starpu_mpi.c 16 KB

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  1. /*
  2. * StarPU
  3. * Copyright (C) Université Bordeaux 1, CNRS 2008-2010 (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 <stdlib.h>
  17. #include <starpu_mpi.h>
  18. #include <starpu_mpi_datatype.h>
  19. #include <starpu_mpi_private.h>
  20. //#define STARPU_MPI_VERBOSE 1
  21. #ifdef STARPU_MPI_VERBOSE
  22. # define _STARPU_MPI_DEBUG(fmt, args ...) { int rank; MPI_Comm_rank(MPI_COMM_WORLD, &rank); \
  23. fprintf(stderr, "[%d][starpu_mpi][%s] " fmt , rank, __func__ ,##args); \
  24. fflush(stderr); }
  25. #else
  26. # define _STARPU_MPI_DEBUG(fmt, args ...)
  27. #endif
  28. /* TODO find a better way to select the polling method (perhaps during the
  29. * configuration) */
  30. //#define USE_STARPU_ACTIVITY 1
  31. static void submit_mpi_req(void *arg);
  32. static void handle_request_termination(struct starpu_mpi_req_s *req);
  33. /* The list of requests that have been newly submitted by the application */
  34. static starpu_mpi_req_list_t new_requests;
  35. /* The list of detached requests that have already been submitted to MPI */
  36. static starpu_mpi_req_list_t detached_requests;
  37. static pthread_mutex_t detached_requests_mutex;
  38. static pthread_cond_t cond;
  39. static pthread_mutex_t mutex;
  40. static pthread_t progress_thread;
  41. static int running = 0;
  42. /*
  43. * Isend
  44. */
  45. static void starpu_mpi_isend_func(struct starpu_mpi_req_s *req)
  46. {
  47. void *ptr = starpu_mpi_handle_to_ptr(req->data_handle);
  48. _STARPU_MPI_DEBUG("post MPI isend tag %x dst %d ptr %p req %p\n", req->mpi_tag, req->srcdst, ptr, &req->request);
  49. starpu_mpi_handle_to_datatype(req->data_handle, &req->datatype);
  50. //MPI_Isend(ptr, 1, req->datatype, req->srcdst, req->mpi_tag, req->comm, &req->request);
  51. MPI_Isend(ptr, 1, req->datatype, req->srcdst, req->mpi_tag, req->comm, &req->request);
  52. TRACE_MPI_ISEND(req->srcdst, req->mpi_tag, 0);
  53. /* somebody is perhaps waiting for the MPI request to be posted */
  54. PTHREAD_MUTEX_LOCK(&req->req_mutex);
  55. req->submitted = 1;
  56. PTHREAD_COND_BROADCAST(&req->req_cond);
  57. PTHREAD_MUTEX_UNLOCK(&req->req_mutex);
  58. }
  59. static struct starpu_mpi_req_s *_starpu_mpi_isend_common(starpu_data_handle data_handle,
  60. int dest, int mpi_tag, MPI_Comm comm,
  61. unsigned detached, void (*callback)(void *), void *arg)
  62. {
  63. struct starpu_mpi_req_s *req = calloc(1, sizeof(struct starpu_mpi_req_s));
  64. STARPU_ASSERT(req);
  65. /* Initialize the request structure */
  66. req->submitted = 0;
  67. req->completed = 0;
  68. PTHREAD_MUTEX_INIT(&req->req_mutex, NULL);
  69. PTHREAD_COND_INIT(&req->req_cond, NULL);
  70. req->request_type = SEND_REQ;
  71. req->data_handle = data_handle;
  72. req->srcdst = dest;
  73. req->mpi_tag = mpi_tag;
  74. req->comm = comm;
  75. req->func = starpu_mpi_isend_func;
  76. req->detached = detached;
  77. req->callback = callback;
  78. req->callback_arg = arg;
  79. /* Asynchronously request StarPU to fetch the data in main memory: when
  80. * it is available in main memory, submit_mpi_req(req) is called and
  81. * the request is actually submitted */
  82. starpu_data_acquire_cb(data_handle, STARPU_R,
  83. submit_mpi_req, (void *)req);
  84. return req;
  85. }
  86. int starpu_mpi_isend(starpu_data_handle data_handle, starpu_mpi_req *public_req, int dest, int mpi_tag, MPI_Comm comm)
  87. {
  88. STARPU_ASSERT(public_req);
  89. struct starpu_mpi_req_s *req;
  90. req = _starpu_mpi_isend_common(data_handle, dest, mpi_tag, comm, 0, NULL, NULL);
  91. STARPU_ASSERT(req);
  92. *public_req = req;
  93. return 0;
  94. }
  95. /*
  96. * Isend (detached)
  97. */
  98. int starpu_mpi_isend_detached(starpu_data_handle data_handle,
  99. int dest, int mpi_tag, MPI_Comm comm, void (*callback)(void *), void *arg)
  100. {
  101. _starpu_mpi_isend_common(data_handle, dest, mpi_tag, comm, 1, callback, arg);
  102. return 0;
  103. }
  104. /*
  105. * Irecv
  106. */
  107. static void starpu_mpi_irecv_func(struct starpu_mpi_req_s *req)
  108. {
  109. void *ptr = starpu_mpi_handle_to_ptr(req->data_handle);
  110. STARPU_ASSERT(ptr);
  111. starpu_mpi_handle_to_datatype(req->data_handle, &req->datatype);
  112. _STARPU_MPI_DEBUG("post MPI irecv tag %x src %d ptr %p req %p datatype %d\n", req->mpi_tag, req->srcdst, ptr, &req->request, req->datatype);
  113. MPI_Irecv(ptr, 1, req->datatype, req->srcdst, req->mpi_tag, req->comm, &req->request);
  114. /* somebody is perhaps waiting for the MPI request to be posted */
  115. PTHREAD_MUTEX_LOCK(&req->req_mutex);
  116. req->submitted = 1;
  117. PTHREAD_COND_BROADCAST(&req->req_cond);
  118. PTHREAD_MUTEX_UNLOCK(&req->req_mutex);
  119. }
  120. static struct starpu_mpi_req_s *_starpu_mpi_irecv_common(starpu_data_handle data_handle, int source, int mpi_tag, MPI_Comm comm, unsigned detached, void (*callback)(void *), void *arg)
  121. {
  122. struct starpu_mpi_req_s *req = calloc(1, sizeof(struct starpu_mpi_req_s));
  123. STARPU_ASSERT(req);
  124. /* Initialize the request structure */
  125. req->submitted = 0;
  126. PTHREAD_MUTEX_INIT(&req->req_mutex, NULL);
  127. PTHREAD_COND_INIT(&req->req_cond, NULL);
  128. req->request_type = RECV_REQ;
  129. req->data_handle = data_handle;
  130. req->srcdst = source;
  131. req->mpi_tag = mpi_tag;
  132. req->comm = comm;
  133. req->detached = detached;
  134. req->callback = callback;
  135. req->callback_arg = arg;
  136. req->func = starpu_mpi_irecv_func;
  137. /* Asynchronously request StarPU to fetch the data in main memory: when
  138. * it is available in main memory, submit_mpi_req(req) is called and
  139. * the request is actually submitted */
  140. starpu_data_acquire_cb(data_handle, STARPU_W,
  141. submit_mpi_req, (void *)req);
  142. return req;
  143. }
  144. int starpu_mpi_irecv(starpu_data_handle data_handle, starpu_mpi_req *public_req, int source, int mpi_tag, MPI_Comm comm)
  145. {
  146. STARPU_ASSERT(public_req);
  147. struct starpu_mpi_req_s *req;
  148. req = _starpu_mpi_irecv_common(data_handle, source, mpi_tag, comm, 0, NULL, NULL);
  149. STARPU_ASSERT(req);
  150. *public_req = req;
  151. return 0;
  152. }
  153. /*
  154. * Irecv (detached)
  155. */
  156. int starpu_mpi_irecv_detached(starpu_data_handle data_handle, int source, int mpi_tag, MPI_Comm comm, void (*callback)(void *), void *arg)
  157. {
  158. _starpu_mpi_irecv_common(data_handle, source, mpi_tag, comm, 1, callback, arg);
  159. return 0;
  160. }
  161. /*
  162. * Recv
  163. */
  164. int starpu_mpi_recv(starpu_data_handle data_handle,
  165. int source, int mpi_tag, MPI_Comm comm, MPI_Status *status)
  166. {
  167. starpu_mpi_req req;
  168. starpu_mpi_irecv(data_handle, &req, source, mpi_tag, comm);
  169. starpu_mpi_wait(&req, status);
  170. return 0;
  171. }
  172. /*
  173. * Send
  174. */
  175. int starpu_mpi_send(starpu_data_handle data_handle,
  176. int dest, int mpi_tag, MPI_Comm comm)
  177. {
  178. starpu_mpi_req req;
  179. MPI_Status status;
  180. memset(&status, 0, sizeof(MPI_Status));
  181. starpu_mpi_isend(data_handle, &req, dest, mpi_tag, comm);
  182. starpu_mpi_wait(&req, &status);
  183. return 0;
  184. }
  185. /*
  186. * Wait
  187. */
  188. static void starpu_mpi_wait_func(struct starpu_mpi_req_s *waiting_req)
  189. {
  190. /* Which is the mpi request we are waiting for ? */
  191. struct starpu_mpi_req_s *req = waiting_req->other_request;
  192. req->ret = MPI_Wait(&req->request, waiting_req->status);
  193. handle_request_termination(req);
  194. }
  195. int starpu_mpi_wait(starpu_mpi_req *public_req, MPI_Status *status)
  196. {
  197. int ret;
  198. struct starpu_mpi_req_s waiting_req;
  199. memset(&waiting_req, 0, sizeof(struct starpu_mpi_req_s));
  200. struct starpu_mpi_req_s *req = *public_req;
  201. /* We cannot try to complete a MPI request that was not actually posted
  202. * to MPI yet. */
  203. PTHREAD_MUTEX_LOCK(&req->req_mutex);
  204. while (!req->submitted)
  205. PTHREAD_COND_WAIT(&req->req_cond, &req->req_mutex);
  206. PTHREAD_MUTEX_UNLOCK(&req->req_mutex);
  207. /* Initialize the request structure */
  208. PTHREAD_MUTEX_INIT(&waiting_req.req_mutex, NULL);
  209. PTHREAD_COND_INIT(&waiting_req.req_cond, NULL);
  210. waiting_req.status = status;
  211. waiting_req.other_request = req;
  212. waiting_req.func = starpu_mpi_wait_func;
  213. waiting_req.request_type = WAIT_REQ;
  214. submit_mpi_req(&waiting_req);
  215. /* We wait for the MPI request to finish */
  216. PTHREAD_MUTEX_LOCK(&req->req_mutex);
  217. while (!req->completed)
  218. PTHREAD_COND_WAIT(&req->req_cond, &req->req_mutex);
  219. PTHREAD_MUTEX_UNLOCK(&req->req_mutex);
  220. ret = req->ret;
  221. /* The internal request structure was automatically allocated */
  222. *public_req = NULL;
  223. free(req);
  224. return ret;
  225. }
  226. /*
  227. * Test
  228. */
  229. static void starpu_mpi_test_func(struct starpu_mpi_req_s *testing_req)
  230. {
  231. /* Which is the mpi request we are testing for ? */
  232. struct starpu_mpi_req_s *req = testing_req->other_request;
  233. _STARPU_MPI_DEBUG("Test request %p - mpitag %x - TYPE %s %d\n", &req->request, req->mpi_tag, (req->request_type == RECV_REQ)?"recv : source":"send : dest", req->srcdst);
  234. int ret = MPI_Test(&req->request, testing_req->flag, testing_req->status);
  235. if (*testing_req->flag)
  236. {
  237. testing_req->ret = ret;
  238. handle_request_termination(req);
  239. }
  240. PTHREAD_MUTEX_LOCK(&testing_req->req_mutex);
  241. testing_req->completed = 1;
  242. pthread_cond_signal(&testing_req->req_cond);
  243. PTHREAD_MUTEX_UNLOCK(&testing_req->req_mutex);
  244. }
  245. int starpu_mpi_test(starpu_mpi_req *public_req, int *flag, MPI_Status *status)
  246. {
  247. int ret = 0;
  248. STARPU_ASSERT(public_req);
  249. struct starpu_mpi_req_s *req = *public_req;
  250. STARPU_ASSERT(!req->detached);
  251. PTHREAD_MUTEX_LOCK(&req->req_mutex);
  252. unsigned submitted = req->submitted;
  253. PTHREAD_MUTEX_UNLOCK(&req->req_mutex);
  254. if (submitted)
  255. {
  256. struct starpu_mpi_req_s testing_req;
  257. memset(&testing_req, 0, sizeof(struct starpu_mpi_req_s));
  258. /* Initialize the request structure */
  259. PTHREAD_MUTEX_INIT(&testing_req.req_mutex, NULL);
  260. PTHREAD_COND_INIT(&testing_req.req_cond, NULL);
  261. testing_req.flag = flag;
  262. testing_req.status = status;
  263. testing_req.other_request = req;
  264. testing_req.func = starpu_mpi_test_func;
  265. testing_req.completed = 0;
  266. testing_req.request_type = TEST_REQ;
  267. submit_mpi_req(&testing_req);
  268. /* We wait for the test request to finish */
  269. PTHREAD_MUTEX_LOCK(&testing_req.req_mutex);
  270. while (!testing_req.completed)
  271. PTHREAD_COND_WAIT(&testing_req.req_cond, &testing_req.req_mutex);
  272. PTHREAD_MUTEX_UNLOCK(&testing_req.req_mutex);
  273. ret = testing_req.ret;
  274. if (*testing_req.flag)
  275. {
  276. /* The request was completed so we free the internal
  277. * request structure which was automatically allocated
  278. * */
  279. *public_req = NULL;
  280. free(req);
  281. }
  282. }
  283. else {
  284. *flag = 0;
  285. }
  286. return ret;
  287. }
  288. /*
  289. * Requests
  290. */
  291. static void handle_request_termination(struct starpu_mpi_req_s *req)
  292. {
  293. MPI_Type_free(&req->datatype);
  294. starpu_data_release(req->data_handle);
  295. _STARPU_MPI_DEBUG("complete MPI (%s %d) req %p - tag %x\n", (req->request_type == RECV_REQ)?"recv : source":"send : dest", req->srcdst, &req->request, req->mpi_tag);
  296. if (req->request_type == RECV_REQ)
  297. {
  298. TRACE_MPI_IRECV_END(req->srcdst, req->mpi_tag);
  299. }
  300. /* Execute the specified callback, if any */
  301. if (req->callback)
  302. req->callback(req->callback_arg);
  303. /* tell anyone potentiallly waiting on the request that it is
  304. * terminated now */
  305. PTHREAD_MUTEX_LOCK(&req->req_mutex);
  306. req->completed = 1;
  307. PTHREAD_COND_BROADCAST(&req->req_cond);
  308. PTHREAD_MUTEX_UNLOCK(&req->req_mutex);
  309. }
  310. static void submit_mpi_req(void *arg)
  311. {
  312. struct starpu_mpi_req_s *req = arg;
  313. PTHREAD_MUTEX_LOCK(&mutex);
  314. starpu_mpi_req_list_push_front(new_requests, req);
  315. PTHREAD_COND_BROADCAST(&cond);
  316. PTHREAD_MUTEX_UNLOCK(&mutex);
  317. }
  318. /*
  319. * Scheduler hook
  320. */
  321. static unsigned progression_hook_func(void *arg __attribute__((unused)))
  322. {
  323. unsigned may_block = 1;
  324. PTHREAD_MUTEX_LOCK(&mutex);
  325. if (!starpu_mpi_req_list_empty(detached_requests))
  326. {
  327. pthread_cond_signal(&cond);
  328. may_block = 0;
  329. }
  330. PTHREAD_MUTEX_UNLOCK(&mutex);
  331. return may_block;
  332. }
  333. /*
  334. * Progression loop
  335. */
  336. static void test_detached_requests(void)
  337. {
  338. int flag;
  339. MPI_Status status;
  340. struct starpu_mpi_req_s *req, *next_req;
  341. PTHREAD_MUTEX_LOCK(&detached_requests_mutex);
  342. for (req = starpu_mpi_req_list_begin(detached_requests);
  343. req != starpu_mpi_req_list_end(detached_requests);
  344. req = next_req)
  345. {
  346. next_req = starpu_mpi_req_list_next(req);
  347. PTHREAD_MUTEX_UNLOCK(&detached_requests_mutex);
  348. int ret = MPI_Test(&req->request, &flag, &status);
  349. STARPU_ASSERT(ret == MPI_SUCCESS);
  350. _STARPU_MPI_DEBUG("Test request %p - mpitag %x - TYPE %s %d\n", &req->request, req->mpi_tag, (req->request_type == RECV_REQ)?"recv : source":"send : dest", req->srcdst);
  351. if (flag)
  352. {
  353. handle_request_termination(req);
  354. }
  355. PTHREAD_MUTEX_LOCK(&detached_requests_mutex);
  356. if (flag)
  357. starpu_mpi_req_list_erase(detached_requests, req);
  358. #warning TODO fix memleak
  359. /* Detached requests are automatically allocated by the lib */
  360. //if (req->detached)
  361. // free(req);
  362. }
  363. PTHREAD_MUTEX_UNLOCK(&detached_requests_mutex);
  364. }
  365. static void handle_new_request(struct starpu_mpi_req_s *req)
  366. {
  367. STARPU_ASSERT(req);
  368. /* submit the request to MPI */
  369. req->func(req);
  370. if (req->detached)
  371. {
  372. PTHREAD_MUTEX_LOCK(&mutex);
  373. starpu_mpi_req_list_push_front(detached_requests, req);
  374. PTHREAD_MUTEX_UNLOCK(&mutex);
  375. starpu_wake_all_blocked_workers();
  376. /* put the submitted request into the list of pending requests
  377. * so that it can be handled by the progression mechanisms */
  378. PTHREAD_MUTEX_LOCK(&mutex);
  379. pthread_cond_signal(&cond);
  380. PTHREAD_MUTEX_UNLOCK(&mutex);
  381. }
  382. }
  383. static void *progress_thread_func(void *arg __attribute__((unused)))
  384. {
  385. /* notify the main thread that the progression thread is ready */
  386. PTHREAD_MUTEX_LOCK(&mutex);
  387. running = 1;
  388. pthread_cond_signal(&cond);
  389. PTHREAD_MUTEX_UNLOCK(&mutex);
  390. PTHREAD_MUTEX_LOCK(&mutex);
  391. while (running) {
  392. /* shall we block ? */
  393. unsigned block = starpu_mpi_req_list_empty(new_requests);
  394. #ifndef USE_STARPU_ACTIVITY
  395. block = block && starpu_mpi_req_list_empty(detached_requests);
  396. #endif
  397. if (block)
  398. {
  399. _STARPU_MPI_DEBUG("NO MORE REQUESTS TO HANDLE\n");
  400. PTHREAD_COND_WAIT(&cond, &mutex);
  401. }
  402. if (!running)
  403. break;
  404. /* test whether there are some terminated "detached request" */
  405. PTHREAD_MUTEX_UNLOCK(&mutex);
  406. test_detached_requests();
  407. PTHREAD_MUTEX_LOCK(&mutex);
  408. /* get one request */
  409. struct starpu_mpi_req_s *req;
  410. while (!starpu_mpi_req_list_empty(new_requests))
  411. {
  412. req = starpu_mpi_req_list_pop_back(new_requests);
  413. /* handling a request is likely to block for a while
  414. * (on a sync_data_with_mem call), we want to let the
  415. * application submit requests in the meantime, so we
  416. * release the lock. */
  417. PTHREAD_MUTEX_UNLOCK(&mutex);
  418. handle_new_request(req);
  419. PTHREAD_MUTEX_LOCK(&mutex);
  420. }
  421. }
  422. PTHREAD_MUTEX_UNLOCK(&mutex);
  423. return NULL;
  424. }
  425. /*
  426. * (De)Initialization methods
  427. */
  428. #ifdef USE_STARPU_ACTIVITY
  429. static int hookid = - 1;
  430. #endif
  431. static void _starpu_mpi_add_sync_point_in_fxt(void)
  432. {
  433. #ifdef STARPU_USE_FXT
  434. int rank;
  435. int worldsize;
  436. MPI_Comm_rank(MPI_COMM_WORLD, &rank);
  437. MPI_Comm_size(MPI_COMM_WORLD, &worldsize);
  438. int barrier_ret = MPI_Barrier(MPI_COMM_WORLD);
  439. STARPU_ASSERT(barrier_ret == MPI_SUCCESS);
  440. /* We generate a "unique" key so that we can make sure that different
  441. * FxT traces come from the same MPI run. */
  442. int random_number;
  443. /* XXX perhaps we don't want to generate a new seed if the application
  444. * specified some reproductible behaviour ? */
  445. if (rank == 0)
  446. {
  447. srand(time(NULL));
  448. random_number = rand();
  449. }
  450. MPI_Bcast(&random_number, 1, MPI_INT, 0, MPI_COMM_WORLD);
  451. TRACE_MPI_BARRIER(rank, worldsize, random_number);
  452. _STARPU_MPI_DEBUG("unique key %x\n", random_number);
  453. #endif
  454. }
  455. int starpu_mpi_initialize(void)
  456. {
  457. PTHREAD_MUTEX_INIT(&mutex, NULL);
  458. PTHREAD_COND_INIT(&cond, NULL);
  459. new_requests = starpu_mpi_req_list_new();
  460. PTHREAD_MUTEX_INIT(&detached_requests_mutex, NULL);
  461. detached_requests = starpu_mpi_req_list_new();
  462. int ret = pthread_create(&progress_thread, NULL, progress_thread_func, NULL);
  463. PTHREAD_MUTEX_LOCK(&mutex);
  464. while (!running)
  465. PTHREAD_COND_WAIT(&cond, &mutex);
  466. PTHREAD_MUTEX_UNLOCK(&mutex);
  467. #ifdef USE_STARPU_ACTIVITY
  468. hookid = starpu_progression_hook_register(progression_hook_func, NULL);
  469. STARPU_ASSERT(hookid >= 0);
  470. #endif
  471. _starpu_mpi_add_sync_point_in_fxt();
  472. return 0;
  473. }
  474. int starpu_mpi_shutdown(void)
  475. {
  476. void *value;
  477. /* kill the progression thread */
  478. PTHREAD_MUTEX_LOCK(&mutex);
  479. running = 0;
  480. PTHREAD_COND_BROADCAST(&cond);
  481. PTHREAD_MUTEX_UNLOCK(&mutex);
  482. pthread_join(progress_thread, &value);
  483. #ifdef USE_STARPU_ACTIVITY
  484. starpu_progression_hook_deregister(hookid);
  485. #endif
  486. /* free the request queues */
  487. starpu_mpi_req_list_delete(detached_requests);
  488. starpu_mpi_req_list_delete(new_requests);
  489. return 0;
  490. }