// Xavier Hsinyuan is pleased to support the open source community by making ncnn available. // // Copyright (C) 2021 Xavier Hsinyuan . All rights reserved. // // Licensed under the BSD 3-Clause License (the "License"); you may not use this file except // in compliance with the License. You may obtain a copy of the License at // // https://opensource.org/licenses/BSD-3-Clause // // 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. #include "absval_riscv.h" #if __riscv_vector #include static inline vfloat32m8_t vfabs_v_f32m8_absval(vfloat32m8_t op1, size_t vl) { return vfsgnjx_vv_f32m8(op1, op1, vl); } static inline vfloat16m8_t vfabs_v_f16m8_absval(vfloat16m8_t op1, size_t vl) { return vfsgnjx_vv_f16m8(op1, op1, vl); } #endif // __riscv_vector namespace ncnn { AbsVal_riscv::AbsVal_riscv() { #if __riscv_vector support_packing = true; #if __riscv_zfh support_fp16_storage = true; #endif #endif // __riscv_vector } int AbsVal_riscv::forward_inplace(Mat& bottom_top_blob, const Option& opt) const { #if __riscv_vector && __riscv_zfh int elembits = bottom_top_blob.elembits(); if (opt.use_fp16_storage && elembits == 16) { return forward_inplace_fp16s(bottom_top_blob, opt); } #endif int w = bottom_top_blob.w; int h = bottom_top_blob.h; int d = bottom_top_blob.d; int channels = bottom_top_blob.c; int elempack = bottom_top_blob.elempack; int size = w * h * d * elempack; #pragma omp parallel for num_threads(opt.num_threads) for (int q = 0; q < channels; q++) { float* ptr = bottom_top_blob.channel(q); #if __riscv_vector int n = size; while (n > 0) { size_t vl = vsetvl_e32m8(n); vfloat32m8_t _p = vle32_v_f32m8(ptr, vl); _p = vfabs_v_f32m8_absval(_p, vl); vse32_v_f32m8(ptr, _p, vl); ptr += vl; n -= vl; } #else // __riscv_vector for (int i = 0; i < size; i++) { *ptr = (*ptr > 0) ? (*ptr) : (-*ptr); ptr++; } #endif // __riscv_vector } return 0; } #if __riscv_vector && __riscv_zfh int AbsVal_riscv::forward_inplace_fp16s(Mat& bottom_top_blob, const Option& opt) const { int w = bottom_top_blob.w; int h = bottom_top_blob.h; int d = bottom_top_blob.d; int channels = bottom_top_blob.c; int elempack = bottom_top_blob.elempack; int size = w * h * d * elempack; #pragma omp parallel for num_threads(opt.num_threads) for (int q = 0; q < channels; q++) { __fp16* ptr = bottom_top_blob.channel(q); int n = size; while (n > 0) { size_t vl = vsetvl_e16m8(n); vfloat16m8_t _p = vle16_v_f16m8(ptr, vl); _p = vfabs_v_f16m8_absval(_p, vl); vse16_v_f16m8(ptr, _p, vl); ptr += vl; n -= vl; } } return 0; } #endif } // namespace ncnn