pipeline.c 6.0 KB

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  1. /* StarPU --- Runtime system for heterogeneous multicore architectures.
  2. *
  3. * Copyright (C) 2012, 2013 Centre National de la Recherche Scientifique
  4. * Copyright (C) 2012 Université de Bordeaux 1
  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. /*
  18. * This examples shows how to submit a pipeline to StarPU with limited buffer
  19. * use, and avoiding submitted all the tasks at once.
  20. *
  21. * This is a dumb example pipeline, depicted here:
  22. *
  23. * x--\
  24. * >==axpy-->sum
  25. * y--/
  26. *
  27. * x and y produce vectors full of x and y values, axpy multiplies them, and sum
  28. * sums it up. We thus have 3 temporary buffers
  29. */
  30. #include <starpu.h>
  31. #include <stdint.h>
  32. #include <semaphore.h>
  33. #include <common/blas.h>
  34. #ifdef STARPU_USE_CUDA
  35. #include <cublas.h>
  36. #endif
  37. #define FPRINTF(ofile, fmt, args ...) do { if (!getenv("STARPU_SSILENT")) {fprintf(ofile, fmt, ##args); }} while(0)
  38. /* Vector size */
  39. #ifdef STARPU_QUICK_CHECK
  40. #define N 16
  41. #else
  42. #define N 1048576
  43. #endif
  44. /* Number of iteration buffers, and thus overlapped pipeline iterations */
  45. #define K 16
  46. /* Number of concurrently submitted pipeline iterations */
  47. #define C 64
  48. /* Number of iterations */
  49. #define L 256
  50. /* X / Y codelets */
  51. void pipeline_cpu_x(void *descr[], void *args)
  52. {
  53. float x;
  54. float *val = (float *) STARPU_VECTOR_GET_PTR(descr[0]);
  55. int n = STARPU_VECTOR_GET_NX(descr[0]);
  56. int i;
  57. starpu_codelet_unpack_args(args, &x);
  58. for (i = 0; i < n ; i++)
  59. val[i] = x;
  60. }
  61. static struct starpu_perfmodel pipeline_model_x =
  62. {
  63. .type = STARPU_HISTORY_BASED,
  64. .symbol = "pipeline_model_x"
  65. };
  66. static struct starpu_codelet pipeline_codelet_x =
  67. {
  68. .cpu_funcs = {pipeline_cpu_x, NULL},
  69. .nbuffers = 1,
  70. .modes = {STARPU_W},
  71. .model = &pipeline_model_x
  72. };
  73. /* axpy codelets */
  74. void pipeline_cpu_axpy(void *descr[], void *arg)
  75. {
  76. float *x = (float *) STARPU_VECTOR_GET_PTR(descr[0]);
  77. float *y = (float *) STARPU_VECTOR_GET_PTR(descr[1]);
  78. int n = STARPU_VECTOR_GET_NX(descr[0]);
  79. SAXPY(n, 1., x, 1, y, 1);
  80. }
  81. #ifdef STARPU_USE_CUDA
  82. void pipeline_cublas_axpy(void *descr[], void *arg)
  83. {
  84. float *x = (float *) STARPU_VECTOR_GET_PTR(descr[0]);
  85. float *y = (float *) STARPU_VECTOR_GET_PTR(descr[1]);
  86. int n = STARPU_VECTOR_GET_NX(descr[0]);
  87. cublasSaxpy(n, 1., x, 1, y, 1);
  88. }
  89. #endif
  90. static struct starpu_perfmodel pipeline_model_axpy =
  91. {
  92. .type = STARPU_HISTORY_BASED,
  93. .symbol = "pipeline_model_axpy"
  94. };
  95. static struct starpu_codelet pipeline_codelet_axpy =
  96. {
  97. .cpu_funcs = {pipeline_cpu_axpy, NULL},
  98. #ifdef STARPU_USE_CUDA
  99. .cuda_funcs = {pipeline_cublas_axpy, NULL},
  100. #endif
  101. .nbuffers = 2,
  102. .modes = {STARPU_R, STARPU_RW},
  103. .model = &pipeline_model_axpy
  104. };
  105. /* sum codelet */
  106. void pipeline_cpu_sum(void *descr[], void *_args)
  107. {
  108. float *x = (float *) STARPU_VECTOR_GET_PTR(descr[0]);
  109. int n = STARPU_VECTOR_GET_NX(descr[0]);
  110. float y;
  111. y = SASUM(n, x, 1);
  112. FPRINTF(stderr,"CPU finished with %f\n", y);
  113. }
  114. #ifdef STARPU_USE_CUDA
  115. void pipeline_cublas_sum(void *descr[], void *arg)
  116. {
  117. float *x = (float *) STARPU_VECTOR_GET_PTR(descr[0]);
  118. int n = STARPU_VECTOR_GET_NX(descr[0]);
  119. float y;
  120. y = cublasSasum(n, x, 1);
  121. FPRINTF(stderr,"CUBLAS finished with %f\n", y);
  122. }
  123. #endif
  124. static struct starpu_perfmodel pipeline_model_sum =
  125. {
  126. .type = STARPU_HISTORY_BASED,
  127. .symbol = "pipeline_model_sum"
  128. };
  129. static struct starpu_codelet pipeline_codelet_sum =
  130. {
  131. .cpu_funcs = {pipeline_cpu_sum, NULL},
  132. #ifdef STARPU_USE_CUDA
  133. .cuda_funcs = {pipeline_cublas_sum, NULL},
  134. #endif
  135. .nbuffers = 1,
  136. .modes = {STARPU_R},
  137. .model = &pipeline_model_sum
  138. };
  139. int main(void)
  140. {
  141. int ret = 0;
  142. int k, l, c;
  143. starpu_data_handle_t buffersX[K], buffersY[K], buffersP[K];
  144. sem_t sems[C];
  145. ret = starpu_init(NULL);
  146. if (ret == -ENODEV)
  147. exit(77);
  148. STARPU_CHECK_RETURN_VALUE(ret, "starpu_init");
  149. starpu_cublas_init();
  150. /* Initialize the K temporary buffers. No need to allocate it ourselves
  151. * Since it's the X and Y kernels which will fill the initial values. */
  152. for (k = 0; k < K; k++)
  153. {
  154. starpu_vector_data_register(&buffersX[k], -1, 0, N, sizeof(float));
  155. starpu_vector_data_register(&buffersY[k], -1, 0, N, sizeof(float));
  156. starpu_vector_data_register(&buffersP[k], -1, 0, N, sizeof(float));
  157. }
  158. /* Initialize way to wait for the C previous concurrent stages */
  159. for (c = 0; c < C; c++)
  160. sem_init(&sems[c], 0, 0);
  161. /* Submits the l pipeline stages */
  162. for (l = 0; l < L; l++)
  163. {
  164. float x = l;
  165. float y = 2*l;
  166. /* First wait for the C previous concurrent stages */
  167. if (l >= C)
  168. sem_wait(&sems[l%C]);
  169. /* Now submit the next stage */
  170. ret = starpu_insert_task(&pipeline_codelet_x,
  171. STARPU_W, buffersX[l%K],
  172. STARPU_VALUE, &x, sizeof(x),
  173. 0);
  174. if (ret == -ENODEV) goto enodev;
  175. STARPU_CHECK_RETURN_VALUE(ret, "starpu_insert_task x");
  176. ret = starpu_insert_task(&pipeline_codelet_x,
  177. STARPU_W, buffersY[l%K],
  178. STARPU_VALUE, &y, sizeof(y),
  179. 0);
  180. if (ret == -ENODEV) goto enodev;
  181. STARPU_CHECK_RETURN_VALUE(ret, "starpu_insert_task y");
  182. ret = starpu_insert_task(&pipeline_codelet_axpy,
  183. STARPU_R, buffersX[l%K],
  184. STARPU_RW, buffersY[l%K],
  185. 0);
  186. if (ret == -ENODEV) goto enodev;
  187. STARPU_CHECK_RETURN_VALUE(ret, "starpu_insert_task axpy");
  188. ret = starpu_insert_task(&pipeline_codelet_sum,
  189. STARPU_R, buffersY[l%K],
  190. STARPU_CALLBACK_WITH_ARG, (void (*)(void*))sem_post, &sems[l%C],
  191. 0);
  192. if (ret == -ENODEV) goto enodev;
  193. STARPU_CHECK_RETURN_VALUE(ret, "starpu_insert_task sum");
  194. }
  195. starpu_task_wait_for_all();
  196. enodev:
  197. for (k = 0; k < K; k++)
  198. {
  199. starpu_data_unregister(buffersX[k]);
  200. starpu_data_unregister(buffersY[k]);
  201. starpu_data_unregister(buffersP[k]);
  202. }
  203. starpu_shutdown();
  204. return (ret == -ENODEV ? 77 : 0);
  205. }