diakgcn120222.cl 30 KB

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  1. // DiaKGCN 22-02-2012 - OpenCL kernel by Diapolo
  2. //
  3. // Parts and / or ideas for this kernel are based upon the public-domain poclbm project, the phatk kernel by Phateus and the DiabloMiner kernel by DiabloD3.
  4. // The kernel was rewritten by me (Diapolo) and is still public-domain!
  5. #ifdef VECTORS8
  6. typedef uint8 u;
  7. #elif defined VECTORS4
  8. typedef uint4 u;
  9. #elif defined VECTORS2
  10. typedef uint2 u;
  11. #else
  12. typedef uint u;
  13. #endif
  14. #ifdef BITALIGN
  15. #pragma OPENCL EXTENSION cl_amd_media_ops : enable
  16. #ifdef BFI_INT
  17. #define ch(x, y, z) amd_bytealign(x, y, z)
  18. #define ma(x, y, z) amd_bytealign(z ^ x, y, x)
  19. #else
  20. #define ch(x, y, z) bitselect(z, y, x)
  21. #define ma(z, x, y) bitselect(z, y, z ^ x)
  22. #endif
  23. #else
  24. #define ch(x, y, z) (z ^ (x & (y ^ z)))
  25. #define ma(x, y, z) ((x & z) | (y & (x | z)))
  26. #endif
  27. #define rotr15(n) (rotate(n, 15U) ^ rotate(n, 13U) ^ (n >> 10U))
  28. #define rotr25(n) (rotate(n, 25U) ^ rotate(n, 14U) ^ (n >> 3U))
  29. #define rotr26(n) (rotate(n, 26U) ^ rotate(n, 21U) ^ rotate(n, 7U))
  30. #define rotr30(n) (rotate(n, 30U) ^ rotate(n, 19U) ^ rotate(n, 10U))
  31. __kernel
  32. __attribute__((reqd_work_group_size(WORKSIZE, 1, 1)))
  33. void search(
  34. const u base,
  35. const uint PreVal0, const uint PreVal4,
  36. const uint H1, const uint D1A, const uint B1, const uint C1,
  37. const uint F1, const uint G1, const uint C1addK5, const uint B1addK6, const uint PreVal0addK7,
  38. const uint W16addK16, const uint W17addK17,
  39. const uint PreW18, const uint PreW19,
  40. const uint W16, const uint W17,
  41. const uint PreW31, const uint PreW32,
  42. const uint state0, const uint state1, const uint state2, const uint state3,
  43. const uint state4, const uint state5, const uint state6, const uint state7,
  44. const uint state0A, const uint state0B,
  45. const uint state1A, const uint state2A, const uint state3A, const uint state4A,
  46. const uint state5A, const uint state6A, const uint state7A,
  47. __global uint * output)
  48. {
  49. u V[8];
  50. u W[16];
  51. const u nonce = base + (uint)get_global_id(0);
  52. V[0] = PreVal0 + nonce;
  53. V[1] = B1;
  54. V[2] = C1;
  55. V[3] = D1A;
  56. V[4] = PreVal4 + nonce;
  57. V[5] = F1;
  58. V[6] = G1;
  59. V[7] = H1;
  60. V[7] += V[3] + ch(V[0], V[1], V[2]) + rotr26(V[0]);
  61. V[3] = V[3] + ch(V[0], V[1], V[2]) + rotr26(V[0]) + rotr30(V[4]) + ma(V[5], V[6], V[4]);
  62. V[6] += C1addK5 + ch(V[7], V[0], V[1]) + rotr26(V[7]);
  63. V[2] = C1addK5 + ch(V[7], V[0], V[1]) + rotr26(V[7]) + rotr30(V[3]) + ma(V[4], V[5], V[3]);
  64. V[5] += B1addK6 + ch(V[6], V[7], V[0]) + rotr26(V[6]);
  65. V[1] = B1addK6 + ch(V[6], V[7], V[0]) + rotr26(V[6]) + rotr30(V[2]) + ma(V[3], V[4], V[2]);
  66. V[4] += PreVal0addK7 + nonce + ch(V[5], V[6], V[7]) + rotr26(V[5]);
  67. V[0] = PreVal0addK7 + nonce + ch(V[5], V[6], V[7]) + rotr26(V[5]) + rotr30(V[1]) + ma(V[2], V[3], V[1]);
  68. V[3] += 0xd807aa98 + V[7] + ch(V[4], V[5], V[6]) + rotr26(V[4]);
  69. V[7] = 0xd807aa98 + V[7] + ch(V[4], V[5], V[6]) + rotr26(V[4]) + rotr30(V[0]) + ma(V[1], V[2], V[0]);
  70. V[2] += 0x12835b01 + V[6] + ch(V[3], V[4], V[5]) + rotr26(V[3]);
  71. V[6] = 0x12835b01 + V[6] + ch(V[3], V[4], V[5]) + rotr26(V[3]) + rotr30(V[7]) + ma(V[0], V[1], V[7]);
  72. V[1] += 0x243185be + V[5] + ch(V[2], V[3], V[4]) + rotr26(V[2]);
  73. V[5] = 0x243185be + V[5] + ch(V[2], V[3], V[4]) + rotr26(V[2]) + rotr30(V[6]) + ma(V[7], V[0], V[6]);
  74. V[0] += 0x550c7dc3 + V[4] + ch(V[1], V[2], V[3]) + rotr26(V[1]);
  75. V[4] = 0x550c7dc3 + V[4] + ch(V[1], V[2], V[3]) + rotr26(V[1]) + rotr30(V[5]) + ma(V[6], V[7], V[5]);
  76. V[7] += 0x72be5d74 + V[3] + ch(V[0], V[1], V[2]) + rotr26(V[0]);
  77. V[3] = 0x72be5d74 + V[3] + ch(V[0], V[1], V[2]) + rotr26(V[0]) + rotr30(V[4]) + ma(V[5], V[6], V[4]);
  78. V[6] += 0x80deb1fe + V[2] + ch(V[7], V[0], V[1]) + rotr26(V[7]);
  79. V[2] = 0x80deb1fe + V[2] + ch(V[7], V[0], V[1]) + rotr26(V[7]) + rotr30(V[3]) + ma(V[4], V[5], V[3]);
  80. V[5] += 0x9bdc06a7 + V[1] + ch(V[6], V[7], V[0]) + rotr26(V[6]);
  81. V[1] = 0x9bdc06a7 + V[1] + ch(V[6], V[7], V[0]) + rotr26(V[6]) + rotr30(V[2]) + ma(V[3], V[4], V[2]);
  82. V[4] += 0xc19bf3f4 + V[0] + ch(V[5], V[6], V[7]) + rotr26(V[5]);
  83. V[0] = 0xc19bf3f4 + V[0] + ch(V[5], V[6], V[7]) + rotr26(V[5]) + rotr30(V[1]) + ma(V[2], V[3], V[1]);
  84. V[3] += W16addK16 + V[7] + ch(V[4], V[5], V[6]) + rotr26(V[4]);
  85. V[7] = W16addK16 + V[7] + ch(V[4], V[5], V[6]) + rotr26(V[4]) + rotr30(V[0]) + ma(V[1], V[2], V[0]);
  86. V[2] += W17addK17 + V[6] + ch(V[3], V[4], V[5]) + rotr26(V[3]);
  87. V[6] = W17addK17 + V[6] + ch(V[3], V[4], V[5]) + rotr26(V[3]) + rotr30(V[7]) + ma(V[0], V[1], V[7]);
  88. //----------------------------------------------------------------------------------
  89. W[0] = PreW18 + rotr25(nonce);
  90. W[1] = PreW19 + nonce;
  91. W[2] = 0x80000000 + rotr15(W[0]);
  92. W[3] = rotr15(W[1]);
  93. W[4] = 0x00000280 + rotr15(W[2]);
  94. W[5] = W16 + rotr15(W[3]);
  95. W[6] = W17 + rotr15(W[4]);
  96. W[7] = W[0] + rotr15(W[5]);
  97. W[8] = W[1] + rotr15(W[6]);
  98. W[9] = W[2] + rotr15(W[7]);
  99. W[10] = W[3] + rotr15(W[8]);
  100. W[11] = W[4] + rotr15(W[9]);
  101. W[12] = W[5] + 0x00a00055 + rotr15(W[10]);
  102. W[13] = W[6] + PreW31 + rotr15(W[11]);
  103. W[14] = W[7] + PreW32 + rotr15(W[12]);
  104. W[15] = W[8] + W17 + rotr15(W[13]) + rotr25(W[0]);
  105. V[1] += 0x0fc19dc6 + V[5] + W[0] + ch(V[2], V[3], V[4]) + rotr26(V[2]);
  106. V[5] = 0x0fc19dc6 + V[5] + W[0] + ch(V[2], V[3], V[4]) + rotr26(V[2]) + rotr30(V[6]) + ma(V[7], V[0], V[6]);
  107. V[0] += 0x240ca1cc + V[4] + W[1] + ch(V[1], V[2], V[3]) + rotr26(V[1]);
  108. V[4] = 0x240ca1cc + V[4] + W[1] + ch(V[1], V[2], V[3]) + rotr26(V[1]) + rotr30(V[5]) + ma(V[6], V[7], V[5]);
  109. V[7] += 0x2de92c6f + V[3] + W[2] + ch(V[0], V[1], V[2]) + rotr26(V[0]);
  110. V[3] = 0x2de92c6f + V[3] + W[2] + ch(V[0], V[1], V[2]) + rotr26(V[0]) + rotr30(V[4]) + ma(V[5], V[6], V[4]);
  111. V[6] += 0x4a7484aa + V[2] + W[3] + ch(V[7], V[0], V[1]) + rotr26(V[7]);
  112. V[2] = 0x4a7484aa + V[2] + W[3] + ch(V[7], V[0], V[1]) + rotr26(V[7]) + rotr30(V[3]) + ma(V[4], V[5], V[3]);
  113. V[5] += 0x5cb0a9dc + V[1] + W[4] + ch(V[6], V[7], V[0]) + rotr26(V[6]);
  114. V[1] = 0x5cb0a9dc + V[1] + W[4] + ch(V[6], V[7], V[0]) + rotr26(V[6]) + rotr30(V[2]) + ma(V[3], V[4], V[2]);
  115. V[4] += 0x76f988da + V[0] + W[5] + ch(V[5], V[6], V[7]) + rotr26(V[5]);
  116. V[0] = 0x76f988da + V[0] + W[5] + ch(V[5], V[6], V[7]) + rotr26(V[5]) + rotr30(V[1]) + ma(V[2], V[3], V[1]);
  117. V[3] += 0x983e5152 + V[7] + W[6] + ch(V[4], V[5], V[6]) + rotr26(V[4]);
  118. V[7] = 0x983e5152 + V[7] + W[6] + ch(V[4], V[5], V[6]) + rotr26(V[4]) + rotr30(V[0]) + ma(V[1], V[2], V[0]);
  119. V[2] += 0xa831c66d + V[6] + W[7] + ch(V[3], V[4], V[5]) + rotr26(V[3]);
  120. V[6] = 0xa831c66d + V[6] + W[7] + ch(V[3], V[4], V[5]) + rotr26(V[3]) + rotr30(V[7]) + ma(V[0], V[1], V[7]);
  121. V[1] += 0xb00327c8 + V[5] + W[8] + ch(V[2], V[3], V[4]) + rotr26(V[2]);
  122. V[5] = 0xb00327c8 + V[5] + W[8] + ch(V[2], V[3], V[4]) + rotr26(V[2]) + rotr30(V[6]) + ma(V[7], V[0], V[6]);
  123. V[0] += 0xbf597fc7 + V[4] + W[9] + ch(V[1], V[2], V[3]) + rotr26(V[1]);
  124. V[4] = 0xbf597fc7 + V[4] + W[9] + ch(V[1], V[2], V[3]) + rotr26(V[1]) + rotr30(V[5]) + ma(V[6], V[7], V[5]);
  125. V[7] += 0xc6e00bf3 + V[3] + W[10] + ch(V[0], V[1], V[2]) + rotr26(V[0]);
  126. V[3] = 0xc6e00bf3 + V[3] + W[10] + ch(V[0], V[1], V[2]) + rotr26(V[0]) + rotr30(V[4]) + ma(V[5], V[6], V[4]);
  127. V[6] += 0xd5a79147 + V[2] + W[11] + ch(V[7], V[0], V[1]) + rotr26(V[7]);
  128. V[2] = 0xd5a79147 + V[2] + W[11] + ch(V[7], V[0], V[1]) + rotr26(V[7]) + rotr30(V[3]) + ma(V[4], V[5], V[3]);
  129. V[5] += 0x06ca6351 + V[1] + W[12] + ch(V[6], V[7], V[0]) + rotr26(V[6]);
  130. V[1] = 0x06ca6351 + V[1] + W[12] + ch(V[6], V[7], V[0]) + rotr26(V[6]) + rotr30(V[2]) + ma(V[3], V[4], V[2]);
  131. V[4] += 0x14292967 + V[0] + W[13] + ch(V[5], V[6], V[7]) + rotr26(V[5]);
  132. V[0] = 0x14292967 + V[0] + W[13] + ch(V[5], V[6], V[7]) + rotr26(V[5]) + rotr30(V[1]) + ma(V[2], V[3], V[1]);
  133. V[3] += 0x27b70a85 + V[7] + W[14] + ch(V[4], V[5], V[6]) + rotr26(V[4]);
  134. V[7] = 0x27b70a85 + V[7] + W[14] + ch(V[4], V[5], V[6]) + rotr26(V[4]) + rotr30(V[0]) + ma(V[1], V[2], V[0]);
  135. V[2] += 0x2e1b2138 + V[6] + W[15] + ch(V[3], V[4], V[5]) + rotr26(V[3]);
  136. V[6] = 0x2e1b2138 + V[6] + W[15] + ch(V[3], V[4], V[5]) + rotr26(V[3]) + rotr30(V[7]) + ma(V[0], V[1], V[7]);
  137. //----------------------------------------------------------------------------------
  138. W[0] = W[0] + W[9] + rotr15(W[14]) + rotr25( W[1]);
  139. W[1] = W[1] + W[10] + rotr15(W[15]) + rotr25( W[2]);
  140. W[2] = W[2] + W[11] + rotr15( W[0]) + rotr25( W[3]);
  141. W[3] = W[3] + W[12] + rotr15( W[1]) + rotr25( W[4]);
  142. W[4] = W[4] + W[13] + rotr15( W[2]) + rotr25( W[5]);
  143. W[5] = W[5] + W[14] + rotr15( W[3]) + rotr25( W[6]);
  144. W[6] = W[6] + W[15] + rotr15( W[4]) + rotr25( W[7]);
  145. W[7] = W[7] + W[0] + rotr15( W[5]) + rotr25( W[8]);
  146. W[8] = W[8] + W[1] + rotr15( W[6]) + rotr25( W[9]);
  147. W[9] = W[9] + W[2] + rotr15( W[7]) + rotr25(W[10]);
  148. W[10] = W[10] + W[3] + rotr15( W[8]) + rotr25(W[11]);
  149. W[11] = W[11] + W[4] + rotr15( W[9]) + rotr25(W[12]);
  150. W[12] = W[12] + W[5] + rotr15(W[10]) + rotr25(W[13]);
  151. W[13] = W[13] + W[6] + rotr15(W[11]) + rotr25(W[14]);
  152. W[14] = W[14] + W[7] + rotr15(W[12]) + rotr25(W[15]);
  153. W[15] = W[15] + W[8] + rotr15(W[13]) + rotr25( W[0]);
  154. V[1] += 0x4d2c6dfc + V[5] + W[0] + ch(V[2], V[3], V[4]) + rotr26(V[2]);
  155. V[5] = 0x4d2c6dfc + V[5] + W[0] + ch(V[2], V[3], V[4]) + rotr26(V[2]) + rotr30(V[6]) + ma(V[7], V[0], V[6]);
  156. V[0] += 0x53380d13 + V[4] + W[1] + ch(V[1], V[2], V[3]) + rotr26(V[1]);
  157. V[4] = 0x53380d13 + V[4] + W[1] + ch(V[1], V[2], V[3]) + rotr26(V[1]) + rotr30(V[5]) + ma(V[6], V[7], V[5]);
  158. V[7] += 0x650a7354 + V[3] + W[2] + ch(V[0], V[1], V[2]) + rotr26(V[0]);
  159. V[3] = 0x650a7354 + V[3] + W[2] + ch(V[0], V[1], V[2]) + rotr26(V[0]) + rotr30(V[4]) + ma(V[5], V[6], V[4]);
  160. V[6] += 0x766a0abb + V[2] + W[3] + ch(V[7], V[0], V[1]) + rotr26(V[7]);
  161. V[2] = 0x766a0abb + V[2] + W[3] + ch(V[7], V[0], V[1]) + rotr26(V[7]) + rotr30(V[3]) + ma(V[4], V[5], V[3]);
  162. V[5] += 0x81c2c92e + V[1] + W[4] + ch(V[6], V[7], V[0]) + rotr26(V[6]);
  163. V[1] = 0x81c2c92e + V[1] + W[4] + ch(V[6], V[7], V[0]) + rotr26(V[6]) + rotr30(V[2]) + ma(V[3], V[4], V[2]);
  164. V[4] += 0x92722c85 + V[0] + W[5] + ch(V[5], V[6], V[7]) + rotr26(V[5]);
  165. V[0] = 0x92722c85 + V[0] + W[5] + ch(V[5], V[6], V[7]) + rotr26(V[5]) + rotr30(V[1]) + ma(V[2], V[3], V[1]);
  166. V[3] += 0xa2bfe8a1 + V[7] + W[6] + ch(V[4], V[5], V[6]) + rotr26(V[4]);
  167. V[7] = 0xa2bfe8a1 + V[7] + W[6] + ch(V[4], V[5], V[6]) + rotr26(V[4]) + rotr30(V[0]) + ma(V[1], V[2], V[0]);
  168. V[2] += 0xa81a664b + V[6] + W[7] + ch(V[3], V[4], V[5]) + rotr26(V[3]);
  169. V[6] = 0xa81a664b + V[6] + W[7] + ch(V[3], V[4], V[5]) + rotr26(V[3]) + rotr30(V[7]) + ma(V[0], V[1], V[7]);
  170. V[1] += 0xc24b8b70 + V[5] + W[8] + ch(V[2], V[3], V[4]) + rotr26(V[2]);
  171. V[5] = 0xc24b8b70 + V[5] + W[8] + ch(V[2], V[3], V[4]) + rotr26(V[2]) + rotr30(V[6]) + ma(V[7], V[0], V[6]);
  172. V[0] += 0xc76c51a3 + V[4] + W[9] + ch(V[1], V[2], V[3]) + rotr26(V[1]);
  173. V[4] = 0xc76c51a3 + V[4] + W[9] + ch(V[1], V[2], V[3]) + rotr26(V[1]) + rotr30(V[5]) + ma(V[6], V[7], V[5]);
  174. V[7] += 0xd192e819 + V[3] + W[10] + ch(V[0], V[1], V[2]) + rotr26(V[0]);
  175. V[3] = 0xd192e819 + V[3] + W[10] + ch(V[0], V[1], V[2]) + rotr26(V[0]) + rotr30(V[4]) + ma(V[5], V[6], V[4]);
  176. V[6] += 0xd6990624 + V[2] + W[11] + ch(V[7], V[0], V[1]) + rotr26(V[7]);
  177. V[2] = 0xd6990624 + V[2] + W[11] + ch(V[7], V[0], V[1]) + rotr26(V[7]) + rotr30(V[3]) + ma(V[4], V[5], V[3]);
  178. V[5] += 0xf40e3585 + V[1] + W[12] + ch(V[6], V[7], V[0]) + rotr26(V[6]);
  179. V[1] = 0xf40e3585 + V[1] + W[12] + ch(V[6], V[7], V[0]) + rotr26(V[6]) + rotr30(V[2]) + ma(V[3], V[4], V[2]);
  180. V[4] += 0x106aa070 + V[0] + W[13] + ch(V[5], V[6], V[7]) + rotr26(V[5]);
  181. V[0] = 0x106aa070 + V[0] + W[13] + ch(V[5], V[6], V[7]) + rotr26(V[5]) + rotr30(V[1]) + ma(V[2], V[3], V[1]);
  182. V[3] += 0x19a4c116 + V[7] + W[14] + ch(V[4], V[5], V[6]) + rotr26(V[4]);
  183. V[7] = 0x19a4c116 + V[7] + W[14] + ch(V[4], V[5], V[6]) + rotr26(V[4]) + rotr30(V[0]) + ma(V[1], V[2], V[0]);
  184. V[2] += 0x1e376c08 + V[6] + W[15] + ch(V[3], V[4], V[5]) + rotr26(V[3]);
  185. V[6] = 0x1e376c08 + V[6] + W[15] + ch(V[3], V[4], V[5]) + rotr26(V[3]) + rotr30(V[7]) + ma(V[0], V[1], V[7]);
  186. //----------------------------------------------------------------------------------
  187. W[0] = W[0] + W[9] + rotr15(W[14]) + rotr25( W[1]);
  188. W[1] = W[1] + W[10] + rotr15(W[15]) + rotr25( W[2]);
  189. W[2] = W[2] + W[11] + rotr15( W[0]) + rotr25( W[3]);
  190. W[3] = W[3] + W[12] + rotr15( W[1]) + rotr25( W[4]);
  191. W[4] = W[4] + W[13] + rotr15( W[2]) + rotr25( W[5]);
  192. W[5] = W[5] + W[14] + rotr15( W[3]) + rotr25( W[6]);
  193. W[6] = W[6] + W[15] + rotr15( W[4]) + rotr25( W[7]);
  194. W[7] = W[7] + W[0] + rotr15( W[5]) + rotr25( W[8]);
  195. W[8] = W[8] + W[1] + rotr15( W[6]) + rotr25( W[9]);
  196. W[9] = W[9] + W[2] + rotr15( W[7]) + rotr25(W[10]);
  197. W[10] = W[10] + W[3] + rotr15( W[8]) + rotr25(W[11]);
  198. W[11] = W[11] + W[4] + rotr15( W[9]) + rotr25(W[12]);
  199. W[12] = W[12] + W[5] + rotr15(W[10]) + rotr25(W[13]);
  200. W[13] = W[13] + W[6] + rotr15(W[11]) + rotr25(W[14]);
  201. V[1] += 0x2748774c + V[5] + W[0] + ch(V[2], V[3], V[4]) + rotr26(V[2]);
  202. V[5] = 0x2748774c + V[5] + W[0] + ch(V[2], V[3], V[4]) + rotr26(V[2]) + rotr30(V[6]) + ma(V[7], V[0], V[6]);
  203. V[0] += 0x34b0bcb5 + V[4] + W[1] + ch(V[1], V[2], V[3]) + rotr26(V[1]);
  204. V[4] = 0x34b0bcb5 + V[4] + W[1] + ch(V[1], V[2], V[3]) + rotr26(V[1]) + rotr30(V[5]) + ma(V[6], V[7], V[5]);
  205. V[7] += 0x391c0cb3 + V[3] + W[2] + ch(V[0], V[1], V[2]) + rotr26(V[0]);
  206. V[3] = 0x391c0cb3 + V[3] + W[2] + ch(V[0], V[1], V[2]) + rotr26(V[0]) + rotr30(V[4]) + ma(V[5], V[6], V[4]);
  207. V[6] += 0x4ed8aa4a + V[2] + W[3] + ch(V[7], V[0], V[1]) + rotr26(V[7]);
  208. V[2] = 0x4ed8aa4a + V[2] + W[3] + ch(V[7], V[0], V[1]) + rotr26(V[7]) + rotr30(V[3]) + ma(V[4], V[5], V[3]);
  209. V[5] += 0x5b9cca4f + V[1] + W[4] + ch(V[6], V[7], V[0]) + rotr26(V[6]);
  210. V[1] = 0x5b9cca4f + V[1] + W[4] + ch(V[6], V[7], V[0]) + rotr26(V[6]) + rotr30(V[2]) + ma(V[3], V[4], V[2]);
  211. V[4] += 0x682e6ff3 + V[0] + W[5] + ch(V[5], V[6], V[7]) + rotr26(V[5]);
  212. V[0] = 0x682e6ff3 + V[0] + W[5] + ch(V[5], V[6], V[7]) + rotr26(V[5]) + rotr30(V[1]) + ma(V[2], V[3], V[1]);
  213. V[3] += 0x748f82ee + V[7] + W[6] + ch(V[4], V[5], V[6]) + rotr26(V[4]);
  214. V[7] = 0x748f82ee + V[7] + W[6] + ch(V[4], V[5], V[6]) + rotr26(V[4]) + rotr30(V[0]) + ma(V[1], V[2], V[0]);
  215. V[2] += 0x78a5636f + V[6] + W[7] + ch(V[3], V[4], V[5]) + rotr26(V[3]);
  216. V[6] = 0x78a5636f + V[6] + W[7] + ch(V[3], V[4], V[5]) + rotr26(V[3]) + rotr30(V[7]) + ma(V[0], V[1], V[7]);
  217. V[1] += 0x84c87814 + V[5] + W[8] + ch(V[2], V[3], V[4]) + rotr26(V[2]);
  218. V[5] = 0x84c87814 + V[5] + W[8] + ch(V[2], V[3], V[4]) + rotr26(V[2]) + rotr30(V[6]) + ma(V[7], V[0], V[6]);
  219. V[0] += 0x8cc70208 + V[4] + W[9] + ch(V[1], V[2], V[3]) + rotr26(V[1]);
  220. V[4] = 0x8cc70208 + V[4] + W[9] + ch(V[1], V[2], V[3]) + rotr26(V[1]) + rotr30(V[5]) + ma(V[6], V[7], V[5]);
  221. V[7] += 0x90befffa + V[3] + W[10] + ch(V[0], V[1], V[2]) + rotr26(V[0]);
  222. V[3] = 0x90befffa + V[3] + W[10] + ch(V[0], V[1], V[2]) + rotr26(V[0]) + rotr30(V[4]) + ma(V[5], V[6], V[4]);
  223. V[6] += 0xa4506ceb + V[2] + W[11] + ch(V[7], V[0], V[1]) + rotr26(V[7]);
  224. V[2] = 0xa4506ceb + V[2] + W[11] + ch(V[7], V[0], V[1]) + rotr26(V[7]) + rotr30(V[3]) + ma(V[4], V[5], V[3]);
  225. V[5] += 0xbef9a3f7 + V[1] + W[12] + ch(V[6], V[7], V[0]) + rotr26(V[6]);
  226. V[1] = 0xbef9a3f7 + V[1] + W[12] + ch(V[6], V[7], V[0]) + rotr26(V[6]) + rotr30(V[2]) + ma(V[3], V[4], V[2]);
  227. V[4] += 0xc67178f2 + V[0] + W[13] + ch(V[5], V[6], V[7]) + rotr26(V[5]);
  228. V[0] = 0xc67178f2 + V[0] + W[13] + ch(V[5], V[6], V[7]) + rotr26(V[5]) + rotr30(V[1]) + ma(V[2], V[3], V[1]);
  229. //----------------------------------------------------------------------------------
  230. W[0] = state0 + V[0] + rotr25(state1 + V[1]);
  231. W[1] = state1 + V[1] + 0x00a00000 + rotr25(state2 + V[2]);
  232. W[2] = state2 + V[2] + rotr15(W[0]) + rotr25(state3 + V[3]);
  233. W[3] = state3 + V[3] + rotr15(W[1]) + rotr25(state4 + V[4]);
  234. W[4] = state4 + V[4] + rotr15(W[2]) + rotr25(state5 + V[5]);
  235. W[5] = state5 + V[5] + rotr15(W[3]) + rotr25(state6 + V[6]);
  236. W[6] = state6 + V[6] + 0x00000100 + rotr15(W[4]) + rotr25(state7 + V[7]);
  237. W[7] = state7 + V[7] + W[0] + 0x11002000 + rotr15(W[5]);
  238. W[8] = W[1] + 0x80000000 + rotr15(W[6]);
  239. W[9] = W[2] + rotr15(W[7]);
  240. W[10] = W[3] + rotr15(W[8]);
  241. W[11] = W[4] + rotr15(W[9]);
  242. W[12] = W[5] + rotr15(W[10]);
  243. W[13] = W[6] + rotr15(W[11]);
  244. W[14] = W[7] + 0x00400022 + rotr15(W[12]);
  245. W[15] = W[8] + 0x00000100 + rotr15(W[13]) + rotr25(W[0]);
  246. // 0x71374491 + 0x1f83d9ab + state1
  247. const u state1AaddV1 = state1A + V[1];
  248. // 0xb5c0fbcf + 0x9b05688c + state2
  249. const u state2AaddV2 = state2A + V[2];
  250. // 0x510e527f + 0xe9b5dba5 + state3
  251. const u state3AaddV3 = state3A + V[3];
  252. // 0x3956c25b + state4
  253. const u state4AaddV4 = state4A + V[4];
  254. // 0x59f111f1 + state5
  255. const u state5AaddV5 = state5A + V[5];
  256. // 0x923f82a4 + state6
  257. const u state6AaddV6 = state6A + V[6];
  258. // 0xab1c5ed5 + state7
  259. const u state7AaddV7 = state7A + V[7];
  260. // 0x98c7e2a2 + state0
  261. V[3] = state0A + V[0];
  262. // 0xfc08884d + state0
  263. V[7] = state0B + V[0];
  264. V[0] = 0x6a09e667;
  265. V[1] = 0xbb67ae85;
  266. V[2] = 0x3c6ef372;
  267. V[4] = 0x510e527f;
  268. V[5] = 0x9b05688c;
  269. V[6] = 0x1f83d9ab;
  270. V[2] += state1AaddV1 + ch(V[3], V[4], V[5]) + rotr26(V[3]);
  271. V[6] = state1AaddV1 + ch(V[3], V[4], V[5]) + rotr26(V[3]) + rotr30(V[7]) + ma(V[0], V[1], V[7]);
  272. V[1] += state2AaddV2 + ch(V[2], V[3], V[4]) + rotr26(V[2]);
  273. V[5] = state2AaddV2 + ch(V[2], V[3], V[4]) + rotr26(V[2]) + rotr30(V[6]) + ma(V[7], V[0], V[6]);
  274. V[0] += state3AaddV3 + ch(V[1], V[2], V[3]) + rotr26(V[1]);
  275. V[4] = state3AaddV3 + ch(V[1], V[2], V[3]) + rotr26(V[1]) + rotr30(V[5]) + ma(V[6], V[7], V[5]);
  276. V[7] += state4AaddV4 + V[3] + ch(V[0], V[1], V[2]) + rotr26(V[0]);
  277. V[3] = state4AaddV4 + V[3] + ch(V[0], V[1], V[2]) + rotr26(V[0]) + rotr30(V[4]) + ma(V[5], V[6], V[4]);
  278. V[6] += state5AaddV5 + V[2] + ch(V[7], V[0], V[1]) + rotr26(V[7]);
  279. V[2] = state5AaddV5 + V[2] + ch(V[7], V[0], V[1]) + rotr26(V[7]) + rotr30(V[3]) + ma(V[4], V[5], V[3]);
  280. V[5] += state6AaddV6 + V[1] + ch(V[6], V[7], V[0]) + rotr26(V[6]);
  281. V[1] = state6AaddV6 + V[1] + ch(V[6], V[7], V[0]) + rotr26(V[6]) + rotr30(V[2]) + ma(V[3], V[4], V[2]);
  282. V[4] += state7AaddV7 + V[0] + ch(V[5], V[6], V[7]) + rotr26(V[5]);
  283. V[0] = state7AaddV7 + V[0] + ch(V[5], V[6], V[7]) + rotr26(V[5]) + rotr30(V[1]) + ma(V[2], V[3], V[1]);
  284. V[3] += 0x5807aa98 + V[7] + ch(V[4], V[5], V[6]) + rotr26(V[4]);
  285. V[7] = 0x5807aa98 + V[7] + ch(V[4], V[5], V[6]) + rotr26(V[4]) + rotr30(V[0]) + ma(V[1], V[2], V[0]);
  286. V[2] += 0x12835b01 + V[6] + ch(V[3], V[4], V[5]) + rotr26(V[3]);
  287. V[6] = 0x12835b01 + V[6] + ch(V[3], V[4], V[5]) + rotr26(V[3]) + rotr30(V[7]) + ma(V[0], V[1], V[7]);
  288. V[1] += 0x243185be + V[5] + ch(V[2], V[3], V[4]) + rotr26(V[2]);
  289. V[5] = 0x243185be + V[5] + ch(V[2], V[3], V[4]) + rotr26(V[2]) + rotr30(V[6]) + ma(V[7], V[0], V[6]);
  290. V[0] += 0x550c7dc3 + V[4] + ch(V[1], V[2], V[3]) + rotr26(V[1]);
  291. V[4] = 0x550c7dc3 + V[4] + ch(V[1], V[2], V[3]) + rotr26(V[1]) + rotr30(V[5]) + ma(V[6], V[7], V[5]);
  292. V[7] += 0x72be5d74 + V[3] + ch(V[0], V[1], V[2]) + rotr26(V[0]);
  293. V[3] = 0x72be5d74 + V[3] + ch(V[0], V[1], V[2]) + rotr26(V[0]) + rotr30(V[4]) + ma(V[5], V[6], V[4]);
  294. V[6] += 0x80deb1fe + V[2] + ch(V[7], V[0], V[1]) + rotr26(V[7]);
  295. V[2] = 0x80deb1fe + V[2] + ch(V[7], V[0], V[1]) + rotr26(V[7]) + rotr30(V[3]) + ma(V[4], V[5], V[3]);
  296. V[5] += 0x9bdc06a7 + V[1] + ch(V[6], V[7], V[0]) + rotr26(V[6]);
  297. V[1] = 0x9bdc06a7 + V[1] + ch(V[6], V[7], V[0]) + rotr26(V[6]) + rotr30(V[2]) + ma(V[3], V[4], V[2]);
  298. V[4] += 0xc19bf274 + V[0] + ch(V[5], V[6], V[7]) + rotr26(V[5]);
  299. V[0] = 0xc19bf274 + V[0] + ch(V[5], V[6], V[7]) + rotr26(V[5]) + rotr30(V[1]) + ma(V[2], V[3], V[1]);
  300. V[3] += 0xe49b69c1 + V[7] + W[0] + ch(V[4], V[5], V[6]) + rotr26(V[4]);
  301. V[7] = 0xe49b69c1 + V[7] + W[0] + ch(V[4], V[5], V[6]) + rotr26(V[4]) + rotr30(V[0]) + ma(V[1], V[2], V[0]);
  302. V[2] += 0xefbe4786 + V[6] + W[1] + ch(V[3], V[4], V[5]) + rotr26(V[3]);
  303. V[6] = 0xefbe4786 + V[6] + W[1] + ch(V[3], V[4], V[5]) + rotr26(V[3]) + rotr30(V[7]) + ma(V[0], V[1], V[7]);
  304. V[1] += 0x0fc19dc6 + V[5] + W[2] + ch(V[2], V[3], V[4]) + rotr26(V[2]);
  305. V[5] = 0x0fc19dc6 + V[5] + W[2] + ch(V[2], V[3], V[4]) + rotr26(V[2]) + rotr30(V[6]) + ma(V[7], V[0], V[6]);
  306. V[0] += 0x240ca1cc + V[4] + W[3] + ch(V[1], V[2], V[3]) + rotr26(V[1]);
  307. V[4] = 0x240ca1cc + V[4] + W[3] + ch(V[1], V[2], V[3]) + rotr26(V[1]) + rotr30(V[5]) + ma(V[6], V[7], V[5]);
  308. V[7] += 0x2de92c6f + V[3] + W[4] + ch(V[0], V[1], V[2]) + rotr26(V[0]);
  309. V[3] = 0x2de92c6f + V[3] + W[4] + ch(V[0], V[1], V[2]) + rotr26(V[0]) + rotr30(V[4]) + ma(V[5], V[6], V[4]);
  310. V[6] += 0x4a7484aa + V[2] + W[5] + ch(V[7], V[0], V[1]) + rotr26(V[7]);
  311. V[2] = 0x4a7484aa + V[2] + W[5] + ch(V[7], V[0], V[1]) + rotr26(V[7]) + rotr30(V[3]) + ma(V[4], V[5], V[3]);
  312. V[5] += 0x5cb0a9dc + V[1] + W[6] + ch(V[6], V[7], V[0]) + rotr26(V[6]);
  313. V[1] = 0x5cb0a9dc + V[1] + W[6] + ch(V[6], V[7], V[0]) + rotr26(V[6]) + rotr30(V[2]) + ma(V[3], V[4], V[2]);
  314. V[4] += 0x76f988da + V[0] + W[7] + ch(V[5], V[6], V[7]) + rotr26(V[5]);
  315. V[0] = 0x76f988da + V[0] + W[7] + ch(V[5], V[6], V[7]) + rotr26(V[5]) + rotr30(V[1]) + ma(V[2], V[3], V[1]);
  316. V[3] += 0x983e5152 + V[7] + W[8] + ch(V[4], V[5], V[6]) + rotr26(V[4]);
  317. V[7] = 0x983e5152 + V[7] + W[8] + ch(V[4], V[5], V[6]) + rotr26(V[4]) + rotr30(V[0]) + ma(V[1], V[2], V[0]);
  318. V[2] += 0xa831c66d + V[6] + W[9] + ch(V[3], V[4], V[5]) + rotr26(V[3]);
  319. V[6] = 0xa831c66d + V[6] + W[9] + ch(V[3], V[4], V[5]) + rotr26(V[3]) + rotr30(V[7]) + ma(V[0], V[1], V[7]);
  320. V[1] += 0xb00327c8 + V[5] + W[10] + ch(V[2], V[3], V[4]) + rotr26(V[2]);
  321. V[5] = 0xb00327c8 + V[5] + W[10] + ch(V[2], V[3], V[4]) + rotr26(V[2]) + rotr30(V[6]) + ma(V[7], V[0], V[6]);
  322. V[0] += 0xbf597fc7 + V[4] + W[11] + ch(V[1], V[2], V[3]) + rotr26(V[1]);
  323. V[4] = 0xbf597fc7 + V[4] + W[11] + ch(V[1], V[2], V[3]) + rotr26(V[1]) + rotr30(V[5]) + ma(V[6], V[7], V[5]);
  324. V[7] += 0xc6e00bf3 + V[3] + W[12] + ch(V[0], V[1], V[2]) + rotr26(V[0]);
  325. V[3] = 0xc6e00bf3 + V[3] + W[12] + ch(V[0], V[1], V[2]) + rotr26(V[0]) + rotr30(V[4]) + ma(V[5], V[6], V[4]);
  326. V[6] += 0xd5a79147 + V[2] + W[13] + ch(V[7], V[0], V[1]) + rotr26(V[7]);
  327. V[2] = 0xd5a79147 + V[2] + W[13] + ch(V[7], V[0], V[1]) + rotr26(V[7]) + rotr30(V[3]) + ma(V[4], V[5], V[3]);
  328. V[5] += 0x06ca6351 + V[1] + W[14] + ch(V[6], V[7], V[0]) + rotr26(V[6]);
  329. V[1] = 0x06ca6351 + V[1] + W[14] + ch(V[6], V[7], V[0]) + rotr26(V[6]) + rotr30(V[2]) + ma(V[3], V[4], V[2]);
  330. V[4] += 0x14292967 + V[0] + W[15] + ch(V[5], V[6], V[7]) + rotr26(V[5]);
  331. V[0] = 0x14292967 + V[0] + W[15] + ch(V[5], V[6], V[7]) + rotr26(V[5]) + rotr30(V[1]) + ma(V[2], V[3], V[1]);
  332. //----------------------------------------------------------------------------------
  333. W[0] = W[0] + W[9] + rotr15(W[14]) + rotr25( W[1]);
  334. W[1] = W[1] + W[10] + rotr15(W[15]) + rotr25( W[2]);
  335. W[2] = W[2] + W[11] + rotr15( W[0]) + rotr25( W[3]);
  336. W[3] = W[3] + W[12] + rotr15( W[1]) + rotr25( W[4]);
  337. W[4] = W[4] + W[13] + rotr15( W[2]) + rotr25( W[5]);
  338. W[5] = W[5] + W[14] + rotr15( W[3]) + rotr25( W[6]);
  339. W[6] = W[6] + W[15] + rotr15( W[4]) + rotr25( W[7]);
  340. W[7] = W[7] + W[0] + rotr15( W[5]) + rotr25( W[8]);
  341. W[8] = W[8] + W[1] + rotr15( W[6]) + rotr25( W[9]);
  342. W[9] = W[9] + W[2] + rotr15( W[7]) + rotr25(W[10]);
  343. W[10] = W[10] + W[3] + rotr15( W[8]) + rotr25(W[11]);
  344. W[11] = W[11] + W[4] + rotr15( W[9]) + rotr25(W[12]);
  345. W[12] = W[12] + W[5] + rotr15(W[10]) + rotr25(W[13]);
  346. W[13] = W[13] + W[6] + rotr15(W[11]) + rotr25(W[14]);
  347. W[14] = W[14] + W[7] + rotr15(W[12]) + rotr25(W[15]);
  348. W[15] = W[15] + W[8] + rotr15(W[13]) + rotr25( W[0]);
  349. V[3] += 0x27b70a85 + V[7] + W[0] + ch(V[4], V[5], V[6]) + rotr26(V[4]);
  350. V[7] = 0x27b70a85 + V[7] + W[0] + ch(V[4], V[5], V[6]) + rotr26(V[4]) + rotr30(V[0]) + ma(V[1], V[2], V[0]);
  351. V[2] += 0x2e1b2138 + V[6] + W[1] + ch(V[3], V[4], V[5]) + rotr26(V[3]);
  352. V[6] = 0x2e1b2138 + V[6] + W[1] + ch(V[3], V[4], V[5]) + rotr26(V[3]) + rotr30(V[7]) + ma(V[0], V[1], V[7]);
  353. V[1] += 0x4d2c6dfc + V[5] + W[2] + ch(V[2], V[3], V[4]) + rotr26(V[2]);
  354. V[5] = 0x4d2c6dfc + V[5] + W[2] + ch(V[2], V[3], V[4]) + rotr26(V[2]) + rotr30(V[6]) + ma(V[7], V[0], V[6]);
  355. V[0] += 0x53380d13 + V[4] + W[3] + ch(V[1], V[2], V[3]) + rotr26(V[1]);
  356. V[4] = 0x53380d13 + V[4] + W[3] + ch(V[1], V[2], V[3]) + rotr26(V[1]) + rotr30(V[5]) + ma(V[6], V[7], V[5]);
  357. V[7] += 0x650a7354 + V[3] + W[4] + ch(V[0], V[1], V[2]) + rotr26(V[0]);
  358. V[3] = 0x650a7354 + V[3] + W[4] + ch(V[0], V[1], V[2]) + rotr26(V[0]) + rotr30(V[4]) + ma(V[5], V[6], V[4]);
  359. V[6] += 0x766a0abb + V[2] + W[5] + ch(V[7], V[0], V[1]) + rotr26(V[7]);
  360. V[2] = 0x766a0abb + V[2] + W[5] + ch(V[7], V[0], V[1]) + rotr26(V[7]) + rotr30(V[3]) + ma(V[4], V[5], V[3]);
  361. V[5] += 0x81c2c92e + V[1] + W[6] + ch(V[6], V[7], V[0]) + rotr26(V[6]);
  362. V[1] = 0x81c2c92e + V[1] + W[6] + ch(V[6], V[7], V[0]) + rotr26(V[6]) + rotr30(V[2]) + ma(V[3], V[4], V[2]);
  363. V[4] += 0x92722c85 + V[0] + W[7] + ch(V[5], V[6], V[7]) + rotr26(V[5]);
  364. V[0] = 0x92722c85 + V[0] + W[7] + ch(V[5], V[6], V[7]) + rotr26(V[5]) + rotr30(V[1]) + ma(V[2], V[3], V[1]);
  365. V[3] += 0xa2bfe8a1 + V[7] + W[8] + ch(V[4], V[5], V[6]) + rotr26(V[4]);
  366. V[7] = 0xa2bfe8a1 + V[7] + W[8] + ch(V[4], V[5], V[6]) + rotr26(V[4]) + rotr30(V[0]) + ma(V[1], V[2], V[0]);
  367. V[2] += 0xa81a664b + V[6] + W[9] + ch(V[3], V[4], V[5]) + rotr26(V[3]);
  368. V[6] = 0xa81a664b + V[6] + W[9] + ch(V[3], V[4], V[5]) + rotr26(V[3]) + rotr30(V[7]) + ma(V[0], V[1], V[7]);
  369. V[1] += 0xc24b8b70 + V[5] + W[10] + ch(V[2], V[3], V[4]) + rotr26(V[2]);
  370. V[5] = 0xc24b8b70 + V[5] + W[10] + ch(V[2], V[3], V[4]) + rotr26(V[2]) + rotr30(V[6]) + ma(V[7], V[0], V[6]);
  371. V[0] += 0xc76c51a3 + V[4] + W[11] + ch(V[1], V[2], V[3]) + rotr26(V[1]);
  372. V[4] = 0xc76c51a3 + V[4] + W[11] + ch(V[1], V[2], V[3]) + rotr26(V[1]) + rotr30(V[5]) + ma(V[6], V[7], V[5]);
  373. V[7] += 0xd192e819 + V[3] + W[12] + ch(V[0], V[1], V[2]) + rotr26(V[0]);
  374. V[3] = 0xd192e819 + V[3] + W[12] + ch(V[0], V[1], V[2]) + rotr26(V[0]) + rotr30(V[4]) + ma(V[5], V[6], V[4]);
  375. V[6] += 0xd6990624 + V[2] + W[13] + ch(V[7], V[0], V[1]) + rotr26(V[7]);
  376. V[2] = 0xd6990624 + V[2] + W[13] + ch(V[7], V[0], V[1]) + rotr26(V[7]) + rotr30(V[3]) + ma(V[4], V[5], V[3]);
  377. V[5] += 0xf40e3585 + V[1] + W[14] + ch(V[6], V[7], V[0]) + rotr26(V[6]);
  378. V[1] = 0xf40e3585 + V[1] + W[14] + ch(V[6], V[7], V[0]) + rotr26(V[6]) + rotr30(V[2]) + ma(V[3], V[4], V[2]);
  379. V[4] += 0x106aa070 + V[0] + W[15] + ch(V[5], V[6], V[7]) + rotr26(V[5]);
  380. V[0] = 0x106aa070 + V[0] + W[15] + ch(V[5], V[6], V[7]) + rotr26(V[5]) + rotr30(V[1]) + ma(V[2], V[3], V[1]);
  381. //----------------------------------------------------------------------------------
  382. W[0] = W[0] + W[9] + rotr15(W[14]) + rotr25( W[1]);
  383. W[1] = W[1] + W[10] + rotr15(W[15]) + rotr25( W[2]);
  384. W[2] = W[2] + W[11] + rotr15( W[0]) + rotr25( W[3]);
  385. W[3] = W[3] + W[12] + rotr15( W[1]) + rotr25( W[4]);
  386. W[4] = W[4] + W[13] + rotr15( W[2]) + rotr25( W[5]);
  387. W[5] = W[5] + W[14] + rotr15( W[3]) + rotr25( W[6]);
  388. W[6] = W[6] + W[15] + rotr15( W[4]) + rotr25( W[7]);
  389. W[7] = W[7] + W[0] + rotr15( W[5]) + rotr25( W[8]);
  390. W[8] = W[8] + W[1] + rotr15( W[6]) + rotr25( W[9]);
  391. W[9] = W[9] + W[2] + rotr15( W[7]) + rotr25(W[10]);
  392. W[10] = W[10] + W[3] + rotr15( W[8]) + rotr25(W[11]);
  393. W[11] = W[11] + W[4] + rotr15( W[9]) + rotr25(W[12]);
  394. W[12] = W[12] + W[5] + rotr15(W[10]) + rotr25(W[13]);
  395. V[3] += 0x19a4c116 + V[7] + W[0] + ch(V[4], V[5], V[6]) + rotr26(V[4]);
  396. V[7] = 0x19a4c116 + V[7] + W[0] + ch(V[4], V[5], V[6]) + rotr26(V[4]) + rotr30(V[0]) + ma(V[1], V[2], V[0]);
  397. V[2] += 0x1e376c08 + V[6] + W[1] + ch(V[3], V[4], V[5]) + rotr26(V[3]);
  398. V[6] = 0x1e376c08 + V[6] + W[1] + ch(V[3], V[4], V[5]) + rotr26(V[3]) + rotr30(V[7]) + ma(V[0], V[1], V[7]);
  399. V[1] += 0x2748774c + V[5] + W[2] + ch(V[2], V[3], V[4]) + rotr26(V[2]);
  400. V[5] = 0x2748774c + V[5] + W[2] + ch(V[2], V[3], V[4]) + rotr26(V[2]) + rotr30(V[6]) + ma(V[7], V[0], V[6]);
  401. V[0] += 0x34b0bcb5 + V[4] + W[3] + ch(V[1], V[2], V[3]) + rotr26(V[1]);
  402. V[4] = 0x34b0bcb5 + V[4] + W[3] + ch(V[1], V[2], V[3]) + rotr26(V[1]) + rotr30(V[5]) + ma(V[6], V[7], V[5]);
  403. V[7] += 0x391c0cb3 + V[3] + W[4] + ch(V[0], V[1], V[2]) + rotr26(V[0]);
  404. V[3] = 0x391c0cb3 + V[3] + W[4] + ch(V[0], V[1], V[2]) + rotr26(V[0]) + rotr30(V[4]) + ma(V[5], V[6], V[4]);
  405. V[6] += 0x4ed8aa4a + V[2] + W[5] + ch(V[7], V[0], V[1]) + rotr26(V[7]);
  406. V[2] = 0x4ed8aa4a + V[2] + W[5] + ch(V[7], V[0], V[1]) + rotr26(V[7]) + rotr30(V[3]) + ma(V[4], V[5], V[3]);
  407. V[5] += 0x5b9cca4f + V[1] + W[6] + ch(V[6], V[7], V[0]) + rotr26(V[6]);
  408. V[1] = 0x5b9cca4f + V[1] + W[6] + ch(V[6], V[7], V[0]) + rotr26(V[6]) + rotr30(V[2]) + ma(V[3], V[4], V[2]);
  409. V[4] += 0x682e6ff3 + V[0] + W[7] + ch(V[5], V[6], V[7]) + rotr26(V[5]);
  410. V[0] = 0x682e6ff3 + V[0] + W[7] + ch(V[5], V[6], V[7]) + rotr26(V[5]) + rotr30(V[1]) + ma(V[2], V[3], V[1]);
  411. V[3] += 0x748f82ee + V[7] + W[8] + ch(V[4], V[5], V[6]) + rotr26(V[4]);
  412. V[7] = 0x748f82ee + V[7] + W[8] + ch(V[4], V[5], V[6]) + rotr26(V[4]) + rotr30(V[0]) + ma(V[1], V[2], V[0]);
  413. V[2] += 0x78a5636f + V[6] + W[9] + ch(V[3], V[4], V[5]) + rotr26(V[3]);
  414. V[1] += 0x84c87814 + V[5] + W[10] + ch(V[2], V[3], V[4]) + rotr26(V[2]);
  415. V[0] += 0x8cc70208 + V[4] + W[11] + ch(V[1], V[2], V[3]) + rotr26(V[1]);
  416. V[7] += V[3] + W[12] + ch(V[0], V[1], V[2]) + rotr26(V[0]);
  417. #define FOUND (0x80)
  418. #define NFLAG (0x7F)
  419. #ifdef VECTORS8
  420. bool result = any(V[7] == 0x136032ed);
  421. if (result) {
  422. output[FOUND] = FOUND;
  423. if (V[7].s0 == 0x136032ed)
  424. output[NFLAG & nonce.s0] = nonce.s0;
  425. if (V[7].s1 == 0x136032ed)
  426. output[NFLAG & nonce.s1] = nonce.s1;
  427. if (V[7].s2 == 0x136032ed)
  428. output[NFLAG & nonce.s2] = nonce.s2;
  429. if (V[7].s3 == 0x136032ed)
  430. output[NFLAG & nonce.s3] = nonce.s3;
  431. if (V[7].s4 == 0x136032ed)
  432. output[NFLAG & nonce.s4] = nonce.s4;
  433. if (V[7].s5 == 0x136032ed)
  434. output[NFLAG & nonce.s5] = nonce.s5;
  435. if (V[7].s6 == 0x136032ed)
  436. output[NFLAG & nonce.s6] = nonce.s6;
  437. if (V[7].s7 == 0x136032ed)
  438. output[NFLAG & nonce.s7] = nonce.s7;
  439. }
  440. #elif defined VECTORS4
  441. bool result = any(V[7] == 0x136032ed);
  442. if (result) {
  443. output[FOUND] = FOUND;
  444. if (V[7].x == 0x136032ed)
  445. output[NFLAG & nonce.x] = nonce.x;
  446. if (V[7].y == 0x136032ed)
  447. output[NFLAG & nonce.y] = nonce.y;
  448. if (V[7].z == 0x136032ed)
  449. output[NFLAG & nonce.z] = nonce.z;
  450. if (V[7].w == 0x136032ed)
  451. output[NFLAG & nonce.w] = nonce.w;
  452. }
  453. #elif defined VECTORS2
  454. bool result = any(V[7] == 0x136032ed);
  455. if (result) {
  456. output[FOUND] = FOUND;
  457. if (V[7].x == 0x136032ed)
  458. output[NFLAG & nonce.x] = nonce.x;
  459. if (V[7].y == 0x136032ed)
  460. output[NFLAG & nonce.y] = nonce.y;
  461. }
  462. #else
  463. if (V[7] == 0x136032ed)
  464. output[FOUND] = output[NFLAG & nonce] = nonce;
  465. #endif
  466. }