add_vectors_interface.cpp 18 KB

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  1. /* StarPU --- Runtime system for heterogeneous multicore architectures.
  2. *
  3. * Copyright (C) 2012,2017 Inria
  4. * Copyright (C) 2010-2014,2016,2017,2019 CNRS
  5. * Copyright (C) 2009-2011,2013-2015,2017,2018-2019 Université de Bordeaux
  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. /*
  19. * This is a small example of a C++ program using STL and starpu. We here just
  20. * add two std::vector with duplicating vectors. StarPU achieves data
  21. * transfers between objects.
  22. */
  23. #if defined(__GNUC__) && (__GNUC__ < 4 || (__GNUC__ == 4 && __GNU_MINOR < 9))
  24. int main(int argc, char **argv)
  25. {
  26. return 77;
  27. }
  28. #else
  29. #include <cassert>
  30. #include <vector>
  31. #ifdef PRINT_OUTPUT
  32. #include <iostream>
  33. #endif
  34. #include <starpu.h>
  35. #define MY_TYPE char, my_allocator<char>
  36. /* create an allocator to put data on the correct NUMA node */
  37. template <class T>
  38. class my_allocator
  39. {
  40. public:
  41. typedef size_t size_type;
  42. typedef ptrdiff_t difference_type;
  43. typedef T* pointer;
  44. typedef const T* const_pointer;
  45. typedef T& reference;
  46. typedef const T& const_reference;
  47. typedef T value_type;
  48. my_allocator()
  49. {
  50. this->node = STARPU_MAIN_RAM;
  51. }
  52. my_allocator(const my_allocator& a)
  53. {
  54. node = a.get_node();
  55. }
  56. explicit my_allocator(const unsigned node)
  57. {
  58. this->node = node;
  59. }
  60. pointer allocate(size_type n, const void * = 0)
  61. {
  62. T* t = (T*) starpu_malloc_on_node(this->node, n * sizeof(T));
  63. return t;
  64. }
  65. void deallocate(void* p, size_type n)
  66. {
  67. if (p)
  68. {
  69. starpu_free_on_node(this->node, (uintptr_t) p, n * sizeof(T));
  70. }
  71. }
  72. unsigned get_node() const
  73. {
  74. return node;
  75. }
  76. pointer address(reference x) const
  77. {
  78. return &x;
  79. }
  80. const_pointer address(const_reference x) const
  81. {
  82. return &x;
  83. }
  84. my_allocator<T>& operator=(const my_allocator&ref)
  85. {
  86. node = ref.node;
  87. return *this;
  88. }
  89. void construct(pointer p, const T& val)
  90. {
  91. new ((T*) p) T(val);
  92. }
  93. void destroy(pointer p)
  94. {
  95. p->~T();
  96. }
  97. size_type max_size() const
  98. {
  99. return size_type(-1);
  100. }
  101. template <class U>
  102. struct rebind
  103. {
  104. typedef my_allocator<U> other;
  105. };
  106. template <class U>
  107. explicit my_allocator(const my_allocator<U>&ref)
  108. {
  109. node = ref.node;
  110. }
  111. template <class U>
  112. my_allocator<U>& operator=(const my_allocator<U>&ref)
  113. {
  114. node = ref.node;
  115. return *this;
  116. }
  117. private:
  118. unsigned node;
  119. };
  120. /*
  121. * Create a new interface to catch C++ vector and make appropriate data transfers
  122. */
  123. struct vector_cpp_interface
  124. {
  125. enum starpu_data_interface_id id;
  126. uintptr_t ptr;
  127. uintptr_t dev_handle;
  128. size_t offset;
  129. uint32_t nx;
  130. size_t elemsize;
  131. std::vector<MY_TYPE>* vec;
  132. uint32_t slice_base;
  133. };
  134. #define VECTOR_CPP_GET_VEC(interface) ({ (((struct vector_cpp_interface *)(interface))->vec); })
  135. static int vector_interface_copy_any_to_any(void *src_interface, unsigned src_node,
  136. void *dst_interface, unsigned dst_node, void *async_data);
  137. #if __cplusplus >= 201103L
  138. static const struct starpu_data_copy_methods vector_cpp_copy_data_methods_s =
  139. {
  140. .can_copy = NULL,
  141. .ram_to_ram = NULL,
  142. .ram_to_cuda = NULL,
  143. .ram_to_opencl = NULL,
  144. .ram_to_mic = NULL,
  145. .cuda_to_ram = NULL,
  146. .cuda_to_cuda = NULL,
  147. .cuda_to_opencl = NULL,
  148. .opencl_to_ram = NULL,
  149. .opencl_to_cuda = NULL,
  150. .opencl_to_opencl = NULL,
  151. .mic_to_ram = NULL,
  152. .ram_to_mpi_ms = NULL,
  153. .mpi_ms_to_ram = NULL,
  154. .mpi_ms_to_mpi_ms = NULL,
  155. .ram_to_cuda_async = NULL,
  156. .cuda_to_ram_async = NULL,
  157. .cuda_to_cuda_async = NULL,
  158. .ram_to_opencl_async = NULL,
  159. .opencl_to_ram_async = NULL,
  160. .opencl_to_opencl_async = NULL,
  161. .ram_to_mpi_ms_async = NULL,
  162. .mpi_ms_to_ram_async = NULL,
  163. .mpi_ms_to_mpi_ms_async = NULL,
  164. .ram_to_mic_async = NULL,
  165. .mic_to_ram_async = NULL,
  166. .any_to_any = vector_interface_copy_any_to_any,
  167. };
  168. #else
  169. static const struct starpu_data_copy_methods vector_cpp_copy_data_methods_s =
  170. {
  171. NULL,
  172. NULL,
  173. NULL,
  174. NULL,
  175. NULL,
  176. NULL,
  177. NULL,
  178. NULL,
  179. NULL,
  180. NULL,
  181. NULL,
  182. NULL,
  183. NULL,
  184. NULL,
  185. NULL,
  186. NULL,
  187. NULL,
  188. NULL,
  189. NULL,
  190. NULL,
  191. NULL,
  192. NULL,
  193. NULL,
  194. NULL,
  195. NULL,
  196. NULL,
  197. NULL,
  198. NULL,
  199. NULL,
  200. vector_interface_copy_any_to_any,
  201. };
  202. #endif
  203. static void register_vector_cpp_handle(starpu_data_handle_t handle, unsigned home_node, void *data_interface);
  204. static starpu_ssize_t allocate_vector_cpp_buffer_on_node(void *data_interface_, unsigned dst_node);
  205. static void *vector_cpp_to_pointer(void *data_interface, unsigned node);
  206. static int vector_cpp_pointer_is_inside(void *data_interface, unsigned node, void *ptr);
  207. static void free_vector_cpp_buffer_on_node(void *data_interface, unsigned node);
  208. static void free_vector_cpp_buffer_on_node(void *data_interface, unsigned node);
  209. static size_t vector_cpp_interface_get_size(starpu_data_handle_t handle);
  210. static uint32_t footprint_vector_cpp_interface_crc32(starpu_data_handle_t handle);
  211. static int vector_cpp_compare(void *data_interface_a, void *data_interface_b);
  212. static void display_vector_cpp_interface(starpu_data_handle_t handle, FILE *f);
  213. static int pack_vector_cpp_handle(starpu_data_handle_t handle, unsigned node, void **ptr, starpu_ssize_t *count);
  214. static int unpack_vector_cpp_handle(starpu_data_handle_t handle, unsigned node, void *ptr, size_t count);
  215. static starpu_ssize_t vector_cpp_describe(void *data_interface, char *buf, size_t size);
  216. #if __cplusplus >= 201103L
  217. static struct starpu_data_interface_ops interface_vector_cpp_ops =
  218. {
  219. .register_data_handle = register_vector_cpp_handle,
  220. .allocate_data_on_node = allocate_vector_cpp_buffer_on_node,
  221. .free_data_on_node = free_vector_cpp_buffer_on_node,
  222. .init = NULL,
  223. .copy_methods = &vector_cpp_copy_data_methods_s,
  224. .handle_to_pointer = NULL,
  225. .to_pointer = vector_cpp_to_pointer,
  226. .pointer_is_inside = vector_cpp_pointer_is_inside,
  227. .get_size = vector_cpp_interface_get_size,
  228. .get_alloc_size = NULL,
  229. .get_max_size = NULL,
  230. .footprint = footprint_vector_cpp_interface_crc32,
  231. .alloc_footprint = NULL,
  232. .compare = vector_cpp_compare,
  233. .alloc_compare = NULL,
  234. .display = display_vector_cpp_interface,
  235. .describe = vector_cpp_describe,
  236. .interfaceid = STARPU_UNKNOWN_INTERFACE_ID,
  237. .interface_size = sizeof(struct vector_cpp_interface),
  238. .is_multiformat = 0,
  239. .dontcache = 0,
  240. .get_mf_ops = NULL,
  241. .pack_data = pack_vector_cpp_handle,
  242. .unpack_data = unpack_vector_cpp_handle,
  243. .name = (char *) "VECTOR_CPP_INTERFACE"
  244. };
  245. #else
  246. static struct starpu_data_interface_ops interface_vector_cpp_ops =
  247. {
  248. register_vector_cpp_handle,
  249. allocate_vector_cpp_buffer_on_node,
  250. free_vector_cpp_buffer_on_node,
  251. NULL,
  252. &vector_cpp_copy_data_methods_s,
  253. vector_cpp_to_pointer,
  254. vector_cpp_pointer_is_inside,
  255. vector_cpp_interface_get_size,
  256. NULL,
  257. NULL,
  258. footprint_vector_cpp_interface_crc32,
  259. NULL,
  260. vector_cpp_compare,
  261. NULL,
  262. display_vector_cpp_interface,
  263. vector_cpp_describe,
  264. STARPU_UNKNOWN_INTERFACE_ID,
  265. sizeof(struct vector_cpp_interface),
  266. 0,
  267. 0,
  268. NULL,
  269. pack_vector_cpp_handle,
  270. unpack_vector_cpp_handle,
  271. (char *) "VECTOR_CPP_INTERFACE"
  272. };
  273. #endif
  274. static void *vector_cpp_to_pointer(void *data_interface, unsigned node)
  275. {
  276. (void) node;
  277. struct vector_cpp_interface *vector_interface = (struct vector_cpp_interface *) data_interface;
  278. return (void*) vector_interface->ptr;
  279. }
  280. static int vector_cpp_pointer_is_inside(void *data_interface, unsigned int node, void *ptr)
  281. {
  282. (void) node;
  283. struct vector_cpp_interface *vector_interface = (struct vector_cpp_interface *) data_interface;
  284. return (char*) ptr >= (char*) vector_interface->ptr &&
  285. (char*) ptr < (char*) vector_interface->ptr + vector_interface->nx*vector_interface->elemsize;
  286. }
  287. static void register_vector_cpp_handle(starpu_data_handle_t handle, unsigned home_node, void *data_interface)
  288. {
  289. struct vector_cpp_interface *vector_interface = (struct vector_cpp_interface *) data_interface;
  290. unsigned node;
  291. for (node = 0; node < STARPU_MAXNODES; node++)
  292. {
  293. struct vector_cpp_interface *local_interface = (struct vector_cpp_interface *)
  294. starpu_data_get_interface_on_node(handle, node);
  295. if (node == home_node)
  296. {
  297. local_interface->ptr = vector_interface->ptr;
  298. local_interface->dev_handle = vector_interface->dev_handle;
  299. local_interface->offset = vector_interface->offset;
  300. local_interface->vec = vector_interface->vec;
  301. }
  302. else
  303. {
  304. local_interface->ptr = 0;
  305. local_interface->dev_handle = 0;
  306. local_interface->offset = 0;
  307. local_interface->vec = NULL;
  308. }
  309. local_interface->id = vector_interface->id;
  310. local_interface->nx = vector_interface->nx;
  311. local_interface->elemsize = vector_interface->elemsize;
  312. local_interface->slice_base = vector_interface->slice_base;
  313. }
  314. }
  315. /* declare a new data with the vector interface */
  316. void vector_cpp_data_register(starpu_data_handle_t *handleptr, int home_node,
  317. std::vector<MY_TYPE>* vec, uint32_t nx, size_t elemsize)
  318. {
  319. #if __cplusplus >= 201103L
  320. struct vector_cpp_interface vector =
  321. {
  322. .id = STARPU_UNKNOWN_INTERFACE_ID,
  323. .ptr = (uintptr_t) &(*vec)[0],
  324. .dev_handle = (uintptr_t) &(*vec)[0],
  325. .offset = 0,
  326. .nx = nx,
  327. .elemsize = elemsize,
  328. .vec = vec,
  329. .slice_base = 0
  330. };
  331. #else
  332. struct vector_cpp_interface vector =
  333. {
  334. STARPU_UNKNOWN_INTERFACE_ID,
  335. (uintptr_t) &(*vec)[0],
  336. (uintptr_t) &(*vec)[0],
  337. 0,
  338. nx,
  339. elemsize,
  340. vec,
  341. 0
  342. };
  343. #endif
  344. starpu_data_register(handleptr, home_node, &vector, &interface_vector_cpp_ops);
  345. }
  346. /* offer an access to the data parameters */
  347. uint32_t vector_cpp_get_nx(starpu_data_handle_t handle)
  348. {
  349. struct vector_cpp_interface *vector_interface = (struct vector_cpp_interface *)
  350. starpu_data_get_interface_on_node(handle, STARPU_MAIN_RAM);
  351. return vector_interface->nx;
  352. }
  353. static uint32_t footprint_vector_cpp_interface_crc32(starpu_data_handle_t handle)
  354. {
  355. return starpu_hash_crc32c_be(vector_cpp_get_nx(handle), 0);
  356. }
  357. static int vector_cpp_compare(void *data_interface_a, void *data_interface_b)
  358. {
  359. struct vector_cpp_interface *vector_a = (struct vector_cpp_interface *) data_interface_a;
  360. struct vector_cpp_interface *vector_b = (struct vector_cpp_interface *) data_interface_b;
  361. /* Two vectors are considered compatible if they have the same size */
  362. return ((vector_a->nx == vector_b->nx)
  363. && (vector_a->elemsize == vector_b->elemsize));
  364. }
  365. static void display_vector_cpp_interface(starpu_data_handle_t handle, FILE *f)
  366. {
  367. struct vector_cpp_interface *vector_interface = (struct vector_cpp_interface *)
  368. starpu_data_get_interface_on_node(handle, STARPU_MAIN_RAM);
  369. fprintf(f, "%u\t", vector_interface->nx);
  370. }
  371. static int pack_vector_cpp_handle(starpu_data_handle_t handle, unsigned node, void **ptr, starpu_ssize_t *count)
  372. {
  373. STARPU_ASSERT(starpu_data_test_if_allocated_on_node(handle, node));
  374. struct vector_cpp_interface *vector_interface = (struct vector_cpp_interface *)
  375. starpu_data_get_interface_on_node(handle, node);
  376. *count = vector_interface->nx*vector_interface->elemsize;
  377. if (ptr != NULL)
  378. {
  379. starpu_malloc_flags(ptr, *count, 0);
  380. memcpy(*ptr, (void*)vector_interface->ptr, vector_interface->elemsize*vector_interface->nx);
  381. }
  382. return 0;
  383. }
  384. static int unpack_vector_cpp_handle(starpu_data_handle_t handle, unsigned node, void *ptr, size_t count)
  385. {
  386. STARPU_ASSERT(starpu_data_test_if_allocated_on_node(handle, node));
  387. struct vector_cpp_interface *vector_interface = (struct vector_cpp_interface *)
  388. starpu_data_get_interface_on_node(handle, node);
  389. STARPU_ASSERT(count == vector_interface->elemsize * vector_interface->nx);
  390. memcpy((void*)vector_interface->ptr, ptr, count);
  391. return 0;
  392. }
  393. static size_t vector_cpp_interface_get_size(starpu_data_handle_t handle)
  394. {
  395. size_t size;
  396. struct vector_cpp_interface *vector_interface = (struct vector_cpp_interface *)
  397. starpu_data_get_interface_on_node(handle, STARPU_MAIN_RAM);
  398. size = vector_interface->nx*vector_interface->elemsize;
  399. return size;
  400. }
  401. size_t vector_cpp_get_elemsize(starpu_data_handle_t handle)
  402. {
  403. struct vector_cpp_interface *vector_interface = (struct vector_cpp_interface *)
  404. starpu_data_get_interface_on_node(handle, STARPU_MAIN_RAM);
  405. return vector_interface->elemsize;
  406. }
  407. /* memory allocation/deallocation primitives for the vector interface */
  408. /* returns the size of the allocated area */
  409. static starpu_ssize_t allocate_vector_cpp_buffer_on_node(void *data_interface_, unsigned dst_node)
  410. {
  411. struct vector_cpp_interface *vector_interface = (struct vector_cpp_interface *) data_interface_;
  412. uint32_t nx = vector_interface->nx;
  413. size_t elemsize = vector_interface->elemsize;
  414. starpu_ssize_t allocated_memory;
  415. const my_allocator<char> allocator(dst_node);
  416. std::vector<MY_TYPE> * vec = new std::vector<MY_TYPE>(nx, 0, allocator);
  417. vector_interface->vec = vec;
  418. if (!vector_interface->vec)
  419. return -ENOMEM;
  420. allocated_memory = nx*elemsize;
  421. /* update the data properly in consequence */
  422. vector_interface->ptr = (uintptr_t) &((*vec)[0]);
  423. vector_interface->dev_handle = (uintptr_t) &((*vec)[0]);
  424. vector_interface->offset = 0;
  425. return allocated_memory;
  426. }
  427. static void free_vector_cpp_buffer_on_node(void *data_interface, unsigned node)
  428. {
  429. struct vector_cpp_interface *vector_interface = (struct vector_cpp_interface *) data_interface;
  430. delete vector_interface->vec;
  431. }
  432. static int vector_interface_copy_any_to_any(void *src_interface, unsigned src_node,
  433. void *dst_interface, unsigned dst_node, void *async_data)
  434. {
  435. struct vector_cpp_interface *src_vector = (struct vector_cpp_interface *) src_interface;
  436. struct vector_cpp_interface *dst_vector = (struct vector_cpp_interface *) dst_interface;
  437. int ret;
  438. ret = starpu_interface_copy(src_vector->dev_handle, src_vector->offset, src_node,
  439. dst_vector->dev_handle, dst_vector->offset, dst_node,
  440. src_vector->nx*src_vector->elemsize, async_data);
  441. return ret;
  442. }
  443. static starpu_ssize_t vector_cpp_describe(void *data_interface, char *buf, size_t size)
  444. {
  445. struct vector_cpp_interface *vector = (struct vector_cpp_interface *) data_interface;
  446. return snprintf(buf, size, "V%ux%u",
  447. (unsigned) vector->nx,
  448. (unsigned) vector->elemsize);
  449. }
  450. /*
  451. * End of interface
  452. */
  453. /* Kernel using STL objects */
  454. void cpu_kernel_add_vectors(void *buffers[], void *cl_arg)
  455. {
  456. std::vector<MY_TYPE>* vec_A = VECTOR_CPP_GET_VEC(buffers[0]);
  457. std::vector<MY_TYPE>* vec_B = VECTOR_CPP_GET_VEC(buffers[1]);
  458. std::vector<MY_TYPE>* vec_C = VECTOR_CPP_GET_VEC(buffers[2]);
  459. // all the std::vector have to have the same size
  460. assert(vec_A->size() == vec_B->size() && vec_B->size() == vec_C->size());
  461. // performs the vector addition (vec_C[] = vec_A[] + vec_B[])
  462. for (size_t i = 0; i < vec_C->size(); i++)
  463. (*vec_C)[i] = (*vec_A)[i] + (*vec_B)[i];
  464. }
  465. #define VEC_SIZE 1024
  466. int main(int argc, char **argv)
  467. {
  468. struct starpu_conf conf;
  469. starpu_conf_init(&conf);
  470. conf.nmic = 0;
  471. conf.nmpi_ms = 0;
  472. // initialize StarPU with default configuration
  473. int ret = starpu_init(&conf);
  474. if (ret == -ENODEV)
  475. return 77;
  476. STARPU_CHECK_RETURN_VALUE(ret, "starpu_init");
  477. /* Test data transfers between NUMA nodes if available */
  478. unsigned last_numa_node = starpu_memory_nodes_get_numa_count() - 1;
  479. const my_allocator<char> allocator_main_ram(STARPU_MAIN_RAM);
  480. const my_allocator<char> allocator_last_numa(last_numa_node);
  481. std::vector<MY_TYPE> vec_A(VEC_SIZE, 2, allocator_main_ram); // all the vector is initialized to 2
  482. std::vector<MY_TYPE> vec_B(VEC_SIZE, 3, allocator_main_ram); // all the vector is initialized to 3
  483. std::vector<MY_TYPE> vec_C(VEC_SIZE, 0, allocator_last_numa); // all the vector is initialized to 0
  484. // StarPU data registering
  485. starpu_data_handle_t spu_vec_A;
  486. starpu_data_handle_t spu_vec_B;
  487. starpu_data_handle_t spu_vec_C;
  488. // give the data of the vector to StarPU (C array)
  489. vector_cpp_data_register(&spu_vec_A, STARPU_MAIN_RAM, &vec_A, vec_A.size(), sizeof(char));
  490. vector_cpp_data_register(&spu_vec_B, STARPU_MAIN_RAM, &vec_B, vec_B.size(), sizeof(char));
  491. vector_cpp_data_register(&spu_vec_C, last_numa_node, &vec_C, vec_C.size(), sizeof(char));
  492. // create the StarPU codelet
  493. starpu_codelet cl;
  494. starpu_codelet_init(&cl);
  495. cl.cpu_funcs [0] = cpu_kernel_add_vectors;
  496. cl.cpu_funcs_name[0] = "cpu_kernel_add_vectors";
  497. cl.nbuffers = 3;
  498. cl.modes [0] = STARPU_R;
  499. cl.modes [1] = STARPU_R;
  500. cl.modes [2] = STARPU_W;
  501. cl.name = "add_vectors";
  502. // submit a new StarPU task to execute
  503. ret = starpu_task_insert(&cl,
  504. STARPU_R, spu_vec_A,
  505. STARPU_R, spu_vec_B,
  506. STARPU_W, spu_vec_C,
  507. 0);
  508. if (ret == -ENODEV)
  509. {
  510. // StarPU data unregistering
  511. starpu_data_unregister(spu_vec_C);
  512. starpu_data_unregister(spu_vec_B);
  513. starpu_data_unregister(spu_vec_A);
  514. // terminate StarPU, no task can be submitted after
  515. starpu_shutdown();
  516. return 77;
  517. }
  518. STARPU_CHECK_RETURN_VALUE(ret, "task_submit::add_vectors");
  519. // wait the task
  520. starpu_task_wait_for_all();
  521. // StarPU data unregistering
  522. starpu_data_unregister(spu_vec_C);
  523. starpu_data_unregister(spu_vec_B);
  524. starpu_data_unregister(spu_vec_A);
  525. // terminate StarPU, no task can be submitted after
  526. starpu_shutdown();
  527. // check results
  528. bool fail = false;
  529. int i = 0;
  530. while (!fail && i < VEC_SIZE)
  531. fail = vec_C[i++] != 5;
  532. if (fail)
  533. {
  534. #ifdef PRINT_OUTPUT
  535. std::cout << "Example failed..." << std::endl;
  536. #endif
  537. return EXIT_FAILURE;
  538. }
  539. else
  540. {
  541. #ifdef PRINT_OUTPUT
  542. std::cout << "Example successfully passed!" << std::endl;
  543. #endif
  544. return EXIT_SUCCESS;
  545. }
  546. }
  547. #endif