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davinci_model.h 35 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. #ifndef GE_GRAPH_LOAD_NEW_MODEL_MANAGER_DAVINCI_MODEL_H_
  17. #define GE_GRAPH_LOAD_NEW_MODEL_MANAGER_DAVINCI_MODEL_H_
  18. #include <map>
  19. #include <memory>
  20. #include <set>
  21. #include <string>
  22. #include <thread>
  23. #include <vector>
  24. #include "common/ge_types.h"
  25. #include "common/helper/model_helper.h"
  26. #include "common/helper/om_file_helper.h"
  27. #include "common/opskernel/ge_task_info.h"
  28. #include "common/properties_manager.h"
  29. #include "common/dump/exception_dumper.h"
  30. #include "common/dump/opdebug_register.h"
  31. #include "common/types.h"
  32. #include "framework/common/util.h"
  33. #include "graph/debug/ge_attr_define.h"
  34. #include "graph/load/model_manager/aipp_utils.h"
  35. #include "graph/load/model_manager/data_dumper.h"
  36. #include "graph/load/model_manager/data_inputer.h"
  37. #include "graph/load/model_manager/model_utils.h"
  38. #include "graph/load/model_manager/zero_copy_offset.h"
  39. #include "graph/load/model_manager/zero_copy_task.h"
  40. #include "graph/model.h"
  41. #include "graph/node.h"
  42. #include "graph/op_desc.h"
  43. #include "graph/operator.h"
  44. #include "graph/utils/attr_utils.h"
  45. #include "graph/utils/tensor_utils.h"
  46. #include "mmpa/mmpa_api.h"
  47. #include "proto/task.pb.h"
  48. #include "task_info/task_info.h"
  49. #include "graph/common/local_context.h"
  50. using std::mutex;
  51. using std::thread;
  52. using std::multimap;
  53. namespace ge {
  54. // op debug need 2048 bits buffer
  55. const size_t kOpDebugMemorySize = 2048UL;
  56. const size_t kDebugP2pSize = 8UL;
  57. typedef enum tagModelProcStage {
  58. MODEL_LOAD_START = 1,
  59. MODEL_LOAD_END,
  60. MODEL_PRE_PROC_START,
  61. MODEL_PRE_PROC_END,
  62. MODEL_INFER_START,
  63. MODEL_INFER_END,
  64. MODEL_AFTER_PROC_START,
  65. MODEL_AFTER_PROC_END,
  66. MODEL_PROC_INVALID,
  67. } ModelProcStage;
  68. struct timeInfo {
  69. uint32_t modelId;
  70. int64_t processBeginTime;
  71. int64_t processEndTime;
  72. int64_t inferenceBeginTime;
  73. int64_t inferenceEndTime;
  74. int64_t dumpBeginTime;
  75. int64_t dumpEndTime;
  76. };
  77. // For super kernel
  78. struct SuperKernelTaskInfo {
  79. uint32_t last_block_dim;
  80. uint32_t last_args_size;
  81. uint32_t last_task_id;
  82. uint32_t last_stream_id;
  83. void *last_stream;
  84. void *last_sm_desc;
  85. vector<void *> kernel_list;
  86. vector<void *> arg_list;
  87. vector<uint32_t> dump_flag_list;
  88. vector<OpDescPtr> op_desc_list;
  89. vector<uintptr_t> dump_args_list;
  90. uint32_t last_dump_flag;
  91. int64_t last_group_key;
  92. uintptr_t last_dump_args;
  93. OpDescPtr last_op;
  94. };
  95. struct TaskMemInfo {
  96. int64_t input_size{0};
  97. int64_t output_size{0};
  98. int64_t weight_size{0};
  99. int64_t workspace_size{0};
  100. int64_t total_size{0};
  101. };
  102. struct ProfileInfo {
  103. FusionOpInfo fusion_info;
  104. TaskMemInfo memory_info;
  105. uint32_t task_count{0};
  106. };
  107. enum ExecuteMode {
  108. INITIALIZATION,
  109. SYNCHRONIZATION,
  110. ASYNCHRONIZATION,
  111. };
  112. // comments
  113. class DavinciModel {
  114. public:
  115. ///
  116. /// @ingroup ge
  117. /// @brief DavinciModel constructor
  118. /// @author
  119. ///
  120. DavinciModel(int32_t priority, const shared_ptr<ModelListener> &listener);
  121. ///
  122. /// @ingroup ge
  123. /// @brief DavinciModel desctructor, free Parse and Init resources
  124. /// @author
  125. ///
  126. ~DavinciModel();
  127. ///
  128. /// @ingroup ge
  129. /// @brief apply model to model_def_
  130. ///
  131. Status Assign(const GeModelPtr &ge_model);
  132. ///
  133. /// @ingroup ge
  134. /// @brief DavinciModel initialization, including Stream, ccHandle, Event, DataInputer, etc
  135. /// @return execute result
  136. /// @author
  137. ///
  138. Status Init(void *dev_ptr = nullptr, size_t memsize = 0, void *weight_ptr = nullptr, size_t weightsize = 0);
  139. ///
  140. /// @ingroup ge
  141. /// @brief ACL case, Load task list with queue.
  142. /// @param [in] input_que_ids: input queue ids from user, nums equal Data Op.
  143. /// @param [in] output_que_ids: input queue ids from user, nums equal NetOutput Op.
  144. /// @return: 0 for success / others for fail
  145. ///
  146. Status SetQueIds(const vector<uint32_t> &input_queue_ids, const vector<uint32_t> &output_queue_ids);
  147. ///
  148. /// @ingroup ge
  149. /// @brief Get DataInputer
  150. /// @return model ID
  151. ///
  152. uint32_t Id() const { return model_id_; }
  153. ///
  154. /// @ingroup ge
  155. /// @brief Get DataInputer
  156. /// @return model ID
  157. ///
  158. void SetId(uint32_t model_id) { model_id_ = model_id; }
  159. ///
  160. /// @ingroup ge
  161. /// @brief Get SubModelId
  162. /// @return sub model ID
  163. ///
  164. uint32_t SubModelId() const { return sub_model_id_; }
  165. ///
  166. /// @ingroup ge
  167. /// @brief Get SubModelId
  168. /// @return sub model ID
  169. ///
  170. void SetSubModelId(uint32_t sub_model_id) { sub_model_id_ = sub_model_id; }
  171. static void *Run(DavinciModel *model_pointer);
  172. ///
  173. /// @ingroup ge
  174. /// @brief NnExecute
  175. /// @param [in] stream execute stream
  176. /// @param [in] async_mode is asynchronize mode.
  177. /// @param [in] input_data model input data
  178. /// @param [out] output_data model output data
  179. ///
  180. Status NnExecute(rtStream_t stream, bool async_mode, const InputData &input_data, OutputData &output_data);
  181. ///
  182. /// @ingroup ge
  183. /// @brief lock mutex run flag
  184. /// @author
  185. ///
  186. void LockRunFlg() { mux_run_flg_.lock(); }
  187. ///
  188. /// @ingroup ge
  189. /// @brief unlock mutex run flag
  190. /// @author
  191. ///
  192. void UnlockRunFlg() { mux_run_flg_.unlock(); }
  193. ///
  194. /// @ingroup ge
  195. /// @brief get DataInputer
  196. /// @return DataInputer pointer
  197. ///
  198. DataInputer *const GetDataInputer() const { return data_inputer_; }
  199. uint32_t GetDataInputerSize() {
  200. GE_CHECK_NOTNULL(data_inputer_);
  201. return data_inputer_->Size();
  202. }
  203. // get Stream number
  204. uint32_t StreamNum() const { return runtime_param_.stream_num; }
  205. // get Event number
  206. uint32_t EventNum() const { return runtime_param_.event_num; }
  207. // get Lable number
  208. uint32_t LabelNum() const { return runtime_param_.label_num; }
  209. // get batch number
  210. uint32_t BatchNum() const { return runtime_param_.batch_num; }
  211. // get session id
  212. uint64_t SessionId() const { return runtime_param_.session_id; }
  213. // get model priority
  214. int32_t Priority() const { return priority_; }
  215. // get total mem size
  216. size_t TotalMemSize() const { return runtime_param_.mem_size; }
  217. // get total useful size: total mem size - zero copy size;
  218. // In known subgraph, no need to allocate zero copy memory during initialization
  219. size_t TotalMemSizeExcludeZeroCopy() const {
  220. return runtime_param_.mem_size > runtime_param_.zero_copy_size
  221. ? runtime_param_.mem_size - runtime_param_.zero_copy_size : 0;
  222. }
  223. // model name
  224. string Name() const { return name_; }
  225. // om_name
  226. const string &OmName() const { return om_name_; }
  227. // dump_model_name
  228. const string &DumpModelName() const { return dump_model_name_; }
  229. // version
  230. uint32_t Version() const { return version_; }
  231. // get total weights mem size
  232. size_t TotalWeightsMemSize() const { return runtime_param_.weight_size; }
  233. size_t TotalVarMemSize() const { return runtime_param_.var_size; }
  234. // get base memory address
  235. uint8_t *MemBase() { return mem_base_; }
  236. // get weight base memory address
  237. uint8_t *WeightsMemBase() { return weights_mem_base_; }
  238. uint8_t *VarMemBase() { return var_mem_base_; }
  239. // get Event list
  240. const vector<rtEvent_t> &GetEventList() const { return event_list_; }
  241. const vector<rtStream_t> &GetStreamList() const { return stream_list_; }
  242. const vector<rtLabel_t> &GetLabelList() const { return label_list_; }
  243. Status GetLabelGotoAddr(uint32_t label_index, rtMemType_t memory_type, void *&addr, uint32_t &size);
  244. Status DestroyThread();
  245. // get Op
  246. OpDescPtr GetOpByIndex(uint32_t index) const {
  247. if (op_list_.find(index) == op_list_.end()) {
  248. return nullptr;
  249. }
  250. return op_list_.at(index);
  251. }
  252. void *GetGlobalStep() const { return global_step_addr_; }
  253. // get task info for profiling
  254. const vector<TaskDescInfo> &GetTaskDescInfo() const { return task_desc_info_; }
  255. // get updated task info list
  256. vector<TaskInfoPtr> GetTaskList() { return task_list_; }
  257. // Modified from KernelTaskInfo.
  258. SuperKernelTaskInfo &GetSuperKernelTaskInfo() { return skt_info_; }
  259. rtModel_t GetRtModelHandle() const { return rt_model_handle_; }
  260. rtStream_t GetRtModelStream() const { return rt_model_stream_; }
  261. uint64_t GetRtBaseAddr() const { return runtime_param_.logic_mem_base; }
  262. uint64_t GetRtWeightAddr() const { return runtime_param_.logic_weight_base; }
  263. uint64_t GetRtVarAddr() const { return runtime_param_.logic_var_base; }
  264. uint32_t GetFlowctrlIndex(uint32_t op_index);
  265. void PushHcclStream(rtStream_t value);
  266. bool IsBroadCastOpData(const NodePtr &var_node);
  267. ///
  268. /// @ingroup ge
  269. /// @brief For TVM Op, avoid Addr Reuse.
  270. /// @return void*
  271. ///
  272. const char *GetRegisterStub(const string &tvm_binfile_key, const string &session_graph_model_id = "");
  273. ///
  274. /// @ingroup ge
  275. /// @brief get model input and output desc info
  276. /// @param [out] input_shape model input size
  277. /// @param [out] output_shape model output size
  278. /// @return execute result
  279. ///
  280. Status GetInputOutputDescInfo(vector<InputOutputDescInfo> &input_desc, vector<InputOutputDescInfo> &output_desc);
  281. Status GetInputOutputDescInfo(vector<InputOutputDescInfo> &input_desc, vector<InputOutputDescInfo> &output_desc,
  282. vector<uint32_t> &input_formats, vector<uint32_t> &output_formats, bool by_dims);
  283. ///
  284. /// @ingroup ge
  285. /// @brief Get dynamic batch_info
  286. /// @param [out] batch_info
  287. /// @param [out] dynamic_type
  288. /// @return execute result
  289. ///
  290. Status GetDynamicBatchInfo(vector<vector<int64_t>> &batch_info, int32_t &dynamic_type) const;
  291. ///
  292. /// @ingroup ge
  293. /// @brief Get combined dynamic dims info
  294. /// @param [out] batch_info
  295. /// @return None
  296. ///
  297. void GetCombinedDynamicDims(vector<vector<int64_t>> &batch_info) const;
  298. void GetUserDesignateShapeOrder(vector<string> &user_input_shape_order) const;
  299. void GetCurShape(vector<int64_t> &batch_info, int32_t &dynamic_type) const;
  300. Status GetOpAttr(const std::string &op_name, const std::string &attr_name, std::string &attr_value) const;
  301. void GetModelAttr(vector<string> &dynamic_output_shape_info) const;
  302. ///
  303. /// @ingroup ge
  304. /// @brief Get AIPP input info
  305. /// @param [in] index
  306. /// @param [out] aipp_info
  307. /// @return execute result
  308. ///
  309. Status GetAippInfo(uint32_t index, AippConfigInfo &aipp_info) const;
  310. Status GetAippType(uint32_t index, InputAippType &type, size_t &aipp_index) const;
  311. ///
  312. /// @ingroup ge
  313. /// @brief Get model_id.
  314. /// @return model_id
  315. ///
  316. uint32_t GetModelId() const { return model_id_; }
  317. ///
  318. /// @ingroup ge
  319. /// @brief get unique identification for op when load two or more models
  320. /// @param [in] op_desc : current op.
  321. /// @param [in] string identification: unique identification for current op.
  322. /// @return None
  323. ///
  324. void GetUniqueId(const OpDescPtr &op_desc, string &unique_identification);
  325. Status ReturnResult(uint32_t data_id, const bool rslt_flg, const bool seq_end_flg, OutputData *output_data);
  326. Status ReturnNoOutput(uint32_t data_id);
  327. Status ModelRunStart();
  328. ///
  329. /// @ingroup ge
  330. /// @brief stop run model
  331. /// @return Status
  332. ///
  333. Status ModelRunStop();
  334. ///
  335. /// @ingroup ge
  336. /// @brief model run flag
  337. /// @return Status
  338. ///
  339. bool RunFlag() const { return run_flg_; }
  340. ///
  341. /// @ingroup ge
  342. /// @brief Set Session Id
  343. /// @return void
  344. ///
  345. void SetSessionId(uint64_t session_id) { session_id_ = session_id; }
  346. ///
  347. /// @ingroup ge
  348. /// @brief Get Session Id
  349. /// @return sessionID
  350. ///
  351. uint64_t GetSessionId() const { return session_id_; }
  352. const struct error_message::Context &GetErrorContext() const { return error_context_; }
  353. ///
  354. /// @ingroup ge
  355. /// @brief SetDeviceId
  356. /// @return void
  357. ///
  358. void SetDeviceId(uint32_t device_id) { device_id_ = device_id; }
  359. ///
  360. /// @ingroup ge
  361. /// @brief Get device Id
  362. /// @return device id
  363. ///
  364. uint32_t GetDeviceId() const { return device_id_; }
  365. bool NeedDestroyAicpuKernel() const { return need_destroy_aicpu_kernel_; }
  366. Status UpdateSessionId(uint64_t session_id);
  367. const RuntimeParam &GetRuntimeParam() { return runtime_param_; }
  368. int32_t GetDataInputTid() const { return dataInputTid; }
  369. void SetDataInputTid(int32_t data_input_tid) { dataInputTid = data_input_tid; }
  370. void DisableZeroCopy(const void *addr);
  371. bool GetOpDugReg() const { return is_op_debug_reg_; }
  372. ///
  373. /// @ingroup ge
  374. /// @brief Save outside address of Data or NetOutput used info for ZeroCopy.
  375. /// @param [in] const OpDescPtr &op_desc: current op desc
  376. /// @param [in] const vector<void *> &outside_addrs: address of task
  377. /// @param [in] const void *args_offset: arguments address save the address.
  378. /// @return None.
  379. ///
  380. void SetZeroCopyAddr(const OpDescPtr &op_desc, const vector<void *> &outside_addrs, const void *info, void *args,
  381. size_t size, size_t offset);
  382. void SetDynamicSize(const vector<uint64_t> &batch_num, int32_t dynamic_type);
  383. bool GetL1FusionEnableOption() { return is_l1_fusion_enable_; }
  384. void SetProfileTime(ModelProcStage stage, int64_t endTime = 0);
  385. int64_t GetLoadBeginTime() { return load_begin_time_; }
  386. int64_t GetLoadEndTime() { return load_end_time_; }
  387. void SaveSpecifyAttrValues(const OpDescPtr &op_desc);
  388. Status ReportProfilingData();
  389. void SaveDumpOpInfo(const RuntimeParam &model_param, const OpDescPtr &op, uint32_t task_id, uint32_t stream_id) {
  390. exception_dumper_.SaveDumpOpInfo(model_param, op, task_id, stream_id);
  391. }
  392. void SaveDumpTask(uint32_t task_id, uint32_t stream_id, const shared_ptr<OpDesc> &op_desc, uintptr_t args) {
  393. data_dumper_.SaveDumpTask(task_id, stream_id, op_desc, args);
  394. }
  395. Status DumpExceptionInfo(const std::vector<rtExceptionInfo> &exception_infos) const {
  396. return exception_dumper_.DumpExceptionInfo(exception_infos);
  397. }
  398. void SetKnownShapeGlobalStep(void *global_step) {
  399. known_shape_global_step_ = global_step;
  400. }
  401. void DumperShrink() {
  402. data_dumper_.DumpShrink();
  403. }
  404. bool OpNeedDump(const string &op_name) {
  405. return GetDumpProperties().IsLayerNeedDump(dump_model_name_, om_name_, op_name);
  406. }
  407. bool ModelNeedDump();
  408. void SetEndGraphId(uint32_t task_id, uint32_t stream_id);
  409. DavinciModel &operator=(const DavinciModel &model) = delete;
  410. DavinciModel(const DavinciModel &model) = delete;
  411. const map<int64_t, vector<rtStream_t>> &GetHcclFolowStream() {
  412. return main_follow_stream_mapping_;
  413. }
  414. void SaveHcclFollowStream(int64_t main_stream_id, rtStream_t stream);
  415. void InitRuntimeParams();
  416. Status InitVariableMem();
  417. void UpdateMemBase(uint8_t *mem_base) {
  418. runtime_param_.mem_base = mem_base;
  419. mem_base_ = mem_base;
  420. }
  421. void SetTotalArgsSize(uint32_t args_size) { total_args_size_ += args_size; }
  422. uint32_t GetTotalArgsSize() { return total_args_size_; }
  423. void *GetCurrentArgsAddr(uint32_t offset) {
  424. void *cur_args = static_cast<char *>(args_) + offset;
  425. return cur_args;
  426. }
  427. void SetTotalIOAddrs(const vector<void *> &io_addrs);
  428. void SetHybridArgsSize(uint32_t args_size) { total_hybrid_args_size_ += args_size; }
  429. uint32_t GetHybridArgsSize() {
  430. return total_hybrid_args_size_;
  431. }
  432. void *GetCurrentHybridArgsAddr(uint32_t offset) {
  433. void *cur_args = static_cast<char *>(hybrid_addrs_) + offset;
  434. return cur_args;
  435. }
  436. void SetTotalFixedAddrsSize(string tensor_name, int64_t fix_addr_size);
  437. int64_t GetFixedAddrsSize(string tensor_name);
  438. void *GetCurrentFixedAddr(int64_t offset) const {
  439. void *cur_addr = static_cast<char *>(fixed_addrs_) + offset;
  440. return cur_addr;
  441. }
  442. uint32_t GetFixedAddrOutputIndex(string tensor_name) {
  443. if (tensor_name_to_peer_output_index_.find(tensor_name) != tensor_name_to_peer_output_index_.end()) {
  444. return tensor_name_to_peer_output_index_[tensor_name];
  445. }
  446. return UINT32_MAX;
  447. }
  448. void SetKnownNode(bool known_node) { known_node_ = known_node; }
  449. bool IsKnownNode() { return known_node_; }
  450. Status MallocKnownArgs();
  451. Status CheckCapability(rtFeatureType_t featureType, int32_t featureInfo, bool &is_support) const;
  452. Status UpdateKnownNodeArgs(const vector<void *> &inputs, const vector<void *> &outputs);
  453. Status CreateKnownZeroCopyMap(const vector<void *> &inputs, const vector<void *> &outputs);
  454. Status UpdateKnownZeroCopyAddr(vector<void *> &total_io_addrs, bool update_args = true);
  455. Status GetOrigInputInfo(uint32_t index, OriginInputInfo &orig_input_info) const;
  456. Status GetAllAippInputOutputDims(uint32_t index, vector<InputOutputDims> &input_dims,
  457. vector<InputOutputDims> &output_dims) const;
  458. // om file name
  459. void SetOmName(const string &om_name) { om_name_ = om_name; }
  460. void SetDumpModelName(const string &dump_model_name) { dump_model_name_ = dump_model_name; }
  461. void SetDumpProperties(const DumpProperties &dump_properties) { data_dumper_.SetDumpProperties(dump_properties); }
  462. const DumpProperties &GetDumpProperties() const { return data_dumper_.GetDumpProperties(); }
  463. bool GetOpDescInfo(uint32_t stream_id, uint32_t task_id, OpDescInfo &op_desc_info) const {
  464. return exception_dumper_.GetOpDescInfo(stream_id, task_id, op_desc_info);
  465. }
  466. void UpdateOpIOAddrs(uint32_t task_id, uint32_t stream_id, const std::vector<void *> &io_addrs);
  467. bool GetRunningFlag() const { return running_flg_; }
  468. void SetRunningFlag(bool flag) { running_flg_ = flag; }
  469. Status SetRunAsyncListenerCallback(const RunAsyncCallback &callback);
  470. private:
  471. // memory address of weights
  472. uint8_t *weights_mem_base_;
  473. uint8_t *var_mem_base_;
  474. // memory address of model
  475. uintptr_t fixed_mem_base_; // Initial of mem_base_, keep forever.
  476. uint8_t *mem_base_;
  477. bool is_inner_mem_base_;
  478. bool is_inner_weight_base_;
  479. // input data manager
  480. DataInputer *data_inputer_;
  481. int64_t load_begin_time_;
  482. int64_t load_end_time_;
  483. struct timeInfo time_info_;
  484. int32_t dataInputTid;
  485. void *GetRunAddress(void *addr) const;
  486. ///
  487. /// @ingroup ge
  488. /// @brief Copy Check input size and model op size.
  489. /// @param [in] const int64_t &input_size: input size.
  490. /// @param [in] const int64_t &op_size: model op size.
  491. /// @param [in] is_dynamic: dynamic batch input flag.
  492. /// @return true if success
  493. ///
  494. bool CheckInputAndModelSize(const int64_t &input_size, const int64_t &op_size, bool is_dynamic);
  495. ///
  496. /// @ingroup ge
  497. /// @brief Set copy only for No task feed NetOutput address.
  498. /// @return None.
  499. ///
  500. void SetCopyOnlyOutput();
  501. ///
  502. /// @ingroup ge
  503. /// @brief Copy Input/Output to model for direct use.
  504. /// @param [in] const InputData &input_data: user input data info.
  505. /// @param [in/out] OutputData &output_data: user output data info.
  506. /// @param [in] bool is_dynamic: whether is dynamic input, true: is dynamic input; false: not is dynamic input
  507. /// @return SUCCESS handle successfully / others handle failed
  508. ///
  509. Status CopyModelData(const InputData &input_data, OutputData &output_data, bool is_dynamic);
  510. ///
  511. /// @ingroup ge
  512. /// @brief Copy Data addr to model for direct use.
  513. /// @param [in] data_info: model memory addr/size map { data_index, { tensor_size, tensor_addr } }.
  514. /// @param [in] is_input: input data or output data
  515. /// @param [in] blobs: user input/output data list.
  516. /// @param [in] is_dynamic: whether is dynamic input, true: is dynamic input; false: not is dynamic input
  517. /// @param [in] batch_label: batch label for multi-batch scenes
  518. /// @return SUCCESS handle successfully / others handle failed
  519. ///
  520. Status UpdateIoTaskArgs(const map<uint32_t, ZeroCopyOffset> &data_info, bool is_input,
  521. const vector<DataBuffer> &blobs, bool is_dynamic, const string &batch_label);
  522. Status CopyInputData(const InputData &input_data);
  523. Status CopyOutputData(uint32_t data_id, OutputData &output_data, rtMemcpyKind_t kind);
  524. Status SyncVarData();
  525. Status InitWeightMem(void *dev_ptr, void *weight_ptr, size_t weight_size);
  526. Status InitFeatureMapAndP2PMem(void *dev_ptr, size_t mem_size);
  527. void CreateInputDimsInfo(const OpDescPtr &op_desc, Format format, ShapeDescription &shape1, ShapeDescription &shape2);
  528. void SetInputDimsInfo(const vector<int64_t> &input_dims, Format &format, ShapeDescription &shape_info);
  529. Status GetInputDescInfo(vector<InputOutputDescInfo> &input_desc, vector<uint32_t> &input_formats, bool by_dims) const;
  530. Status GetOutputDescInfo(vector<InputOutputDescInfo> &output_desc, vector<uint32_t> &output_formats) const;
  531. Status InitTaskInfo(domi::ModelTaskDef &modelTaskInfo);
  532. void UnbindHcomStream();
  533. Status DistributeTask();
  534. void SaveProfilingTaskDescInfo(const OpDescPtr &op, const TaskInfoPtr &task,
  535. const domi::TaskDef &task_def, size_t task_index);
  536. uint8_t *MallocFeatureMapMem(size_t data_size);
  537. uint8_t *MallocWeightsMem(size_t weights_size);
  538. Status MallocExMem();
  539. void FreeFeatureMapMem();
  540. void FreeWeightsMem();
  541. void FreeExMem();
  542. void ReleaseTask();
  543. void ClearTaskAddrs();
  544. void UnbindTaskSinkStream();
  545. bool IsAicpuKernelConnectSpecifiedLayer();
  546. ///
  547. /// @ingroup ge
  548. /// @brief Reduce memory usage after task sink.
  549. /// @return: void
  550. ///
  551. void Shrink();
  552. ///
  553. /// @ingroup ge
  554. /// @brief Travel all nodes and do some init.
  555. /// @param [in] compute_graph: ComputeGraph to load.
  556. /// @return Status
  557. ///
  558. Status InitNodes(const ComputeGraphPtr &compute_graph);
  559. ///
  560. /// @ingroup ge
  561. /// @brief Data Op Initialize.
  562. /// @param [in] ComputeGraphPtr: root graph of the model.
  563. /// @param [in] NodePtr: Data Op.
  564. /// @param [in/out] data_op_index: index of courrent count.
  565. /// @param [in/out] data_by_index: Data ordered by index.
  566. /// @return Status
  567. ///
  568. Status InitDataOp(const ComputeGraphPtr &graph, const NodePtr &node, uint32_t &data_op_index,
  569. map<uint32_t, OpDescPtr> &data_by_index, set<const void *> &input_outside_addrs);
  570. ///
  571. /// @ingroup ge
  572. /// @brief Sort Data op list by index.
  573. /// @param [in] data_by_index: map of Data Op.
  574. /// @param [in] output_op_list: list of NetOutput op.
  575. /// @return Status
  576. ///
  577. Status GenInputOutputInfo(const map<uint32_t, OpDescPtr> &data_by_index, const vector<OpDescPtr> &output_op_list);
  578. ///
  579. /// @ingroup ge
  580. /// @brief NetOutput Op Initialize.
  581. /// @param [in] ComputeGraphPtr: root graph of the model.
  582. /// @param [in] NodePtr: NetOutput Op.
  583. /// @param [in/out] vector<OpDescPtr>: All NetOutput node in model.
  584. /// @return Status
  585. ///
  586. Status InitNetOutput(const ComputeGraphPtr &graph, const NodePtr &node, vector<OpDescPtr> &output_op_list,
  587. set<const void *> &output_outside_addrs);
  588. ///
  589. /// @ingroup ge
  590. /// @brief Constant Op Init.
  591. /// @return Status
  592. ///
  593. Status InitConstant(const OpDescPtr &op_desc);
  594. Status InitVariable(const OpDescPtr &op_desc, map<string, OpDescPtr> &variable_by_name);
  595. /// @ingroup ge
  596. /// @brief LabelSet Op Initialize.
  597. /// @param [in] op_desc: LabelSet Op descriptor.
  598. /// @return Status
  599. Status InitLabelSet(const OpDescPtr &op_desc);
  600. Status InitStreamSwitch(const OpDescPtr &op_desc);
  601. Status InitStreamActive(const OpDescPtr &op_desc);
  602. Status InitStreamSwitchN(const OpDescPtr &op_desc);
  603. ///
  604. /// @ingroup ge
  605. /// @brief Case Op Init.
  606. /// @return Status
  607. ///
  608. Status InitCase(const OpDescPtr &op_desc);
  609. Status SetDynamicBatchInfo(const OpDescPtr &op_desc, uint32_t batch_num);
  610. ///
  611. /// @ingroup ge
  612. /// @brief TVM Op Init.
  613. /// @return Status
  614. ///
  615. Status InitTbeHandle(const OpDescPtr &op_desc);
  616. void StoreTbeHandle(const string &handle_key);
  617. void CleanTbeHandle();
  618. ///
  619. /// @ingroup ge
  620. /// @brief Make active stream list and bind to model.
  621. /// @return: 0 for success / others for fail
  622. ///
  623. Status BindModelStream();
  624. ///
  625. /// @ingroup ge
  626. /// @brief Init model stream for NN model.
  627. /// @return Status
  628. ///
  629. Status InitModelStream(rtStream_t stream);
  630. ///
  631. /// @ingroup ge
  632. /// @brief ACL, Load task list with queue entrance.
  633. /// @return: 0 for success / others for fail
  634. ///
  635. Status LoadWithQueue();
  636. ///
  637. /// @ingroup ge
  638. /// @brief ACL, Bind Data Op addr to input queue.
  639. /// @return: 0 for success / others for fail
  640. ///
  641. Status BindInputQueue();
  642. Status CpuTaskModelZeroCopy(vector<uintptr_t> &mbuf_list, const map<uint32_t, ZeroCopyOffset> &outside_addrs);
  643. ///
  644. /// @ingroup ge
  645. /// @brief ACL, Bind NetOutput Op addr to output queue.
  646. /// @return: 0 for success / others for fail
  647. ///
  648. Status BindOutputQueue();
  649. Status CpuModelPrepareOutput(uintptr_t addr, uint32_t size);
  650. ///
  651. /// @ingroup ge
  652. /// @brief definiteness queue schedule, bind input queue to task.
  653. /// @param [in] queue_id: input queue id from user.
  654. /// @param [in] addr: Data Op output tensor address.
  655. /// @param [in] size: Data Op output tensor size.
  656. /// @return: 0 for success / others for fail
  657. ///
  658. Status CpuModelDequeue(uint32_t queue_id);
  659. ///
  660. /// @ingroup ge
  661. /// @brief definiteness queue schedule, bind output queue to task.
  662. /// @param [in] queue_id: output queue id from user.
  663. /// @param [in] addr: NetOutput Op input tensor address.
  664. /// @param [in] size: NetOutput Op input tensor size.
  665. /// @return: 0 for success / others for fail
  666. ///
  667. Status CpuModelEnqueue(uint32_t queue_id, uintptr_t addr, uint32_t size);
  668. ///
  669. /// @ingroup ge
  670. /// @brief definiteness queue schedule, active original model stream.
  671. /// @return: 0 for success / others for fail
  672. ///
  673. Status CpuActiveStream();
  674. ///
  675. /// @ingroup ge
  676. /// @brief definiteness queue schedule, wait for end graph.
  677. /// @return: 0 for success / others for fail
  678. ///
  679. Status CpuWaitEndGraph();
  680. Status BindEnqueue();
  681. Status CpuModelEnqueue(uint32_t queue_id, uintptr_t out_mbuf);
  682. ///
  683. /// @ingroup ge
  684. /// @brief definiteness queue schedule, repeat run model.
  685. /// @return: 0 for success / others for fail
  686. ///
  687. Status CpuModelRepeat();
  688. Status InitEntryTask();
  689. Status AddHeadStream();
  690. ///
  691. /// @ingroup ge
  692. /// @brief set ts device.
  693. /// @return: 0 for success / others for fail
  694. ///
  695. Status SetTSDevice();
  696. Status OpDebugRegister();
  697. void OpDebugUnRegister();
  698. void CheckHasHcomOp(const ComputeGraphPtr &graph);
  699. Status DoTaskSink();
  700. void CreateOutput(uint32_t index, const OpDescPtr &op_desc, InputOutputDescInfo &output, uint32_t &format_result);
  701. Status TransAllVarData(ComputeGraphPtr &graph, uint32_t graph_id);
  702. void SetDataDumperArgs(const ComputeGraphPtr &graph, const map<string, OpDescPtr> &variable_by_name);
  703. Status InitL1DataDumperArgs();
  704. Status InitModelProfile();
  705. Status SinkModelProfile();
  706. Status SinkTimeProfile(const InputData &current_data);
  707. Status InitOutputTensorInfo(const OpDescPtr &op_desc);
  708. Status GenOutputTensorInfo(OutputData *output_data, vector<ge::Tensor> &outputs);
  709. Status InitInputDescInfo(const OpDescPtr &op_desc);
  710. Status InitOutputDescInfo(const OpDescPtr &op_desc, const vector<string> &out_node_name);
  711. Status InitOrigInputInfo(uint32_t index, const OpDescPtr &op_desc);
  712. Status InitAippInfo(uint32_t index, const OpDescPtr &op_desc);
  713. Status InitAippType(uint32_t index, const OpDescPtr &op_desc, const map<uint32_t, OpDescPtr> &data_list);
  714. Status InitAippInputOutputDims(uint32_t index, const OpDescPtr &op_desc);
  715. void ParseAIPPInfo(string in_out_info, InputOutputDims &dims_info);
  716. void SetLabelForDynamic(const NodePtr &node);
  717. void ParseDynamicOutShape(const vector<string> &str_info, vector<vector<int64_t>> &vec_info);
  718. bool IsGetNextSinkDynamic(const OpDescPtr &op_desc);
  719. Status InitRealSizeAndShapeInfo(const ComputeGraphPtr &compute_graph, const NodePtr &node);
  720. void GetAllGearsInfo(const NodePtr &node);
  721. Status GetGetDynamicDimsNodeInfo(const NodePtr &node);
  722. Status GetGearAndRealOutSizeInfo(const ComputeGraphPtr &graph, const NodePtr &node);
  723. Status GetRealOutputSizeOfCase(const ComputeGraphPtr &graph, size_t input_index, const NodePtr &case_node);
  724. Status GetGearAndRealOutShapeInfo(const ComputeGraphPtr &graph, const NodePtr &node);
  725. bool is_weight_mem_has_inited_;
  726. bool is_feature_map_mem_has_inited_;
  727. uint32_t model_id_;
  728. uint32_t runtime_model_id_;
  729. uint32_t sub_model_id_ = 0;
  730. string name_;
  731. // used for inference data dump
  732. string om_name_;
  733. string dump_model_name_;
  734. uint32_t version_;
  735. GeModelPtr ge_model_; // release after DavinciModel::Init
  736. bool need_destroy_aicpu_kernel_{false};
  737. map<uint32_t, OpDescPtr> op_list_; // release after DavinciModel::Init
  738. map<string, GeTensorDesc> broadcast_variable_;
  739. void *global_step_addr_{nullptr};
  740. uint64_t global_step_size_{0};
  741. map<uint32_t, ZeroCopyOffset> input_data_info_;
  742. map<uint32_t, ZeroCopyOffset> output_data_info_;
  743. set<const void *> real_virtual_addrs_;
  744. // output op: save cce op actual needed memory size
  745. vector<int64_t> output_memory_size_list_;
  746. thread thread_id_;
  747. shared_ptr<ModelListener> listener_;
  748. bool run_flg_;
  749. // check whether model is running with data
  750. bool running_flg_ = false;
  751. mutex mux_run_flg_;
  752. int32_t priority_;
  753. vector<rtStream_t> stream_list_;
  754. mutex all_hccl_stream_list_mutex_;
  755. vector<rtStream_t> all_hccl_stream_list_;
  756. // for reuse hccl_follow_stream
  757. mutex capacity_of_stream_mutex_;
  758. map<int64_t, vector<rtStream_t>> main_follow_stream_mapping_;
  759. vector<rtEvent_t> event_list_;
  760. vector<rtLabel_t> label_list_;
  761. set<uint32_t> label_id_indication_;
  762. mutex label_args_mutex_;
  763. map<uint32_t, pair<void *, uint32_t>> label_goto_args_;
  764. mutex outside_addrs_mutex_;
  765. vector<ZeroCopyTask> zero_copy_tasks_; // Task used Data or NetOutput addr.
  766. set<const void *> copy_only_addrs_; // Address need copy to original place.
  767. vector<TaskInfoPtr> task_list_;
  768. // rt_moodel_handle
  769. rtModel_t rt_model_handle_;
  770. rtStream_t rt_model_stream_;
  771. bool is_inner_model_stream_;
  772. bool is_async_mode_; // For NN execute, Async mode use rtMemcpyAsync on rt_model_stream_.
  773. ExecuteMode last_execute_mode_;
  774. bool is_stream_list_bind_{false};
  775. bool is_pure_head_stream_{false};
  776. rtStream_t rt_head_stream_{nullptr};
  777. rtStream_t rt_entry_stream_{nullptr};
  778. rtAicpuDeployType_t deploy_type_{AICPU_DEPLOY_RESERVED};
  779. // ACL queue schedule, save queue ids for Init.
  780. vector<TaskInfoPtr> cpu_task_list_;
  781. vector<uint32_t> input_queue_ids_; // input queue ids created by caller.
  782. vector<uint32_t> output_queue_ids_; // output queue ids created by caller.
  783. vector<uintptr_t> input_mbuf_list_; // input mbuf created by dequeue task.
  784. vector<uintptr_t> output_mbuf_list_; // output mbuf created by dequeue task.
  785. uint64_t session_id_;
  786. struct error_message::Context error_context_;
  787. uint32_t device_id_;
  788. mutex flowctrl_op_index_internal_map_mutex_;
  789. map<uint32_t, uint32_t> flowctrl_op_index_internal_map_;
  790. vector<rtStream_t> active_stream_list_;
  791. set<uint32_t> active_stream_indication_;
  792. set<uint32_t> hcom_streams_;
  793. RuntimeParam runtime_param_;
  794. static mutex tvm_bin_mutex_;
  795. set<string> tvm_bin_kernel_;
  796. map<string, uint32_t> used_tbe_handle_map_;
  797. // for profiling task and graph info
  798. vector<TaskDescInfo> task_desc_info_;
  799. std::map<std::string, std::pair<uint32_t, uint32_t>> profiler_report_op_info_;
  800. int64_t maxDumpOpNum_;
  801. // for data dump
  802. DataDumper data_dumper_;
  803. ExceptionDumper exception_dumper_;
  804. OpdebugRegister opdebug_register_;
  805. uint64_t iterator_count_;
  806. bool is_l1_fusion_enable_;
  807. map<OpDescPtr, void *> saved_task_addrs_; // release after DavinciModel::Init
  808. void *l1_fusion_addr_ = nullptr;
  809. bool known_node_ = false;
  810. uint32_t total_args_size_ = 0;
  811. void *args_ = nullptr;
  812. void *args_host_ = nullptr;
  813. void *fixed_addrs_ = nullptr;
  814. void *hybrid_addrs_ = nullptr;
  815. uint32_t total_hybrid_args_size_ = 0;
  816. int64_t total_fixed_addr_size_ = 0;
  817. map<const void *, void *> known_input_data_info_;
  818. map<const void *, void *> known_output_data_info_;
  819. vector<void *> total_io_addrs_;
  820. vector<vector<int64_t>> batch_info_;
  821. vector<vector<int64_t>> combined_batch_info_;
  822. vector<string> user_designate_shape_order_;
  823. int32_t dynamic_type_ = 0;
  824. bool is_dynamic_ = false;
  825. vector<uint64_t> batch_size_;
  826. // key: input tensor name, generally rts op;
  827. // value: the fixed addr of input anchor, same as the peer output anchor addr of the peer op
  828. map<string, int64_t> tensor_name_to_fixed_addr_size_;
  829. // key: input tensor name, generally rts op; value: the peer output anchor of the peer op
  830. map<string, int64_t> tensor_name_to_peer_output_index_;
  831. // if model is first execute
  832. bool is_first_execute_;
  833. // for op debug
  834. mutex debug_reg_mutex_;
  835. bool is_op_debug_reg_ = false;
  836. bool is_online_infer_dynamic_ = false;
  837. bool is_getnext_sink_dynamic_ = false;
  838. vector<int32_t> cur_dynamic_dims_;
  839. void *netoutput_last_input_addr_ = nullptr;
  840. int64_t netoutput_last_input_size_ = 0;
  841. size_t shape_of_cur_dynamic_dims_ = 0;
  842. // key: input_index: input is merge node; value: each gear info and each output size
  843. map<size_t, map<vector<int32_t>, int64_t>> merge_nodes_gear_and_real_out_size_info_;
  844. // key: input_index: input is merge node; value: each gear info and each output shape
  845. map<size_t, map<vector<int32_t>, vector<int64_t>>> merge_nodes_gear_and_real_out_shape_info_;
  846. vector<vector<int32_t>> all_gears_info_;
  847. multimap<uint32_t, uint32_t> op_id_map_;
  848. vector<ProfileInfo> profile_list_;
  849. // For super kernel.
  850. SuperKernelTaskInfo skt_info_;
  851. bool has_output_node_ = false;
  852. bool is_dynamic_aipp_ = false;
  853. vector<string> dynamic_output_shape_info_;
  854. vector<vector<void *>> input_addrs_list_;
  855. vector<vector<void *>> output_addrs_list_;
  856. vector<int64_t> output_buffer_size_;
  857. vector<GeShape> output_shape_info_;
  858. map<uint32_t, OriginInputInfo> orig_input_info_;
  859. map<uint32_t, AippConfigInfo> aipp_info_list_;
  860. map<uint32_t, pair<InputAippType, size_t>> aipp_type_list_;
  861. map<uint32_t, pair<vector<InputOutputDims>, vector<InputOutputDims>>> aipp_dims_info_;
  862. vector<InputOutputDescInfo> input_descs_;
  863. vector<InputOutputDescInfo> input_descs_dims_;
  864. vector<uint32_t> input_formats_;
  865. vector<InputOutputDescInfo> output_descs_;
  866. vector<uint32_t> output_formats_;
  867. // known shape node for dump
  868. void *known_shape_global_step_;
  869. // op name to attrs mapping
  870. std::map<std::string, std::map<std::string, std::vector<std::string>>> op_name_to_attrs_;
  871. };
  872. } // namespace ge
  873. #endif // GE_GRAPH_LOAD_NEW_MODEL_MANAGER_DAVINCI_MODEL_H_

图引擎模块(GE)是MindSpore的一个子模块,其代码由C++实现,位于前端模块ME和底层硬件之间,起到承接作用。图引擎模块以ME下发的图作为输入,然后进行一系列的深度图优化操作,最后输出一张可以在底层硬件上高效运行的图。GE针对昇腾AI处理器的硬件结构特点,做了特定的优化工作,以此来充分发挥出昇腾AI处理器的强大算力。在进行模型训练/推理时,GE会被自动调用而用户并不感知。GE主要由GE API和GE Core两部分组成,详细的架构图如下所示