driver_disk.c 11 KB

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  1. /* StarPU --- Runtime system for heterogeneous multicore architectures.
  2. *
  3. * Copyright (C) 2013-2020 Université de Bordeaux, CNRS (LaBRI UMR 5800), Inria
  4. * Copyright (C) 2013 Corentin Salingue
  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. #include <core/disk.h>
  19. #include <starpu_profiling.h>
  20. #include <drivers/disk/driver_disk.h>
  21. #include <drivers/cpu/driver_cpu.h>
  22. #include <datawizard/coherency.h>
  23. #include <datawizard/memory_nodes.h>
  24. static struct starpu_memory_driver_info memory_driver_info = {
  25. .name_upper = "Disk",
  26. .worker_archtype = (enum starpu_worker_archtype) -1,
  27. };
  28. void _starpu_disk_preinit(void)
  29. {
  30. starpu_memory_driver_info_register(STARPU_DISK_RAM, &memory_driver_info);
  31. }
  32. int _starpu_disk_copy_src_to_disk(void * src, unsigned src_node, void * dst, size_t dst_offset, unsigned dst_node, size_t size, void * async_channel)
  33. {
  34. STARPU_ASSERT(starpu_node_get_kind(src_node) == STARPU_CPU_RAM);
  35. return _starpu_disk_write(src_node, dst_node, dst, src, dst_offset, size, async_channel);
  36. }
  37. int _starpu_disk_copy_disk_to_src(void * src, size_t src_offset, unsigned src_node, void * dst, unsigned dst_node, size_t size, void * async_channel)
  38. {
  39. STARPU_ASSERT(starpu_node_get_kind(dst_node) == STARPU_CPU_RAM);
  40. return _starpu_disk_read(src_node, dst_node, src, dst, src_offset, size, async_channel);
  41. }
  42. int _starpu_disk_copy_disk_to_disk(void * src, size_t src_offset, unsigned src_node, void * dst, size_t dst_offset, unsigned dst_node, size_t size, void * async_channel)
  43. {
  44. STARPU_ASSERT(starpu_node_get_kind(src_node) == STARPU_DISK_RAM && starpu_node_get_kind(dst_node) == STARPU_DISK_RAM);
  45. return _starpu_disk_copy(src_node, src, src_offset, dst_node, dst, dst_offset, size, async_channel);
  46. }
  47. unsigned _starpu_disk_test_request_completion(struct _starpu_async_channel *async_channel)
  48. {
  49. unsigned success = starpu_disk_test_request(async_channel);
  50. if (async_channel->event.disk_event.ptr != NULL && success)
  51. {
  52. if (async_channel->event.disk_event.handle != NULL)
  53. {
  54. /* read is finished, we can already unpack */
  55. async_channel->event.disk_event.handle->ops->unpack_data(async_channel->event.disk_event.handle, async_channel->event.disk_event.node, async_channel->event.disk_event.ptr, async_channel->event.disk_event.size);
  56. }
  57. else
  58. {
  59. /* write is finished, ptr was allocated in pack_data */
  60. _starpu_free_flags_on_node(async_channel->event.disk_event.node, async_channel->event.disk_event.ptr, async_channel->event.disk_event.size, 0);
  61. }
  62. }
  63. return success;
  64. }
  65. void _starpu_disk_wait_request_completion(struct _starpu_async_channel *async_channel)
  66. {
  67. starpu_disk_wait_request(async_channel);
  68. if (async_channel->event.disk_event.ptr != NULL)
  69. {
  70. if (async_channel->event.disk_event.handle != NULL)
  71. {
  72. /* read is finished, we can already unpack */
  73. async_channel->event.disk_event.handle->ops->unpack_data(async_channel->event.disk_event.handle, async_channel->event.disk_event.node, async_channel->event.disk_event.ptr, async_channel->event.disk_event.size);
  74. }
  75. else
  76. {
  77. /* write is finished, ptr was allocated in pack_data */
  78. _starpu_free_flags_on_node(async_channel->event.disk_event.node, async_channel->event.disk_event.ptr, async_channel->event.disk_event.size, 0);
  79. }
  80. }
  81. }
  82. int _starpu_disk_copy_interface_from_disk_to_cpu(starpu_data_handle_t handle, void *src_interface, unsigned src_node, void *dst_interface, unsigned dst_node, struct _starpu_data_request *req)
  83. {
  84. int src_kind = starpu_node_get_kind(src_node);
  85. int dst_kind = starpu_node_get_kind(dst_node);
  86. STARPU_ASSERT(src_kind == STARPU_DISK_RAM && dst_kind == STARPU_CPU_RAM);
  87. int ret = 0;
  88. const struct starpu_data_copy_methods *copy_methods = handle->ops->copy_methods;
  89. if (req && !starpu_asynchronous_copy_disabled())
  90. {
  91. req->async_channel.node_ops = &_starpu_driver_disk_node_ops;
  92. req->async_channel.event.disk_event.requests = NULL;
  93. req->async_channel.event.disk_event.ptr = NULL;
  94. req->async_channel.event.disk_event.handle = NULL;
  95. }
  96. if(copy_methods->any_to_any)
  97. ret = copy_methods->any_to_any(src_interface, src_node, dst_interface, dst_node, req && !starpu_asynchronous_copy_disabled() ? &req->async_channel : NULL);
  98. else
  99. {
  100. void *obj = starpu_data_handle_to_pointer(handle, src_node);
  101. void * ptr = NULL;
  102. size_t size = 0;
  103. ret = _starpu_disk_full_read(src_node, dst_node, obj, &ptr, &size, req && !starpu_asynchronous_copy_disabled() ? &req->async_channel : NULL);
  104. if (ret == 0)
  105. {
  106. /* read is already finished, we can already unpack */
  107. handle->ops->unpack_data(handle, dst_node, ptr, size);
  108. }
  109. else if (ret == -EAGAIN)
  110. {
  111. STARPU_ASSERT(req);
  112. req->async_channel.event.disk_event.ptr = ptr;
  113. req->async_channel.event.disk_event.node = dst_node;
  114. req->async_channel.event.disk_event.size = size;
  115. req->async_channel.event.disk_event.handle = handle;
  116. }
  117. STARPU_ASSERT(ret == 0 || ret == -EAGAIN);
  118. }
  119. return ret;
  120. }
  121. int _starpu_disk_copy_interface_from_disk_to_disk(starpu_data_handle_t handle, void *src_interface, unsigned src_node, void *dst_interface, unsigned dst_node, struct _starpu_data_request *req)
  122. {
  123. int src_kind = starpu_node_get_kind(src_node);
  124. int dst_kind = starpu_node_get_kind(dst_node);
  125. STARPU_ASSERT(src_kind == STARPU_DISK_RAM && dst_kind == STARPU_DISK_RAM);
  126. int ret = 0;
  127. const struct starpu_data_copy_methods *copy_methods = handle->ops->copy_methods;
  128. if (req && !starpu_asynchronous_copy_disabled())
  129. {
  130. req->async_channel.node_ops = &_starpu_driver_disk_node_ops;
  131. req->async_channel.event.disk_event.requests = NULL;
  132. req->async_channel.event.disk_event.ptr = NULL;
  133. req->async_channel.event.disk_event.handle = NULL;
  134. }
  135. ret = copy_methods->any_to_any(src_interface, src_node, dst_interface, dst_node, req && !starpu_asynchronous_copy_disabled() ? &req->async_channel : NULL);
  136. return ret;
  137. }
  138. int _starpu_disk_copy_interface_from_cpu_to_disk(starpu_data_handle_t handle, void *src_interface, unsigned src_node, void *dst_interface, unsigned dst_node, struct _starpu_data_request *req)
  139. {
  140. int src_kind = starpu_node_get_kind(src_node);
  141. int dst_kind = starpu_node_get_kind(dst_node);
  142. STARPU_ASSERT(src_kind == STARPU_CPU_RAM && dst_kind == STARPU_DISK_RAM);
  143. int ret = 0;
  144. const struct starpu_data_copy_methods *copy_methods = handle->ops->copy_methods;
  145. if (req && !starpu_asynchronous_copy_disabled())
  146. {
  147. req->async_channel.node_ops = &_starpu_driver_disk_node_ops;
  148. req->async_channel.event.disk_event.requests = NULL;
  149. req->async_channel.event.disk_event.ptr = NULL;
  150. req->async_channel.event.disk_event.handle = NULL;
  151. }
  152. if(copy_methods->any_to_any)
  153. ret = copy_methods->any_to_any(src_interface, src_node, dst_interface, dst_node, req && !starpu_asynchronous_copy_disabled() ? &req->async_channel : NULL);
  154. else
  155. {
  156. void *obj = starpu_data_handle_to_pointer(handle, dst_node);
  157. void * ptr = NULL;
  158. starpu_ssize_t size = 0;
  159. handle->ops->pack_data(handle, src_node, &ptr, &size);
  160. ret = _starpu_disk_full_write(src_node, dst_node, obj, ptr, size, req && !starpu_asynchronous_copy_disabled() ? &req->async_channel : NULL);
  161. if (ret == 0)
  162. {
  163. /* write is already finished, ptr was allocated in pack_data */
  164. _starpu_free_flags_on_node(src_node, ptr, size, 0);
  165. }
  166. else if (ret == -EAGAIN)
  167. {
  168. STARPU_ASSERT(req);
  169. req->async_channel.event.disk_event.ptr = ptr;
  170. req->async_channel.event.disk_event.node = src_node;
  171. req->async_channel.event.disk_event.size = size;
  172. }
  173. STARPU_ASSERT(ret == 0 || ret == -EAGAIN);
  174. }
  175. return ret;
  176. }
  177. int _starpu_disk_copy_data_from_disk_to_cpu(uintptr_t src, size_t src_offset, unsigned src_node, uintptr_t dst, size_t dst_offset, unsigned dst_node, size_t size, struct _starpu_async_channel *async_channel)
  178. {
  179. int src_kind = starpu_node_get_kind(src_node);
  180. int dst_kind = starpu_node_get_kind(dst_node);
  181. STARPU_ASSERT(src_kind == STARPU_DISK_RAM && dst_kind == STARPU_CPU_RAM);
  182. return _starpu_disk_copy_disk_to_src((void*) src, src_offset, src_node,
  183. (void*) (dst + dst_offset), dst_node,
  184. size, async_channel);
  185. }
  186. int _starpu_disk_copy_data_from_disk_to_disk(uintptr_t src, size_t src_offset, unsigned src_node, uintptr_t dst, size_t dst_offset, unsigned dst_node, size_t size, struct _starpu_async_channel *async_channel)
  187. {
  188. int src_kind = starpu_node_get_kind(src_node);
  189. int dst_kind = starpu_node_get_kind(dst_node);
  190. STARPU_ASSERT(src_kind == STARPU_DISK_RAM && dst_kind == STARPU_DISK_RAM);
  191. return _starpu_disk_copy_disk_to_disk((void*) src, src_offset, src_node,
  192. (void*) dst, dst_offset, dst_node,
  193. size, async_channel);
  194. }
  195. int _starpu_disk_copy_data_from_cpu_to_disk(uintptr_t src, size_t src_offset, unsigned src_node, uintptr_t dst, size_t dst_offset, unsigned dst_node, size_t size, struct _starpu_async_channel *async_channel)
  196. {
  197. int src_kind = starpu_node_get_kind(src_node);
  198. int dst_kind = starpu_node_get_kind(dst_node);
  199. STARPU_ASSERT(src_kind == STARPU_CPU_RAM && dst_kind == STARPU_DISK_RAM);
  200. return _starpu_disk_copy_src_to_disk((void*) (src + src_offset), src_node,
  201. (void*) dst, dst_offset, dst_node,
  202. size, async_channel);
  203. }
  204. int _starpu_disk_is_direct_access_supported(unsigned node, unsigned handling_node)
  205. {
  206. /* Each worker can manage disks but disk <-> disk is not always allowed */
  207. switch (starpu_node_get_kind(handling_node))
  208. {
  209. case STARPU_CPU_RAM:
  210. return 1;
  211. case STARPU_DISK_RAM:
  212. return _starpu_disk_can_copy(node, handling_node);
  213. default:
  214. return 0;
  215. }
  216. }
  217. uintptr_t _starpu_disk_malloc_on_node(unsigned dst_node, size_t size, int flags)
  218. {
  219. (void) flags;
  220. uintptr_t addr = 0;
  221. addr = (uintptr_t) _starpu_disk_alloc(dst_node, size);
  222. return addr;
  223. }
  224. void _starpu_disk_free_on_node(unsigned dst_node, uintptr_t addr, size_t size, int flags)
  225. {
  226. (void) flags;
  227. _starpu_disk_free(dst_node, (void *) addr , size);
  228. }
  229. struct _starpu_node_ops _starpu_driver_disk_node_ops =
  230. {
  231. .copy_interface_to[STARPU_CPU_RAM] = _starpu_disk_copy_interface_from_disk_to_cpu,
  232. .copy_interface_to[STARPU_DISK_RAM] = _starpu_disk_copy_interface_from_disk_to_disk,
  233. .copy_data_to[STARPU_CPU_RAM] = _starpu_disk_copy_data_from_disk_to_cpu,
  234. .copy_data_to[STARPU_DISK_RAM] = _starpu_disk_copy_data_from_disk_to_disk,
  235. /* TODO: copy2D/3D? */
  236. .wait_request_completion = _starpu_disk_wait_request_completion,
  237. .test_request_completion = _starpu_disk_test_request_completion,
  238. .is_direct_access_supported = _starpu_disk_is_direct_access_supported,
  239. .malloc_on_node = _starpu_disk_malloc_on_node,
  240. .free_on_node = _starpu_disk_free_on_node,
  241. .name = "disk driver"
  242. };