tasks_overhead.c 8.0 KB

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  1. /* StarPU --- Runtime system for heterogeneous multicore architectures.
  2. *
  3. * Copyright (C) 2009-2021 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 <stdio.h>
  17. #include <unistd.h>
  18. #include <starpu.h>
  19. #include "../helper.h"
  20. /*
  21. * Measure the submission time and execution time of asynchronous tasks
  22. */
  23. starpu_data_handle_t data_handles[8];
  24. float *buffers[8];
  25. #ifdef STARPU_QUICK_CHECK
  26. static unsigned ntasks = 128;
  27. #else
  28. static unsigned ntasks = 65536;
  29. #endif
  30. static unsigned nbuffers = 0;
  31. #define BUFFERSIZE 16
  32. struct starpu_task *tasks;
  33. void dummy_func(void *descr[], void *arg)
  34. {
  35. (void)descr;
  36. (void)arg;
  37. }
  38. static struct starpu_codelet dummy_codelet =
  39. {
  40. .cpu_funcs = {dummy_func},
  41. .cuda_funcs = {dummy_func},
  42. .opencl_funcs = {dummy_func},
  43. .cpu_funcs_name = {"dummy_func"},
  44. .model = NULL,
  45. .nbuffers = 0,
  46. .modes = {STARPU_RW, STARPU_RW, STARPU_RW, STARPU_RW, STARPU_RW, STARPU_RW, STARPU_RW, STARPU_RW}
  47. };
  48. static void usage(char **argv)
  49. {
  50. fprintf(stderr, "Usage: %s [-i ntasks] [-p sched_policy] [-b nbuffers] [-h]\n", argv[0]);
  51. exit(EXIT_FAILURE);
  52. }
  53. static void parse_args(int argc, char **argv, struct starpu_conf *conf)
  54. {
  55. int c;
  56. while ((c = getopt(argc, argv, "i:b:p:h")) != -1)
  57. switch(c)
  58. {
  59. case 'i':
  60. ntasks = atoi(optarg);
  61. break;
  62. case 'b':
  63. nbuffers = atoi(optarg);
  64. dummy_codelet.nbuffers = nbuffers;
  65. break;
  66. case 'p':
  67. conf->sched_policy_name = optarg;
  68. break;
  69. case 'h':
  70. usage(argv);
  71. break;
  72. }
  73. }
  74. int main(int argc, char **argv)
  75. {
  76. int ret;
  77. unsigned i;
  78. double timing_submit;
  79. double start_submit;
  80. double end_submit;
  81. double timing_exec;
  82. double start_exec;
  83. double end_exec;
  84. struct starpu_conf conf;
  85. starpu_conf_init(&conf);
  86. conf.ncpus = 2;
  87. parse_args(argc, argv, &conf);
  88. ret = starpu_initialize(&conf, &argc, &argv);
  89. if (ret == -ENODEV) return STARPU_TEST_SKIPPED;
  90. STARPU_CHECK_RETURN_VALUE(ret, "starpu_init");
  91. unsigned buffer;
  92. for (buffer = 0; buffer < nbuffers; buffer++)
  93. {
  94. starpu_malloc((void**)&buffers[buffer], BUFFERSIZE*sizeof(float));
  95. starpu_vector_data_register(&data_handles[buffer], STARPU_MAIN_RAM, (uintptr_t)buffers[buffer], BUFFERSIZE, sizeof(float));
  96. }
  97. fprintf(stderr, "#tasks : %u\n#buffers : %u\n", ntasks, nbuffers);
  98. /* submit tasks (but don't execute them yet !) */
  99. tasks = (struct starpu_task *) calloc(1, ntasks*sizeof(struct starpu_task));
  100. for (i = 0; i < ntasks; i++)
  101. {
  102. starpu_task_init(&tasks[i]);
  103. tasks[i].cl = &dummy_codelet;
  104. tasks[i].synchronous = 0;
  105. tasks[i].use_tag = 1;
  106. tasks[i].tag_id = (starpu_tag_t)i;
  107. /* we have 8 buffers at most */
  108. for (buffer = 0; buffer < nbuffers; buffer++)
  109. {
  110. tasks[i].handles[buffer] = data_handles[buffer];
  111. }
  112. }
  113. tasks[ntasks-1].detach = 0;
  114. start_submit = starpu_timing_now();
  115. if (nbuffers)
  116. {
  117. /* Data dependency, just submit them all */
  118. for (i = 0; i < ntasks; i++)
  119. {
  120. ret = starpu_task_submit(&tasks[i]);
  121. if (ret == -ENODEV) goto enodev;
  122. STARPU_CHECK_RETURN_VALUE(ret, "starpu_task_submit");
  123. }
  124. }
  125. else
  126. {
  127. /* No data dependency, we have to introduce dependencies by hand */
  128. for (i = 1; i < ntasks; i++)
  129. {
  130. starpu_tag_declare_deps((starpu_tag_t)i, 1, (starpu_tag_t)(i-1));
  131. ret = starpu_task_submit(&tasks[i]);
  132. if (ret == -ENODEV) goto enodev;
  133. STARPU_CHECK_RETURN_VALUE(ret, "starpu_task_submit");
  134. }
  135. /* submit the first task */
  136. ret = starpu_task_submit(&tasks[0]);
  137. if (ret == -ENODEV) goto enodev;
  138. STARPU_CHECK_RETURN_VALUE(ret, "starpu_task_submit");
  139. }
  140. end_submit = starpu_timing_now();
  141. /* wait for the execution of the tasks */
  142. start_exec = starpu_timing_now();
  143. ret = starpu_task_wait(&tasks[ntasks-1]);
  144. STARPU_CHECK_RETURN_VALUE(ret, "starpu_tag_wait");
  145. end_exec = starpu_timing_now();
  146. starpu_task_wait_for_all();
  147. for (i = 0; i < ntasks; i++)
  148. starpu_task_clean(&tasks[i]);
  149. timing_submit = end_submit - start_submit;
  150. timing_exec = end_exec - start_exec;
  151. fprintf(stderr, "Total submit: %f secs\n", timing_submit/1000000);
  152. fprintf(stderr, "Per task submit: %f usecs\n", timing_submit/ntasks);
  153. fprintf(stderr, "\n");
  154. fprintf(stderr, "Total execution: %f secs\n", timing_exec/1000000);
  155. fprintf(stderr, "Per task execution: %f usecs\n", timing_exec/ntasks);
  156. fprintf(stderr, "\n");
  157. fprintf(stderr, "Total: %f secs\n", (timing_submit+timing_exec)/1000000);
  158. fprintf(stderr, "Per task: %f usecs\n", (timing_submit+timing_exec)/ntasks);
  159. {
  160. char *output_dir = getenv("STARPU_BENCH_DIR");
  161. char *bench_id = getenv("STARPU_BENCH_ID");
  162. if (output_dir && bench_id)
  163. {
  164. char number[1+sizeof(nbuffers)*3+1];
  165. const char *numberp;
  166. char file[1024];
  167. FILE *f;
  168. if (nbuffers)
  169. {
  170. snprintf(number, sizeof(number), "_%u", nbuffers);
  171. numberp = number;
  172. }
  173. else
  174. numberp = "";
  175. snprintf(file, sizeof(file), "%s/tasks_overhead_total_submit%s.dat", output_dir, numberp);
  176. f = fopen(file, "a");
  177. fprintf(f, "%s\t%f\n", bench_id, timing_submit/1000000);
  178. fclose(f);
  179. snprintf(file, sizeof(file), "%s/tasks_overhead_per_task_submit%s.dat", output_dir, numberp);
  180. f = fopen(file, "a");
  181. fprintf(f, "%s\t%f\n", bench_id, timing_submit/ntasks);
  182. fclose(f);
  183. snprintf(file, sizeof(file), "%s/tasks_overhead_total_execution%s.dat", output_dir, numberp);
  184. f = fopen(file, "a");
  185. fprintf(f, "%s\t%f\n", bench_id, timing_exec/1000000);
  186. fclose(f);
  187. snprintf(file, sizeof(file), "%s/tasks_overhead_per_task_execution%s.dat", output_dir, numberp);
  188. f = fopen(file, "a");
  189. fprintf(f, "%s\t%f\n", bench_id, timing_exec/ntasks);
  190. fclose(f);
  191. snprintf(file, sizeof(file), "%s/tasks_overhead_total_submit_execution%s.dat", output_dir, numberp);
  192. f = fopen(file, "a");
  193. fprintf(f, "%s\t%f\n", bench_id, (timing_submit+timing_exec)/1000000);
  194. fclose(f);
  195. snprintf(file, sizeof(file), "%s/tasks_overhead_per_task_submit_execution%s.dat", output_dir, numberp);
  196. f = fopen(file, "a");
  197. fprintf(f, "%s\t%f\n", bench_id, (timing_submit+timing_exec)/ntasks);
  198. fclose(f);
  199. }
  200. }
  201. for (buffer = 0; buffer < nbuffers; buffer++)
  202. {
  203. starpu_data_unregister(data_handles[buffer]);
  204. starpu_free_noflag((void*)buffers[buffer], BUFFERSIZE*sizeof(float));
  205. }
  206. starpu_shutdown();
  207. free(tasks);
  208. return EXIT_SUCCESS;
  209. enodev:
  210. fprintf(stderr, "WARNING: No one can execute this task\n");
  211. /* yes, we do not perform the computation but we did detect that no one
  212. * could perform the kernel, so this is not an error from StarPU */
  213. starpu_shutdown();
  214. free(tasks);
  215. return STARPU_TEST_SKIPPED;
  216. }