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graph_manager.cc 123 kB

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  1. /**
  2. * Copyright 2019-2020 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 "graph/manager/graph_manager.h"
  17. #include <pthread.h>
  18. #include <algorithm>
  19. #include <future>
  20. #include <set>
  21. #include <sstream>
  22. #include <string>
  23. #include <thread>
  24. #include <utility>
  25. #include "common/ge/ge_util.h"
  26. #include "common/math/math_util.h"
  27. #include "common/thread_pool.h"
  28. #include "common/util.h"
  29. #include "external/graph/types.h"
  30. #include "framework/common/debug/ge_log.h"
  31. #include "framework/common/ge_inner_error_codes.h"
  32. #include "framework/common/ge_types.h"
  33. #include "analyzer/analyzer.h"
  34. #include "graph/common/ge_call_wrapper.h"
  35. #include "graph/common/local_context.h"
  36. #include "graph/common/transop_util.h"
  37. #include "graph/debug/ge_attr_define.h"
  38. #include "graph/ge_context.h"
  39. #include "graph/ge_global_options.h"
  40. #include "graph/ge_local_context.h"
  41. #include "graph/manager/graph_mem_allocator.h"
  42. #include "graph/manager/util/rt_context_util.h"
  43. #include "graph/partition/dynamic_shape_partition.h"
  44. #include "graph/passes/enter_pass.h"
  45. #include "graph/partition/stage_partition.h"
  46. #include "graph/passes/addn_pass.h"
  47. #include "graph/passes/bitcast_pass.h"
  48. #include "graph/passes/atomic_addr_clean_pass.h"
  49. #include "graph/passes/attach_stream_label_pass.h"
  50. #include "graph/passes/cast_remove_pass.h"
  51. #include "graph/passes/common_subexpression_elimination_pass.h"
  52. #include "graph/passes/compile_nodes_pass.h"
  53. #include "graph/passes/cond_remove_pass.h"
  54. #include "graph/passes/constant_folding_pass.h"
  55. #include "graph/passes/constant_fuse_same_pass.h"
  56. #include "graph/passes/control_trigger_pass.h"
  57. #include "graph/passes/ctrl_edge_transfer_pass.h"
  58. #include "graph/passes/dimension_adjust_pass.h"
  59. #include "graph/passes/dimension_compute_pass.h"
  60. #include "graph/passes/flow_ctrl_pass.h"
  61. #include "graph/passes/hccl_group_pass.h"
  62. #include "graph/passes/hccl_memcpy_pass.h"
  63. #include "graph/passes/identity_pass.h"
  64. #include "graph/passes/input_output_connection_identify_pass.h"
  65. #include "graph/passes/iterator_op_pass.h"
  66. #include "graph/passes/link_gen_mask_nodes_pass.h"
  67. #include "graph/passes/mark_graph_unknown_status_pass.h"
  68. #include "graph/passes/merge_pass.h"
  69. #include "graph/passes/merge_input_memcpy_pass.h"
  70. #include "graph/passes/merge_to_stream_merge_pass.h"
  71. #include "graph/passes/multi_batch_pass.h"
  72. #include "graph/passes/next_iteration_pass.h"
  73. #include "graph/passes/permute_pass.h"
  74. #include "graph/passes/prune_pass.h"
  75. #include "graph/passes/ref_identity_delete_op_pass.h"
  76. #include "graph/passes/replace_with_empty_const_pass.h"
  77. #include "graph/passes/reshape_recovery_pass.h"
  78. #include "graph/passes/reshape_remove_pass.h"
  79. #include "graph/passes/same_transdata_breadth_fusion_pass.h"
  80. #include "graph/passes/subgraph_pass.h"
  81. #include "graph/passes/switch_data_edges_bypass.h"
  82. #include "graph/passes/switch_dead_branch_elimination.h"
  83. #include "graph/passes/switch_logic_remove_pass.h"
  84. #include "graph/passes/switch_to_stream_switch_pass.h"
  85. #include "graph/passes/transop_breadth_fusion_pass.h"
  86. #include "graph/passes/transop_depth_fusion_pass.h"
  87. #include "graph/passes/transop_nearby_allreduce_fusion_pass.h"
  88. #include "graph/passes/transop_symmetry_elimination_pass.h"
  89. #include "graph/passes/transop_without_reshape_fusion_pass.h"
  90. #include "graph/passes/transpose_transdata_pass.h"
  91. #include "graph/passes/variable_op_pass.h"
  92. #include "graph/passes/variable_prepare_op_pass.h"
  93. #include "graph/passes/variable_ref_delete_op_pass.h"
  94. #include "graph/passes/variable_ref_useless_control_out_delete_pass.h"
  95. #include "graph/passes/end_of_sequence_add_control_pass.h"
  96. #include "graph/passes/subexpression_migration_pass.h"
  97. #include "graph/passes/subgraph_const_migration_pass.h"
  98. #include "graph/passes/unused_args_clean_pass.h"
  99. #include "graph/passes/global_step_insert_pass.h"
  100. #include "graph/utils/tensor_adapter.h"
  101. #include "graph/utils/type_utils.h"
  102. #include "graph/graph_util.h"
  103. #include "graph/types.h"
  104. #include "inc/pass_manager.h"
  105. #include "init/gelib.h"
  106. namespace {
  107. const char *const kSummary = "Summary";
  108. const char *const kSave = "Save";
  109. const char *const kNetOutput = "NetOutput";
  110. const char *const kVariable = "Variable";
  111. const char *const kSend = "Send";
  112. const char *const kRecv = "Recv";
  113. const char *const kCheckPointForGetVar = "CheckPointGraphForGetVar";
  114. const char *const kCheckPointGraph = "checkpoint_graph";
  115. const char *const kVectorEngine = "VectorEngine";
  116. const char *const kAIcoreEngine = "AIcoreEngine";
  117. const char *const kOffOptimize = "off_optimize";
  118. bool IsTailingOptimization() {
  119. string is_tailing_optimization_option;
  120. auto ret = ge::GetContext().GetOption(ge::OPTION_EXEC_ENABLE_TAILING_OPTIMIZATION, is_tailing_optimization_option);
  121. if (ret == ge::GRAPH_SUCCESS) {
  122. GELOGI("Option ge.exec.isTailingOptimization is %s", is_tailing_optimization_option.c_str());
  123. // "1" means it's True from frontend option
  124. return is_tailing_optimization_option == "1";
  125. }
  126. GELOGW("OPTION_EXEC_ENABLE_TAILING_OPTIMIZATION not set, use BFSTopologicalSorting by default.");
  127. return false;
  128. }
  129. } // namespace
  130. namespace ge {
  131. GraphManager::GraphManager()
  132. : thread_run_flag_(false),
  133. graph_run_listener_(nullptr),
  134. init_flag_(false) {
  135. }
  136. Status GraphManager::Initialize(const std::map<string, string> &options) {
  137. if (init_flag_) {
  138. GELOGW("[Initialize] GraphManager already initialized.");
  139. return SUCCESS;
  140. }
  141. // malloc
  142. graph_run_listener_ = MakeShared<GraphModelListener>(sync_run_mutex_, condition_);
  143. if (graph_run_listener_ == nullptr) {
  144. GELOGE(MEMALLOC_FAILED, "Make shared failed");
  145. return MEMALLOC_FAILED;
  146. }
  147. // graph context
  148. graph_context_ = MakeShared<GraphContext>();
  149. if (graph_context_ == nullptr) {
  150. GELOGE(MEMALLOC_FAILED, "Make shared failed.");
  151. return MEMALLOC_FAILED;
  152. }
  153. // parse option parameters
  154. Status ret = ParseOptions(options);
  155. if (ret != SUCCESS) {
  156. GELOGE(ret, "[Initialize] parse options failed.");
  157. return ret;
  158. }
  159. ret = graph_context_->Initialize(options);
  160. if (ret != SUCCESS) {
  161. GELOGE(ret, "[Initialize] GraphContext initialize failed.");
  162. return ret;
  163. }
  164. graph_map_.clear();
  165. cache_helper_map_.clear();
  166. init_flag_ = true;
  167. thread_run_flag_ = true;
  168. prerun_thread_ = std::thread(GraphManager::PreRunThread, this);
  169. run_thread_ = std::thread(GraphManager::RunThread, this);
  170. return SUCCESS;
  171. }
  172. Status GraphManager::Finalize() {
  173. if (!init_flag_) {
  174. GELOGW("GraphManager has not been initialized.");
  175. return SUCCESS;
  176. }
  177. if (graph_executor_.FreeExecuteMemory() != SUCCESS) {
  178. GELOGW("Graph executor FreeExecuteMemory failed, resources may not be released correctly.");
  179. }
  180. StopQueue(this);
  181. if (prerun_thread_.joinable()) {
  182. prerun_thread_.join();
  183. }
  184. if (run_thread_.joinable()) {
  185. run_thread_.join();
  186. }
  187. // check graph whether running or not
  188. Status unload_model_ret = SUCCESS;
  189. Status ret;
  190. rtError_t rt_ret;
  191. for (auto iter = graph_map_.begin(); iter != graph_map_.end(); ++iter) {
  192. GraphNodePtr graph_node = iter->second;
  193. if (graph_node->GetRunFlag()) {
  194. GELOGW("[GraphManager] finalize failed, graphId=%u.", iter->first);
  195. unload_model_ret = GE_GRAPH_GRAPH_IS_RUNNING;
  196. continue;
  197. }
  198. // unload model
  199. auto ge_root_model = graph_node->GetGeRootModel();
  200. if (ge_root_model != nullptr && ge_root_model->GetModelId() != INVALID_MODEL_ID && graph_node->GetLoadFlag()) {
  201. rt_ret = rtSetDevice(GetContext().DeviceId());
  202. if (rt_ret != RT_ERROR_NONE) {
  203. GELOGW("[GraphManager] rtSetDevice failed, modelId=%u, graphId=%u.", ge_root_model->GetModelId(), iter->first);
  204. unload_model_ret = FAILED;
  205. continue;
  206. }
  207. ret = GraphLoader::UnloadModel(ge_root_model->GetModelId());
  208. if (ret != SUCCESS) {
  209. GELOGW("[GraphManager] unload model failed, modelId=%u, graphId=%u.", ge_root_model->GetModelId(), iter->first);
  210. unload_model_ret = ret;
  211. }
  212. rt_ret = rtDeviceReset(GetContext().DeviceId());
  213. if (rt_ret != RT_ERROR_NONE) {
  214. GELOGW("[GraphManager] rtDeviceReset failed, modelId=%u, graphId=%u.", ge_root_model->GetModelId(),
  215. iter->first);
  216. unload_model_ret = FAILED;
  217. continue;
  218. }
  219. }
  220. // clear analyzer saved info(graph level)
  221. auto compute_graph = GraphUtils::GetComputeGraph(*graph_node->GetGraph());
  222. GE_CHECK_NOTNULL(compute_graph);
  223. auto session_id = compute_graph->GetSessionID();
  224. auto graph_id = compute_graph->GetGraphID();
  225. Analyzer::GetInstance()->DestroyGraphJsonObject(session_id, graph_id);
  226. }
  227. graph_map_.clear();
  228. cache_helper_map_.clear();
  229. // graph context
  230. if (graph_context_ != nullptr) {
  231. Status ret_final = graph_context_->Finalize();
  232. if (ret_final != SUCCESS) {
  233. GELOGE(ret_final, "[GraphManager] graph context Finalize failed!");
  234. unload_model_ret = ret_final;
  235. }
  236. }
  237. init_flag_ = false;
  238. return unload_model_ret;
  239. }
  240. Status GraphManager::AddGraph(const GraphId &graph_id, const Graph &graph,
  241. const std::map<std::string, std::string> &options,
  242. const OmgContext &omg_context) {
  243. if (HasGraphNode(graph_id)) {
  244. GELOGE(GE_GRAPH_GRAPH_ALREADY_EXIST, "[GraphManager] graph exists, graph_id = %u.", graph_id);
  245. return GE_GRAPH_GRAPH_ALREADY_EXIST;
  246. }
  247. auto compute_graph = GraphUtils::GetComputeGraph(graph);
  248. if (compute_graph != nullptr) {
  249. compute_graph->SetGraphID(graph_id);
  250. bool graph_has_been_added = false;
  251. if (AttrUtils::GetBool(*compute_graph, ATTR_NAME_GRAPH_HAS_BEEN_ADDED, graph_has_been_added)
  252. && graph_has_been_added) {
  253. GELOGE(GE_GRAPH_GRAPH_ALREADY_EXIST,
  254. "[GraphManager] same graph object can not be added again, graph_id = %u.", graph_id);
  255. return GE_GRAPH_GRAPH_ALREADY_EXIST;
  256. }
  257. (void)AttrUtils::SetBool(*compute_graph, ATTR_NAME_GRAPH_HAS_BEEN_ADDED, true);
  258. } else {
  259. GELOGE(FAILED, "compute graph is null");
  260. return FAILED;
  261. }
  262. std::string session_graph_id;
  263. if (!AttrUtils::GetStr(*compute_graph, ATTR_NAME_SESSION_GRAPH_ID, session_graph_id) || session_graph_id.empty()) {
  264. session_graph_id = "-1_" + to_string(graph_id);
  265. if (!AttrUtils::SetStr(*compute_graph, ATTR_NAME_SESSION_GRAPH_ID, session_graph_id)) {
  266. GELOGW("Set attribute of compute graph failed.");
  267. }
  268. for (auto &subgraph : compute_graph->GetAllSubgraphs()) {
  269. (void)AttrUtils::SetStr(*subgraph, ATTR_NAME_SESSION_GRAPH_ID, session_graph_id);
  270. }
  271. GELOGW("Get graph session_graph_id attr failed, set session id to default value: [0]");
  272. }
  273. GraphNodePtr graph_node = MakeShared<ge::GraphNode>(graph_id);
  274. if (graph_node == nullptr) {
  275. GELOGE(FAILED, "GraphNode make shared failed");
  276. return FAILED;
  277. }
  278. std::shared_ptr<Graph> graph_ptr = MakeShared<ge::Graph>(graph);
  279. if (graph_ptr == nullptr) {
  280. GELOGE(FAILED, "GraphPtr make shared failed");
  281. return FAILED;
  282. }
  283. graph_node->SetGraph(graph_ptr);
  284. graph_node->SetOptions(options);
  285. AddGraphNode(graph_id, graph_node);
  286. AddLocalOmgContext(graph_id, omg_context);
  287. if (!options_.output_datatype.empty()) {
  288. GetLocalOmgContext().output_type = options_.output_datatype;
  289. }
  290. CompilerStages &stages = GetCompilerStages(graph_id);
  291. stages.preparer.SetOptions(options_);
  292. Status status = stages.optimizer.SetOptions(options_);
  293. if (status != SUCCESS) {
  294. GELOGE(status, "Graph optimizer set options failed.");
  295. return status;
  296. }
  297. stages.builder.SetOptions(options_);
  298. var_acc_ctrl_.AddGraph(graph_id, compute_graph);
  299. GELOGI("[GraphManager] add graph success, graph_id = %u.", graph_id);
  300. return SUCCESS;
  301. }
  302. Status GraphManager::MergeSubGraph(ComputeGraphPtr &compute_graph, const ge::ComputeGraphPtr &original_compute_graph,
  303. GraphId root_graph_id) {
  304. std::shared_ptr<GELib> instance_ptr = ge::GELib::GetInstance();
  305. GraphPartitioner &partitioner = GetCompilerStages(root_graph_id).partitioner;
  306. if (instance_ptr != nullptr && instance_ptr->InitFlag()) {
  307. Status ret = partitioner.MergeAfterSubGraphOptimization(compute_graph, original_compute_graph);
  308. if (ret != SUCCESS) {
  309. GELOGE(ret, "merge end and placeholder after subGraph optimization failed.");
  310. return FAILED;
  311. }
  312. Status ret_topo = compute_graph->TopologicalSorting();
  313. if (ret_topo != SUCCESS) {
  314. GELOGE(ret_topo, "[GraphManager]: TopologicalSorting the merged graph failed.");
  315. return ret_topo;
  316. }
  317. } else {
  318. auto subgraph_list = partitioner.GetSubGraphMap();
  319. if (subgraph_list.find(original_compute_graph) != subgraph_list.end() &&
  320. !subgraph_list[original_compute_graph].empty() && subgraph_list[original_compute_graph][0] != nullptr) {
  321. compute_graph = subgraph_list[original_compute_graph][0]->GetSubGraph();
  322. }
  323. }
  324. return SUCCESS;
  325. }
  326. Status GraphManager::CopySubGraphAndMarkFusion(const ComputeGraphPtr &compute_graph,
  327. Graph2SubGraphInfoList &sub_graph_map,
  328. std::unordered_map<std::string, ComputeGraphPtr> &copy_graphs) {
  329. GE_CHECK_NOTNULL(compute_graph);
  330. vector<ComputeGraphPtr> old_compute_graphs;
  331. const auto &root_subgraph_list = sub_graph_map[compute_graph];
  332. for (const auto &subgraph : root_subgraph_list) {
  333. old_compute_graphs.emplace_back(subgraph->GetSubGraph());
  334. }
  335. for (const auto &function_graph : compute_graph->GetAllSubgraphs()) {
  336. const auto &subgraph_list = sub_graph_map[function_graph];
  337. for (const auto &subgraph : subgraph_list) {
  338. old_compute_graphs.emplace_back(subgraph->GetSubGraph());
  339. }
  340. }
  341. for (const auto &old_compute_graph : old_compute_graphs) {
  342. std::vector<NodePtr> input_nodes;
  343. std::vector<NodePtr> output_nodes;
  344. ComputeGraphPtr new_compute_graph = GraphUtils::CloneGraph(old_compute_graph, "", input_nodes, output_nodes);
  345. if (new_compute_graph == nullptr) {
  346. GELOGE(INTERNAL_ERROR, "Clone graph failed.");
  347. return INTERNAL_ERROR;
  348. }
  349. copy_graphs.emplace(old_compute_graph->GetName(), new_compute_graph);
  350. if (!AttrUtils::SetBool(old_compute_graph, ATTR_NAME_NEED_LX_FUSION, true)) {
  351. GELOGE(INTERNAL_ERROR, "Set attr lx_fusion to graph failed.");
  352. return INTERNAL_ERROR;
  353. }
  354. }
  355. GELOGI("Copy %zu graphs successfully.", copy_graphs.size());
  356. return SUCCESS;
  357. }
  358. Status GraphManager::OptimizeSubGraphWithMultiThreads(ComputeGraphPtr compute_graph,
  359. Graph2SubGraphInfoList &sub_graph_map,
  360. uint64_t session_id) {
  361. GE_CHECK_NOTNULL(compute_graph);
  362. // use default 16 multi thread
  363. const uint32_t thread_num = 16;
  364. ThreadPool executor(thread_num);
  365. std::vector<std::future<Status>> vector_future;
  366. const auto &root_subgraph_list = sub_graph_map[compute_graph];
  367. std::string op_compile_strategy;
  368. (void)AttrUtils::GetStr(compute_graph, ATTR_NAME_OP_COMPILE_STRATEGY, op_compile_strategy);
  369. GELOGI("OptimizeSubGraphWithMultiThreads Process op_compile_strategy:%s", op_compile_strategy.c_str());
  370. for (const auto &subgraph : root_subgraph_list) {
  371. if (!op_compile_strategy.empty()) {
  372. (void) AttrUtils::SetStr(subgraph->GetSubGraph(), ATTR_NAME_OP_COMPILE_STRATEGY, op_compile_strategy);
  373. }
  374. std::future<Status> f = executor.commit(GraphManager::ProcessSubGraphWithMultiThreads, this,
  375. compute_graph->GetGraphID(), subgraph, session_id, GetThreadLocalContext());
  376. if (!f.valid()) {
  377. GELOGE(FAILED, "Future is invalid");
  378. return FAILED;
  379. }
  380. vector_future.emplace_back(std::move(f));
  381. }
  382. for (auto &function_graph : compute_graph->GetAllSubgraphs()) {
  383. auto subgraph_list = sub_graph_map[function_graph];
  384. for (const auto &subgraph : subgraph_list) {
  385. if (!op_compile_strategy.empty()) {
  386. (void) AttrUtils::SetStr(subgraph->GetSubGraph(), ATTR_NAME_OP_COMPILE_STRATEGY, op_compile_strategy);
  387. }
  388. std::future<Status> f = executor.commit(GraphManager::ProcessSubGraphWithMultiThreads, this,
  389. compute_graph->GetGraphID(), subgraph, session_id,
  390. GetThreadLocalContext());
  391. if (!f.valid()) {
  392. GELOGE(FAILED, "Future is invalid");
  393. return FAILED;
  394. }
  395. vector_future.emplace_back(std::move(f));
  396. }
  397. }
  398. GELOGI("All sub graph num is %zu", vector_future.size());
  399. for (size_t i = 0; i < vector_future.size(); ++i) {
  400. Status ret_status = vector_future[i].get();
  401. if (ret_status != SUCCESS) {
  402. GELOGE(ret_status, "subgraph %zu optimize failed", i);
  403. return ret_status;
  404. }
  405. }
  406. return SUCCESS;
  407. }
  408. bool GraphManager::CheckAllFusionOptimizeSuccess(const ComputeGraphPtr &compute_graph,
  409. Graph2SubGraphInfoList &sub_graph_map) {
  410. if (compute_graph == nullptr) {
  411. GELOGE(PARAM_INVALID, "Input param compute_graph is nullptr.");
  412. return false;
  413. }
  414. /// 1. FE will set attr optimize_group with true(false) while lx fusion is success(fail);
  415. /// 2. FE will not set attr optimize_group while fe.ini set l2fusion enable false;
  416. /// 3. Other engine will not set attr optimize_group.
  417. const auto &root_subgraph_list = sub_graph_map[compute_graph];
  418. for (const auto &subgraph : root_subgraph_list) {
  419. bool optimize_group = true;
  420. (void) AttrUtils::GetBool(subgraph->GetSubGraph(), ATTR_NAME_OPTIMIZE_GROUP, optimize_group);
  421. if (!optimize_group) {
  422. GELOGW("Run lx optimize for subgraph:%s failed.", subgraph->GetSubGraph()->GetName().c_str());
  423. return false;
  424. }
  425. }
  426. for (auto &function_graph : compute_graph->GetAllSubgraphs()) {
  427. const auto &subgraph_list = sub_graph_map[function_graph];
  428. for (const auto &subgraph : subgraph_list) {
  429. bool optimize_group = true;
  430. (void) AttrUtils::GetBool(subgraph->GetSubGraph(), ATTR_NAME_OPTIMIZE_GROUP, optimize_group);
  431. if (!optimize_group) {
  432. GELOGW("Run lx optimize for subgraph:%s failed.", subgraph->GetSubGraph()->GetName().c_str());
  433. return false;
  434. }
  435. }
  436. }
  437. GELOGI("All subgraph are optimized successfully, no need to reuse buffer optimize.");
  438. return true;
  439. }
  440. Status GraphManager::ReplaceSubgraphWithOriGraph(const ComputeGraphPtr &compute_graph,
  441. Graph2SubGraphInfoList &sub_graph_map,
  442. std::unordered_map<std::string, ComputeGraphPtr> &copy_graphs) {
  443. GE_CHECK_NOTNULL(compute_graph);
  444. const auto &root_subgraph_list = sub_graph_map[compute_graph];
  445. for (const auto &subgraph : root_subgraph_list) {
  446. auto iter = copy_graphs.find(subgraph->GetSubGraph()->GetName());
  447. if (iter == copy_graphs.end()) {
  448. GELOGE(FAILED, "Can not find subgraph:%s in copy graphs.", subgraph->GetSubGraph()->GetName().c_str());
  449. return FAILED;
  450. }
  451. subgraph->SetSubGraph(iter->second);
  452. }
  453. for (auto &function_graph : compute_graph->GetAllSubgraphs()) {
  454. const auto &subgraph_list = sub_graph_map[function_graph];
  455. for (const auto &subgraph : subgraph_list) {
  456. auto iter = copy_graphs.find(subgraph->GetSubGraph()->GetName());
  457. if (iter == copy_graphs.end()) {
  458. GELOGE(FAILED, "Can not find subgraph:%s in copy graphs.", subgraph->GetSubGraph()->GetName().c_str());
  459. return FAILED;
  460. }
  461. subgraph->SetSubGraph(iter->second);
  462. }
  463. }
  464. GELOGI("All subgraphs are successfully replaced.");
  465. return SUCCESS;
  466. }
  467. Status GraphManager::SetSubgraph(uint64_t session_id, ComputeGraphPtr compute_graph, GraphPartitioner &partitioner) {
  468. GE_CHECK_NOTNULL(compute_graph);
  469. auto sub_graph_map = partitioner.GetSubGraphMap();
  470. std::string buffer_optimize;
  471. graphStatus graph_status = ge::GetContext().GetOption(BUFFER_OPTIMIZE, buffer_optimize);
  472. bool need_lx_fusion = (graph_status == GRAPH_SUCCESS) && (buffer_optimize != kOffOptimize);
  473. if (options_.build_mode.empty() && need_lx_fusion) {
  474. GELOGI("Enter normal mode with buffer_optimize:%s.", buffer_optimize.c_str());
  475. /// 1. Copy subgraph for buffer optimize while lx fusion failed.
  476. /// 2. Set graph with attr "lx_fusion" for fusion optimize.
  477. std::unordered_map<std::string, ComputeGraphPtr> copy_graphs;
  478. GE_TIMESTAMP_START(CopySubGraphAndMarkFusion);
  479. Status ret = CopySubGraphAndMarkFusion(compute_graph, sub_graph_map, copy_graphs);
  480. GE_TIMESTAMP_EVENT_END(CopySubGraphAndMarkFusion, "SetSubgraph:CopySubGraphAndMarkFusion");
  481. if (ret != SUCCESS) {
  482. GELOGE(ret, "CopySubGraphAndMarkFusion failed.");
  483. return ret;
  484. }
  485. // Multiply optimize subgraph with lx fusion
  486. ret = OptimizeSubGraphWithMultiThreads(compute_graph, sub_graph_map, session_id);
  487. if (ret != SUCCESS) {
  488. GELOGE(ret, "Multiply optimize subgraph with lx fusion failed.");
  489. return ret;
  490. }
  491. // Check whether all subgraph lx fusion success
  492. GE_TIMESTAMP_START(CheckAllFusionOptimizeSuccess);
  493. if (CheckAllFusionOptimizeSuccess(compute_graph, sub_graph_map)) {
  494. GE_TIMESTAMP_EVENT_END(CheckAllFusionOptimizeSuccess, "SetSubgraph:CheckAllFusionOptimizeSuccess");
  495. return SUCCESS;
  496. }
  497. // Replace subgraph with original graph for lx buffer
  498. ret = ReplaceSubgraphWithOriGraph(compute_graph, sub_graph_map, copy_graphs);
  499. if (ret != SUCCESS) {
  500. GELOGE(ret, "Replace subgraph with original graph failed.");
  501. return ret;
  502. }
  503. // Multiply optimize subgraph with lx buffer
  504. ret = OptimizeSubGraphWithMultiThreads(compute_graph, sub_graph_map, session_id);
  505. if (ret != SUCCESS) {
  506. GELOGE(ret, "Multiply optimize subgraph with lx buffer failed.");
  507. return ret;
  508. }
  509. } else {
  510. /// Multiply optimize subgraph:
  511. /// 1. run lx buffer while build_mode is normal and buffer_optimize is empty or "off_optimize";
  512. /// 2. run lx fusion or buffer according build_mode and build_step in fe.
  513. GELOGI("Directly optimize subgraph with build mode:%s, and step:%s, buffer_optimize:%s.",
  514. options_.build_mode.c_str(),
  515. options_.build_step.c_str(),
  516. buffer_optimize.c_str());
  517. Status ret = OptimizeSubGraphWithMultiThreads(compute_graph, sub_graph_map, session_id);
  518. if (ret != SUCCESS) {
  519. GELOGE(ret, "Multiply optimize subgraph with lx buffer");
  520. return ret;
  521. }
  522. }
  523. return SUCCESS;
  524. }
  525. #define GM_RUN_AND_DUMP_PERF(name, func, ...) \
  526. do { \
  527. GE_RUN_PERF(GraphManager, func, __VA_ARGS__); \
  528. GE_DUMP(compute_graph, "PreRunAfter" name); \
  529. GELOGI("Run %s on graph %s(%u) success.", name, compute_graph->GetName().c_str(), graph_node->GetGraphId()); \
  530. } while (0)
  531. Status GraphManager::PreRunOptimizeOriginalGraph(const GraphNodePtr &graph_node, const std::vector<GeTensor> &inputs,
  532. ge::ComputeGraphPtr &compute_graph, uint64_t session_id) {
  533. GE_CHECK_NOTNULL(graph_node);
  534. GE_CHECK_NOTNULL(compute_graph);
  535. CompilerStages &stages = GetCompilerStages(graph_node->GetGraphId());
  536. GM_RUN_AND_DUMP_PERF("OptimizeGraphPrepare", stages.optimizer.OptimizeOriginalGraphForQuantize, compute_graph);
  537. GM_RUN_AND_DUMP_PERF("HandleSummaryOp", stages.optimizer.HandleSummaryOp, compute_graph);
  538. GM_RUN_AND_DUMP_PERF("Prepare", stages.preparer.PrepareDynShape, graph_node->GetGraph(), inputs, compute_graph,
  539. session_id);
  540. GM_RUN_AND_DUMP_PERF("OptimizeOriginalGraph", stages.optimizer.OptimizeOriginalGraph, compute_graph);
  541. GM_RUN_AND_DUMP_PERF("PrepareRunningFormatRefiner", stages.preparer.PrepareRunningFormatRefiner);
  542. GM_RUN_AND_DUMP_PERF("RefineRunningFormat", stages.optimizer.OptimizeOriginalGraphJudgeInsert, compute_graph);
  543. GM_RUN_AND_DUMP_PERF("SubexpressionMigration", SubexpressionMigration, compute_graph);
  544. GE_RUN(GraphManager, stages.preparer.RecordAIPPInfo, compute_graph);
  545. if (IsTailingOptimization()) {
  546. GM_RUN_AND_DUMP_PERF("OptimizeSwitchOp", stages.preparer.SwitchOpOptimize, compute_graph);
  547. }
  548. GM_RUN_AND_DUMP_PERF("Optimize1", OptimizeStage1, compute_graph);
  549. GM_RUN_AND_DUMP_PERF("InferShape2", compute_graph->InferShapeInNeed);
  550. PassManager graph_pass;
  551. GE_CHK_STATUS_RET(graph_pass.AddPass("PreRun::CtrlEdgeTransferPass", new (std::nothrow) CtrlEdgeTransferPass))
  552. GE_CHK_STATUS_RET(graph_pass.Run(compute_graph));
  553. GE_CHK_STATUS_RET(stages.optimizer.IdentifyReference(compute_graph), "Identify reference failed.");
  554. GELOGI("PreRun:PreRunOptimizeOriginalGraph success.");
  555. return SUCCESS;
  556. }
  557. Status GraphManager::PreRunOptimizeSubGraph(const GraphNodePtr &graph_node,
  558. ge::ComputeGraphPtr &compute_graph,
  559. uint64_t session_id) {
  560. GE_CHECK_NOTNULL(graph_node);
  561. GE_CHECK_NOTNULL(compute_graph);
  562. GM_RUN_AND_DUMP_PERF("OptimizeSubgraph", OptimizeSubgraph, graph_node, compute_graph, session_id);
  563. // Dump graph to tuning path
  564. if (options_.build_mode == BUILD_MODE_TUNING && options_.build_step == BUILD_STEP_AFTER_UB_MATCH) {
  565. std::string tuning_path;
  566. (void) GetContext().GetOption(TUNING_PATH, tuning_path);
  567. GELOGI("Dump path:%s.", tuning_path.c_str());
  568. GraphUtils::DumpGEGraph(compute_graph, "", true, tuning_path);
  569. }
  570. GELOGI("PreRun:PreRunOptimizeSubGraph success.");
  571. return SUCCESS;
  572. }
  573. Status GraphManager::PreRunAfterOptimizeSubGraph(const GraphNodePtr &graph_node, ComputeGraphPtr &compute_graph,
  574. GeRootModelPtr &ge_root_model, uint64_t session_id) {
  575. GE_CHECK_NOTNULL(graph_node);
  576. GE_CHECK_NOTNULL(compute_graph);
  577. GM_RUN_AND_DUMP_PERF("Optimize2", OptimizeStage2, compute_graph);
  578. GM_RUN_AND_DUMP_PERF("OptimizeGraphBeforeBuildForRts",
  579. GetCompilerStages(graph_node->GetGraphId()).optimizer.OptimizeGraphBeforeBuildForRts,
  580. compute_graph);
  581. GM_RUN_AND_DUMP_PERF("Build", Build, graph_node, compute_graph, ge_root_model, session_id);
  582. GELOGI("PreRun:PreRunAfterOptimizeSubGraph success.");
  583. return SUCCESS;
  584. }
  585. Status GraphManager::SetRtContext(rtContext_t rt_context, rtCtxMode_t mode, uint64_t session_id, uint32_t graph_id) {
  586. GELOGI("set rt_context, session id: %lu, graph id: %u, mode %d, device id:%u.", session_id, graph_id,
  587. static_cast<int>(mode), ge::GetContext().DeviceId());
  588. rtError_t rt_ret = rtCtxCreate(&rt_context, mode, ge::GetContext().DeviceId());
  589. if (rt_ret != RT_ERROR_NONE) {
  590. GELOGE(FAILED, "Call rt api failed, ret: 0x%X", rt_ret);
  591. return FAILED;
  592. }
  593. rt_ret = rtCtxSetCurrent(rt_context);
  594. if (rt_ret != RT_ERROR_NONE) {
  595. GELOGE(FAILED, "Call rt api failed, ret: 0x%X", rt_ret);
  596. return FAILED;
  597. }
  598. RtContextUtil::GetInstance().AddRtContext(session_id, graph_id, rt_context);
  599. return SUCCESS;
  600. }
  601. Status GraphManager::PreRun(const GraphNodePtr &graph_node, const std::vector<GeTensor> &inputs,
  602. GeRootModelPtr &ge_root_model, uint64_t session_id) {
  603. GE_CHECK_NOTNULL(graph_node);
  604. GE_CHECK_NOTNULL(graph_node->GetGraph());
  605. auto compute_graph = GraphUtils::GetComputeGraph(*graph_node->GetGraph());
  606. GE_CHECK_NOTNULL(compute_graph);
  607. compute_graph->SetSessionID(session_id);
  608. auto analyzer_instance = Analyzer::GetInstance();
  609. GE_CHK_STATUS_RET(analyzer_instance->BuildJsonObject(session_id, compute_graph->GetGraphID()),
  610. "BuildJsonObject Failed")
  611. GEEVENT("PreRun start, graph node size %zu, session id %lu, graph id %u, graph name %s",
  612. compute_graph->GetDirectNodesSize(), session_id, compute_graph->GetGraphID(),
  613. compute_graph->GetName().c_str());
  614. GE_DUMP(compute_graph, "PreRunBegin");
  615. // rtContext_t
  616. Status ret = SetRtContext(rtContext_t(), RT_CTX_GEN_MODE, session_id, compute_graph->GetGraphID());
  617. if (ret != SUCCESS) {
  618. GELOGE(ret, "Set rt context failed.");
  619. return ret;
  620. }
  621. /// 1. BUILD_MODE_TUNING with BUILD_STEP_AFTER_UB_MATCH no need PreRunOptimizeOriginalGraph;
  622. /// 2. BUILD_MODE_TUNING with BUILD_STEP_AFTER_MERGE no need PreRunOptimizeOriginalGraph.
  623. /// 3. BUILD_MODE_TUNING with BUILD_STEP_AFTER_BUILDER_SUB no need PreRunOptimizeOriginalGraph.
  624. bool run_optimize_original_graph = !((options_.build_mode == BUILD_MODE_TUNING) &&
  625. (options_.build_step == BUILD_STEP_AFTER_UB_MATCH ||
  626. options_.build_step == BUILD_STEP_AFTER_MERGE ||
  627. options_.build_step == BUILD_STEP_AFTER_BUILDER_SUB));
  628. if (run_optimize_original_graph) {
  629. Status ret = PreRunOptimizeOriginalGraph(graph_node, inputs, compute_graph, session_id);
  630. if (ret != SUCCESS) {
  631. GELOGE(ret, "Run PreRunOptimizeOriginalGraph failed for graph:%s.", compute_graph->GetName().c_str());
  632. return ret;
  633. }
  634. }
  635. // BUILD_MODE_TUNING with BUILD_STEP_AFTER_MERGE no need PreRunOptimizeSubGraph.
  636. bool run_optimize_subgraph =
  637. !((options_.build_mode == BUILD_MODE_TUNING) && (options_.build_step == BUILD_STEP_AFTER_MERGE));
  638. if (run_optimize_subgraph) {
  639. Status ret = PreRunOptimizeSubGraph(graph_node, compute_graph, session_id);
  640. if (ret != SUCCESS) {
  641. GELOGE(ret, "Run PreRunOptimizeSubGraph failed for graph:%s.", compute_graph->GetName().c_str());
  642. return ret;
  643. }
  644. }
  645. /// 1. BUILD_MODE_TUNING with BUILD_STEP_BEFORE_UB_MATCH no need PreRunAfterOptimizeSubGraph;
  646. /// 2. BUILD_MODE_TUNING with BUILD_STEP_AFTER_BUILDER no need PreRunAfterOptimizeSubGraph.
  647. /// 3. BUILD_MODE_TUNING with BUILD_STEP_AFTER_BUILDER_SUB no need PreRunAfterOptimizeSubGraph.
  648. bool run_after_optimize_subgraph = !((options_.build_mode == BUILD_MODE_TUNING) &&
  649. (options_.build_step == BUILD_STEP_BEFORE_UB_MATCH ||
  650. options_.build_step == BUILD_STEP_AFTER_BUILDER ||
  651. options_.build_step == BUILD_STEP_AFTER_BUILDER_SUB));
  652. if (run_after_optimize_subgraph) {
  653. Status ret = PreRunAfterOptimizeSubGraph(graph_node, compute_graph, ge_root_model, session_id);
  654. if (ret != SUCCESS) {
  655. GELOGE(ret, "Run PreRunAfterOptimizeSubGraph failed for graph:%s.", compute_graph->GetName().c_str());
  656. return ret;
  657. }
  658. }
  659. // when set incre build, save om model and var manager
  660. GeModelPtr ge_model = nullptr;
  661. auto save_ret = SaveCacheAfterBuild(graph_node->GetGraphId(), compute_graph, ge_model);
  662. if (save_ret != SUCCESS) {
  663. GELOGW("Fail to save cache.");
  664. }
  665. GEEVENT("[GEPERFTRACE] GE PreRun End");
  666. return SUCCESS;
  667. }
  668. Status GraphManager::SubexpressionMigration(ComputeGraphPtr &compute_graph) {
  669. PassManager pass_manager;
  670. GE_CHK_STATUS_RET(pass_manager.AddPass("SubexpressionMigrationPass", new (std::nothrow) SubexpressionMigrationPass));
  671. GE_CHK_STATUS_RET(pass_manager.AddPass("UnusedArgsCleanPass", new (std::nothrow) UnusedArgsCleanPass));
  672. GE_TIMESTAMP_START(SubexpressionMigrationPass);
  673. auto ret = pass_manager.Run(compute_graph);
  674. GE_TIMESTAMP_END(SubexpressionMigrationPass, "GraphManager::SubexpressionMigration");
  675. if (ret != SUCCESS && ret != NOT_CHANGED) {
  676. GELOGE(ret, "Run SubexpressionMigrationPass failed, ret:%u.", ret);
  677. return ret;
  678. }
  679. return SUCCESS;
  680. }
  681. Status GraphManager::StartForRunGraph(const GraphNodePtr &graph_node, const std::vector<GeTensor> &inputs,
  682. GeRootModelPtr &ge_root_model, uint64_t session_id) {
  683. // it will not execute graph prreprocess, optimize, parition, build if the graph has built successful.
  684. Status ret = SUCCESS;
  685. if (IsGraphNeedBuild(graph_node)) {
  686. if (graph_node->GetBuildFlag()) {
  687. GELOGE(PARAM_INVALID,
  688. "The graph %u need to re-build, you should remove it from GE "
  689. "first, then AddGraph again and rebuild it.",
  690. graph_node->GetGraphId());
  691. return PARAM_INVALID;
  692. }
  693. GeModelPtr ge_model = nullptr;
  694. // check need incre build.
  695. ret = IncreBuild(graph_node, ge_model);
  696. if (ret != SUCCESS) {
  697. ret = PreRun(graph_node, inputs, ge_root_model, session_id);
  698. // release rts generate context
  699. RtContextUtil::GetInstance().DestroyRtContexts(session_id, graph_node->GetGraphId());
  700. if (ret != SUCCESS) {
  701. GELOGE(ret, "PreRun Failed.");
  702. return ret;
  703. }
  704. }
  705. if (!graph_node->IsAsync()) {
  706. ret = LoadGraph(ge_root_model, graph_node);
  707. } else {
  708. ret = LoadGraphAsync(ge_root_model, graph_node);
  709. }
  710. if (ret != SUCCESS) {
  711. GELOGE(ret, "LoadGraph Failed.");
  712. return ret;
  713. }
  714. graph_node->SetBuildFlag(true);
  715. var_acc_ctrl_.SetGraphBuildEnd(graph_node->GetGraphId());
  716. } else if (!graph_node->GetLoadFlag()) {
  717. GeRootModelPtr ge_root_model_ptr = graph_node->GetGeRootModel();
  718. if (!graph_node->IsAsync()) {
  719. ret = LoadGraph(ge_root_model_ptr, graph_node);
  720. } else {
  721. ret = LoadGraphAsync(ge_root_model_ptr, graph_node);
  722. }
  723. if (ret != SUCCESS) {
  724. GELOGE(ret, "LoadGraph Failed.");
  725. return ret;
  726. }
  727. }
  728. return ret;
  729. }
  730. Status GraphManager::LoadGraph(const GeRootModelPtr &ge_root_model, const GraphNodePtr &graph_node) {
  731. GELOGI("[LoadGraph] run_graph_flag[%d], graph_id[%u]", options_.run_graph_flag, graph_node->GetGraphId());
  732. if (options_.run_graph_flag && ge_root_model != nullptr) {
  733. // synchronization run graph with model
  734. std::shared_ptr<GraphModelListener> model_listener = GetModelListener();
  735. ModelIdInfo model_id_info;
  736. bool is_unknown_shape = false;
  737. GE_CHK_STATUS_RET(ge_root_model->CheckIsUnknownShape(is_unknown_shape));
  738. if (!is_unknown_shape) {
  739. if (getenv(kEnvGeuseStaticMemory) != nullptr) {
  740. GELOGI("[LoadGraph] GE_USE_STATIC_MEMORY is seted.");
  741. } else {
  742. auto root_graph = ge_root_model->GetRootGraph();
  743. GE_CHECK_NOTNULL(root_graph);
  744. auto name_to_model = ge_root_model->GetSubgraphInstanceNameToModel();
  745. GeModelPtr ge_model = name_to_model[root_graph->GetName()];
  746. GE_CHK_STATUS_RET(CheckAndReleaseMemory(ge_model, graph_node));
  747. }
  748. }
  749. GE_TIMESTAMP_START(LoadGraph);
  750. Status ret = GraphLoader::LoadModelOnline(model_id_info.model_id, ge_root_model, model_listener);
  751. GE_TIMESTAMP_EVENT_END(LoadGraph, "GraphManager::LoadGraph");
  752. if (ret != SUCCESS) {
  753. GELOGE(ret, "[StartForRunGraph] LoadGraph Failed");
  754. graph_node->SetRunFlag(false);
  755. return ret;
  756. }
  757. graph_node->SetLoadFlag(true);
  758. ge_root_model->SetModelId(model_id_info.model_id);
  759. graph_node->SetGeRootModel(ge_root_model);
  760. }
  761. return SUCCESS;
  762. }
  763. Status GraphManager::LoadFromCache(const GraphNodePtr &graph_node, const ModelCacheHelperPtr &cache_helper,
  764. GeModelPtr &ge_model) {
  765. auto graph_id = graph_node->GetGraphId();
  766. auto ret = cache_helper->LoadOmModelFromCache(ge_model);
  767. if (ret != SUCCESS) {
  768. GELOGW("Fail to load om model from cache.");
  769. if (cache_helper->ClearCache(graph_id) != SUCCESS) {
  770. GELOGW("Fail to clear cache of graph %u.", graph_id);
  771. }
  772. return FAILED;
  773. }
  774. ret = cache_helper->RecoverVarManagerFromCache();
  775. if (ret != SUCCESS) {
  776. GELOGW("Fail to recover VarManager from cache.");
  777. if (cache_helper->ClearCache(graph_id) != SUCCESS) {
  778. GELOGW("Fail to clear cache of graph %u.", graph_id);
  779. }
  780. return FAILED;
  781. }
  782. ComputeGraphPtr compute_graph_in_model = GraphUtils::GetComputeGraph(ge_model->GetGraph());
  783. if (compute_graph_in_model == nullptr) {
  784. GELOGW("Error occurred when get compute graph from om, abandon.");
  785. return FAILED;
  786. } else {
  787. graph_node->SetComputeGraph(compute_graph_in_model);
  788. graph_node->SetGeModel(ge_model);
  789. GELOGI("Load model and graph form cache om file.");
  790. }
  791. return SUCCESS;
  792. }
  793. Status GraphManager::SaveCacheBeforeBuild(uint32_t graph_id, const ModelCacheHelperPtr &cache_helper) {
  794. auto ret = cache_helper->SaveCacheInfoToCache();
  795. if (ret != SUCCESS) {
  796. GELOGW("Fail to save cache info of graph[%d] to cache.", graph_id);
  797. return FAILED;
  798. }
  799. ret = cache_helper->SaveVarManagerToCache(true);
  800. if (ret != SUCCESS) {
  801. GELOGW("Fail to save var manager to cache.");
  802. cache_helper->ClearCache(graph_id);
  803. return FAILED;
  804. }
  805. GELOGI("Cache files have been saved.");
  806. return SUCCESS;
  807. }
  808. Status GraphManager::SaveCacheAfterBuild(uint32_t graph_id, ge::ComputeGraphPtr graph, GeModelPtr &ge_model) {
  809. std::shared_ptr<GELib> instance_ptr = ge::GELib::GetInstance();
  810. if ((instance_ptr == nullptr) || !instance_ptr->InitFlag()) {
  811. GELOGW("GELib not initialized.");
  812. return FAILED;
  813. }
  814. if (instance_ptr->IsIncreBuild()) {
  815. std::lock_guard<std::mutex> lock(member_mutex_);
  816. auto iter = cache_helper_map_.find(graph_id);
  817. if (iter == cache_helper_map_.end()) {
  818. GELOGW("Can not find ModelCacheHelper of graph[%u]", graph_id);
  819. return FAILED;
  820. } else {
  821. ModelCacheHelperPtr cache_helper = iter->second;
  822. auto ret = cache_helper->RefreshComputeGraph(graph);
  823. if (ret != SUCCESS) {
  824. cache_helper->ClearCache(graph_id);
  825. GELOGW("Fail to refresh cache helper's compute graph");
  826. return FAILED;
  827. }
  828. ret = cache_helper->SaveVarManagerToCache(false);
  829. if (ret != SUCCESS) {
  830. cache_helper->ClearCache(graph_id);
  831. GELOGW("Fail to save VarManager to cache");
  832. return FAILED;
  833. }
  834. ret = cache_helper->SaveOmModelToCache(ge_model);
  835. if (ret != SUCCESS) {
  836. cache_helper->ClearCache(graph_id);
  837. GELOGW("Fail to save om model to cache");
  838. return FAILED;
  839. }
  840. }
  841. }
  842. return SUCCESS;
  843. }
  844. Status GraphManager::InnerRunGraph(GraphNodePtr &graph_node, const GraphId &graph_id,
  845. const std::vector<GeTensor> &inputs, std::vector<GeTensor> &outputs) {
  846. Status ret = graph_executor_.SetCondition(&sync_run_mutex_, &condition_, graph_run_listener_);
  847. if (ret != SUCCESS) {
  848. GELOGE(GE_GRAPH_RUNGRAPH_FAILED, "[RunGraph] set condition failed, graph_id = %u.", graph_id);
  849. graph_node->SetRunFlag(false);
  850. return GE_GRAPH_RUNGRAPH_FAILED;
  851. }
  852. if (GetTrainFlag()) {
  853. GE_CHK_STATUS_RET(graph_executor_.SetGraphContext(GetGraphContext()));
  854. graph_executor_.SetTrainFlag(options_.train_graph_flag);
  855. }
  856. ret = graph_executor_.ExecuteGraph(graph_id, graph_node->GetGeRootModel(), inputs, outputs);
  857. graph_node->SetRunFlag(false);
  858. if (ret != SUCCESS) {
  859. GELOGE(ret, "[RunGraph] execute graph failed, graph_id = %u.", graph_id);
  860. return ret;
  861. }
  862. return SUCCESS;
  863. }
  864. Status GraphManager::RunGraph(const GraphId &graph_id, const std::vector<GeTensor> &inputs,
  865. std::vector<GeTensor> &outputs, uint64_t session_id) {
  866. std::lock_guard<std::mutex> lock(run_mutex_);
  867. GELOGI("[RunGraph] start to run graph, graph_id = %u, is_train_graph: %d", graph_id, GetTrainFlag());
  868. if (inputs.empty()) {
  869. GELOGI("[RunGraph] initialize sub graph has no inputs");
  870. }
  871. // find graph
  872. GraphNodePtr graph_node = nullptr;
  873. Status ret = GetGraphNode(graph_id, graph_node);
  874. if (ret != SUCCESS) {
  875. GELOGE(ret, "[RunGraph] graph not exist, graph_id = %u.", graph_id);
  876. return ret;
  877. }
  878. if (graph_node == nullptr) {
  879. GELOGE(GE_GRAPH_GRAPH_NODE_NULL, "[RunGraph] graph node is NULL, graph_id = %u.", graph_id);
  880. return GE_GRAPH_GRAPH_NODE_NULL;
  881. }
  882. if (graph_node->GetRunFlag()) {
  883. GELOGE(GE_GRAPH_ALREADY_RUNNING, "[RunGraph] graph already running, graph id = %u", graph_id);
  884. return GE_GRAPH_ALREADY_RUNNING;
  885. }
  886. UpdateLocalOmgContext(graph_id);
  887. // set graph's run flag
  888. graph_node->SetRunFlag(true);
  889. ComputeGraphPtr compute_graph_tmp = GraphUtils::GetComputeGraph(*(graph_node->GetGraph()));
  890. GE_IF_BOOL_EXEC(GetTrainFlag(),
  891. GE_IF_BOOL_EXEC(compute_graph_tmp == nullptr,
  892. GELOGE(GE_GRAPH_GRAPH_NODE_NULL,
  893. "[RunGraph] compute_graph_tmp is NULL, graph id = %u.", graph_id);
  894. return GE_GRAPH_GRAPH_NODE_NULL;))
  895. // when set incre build, add cache helper map
  896. AddModelCacheHelperToMap(graph_id, session_id, compute_graph_tmp);
  897. if (options_.local_fmk_op_flag) {
  898. GetCompilerStages(graph_id).optimizer.TranFrameOp(compute_graph_tmp);
  899. }
  900. GeRootModelPtr ge_root_model = nullptr;
  901. ret = StartForRunGraph(graph_node, inputs, ge_root_model, session_id);
  902. if (ret != SUCCESS) {
  903. GELOGE(ret, "[RunGraph] StartForRunGraph failed!");
  904. graph_node->SetRunFlag(false);
  905. return ret;
  906. }
  907. // excute graph
  908. ret = InnerRunGraph(graph_node, graph_id, inputs, outputs);
  909. if (ret != SUCCESS) {
  910. return ret;
  911. }
  912. if (GetTrainFlag()) {
  913. if (compute_graph_tmp->IsSummaryGraph()) {
  914. ret = SummaryHandle(graph_id, outputs);
  915. if (ret != SUCCESS) {
  916. GELOGE(ret, "[RunGraph] SummaryHandle failed!");
  917. }
  918. }
  919. GeRootModelPtr root_model = graph_node->GetGeRootModel();
  920. if (root_model != nullptr) {
  921. GELOGI("Start CheckpointHandle.");
  922. auto checkPointGraph = root_model->GetRootGraph();
  923. if (IsCheckpointGraph(checkPointGraph)) {
  924. ret = CheckpointHandle(graph_id, checkPointGraph, outputs);
  925. if (ret != SUCCESS) {
  926. GELOGE(ret, "[RunGraph] CheckpointHandle failed!");
  927. }
  928. }
  929. }
  930. }
  931. GELOGI("[RunGraph] run graph success, graph_id = %u.", graph_id);
  932. return SUCCESS;
  933. }
  934. Status GraphManager::GenerateInfershapeGraph(GraphId &graph_id) {
  935. GELOGI("[DumpInfershapeJson] start to DumpInfershapeJson graph, graph_id=%u.", graph_id);
  936. // find graph
  937. GraphNodePtr graph_node = nullptr;
  938. Status ret = GetGraphNode(graph_id, graph_node);
  939. if (ret != SUCCESS) {
  940. GELOGE(ret, "[BuildGraph] graph not exist, graph_id = %u.", graph_id);
  941. return ret;
  942. }
  943. if (graph_node == nullptr) {
  944. GELOGE(GE_GRAPH_GRAPH_NODE_NULL, "[BuildGraph] graph node is NULL, graphId = %u.", graph_id);
  945. return GE_GRAPH_GRAPH_NODE_NULL;
  946. }
  947. UpdateLocalOmgContext(graph_id);
  948. ret = GetCompilerStages(graph_id).preparer.GenerateInfershapeGraph(graph_node->GetGraph());
  949. if (ret != SUCCESS) {
  950. GELOGE(ret, "ATC dump infershape json failed");
  951. return ret;
  952. }
  953. GELOGI("[DumpInfershapeJson] Dump infershape json success, graph_id=%u.", graph_id);
  954. return ret;
  955. }
  956. Status GraphManager::BuildGraphForUnregisteredOp(const GraphId &graph_id, const std::vector<GeTensor> &inputs,
  957. GeRootModelPtr &ge_root_model, uint64_t session_id) {
  958. // find graph
  959. GraphNodePtr graph_node = nullptr;
  960. Status ret = GetGraphNode(graph_id, graph_node);
  961. if (ret != SUCCESS) {
  962. GELOGE(ret, "[BuildGraph] graph not exist, graph_id = %u.", graph_id);
  963. return ret;
  964. }
  965. if (graph_node == nullptr) {
  966. GELOGE(GE_GRAPH_GRAPH_NODE_NULL, "[BuildGraph] graph node is NULL, graphId = %u.", graph_id);
  967. return GE_GRAPH_GRAPH_NODE_NULL;
  968. }
  969. UpdateLocalOmgContext(graph_id);
  970. auto compute_graph = GraphUtils::GetComputeGraph(*graph_node->GetGraph());
  971. GE_CHECK_NOTNULL(compute_graph);
  972. GM_RUN_AND_DUMP_PERF("Prepare", GetCompilerStages(graph_id).preparer.PrepareDynShape, graph_node->GetGraph(), inputs,
  973. compute_graph, session_id);
  974. for (auto &node : compute_graph->GetAllNodes()) {
  975. OpDescPtr op_desc = node->GetOpDesc();
  976. GE_CHECK_NOTNULL(op_desc);
  977. if (op_desc->HasAttr(ATTR_NAME_UNREGST_OPPATH)) {
  978. vector<ge::NodePtr> node_vec = {node};
  979. auto instance_ptr = ge::GELib::GetInstance();
  980. if (instance_ptr == nullptr || !instance_ptr->InitFlag()) {
  981. GELOGE(GE_CLI_GE_NOT_INITIALIZED, "GE is not initialized");
  982. return GE_CLI_GE_NOT_INITIALIZED;
  983. }
  984. OpsKernelInfoStorePtr kernel_info =
  985. instance_ptr->OpsKernelManagerObj().GetOpsKernelInfoStore(op_desc->GetOpKernelLibName());
  986. if (kernel_info == nullptr) {
  987. GELOGE(FAILED, "Get op kernel info store failed");
  988. return FAILED;
  989. }
  990. ret = kernel_info->CompileOp(node_vec);
  991. if (ret != SUCCESS) {
  992. GELOGE(ret, "Compile op failed, op = %s, graph_id = %u.", op_desc->GetName().c_str(), graph_id);
  993. return ret;
  994. }
  995. }
  996. }
  997. GM_RUN_AND_DUMP_PERF("Build", Build, graph_node, compute_graph, ge_root_model, session_id);
  998. return SUCCESS;
  999. }
  1000. Status GraphManager::BuildGraph(const GraphId &graph_id, const std::vector<GeTensor> &inputs,
  1001. GeRootModelPtr &ge_root_model, uint64_t session_id, bool async) {
  1002. GELOGI("[BuildGraph] start to build graph, graph_id=%u.", graph_id);
  1003. if (inputs.empty()) {
  1004. GELOGW("[BuildGraph] BuildGraph warning: empty GeTensor inputs");
  1005. }
  1006. // find graph
  1007. GraphNodePtr graph_node = nullptr;
  1008. Status ret = GetGraphNode(graph_id, graph_node);
  1009. if (ret != SUCCESS) {
  1010. GELOGE(ret, "[BuildGraph] graph not exist, graph_id = %u.", graph_id);
  1011. return ret;
  1012. }
  1013. if (graph_node == nullptr) {
  1014. GELOGE(GE_GRAPH_GRAPH_NODE_NULL, "[BuildGraph] graph node is NULL, graphId = %u.", graph_id);
  1015. return GE_GRAPH_GRAPH_NODE_NULL;
  1016. }
  1017. if (graph_node->GetRunFlag()) {
  1018. GELOGE(GE_GRAPH_ALREADY_RUNNING, "[BuildGraph] graph already running, graph id = %u", graph_node->GetGraphId());
  1019. return GE_GRAPH_ALREADY_RUNNING;
  1020. }
  1021. UpdateLocalOmgContext(graph_id);
  1022. graph_node->SetAsync(async);
  1023. // set graph's run flag
  1024. graph_node->SetRunFlag(true);
  1025. ret = StartForRunGraph(graph_node, inputs, ge_root_model, session_id);
  1026. graph_node->SetRunFlag(false);
  1027. if (ret != SUCCESS) {
  1028. GELOGE(GE_GRAPH_PRERUN_FAILED, "[BuildGraph] StartForRunGraph failed!");
  1029. return GE_GRAPH_PRERUN_FAILED;
  1030. }
  1031. GELOGI("[BuildGraph] build graph success, graph_id=%u.", graph_id);
  1032. return ret;
  1033. }
  1034. ///
  1035. /// @ingroup ge_graph
  1036. /// @brief Save extra attribute to Model
  1037. /// @param [in] model: Model attribues will save to.
  1038. /// @param [in] type: type of OpDesc.
  1039. /// @param [in] attrs: attributes of OpDesc.
  1040. /// @param [in] inputs: inputs tensor.
  1041. /// @param [in] outputs: outputs tensor.
  1042. /// @return: Status
  1043. ///
  1044. Status GraphManager::SaveParams(ge::GeModel &model, const std::string &type, const std::map<string, GeAttrValue> &attrs,
  1045. const std::vector<GeTensor> &inputs, const std::vector<GeTensor> &outputs) {
  1046. GE_CHK_BOOL_EXEC(ge::AttrUtils::SetStr(&model, "ATTR_MODEL_OP_TYPE", type), return FAILED, "Set Op[%s] type fail",
  1047. type.c_str());
  1048. for (const auto &it : attrs) {
  1049. GE_CHK_BOOL_EXEC(model.SetAttr("ATTR_MODEL_" + it.first, it.second) == GRAPH_SUCCESS, return FAILED,
  1050. "Set OpDesc attribute[%s] fail", it.first.c_str());
  1051. }
  1052. GE_CHK_BOOL_EXEC(ge::AttrUtils::SetListTensor(&model, "ATTR_MODEL_TENSOR_INPUTS", inputs), return FAILED,
  1053. "Set Inputs tensor list fail");
  1054. GE_CHK_BOOL_EXEC(ge::AttrUtils::SetListTensor(&model, "ATTR_MODEL_TENSOR_OUTPUTS", outputs), return FAILED,
  1055. "Set Outputs tensor list fail");
  1056. return SUCCESS;
  1057. }
  1058. void GraphManager::RemoveModelCacheHelper(const GraphId &graph_id) {
  1059. std::lock_guard<std::mutex> lock(member_mutex_);
  1060. auto iter = cache_helper_map_.find(graph_id);
  1061. if (iter != cache_helper_map_.end()) {
  1062. cache_helper_map_.erase(iter);
  1063. } else {
  1064. GELOGW("[GraphManager] cache helper does not exist, graph_id = %u", graph_id);
  1065. }
  1066. }
  1067. bool GraphManager::CheckModelLoad(const GeRootModelPtr &ge_root_model, bool load_flag) {
  1068. return ((ge_root_model != nullptr) && (ge_root_model->GetModelId() != INVALID_MODEL_ID) && load_flag);
  1069. }
  1070. Status GraphManager::RemoveGraph(const GraphId &graph_id) {
  1071. GraphNodePtr graph_node = nullptr;
  1072. Status ret = GetGraphNode(graph_id, graph_node);
  1073. if (ret != SUCCESS) {
  1074. GELOGE(GE_GRAPH_GRAPH_NOT_EXIST, "[GraphManager] Id %u does not exists.", graph_id);
  1075. return GE_GRAPH_GRAPH_NOT_EXIST;
  1076. }
  1077. if ((graph_node == nullptr) || (graph_node->GetRunFlag())) {
  1078. GELOGE(GE_GRAPH_GRAPH_IS_RUNNING, "[GraphManager] Id %u is running, can't be deleted.", graph_id);
  1079. return GE_GRAPH_GRAPH_IS_RUNNING;
  1080. }
  1081. std::lock_guard<std::mutex> lock(unload_model_mutex_);
  1082. Status middle_ret;
  1083. rtError_t rt_ret;
  1084. const std::vector<SubGraphInfoPtr> &all_sub_graph = graph_node->GetAllSubGraph();
  1085. for (size_t i = 0; i < all_sub_graph.size(); ++i) {
  1086. // must free buffer firstly
  1087. middle_ret = all_sub_graph[i]->FreeInOutBuffer();
  1088. if (middle_ret != SUCCESS) {
  1089. GELOGE(middle_ret, "[GraphManager] RemoveGraph free mem failed, graph_id=%u.", graph_id);
  1090. ret = middle_ret;
  1091. }
  1092. if (all_sub_graph[i]->GeModelIsValid() && all_sub_graph[i]->GetModelIdInfo().model_id != INVALID_MODEL_ID) {
  1093. // unload model
  1094. GELOGI("UnloadModel via new ome.");
  1095. rt_ret = rtSetDevice(GetContext().DeviceId());
  1096. if (rt_ret != RT_ERROR_NONE) {
  1097. GELOGE(RT_FAILED, "[GraphManager:] rtSetDevice failed, modelId=%u, graphId=%u.",
  1098. all_sub_graph[i]->GetModelIdInfo().model_id, graph_id);
  1099. ret = FAILED;
  1100. continue;
  1101. }
  1102. middle_ret = GraphLoader::UnloadModel(all_sub_graph[i]->GetModelIdInfo().model_id);
  1103. if (middle_ret != SUCCESS) {
  1104. GELOGE(middle_ret, "[GraphManager:] unload model failed, modelId=%u, graph_id=%u.",
  1105. all_sub_graph[i]->GetModelIdInfo().model_id, graph_id);
  1106. ret = middle_ret;
  1107. }
  1108. rt_ret = rtDeviceReset(GetContext().DeviceId());
  1109. if (rt_ret != RT_ERROR_NONE) {
  1110. GELOGE(RT_FAILED, "[GraphManager:] unload model failed, modelId=%u, graphId=%u.",
  1111. all_sub_graph[i]->GetModelIdInfo().model_id, graph_id);
  1112. ret = FAILED;
  1113. }
  1114. }
  1115. }
  1116. var_acc_ctrl_.RemoveGraph(graph_id);
  1117. RemoveGraphNode(graph_id);
  1118. RemoveModelCacheHelper(graph_id);
  1119. auto ge_root_model = graph_node->GetGeRootModel();
  1120. if (CheckModelLoad(ge_root_model, graph_node->GetLoadFlag())) {
  1121. GELOGI("Unload model %u.", ge_root_model->GetModelId());
  1122. rt_ret = rtSetDevice(GetContext().DeviceId());
  1123. if (rt_ret != RT_ERROR_NONE) {
  1124. GELOGE(RT_FAILED, "[GraphManager:] rtSetDevice failed, modelId=%u, graphId=%u.", ge_root_model->GetModelId(),
  1125. graph_id);
  1126. return FAILED;
  1127. }
  1128. middle_ret = GraphLoader::UnloadModel(ge_root_model->GetModelId());
  1129. if (middle_ret != SUCCESS) {
  1130. GELOGE(middle_ret, "[GraphManager:] unload model failed, modelId=%u, graph_id=%u.", ge_root_model->GetModelId(),
  1131. graph_id);
  1132. ret = middle_ret;
  1133. }
  1134. rt_ret = rtDeviceReset(GetContext().DeviceId());
  1135. if (rt_ret != RT_ERROR_NONE) {
  1136. GELOGE(RT_FAILED, "[GraphManager:] rtDeviceReset failed, modelId=%u, graphId=%u.", ge_root_model->GetModelId(),
  1137. graph_id);
  1138. ret = FAILED;
  1139. }
  1140. }
  1141. RemoveCompilerStages(graph_id);
  1142. GE_CHK_STATUS_RET(ret, "[GraphManager:] Remove graph failed, graph_id=%u.", graph_id);
  1143. GELOGI("[GraphManager] remove graph success, graph_id=%u.", graph_id);
  1144. return SUCCESS;
  1145. }
  1146. Status GraphManager::ParseOptions(const std::map<std::string, std::string> &options) {
  1147. Status ret;
  1148. ParseOption(options, "ge.INPUT_NODES_SET_FP16", options_.input_nodes_set_fp16);
  1149. // parse streams max parallel num
  1150. ret = ParseOption(options, STREAM_MAX_PARALLEL_NUM, options_.stream_max_parallel_num);
  1151. if (ret != SUCCESS) {
  1152. GELOGE(GE_GRAPH_OPTIONS_INVALID,
  1153. "parse Key:%s value failed, it must be same format as "
  1154. "DNN_V100:2,DNN_HCCL:3",
  1155. STREAM_MAX_PARALLEL_NUM.c_str());
  1156. return GE_GRAPH_OPTIONS_INVALID;
  1157. }
  1158. // get stream num
  1159. ret = ParseOption(options, STREAM_NUM, options_.stream_num);
  1160. if ((ret != SUCCESS) || (options_.stream_num == 0)) {
  1161. GELOGE(GE_GRAPH_OPTIONS_INVALID, "Key:ge.stream_num, its value %d is invalid, must be not equal zero.",
  1162. options_.stream_num);
  1163. return GE_GRAPH_OPTIONS_INVALID;
  1164. }
  1165. // get perf level, its value please see enum PerfLevel
  1166. ret = ParseOption(options, PERF_LEVEL, options_.perf_level);
  1167. if ((ret != SUCCESS) || IsPerfLevelInvalid(options_.perf_level)) {
  1168. GELOGE(GE_GRAPH_OPTIONS_INVALID, "Key:ge.perfLevel, its value %d is invalid, must be enum PerfLevel type.",
  1169. options_.perf_level);
  1170. return GE_GRAPH_OPTIONS_INVALID;
  1171. }
  1172. // get encrypt mode
  1173. ret = ParseOption(options, ENCRYPT_MODE, options_.encrypt_mode);
  1174. if (ret != SUCCESS) {
  1175. GELOGE(GE_GRAPH_OPTIONS_INVALID, "Key:ge.encryptMode value invalid.");
  1176. return GE_GRAPH_OPTIONS_INVALID;
  1177. }
  1178. // get ek file
  1179. ParseOption(options, EK_FILE, options_.ek_file);
  1180. // get cert file
  1181. ParseOption(options, CERT_FILE, options_.cert_file);
  1182. // get hw key file
  1183. ParseOption(options, HW_KEY_FILE, options_.hw_key_file);
  1184. // get private file
  1185. ParseOption(options, PRIVATE_KEY_FILE, options_.private_key_file);
  1186. // get framework type, its value please see enum FrameworkType
  1187. ret = ParseOption(options, FRAMEWORK_TYPE, options_.framework_type);
  1188. if (ret != SUCCESS) {
  1189. // print error log in ParseOption
  1190. return GE_GRAPH_OPTIONS_INVALID;
  1191. }
  1192. // get calibration info file
  1193. ParseOption(options, CALIBRATION_CONF_FILE, options_.calibration_conf_file);
  1194. // get insert op info file
  1195. ParseOption(options, INSERT_OP_FILE, options_.insert_op_file);
  1196. // get output node name
  1197. ParseOption(options, OUTPUT_NODE_NAME, options_.output_node_name);
  1198. // get function bin path
  1199. ParseOption(options, "ge.func_bin_path", options_.func_bin_path);
  1200. // get core type
  1201. ParseOption(options, CORE_TYPE, options_.core_type);
  1202. // get weight compress flag
  1203. ret = ParseOption(options, COMPRESS_FLAG, options_.compress_flag);
  1204. if (ret != SUCCESS) {
  1205. GELOGE(GE_GRAPH_OPTIONS_INVALID, "Key:ge.compressFlag value is invalid, must be 0 or 1.");
  1206. return GE_GRAPH_OPTIONS_INVALID;
  1207. }
  1208. // ge.graphType.
  1209. options_.run_graph_flag = true;
  1210. ret = ParseOption(options, RUN_FLAG, options_.run_graph_flag);
  1211. if (ret != SUCCESS) {
  1212. GELOGE(GE_GRAPH_OPTIONS_INVALID, "Key:ge.runFlag value is invalid, must be 0 or 1.");
  1213. return GE_GRAPH_OPTIONS_INVALID;
  1214. }
  1215. // ge.graphType
  1216. ret = ParseTrainGraphFlag(options_.run_graph_flag, options_.train_graph_flag);
  1217. if (ret != SUCCESS) {
  1218. GELOGE(GE_GRAPH_OPTIONS_INVALID, "Key:ge.runFlag value is invalid");
  1219. return GE_GRAPH_OPTIONS_INVALID;
  1220. }
  1221. // parse FmkOp
  1222. options_.local_fmk_op_flag = false;
  1223. ret = ParseOption(options, LOCAL_FMKOP_FLAG, options_.local_fmk_op_flag);
  1224. if (ret != SUCCESS) {
  1225. GELOGE(GE_GRAPH_OPTIONS_INVALID, "Key:ge.localFmkopFlag value is invalid, must be 0 or 1.");
  1226. return GE_GRAPH_OPTIONS_INVALID;
  1227. }
  1228. options_.enable_print_op_pass = true;
  1229. ret = ParseOption(options, ENABLE_PRINT_OP_PASS, options_.enable_print_op_pass);
  1230. options_.is_single_op = false;
  1231. ret = ParseOption(options, SINGLE_OP_FLAG, options_.is_single_op);
  1232. GE_IF_BOOL_EXEC(ret != SUCCESS,
  1233. GELOGE(GE_GRAPH_OPTIONS_INVALID, "Key:ge.enablePrintOpPass value is invalid, must be 0 or 1.");
  1234. return GE_GRAPH_OPTIONS_INVALID);
  1235. // parse hcom parallel
  1236. options_.hcom_parallel = false;
  1237. ret = ParseOption(options, HCOM_PARALLEL, options_.hcom_parallel);
  1238. if (ret != SUCCESS) {
  1239. GELOGE(GE_GRAPH_OPTIONS_INVALID, "Key:ge.hcomParallel value is invalid, must be 0 or 1.");
  1240. return GE_GRAPH_OPTIONS_INVALID;
  1241. }
  1242. // net output node dataType
  1243. ParseOption(options, OUTPUT_DATATYPE, options_.output_datatype);
  1244. // Set save_original_model flag (ge.save_original_model)
  1245. ParseOption(options, SAVE_ORIGINAL_MODEL, options_.save_original_model);
  1246. GELOGI("Set save original model flag %s", options_.save_original_model.c_str());
  1247. // Original model file name
  1248. ParseOption(options, ORIGINAL_MODEL_FILE, options_.original_model_file);
  1249. // Set Build model and step
  1250. ParseOption(options, BUILD_MODE, options_.build_mode);
  1251. ParseOption(options, BUILD_STEP, options_.build_step);
  1252. return SUCCESS;
  1253. }
  1254. Status GraphManager::ParseTrainGraphFlag(bool &options, bool &option) {
  1255. std::shared_ptr<GELib> ge_instance_ptr = ge::GELib::GetInstance();
  1256. if (ge_instance_ptr == nullptr) {
  1257. GELOGW("[Initialize] set train_graph_flag_ to 0 when GE is not initialized or finalized.");
  1258. option = false;
  1259. } else if (!ge_instance_ptr->isTrainMode()) {
  1260. option = false;
  1261. } else { // ge_instance_ptr->isTrainMode() is true
  1262. if (!options) {
  1263. GELOGE(GE_GRAPH_OPTIONS_INVALID,
  1264. "Key:ge.runFlag, its value %d is invalid, it must be 1 when GElib::is_train_mode_ flag is 1", options);
  1265. return GE_GRAPH_OPTIONS_INVALID;
  1266. }
  1267. option = true;
  1268. }
  1269. return SUCCESS;
  1270. }
  1271. bool GraphManager::IsPerfLevelInvalid(int32_t perf_level) {
  1272. return ((perf_level != static_cast<int32_t>(GEN_TASK_WITHOUT_L2FUSION)) &&
  1273. (perf_level != static_cast<int32_t>(GEN_TASK_WITHOUT_FUSION)) && (perf_level != -1));
  1274. }
  1275. void GraphManager::ParseOption(const std::map<std::string, std::string> &options, const std::string &key,
  1276. std::string &option) {
  1277. auto iter = options.find(key);
  1278. if (iter != options.end()) {
  1279. option = iter->second;
  1280. }
  1281. }
  1282. Status GraphManager::ParseOption(const std::map<std::string, std::string> &options, const std::string &key,
  1283. bool &option) {
  1284. auto iter = options.find(key);
  1285. if (iter != options.end()) {
  1286. string flag = iter->second;
  1287. if (flag == "0") {
  1288. option = false;
  1289. } else if (flag == "1") {
  1290. option = true;
  1291. } else {
  1292. GELOGE(GE_GRAPH_OPTIONS_INVALID, "Key:%s, its value %s is invalid, it must be 0 or 1.", key.c_str(),
  1293. flag.c_str());
  1294. return GE_GRAPH_OPTIONS_INVALID;
  1295. }
  1296. }
  1297. return SUCCESS;
  1298. }
  1299. Status GraphManager::ParseOption(const std::map<std::string, std::string> &options, const std::string &key,
  1300. int &option) {
  1301. const int kDecimal = 10;
  1302. char *ptr = nullptr;
  1303. auto iter = options.find(key);
  1304. if (iter != options.end()) {
  1305. option = static_cast<int32_t>(std::strtol(iter->second.c_str(), &ptr, kDecimal));
  1306. if (ptr != nullptr && *ptr != '\0') {
  1307. GELOGE(GE_GRAPH_OPTIONS_INVALID, "Key:%s, its value %s is invalid, must be int32_t type.", key.c_str(),
  1308. iter->second.c_str());
  1309. return GE_GRAPH_OPTIONS_INVALID;
  1310. }
  1311. }
  1312. return SUCCESS;
  1313. }
  1314. void GraphManager::Trim(std::string &str) {
  1315. if (!str.empty()) {
  1316. auto it = str.find_first_not_of(" ");
  1317. if (it != std::string::npos) {
  1318. str.erase(0, it);
  1319. }
  1320. it = str.find_last_not_of(" ");
  1321. if (it != std::string::npos) {
  1322. str.erase(it + 1);
  1323. }
  1324. }
  1325. }
  1326. Status GraphManager::ParseOption(const std::map<std::string, std::string> &options, const std::string &key,
  1327. std::map<std::string, int> &option) {
  1328. auto iter = options.find(key);
  1329. if (iter == options.end()) {
  1330. return SUCCESS;
  1331. }
  1332. GELOGI("Start to parse %s", key.c_str());
  1333. option.clear();
  1334. std::string op_num = iter->second;
  1335. // split string by ','
  1336. std::vector<std::string> split;
  1337. std::istringstream f(op_num);
  1338. std::string str_tmp;
  1339. while (getline(f, str_tmp, ',')) {
  1340. split.push_back(str_tmp);
  1341. }
  1342. for (const std::string &engine_parallel : split) {
  1343. // split engine and num by :
  1344. size_t pos = engine_parallel.find(':');
  1345. if (pos == string::npos) {
  1346. GELOGE(GE_GRAPH_OPTIONS_INVALID,
  1347. "engine and num must be connected by :, "
  1348. "while your input is %s",
  1349. engine_parallel.c_str());
  1350. return GE_GRAPH_OPTIONS_INVALID;
  1351. }
  1352. std::string engine_name = engine_parallel.substr(0, pos);
  1353. std::string parallel_num = engine_parallel.substr(pos + 1);
  1354. Trim(engine_name);
  1355. Trim(parallel_num);
  1356. Status ret = CheckEngineName(engine_name, key, option);
  1357. if (ret != SUCCESS) {
  1358. GELOGE(GE_GRAPH_OPTIONS_INVALID, "check engine name : %s failed, ", engine_name.c_str());
  1359. return GE_GRAPH_OPTIONS_INVALID;
  1360. }
  1361. int num = 0;
  1362. ret = ParseParallelNum(parallel_num, key, num);
  1363. if (ret != SUCCESS) {
  1364. GELOGE(GE_GRAPH_OPTIONS_INVALID, "parse parallel num failed");
  1365. return GE_GRAPH_OPTIONS_INVALID;
  1366. }
  1367. option.insert(std::make_pair(engine_name, num));
  1368. }
  1369. GELOGI("Parse %s successfully", key.c_str());
  1370. return SUCCESS;
  1371. }
  1372. Status GraphManager::CheckEngineName(const std::string &engine_name, const std::string &key,
  1373. const std::map<std::string, int> &option) {
  1374. if (engine_name.empty()) {
  1375. GELOGE(GE_GRAPH_OPTIONS_INVALID, "engine name of %s is empty", key.c_str());
  1376. return GE_GRAPH_OPTIONS_INVALID;
  1377. }
  1378. // judge whether exist in engine list
  1379. if (!GELib::GetInstance()->DNNEngineManagerObj().IsEngineRegistered(engine_name)) {
  1380. GELOGW("engine : %s is not registered in %s", engine_name.c_str(), key.c_str());
  1381. }
  1382. auto it_stream_repeat = option.find(engine_name);
  1383. if (it_stream_repeat != option.end()) {
  1384. GELOGE(GE_GRAPH_OPTIONS_INVALID, "engine : %s of %s is repeated", engine_name.c_str(), key.c_str());
  1385. return GE_GRAPH_OPTIONS_INVALID;
  1386. }
  1387. return SUCCESS;
  1388. }
  1389. Status GraphManager::ParseParallelNum(const std::string &parallel_num, const std::string &key, int &num) {
  1390. if (parallel_num.empty()) {
  1391. GELOGE(GE_GRAPH_OPTIONS_INVALID, "parallel num of %s is empty", key.c_str());
  1392. return GE_GRAPH_OPTIONS_INVALID;
  1393. }
  1394. for (char c : parallel_num) {
  1395. if (!isdigit(c)) {
  1396. GELOGE(GE_GRAPH_OPTIONS_INVALID, "%s input is invalid ", key.c_str());
  1397. return GE_GRAPH_OPTIONS_INVALID;
  1398. }
  1399. }
  1400. try {
  1401. num = std::stoi(parallel_num);
  1402. } catch (std::invalid_argument &) {
  1403. GELOGE(GE_GRAPH_OPTIONS_INVALID, "parallel num : %s of %s is invalid argument", parallel_num.c_str(), key.c_str());
  1404. return GE_GRAPH_OPTIONS_INVALID;
  1405. } catch (std::out_of_range &) {
  1406. GELOGE(GE_GRAPH_OPTIONS_INVALID, "parallel num : %s of %s is out of range", parallel_num.c_str(), key.c_str());
  1407. return GE_GRAPH_OPTIONS_INVALID;
  1408. } catch (...) {
  1409. GELOGE(GE_GRAPH_OPTIONS_INVALID, "parallel num : %s of %s is invalid argument", parallel_num.c_str(), key.c_str());
  1410. return GE_GRAPH_OPTIONS_INVALID;
  1411. }
  1412. if (num < 1) {
  1413. GELOGE(GE_GRAPH_OPTIONS_INVALID, "parallel num : %s of %s must bigger than 0", parallel_num.c_str(), key.c_str());
  1414. return GE_GRAPH_OPTIONS_INVALID;
  1415. }
  1416. return SUCCESS;
  1417. }
  1418. void GraphManager::AddGraphNode(GraphId graph_id, const GraphNodePtr &graph_node) {
  1419. std::lock_guard<std::mutex> lock(member_mutex_);
  1420. graph_map_.emplace(graph_id, graph_node);
  1421. }
  1422. void GraphManager::RemoveGraphNode(GraphId graph_id) {
  1423. std::lock_guard<std::mutex> lock(member_mutex_);
  1424. graph_map_.erase(graph_id);
  1425. }
  1426. bool GraphManager::HasGraphNode(GraphId graph_id) {
  1427. std::lock_guard<std::mutex> lock(member_mutex_);
  1428. return graph_map_.find(graph_id) != graph_map_.end();
  1429. }
  1430. Status GraphManager::GetGraphNode(const GraphId &graph_id, GraphNodePtr &out) {
  1431. std::lock_guard<std::mutex> lock(member_mutex_);
  1432. auto iter = graph_map_.find(graph_id);
  1433. if (iter == graph_map_.end()) {
  1434. out = nullptr;
  1435. GELOGE(GE_GRAPH_GRAPH_NOT_EXIST, "[GraphManager] graph not exist, graph_id= %u.", graph_id);
  1436. return GE_GRAPH_GRAPH_NOT_EXIST;
  1437. }
  1438. out = iter->second;
  1439. return SUCCESS;
  1440. }
  1441. Status GraphManager::GetVariable(const std::string &name, Tensor &val) {
  1442. GeTensorPtr ge_tensor_ptr = TensorAdapter::AsGeTensorPtr(val);
  1443. GE_CHECK_NOTNULL(ge_tensor_ptr);
  1444. return GetGraphContext()->GetVariableTensor(name, *(ge_tensor_ptr.get()));
  1445. }
  1446. Status GraphManager::SummaryHandle(const GraphId &graph_id, std::vector<GeTensor> &outputs) {
  1447. std::vector<GeTensor> without_summary_outputs;
  1448. std::set<int> summary_output_index;
  1449. GELOGI("[GraphManager] SummaryHandle, outputsSize=%zu.", outputs.size());
  1450. const std::map<uint32_t, std::map<string, size_t>> &whole_summary_output_indexes =
  1451. GetCompilerStages(graph_id).optimizer.GetSummaryOutputIndexes();
  1452. if (whole_summary_output_indexes.find(graph_id) == whole_summary_output_indexes.end()) {
  1453. GELOGE(FAILED, "No Summary graph found in map.");
  1454. return FAILED;
  1455. }
  1456. const std::map<string, size_t> &summary_output_indexes = whole_summary_output_indexes.at(graph_id);
  1457. GELOGI("[GraphManager] SummaryHandle, summaryOutputIndexesSize=%zu.", summary_output_indexes.size());
  1458. std::map<string, Tensor> summary_results;
  1459. for (auto iter = summary_output_indexes.begin(); iter != summary_output_indexes.end(); ++iter) {
  1460. GELOGI("[GraphManager] SummaryHandle, summaryName=%s, outputIndex=%zu.", iter->first.c_str(), iter->second);
  1461. summary_results.emplace(iter->first, TensorAdapter::AsTensor(outputs.at(iter->second)));
  1462. summary_output_index.emplace(iter->second);
  1463. }
  1464. // remove summary data from outputs
  1465. if (!summary_output_index.empty()) {
  1466. for (size_t j = 0; j < outputs.size(); ++j) {
  1467. if (summary_output_index.count(j) == 0) {
  1468. without_summary_outputs.emplace_back(outputs.at(j));
  1469. }
  1470. }
  1471. outputs.swap(without_summary_outputs);
  1472. GELOGI("[GraphManager] SummaryHandle, after swap outputsSize=%zu.", outputs.size());
  1473. }
  1474. if (!summary_results.empty()) {
  1475. return PushSummaryData2ME(graph_id, summary_results);
  1476. }
  1477. return SUCCESS;
  1478. }
  1479. Status GraphManager::CheckpointHandle(const GraphId &graph_id, const ComputeGraphPtr &compute_graph,
  1480. const std::vector<GeTensor> &outputs) {
  1481. GELOGI("[GraphManager] CheckpointHandle, outputsSize=%zu.", outputs.size());
  1482. std::vector<InputOutputDescInfo> outputs_desc = graph_executor_.GetOutputsDesc();
  1483. GELOGI("[GraphManager] CheckpointHandle, outputsDescSize=%zu.", outputs_desc.size());
  1484. std::map<string, Tensor> save_results;
  1485. NodePtr netoutput = nullptr;
  1486. for (const auto &node : compute_graph->GetAllNodes()) {
  1487. if (node->GetType() == kNetOutput) {
  1488. netoutput = node;
  1489. break;
  1490. }
  1491. }
  1492. if (netoutput == nullptr) {
  1493. GELOGE(FAILED, "Netoutput is null.");
  1494. return FAILED;
  1495. }
  1496. for (const auto &in : netoutput->GetAllInDataAnchors()) {
  1497. std::string desc_name;
  1498. auto out_anchor = in->GetPeerOutAnchor();
  1499. if (out_anchor == nullptr) {
  1500. GELOGE(FAILED, "out_anchor is null.");
  1501. return FAILED;
  1502. }
  1503. ge::NodePtr peer_node = out_anchor->GetOwnerNode();
  1504. // find the variable node in graph
  1505. while (peer_node != nullptr && peer_node->GetType() != kVariable) {
  1506. if (peer_node->GetAllInDataAnchors().size() != 1) {
  1507. GELOGE(FAILED, "More than one prior nodes of peer_node %s in checkpoint Graph.", peer_node->GetName().c_str());
  1508. return FAILED;
  1509. }
  1510. auto peer_node_in = peer_node->GetAllInDataAnchors().at(0);
  1511. auto peer_node_out_anchor = peer_node_in->GetPeerOutAnchor();
  1512. if (peer_node_out_anchor != nullptr) {
  1513. peer_node = peer_node_out_anchor->GetOwnerNode();
  1514. if (peer_node->GetType() == kVariable) {
  1515. break;
  1516. }
  1517. }
  1518. }
  1519. if (peer_node == nullptr) {
  1520. GELOGE(FAILED, "No variable op found in one branch, checkpoint graph illegal.");
  1521. return FAILED;
  1522. }
  1523. desc_name = peer_node->GetName();
  1524. GELOGI("[GraphManager] CheckpointHandle, descName=%s.", desc_name.c_str());
  1525. if (in->GetIdx() >= static_cast<int>(outputs.size())) {
  1526. GELOGE(FAILED, "variable index out of range.");
  1527. return FAILED;
  1528. }
  1529. save_results.emplace(desc_name, TensorAdapter::AsTensor(outputs.at(in->GetIdx())));
  1530. }
  1531. if (!save_results.empty()) {
  1532. return PushSaveData2ME(graph_id, save_results);
  1533. }
  1534. return SUCCESS;
  1535. }
  1536. Status GraphManager::RegisterCallBackFunc(
  1537. const std::string &key,
  1538. const std::function<Status(uint32_t, const std::map<std::string, ge::Tensor> &)> &callback) {
  1539. std::lock_guard<std::mutex> lock(member_mutex_);
  1540. GELOGI("[GraphManager] RegisterCallBackFunc, key=%s.", key.c_str());
  1541. me_callback_map_[key] = callback;
  1542. return SUCCESS;
  1543. }
  1544. Status GraphManager::PushSummaryData2ME(const GraphId &graph_id,
  1545. const std::map<std::string, ge::Tensor> &summary_data) {
  1546. std::lock_guard<std::mutex> lock(member_mutex_);
  1547. GELOGI("[GraphManager] PushSummaryData2ME, dataSize=%zu.", summary_data.size());
  1548. auto itr = me_callback_map_.find(kSummary);
  1549. if (itr == me_callback_map_.end()) {
  1550. GELOGE(FAILED, "[GraphManager] PushSummaryData2ME failed, not found summary callback.");
  1551. return FAILED;
  1552. }
  1553. return itr->second(graph_id, summary_data);
  1554. }
  1555. Status GraphManager::PushSaveData2ME(const GraphId &graph_id, const std::map<std::string, ge::Tensor> &save_data) {
  1556. std::lock_guard<std::mutex> lock(member_mutex_);
  1557. GELOGI("[GraphManager] PushSaveData2ME, dataSize=%zu.", save_data.size());
  1558. auto itr = me_callback_map_.find(kSave);
  1559. if (itr == me_callback_map_.end()) {
  1560. GELOGE(FAILED, "[GraphManager] PushSaveData2ME failed, not found checkpoint callback.");
  1561. return FAILED;
  1562. }
  1563. return itr->second(graph_id, save_data);
  1564. }
  1565. bool GraphManager::CheckNetOutputForCheckpointGraph(NodePtr &node) {
  1566. size_t in_data_anchor_size = node->GetAllInDataAnchors().size();
  1567. for (size_t i = 0; i < in_data_anchor_size; ++i) {
  1568. auto in = node->GetInDataAnchor(i);
  1569. if (in == nullptr) {
  1570. return false;
  1571. }
  1572. auto peerin = in->GetPeerOutAnchor();
  1573. GE_IF_BOOL_EXEC(peerin == nullptr, return false);
  1574. if (peerin->GetOwnerNode()->GetType() != kVariable && (!TransOpUtil::IsTransOp(peerin->GetOwnerNode()))) {
  1575. return false;
  1576. }
  1577. }
  1578. return true;
  1579. }
  1580. bool GraphManager::CheckVariableForCheckpointGraph(NodePtr &node) {
  1581. if (node->GetOpDesc()->HasAttr(kCheckPointForGetVar)) {
  1582. return false;
  1583. }
  1584. auto out = node->GetOutDataAnchor(0);
  1585. if (out == nullptr) {
  1586. GELOGE(GE_GRAPH_PARAM_NULLPTR, "out is nullptr.");
  1587. return false;
  1588. }
  1589. auto peer_out = out->GetPeerInDataAnchors();
  1590. for (size_t i = 0; i < peer_out.size(); ++i) {
  1591. if (peer_out.at(i)->GetOwnerNode()->GetType() != kNetOutput &&
  1592. (!TransOpUtil::IsTransOp(peer_out.at(i)->GetOwnerNode()))) {
  1593. return false;
  1594. }
  1595. }
  1596. return true;
  1597. }
  1598. bool GraphManager::CheckTransOpForCheckpointGraph(NodePtr &node) {
  1599. for (const auto &out_node : node->GetOutAllNodes()) {
  1600. if ((!TransOpUtil::IsTransOp(out_node)) && (out_node->GetType() != kNetOutput) && (out_node->GetType() != kSend)) {
  1601. return false;
  1602. }
  1603. }
  1604. for (const auto &in_node : node->GetInAllNodes()) {
  1605. if ((!TransOpUtil::IsTransOp(in_node)) && (in_node->GetType() != kVariable) && (in_node->GetType() != kRecv)) {
  1606. return false;
  1607. }
  1608. }
  1609. return true;
  1610. }
  1611. static inline bool CheckConstanOpForCheckpointGraph(NodePtr &node) { return node->GetOutDataNodes().empty(); }
  1612. bool GraphManager::IsCheckpointGraph(ComputeGraphPtr &compute_graph) {
  1613. if (compute_graph == nullptr) {
  1614. GELOGE(GE_GRAPH_PARAM_NULLPTR, "[IsCheckpointGraph] computeGraph is nullptr.");
  1615. return false;
  1616. }
  1617. for (auto &node : compute_graph->GetAllNodes()) {
  1618. OpDescPtr op = node->GetOpDesc();
  1619. GE_RT_FALSE_CHECK_NOTNULL(op);
  1620. if (op->GetType() == kNetOutput) {
  1621. if (!CheckNetOutputForCheckpointGraph(node)) {
  1622. return false;
  1623. }
  1624. } else if (op->GetType() == kVariable) {
  1625. if (!CheckVariableForCheckpointGraph(node)) {
  1626. return false;
  1627. }
  1628. } else if ((TransOpUtil::IsTransOp(node))) {
  1629. if (!CheckTransOpForCheckpointGraph(node)) {
  1630. return false;
  1631. }
  1632. } else if (op->GetType() == CONSTANTOP) {
  1633. if (!CheckConstanOpForCheckpointGraph(node)) {
  1634. return false;
  1635. }
  1636. } else if (op->GetType() != kSend && op->GetType() != kRecv) {
  1637. GELOGI("this node is not allow in checkpoint sub graph, node_type: %s, node_name: %s.", op->GetType().c_str(),
  1638. op->GetName().c_str());
  1639. return false;
  1640. }
  1641. }
  1642. GELOGI("current graph %s is checkpoint sub graph.", compute_graph->GetName().c_str());
  1643. return true;
  1644. }
  1645. bool GraphManager::IsBroadCastOpData(const ge::NodePtr &var_node) {
  1646. for (auto &out_anchor : var_node->GetAllOutDataAnchors()) {
  1647. GE_RT_FALSE_CHECK_NOTNULL(out_anchor);
  1648. for (auto &in_anchor : out_anchor->GetPeerInDataAnchors()) {
  1649. GE_RT_FALSE_CHECK_NOTNULL(in_anchor);
  1650. ge::NodePtr dst_node = in_anchor->GetOwnerNode();
  1651. GE_RT_FALSE_CHECK_NOTNULL(dst_node);
  1652. if (dst_node->GetType() == HCOMBROADCAST || dst_node->GetType() == HVDCALLBACKBROADCAST) {
  1653. return true;
  1654. }
  1655. }
  1656. }
  1657. return false;
  1658. }
  1659. void GraphManager::SetAttrForHcomBroadCastOp(ge::ComputeGraphPtr &compute_graph) {
  1660. // add variable attr for hccl broadcast,need to be removed after variable pass online
  1661. for (const ge::NodePtr &node : compute_graph->GetDirectNode()) {
  1662. if (node->GetOpDesc()->GetType() != ge::VARIABLE) {
  1663. continue;
  1664. }
  1665. if (IsBroadCastOpData(node)) {
  1666. AdjustBroadCastOpData(node);
  1667. }
  1668. if (IsAssignOpData(node)) {
  1669. AdjustAssignOpData(node);
  1670. }
  1671. }
  1672. }
  1673. void GraphManager::AdjustBroadCastOpData(const ge::NodePtr &var_node) {
  1674. if (!ge::AttrUtils::SetStr(var_node->GetOpDesc(), VAR_ATTR_VAR_IS_BROADCAST, "var_is_restore")) {
  1675. GELOGW("set var_is_restore failed");
  1676. }
  1677. }
  1678. bool GraphManager::IsAssignOpData(const ge::NodePtr &var_node) {
  1679. GELOGD("IsAssignOpData var_node %s", var_node->GetName().c_str());
  1680. std::map<std::string, std::set<int>> assign_ops = {{ASSIGN, {0}}};
  1681. ge::NodePtr assign_node = nullptr;
  1682. if (ConfirmUseOpAndIndexByNode(var_node, assign_ops, assign_node)) {
  1683. return true;
  1684. }
  1685. return false;
  1686. }
  1687. void GraphManager::AdjustAssignOpData(const ge::NodePtr &var_node) {
  1688. if (!ge::AttrUtils::SetStr(var_node->GetOpDesc(), VAR_ATTR_VAR_IS_RESTORE, "var_is_restore")) {
  1689. GELOGW("SetStr var_is_restore failed");
  1690. }
  1691. }
  1692. bool GraphManager::ConfirmUseOpAndIndexByAnchor(const ge::InDataAnchorPtr &in_anchor,
  1693. const map<string, std::set<int>> &confirm_ops, ge::NodePtr &use_node) {
  1694. GE_RT_FALSE_CHECK_NOTNULL(in_anchor);
  1695. ge::NodePtr dst_node = in_anchor->GetOwnerNode();
  1696. GE_RT_FALSE_CHECK_NOTNULL(dst_node);
  1697. ge::OpDescPtr dst_op_desc = dst_node->GetOpDesc();
  1698. GE_RT_FALSE_CHECK_NOTNULL(dst_op_desc);
  1699. const string &dst_type = dst_op_desc->GetType();
  1700. int input_index = in_anchor->GetIdx();
  1701. GELOGD("ConfirmUseOpAndIndex, var name %s, dst_type = %s, input index %d", dst_node->GetName().c_str(),
  1702. dst_type.c_str(), input_index);
  1703. if (confirm_ops.count(dst_type) > 0) {
  1704. if (confirm_ops.at(dst_type).count(input_index) > 0) {
  1705. use_node = dst_node;
  1706. return true;
  1707. }
  1708. }
  1709. return false;
  1710. }
  1711. bool GraphManager::ConfirmUseOpAndIndexByNode(const ge::NodePtr &var_node,
  1712. const map<string, std::set<int>> &confirm_ops, ge::NodePtr &use_node) {
  1713. GE_RT_FALSE_CHECK_NOTNULL(var_node);
  1714. for (auto &out_anchor : var_node->GetAllOutDataAnchors()) {
  1715. GE_RT_FALSE_CHECK_NOTNULL(out_anchor);
  1716. for (auto &in_anchor : out_anchor->GetPeerInDataAnchors()) {
  1717. GE_RT_FALSE_CHECK_NOTNULL(in_anchor);
  1718. if (ConfirmUseOpAndIndexByAnchor(in_anchor, confirm_ops, use_node)) {
  1719. return true;
  1720. }
  1721. }
  1722. }
  1723. return false;
  1724. }
  1725. Status GraphManager::RemoveIsolatedConstInThisGraph(ge::ComputeGraphPtr &compute_graph) {
  1726. for (ge::NodePtr &n : compute_graph->GetDirectNode()) {
  1727. if (n->GetOpDesc() == nullptr) {
  1728. continue;
  1729. }
  1730. if (n->GetOpDesc()->GetType() == CONSTANT || n->GetOpDesc()->GetType() == CONSTANTOP) {
  1731. // reset const type depend on train_flag
  1732. options_.train_graph_flag ? n->GetOpDesc()->SetType(CONSTANTOP) : n->GetOpDesc()->SetType(CONSTANT);
  1733. if (n->GetOutAllNodes().empty() && n->GetInAllNodes().empty()) {
  1734. // it is an isolated constant, just remove it
  1735. if (GraphUtils::RemoveJustNode(compute_graph, n) != GRAPH_SUCCESS) {
  1736. GELOGE(FAILED, "remove constant %s failed.", n->GetName().c_str());
  1737. return FAILED;
  1738. }
  1739. }
  1740. }
  1741. }
  1742. return SUCCESS;
  1743. }
  1744. Status GraphManager::RemoveIsolatedConst(ge::ComputeGraphPtr &compute_graph) {
  1745. GE_CHK_STATUS_RET(RemoveIsolatedConstInThisGraph(compute_graph));
  1746. for (auto &sub_graph : compute_graph->GetAllSubgraphs()) {
  1747. GE_CHK_STATUS_RET(RemoveIsolatedConstInThisGraph(sub_graph));
  1748. }
  1749. return SUCCESS;
  1750. }
  1751. Status GraphManager::OptimizeStage1(ge::ComputeGraphPtr &compute_graph) {
  1752. string options = "default";
  1753. if (GetContext().GetOption("ge.exec.variable_acc", options) != SUCCESS) {
  1754. GELOGI("get ge.exec.variable_acc failed. set default value.");
  1755. }
  1756. PassManager after_merge_passes;
  1757. GE_CHK_STATUS_RET(
  1758. after_merge_passes.AddPass("OptimizeStage1_1::MergeInputMemcpyPass", new (std::nothrow) MergeInputMemcpyPass));
  1759. GE_CHK_STATUS_RET(
  1760. after_merge_passes.AddPass("OptimizeStage1_1::SwitchDataEdgesBypass", new (std::nothrow) SwitchDataEdgesBypass));
  1761. GE_CHK_STATUS_RET(
  1762. after_merge_passes.AddPass("OptimizeStage1_1::ConstantFuseSamePass", new (std::nothrow) ConstantFuseSamePass));
  1763. GE_CHK_STATUS_RET(after_merge_passes.AddPass("OptimizeStage1_1::CommonSubexpressionEliminationPass",
  1764. new (std::nothrow) CommonSubexpressionEliminationPass));
  1765. GE_CHK_STATUS_RET(after_merge_passes.AddPass("OptimizeStage1_1::PermutePass", new (std::nothrow) PermutePass))
  1766. /*
  1767. * The SameTransdataBreadthFusionPass should be called before VariableOpPass, because of the scene following:
  1768. * node3
  1769. * |
  1770. * transdata1 node2
  1771. * | |
  1772. * cast1 transdata2
  1773. * \ /
  1774. * var
  1775. * the node `transdata1` should be moved to the front of the ndoe `cast1`,
  1776. * to ensure that `transdata1` and `transdata2` can be fusion with `var`.
  1777. * But it is a temp solution, because the `SameTransdataBreadthFusionPass`
  1778. * can only move `TransData` but not `Cast` nodes.
  1779. * So if we exchange Cast and TransData, the fusion mechanism will fail.
  1780. */
  1781. GE_CHK_STATUS_RET(after_merge_passes.AddPass("OptimizeStage1_1::SameTransdataBreadthFusionPass",
  1782. new (std::nothrow) SameTransdataBreadthFusionPass))
  1783. GE_IF_BOOL_EXEC(options == "default" || options == "1", GELOGI("turn on variable accelerator");
  1784. GE_CHK_STATUS_RET(after_merge_passes.AddPass("OptimizeStage1_1::VariableOpPass",
  1785. new (std::nothrow) VariableOpPass(&var_acc_ctrl_))))
  1786. GE_CHK_STATUS_RET(after_merge_passes.AddPass("OptimizeStage1_1::TransOpWithoutReshapeFusionPass",
  1787. new (std::nothrow) TransOpWithoutReshapeFusionPass))
  1788. GE_CHK_STATUS_RET(after_merge_passes.AddPass("OptimizeStage1_1::TransOpBreadthFusionPass",
  1789. new (std::nothrow) TransOpBreadthFusionPass))
  1790. GE_TIMESTAMP_START(after_merge_passes);
  1791. auto ret = after_merge_passes.Run(compute_graph);
  1792. GE_TIMESTAMP_END(after_merge_passes, "GraphManager::OptimizeStage1_1");
  1793. if (ret != SUCCESS && ret != NOT_CHANGED) {
  1794. GELOGE(ret, "Run passes when OptimizeStage1_1 failed, ret:%u.", ret);
  1795. return ret;
  1796. }
  1797. GE_DUMP(compute_graph, "OptimizeStage1_1");
  1798. NamesToPass names_to_passes;
  1799. TransOpNearbyAllreduceFusionPass trans_op_nearby_allreduce_fusion_pass;
  1800. ReshapeRemovePass reshape_remove_pass;
  1801. ConstantFoldingPass constant_folding_pass;
  1802. DimensionAdjustPass dimension_adjust_pass;
  1803. EnterPass enter_pass;
  1804. AddNPass addn_pass;
  1805. SwitchDeadBranchElimination switch_dead_branch_elimination;
  1806. SwitchLogicRemovePass switch_logic_remove_pass;
  1807. MergePass merge_pass;
  1808. CastRemovePass cast_remove_pass;
  1809. TransposeTransDataPass transpose_transdata_pass;
  1810. TransOpSymmetryEliminationPass symmetry_elimination_pass;
  1811. DimensionComputePass dimension_compute_pass;
  1812. names_to_passes.emplace_back("EnterPass", &enter_pass);
  1813. names_to_passes.emplace_back("AddNPass", &addn_pass);
  1814. names_to_passes.emplace_back("SwitchDeadBranchElimination", &switch_dead_branch_elimination);
  1815. names_to_passes.emplace_back("SwitchLogicRemovePass", &switch_logic_remove_pass);
  1816. names_to_passes.emplace_back("MergePass", &merge_pass);
  1817. names_to_passes.emplace_back("CastRemovePass", &cast_remove_pass);
  1818. names_to_passes.emplace_back("TransposeTransDataPass", &transpose_transdata_pass);
  1819. names_to_passes.emplace_back("ReshapeRemovePass", &reshape_remove_pass);
  1820. names_to_passes.emplace_back("TransOpSymmetryEliminationPass", &symmetry_elimination_pass);
  1821. names_to_passes.emplace_back("TransOpNearbyAllreduceFusionPass", &trans_op_nearby_allreduce_fusion_pass);
  1822. names_to_passes.emplace_back("DimensionComputePass", &dimension_compute_pass);
  1823. names_to_passes.emplace_back("ConstantFoldingPass", &constant_folding_pass);
  1824. names_to_passes.emplace_back("DimensionAdjustPass", &dimension_adjust_pass);
  1825. GE_TIMESTAMP_START(names_to_passes);
  1826. ret = GEPass(compute_graph).Run(names_to_passes);
  1827. GE_TIMESTAMP_END(names_to_passes, "GraphManager::OptimizeStage1_2");
  1828. if (ret != SUCCESS) {
  1829. GELOGE(ret, "Run passes when OptimizeStage1_2 failed, ret:%u.", ret);
  1830. return ret;
  1831. }
  1832. // Calculate Op/Fe constantfolding cost
  1833. uint64_t op_constant_folding_cost = 0;
  1834. for (auto &it : constant_folding_pass.GetOpConstantFoldingPerfStatistic()) {
  1835. op_constant_folding_cost += it.second.second;
  1836. GELOGI("The time cost of %s constant folding is [%lu] micro second, calls is %lu.",
  1837. it.first.c_str(), it.second.second, it.second.first);
  1838. }
  1839. GEEVENT("[GEPERFTRACE] The time cost of extern constant folding is [%lu] micro second.", op_constant_folding_cost);
  1840. for (auto &it : constant_folding_pass.GetGeConstantFoldingPerfStatistic()) {
  1841. op_constant_folding_cost += it.second.second;
  1842. GELOGI("The time cost of %s constant folding is [%lu] micro second, calls is %lu.",
  1843. it.first.c_str(), it.second.second, it.second.first);
  1844. }
  1845. GE_DUMP(compute_graph, "OptimizeStage1_2");
  1846. PassManager graph_pass;
  1847. // the prune pass should between SwitchPass and SwitchToStreamSwitchPass
  1848. GE_CHK_STATUS_RET(graph_pass.AddPass("OptimizeStage1_3::Migration", new (std::nothrow) SubgraphConstMigrationPass));
  1849. GE_CHK_STATUS_RET(graph_pass.AddPass("OptimizeStage1_3::ArgsClean", new (std::nothrow) UnusedArgsCleanPass));
  1850. GE_CHK_STATUS_RET(graph_pass.AddPass("OptimizeStage1_3::PrunePass", new (std::nothrow) PrunePass))
  1851. GE_CHK_STATUS_RET(graph_pass.AddPass("OptimizeStage1_3::NextIterationPass", new (std::nothrow) NextIterationPass))
  1852. GE_CHK_STATUS_RET(graph_pass.AddPass("OptimizeStage1_3::ControlTriggerPass", new (std::nothrow) ControlTriggerPass))
  1853. GE_CHK_STATUS_RET(
  1854. graph_pass.AddPass("OptimizeStage1_3::MergeToStreamMergePass", new (std::nothrow) MergeToStreamMergePass))
  1855. GE_CHK_STATUS_RET(
  1856. graph_pass.AddPass("OptimizeStage1_3::SwitchToStreamSwitchPass", new (std::nothrow) SwitchToStreamSwitchPass))
  1857. GE_CHK_STATUS_RET(
  1858. graph_pass.AddPass("OptimizeStage1_3::AttachStreamLabelPass", new (std::nothrow) AttachStreamLabelPass))
  1859. GE_CHK_STATUS_RET(graph_pass.AddPass("OptimizeStage1_3::MultiBatchPass", new (std::nothrow) MultiBatchPass(true)))
  1860. GE_CHK_STATUS_RET(graph_pass.AddPass("OptimizeStage1_3::IteratorOpPass", new (std::nothrow) IteratorOpPass))
  1861. GE_CHK_STATUS_RET(graph_pass.AddPass("OptimizeStage1_3::VariableRefUselessControlOutDeletePass",
  1862. new (std::nothrow) VariableRefUselessControlOutDeletePass))
  1863. GE_CHK_STATUS_RET(graph_pass.AddPass("OptimizeStage1_3::ReshapeRecoveryPass", new (std::nothrow) ReshapeRecoveryPass))
  1864. if (options_.train_graph_flag) {
  1865. // Priority: The GlobalStepInsertPass should work before graph partitioner.
  1866. // Reason: Make sure that the var "global_step" can be partitioned to known sub graph and allocated memory
  1867. GE_CHK_STATUS_RET(
  1868. graph_pass.AddPass("OptimizeStage1_3::GlobalStepInsertPass", new (std::nothrow) GlobalStepInsertPass))
  1869. }
  1870. GE_TIMESTAMP_START(graph_pass);
  1871. ret = graph_pass.Run(compute_graph);
  1872. GE_TIMESTAMP_END(graph_pass, "GraphManager::OptimizeStage1_3");
  1873. if (ret != SUCCESS && ret != NOT_CHANGED) {
  1874. GELOGE(ret, "Run passes when OptimizeStage1_3 failed, ret:%u.", ret);
  1875. return ret;
  1876. }
  1877. NamesToPass identity_remove_pass;
  1878. GE_TIMESTAMP_START(identity_remove_pass);
  1879. IdentityPass identity_force_pass(false); // after SwitchToStreamSwitchPass
  1880. identity_remove_pass.emplace_back("IdentityPass", &identity_force_pass);
  1881. ret = GEPass(compute_graph).Run(identity_remove_pass);
  1882. GE_TIMESTAMP_END(identity_remove_pass, "GraphPrepare::IdentityRemovePass");
  1883. if (ret != SUCCESS) {
  1884. GELOGE(ret, "Run identity remove pass for preprocess failed, ret:%u.", ret);
  1885. return ret;
  1886. }
  1887. return SUCCESS;
  1888. }
  1889. Status GraphManager::OptimizeStage2(ge::ComputeGraphPtr &compute_graph) {
  1890. GELOGI("Start optimize after merge sub graph.");
  1891. PassManager after_merge_passes;
  1892. GE_CHK_STATUS_RET(after_merge_passes.AddPass("OptimizeStage2::AfterMergePasses::LinkGenMaskNodesPass",
  1893. new (std::nothrow)
  1894. LinkGenMaskNodesPass(options_.stream_max_parallel_num)));
  1895. GE_TIMESTAMP_START(after_merge_passes);
  1896. auto ret = after_merge_passes.Run(compute_graph);
  1897. GE_TIMESTAMP_END(after_merge_passes, "OptimizeStage2::AfterMergePasses");
  1898. if (ret != SUCCESS && ret != NOT_CHANGED) {
  1899. GELOGE(ret, "Run passes after merge sub graph failed, ret:%d.", ret);
  1900. return ret;
  1901. }
  1902. SetAttrForHcomBroadCastOp(compute_graph);
  1903. NamesToPass names_to_passes;
  1904. ConstantFoldingPass constant_folding_pass;
  1905. ReshapeRemovePass reshape_remove_pass;
  1906. CondRemovePass condition_remove_pass;
  1907. BitcastPass bitcast_pass;
  1908. names_to_passes.emplace_back("ConstantFoldingPass", &constant_folding_pass);
  1909. names_to_passes.emplace_back("ReshapeRemovePass", &reshape_remove_pass);
  1910. names_to_passes.emplace_back("CondRemovePass", &condition_remove_pass);
  1911. names_to_passes.emplace_back("BitcastPass", &bitcast_pass);
  1912. GE_TIMESTAMP_START(names_to_passes);
  1913. ret = GEPass(compute_graph).Run(names_to_passes);
  1914. GE_TIMESTAMP_END(names_to_passes, "OptimizeStage2::MergedGraphNameToPasses");
  1915. if (ret != SUCCESS) {
  1916. GELOGE(ret, "Run ge_passes optimize for OptimizeAfterMergeSubGraph failed, ret:%d.", ret);
  1917. return ret;
  1918. }
  1919. ret = RemoveIsolatedConst(compute_graph);
  1920. if (ret != SUCCESS) {
  1921. GELOGE(ret, "Remove isolated Constant failed, ret:%d.", ret);
  1922. return ret;
  1923. }
  1924. PassManager pass_for_control_attr_optimize;
  1925. if (options_.train_graph_flag) {
  1926. GE_CHK_STATUS_RET(pass_for_control_attr_optimize.AddPass("OptimizeStage2::ControlAttrOptimize::FlowCtrlPass",
  1927. new (std::nothrow) FlowCtrlPass))
  1928. }
  1929. GE_CHK_STATUS_RET(pass_for_control_attr_optimize.AddPass("OptimizeStage2::ControlAttrOptimize::MultiBatchPass",
  1930. new (std::nothrow) MultiBatchPass))
  1931. GE_CHK_STATUS_RET(pass_for_control_attr_optimize.AddPass("OptimizeStage2::AfterMergePasses::RefIdentityDeleteOpPass",
  1932. new (std::nothrow) RefIdentityDeleteOpPass))
  1933. // the value of the attr is the original variable name the ref-variable ref from.
  1934. // The attr will be used when allocating memory,
  1935. // the node marked attr will be output to a variable instead of new-allocated memory.
  1936. // Therefore, ComputeGraph should not delete nodes after `VariableRefDeleteOpPass`
  1937. // to prevent unexpected deletion of nodes marked with attr
  1938. GE_CHK_STATUS_RET(pass_for_control_attr_optimize.AddPass("OptimizeStage2::AfterMergePasses::VariableRefDeleteOpPass",
  1939. new (std::nothrow) VariableRefDeleteOpPass))
  1940. GE_CHK_STATUS_RET(pass_for_control_attr_optimize.AddPass("OptimizeStage2::ControlAttrOptimize::CompileNodesPass",
  1941. new (std::nothrow) CompileNodesPass))
  1942. GE_CHK_STATUS_RET(pass_for_control_attr_optimize.AddPass(
  1943. "OptimizeStage2::AfterMergePasses::MarkGraphUnknownStatusPass", new(std::nothrow) MarkGraphUnknownStatusPass))
  1944. GE_CHK_STATUS_RET(
  1945. pass_for_control_attr_optimize.AddPass("OptimizeStage2::AfterMergePasses::InputOutputConnectionIdentifyPass",
  1946. new (std::nothrow) InputOutputConnectionIdentifyPass))
  1947. // When the input node to be cleared is after a `Data` node, the atomic-clean-node should not be inserted.
  1948. // So The ComputeGraph should not delete nodes after `AtomicAddrCleanPass`
  1949. // to prevent unexpected deletion of nodes after a `Data` node
  1950. GE_CHK_STATUS_RET(pass_for_control_attr_optimize.AddPass("OptimizeStage2::AfterMergePasses::AtomicAddrCleanPass",
  1951. new (std::nothrow) AtomicAddrCleanPass))
  1952. GE_CHK_STATUS_RET(pass_for_control_attr_optimize.AddPass("OptimizeStage2::AfterMergePasses::"
  1953. "EndOfSequenceAddControlPass",
  1954. new (std::nothrow) EndOfSequenceAddControlPass))
  1955. // SubgraphPass solves memory_assign_conflicts by insert MemcpyAsync node, which depends on multi attrs and
  1956. // graph-structure. So try not to add new pass after SubgraphPass.
  1957. GE_CHK_STATUS_RET(pass_for_control_attr_optimize.AddPass("OptimizeStage2::ControlAttrOptimize::SubgraphPass",
  1958. new (std::nothrow) SubgraphPass))
  1959. // AttachStreamLabelPass modifies attr without changing structure of compute_graph
  1960. GE_CHK_STATUS_RET(pass_for_control_attr_optimize.AddPass("OptimizeStage2::ControlAttrOptimize::AttachStreamLabelPass",
  1961. new (std::nothrow) AttachStreamLabelPass))
  1962. GE_TIMESTAMP_START(pass_for_control_attr_optimize);
  1963. ret = pass_for_control_attr_optimize.Run(compute_graph);
  1964. GE_TIMESTAMP_END(pass_for_control_attr_optimize, "OptimizeStage2::ControlAttrOptimize");
  1965. if (ret != SUCCESS && ret != NOT_CHANGED) {
  1966. GELOGE(ret, "Run passes when optimize stage 2 failed");
  1967. return ret;
  1968. }
  1969. // After while sub graph handle, mark all node rw type
  1970. auto result = GetCompilerStages(compute_graph->GetGraphID()).optimizer.HandleMemoryRWConflict(compute_graph);
  1971. if (result != SUCCESS) {
  1972. GELOGW(
  1973. "Mark node rw type failed. It will take some effect on memory_assign_conflicts handling."
  1974. "Please pay attention to it.");
  1975. }
  1976. ChangeConstTypeWhenTraining(compute_graph);
  1977. ret = compute_graph->TopologicalSorting();
  1978. if (ret != SUCCESS) {
  1979. GELOGE(ret, "Graph topological sort failed, ret:%d.", ret);
  1980. return ret;
  1981. }
  1982. GELOGI("End optimize after merge sub graph.");
  1983. return SUCCESS;
  1984. }
  1985. void GraphManager::ChangeConstTypeWhenTraining(const ComputeGraphPtr &compute_graph) {
  1986. // The constant for train is CONSTANTOP, and is CONSTANT for inference. They will be unified in future.
  1987. if (options_.train_graph_flag) {
  1988. for (NodePtr &n : compute_graph->GetAllNodes()) {
  1989. // This can ensure that n is not a null pointer
  1990. if (n->GetOpDesc()->GetType() == CONSTANT) {
  1991. n->GetOpDesc()->SetType(CONSTANTOP);
  1992. }
  1993. }
  1994. }
  1995. }
  1996. Status GraphManager::LoadGraphAsync(const GeRootModelPtr &ge_root_model, const GraphNodePtr &graph_node) {
  1997. GELOGI("[LoadGraphAsync] run_graph_flag[%d], graph_id[%u]", options_.run_graph_flag, graph_node->GetGraphId());
  1998. if (options_.run_graph_flag && ge_root_model != nullptr) {
  1999. // synchronization run graph with model
  2000. ModelIdInfo model_id_info;
  2001. bool is_unknown_shape = false;
  2002. GE_CHK_STATUS_RET(ge_root_model->CheckIsUnknownShape(is_unknown_shape));
  2003. if (!is_unknown_shape) {
  2004. if (getenv(kEnvGeuseStaticMemory) != nullptr) {
  2005. GELOGI("[LoadGraphAsync] GE_USE_STATIC_MEMORY is seted.");
  2006. } else {
  2007. auto root_graph = ge_root_model->GetRootGraph();
  2008. GE_CHECK_NOTNULL(root_graph);
  2009. auto name_to_model = ge_root_model->GetSubgraphInstanceNameToModel();
  2010. GeModelPtr ge_model = name_to_model[root_graph->GetName()];
  2011. GE_CHK_STATUS_RET(CheckAndReleaseMemory(ge_model, graph_node));
  2012. }
  2013. }
  2014. GE_TIMESTAMP_START(LoadGraph);
  2015. GE_CHECK_NOTNULL(graph_node->graph_run_async_listener_);
  2016. Status ret =
  2017. GraphLoader::LoadModelOnline(model_id_info.model_id, ge_root_model, graph_node->graph_run_async_listener_);
  2018. GE_TIMESTAMP_EVENT_END(LoadGraph, "GraphManager::LoadGraphAsync");
  2019. if (ret != SUCCESS) {
  2020. GELOGE(ret, "[LoadGraphAsync] LoadGraphAsync Failed");
  2021. graph_node->SetRunFlag(false);
  2022. return ret;
  2023. }
  2024. graph_node->SetLoadFlag(true);
  2025. ge_root_model->SetModelId(model_id_info.model_id);
  2026. graph_node->SetGeRootModel(ge_root_model);
  2027. }
  2028. return SUCCESS;
  2029. }
  2030. Status GraphManager::CheckAndReleaseMemory(const GeModelPtr &ge_model, const GraphNodePtr &graph_node) {
  2031. GELOGI("CheckAndReleaseMemory graph_id[%u]", graph_node->GetGraphId());
  2032. int64_t value = 0;
  2033. bool ret = ge::AttrUtils::GetInt(ge_model, ATTR_MODEL_MEMORY_SIZE, value);
  2034. int64_t memory_size = ret ? value : 0;
  2035. ret = ge::AttrUtils::GetInt(ge_model, ATTR_MODEL_WEIGHT_SIZE, value);
  2036. int64_t weight_size = ret ? value : 0;
  2037. ret = ge::AttrUtils::GetInt(ge_model, MODEL_ATTR_SESSION_ID, value);
  2038. uint64_t session_id = ret ? value : 0;
  2039. int64_t free_memory = 0;
  2040. Status result = GraphLoader::GetMemoryInfo(free_memory);
  2041. if (result != SUCCESS) {
  2042. return result;
  2043. }
  2044. GELOGI(
  2045. "CheckAndReleaseMemory Graph[%u] need memory_size[%ld], weight_size[%ld],"
  2046. " Device[%u] free_memory_size[%ld]",
  2047. graph_node->GetGraphId(), memory_size, weight_size, GetContext().DeviceId(), free_memory);
  2048. if (ge::CheckInt64AddOverflow(memory_size, weight_size) != SUCCESS) {
  2049. GELOGE(INTERNAL_ERROR, "The sum of Memory size and weight size exceeds INT64_MAX");
  2050. return INTERNAL_ERROR;
  2051. }
  2052. if (free_memory >= (memory_size + weight_size)) {
  2053. return SUCCESS;
  2054. }
  2055. std::lock_guard<std::mutex> lock(unload_model_mutex_);
  2056. std::map<GraphId, GraphNodePtr> graph_map;
  2057. {
  2058. std::lock_guard<std::mutex> lock(member_mutex_);
  2059. graph_map = graph_map_;
  2060. }
  2061. for (auto &it : graph_map) {
  2062. auto graph_id = it.second->GetGraphId();
  2063. auto model = it.second->GetGeRootModel();
  2064. if (model == nullptr) {
  2065. continue;
  2066. }
  2067. auto model_id = model->GetModelId();
  2068. // not loaded,no need unload
  2069. if (!it.second->GetLoadFlag()) {
  2070. GELOGI("CheckAndReleaseMemory graph[%u] has not been loaded.", graph_id);
  2071. continue;
  2072. }
  2073. uint64_t max_memory_size = 0;
  2074. result = GraphLoader::GetMaxUsedMemory(model_id, max_memory_size);
  2075. if (result != SUCCESS) {
  2076. continue;
  2077. }
  2078. GELOGI("CheckAndReleaseMemory try to UnloadGraph[%u], model[%u] which MaxUsedMemory[%lu].", graph_id, model_id,
  2079. max_memory_size);
  2080. rtError_t rt_ret = rtSetDevice(GetContext().DeviceId());
  2081. if (rt_ret != RT_ERROR_NONE) {
  2082. GELOGE(RT_FAILED, "[GraphManager:] rtSetDevice failed, modelId=%u, graphId=%u.", model_id, graph_id);
  2083. continue;
  2084. }
  2085. result = GraphLoader::UnloadModel(model_id);
  2086. if (result != SUCCESS) {
  2087. GELOGW("[GraphManager:] unload model failed, modelId=%u, graphId=%u.", model_id, graph_id);
  2088. }
  2089. result = GraphLoader::DestroyAicpuKernel(session_id, model_id);
  2090. if (result != SUCCESS) {
  2091. GELOGW("[GraphManager:] destroy aicpu kernel failed when dynamic memory, modelId=%u, graphId=%u.", model_id,
  2092. graph_id);
  2093. }
  2094. rt_ret = rtDeviceReset(GetContext().DeviceId());
  2095. if (rt_ret != RT_ERROR_NONE) {
  2096. GELOGE(RT_FAILED, "[GraphManager:] rtDeviceReset failed, modelId=%u, graphId=%u.", model_id, graph_id);
  2097. continue;
  2098. }
  2099. it.second->SetLoadFlag(false);
  2100. GELOGI("CheckAndReleaseMemory UnloadGraph[%u], model[%u] success and set LoadFlag to false.", graph_id, model_id);
  2101. }
  2102. return SUCCESS;
  2103. }
  2104. Status GraphManager::ProcessSubGraphWithMultiThreads(GraphManager *graph_manager, GraphId root_graph_id,
  2105. const SubGraphInfoPtr &sub_graph_info_ptr, uint64_t session_id,
  2106. const GEThreadLocalContext &ge_context) {
  2107. if (sub_graph_info_ptr != nullptr && graph_manager != nullptr) {
  2108. GetContext().SetSessionId(session_id);
  2109. GetThreadLocalContext() = ge_context;
  2110. graph_manager->UpdateLocalOmgContext(root_graph_id);
  2111. ComputeGraphPtr compute_graph_tmp = sub_graph_info_ptr->GetSubGraph();
  2112. const std::string &engine_name = sub_graph_info_ptr->GetEngineName();
  2113. GELOGI("ProcessSubGraphWithMultiThreads start, graph name is %s, engine_name is %s, thread id is %lu",
  2114. compute_graph_tmp != nullptr ? compute_graph_tmp->GetName().c_str() : "", engine_name.c_str(),
  2115. pthread_self());
  2116. GE_DUMP(compute_graph_tmp, "OptimizeSubGraphBefore");
  2117. GE_CHECK_NOTNULL(compute_graph_tmp);
  2118. compute_graph_tmp->SetSessionID(session_id);
  2119. Status ret = graph_manager->GetCompilerStages(root_graph_id).optimizer.OptimizeSubGraph(compute_graph_tmp,
  2120. engine_name);
  2121. if (ret != SUCCESS) {
  2122. GELOGE(ret, "SubGraph optimize Failed %s", engine_name.c_str());
  2123. return ret;
  2124. } else {
  2125. GELOGI("SubGraph optimize success %s", engine_name.c_str());
  2126. }
  2127. GE_DUMP(compute_graph_tmp, "OptimizeSubGraphAfter");
  2128. sub_graph_info_ptr->SetSubGraph(compute_graph_tmp);
  2129. GELOGI("ProcessSubGraphWithMultiThreads end, graph name is %s, engine_name is %s, thread id is %lu",
  2130. compute_graph_tmp != nullptr ? compute_graph_tmp->GetName().c_str() : "", engine_name.c_str(),
  2131. pthread_self());
  2132. } else {
  2133. GELOGE(FAILED, "graph_manager or sub_graph_info_ptr is nullptr");
  2134. return FAILED;
  2135. }
  2136. return SUCCESS;
  2137. }
  2138. // run graph async on session
  2139. Status GraphManager::RunGraphAsync(const GraphId &graph_id, const std::vector<ge::InputTensorInfo> &inputs,
  2140. uint64_t session_id, RunAsyncCallback callback) {
  2141. GELOGI("[GraphManager] Start to run graph async, graph_id=%u, inputsSize=%zu.", graph_id, inputs.size());
  2142. bool ret = prerun_args_q_.Push(PreRunArgs({graph_id, inputs, session_id, GetThreadLocalContext(), callback}));
  2143. if (!ret) {
  2144. GELOGE(FAILED, "[GraphManager] Run graph async failed, graph_id=%u.", graph_id);
  2145. return FAILED;
  2146. }
  2147. GELOGI("[GraphManager] Run graph async success, graph_id=%u.", graph_id);
  2148. return SUCCESS;
  2149. }
  2150. void GraphManager::AddModelCacheHelperToMap(const GraphId &graph_id, uint64_t session_id,
  2151. ComputeGraphPtr &compute_graph) {
  2152. std::shared_ptr<GELib> instance_ptr = ge::GELib::GetInstance();
  2153. if (instance_ptr != nullptr && instance_ptr->IsIncreBuild()) {
  2154. std::lock_guard<std::mutex> lock(member_mutex_);
  2155. auto iter = cache_helper_map_.find(graph_id);
  2156. if (iter == cache_helper_map_.end()) {
  2157. ModelCacheHelperPtr cache_helper = MakeShared<ge::ModelCacheHelper>(session_id, graph_id, compute_graph);
  2158. if (cache_helper != nullptr) {
  2159. cache_helper_map_.emplace(std::make_pair(graph_id, cache_helper));
  2160. } else {
  2161. GELOGW("Cache helper make shared failed, graph_id = %u.", graph_id);
  2162. }
  2163. }
  2164. }
  2165. }
  2166. ModelCacheHelperPtr GraphManager::FindModelCacheHelper(GraphId graph_id) {
  2167. std::lock_guard<std::mutex> lock(member_mutex_);
  2168. auto iter = cache_helper_map_.find(graph_id);
  2169. if (iter != cache_helper_map_.end()) {
  2170. return iter->second;
  2171. }
  2172. return nullptr;
  2173. }
  2174. Status GraphManager::IncreBuild(const GraphNodePtr &graph_node, GeModelPtr &ge_model) {
  2175. std::shared_ptr<GELib> instance_ptr = ge::GELib::GetInstance();
  2176. if (instance_ptr == nullptr || !instance_ptr->IsIncreBuild()) {
  2177. return FAILED;
  2178. }
  2179. const uint32_t graph_id = graph_node->GetGraphId();
  2180. ModelCacheHelperPtr cache_helper = FindModelCacheHelper(graph_id);
  2181. if (cache_helper == nullptr) {
  2182. GELOGW("Can not find ModelCacheHelper of graph[%u]", graph_id);
  2183. return FAILED;
  2184. }
  2185. if (cache_helper->IsModelCacheHit()) {
  2186. GEEVENT("Model cache hit.");
  2187. Status ret = LoadFromCache(graph_node, cache_helper, ge_model);
  2188. if (ret == SUCCESS) {
  2189. return SUCCESS;
  2190. } else {
  2191. GELOGW("Error occurred when load from cache, abandon.");
  2192. }
  2193. } else {
  2194. GEEVENT("Model cache miss.");
  2195. }
  2196. if (SaveCacheBeforeBuild(graph_node->GetGraphId(), cache_helper) != SUCCESS) {
  2197. GELOGW("Error occurred when save cache.");
  2198. }
  2199. return FAILED;
  2200. }
  2201. void GraphManager::ConstructGeInput(std::vector<ge::GeTensor> &ge_inputs, PreRunArgs &args) {
  2202. for (auto const &input : args.input_tensor) {
  2203. std::vector<int64_t> input_dims;
  2204. std::transform(input.dims.begin(), input.dims.end(), std::back_inserter(input_dims),
  2205. [](int64_t x) -> int64_t { return x; });
  2206. GeShape input_shape(input_dims);
  2207. GeTensorDesc input_tensor_desc;
  2208. input_tensor_desc.SetShape(input_shape);
  2209. input_tensor_desc.SetDataType(static_cast<ge::DataType>(input.data_type));
  2210. ge_inputs.emplace_back(input_tensor_desc);
  2211. }
  2212. }
  2213. void GraphManager::PreRunThread(GraphManager *graph_manager) {
  2214. if (prctl(PR_SET_NAME, ("GE_PreRun")) != 0) {
  2215. GELOGW("Set thread name failed.");
  2216. }
  2217. PreRunArgs args;
  2218. while (graph_manager->thread_run_flag_) {
  2219. bool pop_status = graph_manager->prerun_args_q_.Pop(args);
  2220. if (!pop_status) {
  2221. continue;
  2222. }
  2223. GELOGI("A new loop start.");
  2224. GetContext().SetSessionId(args.session_id);
  2225. GetThreadLocalContext() = args.context;
  2226. graph_manager->UpdateLocalOmgContext(args.graph_id);
  2227. std::vector<ge::GeTensor> ge_inputs;
  2228. ConstructGeInput(ge_inputs, args);
  2229. // find graph
  2230. GraphNodePtr graph_node = nullptr;
  2231. Status ret = graph_manager->GetGraphNode(args.graph_id, graph_node);
  2232. if (ret != SUCCESS) {
  2233. ReturnError(graph_manager, args.callback, GE_GRAPH_ALREADY_RUNNING,
  2234. "[RunGraph] graph not exist, graph_id=" + std::to_string(args.graph_id));
  2235. return;
  2236. }
  2237. graph_node->Lock();
  2238. if (graph_node->GetRunFlag()) {
  2239. ReturnError(graph_manager, args.callback, GE_GRAPH_GRAPH_NODE_NULL,
  2240. "[RunGraph] graph already running, graph id=" + std::to_string(args.graph_id));
  2241. graph_node->Unlock();
  2242. return;
  2243. }
  2244. // set graph's run flag
  2245. graph_node->SetRunFlag(true);
  2246. ComputeGraphPtr compute_graph_tmp = GraphUtils::GetComputeGraph(*(graph_node->GetGraph()));
  2247. if (compute_graph_tmp == nullptr) {
  2248. ReturnError(graph_manager, args.callback, GE_GRAPH_GRAPH_NODE_NULL,
  2249. "[RunGraph] compute_graph_tmp is NULL, graph id = %u.");
  2250. graph_node->Unlock();
  2251. return;
  2252. }
  2253. // when set incre build, save cache helper.
  2254. graph_manager->AddModelCacheHelperToMap(args.graph_id, args.session_id, compute_graph_tmp);
  2255. std::vector<GeModelPtr> ge_models;
  2256. if (graph_manager->options_.local_fmk_op_flag) {
  2257. graph_manager->GetCompilerStages(graph_node->GetGraphId()).optimizer.TranFrameOp(compute_graph_tmp);
  2258. }
  2259. // it will not execute graph preprocess, optimize, parition, build if the graph has built successful.
  2260. GELOGI("Start for run graph async.");
  2261. GeRootModelPtr ge_root_model = nullptr;
  2262. if (graph_manager->IsGraphNeedBuild(graph_node)) {
  2263. if (graph_node->GetBuildFlag()) {
  2264. ReturnError(graph_manager, args.callback, PARAM_INVALID,
  2265. "The graph " + std::to_string(graph_node->GetGraphId()) +
  2266. " need to re-build, you should remove it"
  2267. " from GE first, then AddGraph again and rebuild it.");
  2268. graph_node->Unlock();
  2269. return;
  2270. }
  2271. // check need incre build.
  2272. GeModelPtr ge_model = nullptr;
  2273. if (graph_manager->IncreBuild(graph_node, ge_model) != SUCCESS) {
  2274. ret = graph_manager->PreRun(graph_node, ge_inputs, ge_root_model, args.session_id);
  2275. // release rts generate context
  2276. RtContextUtil::GetInstance().DestroyRtContexts(args.session_id, graph_node->GetGraphId());
  2277. if (ret != SUCCESS) {
  2278. graph_node->SetRunFlag(false);
  2279. if (!ge::Analyzer::GetInstance()->IsEnableNetAnalyzeDebug()) {
  2280. ReturnError(graph_manager, args.callback, ret, "PreRun Failed, thread exit..");
  2281. graph_node->Unlock();
  2282. return;
  2283. } else {
  2284. ReturnError(graph_manager, graph_node, args.callback, ret, "PreRun Failed, keep geop continue!");
  2285. graph_node->Unlock();
  2286. continue;
  2287. }
  2288. }
  2289. }
  2290. graph_node->SetBuildFlag(true);
  2291. graph_manager->var_acc_ctrl_.SetGraphBuildEnd(graph_node->GetGraphId());
  2292. } else {
  2293. ge_root_model = graph_node->GetGeRootModel();
  2294. }
  2295. graph_manager->run_args_q_.Push(RunArgs( { graph_node, args.graph_id, args.session_id, args.input_tensor,
  2296. ge_root_model, GetThreadLocalContext(), args.callback }));
  2297. GELOGI("Loop end.");
  2298. }
  2299. }
  2300. void GraphManager::RunThread(GraphManager *graph_manager) {
  2301. if (prctl(PR_SET_NAME, ("GE_Run")) != 0) {
  2302. GELOGW("Set thread name failed.");
  2303. }
  2304. RunArgs args;
  2305. while (graph_manager->thread_run_flag_) {
  2306. bool pop_status = graph_manager->run_args_q_.Pop(args);
  2307. if (!pop_status) {
  2308. continue;
  2309. }
  2310. GELOGI("A new loop start.");
  2311. GetContext().SetSessionId(args.session_id);
  2312. GetThreadLocalContext() = args.context;
  2313. graph_manager->UpdateLocalOmgContext(args.graph_id);
  2314. if (args.graph_node->graph_run_async_listener_ != nullptr) {
  2315. args.graph_node->graph_run_async_listener_->SetCallback(args.callback);
  2316. }
  2317. Status ret;
  2318. if (!args.graph_node->GetLoadFlag()) {
  2319. ret = graph_manager->LoadGraphAsync(args.ge_root_model, args.graph_node);
  2320. if (ret != SUCCESS || args.ge_root_model == nullptr) {
  2321. StopQueue(graph_manager);
  2322. ReturnError(graph_manager, args.callback, ret, "LoadGraphAsync failed, thread exit.");
  2323. args.graph_node->Unlock();
  2324. return;
  2325. }
  2326. args.graph_node->SetLoadFlag(true);
  2327. GELOGI("LoadGraph[%u], model[%u] success and set LoadFlag to true.", args.graph_node->GetGraphId(),
  2328. args.ge_root_model->GetModelId());
  2329. }
  2330. if (graph_manager->GetTrainFlag()) {
  2331. ret = graph_manager->graph_executor_.SetGraphContext(graph_manager->GetGraphContext());
  2332. if (ret != SUCCESS) {
  2333. GELOGW("[GraphManager] SetGraphContext failed, graph_id=%u.", args.graph_id);
  2334. }
  2335. graph_manager->graph_executor_.SetTrainFlag(graph_manager->options_.train_graph_flag);
  2336. }
  2337. ret = graph_manager->graph_executor_.ExecuteGraphAsync(args.graph_id, args.graph_node->GetGeRootModel(),
  2338. args.input_tensor);
  2339. args.graph_node->SetRunFlag(false);
  2340. args.graph_node->Unlock();
  2341. if (ret != SUCCESS) {
  2342. GELOGE(ret, "[GraphManager] Run graph async failed, graph_id=%u.", args.graph_id);
  2343. StopQueue(graph_manager);
  2344. return;
  2345. }
  2346. GELOGI("[GraphManager] Run graph async success, graph_id=%u.", args.graph_id);
  2347. }
  2348. }
  2349. void GraphManager::StopQueue(GraphManager *graph_manager) {
  2350. if (graph_manager == nullptr) {
  2351. return;
  2352. }
  2353. graph_manager->thread_run_flag_.store(false);
  2354. graph_manager->prerun_args_q_.Stop();
  2355. graph_manager->run_args_q_.Stop();
  2356. }
  2357. void GraphManager::ReturnError(GraphManager *graph_manager, RunAsyncCallback callback, Status ret, const string &log) {
  2358. if (graph_manager == nullptr) {
  2359. return;
  2360. }
  2361. StopQueue(graph_manager);
  2362. GELOGE(ret, "%s.", log.c_str());
  2363. std::vector<ge::OutputTensorInfo> outputs;
  2364. callback(ret, outputs);
  2365. }
  2366. void GraphManager::ReturnError(GraphManager *graph_manager, GraphNodePtr &graph_node,
  2367. RunAsyncCallback callback, Status ret, const string &log) {
  2368. std::vector<ge::OutputTensorInfo> outputs;
  2369. auto compute_graph = GraphUtils::GetComputeGraph(*graph_node->GetGraph());
  2370. if (graph_manager == nullptr || compute_graph == nullptr) {
  2371. GELOGE(GRAPH_FAILED, "[Analyze Mode] compute graph is null!");
  2372. callback(GRAPH_FAILED, outputs);
  2373. return;
  2374. }
  2375. for (const auto &node : compute_graph->GetAllNodes()) {
  2376. if (node->GetType() != "NetOutput") {
  2377. continue;
  2378. }
  2379. for (size_t i = 0; i < node->GetAllInDataAnchorsSize(); i++) {
  2380. auto input_desc = node->GetOpDesc()->MutableInputDesc(i);
  2381. ge::OutputTensorInfo tensor;
  2382. tensor.dims = input_desc->GetShape().GetDims();
  2383. tensor.data_type = static_cast<uint32_t>(input_desc->GetDataType());
  2384. int64_t len = 1;
  2385. if (input_desc->GetShape().GetDims() != std::vector<int64_t>({})) {
  2386. len = input_desc->GetShape().GetShapeSize();
  2387. }
  2388. if (len < 0) {
  2389. GELOGE(GRAPH_FAILED, "Analyze Mode does not support GEOP output unknown shape!");
  2390. callback(GRAPH_FAILED, outputs);
  2391. return;
  2392. } else if (len == 0) {
  2393. GELOGI("getted shape size is 0.Do process as empty tensor!");
  2394. len = 1;
  2395. }
  2396. auto size = GetSizeByDataType(input_desc->GetDataType());
  2397. if (size <= 0) {
  2398. GELOGE(PARAM_INVALID, "Failed to get cube size, the data type %s is invalid",
  2399. ge::TypeUtils::DataTypeToSerialString(input_desc->GetDataType()).c_str());
  2400. callback(GRAPH_FAILED, outputs);
  2401. return;
  2402. }
  2403. if (CheckInt64MulOverflow(len, static_cast<int64_t>(size)) != true) {
  2404. GELOGE(MEMALLOC_FAILED, "int64 multiply happens overflow! a:%ld b:%d", len, size);
  2405. callback(GRAPH_FAILED, outputs);
  2406. return;
  2407. }
  2408. tensor.length = len * size;
  2409. tensor.data.reset(new(std::nothrow) uint8_t[tensor.length]);
  2410. // To avoid global step too small and can not stop, totally set a bigger value
  2411. for (int64_t i = 0; i < tensor.length; i++) {
  2412. tensor.data[i] = 0x7F; // here stands for a positive max value
  2413. }
  2414. outputs.emplace_back(std::move(tensor));
  2415. }
  2416. }
  2417. callback(SUCCESS, outputs);
  2418. return;
  2419. }
  2420. bool GraphManager::IsGraphNeedRebuild(uint32_t graph_id) {
  2421. // find graph
  2422. GraphNodePtr graph_node = nullptr;
  2423. Status ret = GetGraphNode(graph_id, graph_node);
  2424. if (ret != SUCCESS) {
  2425. GELOGE(ret, "[RunGraph] graph not exist, graph_id=%u.", graph_id);
  2426. return true;
  2427. }
  2428. if (graph_node == nullptr) {
  2429. GELOGE(GE_GRAPH_GRAPH_NODE_NULL, "[RunGraph] graph node is NULL, graphId=%u.", graph_id);
  2430. return true;
  2431. }
  2432. return IsGraphNeedBuild(graph_node);
  2433. }
  2434. bool GraphManager::IsGraphNeedBuild(const GraphNodePtr &graph_node) {
  2435. return !graph_node->GetBuildFlag() || var_acc_ctrl_.IsGraphNeedRebuild(graph_node->GetGraphId());
  2436. }
  2437. const map<std::string, std::string> *GraphManager::GetGraphOptions(uint32_t graph_id) {
  2438. GraphNodePtr graph_node = nullptr;
  2439. Status ret = GetGraphNode(graph_id, graph_node);
  2440. if (ret != SUCCESS) {
  2441. GELOGE(ret, "[RunGraph] graph not exist, graph_id=%u.", graph_id);
  2442. return nullptr;
  2443. }
  2444. if (!graph_node) {
  2445. GELOGE(GE_GRAPH_GRAPH_NODE_NULL, "[RunGraph] graph node is NULL, graph_id=%u.", graph_id);
  2446. return nullptr;
  2447. }
  2448. return &(graph_node->GetOptions());
  2449. }
  2450. void GraphManager::SetOptionsRunGraphFlag(bool run_graph_flag) { options_.run_graph_flag = run_graph_flag; }
  2451. Status GraphManager::OptimizeSubgraph(const GraphNodePtr &graph_node, ComputeGraphPtr &compute_graph,
  2452. uint64_t session_id) {
  2453. // graph partition
  2454. // Stage partition, only for root graph
  2455. GE_TIMESTAMP_START(StagePartition);
  2456. StagePartitioner stage_partitioner(compute_graph);
  2457. auto ret = stage_partitioner.Partition();
  2458. if (ret != SUCCESS) {
  2459. GELOGE(ret, "Graph partition by stage Failed");
  2460. return ret;
  2461. }
  2462. GE_TIMESTAMP_EVENT_END(StagePartition, "OptimizeSubgraph::StagePartition");
  2463. // all sub graph list of root graph and sub graph
  2464. GE_TIMESTAMP_START(GraphPartitionDynamicShape);
  2465. DynamicShapePartitioner dynamic_shape_partitioner(compute_graph);
  2466. ret = dynamic_shape_partitioner.Partition();
  2467. if (ret != SUCCESS) {
  2468. GELOGE(ret, "Graph partition by dynamic shape Failed");
  2469. return ret;
  2470. }
  2471. bool dynamic_shape_partitioned = false;
  2472. if (!AttrUtils::GetBool(*compute_graph, ATTR_NAME_DYNAMIC_SHAPE_PARTITIONED, dynamic_shape_partitioned)) {
  2473. GELOGE(FAILED, "failed get dynamic shape partitioned flag on partitioned graph.");
  2474. return FAILED;
  2475. }
  2476. GE_TIMESTAMP_EVENT_END(GraphPartitionDynamicShape, "OptimizeSubgraph::GraphPartitionDynamicShape");
  2477. GE_TIMESTAMP_START(GraphPartition);
  2478. GraphPartitioner &partitioner = GetCompilerStages(graph_node->GetGraphId()).partitioner;
  2479. ret = partitioner.Partition(compute_graph, GraphPartitioner::kPartitioning);
  2480. if (ret != SUCCESS) {
  2481. GELOGE(ret, "Graph partition Failed");
  2482. return ret;
  2483. }
  2484. GE_TIMESTAMP_EVENT_END(GraphPartition, "OptimizeSubgraph::Partition1");
  2485. GE_TIMESTAMP_START(SetSubgraph);
  2486. ret = SetSubgraph(session_id, compute_graph, partitioner);
  2487. if (ret != SUCCESS) {
  2488. GELOGE(ret, "Graph set subgraph Failed");
  2489. return ret;
  2490. }
  2491. GE_TIMESTAMP_EVENT_END(SetSubgraph, "OptimizeSubgraph::SetSubGraph");
  2492. if ((options_.build_mode == BUILD_MODE_TUNING) &&
  2493. (options_.build_step == BUILD_STEP_BEFORE_UB_MATCH || options_.build_step == BUILD_STEP_AFTER_BUILDER ||
  2494. options_.build_step == BUILD_STEP_AFTER_BUILDER_SUB)) {
  2495. GE_TIMESTAMP_START(ConvertGraphToFile);
  2496. std::string tuning_path;
  2497. (void) GetContext().GetOption(TUNING_PATH, tuning_path);
  2498. Status ret = ConvertGraphToFile(compute_graph, partitioner, tuning_path,
  2499. (options_.build_step == BUILD_STEP_AFTER_BUILDER));
  2500. if (ret != SUCCESS) {
  2501. GELOGE(ret, "Convert graph[%s] to file failed", compute_graph->GetName().c_str());
  2502. return ret;
  2503. }
  2504. GE_TIMESTAMP_EVENT_END(ConvertGraphToFile, "OptimizeSubgraph::ConvertGraphToFile");
  2505. return SUCCESS;
  2506. }
  2507. ComputeGraphPtr merged_compute_graph = nullptr;
  2508. std::vector<ComputeGraphPtr> merged_sub_graph_list;
  2509. GE_TIMESTAMP_START(MergeSubgraph);
  2510. ret = MergeSubGraph(merged_compute_graph, compute_graph, graph_node->GetGraphId());
  2511. if (ret != SUCCESS) {
  2512. GELOGE(ret, "Merge SubGraph Failed");
  2513. return ret;
  2514. }
  2515. GE_CHECK_NOTNULL(merged_compute_graph);
  2516. merged_compute_graph->SetSessionID(session_id);
  2517. merged_compute_graph->SetGraphID(graph_node->GetGraphId());
  2518. merged_compute_graph->SetNeedIteration(compute_graph->GetNeedIteration());
  2519. for (auto &sub_graph : merged_compute_graph->GetAllSubgraphs()) {
  2520. sub_graph->SetSessionID(session_id);
  2521. sub_graph->SetGraphID(graph_node->GetGraphId());
  2522. }
  2523. GE_TIMESTAMP_EVENT_END(MergeSubgraph, "OptimizeSubgraph::MergeSubGraph");
  2524. GE_DUMP(merged_compute_graph, "mergedComputeGraph");
  2525. compute_graph = merged_compute_graph;
  2526. if (!AttrUtils::SetBool(*compute_graph, ATTR_NAME_DYNAMIC_SHAPE_PARTITIONED, dynamic_shape_partitioned)) {
  2527. GELOGE(FAILED, "failed set dynamic shape partitioned flag on partitioned graph.");
  2528. return FAILED;
  2529. }
  2530. return SUCCESS;
  2531. }
  2532. Status GraphManager::ConvertGraphToFile(ComputeGraphPtr &compute_graph, GraphPartitioner &partitioner, std::string path,
  2533. bool exe_flag) {
  2534. GE_CHECK_NOTNULL(compute_graph);
  2535. GELOGI("compute_graph [%s] path [%s] Enter ConvertGraphToFile.", compute_graph->GetName().c_str(), path.c_str());
  2536. std::vector<ComputeGraphPtr> non_tuning_subgraphs;
  2537. auto input_node_sub_graph_map = partitioner.graph_2_input_subgraph_;
  2538. const auto &input_subgraph_info = input_node_sub_graph_map[compute_graph];
  2539. GE_CHECK_NOTNULL(input_subgraph_info);
  2540. ComputeGraphPtr input_graph_tmp = input_subgraph_info->GetSubGraph();
  2541. non_tuning_subgraphs.push_back(input_graph_tmp);
  2542. auto sub_graph_map = partitioner.GetSubGraphMap();
  2543. const auto &subgraph_infos = sub_graph_map[compute_graph];
  2544. std::vector<ComputeGraphPtr> tuning_subgraphs;
  2545. for (const auto &sub_graph_info_ptr: subgraph_infos) {
  2546. GE_CHECK_NOTNULL(sub_graph_info_ptr);
  2547. ComputeGraphPtr sub_graph_tmp = sub_graph_info_ptr->GetSubGraph();
  2548. // need to tuning
  2549. if (sub_graph_info_ptr->GetEngineName() == kVectorEngine || sub_graph_info_ptr->GetEngineName() == kAIcoreEngine) {
  2550. tuning_subgraphs.push_back(sub_graph_tmp);
  2551. } else {
  2552. non_tuning_subgraphs.push_back(sub_graph_tmp);
  2553. }
  2554. }
  2555. return TuningUtils::ConvertGraphToFile(tuning_subgraphs, non_tuning_subgraphs, exe_flag, path);
  2556. }
  2557. Status GraphManager::Build(const GraphNodePtr &graph_node, ComputeGraphPtr &compute_graph,
  2558. GeRootModelPtr &ge_root_model, uint64_t session_id) {
  2559. // build
  2560. if (compute_graph != nullptr) {
  2561. std::string graph_name = compute_graph->GetName();
  2562. graph_name.append("_");
  2563. graph_name.append(std::to_string(graph_node->GetGraphId()));
  2564. compute_graph->SetName(graph_name);
  2565. }
  2566. std::vector<SubGraphInfoPtr> sub_graph_list;
  2567. auto ret = GetCompilerStages(graph_node->GetGraphId()).builder.Build(compute_graph, sub_graph_list, ge_root_model,
  2568. session_id);
  2569. if (ret != SUCCESS) {
  2570. GELOGE(ret, "SubGraph build Failed.");
  2571. return ret;
  2572. }
  2573. bool is_always_dump = false;
  2574. if (!PropertiesManager::Instance().GetDumpProperties(session_id).GetDumpPath().empty()) {
  2575. is_always_dump = true;
  2576. }
  2577. GraphUtils::DumpGEGraph(compute_graph, "Build", is_always_dump);
  2578. GraphUtils::DumpGEGraphToOnnx(*compute_graph, "Build");
  2579. graph_node->SetGeRootModel(ge_root_model);
  2580. return SUCCESS;
  2581. }
  2582. Status GraphManager::GenCheckPointGraph(const std::map<std::string, GeTensorDesc> &all_variables, Graph &graph) {
  2583. ge::ComputeGraphPtr compute_graph = MakeShared<ComputeGraph>(kCheckPointGraph);
  2584. GE_CHECK_NOTNULL(compute_graph);
  2585. OpDescPtr save_desc = MakeShared<ge::OpDesc>(compute_graph->GetName() + "_" + kSave, kSave);
  2586. GE_CHECK_NOTNULL(save_desc);
  2587. uint32_t save_index = 0;
  2588. for (auto iter = all_variables.begin(); iter != all_variables.end(); ++iter) {
  2589. GE_CHK_GRAPH_STATUS_RET(save_desc->AddInputDesc(save_index, iter->second));
  2590. save_index++;
  2591. }
  2592. NodePtr save_node = compute_graph->AddNode(save_desc);
  2593. uint32_t index = 0;
  2594. for (auto iter = all_variables.begin(); iter != all_variables.end(); ++iter) {
  2595. OpDescPtr var_desc = MakeShared<ge::OpDesc>(iter->first, VARIABLE);
  2596. GE_CHECK_NOTNULL(var_desc);
  2597. if (!AttrUtils::SetBool(var_desc, kCheckPointForGetVar, true)) {
  2598. GELOGW("Set check point graph attr failed.");
  2599. }
  2600. GE_CHK_GRAPH_STATUS_RET(var_desc->AddOutputDesc(iter->second));
  2601. NodePtr var_node = compute_graph->AddNode(var_desc);
  2602. GE_CHK_STATUS(GraphUtils::AddEdge(var_node->GetOutDataAnchor(0), save_node->GetInDataAnchor(index)),
  2603. "Add edge[%s->%s] fail.", var_node->GetName().c_str(), save_node->GetName().c_str());
  2604. index++;
  2605. }
  2606. compute_graph->Dump();
  2607. graph = GraphUtils::CreateGraphFromComputeGraph(compute_graph);
  2608. return SUCCESS;
  2609. }
  2610. Status GraphManager::SaveVariables(const Graph &graph, const std::vector<std::string> &var_names,
  2611. const std::vector<Tensor> &outputs, std::vector<Tensor> &var_values) {
  2612. map<string, Tensor> var_results;
  2613. GE_CHK_STATUS_RET(SaveCheckPointResult(graph, outputs, var_results), "Save check point result failed.");
  2614. if (!var_names.empty()) {
  2615. for (const auto &var_name : var_names) {
  2616. if (var_results.count(var_name) == 0) {
  2617. GELOGE(FAILED, "Fetch var[%s] value failed.", var_name.c_str());
  2618. return FAILED;
  2619. } else {
  2620. auto var_tensor = var_results[var_name].GetTensorDesc();
  2621. var_tensor.SetName(var_name);
  2622. var_results[var_name].SetTensorDesc(var_tensor);
  2623. var_values.emplace_back(var_results[var_name]);
  2624. }
  2625. }
  2626. } else {
  2627. for (auto iter = var_results.begin(); iter != var_results.end(); ++iter) {
  2628. string var_name = iter->first;
  2629. auto var_tensor = iter->second.GetTensorDesc();
  2630. var_tensor.SetName(var_name);
  2631. iter->second.SetTensorDesc(var_tensor);
  2632. var_values.emplace_back(iter->second);
  2633. }
  2634. }
  2635. return SUCCESS;
  2636. }
  2637. Status GraphManager::SaveCheckPointResult(const Graph &graph, const std::vector<Tensor> &outputs,
  2638. map<string, Tensor> &var_results) {
  2639. auto compute_graph = GraphUtils::GetComputeGraph(graph);
  2640. NodePtr netoutput_node = nullptr;
  2641. for (const auto &node : compute_graph->GetAllNodes()) {
  2642. if (node->GetType() == NETOUTPUT) {
  2643. netoutput_node = node;
  2644. break;
  2645. }
  2646. }
  2647. GE_CHECK_NOTNULL(netoutput_node);
  2648. for (const auto &in : netoutput_node->GetAllInDataAnchors()) {
  2649. auto out_anchor = in->GetPeerOutAnchor();
  2650. GE_CHECK_NOTNULL(out_anchor);
  2651. auto peer_node = out_anchor->GetOwnerNode();
  2652. while (peer_node->GetType() != VARIABLE) {
  2653. if (peer_node->GetAllInDataAnchors().size() != 1) {
  2654. GELOGE(FAILED, "peer_node [%s] has more than 1 input in checkpoint Graph.", peer_node->GetName().c_str());
  2655. return FAILED;
  2656. }
  2657. auto peer_node_in_anchor = peer_node->GetAllInDataAnchors().at(0);
  2658. auto peer_node_out_anchor = peer_node_in_anchor->GetPeerOutAnchor();
  2659. if (peer_node_out_anchor != nullptr) {
  2660. peer_node = peer_node_out_anchor->GetOwnerNode();
  2661. if (peer_node->GetType() == VARIABLE) {
  2662. break;
  2663. }
  2664. }
  2665. }
  2666. if (peer_node->GetType() != VARIABLE) {
  2667. GELOGE(FAILED, " peer_node %s is not variable in checkpoint Graph.", peer_node->GetName().c_str());
  2668. return FAILED;
  2669. }
  2670. auto var_name = peer_node->GetName();
  2671. GELOGI("[GraphManager] SaveVariables, varName is %s.", var_name.c_str());
  2672. if (in->GetIdx() >= static_cast<int>(outputs.size())) {
  2673. GELOGE(FAILED, "variable index[%d] out of range[%zu].", in->GetIdx(), outputs.size());
  2674. return FAILED;
  2675. }
  2676. var_results.emplace(var_name, outputs.at(in->GetIdx()));
  2677. }
  2678. return SUCCESS;
  2679. }
  2680. void GraphManager::AddLocalOmgContext(GraphId graph_id, const OmgContext &omg_context) {
  2681. std::lock_guard<std::mutex> lock(member_mutex_);
  2682. omg_contexts_.emplace(graph_id, omg_context);
  2683. SetLocalOmgContext(omg_contexts_[graph_id]);
  2684. }
  2685. void GraphManager::UpdateLocalOmgContext(GraphId graph_id) {
  2686. std::lock_guard<std::mutex> lock(member_mutex_);
  2687. auto iter = omg_contexts_.find(graph_id);
  2688. if (iter != omg_contexts_.end()) {
  2689. SetLocalOmgContext(iter->second);
  2690. } else {
  2691. GELOGW("OmgContext of graph %u not found.", graph_id);
  2692. }
  2693. }
  2694. GraphManager::CompilerStages &GraphManager::GetCompilerStages(GraphId graph_id) {
  2695. std::lock_guard<std::mutex> lock(member_mutex_);
  2696. return compiler_stages_[graph_id];
  2697. }
  2698. void GraphManager::RemoveCompilerStages(GraphId graph_id) {
  2699. std::lock_guard<std::mutex> lock(member_mutex_);
  2700. compiler_stages_.erase(graph_id);
  2701. }
  2702. } // namespace ge

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