workers.h 15 KB

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  1. /* StarPU --- Runtime system for heterogeneous multicore architectures.
  2. *
  3. * Copyright (C) 2009-2014 Université de Bordeaux 1
  4. * Copyright (C) 2010, 2011, 2012, 2013, 2014 Centre National de la Recherche Scientifique
  5. * Copyright (C) 2011 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 __WORKERS_H__
  19. #define __WORKERS_H__
  20. #include <starpu.h>
  21. #include <common/config.h>
  22. #include <common/timing.h>
  23. #include <common/fxt.h>
  24. #include <core/jobs.h>
  25. #include <core/perfmodel/perfmodel.h>
  26. #include <core/sched_policy.h>
  27. #include <core/topology.h>
  28. #include <core/errorcheck.h>
  29. #include <core/sched_ctx.h>
  30. #include <core/sched_ctx_list.h>
  31. #ifdef STARPU_HAVE_HWLOC
  32. #include <hwloc.h>
  33. #endif
  34. #include <drivers/cuda/driver_cuda.h>
  35. #include <drivers/opencl/driver_opencl.h>
  36. #ifdef STARPU_USE_MIC
  37. #include <drivers/mic/driver_mic_source.h>
  38. #endif /* STARPU_USE_MIC */
  39. #ifdef STARPU_USE_SCC
  40. #include <drivers/scc/driver_scc_source.h>
  41. #endif
  42. #include <drivers/cpu/driver_cpu.h>
  43. #include <datawizard/datawizard.h>
  44. #include <starpu_parameters.h>
  45. /* This is initialized from in _starpu_worker_init */
  46. LIST_TYPE(_starpu_worker,
  47. struct _starpu_machine_config *config;
  48. starpu_pthread_mutex_t mutex;
  49. enum starpu_worker_archtype arch; /* what is the type of worker ? */
  50. uint32_t worker_mask; /* what is the type of worker ? */
  51. struct starpu_perfmodel_arch perf_arch; /* in case there are different models of the same arch */
  52. starpu_pthread_t worker_thread; /* the thread which runs the worker */
  53. unsigned devid; /* which cpu/gpu/etc is controlled by the worker ? */
  54. unsigned subworkerid; /* which sub-worker this one is for the cpu/gpu */
  55. int bindid; /* which cpu is the driver bound to ? (logical index) */
  56. int workerid; /* uniquely identify the worker among all processing units types */
  57. int combined_workerid; /* combined worker currently using this worker */
  58. int current_rank; /* current rank in case the worker is used in a parallel fashion */
  59. int worker_size; /* size of the worker in case we use a combined worker */
  60. starpu_pthread_cond_t started_cond; /* indicate when the worker is ready */
  61. starpu_pthread_cond_t ready_cond; /* indicate when the worker is ready */
  62. unsigned memory_node; /* which memory node is the worker associated with ? */
  63. starpu_pthread_cond_t sched_cond; /* condition variable used when the worker waits for tasks. */
  64. starpu_pthread_mutex_t sched_mutex; /* mutex protecting sched_cond */
  65. struct starpu_task_list local_tasks; /* this queue contains tasks that have been explicitely submitted to that queue */
  66. struct starpu_task *current_task; /* task currently executed by this worker */
  67. struct _starpu_worker_set *set; /* in case this worker belongs to a set */
  68. struct _starpu_job_list *terminated_jobs; /* list of pending jobs which were executed */
  69. unsigned worker_is_running;
  70. unsigned worker_is_initialized;
  71. enum _starpu_worker_status status; /* what is the worker doing now ? (eg. CALLBACK) */
  72. char name[64];
  73. char short_name[10];
  74. unsigned run_by_starpu; /* Is this run by StarPU or directly by the application ? */
  75. struct _starpu_sched_ctx_list *sched_ctx_list;
  76. unsigned nsched_ctxs; /* the no of contexts a worker belongs to*/
  77. struct _starpu_barrier_counter tasks_barrier; /* wait for the tasks submitted */
  78. unsigned has_prev_init; /* had already been inited in another ctx */
  79. unsigned removed_from_ctx[STARPU_NMAX_SCHED_CTXS];
  80. unsigned spinning_backoff ; /* number of cycles to pause when spinning */
  81. /* conditions variables used when parallel sections are executed in contexts */
  82. starpu_pthread_cond_t parallel_sect_cond;
  83. starpu_pthread_mutex_t parallel_sect_mutex;
  84. /* boolean indicating that workers should block in order to allow
  85. parallel sections to be executed on their allocated resources */
  86. unsigned parallel_sect;
  87. /* indicate whether the workers shares tasks lists with other workers*/
  88. /* in this case when removing him from a context it disapears instantly */
  89. unsigned shares_tasks_lists[STARPU_NMAX_SCHED_CTXS];
  90. /* boolean to chose the next ctx a worker will pop into */
  91. unsigned poped_in_ctx[STARPU_NMAX_SCHED_CTXS];
  92. /* boolean indicating at which moment we checked all ctxs and change phase for the booleab poped_in_ctx*/
  93. /* one for each of the 2 priorities*/
  94. unsigned reverse_phase[2];
  95. /* indicate which priority of ctx is currently active: the values are 0 or 1*/
  96. unsigned pop_ctx_priority;
  97. /* flag to know if sched_mutex is locked or not */
  98. unsigned sched_mutex_locked;
  99. /* id of the master worker */
  100. int master;
  101. #ifdef __GLIBC__
  102. cpu_set_t cpu_set;
  103. #endif /* __GLIBC__ */
  104. #ifdef STARPU_HAVE_HWLOC
  105. hwloc_bitmap_t hwloc_cpu_set;
  106. #endif
  107. );
  108. struct _starpu_combined_worker
  109. {
  110. struct starpu_perfmodel_arch perf_arch; /* in case there are different models of the same arch */
  111. uint32_t worker_mask; /* what is the type of workers ? */
  112. int worker_size;
  113. unsigned memory_node; /* which memory node is associated that worker to ? */
  114. int combined_workerid[STARPU_NMAXWORKERS];
  115. #ifdef STARPU_USE_MP
  116. int count;
  117. starpu_pthread_mutex_t count_mutex;
  118. #endif
  119. #ifdef __GLIBC__
  120. cpu_set_t cpu_set;
  121. #endif /* __GLIBC__ */
  122. #ifdef STARPU_HAVE_HWLOC
  123. hwloc_bitmap_t hwloc_cpu_set;
  124. #endif
  125. };
  126. /* in case a single CPU worker may control multiple
  127. * accelerators (eg. Gordon for n SPUs) */
  128. struct _starpu_worker_set
  129. {
  130. starpu_pthread_mutex_t mutex;
  131. starpu_pthread_t worker_thread; /* the thread which runs the worker */
  132. unsigned nworkers;
  133. unsigned started; /* Only one thread for the whole set */
  134. void *retval;
  135. struct _starpu_worker *workers;
  136. starpu_pthread_cond_t ready_cond; /* indicate when the set is ready */
  137. unsigned set_is_initialized;
  138. };
  139. struct _starpu_machine_topology
  140. {
  141. /* Total number of workers. */
  142. unsigned nworkers;
  143. /* Total number of combined workers. */
  144. unsigned ncombinedworkers;
  145. unsigned nsched_ctxs;
  146. #ifdef STARPU_HAVE_HWLOC
  147. /* Topology as detected by hwloc. */
  148. hwloc_topology_t hwtopology;
  149. #endif
  150. /* custom hwloc tree*/
  151. struct starpu_tree *tree;
  152. /* Total number of CPUs, as detected by the topology code. May
  153. * be different from the actual number of CPU workers.
  154. */
  155. unsigned nhwcpus;
  156. /* Total number of PUs, as detected by the topology code. May
  157. * be different from the actual number of PU workers.
  158. */
  159. unsigned nhwpus;
  160. /* Total number of CUDA devices, as detected. May be different
  161. * from the actual number of CUDA workers.
  162. */
  163. unsigned nhwcudagpus;
  164. /* Total number of OpenCL devices, as detected. May be
  165. * different from the actual number of OpenCL workers.
  166. */
  167. unsigned nhwopenclgpus;
  168. /* Total number of SCC cores, as detected. May be different
  169. * from the actual number of core workers.
  170. */
  171. unsigned nhwscc;
  172. /* Actual number of CPU workers used by StarPU. */
  173. unsigned ncpus;
  174. /* Actual number of CUDA workers used by StarPU. */
  175. unsigned ncudagpus;
  176. /* Actual number of OpenCL workers used by StarPU. */
  177. unsigned nopenclgpus;
  178. /* Actual number of SCC workers used by StarPU. */
  179. unsigned nsccdevices;
  180. /* Topology of MP nodes (mainly MIC and SCC) as well as necessary
  181. * objects to communicate with them. */
  182. unsigned nhwmicdevices;
  183. unsigned nmicdevices;
  184. unsigned nhwmiccores[STARPU_MAXMICDEVS]; // Each MIC node has its set of cores.
  185. unsigned nmiccores[STARPU_MAXMICDEVS];
  186. /* Indicates the successive logical PU identifier that should be used
  187. * to bind the workers. It is either filled according to the
  188. * user's explicit parameters (from starpu_conf) or according
  189. * to the STARPU_WORKERS_CPUID env. variable. Otherwise, a
  190. * round-robin policy is used to distributed the workers over
  191. * the cores.
  192. */
  193. unsigned workers_bindid[STARPU_NMAXWORKERS];
  194. /* Indicates the successive CUDA identifier that should be
  195. * used by the CUDA driver. It is either filled according to
  196. * the user's explicit parameters (from starpu_conf) or
  197. * according to the STARPU_WORKERS_CUDAID env. variable.
  198. * Otherwise, they are taken in ID order.
  199. */
  200. unsigned workers_cuda_gpuid[STARPU_NMAXWORKERS];
  201. /* Indicates the successive OpenCL identifier that should be
  202. * used by the OpenCL driver. It is either filled according
  203. * to the user's explicit parameters (from starpu_conf) or
  204. * according to the STARPU_WORKERS_OPENCLID env. variable.
  205. * Otherwise, they are taken in ID order.
  206. */
  207. unsigned workers_opencl_gpuid[STARPU_NMAXWORKERS];
  208. /** Indicates the successive MIC devices that should be used
  209. * by the MIC driver. It is either filled according to the
  210. * user's explicit parameters (from starpu_conf) or according
  211. * to the STARPU_WORKERS_MICID env. variable. Otherwise, they
  212. * are taken in ID order. */
  213. /* TODO */
  214. /* unsigned workers_mic_deviceid[STARPU_NMAXWORKERS]; */
  215. /* Which SCC(s) do we use ? */
  216. /* Indicates the successive SCC devices that should be used by
  217. * the SCC driver. It is either filled according to the
  218. * user's explicit parameters (from starpu_conf) or according
  219. * to the STARPU_WORKERS_SCCID env. variable. Otherwise, they
  220. * are taken in ID order.
  221. */
  222. unsigned workers_scc_deviceid[STARPU_NMAXWORKERS];
  223. };
  224. struct _starpu_machine_config
  225. {
  226. struct _starpu_machine_topology topology;
  227. #ifdef STARPU_HAVE_HWLOC
  228. int cpu_depth;
  229. int pu_depth;
  230. #endif
  231. /* Where to bind workers ? */
  232. int current_bindid;
  233. /* Which GPU(s) do we use for CUDA ? */
  234. int current_cuda_gpuid;
  235. /* Which GPU(s) do we use for OpenCL ? */
  236. int current_opencl_gpuid;
  237. /* Which MIC do we use? */
  238. int current_mic_deviceid;
  239. /* Which SCC do we use? */
  240. int current_scc_deviceid;
  241. /* Memory node for cpus, if only one */
  242. int cpus_nodeid;
  243. /* Memory node for CUDA, if only one */
  244. int cuda_nodeid;
  245. /* Memory node for OpenCL, if only one */
  246. int opencl_nodeid;
  247. /* Memory node for MIC, if only one */
  248. int mic_nodeid;
  249. /* Memory node for SCC, if only one */
  250. int scc_nodeid;
  251. /* Basic workers : each of this worker is running its own driver and
  252. * can be combined with other basic workers. */
  253. struct _starpu_worker workers[STARPU_NMAXWORKERS];
  254. /* Combined workers: these worker are a combination of basic workers
  255. * that can run parallel tasks together. */
  256. struct _starpu_combined_worker combined_workers[STARPU_NMAX_COMBINEDWORKERS];
  257. /* This bitmask indicates which kinds of worker are available. For
  258. * instance it is possible to test if there is a CUDA worker with
  259. * the result of (worker_mask & STARPU_CUDA). */
  260. uint32_t worker_mask;
  261. /* either the user given configuration passed to starpu_init or a default configuration */
  262. struct starpu_conf *conf;
  263. /* set to 1 if no conf has been given by the user, it
  264. * indicates the memory allocated for the default
  265. * configuration should be freed on shutdown */
  266. int default_conf;
  267. /* this flag is set until the runtime is stopped */
  268. unsigned running;
  269. /* Number of calls to starpu_pause() - calls to starpu_resume(). When >0,
  270. * StarPU should pause. */
  271. int pause_depth;
  272. /* all the sched ctx of the current instance of starpu */
  273. struct _starpu_sched_ctx sched_ctxs[STARPU_NMAX_SCHED_CTXS];
  274. /* this flag is set until the application is finished submitting tasks */
  275. unsigned submitting;
  276. int watchdog_ok;
  277. starpu_pthread_mutex_t submitted_mutex;
  278. };
  279. /* Three functions to manage argv, argc */
  280. void _starpu_set_argc_argv(int *argc, char ***argv);
  281. int *_starpu_get_argc();
  282. char ***_starpu_get_argv();
  283. /* Fill conf with environment variables */
  284. void _starpu_conf_check_environment(struct starpu_conf *conf);
  285. /* Has starpu_shutdown already been called ? */
  286. unsigned _starpu_machine_is_running(void);
  287. /* Check if there is a worker that may execute the task. */
  288. uint32_t _starpu_worker_exists(struct starpu_task *);
  289. /* Is there a worker that can execute CUDA code ? */
  290. uint32_t _starpu_can_submit_cuda_task(void);
  291. /* Is there a worker that can execute CPU code ? */
  292. uint32_t _starpu_can_submit_cpu_task(void);
  293. /* Is there a worker that can execute OpenCL code ? */
  294. uint32_t _starpu_can_submit_opencl_task(void);
  295. /* Is there a worker that can execute OpenCL code ? */
  296. uint32_t _starpu_can_submit_scc_task(void);
  297. /* Check whether there is anything that the worker should do instead of
  298. * sleeping (waiting on something to happen). */
  299. unsigned _starpu_worker_can_block(unsigned memnode);
  300. /* This function must be called to block a worker. It puts the worker in a
  301. * sleeping state until there is some event that forces the worker to wake up.
  302. * */
  303. void _starpu_block_worker(int workerid, starpu_pthread_cond_t *cond, starpu_pthread_mutex_t *mutex);
  304. /* The _starpu_worker structure describes all the state of a StarPU worker.
  305. * This function sets the pthread key which stores a pointer to this structure.
  306. * */
  307. void _starpu_set_local_worker_key(struct _starpu_worker *worker);
  308. /* This function initializes the current thread for the given worker */
  309. void _starpu_worker_start(struct _starpu_worker *worker, unsigned fut_key);
  310. /* Returns the _starpu_worker structure that describes the state of the
  311. * current worker. */
  312. struct _starpu_worker *_starpu_get_local_worker_key(void);
  313. /* Returns the _starpu_worker structure that describes the state of the
  314. * specified worker. */
  315. struct _starpu_worker *_starpu_get_worker_struct(unsigned id);
  316. /* Returns the starpu_sched_ctx structure that descriebes the state of the
  317. * specified ctx */
  318. struct _starpu_sched_ctx *_starpu_get_sched_ctx_struct(unsigned id);
  319. struct _starpu_combined_worker *_starpu_get_combined_worker_struct(unsigned id);
  320. int _starpu_is_initialized(void);
  321. /* Returns the structure that describes the overall machine configuration (eg.
  322. * all workers and topology). */
  323. struct _starpu_machine_config *_starpu_get_machine_config(void);
  324. /* Retrieve the status which indicates what the worker is currently doing. */
  325. enum _starpu_worker_status _starpu_worker_get_status(int workerid);
  326. /* Change the status of the worker which indicates what the worker is currently
  327. * doing (eg. executing a callback). */
  328. void _starpu_worker_set_status(int workerid, enum _starpu_worker_status status);
  329. /* We keep an initial sched ctx which might be used in case no other ctx is available */
  330. struct _starpu_sched_ctx* _starpu_get_initial_sched_ctx(void);
  331. int starpu_worker_get_nids_by_type(enum starpu_worker_archtype type, int *workerids, int maxsize);
  332. /* returns workers not belonging to any context, be careful no mutex is used,
  333. the list might not be updated */
  334. int starpu_worker_get_nids_ctx_free_by_type(enum starpu_worker_archtype type, int *workerids, int maxsize);
  335. /* geet starpu workerids corresponding to the os physical id bindid */
  336. int _starpu_worker_get_workerids(int bindid, int *workerids);
  337. /* if the current worker has the lock release it */
  338. void _starpu_unlock_mutex_if_prev_locked();
  339. /* if we prev released the lock relock it */
  340. void _starpu_relock_mutex_if_prev_locked();
  341. void _starpu_worker_set_flag_sched_mutex_locked(int workerid, unsigned flag);
  342. unsigned _starpu_worker_mutex_is_sched_mutex(int workerid, starpu_pthread_mutex_t *mutex);
  343. int _starpu_worker_get_nsched_ctxs(int workerid);
  344. #endif // __WORKERS_H__