starpu_scheduler.h 6.9 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) 2011 Télécom-SudParis
  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. #include <starpu.h>
  18. #ifndef __STARPU_SCHEDULER_H__
  19. #define __STARPU_SCHEDULER_H__
  20. #include <starpu_config.h>
  21. #if ! defined(_MSC_VER)
  22. # include <pthread.h>
  23. #endif
  24. #ifdef STARPU_HAVE_HWLOC
  25. #include <hwloc.h>
  26. #endif
  27. #ifdef __cplusplus
  28. extern "C"
  29. {
  30. #endif
  31. struct starpu_task;
  32. struct starpu_machine_topology
  33. {
  34. unsigned nworkers;
  35. unsigned ncombinedworkers;
  36. #ifdef STARPU_HAVE_HWLOC
  37. hwloc_topology_t hwtopology;
  38. #else
  39. /* We maintain ABI compatibility with and without hwloc */
  40. void *dummy;
  41. #endif
  42. unsigned nhwcpus;
  43. unsigned nhwcudagpus;
  44. unsigned nhwopenclgpus;
  45. unsigned ncpus;
  46. unsigned ncudagpus;
  47. unsigned nopenclgpus;
  48. unsigned ngordon_spus;
  49. /* Where to bind workers ? */
  50. unsigned workers_bindid[STARPU_NMAXWORKERS];
  51. /* Which GPU(s) do we use for CUDA ? */
  52. unsigned workers_cuda_gpuid[STARPU_NMAXWORKERS];
  53. /* Which GPU(s) do we use for OpenCL ? */
  54. unsigned workers_opencl_gpuid[STARPU_NMAXWORKERS];
  55. };
  56. /* This structure contains all the methods that implement a scheduling policy.
  57. * An application may specify which scheduling strategy in the "sched_policy"
  58. * field of the starpu_conf structure passed to the starpu_init function. */
  59. struct starpu_sched_policy
  60. {
  61. /* Initialize the scheduling policy. */
  62. void (*init_sched)(struct starpu_machine_topology *, struct starpu_sched_policy *);
  63. /* Cleanup the scheduling policy. */
  64. void (*deinit_sched)(struct starpu_machine_topology *, struct starpu_sched_policy *);
  65. /* Insert a task into the scheduler. */
  66. int (*push_task)(struct starpu_task *);
  67. /* Notify the scheduler that a task was directly pushed to the worker
  68. * without going through the scheduler. This method is called when a
  69. * task is explicitely assigned to a worker. This method therefore
  70. * permits to keep the timing state of the scheduler coherent even
  71. * when StarPU bypasses the scheduling strategy. */
  72. void (*push_task_notify)(struct starpu_task *, int workerid);
  73. /* Get a task from the scheduler. The mutex associated to the worker is
  74. * already taken when this method is called. */
  75. struct starpu_task *(*pop_task)(void);
  76. /* Remove all available tasks from the scheduler (tasks are chained by
  77. * the means of the prev and next fields of the starpu_task
  78. * structure). The mutex associated to the worker is already taken
  79. * when this method is called. */
  80. struct starpu_task *(*pop_every_task)(void);
  81. /* This method is called every time a task has been executed. (optionnal) */
  82. void (*post_exec_hook)(struct starpu_task *);
  83. /* Name of the policy (optionnal) */
  84. const char *policy_name;
  85. /* Description of the policy (optionnal) */
  86. const char *policy_description;
  87. };
  88. /* When there is no available task for a worker, StarPU blocks this worker on a
  89. condition variable. This function specifies which condition variable (and the
  90. associated mutex) should be used to block (and to wake up) a worker. Note that
  91. multiple workers may use the same condition variable. For instance, in the case
  92. of a scheduling strategy with a single task queue, the same condition variable
  93. would be used to block and wake up all workers. The initialization method of a
  94. scheduling strategy (init_sched) must call this function once per worker. */
  95. #if !defined(_MSC_VER)
  96. void starpu_worker_set_sched_condition(int workerid, pthread_cond_t *sched_cond, pthread_mutex_t *sched_mutex);
  97. #endif
  98. /* Check if the worker specified by workerid can execute the codelet. */
  99. int starpu_worker_can_execute_task(unsigned workerid, struct starpu_task *task, unsigned nimpl);
  100. /* The scheduling policy may put tasks directly into a worker's local queue so
  101. * that it is not always necessary to create its own queue when the local queue
  102. * is sufficient. If "back" not null, the task is put at the back of the queue
  103. * where the worker will pop tasks first. Setting "back" to 0 therefore ensures
  104. * a FIFO ordering. */
  105. int starpu_push_local_task(int workerid, struct starpu_task *task, int back);
  106. /*
  107. * Priorities
  108. */
  109. /* Provided for legacy reasons */
  110. #define STARPU_MIN_PRIO (starpu_sched_get_min_priority())
  111. #define STARPU_MAX_PRIO (starpu_sched_get_max_priority())
  112. /* By convention, the default priority level should be 0 so that we can
  113. * statically allocate tasks with a default priority. */
  114. #define STARPU_DEFAULT_PRIO 0
  115. int starpu_sched_get_min_priority(void);
  116. int starpu_sched_get_max_priority(void);
  117. void starpu_sched_set_min_priority(int min_prio);
  118. void starpu_sched_set_max_priority(int max_prio);
  119. /*
  120. * Parallel tasks
  121. */
  122. /* Register a new combined worker and get its identifier */
  123. int starpu_combined_worker_assign_workerid(int nworkers, int workerid_array[]);
  124. /* Get the description of a combined worker */
  125. int starpu_combined_worker_get_description(int workerid, int *worker_size, int **combined_workerid);
  126. /* Variant of starpu_worker_can_execute_task compatible with combined workers */
  127. int starpu_combined_worker_can_execute_task(unsigned workerid, struct starpu_task *task, unsigned nimpl);
  128. /*
  129. * Data prefetching
  130. */
  131. /* Whether STARPU_PREFETCH was set */
  132. int starpu_get_prefetch_flag(void);
  133. /* Prefetch data for a given task on a given node */
  134. int starpu_prefetch_task_input_on_node(struct starpu_task *task, uint32_t node);
  135. /*
  136. * Performance predictions
  137. */
  138. /* Return the current date */
  139. double starpu_timing_now(void);
  140. /* Returns expected task duration in µs */
  141. double starpu_task_expected_length(struct starpu_task *task, enum starpu_perf_archtype arch, unsigned nimpl);
  142. /* Returns an estimated speedup factor relative to CPU speed */
  143. double starpu_worker_get_relative_speedup(enum starpu_perf_archtype perf_archtype);
  144. /* Returns expected data transfer time in µs */
  145. double starpu_task_expected_data_transfer_time(uint32_t memory_node, struct starpu_task *task);
  146. /* Predict the transfer time (in µs) to move a handle to a memory node */
  147. double starpu_data_expected_transfer_time(starpu_data_handle_t handle, unsigned memory_node, enum starpu_access_mode mode);
  148. /* Returns expected power consumption in J */
  149. double starpu_task_expected_power(struct starpu_task *task, enum starpu_perf_archtype arch, unsigned nimpl);
  150. /* Returns expected conversion time in ms (multiformat interface only) */
  151. double starpu_task_expected_conversion_time(struct starpu_task *task, enum starpu_perf_archtype arch, unsigned nimpl);
  152. #ifdef __cplusplus
  153. }
  154. #endif
  155. #endif /* __STARPU_SCHEDULER_H__ */