mpi_like_async.c 9.9 KB

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  1. /* StarPU --- Runtime system for heterogeneous multicore architectures.
  2. *
  3. * Copyright (C) 2010-2011 Université de Bordeaux 1
  4. * Copyright (C) 2010, 2011, 2012 Centre National de la Recherche Scientifique
  5. *
  6. * StarPU is free software; you can redistribute it and/or modify
  7. * it under the terms of the GNU Lesser General Public License as published by
  8. * the Free Software Foundation; either version 2.1 of the License, or (at
  9. * your option) any later version.
  10. *
  11. * StarPU is distributed in the hope that it will be useful, but
  12. * WITHOUT ANY WARRANTY; without even the implied warranty of
  13. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
  14. *
  15. * See the GNU Lesser General Public License in COPYING.LGPL for more details.
  16. */
  17. #include <config.h>
  18. #include <starpu.h>
  19. #include <pthread.h>
  20. #include "../helper.h"
  21. #ifdef STARPU_SLOW_MACHINE
  22. # define NTHREADS_DEFAULT 4
  23. # define NITER_DEFAULT 8
  24. #else
  25. # define NTHREADS_DEFAULT 16
  26. # define NITER_DEFAULT 128
  27. #endif
  28. static int nthreads = NTHREADS_DEFAULT;
  29. static int niter = NITER_DEFAULT;
  30. //#define DEBUG_MESSAGES 1
  31. //static pthread_cond_t cond;
  32. //static pthread_mutex_t mutex;
  33. struct thread_data
  34. {
  35. unsigned index;
  36. unsigned val;
  37. starpu_data_handle_t handle;
  38. pthread_t thread;
  39. pthread_mutex_t recv_mutex;
  40. unsigned recv_flag; // set when a message is received
  41. unsigned recv_buf;
  42. struct thread_data *neighbour;
  43. };
  44. struct data_req
  45. {
  46. int (*test_func)(void *);
  47. void *test_arg;
  48. struct data_req *next;
  49. };
  50. static pthread_mutex_t data_req_mutex;
  51. static pthread_cond_t data_req_cond;
  52. struct data_req *data_req_list;
  53. unsigned progress_thread_running;
  54. static struct thread_data problem_data[NTHREADS_DEFAULT];
  55. /* We implement some ring transfer, every thread will try to receive a piece of
  56. * data from its neighbour and increment it before transmitting it to its
  57. * successor. */
  58. #ifdef STARPU_USE_CUDA
  59. void cuda_codelet_unsigned_inc(void *descr[], __attribute__ ((unused)) void *cl_arg);
  60. #endif
  61. #ifdef STARPU_USE_OPENCL
  62. void opencl_codelet_unsigned_inc(void *buffers[], void *args);
  63. #endif
  64. static void increment_handle_cpu_kernel(void *descr[], void *cl_arg __attribute__((unused)))
  65. {
  66. STARPU_SKIP_IF_VALGRIND;
  67. unsigned *val = (unsigned *)STARPU_VARIABLE_GET_PTR(descr[0]);
  68. *val += 1;
  69. // FPRINTF(stderr, "VAL %d (&val = %p)\n", *val, val);
  70. }
  71. static struct starpu_codelet increment_handle_cl =
  72. {
  73. .modes = { STARPU_RW },
  74. .cpu_funcs = {increment_handle_cpu_kernel, NULL},
  75. #ifdef STARPU_USE_CUDA
  76. .cuda_funcs = {cuda_codelet_unsigned_inc, NULL},
  77. #endif
  78. #ifdef STARPU_USE_OPENCL
  79. .opencl_funcs = { opencl_codelet_unsigned_inc, NULL},
  80. #endif
  81. .nbuffers = 1
  82. };
  83. static void increment_handle_async(struct thread_data *thread_data)
  84. {
  85. struct starpu_task *task = starpu_task_create();
  86. task->cl = &increment_handle_cl;
  87. task->handles[0] = thread_data->handle;
  88. task->detach = 1;
  89. task->destroy = 1;
  90. int ret = starpu_task_submit(task);
  91. if (ret == -ENODEV)
  92. exit(STARPU_TEST_SKIPPED);
  93. STARPU_ASSERT(!ret);
  94. }
  95. static int test_recv_handle_async(void *arg)
  96. {
  97. // FPRINTF(stderr, "test_recv_handle_async\n");
  98. int ret;
  99. struct thread_data *thread_data = (struct thread_data *) arg;
  100. _STARPU_PTHREAD_MUTEX_LOCK(&thread_data->recv_mutex);
  101. ret = (thread_data->recv_flag == 1);
  102. if (ret)
  103. {
  104. thread_data->recv_flag = 0;
  105. thread_data->val = thread_data->recv_buf;
  106. }
  107. _STARPU_PTHREAD_MUTEX_UNLOCK(&thread_data->recv_mutex);
  108. if (ret)
  109. {
  110. #ifdef DEBUG_MESSAGES
  111. FPRINTF(stderr, "Thread %d received value %d from thread %d\n",
  112. thread_data->index, thread_data->val, (thread_data->index - 1)%nthreads);
  113. #endif
  114. starpu_data_release(thread_data->handle);
  115. }
  116. return ret;
  117. }
  118. static void recv_handle_async(void *_thread_data)
  119. {
  120. struct thread_data *thread_data = (struct thread_data *) _thread_data;
  121. struct data_req *req = (struct data_req *) malloc(sizeof(struct data_req));
  122. req->test_func = test_recv_handle_async;
  123. req->test_arg = thread_data;
  124. req->next = NULL;
  125. _STARPU_PTHREAD_MUTEX_LOCK(&data_req_mutex);
  126. req->next = data_req_list;
  127. data_req_list = req;
  128. _STARPU_PTHREAD_COND_SIGNAL(&data_req_cond);
  129. _STARPU_PTHREAD_MUTEX_UNLOCK(&data_req_mutex);
  130. }
  131. static int test_send_handle_async(void *arg)
  132. {
  133. int ret;
  134. struct thread_data *thread_data = (struct thread_data *) arg;
  135. struct thread_data *neighbour_data = thread_data->neighbour;
  136. _STARPU_PTHREAD_MUTEX_LOCK(&neighbour_data->recv_mutex);
  137. ret = (neighbour_data->recv_flag == 0);
  138. _STARPU_PTHREAD_MUTEX_UNLOCK(&neighbour_data->recv_mutex);
  139. if (ret)
  140. {
  141. #ifdef DEBUG_MESSAGES
  142. FPRINTF(stderr, "Thread %d sends value %d to thread %d\n", thread_data->index, thread_data->val, neighbour_data->index);
  143. #endif
  144. starpu_data_release(thread_data->handle);
  145. }
  146. return ret;
  147. }
  148. static void send_handle_async(void *_thread_data)
  149. {
  150. struct thread_data *thread_data = (struct thread_data *) _thread_data;
  151. struct thread_data *neighbour_data = thread_data->neighbour;
  152. // FPRINTF(stderr, "send_handle_async\n");
  153. /* send the message */
  154. _STARPU_PTHREAD_MUTEX_LOCK(&neighbour_data->recv_mutex);
  155. neighbour_data->recv_buf = thread_data->val;
  156. neighbour_data->recv_flag = 1;
  157. _STARPU_PTHREAD_MUTEX_UNLOCK(&neighbour_data->recv_mutex);
  158. struct data_req *req = (struct data_req *) malloc(sizeof(struct data_req));
  159. req->test_func = test_send_handle_async;
  160. req->test_arg = thread_data;
  161. req->next = NULL;
  162. _STARPU_PTHREAD_MUTEX_LOCK(&data_req_mutex);
  163. req->next = data_req_list;
  164. data_req_list = req;
  165. _STARPU_PTHREAD_COND_SIGNAL(&data_req_cond);
  166. _STARPU_PTHREAD_MUTEX_UNLOCK(&data_req_mutex);
  167. }
  168. static void *progress_func(void *arg)
  169. {
  170. _STARPU_PTHREAD_MUTEX_LOCK(&data_req_mutex);
  171. progress_thread_running = 1;
  172. _STARPU_PTHREAD_COND_SIGNAL(&data_req_cond);
  173. while (progress_thread_running)
  174. {
  175. struct data_req *req;
  176. if (data_req_list == NULL)
  177. _STARPU_PTHREAD_COND_WAIT(&data_req_cond, &data_req_mutex);
  178. req = data_req_list;
  179. if (req)
  180. {
  181. data_req_list = req->next;
  182. req->next = NULL;
  183. _STARPU_PTHREAD_MUTEX_UNLOCK(&data_req_mutex);
  184. int ret = req->test_func(req->test_arg);
  185. if (ret)
  186. {
  187. free(req);
  188. _STARPU_PTHREAD_MUTEX_LOCK(&data_req_mutex);
  189. }
  190. else
  191. {
  192. /* ret = 0 : the request is not finished, we put it back at the end of the list */
  193. _STARPU_PTHREAD_MUTEX_LOCK(&data_req_mutex);
  194. struct data_req *req_aux = data_req_list;
  195. if (!req_aux)
  196. {
  197. /* The list is empty */
  198. data_req_list = req;
  199. }
  200. else
  201. {
  202. while (req_aux)
  203. {
  204. if (req_aux->next == NULL)
  205. {
  206. req_aux->next = req;
  207. break;
  208. }
  209. req_aux = req_aux->next;
  210. }
  211. }
  212. }
  213. }
  214. }
  215. _STARPU_PTHREAD_MUTEX_UNLOCK(&data_req_mutex);
  216. return NULL;
  217. }
  218. static void *thread_func(void *arg)
  219. {
  220. unsigned iter;
  221. struct thread_data *thread_data = (struct thread_data *) arg;
  222. unsigned index = thread_data->index;
  223. int ret;
  224. starpu_variable_data_register(&thread_data->handle, 0, (uintptr_t)&thread_data->val, sizeof(unsigned));
  225. for (iter = 0; iter < niter; iter++)
  226. {
  227. /* The first thread initiates the first transfer */
  228. if (!((index == 0) && (iter == 0)))
  229. {
  230. starpu_data_acquire_cb(
  231. thread_data->handle, STARPU_W,
  232. recv_handle_async, thread_data
  233. );
  234. }
  235. increment_handle_async(thread_data);
  236. if (!((index == (nthreads - 1)) && (iter == (niter - 1))))
  237. {
  238. starpu_data_acquire_cb(
  239. thread_data->handle, STARPU_R,
  240. send_handle_async, thread_data
  241. );
  242. }
  243. }
  244. ret = starpu_task_wait_for_all();
  245. STARPU_CHECK_RETURN_VALUE(ret, "starpu_task_wait_for_all");
  246. return NULL;
  247. }
  248. #ifdef STARPU_USE_OPENCL
  249. struct starpu_opencl_program opencl_program;
  250. #endif
  251. int main(int argc, char **argv)
  252. {
  253. int ret;
  254. void *retval;
  255. #ifdef STARPU_QUICK_CHECK
  256. niter /= 16;
  257. nthreads /= 4;
  258. #endif
  259. ret = starpu_init(NULL);
  260. if (ret == -ENODEV) return STARPU_TEST_SKIPPED;
  261. STARPU_CHECK_RETURN_VALUE(ret, "starpu_init");
  262. #ifdef STARPU_USE_OPENCL
  263. ret = starpu_opencl_load_opencl_from_file("tests/datawizard/opencl_codelet_unsigned_inc_kernel.cl",
  264. &opencl_program, NULL);
  265. STARPU_CHECK_RETURN_VALUE(ret, "starpu_opencl_load_opencl_from_file");
  266. #endif
  267. /* Create a thread to perform blocking calls */
  268. pthread_t progress_thread;
  269. _STARPU_PTHREAD_MUTEX_INIT(&data_req_mutex, NULL);
  270. _STARPU_PTHREAD_COND_INIT(&data_req_cond, NULL);
  271. data_req_list = NULL;
  272. progress_thread_running = 0;
  273. unsigned t;
  274. for (t = 0; t < nthreads; t++)
  275. {
  276. problem_data[t].index = t;
  277. problem_data[t].val = 0;
  278. _STARPU_PTHREAD_MUTEX_INIT(&problem_data[t].recv_mutex, NULL);
  279. problem_data[t].recv_flag = 0;
  280. problem_data[t].neighbour = &problem_data[(t+1)%nthreads];
  281. }
  282. pthread_create(&progress_thread, NULL, progress_func, NULL);
  283. _STARPU_PTHREAD_MUTEX_LOCK(&data_req_mutex);
  284. while (!progress_thread_running)
  285. _STARPU_PTHREAD_COND_WAIT(&data_req_cond, &data_req_mutex);
  286. _STARPU_PTHREAD_MUTEX_UNLOCK(&data_req_mutex);
  287. for (t = 0; t < nthreads; t++)
  288. {
  289. ret = pthread_create(&problem_data[t].thread, NULL, thread_func, &problem_data[t]);
  290. STARPU_ASSERT(!ret);
  291. }
  292. for (t = 0; t < nthreads; t++)
  293. {
  294. ret = pthread_join(problem_data[t].thread, &retval);
  295. STARPU_ASSERT(!ret);
  296. STARPU_ASSERT(retval == NULL);
  297. }
  298. _STARPU_PTHREAD_MUTEX_LOCK(&data_req_mutex);
  299. progress_thread_running = 0;
  300. _STARPU_PTHREAD_COND_SIGNAL(&data_req_cond);
  301. _STARPU_PTHREAD_MUTEX_UNLOCK(&data_req_mutex);
  302. ret = pthread_join(progress_thread, &retval);
  303. STARPU_ASSERT(!ret);
  304. STARPU_ASSERT(retval == NULL);
  305. /* We check that the value in the "last" thread is valid */
  306. starpu_data_handle_t last_handle = problem_data[nthreads - 1].handle;
  307. starpu_data_acquire(last_handle, STARPU_R);
  308. #ifdef STARPU_USE_OPENCL
  309. ret = starpu_opencl_unload_opencl(&opencl_program);
  310. STARPU_CHECK_RETURN_VALUE(ret, "starpu_opencl_unload_opencl");
  311. #endif
  312. ret = EXIT_SUCCESS;
  313. if (problem_data[nthreads - 1].val != (nthreads * niter))
  314. {
  315. FPRINTF(stderr, "Final value : %u should be %d\n", problem_data[nthreads - 1].val, (nthreads * niter));
  316. ret = EXIT_FAILURE;
  317. }
  318. starpu_data_release(last_handle);
  319. for (t = 0; t < nthreads; t++)
  320. {
  321. starpu_data_unregister(problem_data[t].handle);
  322. }
  323. starpu_shutdown();
  324. STARPU_RETURN(ret);
  325. }