blas_interface.c 12 KB

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  1. /*
  2. * StarPU
  3. * Copyright (C) INRIA 2008-2009 (see AUTHORS file)
  4. *
  5. * This program is free software; you can redistribute it and/or modify
  6. * it under the terms of the GNU Lesser General Public License as published by
  7. * the Free Software Foundation; either version 2.1 of the License, or (at
  8. * your option) any later version.
  9. *
  10. * This program is distributed in the hope that it will be useful, but
  11. * WITHOUT ANY WARRANTY; without even the implied warranty of
  12. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
  13. *
  14. * See the GNU Lesser General Public License in COPYING.LGPL for more details.
  15. */
  16. #include <common/config.h>
  17. #include <datawizard/data_parameters.h>
  18. #include <datawizard/coherency.h>
  19. #include <datawizard/copy-driver.h>
  20. #include <datawizard/hierarchy.h>
  21. #include <common/hash.h>
  22. #include <starpu.h>
  23. #ifdef USE_CUDA
  24. #include <cuda.h>
  25. #include <cuda_runtime.h>
  26. #endif
  27. static int dummy_copy_ram_to_ram(struct starpu_data_state_t *state, uint32_t src_node, uint32_t dst_node);
  28. #ifdef USE_CUDA
  29. static int copy_ram_to_cublas(struct starpu_data_state_t *state, uint32_t src_node, uint32_t dst_node);
  30. static int copy_cublas_to_ram(struct starpu_data_state_t *state, uint32_t src_node, uint32_t dst_node);
  31. static int copy_ram_to_cublas_async(struct starpu_data_state_t *state, uint32_t src_node, uint32_t dst_node, cudaStream_t *stream);
  32. static int copy_cublas_to_ram_async(struct starpu_data_state_t *state, uint32_t src_node, uint32_t dst_node, cudaStream_t *stream);
  33. #endif
  34. static const struct copy_data_methods_s blas_copy_data_methods_s = {
  35. .ram_to_ram = dummy_copy_ram_to_ram,
  36. .ram_to_spu = NULL,
  37. #ifdef USE_CUDA
  38. .ram_to_cuda = copy_ram_to_cublas,
  39. .cuda_to_ram = copy_cublas_to_ram,
  40. .ram_to_cuda_async = copy_ram_to_cublas_async,
  41. .cuda_to_ram_async = copy_cublas_to_ram_async,
  42. #endif
  43. .cuda_to_cuda = NULL,
  44. .cuda_to_spu = NULL,
  45. .spu_to_ram = NULL,
  46. .spu_to_cuda = NULL,
  47. .spu_to_spu = NULL
  48. };
  49. static size_t allocate_blas_buffer_on_node(data_state *state, uint32_t dst_node);
  50. static void liberate_blas_buffer_on_node(starpu_data_interface_t *interface, uint32_t node);
  51. static size_t blas_interface_get_size(struct starpu_data_state_t *state);
  52. static uint32_t footprint_blas_interface_crc32(data_state *state, uint32_t hstate);
  53. static void display_blas_interface(data_state *state, FILE *f);
  54. #ifdef USE_GORDON
  55. static int convert_blas_to_gordon(starpu_data_interface_t *interface, uint64_t *ptr, gordon_strideSize_t *ss);
  56. #endif
  57. struct data_interface_ops_t interface_blas_ops = {
  58. .allocate_data_on_node = allocate_blas_buffer_on_node,
  59. .liberate_data_on_node = liberate_blas_buffer_on_node,
  60. .copy_methods = &blas_copy_data_methods_s,
  61. .get_size = blas_interface_get_size,
  62. .footprint = footprint_blas_interface_crc32,
  63. #ifdef USE_GORDON
  64. .convert_to_gordon = convert_blas_to_gordon,
  65. #endif
  66. .interfaceid = STARPU_BLAS_INTERFACE_ID,
  67. .display = display_blas_interface
  68. };
  69. #ifdef USE_GORDON
  70. static int convert_blas_to_gordon(starpu_data_interface_t *interface, uint64_t *ptr, gordon_strideSize_t *ss)
  71. {
  72. size_t elemsize = (*interface).blas.elemsize;
  73. uint32_t nx = (*interface).blas.nx;
  74. uint32_t ny = (*interface).blas.ny;
  75. uint32_t ld = (*interface).blas.ld;
  76. *ptr = (*interface).blas.ptr;
  77. /* The gordon_stride_init function may use a contiguous buffer
  78. * in case nx = ld (in that case, (*ss).size = elemsize*nx*ny */
  79. *ss = gordon_stride_init(ny, nx*elemsize, ld*elemsize);
  80. return 0;
  81. }
  82. #endif
  83. /* declare a new data with the BLAS interface */
  84. void starpu_register_blas_data(struct starpu_data_state_t **handle, uint32_t home_node,
  85. uintptr_t ptr, uint32_t ld, uint32_t nx,
  86. uint32_t ny, size_t elemsize)
  87. {
  88. struct starpu_data_state_t *state =
  89. starpu_data_state_create(sizeof(starpu_blas_interface_t));
  90. STARPU_ASSERT(handle);
  91. *handle = state;
  92. unsigned node;
  93. for (node = 0; node < MAXNODES; node++)
  94. {
  95. starpu_blas_interface_t *local_interface =
  96. starpu_data_get_interface_on_node(state, node);
  97. if (node == home_node) {
  98. local_interface->ptr = ptr;
  99. local_interface->ld = ld;
  100. }
  101. else {
  102. local_interface->ptr = 0;
  103. local_interface->ld = 0;
  104. }
  105. local_interface->nx = nx;
  106. local_interface->ny = ny;
  107. local_interface->elemsize = elemsize;
  108. }
  109. state->ops = &interface_blas_ops;
  110. register_new_data(state, home_node, 0);
  111. }
  112. static inline uint32_t footprint_blas_interface_generic(uint32_t (*hash_func)(uint32_t input, uint32_t hstate), data_state *state, uint32_t hstate)
  113. {
  114. uint32_t hash;
  115. hash = hstate;
  116. hash = hash_func(starpu_get_blas_nx(state), hash);
  117. hash = hash_func(starpu_get_blas_ny(state), hash);
  118. return hash;
  119. }
  120. static uint32_t footprint_blas_interface_crc32(data_state *state, uint32_t hstate)
  121. {
  122. return footprint_blas_interface_generic(crc32_be, state, hstate);
  123. }
  124. struct dumped_blas_interface_s {
  125. uintptr_t ptr;
  126. uint32_t nx;
  127. uint32_t ny;
  128. uint32_t ld;
  129. } __attribute__ ((packed));
  130. static void display_blas_interface(data_state *state, FILE *f)
  131. {
  132. starpu_blas_interface_t *interface =
  133. starpu_data_get_interface_on_node(state, 0);
  134. fprintf(f, "%u\t%u\t", interface->nx, interface->ny);
  135. }
  136. static size_t blas_interface_get_size(struct starpu_data_state_t *state)
  137. {
  138. starpu_blas_interface_t *interface =
  139. starpu_data_get_interface_on_node(state, 0);
  140. size_t size;
  141. size = (size_t)interface->nx*interface->ny*interface->elemsize;
  142. return size;
  143. }
  144. /* offer an access to the data parameters */
  145. uint32_t starpu_get_blas_nx(data_state *state)
  146. {
  147. starpu_blas_interface_t *interface =
  148. starpu_data_get_interface_on_node(state, 0);
  149. return interface->nx;
  150. }
  151. uint32_t starpu_get_blas_ny(data_state *state)
  152. {
  153. starpu_blas_interface_t *interface =
  154. starpu_data_get_interface_on_node(state, 0);
  155. return interface->ny;
  156. }
  157. uint32_t starpu_get_blas_local_ld(data_state *state)
  158. {
  159. unsigned node;
  160. node = get_local_memory_node();
  161. STARPU_ASSERT(state->per_node[node].allocated);
  162. starpu_blas_interface_t *interface =
  163. starpu_data_get_interface_on_node(state, node);
  164. return interface->ld;
  165. }
  166. uintptr_t starpu_get_blas_local_ptr(data_state *state)
  167. {
  168. unsigned node;
  169. node = get_local_memory_node();
  170. STARPU_ASSERT(state->per_node[node].allocated);
  171. starpu_blas_interface_t *interface =
  172. starpu_data_get_interface_on_node(state, node);
  173. return interface->ptr;
  174. }
  175. size_t starpu_get_blas_elemsize(data_state *state)
  176. {
  177. starpu_blas_interface_t *interface =
  178. starpu_data_get_interface_on_node(state, 0);
  179. return interface->elemsize;
  180. }
  181. /* memory allocation/deallocation primitives for the BLAS interface */
  182. /* returns the size of the allocated area */
  183. static size_t allocate_blas_buffer_on_node(data_state *state, uint32_t dst_node)
  184. {
  185. uintptr_t addr = 0;
  186. unsigned fail = 0;
  187. size_t allocated_memory;
  188. #ifdef USE_CUDA
  189. cudaError_t status;
  190. size_t pitch;
  191. #endif
  192. starpu_blas_interface_t *interface =
  193. starpu_data_get_interface_on_node(state, dst_node);
  194. uint32_t nx = interface->nx;
  195. uint32_t ny = interface->ny;
  196. uint32_t ld = nx; // by default
  197. size_t elemsize = interface->elemsize;
  198. node_kind kind = get_node_kind(dst_node);
  199. switch(kind) {
  200. case RAM:
  201. addr = (uintptr_t)malloc((size_t)nx*ny*elemsize);
  202. if (!addr)
  203. fail = 1;
  204. break;
  205. #ifdef USE_CUDA
  206. case CUDA_RAM:
  207. status = cudaMallocPitch((void **)&addr, &pitch, (size_t)nx*elemsize, (size_t)ny);
  208. if (!addr || status != cudaSuccess)
  209. {
  210. if (STARPU_UNLIKELY(status != cudaErrorMemoryAllocation))
  211. CUDA_REPORT_ERROR(status);
  212. fail = 1;
  213. }
  214. ld = (uint32_t)(pitch/elemsize);
  215. break;
  216. #endif
  217. default:
  218. assert(0);
  219. }
  220. if (!fail) {
  221. /* allocation succeeded */
  222. allocated_memory = (size_t)nx*ny*elemsize;
  223. /* update the data properly in consequence */
  224. interface->ptr = addr;
  225. interface->ld = ld;
  226. } else {
  227. /* allocation failed */
  228. allocated_memory = 0;
  229. }
  230. return allocated_memory;
  231. }
  232. static void liberate_blas_buffer_on_node(starpu_data_interface_t *interface, uint32_t node)
  233. {
  234. #ifdef USE_CUDA
  235. cudaError_t status;
  236. #endif
  237. node_kind kind = get_node_kind(node);
  238. switch(kind) {
  239. case RAM:
  240. free((void*)interface->blas.ptr);
  241. break;
  242. #ifdef USE_CUDA
  243. case CUDA_RAM:
  244. status = cudaFree((void*)interface->blas.ptr);
  245. if (STARPU_UNLIKELY(status))
  246. CUDA_REPORT_ERROR(status);
  247. break;
  248. #endif
  249. default:
  250. assert(0);
  251. }
  252. }
  253. #ifdef USE_CUDA
  254. static int copy_cublas_to_ram(data_state *state, uint32_t src_node, uint32_t dst_node)
  255. {
  256. starpu_blas_interface_t *src_blas;
  257. starpu_blas_interface_t *dst_blas;
  258. src_blas = starpu_data_get_interface_on_node(state, src_node);
  259. dst_blas = starpu_data_get_interface_on_node(state, dst_node);
  260. size_t elemsize = src_blas->elemsize;
  261. cudaError_t cures;
  262. cures = cudaMemcpy2D((char *)dst_blas->ptr, dst_blas->ld*elemsize,
  263. (char *)src_blas->ptr, src_blas->ld*elemsize,
  264. src_blas->nx*elemsize, src_blas->ny, cudaMemcpyDeviceToHost);
  265. if (STARPU_UNLIKELY(cures))
  266. CUDA_REPORT_ERROR(cures);
  267. TRACE_DATA_COPY(src_node, dst_node, (size_t)src_blas->nx*src_blas->ny*src_blas->elemsize);
  268. return 0;
  269. }
  270. static int copy_ram_to_cublas(data_state *state, uint32_t src_node, uint32_t dst_node)
  271. {
  272. starpu_blas_interface_t *src_blas;
  273. starpu_blas_interface_t *dst_blas;
  274. src_blas = starpu_data_get_interface_on_node(state, src_node);
  275. dst_blas = starpu_data_get_interface_on_node(state, dst_node);
  276. size_t elemsize = src_blas->elemsize;
  277. cudaError_t cures;
  278. cures = cudaMemcpy2D((char *)dst_blas->ptr, dst_blas->ld*elemsize,
  279. (char *)src_blas->ptr, src_blas->ld*elemsize,
  280. src_blas->nx*elemsize, src_blas->ny, cudaMemcpyHostToDevice);
  281. if (STARPU_UNLIKELY(cures))
  282. CUDA_REPORT_ERROR(cures);
  283. cures = cudaThreadSynchronize();
  284. if (STARPU_UNLIKELY(cures))
  285. CUDA_REPORT_ERROR(cures);
  286. TRACE_DATA_COPY(src_node, dst_node, (size_t)src_blas->nx*src_blas->ny*src_blas->elemsize);
  287. return 0;
  288. }
  289. static int copy_cublas_to_ram_async(data_state *state, uint32_t src_node, uint32_t dst_node, cudaStream_t *stream)
  290. {
  291. starpu_blas_interface_t *src_blas;
  292. starpu_blas_interface_t *dst_blas;
  293. src_blas = starpu_data_get_interface_on_node(state, src_node);
  294. dst_blas = starpu_data_get_interface_on_node(state, dst_node);
  295. size_t elemsize = src_blas->elemsize;
  296. cudaError_t cures;
  297. cures = cudaMemcpy2DAsync((char *)dst_blas->ptr, dst_blas->ld*elemsize,
  298. (char *)src_blas->ptr, (size_t)src_blas->ld*elemsize,
  299. (size_t)src_blas->nx*elemsize, src_blas->ny,
  300. cudaMemcpyDeviceToHost, *stream);
  301. if (cures)
  302. {
  303. cures = cudaMemcpy2D((char *)dst_blas->ptr, dst_blas->ld*elemsize,
  304. (char *)src_blas->ptr, (size_t)src_blas->ld*elemsize,
  305. (size_t)src_blas->nx*elemsize, (size_t)src_blas->ny,
  306. cudaMemcpyDeviceToHost);
  307. if (STARPU_UNLIKELY(cures))
  308. CUDA_REPORT_ERROR(cures);
  309. cures = cudaThreadSynchronize();
  310. if (STARPU_UNLIKELY(cures))
  311. CUDA_REPORT_ERROR(cures);
  312. return 0;
  313. }
  314. TRACE_DATA_COPY(src_node, dst_node, (size_t)src_blas->nx*src_blas->ny*src_blas->elemsize);
  315. return EAGAIN;
  316. }
  317. static int copy_ram_to_cublas_async(struct starpu_data_state_t *state, uint32_t src_node, uint32_t dst_node, cudaStream_t *stream)
  318. {
  319. starpu_blas_interface_t *src_blas;
  320. starpu_blas_interface_t *dst_blas;
  321. src_blas = starpu_data_get_interface_on_node(state, src_node);
  322. dst_blas = starpu_data_get_interface_on_node(state, dst_node);
  323. size_t elemsize = src_blas->elemsize;
  324. cudaError_t cures;
  325. cures = cudaMemcpy2DAsync((char *)dst_blas->ptr, dst_blas->ld*elemsize,
  326. (char *)src_blas->ptr, src_blas->ld*elemsize,
  327. src_blas->nx*elemsize, src_blas->ny,
  328. cudaMemcpyHostToDevice, *stream);
  329. if (cures)
  330. {
  331. cures = cudaMemcpy2D((char *)dst_blas->ptr, dst_blas->ld*elemsize,
  332. (char *)src_blas->ptr, src_blas->ld*elemsize,
  333. src_blas->nx*elemsize, src_blas->ny, cudaMemcpyHostToDevice);
  334. cudaThreadSynchronize();
  335. if (STARPU_UNLIKELY(cures))
  336. CUDA_REPORT_ERROR(cures);
  337. return 0;
  338. }
  339. TRACE_DATA_COPY(src_node, dst_node, (size_t)src_blas->nx*src_blas->ny*src_blas->elemsize);
  340. return EAGAIN;
  341. }
  342. #endif // USE_CUDA
  343. /* as not all platform easily have a BLAS lib installed ... */
  344. static int dummy_copy_ram_to_ram(data_state *state, uint32_t src_node, uint32_t dst_node)
  345. {
  346. starpu_blas_interface_t *src_blas;
  347. starpu_blas_interface_t *dst_blas;
  348. src_blas = starpu_data_get_interface_on_node(state, src_node);
  349. dst_blas = starpu_data_get_interface_on_node(state, dst_node);
  350. unsigned y;
  351. uint32_t nx = dst_blas->nx;
  352. uint32_t ny = dst_blas->ny;
  353. size_t elemsize = dst_blas->elemsize;
  354. uint32_t ld_src = src_blas->ld;
  355. uint32_t ld_dst = dst_blas->ld;
  356. uintptr_t ptr_src = src_blas->ptr;
  357. uintptr_t ptr_dst = dst_blas->ptr;
  358. for (y = 0; y < ny; y++)
  359. {
  360. uint32_t src_offset = y*ld_src*elemsize;
  361. uint32_t dst_offset = y*ld_dst*elemsize;
  362. memcpy((void *)(ptr_dst + dst_offset),
  363. (void *)(ptr_src + src_offset), nx*elemsize);
  364. }
  365. TRACE_DATA_COPY(src_node, dst_node, (size_t)nx*ny*elemsize);
  366. return 0;
  367. }