starpu_task.h 10 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 Centre National de la Recherche Scientifique
  5. * Copyright (C) 2011 Télécom-SudParis
  6. *
  7. * StarPU is free software; you can redistribute it and/or modify
  8. * it under the terms of the GNU Lesser General Public License as published by
  9. * the Free Software Foundation; either version 2.1 of the License, or (at
  10. * your option) any later version.
  11. *
  12. * StarPU is distributed in the hope that it will be useful, but
  13. * WITHOUT ANY WARRANTY; without even the implied warranty of
  14. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
  15. *
  16. * See the GNU Lesser General Public License in COPYING.LGPL for more details.
  17. */
  18. #include <starpu.h>
  19. #ifndef __STARPU_TASK_H__
  20. #define __STARPU_TASK_H__
  21. #include <errno.h>
  22. #include <starpu_config.h>
  23. #if defined STARPU_USE_CUDA && !defined STARPU_DONT_INCLUDE_CUDA_HEADERS
  24. # include <cuda.h>
  25. #endif
  26. #include <starpu_data.h>
  27. #define STARPU_CPU ((1ULL)<<1)
  28. #define STARPU_CUDA ((1ULL)<<3)
  29. #define STARPU_SPU ((1ULL)<<4)
  30. #define STARPU_GORDON ((1ULL)<<5)
  31. #define STARPU_OPENCL ((1ULL)<<6)
  32. /* Codelet types */
  33. #define STARPU_SEQ 0
  34. #define STARPU_SPMD 1
  35. #define STARPU_FORKJOIN 2
  36. /* task status */
  37. #define STARPU_TASK_INVALID 0
  38. #define STARPU_TASK_BLOCKED 1
  39. #define STARPU_TASK_READY 2
  40. #define STARPU_TASK_RUNNING 3
  41. #define STARPU_TASK_FINISHED 4
  42. #define STARPU_TASK_BLOCKED_ON_TAG 5
  43. #define STARPU_TASK_BLOCKED_ON_TASK 6
  44. #define STARPU_TASK_BLOCKED_ON_DATA 7
  45. #ifdef __cplusplus
  46. extern "C" {
  47. #endif
  48. typedef uint64_t starpu_tag_t;
  49. typedef void (*starpu_cpu_func_t)(void **, void*); /* CPU core */
  50. typedef void (*starpu_cuda_func_t)(void **, void*); /* NVIDIA CUDA device */
  51. typedef void (*starpu_opencl_func_t)(void **, void*); /* OpenCL CUDA device */
  52. typedef uint8_t starpu_gordon_func_t; /* Cell SPU */
  53. #define STARPU_MULTIPLE_CPU_IMPLEMENTATIONS ((starpu_cpu_func_t) -1)
  54. #define STARPU_MULTIPLE_CUDA_IMPLEMENTATIONS ((starpu_cuda_func_t) -1)
  55. #define STARPU_MULTIPLE_OPENCL_IMPLEMENTATIONS ((starpu_opencl_func_t) -1)
  56. #define STARPU_MULTIPLE_GORDON_IMPLEMENTATIONS 255
  57. /*
  58. * A codelet describes the various function
  59. * that may be called from a worker
  60. */
  61. typedef struct starpu_codelet_t {
  62. /* where can it be performed ? */
  63. uint32_t where;
  64. unsigned type;
  65. int max_parallelism;
  66. /* the different implementations of the codelet */
  67. void (*cuda_func)(void **, void *);
  68. void (*cpu_func)(void **, void *);
  69. void (*opencl_func)(void **, void *);
  70. uint8_t gordon_func;
  71. starpu_cpu_func_t cpu_funcs[STARPU_MAXIMPLEMENTATIONS];
  72. starpu_cuda_func_t cuda_funcs[STARPU_MAXIMPLEMENTATIONS];
  73. starpu_opencl_func_t opencl_funcs[STARPU_MAXIMPLEMENTATIONS];
  74. starpu_gordon_func_t gordon_funcs[STARPU_MAXIMPLEMENTATIONS];
  75. /* how many buffers do the codelet takes as argument ? */
  76. unsigned nbuffers;
  77. /* performance model of the codelet */
  78. struct starpu_perfmodel *model;
  79. /* consumption model of the codelet.
  80. * In the case of parallel codelets, accounts for all units. */
  81. struct starpu_perfmodel *power_model;
  82. /* Conversion model of the codelet */
  83. struct starpu_perfmodel *conversion_model;
  84. /* statistics collected at runtime: this is filled by StarPU and should
  85. * not be accessed directly (use the starpu_display_codelet_stats
  86. * function instead for instance). */
  87. unsigned long per_worker_stats[STARPU_NMAXWORKERS];
  88. } starpu_codelet;
  89. struct starpu_task {
  90. struct starpu_codelet_t *cl;
  91. /* arguments managed by the DSM */
  92. struct starpu_buffer_descr buffers[STARPU_NMAXBUFS];
  93. void *interfaces[STARPU_NMAXBUFS];
  94. /* arguments not managed by the DSM are given as a buffer */
  95. void *cl_arg;
  96. /* in case the argument buffer has to be uploaded explicitely */
  97. size_t cl_arg_size;
  98. /* when the task is done, callback_func(callback_arg) is called */
  99. void (*callback_func)(void *);
  100. void *callback_arg;
  101. unsigned use_tag;
  102. starpu_tag_t tag_id;
  103. /* options for the task execution */
  104. unsigned synchronous; /* if set, a call to push is blocking */
  105. int priority; /* STARPU_MAX_PRIO = most important
  106. : STARPU_MIN_PRIO = least important */
  107. /* in case the task has to be executed on a specific worker */
  108. unsigned execute_on_a_specific_worker;
  109. unsigned workerid;
  110. /* Bundle including the task */
  111. struct starpu_task_bundle *bundle;
  112. /* If this flag is set, it is not possible to synchronize with the task
  113. * by the means of starpu_task_wait later on. Internal data structures
  114. * are only garanteed to be freed once starpu_task_wait is called if
  115. * that flag is not set. */
  116. int detach;
  117. /* If that flag is set, the task structure will automatically be freed,
  118. * either after the execution of the callback if the task is detached,
  119. * or during starpu_task_wait otherwise. If this flag is not set,
  120. * dynamically allocated data structures will not be freed until
  121. * starpu_task_destroy is called explicitely. Setting this flag for a
  122. * statically allocated task structure will result in undefined
  123. * behaviour. */
  124. int destroy;
  125. /* If this flag is set, the task will be re-submitted to StarPU once it
  126. * has been executed. This flag must not be set if the destroy flag is
  127. * set too. */
  128. int regenerate;
  129. unsigned status;
  130. /* This gets filled when profiling is enabled by using
  131. * starpu_profiling_status_set */
  132. struct starpu_task_profiling_info *profiling_info;
  133. /* Predicted duration of the task in µs. This field is only valid if the
  134. * scheduling strategy uses performance models. */
  135. double predicted;
  136. /* Predicted data transfer duration for the task in µs. This field is
  137. * only valid if the scheduling strategy uses performance models. */
  138. double predicted_transfer;
  139. /* This field are provided for the convenience of the scheduler. */
  140. struct starpu_task *prev;
  141. struct starpu_task *next;
  142. /* this is private to StarPU, do not modify. If the task is allocated
  143. * by hand (without starpu_task_create), this field should be set to
  144. * NULL. */
  145. void *starpu_private;
  146. };
  147. /* It is possible to initialize statically allocated tasks with this value.
  148. * This is equivalent to initializing a starpu_task structure with the
  149. * starpu_task_init function. */
  150. #define STARPU_TASK_INITIALIZER \
  151. { \
  152. .cl = NULL, \
  153. .cl_arg = NULL, \
  154. .cl_arg_size = 0, \
  155. .callback_func = NULL, \
  156. .callback_arg = NULL, \
  157. .priority = STARPU_DEFAULT_PRIO, \
  158. .use_tag = 0, \
  159. .synchronous = 0, \
  160. .execute_on_a_specific_worker = 0, \
  161. .bundle = NULL, \
  162. .detach = 1, \
  163. .destroy = 0, \
  164. .regenerate = 0, \
  165. .status = STARPU_TASK_INVALID, \
  166. .profiling_info = NULL, \
  167. .predicted = -1.0, \
  168. .predicted_transfer = -1.0, \
  169. .starpu_private = NULL \
  170. };
  171. /*
  172. * handle task dependencies: it is possible to associate a task with a unique
  173. * "tag" and to express dependencies between tasks by the means of those tags
  174. *
  175. * To do so, fill the tag_id field with a tag number (can be arbitrary) and set
  176. * use_tag to 1.
  177. *
  178. * If starpu_tag_declare_deps is called with that tag number, the task will not
  179. * be started until the task which wears the declared dependency tags are
  180. * complete.
  181. */
  182. /*
  183. * WARNING ! use with caution ...
  184. * In case starpu_tag_declare_deps is passed constant arguments, the caller
  185. * must make sure that the constants are casted to starpu_tag_t. Otherwise,
  186. * due to integer sizes and argument passing on the stack, the C compiler
  187. * might consider the tag * 0x200000003 instead of 0x2 and 0x3 when calling:
  188. * "starpu_tag_declare_deps(0x1, 2, 0x2, 0x3)"
  189. * Using starpu_tag_declare_deps_array is a way to avoid this problem.
  190. */
  191. /* make id depend on the list of ids */
  192. void starpu_tag_declare_deps(starpu_tag_t id, unsigned ndeps, ...);
  193. void starpu_tag_declare_deps_array(starpu_tag_t id, unsigned ndeps, starpu_tag_t *array);
  194. /* task depends on the tasks in task array */
  195. void starpu_task_declare_deps_array(struct starpu_task *task, unsigned ndeps, struct starpu_task *task_array[]);
  196. int starpu_tag_wait(starpu_tag_t id);
  197. int starpu_tag_wait_array(unsigned ntags, starpu_tag_t *id);
  198. /* The application can feed a tag explicitely */
  199. void starpu_tag_notify_from_apps(starpu_tag_t id);
  200. /* To release resources, tags should be freed after use */
  201. void starpu_tag_remove(starpu_tag_t id);
  202. /* Initialize a task structure with default values. */
  203. void starpu_task_init(struct starpu_task *task);
  204. /* Release all the structures automatically allocated to execute the task. This
  205. * is called implicitely by starpu_task_destroy, but the task structure itself
  206. * is not freed. This should be used for statically allocated tasks for
  207. * instance. */
  208. void starpu_task_deinit(struct starpu_task *task);
  209. /* Allocate a task structure and initialize it with default values. Tasks
  210. * allocated dynamically with starpu_task_create are automatically freed when
  211. * the task is terminated. If the destroy flag is explicitely unset, the
  212. * ressources used by the task are freed by calling starpu_task_destroy.
  213. * */
  214. struct starpu_task *starpu_task_create(void);
  215. /* Free the ressource allocated during the execution of the task and deallocate
  216. * the task structure itself. This function can be called automatically after
  217. * the execution of a task by setting the "destroy" flag of the starpu_task
  218. * structure (default behaviour). Calling this function on a statically
  219. * allocated task results in an undefined behaviour. */
  220. void starpu_task_destroy(struct starpu_task *task);
  221. int starpu_task_submit(struct starpu_task *task);
  222. /* This function blocks until the task was executed. It is not possible to
  223. * synchronize with a task more than once. It is not possible to wait
  224. * synchronous or detached tasks.
  225. * Upon successful completion, this function returns 0. Otherwise, -EINVAL
  226. * indicates that the waited task was either synchronous or detached. */
  227. int starpu_task_wait(struct starpu_task *task);
  228. /* This function waits until all the tasks that were already submitted have
  229. * been executed. */
  230. int starpu_task_wait_for_all(void);
  231. /* This function waits until there is no more ready task. */
  232. int starpu_task_wait_for_no_ready(void);
  233. void starpu_display_codelet_stats(struct starpu_codelet_t *cl);
  234. /* Return the task currently executed by the worker, or NULL if this is called
  235. * either from a thread that is not a task or simply because there is no task
  236. * being executed at the moment. */
  237. struct starpu_task *starpu_get_current_task(void);
  238. #ifdef __cplusplus
  239. }
  240. #endif
  241. #endif /* __STARPU_TASK_H__ */