ocl.c 36 KB

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  1. /*
  2. * Copyright 2011-2013 Con Kolivas
  3. * Copyright 2012-2013 Luke Dashjr
  4. *
  5. * This program is free software; you can redistribute it and/or modify it
  6. * under the terms of the GNU General Public License as published by the Free
  7. * Software Foundation; either version 3 of the License, or (at your option)
  8. * any later version. See COPYING for more details.
  9. */
  10. #include "config.h"
  11. #ifdef HAVE_OPENCL
  12. #include <signal.h>
  13. #include <stdlib.h>
  14. #include <string.h>
  15. #include <stdio.h>
  16. #include <sys/types.h>
  17. #ifdef WIN32
  18. #include <winsock2.h>
  19. #else
  20. #include <sys/socket.h>
  21. #include <netinet/in.h>
  22. #include <netdb.h>
  23. #endif
  24. #include <time.h>
  25. #include <sys/time.h>
  26. #include <pthread.h>
  27. #include <sys/stat.h>
  28. #include <unistd.h>
  29. #define OMIT_OPENCL_API
  30. #include "findnonce.h"
  31. #include "ocl.h"
  32. /* Platform API */
  33. extern
  34. CL_API_ENTRY cl_int CL_API_CALL
  35. (*clGetPlatformIDs)(cl_uint /* num_entries */,
  36. cl_platform_id * /* platforms */,
  37. cl_uint * /* num_platforms */) CL_API_SUFFIX__VERSION_1_0;
  38. extern
  39. CL_API_ENTRY cl_int CL_API_CALL
  40. (*clGetPlatformInfo)(cl_platform_id /* platform */,
  41. cl_platform_info /* param_name */,
  42. size_t /* param_value_size */,
  43. void * /* param_value */,
  44. size_t * /* param_value_size_ret */) CL_API_SUFFIX__VERSION_1_0;
  45. /* Device APIs */
  46. extern
  47. CL_API_ENTRY cl_int CL_API_CALL
  48. (*clGetDeviceIDs)(cl_platform_id /* platform */,
  49. cl_device_type /* device_type */,
  50. cl_uint /* num_entries */,
  51. cl_device_id * /* devices */,
  52. cl_uint * /* num_devices */) CL_API_SUFFIX__VERSION_1_0;
  53. extern
  54. CL_API_ENTRY cl_int CL_API_CALL
  55. (*clGetDeviceInfo)(cl_device_id /* device */,
  56. cl_device_info /* param_name */,
  57. size_t /* param_value_size */,
  58. void * /* param_value */,
  59. size_t * /* param_value_size_ret */) CL_API_SUFFIX__VERSION_1_0;
  60. /* Context APIs */
  61. extern
  62. CL_API_ENTRY cl_context CL_API_CALL
  63. (*clCreateContextFromType)(const cl_context_properties * /* properties */,
  64. cl_device_type /* device_type */,
  65. void (CL_CALLBACK * /* pfn_notify*/ )(const char *, const void *, size_t, void *),
  66. void * /* user_data */,
  67. cl_int * /* errcode_ret */) CL_API_SUFFIX__VERSION_1_0;
  68. extern
  69. CL_API_ENTRY cl_int CL_API_CALL
  70. (*clReleaseContext)(cl_context /* context */) CL_API_SUFFIX__VERSION_1_0;
  71. /* Command Queue APIs */
  72. extern
  73. CL_API_ENTRY cl_command_queue CL_API_CALL
  74. (*clCreateCommandQueue)(cl_context /* context */,
  75. cl_device_id /* device */,
  76. cl_command_queue_properties /* properties */,
  77. cl_int * /* errcode_ret */) CL_API_SUFFIX__VERSION_1_0;
  78. extern
  79. CL_API_ENTRY cl_int CL_API_CALL
  80. (*clReleaseCommandQueue)(cl_command_queue /* command_queue */) CL_API_SUFFIX__VERSION_1_0;
  81. /* Memory Object APIs */
  82. extern
  83. CL_API_ENTRY cl_mem CL_API_CALL
  84. (*clCreateBuffer)(cl_context /* context */,
  85. cl_mem_flags /* flags */,
  86. size_t /* size */,
  87. void * /* host_ptr */,
  88. cl_int * /* errcode_ret */) CL_API_SUFFIX__VERSION_1_0;
  89. /* Program Object APIs */
  90. extern
  91. CL_API_ENTRY cl_program CL_API_CALL
  92. (*clCreateProgramWithSource)(cl_context /* context */,
  93. cl_uint /* count */,
  94. const char ** /* strings */,
  95. const size_t * /* lengths */,
  96. cl_int * /* errcode_ret */) CL_API_SUFFIX__VERSION_1_0;
  97. extern
  98. CL_API_ENTRY cl_program CL_API_CALL
  99. (*clCreateProgramWithBinary)(cl_context /* context */,
  100. cl_uint /* num_devices */,
  101. const cl_device_id * /* device_list */,
  102. const size_t * /* lengths */,
  103. const unsigned char ** /* binaries */,
  104. cl_int * /* binary_status */,
  105. cl_int * /* errcode_ret */) CL_API_SUFFIX__VERSION_1_0;
  106. extern
  107. CL_API_ENTRY cl_int CL_API_CALL
  108. (*clReleaseProgram)(cl_program /* program */) CL_API_SUFFIX__VERSION_1_0;
  109. extern
  110. CL_API_ENTRY cl_int CL_API_CALL
  111. (*clBuildProgram)(cl_program /* program */,
  112. cl_uint /* num_devices */,
  113. const cl_device_id * /* device_list */,
  114. const char * /* options */,
  115. void (CL_CALLBACK * /* pfn_notify */)(cl_program /* program */, void * /* user_data */),
  116. void * /* user_data */) CL_API_SUFFIX__VERSION_1_0;
  117. extern
  118. CL_API_ENTRY cl_int CL_API_CALL
  119. (*clGetProgramInfo)(cl_program /* program */,
  120. cl_program_info /* param_name */,
  121. size_t /* param_value_size */,
  122. void * /* param_value */,
  123. size_t * /* param_value_size_ret */) CL_API_SUFFIX__VERSION_1_0;
  124. extern
  125. CL_API_ENTRY cl_int CL_API_CALL
  126. (*clGetProgramBuildInfo)(cl_program /* program */,
  127. cl_device_id /* device */,
  128. cl_program_build_info /* param_name */,
  129. size_t /* param_value_size */,
  130. void * /* param_value */,
  131. size_t * /* param_value_size_ret */) CL_API_SUFFIX__VERSION_1_0;
  132. /* Kernel Object APIs */
  133. extern
  134. CL_API_ENTRY cl_kernel CL_API_CALL
  135. (*clCreateKernel)(cl_program /* program */,
  136. const char * /* kernel_name */,
  137. cl_int * /* errcode_ret */) CL_API_SUFFIX__VERSION_1_0;
  138. extern
  139. CL_API_ENTRY cl_int CL_API_CALL
  140. (*clReleaseKernel)(cl_kernel /* kernel */) CL_API_SUFFIX__VERSION_1_0;
  141. extern
  142. CL_API_ENTRY cl_int CL_API_CALL
  143. (*clSetKernelArg)(cl_kernel /* kernel */,
  144. cl_uint /* arg_index */,
  145. size_t /* arg_size */,
  146. const void * /* arg_value */) CL_API_SUFFIX__VERSION_1_0;
  147. /* Flush and Finish APIs */
  148. extern
  149. CL_API_ENTRY cl_int CL_API_CALL
  150. (*clFinish)(cl_command_queue /* command_queue */) CL_API_SUFFIX__VERSION_1_0;
  151. /* Enqueued Commands APIs */
  152. extern
  153. CL_API_ENTRY cl_int CL_API_CALL
  154. (*clEnqueueReadBuffer)(cl_command_queue /* command_queue */,
  155. cl_mem /* buffer */,
  156. cl_bool /* blocking_read */,
  157. size_t /* offset */,
  158. size_t /* size */,
  159. void * /* ptr */,
  160. cl_uint /* num_events_in_wait_list */,
  161. const cl_event * /* event_wait_list */,
  162. cl_event * /* event */) CL_API_SUFFIX__VERSION_1_0;
  163. extern
  164. CL_API_ENTRY cl_int CL_API_CALL
  165. (*clEnqueueWriteBuffer)(cl_command_queue /* command_queue */,
  166. cl_mem /* buffer */,
  167. cl_bool /* blocking_write */,
  168. size_t /* offset */,
  169. size_t /* size */,
  170. const void * /* ptr */,
  171. cl_uint /* num_events_in_wait_list */,
  172. const cl_event * /* event_wait_list */,
  173. cl_event * /* event */) CL_API_SUFFIX__VERSION_1_0;
  174. extern
  175. CL_API_ENTRY cl_int CL_API_CALL
  176. (*clEnqueueNDRangeKernel)(cl_command_queue /* command_queue */,
  177. cl_kernel /* kernel */,
  178. cl_uint /* work_dim */,
  179. const size_t * /* global_work_offset */,
  180. const size_t * /* global_work_size */,
  181. const size_t * /* local_work_size */,
  182. cl_uint /* num_events_in_wait_list */,
  183. const cl_event * /* event_wait_list */,
  184. cl_event * /* event */) CL_API_SUFFIX__VERSION_1_0;
  185. int opt_platform_id = -1;
  186. char *file_contents(const char *filename, int *length)
  187. {
  188. char *fullpath = alloca(PATH_MAX);
  189. void *buffer;
  190. FILE *f;
  191. strcpy(fullpath, opt_kernel_path);
  192. strcat(fullpath, filename);
  193. /* Try in the optional kernel path or installed prefix first */
  194. f = fopen(fullpath, "rb");
  195. if (!f) {
  196. /* Then try from the path BFGMiner was called */
  197. strcpy(fullpath, cgminer_path);
  198. strcat(fullpath, filename);
  199. f = fopen(fullpath, "rb");
  200. }
  201. /* Finally try opening it directly */
  202. if (!f)
  203. f = fopen(filename, "rb");
  204. if (!f) {
  205. applog(LOG_ERR, "Unable to open %s or %s for reading", filename, fullpath);
  206. return NULL;
  207. }
  208. fseek(f, 0, SEEK_END);
  209. *length = ftell(f);
  210. fseek(f, 0, SEEK_SET);
  211. buffer = malloc(*length+1);
  212. *length = fread(buffer, 1, *length, f);
  213. fclose(f);
  214. ((char*)buffer)[*length] = '\0';
  215. return (char*)buffer;
  216. }
  217. int clDevicesNum(void) {
  218. cl_int status;
  219. char pbuff[256];
  220. cl_uint numDevices;
  221. cl_uint numPlatforms;
  222. cl_platform_id *platforms;
  223. cl_platform_id platform = NULL;
  224. unsigned int most_devices = 0, i, mdplatform = 0;
  225. status = clGetPlatformIDs(0, NULL, &numPlatforms);
  226. /* If this fails, assume no GPUs. */
  227. if (status != CL_SUCCESS) {
  228. applog(LOG_ERR, "Error %d: clGetPlatformsIDs failed (no OpenCL SDK installed?)", status);
  229. return -1;
  230. }
  231. if (numPlatforms == 0) {
  232. applog(LOG_ERR, "clGetPlatformsIDs returned no platforms (no OpenCL SDK installed?)");
  233. return -1;
  234. }
  235. platforms = (cl_platform_id *)alloca(numPlatforms*sizeof(cl_platform_id));
  236. status = clGetPlatformIDs(numPlatforms, platforms, NULL);
  237. if (status != CL_SUCCESS) {
  238. applog(LOG_ERR, "Error %d: Getting Platform Ids. (clGetPlatformsIDs)", status);
  239. return -1;
  240. }
  241. for (i = 0; i < numPlatforms; i++) {
  242. if (opt_platform_id >= 0 && (int)i != opt_platform_id)
  243. continue;
  244. status = clGetPlatformInfo( platforms[i], CL_PLATFORM_VENDOR, sizeof(pbuff), pbuff, NULL);
  245. if (status != CL_SUCCESS) {
  246. applog(LOG_ERR, "Error %d: Getting Platform Info. (clGetPlatformInfo)", status);
  247. return -1;
  248. }
  249. platform = platforms[i];
  250. applog(LOG_INFO, "CL Platform %d vendor: %s", i, pbuff);
  251. status = clGetPlatformInfo(platform, CL_PLATFORM_NAME, sizeof(pbuff), pbuff, NULL);
  252. if (status == CL_SUCCESS)
  253. applog(LOG_INFO, "CL Platform %d name: %s", i, pbuff);
  254. status = clGetPlatformInfo(platform, CL_PLATFORM_VERSION, sizeof(pbuff), pbuff, NULL);
  255. if (status == CL_SUCCESS)
  256. applog(LOG_INFO, "CL Platform %d version: %s", i, pbuff);
  257. status = clGetDeviceIDs(platform, CL_DEVICE_TYPE_GPU, 0, NULL, &numDevices);
  258. if (status != CL_SUCCESS) {
  259. applog(LOG_ERR, "Error %d: Getting Device IDs (num)", status);
  260. if ((int)i != opt_platform_id)
  261. continue;
  262. return -1;
  263. }
  264. applog(LOG_INFO, "Platform %d devices: %d", i, numDevices);
  265. if (numDevices > most_devices) {
  266. most_devices = numDevices;
  267. mdplatform = i;
  268. }
  269. if (numDevices) {
  270. unsigned int j;
  271. char pbuff[256];
  272. cl_device_id *devices = (cl_device_id *)malloc(numDevices*sizeof(cl_device_id));
  273. clGetDeviceIDs(platform, CL_DEVICE_TYPE_GPU, numDevices, devices, NULL);
  274. for (j = 0; j < numDevices; j++) {
  275. clGetDeviceInfo(devices[j], CL_DEVICE_NAME, sizeof(pbuff), pbuff, NULL);
  276. applog(LOG_INFO, "\t%i\t%s", j, pbuff);
  277. }
  278. free(devices);
  279. }
  280. }
  281. if (opt_platform_id < 0)
  282. opt_platform_id = mdplatform;;
  283. return most_devices;
  284. }
  285. static int advance(char **area, unsigned *remaining, const char *marker)
  286. {
  287. char *find = memmem(*area, *remaining, marker, strlen(marker));
  288. if (!find) {
  289. applog(LOG_DEBUG, "Marker \"%s\" not found", marker);
  290. return 0;
  291. }
  292. *remaining -= find - *area;
  293. *area = find;
  294. return 1;
  295. }
  296. #define OP3_INST_BFE_UINT 4ULL
  297. #define OP3_INST_BFE_INT 5ULL
  298. #define OP3_INST_BFI_INT 6ULL
  299. #define OP3_INST_BIT_ALIGN_INT 12ULL
  300. #define OP3_INST_BYTE_ALIGN_INT 13ULL
  301. void patch_opcodes(char *w, unsigned remaining)
  302. {
  303. uint64_t *opcode = (uint64_t *)w;
  304. int patched = 0;
  305. int count_bfe_int = 0;
  306. int count_bfe_uint = 0;
  307. int count_byte_align = 0;
  308. while (42) {
  309. int clamp = (*opcode >> (32 + 31)) & 0x1;
  310. int dest_rel = (*opcode >> (32 + 28)) & 0x1;
  311. int alu_inst = (*opcode >> (32 + 13)) & 0x1f;
  312. int s2_neg = (*opcode >> (32 + 12)) & 0x1;
  313. int s2_rel = (*opcode >> (32 + 9)) & 0x1;
  314. int pred_sel = (*opcode >> 29) & 0x3;
  315. if (!clamp && !dest_rel && !s2_neg && !s2_rel && !pred_sel) {
  316. if (alu_inst == OP3_INST_BFE_INT) {
  317. count_bfe_int++;
  318. } else if (alu_inst == OP3_INST_BFE_UINT) {
  319. count_bfe_uint++;
  320. } else if (alu_inst == OP3_INST_BYTE_ALIGN_INT) {
  321. count_byte_align++;
  322. // patch this instruction to BFI_INT
  323. *opcode &= 0xfffc1fffffffffffULL;
  324. *opcode |= OP3_INST_BFI_INT << (32 + 13);
  325. patched++;
  326. }
  327. }
  328. if (remaining <= 8)
  329. break;
  330. opcode++;
  331. remaining -= 8;
  332. }
  333. applog(LOG_DEBUG, "Potential OP3 instructions identified: "
  334. "%i BFE_INT, %i BFE_UINT, %i BYTE_ALIGN",
  335. count_bfe_int, count_bfe_uint, count_byte_align);
  336. applog(LOG_DEBUG, "Patched a total of %i BFI_INT instructions", patched);
  337. }
  338. _clState *initCl(unsigned int gpu, char *name, size_t nameSize)
  339. {
  340. _clState *clState = calloc(1, sizeof(_clState));
  341. bool patchbfi = false, prog_built = false;
  342. bool usebinary = true;
  343. struct cgpu_info *cgpu = &gpus[gpu];
  344. cl_platform_id platform = NULL;
  345. char pbuff[256], vbuff[255];
  346. cl_platform_id* platforms;
  347. cl_uint preferred_vwidth;
  348. cl_device_id *devices;
  349. cl_uint numPlatforms;
  350. cl_uint numDevices;
  351. cl_int status;
  352. status = clGetPlatformIDs(0, NULL, &numPlatforms);
  353. if (status != CL_SUCCESS) {
  354. applog(LOG_ERR, "Error %d: Getting Platforms. (clGetPlatformsIDs)", status);
  355. return NULL;
  356. }
  357. platforms = (cl_platform_id *)alloca(numPlatforms*sizeof(cl_platform_id));
  358. status = clGetPlatformIDs(numPlatforms, platforms, NULL);
  359. if (status != CL_SUCCESS) {
  360. applog(LOG_ERR, "Error %d: Getting Platform Ids. (clGetPlatformsIDs)", status);
  361. return NULL;
  362. }
  363. if (opt_platform_id >= (int)numPlatforms) {
  364. applog(LOG_ERR, "Specified platform that does not exist");
  365. return NULL;
  366. }
  367. status = clGetPlatformInfo(platforms[opt_platform_id], CL_PLATFORM_VENDOR, sizeof(pbuff), pbuff, NULL);
  368. if (status != CL_SUCCESS) {
  369. applog(LOG_ERR, "Error %d: Getting Platform Info. (clGetPlatformInfo)", status);
  370. return NULL;
  371. }
  372. platform = platforms[opt_platform_id];
  373. if (platform == NULL) {
  374. perror("NULL platform found!\n");
  375. return NULL;
  376. }
  377. applog(LOG_INFO, "CL Platform vendor: %s", pbuff);
  378. status = clGetPlatformInfo(platform, CL_PLATFORM_NAME, sizeof(pbuff), pbuff, NULL);
  379. if (status == CL_SUCCESS)
  380. applog(LOG_INFO, "CL Platform name: %s", pbuff);
  381. status = clGetPlatformInfo(platform, CL_PLATFORM_VERSION, sizeof(vbuff), vbuff, NULL);
  382. if (status == CL_SUCCESS)
  383. applog(LOG_INFO, "CL Platform version: %s", vbuff);
  384. status = clGetDeviceIDs(platform, CL_DEVICE_TYPE_GPU, 0, NULL, &numDevices);
  385. if (status != CL_SUCCESS) {
  386. applog(LOG_ERR, "Error %d: Getting Device IDs (num)", status);
  387. return NULL;
  388. }
  389. if (numDevices > 0 ) {
  390. devices = (cl_device_id *)malloc(numDevices*sizeof(cl_device_id));
  391. /* Now, get the device list data */
  392. status = clGetDeviceIDs(platform, CL_DEVICE_TYPE_GPU, numDevices, devices, NULL);
  393. if (status != CL_SUCCESS) {
  394. applog(LOG_ERR, "Error %d: Getting Device IDs (list)", status);
  395. return NULL;
  396. }
  397. applog(LOG_INFO, "List of devices:");
  398. unsigned int i;
  399. for (i = 0; i < numDevices; i++) {
  400. status = clGetDeviceInfo(devices[i], CL_DEVICE_NAME, sizeof(pbuff), pbuff, NULL);
  401. if (status != CL_SUCCESS) {
  402. applog(LOG_ERR, "Error %d: Getting Device Info", status);
  403. return NULL;
  404. }
  405. applog(LOG_INFO, "\t%i\t%s", i, pbuff);
  406. }
  407. if (gpu < numDevices) {
  408. status = clGetDeviceInfo(devices[gpu], CL_DEVICE_NAME, sizeof(pbuff), pbuff, NULL);
  409. if (status != CL_SUCCESS) {
  410. applog(LOG_ERR, "Error %d: Getting Device Info", status);
  411. return NULL;
  412. }
  413. applog(LOG_INFO, "Selected %i: %s", gpu, pbuff);
  414. strncpy(name, pbuff, nameSize);
  415. } else {
  416. applog(LOG_ERR, "Invalid GPU %i", gpu);
  417. return NULL;
  418. }
  419. } else return NULL;
  420. cl_context_properties cps[3] = { CL_CONTEXT_PLATFORM, (cl_context_properties)platform, 0 };
  421. clState->context = clCreateContextFromType(cps, CL_DEVICE_TYPE_GPU, NULL, NULL, &status);
  422. if (status != CL_SUCCESS) {
  423. applog(LOG_ERR, "Error %d: Creating Context. (clCreateContextFromType)", status);
  424. return NULL;
  425. }
  426. /////////////////////////////////////////////////////////////////
  427. // Create an OpenCL command queue
  428. /////////////////////////////////////////////////////////////////
  429. clState->commandQueue = clCreateCommandQueue(clState->context, devices[gpu],
  430. CL_QUEUE_OUT_OF_ORDER_EXEC_MODE_ENABLE, &status);
  431. if (status != CL_SUCCESS) /* Try again without OOE enable */
  432. clState->commandQueue = clCreateCommandQueue(clState->context, devices[gpu], 0 , &status);
  433. if (status != CL_SUCCESS) {
  434. applog(LOG_ERR, "Error %d: Creating Command Queue. (clCreateCommandQueue)", status);
  435. return NULL;
  436. }
  437. /* Check for BFI INT support. Hopefully people don't mix devices with
  438. * and without it! */
  439. char * extensions = malloc(1024);
  440. const char * camo = "cl_amd_media_ops";
  441. char *find;
  442. status = clGetDeviceInfo(devices[gpu], CL_DEVICE_EXTENSIONS, 1024, (void *)extensions, NULL);
  443. if (status != CL_SUCCESS) {
  444. applog(LOG_ERR, "Error %d: Failed to clGetDeviceInfo when trying to get CL_DEVICE_EXTENSIONS", status);
  445. return NULL;
  446. }
  447. find = strstr(extensions, camo);
  448. if (find)
  449. clState->hasBitAlign = true;
  450. /* Check for OpenCL >= 1.0 support, needed for global offset parameter usage. */
  451. char * devoclver = malloc(1024);
  452. const char * ocl10 = "OpenCL 1.0";
  453. status = clGetDeviceInfo(devices[gpu], CL_DEVICE_VERSION, 1024, (void *)devoclver, NULL);
  454. if (status != CL_SUCCESS) {
  455. applog(LOG_ERR, "Error %d: Failed to clGetDeviceInfo when trying to get CL_DEVICE_VERSION", status);
  456. return NULL;
  457. }
  458. find = strstr(devoclver, ocl10);
  459. if (!find)
  460. clState->hasOpenCL11plus = true;
  461. status = clGetDeviceInfo(devices[gpu], CL_DEVICE_PREFERRED_VECTOR_WIDTH_INT, sizeof(cl_uint), (void *)&preferred_vwidth, NULL);
  462. if (status != CL_SUCCESS) {
  463. applog(LOG_ERR, "Error %d: Failed to clGetDeviceInfo when trying to get CL_DEVICE_PREFERRED_VECTOR_WIDTH_INT", status);
  464. return NULL;
  465. }
  466. applog(LOG_DEBUG, "Preferred vector width reported %d", preferred_vwidth);
  467. status = clGetDeviceInfo(devices[gpu], CL_DEVICE_MAX_WORK_GROUP_SIZE, sizeof(size_t), (void *)&clState->max_work_size, NULL);
  468. if (status != CL_SUCCESS) {
  469. applog(LOG_ERR, "Error %d: Failed to clGetDeviceInfo when trying to get CL_DEVICE_MAX_WORK_GROUP_SIZE", status);
  470. return NULL;
  471. }
  472. applog(LOG_DEBUG, "Max work group size reported %"PRId64, (int64_t)clState->max_work_size);
  473. status = clGetDeviceInfo(devices[gpu], CL_DEVICE_MAX_MEM_ALLOC_SIZE , sizeof(cl_ulong), (void *)&cgpu->max_alloc, NULL);
  474. if (status != CL_SUCCESS) {
  475. applog(LOG_ERR, "Error %d: Failed to clGetDeviceInfo when trying to get CL_DEVICE_MAX_MEM_ALLOC_SIZE", status);
  476. return NULL;
  477. }
  478. applog(LOG_DEBUG, "Max mem alloc size is %lu", (unsigned long)cgpu->max_alloc);
  479. if (strstr(vbuff, "MESA"))
  480. {
  481. applog(LOG_DEBUG, "Mesa OpenCL platform detected, disabling OpenCL kernel binaries and bitalign");
  482. clState->hasBitAlign = false;
  483. usebinary = false;
  484. }
  485. /* Create binary filename based on parameters passed to opencl
  486. * compiler to ensure we only load a binary that matches what would
  487. * have otherwise created. The filename is:
  488. * kernelname + name +/- g(offset) + v + vectors + w + work_size + l + sizeof(long) + p + platform version + .bin
  489. * For scrypt the filename is:
  490. * kernelname + name + g + lg + lookup_gap + tc + thread_concurrency + w + work_size + l + sizeof(long) + p + platform version + .bin
  491. */
  492. char binaryfilename[255];
  493. char filename[255];
  494. char numbuf[32];
  495. if (cgpu->kernel == KL_NONE) {
  496. if (opt_scrypt) {
  497. applog(LOG_INFO, "Selecting scrypt kernel");
  498. clState->chosen_kernel = KL_SCRYPT;
  499. } else if (!strstr(name, "Tahiti") &&
  500. /* Detect all 2.6 SDKs not with Tahiti and use diablo kernel */
  501. (strstr(vbuff, "844.4") || // Linux 64 bit ATI 2.6 SDK
  502. strstr(vbuff, "851.4") || // Windows 64 bit ""
  503. strstr(vbuff, "831.4") ||
  504. strstr(vbuff, "898.1") || // 12.2 driver SDK
  505. strstr(vbuff, "923.1") || // 12.4
  506. strstr(vbuff, "938.2") || // SDK 2.7
  507. strstr(vbuff, "1113.2"))) {// SDK 2.8
  508. applog(LOG_INFO, "Selecting diablo kernel");
  509. clState->chosen_kernel = KL_DIABLO;
  510. /* Detect all 7970s, older ATI and NVIDIA and use poclbm */
  511. } else if (strstr(name, "Tahiti") || !clState->hasBitAlign) {
  512. applog(LOG_INFO, "Selecting poclbm kernel");
  513. clState->chosen_kernel = KL_POCLBM;
  514. /* Use phatk for the rest R5xxx R6xxx */
  515. } else {
  516. applog(LOG_INFO, "Selecting phatk kernel");
  517. clState->chosen_kernel = KL_PHATK;
  518. }
  519. cgpu->kernel = clState->chosen_kernel;
  520. } else {
  521. clState->chosen_kernel = cgpu->kernel;
  522. if (clState->chosen_kernel == KL_PHATK &&
  523. (strstr(vbuff, "844.4") || strstr(vbuff, "851.4") ||
  524. strstr(vbuff, "831.4") || strstr(vbuff, "898.1") ||
  525. strstr(vbuff, "923.1") || strstr(vbuff, "938.2") ||
  526. strstr(vbuff, "1113.2"))) {
  527. applog(LOG_WARNING, "WARNING: You have selected the phatk kernel.");
  528. applog(LOG_WARNING, "You are running SDK 2.6+ which performs poorly with this kernel.");
  529. applog(LOG_WARNING, "Downgrade your SDK and delete any .bin files before starting again.");
  530. applog(LOG_WARNING, "Or allow BFGMiner to automatically choose a more suitable kernel.");
  531. }
  532. }
  533. /* For some reason 2 vectors is still better even if the card says
  534. * otherwise, and many cards lie about their max so use 256 as max
  535. * unless explicitly set on the command line. Tahiti prefers 1 */
  536. if (strstr(name, "Tahiti"))
  537. preferred_vwidth = 1;
  538. else if (preferred_vwidth > 2)
  539. preferred_vwidth = 2;
  540. switch (clState->chosen_kernel) {
  541. case KL_POCLBM:
  542. strcpy(filename, POCLBM_KERNNAME".cl");
  543. strcpy(binaryfilename, POCLBM_KERNNAME);
  544. break;
  545. case KL_PHATK:
  546. strcpy(filename, PHATK_KERNNAME".cl");
  547. strcpy(binaryfilename, PHATK_KERNNAME);
  548. break;
  549. case KL_DIAKGCN:
  550. strcpy(filename, DIAKGCN_KERNNAME".cl");
  551. strcpy(binaryfilename, DIAKGCN_KERNNAME);
  552. break;
  553. case KL_SCRYPT:
  554. strcpy(filename, SCRYPT_KERNNAME".cl");
  555. strcpy(binaryfilename, SCRYPT_KERNNAME);
  556. /* Scrypt only supports vector 1 */
  557. cgpu->vwidth = 1;
  558. break;
  559. case KL_NONE: /* Shouldn't happen */
  560. case KL_DIABLO:
  561. strcpy(filename, DIABLO_KERNNAME".cl");
  562. strcpy(binaryfilename, DIABLO_KERNNAME);
  563. break;
  564. }
  565. if (cgpu->vwidth)
  566. clState->vwidth = cgpu->vwidth;
  567. else {
  568. clState->vwidth = preferred_vwidth;
  569. cgpu->vwidth = preferred_vwidth;
  570. }
  571. if (((clState->chosen_kernel == KL_POCLBM || clState->chosen_kernel == KL_DIABLO || clState->chosen_kernel == KL_DIAKGCN) &&
  572. clState->vwidth == 1 && clState->hasOpenCL11plus) || opt_scrypt)
  573. clState->goffset = true;
  574. if (cgpu->work_size && cgpu->work_size <= clState->max_work_size)
  575. clState->wsize = cgpu->work_size;
  576. else if (strstr(name, "Tahiti"))
  577. clState->wsize = 64;
  578. else
  579. clState->wsize = (clState->max_work_size <= 256 ? clState->max_work_size : 256) / clState->vwidth;
  580. cgpu->work_size = clState->wsize;
  581. #ifdef USE_SCRYPT
  582. if (opt_scrypt) {
  583. cl_ulong ma = cgpu->max_alloc, mt;
  584. if (!cgpu->opt_lg) {
  585. applog(LOG_DEBUG, "GPU %d: selecting lookup gap of 2", gpu);
  586. cgpu->lookup_gap = 2;
  587. } else
  588. cgpu->lookup_gap = cgpu->opt_lg;
  589. if (!cgpu->opt_tc) {
  590. cgpu->thread_concurrency = ma / 32768 / cgpu->lookup_gap;
  591. if (cgpu->shaders && cgpu->thread_concurrency > cgpu->shaders) {
  592. cgpu->thread_concurrency -= cgpu->thread_concurrency % cgpu->shaders;
  593. if (cgpu->thread_concurrency > cgpu->shaders * 5)
  594. cgpu->thread_concurrency = cgpu->shaders * 5;
  595. }
  596. applog(LOG_DEBUG, "GPU %u: selecting thread concurrency of %lu", gpu, (unsigned long)cgpu->thread_concurrency);
  597. } else
  598. cgpu->thread_concurrency = cgpu->opt_tc;
  599. /* If we have memory to spare, try to find a power of 2 value
  600. * >= required amount to map nicely to an intensity */
  601. mt = cgpu->thread_concurrency * 32768 * cgpu->lookup_gap;
  602. if (ma > mt) {
  603. ma = 1;
  604. while (ma < mt)
  605. ma <<= 1;
  606. if (ma < cgpu->max_alloc) {
  607. cgpu->max_alloc = ma;
  608. applog(LOG_DEBUG, "Max alloc decreased to %lu", (unsigned long)cgpu->max_alloc);
  609. }
  610. }
  611. }
  612. #endif
  613. FILE *binaryfile;
  614. size_t *binary_sizes;
  615. char **binaries;
  616. int pl;
  617. char *source = file_contents(filename, &pl);
  618. size_t sourceSize[] = {(size_t)pl};
  619. cl_uint slot, cpnd;
  620. slot = cpnd = 0;
  621. if (!source)
  622. return NULL;
  623. binary_sizes = calloc(sizeof(size_t) * MAX_GPUDEVICES * 4, 1);
  624. if (unlikely(!binary_sizes)) {
  625. applog(LOG_ERR, "Unable to calloc binary_sizes");
  626. return NULL;
  627. }
  628. binaries = calloc(sizeof(char *) * MAX_GPUDEVICES * 4, 1);
  629. if (unlikely(!binaries)) {
  630. applog(LOG_ERR, "Unable to calloc binaries");
  631. return NULL;
  632. }
  633. strcat(binaryfilename, name);
  634. if (clState->goffset)
  635. strcat(binaryfilename, "g");
  636. if (opt_scrypt) {
  637. #ifdef USE_SCRYPT
  638. sprintf(numbuf, "lg%utc%u", cgpu->lookup_gap, (unsigned int)cgpu->thread_concurrency);
  639. strcat(binaryfilename, numbuf);
  640. #endif
  641. } else {
  642. sprintf(numbuf, "v%d", clState->vwidth);
  643. strcat(binaryfilename, numbuf);
  644. }
  645. sprintf(numbuf, "w%d", (int)clState->wsize);
  646. strcat(binaryfilename, numbuf);
  647. sprintf(numbuf, "l%d", (int)sizeof(long));
  648. strcat(binaryfilename, numbuf);
  649. strcat(binaryfilename, "p");
  650. strcat(binaryfilename, vbuff);
  651. sanestr(binaryfilename, binaryfilename);
  652. applog(LOG_DEBUG, "OCL%2u: Configured OpenCL kernel name: %s", gpu, binaryfilename);
  653. strcat(binaryfilename, ".bin");
  654. if (!usebinary)
  655. goto build;
  656. binaryfile = fopen(binaryfilename, "rb");
  657. if (!binaryfile) {
  658. applog(LOG_DEBUG, "No binary found, generating from source");
  659. } else {
  660. struct stat binary_stat;
  661. if (unlikely(stat(binaryfilename, &binary_stat))) {
  662. applog(LOG_DEBUG, "Unable to stat binary, generating from source");
  663. fclose(binaryfile);
  664. goto build;
  665. }
  666. if (!binary_stat.st_size)
  667. goto build;
  668. binary_sizes[slot] = binary_stat.st_size;
  669. binaries[slot] = (char *)calloc(binary_sizes[slot], 1);
  670. if (unlikely(!binaries[slot])) {
  671. applog(LOG_ERR, "Unable to calloc binaries");
  672. fclose(binaryfile);
  673. return NULL;
  674. }
  675. if (fread(binaries[slot], 1, binary_sizes[slot], binaryfile) != binary_sizes[slot]) {
  676. applog(LOG_ERR, "Unable to fread binaries");
  677. fclose(binaryfile);
  678. free(binaries[slot]);
  679. goto build;
  680. }
  681. clState->program = clCreateProgramWithBinary(clState->context, 1, &devices[gpu], &binary_sizes[slot], (const unsigned char **)binaries, &status, NULL);
  682. if (status != CL_SUCCESS) {
  683. applog(LOG_ERR, "Error %d: Loading Binary into cl_program (clCreateProgramWithBinary)", status);
  684. fclose(binaryfile);
  685. free(binaries[slot]);
  686. goto build;
  687. }
  688. fclose(binaryfile);
  689. applog(LOG_DEBUG, "Loaded binary image %s", binaryfilename);
  690. goto built;
  691. }
  692. /////////////////////////////////////////////////////////////////
  693. // Load CL file, build CL program object, create CL kernel object
  694. /////////////////////////////////////////////////////////////////
  695. build:
  696. clState->program = clCreateProgramWithSource(clState->context, 1, (const char **)&source, sourceSize, &status);
  697. if (status != CL_SUCCESS) {
  698. applog(LOG_ERR, "Error %d: Loading Binary into cl_program (clCreateProgramWithSource)", status);
  699. return NULL;
  700. }
  701. /* create a cl program executable for all the devices specified */
  702. char *CompilerOptions = calloc(1, 256);
  703. #ifdef USE_SCRYPT
  704. if (opt_scrypt)
  705. sprintf(CompilerOptions, "-D LOOKUP_GAP=%d -D CONCURRENT_THREADS=%d -D WORKSIZE=%d",
  706. cgpu->lookup_gap, (unsigned int)cgpu->thread_concurrency, (int)clState->wsize);
  707. else
  708. #endif
  709. {
  710. sprintf(CompilerOptions, "-D WORKSIZE=%d -D VECTORS%d -D WORKVEC=%d",
  711. (int)clState->wsize, clState->vwidth, (int)clState->wsize * clState->vwidth);
  712. }
  713. applog(LOG_DEBUG, "Setting worksize to %"PRId64, (int64_t)clState->wsize);
  714. if (clState->vwidth > 1)
  715. applog(LOG_DEBUG, "Patched source to suit %d vectors", clState->vwidth);
  716. if (clState->hasBitAlign) {
  717. strcat(CompilerOptions, " -D BITALIGN");
  718. applog(LOG_DEBUG, "cl_amd_media_ops found, setting BITALIGN");
  719. if (strstr(name, "Cedar") ||
  720. strstr(name, "Redwood") ||
  721. strstr(name, "Juniper") ||
  722. strstr(name, "Cypress" ) ||
  723. strstr(name, "Hemlock" ) ||
  724. strstr(name, "Caicos" ) ||
  725. strstr(name, "Turks" ) ||
  726. strstr(name, "Barts" ) ||
  727. strstr(name, "Cayman" ) ||
  728. strstr(name, "Antilles" ) ||
  729. strstr(name, "Wrestler" ) ||
  730. strstr(name, "Zacate" ) ||
  731. strstr(name, "WinterPark" ))
  732. patchbfi = true;
  733. } else
  734. applog(LOG_DEBUG, "cl_amd_media_ops not found, will not set BITALIGN");
  735. if (patchbfi) {
  736. strcat(CompilerOptions, " -D BFI_INT");
  737. applog(LOG_DEBUG, "BFI_INT patch requiring device found, patched source with BFI_INT");
  738. } else
  739. applog(LOG_DEBUG, "BFI_INT patch requiring device not found, will not BFI_INT patch");
  740. if (clState->goffset)
  741. strcat(CompilerOptions, " -D GOFFSET");
  742. if (!clState->hasOpenCL11plus)
  743. strcat(CompilerOptions, " -D OCL1");
  744. applog(LOG_DEBUG, "CompilerOptions: %s", CompilerOptions);
  745. status = clBuildProgram(clState->program, 1, &devices[gpu], CompilerOptions , NULL, NULL);
  746. free(CompilerOptions);
  747. if (status != CL_SUCCESS) {
  748. applog(LOG_ERR, "Error %d: Building Program (clBuildProgram)", status);
  749. size_t logSize;
  750. status = clGetProgramBuildInfo(clState->program, devices[gpu], CL_PROGRAM_BUILD_LOG, 0, NULL, &logSize);
  751. char *log = malloc(logSize);
  752. status = clGetProgramBuildInfo(clState->program, devices[gpu], CL_PROGRAM_BUILD_LOG, logSize, log, NULL);
  753. applog(LOG_ERR, "%s", log);
  754. return NULL;
  755. }
  756. prog_built = true;
  757. if (!usebinary)
  758. goto built;
  759. status = clGetProgramInfo(clState->program, CL_PROGRAM_NUM_DEVICES, sizeof(cl_uint), &cpnd, NULL);
  760. if (unlikely(status != CL_SUCCESS)) {
  761. applog(LOG_ERR, "Error %d: Getting program info CL_PROGRAM_NUM_DEVICES. (clGetProgramInfo)", status);
  762. return NULL;
  763. }
  764. status = clGetProgramInfo(clState->program, CL_PROGRAM_BINARY_SIZES, sizeof(size_t)*cpnd, binary_sizes, NULL);
  765. if (unlikely(status != CL_SUCCESS)) {
  766. applog(LOG_ERR, "Error %d: Getting program info CL_PROGRAM_BINARY_SIZES. (clGetProgramInfo)", status);
  767. return NULL;
  768. }
  769. /* The actual compiled binary ends up in a RANDOM slot! Grr, so we have
  770. * to iterate over all the binary slots and find where the real program
  771. * is. What the heck is this!? */
  772. for (slot = 0; slot < cpnd; slot++)
  773. if (binary_sizes[slot])
  774. break;
  775. /* copy over all of the generated binaries. */
  776. applog(LOG_DEBUG, "Binary size for gpu %u found in binary slot %u: %"PRId64,
  777. gpu, (unsigned)slot, (int64_t)binary_sizes[slot]);
  778. if (!binary_sizes[slot]) {
  779. applog(LOG_ERR, "OpenCL compiler generated a zero sized binary, FAIL!");
  780. return NULL;
  781. }
  782. binaries[slot] = calloc(sizeof(char) * binary_sizes[slot], 1);
  783. status = clGetProgramInfo(clState->program, CL_PROGRAM_BINARIES, sizeof(char *) * cpnd, binaries, NULL );
  784. if (unlikely(status != CL_SUCCESS)) {
  785. applog(LOG_ERR, "Error %d: Getting program info. CL_PROGRAM_BINARIES (clGetProgramInfo)", status);
  786. return NULL;
  787. }
  788. /* Patch the kernel if the hardware supports BFI_INT but it needs to
  789. * be hacked in */
  790. if (patchbfi) {
  791. unsigned remaining = binary_sizes[slot];
  792. char *w = binaries[slot];
  793. unsigned int start, length;
  794. /* Find 2nd incidence of .text, and copy the program's
  795. * position and length at a fixed offset from that. Then go
  796. * back and find the 2nd incidence of \x7ELF (rewind by one
  797. * from ELF) and then patch the opcocdes */
  798. if (!advance(&w, &remaining, ".text"))
  799. goto build;
  800. w++; remaining--;
  801. if (!advance(&w, &remaining, ".text")) {
  802. /* 32 bit builds only one ELF */
  803. w--; remaining++;
  804. }
  805. memcpy(&start, w + 285, 4);
  806. memcpy(&length, w + 289, 4);
  807. w = binaries[slot]; remaining = binary_sizes[slot];
  808. if (!advance(&w, &remaining, "ELF"))
  809. goto build;
  810. w++; remaining--;
  811. if (!advance(&w, &remaining, "ELF")) {
  812. /* 32 bit builds only one ELF */
  813. w--; remaining++;
  814. }
  815. w--; remaining++;
  816. w += start; remaining -= start;
  817. applog(LOG_DEBUG, "At %p (%u rem. bytes), to begin patching",
  818. w, remaining);
  819. patch_opcodes(w, length);
  820. status = clReleaseProgram(clState->program);
  821. if (status != CL_SUCCESS) {
  822. applog(LOG_ERR, "Error %d: Releasing program. (clReleaseProgram)", status);
  823. return NULL;
  824. }
  825. clState->program = clCreateProgramWithBinary(clState->context, 1, &devices[gpu], &binary_sizes[slot], (const unsigned char **)&binaries[slot], &status, NULL);
  826. if (status != CL_SUCCESS) {
  827. applog(LOG_ERR, "Error %d: Loading Binary into cl_program (clCreateProgramWithBinary)", status);
  828. return NULL;
  829. }
  830. /* Program needs to be rebuilt */
  831. prog_built = false;
  832. }
  833. free(source);
  834. /* Save the binary to be loaded next time */
  835. binaryfile = fopen(binaryfilename, "wb");
  836. if (!binaryfile) {
  837. /* Not a fatal problem, just means we build it again next time */
  838. applog(LOG_DEBUG, "Unable to create file %s", binaryfilename);
  839. } else {
  840. if (unlikely(fwrite(binaries[slot], 1, binary_sizes[slot], binaryfile) != binary_sizes[slot])) {
  841. applog(LOG_ERR, "Unable to fwrite to binaryfile");
  842. return NULL;
  843. }
  844. fclose(binaryfile);
  845. }
  846. built:
  847. if (binaries[slot])
  848. free(binaries[slot]);
  849. free(binaries);
  850. free(binary_sizes);
  851. applog(LOG_INFO, "Initialising kernel %s with%s bitalign, %"PRId64" vectors and worksize %"PRIu64,
  852. filename, clState->hasBitAlign ? "" : "out", (int64_t)clState->vwidth, (uint64_t)clState->wsize);
  853. if (!prog_built) {
  854. /* create a cl program executable for all the devices specified */
  855. status = clBuildProgram(clState->program, 1, &devices[gpu], NULL, NULL, NULL);
  856. if (status != CL_SUCCESS) {
  857. applog(LOG_ERR, "Error %d: Building Program (clBuildProgram)", status);
  858. size_t logSize;
  859. status = clGetProgramBuildInfo(clState->program, devices[gpu], CL_PROGRAM_BUILD_LOG, 0, NULL, &logSize);
  860. char *log = malloc(logSize);
  861. status = clGetProgramBuildInfo(clState->program, devices[gpu], CL_PROGRAM_BUILD_LOG, logSize, log, NULL);
  862. applog(LOG_ERR, "%s", log);
  863. return NULL;
  864. }
  865. }
  866. /* get a kernel object handle for a kernel with the given name */
  867. clState->kernel = clCreateKernel(clState->program, "search", &status);
  868. if (status != CL_SUCCESS) {
  869. applog(LOG_ERR, "Error %d: Creating Kernel from program. (clCreateKernel)", status);
  870. return NULL;
  871. }
  872. #ifdef USE_SCRYPT
  873. if (opt_scrypt) {
  874. size_t ipt = (1024 / cgpu->lookup_gap + (1024 % cgpu->lookup_gap > 0));
  875. size_t bufsize = 128 * ipt * cgpu->thread_concurrency;
  876. /* Use the max alloc value which has been rounded to a power of
  877. * 2 greater >= required amount earlier */
  878. if (bufsize > cgpu->max_alloc) {
  879. applog(LOG_WARNING, "Maximum buffer memory device %d supports says %lu", gpu, (unsigned long)cgpu->max_alloc);
  880. applog(LOG_WARNING, "Your scrypt settings come to %lu", (unsigned long)bufsize);
  881. } else
  882. bufsize = cgpu->max_alloc;
  883. applog(LOG_DEBUG, "Creating scrypt buffer sized %ld", (unsigned long)bufsize);
  884. clState->padbufsize = bufsize;
  885. /* This buffer is weird and might work to some degree even if
  886. * the create buffer call has apparently failed, so check if we
  887. * get anything back before we call it a failure. */
  888. clState->padbuffer8 = NULL;
  889. clState->padbuffer8 = clCreateBuffer(clState->context, CL_MEM_READ_WRITE, bufsize, NULL, &status);
  890. if (status != CL_SUCCESS && !clState->padbuffer8) {
  891. applog(LOG_ERR, "Error %d: clCreateBuffer (padbuffer8), decrease CT or increase LG", status);
  892. return NULL;
  893. }
  894. clState->CLbuffer0 = clCreateBuffer(clState->context, CL_MEM_READ_ONLY, 128, NULL, &status);
  895. if (status != CL_SUCCESS) {
  896. applog(LOG_ERR, "Error %d: clCreateBuffer (CLbuffer0)", status);
  897. return NULL;
  898. }
  899. }
  900. #endif
  901. clState->outputBuffer = clCreateBuffer(clState->context, CL_MEM_WRITE_ONLY, BUFFERSIZE, NULL, &status);
  902. if (status != CL_SUCCESS) {
  903. applog(LOG_ERR, "Error %d: clCreateBuffer (outputBuffer)", status);
  904. return NULL;
  905. }
  906. return clState;
  907. }
  908. #endif /* HAVE_OPENCL */