avx2intrin.h 39 KB

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  1. /*===---- avx2intrin.h - AVX2 intrinsics -----------------------------------===
  2. *
  3. * Permission is hereby granted, free of charge, to any person obtaining a copy
  4. * of this software and associated documentation files (the "Software"), to deal
  5. * in the Software without restriction, including without limitation the rights
  6. * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
  7. * copies of the Software, and to permit persons to whom the Software is
  8. * furnished to do so, subject to the following conditions:
  9. *
  10. * The above copyright notice and this permission notice shall be included in
  11. * all copies or substantial portions of the Software.
  12. *
  13. * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
  14. * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
  15. * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
  16. * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
  17. * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
  18. * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
  19. * THE SOFTWARE.
  20. *
  21. *===-----------------------------------------------------------------------===
  22. */
  23. #ifndef __IMMINTRIN_H
  24. #error "Never use <avx2intrin.h> directly; include <immintrin.h> instead."
  25. #endif
  26. #ifndef __AVX2INTRIN_H
  27. #define __AVX2INTRIN_H
  28. /* Define the default attributes for the functions in this file. */
  29. #define __DEFAULT_FN_ATTRS __attribute__((__always_inline__, __nodebug__))
  30. /* SSE4 Multiple Packed Sums of Absolute Difference. */
  31. #define _mm256_mpsadbw_epu8(X, Y, M) __builtin_ia32_mpsadbw256((X), (Y), (M))
  32. static __inline__ __m256i __DEFAULT_FN_ATTRS
  33. _mm256_abs_epi8(__m256i __a)
  34. {
  35. return (__m256i)__builtin_ia32_pabsb256((__v32qi)__a);
  36. }
  37. static __inline__ __m256i __DEFAULT_FN_ATTRS
  38. _mm256_abs_epi16(__m256i __a)
  39. {
  40. return (__m256i)__builtin_ia32_pabsw256((__v16hi)__a);
  41. }
  42. static __inline__ __m256i __DEFAULT_FN_ATTRS
  43. _mm256_abs_epi32(__m256i __a)
  44. {
  45. return (__m256i)__builtin_ia32_pabsd256((__v8si)__a);
  46. }
  47. static __inline__ __m256i __DEFAULT_FN_ATTRS
  48. _mm256_packs_epi16(__m256i __a, __m256i __b)
  49. {
  50. return (__m256i)__builtin_ia32_packsswb256((__v16hi)__a, (__v16hi)__b);
  51. }
  52. static __inline__ __m256i __DEFAULT_FN_ATTRS
  53. _mm256_packs_epi32(__m256i __a, __m256i __b)
  54. {
  55. return (__m256i)__builtin_ia32_packssdw256((__v8si)__a, (__v8si)__b);
  56. }
  57. static __inline__ __m256i __DEFAULT_FN_ATTRS
  58. _mm256_packus_epi16(__m256i __a, __m256i __b)
  59. {
  60. return (__m256i)__builtin_ia32_packuswb256((__v16hi)__a, (__v16hi)__b);
  61. }
  62. static __inline__ __m256i __DEFAULT_FN_ATTRS
  63. _mm256_packus_epi32(__m256i __V1, __m256i __V2)
  64. {
  65. return (__m256i) __builtin_ia32_packusdw256((__v8si)__V1, (__v8si)__V2);
  66. }
  67. static __inline__ __m256i __DEFAULT_FN_ATTRS
  68. _mm256_add_epi8(__m256i __a, __m256i __b)
  69. {
  70. return (__m256i)((__v32qi)__a + (__v32qi)__b);
  71. }
  72. static __inline__ __m256i __DEFAULT_FN_ATTRS
  73. _mm256_add_epi16(__m256i __a, __m256i __b)
  74. {
  75. return (__m256i)((__v16hi)__a + (__v16hi)__b);
  76. }
  77. static __inline__ __m256i __DEFAULT_FN_ATTRS
  78. _mm256_add_epi32(__m256i __a, __m256i __b)
  79. {
  80. return (__m256i)((__v8si)__a + (__v8si)__b);
  81. }
  82. static __inline__ __m256i __DEFAULT_FN_ATTRS
  83. _mm256_add_epi64(__m256i __a, __m256i __b)
  84. {
  85. return __a + __b;
  86. }
  87. static __inline__ __m256i __DEFAULT_FN_ATTRS
  88. _mm256_adds_epi8(__m256i __a, __m256i __b)
  89. {
  90. return (__m256i)__builtin_ia32_paddsb256((__v32qi)__a, (__v32qi)__b);
  91. }
  92. static __inline__ __m256i __DEFAULT_FN_ATTRS
  93. _mm256_adds_epi16(__m256i __a, __m256i __b)
  94. {
  95. return (__m256i)__builtin_ia32_paddsw256((__v16hi)__a, (__v16hi)__b);
  96. }
  97. static __inline__ __m256i __DEFAULT_FN_ATTRS
  98. _mm256_adds_epu8(__m256i __a, __m256i __b)
  99. {
  100. return (__m256i)__builtin_ia32_paddusb256((__v32qi)__a, (__v32qi)__b);
  101. }
  102. static __inline__ __m256i __DEFAULT_FN_ATTRS
  103. _mm256_adds_epu16(__m256i __a, __m256i __b)
  104. {
  105. return (__m256i)__builtin_ia32_paddusw256((__v16hi)__a, (__v16hi)__b);
  106. }
  107. #define _mm256_alignr_epi8(a, b, n) __extension__ ({ \
  108. __m256i __a = (a); \
  109. __m256i __b = (b); \
  110. (__m256i)__builtin_ia32_palignr256((__v32qi)__a, (__v32qi)__b, (n)); })
  111. static __inline__ __m256i __DEFAULT_FN_ATTRS
  112. _mm256_and_si256(__m256i __a, __m256i __b)
  113. {
  114. return __a & __b;
  115. }
  116. static __inline__ __m256i __DEFAULT_FN_ATTRS
  117. _mm256_andnot_si256(__m256i __a, __m256i __b)
  118. {
  119. return ~__a & __b;
  120. }
  121. static __inline__ __m256i __DEFAULT_FN_ATTRS
  122. _mm256_avg_epu8(__m256i __a, __m256i __b)
  123. {
  124. return (__m256i)__builtin_ia32_pavgb256((__v32qi)__a, (__v32qi)__b);
  125. }
  126. static __inline__ __m256i __DEFAULT_FN_ATTRS
  127. _mm256_avg_epu16(__m256i __a, __m256i __b)
  128. {
  129. return (__m256i)__builtin_ia32_pavgw256((__v16hi)__a, (__v16hi)__b);
  130. }
  131. static __inline__ __m256i __DEFAULT_FN_ATTRS
  132. _mm256_blendv_epi8(__m256i __V1, __m256i __V2, __m256i __M)
  133. {
  134. return (__m256i)__builtin_ia32_pblendvb256((__v32qi)__V1, (__v32qi)__V2,
  135. (__v32qi)__M);
  136. }
  137. #define _mm256_blend_epi16(V1, V2, M) __extension__ ({ \
  138. __m256i __V1 = (V1); \
  139. __m256i __V2 = (V2); \
  140. (__m256i)__builtin_shufflevector((__v16hi)__V1, (__v16hi)__V2, \
  141. (((M) & 0x01) ? 16 : 0), \
  142. (((M) & 0x02) ? 17 : 1), \
  143. (((M) & 0x04) ? 18 : 2), \
  144. (((M) & 0x08) ? 19 : 3), \
  145. (((M) & 0x10) ? 20 : 4), \
  146. (((M) & 0x20) ? 21 : 5), \
  147. (((M) & 0x40) ? 22 : 6), \
  148. (((M) & 0x80) ? 23 : 7), \
  149. (((M) & 0x01) ? 24 : 8), \
  150. (((M) & 0x02) ? 25 : 9), \
  151. (((M) & 0x04) ? 26 : 10), \
  152. (((M) & 0x08) ? 27 : 11), \
  153. (((M) & 0x10) ? 28 : 12), \
  154. (((M) & 0x20) ? 29 : 13), \
  155. (((M) & 0x40) ? 30 : 14), \
  156. (((M) & 0x80) ? 31 : 15)); })
  157. static __inline__ __m256i __DEFAULT_FN_ATTRS
  158. _mm256_cmpeq_epi8(__m256i __a, __m256i __b)
  159. {
  160. return (__m256i)((__v32qi)__a == (__v32qi)__b);
  161. }
  162. static __inline__ __m256i __DEFAULT_FN_ATTRS
  163. _mm256_cmpeq_epi16(__m256i __a, __m256i __b)
  164. {
  165. return (__m256i)((__v16hi)__a == (__v16hi)__b);
  166. }
  167. static __inline__ __m256i __DEFAULT_FN_ATTRS
  168. _mm256_cmpeq_epi32(__m256i __a, __m256i __b)
  169. {
  170. return (__m256i)((__v8si)__a == (__v8si)__b);
  171. }
  172. static __inline__ __m256i __DEFAULT_FN_ATTRS
  173. _mm256_cmpeq_epi64(__m256i __a, __m256i __b)
  174. {
  175. return (__m256i)(__a == __b);
  176. }
  177. static __inline__ __m256i __DEFAULT_FN_ATTRS
  178. _mm256_cmpgt_epi8(__m256i __a, __m256i __b)
  179. {
  180. return (__m256i)((__v32qi)__a > (__v32qi)__b);
  181. }
  182. static __inline__ __m256i __DEFAULT_FN_ATTRS
  183. _mm256_cmpgt_epi16(__m256i __a, __m256i __b)
  184. {
  185. return (__m256i)((__v16hi)__a > (__v16hi)__b);
  186. }
  187. static __inline__ __m256i __DEFAULT_FN_ATTRS
  188. _mm256_cmpgt_epi32(__m256i __a, __m256i __b)
  189. {
  190. return (__m256i)((__v8si)__a > (__v8si)__b);
  191. }
  192. static __inline__ __m256i __DEFAULT_FN_ATTRS
  193. _mm256_cmpgt_epi64(__m256i __a, __m256i __b)
  194. {
  195. return (__m256i)(__a > __b);
  196. }
  197. static __inline__ __m256i __DEFAULT_FN_ATTRS
  198. _mm256_hadd_epi16(__m256i __a, __m256i __b)
  199. {
  200. return (__m256i)__builtin_ia32_phaddw256((__v16hi)__a, (__v16hi)__b);
  201. }
  202. static __inline__ __m256i __DEFAULT_FN_ATTRS
  203. _mm256_hadd_epi32(__m256i __a, __m256i __b)
  204. {
  205. return (__m256i)__builtin_ia32_phaddd256((__v8si)__a, (__v8si)__b);
  206. }
  207. static __inline__ __m256i __DEFAULT_FN_ATTRS
  208. _mm256_hadds_epi16(__m256i __a, __m256i __b)
  209. {
  210. return (__m256i)__builtin_ia32_phaddsw256((__v16hi)__a, (__v16hi)__b);
  211. }
  212. static __inline__ __m256i __DEFAULT_FN_ATTRS
  213. _mm256_hsub_epi16(__m256i __a, __m256i __b)
  214. {
  215. return (__m256i)__builtin_ia32_phsubw256((__v16hi)__a, (__v16hi)__b);
  216. }
  217. static __inline__ __m256i __DEFAULT_FN_ATTRS
  218. _mm256_hsub_epi32(__m256i __a, __m256i __b)
  219. {
  220. return (__m256i)__builtin_ia32_phsubd256((__v8si)__a, (__v8si)__b);
  221. }
  222. static __inline__ __m256i __DEFAULT_FN_ATTRS
  223. _mm256_hsubs_epi16(__m256i __a, __m256i __b)
  224. {
  225. return (__m256i)__builtin_ia32_phsubsw256((__v16hi)__a, (__v16hi)__b);
  226. }
  227. static __inline__ __m256i __DEFAULT_FN_ATTRS
  228. _mm256_maddubs_epi16(__m256i __a, __m256i __b)
  229. {
  230. return (__m256i)__builtin_ia32_pmaddubsw256((__v32qi)__a, (__v32qi)__b);
  231. }
  232. static __inline__ __m256i __DEFAULT_FN_ATTRS
  233. _mm256_madd_epi16(__m256i __a, __m256i __b)
  234. {
  235. return (__m256i)__builtin_ia32_pmaddwd256((__v16hi)__a, (__v16hi)__b);
  236. }
  237. static __inline__ __m256i __DEFAULT_FN_ATTRS
  238. _mm256_max_epi8(__m256i __a, __m256i __b)
  239. {
  240. return (__m256i)__builtin_ia32_pmaxsb256((__v32qi)__a, (__v32qi)__b);
  241. }
  242. static __inline__ __m256i __DEFAULT_FN_ATTRS
  243. _mm256_max_epi16(__m256i __a, __m256i __b)
  244. {
  245. return (__m256i)__builtin_ia32_pmaxsw256((__v16hi)__a, (__v16hi)__b);
  246. }
  247. static __inline__ __m256i __DEFAULT_FN_ATTRS
  248. _mm256_max_epi32(__m256i __a, __m256i __b)
  249. {
  250. return (__m256i)__builtin_ia32_pmaxsd256((__v8si)__a, (__v8si)__b);
  251. }
  252. static __inline__ __m256i __DEFAULT_FN_ATTRS
  253. _mm256_max_epu8(__m256i __a, __m256i __b)
  254. {
  255. return (__m256i)__builtin_ia32_pmaxub256((__v32qi)__a, (__v32qi)__b);
  256. }
  257. static __inline__ __m256i __DEFAULT_FN_ATTRS
  258. _mm256_max_epu16(__m256i __a, __m256i __b)
  259. {
  260. return (__m256i)__builtin_ia32_pmaxuw256((__v16hi)__a, (__v16hi)__b);
  261. }
  262. static __inline__ __m256i __DEFAULT_FN_ATTRS
  263. _mm256_max_epu32(__m256i __a, __m256i __b)
  264. {
  265. return (__m256i)__builtin_ia32_pmaxud256((__v8si)__a, (__v8si)__b);
  266. }
  267. static __inline__ __m256i __DEFAULT_FN_ATTRS
  268. _mm256_min_epi8(__m256i __a, __m256i __b)
  269. {
  270. return (__m256i)__builtin_ia32_pminsb256((__v32qi)__a, (__v32qi)__b);
  271. }
  272. static __inline__ __m256i __DEFAULT_FN_ATTRS
  273. _mm256_min_epi16(__m256i __a, __m256i __b)
  274. {
  275. return (__m256i)__builtin_ia32_pminsw256((__v16hi)__a, (__v16hi)__b);
  276. }
  277. static __inline__ __m256i __DEFAULT_FN_ATTRS
  278. _mm256_min_epi32(__m256i __a, __m256i __b)
  279. {
  280. return (__m256i)__builtin_ia32_pminsd256((__v8si)__a, (__v8si)__b);
  281. }
  282. static __inline__ __m256i __DEFAULT_FN_ATTRS
  283. _mm256_min_epu8(__m256i __a, __m256i __b)
  284. {
  285. return (__m256i)__builtin_ia32_pminub256((__v32qi)__a, (__v32qi)__b);
  286. }
  287. static __inline__ __m256i __DEFAULT_FN_ATTRS
  288. _mm256_min_epu16(__m256i __a, __m256i __b)
  289. {
  290. return (__m256i)__builtin_ia32_pminuw256 ((__v16hi)__a, (__v16hi)__b);
  291. }
  292. static __inline__ __m256i __DEFAULT_FN_ATTRS
  293. _mm256_min_epu32(__m256i __a, __m256i __b)
  294. {
  295. return (__m256i)__builtin_ia32_pminud256((__v8si)__a, (__v8si)__b);
  296. }
  297. static __inline__ int __DEFAULT_FN_ATTRS
  298. _mm256_movemask_epi8(__m256i __a)
  299. {
  300. return __builtin_ia32_pmovmskb256((__v32qi)__a);
  301. }
  302. static __inline__ __m256i __DEFAULT_FN_ATTRS
  303. _mm256_cvtepi8_epi16(__m128i __V)
  304. {
  305. return (__m256i)__builtin_ia32_pmovsxbw256((__v16qi)__V);
  306. }
  307. static __inline__ __m256i __DEFAULT_FN_ATTRS
  308. _mm256_cvtepi8_epi32(__m128i __V)
  309. {
  310. return (__m256i)__builtin_ia32_pmovsxbd256((__v16qi)__V);
  311. }
  312. static __inline__ __m256i __DEFAULT_FN_ATTRS
  313. _mm256_cvtepi8_epi64(__m128i __V)
  314. {
  315. return (__m256i)__builtin_ia32_pmovsxbq256((__v16qi)__V);
  316. }
  317. static __inline__ __m256i __DEFAULT_FN_ATTRS
  318. _mm256_cvtepi16_epi32(__m128i __V)
  319. {
  320. return (__m256i)__builtin_ia32_pmovsxwd256((__v8hi)__V);
  321. }
  322. static __inline__ __m256i __DEFAULT_FN_ATTRS
  323. _mm256_cvtepi16_epi64(__m128i __V)
  324. {
  325. return (__m256i)__builtin_ia32_pmovsxwq256((__v8hi)__V);
  326. }
  327. static __inline__ __m256i __DEFAULT_FN_ATTRS
  328. _mm256_cvtepi32_epi64(__m128i __V)
  329. {
  330. return (__m256i)__builtin_ia32_pmovsxdq256((__v4si)__V);
  331. }
  332. static __inline__ __m256i __DEFAULT_FN_ATTRS
  333. _mm256_cvtepu8_epi16(__m128i __V)
  334. {
  335. return (__m256i)__builtin_ia32_pmovzxbw256((__v16qi)__V);
  336. }
  337. static __inline__ __m256i __DEFAULT_FN_ATTRS
  338. _mm256_cvtepu8_epi32(__m128i __V)
  339. {
  340. return (__m256i)__builtin_ia32_pmovzxbd256((__v16qi)__V);
  341. }
  342. static __inline__ __m256i __DEFAULT_FN_ATTRS
  343. _mm256_cvtepu8_epi64(__m128i __V)
  344. {
  345. return (__m256i)__builtin_ia32_pmovzxbq256((__v16qi)__V);
  346. }
  347. static __inline__ __m256i __DEFAULT_FN_ATTRS
  348. _mm256_cvtepu16_epi32(__m128i __V)
  349. {
  350. return (__m256i)__builtin_ia32_pmovzxwd256((__v8hi)__V);
  351. }
  352. static __inline__ __m256i __DEFAULT_FN_ATTRS
  353. _mm256_cvtepu16_epi64(__m128i __V)
  354. {
  355. return (__m256i)__builtin_ia32_pmovzxwq256((__v8hi)__V);
  356. }
  357. static __inline__ __m256i __DEFAULT_FN_ATTRS
  358. _mm256_cvtepu32_epi64(__m128i __V)
  359. {
  360. return (__m256i)__builtin_ia32_pmovzxdq256((__v4si)__V);
  361. }
  362. static __inline__ __m256i __DEFAULT_FN_ATTRS
  363. _mm256_mul_epi32(__m256i __a, __m256i __b)
  364. {
  365. return (__m256i)__builtin_ia32_pmuldq256((__v8si)__a, (__v8si)__b);
  366. }
  367. static __inline__ __m256i __DEFAULT_FN_ATTRS
  368. _mm256_mulhrs_epi16(__m256i __a, __m256i __b)
  369. {
  370. return (__m256i)__builtin_ia32_pmulhrsw256((__v16hi)__a, (__v16hi)__b);
  371. }
  372. static __inline__ __m256i __DEFAULT_FN_ATTRS
  373. _mm256_mulhi_epu16(__m256i __a, __m256i __b)
  374. {
  375. return (__m256i)__builtin_ia32_pmulhuw256((__v16hi)__a, (__v16hi)__b);
  376. }
  377. static __inline__ __m256i __DEFAULT_FN_ATTRS
  378. _mm256_mulhi_epi16(__m256i __a, __m256i __b)
  379. {
  380. return (__m256i)__builtin_ia32_pmulhw256((__v16hi)__a, (__v16hi)__b);
  381. }
  382. static __inline__ __m256i __DEFAULT_FN_ATTRS
  383. _mm256_mullo_epi16(__m256i __a, __m256i __b)
  384. {
  385. return (__m256i)((__v16hi)__a * (__v16hi)__b);
  386. }
  387. static __inline__ __m256i __DEFAULT_FN_ATTRS
  388. _mm256_mullo_epi32 (__m256i __a, __m256i __b)
  389. {
  390. return (__m256i)((__v8si)__a * (__v8si)__b);
  391. }
  392. static __inline__ __m256i __DEFAULT_FN_ATTRS
  393. _mm256_mul_epu32(__m256i __a, __m256i __b)
  394. {
  395. return __builtin_ia32_pmuludq256((__v8si)__a, (__v8si)__b);
  396. }
  397. static __inline__ __m256i __DEFAULT_FN_ATTRS
  398. _mm256_or_si256(__m256i __a, __m256i __b)
  399. {
  400. return __a | __b;
  401. }
  402. static __inline__ __m256i __DEFAULT_FN_ATTRS
  403. _mm256_sad_epu8(__m256i __a, __m256i __b)
  404. {
  405. return __builtin_ia32_psadbw256((__v32qi)__a, (__v32qi)__b);
  406. }
  407. static __inline__ __m256i __DEFAULT_FN_ATTRS
  408. _mm256_shuffle_epi8(__m256i __a, __m256i __b)
  409. {
  410. return (__m256i)__builtin_ia32_pshufb256((__v32qi)__a, (__v32qi)__b);
  411. }
  412. #define _mm256_shuffle_epi32(a, imm) __extension__ ({ \
  413. __m256i __a = (a); \
  414. (__m256i)__builtin_shufflevector((__v8si)__a, (__v8si)_mm256_set1_epi32(0), \
  415. (imm) & 0x3, ((imm) & 0xc) >> 2, \
  416. ((imm) & 0x30) >> 4, ((imm) & 0xc0) >> 6, \
  417. 4 + (((imm) & 0x03) >> 0), \
  418. 4 + (((imm) & 0x0c) >> 2), \
  419. 4 + (((imm) & 0x30) >> 4), \
  420. 4 + (((imm) & 0xc0) >> 6)); })
  421. #define _mm256_shufflehi_epi16(a, imm) __extension__ ({ \
  422. __m256i __a = (a); \
  423. (__m256i)__builtin_shufflevector((__v16hi)__a, (__v16hi)_mm256_set1_epi16(0), \
  424. 0, 1, 2, 3, \
  425. 4 + (((imm) & 0x03) >> 0), \
  426. 4 + (((imm) & 0x0c) >> 2), \
  427. 4 + (((imm) & 0x30) >> 4), \
  428. 4 + (((imm) & 0xc0) >> 6), \
  429. 8, 9, 10, 11, \
  430. 12 + (((imm) & 0x03) >> 0), \
  431. 12 + (((imm) & 0x0c) >> 2), \
  432. 12 + (((imm) & 0x30) >> 4), \
  433. 12 + (((imm) & 0xc0) >> 6)); })
  434. #define _mm256_shufflelo_epi16(a, imm) __extension__ ({ \
  435. __m256i __a = (a); \
  436. (__m256i)__builtin_shufflevector((__v16hi)__a, (__v16hi)_mm256_set1_epi16(0), \
  437. (imm) & 0x3,((imm) & 0xc) >> 2, \
  438. ((imm) & 0x30) >> 4, ((imm) & 0xc0) >> 6, \
  439. 4, 5, 6, 7, \
  440. 8 + (((imm) & 0x03) >> 0), \
  441. 8 + (((imm) & 0x0c) >> 2), \
  442. 8 + (((imm) & 0x30) >> 4), \
  443. 8 + (((imm) & 0xc0) >> 6), \
  444. 12, 13, 14, 15); })
  445. static __inline__ __m256i __DEFAULT_FN_ATTRS
  446. _mm256_sign_epi8(__m256i __a, __m256i __b)
  447. {
  448. return (__m256i)__builtin_ia32_psignb256((__v32qi)__a, (__v32qi)__b);
  449. }
  450. static __inline__ __m256i __DEFAULT_FN_ATTRS
  451. _mm256_sign_epi16(__m256i __a, __m256i __b)
  452. {
  453. return (__m256i)__builtin_ia32_psignw256((__v16hi)__a, (__v16hi)__b);
  454. }
  455. static __inline__ __m256i __DEFAULT_FN_ATTRS
  456. _mm256_sign_epi32(__m256i __a, __m256i __b)
  457. {
  458. return (__m256i)__builtin_ia32_psignd256((__v8si)__a, (__v8si)__b);
  459. }
  460. #define _mm256_slli_si256(a, count) __extension__ ({ \
  461. __m256i __a = (a); \
  462. (__m256i)__builtin_ia32_pslldqi256(__a, (count)*8); })
  463. #define _mm256_bslli_epi128(a, count) _mm256_slli_si256((a), (count))
  464. static __inline__ __m256i __DEFAULT_FN_ATTRS
  465. _mm256_slli_epi16(__m256i __a, int __count)
  466. {
  467. return (__m256i)__builtin_ia32_psllwi256((__v16hi)__a, __count);
  468. }
  469. static __inline__ __m256i __DEFAULT_FN_ATTRS
  470. _mm256_sll_epi16(__m256i __a, __m128i __count)
  471. {
  472. return (__m256i)__builtin_ia32_psllw256((__v16hi)__a, (__v8hi)__count);
  473. }
  474. static __inline__ __m256i __DEFAULT_FN_ATTRS
  475. _mm256_slli_epi32(__m256i __a, int __count)
  476. {
  477. return (__m256i)__builtin_ia32_pslldi256((__v8si)__a, __count);
  478. }
  479. static __inline__ __m256i __DEFAULT_FN_ATTRS
  480. _mm256_sll_epi32(__m256i __a, __m128i __count)
  481. {
  482. return (__m256i)__builtin_ia32_pslld256((__v8si)__a, (__v4si)__count);
  483. }
  484. static __inline__ __m256i __DEFAULT_FN_ATTRS
  485. _mm256_slli_epi64(__m256i __a, int __count)
  486. {
  487. return __builtin_ia32_psllqi256(__a, __count);
  488. }
  489. static __inline__ __m256i __DEFAULT_FN_ATTRS
  490. _mm256_sll_epi64(__m256i __a, __m128i __count)
  491. {
  492. return __builtin_ia32_psllq256(__a, __count);
  493. }
  494. static __inline__ __m256i __DEFAULT_FN_ATTRS
  495. _mm256_srai_epi16(__m256i __a, int __count)
  496. {
  497. return (__m256i)__builtin_ia32_psrawi256((__v16hi)__a, __count);
  498. }
  499. static __inline__ __m256i __DEFAULT_FN_ATTRS
  500. _mm256_sra_epi16(__m256i __a, __m128i __count)
  501. {
  502. return (__m256i)__builtin_ia32_psraw256((__v16hi)__a, (__v8hi)__count);
  503. }
  504. static __inline__ __m256i __DEFAULT_FN_ATTRS
  505. _mm256_srai_epi32(__m256i __a, int __count)
  506. {
  507. return (__m256i)__builtin_ia32_psradi256((__v8si)__a, __count);
  508. }
  509. static __inline__ __m256i __DEFAULT_FN_ATTRS
  510. _mm256_sra_epi32(__m256i __a, __m128i __count)
  511. {
  512. return (__m256i)__builtin_ia32_psrad256((__v8si)__a, (__v4si)__count);
  513. }
  514. #define _mm256_srli_si256(a, count) __extension__ ({ \
  515. __m256i __a = (a); \
  516. (__m256i)__builtin_ia32_psrldqi256(__a, (count)*8); })
  517. #define _mm256_bsrli_epi128(a, count) _mm256_srli_si256((a), (count))
  518. static __inline__ __m256i __DEFAULT_FN_ATTRS
  519. _mm256_srli_epi16(__m256i __a, int __count)
  520. {
  521. return (__m256i)__builtin_ia32_psrlwi256((__v16hi)__a, __count);
  522. }
  523. static __inline__ __m256i __DEFAULT_FN_ATTRS
  524. _mm256_srl_epi16(__m256i __a, __m128i __count)
  525. {
  526. return (__m256i)__builtin_ia32_psrlw256((__v16hi)__a, (__v8hi)__count);
  527. }
  528. static __inline__ __m256i __DEFAULT_FN_ATTRS
  529. _mm256_srli_epi32(__m256i __a, int __count)
  530. {
  531. return (__m256i)__builtin_ia32_psrldi256((__v8si)__a, __count);
  532. }
  533. static __inline__ __m256i __DEFAULT_FN_ATTRS
  534. _mm256_srl_epi32(__m256i __a, __m128i __count)
  535. {
  536. return (__m256i)__builtin_ia32_psrld256((__v8si)__a, (__v4si)__count);
  537. }
  538. static __inline__ __m256i __DEFAULT_FN_ATTRS
  539. _mm256_srli_epi64(__m256i __a, int __count)
  540. {
  541. return __builtin_ia32_psrlqi256(__a, __count);
  542. }
  543. static __inline__ __m256i __DEFAULT_FN_ATTRS
  544. _mm256_srl_epi64(__m256i __a, __m128i __count)
  545. {
  546. return __builtin_ia32_psrlq256(__a, __count);
  547. }
  548. static __inline__ __m256i __DEFAULT_FN_ATTRS
  549. _mm256_sub_epi8(__m256i __a, __m256i __b)
  550. {
  551. return (__m256i)((__v32qi)__a - (__v32qi)__b);
  552. }
  553. static __inline__ __m256i __DEFAULT_FN_ATTRS
  554. _mm256_sub_epi16(__m256i __a, __m256i __b)
  555. {
  556. return (__m256i)((__v16hi)__a - (__v16hi)__b);
  557. }
  558. static __inline__ __m256i __DEFAULT_FN_ATTRS
  559. _mm256_sub_epi32(__m256i __a, __m256i __b)
  560. {
  561. return (__m256i)((__v8si)__a - (__v8si)__b);
  562. }
  563. static __inline__ __m256i __DEFAULT_FN_ATTRS
  564. _mm256_sub_epi64(__m256i __a, __m256i __b)
  565. {
  566. return __a - __b;
  567. }
  568. static __inline__ __m256i __DEFAULT_FN_ATTRS
  569. _mm256_subs_epi8(__m256i __a, __m256i __b)
  570. {
  571. return (__m256i)__builtin_ia32_psubsb256((__v32qi)__a, (__v32qi)__b);
  572. }
  573. static __inline__ __m256i __DEFAULT_FN_ATTRS
  574. _mm256_subs_epi16(__m256i __a, __m256i __b)
  575. {
  576. return (__m256i)__builtin_ia32_psubsw256((__v16hi)__a, (__v16hi)__b);
  577. }
  578. static __inline__ __m256i __DEFAULT_FN_ATTRS
  579. _mm256_subs_epu8(__m256i __a, __m256i __b)
  580. {
  581. return (__m256i)__builtin_ia32_psubusb256((__v32qi)__a, (__v32qi)__b);
  582. }
  583. static __inline__ __m256i __DEFAULT_FN_ATTRS
  584. _mm256_subs_epu16(__m256i __a, __m256i __b)
  585. {
  586. return (__m256i)__builtin_ia32_psubusw256((__v16hi)__a, (__v16hi)__b);
  587. }
  588. static __inline__ __m256i __DEFAULT_FN_ATTRS
  589. _mm256_unpackhi_epi8(__m256i __a, __m256i __b)
  590. {
  591. return (__m256i)__builtin_shufflevector((__v32qi)__a, (__v32qi)__b, 8, 32+8, 9, 32+9, 10, 32+10, 11, 32+11, 12, 32+12, 13, 32+13, 14, 32+14, 15, 32+15, 24, 32+24, 25, 32+25, 26, 32+26, 27, 32+27, 28, 32+28, 29, 32+29, 30, 32+30, 31, 32+31);
  592. }
  593. static __inline__ __m256i __DEFAULT_FN_ATTRS
  594. _mm256_unpackhi_epi16(__m256i __a, __m256i __b)
  595. {
  596. return (__m256i)__builtin_shufflevector((__v16hi)__a, (__v16hi)__b, 4, 16+4, 5, 16+5, 6, 16+6, 7, 16+7, 12, 16+12, 13, 16+13, 14, 16+14, 15, 16+15);
  597. }
  598. static __inline__ __m256i __DEFAULT_FN_ATTRS
  599. _mm256_unpackhi_epi32(__m256i __a, __m256i __b)
  600. {
  601. return (__m256i)__builtin_shufflevector((__v8si)__a, (__v8si)__b, 2, 8+2, 3, 8+3, 6, 8+6, 7, 8+7);
  602. }
  603. static __inline__ __m256i __DEFAULT_FN_ATTRS
  604. _mm256_unpackhi_epi64(__m256i __a, __m256i __b)
  605. {
  606. return (__m256i)__builtin_shufflevector(__a, __b, 1, 4+1, 3, 4+3);
  607. }
  608. static __inline__ __m256i __DEFAULT_FN_ATTRS
  609. _mm256_unpacklo_epi8(__m256i __a, __m256i __b)
  610. {
  611. return (__m256i)__builtin_shufflevector((__v32qi)__a, (__v32qi)__b, 0, 32+0, 1, 32+1, 2, 32+2, 3, 32+3, 4, 32+4, 5, 32+5, 6, 32+6, 7, 32+7, 16, 32+16, 17, 32+17, 18, 32+18, 19, 32+19, 20, 32+20, 21, 32+21, 22, 32+22, 23, 32+23);
  612. }
  613. static __inline__ __m256i __DEFAULT_FN_ATTRS
  614. _mm256_unpacklo_epi16(__m256i __a, __m256i __b)
  615. {
  616. return (__m256i)__builtin_shufflevector((__v16hi)__a, (__v16hi)__b, 0, 16+0, 1, 16+1, 2, 16+2, 3, 16+3, 8, 16+8, 9, 16+9, 10, 16+10, 11, 16+11);
  617. }
  618. static __inline__ __m256i __DEFAULT_FN_ATTRS
  619. _mm256_unpacklo_epi32(__m256i __a, __m256i __b)
  620. {
  621. return (__m256i)__builtin_shufflevector((__v8si)__a, (__v8si)__b, 0, 8+0, 1, 8+1, 4, 8+4, 5, 8+5);
  622. }
  623. static __inline__ __m256i __DEFAULT_FN_ATTRS
  624. _mm256_unpacklo_epi64(__m256i __a, __m256i __b)
  625. {
  626. return (__m256i)__builtin_shufflevector(__a, __b, 0, 4+0, 2, 4+2);
  627. }
  628. static __inline__ __m256i __DEFAULT_FN_ATTRS
  629. _mm256_xor_si256(__m256i __a, __m256i __b)
  630. {
  631. return __a ^ __b;
  632. }
  633. static __inline__ __m256i __DEFAULT_FN_ATTRS
  634. _mm256_stream_load_si256(__m256i *__V)
  635. {
  636. return (__m256i)__builtin_ia32_movntdqa256((__v4di *)__V);
  637. }
  638. static __inline__ __m128 __DEFAULT_FN_ATTRS
  639. _mm_broadcastss_ps(__m128 __X)
  640. {
  641. return (__m128)__builtin_ia32_vbroadcastss_ps((__v4sf)__X);
  642. }
  643. static __inline__ __m128d __DEFAULT_FN_ATTRS
  644. _mm_broadcastsd_pd(__m128d __a)
  645. {
  646. return __builtin_shufflevector(__a, __a, 0, 0);
  647. }
  648. static __inline__ __m256 __DEFAULT_FN_ATTRS
  649. _mm256_broadcastss_ps(__m128 __X)
  650. {
  651. return (__m256)__builtin_ia32_vbroadcastss_ps256((__v4sf)__X);
  652. }
  653. static __inline__ __m256d __DEFAULT_FN_ATTRS
  654. _mm256_broadcastsd_pd(__m128d __X)
  655. {
  656. return (__m256d)__builtin_ia32_vbroadcastsd_pd256((__v2df)__X);
  657. }
  658. static __inline__ __m256i __DEFAULT_FN_ATTRS
  659. _mm256_broadcastsi128_si256(__m128i __X)
  660. {
  661. return (__m256i)__builtin_shufflevector(__X, __X, 0, 1, 0, 1);
  662. }
  663. #define _mm_blend_epi32(V1, V2, M) __extension__ ({ \
  664. __m128i __V1 = (V1); \
  665. __m128i __V2 = (V2); \
  666. (__m128i)__builtin_shufflevector((__v4si)__V1, (__v4si)__V2, \
  667. (((M) & 0x01) ? 4 : 0), \
  668. (((M) & 0x02) ? 5 : 1), \
  669. (((M) & 0x04) ? 6 : 2), \
  670. (((M) & 0x08) ? 7 : 3)); })
  671. #define _mm256_blend_epi32(V1, V2, M) __extension__ ({ \
  672. __m256i __V1 = (V1); \
  673. __m256i __V2 = (V2); \
  674. (__m256i)__builtin_shufflevector((__v8si)__V1, (__v8si)__V2, \
  675. (((M) & 0x01) ? 8 : 0), \
  676. (((M) & 0x02) ? 9 : 1), \
  677. (((M) & 0x04) ? 10 : 2), \
  678. (((M) & 0x08) ? 11 : 3), \
  679. (((M) & 0x10) ? 12 : 4), \
  680. (((M) & 0x20) ? 13 : 5), \
  681. (((M) & 0x40) ? 14 : 6), \
  682. (((M) & 0x80) ? 15 : 7)); })
  683. static __inline__ __m256i __DEFAULT_FN_ATTRS
  684. _mm256_broadcastb_epi8(__m128i __X)
  685. {
  686. return (__m256i)__builtin_ia32_pbroadcastb256((__v16qi)__X);
  687. }
  688. static __inline__ __m256i __DEFAULT_FN_ATTRS
  689. _mm256_broadcastw_epi16(__m128i __X)
  690. {
  691. return (__m256i)__builtin_ia32_pbroadcastw256((__v8hi)__X);
  692. }
  693. static __inline__ __m256i __DEFAULT_FN_ATTRS
  694. _mm256_broadcastd_epi32(__m128i __X)
  695. {
  696. return (__m256i)__builtin_ia32_pbroadcastd256((__v4si)__X);
  697. }
  698. static __inline__ __m256i __DEFAULT_FN_ATTRS
  699. _mm256_broadcastq_epi64(__m128i __X)
  700. {
  701. return (__m256i)__builtin_ia32_pbroadcastq256(__X);
  702. }
  703. static __inline__ __m128i __DEFAULT_FN_ATTRS
  704. _mm_broadcastb_epi8(__m128i __X)
  705. {
  706. return (__m128i)__builtin_ia32_pbroadcastb128((__v16qi)__X);
  707. }
  708. static __inline__ __m128i __DEFAULT_FN_ATTRS
  709. _mm_broadcastw_epi16(__m128i __X)
  710. {
  711. return (__m128i)__builtin_ia32_pbroadcastw128((__v8hi)__X);
  712. }
  713. static __inline__ __m128i __DEFAULT_FN_ATTRS
  714. _mm_broadcastd_epi32(__m128i __X)
  715. {
  716. return (__m128i)__builtin_ia32_pbroadcastd128((__v4si)__X);
  717. }
  718. static __inline__ __m128i __DEFAULT_FN_ATTRS
  719. _mm_broadcastq_epi64(__m128i __X)
  720. {
  721. return (__m128i)__builtin_ia32_pbroadcastq128(__X);
  722. }
  723. static __inline__ __m256i __DEFAULT_FN_ATTRS
  724. _mm256_permutevar8x32_epi32(__m256i __a, __m256i __b)
  725. {
  726. return (__m256i)__builtin_ia32_permvarsi256((__v8si)__a, (__v8si)__b);
  727. }
  728. #define _mm256_permute4x64_pd(V, M) __extension__ ({ \
  729. __m256d __V = (V); \
  730. (__m256d)__builtin_shufflevector((__v4df)__V, (__v4df) _mm256_setzero_pd(), \
  731. (M) & 0x3, ((M) & 0xc) >> 2, \
  732. ((M) & 0x30) >> 4, ((M) & 0xc0) >> 6); })
  733. static __inline__ __m256 __DEFAULT_FN_ATTRS
  734. _mm256_permutevar8x32_ps(__m256 __a, __m256 __b)
  735. {
  736. return (__m256)__builtin_ia32_permvarsf256((__v8sf)__a, (__v8sf)__b);
  737. }
  738. #define _mm256_permute4x64_epi64(V, M) __extension__ ({ \
  739. __m256i __V = (V); \
  740. (__m256i)__builtin_shufflevector((__v4di)__V, (__v4di) _mm256_setzero_si256(), \
  741. (M) & 0x3, ((M) & 0xc) >> 2, \
  742. ((M) & 0x30) >> 4, ((M) & 0xc0) >> 6); })
  743. #define _mm256_permute2x128_si256(V1, V2, M) __extension__ ({ \
  744. __m256i __V1 = (V1); \
  745. __m256i __V2 = (V2); \
  746. (__m256i)__builtin_ia32_permti256(__V1, __V2, (M)); })
  747. #define _mm256_extracti128_si256(V, M) __extension__ ({ \
  748. (__m128i)__builtin_shufflevector( \
  749. (__v4di)(V), \
  750. (__v4di)(_mm256_setzero_si256()), \
  751. (((M) & 1) ? 2 : 0), \
  752. (((M) & 1) ? 3 : 1) );})
  753. #define _mm256_inserti128_si256(V1, V2, M) __extension__ ({ \
  754. (__m256i)__builtin_shufflevector( \
  755. (__v4di)(V1), \
  756. (__v4di)_mm256_castsi128_si256((__m128i)(V2)), \
  757. (((M) & 1) ? 0 : 4), \
  758. (((M) & 1) ? 1 : 5), \
  759. (((M) & 1) ? 4 : 2), \
  760. (((M) & 1) ? 5 : 3) );})
  761. static __inline__ __m256i __DEFAULT_FN_ATTRS
  762. _mm256_maskload_epi32(int const *__X, __m256i __M)
  763. {
  764. return (__m256i)__builtin_ia32_maskloadd256((const __v8si *)__X, (__v8si)__M);
  765. }
  766. static __inline__ __m256i __DEFAULT_FN_ATTRS
  767. _mm256_maskload_epi64(long long const *__X, __m256i __M)
  768. {
  769. return (__m256i)__builtin_ia32_maskloadq256((const __v4di *)__X, __M);
  770. }
  771. static __inline__ __m128i __DEFAULT_FN_ATTRS
  772. _mm_maskload_epi32(int const *__X, __m128i __M)
  773. {
  774. return (__m128i)__builtin_ia32_maskloadd((const __v4si *)__X, (__v4si)__M);
  775. }
  776. static __inline__ __m128i __DEFAULT_FN_ATTRS
  777. _mm_maskload_epi64(long long const *__X, __m128i __M)
  778. {
  779. return (__m128i)__builtin_ia32_maskloadq((const __v2di *)__X, (__v2di)__M);
  780. }
  781. static __inline__ void __DEFAULT_FN_ATTRS
  782. _mm256_maskstore_epi32(int *__X, __m256i __M, __m256i __Y)
  783. {
  784. __builtin_ia32_maskstored256((__v8si *)__X, (__v8si)__M, (__v8si)__Y);
  785. }
  786. static __inline__ void __DEFAULT_FN_ATTRS
  787. _mm256_maskstore_epi64(long long *__X, __m256i __M, __m256i __Y)
  788. {
  789. __builtin_ia32_maskstoreq256((__v4di *)__X, __M, __Y);
  790. }
  791. static __inline__ void __DEFAULT_FN_ATTRS
  792. _mm_maskstore_epi32(int *__X, __m128i __M, __m128i __Y)
  793. {
  794. __builtin_ia32_maskstored((__v4si *)__X, (__v4si)__M, (__v4si)__Y);
  795. }
  796. static __inline__ void __DEFAULT_FN_ATTRS
  797. _mm_maskstore_epi64(long long *__X, __m128i __M, __m128i __Y)
  798. {
  799. __builtin_ia32_maskstoreq(( __v2di *)__X, __M, __Y);
  800. }
  801. static __inline__ __m256i __DEFAULT_FN_ATTRS
  802. _mm256_sllv_epi32(__m256i __X, __m256i __Y)
  803. {
  804. return (__m256i)__builtin_ia32_psllv8si((__v8si)__X, (__v8si)__Y);
  805. }
  806. static __inline__ __m128i __DEFAULT_FN_ATTRS
  807. _mm_sllv_epi32(__m128i __X, __m128i __Y)
  808. {
  809. return (__m128i)__builtin_ia32_psllv4si((__v4si)__X, (__v4si)__Y);
  810. }
  811. static __inline__ __m256i __DEFAULT_FN_ATTRS
  812. _mm256_sllv_epi64(__m256i __X, __m256i __Y)
  813. {
  814. return (__m256i)__builtin_ia32_psllv4di(__X, __Y);
  815. }
  816. static __inline__ __m128i __DEFAULT_FN_ATTRS
  817. _mm_sllv_epi64(__m128i __X, __m128i __Y)
  818. {
  819. return (__m128i)__builtin_ia32_psllv2di(__X, __Y);
  820. }
  821. static __inline__ __m256i __DEFAULT_FN_ATTRS
  822. _mm256_srav_epi32(__m256i __X, __m256i __Y)
  823. {
  824. return (__m256i)__builtin_ia32_psrav8si((__v8si)__X, (__v8si)__Y);
  825. }
  826. static __inline__ __m128i __DEFAULT_FN_ATTRS
  827. _mm_srav_epi32(__m128i __X, __m128i __Y)
  828. {
  829. return (__m128i)__builtin_ia32_psrav4si((__v4si)__X, (__v4si)__Y);
  830. }
  831. static __inline__ __m256i __DEFAULT_FN_ATTRS
  832. _mm256_srlv_epi32(__m256i __X, __m256i __Y)
  833. {
  834. return (__m256i)__builtin_ia32_psrlv8si((__v8si)__X, (__v8si)__Y);
  835. }
  836. static __inline__ __m128i __DEFAULT_FN_ATTRS
  837. _mm_srlv_epi32(__m128i __X, __m128i __Y)
  838. {
  839. return (__m128i)__builtin_ia32_psrlv4si((__v4si)__X, (__v4si)__Y);
  840. }
  841. static __inline__ __m256i __DEFAULT_FN_ATTRS
  842. _mm256_srlv_epi64(__m256i __X, __m256i __Y)
  843. {
  844. return (__m256i)__builtin_ia32_psrlv4di(__X, __Y);
  845. }
  846. static __inline__ __m128i __DEFAULT_FN_ATTRS
  847. _mm_srlv_epi64(__m128i __X, __m128i __Y)
  848. {
  849. return (__m128i)__builtin_ia32_psrlv2di(__X, __Y);
  850. }
  851. #define _mm_mask_i32gather_pd(a, m, i, mask, s) __extension__ ({ \
  852. __m128d __a = (a); \
  853. double const *__m = (m); \
  854. __m128i __i = (i); \
  855. __m128d __mask = (mask); \
  856. (__m128d)__builtin_ia32_gatherd_pd((__v2df)__a, (const __v2df *)__m, \
  857. (__v4si)__i, (__v2df)__mask, (s)); })
  858. #define _mm256_mask_i32gather_pd(a, m, i, mask, s) __extension__ ({ \
  859. __m256d __a = (a); \
  860. double const *__m = (m); \
  861. __m128i __i = (i); \
  862. __m256d __mask = (mask); \
  863. (__m256d)__builtin_ia32_gatherd_pd256((__v4df)__a, (const __v4df *)__m, \
  864. (__v4si)__i, (__v4df)__mask, (s)); })
  865. #define _mm_mask_i64gather_pd(a, m, i, mask, s) __extension__ ({ \
  866. __m128d __a = (a); \
  867. double const *__m = (m); \
  868. __m128i __i = (i); \
  869. __m128d __mask = (mask); \
  870. (__m128d)__builtin_ia32_gatherq_pd((__v2df)__a, (const __v2df *)__m, \
  871. (__v2di)__i, (__v2df)__mask, (s)); })
  872. #define _mm256_mask_i64gather_pd(a, m, i, mask, s) __extension__ ({ \
  873. __m256d __a = (a); \
  874. double const *__m = (m); \
  875. __m256i __i = (i); \
  876. __m256d __mask = (mask); \
  877. (__m256d)__builtin_ia32_gatherq_pd256((__v4df)__a, (const __v4df *)__m, \
  878. (__v4di)__i, (__v4df)__mask, (s)); })
  879. #define _mm_mask_i32gather_ps(a, m, i, mask, s) __extension__ ({ \
  880. __m128 __a = (a); \
  881. float const *__m = (m); \
  882. __m128i __i = (i); \
  883. __m128 __mask = (mask); \
  884. (__m128)__builtin_ia32_gatherd_ps((__v4sf)__a, (const __v4sf *)__m, \
  885. (__v4si)__i, (__v4sf)__mask, (s)); })
  886. #define _mm256_mask_i32gather_ps(a, m, i, mask, s) __extension__ ({ \
  887. __m256 __a = (a); \
  888. float const *__m = (m); \
  889. __m256i __i = (i); \
  890. __m256 __mask = (mask); \
  891. (__m256)__builtin_ia32_gatherd_ps256((__v8sf)__a, (const __v8sf *)__m, \
  892. (__v8si)__i, (__v8sf)__mask, (s)); })
  893. #define _mm_mask_i64gather_ps(a, m, i, mask, s) __extension__ ({ \
  894. __m128 __a = (a); \
  895. float const *__m = (m); \
  896. __m128i __i = (i); \
  897. __m128 __mask = (mask); \
  898. (__m128)__builtin_ia32_gatherq_ps((__v4sf)__a, (const __v4sf *)__m, \
  899. (__v2di)__i, (__v4sf)__mask, (s)); })
  900. #define _mm256_mask_i64gather_ps(a, m, i, mask, s) __extension__ ({ \
  901. __m128 __a = (a); \
  902. float const *__m = (m); \
  903. __m256i __i = (i); \
  904. __m128 __mask = (mask); \
  905. (__m128)__builtin_ia32_gatherq_ps256((__v4sf)__a, (const __v4sf *)__m, \
  906. (__v4di)__i, (__v4sf)__mask, (s)); })
  907. #define _mm_mask_i32gather_epi32(a, m, i, mask, s) __extension__ ({ \
  908. __m128i __a = (a); \
  909. int const *__m = (m); \
  910. __m128i __i = (i); \
  911. __m128i __mask = (mask); \
  912. (__m128i)__builtin_ia32_gatherd_d((__v4si)__a, (const __v4si *)__m, \
  913. (__v4si)__i, (__v4si)__mask, (s)); })
  914. #define _mm256_mask_i32gather_epi32(a, m, i, mask, s) __extension__ ({ \
  915. __m256i __a = (a); \
  916. int const *__m = (m); \
  917. __m256i __i = (i); \
  918. __m256i __mask = (mask); \
  919. (__m256i)__builtin_ia32_gatherd_d256((__v8si)__a, (const __v8si *)__m, \
  920. (__v8si)__i, (__v8si)__mask, (s)); })
  921. #define _mm_mask_i64gather_epi32(a, m, i, mask, s) __extension__ ({ \
  922. __m128i __a = (a); \
  923. int const *__m = (m); \
  924. __m128i __i = (i); \
  925. __m128i __mask = (mask); \
  926. (__m128i)__builtin_ia32_gatherq_d((__v4si)__a, (const __v4si *)__m, \
  927. (__v2di)__i, (__v4si)__mask, (s)); })
  928. #define _mm256_mask_i64gather_epi32(a, m, i, mask, s) __extension__ ({ \
  929. __m128i __a = (a); \
  930. int const *__m = (m); \
  931. __m256i __i = (i); \
  932. __m128i __mask = (mask); \
  933. (__m128i)__builtin_ia32_gatherq_d256((__v4si)__a, (const __v4si *)__m, \
  934. (__v4di)__i, (__v4si)__mask, (s)); })
  935. #define _mm_mask_i32gather_epi64(a, m, i, mask, s) __extension__ ({ \
  936. __m128i __a = (a); \
  937. long long const *__m = (m); \
  938. __m128i __i = (i); \
  939. __m128i __mask = (mask); \
  940. (__m128i)__builtin_ia32_gatherd_q((__v2di)__a, (const __v2di *)__m, \
  941. (__v4si)__i, (__v2di)__mask, (s)); })
  942. #define _mm256_mask_i32gather_epi64(a, m, i, mask, s) __extension__ ({ \
  943. __m256i __a = (a); \
  944. long long const *__m = (m); \
  945. __m128i __i = (i); \
  946. __m256i __mask = (mask); \
  947. (__m256i)__builtin_ia32_gatherd_q256((__v4di)__a, (const __v4di *)__m, \
  948. (__v4si)__i, (__v4di)__mask, (s)); })
  949. #define _mm_mask_i64gather_epi64(a, m, i, mask, s) __extension__ ({ \
  950. __m128i __a = (a); \
  951. long long const *__m = (m); \
  952. __m128i __i = (i); \
  953. __m128i __mask = (mask); \
  954. (__m128i)__builtin_ia32_gatherq_q((__v2di)__a, (const __v2di *)__m, \
  955. (__v2di)__i, (__v2di)__mask, (s)); })
  956. #define _mm256_mask_i64gather_epi64(a, m, i, mask, s) __extension__ ({ \
  957. __m256i __a = (a); \
  958. long long const *__m = (m); \
  959. __m256i __i = (i); \
  960. __m256i __mask = (mask); \
  961. (__m256i)__builtin_ia32_gatherq_q256((__v4di)__a, (const __v4di *)__m, \
  962. (__v4di)__i, (__v4di)__mask, (s)); })
  963. #define _mm_i32gather_pd(m, i, s) __extension__ ({ \
  964. double const *__m = (m); \
  965. __m128i __i = (i); \
  966. (__m128d)__builtin_ia32_gatherd_pd((__v2df)_mm_setzero_pd(), \
  967. (const __v2df *)__m, (__v4si)__i, \
  968. (__v2df)_mm_set1_pd((double)(long long int)-1), (s)); })
  969. #define _mm256_i32gather_pd(m, i, s) __extension__ ({ \
  970. double const *__m = (m); \
  971. __m128i __i = (i); \
  972. (__m256d)__builtin_ia32_gatherd_pd256((__v4df)_mm256_setzero_pd(), \
  973. (const __v4df *)__m, (__v4si)__i, \
  974. (__v4df)_mm256_set1_pd((double)(long long int)-1), (s)); })
  975. #define _mm_i64gather_pd(m, i, s) __extension__ ({ \
  976. double const *__m = (m); \
  977. __m128i __i = (i); \
  978. (__m128d)__builtin_ia32_gatherq_pd((__v2df)_mm_setzero_pd(), \
  979. (const __v2df *)__m, (__v2di)__i, \
  980. (__v2df)_mm_set1_pd((double)(long long int)-1), (s)); })
  981. #define _mm256_i64gather_pd(m, i, s) __extension__ ({ \
  982. double const *__m = (m); \
  983. __m256i __i = (i); \
  984. (__m256d)__builtin_ia32_gatherq_pd256((__v4df)_mm256_setzero_pd(), \
  985. (const __v4df *)__m, (__v4di)__i, \
  986. (__v4df)_mm256_set1_pd((double)(long long int)-1), (s)); })
  987. #define _mm_i32gather_ps(m, i, s) __extension__ ({ \
  988. float const *__m = (m); \
  989. __m128i __i = (i); \
  990. (__m128)__builtin_ia32_gatherd_ps((__v4sf)_mm_setzero_ps(), \
  991. (const __v4sf *)__m, (__v4si)__i, \
  992. (__v4sf)_mm_set1_ps((float)(int)-1), (s)); })
  993. #define _mm256_i32gather_ps(m, i, s) __extension__ ({ \
  994. float const *__m = (m); \
  995. __m256i __i = (i); \
  996. (__m256)__builtin_ia32_gatherd_ps256((__v8sf)_mm256_setzero_ps(), \
  997. (const __v8sf *)__m, (__v8si)__i, \
  998. (__v8sf)_mm256_set1_ps((float)(int)-1), (s)); })
  999. #define _mm_i64gather_ps(m, i, s) __extension__ ({ \
  1000. float const *__m = (m); \
  1001. __m128i __i = (i); \
  1002. (__m128)__builtin_ia32_gatherq_ps((__v4sf)_mm_setzero_ps(), \
  1003. (const __v4sf *)__m, (__v2di)__i, \
  1004. (__v4sf)_mm_set1_ps((float)(int)-1), (s)); })
  1005. #define _mm256_i64gather_ps(m, i, s) __extension__ ({ \
  1006. float const *__m = (m); \
  1007. __m256i __i = (i); \
  1008. (__m128)__builtin_ia32_gatherq_ps256((__v4sf)_mm_setzero_ps(), \
  1009. (const __v4sf *)__m, (__v4di)__i, \
  1010. (__v4sf)_mm_set1_ps((float)(int)-1), (s)); })
  1011. #define _mm_i32gather_epi32(m, i, s) __extension__ ({ \
  1012. int const *__m = (m); \
  1013. __m128i __i = (i); \
  1014. (__m128i)__builtin_ia32_gatherd_d((__v4si)_mm_setzero_si128(), \
  1015. (const __v4si *)__m, (__v4si)__i, \
  1016. (__v4si)_mm_set1_epi32(-1), (s)); })
  1017. #define _mm256_i32gather_epi32(m, i, s) __extension__ ({ \
  1018. int const *__m = (m); \
  1019. __m256i __i = (i); \
  1020. (__m256i)__builtin_ia32_gatherd_d256((__v8si)_mm256_setzero_si256(), \
  1021. (const __v8si *)__m, (__v8si)__i, \
  1022. (__v8si)_mm256_set1_epi32(-1), (s)); })
  1023. #define _mm_i64gather_epi32(m, i, s) __extension__ ({ \
  1024. int const *__m = (m); \
  1025. __m128i __i = (i); \
  1026. (__m128i)__builtin_ia32_gatherq_d((__v4si)_mm_setzero_si128(), \
  1027. (const __v4si *)__m, (__v2di)__i, \
  1028. (__v4si)_mm_set1_epi32(-1), (s)); })
  1029. #define _mm256_i64gather_epi32(m, i, s) __extension__ ({ \
  1030. int const *__m = (m); \
  1031. __m256i __i = (i); \
  1032. (__m128i)__builtin_ia32_gatherq_d256((__v4si)_mm_setzero_si128(), \
  1033. (const __v4si *)__m, (__v4di)__i, \
  1034. (__v4si)_mm_set1_epi32(-1), (s)); })
  1035. #define _mm_i32gather_epi64(m, i, s) __extension__ ({ \
  1036. long long const *__m = (m); \
  1037. __m128i __i = (i); \
  1038. (__m128i)__builtin_ia32_gatherd_q((__v2di)_mm_setzero_si128(), \
  1039. (const __v2di *)__m, (__v4si)__i, \
  1040. (__v2di)_mm_set1_epi64x(-1), (s)); })
  1041. #define _mm256_i32gather_epi64(m, i, s) __extension__ ({ \
  1042. long long const *__m = (m); \
  1043. __m128i __i = (i); \
  1044. (__m256i)__builtin_ia32_gatherd_q256((__v4di)_mm256_setzero_si256(), \
  1045. (const __v4di *)__m, (__v4si)__i, \
  1046. (__v4di)_mm256_set1_epi64x(-1), (s)); })
  1047. #define _mm_i64gather_epi64(m, i, s) __extension__ ({ \
  1048. long long const *__m = (m); \
  1049. __m128i __i = (i); \
  1050. (__m128i)__builtin_ia32_gatherq_q((__v2di)_mm_setzero_si128(), \
  1051. (const __v2di *)__m, (__v2di)__i, \
  1052. (__v2di)_mm_set1_epi64x(-1), (s)); })
  1053. #define _mm256_i64gather_epi64(m, i, s) __extension__ ({ \
  1054. long long const *__m = (m); \
  1055. __m256i __i = (i); \
  1056. (__m256i)__builtin_ia32_gatherq_q256((__v4di)_mm256_setzero_si256(), \
  1057. (const __v4di *)__m, (__v4di)__i, \
  1058. (__v4di)_mm256_set1_epi64x(-1), (s)); })
  1059. #undef __DEFAULT_FN_ATTRS
  1060. #endif /* __AVX2INTRIN_H */