keccak.c 6.7 KB

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  1. #include "config.h"
  2. #include "miner.h"
  3. #include <stdlib.h>
  4. #include <stdint.h>
  5. #include <string.h>
  6. #include <stdio.h>
  7. #define CL_SET_BLKARG(blkvar) status |= clSetKernelArg(*kernel, num++, sizeof(uint), (void *)&blk->blkvar)
  8. #define CL_SET_ARG(var) status |= clSetKernelArg(*kernel, num++, sizeof(var), (void *)&var)
  9. struct uint256 {
  10. unsigned char v[32];
  11. };
  12. typedef struct uint256 uint256;
  13. typedef unsigned long long UINT64;
  14. #define ROL(a, offset) ((a << offset) | (a >> (64-offset)))
  15. static const UINT64 KeccakF_RoundConstants[24] = {
  16. 0x0000000000000001ULL,
  17. 0x0000000000008082ULL,
  18. 0x800000000000808aULL,
  19. 0x8000000080008000ULL,
  20. 0x000000000000808bULL,
  21. 0x0000000080000001ULL,
  22. 0x8000000080008081ULL,
  23. 0x8000000000008009ULL,
  24. 0x000000000000008aULL,
  25. 0x0000000000000088ULL,
  26. 0x0000000080008009ULL,
  27. 0x000000008000000aULL,
  28. 0x000000008000808bULL,
  29. 0x800000000000008bULL,
  30. 0x8000000000008089ULL,
  31. 0x8000000000008003ULL,
  32. 0x8000000000008002ULL,
  33. 0x8000000000000080ULL,
  34. 0x000000000000800aULL,
  35. 0x800000008000000aULL,
  36. 0x8000000080008081ULL,
  37. 0x8000000000008080ULL,
  38. 0x0000000080000001ULL,
  39. 0x8000000080008008ULL
  40. };
  41. struct bin32 {
  42. UINT64 v0;
  43. UINT64 v1;
  44. UINT64 v2;
  45. UINT64 v3;
  46. };
  47. void keccak1(unsigned char *out, const unsigned char *inraw, unsigned inrawlen)
  48. {
  49. unsigned char temp[136];
  50. unsigned round;
  51. UINT64 Aba, Abe, Abi, Abo, Abu;
  52. UINT64 Aga, Age, Agi, Ago, Agu;
  53. UINT64 Aka, Ake, Aki, Ako, Aku;
  54. UINT64 Ama, Ame, Ami, Amo, Amu;
  55. UINT64 Asa, Ase, Asi, Aso, Asu;
  56. UINT64 BCa, BCe, BCi, BCo, BCu;
  57. UINT64 Da, De, Di, Do, Du;
  58. UINT64 Eba, Ebe, Ebi, Ebo, Ebu;
  59. UINT64 Ega, Ege, Egi, Ego, Egu;
  60. UINT64 Eka, Eke, Eki, Eko, Eku;
  61. UINT64 Ema, Eme, Emi, Emo, Emu;
  62. UINT64 Esa, Ese, Esi, Eso, Esu;
  63. memcpy(temp, inraw, inrawlen);
  64. temp[inrawlen++] = 1;
  65. memset( temp+inrawlen, 0, 136 - inrawlen);
  66. temp[136-1] |= 0x80;
  67. const UINT64 *in = (const UINT64 *)temp;
  68. // copyFromState(A, state)
  69. Aba = in[ 0];
  70. Abe = in[ 1];
  71. Abi = in[ 2];
  72. Abo = in[ 3];
  73. Abu = in[ 4];
  74. Aga = in[ 5];
  75. Age = in[ 6];
  76. Agi = in[ 7];
  77. Ago = in[ 8];
  78. Agu = in[ 9];
  79. Aka = in[10];
  80. Ake = in[11];
  81. Aki = in[12];
  82. Ako = in[13];
  83. Aku = in[14];
  84. Ama = in[15];
  85. Ame = in[16];
  86. Ami = 0;
  87. Amo = 0;
  88. Amu = 0;
  89. Asa = 0;
  90. Ase = 0;
  91. Asi = 0;
  92. Aso = 0;
  93. Asu = 0;
  94. for (round = 0; round < 24; round += 2)
  95. {
  96. // prepareTheta
  97. BCa = Aba^Aga^Aka^Ama^Asa;
  98. BCe = Abe^Age^Ake^Ame^Ase;
  99. BCi = Abi^Agi^Aki^Ami^Asi;
  100. BCo = Abo^Ago^Ako^Amo^Aso;
  101. BCu = Abu^Agu^Aku^Amu^Asu;
  102. // thetaRhoPiChiIotaPrepareTheta(round, A, E)
  103. Da = BCu^ROL(BCe, 1);
  104. De = BCa^ROL(BCi, 1);
  105. Di = BCe^ROL(BCo, 1);
  106. Do = BCi^ROL(BCu, 1);
  107. Du = BCo^ROL(BCa, 1);
  108. Aba ^= Da;
  109. BCa = Aba;
  110. Age ^= De;
  111. BCe = ROL(Age, 44);
  112. Aki ^= Di;
  113. BCi = ROL(Aki, 43);
  114. Amo ^= Do;
  115. BCo = ROL(Amo, 21);
  116. Asu ^= Du;
  117. BCu = ROL(Asu, 14);
  118. Eba = BCa ^((~BCe) & BCi);
  119. Eba ^= KeccakF_RoundConstants[round];
  120. Ebe = BCe ^((~BCi) & BCo);
  121. Ebi = BCi ^((~BCo) & BCu);
  122. Ebo = BCo ^((~BCu) & BCa);
  123. Ebu = BCu ^((~BCa) & BCe);
  124. Abo ^= Do;
  125. BCa = ROL(Abo, 28);
  126. Agu ^= Du;
  127. BCe = ROL(Agu, 20);
  128. Aka ^= Da;
  129. BCi = ROL(Aka, 3);
  130. Ame ^= De;
  131. BCo = ROL(Ame, 45);
  132. Asi ^= Di;
  133. BCu = ROL(Asi, 61);
  134. Ega = BCa ^((~BCe) & BCi);
  135. Ege = BCe ^((~BCi) & BCo);
  136. Egi = BCi ^((~BCo) & BCu);
  137. Ego = BCo ^((~BCu) & BCa);
  138. Egu = BCu ^((~BCa) & BCe);
  139. Abe ^= De;
  140. BCa = ROL(Abe, 1);
  141. Agi ^= Di;
  142. BCe = ROL(Agi, 6);
  143. Ako ^= Do;
  144. BCi = ROL(Ako, 25);
  145. Amu ^= Du;
  146. BCo = ROL(Amu, 8);
  147. Asa ^= Da;
  148. BCu = ROL(Asa, 18);
  149. Eka = BCa ^((~BCe) & BCi);
  150. Eke = BCe ^((~BCi) & BCo);
  151. Eki = BCi ^((~BCo) & BCu);
  152. Eko = BCo ^((~BCu) & BCa);
  153. Eku = BCu ^((~BCa) & BCe);
  154. Abu ^= Du;
  155. BCa = ROL(Abu, 27);
  156. Aga ^= Da;
  157. BCe = ROL(Aga, 36);
  158. Ake ^= De;
  159. BCi = ROL(Ake, 10);
  160. Ami ^= Di;
  161. BCo = ROL(Ami, 15);
  162. Aso ^= Do;
  163. BCu = ROL(Aso, 56);
  164. Ema = BCa ^((~BCe) & BCi);
  165. Eme = BCe ^((~BCi) & BCo);
  166. Emi = BCi ^((~BCo) & BCu);
  167. Emo = BCo ^((~BCu) & BCa);
  168. Emu = BCu ^((~BCa) & BCe);
  169. Abi ^= Di;
  170. BCa = ROL(Abi, 62);
  171. Ago ^= Do;
  172. BCe = ROL(Ago, 55);
  173. Aku ^= Du;
  174. BCi = ROL(Aku, 39);
  175. Ama ^= Da;
  176. BCo = ROL(Ama, 41);
  177. Ase ^= De;
  178. BCu = ROL(Ase, 2);
  179. Esa = BCa ^((~BCe) & BCi);
  180. Ese = BCe ^((~BCi) & BCo);
  181. Esi = BCi ^((~BCo) & BCu);
  182. Eso = BCo ^((~BCu) & BCa);
  183. Esu = BCu ^((~BCa) & BCe);
  184. // prepareTheta
  185. BCa = Eba^Ega^Eka^Ema^Esa;
  186. BCe = Ebe^Ege^Eke^Eme^Ese;
  187. BCi = Ebi^Egi^Eki^Emi^Esi;
  188. BCo = Ebo^Ego^Eko^Emo^Eso;
  189. BCu = Ebu^Egu^Eku^Emu^Esu;
  190. // thetaRhoPiChiIotaPrepareTheta(round+1, E, A)
  191. Da = BCu^ROL(BCe, 1);
  192. De = BCa^ROL(BCi, 1);
  193. Di = BCe^ROL(BCo, 1);
  194. Do = BCi^ROL(BCu, 1);
  195. Du = BCo^ROL(BCa, 1);
  196. Eba ^= Da;
  197. BCa = Eba;
  198. Ege ^= De;
  199. BCe = ROL(Ege, 44);
  200. Eki ^= Di;
  201. BCi = ROL(Eki, 43);
  202. Emo ^= Do;
  203. BCo = ROL(Emo, 21);
  204. Esu ^= Du;
  205. BCu = ROL(Esu, 14);
  206. Aba = BCa ^((~BCe) & BCi);
  207. Aba ^= KeccakF_RoundConstants[round+1];
  208. Abe = BCe ^((~BCi) & BCo);
  209. Abi = BCi ^((~BCo) & BCu);
  210. Abo = BCo ^((~BCu) & BCa);
  211. Abu = BCu ^((~BCa) & BCe);
  212. Ebo ^= Do;
  213. BCa = ROL(Ebo, 28);
  214. Egu ^= Du;
  215. BCe = ROL(Egu, 20);
  216. Eka ^= Da;
  217. BCi = ROL(Eka, 3);
  218. Eme ^= De;
  219. BCo = ROL(Eme, 45);
  220. Esi ^= Di;
  221. BCu = ROL(Esi, 61);
  222. Aga = BCa ^((~BCe) & BCi);
  223. Age = BCe ^((~BCi) & BCo);
  224. Agi = BCi ^((~BCo) & BCu);
  225. Ago = BCo ^((~BCu) & BCa);
  226. Agu = BCu ^((~BCa) & BCe);
  227. Ebe ^= De;
  228. BCa = ROL(Ebe, 1);
  229. Egi ^= Di;
  230. BCe = ROL(Egi, 6);
  231. Eko ^= Do;
  232. BCi = ROL(Eko, 25);
  233. Emu ^= Du;
  234. BCo = ROL(Emu, 8);
  235. Esa ^= Da;
  236. BCu = ROL(Esa, 18);
  237. Aka = BCa ^((~BCe) & BCi);
  238. Ake = BCe ^((~BCi) & BCo);
  239. Aki = BCi ^((~BCo) & BCu);
  240. Ako = BCo ^((~BCu) & BCa);
  241. Aku = BCu ^((~BCa) & BCe);
  242. Ebu ^= Du;
  243. BCa = ROL(Ebu, 27);
  244. Ega ^= Da;
  245. BCe = ROL(Ega, 36);
  246. Eke ^= De;
  247. BCi = ROL(Eke, 10);
  248. Emi ^= Di;
  249. BCo = ROL(Emi, 15);
  250. Eso ^= Do;
  251. BCu = ROL(Eso, 56);
  252. Ama = BCa ^((~BCe) & BCi);
  253. Ame = BCe ^((~BCi) & BCo);
  254. Ami = BCi ^((~BCo) & BCu);
  255. Amo = BCo ^((~BCu) & BCa);
  256. Amu = BCu ^((~BCa) & BCe);
  257. Ebi ^= Di;
  258. BCa = ROL(Ebi, 62);
  259. Ego ^= Do;
  260. BCe = ROL(Ego, 55);
  261. Eku ^= Du;
  262. BCi = ROL(Eku, 39);
  263. Ema ^= Da;
  264. BCo = ROL(Ema, 41);
  265. Ese ^= De;
  266. BCu = ROL(Ese, 2);
  267. Asa = BCa ^((~BCe) & BCi);
  268. Ase = BCe ^((~BCi) & BCo);
  269. Asi = BCi ^((~BCo) & BCu);
  270. Aso = BCo ^((~BCu) & BCa);
  271. Asu = BCu ^((~BCa) & BCe);
  272. }
  273. {
  274. UINT64 *out64 = (UINT64 *)out;
  275. out64[ 0] = Aba;
  276. out64[ 1] = Abe;
  277. out64[ 2] = Abi;
  278. out64[ 3] = Abo;
  279. }
  280. }
  281. void keccak_regenhash(struct work *work)
  282. {
  283. uint256 result;
  284. unsigned int data[20], datacopy[20]; // aligned for flip80
  285. memcpy(datacopy, work->data, 80);
  286. flip80(data, datacopy);
  287. keccak1((unsigned char*)&result, (unsigned char*)data, 80);
  288. memcpy(work->hash, &result, 32);
  289. }
  290. bool keccak_prepare_work(struct thr_info __maybe_unused *thr, struct work *work)
  291. {
  292. unsigned int src[20], dst[20]; // aligned for flip80
  293. int i;
  294. memcpy(src, work->data, 80);
  295. flip80(dst, src);
  296. memcpy(work->blk.keccak_data, dst, 80);
  297. return true;
  298. }