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debugger.h 12 kB

5 years ago
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  1. /**
  2. * Copyright 2020-2022 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. #ifndef MINDSPORE_CCSRC_DEBUG_DEBUGGER_DEBUGGER_H_
  17. #define MINDSPORE_CCSRC_DEBUG_DEBUGGER_DEBUGGER_H_
  18. #include <list>
  19. #include <memory>
  20. #include <string>
  21. #include <utility>
  22. #include <vector>
  23. #include <map>
  24. #include "backend/common/session/kernel_graph.h"
  25. #include "debug/debugger/grpc_client.h"
  26. #include "debug/debug_services.h"
  27. #include "utils/ms_device_shape_transfer.h"
  28. #ifdef ENABLE_D
  29. #include "debug/dump_data_builder.h"
  30. #endif
  31. #include "runtime/device/device_address.h"
  32. using debugger::Chunk;
  33. using debugger::DataType;
  34. using debugger::EventReply;
  35. using debugger::GraphProto;
  36. using debugger::ModelProto;
  37. using debugger::Statistics;
  38. using debugger::TensorProto;
  39. using debugger::WatchCondition;
  40. using debugger::WatchCondition_Parameter;
  41. using debugger::WatchNode;
  42. using debugger::WatchpointHit;
  43. using DeviceTensor = mindspore::device::DeviceAddress;
  44. using DeviceTensorPtr = std::shared_ptr<DeviceTensor>;
  45. template <class T>
  46. using ProtoVector = google::protobuf::RepeatedPtrField<T>;
  47. namespace mindspore {
  48. // different types of command received by debugger
  49. // need to keep sync with client-side proto and server-side proto
  50. enum class DebuggerCommand {
  51. kExitCMD = 2,
  52. kRunCMD = 3,
  53. kSetCMD = 4,
  54. kViewCMD = 5,
  55. kVersionMatchedCMD = 6,
  56. kUnknownCMD = -1
  57. };
  58. class Debugger : public std::enable_shared_from_this<Debugger> {
  59. public:
  60. static std::shared_ptr<Debugger> GetInstance() {
  61. std::lock_guard<std::mutex> i_lock(instance_lock_);
  62. if (debugger_ == nullptr) {
  63. debugger_ = std::shared_ptr<Debugger>(new (std::nothrow) Debugger());
  64. }
  65. return debugger_;
  66. }
  67. // deconstructor
  68. ~Debugger() = default;
  69. // init
  70. // only save device_id
  71. void Init(const uint32_t device_id, const std::string device_target);
  72. // reset debugger
  73. void Reset();
  74. void PreExecuteGraphDebugger(const std::vector<KernelGraphPtr> &graphs,
  75. const std::vector<AnfNodePtr> &origin_parameters_order);
  76. // enable debugger
  77. // send graph and wait for command
  78. // do nothing if graph is set already
  79. void PreExecute(const KernelGraphPtr &graph_ptr);
  80. void SetCurrentAndPrevRootGraph(uint32_t root_graph_id);
  81. void SetAscendKernelByKernelFlag(bool value) { ascend_kernel_by_kernel_ = value; }
  82. bool GetAscendKernelByKernelFlag() const { return ascend_kernel_by_kernel_; }
  83. void StoreRunGraphIdList(uint32_t graph_id);
  84. // analyze tensors and wait for command
  85. // don't need a graph_ptr because it is saved during pre_execute
  86. void PostExecute();
  87. bool DumpDataEnabledIteration() const;
  88. static uint32_t GetRankID();
  89. void DumpConstantDataAscend(const KernelGraphPtr &graph);
  90. void DumpSingleNode(const CNodePtr &node, uint32_t graph_id);
  91. void DumpInGraphCompiler(const KernelGraphPtr &kernel_graph);
  92. void PostExecuteGraphDebugger();
  93. bool ReadNodeDataRequired(const CNodePtr &kernel) const;
  94. void PostExecuteNode(const CNodePtr &kernel, bool last_kernel);
  95. bool DumpTensorToFile(const std::string &tensor_name, bool trans_flag, const std::string &filepath,
  96. const std::string &host_fmt, const std::vector<int64_t> &host_shape, TypeId host_type,
  97. TypeId device_type, const std::string &addr_format, size_t slot) const;
  98. bool LoadNewTensor(const std::shared_ptr<TensorData> &tensor, bool keep_prev);
  99. std::shared_ptr<TensorData> GetTensor(const std::string &tensor_name) const;
  100. bool debugger_enabled() const;
  101. bool partial_memory() const;
  102. void SetEnableHeartbeat(bool enabled);
  103. void SetCurNode(const std::string &cur_name);
  104. std::string run_level() const;
  105. // check if any feature that uses the debugger backend is enabled
  106. bool DebuggerBackendEnabled() const;
  107. void SetTrainingDone(bool training_done);
  108. // returns true if reply received and mindspore version matched with mindInsight version
  109. // version_check should be true if you want the function to do backend compatibility check with MindInsight
  110. bool SendMetadata(bool version_check);
  111. bool CheckSendMetadata();
  112. void LoadParametersAndConst();
  113. void LoadParametersAndConst(const KernelGraphPtr &graph);
  114. void LoadParametersAllGraphs();
  115. void LoadConstsForGraph(const KernelGraphPtr &graph);
  116. void DumpParamsAndConstAndHistory();
  117. void UpdateStepNum(const session::KernelGraph *graph);
  118. void UpdateStepNumGPU();
  119. void ClearCurrentData();
  120. void LoadGraphOutputs();
  121. void CheckDatasetSinkMode(const KernelGraphPtr &graph_ptr);
  122. void LoadGraphs(const KernelGraphPtr &graph_ptr);
  123. uint32_t GetFirstRunGraphId() const;
  124. uint32_t GetCurrentRootGraphId() const { return cur_root_graph_id_; }
  125. uint32_t GetPrevRootGraphId() const { return prev_root_graph_id_; }
  126. std::vector<KernelGraphPtr> GetStepGraphPtrList() const { return graph_ptr_step_vec_; }
  127. void SetGraphPtr(const KernelGraphPtr &graph_ptr) { graph_ptr_ = graph_ptr; }
  128. const KernelGraphPtr GetGraphPtr() const { return graph_ptr_; }
  129. const std::list<KernelGraphPtr> GetGraphPtrList() const { return graph_ptr_list_; }
  130. bool TensorExistsInCurrent(const std::string &tensor_name);
  131. // check if dump using debugger backend is enabled
  132. bool CheckDebuggerDumpEnabled() const;
  133. // check if debugger is enabled
  134. bool CheckDebuggerEnabled() const;
  135. std::map<uint32_t, int32_t> GetGraphIterMap() { return graph_iter_num_map_; }
  136. void UpdateGraphIterMap(uint32_t graph_id, int32_t iter_num);
  137. std::vector<AnfNodePtr> GetParametersMindRT() const { return parameters_mindRT_; }
  138. #ifdef ENABLE_D
  139. std::shared_ptr<DumpDataBuilder> LoadDumpDataBuilder(const std::string &node_name);
  140. void ClearDumpDataBuilder(const std::string &node_name);
  141. #endif
  142. private:
  143. // private constructor for singleton
  144. Debugger();
  145. // enable debugger
  146. // instantiate class members
  147. // read env variable for grpc client
  148. void EnableDebugger();
  149. void CheckDebuggerEnabledParam() const;
  150. bool CheckDebuggerPartialMemoryEnabled() const;
  151. // check and save graph pointer
  152. void CheckGraphPtr(const KernelGraphPtr &graph_ptr);
  153. // check if the graph is a dataset graph
  154. void CheckDatasetGraph();
  155. // serialize graph and get proto
  156. GraphProto GetGraphProto(const KernelGraphPtr &graph_ptr) const;
  157. // send heartbeat message to UI once per 30 second by default
  158. void SendHeartbeat(int32_t period);
  159. // send graph and enter command wait loop
  160. void SendGraphAndSuspend(const GraphProto &graph_proto);
  161. void SendMultiGraphsAndSuspend(const std::list<GraphProto> &graph_proto_list);
  162. // send multi_graphs and clear the graph_proto_list_
  163. void SendMultiGraphsAndClear(const KernelGraphPtr &graph_ptr);
  164. // wait for command and process command
  165. // send command request and process reply in a loop
  166. // break if RunCMD
  167. void CommandLoop();
  168. // Process the RunCMD
  169. void ProcessRunCMD(const EventReply &reply);
  170. // Process the KSetCMD
  171. void ProcessKSetCMD(const EventReply &reply);
  172. // Process the KViewCMD
  173. void ProcessKViewCMD(const EventReply &reply);
  174. // ViewCMD base level
  175. void ViewBaseLevel(const EventReply &reply);
  176. // ViewCMD statistics level
  177. void ViewStatLevel(const EventReply &reply);
  178. // ViewCMD value level
  179. void ViewValueLevel(const EventReply &reply);
  180. // set what nodes and conditions to watch
  181. void SetWatchpoint(const ProtoVector<WatchNode> &nodes, const WatchCondition &condition, const int32_t id,
  182. const ProtoVector<WatchCondition_Parameter> &parameters);
  183. // remove watchpoint with id
  184. void RemoveWatchpoint(const int32_t id);
  185. // load tensor for view command
  186. std::list<TensorProto> LoadTensors(const ProtoVector<TensorProto> &tensors) const;
  187. // load tensor base for view command
  188. std::list<TensorBase> LoadTensorsBase(const ProtoVector<TensorProto> &tensors) const;
  189. // load tensor statistics for view command
  190. std::list<TensorSummary> LoadTensorsStat(const ProtoVector<TensorProto> &tensors) const;
  191. // terminate training process
  192. void Exit(bool exit_success = false);
  193. // analyze tensors and check watchpoint conditions
  194. // return names of tensors and what condition they hit
  195. std::list<WatchpointHit> CheckWatchpoints(const std::string &watchnode = std::string(),
  196. const CNodePtr &kernel = nullptr, bool recheck = false);
  197. // send watchpoints that hit
  198. void SendWatchpoints(const std::list<WatchpointHit> &points);
  199. // Check if the port is valid
  200. bool CheckPort(const std::string &port) const;
  201. // Check if the IP is valid
  202. bool CheckIp(const std::string &host) const;
  203. void LoadSingleAnfnode(const AnfNodePtr &anf_node, const size_t output_index, uint32_t root_graph_id);
  204. void LoadSingleParameterMindRT(const AnfNodePtr &anf_node);
  205. // class members
  206. std::unique_ptr<GrpcClient> grpc_client_;
  207. std::unique_ptr<DebugServices> debug_services_;
  208. std::unique_ptr<std::thread> heartbeat_thread_;
  209. KernelGraphPtr graph_ptr_;
  210. uint32_t device_id_;
  211. std::string device_target_;
  212. int32_t num_step_;
  213. bool debugger_enabled_;
  214. bool suspended_at_last_kernel_;
  215. std::string run_level_;
  216. std::string node_name_;
  217. std::string cur_name_;
  218. bool training_done_;
  219. bool send_metadata_done_;
  220. bool received_new_graph_;
  221. bool is_dataset_graph_;
  222. bool partial_memory_;
  223. std::mutex access_lock_;
  224. uint32_t cur_root_graph_id_ = UINT32_MAX;
  225. uint32_t prev_root_graph_id_ = UINT32_MAX;
  226. // flag to keep track of the very first suspension of debugger
  227. bool initial_suspend_;
  228. bool enable_heartbeat_;
  229. std::list<GraphProto> graph_proto_list_;
  230. std::list<KernelGraphPtr> graph_ptr_list_;
  231. // The vector of graph pointers that have been run in the current step.
  232. std::vector<KernelGraphPtr> graph_ptr_step_vec_;
  233. // The vector of all the parameters for the current step for mindRT.
  234. std::vector<AnfNodePtr> parameters_mindRT_;
  235. std::vector<uint32_t> visited_root_graph_ids_;
  236. // map to store iter num in each epoch when dataset_sink_mode is true
  237. std::map<uint32_t, int32_t> graph_iter_num_map_;
  238. #ifdef ENABLE_D
  239. // to construct kernel data for async dump, key is the dump path to the node
  240. std::map<std::string, std::shared_ptr<DumpDataBuilder>> dump_data_construct_map_;
  241. #endif
  242. // singleton
  243. static std::mutex instance_lock_;
  244. static std::shared_ptr<Debugger> debugger_;
  245. uint32_t not_dataset_graph_sum_;
  246. std::list<uint32_t> rungraph_id_list_;
  247. bool ascend_kernel_by_kernel_;
  248. std::string version_;
  249. };
  250. using DebuggerPtr = std::shared_ptr<Debugger>;
  251. // get debugger ModelProto
  252. ModelProto GetDebuggerFuncGraphProto(const FuncGraphPtr &func_graph);
  253. // for getting proto DataType from Type of Tensor
  254. DataType GetDebuggerNumberDataType(const TypePtr &type);
  255. // process reply and command type
  256. DebuggerCommand GetCommand(const EventReply &reply);
  257. // parse other data out of EventReply
  258. ProtoVector<WatchCondition_Parameter> GetParameters(const EventReply &reply);
  259. ProtoVector<WatchNode> GetWatchnodes(const EventReply &reply);
  260. std::string GetNodeName(const EventReply &reply);
  261. std::string GetRunLevel(const EventReply &reply);
  262. WatchCondition GetWatchcondition(const EventReply &reply);
  263. int32_t GetWatchpointID(const EventReply &reply);
  264. bool GetWatchpointDelete(const EventReply &reply);
  265. ProtoVector<TensorProto> GetTensors(const EventReply &reply);
  266. bool GetMiVersionMatched(const EventReply &reply);
  267. // get the full name of a tensor, which is the name used in TensorLoader
  268. std::string GetTensorFullName(const TensorProto &tensor);
  269. } // namespace mindspore
  270. #endif // MINDSPORE_CCSRC_DEBUG_DEBUGGER_DEBUGGER_H_