u8.h 16 KB

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  1. #define VEC8_ROT(A, IMM) \
  2. _mm256_or_si256(_mm256_slli_epi32(A, IMM), _mm256_srli_epi32(A, (32 - IMM)))
  3. /* same, but replace 2 of the shift/shift/or "rotation" by byte shuffles (8 &
  4. * 16) (better) */
  5. #define VEC8_QUARTERROUND_SHUFFLE(A, B, C, D) \
  6. x_##A = _mm256_add_epi32(x_##A, x_##B); \
  7. t_##A = _mm256_xor_si256(x_##D, x_##A); \
  8. x_##D = _mm256_shuffle_epi8(t_##A, rot16); \
  9. x_##C = _mm256_add_epi32(x_##C, x_##D); \
  10. t_##C = _mm256_xor_si256(x_##B, x_##C); \
  11. x_##B = VEC8_ROT(t_##C, 12); \
  12. x_##A = _mm256_add_epi32(x_##A, x_##B); \
  13. t_##A = _mm256_xor_si256(x_##D, x_##A); \
  14. x_##D = _mm256_shuffle_epi8(t_##A, rot8); \
  15. x_##C = _mm256_add_epi32(x_##C, x_##D); \
  16. t_##C = _mm256_xor_si256(x_##B, x_##C); \
  17. x_##B = VEC8_ROT(t_##C, 7)
  18. #define VEC8_QUARTERROUND(A, B, C, D) VEC8_QUARTERROUND_SHUFFLE(A, B, C, D)
  19. #define VEC8_LINE1(A, B, C, D) \
  20. x_##A = _mm256_add_epi32(x_##A, x_##B); \
  21. x_##D = _mm256_shuffle_epi8(_mm256_xor_si256(x_##D, x_##A), rot16)
  22. #define VEC8_LINE2(A, B, C, D) \
  23. x_##C = _mm256_add_epi32(x_##C, x_##D); \
  24. x_##B = VEC8_ROT(_mm256_xor_si256(x_##B, x_##C), 12)
  25. #define VEC8_LINE3(A, B, C, D) \
  26. x_##A = _mm256_add_epi32(x_##A, x_##B); \
  27. x_##D = _mm256_shuffle_epi8(_mm256_xor_si256(x_##D, x_##A), rot8)
  28. #define VEC8_LINE4(A, B, C, D) \
  29. x_##C = _mm256_add_epi32(x_##C, x_##D); \
  30. x_##B = VEC8_ROT(_mm256_xor_si256(x_##B, x_##C), 7)
  31. #define VEC8_ROUND_SEQ(A1, B1, C1, D1, A2, B2, C2, D2, A3, B3, C3, D3, A4, B4, \
  32. C4, D4) \
  33. VEC8_LINE1(A1, B1, C1, D1); \
  34. VEC8_LINE1(A2, B2, C2, D2); \
  35. VEC8_LINE1(A3, B3, C3, D3); \
  36. VEC8_LINE1(A4, B4, C4, D4); \
  37. VEC8_LINE2(A1, B1, C1, D1); \
  38. VEC8_LINE2(A2, B2, C2, D2); \
  39. VEC8_LINE2(A3, B3, C3, D3); \
  40. VEC8_LINE2(A4, B4, C4, D4); \
  41. VEC8_LINE3(A1, B1, C1, D1); \
  42. VEC8_LINE3(A2, B2, C2, D2); \
  43. VEC8_LINE3(A3, B3, C3, D3); \
  44. VEC8_LINE3(A4, B4, C4, D4); \
  45. VEC8_LINE4(A1, B1, C1, D1); \
  46. VEC8_LINE4(A2, B2, C2, D2); \
  47. VEC8_LINE4(A3, B3, C3, D3); \
  48. VEC8_LINE4(A4, B4, C4, D4)
  49. #define VEC8_ROUND_HALF(A1, B1, C1, D1, A2, B2, C2, D2, A3, B3, C3, D3, A4, \
  50. B4, C4, D4) \
  51. VEC8_LINE1(A1, B1, C1, D1); \
  52. VEC8_LINE1(A2, B2, C2, D2); \
  53. VEC8_LINE2(A1, B1, C1, D1); \
  54. VEC8_LINE2(A2, B2, C2, D2); \
  55. VEC8_LINE3(A1, B1, C1, D1); \
  56. VEC8_LINE3(A2, B2, C2, D2); \
  57. VEC8_LINE4(A1, B1, C1, D1); \
  58. VEC8_LINE4(A2, B2, C2, D2); \
  59. VEC8_LINE1(A3, B3, C3, D3); \
  60. VEC8_LINE1(A4, B4, C4, D4); \
  61. VEC8_LINE2(A3, B3, C3, D3); \
  62. VEC8_LINE2(A4, B4, C4, D4); \
  63. VEC8_LINE3(A3, B3, C3, D3); \
  64. VEC8_LINE3(A4, B4, C4, D4); \
  65. VEC8_LINE4(A3, B3, C3, D3); \
  66. VEC8_LINE4(A4, B4, C4, D4)
  67. #define VEC8_ROUND_HALFANDHALF(A1, B1, C1, D1, A2, B2, C2, D2, A3, B3, C3, D3, \
  68. A4, B4, C4, D4) \
  69. VEC8_LINE1(A1, B1, C1, D1); \
  70. VEC8_LINE1(A2, B2, C2, D2); \
  71. VEC8_LINE2(A1, B1, C1, D1); \
  72. VEC8_LINE2(A2, B2, C2, D2); \
  73. VEC8_LINE1(A3, B3, C3, D3); \
  74. VEC8_LINE1(A4, B4, C4, D4); \
  75. VEC8_LINE2(A3, B3, C3, D3); \
  76. VEC8_LINE2(A4, B4, C4, D4); \
  77. VEC8_LINE3(A1, B1, C1, D1); \
  78. VEC8_LINE3(A2, B2, C2, D2); \
  79. VEC8_LINE4(A1, B1, C1, D1); \
  80. VEC8_LINE4(A2, B2, C2, D2); \
  81. VEC8_LINE3(A3, B3, C3, D3); \
  82. VEC8_LINE3(A4, B4, C4, D4); \
  83. VEC8_LINE4(A3, B3, C3, D3); \
  84. VEC8_LINE4(A4, B4, C4, D4)
  85. #define VEC8_ROUND(A1, B1, C1, D1, A2, B2, C2, D2, A3, B3, C3, D3, A4, B4, C4, \
  86. D4) \
  87. VEC8_ROUND_SEQ(A1, B1, C1, D1, A2, B2, C2, D2, A3, B3, C3, D3, A4, B4, C4, \
  88. D4)
  89. if (bytes >= 512) {
  90. /* constant for shuffling bytes (replacing multiple-of-8 rotates) */
  91. __m256i rot16 =
  92. _mm256_set_epi8(13, 12, 15, 14, 9, 8, 11, 10, 5, 4, 7, 6, 1, 0, 3, 2,
  93. 13, 12, 15, 14, 9, 8, 11, 10, 5, 4, 7, 6, 1, 0, 3, 2);
  94. __m256i rot8 =
  95. _mm256_set_epi8(14, 13, 12, 15, 10, 9, 8, 11, 6, 5, 4, 7, 2, 1, 0, 3,
  96. 14, 13, 12, 15, 10, 9, 8, 11, 6, 5, 4, 7, 2, 1, 0, 3);
  97. uint32_t in12, in13;
  98. /* the naive way seems as fast (if not a bit faster) than the vector way */
  99. __m256i x_0 = _mm256_set1_epi32(x[0]);
  100. __m256i x_1 = _mm256_set1_epi32(x[1]);
  101. __m256i x_2 = _mm256_set1_epi32(x[2]);
  102. __m256i x_3 = _mm256_set1_epi32(x[3]);
  103. __m256i x_4 = _mm256_set1_epi32(x[4]);
  104. __m256i x_5 = _mm256_set1_epi32(x[5]);
  105. __m256i x_6 = _mm256_set1_epi32(x[6]);
  106. __m256i x_7 = _mm256_set1_epi32(x[7]);
  107. __m256i x_8 = _mm256_set1_epi32(x[8]);
  108. __m256i x_9 = _mm256_set1_epi32(x[9]);
  109. __m256i x_10 = _mm256_set1_epi32(x[10]);
  110. __m256i x_11 = _mm256_set1_epi32(x[11]);
  111. __m256i x_12;
  112. __m256i x_13;
  113. __m256i x_14 = _mm256_set1_epi32(x[14]);
  114. __m256i x_15 = _mm256_set1_epi32(x[15]);
  115. __m256i orig0 = x_0;
  116. __m256i orig1 = x_1;
  117. __m256i orig2 = x_2;
  118. __m256i orig3 = x_3;
  119. __m256i orig4 = x_4;
  120. __m256i orig5 = x_5;
  121. __m256i orig6 = x_6;
  122. __m256i orig7 = x_7;
  123. __m256i orig8 = x_8;
  124. __m256i orig9 = x_9;
  125. __m256i orig10 = x_10;
  126. __m256i orig11 = x_11;
  127. __m256i orig12;
  128. __m256i orig13;
  129. __m256i orig14 = x_14;
  130. __m256i orig15 = x_15;
  131. __m256i t_0, t_1, t_2, t_3, t_4, t_5, t_6, t_7, t_8, t_9, t_10, t_11, t_12,
  132. t_13, t_14, t_15;
  133. while (bytes >= 512) {
  134. const __m256i addv12 = _mm256_set_epi64x(3, 2, 1, 0);
  135. const __m256i addv13 = _mm256_set_epi64x(7, 6, 5, 4);
  136. const __m256i permute = _mm256_set_epi32(7, 6, 3, 2, 5, 4, 1, 0);
  137. __m256i t12, t13;
  138. uint64_t in1213;
  139. int i;
  140. x_0 = orig0;
  141. x_1 = orig1;
  142. x_2 = orig2;
  143. x_3 = orig3;
  144. x_4 = orig4;
  145. x_5 = orig5;
  146. x_6 = orig6;
  147. x_7 = orig7;
  148. x_8 = orig8;
  149. x_9 = orig9;
  150. x_10 = orig10;
  151. x_11 = orig11;
  152. x_14 = orig14;
  153. x_15 = orig15;
  154. in12 = x[12];
  155. in13 = x[13];
  156. in1213 = ((uint64_t) in12) | (((uint64_t) in13) << 32);
  157. x_12 = x_13 = _mm256_broadcastq_epi64(_mm_cvtsi64_si128(in1213));
  158. t12 = _mm256_add_epi64(addv12, x_12);
  159. t13 = _mm256_add_epi64(addv13, x_13);
  160. x_12 = _mm256_unpacklo_epi32(t12, t13);
  161. x_13 = _mm256_unpackhi_epi32(t12, t13);
  162. t12 = _mm256_unpacklo_epi32(x_12, x_13);
  163. t13 = _mm256_unpackhi_epi32(x_12, x_13);
  164. /* required because unpack* are intra-lane */
  165. x_12 = _mm256_permutevar8x32_epi32(t12, permute);
  166. x_13 = _mm256_permutevar8x32_epi32(t13, permute);
  167. orig12 = x_12;
  168. orig13 = x_13;
  169. in1213 += 8;
  170. x[12] = in1213 & 0xFFFFFFFF;
  171. x[13] = (in1213 >> 32) & 0xFFFFFFFF;
  172. for (i = 0; i < ROUNDS; i += 2) {
  173. VEC8_ROUND(0, 4, 8, 12, 1, 5, 9, 13, 2, 6, 10, 14, 3, 7, 11, 15);
  174. VEC8_ROUND(0, 5, 10, 15, 1, 6, 11, 12, 2, 7, 8, 13, 3, 4, 9, 14);
  175. }
  176. #define ONEQUAD_TRANSPOSE(A, B, C, D) \
  177. { \
  178. __m128i t0, t1, t2, t3; \
  179. x_##A = _mm256_add_epi32(x_##A, orig##A); \
  180. x_##B = _mm256_add_epi32(x_##B, orig##B); \
  181. x_##C = _mm256_add_epi32(x_##C, orig##C); \
  182. x_##D = _mm256_add_epi32(x_##D, orig##D); \
  183. t_##A = _mm256_unpacklo_epi32(x_##A, x_##B); \
  184. t_##B = _mm256_unpacklo_epi32(x_##C, x_##D); \
  185. t_##C = _mm256_unpackhi_epi32(x_##A, x_##B); \
  186. t_##D = _mm256_unpackhi_epi32(x_##C, x_##D); \
  187. x_##A = _mm256_unpacklo_epi64(t_##A, t_##B); \
  188. x_##B = _mm256_unpackhi_epi64(t_##A, t_##B); \
  189. x_##C = _mm256_unpacklo_epi64(t_##C, t_##D); \
  190. x_##D = _mm256_unpackhi_epi64(t_##C, t_##D); \
  191. t0 = _mm_xor_si128(_mm256_extracti128_si256(x_##A, 0), \
  192. _mm_loadu_si128((const __m128i*) (m + 0))); \
  193. _mm_storeu_si128((__m128i*) (c + 0), t0); \
  194. t1 = _mm_xor_si128(_mm256_extracti128_si256(x_##B, 0), \
  195. _mm_loadu_si128((const __m128i*) (m + 64))); \
  196. _mm_storeu_si128((__m128i*) (c + 64), t1); \
  197. t2 = _mm_xor_si128(_mm256_extracti128_si256(x_##C, 0), \
  198. _mm_loadu_si128((const __m128i*) (m + 128))); \
  199. _mm_storeu_si128((__m128i*) (c + 128), t2); \
  200. t3 = _mm_xor_si128(_mm256_extracti128_si256(x_##D, 0), \
  201. _mm_loadu_si128((const __m128i*) (m + 192))); \
  202. _mm_storeu_si128((__m128i*) (c + 192), t3); \
  203. t0 = _mm_xor_si128(_mm256_extracti128_si256(x_##A, 1), \
  204. _mm_loadu_si128((const __m128i*) (m + 256))); \
  205. _mm_storeu_si128((__m128i*) (c + 256), t0); \
  206. t1 = _mm_xor_si128(_mm256_extracti128_si256(x_##B, 1), \
  207. _mm_loadu_si128((const __m128i*) (m + 320))); \
  208. _mm_storeu_si128((__m128i*) (c + 320), t1); \
  209. t2 = _mm_xor_si128(_mm256_extracti128_si256(x_##C, 1), \
  210. _mm_loadu_si128((const __m128i*) (m + 384))); \
  211. _mm_storeu_si128((__m128i*) (c + 384), t2); \
  212. t3 = _mm_xor_si128(_mm256_extracti128_si256(x_##D, 1), \
  213. _mm_loadu_si128((const __m128i*) (m + 448))); \
  214. _mm_storeu_si128((__m128i*) (c + 448), t3); \
  215. }
  216. #define ONEQUAD(A, B, C, D) ONEQUAD_TRANSPOSE(A, B, C, D)
  217. #define ONEQUAD_UNPCK(A, B, C, D) \
  218. { \
  219. x_##A = _mm256_add_epi32(x_##A, orig##A); \
  220. x_##B = _mm256_add_epi32(x_##B, orig##B); \
  221. x_##C = _mm256_add_epi32(x_##C, orig##C); \
  222. x_##D = _mm256_add_epi32(x_##D, orig##D); \
  223. t_##A = _mm256_unpacklo_epi32(x_##A, x_##B); \
  224. t_##B = _mm256_unpacklo_epi32(x_##C, x_##D); \
  225. t_##C = _mm256_unpackhi_epi32(x_##A, x_##B); \
  226. t_##D = _mm256_unpackhi_epi32(x_##C, x_##D); \
  227. x_##A = _mm256_unpacklo_epi64(t_##A, t_##B); \
  228. x_##B = _mm256_unpackhi_epi64(t_##A, t_##B); \
  229. x_##C = _mm256_unpacklo_epi64(t_##C, t_##D); \
  230. x_##D = _mm256_unpackhi_epi64(t_##C, t_##D); \
  231. }
  232. #define ONEOCTO(A, B, C, D, A2, B2, C2, D2) \
  233. { \
  234. ONEQUAD_UNPCK(A, B, C, D); \
  235. ONEQUAD_UNPCK(A2, B2, C2, D2); \
  236. t_##A = _mm256_permute2x128_si256(x_##A, x_##A2, 0x20); \
  237. t_##A2 = _mm256_permute2x128_si256(x_##A, x_##A2, 0x31); \
  238. t_##B = _mm256_permute2x128_si256(x_##B, x_##B2, 0x20); \
  239. t_##B2 = _mm256_permute2x128_si256(x_##B, x_##B2, 0x31); \
  240. t_##C = _mm256_permute2x128_si256(x_##C, x_##C2, 0x20); \
  241. t_##C2 = _mm256_permute2x128_si256(x_##C, x_##C2, 0x31); \
  242. t_##D = _mm256_permute2x128_si256(x_##D, x_##D2, 0x20); \
  243. t_##D2 = _mm256_permute2x128_si256(x_##D, x_##D2, 0x31); \
  244. t_##A = _mm256_xor_si256( \
  245. t_##A, _mm256_loadu_si256((const __m256i*) (m + 0))); \
  246. t_##B = _mm256_xor_si256( \
  247. t_##B, _mm256_loadu_si256((const __m256i*) (m + 64))); \
  248. t_##C = _mm256_xor_si256( \
  249. t_##C, _mm256_loadu_si256((const __m256i*) (m + 128))); \
  250. t_##D = _mm256_xor_si256( \
  251. t_##D, _mm256_loadu_si256((const __m256i*) (m + 192))); \
  252. t_##A2 = _mm256_xor_si256( \
  253. t_##A2, _mm256_loadu_si256((const __m256i*) (m + 256))); \
  254. t_##B2 = _mm256_xor_si256( \
  255. t_##B2, _mm256_loadu_si256((const __m256i*) (m + 320))); \
  256. t_##C2 = _mm256_xor_si256( \
  257. t_##C2, _mm256_loadu_si256((const __m256i*) (m + 384))); \
  258. t_##D2 = _mm256_xor_si256( \
  259. t_##D2, _mm256_loadu_si256((const __m256i*) (m + 448))); \
  260. _mm256_storeu_si256((__m256i*) (c + 0), t_##A); \
  261. _mm256_storeu_si256((__m256i*) (c + 64), t_##B); \
  262. _mm256_storeu_si256((__m256i*) (c + 128), t_##C); \
  263. _mm256_storeu_si256((__m256i*) (c + 192), t_##D); \
  264. _mm256_storeu_si256((__m256i*) (c + 256), t_##A2); \
  265. _mm256_storeu_si256((__m256i*) (c + 320), t_##B2); \
  266. _mm256_storeu_si256((__m256i*) (c + 384), t_##C2); \
  267. _mm256_storeu_si256((__m256i*) (c + 448), t_##D2); \
  268. }
  269. ONEOCTO(0, 1, 2, 3, 4, 5, 6, 7);
  270. m += 32;
  271. c += 32;
  272. ONEOCTO(8, 9, 10, 11, 12, 13, 14, 15);
  273. m -= 32;
  274. c -= 32;
  275. #undef ONEQUAD
  276. #undef ONEQUAD_TRANSPOSE
  277. #undef ONEQUAD_UNPCK
  278. #undef ONEOCTO
  279. bytes -= 512;
  280. c += 512;
  281. m += 512;
  282. }
  283. }
  284. #undef VEC8_ROT
  285. #undef VEC8_QUARTERROUND
  286. #undef VEC8_QUARTERROUND_NAIVE
  287. #undef VEC8_QUARTERROUND_SHUFFLE
  288. #undef VEC8_QUARTERROUND_SHUFFLE2
  289. #undef VEC8_LINE1
  290. #undef VEC8_LINE2
  291. #undef VEC8_LINE3
  292. #undef VEC8_LINE4
  293. #undef VEC8_ROUND
  294. #undef VEC8_ROUND_SEQ
  295. #undef VEC8_ROUND_HALF
  296. #undef VEC8_ROUND_HALFANDHALF