/** * Author......: See docs/credits.txt * 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_rp.h" #include "inc_rp.cl" #include "inc_scalar.cl" #include "inc_hash_md5.cl" #if VECT_SIZE == 1 #define uint_to_hex_lower8(i) (u32x) (l_bin2asc[(i)]) #elif VECT_SIZE == 2 #define uint_to_hex_lower8(i) (u32x) (l_bin2asc[(i).s0], l_bin2asc[(i).s1]) #elif VECT_SIZE == 4 #define uint_to_hex_lower8(i) (u32x) (l_bin2asc[(i).s0], l_bin2asc[(i).s1], l_bin2asc[(i).s2], l_bin2asc[(i).s3]) #elif VECT_SIZE == 8 #define uint_to_hex_lower8(i) (u32x) (l_bin2asc[(i).s0], l_bin2asc[(i).s1], l_bin2asc[(i).s2], l_bin2asc[(i).s3], l_bin2asc[(i).s4], l_bin2asc[(i).s5], l_bin2asc[(i).s6], l_bin2asc[(i).s7]) #elif VECT_SIZE == 16 #define uint_to_hex_lower8(i) (u32x) (l_bin2asc[(i).s0], l_bin2asc[(i).s1], l_bin2asc[(i).s2], l_bin2asc[(i).s3], l_bin2asc[(i).s4], l_bin2asc[(i).s5], l_bin2asc[(i).s6], l_bin2asc[(i).s7], l_bin2asc[(i).s8], l_bin2asc[(i).s9], l_bin2asc[(i).sa], l_bin2asc[(i).sb], l_bin2asc[(i).sc], l_bin2asc[(i).sd], l_bin2asc[(i).se], l_bin2asc[(i).sf]) #endif __kernel void m11100_mxx (KERN_ATTR_RULES) { /** * modifier */ const u64 gid = get_global_id (0); const u64 lid = get_local_id (0); const u64 lsz = get_local_size (0); /** * bin2asc table */ __local u32 l_bin2asc[256]; for (MAYBE_VOLATILE u32 i = lid; i < 256; i += lsz) { const u32 i0 = (i >> 0) & 15; const u32 i1 = (i >> 4) & 15; l_bin2asc[i] = ((i0 < 10) ? '0' + i0 : 'a' - 10 + i0) << 8 | ((i1 < 10) ? '0' + i1 : 'a' - 10 + i1) << 0; } barrier (CLK_LOCAL_MEM_FENCE); if (gid >= gid_max) return; /** * salt */ u32 challenge; challenge = salt_bufs[salt_pos].salt_buf[0]; u32 salt_buf0[4]; u32 salt_buf1[4]; salt_buf0[0] = salt_bufs[salt_pos].salt_buf[1]; // not a bug, see challenge salt_buf0[1] = salt_bufs[salt_pos].salt_buf[2]; salt_buf0[2] = salt_bufs[salt_pos].salt_buf[3]; salt_buf0[3] = salt_bufs[salt_pos].salt_buf[4]; salt_buf1[0] = salt_bufs[salt_pos].salt_buf[5]; salt_buf1[1] = salt_bufs[salt_pos].salt_buf[6]; salt_buf1[2] = salt_bufs[salt_pos].salt_buf[7]; salt_buf1[3] = salt_bufs[salt_pos].salt_buf[8]; const u32 salt_len = salt_bufs[salt_pos].salt_len - 4; /** * base */ COPY_PW (pws[gid]); /** * loop */ for (u32 il_pos = 0; il_pos < il_cnt; il_pos++) { pw_t tmp = PASTE_PW; tmp.pw_len = apply_rules (rules_buf[il_pos].cmds, tmp.i, tmp.pw_len); md5_ctx_t ctx1; md5_init (&ctx1); md5_update (&ctx1, tmp.i, tmp.pw_len); u32 s0[4]; u32 s1[4]; u32 s2[4]; u32 s3[4]; s0[0] = salt_buf0[0]; s0[1] = salt_buf0[1]; s0[2] = salt_buf0[2]; s0[3] = salt_buf0[3]; s1[0] = salt_buf1[0]; s1[1] = salt_buf1[1]; s1[2] = salt_buf1[2]; s1[3] = salt_buf1[3]; s2[0] = 0; s2[1] = 0; s2[2] = 0; s2[3] = 0; s3[0] = 0; s3[1] = 0; s3[2] = 0; s3[3] = 0; md5_update_64 (&ctx1, s0, s1, s2, s3, salt_len); md5_final (&ctx1); const u32 a = ctx1.h[0]; const u32 b = ctx1.h[1]; const u32 c = ctx1.h[2]; const u32 d = ctx1.h[3]; md5_ctx_t ctx; md5_init (&ctx); ctx.w0[0] = uint_to_hex_lower8 ((a >> 0) & 255) << 0 | uint_to_hex_lower8 ((a >> 8) & 255) << 16; ctx.w0[1] = uint_to_hex_lower8 ((a >> 16) & 255) << 0 | uint_to_hex_lower8 ((a >> 24) & 255) << 16; ctx.w0[2] = uint_to_hex_lower8 ((b >> 0) & 255) << 0 | uint_to_hex_lower8 ((b >> 8) & 255) << 16; ctx.w0[3] = uint_to_hex_lower8 ((b >> 16) & 255) << 0 | uint_to_hex_lower8 ((b >> 24) & 255) << 16; ctx.w1[0] = uint_to_hex_lower8 ((c >> 0) & 255) << 0 | uint_to_hex_lower8 ((c >> 8) & 255) << 16; ctx.w1[1] = uint_to_hex_lower8 ((c >> 16) & 255) << 0 | uint_to_hex_lower8 ((c >> 24) & 255) << 16; ctx.w1[2] = uint_to_hex_lower8 ((d >> 0) & 255) << 0 | uint_to_hex_lower8 ((d >> 8) & 255) << 16; ctx.w1[3] = uint_to_hex_lower8 ((d >> 16) & 255) << 0 | uint_to_hex_lower8 ((d >> 24) & 255) << 16; ctx.w2[0] = challenge; ctx.w2[1] = 0; ctx.w2[2] = 0; ctx.w2[3] = 0; ctx.w3[0] = 0; ctx.w3[1] = 0; ctx.w3[2] = 0; ctx.w3[3] = 0; ctx.len = 32 + 4; md5_final (&ctx); const u32 r0 = ctx.h[DGST_R0]; const u32 r1 = ctx.h[DGST_R1]; const u32 r2 = ctx.h[DGST_R2]; const u32 r3 = ctx.h[DGST_R3]; COMPARE_M_SCALAR (r0, r1, r2, r3); } } __kernel void m11100_sxx (KERN_ATTR_RULES) { /** * modifier */ const u64 gid = get_global_id (0); const u64 lid = get_local_id (0); const u64 lsz = get_local_size (0); /** * bin2asc table */ __local u32 l_bin2asc[256]; for (MAYBE_VOLATILE u32 i = lid; i < 256; i += lsz) { const u32 i0 = (i >> 0) & 15; const u32 i1 = (i >> 4) & 15; l_bin2asc[i] = ((i0 < 10) ? '0' + i0 : 'a' - 10 + i0) << 8 | ((i1 < 10) ? '0' + i1 : 'a' - 10 + i1) << 0; } barrier (CLK_LOCAL_MEM_FENCE); if (gid >= gid_max) return; /** * digest */ const u32 search[4] = { digests_buf[digests_offset].digest_buf[DGST_R0], digests_buf[digests_offset].digest_buf[DGST_R1], digests_buf[digests_offset].digest_buf[DGST_R2], digests_buf[digests_offset].digest_buf[DGST_R3] }; /** * salt */ u32 challenge; challenge = salt_bufs[salt_pos].salt_buf[0]; u32 salt_buf0[4]; u32 salt_buf1[4]; salt_buf0[0] = salt_bufs[salt_pos].salt_buf[1]; // not a bug, see challenge salt_buf0[1] = salt_bufs[salt_pos].salt_buf[2]; salt_buf0[2] = salt_bufs[salt_pos].salt_buf[3]; salt_buf0[3] = salt_bufs[salt_pos].salt_buf[4]; salt_buf1[0] = salt_bufs[salt_pos].salt_buf[5]; salt_buf1[1] = salt_bufs[salt_pos].salt_buf[6]; salt_buf1[2] = salt_bufs[salt_pos].salt_buf[7]; salt_buf1[3] = salt_bufs[salt_pos].salt_buf[8]; const u32 salt_len = salt_bufs[salt_pos].salt_len - 4; /** * base */ COPY_PW (pws[gid]); /** * loop */ for (u32 il_pos = 0; il_pos < il_cnt; il_pos++) { pw_t tmp = PASTE_PW; tmp.pw_len = apply_rules (rules_buf[il_pos].cmds, tmp.i, tmp.pw_len); md5_ctx_t ctx1; md5_init (&ctx1); md5_update (&ctx1, tmp.i, tmp.pw_len); u32 s0[4]; u32 s1[4]; u32 s2[4]; u32 s3[4]; s0[0] = salt_buf0[0]; s0[1] = salt_buf0[1]; s0[2] = salt_buf0[2]; s0[3] = salt_buf0[3]; s1[0] = salt_buf1[0]; s1[1] = salt_buf1[1]; s1[2] = salt_buf1[2]; s1[3] = salt_buf1[3]; s2[0] = 0; s2[1] = 0; s2[2] = 0; s2[3] = 0; s3[0] = 0; s3[1] = 0; s3[2] = 0; s3[3] = 0; md5_update_64 (&ctx1, s0, s1, s2, s3, salt_len); md5_final (&ctx1); const u32 a = ctx1.h[0]; const u32 b = ctx1.h[1]; const u32 c = ctx1.h[2]; const u32 d = ctx1.h[3]; md5_ctx_t ctx; md5_init (&ctx); ctx.w0[0] = uint_to_hex_lower8 ((a >> 0) & 255) << 0 | uint_to_hex_lower8 ((a >> 8) & 255) << 16; ctx.w0[1] = uint_to_hex_lower8 ((a >> 16) & 255) << 0 | uint_to_hex_lower8 ((a >> 24) & 255) << 16; ctx.w0[2] = uint_to_hex_lower8 ((b >> 0) & 255) << 0 | uint_to_hex_lower8 ((b >> 8) & 255) << 16; ctx.w0[3] = uint_to_hex_lower8 ((b >> 16) & 255) << 0 | uint_to_hex_lower8 ((b >> 24) & 255) << 16; ctx.w1[0] = uint_to_hex_lower8 ((c >> 0) & 255) << 0 | uint_to_hex_lower8 ((c >> 8) & 255) << 16; ctx.w1[1] = uint_to_hex_lower8 ((c >> 16) & 255) << 0 | uint_to_hex_lower8 ((c >> 24) & 255) << 16; ctx.w1[2] = uint_to_hex_lower8 ((d >> 0) & 255) << 0 | uint_to_hex_lower8 ((d >> 8) & 255) << 16; ctx.w1[3] = uint_to_hex_lower8 ((d >> 16) & 255) << 0 | uint_to_hex_lower8 ((d >> 24) & 255) << 16; ctx.w2[0] = challenge; ctx.w2[1] = 0; ctx.w2[2] = 0; ctx.w2[3] = 0; ctx.w3[0] = 0; ctx.w3[1] = 0; ctx.w3[2] = 0; ctx.w3[3] = 0; ctx.len = 32 + 4; md5_final (&ctx); const u32 r0 = ctx.h[DGST_R0]; const u32 r1 = ctx.h[DGST_R1]; const u32 r2 = ctx.h[DGST_R2]; const u32 r3 = ctx.h[DGST_R3]; COMPARE_S_SCALAR (r0, r1, r2, r3); } }