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Vectorized AIX {ssha512} kernel and added support for long passwords

This commit is contained in:
jsteube 2017-07-03 12:44:03 +02:00
parent 113b8f672f
commit a8a1fe1b4f
4 changed files with 327 additions and 484 deletions

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@ -1113,18 +1113,6 @@ inline u32x ix_create_combt (__global const pw_t *combs_buf, const u32 il_pos, c
#define packv(arr,var,gid,idx) (u32x) ((arr)[((gid) * 16) + 0].var[(idx)], (arr)[((gid) * 16) + 1].var[(idx)], (arr)[((gid) * 16) + 2].var[(idx)], (arr)[((gid) * 16) + 3].var[(idx)], (arr)[((gid) * 16) + 4].var[(idx)], (arr)[((gid) * 16) + 5].var[(idx)], (arr)[((gid) * 16) + 6].var[(idx)], (arr)[((gid) * 16) + 7].var[(idx)], (arr)[((gid) * 16) + 8].var[(idx)], (arr)[((gid) * 16) + 9].var[(idx)], (arr)[((gid) * 16) + 10].var[(idx)], (arr)[((gid) * 16) + 11].var[(idx)], (arr)[((gid) * 16) + 12].var[(idx)], (arr)[((gid) * 16) + 13].var[(idx)], (arr)[((gid) * 16) + 14].var[(idx)], (arr)[((gid) * 16) + 15].var[(idx)])
#endif
#if VECT_SIZE == 1
#define packvf(arr,var,gid) (u32x) ((arr)[((gid) * 1) + 0].var)
#elif VECT_SIZE == 2
#define packvf(arr,var,gid) (u32x) ((arr)[((gid) * 2) + 0].var, (arr)[((gid) * 2) + 1].var)
#elif VECT_SIZE == 4
#define packvf(arr,var,gid) (u32x) ((arr)[((gid) * 4) + 0].var, (arr)[((gid) * 4) + 1].var, (arr)[((gid) * 4) + 2].var, (arr)[((gid) * 4) + 3].var)
#elif VECT_SIZE == 8
#define packvf(arr,var,gid) (u32x) ((arr)[((gid) * 8) + 0].var, (arr)[((gid) * 8) + 1].var, (arr)[((gid) * 8) + 2].var, (arr)[((gid) * 8) + 3].var, (arr)[((gid) * 8) + 4].var, (arr)[((gid) * 8) + 5].var, (arr)[((gid) * 8) + 6].var, (arr)[((gid) * 8) + 7].var)
#elif VECT_SIZE == 16
#define packvf(arr,var,gid) (u32x) ((arr)[((gid) * 16) + 0].var, (arr)[((gid) * 16) + 1].var, (arr)[((gid) * 16) + 2].var, (arr)[((gid) * 16) + 3].var, (arr)[((gid) * 16) + 4].var, (arr)[((gid) * 16) + 5].var, (arr)[((gid) * 16) + 6].var, (arr)[((gid) * 16) + 7].var, (arr)[((gid) * 16) + 8].var, (arr)[((gid) * 16) + 9].var, (arr)[((gid) * 16) + 10].var, (arr)[((gid) * 16) + 11].var, (arr)[((gid) * 16) + 12].var, (arr)[((gid) * 16) + 13].var, (arr)[((gid) * 16) + 14].var, (arr)[((gid) * 16) + 15].var)
#endif
#if VECT_SIZE == 1
#define pack64v(arr,var,gid,idx) (u64x) ((arr)[((gid) * 1) + 0].var[(idx)])
#elif VECT_SIZE == 2
@ -1137,6 +1125,18 @@ inline u32x ix_create_combt (__global const pw_t *combs_buf, const u32 il_pos, c
#define pack64v(arr,var,gid,idx) (u64x) ((arr)[((gid) * 16) + 0].var[(idx)], (arr)[((gid) * 16) + 1].var[(idx)], (arr)[((gid) * 16) + 2].var[(idx)], (arr)[((gid) * 16) + 3].var[(idx)], (arr)[((gid) * 16) + 4].var[(idx)], (arr)[((gid) * 16) + 5].var[(idx)], (arr)[((gid) * 16) + 6].var[(idx)], (arr)[((gid) * 16) + 7].var[(idx)], (arr)[((gid) * 16) + 8].var[(idx)], (arr)[((gid) * 16) + 9].var[(idx)], (arr)[((gid) * 16) + 10].var[(idx)], (arr)[((gid) * 16) + 11].var[(idx)], (arr)[((gid) * 16) + 12].var[(idx)], (arr)[((gid) * 16) + 13].var[(idx)], (arr)[((gid) * 16) + 14].var[(idx)], (arr)[((gid) * 16) + 15].var[(idx)])
#endif
#if VECT_SIZE == 1
#define packvf(arr,var,gid) (u32x) ((arr)[((gid) * 1) + 0].var)
#elif VECT_SIZE == 2
#define packvf(arr,var,gid) (u32x) ((arr)[((gid) * 2) + 0].var, (arr)[((gid) * 2) + 1].var)
#elif VECT_SIZE == 4
#define packvf(arr,var,gid) (u32x) ((arr)[((gid) * 4) + 0].var, (arr)[((gid) * 4) + 1].var, (arr)[((gid) * 4) + 2].var, (arr)[((gid) * 4) + 3].var)
#elif VECT_SIZE == 8
#define packvf(arr,var,gid) (u32x) ((arr)[((gid) * 8) + 0].var, (arr)[((gid) * 8) + 1].var, (arr)[((gid) * 8) + 2].var, (arr)[((gid) * 8) + 3].var, (arr)[((gid) * 8) + 4].var, (arr)[((gid) * 8) + 5].var, (arr)[((gid) * 8) + 6].var, (arr)[((gid) * 8) + 7].var)
#elif VECT_SIZE == 16
#define packvf(arr,var,gid) (u32x) ((arr)[((gid) * 16) + 0].var, (arr)[((gid) * 16) + 1].var, (arr)[((gid) * 16) + 2].var, (arr)[((gid) * 16) + 3].var, (arr)[((gid) * 16) + 4].var, (arr)[((gid) * 16) + 5].var, (arr)[((gid) * 16) + 6].var, (arr)[((gid) * 16) + 7].var, (arr)[((gid) * 16) + 8].var, (arr)[((gid) * 16) + 9].var, (arr)[((gid) * 16) + 10].var, (arr)[((gid) * 16) + 11].var, (arr)[((gid) * 16) + 12].var, (arr)[((gid) * 16) + 13].var, (arr)[((gid) * 16) + 14].var, (arr)[((gid) * 16) + 15].var)
#endif
#if VECT_SIZE == 1
#define pack64vf(arr,var,gid) (u64x) ((arr)[((gid) * 1) + 0].var)
#elif VECT_SIZE == 2
@ -1161,6 +1161,18 @@ inline u32x ix_create_combt (__global const pw_t *combs_buf, const u32 il_pos, c
#define unpackv(arr,var,gid,idx,val) (arr)[((gid) * 16) + 0].var[(idx)] = val.s0; (arr)[((gid) * 16) + 1].var[(idx)] = val.s1; (arr)[((gid) * 16) + 2].var[(idx)] = val.s2; (arr)[((gid) * 16) + 3].var[(idx)] = val.s3; (arr)[((gid) * 16) + 4].var[(idx)] = val.s4; (arr)[((gid) * 16) + 5].var[(idx)] = val.s5; (arr)[((gid) * 16) + 6].var[(idx)] = val.s6; (arr)[((gid) * 16) + 7].var[(idx)] = val.s7; (arr)[((gid) * 16) + 8].var[(idx)] = val.s8; (arr)[((gid) * 16) + 9].var[(idx)] = val.s9; (arr)[((gid) * 16) + 10].var[(idx)] = val.sa; (arr)[((gid) * 16) + 11].var[(idx)] = val.sb; (arr)[((gid) * 16) + 12].var[(idx)] = val.sc; (arr)[((gid) * 16) + 13].var[(idx)] = val.sd; (arr)[((gid) * 16) + 14].var[(idx)] = val.se; (arr)[((gid) * 16) + 15].var[(idx)] = val.sf;
#endif
#if VECT_SIZE == 1
#define unpack64v(arr,var,gid,idx,val) (arr)[((gid) * 1) + 0].var[(idx)] = val;
#elif VECT_SIZE == 2
#define unpack64v(arr,var,gid,idx,val) (arr)[((gid) * 2) + 0].var[(idx)] = val.s0; (arr)[((gid) * 2) + 1].var[(idx)] = val.s1;
#elif VECT_SIZE == 4
#define unpack64v(arr,var,gid,idx,val) (arr)[((gid) * 4) + 0].var[(idx)] = val.s0; (arr)[((gid) * 4) + 1].var[(idx)] = val.s1; (arr)[((gid) * 4) + 2].var[(idx)] = val.s2; (arr)[((gid) * 4) + 3].var[(idx)] = val.s3;
#elif VECT_SIZE == 8
#define unpack64v(arr,var,gid,idx,val) (arr)[((gid) * 8) + 0].var[(idx)] = val.s0; (arr)[((gid) * 8) + 1].var[(idx)] = val.s1; (arr)[((gid) * 8) + 2].var[(idx)] = val.s2; (arr)[((gid) * 8) + 3].var[(idx)] = val.s3; (arr)[((gid) * 8) + 4].var[(idx)] = val.s4; (arr)[((gid) * 8) + 5].var[(idx)] = val.s5; (arr)[((gid) * 8) + 6].var[(idx)] = val.s6; (arr)[((gid) * 8) + 7].var[(idx)] = val.s7;
#elif VECT_SIZE == 16
#define unpack64v(arr,var,gid,idx,val) (arr)[((gid) * 16) + 0].var[(idx)] = val.s0; (arr)[((gid) * 16) + 1].var[(idx)] = val.s1; (arr)[((gid) * 16) + 2].var[(idx)] = val.s2; (arr)[((gid) * 16) + 3].var[(idx)] = val.s3; (arr)[((gid) * 16) + 4].var[(idx)] = val.s4; (arr)[((gid) * 16) + 5].var[(idx)] = val.s5; (arr)[((gid) * 16) + 6].var[(idx)] = val.s6; (arr)[((gid) * 16) + 7].var[(idx)] = val.s7; (arr)[((gid) * 16) + 8].var[(idx)] = val.s8; (arr)[((gid) * 16) + 9].var[(idx)] = val.s9; (arr)[((gid) * 16) + 10].var[(idx)] = val.sa; (arr)[((gid) * 16) + 11].var[(idx)] = val.sb; (arr)[((gid) * 16) + 12].var[(idx)] = val.sc; (arr)[((gid) * 16) + 13].var[(idx)] = val.sd; (arr)[((gid) * 16) + 14].var[(idx)] = val.se; (arr)[((gid) * 16) + 15].var[(idx)] = val.sf;
#endif
#if VECT_SIZE == 1
#define unpackv_xor(arr,var,gid,idx,val) (arr)[((gid) * 1) + 0].var[(idx)] ^= val;
#elif VECT_SIZE == 2

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@ -3,187 +3,20 @@
* License.....: MIT
*/
#define NEW_SIMD_CODE
#include "inc_vendor.cl"
#include "inc_hash_constants.h"
#include "inc_hash_functions.cl"
#include "inc_types.cl"
#include "inc_common.cl"
#include "inc_simd.cl"
#include "inc_hash_sha512.cl"
#define COMPARE_S "inc_comp_single.cl"
#define COMPARE_M "inc_comp_multi.cl"
__constant u64a k_sha512[80] =
{
SHA512C00, SHA512C01, SHA512C02, SHA512C03,
SHA512C04, SHA512C05, SHA512C06, SHA512C07,
SHA512C08, SHA512C09, SHA512C0a, SHA512C0b,
SHA512C0c, SHA512C0d, SHA512C0e, SHA512C0f,
SHA512C10, SHA512C11, SHA512C12, SHA512C13,
SHA512C14, SHA512C15, SHA512C16, SHA512C17,
SHA512C18, SHA512C19, SHA512C1a, SHA512C1b,
SHA512C1c, SHA512C1d, SHA512C1e, SHA512C1f,
SHA512C20, SHA512C21, SHA512C22, SHA512C23,
SHA512C24, SHA512C25, SHA512C26, SHA512C27,
SHA512C28, SHA512C29, SHA512C2a, SHA512C2b,
SHA512C2c, SHA512C2d, SHA512C2e, SHA512C2f,
SHA512C30, SHA512C31, SHA512C32, SHA512C33,
SHA512C34, SHA512C35, SHA512C36, SHA512C37,
SHA512C38, SHA512C39, SHA512C3a, SHA512C3b,
SHA512C3c, SHA512C3d, SHA512C3e, SHA512C3f,
SHA512C40, SHA512C41, SHA512C42, SHA512C43,
SHA512C44, SHA512C45, SHA512C46, SHA512C47,
SHA512C48, SHA512C49, SHA512C4a, SHA512C4b,
SHA512C4c, SHA512C4d, SHA512C4e, SHA512C4f,
};
void sha512_transform (const u64 w0[4], const u64 w1[4], const u64 w2[4], const u64 w3[4], u64 digest[8])
{
u64 a = digest[0];
u64 b = digest[1];
u64 c = digest[2];
u64 d = digest[3];
u64 e = digest[4];
u64 f = digest[5];
u64 g = digest[6];
u64 h = digest[7];
u64 w0_t = w0[0];
u64 w1_t = w0[1];
u64 w2_t = w0[2];
u64 w3_t = w0[3];
u64 w4_t = w1[0];
u64 w5_t = w1[1];
u64 w6_t = w1[2];
u64 w7_t = w1[3];
u64 w8_t = w2[0];
u64 w9_t = w2[1];
u64 wa_t = w2[2];
u64 wb_t = w2[3];
u64 wc_t = w3[0];
u64 wd_t = w3[1];
u64 we_t = w3[2];
u64 wf_t = w3[3];
#define ROUND_EXPAND() \
{ \
w0_t = SHA512_EXPAND (we_t, w9_t, w1_t, w0_t); \
w1_t = SHA512_EXPAND (wf_t, wa_t, w2_t, w1_t); \
w2_t = SHA512_EXPAND (w0_t, wb_t, w3_t, w2_t); \
w3_t = SHA512_EXPAND (w1_t, wc_t, w4_t, w3_t); \
w4_t = SHA512_EXPAND (w2_t, wd_t, w5_t, w4_t); \
w5_t = SHA512_EXPAND (w3_t, we_t, w6_t, w5_t); \
w6_t = SHA512_EXPAND (w4_t, wf_t, w7_t, w6_t); \
w7_t = SHA512_EXPAND (w5_t, w0_t, w8_t, w7_t); \
w8_t = SHA512_EXPAND (w6_t, w1_t, w9_t, w8_t); \
w9_t = SHA512_EXPAND (w7_t, w2_t, wa_t, w9_t); \
wa_t = SHA512_EXPAND (w8_t, w3_t, wb_t, wa_t); \
wb_t = SHA512_EXPAND (w9_t, w4_t, wc_t, wb_t); \
wc_t = SHA512_EXPAND (wa_t, w5_t, wd_t, wc_t); \
wd_t = SHA512_EXPAND (wb_t, w6_t, we_t, wd_t); \
we_t = SHA512_EXPAND (wc_t, w7_t, wf_t, we_t); \
wf_t = SHA512_EXPAND (wd_t, w8_t, w0_t, wf_t); \
}
#define ROUND_STEP(i) \
{ \
SHA512_STEP (SHA512_F0o, SHA512_F1o, a, b, c, d, e, f, g, h, w0_t, k_sha512[i + 0]); \
SHA512_STEP (SHA512_F0o, SHA512_F1o, h, a, b, c, d, e, f, g, w1_t, k_sha512[i + 1]); \
SHA512_STEP (SHA512_F0o, SHA512_F1o, g, h, a, b, c, d, e, f, w2_t, k_sha512[i + 2]); \
SHA512_STEP (SHA512_F0o, SHA512_F1o, f, g, h, a, b, c, d, e, w3_t, k_sha512[i + 3]); \
SHA512_STEP (SHA512_F0o, SHA512_F1o, e, f, g, h, a, b, c, d, w4_t, k_sha512[i + 4]); \
SHA512_STEP (SHA512_F0o, SHA512_F1o, d, e, f, g, h, a, b, c, w5_t, k_sha512[i + 5]); \
SHA512_STEP (SHA512_F0o, SHA512_F1o, c, d, e, f, g, h, a, b, w6_t, k_sha512[i + 6]); \
SHA512_STEP (SHA512_F0o, SHA512_F1o, b, c, d, e, f, g, h, a, w7_t, k_sha512[i + 7]); \
SHA512_STEP (SHA512_F0o, SHA512_F1o, a, b, c, d, e, f, g, h, w8_t, k_sha512[i + 8]); \
SHA512_STEP (SHA512_F0o, SHA512_F1o, h, a, b, c, d, e, f, g, w9_t, k_sha512[i + 9]); \
SHA512_STEP (SHA512_F0o, SHA512_F1o, g, h, a, b, c, d, e, f, wa_t, k_sha512[i + 10]); \
SHA512_STEP (SHA512_F0o, SHA512_F1o, f, g, h, a, b, c, d, e, wb_t, k_sha512[i + 11]); \
SHA512_STEP (SHA512_F0o, SHA512_F1o, e, f, g, h, a, b, c, d, wc_t, k_sha512[i + 12]); \
SHA512_STEP (SHA512_F0o, SHA512_F1o, d, e, f, g, h, a, b, c, wd_t, k_sha512[i + 13]); \
SHA512_STEP (SHA512_F0o, SHA512_F1o, c, d, e, f, g, h, a, b, we_t, k_sha512[i + 14]); \
SHA512_STEP (SHA512_F0o, SHA512_F1o, b, c, d, e, f, g, h, a, wf_t, k_sha512[i + 15]); \
}
ROUND_STEP (0);
#ifdef _unroll
#pragma unroll
#endif
for (int i = 16; i < 80; i += 16)
{
ROUND_EXPAND (); ROUND_STEP (i);
}
digest[0] += a;
digest[1] += b;
digest[2] += c;
digest[3] += d;
digest[4] += e;
digest[5] += f;
digest[6] += g;
digest[7] += h;
}
void hmac_sha512_pad (u64 w0[4], u64 w1[4], u64 w2[4], u64 w3[4], u64 ipad[8], u64 opad[8])
{
w0[0] = w0[0] ^ 0x3636363636363636;
w0[1] = w0[1] ^ 0x3636363636363636;
w0[2] = w0[2] ^ 0x3636363636363636;
w0[3] = w0[3] ^ 0x3636363636363636;
w1[0] = w1[0] ^ 0x3636363636363636;
w1[1] = w1[1] ^ 0x3636363636363636;
w1[2] = w1[2] ^ 0x3636363636363636;
w1[3] = w1[3] ^ 0x3636363636363636;
w2[0] = w2[0] ^ 0x3636363636363636;
w2[1] = w2[1] ^ 0x3636363636363636;
w2[2] = w2[2] ^ 0x3636363636363636;
w2[3] = w2[3] ^ 0x3636363636363636;
w3[0] = w3[0] ^ 0x3636363636363636;
w3[1] = w3[1] ^ 0x3636363636363636;
w3[2] = w3[2] ^ 0x3636363636363636;
w3[3] = w3[3] ^ 0x3636363636363636;
ipad[0] = SHA512M_A;
ipad[1] = SHA512M_B;
ipad[2] = SHA512M_C;
ipad[3] = SHA512M_D;
ipad[4] = SHA512M_E;
ipad[5] = SHA512M_F;
ipad[6] = SHA512M_G;
ipad[7] = SHA512M_H;
sha512_transform (w0, w1, w2, w3, ipad);
w0[0] = w0[0] ^ 0x6a6a6a6a6a6a6a6a;
w0[1] = w0[1] ^ 0x6a6a6a6a6a6a6a6a;
w0[2] = w0[2] ^ 0x6a6a6a6a6a6a6a6a;
w0[3] = w0[3] ^ 0x6a6a6a6a6a6a6a6a;
w1[0] = w1[0] ^ 0x6a6a6a6a6a6a6a6a;
w1[1] = w1[1] ^ 0x6a6a6a6a6a6a6a6a;
w1[2] = w1[2] ^ 0x6a6a6a6a6a6a6a6a;
w1[3] = w1[3] ^ 0x6a6a6a6a6a6a6a6a;
w2[0] = w2[0] ^ 0x6a6a6a6a6a6a6a6a;
w2[1] = w2[1] ^ 0x6a6a6a6a6a6a6a6a;
w2[2] = w2[2] ^ 0x6a6a6a6a6a6a6a6a;
w2[3] = w2[3] ^ 0x6a6a6a6a6a6a6a6a;
w3[0] = w3[0] ^ 0x6a6a6a6a6a6a6a6a;
w3[1] = w3[1] ^ 0x6a6a6a6a6a6a6a6a;
w3[2] = w3[2] ^ 0x6a6a6a6a6a6a6a6a;
w3[3] = w3[3] ^ 0x6a6a6a6a6a6a6a6a;
opad[0] = SHA512M_A;
opad[1] = SHA512M_B;
opad[2] = SHA512M_C;
opad[3] = SHA512M_D;
opad[4] = SHA512M_E;
opad[5] = SHA512M_F;
opad[6] = SHA512M_G;
opad[7] = SHA512M_H;
sha512_transform (w0, w1, w2, w3, opad);
}
void hmac_sha512_run (u64 w0[4], u64 w1[4], u64 w2[4], u64 w3[4], u64 ipad[8], u64 opad[8], u64 digest[8])
void hmac_sha512_run_V (u32x w0[4], u32x w1[4], u32x w2[4], u32x w3[4], u32x w4[4], u32x w5[4], u32x w6[4], u32x w7[4], u64x ipad[8], u64x opad[8], u64x digest[8])
{
digest[0] = ipad[0];
digest[1] = ipad[1];
@ -194,24 +27,40 @@ void hmac_sha512_run (u64 w0[4], u64 w1[4], u64 w2[4], u64 w3[4], u64 ipad[8], u
digest[6] = ipad[6];
digest[7] = ipad[7];
sha512_transform (w0, w1, w2, w3, digest);
sha512_transform_vector (w0, w1, w2, w3, w4, w5, w6, w7, digest);
w0[0] = digest[0];
w0[1] = digest[1];
w0[2] = digest[2];
w0[3] = digest[3];
w1[0] = digest[4];
w1[1] = digest[5];
w1[2] = digest[6];
w1[3] = digest[7];
w2[0] = 0x8000000000000000;
w2[1] = 0;
w2[2] = 0;
w2[3] = 0;
w3[0] = 0;
w3[1] = 0;
w3[2] = 0;
w3[3] = (128 + 64) * 8;
w0[0] = h32_from_64 (digest[0]);
w0[1] = l32_from_64 (digest[0]);
w0[2] = h32_from_64 (digest[1]);
w0[3] = l32_from_64 (digest[1]);
w1[0] = h32_from_64 (digest[2]);
w1[1] = l32_from_64 (digest[2]);
w1[2] = h32_from_64 (digest[3]);
w1[3] = l32_from_64 (digest[3]);
w2[0] = h32_from_64 (digest[4]);
w2[1] = l32_from_64 (digest[4]);
w2[2] = h32_from_64 (digest[5]);
w2[3] = l32_from_64 (digest[5]);
w3[0] = h32_from_64 (digest[6]);
w3[1] = l32_from_64 (digest[6]);
w3[2] = h32_from_64 (digest[7]);
w3[3] = l32_from_64 (digest[7]);
w4[0] = 0x80000000;
w4[1] = 0;
w4[2] = 0;
w4[3] = 0;
w5[0] = 0;
w5[1] = 0;
w5[2] = 0;
w5[3] = 0;
w6[0] = 0;
w6[1] = 0;
w6[2] = 0;
w6[3] = 0;
w7[0] = 0;
w7[1] = 0;
w7[2] = 0;
w7[3] = (128 + 64) * 8;
digest[0] = opad[0];
digest[1] = opad[1];
@ -222,63 +71,7 @@ void hmac_sha512_run (u64 w0[4], u64 w1[4], u64 w2[4], u64 w3[4], u64 ipad[8], u
digest[6] = opad[6];
digest[7] = opad[7];
sha512_transform (w0, w1, w2, w3, digest);
}
void hmac_sha512_run_x (u64 ipad[8], u64 opad[8], u64 digest[8])
{
u64 w0[4];
u64 w1[4];
u64 w2[4];
u64 w3[4];
w0[0] = digest[0];
w0[1] = digest[1];
w0[2] = digest[2];
w0[3] = digest[3];
w1[0] = digest[4];
w1[1] = digest[5];
w1[2] = digest[6];
w1[3] = digest[7];
w2[0] = 0x8000000000000000;
w2[1] = 0;
w2[2] = 0;
w2[3] = 0;
w3[0] = 0;
w3[1] = 0;
w3[2] = 0;
w3[3] = (128 + 64) * 8;
digest[0] = ipad[0];
digest[1] = ipad[1];
digest[2] = ipad[2];
digest[3] = ipad[3];
digest[4] = ipad[4];
digest[5] = ipad[5];
digest[6] = ipad[6];
digest[7] = ipad[7];
sha512_transform (w0, w1, w2, w3, digest);
w0[0] = digest[0];
w0[1] = digest[1];
w0[2] = digest[2];
w0[3] = digest[3];
w1[0] = digest[4];
w1[1] = digest[5];
w1[2] = digest[6];
w1[3] = digest[7];
digest[0] = opad[0];
digest[1] = opad[1];
digest[2] = opad[2];
digest[3] = opad[3];
digest[4] = opad[4];
digest[5] = opad[5];
digest[6] = opad[6];
digest[7] = opad[7];
sha512_transform (w0, w1, w2, w3, digest);
sha512_transform_vector (w0, w1, w2, w3, w4, w5, w6, w7, digest);
}
__kernel void m06500_init (__global pw_t *pws, __global const kernel_rule_t *rules_buf, __global const pw_t *combs_buf, __global const bf_t *bfs_buf, __global sha512aix_tmp_t *tmps, __global void *hooks, __global const u32 *bitmaps_buf_s1_a, __global const u32 *bitmaps_buf_s1_b, __global const u32 *bitmaps_buf_s1_c, __global const u32 *bitmaps_buf_s1_d, __global const u32 *bitmaps_buf_s2_a, __global const u32 *bitmaps_buf_s2_b, __global const u32 *bitmaps_buf_s2_c, __global const u32 *bitmaps_buf_s2_d, __global plain_t *plains_buf, __global const digest_t *digests_buf, __global u32 *hashes_shown, __global const salt_t *salt_bufs, __global wpa_t *wpa_bufs, __global u32 *d_return_buf, __global u32 *d_scryptV0_buf, __global u32 *d_scryptV1_buf, __global u32 *d_scryptV2_buf, __global u32 *d_scryptV3_buf, const u32 bitmap_mask, const u32 bitmap_shift1, const u32 bitmap_shift2, const u32 salt_pos, const u32 loop_pos, const u32 loop_cnt, const u32 il_cnt, const u32 digests_cnt, const u32 digests_offset, const u32 combs_mode, const u32 gid_max)
@ -292,254 +85,289 @@ __kernel void m06500_init (__global pw_t *pws, __global const kernel_rule_t *rul
if (gid >= gid_max) return;
u32 w0[4];
u32 w1[4];
u32 w2[4];
u32 w3[4];
u32 w4[4];
u32 w5[4];
u32 w6[4];
u32 w7[4];
w0[0] = pws[gid].i[ 0];
w0[1] = pws[gid].i[ 1];
w0[2] = pws[gid].i[ 2];
w0[3] = pws[gid].i[ 3];
u32 w1[4];
w1[0] = pws[gid].i[ 4];
w1[1] = pws[gid].i[ 5];
w1[2] = pws[gid].i[ 6];
w1[3] = pws[gid].i[ 7];
u32 w2[4];
w2[0] = pws[gid].i[ 8];
w2[1] = pws[gid].i[ 9];
w2[2] = pws[gid].i[10];
w2[3] = pws[gid].i[11];
u32 w3[4];
w3[0] = pws[gid].i[12];
w3[1] = pws[gid].i[13];
w3[2] = pws[gid].i[14];
w3[3] = pws[gid].i[15];
w4[0] = pws[gid].i[16];
w4[1] = pws[gid].i[17];
w4[2] = pws[gid].i[18];
w4[3] = pws[gid].i[19];
w5[0] = pws[gid].i[20];
w5[1] = pws[gid].i[21];
w5[2] = pws[gid].i[22];
w5[3] = pws[gid].i[23];
w6[0] = pws[gid].i[24];
w6[1] = pws[gid].i[25];
w6[2] = pws[gid].i[26];
w6[3] = pws[gid].i[27];
w7[0] = pws[gid].i[28];
w7[1] = pws[gid].i[29];
w7[2] = pws[gid].i[30];
w7[3] = pws[gid].i[31];
/**
* salt
*/
w0[0] = swap32_S (w0[0]);
w0[1] = swap32_S (w0[1]);
w0[2] = swap32_S (w0[2]);
w0[3] = swap32_S (w0[3]);
w1[0] = swap32_S (w1[0]);
w1[1] = swap32_S (w1[1]);
w1[2] = swap32_S (w1[2]);
w1[3] = swap32_S (w1[3]);
w2[0] = swap32_S (w2[0]);
w2[1] = swap32_S (w2[1]);
w2[2] = swap32_S (w2[2]);
w2[3] = swap32_S (w2[3]);
w3[0] = swap32_S (w3[0]);
w3[1] = swap32_S (w3[1]);
w3[2] = swap32_S (w3[2]);
w3[3] = swap32_S (w3[3]);
w4[0] = swap32_S (w4[0]);
w4[1] = swap32_S (w4[1]);
w4[2] = swap32_S (w4[2]);
w4[3] = swap32_S (w4[3]);
w5[0] = swap32_S (w5[0]);
w5[1] = swap32_S (w5[1]);
w5[2] = swap32_S (w5[2]);
w5[3] = swap32_S (w5[3]);
w6[0] = swap32_S (w6[0]);
w6[1] = swap32_S (w6[1]);
w6[2] = swap32_S (w6[2]);
w6[3] = swap32_S (w6[3]);
w7[0] = swap32_S (w7[0]);
w7[1] = swap32_S (w7[1]);
w7[2] = swap32_S (w7[2]);
w7[3] = swap32_S (w7[3]);
u32 salt_len = salt_bufs[salt_pos].salt_len;
sha512_hmac_ctx_t sha512_hmac_ctx;
u32 salt_buf0[4];
sha512_hmac_init (&sha512_hmac_ctx, w0, w1, w2, w3, w5, w5, w6, w7);
salt_buf0[0] = salt_bufs[salt_pos].salt_buf[ 0];
salt_buf0[1] = salt_bufs[salt_pos].salt_buf[ 1];
salt_buf0[2] = salt_bufs[salt_pos].salt_buf[ 2];
salt_buf0[3] = salt_bufs[salt_pos].salt_buf[ 3];
tmps[gid].ipad[0] = sha512_hmac_ctx.ipad.h[0];
tmps[gid].ipad[1] = sha512_hmac_ctx.ipad.h[1];
tmps[gid].ipad[2] = sha512_hmac_ctx.ipad.h[2];
tmps[gid].ipad[3] = sha512_hmac_ctx.ipad.h[3];
tmps[gid].ipad[4] = sha512_hmac_ctx.ipad.h[4];
tmps[gid].ipad[5] = sha512_hmac_ctx.ipad.h[5];
tmps[gid].ipad[6] = sha512_hmac_ctx.ipad.h[6];
tmps[gid].ipad[7] = sha512_hmac_ctx.ipad.h[7];
u32 salt_buf1[4];
tmps[gid].opad[0] = sha512_hmac_ctx.opad.h[0];
tmps[gid].opad[1] = sha512_hmac_ctx.opad.h[1];
tmps[gid].opad[2] = sha512_hmac_ctx.opad.h[2];
tmps[gid].opad[3] = sha512_hmac_ctx.opad.h[3];
tmps[gid].opad[4] = sha512_hmac_ctx.opad.h[4];
tmps[gid].opad[5] = sha512_hmac_ctx.opad.h[5];
tmps[gid].opad[6] = sha512_hmac_ctx.opad.h[6];
tmps[gid].opad[7] = sha512_hmac_ctx.opad.h[7];
salt_buf1[0] = salt_bufs[salt_pos].salt_buf[ 4];
salt_buf1[1] = salt_bufs[salt_pos].salt_buf[ 5];
salt_buf1[2] = salt_bufs[salt_pos].salt_buf[ 6];
salt_buf1[3] = salt_bufs[salt_pos].salt_buf[ 7];
sha512_hmac_update_global_swap (&sha512_hmac_ctx, salt_bufs[salt_pos].salt_buf, salt_bufs[salt_pos].salt_len);
u32 salt_buf2[4];
for (u32 i = 0, j = 1; i < 8; i += 8, j += 1)
{
sha512_hmac_ctx_t sha512_hmac_ctx2 = sha512_hmac_ctx;
salt_buf2[0] = salt_bufs[salt_pos].salt_buf[ 8];
salt_buf2[1] = salt_bufs[salt_pos].salt_buf[ 9];
salt_buf2[2] = salt_bufs[salt_pos].salt_buf[10];
salt_buf2[3] = salt_bufs[salt_pos].salt_buf[11];
w0[0] = j;
w0[1] = 0;
w0[2] = 0;
w0[3] = 0;
w1[0] = 0;
w1[1] = 0;
w1[2] = 0;
w1[3] = 0;
w2[0] = 0;
w2[1] = 0;
w2[2] = 0;
w2[3] = 0;
w3[0] = 0;
w3[1] = 0;
w3[2] = 0;
w3[3] = 0;
w4[0] = 0;
w4[1] = 0;
w4[2] = 0;
w4[3] = 0;
w5[0] = 0;
w5[1] = 0;
w5[2] = 0;
w5[3] = 0;
w6[0] = 0;
w6[1] = 0;
w6[2] = 0;
w6[3] = 0;
w7[0] = 0;
w7[1] = 0;
w7[2] = 0;
w7[3] = 0;
u32 salt_buf3[4];
sha512_hmac_update_128 (&sha512_hmac_ctx2, w0, w1, w2, w3, w4, w5, w6, w7, 4);
salt_buf3[0] = 0;
salt_buf3[1] = 0;
salt_buf3[2] = 0;
salt_buf3[3] = 0;
sha512_hmac_final (&sha512_hmac_ctx2);
append_0x01_4x4 (salt_buf0, salt_buf1, salt_buf2, salt_buf3, salt_len + 3);
tmps[gid].dgst[i + 0] = sha512_hmac_ctx2.opad.h[0];
tmps[gid].dgst[i + 1] = sha512_hmac_ctx2.opad.h[1];
tmps[gid].dgst[i + 2] = sha512_hmac_ctx2.opad.h[2];
tmps[gid].dgst[i + 3] = sha512_hmac_ctx2.opad.h[3];
tmps[gid].dgst[i + 4] = sha512_hmac_ctx2.opad.h[4];
tmps[gid].dgst[i + 5] = sha512_hmac_ctx2.opad.h[5];
tmps[gid].dgst[i + 6] = sha512_hmac_ctx2.opad.h[6];
tmps[gid].dgst[i + 7] = sha512_hmac_ctx2.opad.h[7];
append_0x80_4x4 (salt_buf0, salt_buf1, salt_buf2, salt_buf3, salt_len + 4);
/**
* pads
*/
w0[0] = swap32 (w0[0]);
w0[1] = swap32 (w0[1]);
w0[2] = swap32 (w0[2]);
w0[3] = swap32 (w0[3]);
w1[0] = swap32 (w1[0]);
w1[1] = swap32 (w1[1]);
w1[2] = swap32 (w1[2]);
w1[3] = swap32 (w1[3]);
w2[0] = swap32 (w2[0]);
w2[1] = swap32 (w2[1]);
w2[2] = swap32 (w2[2]);
w2[3] = swap32 (w2[3]);
w3[0] = swap32 (w3[0]);
w3[1] = swap32 (w3[1]);
w3[2] = swap32 (w3[2]);
w3[3] = swap32 (w3[3]);
u64 w0l[4];
u64 w1l[4];
u64 w2l[4];
u64 w3l[4];
w0l[0] = (u64) (w0[0]) << 32 | (u64) (w0[1]);
w0l[1] = (u64) (w0[2]) << 32 | (u64) (w0[3]);
w0l[2] = (u64) (w1[0]) << 32 | (u64) (w1[1]);
w0l[3] = (u64) (w1[2]) << 32 | (u64) (w1[3]);
w1l[0] = (u64) (w2[0]) << 32 | (u64) (w2[1]);
w1l[1] = (u64) (w2[2]) << 32 | (u64) (w2[3]);
w1l[2] = (u64) (w3[0]) << 32 | (u64) (w3[1]);
w1l[3] = (u64) (w3[2]) << 32 | (u64) (w3[3]);
w2l[0] = 0;
w2l[1] = 0;
w2l[2] = 0;
w2l[3] = 0;
w3l[0] = 0;
w3l[1] = 0;
w3l[2] = 0;
w3l[3] = 0;
u64 ipad[8];
u64 opad[8];
hmac_sha512_pad (w0l, w1l, w2l, w3l, ipad, opad);
tmps[gid].ipad[0] = ipad[0];
tmps[gid].ipad[1] = ipad[1];
tmps[gid].ipad[2] = ipad[2];
tmps[gid].ipad[3] = ipad[3];
tmps[gid].ipad[4] = ipad[4];
tmps[gid].ipad[5] = ipad[5];
tmps[gid].ipad[6] = ipad[6];
tmps[gid].ipad[7] = ipad[7];
tmps[gid].opad[0] = opad[0];
tmps[gid].opad[1] = opad[1];
tmps[gid].opad[2] = opad[2];
tmps[gid].opad[3] = opad[3];
tmps[gid].opad[4] = opad[4];
tmps[gid].opad[5] = opad[5];
tmps[gid].opad[6] = opad[6];
tmps[gid].opad[7] = opad[7];
w0l[0] = (u64) salt_buf0[1] << 32 | (u64) salt_buf0[0];
w0l[1] = (u64) salt_buf0[3] << 32 | (u64) salt_buf0[2];
w0l[2] = (u64) salt_buf1[1] << 32 | (u64) salt_buf1[0];
w0l[3] = (u64) salt_buf1[3] << 32 | (u64) salt_buf1[2];
w1l[0] = (u64) salt_buf2[1] << 32 | (u64) salt_buf2[0];
w1l[1] = (u64) salt_buf2[3] << 32 | (u64) salt_buf2[2];
w1l[2] = (u64) salt_buf3[1] << 32 | (u64) salt_buf3[0];
w1l[3] = (u64) salt_buf3[3] << 32 | (u64) salt_buf3[2];
w2l[0] = 0;
w2l[1] = 0;
w2l[2] = 0;
w2l[3] = 0;
w3l[0] = 0;
w3l[1] = 0;
w3l[2] = 0;
w3l[3] = 0;
w0l[0] = swap64 (w0l[0]);
w0l[1] = swap64 (w0l[1]);
w0l[2] = swap64 (w0l[2]);
w0l[3] = swap64 (w0l[3]);
w1l[0] = swap64 (w1l[0]);
w1l[1] = swap64 (w1l[1]);
w1l[2] = swap64 (w1l[2]);
w1l[3] = swap64 (w1l[3]);
w2l[0] = 0;
w2l[1] = 0;
w2l[2] = 0;
w2l[3] = 0;
w3l[0] = 0;
w3l[1] = 0;
w3l[2] = 0;
w3l[3] = (128 + salt_len + 4) * 8;
u64 dgst[8];
hmac_sha512_run (w0l, w1l, w2l, w3l, ipad, opad, dgst);
tmps[gid].dgst[0] = dgst[0];
tmps[gid].dgst[1] = dgst[1];
tmps[gid].dgst[2] = dgst[2];
tmps[gid].dgst[3] = dgst[3];
tmps[gid].dgst[4] = dgst[4];
tmps[gid].dgst[5] = dgst[5];
tmps[gid].dgst[6] = dgst[6];
tmps[gid].dgst[7] = dgst[7];
tmps[gid].out[0] = dgst[0];
tmps[gid].out[1] = dgst[1];
tmps[gid].out[2] = dgst[2];
tmps[gid].out[3] = dgst[3];
tmps[gid].out[4] = dgst[4];
tmps[gid].out[5] = dgst[5];
tmps[gid].out[6] = dgst[6];
tmps[gid].out[7] = dgst[7];
tmps[gid].out[i + 0] = tmps[gid].dgst[i + 0];
tmps[gid].out[i + 1] = tmps[gid].dgst[i + 1];
tmps[gid].out[i + 2] = tmps[gid].dgst[i + 2];
tmps[gid].out[i + 3] = tmps[gid].dgst[i + 3];
tmps[gid].out[i + 4] = tmps[gid].dgst[i + 4];
tmps[gid].out[i + 5] = tmps[gid].dgst[i + 5];
tmps[gid].out[i + 6] = tmps[gid].dgst[i + 6];
tmps[gid].out[i + 7] = tmps[gid].dgst[i + 7];
}
}
__kernel void m06500_loop (__global pw_t *pws, __global const kernel_rule_t *rules_buf, __global const pw_t *combs_buf, __global const bf_t *bfs_buf, __global sha512aix_tmp_t *tmps, __global void *hooks, __global const u32 *bitmaps_buf_s1_a, __global const u32 *bitmaps_buf_s1_b, __global const u32 *bitmaps_buf_s1_c, __global const u32 *bitmaps_buf_s1_d, __global const u32 *bitmaps_buf_s2_a, __global const u32 *bitmaps_buf_s2_b, __global const u32 *bitmaps_buf_s2_c, __global const u32 *bitmaps_buf_s2_d, __global plain_t *plains_buf, __global const digest_t *digests_buf, __global u32 *hashes_shown, __global const salt_t *salt_bufs, __global wpa_t *wpa_bufs, __global u32 *d_return_buf, __global u32 *d_scryptV0_buf, __global u32 *d_scryptV1_buf, __global u32 *d_scryptV2_buf, __global u32 *d_scryptV3_buf, const u32 bitmap_mask, const u32 bitmap_shift1, const u32 bitmap_shift2, const u32 salt_pos, const u32 loop_pos, const u32 loop_cnt, const u32 il_cnt, const u32 digests_cnt, const u32 digests_offset, const u32 combs_mode, const u32 gid_max)
{
const u32 gid = get_global_id (0);
if (gid >= gid_max) return;
if ((gid * VECT_SIZE) >= gid_max) return;
u64 ipad[8];
u64 opad[8];
u64x ipad[8];
u64x opad[8];
ipad[0] = tmps[gid].ipad[0];
ipad[1] = tmps[gid].ipad[1];
ipad[2] = tmps[gid].ipad[2];
ipad[3] = tmps[gid].ipad[3];
ipad[4] = tmps[gid].ipad[4];
ipad[5] = tmps[gid].ipad[5];
ipad[6] = tmps[gid].ipad[6];
ipad[7] = tmps[gid].ipad[7];
ipad[0] = pack64v (tmps, ipad, gid, 0);
ipad[1] = pack64v (tmps, ipad, gid, 1);
ipad[2] = pack64v (tmps, ipad, gid, 2);
ipad[3] = pack64v (tmps, ipad, gid, 3);
ipad[4] = pack64v (tmps, ipad, gid, 4);
ipad[5] = pack64v (tmps, ipad, gid, 5);
ipad[6] = pack64v (tmps, ipad, gid, 6);
ipad[7] = pack64v (tmps, ipad, gid, 7);
opad[0] = tmps[gid].opad[0];
opad[1] = tmps[gid].opad[1];
opad[2] = tmps[gid].opad[2];
opad[3] = tmps[gid].opad[3];
opad[4] = tmps[gid].opad[4];
opad[5] = tmps[gid].opad[5];
opad[6] = tmps[gid].opad[6];
opad[7] = tmps[gid].opad[7];
opad[0] = pack64v (tmps, opad, gid, 0);
opad[1] = pack64v (tmps, opad, gid, 1);
opad[2] = pack64v (tmps, opad, gid, 2);
opad[3] = pack64v (tmps, opad, gid, 3);
opad[4] = pack64v (tmps, opad, gid, 4);
opad[5] = pack64v (tmps, opad, gid, 5);
opad[6] = pack64v (tmps, opad, gid, 6);
opad[7] = pack64v (tmps, opad, gid, 7);
u64 dgst[8];
dgst[0] = tmps[gid].dgst[0];
dgst[1] = tmps[gid].dgst[1];
dgst[2] = tmps[gid].dgst[2];
dgst[3] = tmps[gid].dgst[3];
dgst[4] = tmps[gid].dgst[4];
dgst[5] = tmps[gid].dgst[5];
dgst[6] = tmps[gid].dgst[6];
dgst[7] = tmps[gid].dgst[7];
for (u32 j = 0; j < loop_cnt; j++)
for (u32 i = 0; i < 8; i += 8)
{
hmac_sha512_run_x (ipad, opad, dgst);
u64x dgst[8];
u64x out[8];
tmps[gid].out[0] ^= dgst[0];
tmps[gid].out[1] ^= dgst[1];
tmps[gid].out[2] ^= dgst[2];
tmps[gid].out[3] ^= dgst[3];
tmps[gid].out[4] ^= dgst[4];
tmps[gid].out[5] ^= dgst[5];
tmps[gid].out[6] ^= dgst[6];
tmps[gid].out[7] ^= dgst[7];
dgst[0] = pack64v (tmps, dgst, gid, i + 0);
dgst[1] = pack64v (tmps, dgst, gid, i + 1);
dgst[2] = pack64v (tmps, dgst, gid, i + 2);
dgst[3] = pack64v (tmps, dgst, gid, i + 3);
dgst[4] = pack64v (tmps, dgst, gid, i + 4);
dgst[5] = pack64v (tmps, dgst, gid, i + 5);
dgst[6] = pack64v (tmps, dgst, gid, i + 6);
dgst[7] = pack64v (tmps, dgst, gid, i + 7);
out[0] = pack64v (tmps, out, gid, i + 0);
out[1] = pack64v (tmps, out, gid, i + 1);
out[2] = pack64v (tmps, out, gid, i + 2);
out[3] = pack64v (tmps, out, gid, i + 3);
out[4] = pack64v (tmps, out, gid, i + 4);
out[5] = pack64v (tmps, out, gid, i + 5);
out[6] = pack64v (tmps, out, gid, i + 6);
out[7] = pack64v (tmps, out, gid, i + 7);
for (u32 j = 0; j < loop_cnt; j++)
{
u32x w0[4];
u32x w1[4];
u32x w2[4];
u32x w3[4];
u32x w4[4];
u32x w5[4];
u32x w6[4];
u32x w7[4];
w0[0] = h32_from_64 (dgst[0]);
w0[1] = l32_from_64 (dgst[0]);
w0[2] = h32_from_64 (dgst[1]);
w0[3] = l32_from_64 (dgst[1]);
w1[0] = h32_from_64 (dgst[2]);
w1[1] = l32_from_64 (dgst[2]);
w1[2] = h32_from_64 (dgst[3]);
w1[3] = l32_from_64 (dgst[3]);
w2[0] = h32_from_64 (dgst[4]);
w2[1] = l32_from_64 (dgst[4]);
w2[2] = h32_from_64 (dgst[5]);
w2[3] = l32_from_64 (dgst[5]);
w3[0] = h32_from_64 (dgst[6]);
w3[1] = l32_from_64 (dgst[6]);
w3[2] = h32_from_64 (dgst[7]);
w3[3] = l32_from_64 (dgst[7]);
w4[0] = 0x80000000;
w4[1] = 0;
w4[2] = 0;
w4[3] = 0;
w5[0] = 0;
w5[1] = 0;
w5[2] = 0;
w5[3] = 0;
w6[0] = 0;
w6[1] = 0;
w6[2] = 0;
w6[3] = 0;
w7[0] = 0;
w7[1] = 0;
w7[2] = 0;
w7[3] = (128 + 64) * 8;
hmac_sha512_run_V (w0, w1, w2, w3, w4, w5, w6, w7, ipad, opad, dgst);
out[0] ^= dgst[0];
out[1] ^= dgst[1];
out[2] ^= dgst[2];
out[3] ^= dgst[3];
out[4] ^= dgst[4];
out[5] ^= dgst[5];
out[6] ^= dgst[6];
out[7] ^= dgst[7];
}
unpack64v (tmps, dgst, gid, i + 0, dgst[0]);
unpack64v (tmps, dgst, gid, i + 1, dgst[1]);
unpack64v (tmps, dgst, gid, i + 2, dgst[2]);
unpack64v (tmps, dgst, gid, i + 3, dgst[3]);
unpack64v (tmps, dgst, gid, i + 4, dgst[4]);
unpack64v (tmps, dgst, gid, i + 5, dgst[5]);
unpack64v (tmps, dgst, gid, i + 6, dgst[6]);
unpack64v (tmps, dgst, gid, i + 7, dgst[7]);
unpack64v (tmps, out, gid, i + 0, out[0]);
unpack64v (tmps, out, gid, i + 1, out[1]);
unpack64v (tmps, out, gid, i + 2, out[2]);
unpack64v (tmps, out, gid, i + 3, out[3]);
unpack64v (tmps, out, gid, i + 4, out[4]);
unpack64v (tmps, out, gid, i + 5, out[5]);
unpack64v (tmps, out, gid, i + 6, out[6]);
unpack64v (tmps, out, gid, i + 7, out[7]);
}
tmps[gid].dgst[0] = dgst[0];
tmps[gid].dgst[1] = dgst[1];
tmps[gid].dgst[2] = dgst[2];
tmps[gid].dgst[3] = dgst[3];
tmps[gid].dgst[4] = dgst[4];
tmps[gid].dgst[5] = dgst[5];
tmps[gid].dgst[6] = dgst[6];
tmps[gid].dgst[7] = dgst[7];
}
__kernel void m06500_comp (__global pw_t *pws, __global const kernel_rule_t *rules_buf, __global const pw_t *combs_buf, __global const bf_t *bfs_buf, __global sha512aix_tmp_t *tmps, __global void *hooks, __global const u32 *bitmaps_buf_s1_a, __global const u32 *bitmaps_buf_s1_b, __global const u32 *bitmaps_buf_s1_c, __global const u32 *bitmaps_buf_s1_d, __global const u32 *bitmaps_buf_s2_a, __global const u32 *bitmaps_buf_s2_b, __global const u32 *bitmaps_buf_s2_c, __global const u32 *bitmaps_buf_s2_d, __global plain_t *plains_buf, __global const digest_t *digests_buf, __global u32 *hashes_shown, __global const salt_t *salt_bufs, __global wpa_t *wpa_bufs, __global u32 *d_return_buf, __global u32 *d_scryptV0_buf, __global u32 *d_scryptV1_buf, __global u32 *d_scryptV2_buf, __global u32 *d_scryptV3_buf, const u32 bitmap_mask, const u32 bitmap_shift1, const u32 bitmap_shift2, const u32 salt_pos, const u32 loop_pos, const u32 loop_cnt, const u32 il_cnt, const u32 digests_cnt, const u32 digests_offset, const u32 combs_mode, const u32 gid_max)
@ -569,10 +397,10 @@ __kernel void m06500_comp (__global pw_t *pws, __global const kernel_rule_t *rul
u64 h = tmps[gid].out[7] & 0xffffffffffffff00;
*/
const u32 r0 = l32_from_64 (tmps[gid].out[0]);
const u32 r1 = h32_from_64 (tmps[gid].out[0]);
const u32 r2 = l32_from_64 (tmps[gid].out[1]);
const u32 r3 = h32_from_64 (tmps[gid].out[1]);
const u32 r0 = l32_from_64_S (tmps[gid].out[0]);
const u32 r1 = h32_from_64_S (tmps[gid].out[0]);
const u32 r2 = l32_from_64_S (tmps[gid].out[1]);
const u32 r3 = h32_from_64_S (tmps[gid].out[1]);
#define il_pos 0

View File

@ -323,7 +323,6 @@ ALIAS_nv_sm50 3 5100 2 A
ALIAS_nv_sm50 3 5300 4 A A
ALIAS_nv_sm50 3 5500 2 A A
ALIAS_nv_sm50 3 5600 4 A A
ALIAS_nv_sm50 3 6500 2 A A
ALIAS_nv_sm50 3 6900 2 A A
ALIAS_nv_sm50 3 8600 2 A A
ALIAS_nv_sm50 3 9900 4 A A

View File

@ -22181,7 +22181,8 @@ int hashconfig_init (hashcat_ctx_t *hashcat_ctx)
hashconfig->kern_type = KERN_TYPE_SHA256AIX;
hashconfig->dgst_size = DGST_SIZE_4_8;
hashconfig->parse_func = sha256aix_parse_hash;
hashconfig->opti_type = OPTI_TYPE_ZERO_BYTE;
hashconfig->opti_type = OPTI_TYPE_ZERO_BYTE
| OPTI_TYPE_SLOW_HASH_SIMD_LOOP;
hashconfig->dgst_pos0 = 0;
hashconfig->dgst_pos1 = 1;
hashconfig->dgst_pos2 = 2;
@ -22198,6 +22199,7 @@ int hashconfig_init (hashcat_ctx_t *hashcat_ctx)
hashconfig->dgst_size = DGST_SIZE_8_8;
hashconfig->parse_func = sha512aix_parse_hash;
hashconfig->opti_type = OPTI_TYPE_ZERO_BYTE
| OPTI_TYPE_SLOW_HASH_SIMD_LOOP
| OPTI_TYPE_USES_BITS_64;
hashconfig->dgst_pos0 = 0;
hashconfig->dgst_pos1 = 1;
@ -24603,33 +24605,35 @@ int hashconfig_init (hashcat_ctx_t *hashcat_ctx)
switch (hashconfig->hash_mode)
{
case 1500: hashconfig->pw_max = 8; // DES max
case 1500: hashconfig->pw_max = 8; // DES max
break;
case 2100: hashconfig->pw_max = 64; // PBKDF2-HMAC-SHA1 max
case 2100: hashconfig->pw_max = 64; // PBKDF2-HMAC-SHA1 max
break;
case 2500: hashconfig->pw_max = 64; // PBKDF2-HMAC-SHA1 max
case 2500: hashconfig->pw_max = 64; // PBKDF2-HMAC-SHA1 max
break;
case 3000: hashconfig->pw_max = 7; // LM half max
case 3000: hashconfig->pw_max = 7; // LM half max
break;
case 3200: hashconfig->pw_max = 72; // bcrypt max
case 3200: hashconfig->pw_max = 72; // bcrypt max
break;
case 6400: hashconfig->pw_max = 64; // PBKDF2-HMAC-SHA256 max
case 6400: hashconfig->pw_max = 64; // PBKDF2-HMAC-SHA256 max
break;
case 8500: hashconfig->pw_max = 8; // DES max
case 6500: hashconfig->pw_max = 128; // PBKDF2-HMAC-SHA512 max
break;
case 8800: hashconfig->pw_max = 64; // PBKDF2-HMAC-SHA1 max
case 8500: hashconfig->pw_max = 8; // DES max
break;
case 9710: hashconfig->pw_max = 5; // RC4-40 max
case 8800: hashconfig->pw_max = 64; // PBKDF2-HMAC-SHA1 max
break;
case 9810: hashconfig->pw_max = 5; // RC4-40 max
case 9710: hashconfig->pw_max = 5; // RC4-40 max
break;
case 10410: hashconfig->pw_max = 5; // RC4-40 max
case 9810: hashconfig->pw_max = 5; // RC4-40 max
break;
case 14000: hashconfig->pw_max = 8; // DES max
case 10410: hashconfig->pw_max = 5; // RC4-40 max
break;
case 14100: hashconfig->pw_max = 24; // 3DES max
case 14000: hashconfig->pw_max = 8; // DES max
break;
case 14900: hashconfig->pw_max = 10; // Skip32 max
case 14100: hashconfig->pw_max = 24; // 3DES max
break;
case 14900: hashconfig->pw_max = 10; // Skip32 max
break;
}