scrypt121016.cl 23 KB

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  1. /*-
  2. * Copyright 2009 Colin Percival, 2011 ArtForz, 2011 pooler, 2012 mtrlt,
  3. * 2012-2013 Con Kolivas.
  4. * All rights reserved.
  5. *
  6. * Redistribution and use in source and binary forms, with or without
  7. * modification, are permitted provided that the following conditions
  8. * are met:
  9. * 1. Redistributions of source code must retain the above copyright
  10. * notice, this list of conditions and the following disclaimer.
  11. * 2. Redistributions in binary form must reproduce the above copyright
  12. * notice, this list of conditions and the following disclaimer in the
  13. * documentation and/or other materials provided with the distribution.
  14. *
  15. * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
  16. * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
  17. * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
  18. * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
  19. * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
  20. * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
  21. * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
  22. * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
  23. * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
  24. * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
  25. * SUCH DAMAGE.
  26. *
  27. * This file was originally written by Colin Percival as part of the Tarsnap
  28. * online backup system.
  29. */
  30. __constant uint ES[2] = { 0x00FF00FF, 0xFF00FF00 };
  31. __constant uint K[] = {
  32. 0x428a2f98U,
  33. 0x71374491U,
  34. 0xb5c0fbcfU,
  35. 0xe9b5dba5U,
  36. 0x3956c25bU,
  37. 0x59f111f1U,
  38. 0x923f82a4U,
  39. 0xab1c5ed5U,
  40. 0xd807aa98U,
  41. 0x12835b01U,
  42. 0x243185beU, // 10
  43. 0x550c7dc3U,
  44. 0x72be5d74U,
  45. 0x80deb1feU,
  46. 0x9bdc06a7U,
  47. 0xe49b69c1U,
  48. 0xefbe4786U,
  49. 0x0fc19dc6U,
  50. 0x240ca1ccU,
  51. 0x2de92c6fU,
  52. 0x4a7484aaU, // 20
  53. 0x5cb0a9dcU,
  54. 0x76f988daU,
  55. 0x983e5152U,
  56. 0xa831c66dU,
  57. 0xb00327c8U,
  58. 0xbf597fc7U,
  59. 0xc6e00bf3U,
  60. 0xd5a79147U,
  61. 0x06ca6351U,
  62. 0x14292967U, // 30
  63. 0x27b70a85U,
  64. 0x2e1b2138U,
  65. 0x4d2c6dfcU,
  66. 0x53380d13U,
  67. 0x650a7354U,
  68. 0x766a0abbU,
  69. 0x81c2c92eU,
  70. 0x92722c85U,
  71. 0xa2bfe8a1U,
  72. 0xa81a664bU, // 40
  73. 0xc24b8b70U,
  74. 0xc76c51a3U,
  75. 0xd192e819U,
  76. 0xd6990624U,
  77. 0xf40e3585U,
  78. 0x106aa070U,
  79. 0x19a4c116U,
  80. 0x1e376c08U,
  81. 0x2748774cU,
  82. 0x34b0bcb5U, // 50
  83. 0x391c0cb3U,
  84. 0x4ed8aa4aU,
  85. 0x5b9cca4fU,
  86. 0x682e6ff3U,
  87. 0x748f82eeU,
  88. 0x78a5636fU,
  89. 0x84c87814U,
  90. 0x8cc70208U,
  91. 0x90befffaU,
  92. 0xa4506cebU, // 60
  93. 0xbef9a3f7U,
  94. 0xc67178f2U
  95. };
  96. #define rotl(x,y) rotate(x,y)
  97. #define Ch(x,y,z) bitselect(z,y,x)
  98. #define Maj(x,y,z) Ch((x^z),y,z)
  99. #define EndianSwap(n) (rotl(n & ES[0], 24U)|rotl(n & ES[1], 8U))
  100. #define Tr2(x) (rotl(x, 30U) ^ rotl(x, 19U) ^ rotl(x, 10U))
  101. #define Tr1(x) (rotl(x, 26U) ^ rotl(x, 21U) ^ rotl(x, 7U))
  102. #define Wr2(x) (rotl(x, 25U) ^ rotl(x, 14U) ^ (x>>3U))
  103. #define Wr1(x) (rotl(x, 15U) ^ rotl(x, 13U) ^ (x>>10U))
  104. #define RND(a, b, c, d, e, f, g, h, k) \
  105. h += Tr1(e); \
  106. h += Ch(e, f, g); \
  107. h += k; \
  108. d += h; \
  109. h += Tr2(a); \
  110. h += Maj(a, b, c);
  111. void SHA256(uint4*restrict state0,uint4*restrict state1, const uint4 block0, const uint4 block1, const uint4 block2, const uint4 block3)
  112. {
  113. uint4 S0 = *state0;
  114. uint4 S1 = *state1;
  115. #define A S0.x
  116. #define B S0.y
  117. #define C S0.z
  118. #define D S0.w
  119. #define E S1.x
  120. #define F S1.y
  121. #define G S1.z
  122. #define H S1.w
  123. uint4 W[4];
  124. W[ 0].x = block0.x;
  125. RND(A,B,C,D,E,F,G,H, W[0].x+K[0]);
  126. W[ 0].y = block0.y;
  127. RND(H,A,B,C,D,E,F,G, W[0].y+K[1]);
  128. W[ 0].z = block0.z;
  129. RND(G,H,A,B,C,D,E,F, W[0].z+K[2]);
  130. W[ 0].w = block0.w;
  131. RND(F,G,H,A,B,C,D,E, W[0].w+K[3]);
  132. W[ 1].x = block1.x;
  133. RND(E,F,G,H,A,B,C,D, W[1].x+K[4]);
  134. W[ 1].y = block1.y;
  135. RND(D,E,F,G,H,A,B,C, W[1].y+K[5]);
  136. W[ 1].z = block1.z;
  137. RND(C,D,E,F,G,H,A,B, W[1].z+K[6]);
  138. W[ 1].w = block1.w;
  139. RND(B,C,D,E,F,G,H,A, W[1].w+K[7]);
  140. W[ 2].x = block2.x;
  141. RND(A,B,C,D,E,F,G,H, W[2].x+K[8]);
  142. W[ 2].y = block2.y;
  143. RND(H,A,B,C,D,E,F,G, W[2].y+K[9]);
  144. W[ 2].z = block2.z;
  145. RND(G,H,A,B,C,D,E,F, W[2].z+K[10]);
  146. W[ 2].w = block2.w;
  147. RND(F,G,H,A,B,C,D,E, W[2].w+K[11]);
  148. W[ 3].x = block3.x;
  149. RND(E,F,G,H,A,B,C,D, W[3].x+K[12]);
  150. W[ 3].y = block3.y;
  151. RND(D,E,F,G,H,A,B,C, W[3].y+K[13]);
  152. W[ 3].z = block3.z;
  153. RND(C,D,E,F,G,H,A,B, W[3].z+K[14]);
  154. W[ 3].w = block3.w;
  155. RND(B,C,D,E,F,G,H,A, W[3].w+0xc19bf174U);
  156. W[ 0].x += Wr1(W[ 3].z) + W[ 2].y + Wr2(W[ 0].y);
  157. RND(A,B,C,D,E,F,G,H, W[0].x+K[15]);
  158. W[ 0].y += Wr1(W[ 3].w) + W[ 2].z + Wr2(W[ 0].z);
  159. RND(H,A,B,C,D,E,F,G, W[0].y+K[16]);
  160. W[ 0].z += Wr1(W[ 0].x) + W[ 2].w + Wr2(W[ 0].w);
  161. RND(G,H,A,B,C,D,E,F, W[0].z+K[17]);
  162. W[ 0].w += Wr1(W[ 0].y) + W[ 3].x + Wr2(W[ 1].x);
  163. RND(F,G,H,A,B,C,D,E, W[0].w+K[18]);
  164. W[ 1].x += Wr1(W[ 0].z) + W[ 3].y + Wr2(W[ 1].y);
  165. RND(E,F,G,H,A,B,C,D, W[1].x+K[19]);
  166. W[ 1].y += Wr1(W[ 0].w) + W[ 3].z + Wr2(W[ 1].z);
  167. RND(D,E,F,G,H,A,B,C, W[1].y+K[20]);
  168. W[ 1].z += Wr1(W[ 1].x) + W[ 3].w + Wr2(W[ 1].w);
  169. RND(C,D,E,F,G,H,A,B, W[1].z+K[21]);
  170. W[ 1].w += Wr1(W[ 1].y) + W[ 0].x + Wr2(W[ 2].x);
  171. RND(B,C,D,E,F,G,H,A, W[1].w+K[22]);
  172. W[ 2].x += Wr1(W[ 1].z) + W[ 0].y + Wr2(W[ 2].y);
  173. RND(A,B,C,D,E,F,G,H, W[2].x+K[23]);
  174. W[ 2].y += Wr1(W[ 1].w) + W[ 0].z + Wr2(W[ 2].z);
  175. RND(H,A,B,C,D,E,F,G, W[2].y+K[24]);
  176. W[ 2].z += Wr1(W[ 2].x) + W[ 0].w + Wr2(W[ 2].w);
  177. RND(G,H,A,B,C,D,E,F, W[2].z+K[25]);
  178. W[ 2].w += Wr1(W[ 2].y) + W[ 1].x + Wr2(W[ 3].x);
  179. RND(F,G,H,A,B,C,D,E, W[2].w+K[26]);
  180. W[ 3].x += Wr1(W[ 2].z) + W[ 1].y + Wr2(W[ 3].y);
  181. RND(E,F,G,H,A,B,C,D, W[3].x+K[27]);
  182. W[ 3].y += Wr1(W[ 2].w) + W[ 1].z + Wr2(W[ 3].z);
  183. RND(D,E,F,G,H,A,B,C, W[3].y+K[28]);
  184. W[ 3].z += Wr1(W[ 3].x) + W[ 1].w + Wr2(W[ 3].w);
  185. RND(C,D,E,F,G,H,A,B, W[3].z+K[29]);
  186. W[ 3].w += Wr1(W[ 3].y) + W[ 2].x + Wr2(W[ 0].x);
  187. RND(B,C,D,E,F,G,H,A, W[3].w+K[30]);
  188. W[ 0].x += Wr1(W[ 3].z) + W[ 2].y + Wr2(W[ 0].y);
  189. RND(A,B,C,D,E,F,G,H, W[0].x+K[31]);
  190. W[ 0].y += Wr1(W[ 3].w) + W[ 2].z + Wr2(W[ 0].z);
  191. RND(H,A,B,C,D,E,F,G, W[0].y+K[32]);
  192. W[ 0].z += Wr1(W[ 0].x) + W[ 2].w + Wr2(W[ 0].w);
  193. RND(G,H,A,B,C,D,E,F, W[0].z+K[33]);
  194. W[ 0].w += Wr1(W[ 0].y) + W[ 3].x + Wr2(W[ 1].x);
  195. RND(F,G,H,A,B,C,D,E, W[0].w+K[34]);
  196. W[ 1].x += Wr1(W[ 0].z) + W[ 3].y + Wr2(W[ 1].y);
  197. RND(E,F,G,H,A,B,C,D, W[1].x+K[35]);
  198. W[ 1].y += Wr1(W[ 0].w) + W[ 3].z + Wr2(W[ 1].z);
  199. RND(D,E,F,G,H,A,B,C, W[1].y+K[36]);
  200. W[ 1].z += Wr1(W[ 1].x) + W[ 3].w + Wr2(W[ 1].w);
  201. RND(C,D,E,F,G,H,A,B, W[1].z+K[37]);
  202. W[ 1].w += Wr1(W[ 1].y) + W[ 0].x + Wr2(W[ 2].x);
  203. RND(B,C,D,E,F,G,H,A, W[1].w+K[38]);
  204. W[ 2].x += Wr1(W[ 1].z) + W[ 0].y + Wr2(W[ 2].y);
  205. RND(A,B,C,D,E,F,G,H, W[2].x+K[39]);
  206. W[ 2].y += Wr1(W[ 1].w) + W[ 0].z + Wr2(W[ 2].z);
  207. RND(H,A,B,C,D,E,F,G, W[2].y+K[40]);
  208. W[ 2].z += Wr1(W[ 2].x) + W[ 0].w + Wr2(W[ 2].w);
  209. RND(G,H,A,B,C,D,E,F, W[2].z+K[41]);
  210. W[ 2].w += Wr1(W[ 2].y) + W[ 1].x + Wr2(W[ 3].x);
  211. RND(F,G,H,A,B,C,D,E, W[2].w+K[42]);
  212. W[ 3].x += Wr1(W[ 2].z) + W[ 1].y + Wr2(W[ 3].y);
  213. RND(E,F,G,H,A,B,C,D, W[3].x+K[43]);
  214. W[ 3].y += Wr1(W[ 2].w) + W[ 1].z + Wr2(W[ 3].z);
  215. RND(D,E,F,G,H,A,B,C, W[3].y+K[44]);
  216. W[ 3].z += Wr1(W[ 3].x) + W[ 1].w + Wr2(W[ 3].w);
  217. RND(C,D,E,F,G,H,A,B, W[3].z+K[45]);
  218. W[ 3].w += Wr1(W[ 3].y) + W[ 2].x + Wr2(W[ 0].x);
  219. RND(B,C,D,E,F,G,H,A, W[3].w+K[46]);
  220. W[ 0].x += Wr1(W[ 3].z) + W[ 2].y + Wr2(W[ 0].y);
  221. RND(A,B,C,D,E,F,G,H, W[0].x+K[47]);
  222. W[ 0].y += Wr1(W[ 3].w) + W[ 2].z + Wr2(W[ 0].z);
  223. RND(H,A,B,C,D,E,F,G, W[0].y+K[48]);
  224. W[ 0].z += Wr1(W[ 0].x) + W[ 2].w + Wr2(W[ 0].w);
  225. RND(G,H,A,B,C,D,E,F, W[0].z+K[49]);
  226. W[ 0].w += Wr1(W[ 0].y) + W[ 3].x + Wr2(W[ 1].x);
  227. RND(F,G,H,A,B,C,D,E, W[0].w+K[50]);
  228. W[ 1].x += Wr1(W[ 0].z) + W[ 3].y + Wr2(W[ 1].y);
  229. RND(E,F,G,H,A,B,C,D, W[1].x+K[51]);
  230. W[ 1].y += Wr1(W[ 0].w) + W[ 3].z + Wr2(W[ 1].z);
  231. RND(D,E,F,G,H,A,B,C, W[1].y+K[52]);
  232. W[ 1].z += Wr1(W[ 1].x) + W[ 3].w + Wr2(W[ 1].w);
  233. RND(C,D,E,F,G,H,A,B, W[1].z+K[53]);
  234. W[ 1].w += Wr1(W[ 1].y) + W[ 0].x + Wr2(W[ 2].x);
  235. RND(B,C,D,E,F,G,H,A, W[1].w+K[54]);
  236. W[ 2].x += Wr1(W[ 1].z) + W[ 0].y + Wr2(W[ 2].y);
  237. RND(A,B,C,D,E,F,G,H, W[2].x+K[55]);
  238. W[ 2].y += Wr1(W[ 1].w) + W[ 0].z + Wr2(W[ 2].z);
  239. RND(H,A,B,C,D,E,F,G, W[2].y+K[56]);
  240. W[ 2].z += Wr1(W[ 2].x) + W[ 0].w + Wr2(W[ 2].w);
  241. RND(G,H,A,B,C,D,E,F, W[2].z+K[57]);
  242. W[ 2].w += Wr1(W[ 2].y) + W[ 1].x + Wr2(W[ 3].x);
  243. RND(F,G,H,A,B,C,D,E, W[2].w+K[58]);
  244. W[ 3].x += Wr1(W[ 2].z) + W[ 1].y + Wr2(W[ 3].y);
  245. RND(E,F,G,H,A,B,C,D, W[3].x+K[59]);
  246. W[ 3].y += Wr1(W[ 2].w) + W[ 1].z + Wr2(W[ 3].z);
  247. RND(D,E,F,G,H,A,B,C, W[3].y+K[60]);
  248. W[ 3].z += Wr1(W[ 3].x) + W[ 1].w + Wr2(W[ 3].w);
  249. RND(C,D,E,F,G,H,A,B, W[3].z+K[61]);
  250. W[ 3].w += Wr1(W[ 3].y) + W[ 2].x + Wr2(W[ 0].x);
  251. RND(B,C,D,E,F,G,H,A, W[3].w+K[62]);
  252. #undef A
  253. #undef B
  254. #undef C
  255. #undef D
  256. #undef E
  257. #undef F
  258. #undef G
  259. #undef H
  260. *state0 += S0;
  261. *state1 += S1;
  262. }
  263. void SHA256_fresh(uint4*restrict state0,uint4*restrict state1, const uint4 block0, const uint4 block1, const uint4 block2, const uint4 block3)
  264. {
  265. #define A (*state0).x
  266. #define B (*state0).y
  267. #define C (*state0).z
  268. #define D (*state0).w
  269. #define E (*state1).x
  270. #define F (*state1).y
  271. #define G (*state1).z
  272. #define H (*state1).w
  273. uint4 W[4];
  274. W[0].x = block0.x;
  275. D=0x98c7e2a2U+W[0].x;
  276. H=0xfc08884dU+W[0].x;
  277. W[0].y = block0.y;
  278. C=0xcd2a11aeU+Tr1(D)+Ch(D,0x510e527fU,0x9b05688cU)+W[0].y;
  279. G=0xC3910C8EU+C+Tr2(H)+Ch(H,0xfb6feee7U,0x2a01a605U);
  280. W[0].z = block0.z;
  281. B=0x0c2e12e0U+Tr1(C)+Ch(C,D,0x510e527fU)+W[0].z;
  282. F=0x4498517BU+B+Tr2(G)+Maj(G,H,0x6a09e667U);
  283. W[0].w = block0.w;
  284. A=0xa4ce148bU+Tr1(B)+Ch(B,C,D)+W[0].w;
  285. E=0x95F61999U+A+Tr2(F)+Maj(F,G,H);
  286. W[1].x = block1.x;
  287. RND(E,F,G,H,A,B,C,D, W[1].x+K[4]);
  288. W[1].y = block1.y;
  289. RND(D,E,F,G,H,A,B,C, W[1].y+K[5]);
  290. W[1].z = block1.z;
  291. RND(C,D,E,F,G,H,A,B, W[1].z+K[6]);
  292. W[1].w = block1.w;
  293. RND(B,C,D,E,F,G,H,A, W[1].w+K[7]);
  294. W[2].x = block2.x;
  295. RND(A,B,C,D,E,F,G,H, W[2].x+K[8]);
  296. W[2].y = block2.y;
  297. RND(H,A,B,C,D,E,F,G, W[2].y+K[9]);
  298. W[2].z = block2.z;
  299. RND(G,H,A,B,C,D,E,F, W[2].z+K[10]);
  300. W[2].w = block2.w;
  301. RND(F,G,H,A,B,C,D,E, W[2].w+K[11]);
  302. W[3].x = block3.x;
  303. RND(E,F,G,H,A,B,C,D, W[3].x+K[12]);
  304. W[3].y = block3.y;
  305. RND(D,E,F,G,H,A,B,C, W[3].y+K[13]);
  306. W[3].z = block3.z;
  307. RND(C,D,E,F,G,H,A,B, W[3].z+K[14]);
  308. W[3].w = block3.w;
  309. RND(B,C,D,E,F,G,H,A, W[3].w+0xc19bf174U);
  310. W[0].x += Wr1(W[3].z) + W[2].y + Wr2(W[0].y);
  311. RND(A,B,C,D,E,F,G,H, W[0].x+K[15]);
  312. W[0].y += Wr1(W[3].w) + W[2].z + Wr2(W[0].z);
  313. RND(H,A,B,C,D,E,F,G, W[0].y+K[16]);
  314. W[0].z += Wr1(W[0].x) + W[2].w + Wr2(W[0].w);
  315. RND(G,H,A,B,C,D,E,F, W[0].z+K[17]);
  316. W[0].w += Wr1(W[0].y) + W[3].x + Wr2(W[1].x);
  317. RND(F,G,H,A,B,C,D,E, W[0].w+K[18]);
  318. W[1].x += Wr1(W[0].z) + W[3].y + Wr2(W[1].y);
  319. RND(E,F,G,H,A,B,C,D, W[1].x+K[19]);
  320. W[1].y += Wr1(W[0].w) + W[3].z + Wr2(W[1].z);
  321. RND(D,E,F,G,H,A,B,C, W[1].y+K[20]);
  322. W[1].z += Wr1(W[1].x) + W[3].w + Wr2(W[1].w);
  323. RND(C,D,E,F,G,H,A,B, W[1].z+K[21]);
  324. W[1].w += Wr1(W[1].y) + W[0].x + Wr2(W[2].x);
  325. RND(B,C,D,E,F,G,H,A, W[1].w+K[22]);
  326. W[2].x += Wr1(W[1].z) + W[0].y + Wr2(W[2].y);
  327. RND(A,B,C,D,E,F,G,H, W[2].x+K[23]);
  328. W[2].y += Wr1(W[1].w) + W[0].z + Wr2(W[2].z);
  329. RND(H,A,B,C,D,E,F,G, W[2].y+K[24]);
  330. W[2].z += Wr1(W[2].x) + W[0].w + Wr2(W[2].w);
  331. RND(G,H,A,B,C,D,E,F, W[2].z+K[25]);
  332. W[2].w += Wr1(W[2].y) + W[1].x + Wr2(W[3].x);
  333. RND(F,G,H,A,B,C,D,E, W[2].w+K[26]);
  334. W[3].x += Wr1(W[2].z) + W[1].y + Wr2(W[3].y);
  335. RND(E,F,G,H,A,B,C,D, W[3].x+K[27]);
  336. W[3].y += Wr1(W[2].w) + W[1].z + Wr2(W[3].z);
  337. RND(D,E,F,G,H,A,B,C, W[3].y+K[28]);
  338. W[3].z += Wr1(W[3].x) + W[1].w + Wr2(W[3].w);
  339. RND(C,D,E,F,G,H,A,B, W[3].z+K[29]);
  340. W[3].w += Wr1(W[3].y) + W[2].x + Wr2(W[0].x);
  341. RND(B,C,D,E,F,G,H,A, W[3].w+K[30]);
  342. W[0].x += Wr1(W[3].z) + W[2].y + Wr2(W[0].y);
  343. RND(A,B,C,D,E,F,G,H, W[0].x+K[31]);
  344. W[0].y += Wr1(W[3].w) + W[2].z + Wr2(W[0].z);
  345. RND(H,A,B,C,D,E,F,G, W[0].y+K[32]);
  346. W[0].z += Wr1(W[0].x) + W[2].w + Wr2(W[0].w);
  347. RND(G,H,A,B,C,D,E,F, W[0].z+K[33]);
  348. W[0].w += Wr1(W[0].y) + W[3].x + Wr2(W[1].x);
  349. RND(F,G,H,A,B,C,D,E, W[0].w+K[34]);
  350. W[1].x += Wr1(W[0].z) + W[3].y + Wr2(W[1].y);
  351. RND(E,F,G,H,A,B,C,D, W[1].x+K[35]);
  352. W[1].y += Wr1(W[0].w) + W[3].z + Wr2(W[1].z);
  353. RND(D,E,F,G,H,A,B,C, W[1].y+K[36]);
  354. W[1].z += Wr1(W[1].x) + W[3].w + Wr2(W[1].w);
  355. RND(C,D,E,F,G,H,A,B, W[1].z+K[37]);
  356. W[1].w += Wr1(W[1].y) + W[0].x + Wr2(W[2].x);
  357. RND(B,C,D,E,F,G,H,A, W[1].w+K[38]);
  358. W[2].x += Wr1(W[1].z) + W[0].y + Wr2(W[2].y);
  359. RND(A,B,C,D,E,F,G,H, W[2].x+K[39]);
  360. W[2].y += Wr1(W[1].w) + W[0].z + Wr2(W[2].z);
  361. RND(H,A,B,C,D,E,F,G, W[2].y+K[40]);
  362. W[2].z += Wr1(W[2].x) + W[0].w + Wr2(W[2].w);
  363. RND(G,H,A,B,C,D,E,F, W[2].z+K[41]);
  364. W[2].w += Wr1(W[2].y) + W[1].x + Wr2(W[3].x);
  365. RND(F,G,H,A,B,C,D,E, W[2].w+K[42]);
  366. W[3].x += Wr1(W[2].z) + W[1].y + Wr2(W[3].y);
  367. RND(E,F,G,H,A,B,C,D, W[3].x+K[43]);
  368. W[3].y += Wr1(W[2].w) + W[1].z + Wr2(W[3].z);
  369. RND(D,E,F,G,H,A,B,C, W[3].y+K[44]);
  370. W[3].z += Wr1(W[3].x) + W[1].w + Wr2(W[3].w);
  371. RND(C,D,E,F,G,H,A,B, W[3].z+K[45]);
  372. W[3].w += Wr1(W[3].y) + W[2].x + Wr2(W[0].x);
  373. RND(B,C,D,E,F,G,H,A, W[3].w+K[46]);
  374. W[0].x += Wr1(W[3].z) + W[2].y + Wr2(W[0].y);
  375. RND(A,B,C,D,E,F,G,H, W[0].x+K[47]);
  376. W[0].y += Wr1(W[3].w) + W[2].z + Wr2(W[0].z);
  377. RND(H,A,B,C,D,E,F,G, W[0].y+K[48]);
  378. W[0].z += Wr1(W[0].x) + W[2].w + Wr2(W[0].w);
  379. RND(G,H,A,B,C,D,E,F, W[0].z+K[49]);
  380. W[0].w += Wr1(W[0].y) + W[3].x + Wr2(W[1].x);
  381. RND(F,G,H,A,B,C,D,E, W[0].w+K[50]);
  382. W[1].x += Wr1(W[0].z) + W[3].y + Wr2(W[1].y);
  383. RND(E,F,G,H,A,B,C,D, W[1].x+K[51]);
  384. W[1].y += Wr1(W[0].w) + W[3].z + Wr2(W[1].z);
  385. RND(D,E,F,G,H,A,B,C, W[1].y+K[52]);
  386. W[1].z += Wr1(W[1].x) + W[3].w + Wr2(W[1].w);
  387. RND(C,D,E,F,G,H,A,B, W[1].z+K[53]);
  388. W[1].w += Wr1(W[1].y) + W[0].x + Wr2(W[2].x);
  389. RND(B,C,D,E,F,G,H,A, W[1].w+K[54]);
  390. W[2].x += Wr1(W[1].z) + W[0].y + Wr2(W[2].y);
  391. RND(A,B,C,D,E,F,G,H, W[2].x+K[55]);
  392. W[2].y += Wr1(W[1].w) + W[0].z + Wr2(W[2].z);
  393. RND(H,A,B,C,D,E,F,G, W[2].y+K[56]);
  394. W[2].z += Wr1(W[2].x) + W[0].w + Wr2(W[2].w);
  395. RND(G,H,A,B,C,D,E,F, W[2].z+K[57]);
  396. W[2].w += Wr1(W[2].y) + W[1].x + Wr2(W[3].x);
  397. RND(F,G,H,A,B,C,D,E, W[2].w+K[58]);
  398. W[3].x += Wr1(W[2].z) + W[1].y + Wr2(W[3].y);
  399. RND(E,F,G,H,A,B,C,D, W[3].x+K[59]);
  400. W[3].y += Wr1(W[2].w) + W[1].z + Wr2(W[3].z);
  401. RND(D,E,F,G,H,A,B,C, W[3].y+K[60]);
  402. W[3].z += Wr1(W[3].x) + W[1].w + Wr2(W[3].w);
  403. RND(C,D,E,F,G,H,A,B, W[3].z+K[61]);
  404. W[3].w += Wr1(W[3].y) + W[2].x + Wr2(W[0].x);
  405. RND(B,C,D,E,F,G,H,A, W[3].w+K[62]);
  406. #undef A
  407. #undef B
  408. #undef C
  409. #undef D
  410. #undef E
  411. #undef F
  412. #undef G
  413. #undef H
  414. *state0 += (uint4)(0x6A09E667U,0xBB67AE85U,0x3C6EF372U,0xA54FF53AU);
  415. *state1 += (uint4)(0x510E527FU,0x9B05688CU,0x1F83D9ABU,0x5BE0CD19U);
  416. }
  417. __constant uint fixedW[64] =
  418. {
  419. 0x428a2f99,0xf1374491,0xb5c0fbcf,0xe9b5dba5,0x3956c25b,0x59f111f1,0x923f82a4,0xab1c5ed5,
  420. 0xd807aa98,0x12835b01,0x243185be,0x550c7dc3,0x72be5d74,0x80deb1fe,0x9bdc06a7,0xc19bf794,
  421. 0xf59b89c2,0x73924787,0x23c6886e,0xa42ca65c,0x15ed3627,0x4d6edcbf,0xe28217fc,0xef02488f,
  422. 0xb707775c,0x0468c23f,0xe7e72b4c,0x49e1f1a2,0x4b99c816,0x926d1570,0xaa0fc072,0xadb36e2c,
  423. 0xad87a3ea,0xbcb1d3a3,0x7b993186,0x562b9420,0xbff3ca0c,0xda4b0c23,0x6cd8711a,0x8f337caa,
  424. 0xc91b1417,0xc359dce1,0xa83253a7,0x3b13c12d,0x9d3d725d,0xd9031a84,0xb1a03340,0x16f58012,
  425. 0xe64fb6a2,0xe84d923a,0xe93a5730,0x09837686,0x078ff753,0x29833341,0xd5de0b7e,0x6948ccf4,
  426. 0xe0a1adbe,0x7c728e11,0x511c78e4,0x315b45bd,0xfca71413,0xea28f96a,0x79703128,0x4e1ef848,
  427. };
  428. void SHA256_fixed(uint4*restrict state0,uint4*restrict state1)
  429. {
  430. uint4 S0 = *state0;
  431. uint4 S1 = *state1;
  432. #define A S0.x
  433. #define B S0.y
  434. #define C S0.z
  435. #define D S0.w
  436. #define E S1.x
  437. #define F S1.y
  438. #define G S1.z
  439. #define H S1.w
  440. RND(A,B,C,D,E,F,G,H, fixedW[0]);
  441. RND(H,A,B,C,D,E,F,G, fixedW[1]);
  442. RND(G,H,A,B,C,D,E,F, fixedW[2]);
  443. RND(F,G,H,A,B,C,D,E, fixedW[3]);
  444. RND(E,F,G,H,A,B,C,D, fixedW[4]);
  445. RND(D,E,F,G,H,A,B,C, fixedW[5]);
  446. RND(C,D,E,F,G,H,A,B, fixedW[6]);
  447. RND(B,C,D,E,F,G,H,A, fixedW[7]);
  448. RND(A,B,C,D,E,F,G,H, fixedW[8]);
  449. RND(H,A,B,C,D,E,F,G, fixedW[9]);
  450. RND(G,H,A,B,C,D,E,F, fixedW[10]);
  451. RND(F,G,H,A,B,C,D,E, fixedW[11]);
  452. RND(E,F,G,H,A,B,C,D, fixedW[12]);
  453. RND(D,E,F,G,H,A,B,C, fixedW[13]);
  454. RND(C,D,E,F,G,H,A,B, fixedW[14]);
  455. RND(B,C,D,E,F,G,H,A, fixedW[15]);
  456. RND(A,B,C,D,E,F,G,H, fixedW[16]);
  457. RND(H,A,B,C,D,E,F,G, fixedW[17]);
  458. RND(G,H,A,B,C,D,E,F, fixedW[18]);
  459. RND(F,G,H,A,B,C,D,E, fixedW[19]);
  460. RND(E,F,G,H,A,B,C,D, fixedW[20]);
  461. RND(D,E,F,G,H,A,B,C, fixedW[21]);
  462. RND(C,D,E,F,G,H,A,B, fixedW[22]);
  463. RND(B,C,D,E,F,G,H,A, fixedW[23]);
  464. RND(A,B,C,D,E,F,G,H, fixedW[24]);
  465. RND(H,A,B,C,D,E,F,G, fixedW[25]);
  466. RND(G,H,A,B,C,D,E,F, fixedW[26]);
  467. RND(F,G,H,A,B,C,D,E, fixedW[27]);
  468. RND(E,F,G,H,A,B,C,D, fixedW[28]);
  469. RND(D,E,F,G,H,A,B,C, fixedW[29]);
  470. RND(C,D,E,F,G,H,A,B, fixedW[30]);
  471. RND(B,C,D,E,F,G,H,A, fixedW[31]);
  472. RND(A,B,C,D,E,F,G,H, fixedW[32]);
  473. RND(H,A,B,C,D,E,F,G, fixedW[33]);
  474. RND(G,H,A,B,C,D,E,F, fixedW[34]);
  475. RND(F,G,H,A,B,C,D,E, fixedW[35]);
  476. RND(E,F,G,H,A,B,C,D, fixedW[36]);
  477. RND(D,E,F,G,H,A,B,C, fixedW[37]);
  478. RND(C,D,E,F,G,H,A,B, fixedW[38]);
  479. RND(B,C,D,E,F,G,H,A, fixedW[39]);
  480. RND(A,B,C,D,E,F,G,H, fixedW[40]);
  481. RND(H,A,B,C,D,E,F,G, fixedW[41]);
  482. RND(G,H,A,B,C,D,E,F, fixedW[42]);
  483. RND(F,G,H,A,B,C,D,E, fixedW[43]);
  484. RND(E,F,G,H,A,B,C,D, fixedW[44]);
  485. RND(D,E,F,G,H,A,B,C, fixedW[45]);
  486. RND(C,D,E,F,G,H,A,B, fixedW[46]);
  487. RND(B,C,D,E,F,G,H,A, fixedW[47]);
  488. RND(A,B,C,D,E,F,G,H, fixedW[48]);
  489. RND(H,A,B,C,D,E,F,G, fixedW[49]);
  490. RND(G,H,A,B,C,D,E,F, fixedW[50]);
  491. RND(F,G,H,A,B,C,D,E, fixedW[51]);
  492. RND(E,F,G,H,A,B,C,D, fixedW[52]);
  493. RND(D,E,F,G,H,A,B,C, fixedW[53]);
  494. RND(C,D,E,F,G,H,A,B, fixedW[54]);
  495. RND(B,C,D,E,F,G,H,A, fixedW[55]);
  496. RND(A,B,C,D,E,F,G,H, fixedW[56]);
  497. RND(H,A,B,C,D,E,F,G, fixedW[57]);
  498. RND(G,H,A,B,C,D,E,F, fixedW[58]);
  499. RND(F,G,H,A,B,C,D,E, fixedW[59]);
  500. RND(E,F,G,H,A,B,C,D, fixedW[60]);
  501. RND(D,E,F,G,H,A,B,C, fixedW[61]);
  502. RND(C,D,E,F,G,H,A,B, fixedW[62]);
  503. RND(B,C,D,E,F,G,H,A, fixedW[63]);
  504. #undef A
  505. #undef B
  506. #undef C
  507. #undef D
  508. #undef E
  509. #undef F
  510. #undef G
  511. #undef H
  512. *state0 += S0;
  513. *state1 += S1;
  514. }
  515. void shittify(uint4 B[8])
  516. {
  517. uint4 tmp[4];
  518. tmp[0] = (uint4)(B[1].x,B[2].y,B[3].z,B[0].w);
  519. tmp[1] = (uint4)(B[2].x,B[3].y,B[0].z,B[1].w);
  520. tmp[2] = (uint4)(B[3].x,B[0].y,B[1].z,B[2].w);
  521. tmp[3] = (uint4)(B[0].x,B[1].y,B[2].z,B[3].w);
  522. #pragma unroll
  523. for(uint i=0; i<4; ++i)
  524. B[i] = EndianSwap(tmp[i]);
  525. tmp[0] = (uint4)(B[5].x,B[6].y,B[7].z,B[4].w);
  526. tmp[1] = (uint4)(B[6].x,B[7].y,B[4].z,B[5].w);
  527. tmp[2] = (uint4)(B[7].x,B[4].y,B[5].z,B[6].w);
  528. tmp[3] = (uint4)(B[4].x,B[5].y,B[6].z,B[7].w);
  529. #pragma unroll
  530. for(uint i=0; i<4; ++i)
  531. B[i+4] = EndianSwap(tmp[i]);
  532. }
  533. void unshittify(uint4 B[8])
  534. {
  535. uint4 tmp[4];
  536. tmp[0] = (uint4)(B[3].x,B[2].y,B[1].z,B[0].w);
  537. tmp[1] = (uint4)(B[0].x,B[3].y,B[2].z,B[1].w);
  538. tmp[2] = (uint4)(B[1].x,B[0].y,B[3].z,B[2].w);
  539. tmp[3] = (uint4)(B[2].x,B[1].y,B[0].z,B[3].w);
  540. #pragma unroll
  541. for(uint i=0; i<4; ++i)
  542. B[i] = EndianSwap(tmp[i]);
  543. tmp[0] = (uint4)(B[7].x,B[6].y,B[5].z,B[4].w);
  544. tmp[1] = (uint4)(B[4].x,B[7].y,B[6].z,B[5].w);
  545. tmp[2] = (uint4)(B[5].x,B[4].y,B[7].z,B[6].w);
  546. tmp[3] = (uint4)(B[6].x,B[5].y,B[4].z,B[7].w);
  547. #pragma unroll
  548. for(uint i=0; i<4; ++i)
  549. B[i+4] = EndianSwap(tmp[i]);
  550. }
  551. void salsa(uint4 B[8])
  552. {
  553. uint4 w[4];
  554. #pragma unroll
  555. for(uint i=0; i<4; ++i)
  556. w[i] = (B[i]^=B[i+4]);
  557. #pragma unroll
  558. for(uint i=0; i<4; ++i)
  559. {
  560. w[0] ^= rotl(w[3] +w[2] , 7U);
  561. w[1] ^= rotl(w[0] +w[3] , 9U);
  562. w[2] ^= rotl(w[1] +w[0] ,13U);
  563. w[3] ^= rotl(w[2] +w[1] ,18U);
  564. w[2] ^= rotl(w[3].wxyz+w[0].zwxy, 7U);
  565. w[1] ^= rotl(w[2].wxyz+w[3].zwxy, 9U);
  566. w[0] ^= rotl(w[1].wxyz+w[2].zwxy,13U);
  567. w[3] ^= rotl(w[0].wxyz+w[1].zwxy,18U);
  568. }
  569. #pragma unroll
  570. for(uint i=0; i<4; ++i)
  571. w[i] = (B[i+4]^=(B[i]+=w[i]));
  572. #pragma unroll
  573. for(uint i=0; i<4; ++i)
  574. {
  575. w[0] ^= rotl(w[3] +w[2] , 7U);
  576. w[1] ^= rotl(w[0] +w[3] , 9U);
  577. w[2] ^= rotl(w[1] +w[0] ,13U);
  578. w[3] ^= rotl(w[2] +w[1] ,18U);
  579. w[2] ^= rotl(w[3].wxyz+w[0].zwxy, 7U);
  580. w[1] ^= rotl(w[2].wxyz+w[3].zwxy, 9U);
  581. w[0] ^= rotl(w[1].wxyz+w[2].zwxy,13U);
  582. w[3] ^= rotl(w[0].wxyz+w[1].zwxy,18U);
  583. }
  584. #pragma unroll
  585. for(uint i=0; i<4; ++i)
  586. B[i+4] += w[i];
  587. }
  588. #define Coord(x,y,z) x+y*(x ## SIZE)+z*(y ## SIZE)*(x ## SIZE)
  589. #define CO Coord(z,x,y)
  590. void scrypt_core(uint4 X[8], __global uint4*restrict lookup)
  591. {
  592. shittify(X);
  593. const uint zSIZE = 8;
  594. const uint ySIZE = (1024/LOOKUP_GAP+(1024%LOOKUP_GAP>0));
  595. const uint xSIZE = CONCURRENT_THREADS;
  596. uint x = get_global_id(0)%xSIZE;
  597. for(uint y=0; y<1024/LOOKUP_GAP; ++y)
  598. {
  599. #pragma unroll
  600. for(uint z=0; z<zSIZE; ++z)
  601. lookup[CO] = X[z];
  602. for(uint i=0; i<LOOKUP_GAP; ++i)
  603. salsa(X);
  604. }
  605. #if (LOOKUP_GAP != 1) && (LOOKUP_GAP != 2) && (LOOKUP_GAP != 4) && (LOOKUP_GAP != 8)
  606. {
  607. uint y = (1024/LOOKUP_GAP);
  608. #pragma unroll
  609. for(uint z=0; z<zSIZE; ++z)
  610. lookup[CO] = X[z];
  611. for(uint i=0; i<1024%LOOKUP_GAP; ++i)
  612. salsa(X);
  613. }
  614. #endif
  615. for (uint i=0; i<1024; ++i)
  616. {
  617. uint4 V[8];
  618. uint j = X[7].x & 0x3FF;
  619. uint y = (j/LOOKUP_GAP);
  620. #pragma unroll
  621. for(uint z=0; z<zSIZE; ++z)
  622. V[z] = lookup[CO];
  623. #if (LOOKUP_GAP == 1)
  624. #elif (LOOKUP_GAP == 2)
  625. if (j&1)
  626. salsa(V);
  627. #else
  628. uint val = j%LOOKUP_GAP;
  629. for (uint z=0; z<val; ++z)
  630. salsa(V);
  631. #endif
  632. #pragma unroll
  633. for(uint z=0; z<zSIZE; ++z)
  634. X[z] ^= V[z];
  635. salsa(X);
  636. }
  637. unshittify(X);
  638. }
  639. #define FOUND (0x0F)
  640. #define SETFOUND(Xnonce) output[output[FOUND]++] = Xnonce
  641. __attribute__((reqd_work_group_size(WORKSIZE, 1, 1)))
  642. __kernel void search(__global const uint4 * restrict input,
  643. volatile __global uint*restrict output, __global uint4*restrict padcache,
  644. const uint4 midstate0, const uint4 midstate16, const uint target)
  645. {
  646. uint gid = get_global_id(0);
  647. uint4 X[8];
  648. uint4 tstate0, tstate1, ostate0, ostate1, tmp0, tmp1;
  649. uint4 data = (uint4)(input[4].x,input[4].y,input[4].z,gid);
  650. uint4 pad0 = midstate0, pad1 = midstate16;
  651. SHA256(&pad0,&pad1, data, (uint4)(0x80000000U,0,0,0), (uint4)(0,0,0,0), (uint4)(0,0,0,0x280));
  652. SHA256_fresh(&ostate0,&ostate1, pad0^0x5C5C5C5CU, pad1^0x5C5C5C5CU, 0x5C5C5C5CU, 0x5C5C5C5CU);
  653. SHA256_fresh(&tstate0,&tstate1, pad0^0x36363636U, pad1^0x36363636U, 0x36363636U, 0x36363636U);
  654. tmp0 = tstate0;
  655. tmp1 = tstate1;
  656. SHA256(&tstate0, &tstate1, input[0],input[1],input[2],input[3]);
  657. #pragma unroll
  658. for (uint i=0; i<4; i++)
  659. {
  660. pad0 = tstate0;
  661. pad1 = tstate1;
  662. X[i*2 ] = ostate0;
  663. X[i*2+1] = ostate1;
  664. SHA256(&pad0,&pad1, data, (uint4)(i+1,0x80000000U,0,0), (uint4)(0,0,0,0), (uint4)(0,0,0,0x4a0U));
  665. SHA256(X+i*2,X+i*2+1, pad0, pad1, (uint4)(0x80000000U, 0U, 0U, 0U), (uint4)(0U, 0U, 0U, 0x300U));
  666. }
  667. scrypt_core(X,padcache);
  668. SHA256(&tmp0,&tmp1, X[0], X[1], X[2], X[3]);
  669. SHA256(&tmp0,&tmp1, X[4], X[5], X[6], X[7]);
  670. SHA256_fixed(&tmp0,&tmp1);
  671. SHA256(&ostate0,&ostate1, tmp0, tmp1, (uint4)(0x80000000U, 0U, 0U, 0U), (uint4)(0U, 0U, 0U, 0x300U));
  672. bool result = (EndianSwap(ostate1.w) <= target);
  673. if (result)
  674. SETFOUND(gid);
  675. }