filename stringlengths 19 182 | omp_pragma_line stringlengths 24 416 | context_chars int64 100 100 | text stringlengths 152 177k |
|---|---|---|---|
piotr-skotnicki/tc-optimizer/results/sfs-tiling/pluto/8/2mm.c | #pragma omp parallel for private(lbv,ubv,t3,t4,t5,t6,t7,t8,t9) | 100 | ister int lbv, ubv;
/* Start of CLooG code */
if (_PB_NI >= 1) {
lbp=0;
ubp=floord(_PB_NI-1,8);
<LOOP-START>for (t2=lbp;t2<=ubp;t2++) {
if ((_PB_NJ >= 0) && (_PB_NL >= 0)) {
for (t3=0;t3<=floord(_PB_NJ+_PB_NL-1,8);t3++) {
if ((_PB_NJ >= _PB_NL+1) && (t3 <= floord(_PB_NL-1,8)) && (t3 >= ceild(_PB_N... |
piotr-skotnicki/tc-optimizer/results/sfs-tiling/pluto/8/2mm.c | #pragma omp parallel for private(lbv,ubv,t3,t4,t5,t6,t7,t8,t9) | 100 | }
}
}
}
}
if (_PB_NJ >= 1) {
lbp=0;
ubp=floord(_PB_NI-1,8);
<LOOP-START>for (t2=lbp;t2<=ubp;t2++) {
for (t3=0;t3<=floord(_PB_NJ-1,8);t3++) {
if (_PB_NK >= 1) {
for (t5=0;t5<=floord(_PB_NK-1,8);t5++) {
for (t6=8*t2;t6<=min(_PB_NI-1,8*t2+7);t6++)... |
piotr-skotnicki/tc-optimizer/results/sfs-tiling/pluto/32/trmm.c | #pragma omp parallel for private(lbv,ubv,t3,t4,t5,t6,t7) | 100 | e */
if ((_PB_M >= 1) && (_PB_N >= 1)) {
if (_PB_M >= 2) {
lbp=0;
ubp=floord(_PB_N-1,32);
<LOOP-START>for (t2=lbp;t2<=ubp;t2++) {
for (t3=0;t3<=floord(_PB_M-2,32);t3++) {
for (t4=t3;t4<=floord(_PB_M-1,32);t4++) {
for (t5=32*t3;t5<=min(min(_PB_M-2,32*t3+31),32*t4+30);t5++) {
... |
piotr-skotnicki/tc-optimizer/results/sfs-tiling/pluto/32/trmm.c | #pragma omp parallel for private(lbv,ubv,t3,t4,t5,t6,t7) | 100 | }
}
}
}
}
}
}
lbp=0;
ubp=floord(_PB_M-1,32);
<LOOP-START>for (t2=lbp;t2<=ubp;t2++) {
for (t3=0;t3<=floord(_PB_N-1,32);t3++) {
for (t4=32*t2;t4<=min(_PB_M-1,32*t2+31);t4++) {
lbv=32*t3;
ubv=min(_PB_N-1,32*t3+31);
#pragma ivdep
#pragma vecto... |
piotr-skotnicki/tc-optimizer/results/sfs-tiling/pluto/32/gemm.c | #pragma omp parallel for private(lbv,ubv,t3,t4,t5,t6,t7) | 100 | /* Start of CLooG code */
if ((_PB_NI >= 1) && (_PB_NJ >= 1)) {
lbp=0;
ubp=floord(_PB_NI-1,32);
<LOOP-START>for (t2=lbp;t2<=ubp;t2++) {
for (t3=0;t3<=floord(_PB_NJ-1,32);t3++) {
for (t4=32*t2;t4<=min(_PB_NI-1,32*t2+31);t4++) {
lbv=32*t3;
ubv=min(_PB_NJ-1,32*t3+31);
#pragma ivdep
#pragma ve... |
piotr-skotnicki/tc-optimizer/results/sfs-tiling/pluto/32/gemm.c | #pragma omp parallel for private(lbv,ubv,t3,t4,t5,t6,t7) | 100 | *= beta;;
}
}
}
}
if (_PB_NK >= 1) {
lbp=0;
ubp=floord(_PB_NI-1,32);
<LOOP-START>for (t2=lbp;t2<=ubp;t2++) {
for (t3=0;t3<=floord(_PB_NJ-1,32);t3++) {
for (t4=0;t4<=floord(_PB_NK-1,32);t4++) {
for (t5=32*t2;t5<=min(_PB_NI-1,32*t2+31);t5++) {
for (t6=32*... |
piotr-skotnicki/tc-optimizer/results/sfs-tiling/pluto/32/mvt.c | #pragma omp parallel for private(lbv,ubv,t2,t3,t4) | 100 | gister int lbv, ubv;
/* Start of CLooG code */
if (_PB_N >= 1) {
lbp=0;
ubp=floord(_PB_N-1,32);
<LOOP-START>for (t1=lbp;t1<=ubp;t1++) {
for (t2=0;t2<=floord(_PB_N-1,32);t2++) {
for (t3=32*t1;t3<=min(_PB_N-1,32*t1+31);t3++) {
for (t4=32*t2;t4<=min(_PB_N-1,32*t2+31);t4++) {
x1[t3] = x1[t3]... |
piotr-skotnicki/tc-optimizer/results/sfs-tiling/pluto/32/bicg.c | #pragma omp parallel for private(lbv,ubv,t3,t4,t5) | 100 | bp, ubp, lb2, ub2;
register int lbv, ubv;
/* Start of CLooG code */
lbp=0;
ubp=floord(_PB_N-1,32);
<LOOP-START>for (t2=lbp;t2<=ubp;t2++) {
lbv=32*t2;
ubv=min(_PB_N-1,32*t2+31);
#pragma ivdep
#pragma vector always
for (t3=lbv;t3<=ubv;t3++) {
q[t3] = SCALAR_VAL(0.0);;
}
}<LOOP-END> <OMP-START>#pragma omp par... |
piotr-skotnicki/tc-optimizer/results/sfs-tiling/pluto/32/bicg.c | #pragma omp parallel for private(lbv,ubv,t3,t4,t5) | 100 | bv;t3++) {
q[t3] = SCALAR_VAL(0.0);;
}
}
if (_PB_M >= 1) {
lbp=0;
ubp=floord(_PB_N-1,32);
<LOOP-START>for (t2=lbp;t2<=ubp;t2++) {
for (t3=0;t3<=floord(_PB_M-1,32);t3++) {
for (t4=32*t2;t4<=min(_PB_N-1,32*t2+31);t4++) {
for (t5=32*t3;t5<=min(_PB_M-1,32*t3+31);t5++) {
q[t4] = q[t4] +... |
piotr-skotnicki/tc-optimizer/results/sfs-tiling/pluto/32/bicg.c | #pragma omp parallel for private(lbv,ubv,t3,t4,t5) | 100 | q[t4] = q[t4] + A[t4][t5] * p[t5];;
}
}
}
}
}
lbp=0;
ubp=floord(_PB_M-1,32);
<LOOP-START>for (t2=lbp;t2<=ubp;t2++) {
lbv=32*t2;
ubv=min(_PB_M-1,32*t2+31);
#pragma ivdep
#pragma vector always
for (t3=lbv;t3<=ubv;t3++) {
s[t3] = 0;;
}
}<LOOP-END> <OMP-START>#pragma omp parallel for priv... |
piotr-skotnicki/tc-optimizer/results/sfs-tiling/pluto/32/bicg.c | #pragma omp parallel for private(lbv,ubv,t3,t4,t5) | 100 | (t3=lbv;t3<=ubv;t3++) {
s[t3] = 0;;
}
}
if (_PB_N >= 1) {
lbp=0;
ubp=floord(_PB_M-1,32);
<LOOP-START>for (t2=lbp;t2<=ubp;t2++) {
for (t3=0;t3<=floord(_PB_N-1,32);t3++) {
for (t4=32*t3;t4<=min(_PB_N-1,32*t3+31);t4++) {
lbv=32*t2;
ubv=min(_PB_M-1,32*t2+31);
#pragma ivdep
#pragma vecto... |
piotr-skotnicki/tc-optimizer/results/sfs-tiling/pluto/32/syr2k.c | #pragma omp parallel for private(lbv,ubv,t3,t4,t5,t6,t7) | 100 | gister int lbv, ubv;
/* Start of CLooG code */
if (_PB_N >= 1) {
lbp=0;
ubp=floord(_PB_N-1,32);
<LOOP-START>for (t2=lbp;t2<=ubp;t2++) {
for (t3=0;t3<=floord(_PB_N-1,32);t3++) {
for (t4=32*t2;t4<=min(_PB_N-1,32*t2+31);t4++) {
lbv=32*t3;
ubv=min(_PB_N-1,32*t3+31);
#pragma ivdep
#pragma vecto... |
piotr-skotnicki/tc-optimizer/results/sfs-tiling/pluto/32/syr2k.c | #pragma omp parallel for private(lbv,ubv,t3,t4,t5,t6,t7) | 100 | 5] *= beta;;
}
}
}
}
if (_PB_M >= 1) {
lbp=0;
ubp=floord(_PB_N-1,32);
<LOOP-START>for (t2=lbp;t2<=ubp;t2++) {
for (t3=0;t3<=floord(_PB_N-1,32);t3++) {
for (t4=0;t4<=floord(_PB_M-1,32);t4++) {
for (t5=32*t2;t5<=min(_PB_N-1,32*t2+31);t5++) {
for (t6=32*t3;... |
piotr-skotnicki/tc-optimizer/results/sfs-tiling/pluto/32/gesummv.c | #pragma omp parallel for private(lbv,ubv,t3,t4,t5) | 100 | gister int lbv, ubv;
/* Start of CLooG code */
if (_PB_N >= 1) {
lbp=0;
ubp=floord(_PB_N-1,32);
<LOOP-START>for (t2=lbp;t2<=ubp;t2++) {
lbv=32*t2;
ubv=min(_PB_N-1,32*t2+31);
#pragma ivdep
#pragma vector always
for (t3=lbv;t3<=ubv;t3++) {
y[t3] = SCALAR_VAL(0.0);;
}
}<LOOP-END> <OMP-START>#pr... |
piotr-skotnicki/tc-optimizer/results/sfs-tiling/pluto/32/gesummv.c | #pragma omp parallel for private(lbv,ubv,t3,t4,t5) | 100 | t3=lbv;t3<=ubv;t3++) {
y[t3] = SCALAR_VAL(0.0);;
}
}
lbp=0;
ubp=floord(_PB_N-1,32);
<LOOP-START>for (t2=lbp;t2<=ubp;t2++) {
for (t3=0;t3<=floord(_PB_N-1,32);t3++) {
for (t4=32*t2;t4<=min(_PB_N-1,32*t2+31);t4++) {
for (t5=32*t3;t5<=min(_PB_N-1,32*t3+31);t5++) {
y[t4] = B[t4][t... |
piotr-skotnicki/tc-optimizer/results/sfs-tiling/pluto/32/gesummv.c | #pragma omp parallel for private(lbv,ubv,t3,t4,t5) | 100 | y[t4] = B[t4][t5] * x[t5] + y[t4];;
}
}
}
}
lbp=0;
ubp=floord(_PB_N-1,32);
<LOOP-START>for (t2=lbp;t2<=ubp;t2++) {
lbv=32*t2;
ubv=min(_PB_N-1,32*t2+31);
#pragma ivdep
#pragma vector always
for (t3=lbv;t3<=ubv;t3++) {
tmp[t3] = SCALAR_VAL(0.0);;
}
}<LOOP-END> <OMP-START>#... |
piotr-skotnicki/tc-optimizer/results/sfs-tiling/pluto/32/gesummv.c | #pragma omp parallel for private(lbv,ubv,t3,t4,t5) | 100 | =lbv;t3<=ubv;t3++) {
tmp[t3] = SCALAR_VAL(0.0);;
}
}
lbp=0;
ubp=floord(_PB_N-1,32);
<LOOP-START>for (t2=lbp;t2<=ubp;t2++) {
for (t3=0;t3<=floord(_PB_N-1,32);t3++) {
for (t4=32*t2;t4<=min(_PB_N-1,32*t2+31);t4++) {
for (t5=32*t3;t5<=min(_PB_N-1,32*t3+31);t5++) {
tmp[t4] = A[t4]... |
piotr-skotnicki/tc-optimizer/results/sfs-tiling/pluto/32/gesummv.c | #pragma omp parallel for private(lbv,ubv,t3,t4,t5) | 100 | [t4] = A[t4][t5] * x[t5] + tmp[t4];;
}
}
}
}
lbp=0;
ubp=floord(_PB_N-1,32);
<LOOP-START>for (t2=lbp;t2<=ubp;t2++) {
lbv=32*t2;
ubv=min(_PB_N-1,32*t2+31);
#pragma ivdep
#pragma vector always
for (t3=lbv;t3<=ubv;t3++) {
y[t3] = alpha * tmp[t3] + beta * y[t3];;
}
}<LOOP-END>... |
piotr-skotnicki/tc-optimizer/results/sfs-tiling/pluto/32/syrk.c | #pragma omp parallel for private(lbv,ubv,t3,t4,t5,t6,t7) | 100 | gister int lbv, ubv;
/* Start of CLooG code */
if (_PB_N >= 1) {
lbp=0;
ubp=floord(_PB_N-1,32);
<LOOP-START>for (t2=lbp;t2<=ubp;t2++) {
for (t3=0;t3<=t2;t3++) {
for (t4=32*t2;t4<=min(_PB_N-1,32*t2+31);t4++) {
lbv=32*t3;
ubv=min(t4,32*t3+31);
#pragma ivdep
#pragma vector always
for ... |
piotr-skotnicki/tc-optimizer/results/sfs-tiling/pluto/32/syrk.c | #pragma omp parallel for private(lbv,ubv,t3,t4,t5,t6,t7) | 100 | 5] *= beta;;
}
}
}
}
if (_PB_M >= 1) {
lbp=0;
ubp=floord(_PB_N-1,32);
<LOOP-START>for (t2=lbp;t2<=ubp;t2++) {
for (t3=0;t3<=t2;t3++) {
for (t4=0;t4<=floord(_PB_M-1,32);t4++) {
for (t5=32*t2;t5<=min(_PB_N-1,32*t2+31);t5++) {
for (t6=32*t3;t6<=min(t5,32*t3... |
piotr-skotnicki/tc-optimizer/results/sfs-tiling/pluto/32/2mm.c | #pragma omp parallel for private(lbv,ubv,t3,t4,t5,t6,t7,t8,t9) | 100 | ster int lbv, ubv;
/* Start of CLooG code */
if (_PB_NI >= 1) {
lbp=0;
ubp=floord(_PB_NI-1,32);
<LOOP-START>for (t2=lbp;t2<=ubp;t2++) {
if ((_PB_NJ >= 0) && (_PB_NL >= 0)) {
for (t3=0;t3<=floord(_PB_NJ+_PB_NL-1,32);t3++) {
if ((_PB_NJ >= _PB_NL+1) && (t3 <= floord(_PB_NL-1,32)) && (t3 >= ceild(_PB... |
piotr-skotnicki/tc-optimizer/results/sfs-tiling/pluto/32/2mm.c | #pragma omp parallel for private(lbv,ubv,t3,t4,t5,t6,t7,t8,t9) | 100 | }
}
}
}
}
if (_PB_NJ >= 1) {
lbp=0;
ubp=floord(_PB_NI-1,32);
<LOOP-START>for (t2=lbp;t2<=ubp;t2++) {
for (t3=0;t3<=floord(_PB_NJ-1,32);t3++) {
if (_PB_NK >= 1) {
for (t5=0;t5<=floord(_PB_NK-1,32);t5++) {
for (t6=32*t2;t6<=min(_PB_NI-1,32*t2+31);... |
piotr-skotnicki/tc-optimizer/results/merge-tiling/parameterized/trisolv.c | #pragma omp parallel for | 100 | ) < (y) ? (x) : (y))
#define floord(n,d) (((n)<0) ? -((-(n)+(d)-1)/(d)) : (n)/(d))
#pragma scop
{
<LOOP-START>for (int ii0 = 0; ii0 <= floord(_PB_N - 1, 64); ii0 += 1)
for (int c4 = 64 * ii0; c4 <= min(_PB_N - 1, 64 * ii0 + 63); c4 += 1)
x[c4] = b[c4];
for (int k = 1; k <= (_PB_N + 30) / 32; k += 1)
#... |
piotr-skotnicki/tc-optimizer/results/merge-tiling/parameterized/trisolv.c | #pragma omp parallel for | 100 | 64 * ii0 + 63); c4 += 1)
x[c4] = b[c4];
for (int k = 1; k <= (_PB_N + 30) / 32; k += 1)
<LOOP-START>for (int ii0 = k / 2; ii0 <= min(k - 1, (_PB_N - 1) / 64); ii0 += 1) {
if (k >= 2) {
for (int c4 = 64 * ii0; c4 <= min(_PB_N - 1, 64 * ii0 + 63); c4 += 1) {
for (int c6 = 64 * k - 64 *... |
piotr-skotnicki/tc-optimizer/results/merge-tiling/parameterized/cholesky.c | #pragma omp parallel for | 100 | ))
#pragma scop
{
if (_PB_N >= 65)
for (int k = 0; k <= (3 * _PB_N - 6) / 64; k += 1) {
<LOOP-START>for (int ii0 = max(k - (_PB_N + 29) / 32 + 1, (k + 1) / 3); ii0 <= min(k, (_PB_N - 1) / 64); ii0 += 1) {
if (k >= 1) {
for (int ii2 = -ii0 + (k + ii0 + 1) / 2; ii2 <= min(min(ii0, k - ii0), ... |
piotr-skotnicki/tc-optimizer/results/merge-tiling/unparameterized/symm.c | #pragma omp parallel for | 100 | (y))
#define max(x,y) ((x) > (y) ? (x) : (y))
#pragma scop
for (int k = 0; k <= 32; k += 1) {
<LOOP-START>for (int ii1 = 0; ii1 <= 40; ii1 += 1)
for (int ii3 = 0; ii3 < k; ii3 += 1) {
if (k <= 31) {
for (int c6 = max(64 * k - 64, 64 * ii3 + 1); c6 < 64 * k; c6 += 1)
for (int c7 = 64 * ... |
piotr-skotnicki/tc-optimizer/results/merge-tiling/unparameterized/gramschmidt.c | #pragma omp parallel for | 100 | ne min(x,y) ((x) < (y) ? (x) : (y))
#define max(x,y) ((x) > (y) ? (x) : (y))
#pragma scop
{
<LOOP-START>for (int ii0 = 0; ii0 <= 40; ii0 += 1)
for (int ii2 = ii0; ii2 <= 40; ii2 += 1)
for (int c6 = 64 * ii0; c6 <= min(min(2598, 64 * ii0 + 63), 64 * ii2 + 62); c6 += 1) {
if (ii2 <= 39) {
... |
piotr-skotnicki/tc-optimizer/results/merge-tiling/unparameterized/gramschmidt.c | #pragma omp parallel for | 100 | c6][c8] = SCALAR_VAL(0.0);
}
for (int k = 1; k <= 81; k += 1) {
if (k % 2 == 0) {
<LOOP-START>for (int ii2 = k / 2; ii2 <= 40; ii2 += 1)
for (int c6 = 32 * k - 64; c6 < 32 * k; c6 += 1) {
if (ii2 <= 39) {
for (int c8 = 64 * ii2; c8 <= 64 * ii2 + 63; c8 += 1) {
... |
piotr-skotnicki/tc-optimizer/results/merge-tiling/unparameterized/lu.c | #pragma omp parallel for | 100 | (int c9 = 3904; c9 <= 3967; c9 += 1)
A[c6][c8] -= (A[c6][c9] * A[c9][c8]);
} else
<LOOP-START>for (int ii0 = max(0, (k + 1) / 2 - 31); ii0 <= min(62, k); ii0 += 1) {
if (k >= 1) {
if (3 * ii0 >= k) {
for (int ii2 = -ii0 + (k + ii0 + 1) / 2; ii2 <= min(min(61, ii0), k - ii0); ii... |
piotr-skotnicki/tc-optimizer/src/for_decorator.cpp | #pragma omp parallel for"); | 100 | printer = isl_printer_start_line(printer);
printer = isl_printer_print_str(printer, "<LOOP-START>printer = isl_printer_end_line(printer);
}
if (!inline_variables)
{
isl_ast_expr_free(init);
init = isl_ast_expr_from_id(isl_id_alloc(ctx, lb_variable, NULL));
co... |
piotr-skotnicki/tc-optimizer/src/for_decorator.cpp | #pragma omp parallel for"); | 100 | printer = isl_printer_start_line(printer);
printer = isl_printer_print_str(printer, "<LOOP-START>printer = isl_printer_end_line(printer);
}
if (!inline_variables)
{
isl_ast_expr_free(init);
init = isl_ast_expr_from_id(isl_id_alloc(ctx, lb_variable, NULL));
co... |
openwall/john/src/known_hosts_fmt_plug.c | #pragma omp parallel for | 100 | ypt_all(int *pcount, struct db_salt *salt)
{
const int count = *pcount;
int index;
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index++) {
SHA_CTX ctx;
memcpy(&ctx, &cur_salt->ipad_ctx, sizeof(ctx));
SHA1_Update(&ctx, saved_key[index], strlen(saved_key[index]));
SHA1_Final((unsigned char*) crypt_... |
openwall/john/src/keepass_fmt_plug.c | #pragma omp parallel for | 100 | = 0;
if (any_cracked) {
memset(cracked, 0, cracked_size);
any_cracked = 0;
}
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index++) {
unsigned char final_key[32];
unsigned char *decrypted_content;
SHA256_CTX ctx;
unsigned char iv[16];
unsigned char out[32];
int pad_byte;
int datasize;
... |
openwall/john/src/django_fmt_plug.c | #pragma omp parallel for | 100 | ypt_all(int *pcount, struct db_salt *salt)
{
const int count = *pcount;
int index;
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index += MIN_KEYS_PER_CRYPT) {
#ifdef SIMD_COEF_32
int lens[MIN_KEYS_PER_CRYPT], i;
unsigned char *pin[MIN_KEYS_PER_CRYPT];
union {
uint32_t *pout[MIN_KEYS_PER_CRYPT];
... |
openwall/john/src/zipmonster_fmt_plug.c | #pragma omp parallel for | 100 | pt_all(int *pcount, struct db_salt *salt)
{
const int count = *pcount;
int index;
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index += MIN_KEYS_PER_CRYPT) {
unsigned char buffer[BINARY_SIZE];
MD5_CTX ctx;
int n = 49999;
#ifdef SIMD_COEF_32
int j, k;
uint32_t *p, t;
uint8_t ib[64 * SIMD_COEF... |
openwall/john/src/7z_fmt_plug.c | #pragma omp parallel for | 100 | = index;
}
while (tot_todo % NBKEYS)
indices[tot_todo++] = count;
}
}
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < tot_todo; index += NBKEYS) {
int j;
if (new_keys)
sevenzip_kdf(index/NBKEYS, indices + index, master[index]);
/* do decryption and checks */
for (j = 0; j < NBKEYS; ++j) {... |
openwall/john/src/7z_fmt_plug.c | #pragma omp parallel for | 100 | {
cracked[indices[index + j]] = sevenzip_decrypt(master[index + j]);
}
}
#else
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index++) {
/* derive key */
if (new_keys)
sevenzip_kdf(index, master[index]);
/* do decryption and checks */
cracked[index] = sevenzip_decrypt(master[index]);
}<LOO... |
openwall/john/src/truecrypt_fmt_plug.c | #pragma omp parallel for | 100 | #define inner_batch_size 1
#endif
memset(cracked, 0, sizeof(cracked[0]) * count);
#ifdef _OPENMP
<LOOP-START>for (i = 0; i < count; i += inner_batch_size) {
unsigned char keys[INNER_BATCH_MAX_SZ][64];
int lens[INNER_BATCH_MAX_SZ];
int j;
for (j = 0; j < inner_batch_size; ++j) {
lens[j] = strlen((char *)k... |
openwall/john/src/encdatavault_pbkdf2_fmt_plug.c | #pragma omp parallel for | 100 | , 0, cracked_size);
any_cracked = 0;
}
nb_keys = 1 << (cur_salt->algo_id - 1);
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index += MIN_KEYS_PER_PBKDF2_CRYPT) {
int i, j, key_len;
buffer_128 kdf_out[MIN_KEYS_PER_PBKDF2_CRYPT][ENC_MAX_KEY_NUM];
buffer_128 tmp;
buffer_128 ivs[ENC_MAX_KEY_NUM];... |
openwall/john/src/odf_fmt_plug.c | #pragma omp parallel for | 100 | pt_all(int *pcount, struct db_salt *salt)
{
const int count = *pcount;
int index;
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index += MIN_KEYS_PER_CRYPT) {
unsigned char key[MIN_KEYS_PER_CRYPT][32];
unsigned char hash[MIN_KEYS_PER_CRYPT][32];
BF_KEY bf_key;
int bf_ivec_pos, i;
unsigned char ... |
openwall/john/src/restic_fmt_plug.c | #pragma omp parallel for default(none) private(index) shared(count, failed, params, max_threads, local, saved_key, cur_salt, crypt_out) | 100 | yescrypt_params_t params = {.N = cur_salt->N, .r = cur_salt->r, .p = cur_salt->p};
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index++) {
union {
uint8_t u8[80];
uint64_t u64[10];
} kdf_out;
#ifdef _OPENMP
int t = omp_get_thread_num();
if (t >= max_threads) {
failed = -1;
continue;
... |
openwall/john/src/DOMINOSEC8_fmt_plug.c | #pragma omp parallel for | 100 | pt_all(int *pcount, struct db_salt *salt)
{
const int count = *pcount;
int index;
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index += 3) {
int i, j;
// domino 5 hash - SEC_pwddigest_V1 - -m 8600
if (keys_changed) {
char *k0 = saved_key[index];
char *k1 = saved_key[index + 1];
char *k2 ... |
openwall/john/src/citrix_ns_fmt_plug.c | #pragma omp parallel for | 100 | nt;
int index;
int loops = (count + MIN_KEYS_PER_CRYPT - 1) / MIN_KEYS_PER_CRYPT;
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < loops; ++index) {
#ifdef SIMD_COEF_32
SIMDSHA1body(saved_key[index], (unsigned int*)crypt_key[index], NULL, SSEi_MIXED_IN);
#else
SHA_CTX ctx;
SHA1_Init(&ctx);
SHA1_Update(&ct... |
openwall/john/src/BF_std.c | #pragma omp parallel for | 100 | t, int n)
{
#if BF_mt > 1
int t;
#endif
#if BF_mt > 1 && defined(_OPENMP)
#if defined(WITH_UBSAN)
<LOOP-START>#else
#pragma omp parallel for default(none) private(t) shared(n, BF_init_state, BF_init_key, BF_exp_key, salt, BF_magic_w, BF_out)
for_each_t() {
#if BF_mt > 1
#if BF_X2 == 3
struct BF_ctx BF_current[3]... |
openwall/john/src/BF_std.c | #pragma omp parallel for default(none) private(t) shared(n, BF_init_state, BF_init_key, BF_exp_key, salt, BF_magic_w, BF_out) | 100 | t;
#endif
#if BF_mt > 1 && defined(_OPENMP)
#if defined(WITH_UBSAN)
#pragma omp parallel for
#else
<LOOP-START>for_each_t() {
#if BF_mt > 1
#if BF_X2 == 3
struct BF_ctx BF_current[3];
#elif BF_X2
struct BF_ctx BF_current[2];
#else
struct BF_ctx BF_current;
BF_word L0, R0;
BF_word u1, u2, u3, u4;
#if BF_X2... |
openwall/john/src/keyring_fmt_plug.c | #pragma omp parallel for | 100 | = 0;
if (any_cracked) {
memset(cracked, 0, cracked_size);
any_cracked = 0;
}
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index+=MIN_KEYS_PER_CRYPT)
{
int i;
unsigned char (*buffers)[sizeof(cur_salt->ct)];
// This is too big to be on stack. See #1292.
buffers = mem_alloc(MIN_KEYS_PER_CRYP... |
openwall/john/src/office_fmt_plug.c | #pragma omp parallel for | 100 | inc =
(cur_salt->version == 2013) ? SHA512_LOOP_CNT : SHA1_LOOP_CNT;
int index;
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index += inc) {
if (cur_salt->version == 2007)
GeneratePasswordHashUsingSHA1(index, &encryptionKey[index]);
else if (cur_salt->version == 2010)
GenerateAgileEncryption... |
openwall/john/src/office_fmt_plug.c | #pragma omp parallel for | 100 | int count)
{
ms_office_binary_blob *blob = ((fmt_data*)binary)->blob;
int index;
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index++) {
if (cur_salt->version == 2007)
cracked[index] = PasswordVerifier(blob, encryptionKey[index]);
else if (cur_salt->version == 2010) {
uint8_t decryptedVerifie... |
openwall/john/src/wpapsk_fmt_plug.c | #pragma omp parallel for default(none) private(j) shared(count, salt, in, out) | 100 | (int count,
wpapsk_password *in, wpapsk_hash *out, wpapsk_salt *salt)
{
int j;
#ifdef _OPENMP
<LOOP-START>for (j = 0; j < count; j++) {
pbkdf2_sha1((const unsigned char*)(in[j].v),
in[j].length,
salt->essid, salt->length,
4096, (unsigned char*)&out[j],
32,... |
openwall/john/src/wpapsk_fmt_plug.c | #pragma omp parallel for default(none) private(t) shared(count, salt, in, out, loops) | 100 | papsk_salt *salt)
{
int t; // thread count
int loops = (count+NBKEYS-1) / NBKEYS;
#ifdef _OPENMP
<LOOP-START>for (t = 0; t < loops; t++) {
int lens[NBKEYS], i;
unsigned char *pin[NBKEYS];
union {
uint32_t *pout[NBKEYS];
unsigned char *poutc;
} x;
for (i = 0; i < NBKEYS; ++i) {
lens[i] = in[t*NBKEY... |
openwall/john/src/oracle12c_fmt_plug.c | #pragma omp parallel for | 100 | pt_all(int *pcount, struct db_salt *salt)
{
int index;
const int count = *pcount;
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index += MIN_KEYS_PER_CRYPT) {
SHA512_CTX ctx;
int i = 0;
#if SIMD_COEF_64
int lens[SSE_GROUP_SZ_SHA512];
unsigned char *pin[SSE_GROUP_SZ_SHA512];
union {
uint32_t ... |
openwall/john/src/sha1crypt_fmt_plug.c | #pragma omp parallel for | 100 | ll(int *pcount, struct db_salt *salt)
{
const int count = *pcount;
int index = 0;
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index += MIN_KEYS_PER_CRYPT) {
#ifdef SSE_GROUP_SZ_SHA1
int lens[SSE_GROUP_SZ_SHA1], i;
unsigned char *pin[SSE_GROUP_SZ_SHA1];
union {
uint32_t *pout[SSE_GROUP_SZ_SHA1]... |
openwall/john/src/rawBLAKE2_512_fmt_plug.c | #pragma omp parallel for | 100 | pt_all(int *pcount, struct db_salt *salt)
{
const int count = *pcount;
int index;
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index++) {
(void)blake2b((uint8_t *)crypt_out[index], saved_key[index], NULL, 64, saved_len[index], 0);
}<LOOP-END> <OMP-START>#pragma omp parallel for<OMP-END> |
openwall/john/src/as400_des_fmt_plug.c | #pragma omp parallel for | 100 | pt_all(int *pcount, struct db_salt *salt)
{
const int count = *pcount;
int index;
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index++) {
DES_cblock des_key;
DES_key_schedule schedule;
int i;
int saved_key_length = strlen(saved_key[index]);
if (saved_key_length <= 8) {
/* process key */
... |
openwall/john/src/money_fmt_plug.c | #pragma omp parallel for | 100 | *pcount;
int index = 0;
memset(cracked, 0, sizeof(cracked[0]) * cracked_count);
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index++) {
unsigned char key[24];
unsigned char out[32];
if (cur_salt->type == 0) {
MD5_CTX mctx;
MD5_Init(&mctx);
MD5_Update(&mctx, saved_key[index], PASSWORD_... |
openwall/john/src/ssha512_fmt_plug.c | #pragma omp parallel for | 100 | pt_all(int *pcount, struct db_salt *salt)
{
const int count = *pcount;
int index;
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index+=MIN_KEYS_PER_CRYPT) {
#ifndef SIMD_COEF_64
SHA512_CTX ctx;
SHA512_Init(&ctx);
SHA512_Update(&ctx, saved_key[index], saved_len[index]);
SHA512_Update(&ctx, saved_s... |
openwall/john/src/hmacSHA512_fmt_plug.c | #pragma omp parallel for | 100 | EX_FLAGS
#else
const int B_LEN
#endif
)
{
const int count = *pcount;
int index;
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index += MIN_KEYS_PER_CRYPT) {
#ifdef SIMD_COEF_64
unsigned int i;
if (new_keys) {
SIMDSHA512body(&ipad[index * PAD_SIZE],
(uint64_t*)&prep_ipad[index * B... |
openwall/john/src/BFEgg_fmt_plug.c | #pragma omp parallel for | 100 | ypt_all(int *pcount, struct db_salt *salt)
{
const int count = *pcount;
int index;
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index++) {
if (saved_key[index][0] != 0)
blowfish_encrypt_pass(saved_key[index],
(char*)crypt_out[index]);
}<LOOP-END> <OMP-START>#pragma omp parallel for<OMP-END> |
openwall/john/src/bestcrypt_ve_fmt_plug.c | #pragma omp parallel for | 100 | = 0;
}
static const yescrypt_params_t params = { .N = 0x8000, .r = 16, .p = 1 };
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index++) {
unsigned char kdf_out[32];
/* BestCrypt uses CBC mode with a null IV */
unsigned char iv[16] = {0};
unsigned char out[sizeof(cur_salt->encrypted_data)];
SH... |
openwall/john/src/pbkdf2-hmac-md5_fmt_plug.c | #pragma omp parallel for | 100 | pt_all(int *pcount, struct db_salt *salt)
{
const int count = *pcount;
int index;
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index += MIN_KEYS_PER_CRYPT) {
#if SIMD_COEF_32
int lens[SSE_GROUP_SZ_MD5], i;
unsigned char *pin[SSE_GROUP_SZ_MD5];
union {
uint32_t *pout[SSE_GROUP_SZ_MD5];
unsign... |
openwall/john/src/SybaseASE_fmt_plug.c | #pragma omp parallel for | 100 | , struct db_salt *salt)
{
int count = *pcount;
int index;
#ifdef _OPENMP
#if defined(WITH_UBSAN)
<LOOP-START>#else
#ifndef SIMD_COEF_32
#pragma omp parallel for default(none) private(index) shared(dirty, prep_ctx, count, crypt_out, prep_key)
#else
#pragma omp parallel for default(none) private(index) shared(dirty, c... |
openwall/john/src/SybaseASE_fmt_plug.c | #pragma omp parallel for default(none) private(index) shared(dirty, prep_ctx, count, crypt_out, prep_key) | 100 | index;
#ifdef _OPENMP
#if defined(WITH_UBSAN)
#pragma omp parallel for
#else
#ifndef SIMD_COEF_32
<LOOP-START>#else
#pragma omp parallel for default(none) private(index) shared(dirty, count, crypt_cache, crypt_out, prep_key, NULL_LIMB)
for (index = 0; index < count; index += MAX_KEYS_PER_CRYPT) {
#ifndef SIMD_COE... |
openwall/john/src/SybaseASE_fmt_plug.c | #pragma omp parallel for default(none) private(index) shared(dirty, count, crypt_cache, crypt_out, prep_key, NULL_LIMB) | 100 | parallel for default(none) private(index) shared(dirty, prep_ctx, count, crypt_out, prep_key)
#else
<LOOP-START>for (index = 0; index < count; index += MAX_KEYS_PER_CRYPT) {
#ifndef SIMD_COEF_32
SHA256_CTX ctx;
if (dirty) {
SHA256_Init(&prep_ctx[index]);
SHA256_Update(&prep_ctx[index], prep_key[index], 510);
... |
openwall/john/src/bitlocker_fmt_plug.c | #pragma omp parallel for | 100 | = *pcount;
int index = 0;
memset(cracked, 0, sizeof(cracked[0])*cracked_count);
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index += MAX_KEYS_PER_CRYPT) {
unsigned char *passwordBuf;
int passwordBufSize, i;
unsigned char out[MAX_KEYS_PER_CRYPT][32];
SHA256_CTX ctx;
unsigned char output[256]... |
openwall/john/src/rawKeccak_512_fmt_plug.c | #pragma omp parallel for | 100 | ypt_all(int *pcount, struct db_salt *salt)
{
const int count = *pcount;
int index;
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index++) {
Keccak_HashInstance hash;
Keccak_HashInitialize(&hash, 576, 1024, 512, 0x01);
Keccak_HashUpdate(&hash, (unsigned char*)saved_key[index], saved_len[index] * 8);
... |
openwall/john/src/AzureAD_fmt_plug.c | #pragma omp parallel for | 100 | ypt_all(int *pcount, struct db_salt *salt) {
const int count = *pcount;
int index;
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index += MIN_KEYS_PER_CRYPT) {
// * PBKDF2(UTF-16(uc(hex(MD4(UTF-16(password))))), rnd_salt(10), 100, HMAC-SHA256, 32)
// Trivial for now. Can optimized later.
UTF16 Buf[... |
openwall/john/src/adxcrypt_fmt_plug.c | #pragma omp parallel for | 100 | pt_all(int *pcount, struct db_salt *salt)
{
const int count = *pcount;
int index;
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index++) {
adxcrypt(saved_key[index], (unsigned char*)crypt_out[index], strlen(saved_key[index]));
}<LOOP-END> <OMP-START>#pragma omp parallel for<OMP-END> |
openwall/john/src/vtp_fmt_plug.c | #pragma omp parallel for | 100 | ypt_all(int *pcount, struct db_salt *salt)
{
const int count = *pcount;
int index;
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index++) {
MD5_CTX ctx;
// space for (secret + SUMMARY ADVERTISEMENT + VLANS DATA + secret)
// derive and append "secret", but do it only the FIRST time for a password (... |
openwall/john/src/net_sha1_fmt_plug.c | #pragma omp parallel for | 100 | ur_salt->magic != MAGIC) {
return pDynamicFmt->methods.crypt_all(pcount, salt);
}
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index++) {
SHA_CTX ctx;
SHA1_Init(&ctx);
SHA1_Update(&ctx, cur_salt->salt, cur_salt->length);
SHA1_Update(&ctx, saved_key[index], PLAINTEXT_LENGTH);
SHA1_Final((unsig... |
openwall/john/src/pbkdf2-hmac-md4_fmt_plug.c | #pragma omp parallel for | 100 | pt_all(int *pcount, struct db_salt *salt)
{
const int count = *pcount;
int index;
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index += MIN_KEYS_PER_CRYPT) {
#if SIMD_COEF_32
int lens[SSE_GROUP_SZ_MD4], i;
unsigned char *pin[SSE_GROUP_SZ_MD4];
union {
uint32_t *pout[SSE_GROUP_SZ_MD4];
unsign... |
openwall/john/src/dmg_fmt_plug.c | #pragma omp parallel for | 100 | ount = *pcount;
int index;
memset(cracked, 0, sizeof(cracked[0])*cracked_count);
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index += MAX_KEYS_PER_CRYPT)
{
hash_plugin_check_hash(index);
}<LOOP-END> <OMP-START>#pragma omp parallel for<OMP-END> |
openwall/john/src/opencl_DES_bs_h_plug.c | #pragma omp parallel for | 100 | ng %d per-salt kernels, one dot per three salts done: ", num_salts);
#if _OPENMP && PARALLEL_BUILD
<LOOP-START>for (i = 0; i < num_salts; i++) {
init_kernel(salt_list[i], gpu_id, 1, 0, forced_global_keys ? 0 :local_work_size);
#if _OPENMP && PARALLEL_BUILD
if (omp_get_thread_num() == 0)
{
opencl_process... |
openwall/john/src/krb5_tgs_fmt_plug.c | #pragma omp parallel for | 100 | dex;
if (any_cracked) {
memset(cracked, 0, cracked_size);
any_cracked = 0;
}
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index++) {
unsigned char K3[16];
#ifdef _MSC_VER
unsigned char ddata[65536];
#else
unsigned char ddata[cur_salt->edata2len + 1];
unsigned char checksum[16];
RC4_KEY r... |
openwall/john/src/pbkdf2-hmac-sha512_fmt_plug.c | #pragma omp parallel for | 100 | pt_all(int *pcount, struct db_salt *salt)
{
const int count = *pcount;
int index;
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index += MIN_KEYS_PER_CRYPT) {
#ifdef SSE_GROUP_SZ_SHA512
int lens[SSE_GROUP_SZ_SHA512], i;
unsigned char *pin[SSE_GROUP_SZ_SHA512];
union {
uint32_t *pout[SSE_GROUP_SZ... |
openwall/john/src/FG2_fmt_plug.c | #pragma omp parallel for default(none) private(i) shared(ctx_salt, count, saved_key, saved_key_len, crypt_key, cp) | 100 | ruct db_salt *salt)
{
int count = *pcount;
int i = 0;
char *cp = FORTINET_MAGIC;
#ifdef _OPENMP
<LOOP-START>for (i = 0; i < count; i++) {
SHA256_CTX ctx;
memcpy(&ctx, &ctx_salt, sizeof(ctx));
SHA256_Update(&ctx, saved_key[i], saved_key_len[i]);
SHA256_Update(&ctx, cp, FORTINET_MAGIC_LENGTH);
SHA256_Fina... |
openwall/john/src/opencl_rar_fmt_plug.c | #pragma omp parallel for | 100 | LERROR(clFinish(queue[gpu_id]), "failed in clFinish");
WAIT_UPDATE
WAIT_DONE
}
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index++) {
if (output[index].key.w[4])
check_rar(file, index, output[index].key.c, output[index].iv);
else
cracked[index] = 0;
}<LOOP-END> <OMP-START>#pragma omp para... |
openwall/john/src/sunmd5_fmt_plug.c | #pragma omp parallel for | 100 | "const int count" we'd work around by
* simply dropping the const from there.)
*/
#ifdef _OPENMP
<LOOP-START>for (group_idx = 0; group_idx < ngroups; ++group_idx) {
int roundasciilen;
int round, maxrounds = BASIC_ROUND_COUNT + getrounds(saved_salt);
char roundascii[8];
int idx_begin = group_idx * group_sz;
... |
openwall/john/src/rvary_fmt_plug.c | #pragma omp parallel for | 100 | pt_all(int *pcount, struct db_salt *salt)
{
const int count = *pcount;
int index;
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index++) {
if (dirty) {
DES_cblock des_key;
int i;
/* process key */
for (i = 0; saved_key[index][i]; i++)
des_key[i] = a2e_precomputed[ARCH_INDEX(saved_key[i... |
openwall/john/src/encfs_fmt_plug.c | #pragma omp parallel for | 100 | = 0;
if (any_cracked) {
memset(cracked, 0, cracked_size);
any_cracked = 0;
}
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index += MIN_KEYS_PER_CRYPT) {
int i, j;
unsigned char master[MIN_KEYS_PER_CRYPT][MAX_KEYLENGTH + MAX_IVLENGTH];
unsigned char tmpBuf[sizeof(cur_salt->data)];
unsigned i... |
openwall/john/src/opencl_dashlane_fmt_plug.c | #pragma omp parallel for | 100 | NULL, multi_profilingEvent[4]), "Copy result back");
if (!ocl_autotune_running) {
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index++) {
if (dashlane_verify(cur_salt, (unsigned char*)output[index].dk)) {
cracked[index] = 1;
#ifdef _OPENMP
#pragma omp atomic
any_cracked |= 1;
}
}<LOOP-E... |
openwall/john/src/opencl_7z_fmt_plug.c | #pragma omp parallel for | 100 | ULL, multi_profilingEvent[5]),
"Copy result back");
if (!ocl_autotune_running) {
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index++) {
sevenzip_hash *derived = (sevenzip_hash*)&outbuffer[index];
if (derived->reject && (sevenzip_trust_padding || sevenzip_salt->type == 0x80))
continue;
/... |
openwall/john/src/sap_pse_fmt_plug.c | #pragma omp parallel for | 100 | pt_all(int *pcount, struct db_salt *salt)
{
const int count = *pcount;
int index;
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index += MIN_KEYS_PER_CRYPT) {
unsigned char key[MIN_KEYS_PER_CRYPT][24];
unsigned char iv[MIN_KEYS_PER_CRYPT][8];
int i;
#ifdef SIMD_COEF_32
size_t lens[MIN_KEYS_PER_CR... |
openwall/john/src/mongodb_scram_fmt_plug.c | #pragma omp parallel for | 100 | pt_all(int *pcount, struct db_salt *salt)
{
int index;
const int count = *pcount;
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index += MIN_KEYS_PER_CRYPT) {
#if !defined (SIMD_COEF_32)
SHA_CTX ctx;
MD5_CTX mctx;
unsigned char hexhash[32];
unsigned char hash[16];
unsigned char out[BINARY_SIZE]... |
openwall/john/src/vms_fmt_plug.c | #pragma omp parallel for | 100 | VMS_std_crypt(int *pcount, struct db_salt *salt)
{
int count = *pcount;
int index;
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index++) {
uaf_test_password (cur_salt, saved_key[index], 0, crypt_out[index]);
}<LOOP-END> <OMP-START>#pragma omp parallel for<OMP-END> |
openwall/john/src/nt2_fmt_plug.c | #pragma omp parallel for | 100 | nst unsigned int count =
(*pcount + MIN_KEYS_PER_CRYPT - 1) / MIN_KEYS_PER_CRYPT;
#ifdef _OPENMP
<LOOP-START>for (i = 0; i < count; i++) {
#ifdef SIMD_COEF_32
SIMDmd4body(&saved_key[i*NBKEYS*64], (unsigned int*)&crypt_key[i*NBKEYS*DIGEST_SIZE], NULL, SSEi_REVERSE_STEPS | SSEi_MIXED_IN);
#else
MD4_CTX ctx;
M... |
openwall/john/src/keystore_fmt_plug.c | #pragma omp parallel for | 100 | x = 0; index < count; ++index)
MixOrder[index] = index;
tot_todo = count;
#endif
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < tot_todo; index += MIN_KEYS_PER_CRYPT) {
SHA_CTX ctx;
#ifdef SIMD_COEF_32
int x, tid=0, len, idx;
char tmp_sse_out[20*MIN_KEYS_PER_CRYPT+MEM_ALIGN_SIMD];
uint32_t *sse_out;
s... |
openwall/john/src/monero_fmt_plug.c | #pragma omp parallel for | 100 | ndex;
if (any_cracked) {
memset(cracked, 0, cracked_size);
any_cracked = 0;
}
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index++) {
unsigned char km[64];
unsigned char out[32];
unsigned char iv[IVLEN];
struct chacha_ctx ckey;
// 1
memcpy(iv, cur_salt->ct, IVLEN);
cn_slow_hash(saved_... |
openwall/john/src/signal_fmt_plug.c | #pragma omp parallel for | 100 | pt_all(int *pcount, struct db_salt *salt)
{
const int count = *pcount;
int index;
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index++) {
unsigned char key[16];
int keylen = 16;
unsigned char hash[20];
pkcs12_pbe_derive_key(1, cur_salt->iterations,
MBEDTLS_PKCS12_DERIVE_KEY,
(unsigned c... |
openwall/john/src/dahua_fmt_plug.c | #pragma omp parallel for | 100 | ypt_all(int *pcount, struct db_salt *salt)
{
const int count = *pcount;
int index;
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index++) {
// hash is compressor(md5(password))
MD5_CTX ctx;
unsigned char *out = (unsigned char*)crypt_out[index];
unsigned char hash[16];
MD5_Init(&ctx);
MD5_Upda... |
openwall/john/src/putty_fmt_plug.c | #pragma omp parallel for | 100 | = 0;
if (any_cracked) {
memset(cracked, 0, cracked_size);
any_cracked = 0;
}
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index++) {
cracked[index] = LAME_ssh2_load_userkey(saved_key[index]);
if (cracked[index])
#ifdef _OPENMP
#pragma omp atomic
any_cracked |= 1;
}<LOOP-END> <OMP-START>#pr... |
openwall/john/src/rar_fmt_plug.c | #pragma omp parallel for | 100 | todo++] = index;
}
while (tot_todo % NBKEYS)
indices[tot_todo++] = count;
}
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < tot_todo; index += NBKEYS) {
unsigned int i, j, k;
uint8_t (*RawPsw)[NBKEYS*64] = vec_in[index/NBKEYS];
uint32_t *digest = vec_out[index/NBKEYS];
// all passwords in one batch ... |
openwall/john/src/rar_fmt_plug.c | #pragma omp parallel for | 100 | (digest[HASH_IDX(j) + i*SIMD_COEF_32]);
#endif
}
}
}
MEM_FREE(indices);
#else
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index++) {
int i16 = index*16;
unsigned int i;
unsigned char RawPsw[UNICODE_LENGTH + 8 + 3];
int RawLength;
SHA_CTX ctx, tempctx;
unsigned int digest[5];
unsigned ... |
openwall/john/src/rar_fmt_plug.c | #pragma omp parallel for | 100 | ine static void check_all_rar(rar_file *cur_file, int count)
{
unsigned int index;
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index++)
check_rar(cur_file, index, &aes_key[index * 16], &aes_iv[index * 16]);
}
static int cmp_all(void *binary, int count)
{
fmt_data *blob = binary;
rar_file *cur_file ... |
openwall/john/src/NETLMv2_fmt_plug.c | #pragma omp parallel for | 100 | pt_all(int *pcount, struct db_salt *salt)
{
const int count = *pcount;
int i = 0;
#ifdef _OPENMP
<LOOP-START>for (i = 0; i < count; i++) {
unsigned char ntlm_v2_hash[16];
HMACMD5Context ctx; // can't be moved above the OMP pragma
if (!keys_prepared) {
int len;
unsigned char ntlm[16];
/* Generate 16-b... |
openwall/john/src/cardano_fmt_plug.c | #pragma omp parallel for | 100 | _len = sizeof(kdf_salt);
// ChaCha20 params
static const int chacha_rounds = 20;
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index += MIN_KEYS_PER_CRYPT) {
int i;
unsigned char kdf_out[MIN_KEYS_PER_CRYPT][BUF_SIZE];
unsigned char blake_out[MIN_KEYS_PER_CRYPT][PWD_HASH_LEN];
#if SIMD_COEF_64
... |
openwall/john/src/NETLM_fmt_plug.c | #pragma omp parallel for default(none) private(i, ks) shared(count, output, challenge, saved_key) | 100 | pcount, struct db_salt *salt)
{
int count = *pcount;
DES_key_schedule ks;
int i;
#ifdef _OPENMP
<LOOP-START>for (i = 0; i < count; i++) {
/* Just do a partial binary, the first DES operation */
setup_des_key(saved_key[i], &ks);
DES_ecb_encrypt((DES_cblock*)challenge, (DES_cblock*)output[i],
... |
openwall/john/src/crc32_fmt_plug.c | #pragma omp parallel for private(i) | 100 | db_salt *salt)
{
const int count = *pcount;
int i;
switch (crctype) {
case 0:
#ifdef _OPENMP
<LOOP-START>for (i = 0; i < count; ++i) {
CRC32_t crc = crcsalt;
unsigned char *p = (unsigned char*)saved_key[i];
while (*p)
crc = jtr_crc32(crc, *p++);
crcs[i] = crc;
//printf("%s() In: '%s' Out: %08x... |
openwall/john/src/crc32_fmt_plug.c | #pragma omp parallel for private(i) | 100 | s() In: '%s' Out: %08x\n", __FUNCTION__, saved_key[i], ~crc);
}
break;
case 1:
#ifdef _OPENMP
<LOOP-START>for (i = 0; i < count; ++i) {
CRC32_t crc = crcsalt;
unsigned char *p = (unsigned char*)saved_key[i];
while (*p)
crc = jtr_crc32c(crc, *p++);
crcs[i] = crc;
//printf("%s() In: '%s' Out: %08... |
openwall/john/src/aix_ssha_fmt_plug.c | #pragma omp parallel for | 100 | default:
#ifdef SSE_GROUP_SZ_SHA512
inc = SSE_GROUP_SZ_SHA512;
#endif
break;
}
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index += inc)
{
int j = index;
while (j < index + inc) {
if (cur_salt->type == 1) {
#ifdef SSE_GROUP_SZ_SHA1
int lens[SSE_GROUP_SZ_SHA1], i;
unsigned char *pin[S... |
openwall/john/src/DMD5_fmt_plug.c | #pragma omp parallel for | 100 | pt_all(int *pcount, struct db_salt *salt)
{
const int count = *pcount;
int index;
#ifdef _OPENMP
<LOOP-START>for (index = 0; index < count; index++) {
unsigned char hash[16];
unsigned char hex_hash[MD5_HEX_SIZE];
unsigned char *ptr_src, *ptr_dst;
MD5_CTX ctx;
int i;
MD5_Init(&ctx);
// "username:realm"... |
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