pxlu.c 22 KB

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  1. /* StarPU --- Runtime system for heterogeneous multicore architectures.
  2. *
  3. * Copyright (C) 2010-2021 Université de Bordeaux, CNRS (LaBRI UMR 5800), Inria
  4. *
  5. * StarPU 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. * StarPU 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 "pxlu.h"
  17. #include "pxlu_kernels.h"
  18. #include <sys/time.h>
  19. #define MPI_TAG11(k) ((1U << 16) | (k))
  20. #define MPI_TAG12(k, j) ((2U << 16) | (k)<<8 | (j))
  21. #define MPI_TAG21(k, i) ((3U << 16) | (i)<<8 | (k))
  22. // 11 21
  23. // 12 22
  24. #define TAG11(k) ((starpu_tag_t)( (1ULL<<50) | (unsigned long long)(k)))
  25. #define TAG12(k,j) ((starpu_tag_t)(((2ULL<<50) | (((unsigned long long)(k))<<32) \
  26. | (unsigned long long)(j))))
  27. #define TAG21(k,i) ((starpu_tag_t)(((3ULL<<50) | (((unsigned long long)(k))<<32) \
  28. | (unsigned long long)(i))))
  29. #define TAG22(k,i,j) ((starpu_tag_t)(((4ULL<<50) | ((unsigned long long)(k)<<32) \
  30. | ((unsigned long long)(i)<<16) \
  31. | (unsigned long long)(j))))
  32. #define TAG11_SAVE(k) ((starpu_tag_t)( (5ULL<<50) | (unsigned long long)(k)))
  33. #define TAG12_SAVE(k,j) ((starpu_tag_t)(((6ULL<<50) | (((unsigned long long)(k))<<32) \
  34. | (unsigned long long)(j))))
  35. #define TAG21_SAVE(k,i) ((starpu_tag_t)(((7ULL<<50) | (((unsigned long long)(k))<<32) \
  36. | (unsigned long long)(i))))
  37. #define TAG11_SAVE_PARTIAL(k) ((starpu_tag_t)( (8ULL<<50) | (unsigned long long)(k)))
  38. #define TAG12_SAVE_PARTIAL(k,j) ((starpu_tag_t)(((9ULL<<50) | (((unsigned long long)(k))<<32) \
  39. | (unsigned long long)(j))))
  40. #define TAG21_SAVE_PARTIAL(k,i) ((starpu_tag_t)(((10ULL<<50) | (((unsigned long long)(k))<<32) \
  41. | (unsigned long long)(i))))
  42. #define STARPU_TAG_INIT ((starpu_tag_t)(11ULL<<50))
  43. //#define VERBOSE_INIT 1
  44. //#define DEBUG 1
  45. static unsigned no_prio = 0;
  46. static unsigned nblocks = 0;
  47. static int rank = -1;
  48. static int world_size = -1;
  49. struct callback_arg
  50. {
  51. unsigned i, j, k;
  52. };
  53. /*
  54. * Various
  55. */
  56. static struct debug_info *create_debug_info(unsigned i, unsigned j, unsigned k)
  57. {
  58. struct debug_info *info = malloc(sizeof(struct debug_info));
  59. info->i = i;
  60. info->j = j;
  61. info->k = k;
  62. return info;
  63. }
  64. static struct starpu_task *create_task(starpu_tag_t id)
  65. {
  66. struct starpu_task *task = starpu_task_create();
  67. task->cl_arg = NULL;
  68. task->use_tag = 1;
  69. task->tag_id = id;
  70. return task;
  71. }
  72. /* Send handle to every node appearing in the mask, and unlock tag once the
  73. * transfers are done. */
  74. static void send_data_to_mask(starpu_data_handle_t handle, int *rank_mask, starpu_mpi_tag_t mpi_tag, starpu_tag_t tag)
  75. {
  76. unsigned cnt = 0;
  77. STARPU_ASSERT(handle != STARPU_POISON_PTR);
  78. int rank_array[world_size];
  79. MPI_Comm comm_array[world_size];
  80. starpu_mpi_tag_t mpi_tag_array[world_size];
  81. starpu_data_handle_t handle_array[world_size];
  82. int r;
  83. for (r = 0; r < world_size; r++)
  84. {
  85. if (rank_mask[r])
  86. {
  87. rank_array[cnt] = r;
  88. comm_array[cnt] = MPI_COMM_WORLD;
  89. mpi_tag_array[cnt] = mpi_tag;
  90. handle_array[cnt] = handle;
  91. cnt++;
  92. }
  93. }
  94. if (cnt == 0)
  95. {
  96. /* In case there is no message to send, we release the tag at
  97. * once */
  98. starpu_tag_notify_from_apps(tag);
  99. }
  100. else
  101. {
  102. starpu_mpi_isend_array_detached_unlock_tag(cnt, handle_array,
  103. rank_array, mpi_tag_array, comm_array, tag);
  104. }
  105. }
  106. /* Initiate a receive request once all dependencies are fulfilled and unlock
  107. * tag 'unlocked_tag' once it's done. */
  108. struct recv_when_done_callback_arg
  109. {
  110. int source;
  111. starpu_mpi_tag_t mpi_tag;
  112. starpu_data_handle_t handle;
  113. starpu_tag_t unlocked_tag;
  114. };
  115. static void callback_receive_when_done(void *_arg)
  116. {
  117. struct recv_when_done_callback_arg *arg = _arg;
  118. starpu_mpi_irecv_detached_unlock_tag(arg->handle, arg->source,
  119. arg->mpi_tag, MPI_COMM_WORLD, arg->unlocked_tag);
  120. free(arg);
  121. }
  122. static void receive_when_deps_are_done(unsigned ndeps, starpu_tag_t *deps_tags,
  123. int source, starpu_mpi_tag_t mpi_tag,
  124. starpu_data_handle_t handle,
  125. starpu_tag_t partial_tag,
  126. starpu_tag_t unlocked_tag)
  127. {
  128. STARPU_ASSERT(handle != STARPU_POISON_PTR);
  129. struct recv_when_done_callback_arg *arg =
  130. malloc(sizeof(struct recv_when_done_callback_arg));
  131. arg->source = source;
  132. arg->mpi_tag = mpi_tag;
  133. arg->handle = handle;
  134. arg->unlocked_tag = unlocked_tag;
  135. if (ndeps == 0)
  136. {
  137. callback_receive_when_done(arg);
  138. return;
  139. }
  140. starpu_create_sync_task(partial_tag, ndeps, deps_tags,
  141. callback_receive_when_done, arg);
  142. }
  143. /*
  144. * Task 11 (diagonal factorization)
  145. */
  146. static void create_task_11_recv(unsigned k)
  147. {
  148. /* The current node is not computing that task, so we receive the block
  149. * with MPI */
  150. /* We don't issue a MPI receive request until everyone using the
  151. * temporary buffer is done : 11_(k-1) can be used by 12_(k-1)j and
  152. * 21(k-1)i with i,j >= k */
  153. unsigned ndeps = 0;
  154. starpu_tag_t tag_array[2*nblocks];
  155. #ifdef SINGLE_TMP11
  156. if (k > 0)
  157. {
  158. unsigned i;
  159. for (i = (k-1)+1; i < nblocks; i++)
  160. {
  161. if (rank == get_block_rank(i, k-1))
  162. tag_array[ndeps++] = TAG21(k-1, i);
  163. }
  164. }
  165. if (k > 0)
  166. {
  167. unsigned j;
  168. for (j = (k-1)+1; j < nblocks; j++)
  169. {
  170. if (rank == get_block_rank(k-1, j))
  171. tag_array[ndeps++] = TAG12(k-1, j);
  172. }
  173. }
  174. #endif
  175. int source = get_block_rank(k, k);
  176. #ifdef SINGLE_TMP11
  177. starpu_data_handle_t block_handle = STARPU_PLU(get_tmp_11_block_handle)();
  178. #else
  179. starpu_data_handle_t block_handle = STARPU_PLU(get_tmp_11_block_handle)(k);
  180. #endif
  181. starpu_mpi_tag_t mpi_tag = MPI_TAG11(k);
  182. starpu_tag_t partial_tag = TAG11_SAVE_PARTIAL(k);
  183. starpu_tag_t unlocked_tag = TAG11_SAVE(k);
  184. // fprintf(stderr, "NODE %d - 11 (%d) - recv when done ndeps %d - tag array %lx\n", rank, k, ndeps, tag_array[0]);
  185. receive_when_deps_are_done(ndeps, tag_array, source, mpi_tag, block_handle, partial_tag, unlocked_tag);
  186. }
  187. static void find_nodes_using_11(unsigned k, int *rank_mask)
  188. {
  189. memset(rank_mask, 0, world_size*sizeof(int));
  190. /* Block 11_k is used to compute 12_kj + 12ki with i,j > k */
  191. unsigned i;
  192. for (i = k+1; i < nblocks; i++)
  193. {
  194. int r = get_block_rank(i, k);
  195. rank_mask[r] = 1;
  196. }
  197. unsigned j;
  198. for (j = k+1; j < nblocks; j++)
  199. {
  200. int r = get_block_rank(k, j);
  201. rank_mask[r] = 1;
  202. }
  203. }
  204. static void callback_task_11_real(void *_arg)
  205. {
  206. struct callback_arg *arg = _arg;
  207. unsigned k = arg->k;
  208. /* Find all the nodes potentially requiring this block */
  209. int rank_mask[world_size];
  210. find_nodes_using_11(k, rank_mask);
  211. rank_mask[rank] = 0;
  212. /* Send the block to those nodes */
  213. starpu_data_handle_t block_handle = STARPU_PLU(get_block_handle)(k, k);
  214. starpu_tag_t tag = TAG11_SAVE(k);
  215. starpu_mpi_tag_t mpi_tag = MPI_TAG11(k);
  216. send_data_to_mask(block_handle, rank_mask, mpi_tag, tag);
  217. free(arg);
  218. }
  219. static void create_task_11_real(unsigned k)
  220. {
  221. struct starpu_task *task = create_task(TAG11(k));
  222. task->cl = &STARPU_PLU(cl11);
  223. task->color = 0xffff00;
  224. task->cl_arg = create_debug_info(k, k, k);
  225. /* which sub-data is manipulated ? */
  226. task->handles[0] = STARPU_PLU(get_block_handle)(k, k);
  227. struct callback_arg *arg = malloc(sizeof(struct callback_arg));
  228. arg->k = k;
  229. task->callback_func = callback_task_11_real;
  230. task->callback_arg = arg;
  231. /* this is an important task */
  232. if (!no_prio)
  233. task->priority = STARPU_MAX_PRIO;
  234. /* enforce dependencies ... */
  235. if (k > 0)
  236. {
  237. starpu_tag_declare_deps(TAG11(k), 1, TAG22(k-1, k, k));
  238. }
  239. else
  240. {
  241. starpu_tag_declare_deps(TAG11(k), 1, STARPU_TAG_INIT);
  242. }
  243. int ret = starpu_task_submit(task);
  244. STARPU_CHECK_RETURN_VALUE(ret, "starpu_task_submit");
  245. }
  246. static void create_task_11(unsigned k)
  247. {
  248. if (get_block_rank(k, k) == rank)
  249. {
  250. #ifdef VERBOSE_INIT
  251. fprintf(stderr, "CREATE real task 11(%u) (TAG11_SAVE(%u) = %llux) on node %d\n", k, k, (unsigned long long) TAG11_SAVE(k), rank);
  252. #endif
  253. create_task_11_real(k);
  254. }
  255. else
  256. {
  257. /* We don't handle the task, but perhaps we have to generate MPI transfers. */
  258. int rank_mask[world_size];
  259. find_nodes_using_11(k, rank_mask);
  260. if (rank_mask[rank])
  261. {
  262. #ifdef VERBOSE_INIT
  263. fprintf(stderr, "create RECV task 11(%u) on node %d\n", k, rank);
  264. #endif
  265. create_task_11_recv(k);
  266. }
  267. else
  268. {
  269. #ifdef VERBOSE_INIT
  270. fprintf(stderr, "Node %d needs not 11(%u)\n", rank, k);
  271. #endif
  272. }
  273. }
  274. }
  275. /*
  276. * Task 12 (Update lower left (TRSM))
  277. */
  278. static void create_task_12_recv(unsigned k, unsigned j)
  279. {
  280. /* The current node is not computing that task, so we receive the block
  281. * with MPI */
  282. /* We don't issue a MPI receive request until everyone using the
  283. * temporary buffer is done : 12_(k-1)j can be used by 22_(k-1)ij with
  284. * i >= k */
  285. unsigned ndeps = 0;
  286. starpu_tag_t tag_array[nblocks];
  287. unsigned start;
  288. unsigned bound;
  289. #ifdef SINGLE_TMP1221
  290. bound = 0;
  291. start = (k-1)+1;
  292. #else
  293. bound = 1;
  294. start = (k-2)+1;
  295. #endif
  296. if (k > bound)
  297. {
  298. unsigned i;
  299. for (i = start; i < nblocks; i++)
  300. {
  301. if (rank == get_block_rank(i, j))
  302. #ifdef SINGLE_TMP1221
  303. tag_array[ndeps++] = TAG22(k-1, i, j);
  304. #else
  305. tag_array[ndeps++] = TAG22(k-2, i, j);
  306. #endif
  307. }
  308. }
  309. int source = get_block_rank(k, j);
  310. #ifdef SINGLE_TMP1221
  311. starpu_data_handle_t block_handle = STARPU_PLU(get_tmp_12_block_handle)(j);
  312. #else
  313. starpu_data_handle_t block_handle = STARPU_PLU(get_tmp_12_block_handle)(j,k);
  314. #endif
  315. starpu_mpi_tag_t mpi_tag = MPI_TAG12(k, j);
  316. starpu_tag_t partial_tag = TAG12_SAVE_PARTIAL(k, j);
  317. starpu_tag_t unlocked_tag = TAG12_SAVE(k, j);
  318. receive_when_deps_are_done(ndeps, tag_array, source, mpi_tag, block_handle, partial_tag, unlocked_tag);
  319. }
  320. static void find_nodes_using_12(unsigned k, unsigned j, int *rank_mask)
  321. {
  322. memset(rank_mask, 0, world_size*sizeof(int));
  323. /* Block 12_kj is used to compute 22_kij with i > k */
  324. unsigned i;
  325. for (i = k+1; i < nblocks; i++)
  326. {
  327. int r = get_block_rank(i, j);
  328. rank_mask[r] = 1;
  329. }
  330. }
  331. static void callback_task_12_real(void *_arg)
  332. {
  333. struct callback_arg *arg = _arg;
  334. unsigned k = arg->k;
  335. unsigned j = arg->j;
  336. /* Find all the nodes potentially requiring this block */
  337. int rank_mask[world_size];
  338. find_nodes_using_12(k, j, rank_mask);
  339. rank_mask[rank] = 0;
  340. /* Send the block to those nodes */
  341. starpu_data_handle_t block_handle = STARPU_PLU(get_block_handle)(k, j);
  342. starpu_tag_t tag = TAG12_SAVE(k, j);
  343. starpu_mpi_tag_t mpi_tag = MPI_TAG12(k, j);
  344. send_data_to_mask(block_handle, rank_mask, mpi_tag, tag);
  345. free(arg);
  346. }
  347. static void create_task_12_real(unsigned k, unsigned j)
  348. {
  349. struct starpu_task *task = create_task(TAG12(k, j));
  350. #ifdef STARPU_DEVEL
  351. #warning temporary fix :/
  352. #endif
  353. // task->cl = &STARPU_PLU(cl12);
  354. task->cl = &STARPU_PLU(cl21);
  355. task->color = 0x8080ff;
  356. task->cl_arg = create_debug_info(j, j, k);
  357. unsigned diag_block_is_local = (get_block_rank(k, k) == rank);
  358. starpu_tag_t tag_11_dep;
  359. /* which sub-data is manipulated ? */
  360. starpu_data_handle_t diag_block;
  361. if (diag_block_is_local)
  362. {
  363. diag_block = STARPU_PLU(get_block_handle)(k, k);
  364. tag_11_dep = TAG11(k);
  365. }
  366. else
  367. {
  368. #ifdef SINGLE_TMP11
  369. diag_block = STARPU_PLU(get_tmp_11_block_handle)();
  370. #else
  371. diag_block = STARPU_PLU(get_tmp_11_block_handle)(k);
  372. #endif
  373. tag_11_dep = TAG11_SAVE(k);
  374. }
  375. task->handles[0] = diag_block;
  376. task->handles[1] = STARPU_PLU(get_block_handle)(k, j);
  377. STARPU_ASSERT(get_block_rank(k, j) == rank);
  378. STARPU_ASSERT(task->handles[0] != STARPU_POISON_PTR);
  379. STARPU_ASSERT(task->handles[1] != STARPU_POISON_PTR);
  380. struct callback_arg *arg = malloc(sizeof(struct callback_arg));
  381. arg->j = j;
  382. arg->k = k;
  383. task->callback_func = callback_task_12_real;
  384. task->callback_arg = arg;
  385. if (!no_prio && (j == k+1))
  386. {
  387. task->priority = STARPU_MAX_PRIO;
  388. }
  389. /* enforce dependencies ... */
  390. if (k > 0)
  391. {
  392. starpu_tag_declare_deps(TAG12(k, j), 2, tag_11_dep, TAG22(k-1, k, j));
  393. }
  394. else
  395. {
  396. starpu_tag_declare_deps(TAG12(k, j), 1, tag_11_dep);
  397. }
  398. int ret = starpu_task_submit(task);
  399. STARPU_CHECK_RETURN_VALUE(ret, "starpu_task_submit");
  400. }
  401. static void create_task_12(unsigned k, unsigned j)
  402. {
  403. if (get_block_rank(k, j) == rank)
  404. {
  405. #ifdef VERBOSE_INIT
  406. fprintf(stderr, "CREATE real task 12(k = %u, j = %u) on node %d\n", k, j, rank);
  407. #endif
  408. create_task_12_real(k, j);
  409. }
  410. else
  411. {
  412. /* We don't handle the task, but perhaps we have to generate MPI transfers. */
  413. int rank_mask[world_size];
  414. find_nodes_using_12(k, j, rank_mask);
  415. if (rank_mask[rank])
  416. {
  417. #ifdef VERBOSE_INIT
  418. fprintf(stderr, "create RECV task 12(k = %u, j = %u) on node %d\n", k, j, rank);
  419. #endif
  420. create_task_12_recv(k, j);
  421. }
  422. else
  423. {
  424. #ifdef VERBOSE_INIT
  425. fprintf(stderr, "Node %d needs not 12(k=%u, i=%u)\n", rank, k, j);
  426. #endif
  427. }
  428. }
  429. }
  430. /*
  431. * Task 21 (Update upper right (TRSM))
  432. */
  433. static void create_task_21_recv(unsigned k, unsigned i)
  434. {
  435. /* The current node is not computing that task, so we receive the block
  436. * with MPI */
  437. /* We don't issue a MPI receive request until everyone using the
  438. * temporary buffer is done : 21_(k-1)i can be used by 22_(k-1)ij with
  439. * j >= k */
  440. unsigned ndeps = 0;
  441. starpu_tag_t tag_array[nblocks];
  442. unsigned bound;
  443. unsigned start;
  444. #ifdef SINGLE_TMP1221
  445. bound = 0;
  446. start = (k-1)+1;
  447. #else
  448. bound = 1;
  449. start = (k-2)+1;
  450. #endif
  451. if (k > bound)
  452. {
  453. unsigned j;
  454. for (j = start; j < nblocks; j++)
  455. {
  456. if (rank == get_block_rank(i, j))
  457. #ifdef SINGLE_TMP1221
  458. tag_array[ndeps++] = TAG22(k-1, i, j);
  459. #else
  460. tag_array[ndeps++] = TAG22(k-2, i, j);
  461. #endif
  462. }
  463. }
  464. int source = get_block_rank(i, k);
  465. #ifdef SINGLE_TMP1221
  466. starpu_data_handle_t block_handle = STARPU_PLU(get_tmp_21_block_handle)(i);
  467. #else
  468. starpu_data_handle_t block_handle = STARPU_PLU(get_tmp_21_block_handle)(i, k);
  469. #endif
  470. starpu_mpi_tag_t mpi_tag = MPI_TAG21(k, i);
  471. starpu_tag_t partial_tag = TAG21_SAVE_PARTIAL(k, i);
  472. starpu_tag_t unlocked_tag = TAG21_SAVE(k, i);
  473. // fprintf(stderr, "NODE %d - 21 (%d, %d) - recv when done ndeps %d - tag array %lx\n", rank, k, i, ndeps, tag_array[0]);
  474. receive_when_deps_are_done(ndeps, tag_array, source, mpi_tag, block_handle, partial_tag, unlocked_tag);
  475. }
  476. static void find_nodes_using_21(unsigned k, unsigned i, int *rank_mask)
  477. {
  478. memset(rank_mask, 0, world_size*sizeof(int));
  479. /* Block 21_ki is used to compute 22_kij with j > k */
  480. unsigned j;
  481. for (j = k+1; j < nblocks; j++)
  482. {
  483. int r = get_block_rank(i, j);
  484. rank_mask[r] = 1;
  485. }
  486. }
  487. static void callback_task_21_real(void *_arg)
  488. {
  489. struct callback_arg *arg = _arg;
  490. unsigned k = arg->k;
  491. unsigned i = arg->i;
  492. /* Find all the nodes potentially requiring this block */
  493. int rank_mask[world_size];
  494. find_nodes_using_21(k, i, rank_mask);
  495. rank_mask[rank] = 0;
  496. /* Send the block to those nodes */
  497. starpu_data_handle_t block_handle = STARPU_PLU(get_block_handle)(i, k);
  498. starpu_tag_t tag = TAG21_SAVE(k, i);
  499. starpu_mpi_tag_t mpi_tag = MPI_TAG21(k, i);
  500. send_data_to_mask(block_handle, rank_mask, mpi_tag, tag);
  501. free(arg);
  502. }
  503. static void create_task_21_real(unsigned k, unsigned i)
  504. {
  505. struct starpu_task *task = create_task(TAG21(k, i));
  506. #ifdef STARPU_DEVEL
  507. #warning temporary fix
  508. #endif
  509. // task->cl = &STARPU_PLU(cl21);
  510. task->cl = &STARPU_PLU(cl12);
  511. task->color = 0x8080c0;
  512. task->cl_arg = create_debug_info(i, i, k);
  513. unsigned diag_block_is_local = (get_block_rank(k, k) == rank);
  514. starpu_tag_t tag_11_dep;
  515. /* which sub-data is manipulated ? */
  516. starpu_data_handle_t diag_block;
  517. if (diag_block_is_local)
  518. {
  519. diag_block = STARPU_PLU(get_block_handle)(k, k);
  520. tag_11_dep = TAG11(k);
  521. }
  522. else
  523. {
  524. #ifdef SINGLE_TMP11
  525. diag_block = STARPU_PLU(get_tmp_11_block_handle)();
  526. #else
  527. diag_block = STARPU_PLU(get_tmp_11_block_handle)(k);
  528. #endif
  529. tag_11_dep = TAG11_SAVE(k);
  530. }
  531. task->handles[0] = diag_block;
  532. task->handles[1] = STARPU_PLU(get_block_handle)(i, k);
  533. STARPU_ASSERT(task->handles[0] != STARPU_POISON_PTR);
  534. STARPU_ASSERT(task->handles[1] != STARPU_POISON_PTR);
  535. struct callback_arg *arg = malloc(sizeof(struct callback_arg));
  536. arg->i = i;
  537. arg->k = k;
  538. task->callback_func = callback_task_21_real;
  539. task->callback_arg = arg;
  540. if (!no_prio && (i == k+1))
  541. {
  542. task->priority = STARPU_MAX_PRIO;
  543. }
  544. /* enforce dependencies ... */
  545. if (k > 0)
  546. {
  547. starpu_tag_declare_deps(TAG21(k, i), 2, tag_11_dep, TAG22(k-1, i, k));
  548. }
  549. else
  550. {
  551. starpu_tag_declare_deps(TAG21(k, i), 1, tag_11_dep);
  552. }
  553. int ret = starpu_task_submit(task);
  554. STARPU_CHECK_RETURN_VALUE(ret, "starpu_task_submit");
  555. }
  556. static void create_task_21(unsigned k, unsigned i)
  557. {
  558. if (get_block_rank(i, k) == rank)
  559. {
  560. #ifdef VERBOSE_INIT
  561. fprintf(stderr, "CREATE real task 21(k = %u, i = %u) on node %d\n", k, i, rank);
  562. #endif
  563. create_task_21_real(k, i);
  564. }
  565. else
  566. {
  567. /* We don't handle the task, but perhaps we have to generate MPI transfers. */
  568. int rank_mask[world_size];
  569. find_nodes_using_21(k, i, rank_mask);
  570. if (rank_mask[rank])
  571. {
  572. #ifdef VERBOSE_INIT
  573. fprintf(stderr, "create RECV task 21(k = %u, i = %u) on node %d\n", k, i, rank);
  574. #endif
  575. create_task_21_recv(k, i);
  576. }
  577. else
  578. {
  579. #ifdef VERBOSE_INIT
  580. fprintf(stderr, "Node %d needs not 21(k=%u, i=%u)\n", rank, k,i);
  581. #endif
  582. }
  583. }
  584. }
  585. /*
  586. * Task 22 (GEMM)
  587. */
  588. static void create_task_22_real(unsigned k, unsigned i, unsigned j)
  589. {
  590. // printf("task 22 k,i,j = %d,%d,%d TAG = %llx\n", k,i,j, TAG22(k,i,j));
  591. struct starpu_task *task = create_task(TAG22(k, i, j));
  592. task->cl = &STARPU_PLU(cl22);
  593. task->color = 0x00ff00;
  594. task->cl_arg = create_debug_info(i, j, k);
  595. /* which sub-data is manipulated ? */
  596. /* produced by TAG21_SAVE(k, i) */
  597. unsigned block21_is_local = (get_block_rank(i, k) == rank);
  598. starpu_tag_t tag_21_dep;
  599. starpu_data_handle_t block21;
  600. if (block21_is_local)
  601. {
  602. block21 = STARPU_PLU(get_block_handle)(i, k);
  603. tag_21_dep = TAG21(k, i);
  604. }
  605. else
  606. {
  607. #ifdef SINGLE_TMP1221
  608. block21 = STARPU_PLU(get_tmp_21_block_handle)(i);
  609. #else
  610. block21 = STARPU_PLU(get_tmp_21_block_handle)(i, k);
  611. #endif
  612. tag_21_dep = TAG21_SAVE(k, i);
  613. }
  614. /* produced by TAG12_SAVE(k, j) */
  615. unsigned block12_is_local = (get_block_rank(k, j) == rank);
  616. starpu_tag_t tag_12_dep;
  617. starpu_data_handle_t block12;
  618. if (block12_is_local)
  619. {
  620. // block12 = STARPU_PLU(get_block_handle)(j, k);
  621. block12 = STARPU_PLU(get_block_handle)(k, j);
  622. tag_12_dep = TAG12(k, j);
  623. }
  624. else
  625. {
  626. #ifdef SINGLE_TMP1221
  627. block12 = STARPU_PLU(get_tmp_12_block_handle)(j);
  628. #else
  629. block12 = STARPU_PLU(get_tmp_12_block_handle)(j, k);
  630. #endif
  631. tag_12_dep = TAG12_SAVE(k, j);
  632. }
  633. #ifdef STARPU_DEVEL
  634. #warning temporary fix :/
  635. #endif
  636. //task->handles[0] = block21;
  637. task->handles[0] = block12;
  638. //task->handles[1] = block12;
  639. task->handles[1] = block21;
  640. /* produced by TAG22(k-1, i, j) */
  641. task->handles[2] = STARPU_PLU(get_block_handle)(i, j);
  642. STARPU_ASSERT(task->handles[0] != STARPU_POISON_PTR);
  643. STARPU_ASSERT(task->handles[1] != STARPU_POISON_PTR);
  644. STARPU_ASSERT(task->handles[2] != STARPU_POISON_PTR);
  645. if (!no_prio && (i == k + 1) && (j == k +1) )
  646. {
  647. task->priority = STARPU_MAX_PRIO;
  648. }
  649. /* enforce dependencies ... */
  650. if (k > 0)
  651. {
  652. starpu_tag_declare_deps(TAG22(k, i, j), 3, TAG22(k-1, i, j), tag_12_dep, tag_21_dep);
  653. }
  654. else
  655. {
  656. starpu_tag_declare_deps(TAG22(k, i, j), 2, tag_12_dep, tag_21_dep);
  657. }
  658. int ret = starpu_task_submit(task);
  659. STARPU_CHECK_RETURN_VALUE(ret, "starpu_task_submit");
  660. }
  661. static void create_task_22(unsigned k, unsigned i, unsigned j)
  662. {
  663. if (get_block_rank(i, j) == rank)
  664. {
  665. // fprintf(stderr, "CREATE real task 22(k = %d, i = %d, j = %d) on node %d\n", k, i, j, rank);
  666. create_task_22_real(k, i, j);
  667. }
  668. // else
  669. // {
  670. // fprintf(stderr, "Node %d needs not 22(k=%d, i=%d, j = %d)\n", rank, k,i,j);
  671. // }
  672. }
  673. static void wait_tag_and_fetch_handle(starpu_tag_t tag, starpu_data_handle_t handle)
  674. {
  675. STARPU_ASSERT(handle != STARPU_POISON_PTR);
  676. starpu_tag_wait(tag);
  677. // fprintf(stderr, "Rank %d : tag %lx is done\n", rank, tag);
  678. starpu_data_acquire(handle, STARPU_R);
  679. starpu_data_release(handle);
  680. // starpu_data_unregister(handle);
  681. }
  682. static void wait_termination(void)
  683. {
  684. unsigned k, i, j;
  685. for (k = 0; k < nblocks; k++)
  686. {
  687. /* Wait task 11k if needed */
  688. if (get_block_rank(k, k) == rank)
  689. {
  690. starpu_data_handle_t diag_block = STARPU_PLU(get_block_handle)(k, k);
  691. wait_tag_and_fetch_handle(TAG11_SAVE(k), diag_block);
  692. }
  693. for (i = k + 1; i < nblocks; i++)
  694. {
  695. /* Wait task 21ki if needed */
  696. if (get_block_rank(i, k) == rank)
  697. {
  698. starpu_data_handle_t block21 = STARPU_PLU(get_block_handle)(i, k);
  699. //starpu_data_handle_t block21 = STARPU_PLU(get_block_handle)(k, i);
  700. //fprintf(stderr, "BLOCK21 i %d k %d -> handle %p\n", i, k, block21);
  701. wait_tag_and_fetch_handle(TAG21_SAVE(k, i), block21);
  702. }
  703. }
  704. for (j = k + 1; j < nblocks; j++)
  705. {
  706. /* Wait task 12kj if needed */
  707. if (get_block_rank(k, j) == rank)
  708. {
  709. //starpu_data_handle_t block12 = STARPU_PLU(get_block_handle)(j, k);
  710. starpu_data_handle_t block12 = STARPU_PLU(get_block_handle)(k, j);
  711. //fprintf(stderr, "BLOCK12 j %d k %d -> handle %p\n", j, k, block12);
  712. wait_tag_and_fetch_handle(TAG12_SAVE(k, j), block12);
  713. }
  714. }
  715. }
  716. }
  717. /*
  718. * code to bootstrap the factorization
  719. */
  720. double STARPU_PLU(plu_main)(unsigned _nblocks, int _rank, int _world_size, unsigned _no_prio)
  721. {
  722. double start;
  723. double end;
  724. nblocks = _nblocks;
  725. rank = _rank;
  726. world_size = _world_size;
  727. no_prio = _no_prio;
  728. /* create all the DAG nodes */
  729. unsigned i,j,k;
  730. for (k = 0; k < nblocks; k++)
  731. {
  732. starpu_iteration_push(k);
  733. create_task_11(k);
  734. for (i = k+1; i<nblocks; i++)
  735. {
  736. create_task_12(k, i);
  737. create_task_21(k, i);
  738. }
  739. for (i = k+1; i<nblocks; i++)
  740. {
  741. for (j = k+1; j<nblocks; j++)
  742. {
  743. create_task_22(k, i, j);
  744. }
  745. }
  746. starpu_iteration_pop();
  747. }
  748. int barrier_ret = starpu_mpi_barrier(MPI_COMM_WORLD);
  749. STARPU_ASSERT(barrier_ret == MPI_SUCCESS);
  750. /* schedule the codelet */
  751. start = starpu_timing_now();
  752. starpu_tag_notify_from_apps(STARPU_TAG_INIT);
  753. wait_termination();
  754. end = starpu_timing_now();
  755. double timing = end - start;
  756. // fprintf(stderr, "RANK %d -> took %f ms\n", rank, timing/1000);
  757. return timing;
  758. }