basic.c 7.0 KB

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  1. /* StarPU --- Runtime system for heterogeneous multicore architectures.
  2. *
  3. * Copyright (C) 2010,2011 University of Bordeaux
  4. *
  5. * StarPU is free software; you can redistribute it and/or modify
  6. * it under the terms of the GNU Lesser General Public License as published by
  7. * the Free Software Foundation; either version 2.1 of the License, or (at
  8. * your option) any later version.
  9. *
  10. * StarPU is distributed in the hope that it will be useful, but
  11. * WITHOUT ANY WARRANTY; without even the implied warranty of
  12. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
  13. *
  14. * See the GNU Lesser General Public License in COPYING.LGPL for more details.
  15. */
  16. #include <stdio.h>
  17. #include <stdlib.h>
  18. #include <string.h>
  19. #include <unistd.h>
  20. #include <CL/cl.h>
  21. #define error(...) do { fprintf(stderr, "Error: " __VA_ARGS__); exit(EXIT_FAILURE); } while(0)
  22. #define check(err, str) do { if(err != CL_SUCCESS) { fprintf(stderr, "OpenCL Error (%d): %s\n",err, str); exit(EXIT_FAILURE); }} while(0)
  23. #ifdef UNUSED
  24. #elif defined(__GNUC__)
  25. # define UNUSED(x) UNUSED_ ## x __attribute__((unused))
  26. #else
  27. # define UNUSED(x) x
  28. #endif
  29. #define SIZE 1024
  30. #define TYPE float
  31. #define REALSIZE (SIZE * sizeof(TYPE))
  32. const char * kernel_src = "__kernel void add(__global float*s1, __global float*s2, __global float*d) { \
  33. size_t x = get_global_id(0);\n\
  34. size_t y = get_global_id(1);\n\
  35. size_t w = get_global_size(0); \n\
  36. int idx = y*w+x; \n\
  37. #ifdef SOCL_DEVICE_TYPE_GPU \n\
  38. d[idx] = s1[idx] + s2[idx];\n\
  39. #endif \n\
  40. #ifdef SOCL_DEVICE_TYPE_CPU \n\
  41. d[idx] = s1[idx] + 2* s2[idx];\n\
  42. #endif \n\
  43. #ifdef SOCL_DEVICE_TYPE_ACCELERATOR \n\
  44. d[idx] = s1[idx] + 3 * s2[idx];\n\
  45. #endif \n\
  46. #ifdef SOCL_DEVICE_TYPE_UNKNOWN \n\
  47. d[idx] = s1[idx] + 4 * s2[idx];\n\
  48. #endif \n\
  49. }";
  50. int main(int UNUSED(argc), char** UNUSED(argv)) {
  51. cl_platform_id platforms[15];
  52. cl_uint num_platforms;
  53. cl_device_id devices[15];
  54. cl_uint num_devices;
  55. cl_context context;
  56. cl_program program;
  57. cl_kernel kernel;
  58. cl_mem s1m, s2m, dm;
  59. cl_command_queue cq;
  60. cl_int err;
  61. TYPE s1[SIZE],s2[SIZE],d[SIZE];
  62. {
  63. int i;
  64. for (i=0; i<SIZE; i++) {
  65. s1[i] = 2.0;
  66. s2[i] = 7.0;
  67. d[i] = 98.0;
  68. }
  69. }
  70. printf("Querying platform...\n");
  71. err = clGetPlatformIDs(0, NULL, &num_platforms);
  72. if (num_platforms == 0) {
  73. printf("No OpenCL platform found.\n");
  74. exit(77);
  75. }
  76. err = clGetPlatformIDs(sizeof(platforms)/sizeof(cl_platform_id), platforms, NULL);
  77. check(err, "clGetPlatformIDs");
  78. printf("Querying devices...\n");
  79. unsigned int platform_idx;
  80. for (platform_idx=0; platform_idx<num_platforms; platform_idx++) {
  81. err = clGetDeviceIDs(platforms[platform_idx], CL_DEVICE_TYPE_ALL, sizeof(devices)/sizeof(cl_device_id), devices, &num_devices);
  82. check(err, "clGetDeviceIDs");
  83. if (num_devices != 0)
  84. break;
  85. }
  86. if (num_devices == 0) {
  87. printf("No OpenCL device found\n");
  88. exit(77);
  89. }
  90. printf("Creating context...\n");
  91. cl_context_properties properties[] = {CL_CONTEXT_PLATFORM, (cl_context_properties)platforms[platform_idx], 0};
  92. context = clCreateContext(properties, num_devices, devices, NULL, NULL, &err);
  93. check(err, "clCreateContext");
  94. printf("Creating program...\n");
  95. program = clCreateProgramWithSource(context, 1, &kernel_src, NULL, &err);
  96. check(err, "clCreateProgram");
  97. printf("Building program...\n");
  98. err = clBuildProgram(program, 0, NULL, NULL, NULL, NULL);
  99. check(err, "clBuildProgram");
  100. printf("Creating kernel...\n");
  101. kernel = clCreateKernel(program, "add", &err);
  102. check(err, "clCreateKernel");
  103. printf("Creating buffers...\n");
  104. s1m = clCreateBuffer(context, CL_MEM_READ_WRITE, REALSIZE, NULL, &err);
  105. check(err, "clCreateBuffer s1");
  106. s2m = clCreateBuffer(context, CL_MEM_READ_ONLY, REALSIZE, NULL, &err);
  107. check(err, "clCreateBuffer s2");
  108. dm = clCreateBuffer(context, CL_MEM_WRITE_ONLY, REALSIZE, NULL, &err);
  109. check(err, "clCreateBuffer d");
  110. printf("Creating command queue...\n");
  111. cl_event eventW1, eventW2, eventK, eventR;
  112. #ifdef PROFILING
  113. cq = clCreateCommandQueue(context, NULL, CL_QUEUE_PROFILING_ENABLE, &err);
  114. #else
  115. cq = clCreateCommandQueue(context, NULL, 0, &err);
  116. #endif
  117. check(err, "clCreateCommandQueue");
  118. printf("Enqueueing WriteBuffers...\n");
  119. err = clEnqueueWriteBuffer(cq, s1m, CL_FALSE, 0, REALSIZE, s1, 0, NULL, &eventW1);
  120. check(err, "clEnqueueWriteBuffer s1");
  121. err = clEnqueueWriteBuffer(cq, s2m, CL_FALSE, 0, REALSIZE, s2, 0, NULL, &eventW2);
  122. check(err, "clEnqueueWriteBuffer s2");
  123. printf("Setting kernel arguments...\n");
  124. err = clSetKernelArg(kernel, 0, sizeof(cl_mem), &s1m);
  125. check(err, "clSetKernelArg 0");
  126. err = clSetKernelArg(kernel, 1, sizeof(cl_mem), &s2m);
  127. check(err, "clSetKernelArg 1");
  128. err = clSetKernelArg(kernel, 2, sizeof(cl_mem), &dm);
  129. check(err, "clSetKernelArg 2");
  130. printf("Enqueueing NDRangeKernel...\n");
  131. size_t local[3] = {16, 1, 1};
  132. size_t global[3] = {1024, 1, 1};
  133. cl_event deps[] = {eventW1,eventW2};
  134. err = clEnqueueNDRangeKernel(cq, kernel, 3, NULL, global, local, 2, deps, &eventK);
  135. check(err, "clEnqueueNDRangeKernel");
  136. printf("Enqueueing ReadBuffer...\n");
  137. err = clEnqueueReadBuffer(cq, dm, CL_FALSE, 0, REALSIZE, d, 0, NULL, &eventR);
  138. check(err, "clEnqueueReadBuffer");
  139. printf("Finishing queue...\n");
  140. clFinish(cq);
  141. printf("Data...\n");
  142. {
  143. int i;
  144. for (i=0; i<SIZE; i++) {
  145. printf("%f ", d[i]);
  146. }
  147. printf("\n");
  148. }
  149. #ifdef PROFILING
  150. #define DURATION(event,label) do { \
  151. cl_ulong t0,t1; \
  152. err = clGetEventProfilingInfo(event, CL_PROFILING_COMMAND_START, sizeof(cl_ulong), &t0, NULL);\
  153. check(err, "clGetEventProfilingInfo");\
  154. err = clGetEventProfilingInfo(event, CL_PROFILING_COMMAND_END, sizeof(cl_ulong), &t1, NULL);\
  155. check(err, "clGetEventProfilingInfo");\
  156. printf("Profiling %s: %lu nanoseconds\n", label, t1-t0);\
  157. } while (0);
  158. DURATION(eventW1, "first buffer writing");
  159. DURATION(eventW2, "second buffer writing");
  160. DURATION(eventK, "kernel execution");
  161. DURATION(eventR, "result buffer reading");
  162. #endif
  163. printf("Releasing events...\n");
  164. err = clReleaseEvent(eventW1);
  165. err |= clReleaseEvent(eventW2);
  166. err |= clReleaseEvent(eventK);
  167. err |= clReleaseEvent(eventR);
  168. check(err, "clReleaseCommandQueue");
  169. printf("Releasing command queue...\n");
  170. err = clReleaseCommandQueue(cq);
  171. check(err, "clReleaseCommandQueue");
  172. printf("Releasing buffers...\n");
  173. err = clReleaseMemObject(s1m);
  174. check(err, "clReleaseMemObject s1");
  175. err = clReleaseMemObject(s2m);
  176. check(err, "clReleaseMemObject s2");
  177. err = clReleaseMemObject(dm);
  178. check(err, "clReleaseMemObject d");
  179. printf("Releasing kernel...\n");
  180. err = clReleaseKernel(kernel);
  181. check(err, "clReleaseKernel");
  182. printf("Releasing program...\n");
  183. err = clReleaseProgram(program);
  184. check(err, "clReleaseProgram");
  185. printf("Releasing context...\n");
  186. err = clReleaseContext(context);
  187. check(err, "clReleaseContext");
  188. return 0;
  189. }