starpu_sched_component.h 16 KB

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  1. /* StarPU --- Runtime system for heterogeneous multicore architectures.
  2. *
  3. * Copyright (C) 2013 Simon Archipoff
  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. #ifndef __STARPU_SCHED_COMPONENT_H__
  17. #define __STARPU_SCHED_COMPONENT_H__
  18. #include <starpu.h>
  19. #include <common/starpu_spinlock.h>
  20. #include <common/fxt.h>
  21. #include <starpu_bitmap.h>
  22. #ifdef STARPU_HAVE_HWLOC
  23. #include <hwloc.h>
  24. #endif
  25. enum starpu_sched_component_properties
  26. {
  27. STARPU_SCHED_COMPONENT_HOMOGENEOUS = (1<<0),
  28. STARPU_SCHED_COMPONENT_SINGLE_MEMORY_NODE = (1<<1)
  29. };
  30. #define STARPU_SCHED_COMPONENT_IS_HOMOGENEOUS(component) ((component)->properties & STARPU_SCHED_COMPONENT_HOMOGENEOUS)
  31. #define STARPU_SCHED_COMPONENT_IS_SINGLE_MEMORY_NODE(component) ((component)->properties & STARPU_SCHED_COMPONENT_SINGLE_MEMORY_NODE)
  32. /* struct starpu_sched_component are scheduler modules, a scheduler is a tree-like
  33. * structure of them, some parts of scheduler can be shared by several contexes
  34. * to perform some local optimisations, so, for all components, a list of parent is
  35. * defined indexed by sched_ctx_id
  36. *
  37. * they embed there specialised method in a pseudo object-style, so calls are like component->push_task(component,task)
  38. *
  39. */
  40. struct starpu_sched_component
  41. {
  42. /* the set of workers in the component's subtree
  43. */
  44. struct starpu_bitmap * workers;
  45. /* the workers available in context
  46. * this member is set with :
  47. * component->workers UNION tree->workers UNION
  48. * component->child[i]->workers_in_ctx iff exist x such as component->children[i]->parents[x] == component
  49. */
  50. struct starpu_bitmap * workers_in_ctx;
  51. /* component's private data, no restriction on use
  52. */
  53. void * data;
  54. /* the numbers of component's children
  55. */
  56. int nchildren;
  57. /* the vector of component's children
  58. */
  59. struct starpu_sched_component ** children;
  60. /* the numbers of component's parents
  61. */
  62. int nparents;
  63. /* may be shared by several contexts
  64. * so we need several parents
  65. */
  66. struct starpu_sched_component ** parents;
  67. void (*add_child)(struct starpu_sched_component * component, struct starpu_sched_component * child);
  68. void (*remove_child)(struct starpu_sched_component * component, struct starpu_sched_component * child);
  69. void (*add_parent)(struct starpu_sched_component * component, struct starpu_sched_component * parent);
  70. void (*remove_parent)(struct starpu_sched_component * component, struct starpu_sched_component * parent);
  71. /* component->push_task(component, task)
  72. * this function is called to push a task on component subtree, this can either
  73. * perform a recursive call on a child or store the task in the component, then
  74. * it will be returned by a further pull_task call
  75. *
  76. * the caller must ensure that component is able to execute task
  77. */
  78. int (*push_task)(struct starpu_sched_component *,
  79. struct starpu_task *);
  80. /* this function is called by workers to get a task on them parents
  81. * this function should first return a localy stored task or perform
  82. * a recursive call on parent
  83. *
  84. * a default implementation simply do a recursive call on parent
  85. */
  86. struct starpu_task * (*pull_task)(struct starpu_sched_component *);
  87. /* This function is called by a component which implements a queue, allowing it to
  88. * signify to its parents that an empty slot is available in its queue.
  89. * The basic implementation of this function is a recursive call to its
  90. * parents, the user have to specify a personally-made function to catch those
  91. * calls.
  92. */
  93. int (*can_push)(struct starpu_sched_component * component);
  94. /* This function allow a component to wake up a worker.
  95. * It is currently called by component which implements a queue, to signify to
  96. * its children that a task have been pushed in its local queue, and is
  97. * available to been popped by a worker, for example.
  98. * The basic implementation of this function is a recursive call to
  99. * its children, until at least one worker have been woken up.
  100. */
  101. void (*can_pull)(struct starpu_sched_component * component);
  102. /* this function is an heuristic that compute load of subtree, basicaly
  103. * it compute
  104. * estimated_load(component) = sum(estimated_load(component_children)) +
  105. * nb_local_tasks / average(relative_speedup(underlying_worker))
  106. */
  107. double (*estimated_load)(struct starpu_sched_component * component);
  108. double (*estimated_end)(struct starpu_sched_component * component);
  109. /* this function is called by starpu_sched_component_destroy just before freeing component
  110. */
  111. void (*deinit_data)(struct starpu_sched_component * component);
  112. /* this function is called for each component when workers are added or removed from a context
  113. */
  114. void (*notify_change_workers)(struct starpu_sched_component * component);
  115. /* is_homogeneous is 0 if workers in the component's subtree are heterogeneous,
  116. * this field is set and updated automaticaly, you shouldn't write on it
  117. */
  118. int properties;
  119. #ifdef STARPU_HAVE_HWLOC
  120. /* in case of a modularized scheduler, this is set to the part of
  121. * topology that is binded to this component, eg: a numa node for a ws
  122. * component that would balance load between underlying sockets
  123. */
  124. hwloc_obj_t obj;
  125. #endif
  126. };
  127. struct starpu_sched_tree
  128. {
  129. struct starpu_sched_component * root;
  130. struct starpu_bitmap * workers;
  131. unsigned sched_ctx_id;
  132. /* this lock is used to protect the scheduler,
  133. * it is taken in read mode pushing a task
  134. * and in write mode for adding or removing workers
  135. */
  136. starpu_pthread_mutex_t lock;
  137. };
  138. /*******************************************************************************
  139. * Scheduling Tree's Interface *
  140. ******************************************************************************/
  141. /* create an empty tree
  142. */
  143. struct starpu_sched_tree * starpu_sched_tree_create(unsigned sched_ctx_id);
  144. void starpu_sched_tree_destroy(struct starpu_sched_tree * tree);
  145. /* destroy component and all his child
  146. * except if they are shared between several contexts
  147. */
  148. void starpu_sched_component_destroy_rec(struct starpu_sched_component * component);
  149. /* update all the component->workers member recursively
  150. */
  151. void starpu_sched_tree_update_workers(struct starpu_sched_tree * t);
  152. /* idem for workers_in_ctx
  153. */
  154. void starpu_sched_tree_update_workers_in_ctx(struct starpu_sched_tree * t);
  155. int starpu_sched_tree_push_task(struct starpu_task * task);
  156. struct starpu_task * starpu_sched_tree_pop_task();
  157. void starpu_sched_tree_add_workers(unsigned sched_ctx_id, int *workerids, unsigned nworkers);
  158. void starpu_sched_tree_remove_workers(unsigned sched_ctx_id, int *workerids, unsigned nworkers);
  159. /*******************************************************************************
  160. * Generic Scheduling Component's Interface *
  161. ******************************************************************************/
  162. struct starpu_sched_component * starpu_sched_component_create(void);
  163. void starpu_sched_component_destroy(struct starpu_sched_component * component);
  164. int starpu_sched_component_can_execute_task(struct starpu_sched_component * component, struct starpu_task * task);
  165. int STARPU_WARN_UNUSED_RESULT starpu_sched_component_execute_preds(struct starpu_sched_component * component, struct starpu_task * task, double * length);
  166. double starpu_sched_component_transfer_length(struct starpu_sched_component * component, struct starpu_task * task);
  167. void starpu_sched_component_prefetch_on_node(struct starpu_sched_component * component, struct starpu_task * task);
  168. /*******************************************************************************
  169. * Worker Component's Interface *
  170. ******************************************************************************/
  171. /* no public create function for workers because we dont want to have several component_worker for a single workerid */
  172. struct starpu_sched_component * starpu_sched_component_worker_get(int workerid);
  173. int starpu_sched_component_worker_get_workerid(struct starpu_sched_component * worker_component);
  174. /* this function compare the available function of the component with the standard available for worker components*/
  175. int starpu_sched_component_is_worker(struct starpu_sched_component * component);
  176. int starpu_sched_component_is_simple_worker(struct starpu_sched_component * component);
  177. int starpu_sched_component_is_combined_worker(struct starpu_sched_component * component);
  178. void starpu_sched_component_worker_pre_exec_hook(struct starpu_task * task);
  179. void starpu_sched_component_worker_post_exec_hook(struct starpu_task * task);
  180. /*******************************************************************************
  181. * Flow-control Fifo Component's Interface *
  182. ******************************************************************************/
  183. struct starpu_fifo_data
  184. {
  185. unsigned ntasks_threshold;
  186. double exp_len_threshold;
  187. };
  188. struct starpu_sched_component * starpu_sched_component_fifo_create(struct starpu_fifo_data * fifo_data);
  189. int starpu_sched_component_is_fifo(struct starpu_sched_component * component);
  190. /*******************************************************************************
  191. * Flow-control Prio Component's Interface *
  192. ******************************************************************************/
  193. struct starpu_prio_data
  194. {
  195. unsigned ntasks_threshold;
  196. double exp_len_threshold;
  197. };
  198. struct starpu_sched_component * starpu_sched_component_prio_create(struct starpu_prio_data * prio_data);
  199. int starpu_sched_component_is_prio(struct starpu_sched_component * component);
  200. /*******************************************************************************
  201. * Resource-mapping Work-Stealing Component's Interface *
  202. ******************************************************************************/
  203. struct starpu_sched_component * starpu_sched_component_work_stealing_create(void * arg STARPU_ATTRIBUTE_UNUSED);
  204. int starpu_sched_component_is_work_stealing(struct starpu_sched_component * component);
  205. int starpu_sched_tree_work_stealing_push_task(struct starpu_task *task);
  206. /*******************************************************************************
  207. * Resource-mapping Random Component's Interface *
  208. ******************************************************************************/
  209. struct starpu_sched_component * starpu_sched_component_random_create(void * arg STARPU_ATTRIBUTE_UNUSED);
  210. int starpu_sched_component_is_random(struct starpu_sched_component *);
  211. /*******************************************************************************
  212. * Resource-mapping Eager Component's Interface *
  213. ******************************************************************************/
  214. struct starpu_sched_component * starpu_sched_component_eager_create(void * arg STARPU_ATTRIBUTE_UNUSED);
  215. int starpu_sched_component_is_eager(struct starpu_sched_component *);
  216. /*******************************************************************************
  217. * Resource-mapping Eager-Calibration Component's Interface *
  218. ******************************************************************************/
  219. struct starpu_sched_component * starpu_sched_component_eager_calibration_create(void * arg STARPU_ATTRIBUTE_UNUSED);
  220. int starpu_sched_component_is_eager_calibration(struct starpu_sched_component *);
  221. /*******************************************************************************
  222. * Resource-mapping MCT Component's Interface *
  223. ******************************************************************************/
  224. struct starpu_mct_data
  225. {
  226. double alpha;
  227. double beta;
  228. double gamma;
  229. double idle_power;
  230. };
  231. /* create a component with mct_data paremeters
  232. a copy the struct starpu_mct_data * given is performed during the init_data call
  233. the mct component doesnt do anything but pushing tasks on no_perf_model_component and calibrating_component
  234. */
  235. struct starpu_sched_component * starpu_sched_component_mct_create(struct starpu_mct_data * mct_data);
  236. int starpu_sched_component_is_mct(struct starpu_sched_component * component);
  237. /*******************************************************************************
  238. * Resource-mapping HEFT Component's Interface *
  239. ******************************************************************************/
  240. struct starpu_sched_component * starpu_sched_component_heft_create(struct starpu_mct_data * mct_data);
  241. int starpu_sched_component_is_heft(struct starpu_sched_component * component);
  242. /*******************************************************************************
  243. * Special-purpose Best_Implementation Component's Interface *
  244. ******************************************************************************/
  245. /* this component select the best implementation for the first worker in context that can execute task.
  246. * and fill task->predicted and task->predicted_transfer
  247. * cannot have several child if push_task is called
  248. */
  249. struct starpu_sched_component * starpu_sched_component_best_implementation_create(void * arg STARPU_ATTRIBUTE_UNUSED);
  250. struct starpu_perfmodel_select_data
  251. {
  252. struct starpu_sched_component * calibrator_component;
  253. struct starpu_sched_component * no_perfmodel_component;
  254. struct starpu_sched_component * perfmodel_component;
  255. };
  256. /*******************************************************************************
  257. * Special-purpose Perfmodel_Select Component's Interface *
  258. ******************************************************************************/
  259. struct starpu_sched_component * starpu_sched_component_perfmodel_select_create(struct starpu_perfmodel_select_data * perfmodel_select_data);
  260. int starpu_sched_component_is_perfmodel_select(struct starpu_sched_component * component);
  261. /*******************************************************************************
  262. * Recipe Component's Interface *
  263. ******************************************************************************/
  264. struct starpu_sched_component_composed_recipe;
  265. /* create empty recipe */
  266. struct starpu_sched_component_composed_recipe * starpu_sched_component_create_recipe(void);
  267. struct starpu_sched_component_composed_recipe * starpu_sched_component_create_recipe_singleton(struct starpu_sched_component *(*create_component)(void * arg), void * arg);
  268. /* add a function creation component to recipe */
  269. void starpu_sched_recipe_add_component(struct starpu_sched_component_composed_recipe * recipe, struct starpu_sched_component *(*create_component)(void * arg), void * arg);
  270. void starpu_destroy_composed_sched_component_recipe(struct starpu_sched_component_composed_recipe *);
  271. struct starpu_sched_component * starpu_sched_component_composed_component_create(struct starpu_sched_component_composed_recipe * recipe);
  272. #ifdef STARPU_HAVE_HWLOC
  273. /* null pointer mean to ignore a level L of hierarchy, then components of levels > L become children of level L - 1 */
  274. struct starpu_sched_specs
  275. {
  276. /* hw_loc_machine_composed_sched_component must be set as its the root of the topology */
  277. struct starpu_sched_component_composed_recipe * hwloc_machine_composed_sched_component;
  278. struct starpu_sched_component_composed_recipe * hwloc_component_composed_sched_component;
  279. struct starpu_sched_component_composed_recipe * hwloc_socket_composed_sched_component;
  280. struct starpu_sched_component_composed_recipe * hwloc_cache_composed_sched_component;
  281. /* this member should return a new allocated starpu_sched_component_composed_recipe or NULL
  282. * the starpu_sched_component_composed_recipe_t must not include the worker component
  283. */
  284. struct starpu_sched_component_composed_recipe * (*worker_composed_sched_component)(enum starpu_worker_archtype archtype);
  285. /* this flag indicate if heterogenous workers should be brothers or cousins,
  286. * as example, if a gpu and a cpu should share or not there numa node
  287. */
  288. int mix_heterogeneous_workers;
  289. };
  290. struct starpu_sched_tree * starpu_sched_component_make_scheduler(unsigned sched_ctx_id, struct starpu_sched_specs);
  291. #endif /* STARPU_HAVE_HWLOC */
  292. #endif