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588 lines
20 KiB
Common Lisp
588 lines
20 KiB
Common Lisp
/**
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* Author......: Jens Steube <jens.steube@gmail.com>
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* License.....: MIT
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*/
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#define _SHA256_
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#include "include/constants.h"
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#include "include/kernel_vendor.h"
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#define DGST_R0 3
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#define DGST_R1 7
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#define DGST_R2 2
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#define DGST_R3 6
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#include "include/kernel_functions.c"
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#include "types_ocl.c"
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#include "common.c"
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#define COMPARE_S "check_single_comp4.c"
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#define COMPARE_M "check_multi_comp4.c"
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__constant u32 k_sha256[64] =
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{
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SHA256C00, SHA256C01, SHA256C02, SHA256C03,
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SHA256C04, SHA256C05, SHA256C06, SHA256C07,
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SHA256C08, SHA256C09, SHA256C0a, SHA256C0b,
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SHA256C0c, SHA256C0d, SHA256C0e, SHA256C0f,
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SHA256C10, SHA256C11, SHA256C12, SHA256C13,
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SHA256C14, SHA256C15, SHA256C16, SHA256C17,
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SHA256C18, SHA256C19, SHA256C1a, SHA256C1b,
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SHA256C1c, SHA256C1d, SHA256C1e, SHA256C1f,
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SHA256C20, SHA256C21, SHA256C22, SHA256C23,
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SHA256C24, SHA256C25, SHA256C26, SHA256C27,
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SHA256C28, SHA256C29, SHA256C2a, SHA256C2b,
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SHA256C2c, SHA256C2d, SHA256C2e, SHA256C2f,
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SHA256C30, SHA256C31, SHA256C32, SHA256C33,
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SHA256C34, SHA256C35, SHA256C36, SHA256C37,
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SHA256C38, SHA256C39, SHA256C3a, SHA256C3b,
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SHA256C3c, SHA256C3d, SHA256C3e, SHA256C3f,
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};
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static void sha256_transform (u32 digest[8], const u32 w[16])
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{
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u32 a = digest[0];
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u32 b = digest[1];
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u32 c = digest[2];
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u32 d = digest[3];
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u32 e = digest[4];
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u32 f = digest[5];
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u32 g = digest[6];
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u32 h = digest[7];
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u32 w0_t = w[ 0];
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u32 w1_t = w[ 1];
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u32 w2_t = w[ 2];
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u32 w3_t = w[ 3];
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u32 w4_t = w[ 4];
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u32 w5_t = w[ 5];
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u32 w6_t = w[ 6];
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u32 w7_t = w[ 7];
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u32 w8_t = w[ 8];
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u32 w9_t = w[ 9];
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u32 wa_t = w[10];
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u32 wb_t = w[11];
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u32 wc_t = w[12];
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u32 wd_t = w[13];
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u32 we_t = w[14];
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u32 wf_t = w[15];
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#define ROUND_EXPAND() \
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{ \
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w0_t = SHA256_EXPAND (we_t, w9_t, w1_t, w0_t); \
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w1_t = SHA256_EXPAND (wf_t, wa_t, w2_t, w1_t); \
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w2_t = SHA256_EXPAND (w0_t, wb_t, w3_t, w2_t); \
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w3_t = SHA256_EXPAND (w1_t, wc_t, w4_t, w3_t); \
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w4_t = SHA256_EXPAND (w2_t, wd_t, w5_t, w4_t); \
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w5_t = SHA256_EXPAND (w3_t, we_t, w6_t, w5_t); \
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w6_t = SHA256_EXPAND (w4_t, wf_t, w7_t, w6_t); \
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w7_t = SHA256_EXPAND (w5_t, w0_t, w8_t, w7_t); \
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w8_t = SHA256_EXPAND (w6_t, w1_t, w9_t, w8_t); \
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w9_t = SHA256_EXPAND (w7_t, w2_t, wa_t, w9_t); \
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wa_t = SHA256_EXPAND (w8_t, w3_t, wb_t, wa_t); \
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wb_t = SHA256_EXPAND (w9_t, w4_t, wc_t, wb_t); \
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wc_t = SHA256_EXPAND (wa_t, w5_t, wd_t, wc_t); \
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wd_t = SHA256_EXPAND (wb_t, w6_t, we_t, wd_t); \
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we_t = SHA256_EXPAND (wc_t, w7_t, wf_t, we_t); \
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wf_t = SHA256_EXPAND (wd_t, w8_t, w0_t, wf_t); \
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}
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#define ROUND_STEP(i) \
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{ \
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SHA256_STEP (SHA256_F0o, SHA256_F1o, a, b, c, d, e, f, g, h, w0_t, k_sha256[i + 0]); \
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SHA256_STEP (SHA256_F0o, SHA256_F1o, h, a, b, c, d, e, f, g, w1_t, k_sha256[i + 1]); \
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SHA256_STEP (SHA256_F0o, SHA256_F1o, g, h, a, b, c, d, e, f, w2_t, k_sha256[i + 2]); \
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SHA256_STEP (SHA256_F0o, SHA256_F1o, f, g, h, a, b, c, d, e, w3_t, k_sha256[i + 3]); \
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SHA256_STEP (SHA256_F0o, SHA256_F1o, e, f, g, h, a, b, c, d, w4_t, k_sha256[i + 4]); \
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SHA256_STEP (SHA256_F0o, SHA256_F1o, d, e, f, g, h, a, b, c, w5_t, k_sha256[i + 5]); \
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SHA256_STEP (SHA256_F0o, SHA256_F1o, c, d, e, f, g, h, a, b, w6_t, k_sha256[i + 6]); \
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SHA256_STEP (SHA256_F0o, SHA256_F1o, b, c, d, e, f, g, h, a, w7_t, k_sha256[i + 7]); \
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SHA256_STEP (SHA256_F0o, SHA256_F1o, a, b, c, d, e, f, g, h, w8_t, k_sha256[i + 8]); \
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SHA256_STEP (SHA256_F0o, SHA256_F1o, h, a, b, c, d, e, f, g, w9_t, k_sha256[i + 9]); \
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SHA256_STEP (SHA256_F0o, SHA256_F1o, g, h, a, b, c, d, e, f, wa_t, k_sha256[i + 10]); \
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SHA256_STEP (SHA256_F0o, SHA256_F1o, f, g, h, a, b, c, d, e, wb_t, k_sha256[i + 11]); \
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SHA256_STEP (SHA256_F0o, SHA256_F1o, e, f, g, h, a, b, c, d, wc_t, k_sha256[i + 12]); \
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SHA256_STEP (SHA256_F0o, SHA256_F1o, d, e, f, g, h, a, b, c, wd_t, k_sha256[i + 13]); \
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SHA256_STEP (SHA256_F0o, SHA256_F1o, c, d, e, f, g, h, a, b, we_t, k_sha256[i + 14]); \
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SHA256_STEP (SHA256_F0o, SHA256_F1o, b, c, d, e, f, g, h, a, wf_t, k_sha256[i + 15]); \
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}
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ROUND_STEP (0);
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#pragma unroll
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for (int i = 16; i < 64; i += 16)
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{
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ROUND_EXPAND (); ROUND_STEP (i);
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}
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digest[0] += a;
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digest[1] += b;
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digest[2] += c;
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digest[3] += d;
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digest[4] += e;
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digest[5] += f;
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digest[6] += g;
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digest[7] += h;
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}
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__kernel void __attribute__((reqd_work_group_size (64, 1, 1))) m08000_m04 (__global pw_t *pws, __global gpu_rule_t *rules_buf, __global comb_t *combs_buf, __global bf_t *bfs_buf, __global void *tmps, __global void *hooks, __global u32 *bitmaps_buf_s1_a, __global u32 *bitmaps_buf_s1_b, __global u32 *bitmaps_buf_s1_c, __global u32 *bitmaps_buf_s1_d, __global u32 *bitmaps_buf_s2_a, __global u32 *bitmaps_buf_s2_b, __global u32 *bitmaps_buf_s2_c, __global u32 *bitmaps_buf_s2_d, __global plain_t *plains_buf, __global digest_t *digests_buf, __global u32 *hashes_shown, __global salt_t *salt_bufs, __global void *esalt_bufs, __global u32 *d_return_buf, __global u32 *d_scryptV_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 combs_cnt, const u32 digests_cnt, const u32 digests_offset, const u32 combs_mode, const u32 gid_max)
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{
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/**
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* modifier
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*/
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const u32 lid = get_local_id (0);
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/**
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* base
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*/
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const u32 gid = get_global_id (0);
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if (gid >= gid_max) return;
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u32 wordl0[4];
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wordl0[0] = pws[gid].i[ 0];
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wordl0[1] = pws[gid].i[ 1];
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wordl0[2] = pws[gid].i[ 2];
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wordl0[3] = pws[gid].i[ 3];
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u32 wordl1[4];
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wordl1[0] = pws[gid].i[ 4];
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wordl1[1] = pws[gid].i[ 5];
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wordl1[2] = pws[gid].i[ 6];
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wordl1[3] = pws[gid].i[ 7];
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u32 wordl2[4];
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wordl2[0] = 0;
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wordl2[1] = 0;
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wordl2[2] = 0;
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wordl2[3] = 0;
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u32 wordl3[4];
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wordl3[0] = 0;
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wordl3[1] = 0;
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wordl3[2] = 0;
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wordl3[3] = 0;
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const u32 pw_l_len = pws[gid].pw_len;
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if (combs_mode == COMBINATOR_MODE_BASE_RIGHT)
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{
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switch_buffer_by_offset (wordl0, wordl1, wordl2, wordl3, combs_buf[0].pw_len);
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}
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/**
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* salt
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*/
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const u32 salt_buf0 = swap32 (salt_bufs[salt_pos].salt_buf[ 0]);
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const u32 salt_buf1 = swap32 (salt_bufs[salt_pos].salt_buf[ 1]);
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const u32 salt_buf2 = swap32 (salt_bufs[salt_pos].salt_buf[ 2]); // 0x80
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/**
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* loop
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*/
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for (u32 il_pos = 0; il_pos < combs_cnt; il_pos++)
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{
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u32 wordr0[4];
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u32 wordr1[4];
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u32 wordr2[4];
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u32 wordr3[4];
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wordr0[0] = combs_buf[il_pos].i[0];
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wordr0[1] = combs_buf[il_pos].i[1];
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wordr0[2] = combs_buf[il_pos].i[2];
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wordr0[3] = combs_buf[il_pos].i[3];
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wordr1[0] = combs_buf[il_pos].i[4];
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wordr1[1] = combs_buf[il_pos].i[5];
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wordr1[2] = combs_buf[il_pos].i[6];
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wordr1[3] = combs_buf[il_pos].i[7];
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wordr2[0] = 0;
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wordr2[1] = 0;
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wordr2[2] = 0;
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wordr2[3] = 0;
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wordr3[0] = 0;
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wordr3[1] = 0;
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wordr3[2] = 0;
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wordr3[3] = 0;
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if (combs_mode == COMBINATOR_MODE_BASE_LEFT)
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{
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switch_buffer_by_offset (wordr0, wordr1, wordr2, wordr3, pw_l_len);
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}
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u32 w0[4];
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u32 w1[4];
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u32 w2[4];
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u32 w3[4];
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w0[0] = wordl0[0] | wordr0[0];
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w0[1] = wordl0[1] | wordr0[1];
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w0[2] = wordl0[2] | wordr0[2];
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w0[3] = wordl0[3] | wordr0[3];
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w1[0] = wordl1[0] | wordr1[0];
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w1[1] = wordl1[1] | wordr1[1];
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w1[2] = wordl1[2] | wordr1[2];
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w1[3] = wordl1[3] | wordr1[3];
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w2[0] = wordl2[0] | wordr2[0];
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w2[1] = wordl2[1] | wordr2[1];
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w2[2] = wordl2[2] | wordr2[2];
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w2[3] = wordl2[3] | wordr2[3];
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w3[0] = wordl3[0] | wordr3[0];
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w3[1] = wordl3[1] | wordr3[1];
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w3[2] = wordl3[2] | wordr3[2];
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w3[3] = wordl3[3] | wordr3[3];
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u32 w0_t[4];
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u32 w1_t[4];
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u32 w2_t[4];
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u32 w3_t[4];
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make_unicode (w0, w0_t, w1_t);
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make_unicode (w1, w2_t, w3_t);
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u32 w_t[16];
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w_t[ 0] = swap32 (w0_t[0]);
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w_t[ 1] = swap32 (w0_t[1]);
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w_t[ 2] = swap32 (w0_t[2]);
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w_t[ 3] = swap32 (w0_t[3]);
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w_t[ 4] = swap32 (w1_t[0]);
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w_t[ 5] = swap32 (w1_t[1]);
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w_t[ 6] = swap32 (w1_t[2]);
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w_t[ 7] = swap32 (w1_t[3]);
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w_t[ 8] = swap32 (w2_t[0]);
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w_t[ 9] = swap32 (w2_t[1]);
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w_t[10] = swap32 (w2_t[2]);
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w_t[11] = swap32 (w2_t[3]);
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w_t[12] = swap32 (w3_t[0]);
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w_t[13] = swap32 (w3_t[1]);
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w_t[14] = swap32 (w3_t[2]);
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w_t[15] = swap32 (w3_t[3]);
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w_t[ 0] = w_t[ 0] >> 8;
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w_t[ 1] = w_t[ 1] >> 8;
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w_t[ 2] = w_t[ 2] >> 8;
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w_t[ 3] = w_t[ 3] >> 8;
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w_t[ 4] = w_t[ 4] >> 8;
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w_t[ 5] = w_t[ 5] >> 8;
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w_t[ 6] = w_t[ 6] >> 8;
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w_t[ 7] = w_t[ 7] >> 8;
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w_t[ 8] = w_t[ 8] >> 8;
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w_t[ 9] = w_t[ 9] >> 8;
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w_t[10] = w_t[10] >> 8;
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w_t[11] = w_t[11] >> 8;
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w_t[12] = w_t[12] >> 8;
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w_t[13] = w_t[13] >> 8;
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w_t[14] = w_t[14] >> 8;
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w_t[15] = w_t[15] >> 8;
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u32 digest[8];
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digest[0] = SHA256M_A;
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digest[1] = SHA256M_B;
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digest[2] = SHA256M_C;
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digest[3] = SHA256M_D;
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digest[4] = SHA256M_E;
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digest[5] = SHA256M_F;
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digest[6] = SHA256M_G;
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digest[7] = SHA256M_H;
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sha256_transform (digest, w_t); // 0 - 64
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w_t[ 0] = 0;
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w_t[ 1] = 0;
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w_t[ 2] = 0;
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w_t[ 3] = 0;
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w_t[ 4] = 0;
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w_t[ 5] = 0;
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w_t[ 6] = 0;
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w_t[ 7] = 0;
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w_t[ 8] = 0;
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w_t[ 9] = 0;
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w_t[10] = 0;
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w_t[11] = 0;
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w_t[12] = 0;
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w_t[13] = 0;
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w_t[14] = 0;
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w_t[15] = 0;
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sha256_transform (digest, w_t); // 64 - 128
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sha256_transform (digest, w_t); // 128 - 192
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sha256_transform (digest, w_t); // 192 - 256
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sha256_transform (digest, w_t); // 256 - 320
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sha256_transform (digest, w_t); // 320 - 384
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sha256_transform (digest, w_t); // 384 - 448
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w_t[15] = 0 | salt_buf0 >> 16;
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sha256_transform (digest, w_t); // 448 - 512
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w_t[ 0] = salt_buf0 << 16 | salt_buf1 >> 16;
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w_t[ 1] = salt_buf1 << 16 | salt_buf2 >> 16;
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w_t[ 2] = salt_buf2 << 16 | 0;
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w_t[15] = (510 + 8) * 8;
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sha256_transform (digest, w_t); // 512 - 576
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const u32 r0 = digest[3];
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const u32 r1 = digest[7];
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const u32 r2 = digest[2];
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const u32 r3 = digest[6];
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#include COMPARE_M
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}
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}
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__kernel void __attribute__((reqd_work_group_size (64, 1, 1))) m08000_m08 (__global pw_t *pws, __global gpu_rule_t *rules_buf, __global comb_t *combs_buf, __global bf_t *bfs_buf, __global void *tmps, __global void *hooks, __global u32 *bitmaps_buf_s1_a, __global u32 *bitmaps_buf_s1_b, __global u32 *bitmaps_buf_s1_c, __global u32 *bitmaps_buf_s1_d, __global u32 *bitmaps_buf_s2_a, __global u32 *bitmaps_buf_s2_b, __global u32 *bitmaps_buf_s2_c, __global u32 *bitmaps_buf_s2_d, __global plain_t *plains_buf, __global digest_t *digests_buf, __global u32 *hashes_shown, __global salt_t *salt_bufs, __global void *esalt_bufs, __global u32 *d_return_buf, __global u32 *d_scryptV_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 combs_cnt, const u32 digests_cnt, const u32 digests_offset, const u32 combs_mode, const u32 gid_max)
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{
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}
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__kernel void __attribute__((reqd_work_group_size (64, 1, 1))) m08000_m16 (__global pw_t *pws, __global gpu_rule_t *rules_buf, __global comb_t *combs_buf, __global bf_t *bfs_buf, __global void *tmps, __global void *hooks, __global u32 *bitmaps_buf_s1_a, __global u32 *bitmaps_buf_s1_b, __global u32 *bitmaps_buf_s1_c, __global u32 *bitmaps_buf_s1_d, __global u32 *bitmaps_buf_s2_a, __global u32 *bitmaps_buf_s2_b, __global u32 *bitmaps_buf_s2_c, __global u32 *bitmaps_buf_s2_d, __global plain_t *plains_buf, __global digest_t *digests_buf, __global u32 *hashes_shown, __global salt_t *salt_bufs, __global void *esalt_bufs, __global u32 *d_return_buf, __global u32 *d_scryptV_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 combs_cnt, const u32 digests_cnt, const u32 digests_offset, const u32 combs_mode, const u32 gid_max)
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{
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}
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__kernel void __attribute__((reqd_work_group_size (64, 1, 1))) m08000_s04 (__global pw_t *pws, __global gpu_rule_t *rules_buf, __global comb_t *combs_buf, __global bf_t *bfs_buf, __global void *tmps, __global void *hooks, __global u32 *bitmaps_buf_s1_a, __global u32 *bitmaps_buf_s1_b, __global u32 *bitmaps_buf_s1_c, __global u32 *bitmaps_buf_s1_d, __global u32 *bitmaps_buf_s2_a, __global u32 *bitmaps_buf_s2_b, __global u32 *bitmaps_buf_s2_c, __global u32 *bitmaps_buf_s2_d, __global plain_t *plains_buf, __global digest_t *digests_buf, __global u32 *hashes_shown, __global salt_t *salt_bufs, __global void *esalt_bufs, __global u32 *d_return_buf, __global u32 *d_scryptV_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 combs_cnt, const u32 digests_cnt, const u32 digests_offset, const u32 combs_mode, const u32 gid_max)
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{
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/**
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* modifier
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*/
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const u32 lid = get_local_id (0);
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/**
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* base
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*/
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const u32 gid = get_global_id (0);
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if (gid >= gid_max) return;
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u32 wordl0[4];
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wordl0[0] = pws[gid].i[ 0];
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wordl0[1] = pws[gid].i[ 1];
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wordl0[2] = pws[gid].i[ 2];
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wordl0[3] = pws[gid].i[ 3];
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u32 wordl1[4];
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wordl1[0] = pws[gid].i[ 4];
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wordl1[1] = pws[gid].i[ 5];
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wordl1[2] = pws[gid].i[ 6];
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wordl1[3] = pws[gid].i[ 7];
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u32 wordl2[4];
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wordl2[0] = 0;
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wordl2[1] = 0;
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wordl2[2] = 0;
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wordl2[3] = 0;
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u32 wordl3[4];
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wordl3[0] = 0;
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wordl3[1] = 0;
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wordl3[2] = 0;
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wordl3[3] = 0;
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const u32 pw_l_len = pws[gid].pw_len;
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if (combs_mode == COMBINATOR_MODE_BASE_RIGHT)
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{
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switch_buffer_by_offset (wordl0, wordl1, wordl2, wordl3, combs_buf[0].pw_len);
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}
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/**
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* salt
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*/
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const u32 salt_buf0 = swap32 (salt_bufs[salt_pos].salt_buf[ 0]);
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const u32 salt_buf1 = swap32 (salt_bufs[salt_pos].salt_buf[ 1]);
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const u32 salt_buf2 = swap32 (salt_bufs[salt_pos].salt_buf[ 2]); // 0x80
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/**
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* digest
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*/
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const u32 search[4] =
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{
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digests_buf[digests_offset].digest_buf[DGST_R0],
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digests_buf[digests_offset].digest_buf[DGST_R1],
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digests_buf[digests_offset].digest_buf[DGST_R2],
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digests_buf[digests_offset].digest_buf[DGST_R3]
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};
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/**
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* loop
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*/
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for (u32 il_pos = 0; il_pos < combs_cnt; il_pos++)
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{
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u32 wordr0[4];
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u32 wordr1[4];
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u32 wordr2[4];
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u32 wordr3[4];
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wordr0[0] = combs_buf[il_pos].i[0];
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wordr0[1] = combs_buf[il_pos].i[1];
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wordr0[2] = combs_buf[il_pos].i[2];
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wordr0[3] = combs_buf[il_pos].i[3];
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wordr1[0] = combs_buf[il_pos].i[4];
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wordr1[1] = combs_buf[il_pos].i[5];
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wordr1[2] = combs_buf[il_pos].i[6];
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wordr1[3] = combs_buf[il_pos].i[7];
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wordr2[0] = 0;
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wordr2[1] = 0;
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wordr2[2] = 0;
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wordr2[3] = 0;
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wordr3[0] = 0;
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wordr3[1] = 0;
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wordr3[2] = 0;
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wordr3[3] = 0;
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if (combs_mode == COMBINATOR_MODE_BASE_LEFT)
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{
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switch_buffer_by_offset (wordr0, wordr1, wordr2, wordr3, pw_l_len);
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}
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u32 w0[4];
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u32 w1[4];
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u32 w2[4];
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u32 w3[4];
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w0[0] = wordl0[0] | wordr0[0];
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w0[1] = wordl0[1] | wordr0[1];
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w0[2] = wordl0[2] | wordr0[2];
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w0[3] = wordl0[3] | wordr0[3];
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w1[0] = wordl1[0] | wordr1[0];
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w1[1] = wordl1[1] | wordr1[1];
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w1[2] = wordl1[2] | wordr1[2];
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w1[3] = wordl1[3] | wordr1[3];
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w2[0] = wordl2[0] | wordr2[0];
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w2[1] = wordl2[1] | wordr2[1];
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w2[2] = wordl2[2] | wordr2[2];
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w2[3] = wordl2[3] | wordr2[3];
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w3[0] = wordl3[0] | wordr3[0];
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w3[1] = wordl3[1] | wordr3[1];
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w3[2] = wordl3[2] | wordr3[2];
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w3[3] = wordl3[3] | wordr3[3];
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u32 w0_t[4];
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u32 w1_t[4];
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u32 w2_t[4];
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u32 w3_t[4];
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make_unicode (w0, w0_t, w1_t);
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make_unicode (w1, w2_t, w3_t);
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u32 w_t[16];
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w_t[ 0] = swap32 (w0_t[0]);
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w_t[ 1] = swap32 (w0_t[1]);
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w_t[ 2] = swap32 (w0_t[2]);
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w_t[ 3] = swap32 (w0_t[3]);
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w_t[ 4] = swap32 (w1_t[0]);
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w_t[ 5] = swap32 (w1_t[1]);
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w_t[ 6] = swap32 (w1_t[2]);
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w_t[ 7] = swap32 (w1_t[3]);
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w_t[ 8] = swap32 (w2_t[0]);
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w_t[ 9] = swap32 (w2_t[1]);
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w_t[10] = swap32 (w2_t[2]);
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w_t[11] = swap32 (w2_t[3]);
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w_t[12] = swap32 (w3_t[0]);
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w_t[13] = swap32 (w3_t[1]);
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w_t[14] = swap32 (w3_t[2]);
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w_t[15] = swap32 (w3_t[3]);
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w_t[ 0] = w_t[ 0] >> 8;
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w_t[ 1] = w_t[ 1] >> 8;
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w_t[ 2] = w_t[ 2] >> 8;
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w_t[ 3] = w_t[ 3] >> 8;
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w_t[ 4] = w_t[ 4] >> 8;
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w_t[ 5] = w_t[ 5] >> 8;
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w_t[ 6] = w_t[ 6] >> 8;
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w_t[ 7] = w_t[ 7] >> 8;
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w_t[ 8] = w_t[ 8] >> 8;
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w_t[ 9] = w_t[ 9] >> 8;
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w_t[10] = w_t[10] >> 8;
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w_t[11] = w_t[11] >> 8;
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w_t[12] = w_t[12] >> 8;
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w_t[13] = w_t[13] >> 8;
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w_t[14] = w_t[14] >> 8;
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w_t[15] = w_t[15] >> 8;
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u32 digest[8];
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digest[0] = SHA256M_A;
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digest[1] = SHA256M_B;
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digest[2] = SHA256M_C;
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digest[3] = SHA256M_D;
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digest[4] = SHA256M_E;
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digest[5] = SHA256M_F;
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digest[6] = SHA256M_G;
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digest[7] = SHA256M_H;
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sha256_transform (digest, w_t); // 0 - 64
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w_t[ 0] = 0;
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w_t[ 1] = 0;
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w_t[ 2] = 0;
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w_t[ 3] = 0;
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w_t[ 4] = 0;
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w_t[ 5] = 0;
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w_t[ 6] = 0;
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w_t[ 7] = 0;
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w_t[ 8] = 0;
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w_t[ 9] = 0;
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w_t[10] = 0;
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w_t[11] = 0;
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w_t[12] = 0;
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w_t[13] = 0;
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w_t[14] = 0;
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w_t[15] = 0;
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sha256_transform (digest, w_t); // 64 - 128
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sha256_transform (digest, w_t); // 128 - 192
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sha256_transform (digest, w_t); // 192 - 256
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sha256_transform (digest, w_t); // 256 - 320
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sha256_transform (digest, w_t); // 320 - 384
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sha256_transform (digest, w_t); // 384 - 448
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w_t[15] = 0 | salt_buf0 >> 16;
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sha256_transform (digest, w_t); // 448 - 512
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w_t[ 0] = salt_buf0 << 16 | salt_buf1 >> 16;
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w_t[ 1] = salt_buf1 << 16 | salt_buf2 >> 16;
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w_t[ 2] = salt_buf2 << 16 | 0;
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w_t[15] = (510 + 8) * 8;
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sha256_transform (digest, w_t); // 512 - 576
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const u32 r0 = digest[3];
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const u32 r1 = digest[7];
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const u32 r2 = digest[2];
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const u32 r3 = digest[6];
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#include COMPARE_S
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}
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}
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__kernel void __attribute__((reqd_work_group_size (64, 1, 1))) m08000_s08 (__global pw_t *pws, __global gpu_rule_t *rules_buf, __global comb_t *combs_buf, __global bf_t *bfs_buf, __global void *tmps, __global void *hooks, __global u32 *bitmaps_buf_s1_a, __global u32 *bitmaps_buf_s1_b, __global u32 *bitmaps_buf_s1_c, __global u32 *bitmaps_buf_s1_d, __global u32 *bitmaps_buf_s2_a, __global u32 *bitmaps_buf_s2_b, __global u32 *bitmaps_buf_s2_c, __global u32 *bitmaps_buf_s2_d, __global plain_t *plains_buf, __global digest_t *digests_buf, __global u32 *hashes_shown, __global salt_t *salt_bufs, __global void *esalt_bufs, __global u32 *d_return_buf, __global u32 *d_scryptV_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 combs_cnt, const u32 digests_cnt, const u32 digests_offset, const u32 combs_mode, const u32 gid_max)
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{
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}
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__kernel void __attribute__((reqd_work_group_size (64, 1, 1))) m08000_s16 (__global pw_t *pws, __global gpu_rule_t *rules_buf, __global comb_t *combs_buf, __global bf_t *bfs_buf, __global void *tmps, __global void *hooks, __global u32 *bitmaps_buf_s1_a, __global u32 *bitmaps_buf_s1_b, __global u32 *bitmaps_buf_s1_c, __global u32 *bitmaps_buf_s1_d, __global u32 *bitmaps_buf_s2_a, __global u32 *bitmaps_buf_s2_b, __global u32 *bitmaps_buf_s2_c, __global u32 *bitmaps_buf_s2_d, __global plain_t *plains_buf, __global digest_t *digests_buf, __global u32 *hashes_shown, __global salt_t *salt_bufs, __global void *esalt_bufs, __global u32 *d_return_buf, __global u32 *d_scryptV_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 combs_cnt, const u32 digests_cnt, const u32 digests_offset, const u32 combs_mode, const u32 gid_max)
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{
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}
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