sched_ctx.h 10 KB

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  1. /* StarPU --- Runtime system for heterogeneous multicore architectures.
  2. *
  3. * Copyright (C) 2011, 2013 INRIA
  4. * Copyright (C) 2016 Uppsala University
  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. #ifndef __SCHED_CONTEXT_H__
  18. #define __SCHED_CONTEXT_H__
  19. #include <starpu.h>
  20. #include <starpu_sched_ctx.h>
  21. #include <starpu_sched_ctx_hypervisor.h>
  22. #include <starpu_scheduler.h>
  23. #include <common/config.h>
  24. #include <common/barrier_counter.h>
  25. #include <profiling/profiling.h>
  26. #include <semaphore.h>
  27. #include "sched_ctx_list.h"
  28. #ifdef STARPU_HAVE_HWLOC
  29. #include <hwloc.h>
  30. #endif
  31. #define NO_RESIZE -1
  32. #define REQ_RESIZE 0
  33. #define DO_RESIZE 1
  34. #define STARPU_GLOBAL_SCHED_CTX 0
  35. #define STARPU_NMAXSMS 13
  36. struct _starpu_sched_ctx
  37. {
  38. /* id of the context used in user mode*/
  39. unsigned id;
  40. /* name of context */
  41. const char *name;
  42. /* policy of the context */
  43. struct starpu_sched_policy *sched_policy;
  44. /* data necessary for the policy */
  45. void *policy_data;
  46. /* pointer for application use */
  47. void *user_data;
  48. struct starpu_worker_collection *workers;
  49. /* we keep an initial sched which we never delete */
  50. unsigned is_initial_sched;
  51. /* wait for the tasks submitted to the context to be executed */
  52. struct _starpu_barrier_counter tasks_barrier;
  53. /* wait for the tasks ready of the context to be executed */
  54. struct _starpu_barrier_counter ready_tasks_barrier;
  55. /* amount of ready flops in a context */
  56. double ready_flops;
  57. /* Iteration number, as advertised by application */
  58. long iterations[2];
  59. int iteration_level;
  60. /* cond to block push when there are no workers in the ctx */
  61. starpu_pthread_cond_t no_workers_cond;
  62. /* mutex to block push when there are no workers in the ctx */
  63. starpu_pthread_mutex_t no_workers_mutex;
  64. /*ready tasks that couldn't be pushed because the ctx has no workers*/
  65. struct starpu_task_list empty_ctx_tasks;
  66. /*ready tasks that couldn't be pushed because the the window of tasks was already full*/
  67. struct starpu_task_list waiting_tasks;
  68. /* mutext protecting waiting_tasks list */
  69. starpu_pthread_mutex_t waiting_tasks_mutex;
  70. /* min CPUs to execute*/
  71. int min_ncpus;
  72. /* max CPUs to execute*/
  73. int max_ncpus;
  74. /* min GPUs to execute*/
  75. int min_ngpus;
  76. /* max GPUs to execute*/
  77. int max_ngpus;
  78. /* in case we delete the context leave resources to the inheritor*/
  79. unsigned inheritor;
  80. /* indicates whether the application finished submitting tasks
  81. to this context*/
  82. unsigned finished_submit;
  83. /* By default we have a binary type of priority: either a task is a priority
  84. * task (level 1) or it is not (level 0). */
  85. int min_priority;
  86. int max_priority;
  87. int min_priority_is_set;
  88. int max_priority_is_set;
  89. /* hwloc tree structure of workers */
  90. #ifdef STARPU_HAVE_HWLOC
  91. hwloc_bitmap_t hwloc_workers_set;
  92. #endif
  93. #ifdef STARPU_USE_SC_HYPERVISOR
  94. /* a structure containing a series of performance counters determining the resize procedure */
  95. struct starpu_sched_ctx_performance_counters *perf_counters;
  96. #endif //STARPU_USE_SC_HYPERVISOR
  97. /* callback called when the context finished executed its submitted tasks */
  98. void (*close_callback)(unsigned sched_ctx_id, void* args);
  99. void *close_args;
  100. /* value placing the contexts in their hierarchy */
  101. unsigned hierarchy_level;
  102. /* if we execute non-StarPU code inside the context
  103. we have a single master worker that stays awake,
  104. if not master is -1 */
  105. int main_master;
  106. /* conditions variables used when parallel sections are executed in contexts */
  107. starpu_pthread_cond_t parallel_sect_cond[STARPU_NMAXWORKERS];
  108. starpu_pthread_mutex_t parallel_sect_mutex[STARPU_NMAXWORKERS];
  109. starpu_pthread_cond_t parallel_sect_cond_busy[STARPU_NMAXWORKERS];
  110. int busy[STARPU_NMAXWORKERS];
  111. /* boolean indicating that workers should block in order to allow
  112. parallel sections to be executed on their allocated resources */
  113. unsigned parallel_sect[STARPU_NMAXWORKERS];
  114. /* semaphore that block appl thread until starpu threads are
  115. all blocked and ready to exec the parallel code */
  116. sem_t fall_asleep_sem[STARPU_NMAXWORKERS];
  117. /* semaphore that block appl thread until starpu threads are
  118. all woke up and ready continue appl */
  119. sem_t wake_up_sem[STARPU_NMAXWORKERS];
  120. /* bool indicating if the workers is sleeping in this ctx */
  121. unsigned sleeping[STARPU_NMAXWORKERS];
  122. /* ctx nesting the current ctx */
  123. unsigned nesting_sched_ctx;
  124. /* perf model for the device comb of the ctx */
  125. struct starpu_perfmodel_arch perf_arch;
  126. /* For parallel workers, say whether it is viewed as sequential or not. This
  127. is a helper for the prologue code. */
  128. unsigned parallel_view;
  129. /* for ctxs without policy: flag to indicate that we want to get
  130. the threads to sleep in order to replace them with other threads or leave
  131. them awake & use them in the parallel code*/
  132. unsigned awake_workers;
  133. /* function called when initializing the scheduler */
  134. void (*init_sched)(unsigned);
  135. int sub_ctxs[STARPU_NMAXWORKERS];
  136. int nsub_ctxs;
  137. /* nr of SMs assigned to this ctx if we partition gpus*/
  138. int nsms;
  139. int sms_start_idx;
  140. int sms_end_idx;
  141. int stream_worker;
  142. };
  143. struct _starpu_machine_config;
  144. /* init sched_ctx_id of all contextes*/
  145. void _starpu_init_all_sched_ctxs(struct _starpu_machine_config *config);
  146. /* allocate all structures belonging to a context */
  147. struct _starpu_sched_ctx* _starpu_create_sched_ctx(struct starpu_sched_policy *policy, int *workerid, int nworkerids, unsigned is_init_sched, const char *sched_name,
  148. int min_prio_set, int min_prio,
  149. int max_prio_set, int max_prio, unsigned awake_workers, void (*sched_policy_init)(unsigned), void *user_data,
  150. int nsub_ctxs, int *sub_ctxs, int nsms);
  151. /* delete all sched_ctx */
  152. void _starpu_delete_all_sched_ctxs();
  153. /* This function waits until all the tasks that were already submitted to a specific
  154. * context have been executed. */
  155. int _starpu_wait_for_all_tasks_of_sched_ctx(unsigned sched_ctx_id);
  156. /* This function waits until at most n tasks are still submitted. */
  157. int _starpu_wait_for_n_submitted_tasks_of_sched_ctx(unsigned sched_ctx_id, unsigned n);
  158. /* In order to implement starpu_wait_for_all_tasks_of_ctx, we keep track of the number of
  159. * task currently submitted to the context */
  160. void _starpu_decrement_nsubmitted_tasks_of_sched_ctx(unsigned sched_ctx_id);
  161. void _starpu_increment_nsubmitted_tasks_of_sched_ctx(unsigned sched_ctx_id);
  162. int _starpu_get_nsubmitted_tasks_of_sched_ctx(unsigned sched_ctx_id);
  163. int _starpu_check_nsubmitted_tasks_of_sched_ctx(unsigned sched_ctx_id);
  164. void _starpu_decrement_nready_tasks_of_sched_ctx(unsigned sched_ctx_id, double ready_flops);
  165. unsigned _starpu_increment_nready_tasks_of_sched_ctx(unsigned sched_ctx_id, double ready_flops, struct starpu_task *task);
  166. int _starpu_wait_for_no_ready_of_sched_ctx(unsigned sched_ctx_id);
  167. /* Return the corresponding index of the workerid in the ctx table */
  168. int _starpu_get_index_in_ctx_of_workerid(unsigned sched_ctx, unsigned workerid);
  169. /* Get the mutex corresponding to the global workerid */
  170. starpu_pthread_mutex_t *_starpu_get_sched_mutex(struct _starpu_sched_ctx *sched_ctx, int worker);
  171. /* Get workers belonging to a certain context, it returns the number of workers
  172. take care: no mutex taken, the list of workers might not be updated */
  173. int _starpu_get_workers_of_sched_ctx(unsigned sched_ctx_id, int *pus, enum starpu_worker_archtype arch);
  174. /* Let the worker know it does not belong to the context and that
  175. it should stop poping from it */
  176. void _starpu_worker_gets_out_of_ctx(unsigned sched_ctx_id, struct _starpu_worker *worker);
  177. /* Check if the worker belongs to another sched_ctx */
  178. unsigned _starpu_worker_belongs_to_a_sched_ctx(int workerid, unsigned sched_ctx_id);
  179. /* mutex synchronising several simultaneous modifications of a context */
  180. starpu_pthread_rwlock_t* _starpu_sched_ctx_get_changing_ctx_mutex(unsigned sched_ctx_id);
  181. /* indicates wheather this worker should go to sleep or not
  182. (if it is the last one awake in a context he should better keep awake) */
  183. unsigned _starpu_sched_ctx_last_worker_awake(struct _starpu_worker *worker);
  184. /* let the appl know that the worker blocked to execute parallel code */
  185. void _starpu_sched_ctx_signal_worker_blocked(unsigned sched_ctx_id, int workerid);
  186. /* let the appl know that the worker woke up */
  187. void _starpu_sched_ctx_signal_worker_woke_up(unsigned sched_ctx_id, int workerid);
  188. /* If starpu_sched_ctx_set_context() has been called, returns the context
  189. * id set by its last call, or the id of the initial context */
  190. unsigned _starpu_sched_ctx_get_current_context();
  191. /* verify how many workers can execute a certain task */
  192. int _starpu_nworkers_able_to_execute_task(struct starpu_task *task, struct _starpu_sched_ctx *sched_ctx);
  193. void _starpu_fetch_tasks_from_empty_ctx_list(struct _starpu_sched_ctx *sched_ctx);
  194. unsigned _starpu_sched_ctx_allow_hypervisor(unsigned sched_ctx_id);
  195. struct starpu_perfmodel_arch * _starpu_sched_ctx_get_perf_archtype(unsigned sched_ctx);
  196. #ifdef STARPU_USE_SC_HYPERVISOR
  197. /* Notifies the hypervisor that a tasks was poped from the workers' list */
  198. void _starpu_sched_ctx_post_exec_task_cb(int workerid, struct starpu_task *task, size_t data_size, uint32_t footprint);
  199. #endif //STARPU_USE_SC_HYPERVISOR
  200. /* if the worker is the master of a parallel context, and the job is meant to be executed on this parallel context, return a pointer to the context */
  201. struct _starpu_sched_ctx *__starpu_sched_ctx_get_sched_ctx_for_worker_and_job(struct _starpu_worker *worker, struct _starpu_job *j);
  202. #define _starpu_sched_ctx_get_sched_ctx_for_worker_and_job(w,j) \
  203. (_starpu_get_nsched_ctxs() <= 1 ? _starpu_get_sched_ctx_struct(0) : __starpu_sched_ctx_get_sched_ctx_for_worker_and_job((w),(j)))
  204. #endif // __SCHED_CONTEXT_H__