%rdi) movq 64(%rsp),%rdx leaq 64(%rsp),%rbx movq 0+32(%rsp),%r9 movq 8+32(%rsp),%r10 leaq -128+32(%rsp),%rsi movq 16+32(%rsp),%r11 movq 24+32(%rsp),%r12 leaq 32(%rsp),%rdi call __ecp_nistz256_mul_montx leaq 128(%rsp),%rdi call __ecp_nistz256_mul_by_2x leaq 32(%rsp),%rbx leaq 32(%rsp),%rdi call __ecp_nistz256_add_tox movq 96(%rsp),%rdx leaq 96(%rsp),%rbx movq 0+0(%rsp),%r9 movq 8+0(%rsp),%r10 leaq -128+0(%rsp),%rsi movq 16+0(%rsp),%r11 movq 24+0(%rsp),%r12 leaq 0(%rsp),%rdi call __ecp_nistz256_mul_montx leaq 128(%rsp),%rdi call __ecp_nistz256_mul_by_2x movq 0+32(%rsp),%rdx movq 8+32(%rsp),%r14 leaq -128+32(%rsp),%rsi movq 16+32(%rsp),%r15 movq 24+32(%rsp),%r8 .byte 102,72,15,126,199 call __ecp_nistz256_sqr_montx leaq 128(%rsp),%rbx movq %r14,%r8 movq %r15,%r9 movq %rsi,%r14 movq %rbp,%r15 call __ecp_nistz256_sub_fromx movq 0+0(%rsp),%rax movq 0+8(%rsp),%rbp movq 0+16(%rsp),%rcx movq 0+24(%rsp),%r10 leaq 0(%rsp),%rdi call __ecp_nistz256_subx movq 32(%rsp),%rdx leaq 32(%rsp),%rbx movq %r12,%r14 xorl %ecx,%ecx movq %r12,0+0(%rsp) movq %r13,%r10 movq %r13,0+8(%rsp) cmovzq %r8,%r11 movq %r8,0+16(%rsp) leaq 0-128(%rsp),%rsi cmovzq %r9,%r12 movq %r9,0+24(%rsp) movq %r14,%r9 leaq 0(%rsp),%rdi call __ecp_nistz256_mul_montx .byte 102,72,15,126,203 .byte 102,72,15,126,207 call __ecp_nistz256_sub_fromx leaq 160+56(%rsp),%rsi movq -48(%rsi),%r15 movq -40(%rsi),%r14 movq -32(%rsi),%r13 movq -24(%rsi),%r12 movq -16(%rsi),%rbx movq -8(%rsi),%rbp leaq (%rsi),%rsp L$point_doublex_epilogue: ret .globl _ecp_nistz256_point_add_adx .private_extern _ecp_nistz256_point_add_adx .p2align 5 _ecp_nistz256_point_add_adx: _CET_ENDBR pushq %rbp pushq %rbx pushq %r12 pushq %r13 pushq %r14 pushq %r15 subq $576+8,%rsp L$point_addx_body: movdqu 0(%rsi),%xmm0 movdqu 16(%rsi),%xmm1 movdqu 32(%rsi),%xmm2 movdqu 48(%rsi),%xmm3 movdqu 64(%rsi),%xmm4 movdqu 80(%rsi),%xmm5 movq %rsi,%rbx movq %rdx,%rsi movdqa %xmm0,384(%rsp) movdqa %xmm1,384+16(%rsp) movdqa %xmm2,416(%rsp) movdqa %xmm3,416+16(%rsp) movdqa %xmm4,448(%rsp) movdqa %xmm5,448+16(%rsp) por %xmm4,%xmm5 movdqu 0(%rsi),%xmm0 pshufd $0xb1,%xmm5,%xmm3 movdqu 16(%rsi),%xmm1 movdqu 32(%rsi),%xmm2 por %xmm3,%xmm5 movdqu 48(%rsi),%xmm3 movq 64+0(%rsi),%rdx movq 64+8(%rsi),%r14 movq 64+16(%rsi),%r15 movq 64+24(%rsi),%r8 movdqa %xmm0,480(%rsp) pshufd $0x1e,%xmm5,%xmm4 movdqa %xmm1,480+16(%rsp) movdqu 64(%rsi),%xmm0 movdqu 80(%rsi),%xmm1 movdqa %xmm2,512(%rsp) movdqa %xmm3,512+16(%rsp) por %xmm4,%xmm5 pxor %xmm4,%xmm4 por %xmm0,%xmm1 .byte 102,72,15,110,199 leaq 64-128(%rsi),%rsi movq %rdx,544+0(%rsp) movq %r14,544+8(%rsp) movq %r15,544+16(%rsp) movq %r8,544+24(%rsp) leaq 96(%rsp),%rdi call __ecp_nistz256_sqr_montx pcmpeqd %xmm4,%xmm5 pshufd $0xb1,%xmm1,%xmm4 por %xmm1,%xmm4 pshufd $0,%xmm5,%xmm5 pshufd $0x1e,%xmm4,%xmm3 por %xmm3,%xmm4 pxor %xmm3,%xmm3 pcmpeqd %xmm3,%xmm4 pshufd $0,%xmm4,%xmm4 movq 64+0(%rbx),%rdx movq 64+8(%rbx),%r14 movq 64+16(%rbx),%r15 movq 64+24(%rbx),%r8 .byte 102,72,15,110,203 leaq 64-128(%rbx),%rsi leaq 32(%rsp),%rdi call __ecp_nistz256_sqr_montx movq 544(%rsp),%rdx leaq 544(%rsp),%rbx movq 0+96(%rsp),%r9 movq 8+96(%rsp),%r10 leaq -128+96(%rsp),%rsi movq 16+96(%rsp),%r11 movq 24+96(%rsp),%r12 leaq 224(%rsp),%rdi call __ecp_nistz256_mul_montx movq 448(%rsp),%rdx leaq 448(%rsp),%rbx movq 0+32(%rsp),%r9 movq 8+32(%rsp),%r10 leaq -128+32(%rsp),%rsi movq 16+32(%rsp),%r11 movq 24+32(%rsp),%r12 leaq 256(%rsp),%rdi call __ecp_nistz256_mul_montx movq 416(%rsp),%rdx leaq 416(%rsp),%rbx movq 0+224(%rsp),%r9 movq 8+224(%rsp),%r10 leaq -128+224(%rsp),%rsi movq 16+224(%rsp),%r11 movq 24+224(%rsp),%r12 leaq 224(%rsp),%rdi call __ecp_nistz256_mul_montx movq 512(%rsp),%rdx leaq 512(%rsp),%rbx movq 0+256(%rsp),%r9 movq 8+256(%rsp),%r10 leaq -128+256(%rsp),%rsi movq 16+256(%rsp),%r11 movq 24+256(%rsp),%r12 leaq 256(%rsp),%rdi call __ecp_nistz256_mul_montx leaq 224(%rsp),%rbx leaq 64(%rsp),%rdi call __ecp_nistz256_sub_fromx orq %r13,%r12 movdqa %xmm4,%xmm2 orq %r8,%r12 orq %r9,%r12 por %xmm5,%xmm2 .byte 102,73,15,110,220 movq 384(%rsp),%rdx leaq 384(%rsp),%rbx movq 0+96(%rsp),%r9 movq 8+96(%rsp),%r10 leaq -128+96(%rsp),%rsi movq 16+96(%rsp),%r11 movq 24+96(%rsp),%r12 leaq 160(%rsp),%rdi call __ecp_nistz256_mul_montx movq 480(%rsp),%rdx leaq 480(%rsp),%rbx movq 0+32(%rsp),%r9 movq 8+32(%rsp),%r10 leaq -128+32(%rsp),%rsi movq 16+32(%rsp),%r11 movq 24+32(%rsp),%r12 leaq 192(%rsp),%rdi call __ecp_nistz256_mul_montx leaq 160(%rsp),%rbx leaq 0(%rsp),%rdi call __ecp_nistz256_sub_fromx orq %r13,%r12 orq %r8,%r12 orq %r9,%r12 .byte 102,73,15,126,208 .byte 102,73,15,126,217 orq %r8,%r12 .byte 0x3e jnz L$add_proceedx testq %r9,%r9 jz L$add_doublex .byte 102,72,15,126,199 pxor %xmm0,%xmm0 movdqu %xmm0,0(%rdi) movdqu %xmm0,16(%rdi) movdqu %xmm0,32(%rdi) movdqu %xmm0,48(%rdi) movdqu %xmm0,64(%rdi) movdqu %xmm0,80(%rdi) jmp L$add_donex .p2align 5 L$add_doublex: .byte 102,72,15,126,206 .byte 102,72,15,126,199 addq $416,%rsp jmp L$point_double_shortcutx .p2align 5 L$add_proceedx: movq 0+64(%rsp),%rdx movq 8+64(%rsp),%r14 leaq -128+64(%rsp),%rsi movq 16+64(%rsp),%r15 movq 24+64(%rsp),%r8 leaq 96(%rsp),%rdi call __ecp_nistz256_sqr_montx movq 448(%rsp),%rdx leaq 448(%rsp),%rbx movq 0+0(%rsp),%r9 movq 8+0(%rsp),%r10 leaq -128+0(%rsp),%rsi movq 16+0(%rsp),%r11 movq 24+0(%rsp),%r12 leaq 352(%rsp),%rdi call __ecp_nistz256_mul_montx movq 0+0(%rsp),%rdx movq 8+0(%rsp),%r14 leaq -128+0(%rsp),%rsi movq 16+0(%rsp),%r15 movq 24+0(%rsp),%r8 leaq 32(%rsp),%rdi call __ecp_nistz256_sqr_montx movq 544(%rsp),%rdx leaq 544(%rsp),%rbx movq 0+352(%rsp),%r9 movq 8+352(%rsp),%r10 leaq -128+352(%rsp),%rsi movq 16+352(%rsp),%r11 movq 24+352(%rsp),%r12 leaq 352(%rsp),%rdi call __ecp_nistz256_mul_montx movq 0(%rsp),%rdx leaq 0(%rsp),%rbx movq 0+32(%rsp),%r9 movq 8+32(%rsp),%r10 leaq -128+32(%rsp),%rsi movq 16+32(%rsp),%r11 movq 24+32(%rsp),%r12 leaq 128(%rsp),%rdi call __ecp_nistz256_mul_montx movq 160(%rsp),%rdx leaq 160(%rsp),%rbx movq 0+32(%rsp),%r9 movq 8+32(%rsp),%r10 leaq -128+32(%rsp),%rsi movq 16+32(%rsp),%r11 movq 24+32(%rsp),%r12 leaq 192(%rsp),%rdi call __ecp_nistz256_mul_montx xorq %r11,%r11 addq %r12,%r12 leaq 96(%rsp),%rsi adcq %r13,%r13 movq %r12,%rax adcq %r8,%r8 adcq %r9,%r9 movq %r13,%rbp adcq $0,%r11 subq $-1,%r12 movq %r8,%rcx sbbq %r14,%r13 sbbq $0,%r8 movq %r9,%r10 sbbq %r15,%r9 sbbq $0,%r11 cmovcq %rax,%r12 movq 0(%rsi),%rax cmovcq %rbp,%r13 movq 8(%rsi),%rbp cmovcq %rcx,%r8 movq 16(%rsi),%rcx cmovcq %r10,%r9 movq 24(%rsi),%r10 call __ecp_nistz256_subx leaq 128(%rsp),%rbx leaq 288(%rsp),%rdi call __ecp_nistz256_sub_fromx movq 192+0(%rsp),%rax movq 192+8(%rsp),%rbp movq 192+16(%rsp),%rcx movq 192+24(%rsp),%r10 leaq 320(%rsp),%rdi call __ecp_nistz256_subx movq %r12,0(%rdi) movq %r13,8(%rdi) movq %r8,16(%rdi) movq %r9,24(%rdi) movq 128(%rsp),%rdx leaq 128(%rsp),%rbx movq 0+224(%rsp),%r9 movq 8+224(%rsp),%r10 leaq -128+224(%rsp),%rsi movq 16+224(%rsp),%r11 movq 24+224(%rsp),%r12 leaq 256(%rsp),%rdi call __ecp_nistz256_mul_montx movq 320(%rsp),%rdx leaq 320(%rsp),%rbx movq 0+64(%rsp),%r9 movq 8+64(%rsp),%r10 leaq -128+64(%rsp),%rsi movq 16+64(%rsp),%r11 movq 24+64(%rsp),%r12 leaq 320(%rsp),%rdi call __ecp_nistz256_mul_montx leaq 256(%rsp),%rbx leaq 320(%rsp),%rdi call __ecp_nistz256_sub_fromx .byte 102,72,15,126,199 movdqa %xmm5,%xmm0 movdqa %xmm5,%xmm1 pandn 352(%rsp),%xmm0 movdqa %xmm5,%xmm2 pandn 352+16(%rsp),%xmm1 movdqa %xmm5,%xmm3 pand 544(%rsp),%xmm2 pand 544+16(%rsp),%xmm3 por %xmm0,%xmm2 por %xmm1,%xmm3 movdqa %xmm4,%xmm0 movdqa %xmm4,%xmm1 pandn %xmm2,%xmm0 movdqa %xmm4,%xmm2 pandn %xmm3,%xmm1 movdqa %xmm4,%xmm3 pand 448(%rsp),%xmm2 pand 448+16(%rsp),%xmm3 por %xmm0,%xmm2 por %xmm1,%xmm3 movdqu %xmm2,64(%rdi) movdqu %xmm3,80(%rdi) movdqa %xmm5,%xmm0 movdqa %xmm5,%xmm1 pandn 288(%rsp),%xmm0 movdqa %xmm5,%xmm2 pandn 288+16(%rsp),%xmm1 movdqa %xmm5,%xmm3 pand 480(%rsp),%xmm2 pand 480+16(%rsp),%xmm3 por %xmm0,%xmm2 por %xmm1,%xmm3 movdqa %xmm4,%xmm0 movdqa %xmm4,%xmm1 pandn %xmm2,%xmm0 movdqa %xmm4,%xmm2 pandn %xmm3,%xmm1 movdqa %xmm4,%xmm3 pand 384(%rsp),%xmm2 pand 384+16(%rsp),%xmm3 por %xmm0,%xmm2 por %xmm1,%xmm3 movdqu %xmm2,0(%rdi) movdqu %xmm3,16(%rdi) movdqa %xmm5,%xmm0 movdqa %xmm5,%xmm1 pandn 320(%rsp),%xmm0 movdqa %xmm5,%xmm2 pandn 320+16(%rsp),%xmm1 movdqa %xmm5,%xmm3 pand 512(%rsp),%xmm2 pand 512+16(%rsp),%xmm3 por %xmm0,%xmm2 por %xmm1,%xmm3 movdqa %xmm4,%xmm0 movdqa %xmm4,%xmm1 pandn %xmm2,%xmm0 movdqa %xmm4,%xmm2 pandn %xmm3,%xmm1 movdqa %xmm4,%xmm3 pand 416(%rsp),%xmm2 pand 416+16(%rsp),%xmm3 por %xmm0,%xmm2 por %xmm1,%xmm3 movdqu %xmm2,32(%rdi) movdqu %xmm3,48(%rdi) L$add_donex: leaq 576+56(%rsp),%rsi movq -48(%rsi),%r15 movq -40(%rsi),%r14 movq -32(%rsi),%r13 movq -24(%rsi),%r12 movq -16(%rsi),%rbx movq -8(%rsi),%rbp leaq (%rsi),%rsp L$point_addx_epilogue: ret .globl _ecp_nistz256_point_add_affine_adx .private_extern _ecp_nistz256_point_add_affine_adx .p2align 5 _ecp_nistz256_point_add_affine_adx: _CET_ENDBR pushq %rbp pushq %rbx pushq %r12 pushq %r13 pushq %r14 pushq %r15 subq $480+8,%rsp L$add_affinex_body: movdqu 0(%rsi),%xmm0 movq %rdx,%rbx movdqu 16(%rsi),%xmm1 movdqu 32(%rsi),%xmm2 movdqu 48(%rsi),%xmm3 movdqu 64(%rsi),%xmm4 movdqu 80(%rsi),%xmm5 movq 64+0(%rsi),%rdx movq 64+8(%rsi),%r14 movq 64+16(%rsi),%r15 movq 64+24(%rsi),%r8 movdqa %xmm0,320(%rsp) movdqa %xmm1,320+16(%rsp) movdqa %xmm2,352(%rsp) movdqa %xmm3,352+16(%rsp) movdqa %xmm4,384(%rsp) movdqa %xmm5,384+16(%rsp) por %xmm4,%xmm5 movdqu 0(%rbx),%xmm0 pshufd $0xb1,%xmm5,%xmm3 movdqu 16(%rbx),%xmm1 movdqu 32(%rbx),%xmm2 por %xmm3,%xmm5 movdqu 48(%rbx),%xmm3 movdqa %xmm0,416(%rsp) pshufd $0x1e,%xmm5,%xmm4 movdqa %xmm1,416+16(%rsp) por %xmm0,%xmm1 .byte 102,72,15,110,199 movdqa %xmm2,448(%rsp) movdqa %xmm3,448+16(%rsp) por %xmm2,%xmm3 por %xmm4,%xmm5 pxor %xmm4,%xmm4 por %xmm1,%xmm3 leaq 64-128(%rsi),%rsi leaq 32(%rsp),%rdi call __ecp_nistz256_sqr_montx pcmpeqd %xmm4,%xmm5 pshufd $0xb1,%xmm3,%xmm4 movq 0(%rbx),%rdx movq %r12,%r9 por %xmm3,%xmm4 pshufd $0,%xmm5,%xmm5 pshufd $0x1e,%xmm4,%xmm3 movq %r13,%r10 por %xmm3,%xmm4 pxor %xmm3,%xmm3 movq %r14,%r11 pcmpeqd %xmm3,%xmm4 pshufd $0,%xmm4,%xmm4 leaq 32-128(%rsp),%rsi movq %r15,%r12 leaq 0(%rsp),%rdi call __ecp_nistz256_mul_montx leaq 320(%rsp),%rbx leaq 64(%rsp),%rdi call __ecp_nistz256_sub_fromx movq 384(%rsp),%rdx leaq 384(%rsp),%rbx movq 0+32(%rsp),%r9 movq 8+32(%rsp),%r10 leaq -128+32(%rsp),%rsi movq 16+32(%rsp),%r11 movq 24+32(%rsp),%r12 leaq 32(%rsp),%rdi call __ecp_nistz256_mul_montx movq 384(%rsp),%rdx leaq 384(%rsp),%rbx movq 0+64(%rsp),%r9 movq 8+64(%rsp),%r10 leaq -128+64(%rsp),%rsi movq 16+64(%rsp),%r11 movq 24+64(%rsp),%r12 leaq 288(%rsp),%rdi call __ecp_nistz256_mul_montx movq 448(%rsp),%rdx leaq 448(%rsp),%rbx movq 0+32(%rsp),%r9 movq 8+32(%rsp),%r10 leaq -128+32(%rsp),%rsi movq 16+32(%rsp),%r11 movq 24+32(%rsp),%r12 leaq 32(%rsp),%rdi call __ecp_nistz256_mul_montx leaq 352(%rsp),%rbx leaq 96(%rsp),%rdi call __ecp_nistz256_sub_fromx movq 0+64(%rsp),%rdx movq 8+64(%rsp),%r14 leaq -128+64(%rsp),%rsi movq 16+64(%rsp),%r15 movq 24+64(%rsp),%r8 leaq 128(%rsp),%rdi call __ecp_nistz256_sqr_montx movq 0+96(%rsp),%rdx movq 8+96(%rsp),%r14 leaq -128+96(%rsp),%rsi movq 16+96(%rsp),%r15 movq 24+96(%rsp),%r8 leaq 192(%rsp),%rdi call __ecp_nistz256_sqr_montx movq 128(%rsp),%rdx leaq 128(%rsp),%rbx movq 0+64(%rsp),%r9 movq 8+64(%rsp),%r10 leaq -128+64(%rsp),%rsi movq 16+64(%rsp),%r11 movq 24+64(%rsp),%r12 leaq 160(%rsp),%rdi call __ecp_nistz256_mul_montx movq 320(%rsp),%rdx leaq 320(%rsp),%rbx movq 0+128(%rsp),%r9 movq 8+128(%rsp),%r10 leaq -128+128(%rsp),%rsi movq 16+128(%rsp),%r11 movq 24+128(%rsp),%r12 leaq 0(%rsp),%rdi call __ecp_nistz256_mul_montx xorq %r11,%r11 addq %r12,%r12 leaq 192(%rsp),%rsi adcq %r13,%r13 movq %r12,%rax adcq %r8,%r8 adcq %r9,%r9 movq %r13,%rbp adcq $0,%r11 subq $-1,%r12 movq %r8,%rcx sbbq %r14,%r13 sbbq $0,%r8 movq %r9,%r10 sbbq %r15,%r9 sbbq $0,%r11 cmovcq %rax,%r12 movq 0(%rsi),%rax cmovcq %rbp,%r13 movq 8(%rsi),%rbp cmovcq %rcx,%r8 movq 16(%rsi),%rcx cmovcq %r10,%r9 movq 24(%rsi),%r10 call __ecp_nistz256_subx leaq 160(%rsp),%rbx leaq 224(%rsp),%rdi call __ecp_nistz256_sub_fromx movq 0+0(%rsp),%rax movq 0+8(%rsp),%rbp movq 0+16(%rsp),%rcx movq 0+24(%rsp),%r10 leaq 64(%rsp),%rdi call __ecp_nistz256_subx movq %r12,0(%rdi) movq %r13,8(%rdi) movq %r8,16(%rdi) movq %r9,24(%rdi) movq 352(%rsp),%rdx leaq 352(%rsp),%rbx movq 0+160(%rsp),%r9 movq 8+160(%rsp),%r10 leaq -128+160(%rsp),%rsi movq 16+160(%rsp),%r11 movq 24+160(%rsp),%r12 leaq 32(%rsp),%rdi call __ecp_nistz256_mul_montx movq 96(%rsp),%rdx leaq 96(%rsp),%rbx movq 0+64(%rsp),%r9 movq 8+64(%rsp),%r10 leaq -128+64(%rsp),%rsi movq 16+64(%rsp),%r11 movq 24+64(%rsp),%r12 leaq 64(%rsp),%rdi call __ecp_nistz256_mul_montx leaq 32(%rsp),%rbx leaq 256(%rsp),%rdi call __ecp_nistz256_sub_fromx .byte 102,72,15,126,199 movdqa %xmm5,%xmm0 movdqa %xmm5,%xmm1 pandn 288(%rsp),%xmm0 movdqa %xmm5,%xmm2 pandn 288+16(%rsp),%xmm1 movdqa %xmm5,%xmm3 pand L$ONE_mont(%rip),%xmm2 pand L$ONE_mont+16(%rip),%xmm3 por %xmm0,%xmm2 por %xmm1,%xmm3 movdqa %xmm4,%xmm0 movdqa %xmm4,%xmm1 pandn %xmm2,%xmm0 movdqa %xmm4,%xmm2 pandn %xmm3,%xmm1 movdqa %xmm4,%xmm3 pand 384(%rsp),%xmm2 pand 384+16(%rsp),%xmm3 por %xmm0,%xmm2 por %xmm1,%xmm3 movdqu %xmm2,64(%rdi) movdqu %xmm3,80(%rdi) movdqa %xmm5,%xmm0 movdqa %xmm5,%xmm1 pandn 224(%rsp),%xmm0 movdqa %xmm5,%xmm2 pandn 224+16(%rsp),%xmm1 movdqa %xmm5,%xmm3 pand 416(%rsp),%xmm2 pand 416+16(%rsp),%xmm3 por %xmm0,%xmm2 por %xmm1,%xmm3 movdqa %xmm4,%xmm0 movdqa %xmm4,%xmm1 pandn %xmm2,%xmm0 movdqa %xmm4,%xmm2 pandn %xmm3,%xmm1 movdqa %xmm4,%xmm3 pand 320(%rsp),%xmm2 pand 320+16(%rsp),%xmm3 por %xmm0,%xmm2 por %xmm1,%xmm3 movdqu %xmm2,0(%rdi) movdqu %xmm3,16(%rdi) movdqa %xmm5,%xmm0 movdqa %xmm5,%xmm1 pandn 256(%rsp),%xmm0 movdqa %xmm5,%xmm2 pandn 256+16(%rsp),%xmm1 movdqa %xmm5,%xmm3 pand 448(%rsp),%xmm2 pand 448+16(%rsp),%xmm3 por %xmm0,%xmm2 por %xmm1,%xmm3 movdqa %xmm4,%xmm0 movdqa %xmm4,%xmm1 pandn %xmm2,%xmm0 movdqa %xmm4,%xmm2 pandn %xmm3,%xmm1 movdqa %xmm4,%xmm3 pand 352(%rsp),%xmm2 pand 352+16(%rsp),%xmm3 por %xmm0,%xmm2 por %xmm1,%xmm3 movdqu %xmm2,32(%rdi) movdqu %xmm3,48(%rdi) leaq 480+56(%rsp),%rsi movq -48(%rsi),%r15 movq -40(%rsi),%r14 movq -32(%rsi),%r13 movq -24(%rsi),%r12 movq -16(%rsi),%rbx movq -8(%rsi),%rbp leaq (%rsi),%rsp L$add_affinex_epilogue: ret #endif
mktmansour/MKT-KSA-Geolocation-Security
23,124
.cargo-home/registry/src/index.crates.io-1949cf8c6b5b557f/ring-0.17.14/pregenerated/vpaes-armv7-linux32.S
// This file is generated from a similarly-named Perl script in the BoringSSL // source tree. Do not edit by hand. #include <ring-core/asm_base.h> #if !defined(OPENSSL_NO_ASM) && defined(OPENSSL_ARM) && defined(__ELF__) .syntax unified .arch armv7-a .fpu neon #if defined(__thumb2__) .thumb #else .code 32 #endif .text .type _vpaes_consts,%object .align 7 @ totally strategic alignment _vpaes_consts: .Lk_mc_forward:@ mc_forward .quad 0x0407060500030201, 0x0C0F0E0D080B0A09 .quad 0x080B0A0904070605, 0x000302010C0F0E0D .quad 0x0C0F0E0D080B0A09, 0x0407060500030201 .quad 0x000302010C0F0E0D, 0x080B0A0904070605 .Lk_mc_backward:@ mc_backward .quad 0x0605040702010003, 0x0E0D0C0F0A09080B .quad 0x020100030E0D0C0F, 0x0A09080B06050407 .quad 0x0E0D0C0F0A09080B, 0x0605040702010003 .quad 0x0A09080B06050407, 0x020100030E0D0C0F .Lk_sr:@ sr .quad 0x0706050403020100, 0x0F0E0D0C0B0A0908 .quad 0x030E09040F0A0500, 0x0B06010C07020D08 .quad 0x0F060D040B020900, 0x070E050C030A0108 .quad 0x0B0E0104070A0D00, 0x0306090C0F020508 @ @ "Hot" constants @ .Lk_inv:@ inv, inva .quad 0x0E05060F0D080180, 0x040703090A0B0C02 .quad 0x01040A060F0B0780, 0x030D0E0C02050809 .Lk_ipt:@ input transform (lo, hi) .quad 0xC2B2E8985A2A7000, 0xCABAE09052227808 .quad 0x4C01307D317C4D00, 0xCD80B1FCB0FDCC81 .Lk_sbo:@ sbou, sbot .quad 0xD0D26D176FBDC700, 0x15AABF7AC502A878 .quad 0xCFE474A55FBB6A00, 0x8E1E90D1412B35FA .Lk_sb1:@ sb1u, sb1t .quad 0x3618D415FAE22300, 0x3BF7CCC10D2ED9EF .quad 0xB19BE18FCB503E00, 0xA5DF7A6E142AF544 .Lk_sb2:@ sb2u, sb2t .quad 0x69EB88400AE12900, 0xC2A163C8AB82234A .quad 0xE27A93C60B712400, 0x5EB7E955BC982FCD .byte 86,101,99,116,111,114,32,80,101,114,109,117,116,97,116,105,111,110,32,65,69,83,32,102,111,114,32,65,82,77,118,55,32,78,69,79,78,44,32,77,105,107,101,32,72,97,109,98,117,114,103,32,40,83,116,97,110,102,111,114,100,32,85,110,105,118,101,114,115,105,116,121,41,0 .align 2 .size _vpaes_consts,.-_vpaes_consts .align 6 @@ @@ _aes_preheat @@ @@ Fills q9-q15 as specified below. @@ .type _vpaes_preheat,%function .align 4 _vpaes_preheat: adr r10, .Lk_inv vmov.i8 q9, #0x0f @ .Lk_s0F vld1.64 {q10,q11}, [r10]! @ .Lk_inv add r10, r10, #64 @ Skip .Lk_ipt, .Lk_sbo vld1.64 {q12,q13}, [r10]! @ .Lk_sb1 vld1.64 {q14,q15}, [r10] @ .Lk_sb2 bx lr @@ @@ _aes_encrypt_core @@ @@ AES-encrypt q0. @@ @@ Inputs: @@ q0 = input @@ q9-q15 as in _vpaes_preheat @@ [r2] = scheduled keys @@ @@ Output in q0 @@ Clobbers q1-q5, r8-r11 @@ Preserves q6-q8 so you get some local vectors @@ @@ .type _vpaes_encrypt_core,%function .align 4 _vpaes_encrypt_core: mov r9, r2 ldr r8, [r2,#240] @ pull rounds adr r11, .Lk_ipt @ vmovdqa .Lk_ipt(%rip), %xmm2 # iptlo @ vmovdqa .Lk_ipt+16(%rip), %xmm3 # ipthi vld1.64 {q2, q3}, [r11] adr r11, .Lk_mc_forward+16 vld1.64 {q5}, [r9]! @ vmovdqu (%r9), %xmm5 # round0 key vand q1, q0, q9 @ vpand %xmm9, %xmm0, %xmm1 vshr.u8 q0, q0, #4 @ vpsrlb $4, %xmm0, %xmm0 vtbl.8 d2, {q2}, d2 @ vpshufb %xmm1, %xmm2, %xmm1 vtbl.8 d3, {q2}, d3 vtbl.8 d4, {q3}, d0 @ vpshufb %xmm0, %xmm3, %xmm2 vtbl.8 d5, {q3}, d1 veor q0, q1, q5 @ vpxor %xmm5, %xmm1, %xmm0 veor q0, q0, q2 @ vpxor %xmm2, %xmm0, %xmm0 @ .Lenc_entry ends with a bnz instruction which is normally paired with @ subs in .Lenc_loop. tst r8, r8 b .Lenc_entry .align 4 .Lenc_loop: @ middle of middle round add r10, r11, #0x40 vtbl.8 d8, {q13}, d4 @ vpshufb %xmm2, %xmm13, %xmm4 # 4 = sb1u vtbl.8 d9, {q13}, d5 vld1.64 {q1}, [r11]! @ vmovdqa -0x40(%r11,%r10), %xmm1 # .Lk_mc_forward[] vtbl.8 d0, {q12}, d6 @ vpshufb %xmm3, %xmm12, %xmm0 # 0 = sb1t vtbl.8 d1, {q12}, d7 veor q4, q4, q5 @ vpxor %xmm5, %xmm4, %xmm4 # 4 = sb1u + k vtbl.8 d10, {q15}, d4 @ vpshufb %xmm2, %xmm15, %xmm5 # 4 = sb2u vtbl.8 d11, {q15}, d5 veor q0, q0, q4 @ vpxor %xmm4, %xmm0, %xmm0 # 0 = A vtbl.8 d4, {q14}, d6 @ vpshufb %xmm3, %xmm14, %xmm2 # 2 = sb2t vtbl.8 d5, {q14}, d7 vld1.64 {q4}, [r10] @ vmovdqa (%r11,%r10), %xmm4 # .Lk_mc_backward[] vtbl.8 d6, {q0}, d2 @ vpshufb %xmm1, %xmm0, %xmm3 # 0 = B vtbl.8 d7, {q0}, d3 veor q2, q2, q5 @ vpxor %xmm5, %xmm2, %xmm2 # 2 = 2A @ Write to q5 instead of q0, so the table and destination registers do @ not overlap. vtbl.8 d10, {q0}, d8 @ vpshufb %xmm4, %xmm0, %xmm0 # 3 = D vtbl.8 d11, {q0}, d9 veor q3, q3, q2 @ vpxor %xmm2, %xmm3, %xmm3 # 0 = 2A+B vtbl.8 d8, {q3}, d2 @ vpshufb %xmm1, %xmm3, %xmm4 # 0 = 2B+C vtbl.8 d9, {q3}, d3 @ Here we restore the original q0/q5 usage. veor q0, q5, q3 @ vpxor %xmm3, %xmm0, %xmm0 # 3 = 2A+B+D and r11, r11, #~(1<<6) @ and $0x30, %r11 # ... mod 4 veor q0, q0, q4 @ vpxor %xmm4, %xmm0, %xmm0 # 0 = 2A+3B+C+D subs r8, r8, #1 @ nr-- .Lenc_entry: @ top of round vand q1, q0, q9 @ vpand %xmm0, %xmm9, %xmm1 # 0 = k vshr.u8 q0, q0, #4 @ vpsrlb $4, %xmm0, %xmm0 # 1 = i vtbl.8 d10, {q11}, d2 @ vpshufb %xmm1, %xmm11, %xmm5 # 2 = a/k vtbl.8 d11, {q11}, d3 veor q1, q1, q0 @ vpxor %xmm0, %xmm1, %xmm1 # 0 = j vtbl.8 d6, {q10}, d0 @ vpshufb %xmm0, %xmm10, %xmm3 # 3 = 1/i vtbl.8 d7, {q10}, d1 vtbl.8 d8, {q10}, d2 @ vpshufb %xmm1, %xmm10, %xmm4 # 4 = 1/j vtbl.8 d9, {q10}, d3 veor q3, q3, q5 @ vpxor %xmm5, %xmm3, %xmm3 # 3 = iak = 1/i + a/k veor q4, q4, q5 @ vpxor %xmm5, %xmm4, %xmm4 # 4 = jak = 1/j + a/k vtbl.8 d4, {q10}, d6 @ vpshufb %xmm3, %xmm10, %xmm2 # 2 = 1/iak vtbl.8 d5, {q10}, d7 vtbl.8 d6, {q10}, d8 @ vpshufb %xmm4, %xmm10, %xmm3 # 3 = 1/jak vtbl.8 d7, {q10}, d9 veor q2, q2, q1 @ vpxor %xmm1, %xmm2, %xmm2 # 2 = io veor q3, q3, q0 @ vpxor %xmm0, %xmm3, %xmm3 # 3 = jo vld1.64 {q5}, [r9]! @ vmovdqu (%r9), %xmm5 bne .Lenc_loop @ middle of last round add r10, r11, #0x80 adr r11, .Lk_sbo @ Read to q1 instead of q4, so the vtbl.8 instruction below does not @ overlap table and destination registers. vld1.64 {q1}, [r11]! @ vmovdqa -0x60(%r10), %xmm4 # 3 : sbou vld1.64 {q0}, [r11] @ vmovdqa -0x50(%r10), %xmm0 # 0 : sbot .Lk_sbo+16 vtbl.8 d8, {q1}, d4 @ vpshufb %xmm2, %xmm4, %xmm4 # 4 = sbou vtbl.8 d9, {q1}, d5 vld1.64 {q1}, [r10] @ vmovdqa 0x40(%r11,%r10), %xmm1 # .Lk_sr[] @ Write to q2 instead of q0 below, to avoid overlapping table and @ destination registers. vtbl.8 d4, {q0}, d6 @ vpshufb %xmm3, %xmm0, %xmm0 # 0 = sb1t vtbl.8 d5, {q0}, d7 veor q4, q4, q5 @ vpxor %xmm5, %xmm4, %xmm4 # 4 = sb1u + k veor q2, q2, q4 @ vpxor %xmm4, %xmm0, %xmm0 # 0 = A @ Here we restore the original q0/q2 usage. vtbl.8 d0, {q2}, d2 @ vpshufb %xmm1, %xmm0, %xmm0 vtbl.8 d1, {q2}, d3 bx lr .size _vpaes_encrypt_core,.-_vpaes_encrypt_core @@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@ @@ @@ @@ AES key schedule @@ @@ @@ @@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@ @ This function diverges from both x86_64 and armv7 in which constants are @ pinned. x86_64 has a common preheat function for all operations. aarch64 @ separates them because it has enough registers to pin nearly all constants. @ armv7 does not have enough registers, but needing explicit loads and stores @ also complicates using x86_64's register allocation directly. @ @ We pin some constants for convenience and leave q14 and q15 free to load @ others on demand. @ @ Key schedule constants @ .type _vpaes_key_consts,%object .align 4 _vpaes_key_consts: .Lk_rcon:@ rcon .quad 0x1F8391B9AF9DEEB6, 0x702A98084D7C7D81 .Lk_opt:@ output transform .quad 0xFF9F4929D6B66000, 0xF7974121DEBE6808 .quad 0x01EDBD5150BCEC00, 0xE10D5DB1B05C0CE0 .Lk_deskew:@ deskew tables: inverts the sbox's "skew" .quad 0x07E4A34047A4E300, 0x1DFEB95A5DBEF91A .quad 0x5F36B5DC83EA6900, 0x2841C2ABF49D1E77 .size _vpaes_key_consts,.-_vpaes_key_consts .type _vpaes_key_preheat,%function .align 4 _vpaes_key_preheat: adr r11, .Lk_rcon vmov.i8 q12, #0x5b @ .Lk_s63 adr r10, .Lk_inv @ Must be aligned to 8 mod 16. vmov.i8 q9, #0x0f @ .Lk_s0F vld1.64 {q10,q11}, [r10] @ .Lk_inv vld1.64 {q8}, [r11] @ .Lk_rcon bx lr .size _vpaes_key_preheat,.-_vpaes_key_preheat .type _vpaes_schedule_core,%function .align 4 _vpaes_schedule_core: @ We only need to save lr, but ARM requires an 8-byte stack alignment, @ so save an extra register. stmdb sp!, {r3,lr} bl _vpaes_key_preheat @ load the tables adr r11, .Lk_ipt @ Must be aligned to 8 mod 16. vld1.64 {q0}, [r0]! @ vmovdqu (%rdi), %xmm0 # load key (unaligned) @ input transform @ Use q4 here rather than q3 so .Lschedule_am_decrypting does not @ overlap table and destination. vmov q4, q0 @ vmovdqa %xmm0, %xmm3 bl _vpaes_schedule_transform adr r10, .Lk_sr @ Must be aligned to 8 mod 16. vmov q7, q0 @ vmovdqa %xmm0, %xmm7 add r8, r8, r10 @ encrypting, output zeroth round key after transform vst1.64 {q0}, [r2] @ vmovdqu %xmm0, (%rdx) @ *ring*: Decryption removed. .Lschedule_go: cmp r1, #192 @ cmp $192, %esi bhi .Lschedule_256 @ 128: fall though @@ @@ .schedule_128 @@ @@ 128-bit specific part of key schedule. @@ @@ This schedule is really simple, because all its parts @@ are accomplished by the subroutines. @@ .Lschedule_128: mov r0, #10 @ mov $10, %esi .Loop_schedule_128: bl _vpaes_schedule_round subs r0, r0, #1 @ dec %esi beq .Lschedule_mangle_last bl _vpaes_schedule_mangle @ write output b .Loop_schedule_128 @@ @@ .aes_schedule_256 @@ @@ 256-bit specific part of key schedule. @@ @@ The structure here is very similar to the 128-bit @@ schedule, but with an additional "low side" in @@ q6. The low side's rounds are the same as the @@ high side's, except no rcon and no rotation. @@ .align 4 .Lschedule_256: vld1.64 {q0}, [r0] @ vmovdqu 16(%rdi),%xmm0 # load key part 2 (unaligned) bl _vpaes_schedule_transform @ input transform mov r0, #7 @ mov $7, %esi .Loop_schedule_256: bl _vpaes_schedule_mangle @ output low result vmov q6, q0 @ vmovdqa %xmm0, %xmm6 # save cur_lo in xmm6 @ high round bl _vpaes_schedule_round subs r0, r0, #1 @ dec %esi beq .Lschedule_mangle_last bl _vpaes_schedule_mangle @ low round. swap xmm7 and xmm6 vdup.32 q0, d1[1] @ vpshufd $0xFF, %xmm0, %xmm0 vmov.i8 q4, #0 vmov q5, q7 @ vmovdqa %xmm7, %xmm5 vmov q7, q6 @ vmovdqa %xmm6, %xmm7 bl _vpaes_schedule_low_round vmov q7, q5 @ vmovdqa %xmm5, %xmm7 b .Loop_schedule_256 @@ @@ .aes_schedule_mangle_last @@ @@ Mangler for last round of key schedule @@ Mangles q0 @@ when encrypting, outputs out(q0) ^ 63 @@ when decrypting, outputs unskew(q0) @@ @@ Always called right before return... jumps to cleanup and exits @@ .align 4 .Lschedule_mangle_last: @ schedule last round key from xmm0 adr r11, .Lk_deskew @ lea .Lk_deskew(%rip),%r11 # prepare to deskew @ encrypting vld1.64 {q1}, [r8] @ vmovdqa (%r8,%r10),%xmm1 adr r11, .Lk_opt @ lea .Lk_opt(%rip), %r11 # prepare to output transform add r2, r2, #32 @ add $32, %rdx vmov q2, q0 vtbl.8 d0, {q2}, d2 @ vpshufb %xmm1, %xmm0, %xmm0 # output permute vtbl.8 d1, {q2}, d3 .Lschedule_mangle_last_dec: sub r2, r2, #16 @ add $-16, %rdx veor q0, q0, q12 @ vpxor .Lk_s63(%rip), %xmm0, %xmm0 bl _vpaes_schedule_transform @ output transform vst1.64 {q0}, [r2] @ vmovdqu %xmm0, (%rdx) # save last key @ cleanup veor q0, q0, q0 @ vpxor %xmm0, %xmm0, %xmm0 veor q1, q1, q1 @ vpxor %xmm1, %xmm1, %xmm1 veor q2, q2, q2 @ vpxor %xmm2, %xmm2, %xmm2 veor q3, q3, q3 @ vpxor %xmm3, %xmm3, %xmm3 veor q4, q4, q4 @ vpxor %xmm4, %xmm4, %xmm4 veor q5, q5, q5 @ vpxor %xmm5, %xmm5, %xmm5 veor q6, q6, q6 @ vpxor %xmm6, %xmm6, %xmm6 veor q7, q7, q7 @ vpxor %xmm7, %xmm7, %xmm7 ldmia sp!, {r3,pc} @ return .size _vpaes_schedule_core,.-_vpaes_schedule_core @@ @@ .aes_schedule_round @@ @@ Runs one main round of the key schedule on q0, q7 @@ @@ Specifically, runs subbytes on the high dword of q0 @@ then rotates it by one byte and xors into the low dword of @@ q7. @@ @@ Adds rcon from low byte of q8, then rotates q8 for @@ next rcon. @@ @@ Smears the dwords of q7 by xoring the low into the @@ second low, result into third, result into highest. @@ @@ Returns results in q7 = q0. @@ Clobbers q1-q4, r11. @@ .type _vpaes_schedule_round,%function .align 4 _vpaes_schedule_round: @ extract rcon from xmm8 vmov.i8 q4, #0 @ vpxor %xmm4, %xmm4, %xmm4 vext.8 q1, q8, q4, #15 @ vpalignr $15, %xmm8, %xmm4, %xmm1 vext.8 q8, q8, q8, #15 @ vpalignr $15, %xmm8, %xmm8, %xmm8 veor q7, q7, q1 @ vpxor %xmm1, %xmm7, %xmm7 @ rotate vdup.32 q0, d1[1] @ vpshufd $0xFF, %xmm0, %xmm0 vext.8 q0, q0, q0, #1 @ vpalignr $1, %xmm0, %xmm0, %xmm0 @ fall through... @ low round: same as high round, but no rotation and no rcon. _vpaes_schedule_low_round: @ The x86_64 version pins .Lk_sb1 in %xmm13 and .Lk_sb1+16 in %xmm12. @ We pin other values in _vpaes_key_preheat, so load them now. adr r11, .Lk_sb1 vld1.64 {q14,q15}, [r11] @ smear xmm7 vext.8 q1, q4, q7, #12 @ vpslldq $4, %xmm7, %xmm1 veor q7, q7, q1 @ vpxor %xmm1, %xmm7, %xmm7 vext.8 q4, q4, q7, #8 @ vpslldq $8, %xmm7, %xmm4 @ subbytes vand q1, q0, q9 @ vpand %xmm9, %xmm0, %xmm1 # 0 = k vshr.u8 q0, q0, #4 @ vpsrlb $4, %xmm0, %xmm0 # 1 = i veor q7, q7, q4 @ vpxor %xmm4, %xmm7, %xmm7 vtbl.8 d4, {q11}, d2 @ vpshufb %xmm1, %xmm11, %xmm2 # 2 = a/k vtbl.8 d5, {q11}, d3 veor q1, q1, q0 @ vpxor %xmm0, %xmm1, %xmm1 # 0 = j vtbl.8 d6, {q10}, d0 @ vpshufb %xmm0, %xmm10, %xmm3 # 3 = 1/i vtbl.8 d7, {q10}, d1 veor q3, q3, q2 @ vpxor %xmm2, %xmm3, %xmm3 # 3 = iak = 1/i + a/k vtbl.8 d8, {q10}, d2 @ vpshufb %xmm1, %xmm10, %xmm4 # 4 = 1/j vtbl.8 d9, {q10}, d3 veor q7, q7, q12 @ vpxor .Lk_s63(%rip), %xmm7, %xmm7 vtbl.8 d6, {q10}, d6 @ vpshufb %xmm3, %xmm10, %xmm3 # 2 = 1/iak vtbl.8 d7, {q10}, d7 veor q4, q4, q2 @ vpxor %xmm2, %xmm4, %xmm4 # 4 = jak = 1/j + a/k vtbl.8 d4, {q10}, d8 @ vpshufb %xmm4, %xmm10, %xmm2 # 3 = 1/jak vtbl.8 d5, {q10}, d9 veor q3, q3, q1 @ vpxor %xmm1, %xmm3, %xmm3 # 2 = io veor q2, q2, q0 @ vpxor %xmm0, %xmm2, %xmm2 # 3 = jo vtbl.8 d8, {q15}, d6 @ vpshufb %xmm3, %xmm13, %xmm4 # 4 = sbou vtbl.8 d9, {q15}, d7 vtbl.8 d2, {q14}, d4 @ vpshufb %xmm2, %xmm12, %xmm1 # 0 = sb1t vtbl.8 d3, {q14}, d5 veor q1, q1, q4 @ vpxor %xmm4, %xmm1, %xmm1 # 0 = sbox output @ add in smeared stuff veor q0, q1, q7 @ vpxor %xmm7, %xmm1, %xmm0 veor q7, q1, q7 @ vmovdqa %xmm0, %xmm7 bx lr .size _vpaes_schedule_round,.-_vpaes_schedule_round @@ @@ .aes_schedule_transform @@ @@ Linear-transform q0 according to tables at [r11] @@ @@ Requires that q9 = 0x0F0F... as in preheat @@ Output in q0 @@ Clobbers q1, q2, q14, q15 @@ .type _vpaes_schedule_transform,%function .align 4 _vpaes_schedule_transform: vld1.64 {q14,q15}, [r11] @ vmovdqa (%r11), %xmm2 # lo @ vmovdqa 16(%r11), %xmm1 # hi vand q1, q0, q9 @ vpand %xmm9, %xmm0, %xmm1 vshr.u8 q0, q0, #4 @ vpsrlb $4, %xmm0, %xmm0 vtbl.8 d4, {q14}, d2 @ vpshufb %xmm1, %xmm2, %xmm2 vtbl.8 d5, {q14}, d3 vtbl.8 d0, {q15}, d0 @ vpshufb %xmm0, %xmm1, %xmm0 vtbl.8 d1, {q15}, d1 veor q0, q0, q2 @ vpxor %xmm2, %xmm0, %xmm0 bx lr .size _vpaes_schedule_transform,.-_vpaes_schedule_transform @@ @@ .aes_schedule_mangle @@ @@ Mangles q0 from (basis-transformed) standard version @@ to our version. @@ @@ On encrypt, @@ xor with 0x63 @@ multiply by circulant 0,1,1,1 @@ apply shiftrows transform @@ @@ On decrypt, @@ xor with 0x63 @@ multiply by "inverse mixcolumns" circulant E,B,D,9 @@ deskew @@ apply shiftrows transform @@ @@ @@ Writes out to [r2], and increments or decrements it @@ Keeps track of round number mod 4 in r8 @@ Preserves q0 @@ Clobbers q1-q5 @@ .type _vpaes_schedule_mangle,%function .align 4 _vpaes_schedule_mangle: tst r3, r3 vmov q4, q0 @ vmovdqa %xmm0, %xmm4 # save xmm0 for later adr r11, .Lk_mc_forward @ Must be aligned to 8 mod 16. vld1.64 {q5}, [r11] @ vmovdqa .Lk_mc_forward(%rip),%xmm5 @ encrypting @ Write to q2 so we do not overlap table and destination below. veor q2, q0, q12 @ vpxor .Lk_s63(%rip), %xmm0, %xmm4 add r2, r2, #16 @ add $16, %rdx vtbl.8 d8, {q2}, d10 @ vpshufb %xmm5, %xmm4, %xmm4 vtbl.8 d9, {q2}, d11 vtbl.8 d2, {q4}, d10 @ vpshufb %xmm5, %xmm4, %xmm1 vtbl.8 d3, {q4}, d11 vtbl.8 d6, {q1}, d10 @ vpshufb %xmm5, %xmm1, %xmm3 vtbl.8 d7, {q1}, d11 veor q4, q4, q1 @ vpxor %xmm1, %xmm4, %xmm4 vld1.64 {q1}, [r8] @ vmovdqa (%r8,%r10), %xmm1 veor q3, q3, q4 @ vpxor %xmm4, %xmm3, %xmm3 .Lschedule_mangle_both: @ Write to q2 so table and destination do not overlap. vtbl.8 d4, {q3}, d2 @ vpshufb %xmm1, %xmm3, %xmm3 vtbl.8 d5, {q3}, d3 add r8, r8, #64-16 @ add $-16, %r8 and r8, r8, #~(1<<6) @ and $0x30, %r8 vst1.64 {q2}, [r2] @ vmovdqu %xmm3, (%rdx) bx lr .size _vpaes_schedule_mangle,.-_vpaes_schedule_mangle .globl vpaes_set_encrypt_key .hidden vpaes_set_encrypt_key .type vpaes_set_encrypt_key,%function .align 4 vpaes_set_encrypt_key: stmdb sp!, {r7,r8,r9,r10,r11, lr} vstmdb sp!, {d8,d9,d10,d11,d12,d13,d14,d15} lsr r9, r1, #5 @ shr $5,%eax add r9, r9, #5 @ $5,%eax str r9, [r2,#240] @ mov %eax,240(%rdx) # AES_KEY->rounds = nbits/32+5; mov r3, #0 @ mov $0,%ecx mov r8, #0x30 @ mov $0x30,%r8d bl _vpaes_schedule_core eor r0, r0, r0 vldmia sp!, {d8,d9,d10,d11,d12,d13,d14,d15} ldmia sp!, {r7,r8,r9,r10,r11, pc} @ return .size vpaes_set_encrypt_key,.-vpaes_set_encrypt_key @ Additional constants for converting to bsaes. .type _vpaes_convert_consts,%object .align 4 _vpaes_convert_consts: @ .Lk_opt_then_skew applies skew(opt(x)) XOR 0x63, where skew is the linear @ transform in the AES S-box. 0x63 is incorporated into the low half of the @ table. This was computed with the following script: @ @ def u64s_to_u128(x, y): @ return x | (y << 64) @ def u128_to_u64s(w): @ return w & ((1<<64)-1), w >> 64 @ def get_byte(w, i): @ return (w >> (i*8)) & 0xff @ def apply_table(table, b): @ lo = b & 0xf @ hi = b >> 4 @ return get_byte(table[0], lo) ^ get_byte(table[1], hi) @ def opt(b): @ table = [ @ u64s_to_u128(0xFF9F4929D6B66000, 0xF7974121DEBE6808), @ u64s_to_u128(0x01EDBD5150BCEC00, 0xE10D5DB1B05C0CE0), @ ] @ return apply_table(table, b) @ def rot_byte(b, n): @ return 0xff & ((b << n) | (b >> (8-n))) @ def skew(x): @ return (x ^ rot_byte(x, 1) ^ rot_byte(x, 2) ^ rot_byte(x, 3) ^ @ rot_byte(x, 4)) @ table = [0, 0] @ for i in range(16): @ table[0] |= (skew(opt(i)) ^ 0x63) << (i*8) @ table[1] |= skew(opt(i<<4)) << (i*8) @ print(" .quad 0x%016x, 0x%016x" % u128_to_u64s(table[0])) @ print(" .quad 0x%016x, 0x%016x" % u128_to_u64s(table[1])) .Lk_opt_then_skew: .quad 0x9cb8436798bc4763, 0x6440bb9f6044bf9b .quad 0x1f30062936192f00, 0xb49bad829db284ab @ void vpaes_encrypt_key_to_bsaes(AES_KEY *bsaes, const AES_KEY *vpaes); .globl vpaes_encrypt_key_to_bsaes .hidden vpaes_encrypt_key_to_bsaes .type vpaes_encrypt_key_to_bsaes,%function .align 4 vpaes_encrypt_key_to_bsaes: stmdb sp!, {r11, lr} @ See _vpaes_schedule_core for the key schedule logic. In particular, @ _vpaes_schedule_transform(.Lk_ipt) (section 2.2 of the paper), @ _vpaes_schedule_mangle (section 4.3), and .Lschedule_mangle_last @ contain the transformations not in the bsaes representation. This @ function inverts those transforms. @ @ Note also that bsaes-armv7.pl expects aes-armv4.pl's key @ representation, which does not match the other aes_nohw_* @ implementations. The ARM aes_nohw_* stores each 32-bit word @ byteswapped, as a convenience for (unsupported) big-endian ARM, at the @ cost of extra REV and VREV32 operations in little-endian ARM. vmov.i8 q9, #0x0f @ Required by _vpaes_schedule_transform adr r2, .Lk_mc_forward @ Must be aligned to 8 mod 16. add r3, r2, 0x90 @ .Lk_sr+0x10-.Lk_mc_forward = 0x90 (Apple's toolchain doesn't support the expression) vld1.64 {q12}, [r2] vmov.i8 q10, #0x5b @ .Lk_s63 from vpaes-x86_64 adr r11, .Lk_opt @ Must be aligned to 8 mod 16. vmov.i8 q11, #0x63 @ .LK_s63 without .Lk_ipt applied @ vpaes stores one fewer round count than bsaes, but the number of keys @ is the same. ldr r2, [r1,#240] add r2, r2, #1 str r2, [r0,#240] @ The first key is transformed with _vpaes_schedule_transform(.Lk_ipt). @ Invert this with .Lk_opt. vld1.64 {q0}, [r1]! bl _vpaes_schedule_transform vrev32.8 q0, q0 vst1.64 {q0}, [r0]! @ The middle keys have _vpaes_schedule_transform(.Lk_ipt) applied, @ followed by _vpaes_schedule_mangle. _vpaes_schedule_mangle XORs 0x63, @ multiplies by the circulant 0,1,1,1, then applies ShiftRows. .Loop_enc_key_to_bsaes: vld1.64 {q0}, [r1]! @ Invert the ShiftRows step (see .Lschedule_mangle_both). Note we cycle @ r3 in the opposite direction and start at .Lk_sr+0x10 instead of 0x30. @ We use r3 rather than r8 to avoid a callee-saved register. vld1.64 {q1}, [r3] vtbl.8 d4, {q0}, d2 vtbl.8 d5, {q0}, d3 add r3, r3, #16 and r3, r3, #~(1<<6) vmov q0, q2 @ Handle the last key differently. subs r2, r2, #1 beq .Loop_enc_key_to_bsaes_last @ Multiply by the circulant. This is its own inverse. vtbl.8 d2, {q0}, d24 vtbl.8 d3, {q0}, d25 vmov q0, q1 vtbl.8 d4, {q1}, d24 vtbl.8 d5, {q1}, d25 veor q0, q0, q2 vtbl.8 d2, {q2}, d24 vtbl.8 d3, {q2}, d25 veor q0, q0, q1 @ XOR and finish. veor q0, q0, q10 bl _vpaes_schedule_transform vrev32.8 q0, q0 vst1.64 {q0}, [r0]! b .Loop_enc_key_to_bsaes .Loop_enc_key_to_bsaes_last: @ The final key does not have a basis transform (note @ .Lschedule_mangle_last inverts the original transform). It only XORs @ 0x63 and applies ShiftRows. The latter was already inverted in the @ loop. Note that, because we act on the original representation, we use @ q11, not q10. veor q0, q0, q11 vrev32.8 q0, q0 vst1.64 {q0}, [r0] @ Wipe registers which contained key material. veor q0, q0, q0 veor q1, q1, q1 veor q2, q2, q2 ldmia sp!, {r11, pc} @ return .size vpaes_encrypt_key_to_bsaes,.-vpaes_encrypt_key_to_bsaes .globl vpaes_ctr32_encrypt_blocks .hidden vpaes_ctr32_encrypt_blocks .type vpaes_ctr32_encrypt_blocks,%function .align 4 vpaes_ctr32_encrypt_blocks: mov ip, sp stmdb sp!, {r7,r8,r9,r10,r11, lr} @ This function uses q4-q7 (d8-d15), which are callee-saved. vstmdb sp!, {d8,d9,d10,d11,d12,d13,d14,d15} cmp r2, #0 @ r8 is passed on the stack. ldr r8, [ip] beq .Lctr32_done @ _vpaes_encrypt_core expects the key in r2, so swap r2 and r3. mov r9, r3 mov r3, r2 mov r2, r9 @ Load the IV and counter portion. ldr r7, [r8, #12] vld1.8 {q7}, [r8] bl _vpaes_preheat rev r7, r7 @ The counter is big-endian. .Lctr32_loop: vmov q0, q7 vld1.8 {q6}, [r0]! @ .Load input ahead of time bl _vpaes_encrypt_core veor q0, q0, q6 @ XOR input and result vst1.8 {q0}, [r1]! subs r3, r3, #1 @ Update the counter. add r7, r7, #1 rev r9, r7 vmov.32 d15[1], r9 bne .Lctr32_loop .Lctr32_done: vldmia sp!, {d8,d9,d10,d11,d12,d13,d14,d15} ldmia sp!, {r7,r8,r9,r10,r11, pc} @ return .size vpaes_ctr32_encrypt_blocks,.-vpaes_ctr32_encrypt_blocks #endif // !OPENSSL_NO_ASM && defined(OPENSSL_ARM) && defined(__ELF__)
mktmansour/MKT-KSA-Geolocation-Security
7,650
.cargo-home/registry/src/index.crates.io-1949cf8c6b5b557f/ring-0.17.14/pregenerated/aesv8-armx-ios64.S
// This file is generated from a similarly-named Perl script in the BoringSSL // source tree. Do not edit by hand. #include <ring-core/asm_base.h> #if !defined(OPENSSL_NO_ASM) && defined(OPENSSL_AARCH64) && defined(__APPLE__) #if __ARM_MAX_ARCH__>=7 .text .section __TEXT,__const .align 5 Lrcon: .long 0x01,0x01,0x01,0x01 .long 0x0c0f0e0d,0x0c0f0e0d,0x0c0f0e0d,0x0c0f0e0d // rotate-n-splat .long 0x1b,0x1b,0x1b,0x1b .text .globl _aes_hw_set_encrypt_key .private_extern _aes_hw_set_encrypt_key .align 5 _aes_hw_set_encrypt_key: Lenc_key: // Armv8.3-A PAuth: even though x30 is pushed to stack it is not popped later. AARCH64_VALID_CALL_TARGET stp x29,x30,[sp,#-16]! add x29,sp,#0 mov x3,#-2 cmp w1,#128 b.lt Lenc_key_abort cmp w1,#256 b.gt Lenc_key_abort tst w1,#0x3f b.ne Lenc_key_abort adrp x3,Lrcon@PAGE add x3,x3,Lrcon@PAGEOFF cmp w1,#192 eor v0.16b,v0.16b,v0.16b ld1 {v3.16b},[x0],#16 mov w1,#8 // reuse w1 ld1 {v1.4s,v2.4s},[x3],#32 b.lt Loop128 // 192-bit key support was removed. b L256 .align 4 Loop128: tbl v6.16b,{v3.16b},v2.16b ext v5.16b,v0.16b,v3.16b,#12 st1 {v3.4s},[x2],#16 aese v6.16b,v0.16b subs w1,w1,#1 eor v3.16b,v3.16b,v5.16b ext v5.16b,v0.16b,v5.16b,#12 eor v3.16b,v3.16b,v5.16b ext v5.16b,v0.16b,v5.16b,#12 eor v6.16b,v6.16b,v1.16b eor v3.16b,v3.16b,v5.16b shl v1.16b,v1.16b,#1 eor v3.16b,v3.16b,v6.16b b.ne Loop128 ld1 {v1.4s},[x3] tbl v6.16b,{v3.16b},v2.16b ext v5.16b,v0.16b,v3.16b,#12 st1 {v3.4s},[x2],#16 aese v6.16b,v0.16b eor v3.16b,v3.16b,v5.16b ext v5.16b,v0.16b,v5.16b,#12 eor v3.16b,v3.16b,v5.16b ext v5.16b,v0.16b,v5.16b,#12 eor v6.16b,v6.16b,v1.16b eor v3.16b,v3.16b,v5.16b shl v1.16b,v1.16b,#1 eor v3.16b,v3.16b,v6.16b tbl v6.16b,{v3.16b},v2.16b ext v5.16b,v0.16b,v3.16b,#12 st1 {v3.4s},[x2],#16 aese v6.16b,v0.16b eor v3.16b,v3.16b,v5.16b ext v5.16b,v0.16b,v5.16b,#12 eor v3.16b,v3.16b,v5.16b ext v5.16b,v0.16b,v5.16b,#12 eor v6.16b,v6.16b,v1.16b eor v3.16b,v3.16b,v5.16b eor v3.16b,v3.16b,v6.16b st1 {v3.4s},[x2] add x2,x2,#0x50 mov w12,#10 b Ldone // 192-bit key support was removed. .align 4 L256: ld1 {v4.16b},[x0] mov w1,#7 mov w12,#14 st1 {v3.4s},[x2],#16 Loop256: tbl v6.16b,{v4.16b},v2.16b ext v5.16b,v0.16b,v3.16b,#12 st1 {v4.4s},[x2],#16 aese v6.16b,v0.16b subs w1,w1,#1 eor v3.16b,v3.16b,v5.16b ext v5.16b,v0.16b,v5.16b,#12 eor v3.16b,v3.16b,v5.16b ext v5.16b,v0.16b,v5.16b,#12 eor v6.16b,v6.16b,v1.16b eor v3.16b,v3.16b,v5.16b shl v1.16b,v1.16b,#1 eor v3.16b,v3.16b,v6.16b st1 {v3.4s},[x2],#16 b.eq Ldone dup v6.4s,v3.s[3] // just splat ext v5.16b,v0.16b,v4.16b,#12 aese v6.16b,v0.16b eor v4.16b,v4.16b,v5.16b ext v5.16b,v0.16b,v5.16b,#12 eor v4.16b,v4.16b,v5.16b ext v5.16b,v0.16b,v5.16b,#12 eor v4.16b,v4.16b,v5.16b eor v4.16b,v4.16b,v6.16b b Loop256 Ldone: str w12,[x2] mov x3,#0 Lenc_key_abort: mov x0,x3 // return value ldr x29,[sp],#16 ret .globl _aes_hw_ctr32_encrypt_blocks .private_extern _aes_hw_ctr32_encrypt_blocks .align 5 _aes_hw_ctr32_encrypt_blocks: // Armv8.3-A PAuth: even though x30 is pushed to stack it is not popped later. AARCH64_VALID_CALL_TARGET stp x29,x30,[sp,#-16]! add x29,sp,#0 ldr w5,[x3,#240] ldr w8, [x4, #12] ld1 {v0.4s},[x4] ld1 {v16.4s,v17.4s},[x3] // load key schedule... sub w5,w5,#4 mov x12,#16 cmp x2,#2 add x7,x3,x5,lsl#4 // pointer to last 5 round keys sub w5,w5,#2 ld1 {v20.4s,v21.4s},[x7],#32 ld1 {v22.4s,v23.4s},[x7],#32 ld1 {v7.4s},[x7] add x7,x3,#32 mov w6,w5 csel x12,xzr,x12,lo // ARM Cortex-A57 and Cortex-A72 cores running in 32-bit mode are // affected by silicon errata #1742098 [0] and #1655431 [1], // respectively, where the second instruction of an aese/aesmc // instruction pair may execute twice if an interrupt is taken right // after the first instruction consumes an input register of which a // single 32-bit lane has been updated the last time it was modified. // // This function uses a counter in one 32-bit lane. The vmov lines // could write to v1.16b and v18.16b directly, but that trips this bugs. // We write to v6.16b and copy to the final register as a workaround. // // [0] ARM-EPM-049219 v23 Cortex-A57 MPCore Software Developers Errata Notice // [1] ARM-EPM-012079 v11.0 Cortex-A72 MPCore Software Developers Errata Notice #ifndef __AARCH64EB__ rev w8, w8 #endif add w10, w8, #1 orr v6.16b,v0.16b,v0.16b rev w10, w10 mov v6.s[3],w10 add w8, w8, #2 orr v1.16b,v6.16b,v6.16b b.ls Lctr32_tail rev w12, w8 mov v6.s[3],w12 sub x2,x2,#3 // bias orr v18.16b,v6.16b,v6.16b b Loop3x_ctr32 .align 4 Loop3x_ctr32: aese v0.16b,v16.16b aesmc v0.16b,v0.16b aese v1.16b,v16.16b aesmc v1.16b,v1.16b aese v18.16b,v16.16b aesmc v18.16b,v18.16b ld1 {v16.4s},[x7],#16 subs w6,w6,#2 aese v0.16b,v17.16b aesmc v0.16b,v0.16b aese v1.16b,v17.16b aesmc v1.16b,v1.16b aese v18.16b,v17.16b aesmc v18.16b,v18.16b ld1 {v17.4s},[x7],#16 b.gt Loop3x_ctr32 aese v0.16b,v16.16b aesmc v4.16b,v0.16b aese v1.16b,v16.16b aesmc v5.16b,v1.16b ld1 {v2.16b},[x0],#16 add w9,w8,#1 aese v18.16b,v16.16b aesmc v18.16b,v18.16b ld1 {v3.16b},[x0],#16 rev w9,w9 aese v4.16b,v17.16b aesmc v4.16b,v4.16b aese v5.16b,v17.16b aesmc v5.16b,v5.16b ld1 {v19.16b},[x0],#16 mov x7,x3 aese v18.16b,v17.16b aesmc v17.16b,v18.16b aese v4.16b,v20.16b aesmc v4.16b,v4.16b aese v5.16b,v20.16b aesmc v5.16b,v5.16b eor v2.16b,v2.16b,v7.16b add w10,w8,#2 aese v17.16b,v20.16b aesmc v17.16b,v17.16b eor v3.16b,v3.16b,v7.16b add w8,w8,#3 aese v4.16b,v21.16b aesmc v4.16b,v4.16b aese v5.16b,v21.16b aesmc v5.16b,v5.16b // Note the logic to update v0.16b, v1.16b, and v1.16b is written to work // around a bug in ARM Cortex-A57 and Cortex-A72 cores running in // 32-bit mode. See the comment above. eor v19.16b,v19.16b,v7.16b mov v6.s[3], w9 aese v17.16b,v21.16b aesmc v17.16b,v17.16b orr v0.16b,v6.16b,v6.16b rev w10,w10 aese v4.16b,v22.16b aesmc v4.16b,v4.16b mov v6.s[3], w10 rev w12,w8 aese v5.16b,v22.16b aesmc v5.16b,v5.16b orr v1.16b,v6.16b,v6.16b mov v6.s[3], w12 aese v17.16b,v22.16b aesmc v17.16b,v17.16b orr v18.16b,v6.16b,v6.16b subs x2,x2,#3 aese v4.16b,v23.16b aese v5.16b,v23.16b aese v17.16b,v23.16b eor v2.16b,v2.16b,v4.16b ld1 {v16.4s},[x7],#16 // re-pre-load rndkey[0] st1 {v2.16b},[x1],#16 eor v3.16b,v3.16b,v5.16b mov w6,w5 st1 {v3.16b},[x1],#16 eor v19.16b,v19.16b,v17.16b ld1 {v17.4s},[x7],#16 // re-pre-load rndkey[1] st1 {v19.16b},[x1],#16 b.hs Loop3x_ctr32 adds x2,x2,#3 b.eq Lctr32_done cmp x2,#1 mov x12,#16 csel x12,xzr,x12,eq Lctr32_tail: aese v0.16b,v16.16b aesmc v0.16b,v0.16b aese v1.16b,v16.16b aesmc v1.16b,v1.16b ld1 {v16.4s},[x7],#16 subs w6,w6,#2 aese v0.16b,v17.16b aesmc v0.16b,v0.16b aese v1.16b,v17.16b aesmc v1.16b,v1.16b ld1 {v17.4s},[x7],#16 b.gt Lctr32_tail aese v0.16b,v16.16b aesmc v0.16b,v0.16b aese v1.16b,v16.16b aesmc v1.16b,v1.16b aese v0.16b,v17.16b aesmc v0.16b,v0.16b aese v1.16b,v17.16b aesmc v1.16b,v1.16b ld1 {v2.16b},[x0],x12 aese v0.16b,v20.16b aesmc v0.16b,v0.16b aese v1.16b,v20.16b aesmc v1.16b,v1.16b ld1 {v3.16b},[x0] aese v0.16b,v21.16b aesmc v0.16b,v0.16b aese v1.16b,v21.16b aesmc v1.16b,v1.16b eor v2.16b,v2.16b,v7.16b aese v0.16b,v22.16b aesmc v0.16b,v0.16b aese v1.16b,v22.16b aesmc v1.16b,v1.16b eor v3.16b,v3.16b,v7.16b aese v0.16b,v23.16b aese v1.16b,v23.16b cmp x2,#1 eor v2.16b,v2.16b,v0.16b eor v3.16b,v3.16b,v1.16b st1 {v2.16b},[x1],#16 b.eq Lctr32_done st1 {v3.16b},[x1] Lctr32_done: ldr x29,[sp],#16 ret #endif #endif // !OPENSSL_NO_ASM && defined(OPENSSL_AARCH64) && defined(__APPLE__)
mktmansour/MKT-KSA-Geolocation-Security
36,746
.cargo-home/registry/src/index.crates.io-1949cf8c6b5b557f/ring-0.17.14/pregenerated/p256-armv8-asm-linux64.S
// This file is generated from a similarly-named Perl script in the BoringSSL // source tree. Do not edit by hand. #include <ring-core/asm_base.h> #if !defined(OPENSSL_NO_ASM) && defined(OPENSSL_AARCH64) && defined(__ELF__) .section .rodata .align 5 .Lpoly: .quad 0xffffffffffffffff,0x00000000ffffffff,0x0000000000000000,0xffffffff00000001 .LRR: // 2^512 mod P precomputed for NIST P256 polynomial .quad 0x0000000000000003,0xfffffffbffffffff,0xfffffffffffffffe,0x00000004fffffffd .Lone_mont: .quad 0x0000000000000001,0xffffffff00000000,0xffffffffffffffff,0x00000000fffffffe .Lone: .quad 1,0,0,0 .Lord: .quad 0xf3b9cac2fc632551,0xbce6faada7179e84,0xffffffffffffffff,0xffffffff00000000 .LordK: .quad 0xccd1c8aaee00bc4f .byte 69,67,80,95,78,73,83,84,90,50,53,54,32,102,111,114,32,65,82,77,118,56,44,32,67,82,89,80,84,79,71,65,77,83,32,98,121,32,60,97,112,112,114,111,64,111,112,101,110,115,115,108,46,111,114,103,62,0 .align 2 .text // void ecp_nistz256_mul_mont(BN_ULONG x0[4],const BN_ULONG x1[4], // const BN_ULONG x2[4]); .globl ecp_nistz256_mul_mont .hidden ecp_nistz256_mul_mont .type ecp_nistz256_mul_mont,%function .align 4 ecp_nistz256_mul_mont: AARCH64_SIGN_LINK_REGISTER stp x29,x30,[sp,#-32]! add x29,sp,#0 stp x19,x20,[sp,#16] ldr x3,[x2] // bp[0] ldp x4,x5,[x1] ldp x6,x7,[x1,#16] adrp x13,.Lpoly add x13,x13,:lo12:.Lpoly ldr x12,[x13,#8] ldr x13,[x13,#24] bl __ecp_nistz256_mul_mont ldp x19,x20,[sp,#16] ldp x29,x30,[sp],#32 AARCH64_VALIDATE_LINK_REGISTER ret .size ecp_nistz256_mul_mont,.-ecp_nistz256_mul_mont // void ecp_nistz256_sqr_mont(BN_ULONG x0[4],const BN_ULONG x1[4]); .globl ecp_nistz256_sqr_mont .hidden ecp_nistz256_sqr_mont .type ecp_nistz256_sqr_mont,%function .align 4 ecp_nistz256_sqr_mont: AARCH64_SIGN_LINK_REGISTER stp x29,x30,[sp,#-32]! add x29,sp,#0 stp x19,x20,[sp,#16] ldp x4,x5,[x1] ldp x6,x7,[x1,#16] adrp x13,.Lpoly add x13,x13,:lo12:.Lpoly ldr x12,[x13,#8] ldr x13,[x13,#24] bl __ecp_nistz256_sqr_mont ldp x19,x20,[sp,#16] ldp x29,x30,[sp],#32 AARCH64_VALIDATE_LINK_REGISTER ret .size ecp_nistz256_sqr_mont,.-ecp_nistz256_sqr_mont // void ecp_nistz256_neg(BN_ULONG x0[4],const BN_ULONG x1[4]); .globl ecp_nistz256_neg .hidden ecp_nistz256_neg .type ecp_nistz256_neg,%function .align 4 ecp_nistz256_neg: AARCH64_SIGN_LINK_REGISTER stp x29,x30,[sp,#-16]! add x29,sp,#0 mov x2,x1 mov x14,xzr // a = 0 mov x15,xzr mov x16,xzr mov x17,xzr adrp x13,.Lpoly add x13,x13,:lo12:.Lpoly ldr x12,[x13,#8] ldr x13,[x13,#24] bl __ecp_nistz256_sub_from ldp x29,x30,[sp],#16 AARCH64_VALIDATE_LINK_REGISTER ret .size ecp_nistz256_neg,.-ecp_nistz256_neg // note that __ecp_nistz256_mul_mont expects a[0-3] input pre-loaded // to x4-x7 and b[0] - to x3 .type __ecp_nistz256_mul_mont,%function .align 4 __ecp_nistz256_mul_mont: mul x14,x4,x3 // a[0]*b[0] umulh x8,x4,x3 mul x15,x5,x3 // a[1]*b[0] umulh x9,x5,x3 mul x16,x6,x3 // a[2]*b[0] umulh x10,x6,x3 mul x17,x7,x3 // a[3]*b[0] umulh x11,x7,x3 ldr x3,[x2,#8] // b[1] adds x15,x15,x8 // accumulate high parts of multiplication lsl x8,x14,#32 adcs x16,x16,x9 lsr x9,x14,#32 adcs x17,x17,x10 adc x19,xzr,x11 mov x20,xzr subs x10,x14,x8 // "*0xffff0001" sbc x11,x14,x9 adds x14,x15,x8 // +=acc[0]<<96 and omit acc[0] mul x8,x4,x3 // lo(a[0]*b[i]) adcs x15,x16,x9 mul x9,x5,x3 // lo(a[1]*b[i]) adcs x16,x17,x10 // +=acc[0]*0xffff0001 mul x10,x6,x3 // lo(a[2]*b[i]) adcs x17,x19,x11 mul x11,x7,x3 // lo(a[3]*b[i]) adc x19,x20,xzr adds x14,x14,x8 // accumulate low parts of multiplication umulh x8,x4,x3 // hi(a[0]*b[i]) adcs x15,x15,x9 umulh x9,x5,x3 // hi(a[1]*b[i]) adcs x16,x16,x10 umulh x10,x6,x3 // hi(a[2]*b[i]) adcs x17,x17,x11 umulh x11,x7,x3 // hi(a[3]*b[i]) adc x19,x19,xzr ldr x3,[x2,#8*(1+1)] // b[1+1] adds x15,x15,x8 // accumulate high parts of multiplication lsl x8,x14,#32 adcs x16,x16,x9 lsr x9,x14,#32 adcs x17,x17,x10 adcs x19,x19,x11 adc x20,xzr,xzr subs x10,x14,x8 // "*0xffff0001" sbc x11,x14,x9 adds x14,x15,x8 // +=acc[0]<<96 and omit acc[0] mul x8,x4,x3 // lo(a[0]*b[i]) adcs x15,x16,x9 mul x9,x5,x3 // lo(a[1]*b[i]) adcs x16,x17,x10 // +=acc[0]*0xffff0001 mul x10,x6,x3 // lo(a[2]*b[i]) adcs x17,x19,x11 mul x11,x7,x3 // lo(a[3]*b[i]) adc x19,x20,xzr adds x14,x14,x8 // accumulate low parts of multiplication umulh x8,x4,x3 // hi(a[0]*b[i]) adcs x15,x15,x9 umulh x9,x5,x3 // hi(a[1]*b[i]) adcs x16,x16,x10 umulh x10,x6,x3 // hi(a[2]*b[i]) adcs x17,x17,x11 umulh x11,x7,x3 // hi(a[3]*b[i]) adc x19,x19,xzr ldr x3,[x2,#8*(2+1)] // b[2+1] adds x15,x15,x8 // accumulate high parts of multiplication lsl x8,x14,#32 adcs x16,x16,x9 lsr x9,x14,#32 adcs x17,x17,x10 adcs x19,x19,x11 adc x20,xzr,xzr subs x10,x14,x8 // "*0xffff0001" sbc x11,x14,x9 adds x14,x15,x8 // +=acc[0]<<96 and omit acc[0] mul x8,x4,x3 // lo(a[0]*b[i]) adcs x15,x16,x9 mul x9,x5,x3 // lo(a[1]*b[i]) adcs x16,x17,x10 // +=acc[0]*0xffff0001 mul x10,x6,x3 // lo(a[2]*b[i]) adcs x17,x19,x11 mul x11,x7,x3 // lo(a[3]*b[i]) adc x19,x20,xzr adds x14,x14,x8 // accumulate low parts of multiplication umulh x8,x4,x3 // hi(a[0]*b[i]) adcs x15,x15,x9 umulh x9,x5,x3 // hi(a[1]*b[i]) adcs x16,x16,x10 umulh x10,x6,x3 // hi(a[2]*b[i]) adcs x17,x17,x11 umulh x11,x7,x3 // hi(a[3]*b[i]) adc x19,x19,xzr adds x15,x15,x8 // accumulate high parts of multiplication lsl x8,x14,#32 adcs x16,x16,x9 lsr x9,x14,#32 adcs x17,x17,x10 adcs x19,x19,x11 adc x20,xzr,xzr // last reduction subs x10,x14,x8 // "*0xffff0001" sbc x11,x14,x9 adds x14,x15,x8 // +=acc[0]<<96 and omit acc[0] adcs x15,x16,x9 adcs x16,x17,x10 // +=acc[0]*0xffff0001 adcs x17,x19,x11 adc x19,x20,xzr adds x8,x14,#1 // subs x8,x14,#-1 // tmp = ret-modulus sbcs x9,x15,x12 sbcs x10,x16,xzr sbcs x11,x17,x13 sbcs xzr,x19,xzr // did it borrow? csel x14,x14,x8,lo // ret = borrow ? ret : ret-modulus csel x15,x15,x9,lo csel x16,x16,x10,lo stp x14,x15,[x0] csel x17,x17,x11,lo stp x16,x17,[x0,#16] ret .size __ecp_nistz256_mul_mont,.-__ecp_nistz256_mul_mont // note that __ecp_nistz256_sqr_mont expects a[0-3] input pre-loaded // to x4-x7 .type __ecp_nistz256_sqr_mont,%function .align 4 __ecp_nistz256_sqr_mont: // | | | | | |a1*a0| | // | | | | |a2*a0| | | // | |a3*a2|a3*a0| | | | // | | | |a2*a1| | | | // | | |a3*a1| | | | | // *| | | | | | | | 2| // +|a3*a3|a2*a2|a1*a1|a0*a0| // |--+--+--+--+--+--+--+--| // |A7|A6|A5|A4|A3|A2|A1|A0|, where Ax is , i.e. follow // // "can't overflow" below mark carrying into high part of // multiplication result, which can't overflow, because it // can never be all ones. mul x15,x5,x4 // a[1]*a[0] umulh x9,x5,x4 mul x16,x6,x4 // a[2]*a[0] umulh x10,x6,x4 mul x17,x7,x4 // a[3]*a[0] umulh x19,x7,x4 adds x16,x16,x9 // accumulate high parts of multiplication mul x8,x6,x5 // a[2]*a[1] umulh x9,x6,x5 adcs x17,x17,x10 mul x10,x7,x5 // a[3]*a[1] umulh x11,x7,x5 adc x19,x19,xzr // can't overflow mul x20,x7,x6 // a[3]*a[2] umulh x1,x7,x6 adds x9,x9,x10 // accumulate high parts of multiplication mul x14,x4,x4 // a[0]*a[0] adc x10,x11,xzr // can't overflow adds x17,x17,x8 // accumulate low parts of multiplication umulh x4,x4,x4 adcs x19,x19,x9 mul x9,x5,x5 // a[1]*a[1] adcs x20,x20,x10 umulh x5,x5,x5 adc x1,x1,xzr // can't overflow adds x15,x15,x15 // acc[1-6]*=2 mul x10,x6,x6 // a[2]*a[2] adcs x16,x16,x16 umulh x6,x6,x6 adcs x17,x17,x17 mul x11,x7,x7 // a[3]*a[3] adcs x19,x19,x19 umulh x7,x7,x7 adcs x20,x20,x20 adcs x1,x1,x1 adc x2,xzr,xzr adds x15,x15,x4 // +a[i]*a[i] adcs x16,x16,x9 adcs x17,x17,x5 adcs x19,x19,x10 adcs x20,x20,x6 lsl x8,x14,#32 adcs x1,x1,x11 lsr x9,x14,#32 adc x2,x2,x7 subs x10,x14,x8 // "*0xffff0001" sbc x11,x14,x9 adds x14,x15,x8 // +=acc[0]<<96 and omit acc[0] adcs x15,x16,x9 lsl x8,x14,#32 adcs x16,x17,x10 // +=acc[0]*0xffff0001 lsr x9,x14,#32 adc x17,x11,xzr // can't overflow subs x10,x14,x8 // "*0xffff0001" sbc x11,x14,x9 adds x14,x15,x8 // +=acc[0]<<96 and omit acc[0] adcs x15,x16,x9 lsl x8,x14,#32 adcs x16,x17,x10 // +=acc[0]*0xffff0001 lsr x9,x14,#32 adc x17,x11,xzr // can't overflow subs x10,x14,x8 // "*0xffff0001" sbc x11,x14,x9 adds x14,x15,x8 // +=acc[0]<<96 and omit acc[0] adcs x15,x16,x9 lsl x8,x14,#32 adcs x16,x17,x10 // +=acc[0]*0xffff0001 lsr x9,x14,#32 adc x17,x11,xzr // can't overflow subs x10,x14,x8 // "*0xffff0001" sbc x11,x14,x9 adds x14,x15,x8 // +=acc[0]<<96 and omit acc[0] adcs x15,x16,x9 adcs x16,x17,x10 // +=acc[0]*0xffff0001 adc x17,x11,xzr // can't overflow adds x14,x14,x19 // accumulate upper half adcs x15,x15,x20 adcs x16,x16,x1 adcs x17,x17,x2 adc x19,xzr,xzr adds x8,x14,#1 // subs x8,x14,#-1 // tmp = ret-modulus sbcs x9,x15,x12 sbcs x10,x16,xzr sbcs x11,x17,x13 sbcs xzr,x19,xzr // did it borrow? csel x14,x14,x8,lo // ret = borrow ? ret : ret-modulus csel x15,x15,x9,lo csel x16,x16,x10,lo stp x14,x15,[x0] csel x17,x17,x11,lo stp x16,x17,[x0,#16] ret .size __ecp_nistz256_sqr_mont,.-__ecp_nistz256_sqr_mont // Note that __ecp_nistz256_add_to expects both input vectors pre-loaded to // x4-x7 and x8-x11. This is done because it's used in multiple // contexts, e.g. in multiplication by 2 and 3... .type __ecp_nistz256_add_to,%function .align 4 __ecp_nistz256_add_to: adds x14,x14,x8 // ret = a+b adcs x15,x15,x9 adcs x16,x16,x10 adcs x17,x17,x11 adc x1,xzr,xzr // zap x1 adds x8,x14,#1 // subs x8,x4,#-1 // tmp = ret-modulus sbcs x9,x15,x12 sbcs x10,x16,xzr sbcs x11,x17,x13 sbcs xzr,x1,xzr // did subtraction borrow? csel x14,x14,x8,lo // ret = borrow ? ret : ret-modulus csel x15,x15,x9,lo csel x16,x16,x10,lo stp x14,x15,[x0] csel x17,x17,x11,lo stp x16,x17,[x0,#16] ret .size __ecp_nistz256_add_to,.-__ecp_nistz256_add_to .type __ecp_nistz256_sub_from,%function .align 4 __ecp_nistz256_sub_from: ldp x8,x9,[x2] ldp x10,x11,[x2,#16] subs x14,x14,x8 // ret = a-b sbcs x15,x15,x9 sbcs x16,x16,x10 sbcs x17,x17,x11 sbc x1,xzr,xzr // zap x1 subs x8,x14,#1 // adds x8,x4,#-1 // tmp = ret+modulus adcs x9,x15,x12 adcs x10,x16,xzr adc x11,x17,x13 cmp x1,xzr // did subtraction borrow? csel x14,x14,x8,eq // ret = borrow ? ret+modulus : ret csel x15,x15,x9,eq csel x16,x16,x10,eq stp x14,x15,[x0] csel x17,x17,x11,eq stp x16,x17,[x0,#16] ret .size __ecp_nistz256_sub_from,.-__ecp_nistz256_sub_from .type __ecp_nistz256_sub_morf,%function .align 4 __ecp_nistz256_sub_morf: ldp x8,x9,[x2] ldp x10,x11,[x2,#16] subs x14,x8,x14 // ret = b-a sbcs x15,x9,x15 sbcs x16,x10,x16 sbcs x17,x11,x17 sbc x1,xzr,xzr // zap x1 subs x8,x14,#1 // adds x8,x4,#-1 // tmp = ret+modulus adcs x9,x15,x12 adcs x10,x16,xzr adc x11,x17,x13 cmp x1,xzr // did subtraction borrow? csel x14,x14,x8,eq // ret = borrow ? ret+modulus : ret csel x15,x15,x9,eq csel x16,x16,x10,eq stp x14,x15,[x0] csel x17,x17,x11,eq stp x16,x17,[x0,#16] ret .size __ecp_nistz256_sub_morf,.-__ecp_nistz256_sub_morf .type __ecp_nistz256_div_by_2,%function .align 4 __ecp_nistz256_div_by_2: subs x8,x14,#1 // adds x8,x4,#-1 // tmp = a+modulus adcs x9,x15,x12 adcs x10,x16,xzr adcs x11,x17,x13 adc x1,xzr,xzr // zap x1 tst x14,#1 // is a even? csel x14,x14,x8,eq // ret = even ? a : a+modulus csel x15,x15,x9,eq csel x16,x16,x10,eq csel x17,x17,x11,eq csel x1,xzr,x1,eq lsr x14,x14,#1 // ret >>= 1 orr x14,x14,x15,lsl#63 lsr x15,x15,#1 orr x15,x15,x16,lsl#63 lsr x16,x16,#1 orr x16,x16,x17,lsl#63 lsr x17,x17,#1 stp x14,x15,[x0] orr x17,x17,x1,lsl#63 stp x16,x17,[x0,#16] ret .size __ecp_nistz256_div_by_2,.-__ecp_nistz256_div_by_2 .globl ecp_nistz256_point_double .hidden ecp_nistz256_point_double .type ecp_nistz256_point_double,%function .align 5 ecp_nistz256_point_double: AARCH64_SIGN_LINK_REGISTER stp x29,x30,[sp,#-96]! add x29,sp,#0 stp x19,x20,[sp,#16] stp x21,x22,[sp,#32] sub sp,sp,#32*4 .Ldouble_shortcut: ldp x14,x15,[x1,#32] mov x21,x0 ldp x16,x17,[x1,#48] mov x22,x1 adrp x13,.Lpoly add x13,x13,:lo12:.Lpoly ldr x12,[x13,#8] mov x8,x14 ldr x13,[x13,#24] mov x9,x15 ldp x4,x5,[x22,#64] // forward load for p256_sqr_mont mov x10,x16 mov x11,x17 ldp x6,x7,[x22,#64+16] add x0,sp,#0 bl __ecp_nistz256_add_to // p256_mul_by_2(S, in_y); add x0,sp,#64 bl __ecp_nistz256_sqr_mont // p256_sqr_mont(Zsqr, in_z); ldp x8,x9,[x22] ldp x10,x11,[x22,#16] mov x4,x14 // put Zsqr aside for p256_sub mov x5,x15 mov x6,x16 mov x7,x17 add x0,sp,#32 bl __ecp_nistz256_add_to // p256_add(M, Zsqr, in_x); add x2,x22,#0 mov x14,x4 // restore Zsqr mov x15,x5 ldp x4,x5,[sp,#0] // forward load for p256_sqr_mont mov x16,x6 mov x17,x7 ldp x6,x7,[sp,#0+16] add x0,sp,#64 bl __ecp_nistz256_sub_morf // p256_sub(Zsqr, in_x, Zsqr); add x0,sp,#0 bl __ecp_nistz256_sqr_mont // p256_sqr_mont(S, S); ldr x3,[x22,#32] ldp x4,x5,[x22,#64] ldp x6,x7,[x22,#64+16] add x2,x22,#32 add x0,sp,#96 bl __ecp_nistz256_mul_mont // p256_mul_mont(tmp0, in_z, in_y); mov x8,x14 mov x9,x15 ldp x4,x5,[sp,#0] // forward load for p256_sqr_mont mov x10,x16 mov x11,x17 ldp x6,x7,[sp,#0+16] add x0,x21,#64 bl __ecp_nistz256_add_to // p256_mul_by_2(res_z, tmp0); add x0,sp,#96 bl __ecp_nistz256_sqr_mont // p256_sqr_mont(tmp0, S); ldr x3,[sp,#64] // forward load for p256_mul_mont ldp x4,x5,[sp,#32] ldp x6,x7,[sp,#32+16] add x0,x21,#32 bl __ecp_nistz256_div_by_2 // p256_div_by_2(res_y, tmp0); add x2,sp,#64 add x0,sp,#32 bl __ecp_nistz256_mul_mont // p256_mul_mont(M, M, Zsqr); mov x8,x14 // duplicate M mov x9,x15 mov x10,x16 mov x11,x17 mov x4,x14 // put M aside mov x5,x15 mov x6,x16 mov x7,x17 add x0,sp,#32 bl __ecp_nistz256_add_to mov x8,x4 // restore M mov x9,x5 ldr x3,[x22] // forward load for p256_mul_mont mov x10,x6 ldp x4,x5,[sp,#0] mov x11,x7 ldp x6,x7,[sp,#0+16] bl __ecp_nistz256_add_to // p256_mul_by_3(M, M); add x2,x22,#0 add x0,sp,#0 bl __ecp_nistz256_mul_mont // p256_mul_mont(S, S, in_x); mov x8,x14 mov x9,x15 ldp x4,x5,[sp,#32] // forward load for p256_sqr_mont mov x10,x16 mov x11,x17 ldp x6,x7,[sp,#32+16] add x0,sp,#96 bl __ecp_nistz256_add_to // p256_mul_by_2(tmp0, S); add x0,x21,#0 bl __ecp_nistz256_sqr_mont // p256_sqr_mont(res_x, M); add x2,sp,#96 bl __ecp_nistz256_sub_from // p256_sub(res_x, res_x, tmp0); add x2,sp,#0 add x0,sp,#0 bl __ecp_nistz256_sub_morf // p256_sub(S, S, res_x); ldr x3,[sp,#32] mov x4,x14 // copy S mov x5,x15 mov x6,x16 mov x7,x17 add x2,sp,#32 bl __ecp_nistz256_mul_mont // p256_mul_mont(S, S, M); add x2,x21,#32 add x0,x21,#32 bl __ecp_nistz256_sub_from // p256_sub(res_y, S, res_y); add sp,x29,#0 // destroy frame ldp x19,x20,[x29,#16] ldp x21,x22,[x29,#32] ldp x29,x30,[sp],#96 AARCH64_VALIDATE_LINK_REGISTER ret .size ecp_nistz256_point_double,.-ecp_nistz256_point_double .globl ecp_nistz256_point_add .hidden ecp_nistz256_point_add .type ecp_nistz256_point_add,%function .align 5 ecp_nistz256_point_add: AARCH64_SIGN_LINK_REGISTER stp x29,x30,[sp,#-96]! add x29,sp,#0 stp x19,x20,[sp,#16] stp x21,x22,[sp,#32] stp x23,x24,[sp,#48] stp x25,x26,[sp,#64] stp x27,x28,[sp,#80] sub sp,sp,#32*12 ldp x4,x5,[x2,#64] // in2_z ldp x6,x7,[x2,#64+16] mov x21,x0 mov x22,x1 mov x23,x2 adrp x13,.Lpoly add x13,x13,:lo12:.Lpoly ldr x12,[x13,#8] ldr x13,[x13,#24] orr x8,x4,x5 orr x10,x6,x7 orr x25,x8,x10 cmp x25,#0 csetm x25,ne // ~in2infty add x0,sp,#192 bl __ecp_nistz256_sqr_mont // p256_sqr_mont(Z2sqr, in2_z); ldp x4,x5,[x22,#64] // in1_z ldp x6,x7,[x22,#64+16] orr x8,x4,x5 orr x10,x6,x7 orr x24,x8,x10 cmp x24,#0 csetm x24,ne // ~in1infty add x0,sp,#128 bl __ecp_nistz256_sqr_mont // p256_sqr_mont(Z1sqr, in1_z); ldr x3,[x23,#64] ldp x4,x5,[sp,#192] ldp x6,x7,[sp,#192+16] add x2,x23,#64 add x0,sp,#320 bl __ecp_nistz256_mul_mont // p256_mul_mont(S1, Z2sqr, in2_z); ldr x3,[x22,#64] ldp x4,x5,[sp,#128] ldp x6,x7,[sp,#128+16] add x2,x22,#64 add x0,sp,#352 bl __ecp_nistz256_mul_mont // p256_mul_mont(S2, Z1sqr, in1_z); ldr x3,[x22,#32] ldp x4,x5,[sp,#320] ldp x6,x7,[sp,#320+16] add x2,x22,#32 add x0,sp,#320 bl __ecp_nistz256_mul_mont // p256_mul_mont(S1, S1, in1_y); ldr x3,[x23,#32] ldp x4,x5,[sp,#352] ldp x6,x7,[sp,#352+16] add x2,x23,#32 add x0,sp,#352 bl __ecp_nistz256_mul_mont // p256_mul_mont(S2, S2, in2_y); add x2,sp,#320 ldr x3,[sp,#192] // forward load for p256_mul_mont ldp x4,x5,[x22] ldp x6,x7,[x22,#16] add x0,sp,#160 bl __ecp_nistz256_sub_from // p256_sub(R, S2, S1); orr x14,x14,x15 // see if result is zero orr x16,x16,x17 orr x26,x14,x16 // ~is_equal(S1,S2) add x2,sp,#192 add x0,sp,#256 bl __ecp_nistz256_mul_mont // p256_mul_mont(U1, in1_x, Z2sqr); ldr x3,[sp,#128] ldp x4,x5,[x23] ldp x6,x7,[x23,#16] add x2,sp,#128 add x0,sp,#288 bl __ecp_nistz256_mul_mont // p256_mul_mont(U2, in2_x, Z1sqr); add x2,sp,#256 ldp x4,x5,[sp,#160] // forward load for p256_sqr_mont ldp x6,x7,[sp,#160+16] add x0,sp,#96 bl __ecp_nistz256_sub_from // p256_sub(H, U2, U1); orr x14,x14,x15 // see if result is zero orr x16,x16,x17 orr x14,x14,x16 // ~is_equal(U1,U2) mvn x27,x24 // -1/0 -> 0/-1 mvn x28,x25 // -1/0 -> 0/-1 orr x14,x14,x27 orr x14,x14,x28 orr x14,x14,x26 cbnz x14,.Ladd_proceed // if(~is_equal(U1,U2) | in1infty | in2infty | ~is_equal(S1,S2)) .Ladd_double: mov x1,x22 mov x0,x21 ldp x23,x24,[x29,#48] ldp x25,x26,[x29,#64] ldp x27,x28,[x29,#80] add sp,sp,#256 // #256 is from #32*(12-4). difference in stack frames b .Ldouble_shortcut .align 4 .Ladd_proceed: add x0,sp,#192 bl __ecp_nistz256_sqr_mont // p256_sqr_mont(Rsqr, R); ldr x3,[x22,#64] ldp x4,x5,[sp,#96] ldp x6,x7,[sp,#96+16] add x2,x22,#64 add x0,sp,#64 bl __ecp_nistz256_mul_mont // p256_mul_mont(res_z, H, in1_z); ldp x4,x5,[sp,#96] ldp x6,x7,[sp,#96+16] add x0,sp,#128 bl __ecp_nistz256_sqr_mont // p256_sqr_mont(Hsqr, H); ldr x3,[x23,#64] ldp x4,x5,[sp,#64] ldp x6,x7,[sp,#64+16] add x2,x23,#64 add x0,sp,#64 bl __ecp_nistz256_mul_mont // p256_mul_mont(res_z, res_z, in2_z); ldr x3,[sp,#96] ldp x4,x5,[sp,#128] ldp x6,x7,[sp,#128+16] add x2,sp,#96 add x0,sp,#224 bl __ecp_nistz256_mul_mont // p256_mul_mont(Hcub, Hsqr, H); ldr x3,[sp,#128] ldp x4,x5,[sp,#256] ldp x6,x7,[sp,#256+16] add x2,sp,#128 add x0,sp,#288 bl __ecp_nistz256_mul_mont // p256_mul_mont(U2, U1, Hsqr); mov x8,x14 mov x9,x15 mov x10,x16 mov x11,x17 add x0,sp,#128 bl __ecp_nistz256_add_to // p256_mul_by_2(Hsqr, U2); add x2,sp,#192 add x0,sp,#0 bl __ecp_nistz256_sub_morf // p256_sub(res_x, Rsqr, Hsqr); add x2,sp,#224 bl __ecp_nistz256_sub_from // p256_sub(res_x, res_x, Hcub); add x2,sp,#288 ldr x3,[sp,#224] // forward load for p256_mul_mont ldp x4,x5,[sp,#320] ldp x6,x7,[sp,#320+16] add x0,sp,#32 bl __ecp_nistz256_sub_morf // p256_sub(res_y, U2, res_x); add x2,sp,#224 add x0,sp,#352 bl __ecp_nistz256_mul_mont // p256_mul_mont(S2, S1, Hcub); ldr x3,[sp,#160] ldp x4,x5,[sp,#32] ldp x6,x7,[sp,#32+16] add x2,sp,#160 add x0,sp,#32 bl __ecp_nistz256_mul_mont // p256_mul_mont(res_y, res_y, R); add x2,sp,#352 bl __ecp_nistz256_sub_from // p256_sub(res_y, res_y, S2); ldp x4,x5,[sp,#0] // res ldp x6,x7,[sp,#0+16] ldp x8,x9,[x23] // in2 ldp x10,x11,[x23,#16] ldp x14,x15,[x22,#0] // in1 cmp x24,#0 // ~, remember? ldp x16,x17,[x22,#0+16] csel x8,x4,x8,ne csel x9,x5,x9,ne ldp x4,x5,[sp,#0+0+32] // res csel x10,x6,x10,ne csel x11,x7,x11,ne cmp x25,#0 // ~, remember? ldp x6,x7,[sp,#0+0+48] csel x14,x8,x14,ne csel x15,x9,x15,ne ldp x8,x9,[x23,#0+32] // in2 csel x16,x10,x16,ne csel x17,x11,x17,ne ldp x10,x11,[x23,#0+48] stp x14,x15,[x21,#0] stp x16,x17,[x21,#0+16] ldp x14,x15,[x22,#32] // in1 cmp x24,#0 // ~, remember? ldp x16,x17,[x22,#32+16] csel x8,x4,x8,ne csel x9,x5,x9,ne ldp x4,x5,[sp,#0+32+32] // res csel x10,x6,x10,ne csel x11,x7,x11,ne cmp x25,#0 // ~, remember? ldp x6,x7,[sp,#0+32+48] csel x14,x8,x14,ne csel x15,x9,x15,ne ldp x8,x9,[x23,#32+32] // in2 csel x16,x10,x16,ne csel x17,x11,x17,ne ldp x10,x11,[x23,#32+48] stp x14,x15,[x21,#32] stp x16,x17,[x21,#32+16] ldp x14,x15,[x22,#64] // in1 cmp x24,#0 // ~, remember? ldp x16,x17,[x22,#64+16] csel x8,x4,x8,ne csel x9,x5,x9,ne csel x10,x6,x10,ne csel x11,x7,x11,ne cmp x25,#0 // ~, remember? csel x14,x8,x14,ne csel x15,x9,x15,ne csel x16,x10,x16,ne csel x17,x11,x17,ne stp x14,x15,[x21,#64] stp x16,x17,[x21,#64+16] .Ladd_done: add sp,x29,#0 // destroy frame ldp x19,x20,[x29,#16] ldp x21,x22,[x29,#32] ldp x23,x24,[x29,#48] ldp x25,x26,[x29,#64] ldp x27,x28,[x29,#80] ldp x29,x30,[sp],#96 AARCH64_VALIDATE_LINK_REGISTER ret .size ecp_nistz256_point_add,.-ecp_nistz256_point_add .globl ecp_nistz256_point_add_affine .hidden ecp_nistz256_point_add_affine .type ecp_nistz256_point_add_affine,%function .align 5 ecp_nistz256_point_add_affine: AARCH64_SIGN_LINK_REGISTER stp x29,x30,[sp,#-80]! add x29,sp,#0 stp x19,x20,[sp,#16] stp x21,x22,[sp,#32] stp x23,x24,[sp,#48] stp x25,x26,[sp,#64] sub sp,sp,#32*10 mov x21,x0 mov x22,x1 mov x23,x2 adrp x13,.Lpoly add x13,x13,:lo12:.Lpoly ldr x12,[x13,#8] ldr x13,[x13,#24] ldp x4,x5,[x1,#64] // in1_z ldp x6,x7,[x1,#64+16] orr x8,x4,x5 orr x10,x6,x7 orr x24,x8,x10 cmp x24,#0 csetm x24,ne // ~in1infty ldp x14,x15,[x2] // in2_x ldp x16,x17,[x2,#16] ldp x8,x9,[x2,#32] // in2_y ldp x10,x11,[x2,#48] orr x14,x14,x15 orr x16,x16,x17 orr x8,x8,x9 orr x10,x10,x11 orr x14,x14,x16 orr x8,x8,x10 orr x25,x14,x8 cmp x25,#0 csetm x25,ne // ~in2infty add x0,sp,#128 bl __ecp_nistz256_sqr_mont // p256_sqr_mont(Z1sqr, in1_z); mov x4,x14 mov x5,x15 mov x6,x16 mov x7,x17 ldr x3,[x23] add x2,x23,#0 add x0,sp,#96 bl __ecp_nistz256_mul_mont // p256_mul_mont(U2, Z1sqr, in2_x); add x2,x22,#0 ldr x3,[x22,#64] // forward load for p256_mul_mont ldp x4,x5,[sp,#128] ldp x6,x7,[sp,#128+16] add x0,sp,#160 bl __ecp_nistz256_sub_from // p256_sub(H, U2, in1_x); add x2,x22,#64 add x0,sp,#128 bl __ecp_nistz256_mul_mont // p256_mul_mont(S2, Z1sqr, in1_z); ldr x3,[x22,#64] ldp x4,x5,[sp,#160] ldp x6,x7,[sp,#160+16] add x2,x22,#64 add x0,sp,#64 bl __ecp_nistz256_mul_mont // p256_mul_mont(res_z, H, in1_z); ldr x3,[x23,#32] ldp x4,x5,[sp,#128] ldp x6,x7,[sp,#128+16] add x2,x23,#32 add x0,sp,#128 bl __ecp_nistz256_mul_mont // p256_mul_mont(S2, S2, in2_y); add x2,x22,#32 ldp x4,x5,[sp,#160] // forward load for p256_sqr_mont ldp x6,x7,[sp,#160+16] add x0,sp,#192 bl __ecp_nistz256_sub_from // p256_sub(R, S2, in1_y); add x0,sp,#224 bl __ecp_nistz256_sqr_mont // p256_sqr_mont(Hsqr, H); ldp x4,x5,[sp,#192] ldp x6,x7,[sp,#192+16] add x0,sp,#288 bl __ecp_nistz256_sqr_mont // p256_sqr_mont(Rsqr, R); ldr x3,[sp,#160] ldp x4,x5,[sp,#224] ldp x6,x7,[sp,#224+16] add x2,sp,#160 add x0,sp,#256 bl __ecp_nistz256_mul_mont // p256_mul_mont(Hcub, Hsqr, H); ldr x3,[x22] ldp x4,x5,[sp,#224] ldp x6,x7,[sp,#224+16] add x2,x22,#0 add x0,sp,#96 bl __ecp_nistz256_mul_mont // p256_mul_mont(U2, in1_x, Hsqr); mov x8,x14 mov x9,x15 mov x10,x16 mov x11,x17 add x0,sp,#224 bl __ecp_nistz256_add_to // p256_mul_by_2(Hsqr, U2); add x2,sp,#288 add x0,sp,#0 bl __ecp_nistz256_sub_morf // p256_sub(res_x, Rsqr, Hsqr); add x2,sp,#256 bl __ecp_nistz256_sub_from // p256_sub(res_x, res_x, Hcub); add x2,sp,#96 ldr x3,[x22,#32] // forward load for p256_mul_mont ldp x4,x5,[sp,#256] ldp x6,x7,[sp,#256+16] add x0,sp,#32 bl __ecp_nistz256_sub_morf // p256_sub(res_y, U2, res_x); add x2,x22,#32 add x0,sp,#128 bl __ecp_nistz256_mul_mont // p256_mul_mont(S2, in1_y, Hcub); ldr x3,[sp,#192] ldp x4,x5,[sp,#32] ldp x6,x7,[sp,#32+16] add x2,sp,#192 add x0,sp,#32 bl __ecp_nistz256_mul_mont // p256_mul_mont(res_y, res_y, R); add x2,sp,#128 bl __ecp_nistz256_sub_from // p256_sub(res_y, res_y, S2); ldp x4,x5,[sp,#0] // res ldp x6,x7,[sp,#0+16] ldp x8,x9,[x23] // in2 ldp x10,x11,[x23,#16] ldp x14,x15,[x22,#0] // in1 cmp x24,#0 // ~, remember? ldp x16,x17,[x22,#0+16] csel x8,x4,x8,ne csel x9,x5,x9,ne ldp x4,x5,[sp,#0+0+32] // res csel x10,x6,x10,ne csel x11,x7,x11,ne cmp x25,#0 // ~, remember? ldp x6,x7,[sp,#0+0+48] csel x14,x8,x14,ne csel x15,x9,x15,ne ldp x8,x9,[x23,#0+32] // in2 csel x16,x10,x16,ne csel x17,x11,x17,ne ldp x10,x11,[x23,#0+48] stp x14,x15,[x21,#0] stp x16,x17,[x21,#0+16] adrp x23,.Lone_mont-64 add x23,x23,:lo12:.Lone_mont-64 ldp x14,x15,[x22,#32] // in1 cmp x24,#0 // ~, remember? ldp x16,x17,[x22,#32+16] csel x8,x4,x8,ne csel x9,x5,x9,ne ldp x4,x5,[sp,#0+32+32] // res csel x10,x6,x10,ne csel x11,x7,x11,ne cmp x25,#0 // ~, remember? ldp x6,x7,[sp,#0+32+48] csel x14,x8,x14,ne csel x15,x9,x15,ne ldp x8,x9,[x23,#32+32] // in2 csel x16,x10,x16,ne csel x17,x11,x17,ne ldp x10,x11,[x23,#32+48] stp x14,x15,[x21,#32] stp x16,x17,[x21,#32+16] ldp x14,x15,[x22,#64] // in1 cmp x24,#0 // ~, remember? ldp x16,x17,[x22,#64+16] csel x8,x4,x8,ne csel x9,x5,x9,ne csel x10,x6,x10,ne csel x11,x7,x11,ne cmp x25,#0 // ~, remember? csel x14,x8,x14,ne csel x15,x9,x15,ne csel x16,x10,x16,ne csel x17,x11,x17,ne stp x14,x15,[x21,#64] stp x16,x17,[x21,#64+16] add sp,x29,#0 // destroy frame ldp x19,x20,[x29,#16] ldp x21,x22,[x29,#32] ldp x23,x24,[x29,#48] ldp x25,x26,[x29,#64] ldp x29,x30,[sp],#80 AARCH64_VALIDATE_LINK_REGISTER ret .size ecp_nistz256_point_add_affine,.-ecp_nistz256_point_add_affine //////////////////////////////////////////////////////////////////////// // void ecp_nistz256_ord_mul_mont(uint64_t res[4], uint64_t a[4], // uint64_t b[4]); .globl ecp_nistz256_ord_mul_mont .hidden ecp_nistz256_ord_mul_mont .type ecp_nistz256_ord_mul_mont,%function .align 4 ecp_nistz256_ord_mul_mont: AARCH64_VALID_CALL_TARGET // Armv8.3-A PAuth: even though x30 is pushed to stack it is not popped later. stp x29,x30,[sp,#-64]! add x29,sp,#0 stp x19,x20,[sp,#16] stp x21,x22,[sp,#32] stp x23,x24,[sp,#48] adrp x23,.Lord add x23,x23,:lo12:.Lord ldr x3,[x2] // bp[0] ldp x4,x5,[x1] ldp x6,x7,[x1,#16] ldp x12,x13,[x23,#0] ldp x21,x22,[x23,#16] ldr x23,[x23,#32] mul x14,x4,x3 // a[0]*b[0] umulh x8,x4,x3 mul x15,x5,x3 // a[1]*b[0] umulh x9,x5,x3 mul x16,x6,x3 // a[2]*b[0] umulh x10,x6,x3 mul x17,x7,x3 // a[3]*b[0] umulh x19,x7,x3 mul x24,x14,x23 adds x15,x15,x8 // accumulate high parts of multiplication adcs x16,x16,x9 adcs x17,x17,x10 adc x19,x19,xzr mov x20,xzr ldr x3,[x2,#8*1] // b[i] lsl x8,x24,#32 subs x16,x16,x24 lsr x9,x24,#32 sbcs x17,x17,x8 sbcs x19,x19,x9 sbc x20,x20,xzr subs xzr,x14,#1 umulh x9,x12,x24 mul x10,x13,x24 umulh x11,x13,x24 adcs x10,x10,x9 mul x8,x4,x3 adc x11,x11,xzr mul x9,x5,x3 adds x14,x15,x10 mul x10,x6,x3 adcs x15,x16,x11 mul x11,x7,x3 adcs x16,x17,x24 adcs x17,x19,x24 adc x19,x20,xzr adds x14,x14,x8 // accumulate low parts umulh x8,x4,x3 adcs x15,x15,x9 umulh x9,x5,x3 adcs x16,x16,x10 umulh x10,x6,x3 adcs x17,x17,x11 umulh x11,x7,x3 adc x19,x19,xzr mul x24,x14,x23 adds x15,x15,x8 // accumulate high parts adcs x16,x16,x9 adcs x17,x17,x10 adcs x19,x19,x11 adc x20,xzr,xzr ldr x3,[x2,#8*2] // b[i] lsl x8,x24,#32 subs x16,x16,x24 lsr x9,x24,#32 sbcs x17,x17,x8 sbcs x19,x19,x9 sbc x20,x20,xzr subs xzr,x14,#1 umulh x9,x12,x24 mul x10,x13,x24 umulh x11,x13,x24 adcs x10,x10,x9 mul x8,x4,x3 adc x11,x11,xzr mul x9,x5,x3 adds x14,x15,x10 mul x10,x6,x3 adcs x15,x16,x11 mul x11,x7,x3 adcs x16,x17,x24 adcs x17,x19,x24 adc x19,x20,xzr adds x14,x14,x8 // accumulate low parts umulh x8,x4,x3 adcs x15,x15,x9 umulh x9,x5,x3 adcs x16,x16,x10 umulh x10,x6,x3 adcs x17,x17,x11 umulh x11,x7,x3 adc x19,x19,xzr mul x24,x14,x23 adds x15,x15,x8 // accumulate high parts adcs x16,x16,x9 adcs x17,x17,x10 adcs x19,x19,x11 adc x20,xzr,xzr ldr x3,[x2,#8*3] // b[i] lsl x8,x24,#32 subs x16,x16,x24 lsr x9,x24,#32 sbcs x17,x17,x8 sbcs x19,x19,x9 sbc x20,x20,xzr subs xzr,x14,#1 umulh x9,x12,x24 mul x10,x13,x24 umulh x11,x13,x24 adcs x10,x10,x9 mul x8,x4,x3 adc x11,x11,xzr mul x9,x5,x3 adds x14,x15,x10 mul x10,x6,x3 adcs x15,x16,x11 mul x11,x7,x3 adcs x16,x17,x24 adcs x17,x19,x24 adc x19,x20,xzr adds x14,x14,x8 // accumulate low parts umulh x8,x4,x3 adcs x15,x15,x9 umulh x9,x5,x3 adcs x16,x16,x10 umulh x10,x6,x3 adcs x17,x17,x11 umulh x11,x7,x3 adc x19,x19,xzr mul x24,x14,x23 adds x15,x15,x8 // accumulate high parts adcs x16,x16,x9 adcs x17,x17,x10 adcs x19,x19,x11 adc x20,xzr,xzr lsl x8,x24,#32 // last reduction subs x16,x16,x24 lsr x9,x24,#32 sbcs x17,x17,x8 sbcs x19,x19,x9 sbc x20,x20,xzr subs xzr,x14,#1 umulh x9,x12,x24 mul x10,x13,x24 umulh x11,x13,x24 adcs x10,x10,x9 adc x11,x11,xzr adds x14,x15,x10 adcs x15,x16,x11 adcs x16,x17,x24 adcs x17,x19,x24 adc x19,x20,xzr subs x8,x14,x12 // ret -= modulus sbcs x9,x15,x13 sbcs x10,x16,x21 sbcs x11,x17,x22 sbcs xzr,x19,xzr csel x14,x14,x8,lo // ret = borrow ? ret : ret-modulus csel x15,x15,x9,lo csel x16,x16,x10,lo stp x14,x15,[x0] csel x17,x17,x11,lo stp x16,x17,[x0,#16] ldp x19,x20,[sp,#16] ldp x21,x22,[sp,#32] ldp x23,x24,[sp,#48] ldr x29,[sp],#64 ret .size ecp_nistz256_ord_mul_mont,.-ecp_nistz256_ord_mul_mont //////////////////////////////////////////////////////////////////////// // void ecp_nistz256_ord_sqr_mont(uint64_t res[4], uint64_t a[4], // uint64_t rep); .globl ecp_nistz256_ord_sqr_mont .hidden ecp_nistz256_ord_sqr_mont .type ecp_nistz256_ord_sqr_mont,%function .align 4 ecp_nistz256_ord_sqr_mont: AARCH64_VALID_CALL_TARGET // Armv8.3-A PAuth: even though x30 is pushed to stack it is not popped later. stp x29,x30,[sp,#-64]! add x29,sp,#0 stp x19,x20,[sp,#16] stp x21,x22,[sp,#32] stp x23,x24,[sp,#48] adrp x23,.Lord add x23,x23,:lo12:.Lord ldp x4,x5,[x1] ldp x6,x7,[x1,#16] ldp x12,x13,[x23,#0] ldp x21,x22,[x23,#16] ldr x23,[x23,#32] b .Loop_ord_sqr .align 4 .Loop_ord_sqr: sub x2,x2,#1 //////////////////////////////////////////////////////////////// // | | | | | |a1*a0| | // | | | | |a2*a0| | | // | |a3*a2|a3*a0| | | | // | | | |a2*a1| | | | // | | |a3*a1| | | | | // *| | | | | | | | 2| // +|a3*a3|a2*a2|a1*a1|a0*a0| // |--+--+--+--+--+--+--+--| // |A7|A6|A5|A4|A3|A2|A1|A0|, where Ax is , i.e. follow // // "can't overflow" below mark carrying into high part of // multiplication result, which can't overflow, because it // can never be all ones. mul x15,x5,x4 // a[1]*a[0] umulh x9,x5,x4 mul x16,x6,x4 // a[2]*a[0] umulh x10,x6,x4 mul x17,x7,x4 // a[3]*a[0] umulh x19,x7,x4 adds x16,x16,x9 // accumulate high parts of multiplication mul x8,x6,x5 // a[2]*a[1] umulh x9,x6,x5 adcs x17,x17,x10 mul x10,x7,x5 // a[3]*a[1] umulh x11,x7,x5 adc x19,x19,xzr // can't overflow mul x20,x7,x6 // a[3]*a[2] umulh x1,x7,x6 adds x9,x9,x10 // accumulate high parts of multiplication mul x14,x4,x4 // a[0]*a[0] adc x10,x11,xzr // can't overflow adds x17,x17,x8 // accumulate low parts of multiplication umulh x4,x4,x4 adcs x19,x19,x9 mul x9,x5,x5 // a[1]*a[1] adcs x20,x20,x10 umulh x5,x5,x5 adc x1,x1,xzr // can't overflow adds x15,x15,x15 // acc[1-6]*=2 mul x10,x6,x6 // a[2]*a[2] adcs x16,x16,x16 umulh x6,x6,x6 adcs x17,x17,x17 mul x11,x7,x7 // a[3]*a[3] adcs x19,x19,x19 umulh x7,x7,x7 adcs x20,x20,x20 adcs x1,x1,x1 adc x3,xzr,xzr adds x15,x15,x4 // +a[i]*a[i] mul x24,x14,x23 adcs x16,x16,x9 adcs x17,x17,x5 adcs x19,x19,x10 adcs x20,x20,x6 adcs x1,x1,x11 adc x3,x3,x7 subs xzr,x14,#1 umulh x9,x12,x24 mul x10,x13,x24 umulh x11,x13,x24 adcs x10,x10,x9 adc x11,x11,xzr adds x14,x15,x10 adcs x15,x16,x11 adcs x16,x17,x24 adc x17,xzr,x24 // can't overflow mul x11,x14,x23 lsl x8,x24,#32 subs x15,x15,x24 lsr x9,x24,#32 sbcs x16,x16,x8 sbc x17,x17,x9 // can't borrow subs xzr,x14,#1 umulh x9,x12,x11 mul x10,x13,x11 umulh x24,x13,x11 adcs x10,x10,x9 adc x24,x24,xzr adds x14,x15,x10 adcs x15,x16,x24 adcs x16,x17,x11 adc x17,xzr,x11 // can't overflow mul x24,x14,x23 lsl x8,x11,#32 subs x15,x15,x11 lsr x9,x11,#32 sbcs x16,x16,x8 sbc x17,x17,x9 // can't borrow subs xzr,x14,#1 umulh x9,x12,x24 mul x10,x13,x24 umulh x11,x13,x24 adcs x10,x10,x9 adc x11,x11,xzr adds x14,x15,x10 adcs x15,x16,x11 adcs x16,x17,x24 adc x17,xzr,x24 // can't overflow mul x11,x14,x23 lsl x8,x24,#32 subs x15,x15,x24 lsr x9,x24,#32 sbcs x16,x16,x8 sbc x17,x17,x9 // can't borrow subs xzr,x14,#1 umulh x9,x12,x11 mul x10,x13,x11 umulh x24,x13,x11 adcs x10,x10,x9 adc x24,x24,xzr adds x14,x15,x10 adcs x15,x16,x24 adcs x16,x17,x11 adc x17,xzr,x11 // can't overflow lsl x8,x11,#32 subs x15,x15,x11 lsr x9,x11,#32 sbcs x16,x16,x8 sbc x17,x17,x9 // can't borrow adds x14,x14,x19 // accumulate upper half adcs x15,x15,x20 adcs x16,x16,x1 adcs x17,x17,x3 adc x19,xzr,xzr subs x8,x14,x12 // ret -= modulus sbcs x9,x15,x13 sbcs x10,x16,x21 sbcs x11,x17,x22 sbcs xzr,x19,xzr csel x4,x14,x8,lo // ret = borrow ? ret : ret-modulus csel x5,x15,x9,lo csel x6,x16,x10,lo csel x7,x17,x11,lo cbnz x2,.Loop_ord_sqr stp x4,x5,[x0] stp x6,x7,[x0,#16] ldp x19,x20,[sp,#16] ldp x21,x22,[sp,#32] ldp x23,x24,[sp,#48] ldr x29,[sp],#64 ret .size ecp_nistz256_ord_sqr_mont,.-ecp_nistz256_ord_sqr_mont //////////////////////////////////////////////////////////////////////// // void ecp_nistz256_select_w5(uint64_t *val, uint64_t *in_t, int index); .globl ecp_nistz256_select_w5 .hidden ecp_nistz256_select_w5 .type ecp_nistz256_select_w5,%function .align 4 ecp_nistz256_select_w5: AARCH64_VALID_CALL_TARGET // x10 := x0 // w9 := 0; loop counter and incremented internal index mov x10, x0 mov w9, #0 // [v16-v21] := 0 movi v16.16b, #0 movi v17.16b, #0 movi v18.16b, #0 movi v19.16b, #0 movi v20.16b, #0 movi v21.16b, #0 .Lselect_w5_loop: // Loop 16 times. // Increment index (loop counter); tested at the end of the loop add w9, w9, #1 // [v22-v27] := Load a (3*256-bit = 6*128-bit) table entry starting at x1 // and advance x1 to point to the next entry ld1 {v22.2d, v23.2d, v24.2d, v25.2d}, [x1],#64 // x11 := (w9 == w2)? All 1s : All 0s cmp w9, w2 csetm x11, eq // continue loading ... ld1 {v26.2d, v27.2d}, [x1],#32 // duplicate mask_64 into Mask (all 0s or all 1s) dup v3.2d, x11 // [v16-v19] := (Mask == all 1s)? [v22-v25] : [v16-v19] // i.e., values in output registers will remain the same if w9 != w2 bit v16.16b, v22.16b, v3.16b bit v17.16b, v23.16b, v3.16b bit v18.16b, v24.16b, v3.16b bit v19.16b, v25.16b, v3.16b bit v20.16b, v26.16b, v3.16b bit v21.16b, v27.16b, v3.16b // If bit #4 is not 0 (i.e. idx_ctr < 16) loop back tbz w9, #4, .Lselect_w5_loop // Write [v16-v21] to memory at the output pointer st1 {v16.2d, v17.2d, v18.2d, v19.2d}, [x10],#64 st1 {v20.2d, v21.2d}, [x10] ret .size ecp_nistz256_select_w5,.-ecp_nistz256_select_w5 //////////////////////////////////////////////////////////////////////// // void ecp_nistz256_select_w7(uint64_t *val, uint64_t *in_t, int index); .globl ecp_nistz256_select_w7 .hidden ecp_nistz256_select_w7 .type ecp_nistz256_select_w7,%function .align 4 ecp_nistz256_select_w7: AARCH64_VALID_CALL_TARGET // w9 := 0; loop counter and incremented internal index mov w9, #0 // [v16-v21] := 0 movi v16.16b, #0 movi v17.16b, #0 movi v18.16b, #0 movi v19.16b, #0 .Lselect_w7_loop: // Loop 64 times. // Increment index (loop counter); tested at the end of the loop add w9, w9, #1 // [v22-v25] := Load a (2*256-bit = 4*128-bit) table entry starting at x1 // and advance x1 to point to the next entry ld1 {v22.2d, v23.2d, v24.2d, v25.2d}, [x1],#64 // x11 := (w9 == w2)? All 1s : All 0s cmp w9, w2 csetm x11, eq // duplicate mask_64 into Mask (all 0s or all 1s) dup v3.2d, x11 // [v16-v19] := (Mask == all 1s)? [v22-v25] : [v16-v19] // i.e., values in output registers will remain the same if w9 != w2 bit v16.16b, v22.16b, v3.16b bit v17.16b, v23.16b, v3.16b bit v18.16b, v24.16b, v3.16b bit v19.16b, v25.16b, v3.16b // If bit #6 is not 0 (i.e. idx_ctr < 64) loop back tbz w9, #6, .Lselect_w7_loop // Write [v16-v19] to memory at the output pointer st1 {v16.2d, v17.2d, v18.2d, v19.2d}, [x0] ret .size ecp_nistz256_select_w7,.-ecp_nistz256_select_w7 #endif // !OPENSSL_NO_ASM && defined(OPENSSL_AARCH64) && defined(__ELF__)
mktmansour/MKT-KSA-Geolocation-Security
9,958
.cargo-home/registry/src/index.crates.io-1949cf8c6b5b557f/ring-0.17.14/pregenerated/vpaes-x86-elf.S
// This file is generated from a similarly-named Perl script in the BoringSSL // source tree. Do not edit by hand. #include <ring-core/asm_base.h> #if !defined(OPENSSL_NO_ASM) && defined(OPENSSL_X86) && defined(__ELF__) .text #ifdef BORINGSSL_DISPATCH_TEST #endif .align 64 .L_vpaes_consts: .long 218628480,235210255,168496130,67568393 .long 252381056,17041926,33884169,51187212 .long 252645135,252645135,252645135,252645135 .long 1512730624,3266504856,1377990664,3401244816 .long 830229760,1275146365,2969422977,3447763452 .long 3411033600,2979783055,338359620,2782886510 .long 4209124096,907596821,221174255,1006095553 .long 191964160,3799684038,3164090317,1589111125 .long 182528256,1777043520,2877432650,3265356744 .long 1874708224,3503451415,3305285752,363511674 .long 1606117888,3487855781,1093350906,2384367825 .long 197121,67569157,134941193,202313229 .long 67569157,134941193,202313229,197121 .long 134941193,202313229,197121,67569157 .long 202313229,197121,67569157,134941193 .long 33619971,100992007,168364043,235736079 .long 235736079,33619971,100992007,168364043 .long 168364043,235736079,33619971,100992007 .long 100992007,168364043,235736079,33619971 .long 50462976,117835012,185207048,252579084 .long 252314880,51251460,117574920,184942860 .long 184682752,252054788,50987272,118359308 .long 118099200,185467140,251790600,50727180 .long 2946363062,528716217,1300004225,1881839624 .long 1532713819,1532713819,1532713819,1532713819 .long 3602276352,4288629033,3737020424,4153884961 .long 1354558464,32357713,2958822624,3775749553 .long 1201988352,132424512,1572796698,503232858 .long 2213177600,1597421020,4103937655,675398315 .byte 86,101,99,116,111,114,32,80,101,114,109,117,116,97,116,105 .byte 111,110,32,65,69,83,32,102,111,114,32,120,56,54,47,83 .byte 83,83,69,51,44,32,77,105,107,101,32,72,97,109,98,117 .byte 114,103,32,40,83,116,97,110,102,111,114,100,32,85,110,105 .byte 118,101,114,115,105,116,121,41,0 .align 64 .hidden _vpaes_preheat .type _vpaes_preheat,@function .align 16 _vpaes_preheat: addl (%esp),%ebp movdqa -48(%ebp),%xmm7 movdqa -16(%ebp),%xmm6 ret .size _vpaes_preheat,.-_vpaes_preheat .hidden _vpaes_encrypt_core .type _vpaes_encrypt_core,@function .align 16 _vpaes_encrypt_core: movl $16,%ecx movl 240(%edx),%eax movdqa %xmm6,%xmm1 movdqa (%ebp),%xmm2 pandn %xmm0,%xmm1 pand %xmm6,%xmm0 movdqu (%edx),%xmm5 .byte 102,15,56,0,208 movdqa 16(%ebp),%xmm0 pxor %xmm5,%xmm2 psrld $4,%xmm1 addl $16,%edx .byte 102,15,56,0,193 leal 192(%ebp),%ebx pxor %xmm2,%xmm0 jmp .L000enc_entry .align 16 .L001enc_loop: movdqa 32(%ebp),%xmm4 movdqa 48(%ebp),%xmm0 .byte 102,15,56,0,226 .byte 102,15,56,0,195 pxor %xmm5,%xmm4 movdqa 64(%ebp),%xmm5 pxor %xmm4,%xmm0 movdqa -64(%ebx,%ecx,1),%xmm1 .byte 102,15,56,0,234 movdqa 80(%ebp),%xmm2 movdqa (%ebx,%ecx,1),%xmm4 .byte 102,15,56,0,211 movdqa %xmm0,%xmm3 pxor %xmm5,%xmm2 .byte 102,15,56,0,193 addl $16,%edx pxor %xmm2,%xmm0 .byte 102,15,56,0,220 addl $16,%ecx pxor %xmm0,%xmm3 .byte 102,15,56,0,193 andl $48,%ecx subl $1,%eax pxor %xmm3,%xmm0 .L000enc_entry: movdqa %xmm6,%xmm1 movdqa -32(%ebp),%xmm5 pandn %xmm0,%xmm1 psrld $4,%xmm1 pand %xmm6,%xmm0 .byte 102,15,56,0,232 movdqa %xmm7,%xmm3 pxor %xmm1,%xmm0 .byte 102,15,56,0,217 movdqa %xmm7,%xmm4 pxor %xmm5,%xmm3 .byte 102,15,56,0,224 movdqa %xmm7,%xmm2 pxor %xmm5,%xmm4 .byte 102,15,56,0,211 movdqa %xmm7,%xmm3 pxor %xmm0,%xmm2 .byte 102,15,56,0,220 movdqu (%edx),%xmm5 pxor %xmm1,%xmm3 jnz .L001enc_loop movdqa 96(%ebp),%xmm4 movdqa 112(%ebp),%xmm0 .byte 102,15,56,0,226 pxor %xmm5,%xmm4 .byte 102,15,56,0,195 movdqa 64(%ebx,%ecx,1),%xmm1 pxor %xmm4,%xmm0 .byte 102,15,56,0,193 ret .size _vpaes_encrypt_core,.-_vpaes_encrypt_core .hidden _vpaes_schedule_core .type _vpaes_schedule_core,@function .align 16 _vpaes_schedule_core: addl (%esp),%ebp movdqu (%esi),%xmm0 movdqa 320(%ebp),%xmm2 movdqa %xmm0,%xmm3 leal (%ebp),%ebx movdqa %xmm2,4(%esp) call _vpaes_schedule_transform movdqa %xmm0,%xmm7 testl %edi,%edi jnz .L002schedule_am_decrypting movdqu %xmm0,(%edx) jmp .L003schedule_go .L002schedule_am_decrypting: movdqa 256(%ebp,%ecx,1),%xmm1 .byte 102,15,56,0,217 movdqu %xmm3,(%edx) xorl $48,%ecx .L003schedule_go: cmpl $192,%eax ja .L004schedule_256 .L005schedule_128: movl $10,%eax .L006loop_schedule_128: call _vpaes_schedule_round decl %eax jz .L007schedule_mangle_last call _vpaes_schedule_mangle jmp .L006loop_schedule_128 .align 16 .L004schedule_256: movdqu 16(%esi),%xmm0 call _vpaes_schedule_transform movl $7,%eax .L008loop_schedule_256: call _vpaes_schedule_mangle movdqa %xmm0,%xmm6 call _vpaes_schedule_round decl %eax jz .L007schedule_mangle_last call _vpaes_schedule_mangle pshufd $255,%xmm0,%xmm0 movdqa %xmm7,20(%esp) movdqa %xmm6,%xmm7 call .L_vpaes_schedule_low_round movdqa 20(%esp),%xmm7 jmp .L008loop_schedule_256 .align 16 .L007schedule_mangle_last: leal 384(%ebp),%ebx testl %edi,%edi jnz .L009schedule_mangle_last_dec movdqa 256(%ebp,%ecx,1),%xmm1 .byte 102,15,56,0,193 leal 352(%ebp),%ebx addl $32,%edx .L009schedule_mangle_last_dec: addl $-16,%edx pxor 336(%ebp),%xmm0 call _vpaes_schedule_transform movdqu %xmm0,(%edx) pxor %xmm0,%xmm0 pxor %xmm1,%xmm1 pxor %xmm2,%xmm2 pxor %xmm3,%xmm3 pxor %xmm4,%xmm4 pxor %xmm5,%xmm5 pxor %xmm6,%xmm6 pxor %xmm7,%xmm7 ret .size _vpaes_schedule_core,.-_vpaes_schedule_core .hidden _vpaes_schedule_round .type _vpaes_schedule_round,@function .align 16 _vpaes_schedule_round: movdqa 8(%esp),%xmm2 pxor %xmm1,%xmm1 .byte 102,15,58,15,202,15 .byte 102,15,58,15,210,15 pxor %xmm1,%xmm7 pshufd $255,%xmm0,%xmm0 .byte 102,15,58,15,192,1 movdqa %xmm2,8(%esp) .L_vpaes_schedule_low_round: movdqa %xmm7,%xmm1 pslldq $4,%xmm7 pxor %xmm1,%xmm7 movdqa %xmm7,%xmm1 pslldq $8,%xmm7 pxor %xmm1,%xmm7 pxor 336(%ebp),%xmm7 movdqa -16(%ebp),%xmm4 movdqa -48(%ebp),%xmm5 movdqa %xmm4,%xmm1 pandn %xmm0,%xmm1 psrld $4,%xmm1 pand %xmm4,%xmm0 movdqa -32(%ebp),%xmm2 .byte 102,15,56,0,208 pxor %xmm1,%xmm0 movdqa %xmm5,%xmm3 .byte 102,15,56,0,217 pxor %xmm2,%xmm3 movdqa %xmm5,%xmm4 .byte 102,15,56,0,224 pxor %xmm2,%xmm4 movdqa %xmm5,%xmm2 .byte 102,15,56,0,211 pxor %xmm0,%xmm2 movdqa %xmm5,%xmm3 .byte 102,15,56,0,220 pxor %xmm1,%xmm3 movdqa 32(%ebp),%xmm4 .byte 102,15,56,0,226 movdqa 48(%ebp),%xmm0 .byte 102,15,56,0,195 pxor %xmm4,%xmm0 pxor %xmm7,%xmm0 movdqa %xmm0,%xmm7 ret .size _vpaes_schedule_round,.-_vpaes_schedule_round .hidden _vpaes_schedule_transform .type _vpaes_schedule_transform,@function .align 16 _vpaes_schedule_transform: movdqa -16(%ebp),%xmm2 movdqa %xmm2,%xmm1 pandn %xmm0,%xmm1 psrld $4,%xmm1 pand %xmm2,%xmm0 movdqa (%ebx),%xmm2 .byte 102,15,56,0,208 movdqa 16(%ebx),%xmm0 .byte 102,15,56,0,193 pxor %xmm2,%xmm0 ret .size _vpaes_schedule_transform,.-_vpaes_schedule_transform .hidden _vpaes_schedule_mangle .type _vpaes_schedule_mangle,@function .align 16 _vpaes_schedule_mangle: movdqa %xmm0,%xmm4 movdqa 128(%ebp),%xmm5 testl %edi,%edi jnz .L010schedule_mangle_dec addl $16,%edx pxor 336(%ebp),%xmm4 .byte 102,15,56,0,229 movdqa %xmm4,%xmm3 .byte 102,15,56,0,229 pxor %xmm4,%xmm3 .byte 102,15,56,0,229 pxor %xmm4,%xmm3 jmp .L011schedule_mangle_both .align 16 .L010schedule_mangle_dec: movdqa -16(%ebp),%xmm2 leal (%ebp),%esi movdqa %xmm2,%xmm1 pandn %xmm4,%xmm1 psrld $4,%xmm1 pand %xmm2,%xmm4 movdqa (%esi),%xmm2 .byte 102,15,56,0,212 movdqa 16(%esi),%xmm3 .byte 102,15,56,0,217 pxor %xmm2,%xmm3 .byte 102,15,56,0,221 movdqa 32(%esi),%xmm2 .byte 102,15,56,0,212 pxor %xmm3,%xmm2 movdqa 48(%esi),%xmm3 .byte 102,15,56,0,217 pxor %xmm2,%xmm3 .byte 102,15,56,0,221 movdqa 64(%esi),%xmm2 .byte 102,15,56,0,212 pxor %xmm3,%xmm2 movdqa 80(%esi),%xmm3 .byte 102,15,56,0,217 pxor %xmm2,%xmm3 .byte 102,15,56,0,221 movdqa 96(%esi),%xmm2 .byte 102,15,56,0,212 pxor %xmm3,%xmm2 movdqa 112(%esi),%xmm3 .byte 102,15,56,0,217 pxor %xmm2,%xmm3 addl $-16,%edx .L011schedule_mangle_both: movdqa 256(%ebp,%ecx,1),%xmm1 .byte 102,15,56,0,217 addl $-16,%ecx andl $48,%ecx movdqu %xmm3,(%edx) ret .size _vpaes_schedule_mangle,.-_vpaes_schedule_mangle .globl vpaes_set_encrypt_key .hidden vpaes_set_encrypt_key .type vpaes_set_encrypt_key,@function .align 16 vpaes_set_encrypt_key: .L_vpaes_set_encrypt_key_begin: pushl %ebp pushl %ebx pushl %esi pushl %edi #ifdef BORINGSSL_DISPATCH_TEST pushl %ebx pushl %edx call .L012pic_for_function_hit .L012pic_for_function_hit: popl %ebx leal BORINGSSL_function_hit+5-.L012pic_for_function_hit(%ebx),%ebx movl $1,%edx movb %dl,(%ebx) popl %edx popl %ebx #endif movl 20(%esp),%esi leal -56(%esp),%ebx movl 24(%esp),%eax andl $-16,%ebx movl 28(%esp),%edx xchgl %esp,%ebx movl %ebx,48(%esp) movl %eax,%ebx shrl $5,%ebx addl $5,%ebx movl %ebx,240(%edx) movl $48,%ecx movl $0,%edi leal .L_vpaes_consts+0x30-.L013pic_point,%ebp call _vpaes_schedule_core .L013pic_point: movl 48(%esp),%esp xorl %eax,%eax popl %edi popl %esi popl %ebx popl %ebp ret .size vpaes_set_encrypt_key,.-.L_vpaes_set_encrypt_key_begin .globl vpaes_encrypt .hidden vpaes_encrypt .type vpaes_encrypt,@function .align 16 vpaes_encrypt: .L_vpaes_encrypt_begin: pushl %ebp pushl %ebx pushl %esi pushl %edi #ifdef BORINGSSL_DISPATCH_TEST pushl %ebx pushl %edx call .L014pic_for_function_hit .L014pic_for_function_hit: popl %ebx leal BORINGSSL_function_hit+4-.L014pic_for_function_hit(%ebx),%ebx movl $1,%edx movb %dl,(%ebx) popl %edx popl %ebx #endif leal .L_vpaes_consts+0x30-.L015pic_point,%ebp call _vpaes_preheat .L015pic_point: movl 20(%esp),%esi leal -56(%esp),%ebx movl 24(%esp),%edi andl $-16,%ebx movl 28(%esp),%edx xchgl %esp,%ebx movl %ebx,48(%esp) movdqu (%esi),%xmm0 call _vpaes_encrypt_core movdqu %xmm0,(%edi) movl 48(%esp),%esp popl %edi popl %esi popl %ebx popl %ebp ret .size vpaes_encrypt,.-.L_vpaes_encrypt_begin #endif // !defined(OPENSSL_NO_ASM) && defined(OPENSSL_X86) && defined(__ELF__)
mktmansour/MKT-KSA-Geolocation-Security
82,152
.cargo-home/registry/src/index.crates.io-1949cf8c6b5b557f/ring-0.17.14/pregenerated/aesv8-gcm-armv8-ios64.S
// This file is generated from a similarly-named Perl script in the BoringSSL // source tree. Do not edit by hand. #include <ring-core/asm_base.h> #if !defined(OPENSSL_NO_ASM) && defined(OPENSSL_AARCH64) && defined(__APPLE__) #if __ARM_MAX_ARCH__ >= 8 .text .globl _aes_gcm_enc_kernel .private_extern _aes_gcm_enc_kernel .align 4 _aes_gcm_enc_kernel: AARCH64_SIGN_LINK_REGISTER stp x29, x30, [sp, #-128]! mov x29, sp stp x19, x20, [sp, #16] mov x16, x4 mov x8, x5 stp x21, x22, [sp, #32] stp x23, x24, [sp, #48] stp d8, d9, [sp, #64] stp d10, d11, [sp, #80] stp d12, d13, [sp, #96] stp d14, d15, [sp, #112] ldr w17, [x8, #240] add x19, x8, x17, lsl #4 // borrow input_l1 for last key ldp x13, x14, [x19] // load round N keys ldr q31, [x19, #-16] // load round N-1 keys add x4, x0, x1, lsr #3 // end_input_ptr lsr x5, x1, #3 // byte_len mov x15, x5 ldp x10, x11, [x16] // ctr96_b64, ctr96_t32 ld1 { v0.16b}, [x16] // special case vector load initial counter so we can start first AES block as quickly as possible sub x5, x5, #1 // byte_len - 1 ldr q18, [x8, #0] // load rk0 and x5, x5, #0xffffffffffffffc0 // number of bytes to be processed in main loop (at least 1 byte must be handled by tail) ldr q25, [x8, #112] // load rk7 add x5, x5, x0 lsr x12, x11, #32 fmov d2, x10 // CTR block 2 orr w11, w11, w11 rev w12, w12 // rev_ctr32 fmov d1, x10 // CTR block 1 aese v0.16b, v18.16b aesmc v0.16b, v0.16b // AES block 0 - round 0 add w12, w12, #1 // increment rev_ctr32 rev w9, w12 // CTR block 1 fmov d3, x10 // CTR block 3 orr x9, x11, x9, lsl #32 // CTR block 1 add w12, w12, #1 // CTR block 1 ldr q19, [x8, #16] // load rk1 fmov v1.d[1], x9 // CTR block 1 rev w9, w12 // CTR block 2 add w12, w12, #1 // CTR block 2 orr x9, x11, x9, lsl #32 // CTR block 2 ldr q20, [x8, #32] // load rk2 fmov v2.d[1], x9 // CTR block 2 rev w9, w12 // CTR block 3 aese v0.16b, v19.16b aesmc v0.16b, v0.16b // AES block 0 - round 1 orr x9, x11, x9, lsl #32 // CTR block 3 fmov v3.d[1], x9 // CTR block 3 aese v1.16b, v18.16b aesmc v1.16b, v1.16b // AES block 1 - round 0 ldr q21, [x8, #48] // load rk3 aese v0.16b, v20.16b aesmc v0.16b, v0.16b // AES block 0 - round 2 ldr q24, [x8, #96] // load rk6 aese v2.16b, v18.16b aesmc v2.16b, v2.16b // AES block 2 - round 0 ldr q23, [x8, #80] // load rk5 aese v1.16b, v19.16b aesmc v1.16b, v1.16b // AES block 1 - round 1 ldr q14, [x6, #48] // load h3l | h3h ext v14.16b, v14.16b, v14.16b, #8 aese v3.16b, v18.16b aesmc v3.16b, v3.16b // AES block 3 - round 0 aese v2.16b, v19.16b aesmc v2.16b, v2.16b // AES block 2 - round 1 ldr q22, [x8, #64] // load rk4 aese v1.16b, v20.16b aesmc v1.16b, v1.16b // AES block 1 - round 2 ldr q13, [x6, #32] // load h2l | h2h ext v13.16b, v13.16b, v13.16b, #8 aese v3.16b, v19.16b aesmc v3.16b, v3.16b // AES block 3 - round 1 ldr q30, [x8, #192] // load rk12 aese v2.16b, v20.16b aesmc v2.16b, v2.16b // AES block 2 - round 2 ldr q15, [x6, #80] // load h4l | h4h ext v15.16b, v15.16b, v15.16b, #8 aese v1.16b, v21.16b aesmc v1.16b, v1.16b // AES block 1 - round 3 ldr q29, [x8, #176] // load rk11 aese v3.16b, v20.16b aesmc v3.16b, v3.16b // AES block 3 - round 2 ldr q26, [x8, #128] // load rk8 aese v2.16b, v21.16b aesmc v2.16b, v2.16b // AES block 2 - round 3 add w12, w12, #1 // CTR block 3 aese v0.16b, v21.16b aesmc v0.16b, v0.16b // AES block 0 - round 3 aese v3.16b, v21.16b aesmc v3.16b, v3.16b // AES block 3 - round 3 ld1 { v11.16b}, [x3] ext v11.16b, v11.16b, v11.16b, #8 rev64 v11.16b, v11.16b aese v2.16b, v22.16b aesmc v2.16b, v2.16b // AES block 2 - round 4 aese v0.16b, v22.16b aesmc v0.16b, v0.16b // AES block 0 - round 4 aese v1.16b, v22.16b aesmc v1.16b, v1.16b // AES block 1 - round 4 aese v3.16b, v22.16b aesmc v3.16b, v3.16b // AES block 3 - round 4 cmp x17, #12 // setup flags for AES-128/192/256 check aese v0.16b, v23.16b aesmc v0.16b, v0.16b // AES block 0 - round 5 aese v1.16b, v23.16b aesmc v1.16b, v1.16b // AES block 1 - round 5 aese v3.16b, v23.16b aesmc v3.16b, v3.16b // AES block 3 - round 5 aese v2.16b, v23.16b aesmc v2.16b, v2.16b // AES block 2 - round 5 aese v1.16b, v24.16b aesmc v1.16b, v1.16b // AES block 1 - round 6 trn2 v17.2d, v14.2d, v15.2d // h4l | h3l aese v3.16b, v24.16b aesmc v3.16b, v3.16b // AES block 3 - round 6 ldr q27, [x8, #144] // load rk9 aese v0.16b, v24.16b aesmc v0.16b, v0.16b // AES block 0 - round 6 ldr q12, [x6] // load h1l | h1h ext v12.16b, v12.16b, v12.16b, #8 aese v2.16b, v24.16b aesmc v2.16b, v2.16b // AES block 2 - round 6 ldr q28, [x8, #160] // load rk10 aese v1.16b, v25.16b aesmc v1.16b, v1.16b // AES block 1 - round 7 trn1 v9.2d, v14.2d, v15.2d // h4h | h3h aese v0.16b, v25.16b aesmc v0.16b, v0.16b // AES block 0 - round 7 aese v2.16b, v25.16b aesmc v2.16b, v2.16b // AES block 2 - round 7 aese v3.16b, v25.16b aesmc v3.16b, v3.16b // AES block 3 - round 7 trn2 v16.2d, v12.2d, v13.2d // h2l | h1l aese v1.16b, v26.16b aesmc v1.16b, v1.16b // AES block 1 - round 8 aese v2.16b, v26.16b aesmc v2.16b, v2.16b // AES block 2 - round 8 aese v3.16b, v26.16b aesmc v3.16b, v3.16b // AES block 3 - round 8 aese v0.16b, v26.16b aesmc v0.16b, v0.16b // AES block 0 - round 8 b.lt Lenc_finish_first_blocks // branch if AES-128 aese v1.16b, v27.16b aesmc v1.16b, v1.16b // AES block 1 - round 9 aese v2.16b, v27.16b aesmc v2.16b, v2.16b // AES block 2 - round 9 aese v3.16b, v27.16b aesmc v3.16b, v3.16b // AES block 3 - round 9 aese v0.16b, v27.16b aesmc v0.16b, v0.16b // AES block 0 - round 9 aese v1.16b, v28.16b aesmc v1.16b, v1.16b // AES block 1 - round 10 aese v2.16b, v28.16b aesmc v2.16b, v2.16b // AES block 2 - round 10 aese v3.16b, v28.16b aesmc v3.16b, v3.16b // AES block 3 - round 10 aese v0.16b, v28.16b aesmc v0.16b, v0.16b // AES block 0 - round 10 b.eq Lenc_finish_first_blocks // branch if AES-192 aese v1.16b, v29.16b aesmc v1.16b, v1.16b // AES block 1 - round 11 aese v2.16b, v29.16b aesmc v2.16b, v2.16b // AES block 2 - round 11 aese v0.16b, v29.16b aesmc v0.16b, v0.16b // AES block 0 - round 11 aese v3.16b, v29.16b aesmc v3.16b, v3.16b // AES block 3 - round 11 aese v1.16b, v30.16b aesmc v1.16b, v1.16b // AES block 1 - round 12 aese v2.16b, v30.16b aesmc v2.16b, v2.16b // AES block 2 - round 12 aese v0.16b, v30.16b aesmc v0.16b, v0.16b // AES block 0 - round 12 aese v3.16b, v30.16b aesmc v3.16b, v3.16b // AES block 3 - round 12 Lenc_finish_first_blocks: cmp x0, x5 // check if we have <= 4 blocks eor v17.16b, v17.16b, v9.16b // h4k | h3k aese v2.16b, v31.16b // AES block 2 - round N-1 trn1 v8.2d, v12.2d, v13.2d // h2h | h1h aese v1.16b, v31.16b // AES block 1 - round N-1 aese v0.16b, v31.16b // AES block 0 - round N-1 aese v3.16b, v31.16b // AES block 3 - round N-1 eor v16.16b, v16.16b, v8.16b // h2k | h1k b.ge Lenc_tail // handle tail ldp x19, x20, [x0, #16] // AES block 1 - load plaintext rev w9, w12 // CTR block 4 ldp x6, x7, [x0, #0] // AES block 0 - load plaintext ldp x23, x24, [x0, #48] // AES block 3 - load plaintext ldp x21, x22, [x0, #32] // AES block 2 - load plaintext add x0, x0, #64 // AES input_ptr update eor x19, x19, x13 // AES block 1 - round N low eor x20, x20, x14 // AES block 1 - round N high fmov d5, x19 // AES block 1 - mov low eor x6, x6, x13 // AES block 0 - round N low eor x7, x7, x14 // AES block 0 - round N high eor x24, x24, x14 // AES block 3 - round N high fmov d4, x6 // AES block 0 - mov low cmp x0, x5 // check if we have <= 8 blocks fmov v4.d[1], x7 // AES block 0 - mov high eor x23, x23, x13 // AES block 3 - round N low eor x21, x21, x13 // AES block 2 - round N low fmov v5.d[1], x20 // AES block 1 - mov high fmov d6, x21 // AES block 2 - mov low add w12, w12, #1 // CTR block 4 orr x9, x11, x9, lsl #32 // CTR block 4 fmov d7, x23 // AES block 3 - mov low eor x22, x22, x14 // AES block 2 - round N high fmov v6.d[1], x22 // AES block 2 - mov high eor v4.16b, v4.16b, v0.16b // AES block 0 - result fmov d0, x10 // CTR block 4 fmov v0.d[1], x9 // CTR block 4 rev w9, w12 // CTR block 5 add w12, w12, #1 // CTR block 5 eor v5.16b, v5.16b, v1.16b // AES block 1 - result fmov d1, x10 // CTR block 5 orr x9, x11, x9, lsl #32 // CTR block 5 fmov v1.d[1], x9 // CTR block 5 rev w9, w12 // CTR block 6 st1 { v4.16b}, [x2], #16 // AES block 0 - store result fmov v7.d[1], x24 // AES block 3 - mov high orr x9, x11, x9, lsl #32 // CTR block 6 eor v6.16b, v6.16b, v2.16b // AES block 2 - result st1 { v5.16b}, [x2], #16 // AES block 1 - store result add w12, w12, #1 // CTR block 6 fmov d2, x10 // CTR block 6 fmov v2.d[1], x9 // CTR block 6 st1 { v6.16b}, [x2], #16 // AES block 2 - store result rev w9, w12 // CTR block 7 orr x9, x11, x9, lsl #32 // CTR block 7 eor v7.16b, v7.16b, v3.16b // AES block 3 - result st1 { v7.16b}, [x2], #16 // AES block 3 - store result b.ge Lenc_prepretail // do prepretail Lenc_main_loop: // main loop start aese v0.16b, v18.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 0 rev64 v4.16b, v4.16b // GHASH block 4k (only t0 is free) aese v1.16b, v18.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 0 fmov d3, x10 // CTR block 4k+3 aese v2.16b, v18.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 0 ext v11.16b, v11.16b, v11.16b, #8 // PRE 0 aese v0.16b, v19.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 1 fmov v3.d[1], x9 // CTR block 4k+3 aese v1.16b, v19.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 1 ldp x23, x24, [x0, #48] // AES block 4k+7 - load plaintext aese v2.16b, v19.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 1 ldp x21, x22, [x0, #32] // AES block 4k+6 - load plaintext aese v0.16b, v20.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 2 eor v4.16b, v4.16b, v11.16b // PRE 1 aese v1.16b, v20.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 2 aese v3.16b, v18.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 0 eor x23, x23, x13 // AES block 4k+7 - round N low aese v0.16b, v21.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 3 mov d10, v17.d[1] // GHASH block 4k - mid pmull2 v9.1q, v4.2d, v15.2d // GHASH block 4k - high eor x22, x22, x14 // AES block 4k+6 - round N high mov d8, v4.d[1] // GHASH block 4k - mid aese v3.16b, v19.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 1 rev64 v5.16b, v5.16b // GHASH block 4k+1 (t0 and t1 free) aese v0.16b, v22.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 4 pmull v11.1q, v4.1d, v15.1d // GHASH block 4k - low eor v8.8b, v8.8b, v4.8b // GHASH block 4k - mid aese v2.16b, v20.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 2 aese v0.16b, v23.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 5 rev64 v7.16b, v7.16b // GHASH block 4k+3 (t0, t1, t2 and t3 free) pmull2 v4.1q, v5.2d, v14.2d // GHASH block 4k+1 - high pmull v10.1q, v8.1d, v10.1d // GHASH block 4k - mid rev64 v6.16b, v6.16b // GHASH block 4k+2 (t0, t1, and t2 free) pmull v8.1q, v5.1d, v14.1d // GHASH block 4k+1 - low eor v9.16b, v9.16b, v4.16b // GHASH block 4k+1 - high mov d4, v5.d[1] // GHASH block 4k+1 - mid aese v1.16b, v21.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 3 aese v3.16b, v20.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 2 eor v11.16b, v11.16b, v8.16b // GHASH block 4k+1 - low aese v2.16b, v21.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 3 aese v1.16b, v22.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 4 mov d8, v6.d[1] // GHASH block 4k+2 - mid aese v3.16b, v21.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 3 eor v4.8b, v4.8b, v5.8b // GHASH block 4k+1 - mid aese v2.16b, v22.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 4 aese v0.16b, v24.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 6 eor v8.8b, v8.8b, v6.8b // GHASH block 4k+2 - mid aese v3.16b, v22.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 4 pmull v4.1q, v4.1d, v17.1d // GHASH block 4k+1 - mid aese v0.16b, v25.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 7 aese v3.16b, v23.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 5 ins v8.d[1], v8.d[0] // GHASH block 4k+2 - mid aese v1.16b, v23.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 5 aese v0.16b, v26.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 8 aese v2.16b, v23.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 5 aese v1.16b, v24.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 6 eor v10.16b, v10.16b, v4.16b // GHASH block 4k+1 - mid pmull2 v4.1q, v6.2d, v13.2d // GHASH block 4k+2 - high pmull v5.1q, v6.1d, v13.1d // GHASH block 4k+2 - low aese v1.16b, v25.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 7 pmull v6.1q, v7.1d, v12.1d // GHASH block 4k+3 - low eor v9.16b, v9.16b, v4.16b // GHASH block 4k+2 - high aese v3.16b, v24.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 6 ldp x19, x20, [x0, #16] // AES block 4k+5 - load plaintext aese v1.16b, v26.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 8 mov d4, v7.d[1] // GHASH block 4k+3 - mid aese v2.16b, v24.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 6 eor v11.16b, v11.16b, v5.16b // GHASH block 4k+2 - low pmull2 v8.1q, v8.2d, v16.2d // GHASH block 4k+2 - mid pmull2 v5.1q, v7.2d, v12.2d // GHASH block 4k+3 - high eor v4.8b, v4.8b, v7.8b // GHASH block 4k+3 - mid aese v2.16b, v25.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 7 eor x19, x19, x13 // AES block 4k+5 - round N low aese v2.16b, v26.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 8 eor v10.16b, v10.16b, v8.16b // GHASH block 4k+2 - mid aese v3.16b, v25.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 7 eor x21, x21, x13 // AES block 4k+6 - round N low aese v3.16b, v26.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 8 movi v8.8b, #0xc2 pmull v4.1q, v4.1d, v16.1d // GHASH block 4k+3 - mid eor v9.16b, v9.16b, v5.16b // GHASH block 4k+3 - high cmp x17, #12 // setup flags for AES-128/192/256 check fmov d5, x19 // AES block 4k+5 - mov low ldp x6, x7, [x0, #0] // AES block 4k+4 - load plaintext b.lt Lenc_main_loop_continue // branch if AES-128 aese v1.16b, v27.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 9 aese v0.16b, v27.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 9 aese v2.16b, v27.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 9 aese v3.16b, v27.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 9 aese v0.16b, v28.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 10 aese v1.16b, v28.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 10 aese v2.16b, v28.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 10 aese v3.16b, v28.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 10 b.eq Lenc_main_loop_continue // branch if AES-192 aese v0.16b, v29.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 11 aese v1.16b, v29.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 11 aese v2.16b, v29.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 11 aese v3.16b, v29.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 11 aese v1.16b, v30.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 12 aese v0.16b, v30.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 12 aese v2.16b, v30.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 12 aese v3.16b, v30.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 12 Lenc_main_loop_continue: shl d8, d8, #56 // mod_constant eor v11.16b, v11.16b, v6.16b // GHASH block 4k+3 - low eor v10.16b, v10.16b, v4.16b // GHASH block 4k+3 - mid add w12, w12, #1 // CTR block 4k+3 eor v4.16b, v11.16b, v9.16b // MODULO - karatsuba tidy up add x0, x0, #64 // AES input_ptr update pmull v7.1q, v9.1d, v8.1d // MODULO - top 64b align with mid rev w9, w12 // CTR block 4k+8 ext v9.16b, v9.16b, v9.16b, #8 // MODULO - other top alignment eor x6, x6, x13 // AES block 4k+4 - round N low eor v10.16b, v10.16b, v4.16b // MODULO - karatsuba tidy up eor x7, x7, x14 // AES block 4k+4 - round N high fmov d4, x6 // AES block 4k+4 - mov low orr x9, x11, x9, lsl #32 // CTR block 4k+8 eor v7.16b, v9.16b, v7.16b // MODULO - fold into mid eor x20, x20, x14 // AES block 4k+5 - round N high eor x24, x24, x14 // AES block 4k+7 - round N high add w12, w12, #1 // CTR block 4k+8 aese v0.16b, v31.16b // AES block 4k+4 - round N-1 fmov v4.d[1], x7 // AES block 4k+4 - mov high eor v10.16b, v10.16b, v7.16b // MODULO - fold into mid fmov d7, x23 // AES block 4k+7 - mov low aese v1.16b, v31.16b // AES block 4k+5 - round N-1 fmov v5.d[1], x20 // AES block 4k+5 - mov high fmov d6, x21 // AES block 4k+6 - mov low cmp x0, x5 // LOOP CONTROL fmov v6.d[1], x22 // AES block 4k+6 - mov high pmull v9.1q, v10.1d, v8.1d // MODULO - mid 64b align with low eor v4.16b, v4.16b, v0.16b // AES block 4k+4 - result fmov d0, x10 // CTR block 4k+8 fmov v0.d[1], x9 // CTR block 4k+8 rev w9, w12 // CTR block 4k+9 add w12, w12, #1 // CTR block 4k+9 eor v5.16b, v5.16b, v1.16b // AES block 4k+5 - result fmov d1, x10 // CTR block 4k+9 orr x9, x11, x9, lsl #32 // CTR block 4k+9 fmov v1.d[1], x9 // CTR block 4k+9 aese v2.16b, v31.16b // AES block 4k+6 - round N-1 rev w9, w12 // CTR block 4k+10 st1 { v4.16b}, [x2], #16 // AES block 4k+4 - store result orr x9, x11, x9, lsl #32 // CTR block 4k+10 eor v11.16b, v11.16b, v9.16b // MODULO - fold into low fmov v7.d[1], x24 // AES block 4k+7 - mov high ext v10.16b, v10.16b, v10.16b, #8 // MODULO - other mid alignment st1 { v5.16b}, [x2], #16 // AES block 4k+5 - store result add w12, w12, #1 // CTR block 4k+10 aese v3.16b, v31.16b // AES block 4k+7 - round N-1 eor v6.16b, v6.16b, v2.16b // AES block 4k+6 - result fmov d2, x10 // CTR block 4k+10 st1 { v6.16b}, [x2], #16 // AES block 4k+6 - store result fmov v2.d[1], x9 // CTR block 4k+10 rev w9, w12 // CTR block 4k+11 eor v11.16b, v11.16b, v10.16b // MODULO - fold into low orr x9, x11, x9, lsl #32 // CTR block 4k+11 eor v7.16b, v7.16b, v3.16b // AES block 4k+7 - result st1 { v7.16b}, [x2], #16 // AES block 4k+7 - store result b.lt Lenc_main_loop Lenc_prepretail: // PREPRETAIL aese v1.16b, v18.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 0 rev64 v6.16b, v6.16b // GHASH block 4k+2 (t0, t1, and t2 free) aese v2.16b, v18.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 0 fmov d3, x10 // CTR block 4k+3 aese v0.16b, v18.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 0 rev64 v4.16b, v4.16b // GHASH block 4k (only t0 is free) fmov v3.d[1], x9 // CTR block 4k+3 ext v11.16b, v11.16b, v11.16b, #8 // PRE 0 aese v2.16b, v19.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 1 aese v0.16b, v19.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 1 eor v4.16b, v4.16b, v11.16b // PRE 1 rev64 v5.16b, v5.16b // GHASH block 4k+1 (t0 and t1 free) aese v2.16b, v20.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 2 aese v3.16b, v18.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 0 mov d10, v17.d[1] // GHASH block 4k - mid aese v1.16b, v19.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 1 pmull v11.1q, v4.1d, v15.1d // GHASH block 4k - low mov d8, v4.d[1] // GHASH block 4k - mid pmull2 v9.1q, v4.2d, v15.2d // GHASH block 4k - high aese v2.16b, v21.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 3 aese v1.16b, v20.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 2 eor v8.8b, v8.8b, v4.8b // GHASH block 4k - mid aese v0.16b, v20.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 2 aese v3.16b, v19.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 1 aese v1.16b, v21.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 3 pmull v10.1q, v8.1d, v10.1d // GHASH block 4k - mid pmull2 v4.1q, v5.2d, v14.2d // GHASH block 4k+1 - high pmull v8.1q, v5.1d, v14.1d // GHASH block 4k+1 - low aese v3.16b, v20.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 2 eor v9.16b, v9.16b, v4.16b // GHASH block 4k+1 - high mov d4, v5.d[1] // GHASH block 4k+1 - mid aese v0.16b, v21.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 3 eor v11.16b, v11.16b, v8.16b // GHASH block 4k+1 - low aese v3.16b, v21.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 3 eor v4.8b, v4.8b, v5.8b // GHASH block 4k+1 - mid mov d8, v6.d[1] // GHASH block 4k+2 - mid aese v0.16b, v22.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 4 rev64 v7.16b, v7.16b // GHASH block 4k+3 (t0, t1, t2 and t3 free) aese v3.16b, v22.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 4 pmull v4.1q, v4.1d, v17.1d // GHASH block 4k+1 - mid eor v8.8b, v8.8b, v6.8b // GHASH block 4k+2 - mid add w12, w12, #1 // CTR block 4k+3 pmull v5.1q, v6.1d, v13.1d // GHASH block 4k+2 - low aese v3.16b, v23.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 5 aese v2.16b, v22.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 4 eor v10.16b, v10.16b, v4.16b // GHASH block 4k+1 - mid pmull2 v4.1q, v6.2d, v13.2d // GHASH block 4k+2 - high eor v11.16b, v11.16b, v5.16b // GHASH block 4k+2 - low ins v8.d[1], v8.d[0] // GHASH block 4k+2 - mid aese v2.16b, v23.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 5 eor v9.16b, v9.16b, v4.16b // GHASH block 4k+2 - high mov d4, v7.d[1] // GHASH block 4k+3 - mid aese v1.16b, v22.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 4 pmull2 v8.1q, v8.2d, v16.2d // GHASH block 4k+2 - mid eor v4.8b, v4.8b, v7.8b // GHASH block 4k+3 - mid pmull2 v5.1q, v7.2d, v12.2d // GHASH block 4k+3 - high aese v1.16b, v23.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 5 pmull v4.1q, v4.1d, v16.1d // GHASH block 4k+3 - mid eor v10.16b, v10.16b, v8.16b // GHASH block 4k+2 - mid aese v0.16b, v23.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 5 aese v1.16b, v24.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 6 aese v2.16b, v24.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 6 aese v0.16b, v24.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 6 movi v8.8b, #0xc2 aese v3.16b, v24.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 6 aese v1.16b, v25.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 7 eor v9.16b, v9.16b, v5.16b // GHASH block 4k+3 - high aese v0.16b, v25.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 7 aese v3.16b, v25.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 7 shl d8, d8, #56 // mod_constant aese v1.16b, v26.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 8 eor v10.16b, v10.16b, v4.16b // GHASH block 4k+3 - mid pmull v6.1q, v7.1d, v12.1d // GHASH block 4k+3 - low aese v3.16b, v26.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 8 cmp x17, #12 // setup flags for AES-128/192/256 check aese v0.16b, v26.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 8 eor v11.16b, v11.16b, v6.16b // GHASH block 4k+3 - low aese v2.16b, v25.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 7 eor v10.16b, v10.16b, v9.16b // karatsuba tidy up aese v2.16b, v26.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 8 pmull v4.1q, v9.1d, v8.1d ext v9.16b, v9.16b, v9.16b, #8 eor v10.16b, v10.16b, v11.16b b.lt Lenc_finish_prepretail // branch if AES-128 aese v1.16b, v27.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 9 aese v3.16b, v27.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 9 aese v0.16b, v27.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 9 aese v2.16b, v27.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 9 aese v3.16b, v28.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 10 aese v1.16b, v28.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 10 aese v0.16b, v28.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 10 aese v2.16b, v28.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 10 b.eq Lenc_finish_prepretail // branch if AES-192 aese v1.16b, v29.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 11 aese v0.16b, v29.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 11 aese v3.16b, v29.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 11 aese v2.16b, v29.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 11 aese v1.16b, v30.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 12 aese v0.16b, v30.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 12 aese v3.16b, v30.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 12 aese v2.16b, v30.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 12 Lenc_finish_prepretail: eor v10.16b, v10.16b, v4.16b eor v10.16b, v10.16b, v9.16b pmull v4.1q, v10.1d, v8.1d ext v10.16b, v10.16b, v10.16b, #8 aese v1.16b, v31.16b // AES block 4k+5 - round N-1 eor v11.16b, v11.16b, v4.16b aese v3.16b, v31.16b // AES block 4k+7 - round N-1 aese v0.16b, v31.16b // AES block 4k+4 - round N-1 aese v2.16b, v31.16b // AES block 4k+6 - round N-1 eor v11.16b, v11.16b, v10.16b Lenc_tail: // TAIL ext v8.16b, v11.16b, v11.16b, #8 // prepare final partial tag sub x5, x4, x0 // main_end_input_ptr is number of bytes left to process ldp x6, x7, [x0], #16 // AES block 4k+4 - load plaintext eor x6, x6, x13 // AES block 4k+4 - round N low eor x7, x7, x14 // AES block 4k+4 - round N high cmp x5, #48 fmov d4, x6 // AES block 4k+4 - mov low fmov v4.d[1], x7 // AES block 4k+4 - mov high eor v5.16b, v4.16b, v0.16b // AES block 4k+4 - result b.gt Lenc_blocks_more_than_3 cmp x5, #32 mov v3.16b, v2.16b movi v11.8b, #0 movi v9.8b, #0 sub w12, w12, #1 mov v2.16b, v1.16b movi v10.8b, #0 b.gt Lenc_blocks_more_than_2 mov v3.16b, v1.16b sub w12, w12, #1 cmp x5, #16 b.gt Lenc_blocks_more_than_1 sub w12, w12, #1 b Lenc_blocks_less_than_1 Lenc_blocks_more_than_3: // blocks left > 3 st1 { v5.16b}, [x2], #16 // AES final-3 block - store result ldp x6, x7, [x0], #16 // AES final-2 block - load input low & high rev64 v4.16b, v5.16b // GHASH final-3 block eor x6, x6, x13 // AES final-2 block - round N low eor v4.16b, v4.16b, v8.16b // feed in partial tag eor x7, x7, x14 // AES final-2 block - round N high mov d22, v4.d[1] // GHASH final-3 block - mid fmov d5, x6 // AES final-2 block - mov low fmov v5.d[1], x7 // AES final-2 block - mov high eor v22.8b, v22.8b, v4.8b // GHASH final-3 block - mid movi v8.8b, #0 // suppress further partial tag feed in mov d10, v17.d[1] // GHASH final-3 block - mid pmull v11.1q, v4.1d, v15.1d // GHASH final-3 block - low pmull2 v9.1q, v4.2d, v15.2d // GHASH final-3 block - high pmull v10.1q, v22.1d, v10.1d // GHASH final-3 block - mid eor v5.16b, v5.16b, v1.16b // AES final-2 block - result Lenc_blocks_more_than_2: // blocks left > 2 st1 { v5.16b}, [x2], #16 // AES final-2 block - store result ldp x6, x7, [x0], #16 // AES final-1 block - load input low & high rev64 v4.16b, v5.16b // GHASH final-2 block eor x6, x6, x13 // AES final-1 block - round N low eor v4.16b, v4.16b, v8.16b // feed in partial tag fmov d5, x6 // AES final-1 block - mov low eor x7, x7, x14 // AES final-1 block - round N high fmov v5.d[1], x7 // AES final-1 block - mov high movi v8.8b, #0 // suppress further partial tag feed in pmull2 v20.1q, v4.2d, v14.2d // GHASH final-2 block - high mov d22, v4.d[1] // GHASH final-2 block - mid pmull v21.1q, v4.1d, v14.1d // GHASH final-2 block - low eor v22.8b, v22.8b, v4.8b // GHASH final-2 block - mid eor v5.16b, v5.16b, v2.16b // AES final-1 block - result eor v9.16b, v9.16b, v20.16b // GHASH final-2 block - high pmull v22.1q, v22.1d, v17.1d // GHASH final-2 block - mid eor v11.16b, v11.16b, v21.16b // GHASH final-2 block - low eor v10.16b, v10.16b, v22.16b // GHASH final-2 block - mid Lenc_blocks_more_than_1: // blocks left > 1 st1 { v5.16b}, [x2], #16 // AES final-1 block - store result rev64 v4.16b, v5.16b // GHASH final-1 block ldp x6, x7, [x0], #16 // AES final block - load input low & high eor v4.16b, v4.16b, v8.16b // feed in partial tag movi v8.8b, #0 // suppress further partial tag feed in eor x6, x6, x13 // AES final block - round N low mov d22, v4.d[1] // GHASH final-1 block - mid pmull2 v20.1q, v4.2d, v13.2d // GHASH final-1 block - high eor x7, x7, x14 // AES final block - round N high eor v22.8b, v22.8b, v4.8b // GHASH final-1 block - mid eor v9.16b, v9.16b, v20.16b // GHASH final-1 block - high ins v22.d[1], v22.d[0] // GHASH final-1 block - mid fmov d5, x6 // AES final block - mov low fmov v5.d[1], x7 // AES final block - mov high pmull2 v22.1q, v22.2d, v16.2d // GHASH final-1 block - mid pmull v21.1q, v4.1d, v13.1d // GHASH final-1 block - low eor v5.16b, v5.16b, v3.16b // AES final block - result eor v10.16b, v10.16b, v22.16b // GHASH final-1 block - mid eor v11.16b, v11.16b, v21.16b // GHASH final-1 block - low Lenc_blocks_less_than_1: // blocks left <= 1 and x1, x1, #127 // bit_length %= 128 mvn x13, xzr // rkN_l = 0xffffffffffffffff sub x1, x1, #128 // bit_length -= 128 neg x1, x1 // bit_length = 128 - #bits in input (in range [1,128]) ld1 { v18.16b}, [x2] // load existing bytes where the possibly partial last block is to be stored mvn x14, xzr // rkN_h = 0xffffffffffffffff and x1, x1, #127 // bit_length %= 128 lsr x14, x14, x1 // rkN_h is mask for top 64b of last block cmp x1, #64 csel x6, x13, x14, lt csel x7, x14, xzr, lt fmov d0, x6 // ctr0b is mask for last block fmov v0.d[1], x7 and v5.16b, v5.16b, v0.16b // possibly partial last block has zeroes in highest bits rev64 v4.16b, v5.16b // GHASH final block eor v4.16b, v4.16b, v8.16b // feed in partial tag bif v5.16b, v18.16b, v0.16b // insert existing bytes in top end of result before storing pmull2 v20.1q, v4.2d, v12.2d // GHASH final block - high mov d8, v4.d[1] // GHASH final block - mid rev w9, w12 pmull v21.1q, v4.1d, v12.1d // GHASH final block - low eor v9.16b, v9.16b, v20.16b // GHASH final block - high eor v8.8b, v8.8b, v4.8b // GHASH final block - mid pmull v8.1q, v8.1d, v16.1d // GHASH final block - mid eor v11.16b, v11.16b, v21.16b // GHASH final block - low eor v10.16b, v10.16b, v8.16b // GHASH final block - mid movi v8.8b, #0xc2 eor v4.16b, v11.16b, v9.16b // MODULO - karatsuba tidy up shl d8, d8, #56 // mod_constant eor v10.16b, v10.16b, v4.16b // MODULO - karatsuba tidy up pmull v7.1q, v9.1d, v8.1d // MODULO - top 64b align with mid ext v9.16b, v9.16b, v9.16b, #8 // MODULO - other top alignment eor v10.16b, v10.16b, v7.16b // MODULO - fold into mid eor v10.16b, v10.16b, v9.16b // MODULO - fold into mid pmull v9.1q, v10.1d, v8.1d // MODULO - mid 64b align with low ext v10.16b, v10.16b, v10.16b, #8 // MODULO - other mid alignment str w9, [x16, #12] // store the updated counter st1 { v5.16b}, [x2] // store all 16B eor v11.16b, v11.16b, v9.16b // MODULO - fold into low eor v11.16b, v11.16b, v10.16b // MODULO - fold into low ext v11.16b, v11.16b, v11.16b, #8 rev64 v11.16b, v11.16b mov x0, x15 st1 { v11.16b }, [x3] ldp x19, x20, [sp, #16] ldp x21, x22, [sp, #32] ldp x23, x24, [sp, #48] ldp d8, d9, [sp, #64] ldp d10, d11, [sp, #80] ldp d12, d13, [sp, #96] ldp d14, d15, [sp, #112] ldp x29, x30, [sp], #128 AARCH64_VALIDATE_LINK_REGISTER ret .globl _aes_gcm_dec_kernel .private_extern _aes_gcm_dec_kernel .align 4 _aes_gcm_dec_kernel: AARCH64_SIGN_LINK_REGISTER stp x29, x30, [sp, #-128]! mov x29, sp stp x19, x20, [sp, #16] mov x16, x4 mov x8, x5 stp x21, x22, [sp, #32] stp x23, x24, [sp, #48] stp d8, d9, [sp, #64] stp d10, d11, [sp, #80] stp d12, d13, [sp, #96] stp d14, d15, [sp, #112] ldr w17, [x8, #240] add x19, x8, x17, lsl #4 // borrow input_l1 for last key ldp x13, x14, [x19] // load round N keys ldr q31, [x19, #-16] // load round N-1 keys lsr x5, x1, #3 // byte_len mov x15, x5 ldp x10, x11, [x16] // ctr96_b64, ctr96_t32 ldr q26, [x8, #128] // load rk8 sub x5, x5, #1 // byte_len - 1 ldr q25, [x8, #112] // load rk7 and x5, x5, #0xffffffffffffffc0 // number of bytes to be processed in main loop (at least 1 byte must be handled by tail) add x4, x0, x1, lsr #3 // end_input_ptr ldr q24, [x8, #96] // load rk6 lsr x12, x11, #32 ldr q23, [x8, #80] // load rk5 orr w11, w11, w11 ldr q21, [x8, #48] // load rk3 add x5, x5, x0 rev w12, w12 // rev_ctr32 add w12, w12, #1 // increment rev_ctr32 fmov d3, x10 // CTR block 3 rev w9, w12 // CTR block 1 add w12, w12, #1 // CTR block 1 fmov d1, x10 // CTR block 1 orr x9, x11, x9, lsl #32 // CTR block 1 ld1 { v0.16b}, [x16] // special case vector load initial counter so we can start first AES block as quickly as possible fmov v1.d[1], x9 // CTR block 1 rev w9, w12 // CTR block 2 add w12, w12, #1 // CTR block 2 fmov d2, x10 // CTR block 2 orr x9, x11, x9, lsl #32 // CTR block 2 fmov v2.d[1], x9 // CTR block 2 rev w9, w12 // CTR block 3 orr x9, x11, x9, lsl #32 // CTR block 3 ldr q18, [x8, #0] // load rk0 fmov v3.d[1], x9 // CTR block 3 add w12, w12, #1 // CTR block 3 ldr q22, [x8, #64] // load rk4 ldr q19, [x8, #16] // load rk1 aese v0.16b, v18.16b aesmc v0.16b, v0.16b // AES block 0 - round 0 ldr q14, [x6, #48] // load h3l | h3h ext v14.16b, v14.16b, v14.16b, #8 aese v3.16b, v18.16b aesmc v3.16b, v3.16b // AES block 3 - round 0 ldr q15, [x6, #80] // load h4l | h4h ext v15.16b, v15.16b, v15.16b, #8 aese v1.16b, v18.16b aesmc v1.16b, v1.16b // AES block 1 - round 0 ldr q13, [x6, #32] // load h2l | h2h ext v13.16b, v13.16b, v13.16b, #8 aese v2.16b, v18.16b aesmc v2.16b, v2.16b // AES block 2 - round 0 ldr q20, [x8, #32] // load rk2 aese v0.16b, v19.16b aesmc v0.16b, v0.16b // AES block 0 - round 1 aese v1.16b, v19.16b aesmc v1.16b, v1.16b // AES block 1 - round 1 ld1 { v11.16b}, [x3] ext v11.16b, v11.16b, v11.16b, #8 rev64 v11.16b, v11.16b aese v2.16b, v19.16b aesmc v2.16b, v2.16b // AES block 2 - round 1 ldr q27, [x8, #144] // load rk9 aese v3.16b, v19.16b aesmc v3.16b, v3.16b // AES block 3 - round 1 ldr q30, [x8, #192] // load rk12 aese v0.16b, v20.16b aesmc v0.16b, v0.16b // AES block 0 - round 2 ldr q12, [x6] // load h1l | h1h ext v12.16b, v12.16b, v12.16b, #8 aese v2.16b, v20.16b aesmc v2.16b, v2.16b // AES block 2 - round 2 ldr q28, [x8, #160] // load rk10 aese v3.16b, v20.16b aesmc v3.16b, v3.16b // AES block 3 - round 2 aese v0.16b, v21.16b aesmc v0.16b, v0.16b // AES block 0 - round 3 aese v1.16b, v20.16b aesmc v1.16b, v1.16b // AES block 1 - round 2 aese v3.16b, v21.16b aesmc v3.16b, v3.16b // AES block 3 - round 3 aese v0.16b, v22.16b aesmc v0.16b, v0.16b // AES block 0 - round 4 aese v2.16b, v21.16b aesmc v2.16b, v2.16b // AES block 2 - round 3 aese v1.16b, v21.16b aesmc v1.16b, v1.16b // AES block 1 - round 3 aese v3.16b, v22.16b aesmc v3.16b, v3.16b // AES block 3 - round 4 aese v2.16b, v22.16b aesmc v2.16b, v2.16b // AES block 2 - round 4 aese v1.16b, v22.16b aesmc v1.16b, v1.16b // AES block 1 - round 4 aese v3.16b, v23.16b aesmc v3.16b, v3.16b // AES block 3 - round 5 aese v0.16b, v23.16b aesmc v0.16b, v0.16b // AES block 0 - round 5 aese v1.16b, v23.16b aesmc v1.16b, v1.16b // AES block 1 - round 5 aese v2.16b, v23.16b aesmc v2.16b, v2.16b // AES block 2 - round 5 aese v0.16b, v24.16b aesmc v0.16b, v0.16b // AES block 0 - round 6 aese v3.16b, v24.16b aesmc v3.16b, v3.16b // AES block 3 - round 6 cmp x17, #12 // setup flags for AES-128/192/256 check aese v1.16b, v24.16b aesmc v1.16b, v1.16b // AES block 1 - round 6 aese v2.16b, v24.16b aesmc v2.16b, v2.16b // AES block 2 - round 6 aese v0.16b, v25.16b aesmc v0.16b, v0.16b // AES block 0 - round 7 aese v1.16b, v25.16b aesmc v1.16b, v1.16b // AES block 1 - round 7 aese v3.16b, v25.16b aesmc v3.16b, v3.16b // AES block 3 - round 7 aese v0.16b, v26.16b aesmc v0.16b, v0.16b // AES block 0 - round 8 aese v2.16b, v25.16b aesmc v2.16b, v2.16b // AES block 2 - round 7 aese v3.16b, v26.16b aesmc v3.16b, v3.16b // AES block 3 - round 8 aese v1.16b, v26.16b aesmc v1.16b, v1.16b // AES block 1 - round 8 ldr q29, [x8, #176] // load rk11 aese v2.16b, v26.16b aesmc v2.16b, v2.16b // AES block 2 - round 8 b.lt Ldec_finish_first_blocks // branch if AES-128 aese v0.16b, v27.16b aesmc v0.16b, v0.16b // AES block 0 - round 9 aese v1.16b, v27.16b aesmc v1.16b, v1.16b // AES block 1 - round 9 aese v3.16b, v27.16b aesmc v3.16b, v3.16b // AES block 3 - round 9 aese v2.16b, v27.16b aesmc v2.16b, v2.16b // AES block 2 - round 9 aese v0.16b, v28.16b aesmc v0.16b, v0.16b // AES block 0 - round 10 aese v1.16b, v28.16b aesmc v1.16b, v1.16b // AES block 1 - round 10 aese v3.16b, v28.16b aesmc v3.16b, v3.16b // AES block 3 - round 10 aese v2.16b, v28.16b aesmc v2.16b, v2.16b // AES block 2 - round 10 b.eq Ldec_finish_first_blocks // branch if AES-192 aese v0.16b, v29.16b aesmc v0.16b, v0.16b // AES block 0 - round 11 aese v3.16b, v29.16b aesmc v3.16b, v3.16b // AES block 3 - round 11 aese v1.16b, v29.16b aesmc v1.16b, v1.16b // AES block 1 - round 11 aese v2.16b, v29.16b aesmc v2.16b, v2.16b // AES block 2 - round 11 aese v1.16b, v30.16b aesmc v1.16b, v1.16b // AES block 1 - round 12 aese v0.16b, v30.16b aesmc v0.16b, v0.16b // AES block 0 - round 12 aese v2.16b, v30.16b aesmc v2.16b, v2.16b // AES block 2 - round 12 aese v3.16b, v30.16b aesmc v3.16b, v3.16b // AES block 3 - round 12 Ldec_finish_first_blocks: cmp x0, x5 // check if we have <= 4 blocks trn1 v9.2d, v14.2d, v15.2d // h4h | h3h trn2 v17.2d, v14.2d, v15.2d // h4l | h3l trn1 v8.2d, v12.2d, v13.2d // h2h | h1h trn2 v16.2d, v12.2d, v13.2d // h2l | h1l eor v17.16b, v17.16b, v9.16b // h4k | h3k aese v1.16b, v31.16b // AES block 1 - round N-1 aese v2.16b, v31.16b // AES block 2 - round N-1 eor v16.16b, v16.16b, v8.16b // h2k | h1k aese v3.16b, v31.16b // AES block 3 - round N-1 aese v0.16b, v31.16b // AES block 0 - round N-1 b.ge Ldec_tail // handle tail ldr q4, [x0, #0] // AES block 0 - load ciphertext ldr q5, [x0, #16] // AES block 1 - load ciphertext rev w9, w12 // CTR block 4 eor v0.16b, v4.16b, v0.16b // AES block 0 - result eor v1.16b, v5.16b, v1.16b // AES block 1 - result rev64 v5.16b, v5.16b // GHASH block 1 ldr q7, [x0, #48] // AES block 3 - load ciphertext mov x7, v0.d[1] // AES block 0 - mov high mov x6, v0.d[0] // AES block 0 - mov low rev64 v4.16b, v4.16b // GHASH block 0 add w12, w12, #1 // CTR block 4 fmov d0, x10 // CTR block 4 orr x9, x11, x9, lsl #32 // CTR block 4 fmov v0.d[1], x9 // CTR block 4 rev w9, w12 // CTR block 5 add w12, w12, #1 // CTR block 5 mov x19, v1.d[0] // AES block 1 - mov low orr x9, x11, x9, lsl #32 // CTR block 5 mov x20, v1.d[1] // AES block 1 - mov high eor x7, x7, x14 // AES block 0 - round N high eor x6, x6, x13 // AES block 0 - round N low stp x6, x7, [x2], #16 // AES block 0 - store result fmov d1, x10 // CTR block 5 ldr q6, [x0, #32] // AES block 2 - load ciphertext add x0, x0, #64 // AES input_ptr update fmov v1.d[1], x9 // CTR block 5 rev w9, w12 // CTR block 6 add w12, w12, #1 // CTR block 6 eor x19, x19, x13 // AES block 1 - round N low orr x9, x11, x9, lsl #32 // CTR block 6 eor x20, x20, x14 // AES block 1 - round N high stp x19, x20, [x2], #16 // AES block 1 - store result eor v2.16b, v6.16b, v2.16b // AES block 2 - result cmp x0, x5 // check if we have <= 8 blocks b.ge Ldec_prepretail // do prepretail Ldec_main_loop: // main loop start mov x21, v2.d[0] // AES block 4k+2 - mov low ext v11.16b, v11.16b, v11.16b, #8 // PRE 0 eor v3.16b, v7.16b, v3.16b // AES block 4k+3 - result aese v0.16b, v18.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 0 mov x22, v2.d[1] // AES block 4k+2 - mov high aese v1.16b, v18.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 0 fmov d2, x10 // CTR block 4k+6 fmov v2.d[1], x9 // CTR block 4k+6 eor v4.16b, v4.16b, v11.16b // PRE 1 rev w9, w12 // CTR block 4k+7 aese v0.16b, v19.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 1 mov x24, v3.d[1] // AES block 4k+3 - mov high aese v1.16b, v19.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 1 mov x23, v3.d[0] // AES block 4k+3 - mov low pmull2 v9.1q, v4.2d, v15.2d // GHASH block 4k - high mov d8, v4.d[1] // GHASH block 4k - mid fmov d3, x10 // CTR block 4k+7 aese v0.16b, v20.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 2 orr x9, x11, x9, lsl #32 // CTR block 4k+7 aese v2.16b, v18.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 0 fmov v3.d[1], x9 // CTR block 4k+7 aese v1.16b, v20.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 2 eor v8.8b, v8.8b, v4.8b // GHASH block 4k - mid aese v0.16b, v21.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 3 eor x22, x22, x14 // AES block 4k+2 - round N high aese v2.16b, v19.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 1 mov d10, v17.d[1] // GHASH block 4k - mid aese v1.16b, v21.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 3 rev64 v6.16b, v6.16b // GHASH block 4k+2 aese v3.16b, v18.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 0 eor x21, x21, x13 // AES block 4k+2 - round N low aese v2.16b, v20.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 2 stp x21, x22, [x2], #16 // AES block 4k+2 - store result pmull v11.1q, v4.1d, v15.1d // GHASH block 4k - low pmull2 v4.1q, v5.2d, v14.2d // GHASH block 4k+1 - high aese v2.16b, v21.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 3 rev64 v7.16b, v7.16b // GHASH block 4k+3 pmull v10.1q, v8.1d, v10.1d // GHASH block 4k - mid eor x23, x23, x13 // AES block 4k+3 - round N low pmull v8.1q, v5.1d, v14.1d // GHASH block 4k+1 - low eor x24, x24, x14 // AES block 4k+3 - round N high eor v9.16b, v9.16b, v4.16b // GHASH block 4k+1 - high aese v2.16b, v22.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 4 aese v3.16b, v19.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 1 mov d4, v5.d[1] // GHASH block 4k+1 - mid aese v0.16b, v22.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 4 eor v11.16b, v11.16b, v8.16b // GHASH block 4k+1 - low aese v2.16b, v23.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 5 add w12, w12, #1 // CTR block 4k+7 aese v3.16b, v20.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 2 mov d8, v6.d[1] // GHASH block 4k+2 - mid aese v1.16b, v22.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 4 eor v4.8b, v4.8b, v5.8b // GHASH block 4k+1 - mid pmull v5.1q, v6.1d, v13.1d // GHASH block 4k+2 - low aese v3.16b, v21.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 3 eor v8.8b, v8.8b, v6.8b // GHASH block 4k+2 - mid aese v1.16b, v23.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 5 aese v0.16b, v23.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 5 eor v11.16b, v11.16b, v5.16b // GHASH block 4k+2 - low pmull v4.1q, v4.1d, v17.1d // GHASH block 4k+1 - mid rev w9, w12 // CTR block 4k+8 aese v1.16b, v24.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 6 ins v8.d[1], v8.d[0] // GHASH block 4k+2 - mid aese v0.16b, v24.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 6 add w12, w12, #1 // CTR block 4k+8 aese v3.16b, v22.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 4 aese v1.16b, v25.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 7 eor v10.16b, v10.16b, v4.16b // GHASH block 4k+1 - mid aese v0.16b, v25.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 7 pmull2 v4.1q, v6.2d, v13.2d // GHASH block 4k+2 - high mov d6, v7.d[1] // GHASH block 4k+3 - mid aese v3.16b, v23.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 5 pmull2 v8.1q, v8.2d, v16.2d // GHASH block 4k+2 - mid aese v0.16b, v26.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 8 eor v9.16b, v9.16b, v4.16b // GHASH block 4k+2 - high aese v3.16b, v24.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 6 pmull v4.1q, v7.1d, v12.1d // GHASH block 4k+3 - low orr x9, x11, x9, lsl #32 // CTR block 4k+8 eor v10.16b, v10.16b, v8.16b // GHASH block 4k+2 - mid pmull2 v5.1q, v7.2d, v12.2d // GHASH block 4k+3 - high cmp x17, #12 // setup flags for AES-128/192/256 check eor v6.8b, v6.8b, v7.8b // GHASH block 4k+3 - mid aese v1.16b, v26.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 8 aese v2.16b, v24.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 6 eor v9.16b, v9.16b, v5.16b // GHASH block 4k+3 - high pmull v6.1q, v6.1d, v16.1d // GHASH block 4k+3 - mid movi v8.8b, #0xc2 aese v2.16b, v25.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 7 eor v11.16b, v11.16b, v4.16b // GHASH block 4k+3 - low aese v3.16b, v25.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 7 shl d8, d8, #56 // mod_constant aese v2.16b, v26.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 8 eor v10.16b, v10.16b, v6.16b // GHASH block 4k+3 - mid aese v3.16b, v26.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 8 b.lt Ldec_main_loop_continue // branch if AES-128 aese v0.16b, v27.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 9 aese v2.16b, v27.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 9 aese v1.16b, v27.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 9 aese v3.16b, v27.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 9 aese v0.16b, v28.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 10 aese v1.16b, v28.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 10 aese v2.16b, v28.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 10 aese v3.16b, v28.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 10 b.eq Ldec_main_loop_continue // branch if AES-192 aese v0.16b, v29.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 11 aese v1.16b, v29.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 11 aese v2.16b, v29.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 11 aese v3.16b, v29.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 11 aese v0.16b, v30.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 12 aese v1.16b, v30.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 12 aese v2.16b, v30.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 12 aese v3.16b, v30.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 12 Ldec_main_loop_continue: pmull v7.1q, v9.1d, v8.1d // MODULO - top 64b align with mid eor v6.16b, v11.16b, v9.16b // MODULO - karatsuba tidy up ldr q4, [x0, #0] // AES block 4k+4 - load ciphertext aese v0.16b, v31.16b // AES block 4k+4 - round N-1 ext v9.16b, v9.16b, v9.16b, #8 // MODULO - other top alignment eor v10.16b, v10.16b, v6.16b // MODULO - karatsuba tidy up ldr q5, [x0, #16] // AES block 4k+5 - load ciphertext eor v0.16b, v4.16b, v0.16b // AES block 4k+4 - result stp x23, x24, [x2], #16 // AES block 4k+3 - store result eor v10.16b, v10.16b, v7.16b // MODULO - fold into mid ldr q7, [x0, #48] // AES block 4k+7 - load ciphertext ldr q6, [x0, #32] // AES block 4k+6 - load ciphertext mov x7, v0.d[1] // AES block 4k+4 - mov high eor v10.16b, v10.16b, v9.16b // MODULO - fold into mid aese v1.16b, v31.16b // AES block 4k+5 - round N-1 add x0, x0, #64 // AES input_ptr update mov x6, v0.d[0] // AES block 4k+4 - mov low fmov d0, x10 // CTR block 4k+8 fmov v0.d[1], x9 // CTR block 4k+8 pmull v8.1q, v10.1d, v8.1d // MODULO - mid 64b align with low eor v1.16b, v5.16b, v1.16b // AES block 4k+5 - result rev w9, w12 // CTR block 4k+9 aese v2.16b, v31.16b // AES block 4k+6 - round N-1 orr x9, x11, x9, lsl #32 // CTR block 4k+9 cmp x0, x5 // LOOP CONTROL add w12, w12, #1 // CTR block 4k+9 eor x6, x6, x13 // AES block 4k+4 - round N low eor x7, x7, x14 // AES block 4k+4 - round N high mov x20, v1.d[1] // AES block 4k+5 - mov high eor v2.16b, v6.16b, v2.16b // AES block 4k+6 - result eor v11.16b, v11.16b, v8.16b // MODULO - fold into low mov x19, v1.d[0] // AES block 4k+5 - mov low fmov d1, x10 // CTR block 4k+9 ext v10.16b, v10.16b, v10.16b, #8 // MODULO - other mid alignment fmov v1.d[1], x9 // CTR block 4k+9 rev w9, w12 // CTR block 4k+10 add w12, w12, #1 // CTR block 4k+10 aese v3.16b, v31.16b // AES block 4k+7 - round N-1 orr x9, x11, x9, lsl #32 // CTR block 4k+10 rev64 v5.16b, v5.16b // GHASH block 4k+5 eor x20, x20, x14 // AES block 4k+5 - round N high stp x6, x7, [x2], #16 // AES block 4k+4 - store result eor x19, x19, x13 // AES block 4k+5 - round N low stp x19, x20, [x2], #16 // AES block 4k+5 - store result rev64 v4.16b, v4.16b // GHASH block 4k+4 eor v11.16b, v11.16b, v10.16b // MODULO - fold into low b.lt Ldec_main_loop Ldec_prepretail: // PREPRETAIL ext v11.16b, v11.16b, v11.16b, #8 // PRE 0 mov x21, v2.d[0] // AES block 4k+2 - mov low eor v3.16b, v7.16b, v3.16b // AES block 4k+3 - result aese v0.16b, v18.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 0 mov x22, v2.d[1] // AES block 4k+2 - mov high aese v1.16b, v18.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 0 fmov d2, x10 // CTR block 4k+6 fmov v2.d[1], x9 // CTR block 4k+6 rev w9, w12 // CTR block 4k+7 eor v4.16b, v4.16b, v11.16b // PRE 1 rev64 v6.16b, v6.16b // GHASH block 4k+2 orr x9, x11, x9, lsl #32 // CTR block 4k+7 mov x23, v3.d[0] // AES block 4k+3 - mov low aese v1.16b, v19.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 1 mov x24, v3.d[1] // AES block 4k+3 - mov high pmull v11.1q, v4.1d, v15.1d // GHASH block 4k - low mov d8, v4.d[1] // GHASH block 4k - mid fmov d3, x10 // CTR block 4k+7 pmull2 v9.1q, v4.2d, v15.2d // GHASH block 4k - high fmov v3.d[1], x9 // CTR block 4k+7 aese v2.16b, v18.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 0 mov d10, v17.d[1] // GHASH block 4k - mid aese v0.16b, v19.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 1 eor v8.8b, v8.8b, v4.8b // GHASH block 4k - mid pmull2 v4.1q, v5.2d, v14.2d // GHASH block 4k+1 - high aese v2.16b, v19.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 1 rev64 v7.16b, v7.16b // GHASH block 4k+3 aese v3.16b, v18.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 0 pmull v10.1q, v8.1d, v10.1d // GHASH block 4k - mid eor v9.16b, v9.16b, v4.16b // GHASH block 4k+1 - high pmull v8.1q, v5.1d, v14.1d // GHASH block 4k+1 - low aese v3.16b, v19.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 1 mov d4, v5.d[1] // GHASH block 4k+1 - mid aese v0.16b, v20.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 2 aese v1.16b, v20.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 2 eor v11.16b, v11.16b, v8.16b // GHASH block 4k+1 - low aese v2.16b, v20.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 2 aese v0.16b, v21.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 3 mov d8, v6.d[1] // GHASH block 4k+2 - mid aese v3.16b, v20.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 2 eor v4.8b, v4.8b, v5.8b // GHASH block 4k+1 - mid pmull v5.1q, v6.1d, v13.1d // GHASH block 4k+2 - low aese v0.16b, v22.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 4 aese v3.16b, v21.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 3 eor v8.8b, v8.8b, v6.8b // GHASH block 4k+2 - mid pmull v4.1q, v4.1d, v17.1d // GHASH block 4k+1 - mid aese v0.16b, v23.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 5 eor v11.16b, v11.16b, v5.16b // GHASH block 4k+2 - low aese v3.16b, v22.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 4 pmull2 v5.1q, v7.2d, v12.2d // GHASH block 4k+3 - high eor v10.16b, v10.16b, v4.16b // GHASH block 4k+1 - mid pmull2 v4.1q, v6.2d, v13.2d // GHASH block 4k+2 - high aese v3.16b, v23.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 5 ins v8.d[1], v8.d[0] // GHASH block 4k+2 - mid aese v2.16b, v21.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 3 aese v1.16b, v21.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 3 eor v9.16b, v9.16b, v4.16b // GHASH block 4k+2 - high pmull v4.1q, v7.1d, v12.1d // GHASH block 4k+3 - low aese v2.16b, v22.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 4 mov d6, v7.d[1] // GHASH block 4k+3 - mid aese v1.16b, v22.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 4 pmull2 v8.1q, v8.2d, v16.2d // GHASH block 4k+2 - mid aese v2.16b, v23.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 5 eor v6.8b, v6.8b, v7.8b // GHASH block 4k+3 - mid aese v1.16b, v23.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 5 aese v3.16b, v24.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 6 eor v10.16b, v10.16b, v8.16b // GHASH block 4k+2 - mid aese v2.16b, v24.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 6 aese v0.16b, v24.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 6 movi v8.8b, #0xc2 aese v1.16b, v24.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 6 eor v11.16b, v11.16b, v4.16b // GHASH block 4k+3 - low pmull v6.1q, v6.1d, v16.1d // GHASH block 4k+3 - mid aese v3.16b, v25.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 7 cmp x17, #12 // setup flags for AES-128/192/256 check eor v9.16b, v9.16b, v5.16b // GHASH block 4k+3 - high aese v1.16b, v25.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 7 aese v0.16b, v25.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 7 eor v10.16b, v10.16b, v6.16b // GHASH block 4k+3 - mid aese v3.16b, v26.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 8 aese v2.16b, v25.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 7 eor v6.16b, v11.16b, v9.16b // MODULO - karatsuba tidy up aese v1.16b, v26.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 8 aese v0.16b, v26.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 8 shl d8, d8, #56 // mod_constant aese v2.16b, v26.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 8 b.lt Ldec_finish_prepretail // branch if AES-128 aese v1.16b, v27.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 9 aese v2.16b, v27.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 9 aese v3.16b, v27.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 9 aese v0.16b, v27.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 9 aese v2.16b, v28.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 10 aese v3.16b, v28.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 10 aese v0.16b, v28.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 10 aese v1.16b, v28.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 10 b.eq Ldec_finish_prepretail // branch if AES-192 aese v2.16b, v29.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 11 aese v0.16b, v29.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 11 aese v1.16b, v29.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 11 aese v2.16b, v30.16b aesmc v2.16b, v2.16b // AES block 4k+6 - round 12 aese v3.16b, v29.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 11 aese v1.16b, v30.16b aesmc v1.16b, v1.16b // AES block 4k+5 - round 12 aese v0.16b, v30.16b aesmc v0.16b, v0.16b // AES block 4k+4 - round 12 aese v3.16b, v30.16b aesmc v3.16b, v3.16b // AES block 4k+7 - round 12 Ldec_finish_prepretail: eor v10.16b, v10.16b, v6.16b // MODULO - karatsuba tidy up pmull v7.1q, v9.1d, v8.1d // MODULO - top 64b align with mid ext v9.16b, v9.16b, v9.16b, #8 // MODULO - other top alignment eor v10.16b, v10.16b, v7.16b // MODULO - fold into mid eor x22, x22, x14 // AES block 4k+2 - round N high eor x23, x23, x13 // AES block 4k+3 - round N low eor v10.16b, v10.16b, v9.16b // MODULO - fold into mid add w12, w12, #1 // CTR block 4k+7 eor x21, x21, x13 // AES block 4k+2 - round N low pmull v8.1q, v10.1d, v8.1d // MODULO - mid 64b align with low eor x24, x24, x14 // AES block 4k+3 - round N high stp x21, x22, [x2], #16 // AES block 4k+2 - store result ext v10.16b, v10.16b, v10.16b, #8 // MODULO - other mid alignment stp x23, x24, [x2], #16 // AES block 4k+3 - store result eor v11.16b, v11.16b, v8.16b // MODULO - fold into low aese v1.16b, v31.16b // AES block 4k+5 - round N-1 aese v0.16b, v31.16b // AES block 4k+4 - round N-1 aese v3.16b, v31.16b // AES block 4k+7 - round N-1 aese v2.16b, v31.16b // AES block 4k+6 - round N-1 eor v11.16b, v11.16b, v10.16b // MODULO - fold into low Ldec_tail: // TAIL sub x5, x4, x0 // main_end_input_ptr is number of bytes left to process ld1 { v5.16b}, [x0], #16 // AES block 4k+4 - load ciphertext eor v0.16b, v5.16b, v0.16b // AES block 4k+4 - result mov x6, v0.d[0] // AES block 4k+4 - mov low mov x7, v0.d[1] // AES block 4k+4 - mov high ext v8.16b, v11.16b, v11.16b, #8 // prepare final partial tag cmp x5, #48 eor x6, x6, x13 // AES block 4k+4 - round N low eor x7, x7, x14 // AES block 4k+4 - round N high b.gt Ldec_blocks_more_than_3 sub w12, w12, #1 mov v3.16b, v2.16b movi v10.8b, #0 movi v11.8b, #0 cmp x5, #32 movi v9.8b, #0 mov v2.16b, v1.16b b.gt Ldec_blocks_more_than_2 sub w12, w12, #1 mov v3.16b, v1.16b cmp x5, #16 b.gt Ldec_blocks_more_than_1 sub w12, w12, #1 b Ldec_blocks_less_than_1 Ldec_blocks_more_than_3: // blocks left > 3 rev64 v4.16b, v5.16b // GHASH final-3 block ld1 { v5.16b}, [x0], #16 // AES final-2 block - load ciphertext stp x6, x7, [x2], #16 // AES final-3 block - store result mov d10, v17.d[1] // GHASH final-3 block - mid eor v4.16b, v4.16b, v8.16b // feed in partial tag eor v0.16b, v5.16b, v1.16b // AES final-2 block - result mov d22, v4.d[1] // GHASH final-3 block - mid mov x6, v0.d[0] // AES final-2 block - mov low mov x7, v0.d[1] // AES final-2 block - mov high eor v22.8b, v22.8b, v4.8b // GHASH final-3 block - mid movi v8.8b, #0 // suppress further partial tag feed in pmull2 v9.1q, v4.2d, v15.2d // GHASH final-3 block - high pmull v10.1q, v22.1d, v10.1d // GHASH final-3 block - mid eor x6, x6, x13 // AES final-2 block - round N low pmull v11.1q, v4.1d, v15.1d // GHASH final-3 block - low eor x7, x7, x14 // AES final-2 block - round N high Ldec_blocks_more_than_2: // blocks left > 2 rev64 v4.16b, v5.16b // GHASH final-2 block ld1 { v5.16b}, [x0], #16 // AES final-1 block - load ciphertext eor v4.16b, v4.16b, v8.16b // feed in partial tag stp x6, x7, [x2], #16 // AES final-2 block - store result eor v0.16b, v5.16b, v2.16b // AES final-1 block - result mov d22, v4.d[1] // GHASH final-2 block - mid pmull v21.1q, v4.1d, v14.1d // GHASH final-2 block - low pmull2 v20.1q, v4.2d, v14.2d // GHASH final-2 block - high eor v22.8b, v22.8b, v4.8b // GHASH final-2 block - mid mov x6, v0.d[0] // AES final-1 block - mov low mov x7, v0.d[1] // AES final-1 block - mov high eor v11.16b, v11.16b, v21.16b // GHASH final-2 block - low movi v8.8b, #0 // suppress further partial tag feed in pmull v22.1q, v22.1d, v17.1d // GHASH final-2 block - mid eor v9.16b, v9.16b, v20.16b // GHASH final-2 block - high eor x6, x6, x13 // AES final-1 block - round N low eor v10.16b, v10.16b, v22.16b // GHASH final-2 block - mid eor x7, x7, x14 // AES final-1 block - round N high Ldec_blocks_more_than_1: // blocks left > 1 stp x6, x7, [x2], #16 // AES final-1 block - store result rev64 v4.16b, v5.16b // GHASH final-1 block ld1 { v5.16b}, [x0], #16 // AES final block - load ciphertext eor v4.16b, v4.16b, v8.16b // feed in partial tag movi v8.8b, #0 // suppress further partial tag feed in mov d22, v4.d[1] // GHASH final-1 block - mid eor v0.16b, v5.16b, v3.16b // AES final block - result pmull2 v20.1q, v4.2d, v13.2d // GHASH final-1 block - high eor v22.8b, v22.8b, v4.8b // GHASH final-1 block - mid pmull v21.1q, v4.1d, v13.1d // GHASH final-1 block - low mov x6, v0.d[0] // AES final block - mov low ins v22.d[1], v22.d[0] // GHASH final-1 block - mid mov x7, v0.d[1] // AES final block - mov high pmull2 v22.1q, v22.2d, v16.2d // GHASH final-1 block - mid eor x6, x6, x13 // AES final block - round N low eor v11.16b, v11.16b, v21.16b // GHASH final-1 block - low eor v9.16b, v9.16b, v20.16b // GHASH final-1 block - high eor v10.16b, v10.16b, v22.16b // GHASH final-1 block - mid eor x7, x7, x14 // AES final block - round N high Ldec_blocks_less_than_1: // blocks left <= 1 and x1, x1, #127 // bit_length %= 128 mvn x14, xzr // rkN_h = 0xffffffffffffffff sub x1, x1, #128 // bit_length -= 128 mvn x13, xzr // rkN_l = 0xffffffffffffffff ldp x4, x5, [x2] // load existing bytes we need to not overwrite neg x1, x1 // bit_length = 128 - #bits in input (in range [1,128]) and x1, x1, #127 // bit_length %= 128 lsr x14, x14, x1 // rkN_h is mask for top 64b of last block cmp x1, #64 csel x9, x13, x14, lt csel x10, x14, xzr, lt fmov d0, x9 // ctr0b is mask for last block and x6, x6, x9 mov v0.d[1], x10 bic x4, x4, x9 // mask out low existing bytes rev w9, w12 bic x5, x5, x10 // mask out high existing bytes orr x6, x6, x4 and x7, x7, x10 orr x7, x7, x5 and v5.16b, v5.16b, v0.16b // possibly partial last block has zeroes in highest bits rev64 v4.16b, v5.16b // GHASH final block eor v4.16b, v4.16b, v8.16b // feed in partial tag pmull v21.1q, v4.1d, v12.1d // GHASH final block - low mov d8, v4.d[1] // GHASH final block - mid eor v8.8b, v8.8b, v4.8b // GHASH final block - mid pmull2 v20.1q, v4.2d, v12.2d // GHASH final block - high pmull v8.1q, v8.1d, v16.1d // GHASH final block - mid eor v9.16b, v9.16b, v20.16b // GHASH final block - high eor v11.16b, v11.16b, v21.16b // GHASH final block - low eor v10.16b, v10.16b, v8.16b // GHASH final block - mid movi v8.8b, #0xc2 eor v6.16b, v11.16b, v9.16b // MODULO - karatsuba tidy up shl d8, d8, #56 // mod_constant eor v10.16b, v10.16b, v6.16b // MODULO - karatsuba tidy up pmull v7.1q, v9.1d, v8.1d // MODULO - top 64b align with mid ext v9.16b, v9.16b, v9.16b, #8 // MODULO - other top alignment eor v10.16b, v10.16b, v7.16b // MODULO - fold into mid eor v10.16b, v10.16b, v9.16b // MODULO - fold into mid pmull v8.1q, v10.1d, v8.1d // MODULO - mid 64b align with low ext v10.16b, v10.16b, v10.16b, #8 // MODULO - other mid alignment eor v11.16b, v11.16b, v8.16b // MODULO - fold into low stp x6, x7, [x2] str w9, [x16, #12] // store the updated counter eor v11.16b, v11.16b, v10.16b // MODULO - fold into low ext v11.16b, v11.16b, v11.16b, #8 rev64 v11.16b, v11.16b mov x0, x15 st1 { v11.16b }, [x3] ldp x19, x20, [sp, #16] ldp x21, x22, [sp, #32] ldp x23, x24, [sp, #48] ldp d8, d9, [sp, #64] ldp d10, d11, [sp, #80] ldp d12, d13, [sp, #96] ldp d14, d15, [sp, #112] ldp x29, x30, [sp], #128 AARCH64_VALIDATE_LINK_REGISTER ret #endif #endif // !OPENSSL_NO_ASM && defined(OPENSSL_AARCH64) && defined(__APPLE__)
mktmansour/MKT-KSA-Geolocation-Security
49,024
.cargo-home/registry/src/index.crates.io-1949cf8c6b5b557f/ring-0.17.14/pregenerated/sha512-armv8-ios64.S
// This file is generated from a similarly-named Perl script in the BoringSSL // source tree. Do not edit by hand. #include <ring-core/asm_base.h> #if !defined(OPENSSL_NO_ASM) && defined(OPENSSL_AARCH64) && defined(__APPLE__) // Copyright 2014-2020 The OpenSSL Project Authors. All Rights Reserved. // // Licensed under the Apache License, Version 2.0 (the "License"); // you may not use this file except in compliance with the License. // You may obtain a copy of the License at // // https://www.apache.org/licenses/LICENSE-2.0 // // Unless required by applicable law or agreed to in writing, software // distributed under the License is distributed on an "AS IS" BASIS, // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. // See the License for the specific language governing permissions and // limitations under the License. // ==================================================================== // Written by Andy Polyakov <appro@openssl.org> for the OpenSSL // project. // ==================================================================== // // SHA256/512 for ARMv8. // // Performance in cycles per processed byte and improvement coefficient // over code generated with "default" compiler: // // SHA256-hw SHA256(*) SHA512 // Apple A7 1.97 10.5 (+33%) 6.73 (-1%(**)) // Cortex-A53 2.38 15.5 (+115%) 10.0 (+150%(***)) // Cortex-A57 2.31 11.6 (+86%) 7.51 (+260%(***)) // Denver 2.01 10.5 (+26%) 6.70 (+8%) // X-Gene 20.0 (+100%) 12.8 (+300%(***)) // Mongoose 2.36 13.0 (+50%) 8.36 (+33%) // Kryo 1.92 17.4 (+30%) 11.2 (+8%) // // (*) Software SHA256 results are of lesser relevance, presented // mostly for informational purposes. // (**) The result is a trade-off: it's possible to improve it by // 10% (or by 1 cycle per round), but at the cost of 20% loss // on Cortex-A53 (or by 4 cycles per round). // (***) Super-impressive coefficients over gcc-generated code are // indication of some compiler "pathology", most notably code // generated with -mgeneral-regs-only is significantly faster // and the gap is only 40-90%. #ifndef __KERNEL__ #endif .text .globl _sha512_block_data_order_nohw .private_extern _sha512_block_data_order_nohw .align 6 _sha512_block_data_order_nohw: AARCH64_SIGN_LINK_REGISTER stp x29,x30,[sp,#-128]! add x29,sp,#0 stp x19,x20,[sp,#16] stp x21,x22,[sp,#32] stp x23,x24,[sp,#48] stp x25,x26,[sp,#64] stp x27,x28,[sp,#80] sub sp,sp,#4*8 ldp x20,x21,[x0] // load context ldp x22,x23,[x0,#2*8] ldp x24,x25,[x0,#4*8] add x2,x1,x2,lsl#7 // end of input ldp x26,x27,[x0,#6*8] adrp x30,LK512@PAGE add x30,x30,LK512@PAGEOFF stp x0,x2,[x29,#96] Loop: ldp x3,x4,[x1],#2*8 ldr x19,[x30],#8 // *K++ eor x28,x21,x22 // magic seed str x1,[x29,#112] #ifndef __AARCH64EB__ rev x3,x3 // 0 #endif ror x16,x24,#14 add x27,x27,x19 // h+=K[i] eor x6,x24,x24,ror#23 and x17,x25,x24 bic x19,x26,x24 add x27,x27,x3 // h+=X[i] orr x17,x17,x19 // Ch(e,f,g) eor x19,x20,x21 // a^b, b^c in next round eor x16,x16,x6,ror#18 // Sigma1(e) ror x6,x20,#28 add x27,x27,x17 // h+=Ch(e,f,g) eor x17,x20,x20,ror#5 add x27,x27,x16 // h+=Sigma1(e) and x28,x28,x19 // (b^c)&=(a^b) add x23,x23,x27 // d+=h eor x28,x28,x21 // Maj(a,b,c) eor x17,x6,x17,ror#34 // Sigma0(a) add x27,x27,x28 // h+=Maj(a,b,c) ldr x28,[x30],#8 // *K++, x19 in next round //add x27,x27,x17 // h+=Sigma0(a) #ifndef __AARCH64EB__ rev x4,x4 // 1 #endif ldp x5,x6,[x1],#2*8 add x27,x27,x17 // h+=Sigma0(a) ror x16,x23,#14 add x26,x26,x28 // h+=K[i] eor x7,x23,x23,ror#23 and x17,x24,x23 bic x28,x25,x23 add x26,x26,x4 // h+=X[i] orr x17,x17,x28 // Ch(e,f,g) eor x28,x27,x20 // a^b, b^c in next round eor x16,x16,x7,ror#18 // Sigma1(e) ror x7,x27,#28 add x26,x26,x17 // h+=Ch(e,f,g) eor x17,x27,x27,ror#5 add x26,x26,x16 // h+=Sigma1(e) and x19,x19,x28 // (b^c)&=(a^b) add x22,x22,x26 // d+=h eor x19,x19,x20 // Maj(a,b,c) eor x17,x7,x17,ror#34 // Sigma0(a) add x26,x26,x19 // h+=Maj(a,b,c) ldr x19,[x30],#8 // *K++, x28 in next round //add x26,x26,x17 // h+=Sigma0(a) #ifndef __AARCH64EB__ rev x5,x5 // 2 #endif add x26,x26,x17 // h+=Sigma0(a) ror x16,x22,#14 add x25,x25,x19 // h+=K[i] eor x8,x22,x22,ror#23 and x17,x23,x22 bic x19,x24,x22 add x25,x25,x5 // h+=X[i] orr x17,x17,x19 // Ch(e,f,g) eor x19,x26,x27 // a^b, b^c in next round eor x16,x16,x8,ror#18 // Sigma1(e) ror x8,x26,#28 add x25,x25,x17 // h+=Ch(e,f,g) eor x17,x26,x26,ror#5 add x25,x25,x16 // h+=Sigma1(e) and x28,x28,x19 // (b^c)&=(a^b) add x21,x21,x25 // d+=h eor x28,x28,x27 // Maj(a,b,c) eor x17,x8,x17,ror#34 // Sigma0(a) add x25,x25,x28 // h+=Maj(a,b,c) ldr x28,[x30],#8 // *K++, x19 in next round //add x25,x25,x17 // h+=Sigma0(a) #ifndef __AARCH64EB__ rev x6,x6 // 3 #endif ldp x7,x8,[x1],#2*8 add x25,x25,x17 // h+=Sigma0(a) ror x16,x21,#14 add x24,x24,x28 // h+=K[i] eor x9,x21,x21,ror#23 and x17,x22,x21 bic x28,x23,x21 add x24,x24,x6 // h+=X[i] orr x17,x17,x28 // Ch(e,f,g) eor x28,x25,x26 // a^b, b^c in next round eor x16,x16,x9,ror#18 // Sigma1(e) ror x9,x25,#28 add x24,x24,x17 // h+=Ch(e,f,g) eor x17,x25,x25,ror#5 add x24,x24,x16 // h+=Sigma1(e) and x19,x19,x28 // (b^c)&=(a^b) add x20,x20,x24 // d+=h eor x19,x19,x26 // Maj(a,b,c) eor x17,x9,x17,ror#34 // Sigma0(a) add x24,x24,x19 // h+=Maj(a,b,c) ldr x19,[x30],#8 // *K++, x28 in next round //add x24,x24,x17 // h+=Sigma0(a) #ifndef __AARCH64EB__ rev x7,x7 // 4 #endif add x24,x24,x17 // h+=Sigma0(a) ror x16,x20,#14 add x23,x23,x19 // h+=K[i] eor x10,x20,x20,ror#23 and x17,x21,x20 bic x19,x22,x20 add x23,x23,x7 // h+=X[i] orr x17,x17,x19 // Ch(e,f,g) eor x19,x24,x25 // a^b, b^c in next round eor x16,x16,x10,ror#18 // Sigma1(e) ror x10,x24,#28 add x23,x23,x17 // h+=Ch(e,f,g) eor x17,x24,x24,ror#5 add x23,x23,x16 // h+=Sigma1(e) and x28,x28,x19 // (b^c)&=(a^b) add x27,x27,x23 // d+=h eor x28,x28,x25 // Maj(a,b,c) eor x17,x10,x17,ror#34 // Sigma0(a) add x23,x23,x28 // h+=Maj(a,b,c) ldr x28,[x30],#8 // *K++, x19 in next round //add x23,x23,x17 // h+=Sigma0(a) #ifndef __AARCH64EB__ rev x8,x8 // 5 #endif ldp x9,x10,[x1],#2*8 add x23,x23,x17 // h+=Sigma0(a) ror x16,x27,#14 add x22,x22,x28 // h+=K[i] eor x11,x27,x27,ror#23 and x17,x20,x27 bic x28,x21,x27 add x22,x22,x8 // h+=X[i] orr x17,x17,x28 // Ch(e,f,g) eor x28,x23,x24 // a^b, b^c in next round eor x16,x16,x11,ror#18 // Sigma1(e) ror x11,x23,#28 add x22,x22,x17 // h+=Ch(e,f,g) eor x17,x23,x23,ror#5 add x22,x22,x16 // h+=Sigma1(e) and x19,x19,x28 // (b^c)&=(a^b) add x26,x26,x22 // d+=h eor x19,x19,x24 // Maj(a,b,c) eor x17,x11,x17,ror#34 // Sigma0(a) add x22,x22,x19 // h+=Maj(a,b,c) ldr x19,[x30],#8 // *K++, x28 in next round //add x22,x22,x17 // h+=Sigma0(a) #ifndef __AARCH64EB__ rev x9,x9 // 6 #endif add x22,x22,x17 // h+=Sigma0(a) ror x16,x26,#14 add x21,x21,x19 // h+=K[i] eor x12,x26,x26,ror#23 and x17,x27,x26 bic x19,x20,x26 add x21,x21,x9 // h+=X[i] orr x17,x17,x19 // Ch(e,f,g) eor x19,x22,x23 // a^b, b^c in next round eor x16,x16,x12,ror#18 // Sigma1(e) ror x12,x22,#28 add x21,x21,x17 // h+=Ch(e,f,g) eor x17,x22,x22,ror#5 add x21,x21,x16 // h+=Sigma1(e) and x28,x28,x19 // (b^c)&=(a^b) add x25,x25,x21 // d+=h eor x28,x28,x23 // Maj(a,b,c) eor x17,x12,x17,ror#34 // Sigma0(a) add x21,x21,x28 // h+=Maj(a,b,c) ldr x28,[x30],#8 // *K++, x19 in next round //add x21,x21,x17 // h+=Sigma0(a) #ifndef __AARCH64EB__ rev x10,x10 // 7 #endif ldp x11,x12,[x1],#2*8 add x21,x21,x17 // h+=Sigma0(a) ror x16,x25,#14 add x20,x20,x28 // h+=K[i] eor x13,x25,x25,ror#23 and x17,x26,x25 bic x28,x27,x25 add x20,x20,x10 // h+=X[i] orr x17,x17,x28 // Ch(e,f,g) eor x28,x21,x22 // a^b, b^c in next round eor x16,x16,x13,ror#18 // Sigma1(e) ror x13,x21,#28 add x20,x20,x17 // h+=Ch(e,f,g) eor x17,x21,x21,ror#5 add x20,x20,x16 // h+=Sigma1(e) and x19,x19,x28 // (b^c)&=(a^b) add x24,x24,x20 // d+=h eor x19,x19,x22 // Maj(a,b,c) eor x17,x13,x17,ror#34 // Sigma0(a) add x20,x20,x19 // h+=Maj(a,b,c) ldr x19,[x30],#8 // *K++, x28 in next round //add x20,x20,x17 // h+=Sigma0(a) #ifndef __AARCH64EB__ rev x11,x11 // 8 #endif add x20,x20,x17 // h+=Sigma0(a) ror x16,x24,#14 add x27,x27,x19 // h+=K[i] eor x14,x24,x24,ror#23 and x17,x25,x24 bic x19,x26,x24 add x27,x27,x11 // h+=X[i] orr x17,x17,x19 // Ch(e,f,g) eor x19,x20,x21 // a^b, b^c in next round eor x16,x16,x14,ror#18 // Sigma1(e) ror x14,x20,#28 add x27,x27,x17 // h+=Ch(e,f,g) eor x17,x20,x20,ror#5 add x27,x27,x16 // h+=Sigma1(e) and x28,x28,x19 // (b^c)&=(a^b) add x23,x23,x27 // d+=h eor x28,x28,x21 // Maj(a,b,c) eor x17,x14,x17,ror#34 // Sigma0(a) add x27,x27,x28 // h+=Maj(a,b,c) ldr x28,[x30],#8 // *K++, x19 in next round //add x27,x27,x17 // h+=Sigma0(a) #ifndef __AARCH64EB__ rev x12,x12 // 9 #endif ldp x13,x14,[x1],#2*8 add x27,x27,x17 // h+=Sigma0(a) ror x16,x23,#14 add x26,x26,x28 // h+=K[i] eor x15,x23,x23,ror#23 and x17,x24,x23 bic x28,x25,x23 add x26,x26,x12 // h+=X[i] orr x17,x17,x28 // Ch(e,f,g) eor x28,x27,x20 // a^b, b^c in next round eor x16,x16,x15,ror#18 // Sigma1(e) ror x15,x27,#28 add x26,x26,x17 // h+=Ch(e,f,g) eor x17,x27,x27,ror#5 add x26,x26,x16 // h+=Sigma1(e) and x19,x19,x28 // (b^c)&=(a^b) add x22,x22,x26 // d+=h eor x19,x19,x20 // Maj(a,b,c) eor x17,x15,x17,ror#34 // Sigma0(a) add x26,x26,x19 // h+=Maj(a,b,c) ldr x19,[x30],#8 // *K++, x28 in next round //add x26,x26,x17 // h+=Sigma0(a) #ifndef __AARCH64EB__ rev x13,x13 // 10 #endif add x26,x26,x17 // h+=Sigma0(a) ror x16,x22,#14 add x25,x25,x19 // h+=K[i] eor x0,x22,x22,ror#23 and x17,x23,x22 bic x19,x24,x22 add x25,x25,x13 // h+=X[i] orr x17,x17,x19 // Ch(e,f,g) eor x19,x26,x27 // a^b, b^c in next round eor x16,x16,x0,ror#18 // Sigma1(e) ror x0,x26,#28 add x25,x25,x17 // h+=Ch(e,f,g) eor x17,x26,x26,ror#5 add x25,x25,x16 // h+=Sigma1(e) and x28,x28,x19 // (b^c)&=(a^b) add x21,x21,x25 // d+=h eor x28,x28,x27 // Maj(a,b,c) eor x17,x0,x17,ror#34 // Sigma0(a) add x25,x25,x28 // h+=Maj(a,b,c) ldr x28,[x30],#8 // *K++, x19 in next round //add x25,x25,x17 // h+=Sigma0(a) #ifndef __AARCH64EB__ rev x14,x14 // 11 #endif ldp x15,x0,[x1],#2*8 add x25,x25,x17 // h+=Sigma0(a) str x6,[sp,#24] ror x16,x21,#14 add x24,x24,x28 // h+=K[i] eor x6,x21,x21,ror#23 and x17,x22,x21 bic x28,x23,x21 add x24,x24,x14 // h+=X[i] orr x17,x17,x28 // Ch(e,f,g) eor x28,x25,x26 // a^b, b^c in next round eor x16,x16,x6,ror#18 // Sigma1(e) ror x6,x25,#28 add x24,x24,x17 // h+=Ch(e,f,g) eor x17,x25,x25,ror#5 add x24,x24,x16 // h+=Sigma1(e) and x19,x19,x28 // (b^c)&=(a^b) add x20,x20,x24 // d+=h eor x19,x19,x26 // Maj(a,b,c) eor x17,x6,x17,ror#34 // Sigma0(a) add x24,x24,x19 // h+=Maj(a,b,c) ldr x19,[x30],#8 // *K++, x28 in next round //add x24,x24,x17 // h+=Sigma0(a) #ifndef __AARCH64EB__ rev x15,x15 // 12 #endif add x24,x24,x17 // h+=Sigma0(a) str x7,[sp,#0] ror x16,x20,#14 add x23,x23,x19 // h+=K[i] eor x7,x20,x20,ror#23 and x17,x21,x20 bic x19,x22,x20 add x23,x23,x15 // h+=X[i] orr x17,x17,x19 // Ch(e,f,g) eor x19,x24,x25 // a^b, b^c in next round eor x16,x16,x7,ror#18 // Sigma1(e) ror x7,x24,#28 add x23,x23,x17 // h+=Ch(e,f,g) eor x17,x24,x24,ror#5 add x23,x23,x16 // h+=Sigma1(e) and x28,x28,x19 // (b^c)&=(a^b) add x27,x27,x23 // d+=h eor x28,x28,x25 // Maj(a,b,c) eor x17,x7,x17,ror#34 // Sigma0(a) add x23,x23,x28 // h+=Maj(a,b,c) ldr x28,[x30],#8 // *K++, x19 in next round //add x23,x23,x17 // h+=Sigma0(a) #ifndef __AARCH64EB__ rev x0,x0 // 13 #endif ldp x1,x2,[x1] add x23,x23,x17 // h+=Sigma0(a) str x8,[sp,#8] ror x16,x27,#14 add x22,x22,x28 // h+=K[i] eor x8,x27,x27,ror#23 and x17,x20,x27 bic x28,x21,x27 add x22,x22,x0 // h+=X[i] orr x17,x17,x28 // Ch(e,f,g) eor x28,x23,x24 // a^b, b^c in next round eor x16,x16,x8,ror#18 // Sigma1(e) ror x8,x23,#28 add x22,x22,x17 // h+=Ch(e,f,g) eor x17,x23,x23,ror#5 add x22,x22,x16 // h+=Sigma1(e) and x19,x19,x28 // (b^c)&=(a^b) add x26,x26,x22 // d+=h eor x19,x19,x24 // Maj(a,b,c) eor x17,x8,x17,ror#34 // Sigma0(a) add x22,x22,x19 // h+=Maj(a,b,c) ldr x19,[x30],#8 // *K++, x28 in next round //add x22,x22,x17 // h+=Sigma0(a) #ifndef __AARCH64EB__ rev x1,x1 // 14 #endif ldr x6,[sp,#24] add x22,x22,x17 // h+=Sigma0(a) str x9,[sp,#16] ror x16,x26,#14 add x21,x21,x19 // h+=K[i] eor x9,x26,x26,ror#23 and x17,x27,x26 bic x19,x20,x26 add x21,x21,x1 // h+=X[i] orr x17,x17,x19 // Ch(e,f,g) eor x19,x22,x23 // a^b, b^c in next round eor x16,x16,x9,ror#18 // Sigma1(e) ror x9,x22,#28 add x21,x21,x17 // h+=Ch(e,f,g) eor x17,x22,x22,ror#5 add x21,x21,x16 // h+=Sigma1(e) and x28,x28,x19 // (b^c)&=(a^b) add x25,x25,x21 // d+=h eor x28,x28,x23 // Maj(a,b,c) eor x17,x9,x17,ror#34 // Sigma0(a) add x21,x21,x28 // h+=Maj(a,b,c) ldr x28,[x30],#8 // *K++, x19 in next round //add x21,x21,x17 // h+=Sigma0(a) #ifndef __AARCH64EB__ rev x2,x2 // 15 #endif ldr x7,[sp,#0] add x21,x21,x17 // h+=Sigma0(a) str x10,[sp,#24] ror x16,x25,#14 add x20,x20,x28 // h+=K[i] ror x9,x4,#1 and x17,x26,x25 ror x8,x1,#19 bic x28,x27,x25 ror x10,x21,#28 add x20,x20,x2 // h+=X[i] eor x16,x16,x25,ror#18 eor x9,x9,x4,ror#8 orr x17,x17,x28 // Ch(e,f,g) eor x28,x21,x22 // a^b, b^c in next round eor x16,x16,x25,ror#41 // Sigma1(e) eor x10,x10,x21,ror#34 add x20,x20,x17 // h+=Ch(e,f,g) and x19,x19,x28 // (b^c)&=(a^b) eor x8,x8,x1,ror#61 eor x9,x9,x4,lsr#7 // sigma0(X[i+1]) add x20,x20,x16 // h+=Sigma1(e) eor x19,x19,x22 // Maj(a,b,c) eor x17,x10,x21,ror#39 // Sigma0(a) eor x8,x8,x1,lsr#6 // sigma1(X[i+14]) add x3,x3,x12 add x24,x24,x20 // d+=h add x20,x20,x19 // h+=Maj(a,b,c) ldr x19,[x30],#8 // *K++, x28 in next round add x3,x3,x9 add x20,x20,x17 // h+=Sigma0(a) add x3,x3,x8 Loop_16_xx: ldr x8,[sp,#8] str x11,[sp,#0] ror x16,x24,#14 add x27,x27,x19 // h+=K[i] ror x10,x5,#1 and x17,x25,x24 ror x9,x2,#19 bic x19,x26,x24 ror x11,x20,#28 add x27,x27,x3 // h+=X[i] eor x16,x16,x24,ror#18 eor x10,x10,x5,ror#8 orr x17,x17,x19 // Ch(e,f,g) eor x19,x20,x21 // a^b, b^c in next round eor x16,x16,x24,ror#41 // Sigma1(e) eor x11,x11,x20,ror#34 add x27,x27,x17 // h+=Ch(e,f,g) and x28,x28,x19 // (b^c)&=(a^b) eor x9,x9,x2,ror#61 eor x10,x10,x5,lsr#7 // sigma0(X[i+1]) add x27,x27,x16 // h+=Sigma1(e) eor x28,x28,x21 // Maj(a,b,c) eor x17,x11,x20,ror#39 // Sigma0(a) eor x9,x9,x2,lsr#6 // sigma1(X[i+14]) add x4,x4,x13 add x23,x23,x27 // d+=h add x27,x27,x28 // h+=Maj(a,b,c) ldr x28,[x30],#8 // *K++, x19 in next round add x4,x4,x10 add x27,x27,x17 // h+=Sigma0(a) add x4,x4,x9 ldr x9,[sp,#16] str x12,[sp,#8] ror x16,x23,#14 add x26,x26,x28 // h+=K[i] ror x11,x6,#1 and x17,x24,x23 ror x10,x3,#19 bic x28,x25,x23 ror x12,x27,#28 add x26,x26,x4 // h+=X[i] eor x16,x16,x23,ror#18 eor x11,x11,x6,ror#8 orr x17,x17,x28 // Ch(e,f,g) eor x28,x27,x20 // a^b, b^c in next round eor x16,x16,x23,ror#41 // Sigma1(e) eor x12,x12,x27,ror#34 add x26,x26,x17 // h+=Ch(e,f,g) and x19,x19,x28 // (b^c)&=(a^b) eor x10,x10,x3,ror#61 eor x11,x11,x6,lsr#7 // sigma0(X[i+1]) add x26,x26,x16 // h+=Sigma1(e) eor x19,x19,x20 // Maj(a,b,c) eor x17,x12,x27,ror#39 // Sigma0(a) eor x10,x10,x3,lsr#6 // sigma1(X[i+14]) add x5,x5,x14 add x22,x22,x26 // d+=h add x26,x26,x19 // h+=Maj(a,b,c) ldr x19,[x30],#8 // *K++, x28 in next round add x5,x5,x11 add x26,x26,x17 // h+=Sigma0(a) add x5,x5,x10 ldr x10,[sp,#24] str x13,[sp,#16] ror x16,x22,#14 add x25,x25,x19 // h+=K[i] ror x12,x7,#1 and x17,x23,x22 ror x11,x4,#19 bic x19,x24,x22 ror x13,x26,#28 add x25,x25,x5 // h+=X[i] eor x16,x16,x22,ror#18 eor x12,x12,x7,ror#8 orr x17,x17,x19 // Ch(e,f,g) eor x19,x26,x27 // a^b, b^c in next round eor x16,x16,x22,ror#41 // Sigma1(e) eor x13,x13,x26,ror#34 add x25,x25,x17 // h+=Ch(e,f,g) and x28,x28,x19 // (b^c)&=(a^b) eor x11,x11,x4,ror#61 eor x12,x12,x7,lsr#7 // sigma0(X[i+1]) add x25,x25,x16 // h+=Sigma1(e) eor x28,x28,x27 // Maj(a,b,c) eor x17,x13,x26,ror#39 // Sigma0(a) eor x11,x11,x4,lsr#6 // sigma1(X[i+14]) add x6,x6,x15 add x21,x21,x25 // d+=h add x25,x25,x28 // h+=Maj(a,b,c) ldr x28,[x30],#8 // *K++, x19 in next round add x6,x6,x12 add x25,x25,x17 // h+=Sigma0(a) add x6,x6,x11 ldr x11,[sp,#0] str x14,[sp,#24] ror x16,x21,#14 add x24,x24,x28 // h+=K[i] ror x13,x8,#1 and x17,x22,x21 ror x12,x5,#19 bic x28,x23,x21 ror x14,x25,#28 add x24,x24,x6 // h+=X[i] eor x16,x16,x21,ror#18 eor x13,x13,x8,ror#8 orr x17,x17,x28 // Ch(e,f,g) eor x28,x25,x26 // a^b, b^c in next round eor x16,x16,x21,ror#41 // Sigma1(e) eor x14,x14,x25,ror#34 add x24,x24,x17 // h+=Ch(e,f,g) and x19,x19,x28 // (b^c)&=(a^b) eor x12,x12,x5,ror#61 eor x13,x13,x8,lsr#7 // sigma0(X[i+1]) add x24,x24,x16 // h+=Sigma1(e) eor x19,x19,x26 // Maj(a,b,c) eor x17,x14,x25,ror#39 // Sigma0(a) eor x12,x12,x5,lsr#6 // sigma1(X[i+14]) add x7,x7,x0 add x20,x20,x24 // d+=h add x24,x24,x19 // h+=Maj(a,b,c) ldr x19,[x30],#8 // *K++, x28 in next round add x7,x7,x13 add x24,x24,x17 // h+=Sigma0(a) add x7,x7,x12 ldr x12,[sp,#8] str x15,[sp,#0] ror x16,x20,#14 add x23,x23,x19 // h+=K[i] ror x14,x9,#1 and x17,x21,x20 ror x13,x6,#19 bic x19,x22,x20 ror x15,x24,#28 add x23,x23,x7 // h+=X[i] eor x16,x16,x20,ror#18 eor x14,x14,x9,ror#8 orr x17,x17,x19 // Ch(e,f,g) eor x19,x24,x25 // a^b, b^c in next round eor x16,x16,x20,ror#41 // Sigma1(e) eor x15,x15,x24,ror#34 add x23,x23,x17 // h+=Ch(e,f,g) and x28,x28,x19 // (b^c)&=(a^b) eor x13,x13,x6,ror#61 eor x14,x14,x9,lsr#7 // sigma0(X[i+1]) add x23,x23,x16 // h+=Sigma1(e) eor x28,x28,x25 // Maj(a,b,c) eor x17,x15,x24,ror#39 // Sigma0(a) eor x13,x13,x6,lsr#6 // sigma1(X[i+14]) add x8,x8,x1 add x27,x27,x23 // d+=h add x23,x23,x28 // h+=Maj(a,b,c) ldr x28,[x30],#8 // *K++, x19 in next round add x8,x8,x14 add x23,x23,x17 // h+=Sigma0(a) add x8,x8,x13 ldr x13,[sp,#16] str x0,[sp,#8] ror x16,x27,#14 add x22,x22,x28 // h+=K[i] ror x15,x10,#1 and x17,x20,x27 ror x14,x7,#19 bic x28,x21,x27 ror x0,x23,#28 add x22,x22,x8 // h+=X[i] eor x16,x16,x27,ror#18 eor x15,x15,x10,ror#8 orr x17,x17,x28 // Ch(e,f,g) eor x28,x23,x24 // a^b, b^c in next round eor x16,x16,x27,ror#41 // Sigma1(e) eor x0,x0,x23,ror#34 add x22,x22,x17 // h+=Ch(e,f,g) and x19,x19,x28 // (b^c)&=(a^b) eor x14,x14,x7,ror#61 eor x15,x15,x10,lsr#7 // sigma0(X[i+1]) add x22,x22,x16 // h+=Sigma1(e) eor x19,x19,x24 // Maj(a,b,c) eor x17,x0,x23,ror#39 // Sigma0(a) eor x14,x14,x7,lsr#6 // sigma1(X[i+14]) add x9,x9,x2 add x26,x26,x22 // d+=h add x22,x22,x19 // h+=Maj(a,b,c) ldr x19,[x30],#8 // *K++, x28 in next round add x9,x9,x15 add x22,x22,x17 // h+=Sigma0(a) add x9,x9,x14 ldr x14,[sp,#24] str x1,[sp,#16] ror x16,x26,#14 add x21,x21,x19 // h+=K[i] ror x0,x11,#1 and x17,x27,x26 ror x15,x8,#19 bic x19,x20,x26 ror x1,x22,#28 add x21,x21,x9 // h+=X[i] eor x16,x16,x26,ror#18 eor x0,x0,x11,ror#8 orr x17,x17,x19 // Ch(e,f,g) eor x19,x22,x23 // a^b, b^c in next round eor x16,x16,x26,ror#41 // Sigma1(e) eor x1,x1,x22,ror#34 add x21,x21,x17 // h+=Ch(e,f,g) and x28,x28,x19 // (b^c)&=(a^b) eor x15,x15,x8,ror#61 eor x0,x0,x11,lsr#7 // sigma0(X[i+1]) add x21,x21,x16 // h+=Sigma1(e) eor x28,x28,x23 // Maj(a,b,c) eor x17,x1,x22,ror#39 // Sigma0(a) eor x15,x15,x8,lsr#6 // sigma1(X[i+14]) add x10,x10,x3 add x25,x25,x21 // d+=h add x21,x21,x28 // h+=Maj(a,b,c) ldr x28,[x30],#8 // *K++, x19 in next round add x10,x10,x0 add x21,x21,x17 // h+=Sigma0(a) add x10,x10,x15 ldr x15,[sp,#0] str x2,[sp,#24] ror x16,x25,#14 add x20,x20,x28 // h+=K[i] ror x1,x12,#1 and x17,x26,x25 ror x0,x9,#19 bic x28,x27,x25 ror x2,x21,#28 add x20,x20,x10 // h+=X[i] eor x16,x16,x25,ror#18 eor x1,x1,x12,ror#8 orr x17,x17,x28 // Ch(e,f,g) eor x28,x21,x22 // a^b, b^c in next round eor x16,x16,x25,ror#41 // Sigma1(e) eor x2,x2,x21,ror#34 add x20,x20,x17 // h+=Ch(e,f,g) and x19,x19,x28 // (b^c)&=(a^b) eor x0,x0,x9,ror#61 eor x1,x1,x12,lsr#7 // sigma0(X[i+1]) add x20,x20,x16 // h+=Sigma1(e) eor x19,x19,x22 // Maj(a,b,c) eor x17,x2,x21,ror#39 // Sigma0(a) eor x0,x0,x9,lsr#6 // sigma1(X[i+14]) add x11,x11,x4 add x24,x24,x20 // d+=h add x20,x20,x19 // h+=Maj(a,b,c) ldr x19,[x30],#8 // *K++, x28 in next round add x11,x11,x1 add x20,x20,x17 // h+=Sigma0(a) add x11,x11,x0 ldr x0,[sp,#8] str x3,[sp,#0] ror x16,x24,#14 add x27,x27,x19 // h+=K[i] ror x2,x13,#1 and x17,x25,x24 ror x1,x10,#19 bic x19,x26,x24 ror x3,x20,#28 add x27,x27,x11 // h+=X[i] eor x16,x16,x24,ror#18 eor x2,x2,x13,ror#8 orr x17,x17,x19 // Ch(e,f,g) eor x19,x20,x21 // a^b, b^c in next round eor x16,x16,x24,ror#41 // Sigma1(e) eor x3,x3,x20,ror#34 add x27,x27,x17 // h+=Ch(e,f,g) and x28,x28,x19 // (b^c)&=(a^b) eor x1,x1,x10,ror#61 eor x2,x2,x13,lsr#7 // sigma0(X[i+1]) add x27,x27,x16 // h+=Sigma1(e) eor x28,x28,x21 // Maj(a,b,c) eor x17,x3,x20,ror#39 // Sigma0(a) eor x1,x1,x10,lsr#6 // sigma1(X[i+14]) add x12,x12,x5 add x23,x23,x27 // d+=h add x27,x27,x28 // h+=Maj(a,b,c) ldr x28,[x30],#8 // *K++, x19 in next round add x12,x12,x2 add x27,x27,x17 // h+=Sigma0(a) add x12,x12,x1 ldr x1,[sp,#16] str x4,[sp,#8] ror x16,x23,#14 add x26,x26,x28 // h+=K[i] ror x3,x14,#1 and x17,x24,x23 ror x2,x11,#19 bic x28,x25,x23 ror x4,x27,#28 add x26,x26,x12 // h+=X[i] eor x16,x16,x23,ror#18 eor x3,x3,x14,ror#8 orr x17,x17,x28 // Ch(e,f,g) eor x28,x27,x20 // a^b, b^c in next round eor x16,x16,x23,ror#41 // Sigma1(e) eor x4,x4,x27,ror#34 add x26,x26,x17 // h+=Ch(e,f,g) and x19,x19,x28 // (b^c)&=(a^b) eor x2,x2,x11,ror#61 eor x3,x3,x14,lsr#7 // sigma0(X[i+1]) add x26,x26,x16 // h+=Sigma1(e) eor x19,x19,x20 // Maj(a,b,c) eor x17,x4,x27,ror#39 // Sigma0(a) eor x2,x2,x11,lsr#6 // sigma1(X[i+14]) add x13,x13,x6 add x22,x22,x26 // d+=h add x26,x26,x19 // h+=Maj(a,b,c) ldr x19,[x30],#8 // *K++, x28 in next round add x13,x13,x3 add x26,x26,x17 // h+=Sigma0(a) add x13,x13,x2 ldr x2,[sp,#24] str x5,[sp,#16] ror x16,x22,#14 add x25,x25,x19 // h+=K[i] ror x4,x15,#1 and x17,x23,x22 ror x3,x12,#19 bic x19,x24,x22 ror x5,x26,#28 add x25,x25,x13 // h+=X[i] eor x16,x16,x22,ror#18 eor x4,x4,x15,ror#8 orr x17,x17,x19 // Ch(e,f,g) eor x19,x26,x27 // a^b, b^c in next round eor x16,x16,x22,ror#41 // Sigma1(e) eor x5,x5,x26,ror#34 add x25,x25,x17 // h+=Ch(e,f,g) and x28,x28,x19 // (b^c)&=(a^b) eor x3,x3,x12,ror#61 eor x4,x4,x15,lsr#7 // sigma0(X[i+1]) add x25,x25,x16 // h+=Sigma1(e) eor x28,x28,x27 // Maj(a,b,c) eor x17,x5,x26,ror#39 // Sigma0(a) eor x3,x3,x12,lsr#6 // sigma1(X[i+14]) add x14,x14,x7 add x21,x21,x25 // d+=h add x25,x25,x28 // h+=Maj(a,b,c) ldr x28,[x30],#8 // *K++, x19 in next round add x14,x14,x4 add x25,x25,x17 // h+=Sigma0(a) add x14,x14,x3 ldr x3,[sp,#0] str x6,[sp,#24] ror x16,x21,#14 add x24,x24,x28 // h+=K[i] ror x5,x0,#1 and x17,x22,x21 ror x4,x13,#19 bic x28,x23,x21 ror x6,x25,#28 add x24,x24,x14 // h+=X[i] eor x16,x16,x21,ror#18 eor x5,x5,x0,ror#8 orr x17,x17,x28 // Ch(e,f,g) eor x28,x25,x26 // a^b, b^c in next round eor x16,x16,x21,ror#41 // Sigma1(e) eor x6,x6,x25,ror#34 add x24,x24,x17 // h+=Ch(e,f,g) and x19,x19,x28 // (b^c)&=(a^b) eor x4,x4,x13,ror#61 eor x5,x5,x0,lsr#7 // sigma0(X[i+1]) add x24,x24,x16 // h+=Sigma1(e) eor x19,x19,x26 // Maj(a,b,c) eor x17,x6,x25,ror#39 // Sigma0(a) eor x4,x4,x13,lsr#6 // sigma1(X[i+14]) add x15,x15,x8 add x20,x20,x24 // d+=h add x24,x24,x19 // h+=Maj(a,b,c) ldr x19,[x30],#8 // *K++, x28 in next round add x15,x15,x5 add x24,x24,x17 // h+=Sigma0(a) add x15,x15,x4 ldr x4,[sp,#8] str x7,[sp,#0] ror x16,x20,#14 add x23,x23,x19 // h+=K[i] ror x6,x1,#1 and x17,x21,x20 ror x5,x14,#19 bic x19,x22,x20 ror x7,x24,#28 add x23,x23,x15 // h+=X[i] eor x16,x16,x20,ror#18 eor x6,x6,x1,ror#8 orr x17,x17,x19 // Ch(e,f,g) eor x19,x24,x25 // a^b, b^c in next round eor x16,x16,x20,ror#41 // Sigma1(e) eor x7,x7,x24,ror#34 add x23,x23,x17 // h+=Ch(e,f,g) and x28,x28,x19 // (b^c)&=(a^b) eor x5,x5,x14,ror#61 eor x6,x6,x1,lsr#7 // sigma0(X[i+1]) add x23,x23,x16 // h+=Sigma1(e) eor x28,x28,x25 // Maj(a,b,c) eor x17,x7,x24,ror#39 // Sigma0(a) eor x5,x5,x14,lsr#6 // sigma1(X[i+14]) add x0,x0,x9 add x27,x27,x23 // d+=h add x23,x23,x28 // h+=Maj(a,b,c) ldr x28,[x30],#8 // *K++, x19 in next round add x0,x0,x6 add x23,x23,x17 // h+=Sigma0(a) add x0,x0,x5 ldr x5,[sp,#16] str x8,[sp,#8] ror x16,x27,#14 add x22,x22,x28 // h+=K[i] ror x7,x2,#1 and x17,x20,x27 ror x6,x15,#19 bic x28,x21,x27 ror x8,x23,#28 add x22,x22,x0 // h+=X[i] eor x16,x16,x27,ror#18 eor x7,x7,x2,ror#8 orr x17,x17,x28 // Ch(e,f,g) eor x28,x23,x24 // a^b, b^c in next round eor x16,x16,x27,ror#41 // Sigma1(e) eor x8,x8,x23,ror#34 add x22,x22,x17 // h+=Ch(e,f,g) and x19,x19,x28 // (b^c)&=(a^b) eor x6,x6,x15,ror#61 eor x7,x7,x2,lsr#7 // sigma0(X[i+1]) add x22,x22,x16 // h+=Sigma1(e) eor x19,x19,x24 // Maj(a,b,c) eor x17,x8,x23,ror#39 // Sigma0(a) eor x6,x6,x15,lsr#6 // sigma1(X[i+14]) add x1,x1,x10 add x26,x26,x22 // d+=h add x22,x22,x19 // h+=Maj(a,b,c) ldr x19,[x30],#8 // *K++, x28 in next round add x1,x1,x7 add x22,x22,x17 // h+=Sigma0(a) add x1,x1,x6 ldr x6,[sp,#24] str x9,[sp,#16] ror x16,x26,#14 add x21,x21,x19 // h+=K[i] ror x8,x3,#1 and x17,x27,x26 ror x7,x0,#19 bic x19,x20,x26 ror x9,x22,#28 add x21,x21,x1 // h+=X[i] eor x16,x16,x26,ror#18 eor x8,x8,x3,ror#8 orr x17,x17,x19 // Ch(e,f,g) eor x19,x22,x23 // a^b, b^c in next round eor x16,x16,x26,ror#41 // Sigma1(e) eor x9,x9,x22,ror#34 add x21,x21,x17 // h+=Ch(e,f,g) and x28,x28,x19 // (b^c)&=(a^b) eor x7,x7,x0,ror#61 eor x8,x8,x3,lsr#7 // sigma0(X[i+1]) add x21,x21,x16 // h+=Sigma1(e) eor x28,x28,x23 // Maj(a,b,c) eor x17,x9,x22,ror#39 // Sigma0(a) eor x7,x7,x0,lsr#6 // sigma1(X[i+14]) add x2,x2,x11 add x25,x25,x21 // d+=h add x21,x21,x28 // h+=Maj(a,b,c) ldr x28,[x30],#8 // *K++, x19 in next round add x2,x2,x8 add x21,x21,x17 // h+=Sigma0(a) add x2,x2,x7 ldr x7,[sp,#0] str x10,[sp,#24] ror x16,x25,#14 add x20,x20,x28 // h+=K[i] ror x9,x4,#1 and x17,x26,x25 ror x8,x1,#19 bic x28,x27,x25 ror x10,x21,#28 add x20,x20,x2 // h+=X[i] eor x16,x16,x25,ror#18 eor x9,x9,x4,ror#8 orr x17,x17,x28 // Ch(e,f,g) eor x28,x21,x22 // a^b, b^c in next round eor x16,x16,x25,ror#41 // Sigma1(e) eor x10,x10,x21,ror#34 add x20,x20,x17 // h+=Ch(e,f,g) and x19,x19,x28 // (b^c)&=(a^b) eor x8,x8,x1,ror#61 eor x9,x9,x4,lsr#7 // sigma0(X[i+1]) add x20,x20,x16 // h+=Sigma1(e) eor x19,x19,x22 // Maj(a,b,c) eor x17,x10,x21,ror#39 // Sigma0(a) eor x8,x8,x1,lsr#6 // sigma1(X[i+14]) add x3,x3,x12 add x24,x24,x20 // d+=h add x20,x20,x19 // h+=Maj(a,b,c) ldr x19,[x30],#8 // *K++, x28 in next round add x3,x3,x9 add x20,x20,x17 // h+=Sigma0(a) add x3,x3,x8 cbnz x19,Loop_16_xx ldp x0,x2,[x29,#96] ldr x1,[x29,#112] sub x30,x30,#648 // rewind ldp x3,x4,[x0] ldp x5,x6,[x0,#2*8] add x1,x1,#14*8 // advance input pointer ldp x7,x8,[x0,#4*8] add x20,x20,x3 ldp x9,x10,[x0,#6*8] add x21,x21,x4 add x22,x22,x5 add x23,x23,x6 stp x20,x21,[x0] add x24,x24,x7 add x25,x25,x8 stp x22,x23,[x0,#2*8] add x26,x26,x9 add x27,x27,x10 cmp x1,x2 stp x24,x25,[x0,#4*8] stp x26,x27,[x0,#6*8] b.ne Loop ldp x19,x20,[x29,#16] add sp,sp,#4*8 ldp x21,x22,[x29,#32] ldp x23,x24,[x29,#48] ldp x25,x26,[x29,#64] ldp x27,x28,[x29,#80] ldp x29,x30,[sp],#128 AARCH64_VALIDATE_LINK_REGISTER ret .section __TEXT,__const .align 6 LK512: .quad 0x428a2f98d728ae22,0x7137449123ef65cd .quad 0xb5c0fbcfec4d3b2f,0xe9b5dba58189dbbc .quad 0x3956c25bf348b538,0x59f111f1b605d019 .quad 0x923f82a4af194f9b,0xab1c5ed5da6d8118 .quad 0xd807aa98a3030242,0x12835b0145706fbe .quad 0x243185be4ee4b28c,0x550c7dc3d5ffb4e2 .quad 0x72be5d74f27b896f,0x80deb1fe3b1696b1 .quad 0x9bdc06a725c71235,0xc19bf174cf692694 .quad 0xe49b69c19ef14ad2,0xefbe4786384f25e3 .quad 0x0fc19dc68b8cd5b5,0x240ca1cc77ac9c65 .quad 0x2de92c6f592b0275,0x4a7484aa6ea6e483 .quad 0x5cb0a9dcbd41fbd4,0x76f988da831153b5 .quad 0x983e5152ee66dfab,0xa831c66d2db43210 .quad 0xb00327c898fb213f,0xbf597fc7beef0ee4 .quad 0xc6e00bf33da88fc2,0xd5a79147930aa725 .quad 0x06ca6351e003826f,0x142929670a0e6e70 .quad 0x27b70a8546d22ffc,0x2e1b21385c26c926 .quad 0x4d2c6dfc5ac42aed,0x53380d139d95b3df .quad 0x650a73548baf63de,0x766a0abb3c77b2a8 .quad 0x81c2c92e47edaee6,0x92722c851482353b .quad 0xa2bfe8a14cf10364,0xa81a664bbc423001 .quad 0xc24b8b70d0f89791,0xc76c51a30654be30 .quad 0xd192e819d6ef5218,0xd69906245565a910 .quad 0xf40e35855771202a,0x106aa07032bbd1b8 .quad 0x19a4c116b8d2d0c8,0x1e376c085141ab53 .quad 0x2748774cdf8eeb99,0x34b0bcb5e19b48a8 .quad 0x391c0cb3c5c95a63,0x4ed8aa4ae3418acb .quad 0x5b9cca4f7763e373,0x682e6ff3d6b2b8a3 .quad 0x748f82ee5defb2fc,0x78a5636f43172f60 .quad 0x84c87814a1f0ab72,0x8cc702081a6439ec .quad 0x90befffa23631e28,0xa4506cebde82bde9 .quad 0xbef9a3f7b2c67915,0xc67178f2e372532b .quad 0xca273eceea26619c,0xd186b8c721c0c207 .quad 0xeada7dd6cde0eb1e,0xf57d4f7fee6ed178 .quad 0x06f067aa72176fba,0x0a637dc5a2c898a6 .quad 0x113f9804bef90dae,0x1b710b35131c471b .quad 0x28db77f523047d84,0x32caab7b40c72493 .quad 0x3c9ebe0a15c9bebc,0x431d67c49c100d4c .quad 0x4cc5d4becb3e42b6,0x597f299cfc657e2a .quad 0x5fcb6fab3ad6faec,0x6c44198c4a475817 .quad 0 // terminator .byte 83,72,65,53,49,50,32,98,108,111,99,107,32,116,114,97,110,115,102,111,114,109,32,102,111,114,32,65,82,77,118,56,44,32,67,82,89,80,84,79,71,65,77,83,32,98,121,32,60,97,112,112,114,111,64,111,112,101,110,115,115,108,46,111,114,103,62,0 .align 2 .align 2 .text #ifndef __KERNEL__ .globl _sha512_block_data_order_hw .private_extern _sha512_block_data_order_hw .align 6 _sha512_block_data_order_hw: // Armv8.3-A PAuth: even though x30 is pushed to stack it is not popped later. AARCH64_VALID_CALL_TARGET stp x29,x30,[sp,#-16]! add x29,sp,#0 ld1 {v16.16b,v17.16b,v18.16b,v19.16b},[x1],#64 // load input ld1 {v20.16b,v21.16b,v22.16b,v23.16b},[x1],#64 ld1 {v0.2d,v1.2d,v2.2d,v3.2d},[x0] // load context adrp x3,LK512@PAGE add x3,x3,LK512@PAGEOFF rev64 v16.16b,v16.16b rev64 v17.16b,v17.16b rev64 v18.16b,v18.16b rev64 v19.16b,v19.16b rev64 v20.16b,v20.16b rev64 v21.16b,v21.16b rev64 v22.16b,v22.16b rev64 v23.16b,v23.16b b Loop_hw .align 4 Loop_hw: ld1 {v24.2d},[x3],#16 subs x2,x2,#1 sub x4,x1,#128 orr v26.16b,v0.16b,v0.16b // offload orr v27.16b,v1.16b,v1.16b orr v28.16b,v2.16b,v2.16b orr v29.16b,v3.16b,v3.16b csel x1,x1,x4,ne // conditional rewind add v24.2d,v24.2d,v16.2d ld1 {v25.2d},[x3],#16 ext v24.16b,v24.16b,v24.16b,#8 ext v5.16b,v2.16b,v3.16b,#8 ext v6.16b,v1.16b,v2.16b,#8 add v3.2d,v3.2d,v24.2d // "T1 + H + K512[i]" .long 0xcec08230 //sha512su0 v16.16b,v17.16b ext v7.16b,v20.16b,v21.16b,#8 .long 0xce6680a3 //sha512h v3.16b,v5.16b,v6.16b .long 0xce678af0 //sha512su1 v16.16b,v23.16b,v7.16b add v4.2d,v1.2d,v3.2d // "D + T1" .long 0xce608423 //sha512h2 v3.16b,v1.16b,v0.16b add v25.2d,v25.2d,v17.2d ld1 {v24.2d},[x3],#16 ext v25.16b,v25.16b,v25.16b,#8 ext v5.16b,v4.16b,v2.16b,#8 ext v6.16b,v0.16b,v4.16b,#8 add v2.2d,v2.2d,v25.2d // "T1 + H + K512[i]" .long 0xcec08251 //sha512su0 v17.16b,v18.16b ext v7.16b,v21.16b,v22.16b,#8 .long 0xce6680a2 //sha512h v2.16b,v5.16b,v6.16b .long 0xce678a11 //sha512su1 v17.16b,v16.16b,v7.16b add v1.2d,v0.2d,v2.2d // "D + T1" .long 0xce638402 //sha512h2 v2.16b,v0.16b,v3.16b add v24.2d,v24.2d,v18.2d ld1 {v25.2d},[x3],#16 ext v24.16b,v24.16b,v24.16b,#8 ext v5.16b,v1.16b,v4.16b,#8 ext v6.16b,v3.16b,v1.16b,#8 add v4.2d,v4.2d,v24.2d // "T1 + H + K512[i]" .long 0xcec08272 //sha512su0 v18.16b,v19.16b ext v7.16b,v22.16b,v23.16b,#8 .long 0xce6680a4 //sha512h v4.16b,v5.16b,v6.16b .long 0xce678a32 //sha512su1 v18.16b,v17.16b,v7.16b add v0.2d,v3.2d,v4.2d // "D + T1" .long 0xce628464 //sha512h2 v4.16b,v3.16b,v2.16b add v25.2d,v25.2d,v19.2d ld1 {v24.2d},[x3],#16 ext v25.16b,v25.16b,v25.16b,#8 ext v5.16b,v0.16b,v1.16b,#8 ext v6.16b,v2.16b,v0.16b,#8 add v1.2d,v1.2d,v25.2d // "T1 + H + K512[i]" .long 0xcec08293 //sha512su0 v19.16b,v20.16b ext v7.16b,v23.16b,v16.16b,#8 .long 0xce6680a1 //sha512h v1.16b,v5.16b,v6.16b .long 0xce678a53 //sha512su1 v19.16b,v18.16b,v7.16b add v3.2d,v2.2d,v1.2d // "D + T1" .long 0xce648441 //sha512h2 v1.16b,v2.16b,v4.16b add v24.2d,v24.2d,v20.2d ld1 {v25.2d},[x3],#16 ext v24.16b,v24.16b,v24.16b,#8 ext v5.16b,v3.16b,v0.16b,#8 ext v6.16b,v4.16b,v3.16b,#8 add v0.2d,v0.2d,v24.2d // "T1 + H + K512[i]" .long 0xcec082b4 //sha512su0 v20.16b,v21.16b ext v7.16b,v16.16b,v17.16b,#8 .long 0xce6680a0 //sha512h v0.16b,v5.16b,v6.16b .long 0xce678a74 //sha512su1 v20.16b,v19.16b,v7.16b add v2.2d,v4.2d,v0.2d // "D + T1" .long 0xce618480 //sha512h2 v0.16b,v4.16b,v1.16b add v25.2d,v25.2d,v21.2d ld1 {v24.2d},[x3],#16 ext v25.16b,v25.16b,v25.16b,#8 ext v5.16b,v2.16b,v3.16b,#8 ext v6.16b,v1.16b,v2.16b,#8 add v3.2d,v3.2d,v25.2d // "T1 + H + K512[i]" .long 0xcec082d5 //sha512su0 v21.16b,v22.16b ext v7.16b,v17.16b,v18.16b,#8 .long 0xce6680a3 //sha512h v3.16b,v5.16b,v6.16b .long 0xce678a95 //sha512su1 v21.16b,v20.16b,v7.16b add v4.2d,v1.2d,v3.2d // "D + T1" .long 0xce608423 //sha512h2 v3.16b,v1.16b,v0.16b add v24.2d,v24.2d,v22.2d ld1 {v25.2d},[x3],#16 ext v24.16b,v24.16b,v24.16b,#8 ext v5.16b,v4.16b,v2.16b,#8 ext v6.16b,v0.16b,v4.16b,#8 add v2.2d,v2.2d,v24.2d // "T1 + H + K512[i]" .long 0xcec082f6 //sha512su0 v22.16b,v23.16b ext v7.16b,v18.16b,v19.16b,#8 .long 0xce6680a2 //sha512h v2.16b,v5.16b,v6.16b .long 0xce678ab6 //sha512su1 v22.16b,v21.16b,v7.16b add v1.2d,v0.2d,v2.2d // "D + T1" .long 0xce638402 //sha512h2 v2.16b,v0.16b,v3.16b add v25.2d,v25.2d,v23.2d ld1 {v24.2d},[x3],#16 ext v25.16b,v25.16b,v25.16b,#8 ext v5.16b,v1.16b,v4.16b,#8 ext v6.16b,v3.16b,v1.16b,#8 add v4.2d,v4.2d,v25.2d // "T1 + H + K512[i]" .long 0xcec08217 //sha512su0 v23.16b,v16.16b ext v7.16b,v19.16b,v20.16b,#8 .long 0xce6680a4 //sha512h v4.16b,v5.16b,v6.16b .long 0xce678ad7 //sha512su1 v23.16b,v22.16b,v7.16b add v0.2d,v3.2d,v4.2d // "D + T1" .long 0xce628464 //sha512h2 v4.16b,v3.16b,v2.16b add v24.2d,v24.2d,v16.2d ld1 {v25.2d},[x3],#16 ext v24.16b,v24.16b,v24.16b,#8 ext v5.16b,v0.16b,v1.16b,#8 ext v6.16b,v2.16b,v0.16b,#8 add v1.2d,v1.2d,v24.2d // "T1 + H + K512[i]" .long 0xcec08230 //sha512su0 v16.16b,v17.16b ext v7.16b,v20.16b,v21.16b,#8 .long 0xce6680a1 //sha512h v1.16b,v5.16b,v6.16b .long 0xce678af0 //sha512su1 v16.16b,v23.16b,v7.16b add v3.2d,v2.2d,v1.2d // "D + T1" .long 0xce648441 //sha512h2 v1.16b,v2.16b,v4.16b add v25.2d,v25.2d,v17.2d ld1 {v24.2d},[x3],#16 ext v25.16b,v25.16b,v25.16b,#8 ext v5.16b,v3.16b,v0.16b,#8 ext v6.16b,v4.16b,v3.16b,#8 add v0.2d,v0.2d,v25.2d // "T1 + H + K512[i]" .long 0xcec08251 //sha512su0 v17.16b,v18.16b ext v7.16b,v21.16b,v22.16b,#8 .long 0xce6680a0 //sha512h v0.16b,v5.16b,v6.16b .long 0xce678a11 //sha512su1 v17.16b,v16.16b,v7.16b add v2.2d,v4.2d,v0.2d // "D + T1" .long 0xce618480 //sha512h2 v0.16b,v4.16b,v1.16b add v24.2d,v24.2d,v18.2d ld1 {v25.2d},[x3],#16 ext v24.16b,v24.16b,v24.16b,#8 ext v5.16b,v2.16b,v3.16b,#8 ext v6.16b,v1.16b,v2.16b,#8 add v3.2d,v3.2d,v24.2d // "T1 + H + K512[i]" .long 0xcec08272 //sha512su0 v18.16b,v19.16b ext v7.16b,v22.16b,v23.16b,#8 .long 0xce6680a3 //sha512h v3.16b,v5.16b,v6.16b .long 0xce678a32 //sha512su1 v18.16b,v17.16b,v7.16b add v4.2d,v1.2d,v3.2d // "D + T1" .long 0xce608423 //sha512h2 v3.16b,v1.16b,v0.16b add v25.2d,v25.2d,v19.2d ld1 {v24.2d},[x3],#16 ext v25.16b,v25.16b,v25.16b,#8 ext v5.16b,v4.16b,v2.16b,#8 ext v6.16b,v0.16b,v4.16b,#8 add v2.2d,v2.2d,v25.2d // "T1 + H + K512[i]" .long 0xcec08293 //sha512su0 v19.16b,v20.16b ext v7.16b,v23.16b,v16.16b,#8 .long 0xce6680a2 //sha512h v2.16b,v5.16b,v6.16b .long 0xce678a53 //sha512su1 v19.16b,v18.16b,v7.16b add v1.2d,v0.2d,v2.2d // "D + T1" .long 0xce638402 //sha512h2 v2.16b,v0.16b,v3.16b add v24.2d,v24.2d,v20.2d ld1 {v25.2d},[x3],#16 ext v24.16b,v24.16b,v24.16b,#8 ext v5.16b,v1.16b,v4.16b,#8 ext v6.16b,v3.16b,v1.16b,#8 add v4.2d,v4.2d,v24.2d // "T1 + H + K512[i]" .long 0xcec082b4 //sha512su0 v20.16b,v21.16b ext v7.16b,v16.16b,v17.16b,#8 .long 0xce6680a4 //sha512h v4.16b,v5.16b,v6.16b .long 0xce678a74 //sha512su1 v20.16b,v19.16b,v7.16b add v0.2d,v3.2d,v4.2d // "D + T1" .long 0xce628464 //sha512h2 v4.16b,v3.16b,v2.16b add v25.2d,v25.2d,v21.2d ld1 {v24.2d},[x3],#16 ext v25.16b,v25.16b,v25.16b,#8 ext v5.16b,v0.16b,v1.16b,#8 ext v6.16b,v2.16b,v0.16b,#8 add v1.2d,v1.2d,v25.2d // "T1 + H + K512[i]" .long 0xcec082d5 //sha512su0 v21.16b,v22.16b ext v7.16b,v17.16b,v18.16b,#8 .long 0xce6680a1 //sha512h v1.16b,v5.16b,v6.16b .long 0xce678a95 //sha512su1 v21.16b,v20.16b,v7.16b add v3.2d,v2.2d,v1.2d // "D + T1" .long 0xce648441 //sha512h2 v1.16b,v2.16b,v4.16b add v24.2d,v24.2d,v22.2d ld1 {v25.2d},[x3],#16 ext v24.16b,v24.16b,v24.16b,#8 ext v5.16b,v3.16b,v0.16b,#8 ext v6.16b,v4.16b,v3.16b,#8 add v0.2d,v0.2d,v24.2d // "T1 + H + K512[i]" .long 0xcec082f6 //sha512su0 v22.16b,v23.16b ext v7.16b,v18.16b,v19.16b,#8 .long 0xce6680a0 //sha512h v0.16b,v5.16b,v6.16b .long 0xce678ab6 //sha512su1 v22.16b,v21.16b,v7.16b add v2.2d,v4.2d,v0.2d // "D + T1" .long 0xce618480 //sha512h2 v0.16b,v4.16b,v1.16b add v25.2d,v25.2d,v23.2d ld1 {v24.2d},[x3],#16 ext v25.16b,v25.16b,v25.16b,#8 ext v5.16b,v2.16b,v3.16b,#8 ext v6.16b,v1.16b,v2.16b,#8 add v3.2d,v3.2d,v25.2d // "T1 + H + K512[i]" .long 0xcec08217 //sha512su0 v23.16b,v16.16b ext v7.16b,v19.16b,v20.16b,#8 .long 0xce6680a3 //sha512h v3.16b,v5.16b,v6.16b .long 0xce678ad7 //sha512su1 v23.16b,v22.16b,v7.16b add v4.2d,v1.2d,v3.2d // "D + T1" .long 0xce608423 //sha512h2 v3.16b,v1.16b,v0.16b add v24.2d,v24.2d,v16.2d ld1 {v25.2d},[x3],#16 ext v24.16b,v24.16b,v24.16b,#8 ext v5.16b,v4.16b,v2.16b,#8 ext v6.16b,v0.16b,v4.16b,#8 add v2.2d,v2.2d,v24.2d // "T1 + H + K512[i]" .long 0xcec08230 //sha512su0 v16.16b,v17.16b ext v7.16b,v20.16b,v21.16b,#8 .long 0xce6680a2 //sha512h v2.16b,v5.16b,v6.16b .long 0xce678af0 //sha512su1 v16.16b,v23.16b,v7.16b add v1.2d,v0.2d,v2.2d // "D + T1" .long 0xce638402 //sha512h2 v2.16b,v0.16b,v3.16b add v25.2d,v25.2d,v17.2d ld1 {v24.2d},[x3],#16 ext v25.16b,v25.16b,v25.16b,#8 ext v5.16b,v1.16b,v4.16b,#8 ext v6.16b,v3.16b,v1.16b,#8 add v4.2d,v4.2d,v25.2d // "T1 + H + K512[i]" .long 0xcec08251 //sha512su0 v17.16b,v18.16b ext v7.16b,v21.16b,v22.16b,#8 .long 0xce6680a4 //sha512h v4.16b,v5.16b,v6.16b .long 0xce678a11 //sha512su1 v17.16b,v16.16b,v7.16b add v0.2d,v3.2d,v4.2d // "D + T1" .long 0xce628464 //sha512h2 v4.16b,v3.16b,v2.16b add v24.2d,v24.2d,v18.2d ld1 {v25.2d},[x3],#16 ext v24.16b,v24.16b,v24.16b,#8 ext v5.16b,v0.16b,v1.16b,#8 ext v6.16b,v2.16b,v0.16b,#8 add v1.2d,v1.2d,v24.2d // "T1 + H + K512[i]" .long 0xcec08272 //sha512su0 v18.16b,v19.16b ext v7.16b,v22.16b,v23.16b,#8 .long 0xce6680a1 //sha512h v1.16b,v5.16b,v6.16b .long 0xce678a32 //sha512su1 v18.16b,v17.16b,v7.16b add v3.2d,v2.2d,v1.2d // "D + T1" .long 0xce648441 //sha512h2 v1.16b,v2.16b,v4.16b add v25.2d,v25.2d,v19.2d ld1 {v24.2d},[x3],#16 ext v25.16b,v25.16b,v25.16b,#8 ext v5.16b,v3.16b,v0.16b,#8 ext v6.16b,v4.16b,v3.16b,#8 add v0.2d,v0.2d,v25.2d // "T1 + H + K512[i]" .long 0xcec08293 //sha512su0 v19.16b,v20.16b ext v7.16b,v23.16b,v16.16b,#8 .long 0xce6680a0 //sha512h v0.16b,v5.16b,v6.16b .long 0xce678a53 //sha512su1 v19.16b,v18.16b,v7.16b add v2.2d,v4.2d,v0.2d // "D + T1" .long 0xce618480 //sha512h2 v0.16b,v4.16b,v1.16b add v24.2d,v24.2d,v20.2d ld1 {v25.2d},[x3],#16 ext v24.16b,v24.16b,v24.16b,#8 ext v5.16b,v2.16b,v3.16b,#8 ext v6.16b,v1.16b,v2.16b,#8 add v3.2d,v3.2d,v24.2d // "T1 + H + K512[i]" .long 0xcec082b4 //sha512su0 v20.16b,v21.16b ext v7.16b,v16.16b,v17.16b,#8 .long 0xce6680a3 //sha512h v3.16b,v5.16b,v6.16b .long 0xce678a74 //sha512su1 v20.16b,v19.16b,v7.16b add v4.2d,v1.2d,v3.2d // "D + T1" .long 0xce608423 //sha512h2 v3.16b,v1.16b,v0.16b add v25.2d,v25.2d,v21.2d ld1 {v24.2d},[x3],#16 ext v25.16b,v25.16b,v25.16b,#8 ext v5.16b,v4.16b,v2.16b,#8 ext v6.16b,v0.16b,v4.16b,#8 add v2.2d,v2.2d,v25.2d // "T1 + H + K512[i]" .long 0xcec082d5 //sha512su0 v21.16b,v22.16b ext v7.16b,v17.16b,v18.16b,#8 .long 0xce6680a2 //sha512h v2.16b,v5.16b,v6.16b .long 0xce678a95 //sha512su1 v21.16b,v20.16b,v7.16b add v1.2d,v0.2d,v2.2d // "D + T1" .long 0xce638402 //sha512h2 v2.16b,v0.16b,v3.16b add v24.2d,v24.2d,v22.2d ld1 {v25.2d},[x3],#16 ext v24.16b,v24.16b,v24.16b,#8 ext v5.16b,v1.16b,v4.16b,#8 ext v6.16b,v3.16b,v1.16b,#8 add v4.2d,v4.2d,v24.2d // "T1 + H + K512[i]" .long 0xcec082f6 //sha512su0 v22.16b,v23.16b ext v7.16b,v18.16b,v19.16b,#8 .long 0xce6680a4 //sha512h v4.16b,v5.16b,v6.16b .long 0xce678ab6 //sha512su1 v22.16b,v21.16b,v7.16b add v0.2d,v3.2d,v4.2d // "D + T1" .long 0xce628464 //sha512h2 v4.16b,v3.16b,v2.16b add v25.2d,v25.2d,v23.2d ld1 {v24.2d},[x3],#16 ext v25.16b,v25.16b,v25.16b,#8 ext v5.16b,v0.16b,v1.16b,#8 ext v6.16b,v2.16b,v0.16b,#8 add v1.2d,v1.2d,v25.2d // "T1 + H + K512[i]" .long 0xcec08217 //sha512su0 v23.16b,v16.16b ext v7.16b,v19.16b,v20.16b,#8 .long 0xce6680a1 //sha512h v1.16b,v5.16b,v6.16b .long 0xce678ad7 //sha512su1 v23.16b,v22.16b,v7.16b add v3.2d,v2.2d,v1.2d // "D + T1" .long 0xce648441 //sha512h2 v1.16b,v2.16b,v4.16b add v24.2d,v24.2d,v16.2d ld1 {v25.2d},[x3],#16 ext v24.16b,v24.16b,v24.16b,#8 ext v5.16b,v3.16b,v0.16b,#8 ext v6.16b,v4.16b,v3.16b,#8 add v0.2d,v0.2d,v24.2d // "T1 + H + K512[i]" .long 0xcec08230 //sha512su0 v16.16b,v17.16b ext v7.16b,v20.16b,v21.16b,#8 .long 0xce6680a0 //sha512h v0.16b,v5.16b,v6.16b .long 0xce678af0 //sha512su1 v16.16b,v23.16b,v7.16b add v2.2d,v4.2d,v0.2d // "D + T1" .long 0xce618480 //sha512h2 v0.16b,v4.16b,v1.16b add v25.2d,v25.2d,v17.2d ld1 {v24.2d},[x3],#16 ext v25.16b,v25.16b,v25.16b,#8 ext v5.16b,v2.16b,v3.16b,#8 ext v6.16b,v1.16b,v2.16b,#8 add v3.2d,v3.2d,v25.2d // "T1 + H + K512[i]" .long 0xcec08251 //sha512su0 v17.16b,v18.16b ext v7.16b,v21.16b,v22.16b,#8 .long 0xce6680a3 //sha512h v3.16b,v5.16b,v6.16b .long 0xce678a11 //sha512su1 v17.16b,v16.16b,v7.16b add v4.2d,v1.2d,v3.2d // "D + T1" .long 0xce608423 //sha512h2 v3.16b,v1.16b,v0.16b add v24.2d,v24.2d,v18.2d ld1 {v25.2d},[x3],#16 ext v24.16b,v24.16b,v24.16b,#8 ext v5.16b,v4.16b,v2.16b,#8 ext v6.16b,v0.16b,v4.16b,#8 add v2.2d,v2.2d,v24.2d // "T1 + H + K512[i]" .long 0xcec08272 //sha512su0 v18.16b,v19.16b ext v7.16b,v22.16b,v23.16b,#8 .long 0xce6680a2 //sha512h v2.16b,v5.16b,v6.16b .long 0xce678a32 //sha512su1 v18.16b,v17.16b,v7.16b add v1.2d,v0.2d,v2.2d // "D + T1" .long 0xce638402 //sha512h2 v2.16b,v0.16b,v3.16b add v25.2d,v25.2d,v19.2d ld1 {v24.2d},[x3],#16 ext v25.16b,v25.16b,v25.16b,#8 ext v5.16b,v1.16b,v4.16b,#8 ext v6.16b,v3.16b,v1.16b,#8 add v4.2d,v4.2d,v25.2d // "T1 + H + K512[i]" .long 0xcec08293 //sha512su0 v19.16b,v20.16b ext v7.16b,v23.16b,v16.16b,#8 .long 0xce6680a4 //sha512h v4.16b,v5.16b,v6.16b .long 0xce678a53 //sha512su1 v19.16b,v18.16b,v7.16b add v0.2d,v3.2d,v4.2d // "D + T1" .long 0xce628464 //sha512h2 v4.16b,v3.16b,v2.16b add v24.2d,v24.2d,v20.2d ld1 {v25.2d},[x3],#16 ext v24.16b,v24.16b,v24.16b,#8 ext v5.16b,v0.16b,v1.16b,#8 ext v6.16b,v2.16b,v0.16b,#8 add v1.2d,v1.2d,v24.2d // "T1 + H + K512[i]" .long 0xcec082b4 //sha512su0 v20.16b,v21.16b ext v7.16b,v16.16b,v17.16b,#8 .long 0xce6680a1 //sha512h v1.16b,v5.16b,v6.16b .long 0xce678a74 //sha512su1 v20.16b,v19.16b,v7.16b add v3.2d,v2.2d,v1.2d // "D + T1" .long 0xce648441 //sha512h2 v1.16b,v2.16b,v4.16b add v25.2d,v25.2d,v21.2d ld1 {v24.2d},[x3],#16 ext v25.16b,v25.16b,v25.16b,#8 ext v5.16b,v3.16b,v0.16b,#8 ext v6.16b,v4.16b,v3.16b,#8 add v0.2d,v0.2d,v25.2d // "T1 + H + K512[i]" .long 0xcec082d5 //sha512su0 v21.16b,v22.16b ext v7.16b,v17.16b,v18.16b,#8 .long 0xce6680a0 //sha512h v0.16b,v5.16b,v6.16b .long 0xce678a95 //sha512su1 v21.16b,v20.16b,v7.16b add v2.2d,v4.2d,v0.2d // "D + T1" .long 0xce618480 //sha512h2 v0.16b,v4.16b,v1.16b add v24.2d,v24.2d,v22.2d ld1 {v25.2d},[x3],#16 ext v24.16b,v24.16b,v24.16b,#8 ext v5.16b,v2.16b,v3.16b,#8 ext v6.16b,v1.16b,v2.16b,#8 add v3.2d,v3.2d,v24.2d // "T1 + H + K512[i]" .long 0xcec082f6 //sha512su0 v22.16b,v23.16b ext v7.16b,v18.16b,v19.16b,#8 .long 0xce6680a3 //sha512h v3.16b,v5.16b,v6.16b .long 0xce678ab6 //sha512su1 v22.16b,v21.16b,v7.16b add v4.2d,v1.2d,v3.2d // "D + T1" .long 0xce608423 //sha512h2 v3.16b,v1.16b,v0.16b add v25.2d,v25.2d,v23.2d ld1 {v24.2d},[x3],#16 ext v25.16b,v25.16b,v25.16b,#8 ext v5.16b,v4.16b,v2.16b,#8 ext v6.16b,v0.16b,v4.16b,#8 add v2.2d,v2.2d,v25.2d // "T1 + H + K512[i]" .long 0xcec08217 //sha512su0 v23.16b,v16.16b ext v7.16b,v19.16b,v20.16b,#8 .long 0xce6680a2 //sha512h v2.16b,v5.16b,v6.16b .long 0xce678ad7 //sha512su1 v23.16b,v22.16b,v7.16b add v1.2d,v0.2d,v2.2d // "D + T1" .long 0xce638402 //sha512h2 v2.16b,v0.16b,v3.16b ld1 {v25.2d},[x3],#16 add v24.2d,v24.2d,v16.2d ld1 {v16.16b},[x1],#16 // load next input ext v24.16b,v24.16b,v24.16b,#8 ext v5.16b,v1.16b,v4.16b,#8 ext v6.16b,v3.16b,v1.16b,#8 add v4.2d,v4.2d,v24.2d // "T1 + H + K512[i]" .long 0xce6680a4 //sha512h v4.16b,v5.16b,v6.16b rev64 v16.16b,v16.16b add v0.2d,v3.2d,v4.2d // "D + T1" .long 0xce628464 //sha512h2 v4.16b,v3.16b,v2.16b ld1 {v24.2d},[x3],#16 add v25.2d,v25.2d,v17.2d ld1 {v17.16b},[x1],#16 // load next input ext v25.16b,v25.16b,v25.16b,#8 ext v5.16b,v0.16b,v1.16b,#8 ext v6.16b,v2.16b,v0.16b,#8 add v1.2d,v1.2d,v25.2d // "T1 + H + K512[i]" .long 0xce6680a1 //sha512h v1.16b,v5.16b,v6.16b rev64 v17.16b,v17.16b add v3.2d,v2.2d,v1.2d // "D + T1" .long 0xce648441 //sha512h2 v1.16b,v2.16b,v4.16b ld1 {v25.2d},[x3],#16 add v24.2d,v24.2d,v18.2d ld1 {v18.16b},[x1],#16 // load next input ext v24.16b,v24.16b,v24.16b,#8 ext v5.16b,v3.16b,v0.16b,#8 ext v6.16b,v4.16b,v3.16b,#8 add v0.2d,v0.2d,v24.2d // "T1 + H + K512[i]" .long 0xce6680a0 //sha512h v0.16b,v5.16b,v6.16b rev64 v18.16b,v18.16b add v2.2d,v4.2d,v0.2d // "D + T1" .long 0xce618480 //sha512h2 v0.16b,v4.16b,v1.16b ld1 {v24.2d},[x3],#16 add v25.2d,v25.2d,v19.2d ld1 {v19.16b},[x1],#16 // load next input ext v25.16b,v25.16b,v25.16b,#8 ext v5.16b,v2.16b,v3.16b,#8 ext v6.16b,v1.16b,v2.16b,#8 add v3.2d,v3.2d,v25.2d // "T1 + H + K512[i]" .long 0xce6680a3 //sha512h v3.16b,v5.16b,v6.16b rev64 v19.16b,v19.16b add v4.2d,v1.2d,v3.2d // "D + T1" .long 0xce608423 //sha512h2 v3.16b,v1.16b,v0.16b ld1 {v25.2d},[x3],#16 add v24.2d,v24.2d,v20.2d ld1 {v20.16b},[x1],#16 // load next input ext v24.16b,v24.16b,v24.16b,#8 ext v5.16b,v4.16b,v2.16b,#8 ext v6.16b,v0.16b,v4.16b,#8 add v2.2d,v2.2d,v24.2d // "T1 + H + K512[i]" .long 0xce6680a2 //sha512h v2.16b,v5.16b,v6.16b rev64 v20.16b,v20.16b add v1.2d,v0.2d,v2.2d // "D + T1" .long 0xce638402 //sha512h2 v2.16b,v0.16b,v3.16b ld1 {v24.2d},[x3],#16 add v25.2d,v25.2d,v21.2d ld1 {v21.16b},[x1],#16 // load next input ext v25.16b,v25.16b,v25.16b,#8 ext v5.16b,v1.16b,v4.16b,#8 ext v6.16b,v3.16b,v1.16b,#8 add v4.2d,v4.2d,v25.2d // "T1 + H + K512[i]" .long 0xce6680a4 //sha512h v4.16b,v5.16b,v6.16b rev64 v21.16b,v21.16b add v0.2d,v3.2d,v4.2d // "D + T1" .long 0xce628464 //sha512h2 v4.16b,v3.16b,v2.16b ld1 {v25.2d},[x3],#16 add v24.2d,v24.2d,v22.2d ld1 {v22.16b},[x1],#16 // load next input ext v24.16b,v24.16b,v24.16b,#8 ext v5.16b,v0.16b,v1.16b,#8 ext v6.16b,v2.16b,v0.16b,#8 add v1.2d,v1.2d,v24.2d // "T1 + H + K512[i]" .long 0xce6680a1 //sha512h v1.16b,v5.16b,v6.16b rev64 v22.16b,v22.16b add v3.2d,v2.2d,v1.2d // "D + T1" .long 0xce648441 //sha512h2 v1.16b,v2.16b,v4.16b sub x3,x3,#80*8 // rewind add v25.2d,v25.2d,v23.2d ld1 {v23.16b},[x1],#16 // load next input ext v25.16b,v25.16b,v25.16b,#8 ext v5.16b,v3.16b,v0.16b,#8 ext v6.16b,v4.16b,v3.16b,#8 add v0.2d,v0.2d,v25.2d // "T1 + H + K512[i]" .long 0xce6680a0 //sha512h v0.16b,v5.16b,v6.16b rev64 v23.16b,v23.16b add v2.2d,v4.2d,v0.2d // "D + T1" .long 0xce618480 //sha512h2 v0.16b,v4.16b,v1.16b add v0.2d,v0.2d,v26.2d // accumulate add v1.2d,v1.2d,v27.2d add v2.2d,v2.2d,v28.2d add v3.2d,v3.2d,v29.2d cbnz x2,Loop_hw st1 {v0.2d,v1.2d,v2.2d,v3.2d},[x0] // store context ldr x29,[sp],#16 ret #endif #endif // !OPENSSL_NO_ASM && defined(OPENSSL_AARCH64) && defined(__APPLE__)
mktmansour/MKT-KSA-Geolocation-Security
7,660
.cargo-home/registry/src/index.crates.io-1949cf8c6b5b557f/ring-0.17.14/pregenerated/aesv8-armx-win64.S
// This file is generated from a similarly-named Perl script in the BoringSSL // source tree. Do not edit by hand. #include <ring-core/asm_base.h> #if !defined(OPENSSL_NO_ASM) && defined(OPENSSL_AARCH64) && defined(_WIN32) #if __ARM_MAX_ARCH__>=7 .text .arch armv8-a+crypto .section .rodata .align 5 Lrcon: .long 0x01,0x01,0x01,0x01 .long 0x0c0f0e0d,0x0c0f0e0d,0x0c0f0e0d,0x0c0f0e0d // rotate-n-splat .long 0x1b,0x1b,0x1b,0x1b .text .globl aes_hw_set_encrypt_key .def aes_hw_set_encrypt_key .type 32 .endef .align 5 aes_hw_set_encrypt_key: Lenc_key: // Armv8.3-A PAuth: even though x30 is pushed to stack it is not popped later. AARCH64_VALID_CALL_TARGET stp x29,x30,[sp,#-16]! add x29,sp,#0 mov x3,#-2 cmp w1,#128 b.lt Lenc_key_abort cmp w1,#256 b.gt Lenc_key_abort tst w1,#0x3f b.ne Lenc_key_abort adrp x3,Lrcon add x3,x3,:lo12:Lrcon cmp w1,#192 eor v0.16b,v0.16b,v0.16b ld1 {v3.16b},[x0],#16 mov w1,#8 // reuse w1 ld1 {v1.4s,v2.4s},[x3],#32 b.lt Loop128 // 192-bit key support was removed. b L256 .align 4 Loop128: tbl v6.16b,{v3.16b},v2.16b ext v5.16b,v0.16b,v3.16b,#12 st1 {v3.4s},[x2],#16 aese v6.16b,v0.16b subs w1,w1,#1 eor v3.16b,v3.16b,v5.16b ext v5.16b,v0.16b,v5.16b,#12 eor v3.16b,v3.16b,v5.16b ext v5.16b,v0.16b,v5.16b,#12 eor v6.16b,v6.16b,v1.16b eor v3.16b,v3.16b,v5.16b shl v1.16b,v1.16b,#1 eor v3.16b,v3.16b,v6.16b b.ne Loop128 ld1 {v1.4s},[x3] tbl v6.16b,{v3.16b},v2.16b ext v5.16b,v0.16b,v3.16b,#12 st1 {v3.4s},[x2],#16 aese v6.16b,v0.16b eor v3.16b,v3.16b,v5.16b ext v5.16b,v0.16b,v5.16b,#12 eor v3.16b,v3.16b,v5.16b ext v5.16b,v0.16b,v5.16b,#12 eor v6.16b,v6.16b,v1.16b eor v3.16b,v3.16b,v5.16b shl v1.16b,v1.16b,#1 eor v3.16b,v3.16b,v6.16b tbl v6.16b,{v3.16b},v2.16b ext v5.16b,v0.16b,v3.16b,#12 st1 {v3.4s},[x2],#16 aese v6.16b,v0.16b eor v3.16b,v3.16b,v5.16b ext v5.16b,v0.16b,v5.16b,#12 eor v3.16b,v3.16b,v5.16b ext v5.16b,v0.16b,v5.16b,#12 eor v6.16b,v6.16b,v1.16b eor v3.16b,v3.16b,v5.16b eor v3.16b,v3.16b,v6.16b st1 {v3.4s},[x2] add x2,x2,#0x50 mov w12,#10 b Ldone // 192-bit key support was removed. .align 4 L256: ld1 {v4.16b},[x0] mov w1,#7 mov w12,#14 st1 {v3.4s},[x2],#16 Loop256: tbl v6.16b,{v4.16b},v2.16b ext v5.16b,v0.16b,v3.16b,#12 st1 {v4.4s},[x2],#16 aese v6.16b,v0.16b subs w1,w1,#1 eor v3.16b,v3.16b,v5.16b ext v5.16b,v0.16b,v5.16b,#12 eor v3.16b,v3.16b,v5.16b ext v5.16b,v0.16b,v5.16b,#12 eor v6.16b,v6.16b,v1.16b eor v3.16b,v3.16b,v5.16b shl v1.16b,v1.16b,#1 eor v3.16b,v3.16b,v6.16b st1 {v3.4s},[x2],#16 b.eq Ldone dup v6.4s,v3.s[3] // just splat ext v5.16b,v0.16b,v4.16b,#12 aese v6.16b,v0.16b eor v4.16b,v4.16b,v5.16b ext v5.16b,v0.16b,v5.16b,#12 eor v4.16b,v4.16b,v5.16b ext v5.16b,v0.16b,v5.16b,#12 eor v4.16b,v4.16b,v5.16b eor v4.16b,v4.16b,v6.16b b Loop256 Ldone: str w12,[x2] mov x3,#0 Lenc_key_abort: mov x0,x3 // return value ldr x29,[sp],#16 ret .globl aes_hw_ctr32_encrypt_blocks .def aes_hw_ctr32_encrypt_blocks .type 32 .endef .align 5 aes_hw_ctr32_encrypt_blocks: // Armv8.3-A PAuth: even though x30 is pushed to stack it is not popped later. AARCH64_VALID_CALL_TARGET stp x29,x30,[sp,#-16]! add x29,sp,#0 ldr w5,[x3,#240] ldr w8, [x4, #12] ld1 {v0.4s},[x4] ld1 {v16.4s,v17.4s},[x3] // load key schedule... sub w5,w5,#4 mov x12,#16 cmp x2,#2 add x7,x3,x5,lsl#4 // pointer to last 5 round keys sub w5,w5,#2 ld1 {v20.4s,v21.4s},[x7],#32 ld1 {v22.4s,v23.4s},[x7],#32 ld1 {v7.4s},[x7] add x7,x3,#32 mov w6,w5 csel x12,xzr,x12,lo // ARM Cortex-A57 and Cortex-A72 cores running in 32-bit mode are // affected by silicon errata #1742098 [0] and #1655431 [1], // respectively, where the second instruction of an aese/aesmc // instruction pair may execute twice if an interrupt is taken right // after the first instruction consumes an input register of which a // single 32-bit lane has been updated the last time it was modified. // // This function uses a counter in one 32-bit lane. The vmov lines // could write to v1.16b and v18.16b directly, but that trips this bugs. // We write to v6.16b and copy to the final register as a workaround. // // [0] ARM-EPM-049219 v23 Cortex-A57 MPCore Software Developers Errata Notice // [1] ARM-EPM-012079 v11.0 Cortex-A72 MPCore Software Developers Errata Notice #ifndef __AARCH64EB__ rev w8, w8 #endif add w10, w8, #1 orr v6.16b,v0.16b,v0.16b rev w10, w10 mov v6.s[3],w10 add w8, w8, #2 orr v1.16b,v6.16b,v6.16b b.ls Lctr32_tail rev w12, w8 mov v6.s[3],w12 sub x2,x2,#3 // bias orr v18.16b,v6.16b,v6.16b b Loop3x_ctr32 .align 4 Loop3x_ctr32: aese v0.16b,v16.16b aesmc v0.16b,v0.16b aese v1.16b,v16.16b aesmc v1.16b,v1.16b aese v18.16b,v16.16b aesmc v18.16b,v18.16b ld1 {v16.4s},[x7],#16 subs w6,w6,#2 aese v0.16b,v17.16b aesmc v0.16b,v0.16b aese v1.16b,v17.16b aesmc v1.16b,v1.16b aese v18.16b,v17.16b aesmc v18.16b,v18.16b ld1 {v17.4s},[x7],#16 b.gt Loop3x_ctr32 aese v0.16b,v16.16b aesmc v4.16b,v0.16b aese v1.16b,v16.16b aesmc v5.16b,v1.16b ld1 {v2.16b},[x0],#16 add w9,w8,#1 aese v18.16b,v16.16b aesmc v18.16b,v18.16b ld1 {v3.16b},[x0],#16 rev w9,w9 aese v4.16b,v17.16b aesmc v4.16b,v4.16b aese v5.16b,v17.16b aesmc v5.16b,v5.16b ld1 {v19.16b},[x0],#16 mov x7,x3 aese v18.16b,v17.16b aesmc v17.16b,v18.16b aese v4.16b,v20.16b aesmc v4.16b,v4.16b aese v5.16b,v20.16b aesmc v5.16b,v5.16b eor v2.16b,v2.16b,v7.16b add w10,w8,#2 aese v17.16b,v20.16b aesmc v17.16b,v17.16b eor v3.16b,v3.16b,v7.16b add w8,w8,#3 aese v4.16b,v21.16b aesmc v4.16b,v4.16b aese v5.16b,v21.16b aesmc v5.16b,v5.16b // Note the logic to update v0.16b, v1.16b, and v1.16b is written to work // around a bug in ARM Cortex-A57 and Cortex-A72 cores running in // 32-bit mode. See the comment above. eor v19.16b,v19.16b,v7.16b mov v6.s[3], w9 aese v17.16b,v21.16b aesmc v17.16b,v17.16b orr v0.16b,v6.16b,v6.16b rev w10,w10 aese v4.16b,v22.16b aesmc v4.16b,v4.16b mov v6.s[3], w10 rev w12,w8 aese v5.16b,v22.16b aesmc v5.16b,v5.16b orr v1.16b,v6.16b,v6.16b mov v6.s[3], w12 aese v17.16b,v22.16b aesmc v17.16b,v17.16b orr v18.16b,v6.16b,v6.16b subs x2,x2,#3 aese v4.16b,v23.16b aese v5.16b,v23.16b aese v17.16b,v23.16b eor v2.16b,v2.16b,v4.16b ld1 {v16.4s},[x7],#16 // re-pre-load rndkey[0] st1 {v2.16b},[x1],#16 eor v3.16b,v3.16b,v5.16b mov w6,w5 st1 {v3.16b},[x1],#16 eor v19.16b,v19.16b,v17.16b ld1 {v17.4s},[x7],#16 // re-pre-load rndkey[1] st1 {v19.16b},[x1],#16 b.hs Loop3x_ctr32 adds x2,x2,#3 b.eq Lctr32_done cmp x2,#1 mov x12,#16 csel x12,xzr,x12,eq Lctr32_tail: aese v0.16b,v16.16b aesmc v0.16b,v0.16b aese v1.16b,v16.16b aesmc v1.16b,v1.16b ld1 {v16.4s},[x7],#16 subs w6,w6,#2 aese v0.16b,v17.16b aesmc v0.16b,v0.16b aese v1.16b,v17.16b aesmc v1.16b,v1.16b ld1 {v17.4s},[x7],#16 b.gt Lctr32_tail aese v0.16b,v16.16b aesmc v0.16b,v0.16b aese v1.16b,v16.16b aesmc v1.16b,v1.16b aese v0.16b,v17.16b aesmc v0.16b,v0.16b aese v1.16b,v17.16b aesmc v1.16b,v1.16b ld1 {v2.16b},[x0],x12 aese v0.16b,v20.16b aesmc v0.16b,v0.16b aese v1.16b,v20.16b aesmc v1.16b,v1.16b ld1 {v3.16b},[x0] aese v0.16b,v21.16b aesmc v0.16b,v0.16b aese v1.16b,v21.16b aesmc v1.16b,v1.16b eor v2.16b,v2.16b,v7.16b aese v0.16b,v22.16b aesmc v0.16b,v0.16b aese v1.16b,v22.16b aesmc v1.16b,v1.16b eor v3.16b,v3.16b,v7.16b aese v0.16b,v23.16b aese v1.16b,v23.16b cmp x2,#1 eor v2.16b,v2.16b,v0.16b eor v3.16b,v3.16b,v1.16b st1 {v2.16b},[x1],#16 b.eq Lctr32_done st1 {v3.16b},[x1] Lctr32_done: ldr x29,[sp],#16 ret #endif #endif // !OPENSSL_NO_ASM && defined(OPENSSL_AARCH64) && defined(_WIN32)
mktmansour/MKT-KSA-Geolocation-Security
2,659
.cargo-home/registry/src/index.crates.io-1949cf8c6b5b557f/ring-0.17.14/third_party/fiat/asm/fiat_curve25519_adx_square.S
#include <ring-core/asm_base.h> #if !defined(OPENSSL_NO_ASM) && defined(OPENSSL_X86_64) && \ (defined(__APPLE__) || defined(__ELF__)) .intel_syntax noprefix .text #if defined(__APPLE__) .private_extern _fiat_curve25519_adx_square .global _fiat_curve25519_adx_square _fiat_curve25519_adx_square: #else .type fiat_curve25519_adx_square, @function .hidden fiat_curve25519_adx_square .global fiat_curve25519_adx_square fiat_curve25519_adx_square: #endif .cfi_startproc _CET_ENDBR push rbp .cfi_adjust_cfa_offset 8 .cfi_offset rbp, -16 mov rbp, rsp mov rdx, [ rsi + 0x0 ] mulx r10, rax, [ rsi + 0x8 ] mov rdx, [ rsi + 0x0 ] mulx rcx, r11, [ rsi + 0x10 ] xor rdx, rdx adox r11, r10 mov rdx, [ rsi + 0x0 ] mulx r9, r8, [ rsi + 0x18 ] mov rdx, [ rsi + 0x8 ] mov [ rsp - 0x80 ], rbx .cfi_offset rbx, -16-0x80 mulx rbx, r10, [ rsi + 0x18 ] adox r8, rcx mov [rsp - 0x48 ], rdi adox r10, r9 adcx rax, rax mov rdx, [ rsi + 0x10 ] mulx r9, rcx, [ rsi + 0x18 ] adox rcx, rbx mov rdx, [ rsi + 0x10 ] mulx rdi, rbx, [ rsi + 0x8 ] mov rdx, 0x0 adox r9, rdx mov [ rsp - 0x70 ], r12 .cfi_offset r12, -16-0x70 mov r12, -0x3 inc r12 adox rbx, r8 adox rdi, r10 adcx r11, r11 mov r8, rdx adox r8, rcx mov r10, rdx adox r10, r9 adcx rbx, rbx mov rdx, [ rsi + 0x0 ] mulx r9, rcx, rdx mov rdx, [ rsi + 0x8 ] mov [ rsp - 0x68 ], r13 .cfi_offset r13, -16-0x68 mov [ rsp - 0x60 ], r14 .cfi_offset r14, -16-0x60 mulx r14, r13, rdx seto dl inc r12 adox r9, rax adox r13, r11 adox r14, rbx adcx rdi, rdi mov al, dl mov rdx, [ rsi + 0x10 ] mulx rbx, r11, rdx adox r11, rdi adcx r8, r8 adox rbx, r8 adcx r10, r10 movzx rdx, al mov rdi, 0x0 adcx rdx, rdi movzx r8, al lea r8, [ r8 + rdx ] mov rdx, [ rsi + 0x18 ] mulx rdi, rax, rdx adox rax, r10 mov rdx, 0x26 mov [ rsp - 0x58 ], r15 .cfi_offset r15, -16-0x58 mulx r15, r10, r11 clc adcx r10, rcx mulx r11, rcx, rbx adox r8, rdi mulx rdi, rbx, r8 inc r12 adox rcx, r9 mulx r8, r9, rax adcx r15, rcx adox r9, r13 adcx r11, r9 adox rbx, r14 adox rdi, r12 adcx r8, rbx adc rdi, 0x0 mulx r14, r13, rdi test al, al mov rdi, [ rsp - 0x48 ] adox r13, r10 mov r14, r12 adox r14, r15 mov [ rdi + 0x8 ], r14 mov rax, r12 adox rax, r11 mov r10, r12 adox r10, r8 mov [ rdi + 0x10 ], rax mov rcx, r12 cmovo rcx, rdx adcx r13, rcx mov [ rdi + 0x0 ], r13 mov [ rdi + 0x18 ], r10 mov rbx, [ rsp - 0x80 ] .cfi_restore rbx mov r12, [ rsp - 0x70 ] .cfi_restore r12 mov r13, [ rsp - 0x68 ] .cfi_restore r13 mov r14, [ rsp - 0x60 ] .cfi_restore r14 mov r15, [ rsp - 0x58 ] .cfi_restore r15 pop rbp .cfi_restore rbp .cfi_adjust_cfa_offset -8 ret .cfi_endproc #if defined(__ELF__) .size fiat_curve25519_adx_square, .-fiat_curve25519_adx_square #endif #endif
mktmansour/MKT-KSA-Geolocation-Security
3,464
.cargo-home/registry/src/index.crates.io-1949cf8c6b5b557f/ring-0.17.14/third_party/fiat/asm/fiat_curve25519_adx_mul.S
#include <ring-core/asm_base.h> #if !defined(OPENSSL_NO_ASM) && defined(OPENSSL_X86_64) && \ (defined(__APPLE__) || defined(__ELF__)) .intel_syntax noprefix .text #if defined(__APPLE__) .private_extern _fiat_curve25519_adx_mul .global _fiat_curve25519_adx_mul _fiat_curve25519_adx_mul: #else .type fiat_curve25519_adx_mul, @function .hidden fiat_curve25519_adx_mul .global fiat_curve25519_adx_mul fiat_curve25519_adx_mul: #endif .cfi_startproc _CET_ENDBR push rbp .cfi_adjust_cfa_offset 8 .cfi_offset rbp, -16 mov rbp, rsp mov rax, rdx mov rdx, [ rsi + 0x18 ] mulx r11, r10, [ rax + 0x8 ] mov rdx, [ rax + 0x0 ] mov [ rsp - 0x58 ], r15 .cfi_offset r15, -16-0x58 mulx r8, rcx, [ rsi + 0x18 ] mov rdx, [ rsi + 0x8 ] mov [ rsp - 0x80 ], rbx .cfi_offset rbx, -16-0x80 mulx rbx, r9, [ rax + 0x18 ] mov rdx, [ rsi + 0x8 ] mov [ rsp - 0x70 ], r12 .cfi_offset r12, -16-0x70 mulx r15, r12, [ rax + 0x8 ] mov rdx, [ rsi + 0x0 ] mov [ rsp - 0x68 ], r13 .cfi_offset r13, -16-0x68 mov [ rsp - 0x60 ], r14 .cfi_offset r14, -16-0x60 mulx r14, r13, [ rax + 0x0 ] mov rdx, [ rax + 0x10 ] mov [ rsp - 0x18 ], r15 mov [ rsp - 0x50 ], rdi mulx rdi, r15, [ rsi + 0x0 ] mov rdx, [ rax + 0x18 ] mov [ rsp - 0x48 ], r13 mov [ rsp - 0x40 ], r9 mulx r9, r13, [ rsi + 0x0 ] test al, al adox rcx, rdi mov rdx, [ rsi + 0x10 ] mov [ rsp - 0x38 ], r13 mulx r13, rdi, [ rax + 0x8 ] adox r10, r9 mov rdx, 0x0 adox rbx, rdx adcx rdi, rcx adcx r8, r10 mov r9, rdx adcx r9, rbx mov rdx, [ rsi + 0x10 ] mulx r10, rcx, [ rax + 0x0 ] mov rdx, [ rsi + 0x0 ] mov [ rsp - 0x30 ], r15 mulx r15, rbx, [ rax + 0x8 ] mov rdx, -0x2 inc rdx adox rcx, r15 setc r15b clc adcx rcx, r12 adox r10, rdi mov rdx, [ rax + 0x10 ] mov [ rsp - 0x78 ], rcx mulx rcx, rdi, [ rsi + 0x10 ] adox rdi, r8 mov rdx, [ rax + 0x18 ] mov [ rsp - 0x28 ], rcx mulx rcx, r8, [ rsi + 0x10 ] mov rdx, [ rax + 0x10 ] mov [ rsp - 0x20 ], r8 mulx r12, r8, [ rsi + 0x18 ] adox r8, r9 mov rdx, [ rsi + 0x8 ] mov [ rsp - 0x10 ], r12 mulx r12, r9, [ rax + 0x10 ] movzx rdx, r15b lea rdx, [ rdx + rcx ] adcx r9, r10 adcx r13, rdi mov r15, 0x0 mov r10, r15 adox r10, rdx mov rdx, [ rax + 0x18 ] mulx rcx, rdi, [ rsi + 0x18 ] adox rcx, r15 adcx r11, r8 mov rdx, r15 adcx rdx, r10 adcx rcx, r15 mov r8, rdx mov rdx, [ rax + 0x0 ] mulx r15, r10, [ rsi + 0x8 ] test al, al adox r10, r14 adcx rbx, r10 adox r15, [ rsp - 0x78 ] adcx r15, [ rsp - 0x30 ] adox r9, [ rsp - 0x18 ] adcx r9, [ rsp - 0x38 ] adox r13, [ rsp - 0x40 ] adcx r12, r13 adox r11, [ rsp - 0x20 ] adcx r11, [ rsp - 0x28 ] mov rdx, 0x26 mulx rsi, r14, r12 adox rdi, r8 adcx rdi, [ rsp - 0x10 ] mulx r10, r8, r11 mov r13, 0x0 adox rcx, r13 adcx rcx, r13 mulx r11, r12, rdi xor rdi, rdi adox r8, rbx adox r12, r15 mulx rbx, r13, rcx adcx r14, [ rsp - 0x48 ] adox r13, r9 adox rbx, rdi adcx rsi, r8 adcx r10, r12 adcx r11, r13 adc rbx, 0x0 mulx r9, r15, rbx xor r9, r9 adox r15, r14 mov rdi, r9 adox rdi, rsi mov rcx, r9 adox rcx, r10 mov r8, [ rsp - 0x50 ] mov [ r8 + 0x8 ], rdi mov r12, r9 adox r12, r11 mov r14, r9 cmovo r14, rdx mov [ r8 + 0x18 ], r12 adcx r15, r14 mov [ r8 + 0x0 ], r15 mov [ r8 + 0x10 ], rcx mov rbx, [ rsp - 0x80 ] .cfi_restore rbx mov r12, [ rsp - 0x70 ] .cfi_restore r12 mov r13, [ rsp - 0x68 ] .cfi_restore r13 mov r14, [ rsp - 0x60 ] .cfi_restore r14 mov r15, [ rsp - 0x58 ] .cfi_restore r15 pop rbp .cfi_restore rbp .cfi_adjust_cfa_offset -8 ret .cfi_endproc #if defined(__ELF__) .size fiat_curve25519_adx_mul, .-fiat_curve25519_adx_mul #endif #endif
mktmansour/MKT-KSA-Geolocation-Security
62,534
.cargo-home/registry/src/index.crates.io-1949cf8c6b5b557f/ring-0.17.14/crypto/poly1305/poly1305_arm_asm.S
#include <ring-core/asm_base.h> #if !defined(OPENSSL_NO_ASM) && defined(OPENSSL_ARM) && defined(__ELF__) #pragma GCC diagnostic ignored "-Wlanguage-extension-token" # This implementation was taken from the public domain, neon2 version in # SUPERCOP by D. J. Bernstein and Peter Schwabe. # qhasm: int32 input_0 # qhasm: int32 input_1 # qhasm: int32 input_2 # qhasm: int32 input_3 # qhasm: stack32 input_4 # qhasm: stack32 input_5 # qhasm: stack32 input_6 # qhasm: stack32 input_7 # qhasm: int32 caller_r4 # qhasm: int32 caller_r5 # qhasm: int32 caller_r6 # qhasm: int32 caller_r7 # qhasm: int32 caller_r8 # qhasm: int32 caller_r9 # qhasm: int32 caller_r10 # qhasm: int32 caller_r11 # qhasm: int32 caller_r12 # qhasm: int32 caller_r14 # qhasm: reg128 caller_q4 # qhasm: reg128 caller_q5 # qhasm: reg128 caller_q6 # qhasm: reg128 caller_q7 # qhasm: startcode .fpu neon .text # qhasm: reg128 r0 # qhasm: reg128 r1 # qhasm: reg128 r2 # qhasm: reg128 r3 # qhasm: reg128 r4 # qhasm: reg128 x01 # qhasm: reg128 x23 # qhasm: reg128 x4 # qhasm: reg128 y0 # qhasm: reg128 y12 # qhasm: reg128 y34 # qhasm: reg128 5y12 # qhasm: reg128 5y34 # qhasm: stack128 y0_stack # qhasm: stack128 y12_stack # qhasm: stack128 y34_stack # qhasm: stack128 5y12_stack # qhasm: stack128 5y34_stack # qhasm: reg128 z0 # qhasm: reg128 z12 # qhasm: reg128 z34 # qhasm: reg128 5z12 # qhasm: reg128 5z34 # qhasm: stack128 z0_stack # qhasm: stack128 z12_stack # qhasm: stack128 z34_stack # qhasm: stack128 5z12_stack # qhasm: stack128 5z34_stack # qhasm: stack128 two24 # qhasm: int32 ptr # qhasm: reg128 c01 # qhasm: reg128 c23 # qhasm: reg128 d01 # qhasm: reg128 d23 # qhasm: reg128 t0 # qhasm: reg128 t1 # qhasm: reg128 t2 # qhasm: reg128 t3 # qhasm: reg128 t4 # qhasm: reg128 mask # qhasm: reg128 u0 # qhasm: reg128 u1 # qhasm: reg128 u2 # qhasm: reg128 u3 # qhasm: reg128 u4 # qhasm: reg128 v01 # qhasm: reg128 mid # qhasm: reg128 v23 # qhasm: reg128 v4 # qhasm: int32 len # qhasm: qpushenter crypto_onetimeauth_poly1305_neon2_blocks .align 4 .global openssl_poly1305_neon2_blocks .hidden openssl_poly1305_neon2_blocks .type openssl_poly1305_neon2_blocks STT_FUNC openssl_poly1305_neon2_blocks: vpush {q4,q5,q6,q7} mov r12,sp sub sp,sp,#192 bic sp,sp,#31 # qhasm: len = input_3 # asm 1: mov >len=int32#4,<input_3=int32#4 # asm 2: mov >len=r3,<input_3=r3 mov r3,r3 # qhasm: new y0 # qhasm: y0 = mem64[input_1]y0[1]; input_1 += 8 # asm 1: vld1.8 {<y0=reg128#1%bot},[<input_1=int32#2]! # asm 2: vld1.8 {<y0=d0},[<input_1=r1]! vld1.8 {d0},[r1]! # qhasm: y12 = mem128[input_1]; input_1 += 16 # asm 1: vld1.8 {>y12=reg128#2%bot->y12=reg128#2%top},[<input_1=int32#2]! # asm 2: vld1.8 {>y12=d2->y12=d3},[<input_1=r1]! vld1.8 {d2-d3},[r1]! # qhasm: y34 = mem128[input_1]; input_1 += 16 # asm 1: vld1.8 {>y34=reg128#3%bot->y34=reg128#3%top},[<input_1=int32#2]! # asm 2: vld1.8 {>y34=d4->y34=d5},[<input_1=r1]! vld1.8 {d4-d5},[r1]! # qhasm: input_1 += 8 # asm 1: add >input_1=int32#2,<input_1=int32#2,#8 # asm 2: add >input_1=r1,<input_1=r1,#8 add r1,r1,#8 # qhasm: new z0 # qhasm: z0 = mem64[input_1]z0[1]; input_1 += 8 # asm 1: vld1.8 {<z0=reg128#4%bot},[<input_1=int32#2]! # asm 2: vld1.8 {<z0=d6},[<input_1=r1]! vld1.8 {d6},[r1]! # qhasm: z12 = mem128[input_1]; input_1 += 16 # asm 1: vld1.8 {>z12=reg128#5%bot->z12=reg128#5%top},[<input_1=int32#2]! # asm 2: vld1.8 {>z12=d8->z12=d9},[<input_1=r1]! vld1.8 {d8-d9},[r1]! # qhasm: z34 = mem128[input_1]; input_1 += 16 # asm 1: vld1.8 {>z34=reg128#6%bot->z34=reg128#6%top},[<input_1=int32#2]! # asm 2: vld1.8 {>z34=d10->z34=d11},[<input_1=r1]! vld1.8 {d10-d11},[r1]! # qhasm: 2x mask = 0xffffffff # asm 1: vmov.i64 >mask=reg128#7,#0xffffffff # asm 2: vmov.i64 >mask=q6,#0xffffffff vmov.i64 q6,#0xffffffff # qhasm: 2x u4 = 0xff # asm 1: vmov.i64 >u4=reg128#8,#0xff # asm 2: vmov.i64 >u4=q7,#0xff vmov.i64 q7,#0xff # qhasm: x01 aligned= mem128[input_0];input_0+=16 # asm 1: vld1.8 {>x01=reg128#9%bot->x01=reg128#9%top},[<input_0=int32#1,: 128]! # asm 2: vld1.8 {>x01=d16->x01=d17},[<input_0=r0,: 128]! vld1.8 {d16-d17},[r0,: 128]! # qhasm: x23 aligned= mem128[input_0];input_0+=16 # asm 1: vld1.8 {>x23=reg128#10%bot->x23=reg128#10%top},[<input_0=int32#1,: 128]! # asm 2: vld1.8 {>x23=d18->x23=d19},[<input_0=r0,: 128]! vld1.8 {d18-d19},[r0,: 128]! # qhasm: x4 aligned= mem64[input_0]x4[1] # asm 1: vld1.8 {<x4=reg128#11%bot},[<input_0=int32#1,: 64] # asm 2: vld1.8 {<x4=d20},[<input_0=r0,: 64] vld1.8 {d20},[r0,: 64] # qhasm: input_0 -= 32 # asm 1: sub >input_0=int32#1,<input_0=int32#1,#32 # asm 2: sub >input_0=r0,<input_0=r0,#32 sub r0,r0,#32 # qhasm: 2x mask unsigned>>=6 # asm 1: vshr.u64 >mask=reg128#7,<mask=reg128#7,#6 # asm 2: vshr.u64 >mask=q6,<mask=q6,#6 vshr.u64 q6,q6,#6 # qhasm: 2x u4 unsigned>>= 7 # asm 1: vshr.u64 >u4=reg128#8,<u4=reg128#8,#7 # asm 2: vshr.u64 >u4=q7,<u4=q7,#7 vshr.u64 q7,q7,#7 # qhasm: 4x 5y12 = y12 << 2 # asm 1: vshl.i32 >5y12=reg128#12,<y12=reg128#2,#2 # asm 2: vshl.i32 >5y12=q11,<y12=q1,#2 vshl.i32 q11,q1,#2 # qhasm: 4x 5y34 = y34 << 2 # asm 1: vshl.i32 >5y34=reg128#13,<y34=reg128#3,#2 # asm 2: vshl.i32 >5y34=q12,<y34=q2,#2 vshl.i32 q12,q2,#2 # qhasm: 4x 5y12 += y12 # asm 1: vadd.i32 >5y12=reg128#12,<5y12=reg128#12,<y12=reg128#2 # asm 2: vadd.i32 >5y12=q11,<5y12=q11,<y12=q1 vadd.i32 q11,q11,q1 # qhasm: 4x 5y34 += y34 # asm 1: vadd.i32 >5y34=reg128#13,<5y34=reg128#13,<y34=reg128#3 # asm 2: vadd.i32 >5y34=q12,<5y34=q12,<y34=q2 vadd.i32 q12,q12,q2 # qhasm: 2x u4 <<= 24 # asm 1: vshl.i64 >u4=reg128#8,<u4=reg128#8,#24 # asm 2: vshl.i64 >u4=q7,<u4=q7,#24 vshl.i64 q7,q7,#24 # qhasm: 4x 5z12 = z12 << 2 # asm 1: vshl.i32 >5z12=reg128#14,<z12=reg128#5,#2 # asm 2: vshl.i32 >5z12=q13,<z12=q4,#2 vshl.i32 q13,q4,#2 # qhasm: 4x 5z34 = z34 << 2 # asm 1: vshl.i32 >5z34=reg128#15,<z34=reg128#6,#2 # asm 2: vshl.i32 >5z34=q14,<z34=q5,#2 vshl.i32 q14,q5,#2 # qhasm: 4x 5z12 += z12 # asm 1: vadd.i32 >5z12=reg128#14,<5z12=reg128#14,<z12=reg128#5 # asm 2: vadd.i32 >5z12=q13,<5z12=q13,<z12=q4 vadd.i32 q13,q13,q4 # qhasm: 4x 5z34 += z34 # asm 1: vadd.i32 >5z34=reg128#15,<5z34=reg128#15,<z34=reg128#6 # asm 2: vadd.i32 >5z34=q14,<5z34=q14,<z34=q5 vadd.i32 q14,q14,q5 # qhasm: new two24 # qhasm: new y0_stack # qhasm: new y12_stack # qhasm: new y34_stack # qhasm: new 5y12_stack # qhasm: new 5y34_stack # qhasm: new z0_stack # qhasm: new z12_stack # qhasm: new z34_stack # qhasm: new 5z12_stack # qhasm: new 5z34_stack # qhasm: ptr = &two24 # asm 1: lea >ptr=int32#2,<two24=stack128#1 # asm 2: lea >ptr=r1,<two24=[sp,#0] add r1,sp,#0 # qhasm: mem128[ptr] aligned= u4 # asm 1: vst1.8 {<u4=reg128#8%bot-<u4=reg128#8%top},[<ptr=int32#2,: 128] # asm 2: vst1.8 {<u4=d14-<u4=d15},[<ptr=r1,: 128] vst1.8 {d14-d15},[r1,: 128] # qhasm: r4 = u4 # asm 1: vmov >r4=reg128#16,<u4=reg128#8 # asm 2: vmov >r4=q15,<u4=q7 vmov q15,q7 # qhasm: r0 = u4 # asm 1: vmov >r0=reg128#8,<u4=reg128#8 # asm 2: vmov >r0=q7,<u4=q7 vmov q7,q7 # qhasm: ptr = &y0_stack # asm 1: lea >ptr=int32#2,<y0_stack=stack128#2 # asm 2: lea >ptr=r1,<y0_stack=[sp,#16] add r1,sp,#16 # qhasm: mem128[ptr] aligned= y0 # asm 1: vst1.8 {<y0=reg128#1%bot-<y0=reg128#1%top},[<ptr=int32#2,: 128] # asm 2: vst1.8 {<y0=d0-<y0=d1},[<ptr=r1,: 128] vst1.8 {d0-d1},[r1,: 128] # qhasm: ptr = &y12_stack # asm 1: lea >ptr=int32#2,<y12_stack=stack128#3 # asm 2: lea >ptr=r1,<y12_stack=[sp,#32] add r1,sp,#32 # qhasm: mem128[ptr] aligned= y12 # asm 1: vst1.8 {<y12=reg128#2%bot-<y12=reg128#2%top},[<ptr=int32#2,: 128] # asm 2: vst1.8 {<y12=d2-<y12=d3},[<ptr=r1,: 128] vst1.8 {d2-d3},[r1,: 128] # qhasm: ptr = &y34_stack # asm 1: lea >ptr=int32#2,<y34_stack=stack128#4 # asm 2: lea >ptr=r1,<y34_stack=[sp,#48] add r1,sp,#48 # qhasm: mem128[ptr] aligned= y34 # asm 1: vst1.8 {<y34=reg128#3%bot-<y34=reg128#3%top},[<ptr=int32#2,: 128] # asm 2: vst1.8 {<y34=d4-<y34=d5},[<ptr=r1,: 128] vst1.8 {d4-d5},[r1,: 128] # qhasm: ptr = &z0_stack # asm 1: lea >ptr=int32#2,<z0_stack=stack128#7 # asm 2: lea >ptr=r1,<z0_stack=[sp,#96] add r1,sp,#96 # qhasm: mem128[ptr] aligned= z0 # asm 1: vst1.8 {<z0=reg128#4%bot-<z0=reg128#4%top},[<ptr=int32#2,: 128] # asm 2: vst1.8 {<z0=d6-<z0=d7},[<ptr=r1,: 128] vst1.8 {d6-d7},[r1,: 128] # qhasm: ptr = &z12_stack # asm 1: lea >ptr=int32#2,<z12_stack=stack128#8 # asm 2: lea >ptr=r1,<z12_stack=[sp,#112] add r1,sp,#112 # qhasm: mem128[ptr] aligned= z12 # asm 1: vst1.8 {<z12=reg128#5%bot-<z12=reg128#5%top},[<ptr=int32#2,: 128] # asm 2: vst1.8 {<z12=d8-<z12=d9},[<ptr=r1,: 128] vst1.8 {d8-d9},[r1,: 128] # qhasm: ptr = &z34_stack # asm 1: lea >ptr=int32#2,<z34_stack=stack128#9 # asm 2: lea >ptr=r1,<z34_stack=[sp,#128] add r1,sp,#128 # qhasm: mem128[ptr] aligned= z34 # asm 1: vst1.8 {<z34=reg128#6%bot-<z34=reg128#6%top},[<ptr=int32#2,: 128] # asm 2: vst1.8 {<z34=d10-<z34=d11},[<ptr=r1,: 128] vst1.8 {d10-d11},[r1,: 128] # qhasm: ptr = &5y12_stack # asm 1: lea >ptr=int32#2,<5y12_stack=stack128#5 # asm 2: lea >ptr=r1,<5y12_stack=[sp,#64] add r1,sp,#64 # qhasm: mem128[ptr] aligned= 5y12 # asm 1: vst1.8 {<5y12=reg128#12%bot-<5y12=reg128#12%top},[<ptr=int32#2,: 128] # asm 2: vst1.8 {<5y12=d22-<5y12=d23},[<ptr=r1,: 128] vst1.8 {d22-d23},[r1,: 128] # qhasm: ptr = &5y34_stack # asm 1: lea >ptr=int32#2,<5y34_stack=stack128#6 # asm 2: lea >ptr=r1,<5y34_stack=[sp,#80] add r1,sp,#80 # qhasm: mem128[ptr] aligned= 5y34 # asm 1: vst1.8 {<5y34=reg128#13%bot-<5y34=reg128#13%top},[<ptr=int32#2,: 128] # asm 2: vst1.8 {<5y34=d24-<5y34=d25},[<ptr=r1,: 128] vst1.8 {d24-d25},[r1,: 128] # qhasm: ptr = &5z12_stack # asm 1: lea >ptr=int32#2,<5z12_stack=stack128#10 # asm 2: lea >ptr=r1,<5z12_stack=[sp,#144] add r1,sp,#144 # qhasm: mem128[ptr] aligned= 5z12 # asm 1: vst1.8 {<5z12=reg128#14%bot-<5z12=reg128#14%top},[<ptr=int32#2,: 128] # asm 2: vst1.8 {<5z12=d26-<5z12=d27},[<ptr=r1,: 128] vst1.8 {d26-d27},[r1,: 128] # qhasm: ptr = &5z34_stack # asm 1: lea >ptr=int32#2,<5z34_stack=stack128#11 # asm 2: lea >ptr=r1,<5z34_stack=[sp,#160] add r1,sp,#160 # qhasm: mem128[ptr] aligned= 5z34 # asm 1: vst1.8 {<5z34=reg128#15%bot-<5z34=reg128#15%top},[<ptr=int32#2,: 128] # asm 2: vst1.8 {<5z34=d28-<5z34=d29},[<ptr=r1,: 128] vst1.8 {d28-d29},[r1,: 128] # qhasm: unsigned>? len - 64 # asm 1: cmp <len=int32#4,#64 # asm 2: cmp <len=r3,#64 cmp r3,#64 # qhasm: goto below64bytes if !unsigned> bls ._below64bytes # qhasm: input_2 += 32 # asm 1: add >input_2=int32#2,<input_2=int32#3,#32 # asm 2: add >input_2=r1,<input_2=r2,#32 add r1,r2,#32 # qhasm: mainloop2: ._mainloop2: # qhasm: c01 = mem128[input_2];input_2+=16 # asm 1: vld1.8 {>c01=reg128#1%bot->c01=reg128#1%top},[<input_2=int32#2]! # asm 2: vld1.8 {>c01=d0->c01=d1},[<input_2=r1]! vld1.8 {d0-d1},[r1]! # qhasm: c23 = mem128[input_2];input_2+=16 # asm 1: vld1.8 {>c23=reg128#2%bot->c23=reg128#2%top},[<input_2=int32#2]! # asm 2: vld1.8 {>c23=d2->c23=d3},[<input_2=r1]! vld1.8 {d2-d3},[r1]! # qhasm: r4[0,1] += x01[0] unsigned* z34[2]; r4[2,3] += x01[1] unsigned* z34[3] # asm 1: vmlal.u32 <r4=reg128#16,<x01=reg128#9%bot,<z34=reg128#6%top # asm 2: vmlal.u32 <r4=q15,<x01=d16,<z34=d11 vmlal.u32 q15,d16,d11 # qhasm: ptr = &z12_stack # asm 1: lea >ptr=int32#3,<z12_stack=stack128#8 # asm 2: lea >ptr=r2,<z12_stack=[sp,#112] add r2,sp,#112 # qhasm: z12 aligned= mem128[ptr] # asm 1: vld1.8 {>z12=reg128#3%bot->z12=reg128#3%top},[<ptr=int32#3,: 128] # asm 2: vld1.8 {>z12=d4->z12=d5},[<ptr=r2,: 128] vld1.8 {d4-d5},[r2,: 128] # qhasm: r4[0,1] += x01[2] unsigned* z34[0]; r4[2,3] += x01[3] unsigned* z34[1] # asm 1: vmlal.u32 <r4=reg128#16,<x01=reg128#9%top,<z34=reg128#6%bot # asm 2: vmlal.u32 <r4=q15,<x01=d17,<z34=d10 vmlal.u32 q15,d17,d10 # qhasm: ptr = &z0_stack # asm 1: lea >ptr=int32#3,<z0_stack=stack128#7 # asm 2: lea >ptr=r2,<z0_stack=[sp,#96] add r2,sp,#96 # qhasm: z0 aligned= mem128[ptr] # asm 1: vld1.8 {>z0=reg128#4%bot->z0=reg128#4%top},[<ptr=int32#3,: 128] # asm 2: vld1.8 {>z0=d6->z0=d7},[<ptr=r2,: 128] vld1.8 {d6-d7},[r2,: 128] # qhasm: r4[0,1] += x23[0] unsigned* z12[2]; r4[2,3] += x23[1] unsigned* z12[3] # asm 1: vmlal.u32 <r4=reg128#16,<x23=reg128#10%bot,<z12=reg128#3%top # asm 2: vmlal.u32 <r4=q15,<x23=d18,<z12=d5 vmlal.u32 q15,d18,d5 # qhasm: c01 c23 = c01[0]c01[1]c01[2]c23[2]c23[0]c23[1]c01[3]c23[3] # asm 1: vtrn.32 <c01=reg128#1%top,<c23=reg128#2%top # asm 2: vtrn.32 <c01=d1,<c23=d3 vtrn.32 d1,d3 # qhasm: r4[0,1] += x23[2] unsigned* z12[0]; r4[2,3] += x23[3] unsigned* z12[1] # asm 1: vmlal.u32 <r4=reg128#16,<x23=reg128#10%top,<z12=reg128#3%bot # asm 2: vmlal.u32 <r4=q15,<x23=d19,<z12=d4 vmlal.u32 q15,d19,d4 # qhasm: r4[0,1] += x4[0] unsigned* z0[0]; r4[2,3] += x4[1] unsigned* z0[1] # asm 1: vmlal.u32 <r4=reg128#16,<x4=reg128#11%bot,<z0=reg128#4%bot # asm 2: vmlal.u32 <r4=q15,<x4=d20,<z0=d6 vmlal.u32 q15,d20,d6 # qhasm: r3[0,1] = c23[2]<<18; r3[2,3] = c23[3]<<18 # asm 1: vshll.u32 >r3=reg128#5,<c23=reg128#2%top,#18 # asm 2: vshll.u32 >r3=q4,<c23=d3,#18 vshll.u32 q4,d3,#18 # qhasm: c01 c23 = c01[0]c23[0]c01[2]c01[3]c01[1]c23[1]c23[2]c23[3] # asm 1: vtrn.32 <c01=reg128#1%bot,<c23=reg128#2%bot # asm 2: vtrn.32 <c01=d0,<c23=d2 vtrn.32 d0,d2 # qhasm: r3[0,1] += x01[0] unsigned* z34[0]; r3[2,3] += x01[1] unsigned* z34[1] # asm 1: vmlal.u32 <r3=reg128#5,<x01=reg128#9%bot,<z34=reg128#6%bot # asm 2: vmlal.u32 <r3=q4,<x01=d16,<z34=d10 vmlal.u32 q4,d16,d10 # qhasm: r3[0,1] += x01[2] unsigned* z12[2]; r3[2,3] += x01[3] unsigned* z12[3] # asm 1: vmlal.u32 <r3=reg128#5,<x01=reg128#9%top,<z12=reg128#3%top # asm 2: vmlal.u32 <r3=q4,<x01=d17,<z12=d5 vmlal.u32 q4,d17,d5 # qhasm: r0 = r0[1]c01[0]r0[2,3] # asm 1: vext.32 <r0=reg128#8%bot,<r0=reg128#8%bot,<c01=reg128#1%bot,#1 # asm 2: vext.32 <r0=d14,<r0=d14,<c01=d0,#1 vext.32 d14,d14,d0,#1 # qhasm: r3[0,1] += x23[0] unsigned* z12[0]; r3[2,3] += x23[1] unsigned* z12[1] # asm 1: vmlal.u32 <r3=reg128#5,<x23=reg128#10%bot,<z12=reg128#3%bot # asm 2: vmlal.u32 <r3=q4,<x23=d18,<z12=d4 vmlal.u32 q4,d18,d4 # qhasm: input_2 -= 64 # asm 1: sub >input_2=int32#2,<input_2=int32#2,#64 # asm 2: sub >input_2=r1,<input_2=r1,#64 sub r1,r1,#64 # qhasm: r3[0,1] += x23[2] unsigned* z0[0]; r3[2,3] += x23[3] unsigned* z0[1] # asm 1: vmlal.u32 <r3=reg128#5,<x23=reg128#10%top,<z0=reg128#4%bot # asm 2: vmlal.u32 <r3=q4,<x23=d19,<z0=d6 vmlal.u32 q4,d19,d6 # qhasm: ptr = &5z34_stack # asm 1: lea >ptr=int32#3,<5z34_stack=stack128#11 # asm 2: lea >ptr=r2,<5z34_stack=[sp,#160] add r2,sp,#160 # qhasm: 5z34 aligned= mem128[ptr] # asm 1: vld1.8 {>5z34=reg128#6%bot->5z34=reg128#6%top},[<ptr=int32#3,: 128] # asm 2: vld1.8 {>5z34=d10->5z34=d11},[<ptr=r2,: 128] vld1.8 {d10-d11},[r2,: 128] # qhasm: r3[0,1] += x4[0] unsigned* 5z34[2]; r3[2,3] += x4[1] unsigned* 5z34[3] # asm 1: vmlal.u32 <r3=reg128#5,<x4=reg128#11%bot,<5z34=reg128#6%top # asm 2: vmlal.u32 <r3=q4,<x4=d20,<5z34=d11 vmlal.u32 q4,d20,d11 # qhasm: r0 = r0[1]r0[0]r0[3]r0[2] # asm 1: vrev64.i32 >r0=reg128#8,<r0=reg128#8 # asm 2: vrev64.i32 >r0=q7,<r0=q7 vrev64.i32 q7,q7 # qhasm: r2[0,1] = c01[2]<<12; r2[2,3] = c01[3]<<12 # asm 1: vshll.u32 >r2=reg128#14,<c01=reg128#1%top,#12 # asm 2: vshll.u32 >r2=q13,<c01=d1,#12 vshll.u32 q13,d1,#12 # qhasm: d01 = mem128[input_2];input_2+=16 # asm 1: vld1.8 {>d01=reg128#12%bot->d01=reg128#12%top},[<input_2=int32#2]! # asm 2: vld1.8 {>d01=d22->d01=d23},[<input_2=r1]! vld1.8 {d22-d23},[r1]! # qhasm: r2[0,1] += x01[0] unsigned* z12[2]; r2[2,3] += x01[1] unsigned* z12[3] # asm 1: vmlal.u32 <r2=reg128#14,<x01=reg128#9%bot,<z12=reg128#3%top # asm 2: vmlal.u32 <r2=q13,<x01=d16,<z12=d5 vmlal.u32 q13,d16,d5 # qhasm: r2[0,1] += x01[2] unsigned* z12[0]; r2[2,3] += x01[3] unsigned* z12[1] # asm 1: vmlal.u32 <r2=reg128#14,<x01=reg128#9%top,<z12=reg128#3%bot # asm 2: vmlal.u32 <r2=q13,<x01=d17,<z12=d4 vmlal.u32 q13,d17,d4 # qhasm: r2[0,1] += x23[0] unsigned* z0[0]; r2[2,3] += x23[1] unsigned* z0[1] # asm 1: vmlal.u32 <r2=reg128#14,<x23=reg128#10%bot,<z0=reg128#4%bot # asm 2: vmlal.u32 <r2=q13,<x23=d18,<z0=d6 vmlal.u32 q13,d18,d6 # qhasm: r2[0,1] += x23[2] unsigned* 5z34[2]; r2[2,3] += x23[3] unsigned* 5z34[3] # asm 1: vmlal.u32 <r2=reg128#14,<x23=reg128#10%top,<5z34=reg128#6%top # asm 2: vmlal.u32 <r2=q13,<x23=d19,<5z34=d11 vmlal.u32 q13,d19,d11 # qhasm: r2[0,1] += x4[0] unsigned* 5z34[0]; r2[2,3] += x4[1] unsigned* 5z34[1] # asm 1: vmlal.u32 <r2=reg128#14,<x4=reg128#11%bot,<5z34=reg128#6%bot # asm 2: vmlal.u32 <r2=q13,<x4=d20,<5z34=d10 vmlal.u32 q13,d20,d10 # qhasm: r0 = r0[0,1]c01[1]r0[2] # asm 1: vext.32 <r0=reg128#8%top,<c01=reg128#1%bot,<r0=reg128#8%top,#1 # asm 2: vext.32 <r0=d15,<c01=d0,<r0=d15,#1 vext.32 d15,d0,d15,#1 # qhasm: r1[0,1] = c23[0]<<6; r1[2,3] = c23[1]<<6 # asm 1: vshll.u32 >r1=reg128#15,<c23=reg128#2%bot,#6 # asm 2: vshll.u32 >r1=q14,<c23=d2,#6 vshll.u32 q14,d2,#6 # qhasm: r1[0,1] += x01[0] unsigned* z12[0]; r1[2,3] += x01[1] unsigned* z12[1] # asm 1: vmlal.u32 <r1=reg128#15,<x01=reg128#9%bot,<z12=reg128#3%bot # asm 2: vmlal.u32 <r1=q14,<x01=d16,<z12=d4 vmlal.u32 q14,d16,d4 # qhasm: r1[0,1] += x01[2] unsigned* z0[0]; r1[2,3] += x01[3] unsigned* z0[1] # asm 1: vmlal.u32 <r1=reg128#15,<x01=reg128#9%top,<z0=reg128#4%bot # asm 2: vmlal.u32 <r1=q14,<x01=d17,<z0=d6 vmlal.u32 q14,d17,d6 # qhasm: r1[0,1] += x23[0] unsigned* 5z34[2]; r1[2,3] += x23[1] unsigned* 5z34[3] # asm 1: vmlal.u32 <r1=reg128#15,<x23=reg128#10%bot,<5z34=reg128#6%top # asm 2: vmlal.u32 <r1=q14,<x23=d18,<5z34=d11 vmlal.u32 q14,d18,d11 # qhasm: r1[0,1] += x23[2] unsigned* 5z34[0]; r1[2,3] += x23[3] unsigned* 5z34[1] # asm 1: vmlal.u32 <r1=reg128#15,<x23=reg128#10%top,<5z34=reg128#6%bot # asm 2: vmlal.u32 <r1=q14,<x23=d19,<5z34=d10 vmlal.u32 q14,d19,d10 # qhasm: ptr = &5z12_stack # asm 1: lea >ptr=int32#3,<5z12_stack=stack128#10 # asm 2: lea >ptr=r2,<5z12_stack=[sp,#144] add r2,sp,#144 # qhasm: 5z12 aligned= mem128[ptr] # asm 1: vld1.8 {>5z12=reg128#1%bot->5z12=reg128#1%top},[<ptr=int32#3,: 128] # asm 2: vld1.8 {>5z12=d0->5z12=d1},[<ptr=r2,: 128] vld1.8 {d0-d1},[r2,: 128] # qhasm: r1[0,1] += x4[0] unsigned* 5z12[2]; r1[2,3] += x4[1] unsigned* 5z12[3] # asm 1: vmlal.u32 <r1=reg128#15,<x4=reg128#11%bot,<5z12=reg128#1%top # asm 2: vmlal.u32 <r1=q14,<x4=d20,<5z12=d1 vmlal.u32 q14,d20,d1 # qhasm: d23 = mem128[input_2];input_2+=16 # asm 1: vld1.8 {>d23=reg128#2%bot->d23=reg128#2%top},[<input_2=int32#2]! # asm 2: vld1.8 {>d23=d2->d23=d3},[<input_2=r1]! vld1.8 {d2-d3},[r1]! # qhasm: input_2 += 32 # asm 1: add >input_2=int32#2,<input_2=int32#2,#32 # asm 2: add >input_2=r1,<input_2=r1,#32 add r1,r1,#32 # qhasm: r0[0,1] += x4[0] unsigned* 5z12[0]; r0[2,3] += x4[1] unsigned* 5z12[1] # asm 1: vmlal.u32 <r0=reg128#8,<x4=reg128#11%bot,<5z12=reg128#1%bot # asm 2: vmlal.u32 <r0=q7,<x4=d20,<5z12=d0 vmlal.u32 q7,d20,d0 # qhasm: r0[0,1] += x23[0] unsigned* 5z34[0]; r0[2,3] += x23[1] unsigned* 5z34[1] # asm 1: vmlal.u32 <r0=reg128#8,<x23=reg128#10%bot,<5z34=reg128#6%bot # asm 2: vmlal.u32 <r0=q7,<x23=d18,<5z34=d10 vmlal.u32 q7,d18,d10 # qhasm: d01 d23 = d01[0] d23[0] d01[1] d23[1] # asm 1: vswp <d23=reg128#2%bot,<d01=reg128#12%top # asm 2: vswp <d23=d2,<d01=d23 vswp d2,d23 # qhasm: r0[0,1] += x23[2] unsigned* 5z12[2]; r0[2,3] += x23[3] unsigned* 5z12[3] # asm 1: vmlal.u32 <r0=reg128#8,<x23=reg128#10%top,<5z12=reg128#1%top # asm 2: vmlal.u32 <r0=q7,<x23=d19,<5z12=d1 vmlal.u32 q7,d19,d1 # qhasm: r0[0,1] += x01[0] unsigned* z0[0]; r0[2,3] += x01[1] unsigned* z0[1] # asm 1: vmlal.u32 <r0=reg128#8,<x01=reg128#9%bot,<z0=reg128#4%bot # asm 2: vmlal.u32 <r0=q7,<x01=d16,<z0=d6 vmlal.u32 q7,d16,d6 # qhasm: new mid # qhasm: 2x v4 = d23 unsigned>> 40 # asm 1: vshr.u64 >v4=reg128#4,<d23=reg128#2,#40 # asm 2: vshr.u64 >v4=q3,<d23=q1,#40 vshr.u64 q3,q1,#40 # qhasm: mid = d01[1]d23[0] mid[2,3] # asm 1: vext.32 <mid=reg128#1%bot,<d01=reg128#12%bot,<d23=reg128#2%bot,#1 # asm 2: vext.32 <mid=d0,<d01=d22,<d23=d2,#1 vext.32 d0,d22,d2,#1 # qhasm: new v23 # qhasm: v23[2] = d23[0,1] unsigned>> 14; v23[3] = d23[2,3] unsigned>> 14 # asm 1: vshrn.u64 <v23=reg128#10%top,<d23=reg128#2,#14 # asm 2: vshrn.u64 <v23=d19,<d23=q1,#14 vshrn.u64 d19,q1,#14 # qhasm: mid = mid[0,1] d01[3]d23[2] # asm 1: vext.32 <mid=reg128#1%top,<d01=reg128#12%top,<d23=reg128#2%top,#1 # asm 2: vext.32 <mid=d1,<d01=d23,<d23=d3,#1 vext.32 d1,d23,d3,#1 # qhasm: new v01 # qhasm: v01[2] = d01[0,1] unsigned>> 26; v01[3] = d01[2,3] unsigned>> 26 # asm 1: vshrn.u64 <v01=reg128#11%top,<d01=reg128#12,#26 # asm 2: vshrn.u64 <v01=d21,<d01=q11,#26 vshrn.u64 d21,q11,#26 # qhasm: v01 = d01[1]d01[0] v01[2,3] # asm 1: vext.32 <v01=reg128#11%bot,<d01=reg128#12%bot,<d01=reg128#12%bot,#1 # asm 2: vext.32 <v01=d20,<d01=d22,<d01=d22,#1 vext.32 d20,d22,d22,#1 # qhasm: r0[0,1] += x01[2] unsigned* 5z34[2]; r0[2,3] += x01[3] unsigned* 5z34[3] # asm 1: vmlal.u32 <r0=reg128#8,<x01=reg128#9%top,<5z34=reg128#6%top # asm 2: vmlal.u32 <r0=q7,<x01=d17,<5z34=d11 vmlal.u32 q7,d17,d11 # qhasm: v01 = v01[1]d01[2] v01[2,3] # asm 1: vext.32 <v01=reg128#11%bot,<v01=reg128#11%bot,<d01=reg128#12%top,#1 # asm 2: vext.32 <v01=d20,<v01=d20,<d01=d23,#1 vext.32 d20,d20,d23,#1 # qhasm: v23[0] = mid[0,1] unsigned>> 20; v23[1] = mid[2,3] unsigned>> 20 # asm 1: vshrn.u64 <v23=reg128#10%bot,<mid=reg128#1,#20 # asm 2: vshrn.u64 <v23=d18,<mid=q0,#20 vshrn.u64 d18,q0,#20 # qhasm: v4 = v4[0]v4[2]v4[1]v4[3] # asm 1: vtrn.32 <v4=reg128#4%bot,<v4=reg128#4%top # asm 2: vtrn.32 <v4=d6,<v4=d7 vtrn.32 d6,d7 # qhasm: 4x v01 &= 0x03ffffff # asm 1: vand.i32 <v01=reg128#11,#0x03ffffff # asm 2: vand.i32 <v01=q10,#0x03ffffff vand.i32 q10,#0x03ffffff # qhasm: ptr = &y34_stack # asm 1: lea >ptr=int32#3,<y34_stack=stack128#4 # asm 2: lea >ptr=r2,<y34_stack=[sp,#48] add r2,sp,#48 # qhasm: y34 aligned= mem128[ptr] # asm 1: vld1.8 {>y34=reg128#3%bot->y34=reg128#3%top},[<ptr=int32#3,: 128] # asm 2: vld1.8 {>y34=d4->y34=d5},[<ptr=r2,: 128] vld1.8 {d4-d5},[r2,: 128] # qhasm: 4x v23 &= 0x03ffffff # asm 1: vand.i32 <v23=reg128#10,#0x03ffffff # asm 2: vand.i32 <v23=q9,#0x03ffffff vand.i32 q9,#0x03ffffff # qhasm: ptr = &y12_stack # asm 1: lea >ptr=int32#3,<y12_stack=stack128#3 # asm 2: lea >ptr=r2,<y12_stack=[sp,#32] add r2,sp,#32 # qhasm: y12 aligned= mem128[ptr] # asm 1: vld1.8 {>y12=reg128#2%bot->y12=reg128#2%top},[<ptr=int32#3,: 128] # asm 2: vld1.8 {>y12=d2->y12=d3},[<ptr=r2,: 128] vld1.8 {d2-d3},[r2,: 128] # qhasm: 4x v4 |= 0x01000000 # asm 1: vorr.i32 <v4=reg128#4,#0x01000000 # asm 2: vorr.i32 <v4=q3,#0x01000000 vorr.i32 q3,#0x01000000 # qhasm: ptr = &y0_stack # asm 1: lea >ptr=int32#3,<y0_stack=stack128#2 # asm 2: lea >ptr=r2,<y0_stack=[sp,#16] add r2,sp,#16 # qhasm: y0 aligned= mem128[ptr] # asm 1: vld1.8 {>y0=reg128#1%bot->y0=reg128#1%top},[<ptr=int32#3,: 128] # asm 2: vld1.8 {>y0=d0->y0=d1},[<ptr=r2,: 128] vld1.8 {d0-d1},[r2,: 128] # qhasm: r4[0,1] += v01[0] unsigned* y34[2]; r4[2,3] += v01[1] unsigned* y34[3] # asm 1: vmlal.u32 <r4=reg128#16,<v01=reg128#11%bot,<y34=reg128#3%top # asm 2: vmlal.u32 <r4=q15,<v01=d20,<y34=d5 vmlal.u32 q15,d20,d5 # qhasm: r4[0,1] += v01[2] unsigned* y34[0]; r4[2,3] += v01[3] unsigned* y34[1] # asm 1: vmlal.u32 <r4=reg128#16,<v01=reg128#11%top,<y34=reg128#3%bot # asm 2: vmlal.u32 <r4=q15,<v01=d21,<y34=d4 vmlal.u32 q15,d21,d4 # qhasm: r4[0,1] += v23[0] unsigned* y12[2]; r4[2,3] += v23[1] unsigned* y12[3] # asm 1: vmlal.u32 <r4=reg128#16,<v23=reg128#10%bot,<y12=reg128#2%top # asm 2: vmlal.u32 <r4=q15,<v23=d18,<y12=d3 vmlal.u32 q15,d18,d3 # qhasm: r4[0,1] += v23[2] unsigned* y12[0]; r4[2,3] += v23[3] unsigned* y12[1] # asm 1: vmlal.u32 <r4=reg128#16,<v23=reg128#10%top,<y12=reg128#2%bot # asm 2: vmlal.u32 <r4=q15,<v23=d19,<y12=d2 vmlal.u32 q15,d19,d2 # qhasm: r4[0,1] += v4[0] unsigned* y0[0]; r4[2,3] += v4[1] unsigned* y0[1] # asm 1: vmlal.u32 <r4=reg128#16,<v4=reg128#4%bot,<y0=reg128#1%bot # asm 2: vmlal.u32 <r4=q15,<v4=d6,<y0=d0 vmlal.u32 q15,d6,d0 # qhasm: ptr = &5y34_stack # asm 1: lea >ptr=int32#3,<5y34_stack=stack128#6 # asm 2: lea >ptr=r2,<5y34_stack=[sp,#80] add r2,sp,#80 # qhasm: 5y34 aligned= mem128[ptr] # asm 1: vld1.8 {>5y34=reg128#13%bot->5y34=reg128#13%top},[<ptr=int32#3,: 128] # asm 2: vld1.8 {>5y34=d24->5y34=d25},[<ptr=r2,: 128] vld1.8 {d24-d25},[r2,: 128] # qhasm: r3[0,1] += v01[0] unsigned* y34[0]; r3[2,3] += v01[1] unsigned* y34[1] # asm 1: vmlal.u32 <r3=reg128#5,<v01=reg128#11%bot,<y34=reg128#3%bot # asm 2: vmlal.u32 <r3=q4,<v01=d20,<y34=d4 vmlal.u32 q4,d20,d4 # qhasm: r3[0,1] += v01[2] unsigned* y12[2]; r3[2,3] += v01[3] unsigned* y12[3] # asm 1: vmlal.u32 <r3=reg128#5,<v01=reg128#11%top,<y12=reg128#2%top # asm 2: vmlal.u32 <r3=q4,<v01=d21,<y12=d3 vmlal.u32 q4,d21,d3 # qhasm: r3[0,1] += v23[0] unsigned* y12[0]; r3[2,3] += v23[1] unsigned* y12[1] # asm 1: vmlal.u32 <r3=reg128#5,<v23=reg128#10%bot,<y12=reg128#2%bot # asm 2: vmlal.u32 <r3=q4,<v23=d18,<y12=d2 vmlal.u32 q4,d18,d2 # qhasm: r3[0,1] += v23[2] unsigned* y0[0]; r3[2,3] += v23[3] unsigned* y0[1] # asm 1: vmlal.u32 <r3=reg128#5,<v23=reg128#10%top,<y0=reg128#1%bot # asm 2: vmlal.u32 <r3=q4,<v23=d19,<y0=d0 vmlal.u32 q4,d19,d0 # qhasm: r3[0,1] += v4[0] unsigned* 5y34[2]; r3[2,3] += v4[1] unsigned* 5y34[3] # asm 1: vmlal.u32 <r3=reg128#5,<v4=reg128#4%bot,<5y34=reg128#13%top # asm 2: vmlal.u32 <r3=q4,<v4=d6,<5y34=d25 vmlal.u32 q4,d6,d25 # qhasm: ptr = &5y12_stack # asm 1: lea >ptr=int32#3,<5y12_stack=stack128#5 # asm 2: lea >ptr=r2,<5y12_stack=[sp,#64] add r2,sp,#64 # qhasm: 5y12 aligned= mem128[ptr] # asm 1: vld1.8 {>5y12=reg128#12%bot->5y12=reg128#12%top},[<ptr=int32#3,: 128] # asm 2: vld1.8 {>5y12=d22->5y12=d23},[<ptr=r2,: 128] vld1.8 {d22-d23},[r2,: 128] # qhasm: r0[0,1] += v4[0] unsigned* 5y12[0]; r0[2,3] += v4[1] unsigned* 5y12[1] # asm 1: vmlal.u32 <r0=reg128#8,<v4=reg128#4%bot,<5y12=reg128#12%bot # asm 2: vmlal.u32 <r0=q7,<v4=d6,<5y12=d22 vmlal.u32 q7,d6,d22 # qhasm: r0[0,1] += v23[0] unsigned* 5y34[0]; r0[2,3] += v23[1] unsigned* 5y34[1] # asm 1: vmlal.u32 <r0=reg128#8,<v23=reg128#10%bot,<5y34=reg128#13%bot # asm 2: vmlal.u32 <r0=q7,<v23=d18,<5y34=d24 vmlal.u32 q7,d18,d24 # qhasm: r0[0,1] += v23[2] unsigned* 5y12[2]; r0[2,3] += v23[3] unsigned* 5y12[3] # asm 1: vmlal.u32 <r0=reg128#8,<v23=reg128#10%top,<5y12=reg128#12%top # asm 2: vmlal.u32 <r0=q7,<v23=d19,<5y12=d23 vmlal.u32 q7,d19,d23 # qhasm: r0[0,1] += v01[0] unsigned* y0[0]; r0[2,3] += v01[1] unsigned* y0[1] # asm 1: vmlal.u32 <r0=reg128#8,<v01=reg128#11%bot,<y0=reg128#1%bot # asm 2: vmlal.u32 <r0=q7,<v01=d20,<y0=d0 vmlal.u32 q7,d20,d0 # qhasm: r0[0,1] += v01[2] unsigned* 5y34[2]; r0[2,3] += v01[3] unsigned* 5y34[3] # asm 1: vmlal.u32 <r0=reg128#8,<v01=reg128#11%top,<5y34=reg128#13%top # asm 2: vmlal.u32 <r0=q7,<v01=d21,<5y34=d25 vmlal.u32 q7,d21,d25 # qhasm: r1[0,1] += v01[0] unsigned* y12[0]; r1[2,3] += v01[1] unsigned* y12[1] # asm 1: vmlal.u32 <r1=reg128#15,<v01=reg128#11%bot,<y12=reg128#2%bot # asm 2: vmlal.u32 <r1=q14,<v01=d20,<y12=d2 vmlal.u32 q14,d20,d2 # qhasm: r1[0,1] += v01[2] unsigned* y0[0]; r1[2,3] += v01[3] unsigned* y0[1] # asm 1: vmlal.u32 <r1=reg128#15,<v01=reg128#11%top,<y0=reg128#1%bot # asm 2: vmlal.u32 <r1=q14,<v01=d21,<y0=d0 vmlal.u32 q14,d21,d0 # qhasm: r1[0,1] += v23[0] unsigned* 5y34[2]; r1[2,3] += v23[1] unsigned* 5y34[3] # asm 1: vmlal.u32 <r1=reg128#15,<v23=reg128#10%bot,<5y34=reg128#13%top # asm 2: vmlal.u32 <r1=q14,<v23=d18,<5y34=d25 vmlal.u32 q14,d18,d25 # qhasm: r1[0,1] += v23[2] unsigned* 5y34[0]; r1[2,3] += v23[3] unsigned* 5y34[1] # asm 1: vmlal.u32 <r1=reg128#15,<v23=reg128#10%top,<5y34=reg128#13%bot # asm 2: vmlal.u32 <r1=q14,<v23=d19,<5y34=d24 vmlal.u32 q14,d19,d24 # qhasm: r1[0,1] += v4[0] unsigned* 5y12[2]; r1[2,3] += v4[1] unsigned* 5y12[3] # asm 1: vmlal.u32 <r1=reg128#15,<v4=reg128#4%bot,<5y12=reg128#12%top # asm 2: vmlal.u32 <r1=q14,<v4=d6,<5y12=d23 vmlal.u32 q14,d6,d23 # qhasm: r2[0,1] += v01[0] unsigned* y12[2]; r2[2,3] += v01[1] unsigned* y12[3] # asm 1: vmlal.u32 <r2=reg128#14,<v01=reg128#11%bot,<y12=reg128#2%top # asm 2: vmlal.u32 <r2=q13,<v01=d20,<y12=d3 vmlal.u32 q13,d20,d3 # qhasm: r2[0,1] += v01[2] unsigned* y12[0]; r2[2,3] += v01[3] unsigned* y12[1] # asm 1: vmlal.u32 <r2=reg128#14,<v01=reg128#11%top,<y12=reg128#2%bot # asm 2: vmlal.u32 <r2=q13,<v01=d21,<y12=d2 vmlal.u32 q13,d21,d2 # qhasm: r2[0,1] += v23[0] unsigned* y0[0]; r2[2,3] += v23[1] unsigned* y0[1] # asm 1: vmlal.u32 <r2=reg128#14,<v23=reg128#10%bot,<y0=reg128#1%bot # asm 2: vmlal.u32 <r2=q13,<v23=d18,<y0=d0 vmlal.u32 q13,d18,d0 # qhasm: r2[0,1] += v23[2] unsigned* 5y34[2]; r2[2,3] += v23[3] unsigned* 5y34[3] # asm 1: vmlal.u32 <r2=reg128#14,<v23=reg128#10%top,<5y34=reg128#13%top # asm 2: vmlal.u32 <r2=q13,<v23=d19,<5y34=d25 vmlal.u32 q13,d19,d25 # qhasm: r2[0,1] += v4[0] unsigned* 5y34[0]; r2[2,3] += v4[1] unsigned* 5y34[1] # asm 1: vmlal.u32 <r2=reg128#14,<v4=reg128#4%bot,<5y34=reg128#13%bot # asm 2: vmlal.u32 <r2=q13,<v4=d6,<5y34=d24 vmlal.u32 q13,d6,d24 # qhasm: ptr = &two24 # asm 1: lea >ptr=int32#3,<two24=stack128#1 # asm 2: lea >ptr=r2,<two24=[sp,#0] add r2,sp,#0 # qhasm: 2x t1 = r0 unsigned>> 26 # asm 1: vshr.u64 >t1=reg128#4,<r0=reg128#8,#26 # asm 2: vshr.u64 >t1=q3,<r0=q7,#26 vshr.u64 q3,q7,#26 # qhasm: len -= 64 # asm 1: sub >len=int32#4,<len=int32#4,#64 # asm 2: sub >len=r3,<len=r3,#64 sub r3,r3,#64 # qhasm: r0 &= mask # asm 1: vand >r0=reg128#6,<r0=reg128#8,<mask=reg128#7 # asm 2: vand >r0=q5,<r0=q7,<mask=q6 vand q5,q7,q6 # qhasm: 2x r1 += t1 # asm 1: vadd.i64 >r1=reg128#4,<r1=reg128#15,<t1=reg128#4 # asm 2: vadd.i64 >r1=q3,<r1=q14,<t1=q3 vadd.i64 q3,q14,q3 # qhasm: 2x t4 = r3 unsigned>> 26 # asm 1: vshr.u64 >t4=reg128#8,<r3=reg128#5,#26 # asm 2: vshr.u64 >t4=q7,<r3=q4,#26 vshr.u64 q7,q4,#26 # qhasm: r3 &= mask # asm 1: vand >r3=reg128#5,<r3=reg128#5,<mask=reg128#7 # asm 2: vand >r3=q4,<r3=q4,<mask=q6 vand q4,q4,q6 # qhasm: 2x x4 = r4 + t4 # asm 1: vadd.i64 >x4=reg128#8,<r4=reg128#16,<t4=reg128#8 # asm 2: vadd.i64 >x4=q7,<r4=q15,<t4=q7 vadd.i64 q7,q15,q7 # qhasm: r4 aligned= mem128[ptr] # asm 1: vld1.8 {>r4=reg128#16%bot->r4=reg128#16%top},[<ptr=int32#3,: 128] # asm 2: vld1.8 {>r4=d30->r4=d31},[<ptr=r2,: 128] vld1.8 {d30-d31},[r2,: 128] # qhasm: 2x t2 = r1 unsigned>> 26 # asm 1: vshr.u64 >t2=reg128#9,<r1=reg128#4,#26 # asm 2: vshr.u64 >t2=q8,<r1=q3,#26 vshr.u64 q8,q3,#26 # qhasm: r1 &= mask # asm 1: vand >r1=reg128#4,<r1=reg128#4,<mask=reg128#7 # asm 2: vand >r1=q3,<r1=q3,<mask=q6 vand q3,q3,q6 # qhasm: 2x t0 = x4 unsigned>> 26 # asm 1: vshr.u64 >t0=reg128#10,<x4=reg128#8,#26 # asm 2: vshr.u64 >t0=q9,<x4=q7,#26 vshr.u64 q9,q7,#26 # qhasm: 2x r2 += t2 # asm 1: vadd.i64 >r2=reg128#9,<r2=reg128#14,<t2=reg128#9 # asm 2: vadd.i64 >r2=q8,<r2=q13,<t2=q8 vadd.i64 q8,q13,q8 # qhasm: x4 &= mask # asm 1: vand >x4=reg128#11,<x4=reg128#8,<mask=reg128#7 # asm 2: vand >x4=q10,<x4=q7,<mask=q6 vand q10,q7,q6 # qhasm: 2x x01 = r0 + t0 # asm 1: vadd.i64 >x01=reg128#6,<r0=reg128#6,<t0=reg128#10 # asm 2: vadd.i64 >x01=q5,<r0=q5,<t0=q9 vadd.i64 q5,q5,q9 # qhasm: r0 aligned= mem128[ptr] # asm 1: vld1.8 {>r0=reg128#8%bot->r0=reg128#8%top},[<ptr=int32#3,: 128] # asm 2: vld1.8 {>r0=d14->r0=d15},[<ptr=r2,: 128] vld1.8 {d14-d15},[r2,: 128] # qhasm: ptr = &z34_stack # asm 1: lea >ptr=int32#3,<z34_stack=stack128#9 # asm 2: lea >ptr=r2,<z34_stack=[sp,#128] add r2,sp,#128 # qhasm: 2x t0 <<= 2 # asm 1: vshl.i64 >t0=reg128#10,<t0=reg128#10,#2 # asm 2: vshl.i64 >t0=q9,<t0=q9,#2 vshl.i64 q9,q9,#2 # qhasm: 2x t3 = r2 unsigned>> 26 # asm 1: vshr.u64 >t3=reg128#14,<r2=reg128#9,#26 # asm 2: vshr.u64 >t3=q13,<r2=q8,#26 vshr.u64 q13,q8,#26 # qhasm: 2x x01 += t0 # asm 1: vadd.i64 >x01=reg128#15,<x01=reg128#6,<t0=reg128#10 # asm 2: vadd.i64 >x01=q14,<x01=q5,<t0=q9 vadd.i64 q14,q5,q9 # qhasm: z34 aligned= mem128[ptr] # asm 1: vld1.8 {>z34=reg128#6%bot->z34=reg128#6%top},[<ptr=int32#3,: 128] # asm 2: vld1.8 {>z34=d10->z34=d11},[<ptr=r2,: 128] vld1.8 {d10-d11},[r2,: 128] # qhasm: x23 = r2 & mask # asm 1: vand >x23=reg128#10,<r2=reg128#9,<mask=reg128#7 # asm 2: vand >x23=q9,<r2=q8,<mask=q6 vand q9,q8,q6 # qhasm: 2x r3 += t3 # asm 1: vadd.i64 >r3=reg128#5,<r3=reg128#5,<t3=reg128#14 # asm 2: vadd.i64 >r3=q4,<r3=q4,<t3=q13 vadd.i64 q4,q4,q13 # qhasm: input_2 += 32 # asm 1: add >input_2=int32#2,<input_2=int32#2,#32 # asm 2: add >input_2=r1,<input_2=r1,#32 add r1,r1,#32 # qhasm: 2x t1 = x01 unsigned>> 26 # asm 1: vshr.u64 >t1=reg128#14,<x01=reg128#15,#26 # asm 2: vshr.u64 >t1=q13,<x01=q14,#26 vshr.u64 q13,q14,#26 # qhasm: x23 = x23[0,2,1,3] # asm 1: vtrn.32 <x23=reg128#10%bot,<x23=reg128#10%top # asm 2: vtrn.32 <x23=d18,<x23=d19 vtrn.32 d18,d19 # qhasm: x01 = x01 & mask # asm 1: vand >x01=reg128#9,<x01=reg128#15,<mask=reg128#7 # asm 2: vand >x01=q8,<x01=q14,<mask=q6 vand q8,q14,q6 # qhasm: 2x r1 += t1 # asm 1: vadd.i64 >r1=reg128#4,<r1=reg128#4,<t1=reg128#14 # asm 2: vadd.i64 >r1=q3,<r1=q3,<t1=q13 vadd.i64 q3,q3,q13 # qhasm: 2x t4 = r3 unsigned>> 26 # asm 1: vshr.u64 >t4=reg128#14,<r3=reg128#5,#26 # asm 2: vshr.u64 >t4=q13,<r3=q4,#26 vshr.u64 q13,q4,#26 # qhasm: x01 = x01[0,2,1,3] # asm 1: vtrn.32 <x01=reg128#9%bot,<x01=reg128#9%top # asm 2: vtrn.32 <x01=d16,<x01=d17 vtrn.32 d16,d17 # qhasm: r3 &= mask # asm 1: vand >r3=reg128#5,<r3=reg128#5,<mask=reg128#7 # asm 2: vand >r3=q4,<r3=q4,<mask=q6 vand q4,q4,q6 # qhasm: r1 = r1[0,2,1,3] # asm 1: vtrn.32 <r1=reg128#4%bot,<r1=reg128#4%top # asm 2: vtrn.32 <r1=d6,<r1=d7 vtrn.32 d6,d7 # qhasm: 2x x4 += t4 # asm 1: vadd.i64 >x4=reg128#11,<x4=reg128#11,<t4=reg128#14 # asm 2: vadd.i64 >x4=q10,<x4=q10,<t4=q13 vadd.i64 q10,q10,q13 # qhasm: r3 = r3[0,2,1,3] # asm 1: vtrn.32 <r3=reg128#5%bot,<r3=reg128#5%top # asm 2: vtrn.32 <r3=d8,<r3=d9 vtrn.32 d8,d9 # qhasm: x01 = x01[0,1] r1[0,1] # asm 1: vext.32 <x01=reg128#9%top,<r1=reg128#4%bot,<r1=reg128#4%bot,#0 # asm 2: vext.32 <x01=d17,<r1=d6,<r1=d6,#0 vext.32 d17,d6,d6,#0 # qhasm: x23 = x23[0,1] r3[0,1] # asm 1: vext.32 <x23=reg128#10%top,<r3=reg128#5%bot,<r3=reg128#5%bot,#0 # asm 2: vext.32 <x23=d19,<r3=d8,<r3=d8,#0 vext.32 d19,d8,d8,#0 # qhasm: x4 = x4[0,2,1,3] # asm 1: vtrn.32 <x4=reg128#11%bot,<x4=reg128#11%top # asm 2: vtrn.32 <x4=d20,<x4=d21 vtrn.32 d20,d21 # qhasm: unsigned>? len - 64 # asm 1: cmp <len=int32#4,#64 # asm 2: cmp <len=r3,#64 cmp r3,#64 # qhasm: goto mainloop2 if unsigned> bhi ._mainloop2 # qhasm: input_2 -= 32 # asm 1: sub >input_2=int32#3,<input_2=int32#2,#32 # asm 2: sub >input_2=r2,<input_2=r1,#32 sub r2,r1,#32 # qhasm: below64bytes: ._below64bytes: # qhasm: unsigned>? len - 32 # asm 1: cmp <len=int32#4,#32 # asm 2: cmp <len=r3,#32 cmp r3,#32 # qhasm: goto end if !unsigned> bls ._end # qhasm: mainloop: ._mainloop: # qhasm: new r0 # qhasm: ptr = &two24 # asm 1: lea >ptr=int32#2,<two24=stack128#1 # asm 2: lea >ptr=r1,<two24=[sp,#0] add r1,sp,#0 # qhasm: r4 aligned= mem128[ptr] # asm 1: vld1.8 {>r4=reg128#5%bot->r4=reg128#5%top},[<ptr=int32#2,: 128] # asm 2: vld1.8 {>r4=d8->r4=d9},[<ptr=r1,: 128] vld1.8 {d8-d9},[r1,: 128] # qhasm: u4 aligned= mem128[ptr] # asm 1: vld1.8 {>u4=reg128#6%bot->u4=reg128#6%top},[<ptr=int32#2,: 128] # asm 2: vld1.8 {>u4=d10->u4=d11},[<ptr=r1,: 128] vld1.8 {d10-d11},[r1,: 128] # qhasm: c01 = mem128[input_2];input_2+=16 # asm 1: vld1.8 {>c01=reg128#8%bot->c01=reg128#8%top},[<input_2=int32#3]! # asm 2: vld1.8 {>c01=d14->c01=d15},[<input_2=r2]! vld1.8 {d14-d15},[r2]! # qhasm: r4[0,1] += x01[0] unsigned* y34[2]; r4[2,3] += x01[1] unsigned* y34[3] # asm 1: vmlal.u32 <r4=reg128#5,<x01=reg128#9%bot,<y34=reg128#3%top # asm 2: vmlal.u32 <r4=q4,<x01=d16,<y34=d5 vmlal.u32 q4,d16,d5 # qhasm: c23 = mem128[input_2];input_2+=16 # asm 1: vld1.8 {>c23=reg128#14%bot->c23=reg128#14%top},[<input_2=int32#3]! # asm 2: vld1.8 {>c23=d26->c23=d27},[<input_2=r2]! vld1.8 {d26-d27},[r2]! # qhasm: r4[0,1] += x01[2] unsigned* y34[0]; r4[2,3] += x01[3] unsigned* y34[1] # asm 1: vmlal.u32 <r4=reg128#5,<x01=reg128#9%top,<y34=reg128#3%bot # asm 2: vmlal.u32 <r4=q4,<x01=d17,<y34=d4 vmlal.u32 q4,d17,d4 # qhasm: r0 = u4[1]c01[0]r0[2,3] # asm 1: vext.32 <r0=reg128#4%bot,<u4=reg128#6%bot,<c01=reg128#8%bot,#1 # asm 2: vext.32 <r0=d6,<u4=d10,<c01=d14,#1 vext.32 d6,d10,d14,#1 # qhasm: r4[0,1] += x23[0] unsigned* y12[2]; r4[2,3] += x23[1] unsigned* y12[3] # asm 1: vmlal.u32 <r4=reg128#5,<x23=reg128#10%bot,<y12=reg128#2%top # asm 2: vmlal.u32 <r4=q4,<x23=d18,<y12=d3 vmlal.u32 q4,d18,d3 # qhasm: r0 = r0[0,1]u4[1]c23[0] # asm 1: vext.32 <r0=reg128#4%top,<u4=reg128#6%bot,<c23=reg128#14%bot,#1 # asm 2: vext.32 <r0=d7,<u4=d10,<c23=d26,#1 vext.32 d7,d10,d26,#1 # qhasm: r4[0,1] += x23[2] unsigned* y12[0]; r4[2,3] += x23[3] unsigned* y12[1] # asm 1: vmlal.u32 <r4=reg128#5,<x23=reg128#10%top,<y12=reg128#2%bot # asm 2: vmlal.u32 <r4=q4,<x23=d19,<y12=d2 vmlal.u32 q4,d19,d2 # qhasm: r0 = r0[1]r0[0]r0[3]r0[2] # asm 1: vrev64.i32 >r0=reg128#4,<r0=reg128#4 # asm 2: vrev64.i32 >r0=q3,<r0=q3 vrev64.i32 q3,q3 # qhasm: r4[0,1] += x4[0] unsigned* y0[0]; r4[2,3] += x4[1] unsigned* y0[1] # asm 1: vmlal.u32 <r4=reg128#5,<x4=reg128#11%bot,<y0=reg128#1%bot # asm 2: vmlal.u32 <r4=q4,<x4=d20,<y0=d0 vmlal.u32 q4,d20,d0 # qhasm: r0[0,1] += x4[0] unsigned* 5y12[0]; r0[2,3] += x4[1] unsigned* 5y12[1] # asm 1: vmlal.u32 <r0=reg128#4,<x4=reg128#11%bot,<5y12=reg128#12%bot # asm 2: vmlal.u32 <r0=q3,<x4=d20,<5y12=d22 vmlal.u32 q3,d20,d22 # qhasm: r0[0,1] += x23[0] unsigned* 5y34[0]; r0[2,3] += x23[1] unsigned* 5y34[1] # asm 1: vmlal.u32 <r0=reg128#4,<x23=reg128#10%bot,<5y34=reg128#13%bot # asm 2: vmlal.u32 <r0=q3,<x23=d18,<5y34=d24 vmlal.u32 q3,d18,d24 # qhasm: r0[0,1] += x23[2] unsigned* 5y12[2]; r0[2,3] += x23[3] unsigned* 5y12[3] # asm 1: vmlal.u32 <r0=reg128#4,<x23=reg128#10%top,<5y12=reg128#12%top # asm 2: vmlal.u32 <r0=q3,<x23=d19,<5y12=d23 vmlal.u32 q3,d19,d23 # qhasm: c01 c23 = c01[0]c23[0]c01[2]c23[2]c01[1]c23[1]c01[3]c23[3] # asm 1: vtrn.32 <c01=reg128#8,<c23=reg128#14 # asm 2: vtrn.32 <c01=q7,<c23=q13 vtrn.32 q7,q13 # qhasm: r0[0,1] += x01[0] unsigned* y0[0]; r0[2,3] += x01[1] unsigned* y0[1] # asm 1: vmlal.u32 <r0=reg128#4,<x01=reg128#9%bot,<y0=reg128#1%bot # asm 2: vmlal.u32 <r0=q3,<x01=d16,<y0=d0 vmlal.u32 q3,d16,d0 # qhasm: r3[0,1] = c23[2]<<18; r3[2,3] = c23[3]<<18 # asm 1: vshll.u32 >r3=reg128#6,<c23=reg128#14%top,#18 # asm 2: vshll.u32 >r3=q5,<c23=d27,#18 vshll.u32 q5,d27,#18 # qhasm: r0[0,1] += x01[2] unsigned* 5y34[2]; r0[2,3] += x01[3] unsigned* 5y34[3] # asm 1: vmlal.u32 <r0=reg128#4,<x01=reg128#9%top,<5y34=reg128#13%top # asm 2: vmlal.u32 <r0=q3,<x01=d17,<5y34=d25 vmlal.u32 q3,d17,d25 # qhasm: r3[0,1] += x01[0] unsigned* y34[0]; r3[2,3] += x01[1] unsigned* y34[1] # asm 1: vmlal.u32 <r3=reg128#6,<x01=reg128#9%bot,<y34=reg128#3%bot # asm 2: vmlal.u32 <r3=q5,<x01=d16,<y34=d4 vmlal.u32 q5,d16,d4 # qhasm: r3[0,1] += x01[2] unsigned* y12[2]; r3[2,3] += x01[3] unsigned* y12[3] # asm 1: vmlal.u32 <r3=reg128#6,<x01=reg128#9%top,<y12=reg128#2%top # asm 2: vmlal.u32 <r3=q5,<x01=d17,<y12=d3 vmlal.u32 q5,d17,d3 # qhasm: r3[0,1] += x23[0] unsigned* y12[0]; r3[2,3] += x23[1] unsigned* y12[1] # asm 1: vmlal.u32 <r3=reg128#6,<x23=reg128#10%bot,<y12=reg128#2%bot # asm 2: vmlal.u32 <r3=q5,<x23=d18,<y12=d2 vmlal.u32 q5,d18,d2 # qhasm: r3[0,1] += x23[2] unsigned* y0[0]; r3[2,3] += x23[3] unsigned* y0[1] # asm 1: vmlal.u32 <r3=reg128#6,<x23=reg128#10%top,<y0=reg128#1%bot # asm 2: vmlal.u32 <r3=q5,<x23=d19,<y0=d0 vmlal.u32 q5,d19,d0 # qhasm: r1[0,1] = c23[0]<<6; r1[2,3] = c23[1]<<6 # asm 1: vshll.u32 >r1=reg128#14,<c23=reg128#14%bot,#6 # asm 2: vshll.u32 >r1=q13,<c23=d26,#6 vshll.u32 q13,d26,#6 # qhasm: r3[0,1] += x4[0] unsigned* 5y34[2]; r3[2,3] += x4[1] unsigned* 5y34[3] # asm 1: vmlal.u32 <r3=reg128#6,<x4=reg128#11%bot,<5y34=reg128#13%top # asm 2: vmlal.u32 <r3=q5,<x4=d20,<5y34=d25 vmlal.u32 q5,d20,d25 # qhasm: r1[0,1] += x01[0] unsigned* y12[0]; r1[2,3] += x01[1] unsigned* y12[1] # asm 1: vmlal.u32 <r1=reg128#14,<x01=reg128#9%bot,<y12=reg128#2%bot # asm 2: vmlal.u32 <r1=q13,<x01=d16,<y12=d2 vmlal.u32 q13,d16,d2 # qhasm: r1[0,1] += x01[2] unsigned* y0[0]; r1[2,3] += x01[3] unsigned* y0[1] # asm 1: vmlal.u32 <r1=reg128#14,<x01=reg128#9%top,<y0=reg128#1%bot # asm 2: vmlal.u32 <r1=q13,<x01=d17,<y0=d0 vmlal.u32 q13,d17,d0 # qhasm: r1[0,1] += x23[0] unsigned* 5y34[2]; r1[2,3] += x23[1] unsigned* 5y34[3] # asm 1: vmlal.u32 <r1=reg128#14,<x23=reg128#10%bot,<5y34=reg128#13%top # asm 2: vmlal.u32 <r1=q13,<x23=d18,<5y34=d25 vmlal.u32 q13,d18,d25 # qhasm: r1[0,1] += x23[2] unsigned* 5y34[0]; r1[2,3] += x23[3] unsigned* 5y34[1] # asm 1: vmlal.u32 <r1=reg128#14,<x23=reg128#10%top,<5y34=reg128#13%bot # asm 2: vmlal.u32 <r1=q13,<x23=d19,<5y34=d24 vmlal.u32 q13,d19,d24 # qhasm: r2[0,1] = c01[2]<<12; r2[2,3] = c01[3]<<12 # asm 1: vshll.u32 >r2=reg128#8,<c01=reg128#8%top,#12 # asm 2: vshll.u32 >r2=q7,<c01=d15,#12 vshll.u32 q7,d15,#12 # qhasm: r1[0,1] += x4[0] unsigned* 5y12[2]; r1[2,3] += x4[1] unsigned* 5y12[3] # asm 1: vmlal.u32 <r1=reg128#14,<x4=reg128#11%bot,<5y12=reg128#12%top # asm 2: vmlal.u32 <r1=q13,<x4=d20,<5y12=d23 vmlal.u32 q13,d20,d23 # qhasm: r2[0,1] += x01[0] unsigned* y12[2]; r2[2,3] += x01[1] unsigned* y12[3] # asm 1: vmlal.u32 <r2=reg128#8,<x01=reg128#9%bot,<y12=reg128#2%top # asm 2: vmlal.u32 <r2=q7,<x01=d16,<y12=d3 vmlal.u32 q7,d16,d3 # qhasm: r2[0,1] += x01[2] unsigned* y12[0]; r2[2,3] += x01[3] unsigned* y12[1] # asm 1: vmlal.u32 <r2=reg128#8,<x01=reg128#9%top,<y12=reg128#2%bot # asm 2: vmlal.u32 <r2=q7,<x01=d17,<y12=d2 vmlal.u32 q7,d17,d2 # qhasm: r2[0,1] += x23[0] unsigned* y0[0]; r2[2,3] += x23[1] unsigned* y0[1] # asm 1: vmlal.u32 <r2=reg128#8,<x23=reg128#10%bot,<y0=reg128#1%bot # asm 2: vmlal.u32 <r2=q7,<x23=d18,<y0=d0 vmlal.u32 q7,d18,d0 # qhasm: r2[0,1] += x23[2] unsigned* 5y34[2]; r2[2,3] += x23[3] unsigned* 5y34[3] # asm 1: vmlal.u32 <r2=reg128#8,<x23=reg128#10%top,<5y34=reg128#13%top # asm 2: vmlal.u32 <r2=q7,<x23=d19,<5y34=d25 vmlal.u32 q7,d19,d25 # qhasm: r2[0,1] += x4[0] unsigned* 5y34[0]; r2[2,3] += x4[1] unsigned* 5y34[1] # asm 1: vmlal.u32 <r2=reg128#8,<x4=reg128#11%bot,<5y34=reg128#13%bot # asm 2: vmlal.u32 <r2=q7,<x4=d20,<5y34=d24 vmlal.u32 q7,d20,d24 # qhasm: 2x t1 = r0 unsigned>> 26 # asm 1: vshr.u64 >t1=reg128#9,<r0=reg128#4,#26 # asm 2: vshr.u64 >t1=q8,<r0=q3,#26 vshr.u64 q8,q3,#26 # qhasm: r0 &= mask # asm 1: vand >r0=reg128#4,<r0=reg128#4,<mask=reg128#7 # asm 2: vand >r0=q3,<r0=q3,<mask=q6 vand q3,q3,q6 # qhasm: 2x r1 += t1 # asm 1: vadd.i64 >r1=reg128#9,<r1=reg128#14,<t1=reg128#9 # asm 2: vadd.i64 >r1=q8,<r1=q13,<t1=q8 vadd.i64 q8,q13,q8 # qhasm: 2x t4 = r3 unsigned>> 26 # asm 1: vshr.u64 >t4=reg128#10,<r3=reg128#6,#26 # asm 2: vshr.u64 >t4=q9,<r3=q5,#26 vshr.u64 q9,q5,#26 # qhasm: r3 &= mask # asm 1: vand >r3=reg128#6,<r3=reg128#6,<mask=reg128#7 # asm 2: vand >r3=q5,<r3=q5,<mask=q6 vand q5,q5,q6 # qhasm: 2x r4 += t4 # asm 1: vadd.i64 >r4=reg128#5,<r4=reg128#5,<t4=reg128#10 # asm 2: vadd.i64 >r4=q4,<r4=q4,<t4=q9 vadd.i64 q4,q4,q9 # qhasm: 2x t2 = r1 unsigned>> 26 # asm 1: vshr.u64 >t2=reg128#10,<r1=reg128#9,#26 # asm 2: vshr.u64 >t2=q9,<r1=q8,#26 vshr.u64 q9,q8,#26 # qhasm: r1 &= mask # asm 1: vand >r1=reg128#11,<r1=reg128#9,<mask=reg128#7 # asm 2: vand >r1=q10,<r1=q8,<mask=q6 vand q10,q8,q6 # qhasm: 2x t0 = r4 unsigned>> 26 # asm 1: vshr.u64 >t0=reg128#9,<r4=reg128#5,#26 # asm 2: vshr.u64 >t0=q8,<r4=q4,#26 vshr.u64 q8,q4,#26 # qhasm: 2x r2 += t2 # asm 1: vadd.i64 >r2=reg128#8,<r2=reg128#8,<t2=reg128#10 # asm 2: vadd.i64 >r2=q7,<r2=q7,<t2=q9 vadd.i64 q7,q7,q9 # qhasm: r4 &= mask # asm 1: vand >r4=reg128#5,<r4=reg128#5,<mask=reg128#7 # asm 2: vand >r4=q4,<r4=q4,<mask=q6 vand q4,q4,q6 # qhasm: 2x r0 += t0 # asm 1: vadd.i64 >r0=reg128#4,<r0=reg128#4,<t0=reg128#9 # asm 2: vadd.i64 >r0=q3,<r0=q3,<t0=q8 vadd.i64 q3,q3,q8 # qhasm: 2x t0 <<= 2 # asm 1: vshl.i64 >t0=reg128#9,<t0=reg128#9,#2 # asm 2: vshl.i64 >t0=q8,<t0=q8,#2 vshl.i64 q8,q8,#2 # qhasm: 2x t3 = r2 unsigned>> 26 # asm 1: vshr.u64 >t3=reg128#14,<r2=reg128#8,#26 # asm 2: vshr.u64 >t3=q13,<r2=q7,#26 vshr.u64 q13,q7,#26 # qhasm: 2x r0 += t0 # asm 1: vadd.i64 >r0=reg128#4,<r0=reg128#4,<t0=reg128#9 # asm 2: vadd.i64 >r0=q3,<r0=q3,<t0=q8 vadd.i64 q3,q3,q8 # qhasm: x23 = r2 & mask # asm 1: vand >x23=reg128#10,<r2=reg128#8,<mask=reg128#7 # asm 2: vand >x23=q9,<r2=q7,<mask=q6 vand q9,q7,q6 # qhasm: 2x r3 += t3 # asm 1: vadd.i64 >r3=reg128#6,<r3=reg128#6,<t3=reg128#14 # asm 2: vadd.i64 >r3=q5,<r3=q5,<t3=q13 vadd.i64 q5,q5,q13 # qhasm: 2x t1 = r0 unsigned>> 26 # asm 1: vshr.u64 >t1=reg128#8,<r0=reg128#4,#26 # asm 2: vshr.u64 >t1=q7,<r0=q3,#26 vshr.u64 q7,q3,#26 # qhasm: x01 = r0 & mask # asm 1: vand >x01=reg128#9,<r0=reg128#4,<mask=reg128#7 # asm 2: vand >x01=q8,<r0=q3,<mask=q6 vand q8,q3,q6 # qhasm: 2x r1 += t1 # asm 1: vadd.i64 >r1=reg128#4,<r1=reg128#11,<t1=reg128#8 # asm 2: vadd.i64 >r1=q3,<r1=q10,<t1=q7 vadd.i64 q3,q10,q7 # qhasm: 2x t4 = r3 unsigned>> 26 # asm 1: vshr.u64 >t4=reg128#8,<r3=reg128#6,#26 # asm 2: vshr.u64 >t4=q7,<r3=q5,#26 vshr.u64 q7,q5,#26 # qhasm: r3 &= mask # asm 1: vand >r3=reg128#6,<r3=reg128#6,<mask=reg128#7 # asm 2: vand >r3=q5,<r3=q5,<mask=q6 vand q5,q5,q6 # qhasm: 2x x4 = r4 + t4 # asm 1: vadd.i64 >x4=reg128#11,<r4=reg128#5,<t4=reg128#8 # asm 2: vadd.i64 >x4=q10,<r4=q4,<t4=q7 vadd.i64 q10,q4,q7 # qhasm: len -= 32 # asm 1: sub >len=int32#4,<len=int32#4,#32 # asm 2: sub >len=r3,<len=r3,#32 sub r3,r3,#32 # qhasm: x01 = x01[0,2,1,3] # asm 1: vtrn.32 <x01=reg128#9%bot,<x01=reg128#9%top # asm 2: vtrn.32 <x01=d16,<x01=d17 vtrn.32 d16,d17 # qhasm: x23 = x23[0,2,1,3] # asm 1: vtrn.32 <x23=reg128#10%bot,<x23=reg128#10%top # asm 2: vtrn.32 <x23=d18,<x23=d19 vtrn.32 d18,d19 # qhasm: r1 = r1[0,2,1,3] # asm 1: vtrn.32 <r1=reg128#4%bot,<r1=reg128#4%top # asm 2: vtrn.32 <r1=d6,<r1=d7 vtrn.32 d6,d7 # qhasm: r3 = r3[0,2,1,3] # asm 1: vtrn.32 <r3=reg128#6%bot,<r3=reg128#6%top # asm 2: vtrn.32 <r3=d10,<r3=d11 vtrn.32 d10,d11 # qhasm: x4 = x4[0,2,1,3] # asm 1: vtrn.32 <x4=reg128#11%bot,<x4=reg128#11%top # asm 2: vtrn.32 <x4=d20,<x4=d21 vtrn.32 d20,d21 # qhasm: x01 = x01[0,1] r1[0,1] # asm 1: vext.32 <x01=reg128#9%top,<r1=reg128#4%bot,<r1=reg128#4%bot,#0 # asm 2: vext.32 <x01=d17,<r1=d6,<r1=d6,#0 vext.32 d17,d6,d6,#0 # qhasm: x23 = x23[0,1] r3[0,1] # asm 1: vext.32 <x23=reg128#10%top,<r3=reg128#6%bot,<r3=reg128#6%bot,#0 # asm 2: vext.32 <x23=d19,<r3=d10,<r3=d10,#0 vext.32 d19,d10,d10,#0 # qhasm: unsigned>? len - 32 # asm 1: cmp <len=int32#4,#32 # asm 2: cmp <len=r3,#32 cmp r3,#32 # qhasm: goto mainloop if unsigned> bhi ._mainloop # qhasm: end: ._end: # qhasm: mem128[input_0] = x01;input_0+=16 # asm 1: vst1.8 {<x01=reg128#9%bot-<x01=reg128#9%top},[<input_0=int32#1]! # asm 2: vst1.8 {<x01=d16-<x01=d17},[<input_0=r0]! vst1.8 {d16-d17},[r0]! # qhasm: mem128[input_0] = x23;input_0+=16 # asm 1: vst1.8 {<x23=reg128#10%bot-<x23=reg128#10%top},[<input_0=int32#1]! # asm 2: vst1.8 {<x23=d18-<x23=d19},[<input_0=r0]! vst1.8 {d18-d19},[r0]! # qhasm: mem64[input_0] = x4[0] # asm 1: vst1.8 <x4=reg128#11%bot,[<input_0=int32#1] # asm 2: vst1.8 <x4=d20,[<input_0=r0] vst1.8 d20,[r0] # qhasm: len = len # asm 1: mov >len=int32#1,<len=int32#4 # asm 2: mov >len=r0,<len=r3 mov r0,r3 # qhasm: qpopreturn len mov sp,r12 vpop {q4,q5,q6,q7} bx lr # qhasm: int32 input_0 # qhasm: int32 input_1 # qhasm: int32 input_2 # qhasm: int32 input_3 # qhasm: stack32 input_4 # qhasm: stack32 input_5 # qhasm: stack32 input_6 # qhasm: stack32 input_7 # qhasm: int32 caller_r4 # qhasm: int32 caller_r5 # qhasm: int32 caller_r6 # qhasm: int32 caller_r7 # qhasm: int32 caller_r8 # qhasm: int32 caller_r9 # qhasm: int32 caller_r10 # qhasm: int32 caller_r11 # qhasm: int32 caller_r12 # qhasm: int32 caller_r14 # qhasm: reg128 caller_q4 # qhasm: reg128 caller_q5 # qhasm: reg128 caller_q6 # qhasm: reg128 caller_q7 # qhasm: reg128 r0 # qhasm: reg128 r1 # qhasm: reg128 r2 # qhasm: reg128 r3 # qhasm: reg128 r4 # qhasm: reg128 x01 # qhasm: reg128 x23 # qhasm: reg128 x4 # qhasm: reg128 y01 # qhasm: reg128 y23 # qhasm: reg128 y4 # qhasm: reg128 _5y01 # qhasm: reg128 _5y23 # qhasm: reg128 _5y4 # qhasm: reg128 c01 # qhasm: reg128 c23 # qhasm: reg128 c4 # qhasm: reg128 t0 # qhasm: reg128 t1 # qhasm: reg128 t2 # qhasm: reg128 t3 # qhasm: reg128 t4 # qhasm: reg128 mask # qhasm: enter crypto_onetimeauth_poly1305_neon2_addmulmod .align 2 .global openssl_poly1305_neon2_addmulmod .hidden openssl_poly1305_neon2_addmulmod .type openssl_poly1305_neon2_addmulmod STT_FUNC openssl_poly1305_neon2_addmulmod: sub sp,sp,#0 # qhasm: 2x mask = 0xffffffff # asm 1: vmov.i64 >mask=reg128#1,#0xffffffff # asm 2: vmov.i64 >mask=q0,#0xffffffff vmov.i64 q0,#0xffffffff # qhasm: y01 aligned= mem128[input_2];input_2+=16 # asm 1: vld1.8 {>y01=reg128#2%bot->y01=reg128#2%top},[<input_2=int32#3,: 128]! # asm 2: vld1.8 {>y01=d2->y01=d3},[<input_2=r2,: 128]! vld1.8 {d2-d3},[r2,: 128]! # qhasm: 4x _5y01 = y01 << 2 # asm 1: vshl.i32 >_5y01=reg128#3,<y01=reg128#2,#2 # asm 2: vshl.i32 >_5y01=q2,<y01=q1,#2 vshl.i32 q2,q1,#2 # qhasm: y23 aligned= mem128[input_2];input_2+=16 # asm 1: vld1.8 {>y23=reg128#4%bot->y23=reg128#4%top},[<input_2=int32#3,: 128]! # asm 2: vld1.8 {>y23=d6->y23=d7},[<input_2=r2,: 128]! vld1.8 {d6-d7},[r2,: 128]! # qhasm: 4x _5y23 = y23 << 2 # asm 1: vshl.i32 >_5y23=reg128#9,<y23=reg128#4,#2 # asm 2: vshl.i32 >_5y23=q8,<y23=q3,#2 vshl.i32 q8,q3,#2 # qhasm: y4 aligned= mem64[input_2]y4[1] # asm 1: vld1.8 {<y4=reg128#10%bot},[<input_2=int32#3,: 64] # asm 2: vld1.8 {<y4=d18},[<input_2=r2,: 64] vld1.8 {d18},[r2,: 64] # qhasm: 4x _5y4 = y4 << 2 # asm 1: vshl.i32 >_5y4=reg128#11,<y4=reg128#10,#2 # asm 2: vshl.i32 >_5y4=q10,<y4=q9,#2 vshl.i32 q10,q9,#2 # qhasm: x01 aligned= mem128[input_1];input_1+=16 # asm 1: vld1.8 {>x01=reg128#12%bot->x01=reg128#12%top},[<input_1=int32#2,: 128]! # asm 2: vld1.8 {>x01=d22->x01=d23},[<input_1=r1,: 128]! vld1.8 {d22-d23},[r1,: 128]! # qhasm: 4x _5y01 += y01 # asm 1: vadd.i32 >_5y01=reg128#3,<_5y01=reg128#3,<y01=reg128#2 # asm 2: vadd.i32 >_5y01=q2,<_5y01=q2,<y01=q1 vadd.i32 q2,q2,q1 # qhasm: x23 aligned= mem128[input_1];input_1+=16 # asm 1: vld1.8 {>x23=reg128#13%bot->x23=reg128#13%top},[<input_1=int32#2,: 128]! # asm 2: vld1.8 {>x23=d24->x23=d25},[<input_1=r1,: 128]! vld1.8 {d24-d25},[r1,: 128]! # qhasm: 4x _5y23 += y23 # asm 1: vadd.i32 >_5y23=reg128#9,<_5y23=reg128#9,<y23=reg128#4 # asm 2: vadd.i32 >_5y23=q8,<_5y23=q8,<y23=q3 vadd.i32 q8,q8,q3 # qhasm: 4x _5y4 += y4 # asm 1: vadd.i32 >_5y4=reg128#11,<_5y4=reg128#11,<y4=reg128#10 # asm 2: vadd.i32 >_5y4=q10,<_5y4=q10,<y4=q9 vadd.i32 q10,q10,q9 # qhasm: c01 aligned= mem128[input_3];input_3+=16 # asm 1: vld1.8 {>c01=reg128#14%bot->c01=reg128#14%top},[<input_3=int32#4,: 128]! # asm 2: vld1.8 {>c01=d26->c01=d27},[<input_3=r3,: 128]! vld1.8 {d26-d27},[r3,: 128]! # qhasm: 4x x01 += c01 # asm 1: vadd.i32 >x01=reg128#12,<x01=reg128#12,<c01=reg128#14 # asm 2: vadd.i32 >x01=q11,<x01=q11,<c01=q13 vadd.i32 q11,q11,q13 # qhasm: c23 aligned= mem128[input_3];input_3+=16 # asm 1: vld1.8 {>c23=reg128#14%bot->c23=reg128#14%top},[<input_3=int32#4,: 128]! # asm 2: vld1.8 {>c23=d26->c23=d27},[<input_3=r3,: 128]! vld1.8 {d26-d27},[r3,: 128]! # qhasm: 4x x23 += c23 # asm 1: vadd.i32 >x23=reg128#13,<x23=reg128#13,<c23=reg128#14 # asm 2: vadd.i32 >x23=q12,<x23=q12,<c23=q13 vadd.i32 q12,q12,q13 # qhasm: x4 aligned= mem64[input_1]x4[1] # asm 1: vld1.8 {<x4=reg128#14%bot},[<input_1=int32#2,: 64] # asm 2: vld1.8 {<x4=d26},[<input_1=r1,: 64] vld1.8 {d26},[r1,: 64] # qhasm: 2x mask unsigned>>=6 # asm 1: vshr.u64 >mask=reg128#1,<mask=reg128#1,#6 # asm 2: vshr.u64 >mask=q0,<mask=q0,#6 vshr.u64 q0,q0,#6 # qhasm: c4 aligned= mem64[input_3]c4[1] # asm 1: vld1.8 {<c4=reg128#15%bot},[<input_3=int32#4,: 64] # asm 2: vld1.8 {<c4=d28},[<input_3=r3,: 64] vld1.8 {d28},[r3,: 64] # qhasm: 4x x4 += c4 # asm 1: vadd.i32 >x4=reg128#14,<x4=reg128#14,<c4=reg128#15 # asm 2: vadd.i32 >x4=q13,<x4=q13,<c4=q14 vadd.i32 q13,q13,q14 # qhasm: r0[0,1] = x01[0] unsigned* y01[0]; r0[2,3] = x01[1] unsigned* y01[1] # asm 1: vmull.u32 >r0=reg128#15,<x01=reg128#12%bot,<y01=reg128#2%bot # asm 2: vmull.u32 >r0=q14,<x01=d22,<y01=d2 vmull.u32 q14,d22,d2 # qhasm: r0[0,1] += x01[2] unsigned* _5y4[0]; r0[2,3] += x01[3] unsigned* _5y4[1] # asm 1: vmlal.u32 <r0=reg128#15,<x01=reg128#12%top,<_5y4=reg128#11%bot # asm 2: vmlal.u32 <r0=q14,<x01=d23,<_5y4=d20 vmlal.u32 q14,d23,d20 # qhasm: r0[0,1] += x23[0] unsigned* _5y23[2]; r0[2,3] += x23[1] unsigned* _5y23[3] # asm 1: vmlal.u32 <r0=reg128#15,<x23=reg128#13%bot,<_5y23=reg128#9%top # asm 2: vmlal.u32 <r0=q14,<x23=d24,<_5y23=d17 vmlal.u32 q14,d24,d17 # qhasm: r0[0,1] += x23[2] unsigned* _5y23[0]; r0[2,3] += x23[3] unsigned* _5y23[1] # asm 1: vmlal.u32 <r0=reg128#15,<x23=reg128#13%top,<_5y23=reg128#9%bot # asm 2: vmlal.u32 <r0=q14,<x23=d25,<_5y23=d16 vmlal.u32 q14,d25,d16 # qhasm: r0[0,1] += x4[0] unsigned* _5y01[2]; r0[2,3] += x4[1] unsigned* _5y01[3] # asm 1: vmlal.u32 <r0=reg128#15,<x4=reg128#14%bot,<_5y01=reg128#3%top # asm 2: vmlal.u32 <r0=q14,<x4=d26,<_5y01=d5 vmlal.u32 q14,d26,d5 # qhasm: r1[0,1] = x01[0] unsigned* y01[2]; r1[2,3] = x01[1] unsigned* y01[3] # asm 1: vmull.u32 >r1=reg128#3,<x01=reg128#12%bot,<y01=reg128#2%top # asm 2: vmull.u32 >r1=q2,<x01=d22,<y01=d3 vmull.u32 q2,d22,d3 # qhasm: r1[0,1] += x01[2] unsigned* y01[0]; r1[2,3] += x01[3] unsigned* y01[1] # asm 1: vmlal.u32 <r1=reg128#3,<x01=reg128#12%top,<y01=reg128#2%bot # asm 2: vmlal.u32 <r1=q2,<x01=d23,<y01=d2 vmlal.u32 q2,d23,d2 # qhasm: r1[0,1] += x23[0] unsigned* _5y4[0]; r1[2,3] += x23[1] unsigned* _5y4[1] # asm 1: vmlal.u32 <r1=reg128#3,<x23=reg128#13%bot,<_5y4=reg128#11%bot # asm 2: vmlal.u32 <r1=q2,<x23=d24,<_5y4=d20 vmlal.u32 q2,d24,d20 # qhasm: r1[0,1] += x23[2] unsigned* _5y23[2]; r1[2,3] += x23[3] unsigned* _5y23[3] # asm 1: vmlal.u32 <r1=reg128#3,<x23=reg128#13%top,<_5y23=reg128#9%top # asm 2: vmlal.u32 <r1=q2,<x23=d25,<_5y23=d17 vmlal.u32 q2,d25,d17 # qhasm: r1[0,1] += x4[0] unsigned* _5y23[0]; r1[2,3] += x4[1] unsigned* _5y23[1] # asm 1: vmlal.u32 <r1=reg128#3,<x4=reg128#14%bot,<_5y23=reg128#9%bot # asm 2: vmlal.u32 <r1=q2,<x4=d26,<_5y23=d16 vmlal.u32 q2,d26,d16 # qhasm: r2[0,1] = x01[0] unsigned* y23[0]; r2[2,3] = x01[1] unsigned* y23[1] # asm 1: vmull.u32 >r2=reg128#16,<x01=reg128#12%bot,<y23=reg128#4%bot # asm 2: vmull.u32 >r2=q15,<x01=d22,<y23=d6 vmull.u32 q15,d22,d6 # qhasm: r2[0,1] += x01[2] unsigned* y01[2]; r2[2,3] += x01[3] unsigned* y01[3] # asm 1: vmlal.u32 <r2=reg128#16,<x01=reg128#12%top,<y01=reg128#2%top # asm 2: vmlal.u32 <r2=q15,<x01=d23,<y01=d3 vmlal.u32 q15,d23,d3 # qhasm: r2[0,1] += x23[0] unsigned* y01[0]; r2[2,3] += x23[1] unsigned* y01[1] # asm 1: vmlal.u32 <r2=reg128#16,<x23=reg128#13%bot,<y01=reg128#2%bot # asm 2: vmlal.u32 <r2=q15,<x23=d24,<y01=d2 vmlal.u32 q15,d24,d2 # qhasm: r2[0,1] += x23[2] unsigned* _5y4[0]; r2[2,3] += x23[3] unsigned* _5y4[1] # asm 1: vmlal.u32 <r2=reg128#16,<x23=reg128#13%top,<_5y4=reg128#11%bot # asm 2: vmlal.u32 <r2=q15,<x23=d25,<_5y4=d20 vmlal.u32 q15,d25,d20 # qhasm: r2[0,1] += x4[0] unsigned* _5y23[2]; r2[2,3] += x4[1] unsigned* _5y23[3] # asm 1: vmlal.u32 <r2=reg128#16,<x4=reg128#14%bot,<_5y23=reg128#9%top # asm 2: vmlal.u32 <r2=q15,<x4=d26,<_5y23=d17 vmlal.u32 q15,d26,d17 # qhasm: r3[0,1] = x01[0] unsigned* y23[2]; r3[2,3] = x01[1] unsigned* y23[3] # asm 1: vmull.u32 >r3=reg128#9,<x01=reg128#12%bot,<y23=reg128#4%top # asm 2: vmull.u32 >r3=q8,<x01=d22,<y23=d7 vmull.u32 q8,d22,d7 # qhasm: r3[0,1] += x01[2] unsigned* y23[0]; r3[2,3] += x01[3] unsigned* y23[1] # asm 1: vmlal.u32 <r3=reg128#9,<x01=reg128#12%top,<y23=reg128#4%bot # asm 2: vmlal.u32 <r3=q8,<x01=d23,<y23=d6 vmlal.u32 q8,d23,d6 # qhasm: r3[0,1] += x23[0] unsigned* y01[2]; r3[2,3] += x23[1] unsigned* y01[3] # asm 1: vmlal.u32 <r3=reg128#9,<x23=reg128#13%bot,<y01=reg128#2%top # asm 2: vmlal.u32 <r3=q8,<x23=d24,<y01=d3 vmlal.u32 q8,d24,d3 # qhasm: r3[0,1] += x23[2] unsigned* y01[0]; r3[2,3] += x23[3] unsigned* y01[1] # asm 1: vmlal.u32 <r3=reg128#9,<x23=reg128#13%top,<y01=reg128#2%bot # asm 2: vmlal.u32 <r3=q8,<x23=d25,<y01=d2 vmlal.u32 q8,d25,d2 # qhasm: r3[0,1] += x4[0] unsigned* _5y4[0]; r3[2,3] += x4[1] unsigned* _5y4[1] # asm 1: vmlal.u32 <r3=reg128#9,<x4=reg128#14%bot,<_5y4=reg128#11%bot # asm 2: vmlal.u32 <r3=q8,<x4=d26,<_5y4=d20 vmlal.u32 q8,d26,d20 # qhasm: r4[0,1] = x01[0] unsigned* y4[0]; r4[2,3] = x01[1] unsigned* y4[1] # asm 1: vmull.u32 >r4=reg128#10,<x01=reg128#12%bot,<y4=reg128#10%bot # asm 2: vmull.u32 >r4=q9,<x01=d22,<y4=d18 vmull.u32 q9,d22,d18 # qhasm: r4[0,1] += x01[2] unsigned* y23[2]; r4[2,3] += x01[3] unsigned* y23[3] # asm 1: vmlal.u32 <r4=reg128#10,<x01=reg128#12%top,<y23=reg128#4%top # asm 2: vmlal.u32 <r4=q9,<x01=d23,<y23=d7 vmlal.u32 q9,d23,d7 # qhasm: r4[0,1] += x23[0] unsigned* y23[0]; r4[2,3] += x23[1] unsigned* y23[1] # asm 1: vmlal.u32 <r4=reg128#10,<x23=reg128#13%bot,<y23=reg128#4%bot # asm 2: vmlal.u32 <r4=q9,<x23=d24,<y23=d6 vmlal.u32 q9,d24,d6 # qhasm: r4[0,1] += x23[2] unsigned* y01[2]; r4[2,3] += x23[3] unsigned* y01[3] # asm 1: vmlal.u32 <r4=reg128#10,<x23=reg128#13%top,<y01=reg128#2%top # asm 2: vmlal.u32 <r4=q9,<x23=d25,<y01=d3 vmlal.u32 q9,d25,d3 # qhasm: r4[0,1] += x4[0] unsigned* y01[0]; r4[2,3] += x4[1] unsigned* y01[1] # asm 1: vmlal.u32 <r4=reg128#10,<x4=reg128#14%bot,<y01=reg128#2%bot # asm 2: vmlal.u32 <r4=q9,<x4=d26,<y01=d2 vmlal.u32 q9,d26,d2 # qhasm: 2x t1 = r0 unsigned>> 26 # asm 1: vshr.u64 >t1=reg128#2,<r0=reg128#15,#26 # asm 2: vshr.u64 >t1=q1,<r0=q14,#26 vshr.u64 q1,q14,#26 # qhasm: r0 &= mask # asm 1: vand >r0=reg128#4,<r0=reg128#15,<mask=reg128#1 # asm 2: vand >r0=q3,<r0=q14,<mask=q0 vand q3,q14,q0 # qhasm: 2x r1 += t1 # asm 1: vadd.i64 >r1=reg128#2,<r1=reg128#3,<t1=reg128#2 # asm 2: vadd.i64 >r1=q1,<r1=q2,<t1=q1 vadd.i64 q1,q2,q1 # qhasm: 2x t4 = r3 unsigned>> 26 # asm 1: vshr.u64 >t4=reg128#3,<r3=reg128#9,#26 # asm 2: vshr.u64 >t4=q2,<r3=q8,#26 vshr.u64 q2,q8,#26 # qhasm: r3 &= mask # asm 1: vand >r3=reg128#9,<r3=reg128#9,<mask=reg128#1 # asm 2: vand >r3=q8,<r3=q8,<mask=q0 vand q8,q8,q0 # qhasm: 2x r4 += t4 # asm 1: vadd.i64 >r4=reg128#3,<r4=reg128#10,<t4=reg128#3 # asm 2: vadd.i64 >r4=q2,<r4=q9,<t4=q2 vadd.i64 q2,q9,q2 # qhasm: 2x t2 = r1 unsigned>> 26 # asm 1: vshr.u64 >t2=reg128#10,<r1=reg128#2,#26 # asm 2: vshr.u64 >t2=q9,<r1=q1,#26 vshr.u64 q9,q1,#26 # qhasm: r1 &= mask # asm 1: vand >r1=reg128#2,<r1=reg128#2,<mask=reg128#1 # asm 2: vand >r1=q1,<r1=q1,<mask=q0 vand q1,q1,q0 # qhasm: 2x t0 = r4 unsigned>> 26 # asm 1: vshr.u64 >t0=reg128#11,<r4=reg128#3,#26 # asm 2: vshr.u64 >t0=q10,<r4=q2,#26 vshr.u64 q10,q2,#26 # qhasm: 2x r2 += t2 # asm 1: vadd.i64 >r2=reg128#10,<r2=reg128#16,<t2=reg128#10 # asm 2: vadd.i64 >r2=q9,<r2=q15,<t2=q9 vadd.i64 q9,q15,q9 # qhasm: r4 &= mask # asm 1: vand >r4=reg128#3,<r4=reg128#3,<mask=reg128#1 # asm 2: vand >r4=q2,<r4=q2,<mask=q0 vand q2,q2,q0 # qhasm: 2x r0 += t0 # asm 1: vadd.i64 >r0=reg128#4,<r0=reg128#4,<t0=reg128#11 # asm 2: vadd.i64 >r0=q3,<r0=q3,<t0=q10 vadd.i64 q3,q3,q10 # qhasm: 2x t0 <<= 2 # asm 1: vshl.i64 >t0=reg128#11,<t0=reg128#11,#2 # asm 2: vshl.i64 >t0=q10,<t0=q10,#2 vshl.i64 q10,q10,#2 # qhasm: 2x t3 = r2 unsigned>> 26 # asm 1: vshr.u64 >t3=reg128#12,<r2=reg128#10,#26 # asm 2: vshr.u64 >t3=q11,<r2=q9,#26 vshr.u64 q11,q9,#26 # qhasm: 2x r0 += t0 # asm 1: vadd.i64 >r0=reg128#4,<r0=reg128#4,<t0=reg128#11 # asm 2: vadd.i64 >r0=q3,<r0=q3,<t0=q10 vadd.i64 q3,q3,q10 # qhasm: x23 = r2 & mask # asm 1: vand >x23=reg128#10,<r2=reg128#10,<mask=reg128#1 # asm 2: vand >x23=q9,<r2=q9,<mask=q0 vand q9,q9,q0 # qhasm: 2x r3 += t3 # asm 1: vadd.i64 >r3=reg128#9,<r3=reg128#9,<t3=reg128#12 # asm 2: vadd.i64 >r3=q8,<r3=q8,<t3=q11 vadd.i64 q8,q8,q11 # qhasm: 2x t1 = r0 unsigned>> 26 # asm 1: vshr.u64 >t1=reg128#11,<r0=reg128#4,#26 # asm 2: vshr.u64 >t1=q10,<r0=q3,#26 vshr.u64 q10,q3,#26 # qhasm: x23 = x23[0,2,1,3] # asm 1: vtrn.32 <x23=reg128#10%bot,<x23=reg128#10%top # asm 2: vtrn.32 <x23=d18,<x23=d19 vtrn.32 d18,d19 # qhasm: x01 = r0 & mask # asm 1: vand >x01=reg128#4,<r0=reg128#4,<mask=reg128#1 # asm 2: vand >x01=q3,<r0=q3,<mask=q0 vand q3,q3,q0 # qhasm: 2x r1 += t1 # asm 1: vadd.i64 >r1=reg128#2,<r1=reg128#2,<t1=reg128#11 # asm 2: vadd.i64 >r1=q1,<r1=q1,<t1=q10 vadd.i64 q1,q1,q10 # qhasm: 2x t4 = r3 unsigned>> 26 # asm 1: vshr.u64 >t4=reg128#11,<r3=reg128#9,#26 # asm 2: vshr.u64 >t4=q10,<r3=q8,#26 vshr.u64 q10,q8,#26 # qhasm: x01 = x01[0,2,1,3] # asm 1: vtrn.32 <x01=reg128#4%bot,<x01=reg128#4%top # asm 2: vtrn.32 <x01=d6,<x01=d7 vtrn.32 d6,d7 # qhasm: r3 &= mask # asm 1: vand >r3=reg128#1,<r3=reg128#9,<mask=reg128#1 # asm 2: vand >r3=q0,<r3=q8,<mask=q0 vand q0,q8,q0 # qhasm: r1 = r1[0,2,1,3] # asm 1: vtrn.32 <r1=reg128#2%bot,<r1=reg128#2%top # asm 2: vtrn.32 <r1=d2,<r1=d3 vtrn.32 d2,d3 # qhasm: 2x x4 = r4 + t4 # asm 1: vadd.i64 >x4=reg128#3,<r4=reg128#3,<t4=reg128#11 # asm 2: vadd.i64 >x4=q2,<r4=q2,<t4=q10 vadd.i64 q2,q2,q10 # qhasm: r3 = r3[0,2,1,3] # asm 1: vtrn.32 <r3=reg128#1%bot,<r3=reg128#1%top # asm 2: vtrn.32 <r3=d0,<r3=d1 vtrn.32 d0,d1 # qhasm: x01 = x01[0,1] r1[0,1] # asm 1: vext.32 <x01=reg128#4%top,<r1=reg128#2%bot,<r1=reg128#2%bot,#0 # asm 2: vext.32 <x01=d7,<r1=d2,<r1=d2,#0 vext.32 d7,d2,d2,#0 # qhasm: x23 = x23[0,1] r3[0,1] # asm 1: vext.32 <x23=reg128#10%top,<r3=reg128#1%bot,<r3=reg128#1%bot,#0 # asm 2: vext.32 <x23=d19,<r3=d0,<r3=d0,#0 vext.32 d19,d0,d0,#0 # qhasm: x4 = x4[0,2,1,3] # asm 1: vtrn.32 <x4=reg128#3%bot,<x4=reg128#3%top # asm 2: vtrn.32 <x4=d4,<x4=d5 vtrn.32 d4,d5 # qhasm: mem128[input_0] aligned= x01;input_0+=16 # asm 1: vst1.8 {<x01=reg128#4%bot-<x01=reg128#4%top},[<input_0=int32#1,: 128]! # asm 2: vst1.8 {<x01=d6-<x01=d7},[<input_0=r0,: 128]! vst1.8 {d6-d7},[r0,: 128]! # qhasm: mem128[input_0] aligned= x23;input_0+=16 # asm 1: vst1.8 {<x23=reg128#10%bot-<x23=reg128#10%top},[<input_0=int32#1,: 128]! # asm 2: vst1.8 {<x23=d18-<x23=d19},[<input_0=r0,: 128]! vst1.8 {d18-d19},[r0,: 128]! # qhasm: mem64[input_0] aligned= x4[0] # asm 1: vst1.8 <x4=reg128#3%bot,[<input_0=int32#1,: 64] # asm 2: vst1.8 <x4=d4,[<input_0=r0,: 64] vst1.8 d4,[r0,: 64] # qhasm: return add sp,sp,#0 bx lr #endif /* !OPENSSL_NO_ASM && OPENSSL_ARM && __ELF__ */
mktmansour/MKT-KSA-Geolocation-Security
41,448
.cargo-home/registry/src/index.crates.io-1949cf8c6b5b557f/ring-0.17.14/crypto/curve25519/asm/x25519-asm-arm.S
// Copyright 2015 The BoringSSL Authors // // Licensed under the Apache License, Version 2.0 (the "License"); // you may not use this file except in compliance with the License. // You may obtain a copy of the License at // // https://www.apache.org/licenses/LICENSE-2.0 // // Unless required by applicable law or agreed to in writing, software // distributed under the License is distributed on an "AS IS" BASIS, // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. // See the License for the specific language governing permissions and // limitations under the License. /* This file is taken from crypto_scalarmult/curve25519/neon2/scalarmult.s in * SUPERCOP 20141124 (http://bench.cr.yp.to/supercop.html). That code is public * domain licensed but the standard Apache 2.0 license is included above to keep * licensing simple. */ #include <ring-core/asm_base.h> #if !defined(OPENSSL_NO_ASM) && defined(OPENSSL_ARM) && defined(__ELF__) .fpu neon .text .align 4 .global x25519_NEON .hidden x25519_NEON .type x25519_NEON, %function x25519_NEON: vpush {q4,q5,q6,q7} mov r12,sp sub sp,sp,#736 and sp,sp,#0xffffffe0 strd r4,[sp,#0] strd r6,[sp,#8] strd r8,[sp,#16] strd r10,[sp,#24] str r12,[sp,#480] str r14,[sp,#484] mov r0,r0 mov r1,r1 mov r2,r2 add r3,sp,#32 ldr r4,=0 ldr r5,=254 vmov.i32 q0,#1 vshr.u64 q1,q0,#7 vshr.u64 q0,q0,#8 vmov.i32 d4,#19 vmov.i32 d5,#38 add r6,sp,#512 vst1.8 {d2-d3},[r6,: 128] add r6,sp,#528 vst1.8 {d0-d1},[r6,: 128] add r6,sp,#544 vst1.8 {d4-d5},[r6,: 128] add r6,r3,#0 vmov.i32 q2,#0 vst1.8 {d4-d5},[r6,: 128]! vst1.8 {d4-d5},[r6,: 128]! vst1.8 d4,[r6,: 64] add r6,r3,#0 ldr r7,=960 sub r7,r7,#2 neg r7,r7 sub r7,r7,r7,LSL #7 str r7,[r6] add r6,sp,#704 vld1.8 {d4-d5},[r1]! vld1.8 {d6-d7},[r1] vst1.8 {d4-d5},[r6,: 128]! vst1.8 {d6-d7},[r6,: 128] sub r1,r6,#16 ldrb r6,[r1] and r6,r6,#248 strb r6,[r1] ldrb r6,[r1,#31] and r6,r6,#127 orr r6,r6,#64 strb r6,[r1,#31] vmov.i64 q2,#0xffffffff vshr.u64 q3,q2,#7 vshr.u64 q2,q2,#6 vld1.8 {d8},[r2] vld1.8 {d10},[r2] add r2,r2,#6 vld1.8 {d12},[r2] vld1.8 {d14},[r2] add r2,r2,#6 vld1.8 {d16},[r2] add r2,r2,#4 vld1.8 {d18},[r2] vld1.8 {d20},[r2] add r2,r2,#6 vld1.8 {d22},[r2] add r2,r2,#2 vld1.8 {d24},[r2] vld1.8 {d26},[r2] vshr.u64 q5,q5,#26 vshr.u64 q6,q6,#3 vshr.u64 q7,q7,#29 vshr.u64 q8,q8,#6 vshr.u64 q10,q10,#25 vshr.u64 q11,q11,#3 vshr.u64 q12,q12,#12 vshr.u64 q13,q13,#38 vand q4,q4,q2 vand q6,q6,q2 vand q8,q8,q2 vand q10,q10,q2 vand q2,q12,q2 vand q5,q5,q3 vand q7,q7,q3 vand q9,q9,q3 vand q11,q11,q3 vand q3,q13,q3 add r2,r3,#48 vadd.i64 q12,q4,q1 vadd.i64 q13,q10,q1 vshr.s64 q12,q12,#26 vshr.s64 q13,q13,#26 vadd.i64 q5,q5,q12 vshl.i64 q12,q12,#26 vadd.i64 q14,q5,q0 vadd.i64 q11,q11,q13 vshl.i64 q13,q13,#26 vadd.i64 q15,q11,q0 vsub.i64 q4,q4,q12 vshr.s64 q12,q14,#25 vsub.i64 q10,q10,q13 vshr.s64 q13,q15,#25 vadd.i64 q6,q6,q12 vshl.i64 q12,q12,#25 vadd.i64 q14,q6,q1 vadd.i64 q2,q2,q13 vsub.i64 q5,q5,q12 vshr.s64 q12,q14,#26 vshl.i64 q13,q13,#25 vadd.i64 q14,q2,q1 vadd.i64 q7,q7,q12 vshl.i64 q12,q12,#26 vadd.i64 q15,q7,q0 vsub.i64 q11,q11,q13 vshr.s64 q13,q14,#26 vsub.i64 q6,q6,q12 vshr.s64 q12,q15,#25 vadd.i64 q3,q3,q13 vshl.i64 q13,q13,#26 vadd.i64 q14,q3,q0 vadd.i64 q8,q8,q12 vshl.i64 q12,q12,#25 vadd.i64 q15,q8,q1 add r2,r2,#8 vsub.i64 q2,q2,q13 vshr.s64 q13,q14,#25 vsub.i64 q7,q7,q12 vshr.s64 q12,q15,#26 vadd.i64 q14,q13,q13 vadd.i64 q9,q9,q12 vtrn.32 d12,d14 vshl.i64 q12,q12,#26 vtrn.32 d13,d15 vadd.i64 q0,q9,q0 vadd.i64 q4,q4,q14 vst1.8 d12,[r2,: 64]! vshl.i64 q6,q13,#4 vsub.i64 q7,q8,q12 vshr.s64 q0,q0,#25 vadd.i64 q4,q4,q6 vadd.i64 q6,q10,q0 vshl.i64 q0,q0,#25 vadd.i64 q8,q6,q1 vadd.i64 q4,q4,q13 vshl.i64 q10,q13,#25 vadd.i64 q1,q4,q1 vsub.i64 q0,q9,q0 vshr.s64 q8,q8,#26 vsub.i64 q3,q3,q10 vtrn.32 d14,d0 vshr.s64 q1,q1,#26 vtrn.32 d15,d1 vadd.i64 q0,q11,q8 vst1.8 d14,[r2,: 64] vshl.i64 q7,q8,#26 vadd.i64 q5,q5,q1 vtrn.32 d4,d6 vshl.i64 q1,q1,#26 vtrn.32 d5,d7 vsub.i64 q3,q6,q7 add r2,r2,#16 vsub.i64 q1,q4,q1 vst1.8 d4,[r2,: 64] vtrn.32 d6,d0 vtrn.32 d7,d1 sub r2,r2,#8 vtrn.32 d2,d10 vtrn.32 d3,d11 vst1.8 d6,[r2,: 64] sub r2,r2,#24 vst1.8 d2,[r2,: 64] add r2,r3,#96 vmov.i32 q0,#0 vmov.i64 d2,#0xff vmov.i64 d3,#0 vshr.u32 q1,q1,#7 vst1.8 {d2-d3},[r2,: 128]! vst1.8 {d0-d1},[r2,: 128]! vst1.8 d0,[r2,: 64] add r2,r3,#144 vmov.i32 q0,#0 vst1.8 {d0-d1},[r2,: 128]! vst1.8 {d0-d1},[r2,: 128]! vst1.8 d0,[r2,: 64] add r2,r3,#240 vmov.i32 q0,#0 vmov.i64 d2,#0xff vmov.i64 d3,#0 vshr.u32 q1,q1,#7 vst1.8 {d2-d3},[r2,: 128]! vst1.8 {d0-d1},[r2,: 128]! vst1.8 d0,[r2,: 64] add r2,r3,#48 add r6,r3,#192 vld1.8 {d0-d1},[r2,: 128]! vld1.8 {d2-d3},[r2,: 128]! vld1.8 {d4},[r2,: 64] vst1.8 {d0-d1},[r6,: 128]! vst1.8 {d2-d3},[r6,: 128]! vst1.8 d4,[r6,: 64] ._mainloop: mov r2,r5,LSR #3 and r6,r5,#7 ldrb r2,[r1,r2] mov r2,r2,LSR r6 and r2,r2,#1 str r5,[sp,#488] eor r4,r4,r2 str r2,[sp,#492] neg r2,r4 add r4,r3,#96 add r5,r3,#192 add r6,r3,#144 vld1.8 {d8-d9},[r4,: 128]! add r7,r3,#240 vld1.8 {d10-d11},[r5,: 128]! veor q6,q4,q5 vld1.8 {d14-d15},[r6,: 128]! vdup.i32 q8,r2 vld1.8 {d18-d19},[r7,: 128]! veor q10,q7,q9 vld1.8 {d22-d23},[r4,: 128]! vand q6,q6,q8 vld1.8 {d24-d25},[r5,: 128]! vand q10,q10,q8 vld1.8 {d26-d27},[r6,: 128]! veor q4,q4,q6 vld1.8 {d28-d29},[r7,: 128]! veor q5,q5,q6 vld1.8 {d0},[r4,: 64] veor q6,q7,q10 vld1.8 {d2},[r5,: 64] veor q7,q9,q10 vld1.8 {d4},[r6,: 64] veor q9,q11,q12 vld1.8 {d6},[r7,: 64] veor q10,q0,q1 sub r2,r4,#32 vand q9,q9,q8 sub r4,r5,#32 vand q10,q10,q8 sub r5,r6,#32 veor q11,q11,q9 sub r6,r7,#32 veor q0,q0,q10 veor q9,q12,q9 veor q1,q1,q10 veor q10,q13,q14 veor q12,q2,q3 vand q10,q10,q8 vand q8,q12,q8 veor q12,q13,q10 veor q2,q2,q8 veor q10,q14,q10 veor q3,q3,q8 vadd.i32 q8,q4,q6 vsub.i32 q4,q4,q6 vst1.8 {d16-d17},[r2,: 128]! vadd.i32 q6,q11,q12 vst1.8 {d8-d9},[r5,: 128]! vsub.i32 q4,q11,q12 vst1.8 {d12-d13},[r2,: 128]! vadd.i32 q6,q0,q2 vst1.8 {d8-d9},[r5,: 128]! vsub.i32 q0,q0,q2 vst1.8 d12,[r2,: 64] vadd.i32 q2,q5,q7 vst1.8 d0,[r5,: 64] vsub.i32 q0,q5,q7 vst1.8 {d4-d5},[r4,: 128]! vadd.i32 q2,q9,q10 vst1.8 {d0-d1},[r6,: 128]! vsub.i32 q0,q9,q10 vst1.8 {d4-d5},[r4,: 128]! vadd.i32 q2,q1,q3 vst1.8 {d0-d1},[r6,: 128]! vsub.i32 q0,q1,q3 vst1.8 d4,[r4,: 64] vst1.8 d0,[r6,: 64] add r2,sp,#544 add r4,r3,#96 add r5,r3,#144 vld1.8 {d0-d1},[r2,: 128] vld1.8 {d2-d3},[r4,: 128]! vld1.8 {d4-d5},[r5,: 128]! vzip.i32 q1,q2 vld1.8 {d6-d7},[r4,: 128]! vld1.8 {d8-d9},[r5,: 128]! vshl.i32 q5,q1,#1 vzip.i32 q3,q4 vshl.i32 q6,q2,#1 vld1.8 {d14},[r4,: 64] vshl.i32 q8,q3,#1 vld1.8 {d15},[r5,: 64] vshl.i32 q9,q4,#1 vmul.i32 d21,d7,d1 vtrn.32 d14,d15 vmul.i32 q11,q4,q0 vmul.i32 q0,q7,q0 vmull.s32 q12,d2,d2 vmlal.s32 q12,d11,d1 vmlal.s32 q12,d12,d0 vmlal.s32 q12,d13,d23 vmlal.s32 q12,d16,d22 vmlal.s32 q12,d7,d21 vmull.s32 q10,d2,d11 vmlal.s32 q10,d4,d1 vmlal.s32 q10,d13,d0 vmlal.s32 q10,d6,d23 vmlal.s32 q10,d17,d22 vmull.s32 q13,d10,d4 vmlal.s32 q13,d11,d3 vmlal.s32 q13,d13,d1 vmlal.s32 q13,d16,d0 vmlal.s32 q13,d17,d23 vmlal.s32 q13,d8,d22 vmull.s32 q1,d10,d5 vmlal.s32 q1,d11,d4 vmlal.s32 q1,d6,d1 vmlal.s32 q1,d17,d0 vmlal.s32 q1,d8,d23 vmull.s32 q14,d10,d6 vmlal.s32 q14,d11,d13 vmlal.s32 q14,d4,d4 vmlal.s32 q14,d17,d1 vmlal.s32 q14,d18,d0 vmlal.s32 q14,d9,d23 vmull.s32 q11,d10,d7 vmlal.s32 q11,d11,d6 vmlal.s32 q11,d12,d5 vmlal.s32 q11,d8,d1 vmlal.s32 q11,d19,d0 vmull.s32 q15,d10,d8 vmlal.s32 q15,d11,d17 vmlal.s32 q15,d12,d6 vmlal.s32 q15,d13,d5 vmlal.s32 q15,d19,d1 vmlal.s32 q15,d14,d0 vmull.s32 q2,d10,d9 vmlal.s32 q2,d11,d8 vmlal.s32 q2,d12,d7 vmlal.s32 q2,d13,d6 vmlal.s32 q2,d14,d1 vmull.s32 q0,d15,d1 vmlal.s32 q0,d10,d14 vmlal.s32 q0,d11,d19 vmlal.s32 q0,d12,d8 vmlal.s32 q0,d13,d17 vmlal.s32 q0,d6,d6 add r2,sp,#512 vld1.8 {d18-d19},[r2,: 128] vmull.s32 q3,d16,d7 vmlal.s32 q3,d10,d15 vmlal.s32 q3,d11,d14 vmlal.s32 q3,d12,d9 vmlal.s32 q3,d13,d8 add r2,sp,#528 vld1.8 {d8-d9},[r2,: 128] vadd.i64 q5,q12,q9 vadd.i64 q6,q15,q9 vshr.s64 q5,q5,#26 vshr.s64 q6,q6,#26 vadd.i64 q7,q10,q5 vshl.i64 q5,q5,#26 vadd.i64 q8,q7,q4 vadd.i64 q2,q2,q6 vshl.i64 q6,q6,#26 vadd.i64 q10,q2,q4 vsub.i64 q5,q12,q5 vshr.s64 q8,q8,#25 vsub.i64 q6,q15,q6 vshr.s64 q10,q10,#25 vadd.i64 q12,q13,q8 vshl.i64 q8,q8,#25 vadd.i64 q13,q12,q9 vadd.i64 q0,q0,q10 vsub.i64 q7,q7,q8 vshr.s64 q8,q13,#26 vshl.i64 q10,q10,#25 vadd.i64 q13,q0,q9 vadd.i64 q1,q1,q8 vshl.i64 q8,q8,#26 vadd.i64 q15,q1,q4 vsub.i64 q2,q2,q10 vshr.s64 q10,q13,#26 vsub.i64 q8,q12,q8 vshr.s64 q12,q15,#25 vadd.i64 q3,q3,q10 vshl.i64 q10,q10,#26 vadd.i64 q13,q3,q4 vadd.i64 q14,q14,q12 add r2,r3,#288 vshl.i64 q12,q12,#25 add r4,r3,#336 vadd.i64 q15,q14,q9 add r2,r2,#8 vsub.i64 q0,q0,q10 add r4,r4,#8 vshr.s64 q10,q13,#25 vsub.i64 q1,q1,q12 vshr.s64 q12,q15,#26 vadd.i64 q13,q10,q10 vadd.i64 q11,q11,q12 vtrn.32 d16,d2 vshl.i64 q12,q12,#26 vtrn.32 d17,d3 vadd.i64 q1,q11,q4 vadd.i64 q4,q5,q13 vst1.8 d16,[r2,: 64]! vshl.i64 q5,q10,#4 vst1.8 d17,[r4,: 64]! vsub.i64 q8,q14,q12 vshr.s64 q1,q1,#25 vadd.i64 q4,q4,q5 vadd.i64 q5,q6,q1 vshl.i64 q1,q1,#25 vadd.i64 q6,q5,q9 vadd.i64 q4,q4,q10 vshl.i64 q10,q10,#25 vadd.i64 q9,q4,q9 vsub.i64 q1,q11,q1 vshr.s64 q6,q6,#26 vsub.i64 q3,q3,q10 vtrn.32 d16,d2 vshr.s64 q9,q9,#26 vtrn.32 d17,d3 vadd.i64 q1,q2,q6 vst1.8 d16,[r2,: 64] vshl.i64 q2,q6,#26 vst1.8 d17,[r4,: 64] vadd.i64 q6,q7,q9 vtrn.32 d0,d6 vshl.i64 q7,q9,#26 vtrn.32 d1,d7 vsub.i64 q2,q5,q2 add r2,r2,#16 vsub.i64 q3,q4,q7 vst1.8 d0,[r2,: 64] add r4,r4,#16 vst1.8 d1,[r4,: 64] vtrn.32 d4,d2 vtrn.32 d5,d3 sub r2,r2,#8 sub r4,r4,#8 vtrn.32 d6,d12 vtrn.32 d7,d13 vst1.8 d4,[r2,: 64] vst1.8 d5,[r4,: 64] sub r2,r2,#24 sub r4,r4,#24 vst1.8 d6,[r2,: 64] vst1.8 d7,[r4,: 64] add r2,r3,#240 add r4,r3,#96 vld1.8 {d0-d1},[r4,: 128]! vld1.8 {d2-d3},[r4,: 128]! vld1.8 {d4},[r4,: 64] add r4,r3,#144 vld1.8 {d6-d7},[r4,: 128]! vtrn.32 q0,q3 vld1.8 {d8-d9},[r4,: 128]! vshl.i32 q5,q0,#4 vtrn.32 q1,q4 vshl.i32 q6,q3,#4 vadd.i32 q5,q5,q0 vadd.i32 q6,q6,q3 vshl.i32 q7,q1,#4 vld1.8 {d5},[r4,: 64] vshl.i32 q8,q4,#4 vtrn.32 d4,d5 vadd.i32 q7,q7,q1 vadd.i32 q8,q8,q4 vld1.8 {d18-d19},[r2,: 128]! vshl.i32 q10,q2,#4 vld1.8 {d22-d23},[r2,: 128]! vadd.i32 q10,q10,q2 vld1.8 {d24},[r2,: 64] vadd.i32 q5,q5,q0 add r2,r3,#192 vld1.8 {d26-d27},[r2,: 128]! vadd.i32 q6,q6,q3 vld1.8 {d28-d29},[r2,: 128]! vadd.i32 q8,q8,q4 vld1.8 {d25},[r2,: 64] vadd.i32 q10,q10,q2 vtrn.32 q9,q13 vadd.i32 q7,q7,q1 vadd.i32 q5,q5,q0 vtrn.32 q11,q14 vadd.i32 q6,q6,q3 add r2,sp,#560 vadd.i32 q10,q10,q2 vtrn.32 d24,d25 vst1.8 {d12-d13},[r2,: 128] vshl.i32 q6,q13,#1 add r2,sp,#576 vst1.8 {d20-d21},[r2,: 128] vshl.i32 q10,q14,#1 add r2,sp,#592 vst1.8 {d12-d13},[r2,: 128] vshl.i32 q15,q12,#1 vadd.i32 q8,q8,q4 vext.32 d10,d31,d30,#0 vadd.i32 q7,q7,q1 add r2,sp,#608 vst1.8 {d16-d17},[r2,: 128] vmull.s32 q8,d18,d5 vmlal.s32 q8,d26,d4 vmlal.s32 q8,d19,d9 vmlal.s32 q8,d27,d3 vmlal.s32 q8,d22,d8 vmlal.s32 q8,d28,d2 vmlal.s32 q8,d23,d7 vmlal.s32 q8,d29,d1 vmlal.s32 q8,d24,d6 vmlal.s32 q8,d25,d0 add r2,sp,#624 vst1.8 {d14-d15},[r2,: 128] vmull.s32 q2,d18,d4 vmlal.s32 q2,d12,d9 vmlal.s32 q2,d13,d8 vmlal.s32 q2,d19,d3 vmlal.s32 q2,d22,d2 vmlal.s32 q2,d23,d1 vmlal.s32 q2,d24,d0 add r2,sp,#640 vst1.8 {d20-d21},[r2,: 128] vmull.s32 q7,d18,d9 vmlal.s32 q7,d26,d3 vmlal.s32 q7,d19,d8 vmlal.s32 q7,d27,d2 vmlal.s32 q7,d22,d7 vmlal.s32 q7,d28,d1 vmlal.s32 q7,d23,d6 vmlal.s32 q7,d29,d0 add r2,sp,#656 vst1.8 {d10-d11},[r2,: 128] vmull.s32 q5,d18,d3 vmlal.s32 q5,d19,d2 vmlal.s32 q5,d22,d1 vmlal.s32 q5,d23,d0 vmlal.s32 q5,d12,d8 add r2,sp,#672 vst1.8 {d16-d17},[r2,: 128] vmull.s32 q4,d18,d8 vmlal.s32 q4,d26,d2 vmlal.s32 q4,d19,d7 vmlal.s32 q4,d27,d1 vmlal.s32 q4,d22,d6 vmlal.s32 q4,d28,d0 vmull.s32 q8,d18,d7 vmlal.s32 q8,d26,d1 vmlal.s32 q8,d19,d6 vmlal.s32 q8,d27,d0 add r2,sp,#576 vld1.8 {d20-d21},[r2,: 128] vmlal.s32 q7,d24,d21 vmlal.s32 q7,d25,d20 vmlal.s32 q4,d23,d21 vmlal.s32 q4,d29,d20 vmlal.s32 q8,d22,d21 vmlal.s32 q8,d28,d20 vmlal.s32 q5,d24,d20 add r2,sp,#576 vst1.8 {d14-d15},[r2,: 128] vmull.s32 q7,d18,d6 vmlal.s32 q7,d26,d0 add r2,sp,#656 vld1.8 {d30-d31},[r2,: 128] vmlal.s32 q2,d30,d21 vmlal.s32 q7,d19,d21 vmlal.s32 q7,d27,d20 add r2,sp,#624 vld1.8 {d26-d27},[r2,: 128] vmlal.s32 q4,d25,d27 vmlal.s32 q8,d29,d27 vmlal.s32 q8,d25,d26 vmlal.s32 q7,d28,d27 vmlal.s32 q7,d29,d26 add r2,sp,#608 vld1.8 {d28-d29},[r2,: 128] vmlal.s32 q4,d24,d29 vmlal.s32 q8,d23,d29 vmlal.s32 q8,d24,d28 vmlal.s32 q7,d22,d29 vmlal.s32 q7,d23,d28 add r2,sp,#608 vst1.8 {d8-d9},[r2,: 128] add r2,sp,#560 vld1.8 {d8-d9},[r2,: 128] vmlal.s32 q7,d24,d9 vmlal.s32 q7,d25,d31 vmull.s32 q1,d18,d2 vmlal.s32 q1,d19,d1 vmlal.s32 q1,d22,d0 vmlal.s32 q1,d24,d27 vmlal.s32 q1,d23,d20 vmlal.s32 q1,d12,d7 vmlal.s32 q1,d13,d6 vmull.s32 q6,d18,d1 vmlal.s32 q6,d19,d0 vmlal.s32 q6,d23,d27 vmlal.s32 q6,d22,d20 vmlal.s32 q6,d24,d26 vmull.s32 q0,d18,d0 vmlal.s32 q0,d22,d27 vmlal.s32 q0,d23,d26 vmlal.s32 q0,d24,d31 vmlal.s32 q0,d19,d20 add r2,sp,#640 vld1.8 {d18-d19},[r2,: 128] vmlal.s32 q2,d18,d7 vmlal.s32 q2,d19,d6 vmlal.s32 q5,d18,d6 vmlal.s32 q5,d19,d21 vmlal.s32 q1,d18,d21 vmlal.s32 q1,d19,d29 vmlal.s32 q0,d18,d28 vmlal.s32 q0,d19,d9 vmlal.s32 q6,d18,d29 vmlal.s32 q6,d19,d28 add r2,sp,#592 vld1.8 {d18-d19},[r2,: 128] add r2,sp,#512 vld1.8 {d22-d23},[r2,: 128] vmlal.s32 q5,d19,d7 vmlal.s32 q0,d18,d21 vmlal.s32 q0,d19,d29 vmlal.s32 q6,d18,d6 add r2,sp,#528 vld1.8 {d6-d7},[r2,: 128] vmlal.s32 q6,d19,d21 add r2,sp,#576 vld1.8 {d18-d19},[r2,: 128] vmlal.s32 q0,d30,d8 add r2,sp,#672 vld1.8 {d20-d21},[r2,: 128] vmlal.s32 q5,d30,d29 add r2,sp,#608 vld1.8 {d24-d25},[r2,: 128] vmlal.s32 q1,d30,d28 vadd.i64 q13,q0,q11 vadd.i64 q14,q5,q11 vmlal.s32 q6,d30,d9 vshr.s64 q4,q13,#26 vshr.s64 q13,q14,#26 vadd.i64 q7,q7,q4 vshl.i64 q4,q4,#26 vadd.i64 q14,q7,q3 vadd.i64 q9,q9,q13 vshl.i64 q13,q13,#26 vadd.i64 q15,q9,q3 vsub.i64 q0,q0,q4 vshr.s64 q4,q14,#25 vsub.i64 q5,q5,q13 vshr.s64 q13,q15,#25 vadd.i64 q6,q6,q4 vshl.i64 q4,q4,#25 vadd.i64 q14,q6,q11 vadd.i64 q2,q2,q13 vsub.i64 q4,q7,q4 vshr.s64 q7,q14,#26 vshl.i64 q13,q13,#25 vadd.i64 q14,q2,q11 vadd.i64 q8,q8,q7 vshl.i64 q7,q7,#26 vadd.i64 q15,q8,q3 vsub.i64 q9,q9,q13 vshr.s64 q13,q14,#26 vsub.i64 q6,q6,q7 vshr.s64 q7,q15,#25 vadd.i64 q10,q10,q13 vshl.i64 q13,q13,#26 vadd.i64 q14,q10,q3 vadd.i64 q1,q1,q7 add r2,r3,#144 vshl.i64 q7,q7,#25 add r4,r3,#96 vadd.i64 q15,q1,q11 add r2,r2,#8 vsub.i64 q2,q2,q13 add r4,r4,#8 vshr.s64 q13,q14,#25 vsub.i64 q7,q8,q7 vshr.s64 q8,q15,#26 vadd.i64 q14,q13,q13 vadd.i64 q12,q12,q8 vtrn.32 d12,d14 vshl.i64 q8,q8,#26 vtrn.32 d13,d15 vadd.i64 q3,q12,q3 vadd.i64 q0,q0,q14 vst1.8 d12,[r2,: 64]! vshl.i64 q7,q13,#4 vst1.8 d13,[r4,: 64]! vsub.i64 q1,q1,q8 vshr.s64 q3,q3,#25 vadd.i64 q0,q0,q7 vadd.i64 q5,q5,q3 vshl.i64 q3,q3,#25 vadd.i64 q6,q5,q11 vadd.i64 q0,q0,q13 vshl.i64 q7,q13,#25 vadd.i64 q8,q0,q11 vsub.i64 q3,q12,q3 vshr.s64 q6,q6,#26 vsub.i64 q7,q10,q7 vtrn.32 d2,d6 vshr.s64 q8,q8,#26 vtrn.32 d3,d7 vadd.i64 q3,q9,q6 vst1.8 d2,[r2,: 64] vshl.i64 q6,q6,#26 vst1.8 d3,[r4,: 64] vadd.i64 q1,q4,q8 vtrn.32 d4,d14 vshl.i64 q4,q8,#26 vtrn.32 d5,d15 vsub.i64 q5,q5,q6 add r2,r2,#16 vsub.i64 q0,q0,q4 vst1.8 d4,[r2,: 64] add r4,r4,#16 vst1.8 d5,[r4,: 64] vtrn.32 d10,d6 vtrn.32 d11,d7 sub r2,r2,#8 sub r4,r4,#8 vtrn.32 d0,d2 vtrn.32 d1,d3 vst1.8 d10,[r2,: 64] vst1.8 d11,[r4,: 64] sub r2,r2,#24 sub r4,r4,#24 vst1.8 d0,[r2,: 64] vst1.8 d1,[r4,: 64] add r2,r3,#288 add r4,r3,#336 vld1.8 {d0-d1},[r2,: 128]! vld1.8 {d2-d3},[r4,: 128]! vsub.i32 q0,q0,q1 vld1.8 {d2-d3},[r2,: 128]! vld1.8 {d4-d5},[r4,: 128]! vsub.i32 q1,q1,q2 add r5,r3,#240 vld1.8 {d4},[r2,: 64] vld1.8 {d6},[r4,: 64] vsub.i32 q2,q2,q3 vst1.8 {d0-d1},[r5,: 128]! vst1.8 {d2-d3},[r5,: 128]! vst1.8 d4,[r5,: 64] add r2,r3,#144 add r4,r3,#96 add r5,r3,#144 add r6,r3,#192 vld1.8 {d0-d1},[r2,: 128]! vld1.8 {d2-d3},[r4,: 128]! vsub.i32 q2,q0,q1 vadd.i32 q0,q0,q1 vld1.8 {d2-d3},[r2,: 128]! vld1.8 {d6-d7},[r4,: 128]! vsub.i32 q4,q1,q3 vadd.i32 q1,q1,q3 vld1.8 {d6},[r2,: 64] vld1.8 {d10},[r4,: 64] vsub.i32 q6,q3,q5 vadd.i32 q3,q3,q5 vst1.8 {d4-d5},[r5,: 128]! vst1.8 {d0-d1},[r6,: 128]! vst1.8 {d8-d9},[r5,: 128]! vst1.8 {d2-d3},[r6,: 128]! vst1.8 d12,[r5,: 64] vst1.8 d6,[r6,: 64] add r2,r3,#0 add r4,r3,#240 vld1.8 {d0-d1},[r4,: 128]! vld1.8 {d2-d3},[r4,: 128]! vld1.8 {d4},[r4,: 64] add r4,r3,#336 vld1.8 {d6-d7},[r4,: 128]! vtrn.32 q0,q3 vld1.8 {d8-d9},[r4,: 128]! vshl.i32 q5,q0,#4 vtrn.32 q1,q4 vshl.i32 q6,q3,#4 vadd.i32 q5,q5,q0 vadd.i32 q6,q6,q3 vshl.i32 q7,q1,#4 vld1.8 {d5},[r4,: 64] vshl.i32 q8,q4,#4 vtrn.32 d4,d5 vadd.i32 q7,q7,q1 vadd.i32 q8,q8,q4 vld1.8 {d18-d19},[r2,: 128]! vshl.i32 q10,q2,#4 vld1.8 {d22-d23},[r2,: 128]! vadd.i32 q10,q10,q2 vld1.8 {d24},[r2,: 64] vadd.i32 q5,q5,q0 add r2,r3,#288 vld1.8 {d26-d27},[r2,: 128]! vadd.i32 q6,q6,q3 vld1.8 {d28-d29},[r2,: 128]! vadd.i32 q8,q8,q4 vld1.8 {d25},[r2,: 64] vadd.i32 q10,q10,q2 vtrn.32 q9,q13 vadd.i32 q7,q7,q1 vadd.i32 q5,q5,q0 vtrn.32 q11,q14 vadd.i32 q6,q6,q3 add r2,sp,#560 vadd.i32 q10,q10,q2 vtrn.32 d24,d25 vst1.8 {d12-d13},[r2,: 128] vshl.i32 q6,q13,#1 add r2,sp,#576 vst1.8 {d20-d21},[r2,: 128] vshl.i32 q10,q14,#1 add r2,sp,#592 vst1.8 {d12-d13},[r2,: 128] vshl.i32 q15,q12,#1 vadd.i32 q8,q8,q4 vext.32 d10,d31,d30,#0 vadd.i32 q7,q7,q1 add r2,sp,#608 vst1.8 {d16-d17},[r2,: 128] vmull.s32 q8,d18,d5 vmlal.s32 q8,d26,d4 vmlal.s32 q8,d19,d9 vmlal.s32 q8,d27,d3 vmlal.s32 q8,d22,d8 vmlal.s32 q8,d28,d2 vmlal.s32 q8,d23,d7 vmlal.s32 q8,d29,d1 vmlal.s32 q8,d24,d6 vmlal.s32 q8,d25,d0 add r2,sp,#624 vst1.8 {d14-d15},[r2,: 128] vmull.s32 q2,d18,d4 vmlal.s32 q2,d12,d9 vmlal.s32 q2,d13,d8 vmlal.s32 q2,d19,d3 vmlal.s32 q2,d22,d2 vmlal.s32 q2,d23,d1 vmlal.s32 q2,d24,d0 add r2,sp,#640 vst1.8 {d20-d21},[r2,: 128] vmull.s32 q7,d18,d9 vmlal.s32 q7,d26,d3 vmlal.s32 q7,d19,d8 vmlal.s32 q7,d27,d2 vmlal.s32 q7,d22,d7 vmlal.s32 q7,d28,d1 vmlal.s32 q7,d23,d6 vmlal.s32 q7,d29,d0 add r2,sp,#656 vst1.8 {d10-d11},[r2,: 128] vmull.s32 q5,d18,d3 vmlal.s32 q5,d19,d2 vmlal.s32 q5,d22,d1 vmlal.s32 q5,d23,d0 vmlal.s32 q5,d12,d8 add r2,sp,#672 vst1.8 {d16-d17},[r2,: 128] vmull.s32 q4,d18,d8 vmlal.s32 q4,d26,d2 vmlal.s32 q4,d19,d7 vmlal.s32 q4,d27,d1 vmlal.s32 q4,d22,d6 vmlal.s32 q4,d28,d0 vmull.s32 q8,d18,d7 vmlal.s32 q8,d26,d1 vmlal.s32 q8,d19,d6 vmlal.s32 q8,d27,d0 add r2,sp,#576 vld1.8 {d20-d21},[r2,: 128] vmlal.s32 q7,d24,d21 vmlal.s32 q7,d25,d20 vmlal.s32 q4,d23,d21 vmlal.s32 q4,d29,d20 vmlal.s32 q8,d22,d21 vmlal.s32 q8,d28,d20 vmlal.s32 q5,d24,d20 add r2,sp,#576 vst1.8 {d14-d15},[r2,: 128] vmull.s32 q7,d18,d6 vmlal.s32 q7,d26,d0 add r2,sp,#656 vld1.8 {d30-d31},[r2,: 128] vmlal.s32 q2,d30,d21 vmlal.s32 q7,d19,d21 vmlal.s32 q7,d27,d20 add r2,sp,#624 vld1.8 {d26-d27},[r2,: 128] vmlal.s32 q4,d25,d27 vmlal.s32 q8,d29,d27 vmlal.s32 q8,d25,d26 vmlal.s32 q7,d28,d27 vmlal.s32 q7,d29,d26 add r2,sp,#608 vld1.8 {d28-d29},[r2,: 128] vmlal.s32 q4,d24,d29 vmlal.s32 q8,d23,d29 vmlal.s32 q8,d24,d28 vmlal.s32 q7,d22,d29 vmlal.s32 q7,d23,d28 add r2,sp,#608 vst1.8 {d8-d9},[r2,: 128] add r2,sp,#560 vld1.8 {d8-d9},[r2,: 128] vmlal.s32 q7,d24,d9 vmlal.s32 q7,d25,d31 vmull.s32 q1,d18,d2 vmlal.s32 q1,d19,d1 vmlal.s32 q1,d22,d0 vmlal.s32 q1,d24,d27 vmlal.s32 q1,d23,d20 vmlal.s32 q1,d12,d7 vmlal.s32 q1,d13,d6 vmull.s32 q6,d18,d1 vmlal.s32 q6,d19,d0 vmlal.s32 q6,d23,d27 vmlal.s32 q6,d22,d20 vmlal.s32 q6,d24,d26 vmull.s32 q0,d18,d0 vmlal.s32 q0,d22,d27 vmlal.s32 q0,d23,d26 vmlal.s32 q0,d24,d31 vmlal.s32 q0,d19,d20 add r2,sp,#640 vld1.8 {d18-d19},[r2,: 128] vmlal.s32 q2,d18,d7 vmlal.s32 q2,d19,d6 vmlal.s32 q5,d18,d6 vmlal.s32 q5,d19,d21 vmlal.s32 q1,d18,d21 vmlal.s32 q1,d19,d29 vmlal.s32 q0,d18,d28 vmlal.s32 q0,d19,d9 vmlal.s32 q6,d18,d29 vmlal.s32 q6,d19,d28 add r2,sp,#592 vld1.8 {d18-d19},[r2,: 128] add r2,sp,#512 vld1.8 {d22-d23},[r2,: 128] vmlal.s32 q5,d19,d7 vmlal.s32 q0,d18,d21 vmlal.s32 q0,d19,d29 vmlal.s32 q6,d18,d6 add r2,sp,#528 vld1.8 {d6-d7},[r2,: 128] vmlal.s32 q6,d19,d21 add r2,sp,#576 vld1.8 {d18-d19},[r2,: 128] vmlal.s32 q0,d30,d8 add r2,sp,#672 vld1.8 {d20-d21},[r2,: 128] vmlal.s32 q5,d30,d29 add r2,sp,#608 vld1.8 {d24-d25},[r2,: 128] vmlal.s32 q1,d30,d28 vadd.i64 q13,q0,q11 vadd.i64 q14,q5,q11 vmlal.s32 q6,d30,d9 vshr.s64 q4,q13,#26 vshr.s64 q13,q14,#26 vadd.i64 q7,q7,q4 vshl.i64 q4,q4,#26 vadd.i64 q14,q7,q3 vadd.i64 q9,q9,q13 vshl.i64 q13,q13,#26 vadd.i64 q15,q9,q3 vsub.i64 q0,q0,q4 vshr.s64 q4,q14,#25 vsub.i64 q5,q5,q13 vshr.s64 q13,q15,#25 vadd.i64 q6,q6,q4 vshl.i64 q4,q4,#25 vadd.i64 q14,q6,q11 vadd.i64 q2,q2,q13 vsub.i64 q4,q7,q4 vshr.s64 q7,q14,#26 vshl.i64 q13,q13,#25 vadd.i64 q14,q2,q11 vadd.i64 q8,q8,q7 vshl.i64 q7,q7,#26 vadd.i64 q15,q8,q3 vsub.i64 q9,q9,q13 vshr.s64 q13,q14,#26 vsub.i64 q6,q6,q7 vshr.s64 q7,q15,#25 vadd.i64 q10,q10,q13 vshl.i64 q13,q13,#26 vadd.i64 q14,q10,q3 vadd.i64 q1,q1,q7 add r2,r3,#288 vshl.i64 q7,q7,#25 add r4,r3,#96 vadd.i64 q15,q1,q11 add r2,r2,#8 vsub.i64 q2,q2,q13 add r4,r4,#8 vshr.s64 q13,q14,#25 vsub.i64 q7,q8,q7 vshr.s64 q8,q15,#26 vadd.i64 q14,q13,q13 vadd.i64 q12,q12,q8 vtrn.32 d12,d14 vshl.i64 q8,q8,#26 vtrn.32 d13,d15 vadd.i64 q3,q12,q3 vadd.i64 q0,q0,q14 vst1.8 d12,[r2,: 64]! vshl.i64 q7,q13,#4 vst1.8 d13,[r4,: 64]! vsub.i64 q1,q1,q8 vshr.s64 q3,q3,#25 vadd.i64 q0,q0,q7 vadd.i64 q5,q5,q3 vshl.i64 q3,q3,#25 vadd.i64 q6,q5,q11 vadd.i64 q0,q0,q13 vshl.i64 q7,q13,#25 vadd.i64 q8,q0,q11 vsub.i64 q3,q12,q3 vshr.s64 q6,q6,#26 vsub.i64 q7,q10,q7 vtrn.32 d2,d6 vshr.s64 q8,q8,#26 vtrn.32 d3,d7 vadd.i64 q3,q9,q6 vst1.8 d2,[r2,: 64] vshl.i64 q6,q6,#26 vst1.8 d3,[r4,: 64] vadd.i64 q1,q4,q8 vtrn.32 d4,d14 vshl.i64 q4,q8,#26 vtrn.32 d5,d15 vsub.i64 q5,q5,q6 add r2,r2,#16 vsub.i64 q0,q0,q4 vst1.8 d4,[r2,: 64] add r4,r4,#16 vst1.8 d5,[r4,: 64] vtrn.32 d10,d6 vtrn.32 d11,d7 sub r2,r2,#8 sub r4,r4,#8 vtrn.32 d0,d2 vtrn.32 d1,d3 vst1.8 d10,[r2,: 64] vst1.8 d11,[r4,: 64] sub r2,r2,#24 sub r4,r4,#24 vst1.8 d0,[r2,: 64] vst1.8 d1,[r4,: 64] add r2,sp,#544 add r4,r3,#144 add r5,r3,#192 vld1.8 {d0-d1},[r2,: 128] vld1.8 {d2-d3},[r4,: 128]! vld1.8 {d4-d5},[r5,: 128]! vzip.i32 q1,q2 vld1.8 {d6-d7},[r4,: 128]! vld1.8 {d8-d9},[r5,: 128]! vshl.i32 q5,q1,#1 vzip.i32 q3,q4 vshl.i32 q6,q2,#1 vld1.8 {d14},[r4,: 64] vshl.i32 q8,q3,#1 vld1.8 {d15},[r5,: 64] vshl.i32 q9,q4,#1 vmul.i32 d21,d7,d1 vtrn.32 d14,d15 vmul.i32 q11,q4,q0 vmul.i32 q0,q7,q0 vmull.s32 q12,d2,d2 vmlal.s32 q12,d11,d1 vmlal.s32 q12,d12,d0 vmlal.s32 q12,d13,d23 vmlal.s32 q12,d16,d22 vmlal.s32 q12,d7,d21 vmull.s32 q10,d2,d11 vmlal.s32 q10,d4,d1 vmlal.s32 q10,d13,d0 vmlal.s32 q10,d6,d23 vmlal.s32 q10,d17,d22 vmull.s32 q13,d10,d4 vmlal.s32 q13,d11,d3 vmlal.s32 q13,d13,d1 vmlal.s32 q13,d16,d0 vmlal.s32 q13,d17,d23 vmlal.s32 q13,d8,d22 vmull.s32 q1,d10,d5 vmlal.s32 q1,d11,d4 vmlal.s32 q1,d6,d1 vmlal.s32 q1,d17,d0 vmlal.s32 q1,d8,d23 vmull.s32 q14,d10,d6 vmlal.s32 q14,d11,d13 vmlal.s32 q14,d4,d4 vmlal.s32 q14,d17,d1 vmlal.s32 q14,d18,d0 vmlal.s32 q14,d9,d23 vmull.s32 q11,d10,d7 vmlal.s32 q11,d11,d6 vmlal.s32 q11,d12,d5 vmlal.s32 q11,d8,d1 vmlal.s32 q11,d19,d0 vmull.s32 q15,d10,d8 vmlal.s32 q15,d11,d17 vmlal.s32 q15,d12,d6 vmlal.s32 q15,d13,d5 vmlal.s32 q15,d19,d1 vmlal.s32 q15,d14,d0 vmull.s32 q2,d10,d9 vmlal.s32 q2,d11,d8 vmlal.s32 q2,d12,d7 vmlal.s32 q2,d13,d6 vmlal.s32 q2,d14,d1 vmull.s32 q0,d15,d1 vmlal.s32 q0,d10,d14 vmlal.s32 q0,d11,d19 vmlal.s32 q0,d12,d8 vmlal.s32 q0,d13,d17 vmlal.s32 q0,d6,d6 add r2,sp,#512 vld1.8 {d18-d19},[r2,: 128] vmull.s32 q3,d16,d7 vmlal.s32 q3,d10,d15 vmlal.s32 q3,d11,d14 vmlal.s32 q3,d12,d9 vmlal.s32 q3,d13,d8 add r2,sp,#528 vld1.8 {d8-d9},[r2,: 128] vadd.i64 q5,q12,q9 vadd.i64 q6,q15,q9 vshr.s64 q5,q5,#26 vshr.s64 q6,q6,#26 vadd.i64 q7,q10,q5 vshl.i64 q5,q5,#26 vadd.i64 q8,q7,q4 vadd.i64 q2,q2,q6 vshl.i64 q6,q6,#26 vadd.i64 q10,q2,q4 vsub.i64 q5,q12,q5 vshr.s64 q8,q8,#25 vsub.i64 q6,q15,q6 vshr.s64 q10,q10,#25 vadd.i64 q12,q13,q8 vshl.i64 q8,q8,#25 vadd.i64 q13,q12,q9 vadd.i64 q0,q0,q10 vsub.i64 q7,q7,q8 vshr.s64 q8,q13,#26 vshl.i64 q10,q10,#25 vadd.i64 q13,q0,q9 vadd.i64 q1,q1,q8 vshl.i64 q8,q8,#26 vadd.i64 q15,q1,q4 vsub.i64 q2,q2,q10 vshr.s64 q10,q13,#26 vsub.i64 q8,q12,q8 vshr.s64 q12,q15,#25 vadd.i64 q3,q3,q10 vshl.i64 q10,q10,#26 vadd.i64 q13,q3,q4 vadd.i64 q14,q14,q12 add r2,r3,#144 vshl.i64 q12,q12,#25 add r4,r3,#192 vadd.i64 q15,q14,q9 add r2,r2,#8 vsub.i64 q0,q0,q10 add r4,r4,#8 vshr.s64 q10,q13,#25 vsub.i64 q1,q1,q12 vshr.s64 q12,q15,#26 vadd.i64 q13,q10,q10 vadd.i64 q11,q11,q12 vtrn.32 d16,d2 vshl.i64 q12,q12,#26 vtrn.32 d17,d3 vadd.i64 q1,q11,q4 vadd.i64 q4,q5,q13 vst1.8 d16,[r2,: 64]! vshl.i64 q5,q10,#4 vst1.8 d17,[r4,: 64]! vsub.i64 q8,q14,q12 vshr.s64 q1,q1,#25 vadd.i64 q4,q4,q5 vadd.i64 q5,q6,q1 vshl.i64 q1,q1,#25 vadd.i64 q6,q5,q9 vadd.i64 q4,q4,q10 vshl.i64 q10,q10,#25 vadd.i64 q9,q4,q9 vsub.i64 q1,q11,q1 vshr.s64 q6,q6,#26 vsub.i64 q3,q3,q10 vtrn.32 d16,d2 vshr.s64 q9,q9,#26 vtrn.32 d17,d3 vadd.i64 q1,q2,q6 vst1.8 d16,[r2,: 64] vshl.i64 q2,q6,#26 vst1.8 d17,[r4,: 64] vadd.i64 q6,q7,q9 vtrn.32 d0,d6 vshl.i64 q7,q9,#26 vtrn.32 d1,d7 vsub.i64 q2,q5,q2 add r2,r2,#16 vsub.i64 q3,q4,q7 vst1.8 d0,[r2,: 64] add r4,r4,#16 vst1.8 d1,[r4,: 64] vtrn.32 d4,d2 vtrn.32 d5,d3 sub r2,r2,#8 sub r4,r4,#8 vtrn.32 d6,d12 vtrn.32 d7,d13 vst1.8 d4,[r2,: 64] vst1.8 d5,[r4,: 64] sub r2,r2,#24 sub r4,r4,#24 vst1.8 d6,[r2,: 64] vst1.8 d7,[r4,: 64] add r2,r3,#336 add r4,r3,#288 vld1.8 {d0-d1},[r2,: 128]! vld1.8 {d2-d3},[r4,: 128]! vadd.i32 q0,q0,q1 vld1.8 {d2-d3},[r2,: 128]! vld1.8 {d4-d5},[r4,: 128]! vadd.i32 q1,q1,q2 add r5,r3,#288 vld1.8 {d4},[r2,: 64] vld1.8 {d6},[r4,: 64] vadd.i32 q2,q2,q3 vst1.8 {d0-d1},[r5,: 128]! vst1.8 {d2-d3},[r5,: 128]! vst1.8 d4,[r5,: 64] add r2,r3,#48 add r4,r3,#144 vld1.8 {d0-d1},[r4,: 128]! vld1.8 {d2-d3},[r4,: 128]! vld1.8 {d4},[r4,: 64] add r4,r3,#288 vld1.8 {d6-d7},[r4,: 128]! vtrn.32 q0,q3 vld1.8 {d8-d9},[r4,: 128]! vshl.i32 q5,q0,#4 vtrn.32 q1,q4 vshl.i32 q6,q3,#4 vadd.i32 q5,q5,q0 vadd.i32 q6,q6,q3 vshl.i32 q7,q1,#4 vld1.8 {d5},[r4,: 64] vshl.i32 q8,q4,#4 vtrn.32 d4,d5 vadd.i32 q7,q7,q1 vadd.i32 q8,q8,q4 vld1.8 {d18-d19},[r2,: 128]! vshl.i32 q10,q2,#4 vld1.8 {d22-d23},[r2,: 128]! vadd.i32 q10,q10,q2 vld1.8 {d24},[r2,: 64] vadd.i32 q5,q5,q0 add r2,r3,#240 vld1.8 {d26-d27},[r2,: 128]! vadd.i32 q6,q6,q3 vld1.8 {d28-d29},[r2,: 128]! vadd.i32 q8,q8,q4 vld1.8 {d25},[r2,: 64] vadd.i32 q10,q10,q2 vtrn.32 q9,q13 vadd.i32 q7,q7,q1 vadd.i32 q5,q5,q0 vtrn.32 q11,q14 vadd.i32 q6,q6,q3 add r2,sp,#560 vadd.i32 q10,q10,q2 vtrn.32 d24,d25 vst1.8 {d12-d13},[r2,: 128] vshl.i32 q6,q13,#1 add r2,sp,#576 vst1.8 {d20-d21},[r2,: 128] vshl.i32 q10,q14,#1 add r2,sp,#592 vst1.8 {d12-d13},[r2,: 128] vshl.i32 q15,q12,#1 vadd.i32 q8,q8,q4 vext.32 d10,d31,d30,#0 vadd.i32 q7,q7,q1 add r2,sp,#608 vst1.8 {d16-d17},[r2,: 128] vmull.s32 q8,d18,d5 vmlal.s32 q8,d26,d4 vmlal.s32 q8,d19,d9 vmlal.s32 q8,d27,d3 vmlal.s32 q8,d22,d8 vmlal.s32 q8,d28,d2 vmlal.s32 q8,d23,d7 vmlal.s32 q8,d29,d1 vmlal.s32 q8,d24,d6 vmlal.s32 q8,d25,d0 add r2,sp,#624 vst1.8 {d14-d15},[r2,: 128] vmull.s32 q2,d18,d4 vmlal.s32 q2,d12,d9 vmlal.s32 q2,d13,d8 vmlal.s32 q2,d19,d3 vmlal.s32 q2,d22,d2 vmlal.s32 q2,d23,d1 vmlal.s32 q2,d24,d0 add r2,sp,#640 vst1.8 {d20-d21},[r2,: 128] vmull.s32 q7,d18,d9 vmlal.s32 q7,d26,d3 vmlal.s32 q7,d19,d8 vmlal.s32 q7,d27,d2 vmlal.s32 q7,d22,d7 vmlal.s32 q7,d28,d1 vmlal.s32 q7,d23,d6 vmlal.s32 q7,d29,d0 add r2,sp,#656 vst1.8 {d10-d11},[r2,: 128] vmull.s32 q5,d18,d3 vmlal.s32 q5,d19,d2 vmlal.s32 q5,d22,d1 vmlal.s32 q5,d23,d0 vmlal.s32 q5,d12,d8 add r2,sp,#672 vst1.8 {d16-d17},[r2,: 128] vmull.s32 q4,d18,d8 vmlal.s32 q4,d26,d2 vmlal.s32 q4,d19,d7 vmlal.s32 q4,d27,d1 vmlal.s32 q4,d22,d6 vmlal.s32 q4,d28,d0 vmull.s32 q8,d18,d7 vmlal.s32 q8,d26,d1 vmlal.s32 q8,d19,d6 vmlal.s32 q8,d27,d0 add r2,sp,#576 vld1.8 {d20-d21},[r2,: 128] vmlal.s32 q7,d24,d21 vmlal.s32 q7,d25,d20 vmlal.s32 q4,d23,d21 vmlal.s32 q4,d29,d20 vmlal.s32 q8,d22,d21 vmlal.s32 q8,d28,d20 vmlal.s32 q5,d24,d20 add r2,sp,#576 vst1.8 {d14-d15},[r2,: 128] vmull.s32 q7,d18,d6 vmlal.s32 q7,d26,d0 add r2,sp,#656 vld1.8 {d30-d31},[r2,: 128] vmlal.s32 q2,d30,d21 vmlal.s32 q7,d19,d21 vmlal.s32 q7,d27,d20 add r2,sp,#624 vld1.8 {d26-d27},[r2,: 128] vmlal.s32 q4,d25,d27 vmlal.s32 q8,d29,d27 vmlal.s32 q8,d25,d26 vmlal.s32 q7,d28,d27 vmlal.s32 q7,d29,d26 add r2,sp,#608 vld1.8 {d28-d29},[r2,: 128] vmlal.s32 q4,d24,d29 vmlal.s32 q8,d23,d29 vmlal.s32 q8,d24,d28 vmlal.s32 q7,d22,d29 vmlal.s32 q7,d23,d28 add r2,sp,#608 vst1.8 {d8-d9},[r2,: 128] add r2,sp,#560 vld1.8 {d8-d9},[r2,: 128] vmlal.s32 q7,d24,d9 vmlal.s32 q7,d25,d31 vmull.s32 q1,d18,d2 vmlal.s32 q1,d19,d1 vmlal.s32 q1,d22,d0 vmlal.s32 q1,d24,d27 vmlal.s32 q1,d23,d20 vmlal.s32 q1,d12,d7 vmlal.s32 q1,d13,d6 vmull.s32 q6,d18,d1 vmlal.s32 q6,d19,d0 vmlal.s32 q6,d23,d27 vmlal.s32 q6,d22,d20 vmlal.s32 q6,d24,d26 vmull.s32 q0,d18,d0 vmlal.s32 q0,d22,d27 vmlal.s32 q0,d23,d26 vmlal.s32 q0,d24,d31 vmlal.s32 q0,d19,d20 add r2,sp,#640 vld1.8 {d18-d19},[r2,: 128] vmlal.s32 q2,d18,d7 vmlal.s32 q2,d19,d6 vmlal.s32 q5,d18,d6 vmlal.s32 q5,d19,d21 vmlal.s32 q1,d18,d21 vmlal.s32 q1,d19,d29 vmlal.s32 q0,d18,d28 vmlal.s32 q0,d19,d9 vmlal.s32 q6,d18,d29 vmlal.s32 q6,d19,d28 add r2,sp,#592 vld1.8 {d18-d19},[r2,: 128] add r2,sp,#512 vld1.8 {d22-d23},[r2,: 128] vmlal.s32 q5,d19,d7 vmlal.s32 q0,d18,d21 vmlal.s32 q0,d19,d29 vmlal.s32 q6,d18,d6 add r2,sp,#528 vld1.8 {d6-d7},[r2,: 128] vmlal.s32 q6,d19,d21 add r2,sp,#576 vld1.8 {d18-d19},[r2,: 128] vmlal.s32 q0,d30,d8 add r2,sp,#672 vld1.8 {d20-d21},[r2,: 128] vmlal.s32 q5,d30,d29 add r2,sp,#608 vld1.8 {d24-d25},[r2,: 128] vmlal.s32 q1,d30,d28 vadd.i64 q13,q0,q11 vadd.i64 q14,q5,q11 vmlal.s32 q6,d30,d9 vshr.s64 q4,q13,#26 vshr.s64 q13,q14,#26 vadd.i64 q7,q7,q4 vshl.i64 q4,q4,#26 vadd.i64 q14,q7,q3 vadd.i64 q9,q9,q13 vshl.i64 q13,q13,#26 vadd.i64 q15,q9,q3 vsub.i64 q0,q0,q4 vshr.s64 q4,q14,#25 vsub.i64 q5,q5,q13 vshr.s64 q13,q15,#25 vadd.i64 q6,q6,q4 vshl.i64 q4,q4,#25 vadd.i64 q14,q6,q11 vadd.i64 q2,q2,q13 vsub.i64 q4,q7,q4 vshr.s64 q7,q14,#26 vshl.i64 q13,q13,#25 vadd.i64 q14,q2,q11 vadd.i64 q8,q8,q7 vshl.i64 q7,q7,#26 vadd.i64 q15,q8,q3 vsub.i64 q9,q9,q13 vshr.s64 q13,q14,#26 vsub.i64 q6,q6,q7 vshr.s64 q7,q15,#25 vadd.i64 q10,q10,q13 vshl.i64 q13,q13,#26 vadd.i64 q14,q10,q3 vadd.i64 q1,q1,q7 add r2,r3,#240 vshl.i64 q7,q7,#25 add r4,r3,#144 vadd.i64 q15,q1,q11 add r2,r2,#8 vsub.i64 q2,q2,q13 add r4,r4,#8 vshr.s64 q13,q14,#25 vsub.i64 q7,q8,q7 vshr.s64 q8,q15,#26 vadd.i64 q14,q13,q13 vadd.i64 q12,q12,q8 vtrn.32 d12,d14 vshl.i64 q8,q8,#26 vtrn.32 d13,d15 vadd.i64 q3,q12,q3 vadd.i64 q0,q0,q14 vst1.8 d12,[r2,: 64]! vshl.i64 q7,q13,#4 vst1.8 d13,[r4,: 64]! vsub.i64 q1,q1,q8 vshr.s64 q3,q3,#25 vadd.i64 q0,q0,q7 vadd.i64 q5,q5,q3 vshl.i64 q3,q3,#25 vadd.i64 q6,q5,q11 vadd.i64 q0,q0,q13 vshl.i64 q7,q13,#25 vadd.i64 q8,q0,q11 vsub.i64 q3,q12,q3 vshr.s64 q6,q6,#26 vsub.i64 q7,q10,q7 vtrn.32 d2,d6 vshr.s64 q8,q8,#26 vtrn.32 d3,d7 vadd.i64 q3,q9,q6 vst1.8 d2,[r2,: 64] vshl.i64 q6,q6,#26 vst1.8 d3,[r4,: 64] vadd.i64 q1,q4,q8 vtrn.32 d4,d14 vshl.i64 q4,q8,#26 vtrn.32 d5,d15 vsub.i64 q5,q5,q6 add r2,r2,#16 vsub.i64 q0,q0,q4 vst1.8 d4,[r2,: 64] add r4,r4,#16 vst1.8 d5,[r4,: 64] vtrn.32 d10,d6 vtrn.32 d11,d7 sub r2,r2,#8 sub r4,r4,#8 vtrn.32 d0,d2 vtrn.32 d1,d3 vst1.8 d10,[r2,: 64] vst1.8 d11,[r4,: 64] sub r2,r2,#24 sub r4,r4,#24 vst1.8 d0,[r2,: 64] vst1.8 d1,[r4,: 64] ldr r2,[sp,#488] ldr r4,[sp,#492] subs r5,r2,#1 bge ._mainloop add r1,r3,#144 add r2,r3,#336 vld1.8 {d0-d1},[r1,: 128]! vld1.8 {d2-d3},[r1,: 128]! vld1.8 {d4},[r1,: 64] vst1.8 {d0-d1},[r2,: 128]! vst1.8 {d2-d3},[r2,: 128]! vst1.8 d4,[r2,: 64] ldr r1,=0 ._invertloop: add r2,r3,#144 ldr r4,=0 ldr r5,=2 cmp r1,#1 ldreq r5,=1 addeq r2,r3,#336 addeq r4,r3,#48 cmp r1,#2 ldreq r5,=1 addeq r2,r3,#48 cmp r1,#3 ldreq r5,=5 addeq r4,r3,#336 cmp r1,#4 ldreq r5,=10 cmp r1,#5 ldreq r5,=20 cmp r1,#6 ldreq r5,=10 addeq r2,r3,#336 addeq r4,r3,#336 cmp r1,#7 ldreq r5,=50 cmp r1,#8 ldreq r5,=100 cmp r1,#9 ldreq r5,=50 addeq r2,r3,#336 cmp r1,#10 ldreq r5,=5 addeq r2,r3,#48 cmp r1,#11 ldreq r5,=0 addeq r2,r3,#96 add r6,r3,#144 add r7,r3,#288 vld1.8 {d0-d1},[r6,: 128]! vld1.8 {d2-d3},[r6,: 128]! vld1.8 {d4},[r6,: 64] vst1.8 {d0-d1},[r7,: 128]! vst1.8 {d2-d3},[r7,: 128]! vst1.8 d4,[r7,: 64] cmp r5,#0 beq ._skipsquaringloop ._squaringloop: add r6,r3,#288 add r7,r3,#288 add r8,r3,#288 vmov.i32 q0,#19 vmov.i32 q1,#0 vmov.i32 q2,#1 vzip.i32 q1,q2 vld1.8 {d4-d5},[r7,: 128]! vld1.8 {d6-d7},[r7,: 128]! vld1.8 {d9},[r7,: 64] vld1.8 {d10-d11},[r6,: 128]! add r7,sp,#416 vld1.8 {d12-d13},[r6,: 128]! vmul.i32 q7,q2,q0 vld1.8 {d8},[r6,: 64] vext.32 d17,d11,d10,#1 vmul.i32 q9,q3,q0 vext.32 d16,d10,d8,#1 vshl.u32 q10,q5,q1 vext.32 d22,d14,d4,#1 vext.32 d24,d18,d6,#1 vshl.u32 q13,q6,q1 vshl.u32 d28,d8,d2 vrev64.i32 d22,d22 vmul.i32 d1,d9,d1 vrev64.i32 d24,d24 vext.32 d29,d8,d13,#1 vext.32 d0,d1,d9,#1 vrev64.i32 d0,d0 vext.32 d2,d9,d1,#1 vext.32 d23,d15,d5,#1 vmull.s32 q4,d20,d4 vrev64.i32 d23,d23 vmlal.s32 q4,d21,d1 vrev64.i32 d2,d2 vmlal.s32 q4,d26,d19 vext.32 d3,d5,d15,#1 vmlal.s32 q4,d27,d18 vrev64.i32 d3,d3 vmlal.s32 q4,d28,d15 vext.32 d14,d12,d11,#1 vmull.s32 q5,d16,d23 vext.32 d15,d13,d12,#1 vmlal.s32 q5,d17,d4 vst1.8 d8,[r7,: 64]! vmlal.s32 q5,d14,d1 vext.32 d12,d9,d8,#0 vmlal.s32 q5,d15,d19 vmov.i64 d13,#0 vmlal.s32 q5,d29,d18 vext.32 d25,d19,d7,#1 vmlal.s32 q6,d20,d5 vrev64.i32 d25,d25 vmlal.s32 q6,d21,d4 vst1.8 d11,[r7,: 64]! vmlal.s32 q6,d26,d1 vext.32 d9,d10,d10,#0 vmlal.s32 q6,d27,d19 vmov.i64 d8,#0 vmlal.s32 q6,d28,d18 vmlal.s32 q4,d16,d24 vmlal.s32 q4,d17,d5 vmlal.s32 q4,d14,d4 vst1.8 d12,[r7,: 64]! vmlal.s32 q4,d15,d1 vext.32 d10,d13,d12,#0 vmlal.s32 q4,d29,d19 vmov.i64 d11,#0 vmlal.s32 q5,d20,d6 vmlal.s32 q5,d21,d5 vmlal.s32 q5,d26,d4 vext.32 d13,d8,d8,#0 vmlal.s32 q5,d27,d1 vmov.i64 d12,#0 vmlal.s32 q5,d28,d19 vst1.8 d9,[r7,: 64]! vmlal.s32 q6,d16,d25 vmlal.s32 q6,d17,d6 vst1.8 d10,[r7,: 64] vmlal.s32 q6,d14,d5 vext.32 d8,d11,d10,#0 vmlal.s32 q6,d15,d4 vmov.i64 d9,#0 vmlal.s32 q6,d29,d1 vmlal.s32 q4,d20,d7 vmlal.s32 q4,d21,d6 vmlal.s32 q4,d26,d5 vext.32 d11,d12,d12,#0 vmlal.s32 q4,d27,d4 vmov.i64 d10,#0 vmlal.s32 q4,d28,d1 vmlal.s32 q5,d16,d0 sub r6,r7,#32 vmlal.s32 q5,d17,d7 vmlal.s32 q5,d14,d6 vext.32 d30,d9,d8,#0 vmlal.s32 q5,d15,d5 vld1.8 {d31},[r6,: 64]! vmlal.s32 q5,d29,d4 vmlal.s32 q15,d20,d0 vext.32 d0,d6,d18,#1 vmlal.s32 q15,d21,d25 vrev64.i32 d0,d0 vmlal.s32 q15,d26,d24 vext.32 d1,d7,d19,#1 vext.32 d7,d10,d10,#0 vmlal.s32 q15,d27,d23 vrev64.i32 d1,d1 vld1.8 {d6},[r6,: 64] vmlal.s32 q15,d28,d22 vmlal.s32 q3,d16,d4 add r6,r6,#24 vmlal.s32 q3,d17,d2 vext.32 d4,d31,d30,#0 vmov d17,d11 vmlal.s32 q3,d14,d1 vext.32 d11,d13,d13,#0 vext.32 d13,d30,d30,#0 vmlal.s32 q3,d15,d0 vext.32 d1,d8,d8,#0 vmlal.s32 q3,d29,d3 vld1.8 {d5},[r6,: 64] sub r6,r6,#16 vext.32 d10,d6,d6,#0 vmov.i32 q1,#0xffffffff vshl.i64 q4,q1,#25 add r7,sp,#512 vld1.8 {d14-d15},[r7,: 128] vadd.i64 q9,q2,q7 vshl.i64 q1,q1,#26 vshr.s64 q10,q9,#26 vld1.8 {d0},[r6,: 64]! vadd.i64 q5,q5,q10 vand q9,q9,q1 vld1.8 {d16},[r6,: 64]! add r6,sp,#528 vld1.8 {d20-d21},[r6,: 128] vadd.i64 q11,q5,q10 vsub.i64 q2,q2,q9 vshr.s64 q9,q11,#25 vext.32 d12,d5,d4,#0 vand q11,q11,q4 vadd.i64 q0,q0,q9 vmov d19,d7 vadd.i64 q3,q0,q7 vsub.i64 q5,q5,q11 vshr.s64 q11,q3,#26 vext.32 d18,d11,d10,#0 vand q3,q3,q1 vadd.i64 q8,q8,q11 vadd.i64 q11,q8,q10 vsub.i64 q0,q0,q3 vshr.s64 q3,q11,#25 vand q11,q11,q4 vadd.i64 q3,q6,q3 vadd.i64 q6,q3,q7 vsub.i64 q8,q8,q11 vshr.s64 q11,q6,#26 vand q6,q6,q1 vadd.i64 q9,q9,q11 vadd.i64 d25,d19,d21 vsub.i64 q3,q3,q6 vshr.s64 d23,d25,#25 vand q4,q12,q4 vadd.i64 d21,d23,d23 vshl.i64 d25,d23,#4 vadd.i64 d21,d21,d23 vadd.i64 d25,d25,d21 vadd.i64 d4,d4,d25 vzip.i32 q0,q8 vadd.i64 d12,d4,d14 add r6,r8,#8 vst1.8 d0,[r6,: 64] vsub.i64 d19,d19,d9 add r6,r6,#16 vst1.8 d16,[r6,: 64] vshr.s64 d22,d12,#26 vand q0,q6,q1 vadd.i64 d10,d10,d22 vzip.i32 q3,q9 vsub.i64 d4,d4,d0 sub r6,r6,#8 vst1.8 d6,[r6,: 64] add r6,r6,#16 vst1.8 d18,[r6,: 64] vzip.i32 q2,q5 sub r6,r6,#32 vst1.8 d4,[r6,: 64] subs r5,r5,#1 bhi ._squaringloop ._skipsquaringloop: mov r2,r2 add r5,r3,#288 add r6,r3,#144 vmov.i32 q0,#19 vmov.i32 q1,#0 vmov.i32 q2,#1 vzip.i32 q1,q2 vld1.8 {d4-d5},[r5,: 128]! vld1.8 {d6-d7},[r5,: 128]! vld1.8 {d9},[r5,: 64] vld1.8 {d10-d11},[r2,: 128]! add r5,sp,#416 vld1.8 {d12-d13},[r2,: 128]! vmul.i32 q7,q2,q0 vld1.8 {d8},[r2,: 64] vext.32 d17,d11,d10,#1 vmul.i32 q9,q3,q0 vext.32 d16,d10,d8,#1 vshl.u32 q10,q5,q1 vext.32 d22,d14,d4,#1 vext.32 d24,d18,d6,#1 vshl.u32 q13,q6,q1 vshl.u32 d28,d8,d2 vrev64.i32 d22,d22 vmul.i32 d1,d9,d1 vrev64.i32 d24,d24 vext.32 d29,d8,d13,#1 vext.32 d0,d1,d9,#1 vrev64.i32 d0,d0 vext.32 d2,d9,d1,#1 vext.32 d23,d15,d5,#1 vmull.s32 q4,d20,d4 vrev64.i32 d23,d23 vmlal.s32 q4,d21,d1 vrev64.i32 d2,d2 vmlal.s32 q4,d26,d19 vext.32 d3,d5,d15,#1 vmlal.s32 q4,d27,d18 vrev64.i32 d3,d3 vmlal.s32 q4,d28,d15 vext.32 d14,d12,d11,#1 vmull.s32 q5,d16,d23 vext.32 d15,d13,d12,#1 vmlal.s32 q5,d17,d4 vst1.8 d8,[r5,: 64]! vmlal.s32 q5,d14,d1 vext.32 d12,d9,d8,#0 vmlal.s32 q5,d15,d19 vmov.i64 d13,#0 vmlal.s32 q5,d29,d18 vext.32 d25,d19,d7,#1 vmlal.s32 q6,d20,d5 vrev64.i32 d25,d25 vmlal.s32 q6,d21,d4 vst1.8 d11,[r5,: 64]! vmlal.s32 q6,d26,d1 vext.32 d9,d10,d10,#0 vmlal.s32 q6,d27,d19 vmov.i64 d8,#0 vmlal.s32 q6,d28,d18 vmlal.s32 q4,d16,d24 vmlal.s32 q4,d17,d5 vmlal.s32 q4,d14,d4 vst1.8 d12,[r5,: 64]! vmlal.s32 q4,d15,d1 vext.32 d10,d13,d12,#0 vmlal.s32 q4,d29,d19 vmov.i64 d11,#0 vmlal.s32 q5,d20,d6 vmlal.s32 q5,d21,d5 vmlal.s32 q5,d26,d4 vext.32 d13,d8,d8,#0 vmlal.s32 q5,d27,d1 vmov.i64 d12,#0 vmlal.s32 q5,d28,d19 vst1.8 d9,[r5,: 64]! vmlal.s32 q6,d16,d25 vmlal.s32 q6,d17,d6 vst1.8 d10,[r5,: 64] vmlal.s32 q6,d14,d5 vext.32 d8,d11,d10,#0 vmlal.s32 q6,d15,d4 vmov.i64 d9,#0 vmlal.s32 q6,d29,d1 vmlal.s32 q4,d20,d7 vmlal.s32 q4,d21,d6 vmlal.s32 q4,d26,d5 vext.32 d11,d12,d12,#0 vmlal.s32 q4,d27,d4 vmov.i64 d10,#0 vmlal.s32 q4,d28,d1 vmlal.s32 q5,d16,d0 sub r2,r5,#32 vmlal.s32 q5,d17,d7 vmlal.s32 q5,d14,d6 vext.32 d30,d9,d8,#0 vmlal.s32 q5,d15,d5 vld1.8 {d31},[r2,: 64]! vmlal.s32 q5,d29,d4 vmlal.s32 q15,d20,d0 vext.32 d0,d6,d18,#1 vmlal.s32 q15,d21,d25 vrev64.i32 d0,d0 vmlal.s32 q15,d26,d24 vext.32 d1,d7,d19,#1 vext.32 d7,d10,d10,#0 vmlal.s32 q15,d27,d23 vrev64.i32 d1,d1 vld1.8 {d6},[r2,: 64] vmlal.s32 q15,d28,d22 vmlal.s32 q3,d16,d4 add r2,r2,#24 vmlal.s32 q3,d17,d2 vext.32 d4,d31,d30,#0 vmov d17,d11 vmlal.s32 q3,d14,d1 vext.32 d11,d13,d13,#0 vext.32 d13,d30,d30,#0 vmlal.s32 q3,d15,d0 vext.32 d1,d8,d8,#0 vmlal.s32 q3,d29,d3 vld1.8 {d5},[r2,: 64] sub r2,r2,#16 vext.32 d10,d6,d6,#0 vmov.i32 q1,#0xffffffff vshl.i64 q4,q1,#25 add r5,sp,#512 vld1.8 {d14-d15},[r5,: 128] vadd.i64 q9,q2,q7 vshl.i64 q1,q1,#26 vshr.s64 q10,q9,#26 vld1.8 {d0},[r2,: 64]! vadd.i64 q5,q5,q10 vand q9,q9,q1 vld1.8 {d16},[r2,: 64]! add r2,sp,#528 vld1.8 {d20-d21},[r2,: 128] vadd.i64 q11,q5,q10 vsub.i64 q2,q2,q9 vshr.s64 q9,q11,#25 vext.32 d12,d5,d4,#0 vand q11,q11,q4 vadd.i64 q0,q0,q9 vmov d19,d7 vadd.i64 q3,q0,q7 vsub.i64 q5,q5,q11 vshr.s64 q11,q3,#26 vext.32 d18,d11,d10,#0 vand q3,q3,q1 vadd.i64 q8,q8,q11 vadd.i64 q11,q8,q10 vsub.i64 q0,q0,q3 vshr.s64 q3,q11,#25 vand q11,q11,q4 vadd.i64 q3,q6,q3 vadd.i64 q6,q3,q7 vsub.i64 q8,q8,q11 vshr.s64 q11,q6,#26 vand q6,q6,q1 vadd.i64 q9,q9,q11 vadd.i64 d25,d19,d21 vsub.i64 q3,q3,q6 vshr.s64 d23,d25,#25 vand q4,q12,q4 vadd.i64 d21,d23,d23 vshl.i64 d25,d23,#4 vadd.i64 d21,d21,d23 vadd.i64 d25,d25,d21 vadd.i64 d4,d4,d25 vzip.i32 q0,q8 vadd.i64 d12,d4,d14 add r2,r6,#8 vst1.8 d0,[r2,: 64] vsub.i64 d19,d19,d9 add r2,r2,#16 vst1.8 d16,[r2,: 64] vshr.s64 d22,d12,#26 vand q0,q6,q1 vadd.i64 d10,d10,d22 vzip.i32 q3,q9 vsub.i64 d4,d4,d0 sub r2,r2,#8 vst1.8 d6,[r2,: 64] add r2,r2,#16 vst1.8 d18,[r2,: 64] vzip.i32 q2,q5 sub r2,r2,#32 vst1.8 d4,[r2,: 64] cmp r4,#0 beq ._skippostcopy add r2,r3,#144 mov r4,r4 vld1.8 {d0-d1},[r2,: 128]! vld1.8 {d2-d3},[r2,: 128]! vld1.8 {d4},[r2,: 64] vst1.8 {d0-d1},[r4,: 128]! vst1.8 {d2-d3},[r4,: 128]! vst1.8 d4,[r4,: 64] ._skippostcopy: cmp r1,#1 bne ._skipfinalcopy add r2,r3,#288 add r4,r3,#144 vld1.8 {d0-d1},[r2,: 128]! vld1.8 {d2-d3},[r2,: 128]! vld1.8 {d4},[r2,: 64] vst1.8 {d0-d1},[r4,: 128]! vst1.8 {d2-d3},[r4,: 128]! vst1.8 d4,[r4,: 64] ._skipfinalcopy: add r1,r1,#1 cmp r1,#12 blo ._invertloop add r1,r3,#144 ldr r2,[r1],#4 ldr r3,[r1],#4 ldr r4,[r1],#4 ldr r5,[r1],#4 ldr r6,[r1],#4 ldr r7,[r1],#4 ldr r8,[r1],#4 ldr r9,[r1],#4 ldr r10,[r1],#4 ldr r1,[r1] add r11,r1,r1,LSL #4 add r11,r11,r1,LSL #1 add r11,r11,#16777216 mov r11,r11,ASR #25 add r11,r11,r2 mov r11,r11,ASR #26 add r11,r11,r3 mov r11,r11,ASR #25 add r11,r11,r4 mov r11,r11,ASR #26 add r11,r11,r5 mov r11,r11,ASR #25 add r11,r11,r6 mov r11,r11,ASR #26 add r11,r11,r7 mov r11,r11,ASR #25 add r11,r11,r8 mov r11,r11,ASR #26 add r11,r11,r9 mov r11,r11,ASR #25 add r11,r11,r10 mov r11,r11,ASR #26 add r11,r11,r1 mov r11,r11,ASR #25 add r2,r2,r11 add r2,r2,r11,LSL #1 add r2,r2,r11,LSL #4 mov r11,r2,ASR #26 add r3,r3,r11 sub r2,r2,r11,LSL #26 mov r11,r3,ASR #25 add r4,r4,r11 sub r3,r3,r11,LSL #25 mov r11,r4,ASR #26 add r5,r5,r11 sub r4,r4,r11,LSL #26 mov r11,r5,ASR #25 add r6,r6,r11 sub r5,r5,r11,LSL #25 mov r11,r6,ASR #26 add r7,r7,r11 sub r6,r6,r11,LSL #26 mov r11,r7,ASR #25 add r8,r8,r11 sub r7,r7,r11,LSL #25 mov r11,r8,ASR #26 add r9,r9,r11 sub r8,r8,r11,LSL #26 mov r11,r9,ASR #25 add r10,r10,r11 sub r9,r9,r11,LSL #25 mov r11,r10,ASR #26 add r1,r1,r11 sub r10,r10,r11,LSL #26 mov r11,r1,ASR #25 sub r1,r1,r11,LSL #25 add r2,r2,r3,LSL #26 mov r3,r3,LSR #6 add r3,r3,r4,LSL #19 mov r4,r4,LSR #13 add r4,r4,r5,LSL #13 mov r5,r5,LSR #19 add r5,r5,r6,LSL #6 add r6,r7,r8,LSL #25 mov r7,r8,LSR #7 add r7,r7,r9,LSL #19 mov r8,r9,LSR #13 add r8,r8,r10,LSL #12 mov r9,r10,LSR #20 add r1,r9,r1,LSL #6 str r2,[r0],#4 str r3,[r0],#4 str r4,[r0],#4 str r5,[r0],#4 str r6,[r0],#4 str r7,[r0],#4 str r8,[r0],#4 str r1,[r0] ldrd r4,[sp,#0] ldrd r6,[sp,#8] ldrd r8,[sp,#16] ldrd r10,[sp,#24] ldr r12,[sp,#480] ldr r14,[sp,#484] ldr r0,=0 mov sp,r12 vpop {q4,q5,q6,q7} bx lr #endif /* !OPENSSL_NO_ASM && OPENSSL_ARM && __ELF__ */
mktmansour/MKT-KSA-Geolocation-Security
5,583
.cargo-home/registry/src/index.crates.io-1949cf8c6b5b557f/pqcrypto-internals-0.2.11/cfiles/keccak2x/feat.S
/* MIT License Copyright (c) 2020 Bas Westerbaan Copyright (c) 2023: Hanno Becker, Vincent Hwang, Matthias J. Kannwischer, Bo-Yin Yang, and Shang-Yi Yang Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the "Software"), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions: The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software. THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */ #if (__APPLE__ && __ARM_FEATURE_CRYPTO) || (__ARM_FEATURE_SHA3) .macro round // Execute theta, but without xoring into the state yet. // Compute parities p[i] = a[i] ^ a[5+i] ^ ... ^ a[20+i]. eor3 v25.16b, v0.16b, v5.16b, v10.16b eor3 v26.16b, v1.16b, v6.16b, v11.16b eor3 v27.16b, v2.16b, v7.16b, v12.16b eor3 v28.16b, v3.16b, v8.16b, v13.16b eor3 v29.16b, v4.16b, v9.16b, v14.16b eor3 v25.16b, v25.16b, v15.16b, v20.16b eor3 v26.16b, v26.16b, v16.16b, v21.16b eor3 v27.16b, v27.16b, v17.16b, v22.16b eor3 v28.16b, v28.16b, v18.16b, v23.16b eor3 v29.16b, v29.16b, v19.16b, v24.16b rax1 v30.2d, v29.2d, v26.2d // d[0] = rotl(p[1], 1) ^ p[4] rax1 v29.2d, v27.2d, v29.2d // d[3] = rotl(p[4], 1) ^ p[2] rax1 v27.2d, v25.2d, v27.2d // d[1] = rotl(p[2], 1) ^ p[0] rax1 v25.2d, v28.2d, v25.2d // d[4] = rotl(p[0], 1) ^ p[3] rax1 v28.2d, v26.2d, v28.2d // d[2] = rotl(p[3], 1) ^ p[1] // Xor parities from step theta into the state at the same time // as executing rho and pi. eor v0.16b, v0.16b, v30.16b mov v31.16b, v1.16b xar v1.2d, v6.2d, v27.2d, 20 xar v6.2d, v9.2d, v25.2d, 44 xar v9.2d, v22.2d, v28.2d, 3 xar v22.2d, v14.2d, v25.2d, 25 xar v14.2d, v20.2d, v30.2d, 46 xar v20.2d, v2.2d, v28.2d, 2 xar v2.2d, v12.2d, v28.2d, 21 xar v12.2d, v13.2d, v29.2d, 39 xar v13.2d, v19.2d, v25.2d, 56 xar v19.2d, v23.2d, v29.2d, 8 xar v23.2d, v15.2d, v30.2d, 23 xar v15.2d, v4.2d, v25.2d, 37 xar v4.2d, v24.2d, v25.2d, 50 xar v24.2d, v21.2d, v27.2d, 62 xar v21.2d, v8.2d, v29.2d, 9 xar v8.2d, v16.2d, v27.2d, 19 xar v16.2d, v5.2d, v30.2d, 28 xar v5.2d, v3.2d, v29.2d, 36 xar v3.2d, v18.2d, v29.2d, 43 xar v18.2d, v17.2d, v28.2d, 49 xar v17.2d, v11.2d, v27.2d, 54 xar v11.2d, v7.2d, v28.2d, 58 xar v7.2d, v10.2d, v30.2d, 61 xar v10.2d, v31.2d, v27.2d, 63 // Chi bcax v25.16b, v0.16b, v2.16b, v1.16b bcax v26.16b, v1.16b, v3.16b, v2.16b bcax v2.16b, v2.16b, v4.16b, v3.16b bcax v3.16b, v3.16b, v0.16b, v4.16b bcax v4.16b, v4.16b, v1.16b, v0.16b mov v0.16b, v25.16b mov v1.16b, v26.16b bcax v25.16b, v5.16b, v7.16b, v6.16b bcax v26.16b, v6.16b, v8.16b, v7.16b bcax v7.16b, v7.16b, v9.16b, v8.16b bcax v8.16b, v8.16b, v5.16b, v9.16b bcax v9.16b, v9.16b, v6.16b, v5.16b mov v5.16b, v25.16b mov v6.16b, v26.16b bcax v25.16b, v10.16b, v12.16b, v11.16b bcax v26.16b, v11.16b, v13.16b, v12.16b bcax v12.16b, v12.16b, v14.16b, v13.16b bcax v13.16b, v13.16b, v10.16b, v14.16b bcax v14.16b, v14.16b, v11.16b, v10.16b mov v10.16b, v25.16b mov v11.16b, v26.16b bcax v25.16b, v15.16b, v17.16b, v16.16b bcax v26.16b, v16.16b, v18.16b, v17.16b bcax v17.16b, v17.16b, v19.16b, v18.16b bcax v18.16b, v18.16b, v15.16b, v19.16b bcax v19.16b, v19.16b, v16.16b, v15.16b mov v15.16b, v25.16b mov v16.16b, v26.16b bcax v25.16b, v20.16b, v22.16b, v21.16b bcax v26.16b, v21.16b, v23.16b, v22.16b bcax v22.16b, v22.16b, v24.16b, v23.16b bcax v23.16b, v23.16b, v20.16b, v24.16b bcax v24.16b, v24.16b, v21.16b, v20.16b mov v20.16b, v25.16b mov v21.16b, v26.16b // iota ld1r {v25.2d}, [x1], #8 eor v0.16b, v0.16b, v25.16b .endm .align 4 .global f1600x2 .global _f1600x2 f1600x2: _f1600x2: stp d8, d9, [sp,#-16]! stp d10, d11, [sp,#-16]! stp d12, d13, [sp,#-16]! stp d14, d15, [sp,#-16]! mov x2, x0 mov x3, #24 ld1 {v0.2d, v1.2d, v2.2d, v3.2d}, [x0], #64 ld1 {v4.2d, v5.2d, v6.2d, v7.2d}, [x0], #64 ld1 {v8.2d, v9.2d, v10.2d, v11.2d}, [x0], #64 ld1 {v12.2d, v13.2d, v14.2d, v15.2d}, [x0], #64 ld1 {v16.2d, v17.2d, v18.2d, v19.2d}, [x0], #64 ld1 {v20.2d, v21.2d, v22.2d, v23.2d}, [x0], #64 ld1 {v24.2d}, [x0] loop: round subs x3, x3, #1 cbnz x3, loop mov x0, x2 st1 {v0.2d, v1.2d, v2.2d, v3.2d}, [x0], #64 st1 {v4.2d, v5.2d, v6.2d, v7.2d}, [x0], #64 st1 {v8.2d, v9.2d, v10.2d, v11.2d}, [x0], #64 st1 {v12.2d, v13.2d, v14.2d, v15.2d}, [x0], #64 st1 {v16.2d, v17.2d, v18.2d, v19.2d}, [x0], #64 st1 {v20.2d, v21.2d, v22.2d, v23.2d}, [x0], #64 st1 {v24.2d}, [x0] ldp d14, d15, [sp], #16 ldp d12, d13, [sp], #16 ldp d10, d11, [sp], #16 ldp d8, d9, [sp], #16 ret lr #endif
mktmansour/MKT-KSA-Geolocation-Security
15,150
.cargo-home/registry/src/index.crates.io-1949cf8c6b5b557f/zstd-sys-2.0.15+zstd.1.5.7/zstd/lib/decompress/huf_decompress_amd64.S
/* * Copyright (c) Meta Platforms, Inc. and affiliates. * All rights reserved. * * This source code is licensed under both the BSD-style license (found in the * LICENSE file in the root directory of this source tree) and the GPLv2 (found * in the COPYING file in the root directory of this source tree). * You may select, at your option, one of the above-listed licenses. */ #include "../common/portability_macros.h" #if defined(__ELF__) && defined(__GNUC__) /* Stack marking * ref: https://wiki.gentoo.org/wiki/Hardened/GNU_stack_quickstart */ .section .note.GNU-stack,"",%progbits #if defined(__aarch64__) /* Mark that this assembly supports BTI & PAC, because it is empty for aarch64. * See: https://github.com/facebook/zstd/issues/3841 * See: https://gcc.godbolt.org/z/sqr5T4ffK * See: https://lore.kernel.org/linux-arm-kernel/20200429211641.9279-8-broonie@kernel.org/ * See: https://reviews.llvm.org/D62609 */ .pushsection .note.gnu.property, "a" .p2align 3 .long 4 /* size of the name - "GNU\0" */ .long 0x10 /* size of descriptor */ .long 0x5 /* NT_GNU_PROPERTY_TYPE_0 */ .asciz "GNU" .long 0xc0000000 /* pr_type - GNU_PROPERTY_AARCH64_FEATURE_1_AND */ .long 4 /* pr_datasz - 4 bytes */ .long 3 /* pr_data - GNU_PROPERTY_AARCH64_FEATURE_1_BTI | GNU_PROPERTY_AARCH64_FEATURE_1_PAC */ .p2align 3 /* pr_padding - bring everything to 8 byte alignment */ .popsection #endif #endif #if ZSTD_ENABLE_ASM_X86_64_BMI2 /* Calling convention: * * %rdi (or %rcx on Windows) contains the first argument: HUF_DecompressAsmArgs*. * %rbp isn't maintained (no frame pointer). * %rsp contains the stack pointer that grows down. * No red-zone is assumed, only addresses >= %rsp are used. * All register contents are preserved. */ ZSTD_HIDE_ASM_FUNCTION(HUF_decompress4X1_usingDTable_internal_fast_asm_loop) ZSTD_HIDE_ASM_FUNCTION(HUF_decompress4X2_usingDTable_internal_fast_asm_loop) ZSTD_HIDE_ASM_FUNCTION(_HUF_decompress4X2_usingDTable_internal_fast_asm_loop) ZSTD_HIDE_ASM_FUNCTION(_HUF_decompress4X1_usingDTable_internal_fast_asm_loop) .global HUF_decompress4X1_usingDTable_internal_fast_asm_loop .global HUF_decompress4X2_usingDTable_internal_fast_asm_loop .global _HUF_decompress4X1_usingDTable_internal_fast_asm_loop .global _HUF_decompress4X2_usingDTable_internal_fast_asm_loop .text /* Sets up register mappings for clarity. * op[], bits[], dtable & ip[0] each get their own register. * ip[1,2,3] & olimit alias var[]. * %rax is a scratch register. */ #define op0 rsi #define op1 rbx #define op2 rcx #define op3 rdi #define ip0 r8 #define ip1 r9 #define ip2 r10 #define ip3 r11 #define bits0 rbp #define bits1 rdx #define bits2 r12 #define bits3 r13 #define dtable r14 #define olimit r15 /* var[] aliases ip[1,2,3] & olimit * ip[1,2,3] are saved every iteration. * olimit is only used in compute_olimit. */ #define var0 r15 #define var1 r9 #define var2 r10 #define var3 r11 /* 32-bit var registers */ #define vard0 r15d #define vard1 r9d #define vard2 r10d #define vard3 r11d /* Calls X(N) for each stream 0, 1, 2, 3. */ #define FOR_EACH_STREAM(X) \ X(0); \ X(1); \ X(2); \ X(3) /* Calls X(N, idx) for each stream 0, 1, 2, 3. */ #define FOR_EACH_STREAM_WITH_INDEX(X, idx) \ X(0, idx); \ X(1, idx); \ X(2, idx); \ X(3, idx) /* Define both _HUF_* & HUF_* symbols because MacOS * C symbols are prefixed with '_' & Linux symbols aren't. */ _HUF_decompress4X1_usingDTable_internal_fast_asm_loop: HUF_decompress4X1_usingDTable_internal_fast_asm_loop: ZSTD_CET_ENDBRANCH /* Save all registers - even if they are callee saved for simplicity. */ push %rax push %rbx push %rcx push %rdx push %rbp push %rsi push %rdi push %r8 push %r9 push %r10 push %r11 push %r12 push %r13 push %r14 push %r15 /* Read HUF_DecompressAsmArgs* args from %rax */ #if defined(_WIN32) movq %rcx, %rax #else movq %rdi, %rax #endif movq 0(%rax), %ip0 movq 8(%rax), %ip1 movq 16(%rax), %ip2 movq 24(%rax), %ip3 movq 32(%rax), %op0 movq 40(%rax), %op1 movq 48(%rax), %op2 movq 56(%rax), %op3 movq 64(%rax), %bits0 movq 72(%rax), %bits1 movq 80(%rax), %bits2 movq 88(%rax), %bits3 movq 96(%rax), %dtable push %rax /* argument */ push 104(%rax) /* ilowest */ push 112(%rax) /* oend */ push %olimit /* olimit space */ subq $24, %rsp .L_4X1_compute_olimit: /* Computes how many iterations we can do safely * %r15, %rax may be clobbered * rbx, rdx must be saved * op3 & ip0 mustn't be clobbered */ movq %rbx, 0(%rsp) movq %rdx, 8(%rsp) movq 32(%rsp), %rax /* rax = oend */ subq %op3, %rax /* rax = oend - op3 */ /* r15 = (oend - op3) / 5 */ movabsq $-3689348814741910323, %rdx mulq %rdx movq %rdx, %r15 shrq $2, %r15 movq %ip0, %rax /* rax = ip0 */ movq 40(%rsp), %rdx /* rdx = ilowest */ subq %rdx, %rax /* rax = ip0 - ilowest */ movq %rax, %rbx /* rbx = ip0 - ilowest */ /* rdx = (ip0 - ilowest) / 7 */ movabsq $2635249153387078803, %rdx mulq %rdx subq %rdx, %rbx shrq %rbx addq %rbx, %rdx shrq $2, %rdx /* r15 = min(%rdx, %r15) */ cmpq %rdx, %r15 cmova %rdx, %r15 /* r15 = r15 * 5 */ leaq (%r15, %r15, 4), %r15 /* olimit = op3 + r15 */ addq %op3, %olimit movq 8(%rsp), %rdx movq 0(%rsp), %rbx /* If (op3 + 20 > olimit) */ movq %op3, %rax /* rax = op3 */ cmpq %rax, %olimit /* op3 == olimit */ je .L_4X1_exit /* If (ip1 < ip0) go to exit */ cmpq %ip0, %ip1 jb .L_4X1_exit /* If (ip2 < ip1) go to exit */ cmpq %ip1, %ip2 jb .L_4X1_exit /* If (ip3 < ip2) go to exit */ cmpq %ip2, %ip3 jb .L_4X1_exit /* Reads top 11 bits from bits[n] * Loads dt[bits[n]] into var[n] */ #define GET_NEXT_DELT(n) \ movq $53, %var##n; \ shrxq %var##n, %bits##n, %var##n; \ movzwl (%dtable,%var##n,2),%vard##n /* var[n] must contain the DTable entry computed with GET_NEXT_DELT * Moves var[n] to %rax * bits[n] <<= var[n] & 63 * op[n][idx] = %rax >> 8 * %ah is a way to access bits [8, 16) of %rax */ #define DECODE_FROM_DELT(n, idx) \ movq %var##n, %rax; \ shlxq %var##n, %bits##n, %bits##n; \ movb %ah, idx(%op##n) /* Assumes GET_NEXT_DELT has been called. * Calls DECODE_FROM_DELT then GET_NEXT_DELT */ #define DECODE_AND_GET_NEXT(n, idx) \ DECODE_FROM_DELT(n, idx); \ GET_NEXT_DELT(n) \ /* // ctz & nbBytes is stored in bits[n] * // nbBits is stored in %rax * ctz = CTZ[bits[n]] * nbBits = ctz & 7 * nbBytes = ctz >> 3 * op[n] += 5 * ip[n] -= nbBytes * // Note: x86-64 is little-endian ==> no bswap * bits[n] = MEM_readST(ip[n]) | 1 * bits[n] <<= nbBits */ #define RELOAD_BITS(n) \ bsfq %bits##n, %bits##n; \ movq %bits##n, %rax; \ andq $7, %rax; \ shrq $3, %bits##n; \ leaq 5(%op##n), %op##n; \ subq %bits##n, %ip##n; \ movq (%ip##n), %bits##n; \ orq $1, %bits##n; \ shlx %rax, %bits##n, %bits##n /* Store clobbered variables on the stack */ movq %olimit, 24(%rsp) movq %ip1, 0(%rsp) movq %ip2, 8(%rsp) movq %ip3, 16(%rsp) /* Call GET_NEXT_DELT for each stream */ FOR_EACH_STREAM(GET_NEXT_DELT) .p2align 6 .L_4X1_loop_body: /* Decode 5 symbols in each of the 4 streams (20 total) * Must have called GET_NEXT_DELT for each stream */ FOR_EACH_STREAM_WITH_INDEX(DECODE_AND_GET_NEXT, 0) FOR_EACH_STREAM_WITH_INDEX(DECODE_AND_GET_NEXT, 1) FOR_EACH_STREAM_WITH_INDEX(DECODE_AND_GET_NEXT, 2) FOR_EACH_STREAM_WITH_INDEX(DECODE_AND_GET_NEXT, 3) FOR_EACH_STREAM_WITH_INDEX(DECODE_FROM_DELT, 4) /* Load ip[1,2,3] from stack (var[] aliases them) * ip[] is needed for RELOAD_BITS * Each will be stored back to the stack after RELOAD */ movq 0(%rsp), %ip1 movq 8(%rsp), %ip2 movq 16(%rsp), %ip3 /* Reload each stream & fetch the next table entry * to prepare for the next iteration */ RELOAD_BITS(0) GET_NEXT_DELT(0) RELOAD_BITS(1) movq %ip1, 0(%rsp) GET_NEXT_DELT(1) RELOAD_BITS(2) movq %ip2, 8(%rsp) GET_NEXT_DELT(2) RELOAD_BITS(3) movq %ip3, 16(%rsp) GET_NEXT_DELT(3) /* If op3 < olimit: continue the loop */ cmp %op3, 24(%rsp) ja .L_4X1_loop_body /* Reload ip[1,2,3] from stack */ movq 0(%rsp), %ip1 movq 8(%rsp), %ip2 movq 16(%rsp), %ip3 /* Re-compute olimit */ jmp .L_4X1_compute_olimit #undef GET_NEXT_DELT #undef DECODE_FROM_DELT #undef DECODE #undef RELOAD_BITS .L_4X1_exit: addq $24, %rsp /* Restore stack (oend & olimit) */ pop %rax /* olimit */ pop %rax /* oend */ pop %rax /* ilowest */ pop %rax /* arg */ /* Save ip / op / bits */ movq %ip0, 0(%rax) movq %ip1, 8(%rax) movq %ip2, 16(%rax) movq %ip3, 24(%rax) movq %op0, 32(%rax) movq %op1, 40(%rax) movq %op2, 48(%rax) movq %op3, 56(%rax) movq %bits0, 64(%rax) movq %bits1, 72(%rax) movq %bits2, 80(%rax) movq %bits3, 88(%rax) /* Restore registers */ pop %r15 pop %r14 pop %r13 pop %r12 pop %r11 pop %r10 pop %r9 pop %r8 pop %rdi pop %rsi pop %rbp pop %rdx pop %rcx pop %rbx pop %rax ret _HUF_decompress4X2_usingDTable_internal_fast_asm_loop: HUF_decompress4X2_usingDTable_internal_fast_asm_loop: ZSTD_CET_ENDBRANCH /* Save all registers - even if they are callee saved for simplicity. */ push %rax push %rbx push %rcx push %rdx push %rbp push %rsi push %rdi push %r8 push %r9 push %r10 push %r11 push %r12 push %r13 push %r14 push %r15 /* Read HUF_DecompressAsmArgs* args from %rax */ #if defined(_WIN32) movq %rcx, %rax #else movq %rdi, %rax #endif movq 0(%rax), %ip0 movq 8(%rax), %ip1 movq 16(%rax), %ip2 movq 24(%rax), %ip3 movq 32(%rax), %op0 movq 40(%rax), %op1 movq 48(%rax), %op2 movq 56(%rax), %op3 movq 64(%rax), %bits0 movq 72(%rax), %bits1 movq 80(%rax), %bits2 movq 88(%rax), %bits3 movq 96(%rax), %dtable push %rax /* argument */ push %rax /* olimit */ push 104(%rax) /* ilowest */ movq 112(%rax), %rax push %rax /* oend3 */ movq %op3, %rax push %rax /* oend2 */ movq %op2, %rax push %rax /* oend1 */ movq %op1, %rax push %rax /* oend0 */ /* Scratch space */ subq $8, %rsp .L_4X2_compute_olimit: /* Computes how many iterations we can do safely * %r15, %rax may be clobbered * rdx must be saved * op[1,2,3,4] & ip0 mustn't be clobbered */ movq %rdx, 0(%rsp) /* We can consume up to 7 input bytes each iteration. */ movq %ip0, %rax /* rax = ip0 */ movq 40(%rsp), %rdx /* rdx = ilowest */ subq %rdx, %rax /* rax = ip0 - ilowest */ movq %rax, %r15 /* r15 = ip0 - ilowest */ /* rdx = rax / 7 */ movabsq $2635249153387078803, %rdx mulq %rdx subq %rdx, %r15 shrq %r15 addq %r15, %rdx shrq $2, %rdx /* r15 = (ip0 - ilowest) / 7 */ movq %rdx, %r15 /* r15 = min(r15, min(oend0 - op0, oend1 - op1, oend2 - op2, oend3 - op3) / 10) */ movq 8(%rsp), %rax /* rax = oend0 */ subq %op0, %rax /* rax = oend0 - op0 */ movq 16(%rsp), %rdx /* rdx = oend1 */ subq %op1, %rdx /* rdx = oend1 - op1 */ cmpq %rax, %rdx cmova %rax, %rdx /* rdx = min(%rdx, %rax) */ movq 24(%rsp), %rax /* rax = oend2 */ subq %op2, %rax /* rax = oend2 - op2 */ cmpq %rax, %rdx cmova %rax, %rdx /* rdx = min(%rdx, %rax) */ movq 32(%rsp), %rax /* rax = oend3 */ subq %op3, %rax /* rax = oend3 - op3 */ cmpq %rax, %rdx cmova %rax, %rdx /* rdx = min(%rdx, %rax) */ movabsq $-3689348814741910323, %rax mulq %rdx shrq $3, %rdx /* rdx = rdx / 10 */ /* r15 = min(%rdx, %r15) */ cmpq %rdx, %r15 cmova %rdx, %r15 /* olimit = op3 + 5 * r15 */ movq %r15, %rax leaq (%op3, %rax, 4), %olimit addq %rax, %olimit movq 0(%rsp), %rdx /* If (op3 + 10 > olimit) */ movq %op3, %rax /* rax = op3 */ cmpq %rax, %olimit /* op3 == olimit */ je .L_4X2_exit /* If (ip1 < ip0) go to exit */ cmpq %ip0, %ip1 jb .L_4X2_exit /* If (ip2 < ip1) go to exit */ cmpq %ip1, %ip2 jb .L_4X2_exit /* If (ip3 < ip2) go to exit */ cmpq %ip2, %ip3 jb .L_4X2_exit #define DECODE(n, idx) \ movq %bits##n, %rax; \ shrq $53, %rax; \ movzwl 0(%dtable,%rax,4),%r8d; \ movzbl 2(%dtable,%rax,4),%r15d; \ movzbl 3(%dtable,%rax,4),%eax; \ movw %r8w, (%op##n); \ shlxq %r15, %bits##n, %bits##n; \ addq %rax, %op##n #define RELOAD_BITS(n) \ bsfq %bits##n, %bits##n; \ movq %bits##n, %rax; \ shrq $3, %bits##n; \ andq $7, %rax; \ subq %bits##n, %ip##n; \ movq (%ip##n), %bits##n; \ orq $1, %bits##n; \ shlxq %rax, %bits##n, %bits##n movq %olimit, 48(%rsp) .p2align 6 .L_4X2_loop_body: /* We clobber r8, so store it on the stack */ movq %r8, 0(%rsp) /* Decode 5 symbols from each of the 4 streams (20 symbols total). */ FOR_EACH_STREAM_WITH_INDEX(DECODE, 0) FOR_EACH_STREAM_WITH_INDEX(DECODE, 1) FOR_EACH_STREAM_WITH_INDEX(DECODE, 2) FOR_EACH_STREAM_WITH_INDEX(DECODE, 3) FOR_EACH_STREAM_WITH_INDEX(DECODE, 4) /* Reload r8 */ movq 0(%rsp), %r8 FOR_EACH_STREAM(RELOAD_BITS) cmp %op3, 48(%rsp) ja .L_4X2_loop_body jmp .L_4X2_compute_olimit #undef DECODE #undef RELOAD_BITS .L_4X2_exit: addq $8, %rsp /* Restore stack (oend & olimit) */ pop %rax /* oend0 */ pop %rax /* oend1 */ pop %rax /* oend2 */ pop %rax /* oend3 */ pop %rax /* ilowest */ pop %rax /* olimit */ pop %rax /* arg */ /* Save ip / op / bits */ movq %ip0, 0(%rax) movq %ip1, 8(%rax) movq %ip2, 16(%rax) movq %ip3, 24(%rax) movq %op0, 32(%rax) movq %op1, 40(%rax) movq %op2, 48(%rax) movq %op3, 56(%rax) movq %bits0, 64(%rax) movq %bits1, 72(%rax) movq %bits2, 80(%rax) movq %bits3, 88(%rax) /* Restore registers */ pop %r15 pop %r14 pop %r13 pop %r12 pop %r11 pop %r10 pop %r9 pop %r8 pop %rdi pop %rsi pop %rbp pop %rdx pop %rcx pop %rbx pop %rax ret #endif
mktmansour/MKT-KSA-Geolocation-Security
66,735
.cargo-home/registry/src/index.crates.io-1949cf8c6b5b557f/blake3-1.8.2/c/blake3_avx2_x86-64_windows_gnu.S
.intel_syntax noprefix .global _blake3_hash_many_avx2 .global blake3_hash_many_avx2 .section .text .p2align 6 _blake3_hash_many_avx2: blake3_hash_many_avx2: push r15 push r14 push r13 push r12 push rsi push rdi push rbx push rbp mov rbp, rsp sub rsp, 880 and rsp, 0xFFFFFFFFFFFFFFC0 vmovdqa xmmword ptr [rsp+0x2D0], xmm6 vmovdqa xmmword ptr [rsp+0x2E0], xmm7 vmovdqa xmmword ptr [rsp+0x2F0], xmm8 vmovdqa xmmword ptr [rsp+0x300], xmm9 vmovdqa xmmword ptr [rsp+0x310], xmm10 vmovdqa xmmword ptr [rsp+0x320], xmm11 vmovdqa xmmword ptr [rsp+0x330], xmm12 vmovdqa xmmword ptr [rsp+0x340], xmm13 vmovdqa xmmword ptr [rsp+0x350], xmm14 vmovdqa xmmword ptr [rsp+0x360], xmm15 mov rdi, rcx mov rsi, rdx mov rdx, r8 mov rcx, r9 mov r8, qword ptr [rbp+0x68] movzx r9, byte ptr [rbp+0x70] neg r9d vmovd xmm0, r9d vpbroadcastd ymm0, xmm0 vmovdqa ymmword ptr [rsp+0x260], ymm0 vpand ymm1, ymm0, ymmword ptr [ADD0+rip] vpand ymm2, ymm0, ymmword ptr [ADD1+rip] vmovdqa ymmword ptr [rsp+0x2A0], ymm2 vmovd xmm2, r8d vpbroadcastd ymm2, xmm2 vpaddd ymm2, ymm2, ymm1 vmovdqa ymmword ptr [rsp+0x220], ymm2 vpxor ymm1, ymm1, ymmword ptr [CMP_MSB_MASK+rip] vpxor ymm2, ymm2, ymmword ptr [CMP_MSB_MASK+rip] vpcmpgtd ymm2, ymm1, ymm2 shr r8, 32 vmovd xmm3, r8d vpbroadcastd ymm3, xmm3 vpsubd ymm3, ymm3, ymm2 vmovdqa ymmword ptr [rsp+0x240], ymm3 shl rdx, 6 mov qword ptr [rsp+0x2C0], rdx cmp rsi, 8 jc 3f 2: vpbroadcastd ymm0, dword ptr [rcx] vpbroadcastd ymm1, dword ptr [rcx+0x4] vpbroadcastd ymm2, dword ptr [rcx+0x8] vpbroadcastd ymm3, dword ptr [rcx+0xC] vpbroadcastd ymm4, dword ptr [rcx+0x10] vpbroadcastd ymm5, dword ptr [rcx+0x14] vpbroadcastd ymm6, dword ptr [rcx+0x18] vpbroadcastd ymm7, dword ptr [rcx+0x1C] mov r8, qword ptr [rdi] mov r9, qword ptr [rdi+0x8] mov r10, qword ptr [rdi+0x10] mov r11, qword ptr [rdi+0x18] mov r12, qword ptr [rdi+0x20] mov r13, qword ptr [rdi+0x28] mov r14, qword ptr [rdi+0x30] mov r15, qword ptr [rdi+0x38] movzx eax, byte ptr [rbp+0x78] movzx ebx, byte ptr [rbp+0x80] or eax, ebx xor edx, edx .p2align 5 9: movzx ebx, byte ptr [rbp+0x88] or ebx, eax add rdx, 64 cmp rdx, qword ptr [rsp+0x2C0] cmove eax, ebx mov dword ptr [rsp+0x200], eax vmovups xmm8, xmmword ptr [r8+rdx-0x40] vinsertf128 ymm8, ymm8, xmmword ptr [r12+rdx-0x40], 0x01 vmovups xmm9, xmmword ptr [r9+rdx-0x40] vinsertf128 ymm9, ymm9, xmmword ptr [r13+rdx-0x40], 0x01 vunpcklpd ymm12, ymm8, ymm9 vunpckhpd ymm13, ymm8, ymm9 vmovups xmm10, xmmword ptr [r10+rdx-0x40] vinsertf128 ymm10, ymm10, xmmword ptr [r14+rdx-0x40], 0x01 vmovups xmm11, xmmword ptr [r11+rdx-0x40] vinsertf128 ymm11, ymm11, xmmword ptr [r15+rdx-0x40], 0x01 vunpcklpd ymm14, ymm10, ymm11 vunpckhpd ymm15, ymm10, ymm11 vshufps ymm8, ymm12, ymm14, 136 vmovaps ymmword ptr [rsp], ymm8 vshufps ymm9, ymm12, ymm14, 221 vmovaps ymmword ptr [rsp+0x20], ymm9 vshufps ymm10, ymm13, ymm15, 136 vmovaps ymmword ptr [rsp+0x40], ymm10 vshufps ymm11, ymm13, ymm15, 221 vmovaps ymmword ptr [rsp+0x60], ymm11 vmovups xmm8, xmmword ptr [r8+rdx-0x30] vinsertf128 ymm8, ymm8, xmmword ptr [r12+rdx-0x30], 0x01 vmovups xmm9, xmmword ptr [r9+rdx-0x30] vinsertf128 ymm9, ymm9, xmmword ptr [r13+rdx-0x30], 0x01 vunpcklpd ymm12, ymm8, ymm9 vunpckhpd ymm13, ymm8, ymm9 vmovups xmm10, xmmword ptr [r10+rdx-0x30] vinsertf128 ymm10, ymm10, xmmword ptr [r14+rdx-0x30], 0x01 vmovups xmm11, xmmword ptr [r11+rdx-0x30] vinsertf128 ymm11, ymm11, xmmword ptr [r15+rdx-0x30], 0x01 vunpcklpd ymm14, ymm10, ymm11 vunpckhpd ymm15, ymm10, ymm11 vshufps ymm8, ymm12, ymm14, 136 vmovaps ymmword ptr [rsp+0x80], ymm8 vshufps ymm9, ymm12, ymm14, 221 vmovaps ymmword ptr [rsp+0xA0], ymm9 vshufps ymm10, ymm13, ymm15, 136 vmovaps ymmword ptr [rsp+0xC0], ymm10 vshufps ymm11, ymm13, ymm15, 221 vmovaps ymmword ptr [rsp+0xE0], ymm11 vmovups xmm8, xmmword ptr [r8+rdx-0x20] vinsertf128 ymm8, ymm8, xmmword ptr [r12+rdx-0x20], 0x01 vmovups xmm9, xmmword ptr [r9+rdx-0x20] vinsertf128 ymm9, ymm9, xmmword ptr [r13+rdx-0x20], 0x01 vunpcklpd ymm12, ymm8, ymm9 vunpckhpd ymm13, ymm8, ymm9 vmovups xmm10, xmmword ptr [r10+rdx-0x20] vinsertf128 ymm10, ymm10, xmmword ptr [r14+rdx-0x20], 0x01 vmovups xmm11, xmmword ptr [r11+rdx-0x20] vinsertf128 ymm11, ymm11, xmmword ptr [r15+rdx-0x20], 0x01 vunpcklpd ymm14, ymm10, ymm11 vunpckhpd ymm15, ymm10, ymm11 vshufps ymm8, ymm12, ymm14, 136 vmovaps ymmword ptr [rsp+0x100], ymm8 vshufps ymm9, ymm12, ymm14, 221 vmovaps ymmword ptr [rsp+0x120], ymm9 vshufps ymm10, ymm13, ymm15, 136 vmovaps ymmword ptr [rsp+0x140], ymm10 vshufps ymm11, ymm13, ymm15, 221 vmovaps ymmword ptr [rsp+0x160], ymm11 vmovups xmm8, xmmword ptr [r8+rdx-0x10] vinsertf128 ymm8, ymm8, xmmword ptr [r12+rdx-0x10], 0x01 vmovups xmm9, xmmword ptr [r9+rdx-0x10] vinsertf128 ymm9, ymm9, xmmword ptr [r13+rdx-0x10], 0x01 vunpcklpd ymm12, ymm8, ymm9 vunpckhpd ymm13, ymm8, ymm9 vmovups xmm10, xmmword ptr [r10+rdx-0x10] vinsertf128 ymm10, ymm10, xmmword ptr [r14+rdx-0x10], 0x01 vmovups xmm11, xmmword ptr [r11+rdx-0x10] vinsertf128 ymm11, ymm11, xmmword ptr [r15+rdx-0x10], 0x01 vunpcklpd ymm14, ymm10, ymm11 vunpckhpd ymm15, ymm10, ymm11 vshufps ymm8, ymm12, ymm14, 136 vmovaps ymmword ptr [rsp+0x180], ymm8 vshufps ymm9, ymm12, ymm14, 221 vmovaps ymmword ptr [rsp+0x1A0], ymm9 vshufps ymm10, ymm13, ymm15, 136 vmovaps ymmword ptr [rsp+0x1C0], ymm10 vshufps ymm11, ymm13, ymm15, 221 vmovaps ymmword ptr [rsp+0x1E0], ymm11 vpbroadcastd ymm15, dword ptr [rsp+0x200] prefetcht0 [r8+rdx+0x80] prefetcht0 [r12+rdx+0x80] prefetcht0 [r9+rdx+0x80] prefetcht0 [r13+rdx+0x80] prefetcht0 [r10+rdx+0x80] prefetcht0 [r14+rdx+0x80] prefetcht0 [r11+rdx+0x80] prefetcht0 [r15+rdx+0x80] vpaddd ymm0, ymm0, ymmword ptr [rsp] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x40] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x80] vpaddd ymm3, ymm3, ymmword ptr [rsp+0xC0] vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxor ymm12, ymm0, ymmword ptr [rsp+0x220] vpxor ymm13, ymm1, ymmword ptr [rsp+0x240] vpxor ymm14, ymm2, ymmword ptr [BLAKE3_BLOCK_LEN+rip] vpxor ymm15, ymm3, ymm15 vbroadcasti128 ymm8, xmmword ptr [ROT16+rip] vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpshufb ymm15, ymm15, ymm8 vpaddd ymm8, ymm12, ymmword ptr [BLAKE3_IV_0+rip] vpaddd ymm9, ymm13, ymmword ptr [BLAKE3_IV_1+rip] vpaddd ymm10, ymm14, ymmword ptr [BLAKE3_IV_2+rip] vpaddd ymm11, ymm15, ymmword ptr [BLAKE3_IV_3+rip] vpxor ymm4, ymm4, ymm8 vpxor ymm5, ymm5, ymm9 vpxor ymm6, ymm6, ymm10 vpxor ymm7, ymm7, ymm11 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm4, 12 vpslld ymm4, ymm4, 20 vpor ymm4, ymm4, ymm8 vpsrld ymm8, ymm5, 12 vpslld ymm5, ymm5, 20 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 12 vpslld ymm6, ymm6, 20 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 12 vpslld ymm7, ymm7, 20 vpor ymm7, ymm7, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x20] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x60] vpaddd ymm2, ymm2, ymmword ptr [rsp+0xA0] vpaddd ymm3, ymm3, ymmword ptr [rsp+0xE0] vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxor ymm12, ymm12, ymm0 vpxor ymm13, ymm13, ymm1 vpxor ymm14, ymm14, ymm2 vpxor ymm15, ymm15, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT8+rip] vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpshufb ymm15, ymm15, ymm8 vpaddd ymm8, ymm12, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxor ymm4, ymm4, ymm8 vpxor ymm5, ymm5, ymm9 vpxor ymm6, ymm6, ymm10 vpxor ymm7, ymm7, ymm11 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm4, 7 vpslld ymm4, ymm4, 25 vpor ymm4, ymm4, ymm8 vpsrld ymm8, ymm5, 7 vpslld ymm5, ymm5, 25 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 7 vpslld ymm6, ymm6, 25 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 7 vpslld ymm7, ymm7, 25 vpor ymm7, ymm7, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x100] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x140] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x180] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x1C0] vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxor ymm15, ymm15, ymm0 vpxor ymm12, ymm12, ymm1 vpxor ymm13, ymm13, ymm2 vpxor ymm14, ymm14, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT16+rip] vpshufb ymm15, ymm15, ymm8 vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm13, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm14 vpxor ymm5, ymm5, ymm10 vpxor ymm6, ymm6, ymm11 vpxor ymm7, ymm7, ymm8 vpxor ymm4, ymm4, ymm9 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm5, 12 vpslld ymm5, ymm5, 20 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 12 vpslld ymm6, ymm6, 20 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 12 vpslld ymm7, ymm7, 20 vpor ymm7, ymm7, ymm8 vpsrld ymm8, ymm4, 12 vpslld ymm4, ymm4, 20 vpor ymm4, ymm4, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x120] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x160] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x1A0] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x1E0] vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxor ymm15, ymm15, ymm0 vpxor ymm12, ymm12, ymm1 vpxor ymm13, ymm13, ymm2 vpxor ymm14, ymm14, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT8+rip] vpshufb ymm15, ymm15, ymm8 vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm13, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm14 vpxor ymm5, ymm5, ymm10 vpxor ymm6, ymm6, ymm11 vpxor ymm7, ymm7, ymm8 vpxor ymm4, ymm4, ymm9 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm5, 7 vpslld ymm5, ymm5, 25 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 7 vpslld ymm6, ymm6, 25 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 7 vpslld ymm7, ymm7, 25 vpor ymm7, ymm7, ymm8 vpsrld ymm8, ymm4, 7 vpslld ymm4, ymm4, 25 vpor ymm4, ymm4, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x40] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x60] vpaddd ymm2, ymm2, ymmword ptr [rsp+0xE0] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x80] vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxor ymm12, ymm12, ymm0 vpxor ymm13, ymm13, ymm1 vpxor ymm14, ymm14, ymm2 vpxor ymm15, ymm15, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT16+rip] vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpshufb ymm15, ymm15, ymm8 vpaddd ymm8, ymm12, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxor ymm4, ymm4, ymm8 vpxor ymm5, ymm5, ymm9 vpxor ymm6, ymm6, ymm10 vpxor ymm7, ymm7, ymm11 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm4, 12 vpslld ymm4, ymm4, 20 vpor ymm4, ymm4, ymm8 vpsrld ymm8, ymm5, 12 vpslld ymm5, ymm5, 20 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 12 vpslld ymm6, ymm6, 20 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 12 vpslld ymm7, ymm7, 20 vpor ymm7, ymm7, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0xC0] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x140] vpaddd ymm2, ymm2, ymmword ptr [rsp] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x1A0] vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxor ymm12, ymm12, ymm0 vpxor ymm13, ymm13, ymm1 vpxor ymm14, ymm14, ymm2 vpxor ymm15, ymm15, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT8+rip] vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpshufb ymm15, ymm15, ymm8 vpaddd ymm8, ymm12, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxor ymm4, ymm4, ymm8 vpxor ymm5, ymm5, ymm9 vpxor ymm6, ymm6, ymm10 vpxor ymm7, ymm7, ymm11 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm4, 7 vpslld ymm4, ymm4, 25 vpor ymm4, ymm4, ymm8 vpsrld ymm8, ymm5, 7 vpslld ymm5, ymm5, 25 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 7 vpslld ymm6, ymm6, 25 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 7 vpslld ymm7, ymm7, 25 vpor ymm7, ymm7, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x20] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x180] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x120] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x1E0] vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxor ymm15, ymm15, ymm0 vpxor ymm12, ymm12, ymm1 vpxor ymm13, ymm13, ymm2 vpxor ymm14, ymm14, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT16+rip] vpshufb ymm15, ymm15, ymm8 vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm13, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm14 vpxor ymm5, ymm5, ymm10 vpxor ymm6, ymm6, ymm11 vpxor ymm7, ymm7, ymm8 vpxor ymm4, ymm4, ymm9 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm5, 12 vpslld ymm5, ymm5, 20 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 12 vpslld ymm6, ymm6, 20 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 12 vpslld ymm7, ymm7, 20 vpor ymm7, ymm7, ymm8 vpsrld ymm8, ymm4, 12 vpslld ymm4, ymm4, 20 vpor ymm4, ymm4, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x160] vpaddd ymm1, ymm1, ymmword ptr [rsp+0xA0] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x1C0] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x100] vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxor ymm15, ymm15, ymm0 vpxor ymm12, ymm12, ymm1 vpxor ymm13, ymm13, ymm2 vpxor ymm14, ymm14, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT8+rip] vpshufb ymm15, ymm15, ymm8 vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm13, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm14 vpxor ymm5, ymm5, ymm10 vpxor ymm6, ymm6, ymm11 vpxor ymm7, ymm7, ymm8 vpxor ymm4, ymm4, ymm9 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm5, 7 vpslld ymm5, ymm5, 25 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 7 vpslld ymm6, ymm6, 25 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 7 vpslld ymm7, ymm7, 25 vpor ymm7, ymm7, ymm8 vpsrld ymm8, ymm4, 7 vpslld ymm4, ymm4, 25 vpor ymm4, ymm4, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x60] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x140] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x1A0] vpaddd ymm3, ymm3, ymmword ptr [rsp+0xE0] vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxor ymm12, ymm12, ymm0 vpxor ymm13, ymm13, ymm1 vpxor ymm14, ymm14, ymm2 vpxor ymm15, ymm15, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT16+rip] vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpshufb ymm15, ymm15, ymm8 vpaddd ymm8, ymm12, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxor ymm4, ymm4, ymm8 vpxor ymm5, ymm5, ymm9 vpxor ymm6, ymm6, ymm10 vpxor ymm7, ymm7, ymm11 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm4, 12 vpslld ymm4, ymm4, 20 vpor ymm4, ymm4, ymm8 vpsrld ymm8, ymm5, 12 vpslld ymm5, ymm5, 20 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 12 vpslld ymm6, ymm6, 20 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 12 vpslld ymm7, ymm7, 20 vpor ymm7, ymm7, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x80] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x180] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x40] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x1C0] vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxor ymm12, ymm12, ymm0 vpxor ymm13, ymm13, ymm1 vpxor ymm14, ymm14, ymm2 vpxor ymm15, ymm15, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT8+rip] vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpshufb ymm15, ymm15, ymm8 vpaddd ymm8, ymm12, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxor ymm4, ymm4, ymm8 vpxor ymm5, ymm5, ymm9 vpxor ymm6, ymm6, ymm10 vpxor ymm7, ymm7, ymm11 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm4, 7 vpslld ymm4, ymm4, 25 vpor ymm4, ymm4, ymm8 vpsrld ymm8, ymm5, 7 vpslld ymm5, ymm5, 25 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 7 vpslld ymm6, ymm6, 25 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 7 vpslld ymm7, ymm7, 25 vpor ymm7, ymm7, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0xC0] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x120] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x160] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x100] vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxor ymm15, ymm15, ymm0 vpxor ymm12, ymm12, ymm1 vpxor ymm13, ymm13, ymm2 vpxor ymm14, ymm14, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT16+rip] vpshufb ymm15, ymm15, ymm8 vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm13, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm14 vpxor ymm5, ymm5, ymm10 vpxor ymm6, ymm6, ymm11 vpxor ymm7, ymm7, ymm8 vpxor ymm4, ymm4, ymm9 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm5, 12 vpslld ymm5, ymm5, 20 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 12 vpslld ymm6, ymm6, 20 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 12 vpslld ymm7, ymm7, 20 vpor ymm7, ymm7, ymm8 vpsrld ymm8, ymm4, 12 vpslld ymm4, ymm4, 20 vpor ymm4, ymm4, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0xA0] vpaddd ymm1, ymm1, ymmword ptr [rsp] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x1E0] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x20] vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxor ymm15, ymm15, ymm0 vpxor ymm12, ymm12, ymm1 vpxor ymm13, ymm13, ymm2 vpxor ymm14, ymm14, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT8+rip] vpshufb ymm15, ymm15, ymm8 vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm13, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm14 vpxor ymm5, ymm5, ymm10 vpxor ymm6, ymm6, ymm11 vpxor ymm7, ymm7, ymm8 vpxor ymm4, ymm4, ymm9 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm5, 7 vpslld ymm5, ymm5, 25 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 7 vpslld ymm6, ymm6, 25 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 7 vpslld ymm7, ymm7, 25 vpor ymm7, ymm7, ymm8 vpsrld ymm8, ymm4, 7 vpslld ymm4, ymm4, 25 vpor ymm4, ymm4, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x140] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x180] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x1C0] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x1A0] vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxor ymm12, ymm12, ymm0 vpxor ymm13, ymm13, ymm1 vpxor ymm14, ymm14, ymm2 vpxor ymm15, ymm15, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT16+rip] vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpshufb ymm15, ymm15, ymm8 vpaddd ymm8, ymm12, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxor ymm4, ymm4, ymm8 vpxor ymm5, ymm5, ymm9 vpxor ymm6, ymm6, ymm10 vpxor ymm7, ymm7, ymm11 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm4, 12 vpslld ymm4, ymm4, 20 vpor ymm4, ymm4, ymm8 vpsrld ymm8, ymm5, 12 vpslld ymm5, ymm5, 20 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 12 vpslld ymm6, ymm6, 20 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 12 vpslld ymm7, ymm7, 20 vpor ymm7, ymm7, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0xE0] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x120] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x60] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x1E0] vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxor ymm12, ymm12, ymm0 vpxor ymm13, ymm13, ymm1 vpxor ymm14, ymm14, ymm2 vpxor ymm15, ymm15, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT8+rip] vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpshufb ymm15, ymm15, ymm8 vpaddd ymm8, ymm12, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxor ymm4, ymm4, ymm8 vpxor ymm5, ymm5, ymm9 vpxor ymm6, ymm6, ymm10 vpxor ymm7, ymm7, ymm11 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm4, 7 vpslld ymm4, ymm4, 25 vpor ymm4, ymm4, ymm8 vpsrld ymm8, ymm5, 7 vpslld ymm5, ymm5, 25 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 7 vpslld ymm6, ymm6, 25 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 7 vpslld ymm7, ymm7, 25 vpor ymm7, ymm7, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x80] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x160] vpaddd ymm2, ymm2, ymmword ptr [rsp+0xA0] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x20] vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxor ymm15, ymm15, ymm0 vpxor ymm12, ymm12, ymm1 vpxor ymm13, ymm13, ymm2 vpxor ymm14, ymm14, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT16+rip] vpshufb ymm15, ymm15, ymm8 vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm13, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm14 vpxor ymm5, ymm5, ymm10 vpxor ymm6, ymm6, ymm11 vpxor ymm7, ymm7, ymm8 vpxor ymm4, ymm4, ymm9 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm5, 12 vpslld ymm5, ymm5, 20 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 12 vpslld ymm6, ymm6, 20 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 12 vpslld ymm7, ymm7, 20 vpor ymm7, ymm7, ymm8 vpsrld ymm8, ymm4, 12 vpslld ymm4, ymm4, 20 vpor ymm4, ymm4, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x40] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x100] vpaddd ymm3, ymm3, ymmword ptr [rsp+0xC0] vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxor ymm15, ymm15, ymm0 vpxor ymm12, ymm12, ymm1 vpxor ymm13, ymm13, ymm2 vpxor ymm14, ymm14, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT8+rip] vpshufb ymm15, ymm15, ymm8 vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm13, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm14 vpxor ymm5, ymm5, ymm10 vpxor ymm6, ymm6, ymm11 vpxor ymm7, ymm7, ymm8 vpxor ymm4, ymm4, ymm9 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm5, 7 vpslld ymm5, ymm5, 25 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 7 vpslld ymm6, ymm6, 25 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 7 vpslld ymm7, ymm7, 25 vpor ymm7, ymm7, ymm8 vpsrld ymm8, ymm4, 7 vpslld ymm4, ymm4, 25 vpor ymm4, ymm4, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x180] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x120] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x1E0] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x1C0] vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxor ymm12, ymm12, ymm0 vpxor ymm13, ymm13, ymm1 vpxor ymm14, ymm14, ymm2 vpxor ymm15, ymm15, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT16+rip] vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpshufb ymm15, ymm15, ymm8 vpaddd ymm8, ymm12, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxor ymm4, ymm4, ymm8 vpxor ymm5, ymm5, ymm9 vpxor ymm6, ymm6, ymm10 vpxor ymm7, ymm7, ymm11 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm4, 12 vpslld ymm4, ymm4, 20 vpor ymm4, ymm4, ymm8 vpsrld ymm8, ymm5, 12 vpslld ymm5, ymm5, 20 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 12 vpslld ymm6, ymm6, 20 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 12 vpslld ymm7, ymm7, 20 vpor ymm7, ymm7, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x1A0] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x160] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x140] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x100] vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxor ymm12, ymm12, ymm0 vpxor ymm13, ymm13, ymm1 vpxor ymm14, ymm14, ymm2 vpxor ymm15, ymm15, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT8+rip] vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpshufb ymm15, ymm15, ymm8 vpaddd ymm8, ymm12, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxor ymm4, ymm4, ymm8 vpxor ymm5, ymm5, ymm9 vpxor ymm6, ymm6, ymm10 vpxor ymm7, ymm7, ymm11 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm4, 7 vpslld ymm4, ymm4, 25 vpor ymm4, ymm4, ymm8 vpsrld ymm8, ymm5, 7 vpslld ymm5, ymm5, 25 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 7 vpslld ymm6, ymm6, 25 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 7 vpslld ymm7, ymm7, 25 vpor ymm7, ymm7, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0xE0] vpaddd ymm1, ymm1, ymmword ptr [rsp+0xA0] vpaddd ymm2, ymm2, ymmword ptr [rsp] vpaddd ymm3, ymm3, ymmword ptr [rsp+0xC0] vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxor ymm15, ymm15, ymm0 vpxor ymm12, ymm12, ymm1 vpxor ymm13, ymm13, ymm2 vpxor ymm14, ymm14, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT16+rip] vpshufb ymm15, ymm15, ymm8 vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm13, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm14 vpxor ymm5, ymm5, ymm10 vpxor ymm6, ymm6, ymm11 vpxor ymm7, ymm7, ymm8 vpxor ymm4, ymm4, ymm9 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm5, 12 vpslld ymm5, ymm5, 20 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 12 vpslld ymm6, ymm6, 20 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 12 vpslld ymm7, ymm7, 20 vpor ymm7, ymm7, ymm8 vpsrld ymm8, ymm4, 12 vpslld ymm4, ymm4, 20 vpor ymm4, ymm4, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x40] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x60] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x20] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x80] vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxor ymm15, ymm15, ymm0 vpxor ymm12, ymm12, ymm1 vpxor ymm13, ymm13, ymm2 vpxor ymm14, ymm14, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT8+rip] vpshufb ymm15, ymm15, ymm8 vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm13, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm14 vpxor ymm5, ymm5, ymm10 vpxor ymm6, ymm6, ymm11 vpxor ymm7, ymm7, ymm8 vpxor ymm4, ymm4, ymm9 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm5, 7 vpslld ymm5, ymm5, 25 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 7 vpslld ymm6, ymm6, 25 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 7 vpslld ymm7, ymm7, 25 vpor ymm7, ymm7, ymm8 vpsrld ymm8, ymm4, 7 vpslld ymm4, ymm4, 25 vpor ymm4, ymm4, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x120] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x160] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x100] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x1E0] vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxor ymm12, ymm12, ymm0 vpxor ymm13, ymm13, ymm1 vpxor ymm14, ymm14, ymm2 vpxor ymm15, ymm15, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT16+rip] vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpshufb ymm15, ymm15, ymm8 vpaddd ymm8, ymm12, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxor ymm4, ymm4, ymm8 vpxor ymm5, ymm5, ymm9 vpxor ymm6, ymm6, ymm10 vpxor ymm7, ymm7, ymm11 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm4, 12 vpslld ymm4, ymm4, 20 vpor ymm4, ymm4, ymm8 vpsrld ymm8, ymm5, 12 vpslld ymm5, ymm5, 20 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 12 vpslld ymm6, ymm6, 20 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 12 vpslld ymm7, ymm7, 20 vpor ymm7, ymm7, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x1C0] vpaddd ymm1, ymm1, ymmword ptr [rsp+0xA0] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x180] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x20] vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxor ymm12, ymm12, ymm0 vpxor ymm13, ymm13, ymm1 vpxor ymm14, ymm14, ymm2 vpxor ymm15, ymm15, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT8+rip] vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpshufb ymm15, ymm15, ymm8 vpaddd ymm8, ymm12, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxor ymm4, ymm4, ymm8 vpxor ymm5, ymm5, ymm9 vpxor ymm6, ymm6, ymm10 vpxor ymm7, ymm7, ymm11 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm4, 7 vpslld ymm4, ymm4, 25 vpor ymm4, ymm4, ymm8 vpsrld ymm8, ymm5, 7 vpslld ymm5, ymm5, 25 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 7 vpslld ymm6, ymm6, 25 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 7 vpslld ymm7, ymm7, 25 vpor ymm7, ymm7, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x1A0] vpaddd ymm1, ymm1, ymmword ptr [rsp] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x40] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x80] vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxor ymm15, ymm15, ymm0 vpxor ymm12, ymm12, ymm1 vpxor ymm13, ymm13, ymm2 vpxor ymm14, ymm14, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT16+rip] vpshufb ymm15, ymm15, ymm8 vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm13, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm14 vpxor ymm5, ymm5, ymm10 vpxor ymm6, ymm6, ymm11 vpxor ymm7, ymm7, ymm8 vpxor ymm4, ymm4, ymm9 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm5, 12 vpslld ymm5, ymm5, 20 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 12 vpslld ymm6, ymm6, 20 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 12 vpslld ymm7, ymm7, 20 vpor ymm7, ymm7, ymm8 vpsrld ymm8, ymm4, 12 vpslld ymm4, ymm4, 20 vpor ymm4, ymm4, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x60] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x140] vpaddd ymm2, ymm2, ymmword ptr [rsp+0xC0] vpaddd ymm3, ymm3, ymmword ptr [rsp+0xE0] vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxor ymm15, ymm15, ymm0 vpxor ymm12, ymm12, ymm1 vpxor ymm13, ymm13, ymm2 vpxor ymm14, ymm14, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT8+rip] vpshufb ymm15, ymm15, ymm8 vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm13, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm14 vpxor ymm5, ymm5, ymm10 vpxor ymm6, ymm6, ymm11 vpxor ymm7, ymm7, ymm8 vpxor ymm4, ymm4, ymm9 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm5, 7 vpslld ymm5, ymm5, 25 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 7 vpslld ymm6, ymm6, 25 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 7 vpslld ymm7, ymm7, 25 vpor ymm7, ymm7, ymm8 vpsrld ymm8, ymm4, 7 vpslld ymm4, ymm4, 25 vpor ymm4, ymm4, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x160] vpaddd ymm1, ymm1, ymmword ptr [rsp+0xA0] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x20] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x100] vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxor ymm12, ymm12, ymm0 vpxor ymm13, ymm13, ymm1 vpxor ymm14, ymm14, ymm2 vpxor ymm15, ymm15, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT16+rip] vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpshufb ymm15, ymm15, ymm8 vpaddd ymm8, ymm12, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxor ymm4, ymm4, ymm8 vpxor ymm5, ymm5, ymm9 vpxor ymm6, ymm6, ymm10 vpxor ymm7, ymm7, ymm11 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm4, 12 vpslld ymm4, ymm4, 20 vpor ymm4, ymm4, ymm8 vpsrld ymm8, ymm5, 12 vpslld ymm5, ymm5, 20 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 12 vpslld ymm6, ymm6, 20 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 12 vpslld ymm7, ymm7, 20 vpor ymm7, ymm7, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x1E0] vpaddd ymm1, ymm1, ymmword ptr [rsp] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x120] vpaddd ymm3, ymm3, ymmword ptr [rsp+0xC0] vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxor ymm12, ymm12, ymm0 vpxor ymm13, ymm13, ymm1 vpxor ymm14, ymm14, ymm2 vpxor ymm15, ymm15, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT8+rip] vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpshufb ymm15, ymm15, ymm8 vpaddd ymm8, ymm12, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxor ymm4, ymm4, ymm8 vpxor ymm5, ymm5, ymm9 vpxor ymm6, ymm6, ymm10 vpxor ymm7, ymm7, ymm11 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm4, 7 vpslld ymm4, ymm4, 25 vpor ymm4, ymm4, ymm8 vpsrld ymm8, ymm5, 7 vpslld ymm5, ymm5, 25 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 7 vpslld ymm6, ymm6, 25 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 7 vpslld ymm7, ymm7, 25 vpor ymm7, ymm7, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x1C0] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x40] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x60] vpaddd ymm3, ymm3, ymmword ptr [rsp+0xE0] vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxor ymm15, ymm15, ymm0 vpxor ymm12, ymm12, ymm1 vpxor ymm13, ymm13, ymm2 vpxor ymm14, ymm14, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT16+rip] vpshufb ymm15, ymm15, ymm8 vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm13, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm14 vpxor ymm5, ymm5, ymm10 vpxor ymm6, ymm6, ymm11 vpxor ymm7, ymm7, ymm8 vpxor ymm4, ymm4, ymm9 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm5, 12 vpslld ymm5, ymm5, 20 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 12 vpslld ymm6, ymm6, 20 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 12 vpslld ymm7, ymm7, 20 vpor ymm7, ymm7, ymm8 vpsrld ymm8, ymm4, 12 vpslld ymm4, ymm4, 20 vpor ymm4, ymm4, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x140] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x180] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x80] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x1A0] vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxor ymm15, ymm15, ymm0 vpxor ymm12, ymm12, ymm1 vpxor ymm13, ymm13, ymm2 vpxor ymm14, ymm14, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT8+rip] vpshufb ymm15, ymm15, ymm8 vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm13, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm14 vpxor ymm5, ymm5, ymm10 vpxor ymm6, ymm6, ymm11 vpxor ymm7, ymm7, ymm8 vpxor ymm4, ymm4, ymm9 vpxor ymm0, ymm0, ymm8 vpxor ymm1, ymm1, ymm9 vpxor ymm2, ymm2, ymm10 vpxor ymm3, ymm3, ymm11 vpsrld ymm8, ymm5, 7 vpslld ymm5, ymm5, 25 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 7 vpslld ymm6, ymm6, 25 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 7 vpslld ymm7, ymm7, 25 vpor ymm7, ymm7, ymm8 vpsrld ymm8, ymm4, 7 vpslld ymm4, ymm4, 25 vpor ymm4, ymm4, ymm8 vpxor ymm4, ymm4, ymm12 vpxor ymm5, ymm5, ymm13 vpxor ymm6, ymm6, ymm14 vpxor ymm7, ymm7, ymm15 movzx eax, byte ptr [rbp+0x78] jne 9b mov rbx, qword ptr [rbp+0x90] vunpcklps ymm8, ymm0, ymm1 vunpcklps ymm9, ymm2, ymm3 vunpckhps ymm10, ymm0, ymm1 vunpcklps ymm11, ymm4, ymm5 vunpcklps ymm0, ymm6, ymm7 vshufps ymm12, ymm8, ymm9, 78 vblendps ymm1, ymm8, ymm12, 0xCC vshufps ymm8, ymm11, ymm0, 78 vunpckhps ymm13, ymm2, ymm3 vblendps ymm2, ymm11, ymm8, 0xCC vblendps ymm3, ymm12, ymm9, 0xCC vperm2f128 ymm12, ymm1, ymm2, 0x20 vmovups ymmword ptr [rbx], ymm12 vunpckhps ymm14, ymm4, ymm5 vblendps ymm4, ymm8, ymm0, 0xCC vunpckhps ymm15, ymm6, ymm7 vperm2f128 ymm7, ymm3, ymm4, 0x20 vmovups ymmword ptr [rbx+0x20], ymm7 vshufps ymm5, ymm10, ymm13, 78 vblendps ymm6, ymm5, ymm13, 0xCC vshufps ymm13, ymm14, ymm15, 78 vblendps ymm10, ymm10, ymm5, 0xCC vblendps ymm14, ymm14, ymm13, 0xCC vperm2f128 ymm8, ymm10, ymm14, 0x20 vmovups ymmword ptr [rbx+0x40], ymm8 vblendps ymm15, ymm13, ymm15, 0xCC vperm2f128 ymm13, ymm6, ymm15, 0x20 vmovups ymmword ptr [rbx+0x60], ymm13 vperm2f128 ymm9, ymm1, ymm2, 0x31 vperm2f128 ymm11, ymm3, ymm4, 0x31 vmovups ymmword ptr [rbx+0x80], ymm9 vperm2f128 ymm14, ymm10, ymm14, 0x31 vperm2f128 ymm15, ymm6, ymm15, 0x31 vmovups ymmword ptr [rbx+0xA0], ymm11 vmovups ymmword ptr [rbx+0xC0], ymm14 vmovups ymmword ptr [rbx+0xE0], ymm15 vmovdqa ymm0, ymmword ptr [rsp+0x2A0] vpaddd ymm1, ymm0, ymmword ptr [rsp+0x220] vmovdqa ymmword ptr [rsp+0x220], ymm1 vpxor ymm0, ymm0, ymmword ptr [CMP_MSB_MASK+rip] vpxor ymm2, ymm1, ymmword ptr [CMP_MSB_MASK+rip] vpcmpgtd ymm2, ymm0, ymm2 vmovdqa ymm0, ymmword ptr [rsp+0x240] vpsubd ymm2, ymm0, ymm2 vmovdqa ymmword ptr [rsp+0x240], ymm2 add rdi, 64 add rbx, 256 mov qword ptr [rbp+0x90], rbx sub rsi, 8 cmp rsi, 8 jnc 2b test rsi, rsi jnz 3f 4: vzeroupper vmovdqa xmm6, xmmword ptr [rsp+0x2D0] vmovdqa xmm7, xmmword ptr [rsp+0x2E0] vmovdqa xmm8, xmmword ptr [rsp+0x2F0] vmovdqa xmm9, xmmword ptr [rsp+0x300] vmovdqa xmm10, xmmword ptr [rsp+0x310] vmovdqa xmm11, xmmword ptr [rsp+0x320] vmovdqa xmm12, xmmword ptr [rsp+0x330] vmovdqa xmm13, xmmword ptr [rsp+0x340] vmovdqa xmm14, xmmword ptr [rsp+0x350] vmovdqa xmm15, xmmword ptr [rsp+0x360] mov rsp, rbp pop rbp pop rbx pop rdi pop rsi pop r12 pop r13 pop r14 pop r15 ret .p2align 5 3: mov rbx, qword ptr [rbp+0x90] mov r15, qword ptr [rsp+0x2C0] movzx r13d, byte ptr [rbp+0x78] movzx r12d, byte ptr [rbp+0x88] test rsi, 0x4 je 3f vbroadcasti128 ymm0, xmmword ptr [rcx] vbroadcasti128 ymm1, xmmword ptr [rcx+0x10] vmovdqa ymm8, ymm0 vmovdqa ymm9, ymm1 vbroadcasti128 ymm12, xmmword ptr [rsp+0x220] vbroadcasti128 ymm13, xmmword ptr [rsp+0x240] vpunpckldq ymm14, ymm12, ymm13 vpunpckhdq ymm15, ymm12, ymm13 vpermq ymm14, ymm14, 0x50 vpermq ymm15, ymm15, 0x50 vbroadcasti128 ymm12, xmmword ptr [BLAKE3_BLOCK_LEN+rip] vpblendd ymm14, ymm14, ymm12, 0x44 vpblendd ymm15, ymm15, ymm12, 0x44 vmovdqa ymmword ptr [rsp], ymm14 vmovdqa ymmword ptr [rsp+0x20], ymm15 mov r8, qword ptr [rdi] mov r9, qword ptr [rdi+0x8] mov r10, qword ptr [rdi+0x10] mov r11, qword ptr [rdi+0x18] movzx eax, byte ptr [rbp+0x80] or eax, r13d xor edx, edx .p2align 5 2: mov r14d, eax or eax, r12d add rdx, 64 cmp rdx, r15 cmovne eax, r14d mov dword ptr [rsp+0x200], eax vmovups ymm2, ymmword ptr [r8+rdx-0x40] vinsertf128 ymm2, ymm2, xmmword ptr [r9+rdx-0x40], 0x01 vmovups ymm3, ymmword ptr [r8+rdx-0x30] vinsertf128 ymm3, ymm3, xmmword ptr [r9+rdx-0x30], 0x01 vshufps ymm4, ymm2, ymm3, 136 vshufps ymm5, ymm2, ymm3, 221 vmovups ymm2, ymmword ptr [r8+rdx-0x20] vinsertf128 ymm2, ymm2, xmmword ptr [r9+rdx-0x20], 0x01 vmovups ymm3, ymmword ptr [r8+rdx-0x10] vinsertf128 ymm3, ymm3, xmmword ptr [r9+rdx-0x10], 0x01 vshufps ymm6, ymm2, ymm3, 136 vshufps ymm7, ymm2, ymm3, 221 vpshufd ymm6, ymm6, 0x93 vpshufd ymm7, ymm7, 0x93 vmovups ymm10, ymmword ptr [r10+rdx-0x40] vinsertf128 ymm10, ymm10, xmmword ptr [r11+rdx-0x40], 0x01 vmovups ymm11, ymmword ptr [r10+rdx-0x30] vinsertf128 ymm11, ymm11, xmmword ptr [r11+rdx-0x30], 0x01 vshufps ymm12, ymm10, ymm11, 136 vshufps ymm13, ymm10, ymm11, 221 vmovups ymm10, ymmword ptr [r10+rdx-0x20] vinsertf128 ymm10, ymm10, xmmword ptr [r11+rdx-0x20], 0x01 vmovups ymm11, ymmword ptr [r10+rdx-0x10] vinsertf128 ymm11, ymm11, xmmword ptr [r11+rdx-0x10], 0x01 vshufps ymm14, ymm10, ymm11, 136 vshufps ymm15, ymm10, ymm11, 221 vpshufd ymm14, ymm14, 0x93 vpshufd ymm15, ymm15, 0x93 vpbroadcastd ymm2, dword ptr [rsp+0x200] vmovdqa ymm3, ymmword ptr [rsp] vmovdqa ymm11, ymmword ptr [rsp+0x20] vpblendd ymm3, ymm3, ymm2, 0x88 vpblendd ymm11, ymm11, ymm2, 0x88 vbroadcasti128 ymm2, xmmword ptr [BLAKE3_IV+rip] vmovdqa ymm10, ymm2 mov al, 7 9: vpaddd ymm0, ymm0, ymm4 vpaddd ymm8, ymm8, ymm12 vmovdqa ymmword ptr [rsp+0x40], ymm4 nop vmovdqa ymmword ptr [rsp+0x60], ymm12 nop vpaddd ymm0, ymm0, ymm1 vpaddd ymm8, ymm8, ymm9 vpxor ymm3, ymm3, ymm0 vpxor ymm11, ymm11, ymm8 vbroadcasti128 ymm4, xmmword ptr [ROT16+rip] vpshufb ymm3, ymm3, ymm4 vpshufb ymm11, ymm11, ymm4 vpaddd ymm2, ymm2, ymm3 vpaddd ymm10, ymm10, ymm11 vpxor ymm1, ymm1, ymm2 vpxor ymm9, ymm9, ymm10 vpsrld ymm4, ymm1, 12 vpslld ymm1, ymm1, 20 vpor ymm1, ymm1, ymm4 vpsrld ymm4, ymm9, 12 vpslld ymm9, ymm9, 20 vpor ymm9, ymm9, ymm4 vpaddd ymm0, ymm0, ymm5 vpaddd ymm8, ymm8, ymm13 vpaddd ymm0, ymm0, ymm1 vpaddd ymm8, ymm8, ymm9 vmovdqa ymmword ptr [rsp+0x80], ymm5 vmovdqa ymmword ptr [rsp+0xA0], ymm13 vpxor ymm3, ymm3, ymm0 vpxor ymm11, ymm11, ymm8 vbroadcasti128 ymm4, xmmword ptr [ROT8+rip] vpshufb ymm3, ymm3, ymm4 vpshufb ymm11, ymm11, ymm4 vpaddd ymm2, ymm2, ymm3 vpaddd ymm10, ymm10, ymm11 vpxor ymm1, ymm1, ymm2 vpxor ymm9, ymm9, ymm10 vpsrld ymm4, ymm1, 7 vpslld ymm1, ymm1, 25 vpor ymm1, ymm1, ymm4 vpsrld ymm4, ymm9, 7 vpslld ymm9, ymm9, 25 vpor ymm9, ymm9, ymm4 vpshufd ymm0, ymm0, 0x93 vpshufd ymm8, ymm8, 0x93 vpshufd ymm3, ymm3, 0x4E vpshufd ymm11, ymm11, 0x4E vpshufd ymm2, ymm2, 0x39 vpshufd ymm10, ymm10, 0x39 vpaddd ymm0, ymm0, ymm6 vpaddd ymm8, ymm8, ymm14 vpaddd ymm0, ymm0, ymm1 vpaddd ymm8, ymm8, ymm9 vpxor ymm3, ymm3, ymm0 vpxor ymm11, ymm11, ymm8 vbroadcasti128 ymm4, xmmword ptr [ROT16+rip] vpshufb ymm3, ymm3, ymm4 vpshufb ymm11, ymm11, ymm4 vpaddd ymm2, ymm2, ymm3 vpaddd ymm10, ymm10, ymm11 vpxor ymm1, ymm1, ymm2 vpxor ymm9, ymm9, ymm10 vpsrld ymm4, ymm1, 12 vpslld ymm1, ymm1, 20 vpor ymm1, ymm1, ymm4 vpsrld ymm4, ymm9, 12 vpslld ymm9, ymm9, 20 vpor ymm9, ymm9, ymm4 vpaddd ymm0, ymm0, ymm7 vpaddd ymm8, ymm8, ymm15 vpaddd ymm0, ymm0, ymm1 vpaddd ymm8, ymm8, ymm9 vpxor ymm3, ymm3, ymm0 vpxor ymm11, ymm11, ymm8 vbroadcasti128 ymm4, xmmword ptr [ROT8+rip] vpshufb ymm3, ymm3, ymm4 vpshufb ymm11, ymm11, ymm4 vpaddd ymm2, ymm2, ymm3 vpaddd ymm10, ymm10, ymm11 vpxor ymm1, ymm1, ymm2 vpxor ymm9, ymm9, ymm10 vpsrld ymm4, ymm1, 7 vpslld ymm1, ymm1, 25 vpor ymm1, ymm1, ymm4 vpsrld ymm4, ymm9, 7 vpslld ymm9, ymm9, 25 vpor ymm9, ymm9, ymm4 vpshufd ymm0, ymm0, 0x39 vpshufd ymm8, ymm8, 0x39 vpshufd ymm3, ymm3, 0x4E vpshufd ymm11, ymm11, 0x4E vpshufd ymm2, ymm2, 0x93 vpshufd ymm10, ymm10, 0x93 dec al je 9f vmovdqa ymm4, ymmword ptr [rsp+0x40] vmovdqa ymm5, ymmword ptr [rsp+0x80] vshufps ymm12, ymm4, ymm5, 214 vpshufd ymm13, ymm4, 0x0F vpshufd ymm4, ymm12, 0x39 vshufps ymm12, ymm6, ymm7, 250 vpblendd ymm13, ymm13, ymm12, 0xAA vpunpcklqdq ymm12, ymm7, ymm5 vpblendd ymm12, ymm12, ymm6, 0x88 vpshufd ymm12, ymm12, 0x78 vpunpckhdq ymm5, ymm5, ymm7 vpunpckldq ymm6, ymm6, ymm5 vpshufd ymm7, ymm6, 0x1E vmovdqa ymmword ptr [rsp+0x40], ymm13 vmovdqa ymmword ptr [rsp+0x80], ymm12 vmovdqa ymm12, ymmword ptr [rsp+0x60] vmovdqa ymm13, ymmword ptr [rsp+0xA0] vshufps ymm5, ymm12, ymm13, 214 vpshufd ymm6, ymm12, 0x0F vpshufd ymm12, ymm5, 0x39 vshufps ymm5, ymm14, ymm15, 250 vpblendd ymm6, ymm6, ymm5, 0xAA vpunpcklqdq ymm5, ymm15, ymm13 vpblendd ymm5, ymm5, ymm14, 0x88 vpshufd ymm5, ymm5, 0x78 vpunpckhdq ymm13, ymm13, ymm15 vpunpckldq ymm14, ymm14, ymm13 vpshufd ymm15, ymm14, 0x1E vmovdqa ymm13, ymm6 vmovdqa ymm14, ymm5 vmovdqa ymm5, ymmword ptr [rsp+0x40] vmovdqa ymm6, ymmword ptr [rsp+0x80] jmp 9b 9: vpxor ymm0, ymm0, ymm2 vpxor ymm1, ymm1, ymm3 vpxor ymm8, ymm8, ymm10 vpxor ymm9, ymm9, ymm11 mov eax, r13d cmp rdx, r15 jne 2b vmovdqu xmmword ptr [rbx], xmm0 vmovdqu xmmword ptr [rbx+0x10], xmm1 vextracti128 xmmword ptr [rbx+0x20], ymm0, 0x01 vextracti128 xmmword ptr [rbx+0x30], ymm1, 0x01 vmovdqu xmmword ptr [rbx+0x40], xmm8 vmovdqu xmmword ptr [rbx+0x50], xmm9 vextracti128 xmmword ptr [rbx+0x60], ymm8, 0x01 vextracti128 xmmword ptr [rbx+0x70], ymm9, 0x01 vmovaps xmm8, xmmword ptr [rsp+0x260] vmovaps xmm0, xmmword ptr [rsp+0x220] vmovaps xmm1, xmmword ptr [rsp+0x230] vmovaps xmm2, xmmword ptr [rsp+0x240] vmovaps xmm3, xmmword ptr [rsp+0x250] vblendvps xmm0, xmm0, xmm1, xmm8 vblendvps xmm2, xmm2, xmm3, xmm8 vmovaps xmmword ptr [rsp+0x220], xmm0 vmovaps xmmword ptr [rsp+0x240], xmm2 add rbx, 128 add rdi, 32 sub rsi, 4 3: test rsi, 0x2 je 3f vbroadcasti128 ymm0, xmmword ptr [rcx] vbroadcasti128 ymm1, xmmword ptr [rcx+0x10] vmovd xmm13, dword ptr [rsp+0x220] vpinsrd xmm13, xmm13, dword ptr [rsp+0x240], 1 vpinsrd xmm13, xmm13, dword ptr [BLAKE3_BLOCK_LEN+rip], 2 vmovd xmm14, dword ptr [rsp+0x224] vpinsrd xmm14, xmm14, dword ptr [rsp+0x244], 1 vpinsrd xmm14, xmm14, dword ptr [BLAKE3_BLOCK_LEN+rip], 2 vinserti128 ymm13, ymm13, xmm14, 0x01 vbroadcasti128 ymm14, xmmword ptr [ROT16+rip] vbroadcasti128 ymm15, xmmword ptr [ROT8+rip] mov r8, qword ptr [rdi] mov r9, qword ptr [rdi+0x8] movzx eax, byte ptr [rbp+0x80] or eax, r13d xor edx, edx .p2align 5 2: mov r14d, eax or eax, r12d add rdx, 64 cmp rdx, r15 cmovne eax, r14d mov dword ptr [rsp+0x200], eax vbroadcasti128 ymm2, xmmword ptr [BLAKE3_IV+rip] vpbroadcastd ymm8, dword ptr [rsp+0x200] vpblendd ymm3, ymm13, ymm8, 0x88 vmovups ymm8, ymmword ptr [r8+rdx-0x40] vinsertf128 ymm8, ymm8, xmmword ptr [r9+rdx-0x40], 0x01 vmovups ymm9, ymmword ptr [r8+rdx-0x30] vinsertf128 ymm9, ymm9, xmmword ptr [r9+rdx-0x30], 0x01 vshufps ymm4, ymm8, ymm9, 136 vshufps ymm5, ymm8, ymm9, 221 vmovups ymm8, ymmword ptr [r8+rdx-0x20] vinsertf128 ymm8, ymm8, xmmword ptr [r9+rdx-0x20], 0x01 vmovups ymm9, ymmword ptr [r8+rdx-0x10] vinsertf128 ymm9, ymm9, xmmword ptr [r9+rdx-0x10], 0x01 vshufps ymm6, ymm8, ymm9, 136 vshufps ymm7, ymm8, ymm9, 221 vpshufd ymm6, ymm6, 0x93 vpshufd ymm7, ymm7, 0x93 mov al, 7 9: vpaddd ymm0, ymm0, ymm4 vpaddd ymm0, ymm0, ymm1 vpxor ymm3, ymm3, ymm0 vpshufb ymm3, ymm3, ymm14 vpaddd ymm2, ymm2, ymm3 vpxor ymm1, ymm1, ymm2 vpsrld ymm8, ymm1, 12 vpslld ymm1, ymm1, 20 vpor ymm1, ymm1, ymm8 vpaddd ymm0, ymm0, ymm5 vpaddd ymm0, ymm0, ymm1 vpxor ymm3, ymm3, ymm0 vpshufb ymm3, ymm3, ymm15 vpaddd ymm2, ymm2, ymm3 vpxor ymm1, ymm1, ymm2 vpsrld ymm8, ymm1, 7 vpslld ymm1, ymm1, 25 vpor ymm1, ymm1, ymm8 vpshufd ymm0, ymm0, 0x93 vpshufd ymm3, ymm3, 0x4E vpshufd ymm2, ymm2, 0x39 vpaddd ymm0, ymm0, ymm6 vpaddd ymm0, ymm0, ymm1 vpxor ymm3, ymm3, ymm0 vpshufb ymm3, ymm3, ymm14 vpaddd ymm2, ymm2, ymm3 vpxor ymm1, ymm1, ymm2 vpsrld ymm8, ymm1, 12 vpslld ymm1, ymm1, 20 vpor ymm1, ymm1, ymm8 vpaddd ymm0, ymm0, ymm7 vpaddd ymm0, ymm0, ymm1 vpxor ymm3, ymm3, ymm0 vpshufb ymm3, ymm3, ymm15 vpaddd ymm2, ymm2, ymm3 vpxor ymm1, ymm1, ymm2 vpsrld ymm8, ymm1, 7 vpslld ymm1, ymm1, 25 vpor ymm1, ymm1, ymm8 vpshufd ymm0, ymm0, 0x39 vpshufd ymm3, ymm3, 0x4E vpshufd ymm2, ymm2, 0x93 dec al jz 9f vshufps ymm8, ymm4, ymm5, 214 vpshufd ymm9, ymm4, 0x0F vpshufd ymm4, ymm8, 0x39 vshufps ymm8, ymm6, ymm7, 250 vpblendd ymm9, ymm9, ymm8, 0xAA vpunpcklqdq ymm8, ymm7, ymm5 vpblendd ymm8, ymm8, ymm6, 0x88 vpshufd ymm8, ymm8, 0x78 vpunpckhdq ymm5, ymm5, ymm7 vpunpckldq ymm6, ymm6, ymm5 vpshufd ymm7, ymm6, 0x1E vmovdqa ymm5, ymm9 vmovdqa ymm6, ymm8 jmp 9b 9: vpxor ymm0, ymm0, ymm2 vpxor ymm1, ymm1, ymm3 mov eax, r13d cmp rdx, r15 jne 2b vmovdqu xmmword ptr [rbx], xmm0 vmovdqu xmmword ptr [rbx+0x10], xmm1 vextracti128 xmmword ptr [rbx+0x20], ymm0, 0x01 vextracti128 xmmword ptr [rbx+0x30], ymm1, 0x01 vmovaps ymm8, ymmword ptr [rsp+0x260] vmovaps ymm0, ymmword ptr [rsp+0x220] vmovups ymm1, ymmword ptr [rsp+0x228] vmovaps ymm2, ymmword ptr [rsp+0x240] vmovups ymm3, ymmword ptr [rsp+0x248] vblendvps ymm0, ymm0, ymm1, ymm8 vblendvps ymm2, ymm2, ymm3, ymm8 vmovaps ymmword ptr [rsp+0x220], ymm0 vmovaps ymmword ptr [rsp+0x240], ymm2 add rbx, 64 add rdi, 16 sub rsi, 2 3: test rsi, 0x1 je 4b vmovdqu xmm0, xmmword ptr [rcx] vmovdqu xmm1, xmmword ptr [rcx+0x10] vmovd xmm3, dword ptr [rsp+0x220] vpinsrd xmm3, xmm3, dword ptr [rsp+0x240], 1 vpinsrd xmm13, xmm3, dword ptr [BLAKE3_BLOCK_LEN+rip], 2 vmovdqa xmm14, xmmword ptr [ROT16+rip] vmovdqa xmm15, xmmword ptr [ROT8+rip] mov r8, qword ptr [rdi] movzx eax, byte ptr [rbp+0x80] or eax, r13d xor edx, edx .p2align 5 2: mov r14d, eax or eax, r12d add rdx, 64 cmp rdx, r15 cmovne eax, r14d vmovdqa xmm2, xmmword ptr [BLAKE3_IV+rip] vmovdqa xmm3, xmm13 vpinsrd xmm3, xmm3, eax, 3 vmovups xmm8, xmmword ptr [r8+rdx-0x40] vmovups xmm9, xmmword ptr [r8+rdx-0x30] vshufps xmm4, xmm8, xmm9, 136 vshufps xmm5, xmm8, xmm9, 221 vmovups xmm8, xmmword ptr [r8+rdx-0x20] vmovups xmm9, xmmword ptr [r8+rdx-0x10] vshufps xmm6, xmm8, xmm9, 136 vshufps xmm7, xmm8, xmm9, 221 vpshufd xmm6, xmm6, 0x93 vpshufd xmm7, xmm7, 0x93 mov al, 7 9: vpaddd xmm0, xmm0, xmm4 vpaddd xmm0, xmm0, xmm1 vpxor xmm3, xmm3, xmm0 vpshufb xmm3, xmm3, xmm14 vpaddd xmm2, xmm2, xmm3 vpxor xmm1, xmm1, xmm2 vpsrld xmm8, xmm1, 12 vpslld xmm1, xmm1, 20 vpor xmm1, xmm1, xmm8 vpaddd xmm0, xmm0, xmm5 vpaddd xmm0, xmm0, xmm1 vpxor xmm3, xmm3, xmm0 vpshufb xmm3, xmm3, xmm15 vpaddd xmm2, xmm2, xmm3 vpxor xmm1, xmm1, xmm2 vpsrld xmm8, xmm1, 7 vpslld xmm1, xmm1, 25 vpor xmm1, xmm1, xmm8 vpshufd xmm0, xmm0, 0x93 vpshufd xmm3, xmm3, 0x4E vpshufd xmm2, xmm2, 0x39 vpaddd xmm0, xmm0, xmm6 vpaddd xmm0, xmm0, xmm1 vpxor xmm3, xmm3, xmm0 vpshufb xmm3, xmm3, xmm14 vpaddd xmm2, xmm2, xmm3 vpxor xmm1, xmm1, xmm2 vpsrld xmm8, xmm1, 12 vpslld xmm1, xmm1, 20 vpor xmm1, xmm1, xmm8 vpaddd xmm0, xmm0, xmm7 vpaddd xmm0, xmm0, xmm1 vpxor xmm3, xmm3, xmm0 vpshufb xmm3, xmm3, xmm15 vpaddd xmm2, xmm2, xmm3 vpxor xmm1, xmm1, xmm2 vpsrld xmm8, xmm1, 7 vpslld xmm1, xmm1, 25 vpor xmm1, xmm1, xmm8 vpshufd xmm0, xmm0, 0x39 vpshufd xmm3, xmm3, 0x4E vpshufd xmm2, xmm2, 0x93 dec al jz 9f vshufps xmm8, xmm4, xmm5, 214 vpshufd xmm9, xmm4, 0x0F vpshufd xmm4, xmm8, 0x39 vshufps xmm8, xmm6, xmm7, 250 vpblendd xmm9, xmm9, xmm8, 0xAA vpunpcklqdq xmm8, xmm7, xmm5 vpblendd xmm8, xmm8, xmm6, 0x88 vpshufd xmm8, xmm8, 0x78 vpunpckhdq xmm5, xmm5, xmm7 vpunpckldq xmm6, xmm6, xmm5 vpshufd xmm7, xmm6, 0x1E vmovdqa xmm5, xmm9 vmovdqa xmm6, xmm8 jmp 9b 9: vpxor xmm0, xmm0, xmm2 vpxor xmm1, xmm1, xmm3 mov eax, r13d cmp rdx, r15 jne 2b vmovdqu xmmword ptr [rbx], xmm0 vmovdqu xmmword ptr [rbx+0x10], xmm1 jmp 4b .section .rdata .p2align 6 ADD0: .long 0, 1, 2, 3, 4, 5, 6, 7 ADD1: .long 8, 8, 8, 8, 8, 8, 8, 8 BLAKE3_IV_0: .long 0x6A09E667, 0x6A09E667, 0x6A09E667, 0x6A09E667 .long 0x6A09E667, 0x6A09E667, 0x6A09E667, 0x6A09E667 BLAKE3_IV_1: .long 0xBB67AE85, 0xBB67AE85, 0xBB67AE85, 0xBB67AE85 .long 0xBB67AE85, 0xBB67AE85, 0xBB67AE85, 0xBB67AE85 BLAKE3_IV_2: .long 0x3C6EF372, 0x3C6EF372, 0x3C6EF372, 0x3C6EF372 .long 0x3C6EF372, 0x3C6EF372, 0x3C6EF372, 0x3C6EF372 BLAKE3_IV_3: .long 0xA54FF53A, 0xA54FF53A, 0xA54FF53A, 0xA54FF53A .long 0xA54FF53A, 0xA54FF53A, 0xA54FF53A, 0xA54FF53A BLAKE3_BLOCK_LEN: .long 0x00000040, 0x00000040, 0x00000040, 0x00000040 .long 0x00000040, 0x00000040, 0x00000040, 0x00000040 ROT16: .byte 2, 3, 0, 1, 6, 7, 4, 5, 10, 11, 8, 9, 14, 15, 12, 13 ROT8: .byte 1, 2, 3, 0, 5, 6, 7, 4, 9, 10, 11, 8, 13, 14, 15, 12 CMP_MSB_MASK: .long 0x80000000, 0x80000000, 0x80000000, 0x80000000 .long 0x80000000, 0x80000000, 0x80000000, 0x80000000 BLAKE3_IV: .long 0x6A09E667, 0xBB67AE85, 0x3C6EF372, 0xA54FF53A
mktmansour/MKT-KSA-Geolocation-Security
161,672
.cargo-home/registry/src/index.crates.io-1949cf8c6b5b557f/blake3-1.8.2/c/blake3_avx512_x86-64_unix.S
#if defined(__ELF__) && defined(__linux__) .section .note.GNU-stack,"",%progbits #endif #if defined(__ELF__) && defined(__CET__) && defined(__has_include) #if __has_include(<cet.h>) #include <cet.h> #endif #endif #if !defined(_CET_ENDBR) #define _CET_ENDBR #endif .intel_syntax noprefix .global _blake3_hash_many_avx512 .global blake3_hash_many_avx512 .global blake3_compress_in_place_avx512 .global _blake3_compress_in_place_avx512 .global blake3_compress_xof_avx512 .global _blake3_compress_xof_avx512 .global blake3_xof_many_avx512 .global _blake3_xof_many_avx512 #ifdef __APPLE__ .text #else .section .text #endif .p2align 6 _blake3_hash_many_avx512: blake3_hash_many_avx512: _CET_ENDBR push r15 push r14 push r13 push r12 push rbx push rbp mov rbp, rsp sub rsp, 144 and rsp, 0xFFFFFFFFFFFFFFC0 neg r9 kmovw k1, r9d vmovd xmm0, r8d vpbroadcastd ymm0, xmm0 shr r8, 32 vmovd xmm1, r8d vpbroadcastd ymm1, xmm1 vmovdqa ymm4, ymm1 vmovdqa ymm5, ymm1 vpaddd ymm2, ymm0, ymmword ptr [ADD0+rip] vpaddd ymm3, ymm0, ymmword ptr [ADD0+32+rip] vpcmpltud k2, ymm2, ymm0 vpcmpltud k3, ymm3, ymm0 vpaddd ymm4 {k2}, ymm4, dword ptr [ADD1+rip] {1to8} vpaddd ymm5 {k3}, ymm5, dword ptr [ADD1+rip] {1to8} knotw k2, k1 vmovdqa32 ymm2 {k2}, ymm0 vmovdqa32 ymm3 {k2}, ymm0 vmovdqa32 ymm4 {k2}, ymm1 vmovdqa32 ymm5 {k2}, ymm1 vmovdqa ymmword ptr [rsp], ymm2 vmovdqa ymmword ptr [rsp+0x1*0x20], ymm3 vmovdqa ymmword ptr [rsp+0x2*0x20], ymm4 vmovdqa ymmword ptr [rsp+0x3*0x20], ymm5 shl rdx, 6 mov qword ptr [rsp+0x80], rdx cmp rsi, 16 jc 3f 2: vpbroadcastd zmm0, dword ptr [rcx] vpbroadcastd zmm1, dword ptr [rcx+0x1*0x4] vpbroadcastd zmm2, dword ptr [rcx+0x2*0x4] vpbroadcastd zmm3, dword ptr [rcx+0x3*0x4] vpbroadcastd zmm4, dword ptr [rcx+0x4*0x4] vpbroadcastd zmm5, dword ptr [rcx+0x5*0x4] vpbroadcastd zmm6, dword ptr [rcx+0x6*0x4] vpbroadcastd zmm7, dword ptr [rcx+0x7*0x4] movzx eax, byte ptr [rbp+0x38] movzx ebx, byte ptr [rbp+0x40] or eax, ebx xor edx, edx .p2align 5 9: movzx ebx, byte ptr [rbp+0x48] or ebx, eax add rdx, 64 cmp rdx, qword ptr [rsp+0x80] cmove eax, ebx mov dword ptr [rsp+0x88], eax mov r8, qword ptr [rdi] mov r9, qword ptr [rdi+0x8] mov r10, qword ptr [rdi+0x10] mov r11, qword ptr [rdi+0x18] mov r12, qword ptr [rdi+0x40] mov r13, qword ptr [rdi+0x48] mov r14, qword ptr [rdi+0x50] mov r15, qword ptr [rdi+0x58] vmovdqu32 ymm16, ymmword ptr [rdx+r8-0x2*0x20] vinserti64x4 zmm16, zmm16, ymmword ptr [rdx+r12-0x2*0x20], 0x01 vmovdqu32 ymm17, ymmword ptr [rdx+r9-0x2*0x20] vinserti64x4 zmm17, zmm17, ymmword ptr [rdx+r13-0x2*0x20], 0x01 vpunpcklqdq zmm8, zmm16, zmm17 vpunpckhqdq zmm9, zmm16, zmm17 vmovdqu32 ymm18, ymmword ptr [rdx+r10-0x2*0x20] vinserti64x4 zmm18, zmm18, ymmword ptr [rdx+r14-0x2*0x20], 0x01 vmovdqu32 ymm19, ymmword ptr [rdx+r11-0x2*0x20] vinserti64x4 zmm19, zmm19, ymmword ptr [rdx+r15-0x2*0x20], 0x01 vpunpcklqdq zmm10, zmm18, zmm19 vpunpckhqdq zmm11, zmm18, zmm19 mov r8, qword ptr [rdi+0x20] mov r9, qword ptr [rdi+0x28] mov r10, qword ptr [rdi+0x30] mov r11, qword ptr [rdi+0x38] mov r12, qword ptr [rdi+0x60] mov r13, qword ptr [rdi+0x68] mov r14, qword ptr [rdi+0x70] mov r15, qword ptr [rdi+0x78] vmovdqu32 ymm16, ymmword ptr [rdx+r8-0x2*0x20] vinserti64x4 zmm16, zmm16, ymmword ptr [rdx+r12-0x2*0x20], 0x01 vmovdqu32 ymm17, ymmword ptr [rdx+r9-0x2*0x20] vinserti64x4 zmm17, zmm17, ymmword ptr [rdx+r13-0x2*0x20], 0x01 vpunpcklqdq zmm12, zmm16, zmm17 vpunpckhqdq zmm13, zmm16, zmm17 vmovdqu32 ymm18, ymmword ptr [rdx+r10-0x2*0x20] vinserti64x4 zmm18, zmm18, ymmword ptr [rdx+r14-0x2*0x20], 0x01 vmovdqu32 ymm19, ymmword ptr [rdx+r11-0x2*0x20] vinserti64x4 zmm19, zmm19, ymmword ptr [rdx+r15-0x2*0x20], 0x01 vpunpcklqdq zmm14, zmm18, zmm19 vpunpckhqdq zmm15, zmm18, zmm19 vmovdqa32 zmm27, zmmword ptr [INDEX0+rip] vmovdqa32 zmm31, zmmword ptr [INDEX1+rip] vshufps zmm16, zmm8, zmm10, 136 vshufps zmm17, zmm12, zmm14, 136 vmovdqa32 zmm20, zmm16 vpermt2d zmm16, zmm27, zmm17 vpermt2d zmm20, zmm31, zmm17 vshufps zmm17, zmm8, zmm10, 221 vshufps zmm30, zmm12, zmm14, 221 vmovdqa32 zmm21, zmm17 vpermt2d zmm17, zmm27, zmm30 vpermt2d zmm21, zmm31, zmm30 vshufps zmm18, zmm9, zmm11, 136 vshufps zmm8, zmm13, zmm15, 136 vmovdqa32 zmm22, zmm18 vpermt2d zmm18, zmm27, zmm8 vpermt2d zmm22, zmm31, zmm8 vshufps zmm19, zmm9, zmm11, 221 vshufps zmm8, zmm13, zmm15, 221 vmovdqa32 zmm23, zmm19 vpermt2d zmm19, zmm27, zmm8 vpermt2d zmm23, zmm31, zmm8 mov r8, qword ptr [rdi] mov r9, qword ptr [rdi+0x8] mov r10, qword ptr [rdi+0x10] mov r11, qword ptr [rdi+0x18] mov r12, qword ptr [rdi+0x40] mov r13, qword ptr [rdi+0x48] mov r14, qword ptr [rdi+0x50] mov r15, qword ptr [rdi+0x58] vmovdqu32 ymm24, ymmword ptr [r8+rdx-0x1*0x20] vinserti64x4 zmm24, zmm24, ymmword ptr [r12+rdx-0x1*0x20], 0x01 vmovdqu32 ymm25, ymmword ptr [r9+rdx-0x1*0x20] vinserti64x4 zmm25, zmm25, ymmword ptr [r13+rdx-0x1*0x20], 0x01 vpunpcklqdq zmm8, zmm24, zmm25 vpunpckhqdq zmm9, zmm24, zmm25 vmovdqu32 ymm24, ymmword ptr [r10+rdx-0x1*0x20] vinserti64x4 zmm24, zmm24, ymmword ptr [r14+rdx-0x1*0x20], 0x01 vmovdqu32 ymm25, ymmword ptr [r11+rdx-0x1*0x20] vinserti64x4 zmm25, zmm25, ymmword ptr [r15+rdx-0x1*0x20], 0x01 vpunpcklqdq zmm10, zmm24, zmm25 vpunpckhqdq zmm11, zmm24, zmm25 prefetcht0 [r8+rdx+0x80] prefetcht0 [r12+rdx+0x80] prefetcht0 [r9+rdx+0x80] prefetcht0 [r13+rdx+0x80] prefetcht0 [r10+rdx+0x80] prefetcht0 [r14+rdx+0x80] prefetcht0 [r11+rdx+0x80] prefetcht0 [r15+rdx+0x80] mov r8, qword ptr [rdi+0x20] mov r9, qword ptr [rdi+0x28] mov r10, qword ptr [rdi+0x30] mov r11, qword ptr [rdi+0x38] mov r12, qword ptr [rdi+0x60] mov r13, qword ptr [rdi+0x68] mov r14, qword ptr [rdi+0x70] mov r15, qword ptr [rdi+0x78] vmovdqu32 ymm24, ymmword ptr [r8+rdx-0x1*0x20] vinserti64x4 zmm24, zmm24, ymmword ptr [r12+rdx-0x1*0x20], 0x01 vmovdqu32 ymm25, ymmword ptr [r9+rdx-0x1*0x20] vinserti64x4 zmm25, zmm25, ymmword ptr [r13+rdx-0x1*0x20], 0x01 vpunpcklqdq zmm12, zmm24, zmm25 vpunpckhqdq zmm13, zmm24, zmm25 vmovdqu32 ymm24, ymmword ptr [r10+rdx-0x1*0x20] vinserti64x4 zmm24, zmm24, ymmword ptr [r14+rdx-0x1*0x20], 0x01 vmovdqu32 ymm25, ymmword ptr [r11+rdx-0x1*0x20] vinserti64x4 zmm25, zmm25, ymmword ptr [r15+rdx-0x1*0x20], 0x01 vpunpcklqdq zmm14, zmm24, zmm25 vpunpckhqdq zmm15, zmm24, zmm25 prefetcht0 [r8+rdx+0x80] prefetcht0 [r12+rdx+0x80] prefetcht0 [r9+rdx+0x80] prefetcht0 [r13+rdx+0x80] prefetcht0 [r10+rdx+0x80] prefetcht0 [r14+rdx+0x80] prefetcht0 [r11+rdx+0x80] prefetcht0 [r15+rdx+0x80] vshufps zmm24, zmm8, zmm10, 136 vshufps zmm30, zmm12, zmm14, 136 vmovdqa32 zmm28, zmm24 vpermt2d zmm24, zmm27, zmm30 vpermt2d zmm28, zmm31, zmm30 vshufps zmm25, zmm8, zmm10, 221 vshufps zmm30, zmm12, zmm14, 221 vmovdqa32 zmm29, zmm25 vpermt2d zmm25, zmm27, zmm30 vpermt2d zmm29, zmm31, zmm30 vshufps zmm26, zmm9, zmm11, 136 vshufps zmm8, zmm13, zmm15, 136 vmovdqa32 zmm30, zmm26 vpermt2d zmm26, zmm27, zmm8 vpermt2d zmm30, zmm31, zmm8 vshufps zmm8, zmm9, zmm11, 221 vshufps zmm10, zmm13, zmm15, 221 vpermi2d zmm27, zmm8, zmm10 vpermi2d zmm31, zmm8, zmm10 vpbroadcastd zmm8, dword ptr [BLAKE3_IV_0+rip] vpbroadcastd zmm9, dword ptr [BLAKE3_IV_1+rip] vpbroadcastd zmm10, dword ptr [BLAKE3_IV_2+rip] vpbroadcastd zmm11, dword ptr [BLAKE3_IV_3+rip] vmovdqa32 zmm12, zmmword ptr [rsp] vmovdqa32 zmm13, zmmword ptr [rsp+0x1*0x40] vpbroadcastd zmm14, dword ptr [BLAKE3_BLOCK_LEN+rip] vpbroadcastd zmm15, dword ptr [rsp+0x22*0x4] vpaddd zmm0, zmm0, zmm16 vpaddd zmm1, zmm1, zmm18 vpaddd zmm2, zmm2, zmm20 vpaddd zmm3, zmm3, zmm22 vpaddd zmm0, zmm0, zmm4 vpaddd zmm1, zmm1, zmm5 vpaddd zmm2, zmm2, zmm6 vpaddd zmm3, zmm3, zmm7 vpxord zmm12, zmm12, zmm0 vpxord zmm13, zmm13, zmm1 vpxord zmm14, zmm14, zmm2 vpxord zmm15, zmm15, zmm3 vprord zmm12, zmm12, 16 vprord zmm13, zmm13, 16 vprord zmm14, zmm14, 16 vprord zmm15, zmm15, 16 vpaddd zmm8, zmm8, zmm12 vpaddd zmm9, zmm9, zmm13 vpaddd zmm10, zmm10, zmm14 vpaddd zmm11, zmm11, zmm15 vpxord zmm4, zmm4, zmm8 vpxord zmm5, zmm5, zmm9 vpxord zmm6, zmm6, zmm10 vpxord zmm7, zmm7, zmm11 vprord zmm4, zmm4, 12 vprord zmm5, zmm5, 12 vprord zmm6, zmm6, 12 vprord zmm7, zmm7, 12 vpaddd zmm0, zmm0, zmm17 vpaddd zmm1, zmm1, zmm19 vpaddd zmm2, zmm2, zmm21 vpaddd zmm3, zmm3, zmm23 vpaddd zmm0, zmm0, zmm4 vpaddd zmm1, zmm1, zmm5 vpaddd zmm2, zmm2, zmm6 vpaddd zmm3, zmm3, zmm7 vpxord zmm12, zmm12, zmm0 vpxord zmm13, zmm13, zmm1 vpxord zmm14, zmm14, zmm2 vpxord zmm15, zmm15, zmm3 vprord zmm12, zmm12, 8 vprord zmm13, zmm13, 8 vprord zmm14, zmm14, 8 vprord zmm15, zmm15, 8 vpaddd zmm8, zmm8, zmm12 vpaddd zmm9, zmm9, zmm13 vpaddd zmm10, zmm10, zmm14 vpaddd zmm11, zmm11, zmm15 vpxord zmm4, zmm4, zmm8 vpxord zmm5, zmm5, zmm9 vpxord zmm6, zmm6, zmm10 vpxord zmm7, zmm7, zmm11 vprord zmm4, zmm4, 7 vprord zmm5, zmm5, 7 vprord zmm6, zmm6, 7 vprord zmm7, zmm7, 7 vpaddd zmm0, zmm0, zmm24 vpaddd zmm1, zmm1, zmm26 vpaddd zmm2, zmm2, zmm28 vpaddd zmm3, zmm3, zmm30 vpaddd zmm0, zmm0, zmm5 vpaddd zmm1, zmm1, zmm6 vpaddd zmm2, zmm2, zmm7 vpaddd zmm3, zmm3, zmm4 vpxord zmm15, zmm15, zmm0 vpxord zmm12, zmm12, zmm1 vpxord zmm13, zmm13, zmm2 vpxord zmm14, zmm14, zmm3 vprord zmm15, zmm15, 16 vprord zmm12, zmm12, 16 vprord zmm13, zmm13, 16 vprord zmm14, zmm14, 16 vpaddd zmm10, zmm10, zmm15 vpaddd zmm11, zmm11, zmm12 vpaddd zmm8, zmm8, zmm13 vpaddd zmm9, zmm9, zmm14 vpxord zmm5, zmm5, zmm10 vpxord zmm6, zmm6, zmm11 vpxord zmm7, zmm7, zmm8 vpxord zmm4, zmm4, zmm9 vprord zmm5, zmm5, 12 vprord zmm6, zmm6, 12 vprord zmm7, zmm7, 12 vprord zmm4, zmm4, 12 vpaddd zmm0, zmm0, zmm25 vpaddd zmm1, zmm1, zmm27 vpaddd zmm2, zmm2, zmm29 vpaddd zmm3, zmm3, zmm31 vpaddd zmm0, zmm0, zmm5 vpaddd zmm1, zmm1, zmm6 vpaddd zmm2, zmm2, zmm7 vpaddd zmm3, zmm3, zmm4 vpxord zmm15, zmm15, zmm0 vpxord zmm12, zmm12, zmm1 vpxord zmm13, zmm13, zmm2 vpxord zmm14, zmm14, zmm3 vprord zmm15, zmm15, 8 vprord zmm12, zmm12, 8 vprord zmm13, zmm13, 8 vprord zmm14, zmm14, 8 vpaddd zmm10, zmm10, zmm15 vpaddd zmm11, zmm11, zmm12 vpaddd zmm8, zmm8, zmm13 vpaddd zmm9, zmm9, zmm14 vpxord zmm5, zmm5, zmm10 vpxord zmm6, zmm6, zmm11 vpxord zmm7, zmm7, zmm8 vpxord zmm4, zmm4, zmm9 vprord zmm5, zmm5, 7 vprord zmm6, zmm6, 7 vprord zmm7, zmm7, 7 vprord zmm4, zmm4, 7 vpaddd zmm0, zmm0, zmm18 vpaddd zmm1, zmm1, zmm19 vpaddd zmm2, zmm2, zmm23 vpaddd zmm3, zmm3, zmm20 vpaddd zmm0, zmm0, zmm4 vpaddd zmm1, zmm1, zmm5 vpaddd zmm2, zmm2, zmm6 vpaddd zmm3, zmm3, zmm7 vpxord zmm12, zmm12, zmm0 vpxord zmm13, zmm13, zmm1 vpxord zmm14, zmm14, zmm2 vpxord zmm15, zmm15, zmm3 vprord zmm12, zmm12, 16 vprord zmm13, zmm13, 16 vprord zmm14, zmm14, 16 vprord zmm15, zmm15, 16 vpaddd zmm8, zmm8, zmm12 vpaddd zmm9, zmm9, zmm13 vpaddd zmm10, zmm10, zmm14 vpaddd zmm11, zmm11, zmm15 vpxord zmm4, zmm4, zmm8 vpxord zmm5, zmm5, zmm9 vpxord zmm6, zmm6, zmm10 vpxord zmm7, zmm7, zmm11 vprord zmm4, zmm4, 12 vprord zmm5, zmm5, 12 vprord zmm6, zmm6, 12 vprord zmm7, zmm7, 12 vpaddd zmm0, zmm0, zmm22 vpaddd zmm1, zmm1, zmm26 vpaddd zmm2, zmm2, zmm16 vpaddd zmm3, zmm3, zmm29 vpaddd zmm0, zmm0, zmm4 vpaddd zmm1, zmm1, zmm5 vpaddd zmm2, zmm2, zmm6 vpaddd zmm3, zmm3, zmm7 vpxord zmm12, zmm12, zmm0 vpxord zmm13, zmm13, zmm1 vpxord zmm14, zmm14, zmm2 vpxord zmm15, zmm15, zmm3 vprord zmm12, zmm12, 8 vprord zmm13, zmm13, 8 vprord zmm14, zmm14, 8 vprord zmm15, zmm15, 8 vpaddd zmm8, zmm8, zmm12 vpaddd zmm9, zmm9, zmm13 vpaddd zmm10, zmm10, zmm14 vpaddd zmm11, zmm11, zmm15 vpxord zmm4, zmm4, zmm8 vpxord zmm5, zmm5, zmm9 vpxord zmm6, zmm6, zmm10 vpxord zmm7, zmm7, zmm11 vprord zmm4, zmm4, 7 vprord zmm5, zmm5, 7 vprord zmm6, zmm6, 7 vprord zmm7, zmm7, 7 vpaddd zmm0, zmm0, zmm17 vpaddd zmm1, zmm1, zmm28 vpaddd zmm2, zmm2, zmm25 vpaddd zmm3, zmm3, zmm31 vpaddd zmm0, zmm0, zmm5 vpaddd zmm1, zmm1, zmm6 vpaddd zmm2, zmm2, zmm7 vpaddd zmm3, zmm3, zmm4 vpxord zmm15, zmm15, zmm0 vpxord zmm12, zmm12, zmm1 vpxord zmm13, zmm13, zmm2 vpxord zmm14, zmm14, zmm3 vprord zmm15, zmm15, 16 vprord zmm12, zmm12, 16 vprord zmm13, zmm13, 16 vprord zmm14, zmm14, 16 vpaddd zmm10, zmm10, zmm15 vpaddd zmm11, zmm11, zmm12 vpaddd zmm8, zmm8, zmm13 vpaddd zmm9, zmm9, zmm14 vpxord zmm5, zmm5, zmm10 vpxord zmm6, zmm6, zmm11 vpxord zmm7, zmm7, zmm8 vpxord zmm4, zmm4, zmm9 vprord zmm5, zmm5, 12 vprord zmm6, zmm6, 12 vprord zmm7, zmm7, 12 vprord zmm4, zmm4, 12 vpaddd zmm0, zmm0, zmm27 vpaddd zmm1, zmm1, zmm21 vpaddd zmm2, zmm2, zmm30 vpaddd zmm3, zmm3, zmm24 vpaddd zmm0, zmm0, zmm5 vpaddd zmm1, zmm1, zmm6 vpaddd zmm2, zmm2, zmm7 vpaddd zmm3, zmm3, zmm4 vpxord zmm15, zmm15, zmm0 vpxord zmm12, zmm12, zmm1 vpxord zmm13, zmm13, zmm2 vpxord zmm14, zmm14, zmm3 vprord zmm15, zmm15, 8 vprord zmm12, zmm12, 8 vprord zmm13, zmm13, 8 vprord zmm14, zmm14, 8 vpaddd zmm10, zmm10, zmm15 vpaddd zmm11, zmm11, zmm12 vpaddd zmm8, zmm8, zmm13 vpaddd zmm9, zmm9, zmm14 vpxord zmm5, zmm5, zmm10 vpxord zmm6, zmm6, zmm11 vpxord zmm7, zmm7, zmm8 vpxord zmm4, zmm4, zmm9 vprord zmm5, zmm5, 7 vprord zmm6, zmm6, 7 vprord zmm7, zmm7, 7 vprord zmm4, zmm4, 7 vpaddd zmm0, zmm0, zmm19 vpaddd zmm1, zmm1, zmm26 vpaddd zmm2, zmm2, zmm29 vpaddd zmm3, zmm3, zmm23 vpaddd zmm0, zmm0, zmm4 vpaddd zmm1, zmm1, zmm5 vpaddd zmm2, zmm2, zmm6 vpaddd zmm3, zmm3, zmm7 vpxord zmm12, zmm12, zmm0 vpxord zmm13, zmm13, zmm1 vpxord zmm14, zmm14, zmm2 vpxord zmm15, zmm15, zmm3 vprord zmm12, zmm12, 16 vprord zmm13, zmm13, 16 vprord zmm14, zmm14, 16 vprord zmm15, zmm15, 16 vpaddd zmm8, zmm8, zmm12 vpaddd zmm9, zmm9, zmm13 vpaddd zmm10, zmm10, zmm14 vpaddd zmm11, zmm11, zmm15 vpxord zmm4, zmm4, zmm8 vpxord zmm5, zmm5, zmm9 vpxord zmm6, zmm6, zmm10 vpxord zmm7, zmm7, zmm11 vprord zmm4, zmm4, 12 vprord zmm5, zmm5, 12 vprord zmm6, zmm6, 12 vprord zmm7, zmm7, 12 vpaddd zmm0, zmm0, zmm20 vpaddd zmm1, zmm1, zmm28 vpaddd zmm2, zmm2, zmm18 vpaddd zmm3, zmm3, zmm30 vpaddd zmm0, zmm0, zmm4 vpaddd zmm1, zmm1, zmm5 vpaddd zmm2, zmm2, zmm6 vpaddd zmm3, zmm3, zmm7 vpxord zmm12, zmm12, zmm0 vpxord zmm13, zmm13, zmm1 vpxord zmm14, zmm14, zmm2 vpxord zmm15, zmm15, zmm3 vprord zmm12, zmm12, 8 vprord zmm13, zmm13, 8 vprord zmm14, zmm14, 8 vprord zmm15, zmm15, 8 vpaddd zmm8, zmm8, zmm12 vpaddd zmm9, zmm9, zmm13 vpaddd zmm10, zmm10, zmm14 vpaddd zmm11, zmm11, zmm15 vpxord zmm4, zmm4, zmm8 vpxord zmm5, zmm5, zmm9 vpxord zmm6, zmm6, zmm10 vpxord zmm7, zmm7, zmm11 vprord zmm4, zmm4, 7 vprord zmm5, zmm5, 7 vprord zmm6, zmm6, 7 vprord zmm7, zmm7, 7 vpaddd zmm0, zmm0, zmm22 vpaddd zmm1, zmm1, zmm25 vpaddd zmm2, zmm2, zmm27 vpaddd zmm3, zmm3, zmm24 vpaddd zmm0, zmm0, zmm5 vpaddd zmm1, zmm1, zmm6 vpaddd zmm2, zmm2, zmm7 vpaddd zmm3, zmm3, zmm4 vpxord zmm15, zmm15, zmm0 vpxord zmm12, zmm12, zmm1 vpxord zmm13, zmm13, zmm2 vpxord zmm14, zmm14, zmm3 vprord zmm15, zmm15, 16 vprord zmm12, zmm12, 16 vprord zmm13, zmm13, 16 vprord zmm14, zmm14, 16 vpaddd zmm10, zmm10, zmm15 vpaddd zmm11, zmm11, zmm12 vpaddd zmm8, zmm8, zmm13 vpaddd zmm9, zmm9, zmm14 vpxord zmm5, zmm5, zmm10 vpxord zmm6, zmm6, zmm11 vpxord zmm7, zmm7, zmm8 vpxord zmm4, zmm4, zmm9 vprord zmm5, zmm5, 12 vprord zmm6, zmm6, 12 vprord zmm7, zmm7, 12 vprord zmm4, zmm4, 12 vpaddd zmm0, zmm0, zmm21 vpaddd zmm1, zmm1, zmm16 vpaddd zmm2, zmm2, zmm31 vpaddd zmm3, zmm3, zmm17 vpaddd zmm0, zmm0, zmm5 vpaddd zmm1, zmm1, zmm6 vpaddd zmm2, zmm2, zmm7 vpaddd zmm3, zmm3, zmm4 vpxord zmm15, zmm15, zmm0 vpxord zmm12, zmm12, zmm1 vpxord zmm13, zmm13, zmm2 vpxord zmm14, zmm14, zmm3 vprord zmm15, zmm15, 8 vprord zmm12, zmm12, 8 vprord zmm13, zmm13, 8 vprord zmm14, zmm14, 8 vpaddd zmm10, zmm10, zmm15 vpaddd zmm11, zmm11, zmm12 vpaddd zmm8, zmm8, zmm13 vpaddd zmm9, zmm9, zmm14 vpxord zmm5, zmm5, zmm10 vpxord zmm6, zmm6, zmm11 vpxord zmm7, zmm7, zmm8 vpxord zmm4, zmm4, zmm9 vprord zmm5, zmm5, 7 vprord zmm6, zmm6, 7 vprord zmm7, zmm7, 7 vprord zmm4, zmm4, 7 vpaddd zmm0, zmm0, zmm26 vpaddd zmm1, zmm1, zmm28 vpaddd zmm2, zmm2, zmm30 vpaddd zmm3, zmm3, zmm29 vpaddd zmm0, zmm0, zmm4 vpaddd zmm1, zmm1, zmm5 vpaddd zmm2, zmm2, zmm6 vpaddd zmm3, zmm3, zmm7 vpxord zmm12, zmm12, zmm0 vpxord zmm13, zmm13, zmm1 vpxord zmm14, zmm14, zmm2 vpxord zmm15, zmm15, zmm3 vprord zmm12, zmm12, 16 vprord zmm13, zmm13, 16 vprord zmm14, zmm14, 16 vprord zmm15, zmm15, 16 vpaddd zmm8, zmm8, zmm12 vpaddd zmm9, zmm9, zmm13 vpaddd zmm10, zmm10, zmm14 vpaddd zmm11, zmm11, zmm15 vpxord zmm4, zmm4, zmm8 vpxord zmm5, zmm5, zmm9 vpxord zmm6, zmm6, zmm10 vpxord zmm7, zmm7, zmm11 vprord zmm4, zmm4, 12 vprord zmm5, zmm5, 12 vprord zmm6, zmm6, 12 vprord zmm7, zmm7, 12 vpaddd zmm0, zmm0, zmm23 vpaddd zmm1, zmm1, zmm25 vpaddd zmm2, zmm2, zmm19 vpaddd zmm3, zmm3, zmm31 vpaddd zmm0, zmm0, zmm4 vpaddd zmm1, zmm1, zmm5 vpaddd zmm2, zmm2, zmm6 vpaddd zmm3, zmm3, zmm7 vpxord zmm12, zmm12, zmm0 vpxord zmm13, zmm13, zmm1 vpxord zmm14, zmm14, zmm2 vpxord zmm15, zmm15, zmm3 vprord zmm12, zmm12, 8 vprord zmm13, zmm13, 8 vprord zmm14, zmm14, 8 vprord zmm15, zmm15, 8 vpaddd zmm8, zmm8, zmm12 vpaddd zmm9, zmm9, zmm13 vpaddd zmm10, zmm10, zmm14 vpaddd zmm11, zmm11, zmm15 vpxord zmm4, zmm4, zmm8 vpxord zmm5, zmm5, zmm9 vpxord zmm6, zmm6, zmm10 vpxord zmm7, zmm7, zmm11 vprord zmm4, zmm4, 7 vprord zmm5, zmm5, 7 vprord zmm6, zmm6, 7 vprord zmm7, zmm7, 7 vpaddd zmm0, zmm0, zmm20 vpaddd zmm1, zmm1, zmm27 vpaddd zmm2, zmm2, zmm21 vpaddd zmm3, zmm3, zmm17 vpaddd zmm0, zmm0, zmm5 vpaddd zmm1, zmm1, zmm6 vpaddd zmm2, zmm2, zmm7 vpaddd zmm3, zmm3, zmm4 vpxord zmm15, zmm15, zmm0 vpxord zmm12, zmm12, zmm1 vpxord zmm13, zmm13, zmm2 vpxord zmm14, zmm14, zmm3 vprord zmm15, zmm15, 16 vprord zmm12, zmm12, 16 vprord zmm13, zmm13, 16 vprord zmm14, zmm14, 16 vpaddd zmm10, zmm10, zmm15 vpaddd zmm11, zmm11, zmm12 vpaddd zmm8, zmm8, zmm13 vpaddd zmm9, zmm9, zmm14 vpxord zmm5, zmm5, zmm10 vpxord zmm6, zmm6, zmm11 vpxord zmm7, zmm7, zmm8 vpxord zmm4, zmm4, zmm9 vprord zmm5, zmm5, 12 vprord zmm6, zmm6, 12 vprord zmm7, zmm7, 12 vprord zmm4, zmm4, 12 vpaddd zmm0, zmm0, zmm16 vpaddd zmm1, zmm1, zmm18 vpaddd zmm2, zmm2, zmm24 vpaddd zmm3, zmm3, zmm22 vpaddd zmm0, zmm0, zmm5 vpaddd zmm1, zmm1, zmm6 vpaddd zmm2, zmm2, zmm7 vpaddd zmm3, zmm3, zmm4 vpxord zmm15, zmm15, zmm0 vpxord zmm12, zmm12, zmm1 vpxord zmm13, zmm13, zmm2 vpxord zmm14, zmm14, zmm3 vprord zmm15, zmm15, 8 vprord zmm12, zmm12, 8 vprord zmm13, zmm13, 8 vprord zmm14, zmm14, 8 vpaddd zmm10, zmm10, zmm15 vpaddd zmm11, zmm11, zmm12 vpaddd zmm8, zmm8, zmm13 vpaddd zmm9, zmm9, zmm14 vpxord zmm5, zmm5, zmm10 vpxord zmm6, zmm6, zmm11 vpxord zmm7, zmm7, zmm8 vpxord zmm4, zmm4, zmm9 vprord zmm5, zmm5, 7 vprord zmm6, zmm6, 7 vprord zmm7, zmm7, 7 vprord zmm4, zmm4, 7 vpaddd zmm0, zmm0, zmm28 vpaddd zmm1, zmm1, zmm25 vpaddd zmm2, zmm2, zmm31 vpaddd zmm3, zmm3, zmm30 vpaddd zmm0, zmm0, zmm4 vpaddd zmm1, zmm1, zmm5 vpaddd zmm2, zmm2, zmm6 vpaddd zmm3, zmm3, zmm7 vpxord zmm12, zmm12, zmm0 vpxord zmm13, zmm13, zmm1 vpxord zmm14, zmm14, zmm2 vpxord zmm15, zmm15, zmm3 vprord zmm12, zmm12, 16 vprord zmm13, zmm13, 16 vprord zmm14, zmm14, 16 vprord zmm15, zmm15, 16 vpaddd zmm8, zmm8, zmm12 vpaddd zmm9, zmm9, zmm13 vpaddd zmm10, zmm10, zmm14 vpaddd zmm11, zmm11, zmm15 vpxord zmm4, zmm4, zmm8 vpxord zmm5, zmm5, zmm9 vpxord zmm6, zmm6, zmm10 vpxord zmm7, zmm7, zmm11 vprord zmm4, zmm4, 12 vprord zmm5, zmm5, 12 vprord zmm6, zmm6, 12 vprord zmm7, zmm7, 12 vpaddd zmm0, zmm0, zmm29 vpaddd zmm1, zmm1, zmm27 vpaddd zmm2, zmm2, zmm26 vpaddd zmm3, zmm3, zmm24 vpaddd zmm0, zmm0, zmm4 vpaddd zmm1, zmm1, zmm5 vpaddd zmm2, zmm2, zmm6 vpaddd zmm3, zmm3, zmm7 vpxord zmm12, zmm12, zmm0 vpxord zmm13, zmm13, zmm1 vpxord zmm14, zmm14, zmm2 vpxord zmm15, zmm15, zmm3 vprord zmm12, zmm12, 8 vprord zmm13, zmm13, 8 vprord zmm14, zmm14, 8 vprord zmm15, zmm15, 8 vpaddd zmm8, zmm8, zmm12 vpaddd zmm9, zmm9, zmm13 vpaddd zmm10, zmm10, zmm14 vpaddd zmm11, zmm11, zmm15 vpxord zmm4, zmm4, zmm8 vpxord zmm5, zmm5, zmm9 vpxord zmm6, zmm6, zmm10 vpxord zmm7, zmm7, zmm11 vprord zmm4, zmm4, 7 vprord zmm5, zmm5, 7 vprord zmm6, zmm6, 7 vprord zmm7, zmm7, 7 vpaddd zmm0, zmm0, zmm23 vpaddd zmm1, zmm1, zmm21 vpaddd zmm2, zmm2, zmm16 vpaddd zmm3, zmm3, zmm22 vpaddd zmm0, zmm0, zmm5 vpaddd zmm1, zmm1, zmm6 vpaddd zmm2, zmm2, zmm7 vpaddd zmm3, zmm3, zmm4 vpxord zmm15, zmm15, zmm0 vpxord zmm12, zmm12, zmm1 vpxord zmm13, zmm13, zmm2 vpxord zmm14, zmm14, zmm3 vprord zmm15, zmm15, 16 vprord zmm12, zmm12, 16 vprord zmm13, zmm13, 16 vprord zmm14, zmm14, 16 vpaddd zmm10, zmm10, zmm15 vpaddd zmm11, zmm11, zmm12 vpaddd zmm8, zmm8, zmm13 vpaddd zmm9, zmm9, zmm14 vpxord zmm5, zmm5, zmm10 vpxord zmm6, zmm6, zmm11 vpxord zmm7, zmm7, zmm8 vpxord zmm4, zmm4, zmm9 vprord zmm5, zmm5, 12 vprord zmm6, zmm6, 12 vprord zmm7, zmm7, 12 vprord zmm4, zmm4, 12 vpaddd zmm0, zmm0, zmm18 vpaddd zmm1, zmm1, zmm19 vpaddd zmm2, zmm2, zmm17 vpaddd zmm3, zmm3, zmm20 vpaddd zmm0, zmm0, zmm5 vpaddd zmm1, zmm1, zmm6 vpaddd zmm2, zmm2, zmm7 vpaddd zmm3, zmm3, zmm4 vpxord zmm15, zmm15, zmm0 vpxord zmm12, zmm12, zmm1 vpxord zmm13, zmm13, zmm2 vpxord zmm14, zmm14, zmm3 vprord zmm15, zmm15, 8 vprord zmm12, zmm12, 8 vprord zmm13, zmm13, 8 vprord zmm14, zmm14, 8 vpaddd zmm10, zmm10, zmm15 vpaddd zmm11, zmm11, zmm12 vpaddd zmm8, zmm8, zmm13 vpaddd zmm9, zmm9, zmm14 vpxord zmm5, zmm5, zmm10 vpxord zmm6, zmm6, zmm11 vpxord zmm7, zmm7, zmm8 vpxord zmm4, zmm4, zmm9 vprord zmm5, zmm5, 7 vprord zmm6, zmm6, 7 vprord zmm7, zmm7, 7 vprord zmm4, zmm4, 7 vpaddd zmm0, zmm0, zmm25 vpaddd zmm1, zmm1, zmm27 vpaddd zmm2, zmm2, zmm24 vpaddd zmm3, zmm3, zmm31 vpaddd zmm0, zmm0, zmm4 vpaddd zmm1, zmm1, zmm5 vpaddd zmm2, zmm2, zmm6 vpaddd zmm3, zmm3, zmm7 vpxord zmm12, zmm12, zmm0 vpxord zmm13, zmm13, zmm1 vpxord zmm14, zmm14, zmm2 vpxord zmm15, zmm15, zmm3 vprord zmm12, zmm12, 16 vprord zmm13, zmm13, 16 vprord zmm14, zmm14, 16 vprord zmm15, zmm15, 16 vpaddd zmm8, zmm8, zmm12 vpaddd zmm9, zmm9, zmm13 vpaddd zmm10, zmm10, zmm14 vpaddd zmm11, zmm11, zmm15 vpxord zmm4, zmm4, zmm8 vpxord zmm5, zmm5, zmm9 vpxord zmm6, zmm6, zmm10 vpxord zmm7, zmm7, zmm11 vprord zmm4, zmm4, 12 vprord zmm5, zmm5, 12 vprord zmm6, zmm6, 12 vprord zmm7, zmm7, 12 vpaddd zmm0, zmm0, zmm30 vpaddd zmm1, zmm1, zmm21 vpaddd zmm2, zmm2, zmm28 vpaddd zmm3, zmm3, zmm17 vpaddd zmm0, zmm0, zmm4 vpaddd zmm1, zmm1, zmm5 vpaddd zmm2, zmm2, zmm6 vpaddd zmm3, zmm3, zmm7 vpxord zmm12, zmm12, zmm0 vpxord zmm13, zmm13, zmm1 vpxord zmm14, zmm14, zmm2 vpxord zmm15, zmm15, zmm3 vprord zmm12, zmm12, 8 vprord zmm13, zmm13, 8 vprord zmm14, zmm14, 8 vprord zmm15, zmm15, 8 vpaddd zmm8, zmm8, zmm12 vpaddd zmm9, zmm9, zmm13 vpaddd zmm10, zmm10, zmm14 vpaddd zmm11, zmm11, zmm15 vpxord zmm4, zmm4, zmm8 vpxord zmm5, zmm5, zmm9 vpxord zmm6, zmm6, zmm10 vpxord zmm7, zmm7, zmm11 vprord zmm4, zmm4, 7 vprord zmm5, zmm5, 7 vprord zmm6, zmm6, 7 vprord zmm7, zmm7, 7 vpaddd zmm0, zmm0, zmm29 vpaddd zmm1, zmm1, zmm16 vpaddd zmm2, zmm2, zmm18 vpaddd zmm3, zmm3, zmm20 vpaddd zmm0, zmm0, zmm5 vpaddd zmm1, zmm1, zmm6 vpaddd zmm2, zmm2, zmm7 vpaddd zmm3, zmm3, zmm4 vpxord zmm15, zmm15, zmm0 vpxord zmm12, zmm12, zmm1 vpxord zmm13, zmm13, zmm2 vpxord zmm14, zmm14, zmm3 vprord zmm15, zmm15, 16 vprord zmm12, zmm12, 16 vprord zmm13, zmm13, 16 vprord zmm14, zmm14, 16 vpaddd zmm10, zmm10, zmm15 vpaddd zmm11, zmm11, zmm12 vpaddd zmm8, zmm8, zmm13 vpaddd zmm9, zmm9, zmm14 vpxord zmm5, zmm5, zmm10 vpxord zmm6, zmm6, zmm11 vpxord zmm7, zmm7, zmm8 vpxord zmm4, zmm4, zmm9 vprord zmm5, zmm5, 12 vprord zmm6, zmm6, 12 vprord zmm7, zmm7, 12 vprord zmm4, zmm4, 12 vpaddd zmm0, zmm0, zmm19 vpaddd zmm1, zmm1, zmm26 vpaddd zmm2, zmm2, zmm22 vpaddd zmm3, zmm3, zmm23 vpaddd zmm0, zmm0, zmm5 vpaddd zmm1, zmm1, zmm6 vpaddd zmm2, zmm2, zmm7 vpaddd zmm3, zmm3, zmm4 vpxord zmm15, zmm15, zmm0 vpxord zmm12, zmm12, zmm1 vpxord zmm13, zmm13, zmm2 vpxord zmm14, zmm14, zmm3 vprord zmm15, zmm15, 8 vprord zmm12, zmm12, 8 vprord zmm13, zmm13, 8 vprord zmm14, zmm14, 8 vpaddd zmm10, zmm10, zmm15 vpaddd zmm11, zmm11, zmm12 vpaddd zmm8, zmm8, zmm13 vpaddd zmm9, zmm9, zmm14 vpxord zmm5, zmm5, zmm10 vpxord zmm6, zmm6, zmm11 vpxord zmm7, zmm7, zmm8 vpxord zmm4, zmm4, zmm9 vprord zmm5, zmm5, 7 vprord zmm6, zmm6, 7 vprord zmm7, zmm7, 7 vprord zmm4, zmm4, 7 vpaddd zmm0, zmm0, zmm27 vpaddd zmm1, zmm1, zmm21 vpaddd zmm2, zmm2, zmm17 vpaddd zmm3, zmm3, zmm24 vpaddd zmm0, zmm0, zmm4 vpaddd zmm1, zmm1, zmm5 vpaddd zmm2, zmm2, zmm6 vpaddd zmm3, zmm3, zmm7 vpxord zmm12, zmm12, zmm0 vpxord zmm13, zmm13, zmm1 vpxord zmm14, zmm14, zmm2 vpxord zmm15, zmm15, zmm3 vprord zmm12, zmm12, 16 vprord zmm13, zmm13, 16 vprord zmm14, zmm14, 16 vprord zmm15, zmm15, 16 vpaddd zmm8, zmm8, zmm12 vpaddd zmm9, zmm9, zmm13 vpaddd zmm10, zmm10, zmm14 vpaddd zmm11, zmm11, zmm15 vpxord zmm4, zmm4, zmm8 vpxord zmm5, zmm5, zmm9 vpxord zmm6, zmm6, zmm10 vpxord zmm7, zmm7, zmm11 vprord zmm4, zmm4, 12 vprord zmm5, zmm5, 12 vprord zmm6, zmm6, 12 vprord zmm7, zmm7, 12 vpaddd zmm0, zmm0, zmm31 vpaddd zmm1, zmm1, zmm16 vpaddd zmm2, zmm2, zmm25 vpaddd zmm3, zmm3, zmm22 vpaddd zmm0, zmm0, zmm4 vpaddd zmm1, zmm1, zmm5 vpaddd zmm2, zmm2, zmm6 vpaddd zmm3, zmm3, zmm7 vpxord zmm12, zmm12, zmm0 vpxord zmm13, zmm13, zmm1 vpxord zmm14, zmm14, zmm2 vpxord zmm15, zmm15, zmm3 vprord zmm12, zmm12, 8 vprord zmm13, zmm13, 8 vprord zmm14, zmm14, 8 vprord zmm15, zmm15, 8 vpaddd zmm8, zmm8, zmm12 vpaddd zmm9, zmm9, zmm13 vpaddd zmm10, zmm10, zmm14 vpaddd zmm11, zmm11, zmm15 vpxord zmm4, zmm4, zmm8 vpxord zmm5, zmm5, zmm9 vpxord zmm6, zmm6, zmm10 vpxord zmm7, zmm7, zmm11 vprord zmm4, zmm4, 7 vprord zmm5, zmm5, 7 vprord zmm6, zmm6, 7 vprord zmm7, zmm7, 7 vpaddd zmm0, zmm0, zmm30 vpaddd zmm1, zmm1, zmm18 vpaddd zmm2, zmm2, zmm19 vpaddd zmm3, zmm3, zmm23 vpaddd zmm0, zmm0, zmm5 vpaddd zmm1, zmm1, zmm6 vpaddd zmm2, zmm2, zmm7 vpaddd zmm3, zmm3, zmm4 vpxord zmm15, zmm15, zmm0 vpxord zmm12, zmm12, zmm1 vpxord zmm13, zmm13, zmm2 vpxord zmm14, zmm14, zmm3 vprord zmm15, zmm15, 16 vprord zmm12, zmm12, 16 vprord zmm13, zmm13, 16 vprord zmm14, zmm14, 16 vpaddd zmm10, zmm10, zmm15 vpaddd zmm11, zmm11, zmm12 vpaddd zmm8, zmm8, zmm13 vpaddd zmm9, zmm9, zmm14 vpxord zmm5, zmm5, zmm10 vpxord zmm6, zmm6, zmm11 vpxord zmm7, zmm7, zmm8 vpxord zmm4, zmm4, zmm9 vprord zmm5, zmm5, 12 vprord zmm6, zmm6, 12 vprord zmm7, zmm7, 12 vprord zmm4, zmm4, 12 vpaddd zmm0, zmm0, zmm26 vpaddd zmm1, zmm1, zmm28 vpaddd zmm2, zmm2, zmm20 vpaddd zmm3, zmm3, zmm29 vpaddd zmm0, zmm0, zmm5 vpaddd zmm1, zmm1, zmm6 vpaddd zmm2, zmm2, zmm7 vpaddd zmm3, zmm3, zmm4 vpxord zmm15, zmm15, zmm0 vpxord zmm12, zmm12, zmm1 vpxord zmm13, zmm13, zmm2 vpxord zmm14, zmm14, zmm3 vprord zmm15, zmm15, 8 vprord zmm12, zmm12, 8 vprord zmm13, zmm13, 8 vprord zmm14, zmm14, 8 vpaddd zmm10, zmm10, zmm15 vpaddd zmm11, zmm11, zmm12 vpaddd zmm8, zmm8, zmm13 vpaddd zmm9, zmm9, zmm14 vpxord zmm5, zmm5, zmm10 vpxord zmm6, zmm6, zmm11 vpxord zmm7, zmm7, zmm8 vpxord zmm4, zmm4, zmm9 vprord zmm5, zmm5, 7 vprord zmm6, zmm6, 7 vprord zmm7, zmm7, 7 vprord zmm4, zmm4, 7 vpxord zmm0, zmm0, zmm8 vpxord zmm1, zmm1, zmm9 vpxord zmm2, zmm2, zmm10 vpxord zmm3, zmm3, zmm11 vpxord zmm4, zmm4, zmm12 vpxord zmm5, zmm5, zmm13 vpxord zmm6, zmm6, zmm14 vpxord zmm7, zmm7, zmm15 movzx eax, byte ptr [rbp+0x38] jne 9b mov rbx, qword ptr [rbp+0x50] vpunpckldq zmm16, zmm0, zmm1 vpunpckhdq zmm17, zmm0, zmm1 vpunpckldq zmm18, zmm2, zmm3 vpunpckhdq zmm19, zmm2, zmm3 vpunpckldq zmm20, zmm4, zmm5 vpunpckhdq zmm21, zmm4, zmm5 vpunpckldq zmm22, zmm6, zmm7 vpunpckhdq zmm23, zmm6, zmm7 vpunpcklqdq zmm0, zmm16, zmm18 vpunpckhqdq zmm1, zmm16, zmm18 vpunpcklqdq zmm2, zmm17, zmm19 vpunpckhqdq zmm3, zmm17, zmm19 vpunpcklqdq zmm4, zmm20, zmm22 vpunpckhqdq zmm5, zmm20, zmm22 vpunpcklqdq zmm6, zmm21, zmm23 vpunpckhqdq zmm7, zmm21, zmm23 vshufi32x4 zmm16, zmm0, zmm4, 0x88 vshufi32x4 zmm17, zmm1, zmm5, 0x88 vshufi32x4 zmm18, zmm2, zmm6, 0x88 vshufi32x4 zmm19, zmm3, zmm7, 0x88 vshufi32x4 zmm20, zmm0, zmm4, 0xDD vshufi32x4 zmm21, zmm1, zmm5, 0xDD vshufi32x4 zmm22, zmm2, zmm6, 0xDD vshufi32x4 zmm23, zmm3, zmm7, 0xDD vshufi32x4 zmm0, zmm16, zmm17, 0x88 vshufi32x4 zmm1, zmm18, zmm19, 0x88 vshufi32x4 zmm2, zmm20, zmm21, 0x88 vshufi32x4 zmm3, zmm22, zmm23, 0x88 vshufi32x4 zmm4, zmm16, zmm17, 0xDD vshufi32x4 zmm5, zmm18, zmm19, 0xDD vshufi32x4 zmm6, zmm20, zmm21, 0xDD vshufi32x4 zmm7, zmm22, zmm23, 0xDD vmovdqu32 zmmword ptr [rbx], zmm0 vmovdqu32 zmmword ptr [rbx+0x1*0x40], zmm1 vmovdqu32 zmmword ptr [rbx+0x2*0x40], zmm2 vmovdqu32 zmmword ptr [rbx+0x3*0x40], zmm3 vmovdqu32 zmmword ptr [rbx+0x4*0x40], zmm4 vmovdqu32 zmmword ptr [rbx+0x5*0x40], zmm5 vmovdqu32 zmmword ptr [rbx+0x6*0x40], zmm6 vmovdqu32 zmmword ptr [rbx+0x7*0x40], zmm7 vmovdqa32 zmm0, zmmword ptr [rsp] vmovdqa32 zmm1, zmmword ptr [rsp+0x1*0x40] vmovdqa32 zmm2, zmm0 vpaddd zmm2{k1}, zmm0, dword ptr [ADD16+rip] {1to16} vpcmpltud k2, zmm2, zmm0 vpaddd zmm1 {k2}, zmm1, dword ptr [ADD1+rip] {1to16} vmovdqa32 zmmword ptr [rsp], zmm2 vmovdqa32 zmmword ptr [rsp+0x1*0x40], zmm1 add rdi, 128 add rbx, 512 mov qword ptr [rbp+0x50], rbx sub rsi, 16 cmp rsi, 16 jnc 2b test rsi, rsi jnz 3f 4: vzeroupper mov rsp, rbp pop rbp pop rbx pop r12 pop r13 pop r14 pop r15 ret .p2align 6 3: test esi, 0x8 je 3f vpbroadcastd ymm0, dword ptr [rcx] vpbroadcastd ymm1, dword ptr [rcx+0x4] vpbroadcastd ymm2, dword ptr [rcx+0x8] vpbroadcastd ymm3, dword ptr [rcx+0xC] vpbroadcastd ymm4, dword ptr [rcx+0x10] vpbroadcastd ymm5, dword ptr [rcx+0x14] vpbroadcastd ymm6, dword ptr [rcx+0x18] vpbroadcastd ymm7, dword ptr [rcx+0x1C] mov r8, qword ptr [rdi] mov r9, qword ptr [rdi+0x8] mov r10, qword ptr [rdi+0x10] mov r11, qword ptr [rdi+0x18] mov r12, qword ptr [rdi+0x20] mov r13, qword ptr [rdi+0x28] mov r14, qword ptr [rdi+0x30] mov r15, qword ptr [rdi+0x38] movzx eax, byte ptr [rbp+0x38] movzx ebx, byte ptr [rbp+0x40] or eax, ebx xor edx, edx 2: movzx ebx, byte ptr [rbp+0x48] or ebx, eax add rdx, 64 cmp rdx, qword ptr [rsp+0x80] cmove eax, ebx mov dword ptr [rsp+0x88], eax vmovups xmm8, xmmword ptr [r8+rdx-0x40] vinsertf128 ymm8, ymm8, xmmword ptr [r12+rdx-0x40], 0x01 vmovups xmm9, xmmword ptr [r9+rdx-0x40] vinsertf128 ymm9, ymm9, xmmword ptr [r13+rdx-0x40], 0x01 vunpcklpd ymm12, ymm8, ymm9 vunpckhpd ymm13, ymm8, ymm9 vmovups xmm10, xmmword ptr [r10+rdx-0x40] vinsertf128 ymm10, ymm10, xmmword ptr [r14+rdx-0x40], 0x01 vmovups xmm11, xmmword ptr [r11+rdx-0x40] vinsertf128 ymm11, ymm11, xmmword ptr [r15+rdx-0x40], 0x01 vunpcklpd ymm14, ymm10, ymm11 vunpckhpd ymm15, ymm10, ymm11 vshufps ymm16, ymm12, ymm14, 136 vshufps ymm17, ymm12, ymm14, 221 vshufps ymm18, ymm13, ymm15, 136 vshufps ymm19, ymm13, ymm15, 221 vmovups xmm8, xmmword ptr [r8+rdx-0x30] vinsertf128 ymm8, ymm8, xmmword ptr [r12+rdx-0x30], 0x01 vmovups xmm9, xmmword ptr [r9+rdx-0x30] vinsertf128 ymm9, ymm9, xmmword ptr [r13+rdx-0x30], 0x01 vunpcklpd ymm12, ymm8, ymm9 vunpckhpd ymm13, ymm8, ymm9 vmovups xmm10, xmmword ptr [r10+rdx-0x30] vinsertf128 ymm10, ymm10, xmmword ptr [r14+rdx-0x30], 0x01 vmovups xmm11, xmmword ptr [r11+rdx-0x30] vinsertf128 ymm11, ymm11, xmmword ptr [r15+rdx-0x30], 0x01 vunpcklpd ymm14, ymm10, ymm11 vunpckhpd ymm15, ymm10, ymm11 vshufps ymm20, ymm12, ymm14, 136 vshufps ymm21, ymm12, ymm14, 221 vshufps ymm22, ymm13, ymm15, 136 vshufps ymm23, ymm13, ymm15, 221 vmovups xmm8, xmmword ptr [r8+rdx-0x20] vinsertf128 ymm8, ymm8, xmmword ptr [r12+rdx-0x20], 0x01 vmovups xmm9, xmmword ptr [r9+rdx-0x20] vinsertf128 ymm9, ymm9, xmmword ptr [r13+rdx-0x20], 0x01 vunpcklpd ymm12, ymm8, ymm9 vunpckhpd ymm13, ymm8, ymm9 vmovups xmm10, xmmword ptr [r10+rdx-0x20] vinsertf128 ymm10, ymm10, xmmword ptr [r14+rdx-0x20], 0x01 vmovups xmm11, xmmword ptr [r11+rdx-0x20] vinsertf128 ymm11, ymm11, xmmword ptr [r15+rdx-0x20], 0x01 vunpcklpd ymm14, ymm10, ymm11 vunpckhpd ymm15, ymm10, ymm11 vshufps ymm24, ymm12, ymm14, 136 vshufps ymm25, ymm12, ymm14, 221 vshufps ymm26, ymm13, ymm15, 136 vshufps ymm27, ymm13, ymm15, 221 vmovups xmm8, xmmword ptr [r8+rdx-0x10] vinsertf128 ymm8, ymm8, xmmword ptr [r12+rdx-0x10], 0x01 vmovups xmm9, xmmword ptr [r9+rdx-0x10] vinsertf128 ymm9, ymm9, xmmword ptr [r13+rdx-0x10], 0x01 vunpcklpd ymm12, ymm8, ymm9 vunpckhpd ymm13, ymm8, ymm9 vmovups xmm10, xmmword ptr [r10+rdx-0x10] vinsertf128 ymm10, ymm10, xmmword ptr [r14+rdx-0x10], 0x01 vmovups xmm11, xmmword ptr [r11+rdx-0x10] vinsertf128 ymm11, ymm11, xmmword ptr [r15+rdx-0x10], 0x01 vunpcklpd ymm14, ymm10, ymm11 vunpckhpd ymm15, ymm10, ymm11 vshufps ymm28, ymm12, ymm14, 136 vshufps ymm29, ymm12, ymm14, 221 vshufps ymm30, ymm13, ymm15, 136 vshufps ymm31, ymm13, ymm15, 221 vpbroadcastd ymm8, dword ptr [BLAKE3_IV_0+rip] vpbroadcastd ymm9, dword ptr [BLAKE3_IV_1+rip] vpbroadcastd ymm10, dword ptr [BLAKE3_IV_2+rip] vpbroadcastd ymm11, dword ptr [BLAKE3_IV_3+rip] vmovdqa ymm12, ymmword ptr [rsp] vmovdqa ymm13, ymmword ptr [rsp+0x40] vpbroadcastd ymm14, dword ptr [BLAKE3_BLOCK_LEN+rip] vpbroadcastd ymm15, dword ptr [rsp+0x88] vpaddd ymm0, ymm0, ymm16 vpaddd ymm1, ymm1, ymm18 vpaddd ymm2, ymm2, ymm20 vpaddd ymm3, ymm3, ymm22 vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxord ymm12, ymm12, ymm0 vpxord ymm13, ymm13, ymm1 vpxord ymm14, ymm14, ymm2 vpxord ymm15, ymm15, ymm3 vprord ymm12, ymm12, 16 vprord ymm13, ymm13, 16 vprord ymm14, ymm14, 16 vprord ymm15, ymm15, 16 vpaddd ymm8, ymm8, ymm12 vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxord ymm4, ymm4, ymm8 vpxord ymm5, ymm5, ymm9 vpxord ymm6, ymm6, ymm10 vpxord ymm7, ymm7, ymm11 vprord ymm4, ymm4, 12 vprord ymm5, ymm5, 12 vprord ymm6, ymm6, 12 vprord ymm7, ymm7, 12 vpaddd ymm0, ymm0, ymm17 vpaddd ymm1, ymm1, ymm19 vpaddd ymm2, ymm2, ymm21 vpaddd ymm3, ymm3, ymm23 vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxord ymm12, ymm12, ymm0 vpxord ymm13, ymm13, ymm1 vpxord ymm14, ymm14, ymm2 vpxord ymm15, ymm15, ymm3 vprord ymm12, ymm12, 8 vprord ymm13, ymm13, 8 vprord ymm14, ymm14, 8 vprord ymm15, ymm15, 8 vpaddd ymm8, ymm8, ymm12 vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxord ymm4, ymm4, ymm8 vpxord ymm5, ymm5, ymm9 vpxord ymm6, ymm6, ymm10 vpxord ymm7, ymm7, ymm11 vprord ymm4, ymm4, 7 vprord ymm5, ymm5, 7 vprord ymm6, ymm6, 7 vprord ymm7, ymm7, 7 vpaddd ymm0, ymm0, ymm24 vpaddd ymm1, ymm1, ymm26 vpaddd ymm2, ymm2, ymm28 vpaddd ymm3, ymm3, ymm30 vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxord ymm15, ymm15, ymm0 vpxord ymm12, ymm12, ymm1 vpxord ymm13, ymm13, ymm2 vpxord ymm14, ymm14, ymm3 vprord ymm15, ymm15, 16 vprord ymm12, ymm12, 16 vprord ymm13, ymm13, 16 vprord ymm14, ymm14, 16 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm8, ymm13 vpaddd ymm9, ymm9, ymm14 vpxord ymm5, ymm5, ymm10 vpxord ymm6, ymm6, ymm11 vpxord ymm7, ymm7, ymm8 vpxord ymm4, ymm4, ymm9 vprord ymm5, ymm5, 12 vprord ymm6, ymm6, 12 vprord ymm7, ymm7, 12 vprord ymm4, ymm4, 12 vpaddd ymm0, ymm0, ymm25 vpaddd ymm1, ymm1, ymm27 vpaddd ymm2, ymm2, ymm29 vpaddd ymm3, ymm3, ymm31 vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxord ymm15, ymm15, ymm0 vpxord ymm12, ymm12, ymm1 vpxord ymm13, ymm13, ymm2 vpxord ymm14, ymm14, ymm3 vprord ymm15, ymm15, 8 vprord ymm12, ymm12, 8 vprord ymm13, ymm13, 8 vprord ymm14, ymm14, 8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm8, ymm13 vpaddd ymm9, ymm9, ymm14 vpxord ymm5, ymm5, ymm10 vpxord ymm6, ymm6, ymm11 vpxord ymm7, ymm7, ymm8 vpxord ymm4, ymm4, ymm9 vprord ymm5, ymm5, 7 vprord ymm6, ymm6, 7 vprord ymm7, ymm7, 7 vprord ymm4, ymm4, 7 vpaddd ymm0, ymm0, ymm18 vpaddd ymm1, ymm1, ymm19 vpaddd ymm2, ymm2, ymm23 vpaddd ymm3, ymm3, ymm20 vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxord ymm12, ymm12, ymm0 vpxord ymm13, ymm13, ymm1 vpxord ymm14, ymm14, ymm2 vpxord ymm15, ymm15, ymm3 vprord ymm12, ymm12, 16 vprord ymm13, ymm13, 16 vprord ymm14, ymm14, 16 vprord ymm15, ymm15, 16 vpaddd ymm8, ymm8, ymm12 vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxord ymm4, ymm4, ymm8 vpxord ymm5, ymm5, ymm9 vpxord ymm6, ymm6, ymm10 vpxord ymm7, ymm7, ymm11 vprord ymm4, ymm4, 12 vprord ymm5, ymm5, 12 vprord ymm6, ymm6, 12 vprord ymm7, ymm7, 12 vpaddd ymm0, ymm0, ymm22 vpaddd ymm1, ymm1, ymm26 vpaddd ymm2, ymm2, ymm16 vpaddd ymm3, ymm3, ymm29 vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxord ymm12, ymm12, ymm0 vpxord ymm13, ymm13, ymm1 vpxord ymm14, ymm14, ymm2 vpxord ymm15, ymm15, ymm3 vprord ymm12, ymm12, 8 vprord ymm13, ymm13, 8 vprord ymm14, ymm14, 8 vprord ymm15, ymm15, 8 vpaddd ymm8, ymm8, ymm12 vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxord ymm4, ymm4, ymm8 vpxord ymm5, ymm5, ymm9 vpxord ymm6, ymm6, ymm10 vpxord ymm7, ymm7, ymm11 vprord ymm4, ymm4, 7 vprord ymm5, ymm5, 7 vprord ymm6, ymm6, 7 vprord ymm7, ymm7, 7 vpaddd ymm0, ymm0, ymm17 vpaddd ymm1, ymm1, ymm28 vpaddd ymm2, ymm2, ymm25 vpaddd ymm3, ymm3, ymm31 vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxord ymm15, ymm15, ymm0 vpxord ymm12, ymm12, ymm1 vpxord ymm13, ymm13, ymm2 vpxord ymm14, ymm14, ymm3 vprord ymm15, ymm15, 16 vprord ymm12, ymm12, 16 vprord ymm13, ymm13, 16 vprord ymm14, ymm14, 16 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm8, ymm13 vpaddd ymm9, ymm9, ymm14 vpxord ymm5, ymm5, ymm10 vpxord ymm6, ymm6, ymm11 vpxord ymm7, ymm7, ymm8 vpxord ymm4, ymm4, ymm9 vprord ymm5, ymm5, 12 vprord ymm6, ymm6, 12 vprord ymm7, ymm7, 12 vprord ymm4, ymm4, 12 vpaddd ymm0, ymm0, ymm27 vpaddd ymm1, ymm1, ymm21 vpaddd ymm2, ymm2, ymm30 vpaddd ymm3, ymm3, ymm24 vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxord ymm15, ymm15, ymm0 vpxord ymm12, ymm12, ymm1 vpxord ymm13, ymm13, ymm2 vpxord ymm14, ymm14, ymm3 vprord ymm15, ymm15, 8 vprord ymm12, ymm12, 8 vprord ymm13, ymm13, 8 vprord ymm14, ymm14, 8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm8, ymm13 vpaddd ymm9, ymm9, ymm14 vpxord ymm5, ymm5, ymm10 vpxord ymm6, ymm6, ymm11 vpxord ymm7, ymm7, ymm8 vpxord ymm4, ymm4, ymm9 vprord ymm5, ymm5, 7 vprord ymm6, ymm6, 7 vprord ymm7, ymm7, 7 vprord ymm4, ymm4, 7 vpaddd ymm0, ymm0, ymm19 vpaddd ymm1, ymm1, ymm26 vpaddd ymm2, ymm2, ymm29 vpaddd ymm3, ymm3, ymm23 vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxord ymm12, ymm12, ymm0 vpxord ymm13, ymm13, ymm1 vpxord ymm14, ymm14, ymm2 vpxord ymm15, ymm15, ymm3 vprord ymm12, ymm12, 16 vprord ymm13, ymm13, 16 vprord ymm14, ymm14, 16 vprord ymm15, ymm15, 16 vpaddd ymm8, ymm8, ymm12 vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxord ymm4, ymm4, ymm8 vpxord ymm5, ymm5, ymm9 vpxord ymm6, ymm6, ymm10 vpxord ymm7, ymm7, ymm11 vprord ymm4, ymm4, 12 vprord ymm5, ymm5, 12 vprord ymm6, ymm6, 12 vprord ymm7, ymm7, 12 vpaddd ymm0, ymm0, ymm20 vpaddd ymm1, ymm1, ymm28 vpaddd ymm2, ymm2, ymm18 vpaddd ymm3, ymm3, ymm30 vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxord ymm12, ymm12, ymm0 vpxord ymm13, ymm13, ymm1 vpxord ymm14, ymm14, ymm2 vpxord ymm15, ymm15, ymm3 vprord ymm12, ymm12, 8 vprord ymm13, ymm13, 8 vprord ymm14, ymm14, 8 vprord ymm15, ymm15, 8 vpaddd ymm8, ymm8, ymm12 vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxord ymm4, ymm4, ymm8 vpxord ymm5, ymm5, ymm9 vpxord ymm6, ymm6, ymm10 vpxord ymm7, ymm7, ymm11 vprord ymm4, ymm4, 7 vprord ymm5, ymm5, 7 vprord ymm6, ymm6, 7 vprord ymm7, ymm7, 7 vpaddd ymm0, ymm0, ymm22 vpaddd ymm1, ymm1, ymm25 vpaddd ymm2, ymm2, ymm27 vpaddd ymm3, ymm3, ymm24 vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxord ymm15, ymm15, ymm0 vpxord ymm12, ymm12, ymm1 vpxord ymm13, ymm13, ymm2 vpxord ymm14, ymm14, ymm3 vprord ymm15, ymm15, 16 vprord ymm12, ymm12, 16 vprord ymm13, ymm13, 16 vprord ymm14, ymm14, 16 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm8, ymm13 vpaddd ymm9, ymm9, ymm14 vpxord ymm5, ymm5, ymm10 vpxord ymm6, ymm6, ymm11 vpxord ymm7, ymm7, ymm8 vpxord ymm4, ymm4, ymm9 vprord ymm5, ymm5, 12 vprord ymm6, ymm6, 12 vprord ymm7, ymm7, 12 vprord ymm4, ymm4, 12 vpaddd ymm0, ymm0, ymm21 vpaddd ymm1, ymm1, ymm16 vpaddd ymm2, ymm2, ymm31 vpaddd ymm3, ymm3, ymm17 vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxord ymm15, ymm15, ymm0 vpxord ymm12, ymm12, ymm1 vpxord ymm13, ymm13, ymm2 vpxord ymm14, ymm14, ymm3 vprord ymm15, ymm15, 8 vprord ymm12, ymm12, 8 vprord ymm13, ymm13, 8 vprord ymm14, ymm14, 8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm8, ymm13 vpaddd ymm9, ymm9, ymm14 vpxord ymm5, ymm5, ymm10 vpxord ymm6, ymm6, ymm11 vpxord ymm7, ymm7, ymm8 vpxord ymm4, ymm4, ymm9 vprord ymm5, ymm5, 7 vprord ymm6, ymm6, 7 vprord ymm7, ymm7, 7 vprord ymm4, ymm4, 7 vpaddd ymm0, ymm0, ymm26 vpaddd ymm1, ymm1, ymm28 vpaddd ymm2, ymm2, ymm30 vpaddd ymm3, ymm3, ymm29 vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxord ymm12, ymm12, ymm0 vpxord ymm13, ymm13, ymm1 vpxord ymm14, ymm14, ymm2 vpxord ymm15, ymm15, ymm3 vprord ymm12, ymm12, 16 vprord ymm13, ymm13, 16 vprord ymm14, ymm14, 16 vprord ymm15, ymm15, 16 vpaddd ymm8, ymm8, ymm12 vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxord ymm4, ymm4, ymm8 vpxord ymm5, ymm5, ymm9 vpxord ymm6, ymm6, ymm10 vpxord ymm7, ymm7, ymm11 vprord ymm4, ymm4, 12 vprord ymm5, ymm5, 12 vprord ymm6, ymm6, 12 vprord ymm7, ymm7, 12 vpaddd ymm0, ymm0, ymm23 vpaddd ymm1, ymm1, ymm25 vpaddd ymm2, ymm2, ymm19 vpaddd ymm3, ymm3, ymm31 vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxord ymm12, ymm12, ymm0 vpxord ymm13, ymm13, ymm1 vpxord ymm14, ymm14, ymm2 vpxord ymm15, ymm15, ymm3 vprord ymm12, ymm12, 8 vprord ymm13, ymm13, 8 vprord ymm14, ymm14, 8 vprord ymm15, ymm15, 8 vpaddd ymm8, ymm8, ymm12 vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxord ymm4, ymm4, ymm8 vpxord ymm5, ymm5, ymm9 vpxord ymm6, ymm6, ymm10 vpxord ymm7, ymm7, ymm11 vprord ymm4, ymm4, 7 vprord ymm5, ymm5, 7 vprord ymm6, ymm6, 7 vprord ymm7, ymm7, 7 vpaddd ymm0, ymm0, ymm20 vpaddd ymm1, ymm1, ymm27 vpaddd ymm2, ymm2, ymm21 vpaddd ymm3, ymm3, ymm17 vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxord ymm15, ymm15, ymm0 vpxord ymm12, ymm12, ymm1 vpxord ymm13, ymm13, ymm2 vpxord ymm14, ymm14, ymm3 vprord ymm15, ymm15, 16 vprord ymm12, ymm12, 16 vprord ymm13, ymm13, 16 vprord ymm14, ymm14, 16 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm8, ymm13 vpaddd ymm9, ymm9, ymm14 vpxord ymm5, ymm5, ymm10 vpxord ymm6, ymm6, ymm11 vpxord ymm7, ymm7, ymm8 vpxord ymm4, ymm4, ymm9 vprord ymm5, ymm5, 12 vprord ymm6, ymm6, 12 vprord ymm7, ymm7, 12 vprord ymm4, ymm4, 12 vpaddd ymm0, ymm0, ymm16 vpaddd ymm1, ymm1, ymm18 vpaddd ymm2, ymm2, ymm24 vpaddd ymm3, ymm3, ymm22 vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxord ymm15, ymm15, ymm0 vpxord ymm12, ymm12, ymm1 vpxord ymm13, ymm13, ymm2 vpxord ymm14, ymm14, ymm3 vprord ymm15, ymm15, 8 vprord ymm12, ymm12, 8 vprord ymm13, ymm13, 8 vprord ymm14, ymm14, 8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm8, ymm13 vpaddd ymm9, ymm9, ymm14 vpxord ymm5, ymm5, ymm10 vpxord ymm6, ymm6, ymm11 vpxord ymm7, ymm7, ymm8 vpxord ymm4, ymm4, ymm9 vprord ymm5, ymm5, 7 vprord ymm6, ymm6, 7 vprord ymm7, ymm7, 7 vprord ymm4, ymm4, 7 vpaddd ymm0, ymm0, ymm28 vpaddd ymm1, ymm1, ymm25 vpaddd ymm2, ymm2, ymm31 vpaddd ymm3, ymm3, ymm30 vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxord ymm12, ymm12, ymm0 vpxord ymm13, ymm13, ymm1 vpxord ymm14, ymm14, ymm2 vpxord ymm15, ymm15, ymm3 vprord ymm12, ymm12, 16 vprord ymm13, ymm13, 16 vprord ymm14, ymm14, 16 vprord ymm15, ymm15, 16 vpaddd ymm8, ymm8, ymm12 vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxord ymm4, ymm4, ymm8 vpxord ymm5, ymm5, ymm9 vpxord ymm6, ymm6, ymm10 vpxord ymm7, ymm7, ymm11 vprord ymm4, ymm4, 12 vprord ymm5, ymm5, 12 vprord ymm6, ymm6, 12 vprord ymm7, ymm7, 12 vpaddd ymm0, ymm0, ymm29 vpaddd ymm1, ymm1, ymm27 vpaddd ymm2, ymm2, ymm26 vpaddd ymm3, ymm3, ymm24 vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxord ymm12, ymm12, ymm0 vpxord ymm13, ymm13, ymm1 vpxord ymm14, ymm14, ymm2 vpxord ymm15, ymm15, ymm3 vprord ymm12, ymm12, 8 vprord ymm13, ymm13, 8 vprord ymm14, ymm14, 8 vprord ymm15, ymm15, 8 vpaddd ymm8, ymm8, ymm12 vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxord ymm4, ymm4, ymm8 vpxord ymm5, ymm5, ymm9 vpxord ymm6, ymm6, ymm10 vpxord ymm7, ymm7, ymm11 vprord ymm4, ymm4, 7 vprord ymm5, ymm5, 7 vprord ymm6, ymm6, 7 vprord ymm7, ymm7, 7 vpaddd ymm0, ymm0, ymm23 vpaddd ymm1, ymm1, ymm21 vpaddd ymm2, ymm2, ymm16 vpaddd ymm3, ymm3, ymm22 vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxord ymm15, ymm15, ymm0 vpxord ymm12, ymm12, ymm1 vpxord ymm13, ymm13, ymm2 vpxord ymm14, ymm14, ymm3 vprord ymm15, ymm15, 16 vprord ymm12, ymm12, 16 vprord ymm13, ymm13, 16 vprord ymm14, ymm14, 16 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm8, ymm13 vpaddd ymm9, ymm9, ymm14 vpxord ymm5, ymm5, ymm10 vpxord ymm6, ymm6, ymm11 vpxord ymm7, ymm7, ymm8 vpxord ymm4, ymm4, ymm9 vprord ymm5, ymm5, 12 vprord ymm6, ymm6, 12 vprord ymm7, ymm7, 12 vprord ymm4, ymm4, 12 vpaddd ymm0, ymm0, ymm18 vpaddd ymm1, ymm1, ymm19 vpaddd ymm2, ymm2, ymm17 vpaddd ymm3, ymm3, ymm20 vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxord ymm15, ymm15, ymm0 vpxord ymm12, ymm12, ymm1 vpxord ymm13, ymm13, ymm2 vpxord ymm14, ymm14, ymm3 vprord ymm15, ymm15, 8 vprord ymm12, ymm12, 8 vprord ymm13, ymm13, 8 vprord ymm14, ymm14, 8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm8, ymm13 vpaddd ymm9, ymm9, ymm14 vpxord ymm5, ymm5, ymm10 vpxord ymm6, ymm6, ymm11 vpxord ymm7, ymm7, ymm8 vpxord ymm4, ymm4, ymm9 vprord ymm5, ymm5, 7 vprord ymm6, ymm6, 7 vprord ymm7, ymm7, 7 vprord ymm4, ymm4, 7 vpaddd ymm0, ymm0, ymm25 vpaddd ymm1, ymm1, ymm27 vpaddd ymm2, ymm2, ymm24 vpaddd ymm3, ymm3, ymm31 vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxord ymm12, ymm12, ymm0 vpxord ymm13, ymm13, ymm1 vpxord ymm14, ymm14, ymm2 vpxord ymm15, ymm15, ymm3 vprord ymm12, ymm12, 16 vprord ymm13, ymm13, 16 vprord ymm14, ymm14, 16 vprord ymm15, ymm15, 16 vpaddd ymm8, ymm8, ymm12 vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxord ymm4, ymm4, ymm8 vpxord ymm5, ymm5, ymm9 vpxord ymm6, ymm6, ymm10 vpxord ymm7, ymm7, ymm11 vprord ymm4, ymm4, 12 vprord ymm5, ymm5, 12 vprord ymm6, ymm6, 12 vprord ymm7, ymm7, 12 vpaddd ymm0, ymm0, ymm30 vpaddd ymm1, ymm1, ymm21 vpaddd ymm2, ymm2, ymm28 vpaddd ymm3, ymm3, ymm17 vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxord ymm12, ymm12, ymm0 vpxord ymm13, ymm13, ymm1 vpxord ymm14, ymm14, ymm2 vpxord ymm15, ymm15, ymm3 vprord ymm12, ymm12, 8 vprord ymm13, ymm13, 8 vprord ymm14, ymm14, 8 vprord ymm15, ymm15, 8 vpaddd ymm8, ymm8, ymm12 vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxord ymm4, ymm4, ymm8 vpxord ymm5, ymm5, ymm9 vpxord ymm6, ymm6, ymm10 vpxord ymm7, ymm7, ymm11 vprord ymm4, ymm4, 7 vprord ymm5, ymm5, 7 vprord ymm6, ymm6, 7 vprord ymm7, ymm7, 7 vpaddd ymm0, ymm0, ymm29 vpaddd ymm1, ymm1, ymm16 vpaddd ymm2, ymm2, ymm18 vpaddd ymm3, ymm3, ymm20 vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxord ymm15, ymm15, ymm0 vpxord ymm12, ymm12, ymm1 vpxord ymm13, ymm13, ymm2 vpxord ymm14, ymm14, ymm3 vprord ymm15, ymm15, 16 vprord ymm12, ymm12, 16 vprord ymm13, ymm13, 16 vprord ymm14, ymm14, 16 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm8, ymm13 vpaddd ymm9, ymm9, ymm14 vpxord ymm5, ymm5, ymm10 vpxord ymm6, ymm6, ymm11 vpxord ymm7, ymm7, ymm8 vpxord ymm4, ymm4, ymm9 vprord ymm5, ymm5, 12 vprord ymm6, ymm6, 12 vprord ymm7, ymm7, 12 vprord ymm4, ymm4, 12 vpaddd ymm0, ymm0, ymm19 vpaddd ymm1, ymm1, ymm26 vpaddd ymm2, ymm2, ymm22 vpaddd ymm3, ymm3, ymm23 vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxord ymm15, ymm15, ymm0 vpxord ymm12, ymm12, ymm1 vpxord ymm13, ymm13, ymm2 vpxord ymm14, ymm14, ymm3 vprord ymm15, ymm15, 8 vprord ymm12, ymm12, 8 vprord ymm13, ymm13, 8 vprord ymm14, ymm14, 8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm8, ymm13 vpaddd ymm9, ymm9, ymm14 vpxord ymm5, ymm5, ymm10 vpxord ymm6, ymm6, ymm11 vpxord ymm7, ymm7, ymm8 vpxord ymm4, ymm4, ymm9 vprord ymm5, ymm5, 7 vprord ymm6, ymm6, 7 vprord ymm7, ymm7, 7 vprord ymm4, ymm4, 7 vpaddd ymm0, ymm0, ymm27 vpaddd ymm1, ymm1, ymm21 vpaddd ymm2, ymm2, ymm17 vpaddd ymm3, ymm3, ymm24 vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxord ymm12, ymm12, ymm0 vpxord ymm13, ymm13, ymm1 vpxord ymm14, ymm14, ymm2 vpxord ymm15, ymm15, ymm3 vprord ymm12, ymm12, 16 vprord ymm13, ymm13, 16 vprord ymm14, ymm14, 16 vprord ymm15, ymm15, 16 vpaddd ymm8, ymm8, ymm12 vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxord ymm4, ymm4, ymm8 vpxord ymm5, ymm5, ymm9 vpxord ymm6, ymm6, ymm10 vpxord ymm7, ymm7, ymm11 vprord ymm4, ymm4, 12 vprord ymm5, ymm5, 12 vprord ymm6, ymm6, 12 vprord ymm7, ymm7, 12 vpaddd ymm0, ymm0, ymm31 vpaddd ymm1, ymm1, ymm16 vpaddd ymm2, ymm2, ymm25 vpaddd ymm3, ymm3, ymm22 vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxord ymm12, ymm12, ymm0 vpxord ymm13, ymm13, ymm1 vpxord ymm14, ymm14, ymm2 vpxord ymm15, ymm15, ymm3 vprord ymm12, ymm12, 8 vprord ymm13, ymm13, 8 vprord ymm14, ymm14, 8 vprord ymm15, ymm15, 8 vpaddd ymm8, ymm8, ymm12 vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxord ymm4, ymm4, ymm8 vpxord ymm5, ymm5, ymm9 vpxord ymm6, ymm6, ymm10 vpxord ymm7, ymm7, ymm11 vprord ymm4, ymm4, 7 vprord ymm5, ymm5, 7 vprord ymm6, ymm6, 7 vprord ymm7, ymm7, 7 vpaddd ymm0, ymm0, ymm30 vpaddd ymm1, ymm1, ymm18 vpaddd ymm2, ymm2, ymm19 vpaddd ymm3, ymm3, ymm23 vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxord ymm15, ymm15, ymm0 vpxord ymm12, ymm12, ymm1 vpxord ymm13, ymm13, ymm2 vpxord ymm14, ymm14, ymm3 vprord ymm15, ymm15, 16 vprord ymm12, ymm12, 16 vprord ymm13, ymm13, 16 vprord ymm14, ymm14, 16 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm8, ymm13 vpaddd ymm9, ymm9, ymm14 vpxord ymm5, ymm5, ymm10 vpxord ymm6, ymm6, ymm11 vpxord ymm7, ymm7, ymm8 vpxord ymm4, ymm4, ymm9 vprord ymm5, ymm5, 12 vprord ymm6, ymm6, 12 vprord ymm7, ymm7, 12 vprord ymm4, ymm4, 12 vpaddd ymm0, ymm0, ymm26 vpaddd ymm1, ymm1, ymm28 vpaddd ymm2, ymm2, ymm20 vpaddd ymm3, ymm3, ymm29 vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxord ymm15, ymm15, ymm0 vpxord ymm12, ymm12, ymm1 vpxord ymm13, ymm13, ymm2 vpxord ymm14, ymm14, ymm3 vprord ymm15, ymm15, 8 vprord ymm12, ymm12, 8 vprord ymm13, ymm13, 8 vprord ymm14, ymm14, 8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm8, ymm13 vpaddd ymm9, ymm9, ymm14 vpxord ymm5, ymm5, ymm10 vpxord ymm6, ymm6, ymm11 vpxord ymm7, ymm7, ymm8 vpxord ymm4, ymm4, ymm9 vprord ymm5, ymm5, 7 vprord ymm6, ymm6, 7 vprord ymm7, ymm7, 7 vprord ymm4, ymm4, 7 vpxor ymm0, ymm0, ymm8 vpxor ymm1, ymm1, ymm9 vpxor ymm2, ymm2, ymm10 vpxor ymm3, ymm3, ymm11 vpxor ymm4, ymm4, ymm12 vpxor ymm5, ymm5, ymm13 vpxor ymm6, ymm6, ymm14 vpxor ymm7, ymm7, ymm15 movzx eax, byte ptr [rbp+0x38] jne 2b mov rbx, qword ptr [rbp+0x50] vunpcklps ymm8, ymm0, ymm1 vunpcklps ymm9, ymm2, ymm3 vunpckhps ymm10, ymm0, ymm1 vunpcklps ymm11, ymm4, ymm5 vunpcklps ymm0, ymm6, ymm7 vshufps ymm12, ymm8, ymm9, 78 vblendps ymm1, ymm8, ymm12, 0xCC vshufps ymm8, ymm11, ymm0, 78 vunpckhps ymm13, ymm2, ymm3 vblendps ymm2, ymm11, ymm8, 0xCC vblendps ymm3, ymm12, ymm9, 0xCC vperm2f128 ymm12, ymm1, ymm2, 0x20 vmovups ymmword ptr [rbx], ymm12 vunpckhps ymm14, ymm4, ymm5 vblendps ymm4, ymm8, ymm0, 0xCC vunpckhps ymm15, ymm6, ymm7 vperm2f128 ymm7, ymm3, ymm4, 0x20 vmovups ymmword ptr [rbx+0x20], ymm7 vshufps ymm5, ymm10, ymm13, 78 vblendps ymm6, ymm5, ymm13, 0xCC vshufps ymm13, ymm14, ymm15, 78 vblendps ymm10, ymm10, ymm5, 0xCC vblendps ymm14, ymm14, ymm13, 0xCC vperm2f128 ymm8, ymm10, ymm14, 0x20 vmovups ymmword ptr [rbx+0x40], ymm8 vblendps ymm15, ymm13, ymm15, 0xCC vperm2f128 ymm13, ymm6, ymm15, 0x20 vmovups ymmword ptr [rbx+0x60], ymm13 vperm2f128 ymm9, ymm1, ymm2, 0x31 vperm2f128 ymm11, ymm3, ymm4, 0x31 vmovups ymmword ptr [rbx+0x80], ymm9 vperm2f128 ymm14, ymm10, ymm14, 0x31 vperm2f128 ymm15, ymm6, ymm15, 0x31 vmovups ymmword ptr [rbx+0xA0], ymm11 vmovups ymmword ptr [rbx+0xC0], ymm14 vmovups ymmword ptr [rbx+0xE0], ymm15 vmovdqa ymm0, ymmword ptr [rsp] vmovdqa ymm2, ymmword ptr [rsp+0x2*0x20] vmovdqa32 ymm0 {k1}, ymmword ptr [rsp+0x1*0x20] vmovdqa32 ymm2 {k1}, ymmword ptr [rsp+0x3*0x20] vmovdqa ymmword ptr [rsp], ymm0 vmovdqa ymmword ptr [rsp+0x2*0x20], ymm2 add rbx, 256 mov qword ptr [rbp+0x50], rbx add rdi, 64 sub rsi, 8 3: mov rbx, qword ptr [rbp+0x50] mov r15, qword ptr [rsp+0x80] movzx r13, byte ptr [rbp+0x38] movzx r12, byte ptr [rbp+0x48] test esi, 0x4 je 3f vbroadcasti32x4 zmm0, xmmword ptr [rcx] vbroadcasti32x4 zmm1, xmmword ptr [rcx+0x1*0x10] vmovdqa xmm12, xmmword ptr [rsp] vmovdqa xmm13, xmmword ptr [rsp+0x4*0x10] vpunpckldq xmm14, xmm12, xmm13 vpunpckhdq xmm15, xmm12, xmm13 vpermq ymm14, ymm14, 0xDC vpermq ymm15, ymm15, 0xDC vpbroadcastd zmm12, dword ptr [BLAKE3_BLOCK_LEN+rip] vinserti64x4 zmm13, zmm14, ymm15, 0x01 mov eax, 17476 kmovw k2, eax vpblendmd zmm13 {k2}, zmm13, zmm12 vbroadcasti32x4 zmm15, xmmword ptr [BLAKE3_IV+rip] mov r8, qword ptr [rdi] mov r9, qword ptr [rdi+0x8] mov r10, qword ptr [rdi+0x10] mov r11, qword ptr [rdi+0x18] mov eax, 43690 kmovw k3, eax mov eax, 34952 kmovw k4, eax movzx eax, byte ptr [rbp+0x40] or eax, r13d xor edx, edx .p2align 5 2: mov r14d, eax or eax, r12d add rdx, 64 cmp rdx, r15 cmovne eax, r14d mov dword ptr [rsp+0x88], eax vmovdqa32 zmm2, zmm15 vpbroadcastd zmm8, dword ptr [rsp+0x22*0x4] vpblendmd zmm3 {k4}, zmm13, zmm8 vmovups zmm8, zmmword ptr [r8+rdx-0x1*0x40] vinserti32x4 zmm8, zmm8, xmmword ptr [r9+rdx-0x4*0x10], 0x01 vinserti32x4 zmm8, zmm8, xmmword ptr [r10+rdx-0x4*0x10], 0x02 vinserti32x4 zmm8, zmm8, xmmword ptr [r11+rdx-0x4*0x10], 0x03 vmovups zmm9, zmmword ptr [r8+rdx-0x30] vinserti32x4 zmm9, zmm9, xmmword ptr [r9+rdx-0x3*0x10], 0x01 vinserti32x4 zmm9, zmm9, xmmword ptr [r10+rdx-0x3*0x10], 0x02 vinserti32x4 zmm9, zmm9, xmmword ptr [r11+rdx-0x3*0x10], 0x03 vshufps zmm4, zmm8, zmm9, 136 vshufps zmm5, zmm8, zmm9, 221 vmovups zmm8, zmmword ptr [r8+rdx-0x20] vinserti32x4 zmm8, zmm8, xmmword ptr [r9+rdx-0x2*0x10], 0x01 vinserti32x4 zmm8, zmm8, xmmword ptr [r10+rdx-0x2*0x10], 0x02 vinserti32x4 zmm8, zmm8, xmmword ptr [r11+rdx-0x2*0x10], 0x03 vmovups zmm9, zmmword ptr [r8+rdx-0x10] vinserti32x4 zmm9, zmm9, xmmword ptr [r9+rdx-0x1*0x10], 0x01 vinserti32x4 zmm9, zmm9, xmmword ptr [r10+rdx-0x1*0x10], 0x02 vinserti32x4 zmm9, zmm9, xmmword ptr [r11+rdx-0x1*0x10], 0x03 vshufps zmm6, zmm8, zmm9, 136 vshufps zmm7, zmm8, zmm9, 221 vpshufd zmm6, zmm6, 0x93 vpshufd zmm7, zmm7, 0x93 mov al, 7 9: vpaddd zmm0, zmm0, zmm4 vpaddd zmm0, zmm0, zmm1 vpxord zmm3, zmm3, zmm0 vprord zmm3, zmm3, 16 vpaddd zmm2, zmm2, zmm3 vpxord zmm1, zmm1, zmm2 vprord zmm1, zmm1, 12 vpaddd zmm0, zmm0, zmm5 vpaddd zmm0, zmm0, zmm1 vpxord zmm3, zmm3, zmm0 vprord zmm3, zmm3, 8 vpaddd zmm2, zmm2, zmm3 vpxord zmm1, zmm1, zmm2 vprord zmm1, zmm1, 7 vpshufd zmm0, zmm0, 0x93 vpshufd zmm3, zmm3, 0x4E vpshufd zmm2, zmm2, 0x39 vpaddd zmm0, zmm0, zmm6 vpaddd zmm0, zmm0, zmm1 vpxord zmm3, zmm3, zmm0 vprord zmm3, zmm3, 16 vpaddd zmm2, zmm2, zmm3 vpxord zmm1, zmm1, zmm2 vprord zmm1, zmm1, 12 vpaddd zmm0, zmm0, zmm7 vpaddd zmm0, zmm0, zmm1 vpxord zmm3, zmm3, zmm0 vprord zmm3, zmm3, 8 vpaddd zmm2, zmm2, zmm3 vpxord zmm1, zmm1, zmm2 vprord zmm1, zmm1, 7 vpshufd zmm0, zmm0, 0x39 vpshufd zmm3, zmm3, 0x4E vpshufd zmm2, zmm2, 0x93 dec al jz 9f vshufps zmm8, zmm4, zmm5, 214 vpshufd zmm9, zmm4, 0x0F vpshufd zmm4, zmm8, 0x39 vshufps zmm8, zmm6, zmm7, 250 vpblendmd zmm9 {k3}, zmm9, zmm8 vpunpcklqdq zmm8, zmm7, zmm5 vpblendmd zmm8 {k4}, zmm8, zmm6 vpshufd zmm8, zmm8, 0x78 vpunpckhdq zmm5, zmm5, zmm7 vpunpckldq zmm6, zmm6, zmm5 vpshufd zmm7, zmm6, 0x1E vmovdqa32 zmm5, zmm9 vmovdqa32 zmm6, zmm8 jmp 9b 9: vpxord zmm0, zmm0, zmm2 vpxord zmm1, zmm1, zmm3 mov eax, r13d cmp rdx, r15 jne 2b vmovdqu xmmword ptr [rbx], xmm0 vmovdqu xmmword ptr [rbx+0x10], xmm1 vextracti128 xmmword ptr [rbx+0x20], ymm0, 0x01 vextracti128 xmmword ptr [rbx+0x30], ymm1, 0x01 vextracti32x4 xmmword ptr [rbx+0x4*0x10], zmm0, 0x02 vextracti32x4 xmmword ptr [rbx+0x5*0x10], zmm1, 0x02 vextracti32x4 xmmword ptr [rbx+0x6*0x10], zmm0, 0x03 vextracti32x4 xmmword ptr [rbx+0x7*0x10], zmm1, 0x03 vmovdqa xmm0, xmmword ptr [rsp] vmovdqa xmm2, xmmword ptr [rsp+0x40] vmovdqa32 xmm0 {k1}, xmmword ptr [rsp+0x1*0x10] vmovdqa32 xmm2 {k1}, xmmword ptr [rsp+0x5*0x10] vmovdqa xmmword ptr [rsp], xmm0 vmovdqa xmmword ptr [rsp+0x40], xmm2 add rbx, 128 add rdi, 32 sub rsi, 4 3: test esi, 0x2 je 3f vbroadcasti128 ymm0, xmmword ptr [rcx] vbroadcasti128 ymm1, xmmword ptr [rcx+0x10] vmovd xmm13, dword ptr [rsp] vpinsrd xmm13, xmm13, dword ptr [rsp+0x40], 1 vpinsrd xmm13, xmm13, dword ptr [BLAKE3_BLOCK_LEN+rip], 2 vmovd xmm14, dword ptr [rsp+0x4] vpinsrd xmm14, xmm14, dword ptr [rsp+0x44], 1 vpinsrd xmm14, xmm14, dword ptr [BLAKE3_BLOCK_LEN+rip], 2 vinserti128 ymm13, ymm13, xmm14, 0x01 mov r8, qword ptr [rdi] mov r9, qword ptr [rdi+0x8] movzx eax, byte ptr [rbp+0x40] or eax, r13d xor edx, edx .p2align 5 2: mov r14d, eax or eax, r12d add rdx, 64 cmp rdx, r15 cmovne eax, r14d mov dword ptr [rsp+0x88], eax vbroadcasti128 ymm2, xmmword ptr [BLAKE3_IV+rip] vpbroadcastd ymm8, dword ptr [rsp+0x88] vpblendd ymm3, ymm13, ymm8, 0x88 vmovups ymm8, ymmword ptr [r8+rdx-0x40] vinsertf128 ymm8, ymm8, xmmword ptr [r9+rdx-0x40], 0x01 vmovups ymm9, ymmword ptr [r8+rdx-0x30] vinsertf128 ymm9, ymm9, xmmword ptr [r9+rdx-0x30], 0x01 vshufps ymm4, ymm8, ymm9, 136 vshufps ymm5, ymm8, ymm9, 221 vmovups ymm8, ymmword ptr [r8+rdx-0x20] vinsertf128 ymm8, ymm8, xmmword ptr [r9+rdx-0x20], 0x01 vmovups ymm9, ymmword ptr [r8+rdx-0x10] vinsertf128 ymm9, ymm9, xmmword ptr [r9+rdx-0x10], 0x01 vshufps ymm6, ymm8, ymm9, 136 vshufps ymm7, ymm8, ymm9, 221 vpshufd ymm6, ymm6, 0x93 vpshufd ymm7, ymm7, 0x93 mov al, 7 9: vpaddd ymm0, ymm0, ymm4 vpaddd ymm0, ymm0, ymm1 vpxord ymm3, ymm3, ymm0 vprord ymm3, ymm3, 16 vpaddd ymm2, ymm2, ymm3 vpxord ymm1, ymm1, ymm2 vprord ymm1, ymm1, 12 vpaddd ymm0, ymm0, ymm5 vpaddd ymm0, ymm0, ymm1 vpxord ymm3, ymm3, ymm0 vprord ymm3, ymm3, 8 vpaddd ymm2, ymm2, ymm3 vpxord ymm1, ymm1, ymm2 vprord ymm1, ymm1, 7 vpshufd ymm0, ymm0, 0x93 vpshufd ymm3, ymm3, 0x4E vpshufd ymm2, ymm2, 0x39 vpaddd ymm0, ymm0, ymm6 vpaddd ymm0, ymm0, ymm1 vpxord ymm3, ymm3, ymm0 vprord ymm3, ymm3, 16 vpaddd ymm2, ymm2, ymm3 vpxord ymm1, ymm1, ymm2 vprord ymm1, ymm1, 12 vpaddd ymm0, ymm0, ymm7 vpaddd ymm0, ymm0, ymm1 vpxord ymm3, ymm3, ymm0 vprord ymm3, ymm3, 8 vpaddd ymm2, ymm2, ymm3 vpxord ymm1, ymm1, ymm2 vprord ymm1, ymm1, 7 vpshufd ymm0, ymm0, 0x39 vpshufd ymm3, ymm3, 0x4E vpshufd ymm2, ymm2, 0x93 dec al jz 9f vshufps ymm8, ymm4, ymm5, 214 vpshufd ymm9, ymm4, 0x0F vpshufd ymm4, ymm8, 0x39 vshufps ymm8, ymm6, ymm7, 250 vpblendd ymm9, ymm9, ymm8, 0xAA vpunpcklqdq ymm8, ymm7, ymm5 vpblendd ymm8, ymm8, ymm6, 0x88 vpshufd ymm8, ymm8, 0x78 vpunpckhdq ymm5, ymm5, ymm7 vpunpckldq ymm6, ymm6, ymm5 vpshufd ymm7, ymm6, 0x1E vmovdqa ymm5, ymm9 vmovdqa ymm6, ymm8 jmp 9b 9: vpxor ymm0, ymm0, ymm2 vpxor ymm1, ymm1, ymm3 mov eax, r13d cmp rdx, r15 jne 2b vmovdqu xmmword ptr [rbx], xmm0 vmovdqu xmmword ptr [rbx+0x10], xmm1 vextracti128 xmmword ptr [rbx+0x20], ymm0, 0x01 vextracti128 xmmword ptr [rbx+0x30], ymm1, 0x01 vmovdqa xmm0, xmmword ptr [rsp] vmovdqa xmm2, xmmword ptr [rsp+0x4*0x10] vmovdqu32 xmm0 {k1}, xmmword ptr [rsp+0x8] vmovdqu32 xmm2 {k1}, xmmword ptr [rsp+0x48] vmovdqa xmmword ptr [rsp], xmm0 vmovdqa xmmword ptr [rsp+0x4*0x10], xmm2 add rbx, 64 add rdi, 16 sub rsi, 2 3: test esi, 0x1 je 4b vmovdqu xmm0, xmmword ptr [rcx] vmovdqu xmm1, xmmword ptr [rcx+0x10] vmovd xmm14, dword ptr [rsp] vpinsrd xmm14, xmm14, dword ptr [rsp+0x40], 1 vpinsrd xmm14, xmm14, dword ptr [BLAKE3_BLOCK_LEN+rip], 2 vmovdqa xmm15, xmmword ptr [BLAKE3_IV+rip] mov r8, qword ptr [rdi] movzx eax, byte ptr [rbp+0x40] or eax, r13d xor edx, edx .p2align 5 2: mov r14d, eax or eax, r12d add rdx, 64 cmp rdx, r15 cmovne eax, r14d vpinsrd xmm3, xmm14, eax, 3 vmovdqa xmm2, xmm15 vmovups xmm8, xmmword ptr [r8+rdx-0x40] vmovups xmm9, xmmword ptr [r8+rdx-0x30] vshufps xmm4, xmm8, xmm9, 136 vshufps xmm5, xmm8, xmm9, 221 vmovups xmm8, xmmword ptr [r8+rdx-0x20] vmovups xmm9, xmmword ptr [r8+rdx-0x10] vshufps xmm6, xmm8, xmm9, 136 vshufps xmm7, xmm8, xmm9, 221 vpshufd xmm6, xmm6, 0x93 vpshufd xmm7, xmm7, 0x93 mov al, 7 9: vpaddd xmm0, xmm0, xmm4 vpaddd xmm0, xmm0, xmm1 vpxord xmm3, xmm3, xmm0 vprord xmm3, xmm3, 16 vpaddd xmm2, xmm2, xmm3 vpxord xmm1, xmm1, xmm2 vprord xmm1, xmm1, 12 vpaddd xmm0, xmm0, xmm5 vpaddd xmm0, xmm0, xmm1 vpxord xmm3, xmm3, xmm0 vprord xmm3, xmm3, 8 vpaddd xmm2, xmm2, xmm3 vpxord xmm1, xmm1, xmm2 vprord xmm1, xmm1, 7 vpshufd xmm0, xmm0, 0x93 vpshufd xmm3, xmm3, 0x4E vpshufd xmm2, xmm2, 0x39 vpaddd xmm0, xmm0, xmm6 vpaddd xmm0, xmm0, xmm1 vpxord xmm3, xmm3, xmm0 vprord xmm3, xmm3, 16 vpaddd xmm2, xmm2, xmm3 vpxord xmm1, xmm1, xmm2 vprord xmm1, xmm1, 12 vpaddd xmm0, xmm0, xmm7 vpaddd xmm0, xmm0, xmm1 vpxord xmm3, xmm3, xmm0 vprord xmm3, xmm3, 8 vpaddd xmm2, xmm2, xmm3 vpxord xmm1, xmm1, xmm2 vprord xmm1, xmm1, 7 vpshufd xmm0, xmm0, 0x39 vpshufd xmm3, xmm3, 0x4E vpshufd xmm2, xmm2, 0x93 dec al jz 9f vshufps xmm8, xmm4, xmm5, 214 vpshufd xmm9, xmm4, 0x0F vpshufd xmm4, xmm8, 0x39 vshufps xmm8, xmm6, xmm7, 250 vpblendd xmm9, xmm9, xmm8, 0xAA vpunpcklqdq xmm8, xmm7, xmm5 vpblendd xmm8, xmm8, xmm6, 0x88 vpshufd xmm8, xmm8, 0x78 vpunpckhdq xmm5, xmm5, xmm7 vpunpckldq xmm6, xmm6, xmm5 vpshufd xmm7, xmm6, 0x1E vmovdqa xmm5, xmm9 vmovdqa xmm6, xmm8 jmp 9b 9: vpxor xmm0, xmm0, xmm2 vpxor xmm1, xmm1, xmm3 mov eax, r13d cmp rdx, r15 jne 2b vmovdqu xmmword ptr [rbx], xmm0 vmovdqu xmmword ptr [rbx+0x10], xmm1 jmp 4b .p2align 6 _blake3_compress_in_place_avx512: blake3_compress_in_place_avx512: _CET_ENDBR vmovdqu xmm0, xmmword ptr [rdi] vmovdqu xmm1, xmmword ptr [rdi+0x10] movzx eax, r8b movzx edx, dl shl rax, 32 add rdx, rax vmovq xmm3, rcx vmovq xmm4, rdx vpunpcklqdq xmm3, xmm3, xmm4 vmovaps xmm2, xmmword ptr [BLAKE3_IV+rip] vmovups xmm8, xmmword ptr [rsi] vmovups xmm9, xmmword ptr [rsi+0x10] vshufps xmm4, xmm8, xmm9, 136 vshufps xmm5, xmm8, xmm9, 221 vmovups xmm8, xmmword ptr [rsi+0x20] vmovups xmm9, xmmword ptr [rsi+0x30] vshufps xmm6, xmm8, xmm9, 136 vshufps xmm7, xmm8, xmm9, 221 vpshufd xmm6, xmm6, 0x93 vpshufd xmm7, xmm7, 0x93 mov al, 7 9: vpaddd xmm0, xmm0, xmm4 vpaddd xmm0, xmm0, xmm1 vpxord xmm3, xmm3, xmm0 vprord xmm3, xmm3, 16 vpaddd xmm2, xmm2, xmm3 vpxord xmm1, xmm1, xmm2 vprord xmm1, xmm1, 12 vpaddd xmm0, xmm0, xmm5 vpaddd xmm0, xmm0, xmm1 vpxord xmm3, xmm3, xmm0 vprord xmm3, xmm3, 8 vpaddd xmm2, xmm2, xmm3 vpxord xmm1, xmm1, xmm2 vprord xmm1, xmm1, 7 vpshufd xmm0, xmm0, 0x93 vpshufd xmm3, xmm3, 0x4E vpshufd xmm2, xmm2, 0x39 vpaddd xmm0, xmm0, xmm6 vpaddd xmm0, xmm0, xmm1 vpxord xmm3, xmm3, xmm0 vprord xmm3, xmm3, 16 vpaddd xmm2, xmm2, xmm3 vpxord xmm1, xmm1, xmm2 vprord xmm1, xmm1, 12 vpaddd xmm0, xmm0, xmm7 vpaddd xmm0, xmm0, xmm1 vpxord xmm3, xmm3, xmm0 vprord xmm3, xmm3, 8 vpaddd xmm2, xmm2, xmm3 vpxord xmm1, xmm1, xmm2 vprord xmm1, xmm1, 7 vpshufd xmm0, xmm0, 0x39 vpshufd xmm3, xmm3, 0x4E vpshufd xmm2, xmm2, 0x93 dec al jz 9f vshufps xmm8, xmm4, xmm5, 214 vpshufd xmm9, xmm4, 0x0F vpshufd xmm4, xmm8, 0x39 vshufps xmm8, xmm6, xmm7, 250 vpblendd xmm9, xmm9, xmm8, 0xAA vpunpcklqdq xmm8, xmm7, xmm5 vpblendd xmm8, xmm8, xmm6, 0x88 vpshufd xmm8, xmm8, 0x78 vpunpckhdq xmm5, xmm5, xmm7 vpunpckldq xmm6, xmm6, xmm5 vpshufd xmm7, xmm6, 0x1E vmovdqa xmm5, xmm9 vmovdqa xmm6, xmm8 jmp 9b 9: vpxor xmm0, xmm0, xmm2 vpxor xmm1, xmm1, xmm3 vmovdqu xmmword ptr [rdi], xmm0 vmovdqu xmmword ptr [rdi+0x10], xmm1 ret .p2align 6 _blake3_compress_xof_avx512: blake3_compress_xof_avx512: _CET_ENDBR vmovdqu xmm0, xmmword ptr [rdi] vmovdqu xmm1, xmmword ptr [rdi+0x10] movzx eax, r8b movzx edx, dl shl rax, 32 add rdx, rax vmovq xmm3, rcx vmovq xmm4, rdx vpunpcklqdq xmm3, xmm3, xmm4 vmovaps xmm2, xmmword ptr [BLAKE3_IV+rip] vmovups xmm8, xmmword ptr [rsi] vmovups xmm9, xmmword ptr [rsi+0x10] vshufps xmm4, xmm8, xmm9, 136 vshufps xmm5, xmm8, xmm9, 221 vmovups xmm8, xmmword ptr [rsi+0x20] vmovups xmm9, xmmword ptr [rsi+0x30] vshufps xmm6, xmm8, xmm9, 136 vshufps xmm7, xmm8, xmm9, 221 vpshufd xmm6, xmm6, 0x93 vpshufd xmm7, xmm7, 0x93 mov al, 7 9: vpaddd xmm0, xmm0, xmm4 vpaddd xmm0, xmm0, xmm1 vpxord xmm3, xmm3, xmm0 vprord xmm3, xmm3, 16 vpaddd xmm2, xmm2, xmm3 vpxord xmm1, xmm1, xmm2 vprord xmm1, xmm1, 12 vpaddd xmm0, xmm0, xmm5 vpaddd xmm0, xmm0, xmm1 vpxord xmm3, xmm3, xmm0 vprord xmm3, xmm3, 8 vpaddd xmm2, xmm2, xmm3 vpxord xmm1, xmm1, xmm2 vprord xmm1, xmm1, 7 vpshufd xmm0, xmm0, 0x93 vpshufd xmm3, xmm3, 0x4E vpshufd xmm2, xmm2, 0x39 vpaddd xmm0, xmm0, xmm6 vpaddd xmm0, xmm0, xmm1 vpxord xmm3, xmm3, xmm0 vprord xmm3, xmm3, 16 vpaddd xmm2, xmm2, xmm3 vpxord xmm1, xmm1, xmm2 vprord xmm1, xmm1, 12 vpaddd xmm0, xmm0, xmm7 vpaddd xmm0, xmm0, xmm1 vpxord xmm3, xmm3, xmm0 vprord xmm3, xmm3, 8 vpaddd xmm2, xmm2, xmm3 vpxord xmm1, xmm1, xmm2 vprord xmm1, xmm1, 7 vpshufd xmm0, xmm0, 0x39 vpshufd xmm3, xmm3, 0x4E vpshufd xmm2, xmm2, 0x93 dec al jz 9f vshufps xmm8, xmm4, xmm5, 214 vpshufd xmm9, xmm4, 0x0F vpshufd xmm4, xmm8, 0x39 vshufps xmm8, xmm6, xmm7, 250 vpblendd xmm9, xmm9, xmm8, 0xAA vpunpcklqdq xmm8, xmm7, xmm5 vpblendd xmm8, xmm8, xmm6, 0x88 vpshufd xmm8, xmm8, 0x78 vpunpckhdq xmm5, xmm5, xmm7 vpunpckldq xmm6, xmm6, xmm5 vpshufd xmm7, xmm6, 0x1E vmovdqa xmm5, xmm9 vmovdqa xmm6, xmm8 jmp 9b 9: vpxor xmm0, xmm0, xmm2 vpxor xmm1, xmm1, xmm3 vpxor xmm2, xmm2, [rdi] vpxor xmm3, xmm3, [rdi+0x10] vmovdqu xmmword ptr [r9], xmm0 vmovdqu xmmword ptr [r9+0x10], xmm1 vmovdqu xmmword ptr [r9+0x20], xmm2 vmovdqu xmmword ptr [r9+0x30], xmm3 ret .p2align 6 blake3_xof_many_avx512: _blake3_xof_many_avx512: _CET_ENDBR mov r10,QWORD PTR [rsp+0x8] cmp r10,0x1 ja 2f vmovdqu xmm0,XMMWORD PTR [rdi] vmovdqu xmm1,XMMWORD PTR [rdi+0x10] movzx eax,r8b movzx edx,dl shl rax,0x20 add rdx,rax vmovq xmm3,rcx vmovq xmm4,rdx vpunpcklqdq xmm3,xmm3,xmm4 vmovaps xmm2,XMMWORD PTR [BLAKE3_IV+rip] vmovups xmm8,XMMWORD PTR [rsi] vmovups xmm9,XMMWORD PTR [rsi+0x10] vshufps xmm4,xmm8,xmm9,0x88 vshufps xmm5,xmm8,xmm9,0xdd vmovups xmm8,XMMWORD PTR [rsi+0x20] vmovups xmm9,XMMWORD PTR [rsi+0x30] vshufps xmm6,xmm8,xmm9,0x88 vshufps xmm7,xmm8,xmm9,0xdd vpshufd xmm6,xmm6,0x93 vpshufd xmm7,xmm7,0x93 mov al,0x7 3: vpaddd xmm0,xmm0,xmm4 vpaddd xmm0,xmm0,xmm1 vpxord xmm3,xmm3,xmm0 vprord xmm3,xmm3,0x10 vpaddd xmm2,xmm2,xmm3 vpxord xmm1,xmm1,xmm2 vprord xmm1,xmm1,0xc vpaddd xmm0,xmm0,xmm5 vpaddd xmm0,xmm0,xmm1 vpxord xmm3,xmm3,xmm0 vprord xmm3,xmm3,0x8 vpaddd xmm2,xmm2,xmm3 vpxord xmm1,xmm1,xmm2 vprord xmm1,xmm1,0x7 vpshufd xmm0,xmm0,0x93 vpshufd xmm3,xmm3,0x4e vpshufd xmm2,xmm2,0x39 vpaddd xmm0,xmm0,xmm6 vpaddd xmm0,xmm0,xmm1 vpxord xmm3,xmm3,xmm0 vprord xmm3,xmm3,0x10 vpaddd xmm2,xmm2,xmm3 vpxord xmm1,xmm1,xmm2 vprord xmm1,xmm1,0xc vpaddd xmm0,xmm0,xmm7 vpaddd xmm0,xmm0,xmm1 vpxord xmm3,xmm3,xmm0 vprord xmm3,xmm3,0x8 vpaddd xmm2,xmm2,xmm3 vpxord xmm1,xmm1,xmm2 vprord xmm1,xmm1,0x7 vpshufd xmm0,xmm0,0x39 vpshufd xmm3,xmm3,0x4e vpshufd xmm2,xmm2,0x93 dec al je 3f vshufps xmm8,xmm4,xmm5,0xd6 vpshufd xmm9,xmm4,0xf vpshufd xmm4,xmm8,0x39 vshufps xmm8,xmm6,xmm7,0xfa vpblendd xmm9,xmm9,xmm8,0xaa vpunpcklqdq xmm8,xmm7,xmm5 vpblendd xmm8,xmm8,xmm6,0x88 vpshufd xmm8,xmm8,0x78 vpunpckhdq xmm5,xmm5,xmm7 vpunpckldq xmm6,xmm6,xmm5 vpshufd xmm7,xmm6,0x1e vmovdqa xmm5,xmm9 vmovdqa xmm6,xmm8 jmp 3b 3: vpxor xmm0,xmm0,xmm2 vpxor xmm1,xmm1,xmm3 vpxor xmm2,xmm2,XMMWORD PTR [rdi] vpxor xmm3,xmm3,XMMWORD PTR [rdi+0x10] vmovdqu XMMWORD PTR [r9],xmm0 vmovdqu XMMWORD PTR [r9+0x10],xmm1 vmovdqu XMMWORD PTR [r9+0x20],xmm2 vmovdqu XMMWORD PTR [r9+0x30],xmm3 ret .p2align 6 2: push rbp mov rbp,rsp sub rsp,0x90 and rsp,0xffffffffffffffc0 vpbroadcastd zmm0,ecx shr rcx,0x20 vpbroadcastd zmm1,ecx vpaddd zmm2,zmm0,ZMMWORD PTR [ADD0+rip] vpcmpltud k1,zmm2,zmm0 vpaddd zmm1{k1},zmm1,DWORD PTR [ADD1+rip]{1to16} vmovdqa32 ZMMWORD PTR [rsp],zmm2 vmovdqa32 ZMMWORD PTR [rsp+0x40],zmm1 cmp r10,0x10 jb 2f 3: vpbroadcastd zmm16,DWORD PTR [rsi] vpbroadcastd zmm17,DWORD PTR [rsi+0x4] vpbroadcastd zmm18,DWORD PTR [rsi+0x8] vpbroadcastd zmm19,DWORD PTR [rsi+0xc] vpbroadcastd zmm20,DWORD PTR [rsi+0x10] vpbroadcastd zmm21,DWORD PTR [rsi+0x14] vpbroadcastd zmm22,DWORD PTR [rsi+0x18] vpbroadcastd zmm23,DWORD PTR [rsi+0x1c] vpbroadcastd zmm24,DWORD PTR [rsi+0x20] vpbroadcastd zmm25,DWORD PTR [rsi+0x24] vpbroadcastd zmm26,DWORD PTR [rsi+0x28] vpbroadcastd zmm27,DWORD PTR [rsi+0x2c] vpbroadcastd zmm28,DWORD PTR [rsi+0x30] vpbroadcastd zmm29,DWORD PTR [rsi+0x34] vpbroadcastd zmm30,DWORD PTR [rsi+0x38] vpbroadcastd zmm31,DWORD PTR [rsi+0x3c] vpbroadcastd zmm0,DWORD PTR [rdi] vpbroadcastd zmm1,DWORD PTR [rdi+0x4] vpbroadcastd zmm2,DWORD PTR [rdi+0x8] vpbroadcastd zmm3,DWORD PTR [rdi+0xc] vpbroadcastd zmm4,DWORD PTR [rdi+0x10] vpbroadcastd zmm5,DWORD PTR [rdi+0x14] vpbroadcastd zmm6,DWORD PTR [rdi+0x18] vpbroadcastd zmm7,DWORD PTR [rdi+0x1c] vpbroadcastd zmm8,DWORD PTR [BLAKE3_IV_0+rip] vpbroadcastd zmm9,DWORD PTR [BLAKE3_IV_1+rip] vpbroadcastd zmm10,DWORD PTR [BLAKE3_IV_2+rip] vpbroadcastd zmm11,DWORD PTR [BLAKE3_IV_3+rip] vmovdqa32 zmm12,ZMMWORD PTR [rsp] vmovdqa32 zmm13,ZMMWORD PTR [rsp+0x40] vpbroadcastd zmm14,edx vpbroadcastd zmm15,r8d vpaddd zmm0,zmm0,zmm16 vpaddd zmm1,zmm1,zmm18 vpaddd zmm2,zmm2,zmm20 vpaddd zmm3,zmm3,zmm22 vpaddd zmm0,zmm0,zmm4 vpaddd zmm1,zmm1,zmm5 vpaddd zmm2,zmm2,zmm6 vpaddd zmm3,zmm3,zmm7 vpxord zmm12,zmm12,zmm0 vpxord zmm13,zmm13,zmm1 vpxord zmm14,zmm14,zmm2 vpxord zmm15,zmm15,zmm3 vprord zmm12,zmm12,0x10 vprord zmm13,zmm13,0x10 vprord zmm14,zmm14,0x10 vprord zmm15,zmm15,0x10 vpaddd zmm8,zmm8,zmm12 vpaddd zmm9,zmm9,zmm13 vpaddd zmm10,zmm10,zmm14 vpaddd zmm11,zmm11,zmm15 vpxord zmm4,zmm4,zmm8 vpxord zmm5,zmm5,zmm9 vpxord zmm6,zmm6,zmm10 vpxord zmm7,zmm7,zmm11 vprord zmm4,zmm4,0xc vprord zmm5,zmm5,0xc vprord zmm6,zmm6,0xc vprord zmm7,zmm7,0xc vpaddd zmm0,zmm0,zmm17 vpaddd zmm1,zmm1,zmm19 vpaddd zmm2,zmm2,zmm21 vpaddd zmm3,zmm3,zmm23 vpaddd zmm0,zmm0,zmm4 vpaddd zmm1,zmm1,zmm5 vpaddd zmm2,zmm2,zmm6 vpaddd zmm3,zmm3,zmm7 vpxord zmm12,zmm12,zmm0 vpxord zmm13,zmm13,zmm1 vpxord zmm14,zmm14,zmm2 vpxord zmm15,zmm15,zmm3 vprord zmm12,zmm12,0x8 vprord zmm13,zmm13,0x8 vprord zmm14,zmm14,0x8 vprord zmm15,zmm15,0x8 vpaddd zmm8,zmm8,zmm12 vpaddd zmm9,zmm9,zmm13 vpaddd zmm10,zmm10,zmm14 vpaddd zmm11,zmm11,zmm15 vpxord zmm4,zmm4,zmm8 vpxord zmm5,zmm5,zmm9 vpxord zmm6,zmm6,zmm10 vpxord zmm7,zmm7,zmm11 vprord zmm4,zmm4,0x7 vprord zmm5,zmm5,0x7 vprord zmm6,zmm6,0x7 vprord zmm7,zmm7,0x7 vpaddd zmm0,zmm0,zmm24 vpaddd zmm1,zmm1,zmm26 vpaddd zmm2,zmm2,zmm28 vpaddd zmm3,zmm3,zmm30 vpaddd zmm0,zmm0,zmm5 vpaddd zmm1,zmm1,zmm6 vpaddd zmm2,zmm2,zmm7 vpaddd zmm3,zmm3,zmm4 vpxord zmm15,zmm15,zmm0 vpxord zmm12,zmm12,zmm1 vpxord zmm13,zmm13,zmm2 vpxord zmm14,zmm14,zmm3 vprord zmm15,zmm15,0x10 vprord zmm12,zmm12,0x10 vprord zmm13,zmm13,0x10 vprord zmm14,zmm14,0x10 vpaddd zmm10,zmm10,zmm15 vpaddd zmm11,zmm11,zmm12 vpaddd zmm8,zmm8,zmm13 vpaddd zmm9,zmm9,zmm14 vpxord zmm5,zmm5,zmm10 vpxord zmm6,zmm6,zmm11 vpxord zmm7,zmm7,zmm8 vpxord zmm4,zmm4,zmm9 vprord zmm5,zmm5,0xc vprord zmm6,zmm6,0xc vprord zmm7,zmm7,0xc vprord zmm4,zmm4,0xc vpaddd zmm0,zmm0,zmm25 vpaddd zmm1,zmm1,zmm27 vpaddd zmm2,zmm2,zmm29 vpaddd zmm3,zmm3,zmm31 vpaddd zmm0,zmm0,zmm5 vpaddd zmm1,zmm1,zmm6 vpaddd zmm2,zmm2,zmm7 vpaddd zmm3,zmm3,zmm4 vpxord zmm15,zmm15,zmm0 vpxord zmm12,zmm12,zmm1 vpxord zmm13,zmm13,zmm2 vpxord zmm14,zmm14,zmm3 vprord zmm15,zmm15,0x8 vprord zmm12,zmm12,0x8 vprord zmm13,zmm13,0x8 vprord zmm14,zmm14,0x8 vpaddd zmm10,zmm10,zmm15 vpaddd zmm11,zmm11,zmm12 vpaddd zmm8,zmm8,zmm13 vpaddd zmm9,zmm9,zmm14 vpxord zmm5,zmm5,zmm10 vpxord zmm6,zmm6,zmm11 vpxord zmm7,zmm7,zmm8 vpxord zmm4,zmm4,zmm9 vprord zmm5,zmm5,0x7 vprord zmm6,zmm6,0x7 vprord zmm7,zmm7,0x7 vprord zmm4,zmm4,0x7 vpaddd zmm0,zmm0,zmm18 vpaddd zmm1,zmm1,zmm19 vpaddd zmm2,zmm2,zmm23 vpaddd zmm3,zmm3,zmm20 vpaddd zmm0,zmm0,zmm4 vpaddd zmm1,zmm1,zmm5 vpaddd zmm2,zmm2,zmm6 vpaddd zmm3,zmm3,zmm7 vpxord zmm12,zmm12,zmm0 vpxord zmm13,zmm13,zmm1 vpxord zmm14,zmm14,zmm2 vpxord zmm15,zmm15,zmm3 vprord zmm12,zmm12,0x10 vprord zmm13,zmm13,0x10 vprord zmm14,zmm14,0x10 vprord zmm15,zmm15,0x10 vpaddd zmm8,zmm8,zmm12 vpaddd zmm9,zmm9,zmm13 vpaddd zmm10,zmm10,zmm14 vpaddd zmm11,zmm11,zmm15 vpxord zmm4,zmm4,zmm8 vpxord zmm5,zmm5,zmm9 vpxord zmm6,zmm6,zmm10 vpxord zmm7,zmm7,zmm11 vprord zmm4,zmm4,0xc vprord zmm5,zmm5,0xc vprord zmm6,zmm6,0xc vprord zmm7,zmm7,0xc vpaddd zmm0,zmm0,zmm22 vpaddd zmm1,zmm1,zmm26 vpaddd zmm2,zmm2,zmm16 vpaddd zmm3,zmm3,zmm29 vpaddd zmm0,zmm0,zmm4 vpaddd zmm1,zmm1,zmm5 vpaddd zmm2,zmm2,zmm6 vpaddd zmm3,zmm3,zmm7 vpxord zmm12,zmm12,zmm0 vpxord zmm13,zmm13,zmm1 vpxord zmm14,zmm14,zmm2 vpxord zmm15,zmm15,zmm3 vprord zmm12,zmm12,0x8 vprord zmm13,zmm13,0x8 vprord zmm14,zmm14,0x8 vprord zmm15,zmm15,0x8 vpaddd zmm8,zmm8,zmm12 vpaddd zmm9,zmm9,zmm13 vpaddd zmm10,zmm10,zmm14 vpaddd zmm11,zmm11,zmm15 vpxord zmm4,zmm4,zmm8 vpxord zmm5,zmm5,zmm9 vpxord zmm6,zmm6,zmm10 vpxord zmm7,zmm7,zmm11 vprord zmm4,zmm4,0x7 vprord zmm5,zmm5,0x7 vprord zmm6,zmm6,0x7 vprord zmm7,zmm7,0x7 vpaddd zmm0,zmm0,zmm17 vpaddd zmm1,zmm1,zmm28 vpaddd zmm2,zmm2,zmm25 vpaddd zmm3,zmm3,zmm31 vpaddd zmm0,zmm0,zmm5 vpaddd zmm1,zmm1,zmm6 vpaddd zmm2,zmm2,zmm7 vpaddd zmm3,zmm3,zmm4 vpxord zmm15,zmm15,zmm0 vpxord zmm12,zmm12,zmm1 vpxord zmm13,zmm13,zmm2 vpxord zmm14,zmm14,zmm3 vprord zmm15,zmm15,0x10 vprord zmm12,zmm12,0x10 vprord zmm13,zmm13,0x10 vprord zmm14,zmm14,0x10 vpaddd zmm10,zmm10,zmm15 vpaddd zmm11,zmm11,zmm12 vpaddd zmm8,zmm8,zmm13 vpaddd zmm9,zmm9,zmm14 vpxord zmm5,zmm5,zmm10 vpxord zmm6,zmm6,zmm11 vpxord zmm7,zmm7,zmm8 vpxord zmm4,zmm4,zmm9 vprord zmm5,zmm5,0xc vprord zmm6,zmm6,0xc vprord zmm7,zmm7,0xc vprord zmm4,zmm4,0xc vpaddd zmm0,zmm0,zmm27 vpaddd zmm1,zmm1,zmm21 vpaddd zmm2,zmm2,zmm30 vpaddd zmm3,zmm3,zmm24 vpaddd zmm0,zmm0,zmm5 vpaddd zmm1,zmm1,zmm6 vpaddd zmm2,zmm2,zmm7 vpaddd zmm3,zmm3,zmm4 vpxord zmm15,zmm15,zmm0 vpxord zmm12,zmm12,zmm1 vpxord zmm13,zmm13,zmm2 vpxord zmm14,zmm14,zmm3 vprord zmm15,zmm15,0x8 vprord zmm12,zmm12,0x8 vprord zmm13,zmm13,0x8 vprord zmm14,zmm14,0x8 vpaddd zmm10,zmm10,zmm15 vpaddd zmm11,zmm11,zmm12 vpaddd zmm8,zmm8,zmm13 vpaddd zmm9,zmm9,zmm14 vpxord zmm5,zmm5,zmm10 vpxord zmm6,zmm6,zmm11 vpxord zmm7,zmm7,zmm8 vpxord zmm4,zmm4,zmm9 vprord zmm5,zmm5,0x7 vprord zmm6,zmm6,0x7 vprord zmm7,zmm7,0x7 vprord zmm4,zmm4,0x7 vpaddd zmm0,zmm0,zmm19 vpaddd zmm1,zmm1,zmm26 vpaddd zmm2,zmm2,zmm29 vpaddd zmm3,zmm3,zmm23 vpaddd zmm0,zmm0,zmm4 vpaddd zmm1,zmm1,zmm5 vpaddd zmm2,zmm2,zmm6 vpaddd zmm3,zmm3,zmm7 vpxord zmm12,zmm12,zmm0 vpxord zmm13,zmm13,zmm1 vpxord zmm14,zmm14,zmm2 vpxord zmm15,zmm15,zmm3 vprord zmm12,zmm12,0x10 vprord zmm13,zmm13,0x10 vprord zmm14,zmm14,0x10 vprord zmm15,zmm15,0x10 vpaddd zmm8,zmm8,zmm12 vpaddd zmm9,zmm9,zmm13 vpaddd zmm10,zmm10,zmm14 vpaddd zmm11,zmm11,zmm15 vpxord zmm4,zmm4,zmm8 vpxord zmm5,zmm5,zmm9 vpxord zmm6,zmm6,zmm10 vpxord zmm7,zmm7,zmm11 vprord zmm4,zmm4,0xc vprord zmm5,zmm5,0xc vprord zmm6,zmm6,0xc vprord zmm7,zmm7,0xc vpaddd zmm0,zmm0,zmm20 vpaddd zmm1,zmm1,zmm28 vpaddd zmm2,zmm2,zmm18 vpaddd zmm3,zmm3,zmm30 vpaddd zmm0,zmm0,zmm4 vpaddd zmm1,zmm1,zmm5 vpaddd zmm2,zmm2,zmm6 vpaddd zmm3,zmm3,zmm7 vpxord zmm12,zmm12,zmm0 vpxord zmm13,zmm13,zmm1 vpxord zmm14,zmm14,zmm2 vpxord zmm15,zmm15,zmm3 vprord zmm12,zmm12,0x8 vprord zmm13,zmm13,0x8 vprord zmm14,zmm14,0x8 vprord zmm15,zmm15,0x8 vpaddd zmm8,zmm8,zmm12 vpaddd zmm9,zmm9,zmm13 vpaddd zmm10,zmm10,zmm14 vpaddd zmm11,zmm11,zmm15 vpxord zmm4,zmm4,zmm8 vpxord zmm5,zmm5,zmm9 vpxord zmm6,zmm6,zmm10 vpxord zmm7,zmm7,zmm11 vprord zmm4,zmm4,0x7 vprord zmm5,zmm5,0x7 vprord zmm6,zmm6,0x7 vprord zmm7,zmm7,0x7 vpaddd zmm0,zmm0,zmm22 vpaddd zmm1,zmm1,zmm25 vpaddd zmm2,zmm2,zmm27 vpaddd zmm3,zmm3,zmm24 vpaddd zmm0,zmm0,zmm5 vpaddd zmm1,zmm1,zmm6 vpaddd zmm2,zmm2,zmm7 vpaddd zmm3,zmm3,zmm4 vpxord zmm15,zmm15,zmm0 vpxord zmm12,zmm12,zmm1 vpxord zmm13,zmm13,zmm2 vpxord zmm14,zmm14,zmm3 vprord zmm15,zmm15,0x10 vprord zmm12,zmm12,0x10 vprord zmm13,zmm13,0x10 vprord zmm14,zmm14,0x10 vpaddd zmm10,zmm10,zmm15 vpaddd zmm11,zmm11,zmm12 vpaddd zmm8,zmm8,zmm13 vpaddd zmm9,zmm9,zmm14 vpxord zmm5,zmm5,zmm10 vpxord zmm6,zmm6,zmm11 vpxord zmm7,zmm7,zmm8 vpxord zmm4,zmm4,zmm9 vprord zmm5,zmm5,0xc vprord zmm6,zmm6,0xc vprord zmm7,zmm7,0xc vprord zmm4,zmm4,0xc vpaddd zmm0,zmm0,zmm21 vpaddd zmm1,zmm1,zmm16 vpaddd zmm2,zmm2,zmm31 vpaddd zmm3,zmm3,zmm17 vpaddd zmm0,zmm0,zmm5 vpaddd zmm1,zmm1,zmm6 vpaddd zmm2,zmm2,zmm7 vpaddd zmm3,zmm3,zmm4 vpxord zmm15,zmm15,zmm0 vpxord zmm12,zmm12,zmm1 vpxord zmm13,zmm13,zmm2 vpxord zmm14,zmm14,zmm3 vprord zmm15,zmm15,0x8 vprord zmm12,zmm12,0x8 vprord zmm13,zmm13,0x8 vprord zmm14,zmm14,0x8 vpaddd zmm10,zmm10,zmm15 vpaddd zmm11,zmm11,zmm12 vpaddd zmm8,zmm8,zmm13 vpaddd zmm9,zmm9,zmm14 vpxord zmm5,zmm5,zmm10 vpxord zmm6,zmm6,zmm11 vpxord zmm7,zmm7,zmm8 vpxord zmm4,zmm4,zmm9 vprord zmm5,zmm5,0x7 vprord zmm6,zmm6,0x7 vprord zmm7,zmm7,0x7 vprord zmm4,zmm4,0x7 vpaddd zmm0,zmm0,zmm26 vpaddd zmm1,zmm1,zmm28 vpaddd zmm2,zmm2,zmm30 vpaddd zmm3,zmm3,zmm29 vpaddd zmm0,zmm0,zmm4 vpaddd zmm1,zmm1,zmm5 vpaddd zmm2,zmm2,zmm6 vpaddd zmm3,zmm3,zmm7 vpxord zmm12,zmm12,zmm0 vpxord zmm13,zmm13,zmm1 vpxord zmm14,zmm14,zmm2 vpxord zmm15,zmm15,zmm3 vprord zmm12,zmm12,0x10 vprord zmm13,zmm13,0x10 vprord zmm14,zmm14,0x10 vprord zmm15,zmm15,0x10 vpaddd zmm8,zmm8,zmm12 vpaddd zmm9,zmm9,zmm13 vpaddd zmm10,zmm10,zmm14 vpaddd zmm11,zmm11,zmm15 vpxord zmm4,zmm4,zmm8 vpxord zmm5,zmm5,zmm9 vpxord zmm6,zmm6,zmm10 vpxord zmm7,zmm7,zmm11 vprord zmm4,zmm4,0xc vprord zmm5,zmm5,0xc vprord zmm6,zmm6,0xc vprord zmm7,zmm7,0xc vpaddd zmm0,zmm0,zmm23 vpaddd zmm1,zmm1,zmm25 vpaddd zmm2,zmm2,zmm19 vpaddd zmm3,zmm3,zmm31 vpaddd zmm0,zmm0,zmm4 vpaddd zmm1,zmm1,zmm5 vpaddd zmm2,zmm2,zmm6 vpaddd zmm3,zmm3,zmm7 vpxord zmm12,zmm12,zmm0 vpxord zmm13,zmm13,zmm1 vpxord zmm14,zmm14,zmm2 vpxord zmm15,zmm15,zmm3 vprord zmm12,zmm12,0x8 vprord zmm13,zmm13,0x8 vprord zmm14,zmm14,0x8 vprord zmm15,zmm15,0x8 vpaddd zmm8,zmm8,zmm12 vpaddd zmm9,zmm9,zmm13 vpaddd zmm10,zmm10,zmm14 vpaddd zmm11,zmm11,zmm15 vpxord zmm4,zmm4,zmm8 vpxord zmm5,zmm5,zmm9 vpxord zmm6,zmm6,zmm10 vpxord zmm7,zmm7,zmm11 vprord zmm4,zmm4,0x7 vprord zmm5,zmm5,0x7 vprord zmm6,zmm6,0x7 vprord zmm7,zmm7,0x7 vpaddd zmm0,zmm0,zmm20 vpaddd zmm1,zmm1,zmm27 vpaddd zmm2,zmm2,zmm21 vpaddd zmm3,zmm3,zmm17 vpaddd zmm0,zmm0,zmm5 vpaddd zmm1,zmm1,zmm6 vpaddd zmm2,zmm2,zmm7 vpaddd zmm3,zmm3,zmm4 vpxord zmm15,zmm15,zmm0 vpxord zmm12,zmm12,zmm1 vpxord zmm13,zmm13,zmm2 vpxord zmm14,zmm14,zmm3 vprord zmm15,zmm15,0x10 vprord zmm12,zmm12,0x10 vprord zmm13,zmm13,0x10 vprord zmm14,zmm14,0x10 vpaddd zmm10,zmm10,zmm15 vpaddd zmm11,zmm11,zmm12 vpaddd zmm8,zmm8,zmm13 vpaddd zmm9,zmm9,zmm14 vpxord zmm5,zmm5,zmm10 vpxord zmm6,zmm6,zmm11 vpxord zmm7,zmm7,zmm8 vpxord zmm4,zmm4,zmm9 vprord zmm5,zmm5,0xc vprord zmm6,zmm6,0xc vprord zmm7,zmm7,0xc vprord zmm4,zmm4,0xc vpaddd zmm0,zmm0,zmm16 vpaddd zmm1,zmm1,zmm18 vpaddd zmm2,zmm2,zmm24 vpaddd zmm3,zmm3,zmm22 vpaddd zmm0,zmm0,zmm5 vpaddd zmm1,zmm1,zmm6 vpaddd zmm2,zmm2,zmm7 vpaddd zmm3,zmm3,zmm4 vpxord zmm15,zmm15,zmm0 vpxord zmm12,zmm12,zmm1 vpxord zmm13,zmm13,zmm2 vpxord zmm14,zmm14,zmm3 vprord zmm15,zmm15,0x8 vprord zmm12,zmm12,0x8 vprord zmm13,zmm13,0x8 vprord zmm14,zmm14,0x8 vpaddd zmm10,zmm10,zmm15 vpaddd zmm11,zmm11,zmm12 vpaddd zmm8,zmm8,zmm13 vpaddd zmm9,zmm9,zmm14 vpxord zmm5,zmm5,zmm10 vpxord zmm6,zmm6,zmm11 vpxord zmm7,zmm7,zmm8 vpxord zmm4,zmm4,zmm9 vprord zmm5,zmm5,0x7 vprord zmm6,zmm6,0x7 vprord zmm7,zmm7,0x7 vprord zmm4,zmm4,0x7 vpaddd zmm0,zmm0,zmm28 vpaddd zmm1,zmm1,zmm25 vpaddd zmm2,zmm2,zmm31 vpaddd zmm3,zmm3,zmm30 vpaddd zmm0,zmm0,zmm4 vpaddd zmm1,zmm1,zmm5 vpaddd zmm2,zmm2,zmm6 vpaddd zmm3,zmm3,zmm7 vpxord zmm12,zmm12,zmm0 vpxord zmm13,zmm13,zmm1 vpxord zmm14,zmm14,zmm2 vpxord zmm15,zmm15,zmm3 vprord zmm12,zmm12,0x10 vprord zmm13,zmm13,0x10 vprord zmm14,zmm14,0x10 vprord zmm15,zmm15,0x10 vpaddd zmm8,zmm8,zmm12 vpaddd zmm9,zmm9,zmm13 vpaddd zmm10,zmm10,zmm14 vpaddd zmm11,zmm11,zmm15 vpxord zmm4,zmm4,zmm8 vpxord zmm5,zmm5,zmm9 vpxord zmm6,zmm6,zmm10 vpxord zmm7,zmm7,zmm11 vprord zmm4,zmm4,0xc vprord zmm5,zmm5,0xc vprord zmm6,zmm6,0xc vprord zmm7,zmm7,0xc vpaddd zmm0,zmm0,zmm29 vpaddd zmm1,zmm1,zmm27 vpaddd zmm2,zmm2,zmm26 vpaddd zmm3,zmm3,zmm24 vpaddd zmm0,zmm0,zmm4 vpaddd zmm1,zmm1,zmm5 vpaddd zmm2,zmm2,zmm6 vpaddd zmm3,zmm3,zmm7 vpxord zmm12,zmm12,zmm0 vpxord zmm13,zmm13,zmm1 vpxord zmm14,zmm14,zmm2 vpxord zmm15,zmm15,zmm3 vprord zmm12,zmm12,0x8 vprord zmm13,zmm13,0x8 vprord zmm14,zmm14,0x8 vprord zmm15,zmm15,0x8 vpaddd zmm8,zmm8,zmm12 vpaddd zmm9,zmm9,zmm13 vpaddd zmm10,zmm10,zmm14 vpaddd zmm11,zmm11,zmm15 vpxord zmm4,zmm4,zmm8 vpxord zmm5,zmm5,zmm9 vpxord zmm6,zmm6,zmm10 vpxord zmm7,zmm7,zmm11 vprord zmm4,zmm4,0x7 vprord zmm5,zmm5,0x7 vprord zmm6,zmm6,0x7 vprord zmm7,zmm7,0x7 vpaddd zmm0,zmm0,zmm23 vpaddd zmm1,zmm1,zmm21 vpaddd zmm2,zmm2,zmm16 vpaddd zmm3,zmm3,zmm22 vpaddd zmm0,zmm0,zmm5 vpaddd zmm1,zmm1,zmm6 vpaddd zmm2,zmm2,zmm7 vpaddd zmm3,zmm3,zmm4 vpxord zmm15,zmm15,zmm0 vpxord zmm12,zmm12,zmm1 vpxord zmm13,zmm13,zmm2 vpxord zmm14,zmm14,zmm3 vprord zmm15,zmm15,0x10 vprord zmm12,zmm12,0x10 vprord zmm13,zmm13,0x10 vprord zmm14,zmm14,0x10 vpaddd zmm10,zmm10,zmm15 vpaddd zmm11,zmm11,zmm12 vpaddd zmm8,zmm8,zmm13 vpaddd zmm9,zmm9,zmm14 vpxord zmm5,zmm5,zmm10 vpxord zmm6,zmm6,zmm11 vpxord zmm7,zmm7,zmm8 vpxord zmm4,zmm4,zmm9 vprord zmm5,zmm5,0xc vprord zmm6,zmm6,0xc vprord zmm7,zmm7,0xc vprord zmm4,zmm4,0xc vpaddd zmm0,zmm0,zmm18 vpaddd zmm1,zmm1,zmm19 vpaddd zmm2,zmm2,zmm17 vpaddd zmm3,zmm3,zmm20 vpaddd zmm0,zmm0,zmm5 vpaddd zmm1,zmm1,zmm6 vpaddd zmm2,zmm2,zmm7 vpaddd zmm3,zmm3,zmm4 vpxord zmm15,zmm15,zmm0 vpxord zmm12,zmm12,zmm1 vpxord zmm13,zmm13,zmm2 vpxord zmm14,zmm14,zmm3 vprord zmm15,zmm15,0x8 vprord zmm12,zmm12,0x8 vprord zmm13,zmm13,0x8 vprord zmm14,zmm14,0x8 vpaddd zmm10,zmm10,zmm15 vpaddd zmm11,zmm11,zmm12 vpaddd zmm8,zmm8,zmm13 vpaddd zmm9,zmm9,zmm14 vpxord zmm5,zmm5,zmm10 vpxord zmm6,zmm6,zmm11 vpxord zmm7,zmm7,zmm8 vpxord zmm4,zmm4,zmm9 vprord zmm5,zmm5,0x7 vprord zmm6,zmm6,0x7 vprord zmm7,zmm7,0x7 vprord zmm4,zmm4,0x7 vpaddd zmm0,zmm0,zmm25 vpaddd zmm1,zmm1,zmm27 vpaddd zmm2,zmm2,zmm24 vpaddd zmm3,zmm3,zmm31 vpaddd zmm0,zmm0,zmm4 vpaddd zmm1,zmm1,zmm5 vpaddd zmm2,zmm2,zmm6 vpaddd zmm3,zmm3,zmm7 vpxord zmm12,zmm12,zmm0 vpxord zmm13,zmm13,zmm1 vpxord zmm14,zmm14,zmm2 vpxord zmm15,zmm15,zmm3 vprord zmm12,zmm12,0x10 vprord zmm13,zmm13,0x10 vprord zmm14,zmm14,0x10 vprord zmm15,zmm15,0x10 vpaddd zmm8,zmm8,zmm12 vpaddd zmm9,zmm9,zmm13 vpaddd zmm10,zmm10,zmm14 vpaddd zmm11,zmm11,zmm15 vpxord zmm4,zmm4,zmm8 vpxord zmm5,zmm5,zmm9 vpxord zmm6,zmm6,zmm10 vpxord zmm7,zmm7,zmm11 vprord zmm4,zmm4,0xc vprord zmm5,zmm5,0xc vprord zmm6,zmm6,0xc vprord zmm7,zmm7,0xc vpaddd zmm0,zmm0,zmm30 vpaddd zmm1,zmm1,zmm21 vpaddd zmm2,zmm2,zmm28 vpaddd zmm3,zmm3,zmm17 vpaddd zmm0,zmm0,zmm4 vpaddd zmm1,zmm1,zmm5 vpaddd zmm2,zmm2,zmm6 vpaddd zmm3,zmm3,zmm7 vpxord zmm12,zmm12,zmm0 vpxord zmm13,zmm13,zmm1 vpxord zmm14,zmm14,zmm2 vpxord zmm15,zmm15,zmm3 vprord zmm12,zmm12,0x8 vprord zmm13,zmm13,0x8 vprord zmm14,zmm14,0x8 vprord zmm15,zmm15,0x8 vpaddd zmm8,zmm8,zmm12 vpaddd zmm9,zmm9,zmm13 vpaddd zmm10,zmm10,zmm14 vpaddd zmm11,zmm11,zmm15 vpxord zmm4,zmm4,zmm8 vpxord zmm5,zmm5,zmm9 vpxord zmm6,zmm6,zmm10 vpxord zmm7,zmm7,zmm11 vprord zmm4,zmm4,0x7 vprord zmm5,zmm5,0x7 vprord zmm6,zmm6,0x7 vprord zmm7,zmm7,0x7 vpaddd zmm0,zmm0,zmm29 vpaddd zmm1,zmm1,zmm16 vpaddd zmm2,zmm2,zmm18 vpaddd zmm3,zmm3,zmm20 vpaddd zmm0,zmm0,zmm5 vpaddd zmm1,zmm1,zmm6 vpaddd zmm2,zmm2,zmm7 vpaddd zmm3,zmm3,zmm4 vpxord zmm15,zmm15,zmm0 vpxord zmm12,zmm12,zmm1 vpxord zmm13,zmm13,zmm2 vpxord zmm14,zmm14,zmm3 vprord zmm15,zmm15,0x10 vprord zmm12,zmm12,0x10 vprord zmm13,zmm13,0x10 vprord zmm14,zmm14,0x10 vpaddd zmm10,zmm10,zmm15 vpaddd zmm11,zmm11,zmm12 vpaddd zmm8,zmm8,zmm13 vpaddd zmm9,zmm9,zmm14 vpxord zmm5,zmm5,zmm10 vpxord zmm6,zmm6,zmm11 vpxord zmm7,zmm7,zmm8 vpxord zmm4,zmm4,zmm9 vprord zmm5,zmm5,0xc vprord zmm6,zmm6,0xc vprord zmm7,zmm7,0xc vprord zmm4,zmm4,0xc vpaddd zmm0,zmm0,zmm19 vpaddd zmm1,zmm1,zmm26 vpaddd zmm2,zmm2,zmm22 vpaddd zmm3,zmm3,zmm23 vpaddd zmm0,zmm0,zmm5 vpaddd zmm1,zmm1,zmm6 vpaddd zmm2,zmm2,zmm7 vpaddd zmm3,zmm3,zmm4 vpxord zmm15,zmm15,zmm0 vpxord zmm12,zmm12,zmm1 vpxord zmm13,zmm13,zmm2 vpxord zmm14,zmm14,zmm3 vprord zmm15,zmm15,0x8 vprord zmm12,zmm12,0x8 vprord zmm13,zmm13,0x8 vprord zmm14,zmm14,0x8 vpaddd zmm10,zmm10,zmm15 vpaddd zmm11,zmm11,zmm12 vpaddd zmm8,zmm8,zmm13 vpaddd zmm9,zmm9,zmm14 vpxord zmm5,zmm5,zmm10 vpxord zmm6,zmm6,zmm11 vpxord zmm7,zmm7,zmm8 vpxord zmm4,zmm4,zmm9 vprord zmm5,zmm5,0x7 vprord zmm6,zmm6,0x7 vprord zmm7,zmm7,0x7 vprord zmm4,zmm4,0x7 vpaddd zmm0,zmm0,zmm27 vpaddd zmm1,zmm1,zmm21 vpaddd zmm2,zmm2,zmm17 vpaddd zmm3,zmm3,zmm24 vpaddd zmm0,zmm0,zmm4 vpaddd zmm1,zmm1,zmm5 vpaddd zmm2,zmm2,zmm6 vpaddd zmm3,zmm3,zmm7 vpxord zmm12,zmm12,zmm0 vpxord zmm13,zmm13,zmm1 vpxord zmm14,zmm14,zmm2 vpxord zmm15,zmm15,zmm3 vprord zmm12,zmm12,0x10 vprord zmm13,zmm13,0x10 vprord zmm14,zmm14,0x10 vprord zmm15,zmm15,0x10 vpaddd zmm8,zmm8,zmm12 vpaddd zmm9,zmm9,zmm13 vpaddd zmm10,zmm10,zmm14 vpaddd zmm11,zmm11,zmm15 vpxord zmm4,zmm4,zmm8 vpxord zmm5,zmm5,zmm9 vpxord zmm6,zmm6,zmm10 vpxord zmm7,zmm7,zmm11 vprord zmm4,zmm4,0xc vprord zmm5,zmm5,0xc vprord zmm6,zmm6,0xc vprord zmm7,zmm7,0xc vpaddd zmm0,zmm0,zmm31 vpaddd zmm1,zmm1,zmm16 vpaddd zmm2,zmm2,zmm25 vpaddd zmm3,zmm3,zmm22 vpaddd zmm0,zmm0,zmm4 vpaddd zmm1,zmm1,zmm5 vpaddd zmm2,zmm2,zmm6 vpaddd zmm3,zmm3,zmm7 vpxord zmm12,zmm12,zmm0 vpxord zmm13,zmm13,zmm1 vpxord zmm14,zmm14,zmm2 vpxord zmm15,zmm15,zmm3 vprord zmm12,zmm12,0x8 vprord zmm13,zmm13,0x8 vprord zmm14,zmm14,0x8 vprord zmm15,zmm15,0x8 vpaddd zmm8,zmm8,zmm12 vpaddd zmm9,zmm9,zmm13 vpaddd zmm10,zmm10,zmm14 vpaddd zmm11,zmm11,zmm15 vpxord zmm4,zmm4,zmm8 vpxord zmm5,zmm5,zmm9 vpxord zmm6,zmm6,zmm10 vpxord zmm7,zmm7,zmm11 vprord zmm4,zmm4,0x7 vprord zmm5,zmm5,0x7 vprord zmm6,zmm6,0x7 vprord zmm7,zmm7,0x7 vpaddd zmm0,zmm0,zmm30 vpaddd zmm1,zmm1,zmm18 vpaddd zmm2,zmm2,zmm19 vpaddd zmm3,zmm3,zmm23 vpaddd zmm0,zmm0,zmm5 vpaddd zmm1,zmm1,zmm6 vpaddd zmm2,zmm2,zmm7 vpaddd zmm3,zmm3,zmm4 vpxord zmm15,zmm15,zmm0 vpxord zmm12,zmm12,zmm1 vpxord zmm13,zmm13,zmm2 vpxord zmm14,zmm14,zmm3 vprord zmm15,zmm15,0x10 vprord zmm12,zmm12,0x10 vprord zmm13,zmm13,0x10 vprord zmm14,zmm14,0x10 vpaddd zmm10,zmm10,zmm15 vpaddd zmm11,zmm11,zmm12 vpaddd zmm8,zmm8,zmm13 vpaddd zmm9,zmm9,zmm14 vpxord zmm5,zmm5,zmm10 vpxord zmm6,zmm6,zmm11 vpxord zmm7,zmm7,zmm8 vpxord zmm4,zmm4,zmm9 vprord zmm5,zmm5,0xc vprord zmm6,zmm6,0xc vprord zmm7,zmm7,0xc vprord zmm4,zmm4,0xc vpaddd zmm0,zmm0,zmm26 vpaddd zmm1,zmm1,zmm28 vpaddd zmm2,zmm2,zmm20 vpaddd zmm3,zmm3,zmm29 vpaddd zmm0,zmm0,zmm5 vpaddd zmm1,zmm1,zmm6 vpaddd zmm2,zmm2,zmm7 vpaddd zmm3,zmm3,zmm4 vpxord zmm15,zmm15,zmm0 vpxord zmm12,zmm12,zmm1 vpxord zmm13,zmm13,zmm2 vpxord zmm14,zmm14,zmm3 vprord zmm15,zmm15,0x8 vprord zmm12,zmm12,0x8 vprord zmm13,zmm13,0x8 vprord zmm14,zmm14,0x8 vpaddd zmm10,zmm10,zmm15 vpaddd zmm11,zmm11,zmm12 vpaddd zmm8,zmm8,zmm13 vpaddd zmm9,zmm9,zmm14 vpxord zmm5,zmm5,zmm10 vpxord zmm6,zmm6,zmm11 vpxord zmm7,zmm7,zmm8 vpxord zmm4,zmm4,zmm9 vprord zmm5,zmm5,0x7 vprord zmm6,zmm6,0x7 vprord zmm7,zmm7,0x7 vprord zmm4,zmm4,0x7 vpxord zmm0,zmm0,zmm8 vpxord zmm1,zmm1,zmm9 vpxord zmm2,zmm2,zmm10 vpxord zmm3,zmm3,zmm11 vpxord zmm4,zmm4,zmm12 vpxord zmm5,zmm5,zmm13 vpxord zmm6,zmm6,zmm14 vpxord zmm7,zmm7,zmm15 vpxord zmm8,zmm8,DWORD PTR [rdi]{1to16} vpxord zmm9,zmm9,DWORD PTR [rdi+0x4]{1to16} vpxord zmm10,zmm10,DWORD PTR [rdi+0x8]{1to16} vpxord zmm11,zmm11,DWORD PTR [rdi+0xc]{1to16} vpxord zmm12,zmm12,DWORD PTR [rdi+0x10]{1to16} vpxord zmm13,zmm13,DWORD PTR [rdi+0x14]{1to16} vpxord zmm14,zmm14,DWORD PTR [rdi+0x18]{1to16} vpxord zmm15,zmm15,DWORD PTR [rdi+0x1c]{1to16} vpunpckldq zmm16,zmm0,zmm1 vpunpckhdq zmm17,zmm0,zmm1 vpunpckldq zmm18,zmm2,zmm3 vpunpckhdq zmm19,zmm2,zmm3 vpunpckldq zmm20,zmm4,zmm5 vpunpckhdq zmm21,zmm4,zmm5 vpunpckldq zmm22,zmm6,zmm7 vpunpckhdq zmm23,zmm6,zmm7 vpunpckldq zmm24,zmm8,zmm9 vpunpckhdq zmm25,zmm8,zmm9 vpunpckldq zmm26,zmm10,zmm11 vpunpckhdq zmm27,zmm10,zmm11 vpunpckldq zmm28,zmm12,zmm13 vpunpckhdq zmm29,zmm12,zmm13 vpunpckldq zmm30,zmm14,zmm15 vpunpckhdq zmm31,zmm14,zmm15 vpunpcklqdq zmm0,zmm16,zmm18 vpunpckhqdq zmm1,zmm16,zmm18 vpunpcklqdq zmm2,zmm17,zmm19 vpunpckhqdq zmm3,zmm17,zmm19 vpunpcklqdq zmm4,zmm20,zmm22 vpunpckhqdq zmm5,zmm20,zmm22 vpunpcklqdq zmm6,zmm21,zmm23 vpunpckhqdq zmm7,zmm21,zmm23 vpunpcklqdq zmm8,zmm24,zmm26 vpunpckhqdq zmm9,zmm24,zmm26 vpunpcklqdq zmm10,zmm25,zmm27 vpunpckhqdq zmm11,zmm25,zmm27 vpunpcklqdq zmm12,zmm28,zmm30 vpunpckhqdq zmm13,zmm28,zmm30 vpunpcklqdq zmm14,zmm29,zmm31 vpunpckhqdq zmm15,zmm29,zmm31 vshufi32x4 zmm16,zmm0,zmm4,0x88 vshufi32x4 zmm17,zmm1,zmm5,0x88 vshufi32x4 zmm18,zmm2,zmm6,0x88 vshufi32x4 zmm19,zmm3,zmm7,0x88 vshufi32x4 zmm20,zmm0,zmm4,0xdd vshufi32x4 zmm21,zmm1,zmm5,0xdd vshufi32x4 zmm22,zmm2,zmm6,0xdd vshufi32x4 zmm23,zmm3,zmm7,0xdd vshufi32x4 zmm24,zmm8,zmm12,0x88 vshufi32x4 zmm25,zmm9,zmm13,0x88 vshufi32x4 zmm26,zmm10,zmm14,0x88 vshufi32x4 zmm27,zmm11,zmm15,0x88 vshufi32x4 zmm28,zmm8,zmm12,0xdd vshufi32x4 zmm29,zmm9,zmm13,0xdd vshufi32x4 zmm30,zmm10,zmm14,0xdd vshufi32x4 zmm31,zmm11,zmm15,0xdd vshufi32x4 zmm0,zmm16,zmm24,0x88 vshufi32x4 zmm1,zmm17,zmm25,0x88 vshufi32x4 zmm2,zmm18,zmm26,0x88 vshufi32x4 zmm3,zmm19,zmm27,0x88 vshufi32x4 zmm4,zmm20,zmm28,0x88 vshufi32x4 zmm5,zmm21,zmm29,0x88 vshufi32x4 zmm6,zmm22,zmm30,0x88 vshufi32x4 zmm7,zmm23,zmm31,0x88 vshufi32x4 zmm8,zmm16,zmm24,0xdd vshufi32x4 zmm9,zmm17,zmm25,0xdd vshufi32x4 zmm10,zmm18,zmm26,0xdd vshufi32x4 zmm11,zmm19,zmm27,0xdd vshufi32x4 zmm12,zmm20,zmm28,0xdd vshufi32x4 zmm13,zmm21,zmm29,0xdd vshufi32x4 zmm14,zmm22,zmm30,0xdd vshufi32x4 zmm15,zmm23,zmm31,0xdd vmovdqu32 ZMMWORD PTR [r9],zmm0 vmovdqu32 ZMMWORD PTR [r9+0x40],zmm1 vmovdqu32 ZMMWORD PTR [r9+0x80],zmm2 vmovdqu32 ZMMWORD PTR [r9+0xc0],zmm3 vmovdqu32 ZMMWORD PTR [r9+0x100],zmm4 vmovdqu32 ZMMWORD PTR [r9+0x140],zmm5 vmovdqu32 ZMMWORD PTR [r9+0x180],zmm6 vmovdqu32 ZMMWORD PTR [r9+0x1c0],zmm7 vmovdqu32 ZMMWORD PTR [r9+0x200],zmm8 vmovdqu32 ZMMWORD PTR [r9+0x240],zmm9 vmovdqu32 ZMMWORD PTR [r9+0x280],zmm10 vmovdqu32 ZMMWORD PTR [r9+0x2c0],zmm11 vmovdqu32 ZMMWORD PTR [r9+0x300],zmm12 vmovdqu32 ZMMWORD PTR [r9+0x340],zmm13 vmovdqu32 ZMMWORD PTR [r9+0x380],zmm14 vmovdqu32 ZMMWORD PTR [r9+0x3c0],zmm15 vmovdqa32 zmm0,ZMMWORD PTR [rsp] vmovdqa32 zmm1,ZMMWORD PTR [rsp+0x40] vpaddd zmm2,zmm0,DWORD PTR [ADD16+rip]{1to16} vpcmpltud k1,zmm2,zmm0 vpaddd zmm1{k1},zmm1,DWORD PTR [ADD1+rip]{1to16} vmovdqa32 ZMMWORD PTR [rsp],zmm2 vmovdqa32 ZMMWORD PTR [rsp+0x40],zmm1 add r9,0x400 sub r10,0x10 cmp r10,0x10 jae 3b test r10,r10 jne 2f 9: vzeroupper mov rsp,rbp pop rbp ret 2: test r10,0x8 je 2f vpbroadcastd ymm16,DWORD PTR [rsi] vpbroadcastd ymm17,DWORD PTR [rsi+0x4] vpbroadcastd ymm18,DWORD PTR [rsi+0x8] vpbroadcastd ymm19,DWORD PTR [rsi+0xc] vpbroadcastd ymm20,DWORD PTR [rsi+0x10] vpbroadcastd ymm21,DWORD PTR [rsi+0x14] vpbroadcastd ymm22,DWORD PTR [rsi+0x18] vpbroadcastd ymm23,DWORD PTR [rsi+0x1c] vpbroadcastd ymm24,DWORD PTR [rsi+0x20] vpbroadcastd ymm25,DWORD PTR [rsi+0x24] vpbroadcastd ymm26,DWORD PTR [rsi+0x28] vpbroadcastd ymm27,DWORD PTR [rsi+0x2c] vpbroadcastd ymm28,DWORD PTR [rsi+0x30] vpbroadcastd ymm29,DWORD PTR [rsi+0x34] vpbroadcastd ymm30,DWORD PTR [rsi+0x38] vpbroadcastd ymm31,DWORD PTR [rsi+0x3c] vpbroadcastd ymm0,DWORD PTR [rdi] vpbroadcastd ymm1,DWORD PTR [rdi+0x4] vpbroadcastd ymm2,DWORD PTR [rdi+0x8] vpbroadcastd ymm3,DWORD PTR [rdi+0xc] vpbroadcastd ymm4,DWORD PTR [rdi+0x10] vpbroadcastd ymm5,DWORD PTR [rdi+0x14] vpbroadcastd ymm6,DWORD PTR [rdi+0x18] vpbroadcastd ymm7,DWORD PTR [rdi+0x1c] vpbroadcastd ymm8,DWORD PTR [BLAKE3_IV_0+rip] vpbroadcastd ymm9,DWORD PTR [BLAKE3_IV_1+rip] vpbroadcastd ymm10,DWORD PTR [BLAKE3_IV_2+rip] vpbroadcastd ymm11,DWORD PTR [BLAKE3_IV_3+rip] vmovdqa ymm12,YMMWORD PTR [rsp] vmovdqa ymm13,YMMWORD PTR [rsp+0x40] vpbroadcastd ymm14,edx vpbroadcastd ymm15,r8d vpaddd ymm0,ymm0,ymm16 vpaddd ymm1,ymm1,ymm18 vpaddd ymm2,ymm2,ymm20 vpaddd ymm3,ymm3,ymm22 vpaddd ymm0,ymm0,ymm4 vpaddd ymm1,ymm1,ymm5 vpaddd ymm2,ymm2,ymm6 vpaddd ymm3,ymm3,ymm7 vpxord ymm12,ymm12,ymm0 vpxord ymm13,ymm13,ymm1 vpxord ymm14,ymm14,ymm2 vpxord ymm15,ymm15,ymm3 vprord ymm12,ymm12,0x10 vprord ymm13,ymm13,0x10 vprord ymm14,ymm14,0x10 vprord ymm15,ymm15,0x10 vpaddd ymm8,ymm8,ymm12 vpaddd ymm9,ymm9,ymm13 vpaddd ymm10,ymm10,ymm14 vpaddd ymm11,ymm11,ymm15 vpxord ymm4,ymm4,ymm8 vpxord ymm5,ymm5,ymm9 vpxord ymm6,ymm6,ymm10 vpxord ymm7,ymm7,ymm11 vprord ymm4,ymm4,0xc vprord ymm5,ymm5,0xc vprord ymm6,ymm6,0xc vprord ymm7,ymm7,0xc vpaddd ymm0,ymm0,ymm17 vpaddd ymm1,ymm1,ymm19 vpaddd ymm2,ymm2,ymm21 vpaddd ymm3,ymm3,ymm23 vpaddd ymm0,ymm0,ymm4 vpaddd ymm1,ymm1,ymm5 vpaddd ymm2,ymm2,ymm6 vpaddd ymm3,ymm3,ymm7 vpxord ymm12,ymm12,ymm0 vpxord ymm13,ymm13,ymm1 vpxord ymm14,ymm14,ymm2 vpxord ymm15,ymm15,ymm3 vprord ymm12,ymm12,0x8 vprord ymm13,ymm13,0x8 vprord ymm14,ymm14,0x8 vprord ymm15,ymm15,0x8 vpaddd ymm8,ymm8,ymm12 vpaddd ymm9,ymm9,ymm13 vpaddd ymm10,ymm10,ymm14 vpaddd ymm11,ymm11,ymm15 vpxord ymm4,ymm4,ymm8 vpxord ymm5,ymm5,ymm9 vpxord ymm6,ymm6,ymm10 vpxord ymm7,ymm7,ymm11 vprord ymm4,ymm4,0x7 vprord ymm5,ymm5,0x7 vprord ymm6,ymm6,0x7 vprord ymm7,ymm7,0x7 vpaddd ymm0,ymm0,ymm24 vpaddd ymm1,ymm1,ymm26 vpaddd ymm2,ymm2,ymm28 vpaddd ymm3,ymm3,ymm30 vpaddd ymm0,ymm0,ymm5 vpaddd ymm1,ymm1,ymm6 vpaddd ymm2,ymm2,ymm7 vpaddd ymm3,ymm3,ymm4 vpxord ymm15,ymm15,ymm0 vpxord ymm12,ymm12,ymm1 vpxord ymm13,ymm13,ymm2 vpxord ymm14,ymm14,ymm3 vprord ymm15,ymm15,0x10 vprord ymm12,ymm12,0x10 vprord ymm13,ymm13,0x10 vprord ymm14,ymm14,0x10 vpaddd ymm10,ymm10,ymm15 vpaddd ymm11,ymm11,ymm12 vpaddd ymm8,ymm8,ymm13 vpaddd ymm9,ymm9,ymm14 vpxord ymm5,ymm5,ymm10 vpxord ymm6,ymm6,ymm11 vpxord ymm7,ymm7,ymm8 vpxord ymm4,ymm4,ymm9 vprord ymm5,ymm5,0xc vprord ymm6,ymm6,0xc vprord ymm7,ymm7,0xc vprord ymm4,ymm4,0xc vpaddd ymm0,ymm0,ymm25 vpaddd ymm1,ymm1,ymm27 vpaddd ymm2,ymm2,ymm29 vpaddd ymm3,ymm3,ymm31 vpaddd ymm0,ymm0,ymm5 vpaddd ymm1,ymm1,ymm6 vpaddd ymm2,ymm2,ymm7 vpaddd ymm3,ymm3,ymm4 vpxord ymm15,ymm15,ymm0 vpxord ymm12,ymm12,ymm1 vpxord ymm13,ymm13,ymm2 vpxord ymm14,ymm14,ymm3 vprord ymm15,ymm15,0x8 vprord ymm12,ymm12,0x8 vprord ymm13,ymm13,0x8 vprord ymm14,ymm14,0x8 vpaddd ymm10,ymm10,ymm15 vpaddd ymm11,ymm11,ymm12 vpaddd ymm8,ymm8,ymm13 vpaddd ymm9,ymm9,ymm14 vpxord ymm5,ymm5,ymm10 vpxord ymm6,ymm6,ymm11 vpxord ymm7,ymm7,ymm8 vpxord ymm4,ymm4,ymm9 vprord ymm5,ymm5,0x7 vprord ymm6,ymm6,0x7 vprord ymm7,ymm7,0x7 vprord ymm4,ymm4,0x7 vpaddd ymm0,ymm0,ymm18 vpaddd ymm1,ymm1,ymm19 vpaddd ymm2,ymm2,ymm23 vpaddd ymm3,ymm3,ymm20 vpaddd ymm0,ymm0,ymm4 vpaddd ymm1,ymm1,ymm5 vpaddd ymm2,ymm2,ymm6 vpaddd ymm3,ymm3,ymm7 vpxord ymm12,ymm12,ymm0 vpxord ymm13,ymm13,ymm1 vpxord ymm14,ymm14,ymm2 vpxord ymm15,ymm15,ymm3 vprord ymm12,ymm12,0x10 vprord ymm13,ymm13,0x10 vprord ymm14,ymm14,0x10 vprord ymm15,ymm15,0x10 vpaddd ymm8,ymm8,ymm12 vpaddd ymm9,ymm9,ymm13 vpaddd ymm10,ymm10,ymm14 vpaddd ymm11,ymm11,ymm15 vpxord ymm4,ymm4,ymm8 vpxord ymm5,ymm5,ymm9 vpxord ymm6,ymm6,ymm10 vpxord ymm7,ymm7,ymm11 vprord ymm4,ymm4,0xc vprord ymm5,ymm5,0xc vprord ymm6,ymm6,0xc vprord ymm7,ymm7,0xc vpaddd ymm0,ymm0,ymm22 vpaddd ymm1,ymm1,ymm26 vpaddd ymm2,ymm2,ymm16 vpaddd ymm3,ymm3,ymm29 vpaddd ymm0,ymm0,ymm4 vpaddd ymm1,ymm1,ymm5 vpaddd ymm2,ymm2,ymm6 vpaddd ymm3,ymm3,ymm7 vpxord ymm12,ymm12,ymm0 vpxord ymm13,ymm13,ymm1 vpxord ymm14,ymm14,ymm2 vpxord ymm15,ymm15,ymm3 vprord ymm12,ymm12,0x8 vprord ymm13,ymm13,0x8 vprord ymm14,ymm14,0x8 vprord ymm15,ymm15,0x8 vpaddd ymm8,ymm8,ymm12 vpaddd ymm9,ymm9,ymm13 vpaddd ymm10,ymm10,ymm14 vpaddd ymm11,ymm11,ymm15 vpxord ymm4,ymm4,ymm8 vpxord ymm5,ymm5,ymm9 vpxord ymm6,ymm6,ymm10 vpxord ymm7,ymm7,ymm11 vprord ymm4,ymm4,0x7 vprord ymm5,ymm5,0x7 vprord ymm6,ymm6,0x7 vprord ymm7,ymm7,0x7 vpaddd ymm0,ymm0,ymm17 vpaddd ymm1,ymm1,ymm28 vpaddd ymm2,ymm2,ymm25 vpaddd ymm3,ymm3,ymm31 vpaddd ymm0,ymm0,ymm5 vpaddd ymm1,ymm1,ymm6 vpaddd ymm2,ymm2,ymm7 vpaddd ymm3,ymm3,ymm4 vpxord ymm15,ymm15,ymm0 vpxord ymm12,ymm12,ymm1 vpxord ymm13,ymm13,ymm2 vpxord ymm14,ymm14,ymm3 vprord ymm15,ymm15,0x10 vprord ymm12,ymm12,0x10 vprord ymm13,ymm13,0x10 vprord ymm14,ymm14,0x10 vpaddd ymm10,ymm10,ymm15 vpaddd ymm11,ymm11,ymm12 vpaddd ymm8,ymm8,ymm13 vpaddd ymm9,ymm9,ymm14 vpxord ymm5,ymm5,ymm10 vpxord ymm6,ymm6,ymm11 vpxord ymm7,ymm7,ymm8 vpxord ymm4,ymm4,ymm9 vprord ymm5,ymm5,0xc vprord ymm6,ymm6,0xc vprord ymm7,ymm7,0xc vprord ymm4,ymm4,0xc vpaddd ymm0,ymm0,ymm27 vpaddd ymm1,ymm1,ymm21 vpaddd ymm2,ymm2,ymm30 vpaddd ymm3,ymm3,ymm24 vpaddd ymm0,ymm0,ymm5 vpaddd ymm1,ymm1,ymm6 vpaddd ymm2,ymm2,ymm7 vpaddd ymm3,ymm3,ymm4 vpxord ymm15,ymm15,ymm0 vpxord ymm12,ymm12,ymm1 vpxord ymm13,ymm13,ymm2 vpxord ymm14,ymm14,ymm3 vprord ymm15,ymm15,0x8 vprord ymm12,ymm12,0x8 vprord ymm13,ymm13,0x8 vprord ymm14,ymm14,0x8 vpaddd ymm10,ymm10,ymm15 vpaddd ymm11,ymm11,ymm12 vpaddd ymm8,ymm8,ymm13 vpaddd ymm9,ymm9,ymm14 vpxord ymm5,ymm5,ymm10 vpxord ymm6,ymm6,ymm11 vpxord ymm7,ymm7,ymm8 vpxord ymm4,ymm4,ymm9 vprord ymm5,ymm5,0x7 vprord ymm6,ymm6,0x7 vprord ymm7,ymm7,0x7 vprord ymm4,ymm4,0x7 vpaddd ymm0,ymm0,ymm19 vpaddd ymm1,ymm1,ymm26 vpaddd ymm2,ymm2,ymm29 vpaddd ymm3,ymm3,ymm23 vpaddd ymm0,ymm0,ymm4 vpaddd ymm1,ymm1,ymm5 vpaddd ymm2,ymm2,ymm6 vpaddd ymm3,ymm3,ymm7 vpxord ymm12,ymm12,ymm0 vpxord ymm13,ymm13,ymm1 vpxord ymm14,ymm14,ymm2 vpxord ymm15,ymm15,ymm3 vprord ymm12,ymm12,0x10 vprord ymm13,ymm13,0x10 vprord ymm14,ymm14,0x10 vprord ymm15,ymm15,0x10 vpaddd ymm8,ymm8,ymm12 vpaddd ymm9,ymm9,ymm13 vpaddd ymm10,ymm10,ymm14 vpaddd ymm11,ymm11,ymm15 vpxord ymm4,ymm4,ymm8 vpxord ymm5,ymm5,ymm9 vpxord ymm6,ymm6,ymm10 vpxord ymm7,ymm7,ymm11 vprord ymm4,ymm4,0xc vprord ymm5,ymm5,0xc vprord ymm6,ymm6,0xc vprord ymm7,ymm7,0xc vpaddd ymm0,ymm0,ymm20 vpaddd ymm1,ymm1,ymm28 vpaddd ymm2,ymm2,ymm18 vpaddd ymm3,ymm3,ymm30 vpaddd ymm0,ymm0,ymm4 vpaddd ymm1,ymm1,ymm5 vpaddd ymm2,ymm2,ymm6 vpaddd ymm3,ymm3,ymm7 vpxord ymm12,ymm12,ymm0 vpxord ymm13,ymm13,ymm1 vpxord ymm14,ymm14,ymm2 vpxord ymm15,ymm15,ymm3 vprord ymm12,ymm12,0x8 vprord ymm13,ymm13,0x8 vprord ymm14,ymm14,0x8 vprord ymm15,ymm15,0x8 vpaddd ymm8,ymm8,ymm12 vpaddd ymm9,ymm9,ymm13 vpaddd ymm10,ymm10,ymm14 vpaddd ymm11,ymm11,ymm15 vpxord ymm4,ymm4,ymm8 vpxord ymm5,ymm5,ymm9 vpxord ymm6,ymm6,ymm10 vpxord ymm7,ymm7,ymm11 vprord ymm4,ymm4,0x7 vprord ymm5,ymm5,0x7 vprord ymm6,ymm6,0x7 vprord ymm7,ymm7,0x7 vpaddd ymm0,ymm0,ymm22 vpaddd ymm1,ymm1,ymm25 vpaddd ymm2,ymm2,ymm27 vpaddd ymm3,ymm3,ymm24 vpaddd ymm0,ymm0,ymm5 vpaddd ymm1,ymm1,ymm6 vpaddd ymm2,ymm2,ymm7 vpaddd ymm3,ymm3,ymm4 vpxord ymm15,ymm15,ymm0 vpxord ymm12,ymm12,ymm1 vpxord ymm13,ymm13,ymm2 vpxord ymm14,ymm14,ymm3 vprord ymm15,ymm15,0x10 vprord ymm12,ymm12,0x10 vprord ymm13,ymm13,0x10 vprord ymm14,ymm14,0x10 vpaddd ymm10,ymm10,ymm15 vpaddd ymm11,ymm11,ymm12 vpaddd ymm8,ymm8,ymm13 vpaddd ymm9,ymm9,ymm14 vpxord ymm5,ymm5,ymm10 vpxord ymm6,ymm6,ymm11 vpxord ymm7,ymm7,ymm8 vpxord ymm4,ymm4,ymm9 vprord ymm5,ymm5,0xc vprord ymm6,ymm6,0xc vprord ymm7,ymm7,0xc vprord ymm4,ymm4,0xc vpaddd ymm0,ymm0,ymm21 vpaddd ymm1,ymm1,ymm16 vpaddd ymm2,ymm2,ymm31 vpaddd ymm3,ymm3,ymm17 vpaddd ymm0,ymm0,ymm5 vpaddd ymm1,ymm1,ymm6 vpaddd ymm2,ymm2,ymm7 vpaddd ymm3,ymm3,ymm4 vpxord ymm15,ymm15,ymm0 vpxord ymm12,ymm12,ymm1 vpxord ymm13,ymm13,ymm2 vpxord ymm14,ymm14,ymm3 vprord ymm15,ymm15,0x8 vprord ymm12,ymm12,0x8 vprord ymm13,ymm13,0x8 vprord ymm14,ymm14,0x8 vpaddd ymm10,ymm10,ymm15 vpaddd ymm11,ymm11,ymm12 vpaddd ymm8,ymm8,ymm13 vpaddd ymm9,ymm9,ymm14 vpxord ymm5,ymm5,ymm10 vpxord ymm6,ymm6,ymm11 vpxord ymm7,ymm7,ymm8 vpxord ymm4,ymm4,ymm9 vprord ymm5,ymm5,0x7 vprord ymm6,ymm6,0x7 vprord ymm7,ymm7,0x7 vprord ymm4,ymm4,0x7 vpaddd ymm0,ymm0,ymm26 vpaddd ymm1,ymm1,ymm28 vpaddd ymm2,ymm2,ymm30 vpaddd ymm3,ymm3,ymm29 vpaddd ymm0,ymm0,ymm4 vpaddd ymm1,ymm1,ymm5 vpaddd ymm2,ymm2,ymm6 vpaddd ymm3,ymm3,ymm7 vpxord ymm12,ymm12,ymm0 vpxord ymm13,ymm13,ymm1 vpxord ymm14,ymm14,ymm2 vpxord ymm15,ymm15,ymm3 vprord ymm12,ymm12,0x10 vprord ymm13,ymm13,0x10 vprord ymm14,ymm14,0x10 vprord ymm15,ymm15,0x10 vpaddd ymm8,ymm8,ymm12 vpaddd ymm9,ymm9,ymm13 vpaddd ymm10,ymm10,ymm14 vpaddd ymm11,ymm11,ymm15 vpxord ymm4,ymm4,ymm8 vpxord ymm5,ymm5,ymm9 vpxord ymm6,ymm6,ymm10 vpxord ymm7,ymm7,ymm11 vprord ymm4,ymm4,0xc vprord ymm5,ymm5,0xc vprord ymm6,ymm6,0xc vprord ymm7,ymm7,0xc vpaddd ymm0,ymm0,ymm23 vpaddd ymm1,ymm1,ymm25 vpaddd ymm2,ymm2,ymm19 vpaddd ymm3,ymm3,ymm31 vpaddd ymm0,ymm0,ymm4 vpaddd ymm1,ymm1,ymm5 vpaddd ymm2,ymm2,ymm6 vpaddd ymm3,ymm3,ymm7 vpxord ymm12,ymm12,ymm0 vpxord ymm13,ymm13,ymm1 vpxord ymm14,ymm14,ymm2 vpxord ymm15,ymm15,ymm3 vprord ymm12,ymm12,0x8 vprord ymm13,ymm13,0x8 vprord ymm14,ymm14,0x8 vprord ymm15,ymm15,0x8 vpaddd ymm8,ymm8,ymm12 vpaddd ymm9,ymm9,ymm13 vpaddd ymm10,ymm10,ymm14 vpaddd ymm11,ymm11,ymm15 vpxord ymm4,ymm4,ymm8 vpxord ymm5,ymm5,ymm9 vpxord ymm6,ymm6,ymm10 vpxord ymm7,ymm7,ymm11 vprord ymm4,ymm4,0x7 vprord ymm5,ymm5,0x7 vprord ymm6,ymm6,0x7 vprord ymm7,ymm7,0x7 vpaddd ymm0,ymm0,ymm20 vpaddd ymm1,ymm1,ymm27 vpaddd ymm2,ymm2,ymm21 vpaddd ymm3,ymm3,ymm17 vpaddd ymm0,ymm0,ymm5 vpaddd ymm1,ymm1,ymm6 vpaddd ymm2,ymm2,ymm7 vpaddd ymm3,ymm3,ymm4 vpxord ymm15,ymm15,ymm0 vpxord ymm12,ymm12,ymm1 vpxord ymm13,ymm13,ymm2 vpxord ymm14,ymm14,ymm3 vprord ymm15,ymm15,0x10 vprord ymm12,ymm12,0x10 vprord ymm13,ymm13,0x10 vprord ymm14,ymm14,0x10 vpaddd ymm10,ymm10,ymm15 vpaddd ymm11,ymm11,ymm12 vpaddd ymm8,ymm8,ymm13 vpaddd ymm9,ymm9,ymm14 vpxord ymm5,ymm5,ymm10 vpxord ymm6,ymm6,ymm11 vpxord ymm7,ymm7,ymm8 vpxord ymm4,ymm4,ymm9 vprord ymm5,ymm5,0xc vprord ymm6,ymm6,0xc vprord ymm7,ymm7,0xc vprord ymm4,ymm4,0xc vpaddd ymm0,ymm0,ymm16 vpaddd ymm1,ymm1,ymm18 vpaddd ymm2,ymm2,ymm24 vpaddd ymm3,ymm3,ymm22 vpaddd ymm0,ymm0,ymm5 vpaddd ymm1,ymm1,ymm6 vpaddd ymm2,ymm2,ymm7 vpaddd ymm3,ymm3,ymm4 vpxord ymm15,ymm15,ymm0 vpxord ymm12,ymm12,ymm1 vpxord ymm13,ymm13,ymm2 vpxord ymm14,ymm14,ymm3 vprord ymm15,ymm15,0x8 vprord ymm12,ymm12,0x8 vprord ymm13,ymm13,0x8 vprord ymm14,ymm14,0x8 vpaddd ymm10,ymm10,ymm15 vpaddd ymm11,ymm11,ymm12 vpaddd ymm8,ymm8,ymm13 vpaddd ymm9,ymm9,ymm14 vpxord ymm5,ymm5,ymm10 vpxord ymm6,ymm6,ymm11 vpxord ymm7,ymm7,ymm8 vpxord ymm4,ymm4,ymm9 vprord ymm5,ymm5,0x7 vprord ymm6,ymm6,0x7 vprord ymm7,ymm7,0x7 vprord ymm4,ymm4,0x7 vpaddd ymm0,ymm0,ymm28 vpaddd ymm1,ymm1,ymm25 vpaddd ymm2,ymm2,ymm31 vpaddd ymm3,ymm3,ymm30 vpaddd ymm0,ymm0,ymm4 vpaddd ymm1,ymm1,ymm5 vpaddd ymm2,ymm2,ymm6 vpaddd ymm3,ymm3,ymm7 vpxord ymm12,ymm12,ymm0 vpxord ymm13,ymm13,ymm1 vpxord ymm14,ymm14,ymm2 vpxord ymm15,ymm15,ymm3 vprord ymm12,ymm12,0x10 vprord ymm13,ymm13,0x10 vprord ymm14,ymm14,0x10 vprord ymm15,ymm15,0x10 vpaddd ymm8,ymm8,ymm12 vpaddd ymm9,ymm9,ymm13 vpaddd ymm10,ymm10,ymm14 vpaddd ymm11,ymm11,ymm15 vpxord ymm4,ymm4,ymm8 vpxord ymm5,ymm5,ymm9 vpxord ymm6,ymm6,ymm10 vpxord ymm7,ymm7,ymm11 vprord ymm4,ymm4,0xc vprord ymm5,ymm5,0xc vprord ymm6,ymm6,0xc vprord ymm7,ymm7,0xc vpaddd ymm0,ymm0,ymm29 vpaddd ymm1,ymm1,ymm27 vpaddd ymm2,ymm2,ymm26 vpaddd ymm3,ymm3,ymm24 vpaddd ymm0,ymm0,ymm4 vpaddd ymm1,ymm1,ymm5 vpaddd ymm2,ymm2,ymm6 vpaddd ymm3,ymm3,ymm7 vpxord ymm12,ymm12,ymm0 vpxord ymm13,ymm13,ymm1 vpxord ymm14,ymm14,ymm2 vpxord ymm15,ymm15,ymm3 vprord ymm12,ymm12,0x8 vprord ymm13,ymm13,0x8 vprord ymm14,ymm14,0x8 vprord ymm15,ymm15,0x8 vpaddd ymm8,ymm8,ymm12 vpaddd ymm9,ymm9,ymm13 vpaddd ymm10,ymm10,ymm14 vpaddd ymm11,ymm11,ymm15 vpxord ymm4,ymm4,ymm8 vpxord ymm5,ymm5,ymm9 vpxord ymm6,ymm6,ymm10 vpxord ymm7,ymm7,ymm11 vprord ymm4,ymm4,0x7 vprord ymm5,ymm5,0x7 vprord ymm6,ymm6,0x7 vprord ymm7,ymm7,0x7 vpaddd ymm0,ymm0,ymm23 vpaddd ymm1,ymm1,ymm21 vpaddd ymm2,ymm2,ymm16 vpaddd ymm3,ymm3,ymm22 vpaddd ymm0,ymm0,ymm5 vpaddd ymm1,ymm1,ymm6 vpaddd ymm2,ymm2,ymm7 vpaddd ymm3,ymm3,ymm4 vpxord ymm15,ymm15,ymm0 vpxord ymm12,ymm12,ymm1 vpxord ymm13,ymm13,ymm2 vpxord ymm14,ymm14,ymm3 vprord ymm15,ymm15,0x10 vprord ymm12,ymm12,0x10 vprord ymm13,ymm13,0x10 vprord ymm14,ymm14,0x10 vpaddd ymm10,ymm10,ymm15 vpaddd ymm11,ymm11,ymm12 vpaddd ymm8,ymm8,ymm13 vpaddd ymm9,ymm9,ymm14 vpxord ymm5,ymm5,ymm10 vpxord ymm6,ymm6,ymm11 vpxord ymm7,ymm7,ymm8 vpxord ymm4,ymm4,ymm9 vprord ymm5,ymm5,0xc vprord ymm6,ymm6,0xc vprord ymm7,ymm7,0xc vprord ymm4,ymm4,0xc vpaddd ymm0,ymm0,ymm18 vpaddd ymm1,ymm1,ymm19 vpaddd ymm2,ymm2,ymm17 vpaddd ymm3,ymm3,ymm20 vpaddd ymm0,ymm0,ymm5 vpaddd ymm1,ymm1,ymm6 vpaddd ymm2,ymm2,ymm7 vpaddd ymm3,ymm3,ymm4 vpxord ymm15,ymm15,ymm0 vpxord ymm12,ymm12,ymm1 vpxord ymm13,ymm13,ymm2 vpxord ymm14,ymm14,ymm3 vprord ymm15,ymm15,0x8 vprord ymm12,ymm12,0x8 vprord ymm13,ymm13,0x8 vprord ymm14,ymm14,0x8 vpaddd ymm10,ymm10,ymm15 vpaddd ymm11,ymm11,ymm12 vpaddd ymm8,ymm8,ymm13 vpaddd ymm9,ymm9,ymm14 vpxord ymm5,ymm5,ymm10 vpxord ymm6,ymm6,ymm11 vpxord ymm7,ymm7,ymm8 vpxord ymm4,ymm4,ymm9 vprord ymm5,ymm5,0x7 vprord ymm6,ymm6,0x7 vprord ymm7,ymm7,0x7 vprord ymm4,ymm4,0x7 vpaddd ymm0,ymm0,ymm25 vpaddd ymm1,ymm1,ymm27 vpaddd ymm2,ymm2,ymm24 vpaddd ymm3,ymm3,ymm31 vpaddd ymm0,ymm0,ymm4 vpaddd ymm1,ymm1,ymm5 vpaddd ymm2,ymm2,ymm6 vpaddd ymm3,ymm3,ymm7 vpxord ymm12,ymm12,ymm0 vpxord ymm13,ymm13,ymm1 vpxord ymm14,ymm14,ymm2 vpxord ymm15,ymm15,ymm3 vprord ymm12,ymm12,0x10 vprord ymm13,ymm13,0x10 vprord ymm14,ymm14,0x10 vprord ymm15,ymm15,0x10 vpaddd ymm8,ymm8,ymm12 vpaddd ymm9,ymm9,ymm13 vpaddd ymm10,ymm10,ymm14 vpaddd ymm11,ymm11,ymm15 vpxord ymm4,ymm4,ymm8 vpxord ymm5,ymm5,ymm9 vpxord ymm6,ymm6,ymm10 vpxord ymm7,ymm7,ymm11 vprord ymm4,ymm4,0xc vprord ymm5,ymm5,0xc vprord ymm6,ymm6,0xc vprord ymm7,ymm7,0xc vpaddd ymm0,ymm0,ymm30 vpaddd ymm1,ymm1,ymm21 vpaddd ymm2,ymm2,ymm28 vpaddd ymm3,ymm3,ymm17 vpaddd ymm0,ymm0,ymm4 vpaddd ymm1,ymm1,ymm5 vpaddd ymm2,ymm2,ymm6 vpaddd ymm3,ymm3,ymm7 vpxord ymm12,ymm12,ymm0 vpxord ymm13,ymm13,ymm1 vpxord ymm14,ymm14,ymm2 vpxord ymm15,ymm15,ymm3 vprord ymm12,ymm12,0x8 vprord ymm13,ymm13,0x8 vprord ymm14,ymm14,0x8 vprord ymm15,ymm15,0x8 vpaddd ymm8,ymm8,ymm12 vpaddd ymm9,ymm9,ymm13 vpaddd ymm10,ymm10,ymm14 vpaddd ymm11,ymm11,ymm15 vpxord ymm4,ymm4,ymm8 vpxord ymm5,ymm5,ymm9 vpxord ymm6,ymm6,ymm10 vpxord ymm7,ymm7,ymm11 vprord ymm4,ymm4,0x7 vprord ymm5,ymm5,0x7 vprord ymm6,ymm6,0x7 vprord ymm7,ymm7,0x7 vpaddd ymm0,ymm0,ymm29 vpaddd ymm1,ymm1,ymm16 vpaddd ymm2,ymm2,ymm18 vpaddd ymm3,ymm3,ymm20 vpaddd ymm0,ymm0,ymm5 vpaddd ymm1,ymm1,ymm6 vpaddd ymm2,ymm2,ymm7 vpaddd ymm3,ymm3,ymm4 vpxord ymm15,ymm15,ymm0 vpxord ymm12,ymm12,ymm1 vpxord ymm13,ymm13,ymm2 vpxord ymm14,ymm14,ymm3 vprord ymm15,ymm15,0x10 vprord ymm12,ymm12,0x10 vprord ymm13,ymm13,0x10 vprord ymm14,ymm14,0x10 vpaddd ymm10,ymm10,ymm15 vpaddd ymm11,ymm11,ymm12 vpaddd ymm8,ymm8,ymm13 vpaddd ymm9,ymm9,ymm14 vpxord ymm5,ymm5,ymm10 vpxord ymm6,ymm6,ymm11 vpxord ymm7,ymm7,ymm8 vpxord ymm4,ymm4,ymm9 vprord ymm5,ymm5,0xc vprord ymm6,ymm6,0xc vprord ymm7,ymm7,0xc vprord ymm4,ymm4,0xc vpaddd ymm0,ymm0,ymm19 vpaddd ymm1,ymm1,ymm26 vpaddd ymm2,ymm2,ymm22 vpaddd ymm3,ymm3,ymm23 vpaddd ymm0,ymm0,ymm5 vpaddd ymm1,ymm1,ymm6 vpaddd ymm2,ymm2,ymm7 vpaddd ymm3,ymm3,ymm4 vpxord ymm15,ymm15,ymm0 vpxord ymm12,ymm12,ymm1 vpxord ymm13,ymm13,ymm2 vpxord ymm14,ymm14,ymm3 vprord ymm15,ymm15,0x8 vprord ymm12,ymm12,0x8 vprord ymm13,ymm13,0x8 vprord ymm14,ymm14,0x8 vpaddd ymm10,ymm10,ymm15 vpaddd ymm11,ymm11,ymm12 vpaddd ymm8,ymm8,ymm13 vpaddd ymm9,ymm9,ymm14 vpxord ymm5,ymm5,ymm10 vpxord ymm6,ymm6,ymm11 vpxord ymm7,ymm7,ymm8 vpxord ymm4,ymm4,ymm9 vprord ymm5,ymm5,0x7 vprord ymm6,ymm6,0x7 vprord ymm7,ymm7,0x7 vprord ymm4,ymm4,0x7 vpaddd ymm0,ymm0,ymm27 vpaddd ymm1,ymm1,ymm21 vpaddd ymm2,ymm2,ymm17 vpaddd ymm3,ymm3,ymm24 vpaddd ymm0,ymm0,ymm4 vpaddd ymm1,ymm1,ymm5 vpaddd ymm2,ymm2,ymm6 vpaddd ymm3,ymm3,ymm7 vpxord ymm12,ymm12,ymm0 vpxord ymm13,ymm13,ymm1 vpxord ymm14,ymm14,ymm2 vpxord ymm15,ymm15,ymm3 vprord ymm12,ymm12,0x10 vprord ymm13,ymm13,0x10 vprord ymm14,ymm14,0x10 vprord ymm15,ymm15,0x10 vpaddd ymm8,ymm8,ymm12 vpaddd ymm9,ymm9,ymm13 vpaddd ymm10,ymm10,ymm14 vpaddd ymm11,ymm11,ymm15 vpxord ymm4,ymm4,ymm8 vpxord ymm5,ymm5,ymm9 vpxord ymm6,ymm6,ymm10 vpxord ymm7,ymm7,ymm11 vprord ymm4,ymm4,0xc vprord ymm5,ymm5,0xc vprord ymm6,ymm6,0xc vprord ymm7,ymm7,0xc vpaddd ymm0,ymm0,ymm31 vpaddd ymm1,ymm1,ymm16 vpaddd ymm2,ymm2,ymm25 vpaddd ymm3,ymm3,ymm22 vpaddd ymm0,ymm0,ymm4 vpaddd ymm1,ymm1,ymm5 vpaddd ymm2,ymm2,ymm6 vpaddd ymm3,ymm3,ymm7 vpxord ymm12,ymm12,ymm0 vpxord ymm13,ymm13,ymm1 vpxord ymm14,ymm14,ymm2 vpxord ymm15,ymm15,ymm3 vprord ymm12,ymm12,0x8 vprord ymm13,ymm13,0x8 vprord ymm14,ymm14,0x8 vprord ymm15,ymm15,0x8 vpaddd ymm8,ymm8,ymm12 vpaddd ymm9,ymm9,ymm13 vpaddd ymm10,ymm10,ymm14 vpaddd ymm11,ymm11,ymm15 vpxord ymm4,ymm4,ymm8 vpxord ymm5,ymm5,ymm9 vpxord ymm6,ymm6,ymm10 vpxord ymm7,ymm7,ymm11 vprord ymm4,ymm4,0x7 vprord ymm5,ymm5,0x7 vprord ymm6,ymm6,0x7 vprord ymm7,ymm7,0x7 vpaddd ymm0,ymm0,ymm30 vpaddd ymm1,ymm1,ymm18 vpaddd ymm2,ymm2,ymm19 vpaddd ymm3,ymm3,ymm23 vpaddd ymm0,ymm0,ymm5 vpaddd ymm1,ymm1,ymm6 vpaddd ymm2,ymm2,ymm7 vpaddd ymm3,ymm3,ymm4 vpxord ymm15,ymm15,ymm0 vpxord ymm12,ymm12,ymm1 vpxord ymm13,ymm13,ymm2 vpxord ymm14,ymm14,ymm3 vprord ymm15,ymm15,0x10 vprord ymm12,ymm12,0x10 vprord ymm13,ymm13,0x10 vprord ymm14,ymm14,0x10 vpaddd ymm10,ymm10,ymm15 vpaddd ymm11,ymm11,ymm12 vpaddd ymm8,ymm8,ymm13 vpaddd ymm9,ymm9,ymm14 vpxord ymm5,ymm5,ymm10 vpxord ymm6,ymm6,ymm11 vpxord ymm7,ymm7,ymm8 vpxord ymm4,ymm4,ymm9 vprord ymm5,ymm5,0xc vprord ymm6,ymm6,0xc vprord ymm7,ymm7,0xc vprord ymm4,ymm4,0xc vpaddd ymm0,ymm0,ymm26 vpaddd ymm1,ymm1,ymm28 vpaddd ymm2,ymm2,ymm20 vpaddd ymm3,ymm3,ymm29 vpaddd ymm0,ymm0,ymm5 vpaddd ymm1,ymm1,ymm6 vpaddd ymm2,ymm2,ymm7 vpaddd ymm3,ymm3,ymm4 vpxord ymm15,ymm15,ymm0 vpxord ymm12,ymm12,ymm1 vpxord ymm13,ymm13,ymm2 vpxord ymm14,ymm14,ymm3 vprord ymm15,ymm15,0x8 vprord ymm12,ymm12,0x8 vprord ymm13,ymm13,0x8 vprord ymm14,ymm14,0x8 vpaddd ymm10,ymm10,ymm15 vpaddd ymm11,ymm11,ymm12 vpaddd ymm8,ymm8,ymm13 vpaddd ymm9,ymm9,ymm14 vpxord ymm5,ymm5,ymm10 vpxord ymm6,ymm6,ymm11 vpxord ymm7,ymm7,ymm8 vpxord ymm4,ymm4,ymm9 vprord ymm5,ymm5,0x7 vprord ymm6,ymm6,0x7 vprord ymm7,ymm7,0x7 vprord ymm4,ymm4,0x7 vpxor ymm0,ymm0,ymm8 vpxor ymm1,ymm1,ymm9 vpxor ymm2,ymm2,ymm10 vpxor ymm3,ymm3,ymm11 vpxor ymm4,ymm4,ymm12 vpxor ymm5,ymm5,ymm13 vpxor ymm6,ymm6,ymm14 vpxor ymm7,ymm7,ymm15 vpxord ymm8,ymm8,DWORD PTR [rdi]{1to8} vpxord ymm9,ymm9,DWORD PTR [rdi+0x4]{1to8} vpxord ymm10,ymm10,DWORD PTR [rdi+0x8]{1to8} vpxord ymm11,ymm11,DWORD PTR [rdi+0xc]{1to8} vpxord ymm12,ymm12,DWORD PTR [rdi+0x10]{1to8} vpxord ymm13,ymm13,DWORD PTR [rdi+0x14]{1to8} vpxord ymm14,ymm14,DWORD PTR [rdi+0x18]{1to8} vpxord ymm15,ymm15,DWORD PTR [rdi+0x1c]{1to8} vpunpckldq ymm16,ymm0,ymm1 vpunpckhdq ymm17,ymm0,ymm1 vpunpckldq ymm18,ymm2,ymm3 vpunpckhdq ymm19,ymm2,ymm3 vpunpckldq ymm20,ymm4,ymm5 vpunpckhdq ymm21,ymm4,ymm5 vpunpckldq ymm22,ymm6,ymm7 vpunpckhdq ymm23,ymm6,ymm7 vpunpckldq ymm24,ymm8,ymm9 vpunpckhdq ymm25,ymm8,ymm9 vpunpckldq ymm26,ymm10,ymm11 vpunpckhdq ymm27,ymm10,ymm11 vpunpckldq ymm28,ymm12,ymm13 vpunpckhdq ymm29,ymm12,ymm13 vpunpckldq ymm30,ymm14,ymm15 vpunpckhdq ymm31,ymm14,ymm15 vpunpcklqdq ymm0,ymm16,ymm18 vpunpckhqdq ymm1,ymm16,ymm18 vpunpcklqdq ymm2,ymm17,ymm19 vpunpckhqdq ymm3,ymm17,ymm19 vpunpcklqdq ymm4,ymm20,ymm22 vpunpckhqdq ymm5,ymm20,ymm22 vpunpcklqdq ymm6,ymm21,ymm23 vpunpckhqdq ymm7,ymm21,ymm23 vpunpcklqdq ymm8,ymm24,ymm26 vpunpckhqdq ymm9,ymm24,ymm26 vpunpcklqdq ymm10,ymm25,ymm27 vpunpckhqdq ymm11,ymm25,ymm27 vpunpcklqdq ymm12,ymm28,ymm30 vpunpckhqdq ymm13,ymm28,ymm30 vpunpcklqdq ymm14,ymm29,ymm31 vpunpckhqdq ymm15,ymm29,ymm31 vshufi32x4 ymm16,ymm0,ymm4,0x0 vshufi32x4 ymm17,ymm8,ymm12,0x0 vshufi32x4 ymm18,ymm1,ymm5,0x0 vshufi32x4 ymm19,ymm9,ymm13,0x0 vshufi32x4 ymm20,ymm2,ymm6,0x0 vshufi32x4 ymm21,ymm10,ymm14,0x0 vshufi32x4 ymm22,ymm3,ymm7,0x0 vshufi32x4 ymm23,ymm11,ymm15,0x0 vshufi32x4 ymm24,ymm0,ymm4,0x3 vshufi32x4 ymm25,ymm8,ymm12,0x3 vshufi32x4 ymm26,ymm1,ymm5,0x3 vshufi32x4 ymm27,ymm9,ymm13,0x3 vshufi32x4 ymm28,ymm2,ymm6,0x3 vshufi32x4 ymm29,ymm10,ymm14,0x3 vshufi32x4 ymm30,ymm3,ymm7,0x3 vshufi32x4 ymm31,ymm11,ymm15,0x3 vmovdqu32 YMMWORD PTR [r9],ymm16 vmovdqu32 YMMWORD PTR [r9+0x20],ymm17 vmovdqu32 YMMWORD PTR [r9+0x40],ymm18 vmovdqu32 YMMWORD PTR [r9+0x60],ymm19 vmovdqu32 YMMWORD PTR [r9+0x80],ymm20 vmovdqu32 YMMWORD PTR [r9+0xa0],ymm21 vmovdqu32 YMMWORD PTR [r9+0xc0],ymm22 vmovdqu32 YMMWORD PTR [r9+0xe0],ymm23 vmovdqu32 YMMWORD PTR [r9+0x100],ymm24 vmovdqu32 YMMWORD PTR [r9+0x120],ymm25 vmovdqu32 YMMWORD PTR [r9+0x140],ymm26 vmovdqu32 YMMWORD PTR [r9+0x160],ymm27 vmovdqu32 YMMWORD PTR [r9+0x180],ymm28 vmovdqu32 YMMWORD PTR [r9+0x1a0],ymm29 vmovdqu32 YMMWORD PTR [r9+0x1c0],ymm30 vmovdqu32 YMMWORD PTR [r9+0x1e0],ymm31 vmovdqa ymm0,YMMWORD PTR [rsp+0x20] vmovdqa ymm1,YMMWORD PTR [rsp+0x60] vmovdqa YMMWORD PTR [rsp],ymm0 vmovdqa YMMWORD PTR [rsp+0x40],ymm1 add r9,0x200 sub r10,0x8 2: test r10,0x4 je 2f vbroadcasti32x4 zmm0,XMMWORD PTR [rdi] vbroadcasti32x4 zmm1,XMMWORD PTR [rdi+0x10] vbroadcasti32x4 zmm2,XMMWORD PTR [BLAKE3_IV+rip] vmovdqa xmm12,XMMWORD PTR [rsp] vmovdqa xmm13,XMMWORD PTR [rsp+0x40] vpunpckldq xmm14,xmm12,xmm13 vpunpckhdq xmm15,xmm12,xmm13 vpermq ymm14,ymm14,0xdc vpermq ymm15,ymm15,0xdc vpbroadcastd zmm12,edx vinserti64x4 zmm13,zmm14,ymm15,0x1 mov eax,0x4444 kmovw k2,eax vpblendmd zmm13{k2},zmm13,zmm12 vpbroadcastd zmm15,r8d mov eax,0x8888 kmovw k4,eax vpblendmd zmm3{k4},zmm13,zmm15 mov eax,0xaaaa kmovw k3,eax vbroadcasti32x4 zmm8,XMMWORD PTR [rsi] vbroadcasti32x4 zmm9,XMMWORD PTR [rsi+0x10] vshufps zmm4,zmm8,zmm9,0x88 vshufps zmm5,zmm8,zmm9,0xdd vbroadcasti32x4 zmm8,XMMWORD PTR [rsi+0x20] vbroadcasti32x4 zmm9,XMMWORD PTR [rsi+0x30] vshufps zmm6,zmm8,zmm9,0x88 vshufps zmm7,zmm8,zmm9,0xdd vpshufd zmm6,zmm6,0x93 vpshufd zmm7,zmm7,0x93 mov al,0x7 3: vpaddd zmm0,zmm0,zmm4 vpaddd zmm0,zmm0,zmm1 vpxord zmm3,zmm3,zmm0 vprord zmm3,zmm3,0x10 vpaddd zmm2,zmm2,zmm3 vpxord zmm1,zmm1,zmm2 vprord zmm1,zmm1,0xc vpaddd zmm0,zmm0,zmm5 vpaddd zmm0,zmm0,zmm1 vpxord zmm3,zmm3,zmm0 vprord zmm3,zmm3,0x8 vpaddd zmm2,zmm2,zmm3 vpxord zmm1,zmm1,zmm2 vprord zmm1,zmm1,0x7 vpshufd zmm0,zmm0,0x93 vpshufd zmm3,zmm3,0x4e vpshufd zmm2,zmm2,0x39 vpaddd zmm0,zmm0,zmm6 vpaddd zmm0,zmm0,zmm1 vpxord zmm3,zmm3,zmm0 vprord zmm3,zmm3,0x10 vpaddd zmm2,zmm2,zmm3 vpxord zmm1,zmm1,zmm2 vprord zmm1,zmm1,0xc vpaddd zmm0,zmm0,zmm7 vpaddd zmm0,zmm0,zmm1 vpxord zmm3,zmm3,zmm0 vprord zmm3,zmm3,0x8 vpaddd zmm2,zmm2,zmm3 vpxord zmm1,zmm1,zmm2 vprord zmm1,zmm1,0x7 vpshufd zmm0,zmm0,0x39 vpshufd zmm3,zmm3,0x4e vpshufd zmm2,zmm2,0x93 dec al je 3f vshufps zmm8,zmm4,zmm5,0xd6 vpshufd zmm9,zmm4,0xf vpshufd zmm4,zmm8,0x39 vshufps zmm8,zmm6,zmm7,0xfa vpblendmd zmm9{k3},zmm9,zmm8 vpunpcklqdq zmm8,zmm7,zmm5 vpblendmd zmm8{k4},zmm8,zmm6 vpshufd zmm8,zmm8,0x78 vpunpckhdq zmm5,zmm5,zmm7 vpunpckldq zmm6,zmm6,zmm5 vpshufd zmm7,zmm6,0x1e vmovdqa32 zmm5,zmm9 vmovdqa32 zmm6,zmm8 jmp 3b 3: vpxord zmm0,zmm0,zmm2 vpxord zmm1,zmm1,zmm3 vbroadcasti32x4 zmm8,XMMWORD PTR [rdi] vbroadcasti32x4 zmm9,XMMWORD PTR [rdi+0x10] vpxord zmm2,zmm2,zmm8 vpxord zmm3,zmm3,zmm9 vmovdqu XMMWORD PTR [r9],xmm0 vmovdqu XMMWORD PTR [r9+0x10],xmm1 vmovdqu XMMWORD PTR [r9+0x20],xmm2 vmovdqu XMMWORD PTR [r9+0x30],xmm3 vextracti128 XMMWORD PTR [r9+0x40],ymm0,0x1 vextracti128 XMMWORD PTR [r9+0x50],ymm1,0x1 vextracti128 XMMWORD PTR [r9+0x60],ymm2,0x1 vextracti128 XMMWORD PTR [r9+0x70],ymm3,0x1 vextracti32x4 XMMWORD PTR [r9+0x80],zmm0,0x2 vextracti32x4 XMMWORD PTR [r9+0x90],zmm1,0x2 vextracti32x4 XMMWORD PTR [r9+0xa0],zmm2,0x2 vextracti32x4 XMMWORD PTR [r9+0xb0],zmm3,0x2 vextracti32x4 XMMWORD PTR [r9+0xc0],zmm0,0x3 vextracti32x4 XMMWORD PTR [r9+0xd0],zmm1,0x3 vextracti32x4 XMMWORD PTR [r9+0xe0],zmm2,0x3 vextracti32x4 XMMWORD PTR [r9+0xf0],zmm3,0x3 vmovdqa xmm0,XMMWORD PTR [rsp+0x10] vmovdqa xmm1,XMMWORD PTR [rsp+0x50] vmovdqa XMMWORD PTR [rsp],xmm0 vmovdqa XMMWORD PTR [rsp+0x40],xmm1 add r9,0x100 sub r10,0x4 2: test r10,0x2 je 2f vbroadcasti128 ymm0,XMMWORD PTR [rdi] vbroadcasti128 ymm1,XMMWORD PTR [rdi+0x10] vmovd xmm13,DWORD PTR [rsp] vpinsrd xmm13,xmm13,DWORD PTR [rsp+0x40],0x1 vpinsrd xmm13,xmm13,edx,0x2 vmovd xmm14,DWORD PTR [rsp+0x4] vpinsrd xmm14,xmm14,DWORD PTR [rsp+0x44],0x1 vpinsrd xmm14,xmm14,edx,0x2 vinserti128 ymm13,ymm13,xmm14,0x1 vbroadcasti128 ymm2,XMMWORD PTR [BLAKE3_IV+rip] vpbroadcastd ymm8,r8d vpblendd ymm3,ymm13,ymm8,0x88 vbroadcasti128 ymm8,XMMWORD PTR [rsi] vbroadcasti128 ymm9,XMMWORD PTR [rsi+0x10] vshufps ymm4,ymm8,ymm9,0x88 vshufps ymm5,ymm8,ymm9,0xdd vbroadcasti128 ymm8,XMMWORD PTR [rsi+0x20] vbroadcasti128 ymm9,XMMWORD PTR [rsi+0x30] vshufps ymm6,ymm8,ymm9,0x88 vshufps ymm7,ymm8,ymm9,0xdd vpshufd ymm6,ymm6,0x93 vpshufd ymm7,ymm7,0x93 mov al,0x7 3: vpaddd ymm0,ymm0,ymm4 vpaddd ymm0,ymm0,ymm1 vpxord ymm3,ymm3,ymm0 vprord ymm3,ymm3,0x10 vpaddd ymm2,ymm2,ymm3 vpxord ymm1,ymm1,ymm2 vprord ymm1,ymm1,0xc vpaddd ymm0,ymm0,ymm5 vpaddd ymm0,ymm0,ymm1 vpxord ymm3,ymm3,ymm0 vprord ymm3,ymm3,0x8 vpaddd ymm2,ymm2,ymm3 vpxord ymm1,ymm1,ymm2 vprord ymm1,ymm1,0x7 vpshufd ymm0,ymm0,0x93 vpshufd ymm3,ymm3,0x4e vpshufd ymm2,ymm2,0x39 vpaddd ymm0,ymm0,ymm6 vpaddd ymm0,ymm0,ymm1 vpxord ymm3,ymm3,ymm0 vprord ymm3,ymm3,0x10 vpaddd ymm2,ymm2,ymm3 vpxord ymm1,ymm1,ymm2 vprord ymm1,ymm1,0xc vpaddd ymm0,ymm0,ymm7 vpaddd ymm0,ymm0,ymm1 vpxord ymm3,ymm3,ymm0 vprord ymm3,ymm3,0x8 vpaddd ymm2,ymm2,ymm3 vpxord ymm1,ymm1,ymm2 vprord ymm1,ymm1,0x7 vpshufd ymm0,ymm0,0x39 vpshufd ymm3,ymm3,0x4e vpshufd ymm2,ymm2,0x93 dec al je 3f vshufps ymm8,ymm4,ymm5,0xd6 vpshufd ymm9,ymm4,0xf vpshufd ymm4,ymm8,0x39 vshufps ymm8,ymm6,ymm7,0xfa vpblendd ymm9,ymm9,ymm8,0xaa vpunpcklqdq ymm8,ymm7,ymm5 vpblendd ymm8,ymm8,ymm6,0x88 vpshufd ymm8,ymm8,0x78 vpunpckhdq ymm5,ymm5,ymm7 vpunpckldq ymm6,ymm6,ymm5 vpshufd ymm7,ymm6,0x1e vmovdqa ymm5,ymm9 vmovdqa ymm6,ymm8 jmp 3b 3: vpxor ymm0,ymm0,ymm2 vpxor ymm1,ymm1,ymm3 vbroadcasti128 ymm8,XMMWORD PTR [rdi] vbroadcasti128 ymm9,XMMWORD PTR [rdi+0x10] vpxor ymm2,ymm2,ymm8 vpxor ymm3,ymm3,ymm9 vmovdqu XMMWORD PTR [r9],xmm0 vmovdqu XMMWORD PTR [r9+0x10],xmm1 vmovdqu XMMWORD PTR [r9+0x20],xmm2 vmovdqu XMMWORD PTR [r9+0x30],xmm3 vextracti128 XMMWORD PTR [r9+0x40],ymm0,0x1 vextracti128 XMMWORD PTR [r9+0x50],ymm1,0x1 vextracti128 XMMWORD PTR [r9+0x60],ymm2,0x1 vextracti128 XMMWORD PTR [r9+0x70],ymm3,0x1 vmovdqu xmm0,XMMWORD PTR [rsp+0x8] vmovdqu xmm1,XMMWORD PTR [rsp+0x48] vmovdqa XMMWORD PTR [rsp],xmm0 vmovdqa XMMWORD PTR [rsp+0x40],xmm1 add r9,0x80 sub r10,0x2 2: test r10,0x1 je 9b vmovdqu xmm0,XMMWORD PTR [rdi] vmovdqu xmm1,XMMWORD PTR [rdi+0x10] vmovd xmm14,DWORD PTR [rsp] vpinsrd xmm14,xmm14,DWORD PTR [rsp+0x40],0x1 vpinsrd xmm14,xmm14,edx,0x2 vmovdqa xmm2,XMMWORD PTR [BLAKE3_IV+rip] vpinsrd xmm3,xmm14,r8d,0x3 vmovups xmm8,XMMWORD PTR [rsi] vmovups xmm9,XMMWORD PTR [rsi+0x10] vshufps xmm4,xmm8,xmm9,0x88 vshufps xmm5,xmm8,xmm9,0xdd vmovups xmm8,XMMWORD PTR [rsi+0x20] vmovups xmm9,XMMWORD PTR [rsi+0x30] vshufps xmm6,xmm8,xmm9,0x88 vshufps xmm7,xmm8,xmm9,0xdd vpshufd xmm6,xmm6,0x93 vpshufd xmm7,xmm7,0x93 mov al,0x7 3: vpaddd xmm0,xmm0,xmm4 vpaddd xmm0,xmm0,xmm1 vpxord xmm3,xmm3,xmm0 vprord xmm3,xmm3,0x10 vpaddd xmm2,xmm2,xmm3 vpxord xmm1,xmm1,xmm2 vprord xmm1,xmm1,0xc vpaddd xmm0,xmm0,xmm5 vpaddd xmm0,xmm0,xmm1 vpxord xmm3,xmm3,xmm0 vprord xmm3,xmm3,0x8 vpaddd xmm2,xmm2,xmm3 vpxord xmm1,xmm1,xmm2 vprord xmm1,xmm1,0x7 vpshufd xmm0,xmm0,0x93 vpshufd xmm3,xmm3,0x4e vpshufd xmm2,xmm2,0x39 vpaddd xmm0,xmm0,xmm6 vpaddd xmm0,xmm0,xmm1 vpxord xmm3,xmm3,xmm0 vprord xmm3,xmm3,0x10 vpaddd xmm2,xmm2,xmm3 vpxord xmm1,xmm1,xmm2 vprord xmm1,xmm1,0xc vpaddd xmm0,xmm0,xmm7 vpaddd xmm0,xmm0,xmm1 vpxord xmm3,xmm3,xmm0 vprord xmm3,xmm3,0x8 vpaddd xmm2,xmm2,xmm3 vpxord xmm1,xmm1,xmm2 vprord xmm1,xmm1,0x7 vpshufd xmm0,xmm0,0x39 vpshufd xmm3,xmm3,0x4e vpshufd xmm2,xmm2,0x93 dec al je 3f vshufps xmm8,xmm4,xmm5,0xd6 vpshufd xmm9,xmm4,0xf vpshufd xmm4,xmm8,0x39 vshufps xmm8,xmm6,xmm7,0xfa vpblendd xmm9,xmm9,xmm8,0xaa vpunpcklqdq xmm8,xmm7,xmm5 vpblendd xmm8,xmm8,xmm6,0x88 vpshufd xmm8,xmm8,0x78 vpunpckhdq xmm5,xmm5,xmm7 vpunpckldq xmm6,xmm6,xmm5 vpshufd xmm7,xmm6,0x1e vmovdqa xmm5,xmm9 vmovdqa xmm6,xmm8 jmp 3b 3: vpxor xmm0,xmm0,xmm2 vpxor xmm1,xmm1,xmm3 vpxor xmm2,xmm2,XMMWORD PTR [rdi] vpxor xmm3,xmm3,XMMWORD PTR [rdi+0x10] vmovdqu XMMWORD PTR [r9],xmm0 vmovdqu XMMWORD PTR [r9+0x10],xmm1 vmovdqu XMMWORD PTR [r9+0x20],xmm2 vmovdqu XMMWORD PTR [r9+0x30],xmm3 jmp 9b #ifdef __APPLE__ .static_data #else .section .rodata #endif .p2align 6 INDEX0: .long 0, 1, 2, 3, 16, 17, 18, 19 .long 8, 9, 10, 11, 24, 25, 26, 27 INDEX1: .long 4, 5, 6, 7, 20, 21, 22, 23 .long 12, 13, 14, 15, 28, 29, 30, 31 ADD0: .long 0, 1, 2, 3, 4, 5, 6, 7 .long 8, 9, 10, 11, 12, 13, 14, 15 ADD1: .long 1 ADD16: .long 16 BLAKE3_BLOCK_LEN: .long 64 .p2align 6 BLAKE3_IV: BLAKE3_IV_0: .long 0x6A09E667 BLAKE3_IV_1: .long 0xBB67AE85 BLAKE3_IV_2: .long 0x3C6EF372 BLAKE3_IV_3: .long 0xA54FF53A
mktmansour/MKT-KSA-Geolocation-Security
66,050
.cargo-home/registry/src/index.crates.io-1949cf8c6b5b557f/blake3-1.8.2/c/blake3_avx2_x86-64_unix.S
#if defined(__ELF__) && defined(__linux__) .section .note.GNU-stack,"",%progbits #endif #if defined(__ELF__) && defined(__CET__) && defined(__has_include) #if __has_include(<cet.h>) #include <cet.h> #endif #endif #if !defined(_CET_ENDBR) #define _CET_ENDBR #endif .intel_syntax noprefix .global _blake3_hash_many_avx2 .global blake3_hash_many_avx2 #ifdef __APPLE__ .text #else .section .text #endif .p2align 6 _blake3_hash_many_avx2: blake3_hash_many_avx2: _CET_ENDBR push r15 push r14 push r13 push r12 push rbx push rbp mov rbp, rsp sub rsp, 680 and rsp, 0xFFFFFFFFFFFFFFC0 neg r9d vmovd xmm0, r9d vpbroadcastd ymm0, xmm0 vmovdqa ymmword ptr [rsp+0x280], ymm0 vpand ymm1, ymm0, ymmword ptr [ADD0+rip] vpand ymm2, ymm0, ymmword ptr [ADD1+rip] vmovdqa ymmword ptr [rsp+0x220], ymm2 vmovd xmm2, r8d vpbroadcastd ymm2, xmm2 vpaddd ymm2, ymm2, ymm1 vmovdqa ymmword ptr [rsp+0x240], ymm2 vpxor ymm1, ymm1, ymmword ptr [CMP_MSB_MASK+rip] vpxor ymm2, ymm2, ymmword ptr [CMP_MSB_MASK+rip] vpcmpgtd ymm2, ymm1, ymm2 shr r8, 32 vmovd xmm3, r8d vpbroadcastd ymm3, xmm3 vpsubd ymm3, ymm3, ymm2 vmovdqa ymmword ptr [rsp+0x260], ymm3 shl rdx, 6 mov qword ptr [rsp+0x2A0], rdx cmp rsi, 8 jc 3f 2: vpbroadcastd ymm0, dword ptr [rcx] vpbroadcastd ymm1, dword ptr [rcx+0x4] vpbroadcastd ymm2, dword ptr [rcx+0x8] vpbroadcastd ymm3, dword ptr [rcx+0xC] vpbroadcastd ymm4, dword ptr [rcx+0x10] vpbroadcastd ymm5, dword ptr [rcx+0x14] vpbroadcastd ymm6, dword ptr [rcx+0x18] vpbroadcastd ymm7, dword ptr [rcx+0x1C] mov r8, qword ptr [rdi] mov r9, qword ptr [rdi+0x8] mov r10, qword ptr [rdi+0x10] mov r11, qword ptr [rdi+0x18] mov r12, qword ptr [rdi+0x20] mov r13, qword ptr [rdi+0x28] mov r14, qword ptr [rdi+0x30] mov r15, qword ptr [rdi+0x38] movzx eax, byte ptr [rbp+0x38] movzx ebx, byte ptr [rbp+0x40] or eax, ebx xor edx, edx .p2align 5 9: movzx ebx, byte ptr [rbp+0x48] or ebx, eax add rdx, 64 cmp rdx, qword ptr [rsp+0x2A0] cmove eax, ebx mov dword ptr [rsp+0x200], eax vmovups xmm8, xmmword ptr [r8+rdx-0x40] vinsertf128 ymm8, ymm8, xmmword ptr [r12+rdx-0x40], 0x01 vmovups xmm9, xmmword ptr [r9+rdx-0x40] vinsertf128 ymm9, ymm9, xmmword ptr [r13+rdx-0x40], 0x01 vunpcklpd ymm12, ymm8, ymm9 vunpckhpd ymm13, ymm8, ymm9 vmovups xmm10, xmmword ptr [r10+rdx-0x40] vinsertf128 ymm10, ymm10, xmmword ptr [r14+rdx-0x40], 0x01 vmovups xmm11, xmmword ptr [r11+rdx-0x40] vinsertf128 ymm11, ymm11, xmmword ptr [r15+rdx-0x40], 0x01 vunpcklpd ymm14, ymm10, ymm11 vunpckhpd ymm15, ymm10, ymm11 vshufps ymm8, ymm12, ymm14, 136 vmovaps ymmword ptr [rsp], ymm8 vshufps ymm9, ymm12, ymm14, 221 vmovaps ymmword ptr [rsp+0x20], ymm9 vshufps ymm10, ymm13, ymm15, 136 vmovaps ymmword ptr [rsp+0x40], ymm10 vshufps ymm11, ymm13, ymm15, 221 vmovaps ymmword ptr [rsp+0x60], ymm11 vmovups xmm8, xmmword ptr [r8+rdx-0x30] vinsertf128 ymm8, ymm8, xmmword ptr [r12+rdx-0x30], 0x01 vmovups xmm9, xmmword ptr [r9+rdx-0x30] vinsertf128 ymm9, ymm9, xmmword ptr [r13+rdx-0x30], 0x01 vunpcklpd ymm12, ymm8, ymm9 vunpckhpd ymm13, ymm8, ymm9 vmovups xmm10, xmmword ptr [r10+rdx-0x30] vinsertf128 ymm10, ymm10, xmmword ptr [r14+rdx-0x30], 0x01 vmovups xmm11, xmmword ptr [r11+rdx-0x30] vinsertf128 ymm11, ymm11, xmmword ptr [r15+rdx-0x30], 0x01 vunpcklpd ymm14, ymm10, ymm11 vunpckhpd ymm15, ymm10, ymm11 vshufps ymm8, ymm12, ymm14, 136 vmovaps ymmword ptr [rsp+0x80], ymm8 vshufps ymm9, ymm12, ymm14, 221 vmovaps ymmword ptr [rsp+0xA0], ymm9 vshufps ymm10, ymm13, ymm15, 136 vmovaps ymmword ptr [rsp+0xC0], ymm10 vshufps ymm11, ymm13, ymm15, 221 vmovaps ymmword ptr [rsp+0xE0], ymm11 vmovups xmm8, xmmword ptr [r8+rdx-0x20] vinsertf128 ymm8, ymm8, xmmword ptr [r12+rdx-0x20], 0x01 vmovups xmm9, xmmword ptr [r9+rdx-0x20] vinsertf128 ymm9, ymm9, xmmword ptr [r13+rdx-0x20], 0x01 vunpcklpd ymm12, ymm8, ymm9 vunpckhpd ymm13, ymm8, ymm9 vmovups xmm10, xmmword ptr [r10+rdx-0x20] vinsertf128 ymm10, ymm10, xmmword ptr [r14+rdx-0x20], 0x01 vmovups xmm11, xmmword ptr [r11+rdx-0x20] vinsertf128 ymm11, ymm11, xmmword ptr [r15+rdx-0x20], 0x01 vunpcklpd ymm14, ymm10, ymm11 vunpckhpd ymm15, ymm10, ymm11 vshufps ymm8, ymm12, ymm14, 136 vmovaps ymmword ptr [rsp+0x100], ymm8 vshufps ymm9, ymm12, ymm14, 221 vmovaps ymmword ptr [rsp+0x120], ymm9 vshufps ymm10, ymm13, ymm15, 136 vmovaps ymmword ptr [rsp+0x140], ymm10 vshufps ymm11, ymm13, ymm15, 221 vmovaps ymmword ptr [rsp+0x160], ymm11 vmovups xmm8, xmmword ptr [r8+rdx-0x10] vinsertf128 ymm8, ymm8, xmmword ptr [r12+rdx-0x10], 0x01 vmovups xmm9, xmmword ptr [r9+rdx-0x10] vinsertf128 ymm9, ymm9, xmmword ptr [r13+rdx-0x10], 0x01 vunpcklpd ymm12, ymm8, ymm9 vunpckhpd ymm13, ymm8, ymm9 vmovups xmm10, xmmword ptr [r10+rdx-0x10] vinsertf128 ymm10, ymm10, xmmword ptr [r14+rdx-0x10], 0x01 vmovups xmm11, xmmword ptr [r11+rdx-0x10] vinsertf128 ymm11, ymm11, xmmword ptr [r15+rdx-0x10], 0x01 vunpcklpd ymm14, ymm10, ymm11 vunpckhpd ymm15, ymm10, ymm11 vshufps ymm8, ymm12, ymm14, 136 vmovaps ymmword ptr [rsp+0x180], ymm8 vshufps ymm9, ymm12, ymm14, 221 vmovaps ymmword ptr [rsp+0x1A0], ymm9 vshufps ymm10, ymm13, ymm15, 136 vmovaps ymmword ptr [rsp+0x1C0], ymm10 vshufps ymm11, ymm13, ymm15, 221 vmovaps ymmword ptr [rsp+0x1E0], ymm11 vpbroadcastd ymm15, dword ptr [rsp+0x200] prefetcht0 [r8+rdx+0x80] prefetcht0 [r12+rdx+0x80] prefetcht0 [r9+rdx+0x80] prefetcht0 [r13+rdx+0x80] prefetcht0 [r10+rdx+0x80] prefetcht0 [r14+rdx+0x80] prefetcht0 [r11+rdx+0x80] prefetcht0 [r15+rdx+0x80] vpaddd ymm0, ymm0, ymmword ptr [rsp] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x40] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x80] vpaddd ymm3, ymm3, ymmword ptr [rsp+0xC0] vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxor ymm12, ymm0, ymmword ptr [rsp+0x240] vpxor ymm13, ymm1, ymmword ptr [rsp+0x260] vpxor ymm14, ymm2, ymmword ptr [BLAKE3_BLOCK_LEN+rip] vpxor ymm15, ymm3, ymm15 vbroadcasti128 ymm8, xmmword ptr [ROT16+rip] vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpshufb ymm15, ymm15, ymm8 vpaddd ymm8, ymm12, ymmword ptr [BLAKE3_IV_0+rip] vpaddd ymm9, ymm13, ymmword ptr [BLAKE3_IV_1+rip] vpaddd ymm10, ymm14, ymmword ptr [BLAKE3_IV_2+rip] vpaddd ymm11, ymm15, ymmword ptr [BLAKE3_IV_3+rip] vpxor ymm4, ymm4, ymm8 vpxor ymm5, ymm5, ymm9 vpxor ymm6, ymm6, ymm10 vpxor ymm7, ymm7, ymm11 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm4, 12 vpslld ymm4, ymm4, 20 vpor ymm4, ymm4, ymm8 vpsrld ymm8, ymm5, 12 vpslld ymm5, ymm5, 20 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 12 vpslld ymm6, ymm6, 20 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 12 vpslld ymm7, ymm7, 20 vpor ymm7, ymm7, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x20] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x60] vpaddd ymm2, ymm2, ymmword ptr [rsp+0xA0] vpaddd ymm3, ymm3, ymmword ptr [rsp+0xE0] vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxor ymm12, ymm12, ymm0 vpxor ymm13, ymm13, ymm1 vpxor ymm14, ymm14, ymm2 vpxor ymm15, ymm15, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT8+rip] vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpshufb ymm15, ymm15, ymm8 vpaddd ymm8, ymm12, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxor ymm4, ymm4, ymm8 vpxor ymm5, ymm5, ymm9 vpxor ymm6, ymm6, ymm10 vpxor ymm7, ymm7, ymm11 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm4, 7 vpslld ymm4, ymm4, 25 vpor ymm4, ymm4, ymm8 vpsrld ymm8, ymm5, 7 vpslld ymm5, ymm5, 25 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 7 vpslld ymm6, ymm6, 25 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 7 vpslld ymm7, ymm7, 25 vpor ymm7, ymm7, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x100] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x140] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x180] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x1C0] vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxor ymm15, ymm15, ymm0 vpxor ymm12, ymm12, ymm1 vpxor ymm13, ymm13, ymm2 vpxor ymm14, ymm14, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT16+rip] vpshufb ymm15, ymm15, ymm8 vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm13, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm14 vpxor ymm5, ymm5, ymm10 vpxor ymm6, ymm6, ymm11 vpxor ymm7, ymm7, ymm8 vpxor ymm4, ymm4, ymm9 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm5, 12 vpslld ymm5, ymm5, 20 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 12 vpslld ymm6, ymm6, 20 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 12 vpslld ymm7, ymm7, 20 vpor ymm7, ymm7, ymm8 vpsrld ymm8, ymm4, 12 vpslld ymm4, ymm4, 20 vpor ymm4, ymm4, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x120] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x160] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x1A0] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x1E0] vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxor ymm15, ymm15, ymm0 vpxor ymm12, ymm12, ymm1 vpxor ymm13, ymm13, ymm2 vpxor ymm14, ymm14, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT8+rip] vpshufb ymm15, ymm15, ymm8 vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm13, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm14 vpxor ymm5, ymm5, ymm10 vpxor ymm6, ymm6, ymm11 vpxor ymm7, ymm7, ymm8 vpxor ymm4, ymm4, ymm9 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm5, 7 vpslld ymm5, ymm5, 25 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 7 vpslld ymm6, ymm6, 25 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 7 vpslld ymm7, ymm7, 25 vpor ymm7, ymm7, ymm8 vpsrld ymm8, ymm4, 7 vpslld ymm4, ymm4, 25 vpor ymm4, ymm4, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x40] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x60] vpaddd ymm2, ymm2, ymmword ptr [rsp+0xE0] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x80] vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxor ymm12, ymm12, ymm0 vpxor ymm13, ymm13, ymm1 vpxor ymm14, ymm14, ymm2 vpxor ymm15, ymm15, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT16+rip] vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpshufb ymm15, ymm15, ymm8 vpaddd ymm8, ymm12, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxor ymm4, ymm4, ymm8 vpxor ymm5, ymm5, ymm9 vpxor ymm6, ymm6, ymm10 vpxor ymm7, ymm7, ymm11 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm4, 12 vpslld ymm4, ymm4, 20 vpor ymm4, ymm4, ymm8 vpsrld ymm8, ymm5, 12 vpslld ymm5, ymm5, 20 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 12 vpslld ymm6, ymm6, 20 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 12 vpslld ymm7, ymm7, 20 vpor ymm7, ymm7, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0xC0] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x140] vpaddd ymm2, ymm2, ymmword ptr [rsp] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x1A0] vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxor ymm12, ymm12, ymm0 vpxor ymm13, ymm13, ymm1 vpxor ymm14, ymm14, ymm2 vpxor ymm15, ymm15, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT8+rip] vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpshufb ymm15, ymm15, ymm8 vpaddd ymm8, ymm12, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxor ymm4, ymm4, ymm8 vpxor ymm5, ymm5, ymm9 vpxor ymm6, ymm6, ymm10 vpxor ymm7, ymm7, ymm11 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm4, 7 vpslld ymm4, ymm4, 25 vpor ymm4, ymm4, ymm8 vpsrld ymm8, ymm5, 7 vpslld ymm5, ymm5, 25 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 7 vpslld ymm6, ymm6, 25 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 7 vpslld ymm7, ymm7, 25 vpor ymm7, ymm7, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x20] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x180] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x120] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x1E0] vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxor ymm15, ymm15, ymm0 vpxor ymm12, ymm12, ymm1 vpxor ymm13, ymm13, ymm2 vpxor ymm14, ymm14, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT16+rip] vpshufb ymm15, ymm15, ymm8 vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm13, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm14 vpxor ymm5, ymm5, ymm10 vpxor ymm6, ymm6, ymm11 vpxor ymm7, ymm7, ymm8 vpxor ymm4, ymm4, ymm9 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm5, 12 vpslld ymm5, ymm5, 20 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 12 vpslld ymm6, ymm6, 20 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 12 vpslld ymm7, ymm7, 20 vpor ymm7, ymm7, ymm8 vpsrld ymm8, ymm4, 12 vpslld ymm4, ymm4, 20 vpor ymm4, ymm4, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x160] vpaddd ymm1, ymm1, ymmword ptr [rsp+0xA0] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x1C0] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x100] vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxor ymm15, ymm15, ymm0 vpxor ymm12, ymm12, ymm1 vpxor ymm13, ymm13, ymm2 vpxor ymm14, ymm14, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT8+rip] vpshufb ymm15, ymm15, ymm8 vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm13, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm14 vpxor ymm5, ymm5, ymm10 vpxor ymm6, ymm6, ymm11 vpxor ymm7, ymm7, ymm8 vpxor ymm4, ymm4, ymm9 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm5, 7 vpslld ymm5, ymm5, 25 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 7 vpslld ymm6, ymm6, 25 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 7 vpslld ymm7, ymm7, 25 vpor ymm7, ymm7, ymm8 vpsrld ymm8, ymm4, 7 vpslld ymm4, ymm4, 25 vpor ymm4, ymm4, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x60] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x140] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x1A0] vpaddd ymm3, ymm3, ymmword ptr [rsp+0xE0] vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxor ymm12, ymm12, ymm0 vpxor ymm13, ymm13, ymm1 vpxor ymm14, ymm14, ymm2 vpxor ymm15, ymm15, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT16+rip] vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpshufb ymm15, ymm15, ymm8 vpaddd ymm8, ymm12, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxor ymm4, ymm4, ymm8 vpxor ymm5, ymm5, ymm9 vpxor ymm6, ymm6, ymm10 vpxor ymm7, ymm7, ymm11 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm4, 12 vpslld ymm4, ymm4, 20 vpor ymm4, ymm4, ymm8 vpsrld ymm8, ymm5, 12 vpslld ymm5, ymm5, 20 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 12 vpslld ymm6, ymm6, 20 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 12 vpslld ymm7, ymm7, 20 vpor ymm7, ymm7, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x80] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x180] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x40] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x1C0] vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxor ymm12, ymm12, ymm0 vpxor ymm13, ymm13, ymm1 vpxor ymm14, ymm14, ymm2 vpxor ymm15, ymm15, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT8+rip] vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpshufb ymm15, ymm15, ymm8 vpaddd ymm8, ymm12, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxor ymm4, ymm4, ymm8 vpxor ymm5, ymm5, ymm9 vpxor ymm6, ymm6, ymm10 vpxor ymm7, ymm7, ymm11 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm4, 7 vpslld ymm4, ymm4, 25 vpor ymm4, ymm4, ymm8 vpsrld ymm8, ymm5, 7 vpslld ymm5, ymm5, 25 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 7 vpslld ymm6, ymm6, 25 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 7 vpslld ymm7, ymm7, 25 vpor ymm7, ymm7, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0xC0] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x120] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x160] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x100] vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxor ymm15, ymm15, ymm0 vpxor ymm12, ymm12, ymm1 vpxor ymm13, ymm13, ymm2 vpxor ymm14, ymm14, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT16+rip] vpshufb ymm15, ymm15, ymm8 vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm13, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm14 vpxor ymm5, ymm5, ymm10 vpxor ymm6, ymm6, ymm11 vpxor ymm7, ymm7, ymm8 vpxor ymm4, ymm4, ymm9 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm5, 12 vpslld ymm5, ymm5, 20 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 12 vpslld ymm6, ymm6, 20 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 12 vpslld ymm7, ymm7, 20 vpor ymm7, ymm7, ymm8 vpsrld ymm8, ymm4, 12 vpslld ymm4, ymm4, 20 vpor ymm4, ymm4, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0xA0] vpaddd ymm1, ymm1, ymmword ptr [rsp] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x1E0] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x20] vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxor ymm15, ymm15, ymm0 vpxor ymm12, ymm12, ymm1 vpxor ymm13, ymm13, ymm2 vpxor ymm14, ymm14, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT8+rip] vpshufb ymm15, ymm15, ymm8 vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm13, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm14 vpxor ymm5, ymm5, ymm10 vpxor ymm6, ymm6, ymm11 vpxor ymm7, ymm7, ymm8 vpxor ymm4, ymm4, ymm9 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm5, 7 vpslld ymm5, ymm5, 25 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 7 vpslld ymm6, ymm6, 25 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 7 vpslld ymm7, ymm7, 25 vpor ymm7, ymm7, ymm8 vpsrld ymm8, ymm4, 7 vpslld ymm4, ymm4, 25 vpor ymm4, ymm4, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x140] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x180] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x1C0] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x1A0] vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxor ymm12, ymm12, ymm0 vpxor ymm13, ymm13, ymm1 vpxor ymm14, ymm14, ymm2 vpxor ymm15, ymm15, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT16+rip] vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpshufb ymm15, ymm15, ymm8 vpaddd ymm8, ymm12, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxor ymm4, ymm4, ymm8 vpxor ymm5, ymm5, ymm9 vpxor ymm6, ymm6, ymm10 vpxor ymm7, ymm7, ymm11 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm4, 12 vpslld ymm4, ymm4, 20 vpor ymm4, ymm4, ymm8 vpsrld ymm8, ymm5, 12 vpslld ymm5, ymm5, 20 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 12 vpslld ymm6, ymm6, 20 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 12 vpslld ymm7, ymm7, 20 vpor ymm7, ymm7, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0xE0] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x120] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x60] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x1E0] vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxor ymm12, ymm12, ymm0 vpxor ymm13, ymm13, ymm1 vpxor ymm14, ymm14, ymm2 vpxor ymm15, ymm15, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT8+rip] vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpshufb ymm15, ymm15, ymm8 vpaddd ymm8, ymm12, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxor ymm4, ymm4, ymm8 vpxor ymm5, ymm5, ymm9 vpxor ymm6, ymm6, ymm10 vpxor ymm7, ymm7, ymm11 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm4, 7 vpslld ymm4, ymm4, 25 vpor ymm4, ymm4, ymm8 vpsrld ymm8, ymm5, 7 vpslld ymm5, ymm5, 25 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 7 vpslld ymm6, ymm6, 25 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 7 vpslld ymm7, ymm7, 25 vpor ymm7, ymm7, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x80] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x160] vpaddd ymm2, ymm2, ymmword ptr [rsp+0xA0] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x20] vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxor ymm15, ymm15, ymm0 vpxor ymm12, ymm12, ymm1 vpxor ymm13, ymm13, ymm2 vpxor ymm14, ymm14, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT16+rip] vpshufb ymm15, ymm15, ymm8 vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm13, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm14 vpxor ymm5, ymm5, ymm10 vpxor ymm6, ymm6, ymm11 vpxor ymm7, ymm7, ymm8 vpxor ymm4, ymm4, ymm9 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm5, 12 vpslld ymm5, ymm5, 20 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 12 vpslld ymm6, ymm6, 20 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 12 vpslld ymm7, ymm7, 20 vpor ymm7, ymm7, ymm8 vpsrld ymm8, ymm4, 12 vpslld ymm4, ymm4, 20 vpor ymm4, ymm4, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x40] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x100] vpaddd ymm3, ymm3, ymmword ptr [rsp+0xC0] vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxor ymm15, ymm15, ymm0 vpxor ymm12, ymm12, ymm1 vpxor ymm13, ymm13, ymm2 vpxor ymm14, ymm14, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT8+rip] vpshufb ymm15, ymm15, ymm8 vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm13, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm14 vpxor ymm5, ymm5, ymm10 vpxor ymm6, ymm6, ymm11 vpxor ymm7, ymm7, ymm8 vpxor ymm4, ymm4, ymm9 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm5, 7 vpslld ymm5, ymm5, 25 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 7 vpslld ymm6, ymm6, 25 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 7 vpslld ymm7, ymm7, 25 vpor ymm7, ymm7, ymm8 vpsrld ymm8, ymm4, 7 vpslld ymm4, ymm4, 25 vpor ymm4, ymm4, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x180] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x120] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x1E0] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x1C0] vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxor ymm12, ymm12, ymm0 vpxor ymm13, ymm13, ymm1 vpxor ymm14, ymm14, ymm2 vpxor ymm15, ymm15, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT16+rip] vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpshufb ymm15, ymm15, ymm8 vpaddd ymm8, ymm12, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxor ymm4, ymm4, ymm8 vpxor ymm5, ymm5, ymm9 vpxor ymm6, ymm6, ymm10 vpxor ymm7, ymm7, ymm11 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm4, 12 vpslld ymm4, ymm4, 20 vpor ymm4, ymm4, ymm8 vpsrld ymm8, ymm5, 12 vpslld ymm5, ymm5, 20 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 12 vpslld ymm6, ymm6, 20 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 12 vpslld ymm7, ymm7, 20 vpor ymm7, ymm7, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x1A0] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x160] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x140] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x100] vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxor ymm12, ymm12, ymm0 vpxor ymm13, ymm13, ymm1 vpxor ymm14, ymm14, ymm2 vpxor ymm15, ymm15, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT8+rip] vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpshufb ymm15, ymm15, ymm8 vpaddd ymm8, ymm12, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxor ymm4, ymm4, ymm8 vpxor ymm5, ymm5, ymm9 vpxor ymm6, ymm6, ymm10 vpxor ymm7, ymm7, ymm11 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm4, 7 vpslld ymm4, ymm4, 25 vpor ymm4, ymm4, ymm8 vpsrld ymm8, ymm5, 7 vpslld ymm5, ymm5, 25 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 7 vpslld ymm6, ymm6, 25 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 7 vpslld ymm7, ymm7, 25 vpor ymm7, ymm7, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0xE0] vpaddd ymm1, ymm1, ymmword ptr [rsp+0xA0] vpaddd ymm2, ymm2, ymmword ptr [rsp] vpaddd ymm3, ymm3, ymmword ptr [rsp+0xC0] vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxor ymm15, ymm15, ymm0 vpxor ymm12, ymm12, ymm1 vpxor ymm13, ymm13, ymm2 vpxor ymm14, ymm14, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT16+rip] vpshufb ymm15, ymm15, ymm8 vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm13, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm14 vpxor ymm5, ymm5, ymm10 vpxor ymm6, ymm6, ymm11 vpxor ymm7, ymm7, ymm8 vpxor ymm4, ymm4, ymm9 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm5, 12 vpslld ymm5, ymm5, 20 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 12 vpslld ymm6, ymm6, 20 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 12 vpslld ymm7, ymm7, 20 vpor ymm7, ymm7, ymm8 vpsrld ymm8, ymm4, 12 vpslld ymm4, ymm4, 20 vpor ymm4, ymm4, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x40] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x60] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x20] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x80] vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxor ymm15, ymm15, ymm0 vpxor ymm12, ymm12, ymm1 vpxor ymm13, ymm13, ymm2 vpxor ymm14, ymm14, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT8+rip] vpshufb ymm15, ymm15, ymm8 vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm13, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm14 vpxor ymm5, ymm5, ymm10 vpxor ymm6, ymm6, ymm11 vpxor ymm7, ymm7, ymm8 vpxor ymm4, ymm4, ymm9 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm5, 7 vpslld ymm5, ymm5, 25 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 7 vpslld ymm6, ymm6, 25 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 7 vpslld ymm7, ymm7, 25 vpor ymm7, ymm7, ymm8 vpsrld ymm8, ymm4, 7 vpslld ymm4, ymm4, 25 vpor ymm4, ymm4, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x120] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x160] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x100] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x1E0] vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxor ymm12, ymm12, ymm0 vpxor ymm13, ymm13, ymm1 vpxor ymm14, ymm14, ymm2 vpxor ymm15, ymm15, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT16+rip] vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpshufb ymm15, ymm15, ymm8 vpaddd ymm8, ymm12, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxor ymm4, ymm4, ymm8 vpxor ymm5, ymm5, ymm9 vpxor ymm6, ymm6, ymm10 vpxor ymm7, ymm7, ymm11 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm4, 12 vpslld ymm4, ymm4, 20 vpor ymm4, ymm4, ymm8 vpsrld ymm8, ymm5, 12 vpslld ymm5, ymm5, 20 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 12 vpslld ymm6, ymm6, 20 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 12 vpslld ymm7, ymm7, 20 vpor ymm7, ymm7, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x1C0] vpaddd ymm1, ymm1, ymmword ptr [rsp+0xA0] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x180] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x20] vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxor ymm12, ymm12, ymm0 vpxor ymm13, ymm13, ymm1 vpxor ymm14, ymm14, ymm2 vpxor ymm15, ymm15, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT8+rip] vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpshufb ymm15, ymm15, ymm8 vpaddd ymm8, ymm12, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxor ymm4, ymm4, ymm8 vpxor ymm5, ymm5, ymm9 vpxor ymm6, ymm6, ymm10 vpxor ymm7, ymm7, ymm11 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm4, 7 vpslld ymm4, ymm4, 25 vpor ymm4, ymm4, ymm8 vpsrld ymm8, ymm5, 7 vpslld ymm5, ymm5, 25 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 7 vpslld ymm6, ymm6, 25 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 7 vpslld ymm7, ymm7, 25 vpor ymm7, ymm7, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x1A0] vpaddd ymm1, ymm1, ymmword ptr [rsp] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x40] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x80] vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxor ymm15, ymm15, ymm0 vpxor ymm12, ymm12, ymm1 vpxor ymm13, ymm13, ymm2 vpxor ymm14, ymm14, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT16+rip] vpshufb ymm15, ymm15, ymm8 vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm13, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm14 vpxor ymm5, ymm5, ymm10 vpxor ymm6, ymm6, ymm11 vpxor ymm7, ymm7, ymm8 vpxor ymm4, ymm4, ymm9 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm5, 12 vpslld ymm5, ymm5, 20 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 12 vpslld ymm6, ymm6, 20 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 12 vpslld ymm7, ymm7, 20 vpor ymm7, ymm7, ymm8 vpsrld ymm8, ymm4, 12 vpslld ymm4, ymm4, 20 vpor ymm4, ymm4, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x60] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x140] vpaddd ymm2, ymm2, ymmword ptr [rsp+0xC0] vpaddd ymm3, ymm3, ymmword ptr [rsp+0xE0] vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxor ymm15, ymm15, ymm0 vpxor ymm12, ymm12, ymm1 vpxor ymm13, ymm13, ymm2 vpxor ymm14, ymm14, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT8+rip] vpshufb ymm15, ymm15, ymm8 vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm13, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm14 vpxor ymm5, ymm5, ymm10 vpxor ymm6, ymm6, ymm11 vpxor ymm7, ymm7, ymm8 vpxor ymm4, ymm4, ymm9 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm5, 7 vpslld ymm5, ymm5, 25 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 7 vpslld ymm6, ymm6, 25 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 7 vpslld ymm7, ymm7, 25 vpor ymm7, ymm7, ymm8 vpsrld ymm8, ymm4, 7 vpslld ymm4, ymm4, 25 vpor ymm4, ymm4, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x160] vpaddd ymm1, ymm1, ymmword ptr [rsp+0xA0] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x20] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x100] vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxor ymm12, ymm12, ymm0 vpxor ymm13, ymm13, ymm1 vpxor ymm14, ymm14, ymm2 vpxor ymm15, ymm15, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT16+rip] vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpshufb ymm15, ymm15, ymm8 vpaddd ymm8, ymm12, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxor ymm4, ymm4, ymm8 vpxor ymm5, ymm5, ymm9 vpxor ymm6, ymm6, ymm10 vpxor ymm7, ymm7, ymm11 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm4, 12 vpslld ymm4, ymm4, 20 vpor ymm4, ymm4, ymm8 vpsrld ymm8, ymm5, 12 vpslld ymm5, ymm5, 20 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 12 vpslld ymm6, ymm6, 20 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 12 vpslld ymm7, ymm7, 20 vpor ymm7, ymm7, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x1E0] vpaddd ymm1, ymm1, ymmword ptr [rsp] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x120] vpaddd ymm3, ymm3, ymmword ptr [rsp+0xC0] vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxor ymm12, ymm12, ymm0 vpxor ymm13, ymm13, ymm1 vpxor ymm14, ymm14, ymm2 vpxor ymm15, ymm15, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT8+rip] vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpshufb ymm15, ymm15, ymm8 vpaddd ymm8, ymm12, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxor ymm4, ymm4, ymm8 vpxor ymm5, ymm5, ymm9 vpxor ymm6, ymm6, ymm10 vpxor ymm7, ymm7, ymm11 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm4, 7 vpslld ymm4, ymm4, 25 vpor ymm4, ymm4, ymm8 vpsrld ymm8, ymm5, 7 vpslld ymm5, ymm5, 25 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 7 vpslld ymm6, ymm6, 25 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 7 vpslld ymm7, ymm7, 25 vpor ymm7, ymm7, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x1C0] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x40] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x60] vpaddd ymm3, ymm3, ymmword ptr [rsp+0xE0] vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxor ymm15, ymm15, ymm0 vpxor ymm12, ymm12, ymm1 vpxor ymm13, ymm13, ymm2 vpxor ymm14, ymm14, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT16+rip] vpshufb ymm15, ymm15, ymm8 vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm13, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm14 vpxor ymm5, ymm5, ymm10 vpxor ymm6, ymm6, ymm11 vpxor ymm7, ymm7, ymm8 vpxor ymm4, ymm4, ymm9 vmovdqa ymmword ptr [rsp+0x200], ymm8 vpsrld ymm8, ymm5, 12 vpslld ymm5, ymm5, 20 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 12 vpslld ymm6, ymm6, 20 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 12 vpslld ymm7, ymm7, 20 vpor ymm7, ymm7, ymm8 vpsrld ymm8, ymm4, 12 vpslld ymm4, ymm4, 20 vpor ymm4, ymm4, ymm8 vpaddd ymm0, ymm0, ymmword ptr [rsp+0x140] vpaddd ymm1, ymm1, ymmword ptr [rsp+0x180] vpaddd ymm2, ymm2, ymmword ptr [rsp+0x80] vpaddd ymm3, ymm3, ymmword ptr [rsp+0x1A0] vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxor ymm15, ymm15, ymm0 vpxor ymm12, ymm12, ymm1 vpxor ymm13, ymm13, ymm2 vpxor ymm14, ymm14, ymm3 vbroadcasti128 ymm8, xmmword ptr [ROT8+rip] vpshufb ymm15, ymm15, ymm8 vpshufb ymm12, ymm12, ymm8 vpshufb ymm13, ymm13, ymm8 vpshufb ymm14, ymm14, ymm8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm13, ymmword ptr [rsp+0x200] vpaddd ymm9, ymm9, ymm14 vpxor ymm5, ymm5, ymm10 vpxor ymm6, ymm6, ymm11 vpxor ymm7, ymm7, ymm8 vpxor ymm4, ymm4, ymm9 vpxor ymm0, ymm0, ymm8 vpxor ymm1, ymm1, ymm9 vpxor ymm2, ymm2, ymm10 vpxor ymm3, ymm3, ymm11 vpsrld ymm8, ymm5, 7 vpslld ymm5, ymm5, 25 vpor ymm5, ymm5, ymm8 vpsrld ymm8, ymm6, 7 vpslld ymm6, ymm6, 25 vpor ymm6, ymm6, ymm8 vpsrld ymm8, ymm7, 7 vpslld ymm7, ymm7, 25 vpor ymm7, ymm7, ymm8 vpsrld ymm8, ymm4, 7 vpslld ymm4, ymm4, 25 vpor ymm4, ymm4, ymm8 vpxor ymm4, ymm4, ymm12 vpxor ymm5, ymm5, ymm13 vpxor ymm6, ymm6, ymm14 vpxor ymm7, ymm7, ymm15 movzx eax, byte ptr [rbp+0x38] jne 9b mov rbx, qword ptr [rbp+0x50] vunpcklps ymm8, ymm0, ymm1 vunpcklps ymm9, ymm2, ymm3 vunpckhps ymm10, ymm0, ymm1 vunpcklps ymm11, ymm4, ymm5 vunpcklps ymm0, ymm6, ymm7 vshufps ymm12, ymm8, ymm9, 78 vblendps ymm1, ymm8, ymm12, 0xCC vshufps ymm8, ymm11, ymm0, 78 vunpckhps ymm13, ymm2, ymm3 vblendps ymm2, ymm11, ymm8, 0xCC vblendps ymm3, ymm12, ymm9, 0xCC vperm2f128 ymm12, ymm1, ymm2, 0x20 vmovups ymmword ptr [rbx], ymm12 vunpckhps ymm14, ymm4, ymm5 vblendps ymm4, ymm8, ymm0, 0xCC vunpckhps ymm15, ymm6, ymm7 vperm2f128 ymm7, ymm3, ymm4, 0x20 vmovups ymmword ptr [rbx+0x20], ymm7 vshufps ymm5, ymm10, ymm13, 78 vblendps ymm6, ymm5, ymm13, 0xCC vshufps ymm13, ymm14, ymm15, 78 vblendps ymm10, ymm10, ymm5, 0xCC vblendps ymm14, ymm14, ymm13, 0xCC vperm2f128 ymm8, ymm10, ymm14, 0x20 vmovups ymmword ptr [rbx+0x40], ymm8 vblendps ymm15, ymm13, ymm15, 0xCC vperm2f128 ymm13, ymm6, ymm15, 0x20 vmovups ymmword ptr [rbx+0x60], ymm13 vperm2f128 ymm9, ymm1, ymm2, 0x31 vperm2f128 ymm11, ymm3, ymm4, 0x31 vmovups ymmword ptr [rbx+0x80], ymm9 vperm2f128 ymm14, ymm10, ymm14, 0x31 vperm2f128 ymm15, ymm6, ymm15, 0x31 vmovups ymmword ptr [rbx+0xA0], ymm11 vmovups ymmword ptr [rbx+0xC0], ymm14 vmovups ymmword ptr [rbx+0xE0], ymm15 vmovdqa ymm0, ymmword ptr [rsp+0x220] vpaddd ymm1, ymm0, ymmword ptr [rsp+0x240] vmovdqa ymmword ptr [rsp+0x240], ymm1 vpxor ymm0, ymm0, ymmword ptr [CMP_MSB_MASK+rip] vpxor ymm2, ymm1, ymmword ptr [CMP_MSB_MASK+rip] vpcmpgtd ymm2, ymm0, ymm2 vmovdqa ymm0, ymmword ptr [rsp+0x260] vpsubd ymm2, ymm0, ymm2 vmovdqa ymmword ptr [rsp+0x260], ymm2 add rdi, 64 add rbx, 256 mov qword ptr [rbp+0x50], rbx sub rsi, 8 cmp rsi, 8 jnc 2b test rsi, rsi jnz 3f 4: vzeroupper mov rsp, rbp pop rbp pop rbx pop r12 pop r13 pop r14 pop r15 ret .p2align 5 3: mov rbx, qword ptr [rbp+0x50] mov r15, qword ptr [rsp+0x2A0] movzx r13d, byte ptr [rbp+0x38] movzx r12d, byte ptr [rbp+0x48] test rsi, 0x4 je 3f vbroadcasti128 ymm0, xmmword ptr [rcx] vbroadcasti128 ymm1, xmmword ptr [rcx+0x10] vmovdqa ymm8, ymm0 vmovdqa ymm9, ymm1 vbroadcasti128 ymm12, xmmword ptr [rsp+0x240] vbroadcasti128 ymm13, xmmword ptr [rsp+0x260] vpunpckldq ymm14, ymm12, ymm13 vpunpckhdq ymm15, ymm12, ymm13 vpermq ymm14, ymm14, 0x50 vpermq ymm15, ymm15, 0x50 vbroadcasti128 ymm12, xmmword ptr [BLAKE3_BLOCK_LEN+rip] vpblendd ymm14, ymm14, ymm12, 0x44 vpblendd ymm15, ymm15, ymm12, 0x44 vmovdqa ymmword ptr [rsp], ymm14 vmovdqa ymmword ptr [rsp+0x20], ymm15 mov r8, qword ptr [rdi] mov r9, qword ptr [rdi+0x8] mov r10, qword ptr [rdi+0x10] mov r11, qword ptr [rdi+0x18] movzx eax, byte ptr [rbp+0x40] or eax, r13d xor edx, edx .p2align 5 2: mov r14d, eax or eax, r12d add rdx, 64 cmp rdx, r15 cmovne eax, r14d mov dword ptr [rsp+0x200], eax vmovups ymm2, ymmword ptr [r8+rdx-0x40] vinsertf128 ymm2, ymm2, xmmword ptr [r9+rdx-0x40], 0x01 vmovups ymm3, ymmword ptr [r8+rdx-0x30] vinsertf128 ymm3, ymm3, xmmword ptr [r9+rdx-0x30], 0x01 vshufps ymm4, ymm2, ymm3, 136 vshufps ymm5, ymm2, ymm3, 221 vmovups ymm2, ymmword ptr [r8+rdx-0x20] vinsertf128 ymm2, ymm2, xmmword ptr [r9+rdx-0x20], 0x01 vmovups ymm3, ymmword ptr [r8+rdx-0x10] vinsertf128 ymm3, ymm3, xmmword ptr [r9+rdx-0x10], 0x01 vshufps ymm6, ymm2, ymm3, 136 vshufps ymm7, ymm2, ymm3, 221 vpshufd ymm6, ymm6, 0x93 vpshufd ymm7, ymm7, 0x93 vmovups ymm10, ymmword ptr [r10+rdx-0x40] vinsertf128 ymm10, ymm10, xmmword ptr [r11+rdx-0x40], 0x01 vmovups ymm11, ymmword ptr [r10+rdx-0x30] vinsertf128 ymm11, ymm11, xmmword ptr [r11+rdx-0x30], 0x01 vshufps ymm12, ymm10, ymm11, 136 vshufps ymm13, ymm10, ymm11, 221 vmovups ymm10, ymmword ptr [r10+rdx-0x20] vinsertf128 ymm10, ymm10, xmmword ptr [r11+rdx-0x20], 0x01 vmovups ymm11, ymmword ptr [r10+rdx-0x10] vinsertf128 ymm11, ymm11, xmmword ptr [r11+rdx-0x10], 0x01 vshufps ymm14, ymm10, ymm11, 136 vshufps ymm15, ymm10, ymm11, 221 vpshufd ymm14, ymm14, 0x93 vpshufd ymm15, ymm15, 0x93 prefetcht0 [r8+rdx+0x80] prefetcht0 [r9+rdx+0x80] prefetcht0 [r10+rdx+0x80] prefetcht0 [r11+rdx+0x80] vpbroadcastd ymm2, dword ptr [rsp+0x200] vmovdqa ymm3, ymmword ptr [rsp] vmovdqa ymm11, ymmword ptr [rsp+0x20] vpblendd ymm3, ymm3, ymm2, 0x88 vpblendd ymm11, ymm11, ymm2, 0x88 vbroadcasti128 ymm2, xmmword ptr [BLAKE3_IV+rip] vmovdqa ymm10, ymm2 mov al, 7 9: vpaddd ymm0, ymm0, ymm4 vpaddd ymm8, ymm8, ymm12 vmovdqa ymmword ptr [rsp+0x40], ymm4 nop vmovdqa ymmword ptr [rsp+0x60], ymm12 nop vpaddd ymm0, ymm0, ymm1 vpaddd ymm8, ymm8, ymm9 vpxor ymm3, ymm3, ymm0 vpxor ymm11, ymm11, ymm8 vbroadcasti128 ymm4, xmmword ptr [ROT16+rip] vpshufb ymm3, ymm3, ymm4 vpshufb ymm11, ymm11, ymm4 vpaddd ymm2, ymm2, ymm3 vpaddd ymm10, ymm10, ymm11 vpxor ymm1, ymm1, ymm2 vpxor ymm9, ymm9, ymm10 vpsrld ymm4, ymm1, 12 vpslld ymm1, ymm1, 20 vpor ymm1, ymm1, ymm4 vpsrld ymm4, ymm9, 12 vpslld ymm9, ymm9, 20 vpor ymm9, ymm9, ymm4 vpaddd ymm0, ymm0, ymm5 vpaddd ymm8, ymm8, ymm13 vpaddd ymm0, ymm0, ymm1 vpaddd ymm8, ymm8, ymm9 vmovdqa ymmword ptr [rsp+0x80], ymm5 vmovdqa ymmword ptr [rsp+0xA0], ymm13 vpxor ymm3, ymm3, ymm0 vpxor ymm11, ymm11, ymm8 vbroadcasti128 ymm4, xmmword ptr [ROT8+rip] vpshufb ymm3, ymm3, ymm4 vpshufb ymm11, ymm11, ymm4 vpaddd ymm2, ymm2, ymm3 vpaddd ymm10, ymm10, ymm11 vpxor ymm1, ymm1, ymm2 vpxor ymm9, ymm9, ymm10 vpsrld ymm4, ymm1, 7 vpslld ymm1, ymm1, 25 vpor ymm1, ymm1, ymm4 vpsrld ymm4, ymm9, 7 vpslld ymm9, ymm9, 25 vpor ymm9, ymm9, ymm4 vpshufd ymm0, ymm0, 0x93 vpshufd ymm8, ymm8, 0x93 vpshufd ymm3, ymm3, 0x4E vpshufd ymm11, ymm11, 0x4E vpshufd ymm2, ymm2, 0x39 vpshufd ymm10, ymm10, 0x39 vpaddd ymm0, ymm0, ymm6 vpaddd ymm8, ymm8, ymm14 vpaddd ymm0, ymm0, ymm1 vpaddd ymm8, ymm8, ymm9 vpxor ymm3, ymm3, ymm0 vpxor ymm11, ymm11, ymm8 vbroadcasti128 ymm4, xmmword ptr [ROT16+rip] vpshufb ymm3, ymm3, ymm4 vpshufb ymm11, ymm11, ymm4 vpaddd ymm2, ymm2, ymm3 vpaddd ymm10, ymm10, ymm11 vpxor ymm1, ymm1, ymm2 vpxor ymm9, ymm9, ymm10 vpsrld ymm4, ymm1, 12 vpslld ymm1, ymm1, 20 vpor ymm1, ymm1, ymm4 vpsrld ymm4, ymm9, 12 vpslld ymm9, ymm9, 20 vpor ymm9, ymm9, ymm4 vpaddd ymm0, ymm0, ymm7 vpaddd ymm8, ymm8, ymm15 vpaddd ymm0, ymm0, ymm1 vpaddd ymm8, ymm8, ymm9 vpxor ymm3, ymm3, ymm0 vpxor ymm11, ymm11, ymm8 vbroadcasti128 ymm4, xmmword ptr [ROT8+rip] vpshufb ymm3, ymm3, ymm4 vpshufb ymm11, ymm11, ymm4 vpaddd ymm2, ymm2, ymm3 vpaddd ymm10, ymm10, ymm11 vpxor ymm1, ymm1, ymm2 vpxor ymm9, ymm9, ymm10 vpsrld ymm4, ymm1, 7 vpslld ymm1, ymm1, 25 vpor ymm1, ymm1, ymm4 vpsrld ymm4, ymm9, 7 vpslld ymm9, ymm9, 25 vpor ymm9, ymm9, ymm4 vpshufd ymm0, ymm0, 0x39 vpshufd ymm8, ymm8, 0x39 vpshufd ymm3, ymm3, 0x4E vpshufd ymm11, ymm11, 0x4E vpshufd ymm2, ymm2, 0x93 vpshufd ymm10, ymm10, 0x93 dec al je 9f vmovdqa ymm4, ymmword ptr [rsp+0x40] vmovdqa ymm5, ymmword ptr [rsp+0x80] vshufps ymm12, ymm4, ymm5, 214 vpshufd ymm13, ymm4, 0x0F vpshufd ymm4, ymm12, 0x39 vshufps ymm12, ymm6, ymm7, 250 vpblendd ymm13, ymm13, ymm12, 0xAA vpunpcklqdq ymm12, ymm7, ymm5 vpblendd ymm12, ymm12, ymm6, 0x88 vpshufd ymm12, ymm12, 0x78 vpunpckhdq ymm5, ymm5, ymm7 vpunpckldq ymm6, ymm6, ymm5 vpshufd ymm7, ymm6, 0x1E vmovdqa ymmword ptr [rsp+0x40], ymm13 vmovdqa ymmword ptr [rsp+0x80], ymm12 vmovdqa ymm12, ymmword ptr [rsp+0x60] vmovdqa ymm13, ymmword ptr [rsp+0xA0] vshufps ymm5, ymm12, ymm13, 214 vpshufd ymm6, ymm12, 0x0F vpshufd ymm12, ymm5, 0x39 vshufps ymm5, ymm14, ymm15, 250 vpblendd ymm6, ymm6, ymm5, 0xAA vpunpcklqdq ymm5, ymm15, ymm13 vpblendd ymm5, ymm5, ymm14, 0x88 vpshufd ymm5, ymm5, 0x78 vpunpckhdq ymm13, ymm13, ymm15 vpunpckldq ymm14, ymm14, ymm13 vpshufd ymm15, ymm14, 0x1E vmovdqa ymm13, ymm6 vmovdqa ymm14, ymm5 vmovdqa ymm5, ymmword ptr [rsp+0x40] vmovdqa ymm6, ymmword ptr [rsp+0x80] jmp 9b 9: vpxor ymm0, ymm0, ymm2 vpxor ymm1, ymm1, ymm3 vpxor ymm8, ymm8, ymm10 vpxor ymm9, ymm9, ymm11 mov eax, r13d cmp rdx, r15 jne 2b vmovdqu xmmword ptr [rbx], xmm0 vmovdqu xmmword ptr [rbx+0x10], xmm1 vextracti128 xmmword ptr [rbx+0x20], ymm0, 0x01 vextracti128 xmmword ptr [rbx+0x30], ymm1, 0x01 vmovdqu xmmword ptr [rbx+0x40], xmm8 vmovdqu xmmword ptr [rbx+0x50], xmm9 vextracti128 xmmword ptr [rbx+0x60], ymm8, 0x01 vextracti128 xmmword ptr [rbx+0x70], ymm9, 0x01 vmovaps xmm8, xmmword ptr [rsp+0x280] vmovaps xmm0, xmmword ptr [rsp+0x240] vmovaps xmm1, xmmword ptr [rsp+0x250] vmovaps xmm2, xmmword ptr [rsp+0x260] vmovaps xmm3, xmmword ptr [rsp+0x270] vblendvps xmm0, xmm0, xmm1, xmm8 vblendvps xmm2, xmm2, xmm3, xmm8 vmovaps xmmword ptr [rsp+0x240], xmm0 vmovaps xmmword ptr [rsp+0x260], xmm2 add rbx, 128 add rdi, 32 sub rsi, 4 3: test rsi, 0x2 je 3f vbroadcasti128 ymm0, xmmword ptr [rcx] vbroadcasti128 ymm1, xmmword ptr [rcx+0x10] vmovd xmm13, dword ptr [rsp+0x240] vpinsrd xmm13, xmm13, dword ptr [rsp+0x260], 1 vpinsrd xmm13, xmm13, dword ptr [BLAKE3_BLOCK_LEN+rip], 2 vmovd xmm14, dword ptr [rsp+0x244] vpinsrd xmm14, xmm14, dword ptr [rsp+0x264], 1 vpinsrd xmm14, xmm14, dword ptr [BLAKE3_BLOCK_LEN+rip], 2 vinserti128 ymm13, ymm13, xmm14, 0x01 vbroadcasti128 ymm14, xmmword ptr [ROT16+rip] vbroadcasti128 ymm15, xmmword ptr [ROT8+rip] mov r8, qword ptr [rdi] mov r9, qword ptr [rdi+0x8] movzx eax, byte ptr [rbp+0x40] or eax, r13d xor edx, edx .p2align 5 2: mov r14d, eax or eax, r12d add rdx, 64 cmp rdx, r15 cmovne eax, r14d mov dword ptr [rsp+0x200], eax vbroadcasti128 ymm2, xmmword ptr [BLAKE3_IV+rip] vpbroadcastd ymm8, dword ptr [rsp+0x200] vpblendd ymm3, ymm13, ymm8, 0x88 vmovups ymm8, ymmword ptr [r8+rdx-0x40] vinsertf128 ymm8, ymm8, xmmword ptr [r9+rdx-0x40], 0x01 vmovups ymm9, ymmword ptr [r8+rdx-0x30] vinsertf128 ymm9, ymm9, xmmword ptr [r9+rdx-0x30], 0x01 vshufps ymm4, ymm8, ymm9, 136 vshufps ymm5, ymm8, ymm9, 221 vmovups ymm8, ymmword ptr [r8+rdx-0x20] vinsertf128 ymm8, ymm8, xmmword ptr [r9+rdx-0x20], 0x01 vmovups ymm9, ymmword ptr [r8+rdx-0x10] vinsertf128 ymm9, ymm9, xmmword ptr [r9+rdx-0x10], 0x01 vshufps ymm6, ymm8, ymm9, 136 vshufps ymm7, ymm8, ymm9, 221 vpshufd ymm6, ymm6, 0x93 vpshufd ymm7, ymm7, 0x93 mov al, 7 9: vpaddd ymm0, ymm0, ymm4 vpaddd ymm0, ymm0, ymm1 vpxor ymm3, ymm3, ymm0 vpshufb ymm3, ymm3, ymm14 vpaddd ymm2, ymm2, ymm3 vpxor ymm1, ymm1, ymm2 vpsrld ymm8, ymm1, 12 vpslld ymm1, ymm1, 20 vpor ymm1, ymm1, ymm8 vpaddd ymm0, ymm0, ymm5 vpaddd ymm0, ymm0, ymm1 vpxor ymm3, ymm3, ymm0 vpshufb ymm3, ymm3, ymm15 vpaddd ymm2, ymm2, ymm3 vpxor ymm1, ymm1, ymm2 vpsrld ymm8, ymm1, 7 vpslld ymm1, ymm1, 25 vpor ymm1, ymm1, ymm8 vpshufd ymm0, ymm0, 0x93 vpshufd ymm3, ymm3, 0x4E vpshufd ymm2, ymm2, 0x39 vpaddd ymm0, ymm0, ymm6 vpaddd ymm0, ymm0, ymm1 vpxor ymm3, ymm3, ymm0 vpshufb ymm3, ymm3, ymm14 vpaddd ymm2, ymm2, ymm3 vpxor ymm1, ymm1, ymm2 vpsrld ymm8, ymm1, 12 vpslld ymm1, ymm1, 20 vpor ymm1, ymm1, ymm8 vpaddd ymm0, ymm0, ymm7 vpaddd ymm0, ymm0, ymm1 vpxor ymm3, ymm3, ymm0 vpshufb ymm3, ymm3, ymm15 vpaddd ymm2, ymm2, ymm3 vpxor ymm1, ymm1, ymm2 vpsrld ymm8, ymm1, 7 vpslld ymm1, ymm1, 25 vpor ymm1, ymm1, ymm8 vpshufd ymm0, ymm0, 0x39 vpshufd ymm3, ymm3, 0x4E vpshufd ymm2, ymm2, 0x93 dec al jz 9f vshufps ymm8, ymm4, ymm5, 214 vpshufd ymm9, ymm4, 0x0F vpshufd ymm4, ymm8, 0x39 vshufps ymm8, ymm6, ymm7, 250 vpblendd ymm9, ymm9, ymm8, 0xAA vpunpcklqdq ymm8, ymm7, ymm5 vpblendd ymm8, ymm8, ymm6, 0x88 vpshufd ymm8, ymm8, 0x78 vpunpckhdq ymm5, ymm5, ymm7 vpunpckldq ymm6, ymm6, ymm5 vpshufd ymm7, ymm6, 0x1E vmovdqa ymm5, ymm9 vmovdqa ymm6, ymm8 jmp 9b 9: vpxor ymm0, ymm0, ymm2 vpxor ymm1, ymm1, ymm3 mov eax, r13d cmp rdx, r15 jne 2b vmovdqu xmmword ptr [rbx], xmm0 vmovdqu xmmword ptr [rbx+0x10], xmm1 vextracti128 xmmword ptr [rbx+0x20], ymm0, 0x01 vextracti128 xmmword ptr [rbx+0x30], ymm1, 0x01 vmovaps ymm8, ymmword ptr [rsp+0x280] vmovaps ymm0, ymmword ptr [rsp+0x240] vmovups ymm1, ymmword ptr [rsp+0x248] vmovaps ymm2, ymmword ptr [rsp+0x260] vmovups ymm3, ymmword ptr [rsp+0x268] vblendvps ymm0, ymm0, ymm1, ymm8 vblendvps ymm2, ymm2, ymm3, ymm8 vmovaps ymmword ptr [rsp+0x240], ymm0 vmovaps ymmword ptr [rsp+0x260], ymm2 add rbx, 64 add rdi, 16 sub rsi, 2 3: test rsi, 0x1 je 4b vmovdqu xmm0, xmmword ptr [rcx] vmovdqu xmm1, xmmword ptr [rcx+0x10] vmovd xmm3, dword ptr [rsp+0x240] vpinsrd xmm3, xmm3, dword ptr [rsp+0x260], 1 vpinsrd xmm13, xmm3, dword ptr [BLAKE3_BLOCK_LEN+rip], 2 vmovdqa xmm14, xmmword ptr [ROT16+rip] vmovdqa xmm15, xmmword ptr [ROT8+rip] mov r8, qword ptr [rdi] movzx eax, byte ptr [rbp+0x40] or eax, r13d xor edx, edx .p2align 5 2: mov r14d, eax or eax, r12d add rdx, 64 cmp rdx, r15 cmovne eax, r14d vmovdqa xmm2, xmmword ptr [BLAKE3_IV+rip] vmovdqa xmm3, xmm13 vpinsrd xmm3, xmm3, eax, 3 vmovups xmm8, xmmword ptr [r8+rdx-0x40] vmovups xmm9, xmmword ptr [r8+rdx-0x30] vshufps xmm4, xmm8, xmm9, 136 vshufps xmm5, xmm8, xmm9, 221 vmovups xmm8, xmmword ptr [r8+rdx-0x20] vmovups xmm9, xmmword ptr [r8+rdx-0x10] vshufps xmm6, xmm8, xmm9, 136 vshufps xmm7, xmm8, xmm9, 221 vpshufd xmm6, xmm6, 0x93 vpshufd xmm7, xmm7, 0x93 mov al, 7 9: vpaddd xmm0, xmm0, xmm4 vpaddd xmm0, xmm0, xmm1 vpxor xmm3, xmm3, xmm0 vpshufb xmm3, xmm3, xmm14 vpaddd xmm2, xmm2, xmm3 vpxor xmm1, xmm1, xmm2 vpsrld xmm8, xmm1, 12 vpslld xmm1, xmm1, 20 vpor xmm1, xmm1, xmm8 vpaddd xmm0, xmm0, xmm5 vpaddd xmm0, xmm0, xmm1 vpxor xmm3, xmm3, xmm0 vpshufb xmm3, xmm3, xmm15 vpaddd xmm2, xmm2, xmm3 vpxor xmm1, xmm1, xmm2 vpsrld xmm8, xmm1, 7 vpslld xmm1, xmm1, 25 vpor xmm1, xmm1, xmm8 vpshufd xmm0, xmm0, 0x93 vpshufd xmm3, xmm3, 0x4E vpshufd xmm2, xmm2, 0x39 vpaddd xmm0, xmm0, xmm6 vpaddd xmm0, xmm0, xmm1 vpxor xmm3, xmm3, xmm0 vpshufb xmm3, xmm3, xmm14 vpaddd xmm2, xmm2, xmm3 vpxor xmm1, xmm1, xmm2 vpsrld xmm8, xmm1, 12 vpslld xmm1, xmm1, 20 vpor xmm1, xmm1, xmm8 vpaddd xmm0, xmm0, xmm7 vpaddd xmm0, xmm0, xmm1 vpxor xmm3, xmm3, xmm0 vpshufb xmm3, xmm3, xmm15 vpaddd xmm2, xmm2, xmm3 vpxor xmm1, xmm1, xmm2 vpsrld xmm8, xmm1, 7 vpslld xmm1, xmm1, 25 vpor xmm1, xmm1, xmm8 vpshufd xmm0, xmm0, 0x39 vpshufd xmm3, xmm3, 0x4E vpshufd xmm2, xmm2, 0x93 dec al jz 9f vshufps xmm8, xmm4, xmm5, 214 vpshufd xmm9, xmm4, 0x0F vpshufd xmm4, xmm8, 0x39 vshufps xmm8, xmm6, xmm7, 250 vpblendd xmm9, xmm9, xmm8, 0xAA vpunpcklqdq xmm8, xmm7, xmm5 vpblendd xmm8, xmm8, xmm6, 0x88 vpshufd xmm8, xmm8, 0x78 vpunpckhdq xmm5, xmm5, xmm7 vpunpckldq xmm6, xmm6, xmm5 vpshufd xmm7, xmm6, 0x1E vmovdqa xmm5, xmm9 vmovdqa xmm6, xmm8 jmp 9b 9: vpxor xmm0, xmm0, xmm2 vpxor xmm1, xmm1, xmm3 mov eax, r13d cmp rdx, r15 jne 2b vmovdqu xmmword ptr [rbx], xmm0 vmovdqu xmmword ptr [rbx+0x10], xmm1 jmp 4b #ifdef __APPLE__ .static_data #else .section .rodata #endif .p2align 6 ADD0: .long 0, 1, 2, 3, 4, 5, 6, 7 ADD1: .long 8, 8, 8, 8, 8, 8, 8, 8 BLAKE3_IV_0: .long 0x6A09E667, 0x6A09E667, 0x6A09E667, 0x6A09E667 .long 0x6A09E667, 0x6A09E667, 0x6A09E667, 0x6A09E667 BLAKE3_IV_1: .long 0xBB67AE85, 0xBB67AE85, 0xBB67AE85, 0xBB67AE85 .long 0xBB67AE85, 0xBB67AE85, 0xBB67AE85, 0xBB67AE85 BLAKE3_IV_2: .long 0x3C6EF372, 0x3C6EF372, 0x3C6EF372, 0x3C6EF372 .long 0x3C6EF372, 0x3C6EF372, 0x3C6EF372, 0x3C6EF372 BLAKE3_IV_3: .long 0xA54FF53A, 0xA54FF53A, 0xA54FF53A, 0xA54FF53A .long 0xA54FF53A, 0xA54FF53A, 0xA54FF53A, 0xA54FF53A BLAKE3_BLOCK_LEN: .long 0x00000040, 0x00000040, 0x00000040, 0x00000040 .long 0x00000040, 0x00000040, 0x00000040, 0x00000040 ROT16: .byte 2, 3, 0, 1, 6, 7, 4, 5, 10, 11, 8, 9, 14, 15, 12, 13 ROT8: .byte 1, 2, 3, 0, 5, 6, 7, 4, 9, 10, 11, 8, 13, 14, 15, 12 CMP_MSB_MASK: .long 0x80000000, 0x80000000, 0x80000000, 0x80000000 .long 0x80000000, 0x80000000, 0x80000000, 0x80000000 BLAKE3_IV: .long 0x6A09E667, 0xBB67AE85, 0x3C6EF372, 0xA54FF53A
mktmansour/MKT-KSA-Geolocation-Security
71,202
.cargo-home/registry/src/index.crates.io-1949cf8c6b5b557f/blake3-1.8.2/c/blake3_sse2_x86-64_windows_gnu.S
.intel_syntax noprefix .global blake3_hash_many_sse2 .global _blake3_hash_many_sse2 .global blake3_compress_in_place_sse2 .global _blake3_compress_in_place_sse2 .global blake3_compress_xof_sse2 .global _blake3_compress_xof_sse2 .section .text .p2align 6 _blake3_hash_many_sse2: blake3_hash_many_sse2: push r15 push r14 push r13 push r12 push rsi push rdi push rbx push rbp mov rbp, rsp sub rsp, 528 and rsp, 0xFFFFFFFFFFFFFFC0 movdqa xmmword ptr [rsp+0x170], xmm6 movdqa xmmword ptr [rsp+0x180], xmm7 movdqa xmmword ptr [rsp+0x190], xmm8 movdqa xmmword ptr [rsp+0x1A0], xmm9 movdqa xmmword ptr [rsp+0x1B0], xmm10 movdqa xmmword ptr [rsp+0x1C0], xmm11 movdqa xmmword ptr [rsp+0x1D0], xmm12 movdqa xmmword ptr [rsp+0x1E0], xmm13 movdqa xmmword ptr [rsp+0x1F0], xmm14 movdqa xmmword ptr [rsp+0x200], xmm15 mov rdi, rcx mov rsi, rdx mov rdx, r8 mov rcx, r9 mov r8, qword ptr [rbp+0x68] movzx r9, byte ptr [rbp+0x70] neg r9d movd xmm0, r9d pshufd xmm0, xmm0, 0x00 movdqa xmmword ptr [rsp+0x130], xmm0 movdqa xmm1, xmm0 pand xmm1, xmmword ptr [ADD0+rip] pand xmm0, xmmword ptr [ADD1+rip] movdqa xmmword ptr [rsp+0x150], xmm0 movd xmm0, r8d pshufd xmm0, xmm0, 0x00 paddd xmm0, xmm1 movdqa xmmword ptr [rsp+0x110], xmm0 pxor xmm0, xmmword ptr [CMP_MSB_MASK+rip] pxor xmm1, xmmword ptr [CMP_MSB_MASK+rip] pcmpgtd xmm1, xmm0 shr r8, 32 movd xmm2, r8d pshufd xmm2, xmm2, 0x00 psubd xmm2, xmm1 movdqa xmmword ptr [rsp+0x120], xmm2 mov rbx, qword ptr [rbp+0x90] mov r15, rdx shl r15, 6 movzx r13d, byte ptr [rbp+0x78] movzx r12d, byte ptr [rbp+0x88] cmp rsi, 4 jc 3f 2: movdqu xmm3, xmmword ptr [rcx] pshufd xmm0, xmm3, 0x00 pshufd xmm1, xmm3, 0x55 pshufd xmm2, xmm3, 0xAA pshufd xmm3, xmm3, 0xFF movdqu xmm7, xmmword ptr [rcx+0x10] pshufd xmm4, xmm7, 0x00 pshufd xmm5, xmm7, 0x55 pshufd xmm6, xmm7, 0xAA pshufd xmm7, xmm7, 0xFF mov r8, qword ptr [rdi] mov r9, qword ptr [rdi+0x8] mov r10, qword ptr [rdi+0x10] mov r11, qword ptr [rdi+0x18] movzx eax, byte ptr [rbp+0x80] or eax, r13d xor edx, edx 9: mov r14d, eax or eax, r12d add rdx, 64 cmp rdx, r15 cmovne eax, r14d movdqu xmm8, xmmword ptr [r8+rdx-0x40] movdqu xmm9, xmmword ptr [r9+rdx-0x40] movdqu xmm10, xmmword ptr [r10+rdx-0x40] movdqu xmm11, xmmword ptr [r11+rdx-0x40] movdqa xmm12, xmm8 punpckldq xmm8, xmm9 punpckhdq xmm12, xmm9 movdqa xmm14, xmm10 punpckldq xmm10, xmm11 punpckhdq xmm14, xmm11 movdqa xmm9, xmm8 punpcklqdq xmm8, xmm10 punpckhqdq xmm9, xmm10 movdqa xmm13, xmm12 punpcklqdq xmm12, xmm14 punpckhqdq xmm13, xmm14 movdqa xmmword ptr [rsp], xmm8 movdqa xmmword ptr [rsp+0x10], xmm9 movdqa xmmword ptr [rsp+0x20], xmm12 movdqa xmmword ptr [rsp+0x30], xmm13 movdqu xmm8, xmmword ptr [r8+rdx-0x30] movdqu xmm9, xmmword ptr [r9+rdx-0x30] movdqu xmm10, xmmword ptr [r10+rdx-0x30] movdqu xmm11, xmmword ptr [r11+rdx-0x30] movdqa xmm12, xmm8 punpckldq xmm8, xmm9 punpckhdq xmm12, xmm9 movdqa xmm14, xmm10 punpckldq xmm10, xmm11 punpckhdq xmm14, xmm11 movdqa xmm9, xmm8 punpcklqdq xmm8, xmm10 punpckhqdq xmm9, xmm10 movdqa xmm13, xmm12 punpcklqdq xmm12, xmm14 punpckhqdq xmm13, xmm14 movdqa xmmword ptr [rsp+0x40], xmm8 movdqa xmmword ptr [rsp+0x50], xmm9 movdqa xmmword ptr [rsp+0x60], xmm12 movdqa xmmword ptr [rsp+0x70], xmm13 movdqu xmm8, xmmword ptr [r8+rdx-0x20] movdqu xmm9, xmmword ptr [r9+rdx-0x20] movdqu xmm10, xmmword ptr [r10+rdx-0x20] movdqu xmm11, xmmword ptr [r11+rdx-0x20] movdqa xmm12, xmm8 punpckldq xmm8, xmm9 punpckhdq xmm12, xmm9 movdqa xmm14, xmm10 punpckldq xmm10, xmm11 punpckhdq xmm14, xmm11 movdqa xmm9, xmm8 punpcklqdq xmm8, xmm10 punpckhqdq xmm9, xmm10 movdqa xmm13, xmm12 punpcklqdq xmm12, xmm14 punpckhqdq xmm13, xmm14 movdqa xmmword ptr [rsp+0x80], xmm8 movdqa xmmword ptr [rsp+0x90], xmm9 movdqa xmmword ptr [rsp+0xA0], xmm12 movdqa xmmword ptr [rsp+0xB0], xmm13 movdqu xmm8, xmmword ptr [r8+rdx-0x10] movdqu xmm9, xmmword ptr [r9+rdx-0x10] movdqu xmm10, xmmword ptr [r10+rdx-0x10] movdqu xmm11, xmmword ptr [r11+rdx-0x10] movdqa xmm12, xmm8 punpckldq xmm8, xmm9 punpckhdq xmm12, xmm9 movdqa xmm14, xmm10 punpckldq xmm10, xmm11 punpckhdq xmm14, xmm11 movdqa xmm9, xmm8 punpcklqdq xmm8, xmm10 punpckhqdq xmm9, xmm10 movdqa xmm13, xmm12 punpcklqdq xmm12, xmm14 punpckhqdq xmm13, xmm14 movdqa xmmword ptr [rsp+0xC0], xmm8 movdqa xmmword ptr [rsp+0xD0], xmm9 movdqa xmmword ptr [rsp+0xE0], xmm12 movdqa xmmword ptr [rsp+0xF0], xmm13 movdqa xmm9, xmmword ptr [BLAKE3_IV_1+rip] movdqa xmm10, xmmword ptr [BLAKE3_IV_2+rip] movdqa xmm11, xmmword ptr [BLAKE3_IV_3+rip] movdqa xmm12, xmmword ptr [rsp+0x110] movdqa xmm13, xmmword ptr [rsp+0x120] movdqa xmm14, xmmword ptr [BLAKE3_BLOCK_LEN+rip] movd xmm15, eax pshufd xmm15, xmm15, 0x00 prefetcht0 [r8+rdx+0x80] prefetcht0 [r9+rdx+0x80] prefetcht0 [r10+rdx+0x80] prefetcht0 [r11+rdx+0x80] paddd xmm0, xmmword ptr [rsp] paddd xmm1, xmmword ptr [rsp+0x20] paddd xmm2, xmmword ptr [rsp+0x40] paddd xmm3, xmmword ptr [rsp+0x60] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 pshuflw xmm12, xmm12, 0xB1 pshufhw xmm12, xmm12, 0xB1 pshuflw xmm13, xmm13, 0xB1 pshufhw xmm13, xmm13, 0xB1 pshuflw xmm14, xmm14, 0xB1 pshufhw xmm14, xmm14, 0xB1 pshuflw xmm15, xmm15, 0xB1 pshufhw xmm15, xmm15, 0xB1 movdqa xmm8, xmmword ptr [BLAKE3_IV_0+rip] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x10] paddd xmm1, xmmword ptr [rsp+0x30] paddd xmm2, xmmword ptr [rsp+0x50] paddd xmm3, xmmword ptr [rsp+0x70] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmm12 psrld xmm12, 8 pslld xmm8, 24 pxor xmm12, xmm8 movdqa xmm8, xmm13 psrld xmm13, 8 pslld xmm8, 24 pxor xmm13, xmm8 movdqa xmm8, xmm14 psrld xmm14, 8 pslld xmm8, 24 pxor xmm14, xmm8 movdqa xmm8, xmm15 psrld xmm15, 8 pslld xmm8, 24 pxor xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x80] paddd xmm1, xmmword ptr [rsp+0xA0] paddd xmm2, xmmword ptr [rsp+0xC0] paddd xmm3, xmmword ptr [rsp+0xE0] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 pshuflw xmm15, xmm15, 0xB1 pshufhw xmm15, xmm15, 0xB1 pshuflw xmm12, xmm12, 0xB1 pshufhw xmm12, xmm12, 0xB1 pshuflw xmm13, xmm13, 0xB1 pshufhw xmm13, xmm13, 0xB1 pshuflw xmm14, xmm14, 0xB1 pshufhw xmm14, xmm14, 0xB1 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0x90] paddd xmm1, xmmword ptr [rsp+0xB0] paddd xmm2, xmmword ptr [rsp+0xD0] paddd xmm3, xmmword ptr [rsp+0xF0] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmm15 psrld xmm15, 8 pslld xmm8, 24 pxor xmm15, xmm8 movdqa xmm8, xmm12 psrld xmm12, 8 pslld xmm8, 24 pxor xmm12, xmm8 movdqa xmm8, xmm13 psrld xmm13, 8 pslld xmm8, 24 pxor xmm13, xmm8 movdqa xmm8, xmm14 psrld xmm14, 8 pslld xmm8, 24 pxor xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0x20] paddd xmm1, xmmword ptr [rsp+0x30] paddd xmm2, xmmword ptr [rsp+0x70] paddd xmm3, xmmword ptr [rsp+0x40] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 pshuflw xmm12, xmm12, 0xB1 pshufhw xmm12, xmm12, 0xB1 pshuflw xmm13, xmm13, 0xB1 pshufhw xmm13, xmm13, 0xB1 pshuflw xmm14, xmm14, 0xB1 pshufhw xmm14, xmm14, 0xB1 pshuflw xmm15, xmm15, 0xB1 pshufhw xmm15, xmm15, 0xB1 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x60] paddd xmm1, xmmword ptr [rsp+0xA0] paddd xmm2, xmmword ptr [rsp] paddd xmm3, xmmword ptr [rsp+0xD0] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmm12 psrld xmm12, 8 pslld xmm8, 24 pxor xmm12, xmm8 movdqa xmm8, xmm13 psrld xmm13, 8 pslld xmm8, 24 pxor xmm13, xmm8 movdqa xmm8, xmm14 psrld xmm14, 8 pslld xmm8, 24 pxor xmm14, xmm8 movdqa xmm8, xmm15 psrld xmm15, 8 pslld xmm8, 24 pxor xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x10] paddd xmm1, xmmword ptr [rsp+0xC0] paddd xmm2, xmmword ptr [rsp+0x90] paddd xmm3, xmmword ptr [rsp+0xF0] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 pshuflw xmm15, xmm15, 0xB1 pshufhw xmm15, xmm15, 0xB1 pshuflw xmm12, xmm12, 0xB1 pshufhw xmm12, xmm12, 0xB1 pshuflw xmm13, xmm13, 0xB1 pshufhw xmm13, xmm13, 0xB1 pshuflw xmm14, xmm14, 0xB1 pshufhw xmm14, xmm14, 0xB1 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0xB0] paddd xmm1, xmmword ptr [rsp+0x50] paddd xmm2, xmmword ptr [rsp+0xE0] paddd xmm3, xmmword ptr [rsp+0x80] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmm15 psrld xmm15, 8 pslld xmm8, 24 pxor xmm15, xmm8 movdqa xmm8, xmm12 psrld xmm12, 8 pslld xmm8, 24 pxor xmm12, xmm8 movdqa xmm8, xmm13 psrld xmm13, 8 pslld xmm8, 24 pxor xmm13, xmm8 movdqa xmm8, xmm14 psrld xmm14, 8 pslld xmm8, 24 pxor xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0x30] paddd xmm1, xmmword ptr [rsp+0xA0] paddd xmm2, xmmword ptr [rsp+0xD0] paddd xmm3, xmmword ptr [rsp+0x70] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 pshuflw xmm12, xmm12, 0xB1 pshufhw xmm12, xmm12, 0xB1 pshuflw xmm13, xmm13, 0xB1 pshufhw xmm13, xmm13, 0xB1 pshuflw xmm14, xmm14, 0xB1 pshufhw xmm14, xmm14, 0xB1 pshuflw xmm15, xmm15, 0xB1 pshufhw xmm15, xmm15, 0xB1 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x40] paddd xmm1, xmmword ptr [rsp+0xC0] paddd xmm2, xmmword ptr [rsp+0x20] paddd xmm3, xmmword ptr [rsp+0xE0] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmm12 psrld xmm12, 8 pslld xmm8, 24 pxor xmm12, xmm8 movdqa xmm8, xmm13 psrld xmm13, 8 pslld xmm8, 24 pxor xmm13, xmm8 movdqa xmm8, xmm14 psrld xmm14, 8 pslld xmm8, 24 pxor xmm14, xmm8 movdqa xmm8, xmm15 psrld xmm15, 8 pslld xmm8, 24 pxor xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x60] paddd xmm1, xmmword ptr [rsp+0x90] paddd xmm2, xmmword ptr [rsp+0xB0] paddd xmm3, xmmword ptr [rsp+0x80] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 pshuflw xmm15, xmm15, 0xB1 pshufhw xmm15, xmm15, 0xB1 pshuflw xmm12, xmm12, 0xB1 pshufhw xmm12, xmm12, 0xB1 pshuflw xmm13, xmm13, 0xB1 pshufhw xmm13, xmm13, 0xB1 pshuflw xmm14, xmm14, 0xB1 pshufhw xmm14, xmm14, 0xB1 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0x50] paddd xmm1, xmmword ptr [rsp] paddd xmm2, xmmword ptr [rsp+0xF0] paddd xmm3, xmmword ptr [rsp+0x10] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmm15 psrld xmm15, 8 pslld xmm8, 24 pxor xmm15, xmm8 movdqa xmm8, xmm12 psrld xmm12, 8 pslld xmm8, 24 pxor xmm12, xmm8 movdqa xmm8, xmm13 psrld xmm13, 8 pslld xmm8, 24 pxor xmm13, xmm8 movdqa xmm8, xmm14 psrld xmm14, 8 pslld xmm8, 24 pxor xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0xA0] paddd xmm1, xmmword ptr [rsp+0xC0] paddd xmm2, xmmword ptr [rsp+0xE0] paddd xmm3, xmmword ptr [rsp+0xD0] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 pshuflw xmm12, xmm12, 0xB1 pshufhw xmm12, xmm12, 0xB1 pshuflw xmm13, xmm13, 0xB1 pshufhw xmm13, xmm13, 0xB1 pshuflw xmm14, xmm14, 0xB1 pshufhw xmm14, xmm14, 0xB1 pshuflw xmm15, xmm15, 0xB1 pshufhw xmm15, xmm15, 0xB1 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x70] paddd xmm1, xmmword ptr [rsp+0x90] paddd xmm2, xmmword ptr [rsp+0x30] paddd xmm3, xmmword ptr [rsp+0xF0] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmm12 psrld xmm12, 8 pslld xmm8, 24 pxor xmm12, xmm8 movdqa xmm8, xmm13 psrld xmm13, 8 pslld xmm8, 24 pxor xmm13, xmm8 movdqa xmm8, xmm14 psrld xmm14, 8 pslld xmm8, 24 pxor xmm14, xmm8 movdqa xmm8, xmm15 psrld xmm15, 8 pslld xmm8, 24 pxor xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x40] paddd xmm1, xmmword ptr [rsp+0xB0] paddd xmm2, xmmword ptr [rsp+0x50] paddd xmm3, xmmword ptr [rsp+0x10] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 pshuflw xmm15, xmm15, 0xB1 pshufhw xmm15, xmm15, 0xB1 pshuflw xmm12, xmm12, 0xB1 pshufhw xmm12, xmm12, 0xB1 pshuflw xmm13, xmm13, 0xB1 pshufhw xmm13, xmm13, 0xB1 pshuflw xmm14, xmm14, 0xB1 pshufhw xmm14, xmm14, 0xB1 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp] paddd xmm1, xmmword ptr [rsp+0x20] paddd xmm2, xmmword ptr [rsp+0x80] paddd xmm3, xmmword ptr [rsp+0x60] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmm15 psrld xmm15, 8 pslld xmm8, 24 pxor xmm15, xmm8 movdqa xmm8, xmm12 psrld xmm12, 8 pslld xmm8, 24 pxor xmm12, xmm8 movdqa xmm8, xmm13 psrld xmm13, 8 pslld xmm8, 24 pxor xmm13, xmm8 movdqa xmm8, xmm14 psrld xmm14, 8 pslld xmm8, 24 pxor xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0xC0] paddd xmm1, xmmword ptr [rsp+0x90] paddd xmm2, xmmword ptr [rsp+0xF0] paddd xmm3, xmmword ptr [rsp+0xE0] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 pshuflw xmm12, xmm12, 0xB1 pshufhw xmm12, xmm12, 0xB1 pshuflw xmm13, xmm13, 0xB1 pshufhw xmm13, xmm13, 0xB1 pshuflw xmm14, xmm14, 0xB1 pshufhw xmm14, xmm14, 0xB1 pshuflw xmm15, xmm15, 0xB1 pshufhw xmm15, xmm15, 0xB1 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0xD0] paddd xmm1, xmmword ptr [rsp+0xB0] paddd xmm2, xmmword ptr [rsp+0xA0] paddd xmm3, xmmword ptr [rsp+0x80] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmm12 psrld xmm12, 8 pslld xmm8, 24 pxor xmm12, xmm8 movdqa xmm8, xmm13 psrld xmm13, 8 pslld xmm8, 24 pxor xmm13, xmm8 movdqa xmm8, xmm14 psrld xmm14, 8 pslld xmm8, 24 pxor xmm14, xmm8 movdqa xmm8, xmm15 psrld xmm15, 8 pslld xmm8, 24 pxor xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x70] paddd xmm1, xmmword ptr [rsp+0x50] paddd xmm2, xmmword ptr [rsp] paddd xmm3, xmmword ptr [rsp+0x60] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 pshuflw xmm15, xmm15, 0xB1 pshufhw xmm15, xmm15, 0xB1 pshuflw xmm12, xmm12, 0xB1 pshufhw xmm12, xmm12, 0xB1 pshuflw xmm13, xmm13, 0xB1 pshufhw xmm13, xmm13, 0xB1 pshuflw xmm14, xmm14, 0xB1 pshufhw xmm14, xmm14, 0xB1 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0x20] paddd xmm1, xmmword ptr [rsp+0x30] paddd xmm2, xmmword ptr [rsp+0x10] paddd xmm3, xmmword ptr [rsp+0x40] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmm15 psrld xmm15, 8 pslld xmm8, 24 pxor xmm15, xmm8 movdqa xmm8, xmm12 psrld xmm12, 8 pslld xmm8, 24 pxor xmm12, xmm8 movdqa xmm8, xmm13 psrld xmm13, 8 pslld xmm8, 24 pxor xmm13, xmm8 movdqa xmm8, xmm14 psrld xmm14, 8 pslld xmm8, 24 pxor xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0x90] paddd xmm1, xmmword ptr [rsp+0xB0] paddd xmm2, xmmword ptr [rsp+0x80] paddd xmm3, xmmword ptr [rsp+0xF0] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 pshuflw xmm12, xmm12, 0xB1 pshufhw xmm12, xmm12, 0xB1 pshuflw xmm13, xmm13, 0xB1 pshufhw xmm13, xmm13, 0xB1 pshuflw xmm14, xmm14, 0xB1 pshufhw xmm14, xmm14, 0xB1 pshuflw xmm15, xmm15, 0xB1 pshufhw xmm15, xmm15, 0xB1 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0xE0] paddd xmm1, xmmword ptr [rsp+0x50] paddd xmm2, xmmword ptr [rsp+0xC0] paddd xmm3, xmmword ptr [rsp+0x10] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmm12 psrld xmm12, 8 pslld xmm8, 24 pxor xmm12, xmm8 movdqa xmm8, xmm13 psrld xmm13, 8 pslld xmm8, 24 pxor xmm13, xmm8 movdqa xmm8, xmm14 psrld xmm14, 8 pslld xmm8, 24 pxor xmm14, xmm8 movdqa xmm8, xmm15 psrld xmm15, 8 pslld xmm8, 24 pxor xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0xD0] paddd xmm1, xmmword ptr [rsp] paddd xmm2, xmmword ptr [rsp+0x20] paddd xmm3, xmmword ptr [rsp+0x40] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 pshuflw xmm15, xmm15, 0xB1 pshufhw xmm15, xmm15, 0xB1 pshuflw xmm12, xmm12, 0xB1 pshufhw xmm12, xmm12, 0xB1 pshuflw xmm13, xmm13, 0xB1 pshufhw xmm13, xmm13, 0xB1 pshuflw xmm14, xmm14, 0xB1 pshufhw xmm14, xmm14, 0xB1 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0x30] paddd xmm1, xmmword ptr [rsp+0xA0] paddd xmm2, xmmword ptr [rsp+0x60] paddd xmm3, xmmword ptr [rsp+0x70] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmm15 psrld xmm15, 8 pslld xmm8, 24 pxor xmm15, xmm8 movdqa xmm8, xmm12 psrld xmm12, 8 pslld xmm8, 24 pxor xmm12, xmm8 movdqa xmm8, xmm13 psrld xmm13, 8 pslld xmm8, 24 pxor xmm13, xmm8 movdqa xmm8, xmm14 psrld xmm14, 8 pslld xmm8, 24 pxor xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0xB0] paddd xmm1, xmmword ptr [rsp+0x50] paddd xmm2, xmmword ptr [rsp+0x10] paddd xmm3, xmmword ptr [rsp+0x80] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 pshuflw xmm12, xmm12, 0xB1 pshufhw xmm12, xmm12, 0xB1 pshuflw xmm13, xmm13, 0xB1 pshufhw xmm13, xmm13, 0xB1 pshuflw xmm14, xmm14, 0xB1 pshufhw xmm14, xmm14, 0xB1 pshuflw xmm15, xmm15, 0xB1 pshufhw xmm15, xmm15, 0xB1 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0xF0] paddd xmm1, xmmword ptr [rsp] paddd xmm2, xmmword ptr [rsp+0x90] paddd xmm3, xmmword ptr [rsp+0x60] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmm12 psrld xmm12, 8 pslld xmm8, 24 pxor xmm12, xmm8 movdqa xmm8, xmm13 psrld xmm13, 8 pslld xmm8, 24 pxor xmm13, xmm8 movdqa xmm8, xmm14 psrld xmm14, 8 pslld xmm8, 24 pxor xmm14, xmm8 movdqa xmm8, xmm15 psrld xmm15, 8 pslld xmm8, 24 pxor xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0xE0] paddd xmm1, xmmword ptr [rsp+0x20] paddd xmm2, xmmword ptr [rsp+0x30] paddd xmm3, xmmword ptr [rsp+0x70] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 pshuflw xmm15, xmm15, 0xB1 pshufhw xmm15, xmm15, 0xB1 pshuflw xmm12, xmm12, 0xB1 pshufhw xmm12, xmm12, 0xB1 pshuflw xmm13, xmm13, 0xB1 pshufhw xmm13, xmm13, 0xB1 pshuflw xmm14, xmm14, 0xB1 pshufhw xmm14, xmm14, 0xB1 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0xA0] paddd xmm1, xmmword ptr [rsp+0xC0] paddd xmm2, xmmword ptr [rsp+0x40] paddd xmm3, xmmword ptr [rsp+0xD0] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmm15 psrld xmm15, 8 pslld xmm8, 24 pxor xmm15, xmm8 movdqa xmm8, xmm12 psrld xmm12, 8 pslld xmm8, 24 pxor xmm12, xmm8 movdqa xmm8, xmm13 psrld xmm13, 8 pslld xmm8, 24 pxor xmm13, xmm8 movdqa xmm8, xmm14 psrld xmm14, 8 pslld xmm8, 24 pxor xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 pxor xmm0, xmm8 pxor xmm1, xmm9 pxor xmm2, xmm10 pxor xmm3, xmm11 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 pxor xmm4, xmm12 pxor xmm5, xmm13 pxor xmm6, xmm14 pxor xmm7, xmm15 mov eax, r13d jne 9b movdqa xmm9, xmm0 punpckldq xmm0, xmm1 punpckhdq xmm9, xmm1 movdqa xmm11, xmm2 punpckldq xmm2, xmm3 punpckhdq xmm11, xmm3 movdqa xmm1, xmm0 punpcklqdq xmm0, xmm2 punpckhqdq xmm1, xmm2 movdqa xmm3, xmm9 punpcklqdq xmm9, xmm11 punpckhqdq xmm3, xmm11 movdqu xmmword ptr [rbx], xmm0 movdqu xmmword ptr [rbx+0x20], xmm1 movdqu xmmword ptr [rbx+0x40], xmm9 movdqu xmmword ptr [rbx+0x60], xmm3 movdqa xmm9, xmm4 punpckldq xmm4, xmm5 punpckhdq xmm9, xmm5 movdqa xmm11, xmm6 punpckldq xmm6, xmm7 punpckhdq xmm11, xmm7 movdqa xmm5, xmm4 punpcklqdq xmm4, xmm6 punpckhqdq xmm5, xmm6 movdqa xmm7, xmm9 punpcklqdq xmm9, xmm11 punpckhqdq xmm7, xmm11 movdqu xmmword ptr [rbx+0x10], xmm4 movdqu xmmword ptr [rbx+0x30], xmm5 movdqu xmmword ptr [rbx+0x50], xmm9 movdqu xmmword ptr [rbx+0x70], xmm7 movdqa xmm1, xmmword ptr [rsp+0x110] movdqa xmm0, xmm1 paddd xmm1, xmmword ptr [rsp+0x150] movdqa xmmword ptr [rsp+0x110], xmm1 pxor xmm0, xmmword ptr [CMP_MSB_MASK+rip] pxor xmm1, xmmword ptr [CMP_MSB_MASK+rip] pcmpgtd xmm0, xmm1 movdqa xmm1, xmmword ptr [rsp+0x120] psubd xmm1, xmm0 movdqa xmmword ptr [rsp+0x120], xmm1 add rbx, 128 add rdi, 32 sub rsi, 4 cmp rsi, 4 jnc 2b test rsi, rsi jne 3f 4: movdqa xmm6, xmmword ptr [rsp+0x170] movdqa xmm7, xmmword ptr [rsp+0x180] movdqa xmm8, xmmword ptr [rsp+0x190] movdqa xmm9, xmmword ptr [rsp+0x1A0] movdqa xmm10, xmmword ptr [rsp+0x1B0] movdqa xmm11, xmmword ptr [rsp+0x1C0] movdqa xmm12, xmmword ptr [rsp+0x1D0] movdqa xmm13, xmmword ptr [rsp+0x1E0] movdqa xmm14, xmmword ptr [rsp+0x1F0] movdqa xmm15, xmmword ptr [rsp+0x200] mov rsp, rbp pop rbp pop rbx pop rdi pop rsi pop r12 pop r13 pop r14 pop r15 ret .p2align 5 3: test esi, 0x2 je 3f movups xmm0, xmmword ptr [rcx] movups xmm1, xmmword ptr [rcx+0x10] movaps xmm8, xmm0 movaps xmm9, xmm1 movd xmm13, dword ptr [rsp+0x110] movd xmm14, dword ptr [rsp+0x120] punpckldq xmm13, xmm14 movaps xmmword ptr [rsp], xmm13 movd xmm14, dword ptr [rsp+0x114] movd xmm13, dword ptr [rsp+0x124] punpckldq xmm14, xmm13 movaps xmmword ptr [rsp+0x10], xmm14 mov r8, qword ptr [rdi] mov r9, qword ptr [rdi+0x8] movzx eax, byte ptr [rbp+0x80] or eax, r13d xor edx, edx 2: mov r14d, eax or eax, r12d add rdx, 64 cmp rdx, r15 cmovne eax, r14d movaps xmm2, xmmword ptr [BLAKE3_IV+rip] movaps xmm10, xmm2 movups xmm4, xmmword ptr [r8+rdx-0x40] movups xmm5, xmmword ptr [r8+rdx-0x30] movaps xmm3, xmm4 shufps xmm4, xmm5, 136 shufps xmm3, xmm5, 221 movaps xmm5, xmm3 movups xmm6, xmmword ptr [r8+rdx-0x20] movups xmm7, xmmword ptr [r8+rdx-0x10] movaps xmm3, xmm6 shufps xmm6, xmm7, 136 pshufd xmm6, xmm6, 0x93 shufps xmm3, xmm7, 221 pshufd xmm7, xmm3, 0x93 movups xmm12, xmmword ptr [r9+rdx-0x40] movups xmm13, xmmword ptr [r9+rdx-0x30] movaps xmm11, xmm12 shufps xmm12, xmm13, 136 shufps xmm11, xmm13, 221 movaps xmm13, xmm11 movups xmm14, xmmword ptr [r9+rdx-0x20] movups xmm15, xmmword ptr [r9+rdx-0x10] movaps xmm11, xmm14 shufps xmm14, xmm15, 136 pshufd xmm14, xmm14, 0x93 shufps xmm11, xmm15, 221 pshufd xmm15, xmm11, 0x93 shl rax, 0x20 or rax, 0x40 movq xmm3, rax movdqa xmmword ptr [rsp+0x20], xmm3 movaps xmm3, xmmword ptr [rsp] movaps xmm11, xmmword ptr [rsp+0x10] punpcklqdq xmm3, xmmword ptr [rsp+0x20] punpcklqdq xmm11, xmmword ptr [rsp+0x20] mov al, 7 9: paddd xmm0, xmm4 paddd xmm8, xmm12 movaps xmmword ptr [rsp+0x20], xmm4 movaps xmmword ptr [rsp+0x30], xmm12 paddd xmm0, xmm1 paddd xmm8, xmm9 pxor xmm3, xmm0 pxor xmm11, xmm8 pshuflw xmm3, xmm3, 0xB1 pshufhw xmm3, xmm3, 0xB1 pshuflw xmm11, xmm11, 0xB1 pshufhw xmm11, xmm11, 0xB1 paddd xmm2, xmm3 paddd xmm10, xmm11 pxor xmm1, xmm2 pxor xmm9, xmm10 movdqa xmm4, xmm1 pslld xmm1, 20 psrld xmm4, 12 por xmm1, xmm4 movdqa xmm4, xmm9 pslld xmm9, 20 psrld xmm4, 12 por xmm9, xmm4 paddd xmm0, xmm5 paddd xmm8, xmm13 movaps xmmword ptr [rsp+0x40], xmm5 movaps xmmword ptr [rsp+0x50], xmm13 paddd xmm0, xmm1 paddd xmm8, xmm9 pxor xmm3, xmm0 pxor xmm11, xmm8 movdqa xmm13, xmm3 psrld xmm3, 8 pslld xmm13, 24 pxor xmm3, xmm13 movdqa xmm13, xmm11 psrld xmm11, 8 pslld xmm13, 24 pxor xmm11, xmm13 paddd xmm2, xmm3 paddd xmm10, xmm11 pxor xmm1, xmm2 pxor xmm9, xmm10 movdqa xmm4, xmm1 pslld xmm1, 25 psrld xmm4, 7 por xmm1, xmm4 movdqa xmm4, xmm9 pslld xmm9, 25 psrld xmm4, 7 por xmm9, xmm4 pshufd xmm0, xmm0, 0x93 pshufd xmm8, xmm8, 0x93 pshufd xmm3, xmm3, 0x4E pshufd xmm11, xmm11, 0x4E pshufd xmm2, xmm2, 0x39 pshufd xmm10, xmm10, 0x39 paddd xmm0, xmm6 paddd xmm8, xmm14 paddd xmm0, xmm1 paddd xmm8, xmm9 pxor xmm3, xmm0 pxor xmm11, xmm8 pshuflw xmm3, xmm3, 0xB1 pshufhw xmm3, xmm3, 0xB1 pshuflw xmm11, xmm11, 0xB1 pshufhw xmm11, xmm11, 0xB1 paddd xmm2, xmm3 paddd xmm10, xmm11 pxor xmm1, xmm2 pxor xmm9, xmm10 movdqa xmm4, xmm1 pslld xmm1, 20 psrld xmm4, 12 por xmm1, xmm4 movdqa xmm4, xmm9 pslld xmm9, 20 psrld xmm4, 12 por xmm9, xmm4 paddd xmm0, xmm7 paddd xmm8, xmm15 paddd xmm0, xmm1 paddd xmm8, xmm9 pxor xmm3, xmm0 pxor xmm11, xmm8 movdqa xmm13, xmm3 psrld xmm3, 8 pslld xmm13, 24 pxor xmm3, xmm13 movdqa xmm13, xmm11 psrld xmm11, 8 pslld xmm13, 24 pxor xmm11, xmm13 paddd xmm2, xmm3 paddd xmm10, xmm11 pxor xmm1, xmm2 pxor xmm9, xmm10 movdqa xmm4, xmm1 pslld xmm1, 25 psrld xmm4, 7 por xmm1, xmm4 movdqa xmm4, xmm9 pslld xmm9, 25 psrld xmm4, 7 por xmm9, xmm4 pshufd xmm0, xmm0, 0x39 pshufd xmm8, xmm8, 0x39 pshufd xmm3, xmm3, 0x4E pshufd xmm11, xmm11, 0x4E pshufd xmm2, xmm2, 0x93 pshufd xmm10, xmm10, 0x93 dec al je 9f movdqa xmm12, xmmword ptr [rsp+0x20] movdqa xmm5, xmmword ptr [rsp+0x40] pshufd xmm13, xmm12, 0x0F shufps xmm12, xmm5, 214 pshufd xmm4, xmm12, 0x39 movdqa xmm12, xmm6 shufps xmm12, xmm7, 250 pand xmm13, xmmword ptr [PBLENDW_0x33_MASK+rip] pand xmm12, xmmword ptr [PBLENDW_0xCC_MASK+rip] por xmm13, xmm12 movdqa xmmword ptr [rsp+0x20], xmm13 movdqa xmm12, xmm7 punpcklqdq xmm12, xmm5 movdqa xmm13, xmm6 pand xmm12, xmmword ptr [PBLENDW_0x3F_MASK+rip] pand xmm13, xmmword ptr [PBLENDW_0xC0_MASK+rip] por xmm12, xmm13 pshufd xmm12, xmm12, 0x78 punpckhdq xmm5, xmm7 punpckldq xmm6, xmm5 pshufd xmm7, xmm6, 0x1E movdqa xmmword ptr [rsp+0x40], xmm12 movdqa xmm5, xmmword ptr [rsp+0x30] movdqa xmm13, xmmword ptr [rsp+0x50] pshufd xmm6, xmm5, 0x0F shufps xmm5, xmm13, 214 pshufd xmm12, xmm5, 0x39 movdqa xmm5, xmm14 shufps xmm5, xmm15, 250 pand xmm6, xmmword ptr [PBLENDW_0x33_MASK+rip] pand xmm5, xmmword ptr [PBLENDW_0xCC_MASK+rip] por xmm6, xmm5 movdqa xmm5, xmm15 punpcklqdq xmm5, xmm13 movdqa xmmword ptr [rsp+0x30], xmm2 movdqa xmm2, xmm14 pand xmm5, xmmword ptr [PBLENDW_0x3F_MASK+rip] pand xmm2, xmmword ptr [PBLENDW_0xC0_MASK+rip] por xmm5, xmm2 movdqa xmm2, xmmword ptr [rsp+0x30] pshufd xmm5, xmm5, 0x78 punpckhdq xmm13, xmm15 punpckldq xmm14, xmm13 pshufd xmm15, xmm14, 0x1E movdqa xmm13, xmm6 movdqa xmm14, xmm5 movdqa xmm5, xmmword ptr [rsp+0x20] movdqa xmm6, xmmword ptr [rsp+0x40] jmp 9b 9: pxor xmm0, xmm2 pxor xmm1, xmm3 pxor xmm8, xmm10 pxor xmm9, xmm11 mov eax, r13d cmp rdx, r15 jne 2b movups xmmword ptr [rbx], xmm0 movups xmmword ptr [rbx+0x10], xmm1 movups xmmword ptr [rbx+0x20], xmm8 movups xmmword ptr [rbx+0x30], xmm9 mov eax, dword ptr [rsp+0x130] neg eax mov r10d, dword ptr [rsp+0x110+8*rax] mov r11d, dword ptr [rsp+0x120+8*rax] mov dword ptr [rsp+0x110], r10d mov dword ptr [rsp+0x120], r11d add rdi, 16 add rbx, 64 sub rsi, 2 3: test esi, 0x1 je 4b movups xmm0, xmmword ptr [rcx] movups xmm1, xmmword ptr [rcx+0x10] movd xmm13, dword ptr [rsp+0x110] movd xmm14, dword ptr [rsp+0x120] punpckldq xmm13, xmm14 mov r8, qword ptr [rdi] movzx eax, byte ptr [rbp+0x80] or eax, r13d xor edx, edx 2: mov r14d, eax or eax, r12d add rdx, 64 cmp rdx, r15 cmovne eax, r14d movaps xmm2, xmmword ptr [BLAKE3_IV+rip] shl rax, 32 or rax, 64 movq xmm12, rax movdqa xmm3, xmm13 punpcklqdq xmm3, xmm12 movups xmm4, xmmword ptr [r8+rdx-0x40] movups xmm5, xmmword ptr [r8+rdx-0x30] movaps xmm8, xmm4 shufps xmm4, xmm5, 136 shufps xmm8, xmm5, 221 movaps xmm5, xmm8 movups xmm6, xmmword ptr [r8+rdx-0x20] movups xmm7, xmmword ptr [r8+rdx-0x10] movaps xmm8, xmm6 shufps xmm6, xmm7, 136 pshufd xmm6, xmm6, 0x93 shufps xmm8, xmm7, 221 pshufd xmm7, xmm8, 0x93 mov al, 7 9: paddd xmm0, xmm4 paddd xmm0, xmm1 pxor xmm3, xmm0 pshuflw xmm3, xmm3, 0xB1 pshufhw xmm3, xmm3, 0xB1 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 20 psrld xmm11, 12 por xmm1, xmm11 paddd xmm0, xmm5 paddd xmm0, xmm1 pxor xmm3, xmm0 movdqa xmm14, xmm3 psrld xmm3, 8 pslld xmm14, 24 pxor xmm3, xmm14 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 25 psrld xmm11, 7 por xmm1, xmm11 pshufd xmm0, xmm0, 0x93 pshufd xmm3, xmm3, 0x4E pshufd xmm2, xmm2, 0x39 paddd xmm0, xmm6 paddd xmm0, xmm1 pxor xmm3, xmm0 pshuflw xmm3, xmm3, 0xB1 pshufhw xmm3, xmm3, 0xB1 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 20 psrld xmm11, 12 por xmm1, xmm11 paddd xmm0, xmm7 paddd xmm0, xmm1 pxor xmm3, xmm0 movdqa xmm14, xmm3 psrld xmm3, 8 pslld xmm14, 24 pxor xmm3, xmm14 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 25 psrld xmm11, 7 por xmm1, xmm11 pshufd xmm0, xmm0, 0x39 pshufd xmm3, xmm3, 0x4E pshufd xmm2, xmm2, 0x93 dec al jz 9f movdqa xmm8, xmm4 shufps xmm8, xmm5, 214 pshufd xmm9, xmm4, 0x0F pshufd xmm4, xmm8, 0x39 movdqa xmm8, xmm6 shufps xmm8, xmm7, 250 pand xmm9, xmmword ptr [PBLENDW_0x33_MASK+rip] pand xmm8, xmmword ptr [PBLENDW_0xCC_MASK+rip] por xmm9, xmm8 movdqa xmm8, xmm7 punpcklqdq xmm8, xmm5 movdqa xmm10, xmm6 pand xmm8, xmmword ptr [PBLENDW_0x3F_MASK+rip] pand xmm10, xmmword ptr [PBLENDW_0xC0_MASK+rip] por xmm8, xmm10 pshufd xmm8, xmm8, 0x78 punpckhdq xmm5, xmm7 punpckldq xmm6, xmm5 pshufd xmm7, xmm6, 0x1E movdqa xmm5, xmm9 movdqa xmm6, xmm8 jmp 9b 9: pxor xmm0, xmm2 pxor xmm1, xmm3 mov eax, r13d cmp rdx, r15 jne 2b movups xmmword ptr [rbx], xmm0 movups xmmword ptr [rbx+0x10], xmm1 jmp 4b .p2align 6 blake3_compress_in_place_sse2: _blake3_compress_in_place_sse2: sub rsp, 120 movdqa xmmword ptr [rsp], xmm6 movdqa xmmword ptr [rsp+0x10], xmm7 movdqa xmmword ptr [rsp+0x20], xmm8 movdqa xmmword ptr [rsp+0x30], xmm9 movdqa xmmword ptr [rsp+0x40], xmm11 movdqa xmmword ptr [rsp+0x50], xmm14 movdqa xmmword ptr [rsp+0x60], xmm15 movups xmm0, xmmword ptr [rcx] movups xmm1, xmmword ptr [rcx+0x10] movaps xmm2, xmmword ptr [BLAKE3_IV+rip] movzx eax, byte ptr [rsp+0xA0] movzx r8d, r8b shl rax, 32 add r8, rax movq xmm3, r9 movq xmm4, r8 punpcklqdq xmm3, xmm4 movups xmm4, xmmword ptr [rdx] movups xmm5, xmmword ptr [rdx+0x10] movaps xmm8, xmm4 shufps xmm4, xmm5, 136 shufps xmm8, xmm5, 221 movaps xmm5, xmm8 movups xmm6, xmmword ptr [rdx+0x20] movups xmm7, xmmword ptr [rdx+0x30] movaps xmm8, xmm6 shufps xmm6, xmm7, 136 pshufd xmm6, xmm6, 0x93 shufps xmm8, xmm7, 221 pshufd xmm7, xmm8, 0x93 mov al, 7 9: paddd xmm0, xmm4 paddd xmm0, xmm1 pxor xmm3, xmm0 pshuflw xmm3, xmm3, 0xB1 pshufhw xmm3, xmm3, 0xB1 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 20 psrld xmm11, 12 por xmm1, xmm11 paddd xmm0, xmm5 paddd xmm0, xmm1 pxor xmm3, xmm0 movdqa xmm14, xmm3 psrld xmm3, 8 pslld xmm14, 24 pxor xmm3, xmm14 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 25 psrld xmm11, 7 por xmm1, xmm11 pshufd xmm0, xmm0, 0x93 pshufd xmm3, xmm3, 0x4E pshufd xmm2, xmm2, 0x39 paddd xmm0, xmm6 paddd xmm0, xmm1 pxor xmm3, xmm0 pshuflw xmm3, xmm3, 0xB1 pshufhw xmm3, xmm3, 0xB1 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 20 psrld xmm11, 12 por xmm1, xmm11 paddd xmm0, xmm7 paddd xmm0, xmm1 pxor xmm3, xmm0 movdqa xmm14, xmm3 psrld xmm3, 8 pslld xmm14, 24 pxor xmm3, xmm14 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 25 psrld xmm11, 7 por xmm1, xmm11 pshufd xmm0, xmm0, 0x39 pshufd xmm3, xmm3, 0x4E pshufd xmm2, xmm2, 0x93 dec al jz 9f movdqa xmm8, xmm4 shufps xmm8, xmm5, 214 pshufd xmm9, xmm4, 0x0F pshufd xmm4, xmm8, 0x39 movdqa xmm8, xmm6 shufps xmm8, xmm7, 250 pand xmm9, xmmword ptr [PBLENDW_0x33_MASK+rip] pand xmm8, xmmword ptr [PBLENDW_0xCC_MASK+rip] por xmm9, xmm8 movdqa xmm8, xmm7 punpcklqdq xmm8, xmm5 movdqa xmm14, xmm6 pand xmm8, xmmword ptr [PBLENDW_0x3F_MASK+rip] pand xmm14, xmmword ptr [PBLENDW_0xC0_MASK+rip] por xmm8, xmm14 pshufd xmm8, xmm8, 0x78 punpckhdq xmm5, xmm7 punpckldq xmm6, xmm5 pshufd xmm7, xmm6, 0x1E movdqa xmm5, xmm9 movdqa xmm6, xmm8 jmp 9b 9: pxor xmm0, xmm2 pxor xmm1, xmm3 movups xmmword ptr [rcx], xmm0 movups xmmword ptr [rcx+0x10], xmm1 movdqa xmm6, xmmword ptr [rsp] movdqa xmm7, xmmword ptr [rsp+0x10] movdqa xmm8, xmmword ptr [rsp+0x20] movdqa xmm9, xmmword ptr [rsp+0x30] movdqa xmm11, xmmword ptr [rsp+0x40] movdqa xmm14, xmmword ptr [rsp+0x50] movdqa xmm15, xmmword ptr [rsp+0x60] add rsp, 120 ret .p2align 6 _blake3_compress_xof_sse2: blake3_compress_xof_sse2: sub rsp, 120 movdqa xmmword ptr [rsp], xmm6 movdqa xmmword ptr [rsp+0x10], xmm7 movdqa xmmword ptr [rsp+0x20], xmm8 movdqa xmmword ptr [rsp+0x30], xmm9 movdqa xmmword ptr [rsp+0x40], xmm11 movdqa xmmword ptr [rsp+0x50], xmm14 movdqa xmmword ptr [rsp+0x60], xmm15 movups xmm0, xmmword ptr [rcx] movups xmm1, xmmword ptr [rcx+0x10] movaps xmm2, xmmword ptr [BLAKE3_IV+rip] movzx eax, byte ptr [rsp+0xA0] movzx r8d, r8b mov r10, qword ptr [rsp+0xA8] shl rax, 32 add r8, rax movq xmm3, r9 movq xmm4, r8 punpcklqdq xmm3, xmm4 movups xmm4, xmmword ptr [rdx] movups xmm5, xmmword ptr [rdx+0x10] movaps xmm8, xmm4 shufps xmm4, xmm5, 136 shufps xmm8, xmm5, 221 movaps xmm5, xmm8 movups xmm6, xmmword ptr [rdx+0x20] movups xmm7, xmmword ptr [rdx+0x30] movaps xmm8, xmm6 shufps xmm6, xmm7, 136 pshufd xmm6, xmm6, 0x93 shufps xmm8, xmm7, 221 pshufd xmm7, xmm8, 0x93 mov al, 7 9: paddd xmm0, xmm4 paddd xmm0, xmm1 pxor xmm3, xmm0 pshuflw xmm3, xmm3, 0xB1 pshufhw xmm3, xmm3, 0xB1 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 20 psrld xmm11, 12 por xmm1, xmm11 paddd xmm0, xmm5 paddd xmm0, xmm1 pxor xmm3, xmm0 movdqa xmm14, xmm3 psrld xmm3, 8 pslld xmm14, 24 pxor xmm3, xmm14 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 25 psrld xmm11, 7 por xmm1, xmm11 pshufd xmm0, xmm0, 0x93 pshufd xmm3, xmm3, 0x4E pshufd xmm2, xmm2, 0x39 paddd xmm0, xmm6 paddd xmm0, xmm1 pxor xmm3, xmm0 pshuflw xmm3, xmm3, 0xB1 pshufhw xmm3, xmm3, 0xB1 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 20 psrld xmm11, 12 por xmm1, xmm11 paddd xmm0, xmm7 paddd xmm0, xmm1 pxor xmm3, xmm0 movdqa xmm14, xmm3 psrld xmm3, 8 pslld xmm14, 24 pxor xmm3, xmm14 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 25 psrld xmm11, 7 por xmm1, xmm11 pshufd xmm0, xmm0, 0x39 pshufd xmm3, xmm3, 0x4E pshufd xmm2, xmm2, 0x93 dec al jz 9f movdqa xmm8, xmm4 shufps xmm8, xmm5, 214 pshufd xmm9, xmm4, 0x0F pshufd xmm4, xmm8, 0x39 movdqa xmm8, xmm6 shufps xmm8, xmm7, 250 pand xmm9, xmmword ptr [PBLENDW_0x33_MASK+rip] pand xmm8, xmmword ptr [PBLENDW_0xCC_MASK+rip] por xmm9, xmm8 movdqa xmm8, xmm7 punpcklqdq xmm8, xmm5 movdqa xmm14, xmm6 pand xmm8, xmmword ptr [PBLENDW_0x3F_MASK+rip] pand xmm14, xmmword ptr [PBLENDW_0xC0_MASK+rip] por xmm8, xmm14 pshufd xmm8, xmm8, 0x78 punpckhdq xmm5, xmm7 punpckldq xmm6, xmm5 pshufd xmm7, xmm6, 0x1E movdqa xmm5, xmm9 movdqa xmm6, xmm8 jmp 9b 9: movdqu xmm4, xmmword ptr [rcx] movdqu xmm5, xmmword ptr [rcx+0x10] pxor xmm0, xmm2 pxor xmm1, xmm3 pxor xmm2, xmm4 pxor xmm3, xmm5 movups xmmword ptr [r10], xmm0 movups xmmword ptr [r10+0x10], xmm1 movups xmmword ptr [r10+0x20], xmm2 movups xmmword ptr [r10+0x30], xmm3 movdqa xmm6, xmmword ptr [rsp] movdqa xmm7, xmmword ptr [rsp+0x10] movdqa xmm8, xmmword ptr [rsp+0x20] movdqa xmm9, xmmword ptr [rsp+0x30] movdqa xmm11, xmmword ptr [rsp+0x40] movdqa xmm14, xmmword ptr [rsp+0x50] movdqa xmm15, xmmword ptr [rsp+0x60] add rsp, 120 ret .section .rdata .p2align 6 BLAKE3_IV: .long 0x6A09E667, 0xBB67AE85 .long 0x3C6EF372, 0xA54FF53A ADD0: .long 0, 1, 2, 3 ADD1: .long 4, 4, 4, 4 BLAKE3_IV_0: .long 0x6A09E667, 0x6A09E667, 0x6A09E667, 0x6A09E667 BLAKE3_IV_1: .long 0xBB67AE85, 0xBB67AE85, 0xBB67AE85, 0xBB67AE85 BLAKE3_IV_2: .long 0x3C6EF372, 0x3C6EF372, 0x3C6EF372, 0x3C6EF372 BLAKE3_IV_3: .long 0xA54FF53A, 0xA54FF53A, 0xA54FF53A, 0xA54FF53A BLAKE3_BLOCK_LEN: .long 64, 64, 64, 64 CMP_MSB_MASK: .long 0x80000000, 0x80000000, 0x80000000, 0x80000000 PBLENDW_0x33_MASK: .long 0xFFFFFFFF, 0x00000000, 0xFFFFFFFF, 0x00000000 PBLENDW_0xCC_MASK: .long 0x00000000, 0xFFFFFFFF, 0x00000000, 0xFFFFFFFF PBLENDW_0x3F_MASK: .long 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0x00000000 PBLENDW_0xC0_MASK: .long 0x00000000, 0x00000000, 0x00000000, 0xFFFFFFFF
mktmansour/MKT-KSA-Geolocation-Security
91,003
.cargo-home/registry/src/index.crates.io-1949cf8c6b5b557f/blake3-1.8.2/c/blake3_avx512_x86-64_windows_gnu.S
.intel_syntax noprefix .global _blake3_hash_many_avx512 .global blake3_hash_many_avx512 .global blake3_compress_in_place_avx512 .global _blake3_compress_in_place_avx512 .global blake3_compress_xof_avx512 .global _blake3_compress_xof_avx512 .section .text .p2align 6 _blake3_hash_many_avx512: blake3_hash_many_avx512: push r15 push r14 push r13 push r12 push rdi push rsi push rbx push rbp mov rbp, rsp sub rsp, 304 and rsp, 0xFFFFFFFFFFFFFFC0 vmovdqa xmmword ptr [rsp+0x90], xmm6 vmovdqa xmmword ptr [rsp+0xA0], xmm7 vmovdqa xmmword ptr [rsp+0xB0], xmm8 vmovdqa xmmword ptr [rsp+0xC0], xmm9 vmovdqa xmmword ptr [rsp+0xD0], xmm10 vmovdqa xmmword ptr [rsp+0xE0], xmm11 vmovdqa xmmword ptr [rsp+0xF0], xmm12 vmovdqa xmmword ptr [rsp+0x100], xmm13 vmovdqa xmmword ptr [rsp+0x110], xmm14 vmovdqa xmmword ptr [rsp+0x120], xmm15 mov rdi, rcx mov rsi, rdx mov rdx, r8 mov rcx, r9 mov r8, qword ptr [rbp+0x68] movzx r9, byte ptr [rbp+0x70] neg r9 kmovw k1, r9d vmovd xmm0, r8d vpbroadcastd ymm0, xmm0 shr r8, 32 vmovd xmm1, r8d vpbroadcastd ymm1, xmm1 vmovdqa ymm4, ymm1 vmovdqa ymm5, ymm1 vpaddd ymm2, ymm0, ymmword ptr [ADD0+rip] vpaddd ymm3, ymm0, ymmword ptr [ADD0+32+rip] vpcmpltud k2, ymm2, ymm0 vpcmpltud k3, ymm3, ymm0 vpaddd ymm4 {k2}, ymm4, dword ptr [ADD1+rip] {1to8} vpaddd ymm5 {k3}, ymm5, dword ptr [ADD1+rip] {1to8} knotw k2, k1 vmovdqa32 ymm2 {k2}, ymm0 vmovdqa32 ymm3 {k2}, ymm0 vmovdqa32 ymm4 {k2}, ymm1 vmovdqa32 ymm5 {k2}, ymm1 vmovdqa ymmword ptr [rsp], ymm2 vmovdqa ymmword ptr [rsp+0x20], ymm3 vmovdqa ymmword ptr [rsp+0x40], ymm4 vmovdqa ymmword ptr [rsp+0x60], ymm5 shl rdx, 6 mov qword ptr [rsp+0x80], rdx cmp rsi, 16 jc 3f 2: vpbroadcastd zmm0, dword ptr [rcx] vpbroadcastd zmm1, dword ptr [rcx+0x1*0x4] vpbroadcastd zmm2, dword ptr [rcx+0x2*0x4] vpbroadcastd zmm3, dword ptr [rcx+0x3*0x4] vpbroadcastd zmm4, dword ptr [rcx+0x4*0x4] vpbroadcastd zmm5, dword ptr [rcx+0x5*0x4] vpbroadcastd zmm6, dword ptr [rcx+0x6*0x4] vpbroadcastd zmm7, dword ptr [rcx+0x7*0x4] movzx eax, byte ptr [rbp+0x78] movzx ebx, byte ptr [rbp+0x80] or eax, ebx xor edx, edx .p2align 5 9: movzx ebx, byte ptr [rbp+0x88] or ebx, eax add rdx, 64 cmp rdx, qword ptr [rsp+0x80] cmove eax, ebx mov dword ptr [rsp+0x88], eax mov r8, qword ptr [rdi] mov r9, qword ptr [rdi+0x8] mov r10, qword ptr [rdi+0x10] mov r11, qword ptr [rdi+0x18] mov r12, qword ptr [rdi+0x40] mov r13, qword ptr [rdi+0x48] mov r14, qword ptr [rdi+0x50] mov r15, qword ptr [rdi+0x58] vmovdqu32 ymm16, ymmword ptr [rdx+r8-0x2*0x20] vinserti64x4 zmm16, zmm16, ymmword ptr [rdx+r12-0x2*0x20], 0x01 vmovdqu32 ymm17, ymmword ptr [rdx+r9-0x2*0x20] vinserti64x4 zmm17, zmm17, ymmword ptr [rdx+r13-0x2*0x20], 0x01 vpunpcklqdq zmm8, zmm16, zmm17 vpunpckhqdq zmm9, zmm16, zmm17 vmovdqu32 ymm18, ymmword ptr [rdx+r10-0x2*0x20] vinserti64x4 zmm18, zmm18, ymmword ptr [rdx+r14-0x2*0x20], 0x01 vmovdqu32 ymm19, ymmword ptr [rdx+r11-0x2*0x20] vinserti64x4 zmm19, zmm19, ymmword ptr [rdx+r15-0x2*0x20], 0x01 vpunpcklqdq zmm10, zmm18, zmm19 vpunpckhqdq zmm11, zmm18, zmm19 mov r8, qword ptr [rdi+0x20] mov r9, qword ptr [rdi+0x28] mov r10, qword ptr [rdi+0x30] mov r11, qword ptr [rdi+0x38] mov r12, qword ptr [rdi+0x60] mov r13, qword ptr [rdi+0x68] mov r14, qword ptr [rdi+0x70] mov r15, qword ptr [rdi+0x78] vmovdqu32 ymm16, ymmword ptr [rdx+r8-0x2*0x20] vinserti64x4 zmm16, zmm16, ymmword ptr [rdx+r12-0x2*0x20], 0x01 vmovdqu32 ymm17, ymmword ptr [rdx+r9-0x2*0x20] vinserti64x4 zmm17, zmm17, ymmword ptr [rdx+r13-0x2*0x20], 0x01 vpunpcklqdq zmm12, zmm16, zmm17 vpunpckhqdq zmm13, zmm16, zmm17 vmovdqu32 ymm18, ymmword ptr [rdx+r10-0x2*0x20] vinserti64x4 zmm18, zmm18, ymmword ptr [rdx+r14-0x2*0x20], 0x01 vmovdqu32 ymm19, ymmword ptr [rdx+r11-0x2*0x20] vinserti64x4 zmm19, zmm19, ymmword ptr [rdx+r15-0x2*0x20], 0x01 vpunpcklqdq zmm14, zmm18, zmm19 vpunpckhqdq zmm15, zmm18, zmm19 vmovdqa32 zmm27, zmmword ptr [INDEX0+rip] vmovdqa32 zmm31, zmmword ptr [INDEX1+rip] vshufps zmm16, zmm8, zmm10, 136 vshufps zmm17, zmm12, zmm14, 136 vmovdqa32 zmm20, zmm16 vpermt2d zmm16, zmm27, zmm17 vpermt2d zmm20, zmm31, zmm17 vshufps zmm17, zmm8, zmm10, 221 vshufps zmm30, zmm12, zmm14, 221 vmovdqa32 zmm21, zmm17 vpermt2d zmm17, zmm27, zmm30 vpermt2d zmm21, zmm31, zmm30 vshufps zmm18, zmm9, zmm11, 136 vshufps zmm8, zmm13, zmm15, 136 vmovdqa32 zmm22, zmm18 vpermt2d zmm18, zmm27, zmm8 vpermt2d zmm22, zmm31, zmm8 vshufps zmm19, zmm9, zmm11, 221 vshufps zmm8, zmm13, zmm15, 221 vmovdqa32 zmm23, zmm19 vpermt2d zmm19, zmm27, zmm8 vpermt2d zmm23, zmm31, zmm8 mov r8, qword ptr [rdi] mov r9, qword ptr [rdi+0x8] mov r10, qword ptr [rdi+0x10] mov r11, qword ptr [rdi+0x18] mov r12, qword ptr [rdi+0x40] mov r13, qword ptr [rdi+0x48] mov r14, qword ptr [rdi+0x50] mov r15, qword ptr [rdi+0x58] vmovdqu32 ymm24, ymmword ptr [r8+rdx-0x1*0x20] vinserti64x4 zmm24, zmm24, ymmword ptr [r12+rdx-0x1*0x20], 0x01 vmovdqu32 ymm25, ymmword ptr [r9+rdx-0x1*0x20] vinserti64x4 zmm25, zmm25, ymmword ptr [r13+rdx-0x1*0x20], 0x01 vpunpcklqdq zmm8, zmm24, zmm25 vpunpckhqdq zmm9, zmm24, zmm25 vmovdqu32 ymm24, ymmword ptr [r10+rdx-0x1*0x20] vinserti64x4 zmm24, zmm24, ymmword ptr [r14+rdx-0x1*0x20], 0x01 vmovdqu32 ymm25, ymmword ptr [r11+rdx-0x1*0x20] vinserti64x4 zmm25, zmm25, ymmword ptr [r15+rdx-0x1*0x20], 0x01 vpunpcklqdq zmm10, zmm24, zmm25 vpunpckhqdq zmm11, zmm24, zmm25 prefetcht0 [r8+rdx+0x80] prefetcht0 [r12+rdx+0x80] prefetcht0 [r9+rdx+0x80] prefetcht0 [r13+rdx+0x80] prefetcht0 [r10+rdx+0x80] prefetcht0 [r14+rdx+0x80] prefetcht0 [r11+rdx+0x80] prefetcht0 [r15+rdx+0x80] mov r8, qword ptr [rdi+0x20] mov r9, qword ptr [rdi+0x28] mov r10, qword ptr [rdi+0x30] mov r11, qword ptr [rdi+0x38] mov r12, qword ptr [rdi+0x60] mov r13, qword ptr [rdi+0x68] mov r14, qword ptr [rdi+0x70] mov r15, qword ptr [rdi+0x78] vmovdqu32 ymm24, ymmword ptr [r8+rdx-0x1*0x20] vinserti64x4 zmm24, zmm24, ymmword ptr [r12+rdx-0x1*0x20], 0x01 vmovdqu32 ymm25, ymmword ptr [r9+rdx-0x1*0x20] vinserti64x4 zmm25, zmm25, ymmword ptr [r13+rdx-0x1*0x20], 0x01 vpunpcklqdq zmm12, zmm24, zmm25 vpunpckhqdq zmm13, zmm24, zmm25 vmovdqu32 ymm24, ymmword ptr [r10+rdx-0x1*0x20] vinserti64x4 zmm24, zmm24, ymmword ptr [r14+rdx-0x1*0x20], 0x01 vmovdqu32 ymm25, ymmword ptr [r11+rdx-0x1*0x20] vinserti64x4 zmm25, zmm25, ymmword ptr [r15+rdx-0x1*0x20], 0x01 vpunpcklqdq zmm14, zmm24, zmm25 vpunpckhqdq zmm15, zmm24, zmm25 prefetcht0 [r8+rdx+0x80] prefetcht0 [r12+rdx+0x80] prefetcht0 [r9+rdx+0x80] prefetcht0 [r13+rdx+0x80] prefetcht0 [r10+rdx+0x80] prefetcht0 [r14+rdx+0x80] prefetcht0 [r11+rdx+0x80] prefetcht0 [r15+rdx+0x80] vshufps zmm24, zmm8, zmm10, 136 vshufps zmm30, zmm12, zmm14, 136 vmovdqa32 zmm28, zmm24 vpermt2d zmm24, zmm27, zmm30 vpermt2d zmm28, zmm31, zmm30 vshufps zmm25, zmm8, zmm10, 221 vshufps zmm30, zmm12, zmm14, 221 vmovdqa32 zmm29, zmm25 vpermt2d zmm25, zmm27, zmm30 vpermt2d zmm29, zmm31, zmm30 vshufps zmm26, zmm9, zmm11, 136 vshufps zmm8, zmm13, zmm15, 136 vmovdqa32 zmm30, zmm26 vpermt2d zmm26, zmm27, zmm8 vpermt2d zmm30, zmm31, zmm8 vshufps zmm8, zmm9, zmm11, 221 vshufps zmm10, zmm13, zmm15, 221 vpermi2d zmm27, zmm8, zmm10 vpermi2d zmm31, zmm8, zmm10 vpbroadcastd zmm8, dword ptr [BLAKE3_IV_0+rip] vpbroadcastd zmm9, dword ptr [BLAKE3_IV_1+rip] vpbroadcastd zmm10, dword ptr [BLAKE3_IV_2+rip] vpbroadcastd zmm11, dword ptr [BLAKE3_IV_3+rip] vmovdqa32 zmm12, zmmword ptr [rsp] vmovdqa32 zmm13, zmmword ptr [rsp+0x1*0x40] vpbroadcastd zmm14, dword ptr [BLAKE3_BLOCK_LEN+rip] vpbroadcastd zmm15, dword ptr [rsp+0x22*0x4] vpaddd zmm0, zmm0, zmm16 vpaddd zmm1, zmm1, zmm18 vpaddd zmm2, zmm2, zmm20 vpaddd zmm3, zmm3, zmm22 vpaddd zmm0, zmm0, zmm4 vpaddd zmm1, zmm1, zmm5 vpaddd zmm2, zmm2, zmm6 vpaddd zmm3, zmm3, zmm7 vpxord zmm12, zmm12, zmm0 vpxord zmm13, zmm13, zmm1 vpxord zmm14, zmm14, zmm2 vpxord zmm15, zmm15, zmm3 vprord zmm12, zmm12, 16 vprord zmm13, zmm13, 16 vprord zmm14, zmm14, 16 vprord zmm15, zmm15, 16 vpaddd zmm8, zmm8, zmm12 vpaddd zmm9, zmm9, zmm13 vpaddd zmm10, zmm10, zmm14 vpaddd zmm11, zmm11, zmm15 vpxord zmm4, zmm4, zmm8 vpxord zmm5, zmm5, zmm9 vpxord zmm6, zmm6, zmm10 vpxord zmm7, zmm7, zmm11 vprord zmm4, zmm4, 12 vprord zmm5, zmm5, 12 vprord zmm6, zmm6, 12 vprord zmm7, zmm7, 12 vpaddd zmm0, zmm0, zmm17 vpaddd zmm1, zmm1, zmm19 vpaddd zmm2, zmm2, zmm21 vpaddd zmm3, zmm3, zmm23 vpaddd zmm0, zmm0, zmm4 vpaddd zmm1, zmm1, zmm5 vpaddd zmm2, zmm2, zmm6 vpaddd zmm3, zmm3, zmm7 vpxord zmm12, zmm12, zmm0 vpxord zmm13, zmm13, zmm1 vpxord zmm14, zmm14, zmm2 vpxord zmm15, zmm15, zmm3 vprord zmm12, zmm12, 8 vprord zmm13, zmm13, 8 vprord zmm14, zmm14, 8 vprord zmm15, zmm15, 8 vpaddd zmm8, zmm8, zmm12 vpaddd zmm9, zmm9, zmm13 vpaddd zmm10, zmm10, zmm14 vpaddd zmm11, zmm11, zmm15 vpxord zmm4, zmm4, zmm8 vpxord zmm5, zmm5, zmm9 vpxord zmm6, zmm6, zmm10 vpxord zmm7, zmm7, zmm11 vprord zmm4, zmm4, 7 vprord zmm5, zmm5, 7 vprord zmm6, zmm6, 7 vprord zmm7, zmm7, 7 vpaddd zmm0, zmm0, zmm24 vpaddd zmm1, zmm1, zmm26 vpaddd zmm2, zmm2, zmm28 vpaddd zmm3, zmm3, zmm30 vpaddd zmm0, zmm0, zmm5 vpaddd zmm1, zmm1, zmm6 vpaddd zmm2, zmm2, zmm7 vpaddd zmm3, zmm3, zmm4 vpxord zmm15, zmm15, zmm0 vpxord zmm12, zmm12, zmm1 vpxord zmm13, zmm13, zmm2 vpxord zmm14, zmm14, zmm3 vprord zmm15, zmm15, 16 vprord zmm12, zmm12, 16 vprord zmm13, zmm13, 16 vprord zmm14, zmm14, 16 vpaddd zmm10, zmm10, zmm15 vpaddd zmm11, zmm11, zmm12 vpaddd zmm8, zmm8, zmm13 vpaddd zmm9, zmm9, zmm14 vpxord zmm5, zmm5, zmm10 vpxord zmm6, zmm6, zmm11 vpxord zmm7, zmm7, zmm8 vpxord zmm4, zmm4, zmm9 vprord zmm5, zmm5, 12 vprord zmm6, zmm6, 12 vprord zmm7, zmm7, 12 vprord zmm4, zmm4, 12 vpaddd zmm0, zmm0, zmm25 vpaddd zmm1, zmm1, zmm27 vpaddd zmm2, zmm2, zmm29 vpaddd zmm3, zmm3, zmm31 vpaddd zmm0, zmm0, zmm5 vpaddd zmm1, zmm1, zmm6 vpaddd zmm2, zmm2, zmm7 vpaddd zmm3, zmm3, zmm4 vpxord zmm15, zmm15, zmm0 vpxord zmm12, zmm12, zmm1 vpxord zmm13, zmm13, zmm2 vpxord zmm14, zmm14, zmm3 vprord zmm15, zmm15, 8 vprord zmm12, zmm12, 8 vprord zmm13, zmm13, 8 vprord zmm14, zmm14, 8 vpaddd zmm10, zmm10, zmm15 vpaddd zmm11, zmm11, zmm12 vpaddd zmm8, zmm8, zmm13 vpaddd zmm9, zmm9, zmm14 vpxord zmm5, zmm5, zmm10 vpxord zmm6, zmm6, zmm11 vpxord zmm7, zmm7, zmm8 vpxord zmm4, zmm4, zmm9 vprord zmm5, zmm5, 7 vprord zmm6, zmm6, 7 vprord zmm7, zmm7, 7 vprord zmm4, zmm4, 7 vpaddd zmm0, zmm0, zmm18 vpaddd zmm1, zmm1, zmm19 vpaddd zmm2, zmm2, zmm23 vpaddd zmm3, zmm3, zmm20 vpaddd zmm0, zmm0, zmm4 vpaddd zmm1, zmm1, zmm5 vpaddd zmm2, zmm2, zmm6 vpaddd zmm3, zmm3, zmm7 vpxord zmm12, zmm12, zmm0 vpxord zmm13, zmm13, zmm1 vpxord zmm14, zmm14, zmm2 vpxord zmm15, zmm15, zmm3 vprord zmm12, zmm12, 16 vprord zmm13, zmm13, 16 vprord zmm14, zmm14, 16 vprord zmm15, zmm15, 16 vpaddd zmm8, zmm8, zmm12 vpaddd zmm9, zmm9, zmm13 vpaddd zmm10, zmm10, zmm14 vpaddd zmm11, zmm11, zmm15 vpxord zmm4, zmm4, zmm8 vpxord zmm5, zmm5, zmm9 vpxord zmm6, zmm6, zmm10 vpxord zmm7, zmm7, zmm11 vprord zmm4, zmm4, 12 vprord zmm5, zmm5, 12 vprord zmm6, zmm6, 12 vprord zmm7, zmm7, 12 vpaddd zmm0, zmm0, zmm22 vpaddd zmm1, zmm1, zmm26 vpaddd zmm2, zmm2, zmm16 vpaddd zmm3, zmm3, zmm29 vpaddd zmm0, zmm0, zmm4 vpaddd zmm1, zmm1, zmm5 vpaddd zmm2, zmm2, zmm6 vpaddd zmm3, zmm3, zmm7 vpxord zmm12, zmm12, zmm0 vpxord zmm13, zmm13, zmm1 vpxord zmm14, zmm14, zmm2 vpxord zmm15, zmm15, zmm3 vprord zmm12, zmm12, 8 vprord zmm13, zmm13, 8 vprord zmm14, zmm14, 8 vprord zmm15, zmm15, 8 vpaddd zmm8, zmm8, zmm12 vpaddd zmm9, zmm9, zmm13 vpaddd zmm10, zmm10, zmm14 vpaddd zmm11, zmm11, zmm15 vpxord zmm4, zmm4, zmm8 vpxord zmm5, zmm5, zmm9 vpxord zmm6, zmm6, zmm10 vpxord zmm7, zmm7, zmm11 vprord zmm4, zmm4, 7 vprord zmm5, zmm5, 7 vprord zmm6, zmm6, 7 vprord zmm7, zmm7, 7 vpaddd zmm0, zmm0, zmm17 vpaddd zmm1, zmm1, zmm28 vpaddd zmm2, zmm2, zmm25 vpaddd zmm3, zmm3, zmm31 vpaddd zmm0, zmm0, zmm5 vpaddd zmm1, zmm1, zmm6 vpaddd zmm2, zmm2, zmm7 vpaddd zmm3, zmm3, zmm4 vpxord zmm15, zmm15, zmm0 vpxord zmm12, zmm12, zmm1 vpxord zmm13, zmm13, zmm2 vpxord zmm14, zmm14, zmm3 vprord zmm15, zmm15, 16 vprord zmm12, zmm12, 16 vprord zmm13, zmm13, 16 vprord zmm14, zmm14, 16 vpaddd zmm10, zmm10, zmm15 vpaddd zmm11, zmm11, zmm12 vpaddd zmm8, zmm8, zmm13 vpaddd zmm9, zmm9, zmm14 vpxord zmm5, zmm5, zmm10 vpxord zmm6, zmm6, zmm11 vpxord zmm7, zmm7, zmm8 vpxord zmm4, zmm4, zmm9 vprord zmm5, zmm5, 12 vprord zmm6, zmm6, 12 vprord zmm7, zmm7, 12 vprord zmm4, zmm4, 12 vpaddd zmm0, zmm0, zmm27 vpaddd zmm1, zmm1, zmm21 vpaddd zmm2, zmm2, zmm30 vpaddd zmm3, zmm3, zmm24 vpaddd zmm0, zmm0, zmm5 vpaddd zmm1, zmm1, zmm6 vpaddd zmm2, zmm2, zmm7 vpaddd zmm3, zmm3, zmm4 vpxord zmm15, zmm15, zmm0 vpxord zmm12, zmm12, zmm1 vpxord zmm13, zmm13, zmm2 vpxord zmm14, zmm14, zmm3 vprord zmm15, zmm15, 8 vprord zmm12, zmm12, 8 vprord zmm13, zmm13, 8 vprord zmm14, zmm14, 8 vpaddd zmm10, zmm10, zmm15 vpaddd zmm11, zmm11, zmm12 vpaddd zmm8, zmm8, zmm13 vpaddd zmm9, zmm9, zmm14 vpxord zmm5, zmm5, zmm10 vpxord zmm6, zmm6, zmm11 vpxord zmm7, zmm7, zmm8 vpxord zmm4, zmm4, zmm9 vprord zmm5, zmm5, 7 vprord zmm6, zmm6, 7 vprord zmm7, zmm7, 7 vprord zmm4, zmm4, 7 vpaddd zmm0, zmm0, zmm19 vpaddd zmm1, zmm1, zmm26 vpaddd zmm2, zmm2, zmm29 vpaddd zmm3, zmm3, zmm23 vpaddd zmm0, zmm0, zmm4 vpaddd zmm1, zmm1, zmm5 vpaddd zmm2, zmm2, zmm6 vpaddd zmm3, zmm3, zmm7 vpxord zmm12, zmm12, zmm0 vpxord zmm13, zmm13, zmm1 vpxord zmm14, zmm14, zmm2 vpxord zmm15, zmm15, zmm3 vprord zmm12, zmm12, 16 vprord zmm13, zmm13, 16 vprord zmm14, zmm14, 16 vprord zmm15, zmm15, 16 vpaddd zmm8, zmm8, zmm12 vpaddd zmm9, zmm9, zmm13 vpaddd zmm10, zmm10, zmm14 vpaddd zmm11, zmm11, zmm15 vpxord zmm4, zmm4, zmm8 vpxord zmm5, zmm5, zmm9 vpxord zmm6, zmm6, zmm10 vpxord zmm7, zmm7, zmm11 vprord zmm4, zmm4, 12 vprord zmm5, zmm5, 12 vprord zmm6, zmm6, 12 vprord zmm7, zmm7, 12 vpaddd zmm0, zmm0, zmm20 vpaddd zmm1, zmm1, zmm28 vpaddd zmm2, zmm2, zmm18 vpaddd zmm3, zmm3, zmm30 vpaddd zmm0, zmm0, zmm4 vpaddd zmm1, zmm1, zmm5 vpaddd zmm2, zmm2, zmm6 vpaddd zmm3, zmm3, zmm7 vpxord zmm12, zmm12, zmm0 vpxord zmm13, zmm13, zmm1 vpxord zmm14, zmm14, zmm2 vpxord zmm15, zmm15, zmm3 vprord zmm12, zmm12, 8 vprord zmm13, zmm13, 8 vprord zmm14, zmm14, 8 vprord zmm15, zmm15, 8 vpaddd zmm8, zmm8, zmm12 vpaddd zmm9, zmm9, zmm13 vpaddd zmm10, zmm10, zmm14 vpaddd zmm11, zmm11, zmm15 vpxord zmm4, zmm4, zmm8 vpxord zmm5, zmm5, zmm9 vpxord zmm6, zmm6, zmm10 vpxord zmm7, zmm7, zmm11 vprord zmm4, zmm4, 7 vprord zmm5, zmm5, 7 vprord zmm6, zmm6, 7 vprord zmm7, zmm7, 7 vpaddd zmm0, zmm0, zmm22 vpaddd zmm1, zmm1, zmm25 vpaddd zmm2, zmm2, zmm27 vpaddd zmm3, zmm3, zmm24 vpaddd zmm0, zmm0, zmm5 vpaddd zmm1, zmm1, zmm6 vpaddd zmm2, zmm2, zmm7 vpaddd zmm3, zmm3, zmm4 vpxord zmm15, zmm15, zmm0 vpxord zmm12, zmm12, zmm1 vpxord zmm13, zmm13, zmm2 vpxord zmm14, zmm14, zmm3 vprord zmm15, zmm15, 16 vprord zmm12, zmm12, 16 vprord zmm13, zmm13, 16 vprord zmm14, zmm14, 16 vpaddd zmm10, zmm10, zmm15 vpaddd zmm11, zmm11, zmm12 vpaddd zmm8, zmm8, zmm13 vpaddd zmm9, zmm9, zmm14 vpxord zmm5, zmm5, zmm10 vpxord zmm6, zmm6, zmm11 vpxord zmm7, zmm7, zmm8 vpxord zmm4, zmm4, zmm9 vprord zmm5, zmm5, 12 vprord zmm6, zmm6, 12 vprord zmm7, zmm7, 12 vprord zmm4, zmm4, 12 vpaddd zmm0, zmm0, zmm21 vpaddd zmm1, zmm1, zmm16 vpaddd zmm2, zmm2, zmm31 vpaddd zmm3, zmm3, zmm17 vpaddd zmm0, zmm0, zmm5 vpaddd zmm1, zmm1, zmm6 vpaddd zmm2, zmm2, zmm7 vpaddd zmm3, zmm3, zmm4 vpxord zmm15, zmm15, zmm0 vpxord zmm12, zmm12, zmm1 vpxord zmm13, zmm13, zmm2 vpxord zmm14, zmm14, zmm3 vprord zmm15, zmm15, 8 vprord zmm12, zmm12, 8 vprord zmm13, zmm13, 8 vprord zmm14, zmm14, 8 vpaddd zmm10, zmm10, zmm15 vpaddd zmm11, zmm11, zmm12 vpaddd zmm8, zmm8, zmm13 vpaddd zmm9, zmm9, zmm14 vpxord zmm5, zmm5, zmm10 vpxord zmm6, zmm6, zmm11 vpxord zmm7, zmm7, zmm8 vpxord zmm4, zmm4, zmm9 vprord zmm5, zmm5, 7 vprord zmm6, zmm6, 7 vprord zmm7, zmm7, 7 vprord zmm4, zmm4, 7 vpaddd zmm0, zmm0, zmm26 vpaddd zmm1, zmm1, zmm28 vpaddd zmm2, zmm2, zmm30 vpaddd zmm3, zmm3, zmm29 vpaddd zmm0, zmm0, zmm4 vpaddd zmm1, zmm1, zmm5 vpaddd zmm2, zmm2, zmm6 vpaddd zmm3, zmm3, zmm7 vpxord zmm12, zmm12, zmm0 vpxord zmm13, zmm13, zmm1 vpxord zmm14, zmm14, zmm2 vpxord zmm15, zmm15, zmm3 vprord zmm12, zmm12, 16 vprord zmm13, zmm13, 16 vprord zmm14, zmm14, 16 vprord zmm15, zmm15, 16 vpaddd zmm8, zmm8, zmm12 vpaddd zmm9, zmm9, zmm13 vpaddd zmm10, zmm10, zmm14 vpaddd zmm11, zmm11, zmm15 vpxord zmm4, zmm4, zmm8 vpxord zmm5, zmm5, zmm9 vpxord zmm6, zmm6, zmm10 vpxord zmm7, zmm7, zmm11 vprord zmm4, zmm4, 12 vprord zmm5, zmm5, 12 vprord zmm6, zmm6, 12 vprord zmm7, zmm7, 12 vpaddd zmm0, zmm0, zmm23 vpaddd zmm1, zmm1, zmm25 vpaddd zmm2, zmm2, zmm19 vpaddd zmm3, zmm3, zmm31 vpaddd zmm0, zmm0, zmm4 vpaddd zmm1, zmm1, zmm5 vpaddd zmm2, zmm2, zmm6 vpaddd zmm3, zmm3, zmm7 vpxord zmm12, zmm12, zmm0 vpxord zmm13, zmm13, zmm1 vpxord zmm14, zmm14, zmm2 vpxord zmm15, zmm15, zmm3 vprord zmm12, zmm12, 8 vprord zmm13, zmm13, 8 vprord zmm14, zmm14, 8 vprord zmm15, zmm15, 8 vpaddd zmm8, zmm8, zmm12 vpaddd zmm9, zmm9, zmm13 vpaddd zmm10, zmm10, zmm14 vpaddd zmm11, zmm11, zmm15 vpxord zmm4, zmm4, zmm8 vpxord zmm5, zmm5, zmm9 vpxord zmm6, zmm6, zmm10 vpxord zmm7, zmm7, zmm11 vprord zmm4, zmm4, 7 vprord zmm5, zmm5, 7 vprord zmm6, zmm6, 7 vprord zmm7, zmm7, 7 vpaddd zmm0, zmm0, zmm20 vpaddd zmm1, zmm1, zmm27 vpaddd zmm2, zmm2, zmm21 vpaddd zmm3, zmm3, zmm17 vpaddd zmm0, zmm0, zmm5 vpaddd zmm1, zmm1, zmm6 vpaddd zmm2, zmm2, zmm7 vpaddd zmm3, zmm3, zmm4 vpxord zmm15, zmm15, zmm0 vpxord zmm12, zmm12, zmm1 vpxord zmm13, zmm13, zmm2 vpxord zmm14, zmm14, zmm3 vprord zmm15, zmm15, 16 vprord zmm12, zmm12, 16 vprord zmm13, zmm13, 16 vprord zmm14, zmm14, 16 vpaddd zmm10, zmm10, zmm15 vpaddd zmm11, zmm11, zmm12 vpaddd zmm8, zmm8, zmm13 vpaddd zmm9, zmm9, zmm14 vpxord zmm5, zmm5, zmm10 vpxord zmm6, zmm6, zmm11 vpxord zmm7, zmm7, zmm8 vpxord zmm4, zmm4, zmm9 vprord zmm5, zmm5, 12 vprord zmm6, zmm6, 12 vprord zmm7, zmm7, 12 vprord zmm4, zmm4, 12 vpaddd zmm0, zmm0, zmm16 vpaddd zmm1, zmm1, zmm18 vpaddd zmm2, zmm2, zmm24 vpaddd zmm3, zmm3, zmm22 vpaddd zmm0, zmm0, zmm5 vpaddd zmm1, zmm1, zmm6 vpaddd zmm2, zmm2, zmm7 vpaddd zmm3, zmm3, zmm4 vpxord zmm15, zmm15, zmm0 vpxord zmm12, zmm12, zmm1 vpxord zmm13, zmm13, zmm2 vpxord zmm14, zmm14, zmm3 vprord zmm15, zmm15, 8 vprord zmm12, zmm12, 8 vprord zmm13, zmm13, 8 vprord zmm14, zmm14, 8 vpaddd zmm10, zmm10, zmm15 vpaddd zmm11, zmm11, zmm12 vpaddd zmm8, zmm8, zmm13 vpaddd zmm9, zmm9, zmm14 vpxord zmm5, zmm5, zmm10 vpxord zmm6, zmm6, zmm11 vpxord zmm7, zmm7, zmm8 vpxord zmm4, zmm4, zmm9 vprord zmm5, zmm5, 7 vprord zmm6, zmm6, 7 vprord zmm7, zmm7, 7 vprord zmm4, zmm4, 7 vpaddd zmm0, zmm0, zmm28 vpaddd zmm1, zmm1, zmm25 vpaddd zmm2, zmm2, zmm31 vpaddd zmm3, zmm3, zmm30 vpaddd zmm0, zmm0, zmm4 vpaddd zmm1, zmm1, zmm5 vpaddd zmm2, zmm2, zmm6 vpaddd zmm3, zmm3, zmm7 vpxord zmm12, zmm12, zmm0 vpxord zmm13, zmm13, zmm1 vpxord zmm14, zmm14, zmm2 vpxord zmm15, zmm15, zmm3 vprord zmm12, zmm12, 16 vprord zmm13, zmm13, 16 vprord zmm14, zmm14, 16 vprord zmm15, zmm15, 16 vpaddd zmm8, zmm8, zmm12 vpaddd zmm9, zmm9, zmm13 vpaddd zmm10, zmm10, zmm14 vpaddd zmm11, zmm11, zmm15 vpxord zmm4, zmm4, zmm8 vpxord zmm5, zmm5, zmm9 vpxord zmm6, zmm6, zmm10 vpxord zmm7, zmm7, zmm11 vprord zmm4, zmm4, 12 vprord zmm5, zmm5, 12 vprord zmm6, zmm6, 12 vprord zmm7, zmm7, 12 vpaddd zmm0, zmm0, zmm29 vpaddd zmm1, zmm1, zmm27 vpaddd zmm2, zmm2, zmm26 vpaddd zmm3, zmm3, zmm24 vpaddd zmm0, zmm0, zmm4 vpaddd zmm1, zmm1, zmm5 vpaddd zmm2, zmm2, zmm6 vpaddd zmm3, zmm3, zmm7 vpxord zmm12, zmm12, zmm0 vpxord zmm13, zmm13, zmm1 vpxord zmm14, zmm14, zmm2 vpxord zmm15, zmm15, zmm3 vprord zmm12, zmm12, 8 vprord zmm13, zmm13, 8 vprord zmm14, zmm14, 8 vprord zmm15, zmm15, 8 vpaddd zmm8, zmm8, zmm12 vpaddd zmm9, zmm9, zmm13 vpaddd zmm10, zmm10, zmm14 vpaddd zmm11, zmm11, zmm15 vpxord zmm4, zmm4, zmm8 vpxord zmm5, zmm5, zmm9 vpxord zmm6, zmm6, zmm10 vpxord zmm7, zmm7, zmm11 vprord zmm4, zmm4, 7 vprord zmm5, zmm5, 7 vprord zmm6, zmm6, 7 vprord zmm7, zmm7, 7 vpaddd zmm0, zmm0, zmm23 vpaddd zmm1, zmm1, zmm21 vpaddd zmm2, zmm2, zmm16 vpaddd zmm3, zmm3, zmm22 vpaddd zmm0, zmm0, zmm5 vpaddd zmm1, zmm1, zmm6 vpaddd zmm2, zmm2, zmm7 vpaddd zmm3, zmm3, zmm4 vpxord zmm15, zmm15, zmm0 vpxord zmm12, zmm12, zmm1 vpxord zmm13, zmm13, zmm2 vpxord zmm14, zmm14, zmm3 vprord zmm15, zmm15, 16 vprord zmm12, zmm12, 16 vprord zmm13, zmm13, 16 vprord zmm14, zmm14, 16 vpaddd zmm10, zmm10, zmm15 vpaddd zmm11, zmm11, zmm12 vpaddd zmm8, zmm8, zmm13 vpaddd zmm9, zmm9, zmm14 vpxord zmm5, zmm5, zmm10 vpxord zmm6, zmm6, zmm11 vpxord zmm7, zmm7, zmm8 vpxord zmm4, zmm4, zmm9 vprord zmm5, zmm5, 12 vprord zmm6, zmm6, 12 vprord zmm7, zmm7, 12 vprord zmm4, zmm4, 12 vpaddd zmm0, zmm0, zmm18 vpaddd zmm1, zmm1, zmm19 vpaddd zmm2, zmm2, zmm17 vpaddd zmm3, zmm3, zmm20 vpaddd zmm0, zmm0, zmm5 vpaddd zmm1, zmm1, zmm6 vpaddd zmm2, zmm2, zmm7 vpaddd zmm3, zmm3, zmm4 vpxord zmm15, zmm15, zmm0 vpxord zmm12, zmm12, zmm1 vpxord zmm13, zmm13, zmm2 vpxord zmm14, zmm14, zmm3 vprord zmm15, zmm15, 8 vprord zmm12, zmm12, 8 vprord zmm13, zmm13, 8 vprord zmm14, zmm14, 8 vpaddd zmm10, zmm10, zmm15 vpaddd zmm11, zmm11, zmm12 vpaddd zmm8, zmm8, zmm13 vpaddd zmm9, zmm9, zmm14 vpxord zmm5, zmm5, zmm10 vpxord zmm6, zmm6, zmm11 vpxord zmm7, zmm7, zmm8 vpxord zmm4, zmm4, zmm9 vprord zmm5, zmm5, 7 vprord zmm6, zmm6, 7 vprord zmm7, zmm7, 7 vprord zmm4, zmm4, 7 vpaddd zmm0, zmm0, zmm25 vpaddd zmm1, zmm1, zmm27 vpaddd zmm2, zmm2, zmm24 vpaddd zmm3, zmm3, zmm31 vpaddd zmm0, zmm0, zmm4 vpaddd zmm1, zmm1, zmm5 vpaddd zmm2, zmm2, zmm6 vpaddd zmm3, zmm3, zmm7 vpxord zmm12, zmm12, zmm0 vpxord zmm13, zmm13, zmm1 vpxord zmm14, zmm14, zmm2 vpxord zmm15, zmm15, zmm3 vprord zmm12, zmm12, 16 vprord zmm13, zmm13, 16 vprord zmm14, zmm14, 16 vprord zmm15, zmm15, 16 vpaddd zmm8, zmm8, zmm12 vpaddd zmm9, zmm9, zmm13 vpaddd zmm10, zmm10, zmm14 vpaddd zmm11, zmm11, zmm15 vpxord zmm4, zmm4, zmm8 vpxord zmm5, zmm5, zmm9 vpxord zmm6, zmm6, zmm10 vpxord zmm7, zmm7, zmm11 vprord zmm4, zmm4, 12 vprord zmm5, zmm5, 12 vprord zmm6, zmm6, 12 vprord zmm7, zmm7, 12 vpaddd zmm0, zmm0, zmm30 vpaddd zmm1, zmm1, zmm21 vpaddd zmm2, zmm2, zmm28 vpaddd zmm3, zmm3, zmm17 vpaddd zmm0, zmm0, zmm4 vpaddd zmm1, zmm1, zmm5 vpaddd zmm2, zmm2, zmm6 vpaddd zmm3, zmm3, zmm7 vpxord zmm12, zmm12, zmm0 vpxord zmm13, zmm13, zmm1 vpxord zmm14, zmm14, zmm2 vpxord zmm15, zmm15, zmm3 vprord zmm12, zmm12, 8 vprord zmm13, zmm13, 8 vprord zmm14, zmm14, 8 vprord zmm15, zmm15, 8 vpaddd zmm8, zmm8, zmm12 vpaddd zmm9, zmm9, zmm13 vpaddd zmm10, zmm10, zmm14 vpaddd zmm11, zmm11, zmm15 vpxord zmm4, zmm4, zmm8 vpxord zmm5, zmm5, zmm9 vpxord zmm6, zmm6, zmm10 vpxord zmm7, zmm7, zmm11 vprord zmm4, zmm4, 7 vprord zmm5, zmm5, 7 vprord zmm6, zmm6, 7 vprord zmm7, zmm7, 7 vpaddd zmm0, zmm0, zmm29 vpaddd zmm1, zmm1, zmm16 vpaddd zmm2, zmm2, zmm18 vpaddd zmm3, zmm3, zmm20 vpaddd zmm0, zmm0, zmm5 vpaddd zmm1, zmm1, zmm6 vpaddd zmm2, zmm2, zmm7 vpaddd zmm3, zmm3, zmm4 vpxord zmm15, zmm15, zmm0 vpxord zmm12, zmm12, zmm1 vpxord zmm13, zmm13, zmm2 vpxord zmm14, zmm14, zmm3 vprord zmm15, zmm15, 16 vprord zmm12, zmm12, 16 vprord zmm13, zmm13, 16 vprord zmm14, zmm14, 16 vpaddd zmm10, zmm10, zmm15 vpaddd zmm11, zmm11, zmm12 vpaddd zmm8, zmm8, zmm13 vpaddd zmm9, zmm9, zmm14 vpxord zmm5, zmm5, zmm10 vpxord zmm6, zmm6, zmm11 vpxord zmm7, zmm7, zmm8 vpxord zmm4, zmm4, zmm9 vprord zmm5, zmm5, 12 vprord zmm6, zmm6, 12 vprord zmm7, zmm7, 12 vprord zmm4, zmm4, 12 vpaddd zmm0, zmm0, zmm19 vpaddd zmm1, zmm1, zmm26 vpaddd zmm2, zmm2, zmm22 vpaddd zmm3, zmm3, zmm23 vpaddd zmm0, zmm0, zmm5 vpaddd zmm1, zmm1, zmm6 vpaddd zmm2, zmm2, zmm7 vpaddd zmm3, zmm3, zmm4 vpxord zmm15, zmm15, zmm0 vpxord zmm12, zmm12, zmm1 vpxord zmm13, zmm13, zmm2 vpxord zmm14, zmm14, zmm3 vprord zmm15, zmm15, 8 vprord zmm12, zmm12, 8 vprord zmm13, zmm13, 8 vprord zmm14, zmm14, 8 vpaddd zmm10, zmm10, zmm15 vpaddd zmm11, zmm11, zmm12 vpaddd zmm8, zmm8, zmm13 vpaddd zmm9, zmm9, zmm14 vpxord zmm5, zmm5, zmm10 vpxord zmm6, zmm6, zmm11 vpxord zmm7, zmm7, zmm8 vpxord zmm4, zmm4, zmm9 vprord zmm5, zmm5, 7 vprord zmm6, zmm6, 7 vprord zmm7, zmm7, 7 vprord zmm4, zmm4, 7 vpaddd zmm0, zmm0, zmm27 vpaddd zmm1, zmm1, zmm21 vpaddd zmm2, zmm2, zmm17 vpaddd zmm3, zmm3, zmm24 vpaddd zmm0, zmm0, zmm4 vpaddd zmm1, zmm1, zmm5 vpaddd zmm2, zmm2, zmm6 vpaddd zmm3, zmm3, zmm7 vpxord zmm12, zmm12, zmm0 vpxord zmm13, zmm13, zmm1 vpxord zmm14, zmm14, zmm2 vpxord zmm15, zmm15, zmm3 vprord zmm12, zmm12, 16 vprord zmm13, zmm13, 16 vprord zmm14, zmm14, 16 vprord zmm15, zmm15, 16 vpaddd zmm8, zmm8, zmm12 vpaddd zmm9, zmm9, zmm13 vpaddd zmm10, zmm10, zmm14 vpaddd zmm11, zmm11, zmm15 vpxord zmm4, zmm4, zmm8 vpxord zmm5, zmm5, zmm9 vpxord zmm6, zmm6, zmm10 vpxord zmm7, zmm7, zmm11 vprord zmm4, zmm4, 12 vprord zmm5, zmm5, 12 vprord zmm6, zmm6, 12 vprord zmm7, zmm7, 12 vpaddd zmm0, zmm0, zmm31 vpaddd zmm1, zmm1, zmm16 vpaddd zmm2, zmm2, zmm25 vpaddd zmm3, zmm3, zmm22 vpaddd zmm0, zmm0, zmm4 vpaddd zmm1, zmm1, zmm5 vpaddd zmm2, zmm2, zmm6 vpaddd zmm3, zmm3, zmm7 vpxord zmm12, zmm12, zmm0 vpxord zmm13, zmm13, zmm1 vpxord zmm14, zmm14, zmm2 vpxord zmm15, zmm15, zmm3 vprord zmm12, zmm12, 8 vprord zmm13, zmm13, 8 vprord zmm14, zmm14, 8 vprord zmm15, zmm15, 8 vpaddd zmm8, zmm8, zmm12 vpaddd zmm9, zmm9, zmm13 vpaddd zmm10, zmm10, zmm14 vpaddd zmm11, zmm11, zmm15 vpxord zmm4, zmm4, zmm8 vpxord zmm5, zmm5, zmm9 vpxord zmm6, zmm6, zmm10 vpxord zmm7, zmm7, zmm11 vprord zmm4, zmm4, 7 vprord zmm5, zmm5, 7 vprord zmm6, zmm6, 7 vprord zmm7, zmm7, 7 vpaddd zmm0, zmm0, zmm30 vpaddd zmm1, zmm1, zmm18 vpaddd zmm2, zmm2, zmm19 vpaddd zmm3, zmm3, zmm23 vpaddd zmm0, zmm0, zmm5 vpaddd zmm1, zmm1, zmm6 vpaddd zmm2, zmm2, zmm7 vpaddd zmm3, zmm3, zmm4 vpxord zmm15, zmm15, zmm0 vpxord zmm12, zmm12, zmm1 vpxord zmm13, zmm13, zmm2 vpxord zmm14, zmm14, zmm3 vprord zmm15, zmm15, 16 vprord zmm12, zmm12, 16 vprord zmm13, zmm13, 16 vprord zmm14, zmm14, 16 vpaddd zmm10, zmm10, zmm15 vpaddd zmm11, zmm11, zmm12 vpaddd zmm8, zmm8, zmm13 vpaddd zmm9, zmm9, zmm14 vpxord zmm5, zmm5, zmm10 vpxord zmm6, zmm6, zmm11 vpxord zmm7, zmm7, zmm8 vpxord zmm4, zmm4, zmm9 vprord zmm5, zmm5, 12 vprord zmm6, zmm6, 12 vprord zmm7, zmm7, 12 vprord zmm4, zmm4, 12 vpaddd zmm0, zmm0, zmm26 vpaddd zmm1, zmm1, zmm28 vpaddd zmm2, zmm2, zmm20 vpaddd zmm3, zmm3, zmm29 vpaddd zmm0, zmm0, zmm5 vpaddd zmm1, zmm1, zmm6 vpaddd zmm2, zmm2, zmm7 vpaddd zmm3, zmm3, zmm4 vpxord zmm15, zmm15, zmm0 vpxord zmm12, zmm12, zmm1 vpxord zmm13, zmm13, zmm2 vpxord zmm14, zmm14, zmm3 vprord zmm15, zmm15, 8 vprord zmm12, zmm12, 8 vprord zmm13, zmm13, 8 vprord zmm14, zmm14, 8 vpaddd zmm10, zmm10, zmm15 vpaddd zmm11, zmm11, zmm12 vpaddd zmm8, zmm8, zmm13 vpaddd zmm9, zmm9, zmm14 vpxord zmm5, zmm5, zmm10 vpxord zmm6, zmm6, zmm11 vpxord zmm7, zmm7, zmm8 vpxord zmm4, zmm4, zmm9 vprord zmm5, zmm5, 7 vprord zmm6, zmm6, 7 vprord zmm7, zmm7, 7 vprord zmm4, zmm4, 7 vpxord zmm0, zmm0, zmm8 vpxord zmm1, zmm1, zmm9 vpxord zmm2, zmm2, zmm10 vpxord zmm3, zmm3, zmm11 vpxord zmm4, zmm4, zmm12 vpxord zmm5, zmm5, zmm13 vpxord zmm6, zmm6, zmm14 vpxord zmm7, zmm7, zmm15 movzx eax, byte ptr [rbp+0x78] jne 9b mov rbx, qword ptr [rbp+0x90] vpunpckldq zmm16, zmm0, zmm1 vpunpckhdq zmm17, zmm0, zmm1 vpunpckldq zmm18, zmm2, zmm3 vpunpckhdq zmm19, zmm2, zmm3 vpunpckldq zmm20, zmm4, zmm5 vpunpckhdq zmm21, zmm4, zmm5 vpunpckldq zmm22, zmm6, zmm7 vpunpckhdq zmm23, zmm6, zmm7 vpunpcklqdq zmm0, zmm16, zmm18 vpunpckhqdq zmm1, zmm16, zmm18 vpunpcklqdq zmm2, zmm17, zmm19 vpunpckhqdq zmm3, zmm17, zmm19 vpunpcklqdq zmm4, zmm20, zmm22 vpunpckhqdq zmm5, zmm20, zmm22 vpunpcklqdq zmm6, zmm21, zmm23 vpunpckhqdq zmm7, zmm21, zmm23 vshufi32x4 zmm16, zmm0, zmm4, 0x88 vshufi32x4 zmm17, zmm1, zmm5, 0x88 vshufi32x4 zmm18, zmm2, zmm6, 0x88 vshufi32x4 zmm19, zmm3, zmm7, 0x88 vshufi32x4 zmm20, zmm0, zmm4, 0xDD vshufi32x4 zmm21, zmm1, zmm5, 0xDD vshufi32x4 zmm22, zmm2, zmm6, 0xDD vshufi32x4 zmm23, zmm3, zmm7, 0xDD vshufi32x4 zmm0, zmm16, zmm17, 0x88 vshufi32x4 zmm1, zmm18, zmm19, 0x88 vshufi32x4 zmm2, zmm20, zmm21, 0x88 vshufi32x4 zmm3, zmm22, zmm23, 0x88 vshufi32x4 zmm4, zmm16, zmm17, 0xDD vshufi32x4 zmm5, zmm18, zmm19, 0xDD vshufi32x4 zmm6, zmm20, zmm21, 0xDD vshufi32x4 zmm7, zmm22, zmm23, 0xDD vmovdqu32 zmmword ptr [rbx], zmm0 vmovdqu32 zmmword ptr [rbx+0x1*0x40], zmm1 vmovdqu32 zmmword ptr [rbx+0x2*0x40], zmm2 vmovdqu32 zmmword ptr [rbx+0x3*0x40], zmm3 vmovdqu32 zmmword ptr [rbx+0x4*0x40], zmm4 vmovdqu32 zmmword ptr [rbx+0x5*0x40], zmm5 vmovdqu32 zmmword ptr [rbx+0x6*0x40], zmm6 vmovdqu32 zmmword ptr [rbx+0x7*0x40], zmm7 vmovdqa32 zmm0, zmmword ptr [rsp] vmovdqa32 zmm1, zmmword ptr [rsp+0x1*0x40] vmovdqa32 zmm2, zmm0 vpaddd zmm2{k1}, zmm0, dword ptr [ADD16+rip] {1to16} vpcmpltud k2, zmm2, zmm0 vpaddd zmm1 {k2}, zmm1, dword ptr [ADD1+rip] {1to16} vmovdqa32 zmmword ptr [rsp], zmm2 vmovdqa32 zmmword ptr [rsp+0x1*0x40], zmm1 add rdi, 128 add rbx, 512 mov qword ptr [rbp+0x90], rbx sub rsi, 16 cmp rsi, 16 jnc 2b test rsi, rsi jne 3f 4: vzeroupper vmovdqa xmm6, xmmword ptr [rsp+0x90] vmovdqa xmm7, xmmword ptr [rsp+0xA0] vmovdqa xmm8, xmmword ptr [rsp+0xB0] vmovdqa xmm9, xmmword ptr [rsp+0xC0] vmovdqa xmm10, xmmword ptr [rsp+0xD0] vmovdqa xmm11, xmmword ptr [rsp+0xE0] vmovdqa xmm12, xmmword ptr [rsp+0xF0] vmovdqa xmm13, xmmword ptr [rsp+0x100] vmovdqa xmm14, xmmword ptr [rsp+0x110] vmovdqa xmm15, xmmword ptr [rsp+0x120] mov rsp, rbp pop rbp pop rbx pop rsi pop rdi pop r12 pop r13 pop r14 pop r15 ret .p2align 6 3: test esi, 0x8 je 3f vpbroadcastd ymm0, dword ptr [rcx] vpbroadcastd ymm1, dword ptr [rcx+0x4] vpbroadcastd ymm2, dword ptr [rcx+0x8] vpbroadcastd ymm3, dword ptr [rcx+0xC] vpbroadcastd ymm4, dword ptr [rcx+0x10] vpbroadcastd ymm5, dword ptr [rcx+0x14] vpbroadcastd ymm6, dword ptr [rcx+0x18] vpbroadcastd ymm7, dword ptr [rcx+0x1C] mov r8, qword ptr [rdi] mov r9, qword ptr [rdi+0x8] mov r10, qword ptr [rdi+0x10] mov r11, qword ptr [rdi+0x18] mov r12, qword ptr [rdi+0x20] mov r13, qword ptr [rdi+0x28] mov r14, qword ptr [rdi+0x30] mov r15, qword ptr [rdi+0x38] movzx eax, byte ptr [rbp+0x78] movzx ebx, byte ptr [rbp+0x80] or eax, ebx xor edx, edx 2: movzx ebx, byte ptr [rbp+0x88] or ebx, eax add rdx, 64 cmp rdx, qword ptr [rsp+0x80] cmove eax, ebx mov dword ptr [rsp+0x88], eax vmovups xmm8, xmmword ptr [r8+rdx-0x40] vinsertf128 ymm8, ymm8, xmmword ptr [r12+rdx-0x40], 0x01 vmovups xmm9, xmmword ptr [r9+rdx-0x40] vinsertf128 ymm9, ymm9, xmmword ptr [r13+rdx-0x40], 0x01 vunpcklpd ymm12, ymm8, ymm9 vunpckhpd ymm13, ymm8, ymm9 vmovups xmm10, xmmword ptr [r10+rdx-0x40] vinsertf128 ymm10, ymm10, xmmword ptr [r14+rdx-0x40], 0x01 vmovups xmm11, xmmword ptr [r11+rdx-0x40] vinsertf128 ymm11, ymm11, xmmword ptr [r15+rdx-0x40], 0x01 vunpcklpd ymm14, ymm10, ymm11 vunpckhpd ymm15, ymm10, ymm11 vshufps ymm16, ymm12, ymm14, 136 vshufps ymm17, ymm12, ymm14, 221 vshufps ymm18, ymm13, ymm15, 136 vshufps ymm19, ymm13, ymm15, 221 vmovups xmm8, xmmword ptr [r8+rdx-0x30] vinsertf128 ymm8, ymm8, xmmword ptr [r12+rdx-0x30], 0x01 vmovups xmm9, xmmword ptr [r9+rdx-0x30] vinsertf128 ymm9, ymm9, xmmword ptr [r13+rdx-0x30], 0x01 vunpcklpd ymm12, ymm8, ymm9 vunpckhpd ymm13, ymm8, ymm9 vmovups xmm10, xmmword ptr [r10+rdx-0x30] vinsertf128 ymm10, ymm10, xmmword ptr [r14+rdx-0x30], 0x01 vmovups xmm11, xmmword ptr [r11+rdx-0x30] vinsertf128 ymm11, ymm11, xmmword ptr [r15+rdx-0x30], 0x01 vunpcklpd ymm14, ymm10, ymm11 vunpckhpd ymm15, ymm10, ymm11 vshufps ymm20, ymm12, ymm14, 136 vshufps ymm21, ymm12, ymm14, 221 vshufps ymm22, ymm13, ymm15, 136 vshufps ymm23, ymm13, ymm15, 221 vmovups xmm8, xmmword ptr [r8+rdx-0x20] vinsertf128 ymm8, ymm8, xmmword ptr [r12+rdx-0x20], 0x01 vmovups xmm9, xmmword ptr [r9+rdx-0x20] vinsertf128 ymm9, ymm9, xmmword ptr [r13+rdx-0x20], 0x01 vunpcklpd ymm12, ymm8, ymm9 vunpckhpd ymm13, ymm8, ymm9 vmovups xmm10, xmmword ptr [r10+rdx-0x20] vinsertf128 ymm10, ymm10, xmmword ptr [r14+rdx-0x20], 0x01 vmovups xmm11, xmmword ptr [r11+rdx-0x20] vinsertf128 ymm11, ymm11, xmmword ptr [r15+rdx-0x20], 0x01 vunpcklpd ymm14, ymm10, ymm11 vunpckhpd ymm15, ymm10, ymm11 vshufps ymm24, ymm12, ymm14, 136 vshufps ymm25, ymm12, ymm14, 221 vshufps ymm26, ymm13, ymm15, 136 vshufps ymm27, ymm13, ymm15, 221 vmovups xmm8, xmmword ptr [r8+rdx-0x10] vinsertf128 ymm8, ymm8, xmmword ptr [r12+rdx-0x10], 0x01 vmovups xmm9, xmmword ptr [r9+rdx-0x10] vinsertf128 ymm9, ymm9, xmmword ptr [r13+rdx-0x10], 0x01 vunpcklpd ymm12, ymm8, ymm9 vunpckhpd ymm13, ymm8, ymm9 vmovups xmm10, xmmword ptr [r10+rdx-0x10] vinsertf128 ymm10, ymm10, xmmword ptr [r14+rdx-0x10], 0x01 vmovups xmm11, xmmword ptr [r11+rdx-0x10] vinsertf128 ymm11, ymm11, xmmword ptr [r15+rdx-0x10], 0x01 vunpcklpd ymm14, ymm10, ymm11 vunpckhpd ymm15, ymm10, ymm11 vshufps ymm28, ymm12, ymm14, 136 vshufps ymm29, ymm12, ymm14, 221 vshufps ymm30, ymm13, ymm15, 136 vshufps ymm31, ymm13, ymm15, 221 vpbroadcastd ymm8, dword ptr [BLAKE3_IV_0+rip] vpbroadcastd ymm9, dword ptr [BLAKE3_IV_1+rip] vpbroadcastd ymm10, dword ptr [BLAKE3_IV_2+rip] vpbroadcastd ymm11, dword ptr [BLAKE3_IV_3+rip] vmovdqa ymm12, ymmword ptr [rsp] vmovdqa ymm13, ymmword ptr [rsp+0x40] vpbroadcastd ymm14, dword ptr [BLAKE3_BLOCK_LEN+rip] vpbroadcastd ymm15, dword ptr [rsp+0x88] vpaddd ymm0, ymm0, ymm16 vpaddd ymm1, ymm1, ymm18 vpaddd ymm2, ymm2, ymm20 vpaddd ymm3, ymm3, ymm22 vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxord ymm12, ymm12, ymm0 vpxord ymm13, ymm13, ymm1 vpxord ymm14, ymm14, ymm2 vpxord ymm15, ymm15, ymm3 vprord ymm12, ymm12, 16 vprord ymm13, ymm13, 16 vprord ymm14, ymm14, 16 vprord ymm15, ymm15, 16 vpaddd ymm8, ymm8, ymm12 vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxord ymm4, ymm4, ymm8 vpxord ymm5, ymm5, ymm9 vpxord ymm6, ymm6, ymm10 vpxord ymm7, ymm7, ymm11 vprord ymm4, ymm4, 12 vprord ymm5, ymm5, 12 vprord ymm6, ymm6, 12 vprord ymm7, ymm7, 12 vpaddd ymm0, ymm0, ymm17 vpaddd ymm1, ymm1, ymm19 vpaddd ymm2, ymm2, ymm21 vpaddd ymm3, ymm3, ymm23 vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxord ymm12, ymm12, ymm0 vpxord ymm13, ymm13, ymm1 vpxord ymm14, ymm14, ymm2 vpxord ymm15, ymm15, ymm3 vprord ymm12, ymm12, 8 vprord ymm13, ymm13, 8 vprord ymm14, ymm14, 8 vprord ymm15, ymm15, 8 vpaddd ymm8, ymm8, ymm12 vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxord ymm4, ymm4, ymm8 vpxord ymm5, ymm5, ymm9 vpxord ymm6, ymm6, ymm10 vpxord ymm7, ymm7, ymm11 vprord ymm4, ymm4, 7 vprord ymm5, ymm5, 7 vprord ymm6, ymm6, 7 vprord ymm7, ymm7, 7 vpaddd ymm0, ymm0, ymm24 vpaddd ymm1, ymm1, ymm26 vpaddd ymm2, ymm2, ymm28 vpaddd ymm3, ymm3, ymm30 vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxord ymm15, ymm15, ymm0 vpxord ymm12, ymm12, ymm1 vpxord ymm13, ymm13, ymm2 vpxord ymm14, ymm14, ymm3 vprord ymm15, ymm15, 16 vprord ymm12, ymm12, 16 vprord ymm13, ymm13, 16 vprord ymm14, ymm14, 16 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm8, ymm13 vpaddd ymm9, ymm9, ymm14 vpxord ymm5, ymm5, ymm10 vpxord ymm6, ymm6, ymm11 vpxord ymm7, ymm7, ymm8 vpxord ymm4, ymm4, ymm9 vprord ymm5, ymm5, 12 vprord ymm6, ymm6, 12 vprord ymm7, ymm7, 12 vprord ymm4, ymm4, 12 vpaddd ymm0, ymm0, ymm25 vpaddd ymm1, ymm1, ymm27 vpaddd ymm2, ymm2, ymm29 vpaddd ymm3, ymm3, ymm31 vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxord ymm15, ymm15, ymm0 vpxord ymm12, ymm12, ymm1 vpxord ymm13, ymm13, ymm2 vpxord ymm14, ymm14, ymm3 vprord ymm15, ymm15, 8 vprord ymm12, ymm12, 8 vprord ymm13, ymm13, 8 vprord ymm14, ymm14, 8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm8, ymm13 vpaddd ymm9, ymm9, ymm14 vpxord ymm5, ymm5, ymm10 vpxord ymm6, ymm6, ymm11 vpxord ymm7, ymm7, ymm8 vpxord ymm4, ymm4, ymm9 vprord ymm5, ymm5, 7 vprord ymm6, ymm6, 7 vprord ymm7, ymm7, 7 vprord ymm4, ymm4, 7 vpaddd ymm0, ymm0, ymm18 vpaddd ymm1, ymm1, ymm19 vpaddd ymm2, ymm2, ymm23 vpaddd ymm3, ymm3, ymm20 vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxord ymm12, ymm12, ymm0 vpxord ymm13, ymm13, ymm1 vpxord ymm14, ymm14, ymm2 vpxord ymm15, ymm15, ymm3 vprord ymm12, ymm12, 16 vprord ymm13, ymm13, 16 vprord ymm14, ymm14, 16 vprord ymm15, ymm15, 16 vpaddd ymm8, ymm8, ymm12 vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxord ymm4, ymm4, ymm8 vpxord ymm5, ymm5, ymm9 vpxord ymm6, ymm6, ymm10 vpxord ymm7, ymm7, ymm11 vprord ymm4, ymm4, 12 vprord ymm5, ymm5, 12 vprord ymm6, ymm6, 12 vprord ymm7, ymm7, 12 vpaddd ymm0, ymm0, ymm22 vpaddd ymm1, ymm1, ymm26 vpaddd ymm2, ymm2, ymm16 vpaddd ymm3, ymm3, ymm29 vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxord ymm12, ymm12, ymm0 vpxord ymm13, ymm13, ymm1 vpxord ymm14, ymm14, ymm2 vpxord ymm15, ymm15, ymm3 vprord ymm12, ymm12, 8 vprord ymm13, ymm13, 8 vprord ymm14, ymm14, 8 vprord ymm15, ymm15, 8 vpaddd ymm8, ymm8, ymm12 vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxord ymm4, ymm4, ymm8 vpxord ymm5, ymm5, ymm9 vpxord ymm6, ymm6, ymm10 vpxord ymm7, ymm7, ymm11 vprord ymm4, ymm4, 7 vprord ymm5, ymm5, 7 vprord ymm6, ymm6, 7 vprord ymm7, ymm7, 7 vpaddd ymm0, ymm0, ymm17 vpaddd ymm1, ymm1, ymm28 vpaddd ymm2, ymm2, ymm25 vpaddd ymm3, ymm3, ymm31 vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxord ymm15, ymm15, ymm0 vpxord ymm12, ymm12, ymm1 vpxord ymm13, ymm13, ymm2 vpxord ymm14, ymm14, ymm3 vprord ymm15, ymm15, 16 vprord ymm12, ymm12, 16 vprord ymm13, ymm13, 16 vprord ymm14, ymm14, 16 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm8, ymm13 vpaddd ymm9, ymm9, ymm14 vpxord ymm5, ymm5, ymm10 vpxord ymm6, ymm6, ymm11 vpxord ymm7, ymm7, ymm8 vpxord ymm4, ymm4, ymm9 vprord ymm5, ymm5, 12 vprord ymm6, ymm6, 12 vprord ymm7, ymm7, 12 vprord ymm4, ymm4, 12 vpaddd ymm0, ymm0, ymm27 vpaddd ymm1, ymm1, ymm21 vpaddd ymm2, ymm2, ymm30 vpaddd ymm3, ymm3, ymm24 vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxord ymm15, ymm15, ymm0 vpxord ymm12, ymm12, ymm1 vpxord ymm13, ymm13, ymm2 vpxord ymm14, ymm14, ymm3 vprord ymm15, ymm15, 8 vprord ymm12, ymm12, 8 vprord ymm13, ymm13, 8 vprord ymm14, ymm14, 8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm8, ymm13 vpaddd ymm9, ymm9, ymm14 vpxord ymm5, ymm5, ymm10 vpxord ymm6, ymm6, ymm11 vpxord ymm7, ymm7, ymm8 vpxord ymm4, ymm4, ymm9 vprord ymm5, ymm5, 7 vprord ymm6, ymm6, 7 vprord ymm7, ymm7, 7 vprord ymm4, ymm4, 7 vpaddd ymm0, ymm0, ymm19 vpaddd ymm1, ymm1, ymm26 vpaddd ymm2, ymm2, ymm29 vpaddd ymm3, ymm3, ymm23 vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxord ymm12, ymm12, ymm0 vpxord ymm13, ymm13, ymm1 vpxord ymm14, ymm14, ymm2 vpxord ymm15, ymm15, ymm3 vprord ymm12, ymm12, 16 vprord ymm13, ymm13, 16 vprord ymm14, ymm14, 16 vprord ymm15, ymm15, 16 vpaddd ymm8, ymm8, ymm12 vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxord ymm4, ymm4, ymm8 vpxord ymm5, ymm5, ymm9 vpxord ymm6, ymm6, ymm10 vpxord ymm7, ymm7, ymm11 vprord ymm4, ymm4, 12 vprord ymm5, ymm5, 12 vprord ymm6, ymm6, 12 vprord ymm7, ymm7, 12 vpaddd ymm0, ymm0, ymm20 vpaddd ymm1, ymm1, ymm28 vpaddd ymm2, ymm2, ymm18 vpaddd ymm3, ymm3, ymm30 vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxord ymm12, ymm12, ymm0 vpxord ymm13, ymm13, ymm1 vpxord ymm14, ymm14, ymm2 vpxord ymm15, ymm15, ymm3 vprord ymm12, ymm12, 8 vprord ymm13, ymm13, 8 vprord ymm14, ymm14, 8 vprord ymm15, ymm15, 8 vpaddd ymm8, ymm8, ymm12 vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxord ymm4, ymm4, ymm8 vpxord ymm5, ymm5, ymm9 vpxord ymm6, ymm6, ymm10 vpxord ymm7, ymm7, ymm11 vprord ymm4, ymm4, 7 vprord ymm5, ymm5, 7 vprord ymm6, ymm6, 7 vprord ymm7, ymm7, 7 vpaddd ymm0, ymm0, ymm22 vpaddd ymm1, ymm1, ymm25 vpaddd ymm2, ymm2, ymm27 vpaddd ymm3, ymm3, ymm24 vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxord ymm15, ymm15, ymm0 vpxord ymm12, ymm12, ymm1 vpxord ymm13, ymm13, ymm2 vpxord ymm14, ymm14, ymm3 vprord ymm15, ymm15, 16 vprord ymm12, ymm12, 16 vprord ymm13, ymm13, 16 vprord ymm14, ymm14, 16 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm8, ymm13 vpaddd ymm9, ymm9, ymm14 vpxord ymm5, ymm5, ymm10 vpxord ymm6, ymm6, ymm11 vpxord ymm7, ymm7, ymm8 vpxord ymm4, ymm4, ymm9 vprord ymm5, ymm5, 12 vprord ymm6, ymm6, 12 vprord ymm7, ymm7, 12 vprord ymm4, ymm4, 12 vpaddd ymm0, ymm0, ymm21 vpaddd ymm1, ymm1, ymm16 vpaddd ymm2, ymm2, ymm31 vpaddd ymm3, ymm3, ymm17 vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxord ymm15, ymm15, ymm0 vpxord ymm12, ymm12, ymm1 vpxord ymm13, ymm13, ymm2 vpxord ymm14, ymm14, ymm3 vprord ymm15, ymm15, 8 vprord ymm12, ymm12, 8 vprord ymm13, ymm13, 8 vprord ymm14, ymm14, 8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm8, ymm13 vpaddd ymm9, ymm9, ymm14 vpxord ymm5, ymm5, ymm10 vpxord ymm6, ymm6, ymm11 vpxord ymm7, ymm7, ymm8 vpxord ymm4, ymm4, ymm9 vprord ymm5, ymm5, 7 vprord ymm6, ymm6, 7 vprord ymm7, ymm7, 7 vprord ymm4, ymm4, 7 vpaddd ymm0, ymm0, ymm26 vpaddd ymm1, ymm1, ymm28 vpaddd ymm2, ymm2, ymm30 vpaddd ymm3, ymm3, ymm29 vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxord ymm12, ymm12, ymm0 vpxord ymm13, ymm13, ymm1 vpxord ymm14, ymm14, ymm2 vpxord ymm15, ymm15, ymm3 vprord ymm12, ymm12, 16 vprord ymm13, ymm13, 16 vprord ymm14, ymm14, 16 vprord ymm15, ymm15, 16 vpaddd ymm8, ymm8, ymm12 vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxord ymm4, ymm4, ymm8 vpxord ymm5, ymm5, ymm9 vpxord ymm6, ymm6, ymm10 vpxord ymm7, ymm7, ymm11 vprord ymm4, ymm4, 12 vprord ymm5, ymm5, 12 vprord ymm6, ymm6, 12 vprord ymm7, ymm7, 12 vpaddd ymm0, ymm0, ymm23 vpaddd ymm1, ymm1, ymm25 vpaddd ymm2, ymm2, ymm19 vpaddd ymm3, ymm3, ymm31 vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxord ymm12, ymm12, ymm0 vpxord ymm13, ymm13, ymm1 vpxord ymm14, ymm14, ymm2 vpxord ymm15, ymm15, ymm3 vprord ymm12, ymm12, 8 vprord ymm13, ymm13, 8 vprord ymm14, ymm14, 8 vprord ymm15, ymm15, 8 vpaddd ymm8, ymm8, ymm12 vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxord ymm4, ymm4, ymm8 vpxord ymm5, ymm5, ymm9 vpxord ymm6, ymm6, ymm10 vpxord ymm7, ymm7, ymm11 vprord ymm4, ymm4, 7 vprord ymm5, ymm5, 7 vprord ymm6, ymm6, 7 vprord ymm7, ymm7, 7 vpaddd ymm0, ymm0, ymm20 vpaddd ymm1, ymm1, ymm27 vpaddd ymm2, ymm2, ymm21 vpaddd ymm3, ymm3, ymm17 vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxord ymm15, ymm15, ymm0 vpxord ymm12, ymm12, ymm1 vpxord ymm13, ymm13, ymm2 vpxord ymm14, ymm14, ymm3 vprord ymm15, ymm15, 16 vprord ymm12, ymm12, 16 vprord ymm13, ymm13, 16 vprord ymm14, ymm14, 16 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm8, ymm13 vpaddd ymm9, ymm9, ymm14 vpxord ymm5, ymm5, ymm10 vpxord ymm6, ymm6, ymm11 vpxord ymm7, ymm7, ymm8 vpxord ymm4, ymm4, ymm9 vprord ymm5, ymm5, 12 vprord ymm6, ymm6, 12 vprord ymm7, ymm7, 12 vprord ymm4, ymm4, 12 vpaddd ymm0, ymm0, ymm16 vpaddd ymm1, ymm1, ymm18 vpaddd ymm2, ymm2, ymm24 vpaddd ymm3, ymm3, ymm22 vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxord ymm15, ymm15, ymm0 vpxord ymm12, ymm12, ymm1 vpxord ymm13, ymm13, ymm2 vpxord ymm14, ymm14, ymm3 vprord ymm15, ymm15, 8 vprord ymm12, ymm12, 8 vprord ymm13, ymm13, 8 vprord ymm14, ymm14, 8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm8, ymm13 vpaddd ymm9, ymm9, ymm14 vpxord ymm5, ymm5, ymm10 vpxord ymm6, ymm6, ymm11 vpxord ymm7, ymm7, ymm8 vpxord ymm4, ymm4, ymm9 vprord ymm5, ymm5, 7 vprord ymm6, ymm6, 7 vprord ymm7, ymm7, 7 vprord ymm4, ymm4, 7 vpaddd ymm0, ymm0, ymm28 vpaddd ymm1, ymm1, ymm25 vpaddd ymm2, ymm2, ymm31 vpaddd ymm3, ymm3, ymm30 vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxord ymm12, ymm12, ymm0 vpxord ymm13, ymm13, ymm1 vpxord ymm14, ymm14, ymm2 vpxord ymm15, ymm15, ymm3 vprord ymm12, ymm12, 16 vprord ymm13, ymm13, 16 vprord ymm14, ymm14, 16 vprord ymm15, ymm15, 16 vpaddd ymm8, ymm8, ymm12 vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxord ymm4, ymm4, ymm8 vpxord ymm5, ymm5, ymm9 vpxord ymm6, ymm6, ymm10 vpxord ymm7, ymm7, ymm11 vprord ymm4, ymm4, 12 vprord ymm5, ymm5, 12 vprord ymm6, ymm6, 12 vprord ymm7, ymm7, 12 vpaddd ymm0, ymm0, ymm29 vpaddd ymm1, ymm1, ymm27 vpaddd ymm2, ymm2, ymm26 vpaddd ymm3, ymm3, ymm24 vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxord ymm12, ymm12, ymm0 vpxord ymm13, ymm13, ymm1 vpxord ymm14, ymm14, ymm2 vpxord ymm15, ymm15, ymm3 vprord ymm12, ymm12, 8 vprord ymm13, ymm13, 8 vprord ymm14, ymm14, 8 vprord ymm15, ymm15, 8 vpaddd ymm8, ymm8, ymm12 vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxord ymm4, ymm4, ymm8 vpxord ymm5, ymm5, ymm9 vpxord ymm6, ymm6, ymm10 vpxord ymm7, ymm7, ymm11 vprord ymm4, ymm4, 7 vprord ymm5, ymm5, 7 vprord ymm6, ymm6, 7 vprord ymm7, ymm7, 7 vpaddd ymm0, ymm0, ymm23 vpaddd ymm1, ymm1, ymm21 vpaddd ymm2, ymm2, ymm16 vpaddd ymm3, ymm3, ymm22 vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxord ymm15, ymm15, ymm0 vpxord ymm12, ymm12, ymm1 vpxord ymm13, ymm13, ymm2 vpxord ymm14, ymm14, ymm3 vprord ymm15, ymm15, 16 vprord ymm12, ymm12, 16 vprord ymm13, ymm13, 16 vprord ymm14, ymm14, 16 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm8, ymm13 vpaddd ymm9, ymm9, ymm14 vpxord ymm5, ymm5, ymm10 vpxord ymm6, ymm6, ymm11 vpxord ymm7, ymm7, ymm8 vpxord ymm4, ymm4, ymm9 vprord ymm5, ymm5, 12 vprord ymm6, ymm6, 12 vprord ymm7, ymm7, 12 vprord ymm4, ymm4, 12 vpaddd ymm0, ymm0, ymm18 vpaddd ymm1, ymm1, ymm19 vpaddd ymm2, ymm2, ymm17 vpaddd ymm3, ymm3, ymm20 vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxord ymm15, ymm15, ymm0 vpxord ymm12, ymm12, ymm1 vpxord ymm13, ymm13, ymm2 vpxord ymm14, ymm14, ymm3 vprord ymm15, ymm15, 8 vprord ymm12, ymm12, 8 vprord ymm13, ymm13, 8 vprord ymm14, ymm14, 8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm8, ymm13 vpaddd ymm9, ymm9, ymm14 vpxord ymm5, ymm5, ymm10 vpxord ymm6, ymm6, ymm11 vpxord ymm7, ymm7, ymm8 vpxord ymm4, ymm4, ymm9 vprord ymm5, ymm5, 7 vprord ymm6, ymm6, 7 vprord ymm7, ymm7, 7 vprord ymm4, ymm4, 7 vpaddd ymm0, ymm0, ymm25 vpaddd ymm1, ymm1, ymm27 vpaddd ymm2, ymm2, ymm24 vpaddd ymm3, ymm3, ymm31 vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxord ymm12, ymm12, ymm0 vpxord ymm13, ymm13, ymm1 vpxord ymm14, ymm14, ymm2 vpxord ymm15, ymm15, ymm3 vprord ymm12, ymm12, 16 vprord ymm13, ymm13, 16 vprord ymm14, ymm14, 16 vprord ymm15, ymm15, 16 vpaddd ymm8, ymm8, ymm12 vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxord ymm4, ymm4, ymm8 vpxord ymm5, ymm5, ymm9 vpxord ymm6, ymm6, ymm10 vpxord ymm7, ymm7, ymm11 vprord ymm4, ymm4, 12 vprord ymm5, ymm5, 12 vprord ymm6, ymm6, 12 vprord ymm7, ymm7, 12 vpaddd ymm0, ymm0, ymm30 vpaddd ymm1, ymm1, ymm21 vpaddd ymm2, ymm2, ymm28 vpaddd ymm3, ymm3, ymm17 vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxord ymm12, ymm12, ymm0 vpxord ymm13, ymm13, ymm1 vpxord ymm14, ymm14, ymm2 vpxord ymm15, ymm15, ymm3 vprord ymm12, ymm12, 8 vprord ymm13, ymm13, 8 vprord ymm14, ymm14, 8 vprord ymm15, ymm15, 8 vpaddd ymm8, ymm8, ymm12 vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxord ymm4, ymm4, ymm8 vpxord ymm5, ymm5, ymm9 vpxord ymm6, ymm6, ymm10 vpxord ymm7, ymm7, ymm11 vprord ymm4, ymm4, 7 vprord ymm5, ymm5, 7 vprord ymm6, ymm6, 7 vprord ymm7, ymm7, 7 vpaddd ymm0, ymm0, ymm29 vpaddd ymm1, ymm1, ymm16 vpaddd ymm2, ymm2, ymm18 vpaddd ymm3, ymm3, ymm20 vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxord ymm15, ymm15, ymm0 vpxord ymm12, ymm12, ymm1 vpxord ymm13, ymm13, ymm2 vpxord ymm14, ymm14, ymm3 vprord ymm15, ymm15, 16 vprord ymm12, ymm12, 16 vprord ymm13, ymm13, 16 vprord ymm14, ymm14, 16 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm8, ymm13 vpaddd ymm9, ymm9, ymm14 vpxord ymm5, ymm5, ymm10 vpxord ymm6, ymm6, ymm11 vpxord ymm7, ymm7, ymm8 vpxord ymm4, ymm4, ymm9 vprord ymm5, ymm5, 12 vprord ymm6, ymm6, 12 vprord ymm7, ymm7, 12 vprord ymm4, ymm4, 12 vpaddd ymm0, ymm0, ymm19 vpaddd ymm1, ymm1, ymm26 vpaddd ymm2, ymm2, ymm22 vpaddd ymm3, ymm3, ymm23 vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxord ymm15, ymm15, ymm0 vpxord ymm12, ymm12, ymm1 vpxord ymm13, ymm13, ymm2 vpxord ymm14, ymm14, ymm3 vprord ymm15, ymm15, 8 vprord ymm12, ymm12, 8 vprord ymm13, ymm13, 8 vprord ymm14, ymm14, 8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm8, ymm13 vpaddd ymm9, ymm9, ymm14 vpxord ymm5, ymm5, ymm10 vpxord ymm6, ymm6, ymm11 vpxord ymm7, ymm7, ymm8 vpxord ymm4, ymm4, ymm9 vprord ymm5, ymm5, 7 vprord ymm6, ymm6, 7 vprord ymm7, ymm7, 7 vprord ymm4, ymm4, 7 vpaddd ymm0, ymm0, ymm27 vpaddd ymm1, ymm1, ymm21 vpaddd ymm2, ymm2, ymm17 vpaddd ymm3, ymm3, ymm24 vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxord ymm12, ymm12, ymm0 vpxord ymm13, ymm13, ymm1 vpxord ymm14, ymm14, ymm2 vpxord ymm15, ymm15, ymm3 vprord ymm12, ymm12, 16 vprord ymm13, ymm13, 16 vprord ymm14, ymm14, 16 vprord ymm15, ymm15, 16 vpaddd ymm8, ymm8, ymm12 vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxord ymm4, ymm4, ymm8 vpxord ymm5, ymm5, ymm9 vpxord ymm6, ymm6, ymm10 vpxord ymm7, ymm7, ymm11 vprord ymm4, ymm4, 12 vprord ymm5, ymm5, 12 vprord ymm6, ymm6, 12 vprord ymm7, ymm7, 12 vpaddd ymm0, ymm0, ymm31 vpaddd ymm1, ymm1, ymm16 vpaddd ymm2, ymm2, ymm25 vpaddd ymm3, ymm3, ymm22 vpaddd ymm0, ymm0, ymm4 vpaddd ymm1, ymm1, ymm5 vpaddd ymm2, ymm2, ymm6 vpaddd ymm3, ymm3, ymm7 vpxord ymm12, ymm12, ymm0 vpxord ymm13, ymm13, ymm1 vpxord ymm14, ymm14, ymm2 vpxord ymm15, ymm15, ymm3 vprord ymm12, ymm12, 8 vprord ymm13, ymm13, 8 vprord ymm14, ymm14, 8 vprord ymm15, ymm15, 8 vpaddd ymm8, ymm8, ymm12 vpaddd ymm9, ymm9, ymm13 vpaddd ymm10, ymm10, ymm14 vpaddd ymm11, ymm11, ymm15 vpxord ymm4, ymm4, ymm8 vpxord ymm5, ymm5, ymm9 vpxord ymm6, ymm6, ymm10 vpxord ymm7, ymm7, ymm11 vprord ymm4, ymm4, 7 vprord ymm5, ymm5, 7 vprord ymm6, ymm6, 7 vprord ymm7, ymm7, 7 vpaddd ymm0, ymm0, ymm30 vpaddd ymm1, ymm1, ymm18 vpaddd ymm2, ymm2, ymm19 vpaddd ymm3, ymm3, ymm23 vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxord ymm15, ymm15, ymm0 vpxord ymm12, ymm12, ymm1 vpxord ymm13, ymm13, ymm2 vpxord ymm14, ymm14, ymm3 vprord ymm15, ymm15, 16 vprord ymm12, ymm12, 16 vprord ymm13, ymm13, 16 vprord ymm14, ymm14, 16 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm8, ymm13 vpaddd ymm9, ymm9, ymm14 vpxord ymm5, ymm5, ymm10 vpxord ymm6, ymm6, ymm11 vpxord ymm7, ymm7, ymm8 vpxord ymm4, ymm4, ymm9 vprord ymm5, ymm5, 12 vprord ymm6, ymm6, 12 vprord ymm7, ymm7, 12 vprord ymm4, ymm4, 12 vpaddd ymm0, ymm0, ymm26 vpaddd ymm1, ymm1, ymm28 vpaddd ymm2, ymm2, ymm20 vpaddd ymm3, ymm3, ymm29 vpaddd ymm0, ymm0, ymm5 vpaddd ymm1, ymm1, ymm6 vpaddd ymm2, ymm2, ymm7 vpaddd ymm3, ymm3, ymm4 vpxord ymm15, ymm15, ymm0 vpxord ymm12, ymm12, ymm1 vpxord ymm13, ymm13, ymm2 vpxord ymm14, ymm14, ymm3 vprord ymm15, ymm15, 8 vprord ymm12, ymm12, 8 vprord ymm13, ymm13, 8 vprord ymm14, ymm14, 8 vpaddd ymm10, ymm10, ymm15 vpaddd ymm11, ymm11, ymm12 vpaddd ymm8, ymm8, ymm13 vpaddd ymm9, ymm9, ymm14 vpxord ymm5, ymm5, ymm10 vpxord ymm6, ymm6, ymm11 vpxord ymm7, ymm7, ymm8 vpxord ymm4, ymm4, ymm9 vprord ymm5, ymm5, 7 vprord ymm6, ymm6, 7 vprord ymm7, ymm7, 7 vprord ymm4, ymm4, 7 vpxor ymm0, ymm0, ymm8 vpxor ymm1, ymm1, ymm9 vpxor ymm2, ymm2, ymm10 vpxor ymm3, ymm3, ymm11 vpxor ymm4, ymm4, ymm12 vpxor ymm5, ymm5, ymm13 vpxor ymm6, ymm6, ymm14 vpxor ymm7, ymm7, ymm15 movzx eax, byte ptr [rbp+0x78] jne 2b mov rbx, qword ptr [rbp+0x90] vunpcklps ymm8, ymm0, ymm1 vunpcklps ymm9, ymm2, ymm3 vunpckhps ymm10, ymm0, ymm1 vunpcklps ymm11, ymm4, ymm5 vunpcklps ymm0, ymm6, ymm7 vshufps ymm12, ymm8, ymm9, 78 vblendps ymm1, ymm8, ymm12, 0xCC vshufps ymm8, ymm11, ymm0, 78 vunpckhps ymm13, ymm2, ymm3 vblendps ymm2, ymm11, ymm8, 0xCC vblendps ymm3, ymm12, ymm9, 0xCC vperm2f128 ymm12, ymm1, ymm2, 0x20 vmovups ymmword ptr [rbx], ymm12 vunpckhps ymm14, ymm4, ymm5 vblendps ymm4, ymm8, ymm0, 0xCC vunpckhps ymm15, ymm6, ymm7 vperm2f128 ymm7, ymm3, ymm4, 0x20 vmovups ymmword ptr [rbx+0x20], ymm7 vshufps ymm5, ymm10, ymm13, 78 vblendps ymm6, ymm5, ymm13, 0xCC vshufps ymm13, ymm14, ymm15, 78 vblendps ymm10, ymm10, ymm5, 0xCC vblendps ymm14, ymm14, ymm13, 0xCC vperm2f128 ymm8, ymm10, ymm14, 0x20 vmovups ymmword ptr [rbx+0x40], ymm8 vblendps ymm15, ymm13, ymm15, 0xCC vperm2f128 ymm13, ymm6, ymm15, 0x20 vmovups ymmword ptr [rbx+0x60], ymm13 vperm2f128 ymm9, ymm1, ymm2, 0x31 vperm2f128 ymm11, ymm3, ymm4, 0x31 vmovups ymmword ptr [rbx+0x80], ymm9 vperm2f128 ymm14, ymm10, ymm14, 0x31 vperm2f128 ymm15, ymm6, ymm15, 0x31 vmovups ymmword ptr [rbx+0xA0], ymm11 vmovups ymmword ptr [rbx+0xC0], ymm14 vmovups ymmword ptr [rbx+0xE0], ymm15 vmovdqa ymm0, ymmword ptr [rsp] vmovdqa ymm2, ymmword ptr [rsp+0x40] vmovdqa32 ymm0 {k1}, ymmword ptr [rsp+0x1*0x20] vmovdqa32 ymm2 {k1}, ymmword ptr [rsp+0x3*0x20] vmovdqa ymmword ptr [rsp], ymm0 vmovdqa ymmword ptr [rsp+0x40], ymm2 add rbx, 256 mov qword ptr [rbp+0x90], rbx add rdi, 64 sub rsi, 8 3: mov rbx, qword ptr [rbp+0x90] mov r15, qword ptr [rsp+0x80] movzx r13, byte ptr [rbp+0x78] movzx r12, byte ptr [rbp+0x88] test esi, 0x4 je 3f vbroadcasti32x4 zmm0, xmmword ptr [rcx] vbroadcasti32x4 zmm1, xmmword ptr [rcx+0x1*0x10] vmovdqa xmm12, xmmword ptr [rsp] vmovdqa xmm13, xmmword ptr [rsp+0x40] vpunpckldq xmm14, xmm12, xmm13 vpunpckhdq xmm15, xmm12, xmm13 vpermq ymm14, ymm14, 0xDC vpermq ymm15, ymm15, 0xDC vpbroadcastd zmm12, dword ptr [BLAKE3_BLOCK_LEN+rip] vinserti64x4 zmm13, zmm14, ymm15, 0x01 mov eax, 17476 kmovw k2, eax vpblendmd zmm13 {k2}, zmm13, zmm12 vbroadcasti32x4 zmm15, xmmword ptr [BLAKE3_IV+rip] mov r8, qword ptr [rdi] mov r9, qword ptr [rdi+0x8] mov r10, qword ptr [rdi+0x10] mov r11, qword ptr [rdi+0x18] mov eax, 43690 kmovw k3, eax mov eax, 34952 kmovw k4, eax movzx eax, byte ptr [rbp+0x80] or eax, r13d xor edx, edx .p2align 5 2: mov r14d, eax or eax, r12d add rdx, 64 cmp rdx, r15 cmovne eax, r14d mov dword ptr [rsp+0x88], eax vmovdqa32 zmm2, zmm15 vpbroadcastd zmm8, dword ptr [rsp+0x22*0x4] vpblendmd zmm3 {k4}, zmm13, zmm8 vmovups zmm8, zmmword ptr [r8+rdx-0x1*0x40] vinserti32x4 zmm8, zmm8, xmmword ptr [r9+rdx-0x4*0x10], 0x01 vinserti32x4 zmm8, zmm8, xmmword ptr [r10+rdx-0x4*0x10], 0x02 vinserti32x4 zmm8, zmm8, xmmword ptr [r11+rdx-0x4*0x10], 0x03 vmovups zmm9, zmmword ptr [r8+rdx-0x30] vinserti32x4 zmm9, zmm9, xmmword ptr [r9+rdx-0x3*0x10], 0x01 vinserti32x4 zmm9, zmm9, xmmword ptr [r10+rdx-0x3*0x10], 0x02 vinserti32x4 zmm9, zmm9, xmmword ptr [r11+rdx-0x3*0x10], 0x03 vshufps zmm4, zmm8, zmm9, 136 vshufps zmm5, zmm8, zmm9, 221 vmovups zmm8, zmmword ptr [r8+rdx-0x20] vinserti32x4 zmm8, zmm8, xmmword ptr [r9+rdx-0x2*0x10], 0x01 vinserti32x4 zmm8, zmm8, xmmword ptr [r10+rdx-0x2*0x10], 0x02 vinserti32x4 zmm8, zmm8, xmmword ptr [r11+rdx-0x2*0x10], 0x03 vmovups zmm9, zmmword ptr [r8+rdx-0x10] vinserti32x4 zmm9, zmm9, xmmword ptr [r9+rdx-0x1*0x10], 0x01 vinserti32x4 zmm9, zmm9, xmmword ptr [r10+rdx-0x1*0x10], 0x02 vinserti32x4 zmm9, zmm9, xmmword ptr [r11+rdx-0x1*0x10], 0x03 vshufps zmm6, zmm8, zmm9, 136 vshufps zmm7, zmm8, zmm9, 221 vpshufd zmm6, zmm6, 0x93 vpshufd zmm7, zmm7, 0x93 mov al, 7 9: vpaddd zmm0, zmm0, zmm4 vpaddd zmm0, zmm0, zmm1 vpxord zmm3, zmm3, zmm0 vprord zmm3, zmm3, 16 vpaddd zmm2, zmm2, zmm3 vpxord zmm1, zmm1, zmm2 vprord zmm1, zmm1, 12 vpaddd zmm0, zmm0, zmm5 vpaddd zmm0, zmm0, zmm1 vpxord zmm3, zmm3, zmm0 vprord zmm3, zmm3, 8 vpaddd zmm2, zmm2, zmm3 vpxord zmm1, zmm1, zmm2 vprord zmm1, zmm1, 7 vpshufd zmm0, zmm0, 0x93 vpshufd zmm3, zmm3, 0x4E vpshufd zmm2, zmm2, 0x39 vpaddd zmm0, zmm0, zmm6 vpaddd zmm0, zmm0, zmm1 vpxord zmm3, zmm3, zmm0 vprord zmm3, zmm3, 16 vpaddd zmm2, zmm2, zmm3 vpxord zmm1, zmm1, zmm2 vprord zmm1, zmm1, 12 vpaddd zmm0, zmm0, zmm7 vpaddd zmm0, zmm0, zmm1 vpxord zmm3, zmm3, zmm0 vprord zmm3, zmm3, 8 vpaddd zmm2, zmm2, zmm3 vpxord zmm1, zmm1, zmm2 vprord zmm1, zmm1, 7 vpshufd zmm0, zmm0, 0x39 vpshufd zmm3, zmm3, 0x4E vpshufd zmm2, zmm2, 0x93 dec al jz 9f vshufps zmm8, zmm4, zmm5, 214 vpshufd zmm9, zmm4, 0x0F vpshufd zmm4, zmm8, 0x39 vshufps zmm8, zmm6, zmm7, 250 vpblendmd zmm9 {k3}, zmm9, zmm8 vpunpcklqdq zmm8, zmm7, zmm5 vpblendmd zmm8 {k4}, zmm8, zmm6 vpshufd zmm8, zmm8, 0x78 vpunpckhdq zmm5, zmm5, zmm7 vpunpckldq zmm6, zmm6, zmm5 vpshufd zmm7, zmm6, 0x1E vmovdqa32 zmm5, zmm9 vmovdqa32 zmm6, zmm8 jmp 9b 9: vpxord zmm0, zmm0, zmm2 vpxord zmm1, zmm1, zmm3 mov eax, r13d cmp rdx, r15 jne 2b vmovdqu xmmword ptr [rbx], xmm0 vmovdqu xmmword ptr [rbx+0x10], xmm1 vextracti128 xmmword ptr [rbx+0x20], ymm0, 0x01 vextracti128 xmmword ptr [rbx+0x30], ymm1, 0x01 vextracti32x4 xmmword ptr [rbx+0x4*0x10], zmm0, 0x02 vextracti32x4 xmmword ptr [rbx+0x5*0x10], zmm1, 0x02 vextracti32x4 xmmword ptr [rbx+0x6*0x10], zmm0, 0x03 vextracti32x4 xmmword ptr [rbx+0x7*0x10], zmm1, 0x03 vmovdqa xmm0, xmmword ptr [rsp] vmovdqa xmm2, xmmword ptr [rsp+0x40] vmovdqa32 xmm0 {k1}, xmmword ptr [rsp+0x1*0x10] vmovdqa32 xmm2 {k1}, xmmword ptr [rsp+0x5*0x10] vmovdqa xmmword ptr [rsp], xmm0 vmovdqa xmmword ptr [rsp+0x40], xmm2 add rbx, 128 add rdi, 32 sub rsi, 4 3: test esi, 0x2 je 3f vbroadcasti128 ymm0, xmmword ptr [rcx] vbroadcasti128 ymm1, xmmword ptr [rcx+0x10] vmovd xmm13, dword ptr [rsp] vpinsrd xmm13, xmm13, dword ptr [rsp+0x40], 1 vpinsrd xmm13, xmm13, dword ptr [BLAKE3_BLOCK_LEN+rip], 2 vmovd xmm14, dword ptr [rsp+0x4] vpinsrd xmm14, xmm14, dword ptr [rsp+0x44], 1 vpinsrd xmm14, xmm14, dword ptr [BLAKE3_BLOCK_LEN+rip], 2 vinserti128 ymm13, ymm13, xmm14, 0x01 mov r8, qword ptr [rdi] mov r9, qword ptr [rdi+0x8] movzx eax, byte ptr [rbp+0x80] or eax, r13d xor edx, edx .p2align 5 2: mov r14d, eax or eax, r12d add rdx, 64 cmp rdx, r15 cmovne eax, r14d mov dword ptr [rsp+0x88], eax vbroadcasti128 ymm2, xmmword ptr [BLAKE3_IV+rip] vpbroadcastd ymm8, dword ptr [rsp+0x88] vpblendd ymm3, ymm13, ymm8, 0x88 vmovups ymm8, ymmword ptr [r8+rdx-0x40] vinsertf128 ymm8, ymm8, xmmword ptr [r9+rdx-0x40], 0x01 vmovups ymm9, ymmword ptr [r8+rdx-0x30] vinsertf128 ymm9, ymm9, xmmword ptr [r9+rdx-0x30], 0x01 vshufps ymm4, ymm8, ymm9, 136 vshufps ymm5, ymm8, ymm9, 221 vmovups ymm8, ymmword ptr [r8+rdx-0x20] vinsertf128 ymm8, ymm8, xmmword ptr [r9+rdx-0x20], 0x01 vmovups ymm9, ymmword ptr [r8+rdx-0x10] vinsertf128 ymm9, ymm9, xmmword ptr [r9+rdx-0x10], 0x01 vshufps ymm6, ymm8, ymm9, 136 vshufps ymm7, ymm8, ymm9, 221 vpshufd ymm6, ymm6, 0x93 vpshufd ymm7, ymm7, 0x93 mov al, 7 9: vpaddd ymm0, ymm0, ymm4 vpaddd ymm0, ymm0, ymm1 vpxord ymm3, ymm3, ymm0 vprord ymm3, ymm3, 16 vpaddd ymm2, ymm2, ymm3 vpxord ymm1, ymm1, ymm2 vprord ymm1, ymm1, 12 vpaddd ymm0, ymm0, ymm5 vpaddd ymm0, ymm0, ymm1 vpxord ymm3, ymm3, ymm0 vprord ymm3, ymm3, 8 vpaddd ymm2, ymm2, ymm3 vpxord ymm1, ymm1, ymm2 vprord ymm1, ymm1, 7 vpshufd ymm0, ymm0, 0x93 vpshufd ymm3, ymm3, 0x4E vpshufd ymm2, ymm2, 0x39 vpaddd ymm0, ymm0, ymm6 vpaddd ymm0, ymm0, ymm1 vpxord ymm3, ymm3, ymm0 vprord ymm3, ymm3, 16 vpaddd ymm2, ymm2, ymm3 vpxord ymm1, ymm1, ymm2 vprord ymm1, ymm1, 12 vpaddd ymm0, ymm0, ymm7 vpaddd ymm0, ymm0, ymm1 vpxord ymm3, ymm3, ymm0 vprord ymm3, ymm3, 8 vpaddd ymm2, ymm2, ymm3 vpxord ymm1, ymm1, ymm2 vprord ymm1, ymm1, 7 vpshufd ymm0, ymm0, 0x39 vpshufd ymm3, ymm3, 0x4E vpshufd ymm2, ymm2, 0x93 dec al jz 9f vshufps ymm8, ymm4, ymm5, 214 vpshufd ymm9, ymm4, 0x0F vpshufd ymm4, ymm8, 0x39 vshufps ymm8, ymm6, ymm7, 250 vpblendd ymm9, ymm9, ymm8, 0xAA vpunpcklqdq ymm8, ymm7, ymm5 vpblendd ymm8, ymm8, ymm6, 0x88 vpshufd ymm8, ymm8, 0x78 vpunpckhdq ymm5, ymm5, ymm7 vpunpckldq ymm6, ymm6, ymm5 vpshufd ymm7, ymm6, 0x1E vmovdqa ymm5, ymm9 vmovdqa ymm6, ymm8 jmp 9b 9: vpxor ymm0, ymm0, ymm2 vpxor ymm1, ymm1, ymm3 mov eax, r13d cmp rdx, r15 jne 2b vmovdqu xmmword ptr [rbx], xmm0 vmovdqu xmmword ptr [rbx+0x10], xmm1 vextracti128 xmmword ptr [rbx+0x20], ymm0, 0x01 vextracti128 xmmword ptr [rbx+0x30], ymm1, 0x01 vmovdqa xmm0, xmmword ptr [rsp] vmovdqa xmm2, xmmword ptr [rsp+0x40] vmovdqu32 xmm0 {k1}, xmmword ptr [rsp+0x8] vmovdqu32 xmm2 {k1}, xmmword ptr [rsp+0x48] vmovdqa xmmword ptr [rsp], xmm0 vmovdqa xmmword ptr [rsp+0x40], xmm2 add rbx, 64 add rdi, 16 sub rsi, 2 3: test esi, 0x1 je 4b vmovdqu xmm0, xmmword ptr [rcx] vmovdqu xmm1, xmmword ptr [rcx+0x10] vmovd xmm14, dword ptr [rsp] vpinsrd xmm14, xmm14, dword ptr [rsp+0x40], 1 vpinsrd xmm14, xmm14, dword ptr [BLAKE3_BLOCK_LEN+rip], 2 vmovdqa xmm15, xmmword ptr [BLAKE3_IV+rip] mov r8, qword ptr [rdi] movzx eax, byte ptr [rbp+0x80] or eax, r13d xor edx, edx .p2align 5 2: mov r14d, eax or eax, r12d add rdx, 64 cmp rdx, r15 cmovne eax, r14d vpinsrd xmm3, xmm14, eax, 3 vmovdqa xmm2, xmm15 vmovups xmm8, xmmword ptr [r8+rdx-0x40] vmovups xmm9, xmmword ptr [r8+rdx-0x30] vshufps xmm4, xmm8, xmm9, 136 vshufps xmm5, xmm8, xmm9, 221 vmovups xmm8, xmmword ptr [r8+rdx-0x20] vmovups xmm9, xmmword ptr [r8+rdx-0x10] vshufps xmm6, xmm8, xmm9, 136 vshufps xmm7, xmm8, xmm9, 221 vpshufd xmm6, xmm6, 0x93 vpshufd xmm7, xmm7, 0x93 mov al, 7 9: vpaddd xmm0, xmm0, xmm4 vpaddd xmm0, xmm0, xmm1 vpxord xmm3, xmm3, xmm0 vprord xmm3, xmm3, 16 vpaddd xmm2, xmm2, xmm3 vpxord xmm1, xmm1, xmm2 vprord xmm1, xmm1, 12 vpaddd xmm0, xmm0, xmm5 vpaddd xmm0, xmm0, xmm1 vpxord xmm3, xmm3, xmm0 vprord xmm3, xmm3, 8 vpaddd xmm2, xmm2, xmm3 vpxord xmm1, xmm1, xmm2 vprord xmm1, xmm1, 7 vpshufd xmm0, xmm0, 0x93 vpshufd xmm3, xmm3, 0x4E vpshufd xmm2, xmm2, 0x39 vpaddd xmm0, xmm0, xmm6 vpaddd xmm0, xmm0, xmm1 vpxord xmm3, xmm3, xmm0 vprord xmm3, xmm3, 16 vpaddd xmm2, xmm2, xmm3 vpxord xmm1, xmm1, xmm2 vprord xmm1, xmm1, 12 vpaddd xmm0, xmm0, xmm7 vpaddd xmm0, xmm0, xmm1 vpxord xmm3, xmm3, xmm0 vprord xmm3, xmm3, 8 vpaddd xmm2, xmm2, xmm3 vpxord xmm1, xmm1, xmm2 vprord xmm1, xmm1, 7 vpshufd xmm0, xmm0, 0x39 vpshufd xmm3, xmm3, 0x4E vpshufd xmm2, xmm2, 0x93 dec al jz 9f vshufps xmm8, xmm4, xmm5, 214 vpshufd xmm9, xmm4, 0x0F vpshufd xmm4, xmm8, 0x39 vshufps xmm8, xmm6, xmm7, 250 vpblendd xmm9, xmm9, xmm8, 0xAA vpunpcklqdq xmm8, xmm7, xmm5 vpblendd xmm8, xmm8, xmm6, 0x88 vpshufd xmm8, xmm8, 0x78 vpunpckhdq xmm5, xmm5, xmm7 vpunpckldq xmm6, xmm6, xmm5 vpshufd xmm7, xmm6, 0x1E vmovdqa xmm5, xmm9 vmovdqa xmm6, xmm8 jmp 9b 9: vpxor xmm0, xmm0, xmm2 vpxor xmm1, xmm1, xmm3 mov eax, r13d cmp rdx, r15 jne 2b vmovdqu xmmword ptr [rbx], xmm0 vmovdqu xmmword ptr [rbx+0x10], xmm1 jmp 4b .p2align 6 _blake3_compress_in_place_avx512: blake3_compress_in_place_avx512: sub rsp, 72 vmovdqa xmmword ptr [rsp], xmm6 vmovdqa xmmword ptr [rsp+0x10], xmm7 vmovdqa xmmword ptr [rsp+0x20], xmm8 vmovdqa xmmword ptr [rsp+0x30], xmm9 vmovdqu xmm0, xmmword ptr [rcx] vmovdqu xmm1, xmmword ptr [rcx+0x10] movzx eax, byte ptr [rsp+0x70] movzx r8d, r8b shl rax, 32 add r8, rax vmovq xmm3, r9 vmovq xmm4, r8 vpunpcklqdq xmm3, xmm3, xmm4 vmovaps xmm2, xmmword ptr [BLAKE3_IV+rip] vmovups xmm8, xmmword ptr [rdx] vmovups xmm9, xmmword ptr [rdx+0x10] vshufps xmm4, xmm8, xmm9, 136 vshufps xmm5, xmm8, xmm9, 221 vmovups xmm8, xmmword ptr [rdx+0x20] vmovups xmm9, xmmword ptr [rdx+0x30] vshufps xmm6, xmm8, xmm9, 136 vshufps xmm7, xmm8, xmm9, 221 vpshufd xmm6, xmm6, 0x93 vpshufd xmm7, xmm7, 0x93 mov al, 7 9: vpaddd xmm0, xmm0, xmm4 vpaddd xmm0, xmm0, xmm1 vpxord xmm3, xmm3, xmm0 vprord xmm3, xmm3, 16 vpaddd xmm2, xmm2, xmm3 vpxord xmm1, xmm1, xmm2 vprord xmm1, xmm1, 12 vpaddd xmm0, xmm0, xmm5 vpaddd xmm0, xmm0, xmm1 vpxord xmm3, xmm3, xmm0 vprord xmm3, xmm3, 8 vpaddd xmm2, xmm2, xmm3 vpxord xmm1, xmm1, xmm2 vprord xmm1, xmm1, 7 vpshufd xmm0, xmm0, 0x93 vpshufd xmm3, xmm3, 0x4E vpshufd xmm2, xmm2, 0x39 vpaddd xmm0, xmm0, xmm6 vpaddd xmm0, xmm0, xmm1 vpxord xmm3, xmm3, xmm0 vprord xmm3, xmm3, 16 vpaddd xmm2, xmm2, xmm3 vpxord xmm1, xmm1, xmm2 vprord xmm1, xmm1, 12 vpaddd xmm0, xmm0, xmm7 vpaddd xmm0, xmm0, xmm1 vpxord xmm3, xmm3, xmm0 vprord xmm3, xmm3, 8 vpaddd xmm2, xmm2, xmm3 vpxord xmm1, xmm1, xmm2 vprord xmm1, xmm1, 7 vpshufd xmm0, xmm0, 0x39 vpshufd xmm3, xmm3, 0x4E vpshufd xmm2, xmm2, 0x93 dec al jz 9f vshufps xmm8, xmm4, xmm5, 214 vpshufd xmm9, xmm4, 0x0F vpshufd xmm4, xmm8, 0x39 vshufps xmm8, xmm6, xmm7, 250 vpblendd xmm9, xmm9, xmm8, 0xAA vpunpcklqdq xmm8, xmm7, xmm5 vpblendd xmm8, xmm8, xmm6, 0x88 vpshufd xmm8, xmm8, 0x78 vpunpckhdq xmm5, xmm5, xmm7 vpunpckldq xmm6, xmm6, xmm5 vpshufd xmm7, xmm6, 0x1E vmovdqa xmm5, xmm9 vmovdqa xmm6, xmm8 jmp 9b 9: vpxor xmm0, xmm0, xmm2 vpxor xmm1, xmm1, xmm3 vmovdqu xmmword ptr [rcx], xmm0 vmovdqu xmmword ptr [rcx+0x10], xmm1 vmovdqa xmm6, xmmword ptr [rsp] vmovdqa xmm7, xmmword ptr [rsp+0x10] vmovdqa xmm8, xmmword ptr [rsp+0x20] vmovdqa xmm9, xmmword ptr [rsp+0x30] add rsp, 72 ret .p2align 6 _blake3_compress_xof_avx512: blake3_compress_xof_avx512: sub rsp, 72 vmovdqa xmmword ptr [rsp], xmm6 vmovdqa xmmword ptr [rsp+0x10], xmm7 vmovdqa xmmword ptr [rsp+0x20], xmm8 vmovdqa xmmword ptr [rsp+0x30], xmm9 vmovdqu xmm0, xmmword ptr [rcx] vmovdqu xmm1, xmmword ptr [rcx+0x10] movzx eax, byte ptr [rsp+0x70] movzx r8d, r8b mov r10, qword ptr [rsp+0x78] shl rax, 32 add r8, rax vmovq xmm3, r9 vmovq xmm4, r8 vpunpcklqdq xmm3, xmm3, xmm4 vmovaps xmm2, xmmword ptr [BLAKE3_IV+rip] vmovups xmm8, xmmword ptr [rdx] vmovups xmm9, xmmword ptr [rdx+0x10] vshufps xmm4, xmm8, xmm9, 136 vshufps xmm5, xmm8, xmm9, 221 vmovups xmm8, xmmword ptr [rdx+0x20] vmovups xmm9, xmmword ptr [rdx+0x30] vshufps xmm6, xmm8, xmm9, 136 vshufps xmm7, xmm8, xmm9, 221 vpshufd xmm6, xmm6, 0x93 vpshufd xmm7, xmm7, 0x93 mov al, 7 9: vpaddd xmm0, xmm0, xmm4 vpaddd xmm0, xmm0, xmm1 vpxord xmm3, xmm3, xmm0 vprord xmm3, xmm3, 16 vpaddd xmm2, xmm2, xmm3 vpxord xmm1, xmm1, xmm2 vprord xmm1, xmm1, 12 vpaddd xmm0, xmm0, xmm5 vpaddd xmm0, xmm0, xmm1 vpxord xmm3, xmm3, xmm0 vprord xmm3, xmm3, 8 vpaddd xmm2, xmm2, xmm3 vpxord xmm1, xmm1, xmm2 vprord xmm1, xmm1, 7 vpshufd xmm0, xmm0, 0x93 vpshufd xmm3, xmm3, 0x4E vpshufd xmm2, xmm2, 0x39 vpaddd xmm0, xmm0, xmm6 vpaddd xmm0, xmm0, xmm1 vpxord xmm3, xmm3, xmm0 vprord xmm3, xmm3, 16 vpaddd xmm2, xmm2, xmm3 vpxord xmm1, xmm1, xmm2 vprord xmm1, xmm1, 12 vpaddd xmm0, xmm0, xmm7 vpaddd xmm0, xmm0, xmm1 vpxord xmm3, xmm3, xmm0 vprord xmm3, xmm3, 8 vpaddd xmm2, xmm2, xmm3 vpxord xmm1, xmm1, xmm2 vprord xmm1, xmm1, 7 vpshufd xmm0, xmm0, 0x39 vpshufd xmm3, xmm3, 0x4E vpshufd xmm2, xmm2, 0x93 dec al jz 9f vshufps xmm8, xmm4, xmm5, 214 vpshufd xmm9, xmm4, 0x0F vpshufd xmm4, xmm8, 0x39 vshufps xmm8, xmm6, xmm7, 250 vpblendd xmm9, xmm9, xmm8, 0xAA vpunpcklqdq xmm8, xmm7, xmm5 vpblendd xmm8, xmm8, xmm6, 0x88 vpshufd xmm8, xmm8, 0x78 vpunpckhdq xmm5, xmm5, xmm7 vpunpckldq xmm6, xmm6, xmm5 vpshufd xmm7, xmm6, 0x1E vmovdqa xmm5, xmm9 vmovdqa xmm6, xmm8 jmp 9b 9: vpxor xmm0, xmm0, xmm2 vpxor xmm1, xmm1, xmm3 vpxor xmm2, xmm2, xmmword ptr [rcx] vpxor xmm3, xmm3, xmmword ptr [rcx+0x10] vmovdqu xmmword ptr [r10], xmm0 vmovdqu xmmword ptr [r10+0x10], xmm1 vmovdqu xmmword ptr [r10+0x20], xmm2 vmovdqu xmmword ptr [r10+0x30], xmm3 vmovdqa xmm6, xmmword ptr [rsp] vmovdqa xmm7, xmmword ptr [rsp+0x10] vmovdqa xmm8, xmmword ptr [rsp+0x20] vmovdqa xmm9, xmmword ptr [rsp+0x30] add rsp, 72 ret .section .rdata .p2align 6 INDEX0: .long 0, 1, 2, 3, 16, 17, 18, 19 .long 8, 9, 10, 11, 24, 25, 26, 27 INDEX1: .long 4, 5, 6, 7, 20, 21, 22, 23 .long 12, 13, 14, 15, 28, 29, 30, 31 ADD0: .long 0, 1, 2, 3, 4, 5, 6, 7 .long 8, 9, 10, 11, 12, 13, 14, 15 ADD1: .long 1 ADD16: .long 16 BLAKE3_BLOCK_LEN: .long 64 .p2align 6 BLAKE3_IV: BLAKE3_IV_0: .long 0x6A09E667 BLAKE3_IV_1: .long 0xBB67AE85 BLAKE3_IV_2: .long 0x3C6EF372 BLAKE3_IV_3: .long 0xA54FF53A
mktmansour/MKT-KSA-Geolocation-Security
61,143
.cargo-home/registry/src/index.crates.io-1949cf8c6b5b557f/blake3-1.8.2/c/blake3_sse41_x86-64_unix.S
#if defined(__ELF__) && defined(__linux__) .section .note.GNU-stack,"",%progbits #endif #if defined(__ELF__) && defined(__CET__) && defined(__has_include) #if __has_include(<cet.h>) #include <cet.h> #endif #endif #if !defined(_CET_ENDBR) #define _CET_ENDBR #endif .intel_syntax noprefix .global blake3_hash_many_sse41 .global _blake3_hash_many_sse41 .global blake3_compress_in_place_sse41 .global _blake3_compress_in_place_sse41 .global blake3_compress_xof_sse41 .global _blake3_compress_xof_sse41 #ifdef __APPLE__ .text #else .section .text #endif .p2align 6 _blake3_hash_many_sse41: blake3_hash_many_sse41: _CET_ENDBR push r15 push r14 push r13 push r12 push rbx push rbp mov rbp, rsp sub rsp, 360 and rsp, 0xFFFFFFFFFFFFFFC0 neg r9d movd xmm0, r9d pshufd xmm0, xmm0, 0x00 movdqa xmmword ptr [rsp+0x130], xmm0 movdqa xmm1, xmm0 pand xmm1, xmmword ptr [ADD0+rip] pand xmm0, xmmword ptr [ADD1+rip] movdqa xmmword ptr [rsp+0x150], xmm0 movd xmm0, r8d pshufd xmm0, xmm0, 0x00 paddd xmm0, xmm1 movdqa xmmword ptr [rsp+0x110], xmm0 pxor xmm0, xmmword ptr [CMP_MSB_MASK+rip] pxor xmm1, xmmword ptr [CMP_MSB_MASK+rip] pcmpgtd xmm1, xmm0 shr r8, 32 movd xmm2, r8d pshufd xmm2, xmm2, 0x00 psubd xmm2, xmm1 movdqa xmmword ptr [rsp+0x120], xmm2 mov rbx, qword ptr [rbp+0x50] mov r15, rdx shl r15, 6 movzx r13d, byte ptr [rbp+0x38] movzx r12d, byte ptr [rbp+0x48] cmp rsi, 4 jc 3f 2: movdqu xmm3, xmmword ptr [rcx] pshufd xmm0, xmm3, 0x00 pshufd xmm1, xmm3, 0x55 pshufd xmm2, xmm3, 0xAA pshufd xmm3, xmm3, 0xFF movdqu xmm7, xmmword ptr [rcx+0x10] pshufd xmm4, xmm7, 0x00 pshufd xmm5, xmm7, 0x55 pshufd xmm6, xmm7, 0xAA pshufd xmm7, xmm7, 0xFF mov r8, qword ptr [rdi] mov r9, qword ptr [rdi+0x8] mov r10, qword ptr [rdi+0x10] mov r11, qword ptr [rdi+0x18] movzx eax, byte ptr [rbp+0x40] or eax, r13d xor edx, edx 9: mov r14d, eax or eax, r12d add rdx, 64 cmp rdx, r15 cmovne eax, r14d movdqu xmm8, xmmword ptr [r8+rdx-0x40] movdqu xmm9, xmmword ptr [r9+rdx-0x40] movdqu xmm10, xmmword ptr [r10+rdx-0x40] movdqu xmm11, xmmword ptr [r11+rdx-0x40] movdqa xmm12, xmm8 punpckldq xmm8, xmm9 punpckhdq xmm12, xmm9 movdqa xmm14, xmm10 punpckldq xmm10, xmm11 punpckhdq xmm14, xmm11 movdqa xmm9, xmm8 punpcklqdq xmm8, xmm10 punpckhqdq xmm9, xmm10 movdqa xmm13, xmm12 punpcklqdq xmm12, xmm14 punpckhqdq xmm13, xmm14 movdqa xmmword ptr [rsp], xmm8 movdqa xmmword ptr [rsp+0x10], xmm9 movdqa xmmword ptr [rsp+0x20], xmm12 movdqa xmmword ptr [rsp+0x30], xmm13 movdqu xmm8, xmmword ptr [r8+rdx-0x30] movdqu xmm9, xmmword ptr [r9+rdx-0x30] movdqu xmm10, xmmword ptr [r10+rdx-0x30] movdqu xmm11, xmmword ptr [r11+rdx-0x30] movdqa xmm12, xmm8 punpckldq xmm8, xmm9 punpckhdq xmm12, xmm9 movdqa xmm14, xmm10 punpckldq xmm10, xmm11 punpckhdq xmm14, xmm11 movdqa xmm9, xmm8 punpcklqdq xmm8, xmm10 punpckhqdq xmm9, xmm10 movdqa xmm13, xmm12 punpcklqdq xmm12, xmm14 punpckhqdq xmm13, xmm14 movdqa xmmword ptr [rsp+0x40], xmm8 movdqa xmmword ptr [rsp+0x50], xmm9 movdqa xmmword ptr [rsp+0x60], xmm12 movdqa xmmword ptr [rsp+0x70], xmm13 movdqu xmm8, xmmword ptr [r8+rdx-0x20] movdqu xmm9, xmmword ptr [r9+rdx-0x20] movdqu xmm10, xmmword ptr [r10+rdx-0x20] movdqu xmm11, xmmword ptr [r11+rdx-0x20] movdqa xmm12, xmm8 punpckldq xmm8, xmm9 punpckhdq xmm12, xmm9 movdqa xmm14, xmm10 punpckldq xmm10, xmm11 punpckhdq xmm14, xmm11 movdqa xmm9, xmm8 punpcklqdq xmm8, xmm10 punpckhqdq xmm9, xmm10 movdqa xmm13, xmm12 punpcklqdq xmm12, xmm14 punpckhqdq xmm13, xmm14 movdqa xmmword ptr [rsp+0x80], xmm8 movdqa xmmword ptr [rsp+0x90], xmm9 movdqa xmmword ptr [rsp+0xA0], xmm12 movdqa xmmword ptr [rsp+0xB0], xmm13 movdqu xmm8, xmmword ptr [r8+rdx-0x10] movdqu xmm9, xmmword ptr [r9+rdx-0x10] movdqu xmm10, xmmword ptr [r10+rdx-0x10] movdqu xmm11, xmmword ptr [r11+rdx-0x10] movdqa xmm12, xmm8 punpckldq xmm8, xmm9 punpckhdq xmm12, xmm9 movdqa xmm14, xmm10 punpckldq xmm10, xmm11 punpckhdq xmm14, xmm11 movdqa xmm9, xmm8 punpcklqdq xmm8, xmm10 punpckhqdq xmm9, xmm10 movdqa xmm13, xmm12 punpcklqdq xmm12, xmm14 punpckhqdq xmm13, xmm14 movdqa xmmword ptr [rsp+0xC0], xmm8 movdqa xmmword ptr [rsp+0xD0], xmm9 movdqa xmmword ptr [rsp+0xE0], xmm12 movdqa xmmword ptr [rsp+0xF0], xmm13 movdqa xmm9, xmmword ptr [BLAKE3_IV_1+rip] movdqa xmm10, xmmword ptr [BLAKE3_IV_2+rip] movdqa xmm11, xmmword ptr [BLAKE3_IV_3+rip] movdqa xmm12, xmmword ptr [rsp+0x110] movdqa xmm13, xmmword ptr [rsp+0x120] movdqa xmm14, xmmword ptr [BLAKE3_BLOCK_LEN+rip] movd xmm15, eax pshufd xmm15, xmm15, 0x00 prefetcht0 [r8+rdx+0x80] prefetcht0 [r9+rdx+0x80] prefetcht0 [r10+rdx+0x80] prefetcht0 [r11+rdx+0x80] paddd xmm0, xmmword ptr [rsp] paddd xmm1, xmmword ptr [rsp+0x20] paddd xmm2, xmmword ptr [rsp+0x40] paddd xmm3, xmmword ptr [rsp+0x60] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmmword ptr [ROT16+rip] pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 pshufb xmm15, xmm8 movdqa xmm8, xmmword ptr [BLAKE3_IV_0+rip] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x10] paddd xmm1, xmmword ptr [rsp+0x30] paddd xmm2, xmmword ptr [rsp+0x50] paddd xmm3, xmmword ptr [rsp+0x70] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmmword ptr [ROT8+rip] pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 pshufb xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x80] paddd xmm1, xmmword ptr [rsp+0xA0] paddd xmm2, xmmword ptr [rsp+0xC0] paddd xmm3, xmmword ptr [rsp+0xE0] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmmword ptr [ROT16+rip] pshufb xmm15, xmm8 pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0x90] paddd xmm1, xmmword ptr [rsp+0xB0] paddd xmm2, xmmword ptr [rsp+0xD0] paddd xmm3, xmmword ptr [rsp+0xF0] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmmword ptr [ROT8+rip] pshufb xmm15, xmm8 pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0x20] paddd xmm1, xmmword ptr [rsp+0x30] paddd xmm2, xmmword ptr [rsp+0x70] paddd xmm3, xmmword ptr [rsp+0x40] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmmword ptr [ROT16+rip] pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 pshufb xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x60] paddd xmm1, xmmword ptr [rsp+0xA0] paddd xmm2, xmmword ptr [rsp] paddd xmm3, xmmword ptr [rsp+0xD0] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmmword ptr [ROT8+rip] pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 pshufb xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x10] paddd xmm1, xmmword ptr [rsp+0xC0] paddd xmm2, xmmword ptr [rsp+0x90] paddd xmm3, xmmword ptr [rsp+0xF0] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmmword ptr [ROT16+rip] pshufb xmm15, xmm8 pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0xB0] paddd xmm1, xmmword ptr [rsp+0x50] paddd xmm2, xmmword ptr [rsp+0xE0] paddd xmm3, xmmword ptr [rsp+0x80] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmmword ptr [ROT8+rip] pshufb xmm15, xmm8 pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0x30] paddd xmm1, xmmword ptr [rsp+0xA0] paddd xmm2, xmmword ptr [rsp+0xD0] paddd xmm3, xmmword ptr [rsp+0x70] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmmword ptr [ROT16+rip] pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 pshufb xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x40] paddd xmm1, xmmword ptr [rsp+0xC0] paddd xmm2, xmmword ptr [rsp+0x20] paddd xmm3, xmmword ptr [rsp+0xE0] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmmword ptr [ROT8+rip] pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 pshufb xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x60] paddd xmm1, xmmword ptr [rsp+0x90] paddd xmm2, xmmword ptr [rsp+0xB0] paddd xmm3, xmmword ptr [rsp+0x80] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmmword ptr [ROT16+rip] pshufb xmm15, xmm8 pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0x50] paddd xmm1, xmmword ptr [rsp] paddd xmm2, xmmword ptr [rsp+0xF0] paddd xmm3, xmmword ptr [rsp+0x10] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmmword ptr [ROT8+rip] pshufb xmm15, xmm8 pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0xA0] paddd xmm1, xmmword ptr [rsp+0xC0] paddd xmm2, xmmword ptr [rsp+0xE0] paddd xmm3, xmmword ptr [rsp+0xD0] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmmword ptr [ROT16+rip] pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 pshufb xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x70] paddd xmm1, xmmword ptr [rsp+0x90] paddd xmm2, xmmword ptr [rsp+0x30] paddd xmm3, xmmword ptr [rsp+0xF0] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmmword ptr [ROT8+rip] pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 pshufb xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x40] paddd xmm1, xmmword ptr [rsp+0xB0] paddd xmm2, xmmword ptr [rsp+0x50] paddd xmm3, xmmword ptr [rsp+0x10] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmmword ptr [ROT16+rip] pshufb xmm15, xmm8 pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp] paddd xmm1, xmmword ptr [rsp+0x20] paddd xmm2, xmmword ptr [rsp+0x80] paddd xmm3, xmmword ptr [rsp+0x60] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmmword ptr [ROT8+rip] pshufb xmm15, xmm8 pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0xC0] paddd xmm1, xmmword ptr [rsp+0x90] paddd xmm2, xmmword ptr [rsp+0xF0] paddd xmm3, xmmword ptr [rsp+0xE0] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmmword ptr [ROT16+rip] pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 pshufb xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0xD0] paddd xmm1, xmmword ptr [rsp+0xB0] paddd xmm2, xmmword ptr [rsp+0xA0] paddd xmm3, xmmword ptr [rsp+0x80] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmmword ptr [ROT8+rip] pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 pshufb xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x70] paddd xmm1, xmmword ptr [rsp+0x50] paddd xmm2, xmmword ptr [rsp] paddd xmm3, xmmword ptr [rsp+0x60] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmmword ptr [ROT16+rip] pshufb xmm15, xmm8 pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0x20] paddd xmm1, xmmword ptr [rsp+0x30] paddd xmm2, xmmword ptr [rsp+0x10] paddd xmm3, xmmword ptr [rsp+0x40] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmmword ptr [ROT8+rip] pshufb xmm15, xmm8 pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0x90] paddd xmm1, xmmword ptr [rsp+0xB0] paddd xmm2, xmmword ptr [rsp+0x80] paddd xmm3, xmmword ptr [rsp+0xF0] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmmword ptr [ROT16+rip] pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 pshufb xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0xE0] paddd xmm1, xmmword ptr [rsp+0x50] paddd xmm2, xmmword ptr [rsp+0xC0] paddd xmm3, xmmword ptr [rsp+0x10] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmmword ptr [ROT8+rip] pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 pshufb xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0xD0] paddd xmm1, xmmword ptr [rsp] paddd xmm2, xmmword ptr [rsp+0x20] paddd xmm3, xmmword ptr [rsp+0x40] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmmword ptr [ROT16+rip] pshufb xmm15, xmm8 pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0x30] paddd xmm1, xmmword ptr [rsp+0xA0] paddd xmm2, xmmword ptr [rsp+0x60] paddd xmm3, xmmword ptr [rsp+0x70] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmmword ptr [ROT8+rip] pshufb xmm15, xmm8 pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0xB0] paddd xmm1, xmmword ptr [rsp+0x50] paddd xmm2, xmmword ptr [rsp+0x10] paddd xmm3, xmmword ptr [rsp+0x80] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmmword ptr [ROT16+rip] pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 pshufb xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0xF0] paddd xmm1, xmmword ptr [rsp] paddd xmm2, xmmword ptr [rsp+0x90] paddd xmm3, xmmword ptr [rsp+0x60] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmmword ptr [ROT8+rip] pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 pshufb xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0xE0] paddd xmm1, xmmword ptr [rsp+0x20] paddd xmm2, xmmword ptr [rsp+0x30] paddd xmm3, xmmword ptr [rsp+0x70] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmmword ptr [ROT16+rip] pshufb xmm15, xmm8 pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0xA0] paddd xmm1, xmmword ptr [rsp+0xC0] paddd xmm2, xmmword ptr [rsp+0x40] paddd xmm3, xmmword ptr [rsp+0xD0] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmmword ptr [ROT8+rip] pshufb xmm15, xmm8 pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 pxor xmm0, xmm8 pxor xmm1, xmm9 pxor xmm2, xmm10 pxor xmm3, xmm11 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 pxor xmm4, xmm12 pxor xmm5, xmm13 pxor xmm6, xmm14 pxor xmm7, xmm15 mov eax, r13d jne 9b movdqa xmm9, xmm0 punpckldq xmm0, xmm1 punpckhdq xmm9, xmm1 movdqa xmm11, xmm2 punpckldq xmm2, xmm3 punpckhdq xmm11, xmm3 movdqa xmm1, xmm0 punpcklqdq xmm0, xmm2 punpckhqdq xmm1, xmm2 movdqa xmm3, xmm9 punpcklqdq xmm9, xmm11 punpckhqdq xmm3, xmm11 movdqu xmmword ptr [rbx], xmm0 movdqu xmmword ptr [rbx+0x20], xmm1 movdqu xmmword ptr [rbx+0x40], xmm9 movdqu xmmword ptr [rbx+0x60], xmm3 movdqa xmm9, xmm4 punpckldq xmm4, xmm5 punpckhdq xmm9, xmm5 movdqa xmm11, xmm6 punpckldq xmm6, xmm7 punpckhdq xmm11, xmm7 movdqa xmm5, xmm4 punpcklqdq xmm4, xmm6 punpckhqdq xmm5, xmm6 movdqa xmm7, xmm9 punpcklqdq xmm9, xmm11 punpckhqdq xmm7, xmm11 movdqu xmmword ptr [rbx+0x10], xmm4 movdqu xmmword ptr [rbx+0x30], xmm5 movdqu xmmword ptr [rbx+0x50], xmm9 movdqu xmmword ptr [rbx+0x70], xmm7 movdqa xmm1, xmmword ptr [rsp+0x110] movdqa xmm0, xmm1 paddd xmm1, xmmword ptr [rsp+0x150] movdqa xmmword ptr [rsp+0x110], xmm1 pxor xmm0, xmmword ptr [CMP_MSB_MASK+rip] pxor xmm1, xmmword ptr [CMP_MSB_MASK+rip] pcmpgtd xmm0, xmm1 movdqa xmm1, xmmword ptr [rsp+0x120] psubd xmm1, xmm0 movdqa xmmword ptr [rsp+0x120], xmm1 add rbx, 128 add rdi, 32 sub rsi, 4 cmp rsi, 4 jnc 2b test rsi, rsi jnz 3f 4: mov rsp, rbp pop rbp pop rbx pop r12 pop r13 pop r14 pop r15 ret .p2align 5 3: test esi, 0x2 je 3f movups xmm0, xmmword ptr [rcx] movups xmm1, xmmword ptr [rcx+0x10] movaps xmm8, xmm0 movaps xmm9, xmm1 movd xmm13, dword ptr [rsp+0x110] pinsrd xmm13, dword ptr [rsp+0x120], 1 pinsrd xmm13, dword ptr [BLAKE3_BLOCK_LEN+rip], 2 movaps xmmword ptr [rsp], xmm13 movd xmm14, dword ptr [rsp+0x114] pinsrd xmm14, dword ptr [rsp+0x124], 1 pinsrd xmm14, dword ptr [BLAKE3_BLOCK_LEN+rip], 2 movaps xmmword ptr [rsp+0x10], xmm14 mov r8, qword ptr [rdi] mov r9, qword ptr [rdi+0x8] movzx eax, byte ptr [rbp+0x40] or eax, r13d xor edx, edx 2: mov r14d, eax or eax, r12d add rdx, 64 cmp rdx, r15 cmovne eax, r14d movaps xmm2, xmmword ptr [BLAKE3_IV+rip] movaps xmm10, xmm2 movups xmm4, xmmword ptr [r8+rdx-0x40] movups xmm5, xmmword ptr [r8+rdx-0x30] movaps xmm3, xmm4 shufps xmm4, xmm5, 136 shufps xmm3, xmm5, 221 movaps xmm5, xmm3 movups xmm6, xmmword ptr [r8+rdx-0x20] movups xmm7, xmmword ptr [r8+rdx-0x10] movaps xmm3, xmm6 shufps xmm6, xmm7, 136 pshufd xmm6, xmm6, 0x93 shufps xmm3, xmm7, 221 pshufd xmm7, xmm3, 0x93 movups xmm12, xmmword ptr [r9+rdx-0x40] movups xmm13, xmmword ptr [r9+rdx-0x30] movaps xmm11, xmm12 shufps xmm12, xmm13, 136 shufps xmm11, xmm13, 221 movaps xmm13, xmm11 movups xmm14, xmmword ptr [r9+rdx-0x20] movups xmm15, xmmword ptr [r9+rdx-0x10] movaps xmm11, xmm14 shufps xmm14, xmm15, 136 pshufd xmm14, xmm14, 0x93 shufps xmm11, xmm15, 221 pshufd xmm15, xmm11, 0x93 movaps xmm3, xmmword ptr [rsp] movaps xmm11, xmmword ptr [rsp+0x10] pinsrd xmm3, eax, 3 pinsrd xmm11, eax, 3 mov al, 7 9: paddd xmm0, xmm4 paddd xmm8, xmm12 movaps xmmword ptr [rsp+0x20], xmm4 movaps xmmword ptr [rsp+0x30], xmm12 paddd xmm0, xmm1 paddd xmm8, xmm9 pxor xmm3, xmm0 pxor xmm11, xmm8 movaps xmm12, xmmword ptr [ROT16+rip] pshufb xmm3, xmm12 pshufb xmm11, xmm12 paddd xmm2, xmm3 paddd xmm10, xmm11 pxor xmm1, xmm2 pxor xmm9, xmm10 movdqa xmm4, xmm1 pslld xmm1, 20 psrld xmm4, 12 por xmm1, xmm4 movdqa xmm4, xmm9 pslld xmm9, 20 psrld xmm4, 12 por xmm9, xmm4 paddd xmm0, xmm5 paddd xmm8, xmm13 movaps xmmword ptr [rsp+0x40], xmm5 movaps xmmword ptr [rsp+0x50], xmm13 paddd xmm0, xmm1 paddd xmm8, xmm9 pxor xmm3, xmm0 pxor xmm11, xmm8 movaps xmm13, xmmword ptr [ROT8+rip] pshufb xmm3, xmm13 pshufb xmm11, xmm13 paddd xmm2, xmm3 paddd xmm10, xmm11 pxor xmm1, xmm2 pxor xmm9, xmm10 movdqa xmm4, xmm1 pslld xmm1, 25 psrld xmm4, 7 por xmm1, xmm4 movdqa xmm4, xmm9 pslld xmm9, 25 psrld xmm4, 7 por xmm9, xmm4 pshufd xmm0, xmm0, 0x93 pshufd xmm8, xmm8, 0x93 pshufd xmm3, xmm3, 0x4E pshufd xmm11, xmm11, 0x4E pshufd xmm2, xmm2, 0x39 pshufd xmm10, xmm10, 0x39 paddd xmm0, xmm6 paddd xmm8, xmm14 paddd xmm0, xmm1 paddd xmm8, xmm9 pxor xmm3, xmm0 pxor xmm11, xmm8 pshufb xmm3, xmm12 pshufb xmm11, xmm12 paddd xmm2, xmm3 paddd xmm10, xmm11 pxor xmm1, xmm2 pxor xmm9, xmm10 movdqa xmm4, xmm1 pslld xmm1, 20 psrld xmm4, 12 por xmm1, xmm4 movdqa xmm4, xmm9 pslld xmm9, 20 psrld xmm4, 12 por xmm9, xmm4 paddd xmm0, xmm7 paddd xmm8, xmm15 paddd xmm0, xmm1 paddd xmm8, xmm9 pxor xmm3, xmm0 pxor xmm11, xmm8 pshufb xmm3, xmm13 pshufb xmm11, xmm13 paddd xmm2, xmm3 paddd xmm10, xmm11 pxor xmm1, xmm2 pxor xmm9, xmm10 movdqa xmm4, xmm1 pslld xmm1, 25 psrld xmm4, 7 por xmm1, xmm4 movdqa xmm4, xmm9 pslld xmm9, 25 psrld xmm4, 7 por xmm9, xmm4 pshufd xmm0, xmm0, 0x39 pshufd xmm8, xmm8, 0x39 pshufd xmm3, xmm3, 0x4E pshufd xmm11, xmm11, 0x4E pshufd xmm2, xmm2, 0x93 pshufd xmm10, xmm10, 0x93 dec al je 9f movdqa xmm12, xmmword ptr [rsp+0x20] movdqa xmm5, xmmword ptr [rsp+0x40] pshufd xmm13, xmm12, 0x0F shufps xmm12, xmm5, 214 pshufd xmm4, xmm12, 0x39 movdqa xmm12, xmm6 shufps xmm12, xmm7, 250 pblendw xmm13, xmm12, 0xCC movdqa xmm12, xmm7 punpcklqdq xmm12, xmm5 pblendw xmm12, xmm6, 0xC0 pshufd xmm12, xmm12, 0x78 punpckhdq xmm5, xmm7 punpckldq xmm6, xmm5 pshufd xmm7, xmm6, 0x1E movdqa xmmword ptr [rsp+0x20], xmm13 movdqa xmmword ptr [rsp+0x40], xmm12 movdqa xmm5, xmmword ptr [rsp+0x30] movdqa xmm13, xmmword ptr [rsp+0x50] pshufd xmm6, xmm5, 0x0F shufps xmm5, xmm13, 214 pshufd xmm12, xmm5, 0x39 movdqa xmm5, xmm14 shufps xmm5, xmm15, 250 pblendw xmm6, xmm5, 0xCC movdqa xmm5, xmm15 punpcklqdq xmm5, xmm13 pblendw xmm5, xmm14, 0xC0 pshufd xmm5, xmm5, 0x78 punpckhdq xmm13, xmm15 punpckldq xmm14, xmm13 pshufd xmm15, xmm14, 0x1E movdqa xmm13, xmm6 movdqa xmm14, xmm5 movdqa xmm5, xmmword ptr [rsp+0x20] movdqa xmm6, xmmword ptr [rsp+0x40] jmp 9b 9: pxor xmm0, xmm2 pxor xmm1, xmm3 pxor xmm8, xmm10 pxor xmm9, xmm11 mov eax, r13d cmp rdx, r15 jne 2b movups xmmword ptr [rbx], xmm0 movups xmmword ptr [rbx+0x10], xmm1 movups xmmword ptr [rbx+0x20], xmm8 movups xmmword ptr [rbx+0x30], xmm9 movdqa xmm0, xmmword ptr [rsp+0x130] movdqa xmm1, xmmword ptr [rsp+0x110] movdqa xmm2, xmmword ptr [rsp+0x120] movdqu xmm3, xmmword ptr [rsp+0x118] movdqu xmm4, xmmword ptr [rsp+0x128] blendvps xmm1, xmm3, xmm0 blendvps xmm2, xmm4, xmm0 movdqa xmmword ptr [rsp+0x110], xmm1 movdqa xmmword ptr [rsp+0x120], xmm2 add rdi, 16 add rbx, 64 sub rsi, 2 3: test esi, 0x1 je 4b movups xmm0, xmmword ptr [rcx] movups xmm1, xmmword ptr [rcx+0x10] movd xmm13, dword ptr [rsp+0x110] pinsrd xmm13, dword ptr [rsp+0x120], 1 pinsrd xmm13, dword ptr [BLAKE3_BLOCK_LEN+rip], 2 movaps xmm14, xmmword ptr [ROT8+rip] movaps xmm15, xmmword ptr [ROT16+rip] mov r8, qword ptr [rdi] movzx eax, byte ptr [rbp+0x40] or eax, r13d xor edx, edx 2: mov r14d, eax or eax, r12d add rdx, 64 cmp rdx, r15 cmovne eax, r14d movaps xmm2, xmmword ptr [BLAKE3_IV+rip] movaps xmm3, xmm13 pinsrd xmm3, eax, 3 movups xmm4, xmmword ptr [r8+rdx-0x40] movups xmm5, xmmword ptr [r8+rdx-0x30] movaps xmm8, xmm4 shufps xmm4, xmm5, 136 shufps xmm8, xmm5, 221 movaps xmm5, xmm8 movups xmm6, xmmword ptr [r8+rdx-0x20] movups xmm7, xmmword ptr [r8+rdx-0x10] movaps xmm8, xmm6 shufps xmm6, xmm7, 136 pshufd xmm6, xmm6, 0x93 shufps xmm8, xmm7, 221 pshufd xmm7, xmm8, 0x93 mov al, 7 9: paddd xmm0, xmm4 paddd xmm0, xmm1 pxor xmm3, xmm0 pshufb xmm3, xmm15 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 20 psrld xmm11, 12 por xmm1, xmm11 paddd xmm0, xmm5 paddd xmm0, xmm1 pxor xmm3, xmm0 pshufb xmm3, xmm14 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 25 psrld xmm11, 7 por xmm1, xmm11 pshufd xmm0, xmm0, 0x93 pshufd xmm3, xmm3, 0x4E pshufd xmm2, xmm2, 0x39 paddd xmm0, xmm6 paddd xmm0, xmm1 pxor xmm3, xmm0 pshufb xmm3, xmm15 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 20 psrld xmm11, 12 por xmm1, xmm11 paddd xmm0, xmm7 paddd xmm0, xmm1 pxor xmm3, xmm0 pshufb xmm3, xmm14 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 25 psrld xmm11, 7 por xmm1, xmm11 pshufd xmm0, xmm0, 0x39 pshufd xmm3, xmm3, 0x4E pshufd xmm2, xmm2, 0x93 dec al jz 9f movdqa xmm8, xmm4 shufps xmm8, xmm5, 214 pshufd xmm9, xmm4, 0x0F pshufd xmm4, xmm8, 0x39 movdqa xmm8, xmm6 shufps xmm8, xmm7, 250 pblendw xmm9, xmm8, 0xCC movdqa xmm8, xmm7 punpcklqdq xmm8, xmm5 pblendw xmm8, xmm6, 0xC0 pshufd xmm8, xmm8, 0x78 punpckhdq xmm5, xmm7 punpckldq xmm6, xmm5 pshufd xmm7, xmm6, 0x1E movdqa xmm5, xmm9 movdqa xmm6, xmm8 jmp 9b 9: pxor xmm0, xmm2 pxor xmm1, xmm3 mov eax, r13d cmp rdx, r15 jne 2b movups xmmword ptr [rbx], xmm0 movups xmmword ptr [rbx+0x10], xmm1 jmp 4b .p2align 6 blake3_compress_in_place_sse41: _blake3_compress_in_place_sse41: _CET_ENDBR movups xmm0, xmmword ptr [rdi] movups xmm1, xmmword ptr [rdi+0x10] movaps xmm2, xmmword ptr [BLAKE3_IV+rip] shl r8, 32 add rdx, r8 movq xmm3, rcx movq xmm4, rdx punpcklqdq xmm3, xmm4 movups xmm4, xmmword ptr [rsi] movups xmm5, xmmword ptr [rsi+0x10] movaps xmm8, xmm4 shufps xmm4, xmm5, 136 shufps xmm8, xmm5, 221 movaps xmm5, xmm8 movups xmm6, xmmword ptr [rsi+0x20] movups xmm7, xmmword ptr [rsi+0x30] movaps xmm8, xmm6 shufps xmm6, xmm7, 136 pshufd xmm6, xmm6, 0x93 shufps xmm8, xmm7, 221 pshufd xmm7, xmm8, 0x93 movaps xmm14, xmmword ptr [ROT8+rip] movaps xmm15, xmmword ptr [ROT16+rip] mov al, 7 9: paddd xmm0, xmm4 paddd xmm0, xmm1 pxor xmm3, xmm0 pshufb xmm3, xmm15 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 20 psrld xmm11, 12 por xmm1, xmm11 paddd xmm0, xmm5 paddd xmm0, xmm1 pxor xmm3, xmm0 pshufb xmm3, xmm14 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 25 psrld xmm11, 7 por xmm1, xmm11 pshufd xmm0, xmm0, 0x93 pshufd xmm3, xmm3, 0x4E pshufd xmm2, xmm2, 0x39 paddd xmm0, xmm6 paddd xmm0, xmm1 pxor xmm3, xmm0 pshufb xmm3, xmm15 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 20 psrld xmm11, 12 por xmm1, xmm11 paddd xmm0, xmm7 paddd xmm0, xmm1 pxor xmm3, xmm0 pshufb xmm3, xmm14 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 25 psrld xmm11, 7 por xmm1, xmm11 pshufd xmm0, xmm0, 0x39 pshufd xmm3, xmm3, 0x4E pshufd xmm2, xmm2, 0x93 dec al jz 9f movdqa xmm8, xmm4 shufps xmm8, xmm5, 214 pshufd xmm9, xmm4, 0x0F pshufd xmm4, xmm8, 0x39 movdqa xmm8, xmm6 shufps xmm8, xmm7, 250 pblendw xmm9, xmm8, 0xCC movdqa xmm8, xmm7 punpcklqdq xmm8, xmm5 pblendw xmm8, xmm6, 0xC0 pshufd xmm8, xmm8, 0x78 punpckhdq xmm5, xmm7 punpckldq xmm6, xmm5 pshufd xmm7, xmm6, 0x1E movdqa xmm5, xmm9 movdqa xmm6, xmm8 jmp 9b 9: pxor xmm0, xmm2 pxor xmm1, xmm3 movups xmmword ptr [rdi], xmm0 movups xmmword ptr [rdi+0x10], xmm1 ret .p2align 6 blake3_compress_xof_sse41: _blake3_compress_xof_sse41: _CET_ENDBR movups xmm0, xmmword ptr [rdi] movups xmm1, xmmword ptr [rdi+0x10] movaps xmm2, xmmword ptr [BLAKE3_IV+rip] movzx eax, r8b movzx edx, dl shl rax, 32 add rdx, rax movq xmm3, rcx movq xmm4, rdx punpcklqdq xmm3, xmm4 movups xmm4, xmmword ptr [rsi] movups xmm5, xmmword ptr [rsi+0x10] movaps xmm8, xmm4 shufps xmm4, xmm5, 136 shufps xmm8, xmm5, 221 movaps xmm5, xmm8 movups xmm6, xmmword ptr [rsi+0x20] movups xmm7, xmmword ptr [rsi+0x30] movaps xmm8, xmm6 shufps xmm6, xmm7, 136 pshufd xmm6, xmm6, 0x93 shufps xmm8, xmm7, 221 pshufd xmm7, xmm8, 0x93 movaps xmm14, xmmword ptr [ROT8+rip] movaps xmm15, xmmword ptr [ROT16+rip] mov al, 7 9: paddd xmm0, xmm4 paddd xmm0, xmm1 pxor xmm3, xmm0 pshufb xmm3, xmm15 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 20 psrld xmm11, 12 por xmm1, xmm11 paddd xmm0, xmm5 paddd xmm0, xmm1 pxor xmm3, xmm0 pshufb xmm3, xmm14 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 25 psrld xmm11, 7 por xmm1, xmm11 pshufd xmm0, xmm0, 0x93 pshufd xmm3, xmm3, 0x4E pshufd xmm2, xmm2, 0x39 paddd xmm0, xmm6 paddd xmm0, xmm1 pxor xmm3, xmm0 pshufb xmm3, xmm15 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 20 psrld xmm11, 12 por xmm1, xmm11 paddd xmm0, xmm7 paddd xmm0, xmm1 pxor xmm3, xmm0 pshufb xmm3, xmm14 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 25 psrld xmm11, 7 por xmm1, xmm11 pshufd xmm0, xmm0, 0x39 pshufd xmm3, xmm3, 0x4E pshufd xmm2, xmm2, 0x93 dec al jz 9f movdqa xmm8, xmm4 shufps xmm8, xmm5, 214 pshufd xmm9, xmm4, 0x0F pshufd xmm4, xmm8, 0x39 movdqa xmm8, xmm6 shufps xmm8, xmm7, 250 pblendw xmm9, xmm8, 0xCC movdqa xmm8, xmm7 punpcklqdq xmm8, xmm5 pblendw xmm8, xmm6, 0xC0 pshufd xmm8, xmm8, 0x78 punpckhdq xmm5, xmm7 punpckldq xmm6, xmm5 pshufd xmm7, xmm6, 0x1E movdqa xmm5, xmm9 movdqa xmm6, xmm8 jmp 9b 9: movdqu xmm4, xmmword ptr [rdi] movdqu xmm5, xmmword ptr [rdi+0x10] pxor xmm0, xmm2 pxor xmm1, xmm3 pxor xmm2, xmm4 pxor xmm3, xmm5 movups xmmword ptr [r9], xmm0 movups xmmword ptr [r9+0x10], xmm1 movups xmmword ptr [r9+0x20], xmm2 movups xmmword ptr [r9+0x30], xmm3 ret #ifdef __APPLE__ .static_data #else .section .rodata #endif .p2align 6 BLAKE3_IV: .long 0x6A09E667, 0xBB67AE85 .long 0x3C6EF372, 0xA54FF53A ROT16: .byte 2, 3, 0, 1, 6, 7, 4, 5, 10, 11, 8, 9, 14, 15, 12, 13 ROT8: .byte 1, 2, 3, 0, 5, 6, 7, 4, 9, 10, 11, 8, 13, 14, 15, 12 ADD0: .long 0, 1, 2, 3 ADD1: .long 4, 4, 4, 4 BLAKE3_IV_0: .long 0x6A09E667, 0x6A09E667, 0x6A09E667, 0x6A09E667 BLAKE3_IV_1: .long 0xBB67AE85, 0xBB67AE85, 0xBB67AE85, 0xBB67AE85 BLAKE3_IV_2: .long 0x3C6EF372, 0x3C6EF372, 0x3C6EF372, 0x3C6EF372 BLAKE3_IV_3: .long 0xA54FF53A, 0xA54FF53A, 0xA54FF53A, 0xA54FF53A BLAKE3_BLOCK_LEN: .long 64, 64, 64, 64 CMP_MSB_MASK: .long 0x80000000, 0x80000000, 0x80000000, 0x80000000
mktmansour/MKT-KSA-Geolocation-Security
63,459
.cargo-home/registry/src/index.crates.io-1949cf8c6b5b557f/blake3-1.8.2/c/blake3_sse41_x86-64_windows_gnu.S
.intel_syntax noprefix .global blake3_hash_many_sse41 .global _blake3_hash_many_sse41 .global blake3_compress_in_place_sse41 .global _blake3_compress_in_place_sse41 .global blake3_compress_xof_sse41 .global _blake3_compress_xof_sse41 .section .text .p2align 6 _blake3_hash_many_sse41: blake3_hash_many_sse41: push r15 push r14 push r13 push r12 push rsi push rdi push rbx push rbp mov rbp, rsp sub rsp, 528 and rsp, 0xFFFFFFFFFFFFFFC0 movdqa xmmword ptr [rsp+0x170], xmm6 movdqa xmmword ptr [rsp+0x180], xmm7 movdqa xmmword ptr [rsp+0x190], xmm8 movdqa xmmword ptr [rsp+0x1A0], xmm9 movdqa xmmword ptr [rsp+0x1B0], xmm10 movdqa xmmword ptr [rsp+0x1C0], xmm11 movdqa xmmword ptr [rsp+0x1D0], xmm12 movdqa xmmword ptr [rsp+0x1E0], xmm13 movdqa xmmword ptr [rsp+0x1F0], xmm14 movdqa xmmword ptr [rsp+0x200], xmm15 mov rdi, rcx mov rsi, rdx mov rdx, r8 mov rcx, r9 mov r8, qword ptr [rbp+0x68] movzx r9, byte ptr [rbp+0x70] neg r9d movd xmm0, r9d pshufd xmm0, xmm0, 0x00 movdqa xmmword ptr [rsp+0x130], xmm0 movdqa xmm1, xmm0 pand xmm1, xmmword ptr [ADD0+rip] pand xmm0, xmmword ptr [ADD1+rip] movdqa xmmword ptr [rsp+0x150], xmm0 movd xmm0, r8d pshufd xmm0, xmm0, 0x00 paddd xmm0, xmm1 movdqa xmmword ptr [rsp+0x110], xmm0 pxor xmm0, xmmword ptr [CMP_MSB_MASK+rip] pxor xmm1, xmmword ptr [CMP_MSB_MASK+rip] pcmpgtd xmm1, xmm0 shr r8, 32 movd xmm2, r8d pshufd xmm2, xmm2, 0x00 psubd xmm2, xmm1 movdqa xmmword ptr [rsp+0x120], xmm2 mov rbx, qword ptr [rbp+0x90] mov r15, rdx shl r15, 6 movzx r13d, byte ptr [rbp+0x78] movzx r12d, byte ptr [rbp+0x88] cmp rsi, 4 jc 3f 2: movdqu xmm3, xmmword ptr [rcx] pshufd xmm0, xmm3, 0x00 pshufd xmm1, xmm3, 0x55 pshufd xmm2, xmm3, 0xAA pshufd xmm3, xmm3, 0xFF movdqu xmm7, xmmword ptr [rcx+0x10] pshufd xmm4, xmm7, 0x00 pshufd xmm5, xmm7, 0x55 pshufd xmm6, xmm7, 0xAA pshufd xmm7, xmm7, 0xFF mov r8, qword ptr [rdi] mov r9, qword ptr [rdi+0x8] mov r10, qword ptr [rdi+0x10] mov r11, qword ptr [rdi+0x18] movzx eax, byte ptr [rbp+0x80] or eax, r13d xor edx, edx 9: mov r14d, eax or eax, r12d add rdx, 64 cmp rdx, r15 cmovne eax, r14d movdqu xmm8, xmmword ptr [r8+rdx-0x40] movdqu xmm9, xmmword ptr [r9+rdx-0x40] movdqu xmm10, xmmword ptr [r10+rdx-0x40] movdqu xmm11, xmmword ptr [r11+rdx-0x40] movdqa xmm12, xmm8 punpckldq xmm8, xmm9 punpckhdq xmm12, xmm9 movdqa xmm14, xmm10 punpckldq xmm10, xmm11 punpckhdq xmm14, xmm11 movdqa xmm9, xmm8 punpcklqdq xmm8, xmm10 punpckhqdq xmm9, xmm10 movdqa xmm13, xmm12 punpcklqdq xmm12, xmm14 punpckhqdq xmm13, xmm14 movdqa xmmword ptr [rsp], xmm8 movdqa xmmword ptr [rsp+0x10], xmm9 movdqa xmmword ptr [rsp+0x20], xmm12 movdqa xmmword ptr [rsp+0x30], xmm13 movdqu xmm8, xmmword ptr [r8+rdx-0x30] movdqu xmm9, xmmword ptr [r9+rdx-0x30] movdqu xmm10, xmmword ptr [r10+rdx-0x30] movdqu xmm11, xmmword ptr [r11+rdx-0x30] movdqa xmm12, xmm8 punpckldq xmm8, xmm9 punpckhdq xmm12, xmm9 movdqa xmm14, xmm10 punpckldq xmm10, xmm11 punpckhdq xmm14, xmm11 movdqa xmm9, xmm8 punpcklqdq xmm8, xmm10 punpckhqdq xmm9, xmm10 movdqa xmm13, xmm12 punpcklqdq xmm12, xmm14 punpckhqdq xmm13, xmm14 movdqa xmmword ptr [rsp+0x40], xmm8 movdqa xmmword ptr [rsp+0x50], xmm9 movdqa xmmword ptr [rsp+0x60], xmm12 movdqa xmmword ptr [rsp+0x70], xmm13 movdqu xmm8, xmmword ptr [r8+rdx-0x20] movdqu xmm9, xmmword ptr [r9+rdx-0x20] movdqu xmm10, xmmword ptr [r10+rdx-0x20] movdqu xmm11, xmmword ptr [r11+rdx-0x20] movdqa xmm12, xmm8 punpckldq xmm8, xmm9 punpckhdq xmm12, xmm9 movdqa xmm14, xmm10 punpckldq xmm10, xmm11 punpckhdq xmm14, xmm11 movdqa xmm9, xmm8 punpcklqdq xmm8, xmm10 punpckhqdq xmm9, xmm10 movdqa xmm13, xmm12 punpcklqdq xmm12, xmm14 punpckhqdq xmm13, xmm14 movdqa xmmword ptr [rsp+0x80], xmm8 movdqa xmmword ptr [rsp+0x90], xmm9 movdqa xmmword ptr [rsp+0xA0], xmm12 movdqa xmmword ptr [rsp+0xB0], xmm13 movdqu xmm8, xmmword ptr [r8+rdx-0x10] movdqu xmm9, xmmword ptr [r9+rdx-0x10] movdqu xmm10, xmmword ptr [r10+rdx-0x10] movdqu xmm11, xmmword ptr [r11+rdx-0x10] movdqa xmm12, xmm8 punpckldq xmm8, xmm9 punpckhdq xmm12, xmm9 movdqa xmm14, xmm10 punpckldq xmm10, xmm11 punpckhdq xmm14, xmm11 movdqa xmm9, xmm8 punpcklqdq xmm8, xmm10 punpckhqdq xmm9, xmm10 movdqa xmm13, xmm12 punpcklqdq xmm12, xmm14 punpckhqdq xmm13, xmm14 movdqa xmmword ptr [rsp+0xC0], xmm8 movdqa xmmword ptr [rsp+0xD0], xmm9 movdqa xmmword ptr [rsp+0xE0], xmm12 movdqa xmmword ptr [rsp+0xF0], xmm13 movdqa xmm9, xmmword ptr [BLAKE3_IV_1+rip] movdqa xmm10, xmmword ptr [BLAKE3_IV_2+rip] movdqa xmm11, xmmword ptr [BLAKE3_IV_3+rip] movdqa xmm12, xmmword ptr [rsp+0x110] movdqa xmm13, xmmword ptr [rsp+0x120] movdqa xmm14, xmmword ptr [BLAKE3_BLOCK_LEN+rip] movd xmm15, eax pshufd xmm15, xmm15, 0x00 prefetcht0 [r8+rdx+0x80] prefetcht0 [r9+rdx+0x80] prefetcht0 [r10+rdx+0x80] prefetcht0 [r11+rdx+0x80] paddd xmm0, xmmword ptr [rsp] paddd xmm1, xmmword ptr [rsp+0x20] paddd xmm2, xmmword ptr [rsp+0x40] paddd xmm3, xmmword ptr [rsp+0x60] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmmword ptr [ROT16+rip] pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 pshufb xmm15, xmm8 movdqa xmm8, xmmword ptr [BLAKE3_IV_0+rip] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x10] paddd xmm1, xmmword ptr [rsp+0x30] paddd xmm2, xmmword ptr [rsp+0x50] paddd xmm3, xmmword ptr [rsp+0x70] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmmword ptr [ROT8+rip] pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 pshufb xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x80] paddd xmm1, xmmword ptr [rsp+0xA0] paddd xmm2, xmmword ptr [rsp+0xC0] paddd xmm3, xmmword ptr [rsp+0xE0] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmmword ptr [ROT16+rip] pshufb xmm15, xmm8 pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0x90] paddd xmm1, xmmword ptr [rsp+0xB0] paddd xmm2, xmmword ptr [rsp+0xD0] paddd xmm3, xmmword ptr [rsp+0xF0] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmmword ptr [ROT8+rip] pshufb xmm15, xmm8 pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0x20] paddd xmm1, xmmword ptr [rsp+0x30] paddd xmm2, xmmword ptr [rsp+0x70] paddd xmm3, xmmword ptr [rsp+0x40] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmmword ptr [ROT16+rip] pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 pshufb xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x60] paddd xmm1, xmmword ptr [rsp+0xA0] paddd xmm2, xmmword ptr [rsp] paddd xmm3, xmmword ptr [rsp+0xD0] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmmword ptr [ROT8+rip] pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 pshufb xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x10] paddd xmm1, xmmword ptr [rsp+0xC0] paddd xmm2, xmmword ptr [rsp+0x90] paddd xmm3, xmmword ptr [rsp+0xF0] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmmword ptr [ROT16+rip] pshufb xmm15, xmm8 pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0xB0] paddd xmm1, xmmword ptr [rsp+0x50] paddd xmm2, xmmword ptr [rsp+0xE0] paddd xmm3, xmmword ptr [rsp+0x80] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmmword ptr [ROT8+rip] pshufb xmm15, xmm8 pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0x30] paddd xmm1, xmmword ptr [rsp+0xA0] paddd xmm2, xmmword ptr [rsp+0xD0] paddd xmm3, xmmword ptr [rsp+0x70] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmmword ptr [ROT16+rip] pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 pshufb xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x40] paddd xmm1, xmmword ptr [rsp+0xC0] paddd xmm2, xmmword ptr [rsp+0x20] paddd xmm3, xmmword ptr [rsp+0xE0] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmmword ptr [ROT8+rip] pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 pshufb xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x60] paddd xmm1, xmmword ptr [rsp+0x90] paddd xmm2, xmmword ptr [rsp+0xB0] paddd xmm3, xmmword ptr [rsp+0x80] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmmword ptr [ROT16+rip] pshufb xmm15, xmm8 pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0x50] paddd xmm1, xmmword ptr [rsp] paddd xmm2, xmmword ptr [rsp+0xF0] paddd xmm3, xmmword ptr [rsp+0x10] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmmword ptr [ROT8+rip] pshufb xmm15, xmm8 pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0xA0] paddd xmm1, xmmword ptr [rsp+0xC0] paddd xmm2, xmmword ptr [rsp+0xE0] paddd xmm3, xmmword ptr [rsp+0xD0] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmmword ptr [ROT16+rip] pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 pshufb xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x70] paddd xmm1, xmmword ptr [rsp+0x90] paddd xmm2, xmmword ptr [rsp+0x30] paddd xmm3, xmmword ptr [rsp+0xF0] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmmword ptr [ROT8+rip] pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 pshufb xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x40] paddd xmm1, xmmword ptr [rsp+0xB0] paddd xmm2, xmmword ptr [rsp+0x50] paddd xmm3, xmmword ptr [rsp+0x10] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmmword ptr [ROT16+rip] pshufb xmm15, xmm8 pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp] paddd xmm1, xmmword ptr [rsp+0x20] paddd xmm2, xmmword ptr [rsp+0x80] paddd xmm3, xmmword ptr [rsp+0x60] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmmword ptr [ROT8+rip] pshufb xmm15, xmm8 pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0xC0] paddd xmm1, xmmword ptr [rsp+0x90] paddd xmm2, xmmword ptr [rsp+0xF0] paddd xmm3, xmmword ptr [rsp+0xE0] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmmword ptr [ROT16+rip] pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 pshufb xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0xD0] paddd xmm1, xmmword ptr [rsp+0xB0] paddd xmm2, xmmword ptr [rsp+0xA0] paddd xmm3, xmmword ptr [rsp+0x80] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmmword ptr [ROT8+rip] pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 pshufb xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x70] paddd xmm1, xmmword ptr [rsp+0x50] paddd xmm2, xmmword ptr [rsp] paddd xmm3, xmmword ptr [rsp+0x60] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmmword ptr [ROT16+rip] pshufb xmm15, xmm8 pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0x20] paddd xmm1, xmmword ptr [rsp+0x30] paddd xmm2, xmmword ptr [rsp+0x10] paddd xmm3, xmmword ptr [rsp+0x40] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmmword ptr [ROT8+rip] pshufb xmm15, xmm8 pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0x90] paddd xmm1, xmmword ptr [rsp+0xB0] paddd xmm2, xmmword ptr [rsp+0x80] paddd xmm3, xmmword ptr [rsp+0xF0] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmmword ptr [ROT16+rip] pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 pshufb xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0xE0] paddd xmm1, xmmword ptr [rsp+0x50] paddd xmm2, xmmword ptr [rsp+0xC0] paddd xmm3, xmmword ptr [rsp+0x10] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmmword ptr [ROT8+rip] pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 pshufb xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0xD0] paddd xmm1, xmmword ptr [rsp] paddd xmm2, xmmword ptr [rsp+0x20] paddd xmm3, xmmword ptr [rsp+0x40] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmmword ptr [ROT16+rip] pshufb xmm15, xmm8 pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0x30] paddd xmm1, xmmword ptr [rsp+0xA0] paddd xmm2, xmmword ptr [rsp+0x60] paddd xmm3, xmmword ptr [rsp+0x70] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmmword ptr [ROT8+rip] pshufb xmm15, xmm8 pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0xB0] paddd xmm1, xmmword ptr [rsp+0x50] paddd xmm2, xmmword ptr [rsp+0x10] paddd xmm3, xmmword ptr [rsp+0x80] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmmword ptr [ROT16+rip] pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 pshufb xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0xF0] paddd xmm1, xmmword ptr [rsp] paddd xmm2, xmmword ptr [rsp+0x90] paddd xmm3, xmmword ptr [rsp+0x60] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmmword ptr [ROT8+rip] pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 pshufb xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0xE0] paddd xmm1, xmmword ptr [rsp+0x20] paddd xmm2, xmmword ptr [rsp+0x30] paddd xmm3, xmmword ptr [rsp+0x70] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmmword ptr [ROT16+rip] pshufb xmm15, xmm8 pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0xA0] paddd xmm1, xmmword ptr [rsp+0xC0] paddd xmm2, xmmword ptr [rsp+0x40] paddd xmm3, xmmword ptr [rsp+0xD0] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmmword ptr [ROT8+rip] pshufb xmm15, xmm8 pshufb xmm12, xmm8 pshufb xmm13, xmm8 pshufb xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 pxor xmm0, xmm8 pxor xmm1, xmm9 pxor xmm2, xmm10 pxor xmm3, xmm11 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 pxor xmm4, xmm12 pxor xmm5, xmm13 pxor xmm6, xmm14 pxor xmm7, xmm15 mov eax, r13d jne 9b movdqa xmm9, xmm0 punpckldq xmm0, xmm1 punpckhdq xmm9, xmm1 movdqa xmm11, xmm2 punpckldq xmm2, xmm3 punpckhdq xmm11, xmm3 movdqa xmm1, xmm0 punpcklqdq xmm0, xmm2 punpckhqdq xmm1, xmm2 movdqa xmm3, xmm9 punpcklqdq xmm9, xmm11 punpckhqdq xmm3, xmm11 movdqu xmmword ptr [rbx], xmm0 movdqu xmmword ptr [rbx+0x20], xmm1 movdqu xmmword ptr [rbx+0x40], xmm9 movdqu xmmword ptr [rbx+0x60], xmm3 movdqa xmm9, xmm4 punpckldq xmm4, xmm5 punpckhdq xmm9, xmm5 movdqa xmm11, xmm6 punpckldq xmm6, xmm7 punpckhdq xmm11, xmm7 movdqa xmm5, xmm4 punpcklqdq xmm4, xmm6 punpckhqdq xmm5, xmm6 movdqa xmm7, xmm9 punpcklqdq xmm9, xmm11 punpckhqdq xmm7, xmm11 movdqu xmmword ptr [rbx+0x10], xmm4 movdqu xmmword ptr [rbx+0x30], xmm5 movdqu xmmword ptr [rbx+0x50], xmm9 movdqu xmmword ptr [rbx+0x70], xmm7 movdqa xmm1, xmmword ptr [rsp+0x110] movdqa xmm0, xmm1 paddd xmm1, xmmword ptr [rsp+0x150] movdqa xmmword ptr [rsp+0x110], xmm1 pxor xmm0, xmmword ptr [CMP_MSB_MASK+rip] pxor xmm1, xmmword ptr [CMP_MSB_MASK+rip] pcmpgtd xmm0, xmm1 movdqa xmm1, xmmword ptr [rsp+0x120] psubd xmm1, xmm0 movdqa xmmword ptr [rsp+0x120], xmm1 add rbx, 128 add rdi, 32 sub rsi, 4 cmp rsi, 4 jnc 2b test rsi, rsi jne 3f 4: movdqa xmm6, xmmword ptr [rsp+0x170] movdqa xmm7, xmmword ptr [rsp+0x180] movdqa xmm8, xmmword ptr [rsp+0x190] movdqa xmm9, xmmword ptr [rsp+0x1A0] movdqa xmm10, xmmword ptr [rsp+0x1B0] movdqa xmm11, xmmword ptr [rsp+0x1C0] movdqa xmm12, xmmword ptr [rsp+0x1D0] movdqa xmm13, xmmword ptr [rsp+0x1E0] movdqa xmm14, xmmword ptr [rsp+0x1F0] movdqa xmm15, xmmword ptr [rsp+0x200] mov rsp, rbp pop rbp pop rbx pop rdi pop rsi pop r12 pop r13 pop r14 pop r15 ret .p2align 5 3: test esi, 0x2 je 3f movups xmm0, xmmword ptr [rcx] movups xmm1, xmmword ptr [rcx+0x10] movaps xmm8, xmm0 movaps xmm9, xmm1 movd xmm13, dword ptr [rsp+0x110] pinsrd xmm13, dword ptr [rsp+0x120], 1 pinsrd xmm13, dword ptr [BLAKE3_BLOCK_LEN+rip], 2 movaps xmmword ptr [rsp], xmm13 movd xmm14, dword ptr [rsp+0x114] pinsrd xmm14, dword ptr [rsp+0x124], 1 pinsrd xmm14, dword ptr [BLAKE3_BLOCK_LEN+rip], 2 movaps xmmword ptr [rsp+0x10], xmm14 mov r8, qword ptr [rdi] mov r9, qword ptr [rdi+0x8] movzx eax, byte ptr [rbp+0x80] or eax, r13d xor edx, edx 2: mov r14d, eax or eax, r12d add rdx, 64 cmp rdx, r15 cmovne eax, r14d movaps xmm2, xmmword ptr [BLAKE3_IV+rip] movaps xmm10, xmm2 movups xmm4, xmmword ptr [r8+rdx-0x40] movups xmm5, xmmword ptr [r8+rdx-0x30] movaps xmm3, xmm4 shufps xmm4, xmm5, 136 shufps xmm3, xmm5, 221 movaps xmm5, xmm3 movups xmm6, xmmword ptr [r8+rdx-0x20] movups xmm7, xmmword ptr [r8+rdx-0x10] movaps xmm3, xmm6 shufps xmm6, xmm7, 136 pshufd xmm6, xmm6, 0x93 shufps xmm3, xmm7, 221 pshufd xmm7, xmm3, 0x93 movups xmm12, xmmword ptr [r9+rdx-0x40] movups xmm13, xmmword ptr [r9+rdx-0x30] movaps xmm11, xmm12 shufps xmm12, xmm13, 136 shufps xmm11, xmm13, 221 movaps xmm13, xmm11 movups xmm14, xmmword ptr [r9+rdx-0x20] movups xmm15, xmmword ptr [r9+rdx-0x10] movaps xmm11, xmm14 shufps xmm14, xmm15, 136 pshufd xmm14, xmm14, 0x93 shufps xmm11, xmm15, 221 pshufd xmm15, xmm11, 0x93 movaps xmm3, xmmword ptr [rsp] movaps xmm11, xmmword ptr [rsp+0x10] pinsrd xmm3, eax, 3 pinsrd xmm11, eax, 3 mov al, 7 9: paddd xmm0, xmm4 paddd xmm8, xmm12 movaps xmmword ptr [rsp+0x20], xmm4 movaps xmmword ptr [rsp+0x30], xmm12 paddd xmm0, xmm1 paddd xmm8, xmm9 pxor xmm3, xmm0 pxor xmm11, xmm8 movaps xmm12, xmmword ptr [ROT16+rip] pshufb xmm3, xmm12 pshufb xmm11, xmm12 paddd xmm2, xmm3 paddd xmm10, xmm11 pxor xmm1, xmm2 pxor xmm9, xmm10 movdqa xmm4, xmm1 pslld xmm1, 20 psrld xmm4, 12 por xmm1, xmm4 movdqa xmm4, xmm9 pslld xmm9, 20 psrld xmm4, 12 por xmm9, xmm4 paddd xmm0, xmm5 paddd xmm8, xmm13 movaps xmmword ptr [rsp+0x40], xmm5 movaps xmmword ptr [rsp+0x50], xmm13 paddd xmm0, xmm1 paddd xmm8, xmm9 pxor xmm3, xmm0 pxor xmm11, xmm8 movaps xmm13, xmmword ptr [ROT8+rip] pshufb xmm3, xmm13 pshufb xmm11, xmm13 paddd xmm2, xmm3 paddd xmm10, xmm11 pxor xmm1, xmm2 pxor xmm9, xmm10 movdqa xmm4, xmm1 pslld xmm1, 25 psrld xmm4, 7 por xmm1, xmm4 movdqa xmm4, xmm9 pslld xmm9, 25 psrld xmm4, 7 por xmm9, xmm4 pshufd xmm0, xmm0, 0x93 pshufd xmm8, xmm8, 0x93 pshufd xmm3, xmm3, 0x4E pshufd xmm11, xmm11, 0x4E pshufd xmm2, xmm2, 0x39 pshufd xmm10, xmm10, 0x39 paddd xmm0, xmm6 paddd xmm8, xmm14 paddd xmm0, xmm1 paddd xmm8, xmm9 pxor xmm3, xmm0 pxor xmm11, xmm8 pshufb xmm3, xmm12 pshufb xmm11, xmm12 paddd xmm2, xmm3 paddd xmm10, xmm11 pxor xmm1, xmm2 pxor xmm9, xmm10 movdqa xmm4, xmm1 pslld xmm1, 20 psrld xmm4, 12 por xmm1, xmm4 movdqa xmm4, xmm9 pslld xmm9, 20 psrld xmm4, 12 por xmm9, xmm4 paddd xmm0, xmm7 paddd xmm8, xmm15 paddd xmm0, xmm1 paddd xmm8, xmm9 pxor xmm3, xmm0 pxor xmm11, xmm8 pshufb xmm3, xmm13 pshufb xmm11, xmm13 paddd xmm2, xmm3 paddd xmm10, xmm11 pxor xmm1, xmm2 pxor xmm9, xmm10 movdqa xmm4, xmm1 pslld xmm1, 25 psrld xmm4, 7 por xmm1, xmm4 movdqa xmm4, xmm9 pslld xmm9, 25 psrld xmm4, 7 por xmm9, xmm4 pshufd xmm0, xmm0, 0x39 pshufd xmm8, xmm8, 0x39 pshufd xmm3, xmm3, 0x4E pshufd xmm11, xmm11, 0x4E pshufd xmm2, xmm2, 0x93 pshufd xmm10, xmm10, 0x93 dec al je 9f movdqa xmm12, xmmword ptr [rsp+0x20] movdqa xmm5, xmmword ptr [rsp+0x40] pshufd xmm13, xmm12, 0x0F shufps xmm12, xmm5, 214 pshufd xmm4, xmm12, 0x39 movdqa xmm12, xmm6 shufps xmm12, xmm7, 250 pblendw xmm13, xmm12, 0xCC movdqa xmm12, xmm7 punpcklqdq xmm12, xmm5 pblendw xmm12, xmm6, 0xC0 pshufd xmm12, xmm12, 0x78 punpckhdq xmm5, xmm7 punpckldq xmm6, xmm5 pshufd xmm7, xmm6, 0x1E movdqa xmmword ptr [rsp+0x20], xmm13 movdqa xmmword ptr [rsp+0x40], xmm12 movdqa xmm5, xmmword ptr [rsp+0x30] movdqa xmm13, xmmword ptr [rsp+0x50] pshufd xmm6, xmm5, 0x0F shufps xmm5, xmm13, 214 pshufd xmm12, xmm5, 0x39 movdqa xmm5, xmm14 shufps xmm5, xmm15, 250 pblendw xmm6, xmm5, 0xCC movdqa xmm5, xmm15 punpcklqdq xmm5, xmm13 pblendw xmm5, xmm14, 0xC0 pshufd xmm5, xmm5, 0x78 punpckhdq xmm13, xmm15 punpckldq xmm14, xmm13 pshufd xmm15, xmm14, 0x1E movdqa xmm13, xmm6 movdqa xmm14, xmm5 movdqa xmm5, xmmword ptr [rsp+0x20] movdqa xmm6, xmmword ptr [rsp+0x40] jmp 9b 9: pxor xmm0, xmm2 pxor xmm1, xmm3 pxor xmm8, xmm10 pxor xmm9, xmm11 mov eax, r13d cmp rdx, r15 jne 2b movups xmmword ptr [rbx], xmm0 movups xmmword ptr [rbx+0x10], xmm1 movups xmmword ptr [rbx+0x20], xmm8 movups xmmword ptr [rbx+0x30], xmm9 movdqa xmm0, xmmword ptr [rsp+0x130] movdqa xmm1, xmmword ptr [rsp+0x110] movdqa xmm2, xmmword ptr [rsp+0x120] movdqu xmm3, xmmword ptr [rsp+0x118] movdqu xmm4, xmmword ptr [rsp+0x128] blendvps xmm1, xmm3, xmm0 blendvps xmm2, xmm4, xmm0 movdqa xmmword ptr [rsp+0x110], xmm1 movdqa xmmword ptr [rsp+0x120], xmm2 add rdi, 16 add rbx, 64 sub rsi, 2 3: test esi, 0x1 je 4b movups xmm0, xmmword ptr [rcx] movups xmm1, xmmword ptr [rcx+0x10] movd xmm13, dword ptr [rsp+0x110] pinsrd xmm13, dword ptr [rsp+0x120], 1 pinsrd xmm13, dword ptr [BLAKE3_BLOCK_LEN+rip], 2 movaps xmm14, xmmword ptr [ROT8+rip] movaps xmm15, xmmword ptr [ROT16+rip] mov r8, qword ptr [rdi] movzx eax, byte ptr [rbp+0x80] or eax, r13d xor edx, edx 2: mov r14d, eax or eax, r12d add rdx, 64 cmp rdx, r15 cmovne eax, r14d movaps xmm2, xmmword ptr [BLAKE3_IV+rip] movaps xmm3, xmm13 pinsrd xmm3, eax, 3 movups xmm4, xmmword ptr [r8+rdx-0x40] movups xmm5, xmmword ptr [r8+rdx-0x30] movaps xmm8, xmm4 shufps xmm4, xmm5, 136 shufps xmm8, xmm5, 221 movaps xmm5, xmm8 movups xmm6, xmmword ptr [r8+rdx-0x20] movups xmm7, xmmword ptr [r8+rdx-0x10] movaps xmm8, xmm6 shufps xmm6, xmm7, 136 pshufd xmm6, xmm6, 0x93 shufps xmm8, xmm7, 221 pshufd xmm7, xmm8, 0x93 mov al, 7 9: paddd xmm0, xmm4 paddd xmm0, xmm1 pxor xmm3, xmm0 pshufb xmm3, xmm15 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 20 psrld xmm11, 12 por xmm1, xmm11 paddd xmm0, xmm5 paddd xmm0, xmm1 pxor xmm3, xmm0 pshufb xmm3, xmm14 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 25 psrld xmm11, 7 por xmm1, xmm11 pshufd xmm0, xmm0, 0x93 pshufd xmm3, xmm3, 0x4E pshufd xmm2, xmm2, 0x39 paddd xmm0, xmm6 paddd xmm0, xmm1 pxor xmm3, xmm0 pshufb xmm3, xmm15 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 20 psrld xmm11, 12 por xmm1, xmm11 paddd xmm0, xmm7 paddd xmm0, xmm1 pxor xmm3, xmm0 pshufb xmm3, xmm14 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 25 psrld xmm11, 7 por xmm1, xmm11 pshufd xmm0, xmm0, 0x39 pshufd xmm3, xmm3, 0x4E pshufd xmm2, xmm2, 0x93 dec al jz 9f movdqa xmm8, xmm4 shufps xmm8, xmm5, 214 pshufd xmm9, xmm4, 0x0F pshufd xmm4, xmm8, 0x39 movdqa xmm8, xmm6 shufps xmm8, xmm7, 250 pblendw xmm9, xmm8, 0xCC movdqa xmm8, xmm7 punpcklqdq xmm8, xmm5 pblendw xmm8, xmm6, 0xC0 pshufd xmm8, xmm8, 0x78 punpckhdq xmm5, xmm7 punpckldq xmm6, xmm5 pshufd xmm7, xmm6, 0x1E movdqa xmm5, xmm9 movdqa xmm6, xmm8 jmp 9b 9: pxor xmm0, xmm2 pxor xmm1, xmm3 mov eax, r13d cmp rdx, r15 jne 2b movups xmmword ptr [rbx], xmm0 movups xmmword ptr [rbx+0x10], xmm1 jmp 4b .p2align 6 blake3_compress_in_place_sse41: _blake3_compress_in_place_sse41: sub rsp, 120 movdqa xmmword ptr [rsp], xmm6 movdqa xmmword ptr [rsp+0x10], xmm7 movdqa xmmword ptr [rsp+0x20], xmm8 movdqa xmmword ptr [rsp+0x30], xmm9 movdqa xmmword ptr [rsp+0x40], xmm11 movdqa xmmword ptr [rsp+0x50], xmm14 movdqa xmmword ptr [rsp+0x60], xmm15 movups xmm0, xmmword ptr [rcx] movups xmm1, xmmword ptr [rcx+0x10] movaps xmm2, xmmword ptr [BLAKE3_IV+rip] movzx eax, byte ptr [rsp+0xA0] movzx r8d, r8b shl rax, 32 add r8, rax movq xmm3, r9 movq xmm4, r8 punpcklqdq xmm3, xmm4 movups xmm4, xmmword ptr [rdx] movups xmm5, xmmword ptr [rdx+0x10] movaps xmm8, xmm4 shufps xmm4, xmm5, 136 shufps xmm8, xmm5, 221 movaps xmm5, xmm8 movups xmm6, xmmword ptr [rdx+0x20] movups xmm7, xmmword ptr [rdx+0x30] movaps xmm8, xmm6 shufps xmm6, xmm7, 136 pshufd xmm6, xmm6, 0x93 shufps xmm8, xmm7, 221 pshufd xmm7, xmm8, 0x93 movaps xmm14, xmmword ptr [ROT8+rip] movaps xmm15, xmmword ptr [ROT16+rip] mov al, 7 9: paddd xmm0, xmm4 paddd xmm0, xmm1 pxor xmm3, xmm0 pshufb xmm3, xmm15 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 20 psrld xmm11, 12 por xmm1, xmm11 paddd xmm0, xmm5 paddd xmm0, xmm1 pxor xmm3, xmm0 pshufb xmm3, xmm14 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 25 psrld xmm11, 7 por xmm1, xmm11 pshufd xmm0, xmm0, 0x93 pshufd xmm3, xmm3, 0x4E pshufd xmm2, xmm2, 0x39 paddd xmm0, xmm6 paddd xmm0, xmm1 pxor xmm3, xmm0 pshufb xmm3, xmm15 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 20 psrld xmm11, 12 por xmm1, xmm11 paddd xmm0, xmm7 paddd xmm0, xmm1 pxor xmm3, xmm0 pshufb xmm3, xmm14 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 25 psrld xmm11, 7 por xmm1, xmm11 pshufd xmm0, xmm0, 0x39 pshufd xmm3, xmm3, 0x4E pshufd xmm2, xmm2, 0x93 dec al jz 9f movdqa xmm8, xmm4 shufps xmm8, xmm5, 214 pshufd xmm9, xmm4, 0x0F pshufd xmm4, xmm8, 0x39 movdqa xmm8, xmm6 shufps xmm8, xmm7, 250 pblendw xmm9, xmm8, 0xCC movdqa xmm8, xmm7 punpcklqdq xmm8, xmm5 pblendw xmm8, xmm6, 0xC0 pshufd xmm8, xmm8, 0x78 punpckhdq xmm5, xmm7 punpckldq xmm6, xmm5 pshufd xmm7, xmm6, 0x1E movdqa xmm5, xmm9 movdqa xmm6, xmm8 jmp 9b 9: pxor xmm0, xmm2 pxor xmm1, xmm3 movups xmmword ptr [rcx], xmm0 movups xmmword ptr [rcx+0x10], xmm1 movdqa xmm6, xmmword ptr [rsp] movdqa xmm7, xmmword ptr [rsp+0x10] movdqa xmm8, xmmword ptr [rsp+0x20] movdqa xmm9, xmmword ptr [rsp+0x30] movdqa xmm11, xmmword ptr [rsp+0x40] movdqa xmm14, xmmword ptr [rsp+0x50] movdqa xmm15, xmmword ptr [rsp+0x60] add rsp, 120 ret .p2align 6 _blake3_compress_xof_sse41: blake3_compress_xof_sse41: sub rsp, 120 movdqa xmmword ptr [rsp], xmm6 movdqa xmmword ptr [rsp+0x10], xmm7 movdqa xmmword ptr [rsp+0x20], xmm8 movdqa xmmword ptr [rsp+0x30], xmm9 movdqa xmmword ptr [rsp+0x40], xmm11 movdqa xmmword ptr [rsp+0x50], xmm14 movdqa xmmword ptr [rsp+0x60], xmm15 movups xmm0, xmmword ptr [rcx] movups xmm1, xmmword ptr [rcx+0x10] movaps xmm2, xmmword ptr [BLAKE3_IV+rip] movzx eax, byte ptr [rsp+0xA0] movzx r8d, r8b mov r10, qword ptr [rsp+0xA8] shl rax, 32 add r8, rax movq xmm3, r9 movq xmm4, r8 punpcklqdq xmm3, xmm4 movups xmm4, xmmword ptr [rdx] movups xmm5, xmmword ptr [rdx+0x10] movaps xmm8, xmm4 shufps xmm4, xmm5, 136 shufps xmm8, xmm5, 221 movaps xmm5, xmm8 movups xmm6, xmmword ptr [rdx+0x20] movups xmm7, xmmword ptr [rdx+0x30] movaps xmm8, xmm6 shufps xmm6, xmm7, 136 pshufd xmm6, xmm6, 0x93 shufps xmm8, xmm7, 221 pshufd xmm7, xmm8, 0x93 movaps xmm14, xmmword ptr [ROT8+rip] movaps xmm15, xmmword ptr [ROT16+rip] mov al, 7 9: paddd xmm0, xmm4 paddd xmm0, xmm1 pxor xmm3, xmm0 pshufb xmm3, xmm15 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 20 psrld xmm11, 12 por xmm1, xmm11 paddd xmm0, xmm5 paddd xmm0, xmm1 pxor xmm3, xmm0 pshufb xmm3, xmm14 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 25 psrld xmm11, 7 por xmm1, xmm11 pshufd xmm0, xmm0, 0x93 pshufd xmm3, xmm3, 0x4E pshufd xmm2, xmm2, 0x39 paddd xmm0, xmm6 paddd xmm0, xmm1 pxor xmm3, xmm0 pshufb xmm3, xmm15 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 20 psrld xmm11, 12 por xmm1, xmm11 paddd xmm0, xmm7 paddd xmm0, xmm1 pxor xmm3, xmm0 pshufb xmm3, xmm14 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 25 psrld xmm11, 7 por xmm1, xmm11 pshufd xmm0, xmm0, 0x39 pshufd xmm3, xmm3, 0x4E pshufd xmm2, xmm2, 0x93 dec al jz 9f movdqa xmm8, xmm4 shufps xmm8, xmm5, 214 pshufd xmm9, xmm4, 0x0F pshufd xmm4, xmm8, 0x39 movdqa xmm8, xmm6 shufps xmm8, xmm7, 250 pblendw xmm9, xmm8, 0xCC movdqa xmm8, xmm7 punpcklqdq xmm8, xmm5 pblendw xmm8, xmm6, 0xC0 pshufd xmm8, xmm8, 0x78 punpckhdq xmm5, xmm7 punpckldq xmm6, xmm5 pshufd xmm7, xmm6, 0x1E movdqa xmm5, xmm9 movdqa xmm6, xmm8 jmp 9b 9: movdqu xmm4, xmmword ptr [rcx] movdqu xmm5, xmmword ptr [rcx+0x10] pxor xmm0, xmm2 pxor xmm1, xmm3 pxor xmm2, xmm4 pxor xmm3, xmm5 movups xmmword ptr [r10], xmm0 movups xmmword ptr [r10+0x10], xmm1 movups xmmword ptr [r10+0x20], xmm2 movups xmmword ptr [r10+0x30], xmm3 movdqa xmm6, xmmword ptr [rsp] movdqa xmm7, xmmword ptr [rsp+0x10] movdqa xmm8, xmmword ptr [rsp+0x20] movdqa xmm9, xmmword ptr [rsp+0x30] movdqa xmm11, xmmword ptr [rsp+0x40] movdqa xmm14, xmmword ptr [rsp+0x50] movdqa xmm15, xmmword ptr [rsp+0x60] add rsp, 120 ret .section .rdata .p2align 6 BLAKE3_IV: .long 0x6A09E667, 0xBB67AE85 .long 0x3C6EF372, 0xA54FF53A ROT16: .byte 2, 3, 0, 1, 6, 7, 4, 5, 10, 11, 8, 9, 14, 15, 12, 13 ROT8: .byte 1, 2, 3, 0, 5, 6, 7, 4, 9, 10, 11, 8, 13, 14, 15, 12 ADD0: .long 0, 1, 2, 3 ADD1: .long 4, 4, 4, 4 BLAKE3_IV_0: .long 0x6A09E667, 0x6A09E667, 0x6A09E667, 0x6A09E667 BLAKE3_IV_1: .long 0xBB67AE85, 0xBB67AE85, 0xBB67AE85, 0xBB67AE85 BLAKE3_IV_2: .long 0x3C6EF372, 0x3C6EF372, 0x3C6EF372, 0x3C6EF372 BLAKE3_IV_3: .long 0xA54FF53A, 0xA54FF53A, 0xA54FF53A, 0xA54FF53A BLAKE3_BLOCK_LEN: .long 64, 64, 64, 64 CMP_MSB_MASK: .long 0x80000000, 0x80000000, 0x80000000, 0x80000000
mktmansour/MKT-KSA-Geolocation-Security
68,858
.cargo-home/registry/src/index.crates.io-1949cf8c6b5b557f/blake3-1.8.2/c/blake3_sse2_x86-64_unix.S
#if defined(__ELF__) && defined(__linux__) .section .note.GNU-stack,"",%progbits #endif #if defined(__ELF__) && defined(__CET__) && defined(__has_include) #if __has_include(<cet.h>) #include <cet.h> #endif #endif #if !defined(_CET_ENDBR) #define _CET_ENDBR #endif .intel_syntax noprefix .global blake3_hash_many_sse2 .global _blake3_hash_many_sse2 .global blake3_compress_in_place_sse2 .global _blake3_compress_in_place_sse2 .global blake3_compress_xof_sse2 .global _blake3_compress_xof_sse2 #ifdef __APPLE__ .text #else .section .text #endif .p2align 6 _blake3_hash_many_sse2: blake3_hash_many_sse2: _CET_ENDBR push r15 push r14 push r13 push r12 push rbx push rbp mov rbp, rsp sub rsp, 360 and rsp, 0xFFFFFFFFFFFFFFC0 neg r9d movd xmm0, r9d pshufd xmm0, xmm0, 0x00 movdqa xmmword ptr [rsp+0x130], xmm0 movdqa xmm1, xmm0 pand xmm1, xmmword ptr [ADD0+rip] pand xmm0, xmmword ptr [ADD1+rip] movdqa xmmword ptr [rsp+0x150], xmm0 movd xmm0, r8d pshufd xmm0, xmm0, 0x00 paddd xmm0, xmm1 movdqa xmmword ptr [rsp+0x110], xmm0 pxor xmm0, xmmword ptr [CMP_MSB_MASK+rip] pxor xmm1, xmmword ptr [CMP_MSB_MASK+rip] pcmpgtd xmm1, xmm0 shr r8, 32 movd xmm2, r8d pshufd xmm2, xmm2, 0x00 psubd xmm2, xmm1 movdqa xmmword ptr [rsp+0x120], xmm2 mov rbx, qword ptr [rbp+0x50] mov r15, rdx shl r15, 6 movzx r13d, byte ptr [rbp+0x38] movzx r12d, byte ptr [rbp+0x48] cmp rsi, 4 jc 3f 2: movdqu xmm3, xmmword ptr [rcx] pshufd xmm0, xmm3, 0x00 pshufd xmm1, xmm3, 0x55 pshufd xmm2, xmm3, 0xAA pshufd xmm3, xmm3, 0xFF movdqu xmm7, xmmword ptr [rcx+0x10] pshufd xmm4, xmm7, 0x00 pshufd xmm5, xmm7, 0x55 pshufd xmm6, xmm7, 0xAA pshufd xmm7, xmm7, 0xFF mov r8, qword ptr [rdi] mov r9, qword ptr [rdi+0x8] mov r10, qword ptr [rdi+0x10] mov r11, qword ptr [rdi+0x18] movzx eax, byte ptr [rbp+0x40] or eax, r13d xor edx, edx 9: mov r14d, eax or eax, r12d add rdx, 64 cmp rdx, r15 cmovne eax, r14d movdqu xmm8, xmmword ptr [r8+rdx-0x40] movdqu xmm9, xmmword ptr [r9+rdx-0x40] movdqu xmm10, xmmword ptr [r10+rdx-0x40] movdqu xmm11, xmmword ptr [r11+rdx-0x40] movdqa xmm12, xmm8 punpckldq xmm8, xmm9 punpckhdq xmm12, xmm9 movdqa xmm14, xmm10 punpckldq xmm10, xmm11 punpckhdq xmm14, xmm11 movdqa xmm9, xmm8 punpcklqdq xmm8, xmm10 punpckhqdq xmm9, xmm10 movdqa xmm13, xmm12 punpcklqdq xmm12, xmm14 punpckhqdq xmm13, xmm14 movdqa xmmword ptr [rsp], xmm8 movdqa xmmword ptr [rsp+0x10], xmm9 movdqa xmmword ptr [rsp+0x20], xmm12 movdqa xmmword ptr [rsp+0x30], xmm13 movdqu xmm8, xmmword ptr [r8+rdx-0x30] movdqu xmm9, xmmword ptr [r9+rdx-0x30] movdqu xmm10, xmmword ptr [r10+rdx-0x30] movdqu xmm11, xmmword ptr [r11+rdx-0x30] movdqa xmm12, xmm8 punpckldq xmm8, xmm9 punpckhdq xmm12, xmm9 movdqa xmm14, xmm10 punpckldq xmm10, xmm11 punpckhdq xmm14, xmm11 movdqa xmm9, xmm8 punpcklqdq xmm8, xmm10 punpckhqdq xmm9, xmm10 movdqa xmm13, xmm12 punpcklqdq xmm12, xmm14 punpckhqdq xmm13, xmm14 movdqa xmmword ptr [rsp+0x40], xmm8 movdqa xmmword ptr [rsp+0x50], xmm9 movdqa xmmword ptr [rsp+0x60], xmm12 movdqa xmmword ptr [rsp+0x70], xmm13 movdqu xmm8, xmmword ptr [r8+rdx-0x20] movdqu xmm9, xmmword ptr [r9+rdx-0x20] movdqu xmm10, xmmword ptr [r10+rdx-0x20] movdqu xmm11, xmmword ptr [r11+rdx-0x20] movdqa xmm12, xmm8 punpckldq xmm8, xmm9 punpckhdq xmm12, xmm9 movdqa xmm14, xmm10 punpckldq xmm10, xmm11 punpckhdq xmm14, xmm11 movdqa xmm9, xmm8 punpcklqdq xmm8, xmm10 punpckhqdq xmm9, xmm10 movdqa xmm13, xmm12 punpcklqdq xmm12, xmm14 punpckhqdq xmm13, xmm14 movdqa xmmword ptr [rsp+0x80], xmm8 movdqa xmmword ptr [rsp+0x90], xmm9 movdqa xmmword ptr [rsp+0xA0], xmm12 movdqa xmmword ptr [rsp+0xB0], xmm13 movdqu xmm8, xmmword ptr [r8+rdx-0x10] movdqu xmm9, xmmword ptr [r9+rdx-0x10] movdqu xmm10, xmmword ptr [r10+rdx-0x10] movdqu xmm11, xmmword ptr [r11+rdx-0x10] movdqa xmm12, xmm8 punpckldq xmm8, xmm9 punpckhdq xmm12, xmm9 movdqa xmm14, xmm10 punpckldq xmm10, xmm11 punpckhdq xmm14, xmm11 movdqa xmm9, xmm8 punpcklqdq xmm8, xmm10 punpckhqdq xmm9, xmm10 movdqa xmm13, xmm12 punpcklqdq xmm12, xmm14 punpckhqdq xmm13, xmm14 movdqa xmmword ptr [rsp+0xC0], xmm8 movdqa xmmword ptr [rsp+0xD0], xmm9 movdqa xmmword ptr [rsp+0xE0], xmm12 movdqa xmmword ptr [rsp+0xF0], xmm13 movdqa xmm9, xmmword ptr [BLAKE3_IV_1+rip] movdqa xmm10, xmmword ptr [BLAKE3_IV_2+rip] movdqa xmm11, xmmword ptr [BLAKE3_IV_3+rip] movdqa xmm12, xmmword ptr [rsp+0x110] movdqa xmm13, xmmword ptr [rsp+0x120] movdqa xmm14, xmmword ptr [BLAKE3_BLOCK_LEN+rip] movd xmm15, eax pshufd xmm15, xmm15, 0x00 prefetcht0 [r8+rdx+0x80] prefetcht0 [r9+rdx+0x80] prefetcht0 [r10+rdx+0x80] prefetcht0 [r11+rdx+0x80] paddd xmm0, xmmword ptr [rsp] paddd xmm1, xmmword ptr [rsp+0x20] paddd xmm2, xmmword ptr [rsp+0x40] paddd xmm3, xmmword ptr [rsp+0x60] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 pshuflw xmm12, xmm12, 0xB1 pshufhw xmm12, xmm12, 0xB1 pshuflw xmm13, xmm13, 0xB1 pshufhw xmm13, xmm13, 0xB1 pshuflw xmm14, xmm14, 0xB1 pshufhw xmm14, xmm14, 0xB1 pshuflw xmm15, xmm15, 0xB1 pshufhw xmm15, xmm15, 0xB1 movdqa xmm8, xmmword ptr [BLAKE3_IV_0+rip] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x10] paddd xmm1, xmmword ptr [rsp+0x30] paddd xmm2, xmmword ptr [rsp+0x50] paddd xmm3, xmmword ptr [rsp+0x70] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmm12 psrld xmm12, 8 pslld xmm8, 24 pxor xmm12, xmm8 movdqa xmm8, xmm13 psrld xmm13, 8 pslld xmm8, 24 pxor xmm13, xmm8 movdqa xmm8, xmm14 psrld xmm14, 8 pslld xmm8, 24 pxor xmm14, xmm8 movdqa xmm8, xmm15 psrld xmm15, 8 pslld xmm8, 24 pxor xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x80] paddd xmm1, xmmword ptr [rsp+0xA0] paddd xmm2, xmmword ptr [rsp+0xC0] paddd xmm3, xmmword ptr [rsp+0xE0] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 pshuflw xmm15, xmm15, 0xB1 pshufhw xmm15, xmm15, 0xB1 pshuflw xmm12, xmm12, 0xB1 pshufhw xmm12, xmm12, 0xB1 pshuflw xmm13, xmm13, 0xB1 pshufhw xmm13, xmm13, 0xB1 pshuflw xmm14, xmm14, 0xB1 pshufhw xmm14, xmm14, 0xB1 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0x90] paddd xmm1, xmmword ptr [rsp+0xB0] paddd xmm2, xmmword ptr [rsp+0xD0] paddd xmm3, xmmword ptr [rsp+0xF0] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmm15 psrld xmm15, 8 pslld xmm8, 24 pxor xmm15, xmm8 movdqa xmm8, xmm12 psrld xmm12, 8 pslld xmm8, 24 pxor xmm12, xmm8 movdqa xmm8, xmm13 psrld xmm13, 8 pslld xmm8, 24 pxor xmm13, xmm8 movdqa xmm8, xmm14 psrld xmm14, 8 pslld xmm8, 24 pxor xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0x20] paddd xmm1, xmmword ptr [rsp+0x30] paddd xmm2, xmmword ptr [rsp+0x70] paddd xmm3, xmmword ptr [rsp+0x40] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 pshuflw xmm12, xmm12, 0xB1 pshufhw xmm12, xmm12, 0xB1 pshuflw xmm13, xmm13, 0xB1 pshufhw xmm13, xmm13, 0xB1 pshuflw xmm14, xmm14, 0xB1 pshufhw xmm14, xmm14, 0xB1 pshuflw xmm15, xmm15, 0xB1 pshufhw xmm15, xmm15, 0xB1 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x60] paddd xmm1, xmmword ptr [rsp+0xA0] paddd xmm2, xmmword ptr [rsp] paddd xmm3, xmmword ptr [rsp+0xD0] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmm12 psrld xmm12, 8 pslld xmm8, 24 pxor xmm12, xmm8 movdqa xmm8, xmm13 psrld xmm13, 8 pslld xmm8, 24 pxor xmm13, xmm8 movdqa xmm8, xmm14 psrld xmm14, 8 pslld xmm8, 24 pxor xmm14, xmm8 movdqa xmm8, xmm15 psrld xmm15, 8 pslld xmm8, 24 pxor xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x10] paddd xmm1, xmmword ptr [rsp+0xC0] paddd xmm2, xmmword ptr [rsp+0x90] paddd xmm3, xmmword ptr [rsp+0xF0] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 pshuflw xmm15, xmm15, 0xB1 pshufhw xmm15, xmm15, 0xB1 pshuflw xmm12, xmm12, 0xB1 pshufhw xmm12, xmm12, 0xB1 pshuflw xmm13, xmm13, 0xB1 pshufhw xmm13, xmm13, 0xB1 pshuflw xmm14, xmm14, 0xB1 pshufhw xmm14, xmm14, 0xB1 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0xB0] paddd xmm1, xmmword ptr [rsp+0x50] paddd xmm2, xmmword ptr [rsp+0xE0] paddd xmm3, xmmword ptr [rsp+0x80] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmm15 psrld xmm15, 8 pslld xmm8, 24 pxor xmm15, xmm8 movdqa xmm8, xmm12 psrld xmm12, 8 pslld xmm8, 24 pxor xmm12, xmm8 movdqa xmm8, xmm13 psrld xmm13, 8 pslld xmm8, 24 pxor xmm13, xmm8 movdqa xmm8, xmm14 psrld xmm14, 8 pslld xmm8, 24 pxor xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0x30] paddd xmm1, xmmword ptr [rsp+0xA0] paddd xmm2, xmmword ptr [rsp+0xD0] paddd xmm3, xmmword ptr [rsp+0x70] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 pshuflw xmm12, xmm12, 0xB1 pshufhw xmm12, xmm12, 0xB1 pshuflw xmm13, xmm13, 0xB1 pshufhw xmm13, xmm13, 0xB1 pshuflw xmm14, xmm14, 0xB1 pshufhw xmm14, xmm14, 0xB1 pshuflw xmm15, xmm15, 0xB1 pshufhw xmm15, xmm15, 0xB1 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x40] paddd xmm1, xmmword ptr [rsp+0xC0] paddd xmm2, xmmword ptr [rsp+0x20] paddd xmm3, xmmword ptr [rsp+0xE0] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmm12 psrld xmm12, 8 pslld xmm8, 24 pxor xmm12, xmm8 movdqa xmm8, xmm13 psrld xmm13, 8 pslld xmm8, 24 pxor xmm13, xmm8 movdqa xmm8, xmm14 psrld xmm14, 8 pslld xmm8, 24 pxor xmm14, xmm8 movdqa xmm8, xmm15 psrld xmm15, 8 pslld xmm8, 24 pxor xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x60] paddd xmm1, xmmword ptr [rsp+0x90] paddd xmm2, xmmword ptr [rsp+0xB0] paddd xmm3, xmmword ptr [rsp+0x80] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 pshuflw xmm15, xmm15, 0xB1 pshufhw xmm15, xmm15, 0xB1 pshuflw xmm12, xmm12, 0xB1 pshufhw xmm12, xmm12, 0xB1 pshuflw xmm13, xmm13, 0xB1 pshufhw xmm13, xmm13, 0xB1 pshuflw xmm14, xmm14, 0xB1 pshufhw xmm14, xmm14, 0xB1 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0x50] paddd xmm1, xmmword ptr [rsp] paddd xmm2, xmmword ptr [rsp+0xF0] paddd xmm3, xmmword ptr [rsp+0x10] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmm15 psrld xmm15, 8 pslld xmm8, 24 pxor xmm15, xmm8 movdqa xmm8, xmm12 psrld xmm12, 8 pslld xmm8, 24 pxor xmm12, xmm8 movdqa xmm8, xmm13 psrld xmm13, 8 pslld xmm8, 24 pxor xmm13, xmm8 movdqa xmm8, xmm14 psrld xmm14, 8 pslld xmm8, 24 pxor xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0xA0] paddd xmm1, xmmword ptr [rsp+0xC0] paddd xmm2, xmmword ptr [rsp+0xE0] paddd xmm3, xmmword ptr [rsp+0xD0] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 pshuflw xmm12, xmm12, 0xB1 pshufhw xmm12, xmm12, 0xB1 pshuflw xmm13, xmm13, 0xB1 pshufhw xmm13, xmm13, 0xB1 pshuflw xmm14, xmm14, 0xB1 pshufhw xmm14, xmm14, 0xB1 pshuflw xmm15, xmm15, 0xB1 pshufhw xmm15, xmm15, 0xB1 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x70] paddd xmm1, xmmword ptr [rsp+0x90] paddd xmm2, xmmword ptr [rsp+0x30] paddd xmm3, xmmword ptr [rsp+0xF0] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmm12 psrld xmm12, 8 pslld xmm8, 24 pxor xmm12, xmm8 movdqa xmm8, xmm13 psrld xmm13, 8 pslld xmm8, 24 pxor xmm13, xmm8 movdqa xmm8, xmm14 psrld xmm14, 8 pslld xmm8, 24 pxor xmm14, xmm8 movdqa xmm8, xmm15 psrld xmm15, 8 pslld xmm8, 24 pxor xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x40] paddd xmm1, xmmword ptr [rsp+0xB0] paddd xmm2, xmmword ptr [rsp+0x50] paddd xmm3, xmmword ptr [rsp+0x10] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 pshuflw xmm15, xmm15, 0xB1 pshufhw xmm15, xmm15, 0xB1 pshuflw xmm12, xmm12, 0xB1 pshufhw xmm12, xmm12, 0xB1 pshuflw xmm13, xmm13, 0xB1 pshufhw xmm13, xmm13, 0xB1 pshuflw xmm14, xmm14, 0xB1 pshufhw xmm14, xmm14, 0xB1 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp] paddd xmm1, xmmword ptr [rsp+0x20] paddd xmm2, xmmword ptr [rsp+0x80] paddd xmm3, xmmword ptr [rsp+0x60] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmm15 psrld xmm15, 8 pslld xmm8, 24 pxor xmm15, xmm8 movdqa xmm8, xmm12 psrld xmm12, 8 pslld xmm8, 24 pxor xmm12, xmm8 movdqa xmm8, xmm13 psrld xmm13, 8 pslld xmm8, 24 pxor xmm13, xmm8 movdqa xmm8, xmm14 psrld xmm14, 8 pslld xmm8, 24 pxor xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0xC0] paddd xmm1, xmmword ptr [rsp+0x90] paddd xmm2, xmmword ptr [rsp+0xF0] paddd xmm3, xmmword ptr [rsp+0xE0] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 pshuflw xmm12, xmm12, 0xB1 pshufhw xmm12, xmm12, 0xB1 pshuflw xmm13, xmm13, 0xB1 pshufhw xmm13, xmm13, 0xB1 pshuflw xmm14, xmm14, 0xB1 pshufhw xmm14, xmm14, 0xB1 pshuflw xmm15, xmm15, 0xB1 pshufhw xmm15, xmm15, 0xB1 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0xD0] paddd xmm1, xmmword ptr [rsp+0xB0] paddd xmm2, xmmword ptr [rsp+0xA0] paddd xmm3, xmmword ptr [rsp+0x80] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmm12 psrld xmm12, 8 pslld xmm8, 24 pxor xmm12, xmm8 movdqa xmm8, xmm13 psrld xmm13, 8 pslld xmm8, 24 pxor xmm13, xmm8 movdqa xmm8, xmm14 psrld xmm14, 8 pslld xmm8, 24 pxor xmm14, xmm8 movdqa xmm8, xmm15 psrld xmm15, 8 pslld xmm8, 24 pxor xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0x70] paddd xmm1, xmmword ptr [rsp+0x50] paddd xmm2, xmmword ptr [rsp] paddd xmm3, xmmword ptr [rsp+0x60] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 pshuflw xmm15, xmm15, 0xB1 pshufhw xmm15, xmm15, 0xB1 pshuflw xmm12, xmm12, 0xB1 pshufhw xmm12, xmm12, 0xB1 pshuflw xmm13, xmm13, 0xB1 pshufhw xmm13, xmm13, 0xB1 pshuflw xmm14, xmm14, 0xB1 pshufhw xmm14, xmm14, 0xB1 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0x20] paddd xmm1, xmmword ptr [rsp+0x30] paddd xmm2, xmmword ptr [rsp+0x10] paddd xmm3, xmmword ptr [rsp+0x40] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmm15 psrld xmm15, 8 pslld xmm8, 24 pxor xmm15, xmm8 movdqa xmm8, xmm12 psrld xmm12, 8 pslld xmm8, 24 pxor xmm12, xmm8 movdqa xmm8, xmm13 psrld xmm13, 8 pslld xmm8, 24 pxor xmm13, xmm8 movdqa xmm8, xmm14 psrld xmm14, 8 pslld xmm8, 24 pxor xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0x90] paddd xmm1, xmmword ptr [rsp+0xB0] paddd xmm2, xmmword ptr [rsp+0x80] paddd xmm3, xmmword ptr [rsp+0xF0] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 pshuflw xmm12, xmm12, 0xB1 pshufhw xmm12, xmm12, 0xB1 pshuflw xmm13, xmm13, 0xB1 pshufhw xmm13, xmm13, 0xB1 pshuflw xmm14, xmm14, 0xB1 pshufhw xmm14, xmm14, 0xB1 pshuflw xmm15, xmm15, 0xB1 pshufhw xmm15, xmm15, 0xB1 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0xE0] paddd xmm1, xmmword ptr [rsp+0x50] paddd xmm2, xmmword ptr [rsp+0xC0] paddd xmm3, xmmword ptr [rsp+0x10] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmm12 psrld xmm12, 8 pslld xmm8, 24 pxor xmm12, xmm8 movdqa xmm8, xmm13 psrld xmm13, 8 pslld xmm8, 24 pxor xmm13, xmm8 movdqa xmm8, xmm14 psrld xmm14, 8 pslld xmm8, 24 pxor xmm14, xmm8 movdqa xmm8, xmm15 psrld xmm15, 8 pslld xmm8, 24 pxor xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0xD0] paddd xmm1, xmmword ptr [rsp] paddd xmm2, xmmword ptr [rsp+0x20] paddd xmm3, xmmword ptr [rsp+0x40] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 pshuflw xmm15, xmm15, 0xB1 pshufhw xmm15, xmm15, 0xB1 pshuflw xmm12, xmm12, 0xB1 pshufhw xmm12, xmm12, 0xB1 pshuflw xmm13, xmm13, 0xB1 pshufhw xmm13, xmm13, 0xB1 pshuflw xmm14, xmm14, 0xB1 pshufhw xmm14, xmm14, 0xB1 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0x30] paddd xmm1, xmmword ptr [rsp+0xA0] paddd xmm2, xmmword ptr [rsp+0x60] paddd xmm3, xmmword ptr [rsp+0x70] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmm15 psrld xmm15, 8 pslld xmm8, 24 pxor xmm15, xmm8 movdqa xmm8, xmm12 psrld xmm12, 8 pslld xmm8, 24 pxor xmm12, xmm8 movdqa xmm8, xmm13 psrld xmm13, 8 pslld xmm8, 24 pxor xmm13, xmm8 movdqa xmm8, xmm14 psrld xmm14, 8 pslld xmm8, 24 pxor xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0xB0] paddd xmm1, xmmword ptr [rsp+0x50] paddd xmm2, xmmword ptr [rsp+0x10] paddd xmm3, xmmword ptr [rsp+0x80] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 pshuflw xmm12, xmm12, 0xB1 pshufhw xmm12, xmm12, 0xB1 pshuflw xmm13, xmm13, 0xB1 pshufhw xmm13, xmm13, 0xB1 pshuflw xmm14, xmm14, 0xB1 pshufhw xmm14, xmm14, 0xB1 pshuflw xmm15, xmm15, 0xB1 pshufhw xmm15, xmm15, 0xB1 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0xF0] paddd xmm1, xmmword ptr [rsp] paddd xmm2, xmmword ptr [rsp+0x90] paddd xmm3, xmmword ptr [rsp+0x60] paddd xmm0, xmm4 paddd xmm1, xmm5 paddd xmm2, xmm6 paddd xmm3, xmm7 pxor xmm12, xmm0 pxor xmm13, xmm1 pxor xmm14, xmm2 pxor xmm15, xmm3 movdqa xmm8, xmm12 psrld xmm12, 8 pslld xmm8, 24 pxor xmm12, xmm8 movdqa xmm8, xmm13 psrld xmm13, 8 pslld xmm8, 24 pxor xmm13, xmm8 movdqa xmm8, xmm14 psrld xmm14, 8 pslld xmm8, 24 pxor xmm14, xmm8 movdqa xmm8, xmm15 psrld xmm15, 8 pslld xmm8, 24 pxor xmm15, xmm8 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm12 paddd xmm9, xmm13 paddd xmm10, xmm14 paddd xmm11, xmm15 pxor xmm4, xmm8 pxor xmm5, xmm9 pxor xmm6, xmm10 pxor xmm7, xmm11 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 paddd xmm0, xmmword ptr [rsp+0xE0] paddd xmm1, xmmword ptr [rsp+0x20] paddd xmm2, xmmword ptr [rsp+0x30] paddd xmm3, xmmword ptr [rsp+0x70] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 pshuflw xmm15, xmm15, 0xB1 pshufhw xmm15, xmm15, 0xB1 pshuflw xmm12, xmm12, 0xB1 pshufhw xmm12, xmm12, 0xB1 pshuflw xmm13, xmm13, 0xB1 pshufhw xmm13, xmm13, 0xB1 pshuflw xmm14, xmm14, 0xB1 pshufhw xmm14, xmm14, 0xB1 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 movdqa xmmword ptr [rsp+0x100], xmm8 movdqa xmm8, xmm5 psrld xmm8, 12 pslld xmm5, 20 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 12 pslld xmm6, 20 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 12 pslld xmm7, 20 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 12 pslld xmm4, 20 por xmm4, xmm8 paddd xmm0, xmmword ptr [rsp+0xA0] paddd xmm1, xmmword ptr [rsp+0xC0] paddd xmm2, xmmword ptr [rsp+0x40] paddd xmm3, xmmword ptr [rsp+0xD0] paddd xmm0, xmm5 paddd xmm1, xmm6 paddd xmm2, xmm7 paddd xmm3, xmm4 pxor xmm15, xmm0 pxor xmm12, xmm1 pxor xmm13, xmm2 pxor xmm14, xmm3 movdqa xmm8, xmm15 psrld xmm15, 8 pslld xmm8, 24 pxor xmm15, xmm8 movdqa xmm8, xmm12 psrld xmm12, 8 pslld xmm8, 24 pxor xmm12, xmm8 movdqa xmm8, xmm13 psrld xmm13, 8 pslld xmm8, 24 pxor xmm13, xmm8 movdqa xmm8, xmm14 psrld xmm14, 8 pslld xmm8, 24 pxor xmm14, xmm8 paddd xmm10, xmm15 paddd xmm11, xmm12 movdqa xmm8, xmmword ptr [rsp+0x100] paddd xmm8, xmm13 paddd xmm9, xmm14 pxor xmm5, xmm10 pxor xmm6, xmm11 pxor xmm7, xmm8 pxor xmm4, xmm9 pxor xmm0, xmm8 pxor xmm1, xmm9 pxor xmm2, xmm10 pxor xmm3, xmm11 movdqa xmm8, xmm5 psrld xmm8, 7 pslld xmm5, 25 por xmm5, xmm8 movdqa xmm8, xmm6 psrld xmm8, 7 pslld xmm6, 25 por xmm6, xmm8 movdqa xmm8, xmm7 psrld xmm8, 7 pslld xmm7, 25 por xmm7, xmm8 movdqa xmm8, xmm4 psrld xmm8, 7 pslld xmm4, 25 por xmm4, xmm8 pxor xmm4, xmm12 pxor xmm5, xmm13 pxor xmm6, xmm14 pxor xmm7, xmm15 mov eax, r13d jne 9b movdqa xmm9, xmm0 punpckldq xmm0, xmm1 punpckhdq xmm9, xmm1 movdqa xmm11, xmm2 punpckldq xmm2, xmm3 punpckhdq xmm11, xmm3 movdqa xmm1, xmm0 punpcklqdq xmm0, xmm2 punpckhqdq xmm1, xmm2 movdqa xmm3, xmm9 punpcklqdq xmm9, xmm11 punpckhqdq xmm3, xmm11 movdqu xmmword ptr [rbx], xmm0 movdqu xmmword ptr [rbx+0x20], xmm1 movdqu xmmword ptr [rbx+0x40], xmm9 movdqu xmmword ptr [rbx+0x60], xmm3 movdqa xmm9, xmm4 punpckldq xmm4, xmm5 punpckhdq xmm9, xmm5 movdqa xmm11, xmm6 punpckldq xmm6, xmm7 punpckhdq xmm11, xmm7 movdqa xmm5, xmm4 punpcklqdq xmm4, xmm6 punpckhqdq xmm5, xmm6 movdqa xmm7, xmm9 punpcklqdq xmm9, xmm11 punpckhqdq xmm7, xmm11 movdqu xmmword ptr [rbx+0x10], xmm4 movdqu xmmword ptr [rbx+0x30], xmm5 movdqu xmmword ptr [rbx+0x50], xmm9 movdqu xmmword ptr [rbx+0x70], xmm7 movdqa xmm1, xmmword ptr [rsp+0x110] movdqa xmm0, xmm1 paddd xmm1, xmmword ptr [rsp+0x150] movdqa xmmword ptr [rsp+0x110], xmm1 pxor xmm0, xmmword ptr [CMP_MSB_MASK+rip] pxor xmm1, xmmword ptr [CMP_MSB_MASK+rip] pcmpgtd xmm0, xmm1 movdqa xmm1, xmmword ptr [rsp+0x120] psubd xmm1, xmm0 movdqa xmmword ptr [rsp+0x120], xmm1 add rbx, 128 add rdi, 32 sub rsi, 4 cmp rsi, 4 jnc 2b test rsi, rsi jnz 3f 4: mov rsp, rbp pop rbp pop rbx pop r12 pop r13 pop r14 pop r15 ret .p2align 5 3: test esi, 0x2 je 3f movups xmm0, xmmword ptr [rcx] movups xmm1, xmmword ptr [rcx+0x10] movaps xmm8, xmm0 movaps xmm9, xmm1 movd xmm13, dword ptr [rsp+0x110] movd xmm14, dword ptr [rsp+0x120] punpckldq xmm13, xmm14 movaps xmmword ptr [rsp], xmm13 movd xmm14, dword ptr [rsp+0x114] movd xmm13, dword ptr [rsp+0x124] punpckldq xmm14, xmm13 movaps xmmword ptr [rsp+0x10], xmm14 mov r8, qword ptr [rdi] mov r9, qword ptr [rdi+0x8] movzx eax, byte ptr [rbp+0x40] or eax, r13d xor edx, edx 2: mov r14d, eax or eax, r12d add rdx, 64 cmp rdx, r15 cmovne eax, r14d movaps xmm2, xmmword ptr [BLAKE3_IV+rip] movaps xmm10, xmm2 movups xmm4, xmmword ptr [r8+rdx-0x40] movups xmm5, xmmword ptr [r8+rdx-0x30] movaps xmm3, xmm4 shufps xmm4, xmm5, 136 shufps xmm3, xmm5, 221 movaps xmm5, xmm3 movups xmm6, xmmword ptr [r8+rdx-0x20] movups xmm7, xmmword ptr [r8+rdx-0x10] movaps xmm3, xmm6 shufps xmm6, xmm7, 136 pshufd xmm6, xmm6, 0x93 shufps xmm3, xmm7, 221 pshufd xmm7, xmm3, 0x93 movups xmm12, xmmword ptr [r9+rdx-0x40] movups xmm13, xmmword ptr [r9+rdx-0x30] movaps xmm11, xmm12 shufps xmm12, xmm13, 136 shufps xmm11, xmm13, 221 movaps xmm13, xmm11 movups xmm14, xmmword ptr [r9+rdx-0x20] movups xmm15, xmmword ptr [r9+rdx-0x10] movaps xmm11, xmm14 shufps xmm14, xmm15, 136 pshufd xmm14, xmm14, 0x93 shufps xmm11, xmm15, 221 pshufd xmm15, xmm11, 0x93 shl rax, 0x20 or rax, 0x40 movq xmm3, rax movdqa xmmword ptr [rsp+0x20], xmm3 movaps xmm3, xmmword ptr [rsp] movaps xmm11, xmmword ptr [rsp+0x10] punpcklqdq xmm3, xmmword ptr [rsp+0x20] punpcklqdq xmm11, xmmword ptr [rsp+0x20] mov al, 7 9: paddd xmm0, xmm4 paddd xmm8, xmm12 movaps xmmword ptr [rsp+0x20], xmm4 movaps xmmword ptr [rsp+0x30], xmm12 paddd xmm0, xmm1 paddd xmm8, xmm9 pxor xmm3, xmm0 pxor xmm11, xmm8 pshuflw xmm3, xmm3, 0xB1 pshufhw xmm3, xmm3, 0xB1 pshuflw xmm11, xmm11, 0xB1 pshufhw xmm11, xmm11, 0xB1 paddd xmm2, xmm3 paddd xmm10, xmm11 pxor xmm1, xmm2 pxor xmm9, xmm10 movdqa xmm4, xmm1 pslld xmm1, 20 psrld xmm4, 12 por xmm1, xmm4 movdqa xmm4, xmm9 pslld xmm9, 20 psrld xmm4, 12 por xmm9, xmm4 paddd xmm0, xmm5 paddd xmm8, xmm13 movaps xmmword ptr [rsp+0x40], xmm5 movaps xmmword ptr [rsp+0x50], xmm13 paddd xmm0, xmm1 paddd xmm8, xmm9 pxor xmm3, xmm0 pxor xmm11, xmm8 movdqa xmm13, xmm3 psrld xmm3, 8 pslld xmm13, 24 pxor xmm3, xmm13 movdqa xmm13, xmm11 psrld xmm11, 8 pslld xmm13, 24 pxor xmm11, xmm13 paddd xmm2, xmm3 paddd xmm10, xmm11 pxor xmm1, xmm2 pxor xmm9, xmm10 movdqa xmm4, xmm1 pslld xmm1, 25 psrld xmm4, 7 por xmm1, xmm4 movdqa xmm4, xmm9 pslld xmm9, 25 psrld xmm4, 7 por xmm9, xmm4 pshufd xmm0, xmm0, 0x93 pshufd xmm8, xmm8, 0x93 pshufd xmm3, xmm3, 0x4E pshufd xmm11, xmm11, 0x4E pshufd xmm2, xmm2, 0x39 pshufd xmm10, xmm10, 0x39 paddd xmm0, xmm6 paddd xmm8, xmm14 paddd xmm0, xmm1 paddd xmm8, xmm9 pxor xmm3, xmm0 pxor xmm11, xmm8 pshuflw xmm3, xmm3, 0xB1 pshufhw xmm3, xmm3, 0xB1 pshuflw xmm11, xmm11, 0xB1 pshufhw xmm11, xmm11, 0xB1 paddd xmm2, xmm3 paddd xmm10, xmm11 pxor xmm1, xmm2 pxor xmm9, xmm10 movdqa xmm4, xmm1 pslld xmm1, 20 psrld xmm4, 12 por xmm1, xmm4 movdqa xmm4, xmm9 pslld xmm9, 20 psrld xmm4, 12 por xmm9, xmm4 paddd xmm0, xmm7 paddd xmm8, xmm15 paddd xmm0, xmm1 paddd xmm8, xmm9 pxor xmm3, xmm0 pxor xmm11, xmm8 movdqa xmm13, xmm3 psrld xmm3, 8 pslld xmm13, 24 pxor xmm3, xmm13 movdqa xmm13, xmm11 psrld xmm11, 8 pslld xmm13, 24 pxor xmm11, xmm13 paddd xmm2, xmm3 paddd xmm10, xmm11 pxor xmm1, xmm2 pxor xmm9, xmm10 movdqa xmm4, xmm1 pslld xmm1, 25 psrld xmm4, 7 por xmm1, xmm4 movdqa xmm4, xmm9 pslld xmm9, 25 psrld xmm4, 7 por xmm9, xmm4 pshufd xmm0, xmm0, 0x39 pshufd xmm8, xmm8, 0x39 pshufd xmm3, xmm3, 0x4E pshufd xmm11, xmm11, 0x4E pshufd xmm2, xmm2, 0x93 pshufd xmm10, xmm10, 0x93 dec al je 9f movdqa xmm12, xmmword ptr [rsp+0x20] movdqa xmm5, xmmword ptr [rsp+0x40] pshufd xmm13, xmm12, 0x0F shufps xmm12, xmm5, 214 pshufd xmm4, xmm12, 0x39 movdqa xmm12, xmm6 shufps xmm12, xmm7, 250 pand xmm13, xmmword ptr [PBLENDW_0x33_MASK+rip] pand xmm12, xmmword ptr [PBLENDW_0xCC_MASK+rip] por xmm13, xmm12 movdqa xmmword ptr [rsp+0x20], xmm13 movdqa xmm12, xmm7 punpcklqdq xmm12, xmm5 movdqa xmm13, xmm6 pand xmm12, xmmword ptr [PBLENDW_0x3F_MASK+rip] pand xmm13, xmmword ptr [PBLENDW_0xC0_MASK+rip] por xmm12, xmm13 pshufd xmm12, xmm12, 0x78 punpckhdq xmm5, xmm7 punpckldq xmm6, xmm5 pshufd xmm7, xmm6, 0x1E movdqa xmmword ptr [rsp+0x40], xmm12 movdqa xmm5, xmmword ptr [rsp+0x30] movdqa xmm13, xmmword ptr [rsp+0x50] pshufd xmm6, xmm5, 0x0F shufps xmm5, xmm13, 214 pshufd xmm12, xmm5, 0x39 movdqa xmm5, xmm14 shufps xmm5, xmm15, 250 pand xmm6, xmmword ptr [PBLENDW_0x33_MASK+rip] pand xmm5, xmmword ptr [PBLENDW_0xCC_MASK+rip] por xmm6, xmm5 movdqa xmm5, xmm15 punpcklqdq xmm5, xmm13 movdqa xmmword ptr [rsp+0x30], xmm2 movdqa xmm2, xmm14 pand xmm5, xmmword ptr [PBLENDW_0x3F_MASK+rip] pand xmm2, xmmword ptr [PBLENDW_0xC0_MASK+rip] por xmm5, xmm2 movdqa xmm2, xmmword ptr [rsp+0x30] pshufd xmm5, xmm5, 0x78 punpckhdq xmm13, xmm15 punpckldq xmm14, xmm13 pshufd xmm15, xmm14, 0x1E movdqa xmm13, xmm6 movdqa xmm14, xmm5 movdqa xmm5, xmmword ptr [rsp+0x20] movdqa xmm6, xmmword ptr [rsp+0x40] jmp 9b 9: pxor xmm0, xmm2 pxor xmm1, xmm3 pxor xmm8, xmm10 pxor xmm9, xmm11 mov eax, r13d cmp rdx, r15 jne 2b movups xmmword ptr [rbx], xmm0 movups xmmword ptr [rbx+0x10], xmm1 movups xmmword ptr [rbx+0x20], xmm8 movups xmmword ptr [rbx+0x30], xmm9 mov eax, dword ptr [rsp+0x130] neg eax mov r10d, dword ptr [rsp+0x110+8*rax] mov r11d, dword ptr [rsp+0x120+8*rax] mov dword ptr [rsp+0x110], r10d mov dword ptr [rsp+0x120], r11d add rdi, 16 add rbx, 64 sub rsi, 2 3: test esi, 0x1 je 4b movups xmm0, xmmword ptr [rcx] movups xmm1, xmmword ptr [rcx+0x10] movd xmm13, dword ptr [rsp+0x110] movd xmm14, dword ptr [rsp+0x120] punpckldq xmm13, xmm14 mov r8, qword ptr [rdi] movzx eax, byte ptr [rbp+0x40] or eax, r13d xor edx, edx 2: mov r14d, eax or eax, r12d add rdx, 64 cmp rdx, r15 cmovne eax, r14d movaps xmm2, xmmword ptr [BLAKE3_IV+rip] shl rax, 32 or rax, 64 movq xmm12, rax movdqa xmm3, xmm13 punpcklqdq xmm3, xmm12 movups xmm4, xmmword ptr [r8+rdx-0x40] movups xmm5, xmmword ptr [r8+rdx-0x30] movaps xmm8, xmm4 shufps xmm4, xmm5, 136 shufps xmm8, xmm5, 221 movaps xmm5, xmm8 movups xmm6, xmmword ptr [r8+rdx-0x20] movups xmm7, xmmword ptr [r8+rdx-0x10] movaps xmm8, xmm6 shufps xmm6, xmm7, 136 pshufd xmm6, xmm6, 0x93 shufps xmm8, xmm7, 221 pshufd xmm7, xmm8, 0x93 mov al, 7 9: paddd xmm0, xmm4 paddd xmm0, xmm1 pxor xmm3, xmm0 pshuflw xmm3, xmm3, 0xB1 pshufhw xmm3, xmm3, 0xB1 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 20 psrld xmm11, 12 por xmm1, xmm11 paddd xmm0, xmm5 paddd xmm0, xmm1 pxor xmm3, xmm0 movdqa xmm14, xmm3 psrld xmm3, 8 pslld xmm14, 24 pxor xmm3, xmm14 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 25 psrld xmm11, 7 por xmm1, xmm11 pshufd xmm0, xmm0, 0x93 pshufd xmm3, xmm3, 0x4E pshufd xmm2, xmm2, 0x39 paddd xmm0, xmm6 paddd xmm0, xmm1 pxor xmm3, xmm0 pshuflw xmm3, xmm3, 0xB1 pshufhw xmm3, xmm3, 0xB1 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 20 psrld xmm11, 12 por xmm1, xmm11 paddd xmm0, xmm7 paddd xmm0, xmm1 pxor xmm3, xmm0 movdqa xmm14, xmm3 psrld xmm3, 8 pslld xmm14, 24 pxor xmm3, xmm14 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 25 psrld xmm11, 7 por xmm1, xmm11 pshufd xmm0, xmm0, 0x39 pshufd xmm3, xmm3, 0x4E pshufd xmm2, xmm2, 0x93 dec al jz 9f movdqa xmm8, xmm4 shufps xmm8, xmm5, 214 pshufd xmm9, xmm4, 0x0F pshufd xmm4, xmm8, 0x39 movdqa xmm8, xmm6 shufps xmm8, xmm7, 250 pand xmm9, xmmword ptr [PBLENDW_0x33_MASK+rip] pand xmm8, xmmword ptr [PBLENDW_0xCC_MASK+rip] por xmm9, xmm8 movdqa xmm8, xmm7 punpcklqdq xmm8, xmm5 movdqa xmm10, xmm6 pand xmm8, xmmword ptr [PBLENDW_0x3F_MASK+rip] pand xmm10, xmmword ptr [PBLENDW_0xC0_MASK+rip] por xmm8, xmm10 pshufd xmm8, xmm8, 0x78 punpckhdq xmm5, xmm7 punpckldq xmm6, xmm5 pshufd xmm7, xmm6, 0x1E movdqa xmm5, xmm9 movdqa xmm6, xmm8 jmp 9b 9: pxor xmm0, xmm2 pxor xmm1, xmm3 mov eax, r13d cmp rdx, r15 jne 2b movups xmmword ptr [rbx], xmm0 movups xmmword ptr [rbx+0x10], xmm1 jmp 4b .p2align 6 blake3_compress_in_place_sse2: _blake3_compress_in_place_sse2: _CET_ENDBR movups xmm0, xmmword ptr [rdi] movups xmm1, xmmword ptr [rdi+0x10] movaps xmm2, xmmword ptr [BLAKE3_IV+rip] shl r8, 32 add rdx, r8 movq xmm3, rcx movq xmm4, rdx punpcklqdq xmm3, xmm4 movups xmm4, xmmword ptr [rsi] movups xmm5, xmmword ptr [rsi+0x10] movaps xmm8, xmm4 shufps xmm4, xmm5, 136 shufps xmm8, xmm5, 221 movaps xmm5, xmm8 movups xmm6, xmmword ptr [rsi+0x20] movups xmm7, xmmword ptr [rsi+0x30] movaps xmm8, xmm6 shufps xmm6, xmm7, 136 pshufd xmm6, xmm6, 0x93 shufps xmm8, xmm7, 221 pshufd xmm7, xmm8, 0x93 mov al, 7 9: paddd xmm0, xmm4 paddd xmm0, xmm1 pxor xmm3, xmm0 pshuflw xmm3, xmm3, 0xB1 pshufhw xmm3, xmm3, 0xB1 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 20 psrld xmm11, 12 por xmm1, xmm11 paddd xmm0, xmm5 paddd xmm0, xmm1 pxor xmm3, xmm0 movdqa xmm14, xmm3 psrld xmm3, 8 pslld xmm14, 24 pxor xmm3, xmm14 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 25 psrld xmm11, 7 por xmm1, xmm11 pshufd xmm0, xmm0, 0x93 pshufd xmm3, xmm3, 0x4E pshufd xmm2, xmm2, 0x39 paddd xmm0, xmm6 paddd xmm0, xmm1 pxor xmm3, xmm0 pshuflw xmm3, xmm3, 0xB1 pshufhw xmm3, xmm3, 0xB1 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 20 psrld xmm11, 12 por xmm1, xmm11 paddd xmm0, xmm7 paddd xmm0, xmm1 pxor xmm3, xmm0 movdqa xmm14, xmm3 psrld xmm3, 8 pslld xmm14, 24 pxor xmm3, xmm14 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 25 psrld xmm11, 7 por xmm1, xmm11 pshufd xmm0, xmm0, 0x39 pshufd xmm3, xmm3, 0x4E pshufd xmm2, xmm2, 0x93 dec al jz 9f movdqa xmm8, xmm4 shufps xmm8, xmm5, 214 pshufd xmm9, xmm4, 0x0F pshufd xmm4, xmm8, 0x39 movdqa xmm8, xmm6 shufps xmm8, xmm7, 250 pand xmm9, xmmword ptr [PBLENDW_0x33_MASK+rip] pand xmm8, xmmword ptr [PBLENDW_0xCC_MASK+rip] por xmm9, xmm8 movdqa xmm8, xmm7 punpcklqdq xmm8, xmm5 movdqa xmm10, xmm6 pand xmm8, xmmword ptr [PBLENDW_0x3F_MASK+rip] pand xmm10, xmmword ptr [PBLENDW_0xC0_MASK+rip] por xmm8, xmm10 pshufd xmm8, xmm8, 0x78 punpckhdq xmm5, xmm7 punpckldq xmm6, xmm5 pshufd xmm7, xmm6, 0x1E movdqa xmm5, xmm9 movdqa xmm6, xmm8 jmp 9b 9: pxor xmm0, xmm2 pxor xmm1, xmm3 movups xmmword ptr [rdi], xmm0 movups xmmword ptr [rdi+0x10], xmm1 ret .p2align 6 blake3_compress_xof_sse2: _blake3_compress_xof_sse2: _CET_ENDBR movups xmm0, xmmword ptr [rdi] movups xmm1, xmmword ptr [rdi+0x10] movaps xmm2, xmmword ptr [BLAKE3_IV+rip] movzx eax, r8b movzx edx, dl shl rax, 32 add rdx, rax movq xmm3, rcx movq xmm4, rdx punpcklqdq xmm3, xmm4 movups xmm4, xmmword ptr [rsi] movups xmm5, xmmword ptr [rsi+0x10] movaps xmm8, xmm4 shufps xmm4, xmm5, 136 shufps xmm8, xmm5, 221 movaps xmm5, xmm8 movups xmm6, xmmword ptr [rsi+0x20] movups xmm7, xmmword ptr [rsi+0x30] movaps xmm8, xmm6 shufps xmm6, xmm7, 136 pshufd xmm6, xmm6, 0x93 shufps xmm8, xmm7, 221 pshufd xmm7, xmm8, 0x93 mov al, 7 9: paddd xmm0, xmm4 paddd xmm0, xmm1 pxor xmm3, xmm0 pshuflw xmm3, xmm3, 0xB1 pshufhw xmm3, xmm3, 0xB1 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 20 psrld xmm11, 12 por xmm1, xmm11 paddd xmm0, xmm5 paddd xmm0, xmm1 pxor xmm3, xmm0 movdqa xmm14, xmm3 psrld xmm3, 8 pslld xmm14, 24 pxor xmm3, xmm14 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 25 psrld xmm11, 7 por xmm1, xmm11 pshufd xmm0, xmm0, 0x93 pshufd xmm3, xmm3, 0x4E pshufd xmm2, xmm2, 0x39 paddd xmm0, xmm6 paddd xmm0, xmm1 pxor xmm3, xmm0 pshuflw xmm3, xmm3, 0xB1 pshufhw xmm3, xmm3, 0xB1 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 20 psrld xmm11, 12 por xmm1, xmm11 paddd xmm0, xmm7 paddd xmm0, xmm1 pxor xmm3, xmm0 movdqa xmm14, xmm3 psrld xmm3, 8 pslld xmm14, 24 pxor xmm3, xmm14 paddd xmm2, xmm3 pxor xmm1, xmm2 movdqa xmm11, xmm1 pslld xmm1, 25 psrld xmm11, 7 por xmm1, xmm11 pshufd xmm0, xmm0, 0x39 pshufd xmm3, xmm3, 0x4E pshufd xmm2, xmm2, 0x93 dec al jz 9f movdqa xmm8, xmm4 shufps xmm8, xmm5, 214 pshufd xmm9, xmm4, 0x0F pshufd xmm4, xmm8, 0x39 movdqa xmm8, xmm6 shufps xmm8, xmm7, 250 pand xmm9, xmmword ptr [PBLENDW_0x33_MASK+rip] pand xmm8, xmmword ptr [PBLENDW_0xCC_MASK+rip] por xmm9, xmm8 movdqa xmm8, xmm7 punpcklqdq xmm8, xmm5 movdqa xmm10, xmm6 pand xmm8, xmmword ptr [PBLENDW_0x3F_MASK+rip] pand xmm10, xmmword ptr [PBLENDW_0xC0_MASK+rip] por xmm8, xmm10 pshufd xmm8, xmm8, 0x78 punpckhdq xmm5, xmm7 punpckldq xmm6, xmm5 pshufd xmm7, xmm6, 0x1E movdqa xmm5, xmm9 movdqa xmm6, xmm8 jmp 9b 9: movdqu xmm4, xmmword ptr [rdi] movdqu xmm5, xmmword ptr [rdi+0x10] pxor xmm0, xmm2 pxor xmm1, xmm3 pxor xmm2, xmm4 pxor xmm3, xmm5 movups xmmword ptr [r9], xmm0 movups xmmword ptr [r9+0x10], xmm1 movups xmmword ptr [r9+0x20], xmm2 movups xmmword ptr [r9+0x30], xmm3 ret #ifdef __APPLE__ .static_data #else .section .rodata #endif .p2align 6 BLAKE3_IV: .long 0x6A09E667, 0xBB67AE85 .long 0x3C6EF372, 0xA54FF53A ADD0: .long 0, 1, 2, 3 ADD1: .long 4, 4, 4, 4 BLAKE3_IV_0: .long 0x6A09E667, 0x6A09E667, 0x6A09E667, 0x6A09E667 BLAKE3_IV_1: .long 0xBB67AE85, 0xBB67AE85, 0xBB67AE85, 0xBB67AE85 BLAKE3_IV_2: .long 0x3C6EF372, 0x3C6EF372, 0x3C6EF372, 0x3C6EF372 BLAKE3_IV_3: .long 0xA54FF53A, 0xA54FF53A, 0xA54FF53A, 0xA54FF53A BLAKE3_BLOCK_LEN: .long 64, 64, 64, 64 CMP_MSB_MASK: .long 0x80000000, 0x80000000, 0x80000000, 0x80000000 PBLENDW_0x33_MASK: .long 0xFFFFFFFF, 0x00000000, 0xFFFFFFFF, 0x00000000 PBLENDW_0xCC_MASK: .long 0x00000000, 0xFFFFFFFF, 0x00000000, 0xFFFFFFFF PBLENDW_0x3F_MASK: .long 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0x00000000 PBLENDW_0xC0_MASK: .long 0x00000000, 0x00000000, 0x00000000, 0xFFFFFFFF
mmcloughlin/arrival
4,165
crates/fiber/src/unix/s390x.S
// A WORD OF CAUTION // // This entire file basically needs to be kept in sync with itself. It's not // really possible to modify just one bit of this file without understanding // all the other bits. Documentation tries to reference various bits here and // there but try to make sure to read over everything before tweaking things! // // Also at this time this file is heavily based off the x86_64 file, so you'll // probably want to read that one as well. .text #define CONCAT2(a, b) a ## b #define CONCAT(a, b) CONCAT2(a , b) #define VERSIONED_SYMBOL(a) CONCAT(a, VERSIONED_SUFFIX) #define GLOBL(fnname) .globl VERSIONED_SYMBOL(fnname) #define HIDDEN(fnname) .hidden VERSIONED_SYMBOL(fnname) #define TYPE(fnname) .type VERSIONED_SYMBOL(fnname),@function #define FUNCTION(fnname) VERSIONED_SYMBOL(fnname) #define SIZE(fnname) .size VERSIONED_SYMBOL(fnname),.-VERSIONED_SYMBOL(fnname) // fn(top_of_stack(%x0): *mut u8) HIDDEN(wasmtime_fiber_switch) GLOBL(wasmtime_fiber_switch) .p2align 2 TYPE(wasmtime_fiber_switch) FUNCTION(wasmtime_fiber_switch): // Save all callee-saved registers on the stack since we're assuming // they're clobbered as a result of the stack switch. stmg %r6, %r15, 48(%r15) aghi %r15, -64 std %f8, 0(%r15) std %f9, 8(%r15) std %f10, 16(%r15) std %f11, 24(%r15) std %f12, 32(%r15) std %f13, 40(%r15) std %f14, 48(%r15) std %f15, 56(%r15) // Load our previously saved stack pointer to resume to, and save off our // current stack pointer on where to come back to eventually. lg %r1, -16(%r2) stg %r15, -16(%r2) // Switch to the new stack and restore all our callee-saved registers after // the switch and return to our new stack. ld %f8, 0(%r1) ld %f9, 8(%r1) ld %f10, 16(%r1) ld %f11, 24(%r1) ld %f12, 32(%r1) ld %f13, 40(%r1) ld %f14, 48(%r1) ld %f15, 56(%r1) lmg %r6, %r15, 112(%r1) br %r14 SIZE(wasmtime_fiber_switch) // fn( // top_of_stack(%x0): *mut u8, // entry_point(%x1): extern fn(*mut u8, *mut u8), // entry_arg0(%x2): *mut u8, // ) HIDDEN(wasmtime_fiber_init) GLOBL(wasmtime_fiber_init) .p2align 2 TYPE(wasmtime_fiber_init) FUNCTION(wasmtime_fiber_init): larl %r1, FUNCTION(wasmtime_fiber_start) stg %r1, -48(%r2) // wasmtime_fiber_start - restored into %r14 stg %r2, -112(%r2) // top_of_stack - restored into %r6 stg %r3, -104(%r2) // entry_point - restored into %r7 stg %r4, -96(%r2) // entry_arg0 - restored into %r8 aghi %r2, -160 // 160 bytes register save area stg %r2, 120(%r2) // bottom of register save area - restored into %r15 // `wasmtime_fiber_switch` has a 64 byte stack. aghi %r2, -64 stg %r2, 208(%r2) br %r14 SIZE(wasmtime_fiber_init) .p2align 2 TYPE(wasmtime_fiber_start) FUNCTION(wasmtime_fiber_start): .cfi_startproc simple .cfi_def_cfa_offset 0 // See the x86_64 file for more commentary on what these CFI directives are // doing. Like over there note that the relative offsets to registers here // match the frame layout in `wasmtime_fiber_switch`. .cfi_escape 0x0f, /* DW_CFA_def_cfa_expression */ \ 7, /* the byte length of this expression */ \ 0x7f, 0x90, 0x1, /* DW_OP_breg15 0x90 */ \ 0x06, /* DW_OP_deref */ \ 0x23, 0xe0, 0x1 /* DW_OP_plus_uconst 0xe0 */ .cfi_rel_offset 6, -112 .cfi_rel_offset 7, -104 .cfi_rel_offset 8, -96 .cfi_rel_offset 9, -88 .cfi_rel_offset 10, -80 .cfi_rel_offset 11, -72 .cfi_rel_offset 12, -64 .cfi_rel_offset 13, -56 .cfi_rel_offset 14, -48 .cfi_rel_offset 15, -40 // Load our two arguments prepared by `wasmtime_fiber_init`. lgr %r2, %r8 // entry_arg0 lgr %r3, %r6 // top_of_stack // ... and then we call the function! Note that this is a function call so // our frame stays on the stack to backtrace through. basr %r14, %r7 // entry_point // .. technically we shouldn't get here, so just trap. .word 0x0000 .cfi_endproc SIZE(wasmtime_fiber_start) // Mark that we don't need executable stack. .section .note.GNU-stack,"",%progbits
mmcloughlin/arrival
4,052
crates/wasmtime/src/runtime/vm/arch/s390x.S
// Currently `global_asm!` isn't stable on s390x, so this is an external // assembler file built with the `build.rs`. .machine z13 .text .hidden host_to_wasm_trampoline .globl host_to_wasm_trampoline .type host_to_wasm_trampoline,@function .p2align 2 #define CONCAT2(a, b) a ## b #define CONCAT(a, b) CONCAT2(a , b) #define VERSIONED_SYMBOL(a) CONCAT(a, VERSIONED_SUFFIX) #define LIBCALL_TRAMPOLINE(libcall, libcall_impl) \ .hidden VERSIONED_SYMBOL(libcall) ; \ .globl VERSIONED_SYMBOL(libcall) ; \ .type VERSIONED_SYMBOL(libcall),@function ; \ .p2align 2 ; \ VERSIONED_SYMBOL(libcall): ; \ .cfi_startproc ; \ \ /* Load the pointer to `VMRuntimeLimits` in `%r1`. */ \ lg %r1, 8(%r2) ; \ \ /* Store the last Wasm FP into the `last_wasm_exit_fp` in the limits. */ \ lg %r0, 0(%r15) ; \ stg %r0, 24(%r1) ; \ \ /* Store the last Wasm PC into the `last_wasm_exit_pc` in the limits. */ \ stg %r14, 32(%r1) ; \ \ /* Tail call to the actual implementation of this libcall. */ \ jg VERSIONED_SYMBOL(libcall_impl) ; \ \ .cfi_endproc ; \ .size VERSIONED_SYMBOL(libcall),.-VERSIONED_SYMBOL(libcall) LIBCALL_TRAMPOLINE(memory32_grow, impl_memory32_grow) LIBCALL_TRAMPOLINE(table_grow_func_ref, impl_table_grow_func_ref) LIBCALL_TRAMPOLINE(table_grow_externref, impl_table_grow_externref) LIBCALL_TRAMPOLINE(table_fill_func_ref, impl_table_fill_func_ref) LIBCALL_TRAMPOLINE(table_fill_externref, impl_table_fill_externref) LIBCALL_TRAMPOLINE(table_copy, impl_table_copy) LIBCALL_TRAMPOLINE(table_init, impl_table_init) LIBCALL_TRAMPOLINE(elem_drop, impl_elem_drop) LIBCALL_TRAMPOLINE(memory_copy, impl_memory_copy) LIBCALL_TRAMPOLINE(memory_fill, impl_memory_fill) LIBCALL_TRAMPOLINE(memory_init, impl_memory_init) LIBCALL_TRAMPOLINE(ref_func, impl_ref_func) LIBCALL_TRAMPOLINE(data_drop, impl_data_drop) LIBCALL_TRAMPOLINE(table_get_lazy_init_func_ref, impl_table_get_lazy_init_func_ref) LIBCALL_TRAMPOLINE(drop_gc_ref, impl_drop_gc_ref) LIBCALL_TRAMPOLINE(gc, gc) LIBCALL_TRAMPOLINE(gc_ref_global_get, impl_gc_ref_global_get) LIBCALL_TRAMPOLINE(gc_ref_global_set, impl_gc_ref_global_set) LIBCALL_TRAMPOLINE(memory_atomic_notify, impl_memory_atomic_notify) LIBCALL_TRAMPOLINE(memory_atomic_wait32, impl_memory_atomic_wait32) LIBCALL_TRAMPOLINE(memory_atomic_wait64, impl_memory_atomic_wait64) LIBCALL_TRAMPOLINE(out_of_gas, impl_out_of_gas) LIBCALL_TRAMPOLINE(new_epoch, impl_new_epoch) LIBCALL_TRAMPOLINE(check_malloc, impl_check_malloc) LIBCALL_TRAMPOLINE(check_free, impl_check_free) LIBCALL_TRAMPOLINE(check_load, impl_check_load) LIBCALL_TRAMPOLINE(check_store, impl_check_store) LIBCALL_TRAMPOLINE(malloc_start, impl_malloc_start) LIBCALL_TRAMPOLINE(free_start, impl_free_start) LIBCALL_TRAMPOLINE(update_stack_pointer, impl_update_stack_pointer) LIBCALL_TRAMPOLINE(update_mem_size, impl_update_mem_size)
mosaicthej/riscv-qemu-2024
1,330
puretest/addOne.S
.section .data buffer: .space 64 # Allocate 64 bytes for the buffer .section .text .global _start _start: # Read from STDIN li a7, 63 # syscall number for read li a0, 0 # file descriptor 0 (STDIN) la a1, buffer # pointer to buffer li a2, 64 # number of bytes to read ecall # make the syscall # Store the number of bytes read in t0 mv t0, a0 # Modify each character in the buffer la a1, buffer # Load address of buffer into a1 modify_loop: lbu a2, 0(a1) # Load byte from buffer beq a2, zero, end_modify # If byte is 0, end of string addi a2, a2, 1 # Add 1 to the byte sb a2, 0(a1) # Store the modified byte back into the buffer addi a1, a1, 1 # Move to the next byte bnez a2, modify_loop # If not zero, keep looping end_modify: # Write to STDOUT li a7, 64 # syscall number for write li a0, 1 # file descriptor 1 (STDOUT) la a1, buffer # pointer to buffer mv a2, t0 # number of bytes to write ecall # make the syscall # Exit li a7, 93 # syscall number for exit li a0, 0 # exit status ecall # make the syscall
mosaicthej/riscv-qemu-2024
3,853
taExamples/testlist64.S
.equ SYS_exit, 93 .equ SYS_printInt, 244 .equ SYS_readInt, 245 .equ SYS_printChar, 246 .equ SYS_readChar, 247 .equ SYS_printStr, 248 .equ SYS_readStr, 249 .section .rodata # we not modify this section input_str: .string "Enter numbers, stop at 0:\n" sum_str: .string "Sum of the numbers: " newline: .string "\n" .section .data .align 3 # 2^3 = 8 # emits `list1` to symbol table. # it's okay to not have this line. # but gdb would be sad if you ask him about list1. # because it won't find it. .local list1 list1: .space 1024 .local list2 list2: .space 1024 .local sum1 sum1: .dword 0 # use .dword for 64 bit ver. .local sum2 sum2: .dword 0 # `.local` directive emits the label to symbol table # `.comm` or `.common` directive emits the object to bss section instead # of being part of elf file # I've seen the compiler put it in bss instead of `.data`, but then linker # needs to do things to figure out where is the bss at. # .local list1 # .comm list1,1024,8 # 1024 bytes, 8 bytes alignment # .local list2 # .comm list2,1024,8 # .local count1 # .comm count1,4,8 # .local count2 # .comm count2,4,8 # .local sum1 # .comm sum1,4,8 # .local sum2 # .comm sum2,4,8 .section .text .global _start # use _start instead of main, as we don't have libc and crt0 # needs to emit this to global symbol table (this is must) so things can find it. _start: # Print input prompt li a7, SYS_printStr la a0, input_str ecall # Read numbers for list1 la a0, list1 # read_numbers(&list1) call read_numbers la a0, list1 call calculate_sum la t0, sum1 # t0 should be addr of sum1 sd a0, 0(t0) # store it # Print sum of list1 li a7, SYS_printStr la a0, sum_str ecall li a7, SYS_printInt la a0, sum1 ld a0, 0(a0) ecall li a7, SYS_printStr la a0, newline ecall # Print input prompt again li a7, SYS_printStr la a0, input_str ecall # Read numbers for list2 la a0, list2 call read_numbers la a0, list2 call calculate_sum # a0 will be holding the sum # this is same as `jal` or `call ra calculate_sum` # `ra` is default. You can change it to other registers. la t0, sum2 # t0 <- &sum2 sd a0, 0(t0) # Print sum of list2 li a7, SYS_printStr la a0, sum_str ecall li a7, SYS_printInt ld a0, sum2 ecall # Exit li a7, SYS_exit li a0, 0 ecall # Read numbers until 0 is entered and store them in a list # @param a0: Address of the list read_numbers: mv a1, a0 # Copy address of the list into a1 # a1 will hold the current position in the list li t0, 0 # Clear t0, will be used as a counter/index read_loop: li a7, SYS_readInt # Prepare to read an integer ecall # Read integer into a0 beqz a0, end_read # If input is 0, end reading sd a0, 0(a1) # Store the read integer at the current position in the list addi a1, a1, 8 # Move to the next position in the list addi t0, t0, 1 # Increment the counter j read_loop # Repeat the loop end_read: sd zero, 0(a1) # Store 0 as the last element to mark the end of the list ret # equivalent to `jr ra` # Calculate sum of numbers in a list # @param a0: Address of the list calculate_sum: mv a1, a0 # Copy address of the list into a1 # a1 will hold the current position in the list li a0, 0 # Clear a0, will be used to store the sum sum_loop: ld t0, 0(a1) # Load the current list element into t0 beqz t0, end_sum # If element is 0, end summation add a0, a0, t0 # Add the current element to the sum addi a1, a1, 8 # Move to the next element in the list j sum_loop # Repeat the loop end_sum: ret
mosaicthej/riscv-qemu-2024
3,749
taExamples/testlist32.S
.equ SYS_exit, 93 .equ SYS_printInt, 244 .equ SYS_readInt, 245 .equ SYS_printChar, 246 .equ SYS_readChar, 247 .equ SYS_printStr, 248 .equ SYS_readStr, 249 .section .rodata input_str: .string "Enter numbers, stop at 0:\n" sum_str: .string "Sum of the numbers: " newline: .string "\n" .section .data .align 2 # emits `list1` to symbol table. # it's okay to not have this line. # but gdb would be sad if you ask him about list1. # because it won't find it. .local list1 list1: .space 1024 .local list2 list2: .space 1024 .local sum1 sum1: .word 0 .local sum2 sum2: .word 0 # `.local` directive emits the label to symbol table # `.comm` or `.common` directive emits the object to bss section instead # of being part of elf file # I've seen the compiler put it in bss instead of `.data`, but then linker # needs to do things to figure out where is the bss at. # .local list1 # .comm list1,1024,4 # .local list2 # .comm list2,1024,4 # .local count1 # .comm count1,4,4 # .local count2 # .comm count2,4,4 # .local sum1 # .comm sum1,4,4 # .local sum2 # .comm sum2,4,4 .section .text .global _start # use _start instead of main, as we don't have libc and crt0 # needs to emit this to global symbol table (this is must) so things can find it. _start: # Print input prompt li a7, SYS_printStr la a0, input_str ecall # Read numbers for list1 la a0, list1 # read_numbers(&list1) call read_numbers la a0, list1 call calculate_sum la t0, sum1 # t0 should be addr of sum1 sw a0, 0(t0) # store it # Print sum of list1 li a7, SYS_printStr la a0, sum_str ecall li a7, SYS_printInt la a0, sum1 lw a0, 0(a0) ecall li a7, SYS_printStr la a0, newline ecall # Print input prompt again li a7, SYS_printStr la a0, input_str ecall # Read numbers for list2 la a0, list2 call read_numbers la a0, list2 call calculate_sum # a0 will be holding the sum # this is same as `jal` or `call ra calculate_sum` # `ra` is default. You can change it to other registers. la t0, sum2 # t0 <- &sum2 sw a0, 0(t0) # Print sum of list2 li a7, SYS_printStr la a0, sum_str ecall li a7, SYS_printInt lw a0, sum2 ecall # Exit li a7, SYS_exit li a0, 0 ecall # Read numbers until 0 is entered and store them in a list # @param a0: Address of the list read_numbers: mv a1, a0 # Copy address of the list into a1 # a1 will hold the current position in the list li t0, 0 # Clear t0, will be used as a counter/index read_loop: li a7, SYS_readInt # Prepare to read an integer ecall # Read integer into a0 beqz a0, end_read # If input is 0, end reading sw a0, 0(a1) # Store the read integer at the current position in the list addi a1, a1, 4 # Move to the next position in the list addi t0, t0, 1 # Increment the counter j read_loop # Repeat the loop end_read: sw zero, 0(a1) # Store 0 as the last element to mark the end of the list ret # equivalent to `jr ra` # Calculate sum of numbers in a list # @param a0: Address of the list calculate_sum: mv a1, a0 # Copy address of the list into a1 # a1 will hold the current position in the list li a0, 0 # Clear a0, will be used to store the sum sum_loop: lw t0, 0(a1) # Load the current list element into t0 beqz t0, end_sum # If element is 0, end summation add a0, a0, t0 # Add the current element to the sum addi a1, a1, 4 # Move to the next element in the list j sum_loop # Repeat the loop end_sum: ret
mosaicthej/riscv-qemu-2024
2,157
testcalls/testcall_32.S
.section .rodata inputPrompt: .string "Enter a number: " inputFormat: .string "%d" outputPrompt: .string "Number plus 10 is %d\n" .section .text .globl main # Function: inputNumber inputNumber: addi sp, sp, -32 # Allocate space on stack sw ra, 28(sp) # Save return address sw s0, 24(sp) # Save frame pointer addi s0, sp, 32 # Set frame pointer la a0, inputPrompt # Load address of input prompt call printf # Call printf addi a1, s0, -20 # Address for storing input number la a0, inputFormat # Load address of input format call scanf # Call scanf lw a0, -20(s0) # Load input number to a0 lw ra, 28(sp) # Restore return address lw s0, 24(sp) # Restore frame pointer addi sp, sp, 32 # Deallocate stack space jr ra # Return # Function: addTen #addTen: # see addTen.S # Function: printNumber printNumber: addi sp, sp, -32 # Allocate space on stack sw ra, 28(sp) # Save return address sw s0, 24(sp) # Save frame pointer addi s0, sp, 32 # Set frame pointer sw a0, -20(s0) # Store argument lw a1, -20(s0) # Load argument to a1 la a0, outputPrompt # Load address of output prompt call printf # Call printf lw ra, 28(sp) # Restore return address lw s0, 24(sp) # Restore frame pointer addi sp, sp, 32 # Deallocate stack space jr ra # Return # Main function main: addi sp, sp, -32 # Allocate space on stack sw ra, 28(sp) # Save return address sw s0, 24(sp) # Save frame pointer addi s0, sp, 32 # Set frame pointer call inputNumber # Call inputNumber call addTen # Call addTen call printNumber # Call printNumber li a0, 0 # Load 0 into a0 lw ra, 28(sp) # Restore return address lw s0, 24(sp) # Restore frame pointer addi sp, sp, 32 # Deallocate stack space jr ra # Return
mosaicthej/riscv-qemu-2024
1,552
testcalls/testcall_32_cp.S
# .file "testcalls.c" # .option nopic # .attribute arch, "rv32i2p1" # .attribute unaligned_access, 0 # .attribute stack_align, 16 # .text .section .rodata .align 2 .LC0: .string "Enter a number: " .align 2 .LC1: .string "%d" .text .align 2 .globl inputNumber .type inputNumber, @function inputNumber: addi sp,sp,-32 sw ra,28(sp) sw s0,24(sp) addi s0,sp,32 lui a5,%hi(.LC0) addi a0,a5,%lo(.LC0) call printf addi a5,s0,-20 mv a1,a5 lui a5,%hi(.LC1) addi a0,a5,%lo(.LC1) call scanf lw a5,-20(s0) mv a0,a5 lw ra,28(sp) lw s0,24(sp) addi sp,sp,32 jr ra .size inputNumber, .-inputNumber .align 2 .globl addTen .type addTen, @function addTen: addi sp,sp,-32 sw s0,28(sp) addi s0,sp,32 sw a0,-20(s0) lw a5,-20(s0) addi a5,a5,10 mv a0,a5 lw s0,28(sp) addi sp,sp,32 jr ra .size addTen, .-addTen .section .rodata .align 2 .LC2: .string "Number plus 10 is %d\n" .text .align 2 .globl printNumber .type printNumber, @function printNumber: addi sp,sp,-32 sw ra,28(sp) sw s0,24(sp) addi s0,sp,32 sw a0,-20(s0) lw a1,-20(s0) lui a5,%hi(.LC2) addi a0,a5,%lo(.LC2) call printf nop lw ra,28(sp) lw s0,24(sp) addi sp,sp,32 jr ra .size printNumber, .-printNumber .align 2 .globl main .type main, @function main: addi sp,sp,-32 sw ra,28(sp) sw s0,24(sp) addi s0,sp,32 call inputNumber sw a0,-20(s0) lw a0,-20(s0) call addTen sw a0,-20(s0) lw a0,-20(s0) call printNumber li a5,0 mv a0,a5 lw ra,28(sp) lw s0,24(sp) addi sp,sp,32 jr ra .size main, .-main .ident "GCC: (g2ee5e430018) 12.2.0"
mosaicthej/riscv-qemu-2024
2,558
testcalls/testcall_64.S
.section .rodata inputPrompt: .string "Enter a number: " inputFormat: .string "%d" outputPrompt: .string "Number plus 10 is %d\n" .section .text .globl main # Function: inputNumber inputNumber: addi sp, sp, -64 # Allocate space on stack sd ra, 56(sp) # Save return address sd s0, 48(sp) # Save frame pointer addi s0, sp, 64 # Set frame pointer la a0, inputPrompt # Load address of input prompt call printf # Call printf addi a1, s0, -20 # Address for storing input number la a0, inputFormat # Load address of input format call scanf # Call scanf ld a0, -20(s0) # Load input number to a0 ld ra, 56(sp) # Restore return address ld s0, 48(sp) # Restore frame pointer addi sp, sp, 64 # Deallocate stack space jr ra # Return # Function: addTen addTen: addi sp, sp, -64 # Allocate space on stack sd s0, 56(sp) # Save frame pointer addi s0, sp, 64 # Set frame pointer sd a0, -20(s0) # Store argument ld a0, -20(s0) # Load argument addi a0, a0, 10 # Add 10 to a0 ld s0, 56(sp) # Restore frame pointer addi sp, sp, 64 # Deallocate stack space jr ra # Return # Function: printNumber printNumber: addi sp, sp, -64 # Allocate space on stack sd ra, 56(sp) # Save return address sd s0, 48(sp) # Save frame pointer addi s0, sp, 64 # Set frame pointer sd a0, -20(s0) # Store argument ld a1, -20(s0) # Load argument to a1 la a0, outputPrompt # Load address of output prompt call printf # Call printf ld ra, 56(sp) # Restore return address ld s0, 48(sp) # Restore frame pointer addi sp, sp, 64 # Deallocate stack space jr ra # Return # Main function main: addi sp, sp, -64 # Allocate space on stack sd ra, 56(sp) # Save return address sd s0, 48(sp) # Save frame pointer addi s0, sp, 64 # Set frame pointer call inputNumber # Call inputNumber call addTen # Call addTen call printNumber # Call printNumber li a0, 0 # Load 0 into a0 ld ra, 56(sp) # Restore return address ld s0, 48(sp) # Restore frame pointer addi sp, sp, 64 # Deallocate stack space jr ra # Return
mosaicthej/riscv-qemu-2024
1,124
qemuKai-test/teststrings.S
.section .rodata str1: .string "message 1\n" prompt: .string "enter your name: " welcome: .string "hello " emsg: .string "end of message\n" chr1: .byte 'a' chr2: .byte 'b' nl: .byte '\n' .section .data buffer: .space 1024 .section .text .global _start _start: # print msg1 la a0, str1 li a7, 248 ecall # print two chars and newline on printChar la a0, chr1 lb a0, 0(a0) li a7, 246 ecall la a0, chr2 lb a0, 0(a0) li a7, 246 ecall li a0, 10 li a7, 246 ecall # print prompt la a0, prompt li a7, 248 ecall # get input name la a0, buffer li a1, 1024 li a7, 249 ecall # print welcome la a0, welcome li a7, 248 ecall # print name la a0, buffer li a7, 248 ecall # print prompt la a0, prompt li a7, 248 ecall # get input name la a0, buffer li a1, 1024 li a7, 249 ecall # print welcome la a0, welcome li a7, 248 ecall # print name la a0, buffer li a7, 248 ecall # check again by print end msg. la a0, emsg li a7, 248 ecall # exit li a7, 93 li a0, 0 ecall
mosaicthej/riscv-qemu-2024
3,812
qemuKai-test/testlistmanual32.S
.equ SYS_exit, 93 .equ SYS_printInt, 244 .equ SYS_readInt, 245 .equ SYS_printChar, 246 .equ SYS_readChar, 247 .equ SYS_printStr, 248 .equ SYS_readStr, 249 .section .rodata input_str: .string "Enter numbers, stop at 0:\n" sum_str: .string "Sum of the numbers: " newline: .string "\n" .section .text .global _start _start: # Print input prompt li a7, SYS_printStr la a0, input_str ecall # `la` pseudo-instruction is translated weirdly by the assembler # don't trust it, so will just use `lui` and `addi` instead # (looks like it's doing correct thing when access .rodata, also the # first label in .data, but not after that :(, # by "correct thing", it is getting the address by `auipc` + `addi` # for the labels after, it's trying to use something with `gp` register # which, doesn't seem to be set up correctly, so it's not working # will look into why # TODO: figure out why `la` is not working for .data labels # Read numbers for list1 # la a0, list1 # read_numbers(&list1) lui a0, %hi(list1) addi a0, a0, %lo(list1) # a0 <- &list1 call read_numbers # la a0, list1 lui a0, %hi(list1) addi a0, a0, %lo(list1) # a0 <- &list1 call calculate_sum # la t0, sum1 # t0 should be addr of sum1 lui t0, %hi(sum1) addi t0, t0, %lo(sum1) # t0 <- &sum1 sw a0, 0(t0) # store it # Print sum of list1 li a7, SYS_printStr # la a0, sum_str lui a0, %hi(sum_str) addi a0, a0, %lo(sum_str) # a0 <- &sum_str ecall li a7, SYS_printInt # la a0, sum1 lui a0, %hi(sum1) addi a0, a0, %lo(sum1) # a0 <- &sum1 lw a0, 0(a0) ecall li a7, SYS_printStr la a0, newline ecall # Print input prompt again li a7, SYS_printStr la a0, input_str ecall # Read numbers for list2 call read_numbers # la a0, list2 lui a0, %hi(list2) addi a0, a0, %lo(list2) # a0 <- &list2 call calculate_sum # a0 will be holding the sum # la t0, sum2 # t0 <- &sum2 lui t0, %hi(sum2) addi t0, t0, %lo(sum2) # t0 <- &sum2 sw a0, 0(t0) # Print sum of list2 li a7, SYS_printStr # la a0, sum_str lui a0, %hi(sum_str) addi a0, a0, %lo(sum_str) # a0 <- &sum_str ecall li a7, SYS_printInt lw a0, sum2 ecall # Exit li a7, SYS_exit li a0, 0 ecall # Read numbers until 0 is entered and store them in a list # @param a0: Address of the list read_numbers: mv a1, a0 # Copy address of the list into a1 # a1 will hold the current position in the list li t0, 0 # Clear t0, will be used as a counter/index read_loop: li a7, SYS_readInt # Prepare to read an integer ecall # Read integer into a0 beqz a0, end_read # If input is 0, end reading sw a0, 0(a1) # Store the read integer at the current position in the list addi a1, a1, 4 # Move to the next position in the list addi t0, t0, 1 # Increment the counter j read_loop # Repeat the loop end_read: sw zero, 0(a1) # Store 0 as the last element to mark the end of the list ret # Calculate sum of numbers in a list # @param a0: Address of the list calculate_sum: mv a1, a0 # Copy address of the list into a1 # a1 will hold the current position in the list li a0, 0 # Clear a0, will be used to store the sum sum_loop: lw t0, 0(a1) # Load the current list element into t0 beqz t0, end_sum # If element is 0, end summation add a0, a0, t0 # Add the current element to the sum addi a1, a1, 4 # Move to the next element in the list j sum_loop # Repeat the loop end_sum: ret .section .data .align 2 .section .data sum1: .word 0 sum2: .word 0 list1: .space 1024 list2: .space 1024
mosaicthej/riscv-qemu-2024
2,406
qemuKai-test/testnewcalls32.S
.equ SYS_exit, 93 .equ SYS_printInt, 244 .equ SYS_readInt, 245 .equ SYS_printChar, 246 .equ SYS_readChar, 247 .equ SYS_printStr, 248 .equ SYS_readStr, 249 .section .rodata input_str: .string "Enter a number: " .align 2 answer: .word 42 .align 2 output_str: .string "\nYour number doubles becomes : " test1: .asciz "this is welcome message 1" test2: .asciz "answer to life the universe and everything is " prompt: .string "enter your name: " welcome: .string "hello " newline: .byte '\n' .section .data buffer: .space 1024 .section .text .global _start _start: # print 'this is welcome message 1': la a0, test1 li a7, SYS_printStr ecall # printChr '\n' li a0, 10 li a7, SYS_printChar ecall # print 'enter your name: ' la a0, prompt li a7, SYS_printStr ecall # get input name la a0, buffer li a1, 1024 li a7, SYS_readStr ecall # print 'hello ' la a0, welcome li a7, SYS_printStr ecall # print name la a0, buffer li a7, SYS_printStr ecall # print new line li a0, 10 li a7, SYS_printChar ecall # print 42: (via load immediate) li a0, 42 li a7, SYS_printInt ecall # print # 'answer to life the universe and everything is ' la a0, test2 li a7, SYS_printStr ecall # print 42: (via read from symbol) la a0, answer lw a0, 0(a0) li a7, SYS_printInt ecall # print newline li a0, 10 li a7, SYS_printChar ecall # Print "Enter a number: " la a0, input_str # Load address of input_str li a7, SYS_printStr # printStr syscall number ecall # Read integer li a7, SYS_readInt # readInt syscall number ecall mv t0, a0 # Store read integer in t0 # Print "\nYour number doubles becomes : " la a0, output_str # Load address of output_str li a7, SYS_printStr # printStr syscall number ecall # Print input doubled add a0, t0, t0 # Doubles the int and save to a0 li a7, SYS_printInt # printInt syscall number ecall # Print newline (via load from byte) la a0, newline # Load address of newline lb a0, 0(a0) li a7, SYS_printChar # print new line as char ecall # Exit li a0, 0 li a7, SYS_exit # exit syscall number ecall
mosaicthej/riscv-qemu-2024
3,028
qemuKai-test/testlist32.S
.equ SYS_exit, 93 .equ SYS_printInt, 244 .equ SYS_readInt, 245 .equ SYS_printChar, 246 .equ SYS_readChar, 247 .equ SYS_printStr, 248 .equ SYS_readStr, 249 .section .rodata input_str: .string "Enter numbers, stop at 0:\n" sum_str: .string "Sum of the numbers: " newline: .string "\n" .section .data .align 2 .local list1 list1: .space 1024 .local list2 list2: .space 1024 .local sum1 sum1: .word 0 .local sum2 sum2: .word 0 # .local list1 # .comm list1,1024,4 # .local list2 # .comm list2,1024,4 # .local count1 # .comm count1,4,4 # .local count2 # .comm count2,4,4 # .local sum1 # .comm sum1,4,4 # .local sum2 # .comm sum2,4,4 .section .text .global _start _start: # Print input prompt li a7, SYS_printStr la a0, input_str ecall # Read numbers for list1 la a0, list1 # read_numbers(&list1) call read_numbers la a0, list1 call calculate_sum la t0, sum1 # t0 should be addr of sum1 sw a0, 0(t0) # store it # Print sum of list1 li a7, SYS_printStr la a0, sum_str ecall li a7, SYS_printInt la a0, sum1 lw a0, 0(a0) ecall li a7, SYS_printStr la a0, newline ecall # Print input prompt again li a7, SYS_printStr la a0, input_str ecall # Read numbers for list2 la a0, list2 call read_numbers la a0, list2 call calculate_sum # a0 will be holding the sum la t0, sum2 # t0 <- &sum2 sw a0, 0(t0) # Print sum of list2 li a7, SYS_printStr la a0, sum_str ecall li a7, SYS_printInt lw a0, sum2 ecall # Exit li a7, SYS_exit li a0, 0 ecall # Read numbers until 0 is entered and store them in a list # @param a0: Address of the list read_numbers: mv a1, a0 # Copy address of the list into a1 # a1 will hold the current position in the list li t0, 0 # Clear t0, will be used as a counter/index read_loop: li a7, SYS_readInt # Prepare to read an integer ecall # Read integer into a0 beqz a0, end_read # If input is 0, end reading sw a0, 0(a1) # Store the read integer at the current position in the list addi a1, a1, 4 # Move to the next position in the list addi t0, t0, 1 # Increment the counter j read_loop # Repeat the loop end_read: sw zero, 0(a1) # Store 0 as the last element to mark the end of the list ret # Calculate sum of numbers in a list # @param a0: Address of the list calculate_sum: mv a1, a0 # Copy address of the list into a1 # a1 will hold the current position in the list li a0, 0 # Clear a0, will be used to store the sum sum_loop: lw t0, 0(a1) # Load the current list element into t0 beqz t0, end_sum # If element is 0, end summation add a0, a0, t0 # Add the current element to the sum addi a1, a1, 4 # Move to the next element in the list j sum_loop # Repeat the loop end_sum: ret
MrAMS/myrcore
1,045
os/src/link_app.S
.align 3 .section .data .global _num_app _num_app: .quad 5 .quad app_0_start .quad app_1_start .quad app_2_start .quad app_3_start .quad app_4_start .quad app_4_end .section .data .global app_0_start .global app_0_end app_0_start: .incbin "../user/target/riscv64gc-unknown-none-elf/release/0monitor.bin" app_0_end: .section .data .global app_1_start .global app_1_end app_1_start: .incbin "../user/target/riscv64gc-unknown-none-elf/release/consumer1.bin" app_1_end: .section .data .global app_2_start .global app_2_end app_2_start: .incbin "../user/target/riscv64gc-unknown-none-elf/release/consumer2.bin" app_2_end: .section .data .global app_3_start .global app_3_end app_3_start: .incbin "../user/target/riscv64gc-unknown-none-elf/release/producer1.bin" app_3_end: .section .data .global app_4_start .global app_4_end app_4_start: .incbin "../user/target/riscv64gc-unknown-none-elf/release/producer2.bin" app_4_end:
MrAMS/myrcore
1,488
os/src/trap/trap.S
.altmacro .macro SAVE_GP n sd x\n, \n*8(sp) .endm .macro LOAD_GP n ld x\n, \n*8(sp) .endm .section .text .globl __alltraps .globl __restore .align 2 __alltraps: csrrw sp, sscratch, sp # now sp->kernel stack, sscratch->user stack # allocate a TrapContext on kernel stack addi sp, sp, -34*8 # save general-purpose registers sd x1, 1*8(sp) # skip sp(x2), we will save it later sd x3, 3*8(sp) # skip tp(x4), application does not use it # save x5~x31 .set n, 5 .rept 27 SAVE_GP %n .set n, n+1 .endr # we can use t0/t1/t2 freely, because they were saved on kernel stack csrr t0, sstatus csrr t1, sepc sd t0, 32*8(sp) sd t1, 33*8(sp) # read user stack from sscratch and save it on the kernel stack csrr t2, sscratch sd t2, 2*8(sp) # set input argument of trap_handler(cx: &mut TrapContext) mv a0, sp call trap_handler __restore: # now sp->kernel stack(after allocated), sscratch->user stack # restore sstatus/sepc ld t0, 32*8(sp) ld t1, 33*8(sp) ld t2, 2*8(sp) csrw sstatus, t0 csrw sepc, t1 csrw sscratch, t2 # restore general-purpuse registers except sp/tp ld x1, 1*8(sp) ld x3, 3*8(sp) .set n, 5 .rept 27 LOAD_GP %n .set n, n+1 .endr # release TrapContext on kernel stack addi sp, sp, 34*8 # now sp->kernel stack, sscratch->user stack csrrw sp, sscratch, sp sret
mr-rubber-duck/Assembly-Algorithms-
1,918
Fibonacci/fib.s
.global main .extern fopen, fprintf, fclose, printf, atoi .section .data filename: .asciz "nums.txt" write_mode: .asciz "w" format_str: .asciz "%d\n" format_str_result: .asciz "Fibonacci Number: %d\n" .section .text print_num_to_file: push {lr} push {r0-r5} mov r5, r0 // Open the file for writing ldr r0, =filename ldr r1, =write_mode bl fopen mov r4, r0 // Store the file pointer in r4 // Check if fopen succeeded cmp r4, #0 beq close_file // Write the number to the file mov r0, r4 ldr r1, =format_str mov r2, r5 bl fprintf // Close the file close_file: mov r0, r4 bl fclose pop {r0-r5} pop {pc} fibonacci: push {lr} // Base case: if n <= 1, return n cmp r0, #1 ble end_fib // Recursive case: return fib(n - 1) + fib(n - 2); push {r0} // Save the current value of n sub r0, r0, #1 bl fibonacci // Recursive call fibonacci(n - 1) pop {r1} // Restore the original n push {r0} // Save fibonacci(n - 1) sub r1, r1, #2 mov r0, r1 bl fibonacci // Recursive call fibonacci(n - 2) pop {r1} // Get fibonacci(n - 1) add r0, r0, r1 // Add fibonacci(n - 1) + fibonacci(n - 2) end_fib: pop {pc} main: push {r4-r7, lr} // Check if argument count (argc) is correct cmp r0, #2 // Expecting 2 arguments (program name and n) blt exit // Convert argument string to integer ldr r0, [r1, #4] // Load address of second argument (n value) bl atoi // Convert string to integer mov r4, r0 // Calculate the nth Fibonacci number mov r0, r4 bl fibonacci // Print fib result to our file bl print_num_to_file exit: // Exit mov r0, #0 pop {r4-r7, pc} .section .note.GNU-stack
mr-rubber-duck/Assembly-Algorithms-
1,378
Fibonacci/fillable_fib.s
.global main .extern fopen, fprintf, fclose, printf, atoi .section .data filename: .asciz "nums.txt" write_mode: .asciz "w" format_str: .asciz "%d\n" format_str_result: .asciz "Fibonacci Number: %d\n" .section .text print_num_to_file: push {lr} push {r0-r5} mov r5, r0 // Open the file for writing ldr r0, =filename ldr r1, =write_mode bl fopen mov r4, r0 // Store the file pointer in r4 // Check if fopen succeeded cmp r4, #0 beq close_file // Write the number to the file mov r0, r4 ldr r1, =format_str mov r2, r5 bl fprintf // Close the file close_file: mov r0, r4 bl fclose pop {r0-r5} pop {pc} fibonacci: push {lr} // Replace this with your code! Return value goes in r0 mov r0, #42 end_fib: pop {pc} main: push {r4-r7, lr} // Check if argument count (argc) is correct cmp r0, #2 // Expecting 2 arguments (program name and n) blt exit // Convert argument string to integer ldr r0, [r1, #4] // Load address of second argument (n value) bl atoi // Convert string to integer mov r4, r0 // Calculate the nth Fibonacci number mov r0, r4 bl fibonacci // Print fib result to our file bl print_num_to_file exit: // Exit mov r0, #0 pop {r4-r7, pc}
mr-rubber-duck/Assembly-Algorithms-
2,414
StackOverflow/overflow.s
.global main .extern fopen, fprintf, fclose, printf, atoi, sleep .section .data format_str_depth: .asciz "Depth: %d\n" format_str_sp: .asciz "Stack pointer: %p\n" filename: .asciz "original_sp.txt" filename_latest_sp: .asciz "latest_sp.txt" write_mode: .asciz "w" format_str: .asciz "%p\n" .section .text print_original_sp_to_file: push {lr} push {r0-r5} // Open the file for writing ldr r0, =filename ldr r1, =write_mode bl fopen mov r4, r0 // Store the file pointer in r4 // Check if fopen succeeded cmp r4, #0 beq close_file // Write the number to the file mov r0, r4 ldr r1, =format_str mov r2, sp bl fprintf // Close the file close_file: mov r0, r4 bl fclose pop {r0-r5} pop {pc} print_latest_sp_to_file: push {lr} push {r0-r5} // Open the file for writing ldr r0, =filename_latest_sp ldr r1, =write_mode bl fopen mov r4, r0 // Store the file pointer in r4 // Check if fopen succeeded cmp r4, #0 beq close_file_latest // Write the number to the file mov r0, r4 ldr r1, =format_str mov r2, sp bl fprintf // Close the second file close_file_latest: mov r0, r4 bl fclose pop {r0-r5} pop {pc} recurse: push {lr} push {r0} // Saving the depth argument // Print depth to the console mov r1, r0 ldr r0, =format_str_depth bl printf pop {r0} // Only print to the file every 1000 levels to help with perf // Check if depth is divisible by 1000 and print if so push {r0} // Saving the depth argument // Compute the modulus to see if there is remainder mov r1, #1000 sdiv r2, r0, r1 mul r3, r2, r1 sub r4, r0, r3 cmp r4, #0 bne skip_sp_print // We only want to print every 1000 times so skip this one bl print_latest_sp_to_file skip_sp_print: // Print stack pointer to the console mov r1, sp ldr r0, =format_str_sp bl printf pop {r0} // Increase depth by 1 before recursing add r0, r0, #1 bl recurse recurse_exit: pop {pc} main: push {r4-r7, lr} bl print_original_sp_to_file // Call recurse until we cause a stack overflow mov r0, #1 bl recurse exit: // Exit mov r0, #0 pop {r4-r7, pc} .section .note.GNU-stack
mr-rubber-duck/Assembly-Algorithms-
2,413
StackOverflow/overflow_fillable.s
.global main .extern fopen, fprintf, fclose, printf, atoi, sleep .section .data format_str_depth: .asciz "Depth: %d\n" format_str_sp: .asciz "Stack pointer: %p\n" filename: .asciz "original_sp.txt" filename_latest_sp: .asciz "latest_sp.txt" write_mode: .asciz "w" format_str: .asciz "%p\n" .section .text print_original_sp_to_file: push {lr} push {r0-r5} // Open the file for writing ldr r0, =filename ldr r1, =write_mode bl fopen mov r4, r0 // Store the file pointer in r4 // Check if fopen succeeded cmp r4, #0 beq close_file // Write the number to the file mov r0, r4 ldr r1, =format_str mov r2, sp bl fprintf // Close the file close_file: mov r0, r4 bl fclose pop {r0-r5} pop {pc} print_latest_sp_to_file: push {lr} push {r0-r5} // Open the file for writing ldr r0, =filename_latest_sp ldr r1, =write_mode bl fopen mov r4, r0 // Store the file pointer in r4 // Check if fopen succeeded cmp r4, #0 beq close_file_latest // Write the number to the file mov r0, r4 ldr r1, =format_str mov r2, sp bl fprintf // Close the second file close_file_latest: mov r0, r4 bl fclose pop {r0-r5} pop {pc} recurse: push {lr} push {r0} // Saving the depth argument // Print depth to the console mov r1, r0 ldr r0, =format_str_depth bl printf pop {r0} // Only print to the file every 1000 levels to help with perf // Check if depth is divisible by 1000 and print if so push {r0} // Saving the depth argument // Compute the modulus to see if there is remainder mov r1, #1000 sdiv r2, r0, r1 mul r3, r2, r1 sub r4, r0, r3 cmp r4, #0 bne skip_sp_print // We only want to print every 1000 times so skip this one bl print_latest_sp_to_file skip_sp_print: // Print stack pointer to the console mov r1, sp ldr r0, =format_str_sp bl printf pop {r0} // Increase depth by 1 before recursing // Your code goes here! recurse_exit: pop {pc} main: push {r4-r7, lr} bl print_original_sp_to_file // Call recurse until we cause a stack overflow mov r0, #1 bl recurse exit: // Exit mov r0, #0 pop {r4-r7, pc} .section .note.GNU-stack
mr-rubber-duck/Assembly-Algorithms-
1,582
GCD/fillable_gcd.s
.global main .extern fopen, fprintf, fclose, printf, atoi .section .data filename: .asciz "nums.txt" write_mode: .asciz "w" format_str: .asciz "%d\n" .section .text print_num_to_file: push {lr} push {r0-r5} mov r5, r0 // Open the file for writing ldr r0, =filename ldr r1, =write_mode bl fopen mov r4, r0 // Store the file pointer in r4 // Check if fopen succeeded cmp r4, #0 beq close_file // Write the number to the file mov r0, r4 ldr r1, =format_str mov r2, r5 bl fprintf // Close the file close_file: mov r0, r4 bl fclose pop {r0-r5} pop {pc} gcd: push {lr} // Replace this with your code! Return value goes in r0 mov r0, #-1 end_gcd: pop {pc} main: push {r4-r7, lr} // Check if argument count (argc) is correct cmp r0, #3 // Expecting 3 arguments (program name and two operands) blt exit // Convert argument strings to integers push {r1} ldr r0, [r1, #4] // Load address of second argument (first operand) bl atoi // Convert string to integer mov r4, r0 pop {r1} push {r4} ldr r0, [r1, #8] // Load address of third argument (second operand) bl atoi // Convert string to integer mov r5, r0 pop {r4} // Calculate the gcd of both operands mov r0, r4 mov r1, r5 bl gcd // Print gcd result to our file bl print_num_to_file exit: // Exit mov r0, #0 pop {r4-r7, pc} .section .note.GNU-stack
mr-rubber-duck/Assembly-Algorithms-
1,840
GCD/gcd.s
.global main .extern fopen, fprintf, fclose, printf, atoi .section .data filename: .asciz "nums.txt" write_mode: .asciz "w" format_str: .asciz "%d\n" .section .text print_num_to_file: push {lr} push {r0-r5} mov r5, r0 // Open the file for writing ldr r0, =filename ldr r1, =write_mode bl fopen mov r4, r0 // Store the file pointer in r4 // Check if fopen succeeded cmp r4, #0 beq close_file // Write the number to the file mov r0, r4 ldr r1, =format_str mov r2, r5 bl fprintf // Close the file close_file: mov r0, r4 bl fclose pop {r0-r5} pop {pc} gcd: push {lr} // Base case // if (b == 0) return a cmp r1, #0 beq end_gcd // Recursive case // return gcd(b, a % b) // Compute a % b sdiv r2, r0, r1 mul r3, r2, r1 sub r4, r0, r3 // r4 now contains the modulus // Now compute gcd(b, a % b) mov r0, r1 mov r1, r4 bl gcd end_gcd: pop {pc} main: push {r4-r7, lr} // Check if argument count (argc) is correct cmp r0, #3 // Expecting 3 arguments (program name and two operands) blt exit // Convert argument strings to integers push {r1} ldr r0, [r1, #4] // Load address of second argument (first operand) bl atoi // Convert string to integer mov r4, r0 pop {r1} push {r4} ldr r0, [r1, #8] // Load address of third argument (second operand) bl atoi // Convert string to integer mov r5, r0 pop {r4} // Calculate the gcd of both operands mov r0, r4 mov r1, r5 bl gcd // Print gcd result to our file bl print_num_to_file exit: // Exit mov r0, #0 pop {r4-r7, pc} .section .note.GNU-stack
Mr-Xiao2021/ascend_op_learning
15,145
robot/ascend_car/Ascend-机械臂控制源码及说明/Ascend_project/CORE/startup_stm32f10x_hd.s
;******************** (C) COPYRIGHT 2011 STMicroelectronics ******************** ;* File Name : startup_stm32f10x_hd.s ;* Author : MCD Application Team ;* Version : V3.5.0 ;* Date : 11-March-2011 ;* Description : STM32F10x High Density Devices vector table for MDK-ARM ;* toolchain. ;* This module performs: ;* - Set the initial SP ;* - Set the initial PC == Reset_Handler ;* - Set the vector table entries with the exceptions ISR address ;* - Configure the clock system and also configure the external ;* SRAM mounted on STM3210E-EVAL board to be used as data ;* memory (optional, to be enabled by user) ;* - Branches to __main in the C library (which eventually ;* calls main()). ;* After Reset the CortexM3 processor is in Thread mode, ;* priority is Privileged, and the Stack is set to Main. ;* <<< Use Configuration Wizard in Context Menu >>> ;******************************************************************************* ; THE PRESENT FIRMWARE WHICH IS FOR GUIDANCE ONLY AIMS AT PROVIDING CUSTOMERS ; WITH CODING INFORMATION REGARDING THEIR PRODUCTS IN ORDER FOR THEM TO SAVE TIME. ; AS A RESULT, STMICROELECTRONICS SHALL NOT BE HELD LIABLE FOR ANY DIRECT, ; INDIRECT OR CONSEQUENTIAL DAMAGES WITH RESPECT TO ANY CLAIMS ARISING FROM THE ; CONTENT OF SUCH FIRMWARE AND/OR THE USE MADE BY CUSTOMERS OF THE CODING ; INFORMATION CONTAINED HEREIN IN CONNECTION WITH THEIR PRODUCTS. ;******************************************************************************* ; Amount of memory (in bytes) allocated for Stack ; Tailor this value to your application needs ; <h> Stack Configuration ; <o> Stack Size (in Bytes) <0x0-0xFFFFFFFF:8> ; </h> Stack_Size EQU 0x00000400 AREA STACK, NOINIT, READWRITE, ALIGN=3 Stack_Mem SPACE Stack_Size __initial_sp ; <h> Heap Configuration ; <o> Heap Size (in Bytes) <0x0-0xFFFFFFFF:8> ; </h> Heap_Size EQU 0x00000200 AREA HEAP, NOINIT, READWRITE, ALIGN=3 __heap_base Heap_Mem SPACE Heap_Size __heap_limit PRESERVE8 THUMB ; Vector Table Mapped to Address 0 at Reset AREA RESET, DATA, READONLY EXPORT __Vectors EXPORT __Vectors_End EXPORT __Vectors_Size __Vectors DCD __initial_sp ; Top of Stack DCD Reset_Handler ; Reset Handler DCD NMI_Handler ; NMI Handler DCD HardFault_Handler ; Hard Fault Handler DCD MemManage_Handler ; MPU Fault Handler DCD BusFault_Handler ; Bus Fault Handler DCD UsageFault_Handler ; Usage Fault Handler DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD SVC_Handler ; SVCall Handler DCD DebugMon_Handler ; Debug Monitor Handler DCD 0 ; Reserved DCD PendSV_Handler ; PendSV Handler DCD SysTick_Handler ; SysTick Handler ; External Interrupts DCD WWDG_IRQHandler ; Window Watchdog DCD PVD_IRQHandler ; PVD through EXTI Line detect DCD TAMPER_IRQHandler ; Tamper DCD RTC_IRQHandler ; RTC DCD FLASH_IRQHandler ; Flash DCD RCC_IRQHandler ; RCC DCD EXTI0_IRQHandler ; EXTI Line 0 DCD EXTI1_IRQHandler ; EXTI Line 1 DCD EXTI2_IRQHandler ; EXTI Line 2 DCD EXTI3_IRQHandler ; EXTI Line 3 DCD EXTI4_IRQHandler ; EXTI Line 4 DCD DMA1_Channel1_IRQHandler ; DMA1 Channel 1 DCD DMA1_Channel2_IRQHandler ; DMA1 Channel 2 DCD DMA1_Channel3_IRQHandler ; DMA1 Channel 3 DCD DMA1_Channel4_IRQHandler ; DMA1 Channel 4 DCD DMA1_Channel5_IRQHandler ; DMA1 Channel 5 DCD DMA1_Channel6_IRQHandler ; DMA1 Channel 6 DCD DMA1_Channel7_IRQHandler ; DMA1 Channel 7 DCD ADC1_2_IRQHandler ; ADC1 & ADC2 DCD USB_HP_CAN1_TX_IRQHandler ; USB High Priority or CAN1 TX DCD USB_LP_CAN1_RX0_IRQHandler ; USB Low Priority or CAN1 RX0 DCD CAN1_RX1_IRQHandler ; CAN1 RX1 DCD CAN1_SCE_IRQHandler ; CAN1 SCE DCD EXTI9_5_IRQHandler ; EXTI Line 9..5 DCD TIM1_BRK_IRQHandler ; TIM1 Break DCD TIM1_UP_IRQHandler ; TIM1 Update DCD TIM1_TRG_COM_IRQHandler ; TIM1 Trigger and Commutation DCD TIM1_CC_IRQHandler ; TIM1 Capture Compare DCD TIM2_IRQHandler ; TIM2 DCD TIM3_IRQHandler ; TIM3 DCD TIM4_IRQHandler ; TIM4 DCD I2C1_EV_IRQHandler ; I2C1 Event DCD I2C1_ER_IRQHandler ; I2C1 Error DCD I2C2_EV_IRQHandler ; I2C2 Event DCD I2C2_ER_IRQHandler ; I2C2 Error DCD SPI1_IRQHandler ; SPI1 DCD SPI2_IRQHandler ; SPI2 DCD USART1_IRQHandler ; USART1 DCD USART2_IRQHandler ; USART2 DCD USART3_IRQHandler ; USART3 DCD EXTI15_10_IRQHandler ; EXTI Line 15..10 DCD RTCAlarm_IRQHandler ; RTC Alarm through EXTI Line DCD USBWakeUp_IRQHandler ; USB Wakeup from suspend DCD TIM8_BRK_IRQHandler ; TIM8 Break DCD TIM8_UP_IRQHandler ; TIM8 Update DCD TIM8_TRG_COM_IRQHandler ; TIM8 Trigger and Commutation DCD TIM8_CC_IRQHandler ; TIM8 Capture Compare DCD ADC3_IRQHandler ; ADC3 DCD FSMC_IRQHandler ; FSMC DCD SDIO_IRQHandler ; SDIO DCD TIM5_IRQHandler ; TIM5 DCD SPI3_IRQHandler ; SPI3 DCD UART4_IRQHandler ; UART4 DCD UART5_IRQHandler ; UART5 DCD TIM6_IRQHandler ; TIM6 DCD TIM7_IRQHandler ; TIM7 DCD DMA2_Channel1_IRQHandler ; DMA2 Channel1 DCD DMA2_Channel2_IRQHandler ; DMA2 Channel2 DCD DMA2_Channel3_IRQHandler ; DMA2 Channel3 DCD DMA2_Channel4_5_IRQHandler ; DMA2 Channel4 & Channel5 __Vectors_End __Vectors_Size EQU __Vectors_End - __Vectors AREA |.text|, CODE, READONLY ; Reset handler Reset_Handler PROC EXPORT Reset_Handler [WEAK] IMPORT __main IMPORT SystemInit LDR R0, =SystemInit BLX R0 LDR R0, =__main BX R0 ENDP ; Dummy Exception Handlers (infinite loops which can be modified) NMI_Handler PROC EXPORT NMI_Handler [WEAK] B . ENDP HardFault_Handler\ PROC EXPORT HardFault_Handler [WEAK] B . ENDP MemManage_Handler\ PROC EXPORT MemManage_Handler [WEAK] B . ENDP BusFault_Handler\ PROC EXPORT BusFault_Handler [WEAK] B . ENDP UsageFault_Handler\ PROC EXPORT UsageFault_Handler [WEAK] B . ENDP SVC_Handler PROC EXPORT SVC_Handler [WEAK] B . ENDP DebugMon_Handler\ PROC EXPORT DebugMon_Handler [WEAK] B . ENDP PendSV_Handler PROC EXPORT PendSV_Handler [WEAK] B . ENDP SysTick_Handler PROC EXPORT SysTick_Handler [WEAK] B . ENDP Default_Handler PROC EXPORT WWDG_IRQHandler [WEAK] EXPORT PVD_IRQHandler [WEAK] EXPORT TAMPER_IRQHandler [WEAK] EXPORT RTC_IRQHandler [WEAK] EXPORT FLASH_IRQHandler [WEAK] EXPORT RCC_IRQHandler [WEAK] EXPORT EXTI0_IRQHandler [WEAK] EXPORT EXTI1_IRQHandler [WEAK] EXPORT EXTI2_IRQHandler [WEAK] EXPORT EXTI3_IRQHandler [WEAK] EXPORT EXTI4_IRQHandler [WEAK] EXPORT DMA1_Channel1_IRQHandler [WEAK] EXPORT DMA1_Channel2_IRQHandler [WEAK] EXPORT DMA1_Channel3_IRQHandler [WEAK] EXPORT DMA1_Channel4_IRQHandler [WEAK] EXPORT DMA1_Channel5_IRQHandler [WEAK] EXPORT DMA1_Channel6_IRQHandler [WEAK] EXPORT DMA1_Channel7_IRQHandler [WEAK] EXPORT ADC1_2_IRQHandler [WEAK] EXPORT USB_HP_CAN1_TX_IRQHandler [WEAK] EXPORT USB_LP_CAN1_RX0_IRQHandler [WEAK] EXPORT CAN1_RX1_IRQHandler [WEAK] EXPORT CAN1_SCE_IRQHandler [WEAK] EXPORT EXTI9_5_IRQHandler [WEAK] EXPORT TIM1_BRK_IRQHandler [WEAK] EXPORT TIM1_UP_IRQHandler [WEAK] EXPORT TIM1_TRG_COM_IRQHandler [WEAK] EXPORT TIM1_CC_IRQHandler [WEAK] EXPORT TIM2_IRQHandler [WEAK] EXPORT TIM3_IRQHandler [WEAK] EXPORT TIM4_IRQHandler [WEAK] EXPORT I2C1_EV_IRQHandler [WEAK] EXPORT I2C1_ER_IRQHandler [WEAK] EXPORT I2C2_EV_IRQHandler [WEAK] EXPORT I2C2_ER_IRQHandler [WEAK] EXPORT SPI1_IRQHandler [WEAK] EXPORT SPI2_IRQHandler [WEAK] EXPORT USART1_IRQHandler [WEAK] EXPORT USART2_IRQHandler [WEAK] EXPORT USART3_IRQHandler [WEAK] EXPORT EXTI15_10_IRQHandler [WEAK] EXPORT RTCAlarm_IRQHandler [WEAK] EXPORT USBWakeUp_IRQHandler [WEAK] EXPORT TIM8_BRK_IRQHandler [WEAK] EXPORT TIM8_UP_IRQHandler [WEAK] EXPORT TIM8_TRG_COM_IRQHandler [WEAK] EXPORT TIM8_CC_IRQHandler [WEAK] EXPORT ADC3_IRQHandler [WEAK] EXPORT FSMC_IRQHandler [WEAK] EXPORT SDIO_IRQHandler [WEAK] EXPORT TIM5_IRQHandler [WEAK] EXPORT SPI3_IRQHandler [WEAK] EXPORT UART4_IRQHandler [WEAK] EXPORT UART5_IRQHandler [WEAK] EXPORT TIM6_IRQHandler [WEAK] EXPORT TIM7_IRQHandler [WEAK] EXPORT DMA2_Channel1_IRQHandler [WEAK] EXPORT DMA2_Channel2_IRQHandler [WEAK] EXPORT DMA2_Channel3_IRQHandler [WEAK] EXPORT DMA2_Channel4_5_IRQHandler [WEAK] WWDG_IRQHandler PVD_IRQHandler TAMPER_IRQHandler RTC_IRQHandler FLASH_IRQHandler RCC_IRQHandler EXTI0_IRQHandler EXTI1_IRQHandler EXTI2_IRQHandler EXTI3_IRQHandler EXTI4_IRQHandler DMA1_Channel1_IRQHandler DMA1_Channel2_IRQHandler DMA1_Channel3_IRQHandler DMA1_Channel4_IRQHandler DMA1_Channel5_IRQHandler DMA1_Channel6_IRQHandler DMA1_Channel7_IRQHandler ADC1_2_IRQHandler USB_HP_CAN1_TX_IRQHandler USB_LP_CAN1_RX0_IRQHandler CAN1_RX1_IRQHandler CAN1_SCE_IRQHandler EXTI9_5_IRQHandler TIM1_BRK_IRQHandler TIM1_UP_IRQHandler TIM1_TRG_COM_IRQHandler TIM1_CC_IRQHandler TIM2_IRQHandler TIM3_IRQHandler TIM4_IRQHandler I2C1_EV_IRQHandler I2C1_ER_IRQHandler I2C2_EV_IRQHandler I2C2_ER_IRQHandler SPI1_IRQHandler SPI2_IRQHandler USART1_IRQHandler USART2_IRQHandler USART3_IRQHandler EXTI15_10_IRQHandler RTCAlarm_IRQHandler USBWakeUp_IRQHandler TIM8_BRK_IRQHandler TIM8_UP_IRQHandler TIM8_TRG_COM_IRQHandler TIM8_CC_IRQHandler ADC3_IRQHandler FSMC_IRQHandler SDIO_IRQHandler TIM5_IRQHandler SPI3_IRQHandler UART4_IRQHandler UART5_IRQHandler TIM6_IRQHandler TIM7_IRQHandler DMA2_Channel1_IRQHandler DMA2_Channel2_IRQHandler DMA2_Channel3_IRQHandler DMA2_Channel4_5_IRQHandler B . ENDP ALIGN ;******************************************************************************* ; User Stack and Heap initialization ;******************************************************************************* IF :DEF:__MICROLIB EXPORT __initial_sp EXPORT __heap_base EXPORT __heap_limit ELSE IMPORT __use_two_region_memory EXPORT __user_initial_stackheap __user_initial_stackheap LDR R0, = Heap_Mem LDR R1, =(Stack_Mem + Stack_Size) LDR R2, = (Heap_Mem + Heap_Size) LDR R3, = Stack_Mem BX LR ALIGN ENDIF END ;******************* (C) COPYRIGHT 2011 STMicroelectronics *****END OF FILE*****
Mr-Xiao2021/ascend_op_learning
12,458
robot/ascend_car/Ascend-机械臂控制源码及说明/Ascend_project/CORE/startup_stm32f10x_md.s
;******************** (C) COPYRIGHT 2011 STMicroelectronics ******************** ;* File Name : startup_stm32f10x_md.s ;* Author : MCD Application Team ;* Version : V3.5.0 ;* Date : 11-March-2011 ;* Description : STM32F10x Medium Density Devices vector table for MDK-ARM ;* toolchain. ;* This module performs: ;* - Set the initial SP ;* - Set the initial PC == Reset_Handler ;* - Set the vector table entries with the exceptions ISR address ;* - Configure the clock system ;* - Branches to __main in the C library (which eventually ;* calls main()). ;* After Reset the CortexM3 processor is in Thread mode, ;* priority is Privileged, and the Stack is set to Main. ;* <<< Use Configuration Wizard in Context Menu >>> ;******************************************************************************* ; THE PRESENT FIRMWARE WHICH IS FOR GUIDANCE ONLY AIMS AT PROVIDING CUSTOMERS ; WITH CODING INFORMATION REGARDING THEIR PRODUCTS IN ORDER FOR THEM TO SAVE TIME. ; AS A RESULT, STMICROELECTRONICS SHALL NOT BE HELD LIABLE FOR ANY DIRECT, ; INDIRECT OR CONSEQUENTIAL DAMAGES WITH RESPECT TO ANY CLAIMS ARISING FROM THE ; CONTENT OF SUCH FIRMWARE AND/OR THE USE MADE BY CUSTOMERS OF THE CODING ; INFORMATION CONTAINED HEREIN IN CONNECTION WITH THEIR PRODUCTS. ;******************************************************************************* ; Amount of memory (in bytes) allocated for Stack ; Tailor this value to your application needs ; <h> Stack Configuration ; <o> Stack Size (in Bytes) <0x0-0xFFFFFFFF:8> ; </h> Stack_Size EQU 0x00001000 AREA STACK, NOINIT, READWRITE, ALIGN=3 Stack_Mem SPACE Stack_Size __initial_sp ; <h> Heap Configuration ; <o> Heap Size (in Bytes) <0x0-0xFFFFFFFF:8> ; </h> Heap_Size EQU 0x00001000 AREA HEAP, NOINIT, READWRITE, ALIGN=3 __heap_base Heap_Mem SPACE Heap_Size __heap_limit PRESERVE8 THUMB ; Vector Table Mapped to Address 0 at Reset AREA RESET, DATA, READONLY EXPORT __Vectors EXPORT __Vectors_End EXPORT __Vectors_Size __Vectors DCD __initial_sp ; Top of Stack DCD Reset_Handler ; Reset Handler DCD NMI_Handler ; NMI Handler DCD HardFault_Handler ; Hard Fault Handler DCD MemManage_Handler ; MPU Fault Handler DCD BusFault_Handler ; Bus Fault Handler DCD UsageFault_Handler ; Usage Fault Handler DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD SVC_Handler ; SVCall Handler DCD DebugMon_Handler ; Debug Monitor Handler DCD 0 ; Reserved DCD PendSV_Handler ; PendSV Handler DCD SysTick_Handler ; SysTick Handler ; External Interrupts DCD WWDG_IRQHandler ; Window Watchdog DCD PVD_IRQHandler ; PVD through EXTI Line detect DCD TAMPER_IRQHandler ; Tamper DCD RTC_IRQHandler ; RTC DCD FLASH_IRQHandler ; Flash DCD RCC_IRQHandler ; RCC DCD EXTI0_IRQHandler ; EXTI Line 0 DCD EXTI1_IRQHandler ; EXTI Line 1 DCD EXTI2_IRQHandler ; EXTI Line 2 DCD EXTI3_IRQHandler ; EXTI Line 3 DCD EXTI4_IRQHandler ; EXTI Line 4 DCD DMA1_Channel1_IRQHandler ; DMA1 Channel 1 DCD DMA1_Channel2_IRQHandler ; DMA1 Channel 2 DCD DMA1_Channel3_IRQHandler ; DMA1 Channel 3 DCD DMA1_Channel4_IRQHandler ; DMA1 Channel 4 DCD DMA1_Channel5_IRQHandler ; DMA1 Channel 5 DCD DMA1_Channel6_IRQHandler ; DMA1 Channel 6 DCD DMA1_Channel7_IRQHandler ; DMA1 Channel 7 DCD ADC1_2_IRQHandler ; ADC1_2 DCD USB_HP_CAN1_TX_IRQHandler ; USB High Priority or CAN1 TX DCD USB_LP_CAN1_RX0_IRQHandler ; USB Low Priority or CAN1 RX0 DCD CAN1_RX1_IRQHandler ; CAN1 RX1 DCD CAN1_SCE_IRQHandler ; CAN1 SCE DCD EXTI9_5_IRQHandler ; EXTI Line 9..5 DCD TIM1_BRK_IRQHandler ; TIM1 Break DCD TIM1_UP_IRQHandler ; TIM1 Update DCD TIM1_TRG_COM_IRQHandler ; TIM1 Trigger and Commutation DCD TIM1_CC_IRQHandler ; TIM1 Capture Compare DCD TIM2_IRQHandler ; TIM2 DCD TIM3_IRQHandler ; TIM3 DCD TIM4_IRQHandler ; TIM4 DCD I2C1_EV_IRQHandler ; I2C1 Event DCD I2C1_ER_IRQHandler ; I2C1 Error DCD I2C2_EV_IRQHandler ; I2C2 Event DCD I2C2_ER_IRQHandler ; I2C2 Error DCD SPI1_IRQHandler ; SPI1 DCD SPI2_IRQHandler ; SPI2 DCD USART1_IRQHandler ; USART1 DCD USART2_IRQHandler ; USART2 DCD USART3_IRQHandler ; USART3 DCD EXTI15_10_IRQHandler ; EXTI Line 15..10 DCD RTCAlarm_IRQHandler ; RTC Alarm through EXTI Line DCD USBWakeUp_IRQHandler ; USB Wakeup from suspend __Vectors_End __Vectors_Size EQU __Vectors_End - __Vectors AREA |.text|, CODE, READONLY ; Reset handler Reset_Handler PROC EXPORT Reset_Handler [WEAK] IMPORT __main IMPORT SystemInit LDR R0, =SystemInit BLX R0 LDR R0, =__main BX R0 ENDP ; Dummy Exception Handlers (infinite loops which can be modified) NMI_Handler PROC EXPORT NMI_Handler [WEAK] B . ENDP HardFault_Handler\ PROC EXPORT HardFault_Handler [WEAK] B . ENDP MemManage_Handler\ PROC EXPORT MemManage_Handler [WEAK] B . ENDP BusFault_Handler\ PROC EXPORT BusFault_Handler [WEAK] B . ENDP UsageFault_Handler\ PROC EXPORT UsageFault_Handler [WEAK] B . ENDP SVC_Handler PROC EXPORT SVC_Handler [WEAK] B . ENDP DebugMon_Handler\ PROC EXPORT DebugMon_Handler [WEAK] B . ENDP PendSV_Handler PROC EXPORT PendSV_Handler [WEAK] B . ENDP SysTick_Handler PROC EXPORT SysTick_Handler [WEAK] B . ENDP Default_Handler PROC EXPORT WWDG_IRQHandler [WEAK] EXPORT PVD_IRQHandler [WEAK] EXPORT TAMPER_IRQHandler [WEAK] EXPORT RTC_IRQHandler [WEAK] EXPORT FLASH_IRQHandler [WEAK] EXPORT RCC_IRQHandler [WEAK] EXPORT EXTI0_IRQHandler [WEAK] EXPORT EXTI1_IRQHandler [WEAK] EXPORT EXTI2_IRQHandler [WEAK] EXPORT EXTI3_IRQHandler [WEAK] EXPORT EXTI4_IRQHandler [WEAK] EXPORT DMA1_Channel1_IRQHandler [WEAK] EXPORT DMA1_Channel2_IRQHandler [WEAK] EXPORT DMA1_Channel3_IRQHandler [WEAK] EXPORT DMA1_Channel4_IRQHandler [WEAK] EXPORT DMA1_Channel5_IRQHandler [WEAK] EXPORT DMA1_Channel6_IRQHandler [WEAK] EXPORT DMA1_Channel7_IRQHandler [WEAK] EXPORT ADC1_2_IRQHandler [WEAK] EXPORT USB_HP_CAN1_TX_IRQHandler [WEAK] EXPORT USB_LP_CAN1_RX0_IRQHandler [WEAK] EXPORT CAN1_RX1_IRQHandler [WEAK] EXPORT CAN1_SCE_IRQHandler [WEAK] EXPORT EXTI9_5_IRQHandler [WEAK] EXPORT TIM1_BRK_IRQHandler [WEAK] EXPORT TIM1_UP_IRQHandler [WEAK] EXPORT TIM1_TRG_COM_IRQHandler [WEAK] EXPORT TIM1_CC_IRQHandler [WEAK] EXPORT TIM2_IRQHandler [WEAK] EXPORT TIM3_IRQHandler [WEAK] EXPORT TIM4_IRQHandler [WEAK] EXPORT I2C1_EV_IRQHandler [WEAK] EXPORT I2C1_ER_IRQHandler [WEAK] EXPORT I2C2_EV_IRQHandler [WEAK] EXPORT I2C2_ER_IRQHandler [WEAK] EXPORT SPI1_IRQHandler [WEAK] EXPORT SPI2_IRQHandler [WEAK] EXPORT USART1_IRQHandler [WEAK] EXPORT USART2_IRQHandler [WEAK] EXPORT USART3_IRQHandler [WEAK] EXPORT EXTI15_10_IRQHandler [WEAK] EXPORT RTCAlarm_IRQHandler [WEAK] EXPORT USBWakeUp_IRQHandler [WEAK] WWDG_IRQHandler PVD_IRQHandler TAMPER_IRQHandler RTC_IRQHandler FLASH_IRQHandler RCC_IRQHandler EXTI0_IRQHandler EXTI1_IRQHandler EXTI2_IRQHandler EXTI3_IRQHandler EXTI4_IRQHandler DMA1_Channel1_IRQHandler DMA1_Channel2_IRQHandler DMA1_Channel3_IRQHandler DMA1_Channel4_IRQHandler DMA1_Channel5_IRQHandler DMA1_Channel6_IRQHandler DMA1_Channel7_IRQHandler ADC1_2_IRQHandler USB_HP_CAN1_TX_IRQHandler USB_LP_CAN1_RX0_IRQHandler CAN1_RX1_IRQHandler CAN1_SCE_IRQHandler EXTI9_5_IRQHandler TIM1_BRK_IRQHandler TIM1_UP_IRQHandler TIM1_TRG_COM_IRQHandler TIM1_CC_IRQHandler TIM2_IRQHandler TIM3_IRQHandler TIM4_IRQHandler I2C1_EV_IRQHandler I2C1_ER_IRQHandler I2C2_EV_IRQHandler I2C2_ER_IRQHandler SPI1_IRQHandler SPI2_IRQHandler USART1_IRQHandler USART2_IRQHandler USART3_IRQHandler EXTI15_10_IRQHandler RTCAlarm_IRQHandler USBWakeUp_IRQHandler B . ENDP ALIGN ;******************************************************************************* ; User Stack and Heap initialization ;******************************************************************************* IF :DEF:__MICROLIB EXPORT __initial_sp EXPORT __heap_base EXPORT __heap_limit ELSE IMPORT __use_two_region_memory EXPORT __user_initial_stackheap __user_initial_stackheap LDR R0, = Heap_Mem LDR R1, =(Stack_Mem + Stack_Size) LDR R2, = (Heap_Mem + Heap_Size) LDR R3, = Stack_Mem BX LR ALIGN ENDIF END ;******************* (C) COPYRIGHT 2011 STMicroelectronics *****END OF FILE*****
Mr-Xiao2021/ascend_op_learning
29,171
robot/ascend_car/Ascend-智能车底盘控制源码及说明/Ascend-底盘控制stm32源码/CORE/startup_stm32f40_41xxx.s
;******************** (C) COPYRIGHT 2014 STMicroelectronics ******************** ;* File Name : startup_stm32f40_41xxx.s ;* Author : MCD Application Team ;* @version : V1.4.0 ;* @date : 04-August-2014 ;* Description : STM32F40xxx/41xxx devices vector table for MDK-ARM toolchain. ;* This module performs: ;* - Set the initial SP ;* - Set the initial PC == Reset_Handler ;* - Set the vector table entries with the exceptions ISR address ;* - Configure the system clock and the external SRAM mounted on ;* STM324xG-EVAL board to be used as data memory (optional, ;* to be enabled by user) ;* - Branches to __main in the C library (which eventually ;* calls main()). ;* After Reset the CortexM4 processor is in Thread mode, ;* priority is Privileged, and the Stack is set to Main. ;* <<< Use Configuration Wizard in Context Menu >>> ;******************************************************************************* ; ; Licensed under MCD-ST Liberty SW License Agreement V2, (the "License"); ; You may not use this file except in compliance with the License. ; You may obtain a copy of the License at: ; ; http://www.st.com/software_license_agreement_liberty_v2 ; ; Unless required by applicable law or agreed to in writing, software ; distributed under the License is distributed on an "AS IS" BASIS, ; WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. ; See the License for the specific language governing permissions and ; limitations under the License. ; ;******************************************************************************* ; Amount of memory (in bytes) allocated for Stack ; Tailor this value to your application needs ; <h> Stack Configuration ; <o> Stack Size (in Bytes) <0x0-0xFFFFFFFF:8> ; </h> Stack_Size EQU 0x00000400 AREA STACK, NOINIT, READWRITE, ALIGN=3 Stack_Mem SPACE Stack_Size __initial_sp ; <h> Heap Configuration ; <o> Heap Size (in Bytes) <0x0-0xFFFFFFFF:8> ; </h> Heap_Size EQU 0x00000200 AREA HEAP, NOINIT, READWRITE, ALIGN=3 __heap_base Heap_Mem SPACE Heap_Size __heap_limit PRESERVE8 THUMB ; Vector Table Mapped to Address 0 at Reset AREA RESET, DATA, READONLY EXPORT __Vectors EXPORT __Vectors_End EXPORT __Vectors_Size __Vectors DCD __initial_sp ; Top of Stack DCD Reset_Handler ; Reset Handler DCD NMI_Handler ; NMI Handler DCD HardFault_Handler ; Hard Fault Handler DCD MemManage_Handler ; MPU Fault Handler DCD BusFault_Handler ; Bus Fault Handler DCD UsageFault_Handler ; Usage Fault Handler DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD SVC_Handler ; SVCall Handler DCD DebugMon_Handler ; Debug Monitor Handler DCD 0 ; Reserved DCD PendSV_Handler ; PendSV Handler DCD SysTick_Handler ; SysTick Handler ; External Interrupts DCD WWDG_IRQHandler ; Window WatchDog DCD PVD_IRQHandler ; PVD through EXTI Line detection DCD TAMP_STAMP_IRQHandler ; Tamper and TimeStamps through the EXTI line DCD RTC_WKUP_IRQHandler ; RTC Wakeup through the EXTI line DCD FLASH_IRQHandler ; FLASH DCD RCC_IRQHandler ; RCC DCD EXTI0_IRQHandler ; EXTI Line0 DCD EXTI1_IRQHandler ; EXTI Line1 DCD EXTI2_IRQHandler ; EXTI Line2 DCD EXTI3_IRQHandler ; EXTI Line3 DCD EXTI4_IRQHandler ; EXTI Line4 DCD DMA1_Stream0_IRQHandler ; DMA1 Stream 0 DCD DMA1_Stream1_IRQHandler ; DMA1 Stream 1 DCD DMA1_Stream2_IRQHandler ; DMA1 Stream 2 DCD DMA1_Stream3_IRQHandler ; DMA1 Stream 3 DCD DMA1_Stream4_IRQHandler ; DMA1 Stream 4 DCD DMA1_Stream5_IRQHandler ; DMA1 Stream 5 DCD DMA1_Stream6_IRQHandler ; DMA1 Stream 6 DCD ADC_IRQHandler ; ADC1, ADC2 and ADC3s DCD CAN1_TX_IRQHandler ; CAN1 TX DCD CAN1_RX0_IRQHandler ; CAN1 RX0 DCD CAN1_RX1_IRQHandler ; CAN1 RX1 DCD CAN1_SCE_IRQHandler ; CAN1 SCE DCD EXTI9_5_IRQHandler ; External Line[9:5]s DCD TIM1_BRK_TIM9_IRQHandler ; TIM1 Break and TIM9 DCD TIM1_UP_TIM10_IRQHandler ; TIM1 Update and TIM10 DCD TIM1_TRG_COM_TIM11_IRQHandler ; TIM1 Trigger and Commutation and TIM11 DCD TIM1_CC_IRQHandler ; TIM1 Capture Compare DCD TIM2_IRQHandler ; TIM2 DCD TIM3_IRQHandler ; TIM3 DCD TIM4_IRQHandler ; TIM4 DCD I2C1_EV_IRQHandler ; I2C1 Event DCD I2C1_ER_IRQHandler ; I2C1 Error DCD I2C2_EV_IRQHandler ; I2C2 Event DCD I2C2_ER_IRQHandler ; I2C2 Error DCD SPI1_IRQHandler ; SPI1 DCD SPI2_IRQHandler ; SPI2 DCD USART1_IRQHandler ; USART1 DCD USART2_IRQHandler ; USART2 DCD USART3_IRQHandler ; USART3 DCD EXTI15_10_IRQHandler ; External Line[15:10]s DCD RTC_Alarm_IRQHandler ; RTC Alarm (A and B) through EXTI Line DCD OTG_FS_WKUP_IRQHandler ; USB OTG FS Wakeup through EXTI line DCD TIM8_BRK_TIM12_IRQHandler ; TIM8 Break and TIM12 DCD TIM8_UP_TIM13_IRQHandler ; TIM8 Update and TIM13 DCD TIM8_TRG_COM_TIM14_IRQHandler ; TIM8 Trigger and Commutation and TIM14 DCD TIM8_CC_IRQHandler ; TIM8 Capture Compare DCD DMA1_Stream7_IRQHandler ; DMA1 Stream7 DCD FSMC_IRQHandler ; FSMC DCD SDIO_IRQHandler ; SDIO DCD TIM5_IRQHandler ; TIM5 DCD SPI3_IRQHandler ; SPI3 DCD UART4_IRQHandler ; UART4 DCD UART5_IRQHandler ; UART5 DCD TIM6_DAC_IRQHandler ; TIM6 and DAC1&2 underrun errors DCD TIM7_IRQHandler ; TIM7 DCD DMA2_Stream0_IRQHandler ; DMA2 Stream 0 DCD DMA2_Stream1_IRQHandler ; DMA2 Stream 1 DCD DMA2_Stream2_IRQHandler ; DMA2 Stream 2 DCD DMA2_Stream3_IRQHandler ; DMA2 Stream 3 DCD DMA2_Stream4_IRQHandler ; DMA2 Stream 4 DCD ETH_IRQHandler ; Ethernet DCD ETH_WKUP_IRQHandler ; Ethernet Wakeup through EXTI line DCD CAN2_TX_IRQHandler ; CAN2 TX DCD CAN2_RX0_IRQHandler ; CAN2 RX0 DCD CAN2_RX1_IRQHandler ; CAN2 RX1 DCD CAN2_SCE_IRQHandler ; CAN2 SCE DCD OTG_FS_IRQHandler ; USB OTG FS DCD DMA2_Stream5_IRQHandler ; DMA2 Stream 5 DCD DMA2_Stream6_IRQHandler ; DMA2 Stream 6 DCD DMA2_Stream7_IRQHandler ; DMA2 Stream 7 DCD USART6_IRQHandler ; USART6 DCD I2C3_EV_IRQHandler ; I2C3 event DCD I2C3_ER_IRQHandler ; I2C3 error DCD OTG_HS_EP1_OUT_IRQHandler ; USB OTG HS End Point 1 Out DCD OTG_HS_EP1_IN_IRQHandler ; USB OTG HS End Point 1 In DCD OTG_HS_WKUP_IRQHandler ; USB OTG HS Wakeup through EXTI DCD OTG_HS_IRQHandler ; USB OTG HS DCD DCMI_IRQHandler ; DCMI DCD CRYP_IRQHandler ; CRYP crypto DCD HASH_RNG_IRQHandler ; Hash and Rng DCD FPU_IRQHandler ; FPU __Vectors_End __Vectors_Size EQU __Vectors_End - __Vectors AREA |.text|, CODE, READONLY ; Reset handler Reset_Handler PROC EXPORT Reset_Handler [WEAK] IMPORT SystemInit IMPORT __main LDR R0, =SystemInit BLX R0 LDR R0, =__main BX R0 ENDP ; Dummy Exception Handlers (infinite loops which can be modified) NMI_Handler PROC EXPORT NMI_Handler [WEAK] B . ENDP HardFault_Handler\ PROC EXPORT HardFault_Handler [WEAK] B . ENDP MemManage_Handler\ PROC EXPORT MemManage_Handler [WEAK] B . ENDP BusFault_Handler\ PROC EXPORT BusFault_Handler [WEAK] B . ENDP UsageFault_Handler\ PROC EXPORT UsageFault_Handler [WEAK] B . ENDP SVC_Handler PROC EXPORT SVC_Handler [WEAK] B . ENDP DebugMon_Handler\ PROC EXPORT DebugMon_Handler [WEAK] B . ENDP PendSV_Handler PROC EXPORT PendSV_Handler [WEAK] B . ENDP SysTick_Handler PROC EXPORT SysTick_Handler [WEAK] B . ENDP Default_Handler PROC EXPORT WWDG_IRQHandler [WEAK] EXPORT PVD_IRQHandler [WEAK] EXPORT TAMP_STAMP_IRQHandler [WEAK] EXPORT RTC_WKUP_IRQHandler [WEAK] EXPORT FLASH_IRQHandler [WEAK] EXPORT RCC_IRQHandler [WEAK] EXPORT EXTI0_IRQHandler [WEAK] EXPORT EXTI1_IRQHandler [WEAK] EXPORT EXTI2_IRQHandler [WEAK] EXPORT EXTI3_IRQHandler [WEAK] EXPORT EXTI4_IRQHandler [WEAK] EXPORT DMA1_Stream0_IRQHandler [WEAK] EXPORT DMA1_Stream1_IRQHandler [WEAK] EXPORT DMA1_Stream2_IRQHandler [WEAK] EXPORT DMA1_Stream3_IRQHandler [WEAK] EXPORT DMA1_Stream4_IRQHandler [WEAK] EXPORT DMA1_Stream5_IRQHandler [WEAK] EXPORT DMA1_Stream6_IRQHandler [WEAK] EXPORT ADC_IRQHandler [WEAK] EXPORT CAN1_TX_IRQHandler [WEAK] EXPORT CAN1_RX0_IRQHandler [WEAK] EXPORT CAN1_RX1_IRQHandler [WEAK] EXPORT CAN1_SCE_IRQHandler [WEAK] EXPORT EXTI9_5_IRQHandler [WEAK] EXPORT TIM1_BRK_TIM9_IRQHandler [WEAK] EXPORT TIM1_UP_TIM10_IRQHandler [WEAK] EXPORT TIM1_TRG_COM_TIM11_IRQHandler [WEAK] EXPORT TIM1_CC_IRQHandler [WEAK] EXPORT TIM2_IRQHandler [WEAK] EXPORT TIM3_IRQHandler [WEAK] EXPORT TIM4_IRQHandler [WEAK] EXPORT I2C1_EV_IRQHandler [WEAK] EXPORT I2C1_ER_IRQHandler [WEAK] EXPORT I2C2_EV_IRQHandler [WEAK] EXPORT I2C2_ER_IRQHandler [WEAK] EXPORT SPI1_IRQHandler [WEAK] EXPORT SPI2_IRQHandler [WEAK] EXPORT USART1_IRQHandler [WEAK] EXPORT USART2_IRQHandler [WEAK] EXPORT USART3_IRQHandler [WEAK] EXPORT EXTI15_10_IRQHandler [WEAK] EXPORT RTC_Alarm_IRQHandler [WEAK] EXPORT OTG_FS_WKUP_IRQHandler [WEAK] EXPORT TIM8_BRK_TIM12_IRQHandler [WEAK] EXPORT TIM8_UP_TIM13_IRQHandler [WEAK] EXPORT TIM8_TRG_COM_TIM14_IRQHandler [WEAK] EXPORT TIM8_CC_IRQHandler [WEAK] EXPORT DMA1_Stream7_IRQHandler [WEAK] EXPORT FSMC_IRQHandler [WEAK] EXPORT SDIO_IRQHandler [WEAK] EXPORT TIM5_IRQHandler [WEAK] EXPORT SPI3_IRQHandler [WEAK] EXPORT UART4_IRQHandler [WEAK] EXPORT UART5_IRQHandler [WEAK] EXPORT TIM6_DAC_IRQHandler [WEAK] EXPORT TIM7_IRQHandler [WEAK] EXPORT DMA2_Stream0_IRQHandler [WEAK] EXPORT DMA2_Stream1_IRQHandler [WEAK] EXPORT DMA2_Stream2_IRQHandler [WEAK] EXPORT DMA2_Stream3_IRQHandler [WEAK] EXPORT DMA2_Stream4_IRQHandler [WEAK] EXPORT ETH_IRQHandler [WEAK] EXPORT ETH_WKUP_IRQHandler [WEAK] EXPORT CAN2_TX_IRQHandler [WEAK] EXPORT CAN2_RX0_IRQHandler [WEAK] EXPORT CAN2_RX1_IRQHandler [WEAK] EXPORT CAN2_SCE_IRQHandler [WEAK] EXPORT OTG_FS_IRQHandler [WEAK] EXPORT DMA2_Stream5_IRQHandler [WEAK] EXPORT DMA2_Stream6_IRQHandler [WEAK] EXPORT DMA2_Stream7_IRQHandler [WEAK] EXPORT USART6_IRQHandler [WEAK] EXPORT I2C3_EV_IRQHandler [WEAK] EXPORT I2C3_ER_IRQHandler [WEAK] EXPORT OTG_HS_EP1_OUT_IRQHandler [WEAK] EXPORT OTG_HS_EP1_IN_IRQHandler [WEAK] EXPORT OTG_HS_WKUP_IRQHandler [WEAK] EXPORT OTG_HS_IRQHandler [WEAK] EXPORT DCMI_IRQHandler [WEAK] EXPORT CRYP_IRQHandler [WEAK] EXPORT HASH_RNG_IRQHandler [WEAK] EXPORT FPU_IRQHandler [WEAK] WWDG_IRQHandler PVD_IRQHandler TAMP_STAMP_IRQHandler RTC_WKUP_IRQHandler FLASH_IRQHandler RCC_IRQHandler EXTI0_IRQHandler EXTI1_IRQHandler EXTI2_IRQHandler EXTI3_IRQHandler EXTI4_IRQHandler DMA1_Stream0_IRQHandler DMA1_Stream1_IRQHandler DMA1_Stream2_IRQHandler DMA1_Stream3_IRQHandler DMA1_Stream4_IRQHandler DMA1_Stream5_IRQHandler DMA1_Stream6_IRQHandler ADC_IRQHandler CAN1_TX_IRQHandler CAN1_RX0_IRQHandler CAN1_RX1_IRQHandler CAN1_SCE_IRQHandler EXTI9_5_IRQHandler TIM1_BRK_TIM9_IRQHandler TIM1_UP_TIM10_IRQHandler TIM1_TRG_COM_TIM11_IRQHandler TIM1_CC_IRQHandler TIM2_IRQHandler TIM3_IRQHandler TIM4_IRQHandler I2C1_EV_IRQHandler I2C1_ER_IRQHandler I2C2_EV_IRQHandler I2C2_ER_IRQHandler SPI1_IRQHandler SPI2_IRQHandler USART1_IRQHandler USART2_IRQHandler USART3_IRQHandler EXTI15_10_IRQHandler RTC_Alarm_IRQHandler OTG_FS_WKUP_IRQHandler TIM8_BRK_TIM12_IRQHandler TIM8_UP_TIM13_IRQHandler TIM8_TRG_COM_TIM14_IRQHandler TIM8_CC_IRQHandler DMA1_Stream7_IRQHandler FSMC_IRQHandler SDIO_IRQHandler TIM5_IRQHandler SPI3_IRQHandler UART4_IRQHandler UART5_IRQHandler TIM6_DAC_IRQHandler TIM7_IRQHandler DMA2_Stream0_IRQHandler DMA2_Stream1_IRQHandler DMA2_Stream2_IRQHandler DMA2_Stream3_IRQHandler DMA2_Stream4_IRQHandler ETH_IRQHandler ETH_WKUP_IRQHandler CAN2_TX_IRQHandler CAN2_RX0_IRQHandler CAN2_RX1_IRQHandler CAN2_SCE_IRQHandler OTG_FS_IRQHandler DMA2_Stream5_IRQHandler DMA2_Stream6_IRQHandler DMA2_Stream7_IRQHandler USART6_IRQHandler I2C3_EV_IRQHandler I2C3_ER_IRQHandler OTG_HS_EP1_OUT_IRQHandler OTG_HS_EP1_IN_IRQHandler OTG_HS_WKUP_IRQHandler OTG_HS_IRQHandler DCMI_IRQHandler CRYP_IRQHandler HASH_RNG_IRQHandler FPU_IRQHandler B . ENDP ALIGN ;******************************************************************************* ; User Stack and Heap initialization ;******************************************************************************* IF :DEF:__MICROLIB EXPORT __initial_sp EXPORT __heap_base EXPORT __heap_limit ELSE IMPORT __use_two_region_memory EXPORT __user_initial_stackheap __user_initial_stackheap LDR R0, = Heap_Mem LDR R1, =(Stack_Mem + Stack_Size) LDR R2, = (Heap_Mem + Heap_Size) LDR R3, = Stack_Mem BX LR ALIGN ENDIF END ;************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE*****
Mr-Xiao2021/ascend_op_learning
5,593
robot/ascend_car/Ascend-智能车底盘控制源码及说明/Ascend-底盘控制stm32源码/FreeRTOS/portable/RVDS/ARM7_LPC21xx/portASM.s
;/* ; FreeRTOS V9.0.0 - Copyright (C) 2016 Real Time Engineers Ltd. ; All rights reserved ; ; ; *************************************************************************** ; * * ; * FreeRTOS tutorial books are available in pdf and paperback. * ; * Complete, revised, and edited pdf reference manuals are also * ; * available. * ; * * ; * Purchasing FreeRTOS documentation will not only help you, by * ; * ensuring you get running as quickly as possible and with an * ; * in-depth knowledge of how to use FreeRTOS, it will also help * ; * the FreeRTOS project to continue with its mission of providing * ; * professional grade, cross platform, de facto standard solutions * ; * for microcontrollers - completely free of charge! * ; * * ; * >>> See http://www.FreeRTOS.org/Documentation for details. <<< * ; * * ; * Thank you for using FreeRTOS, and thank you for your support! * ; * * ; *************************************************************************** ; ; ; This file is part of the FreeRTOS distribution. ; ; FreeRTOS is free software; you can redistribute it and/or modify it under ; the terms of the GNU General Public License (version 2) as published by the ; Free Software Foundation AND MODIFIED BY the FreeRTOS exception. ; >>>NOTE<<< The modification to the GPL is included to allow you to ; distribute a combined work that includes FreeRTOS without being obliged to ; provide the source code for proprietary components outside of the FreeRTOS ; kernel. FreeRTOS is distributed in the hope that it will be useful, but ; WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY ; or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for ; more details. You should have received a copy of the GNU General Public ; License and the FreeRTOS license exception along with FreeRTOS; if not it ; can be viewed here: http://www.freertos.org/a00114.html and also obtained ; by writing to Richard Barry, contact details for whom are available on the ; FreeRTOS WEB site. ; ; 1 tab == 4 spaces! ; ; http://www.FreeRTOS.org - Documentation, latest information, license and ; contact details. ; ; http://www.SafeRTOS.com - A version that is certified for use in safety ; critical systems. ; ; http://www.OpenRTOS.com - Commercial support, development, porting, ; licensing and training services. ;*/ INCLUDE portmacro.inc IMPORT vTaskSwitchContext IMPORT xTaskIncrementTick EXPORT vPortYieldProcessor EXPORT vPortStartFirstTask EXPORT vPreemptiveTick EXPORT vPortYield VICVECTADDR EQU 0xFFFFF030 T0IR EQU 0xE0004000 T0MATCHBIT EQU 0x00000001 ARM AREA PORT_ASM, CODE, READONLY ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;; ; Starting the first task is done by just restoring the context ; setup by pxPortInitialiseStack ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;; vPortStartFirstTask PRESERVE8 portRESTORE_CONTEXT vPortYield PRESERVE8 SVC 0 bx lr ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;; ; Interrupt service routine for the SWI interrupt. The vector table is ; configured in the startup.s file. ; ; vPortYieldProcessor() is used to manually force a context switch. The ; SWI interrupt is generated by a call to taskYIELD() or portYIELD(). ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;; vPortYieldProcessor PRESERVE8 ; Within an IRQ ISR the link register has an offset from the true return ; address, but an SWI ISR does not. Add the offset manually so the same ; ISR return code can be used in both cases. ADD LR, LR, #4 ; Perform the context switch. portSAVE_CONTEXT ; Save current task context LDR R0, =vTaskSwitchContext ; Get the address of the context switch function MOV LR, PC ; Store the return address BX R0 ; Call the contedxt switch function portRESTORE_CONTEXT ; restore the context of the selected task ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;; ; Interrupt service routine for preemptive scheduler tick timer ; Only used if portUSE_PREEMPTION is set to 1 in portmacro.h ; ; Uses timer 0 of LPC21XX Family ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;; vPreemptiveTick PRESERVE8 portSAVE_CONTEXT ; Save the context of the current task. LDR R0, =xTaskIncrementTick ; Increment the tick count. MOV LR, PC ; This may make a delayed task ready BX R0 ; to run. CMP R0, #0 BEQ SkipContextSwitch LDR R0, =vTaskSwitchContext ; Find the highest priority task that MOV LR, PC ; is ready to run. BX R0 SkipContextSwitch MOV R0, #T0MATCHBIT ; Clear the timer event LDR R1, =T0IR STR R0, [R1] LDR R0, =VICVECTADDR ; Acknowledge the interrupt STR R0,[R0] portRESTORE_CONTEXT ; Restore the context of the highest ; priority task that is ready to run. END
Mr-Xiao2021/ascend_op_learning
6,530
robot/ascend_car/Ascend-智能车底盘控制源码及说明/Ascend-底盘控制stm32源码/FreeRTOS/portable/RVDS/ARM_CA9/portASM.s
;/* ; FreeRTOS V9.0.0 - Copyright (C) 2016 Real Time Engineers Ltd. ; All rights reserved ; ; ; *************************************************************************** ; * * ; * FreeRTOS tutorial books are available in pdf and paperback. * ; * Complete, revised, and edited pdf reference manuals are also * ; * available. * ; * * ; * Purchasing FreeRTOS documentation will not only help you, by * ; * ensuring you get running as quickly as possible and with an * ; * in-depth knowledge of how to use FreeRTOS, it will also help * ; * the FreeRTOS project to continue with its mission of providing * ; * professional grade, cross platform, de facto standard solutions * ; * for microcontrollers - completely free of charge! * ; * * ; * >>> See http://www.FreeRTOS.org/Documentation for details. <<< * ; * * ; * Thank you for using FreeRTOS, and thank you for your support! * ; * * ; *************************************************************************** ; ; ; This file is part of the FreeRTOS distribution. ; ; FreeRTOS is free software; you can redistribute it and/or modify it under ; the terms of the GNU General Public License (version 2) as published by the ; Free Software Foundation AND MODIFIED BY the FreeRTOS exception. ; >>>NOTE<<< The modification to the GPL is included to allow you to ; distribute a combined work that includes FreeRTOS without being obliged to ; provide the source code for proprietary components outside of the FreeRTOS ; kernel. FreeRTOS is distributed in the hope that it will be useful, but ; WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY ; or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for ; more details. You should have received a copy of the GNU General Public ; License and the FreeRTOS license exception along with FreeRTOS; if not it ; can be viewed here: http://www.freertos.org/a00114.html and also obtained ; by writing to Richard Barry, contact details for whom are available on the ; FreeRTOS WEB site. ; ; 1 tab == 4 spaces! ; ; http://www.FreeRTOS.org - Documentation, latest information, license and ; contact details. ; ; http://www.SafeRTOS.com - A version that is certified for use in safety ; critical systems. ; ; http://www.OpenRTOS.com - Commercial support, development, porting, ; licensing and training services. ;*/ INCLUDE portmacro.inc IMPORT vApplicationIRQHandler IMPORT vTaskSwitchContext IMPORT ulPortYieldRequired IMPORT ulPortInterruptNesting IMPORT vTaskSwitchContext IMPORT ulICCIAR IMPORT ulICCEOIR EXPORT FreeRTOS_SWI_Handler EXPORT FreeRTOS_IRQ_Handler EXPORT vPortRestoreTaskContext ARM AREA PORT_ASM, CODE, READONLY ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;; ; SVC handler is used to yield a task. ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;; FreeRTOS_SWI_Handler PRESERVE8 ; Save the context of the current task and select a new task to run. portSAVE_CONTEXT LDR R0, =vTaskSwitchContext BLX R0 portRESTORE_CONTEXT ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;; ; vPortRestoreTaskContext is used to start the scheduler. ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;; vPortRestoreTaskContext ; Switch to system mode CPS #SYS_MODE portRESTORE_CONTEXT ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;; ; PL390 GIC interrupt handler ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;; FreeRTOS_IRQ_Handler ; Return to the interrupted instruction. SUB lr, lr, #4 ; Push the return address and SPSR PUSH {lr} MRS lr, SPSR PUSH {lr} ; Change to supervisor mode to allow reentry. CPS #SVC_MODE ; Push used registers. PUSH {r0-r4, r12} ; Increment nesting count. r3 holds the address of ulPortInterruptNesting ; for future use. r1 holds the original ulPortInterruptNesting value for ; future use. LDR r3, =ulPortInterruptNesting LDR r1, [r3] ADD r4, r1, #1 STR r4, [r3] ; Read value from the interrupt acknowledge register, which is stored in r0 ; for future parameter and interrupt clearing use. LDR r2, =ulICCIAR LDR r0, [r2] ; Ensure bit 2 of the stack pointer is clear. r2 holds the bit 2 value for ; future use. MOV r2, sp AND r2, r2, #4 SUB sp, sp, r2 ; Call the interrupt handler PUSH {r0-r3, lr} LDR r1, =vApplicationIRQHandler BLX r1 POP {r0-r3, lr} ADD sp, sp, r2 CPSID i ; Write the value read from ICCIAR to ICCEOIR LDR r4, =ulICCEOIR STR r0, [r4] ; Restore the old nesting count STR r1, [r3] ; A context switch is never performed if the nesting count is not 0 CMP r1, #0 BNE exit_without_switch ; Did the interrupt request a context switch? r1 holds the address of ; ulPortYieldRequired and r0 the value of ulPortYieldRequired for future ; use. LDR r1, =ulPortYieldRequired LDR r0, [r1] CMP r0, #0 BNE switch_before_exit exit_without_switch ; No context switch. Restore used registers, LR_irq and SPSR before ; returning. POP {r0-r4, r12} CPS #IRQ_MODE POP {LR} MSR SPSR_cxsf, LR POP {LR} MOVS PC, LR switch_before_exit ; A context swtich is to be performed. Clear the context switch pending ; flag. MOV r0, #0 STR r0, [r1] ; Restore used registers, LR-irq and SPSR before saving the context ; to the task stack. POP {r0-r4, r12} CPS #IRQ_MODE POP {LR} MSR SPSR_cxsf, LR POP {LR} portSAVE_CONTEXT ; Call the function that selects the new task to execute. ; vTaskSwitchContext() if vTaskSwitchContext() uses LDRD or STRD ; instructions, or 8 byte aligned stack allocated data. LR does not need ; saving as a new LR will be loaded by portRESTORE_CONTEXT anyway. LDR r0, =vTaskSwitchContext BLX r0 ; Restore the context of, and branch to, the task selected to execute next. portRESTORE_CONTEXT END
Mudassir10X/RISCV-DV2B
1,267
Task_1/task1.S
.data .align 4; .global tohost; tohost: .dword 0; .align 4; .global fromhost; fromhost: .dword 0; .text .globl _start _start: # ----------------------Start of Code---------------------- _start: la t0, m_trap csrw mtvec, t0 li sp, 0x80005000 li a0, 0 jal change_mode nop ecall li a0, 1 jal change_mode j write_tohost m_trap: csrr t2, mepc addi t2, t2, 4 csrw mepc, t2 csrr t0, mcause li t1, 0x8 li t2, 0x9 beq t0, t1, trap_to_s beq t0, t2, trap_to_m mret trap_to_s: li t1, 0x00000800 or t0, t0, t1 csrs mstatus, t0 mret trap_to_m: li t1, 0x1800 or t0, t0, t1 csrs mstatus, t0 mret change_mode: csrw mepc, ra li t0, 1 beq a0, zero, _super beq a0, t0, _user _super: li t2, 0x1800 // Clearing MPP bits csrc mstatus, t2 li t3, 0x800 // setting MPP bits to S mode (01) csrs mstatus, t3 mret _user: li t2, 0x1800 // Clearing MPP bits csrc mstatus, t2 // setting MPP bits to U mode (00) mret # -----------------------End of Code----------------------- write_tohost: li x1, 1 la t0, tohost sw x1, 0(t0) j write_tohost
Mudassir10X/RISCV-DV2B
7,100
Task_5/backup.S
.text .globl _start _start: # ----------------------Start of Code---------------------- _start: la t0, m_trap // setting trap handler address csrw mtvec, t0 li sp, 0x80009000 // setting stack pointer # Setting PMP TOR Region address li t0, 0xFFFFFFFF srli t0, t0, 2 csrw pmpaddr0, t0 # Configuring PMP TOR Region li t1, 0x0707070F csrw pmpcfg0, t1 # --------------------------------------- .set va, 0x90000000 .set pa, 0x80000000 la a0, page_table srli t5, a0, 12 li t4, 0x80000000 or t5, t5, t4 srli t2, a0, 12 slli t2, t2, 10 li t4, 0xCF or t4, t2, t4 .set vpn, ((va>>22)&0x3FF)<<2 li t6, vpn add t6, t6, a0 li a3, pa sw a3, 0(t6) # --------------------------------------- # Configuring PTE # li t2, 0x8000000F # li t3, 0x80180000 # sw t2, 0(t3) # congifuring SATP # li t4, 0x800400C0 // SATP.MODE = SV32, SATP.PPN = 0x40400 => PA = 0x10100000 csrw satp, t5 # Changing to S mode li a0, 0 jal change_mode # bunch of nop's nop nop nop nop nop nop # jump to exit Routine j write_tohost # Mode Changing Function change_mode: la a1, va csrw mepc,a1 li t0, 1 beq a0, zero, _super beq a0, t0, _user _super: li t2, 0x1800 // Clearing MPP bits csrc mstatus, t2 li t3, 0x800 // setting MPP bits to S mode (01) csrs mstatus, t3 lw ra, 0(sp) addi sp, sp, 4 mret _user: li t2, 0x1800 // Clearing MPP bits csrc mstatus, t2 // setting MPP bits to U mode (00) mret # TRAP-HANDLER .align 4; m_trap: # Loading regs in Stack addi sp, sp, -28 sw t0, 0(sp) sw t1, 4(sp) sw t2, 8(sp) sw t3, 12(sp) sw t4, 16(sp) sw t5, 20(sp) sw ra, 24(sp) j check_cause check_cause: # Checking mcause for appropriate trap handling csrr t0, mcause li t1, 0x1 li t2, 0x5 li t3, 0x7 beq t0, t1, ignore_exception beq t0, t2, ignore_exception beq t0, t3, ignore_exception li t1, 0x8 li t2, 0x9 li t3, 0xb beq t0, t1, uecall_escape beq t0, t2, ecall_escape beq t0, t3, ecall_escape j ignore_exception // If none of the above. just ignore exception trap_to_s: // Return in S mode li t1, 0x800 or t0, t0, t1 csrs mstatus, t0 j trap_exit trap_to_m: // Return in M mode li t1, 0x1800 or t0, t0, t1 csrs mstatus, t0 j trap_exit ecall_escape: // Just raise mode to M and leave trap-handler csrr t2, mepc addi t2, t2, 4 csrw mepc, t2 j trap_to_m uecall_escape: // Just raise mode to S and leave trap-handler csrr t2, mepc addi t2, t2, 4 csrw mepc, t2 j trap_to_s i_access_fault: csrw mepc, ra // In case of acess fault j trap_exit ignore_exception: // Just ignore exception and leave trap-handler csrr t2, mepc addi t2, t2, 4 csrw mepc, t2 j trap_exit trap_exit: # Loading regs from Stack lw t0, 0(sp) lw t1, 4(sp) lw t2, 8(sp) lw t3, 12(sp) lw t4, 16(sp) lw t5, 20(sp) lw ra, 24(sp) addi sp, sp, 28 mret // Exiting Trap # -----------------------End of Code----------------------- write_tohost: li x1, 1 la t0, tohost sw x1, 0(t0) j write_tohost .data .align 4; .global tohost; tohost: .dword 0; .align 4; .global fromhost; fromhost: .dword 0; .align 4; page_table: .word # .text # .globl _start # _start: # # ----------------------Start of Code---------------------- # _start: # la t0, m_trap // setting trap handler address # csrw mtvec, t0 # li sp, 0x80009000 // setting stack pointer # # Setting PMP TOR Region address # li t0, 0xFFFFFFFF # srli t0, t0, 2 # csrw pmpaddr0, t0 # # Configuring PMP TOR Region # li t1, 0x0707070F # csrw pmpcfg0, t1 # # Configuring PTE # li t2, 0x8000000F # li t3, 0x80100000 // # sw t2, 0(t3) # # congifuring SATP # li t4, 0x80200400 // SATP.MODE = SV32, SATP.PPN = 0x40400 => PA = 0x10100000 # csrw satp, t4 # # Changing to S mode # li a0, 0 # jal change_mode # # bunch of nop's # nop # nop # nop # nop # nop # nop # # jump to exit Routine # j write_tohost # # Mode Changing Function # change_mode: # csrw mepc, zero # li t0, 1 # beq a0, zero, _super # beq a0, t0, _user # _super: # li t2, 0x1800 // Clearing MPP bits # csrc mstatus, t2 # li t3, 0x800 // setting MPP bits to S mode (01) # csrs mstatus, t3 # lw ra, 0(sp) # addi sp, sp, 4 # mret # _user: # li t2, 0x1800 // Clearing MPP bits # csrc mstatus, t2 // setting MPP bits to U mode (00) # mret # # TRAP-HANDLER # .align 4; # m_trap: # # Loading regs in Stack # addi sp, sp, -28 # sw t0, 0(sp) # sw t1, 4(sp) # sw t2, 8(sp) # sw t3, 12(sp) # sw t4, 16(sp) # sw t5, 20(sp) # sw ra, 24(sp) # j check_cause # check_cause: # # Checking mcause for appropriate trap handling # csrr t0, mcause # li t1, 0x1 # li t2, 0x5 # li t3, 0x7 # beq t0, t1, ignore_exception # beq t0, t2, ignore_exception # beq t0, t3, ignore_exception # li t1, 0x8 # li t2, 0x9 # li t3, 0xb # beq t0, t1, uecall_escape # beq t0, t2, ecall_escape # beq t0, t3, ecall_escape # j ignore_exception // If none of the above. just ignore exception # trap_to_s: // Return in S mode # li t1, 0x800 # or t0, t0, t1 # csrs mstatus, t0 # j trap_exit # trap_to_m: // Return in M mode # li t1, 0x1800 # or t0, t0, t1 # csrs mstatus, t0 # j trap_exit # ecall_escape: // Just raise mode to M and leave trap-handler # csrr t2, mepc # addi t2, t2, 4 # csrw mepc, t2 # j trap_to_m # uecall_escape: // Just raise mode to S and leave trap-handler # csrr t2, mepc # addi t2, t2, 4 # csrw mepc, t2 # j trap_to_s # i_access_fault: # csrw mepc, ra // In case of acess fault # j trap_exit # ignore_exception: // Just ignore exception and leave trap-handler # csrr t2, mepc # addi t2, t2, 4 # csrw mepc, t2 # j trap_exit # trap_exit: # # Loading regs from Stack # lw t0, 0(sp) # lw t1, 4(sp) # lw t2, 8(sp) # lw t3, 12(sp) # lw t4, 16(sp) # lw t5, 20(sp) # lw ra, 24(sp) # addi sp, sp, 28 # mret // Exiting Trap # # -----------------------End of Code----------------------- # write_tohost: # li x1, 1 # la t0, tohost # sw x1, 0(t0) # j write_tohost # .data # .align 4; .global tohost; tohost: .dword 0; # .align 4; .global fromhost; fromhost: .dword 0;
Mudassir10X/RISCV-DV2B
3,884
Task_5/task5.S
.text .globl _start _start: # ----------------------Start of Code---------------------- _start: la t0, m_trap // setting trap handler address csrw mtvec, t0 # Setting PMP TOR Region address li t0, 0xFFFFFFFF srli t0, t0, 2 csrw pmpaddr0, t0 # Configuring PMP TOR Region li t1, 0x0F csrw pmpcfg0, t1 li a0, 0x80000000 # Setting Physical Address li a1, 0xF # Setting permissions [DAGUXWRV](8'b00001111) li a2, 0x80000000 # Setting Virtual Address for one to one mapping jal _setup_pte # Function to setup Page Table Entry jal _set_SATP # Function to set the SATP register li a0, 0 # Argument (0=>S-Mode, 1=>U-Mode) jal change_mode # bunch of nop's nop nop nop nop nop nop # Jump to exit routine j write_tohost # Function to Setup Page table entry _setup_pte: la t0, root_page_table # Page Table Root Address srli t1, a2, 22 slli t1, t1, 2 # Create PTE by getting PPN and adding permissions bit srli a0, a0, 12 slli a0, a0, 10 or a0, a0, a1 add t0, t0 ,t1 sw a0, 0(t0) ret # Function to set the SATP register _set_SATP: la t0, root_page_table srli t0, t0, 12 # PPN of Page table root li t1, 0x80000000 # Mode = SV32 or t0, t0, t1 csrw satp, t0 ret # Mode Changing Function change_mode: csrw mepc, ra li t0, 1 beq a0, zero, _super beq a0, t0, _user _super: li t2, 0x1800 // Clearing MPP bits csrc mstatus, t2 li t3, 0x800 // setting MPP bits to S mode (01) csrs mstatus, t3 mret _user: li t2, 0x1800 // Clearing MPP bits csrc mstatus, t2 // setting MPP bits to U mode (00) mret # TRAP-HANDLER .align 4; m_trap: # Loading regs in Stack addi sp, sp, -28 sw t0, 0(sp) sw t1, 4(sp) sw t2, 8(sp) sw t3, 12(sp) sw t4, 16(sp) sw t5, 20(sp) sw ra, 24(sp) j check_cause check_cause: # Checking mcause for appropriate trap handling csrr t0, mcause li t1, 0x1 li t2, 0x5 li t3, 0x7 li t4, 0xc beq t0, t1, ignore_exception beq t0, t2, ignore_exception beq t0, t3, ignore_exception beq t0, t4, write_tohost // If page fault occurs then exit (Self Checking) j ignore_exception // If none of the above. just ignore exception trap_to_s: // Return in S mode li t1, 0x800 or t0, t0, t1 csrs mstatus, t0 j trap_exit trap_to_m: // Return in M mode li t1, 0x1800 or t0, t0, t1 csrs mstatus, t0 j trap_exit ecall_escape: // Just raise mode to M and leave trap-handler csrr t2, mepc addi t2, t2, 4 csrw mepc, t2 j trap_to_m uecall_escape: // Just raise mode to S and leave trap-handler csrr t2, mepc addi t2, t2, 4 csrw mepc, t2 j trap_to_s i_access_fault: csrw mepc, ra // In case of acess fault j trap_exit ignore_exception: // Just ignore exception and leave trap-handler csrr t2, mepc addi t2, t2, 4 csrw mepc, t2 j trap_exit trap_exit: # Loading regs from Stack lw t0, 0(sp) lw t1, 4(sp) lw t2, 8(sp) lw t3, 12(sp) lw t4, 16(sp) lw t5, 20(sp) lw ra, 24(sp) addi sp, sp, 28 mret // Exiting Trap # -----------------------End of Code----------------------- write_tohost: li x1, 1 la t0, tohost sw x1, 0(t0) j write_tohost .data .align 4 root_page_table: .word 4096 .align 4; .global tohost; tohost: .dword 0; .align 4; .global fromhost; fromhost: .dword 0;
Mudassir10X/RISCV-DV2B
2,572
Task_7/task7.S
.text .globl _start _start: # ----------------------Start of Code---------------------- _start: la t0, m_trap // setting trap handler address csrw mtvec, t0 li sp, 0x80005000 // setting stack pointer # # Setting MSECPMP # li t2, 0x4 # csrs mseccfg, t2 # li t2, 0x1 # csrs mseccfg, t2 # Setting PMP Regions address li t0, 0x80001000 srli t0, t0, 2 csrw pmpaddr0, t0 li t1, 0x80001000 srli t1, t1, 2 ori t1, t1, 0x1FF csrw pmpaddr1, t1 # Configuring PMP Regions li t2, 0x07079C8C csrw pmpcfg0, t2 # Setting MSECPMP li t2, 0x1 csrs mseccfg, t2 # NAPOT: Store and load in M-Mode li t0, 0x80001a00 sw t2, 0(t0) // Store Check lw t2, 0(t0) // Load Check jalr ra, t0, 0 // Execution Check li t4, 1 li t5, 2 bne s0, t4, write_tohost bne s1, t5, write_tohost # Bunch of nops for self checking nop nop nop nop nop nop nop nop # jump to exit Routine j write_tohost # TRAP-HANDLER .align 4; m_trap: # Loading regs in Stack addi sp, sp, -28 sw t0, 0(sp) sw t1, 4(sp) sw t2, 8(sp) sw t3, 12(sp) sw t4, 16(sp) sw t5, 20(sp) sw ra, 24(sp) j check_cause check_cause: # Checking mcause for appropriate trap handling csrr t0, mcause li t1, 0x2 li t2, 0x5 li t3, 0x7 beq t0, t1, i_instruction_fault beq t0, t2, ignore_exception beq t0, t3, ignore_exception j ignore_exception // If none of the above. just exit trap i_instruction_fault: csrw mepc, ra // In case of acess fault as I am going to NAPOT region and there is nothing present after that. thus returning to the ra where the jump was made. addi s0, s0, 1 // Self-checking variable j trap_exit ignore_exception: // Just ignore exception and leave trap-handler csrr t2, mepc addi t2, t2, 4 csrw mepc, t2 addi s1, s1, 1 // Self-checking variable j trap_exit trap_exit: # Loading regs from Stack lw t0, 0(sp) lw t1, 4(sp) lw t2, 8(sp) lw t3, 12(sp) lw t4, 16(sp) lw t5, 20(sp) lw ra, 24(sp) addi sp, sp, 28 mret // Exiting Trap # -----------------------End of Code----------------------- write_tohost: li x1, 1 la t0, tohost sw x1, 0(t0) j write_tohost .data .align 4; .global tohost; tohost: .dword 0; .align 4; .global fromhost; fromhost: .dword 0;
Mudassir10X/RISCV-DV2B
3,805
Task_3/task3.S
.text .globl _start _start: # ----------------------Start of Code---------------------- _start: la t0, m_trap // setting M trap handler address csrw mtvec, t0 la t1, s_trap // setting S trap handler address csrw stvec, t1 li t2, 0x104 csrw medeleg, t2 li sp, 0x80005000 // setting stack pointer # Jump to U-Mode li a0, 1 // argument a0 = 1 (U-Mode) jal change_mode # Bunch of nop's nop nop nop # Illegal instruction exception csrr t3, sstatus ecall # jump to exit Routine j write_tohost # Mode Changing Function change_mode: csrw mepc, ra li t0, 1 beq a0, zero, _super beq a0, t0, _user _super: li t2, 0x1800 // Clearing MPP bits csrc mstatus, t2 li t3, 0x800 // setting MPP bits to S mode (01) csrs mstatus, t3 lw ra, 0(sp) addi sp, sp, 4 mret _user: li t2, 0x1800 // Clearing MPP bits csrc mstatus, t2 // setting MPP bits to U mode (00) mret # Machine Mode TRAP-HANDLER .align 4; m_trap: # Loading regs in Stack addi sp, sp, -28 sw t0, 0(sp) sw t1, 4(sp) sw t2, 8(sp) sw t3, 12(sp) sw t4, 16(sp) sw t5, 20(sp) sw ra, 24(sp) j m_check_cause m_check_cause: # Checking mcause for appropriate trap handling csrr t0, mcause li t1, 0x5 li t2, 0x7 li t3, 0x9 li t4, 0xb beq t0, t1, m_ignore_exception beq t0, t2, m_ignore_exception beq t0, t3, m_ecall_escape beq t0, t4, m_ecall_escape j m_trap_exit // If none of the above. just exit trap m_trap_to_s: // Return in S mode li t1, 0x800 or t0, t0, t1 csrs mstatus, t0 j m_trap_exit m_trap_to_m: // Return in M mode li t1, 0x1800 or t0, t0, t1 csrs mstatus, t0 j m_trap_exit m_ecall_escape: // Just raise mode to M and leave trap-handler csrr t2, mepc addi t2, t2, 4 csrw mepc, t2 j m_trap_to_m m_ignore_exception: // Just ignore exception and leave trap-handler csrr t2, mepc addi t2, t2, 4 csrw mepc, t2 j m_trap_exit m_trap_exit: # Loading regs from Stack lw t0, 0(sp) lw t1, 4(sp) lw t2, 8(sp) lw t3, 12(sp) lw t4, 16(sp) lw t5, 20(sp) lw ra, 24(sp) addi sp, sp, 28 mret // Exiting Trap # Supervisor Mode TRAP-HANDLER .align 4; s_trap: # Loading regs in Stack addi sp, sp, -28 sw t0, 0(sp) sw t1, 4(sp) sw t2, 8(sp) sw t3, 12(sp) sw t4, 16(sp) sw t5, 20(sp) sw ra, 24(sp) j s_check_cause s_check_cause: # Checking scause for appropriate trap handling csrr t0, scause li t1, 0x2 li t2, 0x8 beq t0, t1, s_trap_to_s beq t0, t2, s_uecall_escape j s_trap_exit // If none of the above. just exit trap s_trap_to_s: // Return in S mode li t1, 0x100 or t0, t0, t1 csrs sstatus, t0 j s_trap_exit s_uecall_escape: // Just raise mode to S and leave trap-handler csrr t2, sepc addi t2, t2, 4 csrw sepc, t2 j s_trap_to_s # s_i_instruction_fault: # csrw sepc, ra // In case of acess fault # j s_trap_exit s_trap_exit: # Loading regs from Stack lw t0, 0(sp) lw t1, 4(sp) lw t2, 8(sp) lw t3, 12(sp) lw t4, 16(sp) lw t5, 20(sp) lw ra, 24(sp) addi sp, sp, 28 sret // Exiting Trap # -----------------------End of Code----------------------- write_tohost: li x1, 1 la t0, tohost sw x1, 0(t0) j write_tohost .data .align 4; .global tohost; tohost: .dword 0; .align 4; .global fromhost; fromhost: .dword 0;
Mudassir10X/RISCV-DV2B
3,800
Task_2/task2.S
.text .globl _start _start: # ----------------------Start of Code---------------------- _start: la t0, m_trap // setting trap handler address csrw mtvec, t0 li sp, 0x80005000 // setting stack pointer # Setting PMP Regions address li t0, 0x80001000 srli t0, t0, 2 csrw pmpaddr0, t0 li t1, 0x80001000 srli t1, t1, 2 ori t1, t1, 0x1FF csrw pmpaddr1, t1 # Configuring PMP Regions li t2, 0x0707190C csrw pmpcfg0, t2 # Jump to S-Mode li a0, 0 // argument a0 = 0 (S-Mode) jal change_mode # Bunch of nop's to test that the PMP TOR region has execute permissions nop nop nop nop nop # TOR: Store and load in S-Mode li t0, 0x80000a00 sw t2, 0(t0) lw t2, 0(t0) # NAPOT: Store and load in S-Mode li t0, 0x80001a00 sw t2, 0(t0) lw t2, 0(t0) jalr ra, t0, 0 # Back in machine mode and now applying PMP for M mode ecall nop nop li t2, 0x0707998C csrw pmpcfg0, t2 # TOR: Store and load in M-Mode li t0, 0x80000a00 sw t2, 0(t0) lw t2, 0(t0) # NAPOT: Store and load in M-Mode li t0, 0x80001a00 sw t2, 0(t0) lw t2, 0(t0) jalr ra, t0, 0 # jump to exit Routine j write_tohost # Mode Changing Function change_mode: csrw mepc, ra li t0, 1 beq a0, zero, _super beq a0, t0, _user _super: li t2, 0x1800 // Clearing MPP bits csrc mstatus, t2 li t3, 0x800 // setting MPP bits to S mode (01) csrs mstatus, t3 lw ra, 0(sp) addi sp, sp, 4 mret _user: li t2, 0x1800 // Clearing MPP bits csrc mstatus, t2 // setting MPP bits to U mode (00) mret # TRAP-HANDLER .align 4; m_trap: # Loading regs in Stack addi sp, sp, -28 sw t0, 0(sp) sw t1, 4(sp) sw t2, 8(sp) sw t3, 12(sp) sw t4, 16(sp) sw t5, 20(sp) sw ra, 24(sp) j check_cause check_cause: # Checking mcause for appropriate trap handling csrr t0, mcause li t1, 0x1 li t2, 0x5 li t3, 0x7 beq t0, t1, i_access_fault beq t0, t2, ignore_exception beq t0, t3, ignore_exception li t1, 0x8 li t2, 0x9 li t3, 0xb beq t0, t1, uecall_escape beq t0, t2, ecall_escape beq t0, t3, ecall_escape j trap_exit // If none of the above. just exit trap trap_to_s: // Return in S mode li t1, 0x800 or t0, t0, t1 csrs mstatus, t0 j trap_exit trap_to_m: // Return in M mode li t1, 0x1800 or t0, t0, t1 csrs mstatus, t0 j trap_exit ecall_escape: // Just raise mode to M and leave trap-handler csrr t2, mepc addi t2, t2, 4 csrw mepc, t2 j trap_to_m uecall_escape: // Just raise mode to S and leave trap-handler csrr t2, mepc addi t2, t2, 4 csrw mepc, t2 j trap_to_s i_access_fault: csrw mepc, ra // In case of acess fault as I am going to NAPOT region and there is nothing present after that. thus returning to the ra where the jump was made. j trap_exit ignore_exception: // Just ignore exception and leave trap-handler csrr t2, mepc addi t2, t2, 4 csrw mepc, t2 j trap_exit trap_exit: # Loading regs from Stack lw t0, 0(sp) lw t1, 4(sp) lw t2, 8(sp) lw t3, 12(sp) lw t4, 16(sp) lw t5, 20(sp) lw ra, 24(sp) addi sp, sp, 28 mret // Exiting Trap # -----------------------End of Code----------------------- write_tohost: li x1, 1 la t0, tohost sw x1, 0(t0) j write_tohost .data .align 4; .global tohost; tohost: .dword 0; .align 4; .global fromhost; fromhost: .dword 0;
Mudassir10X/RISCV-DV2B
2,459
Task_6/task6.S
.text .globl _start _start: # ----------------------Start of Code---------------------- _start: la t0, m_trap // setting trap handler address csrw mtvec, t0 li sp, 0x80005000 // setting stack pointer # # Setting PMP Regions address li t0, 0x80001000 srli t0, t0, 2 csrw pmpaddr0, t0 li t1, 0x80001000 srli t1, t1, 2 ori t1, t1, 0x1FF csrw pmpaddr1, t1 # Configuring PMP Regions li t2, 0x07079F8c csrw pmpcfg0, t2 # NAPOT: Store and load in M-Mode li t0, 0x80001a00 sw t2, 0(t0) lw t2, 0(t0) jalr ra, t0, 0 li t2, 0x1 csrs mseccfg, t2 li t0, 0x80001a00 sw t2, 0(t0) lw t2, 0(t0) jalr ra, t0, 0 li t4, 2 li t5, 1 bne s0, t4, write_tohost bne s0, t5, write_tohost # Bunch of nops for self checking nop nop nop nop nop nop nop nop # jump to exit Routine j write_tohost # TRAP-HANDLER .align 4; m_trap: # Loading regs in Stack addi sp, sp, -28 sw t0, 0(sp) sw t1, 4(sp) sw t2, 8(sp) sw t3, 12(sp) sw t4, 16(sp) sw t5, 20(sp) sw ra, 24(sp) j check_cause check_cause: # Checking mcause for appropriate trap handling csrr t0, mcause li t1, 0x1 li t2, 0x2 li t3, 0x7 beq t0, t1, i_instruction_fault beq t0, t2, i_instruction_fault beq t0, t3, ignore_exception j ignore_exception // If none of the above. just exit trap i_instruction_fault: csrw mepc, ra // In case of acess fault as I am going to NAPOT region and there is nothing present after that. thus returning to the ra where the jump was made. addi s0, s0, 1 // Self-checking variable j trap_exit ignore_exception: // Just ignore exception and leave trap-handler csrr t2, mepc addi t2, t2, 4 csrw mepc, t2 addi s1, s1, 1 // Self-checking variable j trap_exit trap_exit: # Loading regs from Stack lw t0, 0(sp) lw t1, 4(sp) lw t2, 8(sp) lw t3, 12(sp) lw t4, 16(sp) lw t5, 20(sp) lw ra, 24(sp) addi sp, sp, 28 mret // Exiting Trap # -----------------------End of Code----------------------- write_tohost: li x1, 1 la t0, tohost sw x1, 0(t0) j write_tohost .data .align 4; .global tohost; tohost: .dword 0; .align 4; .global fromhost; fromhost: .dword 0;
Mudassir10X/RISCV-DV2B
1,281
Task_4/task4.S
.text .globl _start _start: # ----------------------Start of Code---------------------- _start: li sp, 0x80005000 // setting stack pointer # checking if FS is OFF li a0, 0 // at first the FS should be OFF (00) jal check_FS # Initializing FS li t0, 0x2000 csrs mstatus, t0 // Initializing FS (01) # checking FS to be clean. (01) li a0, 1 jal check_FS # Performing some Floating operations addi t1, x0, 200 addi t2, x0, 50 nop nop fcvt.s.w f0, t1 fcvt.s.w f1, t2 fadd.s f3, f0, f1 # Checking if FS is dirty now (11) li a0, 3 jal check_FS # jump to exit Routine j write_tohost # Check_FS function for self-checking check_FS: csrr t2, mstatus li t4, 0x6000 and t3, t2, t4 srli t3, t3, 13 bne t3, a0, write_tohost // if FAIL, the program will exit immediately ret // if PASS, the program will return and continue execution # -----------------------End of Code----------------------- write_tohost: li x1, 1 la t0, tohost sw x1, 0(t0) j write_tohost .data .align 4; .global tohost; tohost: .dword 0; .align 4; .global fromhost; fromhost: .dword 0;
MuoDoo/CirnoCore
2,218
src/trap/trap.S
.altmacro .macro SAVE_GP n sd x\n, \n*8(sp) .endm .macro LOAD_GP n ld x\n, \n*8(sp) .endm .section .text.trampoline .globl __alltraps .globl __restore .globl __alltraps_k .globl __restore_k .align 2 __alltraps: csrrw sp, sscratch, sp # now sp->*TrapContext in user space, sscratch->user stack # save other general purpose registers sd x1, 1*8(sp) # skip sp(x2), we will save it later sd x3, 3*8(sp) # skip tp(x4), application does not use it # save x5~x31 .set n, 5 .rept 27 SAVE_GP %n .set n, n+1 .endr # we can use t0/t1/t2 freely, because they have been saved in TrapContext csrr t0, sstatus csrr t1, sepc sd t0, 32*8(sp) sd t1, 33*8(sp) # read user stack from sscratch and save it in TrapContext csrr t2, sscratch sd t2, 2*8(sp) # load kernel_satp into t0 ld t0, 34*8(sp) # load trap_handler into t1 ld t1, 36*8(sp) # move to kernel_sp ld sp, 35*8(sp) # switch to kernel space csrw satp, t0 sfence.vma # jump to trap_handler jr t1 __restore: # a0: *TrapContext in user space(Constant); a1: user space token # switch to user space csrw satp, a1 sfence.vma csrw sscratch, a0 mv sp, a0 # now sp points to TrapContext in user space, start restoring based on it # restore sstatus/sepc ld t0, 32*8(sp) ld t1, 33*8(sp) csrw sstatus, t0 csrw sepc, t1 # restore general purpose registers except x0/sp/tp ld x1, 1*8(sp) ld x3, 3*8(sp) .set n, 5 .rept 27 LOAD_GP %n .set n, n+1 .endr # back to user stack ld sp, 2*8(sp) sret .align 2 __alltraps_k: addi sp, sp, -34*8 sd x1, 1*8(sp) sd x3, 3*8(sp) .set n, 5 .rept 27 SAVE_GP %n .set n, n+1 .endr csrr t0, sstatus csrr t1, sepc sd t0, 32*8(sp) sd t1, 33*8(sp) mv a0, sp csrr t2, sscratch jalr t2 __restore_k: ld t0, 32*8(sp) ld t1, 33*8(sp) csrw sstatus, t0 csrw sepc, t1 ld x1, 1*8(sp) ld x3, 3*8(sp) .set n, 5 .rept 27 LOAD_GP %n .set n, n+1 .endr addi sp, sp, 34*8 sret
MuoDoo/riscv
17,376
asm.S
#include "asm.h" .section .text.__ebreak .global __ebreak __ebreak: ebreak ret .section .text.__wfi .global __wfi __wfi: wfi ret .section .text.__sfence_vma_all .global __sfence_vma_all __sfence_vma_all: sfence.vma ret .section .text.__sfence_vma .global __sfence_vma __sfence_vma: sfence.vma a0, a1 ret // RISC-V hypervisor instructions. // The switch for enabling LLVM support for asm generation. // #define LLVM_RISCV_HYPERVISOR_EXTENSION_SUPPORT .section .text.__hfence_gvma .global __hfence_gvma __hfence_gvma: #ifdef LLVM_RISCV_HYPERVISOR_EXTENSION_SUPPORT hfence.gvma a0, a1 #else .word 1656029299 #endif ret .section .text.__hfence_vvma .global __hfence_vvma __hfence_vvma: #ifdef LLVM_RISCV_HYPERVISOR_EXTENSION_SUPPORT hfence.vvma a0, a1 #else .word 582287475 #endif ret .section .text.__hlv_b .global __hlv_b __hlv_b: #ifdef LLVM_RISCV_HYPERVISOR_EXTENSION_SUPPORT hlv.b a0, a0 #else .word 1610958195 #endif ret .section .text.__hlv_bu .global __hlv_bu __hlv_bu: #ifdef LLVM_RISCV_HYPERVISOR_EXTENSION_SUPPORT hlv.bu a0, a0 #else .word 1612006771 #endif ret .section .text.__hlv_h .global __hlv_h __hlv_h: #ifdef LLVM_RISCV_HYPERVISOR_EXTENSION_SUPPORT hlv.h a0, a0 #else .word 1678067059 #endif ret .section .text.__hlv_hu .global __hlv_hu __hlv_hu: #ifdef LLVM_RISCV_HYPERVISOR_EXTENSION_SUPPORT hlv.hu a0, a0 #else .word 1679115635 #endif ret .section .text.__hlvx_hu .global __hlvx_hu __hlvx_hu: #ifdef LLVM_RISCV_HYPERVISOR_EXTENSION_SUPPORT hlvx.hu a0, a0 #else .word 1681212787 #endif ret .section .text.__hlv_w .global __hlv_w __hlv_w: #ifdef LLVM_RISCV_HYPERVISOR_EXTENSION_SUPPORT hlv.w a0, a0 #else .word 1745175923 #endif ret .section .text.__hlvx_wu .global __hlvx_wu __hlvx_wu: #ifdef LLVM_RISCV_HYPERVISOR_EXTENSION_SUPPORT hlvx.wu a0, a0 #else .word 1748321651 #endif ret .section .text.__hsv_b .global __hsv_b __hsv_b: #ifdef LLVM_RISCV_HYPERVISOR_EXTENSION_SUPPORT hsv.b a0, a1 #else .word 1656045683 #endif ret .section .text.__hsv_h .global __hsv_h __hsv_h: #ifdef LLVM_RISCV_HYPERVISOR_EXTENSION_SUPPORT hsv.h a0, a1 #else .word 1723154547 #endif ret .section .text.__hsv_w .global __hsv_w __hsv_w: #ifdef LLVM_RISCV_HYPERVISOR_EXTENSION_SUPPORT hsv.w a0, a1 #else .word 1790263411 #endif ret .section .text.__hlv_wu .global __hlv_wu __hlv_wu: #ifdef LLVM_RISCV_HYPERVISOR_EXTENSION_SUPPORT hlv.wu a0, a0 #else .word 1746224499 #endif ret .section .text.__hlv_d .global __hlv_d __hlv_d: #ifdef LLVM_RISCV_HYPERVISOR_EXTENSION_SUPPORT hlv.d a0, a0 #else .word 1812284787 #endif ret .section .text.__hsv_d .global __hsv_d __hsv_d: #ifdef LLVM_RISCV_HYPERVISOR_EXTENSION_SUPPORT hsv.d a0, a1 #else .word 1857372275 #endif ret // User Trap Setup RW(0x000, ustatus) // User status register RW(0x004, uie) // User interrupt-enable register RW(0x005, utvec) // User trap handler base address // User Trap Handling RW(0x040, uscratch) // Scratch register for user trap handlers RW(0x041, uepc) // User exception program counter RW(0x042, ucause) // User trap cause RW(0x043, utval) // User bad address or instruction RW(0x044, uip) // User interrupt pending // User Floating-Point CSRs RW(0x001, fflags) // Floating-Point Accrued Exceptions RW(0x002, frm) // Floating-Point Dynamic Rounding Mode RW(0x003, fcsr) // Floating-Point Control and Status Register (frm + fflags) // User Counter/Timers RO( 0xC00, cycle) // Cycle counter for RDCYCLE instruction RO( 0xC01, time) // Timer for RDTIME instruction RO( 0xC02, instret) // Instructions-retired counter for RDINSTRET instruction RO( 0xC03, hpmcounter3) // Performance-monitoring counter RO( 0xC04, hpmcounter4) // Performance-monitoring counter RO( 0xC05, hpmcounter5) // Performance-monitoring counter RO( 0xC06, hpmcounter6) // Performance-monitoring counter RO( 0xC07, hpmcounter7) // Performance-monitoring counter RO( 0xC08, hpmcounter8) // Performance-monitoring counter RO( 0xC09, hpmcounter9) // Performance-monitoring counter RO( 0xC0A, hpmcounter10) // Performance-monitoring counter RO( 0xC0B, hpmcounter11) // Performance-monitoring counter RO( 0xC0C, hpmcounter12) // Performance-monitoring counter RO( 0xC0D, hpmcounter13) // Performance-monitoring counter RO( 0xC0E, hpmcounter14) // Performance-monitoring counter RO( 0xC0F, hpmcounter15) // Performance-monitoring counter RO( 0xC10, hpmcounter16) // Performance-monitoring counter RO( 0xC11, hpmcounter17) // Performance-monitoring counter RO( 0xC12, hpmcounter18) // Performance-monitoring counter RO( 0xC13, hpmcounter19) // Performance-monitoring counter RO( 0xC14, hpmcounter20) // Performance-monitoring counter RO( 0xC15, hpmcounter21) // Performance-monitoring counter RO( 0xC16, hpmcounter22) // Performance-monitoring counter RO( 0xC17, hpmcounter23) // Performance-monitoring counter RO( 0xC18, hpmcounter24) // Performance-monitoring counter RO( 0xC19, hpmcounter25) // Performance-monitoring counter RO( 0xC1A, hpmcounter26) // Performance-monitoring counter RO( 0xC1B, hpmcounter27) // Performance-monitoring counter RO( 0xC1C, hpmcounter28) // Performance-monitoring counter RO( 0xC1D, hpmcounter29) // Performance-monitoring counter RO( 0xC1E, hpmcounter30) // Performance-monitoring counter RO( 0xC1F, hpmcounter31) // Performance-monitoring counter RO32(0xC80, cycleh) // Upper 32 bits of cycle, RV32I only RO32(0xC81, timeh) // Upper 32 bits of time, RV32I only RO32(0xC82, instreth) // Upper 32 bits of instret, RV32I only RO32(0xC83, hpmcounter3h) // Upper 32 bits of hpmcounter3, RV32I only RO32(0xC84, hpmcounter4h) RO32(0xC85, hpmcounter5h) RO32(0xC86, hpmcounter6h) RO32(0xC87, hpmcounter7h) RO32(0xC88, hpmcounter8h) RO32(0xC89, hpmcounter9h) RO32(0xC8A, hpmcounter10h) RO32(0xC8B, hpmcounter11h) RO32(0xC8C, hpmcounter12h) RO32(0xC8D, hpmcounter13h) RO32(0xC8E, hpmcounter14h) RO32(0xC8F, hpmcounter15h) RO32(0xC90, hpmcounter16h) RO32(0xC91, hpmcounter17h) RO32(0xC92, hpmcounter18h) RO32(0xC93, hpmcounter19h) RO32(0xC94, hpmcounter20h) RO32(0xC95, hpmcounter21h) RO32(0xC96, hpmcounter22h) RO32(0xC97, hpmcounter23h) RO32(0xC98, hpmcounter24h) RO32(0xC99, hpmcounter25h) RO32(0xC9A, hpmcounter26h) RO32(0xC9B, hpmcounter27h) RO32(0xC9C, hpmcounter28h) RO32(0xC9D, hpmcounter29h) RO32(0xC9E, hpmcounter30h) RO32(0xC9F, hpmcounter31h) // Supervisor Trap Setup RW(0x100, sstatus) // Supervisor status register RW(0x102, sedeleg) // Supervisor exception delegation register RW(0x103, sideleg) // Supervisor interrupt delegation register RW(0x104, sie) // Supervisor interrupt-enable register RW(0x105, stvec) // Supervisor trap handler base address RW(0x106, scounteren) // Supervisor counter enable // Supervisor Trap Handling RW(0x140, sscratch) // Scratch register for supervisor trap handlers RW(0x141, sepc) // Supervisor exception program counter RW(0x142, scause) // Supervisor trap cause RW(0x143, stval) // Supervisor bad address or instruction RW(0x144, sip) // Supervisor interrupt pending // Supervisor Protection and Translation RW(0x180, satp) // Supervisor address translation and protection // Machine Information Registers RO(0xF11, mvendorid) // Vendor ID RO(0xF12, marchid) // Architecture ID RO(0xF13, mimpid) // Implementation ID RO(0xF14, mhartid) // Hardware thread ID // Machine Trap Setup RW(0x300, mstatus) // Machine status register RW(0x301, misa) // ISA and extensions RW(0x302, medeleg) // Machine exception delegation register RW(0x303, mideleg) // Machine interrupt delegation register RW(0x304, mie) // Machine interrupt-enable register RW(0x305, mtvec) // Machine trap handler base address RW(0x306, mcounteren) // Machine counter enable // Machine Trap Handling RW(0x340, mscratch) // Scratch register for machine trap handlers RW(0x341, mepc) // Machine exception program counter RW(0x342, mcause) // Machine trap cause RW(0x343, mtval) // Machine bad address or instruction RW(0x344, mip) // Machine interrupt pending // Machine Protection and Translation RW( 0x3A0, pmpcfg0) // Physical memory protection configuration RW32(0x3A1, pmpcfg1) // Physical memory protection configuration, RV32 only RW( 0x3A2, pmpcfg2) // Physical memory protection configuration RW32(0x3A3, pmpcfg3) // Physical memory protection configuration, RV32 only RW( 0x3B0, pmpaddr0) // Physical memory protection address register RW( 0x3B1, pmpaddr1) // Physical memory protection address register RW( 0x3B2, pmpaddr2) // Physical memory protection address register RW( 0x3B3, pmpaddr3) // Physical memory protection address register RW( 0x3B4, pmpaddr4) // Physical memory protection address register RW( 0x3B5, pmpaddr5) // Physical memory protection address register RW( 0x3B6, pmpaddr6) // Physical memory protection address register RW( 0x3B7, pmpaddr7) // Physical memory protection address register RW( 0x3B8, pmpaddr8) // Physical memory protection address register RW( 0x3B9, pmpaddr9) // Physical memory protection address register RW( 0x3BA, pmpaddr10) // Physical memory protection address register RW( 0x3BB, pmpaddr11) // Physical memory protection address register RW( 0x3BC, pmpaddr12) // Physical memory protection address register RW( 0x3BD, pmpaddr13) // Physical memory protection address register RW( 0x3BE, pmpaddr14) // Physical memory protection address register RW( 0x3BF, pmpaddr15) // Physical memory protection address register // Machine Counter/Timers RO( 0xB00, mcycle) // Machine cycle counter RO( 0xB02, minstret) // Machine instructions-retired counter RO( 0xB03, mhpmcounter3) // Machine performance-monitoring counter RO( 0xB04, mhpmcounter4) // Machine performance-monitoring counter RO( 0xB05, mhpmcounter5) // Machine performance-monitoring counter RO( 0xB06, mhpmcounter6) // Machine performance-monitoring counter RO( 0xB07, mhpmcounter7) // Machine performance-monitoring counter RO( 0xB08, mhpmcounter8) // Machine performance-monitoring counter RO( 0xB09, mhpmcounter9) // Machine performance-monitoring counter RO( 0xB0A, mhpmcounter10) // Machine performance-monitoring counter RO( 0xB0B, mhpmcounter11) // Machine performance-monitoring counter RO( 0xB0C, mhpmcounter12) // Machine performance-monitoring counter RO( 0xB0D, mhpmcounter13) // Machine performance-monitoring counter RO( 0xB0E, mhpmcounter14) // Machine performance-monitoring counter RO( 0xB0F, mhpmcounter15) // Machine performance-monitoring counter RO( 0xB10, mhpmcounter16) // Machine performance-monitoring counter RO( 0xB11, mhpmcounter17) // Machine performance-monitoring counter RO( 0xB12, mhpmcounter18) // Machine performance-monitoring counter RO( 0xB13, mhpmcounter19) // Machine performance-monitoring counter RO( 0xB14, mhpmcounter20) // Machine performance-monitoring counter RO( 0xB15, mhpmcounter21) // Machine performance-monitoring counter RO( 0xB16, mhpmcounter22) // Machine performance-monitoring counter RO( 0xB17, mhpmcounter23) // Machine performance-monitoring counter RO( 0xB18, mhpmcounter24) // Machine performance-monitoring counter RO( 0xB19, mhpmcounter25) // Machine performance-monitoring counter RO( 0xB1A, mhpmcounter26) // Machine performance-monitoring counter RO( 0xB1B, mhpmcounter27) // Machine performance-monitoring counter RO( 0xB1C, mhpmcounter28) // Machine performance-monitoring counter RO( 0xB1D, mhpmcounter29) // Machine performance-monitoring counter RO( 0xB1E, mhpmcounter30) // Machine performance-monitoring counter RO( 0xB1F, mhpmcounter31) // Machine performance-monitoring counter RO32(0xB80, mcycleh) // Upper 32 bits of mcycle, RV32I only RO32(0xB82, minstreth) // Upper 32 bits of minstret, RV32I only RO32(0xB83, mhpmcounter3h) // Upper 32 bits of mhpmcounter3, RV32I only RO32(0xB84, mhpmcounter4h) RO32(0xB85, mhpmcounter5h) RO32(0xB86, mhpmcounter6h) RO32(0xB87, mhpmcounter7h) RO32(0xB88, mhpmcounter8h) RO32(0xB89, mhpmcounter9h) RO32(0xB8A, mhpmcounter10h) RO32(0xB8B, mhpmcounter11h) RO32(0xB8C, mhpmcounter12h) RO32(0xB8D, mhpmcounter13h) RO32(0xB8E, mhpmcounter14h) RO32(0xB8F, mhpmcounter15h) RO32(0xB90, mhpmcounter16h) RO32(0xB91, mhpmcounter17h) RO32(0xB92, mhpmcounter18h) RO32(0xB93, mhpmcounter19h) RO32(0xB94, mhpmcounter20h) RO32(0xB95, mhpmcounter21h) RO32(0xB96, mhpmcounter22h) RO32(0xB97, mhpmcounter23h) RO32(0xB98, mhpmcounter24h) RO32(0xB99, mhpmcounter25h) RO32(0xB9A, mhpmcounter26h) RO32(0xB9B, mhpmcounter27h) RO32(0xB9C, mhpmcounter28h) RO32(0xB9D, mhpmcounter29h) RO32(0xB9E, mhpmcounter30h) RO32(0xB9F, mhpmcounter31h) RW(0x323, mhpmevent3) // Machine performance-monitoring event selector RW(0x324, mhpmevent4) // Machine performance-monitoring event selector RW(0x325, mhpmevent5) // Machine performance-monitoring event selector RW(0x326, mhpmevent6) // Machine performance-monitoring event selector RW(0x327, mhpmevent7) // Machine performance-monitoring event selector RW(0x328, mhpmevent8) // Machine performance-monitoring event selector RW(0x329, mhpmevent9) // Machine performance-monitoring event selector RW(0x32A, mhpmevent10) // Machine performance-monitoring event selector RW(0x32B, mhpmevent11) // Machine performance-monitoring event selector RW(0x32C, mhpmevent12) // Machine performance-monitoring event selector RW(0x32D, mhpmevent13) // Machine performance-monitoring event selector RW(0x32E, mhpmevent14) // Machine performance-monitoring event selector RW(0x32F, mhpmevent15) // Machine performance-monitoring event selector RW(0x330, mhpmevent16) // Machine performance-monitoring event selector RW(0x331, mhpmevent17) // Machine performance-monitoring event selector RW(0x332, mhpmevent18) // Machine performance-monitoring event selector RW(0x333, mhpmevent19) // Machine performance-monitoring event selector RW(0x334, mhpmevent20) // Machine performance-monitoring event selector RW(0x335, mhpmevent21) // Machine performance-monitoring event selector RW(0x336, mhpmevent22) // Machine performance-monitoring event selector RW(0x337, mhpmevent23) // Machine performance-monitoring event selector RW(0x338, mhpmevent24) // Machine performance-monitoring event selector RW(0x339, mhpmevent25) // Machine performance-monitoring event selector RW(0x33A, mhpmevent26) // Machine performance-monitoring event selector RW(0x33B, mhpmevent27) // Machine performance-monitoring event selector RW(0x33C, mhpmevent28) // Machine performance-monitoring event selector RW(0x33D, mhpmevent29) // Machine performance-monitoring event selector RW(0x33E, mhpmevent30) // Machine performance-monitoring event selector RW(0x33F, mhpmevent31) // Machine performance-monitoring event selector // Debug/Trace Registers (shared with Debug Mode) RW(0x7A0, tselect) // Debug/Trace trigger register select RW(0x7A1, tdata1) // First Debug/Trace trigger data register RW(0x7A2, tdata2) // Second Debug/Trace trigger data register RW(0x7A3, tdata3) // Third Debug/Trace trigger data register // Debug Mode Registers RW(0x7B0, dcsr) // Debug control and status register RW(0x7B1, dpc) // Debug PC RW(0x7B2, dscratch) // Debug scratch register // Hypervisor Trap Setup RW(0x600, hstatus) // Hypervisor status register RW(0x602, hedeleg) // Hypervisor exception delegation register RW(0x603, hideleg) // Hypervisor interrupt delegation register RW(0x604, hie) // Hypervisor interrupt-enable register RW(0x606, hcounteren) // Hypervisor counter enable RW(0x607, hgeie) // Hypervisor guest external interrupt-enable register // Hypervisor Trap Handling RW(0x643, htval) // Hypervisor bad guest physical address RW(0x644, hip) // Hypervisor interrupt pending RW(0x645, hvip) // Hypervisor virtual interrupt pending RW(0x64a, htinst) // Hypervisor trap instruction (transformed) RW(0xe12, hgeip) // Hypervisor guest external interrupt pending // Hypervisor Protection and Translation RO(0x680, hgatp) // Hypervisor guest address translation and protection // Debug/Trace Registers RW(0x6a8, hcontext) // Hypervisor-mode context register // Hypervisor Counter/Timer Virtualization Registers RW(0x605, htimedelta) // Delta for VS/VU-mode timer RW32(0x615, htimedeltah) // Upper 32 bits of {\tt htimedelta}, RV32 only // Virtual Supervisor Registers RW(0x200, vsstatus) // Virtual supervisor status register RW(0x204, vsie) // Virtual supervisor interrupt-enable register RW(0x205, vstvec) // Virtual supervisor trap handler base address RW(0x240, vsscratch) // Virtual supervisor scratch register RW(0x241, vsepc) // Virtual supervisor exception program counter RW(0x242, vscause) // Virtual supervisor trap cause RW(0x243, vstval) // Virtual supervisor bad address or instruction RW(0x244, vsip) // Virtual supervisor interrupt pending RW(0x280, vsatp) // Virtual supervisor address translation and protection
n1z19/s5l8720-securerom-dumper
1,062
src/shellcode.S
@ shellcode for s5l8720-securerom-dumper by axi0mX .pool .set securerom_addr, 0x20000000 .set index, 0xBAADBAAD @ placeholder value .set buffer_addr, 0xDEADDEAD @ placeholder value .global _start .text .code 16 _start: B copy_loop NOP NOP NOP NOP NOP NOP NOP copy_loop: LDR R0, =securerom_addr LDR R1, =buffer_addr LDR R2, =index ADD R0, R0, R2 LDR R2, [R0, #0] LDR R3, [R0, #4] LDR R4, [R0, #8] LDR R5, [R0, #12] LDR R6, [R0, #16] LDR R7, [R0, #20] STR R2, [R1, #0] STR R3, [R1, #4] STR R4, [R1, #8] STR R5, [R1, #12] STR R6, [R1, #16] STR R7, [R1, #20] LDR R2, [R0, #24] LDR R3, [R0, #28] LDR R4, [R0, #32] LDR R5, [R0, #36] LDR R6, [R0, #40] LDR R7, [R0, #44] STR R2, [R1, #24] STR R3, [R1, #28] STR R4, [R1, #32] STR R5, [R1, #36] STR R6, [R1, #40] STR R7, [R1, #44] LDR R2, [R0, #48] LDR R3, [R0, #52] LDR R4, [R0, #56] LDR R5, [R0, #60] STR R2, [R1, #48] STR R3, [R1, #52] STR R4, [R1, #56] STR R5, [R1, #60] B copy_loop .end
nadrees/stunning-computing-machine
2,133
src/boot.S
# boot.S # bootloader # disable compress riscv instructions .option norvc .section .text.init .global _start _start: # first, read the hart (process) id from the mhartid (machine-mode hart id) register csrr t0, mhartid # send the process to sleep if it's not process id zero, the only one guaranteed to # exist by the riscv spec bnez t0, wait_for_boot_interrupt # we dont need MMU (Memory Managemet Unit) so disable it by setting the supervisor # address translation and protections (satp) register to 0 csrw satp, zero init_global_pointer: .option push .option norelax la gp, _global_pointer .option pop init_bss: la a0, _bss_start la a1, _bss_end init_bss_loop: bgeu a0, a1, init_stack_pointer sw zero, (a0) addi a0, a0, 8 j init_bss_loop init_stack_pointer: la sp, _stack_end init_mstatus: # move us into machine mode (bits 11 & 12 both set to 1), and then # renable MPIE (machine priveledged interupt enable) and MIE (machine # interup enable) bits li a0, (0b11 << 11) | (1 << 7) | (1 << 3) csrw mstatus, a0 init_mepc: # setup the address to return to once we drop out of machine mode la a0, rs_main # rs_main defined in rust # write the address to the machine exception program counter, which # tracks where to return to when a trap handler is completed csrw mepc, a0 init_trap_vector: la a0, trap_vector # write address of our trap function to the mtvec (machine trap vector) # register to handle all interrupts csrw mtvec, a0 enable_interrupts: # enable machine level interrups bits li a0, (1 << 11) | (1 << 7) || (1 << 3) # store bits in mie (machine interrupt enable) register csrw mie, a0 begin_execution: la ra, end # set up where to go when execution ends # "return" to main code, starting program execution mret wait_for_boot_interrupt: # this sends any processes to sleep waiting for an interrupt signal wfi j wait_for_boot_interrupt trap_vector: mret end:
naoNao89/vi-engine
8,661
src/asm/aarch64_generic.s
// Generic ARM64 (AArch64) Assembly Kernels for Vietnamese Character Processing // Compatible with standard ARM64 processors (non-Apple Silicon) // // This file contains portable ARM64 assembly implementations that work // across different ARM64 platforms including Linux, Android, and embedded systems. .text .align 4 // Vietnamese character mapping constants for generic ARM64 .section .rodata,"a" .align 3 // Complete Vietnamese character lookup table (cache-line aligned) // Maps Unicode codepoints to base characters vietnamese_lookup_table_generic: // ASCII characters (0-127) - pass through unchanged .long 0x00, 0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07 .long 0x08, 0x09, 0x0A, 0x0B, 0x0C, 0x0D, 0x0E, 0x0F .long 0x10, 0x11, 0x12, 0x13, 0x14, 0x15, 0x16, 0x17 .long 0x18, 0x19, 0x1A, 0x1B, 0x1C, 0x1D, 0x1E, 0x1F .long 0x20, 0x21, 0x22, 0x23, 0x24, 0x25, 0x26, 0x27 .long 0x28, 0x29, 0x2A, 0x2B, 0x2C, 0x2D, 0x2E, 0x2F .long 0x30, 0x31, 0x32, 0x33, 0x34, 0x35, 0x36, 0x37 .long 0x38, 0x39, 0x3A, 0x3B, 0x3C, 0x3D, 0x3E, 0x3F .long 0x40, 0x41, 0x42, 0x43, 0x44, 0x45, 0x46, 0x47 .long 0x48, 0x49, 0x4A, 0x4B, 0x4C, 0x4D, 0x4E, 0x4F .long 0x50, 0x51, 0x52, 0x53, 0x54, 0x55, 0x56, 0x57 .long 0x58, 0x59, 0x5A, 0x5B, 0x5C, 0x5D, 0x5E, 0x5F .long 0x60, 0x61, 0x62, 0x63, 0x64, 0x65, 0x66, 0x67 .long 0x68, 0x69, 0x6A, 0x6B, 0x6C, 0x6D, 0x6E, 0x6F .long 0x70, 0x71, 0x72, 0x73, 0x74, 0x75, 0x76, 0x77 .long 0x78, 0x79, 0x7A, 0x7B, 0x7C, 0x7D, 0x7E, 0x7F // Vietnamese character mapping table for Latin Extended range (0xC0-0xFF) vietnamese_latin_extended_generic: // 0xC0-0xC7: À,Á,Â,Ã,Ä,Å,Æ,Ç .long 0x41, 0x41, 0x41, 0x41, 0xC4, 0xC5, 0xC6, 0xC7 // À,Á,Â,Ã -> A; others unchanged // 0xC8-0xCF: È,É,Ê,Ë,Ì,Í,Î,Ï .long 0x45, 0x45, 0x45, 0xCB, 0x49, 0x49, 0xCE, 0xCF // È,É,Ê -> E; Ì,Í -> I; others unchanged // 0xD0-0xD7: Ð,Ñ,Ò,Ó,Ô,Õ,Ö,× .long 0xD0, 0xD1, 0x4F, 0x4F, 0x4F, 0x4F, 0xD6, 0xD7 // Ò,Ó,Ô,Õ -> O; others unchanged // 0xD8-0xDF: Ø,Ù,Ú,Û,Ü,Ý,Þ,ß .long 0xD8, 0x55, 0x55, 0x55, 0xDC, 0x59, 0xDE, 0xDF // Ù,Ú,Û -> U; Ý -> Y; others unchanged // 0xE0-0xE7: à,á,â,ã,ä,å,æ,ç .long 0x61, 0x61, 0x61, 0x61, 0xE4, 0xE5, 0xE6, 0xE7 // à,á,â,ã -> a; others unchanged // 0xE8-0xEF: è,é,ê,ë,ì,í,î,ï .long 0x65, 0x65, 0x65, 0xEB, 0x69, 0x69, 0xEE, 0xEF // è,é,ê -> e; ì,í -> i; others unchanged // 0xF0-0xF7: ð,ñ,ò,ó,ô,õ,ö,÷ .long 0xF0, 0xF1, 0x6F, 0x6F, 0x6F, 0x6F, 0xF6, 0xF7 // ò,ó,ô,õ -> o; others unchanged // 0xF8-0xFF: ø,ù,ú,û,ü,ý,þ,ÿ .long 0xF8, 0x75, 0x75, 0x75, 0xFC, 0x79, 0xFE, 0x79 // ù,ú,û -> u; ý,ÿ -> y; others unchanged // Vietnamese specific character mappings (0x1EA0-0x1EF9 range) .align 3 vietnamese_specific_1ea0_generic: // 0x1EA0-0x1EAF: A family .long 0x41, 0x61, 0x41, 0x61, 0x41, 0x61, 0x41, 0x61 // 1EA0-1EA7: Ạ,ạ,Ả,ả,Ấ,ấ,Ầ,ầ -> A,a,A,a,A,a,A,a .long 0x41, 0x61, 0x41, 0x61, 0x41, 0x61, 0x41, 0x61 // 1EA8-1EAF: Ẩ,ẩ,Ẫ,ẫ,Ậ,ậ,Ắ,ắ -> A,a,A,a,A,a,A,a // 0x1EB0-0x1EBF: A family continued + E family start .long 0x41, 0x61, 0x41, 0x61, 0x41, 0x61, 0x41, 0x61 // 1EB0-1EB7: Ằ,ằ,Ẳ,ẳ,Ẵ,ẵ,Ặ,ặ -> A,a,A,a,A,a,A,a .long 0x45, 0x65, 0x45, 0x65, 0x45, 0x65, 0x45, 0x65 // 1EB8-1EBF: Ẹ,ẹ,Ẻ,ẻ,Ẽ,ẽ,Ế,ế -> E,e,E,e,E,e,E,e // 0x1EC0-0x1ECF: E family continued + I family start .long 0x45, 0x65, 0x45, 0x65, 0x45, 0x65, 0x45, 0x65 // 1EC0-1EC7: Ề,ề,Ể,ể,Ễ,ễ,Ệ,ệ -> E,e,E,e,E,e,E,e .long 0x49, 0x69, 0x49, 0x69, 0x4F, 0x6F, 0x4F, 0x6F // 1EC8-1ECF: Ỉ,ỉ,Ị,ị,Ọ,ọ,Ỏ,ỏ -> I,i,I,i,O,o,O,o // 0x1ED0-0x1EDF: O family .long 0x4F, 0x6F, 0x4F, 0x6F, 0x4F, 0x6F, 0x4F, 0x6F // 1ED0-1ED7: Ố,ố,Ồ,ồ,Ổ,ổ,Ỗ,ỗ -> O,o,O,o,O,o,O,o .long 0x4F, 0x6F, 0x4F, 0x6F, 0x4F, 0x6F, 0x4F, 0x6F // 1ED8-1EDF: Ộ,ộ,Ớ,ớ,Ờ,ờ,Ở,ở -> O,o,O,o,O,o,O,o // 0x1EE0-0x1EEF: O family continued + U family start .long 0x4F, 0x6F, 0x4F, 0x6F, 0x55, 0x75, 0x55, 0x75 // 1EE0-1EE7: Ỡ,ỡ,Ợ,ợ,Ụ,ụ,Ủ,ủ -> O,o,O,o,U,u,U,u .long 0x55, 0x75, 0x55, 0x75, 0x55, 0x75, 0x55, 0x75 // 1EE8-1EEF: Ứ,ứ,Ừ,ừ,Ử,ử,Ữ,ữ -> U,u,U,u,U,u,U,u // 0x1EF0-0x1EF9: U family continued + Y family .long 0x55, 0x75, 0x59, 0x79, 0x59, 0x79, 0x59, 0x79 // 1EF0-1EF7: Ự,ự,Ỳ,ỳ,Ỵ,ỵ,Ỷ,ỷ -> U,u,Y,y,Y,y,Y,y .long 0x59, 0x79 // 1EF8-1EF9: Ỹ,ỹ -> Y,y .text // Generic ARM64 Vietnamese character cleaning // Input: w0 = character (u32) // Output: w0 = cleaned character (u32) // Compatible with all ARM64 processors .global generic_clean_char_aarch64 .align 2 generic_clean_char_aarch64: // Fast path for ASCII characters (most common case) cmp w0, #128 b.lo .Lascii_passthrough_generic // Check for Latin Extended range (0x00C0-0x00FF) mov w1, w0 mov w2, #0x00C0 cmp w1, w2 b.lo .Lnot_vietnamese_generic mov w2, #0x00FF cmp w1, w2 b.ls .Llatin_extended_lookup_generic // Check for Vietnamese extended range (0x0100-0x01FF) mov w2, #0x0100 cmp w1, w2 b.lo .Lnot_vietnamese_generic mov w2, #0x01FF cmp w1, w2 b.ls .Lextended_100_lookup_generic // Check for Vietnamese specific range (0x1EA0-0x1EF9) mov w2, #0x1E00 add w2, w2, #0xA0 // w2 = 0x1EA0 cmp w1, w2 b.lo .Lnot_vietnamese_generic mov w2, #0x1E00 add w2, w2, #0xF9 // w2 = 0x1EF9 cmp w1, w2 b.ls .Lvietnamese_specific_lookup_generic // Not a Vietnamese character - return original .Lnot_vietnamese_generic: ret .Lascii_passthrough_generic: ret .Llatin_extended_lookup_generic: // Use lookup table for Latin Extended range (0x00C0-0x00FF) adrp x2, vietnamese_latin_extended_generic@PAGE add x2, x2, vietnamese_latin_extended_generic@PAGEOFF sub w1, w1, #0x00C0 // Normalize to table index ldr w0, [x2, x1, lsl #2] // Load mapped character from table ret .Lextended_100_lookup_generic: // Handle specific Vietnamese characters in extended range // Check for common Vietnamese characters cmp w1, #0x0103 // ă b.eq .Lmap_to_a_generic cmp w1, #0x0102 // Ă b.eq .Lmap_to_A_generic cmp w1, #0x0111 // đ b.eq .Lmap_to_d_generic cmp w1, #0x0110 // Đ b.eq .Lmap_to_D_generic cmp w1, #0x01A1 // ơ b.eq .Lmap_to_o_generic cmp w1, #0x01A0 // Ơ b.eq .Lmap_to_O_generic cmp w1, #0x01B0 // ư b.eq .Lmap_to_u_generic cmp w1, #0x01AF // Ư b.eq .Lmap_to_U_generic // Return original character if no match mov w0, w1 ret .Lvietnamese_specific_lookup_generic: // Use lookup table for Vietnamese specific range (0x1EA0-0x1EF9) adrp x2, vietnamese_specific_1ea0_generic@PAGE add x2, x2, vietnamese_specific_1ea0_generic@PAGEOFF mov w3, #0x1E00 add w3, w3, #0xA0 // w3 = 0x1EA0 sub w1, w1, w3 // Normalize to table index ldr w0, [x2, x1, lsl #2] // Load mapped character from table ret // Character mapping targets .Lmap_to_a_generic: mov w0, #0x61 // 'a' ret .Lmap_to_A_generic: mov w0, #0x41 // 'A' ret .Lmap_to_d_generic: mov w0, #0x64 // 'd' ret .Lmap_to_D_generic: mov w0, #0x44 // 'D' ret .Lmap_to_o_generic: mov w0, #0x6F // 'o' ret .Lmap_to_O_generic: mov w0, #0x4F // 'O' ret .Lmap_to_u_generic: mov w0, #0x75 // 'u' ret .Lmap_to_U_generic: mov w0, #0x55 // 'U' ret // Bulk character processing for generic ARM64 // Input: x0 = input array pointer, x1 = output array pointer, x2 = length // Output: x0 = number of characters processed .global generic_clean_chars_bulk_aarch64 .align 2 generic_clean_chars_bulk_aarch64: stp x29, x30, [sp, #-32]! mov x29, sp stp x19, x20, [sp, #16] // Save parameters mov x19, x0 // input pointer mov x20, x1 // output pointer mov x3, #0 // processed count // Process characters one by one .Lgeneric_bulk_loop: cbz x2, .Lgeneric_bulk_done ldr w0, [x19], #4 // Load character bl generic_clean_char_aarch64 // Process character str w0, [x20], #4 // Store result add x3, x3, #1 // Increment processed count subs x2, x2, #1 // Decrement remaining count b.ne .Lgeneric_bulk_loop .Lgeneric_bulk_done: mov x0, x3 // Return total processed count ldp x19, x20, [sp, #16] ldp x29, x30, [sp], #32 ret // Export symbols .global generic_clean_char_aarch64 .global generic_clean_chars_bulk_aarch64 // Note: Data sections are defined above in the file
naoNao89/vi-engine
37,177
src/asm/aarch64_apple_silicon.s
// ARM64 Assembly Kernels for Vietnamese Character Processing - Apple Silicon Optimized // // This file implements hand-optimized assembly kernels specifically designed for // Apple Silicon (M1/M2/M3) processors with advanced NEON vectorization and // Apple-specific performance optimizations. // // Performance Target: <500 ps per character, >50M chars/sec bulk throughput // Architecture: Apple Silicon ARM64 with unified memory and custom cores // Security: Comprehensive monitoring and protection integrated // // APPLE SILICON OPTIMIZATIONS: // - Leverages Apple's unified memory architecture for optimal cache usage // - Optimized for Firestorm/Icestorm and Avalanche/Blizzard core characteristics // - Advanced NEON vectorization with Apple Silicon specific tuning // - Instruction fusion and micro-op cache optimization // - Branch prediction optimization for Apple's advanced predictor // - Register allocation optimized for Apple Silicon's register file .text .align 4 // Security and monitoring constants for ARM64 .section .rodata, "a" .align 6 // 64-byte alignment for Apple Silicon cache lines // Apple Silicon optimized stack canary values apple_silicon_canaries: .quad 0xDEADBEEFCAFEBABE // Primary canary .quad 0x1337C0DEDEADFACE // Secondary canary .quad 0xFEEDFACEBADC0FFE // Tertiary canary .quad 0xC0FFEEBABEDEADBE // Quaternary canary // Performance monitoring thresholds optimized for Apple Silicon apple_perf_thresholds: .quad 500 // Max cycles per character (Apple Silicon target) .quad 5000 // Max total cycles per bulk operation .quad 50 // Max memory accesses per character .quad 25 // Max branch mispredictions threshold // Memory bounds for Apple Silicon unified memory apple_memory_bounds: .quad 0x00007FFFFFFFFFFF // User space upper bound .quad 0x0000000000001000 // Minimum valid address (4KB) .quad 0x0000200000000000 // Maximum reasonable buffer size (2TB for Apple Silicon) .quad 0x0000000000100000 // Maximum single operation size (1MB) // Control flow integrity markers for ARM64 apple_cfi_markers: .quad 0xCF1A64000001 // Function entry marker .quad 0xCF1A64000002 // Loop entry marker .quad 0xCF1A64000003 // Function call marker .quad 0xCF1A64000004 // Return marker // Apple Silicon cache optimization constants apple_cache_constants: .quad 0x0000000000000040 // Apple Silicon L1 cache line size (64 bytes) .quad 0x0000000000100000 // Apple Silicon L2 cache size hint (1MB) .quad 0x0000000008000000 // Apple Silicon L3 cache size hint (128MB) .quad 0x000000000000000F // Cache prefetch distance // NEON vectorization constants for Apple Silicon .align 4 apple_neon_constants: // Vietnamese character range detection vectors (128-bit) .quad 0x00C000C000C000C0, 0x00C000C000C000C0 // Latin start (4x u32) .quad 0x1EF91EF91EF91EF9, 0x1EF91EF91EF91EF9 // Vietnamese end (4x u32) .quad 0x007F007F007F007F, 0x007F007F007F007F // ASCII mask (4x u32) .quad 0x00FF00FF00FF00FF, 0x00FF00FF00FF00FF // Latin Extended mask (4x u32) // Apple Silicon specific Vietnamese character lookup table // Optimized for Apple's memory subsystem and cache hierarchy .align 6 // 64-byte alignment for optimal cache line usage apple_vietnamese_lookup_table: // ASCII characters (0-127) - optimized layout for Apple Silicon .long 0x00, 0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07 .long 0x08, 0x09, 0x0A, 0x0B, 0x0C, 0x0D, 0x0E, 0x0F .long 0x10, 0x11, 0x12, 0x13, 0x14, 0x15, 0x16, 0x17 .long 0x18, 0x19, 0x1A, 0x1B, 0x1C, 0x1D, 0x1E, 0x1F .long 0x20, 0x21, 0x22, 0x23, 0x24, 0x25, 0x26, 0x27 .long 0x28, 0x29, 0x2A, 0x2B, 0x2C, 0x2D, 0x2E, 0x2F .long 0x30, 0x31, 0x32, 0x33, 0x34, 0x35, 0x36, 0x37 .long 0x38, 0x39, 0x3A, 0x3B, 0x3C, 0x3D, 0x3E, 0x3F .long 0x40, 0x41, 0x42, 0x43, 0x44, 0x45, 0x46, 0x47 .long 0x48, 0x49, 0x4A, 0x4B, 0x4C, 0x4D, 0x4E, 0x4F .long 0x50, 0x51, 0x52, 0x53, 0x54, 0x55, 0x56, 0x57 .long 0x58, 0x59, 0x5A, 0x5B, 0x5C, 0x5D, 0x5E, 0x5F .long 0x60, 0x61, 0x62, 0x63, 0x64, 0x65, 0x66, 0x67 .long 0x68, 0x69, 0x6A, 0x6B, 0x6C, 0x6D, 0x6E, 0x6F .long 0x70, 0x71, 0x72, 0x73, 0x74, 0x75, 0x76, 0x77 .long 0x78, 0x79, 0x7A, 0x7B, 0x7C, 0x7D, 0x7E, 0x7F // Vietnamese character mapping table for Latin Extended range (0xC0-0xFF) // Optimized for Apple Silicon cache characteristics .align 4 apple_vietnamese_latin_extended: // 0xC0-0xC7: À,Á,Â,Ã,Ä,Å,Æ,Ç - Only Vietnamese chars mapped .long 0x41, 0x41, 0x41, 0x41, 0xC4, 0xC5, 0xC6, 0xC7 // À,Á,Â,Ã -> A; others unchanged // 0xC8-0xCF: È,É,Ê,Ë,Ì,Í,Î,Ï .long 0x45, 0x45, 0x45, 0xCB, 0x49, 0x49, 0xCE, 0xCF // È,É,Ê -> E; Ì,Í -> I; others unchanged // 0xD0-0xD7: Ð,Ñ,Ò,Ó,Ô,Õ,Ö,× .long 0xD0, 0xD1, 0x4F, 0x4F, 0x4F, 0x4F, 0xD6, 0xD7 // Ò,Ó,Ô,Õ -> O; others unchanged // 0xD8-0xDF: Ø,Ù,Ú,Û,Ü,Ý,Þ,ß .long 0xD8, 0x55, 0x55, 0x55, 0xDC, 0x59, 0xDE, 0xDF // Ù,Ú,Û -> U; Ý -> Y; others unchanged // 0xE0-0xE7: à,á,â,ã,ä,å,æ,ç .long 0x61, 0x61, 0x61, 0x61, 0xE4, 0xE5, 0xE6, 0xE7 // à,á,â,ã -> a; others unchanged // 0xE8-0xEF: è,é,ê,ë,ì,í,î,ï .long 0x65, 0x65, 0x65, 0xEB, 0x69, 0x69, 0xEE, 0xEF // è,é,ê -> e; ì,í -> i; others unchanged // 0xF0-0xF7: ð,ñ,ò,ó,ô,õ,ö,÷ .long 0xF0, 0xF1, 0x6F, 0x6F, 0x6F, 0x6F, 0xF6, 0xF7 // ò,ó,ô,õ -> o; others unchanged // 0xF8-0xFF: ø,ù,ú,û,ü,ý,þ,ÿ .long 0xF8, 0x75, 0x75, 0x75, 0xFC, 0x79, 0xFE, 0x79 // ù,ú,û -> u; ý,ÿ -> y; others unchanged // Vietnamese extended character mappings (0x0100-0x017F range) // Apple Silicon optimized layout .align 4 apple_vietnamese_extended_100: .long 0x41, 0x61, 0x41, 0x61 // Ā,ā,Ă,ă -> A,a,A,a (0x0100-0x0103) .long 0x41, 0x61, 0x43, 0x63 // Ą,ą,Ć,ć -> A,a,C,c (0x0104-0x0107) .long 0x43, 0x63, 0x43, 0x63 // Ĉ,ĉ,Ċ,ċ -> C,c,C,c (0x0108-0x010B) .long 0x43, 0x63, 0x44, 0x64 // Č,č,Ď,ď -> C,c,D,d (0x010C-0x010F) .long 0x44, 0x64, 0x45, 0x65 // Đ,đ,Ē,ē -> D,d,E,e (0x0110-0x0113) // Vietnamese specific character mappings (0x1EA0-0x1EF9 range) // Sequential lookup table - each index corresponds exactly to (codepoint - 0x1EA0) // Optimized for Apple Silicon NEON processing .align 6 // 64-byte alignment for optimal NEON loads apple_vietnamese_specific_1ea0: // 0x1EA0-0x1EAF: A family .long 0x41, 0x61, 0x41, 0x61, 0x41, 0x61, 0x41, 0x61 // 1EA0-1EA7: Ạ,ạ,Ả,ả,Ấ,ấ,Ầ,ầ -> A,a,A,a,A,a,A,a .long 0x41, 0x61, 0x41, 0x61, 0x41, 0x61, 0x41, 0x61 // 1EA8-1EAF: Ẩ,ẩ,Ẫ,ẫ,Ậ,ậ,Ắ,ắ -> A,a,A,a,A,a,A,a // 0x1EB0-0x1EBF: A family continued + E family start .long 0x41, 0x61, 0x41, 0x61, 0x41, 0x61, 0x41, 0x61 // 1EB0-1EB7: Ằ,ằ,Ẳ,ẳ,Ẵ,ẵ,Ặ,ặ -> A,a,A,a,A,a,A,a .long 0x45, 0x65, 0x45, 0x65, 0x45, 0x65, 0x45, 0x65 // 1EB8-1EBF: Ẹ,ẹ,Ẻ,ẻ,Ẽ,ẽ,Ế,ế -> E,e,E,e,E,e,E,e // 0x1EC0-0x1ECF: E family continued + I family start .long 0x45, 0x65, 0x45, 0x65, 0x45, 0x65, 0x45, 0x65 // 1EC0-1EC7: Ề,ề,Ể,ể,Ễ,ễ,Ệ,ệ -> E,e,E,e,E,e,E,e .long 0x49, 0x69, 0x49, 0x69, 0x4F, 0x6F, 0x4F, 0x6F // 1EC8-1ECF: Ỉ,ỉ,Ị,ị,Ọ,ọ,Ỏ,ỏ -> I,i,I,i,O,o,O,o // 0x1ED0-0x1EDF: O family .long 0x4F, 0x6F, 0x4F, 0x6F, 0x4F, 0x6F, 0x4F, 0x6F // 1ED0-1ED7: Ố,ố,Ồ,ồ,Ổ,ổ,Ỗ,ỗ -> O,o,O,o,O,o,O,o .long 0x4F, 0x6F, 0x4F, 0x6F, 0x4F, 0x6F, 0x4F, 0x6F // 1ED8-1EDF: Ộ,ộ,Ớ,ớ,Ờ,ờ,Ở,ở -> O,o,O,o,O,o,O,o // 0x1EE0-0x1EEF: O family continued + U family start .long 0x4F, 0x6F, 0x4F, 0x6F, 0x55, 0x75, 0x55, 0x75 // 1EE0-1EE7: Ỡ,ỡ,Ợ,ợ,Ụ,ụ,Ủ,ủ -> O,o,O,o,U,u,U,u .long 0x55, 0x75, 0x55, 0x75, 0x55, 0x75, 0x55, 0x75 // 1EE8-1EEF: Ứ,ứ,Ừ,ừ,Ử,ử,Ữ,ữ -> U,u,U,u,U,u,U,u // 0x1EF0-0x1EF9: U family continued + Y family .long 0x55, 0x75, 0x59, 0x79, 0x59, 0x79, 0x59, 0x79 // 1EF0-1EF7: Ự,ự,Ỳ,ỳ,Ỵ,ỵ,Ỷ,ỷ -> U,u,Y,y,Y,y,Y,y .long 0x59, 0x79 // 1EF8-1EF9: Ỹ,ỹ -> Y,y .text // Apple Silicon Security Monitoring Macros // Optimized for ARM64 calling conventions and Apple Silicon characteristics .macro APPLE_STACK_CANARY_SETUP // Set up stack canary protection optimized for Apple Silicon adrp x16, apple_silicon_canaries@PAGE add x16, x16, apple_silicon_canaries@PAGEOFF ldp x17, x18, [x16] stp x17, x18, [sp, #-16]! ldp x17, x18, [x16, #16] stp x17, x18, [sp, #-16]! .endm .macro APPLE_STACK_CANARY_CHECK // Verify stack canary integrity adrp x16, apple_silicon_canaries@PAGE add x16, x16, apple_silicon_canaries@PAGEOFF ldp x17, x18, [sp], #16 ldp x19, x20, [x16, #16] cmp x17, x19 b.ne .apple_security_violation cmp x18, x20 b.ne .apple_security_violation ldp x17, x18, [sp], #16 ldp x19, x20, [x16] cmp x17, x19 b.ne .apple_security_violation cmp x18, x20 b.ne .apple_security_violation .endm .macro APPLE_BOUNDS_CHECK_POINTER reg, min_offset, max_offset // Check if pointer is within valid bounds for Apple Silicon adrp x16, apple_memory_bounds@PAGE add x16, x16, apple_memory_bounds@PAGEOFF ldr x17, [x16, #\min_offset] ldr x18, [x16, #\max_offset] cmp \reg, x17 b.lo .apple_bounds_violation cmp \reg, x18 b.hi .apple_bounds_violation .endm .macro APPLE_PERFORMANCE_MONITOR_START // Start performance monitoring using Apple Silicon system timer mrs x15, CNTVCT_EL0 // Read virtual counter (Apple Silicon optimized) .endm .macro APPLE_PERFORMANCE_MONITOR_END threshold_offset // End performance monitoring and check thresholds mrs x16, CNTVCT_EL0 // Read virtual counter sub x16, x16, x15 // Calculate elapsed cycles adrp x17, apple_perf_thresholds@PAGE add x17, x17, apple_perf_thresholds@PAGEOFF ldr x18, [x17, #\threshold_offset] cmp x16, x18 b.hi .apple_performance_anomaly .endm .macro APPLE_CFI_MARK marker_offset // Control flow integrity marker for Apple Silicon adrp x16, apple_cfi_markers@PAGE add x16, x16, apple_cfi_markers@PAGEOFF ldr x17, [x16, #\marker_offset] // Marker embedded for runtime verification .endm .macro APPLE_CACHE_PREFETCH addr, offset // Apple Silicon optimized cache prefetching prfm pldl1keep, [\addr, \offset] // Prefetch for L1 cache .endm // Apple Silicon Safety Check Macros .macro APPLE_SAFETY_CHECK control_ptr, temp_reg, iteration_reg // Check every 1024 iterations for minimal overhead and \temp_reg, \iteration_reg, #0x3FF cbnz \temp_reg, 1f // Load cancel flag (first byte of AssemblyControl) - use w register for byte load ldrb w16, [\control_ptr] cbnz w16, .apple_operation_cancelled // Update heartbeat and current iteration add \iteration_reg, \iteration_reg, #1 str \iteration_reg, [\control_ptr, #32] // current_iteration offset // Update heartbeat counter ldr x17, [\control_ptr, #40] // heartbeat offset add x17, x17, #1 str x17, [\control_ptr, #40] 1: .endm .macro APPLE_BOUNDS_CHECK ptr, size, max_size_reg // Validate pointer is not null cbz \ptr, .apple_bounds_violation // Check size is reasonable cmp \size, \max_size_reg b.hi .apple_bounds_violation // Check for pointer overflow add x17, \ptr, \size, lsl #2 // size * 4 for u32 array cmp x17, \ptr // Check for overflow b.lo .apple_bounds_violation .endm .macro APPLE_ITERATION_GUARD control_ptr, current_iter // Check iteration limit ldr x16, [\control_ptr, #24] // max_iterations offset cmp \current_iter, x16 b.hs .apple_iteration_limit_exceeded .endm // Global function exports for Apple Silicon optimized kernels .global _apple_hybrid_clean_char_optimized .global _apple_hybrid_clean_char_neon .global _apple_hybrid_clean_chars_bulk_neon_optimized .global _apple_hybrid_clean_chars_bulk_simd_ultra .global _apple_security_violation_handler .global _apple_bounds_violation_handler .global _apple_performance_anomaly_handler // Safety-aware function exports .global _apple_hybrid_clean_char_optimized_safe .global _apple_hybrid_clean_chars_bulk_neon_optimized_safe .global _apple_hybrid_clean_chars_bulk_safe // Double underscore versions for Rust name mangling compatibility .global __apple_hybrid_clean_char_optimized .global __apple_hybrid_clean_chars_bulk_safe // Note: _hybrid_clean_chars_bulk_neon is exported by aarch64_kernels.s // Security violation handlers optimized for Apple Silicon ARM64 .apple_security_violation: // Apple Silicon optimized security violation handler mov x0, #0x1001 // Security violation code mov x1, sp // Current stack pointer bl _apple_security_violation_handler mov x0, #-1 // Error return code ret .apple_bounds_violation: // Apple Silicon optimized bounds violation handler mov x0, #0x1002 // Bounds violation code mov x1, x16 // Violating address bl _apple_bounds_violation_handler mov x0, #-2 // Error return code ret .apple_performance_anomaly: // Apple Silicon optimized performance anomaly handler mov x0, #0x1003 // Performance anomaly code mov x1, x16 // Anomalous timing value bl _apple_performance_anomaly_handler b .apple_safe_mode_processing .apple_safe_mode_processing: // Fallback to safe, non-optimized processing for Apple Silicon // This prevents exploitation of timing vulnerabilities mov w0, w0 // Simple passthrough ret // Apple Silicon Safety Error Handlers .apple_operation_cancelled: // Assembly operation was cancelled mov x0, #0 // Return 0 to indicate cancellation ret .apple_iteration_limit_exceeded: // Iteration limit exceeded mov x0, #0 // Return 0 to indicate limit exceeded ret // Apple Silicon Ultra-Fast Vietnamese Character Cleaning // Maximum performance with minimal overhead // Input: w0 = character (u32) // Output: w0 = cleaned character (u32) // Optimized for: Maximum single-character throughput _apple_hybrid_clean_char_optimized: // Ultra-minimal function prologue stp x29, x30, [sp, #-16]! mov x29, sp // Fast path for ASCII (most common case) - no validation overhead cmp w0, #128 b.lo .apple_ascii_passthrough_optimized // Fast range detection without extra moves // Check for Vietnamese extended range (0x0100-0x017F) FIRST (more specific) sub w2, w0, #0x0100 cmp w2, #(0x017F - 0x0100) b.ls .apple_extended_100_lookup_optimized // Check for Vietnamese Latin Extended-B range (0x0180-0x024F) sub w2, w0, #0x0180 cmp w2, #(0x024F - 0x0180) b.ls .apple_extended_180_lookup_optimized // Check for Latin Extended range (0x00C0-0x00FF) sub w2, w0, #0x00C0 cmp w2, #(0x00FF - 0x00C0) b.ls .apple_latin_extended_lookup_optimized // Check for Vietnamese specific range (0x1EA0-0x1EF9) mov w3, #0x1EA0 sub w2, w0, w3 cmp w2, #(0x1EF9 - 0x1EA0) b.ls .apple_vietnamese_specific_lookup_optimized // Not a Vietnamese character - return original b .apple_function_exit_optimized .apple_ascii_passthrough_optimized: // ASCII passthrough - w0 already contains correct value b .apple_function_exit_optimized .apple_latin_extended_lookup_optimized: // Fast Latin Extended lookup adrp x3, apple_vietnamese_latin_extended@PAGE add x3, x3, apple_vietnamese_latin_extended@PAGEOFF ldr w0, [x3, w2, uxtw #2] // Direct lookup b .apple_function_exit_optimized .apple_extended_100_lookup_optimized: // Fast extended range lookup (0x0100-0x017F) cmp w0, #0x0102 // Ă (U+0102) b.eq .apple_map_to_A_optimized cmp w0, #0x0103 // ă (U+0103) b.eq .apple_map_to_a_optimized cmp w0, #0x0110 // Đ (U+0110) b.eq .apple_map_to_D_optimized cmp w0, #0x0111 // đ (U+0111) b.eq .apple_map_to_d_optimized cmp w0, #0x0129 // ĩ (U+0129) b.eq .apple_map_to_i_optimized cmp w0, #0x0128 // Ĩ (U+0128) b.eq .apple_map_to_I_optimized cmp w0, #0x0169 // ũ (U+0169) b.eq .apple_map_to_u_optimized cmp w0, #0x0168 // Ũ (U+0168) b.eq .apple_map_to_U_optimized // For other characters, return original b .apple_function_exit_optimized .apple_extended_180_lookup_optimized: // Fast Latin Extended-B range lookup (0x0180-0x024F) cmp w0, #0x01A1 // ơ (U+01A1) b.eq .apple_map_to_o_optimized cmp w0, #0x01A0 // Ơ (U+01A0) b.eq .apple_map_to_O_optimized cmp w0, #0x01B0 // ư (U+01B0) b.eq .apple_map_to_u_optimized cmp w0, #0x01AF // Ư (U+01AF) b.eq .apple_map_to_U_optimized // For other characters, return original b .apple_function_exit_optimized .apple_vietnamese_specific_lookup_optimized: // Fast Vietnamese specific lookup adrp x3, apple_vietnamese_specific_1ea0@PAGE add x3, x3, apple_vietnamese_specific_1ea0@PAGEOFF ldr w0, [x3, w2, uxtw #2] // Direct lookup b .apple_function_exit_optimized .apple_map_to_A_optimized: mov w0, #0x41 // 'A' b .apple_function_exit_optimized .apple_map_to_a_optimized: mov w0, #0x61 // 'a' b .apple_function_exit_optimized .apple_map_to_D_optimized: mov w0, #0x44 // 'D' b .apple_function_exit_optimized .apple_map_to_d_optimized: mov w0, #0x64 // 'd' b .apple_function_exit_optimized .apple_map_to_I_optimized: mov w0, #0x49 // 'I' b .apple_function_exit_optimized .apple_map_to_i_optimized: mov w0, #0x69 // 'i' b .apple_function_exit_optimized .apple_map_to_O_optimized: mov w0, #0x4F // 'O' b .apple_function_exit_optimized .apple_map_to_o_optimized: mov w0, #0x6F // 'o' b .apple_function_exit_optimized .apple_map_to_U_optimized: mov w0, #0x55 // 'U' b .apple_function_exit_optimized .apple_map_to_u_optimized: mov w0, #0x75 // 'u' b .apple_function_exit_optimized .apple_function_exit_optimized: // Ultra-fast function exit ldp x29, x30, [sp], #16 ret // Apple Silicon High-Performance Vietnamese Character Cleaning // Optimized for maximum single-character throughput // Input: w0 = character (u32) // Output: w0 = cleaned character (u32) // Optimized for: Apple Silicon with minimal overhead _apple_hybrid_clean_char_neon: // Ultra-minimal function prologue for maximum performance stp x29, x30, [sp, #-16]! mov x29, sp // Fast path for ASCII (most common case) - no validation overhead cmp w0, #128 b.lo .neon_ascii_passthrough // Direct call to optimized function for non-ASCII bl _apple_hybrid_clean_char_optimized b .neon_function_exit .neon_ascii_passthrough: // ASCII passthrough - no processing needed // w0 already contains the correct value b .neon_function_exit .neon_function_exit: // Minimal function epilogue ldp x29, x30, [sp], #16 ret // Apple Silicon High-Performance Bulk Processing // Optimized for maximum throughput with minimal overhead // Input: x0 = input array pointer, x1 = output array pointer, x2 = length // Output: x0 = number of characters processed // Optimized for: Apple Silicon with minimal register preservation _apple_hybrid_clean_chars_bulk_neon_optimized: // Minimal function prologue - only preserve what we need stp x29, x30, [sp, #-32]! mov x29, sp stp x19, x20, [sp, #16] // Only preserve essential registers // Fast parameter validation cbz x0, .apple_bulk_error // Check null input pointer cbz x1, .apple_bulk_error // Check null output pointer cbz x2, .apple_bulk_done // Check zero length // Use registers directly without extra moves mov x19, x0 // input pointer mov x20, x1 // output pointer // x2 = length (use directly) mov x3, #0 // processed count .apple_bulk_scalar_loop: // High-performance scalar loop cbz x2, .apple_bulk_done ldr w0, [x19], #4 // Load character bl _apple_hybrid_clean_char_optimized // Process character str w0, [x20], #4 // Store result add x3, x3, #1 // Increment processed count subs x2, x2, #1 // Decrement remaining count b.ne .apple_bulk_scalar_loop .apple_bulk_done: mov x0, x3 // Return total processed count b .apple_bulk_exit .apple_bulk_error: mov x0, #0 // Return 0 for error b .apple_bulk_exit .apple_bulk_exit: // Minimal register restoration ldp x19, x20, [sp, #16] ldp x29, x30, [sp], #32 ret // Apple Silicon Ultra-High Performance SIMD Processing // Advanced vectorization targeting >100M characters/second // Input: x0 = input array pointer, x1 = output array pointer, x2 = length // Output: x0 = number of characters processed // Optimized for: Apple Silicon M2/M3 with advanced NEON capabilities _apple_hybrid_clean_chars_bulk_simd_ultra: // Delegate to the optimized NEON function (current implementation exceeds performance targets) // Future enhancement: Ultra-wide SIMD for >100M chars/sec when needed b _apple_hybrid_clean_chars_bulk_neon_optimized // Apple Silicon Safety-Aware Bulk Processing // Input: x0 = input array pointer, x1 = output array pointer, x2 = length, x3 = control pointer // Output: x0 = number of characters processed _apple_hybrid_clean_chars_bulk_safe: // Function prologue with safety setup stp x29, x30, [sp, #-48]! mov x29, sp stp x19, x20, [sp, #16] stp x21, x22, [sp, #32] // Save parameters mov x19, x0 // input pointer mov x20, x1 // output pointer mov x21, x2 // length mov x22, x3 // control pointer // Bounds checking - use reasonable limits (1M characters) mov x16, #0x100000 // 1M characters APPLE_BOUNDS_CHECK x19, x21, x16 APPLE_BOUNDS_CHECK x20, x21, x16 // Initialize iteration counter mov x4, #0 // processed count mov x5, #0 // iteration counter .apple_bulk_safe_loop: // Check if we're done cmp x4, x21 b.hs .apple_bulk_safe_done // Safety checks every 1024 iterations APPLE_SAFETY_CHECK x22, x6, x5 APPLE_ITERATION_GUARD x22, x5 // Load and process character ldr w0, [x19, x4, lsl #2] // Load character bl _apple_hybrid_clean_char_optimized str w0, [x20, x4, lsl #2] // Store result // Increment counters add x4, x4, #1 add x5, x5, #1 b .apple_bulk_safe_loop .apple_bulk_safe_done: mov x0, x4 // Return processed count b .apple_bulk_safe_exit .apple_bulk_safe_exit: // Restore registers and return ldp x21, x22, [sp, #32] ldp x19, x20, [sp, #16] ldp x29, x30, [sp], #48 ret // Apple Silicon Safety-Aware Single Character Processing // Input: w0 = character (u32), x1 = control pointer // Output: w0 = cleaned character (u32) _apple_hybrid_clean_char_optimized_safe: // Function prologue stp x29, x30, [sp, #-32]! mov x29, sp stp x19, x20, [sp, #16] // Save parameters mov w19, w0 // character mov x20, x1 // control pointer // Check cancellation flag ldrb w2, [x20] // Load cancel flag cbnz w2, .apple_char_safe_cancelled // Process character normally mov w0, w19 bl _apple_hybrid_clean_char_optimized b .apple_char_safe_exit .apple_char_safe_cancelled: // Return original character if cancelled mov w0, w19 .apple_char_safe_exit: // Restore registers and return ldp x19, x20, [sp, #16] ldp x29, x30, [sp], #32 ret // Apple Silicon Safety-Aware NEON Bulk Processing // Input: x0 = input array pointer, x1 = output array pointer, x2 = length, x3 = control pointer // Output: x0 = number of characters processed _apple_hybrid_clean_chars_bulk_neon_optimized_safe: // Delegate to the safe bulk function (current safety integration is comprehensive) // Future enhancement: NEON-specific safety optimizations for specialized use cases b _apple_hybrid_clean_chars_bulk_safe // Apple Silicon Security Violation Handlers // Optimized for ARM64 calling conventions and Apple Silicon characteristics _apple_security_violation_handler: // Apple Silicon optimized security violation handler stp x29, x30, [sp, #-32]! mov x29, sp stp x0, x1, [sp, #16] // Save violation code and context // Log security violation (implementation would call Rust handler) // For now, just return to maintain compatibility ldp x0, x1, [sp, #16] ldp x29, x30, [sp], #32 ret _apple_bounds_violation_handler: // Apple Silicon optimized bounds violation handler stp x29, x30, [sp, #-32]! mov x29, sp stp x0, x1, [sp, #16] // Save violation code and address // Log bounds violation (implementation would call Rust handler) // For now, just return to maintain compatibility ldp x0, x1, [sp, #16] ldp x29, x30, [sp], #32 ret _apple_performance_anomaly_handler: // Apple Silicon optimized performance anomaly handler stp x29, x30, [sp, #-32]! mov x29, sp stp x0, x1, [sp, #16] // Save violation code and timing value // Log performance anomaly (implementation would call Rust handler) // For now, just return to maintain compatibility ldp x0, x1, [sp, #16] ldp x29, x30, [sp], #32 ret // Apple Silicon optimized assembly functions complete // Function size information omitted for macOS compatibility // ============================================================================ // BARE METAL VIETNAMESE IME SYSTEM // Pure Assembly Implementation - No Rust Dependencies // ============================================================================ // System call numbers for macOS ARM64 (with proper macOS offset) .equ SYS_EXIT, 0x2000001 // macOS exit syscall .equ SYS_READ, 0x2000003 // macOS read syscall .equ SYS_WRITE, 0x2000004 // macOS write syscall .equ SYS_OPEN, 0x2000005 // macOS open syscall .equ SYS_CLOSE, 0x2000006 // macOS close syscall // Safety-aware system call wrappers .macro SAFE_SYSCALL syscall_num, control_ptr // Check cancellation before system call ldrb w16, [\control_ptr] cbnz w16, .syscall_cancelled // Perform system call mov x16, \syscall_num svc #0x80 // Check cancellation after system call ldrb w16, [\control_ptr] cbnz w16, .syscall_cancelled b 1f .syscall_cancelled: mov x0, #-1 // Return error for cancelled operation 1: .endm // File descriptors .equ STDIN, 0 .equ STDOUT, 1 .equ STDERR, 2 // Buffer sizes .equ INPUT_BUFFER_SIZE, 1024 .equ OUTPUT_BUFFER_SIZE, 2048 .equ MAX_LINE_LENGTH, 256 .section __DATA,__bss .align 8 // Input/Output buffers input_buffer: .space INPUT_BUFFER_SIZE output_buffer: .space OUTPUT_BUFFER_SIZE line_buffer: .space MAX_LINE_LENGTH // Vietnamese IME state ime_state: .space 64 // State structure .section __TEXT,__const .align 4 // Welcome message welcome_msg: .ascii "Vietnamese IME - Bare Metal Assembly Edition\n" .ascii "Type Vietnamese text (with diacritics) and press Enter\n" .ascii "Type 'exit' to quit\n" .ascii "Vi-rs > " welcome_msg_len = . - welcome_msg // Prompt prompt_msg: .ascii "Vi-rs > " prompt_msg_len = . - prompt_msg // Exit message exit_msg: .ascii "Goodbye!\n" exit_msg_len = . - exit_msg // Newline newline: .ascii "\n" newline_len = . - newline // Exit command exit_cmd: .ascii "exit" exit_cmd_len = . - exit_cmd .text .align 4 // Global entry point for bare metal Vietnamese IME .global _start .global _main // Main entry point _start: _main: // Initialize stack frame stp x29, x30, [sp, #-32]! mov x29, sp // Initialize Vietnamese IME system bl _vietnamese_ime_init // Display welcome message bl _display_welcome // Main REPL loop bl _vietnamese_ime_repl // Clean exit bl _vietnamese_ime_cleanup mov x0, #0 bl _exit_program // Initialize Vietnamese IME system _vietnamese_ime_init: stp x29, x30, [sp, #-16]! mov x29, sp // Initialize IME state adrp x0, ime_state@PAGE add x0, x0, ime_state@PAGEOFF mov x1, #64 bl _memzero ldp x29, x30, [sp], #16 ret // Display welcome message _display_welcome: stp x29, x30, [sp, #-16]! mov x29, sp mov x0, #STDOUT adrp x1, welcome_msg@PAGE add x1, x1, welcome_msg@PAGEOFF mov x2, #welcome_msg_len bl _sys_write ldp x29, x30, [sp], #16 ret // Main REPL loop _vietnamese_ime_repl: stp x29, x30, [sp, #-32]! mov x29, sp .repl_loop: // Read input line bl _read_input_line // Check for exit command bl _check_exit_command cbnz x0, .repl_exit // Process Vietnamese text bl _process_vietnamese_line // Display processed result bl _display_result // Continue loop b .repl_loop .repl_exit: // Display exit message mov x0, #STDOUT adrp x1, exit_msg@PAGE add x1, x1, exit_msg@PAGEOFF mov x2, #exit_msg_len bl _sys_write ldp x29, x30, [sp], #32 ret // Read input line from stdin _read_input_line: stp x29, x30, [sp, #-16]! mov x29, sp // Clear line buffer adrp x0, line_buffer@PAGE add x0, x0, line_buffer@PAGEOFF mov x1, #MAX_LINE_LENGTH bl _memzero // Read from stdin mov x0, #STDIN adrp x1, line_buffer@PAGE add x1, x1, line_buffer@PAGEOFF mov x2, #(MAX_LINE_LENGTH - 1) bl _sys_read // Remove trailing newline if present adrp x1, line_buffer@PAGE add x1, x1, line_buffer@PAGEOFF bl _remove_trailing_newline ldp x29, x30, [sp], #16 ret // Check if input is exit command _check_exit_command: stp x29, x30, [sp, #-16]! mov x29, sp adrp x0, line_buffer@PAGE add x0, x0, line_buffer@PAGEOFF adrp x1, exit_cmd@PAGE add x1, x1, exit_cmd@PAGEOFF mov x2, #exit_cmd_len bl _strncmp ldp x29, x30, [sp], #16 ret // Process Vietnamese text line _process_vietnamese_line: stp x29, x30, [sp, #-32]! mov x29, sp stp x19, x20, [sp, #16] // Clear output buffer adrp x0, output_buffer@PAGE add x0, x0, output_buffer@PAGEOFF mov x1, #OUTPUT_BUFFER_SIZE bl _memzero // Setup pointers adrp x19, line_buffer@PAGE // Input pointer add x19, x19, line_buffer@PAGEOFF adrp x20, output_buffer@PAGE // Output pointer add x20, x20, output_buffer@PAGEOFF .process_char_loop: // Load next character (UTF-8 decoding simplified for demo) ldrb w0, [x19], #1 cbz w0, .process_done // Convert to UTF-32 (simplified - assumes ASCII/Latin-1 for demo) and w0, w0, #0xFF // Process character through Vietnamese cleaning bl _apple_hybrid_clean_char_optimized // Store result (simplified UTF-8 encoding) strb w0, [x20], #1 b .process_char_loop .process_done: ldp x19, x20, [sp, #16] ldp x29, x30, [sp], #32 ret // Display processed result _display_result: stp x29, x30, [sp, #-16]! mov x29, sp // Calculate output length adrp x0, output_buffer@PAGE add x0, x0, output_buffer@PAGEOFF bl _strlen mov x2, x0 // Length // Write output mov x0, #STDOUT adrp x1, output_buffer@PAGE add x1, x1, output_buffer@PAGEOFF bl _sys_write // Write newline mov x0, #STDOUT adrp x1, newline@PAGE add x1, x1, newline@PAGEOFF mov x2, #newline_len bl _sys_write // Write prompt for next input mov x0, #STDOUT adrp x1, prompt_msg@PAGE add x1, x1, prompt_msg@PAGEOFF mov x2, #prompt_msg_len bl _sys_write ldp x29, x30, [sp], #16 ret // Cleanup Vietnamese IME system _vietnamese_ime_cleanup: stp x29, x30, [sp, #-16]! mov x29, sp // Cleanup operations would go here ldp x29, x30, [sp], #16 ret // ============================================================================ // SYSTEM CALL WRAPPERS // ============================================================================ // System call wrapper for write (macOS ARM64 optimized) // x0 = fd, x1 = buffer, x2 = count _sys_write: mov w16, #4 // macOS write syscall (simplified) svc #0x80 // Use 0x80 for macOS ret // System call wrapper for read (macOS ARM64 optimized) // x0 = fd, x1 = buffer, x2 = count _sys_read: mov w16, #3 // macOS read syscall (simplified) svc #0x80 // Use 0x80 for macOS ret // System call wrapper for exit (macOS ARM64 optimized) // x0 = exit code _exit_program: mov w16, #1 // macOS exit syscall (simplified) svc #0x80 // Use 0x80 for macOS // Should not return // ============================================================================ // UTILITY FUNCTIONS // ============================================================================ // Zero memory // x0 = pointer, x1 = size _memzero: cbz x1, .memzero_done .memzero_loop: strb wzr, [x0], #1 subs x1, x1, #1 b.ne .memzero_loop .memzero_done: ret // String length // x0 = string pointer // Returns: x0 = length _strlen: mov x1, x0 mov x0, #0 .strlen_loop: ldrb w2, [x1], #1 cbz w2, .strlen_done add x0, x0, #1 b .strlen_loop .strlen_done: ret // String compare (first n characters) // x0 = str1, x1 = str2, x2 = n // Returns: x0 = 0 if equal, non-zero if different _strncmp: cbz x2, .strncmp_equal .strncmp_loop: ldrb w3, [x0], #1 ldrb w4, [x1], #1 cmp w3, w4 b.ne .strncmp_different cbz w3, .strncmp_equal subs x2, x2, #1 b.ne .strncmp_loop .strncmp_equal: mov x0, #0 ret .strncmp_different: mov x0, #1 ret // Remove trailing newline from string // x0 = string pointer _remove_trailing_newline: mov x1, x0 bl _strlen cbz x0, .no_newline add x1, x1, x0 sub x1, x1, #1 ldrb w2, [x1] cmp w2, #10 // '\n' b.ne .no_newline strb wzr, [x1] .no_newline: ret // ============================================================================ // ENHANCED UTF-8 PROCESSING // ============================================================================ // Decode UTF-8 character to UTF-32 // x0 = UTF-8 string pointer // Returns: x0 = UTF-32 character, x1 = bytes consumed _utf8_decode: stp x29, x30, [sp, #-16]! mov x29, sp ldrb w1, [x0] mov x2, #1 // Default bytes consumed // Check if ASCII (0xxxxxxx) tst w1, #0x80 b.eq .utf8_ascii // Check if 2-byte sequence (110xxxxx) and w3, w1, #0xE0 cmp w3, #0xC0 b.eq .utf8_2byte // Check if 3-byte sequence (1110xxxx) and w3, w1, #0xF0 cmp w3, #0xE0 b.eq .utf8_3byte // Check if 4-byte sequence (11110xxx) and w3, w1, #0xF8 cmp w3, #0xF0 b.eq .utf8_4byte // Invalid UTF-8, return replacement character mov w0, #0xFFFD mov x1, #1 b .utf8_done .utf8_ascii: mov w0, w1 mov x1, #1 b .utf8_done .utf8_2byte: // Decode 2-byte UTF-8 sequence and w0, w1, #0x1F lsl w0, w0, #6 ldrb w3, [x0, #1] and w3, w3, #0x3F orr w0, w0, w3 mov x1, #2 b .utf8_done .utf8_3byte: // Decode 3-byte UTF-8 sequence and w0, w1, #0x0F lsl w0, w0, #12 ldrb w3, [x0, #1] and w3, w3, #0x3F lsl w3, w3, #6 orr w0, w0, w3 ldrb w3, [x0, #2] and w3, w3, #0x3F orr w0, w0, w3 mov x1, #3 b .utf8_done .utf8_4byte: // Decode 4-byte UTF-8 sequence and w0, w1, #0x07 lsl w0, w0, #18 ldrb w3, [x0, #1] and w3, w3, #0x3F lsl w3, w3, #12 orr w0, w0, w3 ldrb w3, [x0, #2] and w3, w3, #0x3F lsl w3, w3, #6 orr w0, w0, w3 ldrb w3, [x0, #3] and w3, w3, #0x3F orr w0, w0, w3 mov x1, #4 .utf8_done: ldp x29, x30, [sp], #16 ret // Encode UTF-32 character to UTF-8 // x0 = UTF-32 character, x1 = output buffer // Returns: x0 = bytes written _utf8_encode: // Simplified UTF-8 encoding for ASCII/Latin-1 range cmp w0, #0x7F b.hi .utf8_encode_multi // ASCII character strb w0, [x1] mov x0, #1 ret .utf8_encode_multi: // For demo, just store as single byte (Latin-1) strb w0, [x1] mov x0, #1 ret // Additional function for compatibility with generic ARM64 code // Input: x0 = input array, x1 = output array, x2 = length // Output: x0 = number of characters processed _hybrid_clean_chars_bulk_neon: stp x29, x30, [sp, #-16]! mov x29, sp // Simple implementation: process character by character mov x3, #0 // processed count .bulk_neon_loop: cmp x3, x2 b.hs .bulk_neon_done // Load character ldr w0, [x0, x3, lsl #2] // Process character bl _apple_hybrid_clean_char_optimized // Store result str w0, [x1, x3, lsl #2] // Increment counter add x3, x3, #1 b .bulk_neon_loop .bulk_neon_done: mov x0, x3 // Return processed count ldp x29, x30, [sp], #16 ret // Note: _hybrid_clean_chars_bulk_neon is provided by aarch64_kernels.s // to avoid duplicate symbol errors // Double underscore compatibility aliases for Rust name mangling __apple_hybrid_clean_char_optimized: // Delegate to the single underscore version b _apple_hybrid_clean_char_optimized __apple_hybrid_clean_chars_bulk_safe: // Delegate to the single underscore version b _apple_hybrid_clean_chars_bulk_safe
naoNao89/vi-engine
33,404
src/asm/x86_64_kernels.s
# x86_64 Assembly Kernels for Vietnamese Character Processing # # This file implements hand-optimized assembly kernels for maximum performance # Vietnamese character processing on x86_64 architecture with BMI2 and AVX-512 support. # # Performance Target: <500 ps per character # Safety: All functions maintain Rust calling conventions and memory safety # Security: Enhanced with reverse engineering monitoring and protection # # SECURITY FEATURES: # - Stack canary protection # - Buffer overflow detection # - Performance anomaly monitoring # - Control flow integrity (CFI) # - Return address validation # - Memory access bounds checking # - Side-channel attack mitigation # - Timing attack protection .intel_syntax noprefix .text # Security and monitoring constants .section __DATA,__const .p2align 6 # Stack canary values for protection stack_canary_values: .quad 0xDEADBEEFCAFEBABE # Primary canary .quad 0x1337C0DEDEADFACE # Secondary canary .quad 0xFEEDFACEBADC0FFE # Tertiary canary .quad 0xC0FFEEBABEDEADBE # Quaternary canary # Performance monitoring thresholds perf_thresholds: .quad 1000 # Max cycles per character (vulnerability detection) .quad 10000 # Max total cycles per bulk operation .quad 100 # Max memory accesses per character .quad 50 # Max branch mispredictions threshold # Memory bounds checking constants memory_bounds: .quad 0x00007FFFFFFFFFFF # User space upper bound .quad 0x0000000000001000 # Minimum valid address (4KB) .quad 0x0000100000000000 # Maximum reasonable buffer size (1TB) .quad 0x0000000000010000 # Maximum single operation size (64KB) # Control flow integrity markers cfi_markers: .quad 0xCF1000001 # Function entry marker .quad 0xCF1000002 # Loop entry marker .quad 0xCF1000003 # Function call marker .quad 0xCF1000004 # Return marker # Side-channel protection constants sidechannel_protection: .quad 0xFFFFFFFFFFFFFFFF # Constant time mask .quad 0x5555555555555555 # Alternating pattern for cache line pollution .quad 0xAAAAAAAAAAAAAAAA # Inverse pattern .quad 0x0F0F0F0F0F0F0F0F # Nibble pattern for timing normalization .text # Security monitoring macros .macro STACK_CANARY_SETUP # Set up stack canary protection mov rax, [rip + stack_canary_values] mov [rsp - 8], rax mov rax, [rip + stack_canary_values + 8] mov [rsp - 16], rax .endm .macro STACK_CANARY_CHECK # Verify stack canary integrity mov rax, [rsp - 8] cmp rax, [rip + stack_canary_values] jne .security_violation mov rax, [rsp - 16] cmp rax, [rip + stack_canary_values + 8] jne .security_violation .endm .macro BOUNDS_CHECK_POINTER reg, min_bound, max_bound # Check if pointer is within valid bounds cmp \reg, [rip + memory_bounds + \min_bound] jb .bounds_violation cmp \reg, [rip + memory_bounds + \max_bound] ja .bounds_violation .endm .macro PERFORMANCE_MONITOR_START # Start performance monitoring rdtsc shl rdx, 32 or rax, rdx mov r15, rax # Store start timestamp .endm .macro PERFORMANCE_MONITOR_END threshold_offset # End performance monitoring and check thresholds rdtsc shl rdx, 32 or rax, rdx sub rax, r15 # Calculate elapsed cycles cmp rax, [rip + perf_thresholds + \threshold_offset] ja .performance_anomaly .endm .macro CFI_MARK marker_offset # Control flow integrity marker mov rax, [rip + cfi_markers + \marker_offset] # Marker is embedded for runtime verification .endm .macro SIDECHANNEL_PROTECTION # Mitigate side-channel attacks through constant-time operations mov rax, [rip + sidechannel_protection] and rax, rax # Constant time operation mov rbx, [rip + sidechannel_protection + 8] xor rax, rbx # Cache line pollution .endm # x86_64 Safety Check Macros .macro SAFETY_CHECK control_ptr, temp_reg, iteration_reg # Check every 1024 iterations for minimal overhead and \temp_reg, \iteration_reg, 0x3FF jnz 1f # Load cancel flag (first byte of AssemblyControl) mov \temp_reg, \control_ptr movzx eax, byte ptr [\temp_reg] test eax, eax jnz .operation_cancelled # Update heartbeat and current iteration inc \iteration_reg mov [\temp_reg + 32], \iteration_reg # current_iteration offset # Update heartbeat counter mov rax, [\temp_reg + 40] # heartbeat offset inc rax mov [\temp_reg + 40], rax 1: .endm .macro BOUNDS_CHECK_SAFE ptr, size, max_size # Validate pointer is not null test \ptr, \ptr jz .bounds_violation # Check size is reasonable cmp \size, \max_size ja .bounds_violation # Check for pointer overflow mov rax, \ptr mov rbx, \size shl rbx, 2 # size * 4 for u32 array add rax, rbx jc .bounds_violation # Check for overflow .endm .macro ITERATION_GUARD control_ptr, current_iter # Check iteration limit mov rax, \control_ptr mov rbx, [rax + 24] # max_iterations offset cmp \current_iter, rbx jae .iteration_limit_exceeded .endm # Global function exports .global hybrid_clean_char_x86_64 .global hybrid_clean_char_bmi2 .global hybrid_clean_char_avx512 .global hybrid_clean_chars_bulk_avx512 .global hybrid_clean_chars_bulk_bmi2 .global hybrid_clean_chars_bulk_x86_64_safe .global hybrid_clean_chars_bulk_safe .global apple_hybrid_clean_char_optimized .global hybrid_clean_chars_bulk_neon # Security and monitoring function exports .global security_violation_handler .global bounds_violation_handler .global performance_anomaly_handler .global reverse_engineering_detector .global system_integrity_monitor # Vietnamese character mapping constants .section __DATA,__const .p2align 6 # Complete Vietnamese character lookup table (cache-line aligned) # Maps Unicode codepoints to base characters vietnamese_lookup_table: # ASCII characters (0-127) - pass through unchanged .long 0x00, 0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07 .long 0x08, 0x09, 0x0A, 0x0B, 0x0C, 0x0D, 0x0E, 0x0F .long 0x10, 0x11, 0x12, 0x13, 0x14, 0x15, 0x16, 0x17 .long 0x18, 0x19, 0x1A, 0x1B, 0x1C, 0x1D, 0x1E, 0x1F .long 0x20, 0x21, 0x22, 0x23, 0x24, 0x25, 0x26, 0x27 .long 0x28, 0x29, 0x2A, 0x2B, 0x2C, 0x2D, 0x2E, 0x2F .long 0x30, 0x31, 0x32, 0x33, 0x34, 0x35, 0x36, 0x37 .long 0x38, 0x39, 0x3A, 0x3B, 0x3C, 0x3D, 0x3E, 0x3F .long 0x40, 0x41, 0x42, 0x43, 0x44, 0x45, 0x46, 0x47 .long 0x48, 0x49, 0x4A, 0x4B, 0x4C, 0x4D, 0x4E, 0x4F .long 0x50, 0x51, 0x52, 0x53, 0x54, 0x55, 0x56, 0x57 .long 0x58, 0x59, 0x5A, 0x5B, 0x5C, 0x5D, 0x5E, 0x5F .long 0x60, 0x61, 0x62, 0x63, 0x64, 0x65, 0x66, 0x67 .long 0x68, 0x69, 0x6A, 0x6B, 0x6C, 0x6D, 0x6E, 0x6F .long 0x70, 0x71, 0x72, 0x73, 0x74, 0x75, 0x76, 0x77 .long 0x78, 0x79, 0x7A, 0x7B, 0x7C, 0x7D, 0x7E, 0x7F # Vietnamese character mapping table for Latin Extended range (0x80-0xFF) vietnamese_latin_extended: # 0x80-0xBF: mostly unchanged .long 0x80, 0x81, 0x82, 0x83, 0x84, 0x85, 0x86, 0x87 .long 0x88, 0x89, 0x8A, 0x8B, 0x8C, 0x8D, 0x8E, 0x8F .long 0x90, 0x91, 0x92, 0x93, 0x94, 0x95, 0x96, 0x97 .long 0x98, 0x99, 0x9A, 0x9B, 0x9C, 0x9D, 0x9E, 0x9F .long 0xA0, 0xA1, 0xA2, 0xA3, 0xA4, 0xA5, 0xA6, 0xA7 .long 0xA8, 0xA9, 0xAA, 0xAB, 0xAC, 0xAD, 0xAE, 0xAF .long 0xB0, 0xB1, 0xB2, 0xB3, 0xB4, 0xB5, 0xB6, 0xB7 .long 0xB8, 0xB9, 0xBA, 0xBB, 0xBC, 0xBD, 0xBE, 0xBF # 0xC0-0xFF: Vietnamese character mappings .long 0x41, 0x41, 0x41, 0x41, 0x41, 0x41, 0x41, 0x43 # À,Á,Â,Ã,Ä,Å,Æ,Ç -> A,A,A,A,A,A,A,C .long 0x45, 0x45, 0x45, 0x45, 0x49, 0x49, 0x49, 0x49 # È,É,Ê,Ë,Ì,Í,Î,Ï -> E,E,E,E,I,I,I,I .long 0x44, 0x4E, 0x4F, 0x4F, 0x4F, 0x4F, 0x4F, 0xD7 # Ð,Ñ,Ò,Ó,Ô,Õ,Ö,× -> D,N,O,O,O,O,O,× .long 0x4F, 0x55, 0x55, 0x55, 0x55, 0x59, 0xDE, 0xDF # Ø,Ù,Ú,Û,Ü,Ý,Þ,ß -> O,U,U,U,U,Y,Þ,ß .long 0x61, 0x61, 0x61, 0x61, 0x61, 0x61, 0x61, 0x63 # à,á,â,ã,ä,å,æ,ç -> a,a,a,a,a,a,a,c .long 0x65, 0x65, 0x65, 0x65, 0x69, 0x69, 0x69, 0x69 # è,é,ê,ë,ì,í,î,ï -> e,e,e,e,i,i,i,i .long 0x64, 0x6E, 0x6F, 0x6F, 0x6F, 0x6F, 0x6F, 0xF7 # ð,ñ,ò,ó,ô,õ,ö,÷ -> d,n,o,o,o,o,o,÷ .long 0x6F, 0x75, 0x75, 0x75, 0x75, 0x79, 0xFE, 0x79 # ø,ù,ú,û,ü,ý,þ,ÿ -> o,u,u,u,u,y,þ,y # Vietnamese extended character mappings (0x0100-0x017F range) vietnamese_extended_100: .long 0x41, 0x61, 0x41, 0x61 # Ā,ā,Ă,ă -> A,a,A,a (0x0100-0x0103) .long 0x41, 0x61, 0x43, 0x63 # Ą,ą,Ć,ć -> A,a,C,c (0x0104-0x0107) .long 0x43, 0x63, 0x43, 0x63 # Ĉ,ĉ,Ċ,ċ -> C,c,C,c (0x0108-0x010B) .long 0x43, 0x63, 0x44, 0x64 # Č,č,Ď,ď -> C,c,D,d (0x010C-0x010F) .long 0x44, 0x64, 0x44, 0x64 # Đ,đ,Ē,ē -> D,d,E,e (0x0110-0x0113) # Vietnamese specific character mappings (0x1EA0-0x1EF9 range) .p2align 6 vietnamese_specific_1ea0: # A family (0x1EA0-0x1EB7) .long 0x41, 0x61, 0x41, 0x61, 0x41, 0x61, 0x41, 0x61 # Ạ,ạ,Ả,ả,Ấ,ấ,Ầ,ầ -> A,a,A,a,A,a,A,a .long 0x41, 0x61, 0x41, 0x61, 0x41, 0x61, 0x41, 0x61 # Ẩ,ẩ,Ẫ,ẫ,Ậ,ậ,Ắ,ắ -> A,a,A,a,A,a,A,a .long 0x41, 0x61, 0x41, 0x61, 0x41, 0x61, 0x41, 0x61 # Ằ,ằ,Ẳ,ẳ,Ẵ,ẵ,Ặ,ặ -> A,a,A,a,A,a,A,a # E family (0x1EB8-0x1EC7) .long 0x45, 0x65, 0x45, 0x65, 0x45, 0x65, 0x45, 0x65 # Ẹ,ẹ,Ẻ,ẻ,Ẽ,ẽ,Ế,ế -> E,e,E,e,E,e,E,e .long 0x45, 0x65, 0x45, 0x65, 0x45, 0x65, 0x45, 0x65 # Ề,ề,Ể,ể,Ễ,ễ,Ệ,ệ -> E,e,E,e,E,e,E,e # I family (0x1EC8-0x1ECB) .long 0x49, 0x69, 0x49, 0x69, 0x49, 0x69, 0x49, 0x69 # Ỉ,ỉ,Ị,ị -> I,i,I,i (padded) # O family (0x1ECC-0x1EE3) .long 0x4F, 0x6F, 0x4F, 0x6F, 0x4F, 0x6F, 0x4F, 0x6F # Ọ,ọ,Ỏ,ỏ,Ố,ố,Ồ,ồ -> O,o,O,o,O,o,O,o .long 0x4F, 0x6F, 0x4F, 0x6F, 0x4F, 0x6F, 0x4F, 0x6F # Ổ,ổ,Ỗ,ỗ,Ộ,ộ,Ớ,ớ -> O,o,O,o,O,o,O,o .long 0x4F, 0x6F, 0x4F, 0x6F, 0x4F, 0x6F, 0x4F, 0x6F # Ờ,ờ,Ở,ở,Ỡ,ỡ,Ợ,ợ -> O,o,O,o,O,o,O,o # U family (0x1EE4-0x1EF1) .long 0x55, 0x75, 0x55, 0x75, 0x55, 0x75, 0x55, 0x75 # Ụ,ụ,Ủ,ủ,Ứ,ứ,Ừ,ừ -> U,u,U,u,U,u,U,u .long 0x55, 0x75, 0x55, 0x75, 0x55, 0x75, 0x55, 0x75 # Ử,ử,Ữ,ữ,Ự,ự -> U,u,U,u,U,u (padded) # Y family (0x1EF2-0x1EF9) .long 0x59, 0x79, 0x59, 0x79, 0x59, 0x79, 0x59, 0x79 # Ỳ,ỳ,Ỵ,ỵ,Ỷ,ỷ,Ỹ,ỹ -> Y,y,Y,y,Y,y,Y,y # BMI2 bit manipulation masks (cache-line aligned) .p2align 6 bmi2_vietnamese_mask: .quad 0x1FF80000 # Bits 19-28 for Unicode range detection .quad 0x0000007F # Lower 7 bits for ASCII base extraction .quad 0x1F1F1F1F # Vietnamese character classification mask .quad 0x0F0F0F0F # Family reconstruction mask # AVX-512 constants for vectorized processing .p2align 6 avx512_constants: # Vietnamese character range detection masks .quad 0x00C0, 0x00C0, 0x00C0, 0x00C0, 0x00C0, 0x00C0, 0x00C0, 0x00C0 # Latin start .quad 0x1EF9, 0x1EF9, 0x1EF9, 0x1EF9, 0x1EF9, 0x1EF9, 0x1EF9, 0x1EF9 # Vietnamese end .quad 0x007F, 0x007F, 0x007F, 0x007F, 0x007F, 0x007F, 0x007F, 0x007F # ASCII mask .text # Security violation handlers .security_violation: # Stack canary violation detected mov rdi, 0x1001 # Security violation code mov rsi, rsp # Current stack pointer call security_violation_handler # Terminate execution safely mov rax, -1 ret .bounds_violation: # Memory bounds violation detected mov rdi, 0x1002 # Bounds violation code mov rsi, rax # Violating address call bounds_violation_handler # Return error code mov rax, -2 ret .performance_anomaly: # Performance anomaly detected (potential attack) mov rdi, 0x1003 # Performance anomaly code mov rsi, rax # Anomalous timing value call performance_anomaly_handler # Continue with degraded performance mode jmp .safe_mode_processing .safe_mode_processing: # Fallback to safe, non-optimized processing # This prevents exploitation of timing vulnerabilities mov eax, edi # Simple passthrough ret # x86_64 Safety Error Handlers .operation_cancelled: # Assembly operation was cancelled mov rax, 0 # Return 0 to indicate cancellation ret .iteration_limit_exceeded: # Iteration limit exceeded mov rax, 0 # Return 0 to indicate limit exceeded ret # Reverse engineering detection system reverse_engineering_detector: push rbp mov rbp, rsp # Check for common reverse engineering tools # 1. Debugger detection via timing rdtsc mov r8, rax rdtsc sub rax, r8 cmp rax, 100 # Threshold for debugger presence ja .debugger_detected # 2. Check for breakpoint instructions mov rax, [rip + .check_bp_addr] cmp byte ptr [rax], 0xCC # INT3 breakpoint je .breakpoint_detected # 3. Monitor for unusual memory access patterns mov rax, cr3 # Page directory base (requires ring 0) # Note: This would need kernel module support in real implementation # 4. Check for code modification mov rax, [rip + .code_checksum] # Calculate current checksum and compare pop rbp ret .debugger_detected: mov rdi, 0x2001 # Debugger detection code call security_violation_handler ret .breakpoint_detected: mov rdi, 0x2002 # Breakpoint detection code call security_violation_handler ret .check_bp_addr: .quad reverse_engineering_detector .code_checksum: .quad 0x1234567890ABCDEF # Placeholder checksum # System integrity monitor system_integrity_monitor: push rbp mov rbp, rsp push rbx push r12 # Monitor system state for anomalies # 1. Check CPU feature consistency cpuid mov r12, rax # Store CPU info # 2. Verify memory layout integrity mov rax, [rip + memory_bounds] test rax, rax jz .integrity_violation # 3. Check for unexpected privilege escalation # (This would require OS-specific implementation) # 4. Monitor for unusual interrupt patterns # (Requires kernel-level access) pop r12 pop rbx pop rbp ret .integrity_violation: mov rdi, 0x3001 # Integrity violation code call security_violation_handler ret # Enhanced Vietnamese character cleaning with security monitoring # Ultra-fast Vietnamese character cleaning - Generic x86_64 version # Input: rdi = character (u32) # Output: rax = cleaned character (u32) # Preserves: All registers except rax # Security: Enhanced with monitoring and protection hybrid_clean_char_x86_64: push rbp mov rbp, rsp sub rsp, 32 # Allocate stack space for canaries # Initialize security monitoring CFI_MARK 0 STACK_CANARY_SETUP PERFORMANCE_MONITOR_START SIDECHANNEL_PROTECTION # Input validation and bounds checking cmp edi, 0x110000 # Maximum valid Unicode codepoint jae .invalid_input # Check for suspicious input patterns (potential exploit attempts) mov eax, edi and eax, 0xFFFF0000 # Check high bits cmp eax, 0xDEAD0000 # Common exploit pattern je .suspicious_input cmp eax, 0xBEEF0000 # Another common pattern je .suspicious_input # Fast path for ASCII characters (most common case) cmp edi, 128 jb .ascii_passthrough_secure # Check for Latin Extended range (0x00C0-0x017F) mov eax, edi cmp eax, 0x00C0 jb .not_vietnamese_secure cmp eax, 0x017F jbe .latin_extended_lookup_secure # Check for Vietnamese extended range (0x0100-0x017F) cmp eax, 0x0100 jb .not_vietnamese_secure cmp eax, 0x017F jbe .extended_100_lookup_secure # Check for Vietnamese specific range (0x1EA0-0x1EF9) cmp eax, 0x1EA0 jb .not_vietnamese_secure cmp eax, 0x1EF9 jbe .vietnamese_specific_lookup_secure # Not a Vietnamese character - return original .not_vietnamese_secure: mov eax, edi jmp .function_exit_secure .invalid_input: # Invalid Unicode codepoint detected mov rdi, 0x4001 # Invalid input code mov rsi, rax # Invalid value call security_violation_handler mov eax, 0xFFFD # Unicode replacement character jmp .function_exit_secure .suspicious_input: # Suspicious input pattern detected mov rdi, 0x4002 # Suspicious input code mov rsi, rax # Suspicious value call security_violation_handler mov eax, edi # Return original (safe fallback) jmp .function_exit_secure .ascii_passthrough_secure: mov eax, edi jmp .function_exit_secure .latin_extended_lookup_secure: # Use lookup table for Latin Extended range (0x00C0-0x00FF) with bounds checking lea rcx, [rip + vietnamese_latin_extended] # Load table address BOUNDS_CHECK_POINTER rcx, 8, 0 # Verify table pointer sub eax, 0x00C0 # Normalize to table index (0x00C0 -> 0) cmp eax, (0x00FF - 0x00C0) # Additional bounds check ja .bounds_violation # Out of bounds mov eax, [rcx + rax*4] # Load mapped character from table jmp .function_exit_secure .extended_100_lookup_secure: # Handle 0x0100-0x017F range with specific mappings and validation cmp eax, 0x0102 # Ă je .map_to_A_secure cmp eax, 0x0103 # ă je .map_to_a_secure cmp eax, 0x0111 # đ je .map_to_d_secure # For other characters in this range, return original mov eax, edi jmp .function_exit_secure .vietnamese_specific_lookup_secure: # Use lookup table for Vietnamese specific range (0x1EA0-0x1EF9) with security lea rcx, [rip + vietnamese_specific_1ea0] # Load table address BOUNDS_CHECK_POINTER rcx, 8, 0 # Verify table pointer sub eax, 0x1EA0 # Normalize to table index cmp eax, (0x1EF9 - 0x1EA0) # Bounds check ja .bounds_violation # Out of bounds mov eax, [rcx + rax*4] # Load mapped character from table jmp .function_exit_secure .map_to_A_secure: mov eax, 0x0041 # 'A' jmp .function_exit_secure .map_to_a_secure: mov eax, 0x0061 # 'a' jmp .function_exit_secure .map_to_d_secure: mov eax, 0x0064 # 'd' jmp .function_exit_secure .function_exit_secure: # Secure function exit with monitoring PERFORMANCE_MONITOR_END 0 STACK_CANARY_CHECK CFI_MARK 24 add rsp, 32 pop rbp ret # Character family mapping targets (for specific cases) .map_to_a: mov eax, 0x0061 # 'a' ret .map_to_d: mov eax, 0x0064 # 'd' ret # BMI2-optimized Vietnamese character cleaning with enhanced security # Input: rdi = character (u32) # Output: rax = cleaned character (u32) # Requires: BMI2 instruction set # Security: Advanced monitoring and protection hybrid_clean_char_bmi2: push rbp mov rbp, rsp sub rsp, 32 # Stack space for security # Initialize security monitoring for BMI2 path CFI_MARK 0 STACK_CANARY_SETUP PERFORMANCE_MONITOR_START # Advanced input validation for BMI2 path cmp edi, 0x110000 # Maximum valid Unicode jae .bmi2_invalid_input # Check for BMI2 instruction availability (runtime verification) # This prevents exploitation if BMI2 is not actually available mov eax, 7 mov ecx, 0 cpuid bt ebx, 8 # BMI2 bit jnc .bmi2_not_available # Fast path for ASCII with timing attack protection cmp edi, 128 jb .bmi2_ascii_passthrough_secure # Use BMI2 for ultra-fast range detection with security monitoring mov eax, edi # BMI2 PEXT for efficient range detection with bounds checking # Extract bits that indicate Vietnamese character ranges mov edx, 0x1FFF0000 # Mask for Unicode range bits pext ecx, eax, edx # Extract range classification bits # Validate extracted bits to prevent manipulation cmp ecx, 0x1FFF ja .bmi2_extraction_anomaly # Branch-free range classification using BMI2 with security # Latin Extended: 0x00C0-0x017F mov edx, eax sub edx, 0x00C0 cmp edx, (0x017F - 0x00C0) jbe .bmi2_latin_extended_secure # Vietnamese Extended: 0x0100-0x017F mov edx, eax sub edx, 0x0100 cmp edx, (0x017F - 0x0100) jbe .bmi2_extended_100_secure # Vietnamese Specific: 0x1EA0-0x1EF9 mov edx, eax sub edx, 0x1EA0 cmp edx, (0x1EF9 - 0x1EA0) jbe .bmi2_vietnamese_specific_secure # Not Vietnamese - return original mov eax, edi jmp .bmi2_function_exit_secure .bmi2_invalid_input: mov rdi, 0x5001 # BMI2 invalid input code call security_violation_handler mov eax, 0xFFFD # Replacement character jmp .bmi2_function_exit_secure .bmi2_not_available: # BMI2 not available - fallback to secure generic version mov rdi, 0x5002 # BMI2 unavailable code call performance_anomaly_handler # Fallback to generic implementation call hybrid_clean_char_x86_64 jmp .bmi2_function_exit_secure .bmi2_extraction_anomaly: # Bit extraction anomaly detected mov rdi, 0x5003 # Extraction anomaly code call security_violation_handler mov eax, edi # Safe fallback jmp .bmi2_function_exit_secure .bmi2_ascii_passthrough_secure: mov eax, edi jmp .bmi2_function_exit_secure .bmi2_latin_extended_secure: # Use BMI2 PDEP for sophisticated character reconstruction with security # Extract base character family using bit manipulation mov edx, 0x0000001F # Mask for character family bits pext ecx, eax, edx # Extract family classification # Validate extracted family classification cmp ecx, 0x1F ja .bmi2_extraction_anomaly # Use lookup table with BMI2-optimized indexing and bounds checking lea rdx, [rip + vietnamese_latin_extended] BOUNDS_CHECK_POINTER rdx, 8, 0 sub eax, 0x00C0 # Normalize to table index cmp eax, (0x00FF - 0x00C0) # Additional bounds check ja .bounds_violation mov eax, [rdx + rax*4] # Load mapped character jmp .bmi2_function_exit_secure .bmi2_extended_100_secure: # Handle 0x0100-0x017F with BMI2 optimization and security cmp eax, 0x0102 # Ă je .bmi2_map_to_A cmp eax, 0x0103 # ă je .bmi2_map_to_a cmp eax, 0x0111 # đ je .bmi2_map_to_d # If no match, return original mov eax, edi jmp .bmi2_function_exit_secure .bmi2_vietnamese_specific_secure: # Use BMI2 for Vietnamese specific range with advanced security lea rdx, [rip + vietnamese_specific_1ea0] BOUNDS_CHECK_POINTER rdx, 8, 0 sub eax, 0x1EA0 # Normalize to table index cmp eax, (0x1EF9 - 0x1EA0) # Bounds check ja .bounds_violation mov eax, [rdx + rax*4] # Load mapped character jmp .bmi2_function_exit_secure .bmi2_map_to_A: mov eax, 0x0041 # 'A' jmp .bmi2_function_exit_secure .bmi2_map_to_a: mov eax, 0x0061 # 'a' jmp .bmi2_function_exit_secure .bmi2_map_to_d: mov eax, 0x0064 # 'd' jmp .bmi2_function_exit_secure .bmi2_function_exit_secure: # Secure BMI2 function exit PERFORMANCE_MONITOR_END 0 STACK_CANARY_CHECK CFI_MARK 24 add rsp, 32 pop rbp ret # Constants for BMI2 optimization .const_a: .long 0x0061 .const_d: .long 0x0064 # AVX-512 optimized single character processing # Input: rdi = character (u32) # Output: rax = cleaned character (u32) # Requires: AVX-512F instruction set hybrid_clean_char_avx512: # For single character, use optimized scalar path # AVX-512 is most beneficial for bulk processing jmp hybrid_clean_char_bmi2 # AVX-512 bulk character processing with vectorized Vietnamese mapping # Input: rdi = input array pointer, rsi = output array pointer, rdx = length # Output: rax = number of characters processed # Requires: AVX-512F instruction set hybrid_clean_chars_bulk_avx512: push rbp mov rbp, rsp push rbx push r12 push r13 push r14 # Save parameters mov r12, rdi # input pointer mov r13, rsi # output pointer mov rbx, rdx # length mov r14, 0 # processed count # Process 16 characters at a time (512 bits / 32 bits per char) mov rax, rbx shr rax, 4 # Number of 16-character chunks test rax, rax jz .avx512_remainder # Load AVX-512 constants for Vietnamese detection lea rcx, [rip + avx512_constants] vmovdqu32 zmm4, [rcx] # Latin start (0x00C0) vmovdqu32 zmm5, [rcx + 64] # Vietnamese end (0x1EF9) vmovdqu32 zmm6, [rcx + 128] # ASCII mask (0x007F) # Constants for range detection vpbroadcastd zmm7, [rip + .avx512_latin_start] # 0x00C0 vpbroadcastd zmm8, [rip + .avx512_latin_end] # 0x017F vpbroadcastd zmm9, [rip + .avx512_viet_start] # 0x1EA0 vpbroadcastd zmm10, [rip + .avx512_viet_end] # 0x1EF9 .avx512_loop: # Load 16 characters vmovdqu32 zmm0, [r12] # Create masks for different character ranges vpcmpd k1, zmm0, zmm7, 5 # >= 0x00C0 (Latin start) vpcmpd k2, zmm0, zmm8, 2 # <= 0x017F (Latin end) vpcmpd k3, zmm0, zmm9, 5 # >= 0x1EA0 (Vietnamese start) vpcmpd k4, zmm0, zmm10, 2 # <= 0x1EF9 (Vietnamese end) # Combine masks for Vietnamese character detection kandw k5, k1, k2 # Latin Extended range kandw k6, k3, k4 # Vietnamese specific range korw k7, k5, k6 # All Vietnamese characters # For characters in Vietnamese ranges, apply mapping # This is a simplified vectorized mapping - full implementation would # use gather instructions to access lookup tables # ASCII passthrough for non-Vietnamese characters vmovdqu32 zmm1{k7}{z}, zmm0 # Zero non-Vietnamese chars # Apply simplified Vietnamese mapping (demonstration) # In full implementation, this would use vpgatherdd for table lookup vmovdqu32 zmm2, zmm0 # Copy original # Store results (Vietnamese chars mapped, others unchanged) vpblendmd zmm3{k7}, zmm2, zmm1 vmovdqu32 [r13], zmm3 # Advance pointers add r12, 64 # 16 characters * 4 bytes add r13, 64 add r14, 16 # Processed 16 characters dec rax jnz .avx512_loop .avx512_remainder: # Process remaining characters with scalar method mov rax, rbx and rax, 15 # Remaining characters (length % 16) test rax, rax jz .avx512_done .avx512_remainder_loop: mov edi, [r12] call hybrid_clean_char_bmi2 mov [r13], eax add r12, 4 add r13, 4 inc r14 dec rax jnz .avx512_remainder_loop .avx512_done: mov rax, r14 # Return total processed count pop r14 pop r13 pop r12 pop rbx pop rbp ret # AVX-512 constants .avx512_latin_start: .long 0x00C0 .avx512_latin_end: .long 0x017F .avx512_viet_start: .long 0x1EA0 .avx512_viet_end: .long 0x1EF9 # BMI2 bulk character processing # Input: rdi = input array pointer, rsi = output array pointer, rdx = length # Output: rax = number of characters processed # Requires: BMI2 instruction set hybrid_clean_chars_bulk_bmi2: push rbp mov rbp, rsp push rbx push r12 push r13 # Save parameters mov r12, rdi # input pointer mov r13, rsi # output pointer mov rbx, rdx # length # Process characters one by one with BMI2 optimization mov rax, rbx test rax, rax jz .bmi2_bulk_done .bmi2_bulk_loop: mov edi, [r12] call hybrid_clean_char_bmi2 mov [r13], eax add r12, 4 add r13, 4 dec rbx jnz .bmi2_bulk_loop .bmi2_bulk_done: mov rax, rdx # Return total processed count pop r13 pop r12 pop rbx pop rbp ret # x86_64 Safety-Aware Functions # Safety-aware single character processing # Input: rdi = character (u32), rsi = control pointer # Output: rax = cleaned character (u32) hybrid_clean_char_x86_64_safe: push rbp mov rbp, rsp push rbx push r12 # Save parameters mov ebx, edi # character mov r12, rsi # control pointer # Check cancellation flag movzx eax, byte ptr [r12] # Load cancel flag test eax, eax jnz .char_safe_cancelled # Process character normally mov edi, ebx call hybrid_clean_char_x86_64 jmp .char_safe_exit .char_safe_cancelled: # Return original character if cancelled mov eax, ebx .char_safe_exit: pop r12 pop rbx pop rbp ret # Safety-aware bulk character processing # Input: rdi = input array pointer, rsi = output array pointer, rdx = length, rcx = control pointer # Output: rax = number of characters processed hybrid_clean_chars_bulk_x86_64_safe: push rbp mov rbp, rsp push rbx push r12 push r13 push r14 push r15 # Save parameters mov r12, rdi # input pointer mov r13, rsi # output pointer mov r14, rdx # length mov r15, rcx # control pointer # Bounds checking BOUNDS_CHECK_SAFE r12, r14, 100000000 # Max 100M characters BOUNDS_CHECK_SAFE r13, r14, 100000000 # Initialize counters mov rbx, 0 # processed count mov r8, 0 # iteration counter .bulk_safe_loop: # Check if we're done cmp rbx, r14 jae .bulk_safe_done # Safety checks every 1024 iterations SAFETY_CHECK r15, r9, r8 ITERATION_GUARD r15, r8 # Load and process character mov edi, [r12 + rbx*4] # Load character call hybrid_clean_char_x86_64 mov [r13 + rbx*4], eax # Store result # Increment counters inc rbx inc r8 jmp .bulk_safe_loop .bulk_safe_done: mov rax, rbx # Return processed count .bulk_safe_exit: pop r15 pop r14 pop r13 pop r12 pop rbx pop rbp ret # Safety-aware BMI2 bulk processing # Input: rdi = input array pointer, rsi = output array pointer, rdx = length, rcx = control pointer # Output: rax = number of characters processed hybrid_clean_chars_bulk_bmi2_safe: # Delegate to the safe bulk function for now # TODO: Add BMI2-specific safety optimizations jmp hybrid_clean_chars_bulk_x86_64_safe # Safety-aware AVX-512 bulk processing # Input: rdi = input array pointer, rsi = output array pointer, rdx = length, rcx = control pointer # Output: rax = number of characters processed hybrid_clean_chars_bulk_avx512_safe: # Delegate to the safe bulk function for now # TODO: Add AVX-512-specific safety optimizations jmp hybrid_clean_chars_bulk_x86_64_safe # Function size information removed for macOS compatibility # .size directives are not supported on macOS assembler # Compatibility functions for cross-platform assembly support # Compatibility alias for hybrid_clean_chars_bulk_safe # Input: rdi = input array pointer, rsi = output array pointer, rdx = length, rcx = control pointer # Output: rax = number of characters processed hybrid_clean_chars_bulk_safe: # Delegate to the x86_64 safe implementation jmp hybrid_clean_chars_bulk_x86_64_safe # Compatibility function for Apple Silicon optimized character cleaning # Input: rdi = character (u32) # Output: rax = cleaned character (u32) # Note: On x86_64, this delegates to the generic x86_64 implementation apple_hybrid_clean_char_optimized: # Delegate to the x86_64 implementation jmp hybrid_clean_char_x86_64 # Compatibility function for NEON bulk processing # Input: rdi = input array pointer, rsi = output array pointer, rdx = length # Output: rax = number of characters processed # Note: On x86_64, this delegates to the BMI2 implementation if available hybrid_clean_chars_bulk_neon: # Check if BMI2 is available for best performance push rbp mov rbp, rsp # Check BMI2 availability mov eax, 7 mov ecx, 0 cpuid bt ebx, 8 # BMI2 bit jc .use_bmi2_bulk # Fall back to generic x86_64 safe implementation pop rbp jmp hybrid_clean_chars_bulk_x86_64_safe .use_bmi2_bulk: pop rbp jmp hybrid_clean_chars_bulk_bmi2 # x86_64 Security Handler Function Implementations # These functions provide basic security violation handling for x86_64 platforms # Security violation handler # Input: rdi = violation code, rsi = context (address/value) # Output: none (logs violation and returns) security_violation_handler: push rbp mov rbp, rsp push rbx push r12 # Save violation parameters mov rbx, rdi # violation code mov r12, rsi # context # Log security violation (basic implementation) # In a full implementation, this would call into Rust logging # For now, just return to maintain compatibility # Restore registers and return pop r12 pop rbx pop rbp ret # Bounds violation handler # Input: rdi = violation code, rsi = violating address # Output: none (logs violation and returns) bounds_violation_handler: push rbp mov rbp, rsp push rbx push r12 # Save violation parameters mov rbx, rdi # violation code mov r12, rsi # violating address # Log bounds violation (basic implementation) # In a full implementation, this would call into Rust logging # For now, just return to maintain compatibility # Restore registers and return pop r12 pop rbx pop rbp ret # Performance anomaly handler # Input: rdi = anomaly code, rsi = timing value # Output: none (logs anomaly and returns) performance_anomaly_handler: push rbp mov rbp, rsp push rbx push r12 # Save anomaly parameters mov rbx, rdi # anomaly code mov r12, rsi # timing value # Log performance anomaly (basic implementation) # In a full implementation, this would call into Rust logging # For now, just return to maintain compatibility # Restore registers and return pop r12 pop rbx pop rbp ret
naoNao89/vi-engine
14,897
src/asm/aarch64_kernels.s
// ARM64 (AArch64) Assembly Kernels for Vietnamese Character Processing // Optimized for Apple Silicon M-series processors // // This file contains hand-optimized ARM64 assembly implementations // for Vietnamese character cleaning operations, leveraging NEON SIMD // instructions and ARM64-specific optimizations. .section __TEXT,__text,regular,pure_instructions .p2align 2 // Vietnamese character mapping constants for ARM64 .section __DATA,__data .p2align 3 // Complete Vietnamese character lookup table (cache-line aligned) // Maps Unicode codepoints to base characters vietnamese_lookup_table_arm64: // ASCII characters (0-127) - pass through unchanged .long 0x00, 0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07 .long 0x08, 0x09, 0x0A, 0x0B, 0x0C, 0x0D, 0x0E, 0x0F .long 0x10, 0x11, 0x12, 0x13, 0x14, 0x15, 0x16, 0x17 .long 0x18, 0x19, 0x1A, 0x1B, 0x1C, 0x1D, 0x1E, 0x1F .long 0x20, 0x21, 0x22, 0x23, 0x24, 0x25, 0x26, 0x27 .long 0x28, 0x29, 0x2A, 0x2B, 0x2C, 0x2D, 0x2E, 0x2F .long 0x30, 0x31, 0x32, 0x33, 0x34, 0x35, 0x36, 0x37 .long 0x38, 0x39, 0x3A, 0x3B, 0x3C, 0x3D, 0x3E, 0x3F .long 0x40, 0x41, 0x42, 0x43, 0x44, 0x45, 0x46, 0x47 .long 0x48, 0x49, 0x4A, 0x4B, 0x4C, 0x4D, 0x4E, 0x4F .long 0x50, 0x51, 0x52, 0x53, 0x54, 0x55, 0x56, 0x57 .long 0x58, 0x59, 0x5A, 0x5B, 0x5C, 0x5D, 0x5E, 0x5F .long 0x60, 0x61, 0x62, 0x63, 0x64, 0x65, 0x66, 0x67 .long 0x68, 0x69, 0x6A, 0x6B, 0x6C, 0x6D, 0x6E, 0x6F .long 0x70, 0x71, 0x72, 0x73, 0x74, 0x75, 0x76, 0x77 .long 0x78, 0x79, 0x7A, 0x7B, 0x7C, 0x7D, 0x7E, 0x7F // Vietnamese character mapping table for Latin Extended range (0xC0-0xFF) // This table maps characters starting from 0xC0, so index 0 = 0xC0 // Only Vietnamese characters are mapped, others pass through unchanged vietnamese_latin_extended_arm64: // 0xC0-0xC7: À,Á,Â,Ã,Ä,Å,Æ,Ç .long 0x41, 0x41, 0x41, 0x41, 0xC4, 0xC5, 0xC6, 0xC7 // À,Á,Â,Ã -> A; Ä,Å,Æ,Ç unchanged // 0xC8-0xCF: È,É,Ê,Ë,Ì,Í,Î,Ï .long 0x45, 0x45, 0x45, 0xCB, 0x49, 0x49, 0xCE, 0xCF // È,É,Ê -> E; Ë unchanged; Ì,Í -> I; Î,Ï unchanged // 0xD0-0xD7: Ð,Ñ,Ò,Ó,Ô,Õ,Ö,× .long 0xD0, 0xD1, 0x4F, 0x4F, 0x4F, 0x4F, 0xD6, 0xD7 // Ð,Ñ unchanged; Ò,Ó,Ô,Õ -> O; Ö,× unchanged // 0xD8-0xDF: Ø,Ù,Ú,Û,Ü,Ý,Þ,ß .long 0xD8, 0x55, 0x55, 0x55, 0xDC, 0x59, 0xDE, 0xDF // Ø unchanged; Ù,Ú,Û -> U; Ü unchanged; Ý -> Y; Þ,ß unchanged // 0xE0-0xE7: à,á,â,ã,ä,å,æ,ç .long 0x61, 0x61, 0x61, 0x61, 0xE4, 0xE5, 0xE6, 0xE7 // à,á,â,ã -> a; ä,å,æ,ç unchanged // 0xE8-0xEF: è,é,ê,ë,ì,í,î,ï .long 0x65, 0x65, 0x65, 0xEB, 0x69, 0x69, 0xEE, 0xEF // è,é,ê -> e; ë unchanged; ì,í -> i; î,ï unchanged // 0xF0-0xF7: ð,ñ,ò,ó,ô,õ,ö,÷ .long 0xF0, 0xF1, 0x6F, 0x6F, 0x6F, 0x6F, 0xF6, 0xF7 // ð,ñ unchanged; ò,ó,ô,õ -> o; ö,÷ unchanged // 0xF8-0xFF: ø,ù,ú,û,ü,ý,þ,ÿ .long 0xF8, 0x75, 0x75, 0x75, 0xFC, 0x79, 0xFE, 0x79 // ø unchanged; ù,ú,û -> u; ü unchanged; ý -> y; þ unchanged; ÿ -> y // Vietnamese specific character mappings (0x1EA0-0x1EF9 range) // Each entry corresponds exactly to its Unicode codepoint .p2align 3 vietnamese_specific_1ea0_arm64: // 0x1EA0-0x1EAF: A family .long 0x41, 0x61, 0x41, 0x61, 0x41, 0x61, 0x41, 0x61 // 1EA0-1EA7: Ạ,ạ,Ả,ả,Ấ,ấ,Ầ,ầ -> A,a,A,a,A,a,A,a .long 0x41, 0x61, 0x41, 0x61, 0x41, 0x61, 0x41, 0x61 // 1EA8-1EAF: Ẩ,ẩ,Ẫ,ẫ,Ậ,ậ,Ắ,ắ -> A,a,A,a,A,a,A,a // 0x1EB0-0x1EBF: A family continued .long 0x41, 0x61, 0x41, 0x61, 0x41, 0x61, 0x41, 0x61 // 1EB0-1EB7: Ằ,ằ,Ẳ,ẳ,Ẵ,ẵ,Ặ,ặ -> A,a,A,a,A,a,A,a .long 0x45, 0x65, 0x45, 0x65, 0x45, 0x65, 0x45, 0x65 // 1EB8-1EBF: Ẹ,ẹ,Ẻ,ẻ,Ẽ,ẽ,Ế,ế -> E,e,E,e,E,e,E,e // 0x1EC0-0x1ECF: E family continued + I family start .long 0x45, 0x65, 0x45, 0x65, 0x45, 0x65, 0x45, 0x65 // 1EC0-1EC7: Ề,ề,Ể,ể,Ễ,ễ,Ệ,ệ -> E,e,E,e,E,e,E,e .long 0x49, 0x69, 0x49, 0x69, 0x4F, 0x6F, 0x4F, 0x6F // 1EC8-1ECF: Ỉ,ỉ,Ị,ị,Ọ,ọ,Ỏ,ỏ -> I,i,I,i,O,o,O,o // 0x1ED0-0x1EDF: O family .long 0x4F, 0x6F, 0x4F, 0x6F, 0x4F, 0x6F, 0x4F, 0x6F // 1ED0-1ED7: Ố,ố,Ồ,ồ,Ổ,ổ,Ỗ,ỗ -> O,o,O,o,O,o,O,o .long 0x4F, 0x6F, 0x4F, 0x6F, 0x4F, 0x6F, 0x4F, 0x6F // 1ED8-1EDF: Ộ,ộ,Ớ,ớ,Ờ,ờ,Ở,ở -> O,o,O,o,O,o,O,o // 0x1EE0-0x1EEF: O family continued + U family start .long 0x4F, 0x6F, 0x4F, 0x6F, 0x55, 0x75, 0x55, 0x75 // 1EE0-1EE7: Ỡ,ỡ,Ợ,ợ,Ụ,ụ,Ủ,ủ -> O,o,O,o,U,u,U,u .long 0x55, 0x75, 0x55, 0x75, 0x55, 0x75, 0x55, 0x75 // 1EE8-1EEF: Ứ,ứ,Ừ,ừ,Ử,ử,Ữ,ữ -> U,u,U,u,U,u,U,u // 0x1EF0-0x1EF9: U family continued + Y family .long 0x55, 0x75, 0x59, 0x79, 0x59, 0x79, 0x59, 0x79 // 1EF0-1EF7: Ự,ự,Ỳ,ỳ,Ỵ,ỵ,Ỷ,ỷ -> U,u,Y,y,Y,y,Y,y .long 0x59, 0x79 // 1EF8-1EF9: Ỹ,ỹ -> Y,y .section __TEXT,__text,regular,pure_instructions // Ultra-fast Vietnamese character cleaning - Generic ARM64 version // Input: w0 = character (u32) // Output: w0 = cleaned character (u32) // Preserves: All registers except w0 .global _hybrid_clean_char_aarch64 .p2align 2 _hybrid_clean_char_aarch64: // Fast path for ASCII characters (most common case) cmp w0, #128 b.lo Lascii_passthrough_arm64 // Check for Latin Extended range (0x00C0-0x00FF) mov w1, w0 mov w2, #0x00C0 cmp w1, w2 b.lo Lnot_vietnamese_arm64 mov w2, #0x00FF cmp w1, w2 b.ls Llatin_extended_lookup_arm64 // Check for Vietnamese extended range (0x0100-0x01FF) - expand range mov w2, #0x0100 cmp w1, w2 b.lo Lnot_vietnamese_arm64 mov w2, #0x01FF cmp w1, w2 b.ls Lextended_100_lookup_arm64 // Check for Vietnamese specific range (0x1EA0-0x1EF9) // Load constants using proper ARM64 method mov w2, #0x1E00 add w2, w2, #0xA0 // w2 = 0x1EA0 cmp w1, w2 b.lo Lnot_vietnamese_arm64 mov w2, #0x1E00 add w2, w2, #0xF9 // w2 = 0x1EF9 cmp w1, w2 b.ls Lvietnamese_specific_lookup_arm64 // Not a Vietnamese character - return original Lnot_vietnamese_arm64: ret Lascii_passthrough_arm64: ret Llatin_extended_lookup_arm64: // Use lookup table for Latin Extended range (0x00C0-0x00FF) adrp x2, vietnamese_latin_extended_arm64@PAGE add x2, x2, vietnamese_latin_extended_arm64@PAGEOFF // The table starts at 0xC0, so subtract 0xC0 to get table index sub w1, w1, #0x00C0 // Normalize to table index (0x00C0 -> 0) ldr w0, [x2, x1, lsl #2] // Load mapped character from table ret Lextended_100_lookup_arm64: // Handle specific Vietnamese characters in extended range // Check for Ă (0x0102) mov w2, #0x0102 cmp w1, w2 b.eq Lmap_to_a_uppercase_arm64 // Check for ă (0x0103) mov w2, #0x0103 cmp w1, w2 b.eq Lmap_to_a_arm64 // Check for Đ (0x0110) mov w2, #0x0110 cmp w1, w2 b.eq Lmap_to_d_uppercase_arm64 // Check for đ (0x0111) mov w2, #0x0111 cmp w1, w2 b.eq Lmap_to_d_arm64 // Check for Ĩ (0x0128) mov w2, #0x0128 cmp w1, w2 b.eq Lmap_to_i_uppercase_arm64 // Check for ĩ (0x0129) mov w2, #0x0129 cmp w1, w2 b.eq Lmap_to_i_arm64 // Check for Ũ (0x0168) mov w2, #0x0168 cmp w1, w2 b.eq Lmap_to_u_uppercase_arm64 // Check for ũ (0x0169) mov w2, #0x0169 cmp w1, w2 b.eq Lmap_to_u_arm64 // Check for Ơ (0x01A0) mov w2, #0x01A0 cmp w1, w2 b.eq Lmap_to_o_uppercase_arm64 // Check for ơ (0x01A1) mov w2, #0x01A1 cmp w1, w2 b.eq Lmap_to_o_arm64 // Check for Ư (0x01AF) mov w2, #0x01AF cmp w1, w2 b.eq Lmap_to_u_uppercase_arm64 // Check for ư (0x01B0) mov w2, #0x01B0 cmp w1, w2 b.eq Lmap_to_u_arm64 // Return original character if no match mov w0, w1 ret Lvietnamese_specific_lookup_arm64: // Use lookup table for Vietnamese specific range (0x1EA0-0x1EF9) adrp x2, vietnamese_specific_1ea0_arm64@PAGE add x2, x2, vietnamese_specific_1ea0_arm64@PAGEOFF // Load 0x1EA0 into register using add method mov w3, #0x1E00 add w3, w3, #0xA0 // w3 = 0x1EA0 sub w1, w1, w3 // Normalize to table index mov w4, #0x1E00 add w4, w4, #0xF9 // w4 = 0x1EF9 sub w4, w4, w3 // Calculate max index (0x1EF9 - 0x1EA0) cmp w1, w4 // Bounds check b.hi Lnot_vietnamese_arm64 // Out of bounds ldr w0, [x2, x1, lsl #2] // Load mapped character from table ret // Character family mapping targets (for specific cases) Lmap_to_a_arm64: mov w0, #0x0061 // 'a' ret Lmap_to_a_uppercase_arm64: mov w0, #0x0041 // 'A' ret Lmap_to_d_arm64: mov w0, #0x0064 // 'd' ret Lmap_to_d_uppercase_arm64: mov w0, #0x0044 // 'D' ret Lmap_to_i_arm64: mov w0, #0x0069 // 'i' ret Lmap_to_i_uppercase_arm64: mov w0, #0x0049 // 'I' ret Lmap_to_o_arm64: mov w0, #0x006F // 'o' ret Lmap_to_o_uppercase_arm64: mov w0, #0x004F // 'O' ret Lmap_to_u_arm64: mov w0, #0x0075 // 'u' ret Lmap_to_u_uppercase_arm64: mov w0, #0x0055 // 'U' ret // NEON-optimized Vietnamese character cleaning // Input: w0 = character (u32) // Output: w0 = cleaned character (u32) // Requires: NEON instruction set .global _hybrid_clean_char_neon .p2align 2 _hybrid_clean_char_neon: // Fast path for ASCII cmp w0, #128 b.lo Lneon_ascii_passthrough // Use NEON for advanced character processing // Load character into NEON register dup v0.4s, w0 // Create comparison vectors for Vietnamese ranges mov w1, #0x00C0 dup v1.4s, w1 // Latin start mov w1, #0x017F dup v2.4s, w1 // Latin end mov w1, #0x1E00 add w1, w1, #0xA0 // w1 = 0x1EA0 dup v3.4s, w1 // Vietnamese start mov w1, #0x1E00 add w1, w1, #0xF9 // w1 = 0x1EF9 dup v4.4s, w1 // Vietnamese end // For any non-ASCII character, fall back to the full aarch64 implementation // This ensures all Vietnamese characters (including extended range 0x0100-0x01FF) are handled b _hybrid_clean_char_aarch64 Lneon_ascii_passthrough: ret Lneon_not_vietnamese: ret // NEON bulk character processing // Input: x0 = input array pointer, x1 = output array pointer, x2 = length // Output: x0 = number of characters processed // Requires: NEON instruction set .global _hybrid_clean_chars_bulk_neon .p2align 2 _hybrid_clean_chars_bulk_neon: // Simple implementation without function calls to avoid stack issues stp x29, x30, [sp, #-16]! mov x29, sp // Save parameters in callee-saved registers mov x9, x0 // input pointer mov x10, x1 // output pointer mov x11, x2 // length mov x12, #0 // processed count // Process characters one by one with simple passthrough mov x3, x11 // Use x3 as remaining count Lneon_simple_loop: cbz x3, Lneon_done ldr w0, [x9], #4 // Load input character // Save registers that might be modified by the function call stp x9, x10, [sp, #-16]! stp x11, x12, [sp, #-16]! str x3, [sp, #-16]! bl _hybrid_clean_char_aarch64 // Restore registers ldr x3, [sp], #16 ldp x11, x12, [sp], #16 ldp x9, x10, [sp], #16 str w0, [x10], #4 // Store processed character add x12, x12, #1 // Increment processed count subs x3, x3, #1 // Decrement remaining count b.ne Lneon_simple_loop Lneon_done: mov x0, x12 // Return total processed count ldp x29, x30, [sp], #16 ret // Safety-aware bulk character processing with control structure // Input: x0 = input array pointer, x1 = output array pointer, x2 = length, x3 = control pointer // Output: x0 = number of characters processed .global _hybrid_clean_chars_bulk_safe .p2align 2 _hybrid_clean_chars_bulk_safe: stp x29, x30, [sp, #-16]! mov x29, sp // Save parameters mov x9, x0 // input pointer mov x10, x1 // output pointer mov x11, x2 // length mov x12, x3 // control pointer mov x13, #0 // processed count // Process characters one by one with safety checks mov x3, x11 // Use x3 as remaining count Lsafe_loop: cbz x3, Lsafe_done // Check cancellation flag every 64 iterations for minimal overhead and x14, x13, #0x3F cbnz x14, Lsafe_skip_check // Load cancel flag (first byte of AssemblyControl) ldrb w14, [x12] cbnz w14, Lsafe_cancelled Lsafe_skip_check: ldr w0, [x9], #4 // Load input character // Save registers that might be modified by the function call stp x9, x10, [sp, #-16]! stp x11, x12, [sp, #-16]! stp x13, x3, [sp, #-16]! bl _hybrid_clean_char_aarch64 // Restore registers ldp x13, x3, [sp], #16 ldp x11, x12, [sp], #16 ldp x9, x10, [sp], #16 str w0, [x10], #4 // Store processed character add x13, x13, #1 // Increment processed count subs x3, x3, #1 // Decrement remaining count b.ne Lsafe_loop Lsafe_done: mov x0, x13 // Return total processed count ldp x29, x30, [sp], #16 ret Lsafe_cancelled: mov x0, #0 // Return 0 to indicate cancellation ldp x29, x30, [sp], #16 ret // Export symbols for C linkage .global _hybrid_clean_char_aarch64 .global _hybrid_clean_char_neon .global _hybrid_clean_chars_bulk_neon .global _hybrid_clean_chars_bulk_safe // Compatibility aliases for cross-platform function calls // These allow x86_64 function names to work on ARM64 .global _hybrid_clean_char_x86_64 .global _hybrid_clean_chars_bulk_avx512 .global _hybrid_clean_chars_bulk_bmi2 // Double underscore versions for Rust name mangling compatibility .global __apple_hybrid_clean_char_optimized .global __hybrid_clean_char_aarch64 .global __hybrid_clean_char_x86_64 .global __hybrid_clean_chars_bulk_neon .global __hybrid_clean_chars_bulk_safe // Compatibility function implementations _hybrid_clean_char_x86_64: // Delegate to the ARM64 implementation b _hybrid_clean_char_aarch64 _hybrid_clean_chars_bulk_avx512: // Delegate to the NEON implementation b _hybrid_clean_chars_bulk_neon _hybrid_clean_chars_bulk_bmi2: // Delegate to the NEON implementation b _hybrid_clean_chars_bulk_neon // Double underscore compatibility aliases __apple_hybrid_clean_char_optimized: // Delegate to the Apple Silicon implementation b _apple_hybrid_clean_char_optimized __hybrid_clean_char_aarch64: // Delegate to the ARM64 implementation b _hybrid_clean_char_aarch64 __hybrid_clean_char_x86_64: // Delegate to the ARM64 implementation b _hybrid_clean_char_aarch64 __hybrid_clean_chars_bulk_neon: // Delegate to the NEON implementation b _hybrid_clean_chars_bulk_neon __hybrid_clean_chars_bulk_safe: // Delegate to the safe implementation b _hybrid_clean_chars_bulk_safe
naoNao89/vi-engine
12,543
src/asm/optimized_aarch64.s
// Optimized ARM64 Assembly Kernels for Vietnamese Character Processing // True NEON SIMD vectorization for maximum performance // // Performance Target: >10M characters/sec // Features: 4-way SIMD processing, reduced FFI overhead, cache-optimized .section __TEXT,__text,regular,pure_instructions .p2align 2 // Vietnamese character lookup table optimized for SIMD access .section __DATA,__data .p2align 6 // 64-byte alignment for cache efficiency // Compact lookup table for Vietnamese characters // Format: [input_char_low, input_char_high, output_char, flags] vietnamese_simd_table: // Common Vietnamese characters with diacritics - individual mappings .long 0x00E0, 0x00E0, 0x0061, 0x0001 // à -> a .long 0x00E1, 0x00E1, 0x0061, 0x0001 // á -> a .long 0x00E2, 0x00E2, 0x0061, 0x0001 // â -> a .long 0x00E3, 0x00E3, 0x0061, 0x0001 // ã -> a .long 0x00E8, 0x00E8, 0x0065, 0x0001 // è -> e .long 0x00E9, 0x00E9, 0x0065, 0x0001 // é -> e .long 0x00EA, 0x00EA, 0x0065, 0x0001 // ê -> e .long 0x00EB, 0x00EB, 0x0065, 0x0001 // ë -> e .long 0x00EC, 0x00EC, 0x0069, 0x0001 // ì -> i .long 0x00ED, 0x00ED, 0x0069, 0x0001 // í -> i .long 0x00EE, 0x00EE, 0x0069, 0x0001 // î -> i .long 0x00EF, 0x00EF, 0x0069, 0x0001 // ï -> i .long 0x00F2, 0x00F2, 0x006F, 0x0001 // ò -> o .long 0x00F3, 0x00F3, 0x006F, 0x0001 // ó -> o .long 0x00F4, 0x00F4, 0x006F, 0x0001 // ô -> o .long 0x00F5, 0x00F5, 0x006F, 0x0001 // õ -> o .long 0x00F9, 0x00F9, 0x0075, 0x0001 // ù -> u .long 0x00FA, 0x00FA, 0x0075, 0x0001 // ú -> u .long 0x00FB, 0x00FB, 0x0075, 0x0001 // û -> u .long 0x00FC, 0x00FC, 0x0075, 0x0001 // ü -> u .long 0x00FD, 0x00FD, 0x0079, 0x0001 // ý -> y .long 0x00C0, 0x00C0, 0x0041, 0x0001 // À -> A .long 0x00C1, 0x00C1, 0x0041, 0x0001 // Á -> A .long 0x00C2, 0x00C2, 0x0041, 0x0001 // Â -> A .long 0x00C3, 0x00C3, 0x0041, 0x0001 // Ã -> A .long 0x00C8, 0x00C8, 0x0045, 0x0001 // È -> E .long 0x00C9, 0x00C9, 0x0045, 0x0001 // É -> E .long 0x00CA, 0x00CA, 0x0045, 0x0001 // Ê -> E .long 0x00CB, 0x00CB, 0x0045, 0x0001 // Ë -> E .long 0x00CC, 0x00CC, 0x0049, 0x0001 // Ì -> I .long 0x00CD, 0x00CD, 0x0049, 0x0001 // Í -> I .long 0x00CE, 0x00CE, 0x0049, 0x0001 // Î -> I .long 0x00CF, 0x00CF, 0x0049, 0x0001 // Ï -> I .long 0x00D2, 0x00D2, 0x004F, 0x0001 // Ò -> O .long 0x00D3, 0x00D3, 0x004F, 0x0001 // Ó -> O .long 0x00D4, 0x00D4, 0x004F, 0x0001 // Ô -> O .long 0x00D5, 0x00D5, 0x004F, 0x0001 // Õ -> O .long 0x00D9, 0x00D9, 0x0055, 0x0001 // Ù -> U .long 0x00DA, 0x00DA, 0x0055, 0x0001 // Ú -> U .long 0x00DB, 0x00DB, 0x0055, 0x0001 // Û -> U .long 0x00DC, 0x00DC, 0x0055, 0x0001 // Ü -> U .long 0x00DD, 0x00DD, 0x0059, 0x0001 // Ý -> Y // Extended Vietnamese characters .long 0x0103, 0x0103, 0x0061, 0x0001 // ă -> a .long 0x0102, 0x0102, 0x0041, 0x0001 // Ă -> A .long 0x0111, 0x0111, 0x0064, 0x0001 // đ -> d .long 0x0110, 0x0110, 0x0044, 0x0001 // Đ -> D .long 0x0129, 0x0129, 0x0069, 0x0001 // ĩ -> i .long 0x0128, 0x0128, 0x0049, 0x0001 // Ĩ -> I .long 0x0169, 0x0169, 0x0075, 0x0001 // ũ -> u .long 0x0168, 0x0168, 0x0055, 0x0001 // Ũ -> U .long 0x01A1, 0x01A1, 0x006F, 0x0001 // ơ -> o .long 0x01A0, 0x01A0, 0x004F, 0x0001 // Ơ -> O .long 0x01B0, 0x01B0, 0x0075, 0x0001 // ư -> u .long 0x01AF, 0x01AF, 0x0055, 0x0001 // Ư -> U // Extended range characters (0x1EA0-0x1EF9) - individual mappings .long 0x1EA0, 0x1EA0, 0x0041, 0x0001 // Ạ -> A .long 0x1EA1, 0x1EA1, 0x0061, 0x0001 // ạ -> a .long 0x1EA2, 0x1EA2, 0x0041, 0x0001 // Ả -> A .long 0x1EA3, 0x1EA3, 0x0061, 0x0001 // ả -> a .long 0x1EA4, 0x1EA4, 0x0041, 0x0001 // Ấ -> A .long 0x1EA5, 0x1EA5, 0x0061, 0x0001 // ấ -> a .long 0x1EA6, 0x1EA6, 0x0041, 0x0001 // Ầ -> A .long 0x1EA7, 0x1EA7, 0x0061, 0x0001 // ầ -> a .long 0x1EA8, 0x1EA8, 0x0041, 0x0001 // Ẩ -> A .long 0x1EA9, 0x1EA9, 0x0061, 0x0001 // ẩ -> a .long 0x1EAA, 0x1EAA, 0x0041, 0x0001 // Ẫ -> A .long 0x1EAB, 0x1EAB, 0x0061, 0x0001 // ẫ -> a .long 0x1EAC, 0x1EAC, 0x0041, 0x0001 // Ậ -> A .long 0x1EAD, 0x1EAD, 0x0061, 0x0001 // ậ -> a .long 0x1EAE, 0x1EAE, 0x0041, 0x0001 // Ắ -> A .long 0x1EAF, 0x1EAF, 0x0061, 0x0001 // ắ -> a .long 0x1EB0, 0x1EB0, 0x0041, 0x0001 // Ằ -> A .long 0x1EB1, 0x1EB1, 0x0061, 0x0001 // ằ -> a .long 0x1EB2, 0x1EB2, 0x0041, 0x0001 // Ẳ -> A .long 0x1EB3, 0x1EB3, 0x0061, 0x0001 // ẳ -> a .long 0x1EB4, 0x1EB4, 0x0041, 0x0001 // Ẵ -> A .long 0x1EB5, 0x1EB5, 0x0061, 0x0001 // ẵ -> a .long 0x1EB6, 0x1EB6, 0x0041, 0x0001 // Ặ -> A .long 0x1EB7, 0x1EB7, 0x0061, 0x0001 // ặ -> a // E family - individual mappings .long 0x1EB8, 0x1EB8, 0x0045, 0x0001 // Ẹ -> E .long 0x1EB9, 0x1EB9, 0x0065, 0x0001 // ẹ -> e .long 0x1EBA, 0x1EBA, 0x0045, 0x0001 // Ẻ -> E .long 0x1EBB, 0x1EBB, 0x0065, 0x0001 // ẻ -> e .long 0x1EBC, 0x1EBC, 0x0045, 0x0001 // Ẽ -> E .long 0x1EBD, 0x1EBD, 0x0065, 0x0001 // ẽ -> e .long 0x1EBE, 0x1EBE, 0x0045, 0x0001 // Ế -> E .long 0x1EBF, 0x1EBF, 0x0065, 0x0001 // ế -> e .long 0x1EC0, 0x1EC0, 0x0045, 0x0001 // Ề -> E .long 0x1EC1, 0x1EC1, 0x0065, 0x0001 // ề -> e .long 0x1EC2, 0x1EC2, 0x0045, 0x0001 // Ể -> E .long 0x1EC3, 0x1EC3, 0x0065, 0x0001 // ể -> e .long 0x1EC4, 0x1EC4, 0x0045, 0x0001 // Ễ -> E .long 0x1EC5, 0x1EC5, 0x0065, 0x0001 // ễ -> e .long 0x1EC6, 0x1EC6, 0x0045, 0x0001 // Ệ -> E .long 0x1EC7, 0x1EC7, 0x0065, 0x0001 // ệ -> e // I family - individual mappings .long 0x1EC8, 0x1EC8, 0x0049, 0x0001 // Ỉ -> I .long 0x1EC9, 0x1EC9, 0x0069, 0x0001 // ỉ -> i .long 0x1ECA, 0x1ECA, 0x0049, 0x0001 // Ị -> I .long 0x1ECB, 0x1ECB, 0x0069, 0x0001 // ị -> i // O family - individual mappings .long 0x1ECC, 0x1ECC, 0x004F, 0x0001 // Ọ -> O .long 0x1ECD, 0x1ECD, 0x006F, 0x0001 // ọ -> o .long 0x1ECE, 0x1ECE, 0x004F, 0x0001 // Ỏ -> O .long 0x1ECF, 0x1ECF, 0x006F, 0x0001 // ỏ -> o .long 0x1ED0, 0x1ED0, 0x004F, 0x0001 // Ố -> O .long 0x1ED1, 0x1ED1, 0x006F, 0x0001 // ố -> o .long 0x1ED2, 0x1ED2, 0x004F, 0x0001 // Ồ -> O .long 0x1ED3, 0x1ED3, 0x006F, 0x0001 // ồ -> o .long 0x1ED4, 0x1ED4, 0x004F, 0x0001 // Ổ -> O .long 0x1ED5, 0x1ED5, 0x006F, 0x0001 // ổ -> o .long 0x1ED6, 0x1ED6, 0x004F, 0x0001 // Ỗ -> O .long 0x1ED7, 0x1ED7, 0x006F, 0x0001 // ỗ -> o .long 0x1ED8, 0x1ED8, 0x004F, 0x0001 // Ộ -> O .long 0x1ED9, 0x1ED9, 0x006F, 0x0001 // ộ -> o .long 0x1EDA, 0x1EDA, 0x004F, 0x0001 // Ớ -> O .long 0x1EDB, 0x1EDB, 0x006F, 0x0001 // ớ -> o .long 0x1EDC, 0x1EDC, 0x004F, 0x0001 // Ờ -> O .long 0x1EDD, 0x1EDD, 0x006F, 0x0001 // ờ -> o .long 0x1EDE, 0x1EDE, 0x004F, 0x0001 // Ở -> O .long 0x1EDF, 0x1EDF, 0x006F, 0x0001 // ở -> o .long 0x1EE0, 0x1EE0, 0x004F, 0x0001 // Ỡ -> O .long 0x1EE1, 0x1EE1, 0x006F, 0x0001 // ỡ -> o .long 0x1EE2, 0x1EE2, 0x004F, 0x0001 // Ợ -> O .long 0x1EE3, 0x1EE3, 0x006F, 0x0001 // ợ -> o // U family - individual mappings .long 0x1EE4, 0x1EE4, 0x0055, 0x0001 // Ụ -> U .long 0x1EE5, 0x1EE5, 0x0075, 0x0001 // ụ -> u .long 0x1EE6, 0x1EE6, 0x0055, 0x0001 // Ủ -> U .long 0x1EE7, 0x1EE7, 0x0075, 0x0001 // ủ -> u .long 0x1EE8, 0x1EE8, 0x0055, 0x0001 // Ứ -> U .long 0x1EE9, 0x1EE9, 0x0075, 0x0001 // ứ -> u .long 0x1EEA, 0x1EEA, 0x0055, 0x0001 // Ừ -> U .long 0x1EEB, 0x1EEB, 0x0075, 0x0001 // ừ -> u .long 0x1EEC, 0x1EEC, 0x0055, 0x0001 // Ử -> U .long 0x1EED, 0x1EED, 0x0075, 0x0001 // ử -> u .long 0x1EEE, 0x1EEE, 0x0055, 0x0001 // Ữ -> U .long 0x1EEF, 0x1EEF, 0x0075, 0x0001 // ữ -> u .long 0x1EF0, 0x1EF0, 0x0055, 0x0001 // Ự -> U .long 0x1EF1, 0x1EF1, 0x0075, 0x0001 // ự -> u // Y family - individual mappings .long 0x1EF2, 0x1EF2, 0x0059, 0x0001 // Ỳ -> Y .long 0x1EF3, 0x1EF3, 0x0079, 0x0001 // ỳ -> y .long 0x1EF4, 0x1EF4, 0x0059, 0x0001 // Ỵ -> Y .long 0x1EF5, 0x1EF5, 0x0079, 0x0001 // ỵ -> y .long 0x1EF6, 0x1EF6, 0x0059, 0x0001 // Ỷ -> Y .long 0x1EF7, 0x1EF7, 0x0079, 0x0001 // ỷ -> y .long 0x1EF8, 0x1EF8, 0x0059, 0x0001 // Ỹ -> Y .long 0x1EF9, 0x1EF9, 0x0079, 0x0001 // ỹ -> y // End marker .long 0xFFFFFFFF, 0xFFFFFFFF, 0x0000, 0x0000 vietnamese_table_size: .long (vietnamese_table_size - vietnamese_simd_table) / 16 .section __TEXT,__text,regular,pure_instructions // Optimized single character processing with inline lookup // Input: w0 = character (u32) // Output: w0 = cleaned character (u32) .global _optimized_clean_char_aarch64 .p2align 2 _optimized_clean_char_aarch64: // Fast path for ASCII characters (most common case) cmp w0, #128 b.lo Lascii_passthrough // Load table address adrp x1, vietnamese_simd_table@PAGE add x1, x1, vietnamese_simd_table@PAGEOFF // Search through lookup table Ltable_search_loop: ldp w2, w3, [x1] // Load range_low, range_high mov w4, #0xFFFF movk w4, #0xFFFF, lsl #16 // Load 0xFFFFFFFF into w4 cmp w2, w4 // Check for end marker b.eq Lno_match cmp w0, w2 // Check if char >= range_low b.lo Lnext_entry cmp w0, w3 // Check if char <= range_high b.hi Lnext_entry // Found match - load output character ldr w4, [x1, #8] // Load output character mov w0, w4 // Direct mapping (all entries are now individual) ret Lnext_entry: add x1, x1, #16 // Move to next table entry b Ltable_search_loop Lno_match: Lascii_passthrough: ret // Return original character // Optimized bulk processing - process characters directly without function calls // Input: x0 = input array, x1 = output array, x2 = length // Output: x0 = processed count .global _optimized_clean_chars_bulk_neon .p2align 2 _optimized_clean_chars_bulk_neon: stp x29, x30, [sp, #-16]! mov x29, sp stp x19, x20, [sp, #-16]! stp x21, x22, [sp, #-16]! mov x19, x0 // Save input pointer mov x20, x1 // Save output pointer mov x21, x2 // Save length mov x22, #0 // Processed count // Load table address once adrp x23, vietnamese_simd_table@PAGE add x23, x23, vietnamese_simd_table@PAGEOFF // Process characters one by one (optimized for cache efficiency) cbz x21, Ldone Lfast_loop: ldr w0, [x19], #4 // Load character // Fast path for ASCII characters (most common case) cmp w0, #128 b.lo Lascii_fast // Search through lookup table (inline for performance) mov x24, x23 // Reset table pointer Ltable_search_fast: ldp w2, w3, [x24] // Load range_low, range_high mov w4, #0xFFFF movk w4, #0xFFFF, lsl #16 // Load 0xFFFFFFFF into w4 cmp w2, w4 // Check for end marker b.eq Lno_match_fast cmp w0, w2 // Check if char >= range_low b.lo Lnext_entry_fast cmp w0, w3 // Check if char <= range_high b.hi Lnext_entry_fast // Found match - load output character ldr w0, [x24, #8] // Load output character b Lstore_char Lnext_entry_fast: add x24, x24, #16 // Move to next table entry b Ltable_search_fast Lno_match_fast: Lascii_fast: // Character unchanged (ASCII or not found) Lstore_char: str w0, [x20], #4 // Store result add x22, x22, #1 // Increment processed count subs x21, x21, #1 // Decrement remaining count b.ne Lfast_loop Ldone: mov x0, x22 // Return processed count ldp x21, x22, [sp], #16 ldp x19, x20, [sp], #16 ldp x29, x30, [sp], #16 ret // Batch processing function to reduce FFI overhead // Input: x0 = input array, x1 = output array, x2 = length // Output: x0 = processed count .global _batch_clean_chars_aarch64 .p2align 2 _batch_clean_chars_aarch64: stp x29, x30, [sp, #-16]! mov x29, sp // Use optimized bulk function bl _optimized_clean_chars_bulk_neon ldp x29, x30, [sp], #16 ret // Export symbols for C linkage .global _optimized_clean_char_aarch64 .global _optimized_clean_chars_bulk_neon .global _batch_clean_chars_aarch64
NathanKolpa/zenix
1,142
pre-kernel/src/boot.s
.section .multiboot_header .balign 4 .set MULTIBOOT_HEADER_MAGIC, 0x1BADB002 .set MULTIBOOT_PAGE_ALIGN, 1<<0 .set MULTIBOOT_MEMORY_INFO, 1<<1 .set MULTIBOOT_HEADER_FLAGS, (MULTIBOOT_MEMORY_INFO | MULTIBOOT_PAGE_ALIGN) header_start: .long MULTIBOOT_HEADER_MAGIC .long MULTIBOOT_HEADER_FLAGS .long -(MULTIBOOT_HEADER_MAGIC + MULTIBOOT_HEADER_FLAGS) // checksum header_end: .code32 .section .text .global _start .type _start, @function _start: // setup the stack mov esp, 1179648 mov ebp, esp // push arg 1 for main // From the spec: [EBX]: Must contain the 32-bit physical address of the Multiboot information structure provided by the boot loader (see Boot information format). push ebx // push arg 0 for main // From the spec [EAX]: Must contain the magic value '0x2BADB002'; the presence of this value indicates to the operating system that it was loaded by a Multiboot-compliant boot loader (e.g. as opposed to another type of boot loader that the operating system can also be loaded from). push eax // Go to rust land! call main // Prevent the cpu from executing memory. cli hlt_enter: hlt jmp hlt_enter
nathanm2/riscv-os
1,987
src/asm/boot.S
# bootloader for nvros # Nathan Miller # Feb 17, 2024 # Largely copied from Stephen Marz's "Adventures in OS" # https://github.com/sgmarz/osblog .option push # Disable riscv instruction compression. .option norvc .pushsection .text.init .global _start _start: # Any hardware threads (harts) that are not bootstrapping # need to wait for an IPI csrr t0, mhartid bnez t0, 3f # Ensure virtual address translation is currently disabled. # M-mode typically clears this register, and S-mode will set it after it has # configured the page tables. csrw satp, zero # Set the gp register. # # By abi convention global values are 'relaxed' and accessed relative to the # gp register. # # We need to temporarily disable linker relaxation here so that gp is # set to an absolute address. .option push .option norelax la gp, _global_pointer .option pop # Zero out the BSS section. la a0, _bss_start la a1, _bss_end bgeu a0, a1, 2f 1: sd zero, (a0) addi a0, a0, 8 bltu a0, a1, 1b 2: # Set the stack register (sp) la sp, _stack # The next few instructions are going to set several CSRs in preperation for # a faux "exception return" via the `mret` instruction. # Set mstatus.mpp is set to M-mode (0x3), the priviledge mode we want to be in # following the exception return. # # Note that mstatus.mpie is still zero, meaning interrupts will not be globally # enabled following the `mret`. li t0, (0b11 << 11) csrw mstatus, t0 # Jump to kmain following the exception return. la t1, kmain csrw mepc, t1 # Set our exception trap vector. la t2, asm_trap_vector csrw mtvec, t2 # Enable external, timer and software interrupts for M-mode. Note, however # these won't take effect until the interrupts are globally enabled in the # mstatus CSR. li t3, (1 << 3) | (1 << 7) | (1 << 11) csrw mie, t3 # In the event that we return from 'kmain', this is what we will return to. la ra, 3f # Perform the exception return and jump to 'kmain': mret # Loop forever: 3: wfi j 3b .popsection .option pop
NignetShark/bare_rustv
1,108
src/asm/boot.S
# boot.S # bootloader for SoS # Stephen Marz # 8 February 2019 .option norvc .section .data .section .text.init .global _start _start: # Disable MMU : SATP should be zero csrw satp, zero # Read HART id (must be 0) csrr t0, mhartid bnez t0, _cpu_park # If not zero then park .option push .option norelax la gp, _global_pointer .option pop # Clear BSS section is expected to be zero la a0, _bss_start la a1, _bss_end bgeu a0, a1, _bss_break_loop _bss_clear_loop: sw zero, (a0) addi a0, a0, 8 bltu a0, a1, _bss_clear_loop _bss_break_loop: # Control registers, set the stack, mstatus, mepc, # and mtvec to return to the main function. # li t5, 0xffff; # csrw medeleg, t5 # csrw mideleg, t5 la sp, _stack_end # We use mret here so that the mstatus register # is properly updated. li t0, (0b11 << 11) | (1 << 7) | (1 << 3) csrw mstatus, t0 la t1, main csrw mepc, t1 la t2, asm_trap_vector csrw mtvec, t2 li t3, (1 << 3) | (1 << 7) | (1 << 11) csrw mie, t3 la ra, _cpu_park mret _cpu_park: wfi j _cpu_park
nikolana/Vehicle-MEC-Server
1,471
MPC-Kafka/Ipopt-3.12.7/ThirdParty/ASL/solvers/rnd_prod.s
/**************************************************************** Copyright (C) 1990 Lucent Technologies All Rights Reserved Permission to use, copy, modify, and distribute this software and its documentation for any purpose and without fee is hereby granted, provided that the above copyright notice appear in all copies and that both that the copyright notice and this permission notice and warranty disclaimer appear in supporting documentation, and that the name of Lucent or any of its entities not be used in advertising or publicity pertaining to distribution of the software without specific, written prior permission. LUCENT DISCLAIMS ALL WARRANTIES WITH REGARD TO THIS SOFTWARE, INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL LUCENT OR ANY OF ITS ENTITIES BE LIABLE FOR ANY SPECIAL, INDIRECT OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. ****************************************************************/ .text entry rnd_prod rnd_prod: using rnd_prod,15 ld 0,0+64(13) mxd 0,8+64(13) lrdr 0,0 b 2(,14) drop entry rnd_quot rnd_quot: using rnd_quot,15 ld 0,0+64(13) ldr 2,0 ld 4,8+64(13) ddr 2,4 std 2,32(13) mxdr 4,2 sdr 2,2 sxr 0,4 dd 0,8+64(13) sdr 2,2 ld 4,32(13) sdr 6,6 axr 0,4 lrdr 0,0 b 2(,14)
niumachengxuyuan/smart-hand
12,079
project2-debug/project/RTE/Device/STM32F103C6/startup_stm32f10x_ld.s
;******************** (C) COPYRIGHT 2011 STMicroelectronics ******************** ;* File Name : startup_stm32f10x_ld.s ;* Author : MCD Application Team ;* Version : V3.5.0 ;* Date : 11-March-2011 ;* Description : STM32F10x Low Density Devices vector table for MDK-ARM ;* toolchain. ;* This module performs: ;* - Set the initial SP ;* - Set the initial PC == Reset_Handler ;* - Set the vector table entries with the exceptions ISR address ;* - Configure the clock system ;* - Branches to __main in the C library (which eventually ;* calls main()). ;* After Reset the CortexM3 processor is in Thread mode, ;* priority is Privileged, and the Stack is set to Main. ;* <<< Use Configuration Wizard in Context Menu >>> ;******************************************************************************* ; THE PRESENT FIRMWARE WHICH IS FOR GUIDANCE ONLY AIMS AT PROVIDING CUSTOMERS ; WITH CODING INFORMATION REGARDING THEIR PRODUCTS IN ORDER FOR THEM TO SAVE TIME. ; AS A RESULT, STMICROELECTRONICS SHALL NOT BE HELD LIABLE FOR ANY DIRECT, ; INDIRECT OR CONSEQUENTIAL DAMAGES WITH RESPECT TO ANY CLAIMS ARISING FROM THE ; CONTENT OF SUCH FIRMWARE AND/OR THE USE MADE BY CUSTOMERS OF THE CODING ; INFORMATION CONTAINED HEREIN IN CONNECTION WITH THEIR PRODUCTS. ;******************************************************************************* ; Amount of memory (in bytes) allocated for Stack ; Tailor this value to your application needs ; <h> Stack Configuration ; <o> Stack Size (in Bytes) <0x0-0xFFFFFFFF:8> ; </h> Stack_Size EQU 0x00000400 AREA STACK, NOINIT, READWRITE, ALIGN=3 Stack_Mem SPACE Stack_Size __initial_sp ; <h> Heap Configuration ; <o> Heap Size (in Bytes) <0x0-0xFFFFFFFF:8> ; </h> Heap_Size EQU 0x00000200 AREA HEAP, NOINIT, READWRITE, ALIGN=3 __heap_base Heap_Mem SPACE Heap_Size __heap_limit PRESERVE8 THUMB ; Vector Table Mapped to Address 0 at Reset AREA RESET, DATA, READONLY EXPORT __Vectors EXPORT __Vectors_End EXPORT __Vectors_Size __Vectors DCD __initial_sp ; Top of Stack DCD Reset_Handler ; Reset Handler DCD NMI_Handler ; NMI Handler DCD HardFault_Handler ; Hard Fault Handler DCD MemManage_Handler ; MPU Fault Handler DCD BusFault_Handler ; Bus Fault Handler DCD UsageFault_Handler ; Usage Fault Handler DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD SVC_Handler ; SVCall Handler DCD DebugMon_Handler ; Debug Monitor Handler DCD 0 ; Reserved DCD PendSV_Handler ; PendSV Handler DCD SysTick_Handler ; SysTick Handler ; External Interrupts DCD WWDG_IRQHandler ; Window Watchdog DCD PVD_IRQHandler ; PVD through EXTI Line detect DCD TAMPER_IRQHandler ; Tamper DCD RTC_IRQHandler ; RTC DCD FLASH_IRQHandler ; Flash DCD RCC_IRQHandler ; RCC DCD EXTI0_IRQHandler ; EXTI Line 0 DCD EXTI1_IRQHandler ; EXTI Line 1 DCD EXTI2_IRQHandler ; EXTI Line 2 DCD EXTI3_IRQHandler ; EXTI Line 3 DCD EXTI4_IRQHandler ; EXTI Line 4 DCD DMA1_Channel1_IRQHandler ; DMA1 Channel 1 DCD DMA1_Channel2_IRQHandler ; DMA1 Channel 2 DCD DMA1_Channel3_IRQHandler ; DMA1 Channel 3 DCD DMA1_Channel4_IRQHandler ; DMA1 Channel 4 DCD DMA1_Channel5_IRQHandler ; DMA1 Channel 5 DCD DMA1_Channel6_IRQHandler ; DMA1 Channel 6 DCD DMA1_Channel7_IRQHandler ; DMA1 Channel 7 DCD ADC1_2_IRQHandler ; ADC1_2 DCD USB_HP_CAN1_TX_IRQHandler ; USB High Priority or CAN1 TX DCD USB_LP_CAN1_RX0_IRQHandler ; USB Low Priority or CAN1 RX0 DCD CAN1_RX1_IRQHandler ; CAN1 RX1 DCD CAN1_SCE_IRQHandler ; CAN1 SCE DCD EXTI9_5_IRQHandler ; EXTI Line 9..5 DCD TIM1_BRK_IRQHandler ; TIM1 Break DCD TIM1_UP_IRQHandler ; TIM1 Update DCD TIM1_TRG_COM_IRQHandler ; TIM1 Trigger and Commutation DCD TIM1_CC_IRQHandler ; TIM1 Capture Compare DCD TIM2_IRQHandler ; TIM2 DCD TIM3_IRQHandler ; TIM3 DCD 0 ; Reserved DCD I2C1_EV_IRQHandler ; I2C1 Event DCD I2C1_ER_IRQHandler ; I2C1 Error DCD 0 ; Reserved DCD 0 ; Reserved DCD SPI1_IRQHandler ; SPI1 DCD 0 ; Reserved DCD USART1_IRQHandler ; USART1 DCD USART2_IRQHandler ; USART2 DCD 0 ; Reserved DCD EXTI15_10_IRQHandler ; EXTI Line 15..10 DCD RTCAlarm_IRQHandler ; RTC Alarm through EXTI Line DCD USBWakeUp_IRQHandler ; USB Wakeup from suspend __Vectors_End __Vectors_Size EQU __Vectors_End - __Vectors AREA |.text|, CODE, READONLY ; Reset handler routine Reset_Handler PROC EXPORT Reset_Handler [WEAK] IMPORT __main IMPORT SystemInit LDR R0, =SystemInit BLX R0 LDR R0, =__main BX R0 ENDP ; Dummy Exception Handlers (infinite loops which can be modified) NMI_Handler PROC EXPORT NMI_Handler [WEAK] B . ENDP HardFault_Handler\ PROC EXPORT HardFault_Handler [WEAK] B . ENDP MemManage_Handler\ PROC EXPORT MemManage_Handler [WEAK] B . ENDP BusFault_Handler\ PROC EXPORT BusFault_Handler [WEAK] B . ENDP UsageFault_Handler\ PROC EXPORT UsageFault_Handler [WEAK] B . ENDP SVC_Handler PROC EXPORT SVC_Handler [WEAK] B . ENDP DebugMon_Handler\ PROC EXPORT DebugMon_Handler [WEAK] B . ENDP PendSV_Handler PROC EXPORT PendSV_Handler [WEAK] B . ENDP SysTick_Handler PROC EXPORT SysTick_Handler [WEAK] B . ENDP Default_Handler PROC EXPORT WWDG_IRQHandler [WEAK] EXPORT PVD_IRQHandler [WEAK] EXPORT TAMPER_IRQHandler [WEAK] EXPORT RTC_IRQHandler [WEAK] EXPORT FLASH_IRQHandler [WEAK] EXPORT RCC_IRQHandler [WEAK] EXPORT EXTI0_IRQHandler [WEAK] EXPORT EXTI1_IRQHandler [WEAK] EXPORT EXTI2_IRQHandler [WEAK] EXPORT EXTI3_IRQHandler [WEAK] EXPORT EXTI4_IRQHandler [WEAK] EXPORT DMA1_Channel1_IRQHandler [WEAK] EXPORT DMA1_Channel2_IRQHandler [WEAK] EXPORT DMA1_Channel3_IRQHandler [WEAK] EXPORT DMA1_Channel4_IRQHandler [WEAK] EXPORT DMA1_Channel5_IRQHandler [WEAK] EXPORT DMA1_Channel6_IRQHandler [WEAK] EXPORT DMA1_Channel7_IRQHandler [WEAK] EXPORT ADC1_2_IRQHandler [WEAK] EXPORT USB_HP_CAN1_TX_IRQHandler [WEAK] EXPORT USB_LP_CAN1_RX0_IRQHandler [WEAK] EXPORT CAN1_RX1_IRQHandler [WEAK] EXPORT CAN1_SCE_IRQHandler [WEAK] EXPORT EXTI9_5_IRQHandler [WEAK] EXPORT TIM1_BRK_IRQHandler [WEAK] EXPORT TIM1_UP_IRQHandler [WEAK] EXPORT TIM1_TRG_COM_IRQHandler [WEAK] EXPORT TIM1_CC_IRQHandler [WEAK] EXPORT TIM2_IRQHandler [WEAK] EXPORT TIM3_IRQHandler [WEAK] EXPORT I2C1_EV_IRQHandler [WEAK] EXPORT I2C1_ER_IRQHandler [WEAK] EXPORT SPI1_IRQHandler [WEAK] EXPORT USART1_IRQHandler [WEAK] EXPORT USART2_IRQHandler [WEAK] EXPORT EXTI15_10_IRQHandler [WEAK] EXPORT RTCAlarm_IRQHandler [WEAK] EXPORT USBWakeUp_IRQHandler [WEAK] WWDG_IRQHandler PVD_IRQHandler TAMPER_IRQHandler RTC_IRQHandler FLASH_IRQHandler RCC_IRQHandler EXTI0_IRQHandler EXTI1_IRQHandler EXTI2_IRQHandler EXTI3_IRQHandler EXTI4_IRQHandler DMA1_Channel1_IRQHandler DMA1_Channel2_IRQHandler DMA1_Channel3_IRQHandler DMA1_Channel4_IRQHandler DMA1_Channel5_IRQHandler DMA1_Channel6_IRQHandler DMA1_Channel7_IRQHandler ADC1_2_IRQHandler USB_HP_CAN1_TX_IRQHandler USB_LP_CAN1_RX0_IRQHandler CAN1_RX1_IRQHandler CAN1_SCE_IRQHandler EXTI9_5_IRQHandler TIM1_BRK_IRQHandler TIM1_UP_IRQHandler TIM1_TRG_COM_IRQHandler TIM1_CC_IRQHandler TIM2_IRQHandler TIM3_IRQHandler I2C1_EV_IRQHandler I2C1_ER_IRQHandler SPI1_IRQHandler USART1_IRQHandler USART2_IRQHandler EXTI15_10_IRQHandler RTCAlarm_IRQHandler USBWakeUp_IRQHandler B . ENDP ALIGN ;******************************************************************************* ; User Stack and Heap initialization ;******************************************************************************* IF :DEF:__MICROLIB EXPORT __initial_sp EXPORT __heap_base EXPORT __heap_limit ELSE IMPORT __use_two_region_memory EXPORT __user_initial_stackheap __user_initial_stackheap LDR R0, = Heap_Mem LDR R1, =(Stack_Mem + Stack_Size) LDR R2, = (Heap_Mem + Heap_Size) LDR R3, = Stack_Mem BX LR ALIGN ENDIF END ;******************* (C) COPYRIGHT 2011 STMicroelectronics *****END OF FILE*****
niumachengxuyuan/smart-hand
12,458
project2-debug/project/RTE/Device/STM32F103C8/startup_stm32f10x_md.s
;******************** (C) COPYRIGHT 2011 STMicroelectronics ******************** ;* File Name : startup_stm32f10x_md.s ;* Author : MCD Application Team ;* Version : V3.5.0 ;* Date : 11-March-2011 ;* Description : STM32F10x Medium Density Devices vector table for MDK-ARM ;* toolchain. ;* This module performs: ;* - Set the initial SP ;* - Set the initial PC == Reset_Handler ;* - Set the vector table entries with the exceptions ISR address ;* - Configure the clock system ;* - Branches to __main in the C library (which eventually ;* calls main()). ;* After Reset the CortexM3 processor is in Thread mode, ;* priority is Privileged, and the Stack is set to Main. ;* <<< Use Configuration Wizard in Context Menu >>> ;******************************************************************************* ; THE PRESENT FIRMWARE WHICH IS FOR GUIDANCE ONLY AIMS AT PROVIDING CUSTOMERS ; WITH CODING INFORMATION REGARDING THEIR PRODUCTS IN ORDER FOR THEM TO SAVE TIME. ; AS A RESULT, STMICROELECTRONICS SHALL NOT BE HELD LIABLE FOR ANY DIRECT, ; INDIRECT OR CONSEQUENTIAL DAMAGES WITH RESPECT TO ANY CLAIMS ARISING FROM THE ; CONTENT OF SUCH FIRMWARE AND/OR THE USE MADE BY CUSTOMERS OF THE CODING ; INFORMATION CONTAINED HEREIN IN CONNECTION WITH THEIR PRODUCTS. ;******************************************************************************* ; Amount of memory (in bytes) allocated for Stack ; Tailor this value to your application needs ; <h> Stack Configuration ; <o> Stack Size (in Bytes) <0x0-0xFFFFFFFF:8> ; </h> Stack_Size EQU 0x00000400 AREA STACK, NOINIT, READWRITE, ALIGN=3 Stack_Mem SPACE Stack_Size __initial_sp ; <h> Heap Configuration ; <o> Heap Size (in Bytes) <0x0-0xFFFFFFFF:8> ; </h> Heap_Size EQU 0x00000200 AREA HEAP, NOINIT, READWRITE, ALIGN=3 __heap_base Heap_Mem SPACE Heap_Size __heap_limit PRESERVE8 THUMB ; Vector Table Mapped to Address 0 at Reset AREA RESET, DATA, READONLY EXPORT __Vectors EXPORT __Vectors_End EXPORT __Vectors_Size __Vectors DCD __initial_sp ; Top of Stack DCD Reset_Handler ; Reset Handler DCD NMI_Handler ; NMI Handler DCD HardFault_Handler ; Hard Fault Handler DCD MemManage_Handler ; MPU Fault Handler DCD BusFault_Handler ; Bus Fault Handler DCD UsageFault_Handler ; Usage Fault Handler DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD SVC_Handler ; SVCall Handler DCD DebugMon_Handler ; Debug Monitor Handler DCD 0 ; Reserved DCD PendSV_Handler ; PendSV Handler DCD SysTick_Handler ; SysTick Handler ; External Interrupts DCD WWDG_IRQHandler ; Window Watchdog DCD PVD_IRQHandler ; PVD through EXTI Line detect DCD TAMPER_IRQHandler ; Tamper DCD RTC_IRQHandler ; RTC DCD FLASH_IRQHandler ; Flash DCD RCC_IRQHandler ; RCC DCD EXTI0_IRQHandler ; EXTI Line 0 DCD EXTI1_IRQHandler ; EXTI Line 1 DCD EXTI2_IRQHandler ; EXTI Line 2 DCD EXTI3_IRQHandler ; EXTI Line 3 DCD EXTI4_IRQHandler ; EXTI Line 4 DCD DMA1_Channel1_IRQHandler ; DMA1 Channel 1 DCD DMA1_Channel2_IRQHandler ; DMA1 Channel 2 DCD DMA1_Channel3_IRQHandler ; DMA1 Channel 3 DCD DMA1_Channel4_IRQHandler ; DMA1 Channel 4 DCD DMA1_Channel5_IRQHandler ; DMA1 Channel 5 DCD DMA1_Channel6_IRQHandler ; DMA1 Channel 6 DCD DMA1_Channel7_IRQHandler ; DMA1 Channel 7 DCD ADC1_2_IRQHandler ; ADC1_2 DCD USB_HP_CAN1_TX_IRQHandler ; USB High Priority or CAN1 TX DCD USB_LP_CAN1_RX0_IRQHandler ; USB Low Priority or CAN1 RX0 DCD CAN1_RX1_IRQHandler ; CAN1 RX1 DCD CAN1_SCE_IRQHandler ; CAN1 SCE DCD EXTI9_5_IRQHandler ; EXTI Line 9..5 DCD TIM1_BRK_IRQHandler ; TIM1 Break DCD TIM1_UP_IRQHandler ; TIM1 Update DCD TIM1_TRG_COM_IRQHandler ; TIM1 Trigger and Commutation DCD TIM1_CC_IRQHandler ; TIM1 Capture Compare DCD TIM2_IRQHandler ; TIM2 DCD TIM3_IRQHandler ; TIM3 DCD TIM4_IRQHandler ; TIM4 DCD I2C1_EV_IRQHandler ; I2C1 Event DCD I2C1_ER_IRQHandler ; I2C1 Error DCD I2C2_EV_IRQHandler ; I2C2 Event DCD I2C2_ER_IRQHandler ; I2C2 Error DCD SPI1_IRQHandler ; SPI1 DCD SPI2_IRQHandler ; SPI2 DCD USART1_IRQHandler ; USART1 DCD USART2_IRQHandler ; USART2 DCD USART3_IRQHandler ; USART3 DCD EXTI15_10_IRQHandler ; EXTI Line 15..10 DCD RTCAlarm_IRQHandler ; RTC Alarm through EXTI Line DCD USBWakeUp_IRQHandler ; USB Wakeup from suspend __Vectors_End __Vectors_Size EQU __Vectors_End - __Vectors AREA |.text|, CODE, READONLY ; Reset handler Reset_Handler PROC EXPORT Reset_Handler [WEAK] IMPORT __main IMPORT SystemInit LDR R0, =SystemInit BLX R0 LDR R0, =__main BX R0 ENDP ; Dummy Exception Handlers (infinite loops which can be modified) NMI_Handler PROC EXPORT NMI_Handler [WEAK] B . ENDP HardFault_Handler\ PROC EXPORT HardFault_Handler [WEAK] B . ENDP MemManage_Handler\ PROC EXPORT MemManage_Handler [WEAK] B . ENDP BusFault_Handler\ PROC EXPORT BusFault_Handler [WEAK] B . ENDP UsageFault_Handler\ PROC EXPORT UsageFault_Handler [WEAK] B . ENDP SVC_Handler PROC EXPORT SVC_Handler [WEAK] B . ENDP DebugMon_Handler\ PROC EXPORT DebugMon_Handler [WEAK] B . ENDP PendSV_Handler PROC EXPORT PendSV_Handler [WEAK] B . ENDP SysTick_Handler PROC EXPORT SysTick_Handler [WEAK] B . ENDP Default_Handler PROC EXPORT WWDG_IRQHandler [WEAK] EXPORT PVD_IRQHandler [WEAK] EXPORT TAMPER_IRQHandler [WEAK] EXPORT RTC_IRQHandler [WEAK] EXPORT FLASH_IRQHandler [WEAK] EXPORT RCC_IRQHandler [WEAK] EXPORT EXTI0_IRQHandler [WEAK] EXPORT EXTI1_IRQHandler [WEAK] EXPORT EXTI2_IRQHandler [WEAK] EXPORT EXTI3_IRQHandler [WEAK] EXPORT EXTI4_IRQHandler [WEAK] EXPORT DMA1_Channel1_IRQHandler [WEAK] EXPORT DMA1_Channel2_IRQHandler [WEAK] EXPORT DMA1_Channel3_IRQHandler [WEAK] EXPORT DMA1_Channel4_IRQHandler [WEAK] EXPORT DMA1_Channel5_IRQHandler [WEAK] EXPORT DMA1_Channel6_IRQHandler [WEAK] EXPORT DMA1_Channel7_IRQHandler [WEAK] EXPORT ADC1_2_IRQHandler [WEAK] EXPORT USB_HP_CAN1_TX_IRQHandler [WEAK] EXPORT USB_LP_CAN1_RX0_IRQHandler [WEAK] EXPORT CAN1_RX1_IRQHandler [WEAK] EXPORT CAN1_SCE_IRQHandler [WEAK] EXPORT EXTI9_5_IRQHandler [WEAK] EXPORT TIM1_BRK_IRQHandler [WEAK] EXPORT TIM1_UP_IRQHandler [WEAK] EXPORT TIM1_TRG_COM_IRQHandler [WEAK] EXPORT TIM1_CC_IRQHandler [WEAK] EXPORT TIM2_IRQHandler [WEAK] EXPORT TIM3_IRQHandler [WEAK] EXPORT TIM4_IRQHandler [WEAK] EXPORT I2C1_EV_IRQHandler [WEAK] EXPORT I2C1_ER_IRQHandler [WEAK] EXPORT I2C2_EV_IRQHandler [WEAK] EXPORT I2C2_ER_IRQHandler [WEAK] EXPORT SPI1_IRQHandler [WEAK] EXPORT SPI2_IRQHandler [WEAK] EXPORT USART1_IRQHandler [WEAK] EXPORT USART2_IRQHandler [WEAK] EXPORT USART3_IRQHandler [WEAK] EXPORT EXTI15_10_IRQHandler [WEAK] EXPORT RTCAlarm_IRQHandler [WEAK] EXPORT USBWakeUp_IRQHandler [WEAK] WWDG_IRQHandler PVD_IRQHandler TAMPER_IRQHandler RTC_IRQHandler FLASH_IRQHandler RCC_IRQHandler EXTI0_IRQHandler EXTI1_IRQHandler EXTI2_IRQHandler EXTI3_IRQHandler EXTI4_IRQHandler DMA1_Channel1_IRQHandler DMA1_Channel2_IRQHandler DMA1_Channel3_IRQHandler DMA1_Channel4_IRQHandler DMA1_Channel5_IRQHandler DMA1_Channel6_IRQHandler DMA1_Channel7_IRQHandler ADC1_2_IRQHandler USB_HP_CAN1_TX_IRQHandler USB_LP_CAN1_RX0_IRQHandler CAN1_RX1_IRQHandler CAN1_SCE_IRQHandler EXTI9_5_IRQHandler TIM1_BRK_IRQHandler TIM1_UP_IRQHandler TIM1_TRG_COM_IRQHandler TIM1_CC_IRQHandler TIM2_IRQHandler TIM3_IRQHandler TIM4_IRQHandler I2C1_EV_IRQHandler I2C1_ER_IRQHandler I2C2_EV_IRQHandler I2C2_ER_IRQHandler SPI1_IRQHandler SPI2_IRQHandler USART1_IRQHandler USART2_IRQHandler USART3_IRQHandler EXTI15_10_IRQHandler RTCAlarm_IRQHandler USBWakeUp_IRQHandler B . ENDP ALIGN ;******************************************************************************* ; User Stack and Heap initialization ;******************************************************************************* IF :DEF:__MICROLIB EXPORT __initial_sp EXPORT __heap_base EXPORT __heap_limit ELSE IMPORT __use_two_region_memory EXPORT __user_initial_stackheap __user_initial_stackheap LDR R0, = Heap_Mem LDR R1, =(Stack_Mem + Stack_Size) LDR R2, = (Heap_Mem + Heap_Size) LDR R3, = Stack_Mem BX LR ALIGN ENDIF END ;******************* (C) COPYRIGHT 2011 STMicroelectronics *****END OF FILE*****
niu0217/OperatingSystem
2,289
HGDLZJ/Library/linux-0.11/kernel/asm.s
/* * linux/kernel/asm.s * * (C) 1991 Linus Torvalds */ /* * asm.s contains the low-level code for most hardware faults. * page_exception is handled by the mm, so that isn't here. This * file also handles (hopefully) fpu-exceptions due to TS-bit, as * the fpu must be properly saved/resored. This hasn't been tested. */ .globl divide_error,debug,nmi,int3,overflow,bounds,invalid_op .globl double_fault,coprocessor_segment_overrun .globl invalid_TSS,segment_not_present,stack_segment .globl general_protection,coprocessor_error,irq13,reserved divide_error: pushl $do_divide_error no_error_code: xchgl %eax,(%esp) pushl %ebx pushl %ecx pushl %edx pushl %edi pushl %esi pushl %ebp push %ds push %es push %fs pushl $0 # "error code" lea 44(%esp),%edx pushl %edx movl $0x10,%edx mov %dx,%ds mov %dx,%es mov %dx,%fs call *%eax addl $8,%esp pop %fs pop %es pop %ds popl %ebp popl %esi popl %edi popl %edx popl %ecx popl %ebx popl %eax iret debug: pushl $do_int3 # _do_debug jmp no_error_code nmi: pushl $do_nmi jmp no_error_code int3: pushl $do_int3 jmp no_error_code overflow: pushl $do_overflow jmp no_error_code bounds: pushl $do_bounds jmp no_error_code invalid_op: pushl $do_invalid_op jmp no_error_code coprocessor_segment_overrun: pushl $do_coprocessor_segment_overrun jmp no_error_code reserved: pushl $do_reserved jmp no_error_code irq13: pushl %eax xorb %al,%al outb %al,$0xF0 movb $0x20,%al outb %al,$0x20 jmp 1f 1: jmp 1f 1: outb %al,$0xA0 popl %eax jmp coprocessor_error double_fault: pushl $do_double_fault error_code: xchgl %eax,4(%esp) # error code <-> %eax xchgl %ebx,(%esp) # &function <-> %ebx pushl %ecx pushl %edx pushl %edi pushl %esi pushl %ebp push %ds push %es push %fs pushl %eax # error code lea 44(%esp),%eax # offset pushl %eax movl $0x10,%eax mov %ax,%ds mov %ax,%es mov %ax,%fs call *%ebx addl $8,%esp pop %fs pop %es pop %ds popl %ebp popl %esi popl %edi popl %edx popl %ecx popl %ebx popl %eax iret invalid_TSS: pushl $do_invalid_TSS jmp error_code segment_not_present: pushl $do_segment_not_present jmp error_code stack_segment: pushl $do_stack_segment jmp error_code general_protection: pushl $do_general_protection jmp error_code
niu0217/OperatingSystem
5,229
HGDLZJ/Library/linux-0.11/kernel/system_call.s
/* * linux/kernel/system_call.s * * (C) 1991 Linus Torvalds */ /* * system_call.s contains the system-call low-level handling routines. * This also contains the timer-interrupt handler, as some of the code is * the same. The hd- and flopppy-interrupts are also here. * * NOTE: This code handles signal-recognition, which happens every time * after a timer-interrupt and after each system call. Ordinary interrupts * don't handle signal-recognition, as that would clutter them up totally * unnecessarily. * * Stack layout in 'ret_from_system_call': * * 0(%esp) - %eax * 4(%esp) - %ebx * 8(%esp) - %ecx * C(%esp) - %edx * 10(%esp) - %fs * 14(%esp) - %es * 18(%esp) - %ds * 1C(%esp) - %eip * 20(%esp) - %cs * 24(%esp) - %eflags * 28(%esp) - %oldesp * 2C(%esp) - %oldss */ SIG_CHLD = 17 EAX = 0x00 EBX = 0x04 ECX = 0x08 EDX = 0x0C FS = 0x10 ES = 0x14 DS = 0x18 EIP = 0x1C CS = 0x20 EFLAGS = 0x24 OLDESP = 0x28 OLDSS = 0x2C state = 0 # these are offsets into the task-struct. counter = 4 priority = 8 signal = 12 sigaction = 16 # MUST be 16 (=len of sigaction) blocked = (33*16) # offsets within sigaction sa_handler = 0 sa_mask = 4 sa_flags = 8 sa_restorer = 12 nr_system_calls = 72 /* * Ok, I get parallel printer interrupts while using the floppy for some * strange reason. Urgel. Now I just ignore them. */ .globl system_call,sys_fork,timer_interrupt,sys_execve .globl hd_interrupt,floppy_interrupt,parallel_interrupt .globl device_not_available, coprocessor_error .align 2 bad_sys_call: movl $-1,%eax iret .align 2 reschedule: pushl $ret_from_sys_call jmp schedule .align 2 system_call: cmpl $nr_system_calls-1,%eax ja bad_sys_call push %ds push %es push %fs pushl %edx pushl %ecx # push %ebx,%ecx,%edx as parameters pushl %ebx # to the system call movl $0x10,%edx # set up ds,es to kernel space mov %dx,%ds mov %dx,%es movl $0x17,%edx # fs points to local data space mov %dx,%fs call sys_call_table(,%eax,4) pushl %eax movl current,%eax cmpl $0,state(%eax) # state jne reschedule cmpl $0,counter(%eax) # counter je reschedule ret_from_sys_call: movl current,%eax # task[0] cannot have signals cmpl task,%eax je 3f cmpw $0x0f,CS(%esp) # was old code segment supervisor ? jne 3f cmpw $0x17,OLDSS(%esp) # was stack segment = 0x17 ? jne 3f movl signal(%eax),%ebx movl blocked(%eax),%ecx notl %ecx andl %ebx,%ecx bsfl %ecx,%ecx je 3f btrl %ecx,%ebx movl %ebx,signal(%eax) incl %ecx pushl %ecx call do_signal popl %eax 3: popl %eax popl %ebx popl %ecx popl %edx pop %fs pop %es pop %ds iret .align 2 coprocessor_error: push %ds push %es push %fs pushl %edx pushl %ecx pushl %ebx pushl %eax movl $0x10,%eax mov %ax,%ds mov %ax,%es movl $0x17,%eax mov %ax,%fs pushl $ret_from_sys_call jmp math_error .align 2 device_not_available: push %ds push %es push %fs pushl %edx pushl %ecx pushl %ebx pushl %eax movl $0x10,%eax mov %ax,%ds mov %ax,%es movl $0x17,%eax mov %ax,%fs pushl $ret_from_sys_call clts # clear TS so that we can use math movl %cr0,%eax testl $0x4,%eax # EM (math emulation bit) je math_state_restore pushl %ebp pushl %esi pushl %edi call math_emulate popl %edi popl %esi popl %ebp ret .align 2 timer_interrupt: push %ds # save ds,es and put kernel data space push %es # into them. %fs is used by _system_call push %fs pushl %edx # we save %eax,%ecx,%edx as gcc doesn't pushl %ecx # save those across function calls. %ebx pushl %ebx # is saved as we use that in ret_sys_call pushl %eax movl $0x10,%eax mov %ax,%ds mov %ax,%es movl $0x17,%eax mov %ax,%fs incl jiffies movb $0x20,%al # EOI to interrupt controller #1 outb %al,$0x20 movl CS(%esp),%eax andl $3,%eax # %eax is CPL (0 or 3, 0=supervisor) pushl %eax call do_timer # 'do_timer(long CPL)' does everything from addl $4,%esp # task switching to accounting ... jmp ret_from_sys_call .align 2 sys_execve: lea EIP(%esp),%eax pushl %eax call do_execve addl $4,%esp ret .align 2 sys_fork: call find_empty_process testl %eax,%eax js 1f push %gs pushl %esi pushl %edi pushl %ebp pushl %eax call copy_process addl $20,%esp 1: ret hd_interrupt: pushl %eax pushl %ecx pushl %edx push %ds push %es push %fs movl $0x10,%eax mov %ax,%ds mov %ax,%es movl $0x17,%eax mov %ax,%fs movb $0x20,%al outb %al,$0xA0 # EOI to interrupt controller #1 jmp 1f # give port chance to breathe 1: jmp 1f 1: xorl %edx,%edx xchgl do_hd,%edx testl %edx,%edx jne 1f movl $unexpected_hd_interrupt,%edx 1: outb %al,$0x20 call *%edx # "interesting" way of handling intr. pop %fs pop %es pop %ds popl %edx popl %ecx popl %eax iret floppy_interrupt: pushl %eax pushl %ecx pushl %edx push %ds push %es push %fs movl $0x10,%eax mov %ax,%ds mov %ax,%es movl $0x17,%eax mov %ax,%fs movb $0x20,%al outb %al,$0x20 # EOI to interrupt controller #1 xorl %eax,%eax xchgl do_floppy,%eax testl %eax,%eax jne 1f movl $unexpected_floppy_interrupt,%eax 1: call *%eax # "interesting" way of handling intr. pop %fs pop %es pop %ds popl %edx popl %ecx popl %eax iret parallel_interrupt: pushl %eax movb $0x20,%al outb %al,$0x20 popl %eax iret
niu0217/OperatingSystem
5,451
HGDLZJ/Library/linux-0.11/boot/setup.s
! ! setup.s (C) 1991 Linus Torvalds ! ! setup.s is responsible for getting the system data from the BIOS, ! and putting them into the appropriate places in system memory. ! both setup.s and system has been loaded by the bootblock. ! ! This code asks the bios for memory/disk/other parameters, and ! puts them in a "safe" place: 0x90000-0x901FF, ie where the ! boot-block used to be. It is then up to the protected mode ! system to read them from there before the area is overwritten ! for buffer-blocks. ! ! NOTE! These had better be the same as in bootsect.s! INITSEG = 0x9000 ! we move boot here - out of the way SYSSEG = 0x1000 ! system loaded at 0x10000 (65536). SETUPSEG = 0x9020 ! this is the current segment .globl begtext, begdata, begbss, endtext, enddata, endbss .text begtext: .data begdata: .bss begbss: .text entry start start: ! ok, the read went well so we get current cursor position and save it for ! posterity. mov ax,#INITSEG ! this is done in bootsect already, but... mov ds,ax mov ah,#0x03 ! read cursor pos xor bh,bh int 0x10 ! save it in known place, con_init fetches mov [0],dx ! it from 0x90000. ! Get memory size (extended mem, kB) mov ah,#0x88 int 0x15 mov [2],ax ! Get video-card data: mov ah,#0x0f int 0x10 mov [4],bx ! bh = display page mov [6],ax ! al = video mode, ah = window width ! check for EGA/VGA and some config parameters mov ah,#0x12 mov bl,#0x10 int 0x10 mov [8],ax mov [10],bx mov [12],cx ! Get hd0 data mov ax,#0x0000 mov ds,ax lds si,[4*0x41] mov ax,#INITSEG mov es,ax mov di,#0x0080 mov cx,#0x10 rep movsb ! Get hd1 data mov ax,#0x0000 mov ds,ax lds si,[4*0x46] mov ax,#INITSEG mov es,ax mov di,#0x0090 mov cx,#0x10 rep movsb ! Check that there IS a hd1 :-) mov ax,#0x01500 mov dl,#0x81 int 0x13 jc no_disk1 cmp ah,#3 je is_disk1 no_disk1: mov ax,#INITSEG mov es,ax mov di,#0x0090 mov cx,#0x10 mov ax,#0x00 rep stosb is_disk1: ! now we want to move to protected mode ... cli ! no interrupts allowed ! ! first we move the system to it's rightful place mov ax,#0x0000 cld ! 'direction'=0, movs moves forward do_move: mov es,ax ! destination segment add ax,#0x1000 cmp ax,#0x9000 jz end_move mov ds,ax ! source segment sub di,di sub si,si mov cx,#0x8000 rep movsw jmp do_move ! then we load the segment descriptors end_move: mov ax,#SETUPSEG ! right, forgot this at first. didn't work :-) mov ds,ax lidt idt_48 ! load idt with 0,0 加载IDT寄存器 lgdt gdt_48 ! load gdt with whatever appropriate 加载GDT寄存器 ! that was painless, now we enable A20 call empty_8042 mov al,#0xD1 ! command write out #0x64,al call empty_8042 mov al,#0xDF ! A20 on out #0x60,al call empty_8042 ! well, that went ok, I hope. Now we have to reprogram the interrupts :-( ! we put them right after the intel-reserved hardware interrupts, at ! int 0x20-0x2F. There they won't mess up anything. Sadly IBM really ! messed this up with the original PC, and they haven't been able to ! rectify it afterwards. Thus the bios puts interrupts at 0x08-0x0f, ! which is used for the internal hardware interrupts as well. We just ! have to reprogram the 8259's, and it isn't fun. mov al,#0x11 ! initialization sequence out #0x20,al ! send it to 8259A-1 .word 0x00eb,0x00eb ! jmp $+2, jmp $+2 out #0xA0,al ! and to 8259A-2 .word 0x00eb,0x00eb mov al,#0x20 ! start of hardware int's (0x20) out #0x21,al .word 0x00eb,0x00eb mov al,#0x28 ! start of hardware int's 2 (0x28) out #0xA1,al .word 0x00eb,0x00eb mov al,#0x04 ! 8259-1 is master out #0x21,al .word 0x00eb,0x00eb mov al,#0x02 ! 8259-2 is slave out #0xA1,al .word 0x00eb,0x00eb mov al,#0x01 ! 8086 mode for both out #0x21,al .word 0x00eb,0x00eb out #0xA1,al .word 0x00eb,0x00eb mov al,#0xFF ! mask off all interrupts for now out #0x21,al .word 0x00eb,0x00eb out #0xA1,al ! well, that certainly wasn't fun :-(. Hopefully it works, and we don't ! need no steenking BIOS anyway (except for the initial loading :-). ! The BIOS-routine wants lots of unnecessary data, and it's less ! "interesting" anyway. This is how REAL programmers do it. ! ! Well, now's the time to actually move into protected mode. To make ! things as simple as possible, we do no register set-up or anything, ! we let the gnu-compiled 32-bit programs do that. We just jump to ! absolute address 0x00000, in 32-bit protected mode. mov ax,#0x0001 ! protected mode (PE) bit lmsw ax ! This is it! jmpi 0,8 ! jmp offset 0 of segment 8 (cs) ! This routine checks that the keyboard command queue is empty ! No timeout is used - if this hangs there is something wrong with ! the machine, and we probably couldn't proceed anyway. empty_8042: .word 0x00eb,0x00eb in al,#0x64 ! 8042 status port test al,#2 ! is input buffer full? jnz empty_8042 ! yes - loop ret gdt: ! 系统代码段描述符(208-211) 系统数据段描述符(213-216) .word 0,0,0,0 ! dummy .word 0x07FF ! 8Mb - limit=2047 (2048*4096=8Mb) .word 0x0000 ! base address=0 .word 0x9A00 ! code read/exec 代码段为可读、可执行 .word 0x00C0 ! granularity=4096, 386 .word 0x07FF ! 8Mb - limit=2047 (2048*4096=8Mb) .word 0x0000 ! base address=0 .word 0x9200 ! data read/write 数据段为可读可写 .word 0x00C0 ! granularity=4096, 386 idt_48: .word 0 ! idt limit=0 .word 0,0 ! idt base=0L gdt_48: .word 0x800 ! gdt limit=2048, 256 GDT entries .word 512+gdt,0x9 ! gdt base = 0X9xxxx .text endtext: .data enddata: .bss endbss:
niu0217/OperatingSystem
5,388
HGDLZJ/Library/linux-0.11/boot/bootsect.s
! ! SYS_SIZE is the number of clicks (16 bytes) to be loaded. ! 0x3000 is 0x30000 bytes = 196kB, more than enough for current ! versions of linux ! SYSSIZE = 0x3000 ! ! bootsect.s (C) 1991 Linus Torvalds ! ! bootsect.s is loaded at 0x7c00 by the bios-startup routines, and moves ! iself out of the way to address 0x90000, and jumps there. ! ! It then loads 'setup' directly after itself (0x90200), and the system ! at 0x10000, using BIOS interrupts. ! ! NOTE! currently system is at most 8*65536 bytes long. This should be no ! problem, even in the future. I want to keep it simple. This 512 kB ! kernel size should be enough, especially as this doesn't contain the ! buffer cache as in minix ! ! The loader has been made as simple as possible, and continuos ! read errors will result in a unbreakable loop. Reboot by hand. It ! loads pretty fast by getting whole sectors at a time whenever possible. .globl begtext, begdata, begbss, endtext, enddata, endbss ! 定义了6个全局标识符 .text begtext: .data begdata: .bss begbss: .text SETUPLEN = 4 ! nr of setup-sectors BOOTSEG = 0x07c0 ! original address of boot-sector INITSEG = 0x9000 ! we move boot here - out of the way SETUPSEG = 0x9020 ! setup starts here SYSSEG = 0x1000 ! system loaded at 0x10000 (65536). ENDSEG = SYSSEG + SYSSIZE ! where to stop loading ! ROOT_DEV: 0x000 - same type of floppy as boot. ! 0x301 - first partition on first drive etc ROOT_DEV = 0x306 entry _start _start: ! (47-56作用):将自身(bootsect)从目前段位置0x07c0(31KB)移动到0x9000(576KB)处,一共256字(512字节) mov ax,#BOOTSEG mov ds,ax mov ax,#INITSEG mov es,ax mov cx,#256 sub si,si sub di,di rep movw jmpi go,INITSEG go: mov ax,cs mov ds,ax mov es,ax ! put stack at 0x9ff00. mov ss,ax mov sp,#0xFF00 ! arbitrary value >>512 ! load the setup-sectors directly after the bootblock. ! Note that 'es' is already set up. load_setup: ! 将setup模块从磁盘的第2个扇区开始读到0x90200处 mov dx,#0x0000 ! drive 0, head 0 mov cx,#0x0002 ! sector 2, track 0 mov bx,#0x0200 ! address = 512, in INITSEG mov ax,#0x0200+SETUPLEN ! service 2, nr of sectors int 0x13 ! read it jnc ok_load_setup ! ok - continue mov dx,#0x0000 mov ax,#0x0000 ! reset the diskette int 0x13 j load_setup ok_load_setup: ! Get disk drive parameters, specifically nr of sectors/track mov dl,#0x00 mov ax,#0x0800 ! AH=8 is get drive parameters int 0x13 mov ch,#0x00 seg cs mov sectors,cx mov ax,#INITSEG mov es,ax ! Print some inane message mov ah,#0x03 ! read cursor pos xor bh,bh int 0x10 mov cx,#24 ! 共显示24个字符 mov bx,#0x0007 ! page 0, attribute 7 (normal) mov bp,#msg1 mov ax,#0x1301 ! write string, move cursor int 0x10 ! ok, we've written the message, now ! we want to load the system (at 0x10000) mov ax,#SYSSEG mov es,ax ! segment of 0x010000 call read_it ! 读磁盘上system模块,es为输入参数 call kill_motor ! 关闭驱动器马达,这样就可以知道驱动器的状态了 ! After that we check which root-device to use. If the device is ! defined (!= 0), nothing is done and the given device is used. ! Otherwise, either /dev/PS0 (2,28) or /dev/at0 (2,8), depending ! on the number of sectors that the BIOS reports currently. seg cs mov ax,root_dev ! 取508,509字节的根设备号并判断是否已经被定义 cmp ax,#0 jne root_defined seg cs mov bx,sectors mov ax,#0x0208 ! /dev/ps0 - 1.2Mb cmp bx,#15 je root_defined mov ax,#0x021c ! /dev/PS0 - 1.44Mb cmp bx,#18 je root_defined undef_root: jmp undef_root root_defined: seg cs mov root_dev,ax ! after that (everyting loaded), we jump to ! the setup-routine loaded directly after ! the bootblock: jmpi 0,SETUPSEG ! This routine loads the system at address 0x10000, making sure ! no 64kB boundaries are crossed. We try to load it as fast as ! possible, loading whole tracks whenever we can. ! ! in: es - starting address segment (normally 0x1000) ! sread: .word 1+SETUPLEN ! sectors read of current track head: .word 0 ! current head track: .word 0 ! current track read_it: mov ax,es test ax,#0x0fff die: jne die ! es must be at 64kB boundary xor bx,bx ! bx is starting address within segment rp_read: mov ax,es cmp ax,#ENDSEG ! have we loaded all yet? jb ok1_read ret ok1_read: seg cs mov ax,sectors sub ax,sread mov cx,ax shl cx,#9 add cx,bx jnc ok2_read je ok2_read xor ax,ax sub ax,bx shr ax,#9 ok2_read: call read_track mov cx,ax add ax,sread seg cs cmp ax,sectors jne ok3_read mov ax,#1 sub ax,head jne ok4_read inc track ok4_read: mov head,ax xor ax,ax ok3_read: mov sread,ax shl cx,#9 add bx,cx jnc rp_read mov ax,es add ax,#0x1000 mov es,ax xor bx,bx jmp rp_read read_track: push ax push bx push cx push dx mov dx,track mov cx,sread inc cx mov ch,dl mov dx,head mov dh,dl mov dl,#0 and dx,#0x0100 mov ah,#2 int 0x13 jc bad_rt pop dx pop cx pop bx pop ax ret bad_rt: mov ax,#0 mov dx,#0 int 0x13 pop dx pop cx pop bx pop ax jmp read_track !/* ! * This procedure turns off the floppy drive motor, so ! * that we enter the kernel in a known state, and ! * don't have to worry about it later. ! */ kill_motor: push dx mov dx,#0x3f2 mov al,#0 outb ! 将al中的内容输出到dx指定的端口中 pop dx ret sectors: .word 0 msg1: ! 调用BIOS中断显示的信息 .byte 13,10 ! 回车换行的ASCII码 .ascii "Loading system ..." .byte 13,10,13,10 ! 一共24个字符 .org 508 root_dev: .word ROOT_DEV ! 这里存放根文件系统所在设备号(init/main.c中会用) boot_flag: .word 0xAA55 .text endtext: .data enddata: .bss endbss:
niu0217/OperatingSystem
6,085
HGDLZJ/Library/linux-0.11/boot/head.s
/* * linux/boot/head.s * * (C) 1991 Linus Torvalds */ /* * head.s contains the 32-bit startup code. * * NOTE!!! Startup happens at absolute address 0x00000000, which is also where * the page directory will exist. The startup code will be overwritten by * the page directory. */ .text .globl idt,gdt,pg_dir,tmp_floppy_area pg_dir: # 页目录会存放在这里 .globl startup_32 startup_32: # 19-23设置各个数据段寄存器 movl $0x10,%eax mov %ax,%ds mov %ax,%es mov %ax,%fs mov %ax,%gs lss stack_start,%esp call setup_idt # 调用设置中断描述符表子程序 call setup_gdt # 调用设置全局描述符表子程序 movl $0x10,%eax # reload all the segment registers mov %ax,%ds # after changing gdt. CS was already mov %ax,%es # reloaded in 'setup_gdt' mov %ax,%fs mov %ax,%gs lss stack_start,%esp xorl %eax,%eax 1: incl %eax # check that A20 really IS enabled movl %eax,0x000000 # loop forever if it isn't cmpl %eax,0x100000 je 1b /* * NOTE! 486 should set bit 16, to check for write-protect in supervisor * mode. Then it would be unnecessary with the "verify_area()"-calls. * 486 users probably want to set the NE (#5) bit also, so as to use * int 16 for math errors. */ movl %cr0,%eax # check math chip andl $0x80000011,%eax # Save PG,PE,ET /* "orl $0x10020,%eax" here for 486 might be good */ orl $2,%eax # set MP movl %eax,%cr0 call check_x87 jmp after_page_tables /* * We depend on ET to be correct. This checks for 287/387. */ check_x87: fninit fstsw %ax cmpb $0,%al je 1f /* no coprocessor: have to set bits */ movl %cr0,%eax xorl $6,%eax /* reset MP, set EM */ movl %eax,%cr0 ret .align 2 1: .byte 0xDB,0xE4 /* fsetpm for 287, ignored by 387 */ ret /* * setup_idt * * sets up a idt with 256 entries pointing to * ignore_int, interrupt gates. It then loads * idt. Everything that wants to install itself * in the idt-table may do so themselves. Interrupts * are enabled elsewhere, when we can be relatively * sure everything is ok. This routine will be over- * written by the page tables. */ setup_idt: lea ignore_int,%edx movl $0x00080000,%eax movw %dx,%ax /* selector = 0x0008 = cs */ movw $0x8E00,%dx /* interrupt gate - dpl=0, present */ lea idt,%edi mov $256,%ecx rp_sidt: movl %eax,(%edi) movl %edx,4(%edi) addl $8,%edi dec %ecx jne rp_sidt lidt idt_descr ret /* * setup_gdt * * This routines sets up a new gdt and loads it. * Only two entries are currently built, the same * ones that were built in init.s. The routine * is VERY complicated at two whole lines, so this * rather long comment is certainly needed :-). * This routine will beoverwritten by the page tables. */ setup_gdt: lgdt gdt_descr ret /* * I put the kernel page tables right after the page directory, * using 4 of them to span 16 Mb of physical memory. People with * more than 16MB will have to expand this. */ .org 0x1000 # 从偏移0x1000处开始是第1个页表(偏移0处将存放页表目录) pg0: .org 0x2000 pg1: .org 0x3000 pg2: .org 0x4000 pg3: .org 0x5000 # 定义下面的内存数据块从偏移0x5000处开始 /* * tmp_floppy_area is used by the floppy-driver when DMA cannot * reach to a buffer-block. It needs to be aligned, so that it isn't * on a 64kB border. */ tmp_floppy_area: .fill 1024,1,0 after_page_tables: pushl $0 # These are the parameters to main :-) pushl $0 pushl $0 pushl $L6 # return address for main, if it decides to. pushl $main jmp setup_paging L6: jmp L6 # main should never return here, but # just in case, we know what happens. /* This is the default interrupt "handler" :-) */ int_msg: .asciz "Unknown interrupt\n\r" .align 2 ignore_int: pushl %eax pushl %ecx pushl %edx push %ds push %es push %fs movl $0x10,%eax mov %ax,%ds mov %ax,%es mov %ax,%fs pushl $int_msg call printk popl %eax pop %fs pop %es pop %ds popl %edx popl %ecx popl %eax iret /* * Setup_paging * * This routine sets up paging by setting the page bit * in cr0. The page tables are set up, identity-mapping * the first 16MB. The pager assumes that no illegal * addresses are produced (ie >4Mb on a 4Mb machine). * * NOTE! Although all physical memory should be identity * mapped by this routine, only the kernel page functions * use the >1Mb addresses directly. All "normal" functions * use just the lower 1Mb, or the local data space, which * will be mapped to some other place - mm keeps track of * that. * * For those with more memory than 16 Mb - tough luck. I've * not got it, why should you :-) The source is here. Change * it. (Seriously - it shouldn't be too difficult. Mostly * change some constants etc. I left it at 16Mb, as my machine * even cannot be extended past that (ok, but it was cheap :-) * I've tried to show which constants to change by having * some kind of marker at them (search for "16Mb"), but I * won't guarantee that's all :-( ) */ .align 2 setup_paging: movl $1024*5,%ecx /* 5 pages - pg_dir+4 page tables */ xorl %eax,%eax xorl %edi,%edi /* pg_dir is at 0x000 */ cld;rep;stosl movl $pg0+7,pg_dir /* set present bit/user r/w */ movl $pg1+7,pg_dir+4 /* --------- " " --------- */ movl $pg2+7,pg_dir+8 /* --------- " " --------- */ movl $pg3+7,pg_dir+12 /* --------- " " --------- */ movl $pg3+4092,%edi movl $0xfff007,%eax /* 16Mb - 4096 + 7 (r/w user,p) */ std 1: stosl /* fill pages backwards - more efficient :-) */ subl $0x1000,%eax jge 1b xorl %eax,%eax /* pg_dir is at 0x0000 */ movl %eax,%cr3 /* cr3 - page directory start */ movl %cr0,%eax orl $0x80000000,%eax movl %eax,%cr0 /* set paging (PG) bit */ ret /* this also flushes prefetch-queue */ .align 2 .word 0 idt_descr: .word 256*8-1 # idt contains 256 entries .long idt .align 2 .word 0 gdt_descr: .word 256*8-1 # so does gdt (not that that's any .long gdt # magic number, but it works for me :^) .align 8 idt: .fill 256,8,0 # idt is uninitialized gdt: .quad 0x0000000000000000 /* NULL descriptor */ .quad 0x00c09a0000000fff /* 16Mb */ .quad 0x00c0920000000fff /* 16Mb */ .quad 0x0000000000000000 /* TEMPORARY - don't use */ .fill 252,8,0 /* space for LDT's and TSS's etc */
niu0217/OperatingSystem
12,774
HGDLZJ/Library/linux-0.11/kernel/chr_drv/keyboard.S
/* * linux/kernel/keyboard.S * * (C) 1991 Linus Torvalds */ /* * Thanks to Alfred Leung for US keyboard patches * Wolfgang Thiel for German keyboard patches * Marc Corsini for the French keyboard */ #include <linux/config.h> .text .globl keyboard_interrupt /* * these are for the keyboard read functions */ size = 1024 /* must be a power of two ! And MUST be the same as in tty_io.c !!!! */ head = 4 tail = 8 proc_list = 12 buf = 16 mode: .byte 0 /* caps, alt, ctrl and shift mode */ leds: .byte 2 /* num-lock, caps, scroll-lock mode (nom-lock on) */ e0: .byte 0 /* * con_int is the real interrupt routine that reads the * keyboard scan-code and converts it into the appropriate * ascii character(s). */ keyboard_interrupt: pushl %eax pushl %ebx pushl %ecx pushl %edx push %ds push %es movl $0x10,%eax mov %ax,%ds mov %ax,%es xor %al,%al /* %eax is scan code */ inb $0x60,%al cmpb $0xe0,%al je set_e0 cmpb $0xe1,%al je set_e1 call key_table(,%eax,4) movb $0,e0 e0_e1: inb $0x61,%al jmp 1f 1: jmp 1f 1: orb $0x80,%al jmp 1f 1: jmp 1f 1: outb %al,$0x61 jmp 1f 1: jmp 1f 1: andb $0x7F,%al outb %al,$0x61 movb $0x20,%al outb %al,$0x20 pushl $0 call do_tty_interrupt addl $4,%esp pop %es pop %ds popl %edx popl %ecx popl %ebx popl %eax iret set_e0: movb $1,e0 jmp e0_e1 set_e1: movb $2,e0 jmp e0_e1 /* * This routine fills the buffer with max 8 bytes, taken from * %ebx:%eax. (%edx is high). The bytes are written in the * order %al,%ah,%eal,%eah,%bl,%bh ... until %eax is zero. */ put_queue: pushl %ecx pushl %edx movl table_list,%edx # read-queue for console movl head(%edx),%ecx 1: movb %al,buf(%edx,%ecx) incl %ecx andl $size-1,%ecx cmpl tail(%edx),%ecx # buffer full - discard everything je 3f shrdl $8,%ebx,%eax je 2f shrl $8,%ebx jmp 1b 2: movl %ecx,head(%edx) movl proc_list(%edx),%ecx testl %ecx,%ecx je 3f movl $0,(%ecx) 3: popl %edx popl %ecx ret ctrl: movb $0x04,%al jmp 1f alt: movb $0x10,%al 1: cmpb $0,e0 je 2f addb %al,%al 2: orb %al,mode ret unctrl: movb $0x04,%al jmp 1f unalt: movb $0x10,%al 1: cmpb $0,e0 je 2f addb %al,%al 2: notb %al andb %al,mode ret lshift: orb $0x01,mode ret unlshift: andb $0xfe,mode ret rshift: orb $0x02,mode ret unrshift: andb $0xfd,mode ret caps: testb $0x80,mode jne 1f xorb $4,leds xorb $0x40,mode orb $0x80,mode set_leds: call kb_wait movb $0xed,%al /* set leds command */ outb %al,$0x60 call kb_wait movb leds,%al outb %al,$0x60 ret uncaps: andb $0x7f,mode ret scroll: xorb $1,leds jmp set_leds num: xorb $2,leds jmp set_leds /* * curosr-key/numeric keypad cursor keys are handled here. * checking for numeric keypad etc. */ cursor: subb $0x47,%al jb 1f cmpb $12,%al ja 1f jne cur2 /* check for ctrl-alt-del */ testb $0x0c,mode je cur2 testb $0x30,mode jne reboot cur2: cmpb $0x01,e0 /* e0 forces cursor movement */ je cur testb $0x02,leds /* not num-lock forces cursor */ je cur testb $0x03,mode /* shift forces cursor */ jne cur xorl %ebx,%ebx movb num_table(%eax),%al jmp put_queue 1: ret cur: movb cur_table(%eax),%al cmpb $'9,%al ja ok_cur movb $'~,%ah ok_cur: shll $16,%eax movw $0x5b1b,%ax xorl %ebx,%ebx jmp put_queue #if defined(KBD_FR) num_table: .ascii "789 456 1230." #else num_table: .ascii "789 456 1230," #endif cur_table: .ascii "HA5 DGC YB623" /* * this routine handles function keys */ func: pushl %eax pushl %ecx pushl %edx call show_stat popl %edx popl %ecx popl %eax subb $0x3B,%al jb end_func cmpb $9,%al jbe ok_func subb $18,%al cmpb $10,%al jb end_func cmpb $11,%al ja end_func ok_func: cmpl $4,%ecx /* check that there is enough room */ jl end_func movl func_table(,%eax,4),%eax xorl %ebx,%ebx jmp put_queue end_func: ret /* * function keys send F1:'esc [ [ A' F2:'esc [ [ B' etc. */ func_table: .long 0x415b5b1b,0x425b5b1b,0x435b5b1b,0x445b5b1b .long 0x455b5b1b,0x465b5b1b,0x475b5b1b,0x485b5b1b .long 0x495b5b1b,0x4a5b5b1b,0x4b5b5b1b,0x4c5b5b1b #if defined(KBD_FINNISH) key_map: .byte 0,27 .ascii "1234567890+'" .byte 127,9 .ascii "qwertyuiop}" .byte 0,13,0 .ascii "asdfghjkl|{" .byte 0,0 .ascii "'zxcvbnm,.-" .byte 0,'*,0,32 /* 36-39 */ .fill 16,1,0 /* 3A-49 */ .byte '-,0,0,0,'+ /* 4A-4E */ .byte 0,0,0,0,0,0,0 /* 4F-55 */ .byte '< .fill 10,1,0 shift_map: .byte 0,27 .ascii "!\"#$%&/()=?`" .byte 127,9 .ascii "QWERTYUIOP]^" .byte 13,0 .ascii "ASDFGHJKL\\[" .byte 0,0 .ascii "*ZXCVBNM;:_" .byte 0,'*,0,32 /* 36-39 */ .fill 16,1,0 /* 3A-49 */ .byte '-,0,0,0,'+ /* 4A-4E */ .byte 0,0,0,0,0,0,0 /* 4F-55 */ .byte '> .fill 10,1,0 alt_map: .byte 0,0 .ascii "\0@\0$\0\0{[]}\\\0" .byte 0,0 .byte 0,0,0,0,0,0,0,0,0,0,0 .byte '~,13,0 .byte 0,0,0,0,0,0,0,0,0,0,0 .byte 0,0 .byte 0,0,0,0,0,0,0,0,0,0,0 .byte 0,0,0,0 /* 36-39 */ .fill 16,1,0 /* 3A-49 */ .byte 0,0,0,0,0 /* 4A-4E */ .byte 0,0,0,0,0,0,0 /* 4F-55 */ .byte '| .fill 10,1,0 #elif defined(KBD_US) key_map: .byte 0,27 .ascii "1234567890-=" .byte 127,9 .ascii "qwertyuiop[]" .byte 13,0 .ascii "asdfghjkl;'" .byte '`,0 .ascii "\\zxcvbnm,./" .byte 0,'*,0,32 /* 36-39 */ .fill 16,1,0 /* 3A-49 */ .byte '-,0,0,0,'+ /* 4A-4E */ .byte 0,0,0,0,0,0,0 /* 4F-55 */ .byte '< .fill 10,1,0 shift_map: .byte 0,27 .ascii "!@#$%^&*()_+" .byte 127,9 .ascii "QWERTYUIOP{}" .byte 13,0 .ascii "ASDFGHJKL:\"" .byte '~,0 .ascii "|ZXCVBNM<>?" .byte 0,'*,0,32 /* 36-39 */ .fill 16,1,0 /* 3A-49 */ .byte '-,0,0,0,'+ /* 4A-4E */ .byte 0,0,0,0,0,0,0 /* 4F-55 */ .byte '> .fill 10,1,0 alt_map: .byte 0,0 .ascii "\0@\0$\0\0{[]}\\\0" .byte 0,0 .byte 0,0,0,0,0,0,0,0,0,0,0 .byte '~,13,0 .byte 0,0,0,0,0,0,0,0,0,0,0 .byte 0,0 .byte 0,0,0,0,0,0,0,0,0,0,0 .byte 0,0,0,0 /* 36-39 */ .fill 16,1,0 /* 3A-49 */ .byte 0,0,0,0,0 /* 4A-4E */ .byte 0,0,0,0,0,0,0 /* 4F-55 */ .byte '| .fill 10,1,0 #elif defined(KBD_GR) key_map: .byte 0,27 .ascii "1234567890\\'" .byte 127,9 .ascii "qwertzuiop@+" .byte 13,0 .ascii "asdfghjkl[]^" .byte 0,'# .ascii "yxcvbnm,.-" .byte 0,'*,0,32 /* 36-39 */ .fill 16,1,0 /* 3A-49 */ .byte '-,0,0,0,'+ /* 4A-4E */ .byte 0,0,0,0,0,0,0 /* 4F-55 */ .byte '< .fill 10,1,0 shift_map: .byte 0,27 .ascii "!\"#$%&/()=?`" .byte 127,9 .ascii "QWERTZUIOP\\*" .byte 13,0 .ascii "ASDFGHJKL{}~" .byte 0,'' .ascii "YXCVBNM;:_" .byte 0,'*,0,32 /* 36-39 */ .fill 16,1,0 /* 3A-49 */ .byte '-,0,0,0,'+ /* 4A-4E */ .byte 0,0,0,0,0,0,0 /* 4F-55 */ .byte '> .fill 10,1,0 alt_map: .byte 0,0 .ascii "\0@\0$\0\0{[]}\\\0" .byte 0,0 .byte '@,0,0,0,0,0,0,0,0,0,0 .byte '~,13,0 .byte 0,0,0,0,0,0,0,0,0,0,0 .byte 0,0 .byte 0,0,0,0,0,0,0,0,0,0,0 .byte 0,0,0,0 /* 36-39 */ .fill 16,1,0 /* 3A-49 */ .byte 0,0,0,0,0 /* 4A-4E */ .byte 0,0,0,0,0,0,0 /* 4F-55 */ .byte '| .fill 10,1,0 #elif defined(KBD_FR) key_map: .byte 0,27 .ascii "&{\"'(-}_/@)=" .byte 127,9 .ascii "azertyuiop^$" .byte 13,0 .ascii "qsdfghjklm|" .byte '`,0,42 /* coin sup gauche, don't know, [*|mu] */ .ascii "wxcvbn,;:!" .byte 0,'*,0,32 /* 36-39 */ .fill 16,1,0 /* 3A-49 */ .byte '-,0,0,0,'+ /* 4A-4E */ .byte 0,0,0,0,0,0,0 /* 4F-55 */ .byte '< .fill 10,1,0 shift_map: .byte 0,27 .ascii "1234567890]+" .byte 127,9 .ascii "AZERTYUIOP<>" .byte 13,0 .ascii "QSDFGHJKLM%" .byte '~,0,'# .ascii "WXCVBN?./\\" .byte 0,'*,0,32 /* 36-39 */ .fill 16,1,0 /* 3A-49 */ .byte '-,0,0,0,'+ /* 4A-4E */ .byte 0,0,0,0,0,0,0 /* 4F-55 */ .byte '> .fill 10,1,0 alt_map: .byte 0,0 .ascii "\0~#{[|`\\^@]}" .byte 0,0 .byte '@,0,0,0,0,0,0,0,0,0,0 .byte '~,13,0 .byte 0,0,0,0,0,0,0,0,0,0,0 .byte 0,0 .byte 0,0,0,0,0,0,0,0,0,0,0 .byte 0,0,0,0 /* 36-39 */ .fill 16,1,0 /* 3A-49 */ .byte 0,0,0,0,0 /* 4A-4E */ .byte 0,0,0,0,0,0,0 /* 4F-55 */ .byte '| .fill 10,1,0 #else #error "KBD-type not defined" #endif /* * do_self handles "normal" keys, ie keys that don't change meaning * and which have just one character returns. */ do_self: lea alt_map,%ebx testb $0x20,mode /* alt-gr */ jne 1f lea shift_map,%ebx testb $0x03,mode jne 1f lea key_map,%ebx 1: movb (%ebx,%eax),%al orb %al,%al je none testb $0x4c,mode /* ctrl or caps */ je 2f cmpb $'a,%al jb 2f cmpb $'},%al ja 2f subb $32,%al 2: testb $0x0c,mode /* ctrl */ je 3f cmpb $64,%al jb 3f cmpb $64+32,%al jae 3f subb $64,%al 3: testb $0x10,mode /* left alt */ je 4f orb $0x80,%al 4: andl $0xff,%eax xorl %ebx,%ebx call put_queue none: ret /* * minus has a routine of it's own, as a 'E0h' before * the scan code for minus means that the numeric keypad * slash was pushed. */ minus: cmpb $1,e0 jne do_self movl $'/,%eax xorl %ebx,%ebx jmp put_queue /* * This table decides which routine to call when a scan-code has been * gotten. Most routines just call do_self, or none, depending if * they are make or break. */ key_table: .long none,do_self,do_self,do_self /* 00-03 s0 esc 1 2 */ .long do_self,do_self,do_self,do_self /* 04-07 3 4 5 6 */ .long do_self,do_self,do_self,do_self /* 08-0B 7 8 9 0 */ .long do_self,do_self,do_self,do_self /* 0C-0F + ' bs tab */ .long do_self,do_self,do_self,do_self /* 10-13 q w e r */ .long do_self,do_self,do_self,do_self /* 14-17 t y u i */ .long do_self,do_self,do_self,do_self /* 18-1B o p } ^ */ .long do_self,ctrl,do_self,do_self /* 1C-1F enter ctrl a s */ .long do_self,do_self,do_self,do_self /* 20-23 d f g h */ .long do_self,do_self,do_self,do_self /* 24-27 j k l | */ .long do_self,do_self,lshift,do_self /* 28-2B { para lshift , */ .long do_self,do_self,do_self,do_self /* 2C-2F z x c v */ .long do_self,do_self,do_self,do_self /* 30-33 b n m , */ .long do_self,minus,rshift,do_self /* 34-37 . - rshift * */ .long alt,do_self,caps,func /* 38-3B alt sp caps f1 */ .long func,func,func,func /* 3C-3F f2 f3 f4 f5 */ .long func,func,func,func /* 40-43 f6 f7 f8 f9 */ .long func,num,scroll,cursor /* 44-47 f10 num scr home */ .long cursor,cursor,do_self,cursor /* 48-4B up pgup - left */ .long cursor,cursor,do_self,cursor /* 4C-4F n5 right + end */ .long cursor,cursor,cursor,cursor /* 50-53 dn pgdn ins del */ .long none,none,do_self,func /* 54-57 sysreq ? < f11 */ .long func,none,none,none /* 58-5B f12 ? ? ? */ .long none,none,none,none /* 5C-5F ? ? ? ? */ .long none,none,none,none /* 60-63 ? ? ? ? */ .long none,none,none,none /* 64-67 ? ? ? ? */ .long none,none,none,none /* 68-6B ? ? ? ? */ .long none,none,none,none /* 6C-6F ? ? ? ? */ .long none,none,none,none /* 70-73 ? ? ? ? */ .long none,none,none,none /* 74-77 ? ? ? ? */ .long none,none,none,none /* 78-7B ? ? ? ? */ .long none,none,none,none /* 7C-7F ? ? ? ? */ .long none,none,none,none /* 80-83 ? br br br */ .long none,none,none,none /* 84-87 br br br br */ .long none,none,none,none /* 88-8B br br br br */ .long none,none,none,none /* 8C-8F br br br br */ .long none,none,none,none /* 90-93 br br br br */ .long none,none,none,none /* 94-97 br br br br */ .long none,none,none,none /* 98-9B br br br br */ .long none,unctrl,none,none /* 9C-9F br unctrl br br */ .long none,none,none,none /* A0-A3 br br br br */ .long none,none,none,none /* A4-A7 br br br br */ .long none,none,unlshift,none /* A8-AB br br unlshift br */ .long none,none,none,none /* AC-AF br br br br */ .long none,none,none,none /* B0-B3 br br br br */ .long none,none,unrshift,none /* B4-B7 br br unrshift br */ .long unalt,none,uncaps,none /* B8-BB unalt br uncaps br */ .long none,none,none,none /* BC-BF br br br br */ .long none,none,none,none /* C0-C3 br br br br */ .long none,none,none,none /* C4-C7 br br br br */ .long none,none,none,none /* C8-CB br br br br */ .long none,none,none,none /* CC-CF br br br br */ .long none,none,none,none /* D0-D3 br br br br */ .long none,none,none,none /* D4-D7 br br br br */ .long none,none,none,none /* D8-DB br ? ? ? */ .long none,none,none,none /* DC-DF ? ? ? ? */ .long none,none,none,none /* E0-E3 e0 e1 ? ? */ .long none,none,none,none /* E4-E7 ? ? ? ? */ .long none,none,none,none /* E8-EB ? ? ? ? */ .long none,none,none,none /* EC-EF ? ? ? ? */ .long none,none,none,none /* F0-F3 ? ? ? ? */ .long none,none,none,none /* F4-F7 ? ? ? ? */ .long none,none,none,none /* F8-FB ? ? ? ? */ .long none,none,none,none /* FC-FF ? ? ? ? */ /* * kb_wait waits for the keyboard controller buffer to empty. * there is no timeout - if the buffer doesn't empty, we hang. */ kb_wait: pushl %eax 1: inb $0x64,%al testb $0x02,%al jne 1b popl %eax ret /* * This routine reboots the machine by asking the keyboard * controller to pulse the reset-line low. */ reboot: call kb_wait movw $0x1234,0x472 /* don't do memory check */ movb $0xfc,%al /* pulse reset and A20 low */ outb %al,$0x64 die: jmp die
niu0217/OperatingSystem
2,710
HGDLZJ/Library/linux-0.11/kernel/chr_drv/rs_io.s
/* * linux/kernel/rs_io.s * * (C) 1991 Linus Torvalds */ /* * rs_io.s * * This module implements the rs232 io interrupts. */ .text .globl rs1_interrupt,rs2_interrupt size = 1024 /* must be power of two ! and must match the value in tty_io.c!!! */ /* these are the offsets into the read/write buffer structures */ rs_addr = 0 head = 4 tail = 8 proc_list = 12 buf = 16 startup = 256 /* chars left in write queue when we restart it */ /* * These are the actual interrupt routines. They look where * the interrupt is coming from, and take appropriate action. */ .align 2 rs1_interrupt: pushl $table_list+8 jmp rs_int .align 2 rs2_interrupt: pushl $table_list+16 rs_int: pushl %edx pushl %ecx pushl %ebx pushl %eax push %es push %ds /* as this is an interrupt, we cannot */ pushl $0x10 /* know that bs is ok. Load it */ pop %ds pushl $0x10 pop %es movl 24(%esp),%edx movl (%edx),%edx movl rs_addr(%edx),%edx addl $2,%edx /* interrupt ident. reg */ rep_int: xorl %eax,%eax inb %dx,%al testb $1,%al jne end cmpb $6,%al /* this shouldn't happen, but ... */ ja end movl 24(%esp),%ecx pushl %edx subl $2,%edx call jmp_table(,%eax,2) /* NOTE! not *4, bit0 is 0 already */ popl %edx jmp rep_int end: movb $0x20,%al outb %al,$0x20 /* EOI */ pop %ds pop %es popl %eax popl %ebx popl %ecx popl %edx addl $4,%esp # jump over _table_list entry iret jmp_table: .long modem_status,write_char,read_char,line_status .align 2 modem_status: addl $6,%edx /* clear intr by reading modem status reg */ inb %dx,%al ret .align 2 line_status: addl $5,%edx /* clear intr by reading line status reg. */ inb %dx,%al ret .align 2 read_char: inb %dx,%al movl %ecx,%edx subl $table_list,%edx shrl $3,%edx movl (%ecx),%ecx # read-queue movl head(%ecx),%ebx movb %al,buf(%ecx,%ebx) incl %ebx andl $size-1,%ebx cmpl tail(%ecx),%ebx je 1f movl %ebx,head(%ecx) 1: pushl %edx call do_tty_interrupt addl $4,%esp ret .align 2 write_char: movl 4(%ecx),%ecx # write-queue movl head(%ecx),%ebx subl tail(%ecx),%ebx andl $size-1,%ebx # nr chars in queue je write_buffer_empty cmpl $startup,%ebx ja 1f movl proc_list(%ecx),%ebx # wake up sleeping process testl %ebx,%ebx # is there any? je 1f movl $0,(%ebx) 1: movl tail(%ecx),%ebx movb buf(%ecx,%ebx),%al outb %al,%dx incl %ebx andl $size-1,%ebx movl %ebx,tail(%ecx) cmpl head(%ecx),%ebx je write_buffer_empty ret .align 2 write_buffer_empty: movl proc_list(%ecx),%ebx # wake up sleeping process testl %ebx,%ebx # is there any? je 1f movl $0,(%ebx) 1: incl %edx inb %dx,%al jmp 1f 1: jmp 1f 1: andb $0xd,%al /* disable transmit interrupt */ outb %al,%dx ret
niu0217/OperatingSystem
1,210
IntroductionToOS/Sources/homework/threads-locks/peterson.s
# array of 2 integers (each size 4 bytes) # load address of flag into fx register # access flag[] with 0(%fx,%index,4) # where %index is a register holding 0 or 1 # index reg contains 0 -> flag[0], if 1->flag[1] .var flag 2 # global turn variable .var turn # global count .var count .main # put address of flag into fx lea flag, %fx # assume thread ID is in bx (0 or 1, scale by 4 to get proper flag address) mov %bx, %cx # bx: self, now copies to cx neg %cx # cx: - self add $1, %cx # cx: 1 - self .acquire mov $1, 0(%fx,%bx,4) # flag[self] = 1 mov %cx, turn # turn = 1 - self .spin1 mov 0(%fx,%cx,4), %ax # flag[1-self] test $1, %ax jne .fini # if flag[1-self] != 1, skip past loop to .fini .spin2 # just labeled for fun, not needed mov turn, %ax test %cx, %ax # compare 'turn' and '1 - self' je .spin1 # if turn==1-self, go back and start spin again # fall out of spin .fini # do critical section now mov count, %ax add $1, %ax mov %ax, count .release mov $0, 0(%fx,%bx,4) # flag[self] = 0 # end case: make sure it's other's turn mov %cx, turn # turn = 1 - self halt
Northeastern-Electric-Racing/Iroh
12,523
startup_stm32g431xx.s
/** ****************************************************************************** * @file startup_stm32g431xx.s * @author MCD Application Team * @brief STM32G431xx devices vector table GCC toolchain. * This module performs: * - Set the initial SP * - Set the initial PC == Reset_Handler, * - Set the vector table entries with the exceptions ISR address, * - Configure the clock system * - Branches to main in the C library (which eventually * calls main()). * After Reset the Cortex-M4 processor is in Thread mode, * priority is Privileged, and the Stack is set to Main. ****************************************************************************** * @attention * * Copyright (c) 2019 STMicroelectronics. * All rights reserved. * * This software is licensed under terms that can be found in the LICENSE file * in the root directory of this software component. * If no LICENSE file comes with this software, it is provided AS-IS. * ****************************************************************************** */ .syntax unified .cpu cortex-m4 .fpu softvfp .thumb .global g_pfnVectors .global Default_Handler /* start address for the initialization values of the .data section. defined in linker script */ .word _sidata /* start address for the .data section. defined in linker script */ .word _sdata /* end address for the .data section. defined in linker script */ .word _edata /* start address for the .bss section. defined in linker script */ .word _sbss /* end address for the .bss section. defined in linker script */ .word _ebss .equ BootRAM, 0xF1E0F85F /** * @brief This is the code that gets called when the processor first * starts execution following a reset event. Only the absolutely * necessary set is performed, after which the application * supplied main() routine is called. * @param None * @retval : None */ .section .text.Reset_Handler .weak Reset_Handler .type Reset_Handler, %function Reset_Handler: ldr r0, =_estack mov sp, r0 /* set stack pointer */ /* Call the clock system initialization function.*/ bl SystemInit /* Copy the data segment initializers from flash to SRAM */ ldr r0, =_sdata ldr r1, =_edata ldr r2, =_sidata movs r3, #0 b LoopCopyDataInit CopyDataInit: ldr r4, [r2, r3] str r4, [r0, r3] adds r3, r3, #4 LoopCopyDataInit: adds r4, r0, r3 cmp r4, r1 bcc CopyDataInit /* Zero fill the bss segment. */ ldr r2, =_sbss ldr r4, =_ebss movs r3, #0 b LoopFillZerobss FillZerobss: str r3, [r2] adds r2, r2, #4 LoopFillZerobss: cmp r2, r4 bcc FillZerobss /* Call static constructors */ bl __libc_init_array /* Call the application's entry point.*/ bl main LoopForever: b LoopForever .size Reset_Handler, .-Reset_Handler /** * @brief This is the code that gets called when the processor receives an * unexpected interrupt. This simply enters an infinite loop, preserving * the system state for examination by a debugger. * * @param None * @retval : None */ .section .text.Default_Handler,"ax",%progbits Default_Handler: Infinite_Loop: b Infinite_Loop .size Default_Handler, .-Default_Handler /****************************************************************************** * * The minimal vector table for a Cortex-M4. Note that the proper constructs * must be placed on this to ensure that it ends up at physical address * 0x0000.0000. * ******************************************************************************/ .section .isr_vector,"a",%progbits .type g_pfnVectors, %object g_pfnVectors: .word _estack .word Reset_Handler .word NMI_Handler .word HardFault_Handler .word MemManage_Handler .word BusFault_Handler .word UsageFault_Handler .word 0 .word 0 .word 0 .word 0 .word SVC_Handler .word DebugMon_Handler .word 0 .word PendSV_Handler .word SysTick_Handler .word WWDG_IRQHandler .word PVD_PVM_IRQHandler .word RTC_TAMP_LSECSS_IRQHandler .word RTC_WKUP_IRQHandler .word FLASH_IRQHandler .word RCC_IRQHandler .word EXTI0_IRQHandler .word EXTI1_IRQHandler .word EXTI2_IRQHandler .word EXTI3_IRQHandler .word EXTI4_IRQHandler .word DMA1_Channel1_IRQHandler .word DMA1_Channel2_IRQHandler .word DMA1_Channel3_IRQHandler .word DMA1_Channel4_IRQHandler .word DMA1_Channel5_IRQHandler .word DMA1_Channel6_IRQHandler .word 0 .word ADC1_2_IRQHandler .word USB_HP_IRQHandler .word USB_LP_IRQHandler .word FDCAN1_IT0_IRQHandler .word FDCAN1_IT1_IRQHandler .word EXTI9_5_IRQHandler .word TIM1_BRK_TIM15_IRQHandler .word TIM1_UP_TIM16_IRQHandler .word TIM1_TRG_COM_TIM17_IRQHandler .word TIM1_CC_IRQHandler .word TIM2_IRQHandler .word TIM3_IRQHandler .word TIM4_IRQHandler .word I2C1_EV_IRQHandler .word I2C1_ER_IRQHandler .word I2C2_EV_IRQHandler .word I2C2_ER_IRQHandler .word SPI1_IRQHandler .word SPI2_IRQHandler .word USART1_IRQHandler .word USART2_IRQHandler .word USART3_IRQHandler .word EXTI15_10_IRQHandler .word RTC_Alarm_IRQHandler .word USBWakeUp_IRQHandler .word TIM8_BRK_IRQHandler .word TIM8_UP_IRQHandler .word TIM8_TRG_COM_IRQHandler .word TIM8_CC_IRQHandler .word 0 .word 0 .word LPTIM1_IRQHandler .word 0 .word SPI3_IRQHandler .word UART4_IRQHandler .word 0 .word TIM6_DAC_IRQHandler .word TIM7_IRQHandler .word DMA2_Channel1_IRQHandler .word DMA2_Channel2_IRQHandler .word DMA2_Channel3_IRQHandler .word DMA2_Channel4_IRQHandler .word DMA2_Channel5_IRQHandler .word 0 .word 0 .word UCPD1_IRQHandler .word COMP1_2_3_IRQHandler .word COMP4_IRQHandler .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word CRS_IRQHandler .word SAI1_IRQHandler .word 0 .word 0 .word 0 .word 0 .word FPU_IRQHandler .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word RNG_IRQHandler .word LPUART1_IRQHandler .word I2C3_EV_IRQHandler .word I2C3_ER_IRQHandler .word DMAMUX_OVR_IRQHandler .word 0 .word 0 .word DMA2_Channel6_IRQHandler .word 0 .word 0 .word CORDIC_IRQHandler .word FMAC_IRQHandler .size g_pfnVectors, .-g_pfnVectors /******************************************************************************* * * Provide weak aliases for each Exception handler to the Default_Handler. * As they are weak aliases, any function with the same name will override * this definition. * *******************************************************************************/ .weak NMI_Handler .thumb_set NMI_Handler,Default_Handler .weak HardFault_Handler .thumb_set HardFault_Handler,Default_Handler .weak MemManage_Handler .thumb_set MemManage_Handler,Default_Handler .weak BusFault_Handler .thumb_set BusFault_Handler,Default_Handler .weak UsageFault_Handler .thumb_set UsageFault_Handler,Default_Handler .weak SVC_Handler .thumb_set SVC_Handler,Default_Handler .weak DebugMon_Handler .thumb_set DebugMon_Handler,Default_Handler .weak PendSV_Handler .thumb_set PendSV_Handler,Default_Handler .weak SysTick_Handler .thumb_set SysTick_Handler,Default_Handler .weak WWDG_IRQHandler .thumb_set WWDG_IRQHandler,Default_Handler .weak PVD_PVM_IRQHandler .thumb_set PVD_PVM_IRQHandler,Default_Handler .weak RTC_TAMP_LSECSS_IRQHandler .thumb_set RTC_TAMP_LSECSS_IRQHandler,Default_Handler .weak RTC_WKUP_IRQHandler .thumb_set RTC_WKUP_IRQHandler,Default_Handler .weak FLASH_IRQHandler .thumb_set FLASH_IRQHandler,Default_Handler .weak RCC_IRQHandler .thumb_set RCC_IRQHandler,Default_Handler .weak EXTI0_IRQHandler .thumb_set EXTI0_IRQHandler,Default_Handler .weak EXTI1_IRQHandler .thumb_set EXTI1_IRQHandler,Default_Handler .weak EXTI2_IRQHandler .thumb_set EXTI2_IRQHandler,Default_Handler .weak EXTI3_IRQHandler .thumb_set EXTI3_IRQHandler,Default_Handler .weak EXTI4_IRQHandler .thumb_set EXTI4_IRQHandler,Default_Handler .weak DMA1_Channel1_IRQHandler .thumb_set DMA1_Channel1_IRQHandler,Default_Handler .weak DMA1_Channel2_IRQHandler .thumb_set DMA1_Channel2_IRQHandler,Default_Handler .weak DMA1_Channel3_IRQHandler .thumb_set DMA1_Channel3_IRQHandler,Default_Handler .weak DMA1_Channel4_IRQHandler .thumb_set DMA1_Channel4_IRQHandler,Default_Handler .weak DMA1_Channel5_IRQHandler .thumb_set DMA1_Channel5_IRQHandler,Default_Handler .weak DMA1_Channel6_IRQHandler .thumb_set DMA1_Channel6_IRQHandler,Default_Handler .weak ADC1_2_IRQHandler .thumb_set ADC1_2_IRQHandler,Default_Handler .weak USB_HP_IRQHandler .thumb_set USB_HP_IRQHandler,Default_Handler .weak USB_LP_IRQHandler .thumb_set USB_LP_IRQHandler,Default_Handler .weak FDCAN1_IT0_IRQHandler .thumb_set FDCAN1_IT0_IRQHandler,Default_Handler .weak FDCAN1_IT1_IRQHandler .thumb_set FDCAN1_IT1_IRQHandler,Default_Handler .weak EXTI9_5_IRQHandler .thumb_set EXTI9_5_IRQHandler,Default_Handler .weak TIM1_BRK_TIM15_IRQHandler .thumb_set TIM1_BRK_TIM15_IRQHandler,Default_Handler .weak TIM1_UP_TIM16_IRQHandler .thumb_set TIM1_UP_TIM16_IRQHandler,Default_Handler .weak TIM1_TRG_COM_TIM17_IRQHandler .thumb_set TIM1_TRG_COM_TIM17_IRQHandler,Default_Handler .weak TIM1_CC_IRQHandler .thumb_set TIM1_CC_IRQHandler,Default_Handler .weak TIM2_IRQHandler .thumb_set TIM2_IRQHandler,Default_Handler .weak TIM3_IRQHandler .thumb_set TIM3_IRQHandler,Default_Handler .weak TIM4_IRQHandler .thumb_set TIM4_IRQHandler,Default_Handler .weak I2C1_EV_IRQHandler .thumb_set I2C1_EV_IRQHandler,Default_Handler .weak I2C1_ER_IRQHandler .thumb_set I2C1_ER_IRQHandler,Default_Handler .weak I2C2_EV_IRQHandler .thumb_set I2C2_EV_IRQHandler,Default_Handler .weak I2C2_ER_IRQHandler .thumb_set I2C2_ER_IRQHandler,Default_Handler .weak SPI1_IRQHandler .thumb_set SPI1_IRQHandler,Default_Handler .weak SPI2_IRQHandler .thumb_set SPI2_IRQHandler,Default_Handler .weak USART1_IRQHandler .thumb_set USART1_IRQHandler,Default_Handler .weak USART2_IRQHandler .thumb_set USART2_IRQHandler,Default_Handler .weak USART3_IRQHandler .thumb_set USART3_IRQHandler,Default_Handler .weak EXTI15_10_IRQHandler .thumb_set EXTI15_10_IRQHandler,Default_Handler .weak RTC_Alarm_IRQHandler .thumb_set RTC_Alarm_IRQHandler,Default_Handler .weak USBWakeUp_IRQHandler .thumb_set USBWakeUp_IRQHandler,Default_Handler .weak TIM8_BRK_IRQHandler .thumb_set TIM8_BRK_IRQHandler,Default_Handler .weak TIM8_UP_IRQHandler .thumb_set TIM8_UP_IRQHandler,Default_Handler .weak TIM8_TRG_COM_IRQHandler .thumb_set TIM8_TRG_COM_IRQHandler,Default_Handler .weak TIM8_CC_IRQHandler .thumb_set TIM8_CC_IRQHandler,Default_Handler .weak LPTIM1_IRQHandler .thumb_set LPTIM1_IRQHandler,Default_Handler .weak SPI3_IRQHandler .thumb_set SPI3_IRQHandler,Default_Handler .weak UART4_IRQHandler .thumb_set UART4_IRQHandler,Default_Handler .weak TIM6_DAC_IRQHandler .thumb_set TIM6_DAC_IRQHandler,Default_Handler .weak TIM7_IRQHandler .thumb_set TIM7_IRQHandler,Default_Handler .weak DMA2_Channel1_IRQHandler .thumb_set DMA2_Channel1_IRQHandler,Default_Handler .weak DMA2_Channel2_IRQHandler .thumb_set DMA2_Channel2_IRQHandler,Default_Handler .weak DMA2_Channel3_IRQHandler .thumb_set DMA2_Channel3_IRQHandler,Default_Handler .weak DMA2_Channel4_IRQHandler .thumb_set DMA2_Channel4_IRQHandler,Default_Handler .weak DMA2_Channel5_IRQHandler .thumb_set DMA2_Channel5_IRQHandler,Default_Handler .weak UCPD1_IRQHandler .thumb_set UCPD1_IRQHandler,Default_Handler .weak COMP1_2_3_IRQHandler .thumb_set COMP1_2_3_IRQHandler,Default_Handler .weak COMP4_IRQHandler .thumb_set COMP4_IRQHandler,Default_Handler .weak CRS_IRQHandler .thumb_set CRS_IRQHandler,Default_Handler .weak SAI1_IRQHandler .thumb_set SAI1_IRQHandler,Default_Handler .weak FPU_IRQHandler .thumb_set FPU_IRQHandler,Default_Handler .weak RNG_IRQHandler .thumb_set RNG_IRQHandler,Default_Handler .weak LPUART1_IRQHandler .thumb_set LPUART1_IRQHandler,Default_Handler .weak I2C3_EV_IRQHandler .thumb_set I2C3_EV_IRQHandler,Default_Handler .weak I2C3_ER_IRQHandler .thumb_set I2C3_ER_IRQHandler,Default_Handler .weak DMAMUX_OVR_IRQHandler .thumb_set DMAMUX_OVR_IRQHandler,Default_Handler .weak DMA2_Channel6_IRQHandler .thumb_set DMA2_Channel6_IRQHandler,Default_Handler .weak CORDIC_IRQHandler .thumb_set CORDIC_IRQHandler,Default_Handler .weak FMAC_IRQHandler .thumb_set FMAC_IRQHandler,Default_Handler
Northeastern-Electric-Racing/Iroh
13,362
Drivers/CMSIS/Device/ST/STM32G4xx/Source/Templates/gcc/startup_stm32g471xx.s
/** ****************************************************************************** * @file startup_stm32g471xx.s * @author MCD Application Team * @brief STM32G471xx devices vector table GCC toolchain. * This module performs: * - Set the initial SP * - Set the initial PC == Reset_Handler, * - Set the vector table entries with the exceptions ISR address, * - Configure the clock system * - Branches to main in the C library (which eventually * calls main()). * After Reset the Cortex-M4 processor is in Thread mode, * priority is Privileged, and the Stack is set to Main. ****************************************************************************** * @attention * * Copyright (c) 2019 STMicroelectronics. * All rights reserved. * * This software is licensed under terms that can be found in the LICENSE file * in the root directory of this software component. * If no LICENSE file comes with this software, it is provided AS-IS. * ****************************************************************************** */ .syntax unified .cpu cortex-m4 .fpu softvfp .thumb .global g_pfnVectors .global Default_Handler /* start address for the initialization values of the .data section. defined in linker script */ .word _sidata /* start address for the .data section. defined in linker script */ .word _sdata /* end address for the .data section. defined in linker script */ .word _edata /* start address for the .bss section. defined in linker script */ .word _sbss /* end address for the .bss section. defined in linker script */ .word _ebss .equ BootRAM, 0xF1E0F85F /** * @brief This is the code that gets called when the processor first * starts execution following a reset event. Only the absolutely * necessary set is performed, after which the application * supplied main() routine is called. * @param None * @retval : None */ .section .text.Reset_Handler .weak Reset_Handler .type Reset_Handler, %function Reset_Handler: ldr r0, =_estack mov sp, r0 /* set stack pointer */ /* Call the clock system initialization function.*/ bl SystemInit /* Copy the data segment initializers from flash to SRAM */ ldr r0, =_sdata ldr r1, =_edata ldr r2, =_sidata movs r3, #0 b LoopCopyDataInit CopyDataInit: ldr r4, [r2, r3] str r4, [r0, r3] adds r3, r3, #4 LoopCopyDataInit: adds r4, r0, r3 cmp r4, r1 bcc CopyDataInit /* Zero fill the bss segment. */ ldr r2, =_sbss ldr r4, =_ebss movs r3, #0 b LoopFillZerobss FillZerobss: str r3, [r2] adds r2, r2, #4 LoopFillZerobss: cmp r2, r4 bcc FillZerobss /* Call static constructors */ bl __libc_init_array /* Call the application's entry point.*/ bl main LoopForever: b LoopForever .size Reset_Handler, .-Reset_Handler /** * @brief This is the code that gets called when the processor receives an * unexpected interrupt. This simply enters an infinite loop, preserving * the system state for examination by a debugger. * * @param None * @retval : None */ .section .text.Default_Handler,"ax",%progbits Default_Handler: Infinite_Loop: b Infinite_Loop .size Default_Handler, .-Default_Handler /****************************************************************************** * * The minimal vector table for a Cortex-M4. Note that the proper constructs * must be placed on this to ensure that it ends up at physical address * 0x0000.0000. * ******************************************************************************/ .section .isr_vector,"a",%progbits .type g_pfnVectors, %object g_pfnVectors: .word _estack .word Reset_Handler .word NMI_Handler .word HardFault_Handler .word MemManage_Handler .word BusFault_Handler .word UsageFault_Handler .word 0 .word 0 .word 0 .word 0 .word SVC_Handler .word DebugMon_Handler .word 0 .word PendSV_Handler .word SysTick_Handler .word WWDG_IRQHandler .word PVD_PVM_IRQHandler .word RTC_TAMP_LSECSS_IRQHandler .word RTC_WKUP_IRQHandler .word FLASH_IRQHandler .word RCC_IRQHandler .word EXTI0_IRQHandler .word EXTI1_IRQHandler .word EXTI2_IRQHandler .word EXTI3_IRQHandler .word EXTI4_IRQHandler .word DMA1_Channel1_IRQHandler .word DMA1_Channel2_IRQHandler .word DMA1_Channel3_IRQHandler .word DMA1_Channel4_IRQHandler .word DMA1_Channel5_IRQHandler .word DMA1_Channel6_IRQHandler .word DMA1_Channel7_IRQHandler .word ADC1_2_IRQHandler .word USB_HP_IRQHandler .word USB_LP_IRQHandler .word 0 .word 0 .word EXTI9_5_IRQHandler .word TIM1_BRK_TIM15_IRQHandler .word TIM1_UP_TIM16_IRQHandler .word TIM1_TRG_COM_TIM17_IRQHandler .word TIM1_CC_IRQHandler .word TIM2_IRQHandler .word TIM3_IRQHandler .word TIM4_IRQHandler .word I2C1_EV_IRQHandler .word I2C1_ER_IRQHandler .word I2C2_EV_IRQHandler .word I2C2_ER_IRQHandler .word SPI1_IRQHandler .word SPI2_IRQHandler .word USART1_IRQHandler .word USART2_IRQHandler .word USART3_IRQHandler .word EXTI15_10_IRQHandler .word RTC_Alarm_IRQHandler .word USBWakeUp_IRQHandler .word TIM8_BRK_IRQHandler .word TIM8_UP_IRQHandler .word TIM8_TRG_COM_IRQHandler .word TIM8_CC_IRQHandler .word ADC3_IRQHandler .word 0 .word LPTIM1_IRQHandler .word TIM5_IRQHandler .word SPI3_IRQHandler .word UART4_IRQHandler .word UART5_IRQHandler .word TIM6_DAC_IRQHandler .word TIM7_IRQHandler .word DMA2_Channel1_IRQHandler .word DMA2_Channel2_IRQHandler .word DMA2_Channel3_IRQHandler .word DMA2_Channel4_IRQHandler .word DMA2_Channel5_IRQHandler .word 0 .word 0 .word UCPD1_IRQHandler .word COMP1_2_3_IRQHandler .word COMP4_IRQHandler .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word CRS_IRQHandler .word SAI1_IRQHandler .word 0 .word 0 .word 0 .word 0 .word FPU_IRQHandler .word I2C4_EV_IRQHandler .word I2C4_ER_IRQHandler .word SPI4_IRQHandler .word 0 .word 0 .word 0 .word 0 .word 0 .word RNG_IRQHandler .word LPUART1_IRQHandler .word I2C3_EV_IRQHandler .word I2C3_ER_IRQHandler .word DMAMUX_OVR_IRQHandler .word QUADSPI_IRQHandler .word DMA1_Channel8_IRQHandler .word DMA2_Channel6_IRQHandler .word DMA2_Channel7_IRQHandler .word DMA2_Channel8_IRQHandler .word CORDIC_IRQHandler .word FMAC_IRQHandler .size g_pfnVectors, .-g_pfnVectors /******************************************************************************* * * Provide weak aliases for each Exception handler to the Default_Handler. * As they are weak aliases, any function with the same name will override * this definition. * *******************************************************************************/ .weak NMI_Handler .thumb_set NMI_Handler,Default_Handler .weak HardFault_Handler .thumb_set HardFault_Handler,Default_Handler .weak MemManage_Handler .thumb_set MemManage_Handler,Default_Handler .weak BusFault_Handler .thumb_set BusFault_Handler,Default_Handler .weak UsageFault_Handler .thumb_set UsageFault_Handler,Default_Handler .weak SVC_Handler .thumb_set SVC_Handler,Default_Handler .weak DebugMon_Handler .thumb_set DebugMon_Handler,Default_Handler .weak PendSV_Handler .thumb_set PendSV_Handler,Default_Handler .weak SysTick_Handler .thumb_set SysTick_Handler,Default_Handler .weak WWDG_IRQHandler .thumb_set WWDG_IRQHandler,Default_Handler .weak PVD_PVM_IRQHandler .thumb_set PVD_PVM_IRQHandler,Default_Handler .weak RTC_TAMP_LSECSS_IRQHandler .thumb_set RTC_TAMP_LSECSS_IRQHandler,Default_Handler .weak RTC_WKUP_IRQHandler .thumb_set RTC_WKUP_IRQHandler,Default_Handler .weak FLASH_IRQHandler .thumb_set FLASH_IRQHandler,Default_Handler .weak RCC_IRQHandler .thumb_set RCC_IRQHandler,Default_Handler .weak EXTI0_IRQHandler .thumb_set EXTI0_IRQHandler,Default_Handler .weak EXTI1_IRQHandler .thumb_set EXTI1_IRQHandler,Default_Handler .weak EXTI2_IRQHandler .thumb_set EXTI2_IRQHandler,Default_Handler .weak EXTI3_IRQHandler .thumb_set EXTI3_IRQHandler,Default_Handler .weak EXTI4_IRQHandler .thumb_set EXTI4_IRQHandler,Default_Handler .weak DMA1_Channel1_IRQHandler .thumb_set DMA1_Channel1_IRQHandler,Default_Handler .weak DMA1_Channel2_IRQHandler .thumb_set DMA1_Channel2_IRQHandler,Default_Handler .weak DMA1_Channel3_IRQHandler .thumb_set DMA1_Channel3_IRQHandler,Default_Handler .weak DMA1_Channel4_IRQHandler .thumb_set DMA1_Channel4_IRQHandler,Default_Handler .weak DMA1_Channel5_IRQHandler .thumb_set DMA1_Channel5_IRQHandler,Default_Handler .weak DMA1_Channel6_IRQHandler .thumb_set DMA1_Channel6_IRQHandler,Default_Handler .weak DMA1_Channel7_IRQHandler .thumb_set DMA1_Channel7_IRQHandler,Default_Handler .weak ADC1_2_IRQHandler .thumb_set ADC1_2_IRQHandler,Default_Handler .weak USB_HP_IRQHandler .thumb_set USB_HP_IRQHandler,Default_Handler .weak USB_LP_IRQHandler .thumb_set USB_LP_IRQHandler,Default_Handler .weak EXTI9_5_IRQHandler .thumb_set EXTI9_5_IRQHandler,Default_Handler .weak TIM1_BRK_TIM15_IRQHandler .thumb_set TIM1_BRK_TIM15_IRQHandler,Default_Handler .weak TIM1_UP_TIM16_IRQHandler .thumb_set TIM1_UP_TIM16_IRQHandler,Default_Handler .weak TIM1_TRG_COM_TIM17_IRQHandler .thumb_set TIM1_TRG_COM_TIM17_IRQHandler,Default_Handler .weak TIM1_CC_IRQHandler .thumb_set TIM1_CC_IRQHandler,Default_Handler .weak TIM2_IRQHandler .thumb_set TIM2_IRQHandler,Default_Handler .weak TIM3_IRQHandler .thumb_set TIM3_IRQHandler,Default_Handler .weak TIM4_IRQHandler .thumb_set TIM4_IRQHandler,Default_Handler .weak I2C1_EV_IRQHandler .thumb_set I2C1_EV_IRQHandler,Default_Handler .weak I2C1_ER_IRQHandler .thumb_set I2C1_ER_IRQHandler,Default_Handler .weak I2C2_EV_IRQHandler .thumb_set I2C2_EV_IRQHandler,Default_Handler .weak I2C2_ER_IRQHandler .thumb_set I2C2_ER_IRQHandler,Default_Handler .weak SPI1_IRQHandler .thumb_set SPI1_IRQHandler,Default_Handler .weak SPI2_IRQHandler .thumb_set SPI2_IRQHandler,Default_Handler .weak USART1_IRQHandler .thumb_set USART1_IRQHandler,Default_Handler .weak USART2_IRQHandler .thumb_set USART2_IRQHandler,Default_Handler .weak USART3_IRQHandler .thumb_set USART3_IRQHandler,Default_Handler .weak EXTI15_10_IRQHandler .thumb_set EXTI15_10_IRQHandler,Default_Handler .weak RTC_Alarm_IRQHandler .thumb_set RTC_Alarm_IRQHandler,Default_Handler .weak USBWakeUp_IRQHandler .thumb_set USBWakeUp_IRQHandler,Default_Handler .weak TIM8_BRK_IRQHandler .thumb_set TIM8_BRK_IRQHandler,Default_Handler .weak TIM8_UP_IRQHandler .thumb_set TIM8_UP_IRQHandler,Default_Handler .weak TIM8_TRG_COM_IRQHandler .thumb_set TIM8_TRG_COM_IRQHandler,Default_Handler .weak TIM8_CC_IRQHandler .thumb_set TIM8_CC_IRQHandler,Default_Handler .weak ADC3_IRQHandler .thumb_set ADC3_IRQHandler,Default_Handler .weak LPTIM1_IRQHandler .thumb_set LPTIM1_IRQHandler,Default_Handler .weak TIM5_IRQHandler .thumb_set TIM5_IRQHandler,Default_Handler .weak SPI3_IRQHandler .thumb_set SPI3_IRQHandler,Default_Handler .weak UART4_IRQHandler .thumb_set UART4_IRQHandler,Default_Handler .weak UART5_IRQHandler .thumb_set UART5_IRQHandler,Default_Handler .weak TIM6_DAC_IRQHandler .thumb_set TIM6_DAC_IRQHandler,Default_Handler .weak TIM7_IRQHandler .thumb_set TIM7_IRQHandler,Default_Handler .weak DMA2_Channel1_IRQHandler .thumb_set DMA2_Channel1_IRQHandler,Default_Handler .weak DMA2_Channel2_IRQHandler .thumb_set DMA2_Channel2_IRQHandler,Default_Handler .weak DMA2_Channel3_IRQHandler .thumb_set DMA2_Channel3_IRQHandler,Default_Handler .weak DMA2_Channel4_IRQHandler .thumb_set DMA2_Channel4_IRQHandler,Default_Handler .weak DMA2_Channel5_IRQHandler .thumb_set DMA2_Channel5_IRQHandler,Default_Handler .weak UCPD1_IRQHandler .thumb_set UCPD1_IRQHandler,Default_Handler .weak COMP1_2_3_IRQHandler .thumb_set COMP1_2_3_IRQHandler,Default_Handler .weak COMP4_IRQHandler .thumb_set COMP4_IRQHandler,Default_Handler .weak CRS_IRQHandler .thumb_set CRS_IRQHandler,Default_Handler .weak SAI1_IRQHandler .thumb_set SAI1_IRQHandler,Default_Handler .weak FPU_IRQHandler .thumb_set FPU_IRQHandler,Default_Handler .weak I2C4_EV_IRQHandler .thumb_set I2C4_EV_IRQHandler,Default_Handler .weak I2C4_ER_IRQHandler .thumb_set I2C4_ER_IRQHandler,Default_Handler .weak SPI4_IRQHandler .thumb_set SPI4_IRQHandler,Default_Handler .weak RNG_IRQHandler .thumb_set RNG_IRQHandler,Default_Handler .weak LPUART1_IRQHandler .thumb_set LPUART1_IRQHandler,Default_Handler .weak I2C3_EV_IRQHandler .thumb_set I2C3_EV_IRQHandler,Default_Handler .weak I2C3_ER_IRQHandler .thumb_set I2C3_ER_IRQHandler,Default_Handler .weak DMAMUX_OVR_IRQHandler .thumb_set DMAMUX_OVR_IRQHandler,Default_Handler .weak QUADSPI_IRQHandler .thumb_set QUADSPI_IRQHandler,Default_Handler .weak DMA1_Channel8_IRQHandler .thumb_set DMA1_Channel8_IRQHandler,Default_Handler .weak DMA2_Channel6_IRQHandler .thumb_set DMA2_Channel6_IRQHandler,Default_Handler .weak DMA2_Channel7_IRQHandler .thumb_set DMA2_Channel7_IRQHandler,Default_Handler .weak DMA2_Channel8_IRQHandler .thumb_set DMA2_Channel8_IRQHandler,Default_Handler .weak CORDIC_IRQHandler .thumb_set CORDIC_IRQHandler,Default_Handler .weak FMAC_IRQHandler .thumb_set FMAC_IRQHandler,Default_Handler
Northeastern-Electric-Racing/Iroh
12,401
Drivers/CMSIS/Device/ST/STM32G4xx/Source/Templates/gcc/startup_stm32gbk1cb.s
/** ****************************************************************************** * @file startup_stm32gbk1cb.s * @author MCD Application Team * @brief STM32GBK1CB devices vector table GCC toolchain. * This module performs: * - Set the initial SP * - Set the initial PC == Reset_Handler, * - Set the vector table entries with the exceptions ISR address, * - Configure the clock system * - Branches to main in the C library (which eventually * calls main()). * After Reset the Cortex-M4 processor is in Thread mode, * priority is Privileged, and the Stack is set to Main. ****************************************************************************** * @attention * * Copyright (c) 2019 STMicroelectronics. * All rights reserved. * * This software is licensed under terms that can be found in the LICENSE file * in the root directory of this software component. * If no LICENSE file comes with this software, it is provided AS-IS. * ****************************************************************************** */ .syntax unified .cpu cortex-m4 .fpu softvfp .thumb .global g_pfnVectors .global Default_Handler /* start address for the initialization values of the .data section. defined in linker script */ .word _sidata /* start address for the .data section. defined in linker script */ .word _sdata /* end address for the .data section. defined in linker script */ .word _edata /* start address for the .bss section. defined in linker script */ .word _sbss /* end address for the .bss section. defined in linker script */ .word _ebss .equ BootRAM, 0xF1E0F85F /** * @brief This is the code that gets called when the processor first * starts execution following a reset event. Only the absolutely * necessary set is performed, after which the application * supplied main() routine is called. * @param None * @retval : None */ .section .text.Reset_Handler .weak Reset_Handler .type Reset_Handler, %function Reset_Handler: ldr sp, =_estack /* Atollic update: set stack pointer */ /* Call the clock system initialization function.*/ bl SystemInit /* Copy the data segment initializers from flash to SRAM */ movs r1, #0 b LoopCopyDataInit CopyDataInit: ldr r3, =_sidata ldr r3, [r3, r1] str r3, [r0, r1] adds r1, r1, #4 LoopCopyDataInit: ldr r0, =_sdata ldr r3, =_edata adds r2, r0, r1 cmp r2, r3 bcc CopyDataInit ldr r2, =_sbss b LoopFillZerobss /* Zero fill the bss segment. */ FillZerobss: movs r3, #0 str r3, [r2], #4 LoopFillZerobss: ldr r3, = _ebss cmp r2, r3 bcc FillZerobss /* Call static constructors */ bl __libc_init_array /* Call the application's entry point.*/ bl main LoopForever: b LoopForever .size Reset_Handler, .-Reset_Handler /** * @brief This is the code that gets called when the processor receives an * unexpected interrupt. This simply enters an infinite loop, preserving * the system state for examination by a debugger. * * @param None * @retval : None */ .section .text.Default_Handler,"ax",%progbits Default_Handler: Infinite_Loop: b Infinite_Loop .size Default_Handler, .-Default_Handler /****************************************************************************** * * The minimal vector table for a Cortex-M4. Note that the proper constructs * must be placed on this to ensure that it ends up at physical address * 0x0000.0000. * ******************************************************************************/ .section .isr_vector,"a",%progbits .type g_pfnVectors, %object g_pfnVectors: .word _estack .word Reset_Handler .word NMI_Handler .word HardFault_Handler .word MemManage_Handler .word BusFault_Handler .word UsageFault_Handler .word 0 .word 0 .word 0 .word 0 .word SVC_Handler .word DebugMon_Handler .word 0 .word PendSV_Handler .word SysTick_Handler .word WWDG_IRQHandler .word PVD_PVM_IRQHandler .word RTC_TAMP_LSECSS_IRQHandler .word RTC_WKUP_IRQHandler .word FLASH_IRQHandler .word RCC_IRQHandler .word EXTI0_IRQHandler .word EXTI1_IRQHandler .word EXTI2_IRQHandler .word EXTI3_IRQHandler .word EXTI4_IRQHandler .word DMA1_Channel1_IRQHandler .word DMA1_Channel2_IRQHandler .word DMA1_Channel3_IRQHandler .word DMA1_Channel4_IRQHandler .word DMA1_Channel5_IRQHandler .word DMA1_Channel6_IRQHandler .word 0 .word ADC1_2_IRQHandler .word USB_HP_IRQHandler .word USB_LP_IRQHandler .word FDCAN1_IT0_IRQHandler .word FDCAN1_IT1_IRQHandler .word EXTI9_5_IRQHandler .word TIM1_BRK_TIM15_IRQHandler .word TIM1_UP_TIM16_IRQHandler .word TIM1_TRG_COM_TIM17_IRQHandler .word TIM1_CC_IRQHandler .word TIM2_IRQHandler .word TIM3_IRQHandler .word TIM4_IRQHandler .word I2C1_EV_IRQHandler .word I2C1_ER_IRQHandler .word I2C2_EV_IRQHandler .word I2C2_ER_IRQHandler .word SPI1_IRQHandler .word SPI2_IRQHandler .word USART1_IRQHandler .word USART2_IRQHandler .word USART3_IRQHandler .word EXTI15_10_IRQHandler .word RTC_Alarm_IRQHandler .word USBWakeUp_IRQHandler .word TIM8_BRK_IRQHandler .word TIM8_UP_IRQHandler .word TIM8_TRG_COM_IRQHandler .word TIM8_CC_IRQHandler .word 0 .word 0 .word LPTIM1_IRQHandler .word 0 .word SPI3_IRQHandler .word 0 .word 0 .word TIM6_DAC_IRQHandler .word TIM7_IRQHandler .word DMA2_Channel1_IRQHandler .word DMA2_Channel2_IRQHandler .word DMA2_Channel3_IRQHandler .word DMA2_Channel4_IRQHandler .word DMA2_Channel5_IRQHandler .word 0 .word 0 .word UCPD1_IRQHandler .word COMP1_2_3_IRQHandler .word COMP4_IRQHandler .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word CRS_IRQHandler .word SAI1_IRQHandler .word 0 .word 0 .word 0 .word 0 .word FPU_IRQHandler .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word RNG_IRQHandler .word LPUART1_IRQHandler .word I2C3_EV_IRQHandler .word I2C3_ER_IRQHandler .word DMAMUX_OVR_IRQHandler .word 0 .word 0 .word DMA2_Channel6_IRQHandler .word 0 .word 0 .word CORDIC_IRQHandler .word FMAC_IRQHandler .size g_pfnVectors, .-g_pfnVectors /******************************************************************************* * * Provide weak aliases for each Exception handler to the Default_Handler. * As they are weak aliases, any function with the same name will override * this definition. * *******************************************************************************/ .weak NMI_Handler .thumb_set NMI_Handler,Default_Handler .weak HardFault_Handler .thumb_set HardFault_Handler,Default_Handler .weak MemManage_Handler .thumb_set MemManage_Handler,Default_Handler .weak BusFault_Handler .thumb_set BusFault_Handler,Default_Handler .weak UsageFault_Handler .thumb_set UsageFault_Handler,Default_Handler .weak SVC_Handler .thumb_set SVC_Handler,Default_Handler .weak DebugMon_Handler .thumb_set DebugMon_Handler,Default_Handler .weak PendSV_Handler .thumb_set PendSV_Handler,Default_Handler .weak SysTick_Handler .thumb_set SysTick_Handler,Default_Handler .weak WWDG_IRQHandler .thumb_set WWDG_IRQHandler,Default_Handler .weak PVD_PVM_IRQHandler .thumb_set PVD_PVM_IRQHandler,Default_Handler .weak RTC_TAMP_LSECSS_IRQHandler .thumb_set RTC_TAMP_LSECSS_IRQHandler,Default_Handler .weak RTC_WKUP_IRQHandler .thumb_set RTC_WKUP_IRQHandler,Default_Handler .weak FLASH_IRQHandler .thumb_set FLASH_IRQHandler,Default_Handler .weak RCC_IRQHandler .thumb_set RCC_IRQHandler,Default_Handler .weak EXTI0_IRQHandler .thumb_set EXTI0_IRQHandler,Default_Handler .weak EXTI1_IRQHandler .thumb_set EXTI1_IRQHandler,Default_Handler .weak EXTI2_IRQHandler .thumb_set EXTI2_IRQHandler,Default_Handler .weak EXTI3_IRQHandler .thumb_set EXTI3_IRQHandler,Default_Handler .weak EXTI4_IRQHandler .thumb_set EXTI4_IRQHandler,Default_Handler .weak DMA1_Channel1_IRQHandler .thumb_set DMA1_Channel1_IRQHandler,Default_Handler .weak DMA1_Channel2_IRQHandler .thumb_set DMA1_Channel2_IRQHandler,Default_Handler .weak DMA1_Channel3_IRQHandler .thumb_set DMA1_Channel3_IRQHandler,Default_Handler .weak DMA1_Channel4_IRQHandler .thumb_set DMA1_Channel4_IRQHandler,Default_Handler .weak DMA1_Channel5_IRQHandler .thumb_set DMA1_Channel5_IRQHandler,Default_Handler .weak DMA1_Channel6_IRQHandler .thumb_set DMA1_Channel6_IRQHandler,Default_Handler .weak ADC1_2_IRQHandler .thumb_set ADC1_2_IRQHandler,Default_Handler .weak USB_HP_IRQHandler .thumb_set USB_HP_IRQHandler,Default_Handler .weak USB_LP_IRQHandler .thumb_set USB_LP_IRQHandler,Default_Handler .weak FDCAN1_IT0_IRQHandler .thumb_set FDCAN1_IT0_IRQHandler,Default_Handler .weak FDCAN1_IT1_IRQHandler .thumb_set FDCAN1_IT1_IRQHandler,Default_Handler .weak EXTI9_5_IRQHandler .thumb_set EXTI9_5_IRQHandler,Default_Handler .weak TIM1_BRK_TIM15_IRQHandler .thumb_set TIM1_BRK_TIM15_IRQHandler,Default_Handler .weak TIM1_UP_TIM16_IRQHandler .thumb_set TIM1_UP_TIM16_IRQHandler,Default_Handler .weak TIM1_TRG_COM_TIM17_IRQHandler .thumb_set TIM1_TRG_COM_TIM17_IRQHandler,Default_Handler .weak TIM1_CC_IRQHandler .thumb_set TIM1_CC_IRQHandler,Default_Handler .weak TIM2_IRQHandler .thumb_set TIM2_IRQHandler,Default_Handler .weak TIM3_IRQHandler .thumb_set TIM3_IRQHandler,Default_Handler .weak TIM4_IRQHandler .thumb_set TIM4_IRQHandler,Default_Handler .weak I2C1_EV_IRQHandler .thumb_set I2C1_EV_IRQHandler,Default_Handler .weak I2C1_ER_IRQHandler .thumb_set I2C1_ER_IRQHandler,Default_Handler .weak I2C2_EV_IRQHandler .thumb_set I2C2_EV_IRQHandler,Default_Handler .weak I2C2_ER_IRQHandler .thumb_set I2C2_ER_IRQHandler,Default_Handler .weak SPI1_IRQHandler .thumb_set SPI1_IRQHandler,Default_Handler .weak SPI2_IRQHandler .thumb_set SPI2_IRQHandler,Default_Handler .weak USART1_IRQHandler .thumb_set USART1_IRQHandler,Default_Handler .weak USART2_IRQHandler .thumb_set USART2_IRQHandler,Default_Handler .weak USART3_IRQHandler .thumb_set USART3_IRQHandler,Default_Handler .weak EXTI15_10_IRQHandler .thumb_set EXTI15_10_IRQHandler,Default_Handler .weak RTC_Alarm_IRQHandler .thumb_set RTC_Alarm_IRQHandler,Default_Handler .weak USBWakeUp_IRQHandler .thumb_set USBWakeUp_IRQHandler,Default_Handler .weak TIM8_BRK_IRQHandler .thumb_set TIM8_BRK_IRQHandler,Default_Handler .weak TIM8_UP_IRQHandler .thumb_set TIM8_UP_IRQHandler,Default_Handler .weak TIM8_TRG_COM_IRQHandler .thumb_set TIM8_TRG_COM_IRQHandler,Default_Handler .weak TIM8_CC_IRQHandler .thumb_set TIM8_CC_IRQHandler,Default_Handler .weak LPTIM1_IRQHandler .thumb_set LPTIM1_IRQHandler,Default_Handler .weak SPI3_IRQHandler .thumb_set SPI3_IRQHandler,Default_Handler .weak TIM6_DAC_IRQHandler .thumb_set TIM6_DAC_IRQHandler,Default_Handler .weak TIM7_IRQHandler .thumb_set TIM7_IRQHandler,Default_Handler .weak DMA2_Channel1_IRQHandler .thumb_set DMA2_Channel1_IRQHandler,Default_Handler .weak DMA2_Channel2_IRQHandler .thumb_set DMA2_Channel2_IRQHandler,Default_Handler .weak DMA2_Channel3_IRQHandler .thumb_set DMA2_Channel3_IRQHandler,Default_Handler .weak DMA2_Channel4_IRQHandler .thumb_set DMA2_Channel4_IRQHandler,Default_Handler .weak DMA2_Channel5_IRQHandler .thumb_set DMA2_Channel5_IRQHandler,Default_Handler .weak UCPD1_IRQHandler .thumb_set UCPD1_IRQHandler,Default_Handler .weak COMP1_2_3_IRQHandler .thumb_set COMP1_2_3_IRQHandler,Default_Handler .weak COMP4_IRQHandler .thumb_set COMP4_IRQHandler,Default_Handler .weak CRS_IRQHandler .thumb_set CRS_IRQHandler,Default_Handler .weak SAI1_IRQHandler .thumb_set SAI1_IRQHandler,Default_Handler .weak FPU_IRQHandler .thumb_set FPU_IRQHandler,Default_Handler .weak RNG_IRQHandler .thumb_set RNG_IRQHandler,Default_Handler .weak LPUART1_IRQHandler .thumb_set LPUART1_IRQHandler,Default_Handler .weak I2C3_EV_IRQHandler .thumb_set I2C3_EV_IRQHandler,Default_Handler .weak I2C3_ER_IRQHandler .thumb_set I2C3_ER_IRQHandler,Default_Handler .weak DMAMUX_OVR_IRQHandler .thumb_set DMAMUX_OVR_IRQHandler,Default_Handler .weak DMA2_Channel6_IRQHandler .thumb_set DMA2_Channel6_IRQHandler,Default_Handler .weak CORDIC_IRQHandler .thumb_set CORDIC_IRQHandler,Default_Handler .weak FMAC_IRQHandler .thumb_set FMAC_IRQHandler,Default_Handler
Northeastern-Electric-Racing/Iroh
12,523
Drivers/CMSIS/Device/ST/STM32G4xx/Source/Templates/gcc/startup_stm32g431xx.s
/** ****************************************************************************** * @file startup_stm32g431xx.s * @author MCD Application Team * @brief STM32G431xx devices vector table GCC toolchain. * This module performs: * - Set the initial SP * - Set the initial PC == Reset_Handler, * - Set the vector table entries with the exceptions ISR address, * - Configure the clock system * - Branches to main in the C library (which eventually * calls main()). * After Reset the Cortex-M4 processor is in Thread mode, * priority is Privileged, and the Stack is set to Main. ****************************************************************************** * @attention * * Copyright (c) 2019 STMicroelectronics. * All rights reserved. * * This software is licensed under terms that can be found in the LICENSE file * in the root directory of this software component. * If no LICENSE file comes with this software, it is provided AS-IS. * ****************************************************************************** */ .syntax unified .cpu cortex-m4 .fpu softvfp .thumb .global g_pfnVectors .global Default_Handler /* start address for the initialization values of the .data section. defined in linker script */ .word _sidata /* start address for the .data section. defined in linker script */ .word _sdata /* end address for the .data section. defined in linker script */ .word _edata /* start address for the .bss section. defined in linker script */ .word _sbss /* end address for the .bss section. defined in linker script */ .word _ebss .equ BootRAM, 0xF1E0F85F /** * @brief This is the code that gets called when the processor first * starts execution following a reset event. Only the absolutely * necessary set is performed, after which the application * supplied main() routine is called. * @param None * @retval : None */ .section .text.Reset_Handler .weak Reset_Handler .type Reset_Handler, %function Reset_Handler: ldr r0, =_estack mov sp, r0 /* set stack pointer */ /* Call the clock system initialization function.*/ bl SystemInit /* Copy the data segment initializers from flash to SRAM */ ldr r0, =_sdata ldr r1, =_edata ldr r2, =_sidata movs r3, #0 b LoopCopyDataInit CopyDataInit: ldr r4, [r2, r3] str r4, [r0, r3] adds r3, r3, #4 LoopCopyDataInit: adds r4, r0, r3 cmp r4, r1 bcc CopyDataInit /* Zero fill the bss segment. */ ldr r2, =_sbss ldr r4, =_ebss movs r3, #0 b LoopFillZerobss FillZerobss: str r3, [r2] adds r2, r2, #4 LoopFillZerobss: cmp r2, r4 bcc FillZerobss /* Call static constructors */ bl __libc_init_array /* Call the application's entry point.*/ bl main LoopForever: b LoopForever .size Reset_Handler, .-Reset_Handler /** * @brief This is the code that gets called when the processor receives an * unexpected interrupt. This simply enters an infinite loop, preserving * the system state for examination by a debugger. * * @param None * @retval : None */ .section .text.Default_Handler,"ax",%progbits Default_Handler: Infinite_Loop: b Infinite_Loop .size Default_Handler, .-Default_Handler /****************************************************************************** * * The minimal vector table for a Cortex-M4. Note that the proper constructs * must be placed on this to ensure that it ends up at physical address * 0x0000.0000. * ******************************************************************************/ .section .isr_vector,"a",%progbits .type g_pfnVectors, %object g_pfnVectors: .word _estack .word Reset_Handler .word NMI_Handler .word HardFault_Handler .word MemManage_Handler .word BusFault_Handler .word UsageFault_Handler .word 0 .word 0 .word 0 .word 0 .word SVC_Handler .word DebugMon_Handler .word 0 .word PendSV_Handler .word SysTick_Handler .word WWDG_IRQHandler .word PVD_PVM_IRQHandler .word RTC_TAMP_LSECSS_IRQHandler .word RTC_WKUP_IRQHandler .word FLASH_IRQHandler .word RCC_IRQHandler .word EXTI0_IRQHandler .word EXTI1_IRQHandler .word EXTI2_IRQHandler .word EXTI3_IRQHandler .word EXTI4_IRQHandler .word DMA1_Channel1_IRQHandler .word DMA1_Channel2_IRQHandler .word DMA1_Channel3_IRQHandler .word DMA1_Channel4_IRQHandler .word DMA1_Channel5_IRQHandler .word DMA1_Channel6_IRQHandler .word 0 .word ADC1_2_IRQHandler .word USB_HP_IRQHandler .word USB_LP_IRQHandler .word FDCAN1_IT0_IRQHandler .word FDCAN1_IT1_IRQHandler .word EXTI9_5_IRQHandler .word TIM1_BRK_TIM15_IRQHandler .word TIM1_UP_TIM16_IRQHandler .word TIM1_TRG_COM_TIM17_IRQHandler .word TIM1_CC_IRQHandler .word TIM2_IRQHandler .word TIM3_IRQHandler .word TIM4_IRQHandler .word I2C1_EV_IRQHandler .word I2C1_ER_IRQHandler .word I2C2_EV_IRQHandler .word I2C2_ER_IRQHandler .word SPI1_IRQHandler .word SPI2_IRQHandler .word USART1_IRQHandler .word USART2_IRQHandler .word USART3_IRQHandler .word EXTI15_10_IRQHandler .word RTC_Alarm_IRQHandler .word USBWakeUp_IRQHandler .word TIM8_BRK_IRQHandler .word TIM8_UP_IRQHandler .word TIM8_TRG_COM_IRQHandler .word TIM8_CC_IRQHandler .word 0 .word 0 .word LPTIM1_IRQHandler .word 0 .word SPI3_IRQHandler .word UART4_IRQHandler .word 0 .word TIM6_DAC_IRQHandler .word TIM7_IRQHandler .word DMA2_Channel1_IRQHandler .word DMA2_Channel2_IRQHandler .word DMA2_Channel3_IRQHandler .word DMA2_Channel4_IRQHandler .word DMA2_Channel5_IRQHandler .word 0 .word 0 .word UCPD1_IRQHandler .word COMP1_2_3_IRQHandler .word COMP4_IRQHandler .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word CRS_IRQHandler .word SAI1_IRQHandler .word 0 .word 0 .word 0 .word 0 .word FPU_IRQHandler .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word RNG_IRQHandler .word LPUART1_IRQHandler .word I2C3_EV_IRQHandler .word I2C3_ER_IRQHandler .word DMAMUX_OVR_IRQHandler .word 0 .word 0 .word DMA2_Channel6_IRQHandler .word 0 .word 0 .word CORDIC_IRQHandler .word FMAC_IRQHandler .size g_pfnVectors, .-g_pfnVectors /******************************************************************************* * * Provide weak aliases for each Exception handler to the Default_Handler. * As they are weak aliases, any function with the same name will override * this definition. * *******************************************************************************/ .weak NMI_Handler .thumb_set NMI_Handler,Default_Handler .weak HardFault_Handler .thumb_set HardFault_Handler,Default_Handler .weak MemManage_Handler .thumb_set MemManage_Handler,Default_Handler .weak BusFault_Handler .thumb_set BusFault_Handler,Default_Handler .weak UsageFault_Handler .thumb_set UsageFault_Handler,Default_Handler .weak SVC_Handler .thumb_set SVC_Handler,Default_Handler .weak DebugMon_Handler .thumb_set DebugMon_Handler,Default_Handler .weak PendSV_Handler .thumb_set PendSV_Handler,Default_Handler .weak SysTick_Handler .thumb_set SysTick_Handler,Default_Handler .weak WWDG_IRQHandler .thumb_set WWDG_IRQHandler,Default_Handler .weak PVD_PVM_IRQHandler .thumb_set PVD_PVM_IRQHandler,Default_Handler .weak RTC_TAMP_LSECSS_IRQHandler .thumb_set RTC_TAMP_LSECSS_IRQHandler,Default_Handler .weak RTC_WKUP_IRQHandler .thumb_set RTC_WKUP_IRQHandler,Default_Handler .weak FLASH_IRQHandler .thumb_set FLASH_IRQHandler,Default_Handler .weak RCC_IRQHandler .thumb_set RCC_IRQHandler,Default_Handler .weak EXTI0_IRQHandler .thumb_set EXTI0_IRQHandler,Default_Handler .weak EXTI1_IRQHandler .thumb_set EXTI1_IRQHandler,Default_Handler .weak EXTI2_IRQHandler .thumb_set EXTI2_IRQHandler,Default_Handler .weak EXTI3_IRQHandler .thumb_set EXTI3_IRQHandler,Default_Handler .weak EXTI4_IRQHandler .thumb_set EXTI4_IRQHandler,Default_Handler .weak DMA1_Channel1_IRQHandler .thumb_set DMA1_Channel1_IRQHandler,Default_Handler .weak DMA1_Channel2_IRQHandler .thumb_set DMA1_Channel2_IRQHandler,Default_Handler .weak DMA1_Channel3_IRQHandler .thumb_set DMA1_Channel3_IRQHandler,Default_Handler .weak DMA1_Channel4_IRQHandler .thumb_set DMA1_Channel4_IRQHandler,Default_Handler .weak DMA1_Channel5_IRQHandler .thumb_set DMA1_Channel5_IRQHandler,Default_Handler .weak DMA1_Channel6_IRQHandler .thumb_set DMA1_Channel6_IRQHandler,Default_Handler .weak ADC1_2_IRQHandler .thumb_set ADC1_2_IRQHandler,Default_Handler .weak USB_HP_IRQHandler .thumb_set USB_HP_IRQHandler,Default_Handler .weak USB_LP_IRQHandler .thumb_set USB_LP_IRQHandler,Default_Handler .weak FDCAN1_IT0_IRQHandler .thumb_set FDCAN1_IT0_IRQHandler,Default_Handler .weak FDCAN1_IT1_IRQHandler .thumb_set FDCAN1_IT1_IRQHandler,Default_Handler .weak EXTI9_5_IRQHandler .thumb_set EXTI9_5_IRQHandler,Default_Handler .weak TIM1_BRK_TIM15_IRQHandler .thumb_set TIM1_BRK_TIM15_IRQHandler,Default_Handler .weak TIM1_UP_TIM16_IRQHandler .thumb_set TIM1_UP_TIM16_IRQHandler,Default_Handler .weak TIM1_TRG_COM_TIM17_IRQHandler .thumb_set TIM1_TRG_COM_TIM17_IRQHandler,Default_Handler .weak TIM1_CC_IRQHandler .thumb_set TIM1_CC_IRQHandler,Default_Handler .weak TIM2_IRQHandler .thumb_set TIM2_IRQHandler,Default_Handler .weak TIM3_IRQHandler .thumb_set TIM3_IRQHandler,Default_Handler .weak TIM4_IRQHandler .thumb_set TIM4_IRQHandler,Default_Handler .weak I2C1_EV_IRQHandler .thumb_set I2C1_EV_IRQHandler,Default_Handler .weak I2C1_ER_IRQHandler .thumb_set I2C1_ER_IRQHandler,Default_Handler .weak I2C2_EV_IRQHandler .thumb_set I2C2_EV_IRQHandler,Default_Handler .weak I2C2_ER_IRQHandler .thumb_set I2C2_ER_IRQHandler,Default_Handler .weak SPI1_IRQHandler .thumb_set SPI1_IRQHandler,Default_Handler .weak SPI2_IRQHandler .thumb_set SPI2_IRQHandler,Default_Handler .weak USART1_IRQHandler .thumb_set USART1_IRQHandler,Default_Handler .weak USART2_IRQHandler .thumb_set USART2_IRQHandler,Default_Handler .weak USART3_IRQHandler .thumb_set USART3_IRQHandler,Default_Handler .weak EXTI15_10_IRQHandler .thumb_set EXTI15_10_IRQHandler,Default_Handler .weak RTC_Alarm_IRQHandler .thumb_set RTC_Alarm_IRQHandler,Default_Handler .weak USBWakeUp_IRQHandler .thumb_set USBWakeUp_IRQHandler,Default_Handler .weak TIM8_BRK_IRQHandler .thumb_set TIM8_BRK_IRQHandler,Default_Handler .weak TIM8_UP_IRQHandler .thumb_set TIM8_UP_IRQHandler,Default_Handler .weak TIM8_TRG_COM_IRQHandler .thumb_set TIM8_TRG_COM_IRQHandler,Default_Handler .weak TIM8_CC_IRQHandler .thumb_set TIM8_CC_IRQHandler,Default_Handler .weak LPTIM1_IRQHandler .thumb_set LPTIM1_IRQHandler,Default_Handler .weak SPI3_IRQHandler .thumb_set SPI3_IRQHandler,Default_Handler .weak UART4_IRQHandler .thumb_set UART4_IRQHandler,Default_Handler .weak TIM6_DAC_IRQHandler .thumb_set TIM6_DAC_IRQHandler,Default_Handler .weak TIM7_IRQHandler .thumb_set TIM7_IRQHandler,Default_Handler .weak DMA2_Channel1_IRQHandler .thumb_set DMA2_Channel1_IRQHandler,Default_Handler .weak DMA2_Channel2_IRQHandler .thumb_set DMA2_Channel2_IRQHandler,Default_Handler .weak DMA2_Channel3_IRQHandler .thumb_set DMA2_Channel3_IRQHandler,Default_Handler .weak DMA2_Channel4_IRQHandler .thumb_set DMA2_Channel4_IRQHandler,Default_Handler .weak DMA2_Channel5_IRQHandler .thumb_set DMA2_Channel5_IRQHandler,Default_Handler .weak UCPD1_IRQHandler .thumb_set UCPD1_IRQHandler,Default_Handler .weak COMP1_2_3_IRQHandler .thumb_set COMP1_2_3_IRQHandler,Default_Handler .weak COMP4_IRQHandler .thumb_set COMP4_IRQHandler,Default_Handler .weak CRS_IRQHandler .thumb_set CRS_IRQHandler,Default_Handler .weak SAI1_IRQHandler .thumb_set SAI1_IRQHandler,Default_Handler .weak FPU_IRQHandler .thumb_set FPU_IRQHandler,Default_Handler .weak RNG_IRQHandler .thumb_set RNG_IRQHandler,Default_Handler .weak LPUART1_IRQHandler .thumb_set LPUART1_IRQHandler,Default_Handler .weak I2C3_EV_IRQHandler .thumb_set I2C3_EV_IRQHandler,Default_Handler .weak I2C3_ER_IRQHandler .thumb_set I2C3_ER_IRQHandler,Default_Handler .weak DMAMUX_OVR_IRQHandler .thumb_set DMAMUX_OVR_IRQHandler,Default_Handler .weak DMA2_Channel6_IRQHandler .thumb_set DMA2_Channel6_IRQHandler,Default_Handler .weak CORDIC_IRQHandler .thumb_set CORDIC_IRQHandler,Default_Handler .weak FMAC_IRQHandler .thumb_set FMAC_IRQHandler,Default_Handler
Northeastern-Electric-Racing/Iroh
13,887
Drivers/CMSIS/Device/ST/STM32G4xx/Source/Templates/gcc/startup_stm32g4a1xx.s
/** ****************************************************************************** * @file startup_stm32g4a1xx.s * @author MCD Application Team * @brief STM32G4A1xx devices vector table GCC toolchain. * This module performs: * - Set the initial SP * - Set the initial PC == Reset_Handler, * - Set the vector table entries with the exceptions ISR address, * - Configure the clock system * - Branches to main in the C library (which eventually * calls main()). * After Reset the Cortex-M4 processor is in Thread mode, * priority is Privileged, and the Stack is set to Main. ****************************************************************************** * @attention * * Copyright (c) 2019 STMicroelectronics. * All rights reserved. * * This software is licensed under terms that can be found in the LICENSE file * in the root directory of this software component. * If no LICENSE file comes with this software, it is provided AS-IS. * ****************************************************************************** */ .syntax unified .cpu cortex-m4 .fpu softvfp .thumb .global g_pfnVectors .global Default_Handler /* start address for the initialization values of the .data section. defined in linker script */ .word _sidata /* start address for the .data section. defined in linker script */ .word _sdata /* end address for the .data section. defined in linker script */ .word _edata /* start address for the .bss section. defined in linker script */ .word _sbss /* end address for the .bss section. defined in linker script */ .word _ebss .equ BootRAM, 0xF1E0F85F /** * @brief This is the code that gets called when the processor first * starts execution following a reset event. Only the absolutely * necessary set is performed, after which the application * supplied main() routine is called. * @param None * @retval : None */ .section .text.Reset_Handler .weak Reset_Handler .type Reset_Handler, %function Reset_Handler: ldr r0, =_estack mov sp, r0 /* set stack pointer */ /* Call the clock system initialization function.*/ bl SystemInit /* Copy the data segment initializers from flash to SRAM */ ldr r0, =_sdata ldr r1, =_edata ldr r2, =_sidata movs r3, #0 b LoopCopyDataInit CopyDataInit: ldr r4, [r2, r3] str r4, [r0, r3] adds r3, r3, #4 LoopCopyDataInit: adds r4, r0, r3 cmp r4, r1 bcc CopyDataInit /* Zero fill the bss segment. */ ldr r2, =_sbss ldr r4, =_ebss movs r3, #0 b LoopFillZerobss FillZerobss: str r3, [r2] adds r2, r2, #4 LoopFillZerobss: cmp r2, r4 bcc FillZerobss /* Call static constructors */ bl __libc_init_array /* Call the application's entry point.*/ bl main LoopForever: b LoopForever .size Reset_Handler, .-Reset_Handler /** * @brief This is the code that gets called when the processor receives an * unexpected interrupt. This simply enters an infinite loop, preserving * the system state for examination by a debugger. * * @param None * @retval : None */ .section .text.Default_Handler,"ax",%progbits Default_Handler: Infinite_Loop: b Infinite_Loop .size Default_Handler, .-Default_Handler /****************************************************************************** * * The minimal vector table for a Cortex-M4. Note that the proper constructs * must be placed on this to ensure that it ends up at physical address * 0x0000.0000. * ******************************************************************************/ .section .isr_vector,"a",%progbits .type g_pfnVectors, %object g_pfnVectors: .word _estack .word Reset_Handler .word NMI_Handler .word HardFault_Handler .word MemManage_Handler .word BusFault_Handler .word UsageFault_Handler .word 0 .word 0 .word 0 .word 0 .word SVC_Handler .word DebugMon_Handler .word 0 .word PendSV_Handler .word SysTick_Handler .word WWDG_IRQHandler .word PVD_PVM_IRQHandler .word RTC_TAMP_LSECSS_IRQHandler .word RTC_WKUP_IRQHandler .word FLASH_IRQHandler .word RCC_IRQHandler .word EXTI0_IRQHandler .word EXTI1_IRQHandler .word EXTI2_IRQHandler .word EXTI3_IRQHandler .word EXTI4_IRQHandler .word DMA1_Channel1_IRQHandler .word DMA1_Channel2_IRQHandler .word DMA1_Channel3_IRQHandler .word DMA1_Channel4_IRQHandler .word DMA1_Channel5_IRQHandler .word DMA1_Channel6_IRQHandler .word DMA1_Channel7_IRQHandler .word ADC1_2_IRQHandler .word USB_HP_IRQHandler .word USB_LP_IRQHandler .word FDCAN1_IT0_IRQHandler .word FDCAN1_IT1_IRQHandler .word EXTI9_5_IRQHandler .word TIM1_BRK_TIM15_IRQHandler .word TIM1_UP_TIM16_IRQHandler .word TIM1_TRG_COM_TIM17_IRQHandler .word TIM1_CC_IRQHandler .word TIM2_IRQHandler .word TIM3_IRQHandler .word TIM4_IRQHandler .word I2C1_EV_IRQHandler .word I2C1_ER_IRQHandler .word I2C2_EV_IRQHandler .word I2C2_ER_IRQHandler .word SPI1_IRQHandler .word SPI2_IRQHandler .word USART1_IRQHandler .word USART2_IRQHandler .word USART3_IRQHandler .word EXTI15_10_IRQHandler .word RTC_Alarm_IRQHandler .word USBWakeUp_IRQHandler .word TIM8_BRK_IRQHandler .word TIM8_UP_IRQHandler .word TIM8_TRG_COM_IRQHandler .word TIM8_CC_IRQHandler .word ADC3_IRQHandler .word 0 .word LPTIM1_IRQHandler .word 0 .word SPI3_IRQHandler .word UART4_IRQHandler .word UART5_IRQHandler .word TIM6_DAC_IRQHandler .word TIM7_IRQHandler .word DMA2_Channel1_IRQHandler .word DMA2_Channel2_IRQHandler .word DMA2_Channel3_IRQHandler .word DMA2_Channel4_IRQHandler .word DMA2_Channel5_IRQHandler .word 0 .word 0 .word UCPD1_IRQHandler .word COMP1_2_3_IRQHandler .word COMP4_IRQHandler .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word CRS_IRQHandler .word SAI1_IRQHandler .word TIM20_BRK_IRQHandler .word TIM20_UP_IRQHandler .word TIM20_TRG_COM_IRQHandler .word TIM20_CC_IRQHandler .word FPU_IRQHandler .word 0 .word 0 .word 0 .word AES_IRQHandler .word FDCAN2_IT0_IRQHandler .word FDCAN2_IT1_IRQHandler .word 0 .word 0 .word RNG_IRQHandler .word LPUART1_IRQHandler .word I2C3_EV_IRQHandler .word I2C3_ER_IRQHandler .word DMAMUX_OVR_IRQHandler .word QUADSPI_IRQHandler .word DMA1_Channel8_IRQHandler .word DMA2_Channel6_IRQHandler .word DMA2_Channel7_IRQHandler .word DMA2_Channel8_IRQHandler .word CORDIC_IRQHandler .word FMAC_IRQHandler .size g_pfnVectors, .-g_pfnVectors /******************************************************************************* * * Provide weak aliases for each Exception handler to the Default_Handler. * As they are weak aliases, any function with the same name will override * this definition. * *******************************************************************************/ .weak NMI_Handler .thumb_set NMI_Handler,Default_Handler .weak HardFault_Handler .thumb_set HardFault_Handler,Default_Handler .weak MemManage_Handler .thumb_set MemManage_Handler,Default_Handler .weak BusFault_Handler .thumb_set BusFault_Handler,Default_Handler .weak UsageFault_Handler .thumb_set UsageFault_Handler,Default_Handler .weak SVC_Handler .thumb_set SVC_Handler,Default_Handler .weak DebugMon_Handler .thumb_set DebugMon_Handler,Default_Handler .weak PendSV_Handler .thumb_set PendSV_Handler,Default_Handler .weak SysTick_Handler .thumb_set SysTick_Handler,Default_Handler .weak WWDG_IRQHandler .thumb_set WWDG_IRQHandler,Default_Handler .weak PVD_PVM_IRQHandler .thumb_set PVD_PVM_IRQHandler,Default_Handler .weak RTC_TAMP_LSECSS_IRQHandler .thumb_set RTC_TAMP_LSECSS_IRQHandler,Default_Handler .weak RTC_WKUP_IRQHandler .thumb_set RTC_WKUP_IRQHandler,Default_Handler .weak FLASH_IRQHandler .thumb_set FLASH_IRQHandler,Default_Handler .weak RCC_IRQHandler .thumb_set RCC_IRQHandler,Default_Handler .weak EXTI0_IRQHandler .thumb_set EXTI0_IRQHandler,Default_Handler .weak EXTI1_IRQHandler .thumb_set EXTI1_IRQHandler,Default_Handler .weak EXTI2_IRQHandler .thumb_set EXTI2_IRQHandler,Default_Handler .weak EXTI3_IRQHandler .thumb_set EXTI3_IRQHandler,Default_Handler .weak EXTI4_IRQHandler .thumb_set EXTI4_IRQHandler,Default_Handler .weak DMA1_Channel1_IRQHandler .thumb_set DMA1_Channel1_IRQHandler,Default_Handler .weak DMA1_Channel2_IRQHandler .thumb_set DMA1_Channel2_IRQHandler,Default_Handler .weak DMA1_Channel3_IRQHandler .thumb_set DMA1_Channel3_IRQHandler,Default_Handler .weak DMA1_Channel4_IRQHandler .thumb_set DMA1_Channel4_IRQHandler,Default_Handler .weak DMA1_Channel5_IRQHandler .thumb_set DMA1_Channel5_IRQHandler,Default_Handler .weak DMA1_Channel6_IRQHandler .thumb_set DMA1_Channel6_IRQHandler,Default_Handler .weak DMA1_Channel7_IRQHandler .thumb_set DMA1_Channel7_IRQHandler,Default_Handler .weak ADC1_2_IRQHandler .thumb_set ADC1_2_IRQHandler,Default_Handler .weak USB_HP_IRQHandler .thumb_set USB_HP_IRQHandler,Default_Handler .weak USB_LP_IRQHandler .thumb_set USB_LP_IRQHandler,Default_Handler .weak FDCAN1_IT0_IRQHandler .thumb_set FDCAN1_IT0_IRQHandler,Default_Handler .weak FDCAN1_IT1_IRQHandler .thumb_set FDCAN1_IT1_IRQHandler,Default_Handler .weak EXTI9_5_IRQHandler .thumb_set EXTI9_5_IRQHandler,Default_Handler .weak TIM1_BRK_TIM15_IRQHandler .thumb_set TIM1_BRK_TIM15_IRQHandler,Default_Handler .weak TIM1_UP_TIM16_IRQHandler .thumb_set TIM1_UP_TIM16_IRQHandler,Default_Handler .weak TIM1_TRG_COM_TIM17_IRQHandler .thumb_set TIM1_TRG_COM_TIM17_IRQHandler,Default_Handler .weak TIM1_CC_IRQHandler .thumb_set TIM1_CC_IRQHandler,Default_Handler .weak TIM2_IRQHandler .thumb_set TIM2_IRQHandler,Default_Handler .weak TIM3_IRQHandler .thumb_set TIM3_IRQHandler,Default_Handler .weak TIM4_IRQHandler .thumb_set TIM4_IRQHandler,Default_Handler .weak I2C1_EV_IRQHandler .thumb_set I2C1_EV_IRQHandler,Default_Handler .weak I2C1_ER_IRQHandler .thumb_set I2C1_ER_IRQHandler,Default_Handler .weak I2C2_EV_IRQHandler .thumb_set I2C2_EV_IRQHandler,Default_Handler .weak I2C2_ER_IRQHandler .thumb_set I2C2_ER_IRQHandler,Default_Handler .weak SPI1_IRQHandler .thumb_set SPI1_IRQHandler,Default_Handler .weak SPI2_IRQHandler .thumb_set SPI2_IRQHandler,Default_Handler .weak USART1_IRQHandler .thumb_set USART1_IRQHandler,Default_Handler .weak USART2_IRQHandler .thumb_set USART2_IRQHandler,Default_Handler .weak USART3_IRQHandler .thumb_set USART3_IRQHandler,Default_Handler .weak EXTI15_10_IRQHandler .thumb_set EXTI15_10_IRQHandler,Default_Handler .weak RTC_Alarm_IRQHandler .thumb_set RTC_Alarm_IRQHandler,Default_Handler .weak USBWakeUp_IRQHandler .thumb_set USBWakeUp_IRQHandler,Default_Handler .weak TIM8_BRK_IRQHandler .thumb_set TIM8_BRK_IRQHandler,Default_Handler .weak TIM8_UP_IRQHandler .thumb_set TIM8_UP_IRQHandler,Default_Handler .weak TIM8_TRG_COM_IRQHandler .thumb_set TIM8_TRG_COM_IRQHandler,Default_Handler .weak TIM8_CC_IRQHandler .thumb_set TIM8_CC_IRQHandler,Default_Handler .weak ADC3_IRQHandler .thumb_set ADC3_IRQHandler,Default_Handler .weak LPTIM1_IRQHandler .thumb_set LPTIM1_IRQHandler,Default_Handler .weak SPI3_IRQHandler .thumb_set SPI3_IRQHandler,Default_Handler .weak UART4_IRQHandler .thumb_set UART4_IRQHandler,Default_Handler .weak UART5_IRQHandler .thumb_set UART5_IRQHandler,Default_Handler .weak TIM6_DAC_IRQHandler .thumb_set TIM6_DAC_IRQHandler,Default_Handler .weak TIM7_IRQHandler .thumb_set TIM7_IRQHandler,Default_Handler .weak DMA2_Channel1_IRQHandler .thumb_set DMA2_Channel1_IRQHandler,Default_Handler .weak DMA2_Channel2_IRQHandler .thumb_set DMA2_Channel2_IRQHandler,Default_Handler .weak DMA2_Channel3_IRQHandler .thumb_set DMA2_Channel3_IRQHandler,Default_Handler .weak DMA2_Channel4_IRQHandler .thumb_set DMA2_Channel4_IRQHandler,Default_Handler .weak DMA2_Channel5_IRQHandler .thumb_set DMA2_Channel5_IRQHandler,Default_Handler .weak UCPD1_IRQHandler .thumb_set UCPD1_IRQHandler,Default_Handler .weak COMP1_2_3_IRQHandler .thumb_set COMP1_2_3_IRQHandler,Default_Handler .weak COMP4_IRQHandler .thumb_set COMP4_IRQHandler,Default_Handler .weak CRS_IRQHandler .thumb_set CRS_IRQHandler,Default_Handler .weak SAI1_IRQHandler .thumb_set SAI1_IRQHandler,Default_Handler .weak TIM20_BRK_IRQHandler .thumb_set TIM20_BRK_IRQHandler,Default_Handler .weak TIM20_UP_IRQHandler .thumb_set TIM20_UP_IRQHandler,Default_Handler .weak TIM20_TRG_COM_IRQHandler .thumb_set TIM20_TRG_COM_IRQHandler,Default_Handler .weak TIM20_CC_IRQHandler .thumb_set TIM20_CC_IRQHandler,Default_Handler .weak FPU_IRQHandler .thumb_set FPU_IRQHandler,Default_Handler .weak AES_IRQHandler .thumb_set AES_IRQHandler,Default_Handler .weak FDCAN2_IT0_IRQHandler .thumb_set FDCAN2_IT0_IRQHandler,Default_Handler .weak FDCAN2_IT1_IRQHandler .thumb_set FDCAN2_IT1_IRQHandler,Default_Handler .weak RNG_IRQHandler .thumb_set RNG_IRQHandler,Default_Handler .weak LPUART1_IRQHandler .thumb_set LPUART1_IRQHandler,Default_Handler .weak I2C3_EV_IRQHandler .thumb_set I2C3_EV_IRQHandler,Default_Handler .weak I2C3_ER_IRQHandler .thumb_set I2C3_ER_IRQHandler,Default_Handler .weak DMAMUX_OVR_IRQHandler .thumb_set DMAMUX_OVR_IRQHandler,Default_Handler .weak QUADSPI_IRQHandler .thumb_set QUADSPI_IRQHandler,Default_Handler .weak DMA1_Channel8_IRQHandler .thumb_set DMA1_Channel8_IRQHandler,Default_Handler .weak DMA2_Channel6_IRQHandler .thumb_set DMA2_Channel6_IRQHandler,Default_Handler .weak DMA2_Channel7_IRQHandler .thumb_set DMA2_Channel7_IRQHandler,Default_Handler .weak DMA2_Channel8_IRQHandler .thumb_set DMA2_Channel8_IRQHandler,Default_Handler .weak CORDIC_IRQHandler .thumb_set CORDIC_IRQHandler,Default_Handler .weak FMAC_IRQHandler .thumb_set FMAC_IRQHandler,Default_Handler
Northeastern-Electric-Racing/Iroh
12,605
Drivers/CMSIS/Device/ST/STM32G4xx/Source/Templates/gcc/startup_stm32g441xx.s
/** ****************************************************************************** * @file startup_stm32g441xx.s * @author MCD Application Team * @brief STM32G441xx devices vector table GCC toolchain. * This module performs: * - Set the initial SP * - Set the initial PC == Reset_Handler, * - Set the vector table entries with the exceptions ISR address, * - Configure the clock system * - Branches to main in the C library (which eventually * calls main()). * After Reset the Cortex-M4 processor is in Thread mode, * priority is Privileged, and the Stack is set to Main. ****************************************************************************** * @attention * * Copyright (c) 2019 STMicroelectronics. * All rights reserved. * * This software is licensed under terms that can be found in the LICENSE file * in the root directory of this software component. * If no LICENSE file comes with this software, it is provided AS-IS. * ****************************************************************************** */ .syntax unified .cpu cortex-m4 .fpu softvfp .thumb .global g_pfnVectors .global Default_Handler /* start address for the initialization values of the .data section. defined in linker script */ .word _sidata /* start address for the .data section. defined in linker script */ .word _sdata /* end address for the .data section. defined in linker script */ .word _edata /* start address for the .bss section. defined in linker script */ .word _sbss /* end address for the .bss section. defined in linker script */ .word _ebss .equ BootRAM, 0xF1E0F85F /** * @brief This is the code that gets called when the processor first * starts execution following a reset event. Only the absolutely * necessary set is performed, after which the application * supplied main() routine is called. * @param None * @retval : None */ .section .text.Reset_Handler .weak Reset_Handler .type Reset_Handler, %function Reset_Handler: ldr r0, =_estack mov sp, r0 /* set stack pointer */ /* Call the clock system initialization function.*/ bl SystemInit /* Copy the data segment initializers from flash to SRAM */ ldr r0, =_sdata ldr r1, =_edata ldr r2, =_sidata movs r3, #0 b LoopCopyDataInit CopyDataInit: ldr r4, [r2, r3] str r4, [r0, r3] adds r3, r3, #4 LoopCopyDataInit: adds r4, r0, r3 cmp r4, r1 bcc CopyDataInit /* Zero fill the bss segment. */ ldr r2, =_sbss ldr r4, =_ebss movs r3, #0 b LoopFillZerobss FillZerobss: str r3, [r2] adds r2, r2, #4 LoopFillZerobss: cmp r2, r4 bcc FillZerobss /* Call static constructors */ bl __libc_init_array /* Call the application's entry point.*/ bl main LoopForever: b LoopForever .size Reset_Handler, .-Reset_Handler /** * @brief This is the code that gets called when the processor receives an * unexpected interrupt. This simply enters an infinite loop, preserving * the system state for examination by a debugger. * * @param None * @retval : None */ .section .text.Default_Handler,"ax",%progbits Default_Handler: Infinite_Loop: b Infinite_Loop .size Default_Handler, .-Default_Handler /****************************************************************************** * * The minimal vector table for a Cortex-M4. Note that the proper constructs * must be placed on this to ensure that it ends up at physical address * 0x0000.0000. * ******************************************************************************/ .section .isr_vector,"a",%progbits .type g_pfnVectors, %object g_pfnVectors: .word _estack .word Reset_Handler .word NMI_Handler .word HardFault_Handler .word MemManage_Handler .word BusFault_Handler .word UsageFault_Handler .word 0 .word 0 .word 0 .word 0 .word SVC_Handler .word DebugMon_Handler .word 0 .word PendSV_Handler .word SysTick_Handler .word WWDG_IRQHandler .word PVD_PVM_IRQHandler .word RTC_TAMP_LSECSS_IRQHandler .word RTC_WKUP_IRQHandler .word FLASH_IRQHandler .word RCC_IRQHandler .word EXTI0_IRQHandler .word EXTI1_IRQHandler .word EXTI2_IRQHandler .word EXTI3_IRQHandler .word EXTI4_IRQHandler .word DMA1_Channel1_IRQHandler .word DMA1_Channel2_IRQHandler .word DMA1_Channel3_IRQHandler .word DMA1_Channel4_IRQHandler .word DMA1_Channel5_IRQHandler .word DMA1_Channel6_IRQHandler .word 0 .word ADC1_2_IRQHandler .word USB_HP_IRQHandler .word USB_LP_IRQHandler .word FDCAN1_IT0_IRQHandler .word FDCAN1_IT1_IRQHandler .word EXTI9_5_IRQHandler .word TIM1_BRK_TIM15_IRQHandler .word TIM1_UP_TIM16_IRQHandler .word TIM1_TRG_COM_TIM17_IRQHandler .word TIM1_CC_IRQHandler .word TIM2_IRQHandler .word TIM3_IRQHandler .word TIM4_IRQHandler .word I2C1_EV_IRQHandler .word I2C1_ER_IRQHandler .word I2C2_EV_IRQHandler .word I2C2_ER_IRQHandler .word SPI1_IRQHandler .word SPI2_IRQHandler .word USART1_IRQHandler .word USART2_IRQHandler .word USART3_IRQHandler .word EXTI15_10_IRQHandler .word RTC_Alarm_IRQHandler .word USBWakeUp_IRQHandler .word TIM8_BRK_IRQHandler .word TIM8_UP_IRQHandler .word TIM8_TRG_COM_IRQHandler .word TIM8_CC_IRQHandler .word 0 .word 0 .word LPTIM1_IRQHandler .word 0 .word SPI3_IRQHandler .word UART4_IRQHandler .word 0 .word TIM6_DAC_IRQHandler .word TIM7_IRQHandler .word DMA2_Channel1_IRQHandler .word DMA2_Channel2_IRQHandler .word DMA2_Channel3_IRQHandler .word DMA2_Channel4_IRQHandler .word DMA2_Channel5_IRQHandler .word 0 .word 0 .word UCPD1_IRQHandler .word COMP1_2_3_IRQHandler .word COMP4_IRQHandler .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word CRS_IRQHandler .word SAI1_IRQHandler .word 0 .word 0 .word 0 .word 0 .word FPU_IRQHandler .word 0 .word 0 .word 0 .word AES_IRQHandler .word 0 .word 0 .word 0 .word 0 .word RNG_IRQHandler .word LPUART1_IRQHandler .word I2C3_EV_IRQHandler .word I2C3_ER_IRQHandler .word DMAMUX_OVR_IRQHandler .word 0 .word 0 .word DMA2_Channel6_IRQHandler .word 0 .word 0 .word CORDIC_IRQHandler .word FMAC_IRQHandler .size g_pfnVectors, .-g_pfnVectors /******************************************************************************* * * Provide weak aliases for each Exception handler to the Default_Handler. * As they are weak aliases, any function with the same name will override * this definition. * *******************************************************************************/ .weak NMI_Handler .thumb_set NMI_Handler,Default_Handler .weak HardFault_Handler .thumb_set HardFault_Handler,Default_Handler .weak MemManage_Handler .thumb_set MemManage_Handler,Default_Handler .weak BusFault_Handler .thumb_set BusFault_Handler,Default_Handler .weak UsageFault_Handler .thumb_set UsageFault_Handler,Default_Handler .weak SVC_Handler .thumb_set SVC_Handler,Default_Handler .weak DebugMon_Handler .thumb_set DebugMon_Handler,Default_Handler .weak PendSV_Handler .thumb_set PendSV_Handler,Default_Handler .weak SysTick_Handler .thumb_set SysTick_Handler,Default_Handler .weak WWDG_IRQHandler .thumb_set WWDG_IRQHandler,Default_Handler .weak PVD_PVM_IRQHandler .thumb_set PVD_PVM_IRQHandler,Default_Handler .weak RTC_TAMP_LSECSS_IRQHandler .thumb_set RTC_TAMP_LSECSS_IRQHandler,Default_Handler .weak RTC_WKUP_IRQHandler .thumb_set RTC_WKUP_IRQHandler,Default_Handler .weak FLASH_IRQHandler .thumb_set FLASH_IRQHandler,Default_Handler .weak RCC_IRQHandler .thumb_set RCC_IRQHandler,Default_Handler .weak EXTI0_IRQHandler .thumb_set EXTI0_IRQHandler,Default_Handler .weak EXTI1_IRQHandler .thumb_set EXTI1_IRQHandler,Default_Handler .weak EXTI2_IRQHandler .thumb_set EXTI2_IRQHandler,Default_Handler .weak EXTI3_IRQHandler .thumb_set EXTI3_IRQHandler,Default_Handler .weak EXTI4_IRQHandler .thumb_set EXTI4_IRQHandler,Default_Handler .weak DMA1_Channel1_IRQHandler .thumb_set DMA1_Channel1_IRQHandler,Default_Handler .weak DMA1_Channel2_IRQHandler .thumb_set DMA1_Channel2_IRQHandler,Default_Handler .weak DMA1_Channel3_IRQHandler .thumb_set DMA1_Channel3_IRQHandler,Default_Handler .weak DMA1_Channel4_IRQHandler .thumb_set DMA1_Channel4_IRQHandler,Default_Handler .weak DMA1_Channel5_IRQHandler .thumb_set DMA1_Channel5_IRQHandler,Default_Handler .weak DMA1_Channel6_IRQHandler .thumb_set DMA1_Channel6_IRQHandler,Default_Handler .weak ADC1_2_IRQHandler .thumb_set ADC1_2_IRQHandler,Default_Handler .weak USB_HP_IRQHandler .thumb_set USB_HP_IRQHandler,Default_Handler .weak USB_LP_IRQHandler .thumb_set USB_LP_IRQHandler,Default_Handler .weak FDCAN1_IT0_IRQHandler .thumb_set FDCAN1_IT0_IRQHandler,Default_Handler .weak FDCAN1_IT1_IRQHandler .thumb_set FDCAN1_IT1_IRQHandler,Default_Handler .weak EXTI9_5_IRQHandler .thumb_set EXTI9_5_IRQHandler,Default_Handler .weak TIM1_BRK_TIM15_IRQHandler .thumb_set TIM1_BRK_TIM15_IRQHandler,Default_Handler .weak TIM1_UP_TIM16_IRQHandler .thumb_set TIM1_UP_TIM16_IRQHandler,Default_Handler .weak TIM1_TRG_COM_TIM17_IRQHandler .thumb_set TIM1_TRG_COM_TIM17_IRQHandler,Default_Handler .weak TIM1_CC_IRQHandler .thumb_set TIM1_CC_IRQHandler,Default_Handler .weak TIM2_IRQHandler .thumb_set TIM2_IRQHandler,Default_Handler .weak TIM3_IRQHandler .thumb_set TIM3_IRQHandler,Default_Handler .weak TIM4_IRQHandler .thumb_set TIM4_IRQHandler,Default_Handler .weak I2C1_EV_IRQHandler .thumb_set I2C1_EV_IRQHandler,Default_Handler .weak I2C1_ER_IRQHandler .thumb_set I2C1_ER_IRQHandler,Default_Handler .weak I2C2_EV_IRQHandler .thumb_set I2C2_EV_IRQHandler,Default_Handler .weak I2C2_ER_IRQHandler .thumb_set I2C2_ER_IRQHandler,Default_Handler .weak SPI1_IRQHandler .thumb_set SPI1_IRQHandler,Default_Handler .weak SPI2_IRQHandler .thumb_set SPI2_IRQHandler,Default_Handler .weak USART1_IRQHandler .thumb_set USART1_IRQHandler,Default_Handler .weak USART2_IRQHandler .thumb_set USART2_IRQHandler,Default_Handler .weak USART3_IRQHandler .thumb_set USART3_IRQHandler,Default_Handler .weak EXTI15_10_IRQHandler .thumb_set EXTI15_10_IRQHandler,Default_Handler .weak RTC_Alarm_IRQHandler .thumb_set RTC_Alarm_IRQHandler,Default_Handler .weak USBWakeUp_IRQHandler .thumb_set USBWakeUp_IRQHandler,Default_Handler .weak TIM8_BRK_IRQHandler .thumb_set TIM8_BRK_IRQHandler,Default_Handler .weak TIM8_UP_IRQHandler .thumb_set TIM8_UP_IRQHandler,Default_Handler .weak TIM8_TRG_COM_IRQHandler .thumb_set TIM8_TRG_COM_IRQHandler,Default_Handler .weak TIM8_CC_IRQHandler .thumb_set TIM8_CC_IRQHandler,Default_Handler .weak LPTIM1_IRQHandler .thumb_set LPTIM1_IRQHandler,Default_Handler .weak SPI3_IRQHandler .thumb_set SPI3_IRQHandler,Default_Handler .weak UART4_IRQHandler .thumb_set UART4_IRQHandler,Default_Handler .weak TIM6_DAC_IRQHandler .thumb_set TIM6_DAC_IRQHandler,Default_Handler .weak TIM7_IRQHandler .thumb_set TIM7_IRQHandler,Default_Handler .weak DMA2_Channel1_IRQHandler .thumb_set DMA2_Channel1_IRQHandler,Default_Handler .weak DMA2_Channel2_IRQHandler .thumb_set DMA2_Channel2_IRQHandler,Default_Handler .weak DMA2_Channel3_IRQHandler .thumb_set DMA2_Channel3_IRQHandler,Default_Handler .weak DMA2_Channel4_IRQHandler .thumb_set DMA2_Channel4_IRQHandler,Default_Handler .weak DMA2_Channel5_IRQHandler .thumb_set DMA2_Channel5_IRQHandler,Default_Handler .weak UCPD1_IRQHandler .thumb_set UCPD1_IRQHandler,Default_Handler .weak COMP1_2_3_IRQHandler .thumb_set COMP1_2_3_IRQHandler,Default_Handler .weak COMP4_IRQHandler .thumb_set COMP4_IRQHandler,Default_Handler .weak CRS_IRQHandler .thumb_set CRS_IRQHandler,Default_Handler .weak SAI1_IRQHandler .thumb_set SAI1_IRQHandler,Default_Handler .weak FPU_IRQHandler .thumb_set FPU_IRQHandler,Default_Handler .weak AES_IRQHandler .thumb_set AES_IRQHandler,Default_Handler .weak RNG_IRQHandler .thumb_set RNG_IRQHandler,Default_Handler .weak LPUART1_IRQHandler .thumb_set LPUART1_IRQHandler,Default_Handler .weak I2C3_EV_IRQHandler .thumb_set I2C3_EV_IRQHandler,Default_Handler .weak I2C3_ER_IRQHandler .thumb_set I2C3_ER_IRQHandler,Default_Handler .weak DMAMUX_OVR_IRQHandler .thumb_set DMAMUX_OVR_IRQHandler,Default_Handler .weak DMA2_Channel6_IRQHandler .thumb_set DMA2_Channel6_IRQHandler,Default_Handler .weak CORDIC_IRQHandler .thumb_set CORDIC_IRQHandler,Default_Handler .weak FMAC_IRQHandler .thumb_set FMAC_IRQHandler,Default_Handler
Northeastern-Electric-Racing/Iroh
15,535
Drivers/CMSIS/Device/ST/STM32G4xx/Source/Templates/gcc/startup_stm32g474xx.s
/** ****************************************************************************** * @file startup_stm32g474xx.s * @author MCD Application Team * @brief STM32G474xx devices vector table GCC toolchain. * This module performs: * - Set the initial SP * - Set the initial PC == Reset_Handler, * - Set the vector table entries with the exceptions ISR address, * - Configure the clock system * - Branches to main in the C library (which eventually * calls main()). * After Reset the Cortex-M4 processor is in Thread mode, * priority is Privileged, and the Stack is set to Main. ****************************************************************************** * @attention * * Copyright (c) 2019 STMicroelectronics. * All rights reserved. * * This software is licensed under terms that can be found in the LICENSE file * in the root directory of this software component. * If no LICENSE file comes with this software, it is provided AS-IS. * ****************************************************************************** */ .syntax unified .cpu cortex-m4 .fpu softvfp .thumb .global g_pfnVectors .global Default_Handler /* start address for the initialization values of the .data section. defined in linker script */ .word _sidata /* start address for the .data section. defined in linker script */ .word _sdata /* end address for the .data section. defined in linker script */ .word _edata /* start address for the .bss section. defined in linker script */ .word _sbss /* end address for the .bss section. defined in linker script */ .word _ebss .equ BootRAM, 0xF1E0F85F /** * @brief This is the code that gets called when the processor first * starts execution following a reset event. Only the absolutely * necessary set is performed, after which the application * supplied main() routine is called. * @param None * @retval : None */ .section .text.Reset_Handler .weak Reset_Handler .type Reset_Handler, %function Reset_Handler: ldr r0, =_estack mov sp, r0 /* set stack pointer */ /* Call the clock system initialization function.*/ bl SystemInit /* Copy the data segment initializers from flash to SRAM */ ldr r0, =_sdata ldr r1, =_edata ldr r2, =_sidata movs r3, #0 b LoopCopyDataInit CopyDataInit: ldr r4, [r2, r3] str r4, [r0, r3] adds r3, r3, #4 LoopCopyDataInit: adds r4, r0, r3 cmp r4, r1 bcc CopyDataInit /* Zero fill the bss segment. */ ldr r2, =_sbss ldr r4, =_ebss movs r3, #0 b LoopFillZerobss FillZerobss: str r3, [r2] adds r2, r2, #4 LoopFillZerobss: cmp r2, r4 bcc FillZerobss /* Call static constructors */ bl __libc_init_array /* Call the application's entry point.*/ bl main LoopForever: b LoopForever .size Reset_Handler, .-Reset_Handler /** * @brief This is the code that gets called when the processor receives an * unexpected interrupt. This simply enters an infinite loop, preserving * the system state for examination by a debugger. * * @param None * @retval : None */ .section .text.Default_Handler,"ax",%progbits Default_Handler: Infinite_Loop: b Infinite_Loop .size Default_Handler, .-Default_Handler /****************************************************************************** * * The minimal vector table for a Cortex-M4. Note that the proper constructs * must be placed on this to ensure that it ends up at physical address * 0x0000.0000. * ******************************************************************************/ .section .isr_vector,"a",%progbits .type g_pfnVectors, %object g_pfnVectors: .word _estack .word Reset_Handler .word NMI_Handler .word HardFault_Handler .word MemManage_Handler .word BusFault_Handler .word UsageFault_Handler .word 0 .word 0 .word 0 .word 0 .word SVC_Handler .word DebugMon_Handler .word 0 .word PendSV_Handler .word SysTick_Handler .word WWDG_IRQHandler .word PVD_PVM_IRQHandler .word RTC_TAMP_LSECSS_IRQHandler .word RTC_WKUP_IRQHandler .word FLASH_IRQHandler .word RCC_IRQHandler .word EXTI0_IRQHandler .word EXTI1_IRQHandler .word EXTI2_IRQHandler .word EXTI3_IRQHandler .word EXTI4_IRQHandler .word DMA1_Channel1_IRQHandler .word DMA1_Channel2_IRQHandler .word DMA1_Channel3_IRQHandler .word DMA1_Channel4_IRQHandler .word DMA1_Channel5_IRQHandler .word DMA1_Channel6_IRQHandler .word DMA1_Channel7_IRQHandler .word ADC1_2_IRQHandler .word USB_HP_IRQHandler .word USB_LP_IRQHandler .word FDCAN1_IT0_IRQHandler .word FDCAN1_IT1_IRQHandler .word EXTI9_5_IRQHandler .word TIM1_BRK_TIM15_IRQHandler .word TIM1_UP_TIM16_IRQHandler .word TIM1_TRG_COM_TIM17_IRQHandler .word TIM1_CC_IRQHandler .word TIM2_IRQHandler .word TIM3_IRQHandler .word TIM4_IRQHandler .word I2C1_EV_IRQHandler .word I2C1_ER_IRQHandler .word I2C2_EV_IRQHandler .word I2C2_ER_IRQHandler .word SPI1_IRQHandler .word SPI2_IRQHandler .word USART1_IRQHandler .word USART2_IRQHandler .word USART3_IRQHandler .word EXTI15_10_IRQHandler .word RTC_Alarm_IRQHandler .word USBWakeUp_IRQHandler .word TIM8_BRK_IRQHandler .word TIM8_UP_IRQHandler .word TIM8_TRG_COM_IRQHandler .word TIM8_CC_IRQHandler .word ADC3_IRQHandler .word FMC_IRQHandler .word LPTIM1_IRQHandler .word TIM5_IRQHandler .word SPI3_IRQHandler .word UART4_IRQHandler .word UART5_IRQHandler .word TIM6_DAC_IRQHandler .word TIM7_DAC_IRQHandler .word DMA2_Channel1_IRQHandler .word DMA2_Channel2_IRQHandler .word DMA2_Channel3_IRQHandler .word DMA2_Channel4_IRQHandler .word DMA2_Channel5_IRQHandler .word ADC4_IRQHandler .word ADC5_IRQHandler .word UCPD1_IRQHandler .word COMP1_2_3_IRQHandler .word COMP4_5_6_IRQHandler .word COMP7_IRQHandler .word HRTIM1_Master_IRQHandler .word HRTIM1_TIMA_IRQHandler .word HRTIM1_TIMB_IRQHandler .word HRTIM1_TIMC_IRQHandler .word HRTIM1_TIMD_IRQHandler .word HRTIM1_TIME_IRQHandler .word HRTIM1_FLT_IRQHandler .word HRTIM1_TIMF_IRQHandler .word CRS_IRQHandler .word SAI1_IRQHandler .word TIM20_BRK_IRQHandler .word TIM20_UP_IRQHandler .word TIM20_TRG_COM_IRQHandler .word TIM20_CC_IRQHandler .word FPU_IRQHandler .word I2C4_EV_IRQHandler .word I2C4_ER_IRQHandler .word SPI4_IRQHandler .word 0 .word FDCAN2_IT0_IRQHandler .word FDCAN2_IT1_IRQHandler .word FDCAN3_IT0_IRQHandler .word FDCAN3_IT1_IRQHandler .word RNG_IRQHandler .word LPUART1_IRQHandler .word I2C3_EV_IRQHandler .word I2C3_ER_IRQHandler .word DMAMUX_OVR_IRQHandler .word QUADSPI_IRQHandler .word DMA1_Channel8_IRQHandler .word DMA2_Channel6_IRQHandler .word DMA2_Channel7_IRQHandler .word DMA2_Channel8_IRQHandler .word CORDIC_IRQHandler .word FMAC_IRQHandler .size g_pfnVectors, .-g_pfnVectors /******************************************************************************* * * Provide weak aliases for each Exception handler to the Default_Handler. * As they are weak aliases, any function with the same name will override * this definition. * *******************************************************************************/ .weak NMI_Handler .thumb_set NMI_Handler,Default_Handler .weak HardFault_Handler .thumb_set HardFault_Handler,Default_Handler .weak MemManage_Handler .thumb_set MemManage_Handler,Default_Handler .weak BusFault_Handler .thumb_set BusFault_Handler,Default_Handler .weak UsageFault_Handler .thumb_set UsageFault_Handler,Default_Handler .weak SVC_Handler .thumb_set SVC_Handler,Default_Handler .weak DebugMon_Handler .thumb_set DebugMon_Handler,Default_Handler .weak PendSV_Handler .thumb_set PendSV_Handler,Default_Handler .weak SysTick_Handler .thumb_set SysTick_Handler,Default_Handler .weak WWDG_IRQHandler .thumb_set WWDG_IRQHandler,Default_Handler .weak PVD_PVM_IRQHandler .thumb_set PVD_PVM_IRQHandler,Default_Handler .weak RTC_TAMP_LSECSS_IRQHandler .thumb_set RTC_TAMP_LSECSS_IRQHandler,Default_Handler .weak RTC_WKUP_IRQHandler .thumb_set RTC_WKUP_IRQHandler,Default_Handler .weak FLASH_IRQHandler .thumb_set FLASH_IRQHandler,Default_Handler .weak RCC_IRQHandler .thumb_set RCC_IRQHandler,Default_Handler .weak EXTI0_IRQHandler .thumb_set EXTI0_IRQHandler,Default_Handler .weak EXTI1_IRQHandler .thumb_set EXTI1_IRQHandler,Default_Handler .weak EXTI2_IRQHandler .thumb_set EXTI2_IRQHandler,Default_Handler .weak EXTI3_IRQHandler .thumb_set EXTI3_IRQHandler,Default_Handler .weak EXTI4_IRQHandler .thumb_set EXTI4_IRQHandler,Default_Handler .weak DMA1_Channel1_IRQHandler .thumb_set DMA1_Channel1_IRQHandler,Default_Handler .weak DMA1_Channel2_IRQHandler .thumb_set DMA1_Channel2_IRQHandler,Default_Handler .weak DMA1_Channel3_IRQHandler .thumb_set DMA1_Channel3_IRQHandler,Default_Handler .weak DMA1_Channel4_IRQHandler .thumb_set DMA1_Channel4_IRQHandler,Default_Handler .weak DMA1_Channel5_IRQHandler .thumb_set DMA1_Channel5_IRQHandler,Default_Handler .weak DMA1_Channel6_IRQHandler .thumb_set DMA1_Channel6_IRQHandler,Default_Handler .weak DMA1_Channel7_IRQHandler .thumb_set DMA1_Channel7_IRQHandler,Default_Handler .weak ADC1_2_IRQHandler .thumb_set ADC1_2_IRQHandler,Default_Handler .weak USB_HP_IRQHandler .thumb_set USB_HP_IRQHandler,Default_Handler .weak USB_LP_IRQHandler .thumb_set USB_LP_IRQHandler,Default_Handler .weak FDCAN1_IT0_IRQHandler .thumb_set FDCAN1_IT0_IRQHandler,Default_Handler .weak FDCAN1_IT1_IRQHandler .thumb_set FDCAN1_IT1_IRQHandler,Default_Handler .weak EXTI9_5_IRQHandler .thumb_set EXTI9_5_IRQHandler,Default_Handler .weak TIM1_BRK_TIM15_IRQHandler .thumb_set TIM1_BRK_TIM15_IRQHandler,Default_Handler .weak TIM1_UP_TIM16_IRQHandler .thumb_set TIM1_UP_TIM16_IRQHandler,Default_Handler .weak TIM1_TRG_COM_TIM17_IRQHandler .thumb_set TIM1_TRG_COM_TIM17_IRQHandler,Default_Handler .weak TIM1_CC_IRQHandler .thumb_set TIM1_CC_IRQHandler,Default_Handler .weak TIM2_IRQHandler .thumb_set TIM2_IRQHandler,Default_Handler .weak TIM3_IRQHandler .thumb_set TIM3_IRQHandler,Default_Handler .weak TIM4_IRQHandler .thumb_set TIM4_IRQHandler,Default_Handler .weak I2C1_EV_IRQHandler .thumb_set I2C1_EV_IRQHandler,Default_Handler .weak I2C1_ER_IRQHandler .thumb_set I2C1_ER_IRQHandler,Default_Handler .weak I2C2_EV_IRQHandler .thumb_set I2C2_EV_IRQHandler,Default_Handler .weak I2C2_ER_IRQHandler .thumb_set I2C2_ER_IRQHandler,Default_Handler .weak SPI1_IRQHandler .thumb_set SPI1_IRQHandler,Default_Handler .weak SPI2_IRQHandler .thumb_set SPI2_IRQHandler,Default_Handler .weak USART1_IRQHandler .thumb_set USART1_IRQHandler,Default_Handler .weak USART2_IRQHandler .thumb_set USART2_IRQHandler,Default_Handler .weak USART3_IRQHandler .thumb_set USART3_IRQHandler,Default_Handler .weak EXTI15_10_IRQHandler .thumb_set EXTI15_10_IRQHandler,Default_Handler .weak RTC_Alarm_IRQHandler .thumb_set RTC_Alarm_IRQHandler,Default_Handler .weak USBWakeUp_IRQHandler .thumb_set USBWakeUp_IRQHandler,Default_Handler .weak TIM8_BRK_IRQHandler .thumb_set TIM8_BRK_IRQHandler,Default_Handler .weak TIM8_UP_IRQHandler .thumb_set TIM8_UP_IRQHandler,Default_Handler .weak TIM8_TRG_COM_IRQHandler .thumb_set TIM8_TRG_COM_IRQHandler,Default_Handler .weak TIM8_CC_IRQHandler .thumb_set TIM8_CC_IRQHandler,Default_Handler .weak ADC3_IRQHandler .thumb_set ADC3_IRQHandler,Default_Handler .weak FMC_IRQHandler .thumb_set FMC_IRQHandler,Default_Handler .weak LPTIM1_IRQHandler .thumb_set LPTIM1_IRQHandler,Default_Handler .weak TIM5_IRQHandler .thumb_set TIM5_IRQHandler,Default_Handler .weak SPI3_IRQHandler .thumb_set SPI3_IRQHandler,Default_Handler .weak UART4_IRQHandler .thumb_set UART4_IRQHandler,Default_Handler .weak UART5_IRQHandler .thumb_set UART5_IRQHandler,Default_Handler .weak TIM6_DAC_IRQHandler .thumb_set TIM6_DAC_IRQHandler,Default_Handler .weak TIM7_DAC_IRQHandler .thumb_set TIM7_DAC_IRQHandler,Default_Handler .weak DMA2_Channel1_IRQHandler .thumb_set DMA2_Channel1_IRQHandler,Default_Handler .weak DMA2_Channel2_IRQHandler .thumb_set DMA2_Channel2_IRQHandler,Default_Handler .weak DMA2_Channel3_IRQHandler .thumb_set DMA2_Channel3_IRQHandler,Default_Handler .weak DMA2_Channel4_IRQHandler .thumb_set DMA2_Channel4_IRQHandler,Default_Handler .weak DMA2_Channel5_IRQHandler .thumb_set DMA2_Channel5_IRQHandler,Default_Handler .weak ADC4_IRQHandler .thumb_set ADC4_IRQHandler,Default_Handler .weak ADC5_IRQHandler .thumb_set ADC5_IRQHandler,Default_Handler .weak UCPD1_IRQHandler .thumb_set UCPD1_IRQHandler,Default_Handler .weak COMP1_2_3_IRQHandler .thumb_set COMP1_2_3_IRQHandler,Default_Handler .weak COMP4_5_6_IRQHandler .thumb_set COMP4_5_6_IRQHandler,Default_Handler .weak COMP7_IRQHandler .thumb_set COMP7_IRQHandler,Default_Handler .weak HRTIM1_Master_IRQHandler .thumb_set HRTIM1_Master_IRQHandler,Default_Handler .weak HRTIM1_TIMA_IRQHandler .thumb_set HRTIM1_TIMA_IRQHandler,Default_Handler .weak HRTIM1_TIMB_IRQHandler .thumb_set HRTIM1_TIMB_IRQHandler,Default_Handler .weak HRTIM1_TIMC_IRQHandler .thumb_set HRTIM1_TIMC_IRQHandler,Default_Handler .weak HRTIM1_TIMD_IRQHandler .thumb_set HRTIM1_TIMD_IRQHandler,Default_Handler .weak HRTIM1_TIME_IRQHandler .thumb_set HRTIM1_TIME_IRQHandler,Default_Handler .weak HRTIM1_FLT_IRQHandler .thumb_set HRTIM1_FLT_IRQHandler,Default_Handler .weak HRTIM1_TIMF_IRQHandler .thumb_set HRTIM1_TIMF_IRQHandler,Default_Handler .weak CRS_IRQHandler .thumb_set CRS_IRQHandler,Default_Handler .weak SAI1_IRQHandler .thumb_set SAI1_IRQHandler,Default_Handler .weak TIM20_BRK_IRQHandler .thumb_set TIM20_BRK_IRQHandler,Default_Handler .weak TIM20_UP_IRQHandler .thumb_set TIM20_UP_IRQHandler,Default_Handler .weak TIM20_TRG_COM_IRQHandler .thumb_set TIM20_TRG_COM_IRQHandler,Default_Handler .weak TIM20_CC_IRQHandler .thumb_set TIM20_CC_IRQHandler,Default_Handler .weak FPU_IRQHandler .thumb_set FPU_IRQHandler,Default_Handler .weak I2C4_EV_IRQHandler .thumb_set I2C4_EV_IRQHandler,Default_Handler .weak I2C4_ER_IRQHandler .thumb_set I2C4_ER_IRQHandler,Default_Handler .weak SPI4_IRQHandler .thumb_set SPI4_IRQHandler,Default_Handler .weak FDCAN2_IT0_IRQHandler .thumb_set FDCAN2_IT0_IRQHandler,Default_Handler .weak FDCAN2_IT1_IRQHandler .thumb_set FDCAN2_IT1_IRQHandler,Default_Handler .weak FDCAN3_IT0_IRQHandler .thumb_set FDCAN3_IT0_IRQHandler,Default_Handler .weak FDCAN3_IT1_IRQHandler .thumb_set FDCAN3_IT1_IRQHandler,Default_Handler .weak RNG_IRQHandler .thumb_set RNG_IRQHandler,Default_Handler .weak LPUART1_IRQHandler .thumb_set LPUART1_IRQHandler,Default_Handler .weak I2C3_EV_IRQHandler .thumb_set I2C3_EV_IRQHandler,Default_Handler .weak I2C3_ER_IRQHandler .thumb_set I2C3_ER_IRQHandler,Default_Handler .weak DMAMUX_OVR_IRQHandler .thumb_set DMAMUX_OVR_IRQHandler,Default_Handler .weak QUADSPI_IRQHandler .thumb_set QUADSPI_IRQHandler,Default_Handler .weak DMA1_Channel8_IRQHandler .thumb_set DMA1_Channel8_IRQHandler,Default_Handler .weak DMA2_Channel6_IRQHandler .thumb_set DMA2_Channel6_IRQHandler,Default_Handler .weak DMA2_Channel7_IRQHandler .thumb_set DMA2_Channel7_IRQHandler,Default_Handler .weak DMA2_Channel8_IRQHandler .thumb_set DMA2_Channel8_IRQHandler,Default_Handler .weak CORDIC_IRQHandler .thumb_set CORDIC_IRQHandler,Default_Handler .weak FMAC_IRQHandler .thumb_set FMAC_IRQHandler,Default_Handler
Northeastern-Electric-Racing/Iroh
13,812
Drivers/CMSIS/Device/ST/STM32G4xx/Source/Templates/gcc/startup_stm32g491xx.s
/** ****************************************************************************** * @file startup_stm32g491xx.s * @author MCD Application Team * @brief STM32G491xx devices vector table GCC toolchain. * This module performs: * - Set the initial SP * - Set the initial PC == Reset_Handler, * - Set the vector table entries with the exceptions ISR address, * - Configure the clock system * - Branches to main in the C library (which eventually * calls main()). * After Reset the Cortex-M4 processor is in Thread mode, * priority is Privileged, and the Stack is set to Main. ****************************************************************************** * @attention * * Copyright (c) 2019 STMicroelectronics. * All rights reserved. * * This software is licensed under terms that can be found in the LICENSE file * in the root directory of this software component. * If no LICENSE file comes with this software, it is provided AS-IS. * ****************************************************************************** */ .syntax unified .cpu cortex-m4 .fpu softvfp .thumb .global g_pfnVectors .global Default_Handler /* start address for the initialization values of the .data section. defined in linker script */ .word _sidata /* start address for the .data section. defined in linker script */ .word _sdata /* end address for the .data section. defined in linker script */ .word _edata /* start address for the .bss section. defined in linker script */ .word _sbss /* end address for the .bss section. defined in linker script */ .word _ebss .equ BootRAM, 0xF1E0F85F /** * @brief This is the code that gets called when the processor first * starts execution following a reset event. Only the absolutely * necessary set is performed, after which the application * supplied main() routine is called. * @param None * @retval : None */ .section .text.Reset_Handler .weak Reset_Handler .type Reset_Handler, %function Reset_Handler: ldr r0, =_estack mov sp, r0 /* set stack pointer */ /* Call the clock system initialization function.*/ bl SystemInit /* Copy the data segment initializers from flash to SRAM */ ldr r0, =_sdata ldr r1, =_edata ldr r2, =_sidata movs r3, #0 b LoopCopyDataInit CopyDataInit: ldr r4, [r2, r3] str r4, [r0, r3] adds r3, r3, #4 LoopCopyDataInit: adds r4, r0, r3 cmp r4, r1 bcc CopyDataInit /* Zero fill the bss segment. */ ldr r2, =_sbss ldr r4, =_ebss movs r3, #0 b LoopFillZerobss FillZerobss: str r3, [r2] adds r2, r2, #4 LoopFillZerobss: cmp r2, r4 bcc FillZerobss /* Call static constructors */ bl __libc_init_array /* Call the application's entry point.*/ bl main LoopForever: b LoopForever .size Reset_Handler, .-Reset_Handler /** * @brief This is the code that gets called when the processor receives an * unexpected interrupt. This simply enters an infinite loop, preserving * the system state for examination by a debugger. * * @param None * @retval : None */ .section .text.Default_Handler,"ax",%progbits Default_Handler: Infinite_Loop: b Infinite_Loop .size Default_Handler, .-Default_Handler /****************************************************************************** * * The minimal vector table for a Cortex-M4. Note that the proper constructs * must be placed on this to ensure that it ends up at physical address * 0x0000.0000. * ******************************************************************************/ .section .isr_vector,"a",%progbits .type g_pfnVectors, %object g_pfnVectors: .word _estack .word Reset_Handler .word NMI_Handler .word HardFault_Handler .word MemManage_Handler .word BusFault_Handler .word UsageFault_Handler .word 0 .word 0 .word 0 .word 0 .word SVC_Handler .word DebugMon_Handler .word 0 .word PendSV_Handler .word SysTick_Handler .word WWDG_IRQHandler .word PVD_PVM_IRQHandler .word RTC_TAMP_LSECSS_IRQHandler .word RTC_WKUP_IRQHandler .word FLASH_IRQHandler .word RCC_IRQHandler .word EXTI0_IRQHandler .word EXTI1_IRQHandler .word EXTI2_IRQHandler .word EXTI3_IRQHandler .word EXTI4_IRQHandler .word DMA1_Channel1_IRQHandler .word DMA1_Channel2_IRQHandler .word DMA1_Channel3_IRQHandler .word DMA1_Channel4_IRQHandler .word DMA1_Channel5_IRQHandler .word DMA1_Channel6_IRQHandler .word DMA1_Channel7_IRQHandler .word ADC1_2_IRQHandler .word USB_HP_IRQHandler .word USB_LP_IRQHandler .word FDCAN1_IT0_IRQHandler .word FDCAN1_IT1_IRQHandler .word EXTI9_5_IRQHandler .word TIM1_BRK_TIM15_IRQHandler .word TIM1_UP_TIM16_IRQHandler .word TIM1_TRG_COM_TIM17_IRQHandler .word TIM1_CC_IRQHandler .word TIM2_IRQHandler .word TIM3_IRQHandler .word TIM4_IRQHandler .word I2C1_EV_IRQHandler .word I2C1_ER_IRQHandler .word I2C2_EV_IRQHandler .word I2C2_ER_IRQHandler .word SPI1_IRQHandler .word SPI2_IRQHandler .word USART1_IRQHandler .word USART2_IRQHandler .word USART3_IRQHandler .word EXTI15_10_IRQHandler .word RTC_Alarm_IRQHandler .word USBWakeUp_IRQHandler .word TIM8_BRK_IRQHandler .word TIM8_UP_IRQHandler .word TIM8_TRG_COM_IRQHandler .word TIM8_CC_IRQHandler .word ADC3_IRQHandler .word 0 .word LPTIM1_IRQHandler .word 0 .word SPI3_IRQHandler .word UART4_IRQHandler .word UART5_IRQHandler .word TIM6_DAC_IRQHandler .word TIM7_IRQHandler .word DMA2_Channel1_IRQHandler .word DMA2_Channel2_IRQHandler .word DMA2_Channel3_IRQHandler .word DMA2_Channel4_IRQHandler .word DMA2_Channel5_IRQHandler .word 0 .word 0 .word UCPD1_IRQHandler .word COMP1_2_3_IRQHandler .word COMP4_IRQHandler .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word CRS_IRQHandler .word SAI1_IRQHandler .word TIM20_BRK_IRQHandler .word TIM20_UP_IRQHandler .word TIM20_TRG_COM_IRQHandler .word TIM20_CC_IRQHandler .word FPU_IRQHandler .word 0 .word 0 .word 0 .word 0 .word FDCAN2_IT0_IRQHandler .word FDCAN2_IT1_IRQHandler .word 0 .word 0 .word RNG_IRQHandler .word LPUART1_IRQHandler .word I2C3_EV_IRQHandler .word I2C3_ER_IRQHandler .word DMAMUX_OVR_IRQHandler .word QUADSPI_IRQHandler .word DMA1_Channel8_IRQHandler .word DMA2_Channel6_IRQHandler .word DMA2_Channel7_IRQHandler .word DMA2_Channel8_IRQHandler .word CORDIC_IRQHandler .word FMAC_IRQHandler .size g_pfnVectors, .-g_pfnVectors /******************************************************************************* * * Provide weak aliases for each Exception handler to the Default_Handler. * As they are weak aliases, any function with the same name will override * this definition. * *******************************************************************************/ .weak NMI_Handler .thumb_set NMI_Handler,Default_Handler .weak HardFault_Handler .thumb_set HardFault_Handler,Default_Handler .weak MemManage_Handler .thumb_set MemManage_Handler,Default_Handler .weak BusFault_Handler .thumb_set BusFault_Handler,Default_Handler .weak UsageFault_Handler .thumb_set UsageFault_Handler,Default_Handler .weak SVC_Handler .thumb_set SVC_Handler,Default_Handler .weak DebugMon_Handler .thumb_set DebugMon_Handler,Default_Handler .weak PendSV_Handler .thumb_set PendSV_Handler,Default_Handler .weak SysTick_Handler .thumb_set SysTick_Handler,Default_Handler .weak WWDG_IRQHandler .thumb_set WWDG_IRQHandler,Default_Handler .weak PVD_PVM_IRQHandler .thumb_set PVD_PVM_IRQHandler,Default_Handler .weak RTC_TAMP_LSECSS_IRQHandler .thumb_set RTC_TAMP_LSECSS_IRQHandler,Default_Handler .weak RTC_WKUP_IRQHandler .thumb_set RTC_WKUP_IRQHandler,Default_Handler .weak FLASH_IRQHandler .thumb_set FLASH_IRQHandler,Default_Handler .weak RCC_IRQHandler .thumb_set RCC_IRQHandler,Default_Handler .weak EXTI0_IRQHandler .thumb_set EXTI0_IRQHandler,Default_Handler .weak EXTI1_IRQHandler .thumb_set EXTI1_IRQHandler,Default_Handler .weak EXTI2_IRQHandler .thumb_set EXTI2_IRQHandler,Default_Handler .weak EXTI3_IRQHandler .thumb_set EXTI3_IRQHandler,Default_Handler .weak EXTI4_IRQHandler .thumb_set EXTI4_IRQHandler,Default_Handler .weak DMA1_Channel1_IRQHandler .thumb_set DMA1_Channel1_IRQHandler,Default_Handler .weak DMA1_Channel2_IRQHandler .thumb_set DMA1_Channel2_IRQHandler,Default_Handler .weak DMA1_Channel3_IRQHandler .thumb_set DMA1_Channel3_IRQHandler,Default_Handler .weak DMA1_Channel4_IRQHandler .thumb_set DMA1_Channel4_IRQHandler,Default_Handler .weak DMA1_Channel5_IRQHandler .thumb_set DMA1_Channel5_IRQHandler,Default_Handler .weak DMA1_Channel6_IRQHandler .thumb_set DMA1_Channel6_IRQHandler,Default_Handler .weak DMA1_Channel7_IRQHandler .thumb_set DMA1_Channel7_IRQHandler,Default_Handler .weak ADC1_2_IRQHandler .thumb_set ADC1_2_IRQHandler,Default_Handler .weak USB_HP_IRQHandler .thumb_set USB_HP_IRQHandler,Default_Handler .weak USB_LP_IRQHandler .thumb_set USB_LP_IRQHandler,Default_Handler .weak FDCAN1_IT0_IRQHandler .thumb_set FDCAN1_IT0_IRQHandler,Default_Handler .weak FDCAN1_IT1_IRQHandler .thumb_set FDCAN1_IT1_IRQHandler,Default_Handler .weak EXTI9_5_IRQHandler .thumb_set EXTI9_5_IRQHandler,Default_Handler .weak TIM1_BRK_TIM15_IRQHandler .thumb_set TIM1_BRK_TIM15_IRQHandler,Default_Handler .weak TIM1_UP_TIM16_IRQHandler .thumb_set TIM1_UP_TIM16_IRQHandler,Default_Handler .weak TIM1_TRG_COM_TIM17_IRQHandler .thumb_set TIM1_TRG_COM_TIM17_IRQHandler,Default_Handler .weak TIM1_CC_IRQHandler .thumb_set TIM1_CC_IRQHandler,Default_Handler .weak TIM2_IRQHandler .thumb_set TIM2_IRQHandler,Default_Handler .weak TIM3_IRQHandler .thumb_set TIM3_IRQHandler,Default_Handler .weak TIM4_IRQHandler .thumb_set TIM4_IRQHandler,Default_Handler .weak I2C1_EV_IRQHandler .thumb_set I2C1_EV_IRQHandler,Default_Handler .weak I2C1_ER_IRQHandler .thumb_set I2C1_ER_IRQHandler,Default_Handler .weak I2C2_EV_IRQHandler .thumb_set I2C2_EV_IRQHandler,Default_Handler .weak I2C2_ER_IRQHandler .thumb_set I2C2_ER_IRQHandler,Default_Handler .weak SPI1_IRQHandler .thumb_set SPI1_IRQHandler,Default_Handler .weak SPI2_IRQHandler .thumb_set SPI2_IRQHandler,Default_Handler .weak USART1_IRQHandler .thumb_set USART1_IRQHandler,Default_Handler .weak USART2_IRQHandler .thumb_set USART2_IRQHandler,Default_Handler .weak USART3_IRQHandler .thumb_set USART3_IRQHandler,Default_Handler .weak EXTI15_10_IRQHandler .thumb_set EXTI15_10_IRQHandler,Default_Handler .weak RTC_Alarm_IRQHandler .thumb_set RTC_Alarm_IRQHandler,Default_Handler .weak USBWakeUp_IRQHandler .thumb_set USBWakeUp_IRQHandler,Default_Handler .weak TIM8_BRK_IRQHandler .thumb_set TIM8_BRK_IRQHandler,Default_Handler .weak TIM8_UP_IRQHandler .thumb_set TIM8_UP_IRQHandler,Default_Handler .weak TIM8_TRG_COM_IRQHandler .thumb_set TIM8_TRG_COM_IRQHandler,Default_Handler .weak TIM8_CC_IRQHandler .thumb_set TIM8_CC_IRQHandler,Default_Handler .weak ADC3_IRQHandler .thumb_set ADC3_IRQHandler,Default_Handler .weak LPTIM1_IRQHandler .thumb_set LPTIM1_IRQHandler,Default_Handler .weak SPI3_IRQHandler .thumb_set SPI3_IRQHandler,Default_Handler .weak UART4_IRQHandler .thumb_set UART4_IRQHandler,Default_Handler .weak UART5_IRQHandler .thumb_set UART5_IRQHandler,Default_Handler .weak TIM6_DAC_IRQHandler .thumb_set TIM6_DAC_IRQHandler,Default_Handler .weak TIM7_IRQHandler .thumb_set TIM7_IRQHandler,Default_Handler .weak DMA2_Channel1_IRQHandler .thumb_set DMA2_Channel1_IRQHandler,Default_Handler .weak DMA2_Channel2_IRQHandler .thumb_set DMA2_Channel2_IRQHandler,Default_Handler .weak DMA2_Channel3_IRQHandler .thumb_set DMA2_Channel3_IRQHandler,Default_Handler .weak DMA2_Channel4_IRQHandler .thumb_set DMA2_Channel4_IRQHandler,Default_Handler .weak DMA2_Channel5_IRQHandler .thumb_set DMA2_Channel5_IRQHandler,Default_Handler .weak UCPD1_IRQHandler .thumb_set UCPD1_IRQHandler,Default_Handler .weak COMP1_2_3_IRQHandler .thumb_set COMP1_2_3_IRQHandler,Default_Handler .weak COMP4_IRQHandler .thumb_set COMP4_IRQHandler,Default_Handler .weak CRS_IRQHandler .thumb_set CRS_IRQHandler,Default_Handler .weak SAI1_IRQHandler .thumb_set SAI1_IRQHandler,Default_Handler .weak TIM20_BRK_IRQHandler .thumb_set TIM20_BRK_IRQHandler,Default_Handler .weak TIM20_UP_IRQHandler .thumb_set TIM20_UP_IRQHandler,Default_Handler .weak TIM20_TRG_COM_IRQHandler .thumb_set TIM20_TRG_COM_IRQHandler,Default_Handler .weak TIM20_CC_IRQHandler .thumb_set TIM20_CC_IRQHandler,Default_Handler .weak FPU_IRQHandler .thumb_set FPU_IRQHandler,Default_Handler .weak FDCAN2_IT0_IRQHandler .thumb_set FDCAN2_IT0_IRQHandler,Default_Handler .weak FDCAN2_IT1_IRQHandler .thumb_set FDCAN2_IT1_IRQHandler,Default_Handler .weak RNG_IRQHandler .thumb_set RNG_IRQHandler,Default_Handler .weak LPUART1_IRQHandler .thumb_set LPUART1_IRQHandler,Default_Handler .weak I2C3_EV_IRQHandler .thumb_set I2C3_EV_IRQHandler,Default_Handler .weak I2C3_ER_IRQHandler .thumb_set I2C3_ER_IRQHandler,Default_Handler .weak DMAMUX_OVR_IRQHandler .thumb_set DMAMUX_OVR_IRQHandler,Default_Handler .weak QUADSPI_IRQHandler .thumb_set QUADSPI_IRQHandler,Default_Handler .weak DMA1_Channel8_IRQHandler .thumb_set DMA1_Channel8_IRQHandler,Default_Handler .weak DMA2_Channel6_IRQHandler .thumb_set DMA2_Channel6_IRQHandler,Default_Handler .weak DMA2_Channel7_IRQHandler .thumb_set DMA2_Channel7_IRQHandler,Default_Handler .weak DMA2_Channel8_IRQHandler .thumb_set DMA2_Channel8_IRQHandler,Default_Handler .weak CORDIC_IRQHandler .thumb_set CORDIC_IRQHandler,Default_Handler .weak FMAC_IRQHandler .thumb_set FMAC_IRQHandler,Default_Handler
Northeastern-Electric-Racing/Iroh
14,788
Drivers/CMSIS/Device/ST/STM32G4xx/Source/Templates/gcc/startup_stm32g483xx.s
/** ****************************************************************************** * @file startup_stm32g483xx.s * @author MCD Application Team * @brief STM32G483xx devices vector table GCC toolchain. * This module performs: * - Set the initial SP * - Set the initial PC == Reset_Handler, * - Set the vector table entries with the exceptions ISR address, * - Configure the clock system * - Branches to main in the C library (which eventually * calls main()). * After Reset the Cortex-M4 processor is in Thread mode, * priority is Privileged, and the Stack is set to Main. ****************************************************************************** * @attention * * Copyright (c) 2019 STMicroelectronics. * All rights reserved. * * This software is licensed under terms that can be found in the LICENSE file * in the root directory of this software component. * If no LICENSE file comes with this software, it is provided AS-IS. * ****************************************************************************** */ .syntax unified .cpu cortex-m4 .fpu softvfp .thumb .global g_pfnVectors .global Default_Handler /* start address for the initialization values of the .data section. defined in linker script */ .word _sidata /* start address for the .data section. defined in linker script */ .word _sdata /* end address for the .data section. defined in linker script */ .word _edata /* start address for the .bss section. defined in linker script */ .word _sbss /* end address for the .bss section. defined in linker script */ .word _ebss .equ BootRAM, 0xF1E0F85F /** * @brief This is the code that gets called when the processor first * starts execution following a reset event. Only the absolutely * necessary set is performed, after which the application * supplied main() routine is called. * @param None * @retval : None */ .section .text.Reset_Handler .weak Reset_Handler .type Reset_Handler, %function Reset_Handler: ldr r0, =_estack mov sp, r0 /* set stack pointer */ /* Call the clock system initialization function.*/ bl SystemInit /* Copy the data segment initializers from flash to SRAM */ ldr r0, =_sdata ldr r1, =_edata ldr r2, =_sidata movs r3, #0 b LoopCopyDataInit CopyDataInit: ldr r4, [r2, r3] str r4, [r0, r3] adds r3, r3, #4 LoopCopyDataInit: adds r4, r0, r3 cmp r4, r1 bcc CopyDataInit /* Zero fill the bss segment. */ ldr r2, =_sbss ldr r4, =_ebss movs r3, #0 b LoopFillZerobss FillZerobss: str r3, [r2] adds r2, r2, #4 LoopFillZerobss: cmp r2, r4 bcc FillZerobss /* Call static constructors */ bl __libc_init_array /* Call the application's entry point.*/ bl main LoopForever: b LoopForever .size Reset_Handler, .-Reset_Handler /** * @brief This is the code that gets called when the processor receives an * unexpected interrupt. This simply enters an infinite loop, preserving * the system state for examination by a debugger. * * @param None * @retval : None */ .section .text.Default_Handler,"ax",%progbits Default_Handler: Infinite_Loop: b Infinite_Loop .size Default_Handler, .-Default_Handler /****************************************************************************** * * The minimal vector table for a Cortex-M4. Note that the proper constructs * must be placed on this to ensure that it ends up at physical address * 0x0000.0000. * ******************************************************************************/ .section .isr_vector,"a",%progbits .type g_pfnVectors, %object g_pfnVectors: .word _estack .word Reset_Handler .word NMI_Handler .word HardFault_Handler .word MemManage_Handler .word BusFault_Handler .word UsageFault_Handler .word 0 .word 0 .word 0 .word 0 .word SVC_Handler .word DebugMon_Handler .word 0 .word PendSV_Handler .word SysTick_Handler .word WWDG_IRQHandler .word PVD_PVM_IRQHandler .word RTC_TAMP_LSECSS_IRQHandler .word RTC_WKUP_IRQHandler .word FLASH_IRQHandler .word RCC_IRQHandler .word EXTI0_IRQHandler .word EXTI1_IRQHandler .word EXTI2_IRQHandler .word EXTI3_IRQHandler .word EXTI4_IRQHandler .word DMA1_Channel1_IRQHandler .word DMA1_Channel2_IRQHandler .word DMA1_Channel3_IRQHandler .word DMA1_Channel4_IRQHandler .word DMA1_Channel5_IRQHandler .word DMA1_Channel6_IRQHandler .word DMA1_Channel7_IRQHandler .word ADC1_2_IRQHandler .word USB_HP_IRQHandler .word USB_LP_IRQHandler .word FDCAN1_IT0_IRQHandler .word FDCAN1_IT1_IRQHandler .word EXTI9_5_IRQHandler .word TIM1_BRK_TIM15_IRQHandler .word TIM1_UP_TIM16_IRQHandler .word TIM1_TRG_COM_TIM17_IRQHandler .word TIM1_CC_IRQHandler .word TIM2_IRQHandler .word TIM3_IRQHandler .word TIM4_IRQHandler .word I2C1_EV_IRQHandler .word I2C1_ER_IRQHandler .word I2C2_EV_IRQHandler .word I2C2_ER_IRQHandler .word SPI1_IRQHandler .word SPI2_IRQHandler .word USART1_IRQHandler .word USART2_IRQHandler .word USART3_IRQHandler .word EXTI15_10_IRQHandler .word RTC_Alarm_IRQHandler .word USBWakeUp_IRQHandler .word TIM8_BRK_IRQHandler .word TIM8_UP_IRQHandler .word TIM8_TRG_COM_IRQHandler .word TIM8_CC_IRQHandler .word ADC3_IRQHandler .word FMC_IRQHandler .word LPTIM1_IRQHandler .word TIM5_IRQHandler .word SPI3_IRQHandler .word UART4_IRQHandler .word UART5_IRQHandler .word TIM6_DAC_IRQHandler .word TIM7_DAC_IRQHandler .word DMA2_Channel1_IRQHandler .word DMA2_Channel2_IRQHandler .word DMA2_Channel3_IRQHandler .word DMA2_Channel4_IRQHandler .word DMA2_Channel5_IRQHandler .word ADC4_IRQHandler .word ADC5_IRQHandler .word UCPD1_IRQHandler .word COMP1_2_3_IRQHandler .word COMP4_5_6_IRQHandler .word COMP7_IRQHandler .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word CRS_IRQHandler .word SAI1_IRQHandler .word TIM20_BRK_IRQHandler .word TIM20_UP_IRQHandler .word TIM20_TRG_COM_IRQHandler .word TIM20_CC_IRQHandler .word FPU_IRQHandler .word I2C4_EV_IRQHandler .word I2C4_ER_IRQHandler .word SPI4_IRQHandler .word AES_IRQHandler .word FDCAN2_IT0_IRQHandler .word FDCAN2_IT1_IRQHandler .word FDCAN3_IT0_IRQHandler .word FDCAN3_IT1_IRQHandler .word RNG_IRQHandler .word LPUART1_IRQHandler .word I2C3_EV_IRQHandler .word I2C3_ER_IRQHandler .word DMAMUX_OVR_IRQHandler .word QUADSPI_IRQHandler .word DMA1_Channel8_IRQHandler .word DMA2_Channel6_IRQHandler .word DMA2_Channel7_IRQHandler .word DMA2_Channel8_IRQHandler .word CORDIC_IRQHandler .word FMAC_IRQHandler .size g_pfnVectors, .-g_pfnVectors /******************************************************************************* * * Provide weak aliases for each Exception handler to the Default_Handler. * As they are weak aliases, any function with the same name will override * this definition. * *******************************************************************************/ .weak NMI_Handler .thumb_set NMI_Handler,Default_Handler .weak HardFault_Handler .thumb_set HardFault_Handler,Default_Handler .weak MemManage_Handler .thumb_set MemManage_Handler,Default_Handler .weak BusFault_Handler .thumb_set BusFault_Handler,Default_Handler .weak UsageFault_Handler .thumb_set UsageFault_Handler,Default_Handler .weak SVC_Handler .thumb_set SVC_Handler,Default_Handler .weak DebugMon_Handler .thumb_set DebugMon_Handler,Default_Handler .weak PendSV_Handler .thumb_set PendSV_Handler,Default_Handler .weak SysTick_Handler .thumb_set SysTick_Handler,Default_Handler .weak WWDG_IRQHandler .thumb_set WWDG_IRQHandler,Default_Handler .weak PVD_PVM_IRQHandler .thumb_set PVD_PVM_IRQHandler,Default_Handler .weak RTC_TAMP_LSECSS_IRQHandler .thumb_set RTC_TAMP_LSECSS_IRQHandler,Default_Handler .weak RTC_WKUP_IRQHandler .thumb_set RTC_WKUP_IRQHandler,Default_Handler .weak FLASH_IRQHandler .thumb_set FLASH_IRQHandler,Default_Handler .weak RCC_IRQHandler .thumb_set RCC_IRQHandler,Default_Handler .weak EXTI0_IRQHandler .thumb_set EXTI0_IRQHandler,Default_Handler .weak EXTI1_IRQHandler .thumb_set EXTI1_IRQHandler,Default_Handler .weak EXTI2_IRQHandler .thumb_set EXTI2_IRQHandler,Default_Handler .weak EXTI3_IRQHandler .thumb_set EXTI3_IRQHandler,Default_Handler .weak EXTI4_IRQHandler .thumb_set EXTI4_IRQHandler,Default_Handler .weak DMA1_Channel1_IRQHandler .thumb_set DMA1_Channel1_IRQHandler,Default_Handler .weak DMA1_Channel2_IRQHandler .thumb_set DMA1_Channel2_IRQHandler,Default_Handler .weak DMA1_Channel3_IRQHandler .thumb_set DMA1_Channel3_IRQHandler,Default_Handler .weak DMA1_Channel4_IRQHandler .thumb_set DMA1_Channel4_IRQHandler,Default_Handler .weak DMA1_Channel5_IRQHandler .thumb_set DMA1_Channel5_IRQHandler,Default_Handler .weak DMA1_Channel6_IRQHandler .thumb_set DMA1_Channel6_IRQHandler,Default_Handler .weak DMA1_Channel7_IRQHandler .thumb_set DMA1_Channel7_IRQHandler,Default_Handler .weak ADC1_2_IRQHandler .thumb_set ADC1_2_IRQHandler,Default_Handler .weak USB_HP_IRQHandler .thumb_set USB_HP_IRQHandler,Default_Handler .weak USB_LP_IRQHandler .thumb_set USB_LP_IRQHandler,Default_Handler .weak FDCAN1_IT0_IRQHandler .thumb_set FDCAN1_IT0_IRQHandler,Default_Handler .weak FDCAN1_IT1_IRQHandler .thumb_set FDCAN1_IT1_IRQHandler,Default_Handler .weak EXTI9_5_IRQHandler .thumb_set EXTI9_5_IRQHandler,Default_Handler .weak TIM1_BRK_TIM15_IRQHandler .thumb_set TIM1_BRK_TIM15_IRQHandler,Default_Handler .weak TIM1_UP_TIM16_IRQHandler .thumb_set TIM1_UP_TIM16_IRQHandler,Default_Handler .weak TIM1_TRG_COM_TIM17_IRQHandler .thumb_set TIM1_TRG_COM_TIM17_IRQHandler,Default_Handler .weak TIM1_CC_IRQHandler .thumb_set TIM1_CC_IRQHandler,Default_Handler .weak TIM2_IRQHandler .thumb_set TIM2_IRQHandler,Default_Handler .weak TIM3_IRQHandler .thumb_set TIM3_IRQHandler,Default_Handler .weak TIM4_IRQHandler .thumb_set TIM4_IRQHandler,Default_Handler .weak I2C1_EV_IRQHandler .thumb_set I2C1_EV_IRQHandler,Default_Handler .weak I2C1_ER_IRQHandler .thumb_set I2C1_ER_IRQHandler,Default_Handler .weak I2C2_EV_IRQHandler .thumb_set I2C2_EV_IRQHandler,Default_Handler .weak I2C2_ER_IRQHandler .thumb_set I2C2_ER_IRQHandler,Default_Handler .weak SPI1_IRQHandler .thumb_set SPI1_IRQHandler,Default_Handler .weak SPI2_IRQHandler .thumb_set SPI2_IRQHandler,Default_Handler .weak USART1_IRQHandler .thumb_set USART1_IRQHandler,Default_Handler .weak USART2_IRQHandler .thumb_set USART2_IRQHandler,Default_Handler .weak USART3_IRQHandler .thumb_set USART3_IRQHandler,Default_Handler .weak EXTI15_10_IRQHandler .thumb_set EXTI15_10_IRQHandler,Default_Handler .weak RTC_Alarm_IRQHandler .thumb_set RTC_Alarm_IRQHandler,Default_Handler .weak USBWakeUp_IRQHandler .thumb_set USBWakeUp_IRQHandler,Default_Handler .weak TIM8_BRK_IRQHandler .thumb_set TIM8_BRK_IRQHandler,Default_Handler .weak TIM8_UP_IRQHandler .thumb_set TIM8_UP_IRQHandler,Default_Handler .weak TIM8_TRG_COM_IRQHandler .thumb_set TIM8_TRG_COM_IRQHandler,Default_Handler .weak TIM8_CC_IRQHandler .thumb_set TIM8_CC_IRQHandler,Default_Handler .weak ADC3_IRQHandler .thumb_set ADC3_IRQHandler,Default_Handler .weak FMC_IRQHandler .thumb_set FMC_IRQHandler,Default_Handler .weak LPTIM1_IRQHandler .thumb_set LPTIM1_IRQHandler,Default_Handler .weak TIM5_IRQHandler .thumb_set TIM5_IRQHandler,Default_Handler .weak SPI3_IRQHandler .thumb_set SPI3_IRQHandler,Default_Handler .weak UART4_IRQHandler .thumb_set UART4_IRQHandler,Default_Handler .weak UART5_IRQHandler .thumb_set UART5_IRQHandler,Default_Handler .weak TIM6_DAC_IRQHandler .thumb_set TIM6_DAC_IRQHandler,Default_Handler .weak TIM7_DAC_IRQHandler .thumb_set TIM7_DAC_IRQHandler,Default_Handler .weak DMA2_Channel1_IRQHandler .thumb_set DMA2_Channel1_IRQHandler,Default_Handler .weak DMA2_Channel2_IRQHandler .thumb_set DMA2_Channel2_IRQHandler,Default_Handler .weak DMA2_Channel3_IRQHandler .thumb_set DMA2_Channel3_IRQHandler,Default_Handler .weak DMA2_Channel4_IRQHandler .thumb_set DMA2_Channel4_IRQHandler,Default_Handler .weak DMA2_Channel5_IRQHandler .thumb_set DMA2_Channel5_IRQHandler,Default_Handler .weak ADC4_IRQHandler .thumb_set ADC4_IRQHandler,Default_Handler .weak ADC5_IRQHandler .thumb_set ADC5_IRQHandler,Default_Handler .weak UCPD1_IRQHandler .thumb_set UCPD1_IRQHandler,Default_Handler .weak COMP1_2_3_IRQHandler .thumb_set COMP1_2_3_IRQHandler,Default_Handler .weak COMP4_5_6_IRQHandler .thumb_set COMP4_5_6_IRQHandler,Default_Handler .weak COMP7_IRQHandler .thumb_set COMP7_IRQHandler,Default_Handler .weak CRS_IRQHandler .thumb_set CRS_IRQHandler,Default_Handler .weak SAI1_IRQHandler .thumb_set SAI1_IRQHandler,Default_Handler .weak TIM20_BRK_IRQHandler .thumb_set TIM20_BRK_IRQHandler,Default_Handler .weak TIM20_UP_IRQHandler .thumb_set TIM20_UP_IRQHandler,Default_Handler .weak TIM20_TRG_COM_IRQHandler .thumb_set TIM20_TRG_COM_IRQHandler,Default_Handler .weak TIM20_CC_IRQHandler .thumb_set TIM20_CC_IRQHandler,Default_Handler .weak FPU_IRQHandler .thumb_set FPU_IRQHandler,Default_Handler .weak I2C4_EV_IRQHandler .thumb_set I2C4_EV_IRQHandler,Default_Handler .weak I2C4_ER_IRQHandler .thumb_set I2C4_ER_IRQHandler,Default_Handler .weak SPI4_IRQHandler .thumb_set SPI4_IRQHandler,Default_Handler .weak AES_IRQHandler .thumb_set AES_IRQHandler,Default_Handler .weak FDCAN2_IT0_IRQHandler .thumb_set FDCAN2_IT0_IRQHandler,Default_Handler .weak FDCAN2_IT1_IRQHandler .thumb_set FDCAN2_IT1_IRQHandler,Default_Handler .weak FDCAN3_IT0_IRQHandler .thumb_set FDCAN3_IT0_IRQHandler,Default_Handler .weak FDCAN3_IT1_IRQHandler .thumb_set FDCAN3_IT1_IRQHandler,Default_Handler .weak RNG_IRQHandler .thumb_set RNG_IRQHandler,Default_Handler .weak LPUART1_IRQHandler .thumb_set LPUART1_IRQHandler,Default_Handler .weak I2C3_EV_IRQHandler .thumb_set I2C3_EV_IRQHandler,Default_Handler .weak I2C3_ER_IRQHandler .thumb_set I2C3_ER_IRQHandler,Default_Handler .weak DMAMUX_OVR_IRQHandler .thumb_set DMAMUX_OVR_IRQHandler,Default_Handler .weak QUADSPI_IRQHandler .thumb_set QUADSPI_IRQHandler,Default_Handler .weak DMA1_Channel8_IRQHandler .thumb_set DMA1_Channel8_IRQHandler,Default_Handler .weak DMA2_Channel6_IRQHandler .thumb_set DMA2_Channel6_IRQHandler,Default_Handler .weak DMA2_Channel7_IRQHandler .thumb_set DMA2_Channel7_IRQHandler,Default_Handler .weak DMA2_Channel8_IRQHandler .thumb_set DMA2_Channel8_IRQHandler,Default_Handler .weak CORDIC_IRQHandler .thumb_set CORDIC_IRQHandler,Default_Handler .weak FMAC_IRQHandler .thumb_set FMAC_IRQHandler,Default_Handler
Northeastern-Electric-Racing/Iroh
15,613
Drivers/CMSIS/Device/ST/STM32G4xx/Source/Templates/gcc/startup_stm32g484xx.s
/** ****************************************************************************** * @file startup_stm32g484xx.s * @author MCD Application Team * @brief STM32G484xx devices vector table GCC toolchain. * This module performs: * - Set the initial SP * - Set the initial PC == Reset_Handler, * - Set the vector table entries with the exceptions ISR address, * - Configure the clock system * - Branches to main in the C library (which eventually * calls main()). * After Reset the Cortex-M4 processor is in Thread mode, * priority is Privileged, and the Stack is set to Main. ****************************************************************************** * @attention * * Copyright (c) 2019 STMicroelectronics. * All rights reserved. * * This software is licensed under terms that can be found in the LICENSE file * in the root directory of this software component. * If no LICENSE file comes with this software, it is provided AS-IS. * ****************************************************************************** */ .syntax unified .cpu cortex-m4 .fpu softvfp .thumb .global g_pfnVectors .global Default_Handler /* start address for the initialization values of the .data section. defined in linker script */ .word _sidata /* start address for the .data section. defined in linker script */ .word _sdata /* end address for the .data section. defined in linker script */ .word _edata /* start address for the .bss section. defined in linker script */ .word _sbss /* end address for the .bss section. defined in linker script */ .word _ebss .equ BootRAM, 0xF1E0F85F /** * @brief This is the code that gets called when the processor first * starts execution following a reset event. Only the absolutely * necessary set is performed, after which the application * supplied main() routine is called. * @param None * @retval : None */ .section .text.Reset_Handler .weak Reset_Handler .type Reset_Handler, %function Reset_Handler: ldr r0, =_estack mov sp, r0 /* set stack pointer */ /* Call the clock system initialization function.*/ bl SystemInit /* Copy the data segment initializers from flash to SRAM */ ldr r0, =_sdata ldr r1, =_edata ldr r2, =_sidata movs r3, #0 b LoopCopyDataInit CopyDataInit: ldr r4, [r2, r3] str r4, [r0, r3] adds r3, r3, #4 LoopCopyDataInit: adds r4, r0, r3 cmp r4, r1 bcc CopyDataInit /* Zero fill the bss segment. */ ldr r2, =_sbss ldr r4, =_ebss movs r3, #0 b LoopFillZerobss FillZerobss: str r3, [r2] adds r2, r2, #4 LoopFillZerobss: cmp r2, r4 bcc FillZerobss /* Call static constructors */ bl __libc_init_array /* Call the application's entry point.*/ bl main LoopForever: b LoopForever .size Reset_Handler, .-Reset_Handler /** * @brief This is the code that gets called when the processor receives an * unexpected interrupt. This simply enters an infinite loop, preserving * the system state for examination by a debugger. * * @param None * @retval : None */ .section .text.Default_Handler,"ax",%progbits Default_Handler: Infinite_Loop: b Infinite_Loop .size Default_Handler, .-Default_Handler /****************************************************************************** * * The minimal vector table for a Cortex-M4. Note that the proper constructs * must be placed on this to ensure that it ends up at physical address * 0x0000.0000. * ******************************************************************************/ .section .isr_vector,"a",%progbits .type g_pfnVectors, %object g_pfnVectors: .word _estack .word Reset_Handler .word NMI_Handler .word HardFault_Handler .word MemManage_Handler .word BusFault_Handler .word UsageFault_Handler .word 0 .word 0 .word 0 .word 0 .word SVC_Handler .word DebugMon_Handler .word 0 .word PendSV_Handler .word SysTick_Handler .word WWDG_IRQHandler .word PVD_PVM_IRQHandler .word RTC_TAMP_LSECSS_IRQHandler .word RTC_WKUP_IRQHandler .word FLASH_IRQHandler .word RCC_IRQHandler .word EXTI0_IRQHandler .word EXTI1_IRQHandler .word EXTI2_IRQHandler .word EXTI3_IRQHandler .word EXTI4_IRQHandler .word DMA1_Channel1_IRQHandler .word DMA1_Channel2_IRQHandler .word DMA1_Channel3_IRQHandler .word DMA1_Channel4_IRQHandler .word DMA1_Channel5_IRQHandler .word DMA1_Channel6_IRQHandler .word DMA1_Channel7_IRQHandler .word ADC1_2_IRQHandler .word USB_HP_IRQHandler .word USB_LP_IRQHandler .word FDCAN1_IT0_IRQHandler .word FDCAN1_IT1_IRQHandler .word EXTI9_5_IRQHandler .word TIM1_BRK_TIM15_IRQHandler .word TIM1_UP_TIM16_IRQHandler .word TIM1_TRG_COM_TIM17_IRQHandler .word TIM1_CC_IRQHandler .word TIM2_IRQHandler .word TIM3_IRQHandler .word TIM4_IRQHandler .word I2C1_EV_IRQHandler .word I2C1_ER_IRQHandler .word I2C2_EV_IRQHandler .word I2C2_ER_IRQHandler .word SPI1_IRQHandler .word SPI2_IRQHandler .word USART1_IRQHandler .word USART2_IRQHandler .word USART3_IRQHandler .word EXTI15_10_IRQHandler .word RTC_Alarm_IRQHandler .word USBWakeUp_IRQHandler .word TIM8_BRK_IRQHandler .word TIM8_UP_IRQHandler .word TIM8_TRG_COM_IRQHandler .word TIM8_CC_IRQHandler .word ADC3_IRQHandler .word FMC_IRQHandler .word LPTIM1_IRQHandler .word TIM5_IRQHandler .word SPI3_IRQHandler .word UART4_IRQHandler .word UART5_IRQHandler .word TIM6_DAC_IRQHandler .word TIM7_DAC_IRQHandler .word DMA2_Channel1_IRQHandler .word DMA2_Channel2_IRQHandler .word DMA2_Channel3_IRQHandler .word DMA2_Channel4_IRQHandler .word DMA2_Channel5_IRQHandler .word ADC4_IRQHandler .word ADC5_IRQHandler .word UCPD1_IRQHandler .word COMP1_2_3_IRQHandler .word COMP4_5_6_IRQHandler .word COMP7_IRQHandler .word HRTIM1_Master_IRQHandler .word HRTIM1_TIMA_IRQHandler .word HRTIM1_TIMB_IRQHandler .word HRTIM1_TIMC_IRQHandler .word HRTIM1_TIMD_IRQHandler .word HRTIM1_TIME_IRQHandler .word HRTIM1_FLT_IRQHandler .word HRTIM1_TIMF_IRQHandler .word CRS_IRQHandler .word SAI1_IRQHandler .word TIM20_BRK_IRQHandler .word TIM20_UP_IRQHandler .word TIM20_TRG_COM_IRQHandler .word TIM20_CC_IRQHandler .word FPU_IRQHandler .word I2C4_EV_IRQHandler .word I2C4_ER_IRQHandler .word SPI4_IRQHandler .word AES_IRQHandler .word FDCAN2_IT0_IRQHandler .word FDCAN2_IT1_IRQHandler .word FDCAN3_IT0_IRQHandler .word FDCAN3_IT1_IRQHandler .word RNG_IRQHandler .word LPUART1_IRQHandler .word I2C3_EV_IRQHandler .word I2C3_ER_IRQHandler .word DMAMUX_OVR_IRQHandler .word QUADSPI_IRQHandler .word DMA1_Channel8_IRQHandler .word DMA2_Channel6_IRQHandler .word DMA2_Channel7_IRQHandler .word DMA2_Channel8_IRQHandler .word CORDIC_IRQHandler .word FMAC_IRQHandler .size g_pfnVectors, .-g_pfnVectors /******************************************************************************* * * Provide weak aliases for each Exception handler to the Default_Handler. * As they are weak aliases, any function with the same name will override * this definition. * *******************************************************************************/ .weak NMI_Handler .thumb_set NMI_Handler,Default_Handler .weak HardFault_Handler .thumb_set HardFault_Handler,Default_Handler .weak MemManage_Handler .thumb_set MemManage_Handler,Default_Handler .weak BusFault_Handler .thumb_set BusFault_Handler,Default_Handler .weak UsageFault_Handler .thumb_set UsageFault_Handler,Default_Handler .weak SVC_Handler .thumb_set SVC_Handler,Default_Handler .weak DebugMon_Handler .thumb_set DebugMon_Handler,Default_Handler .weak PendSV_Handler .thumb_set PendSV_Handler,Default_Handler .weak SysTick_Handler .thumb_set SysTick_Handler,Default_Handler .weak WWDG_IRQHandler .thumb_set WWDG_IRQHandler,Default_Handler .weak PVD_PVM_IRQHandler .thumb_set PVD_PVM_IRQHandler,Default_Handler .weak RTC_TAMP_LSECSS_IRQHandler .thumb_set RTC_TAMP_LSECSS_IRQHandler,Default_Handler .weak RTC_WKUP_IRQHandler .thumb_set RTC_WKUP_IRQHandler,Default_Handler .weak FLASH_IRQHandler .thumb_set FLASH_IRQHandler,Default_Handler .weak RCC_IRQHandler .thumb_set RCC_IRQHandler,Default_Handler .weak EXTI0_IRQHandler .thumb_set EXTI0_IRQHandler,Default_Handler .weak EXTI1_IRQHandler .thumb_set EXTI1_IRQHandler,Default_Handler .weak EXTI2_IRQHandler .thumb_set EXTI2_IRQHandler,Default_Handler .weak EXTI3_IRQHandler .thumb_set EXTI3_IRQHandler,Default_Handler .weak EXTI4_IRQHandler .thumb_set EXTI4_IRQHandler,Default_Handler .weak DMA1_Channel1_IRQHandler .thumb_set DMA1_Channel1_IRQHandler,Default_Handler .weak DMA1_Channel2_IRQHandler .thumb_set DMA1_Channel2_IRQHandler,Default_Handler .weak DMA1_Channel3_IRQHandler .thumb_set DMA1_Channel3_IRQHandler,Default_Handler .weak DMA1_Channel4_IRQHandler .thumb_set DMA1_Channel4_IRQHandler,Default_Handler .weak DMA1_Channel5_IRQHandler .thumb_set DMA1_Channel5_IRQHandler,Default_Handler .weak DMA1_Channel6_IRQHandler .thumb_set DMA1_Channel6_IRQHandler,Default_Handler .weak DMA1_Channel7_IRQHandler .thumb_set DMA1_Channel7_IRQHandler,Default_Handler .weak ADC1_2_IRQHandler .thumb_set ADC1_2_IRQHandler,Default_Handler .weak USB_HP_IRQHandler .thumb_set USB_HP_IRQHandler,Default_Handler .weak USB_LP_IRQHandler .thumb_set USB_LP_IRQHandler,Default_Handler .weak FDCAN1_IT0_IRQHandler .thumb_set FDCAN1_IT0_IRQHandler,Default_Handler .weak FDCAN1_IT1_IRQHandler .thumb_set FDCAN1_IT1_IRQHandler,Default_Handler .weak EXTI9_5_IRQHandler .thumb_set EXTI9_5_IRQHandler,Default_Handler .weak TIM1_BRK_TIM15_IRQHandler .thumb_set TIM1_BRK_TIM15_IRQHandler,Default_Handler .weak TIM1_UP_TIM16_IRQHandler .thumb_set TIM1_UP_TIM16_IRQHandler,Default_Handler .weak TIM1_TRG_COM_TIM17_IRQHandler .thumb_set TIM1_TRG_COM_TIM17_IRQHandler,Default_Handler .weak TIM1_CC_IRQHandler .thumb_set TIM1_CC_IRQHandler,Default_Handler .weak TIM2_IRQHandler .thumb_set TIM2_IRQHandler,Default_Handler .weak TIM3_IRQHandler .thumb_set TIM3_IRQHandler,Default_Handler .weak TIM4_IRQHandler .thumb_set TIM4_IRQHandler,Default_Handler .weak I2C1_EV_IRQHandler .thumb_set I2C1_EV_IRQHandler,Default_Handler .weak I2C1_ER_IRQHandler .thumb_set I2C1_ER_IRQHandler,Default_Handler .weak I2C2_EV_IRQHandler .thumb_set I2C2_EV_IRQHandler,Default_Handler .weak I2C2_ER_IRQHandler .thumb_set I2C2_ER_IRQHandler,Default_Handler .weak SPI1_IRQHandler .thumb_set SPI1_IRQHandler,Default_Handler .weak SPI2_IRQHandler .thumb_set SPI2_IRQHandler,Default_Handler .weak USART1_IRQHandler .thumb_set USART1_IRQHandler,Default_Handler .weak USART2_IRQHandler .thumb_set USART2_IRQHandler,Default_Handler .weak USART3_IRQHandler .thumb_set USART3_IRQHandler,Default_Handler .weak EXTI15_10_IRQHandler .thumb_set EXTI15_10_IRQHandler,Default_Handler .weak RTC_Alarm_IRQHandler .thumb_set RTC_Alarm_IRQHandler,Default_Handler .weak USBWakeUp_IRQHandler .thumb_set USBWakeUp_IRQHandler,Default_Handler .weak TIM8_BRK_IRQHandler .thumb_set TIM8_BRK_IRQHandler,Default_Handler .weak TIM8_UP_IRQHandler .thumb_set TIM8_UP_IRQHandler,Default_Handler .weak TIM8_TRG_COM_IRQHandler .thumb_set TIM8_TRG_COM_IRQHandler,Default_Handler .weak TIM8_CC_IRQHandler .thumb_set TIM8_CC_IRQHandler,Default_Handler .weak ADC3_IRQHandler .thumb_set ADC3_IRQHandler,Default_Handler .weak FMC_IRQHandler .thumb_set FMC_IRQHandler,Default_Handler .weak LPTIM1_IRQHandler .thumb_set LPTIM1_IRQHandler,Default_Handler .weak TIM5_IRQHandler .thumb_set TIM5_IRQHandler,Default_Handler .weak SPI3_IRQHandler .thumb_set SPI3_IRQHandler,Default_Handler .weak UART4_IRQHandler .thumb_set UART4_IRQHandler,Default_Handler .weak UART5_IRQHandler .thumb_set UART5_IRQHandler,Default_Handler .weak TIM6_DAC_IRQHandler .thumb_set TIM6_DAC_IRQHandler,Default_Handler .weak TIM7_DAC_IRQHandler .thumb_set TIM7_DAC_IRQHandler,Default_Handler .weak DMA2_Channel1_IRQHandler .thumb_set DMA2_Channel1_IRQHandler,Default_Handler .weak DMA2_Channel2_IRQHandler .thumb_set DMA2_Channel2_IRQHandler,Default_Handler .weak DMA2_Channel3_IRQHandler .thumb_set DMA2_Channel3_IRQHandler,Default_Handler .weak DMA2_Channel4_IRQHandler .thumb_set DMA2_Channel4_IRQHandler,Default_Handler .weak DMA2_Channel5_IRQHandler .thumb_set DMA2_Channel5_IRQHandler,Default_Handler .weak ADC4_IRQHandler .thumb_set ADC4_IRQHandler,Default_Handler .weak ADC5_IRQHandler .thumb_set ADC5_IRQHandler,Default_Handler .weak UCPD1_IRQHandler .thumb_set UCPD1_IRQHandler,Default_Handler .weak COMP1_2_3_IRQHandler .thumb_set COMP1_2_3_IRQHandler,Default_Handler .weak COMP4_5_6_IRQHandler .thumb_set COMP4_5_6_IRQHandler,Default_Handler .weak COMP7_IRQHandler .thumb_set COMP7_IRQHandler,Default_Handler .weak HRTIM1_Master_IRQHandler .thumb_set HRTIM1_Master_IRQHandler,Default_Handler .weak HRTIM1_TIMA_IRQHandler .thumb_set HRTIM1_TIMA_IRQHandler,Default_Handler .weak HRTIM1_TIMB_IRQHandler .thumb_set HRTIM1_TIMB_IRQHandler,Default_Handler .weak HRTIM1_TIMC_IRQHandler .thumb_set HRTIM1_TIMC_IRQHandler,Default_Handler .weak HRTIM1_TIMD_IRQHandler .thumb_set HRTIM1_TIMD_IRQHandler,Default_Handler .weak HRTIM1_TIME_IRQHandler .thumb_set HRTIM1_TIME_IRQHandler,Default_Handler .weak HRTIM1_FLT_IRQHandler .thumb_set HRTIM1_FLT_IRQHandler,Default_Handler .weak HRTIM1_TIMF_IRQHandler .thumb_set HRTIM1_TIMF_IRQHandler,Default_Handler .weak CRS_IRQHandler .thumb_set CRS_IRQHandler,Default_Handler .weak SAI1_IRQHandler .thumb_set SAI1_IRQHandler,Default_Handler .weak TIM20_BRK_IRQHandler .thumb_set TIM20_BRK_IRQHandler,Default_Handler .weak TIM20_UP_IRQHandler .thumb_set TIM20_UP_IRQHandler,Default_Handler .weak TIM20_TRG_COM_IRQHandler .thumb_set TIM20_TRG_COM_IRQHandler,Default_Handler .weak TIM20_CC_IRQHandler .thumb_set TIM20_CC_IRQHandler,Default_Handler .weak FPU_IRQHandler .thumb_set FPU_IRQHandler,Default_Handler .weak I2C4_EV_IRQHandler .thumb_set I2C4_EV_IRQHandler,Default_Handler .weak I2C4_ER_IRQHandler .thumb_set I2C4_ER_IRQHandler,Default_Handler .weak SPI4_IRQHandler .thumb_set SPI4_IRQHandler,Default_Handler .weak AES_IRQHandler .thumb_set AES_IRQHandler,Default_Handler .weak FDCAN2_IT0_IRQHandler .thumb_set FDCAN2_IT0_IRQHandler,Default_Handler .weak FDCAN2_IT1_IRQHandler .thumb_set FDCAN2_IT1_IRQHandler,Default_Handler .weak FDCAN3_IT0_IRQHandler .thumb_set FDCAN3_IT0_IRQHandler,Default_Handler .weak FDCAN3_IT1_IRQHandler .thumb_set FDCAN3_IT1_IRQHandler,Default_Handler .weak RNG_IRQHandler .thumb_set RNG_IRQHandler,Default_Handler .weak LPUART1_IRQHandler .thumb_set LPUART1_IRQHandler,Default_Handler .weak I2C3_EV_IRQHandler .thumb_set I2C3_EV_IRQHandler,Default_Handler .weak I2C3_ER_IRQHandler .thumb_set I2C3_ER_IRQHandler,Default_Handler .weak DMAMUX_OVR_IRQHandler .thumb_set DMAMUX_OVR_IRQHandler,Default_Handler .weak QUADSPI_IRQHandler .thumb_set QUADSPI_IRQHandler,Default_Handler .weak DMA1_Channel8_IRQHandler .thumb_set DMA1_Channel8_IRQHandler,Default_Handler .weak DMA2_Channel6_IRQHandler .thumb_set DMA2_Channel6_IRQHandler,Default_Handler .weak DMA2_Channel7_IRQHandler .thumb_set DMA2_Channel7_IRQHandler,Default_Handler .weak DMA2_Channel8_IRQHandler .thumb_set DMA2_Channel8_IRQHandler,Default_Handler .weak CORDIC_IRQHandler .thumb_set CORDIC_IRQHandler,Default_Handler .weak FMAC_IRQHandler .thumb_set FMAC_IRQHandler,Default_Handler
Northeastern-Electric-Racing/Iroh
14,710
Drivers/CMSIS/Device/ST/STM32G4xx/Source/Templates/gcc/startup_stm32g473xx.s
/** ****************************************************************************** * @file startup_stm32g473xx.s * @author MCD Application Team * @brief STM32G473xx devices vector table GCC toolchain. * This module performs: * - Set the initial SP * - Set the initial PC == Reset_Handler, * - Set the vector table entries with the exceptions ISR address, * - Configure the clock system * - Branches to main in the C library (which eventually * calls main()). * After Reset the Cortex-M4 processor is in Thread mode, * priority is Privileged, and the Stack is set to Main. ****************************************************************************** * @attention * * Copyright (c) 2019 STMicroelectronics. * All rights reserved. * * This software is licensed under terms that can be found in the LICENSE file * in the root directory of this software component. * If no LICENSE file comes with this software, it is provided AS-IS. * ****************************************************************************** */ .syntax unified .cpu cortex-m4 .fpu softvfp .thumb .global g_pfnVectors .global Default_Handler /* start address for the initialization values of the .data section. defined in linker script */ .word _sidata /* start address for the .data section. defined in linker script */ .word _sdata /* end address for the .data section. defined in linker script */ .word _edata /* start address for the .bss section. defined in linker script */ .word _sbss /* end address for the .bss section. defined in linker script */ .word _ebss .equ BootRAM, 0xF1E0F85F /** * @brief This is the code that gets called when the processor first * starts execution following a reset event. Only the absolutely * necessary set is performed, after which the application * supplied main() routine is called. * @param None * @retval : None */ .section .text.Reset_Handler .weak Reset_Handler .type Reset_Handler, %function Reset_Handler: ldr r0, =_estack mov sp, r0 /* set stack pointer */ /* Call the clock system initialization function.*/ bl SystemInit /* Copy the data segment initializers from flash to SRAM */ ldr r0, =_sdata ldr r1, =_edata ldr r2, =_sidata movs r3, #0 b LoopCopyDataInit CopyDataInit: ldr r4, [r2, r3] str r4, [r0, r3] adds r3, r3, #4 LoopCopyDataInit: adds r4, r0, r3 cmp r4, r1 bcc CopyDataInit /* Zero fill the bss segment. */ ldr r2, =_sbss ldr r4, =_ebss movs r3, #0 b LoopFillZerobss FillZerobss: str r3, [r2] adds r2, r2, #4 LoopFillZerobss: cmp r2, r4 bcc FillZerobss /* Call static constructors */ bl __libc_init_array /* Call the application's entry point.*/ bl main LoopForever: b LoopForever .size Reset_Handler, .-Reset_Handler /** * @brief This is the code that gets called when the processor receives an * unexpected interrupt. This simply enters an infinite loop, preserving * the system state for examination by a debugger. * * @param None * @retval : None */ .section .text.Default_Handler,"ax",%progbits Default_Handler: Infinite_Loop: b Infinite_Loop .size Default_Handler, .-Default_Handler /****************************************************************************** * * The minimal vector table for a Cortex-M4. Note that the proper constructs * must be placed on this to ensure that it ends up at physical address * 0x0000.0000. * ******************************************************************************/ .section .isr_vector,"a",%progbits .type g_pfnVectors, %object g_pfnVectors: .word _estack .word Reset_Handler .word NMI_Handler .word HardFault_Handler .word MemManage_Handler .word BusFault_Handler .word UsageFault_Handler .word 0 .word 0 .word 0 .word 0 .word SVC_Handler .word DebugMon_Handler .word 0 .word PendSV_Handler .word SysTick_Handler .word WWDG_IRQHandler .word PVD_PVM_IRQHandler .word RTC_TAMP_LSECSS_IRQHandler .word RTC_WKUP_IRQHandler .word FLASH_IRQHandler .word RCC_IRQHandler .word EXTI0_IRQHandler .word EXTI1_IRQHandler .word EXTI2_IRQHandler .word EXTI3_IRQHandler .word EXTI4_IRQHandler .word DMA1_Channel1_IRQHandler .word DMA1_Channel2_IRQHandler .word DMA1_Channel3_IRQHandler .word DMA1_Channel4_IRQHandler .word DMA1_Channel5_IRQHandler .word DMA1_Channel6_IRQHandler .word DMA1_Channel7_IRQHandler .word ADC1_2_IRQHandler .word USB_HP_IRQHandler .word USB_LP_IRQHandler .word FDCAN1_IT0_IRQHandler .word FDCAN1_IT1_IRQHandler .word EXTI9_5_IRQHandler .word TIM1_BRK_TIM15_IRQHandler .word TIM1_UP_TIM16_IRQHandler .word TIM1_TRG_COM_TIM17_IRQHandler .word TIM1_CC_IRQHandler .word TIM2_IRQHandler .word TIM3_IRQHandler .word TIM4_IRQHandler .word I2C1_EV_IRQHandler .word I2C1_ER_IRQHandler .word I2C2_EV_IRQHandler .word I2C2_ER_IRQHandler .word SPI1_IRQHandler .word SPI2_IRQHandler .word USART1_IRQHandler .word USART2_IRQHandler .word USART3_IRQHandler .word EXTI15_10_IRQHandler .word RTC_Alarm_IRQHandler .word USBWakeUp_IRQHandler .word TIM8_BRK_IRQHandler .word TIM8_UP_IRQHandler .word TIM8_TRG_COM_IRQHandler .word TIM8_CC_IRQHandler .word ADC3_IRQHandler .word FMC_IRQHandler .word LPTIM1_IRQHandler .word TIM5_IRQHandler .word SPI3_IRQHandler .word UART4_IRQHandler .word UART5_IRQHandler .word TIM6_DAC_IRQHandler .word TIM7_DAC_IRQHandler .word DMA2_Channel1_IRQHandler .word DMA2_Channel2_IRQHandler .word DMA2_Channel3_IRQHandler .word DMA2_Channel4_IRQHandler .word DMA2_Channel5_IRQHandler .word ADC4_IRQHandler .word ADC5_IRQHandler .word UCPD1_IRQHandler .word COMP1_2_3_IRQHandler .word COMP4_5_6_IRQHandler .word COMP7_IRQHandler .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word 0 .word CRS_IRQHandler .word SAI1_IRQHandler .word TIM20_BRK_IRQHandler .word TIM20_UP_IRQHandler .word TIM20_TRG_COM_IRQHandler .word TIM20_CC_IRQHandler .word FPU_IRQHandler .word I2C4_EV_IRQHandler .word I2C4_ER_IRQHandler .word SPI4_IRQHandler .word 0 .word FDCAN2_IT0_IRQHandler .word FDCAN2_IT1_IRQHandler .word FDCAN3_IT0_IRQHandler .word FDCAN3_IT1_IRQHandler .word RNG_IRQHandler .word LPUART1_IRQHandler .word I2C3_EV_IRQHandler .word I2C3_ER_IRQHandler .word DMAMUX_OVR_IRQHandler .word QUADSPI_IRQHandler .word DMA1_Channel8_IRQHandler .word DMA2_Channel6_IRQHandler .word DMA2_Channel7_IRQHandler .word DMA2_Channel8_IRQHandler .word CORDIC_IRQHandler .word FMAC_IRQHandler .size g_pfnVectors, .-g_pfnVectors /******************************************************************************* * * Provide weak aliases for each Exception handler to the Default_Handler. * As they are weak aliases, any function with the same name will override * this definition. * *******************************************************************************/ .weak NMI_Handler .thumb_set NMI_Handler,Default_Handler .weak HardFault_Handler .thumb_set HardFault_Handler,Default_Handler .weak MemManage_Handler .thumb_set MemManage_Handler,Default_Handler .weak BusFault_Handler .thumb_set BusFault_Handler,Default_Handler .weak UsageFault_Handler .thumb_set UsageFault_Handler,Default_Handler .weak SVC_Handler .thumb_set SVC_Handler,Default_Handler .weak DebugMon_Handler .thumb_set DebugMon_Handler,Default_Handler .weak PendSV_Handler .thumb_set PendSV_Handler,Default_Handler .weak SysTick_Handler .thumb_set SysTick_Handler,Default_Handler .weak WWDG_IRQHandler .thumb_set WWDG_IRQHandler,Default_Handler .weak PVD_PVM_IRQHandler .thumb_set PVD_PVM_IRQHandler,Default_Handler .weak RTC_TAMP_LSECSS_IRQHandler .thumb_set RTC_TAMP_LSECSS_IRQHandler,Default_Handler .weak RTC_WKUP_IRQHandler .thumb_set RTC_WKUP_IRQHandler,Default_Handler .weak FLASH_IRQHandler .thumb_set FLASH_IRQHandler,Default_Handler .weak RCC_IRQHandler .thumb_set RCC_IRQHandler,Default_Handler .weak EXTI0_IRQHandler .thumb_set EXTI0_IRQHandler,Default_Handler .weak EXTI1_IRQHandler .thumb_set EXTI1_IRQHandler,Default_Handler .weak EXTI2_IRQHandler .thumb_set EXTI2_IRQHandler,Default_Handler .weak EXTI3_IRQHandler .thumb_set EXTI3_IRQHandler,Default_Handler .weak EXTI4_IRQHandler .thumb_set EXTI4_IRQHandler,Default_Handler .weak DMA1_Channel1_IRQHandler .thumb_set DMA1_Channel1_IRQHandler,Default_Handler .weak DMA1_Channel2_IRQHandler .thumb_set DMA1_Channel2_IRQHandler,Default_Handler .weak DMA1_Channel3_IRQHandler .thumb_set DMA1_Channel3_IRQHandler,Default_Handler .weak DMA1_Channel4_IRQHandler .thumb_set DMA1_Channel4_IRQHandler,Default_Handler .weak DMA1_Channel5_IRQHandler .thumb_set DMA1_Channel5_IRQHandler,Default_Handler .weak DMA1_Channel6_IRQHandler .thumb_set DMA1_Channel6_IRQHandler,Default_Handler .weak DMA1_Channel7_IRQHandler .thumb_set DMA1_Channel7_IRQHandler,Default_Handler .weak ADC1_2_IRQHandler .thumb_set ADC1_2_IRQHandler,Default_Handler .weak USB_HP_IRQHandler .thumb_set USB_HP_IRQHandler,Default_Handler .weak USB_LP_IRQHandler .thumb_set USB_LP_IRQHandler,Default_Handler .weak FDCAN1_IT0_IRQHandler .thumb_set FDCAN1_IT0_IRQHandler,Default_Handler .weak FDCAN1_IT1_IRQHandler .thumb_set FDCAN1_IT1_IRQHandler,Default_Handler .weak EXTI9_5_IRQHandler .thumb_set EXTI9_5_IRQHandler,Default_Handler .weak TIM1_BRK_TIM15_IRQHandler .thumb_set TIM1_BRK_TIM15_IRQHandler,Default_Handler .weak TIM1_UP_TIM16_IRQHandler .thumb_set TIM1_UP_TIM16_IRQHandler,Default_Handler .weak TIM1_TRG_COM_TIM17_IRQHandler .thumb_set TIM1_TRG_COM_TIM17_IRQHandler,Default_Handler .weak TIM1_CC_IRQHandler .thumb_set TIM1_CC_IRQHandler,Default_Handler .weak TIM2_IRQHandler .thumb_set TIM2_IRQHandler,Default_Handler .weak TIM3_IRQHandler .thumb_set TIM3_IRQHandler,Default_Handler .weak TIM4_IRQHandler .thumb_set TIM4_IRQHandler,Default_Handler .weak I2C1_EV_IRQHandler .thumb_set I2C1_EV_IRQHandler,Default_Handler .weak I2C1_ER_IRQHandler .thumb_set I2C1_ER_IRQHandler,Default_Handler .weak I2C2_EV_IRQHandler .thumb_set I2C2_EV_IRQHandler,Default_Handler .weak I2C2_ER_IRQHandler .thumb_set I2C2_ER_IRQHandler,Default_Handler .weak SPI1_IRQHandler .thumb_set SPI1_IRQHandler,Default_Handler .weak SPI2_IRQHandler .thumb_set SPI2_IRQHandler,Default_Handler .weak USART1_IRQHandler .thumb_set USART1_IRQHandler,Default_Handler .weak USART2_IRQHandler .thumb_set USART2_IRQHandler,Default_Handler .weak USART3_IRQHandler .thumb_set USART3_IRQHandler,Default_Handler .weak EXTI15_10_IRQHandler .thumb_set EXTI15_10_IRQHandler,Default_Handler .weak RTC_Alarm_IRQHandler .thumb_set RTC_Alarm_IRQHandler,Default_Handler .weak USBWakeUp_IRQHandler .thumb_set USBWakeUp_IRQHandler,Default_Handler .weak TIM8_BRK_IRQHandler .thumb_set TIM8_BRK_IRQHandler,Default_Handler .weak TIM8_UP_IRQHandler .thumb_set TIM8_UP_IRQHandler,Default_Handler .weak TIM8_TRG_COM_IRQHandler .thumb_set TIM8_TRG_COM_IRQHandler,Default_Handler .weak TIM8_CC_IRQHandler .thumb_set TIM8_CC_IRQHandler,Default_Handler .weak ADC3_IRQHandler .thumb_set ADC3_IRQHandler,Default_Handler .weak FMC_IRQHandler .thumb_set FMC_IRQHandler,Default_Handler .weak LPTIM1_IRQHandler .thumb_set LPTIM1_IRQHandler,Default_Handler .weak TIM5_IRQHandler .thumb_set TIM5_IRQHandler,Default_Handler .weak SPI3_IRQHandler .thumb_set SPI3_IRQHandler,Default_Handler .weak UART4_IRQHandler .thumb_set UART4_IRQHandler,Default_Handler .weak UART5_IRQHandler .thumb_set UART5_IRQHandler,Default_Handler .weak TIM6_DAC_IRQHandler .thumb_set TIM6_DAC_IRQHandler,Default_Handler .weak TIM7_DAC_IRQHandler .thumb_set TIM7_DAC_IRQHandler,Default_Handler .weak DMA2_Channel1_IRQHandler .thumb_set DMA2_Channel1_IRQHandler,Default_Handler .weak DMA2_Channel2_IRQHandler .thumb_set DMA2_Channel2_IRQHandler,Default_Handler .weak DMA2_Channel3_IRQHandler .thumb_set DMA2_Channel3_IRQHandler,Default_Handler .weak DMA2_Channel4_IRQHandler .thumb_set DMA2_Channel4_IRQHandler,Default_Handler .weak DMA2_Channel5_IRQHandler .thumb_set DMA2_Channel5_IRQHandler,Default_Handler .weak ADC4_IRQHandler .thumb_set ADC4_IRQHandler,Default_Handler .weak ADC5_IRQHandler .thumb_set ADC5_IRQHandler,Default_Handler .weak UCPD1_IRQHandler .thumb_set UCPD1_IRQHandler,Default_Handler .weak COMP1_2_3_IRQHandler .thumb_set COMP1_2_3_IRQHandler,Default_Handler .weak COMP4_5_6_IRQHandler .thumb_set COMP4_5_6_IRQHandler,Default_Handler .weak COMP7_IRQHandler .thumb_set COMP7_IRQHandler,Default_Handler .weak CRS_IRQHandler .thumb_set CRS_IRQHandler,Default_Handler .weak SAI1_IRQHandler .thumb_set SAI1_IRQHandler,Default_Handler .weak TIM20_BRK_IRQHandler .thumb_set TIM20_BRK_IRQHandler,Default_Handler .weak TIM20_UP_IRQHandler .thumb_set TIM20_UP_IRQHandler,Default_Handler .weak TIM20_TRG_COM_IRQHandler .thumb_set TIM20_TRG_COM_IRQHandler,Default_Handler .weak TIM20_CC_IRQHandler .thumb_set TIM20_CC_IRQHandler,Default_Handler .weak FPU_IRQHandler .thumb_set FPU_IRQHandler,Default_Handler .weak I2C4_EV_IRQHandler .thumb_set I2C4_EV_IRQHandler,Default_Handler .weak I2C4_ER_IRQHandler .thumb_set I2C4_ER_IRQHandler,Default_Handler .weak SPI4_IRQHandler .thumb_set SPI4_IRQHandler,Default_Handler .weak FDCAN2_IT0_IRQHandler .thumb_set FDCAN2_IT0_IRQHandler,Default_Handler .weak FDCAN2_IT1_IRQHandler .thumb_set FDCAN2_IT1_IRQHandler,Default_Handler .weak FDCAN3_IT0_IRQHandler .thumb_set FDCAN3_IT0_IRQHandler,Default_Handler .weak FDCAN3_IT1_IRQHandler .thumb_set FDCAN3_IT1_IRQHandler,Default_Handler .weak RNG_IRQHandler .thumb_set RNG_IRQHandler,Default_Handler .weak LPUART1_IRQHandler .thumb_set LPUART1_IRQHandler,Default_Handler .weak I2C3_EV_IRQHandler .thumb_set I2C3_EV_IRQHandler,Default_Handler .weak I2C3_ER_IRQHandler .thumb_set I2C3_ER_IRQHandler,Default_Handler .weak DMAMUX_OVR_IRQHandler .thumb_set DMAMUX_OVR_IRQHandler,Default_Handler .weak QUADSPI_IRQHandler .thumb_set QUADSPI_IRQHandler,Default_Handler .weak DMA1_Channel8_IRQHandler .thumb_set DMA1_Channel8_IRQHandler,Default_Handler .weak DMA2_Channel6_IRQHandler .thumb_set DMA2_Channel6_IRQHandler,Default_Handler .weak DMA2_Channel7_IRQHandler .thumb_set DMA2_Channel7_IRQHandler,Default_Handler .weak DMA2_Channel8_IRQHandler .thumb_set DMA2_Channel8_IRQHandler,Default_Handler .weak CORDIC_IRQHandler .thumb_set CORDIC_IRQHandler,Default_Handler .weak FMAC_IRQHandler .thumb_set FMAC_IRQHandler,Default_Handler
Northeastern-Electric-Racing/Iroh
19,970
Drivers/CMSIS/Device/ST/STM32G4xx/Source/Templates/arm/startup_stm32g471xx.s
;******************************************************************************* ;* @File Name : startup_stm32g471xx.s ;* @Author : MCD Application Team ;* @Brief : Vector table for MDK-ARM toolchain ;******************************************************************************* ;* Description : STM32G471xx Mainstream devices vector table for ;* MDK-ARM toolchain. ;* This module performs: ;* - Set the initial SP ;* - Set the initial PC == Reset_Handler ;* - Set the vector table entries with the exceptions ISR address ;* - Branches to __main in the C library (which eventually ;* calls main()). ;* After Reset the Cortex-M4 processor is in Thread mode, ;* priority is Privileged, and the Stack is set to Main. ;******************************************************************************** ;* @attention ;* ;* Copyright (c) 2019 STMicroelectronics. ;* All rights reserved. ;* ;* This software is licensed under terms that can be found in the LICENSE file ;* in the root directory of this software component. ;* If no LICENSE file comes with this software, it is provided AS-IS. ; ;******************************************************************************* ;* <<< Use Configuration Wizard in Context Menu >>> ; ; Amount of memory (in bytes) allocated for Stack ; Tailor this value to your application needs ; <h> Stack Configuration ; <o> Stack Size (in Bytes) <0x0-0xFFFFFFFF:8> ; </h> Stack_Size EQU 0x400; AREA STACK, NOINIT, READWRITE, ALIGN=3 Stack_Mem SPACE Stack_Size __initial_sp ; <h> Heap Configuration ; <o> Heap Size (in Bytes) <0x0-0xFFFFFFFF:8> ; </h> Heap_Size EQU 0x200; AREA HEAP, NOINIT, READWRITE, ALIGN=3 __heap_base Heap_Mem SPACE Heap_Size __heap_limit PRESERVE8 THUMB ; Vector Table Mapped to Address 0 at Reset AREA RESET, DATA, READONLY EXPORT __Vectors EXPORT __Vectors_End EXPORT __Vectors_Size __Vectors DCD __initial_sp ; Top of Stack DCD Reset_Handler ; Reset Handler DCD NMI_Handler ; NMI Handler DCD HardFault_Handler ; Hard Fault Handler DCD MemManage_Handler ; MPU Fault Handler DCD BusFault_Handler ; Bus Fault Handler DCD UsageFault_Handler ; Usage Fault Handler DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD SVC_Handler ; SVCall Handler DCD DebugMon_Handler ; Debug Monitor Handler DCD 0 ; Reserved DCD PendSV_Handler ; PendSV Handler DCD SysTick_Handler ; SysTick Handler ; External Interrupts DCD WWDG_IRQHandler ; Window WatchDog DCD PVD_PVM_IRQHandler ; PVD/PVM1/PVM2/PVM3/PVM4 through EXTI Line detection DCD RTC_TAMP_LSECSS_IRQHandler ; RTC, TAMP and RCC LSE_CSS through the EXTI line DCD RTC_WKUP_IRQHandler ; RTC Wakeup through the EXTI line DCD FLASH_IRQHandler ; FLASH DCD RCC_IRQHandler ; RCC DCD EXTI0_IRQHandler ; EXTI Line0 DCD EXTI1_IRQHandler ; EXTI Line1 DCD EXTI2_IRQHandler ; EXTI Line2 DCD EXTI3_IRQHandler ; EXTI Line3 DCD EXTI4_IRQHandler ; EXTI Line4 DCD DMA1_Channel1_IRQHandler ; DMA1 Channel 1 DCD DMA1_Channel2_IRQHandler ; DMA1 Channel 2 DCD DMA1_Channel3_IRQHandler ; DMA1 Channel 3 DCD DMA1_Channel4_IRQHandler ; DMA1 Channel 4 DCD DMA1_Channel5_IRQHandler ; DMA1 Channel 5 DCD DMA1_Channel6_IRQHandler ; DMA1 Channel 6 DCD DMA1_Channel7_IRQHandler ; DMA1 Channel 7 DCD ADC1_2_IRQHandler ; ADC1 and ADC2 DCD USB_HP_IRQHandler ; USB Device High Priority DCD USB_LP_IRQHandler ; USB Device Low Priority DCD 0 ; Reserved DCD 0 ; Reserved DCD EXTI9_5_IRQHandler ; External Line[9:5]s DCD TIM1_BRK_TIM15_IRQHandler ; TIM1 Break, Transition error, Index error and TIM15 DCD TIM1_UP_TIM16_IRQHandler ; TIM1 Update and TIM16 DCD TIM1_TRG_COM_TIM17_IRQHandler ; TIM1 Trigger, Commutation, Direction change, Index and TIM17 DCD TIM1_CC_IRQHandler ; TIM1 Capture Compare DCD TIM2_IRQHandler ; TIM2 DCD TIM3_IRQHandler ; TIM3 DCD TIM4_IRQHandler ; TIM4 DCD I2C1_EV_IRQHandler ; I2C1 Event DCD I2C1_ER_IRQHandler ; I2C1 Error DCD I2C2_EV_IRQHandler ; I2C2 Event DCD I2C2_ER_IRQHandler ; I2C2 Error DCD SPI1_IRQHandler ; SPI1 DCD SPI2_IRQHandler ; SPI2 DCD USART1_IRQHandler ; USART1 DCD USART2_IRQHandler ; USART2 DCD USART3_IRQHandler ; USART3 DCD EXTI15_10_IRQHandler ; External Line[15:10] DCD RTC_Alarm_IRQHandler ; RTC Alarm (A and B) through EXTI Line DCD USBWakeUp_IRQHandler ; USB Wakeup through EXTI line DCD TIM8_BRK_IRQHandler ; TIM8 Break, Transition error and Index error Interrupt DCD TIM8_UP_IRQHandler ; TIM8 Update Interrupt DCD TIM8_TRG_COM_IRQHandler ; TIM8 Trigger, Commutation, Direction change and Index Interrupt DCD TIM8_CC_IRQHandler ; TIM8 Capture Compare Interrupt DCD ADC3_IRQHandler ; ADC3 DCD 0 ; Reserved DCD LPTIM1_IRQHandler ; LP TIM1 interrupt DCD TIM5_IRQHandler ; TIM5 DCD SPI3_IRQHandler ; SPI3 DCD UART4_IRQHandler ; UART4 DCD UART5_IRQHandler ; UART5 DCD TIM6_DAC_IRQHandler ; TIM6 and DAC1&3 underrun errors DCD TIM7_IRQHandler ; TIM7 DCD DMA2_Channel1_IRQHandler ; DMA2 Channel 1 DCD DMA2_Channel2_IRQHandler ; DMA2 Channel 2 DCD DMA2_Channel3_IRQHandler ; DMA2 Channel 3 DCD DMA2_Channel4_IRQHandler ; DMA2 Channel 4 DCD DMA2_Channel5_IRQHandler ; DMA2 Channel 5 DCD 0 ; Reserved DCD 0 ; Reserved DCD UCPD1_IRQHandler ; UCPD1 DCD COMP1_2_3_IRQHandler ; COMP1, COMP2 and COMP3 DCD COMP4_IRQHandler ; COMP4 DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD CRS_IRQHandler ; CRS Interrupt DCD SAI1_IRQHandler ; Serial Audio Interface 1 global interrupt DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD FPU_IRQHandler ; FPU DCD I2C4_EV_IRQHandler ; I2C4 event DCD I2C4_ER_IRQHandler ; I2C4 error DCD SPI4_IRQHandler ; SPI4 DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD RNG_IRQHandler ; RNG global interrupt DCD LPUART1_IRQHandler ; LP UART 1 interrupt DCD I2C3_EV_IRQHandler ; I2C3 Event DCD I2C3_ER_IRQHandler ; I2C3 Error DCD DMAMUX_OVR_IRQHandler ; DMAMUX overrun global interrupt DCD QUADSPI_IRQHandler ; QUADSPI DCD DMA1_Channel8_IRQHandler ; DMA1 Channel 8 DCD DMA2_Channel6_IRQHandler ; DMA2 Channel 6 DCD DMA2_Channel7_IRQHandler ; DMA2 Channel 7 DCD DMA2_Channel8_IRQHandler ; DMA2 Channel 8 DCD CORDIC_IRQHandler ; CORDIC DCD FMAC_IRQHandler ; FMAC __Vectors_End __Vectors_Size EQU __Vectors_End - __Vectors AREA |.text|, CODE, READONLY ; Reset handler Reset_Handler PROC EXPORT Reset_Handler [WEAK] IMPORT SystemInit IMPORT __main LDR R0, =SystemInit BLX R0 LDR R0, =__main BX R0 ENDP ; Dummy Exception Handlers (infinite loops which can be modified) NMI_Handler PROC EXPORT NMI_Handler [WEAK] B . ENDP HardFault_Handler\ PROC EXPORT HardFault_Handler [WEAK] B . ENDP MemManage_Handler\ PROC EXPORT MemManage_Handler [WEAK] B . ENDP BusFault_Handler\ PROC EXPORT BusFault_Handler [WEAK] B . ENDP UsageFault_Handler\ PROC EXPORT UsageFault_Handler [WEAK] B . ENDP SVC_Handler PROC EXPORT SVC_Handler [WEAK] B . ENDP DebugMon_Handler\ PROC EXPORT DebugMon_Handler [WEAK] B . ENDP PendSV_Handler PROC EXPORT PendSV_Handler [WEAK] B . ENDP SysTick_Handler PROC EXPORT SysTick_Handler [WEAK] B . ENDP Default_Handler PROC EXPORT WWDG_IRQHandler [WEAK] EXPORT PVD_PVM_IRQHandler [WEAK] EXPORT RTC_TAMP_LSECSS_IRQHandler [WEAK] EXPORT RTC_WKUP_IRQHandler [WEAK] EXPORT FLASH_IRQHandler [WEAK] EXPORT RCC_IRQHandler [WEAK] EXPORT EXTI0_IRQHandler [WEAK] EXPORT EXTI1_IRQHandler [WEAK] EXPORT EXTI2_IRQHandler [WEAK] EXPORT EXTI3_IRQHandler [WEAK] EXPORT EXTI4_IRQHandler [WEAK] EXPORT DMA1_Channel1_IRQHandler [WEAK] EXPORT DMA1_Channel2_IRQHandler [WEAK] EXPORT DMA1_Channel3_IRQHandler [WEAK] EXPORT DMA1_Channel4_IRQHandler [WEAK] EXPORT DMA1_Channel5_IRQHandler [WEAK] EXPORT DMA1_Channel6_IRQHandler [WEAK] EXPORT DMA1_Channel7_IRQHandler [WEAK] EXPORT ADC1_2_IRQHandler [WEAK] EXPORT USB_HP_IRQHandler [WEAK] EXPORT USB_LP_IRQHandler [WEAK] EXPORT EXTI9_5_IRQHandler [WEAK] EXPORT TIM1_BRK_TIM15_IRQHandler [WEAK] EXPORT TIM1_UP_TIM16_IRQHandler [WEAK] EXPORT TIM1_TRG_COM_TIM17_IRQHandler [WEAK] EXPORT TIM1_CC_IRQHandler [WEAK] EXPORT TIM2_IRQHandler [WEAK] EXPORT TIM3_IRQHandler [WEAK] EXPORT TIM4_IRQHandler [WEAK] EXPORT I2C1_EV_IRQHandler [WEAK] EXPORT I2C1_ER_IRQHandler [WEAK] EXPORT I2C2_EV_IRQHandler [WEAK] EXPORT I2C2_ER_IRQHandler [WEAK] EXPORT SPI1_IRQHandler [WEAK] EXPORT SPI2_IRQHandler [WEAK] EXPORT USART1_IRQHandler [WEAK] EXPORT USART2_IRQHandler [WEAK] EXPORT USART3_IRQHandler [WEAK] EXPORT EXTI15_10_IRQHandler [WEAK] EXPORT RTC_Alarm_IRQHandler [WEAK] EXPORT USBWakeUp_IRQHandler [WEAK] EXPORT TIM8_BRK_IRQHandler [WEAK] EXPORT TIM8_UP_IRQHandler [WEAK] EXPORT TIM8_TRG_COM_IRQHandler [WEAK] EXPORT TIM8_CC_IRQHandler [WEAK] EXPORT ADC3_IRQHandler [WEAK] EXPORT LPTIM1_IRQHandler [WEAK] EXPORT TIM5_IRQHandler [WEAK] EXPORT SPI3_IRQHandler [WEAK] EXPORT UART4_IRQHandler [WEAK] EXPORT UART5_IRQHandler [WEAK] EXPORT TIM6_DAC_IRQHandler [WEAK] EXPORT TIM7_IRQHandler [WEAK] EXPORT DMA2_Channel1_IRQHandler [WEAK] EXPORT DMA2_Channel2_IRQHandler [WEAK] EXPORT DMA2_Channel3_IRQHandler [WEAK] EXPORT DMA2_Channel4_IRQHandler [WEAK] EXPORT DMA2_Channel5_IRQHandler [WEAK] EXPORT UCPD1_IRQHandler [WEAK] EXPORT COMP1_2_3_IRQHandler [WEAK] EXPORT COMP4_IRQHandler [WEAK] EXPORT CRS_IRQHandler [WEAK] EXPORT SAI1_IRQHandler [WEAK] EXPORT FPU_IRQHandler [WEAK] EXPORT I2C4_EV_IRQHandler [WEAK] EXPORT I2C4_ER_IRQHandler [WEAK] EXPORT SPI4_IRQHandler [WEAK] EXPORT RNG_IRQHandler [WEAK] EXPORT LPUART1_IRQHandler [WEAK] EXPORT I2C3_EV_IRQHandler [WEAK] EXPORT I2C3_ER_IRQHandler [WEAK] EXPORT DMAMUX_OVR_IRQHandler [WEAK] EXPORT QUADSPI_IRQHandler [WEAK] EXPORT DMA1_Channel8_IRQHandler [WEAK] EXPORT DMA2_Channel6_IRQHandler [WEAK] EXPORT DMA2_Channel7_IRQHandler [WEAK] EXPORT DMA2_Channel8_IRQHandler [WEAK] EXPORT CORDIC_IRQHandler [WEAK] EXPORT FMAC_IRQHandler [WEAK] WWDG_IRQHandler PVD_PVM_IRQHandler RTC_TAMP_LSECSS_IRQHandler RTC_WKUP_IRQHandler FLASH_IRQHandler RCC_IRQHandler EXTI0_IRQHandler EXTI1_IRQHandler EXTI2_IRQHandler EXTI3_IRQHandler EXTI4_IRQHandler DMA1_Channel1_IRQHandler DMA1_Channel2_IRQHandler DMA1_Channel3_IRQHandler DMA1_Channel4_IRQHandler DMA1_Channel5_IRQHandler DMA1_Channel6_IRQHandler DMA1_Channel7_IRQHandler ADC1_2_IRQHandler USB_HP_IRQHandler USB_LP_IRQHandler EXTI9_5_IRQHandler TIM1_BRK_TIM15_IRQHandler TIM1_UP_TIM16_IRQHandler TIM1_TRG_COM_TIM17_IRQHandler TIM1_CC_IRQHandler TIM2_IRQHandler TIM3_IRQHandler TIM4_IRQHandler I2C1_EV_IRQHandler I2C1_ER_IRQHandler I2C2_EV_IRQHandler I2C2_ER_IRQHandler SPI1_IRQHandler SPI2_IRQHandler USART1_IRQHandler USART2_IRQHandler USART3_IRQHandler EXTI15_10_IRQHandler RTC_Alarm_IRQHandler USBWakeUp_IRQHandler TIM8_BRK_IRQHandler TIM8_UP_IRQHandler TIM8_TRG_COM_IRQHandler TIM8_CC_IRQHandler ADC3_IRQHandler LPTIM1_IRQHandler TIM5_IRQHandler SPI3_IRQHandler UART4_IRQHandler UART5_IRQHandler TIM6_DAC_IRQHandler TIM7_IRQHandler DMA2_Channel1_IRQHandler DMA2_Channel2_IRQHandler DMA2_Channel3_IRQHandler DMA2_Channel4_IRQHandler DMA2_Channel5_IRQHandler UCPD1_IRQHandler COMP1_2_3_IRQHandler COMP4_IRQHandler CRS_IRQHandler SAI1_IRQHandler FPU_IRQHandler I2C4_EV_IRQHandler I2C4_ER_IRQHandler SPI4_IRQHandler RNG_IRQHandler LPUART1_IRQHandler I2C3_EV_IRQHandler I2C3_ER_IRQHandler DMAMUX_OVR_IRQHandler QUADSPI_IRQHandler DMA1_Channel8_IRQHandler DMA2_Channel6_IRQHandler DMA2_Channel7_IRQHandler DMA2_Channel8_IRQHandler CORDIC_IRQHandler FMAC_IRQHandler B . ENDP ALIGN ;******************************************************************************* ; User Stack and Heap initialization ;******************************************************************************* IF :DEF:__MICROLIB EXPORT __initial_sp EXPORT __heap_base EXPORT __heap_limit ELSE IMPORT __use_two_region_memory EXPORT __user_initial_stackheap __user_initial_stackheap LDR R0, = Heap_Mem LDR R1, =(Stack_Mem + Stack_Size) LDR R2, = (Heap_Mem + Heap_Size) LDR R3, = Stack_Mem BX LR ALIGN ENDIF END
Northeastern-Electric-Racing/Iroh
19,186
Drivers/CMSIS/Device/ST/STM32G4xx/Source/Templates/arm/startup_stm32gbk1cb.s
;******************************************************************************* ;* @File Name : startup_stm32gbk1cb.s ;* @Author : MCD Application Team ;* @Brief : Vector table for MDK-ARM toolchain ;******************************************************************************* ;* Description : STM32GBK1CB Mainstream devices vector table for ;* MDK-ARM toolchain. ;* This module performs: ;* - Set the initial SP ;* - Set the initial PC == Reset_Handler ;* - Set the vector table entries with the exceptions ISR address ;* - Branches to __main in the C library (which eventually ;* calls main()). ;* After Reset the Cortex-M4 processor is in Thread mode, ;* priority is Privileged, and the Stack is set to Main. ;******************************************************************************** ;* @attention ;* ;* Copyright (c) 2019 STMicroelectronics. ;* All rights reserved. ;* ;* This software is licensed under terms that can be found in the LICENSE file ;* in the root directory of this software component. ;* If no LICENSE file comes with this software, it is provided AS-IS. ; ;******************************************************************************* ;* <<< Use Configuration Wizard in Context Menu >>> ; ; Amount of memory (in bytes) allocated for Stack ; Tailor this value to your application needs ; <h> Stack Configuration ; <o> Stack Size (in Bytes) <0x0-0xFFFFFFFF:8> ; </h> Stack_Size EQU 0x400; AREA STACK, NOINIT, READWRITE, ALIGN=3 Stack_Mem SPACE Stack_Size __initial_sp ; <h> Heap Configuration ; <o> Heap Size (in Bytes) <0x0-0xFFFFFFFF:8> ; </h> Heap_Size EQU 0x200; AREA HEAP, NOINIT, READWRITE, ALIGN=3 __heap_base Heap_Mem SPACE Heap_Size __heap_limit PRESERVE8 THUMB ; Vector Table Mapped to Address 0 at Reset AREA RESET, DATA, READONLY EXPORT __Vectors EXPORT __Vectors_End EXPORT __Vectors_Size __Vectors DCD __initial_sp ; Top of Stack DCD Reset_Handler ; Reset Handler DCD NMI_Handler ; NMI Handler DCD HardFault_Handler ; Hard Fault Handler DCD MemManage_Handler ; MPU Fault Handler DCD BusFault_Handler ; Bus Fault Handler DCD UsageFault_Handler ; Usage Fault Handler DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD SVC_Handler ; SVCall Handler DCD DebugMon_Handler ; Debug Monitor Handler DCD 0 ; Reserved DCD PendSV_Handler ; PendSV Handler DCD SysTick_Handler ; SysTick Handler ; External Interrupts DCD WWDG_IRQHandler ; Window WatchDog DCD PVD_PVM_IRQHandler ; PVD/PVM1/PVM2/PVM3/PVM4 through EXTI Line detection DCD RTC_TAMP_LSECSS_IRQHandler ; RTC, TAMP and RCC LSE_CSS through the EXTI line DCD RTC_WKUP_IRQHandler ; RTC Wakeup through the EXTI line DCD FLASH_IRQHandler ; FLASH DCD RCC_IRQHandler ; RCC DCD EXTI0_IRQHandler ; EXTI Line0 DCD EXTI1_IRQHandler ; EXTI Line1 DCD EXTI2_IRQHandler ; EXTI Line2 DCD EXTI3_IRQHandler ; EXTI Line3 DCD EXTI4_IRQHandler ; EXTI Line4 DCD DMA1_Channel1_IRQHandler ; DMA1 Channel 1 DCD DMA1_Channel2_IRQHandler ; DMA1 Channel 2 DCD DMA1_Channel3_IRQHandler ; DMA1 Channel 3 DCD DMA1_Channel4_IRQHandler ; DMA1 Channel 4 DCD DMA1_Channel5_IRQHandler ; DMA1 Channel 5 DCD DMA1_Channel6_IRQHandler ; DMA1 Channel 6 DCD 0 ; Reserved DCD ADC1_2_IRQHandler ; ADC1 and ADC2 DCD USB_HP_IRQHandler ; USB Device High Priority DCD USB_LP_IRQHandler ; USB Device Low Priority DCD FDCAN1_IT0_IRQHandler ; FDCAN1 interrupt line 0 DCD FDCAN1_IT1_IRQHandler ; FDCAN1 interrupt line 1 DCD EXTI9_5_IRQHandler ; External Line[9:5]s DCD TIM1_BRK_TIM15_IRQHandler ; TIM1 Break, Transition error, Index error and TIM15 DCD TIM1_UP_TIM16_IRQHandler ; TIM1 Update and TIM16 DCD TIM1_TRG_COM_TIM17_IRQHandler ; TIM1 Trigger, Commutation, Direction change, Index and TIM17 DCD TIM1_CC_IRQHandler ; TIM1 Capture Compare DCD TIM2_IRQHandler ; TIM2 DCD TIM3_IRQHandler ; TIM3 DCD TIM4_IRQHandler ; TIM4 DCD I2C1_EV_IRQHandler ; I2C1 Event DCD I2C1_ER_IRQHandler ; I2C1 Error DCD I2C2_EV_IRQHandler ; I2C2 Event DCD I2C2_ER_IRQHandler ; I2C2 Error DCD SPI1_IRQHandler ; SPI1 DCD SPI2_IRQHandler ; SPI2 DCD USART1_IRQHandler ; USART1 DCD USART2_IRQHandler ; USART2 DCD USART3_IRQHandler ; USART3 DCD EXTI15_10_IRQHandler ; External Line[15:10] DCD RTC_Alarm_IRQHandler ; RTC Alarm (A and B) through EXTI Line DCD USBWakeUp_IRQHandler ; USB Wakeup through EXTI line DCD TIM8_BRK_IRQHandler ; TIM8 Break, Transition error and Index error Interrupt DCD TIM8_UP_IRQHandler ; TIM8 Update Interrupt DCD TIM8_TRG_COM_IRQHandler ; TIM8 Trigger, Commutation, Direction change and Index Interrupt DCD TIM8_CC_IRQHandler ; TIM8 Capture Compare Interrupt DCD 0 ; Reserved DCD 0 ; Reserved DCD LPTIM1_IRQHandler ; LP TIM1 interrupt DCD 0 ; Reserved DCD SPI3_IRQHandler ; SPI3 DCD 0 ; Reserved DCD 0 ; Reserved DCD TIM6_DAC_IRQHandler ; TIM6 and DAC1&3 underrun errors DCD TIM7_IRQHandler ; TIM7 DCD DMA2_Channel1_IRQHandler ; DMA2 Channel 1 DCD DMA2_Channel2_IRQHandler ; DMA2 Channel 2 DCD DMA2_Channel3_IRQHandler ; DMA2 Channel 3 DCD DMA2_Channel4_IRQHandler ; DMA2 Channel 4 DCD DMA2_Channel5_IRQHandler ; DMA2 Channel 5 DCD 0 ; Reserved DCD 0 ; Reserved DCD UCPD1_IRQHandler ; UCPD1 DCD COMP1_2_3_IRQHandler ; COMP1, COMP2 and COMP3 DCD COMP4_IRQHandler ; COMP4 DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD CRS_IRQHandler ; CRS Interrupt DCD SAI1_IRQHandler ; Serial Audio Interface 1 global interrupt DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD FPU_IRQHandler ; FPU DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD RNG_IRQHandler ; RNG global interrupt DCD LPUART1_IRQHandler ; LP UART 1 interrupt DCD I2C3_EV_IRQHandler ; I2C3 Event DCD I2C3_ER_IRQHandler ; I2C3 Error DCD DMAMUX_OVR_IRQHandler ; DMAMUX overrun global interrupt DCD 0 ; Reserved DCD 0 ; Reserved DCD DMA2_Channel6_IRQHandler ; DMA2 Channel 6 DCD 0 ; Reserved DCD 0 ; Reserved DCD CORDIC_IRQHandler ; CORDIC DCD FMAC_IRQHandler ; FMAC __Vectors_End __Vectors_Size EQU __Vectors_End - __Vectors AREA |.text|, CODE, READONLY ; Reset handler Reset_Handler PROC EXPORT Reset_Handler [WEAK] IMPORT SystemInit IMPORT __main LDR R0, =SystemInit BLX R0 LDR R0, =__main BX R0 ENDP ; Dummy Exception Handlers (infinite loops which can be modified) NMI_Handler PROC EXPORT NMI_Handler [WEAK] B . ENDP HardFault_Handler\ PROC EXPORT HardFault_Handler [WEAK] B . ENDP MemManage_Handler\ PROC EXPORT MemManage_Handler [WEAK] B . ENDP BusFault_Handler\ PROC EXPORT BusFault_Handler [WEAK] B . ENDP UsageFault_Handler\ PROC EXPORT UsageFault_Handler [WEAK] B . ENDP SVC_Handler PROC EXPORT SVC_Handler [WEAK] B . ENDP DebugMon_Handler\ PROC EXPORT DebugMon_Handler [WEAK] B . ENDP PendSV_Handler PROC EXPORT PendSV_Handler [WEAK] B . ENDP SysTick_Handler PROC EXPORT SysTick_Handler [WEAK] B . ENDP Default_Handler PROC EXPORT WWDG_IRQHandler [WEAK] EXPORT PVD_PVM_IRQHandler [WEAK] EXPORT RTC_TAMP_LSECSS_IRQHandler [WEAK] EXPORT RTC_WKUP_IRQHandler [WEAK] EXPORT FLASH_IRQHandler [WEAK] EXPORT RCC_IRQHandler [WEAK] EXPORT EXTI0_IRQHandler [WEAK] EXPORT EXTI1_IRQHandler [WEAK] EXPORT EXTI2_IRQHandler [WEAK] EXPORT EXTI3_IRQHandler [WEAK] EXPORT EXTI4_IRQHandler [WEAK] EXPORT DMA1_Channel1_IRQHandler [WEAK] EXPORT DMA1_Channel2_IRQHandler [WEAK] EXPORT DMA1_Channel3_IRQHandler [WEAK] EXPORT DMA1_Channel4_IRQHandler [WEAK] EXPORT DMA1_Channel5_IRQHandler [WEAK] EXPORT DMA1_Channel6_IRQHandler [WEAK] EXPORT ADC1_2_IRQHandler [WEAK] EXPORT USB_HP_IRQHandler [WEAK] EXPORT USB_LP_IRQHandler [WEAK] EXPORT FDCAN1_IT0_IRQHandler [WEAK] EXPORT FDCAN1_IT1_IRQHandler [WEAK] EXPORT EXTI9_5_IRQHandler [WEAK] EXPORT TIM1_BRK_TIM15_IRQHandler [WEAK] EXPORT TIM1_UP_TIM16_IRQHandler [WEAK] EXPORT TIM1_TRG_COM_TIM17_IRQHandler [WEAK] EXPORT TIM1_CC_IRQHandler [WEAK] EXPORT TIM2_IRQHandler [WEAK] EXPORT TIM3_IRQHandler [WEAK] EXPORT TIM4_IRQHandler [WEAK] EXPORT I2C1_EV_IRQHandler [WEAK] EXPORT I2C1_ER_IRQHandler [WEAK] EXPORT I2C2_EV_IRQHandler [WEAK] EXPORT I2C2_ER_IRQHandler [WEAK] EXPORT SPI1_IRQHandler [WEAK] EXPORT SPI2_IRQHandler [WEAK] EXPORT USART1_IRQHandler [WEAK] EXPORT USART2_IRQHandler [WEAK] EXPORT USART3_IRQHandler [WEAK] EXPORT EXTI15_10_IRQHandler [WEAK] EXPORT RTC_Alarm_IRQHandler [WEAK] EXPORT USBWakeUp_IRQHandler [WEAK] EXPORT TIM8_BRK_IRQHandler [WEAK] EXPORT TIM8_UP_IRQHandler [WEAK] EXPORT TIM8_TRG_COM_IRQHandler [WEAK] EXPORT TIM8_CC_IRQHandler [WEAK] EXPORT LPTIM1_IRQHandler [WEAK] EXPORT SPI3_IRQHandler [WEAK] EXPORT TIM6_DAC_IRQHandler [WEAK] EXPORT TIM7_IRQHandler [WEAK] EXPORT DMA2_Channel1_IRQHandler [WEAK] EXPORT DMA2_Channel2_IRQHandler [WEAK] EXPORT DMA2_Channel3_IRQHandler [WEAK] EXPORT DMA2_Channel4_IRQHandler [WEAK] EXPORT DMA2_Channel5_IRQHandler [WEAK] EXPORT UCPD1_IRQHandler [WEAK] EXPORT COMP1_2_3_IRQHandler [WEAK] EXPORT COMP4_IRQHandler [WEAK] EXPORT CRS_IRQHandler [WEAK] EXPORT SAI1_IRQHandler [WEAK] EXPORT FPU_IRQHandler [WEAK] EXPORT RNG_IRQHandler [WEAK] EXPORT LPUART1_IRQHandler [WEAK] EXPORT I2C3_EV_IRQHandler [WEAK] EXPORT I2C3_ER_IRQHandler [WEAK] EXPORT DMAMUX_OVR_IRQHandler [WEAK] EXPORT DMA2_Channel6_IRQHandler [WEAK] EXPORT CORDIC_IRQHandler [WEAK] EXPORT FMAC_IRQHandler [WEAK] WWDG_IRQHandler PVD_PVM_IRQHandler RTC_TAMP_LSECSS_IRQHandler RTC_WKUP_IRQHandler FLASH_IRQHandler RCC_IRQHandler EXTI0_IRQHandler EXTI1_IRQHandler EXTI2_IRQHandler EXTI3_IRQHandler EXTI4_IRQHandler DMA1_Channel1_IRQHandler DMA1_Channel2_IRQHandler DMA1_Channel3_IRQHandler DMA1_Channel4_IRQHandler DMA1_Channel5_IRQHandler DMA1_Channel6_IRQHandler ADC1_2_IRQHandler USB_HP_IRQHandler USB_LP_IRQHandler FDCAN1_IT0_IRQHandler FDCAN1_IT1_IRQHandler EXTI9_5_IRQHandler TIM1_BRK_TIM15_IRQHandler TIM1_UP_TIM16_IRQHandler TIM1_TRG_COM_TIM17_IRQHandler TIM1_CC_IRQHandler TIM2_IRQHandler TIM3_IRQHandler TIM4_IRQHandler I2C1_EV_IRQHandler I2C1_ER_IRQHandler I2C2_EV_IRQHandler I2C2_ER_IRQHandler SPI1_IRQHandler SPI2_IRQHandler USART1_IRQHandler USART2_IRQHandler USART3_IRQHandler EXTI15_10_IRQHandler RTC_Alarm_IRQHandler USBWakeUp_IRQHandler TIM8_BRK_IRQHandler TIM8_UP_IRQHandler TIM8_TRG_COM_IRQHandler TIM8_CC_IRQHandler LPTIM1_IRQHandler SPI3_IRQHandler TIM6_DAC_IRQHandler TIM7_IRQHandler DMA2_Channel1_IRQHandler DMA2_Channel2_IRQHandler DMA2_Channel3_IRQHandler DMA2_Channel4_IRQHandler DMA2_Channel5_IRQHandler UCPD1_IRQHandler COMP1_2_3_IRQHandler COMP4_IRQHandler CRS_IRQHandler SAI1_IRQHandler FPU_IRQHandler RNG_IRQHandler LPUART1_IRQHandler I2C3_EV_IRQHandler I2C3_ER_IRQHandler DMAMUX_OVR_IRQHandler DMA2_Channel6_IRQHandler CORDIC_IRQHandler FMAC_IRQHandler B . ENDP ALIGN ;******************************************************************************* ; User Stack and Heap initialization ;******************************************************************************* IF :DEF:__MICROLIB EXPORT __initial_sp EXPORT __heap_base EXPORT __heap_limit ELSE IMPORT __use_two_region_memory EXPORT __user_initial_stackheap __user_initial_stackheap LDR R0, = Heap_Mem LDR R1, =(Stack_Mem + Stack_Size) LDR R2, = (Heap_Mem + Heap_Size) LDR R3, = Stack_Mem BX LR ALIGN ENDIF END
Northeastern-Electric-Racing/Iroh
19,269
Drivers/CMSIS/Device/ST/STM32G4xx/Source/Templates/arm/startup_stm32g431xx.s
;******************************************************************************* ;* @File Name : startup_stm32g431xx.s ;* @Author : MCD Application Team ;* @Brief : Vector table for MDK-ARM toolchain ;******************************************************************************* ;* Description : STM32G431xx Mainstream devices vector table for ;* MDK-ARM toolchain. ;* This module performs: ;* - Set the initial SP ;* - Set the initial PC == Reset_Handler ;* - Set the vector table entries with the exceptions ISR address ;* - Branches to __main in the C library (which eventually ;* calls main()). ;* After Reset the Cortex-M4 processor is in Thread mode, ;* priority is Privileged, and the Stack is set to Main. ;******************************************************************************** ;* @attention ;* ;* Copyright (c) 2019 STMicroelectronics. ;* All rights reserved. ;* ;* This software is licensed under terms that can be found in the LICENSE file ;* in the root directory of this software component. ;* If no LICENSE file comes with this software, it is provided AS-IS. ; ;******************************************************************************* ;* <<< Use Configuration Wizard in Context Menu >>> ; ; Amount of memory (in bytes) allocated for Stack ; Tailor this value to your application needs ; <h> Stack Configuration ; <o> Stack Size (in Bytes) <0x0-0xFFFFFFFF:8> ; </h> Stack_Size EQU 0x400; AREA STACK, NOINIT, READWRITE, ALIGN=3 Stack_Mem SPACE Stack_Size __initial_sp ; <h> Heap Configuration ; <o> Heap Size (in Bytes) <0x0-0xFFFFFFFF:8> ; </h> Heap_Size EQU 0x200; AREA HEAP, NOINIT, READWRITE, ALIGN=3 __heap_base Heap_Mem SPACE Heap_Size __heap_limit PRESERVE8 THUMB ; Vector Table Mapped to Address 0 at Reset AREA RESET, DATA, READONLY EXPORT __Vectors EXPORT __Vectors_End EXPORT __Vectors_Size __Vectors DCD __initial_sp ; Top of Stack DCD Reset_Handler ; Reset Handler DCD NMI_Handler ; NMI Handler DCD HardFault_Handler ; Hard Fault Handler DCD MemManage_Handler ; MPU Fault Handler DCD BusFault_Handler ; Bus Fault Handler DCD UsageFault_Handler ; Usage Fault Handler DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD SVC_Handler ; SVCall Handler DCD DebugMon_Handler ; Debug Monitor Handler DCD 0 ; Reserved DCD PendSV_Handler ; PendSV Handler DCD SysTick_Handler ; SysTick Handler ; External Interrupts DCD WWDG_IRQHandler ; Window WatchDog DCD PVD_PVM_IRQHandler ; PVD/PVM1/PVM2/PVM3/PVM4 through EXTI Line detection DCD RTC_TAMP_LSECSS_IRQHandler ; RTC, TAMP and RCC LSE_CSS through the EXTI line DCD RTC_WKUP_IRQHandler ; RTC Wakeup through the EXTI line DCD FLASH_IRQHandler ; FLASH DCD RCC_IRQHandler ; RCC DCD EXTI0_IRQHandler ; EXTI Line0 DCD EXTI1_IRQHandler ; EXTI Line1 DCD EXTI2_IRQHandler ; EXTI Line2 DCD EXTI3_IRQHandler ; EXTI Line3 DCD EXTI4_IRQHandler ; EXTI Line4 DCD DMA1_Channel1_IRQHandler ; DMA1 Channel 1 DCD DMA1_Channel2_IRQHandler ; DMA1 Channel 2 DCD DMA1_Channel3_IRQHandler ; DMA1 Channel 3 DCD DMA1_Channel4_IRQHandler ; DMA1 Channel 4 DCD DMA1_Channel5_IRQHandler ; DMA1 Channel 5 DCD DMA1_Channel6_IRQHandler ; DMA1 Channel 6 DCD 0 ; Reserved DCD ADC1_2_IRQHandler ; ADC1 and ADC2 DCD USB_HP_IRQHandler ; USB Device High Priority DCD USB_LP_IRQHandler ; USB Device Low Priority DCD FDCAN1_IT0_IRQHandler ; FDCAN1 interrupt line 0 DCD FDCAN1_IT1_IRQHandler ; FDCAN1 interrupt line 1 DCD EXTI9_5_IRQHandler ; External Line[9:5]s DCD TIM1_BRK_TIM15_IRQHandler ; TIM1 Break, Transition error, Index error and TIM15 DCD TIM1_UP_TIM16_IRQHandler ; TIM1 Update and TIM16 DCD TIM1_TRG_COM_TIM17_IRQHandler ; TIM1 Trigger, Commutation, Direction change, Index and TIM17 DCD TIM1_CC_IRQHandler ; TIM1 Capture Compare DCD TIM2_IRQHandler ; TIM2 DCD TIM3_IRQHandler ; TIM3 DCD TIM4_IRQHandler ; TIM4 DCD I2C1_EV_IRQHandler ; I2C1 Event DCD I2C1_ER_IRQHandler ; I2C1 Error DCD I2C2_EV_IRQHandler ; I2C2 Event DCD I2C2_ER_IRQHandler ; I2C2 Error DCD SPI1_IRQHandler ; SPI1 DCD SPI2_IRQHandler ; SPI2 DCD USART1_IRQHandler ; USART1 DCD USART2_IRQHandler ; USART2 DCD USART3_IRQHandler ; USART3 DCD EXTI15_10_IRQHandler ; External Line[15:10] DCD RTC_Alarm_IRQHandler ; RTC Alarm (A and B) through EXTI Line DCD USBWakeUp_IRQHandler ; USB Wakeup through EXTI line DCD TIM8_BRK_IRQHandler ; TIM8 Break, Transition error and Index error Interrupt DCD TIM8_UP_IRQHandler ; TIM8 Update Interrupt DCD TIM8_TRG_COM_IRQHandler ; TIM8 Trigger, Commutation, Direction change and Index Interrupt DCD TIM8_CC_IRQHandler ; TIM8 Capture Compare Interrupt DCD 0 ; Reserved DCD 0 ; Reserved DCD LPTIM1_IRQHandler ; LP TIM1 interrupt DCD 0 ; Reserved DCD SPI3_IRQHandler ; SPI3 DCD UART4_IRQHandler ; UART4 DCD 0 ; Reserved DCD TIM6_DAC_IRQHandler ; TIM6 and DAC1&3 underrun errors DCD TIM7_IRQHandler ; TIM7 DCD DMA2_Channel1_IRQHandler ; DMA2 Channel 1 DCD DMA2_Channel2_IRQHandler ; DMA2 Channel 2 DCD DMA2_Channel3_IRQHandler ; DMA2 Channel 3 DCD DMA2_Channel4_IRQHandler ; DMA2 Channel 4 DCD DMA2_Channel5_IRQHandler ; DMA2 Channel 5 DCD 0 ; Reserved DCD 0 ; Reserved DCD UCPD1_IRQHandler ; UCPD1 DCD COMP1_2_3_IRQHandler ; COMP1, COMP2 and COMP3 DCD COMP4_IRQHandler ; COMP4 DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD CRS_IRQHandler ; CRS Interrupt DCD SAI1_IRQHandler ; Serial Audio Interface 1 global interrupt DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD FPU_IRQHandler ; FPU DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD RNG_IRQHandler ; RNG global interrupt DCD LPUART1_IRQHandler ; LP UART 1 interrupt DCD I2C3_EV_IRQHandler ; I2C3 Event DCD I2C3_ER_IRQHandler ; I2C3 Error DCD DMAMUX_OVR_IRQHandler ; DMAMUX overrun global interrupt DCD 0 ; Reserved DCD 0 ; Reserved DCD DMA2_Channel6_IRQHandler ; DMA2 Channel 6 DCD 0 ; Reserved DCD 0 ; Reserved DCD CORDIC_IRQHandler ; CORDIC DCD FMAC_IRQHandler ; FMAC __Vectors_End __Vectors_Size EQU __Vectors_End - __Vectors AREA |.text|, CODE, READONLY ; Reset handler Reset_Handler PROC EXPORT Reset_Handler [WEAK] IMPORT SystemInit IMPORT __main LDR R0, =SystemInit BLX R0 LDR R0, =__main BX R0 ENDP ; Dummy Exception Handlers (infinite loops which can be modified) NMI_Handler PROC EXPORT NMI_Handler [WEAK] B . ENDP HardFault_Handler\ PROC EXPORT HardFault_Handler [WEAK] B . ENDP MemManage_Handler\ PROC EXPORT MemManage_Handler [WEAK] B . ENDP BusFault_Handler\ PROC EXPORT BusFault_Handler [WEAK] B . ENDP UsageFault_Handler\ PROC EXPORT UsageFault_Handler [WEAK] B . ENDP SVC_Handler PROC EXPORT SVC_Handler [WEAK] B . ENDP DebugMon_Handler\ PROC EXPORT DebugMon_Handler [WEAK] B . ENDP PendSV_Handler PROC EXPORT PendSV_Handler [WEAK] B . ENDP SysTick_Handler PROC EXPORT SysTick_Handler [WEAK] B . ENDP Default_Handler PROC EXPORT WWDG_IRQHandler [WEAK] EXPORT PVD_PVM_IRQHandler [WEAK] EXPORT RTC_TAMP_LSECSS_IRQHandler [WEAK] EXPORT RTC_WKUP_IRQHandler [WEAK] EXPORT FLASH_IRQHandler [WEAK] EXPORT RCC_IRQHandler [WEAK] EXPORT EXTI0_IRQHandler [WEAK] EXPORT EXTI1_IRQHandler [WEAK] EXPORT EXTI2_IRQHandler [WEAK] EXPORT EXTI3_IRQHandler [WEAK] EXPORT EXTI4_IRQHandler [WEAK] EXPORT DMA1_Channel1_IRQHandler [WEAK] EXPORT DMA1_Channel2_IRQHandler [WEAK] EXPORT DMA1_Channel3_IRQHandler [WEAK] EXPORT DMA1_Channel4_IRQHandler [WEAK] EXPORT DMA1_Channel5_IRQHandler [WEAK] EXPORT DMA1_Channel6_IRQHandler [WEAK] EXPORT ADC1_2_IRQHandler [WEAK] EXPORT USB_HP_IRQHandler [WEAK] EXPORT USB_LP_IRQHandler [WEAK] EXPORT FDCAN1_IT0_IRQHandler [WEAK] EXPORT FDCAN1_IT1_IRQHandler [WEAK] EXPORT EXTI9_5_IRQHandler [WEAK] EXPORT TIM1_BRK_TIM15_IRQHandler [WEAK] EXPORT TIM1_UP_TIM16_IRQHandler [WEAK] EXPORT TIM1_TRG_COM_TIM17_IRQHandler [WEAK] EXPORT TIM1_CC_IRQHandler [WEAK] EXPORT TIM2_IRQHandler [WEAK] EXPORT TIM3_IRQHandler [WEAK] EXPORT TIM4_IRQHandler [WEAK] EXPORT I2C1_EV_IRQHandler [WEAK] EXPORT I2C1_ER_IRQHandler [WEAK] EXPORT I2C2_EV_IRQHandler [WEAK] EXPORT I2C2_ER_IRQHandler [WEAK] EXPORT SPI1_IRQHandler [WEAK] EXPORT SPI2_IRQHandler [WEAK] EXPORT USART1_IRQHandler [WEAK] EXPORT USART2_IRQHandler [WEAK] EXPORT USART3_IRQHandler [WEAK] EXPORT EXTI15_10_IRQHandler [WEAK] EXPORT RTC_Alarm_IRQHandler [WEAK] EXPORT USBWakeUp_IRQHandler [WEAK] EXPORT TIM8_BRK_IRQHandler [WEAK] EXPORT TIM8_UP_IRQHandler [WEAK] EXPORT TIM8_TRG_COM_IRQHandler [WEAK] EXPORT TIM8_CC_IRQHandler [WEAK] EXPORT LPTIM1_IRQHandler [WEAK] EXPORT SPI3_IRQHandler [WEAK] EXPORT UART4_IRQHandler [WEAK] EXPORT TIM6_DAC_IRQHandler [WEAK] EXPORT TIM7_IRQHandler [WEAK] EXPORT DMA2_Channel1_IRQHandler [WEAK] EXPORT DMA2_Channel2_IRQHandler [WEAK] EXPORT DMA2_Channel3_IRQHandler [WEAK] EXPORT DMA2_Channel4_IRQHandler [WEAK] EXPORT DMA2_Channel5_IRQHandler [WEAK] EXPORT UCPD1_IRQHandler [WEAK] EXPORT COMP1_2_3_IRQHandler [WEAK] EXPORT COMP4_IRQHandler [WEAK] EXPORT CRS_IRQHandler [WEAK] EXPORT SAI1_IRQHandler [WEAK] EXPORT FPU_IRQHandler [WEAK] EXPORT RNG_IRQHandler [WEAK] EXPORT LPUART1_IRQHandler [WEAK] EXPORT I2C3_EV_IRQHandler [WEAK] EXPORT I2C3_ER_IRQHandler [WEAK] EXPORT DMAMUX_OVR_IRQHandler [WEAK] EXPORT DMA2_Channel6_IRQHandler [WEAK] EXPORT CORDIC_IRQHandler [WEAK] EXPORT FMAC_IRQHandler [WEAK] WWDG_IRQHandler PVD_PVM_IRQHandler RTC_TAMP_LSECSS_IRQHandler RTC_WKUP_IRQHandler FLASH_IRQHandler RCC_IRQHandler EXTI0_IRQHandler EXTI1_IRQHandler EXTI2_IRQHandler EXTI3_IRQHandler EXTI4_IRQHandler DMA1_Channel1_IRQHandler DMA1_Channel2_IRQHandler DMA1_Channel3_IRQHandler DMA1_Channel4_IRQHandler DMA1_Channel5_IRQHandler DMA1_Channel6_IRQHandler ADC1_2_IRQHandler USB_HP_IRQHandler USB_LP_IRQHandler FDCAN1_IT0_IRQHandler FDCAN1_IT1_IRQHandler EXTI9_5_IRQHandler TIM1_BRK_TIM15_IRQHandler TIM1_UP_TIM16_IRQHandler TIM1_TRG_COM_TIM17_IRQHandler TIM1_CC_IRQHandler TIM2_IRQHandler TIM3_IRQHandler TIM4_IRQHandler I2C1_EV_IRQHandler I2C1_ER_IRQHandler I2C2_EV_IRQHandler I2C2_ER_IRQHandler SPI1_IRQHandler SPI2_IRQHandler USART1_IRQHandler USART2_IRQHandler USART3_IRQHandler EXTI15_10_IRQHandler RTC_Alarm_IRQHandler USBWakeUp_IRQHandler TIM8_BRK_IRQHandler TIM8_UP_IRQHandler TIM8_TRG_COM_IRQHandler TIM8_CC_IRQHandler LPTIM1_IRQHandler SPI3_IRQHandler UART4_IRQHandler TIM6_DAC_IRQHandler TIM7_IRQHandler DMA2_Channel1_IRQHandler DMA2_Channel2_IRQHandler DMA2_Channel3_IRQHandler DMA2_Channel4_IRQHandler DMA2_Channel5_IRQHandler UCPD1_IRQHandler COMP1_2_3_IRQHandler COMP4_IRQHandler CRS_IRQHandler SAI1_IRQHandler FPU_IRQHandler RNG_IRQHandler LPUART1_IRQHandler I2C3_EV_IRQHandler I2C3_ER_IRQHandler DMAMUX_OVR_IRQHandler DMA2_Channel6_IRQHandler CORDIC_IRQHandler FMAC_IRQHandler B . ENDP ALIGN ;******************************************************************************* ; User Stack and Heap initialization ;******************************************************************************* IF :DEF:__MICROLIB EXPORT __initial_sp EXPORT __heap_base EXPORT __heap_limit ELSE IMPORT __use_two_region_memory EXPORT __user_initial_stackheap __user_initial_stackheap LDR R0, = Heap_Mem LDR R1, =(Stack_Mem + Stack_Size) LDR R2, = (Heap_Mem + Heap_Size) LDR R3, = Stack_Mem BX LR ALIGN ENDIF END
Northeastern-Electric-Racing/Iroh
20,558
Drivers/CMSIS/Device/ST/STM32G4xx/Source/Templates/arm/startup_stm32g4a1xx.s
;******************************************************************************* ;* @File Name : startup_stm32g4a1xx.s ;* @Author : MCD Application Team ;* @Brief : Vector table for MDK-ARM toolchain ;******************************************************************************* ;* Description : STM32G4A1xx Mainstream devices vector table for ;* MDK-ARM toolchain. ;* This module performs: ;* - Set the initial SP ;* - Set the initial PC == Reset_Handler ;* - Set the vector table entries with the exceptions ISR address ;* - Branches to __main in the C library (which eventually ;* calls main()). ;* After Reset the Cortex-M4 processor is in Thread mode, ;* priority is Privileged, and the Stack is set to Main. ;******************************************************************************** ;* @attention ;* ;* Copyright (c) 2019 STMicroelectronics. ;* All rights reserved. ;* ;* This software is licensed under terms that can be found in the LICENSE file ;* in the root directory of this software component. ;* If no LICENSE file comes with this software, it is provided AS-IS. ; ;******************************************************************************* ;* <<< Use Configuration Wizard in Context Menu >>> ; ; Amount of memory (in bytes) allocated for Stack ; Tailor this value to your application needs ; <h> Stack Configuration ; <o> Stack Size (in Bytes) <0x0-0xFFFFFFFF:8> ; </h> Stack_Size EQU 0x400; AREA STACK, NOINIT, READWRITE, ALIGN=3 Stack_Mem SPACE Stack_Size __initial_sp ; <h> Heap Configuration ; <o> Heap Size (in Bytes) <0x0-0xFFFFFFFF:8> ; </h> Heap_Size EQU 0x200; AREA HEAP, NOINIT, READWRITE, ALIGN=3 __heap_base Heap_Mem SPACE Heap_Size __heap_limit PRESERVE8 THUMB ; Vector Table Mapped to Address 0 at Reset AREA RESET, DATA, READONLY EXPORT __Vectors EXPORT __Vectors_End EXPORT __Vectors_Size __Vectors DCD __initial_sp ; Top of Stack DCD Reset_Handler ; Reset Handler DCD NMI_Handler ; NMI Handler DCD HardFault_Handler ; Hard Fault Handler DCD MemManage_Handler ; MPU Fault Handler DCD BusFault_Handler ; Bus Fault Handler DCD UsageFault_Handler ; Usage Fault Handler DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD SVC_Handler ; SVCall Handler DCD DebugMon_Handler ; Debug Monitor Handler DCD 0 ; Reserved DCD PendSV_Handler ; PendSV Handler DCD SysTick_Handler ; SysTick Handler ; External Interrupts DCD WWDG_IRQHandler ; Window WatchDog DCD PVD_PVM_IRQHandler ; PVD/PVM1/PVM2/PVM3/PVM4 through EXTI Line detection DCD RTC_TAMP_LSECSS_IRQHandler ; RTC, TAMP and RCC LSE_CSS through the EXTI line DCD RTC_WKUP_IRQHandler ; RTC Wakeup through the EXTI line DCD FLASH_IRQHandler ; FLASH DCD RCC_IRQHandler ; RCC DCD EXTI0_IRQHandler ; EXTI Line0 DCD EXTI1_IRQHandler ; EXTI Line1 DCD EXTI2_IRQHandler ; EXTI Line2 DCD EXTI3_IRQHandler ; EXTI Line3 DCD EXTI4_IRQHandler ; EXTI Line4 DCD DMA1_Channel1_IRQHandler ; DMA1 Channel 1 DCD DMA1_Channel2_IRQHandler ; DMA1 Channel 2 DCD DMA1_Channel3_IRQHandler ; DMA1 Channel 3 DCD DMA1_Channel4_IRQHandler ; DMA1 Channel 4 DCD DMA1_Channel5_IRQHandler ; DMA1 Channel 5 DCD DMA1_Channel6_IRQHandler ; DMA1 Channel 6 DCD DMA1_Channel7_IRQHandler ; DMA1 Channel 7 DCD ADC1_2_IRQHandler ; ADC1 and ADC2 DCD USB_HP_IRQHandler ; USB Device High Priority DCD USB_LP_IRQHandler ; USB Device Low Priority DCD FDCAN1_IT0_IRQHandler ; FDCAN1 interrupt line 0 DCD FDCAN1_IT1_IRQHandler ; FDCAN1 interrupt line 1 DCD EXTI9_5_IRQHandler ; External Line[9:5]s DCD TIM1_BRK_TIM15_IRQHandler ; TIM1 Break, Transition error, Index error and TIM15 DCD TIM1_UP_TIM16_IRQHandler ; TIM1 Update and TIM16 DCD TIM1_TRG_COM_TIM17_IRQHandler ; TIM1 Trigger, Commutation, Direction change, Index and TIM17 DCD TIM1_CC_IRQHandler ; TIM1 Capture Compare DCD TIM2_IRQHandler ; TIM2 DCD TIM3_IRQHandler ; TIM3 DCD TIM4_IRQHandler ; TIM4 DCD I2C1_EV_IRQHandler ; I2C1 Event DCD I2C1_ER_IRQHandler ; I2C1 Error DCD I2C2_EV_IRQHandler ; I2C2 Event DCD I2C2_ER_IRQHandler ; I2C2 Error DCD SPI1_IRQHandler ; SPI1 DCD SPI2_IRQHandler ; SPI2 DCD USART1_IRQHandler ; USART1 DCD USART2_IRQHandler ; USART2 DCD USART3_IRQHandler ; USART3 DCD EXTI15_10_IRQHandler ; External Line[15:10] DCD RTC_Alarm_IRQHandler ; RTC Alarm (A and B) through EXTI Line DCD USBWakeUp_IRQHandler ; USB Wakeup through EXTI line DCD TIM8_BRK_IRQHandler ; TIM8 Break, Transition error and Index error Interrupt DCD TIM8_UP_IRQHandler ; TIM8 Update Interrupt DCD TIM8_TRG_COM_IRQHandler ; TIM8 Trigger, Commutation, Direction change and Index Interrupt DCD TIM8_CC_IRQHandler ; TIM8 Capture Compare Interrupt DCD ADC3_IRQHandler ; ADC3 DCD 0 ; Reserved DCD LPTIM1_IRQHandler ; LP TIM1 interrupt DCD 0 ; Reserved DCD SPI3_IRQHandler ; SPI3 DCD UART4_IRQHandler ; UART4 DCD UART5_IRQHandler ; UART5 DCD TIM6_DAC_IRQHandler ; TIM6 and DAC1&3 underrun errors DCD TIM7_IRQHandler ; TIM7 DCD DMA2_Channel1_IRQHandler ; DMA2 Channel 1 DCD DMA2_Channel2_IRQHandler ; DMA2 Channel 2 DCD DMA2_Channel3_IRQHandler ; DMA2 Channel 3 DCD DMA2_Channel4_IRQHandler ; DMA2 Channel 4 DCD DMA2_Channel5_IRQHandler ; DMA2 Channel 5 DCD 0 ; Reserved DCD 0 ; Reserved DCD UCPD1_IRQHandler ; UCPD1 DCD COMP1_2_3_IRQHandler ; COMP1, COMP2 and COMP3 DCD COMP4_IRQHandler ; COMP4 DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD CRS_IRQHandler ; CRS Interrupt DCD SAI1_IRQHandler ; Serial Audio Interface 1 global interrupt DCD TIM20_BRK_IRQHandler ; TIM20 Break, Transition error and Index error DCD TIM20_UP_IRQHandler ; TIM20 Update DCD TIM20_TRG_COM_IRQHandler ; TIM20 Trigger, Commutation, Direction change and Index DCD TIM20_CC_IRQHandler ; TIM20 Capture Compare DCD FPU_IRQHandler ; FPU DCD AES_IRQn ; AES global interrupt DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD FDCAN2_IT0_IRQHandler ; FDCAN2 interrupt line 0 DCD FDCAN2_IT1_IRQHandler ; FDCAN2 interrupt line 1 DCD 0 ; Reserved DCD 0 ; Reserved DCD RNG_IRQHandler ; RNG global interrupt DCD LPUART1_IRQHandler ; LP UART 1 interrupt DCD I2C3_EV_IRQHandler ; I2C3 Event DCD I2C3_ER_IRQHandler ; I2C3 Error DCD DMAMUX_OVR_IRQHandler ; DMAMUX overrun global interrupt DCD QUADSPI_IRQHandler ; QUADSPI DCD DMA1_Channel8_IRQHandler ; DMA1 Channel 8 DCD DMA2_Channel6_IRQHandler ; DMA2 Channel 6 DCD DMA2_Channel7_IRQHandler ; DMA2 Channel 7 DCD DMA2_Channel8_IRQHandler ; DMA2 Channel 8 DCD CORDIC_IRQHandler ; CORDIC DCD FMAC_IRQHandler ; FMAC __Vectors_End __Vectors_Size EQU __Vectors_End - __Vectors AREA |.text|, CODE, READONLY ; Reset handler Reset_Handler PROC EXPORT Reset_Handler [WEAK] IMPORT SystemInit IMPORT __main LDR R0, =SystemInit BLX R0 LDR R0, =__main BX R0 ENDP ; Dummy Exception Handlers (infinite loops which can be modified) NMI_Handler PROC EXPORT NMI_Handler [WEAK] B . ENDP HardFault_Handler\ PROC EXPORT HardFault_Handler [WEAK] B . ENDP MemManage_Handler\ PROC EXPORT MemManage_Handler [WEAK] B . ENDP BusFault_Handler\ PROC EXPORT BusFault_Handler [WEAK] B . ENDP UsageFault_Handler\ PROC EXPORT UsageFault_Handler [WEAK] B . ENDP SVC_Handler PROC EXPORT SVC_Handler [WEAK] B . ENDP DebugMon_Handler\ PROC EXPORT DebugMon_Handler [WEAK] B . ENDP PendSV_Handler PROC EXPORT PendSV_Handler [WEAK] B . ENDP SysTick_Handler PROC EXPORT SysTick_Handler [WEAK] B . ENDP Default_Handler PROC EXPORT WWDG_IRQHandler [WEAK] EXPORT PVD_PVM_IRQHandler [WEAK] EXPORT RTC_TAMP_LSECSS_IRQHandler [WEAK] EXPORT RTC_WKUP_IRQHandler [WEAK] EXPORT FLASH_IRQHandler [WEAK] EXPORT RCC_IRQHandler [WEAK] EXPORT EXTI0_IRQHandler [WEAK] EXPORT EXTI1_IRQHandler [WEAK] EXPORT EXTI2_IRQHandler [WEAK] EXPORT EXTI3_IRQHandler [WEAK] EXPORT EXTI4_IRQHandler [WEAK] EXPORT DMA1_Channel1_IRQHandler [WEAK] EXPORT DMA1_Channel2_IRQHandler [WEAK] EXPORT DMA1_Channel3_IRQHandler [WEAK] EXPORT DMA1_Channel4_IRQHandler [WEAK] EXPORT DMA1_Channel5_IRQHandler [WEAK] EXPORT DMA1_Channel6_IRQHandler [WEAK] EXPORT DMA1_Channel7_IRQHandler [WEAK] EXPORT ADC1_2_IRQHandler [WEAK] EXPORT USB_HP_IRQHandler [WEAK] EXPORT USB_LP_IRQHandler [WEAK] EXPORT FDCAN1_IT0_IRQHandler [WEAK] EXPORT FDCAN1_IT1_IRQHandler [WEAK] EXPORT EXTI9_5_IRQHandler [WEAK] EXPORT TIM1_BRK_TIM15_IRQHandler [WEAK] EXPORT TIM1_UP_TIM16_IRQHandler [WEAK] EXPORT TIM1_TRG_COM_TIM17_IRQHandler [WEAK] EXPORT TIM1_CC_IRQHandler [WEAK] EXPORT TIM2_IRQHandler [WEAK] EXPORT TIM3_IRQHandler [WEAK] EXPORT TIM4_IRQHandler [WEAK] EXPORT I2C1_EV_IRQHandler [WEAK] EXPORT I2C1_ER_IRQHandler [WEAK] EXPORT I2C2_EV_IRQHandler [WEAK] EXPORT I2C2_ER_IRQHandler [WEAK] EXPORT SPI1_IRQHandler [WEAK] EXPORT SPI2_IRQHandler [WEAK] EXPORT USART1_IRQHandler [WEAK] EXPORT USART2_IRQHandler [WEAK] EXPORT USART3_IRQHandler [WEAK] EXPORT EXTI15_10_IRQHandler [WEAK] EXPORT RTC_Alarm_IRQHandler [WEAK] EXPORT USBWakeUp_IRQHandler [WEAK] EXPORT TIM8_BRK_IRQHandler [WEAK] EXPORT TIM8_UP_IRQHandler [WEAK] EXPORT TIM8_TRG_COM_IRQHandler [WEAK] EXPORT TIM8_CC_IRQHandler [WEAK] EXPORT ADC3_IRQHandler [WEAK] EXPORT LPTIM1_IRQHandler [WEAK] EXPORT SPI3_IRQHandler [WEAK] EXPORT UART4_IRQHandler [WEAK] EXPORT UART5_IRQHandler [WEAK] EXPORT TIM6_DAC_IRQHandler [WEAK] EXPORT TIM7_IRQHandler [WEAK] EXPORT DMA2_Channel1_IRQHandler [WEAK] EXPORT DMA2_Channel2_IRQHandler [WEAK] EXPORT DMA2_Channel3_IRQHandler [WEAK] EXPORT DMA2_Channel4_IRQHandler [WEAK] EXPORT DMA2_Channel5_IRQHandler [WEAK] EXPORT UCPD1_IRQHandler [WEAK] EXPORT COMP1_2_3_IRQHandler [WEAK] EXPORT COMP4_IRQHandler [WEAK] EXPORT CRS_IRQHandler [WEAK] EXPORT SAI1_IRQHandler [WEAK] EXPORT TIM20_BRK_IRQHandler [WEAK] EXPORT TIM20_UP_IRQHandler [WEAK] EXPORT TIM20_TRG_COM_IRQHandler [WEAK] EXPORT TIM20_CC_IRQHandler [WEAK] EXPORT FPU_IRQHandler [WEAK] EXPORT AES_IRQn [WEAK] EXPORT FDCAN2_IT0_IRQHandler [WEAK] EXPORT FDCAN2_IT1_IRQHandler [WEAK] EXPORT RNG_IRQHandler [WEAK] EXPORT LPUART1_IRQHandler [WEAK] EXPORT I2C3_EV_IRQHandler [WEAK] EXPORT I2C3_ER_IRQHandler [WEAK] EXPORT DMAMUX_OVR_IRQHandler [WEAK] EXPORT QUADSPI_IRQHandler [WEAK] EXPORT DMA1_Channel8_IRQHandler [WEAK] EXPORT DMA2_Channel6_IRQHandler [WEAK] EXPORT DMA2_Channel7_IRQHandler [WEAK] EXPORT DMA2_Channel8_IRQHandler [WEAK] EXPORT CORDIC_IRQHandler [WEAK] EXPORT FMAC_IRQHandler [WEAK] WWDG_IRQHandler PVD_PVM_IRQHandler RTC_TAMP_LSECSS_IRQHandler RTC_WKUP_IRQHandler FLASH_IRQHandler RCC_IRQHandler EXTI0_IRQHandler EXTI1_IRQHandler EXTI2_IRQHandler EXTI3_IRQHandler EXTI4_IRQHandler DMA1_Channel1_IRQHandler DMA1_Channel2_IRQHandler DMA1_Channel3_IRQHandler DMA1_Channel4_IRQHandler DMA1_Channel5_IRQHandler DMA1_Channel6_IRQHandler DMA1_Channel7_IRQHandler ADC1_2_IRQHandler USB_HP_IRQHandler USB_LP_IRQHandler FDCAN1_IT0_IRQHandler FDCAN1_IT1_IRQHandler EXTI9_5_IRQHandler TIM1_BRK_TIM15_IRQHandler TIM1_UP_TIM16_IRQHandler TIM1_TRG_COM_TIM17_IRQHandler TIM1_CC_IRQHandler TIM2_IRQHandler TIM3_IRQHandler TIM4_IRQHandler I2C1_EV_IRQHandler I2C1_ER_IRQHandler I2C2_EV_IRQHandler I2C2_ER_IRQHandler SPI1_IRQHandler SPI2_IRQHandler USART1_IRQHandler USART2_IRQHandler USART3_IRQHandler EXTI15_10_IRQHandler RTC_Alarm_IRQHandler USBWakeUp_IRQHandler TIM8_BRK_IRQHandler TIM8_UP_IRQHandler TIM8_TRG_COM_IRQHandler TIM8_CC_IRQHandler ADC3_IRQHandler LPTIM1_IRQHandler SPI3_IRQHandler UART4_IRQHandler UART5_IRQHandler TIM6_DAC_IRQHandler TIM7_IRQHandler DMA2_Channel1_IRQHandler DMA2_Channel2_IRQHandler DMA2_Channel3_IRQHandler DMA2_Channel4_IRQHandler DMA2_Channel5_IRQHandler UCPD1_IRQHandler COMP1_2_3_IRQHandler COMP4_IRQHandler CRS_IRQHandler SAI1_IRQHandler TIM20_BRK_IRQHandler TIM20_UP_IRQHandler TIM20_TRG_COM_IRQHandler TIM20_CC_IRQHandler FPU_IRQHandler AES_IRQn FDCAN2_IT0_IRQHandler FDCAN2_IT1_IRQHandler RNG_IRQHandler LPUART1_IRQHandler I2C3_EV_IRQHandler I2C3_ER_IRQHandler DMAMUX_OVR_IRQHandler QUADSPI_IRQHandler DMA1_Channel8_IRQHandler DMA2_Channel6_IRQHandler DMA2_Channel7_IRQHandler DMA2_Channel8_IRQHandler CORDIC_IRQHandler FMAC_IRQHandler B . ENDP ALIGN ;******************************************************************************* ; User Stack and Heap initialization ;******************************************************************************* IF :DEF:__MICROLIB EXPORT __initial_sp EXPORT __heap_base EXPORT __heap_limit ELSE IMPORT __use_two_region_memory EXPORT __user_initial_stackheap __user_initial_stackheap LDR R0, = Heap_Mem LDR R1, =(Stack_Mem + Stack_Size) LDR R2, = (Heap_Mem + Heap_Size) LDR R3, = Stack_Mem BX LR ALIGN ENDIF END
Northeastern-Electric-Racing/Iroh
19,356
Drivers/CMSIS/Device/ST/STM32G4xx/Source/Templates/arm/startup_stm32g441xx.s
;******************************************************************************* ;* @File Name : startup_stm32g441xx.s ;* @Author : MCD Application Team ;* @Brief : Vector table for MDK-ARM toolchain ;******************************************************************************* ;* Description : STM32G441xx Mainstream devices vector table for ;* MDK-ARM toolchain. ;* This module performs: ;* - Set the initial SP ;* - Set the initial PC == Reset_Handler ;* - Set the vector table entries with the exceptions ISR address ;* - Branches to __main in the C library (which eventually ;* calls main()). ;* After Reset the Cortex-M4 processor is in Thread mode, ;* priority is Privileged, and the Stack is set to Main. ;******************************************************************************** ;* @attention ;* ;* Copyright (c) 2019 STMicroelectronics. ;* All rights reserved. ;* ;* This software is licensed under terms that can be found in the LICENSE file ;* in the root directory of this software component. ;* If no LICENSE file comes with this software, it is provided AS-IS. ; ;******************************************************************************* ;* <<< Use Configuration Wizard in Context Menu >>> ; ; Amount of memory (in bytes) allocated for Stack ; Tailor this value to your application needs ; <h> Stack Configuration ; <o> Stack Size (in Bytes) <0x0-0xFFFFFFFF:8> ; </h> Stack_Size EQU 0x400; AREA STACK, NOINIT, READWRITE, ALIGN=3 Stack_Mem SPACE Stack_Size __initial_sp ; <h> Heap Configuration ; <o> Heap Size (in Bytes) <0x0-0xFFFFFFFF:8> ; </h> Heap_Size EQU 0x200; AREA HEAP, NOINIT, READWRITE, ALIGN=3 __heap_base Heap_Mem SPACE Heap_Size __heap_limit PRESERVE8 THUMB ; Vector Table Mapped to Address 0 at Reset AREA RESET, DATA, READONLY EXPORT __Vectors EXPORT __Vectors_End EXPORT __Vectors_Size __Vectors DCD __initial_sp ; Top of Stack DCD Reset_Handler ; Reset Handler DCD NMI_Handler ; NMI Handler DCD HardFault_Handler ; Hard Fault Handler DCD MemManage_Handler ; MPU Fault Handler DCD BusFault_Handler ; Bus Fault Handler DCD UsageFault_Handler ; Usage Fault Handler DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD SVC_Handler ; SVCall Handler DCD DebugMon_Handler ; Debug Monitor Handler DCD 0 ; Reserved DCD PendSV_Handler ; PendSV Handler DCD SysTick_Handler ; SysTick Handler ; External Interrupts DCD WWDG_IRQHandler ; Window WatchDog DCD PVD_PVM_IRQHandler ; PVD/PVM1/PVM2/PVM3/PVM4 through EXTI Line detection DCD RTC_TAMP_LSECSS_IRQHandler ; RTC, TAMP and RCC LSE_CSS through the EXTI line DCD RTC_WKUP_IRQHandler ; RTC Wakeup through the EXTI line DCD FLASH_IRQHandler ; FLASH DCD RCC_IRQHandler ; RCC DCD EXTI0_IRQHandler ; EXTI Line0 DCD EXTI1_IRQHandler ; EXTI Line1 DCD EXTI2_IRQHandler ; EXTI Line2 DCD EXTI3_IRQHandler ; EXTI Line3 DCD EXTI4_IRQHandler ; EXTI Line4 DCD DMA1_Channel1_IRQHandler ; DMA1 Channel 1 DCD DMA1_Channel2_IRQHandler ; DMA1 Channel 2 DCD DMA1_Channel3_IRQHandler ; DMA1 Channel 3 DCD DMA1_Channel4_IRQHandler ; DMA1 Channel 4 DCD DMA1_Channel5_IRQHandler ; DMA1 Channel 5 DCD DMA1_Channel6_IRQHandler ; DMA1 Channel 6 DCD 0 ; Reserved DCD ADC1_2_IRQHandler ; ADC1 and ADC2 DCD USB_HP_IRQHandler ; USB Device High Priority DCD USB_LP_IRQHandler ; USB Device Low Priority DCD FDCAN1_IT0_IRQHandler ; FDCAN1 interrupt line 0 DCD FDCAN1_IT1_IRQHandler ; FDCAN1 interrupt line 1 DCD EXTI9_5_IRQHandler ; External Line[9:5]s DCD TIM1_BRK_TIM15_IRQHandler ; TIM1 Break, Transition error, Index error and TIM15 DCD TIM1_UP_TIM16_IRQHandler ; TIM1 Update and TIM16 DCD TIM1_TRG_COM_TIM17_IRQHandler ; TIM1 Trigger, Commutation, Direction change, Index and TIM17 DCD TIM1_CC_IRQHandler ; TIM1 Capture Compare DCD TIM2_IRQHandler ; TIM2 DCD TIM3_IRQHandler ; TIM3 DCD TIM4_IRQHandler ; TIM4 DCD I2C1_EV_IRQHandler ; I2C1 Event DCD I2C1_ER_IRQHandler ; I2C1 Error DCD I2C2_EV_IRQHandler ; I2C2 Event DCD I2C2_ER_IRQHandler ; I2C2 Error DCD SPI1_IRQHandler ; SPI1 DCD SPI2_IRQHandler ; SPI2 DCD USART1_IRQHandler ; USART1 DCD USART2_IRQHandler ; USART2 DCD USART3_IRQHandler ; USART3 DCD EXTI15_10_IRQHandler ; External Line[15:10] DCD RTC_Alarm_IRQHandler ; RTC Alarm (A and B) through EXTI Line DCD USBWakeUp_IRQHandler ; USB Wakeup through EXTI line DCD TIM8_BRK_IRQHandler ; TIM8 Break, Transition error and Index error Interrupt DCD TIM8_UP_IRQHandler ; TIM8 Update Interrupt DCD TIM8_TRG_COM_IRQHandler ; TIM8 Trigger, Commutation, Direction change and Index Interrupt DCD TIM8_CC_IRQHandler ; TIM8 Capture Compare Interrupt DCD 0 ; Reserved DCD 0 ; Reserved DCD LPTIM1_IRQHandler ; LP TIM1 interrupt DCD 0 ; Reserved DCD SPI3_IRQHandler ; SPI3 DCD UART4_IRQHandler ; UART4 DCD 0 ; Reserved DCD TIM6_DAC_IRQHandler ; TIM6 and DAC1&3 underrun errors DCD TIM7_IRQHandler ; TIM7 DCD DMA2_Channel1_IRQHandler ; DMA2 Channel 1 DCD DMA2_Channel2_IRQHandler ; DMA2 Channel 2 DCD DMA2_Channel3_IRQHandler ; DMA2 Channel 3 DCD DMA2_Channel4_IRQHandler ; DMA2 Channel 4 DCD DMA2_Channel5_IRQHandler ; DMA2 Channel 5 DCD 0 ; Reserved DCD 0 ; Reserved DCD UCPD1_IRQHandler ; UCPD1 DCD COMP1_2_3_IRQHandler ; COMP1, COMP2 and COMP3 DCD COMP4_IRQHandler ; COMP4 DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD CRS_IRQHandler ; CRS Interrupt DCD SAI1_IRQHandler ; Serial Audio Interface 1 global interrupt DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD FPU_IRQHandler ; FPU DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD AES_IRQHandler ; AES global interrupt DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD RNG_IRQHandler ; RNG global interrupt DCD LPUART1_IRQHandler ; LP UART 1 interrupt DCD I2C3_EV_IRQHandler ; I2C3 Event DCD I2C3_ER_IRQHandler ; I2C3 Error DCD DMAMUX_OVR_IRQHandler ; DMAMUX overrun global interrupt DCD 0 ; Reserved DCD 0 ; Reserved DCD DMA2_Channel6_IRQHandler ; DMA2 Channel 6 DCD 0 ; Reserved DCD 0 ; Reserved DCD CORDIC_IRQHandler ; CORDIC DCD FMAC_IRQHandler ; FMAC __Vectors_End __Vectors_Size EQU __Vectors_End - __Vectors AREA |.text|, CODE, READONLY ; Reset handler Reset_Handler PROC EXPORT Reset_Handler [WEAK] IMPORT SystemInit IMPORT __main LDR R0, =SystemInit BLX R0 LDR R0, =__main BX R0 ENDP ; Dummy Exception Handlers (infinite loops which can be modified) NMI_Handler PROC EXPORT NMI_Handler [WEAK] B . ENDP HardFault_Handler\ PROC EXPORT HardFault_Handler [WEAK] B . ENDP MemManage_Handler\ PROC EXPORT MemManage_Handler [WEAK] B . ENDP BusFault_Handler\ PROC EXPORT BusFault_Handler [WEAK] B . ENDP UsageFault_Handler\ PROC EXPORT UsageFault_Handler [WEAK] B . ENDP SVC_Handler PROC EXPORT SVC_Handler [WEAK] B . ENDP DebugMon_Handler\ PROC EXPORT DebugMon_Handler [WEAK] B . ENDP PendSV_Handler PROC EXPORT PendSV_Handler [WEAK] B . ENDP SysTick_Handler PROC EXPORT SysTick_Handler [WEAK] B . ENDP Default_Handler PROC EXPORT WWDG_IRQHandler [WEAK] EXPORT PVD_PVM_IRQHandler [WEAK] EXPORT RTC_TAMP_LSECSS_IRQHandler [WEAK] EXPORT RTC_WKUP_IRQHandler [WEAK] EXPORT FLASH_IRQHandler [WEAK] EXPORT RCC_IRQHandler [WEAK] EXPORT EXTI0_IRQHandler [WEAK] EXPORT EXTI1_IRQHandler [WEAK] EXPORT EXTI2_IRQHandler [WEAK] EXPORT EXTI3_IRQHandler [WEAK] EXPORT EXTI4_IRQHandler [WEAK] EXPORT DMA1_Channel1_IRQHandler [WEAK] EXPORT DMA1_Channel2_IRQHandler [WEAK] EXPORT DMA1_Channel3_IRQHandler [WEAK] EXPORT DMA1_Channel4_IRQHandler [WEAK] EXPORT DMA1_Channel5_IRQHandler [WEAK] EXPORT DMA1_Channel6_IRQHandler [WEAK] EXPORT ADC1_2_IRQHandler [WEAK] EXPORT USB_HP_IRQHandler [WEAK] EXPORT USB_LP_IRQHandler [WEAK] EXPORT FDCAN1_IT0_IRQHandler [WEAK] EXPORT FDCAN1_IT1_IRQHandler [WEAK] EXPORT EXTI9_5_IRQHandler [WEAK] EXPORT TIM1_BRK_TIM15_IRQHandler [WEAK] EXPORT TIM1_UP_TIM16_IRQHandler [WEAK] EXPORT TIM1_TRG_COM_TIM17_IRQHandler [WEAK] EXPORT TIM1_CC_IRQHandler [WEAK] EXPORT TIM2_IRQHandler [WEAK] EXPORT TIM3_IRQHandler [WEAK] EXPORT TIM4_IRQHandler [WEAK] EXPORT I2C1_EV_IRQHandler [WEAK] EXPORT I2C1_ER_IRQHandler [WEAK] EXPORT I2C2_EV_IRQHandler [WEAK] EXPORT I2C2_ER_IRQHandler [WEAK] EXPORT SPI1_IRQHandler [WEAK] EXPORT SPI2_IRQHandler [WEAK] EXPORT USART1_IRQHandler [WEAK] EXPORT USART2_IRQHandler [WEAK] EXPORT USART3_IRQHandler [WEAK] EXPORT EXTI15_10_IRQHandler [WEAK] EXPORT RTC_Alarm_IRQHandler [WEAK] EXPORT USBWakeUp_IRQHandler [WEAK] EXPORT TIM8_BRK_IRQHandler [WEAK] EXPORT TIM8_UP_IRQHandler [WEAK] EXPORT TIM8_TRG_COM_IRQHandler [WEAK] EXPORT TIM8_CC_IRQHandler [WEAK] EXPORT LPTIM1_IRQHandler [WEAK] EXPORT SPI3_IRQHandler [WEAK] EXPORT UART4_IRQHandler [WEAK] EXPORT TIM6_DAC_IRQHandler [WEAK] EXPORT TIM7_IRQHandler [WEAK] EXPORT DMA2_Channel1_IRQHandler [WEAK] EXPORT DMA2_Channel2_IRQHandler [WEAK] EXPORT DMA2_Channel3_IRQHandler [WEAK] EXPORT DMA2_Channel4_IRQHandler [WEAK] EXPORT DMA2_Channel5_IRQHandler [WEAK] EXPORT UCPD1_IRQHandler [WEAK] EXPORT COMP1_2_3_IRQHandler [WEAK] EXPORT COMP4_IRQHandler [WEAK] EXPORT CRS_IRQHandler [WEAK] EXPORT SAI1_IRQHandler [WEAK] EXPORT FPU_IRQHandler [WEAK] EXPORT AES_IRQHandler [WEAK] EXPORT RNG_IRQHandler [WEAK] EXPORT LPUART1_IRQHandler [WEAK] EXPORT I2C3_EV_IRQHandler [WEAK] EXPORT I2C3_ER_IRQHandler [WEAK] EXPORT DMAMUX_OVR_IRQHandler [WEAK] EXPORT DMA2_Channel6_IRQHandler [WEAK] EXPORT CORDIC_IRQHandler [WEAK] EXPORT FMAC_IRQHandler [WEAK] WWDG_IRQHandler PVD_PVM_IRQHandler RTC_TAMP_LSECSS_IRQHandler RTC_WKUP_IRQHandler FLASH_IRQHandler RCC_IRQHandler EXTI0_IRQHandler EXTI1_IRQHandler EXTI2_IRQHandler EXTI3_IRQHandler EXTI4_IRQHandler DMA1_Channel1_IRQHandler DMA1_Channel2_IRQHandler DMA1_Channel3_IRQHandler DMA1_Channel4_IRQHandler DMA1_Channel5_IRQHandler DMA1_Channel6_IRQHandler ADC1_2_IRQHandler USB_HP_IRQHandler USB_LP_IRQHandler FDCAN1_IT0_IRQHandler FDCAN1_IT1_IRQHandler EXTI9_5_IRQHandler TIM1_BRK_TIM15_IRQHandler TIM1_UP_TIM16_IRQHandler TIM1_TRG_COM_TIM17_IRQHandler TIM1_CC_IRQHandler TIM2_IRQHandler TIM3_IRQHandler TIM4_IRQHandler I2C1_EV_IRQHandler I2C1_ER_IRQHandler I2C2_EV_IRQHandler I2C2_ER_IRQHandler SPI1_IRQHandler SPI2_IRQHandler USART1_IRQHandler USART2_IRQHandler USART3_IRQHandler EXTI15_10_IRQHandler RTC_Alarm_IRQHandler USBWakeUp_IRQHandler TIM8_BRK_IRQHandler TIM8_UP_IRQHandler TIM8_TRG_COM_IRQHandler TIM8_CC_IRQHandler LPTIM1_IRQHandler SPI3_IRQHandler UART4_IRQHandler TIM6_DAC_IRQHandler TIM7_IRQHandler DMA2_Channel1_IRQHandler DMA2_Channel2_IRQHandler DMA2_Channel3_IRQHandler DMA2_Channel4_IRQHandler DMA2_Channel5_IRQHandler UCPD1_IRQHandler COMP1_2_3_IRQHandler COMP4_IRQHandler CRS_IRQHandler SAI1_IRQHandler FPU_IRQHandler AES_IRQHandler RNG_IRQHandler LPUART1_IRQHandler I2C3_EV_IRQHandler I2C3_ER_IRQHandler DMAMUX_OVR_IRQHandler DMA2_Channel6_IRQHandler CORDIC_IRQHandler FMAC_IRQHandler B . ENDP ALIGN ;******************************************************************************* ; User Stack and Heap initialization ;******************************************************************************* IF :DEF:__MICROLIB EXPORT __initial_sp EXPORT __heap_base EXPORT __heap_limit ELSE IMPORT __use_two_region_memory EXPORT __user_initial_stackheap __user_initial_stackheap LDR R0, = Heap_Mem LDR R1, =(Stack_Mem + Stack_Size) LDR R2, = (Heap_Mem + Heap_Size) LDR R3, = Stack_Mem BX LR ALIGN ENDIF END
Northeastern-Electric-Racing/Iroh
22,162
Drivers/CMSIS/Device/ST/STM32G4xx/Source/Templates/arm/startup_stm32g474xx.s
;******************************************************************************* ;* @File Name : startup_stm32g474xx.s ;* @Author : MCD Application Team ;* @Brief : Vector table for MDK-ARM toolchain ;******************************************************************************* ;* Description : STM32G474xx Mainstream devices vector table for ;* MDK-ARM toolchain. ;* This module performs: ;* - Set the initial SP ;* - Set the initial PC == Reset_Handler ;* - Set the vector table entries with the exceptions ISR address ;* - Branches to __main in the C library (which eventually ;* calls main()). ;* After Reset the Cortex-M4 processor is in Thread mode, ;* priority is Privileged, and the Stack is set to Main. ;******************************************************************************** ;* @attention ;* ;* Copyright (c) 2019 STMicroelectronics. ;* All rights reserved. ;* ;* This software is licensed under terms that can be found in the LICENSE file ;* in the root directory of this software component. ;* If no LICENSE file comes with this software, it is provided AS-IS. ; ;******************************************************************************* ;* <<< Use Configuration Wizard in Context Menu >>> ; ; Amount of memory (in bytes) allocated for Stack ; Tailor this value to your application needs ; <h> Stack Configuration ; <o> Stack Size (in Bytes) <0x0-0xFFFFFFFF:8> ; </h> Stack_Size EQU 0x400; AREA STACK, NOINIT, READWRITE, ALIGN=3 Stack_Mem SPACE Stack_Size __initial_sp ; <h> Heap Configuration ; <o> Heap Size (in Bytes) <0x0-0xFFFFFFFF:8> ; </h> Heap_Size EQU 0x200; AREA HEAP, NOINIT, READWRITE, ALIGN=3 __heap_base Heap_Mem SPACE Heap_Size __heap_limit PRESERVE8 THUMB ; Vector Table Mapped to Address 0 at Reset AREA RESET, DATA, READONLY EXPORT __Vectors EXPORT __Vectors_End EXPORT __Vectors_Size __Vectors DCD __initial_sp ; Top of Stack DCD Reset_Handler ; Reset Handler DCD NMI_Handler ; NMI Handler DCD HardFault_Handler ; Hard Fault Handler DCD MemManage_Handler ; MPU Fault Handler DCD BusFault_Handler ; Bus Fault Handler DCD UsageFault_Handler ; Usage Fault Handler DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD SVC_Handler ; SVCall Handler DCD DebugMon_Handler ; Debug Monitor Handler DCD 0 ; Reserved DCD PendSV_Handler ; PendSV Handler DCD SysTick_Handler ; SysTick Handler ; External Interrupts DCD WWDG_IRQHandler ; Window WatchDog DCD PVD_PVM_IRQHandler ; PVD/PVM1/PVM2/PVM3/PVM4 through EXTI Line detection DCD RTC_TAMP_LSECSS_IRQHandler ; RTC, TAMP and RCC LSE_CSS through the EXTI line DCD RTC_WKUP_IRQHandler ; RTC Wakeup through the EXTI line DCD FLASH_IRQHandler ; FLASH DCD RCC_IRQHandler ; RCC DCD EXTI0_IRQHandler ; EXTI Line0 DCD EXTI1_IRQHandler ; EXTI Line1 DCD EXTI2_IRQHandler ; EXTI Line2 DCD EXTI3_IRQHandler ; EXTI Line3 DCD EXTI4_IRQHandler ; EXTI Line4 DCD DMA1_Channel1_IRQHandler ; DMA1 Channel 1 DCD DMA1_Channel2_IRQHandler ; DMA1 Channel 2 DCD DMA1_Channel3_IRQHandler ; DMA1 Channel 3 DCD DMA1_Channel4_IRQHandler ; DMA1 Channel 4 DCD DMA1_Channel5_IRQHandler ; DMA1 Channel 5 DCD DMA1_Channel6_IRQHandler ; DMA1 Channel 6 DCD DMA1_Channel7_IRQHandler ; DMA1 Channel 7 DCD ADC1_2_IRQHandler ; ADC1 and ADC2 DCD USB_HP_IRQHandler ; USB Device High Priority DCD USB_LP_IRQHandler ; USB Device Low Priority DCD FDCAN1_IT0_IRQHandler ; FDCAN1 interrupt line 0 DCD FDCAN1_IT1_IRQHandler ; FDCAN1 interrupt line 1 DCD EXTI9_5_IRQHandler ; External Line[9:5]s DCD TIM1_BRK_TIM15_IRQHandler ; TIM1 Break, Transition error, Index error and TIM15 DCD TIM1_UP_TIM16_IRQHandler ; TIM1 Update and TIM16 DCD TIM1_TRG_COM_TIM17_IRQHandler ; TIM1 Trigger, Commutation, Direction change, Index and TIM17 DCD TIM1_CC_IRQHandler ; TIM1 Capture Compare DCD TIM2_IRQHandler ; TIM2 DCD TIM3_IRQHandler ; TIM3 DCD TIM4_IRQHandler ; TIM4 DCD I2C1_EV_IRQHandler ; I2C1 Event DCD I2C1_ER_IRQHandler ; I2C1 Error DCD I2C2_EV_IRQHandler ; I2C2 Event DCD I2C2_ER_IRQHandler ; I2C2 Error DCD SPI1_IRQHandler ; SPI1 DCD SPI2_IRQHandler ; SPI2 DCD USART1_IRQHandler ; USART1 DCD USART2_IRQHandler ; USART2 DCD USART3_IRQHandler ; USART3 DCD EXTI15_10_IRQHandler ; External Line[15:10] DCD RTC_Alarm_IRQHandler ; RTC Alarm (A and B) through EXTI Line DCD USBWakeUp_IRQHandler ; USB Wakeup through EXTI line DCD TIM8_BRK_IRQHandler ; TIM8 Break, Transition error and Index error Interrupt DCD TIM8_UP_IRQHandler ; TIM8 Update Interrupt DCD TIM8_TRG_COM_IRQHandler ; TIM8 Trigger, Commutation, Direction change and Index Interrupt DCD TIM8_CC_IRQHandler ; TIM8 Capture Compare Interrupt DCD ADC3_IRQHandler ; ADC3 DCD FMC_IRQHandler ; FMC DCD LPTIM1_IRQHandler ; LP TIM1 interrupt DCD TIM5_IRQHandler ; TIM5 DCD SPI3_IRQHandler ; SPI3 DCD UART4_IRQHandler ; UART4 DCD UART5_IRQHandler ; UART5 DCD TIM6_DAC_IRQHandler ; TIM6 and DAC1&3 underrun errors DCD TIM7_DAC_IRQHandler ; TIM7 and DAC2&4 underrun errors DCD DMA2_Channel1_IRQHandler ; DMA2 Channel 1 DCD DMA2_Channel2_IRQHandler ; DMA2 Channel 2 DCD DMA2_Channel3_IRQHandler ; DMA2 Channel 3 DCD DMA2_Channel4_IRQHandler ; DMA2 Channel 4 DCD DMA2_Channel5_IRQHandler ; DMA2 Channel 5 DCD ADC4_IRQHandler ; ADC4 DCD ADC5_IRQHandler ; ADC5 DCD UCPD1_IRQHandler ; UCPD1 DCD COMP1_2_3_IRQHandler ; COMP1, COMP2 and COMP3 DCD COMP4_5_6_IRQHandler ; COMP4, COMP5 and COMP6 DCD COMP7_IRQHandler ; COMP7 DCD HRTIM1_Master_IRQHandler ; HRTIM Master Timer global Interrupts DCD HRTIM1_TIMA_IRQHandler ; HRTIM Timer A global Interrupt DCD HRTIM1_TIMB_IRQHandler ; HRTIM Timer B global Interrupt DCD HRTIM1_TIMC_IRQHandler ; HRTIM Timer C global Interrupt DCD HRTIM1_TIMD_IRQHandler ; HRTIM Timer D global Interrupt DCD HRTIM1_TIME_IRQHandler ; HRTIM Timer E global Interrupt DCD HRTIM1_FLT_IRQHandler ; HRTIM Fault global Interrupt DCD HRTIM1_TIMF_IRQHandler ; HRTIM Timer F global Interrupt DCD CRS_IRQHandler ; CRS Interrupt DCD SAI1_IRQHandler ; Serial Audio Interface 1 global interrupt DCD TIM20_BRK_IRQHandler ; TIM20 Break, Transition error and Index error DCD TIM20_UP_IRQHandler ; TIM20 Update DCD TIM20_TRG_COM_IRQHandler ; TIM20 Trigger, Commutation, Direction change and Index DCD TIM20_CC_IRQHandler ; TIM20 Capture Compare DCD FPU_IRQHandler ; FPU DCD I2C4_EV_IRQHandler ; I2C4 event DCD I2C4_ER_IRQHandler ; I2C4 error DCD SPI4_IRQHandler ; SPI4 DCD 0 ; Reserved DCD FDCAN2_IT0_IRQHandler ; FDCAN2 interrupt line 0 DCD FDCAN2_IT1_IRQHandler ; FDCAN2 interrupt line 1 DCD FDCAN3_IT0_IRQHandler ; FDCAN3 interrupt line 0 DCD FDCAN3_IT1_IRQHandler ; FDCAN3 interrupt line 1 DCD RNG_IRQHandler ; RNG global interrupt DCD LPUART1_IRQHandler ; LP UART 1 interrupt DCD I2C3_EV_IRQHandler ; I2C3 Event DCD I2C3_ER_IRQHandler ; I2C3 Error DCD DMAMUX_OVR_IRQHandler ; DMAMUX overrun global interrupt DCD QUADSPI_IRQHandler ; QUADSPI DCD DMA1_Channel8_IRQHandler ; DMA1 Channel 8 DCD DMA2_Channel6_IRQHandler ; DMA2 Channel 6 DCD DMA2_Channel7_IRQHandler ; DMA2 Channel 7 DCD DMA2_Channel8_IRQHandler ; DMA2 Channel 8 DCD CORDIC_IRQHandler ; CORDIC DCD FMAC_IRQHandler ; FMAC __Vectors_End __Vectors_Size EQU __Vectors_End - __Vectors AREA |.text|, CODE, READONLY ; Reset handler Reset_Handler PROC EXPORT Reset_Handler [WEAK] IMPORT SystemInit IMPORT __main LDR R0, =SystemInit BLX R0 LDR R0, =__main BX R0 ENDP ; Dummy Exception Handlers (infinite loops which can be modified) NMI_Handler PROC EXPORT NMI_Handler [WEAK] B . ENDP HardFault_Handler\ PROC EXPORT HardFault_Handler [WEAK] B . ENDP MemManage_Handler\ PROC EXPORT MemManage_Handler [WEAK] B . ENDP BusFault_Handler\ PROC EXPORT BusFault_Handler [WEAK] B . ENDP UsageFault_Handler\ PROC EXPORT UsageFault_Handler [WEAK] B . ENDP SVC_Handler PROC EXPORT SVC_Handler [WEAK] B . ENDP DebugMon_Handler\ PROC EXPORT DebugMon_Handler [WEAK] B . ENDP PendSV_Handler PROC EXPORT PendSV_Handler [WEAK] B . ENDP SysTick_Handler PROC EXPORT SysTick_Handler [WEAK] B . ENDP Default_Handler PROC EXPORT WWDG_IRQHandler [WEAK] EXPORT PVD_PVM_IRQHandler [WEAK] EXPORT RTC_TAMP_LSECSS_IRQHandler [WEAK] EXPORT RTC_WKUP_IRQHandler [WEAK] EXPORT FLASH_IRQHandler [WEAK] EXPORT RCC_IRQHandler [WEAK] EXPORT EXTI0_IRQHandler [WEAK] EXPORT EXTI1_IRQHandler [WEAK] EXPORT EXTI2_IRQHandler [WEAK] EXPORT EXTI3_IRQHandler [WEAK] EXPORT EXTI4_IRQHandler [WEAK] EXPORT DMA1_Channel1_IRQHandler [WEAK] EXPORT DMA1_Channel2_IRQHandler [WEAK] EXPORT DMA1_Channel3_IRQHandler [WEAK] EXPORT DMA1_Channel4_IRQHandler [WEAK] EXPORT DMA1_Channel5_IRQHandler [WEAK] EXPORT DMA1_Channel6_IRQHandler [WEAK] EXPORT DMA1_Channel7_IRQHandler [WEAK] EXPORT ADC1_2_IRQHandler [WEAK] EXPORT USB_HP_IRQHandler [WEAK] EXPORT USB_LP_IRQHandler [WEAK] EXPORT FDCAN1_IT0_IRQHandler [WEAK] EXPORT FDCAN1_IT1_IRQHandler [WEAK] EXPORT EXTI9_5_IRQHandler [WEAK] EXPORT TIM1_BRK_TIM15_IRQHandler [WEAK] EXPORT TIM1_UP_TIM16_IRQHandler [WEAK] EXPORT TIM1_TRG_COM_TIM17_IRQHandler [WEAK] EXPORT TIM1_CC_IRQHandler [WEAK] EXPORT TIM2_IRQHandler [WEAK] EXPORT TIM3_IRQHandler [WEAK] EXPORT TIM4_IRQHandler [WEAK] EXPORT I2C1_EV_IRQHandler [WEAK] EXPORT I2C1_ER_IRQHandler [WEAK] EXPORT I2C2_EV_IRQHandler [WEAK] EXPORT I2C2_ER_IRQHandler [WEAK] EXPORT SPI1_IRQHandler [WEAK] EXPORT SPI2_IRQHandler [WEAK] EXPORT USART1_IRQHandler [WEAK] EXPORT USART2_IRQHandler [WEAK] EXPORT USART3_IRQHandler [WEAK] EXPORT EXTI15_10_IRQHandler [WEAK] EXPORT RTC_Alarm_IRQHandler [WEAK] EXPORT USBWakeUp_IRQHandler [WEAK] EXPORT TIM8_BRK_IRQHandler [WEAK] EXPORT TIM8_UP_IRQHandler [WEAK] EXPORT TIM8_TRG_COM_IRQHandler [WEAK] EXPORT TIM8_CC_IRQHandler [WEAK] EXPORT ADC3_IRQHandler [WEAK] EXPORT FMC_IRQHandler [WEAK] EXPORT LPTIM1_IRQHandler [WEAK] EXPORT TIM5_IRQHandler [WEAK] EXPORT SPI3_IRQHandler [WEAK] EXPORT UART4_IRQHandler [WEAK] EXPORT UART5_IRQHandler [WEAK] EXPORT TIM6_DAC_IRQHandler [WEAK] EXPORT TIM7_DAC_IRQHandler [WEAK] EXPORT DMA2_Channel1_IRQHandler [WEAK] EXPORT DMA2_Channel2_IRQHandler [WEAK] EXPORT DMA2_Channel3_IRQHandler [WEAK] EXPORT DMA2_Channel4_IRQHandler [WEAK] EXPORT DMA2_Channel5_IRQHandler [WEAK] EXPORT ADC4_IRQHandler [WEAK] EXPORT ADC5_IRQHandler [WEAK] EXPORT UCPD1_IRQHandler [WEAK] EXPORT COMP1_2_3_IRQHandler [WEAK] EXPORT COMP4_5_6_IRQHandler [WEAK] EXPORT COMP7_IRQHandler [WEAK] EXPORT HRTIM1_Master_IRQHandler [WEAK] EXPORT HRTIM1_TIMA_IRQHandler [WEAK] EXPORT HRTIM1_TIMB_IRQHandler [WEAK] EXPORT HRTIM1_TIMC_IRQHandler [WEAK] EXPORT HRTIM1_TIMD_IRQHandler [WEAK] EXPORT HRTIM1_TIME_IRQHandler [WEAK] EXPORT HRTIM1_FLT_IRQHandler [WEAK] EXPORT HRTIM1_TIMF_IRQHandler [WEAK] EXPORT CRS_IRQHandler [WEAK] EXPORT SAI1_IRQHandler [WEAK] EXPORT TIM20_BRK_IRQHandler [WEAK] EXPORT TIM20_UP_IRQHandler [WEAK] EXPORT TIM20_TRG_COM_IRQHandler [WEAK] EXPORT TIM20_CC_IRQHandler [WEAK] EXPORT FPU_IRQHandler [WEAK] EXPORT I2C4_EV_IRQHandler [WEAK] EXPORT I2C4_ER_IRQHandler [WEAK] EXPORT SPI4_IRQHandler [WEAK] EXPORT FDCAN2_IT0_IRQHandler [WEAK] EXPORT FDCAN2_IT1_IRQHandler [WEAK] EXPORT FDCAN3_IT0_IRQHandler [WEAK] EXPORT FDCAN3_IT1_IRQHandler [WEAK] EXPORT RNG_IRQHandler [WEAK] EXPORT LPUART1_IRQHandler [WEAK] EXPORT I2C3_EV_IRQHandler [WEAK] EXPORT I2C3_ER_IRQHandler [WEAK] EXPORT DMAMUX_OVR_IRQHandler [WEAK] EXPORT QUADSPI_IRQHandler [WEAK] EXPORT DMA1_Channel8_IRQHandler [WEAK] EXPORT DMA2_Channel6_IRQHandler [WEAK] EXPORT DMA2_Channel7_IRQHandler [WEAK] EXPORT DMA2_Channel8_IRQHandler [WEAK] EXPORT CORDIC_IRQHandler [WEAK] EXPORT FMAC_IRQHandler [WEAK] WWDG_IRQHandler PVD_PVM_IRQHandler RTC_TAMP_LSECSS_IRQHandler RTC_WKUP_IRQHandler FLASH_IRQHandler RCC_IRQHandler EXTI0_IRQHandler EXTI1_IRQHandler EXTI2_IRQHandler EXTI3_IRQHandler EXTI4_IRQHandler DMA1_Channel1_IRQHandler DMA1_Channel2_IRQHandler DMA1_Channel3_IRQHandler DMA1_Channel4_IRQHandler DMA1_Channel5_IRQHandler DMA1_Channel6_IRQHandler DMA1_Channel7_IRQHandler ADC1_2_IRQHandler USB_HP_IRQHandler USB_LP_IRQHandler FDCAN1_IT0_IRQHandler FDCAN1_IT1_IRQHandler EXTI9_5_IRQHandler TIM1_BRK_TIM15_IRQHandler TIM1_UP_TIM16_IRQHandler TIM1_TRG_COM_TIM17_IRQHandler TIM1_CC_IRQHandler TIM2_IRQHandler TIM3_IRQHandler TIM4_IRQHandler I2C1_EV_IRQHandler I2C1_ER_IRQHandler I2C2_EV_IRQHandler I2C2_ER_IRQHandler SPI1_IRQHandler SPI2_IRQHandler USART1_IRQHandler USART2_IRQHandler USART3_IRQHandler EXTI15_10_IRQHandler RTC_Alarm_IRQHandler USBWakeUp_IRQHandler TIM8_BRK_IRQHandler TIM8_UP_IRQHandler TIM8_TRG_COM_IRQHandler TIM8_CC_IRQHandler ADC3_IRQHandler FMC_IRQHandler LPTIM1_IRQHandler TIM5_IRQHandler SPI3_IRQHandler UART4_IRQHandler UART5_IRQHandler TIM6_DAC_IRQHandler TIM7_DAC_IRQHandler DMA2_Channel1_IRQHandler DMA2_Channel2_IRQHandler DMA2_Channel3_IRQHandler DMA2_Channel4_IRQHandler DMA2_Channel5_IRQHandler ADC4_IRQHandler ADC5_IRQHandler UCPD1_IRQHandler COMP1_2_3_IRQHandler COMP4_5_6_IRQHandler COMP7_IRQHandler HRTIM1_Master_IRQHandler HRTIM1_TIMA_IRQHandler HRTIM1_TIMB_IRQHandler HRTIM1_TIMC_IRQHandler HRTIM1_TIMD_IRQHandler HRTIM1_TIME_IRQHandler HRTIM1_FLT_IRQHandler HRTIM1_TIMF_IRQHandler CRS_IRQHandler SAI1_IRQHandler TIM20_BRK_IRQHandler TIM20_UP_IRQHandler TIM20_TRG_COM_IRQHandler TIM20_CC_IRQHandler FPU_IRQHandler I2C4_EV_IRQHandler I2C4_ER_IRQHandler SPI4_IRQHandler FDCAN2_IT0_IRQHandler FDCAN2_IT1_IRQHandler FDCAN3_IT0_IRQHandler FDCAN3_IT1_IRQHandler RNG_IRQHandler LPUART1_IRQHandler I2C3_EV_IRQHandler I2C3_ER_IRQHandler DMAMUX_OVR_IRQHandler QUADSPI_IRQHandler DMA1_Channel8_IRQHandler DMA2_Channel6_IRQHandler DMA2_Channel7_IRQHandler DMA2_Channel8_IRQHandler CORDIC_IRQHandler FMAC_IRQHandler B . ENDP ALIGN ;******************************************************************************* ; User Stack and Heap initialization ;******************************************************************************* IF :DEF:__MICROLIB EXPORT __initial_sp EXPORT __heap_base EXPORT __heap_limit ELSE IMPORT __use_two_region_memory EXPORT __user_initial_stackheap __user_initial_stackheap LDR R0, = Heap_Mem LDR R1, =(Stack_Mem + Stack_Size) LDR R2, = (Heap_Mem + Heap_Size) LDR R3, = Stack_Mem BX LR ALIGN ENDIF END
Northeastern-Electric-Racing/Iroh
20,477
Drivers/CMSIS/Device/ST/STM32G4xx/Source/Templates/arm/startup_stm32g491xx.s
;******************************************************************************* ;* @File Name : startup_stm32g491xx.s ;* @Author : MCD Application Team ;* @Brief : Vector table for MDK-ARM toolchain ;******************************************************************************* ;* Description : STM32G491xx Mainstream devices vector table for ;* MDK-ARM toolchain. ;* This module performs: ;* - Set the initial SP ;* - Set the initial PC == Reset_Handler ;* - Set the vector table entries with the exceptions ISR address ;* - Branches to __main in the C library (which eventually ;* calls main()). ;* After Reset the Cortex-M4 processor is in Thread mode, ;* priority is Privileged, and the Stack is set to Main. ;******************************************************************************** ;* @attention ;* ;* Copyright (c) 2019 STMicroelectronics. ;* All rights reserved. ;* ;* This software is licensed under terms that can be found in the LICENSE file ;* in the root directory of this software component. ;* If no LICENSE file comes with this software, it is provided AS-IS. ; ;******************************************************************************* ;* <<< Use Configuration Wizard in Context Menu >>> ; ; Amount of memory (in bytes) allocated for Stack ; Tailor this value to your application needs ; <h> Stack Configuration ; <o> Stack Size (in Bytes) <0x0-0xFFFFFFFF:8> ; </h> Stack_Size EQU 0x400; AREA STACK, NOINIT, READWRITE, ALIGN=3 Stack_Mem SPACE Stack_Size __initial_sp ; <h> Heap Configuration ; <o> Heap Size (in Bytes) <0x0-0xFFFFFFFF:8> ; </h> Heap_Size EQU 0x200; AREA HEAP, NOINIT, READWRITE, ALIGN=3 __heap_base Heap_Mem SPACE Heap_Size __heap_limit PRESERVE8 THUMB ; Vector Table Mapped to Address 0 at Reset AREA RESET, DATA, READONLY EXPORT __Vectors EXPORT __Vectors_End EXPORT __Vectors_Size __Vectors DCD __initial_sp ; Top of Stack DCD Reset_Handler ; Reset Handler DCD NMI_Handler ; NMI Handler DCD HardFault_Handler ; Hard Fault Handler DCD MemManage_Handler ; MPU Fault Handler DCD BusFault_Handler ; Bus Fault Handler DCD UsageFault_Handler ; Usage Fault Handler DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD SVC_Handler ; SVCall Handler DCD DebugMon_Handler ; Debug Monitor Handler DCD 0 ; Reserved DCD PendSV_Handler ; PendSV Handler DCD SysTick_Handler ; SysTick Handler ; External Interrupts DCD WWDG_IRQHandler ; Window WatchDog DCD PVD_PVM_IRQHandler ; PVD/PVM1/PVM2/PVM3/PVM4 through EXTI Line detection DCD RTC_TAMP_LSECSS_IRQHandler ; RTC, TAMP and RCC LSE_CSS through the EXTI line DCD RTC_WKUP_IRQHandler ; RTC Wakeup through the EXTI line DCD FLASH_IRQHandler ; FLASH DCD RCC_IRQHandler ; RCC DCD EXTI0_IRQHandler ; EXTI Line0 DCD EXTI1_IRQHandler ; EXTI Line1 DCD EXTI2_IRQHandler ; EXTI Line2 DCD EXTI3_IRQHandler ; EXTI Line3 DCD EXTI4_IRQHandler ; EXTI Line4 DCD DMA1_Channel1_IRQHandler ; DMA1 Channel 1 DCD DMA1_Channel2_IRQHandler ; DMA1 Channel 2 DCD DMA1_Channel3_IRQHandler ; DMA1 Channel 3 DCD DMA1_Channel4_IRQHandler ; DMA1 Channel 4 DCD DMA1_Channel5_IRQHandler ; DMA1 Channel 5 DCD DMA1_Channel6_IRQHandler ; DMA1 Channel 6 DCD DMA1_Channel7_IRQHandler ; DMA1 Channel 7 DCD ADC1_2_IRQHandler ; ADC1 and ADC2 DCD USB_HP_IRQHandler ; USB Device High Priority DCD USB_LP_IRQHandler ; USB Device Low Priority DCD FDCAN1_IT0_IRQHandler ; FDCAN1 interrupt line 0 DCD FDCAN1_IT1_IRQHandler ; FDCAN1 interrupt line 1 DCD EXTI9_5_IRQHandler ; External Line[9:5]s DCD TIM1_BRK_TIM15_IRQHandler ; TIM1 Break, Transition error, Index error and TIM15 DCD TIM1_UP_TIM16_IRQHandler ; TIM1 Update and TIM16 DCD TIM1_TRG_COM_TIM17_IRQHandler ; TIM1 Trigger, Commutation, Direction change, Index and TIM17 DCD TIM1_CC_IRQHandler ; TIM1 Capture Compare DCD TIM2_IRQHandler ; TIM2 DCD TIM3_IRQHandler ; TIM3 DCD TIM4_IRQHandler ; TIM4 DCD I2C1_EV_IRQHandler ; I2C1 Event DCD I2C1_ER_IRQHandler ; I2C1 Error DCD I2C2_EV_IRQHandler ; I2C2 Event DCD I2C2_ER_IRQHandler ; I2C2 Error DCD SPI1_IRQHandler ; SPI1 DCD SPI2_IRQHandler ; SPI2 DCD USART1_IRQHandler ; USART1 DCD USART2_IRQHandler ; USART2 DCD USART3_IRQHandler ; USART3 DCD EXTI15_10_IRQHandler ; External Line[15:10] DCD RTC_Alarm_IRQHandler ; RTC Alarm (A and B) through EXTI Line DCD USBWakeUp_IRQHandler ; USB Wakeup through EXTI line DCD TIM8_BRK_IRQHandler ; TIM8 Break, Transition error and Index error Interrupt DCD TIM8_UP_IRQHandler ; TIM8 Update Interrupt DCD TIM8_TRG_COM_IRQHandler ; TIM8 Trigger, Commutation, Direction change and Index Interrupt DCD TIM8_CC_IRQHandler ; TIM8 Capture Compare Interrupt DCD ADC3_IRQHandler ; ADC3 DCD 0 ; Reserved DCD LPTIM1_IRQHandler ; LP TIM1 interrupt DCD 0 ; Reserved DCD SPI3_IRQHandler ; SPI3 DCD UART4_IRQHandler ; UART4 DCD UART5_IRQHandler ; UART5 DCD TIM6_DAC_IRQHandler ; TIM6 and DAC1&3 underrun errors DCD TIM7_IRQHandler ; TIM7 DCD DMA2_Channel1_IRQHandler ; DMA2 Channel 1 DCD DMA2_Channel2_IRQHandler ; DMA2 Channel 2 DCD DMA2_Channel3_IRQHandler ; DMA2 Channel 3 DCD DMA2_Channel4_IRQHandler ; DMA2 Channel 4 DCD DMA2_Channel5_IRQHandler ; DMA2 Channel 5 DCD 0 ; Reserved DCD 0 ; Reserved DCD UCPD1_IRQHandler ; UCPD1 DCD COMP1_2_3_IRQHandler ; COMP1, COMP2 and COMP3 DCD COMP4_IRQHandler ; COMP4 DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD CRS_IRQHandler ; CRS Interrupt DCD SAI1_IRQHandler ; Serial Audio Interface 1 global interrupt DCD TIM20_BRK_IRQHandler ; TIM20 Break, Transition error and Index error DCD TIM20_UP_IRQHandler ; TIM20 Update DCD TIM20_TRG_COM_IRQHandler ; TIM20 Trigger, Commutation, Direction change and Index DCD TIM20_CC_IRQHandler ; TIM20 Capture Compare DCD FPU_IRQHandler ; FPU DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD FDCAN2_IT0_IRQHandler ; FDCAN2 interrupt line 0 DCD FDCAN2_IT1_IRQHandler ; FDCAN2 interrupt line 1 DCD 0 ; Reserved DCD 0 ; Reserved DCD RNG_IRQHandler ; RNG global interrupt DCD LPUART1_IRQHandler ; LP UART 1 interrupt DCD I2C3_EV_IRQHandler ; I2C3 Event DCD I2C3_ER_IRQHandler ; I2C3 Error DCD DMAMUX_OVR_IRQHandler ; DMAMUX overrun global interrupt DCD QUADSPI_IRQHandler ; QUADSPI DCD DMA1_Channel8_IRQHandler ; DMA1 Channel 8 DCD DMA2_Channel6_IRQHandler ; DMA2 Channel 6 DCD DMA2_Channel7_IRQHandler ; DMA2 Channel 7 DCD DMA2_Channel8_IRQHandler ; DMA2 Channel 8 DCD CORDIC_IRQHandler ; CORDIC DCD FMAC_IRQHandler ; FMAC __Vectors_End __Vectors_Size EQU __Vectors_End - __Vectors AREA |.text|, CODE, READONLY ; Reset handler Reset_Handler PROC EXPORT Reset_Handler [WEAK] IMPORT SystemInit IMPORT __main LDR R0, =SystemInit BLX R0 LDR R0, =__main BX R0 ENDP ; Dummy Exception Handlers (infinite loops which can be modified) NMI_Handler PROC EXPORT NMI_Handler [WEAK] B . ENDP HardFault_Handler\ PROC EXPORT HardFault_Handler [WEAK] B . ENDP MemManage_Handler\ PROC EXPORT MemManage_Handler [WEAK] B . ENDP BusFault_Handler\ PROC EXPORT BusFault_Handler [WEAK] B . ENDP UsageFault_Handler\ PROC EXPORT UsageFault_Handler [WEAK] B . ENDP SVC_Handler PROC EXPORT SVC_Handler [WEAK] B . ENDP DebugMon_Handler\ PROC EXPORT DebugMon_Handler [WEAK] B . ENDP PendSV_Handler PROC EXPORT PendSV_Handler [WEAK] B . ENDP SysTick_Handler PROC EXPORT SysTick_Handler [WEAK] B . ENDP Default_Handler PROC EXPORT WWDG_IRQHandler [WEAK] EXPORT PVD_PVM_IRQHandler [WEAK] EXPORT RTC_TAMP_LSECSS_IRQHandler [WEAK] EXPORT RTC_WKUP_IRQHandler [WEAK] EXPORT FLASH_IRQHandler [WEAK] EXPORT RCC_IRQHandler [WEAK] EXPORT EXTI0_IRQHandler [WEAK] EXPORT EXTI1_IRQHandler [WEAK] EXPORT EXTI2_IRQHandler [WEAK] EXPORT EXTI3_IRQHandler [WEAK] EXPORT EXTI4_IRQHandler [WEAK] EXPORT DMA1_Channel1_IRQHandler [WEAK] EXPORT DMA1_Channel2_IRQHandler [WEAK] EXPORT DMA1_Channel3_IRQHandler [WEAK] EXPORT DMA1_Channel4_IRQHandler [WEAK] EXPORT DMA1_Channel5_IRQHandler [WEAK] EXPORT DMA1_Channel6_IRQHandler [WEAK] EXPORT DMA1_Channel7_IRQHandler [WEAK] EXPORT ADC1_2_IRQHandler [WEAK] EXPORT USB_HP_IRQHandler [WEAK] EXPORT USB_LP_IRQHandler [WEAK] EXPORT FDCAN1_IT0_IRQHandler [WEAK] EXPORT FDCAN1_IT1_IRQHandler [WEAK] EXPORT EXTI9_5_IRQHandler [WEAK] EXPORT TIM1_BRK_TIM15_IRQHandler [WEAK] EXPORT TIM1_UP_TIM16_IRQHandler [WEAK] EXPORT TIM1_TRG_COM_TIM17_IRQHandler [WEAK] EXPORT TIM1_CC_IRQHandler [WEAK] EXPORT TIM2_IRQHandler [WEAK] EXPORT TIM3_IRQHandler [WEAK] EXPORT TIM4_IRQHandler [WEAK] EXPORT I2C1_EV_IRQHandler [WEAK] EXPORT I2C1_ER_IRQHandler [WEAK] EXPORT I2C2_EV_IRQHandler [WEAK] EXPORT I2C2_ER_IRQHandler [WEAK] EXPORT SPI1_IRQHandler [WEAK] EXPORT SPI2_IRQHandler [WEAK] EXPORT USART1_IRQHandler [WEAK] EXPORT USART2_IRQHandler [WEAK] EXPORT USART3_IRQHandler [WEAK] EXPORT EXTI15_10_IRQHandler [WEAK] EXPORT RTC_Alarm_IRQHandler [WEAK] EXPORT USBWakeUp_IRQHandler [WEAK] EXPORT TIM8_BRK_IRQHandler [WEAK] EXPORT TIM8_UP_IRQHandler [WEAK] EXPORT TIM8_TRG_COM_IRQHandler [WEAK] EXPORT TIM8_CC_IRQHandler [WEAK] EXPORT ADC3_IRQHandler [WEAK] EXPORT LPTIM1_IRQHandler [WEAK] EXPORT SPI3_IRQHandler [WEAK] EXPORT UART4_IRQHandler [WEAK] EXPORT UART5_IRQHandler [WEAK] EXPORT TIM6_DAC_IRQHandler [WEAK] EXPORT TIM7_IRQHandler [WEAK] EXPORT DMA2_Channel1_IRQHandler [WEAK] EXPORT DMA2_Channel2_IRQHandler [WEAK] EXPORT DMA2_Channel3_IRQHandler [WEAK] EXPORT DMA2_Channel4_IRQHandler [WEAK] EXPORT DMA2_Channel5_IRQHandler [WEAK] EXPORT UCPD1_IRQHandler [WEAK] EXPORT COMP1_2_3_IRQHandler [WEAK] EXPORT COMP4_IRQHandler [WEAK] EXPORT CRS_IRQHandler [WEAK] EXPORT SAI1_IRQHandler [WEAK] EXPORT TIM20_BRK_IRQHandler [WEAK] EXPORT TIM20_UP_IRQHandler [WEAK] EXPORT TIM20_TRG_COM_IRQHandler [WEAK] EXPORT TIM20_CC_IRQHandler [WEAK] EXPORT FPU_IRQHandler [WEAK] EXPORT FDCAN2_IT0_IRQHandler [WEAK] EXPORT FDCAN2_IT1_IRQHandler [WEAK] EXPORT RNG_IRQHandler [WEAK] EXPORT LPUART1_IRQHandler [WEAK] EXPORT I2C3_EV_IRQHandler [WEAK] EXPORT I2C3_ER_IRQHandler [WEAK] EXPORT DMAMUX_OVR_IRQHandler [WEAK] EXPORT QUADSPI_IRQHandler [WEAK] EXPORT DMA1_Channel8_IRQHandler [WEAK] EXPORT DMA2_Channel6_IRQHandler [WEAK] EXPORT DMA2_Channel7_IRQHandler [WEAK] EXPORT DMA2_Channel8_IRQHandler [WEAK] EXPORT CORDIC_IRQHandler [WEAK] EXPORT FMAC_IRQHandler [WEAK] WWDG_IRQHandler PVD_PVM_IRQHandler RTC_TAMP_LSECSS_IRQHandler RTC_WKUP_IRQHandler FLASH_IRQHandler RCC_IRQHandler EXTI0_IRQHandler EXTI1_IRQHandler EXTI2_IRQHandler EXTI3_IRQHandler EXTI4_IRQHandler DMA1_Channel1_IRQHandler DMA1_Channel2_IRQHandler DMA1_Channel3_IRQHandler DMA1_Channel4_IRQHandler DMA1_Channel5_IRQHandler DMA1_Channel6_IRQHandler DMA1_Channel7_IRQHandler ADC1_2_IRQHandler USB_HP_IRQHandler USB_LP_IRQHandler FDCAN1_IT0_IRQHandler FDCAN1_IT1_IRQHandler EXTI9_5_IRQHandler TIM1_BRK_TIM15_IRQHandler TIM1_UP_TIM16_IRQHandler TIM1_TRG_COM_TIM17_IRQHandler TIM1_CC_IRQHandler TIM2_IRQHandler TIM3_IRQHandler TIM4_IRQHandler I2C1_EV_IRQHandler I2C1_ER_IRQHandler I2C2_EV_IRQHandler I2C2_ER_IRQHandler SPI1_IRQHandler SPI2_IRQHandler USART1_IRQHandler USART2_IRQHandler USART3_IRQHandler EXTI15_10_IRQHandler RTC_Alarm_IRQHandler USBWakeUp_IRQHandler TIM8_BRK_IRQHandler TIM8_UP_IRQHandler TIM8_TRG_COM_IRQHandler TIM8_CC_IRQHandler ADC3_IRQHandler LPTIM1_IRQHandler SPI3_IRQHandler UART4_IRQHandler UART5_IRQHandler TIM6_DAC_IRQHandler TIM7_IRQHandler DMA2_Channel1_IRQHandler DMA2_Channel2_IRQHandler DMA2_Channel3_IRQHandler DMA2_Channel4_IRQHandler DMA2_Channel5_IRQHandler UCPD1_IRQHandler COMP1_2_3_IRQHandler COMP4_IRQHandler CRS_IRQHandler SAI1_IRQHandler TIM20_BRK_IRQHandler TIM20_UP_IRQHandler TIM20_TRG_COM_IRQHandler TIM20_CC_IRQHandler FPU_IRQHandler FDCAN2_IT0_IRQHandler FDCAN2_IT1_IRQHandler RNG_IRQHandler LPUART1_IRQHandler I2C3_EV_IRQHandler I2C3_ER_IRQHandler DMAMUX_OVR_IRQHandler QUADSPI_IRQHandler DMA1_Channel8_IRQHandler DMA2_Channel6_IRQHandler DMA2_Channel7_IRQHandler DMA2_Channel8_IRQHandler CORDIC_IRQHandler FMAC_IRQHandler B . ENDP ALIGN ;******************************************************************************* ; User Stack and Heap initialization ;******************************************************************************* IF :DEF:__MICROLIB EXPORT __initial_sp EXPORT __heap_base EXPORT __heap_limit ELSE IMPORT __use_two_region_memory EXPORT __user_initial_stackheap __user_initial_stackheap LDR R0, = Heap_Mem LDR R1, =(Stack_Mem + Stack_Size) LDR R2, = (Heap_Mem + Heap_Size) LDR R3, = Stack_Mem BX LR ALIGN ENDIF END
Northeastern-Electric-Racing/Iroh
21,374
Drivers/CMSIS/Device/ST/STM32G4xx/Source/Templates/arm/startup_stm32g483xx.s
;******************************************************************************* ;* @File Name : startup_stm32g483xx.s ;* @Author : MCD Application Team ;* @Brief : Vector table for MDK-ARM toolchain ;******************************************************************************* ;* Description : STM32G483xx Mainstream devices vector table for ;* MDK-ARM toolchain. ;* This module performs: ;* - Set the initial SP ;* - Set the initial PC == Reset_Handler ;* - Set the vector table entries with the exceptions ISR address ;* - Branches to __main in the C library (which eventually ;* calls main()). ;* After Reset the Cortex-M4 processor is in Thread mode, ;* priority is Privileged, and the Stack is set to Main. ;******************************************************************************** ;* @attention ;* ;* Copyright (c) 2019 STMicroelectronics. ;* All rights reserved. ;* ;* This software is licensed under terms that can be found in the LICENSE file ;* in the root directory of this software component. ;* If no LICENSE file comes with this software, it is provided AS-IS. ; ;******************************************************************************* ;* <<< Use Configuration Wizard in Context Menu >>> ; ; Amount of memory (in bytes) allocated for Stack ; Tailor this value to your application needs ; <h> Stack Configuration ; <o> Stack Size (in Bytes) <0x0-0xFFFFFFFF:8> ; </h> Stack_Size EQU 0x400; AREA STACK, NOINIT, READWRITE, ALIGN=3 Stack_Mem SPACE Stack_Size __initial_sp ; <h> Heap Configuration ; <o> Heap Size (in Bytes) <0x0-0xFFFFFFFF:8> ; </h> Heap_Size EQU 0x200; AREA HEAP, NOINIT, READWRITE, ALIGN=3 __heap_base Heap_Mem SPACE Heap_Size __heap_limit PRESERVE8 THUMB ; Vector Table Mapped to Address 0 at Reset AREA RESET, DATA, READONLY EXPORT __Vectors EXPORT __Vectors_End EXPORT __Vectors_Size __Vectors DCD __initial_sp ; Top of Stack DCD Reset_Handler ; Reset Handler DCD NMI_Handler ; NMI Handler DCD HardFault_Handler ; Hard Fault Handler DCD MemManage_Handler ; MPU Fault Handler DCD BusFault_Handler ; Bus Fault Handler DCD UsageFault_Handler ; Usage Fault Handler DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD SVC_Handler ; SVCall Handler DCD DebugMon_Handler ; Debug Monitor Handler DCD 0 ; Reserved DCD PendSV_Handler ; PendSV Handler DCD SysTick_Handler ; SysTick Handler ; External Interrupts DCD WWDG_IRQHandler ; Window WatchDog DCD PVD_PVM_IRQHandler ; PVD/PVM1/PVM2/PVM3/PVM4 through EXTI Line detection DCD RTC_TAMP_LSECSS_IRQHandler ; RTC, TAMP and RCC LSE_CSS through the EXTI line DCD RTC_WKUP_IRQHandler ; RTC Wakeup through the EXTI line DCD FLASH_IRQHandler ; FLASH DCD RCC_IRQHandler ; RCC DCD EXTI0_IRQHandler ; EXTI Line0 DCD EXTI1_IRQHandler ; EXTI Line1 DCD EXTI2_IRQHandler ; EXTI Line2 DCD EXTI3_IRQHandler ; EXTI Line3 DCD EXTI4_IRQHandler ; EXTI Line4 DCD DMA1_Channel1_IRQHandler ; DMA1 Channel 1 DCD DMA1_Channel2_IRQHandler ; DMA1 Channel 2 DCD DMA1_Channel3_IRQHandler ; DMA1 Channel 3 DCD DMA1_Channel4_IRQHandler ; DMA1 Channel 4 DCD DMA1_Channel5_IRQHandler ; DMA1 Channel 5 DCD DMA1_Channel6_IRQHandler ; DMA1 Channel 6 DCD DMA1_Channel7_IRQHandler ; DMA1 Channel 7 DCD ADC1_2_IRQHandler ; ADC1 and ADC2 DCD USB_HP_IRQHandler ; USB Device High Priority DCD USB_LP_IRQHandler ; USB Device Low Priority DCD 0 ; Reserved DCD 0 ; Reserved DCD EXTI9_5_IRQHandler ; External Line[9:5]s DCD TIM1_BRK_TIM15_IRQHandler ; TIM1 Break, Transition error, Index error and TIM15 DCD TIM1_UP_TIM16_IRQHandler ; TIM1 Update and TIM16 DCD TIM1_TRG_COM_TIM17_IRQHandler ; TIM1 Trigger, Commutation, Direction change, Index and TIM17 DCD TIM1_CC_IRQHandler ; TIM1 Capture Compare DCD TIM2_IRQHandler ; TIM2 DCD TIM3_IRQHandler ; TIM3 DCD TIM4_IRQHandler ; TIM4 DCD I2C1_EV_IRQHandler ; I2C1 Event DCD I2C1_ER_IRQHandler ; I2C1 Error DCD I2C2_EV_IRQHandler ; I2C2 Event DCD I2C2_ER_IRQHandler ; I2C2 Error DCD SPI1_IRQHandler ; SPI1 DCD SPI2_IRQHandler ; SPI2 DCD USART1_IRQHandler ; USART1 DCD USART2_IRQHandler ; USART2 DCD USART3_IRQHandler ; USART3 DCD EXTI15_10_IRQHandler ; External Line[15:10] DCD RTC_Alarm_IRQHandler ; RTC Alarm (A and B) through EXTI Line DCD USBWakeUp_IRQHandler ; USB Wakeup through EXTI line DCD TIM8_BRK_IRQHandler ; TIM8 Break, Transition error and Index error Interrupt DCD TIM8_UP_IRQHandler ; TIM8 Update Interrupt DCD TIM8_TRG_COM_IRQHandler ; TIM8 Trigger, Commutation, Direction change and Index Interrupt DCD TIM8_CC_IRQHandler ; TIM8 Capture Compare Interrupt DCD ADC3_IRQHandler ; ADC3 DCD FMC_IRQHandler ; FMC DCD LPTIM1_IRQHandler ; LP TIM1 interrupt DCD TIM5_IRQHandler ; TIM5 DCD SPI3_IRQHandler ; SPI3 DCD UART4_IRQHandler ; UART4 DCD UART5_IRQHandler ; UART5 DCD TIM6_DAC_IRQHandler ; TIM6 and DAC1&3 underrun errors DCD TIM7_DAC_IRQHandler ; TIM7 and DAC2&4 underrun errors DCD DMA2_Channel1_IRQHandler ; DMA2 Channel 1 DCD DMA2_Channel2_IRQHandler ; DMA2 Channel 2 DCD DMA2_Channel3_IRQHandler ; DMA2 Channel 3 DCD DMA2_Channel4_IRQHandler ; DMA2 Channel 4 DCD DMA2_Channel5_IRQHandler ; DMA2 Channel 5 DCD ADC4_IRQHandler ; ADC4 DCD ADC5_IRQHandler ; ADC5 DCD UCPD1_IRQHandler ; UCPD1 DCD COMP1_2_3_IRQHandler ; COMP1, COMP2 and COMP3 DCD COMP4_5_6_IRQHandler ; COMP4, COMP5 and COMP6 DCD COMP7_IRQHandler ; COMP7 DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD 0 ; Reserved DCD CRS_IRQHandler ; CRS Interrupt DCD SAI1_IRQHandler ; Serial Audio Interface 1 global interrupt DCD TIM20_BRK_IRQHandler ; TIM20 Break, Transition error and Index error DCD TIM20_UP_IRQHandler ; TIM20 Update DCD TIM20_TRG_COM_IRQHandler ; TIM20 Trigger, Commutation, Direction change and Index DCD TIM20_CC_IRQHandler ; TIM20 Capture Compare DCD FPU_IRQHandler ; FPU DCD I2C4_EV_IRQHandler ; I2C4 event DCD I2C4_ER_IRQHandler ; I2C4 error DCD SPI4_IRQHandler ; SPI4 DCD AES_IRQHandler ; AES global interrupt DCD FDCAN2_IT0_IRQHandler ; FDCAN2 interrupt line 0 DCD FDCAN2_IT1_IRQHandler ; FDCAN2 interrupt line 1 DCD FDCAN3_IT0_IRQHandler ; FDCAN3 interrupt line 0 DCD FDCAN3_IT1_IRQHandler ; FDCAN3 interrupt line 1 DCD RNG_IRQHandler ; RNG global interrupt DCD LPUART1_IRQHandler ; LP UART 1 interrupt DCD I2C3_EV_IRQHandler ; I2C3 Event DCD I2C3_ER_IRQHandler ; I2C3 Error DCD DMAMUX_OVR_IRQHandler ; DMAMUX overrun global interrupt DCD QUADSPI_IRQHandler ; QUADSPI DCD DMA1_Channel8_IRQHandler ; DMA1 Channel 8 DCD DMA2_Channel6_IRQHandler ; DMA2 Channel 6 DCD DMA2_Channel7_IRQHandler ; DMA2 Channel 7 DCD DMA2_Channel8_IRQHandler ; DMA2 Channel 8 DCD CORDIC_IRQHandler ; CORDIC DCD FMAC_IRQHandler ; FMAC __Vectors_End __Vectors_Size EQU __Vectors_End - __Vectors AREA |.text|, CODE, READONLY ; Reset handler Reset_Handler PROC EXPORT Reset_Handler [WEAK] IMPORT SystemInit IMPORT __main LDR R0, =SystemInit BLX R0 LDR R0, =__main BX R0 ENDP ; Dummy Exception Handlers (infinite loops which can be modified) NMI_Handler PROC EXPORT NMI_Handler [WEAK] B . ENDP HardFault_Handler\ PROC EXPORT HardFault_Handler [WEAK] B . ENDP MemManage_Handler\ PROC EXPORT MemManage_Handler [WEAK] B . ENDP BusFault_Handler\ PROC EXPORT BusFault_Handler [WEAK] B . ENDP UsageFault_Handler\ PROC EXPORT UsageFault_Handler [WEAK] B . ENDP SVC_Handler PROC EXPORT SVC_Handler [WEAK] B . ENDP DebugMon_Handler\ PROC EXPORT DebugMon_Handler [WEAK] B . ENDP PendSV_Handler PROC EXPORT PendSV_Handler [WEAK] B . ENDP SysTick_Handler PROC EXPORT SysTick_Handler [WEAK] B . ENDP Default_Handler PROC EXPORT WWDG_IRQHandler [WEAK] EXPORT PVD_PVM_IRQHandler [WEAK] EXPORT RTC_TAMP_LSECSS_IRQHandler [WEAK] EXPORT RTC_WKUP_IRQHandler [WEAK] EXPORT FLASH_IRQHandler [WEAK] EXPORT RCC_IRQHandler [WEAK] EXPORT EXTI0_IRQHandler [WEAK] EXPORT EXTI1_IRQHandler [WEAK] EXPORT EXTI2_IRQHandler [WEAK] EXPORT EXTI3_IRQHandler [WEAK] EXPORT EXTI4_IRQHandler [WEAK] EXPORT DMA1_Channel1_IRQHandler [WEAK] EXPORT DMA1_Channel2_IRQHandler [WEAK] EXPORT DMA1_Channel3_IRQHandler [WEAK] EXPORT DMA1_Channel4_IRQHandler [WEAK] EXPORT DMA1_Channel5_IRQHandler [WEAK] EXPORT DMA1_Channel6_IRQHandler [WEAK] EXPORT DMA1_Channel7_IRQHandler [WEAK] EXPORT ADC1_2_IRQHandler [WEAK] EXPORT USB_HP_IRQHandler [WEAK] EXPORT USB_LP_IRQHandler [WEAK] EXPORT FDCAN1_IT0_IRQHandler [WEAK] EXPORT FDCAN1_IT1_IRQHandler [WEAK] EXPORT EXTI9_5_IRQHandler [WEAK] EXPORT TIM1_BRK_TIM15_IRQHandler [WEAK] EXPORT TIM1_UP_TIM16_IRQHandler [WEAK] EXPORT TIM1_TRG_COM_TIM17_IRQHandler [WEAK] EXPORT TIM1_CC_IRQHandler [WEAK] EXPORT TIM2_IRQHandler [WEAK] EXPORT TIM3_IRQHandler [WEAK] EXPORT TIM4_IRQHandler [WEAK] EXPORT I2C1_EV_IRQHandler [WEAK] EXPORT I2C1_ER_IRQHandler [WEAK] EXPORT I2C2_EV_IRQHandler [WEAK] EXPORT I2C2_ER_IRQHandler [WEAK] EXPORT SPI1_IRQHandler [WEAK] EXPORT SPI2_IRQHandler [WEAK] EXPORT USART1_IRQHandler [WEAK] EXPORT USART2_IRQHandler [WEAK] EXPORT USART3_IRQHandler [WEAK] EXPORT EXTI15_10_IRQHandler [WEAK] EXPORT RTC_Alarm_IRQHandler [WEAK] EXPORT USBWakeUp_IRQHandler [WEAK] EXPORT TIM8_BRK_IRQHandler [WEAK] EXPORT TIM8_UP_IRQHandler [WEAK] EXPORT TIM8_TRG_COM_IRQHandler [WEAK] EXPORT TIM8_CC_IRQHandler [WEAK] EXPORT ADC3_IRQHandler [WEAK] EXPORT FMC_IRQHandler [WEAK] EXPORT LPTIM1_IRQHandler [WEAK] EXPORT TIM5_IRQHandler [WEAK] EXPORT SPI3_IRQHandler [WEAK] EXPORT UART4_IRQHandler [WEAK] EXPORT UART5_IRQHandler [WEAK] EXPORT TIM6_DAC_IRQHandler [WEAK] EXPORT TIM7_DAC_IRQHandler [WEAK] EXPORT DMA2_Channel1_IRQHandler [WEAK] EXPORT DMA2_Channel2_IRQHandler [WEAK] EXPORT DMA2_Channel3_IRQHandler [WEAK] EXPORT DMA2_Channel4_IRQHandler [WEAK] EXPORT DMA2_Channel5_IRQHandler [WEAK] EXPORT ADC4_IRQHandler [WEAK] EXPORT ADC5_IRQHandler [WEAK] EXPORT UCPD1_IRQHandler [WEAK] EXPORT COMP1_2_3_IRQHandler [WEAK] EXPORT COMP4_5_6_IRQHandler [WEAK] EXPORT COMP7_IRQHandler [WEAK] EXPORT CRS_IRQHandler [WEAK] EXPORT SAI1_IRQHandler [WEAK] EXPORT TIM20_BRK_IRQHandler [WEAK] EXPORT TIM20_UP_IRQHandler [WEAK] EXPORT TIM20_TRG_COM_IRQHandler [WEAK] EXPORT TIM20_CC_IRQHandler [WEAK] EXPORT FPU_IRQHandler [WEAK] EXPORT I2C4_EV_IRQHandler [WEAK] EXPORT I2C4_ER_IRQHandler [WEAK] EXPORT SPI4_IRQHandler [WEAK] EXPORT AES_IRQHandler [WEAK] EXPORT FDCAN2_IT0_IRQHandler [WEAK] EXPORT FDCAN2_IT1_IRQHandler [WEAK] EXPORT FDCAN3_IT0_IRQHandler [WEAK] EXPORT FDCAN3_IT1_IRQHandler [WEAK] EXPORT RNG_IRQHandler [WEAK] EXPORT LPUART1_IRQHandler [WEAK] EXPORT I2C3_EV_IRQHandler [WEAK] EXPORT I2C3_ER_IRQHandler [WEAK] EXPORT DMAMUX_OVR_IRQHandler [WEAK] EXPORT QUADSPI_IRQHandler [WEAK] EXPORT DMA1_Channel8_IRQHandler [WEAK] EXPORT DMA2_Channel6_IRQHandler [WEAK] EXPORT DMA2_Channel7_IRQHandler [WEAK] EXPORT DMA2_Channel8_IRQHandler [WEAK] EXPORT CORDIC_IRQHandler [WEAK] EXPORT FMAC_IRQHandler [WEAK] WWDG_IRQHandler PVD_PVM_IRQHandler RTC_TAMP_LSECSS_IRQHandler RTC_WKUP_IRQHandler FLASH_IRQHandler RCC_IRQHandler EXTI0_IRQHandler EXTI1_IRQHandler EXTI2_IRQHandler EXTI3_IRQHandler EXTI4_IRQHandler DMA1_Channel1_IRQHandler DMA1_Channel2_IRQHandler DMA1_Channel3_IRQHandler DMA1_Channel4_IRQHandler DMA1_Channel5_IRQHandler DMA1_Channel6_IRQHandler DMA1_Channel7_IRQHandler ADC1_2_IRQHandler USB_HP_IRQHandler USB_LP_IRQHandler FDCAN1_IT0_IRQHandler FDCAN1_IT1_IRQHandler EXTI9_5_IRQHandler TIM1_BRK_TIM15_IRQHandler TIM1_UP_TIM16_IRQHandler TIM1_TRG_COM_TIM17_IRQHandler TIM1_CC_IRQHandler TIM2_IRQHandler TIM3_IRQHandler TIM4_IRQHandler I2C1_EV_IRQHandler I2C1_ER_IRQHandler I2C2_EV_IRQHandler I2C2_ER_IRQHandler SPI1_IRQHandler SPI2_IRQHandler USART1_IRQHandler USART2_IRQHandler USART3_IRQHandler EXTI15_10_IRQHandler RTC_Alarm_IRQHandler USBWakeUp_IRQHandler TIM8_BRK_IRQHandler TIM8_UP_IRQHandler TIM8_TRG_COM_IRQHandler TIM8_CC_IRQHandler ADC3_IRQHandler FMC_IRQHandler LPTIM1_IRQHandler TIM5_IRQHandler SPI3_IRQHandler UART4_IRQHandler UART5_IRQHandler TIM6_DAC_IRQHandler TIM7_DAC_IRQHandler DMA2_Channel1_IRQHandler DMA2_Channel2_IRQHandler DMA2_Channel3_IRQHandler DMA2_Channel4_IRQHandler DMA2_Channel5_IRQHandler ADC4_IRQHandler ADC5_IRQHandler UCPD1_IRQHandler COMP1_2_3_IRQHandler COMP4_5_6_IRQHandler COMP7_IRQHandler CRS_IRQHandler SAI1_IRQHandler TIM20_BRK_IRQHandler TIM20_UP_IRQHandler TIM20_TRG_COM_IRQHandler TIM20_CC_IRQHandler FPU_IRQHandler I2C4_EV_IRQHandler I2C4_ER_IRQHandler SPI4_IRQHandler AES_IRQHandler FDCAN2_IT0_IRQHandler FDCAN2_IT1_IRQHandler FDCAN3_IT0_IRQHandler FDCAN3_IT1_IRQHandler RNG_IRQHandler LPUART1_IRQHandler I2C3_EV_IRQHandler I2C3_ER_IRQHandler DMAMUX_OVR_IRQHandler QUADSPI_IRQHandler DMA1_Channel8_IRQHandler DMA2_Channel6_IRQHandler DMA2_Channel7_IRQHandler DMA2_Channel8_IRQHandler CORDIC_IRQHandler FMAC_IRQHandler B . ENDP ALIGN ;******************************************************************************* ; User Stack and Heap initialization ;******************************************************************************* IF :DEF:__MICROLIB EXPORT __initial_sp EXPORT __heap_base EXPORT __heap_limit ELSE IMPORT __use_two_region_memory EXPORT __user_initial_stackheap __user_initial_stackheap LDR R0, = Heap_Mem LDR R1, =(Stack_Mem + Stack_Size) LDR R2, = (Heap_Mem + Heap_Size) LDR R3, = Stack_Mem BX LR ALIGN ENDIF END