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gpu_profiling.cc 29 kB

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  1. /**
  2. * Copyright 2020 Huawei Technologies Co., Ltd
  3. *
  4. * Licensed under the Apache License, Version 2.0 (the "License");
  5. * you may not use this file except in compliance with the License.
  6. * You may obtain a copy of the License at
  7. *
  8. * http://www.apache.org/licenses/LICENSE-2.0
  9. *
  10. * Unless required by applicable law or agreed to in writing, software
  11. * distributed under the License is distributed on an "AS IS" BASIS,
  12. * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  13. * See the License for the specific language governing permissions and
  14. * limitations under the License.
  15. */
  16. #include "profiler/device/gpu/gpu_profiling.h"
  17. #include <cxxabi.h>
  18. #include <chrono>
  19. #include <cmath>
  20. #include "profiler/device/gpu/cupti_interface.h"
  21. #include "profiler/device/gpu/data_saver.h"
  22. #include "pybind_api/api_register.h"
  23. #include "utils/log_adapter.h"
  24. #include "utils/utils.h"
  25. namespace mindspore {
  26. namespace profiler {
  27. namespace gpu {
  28. #define BUF_SIZE (32 * 1024)
  29. #define ALIGN_SIZE (8)
  30. #define CHECK_CUPTI_RET_WITH_ERROR(expression, message) \
  31. if (expression != CUPTI_SUCCESS) { \
  32. const char *errstr; \
  33. CuptiGetResultString(expression, &errstr); \
  34. MS_LOG(ERROR) << "CUPTI Error:" << errstr << " function:" << message; \
  35. }
  36. #define CHECK_CUPTI_RET_WITH_EXCEPT(expression, message) \
  37. if (expression != CUPTI_SUCCESS) { \
  38. const char *errstr; \
  39. CuptiGetResultString(expression, &errstr); \
  40. MS_LOG(EXCEPTION) << "CUPTI Error:" << errstr << " function:" << message; \
  41. }
  42. #define CHECK_CUDA_RET_WITH_ERROR(expression, message) \
  43. { \
  44. cudaError_t status = (expression); \
  45. if (status != cudaSuccess) { \
  46. MS_LOG(ERROR) << "CUDA Error: " << message << " | Error Number: " << status << " " \
  47. << cudaGetErrorString(status); \
  48. } \
  49. }
  50. #define PROFILER_ERROR_IF_NULLPTR(ptr) \
  51. do { \
  52. if ((ptr) == nullptr) { \
  53. MS_LOG(ERROR) << ": The pointer[" << #ptr << "] is null."; \
  54. return; \
  55. } \
  56. } while (0)
  57. std::shared_ptr<GPUProfiler> GPUProfiler::profiler_inst_ = nullptr;
  58. int32_t GetThreadID() {
  59. uint32_t thread_id = static_cast<uint32_t>(pthread_self());
  60. return thread_id;
  61. }
  62. uint32_t GetStreamID(const CUcontext context, const void *stream) {
  63. uint32_t stream_id = 0;
  64. if (stream != nullptr) {
  65. CHECK_CUPTI_RET_WITH_ERROR(CuptiGetStreamId(context, (CUstream)stream, &stream_id), "CuptiGetStreamId");
  66. }
  67. return stream_id;
  68. }
  69. uint64_t GetCUPTITimeStamp() {
  70. uint64_t time_stamp = 0l;
  71. CHECK_CUPTI_RET_WITH_ERROR(CuptiGetTimestamp(&time_stamp), "CuptiGetTimestamp");
  72. return time_stamp;
  73. }
  74. uint64_t GetHostTimeStamp() {
  75. auto cur_sys_clock = std::chrono::system_clock::now();
  76. uint64_t cur_time_stamp =
  77. std::chrono::duration_cast<std::chrono::nanoseconds>(cur_sys_clock.time_since_epoch()).count();
  78. return cur_time_stamp;
  79. }
  80. std::string GetKernelFunc(const char *name) {
  81. char *demangledName = abi::__cxa_demangle(name, nullptr, nullptr, nullptr);
  82. if (demangledName != nullptr) {
  83. return demangledName;
  84. } else {
  85. return name;
  86. }
  87. }
  88. void CUPTIApiExit(const std::shared_ptr<GPUProfiler> &gpu_profiler_inst, CUpti_CallbackId cb_id,
  89. const CUpti_CallbackData *cb_data) {
  90. uint64_t start_timestamp = *cb_data->correlationData;
  91. uint64_t end_timestamp = GetCUPTITimeStamp();
  92. switch (cb_id) {
  93. case CUPTI_DRIVER_TRACE_CBID_cuLaunchKernel:
  94. case CUPTI_DRIVER_TRACE_CBID_cuLaunchCooperativeKernel:
  95. case CUPTI_DRIVER_TRACE_CBID_cuLaunchCooperativeKernelMultiDevice:
  96. gpu_profiler_inst->EventHandleProcess(cb_id, cb_data, "cuLaunchKernel", start_timestamp, end_timestamp);
  97. break;
  98. case CUPTI_DRIVER_TRACE_CBID_cuMemcpy:
  99. case CUPTI_DRIVER_TRACE_CBID_cuMemcpyHtoD_v2:
  100. case CUPTI_DRIVER_TRACE_CBID_cuMemcpyDtoH_v2:
  101. case CUPTI_DRIVER_TRACE_CBID_cuMemcpyDtoD_v2:
  102. case CUPTI_DRIVER_TRACE_CBID_cuMemcpyAtoH_v2:
  103. case CUPTI_DRIVER_TRACE_CBID_cuMemcpyAtoD_v2:
  104. case CUPTI_DRIVER_TRACE_CBID_cuMemcpyDtoA_v2:
  105. case CUPTI_DRIVER_TRACE_CBID_cuMemcpyAtoA_v2:
  106. case CUPTI_DRIVER_TRACE_CBID_cuMemcpy2D_v2:
  107. case CUPTI_DRIVER_TRACE_CBID_cuMemcpy2DUnaligned_v2:
  108. case CUPTI_DRIVER_TRACE_CBID_cuMemcpy3D_v2:
  109. case CUPTI_DRIVER_TRACE_CBID_cuMemcpyHtoA_v2:
  110. case CUPTI_DRIVER_TRACE_CBID_cuMemcpyAsync:
  111. case CUPTI_DRIVER_TRACE_CBID_cuMemcpyHtoDAsync_v2:
  112. case CUPTI_DRIVER_TRACE_CBID_cuMemcpyDtoHAsync_v2:
  113. case CUPTI_DRIVER_TRACE_CBID_cuMemcpyDtoDAsync_v2:
  114. case CUPTI_DRIVER_TRACE_CBID_cuMemcpyAtoHAsync_v2:
  115. case CUPTI_DRIVER_TRACE_CBID_cuMemcpy2DAsync_v2:
  116. case CUPTI_DRIVER_TRACE_CBID_cuMemcpy3DAsync_v2:
  117. case CUPTI_DRIVER_TRACE_CBID_cuMemcpyHtoAAsync_v2:
  118. case CUPTI_DRIVER_TRACE_CBID_cuMemcpyPeer:
  119. case CUPTI_DRIVER_TRACE_CBID_cuMemcpyPeerAsync:
  120. gpu_profiler_inst->EventHandleProcess(cb_id, cb_data, "cuMemcpy", start_timestamp, end_timestamp);
  121. break;
  122. case CUPTI_DRIVER_TRACE_CBID_cuMemAlloc:
  123. case CUPTI_DRIVER_TRACE_CBID_cuMemAlloc_v2:
  124. gpu_profiler_inst->EventHandleProcess(cb_id, cb_data, "cuMemAlloc", start_timestamp, end_timestamp);
  125. break;
  126. case CUPTI_DRIVER_TRACE_CBID_cuEventCreate:
  127. case CUPTI_DRIVER_TRACE_CBID_cuEventDestroy_v2:
  128. case CUPTI_DRIVER_TRACE_CBID_cuEventRecord:
  129. case CUPTI_DRIVER_TRACE_CBID_cuEventSynchronize:
  130. case CUPTI_DRIVER_TRACE_CBID_cuEventElapsedTime:
  131. // In some cases, the callback of cuctxsetcurrent is only exist
  132. // without entry, so this callback is ignored
  133. case CUPTI_DRIVER_TRACE_CBID_cuCtxSetCurrent:
  134. break;
  135. default:
  136. gpu_profiler_inst->EventHandleProcess(cb_id, cb_data, "others_api", start_timestamp, end_timestamp);
  137. break;
  138. }
  139. }
  140. void CUPTICallBackFunc(void *user_data, CUpti_CallbackDomain domain, CUpti_CallbackId cb_id,
  141. const CUpti_CallbackData *cb_data) {
  142. if (domain != CUPTI_CB_DOMAIN_DRIVER_API) {
  143. return;
  144. }
  145. auto gpu_profiler_inst = GPUProfiler::GetInstance();
  146. PROFILER_ERROR_IF_NULLPTR(gpu_profiler_inst);
  147. if (!gpu_profiler_inst->GetEnableFlag()) {
  148. return;
  149. }
  150. PROFILER_ERROR_IF_NULLPTR(cb_data);
  151. if (cb_data->context == nullptr) {
  152. MS_LOG(DEBUG) << "Callback data context is null , correlation Id:" << cb_data->correlationId
  153. << " callback id:" << cb_id;
  154. return;
  155. }
  156. if (cb_data->callbackSite == CUPTI_API_ENTER) {
  157. *cb_data->correlationData = GetCUPTITimeStamp();
  158. } else if (cb_data->callbackSite == CUPTI_API_EXIT) {
  159. CUPTIApiExit(gpu_profiler_inst, cb_id, cb_data);
  160. }
  161. }
  162. std::shared_ptr<GPUProfiler> GPUProfiler::GetInstance() {
  163. if (profiler_inst_ == nullptr) {
  164. profiler_inst_ = std::shared_ptr<GPUProfiler>(new (std::nothrow) GPUProfiler());
  165. }
  166. return profiler_inst_;
  167. }
  168. void GPUProfiler::SyncEnable(const bool enable_flag) {
  169. MS_LOG(INFO) << "GPU Profiler synchronous enable flag:" << enable_flag;
  170. sync_enable_flag_ = enable_flag;
  171. }
  172. void GPUProfiler::StepProfilingEnable(const bool enable_flag) {
  173. MS_LOG(INFO) << "GPU Profiler enable flag:" << enable_flag;
  174. CHECK_CUPTI_RET_WITH_ERROR(CuptiActivityFlushAll(0), "CuptiActivityFlushAll");
  175. enable_flag_ = enable_flag;
  176. }
  177. void GPUProfiler::FixOpNameByCorrelationId(Event *event) {
  178. PROFILER_ERROR_IF_NULLPTR(event);
  179. if (event->api_type != CUPTIApiType::kActivity) {
  180. return;
  181. }
  182. auto iter = op_name_map_.find(event->correlation_id);
  183. if (iter != op_name_map_.end()) {
  184. event->op_name = std::move(iter->second);
  185. }
  186. }
  187. void GPUProfiler::AddEvent(Event &&event) {
  188. // protect callback concurrency for driver api and activity
  189. std::unique_lock<std::mutex> lock(event_mutex_);
  190. switch (event.api_type) {
  191. case CUPTIApiType::kCallback: {
  192. if (cupti_callback_events_count_ < max_cupti_callback_events_) {
  193. events_.emplace_back(std::move(event));
  194. cupti_callback_events_count_++;
  195. } else {
  196. cupti_callback_events_drop_count_++;
  197. }
  198. break;
  199. }
  200. case CUPTIApiType::kActivity: {
  201. if (cupti_activity_events_count_ < max_cupti_activity_events_) {
  202. events_.emplace_back(std::move(event));
  203. cupti_activity_events_count_++;
  204. } else {
  205. cupti_activity_events_drop_count_++;
  206. }
  207. break;
  208. }
  209. default:
  210. break;
  211. }
  212. }
  213. void GPUProfiler::EventLog(const Event &event) {
  214. MS_LOG(DEBUG) << "GPUProfiler"
  215. << ",\"kernel_name:" << event.kernel_name << "\",kernel_type:" << event.kernel_type
  216. << ",api_type:" << static_cast<int>(event.api_type) << ",start_time_stamp:" << event.start_time_stamp
  217. << ",end_time_stamp:" << event.end_time_stamp << ",cost:,"
  218. << (event.end_time_stamp - event.start_time_stamp) / kTimeUnit << ",op_name:" << event.op_name
  219. << ",device_id:" << event.device_id << ",correlation_id:" << event.correlation_id
  220. << ",thread_id:" << event.thread_id << ",context_id:" << event.context_id
  221. << ",stream_id:" << event.stream_id << ",cb_id:" << event.cb_id;
  222. }
  223. void GPUProfiler::ProcessEvents() {
  224. for (Event &event : events_) {
  225. if (event.op_name.empty()) {
  226. FixOpNameByCorrelationId(&event);
  227. }
  228. EventLog(event);
  229. if (event.op_name.empty() || event.cb_id == CUPTI_DRIVER_TRACE_CBID_cuStreamSynchronize) {
  230. continue;
  231. }
  232. auto iter = op_info_map_.find(event.op_name);
  233. if (iter != op_info_map_.end()) {
  234. switch (event.api_type) {
  235. case CUPTIApiType::kCallback: {
  236. iter->second.op_kernel_api_count += 1;
  237. // The time unit from ns to us
  238. iter->second.cupti_api_call_time += (event.end_time_stamp - event.start_time_stamp) / kTimeUnit;
  239. break;
  240. }
  241. case CUPTIApiType::kActivity: {
  242. iter->second.op_kernel_count += 1;
  243. // The time unit from ns to us
  244. iter->second.cupti_activity_time += (event.end_time_stamp - event.start_time_stamp) / kTimeUnit;
  245. break;
  246. }
  247. default:
  248. break;
  249. }
  250. }
  251. }
  252. }
  253. void GPUProfiler::OpsParser() {
  254. MS_LOG(INFO) << "Count the number of events size:" << events_.size()
  255. << " callback api:" << cupti_callback_events_count_ << " activity:" << cupti_activity_events_count_;
  256. if (cupti_activity_events_drop_count_ > 0 || cupti_callback_events_drop_count_ > 0) {
  257. MS_LOG(WARNING)
  258. << "The total number of events exceeded the profiler's processing capacity, some events were discarded."
  259. << " activity api events:" << cupti_activity_events_drop_count_
  260. << " callback api events:" << cupti_callback_events_drop_count_;
  261. }
  262. if (events_.size() == 0) {
  263. return;
  264. }
  265. ProcessEvents();
  266. MS_LOG(DEBUG) << "GPU_profiler, op_name, op_count , kernel_count, kernel_api_count,|"
  267. ",cupti_activity_total_time, cupti_api_call_total_time, op_host_cost_total_time,|"
  268. ",cupti_activity_average_time,cupti_api_call_average_time, op_host_cost_average_time"
  269. << std::endl;
  270. std::vector<std::pair<std::string, OpInfo>> order_vec(op_info_map_.begin(), op_info_map_.end());
  271. auto cmp_func = [](const std::pair<std::string, OpInfo> &a, const std::pair<std::string, OpInfo> &b) {
  272. return a.second.cupti_activity_time > b.second.cupti_activity_time;
  273. };
  274. std::sort(order_vec.begin(), order_vec.end(), cmp_func);
  275. for (auto iter = order_vec.begin(); iter != order_vec.end(); iter++) {
  276. MS_LOG(DEBUG) << "GPU_profiler"
  277. << "," << iter->first << "," << iter->second.op_count << "," << iter->second.op_kernel_count << ","
  278. << iter->second.op_kernel_api_count << ","
  279. << "|," << iter->second.cupti_activity_time << "," << iter->second.cupti_api_call_time << ","
  280. << iter->second.op_host_cost_time << ","
  281. << "|," << round(iter->second.cupti_activity_time / iter->second.op_count) << ","
  282. << round(iter->second.cupti_api_call_time / iter->second.op_count) << ","
  283. << round(iter->second.op_host_cost_time / iter->second.op_count) << std::endl;
  284. }
  285. }
  286. void GPUProfiler::EventHandleProcess(CUpti_CallbackId cbid, const CUpti_CallbackData *cbdata,
  287. const std::string &typestring, uint64_t startTimestamp, uint64_t endTimestamp) {
  288. Event event;
  289. uint32_t device_id = -1;
  290. CuptiGetDeviceId(cbdata->context, &device_id);
  291. event.kernel_name = cbdata->symbolName ? GetKernelFunc(cbdata->symbolName) : cbdata->functionName;
  292. event.kernel_type = typestring;
  293. event.api_type = CUPTIApiType::kCallback;
  294. event.start_time_stamp = startTimestamp;
  295. event.end_time_stamp = endTimestamp;
  296. event.op_name = op_name_;
  297. event.device_id = device_id;
  298. event.correlation_id = cbdata->correlationId;
  299. event.thread_id = GetThreadID();
  300. event.context_id = cbdata->contextUid;
  301. event.stream_id = GetStreamID(cbdata->context, stream_);
  302. event.cb_id = cbid;
  303. op_name_map_[event.correlation_id] = event.op_name;
  304. AddEvent(std::move(event));
  305. }
  306. void CUPTIAPI ActivityAllocBuffer(uint8_t **buffer, size_t *size, size_t *maxNumRecords);
  307. void CUPTIAPI ActivityProcessBuffer(CUcontext ctx, uint32_t streamId, uint8_t *buffer, size_t size, size_t validSize);
  308. void GPUProfiler::Init(const std::string &profileDataPath = "") {
  309. MS_LOG(INFO) << "Initialize GPU Profiling";
  310. if (subscriber_ != nullptr) {
  311. StopCUPTI();
  312. MS_LOG(EXCEPTION)
  313. << "Repeated initialization, Please check whether you have created the Profiler object multiple times";
  314. }
  315. CHECK_CUPTI_RET_WITH_EXCEPT(CuptiSubscribe(&subscriber_, (CUpti_CallbackFunc)CUPTICallBackFunc, this),
  316. "CuptiSubscribe");
  317. CHECK_CUPTI_RET_WITH_EXCEPT(CuptiEnableDomain(1, subscriber_, CUPTI_CB_DOMAIN_DRIVER_API), "CuptiEnableDomain");
  318. activities_enable_.emplace_back(CUPTI_ACTIVITY_KIND_MEMCPY);
  319. activities_enable_.emplace_back(CUPTI_ACTIVITY_KIND_MEMCPY2);
  320. activities_enable_.emplace_back(CUPTI_ACTIVITY_KIND_KERNEL);
  321. for (std::vector<CUpti_ActivityKind>::iterator it = activities_enable_.begin(); it != activities_enable_.end();
  322. ++it) {
  323. CHECK_CUPTI_RET_WITH_EXCEPT(CuptiActivityEnable(*it), "CuptiActivityEnable");
  324. }
  325. CHECK_CUPTI_RET_WITH_EXCEPT(CuptiActivityRegisterCallbacks(ActivityAllocBuffer, ActivityProcessBuffer),
  326. "CuptiActivityRegisterCallbacks");
  327. base_time_.gpu_start_time = GetCUPTITimeStamp();
  328. base_time_.host_start_time = GetHostTimeStamp();
  329. profile_data_path_ = profileDataPath;
  330. MS_LOG(INFO) << "GPU start time(ns):" << base_time_.gpu_start_time
  331. << " Host start time(ns):" << base_time_.host_start_time << " profile data path: " << profile_data_path_;
  332. }
  333. void GPUProfiler::SetRunTimeData(const std::string &op_name, void *stream) {
  334. auto iter = op_info_map_.find(op_name);
  335. if (iter != op_info_map_.end()) {
  336. iter->second.op_count += 1;
  337. } else {
  338. OpInfo op_info;
  339. op_info.op_name = op_name;
  340. op_info.stream = stream;
  341. op_info.op_count = 1;
  342. op_info_map_[op_name] = op_info;
  343. }
  344. op_name_ = op_name;
  345. stream_ = stream;
  346. }
  347. void GPUProfiler::SetRunTimeData(const std::string &op_name, const float time_elapsed) {
  348. auto iter = op_info_map_.find(op_name);
  349. if (iter != op_info_map_.end()) {
  350. // The time unit is ms ,convert to us
  351. iter->second.op_host_cost_time += time_elapsed;
  352. }
  353. }
  354. void GPUProfiler::SetRunTimeData(const std::string &op_name, const uint64_t start, const float duration) {
  355. auto iter = op_info_map_.find(op_name);
  356. if (iter != op_info_map_.end()) {
  357. iter->second.start_duration.emplace_back(StartDuration({start, duration}));
  358. }
  359. }
  360. void GPUProfiler::OpDataProducerBegin(const std::string op_name, void *stream) {
  361. if (sync_enable_flag_) {
  362. CHECK_CUDA_RET_WITH_ERROR(cudaEventCreate(&op_event_start_), "cudaEventCreate op event start failed");
  363. CHECK_CUDA_RET_WITH_ERROR(cudaEventCreate(&op_event_stop_), "cudaEventCreate op event stop failed");
  364. CHECK_CUDA_RET_WITH_ERROR(cudaEventRecord(op_event_start_, (CUstream)stream_),
  365. "cudaEventRecord op event start failed");
  366. op_host_time_start_ = GetHostTimeStamp();
  367. op_cupti_time_start_ = GetCUPTITimeStamp();
  368. } else {
  369. op_host_time_start_ = GetHostTimeStamp();
  370. op_cupti_time_start_ = GetCUPTITimeStamp();
  371. }
  372. SetRunTimeData(op_name, stream);
  373. }
  374. void GPUProfiler::OpDataProducerEnd() {
  375. float op_time_elapsed = 0;
  376. if (sync_enable_flag_) {
  377. CHECK_CUDA_RET_WITH_ERROR(cudaEventRecord(op_event_stop_, (CUstream)stream_),
  378. "cudaEventRecord op event stop failed");
  379. CHECK_CUDA_RET_WITH_ERROR(cudaEventSynchronize(op_event_start_), "cudaEventSynchronize op event start failed");
  380. CHECK_CUDA_RET_WITH_ERROR(cudaEventSynchronize(op_event_stop_), "cudaEventSynchronize op event stop failed");
  381. CHECK_CUDA_RET_WITH_ERROR(cudaEventElapsedTime(&op_time_elapsed, op_event_start_, op_event_stop_),
  382. "cudaEventElapsedTime failed");
  383. CHECK_CUDA_RET_WITH_ERROR(cudaEventDestroy(op_event_start_), "cudaEventDestroy op event start failed");
  384. CHECK_CUDA_RET_WITH_ERROR(cudaEventDestroy(op_event_stop_), "cudaEventDestroy op event stop failed");
  385. op_time_elapsed = op_time_elapsed * kTimeUnit;
  386. op_host_time_stop_ = GetHostTimeStamp();
  387. } else {
  388. op_host_time_stop_ = GetHostTimeStamp();
  389. op_time_elapsed = (op_host_time_stop_ - op_host_time_start_) / kTimeUnit;
  390. }
  391. MS_LOG(DEBUG) << "Host Time Elapsed(us)," << op_name_ << "," << op_time_elapsed;
  392. SetRunTimeData(op_name_, op_time_elapsed);
  393. SetRunTimeData(op_name_, op_cupti_time_start_, op_time_elapsed);
  394. }
  395. void GPUProfiler::StopCUPTI() {
  396. if (subscriber_ != nullptr) {
  397. CHECK_CUPTI_RET_WITH_ERROR(CuptiUnsubscribe(subscriber_), "CuptiUnsubscribe");
  398. CHECK_CUPTI_RET_WITH_ERROR(CuptiActivityFlushAll(0), "CuptiActivityFlushAll");
  399. for (std::vector<CUpti_ActivityKind>::iterator it = activities_enable_.begin(); it != activities_enable_.end();
  400. ++it) {
  401. CHECK_CUPTI_RET_WITH_ERROR(CuptiActivityDisable(*it), "CuptiActivityDisable");
  402. }
  403. subscriber_ = nullptr;
  404. }
  405. }
  406. void GPUProfiler::Stop() {
  407. MS_LOG(INFO) << "Stop GPU Profiling";
  408. StopCUPTI();
  409. OpsParser();
  410. SaveProfileData();
  411. ClearInst();
  412. }
  413. void GPUProfiler::SaveExtraProfileData() {
  414. for (auto op : profiling_op_) {
  415. op.second->SaveProfilingData();
  416. }
  417. MS_LOG(INFO) << "Save extra profiling data end.";
  418. }
  419. void GPUProfiler::SaveProfileData() {
  420. if (profile_data_path_.empty()) {
  421. MS_LOG(WARNING) << "Profile data path is empty, skip save profile data.";
  422. } else {
  423. DataSaver dataSaver;
  424. dataSaver.ParseOpInfo(op_info_map_);
  425. dataSaver.ParseEvent(events_);
  426. dataSaver.WriteFile(profile_data_path_);
  427. SaveExtraProfileData();
  428. }
  429. }
  430. void GPUProfiler::ClearInst() {
  431. op_info_map_.clear();
  432. op_name_map_.clear();
  433. events_.clear();
  434. activities_enable_.clear();
  435. enable_flag_ = false;
  436. sync_enable_flag_ = true;
  437. cupti_callback_events_count_ = 0l;
  438. cupti_callback_events_drop_count_ = 0l;
  439. cupti_activity_events_count_ = 0l;
  440. cupti_activity_events_drop_count_ = 0l;
  441. }
  442. void CUPTIAPI ActivityAllocBuffer(uint8_t **buffer, size_t *size, size_t *maxNumRecords) {
  443. auto gpu_profiler_inst = GPUProfiler::GetInstance();
  444. if (gpu_profiler_inst == nullptr) {
  445. MS_LOG(ERROR) << "GPU profiler instance is nullptr";
  446. return;
  447. }
  448. gpu_profiler_inst->AllocBuffer(buffer, size, maxNumRecords);
  449. }
  450. void CUPTIAPI ActivityProcessBuffer(CUcontext ctx, uint32_t streamId, uint8_t *buffer, size_t size, size_t validSize) {
  451. PROFILER_ERROR_IF_NULLPTR(buffer);
  452. GPUProfiler::GetInstance()->ProcessBuffer(ctx, streamId, buffer, size, validSize);
  453. }
  454. void ProcessActivityMemcpyRecord(Event *profilingData, CUpti_Activity *record, CUpti_ActivityMemcpy *memcpy) {
  455. switch (memcpy->copyKind) {
  456. case CUPTI_ACTIVITY_MEMCPY_KIND_HTOD:
  457. profilingData->activity_type = ActivityType::kMemcpyH2D;
  458. profilingData->kernel_name = "MemcpyH2D";
  459. break;
  460. case CUPTI_ACTIVITY_MEMCPY_KIND_DTOH:
  461. profilingData->activity_type = ActivityType::kMemcpyD2H;
  462. profilingData->kernel_name = "MemcpyD2H";
  463. break;
  464. case CUPTI_ACTIVITY_MEMCPY_KIND_HTOA:
  465. profilingData->activity_type = ActivityType::kMemcpyH2A;
  466. profilingData->kernel_name = "MemcpyH2A";
  467. break;
  468. case CUPTI_ACTIVITY_MEMCPY_KIND_ATOH:
  469. profilingData->activity_type = ActivityType::kMemcpyA2H;
  470. profilingData->kernel_name = "MemcpyA2H";
  471. break;
  472. case CUPTI_ACTIVITY_MEMCPY_KIND_ATOD:
  473. profilingData->activity_type = ActivityType::kMemcpyA2D;
  474. profilingData->kernel_name = "MemcpyA2D";
  475. break;
  476. case CUPTI_ACTIVITY_MEMCPY_KIND_DTOA:
  477. profilingData->activity_type = ActivityType::kMemcpyD2A;
  478. profilingData->kernel_name = "MemcpyD2A";
  479. break;
  480. case CUPTI_ACTIVITY_MEMCPY_KIND_DTOD:
  481. profilingData->activity_type = ActivityType::kMemcpyD2D;
  482. profilingData->kernel_name = "MemcpyD2D";
  483. break;
  484. case CUPTI_ACTIVITY_MEMCPY_KIND_HTOH:
  485. profilingData->activity_type = ActivityType::kMemcpyH2H;
  486. profilingData->kernel_name = "MemcpyH2H";
  487. break;
  488. case CUPTI_ACTIVITY_MEMCPY_KIND_PTOP:
  489. profilingData->activity_type = ActivityType::kMemcpyP2P;
  490. profilingData->kernel_name = "MemcpyP2P";
  491. break;
  492. default:
  493. profilingData->activity_type = ActivityType::kMemcpyUnknown;
  494. profilingData->kernel_name = "MemcpyUnknown";
  495. break;
  496. }
  497. }
  498. void HandleActivityMemcpyRecord(Event *profilingData, CUpti_Activity *record) {
  499. CUpti_ActivityMemcpy *memcpy = reinterpret_cast<CUpti_ActivityMemcpy *>(record);
  500. ProcessActivityMemcpyRecord(profilingData, record, memcpy);
  501. profilingData->kernel_type = "cuMemcpy";
  502. profilingData->api_type = CUPTIApiType::kActivity;
  503. profilingData->start_time_stamp = memcpy->start;
  504. profilingData->end_time_stamp = memcpy->end;
  505. profilingData->device_id = memcpy->deviceId;
  506. profilingData->context_id = memcpy->contextId;
  507. profilingData->stream_id = memcpy->streamId;
  508. profilingData->correlation_id = memcpy->correlationId;
  509. profilingData->memcpy_info.bytes = memcpy->bytes;
  510. profilingData->memcpy_info.src_kind = memcpy->srcKind;
  511. profilingData->memcpy_info.dst_kind = memcpy->dstKind;
  512. }
  513. void HandleActivityMemcpy2Record(Event *profilingData, CUpti_Activity *record) {
  514. CUpti_ActivityMemcpy2 *memcpyP2P = reinterpret_cast<CUpti_ActivityMemcpy2 *>(record);
  515. profilingData->activity_type = ActivityType::kMemcpyP2P;
  516. profilingData->kernel_name = "MemcpyP2P";
  517. profilingData->kernel_type = "cuMemcpy";
  518. profilingData->api_type = CUPTIApiType::kActivity;
  519. profilingData->start_time_stamp = memcpyP2P->start;
  520. profilingData->end_time_stamp = memcpyP2P->end;
  521. profilingData->device_id = memcpyP2P->deviceId;
  522. profilingData->context_id = memcpyP2P->contextId;
  523. profilingData->stream_id = memcpyP2P->streamId;
  524. profilingData->correlation_id = memcpyP2P->correlationId;
  525. profilingData->memcpy_info.bytes = memcpyP2P->bytes;
  526. profilingData->memcpy_info.src_kind = memcpyP2P->srcKind;
  527. profilingData->memcpy_info.dst_kind = memcpyP2P->dstKind;
  528. }
  529. void HandleActivityMemsetRecord(Event *profilingData, CUpti_Activity *record) {
  530. CUpti_ActivityMemset *memset = reinterpret_cast<CUpti_ActivityMemset *>(record);
  531. profilingData->activity_type = ActivityType::kMemset;
  532. profilingData->kernel_name = "MemorySet";
  533. profilingData->api_type = CUPTIApiType::kActivity;
  534. profilingData->start_time_stamp = memset->start;
  535. profilingData->end_time_stamp = memset->end;
  536. profilingData->device_id = memset->deviceId;
  537. profilingData->context_id = memset->contextId;
  538. profilingData->stream_id = memset->streamId;
  539. profilingData->correlation_id = memset->correlationId;
  540. profilingData->memcpy_info.bytes = memset->bytes;
  541. }
  542. void HandleActivityKernelRecord(Event *profilingData, CUpti_Activity *record) {
  543. CUpti_ActivityKernel4 *kernel = reinterpret_cast<CUpti_ActivityKernel4 *>(record);
  544. profilingData->activity_type = ActivityType::kKernel;
  545. profilingData->api_type = CUPTIApiType::kActivity;
  546. profilingData->kernel_name = GetKernelFunc(kernel->name);
  547. profilingData->kernel_type = "cuLaunchKernel";
  548. profilingData->start_time_stamp = kernel->start;
  549. profilingData->end_time_stamp = kernel->end;
  550. profilingData->device_id = kernel->deviceId;
  551. profilingData->context_id = kernel->contextId;
  552. profilingData->stream_id = kernel->streamId;
  553. profilingData->correlation_id = kernel->correlationId;
  554. profilingData->kernel_info.registers_per_thread = kernel->registersPerThread;
  555. profilingData->kernel_info.static_shared_memory = kernel->staticSharedMemory;
  556. profilingData->kernel_info.dynamic_shared_memory = kernel->dynamicSharedMemory;
  557. profilingData->kernel_info.block_x = kernel->blockX;
  558. profilingData->kernel_info.block_y = kernel->blockY;
  559. profilingData->kernel_info.block_z = kernel->blockZ;
  560. profilingData->kernel_info.grid_x = kernel->gridX;
  561. profilingData->kernel_info.grid_y = kernel->gridY;
  562. profilingData->kernel_info.grid_z = kernel->gridZ;
  563. }
  564. void GPUProfiler::HandleActivityRecord(CUpti_Activity *record) {
  565. PROFILER_ERROR_IF_NULLPTR(record);
  566. Event profilingData;
  567. profilingData.cb_id = 0;
  568. switch (record->kind) {
  569. case CUPTI_ACTIVITY_KIND_MEMCPY: {
  570. HandleActivityMemcpyRecord(&profilingData, record);
  571. break;
  572. }
  573. case CUPTI_ACTIVITY_KIND_MEMCPY2: {
  574. HandleActivityMemcpy2Record(&profilingData, record);
  575. break;
  576. }
  577. case CUPTI_ACTIVITY_KIND_MEMSET: {
  578. HandleActivityMemsetRecord(&profilingData, record);
  579. break;
  580. }
  581. case CUPTI_ACTIVITY_KIND_KERNEL:
  582. case CUPTI_ACTIVITY_KIND_CONCURRENT_KERNEL: {
  583. HandleActivityKernelRecord(&profilingData, record);
  584. break;
  585. }
  586. default:
  587. MS_LOG(WARNING) << "Unknown activity type!";
  588. return;
  589. }
  590. AddEvent(std::move(profilingData));
  591. }
  592. void GPUProfiler::RegisterProfilingOp(std::shared_ptr<ProfilingOp> node) {
  593. if (profiling_op_.find(node->Name()) != profiling_op_.end()) {
  594. return;
  595. }
  596. node->Init();
  597. profiling_op_[node->Name()] = node;
  598. }
  599. void CUPTIAPI GPUProfiler::AllocBuffer(uint8_t **buffer, size_t *size, size_t *maxNumRecords) {
  600. int stat = posix_memalign(reinterpret_cast<void **>(buffer), ALIGN_SIZE, BUF_SIZE);
  601. if (stat) {
  602. MS_LOG(ERROR) << "Out of memory, activity buffer alloc failed.";
  603. return;
  604. }
  605. MS_LOG(DEBUG) << "Alloc activity buffer, buffer size: " << BUF_SIZE;
  606. *size = BUF_SIZE;
  607. *maxNumRecords = 0;
  608. }
  609. void CUPTIAPI GPUProfiler::ProcessBuffer(CUcontext ctx, uint32_t streamId, uint8_t *buffer, size_t size,
  610. size_t validSize) {
  611. if (!enable_flag_) {
  612. MS_LOG(DEBUG) << "Profiler is not enable, skip to process activity record.";
  613. free(buffer);
  614. return;
  615. }
  616. CUptiResult status;
  617. CUpti_Activity *record = NULL;
  618. MS_LOG(DEBUG) << "Process activity buffer, valid size:" << validSize << ",Stream ID:" << streamId;
  619. if (validSize > 0) {
  620. do {
  621. status = CuptiActivityGetNextRecord(buffer, validSize, &record);
  622. if (status == CUPTI_SUCCESS) {
  623. HandleActivityRecord(record);
  624. } else if (status == CUPTI_ERROR_MAX_LIMIT_REACHED) {
  625. break;
  626. } else {
  627. CHECK_CUPTI_RET_WITH_ERROR(status, "CuptiActivityGetNextRecord");
  628. }
  629. } while (1);
  630. // report any records dropped from the queue
  631. size_t dropped;
  632. CHECK_CUPTI_RET_WITH_ERROR(CuptiActivityGetNumDroppedRecords(ctx, streamId, &dropped),
  633. "CuptiActivityGetNumDroppedRecords");
  634. if (dropped != 0) {
  635. MS_LOG(INFO) << "Dropped " << (unsigned int)dropped << " activity records\n";
  636. }
  637. }
  638. free(buffer);
  639. }
  640. REGISTER_PYBIND_DEFINE(GPUProfiler_, ([](const py::module *m) {
  641. (void)py::class_<GPUProfiler, std::shared_ptr<GPUProfiler>>(*m, "GPUProfiler")
  642. .def_static("get_instance", &GPUProfiler::GetInstance, "GPUProfiler get_instance.")
  643. .def("init", &GPUProfiler::Init, py::arg("profile_data_path"), "init")
  644. .def("stop", &GPUProfiler::Stop, "stop")
  645. .def("step_profiling_enable", &GPUProfiler::StepProfilingEnable, py::arg("enable_flag"),
  646. "enable or disable step profiling")
  647. .def("sync_enable", &GPUProfiler::SyncEnable, py::arg("enable_flag"),
  648. "enable or disable synchronization profiling");
  649. }));
  650. } // namespace gpu
  651. } // namespace profiler
  652. } // namespace mindspore