starpu_mpi.c 67 KB

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  1. /* StarPU --- Runtime system for heterogeneous multicore architectures.
  2. *
  3. * Copyright (C) 2009, 2010-2016 Université de Bordeaux
  4. * Copyright (C) 2010, 2011, 2012, 2013, 2014, 2015, 2016 CNRS
  5. * Copyright (C) 2016 Inria
  6. *
  7. * StarPU is free software; you can redistribute it and/or modify
  8. * it under the terms of the GNU Lesser General Public License as published by
  9. * the Free Software Foundation; either version 2.1 of the License, or (at
  10. * your option) any later version.
  11. *
  12. * StarPU is distributed in the hope that it will be useful, but
  13. * WITHOUT ANY WARRANTY; without even the implied warranty of
  14. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
  15. *
  16. * See the GNU Lesser General Public License in COPYING.LGPL for more details.
  17. */
  18. #include <stdlib.h>
  19. #include <starpu_mpi.h>
  20. #include <starpu_mpi_datatype.h>
  21. #include <starpu_mpi_private.h>
  22. #include <starpu_mpi_cache.h>
  23. #include <starpu_profiling.h>
  24. #include <starpu_mpi_stats.h>
  25. #include <starpu_mpi_cache.h>
  26. #include <starpu_mpi_sync_data.h>
  27. #include <starpu_mpi_early_data.h>
  28. #include <starpu_mpi_early_request.h>
  29. #include <starpu_mpi_select_node.h>
  30. #include <starpu_mpi_tag.h>
  31. #include <starpu_mpi_comm.h>
  32. #include <common/config.h>
  33. #include <common/thread.h>
  34. #include <datawizard/interfaces/data_interface.h>
  35. #include <datawizard/coherency.h>
  36. #include <core/simgrid.h>
  37. #include <core/task.h>
  38. static void _starpu_mpi_add_sync_point_in_fxt(void);
  39. static void _starpu_mpi_submit_ready_request(void *arg);
  40. static void _starpu_mpi_handle_ready_request(struct _starpu_mpi_req *req);
  41. static void _starpu_mpi_handle_request_termination(struct _starpu_mpi_req *req);
  42. #ifdef STARPU_VERBOSE
  43. static char *_starpu_mpi_request_type(enum _starpu_mpi_request_type request_type);
  44. #endif
  45. static struct _starpu_mpi_req *_starpu_mpi_isend_common(starpu_data_handle_t data_handle,
  46. int dest, int data_tag, MPI_Comm comm,
  47. unsigned detached, unsigned sync, void (*callback)(void *), void *arg,
  48. int sequential_consistency);
  49. static struct _starpu_mpi_req *_starpu_mpi_irecv_common(starpu_data_handle_t data_handle,
  50. int source, int data_tag, MPI_Comm comm,
  51. unsigned detached, unsigned sync, void (*callback)(void *), void *arg,
  52. int sequential_consistency, int is_internal_req,
  53. starpu_ssize_t count);
  54. static void _starpu_mpi_handle_detached_request(struct _starpu_mpi_req *req);
  55. static void _starpu_mpi_early_data_cb(void* arg);
  56. /* The list of ready requests */
  57. static struct _starpu_mpi_req_list *ready_requests;
  58. /* The list of detached requests that have already been submitted to MPI */
  59. static struct _starpu_mpi_req_list *detached_requests;
  60. static starpu_pthread_mutex_t detached_requests_mutex;
  61. /* Condition to wake up progression thread */
  62. static starpu_pthread_cond_t cond_progression;
  63. /* Condition to wake up waiting for all current MPI requests to finish */
  64. static starpu_pthread_cond_t cond_finished;
  65. static starpu_pthread_mutex_t mutex;
  66. #ifndef STARPU_SIMGRID
  67. static starpu_pthread_t progress_thread;
  68. #endif
  69. static int running = 0;
  70. #ifdef STARPU_SIMGRID
  71. static int _mpi_world_size;
  72. static int _mpi_world_rank;
  73. #endif
  74. /* Count requests posted by the application and not yet submitted to MPI */
  75. static starpu_pthread_mutex_t mutex_posted_requests;
  76. static int posted_requests = 0, newer_requests, barrier_running = 0;
  77. #define _STARPU_MPI_INC_POSTED_REQUESTS(value) { STARPU_PTHREAD_MUTEX_LOCK(&mutex_posted_requests); posted_requests += value; STARPU_PTHREAD_MUTEX_UNLOCK(&mutex_posted_requests); }
  78. #pragma weak smpi_simulated_main_
  79. extern int smpi_simulated_main_(int argc, char *argv[]);
  80. #ifdef HAVE_SMPI_PROCESS_SET_USER_DATA
  81. #if !HAVE_DECL_SMPI_PROCESS_SET_USER_DATA
  82. extern void smpi_process_set_user_data(void *);
  83. #endif
  84. #endif
  85. static void _starpu_mpi_request_init(struct _starpu_mpi_req **req)
  86. {
  87. *req = calloc(1, sizeof(struct _starpu_mpi_req));
  88. STARPU_MPI_ASSERT_MSG(*req, "Invalid request");
  89. /* Initialize the request structure */
  90. (*req)->data_handle = NULL;
  91. (*req)->datatype = 0;
  92. (*req)->datatype_name = NULL;
  93. (*req)->ptr = NULL;
  94. (*req)->count = -1;
  95. (*req)->registered_datatype = -1;
  96. (*req)->node_tag.rank = -1;
  97. (*req)->node_tag.data_tag = -1;
  98. (*req)->node_tag.comm = 0;
  99. (*req)->func = NULL;
  100. (*req)->status = NULL;
  101. (*req)->data_request = 0;
  102. (*req)->flag = NULL;
  103. (*req)->ret = -1;
  104. STARPU_PTHREAD_MUTEX_INIT(&((*req)->req_mutex), NULL);
  105. STARPU_PTHREAD_COND_INIT(&((*req)->req_cond), NULL);
  106. STARPU_PTHREAD_MUTEX_INIT(&((*req)->posted_mutex), NULL);
  107. STARPU_PTHREAD_COND_INIT(&((*req)->posted_cond), NULL);
  108. (*req)->request_type = UNKNOWN_REQ;
  109. (*req)->submitted = 0;
  110. (*req)->completed = 0;
  111. (*req)->posted = 0;
  112. (*req)->other_request = NULL;
  113. (*req)->sync = 0;
  114. (*req)->detached = -1;
  115. (*req)->callback = NULL;
  116. (*req)->callback_arg = NULL;
  117. (*req)->size_req = 0;
  118. (*req)->internal_req = NULL;
  119. (*req)->is_internal_req = 0;
  120. (*req)->early_data_handle = NULL;
  121. (*req)->envelope = NULL;
  122. (*req)->sequential_consistency = 1;
  123. }
  124. static void _starpu_mpi_request_destroy(struct _starpu_mpi_req *req)
  125. {
  126. STARPU_PTHREAD_MUTEX_DESTROY(&req->req_mutex);
  127. STARPU_PTHREAD_COND_DESTROY(&req->req_cond);
  128. STARPU_PTHREAD_MUTEX_DESTROY(&req->posted_mutex);
  129. STARPU_PTHREAD_COND_DESTROY(&req->posted_cond);
  130. free(req->datatype_name);
  131. req->datatype_name = NULL;
  132. free(req);
  133. req = NULL;
  134. }
  135. /********************************************************/
  136. /* */
  137. /* Send/Receive functionalities */
  138. /* */
  139. /********************************************************/
  140. struct _starpu_mpi_early_data_cb_args
  141. {
  142. starpu_data_handle_t data_handle;
  143. starpu_data_handle_t early_handle;
  144. struct _starpu_mpi_req *req;
  145. void *buffer;
  146. };
  147. static void _starpu_mpi_submit_ready_request(void *arg)
  148. {
  149. _STARPU_MPI_LOG_IN();
  150. struct _starpu_mpi_req *req = arg;
  151. _STARPU_MPI_INC_POSTED_REQUESTS(-1);
  152. _STARPU_MPI_DEBUG(3, "new req %p srcdst %d tag %d and type %s %d\n", req, req->node_tag.rank, req->node_tag.data_tag, _starpu_mpi_request_type(req->request_type), req->is_internal_req);
  153. STARPU_PTHREAD_MUTEX_LOCK(&mutex);
  154. if (req->request_type == RECV_REQ)
  155. {
  156. /* Case : the request is the internal receive request submitted
  157. * by StarPU-MPI to receive incoming data without a matching
  158. * early_request from the application. We immediately allocate the
  159. * pointer associated to the data_handle, and push it into the
  160. * ready_requests list, so as the real MPI request can be submitted
  161. * before the next submission of the envelope-catching request. */
  162. if (req->is_internal_req)
  163. {
  164. _starpu_mpi_handle_allocate_datatype(req->data_handle, req);
  165. if (req->registered_datatype == 1)
  166. {
  167. req->count = 1;
  168. req->ptr = starpu_data_get_local_ptr(req->data_handle);
  169. }
  170. else
  171. {
  172. STARPU_ASSERT(req->count);
  173. req->ptr = malloc(req->count);
  174. STARPU_MPI_ASSERT_MSG(req->ptr, "cannot allocate message of size %ld\n", req->count);
  175. }
  176. _STARPU_MPI_DEBUG(3, "Pushing internal starpu_mpi_irecv request %p type %s tag %d src %d data %p ptr %p datatype '%s' count %d registered_datatype %d \n",
  177. req, _starpu_mpi_request_type(req->request_type), req->node_tag.data_tag, req->node_tag.rank, req->data_handle, req->ptr,
  178. req->datatype_name, (int)req->count, req->registered_datatype);
  179. _starpu_mpi_req_list_push_front(ready_requests, req);
  180. /* inform the starpu mpi thread that the request has been pushed in the ready_requests list */
  181. STARPU_PTHREAD_MUTEX_UNLOCK(&mutex);
  182. STARPU_PTHREAD_MUTEX_LOCK(&req->posted_mutex);
  183. req->posted = 1;
  184. STARPU_PTHREAD_COND_BROADCAST(&req->posted_cond);
  185. STARPU_PTHREAD_MUTEX_UNLOCK(&req->posted_mutex);
  186. STARPU_PTHREAD_MUTEX_LOCK(&mutex);
  187. }
  188. else
  189. {
  190. /* test whether some data with the given tag and source have already been received by StarPU-MPI*/
  191. struct _starpu_mpi_early_data_handle *early_data_handle = _starpu_mpi_early_data_find(&req->node_tag);
  192. /* Case: a receive request for a data with the given tag and source has already been
  193. * posted by StarPU. Asynchronously requests a Read permission over the temporary handle ,
  194. * so as when the internal receive is completed, the _starpu_mpi_early_data_cb function
  195. * will be called to bring the data back to the original data handle associated to the request.*/
  196. if (early_data_handle)
  197. {
  198. STARPU_PTHREAD_MUTEX_UNLOCK(&mutex);
  199. STARPU_PTHREAD_MUTEX_LOCK(&(early_data_handle->req_mutex));
  200. while (!(early_data_handle->req_ready))
  201. STARPU_PTHREAD_COND_WAIT(&(early_data_handle->req_cond), &(early_data_handle->req_mutex));
  202. STARPU_PTHREAD_MUTEX_UNLOCK(&(early_data_handle->req_mutex));
  203. STARPU_PTHREAD_MUTEX_LOCK(&mutex);
  204. _STARPU_MPI_DEBUG(3, "The RECV request %p with tag %d has already been received, copying previously received data into handle's pointer..\n", req, req->node_tag.data_tag);
  205. STARPU_ASSERT(req->data_handle != early_data_handle->handle);
  206. req->internal_req = early_data_handle->req;
  207. req->early_data_handle = early_data_handle;
  208. struct _starpu_mpi_early_data_cb_args *cb_args = malloc(sizeof(struct _starpu_mpi_early_data_cb_args));
  209. cb_args->data_handle = req->data_handle;
  210. cb_args->early_handle = early_data_handle->handle;
  211. cb_args->buffer = early_data_handle->buffer;
  212. cb_args->req = req;
  213. _STARPU_MPI_DEBUG(3, "Calling data_acquire_cb on starpu_mpi_copy_cb..\n");
  214. STARPU_PTHREAD_MUTEX_UNLOCK(&mutex);
  215. starpu_data_acquire_cb(early_data_handle->handle,STARPU_R,_starpu_mpi_early_data_cb,(void*) cb_args);
  216. STARPU_PTHREAD_MUTEX_LOCK(&mutex);
  217. }
  218. /* Case: no matching data has been received. Store the receive request as an early_request. */
  219. else
  220. {
  221. struct _starpu_mpi_req *sync_req = _starpu_mpi_sync_data_find(req->node_tag.data_tag, req->node_tag.rank, req->node_tag.comm);
  222. _STARPU_MPI_DEBUG(3, "----------> Looking for sync data for tag %d and src %d = %p\n", req->node_tag.data_tag, req->node_tag.rank, sync_req);
  223. if (sync_req)
  224. {
  225. req->sync = 1;
  226. _starpu_mpi_handle_allocate_datatype(req->data_handle, req);
  227. if (req->registered_datatype == 1)
  228. {
  229. req->count = 1;
  230. req->ptr = starpu_data_get_local_ptr(req->data_handle);
  231. }
  232. else
  233. {
  234. req->count = sync_req->count;
  235. STARPU_ASSERT(req->count);
  236. req->ptr = malloc(req->count);
  237. STARPU_MPI_ASSERT_MSG(req->ptr, "cannot allocate message of size %ld\n", req->count);
  238. }
  239. _starpu_mpi_req_list_push_front(ready_requests, req);
  240. _starpu_mpi_request_destroy(sync_req);
  241. }
  242. else
  243. {
  244. _STARPU_MPI_DEBUG(3, "Adding the pending receive request %p (srcdst %d tag %d) into the request hashmap\n", req, req->node_tag.rank, req->node_tag.data_tag);
  245. _starpu_mpi_early_request_enqueue(req);
  246. }
  247. }
  248. }
  249. }
  250. else
  251. {
  252. _starpu_mpi_req_list_push_front(ready_requests, req);
  253. _STARPU_MPI_DEBUG(3, "Pushing new request %p type %s tag %d src %d data %p ptr %p datatype '%s' count %d registered_datatype %d \n",
  254. req, _starpu_mpi_request_type(req->request_type), req->node_tag.data_tag, req->node_tag.rank, req->data_handle, req->ptr,
  255. req->datatype_name, (int)req->count, req->registered_datatype);
  256. }
  257. newer_requests = 1;
  258. STARPU_PTHREAD_COND_BROADCAST(&cond_progression);
  259. STARPU_PTHREAD_MUTEX_UNLOCK(&mutex);
  260. _STARPU_MPI_LOG_OUT();
  261. }
  262. static struct _starpu_mpi_req *_starpu_mpi_isend_irecv_common(starpu_data_handle_t data_handle,
  263. int srcdst, int data_tag, MPI_Comm comm,
  264. unsigned detached, unsigned sync, void (*callback)(void *), void *arg,
  265. enum _starpu_mpi_request_type request_type, void (*func)(struct _starpu_mpi_req *),
  266. enum starpu_data_access_mode mode,
  267. int sequential_consistency,
  268. int is_internal_req,
  269. starpu_ssize_t count)
  270. {
  271. struct _starpu_mpi_req *req;
  272. _STARPU_MPI_LOG_IN();
  273. _STARPU_MPI_INC_POSTED_REQUESTS(1);
  274. _starpu_mpi_comm_register(comm);
  275. /* Initialize the request structure */
  276. _starpu_mpi_request_init(&req);
  277. req->request_type = request_type;
  278. req->data_handle = data_handle;
  279. req->node_tag.rank = srcdst;
  280. req->node_tag.data_tag = data_tag;
  281. req->node_tag.comm = comm;
  282. req->detached = detached;
  283. req->sync = sync;
  284. req->callback = callback;
  285. req->callback_arg = arg;
  286. req->func = func;
  287. req->sequential_consistency = sequential_consistency;
  288. req->is_internal_req = is_internal_req;
  289. req->count = count;
  290. /* Asynchronously request StarPU to fetch the data in main memory: when
  291. * it is available in main memory, _starpu_mpi_submit_ready_request(req) is called and
  292. * the request is actually submitted */
  293. starpu_data_acquire_cb_sequential_consistency(data_handle, mode, _starpu_mpi_submit_ready_request, (void *)req, sequential_consistency);
  294. _STARPU_MPI_LOG_OUT();
  295. return req;
  296. }
  297. /********************************************************/
  298. /* */
  299. /* Send functionalities */
  300. /* */
  301. /********************************************************/
  302. static void _starpu_mpi_isend_data_func(struct _starpu_mpi_req *req)
  303. {
  304. _STARPU_MPI_LOG_IN();
  305. _STARPU_MPI_DEBUG(30, "post MPI isend request %p type %s tag %d src %d data %p datasize %ld ptr %p datatype '%s' count %d registered_datatype %d sync %d\n", req, _starpu_mpi_request_type(req->request_type), req->node_tag.data_tag, req->node_tag.rank, req->data_handle, starpu_data_get_size(req->data_handle), req->ptr, req->datatype_name, (int)req->count, req->registered_datatype, req->sync);
  306. _starpu_mpi_comm_amounts_inc(req->node_tag.comm, req->node_tag.rank, req->datatype, req->count);
  307. _STARPU_MPI_TRACE_ISEND_SUBMIT_BEGIN(req->node_tag.rank, req->node_tag.data_tag, 0);
  308. if (req->sync == 0)
  309. {
  310. _STARPU_MPI_COMM_TO_DEBUG(req->count, req->datatype, req->node_tag.rank, _STARPU_MPI_TAG_DATA, req->node_tag.data_tag, req->node_tag.comm);
  311. req->ret = MPI_Isend(req->ptr, req->count, req->datatype, req->node_tag.rank, _STARPU_MPI_TAG_DATA, req->node_tag.comm, &req->data_request);
  312. STARPU_MPI_ASSERT_MSG(req->ret == MPI_SUCCESS, "MPI_Isend returning %s", _starpu_mpi_get_mpi_error_code(req->ret));
  313. }
  314. else
  315. {
  316. _STARPU_MPI_COMM_TO_DEBUG(req->count, req->datatype, req->node_tag.rank, _STARPU_MPI_TAG_SYNC_DATA, req->node_tag.data_tag, req->node_tag.comm);
  317. req->ret = MPI_Issend(req->ptr, req->count, req->datatype, req->node_tag.rank, _STARPU_MPI_TAG_SYNC_DATA, req->node_tag.comm, &req->data_request);
  318. STARPU_MPI_ASSERT_MSG(req->ret == MPI_SUCCESS, "MPI_Issend returning %s", _starpu_mpi_get_mpi_error_code(req->ret));
  319. }
  320. _STARPU_MPI_TRACE_ISEND_SUBMIT_END(req->node_tag.rank, req->node_tag.data_tag, 0);
  321. /* somebody is perhaps waiting for the MPI request to be posted */
  322. STARPU_PTHREAD_MUTEX_LOCK(&req->req_mutex);
  323. req->submitted = 1;
  324. STARPU_PTHREAD_COND_BROADCAST(&req->req_cond);
  325. STARPU_PTHREAD_MUTEX_UNLOCK(&req->req_mutex);
  326. _starpu_mpi_handle_detached_request(req);
  327. _STARPU_MPI_LOG_OUT();
  328. }
  329. static void _starpu_mpi_isend_size_func(struct _starpu_mpi_req *req)
  330. {
  331. _starpu_mpi_handle_allocate_datatype(req->data_handle, req);
  332. req->envelope = calloc(1,sizeof(struct _starpu_mpi_envelope));
  333. req->envelope->mode = _STARPU_MPI_ENVELOPE_DATA;
  334. req->envelope->data_tag = req->node_tag.data_tag;
  335. req->envelope->sync = req->sync;
  336. if (req->registered_datatype == 1)
  337. {
  338. int size;
  339. req->count = 1;
  340. req->ptr = starpu_data_get_local_ptr(req->data_handle);
  341. MPI_Type_size(req->datatype, &size);
  342. req->envelope->size = (starpu_ssize_t)req->count * size;
  343. _STARPU_MPI_DEBUG(20, "Post MPI isend count (%ld) datatype_size %ld request to %d\n",req->count,starpu_data_get_size(req->data_handle), req->node_tag.rank);
  344. _STARPU_MPI_COMM_TO_DEBUG(sizeof(struct _starpu_mpi_envelope), MPI_BYTE, req->node_tag.rank, _STARPU_MPI_TAG_ENVELOPE, _STARPU_MPI_TAG_ENVELOPE, req->node_tag.comm);
  345. MPI_Isend(req->envelope, sizeof(struct _starpu_mpi_envelope), MPI_BYTE, req->node_tag.rank, _STARPU_MPI_TAG_ENVELOPE, req->node_tag.comm, &req->size_req);
  346. }
  347. else
  348. {
  349. int ret;
  350. // Do not pack the data, just try to find out the size
  351. starpu_data_pack(req->data_handle, NULL, &(req->envelope->size));
  352. if (req->envelope->size != -1)
  353. {
  354. // We already know the size of the data, let's send it to overlap with the packing of the data
  355. _STARPU_MPI_DEBUG(20, "Sending size %ld (%ld %s) to node %d (first call to pack)\n", req->envelope->size, sizeof(req->count), "MPI_BYTE", req->node_tag.rank);
  356. req->count = req->envelope->size;
  357. _STARPU_MPI_COMM_TO_DEBUG(sizeof(struct _starpu_mpi_envelope), MPI_BYTE, req->node_tag.rank, _STARPU_MPI_TAG_ENVELOPE, _STARPU_MPI_TAG_ENVELOPE, req->node_tag.comm);
  358. ret = MPI_Isend(req->envelope, sizeof(struct _starpu_mpi_envelope), MPI_BYTE, req->node_tag.rank, _STARPU_MPI_TAG_ENVELOPE, req->node_tag.comm, &req->size_req);
  359. STARPU_MPI_ASSERT_MSG(ret == MPI_SUCCESS, "when sending size, MPI_Isend returning %s", _starpu_mpi_get_mpi_error_code(ret));
  360. }
  361. // Pack the data
  362. starpu_data_pack(req->data_handle, &req->ptr, &req->count);
  363. if (req->envelope->size == -1)
  364. {
  365. // We know the size now, let's send it
  366. _STARPU_MPI_DEBUG(20, "Sending size %ld (%ld %s) to node %d (second call to pack)\n", req->envelope->size, sizeof(req->count), "MPI_BYTE", req->node_tag.rank);
  367. _STARPU_MPI_COMM_TO_DEBUG(sizeof(struct _starpu_mpi_envelope), MPI_BYTE, req->node_tag.rank, _STARPU_MPI_TAG_ENVELOPE, _STARPU_MPI_TAG_ENVELOPE, req->node_tag.comm);
  368. ret = MPI_Isend(req->envelope, sizeof(struct _starpu_mpi_envelope), MPI_BYTE, req->node_tag.rank, _STARPU_MPI_TAG_ENVELOPE, req->node_tag.comm, &req->size_req);
  369. STARPU_MPI_ASSERT_MSG(ret == MPI_SUCCESS, "when sending size, MPI_Isend returning %s", _starpu_mpi_get_mpi_error_code(ret));
  370. }
  371. else
  372. {
  373. // We check the size returned with the 2 calls to pack is the same
  374. STARPU_MPI_ASSERT_MSG(req->count == req->envelope->size, "Calls to pack_data returned different sizes %ld != %ld", req->count, req->envelope->size);
  375. }
  376. // We can send the data now
  377. }
  378. if (req->sync)
  379. {
  380. // If the data is to be sent in synchronous mode, we need to wait for the receiver ready message
  381. _starpu_mpi_sync_data_add(req);
  382. }
  383. else
  384. {
  385. // Otherwise we can send the data
  386. _starpu_mpi_isend_data_func(req);
  387. }
  388. }
  389. static struct _starpu_mpi_req *_starpu_mpi_isend_common(starpu_data_handle_t data_handle,
  390. int dest, int data_tag, MPI_Comm comm,
  391. unsigned detached, unsigned sync, void (*callback)(void *), void *arg,
  392. int sequential_consistency)
  393. {
  394. return _starpu_mpi_isend_irecv_common(data_handle, dest, data_tag, comm, detached, sync, callback, arg, SEND_REQ, _starpu_mpi_isend_size_func, STARPU_R, sequential_consistency, 0, 0);
  395. }
  396. int starpu_mpi_isend(starpu_data_handle_t data_handle, starpu_mpi_req *public_req, int dest, int data_tag, MPI_Comm comm)
  397. {
  398. _STARPU_MPI_LOG_IN();
  399. STARPU_MPI_ASSERT_MSG(public_req, "starpu_mpi_isend needs a valid starpu_mpi_req");
  400. struct _starpu_mpi_req *req;
  401. _STARPU_MPI_TRACE_ISEND_COMPLETE_BEGIN(dest, data_tag, 0);
  402. req = _starpu_mpi_isend_common(data_handle, dest, data_tag, comm, 0, 0, NULL, NULL, 1);
  403. _STARPU_MPI_TRACE_ISEND_COMPLETE_END(dest, data_tag, 0);
  404. STARPU_MPI_ASSERT_MSG(req, "Invalid return for _starpu_mpi_isend_common");
  405. *public_req = req;
  406. _STARPU_MPI_LOG_OUT();
  407. return 0;
  408. }
  409. int starpu_mpi_isend_detached(starpu_data_handle_t data_handle,
  410. int dest, int data_tag, MPI_Comm comm, void (*callback)(void *), void *arg)
  411. {
  412. _STARPU_MPI_LOG_IN();
  413. _starpu_mpi_isend_common(data_handle, dest, data_tag, comm, 1, 0, callback, arg, 1);
  414. _STARPU_MPI_LOG_OUT();
  415. return 0;
  416. }
  417. int starpu_mpi_send(starpu_data_handle_t data_handle, int dest, int data_tag, MPI_Comm comm)
  418. {
  419. starpu_mpi_req req;
  420. MPI_Status status;
  421. _STARPU_MPI_LOG_IN();
  422. memset(&status, 0, sizeof(MPI_Status));
  423. starpu_mpi_isend(data_handle, &req, dest, data_tag, comm);
  424. starpu_mpi_wait(&req, &status);
  425. _STARPU_MPI_LOG_OUT();
  426. return 0;
  427. }
  428. int starpu_mpi_issend(starpu_data_handle_t data_handle, starpu_mpi_req *public_req, int dest, int data_tag, MPI_Comm comm)
  429. {
  430. _STARPU_MPI_LOG_IN();
  431. STARPU_MPI_ASSERT_MSG(public_req, "starpu_mpi_issend needs a valid starpu_mpi_req");
  432. struct _starpu_mpi_req *req;
  433. req = _starpu_mpi_isend_common(data_handle, dest, data_tag, comm, 0, 1, NULL, NULL, 1);
  434. STARPU_MPI_ASSERT_MSG(req, "Invalid return for _starpu_mpi_isend_common");
  435. *public_req = req;
  436. _STARPU_MPI_LOG_OUT();
  437. return 0;
  438. }
  439. int starpu_mpi_issend_detached(starpu_data_handle_t data_handle, int dest, int data_tag, MPI_Comm comm, void (*callback)(void *), void *arg)
  440. {
  441. _STARPU_MPI_LOG_IN();
  442. _starpu_mpi_isend_common(data_handle, dest, data_tag, comm, 1, 1, callback, arg, 1);
  443. _STARPU_MPI_LOG_OUT();
  444. return 0;
  445. }
  446. /********************************************************/
  447. /* */
  448. /* receive functionalities */
  449. /* */
  450. /********************************************************/
  451. static void _starpu_mpi_irecv_data_func(struct _starpu_mpi_req *req)
  452. {
  453. _STARPU_MPI_LOG_IN();
  454. _STARPU_MPI_DEBUG(20, "post MPI irecv request %p type %s tag %d src %d data %p ptr %p datatype '%s' count %d registered_datatype %d \n", req, _starpu_mpi_request_type(req->request_type), req->node_tag.data_tag, req->node_tag.rank, req->data_handle, req->ptr, req->datatype_name, (int)req->count, req->registered_datatype);
  455. _STARPU_MPI_TRACE_IRECV_SUBMIT_BEGIN(req->node_tag.rank, req->node_tag.data_tag);
  456. if (req->sync)
  457. {
  458. struct _starpu_mpi_envelope *_envelope = calloc(1,sizeof(struct _starpu_mpi_envelope));
  459. _envelope->mode = _STARPU_MPI_ENVELOPE_SYNC_READY;
  460. _envelope->data_tag = req->node_tag.data_tag;
  461. _STARPU_MPI_DEBUG(20, "Telling node %d it can send the data and waiting for the data back ...\n", req->node_tag.rank);
  462. _STARPU_MPI_COMM_TO_DEBUG(sizeof(struct _starpu_mpi_envelope), MPI_BYTE, req->node_tag.rank, _STARPU_MPI_TAG_ENVELOPE, _STARPU_MPI_TAG_ENVELOPE, req->node_tag.comm);
  463. req->ret = MPI_Send(_envelope, sizeof(struct _starpu_mpi_envelope), MPI_BYTE, req->node_tag.rank, _STARPU_MPI_TAG_ENVELOPE, req->node_tag.comm);
  464. STARPU_MPI_ASSERT_MSG(req->ret == MPI_SUCCESS, "MPI_Send returning %s", _starpu_mpi_get_mpi_error_code(req->ret));
  465. free(_envelope);
  466. _envelope = NULL;
  467. }
  468. if (req->sync)
  469. {
  470. _STARPU_MPI_COMM_FROM_DEBUG(req->count, req->datatype, req->node_tag.rank, _STARPU_MPI_TAG_SYNC_DATA, req->node_tag.data_tag, req->node_tag.comm);
  471. req->ret = MPI_Irecv(req->ptr, req->count, req->datatype, req->node_tag.rank, _STARPU_MPI_TAG_SYNC_DATA, req->node_tag.comm, &req->data_request);
  472. }
  473. else
  474. {
  475. _STARPU_MPI_COMM_FROM_DEBUG(req->count, req->datatype, req->node_tag.rank, _STARPU_MPI_TAG_DATA, req->node_tag.data_tag, req->node_tag.comm);
  476. req->ret = MPI_Irecv(req->ptr, req->count, req->datatype, req->node_tag.rank, _STARPU_MPI_TAG_DATA, req->node_tag.comm, &req->data_request);
  477. }
  478. STARPU_MPI_ASSERT_MSG(req->ret == MPI_SUCCESS, "MPI_IRecv returning %s", _starpu_mpi_get_mpi_error_code(req->ret));
  479. _STARPU_MPI_TRACE_IRECV_SUBMIT_END(req->node_tag.rank, req->node_tag.data_tag);
  480. /* somebody is perhaps waiting for the MPI request to be posted */
  481. STARPU_PTHREAD_MUTEX_LOCK(&req->req_mutex);
  482. req->submitted = 1;
  483. STARPU_PTHREAD_COND_BROADCAST(&req->req_cond);
  484. STARPU_PTHREAD_MUTEX_UNLOCK(&req->req_mutex);
  485. _starpu_mpi_handle_detached_request(req);
  486. _STARPU_MPI_LOG_OUT();
  487. }
  488. static struct _starpu_mpi_req *_starpu_mpi_irecv_common(starpu_data_handle_t data_handle, int source, int data_tag, MPI_Comm comm, unsigned detached, unsigned sync, void (*callback)(void *), void *arg, int sequential_consistency, int is_internal_req, starpu_ssize_t count)
  489. {
  490. return _starpu_mpi_isend_irecv_common(data_handle, source, data_tag, comm, detached, sync, callback, arg, RECV_REQ, _starpu_mpi_irecv_data_func, STARPU_W, sequential_consistency, is_internal_req, count);
  491. }
  492. int starpu_mpi_irecv(starpu_data_handle_t data_handle, starpu_mpi_req *public_req, int source, int data_tag, MPI_Comm comm)
  493. {
  494. _STARPU_MPI_LOG_IN();
  495. STARPU_MPI_ASSERT_MSG(public_req, "starpu_mpi_irecv needs a valid starpu_mpi_req");
  496. // // We check if a tag is defined for the data handle, if not,
  497. // // we define the one given for the communication.
  498. // // A tag is necessary for the internal mpi engine.
  499. // int tag = starpu_data_get_tag(data_handle);
  500. // if (tag == -1)
  501. // starpu_data_set_tag(data_handle, data_tag);
  502. struct _starpu_mpi_req *req;
  503. _STARPU_MPI_TRACE_IRECV_COMPLETE_BEGIN(source, data_tag);
  504. req = _starpu_mpi_irecv_common(data_handle, source, data_tag, comm, 0, 0, NULL, NULL, 1, 0, 0);
  505. _STARPU_MPI_TRACE_IRECV_COMPLETE_END(source, data_tag);
  506. STARPU_MPI_ASSERT_MSG(req, "Invalid return for _starpu_mpi_irecv_common");
  507. *public_req = req;
  508. _STARPU_MPI_LOG_OUT();
  509. return 0;
  510. }
  511. int starpu_mpi_irecv_detached(starpu_data_handle_t data_handle, int source, int data_tag, MPI_Comm comm, void (*callback)(void *), void *arg)
  512. {
  513. _STARPU_MPI_LOG_IN();
  514. // // We check if a tag is defined for the data handle, if not,
  515. // // we define the one given for the communication.
  516. // // A tag is necessary for the internal mpi engine.
  517. // int tag = starpu_data_get_tag(data_handle);
  518. // if (tag == -1)
  519. // starpu_data_set_tag(data_handle, data_tag);
  520. _starpu_mpi_irecv_common(data_handle, source, data_tag, comm, 1, 0, callback, arg, 1, 0, 0);
  521. _STARPU_MPI_LOG_OUT();
  522. return 0;
  523. }
  524. int starpu_mpi_irecv_detached_sequential_consistency(starpu_data_handle_t data_handle, int source, int data_tag, MPI_Comm comm, void (*callback)(void *), void *arg, int sequential_consistency)
  525. {
  526. _STARPU_MPI_LOG_IN();
  527. // // We check if a tag is defined for the data handle, if not,
  528. // // we define the one given for the communication.
  529. // // A tag is necessary for the internal mpi engine.
  530. // int tag = starpu_data_get_tag(data_handle);
  531. // if (tag == -1)
  532. // starpu_data_set_tag(data_handle, data_tag);
  533. _starpu_mpi_irecv_common(data_handle, source, data_tag, comm, 1, 0, callback, arg, sequential_consistency, 0, 0);
  534. _STARPU_MPI_LOG_OUT();
  535. return 0;
  536. }
  537. int starpu_mpi_recv(starpu_data_handle_t data_handle, int source, int data_tag, MPI_Comm comm, MPI_Status *status)
  538. {
  539. starpu_mpi_req req;
  540. _STARPU_MPI_LOG_IN();
  541. // // We check if a tag is defined for the data handle, if not,
  542. // // we define the one given for the communication.
  543. // // A tag is necessary for the internal mpi engine.
  544. // int tag = starpu_data_get_tag(data_handle);
  545. // if (tag == -1)
  546. // starpu_data_set_tag(data_handle, data_tag);
  547. starpu_mpi_irecv(data_handle, &req, source, data_tag, comm);
  548. starpu_mpi_wait(&req, status);
  549. _STARPU_MPI_LOG_OUT();
  550. return 0;
  551. }
  552. /********************************************************/
  553. /* */
  554. /* Wait functionalities */
  555. /* */
  556. /********************************************************/
  557. static void _starpu_mpi_wait_func(struct _starpu_mpi_req *waiting_req)
  558. {
  559. _STARPU_MPI_LOG_IN();
  560. /* Which is the mpi request we are waiting for ? */
  561. struct _starpu_mpi_req *req = waiting_req->other_request;
  562. _STARPU_MPI_TRACE_UWAIT_BEGIN(req->node_tag.rank, req->node_tag.data_tag);
  563. if (req->data_request != MPI_REQUEST_NULL)
  564. {
  565. req->ret = MPI_Wait(&req->data_request, waiting_req->status);
  566. STARPU_MPI_ASSERT_MSG(req->ret == MPI_SUCCESS, "MPI_Wait returning %s", _starpu_mpi_get_mpi_error_code(req->ret));
  567. }
  568. _STARPU_MPI_TRACE_UWAIT_END(req->node_tag.rank, req->node_tag.data_tag);
  569. _starpu_mpi_handle_request_termination(req);
  570. _STARPU_MPI_LOG_OUT();
  571. }
  572. int starpu_mpi_wait(starpu_mpi_req *public_req, MPI_Status *status)
  573. {
  574. int ret;
  575. struct _starpu_mpi_req *req = *public_req;
  576. struct _starpu_mpi_req *waiting_req;
  577. _STARPU_MPI_LOG_IN();
  578. _STARPU_MPI_INC_POSTED_REQUESTS(1);
  579. /* We cannot try to complete a MPI request that was not actually posted
  580. * to MPI yet. */
  581. STARPU_PTHREAD_MUTEX_LOCK(&(req->req_mutex));
  582. while (!(req->submitted))
  583. STARPU_PTHREAD_COND_WAIT(&(req->req_cond), &(req->req_mutex));
  584. STARPU_PTHREAD_MUTEX_UNLOCK(&(req->req_mutex));
  585. /* Initialize the request structure */
  586. _starpu_mpi_request_init(&waiting_req);
  587. waiting_req->status = status;
  588. waiting_req->other_request = req;
  589. waiting_req->func = _starpu_mpi_wait_func;
  590. waiting_req->request_type = WAIT_REQ;
  591. _starpu_mpi_submit_ready_request(waiting_req);
  592. /* We wait for the MPI request to finish */
  593. STARPU_PTHREAD_MUTEX_LOCK(&req->req_mutex);
  594. while (!req->completed)
  595. STARPU_PTHREAD_COND_WAIT(&req->req_cond, &req->req_mutex);
  596. STARPU_PTHREAD_MUTEX_UNLOCK(&req->req_mutex);
  597. ret = req->ret;
  598. /* The internal request structure was automatically allocated */
  599. *public_req = NULL;
  600. if (req->internal_req)
  601. {
  602. _starpu_mpi_request_destroy(req->internal_req);
  603. }
  604. _starpu_mpi_request_destroy(req);
  605. _starpu_mpi_request_destroy(waiting_req);
  606. _STARPU_MPI_LOG_OUT();
  607. return ret;
  608. }
  609. /********************************************************/
  610. /* */
  611. /* Test functionalities */
  612. /* */
  613. /********************************************************/
  614. static void _starpu_mpi_test_func(struct _starpu_mpi_req *testing_req)
  615. {
  616. _STARPU_MPI_LOG_IN();
  617. /* Which is the mpi request we are testing for ? */
  618. struct _starpu_mpi_req *req = testing_req->other_request;
  619. _STARPU_MPI_DEBUG(2, "Test request %p type %s tag %d src %d data %p ptr %p datatype '%s' count %d registered_datatype %d \n",
  620. req, _starpu_mpi_request_type(req->request_type), req->node_tag.data_tag, req->node_tag.rank, req->data_handle, req->ptr, req->datatype_name, (int)req->count, req->registered_datatype);
  621. _STARPU_MPI_TRACE_UTESTING_BEGIN(req->node_tag.rank, req->node_tag.data_tag);
  622. req->ret = MPI_Test(&req->data_request, testing_req->flag, testing_req->status);
  623. STARPU_MPI_ASSERT_MSG(req->ret == MPI_SUCCESS, "MPI_Test returning %s", _starpu_mpi_get_mpi_error_code(req->ret));
  624. _STARPU_MPI_TRACE_UTESTING_END(req->node_tag.rank, req->node_tag.data_tag);
  625. if (*testing_req->flag)
  626. {
  627. testing_req->ret = req->ret;
  628. _starpu_mpi_handle_request_termination(req);
  629. }
  630. STARPU_PTHREAD_MUTEX_LOCK(&testing_req->req_mutex);
  631. testing_req->completed = 1;
  632. STARPU_PTHREAD_COND_SIGNAL(&testing_req->req_cond);
  633. STARPU_PTHREAD_MUTEX_UNLOCK(&testing_req->req_mutex);
  634. _STARPU_MPI_LOG_OUT();
  635. }
  636. int starpu_mpi_test(starpu_mpi_req *public_req, int *flag, MPI_Status *status)
  637. {
  638. _STARPU_MPI_LOG_IN();
  639. int ret = 0;
  640. STARPU_MPI_ASSERT_MSG(public_req, "starpu_mpi_test needs a valid starpu_mpi_req");
  641. struct _starpu_mpi_req *req = *public_req;
  642. STARPU_MPI_ASSERT_MSG(!req->detached, "MPI_Test cannot be called on a detached request");
  643. STARPU_PTHREAD_MUTEX_LOCK(&req->req_mutex);
  644. unsigned submitted = req->submitted;
  645. STARPU_PTHREAD_MUTEX_UNLOCK(&req->req_mutex);
  646. if (submitted)
  647. {
  648. struct _starpu_mpi_req *testing_req;
  649. _starpu_mpi_request_init(&testing_req);
  650. /* Initialize the request structure */
  651. STARPU_PTHREAD_MUTEX_INIT(&(testing_req->req_mutex), NULL);
  652. STARPU_PTHREAD_COND_INIT(&(testing_req->req_cond), NULL);
  653. testing_req->flag = flag;
  654. testing_req->status = status;
  655. testing_req->other_request = req;
  656. testing_req->func = _starpu_mpi_test_func;
  657. testing_req->completed = 0;
  658. testing_req->request_type = TEST_REQ;
  659. _STARPU_MPI_INC_POSTED_REQUESTS(1);
  660. _starpu_mpi_submit_ready_request(testing_req);
  661. /* We wait for the test request to finish */
  662. STARPU_PTHREAD_MUTEX_LOCK(&(testing_req->req_mutex));
  663. while (!(testing_req->completed))
  664. STARPU_PTHREAD_COND_WAIT(&(testing_req->req_cond), &(testing_req->req_mutex));
  665. STARPU_PTHREAD_MUTEX_UNLOCK(&(testing_req->req_mutex));
  666. ret = testing_req->ret;
  667. if (*(testing_req->flag))
  668. {
  669. /* The request was completed so we free the internal
  670. * request structure which was automatically allocated
  671. * */
  672. *public_req = NULL;
  673. if (req->internal_req)
  674. {
  675. _starpu_mpi_request_destroy(req->internal_req);
  676. }
  677. _starpu_mpi_request_destroy(req);
  678. }
  679. _starpu_mpi_request_destroy(testing_req);
  680. }
  681. else
  682. {
  683. *flag = 0;
  684. }
  685. _STARPU_MPI_LOG_OUT();
  686. return ret;
  687. }
  688. /********************************************************/
  689. /* */
  690. /* Barrier functionalities */
  691. /* */
  692. /********************************************************/
  693. static void _starpu_mpi_barrier_func(struct _starpu_mpi_req *barrier_req)
  694. {
  695. _STARPU_MPI_LOG_IN();
  696. barrier_req->ret = MPI_Barrier(barrier_req->node_tag.comm);
  697. STARPU_MPI_ASSERT_MSG(barrier_req->ret == MPI_SUCCESS, "MPI_Barrier returning %s", _starpu_mpi_get_mpi_error_code(barrier_req->ret));
  698. _starpu_mpi_handle_request_termination(barrier_req);
  699. _STARPU_MPI_LOG_OUT();
  700. }
  701. int _starpu_mpi_barrier(MPI_Comm comm)
  702. {
  703. _STARPU_MPI_LOG_IN();
  704. int ret = posted_requests;
  705. struct _starpu_mpi_req *barrier_req;
  706. _starpu_mpi_request_init(&barrier_req);
  707. /* First wait for *both* all tasks and MPI requests to finish, in case
  708. * some tasks generate MPI requests, MPI requests generate tasks, etc.
  709. */
  710. STARPU_PTHREAD_MUTEX_LOCK(&mutex);
  711. STARPU_MPI_ASSERT_MSG(!barrier_running, "Concurrent starpu_mpi_barrier is not implemented, even on different communicators");
  712. barrier_running = 1;
  713. do
  714. {
  715. while (posted_requests)
  716. /* Wait for all current MPI requests to finish */
  717. STARPU_PTHREAD_COND_WAIT(&cond_finished, &mutex);
  718. /* No current request, clear flag */
  719. newer_requests = 0;
  720. STARPU_PTHREAD_MUTEX_UNLOCK(&mutex);
  721. /* Now wait for all tasks */
  722. starpu_task_wait_for_all();
  723. STARPU_PTHREAD_MUTEX_LOCK(&mutex);
  724. /* Check newer_requests again, in case some MPI requests
  725. * triggered by tasks completed and triggered tasks between
  726. * wait_for_all finished and we take the lock */
  727. } while (posted_requests || newer_requests);
  728. barrier_running = 0;
  729. STARPU_PTHREAD_MUTEX_UNLOCK(&mutex);
  730. /* Initialize the request structure */
  731. STARPU_PTHREAD_MUTEX_INIT(&(barrier_req->req_mutex), NULL);
  732. STARPU_PTHREAD_COND_INIT(&(barrier_req->req_cond), NULL);
  733. barrier_req->func = _starpu_mpi_barrier_func;
  734. barrier_req->request_type = BARRIER_REQ;
  735. barrier_req->node_tag.comm = comm;
  736. _STARPU_MPI_INC_POSTED_REQUESTS(1);
  737. _starpu_mpi_submit_ready_request(barrier_req);
  738. /* We wait for the MPI request to finish */
  739. STARPU_PTHREAD_MUTEX_LOCK(&barrier_req->req_mutex);
  740. while (!barrier_req->completed)
  741. STARPU_PTHREAD_COND_WAIT(&barrier_req->req_cond, &barrier_req->req_mutex);
  742. STARPU_PTHREAD_MUTEX_UNLOCK(&barrier_req->req_mutex);
  743. _starpu_mpi_request_destroy(barrier_req);
  744. _STARPU_MPI_LOG_OUT();
  745. return ret;
  746. }
  747. int starpu_mpi_barrier(MPI_Comm comm)
  748. {
  749. _starpu_mpi_barrier(comm);
  750. return 0;
  751. }
  752. /********************************************************/
  753. /* */
  754. /* Progression */
  755. /* */
  756. /********************************************************/
  757. #ifdef STARPU_VERBOSE
  758. static char *_starpu_mpi_request_type(enum _starpu_mpi_request_type request_type)
  759. {
  760. switch (request_type)
  761. {
  762. case SEND_REQ: return "SEND_REQ";
  763. case RECV_REQ: return "RECV_REQ";
  764. case WAIT_REQ: return "WAIT_REQ";
  765. case TEST_REQ: return "TEST_REQ";
  766. case BARRIER_REQ: return "BARRIER_REQ";
  767. case UNKNOWN_REQ: return "UNSET_REQ";
  768. default: return "unknown request type";
  769. }
  770. }
  771. #endif
  772. static void _starpu_mpi_handle_request_termination(struct _starpu_mpi_req *req)
  773. {
  774. _STARPU_MPI_LOG_IN();
  775. _STARPU_MPI_DEBUG(2, "complete MPI request %p type %s tag %d src %d data %p ptr %p datatype '%s' count %d registered_datatype %d internal_req %p\n",
  776. req, _starpu_mpi_request_type(req->request_type), req->node_tag.data_tag, req->node_tag.rank, req->data_handle, req->ptr,
  777. req->datatype_name, (int)req->count, req->registered_datatype, req->internal_req);
  778. if (req->internal_req)
  779. {
  780. free(req->early_data_handle);
  781. req->early_data_handle = NULL;
  782. }
  783. else
  784. {
  785. if (req->request_type == RECV_REQ || req->request_type == SEND_REQ)
  786. {
  787. if (req->registered_datatype == 0)
  788. {
  789. if (req->request_type == SEND_REQ)
  790. {
  791. // We need to make sure the communication for sending the size
  792. // has completed, as MPI can re-order messages, let's call
  793. // MPI_Wait to make sure data have been sent
  794. int ret;
  795. ret = MPI_Wait(&req->size_req, MPI_STATUS_IGNORE);
  796. STARPU_MPI_ASSERT_MSG(ret == MPI_SUCCESS, "MPI_Wait returning %s", _starpu_mpi_get_mpi_error_code(ret));
  797. free(req->ptr);
  798. req->ptr = NULL;
  799. }
  800. else if (req->request_type == RECV_REQ)
  801. {
  802. // req->ptr is freed by starpu_data_unpack
  803. starpu_data_unpack(req->data_handle, req->ptr, req->count);
  804. }
  805. }
  806. else
  807. {
  808. _starpu_mpi_handle_free_datatype(req->data_handle, &req->datatype);
  809. }
  810. }
  811. }
  812. if (req->data_handle)
  813. starpu_data_release(req->data_handle);
  814. if (req->envelope)
  815. {
  816. free(req->envelope);
  817. req->envelope = NULL;
  818. }
  819. /* Execute the specified callback, if any */
  820. if (req->callback)
  821. req->callback(req->callback_arg);
  822. /* tell anyone potentially waiting on the request that it is
  823. * terminated now */
  824. STARPU_PTHREAD_MUTEX_LOCK(&req->req_mutex);
  825. req->completed = 1;
  826. STARPU_PTHREAD_COND_BROADCAST(&req->req_cond);
  827. STARPU_PTHREAD_MUTEX_UNLOCK(&req->req_mutex);
  828. _STARPU_MPI_LOG_OUT();
  829. }
  830. static void _starpu_mpi_early_data_cb(void* arg)
  831. {
  832. struct _starpu_mpi_early_data_cb_args *args = arg;
  833. if (args->buffer)
  834. {
  835. /* Data has been received as a raw memory, it has to be unpacked */
  836. struct starpu_data_interface_ops *itf_src = starpu_data_get_interface_ops(args->early_handle);
  837. struct starpu_data_interface_ops *itf_dst = starpu_data_get_interface_ops(args->data_handle);
  838. STARPU_MPI_ASSERT_MSG(itf_dst->unpack_data, "The data interface does not define an unpack function\n");
  839. itf_dst->unpack_data(args->data_handle, STARPU_MAIN_RAM, args->buffer, itf_src->get_size(args->early_handle));
  840. free(args->buffer);
  841. args->buffer = NULL;
  842. }
  843. else
  844. {
  845. struct starpu_data_interface_ops *itf = starpu_data_get_interface_ops(args->early_handle);
  846. void* itf_src = starpu_data_get_interface_on_node(args->early_handle, STARPU_MAIN_RAM);
  847. void* itf_dst = starpu_data_get_interface_on_node(args->data_handle, STARPU_MAIN_RAM);
  848. if (!itf->copy_methods->ram_to_ram)
  849. {
  850. _STARPU_MPI_DEBUG(3, "Initiating any_to_any copy..\n");
  851. itf->copy_methods->any_to_any(itf_src, STARPU_MAIN_RAM, itf_dst, STARPU_MAIN_RAM, NULL);
  852. }
  853. else
  854. {
  855. _STARPU_MPI_DEBUG(3, "Initiating ram_to_ram copy..\n");
  856. itf->copy_methods->ram_to_ram(itf_src, STARPU_MAIN_RAM, itf_dst, STARPU_MAIN_RAM);
  857. }
  858. }
  859. _STARPU_MPI_DEBUG(3, "Done, handling release of early_handle..\n");
  860. starpu_data_release(args->early_handle);
  861. _STARPU_MPI_DEBUG(3, "Done, handling unregister of early_handle..\n");
  862. starpu_data_unregister_submit(args->early_handle);
  863. _STARPU_MPI_DEBUG(3, "Done, handling request %p termination of the already received request\n",args->req);
  864. // If the request is detached, we need to call _starpu_mpi_handle_request_termination
  865. // as it will not be called automatically as the request is not in the list detached_requests
  866. if (args->req)
  867. {
  868. if (args->req->detached)
  869. {
  870. _starpu_mpi_handle_request_termination(args->req);
  871. _starpu_mpi_request_destroy(args->req);
  872. }
  873. else
  874. {
  875. // else: If the request is not detached its termination will
  876. // be handled when calling starpu_mpi_wait
  877. // We store in the application request the internal MPI
  878. // request so that it can be used by starpu_mpi_wait
  879. args->req->data_request = args->req->internal_req->data_request;
  880. STARPU_PTHREAD_MUTEX_LOCK(&args->req->req_mutex);
  881. args->req->submitted = 1;
  882. STARPU_PTHREAD_COND_BROADCAST(&args->req->req_cond);
  883. STARPU_PTHREAD_MUTEX_UNLOCK(&args->req->req_mutex);
  884. }
  885. }
  886. free(args);
  887. args = NULL;
  888. }
  889. #ifdef STARPU_MPI_ACTIVITY
  890. static unsigned _starpu_mpi_progression_hook_func(void *arg STARPU_ATTRIBUTE_UNUSED)
  891. {
  892. unsigned may_block = 1;
  893. STARPU_PTHREAD_MUTEX_LOCK(&detached_requests_mutex);
  894. if (!_starpu_mpi_req_list_empty(detached_requests))
  895. {
  896. STARPU_PTHREAD_MUTEX_UNLOCK(&detached_requests_mutex);
  897. STARPU_PTHREAD_MUTEX_LOCK(&mutex);
  898. STARPU_PTHREAD_COND_SIGNAL(&cond_progression);
  899. STARPU_PTHREAD_MUTEX_UNLOCK(&mutex);
  900. may_block = 0;
  901. }
  902. else
  903. STARPU_PTHREAD_MUTEX_UNLOCK(&detached_requests_mutex);
  904. return may_block;
  905. }
  906. #endif /* STARPU_MPI_ACTIVITY */
  907. static void _starpu_mpi_test_detached_requests(void)
  908. {
  909. //_STARPU_MPI_LOG_IN();
  910. int flag;
  911. MPI_Status status;
  912. struct _starpu_mpi_req *req;
  913. STARPU_PTHREAD_MUTEX_LOCK(&detached_requests_mutex);
  914. req = _starpu_mpi_req_list_begin(detached_requests);
  915. while (req != _starpu_mpi_req_list_end(detached_requests))
  916. {
  917. STARPU_PTHREAD_MUTEX_UNLOCK(&detached_requests_mutex);
  918. //_STARPU_MPI_DEBUG(3, "Test detached request %p - mpitag %d - TYPE %s %d\n", &req->data_request, req->node_tag.data_tag, _starpu_mpi_request_type(req->request_type), req->node_tag.rank);
  919. req->ret = MPI_Test(&req->data_request, &flag, &status);
  920. STARPU_MPI_ASSERT_MSG(req->ret == MPI_SUCCESS, "MPI_Test returning %s", _starpu_mpi_get_mpi_error_code(req->ret));
  921. if (!flag)
  922. {
  923. req = _starpu_mpi_req_list_next(req);
  924. }
  925. else
  926. {
  927. struct _starpu_mpi_req *next_req;
  928. next_req = _starpu_mpi_req_list_next(req);
  929. if (req->request_type == RECV_REQ)
  930. {
  931. _STARPU_MPI_TRACE_IRECV_COMPLETE_BEGIN(req->node_tag.rank, req->node_tag.data_tag);
  932. }
  933. else if (req->request_type == SEND_REQ)
  934. {
  935. _STARPU_MPI_TRACE_ISEND_COMPLETE_BEGIN(req->node_tag.rank, req->node_tag.data_tag, 0);
  936. }
  937. STARPU_PTHREAD_MUTEX_LOCK(&detached_requests_mutex);
  938. _starpu_mpi_req_list_erase(detached_requests, req);
  939. STARPU_PTHREAD_MUTEX_UNLOCK(&detached_requests_mutex);
  940. _starpu_mpi_handle_request_termination(req);
  941. if (req->request_type == RECV_REQ)
  942. {
  943. _STARPU_MPI_TRACE_IRECV_COMPLETE_END(req->node_tag.rank, req->node_tag.data_tag);
  944. }
  945. else if (req->request_type == SEND_REQ)
  946. {
  947. _STARPU_MPI_TRACE_ISEND_COMPLETE_END(req->node_tag.rank, req->node_tag.data_tag, 0);
  948. }
  949. if (req->is_internal_req == 0)
  950. {
  951. _starpu_mpi_request_destroy(req);
  952. }
  953. req = next_req;
  954. }
  955. STARPU_PTHREAD_MUTEX_LOCK(&detached_requests_mutex);
  956. }
  957. STARPU_PTHREAD_MUTEX_UNLOCK(&detached_requests_mutex);
  958. //_STARPU_MPI_LOG_OUT();
  959. }
  960. static void _starpu_mpi_handle_detached_request(struct _starpu_mpi_req *req)
  961. {
  962. if (req->detached)
  963. {
  964. /* put the submitted request into the list of pending requests
  965. * so that it can be handled by the progression mechanisms */
  966. STARPU_PTHREAD_MUTEX_LOCK(&detached_requests_mutex);
  967. _starpu_mpi_req_list_push_front(detached_requests, req);
  968. STARPU_PTHREAD_MUTEX_UNLOCK(&detached_requests_mutex);
  969. starpu_wake_all_blocked_workers();
  970. STARPU_PTHREAD_MUTEX_LOCK(&mutex);
  971. STARPU_PTHREAD_COND_SIGNAL(&cond_progression);
  972. STARPU_PTHREAD_MUTEX_UNLOCK(&mutex);
  973. }
  974. }
  975. static void _starpu_mpi_handle_ready_request(struct _starpu_mpi_req *req)
  976. {
  977. _STARPU_MPI_LOG_IN();
  978. STARPU_MPI_ASSERT_MSG(req, "Invalid request");
  979. /* submit the request to MPI */
  980. _STARPU_MPI_DEBUG(2, "Handling new request %p type %s tag %d src %d data %p ptr %p datatype '%s' count %d registered_datatype %d \n",
  981. req, _starpu_mpi_request_type(req->request_type), req->node_tag.data_tag, req->node_tag.rank, req->data_handle, req->ptr, req->datatype_name, (int)req->count, req->registered_datatype);
  982. req->func(req);
  983. _STARPU_MPI_LOG_OUT();
  984. }
  985. static void _starpu_mpi_print_thread_level_support(int thread_level, char *msg)
  986. {
  987. switch (thread_level)
  988. {
  989. case MPI_THREAD_SERIALIZED:
  990. {
  991. _STARPU_DISP("MPI%s MPI_THREAD_SERIALIZED; Multiple threads may make MPI calls, but only one at a time.\n", msg);
  992. break;
  993. }
  994. case MPI_THREAD_FUNNELED:
  995. {
  996. _STARPU_DISP("MPI%s MPI_THREAD_FUNNELED; The application can safely make calls to StarPU-MPI functions, but should not call directly MPI communication functions.\n", msg);
  997. break;
  998. }
  999. case MPI_THREAD_SINGLE:
  1000. {
  1001. _STARPU_DISP("MPI%s MPI_THREAD_SINGLE; MPI does not have multi-thread support, this might cause problems. The application can make calls to StarPU-MPI functions, but not call directly MPI Communication functions.\n", msg);
  1002. break;
  1003. }
  1004. }
  1005. }
  1006. static void _starpu_mpi_receive_early_data(struct _starpu_mpi_envelope *envelope, MPI_Status status, MPI_Comm comm)
  1007. {
  1008. _STARPU_MPI_DEBUG(20, "Request with tag %d and source %d not found, creating a early_data_handle to receive incoming data..\n", envelope->data_tag, status.MPI_SOURCE);
  1009. _STARPU_MPI_DEBUG(20, "Request sync %d\n", envelope->sync);
  1010. struct _starpu_mpi_early_data_handle* early_data_handle = _starpu_mpi_early_data_create(envelope, status.MPI_SOURCE, comm);
  1011. _starpu_mpi_early_data_add(early_data_handle);
  1012. starpu_data_handle_t data_handle = NULL;
  1013. STARPU_PTHREAD_MUTEX_UNLOCK(&mutex);
  1014. data_handle = _starpu_mpi_data_get_data_handle_from_tag(envelope->data_tag);
  1015. STARPU_PTHREAD_MUTEX_LOCK(&mutex);
  1016. if (data_handle && starpu_data_get_interface_id(data_handle) < STARPU_MAX_INTERFACE_ID)
  1017. {
  1018. /* We know which data will receive it and we won't have to unpack, use just the same kind of data. */
  1019. early_data_handle->buffer = NULL;
  1020. starpu_data_register_same(&early_data_handle->handle, data_handle);
  1021. //_starpu_mpi_early_data_add(early_data_handle);
  1022. }
  1023. else
  1024. {
  1025. /* The application has not registered yet a data with the tag,
  1026. * we are going to receive the data as a raw memory, and give it
  1027. * to the application when it post a receive for this tag
  1028. */
  1029. _STARPU_MPI_DEBUG(3, "Posting a receive for a data of size %d which has not yet been registered\n", (int)early_data_handle->env->size);
  1030. early_data_handle->buffer = malloc(early_data_handle->env->size);
  1031. starpu_variable_data_register(&early_data_handle->handle, STARPU_MAIN_RAM, (uintptr_t) early_data_handle->buffer, early_data_handle->env->size);
  1032. //_starpu_mpi_early_data_add(early_data_handle);
  1033. }
  1034. _STARPU_MPI_DEBUG(20, "Posting internal detached irecv on early_data_handle with tag %d from comm %d src %d ..\n", early_data_handle->node_tag.data_tag, comm, status.MPI_SOURCE);
  1035. STARPU_PTHREAD_MUTEX_UNLOCK(&mutex);
  1036. early_data_handle->req = _starpu_mpi_irecv_common(early_data_handle->handle, status.MPI_SOURCE,
  1037. early_data_handle->node_tag.data_tag, comm, 1, 0,
  1038. NULL, NULL, 1, 1, envelope->size);
  1039. STARPU_PTHREAD_MUTEX_LOCK(&mutex);
  1040. // We wait until the request is pushed in the
  1041. // ready_request list, that ensures that the next loop
  1042. // will call _starpu_mpi_handle_ready_request
  1043. // on the request and post the corresponding mpi_irecv,
  1044. // otherwise, it may lead to read data as envelop
  1045. STARPU_PTHREAD_MUTEX_UNLOCK(&mutex);
  1046. STARPU_PTHREAD_MUTEX_LOCK(&(early_data_handle->req->posted_mutex));
  1047. while (!(early_data_handle->req->posted))
  1048. STARPU_PTHREAD_COND_WAIT(&(early_data_handle->req->posted_cond), &(early_data_handle->req->posted_mutex));
  1049. STARPU_PTHREAD_MUTEX_UNLOCK(&(early_data_handle->req->posted_mutex));
  1050. STARPU_PTHREAD_MUTEX_LOCK(&early_data_handle->req_mutex);
  1051. early_data_handle->req_ready = 1;
  1052. STARPU_PTHREAD_COND_BROADCAST(&early_data_handle->req_cond);
  1053. STARPU_PTHREAD_MUTEX_UNLOCK(&early_data_handle->req_mutex);
  1054. STARPU_PTHREAD_MUTEX_LOCK(&mutex);
  1055. }
  1056. static void _starpu_mpi_do_initialize(struct _starpu_mpi_argc_argv *argc_argv)
  1057. {
  1058. if (argc_argv->initialize_mpi)
  1059. {
  1060. int thread_support;
  1061. _STARPU_DEBUG("Calling MPI_Init_thread\n");
  1062. if (MPI_Init_thread(argc_argv->argc, argc_argv->argv, MPI_THREAD_SERIALIZED, &thread_support) != MPI_SUCCESS)
  1063. {
  1064. _STARPU_ERROR("MPI_Init_thread failed\n");
  1065. }
  1066. _starpu_mpi_print_thread_level_support(thread_support, "_Init_thread level =");
  1067. }
  1068. else
  1069. {
  1070. int provided;
  1071. MPI_Query_thread(&provided);
  1072. _starpu_mpi_print_thread_level_support(provided, " has been initialized with");
  1073. }
  1074. }
  1075. static void *_starpu_mpi_progress_thread_func(void *arg)
  1076. {
  1077. struct _starpu_mpi_argc_argv *argc_argv = (struct _starpu_mpi_argc_argv *) arg;
  1078. int rank, worldsize;
  1079. #ifndef STARPU_SIMGRID
  1080. _starpu_mpi_do_initialize(argc_argv);
  1081. #endif
  1082. MPI_Comm_rank(argc_argv->comm, &rank);
  1083. MPI_Comm_size(argc_argv->comm, &worldsize);
  1084. MPI_Comm_set_errhandler(argc_argv->comm, MPI_ERRORS_RETURN);
  1085. #ifdef STARPU_SIMGRID
  1086. _mpi_world_size = worldsize;
  1087. _mpi_world_rank = rank;
  1088. #endif
  1089. #ifdef STARPU_SIMGRID
  1090. /* Now that MPI is set up, let the rest of simgrid get initialized */
  1091. char ** argv_cpy = malloc(*(argc_argv->argc) * sizeof(char*));
  1092. int i;
  1093. for (i = 0; i < *(argc_argv->argc); i++)
  1094. argv_cpy[i] = strdup((*(argc_argv->argv))[i]);
  1095. MSG_process_create_with_arguments("main", smpi_simulated_main_, NULL, _starpu_simgrid_get_host_by_name("MAIN"), *(argc_argv->argc), argv_cpy);
  1096. /* And set TSD for us */
  1097. #ifdef HAVE_SMPI_PROCESS_SET_USER_DATA
  1098. smpi_process_set_user_data(calloc(MAX_TSD, sizeof(void*)));
  1099. #endif
  1100. #endif
  1101. #ifdef STARPU_USE_FXT
  1102. /* Wait for FxT initialization before emitting FxT probes */
  1103. STARPU_PTHREAD_MUTEX_LOCK(&_starpu_fxt_started_mutex);
  1104. while (!_starpu_fxt_started)
  1105. STARPU_PTHREAD_COND_WAIT(&_starpu_fxt_started_cond, &_starpu_fxt_started_mutex);
  1106. STARPU_PTHREAD_MUTEX_UNLOCK(&_starpu_fxt_started_mutex);
  1107. #endif //STARPU_USE_FXT
  1108. {
  1109. _STARPU_MPI_TRACE_START(rank, worldsize);
  1110. #ifdef STARPU_USE_FXT
  1111. starpu_profiling_set_id(rank);
  1112. #endif //STARPU_USE_FXT
  1113. }
  1114. _starpu_mpi_add_sync_point_in_fxt();
  1115. _starpu_mpi_comm_amounts_init(argc_argv->comm);
  1116. _starpu_mpi_cache_init(argc_argv->comm);
  1117. _starpu_mpi_select_node_init();
  1118. _starpu_mpi_tag_init();
  1119. _starpu_mpi_comm_init(argc_argv->comm);
  1120. _starpu_mpi_early_request_init();
  1121. _starpu_mpi_early_data_init();
  1122. _starpu_mpi_sync_data_init();
  1123. _starpu_mpi_datatype_init();
  1124. /* notify the main thread that the progression thread is ready */
  1125. STARPU_PTHREAD_MUTEX_LOCK(&mutex);
  1126. running = 1;
  1127. STARPU_PTHREAD_COND_SIGNAL(&cond_progression);
  1128. STARPU_PTHREAD_MUTEX_UNLOCK(&mutex);
  1129. STARPU_PTHREAD_MUTEX_LOCK(&mutex);
  1130. int envelope_request_submitted = 0;
  1131. while (running || posted_requests || !(_starpu_mpi_req_list_empty(ready_requests)) || !(_starpu_mpi_req_list_empty(detached_requests)))// || !(_starpu_mpi_early_request_count()) || !(_starpu_mpi_sync_data_count()))
  1132. {
  1133. /* shall we block ? */
  1134. unsigned block = _starpu_mpi_req_list_empty(ready_requests) && _starpu_mpi_early_request_count() == 0 && _starpu_mpi_sync_data_count() == 0;
  1135. #ifndef STARPU_MPI_ACTIVITY
  1136. STARPU_PTHREAD_MUTEX_LOCK(&detached_requests_mutex);
  1137. block = block && _starpu_mpi_req_list_empty(detached_requests);
  1138. STARPU_PTHREAD_MUTEX_UNLOCK(&detached_requests_mutex);
  1139. #endif /* STARPU_MPI_ACTIVITY */
  1140. #ifdef STARPU_SIMGRID
  1141. MSG_process_sleep(0.000010);
  1142. #endif
  1143. if (block)
  1144. {
  1145. _STARPU_MPI_DEBUG(3, "NO MORE REQUESTS TO HANDLE\n");
  1146. _STARPU_MPI_TRACE_SLEEP_BEGIN();
  1147. if (barrier_running)
  1148. /* Tell mpi_barrier */
  1149. STARPU_PTHREAD_COND_SIGNAL(&cond_finished);
  1150. STARPU_PTHREAD_COND_WAIT(&cond_progression, &mutex);
  1151. _STARPU_MPI_TRACE_SLEEP_END();
  1152. }
  1153. /* get one request */
  1154. struct _starpu_mpi_req *req;
  1155. while (!_starpu_mpi_req_list_empty(ready_requests))
  1156. {
  1157. req = _starpu_mpi_req_list_pop_back(ready_requests);
  1158. /* handling a request is likely to block for a while
  1159. * (on a sync_data_with_mem call), we want to let the
  1160. * application submit requests in the meantime, so we
  1161. * release the lock. */
  1162. STARPU_PTHREAD_MUTEX_UNLOCK(&mutex);
  1163. _starpu_mpi_handle_ready_request(req);
  1164. STARPU_PTHREAD_MUTEX_LOCK(&mutex);
  1165. }
  1166. /* If there is no currently submitted envelope_request submitted to
  1167. * catch envelopes from senders, and there is some pending
  1168. * receive requests on our side, we resubmit a header request. */
  1169. if (((_starpu_mpi_early_request_count() > 0) || (_starpu_mpi_sync_data_count() > 0)) && (envelope_request_submitted == 0))// && (HASH_COUNT(_starpu_mpi_early_data_handle_hashmap) == 0))
  1170. {
  1171. _starpu_mpi_comm_post_recv();
  1172. envelope_request_submitted = 1;
  1173. }
  1174. /* test whether there are some terminated "detached request" */
  1175. STARPU_PTHREAD_MUTEX_UNLOCK(&mutex);
  1176. _starpu_mpi_test_detached_requests();
  1177. STARPU_PTHREAD_MUTEX_LOCK(&mutex);
  1178. if (envelope_request_submitted == 1)
  1179. {
  1180. int flag;
  1181. struct _starpu_mpi_envelope *envelope;
  1182. MPI_Status envelope_status;
  1183. MPI_Comm envelope_comm;
  1184. /* test whether an envelope has arrived. */
  1185. flag = _starpu_mpi_comm_test_recv(&envelope_status, &envelope, &envelope_comm);
  1186. if (flag)
  1187. {
  1188. _STARPU_MPI_DEBUG(4, "Envelope received with mode %d\n", envelope->mode);
  1189. if (envelope->mode == _STARPU_MPI_ENVELOPE_SYNC_READY)
  1190. {
  1191. struct _starpu_mpi_req *_sync_req = _starpu_mpi_sync_data_find(envelope->data_tag, envelope_status.MPI_SOURCE, envelope_comm);
  1192. _STARPU_MPI_DEBUG(20, "Sending data with tag %d to node %d\n", _sync_req->node_tag.data_tag, envelope_status.MPI_SOURCE);
  1193. STARPU_MPI_ASSERT_MSG(envelope->data_tag == _sync_req->node_tag.data_tag, "Tag mismatch (envelope %d != req %d)\n", envelope->data_tag, _sync_req->node_tag.data_tag);
  1194. STARPU_PTHREAD_MUTEX_UNLOCK(&mutex);
  1195. _starpu_mpi_isend_data_func(_sync_req);
  1196. STARPU_PTHREAD_MUTEX_LOCK(&mutex);
  1197. }
  1198. else
  1199. {
  1200. _STARPU_MPI_DEBUG(3, "Searching for application request with tag %d and source %d (size %ld)\n", envelope->data_tag, envelope_status.MPI_SOURCE, envelope->size);
  1201. struct _starpu_mpi_req *early_request = _starpu_mpi_early_request_dequeue(envelope->data_tag, envelope_status.MPI_SOURCE, envelope_comm);
  1202. /* Case: a data will arrive before a matching receive is
  1203. * posted by the application. Create a temporary handle to
  1204. * store the incoming data, submit a starpu_mpi_irecv_detached
  1205. * on this handle, and store it as an early_data
  1206. */
  1207. if (early_request == NULL)
  1208. {
  1209. if (envelope->sync)
  1210. {
  1211. _STARPU_MPI_DEBUG(2000, "-------------------------> adding request for tag %d\n", envelope->data_tag);
  1212. struct _starpu_mpi_req *new_req;
  1213. #ifdef STARPU_DEVEL
  1214. #warning creating a request is not really useful.
  1215. #endif
  1216. /* Initialize the request structure */
  1217. _starpu_mpi_request_init(&new_req);
  1218. new_req->request_type = RECV_REQ;
  1219. new_req->data_handle = NULL;
  1220. new_req->node_tag.rank = envelope_status.MPI_SOURCE;
  1221. new_req->node_tag.data_tag = envelope->data_tag;
  1222. new_req->node_tag.comm = envelope_comm;
  1223. new_req->detached = 1;
  1224. new_req->sync = 1;
  1225. new_req->callback = NULL;
  1226. new_req->callback_arg = NULL;
  1227. new_req->func = _starpu_mpi_irecv_data_func;
  1228. new_req->sequential_consistency = 1;
  1229. new_req->is_internal_req = 0; // ????
  1230. new_req->count = envelope->size;
  1231. _starpu_mpi_sync_data_add(new_req);
  1232. }
  1233. else
  1234. {
  1235. _starpu_mpi_receive_early_data(envelope, envelope_status, envelope_comm);
  1236. }
  1237. }
  1238. /* Case: a matching application request has been found for
  1239. * the incoming data, we handle the correct allocation
  1240. * of the pointer associated to the data handle, then
  1241. * submit the corresponding receive with
  1242. * _starpu_mpi_handle_ready_request. */
  1243. else
  1244. {
  1245. _STARPU_MPI_DEBUG(2000, "A matching application request has been found for the incoming data with tag %d\n", envelope->data_tag);
  1246. _STARPU_MPI_DEBUG(2000, "Request sync %d\n", envelope->sync);
  1247. early_request->sync = envelope->sync;
  1248. _starpu_mpi_handle_allocate_datatype(early_request->data_handle, early_request);
  1249. if (early_request->registered_datatype == 1)
  1250. {
  1251. early_request->count = 1;
  1252. early_request->ptr = starpu_data_get_local_ptr(early_request->data_handle);
  1253. }
  1254. else
  1255. {
  1256. early_request->count = envelope->size;
  1257. early_request->ptr = malloc(early_request->count);
  1258. STARPU_MPI_ASSERT_MSG(early_request->ptr, "cannot allocate message of size %ld\n", early_request->count);
  1259. }
  1260. _STARPU_MPI_DEBUG(3, "Handling new request... \n");
  1261. /* handling a request is likely to block for a while
  1262. * (on a sync_data_with_mem call), we want to let the
  1263. * application submit requests in the meantime, so we
  1264. * release the lock. */
  1265. STARPU_PTHREAD_MUTEX_UNLOCK(&mutex);
  1266. _starpu_mpi_handle_ready_request(early_request);
  1267. STARPU_PTHREAD_MUTEX_LOCK(&mutex);
  1268. }
  1269. }
  1270. envelope_request_submitted = 0;
  1271. }
  1272. else
  1273. {
  1274. //_STARPU_MPI_DEBUG(4, "Nothing received, continue ..\n");
  1275. }
  1276. }
  1277. }
  1278. if (envelope_request_submitted)
  1279. {
  1280. _starpu_mpi_comm_cancel_recv();
  1281. envelope_request_submitted = 0;
  1282. }
  1283. STARPU_MPI_ASSERT_MSG(_starpu_mpi_req_list_empty(detached_requests), "List of detached requests not empty");
  1284. STARPU_MPI_ASSERT_MSG(_starpu_mpi_req_list_empty(ready_requests), "List of ready requests not empty");
  1285. STARPU_MPI_ASSERT_MSG(posted_requests == 0, "Number of posted request is not zero");
  1286. _starpu_mpi_early_request_check_termination();
  1287. _starpu_mpi_early_data_check_termination();
  1288. _starpu_mpi_sync_data_check_termination();
  1289. if (argc_argv->initialize_mpi)
  1290. {
  1291. _STARPU_MPI_DEBUG(3, "Calling MPI_Finalize()\n");
  1292. MPI_Finalize();
  1293. }
  1294. STARPU_PTHREAD_MUTEX_UNLOCK(&mutex);
  1295. _starpu_mpi_sync_data_free();
  1296. _starpu_mpi_early_data_free();
  1297. _starpu_mpi_early_request_free();
  1298. _starpu_mpi_datatype_free();
  1299. free(argc_argv);
  1300. return NULL;
  1301. }
  1302. /********************************************************/
  1303. /* */
  1304. /* (De)Initialization methods */
  1305. /* */
  1306. /********************************************************/
  1307. #ifdef STARPU_MPI_ACTIVITY
  1308. static int hookid = - 1;
  1309. #endif /* STARPU_MPI_ACTIVITY */
  1310. static void _starpu_mpi_add_sync_point_in_fxt(void)
  1311. {
  1312. #ifdef STARPU_USE_FXT
  1313. int rank;
  1314. int worldsize;
  1315. int ret;
  1316. starpu_mpi_comm_rank(MPI_COMM_WORLD, &rank);
  1317. starpu_mpi_comm_size(MPI_COMM_WORLD, &worldsize);
  1318. ret = MPI_Barrier(MPI_COMM_WORLD);
  1319. STARPU_MPI_ASSERT_MSG(ret == MPI_SUCCESS, "MPI_Barrier returning %s", _starpu_mpi_get_mpi_error_code(ret));
  1320. /* We generate a "unique" key so that we can make sure that different
  1321. * FxT traces come from the same MPI run. */
  1322. int random_number;
  1323. /* XXX perhaps we don't want to generate a new seed if the application
  1324. * specified some reproductible behaviour ? */
  1325. if (rank == 0)
  1326. {
  1327. srand(time(NULL));
  1328. random_number = rand();
  1329. }
  1330. ret = MPI_Bcast(&random_number, 1, MPI_INT, 0, MPI_COMM_WORLD);
  1331. STARPU_MPI_ASSERT_MSG(ret == MPI_SUCCESS, "MPI_Bcast returning %s", _starpu_mpi_get_mpi_error_code(ret));
  1332. _STARPU_MPI_TRACE_BARRIER(rank, worldsize, random_number);
  1333. _STARPU_MPI_DEBUG(3, "unique key %x\n", random_number);
  1334. #endif
  1335. }
  1336. static
  1337. int _starpu_mpi_initialize(int *argc, char ***argv, int initialize_mpi, MPI_Comm comm)
  1338. {
  1339. struct _starpu_mpi_argc_argv *argc_argv = malloc(sizeof(struct _starpu_mpi_argc_argv));
  1340. argc_argv->initialize_mpi = initialize_mpi;
  1341. argc_argv->argc = argc;
  1342. argc_argv->argv = argv;
  1343. argc_argv->comm = comm;
  1344. #ifdef STARPU_SIMGRID
  1345. /* Call MPI_Init_thread as early as possible, to initialize simgrid
  1346. * before working with mutexes etc. */
  1347. _starpu_mpi_do_initialize(argc_argv);
  1348. #endif
  1349. STARPU_PTHREAD_MUTEX_INIT(&mutex, NULL);
  1350. STARPU_PTHREAD_COND_INIT(&cond_progression, NULL);
  1351. STARPU_PTHREAD_COND_INIT(&cond_finished, NULL);
  1352. ready_requests = _starpu_mpi_req_list_new();
  1353. STARPU_PTHREAD_MUTEX_INIT(&detached_requests_mutex, NULL);
  1354. detached_requests = _starpu_mpi_req_list_new();
  1355. STARPU_PTHREAD_MUTEX_INIT(&mutex_posted_requests, NULL);
  1356. _starpu_mpi_comm = starpu_getenv("STARPU_MPI_COMM") != NULL;
  1357. #ifdef STARPU_MPI_ACTIVITY
  1358. hookid = starpu_progression_hook_register(_starpu_mpi_progression_hook_func, NULL);
  1359. STARPU_MPI_ASSERT_MSG(hookid >= 0, "starpu_progression_hook_register failed");
  1360. #endif /* STARPU_MPI_ACTIVITY */
  1361. #ifdef STARPU_SIMGRID
  1362. _starpu_mpi_progress_thread_func(argc_argv);
  1363. return 0;
  1364. #else
  1365. STARPU_PTHREAD_CREATE(&progress_thread, NULL, _starpu_mpi_progress_thread_func, argc_argv);
  1366. STARPU_PTHREAD_MUTEX_LOCK(&mutex);
  1367. while (!running)
  1368. STARPU_PTHREAD_COND_WAIT(&cond_progression, &mutex);
  1369. STARPU_PTHREAD_MUTEX_UNLOCK(&mutex);
  1370. return 0;
  1371. #endif
  1372. }
  1373. #ifdef STARPU_SIMGRID
  1374. /* This is called before application's main, to initialize SMPI before we can
  1375. * create MSG processes to run application's main */
  1376. int _starpu_mpi_simgrid_init(int argc, char *argv[])
  1377. {
  1378. return _starpu_mpi_initialize(&argc, &argv, 1, MPI_COMM_WORLD);
  1379. }
  1380. #endif
  1381. int starpu_mpi_init_comm(int *argc STARPU_ATTRIBUTE_UNUSED, char ***argv STARPU_ATTRIBUTE_UNUSED, int initialize_mpi STARPU_ATTRIBUTE_UNUSED, MPI_Comm comm STARPU_ATTRIBUTE_UNUSED)
  1382. {
  1383. #ifdef STARPU_SIMGRID
  1384. /* Wait for MPI initialization to finish */
  1385. STARPU_PTHREAD_MUTEX_LOCK(&mutex);
  1386. while (!running)
  1387. STARPU_PTHREAD_COND_WAIT(&cond_progression, &mutex);
  1388. STARPU_PTHREAD_MUTEX_UNLOCK(&mutex);
  1389. return 0;
  1390. #else
  1391. return _starpu_mpi_initialize(argc, argv, initialize_mpi, comm);
  1392. #endif
  1393. }
  1394. int starpu_mpi_init(int *argc, char ***argv, int initialize_mpi)
  1395. {
  1396. return starpu_mpi_init_comm(argc, argv, initialize_mpi, MPI_COMM_WORLD);
  1397. }
  1398. int starpu_mpi_initialize(void)
  1399. {
  1400. #ifdef STARPU_SIMGRID
  1401. return 0;
  1402. #else
  1403. return _starpu_mpi_initialize(NULL, NULL, 0, MPI_COMM_WORLD);
  1404. #endif
  1405. }
  1406. int starpu_mpi_initialize_extended(int *rank, int *world_size)
  1407. {
  1408. #ifdef STARPU_SIMGRID
  1409. *world_size = _mpi_world_size;
  1410. *rank = _mpi_world_rank;
  1411. return 0;
  1412. #else
  1413. int ret;
  1414. ret = _starpu_mpi_initialize(NULL, NULL, 1, MPI_COMM_WORLD);
  1415. if (ret == 0)
  1416. {
  1417. _STARPU_DEBUG("Calling MPI_Comm_rank\n");
  1418. MPI_Comm_rank(MPI_COMM_WORLD, rank);
  1419. MPI_Comm_size(MPI_COMM_WORLD, world_size);
  1420. }
  1421. return ret;
  1422. #endif
  1423. }
  1424. int starpu_mpi_shutdown(void)
  1425. {
  1426. void *value;
  1427. int rank, world_size;
  1428. /* We need to get the rank before calling MPI_Finalize to pass to _starpu_mpi_comm_amounts_display() */
  1429. starpu_mpi_comm_rank(MPI_COMM_WORLD, &rank);
  1430. starpu_mpi_comm_size(MPI_COMM_WORLD, &world_size);
  1431. /* kill the progression thread */
  1432. STARPU_PTHREAD_MUTEX_LOCK(&mutex);
  1433. running = 0;
  1434. STARPU_PTHREAD_COND_BROADCAST(&cond_progression);
  1435. STARPU_PTHREAD_MUTEX_UNLOCK(&mutex);
  1436. #ifndef STARPU_SIMGRID
  1437. starpu_pthread_join(progress_thread, &value);
  1438. #else
  1439. /* FIXME: should rather properly wait for _starpu_mpi_progress_thread_func to finish */
  1440. MSG_process_sleep(1);
  1441. #endif
  1442. #ifdef STARPU_MPI_ACTIVITY
  1443. starpu_progression_hook_deregister(hookid);
  1444. #endif /* STARPU_MPI_ACTIVITY */
  1445. _STARPU_MPI_TRACE_STOP(rank, world_size);
  1446. /* free the request queues */
  1447. _starpu_mpi_req_list_delete(detached_requests);
  1448. _starpu_mpi_req_list_delete(ready_requests);
  1449. _starpu_mpi_comm_amounts_display(rank);
  1450. _starpu_mpi_comm_amounts_free();
  1451. _starpu_mpi_cache_free(world_size);
  1452. _starpu_mpi_tag_free();
  1453. _starpu_mpi_comm_free();
  1454. return 0;
  1455. }
  1456. void _starpu_mpi_clear_cache(starpu_data_handle_t data_handle)
  1457. {
  1458. _starpu_mpi_data_release_tag(data_handle);
  1459. struct _starpu_mpi_node_tag *mpi_data = data_handle->mpi_data;
  1460. _starpu_mpi_cache_flush(mpi_data->comm, data_handle);
  1461. free(data_handle->mpi_data);
  1462. }
  1463. void starpu_mpi_data_register_comm(starpu_data_handle_t data_handle, int tag, int rank, MPI_Comm comm)
  1464. {
  1465. struct _starpu_mpi_node_tag *mpi_data;
  1466. if (data_handle->mpi_data)
  1467. {
  1468. mpi_data = data_handle->mpi_data;
  1469. }
  1470. else
  1471. {
  1472. mpi_data = calloc(1, sizeof(struct _starpu_mpi_node_tag));
  1473. mpi_data->data_tag = -1;
  1474. mpi_data->rank = -1;
  1475. mpi_data->comm = MPI_COMM_WORLD;
  1476. data_handle->mpi_data = mpi_data;
  1477. _starpu_mpi_data_register_tag(data_handle, tag);
  1478. _starpu_data_set_unregister_hook(data_handle, _starpu_mpi_clear_cache);
  1479. }
  1480. if (tag != -1)
  1481. {
  1482. mpi_data->data_tag = tag;
  1483. }
  1484. if (rank != -1)
  1485. {
  1486. mpi_data->rank = rank;
  1487. mpi_data->comm = comm;
  1488. _starpu_mpi_comm_register(comm);
  1489. }
  1490. }
  1491. void starpu_mpi_data_set_rank_comm(starpu_data_handle_t handle, int rank, MPI_Comm comm)
  1492. {
  1493. starpu_mpi_data_register_comm(handle, -1, rank, comm);
  1494. }
  1495. void starpu_mpi_data_set_tag(starpu_data_handle_t handle, int tag)
  1496. {
  1497. starpu_mpi_data_register_comm(handle, tag, -1, MPI_COMM_WORLD);
  1498. }
  1499. int starpu_mpi_data_get_rank(starpu_data_handle_t data)
  1500. {
  1501. STARPU_ASSERT_MSG(data->mpi_data, "starpu_mpi_data_register MUST be called for data %p\n", data);
  1502. return ((struct _starpu_mpi_node_tag *)(data->mpi_data))->rank;
  1503. }
  1504. int starpu_mpi_data_get_tag(starpu_data_handle_t data)
  1505. {
  1506. STARPU_ASSERT_MSG(data->mpi_data, "starpu_mpi_data_register MUST be called for data %p\n", data);
  1507. return ((struct _starpu_mpi_node_tag *)(data->mpi_data))->data_tag;
  1508. }
  1509. void starpu_mpi_get_data_on_node_detached(MPI_Comm comm, starpu_data_handle_t data_handle, int node, void (*callback)(void*), void *arg)
  1510. {
  1511. int me, rank, tag;
  1512. rank = starpu_mpi_data_get_rank(data_handle);
  1513. tag = starpu_mpi_data_get_tag(data_handle);
  1514. if (rank == -1)
  1515. {
  1516. _STARPU_ERROR("StarPU needs to be told the MPI rank of this data, using starpu_mpi_data_register() or starpu_mpi_data_register()\n");
  1517. }
  1518. if (tag == -1)
  1519. {
  1520. _STARPU_ERROR("StarPU needs to be told the MPI tag of this data, using starpu_mpi_data_register() or starpu_mpi_data_register()\n");
  1521. }
  1522. starpu_mpi_comm_rank(comm, &me);
  1523. if (node == rank) return;
  1524. if (me == node)
  1525. {
  1526. _STARPU_MPI_DEBUG(1, "Migrating data %p from %d to %d\n", data_handle, rank, node);
  1527. void *already_received = _starpu_mpi_cache_received_data_set(data_handle, rank);
  1528. if (already_received == NULL)
  1529. {
  1530. _STARPU_MPI_DEBUG(1, "Receiving data %p from %d\n", data_handle, rank);
  1531. starpu_mpi_irecv_detached(data_handle, rank, tag, comm, callback, arg);
  1532. }
  1533. }
  1534. else if (me == rank)
  1535. {
  1536. _STARPU_MPI_DEBUG(1, "Migrating data %p from %d to %d\n", data_handle, rank, node);
  1537. void *already_sent = _starpu_mpi_cache_sent_data_set(data_handle, node);
  1538. if (already_sent == NULL)
  1539. {
  1540. _STARPU_MPI_DEBUG(1, "Sending data %p to %d\n", data_handle, node);
  1541. starpu_mpi_isend_detached(data_handle, node, tag, comm, NULL, NULL);
  1542. }
  1543. }
  1544. }
  1545. void starpu_mpi_get_data_on_node(MPI_Comm comm, starpu_data_handle_t data_handle, int node)
  1546. {
  1547. int me, rank, tag;
  1548. rank = starpu_mpi_data_get_rank(data_handle);
  1549. tag = starpu_mpi_data_get_tag(data_handle);
  1550. if (rank == -1)
  1551. {
  1552. fprintf(stderr,"StarPU needs to be told the MPI rank of this data, using starpu_mpi_data_register\n");
  1553. STARPU_ABORT();
  1554. }
  1555. if (tag == -1)
  1556. {
  1557. fprintf(stderr,"StarPU needs to be told the MPI tag of this data, using starpu_mpi_data_register\n");
  1558. STARPU_ABORT();
  1559. }
  1560. starpu_mpi_comm_rank(comm, &me);
  1561. if (node == rank) return;
  1562. if (me == node)
  1563. {
  1564. MPI_Status status;
  1565. _STARPU_MPI_DEBUG(1, "Migrating data %p from %d to %d\n", data_handle, rank, node);
  1566. void *already_received = _starpu_mpi_cache_received_data_set(data_handle, rank);
  1567. if (already_received == NULL)
  1568. {
  1569. _STARPU_MPI_DEBUG(1, "Receiving data %p from %d\n", data_handle, rank);
  1570. starpu_mpi_recv(data_handle, rank, tag, comm, &status);
  1571. }
  1572. }
  1573. else if (me == rank)
  1574. {
  1575. _STARPU_MPI_DEBUG(1, "Migrating data %p from %d to %d\n", data_handle, rank, node);
  1576. void *already_sent = _starpu_mpi_cache_sent_data_set(data_handle, node);
  1577. if (already_sent == NULL)
  1578. {
  1579. _STARPU_MPI_DEBUG(1, "Sending data %p to %d\n", data_handle, node);
  1580. starpu_mpi_send(data_handle, node, tag, comm);
  1581. }
  1582. }
  1583. }
  1584. void starpu_mpi_data_migrate(MPI_Comm comm, starpu_data_handle_t data, int new_rank)
  1585. {
  1586. int old_rank = starpu_mpi_data_get_rank(data);
  1587. if (new_rank == old_rank)
  1588. /* Already there */
  1589. return;
  1590. /* First submit data migration if it's not already on destination */
  1591. starpu_mpi_get_data_on_node_detached(comm, data, new_rank, NULL, NULL);
  1592. /* And note new owner */
  1593. starpu_mpi_data_set_rank_comm(data, new_rank, comm);
  1594. /* Flush cache in all other nodes */
  1595. /* TODO: Ideally we'd transmit the knowledge of who owns it */
  1596. starpu_mpi_cache_flush(comm, data);
  1597. return;
  1598. }
  1599. int starpu_mpi_comm_size(MPI_Comm comm, int *size)
  1600. {
  1601. #ifdef STARPU_SIMGRID
  1602. STARPU_MPI_ASSERT_MSG(comm == MPI_COMM_WORLD, "StarPU-SMPI only works with MPI_COMM_WORLD for now");
  1603. *size = _mpi_world_size;
  1604. return 0;
  1605. #else
  1606. return MPI_Comm_size(comm, size);
  1607. #endif
  1608. }
  1609. int starpu_mpi_comm_rank(MPI_Comm comm, int *rank)
  1610. {
  1611. #ifdef STARPU_SIMGRID
  1612. STARPU_MPI_ASSERT_MSG(comm == MPI_COMM_WORLD, "StarPU-SMPI only works with MPI_COMM_WORLD for now");
  1613. *rank = _mpi_world_rank;
  1614. return 0;
  1615. #else
  1616. return MPI_Comm_rank(comm, rank);
  1617. #endif
  1618. }
  1619. int starpu_mpi_world_size(void)
  1620. {
  1621. int size;
  1622. starpu_mpi_comm_size(MPI_COMM_WORLD, &size);
  1623. return size;
  1624. }
  1625. int starpu_mpi_world_rank(void)
  1626. {
  1627. int rank;
  1628. starpu_mpi_comm_rank(MPI_COMM_WORLD, &rank);
  1629. return rank;
  1630. }
  1631. int starpu_mpi_wait_for_all(MPI_Comm comm)
  1632. {
  1633. int mpi = 1;
  1634. int task = 1;
  1635. while (task || mpi)
  1636. {
  1637. task = _starpu_task_wait_for_all_and_return_nb_waited_tasks();
  1638. mpi = _starpu_mpi_barrier(comm);
  1639. }
  1640. return 0;
  1641. }