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gemm.c 13 kB

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  1. /*********************************************************************/
  2. /* Copyright 2009, 2010 The University of Texas at Austin. */
  3. /* All rights reserved. */
  4. /* */
  5. /* Redistribution and use in source and binary forms, with or */
  6. /* without modification, are permitted provided that the following */
  7. /* conditions are met: */
  8. /* */
  9. /* 1. Redistributions of source code must retain the above */
  10. /* copyright notice, this list of conditions and the following */
  11. /* disclaimer. */
  12. /* */
  13. /* 2. Redistributions in binary form must reproduce the above */
  14. /* copyright notice, this list of conditions and the following */
  15. /* disclaimer in the documentation and/or other materials */
  16. /* provided with the distribution. */
  17. /* */
  18. /* THIS SOFTWARE IS PROVIDED BY THE UNIVERSITY OF TEXAS AT */
  19. /* AUSTIN ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, */
  20. /* INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF */
  21. /* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE */
  22. /* DISCLAIMED. IN NO EVENT SHALL THE UNIVERSITY OF TEXAS AT */
  23. /* AUSTIN OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, */
  24. /* INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES */
  25. /* (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE */
  26. /* GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR */
  27. /* BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF */
  28. /* LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT */
  29. /* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT */
  30. /* OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE */
  31. /* POSSIBILITY OF SUCH DAMAGE. */
  32. /* */
  33. /* The views and conclusions contained in the software and */
  34. /* documentation are those of the authors and should not be */
  35. /* interpreted as representing official policies, either expressed */
  36. /* or implied, of The University of Texas at Austin. */
  37. /*********************************************************************/
  38. #include <stdio.h>
  39. #include <stdlib.h>
  40. #include "common.h"
  41. #ifdef FUNCTION_PROFILE
  42. #include "functable.h"
  43. #endif
  44. #ifndef COMPLEX
  45. #define SMP_THRESHOLD_MIN 65536.0
  46. #ifdef XDOUBLE
  47. #define ERROR_NAME "QGEMM "
  48. #elif defined(DOUBLE)
  49. #define ERROR_NAME "DGEMM "
  50. #elif defined(BFLOAT16)
  51. #define ERROR_NAME "SBGEMM "
  52. #else
  53. #define ERROR_NAME "SGEMM "
  54. #endif
  55. #else
  56. #define SMP_THRESHOLD_MIN 8192.0
  57. #ifndef GEMM3M
  58. #ifdef XDOUBLE
  59. #define ERROR_NAME "XGEMM "
  60. #elif defined(DOUBLE)
  61. #define ERROR_NAME "ZGEMM "
  62. #else
  63. #define ERROR_NAME "CGEMM "
  64. #endif
  65. #else
  66. #ifdef XDOUBLE
  67. #define ERROR_NAME "XGEMM3M "
  68. #elif defined(DOUBLE)
  69. #define ERROR_NAME "ZGEMM3M "
  70. #else
  71. #define ERROR_NAME "CGEMM3M "
  72. #endif
  73. #endif
  74. #endif
  75. #ifndef GEMM_MULTITHREAD_THRESHOLD
  76. #define GEMM_MULTITHREAD_THRESHOLD 4
  77. #endif
  78. static int (*gemm[])(blas_arg_t *, BLASLONG *, BLASLONG *, IFLOAT *, IFLOAT *, BLASLONG) = {
  79. #ifndef GEMM3M
  80. GEMM_NN, GEMM_TN, GEMM_RN, GEMM_CN,
  81. GEMM_NT, GEMM_TT, GEMM_RT, GEMM_CT,
  82. GEMM_NR, GEMM_TR, GEMM_RR, GEMM_CR,
  83. GEMM_NC, GEMM_TC, GEMM_RC, GEMM_CC,
  84. #if defined(SMP) && !defined(USE_SIMPLE_THREADED_LEVEL3)
  85. GEMM_THREAD_NN, GEMM_THREAD_TN, GEMM_THREAD_RN, GEMM_THREAD_CN,
  86. GEMM_THREAD_NT, GEMM_THREAD_TT, GEMM_THREAD_RT, GEMM_THREAD_CT,
  87. GEMM_THREAD_NR, GEMM_THREAD_TR, GEMM_THREAD_RR, GEMM_THREAD_CR,
  88. GEMM_THREAD_NC, GEMM_THREAD_TC, GEMM_THREAD_RC, GEMM_THREAD_CC,
  89. #endif
  90. #else
  91. GEMM3M_NN, GEMM3M_TN, GEMM3M_RN, GEMM3M_CN,
  92. GEMM3M_NT, GEMM3M_TT, GEMM3M_RT, GEMM3M_CT,
  93. GEMM3M_NR, GEMM3M_TR, GEMM3M_RR, GEMM3M_CR,
  94. GEMM3M_NC, GEMM3M_TC, GEMM3M_RC, GEMM3M_CC,
  95. #if defined(SMP) && !defined(USE_SIMPLE_THREADED_LEVEL3)
  96. GEMM3M_THREAD_NN, GEMM3M_THREAD_TN, GEMM3M_THREAD_RN, GEMM3M_THREAD_CN,
  97. GEMM3M_THREAD_NT, GEMM3M_THREAD_TT, GEMM3M_THREAD_RT, GEMM3M_THREAD_CT,
  98. GEMM3M_THREAD_NR, GEMM3M_THREAD_TR, GEMM3M_THREAD_RR, GEMM3M_THREAD_CR,
  99. GEMM3M_THREAD_NC, GEMM3M_THREAD_TC, GEMM3M_THREAD_RC, GEMM3M_THREAD_CC,
  100. #endif
  101. #endif
  102. };
  103. #ifndef CBLAS
  104. void NAME(char *TRANSA, char *TRANSB,
  105. blasint *M, blasint *N, blasint *K,
  106. FLOAT *alpha,
  107. IFLOAT *a, blasint *ldA,
  108. IFLOAT *b, blasint *ldB,
  109. FLOAT *beta,
  110. FLOAT *c, blasint *ldC){
  111. blas_arg_t args;
  112. int transa, transb, nrowa, nrowb;
  113. blasint info;
  114. char transA, transB;
  115. IFLOAT *buffer;
  116. IFLOAT *sa, *sb;
  117. #ifdef SMP
  118. double MNK;
  119. #if defined(USE_SIMPLE_THREADED_LEVEL3) || !defined(NO_AFFINITY)
  120. #ifndef COMPLEX
  121. #ifdef XDOUBLE
  122. int mode = BLAS_XDOUBLE | BLAS_REAL;
  123. #elif defined(DOUBLE)
  124. int mode = BLAS_DOUBLE | BLAS_REAL;
  125. #else
  126. int mode = BLAS_SINGLE | BLAS_REAL;
  127. #endif
  128. #else
  129. #ifdef XDOUBLE
  130. int mode = BLAS_XDOUBLE | BLAS_COMPLEX;
  131. #elif defined(DOUBLE)
  132. int mode = BLAS_DOUBLE | BLAS_COMPLEX;
  133. #else
  134. int mode = BLAS_SINGLE | BLAS_COMPLEX;
  135. #endif
  136. #endif
  137. #endif
  138. #endif
  139. #if defined(SMP) && !defined(NO_AFFINITY) && !defined(USE_SIMPLE_THREADED_LEVEL3)
  140. int nodes;
  141. #endif
  142. PRINT_DEBUG_NAME;
  143. args.m = *M;
  144. args.n = *N;
  145. args.k = *K;
  146. args.a = (void *)a;
  147. args.b = (void *)b;
  148. args.c = (void *)c;
  149. args.lda = *ldA;
  150. args.ldb = *ldB;
  151. args.ldc = *ldC;
  152. args.alpha = (void *)alpha;
  153. args.beta = (void *)beta;
  154. transA = *TRANSA;
  155. transB = *TRANSB;
  156. TOUPPER(transA);
  157. TOUPPER(transB);
  158. transa = -1;
  159. transb = -1;
  160. if (transA == 'N') transa = 0;
  161. if (transA == 'T') transa = 1;
  162. #ifndef COMPLEX
  163. if (transA == 'R') transa = 0;
  164. if (transA == 'C') transa = 1;
  165. #else
  166. if (transA == 'R') transa = 2;
  167. if (transA == 'C') transa = 3;
  168. #endif
  169. if (transB == 'N') transb = 0;
  170. if (transB == 'T') transb = 1;
  171. #ifndef COMPLEX
  172. if (transB == 'R') transb = 0;
  173. if (transB == 'C') transb = 1;
  174. #else
  175. if (transB == 'R') transb = 2;
  176. if (transB == 'C') transb = 3;
  177. #endif
  178. nrowa = args.m;
  179. if (transa & 1) nrowa = args.k;
  180. nrowb = args.k;
  181. if (transb & 1) nrowb = args.n;
  182. info = 0;
  183. if (args.ldc < args.m) info = 13;
  184. if (args.ldb < nrowb) info = 10;
  185. if (args.lda < nrowa) info = 8;
  186. if (args.k < 0) info = 5;
  187. if (args.n < 0) info = 4;
  188. if (args.m < 0) info = 3;
  189. if (transb < 0) info = 2;
  190. if (transa < 0) info = 1;
  191. if (info){
  192. BLASFUNC(xerbla)(ERROR_NAME, &info, sizeof(ERROR_NAME));
  193. return;
  194. }
  195. #else
  196. void CNAME(enum CBLAS_ORDER order, enum CBLAS_TRANSPOSE TransA, enum CBLAS_TRANSPOSE TransB,
  197. blasint m, blasint n, blasint k,
  198. #ifndef COMPLEX
  199. FLOAT alpha,
  200. FLOAT *a, blasint lda,
  201. FLOAT *b, blasint ldb,
  202. FLOAT beta,
  203. FLOAT *c, blasint ldc) {
  204. #else
  205. void *valpha,
  206. void *va, blasint lda,
  207. void *vb, blasint ldb,
  208. void *vbeta,
  209. void *vc, blasint ldc) {
  210. FLOAT *alpha = (FLOAT*) valpha;
  211. FLOAT *beta = (FLOAT*) vbeta;
  212. FLOAT *a = (FLOAT*) va;
  213. FLOAT *b = (FLOAT*) vb;
  214. FLOAT *c = (FLOAT*) vc;
  215. #endif
  216. blas_arg_t args;
  217. int transa, transb;
  218. blasint nrowa, nrowb, info;
  219. XFLOAT *buffer;
  220. XFLOAT *sa, *sb;
  221. #ifdef SMP
  222. double MNK;
  223. #if defined(USE_SIMPLE_THREADED_LEVEL3) || !defined(NO_AFFINITY)
  224. #ifndef COMPLEX
  225. #ifdef XDOUBLE
  226. int mode = BLAS_XDOUBLE | BLAS_REAL;
  227. #elif defined(DOUBLE)
  228. int mode = BLAS_DOUBLE | BLAS_REAL;
  229. #else
  230. int mode = BLAS_SINGLE | BLAS_REAL;
  231. #endif
  232. #else
  233. #ifdef XDOUBLE
  234. int mode = BLAS_XDOUBLE | BLAS_COMPLEX;
  235. #elif defined(DOUBLE)
  236. int mode = BLAS_DOUBLE | BLAS_COMPLEX;
  237. #else
  238. int mode = BLAS_SINGLE | BLAS_COMPLEX;
  239. #endif
  240. #endif
  241. #endif
  242. #endif
  243. #if defined(SMP) && !defined(NO_AFFINITY) && !defined(USE_SIMPLE_THREADED_LEVEL3)
  244. int nodes;
  245. #endif
  246. PRINT_DEBUG_CNAME;
  247. #if !defined(COMPLEX) && !defined(DOUBLE) && defined(USE_SGEMM_KERNEL_DIRECT)
  248. #ifdef DYNAMIC_ARCH
  249. if (support_avx512() )
  250. #endif
  251. if (beta == 0 && alpha == 1.0 && order == CblasRowMajor && TransA == CblasNoTrans && TransB == CblasNoTrans && SGEMM_DIRECT_PERFORMANT(m,n,k)) {
  252. SGEMM_DIRECT(m, n, k, a, lda, b, ldb, c, ldc);
  253. return;
  254. }
  255. #endif
  256. #ifndef COMPLEX
  257. args.alpha = (void *)&alpha;
  258. args.beta = (void *)&beta;
  259. #else
  260. args.alpha = (void *)alpha;
  261. args.beta = (void *)beta;
  262. #endif
  263. transa = -1;
  264. transb = -1;
  265. info = 0;
  266. if (order == CblasColMajor) {
  267. args.m = m;
  268. args.n = n;
  269. args.k = k;
  270. args.a = (void *)a;
  271. args.b = (void *)b;
  272. args.c = (void *)c;
  273. args.lda = lda;
  274. args.ldb = ldb;
  275. args.ldc = ldc;
  276. if (TransA == CblasNoTrans) transa = 0;
  277. if (TransA == CblasTrans) transa = 1;
  278. #ifndef COMPLEX
  279. if (TransA == CblasConjNoTrans) transa = 0;
  280. if (TransA == CblasConjTrans) transa = 1;
  281. #else
  282. if (TransA == CblasConjNoTrans) transa = 2;
  283. if (TransA == CblasConjTrans) transa = 3;
  284. #endif
  285. if (TransB == CblasNoTrans) transb = 0;
  286. if (TransB == CblasTrans) transb = 1;
  287. #ifndef COMPLEX
  288. if (TransB == CblasConjNoTrans) transb = 0;
  289. if (TransB == CblasConjTrans) transb = 1;
  290. #else
  291. if (TransB == CblasConjNoTrans) transb = 2;
  292. if (TransB == CblasConjTrans) transb = 3;
  293. #endif
  294. nrowa = args.m;
  295. if (transa & 1) nrowa = args.k;
  296. nrowb = args.k;
  297. if (transb & 1) nrowb = args.n;
  298. info = -1;
  299. if (args.ldc < args.m) info = 13;
  300. if (args.ldb < nrowb) info = 10;
  301. if (args.lda < nrowa) info = 8;
  302. if (args.k < 0) info = 5;
  303. if (args.n < 0) info = 4;
  304. if (args.m < 0) info = 3;
  305. if (transb < 0) info = 2;
  306. if (transa < 0) info = 1;
  307. }
  308. if (order == CblasRowMajor) {
  309. args.m = n;
  310. args.n = m;
  311. args.k = k;
  312. args.a = (void *)b;
  313. args.b = (void *)a;
  314. args.c = (void *)c;
  315. args.lda = ldb;
  316. args.ldb = lda;
  317. args.ldc = ldc;
  318. if (TransB == CblasNoTrans) transa = 0;
  319. if (TransB == CblasTrans) transa = 1;
  320. #ifndef COMPLEX
  321. if (TransB == CblasConjNoTrans) transa = 0;
  322. if (TransB == CblasConjTrans) transa = 1;
  323. #else
  324. if (TransB == CblasConjNoTrans) transa = 2;
  325. if (TransB == CblasConjTrans) transa = 3;
  326. #endif
  327. if (TransA == CblasNoTrans) transb = 0;
  328. if (TransA == CblasTrans) transb = 1;
  329. #ifndef COMPLEX
  330. if (TransA == CblasConjNoTrans) transb = 0;
  331. if (TransA == CblasConjTrans) transb = 1;
  332. #else
  333. if (TransA == CblasConjNoTrans) transb = 2;
  334. if (TransA == CblasConjTrans) transb = 3;
  335. #endif
  336. nrowa = args.m;
  337. if (transa & 1) nrowa = args.k;
  338. nrowb = args.k;
  339. if (transb & 1) nrowb = args.n;
  340. info = -1;
  341. if (args.ldc < args.m) info = 13;
  342. if (args.ldb < nrowb) info = 10;
  343. if (args.lda < nrowa) info = 8;
  344. if (args.k < 0) info = 5;
  345. if (args.n < 0) info = 4;
  346. if (args.m < 0) info = 3;
  347. if (transb < 0) info = 2;
  348. if (transa < 0) info = 1;
  349. }
  350. if (info >= 0) {
  351. BLASFUNC(xerbla)(ERROR_NAME, &info, sizeof(ERROR_NAME));
  352. return;
  353. }
  354. #endif
  355. if ((args.m == 0) || (args.n == 0)) return;
  356. #if 0
  357. fprintf(stderr, "m = %4d n = %d k = %d lda = %4d ldb = %4d ldc = %4d\n",
  358. args.m, args.n, args.k, args.lda, args.ldb, args.ldc);
  359. #endif
  360. IDEBUG_START;
  361. FUNCTION_PROFILE_START();
  362. buffer = (XFLOAT *)blas_memory_alloc(0);
  363. sa = (XFLOAT *)((BLASLONG)buffer +GEMM_OFFSET_A);
  364. sb = (XFLOAT *)(((BLASLONG)sa + ((GEMM_P * GEMM_Q * COMPSIZE * SIZE + GEMM_ALIGN) & ~GEMM_ALIGN)) + GEMM_OFFSET_B);
  365. #ifdef SMP
  366. #if defined(USE_SIMPLE_THREADED_LEVEL3) || !defined(NO_AFFINITY)
  367. mode |= (transa << BLAS_TRANSA_SHIFT);
  368. mode |= (transb << BLAS_TRANSB_SHIFT);
  369. #endif
  370. MNK = (double) args.m * (double) args.n * (double) args.k;
  371. if ( MNK <= (SMP_THRESHOLD_MIN * (double) GEMM_MULTITHREAD_THRESHOLD) )
  372. args.nthreads = 1;
  373. else
  374. args.nthreads = num_cpu_avail(3);
  375. args.common = NULL;
  376. if (args.nthreads == 1) {
  377. #endif
  378. (gemm[(transb << 2) | transa])(&args, NULL, NULL, sa, sb, 0);
  379. #ifdef SMP
  380. } else {
  381. #ifndef USE_SIMPLE_THREADED_LEVEL3
  382. #ifndef NO_AFFINITY
  383. nodes = get_num_nodes();
  384. if ((nodes > 1) && get_node_equal()) {
  385. args.nthreads /= nodes;
  386. gemm_thread_mn(mode, &args, NULL, NULL, gemm[16 | (transb << 2) | transa], sa, sb, nodes);
  387. } else {
  388. #endif
  389. (gemm[16 | (transb << 2) | transa])(&args, NULL, NULL, sa, sb, 0);
  390. #else
  391. GEMM_THREAD(mode, &args, NULL, NULL, gemm[(transb << 2) | transa], sa, sb, args.nthreads);
  392. #endif
  393. #ifndef USE_SIMPLE_THREADED_LEVEL3
  394. #ifndef NO_AFFINITY
  395. }
  396. #endif
  397. #endif
  398. #endif
  399. #ifdef SMP
  400. }
  401. #endif
  402. blas_memory_free(buffer);
  403. FUNCTION_PROFILE_END(COMPSIZE * COMPSIZE, args.m * args.k + args.k * args.n + args.m * args.n, 2 * args.m * args.n * args.k);
  404. IDEBUG_END;
  405. return;
  406. }