/** * Author......: See docs/credits.txt * License.....: MIT */ #define NEW_SIMD_CODE #ifdef KERNEL_STATIC #include M2S(INCLUDE_PATH/inc_vendor.h) #include M2S(INCLUDE_PATH/inc_types.h) #include M2S(INCLUDE_PATH/inc_platform.cl) #include M2S(INCLUDE_PATH/inc_common.cl) #include M2S(INCLUDE_PATH/inc_simd.cl) #include M2S(INCLUDE_PATH/inc_hash_sha1.cl) #else #include "inc_vendor.h" #include "inc_types.h" #include "inc_platform.h" #include "inc_common.h" #include "inc_simd.h" #include "inc_hash_sha1.h" #endif #define COMPARE_S M2S(INCLUDE_PATH/inc_comp_single.cl) #define COMPARE_M M2S(INCLUDE_PATH/inc_comp_multi.cl) typedef struct wpa_pbkdf2_tmp { u32 ipad[5]; u32 opad[5]; u32 dgst[10]; u32 out[10]; } wpa_pbkdf2_tmp_t; typedef struct wpa_pmkid { u32 pmkid[4]; u32 pmkid_data[16]; u8 orig_mac_ap[6]; u8 orig_mac_sta[6]; u8 essid_len; u32 essid_buf[16]; } wpa_pmkid_t; DECLSPEC void hmac_sha1_run_V (u32x *w0, u32x *w1, u32x *w2, u32x *w3, u32x *ipad, u32x *opad, u32x *digest) { digest[0] = ipad[0]; digest[1] = ipad[1]; digest[2] = ipad[2]; digest[3] = ipad[3]; digest[4] = ipad[4]; sha1_transform_vector (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] = 0x80000000; 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] = (64 + 20) * 8; digest[0] = opad[0]; digest[1] = opad[1]; digest[2] = opad[2]; digest[3] = opad[3]; digest[4] = opad[4]; sha1_transform_vector (w0, w1, w2, w3, digest); } KERNEL_FQ void m16800_init (KERN_ATTR_TMPS_ESALT (wpa_pbkdf2_tmp_t, wpa_pmkid_t)) { /** * base */ const u64 gid = get_global_id (0); if (gid >= GID_CNT) return; sha1_hmac_ctx_t sha1_hmac_ctx0; sha1_hmac_init_global_swap (&sha1_hmac_ctx0, pws[gid].i, pws[gid].pw_len); tmps[gid].ipad[0] = sha1_hmac_ctx0.ipad.h[0]; tmps[gid].ipad[1] = sha1_hmac_ctx0.ipad.h[1]; tmps[gid].ipad[2] = sha1_hmac_ctx0.ipad.h[2]; tmps[gid].ipad[3] = sha1_hmac_ctx0.ipad.h[3]; tmps[gid].ipad[4] = sha1_hmac_ctx0.ipad.h[4]; tmps[gid].opad[0] = sha1_hmac_ctx0.opad.h[0]; tmps[gid].opad[1] = sha1_hmac_ctx0.opad.h[1]; tmps[gid].opad[2] = sha1_hmac_ctx0.opad.h[2]; tmps[gid].opad[3] = sha1_hmac_ctx0.opad.h[3]; tmps[gid].opad[4] = sha1_hmac_ctx0.opad.h[4]; sha1_hmac_update_global_swap (&sha1_hmac_ctx0, esalt_bufs[DIGESTS_OFFSET_HOST].essid_buf, esalt_bufs[DIGESTS_OFFSET_HOST].essid_len); u32 w0[4]; u32 w1[4]; u32 w2[4]; u32 w3[4]; // w0[0] = 1 sha1_hmac_ctx_t sha1_hmac_ctx1 = sha1_hmac_ctx0; w0[0] = 1; 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; sha1_hmac_update_64 (&sha1_hmac_ctx1, w0, w1, w2, w3, 4); sha1_hmac_final (&sha1_hmac_ctx1); tmps[gid].dgst[0] = sha1_hmac_ctx1.opad.h[0]; tmps[gid].dgst[1] = sha1_hmac_ctx1.opad.h[1]; tmps[gid].dgst[2] = sha1_hmac_ctx1.opad.h[2]; tmps[gid].dgst[3] = sha1_hmac_ctx1.opad.h[3]; tmps[gid].dgst[4] = sha1_hmac_ctx1.opad.h[4]; tmps[gid].out[0] = sha1_hmac_ctx1.opad.h[0]; tmps[gid].out[1] = sha1_hmac_ctx1.opad.h[1]; tmps[gid].out[2] = sha1_hmac_ctx1.opad.h[2]; tmps[gid].out[3] = sha1_hmac_ctx1.opad.h[3]; tmps[gid].out[4] = sha1_hmac_ctx1.opad.h[4]; // w0[0] = 2 sha1_hmac_ctx_t sha1_hmac_ctx2 = sha1_hmac_ctx0; w0[0] = 2; 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; sha1_hmac_update_64 (&sha1_hmac_ctx2, w0, w1, w2, w3, 4); sha1_hmac_final (&sha1_hmac_ctx2); tmps[gid].dgst[5] = sha1_hmac_ctx2.opad.h[0]; tmps[gid].dgst[6] = sha1_hmac_ctx2.opad.h[1]; tmps[gid].dgst[7] = sha1_hmac_ctx2.opad.h[2]; tmps[gid].dgst[8] = sha1_hmac_ctx2.opad.h[3]; tmps[gid].dgst[9] = sha1_hmac_ctx2.opad.h[4]; tmps[gid].out[5] = sha1_hmac_ctx2.opad.h[0]; tmps[gid].out[6] = sha1_hmac_ctx2.opad.h[1]; tmps[gid].out[7] = sha1_hmac_ctx2.opad.h[2]; tmps[gid].out[8] = sha1_hmac_ctx2.opad.h[3]; tmps[gid].out[9] = sha1_hmac_ctx2.opad.h[4]; } KERNEL_FQ void m16800_loop (KERN_ATTR_TMPS_ESALT (wpa_pbkdf2_tmp_t, wpa_pmkid_t)) { const u64 gid = get_global_id (0); if ((gid * VECT_SIZE) >= GID_CNT) return; u32x ipad[5]; u32x opad[5]; ipad[0] = packv (tmps, ipad, gid, 0); ipad[1] = packv (tmps, ipad, gid, 1); ipad[2] = packv (tmps, ipad, gid, 2); ipad[3] = packv (tmps, ipad, gid, 3); ipad[4] = packv (tmps, ipad, gid, 4); opad[0] = packv (tmps, opad, gid, 0); opad[1] = packv (tmps, opad, gid, 1); opad[2] = packv (tmps, opad, gid, 2); opad[3] = packv (tmps, opad, gid, 3); opad[4] = packv (tmps, opad, gid, 4); u32x dgst[5]; u32x out[5]; // w0[0] = 1 dgst[0] = packv (tmps, dgst, gid, 0); dgst[1] = packv (tmps, dgst, gid, 1); dgst[2] = packv (tmps, dgst, gid, 2); dgst[3] = packv (tmps, dgst, gid, 3); dgst[4] = packv (tmps, dgst, gid, 4); out[0] = packv (tmps, out, gid, 0); out[1] = packv (tmps, out, gid, 1); out[2] = packv (tmps, out, gid, 2); out[3] = packv (tmps, out, gid, 3); out[4] = packv (tmps, out, gid, 4); for (u32 j = 0; j < LOOP_CNT; j++) { u32x w0[4]; u32x w1[4]; u32x w2[4]; u32x w3[4]; w0[0] = dgst[0]; w0[1] = dgst[1]; w0[2] = dgst[2]; w0[3] = dgst[3]; w1[0] = dgst[4]; w1[1] = 0x80000000; 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] = (64 + 20) * 8; hmac_sha1_run_V (w0, w1, w2, w3, ipad, opad, dgst); out[0] ^= dgst[0]; out[1] ^= dgst[1]; out[2] ^= dgst[2]; out[3] ^= dgst[3]; out[4] ^= dgst[4]; } unpackv (tmps, dgst, gid, 0, dgst[0]); unpackv (tmps, dgst, gid, 1, dgst[1]); unpackv (tmps, dgst, gid, 2, dgst[2]); unpackv (tmps, dgst, gid, 3, dgst[3]); unpackv (tmps, dgst, gid, 4, dgst[4]); unpackv (tmps, out, gid, 0, out[0]); unpackv (tmps, out, gid, 1, out[1]); unpackv (tmps, out, gid, 2, out[2]); unpackv (tmps, out, gid, 3, out[3]); unpackv (tmps, out, gid, 4, out[4]); // w0[0] = 2 dgst[0] = packv (tmps, dgst, gid, 5); dgst[1] = packv (tmps, dgst, gid, 6); dgst[2] = packv (tmps, dgst, gid, 7); dgst[3] = packv (tmps, dgst, gid, 8); dgst[4] = packv (tmps, dgst, gid, 9); out[0] = packv (tmps, out, gid, 5); out[1] = packv (tmps, out, gid, 6); out[2] = packv (tmps, out, gid, 7); out[3] = packv (tmps, out, gid, 8); out[4] = packv (tmps, out, gid, 9); for (u32 j = 0; j < LOOP_CNT; j++) { u32x w0[4]; u32x w1[4]; u32x w2[4]; u32x w3[4]; w0[0] = dgst[0]; w0[1] = dgst[1]; w0[2] = dgst[2]; w0[3] = dgst[3]; w1[0] = dgst[4]; w1[1] = 0x80000000; 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] = (64 + 20) * 8; hmac_sha1_run_V (w0, w1, w2, w3, ipad, opad, dgst); out[0] ^= dgst[0]; out[1] ^= dgst[1]; out[2] ^= dgst[2]; out[3] ^= dgst[3]; out[4] ^= dgst[4]; } unpackv (tmps, dgst, gid, 5, dgst[0]); unpackv (tmps, dgst, gid, 6, dgst[1]); unpackv (tmps, dgst, gid, 7, dgst[2]); unpackv (tmps, dgst, gid, 8, dgst[3]); unpackv (tmps, dgst, gid, 9, dgst[4]); unpackv (tmps, out, gid, 5, out[0]); unpackv (tmps, out, gid, 6, out[1]); unpackv (tmps, out, gid, 7, out[2]); unpackv (tmps, out, gid, 8, out[3]); unpackv (tmps, out, gid, 9, out[4]); } KERNEL_FQ void m16800_comp (KERN_ATTR_TMPS_ESALT (wpa_pbkdf2_tmp_t, wpa_pmkid_t)) { // not in use here, special case... } KERNEL_FQ void m16800_aux1 (KERN_ATTR_TMPS_ESALT (wpa_pbkdf2_tmp_t, wpa_pmkid_t)) { const u64 gid = get_global_id (0); if (gid >= GID_CNT) return; u32 w[16]; w[ 0] = tmps[gid].out[0]; w[ 1] = tmps[gid].out[1]; w[ 2] = tmps[gid].out[2]; w[ 3] = tmps[gid].out[3]; w[ 4] = tmps[gid].out[4]; w[ 5] = tmps[gid].out[5]; w[ 6] = tmps[gid].out[6]; w[ 7] = tmps[gid].out[7]; w[ 8] = 0; w[ 9] = 0; w[10] = 0; w[11] = 0; w[12] = 0; w[13] = 0; w[14] = 0; w[15] = 0; const u32 digest_pos = LOOP_POS; const u32 digest_cur = DIGESTS_OFFSET_HOST + digest_pos; GLOBAL_AS const wpa_pmkid_t *wpa_pmkid = &esalt_bufs[digest_cur]; sha1_hmac_ctx_t sha1_hmac_ctx; sha1_hmac_init (&sha1_hmac_ctx, w, 32); sha1_hmac_update_global_swap (&sha1_hmac_ctx, wpa_pmkid->pmkid_data, 20); sha1_hmac_final (&sha1_hmac_ctx); const u32 r0 = sha1_hmac_ctx.opad.h[0]; const u32 r1 = sha1_hmac_ctx.opad.h[1]; const u32 r2 = sha1_hmac_ctx.opad.h[2]; const u32 r3 = sha1_hmac_ctx.opad.h[3]; #ifdef KERNEL_STATIC #define il_pos 0 #include COMPARE_M #else if ((hc_swap32_S (r0) == wpa_pmkid->pmkid[0]) && (hc_swap32_S (r1) == wpa_pmkid->pmkid[1]) && (hc_swap32_S (r2) == wpa_pmkid->pmkid[2]) && (hc_swap32_S (r3) == wpa_pmkid->pmkid[3])) { if (hc_atomic_inc (&hashes_shown[digest_cur]) == 0) { mark_hash (plains_buf, d_return_buf, SALT_POS_HOST, DIGESTS_CNT, digest_pos, digest_cur, gid, 0, 0, 0); } } #endif }