coherency.h 10 KB

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  1. /* StarPU --- Runtime system for heterogeneous multicore architectures.
  2. *
  3. * Copyright (C) 2009-2015 Université de Bordeaux
  4. * Copyright (C) 2010, 2011, 2012, 2013, 2014 Centre National de la Recherche Scientifique
  5. * Copyright (C) 2014 Inria
  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. #ifndef __COHERENCY__H__
  19. #define __COHERENCY__H__
  20. #include <starpu.h>
  21. #include <common/config.h>
  22. #include <common/starpu_spinlock.h>
  23. #include <common/rwlock.h>
  24. #include <common/timing.h>
  25. #include <common/fxt.h>
  26. #include <common/list.h>
  27. #include <datawizard/interfaces/data_interface.h>
  28. #include <datawizard/datastats.h>
  29. #include <datawizard/memstats.h>
  30. enum _starpu_cache_state
  31. {
  32. STARPU_OWNER,
  33. STARPU_SHARED,
  34. STARPU_INVALID
  35. };
  36. /* this should contain the information relative to a given data replicate */
  37. struct _starpu_data_replicate {
  38. starpu_data_handle_t handle;
  39. /* describe the actual data layout, as manipulated by data interfaces in *_interface.c */
  40. void *data_interface;
  41. unsigned memory_node;
  42. /* describes the state of the local data in term of coherency */
  43. enum _starpu_cache_state state;
  44. int refcnt;
  45. /* A buffer that is used for SCRATCH or reduction cannnot be used with
  46. * filters. */
  47. unsigned relaxed_coherency:2;
  48. /* We may need to initialize the replicate with some value before using it. */
  49. unsigned initialized:1;
  50. /* is the data locally allocated ? */
  51. unsigned allocated:1;
  52. /* was it automatically allocated ? (else it's the application-provided
  53. * buffer, don't ever try to free it!) */
  54. /* perhaps the allocation was perform higher in the hiearchy
  55. * for now this is just translated into !automatically_allocated
  56. * */
  57. unsigned automatically_allocated:1;
  58. /* Pointer to memchunk for LRU strategy */
  59. struct _starpu_mem_chunk * mc;
  60. /* To help the scheduling policies to make some decision, we
  61. may keep a track of the tasks that are likely to request
  62. this data on the current node.
  63. It is the responsability of the scheduling _policy_ to set that
  64. flag when it assigns a task to a queue, policies which do not
  65. use this hint can simply ignore it.
  66. */
  67. uint32_t requested;
  68. struct _starpu_data_request *request[STARPU_MAXNODES];
  69. };
  70. struct _starpu_data_requester_list;
  71. struct _starpu_jobid_list
  72. {
  73. unsigned long id;
  74. struct _starpu_jobid_list *next;
  75. };
  76. /* This structure describes a simply-linked list of task */
  77. struct _starpu_task_wrapper_list
  78. {
  79. struct starpu_task *task;
  80. struct _starpu_task_wrapper_list *next;
  81. };
  82. /* This structure describes a doubly-linked list of task */
  83. struct _starpu_task_wrapper_dlist {
  84. struct starpu_task *task;
  85. struct _starpu_task_wrapper_dlist *next;
  86. struct _starpu_task_wrapper_dlist *prev;
  87. };
  88. extern int _starpu_has_not_important_data;
  89. typedef void (*_starpu_data_handle_unregister_hook)(starpu_data_handle_t);
  90. struct _starpu_data_state
  91. {
  92. struct _starpu_data_requester_list *req_list;
  93. /* the number of requests currently in the scheduling engine (not in
  94. * the req_list anymore), i.e. the number of holders of the
  95. * current_mode rwlock */
  96. unsigned refcnt;
  97. /* Current access mode. Is always either STARPU_R, STARPU_W,
  98. * STARPU_SCRATCH or STARPU_REDUX, but never a combination such as
  99. * STARPU_RW. */
  100. enum starpu_data_access_mode current_mode;
  101. /* protect meta data */
  102. struct _starpu_spinlock header_lock;
  103. /* Condition to make application wait for all transfers before freeing handle */
  104. /* busy_count is the number of handle->refcnt, handle->per_node[*]->refcnt, number of starpu_data_requesters, and number of tasks that have released it but are still registered on the implicit data dependency lists. */
  105. /* Core code which releases busy_count has to call
  106. * _starpu_data_check_not_busy to let starpu_data_unregister proceed */
  107. unsigned busy_count;
  108. /* Is starpu_data_unregister waiting for busy_count? */
  109. unsigned busy_waiting;
  110. starpu_pthread_mutex_t busy_mutex;
  111. starpu_pthread_cond_t busy_cond;
  112. /* In case we user filters, the handle may describe a sub-data */
  113. struct _starpu_data_state *root_handle; /* root of the tree */
  114. struct _starpu_data_state *father_handle; /* father of the node, NULL if the current node is the root */
  115. unsigned sibling_index; /* indicate which child this node is from the father's perpsective (if any) */
  116. unsigned depth; /* what's the depth of the tree ? */
  117. starpu_data_handle_t children;
  118. unsigned nchildren;
  119. /* describe the state of the data in term of coherency */
  120. struct _starpu_data_replicate per_node[STARPU_MAXNODES];
  121. struct _starpu_data_replicate per_worker[STARPU_NMAXWORKERS];
  122. struct starpu_data_interface_ops *ops;
  123. /* Footprint which identifies data layout */
  124. uint32_t footprint;
  125. /* where is the data home, i.e. which node it was registered from ? -1 if none yet */
  126. int home_node;
  127. /* what is the default write-through mask for that data ? */
  128. uint32_t wt_mask;
  129. /* allows special optimization */
  130. uint8_t is_readonly;
  131. /* in some case, the application may explicitly tell StarPU that a
  132. * piece of data is not likely to be used soon again */
  133. unsigned is_not_important;
  134. /* Does StarPU have to enforce some implicit data-dependencies ? */
  135. unsigned sequential_consistency;
  136. /* This lock should protect any operation to enforce
  137. * sequential_consistency */
  138. starpu_pthread_mutex_t sequential_consistency_mutex;
  139. /* The last submitted task (or application data request) that declared
  140. * it would modify the piece of data ? Any task accessing the data in a
  141. * read-only mode should depend on that task implicitely if the
  142. * sequential_consistency flag is enabled. */
  143. enum starpu_data_access_mode last_submitted_mode;
  144. struct starpu_task *last_sync_task;
  145. struct _starpu_task_wrapper_dlist last_submitted_accessors;
  146. /* If FxT is enabled, we keep track of "ghost dependencies": that is to
  147. * say the dependencies that are not needed anymore, but that should
  148. * appear in the post-mortem DAG. For instance if we have the sequence
  149. * f(Aw) g(Aw), and that g is submitted after the termination of f, we
  150. * want to have f->g appear in the DAG even if StarPU does not need to
  151. * enforce this dependency anymore.*/
  152. unsigned last_submitted_ghost_sync_id_is_valid;
  153. unsigned long last_submitted_ghost_sync_id;
  154. struct _starpu_jobid_list *last_submitted_ghost_accessors_id;
  155. /* protected by sequential_consistency_mutex */
  156. struct _starpu_task_wrapper_list *post_sync_tasks;
  157. unsigned post_sync_tasks_cnt;
  158. /*
  159. * Reductions
  160. */
  161. /* During reduction we need some specific methods: redux_func performs
  162. * the reduction of an interface into another one (eg. "+="), and init_func
  163. * initializes the data interface to a default value that is stable by
  164. * reduction (eg. 0 for +=). */
  165. struct starpu_codelet *redux_cl;
  166. struct starpu_codelet *init_cl;
  167. /* Are we currently performing a reduction on that handle ? If so the
  168. * reduction_refcnt should be non null until there are pending tasks
  169. * that are performing the reduction. */
  170. unsigned reduction_refcnt;
  171. /* List of requesters that are specific to the pending reduction. This
  172. * list is used when the requests in the req_list list are frozen until
  173. * the end of the reduction. */
  174. struct _starpu_data_requester_list *reduction_req_list;
  175. starpu_data_handle_t *reduction_tmp_handles;
  176. unsigned lazy_unregister;
  177. #ifdef STARPU_OPENMP
  178. unsigned removed_from_context_hash;
  179. #endif
  180. /* Used for MPI */
  181. int rank;
  182. int tag;
  183. _starpu_memory_stats_t memory_stats;
  184. unsigned int mf_node; //XXX
  185. /* hook to be called when unregistering the data */
  186. _starpu_data_handle_unregister_hook unregister_hook;
  187. };
  188. void _starpu_display_msi_stats(void);
  189. /* This does not take a reference on the handle, the caller has to do it,
  190. * e.g. through _starpu_attempt_to_submit_data_request_from_apps()
  191. * detached means that the core is allowed to drop the request. The caller
  192. * should thus *not* take a reference since it can not know whether the request will complete
  193. * async means that _starpu_fetch_data_on_node will wait for completion of the request
  194. */
  195. int _starpu_fetch_data_on_node(starpu_data_handle_t handle, struct _starpu_data_replicate *replicate,
  196. enum starpu_data_access_mode mode, unsigned detached, unsigned async,
  197. void (*callback_func)(void *), void *callback_arg);
  198. /* This releases a reference on the handle */
  199. void _starpu_release_data_on_node(struct _starpu_data_state *state, uint32_t default_wt_mask,
  200. struct _starpu_data_replicate *replicate);
  201. void _starpu_update_data_state(starpu_data_handle_t handle,
  202. struct _starpu_data_replicate *requesting_replicate,
  203. enum starpu_data_access_mode mode);
  204. uint32_t _starpu_get_data_refcnt(struct _starpu_data_state *state, unsigned node);
  205. size_t _starpu_data_get_size(starpu_data_handle_t handle);
  206. uint32_t _starpu_data_get_footprint(starpu_data_handle_t handle);
  207. void _starpu_push_task_output(struct _starpu_job *j);
  208. STARPU_ATTRIBUTE_WARN_UNUSED_RESULT
  209. int _starpu_fetch_task_input(struct _starpu_job *j);
  210. unsigned _starpu_is_data_present_or_requested(struct _starpu_data_state *state, unsigned node);
  211. int _starpu_select_src_node(struct _starpu_data_state *state, unsigned destination);
  212. /* is_prefetch is whether the DSM may drop the request (when there is not enough memory for instance
  213. * async is whether the caller wants a reference on the last request, to be
  214. * able to wait for it (which will release that reference).
  215. */
  216. struct _starpu_data_request *_starpu_create_request_to_fetch_data(starpu_data_handle_t handle,
  217. struct _starpu_data_replicate *dst_replicate,
  218. enum starpu_data_access_mode mode, unsigned is_prefetch,
  219. unsigned async,
  220. void (*callback_func)(void *), void *callback_arg);
  221. void _starpu_redux_init_data_replicate(starpu_data_handle_t handle, struct _starpu_data_replicate *replicate, int workerid);
  222. void _starpu_data_start_reduction_mode(starpu_data_handle_t handle);
  223. void _starpu_data_end_reduction_mode(starpu_data_handle_t handle);
  224. void _starpu_data_end_reduction_mode_terminate(starpu_data_handle_t handle);
  225. void _starpu_data_set_unregister_hook(starpu_data_handle_t handle, _starpu_data_handle_unregister_hook func);
  226. #endif // __COHERENCY__H__