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dump_proto.cc 20 kB

6 years ago
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  1. /**
  2. * Copyright 2019 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 <fstream>
  17. #include <map>
  18. #include <memory>
  19. #include <unordered_map>
  20. #include <unordered_set>
  21. #include <utility>
  22. #include <algorithm>
  23. #include "debug/anf_ir_utils.h"
  24. #include "proto/anf_ir.pb.h"
  25. #include "utils/graph_utils.h"
  26. #include "utils/symbolic.h"
  27. namespace mindspore {
  28. class ProtoExporter {
  29. public:
  30. ProtoExporter() {}
  31. ~ProtoExporter() {}
  32. std::string GetFuncGraphProtoString(const FuncGraphPtr &func_graph);
  33. private:
  34. void InitModelInfo();
  35. void GetOpNodeTypeAndAttrs(const FuncGraphPtr &func_graph, const AnfNodePtr &node, irpb::NodeProto *node_proto);
  36. std::string GetOpNodeInputId(const FuncGraphPtr &func_graph, const AnfNodePtr &node,
  37. const std::map<AnfNodePtr, size_t> &apply_map,
  38. std::map<AnfNodePtr, size_t> *const_map_ptr);
  39. void SetValueToProto(const ValuePtr &attr_value, irpb::ValueProto *value_proto);
  40. void SetScalarToProto(const ScalarPtr &val, irpb::ValueProto *value_proto);
  41. void SetSequenceToProto(const ValueSequeuePtr &val, irpb::ValueProto *value_proto);
  42. void SetDictionaryToProto(const ValueDictionaryPtr &val, irpb::ValueProto *value_proto);
  43. void SetNodeOutputType(const AnfNodePtr &node, irpb::TypeProto *type_proto);
  44. void SetNodeOutputType(const TypePtr &node, const BaseShapePtr &shape, irpb::TypeProto *type_proto);
  45. void ExportFuncGraph(const FuncGraphPtr &func_graph, irpb::GraphProto *graph_proto);
  46. void ExportParameters(const FuncGraphPtr &func_graph, irpb::GraphProto *graph_proto);
  47. void ExportCNodes(const FuncGraphPtr &func_graph, irpb::GraphProto *graph_proto,
  48. std::map<AnfNodePtr, size_t> *const_map_ptr);
  49. void ExportCNode(const FuncGraphPtr &func_graph, const CNodePtr &node, std::map<AnfNodePtr, size_t> *apply_map_ptr,
  50. std::map<AnfNodePtr, size_t> *const_map_ptr, irpb::GraphProto *graph_proto);
  51. void ExportFuncGraphOutput(const FuncGraphPtr &func_graph, const CNodePtr &ret_node,
  52. const std::map<AnfNodePtr, size_t> &apply_map, std::map<AnfNodePtr, size_t> *const_map_ptr,
  53. irpb::GraphProto *graph_proto);
  54. void ExportValueNodes(const std::map<AnfNodePtr, size_t> &const_map, irpb::GraphProto *graph_proto);
  55. static std::string GetConstNodeId(size_t idx) { return std::string("cst") + std::to_string(idx); }
  56. irpb::ModelProto model_;
  57. };
  58. static irpb::DataType GetNumberDataType(const TypePtr &type) {
  59. switch (type->type_id()) {
  60. case kNumberTypeBool:
  61. return irpb::DT_BOOL;
  62. case kNumberTypeInt8:
  63. return irpb::DT_INT8;
  64. case kNumberTypeInt16:
  65. return irpb::DT_INT16;
  66. case kNumberTypeInt32:
  67. return irpb::DT_INT32;
  68. case kNumberTypeInt64:
  69. return irpb::DT_INT64;
  70. case kNumberTypeUInt8:
  71. return irpb::DT_UINT8;
  72. case kNumberTypeUInt16:
  73. return irpb::DT_UINT16;
  74. case kNumberTypeUInt32:
  75. return irpb::DT_UINT32;
  76. case kNumberTypeUInt64:
  77. return irpb::DT_UINT64;
  78. case kNumberTypeFloat16:
  79. return irpb::DT_FLOAT16;
  80. case kNumberTypeFloat32:
  81. return irpb::DT_FLOAT32;
  82. case kNumberTypeFloat64:
  83. return irpb::DT_FLOAT64;
  84. case kNumberTypeInt:
  85. return irpb::DT_BASE_INT;
  86. case kNumberTypeUInt:
  87. return irpb::DT_BASE_UINT;
  88. case kNumberTypeFloat:
  89. return irpb::DT_BASE_FLOAT;
  90. default:
  91. MS_LOG(EXCEPTION) << "Unexpected type " << type->type_name();
  92. }
  93. }
  94. void ProtoExporter::SetNodeOutputType(const TypePtr &type, const BaseShapePtr &shape, irpb::TypeProto *type_proto) {
  95. if (type_proto == nullptr) {
  96. return;
  97. }
  98. if (type == nullptr) {
  99. type_proto->set_data_type(irpb::DT_UNDEFINED);
  100. } else if (type->isa<Number>()) {
  101. type_proto->set_data_type(GetNumberDataType(type));
  102. } else if (type->isa<TensorType>()) {
  103. TypePtr elem_type = dyn_cast<TensorType>(type)->element();
  104. type_proto->mutable_tensor_type()->set_elem_type(GetNumberDataType(elem_type));
  105. type_proto->set_data_type(irpb::DT_TENSOR);
  106. if (shape != nullptr && shape->isa<abstract::Shape>()) {
  107. abstract::ShapePtr shape_info = dyn_cast<abstract::Shape>(shape);
  108. for (const auto &elem : shape_info->shape()) {
  109. type_proto->mutable_tensor_type()->mutable_shape()->add_dim()->set_size(elem);
  110. }
  111. }
  112. } else if (type->isa<IndexedSlicesType>()) {
  113. // Do Nothing
  114. } else if (type->isa<UndeterminedType>()) {
  115. // Do Nothing
  116. } else if (type->isa<Tuple>()) {
  117. TuplePtr tuple_type = dyn_cast<Tuple>(type);
  118. type_proto->set_data_type(irpb::DT_TUPLE);
  119. for (const auto &elem_type : tuple_type->elements()) {
  120. SetNodeOutputType(elem_type, nullptr, type_proto->mutable_sequence_type()->add_elem_types());
  121. }
  122. } else if (type->isa<TypeType>()) {
  123. type_proto->set_data_type(irpb::DT_TYPE);
  124. } else if (type->isa<List>()) {
  125. ListPtr list_type = dyn_cast<List>(type);
  126. type_proto->set_data_type(irpb::DT_LIST);
  127. for (const auto &elem_type : list_type->elements()) {
  128. SetNodeOutputType(elem_type, nullptr, type_proto->mutable_sequence_type()->add_elem_types());
  129. }
  130. } else if (type->isa<TypeAnything>()) {
  131. type_proto->set_data_type(irpb::DT_ANYTHING);
  132. } else if (type->isa<RefKeyType>()) {
  133. type_proto->set_data_type(irpb::DT_REFKEY);
  134. } else if (type->isa<RefType>()) {
  135. type_proto->set_data_type(irpb::DT_REF);
  136. } else if (type->isa<Function>()) {
  137. type_proto->set_data_type(irpb::DT_GRAPH);
  138. } else if (type->isa<TypeNone>()) {
  139. type_proto->set_data_type(irpb::DT_NONE);
  140. } else if (type->isa<String>()) {
  141. type_proto->set_data_type(irpb::DT_STRING);
  142. } else if (type->isa<SymbolicKeyType>()) {
  143. // Do Nothing.
  144. } else {
  145. MS_LOG(EXCEPTION) << "Unknown type: " << type->type_name();
  146. }
  147. }
  148. void ProtoExporter::SetNodeOutputType(const AnfNodePtr &node, irpb::TypeProto *type_proto) {
  149. if (node == nullptr || type_proto == nullptr) {
  150. return;
  151. }
  152. SetNodeOutputType(node->Type(), node->Shape(), type_proto);
  153. }
  154. void ProtoExporter::SetValueToProto(const ValuePtr &val, irpb::ValueProto *value_proto) {
  155. if (val == nullptr || value_proto == nullptr) {
  156. return;
  157. }
  158. if (val->isa<StringImm>()) {
  159. const StringImmPtr &value = dyn_cast<StringImm>(val);
  160. value_proto->set_dtype(irpb::DT_STRING);
  161. value_proto->set_str_val(value->value());
  162. } else if (val->isa<Scalar>()) {
  163. SetScalarToProto(dyn_cast<Scalar>(val), value_proto);
  164. } else if (val->isa<Bool>()) {
  165. value_proto->set_dtype(irpb::DT_TYPE);
  166. value_proto->mutable_type_val()->set_data_type(irpb::DT_BOOL);
  167. } else if (val->isa<Int>()) {
  168. value_proto->set_dtype(irpb::DT_TYPE);
  169. value_proto->mutable_type_val()->set_data_type(irpb::DT_BASE_INT);
  170. } else if (val->isa<Float>()) {
  171. value_proto->set_dtype(irpb::DT_TYPE);
  172. value_proto->mutable_type_val()->set_data_type(irpb::DT_BASE_FLOAT);
  173. } else if (val->isa<ValueSequeue>()) {
  174. SetSequenceToProto(dyn_cast<ValueSequeue>(val), value_proto);
  175. } else if (val->isa<None>()) {
  176. value_proto->set_dtype(irpb::DT_NONE);
  177. value_proto->set_str_val("None");
  178. } else if (val->isa<SymbolicKeyInstance>()) {
  179. SymbolicKeyInstancePtr sym_inst = dyn_cast<SymbolicKeyInstance>(val);
  180. ParameterPtr sym_node = dyn_cast<Parameter>(sym_inst->node());
  181. value_proto->set_dtype(irpb::DT_SYM_INST);
  182. value_proto->set_str_val(sym_node == nullptr ? std::string("nullptr") : sym_node->ToString());
  183. } else if (val->isa<ValueDictionary>()) {
  184. SetDictionaryToProto(dyn_cast<ValueDictionary>(val), value_proto);
  185. } else if (val->isa<tensor::Tensor>()) {
  186. tensor::TensorPtr tensor_ptr = dyn_cast<tensor::Tensor>(val);
  187. value_proto->set_dtype(irpb::DT_TENSOR);
  188. irpb::TensorProto *tensor_proto = value_proto->mutable_tensor_val();
  189. tensor_proto->set_data_type(GetNumberDataType(tensor_ptr->Dtype()));
  190. for (auto &elem : tensor_ptr->shape()) {
  191. tensor_proto->add_dims(elem);
  192. }
  193. } else if (val->isa<TensorType>()) {
  194. value_proto->set_dtype(irpb::DT_TYPE);
  195. irpb::TypeProto *type_proto = value_proto->mutable_type_val();
  196. type_proto->set_data_type(irpb::DT_TENSOR);
  197. TypePtr elem_type = dyn_cast<TensorType>(val)->element();
  198. type_proto->mutable_tensor_type()->set_elem_type(GetNumberDataType(elem_type));
  199. } else {
  200. MS_LOG(WARNING) << "Unsupported type " << val->type_name();
  201. }
  202. }
  203. void ProtoExporter::SetScalarToProto(const ScalarPtr &val, irpb::ValueProto *value_proto) {
  204. if (val == nullptr || value_proto == nullptr) {
  205. return;
  206. }
  207. if (val->isa<BoolImm>()) {
  208. const BoolImmPtr &value = dyn_cast<BoolImm>(val);
  209. value_proto->set_dtype(irpb::DT_BOOL);
  210. value_proto->set_bool_val(value->value());
  211. } else if (val->isa<Int8Imm>()) {
  212. const Int8ImmPtr &value = dyn_cast<Int8Imm>(val);
  213. value_proto->set_dtype(irpb::DT_INT8);
  214. value_proto->set_int_val(value->value());
  215. } else if (val->isa<Int16Imm>()) {
  216. const Int16ImmPtr &value = dyn_cast<Int16Imm>(val);
  217. value_proto->set_dtype(irpb::DT_INT16);
  218. value_proto->set_int_val(value->value());
  219. } else if (val->isa<Int32Imm>()) {
  220. const Int32ImmPtr &value = dyn_cast<Int32Imm>(val);
  221. value_proto->set_dtype(irpb::DT_INT32);
  222. value_proto->set_int_val(value->value());
  223. } else if (val->isa<Int64Imm>()) {
  224. const Int64ImmPtr &value = dyn_cast<Int64Imm>(val);
  225. value_proto->set_dtype(irpb::DT_INT64);
  226. value_proto->set_int_val(value->value());
  227. } else if (val->isa<UInt8Imm>()) {
  228. const UInt8ImmPtr &value = dyn_cast<UInt8Imm>(val);
  229. value_proto->set_dtype(irpb::DT_UINT8);
  230. value_proto->set_uint_val(value->value());
  231. } else if (val->isa<UInt16Imm>()) {
  232. const UInt16ImmPtr &value = dyn_cast<UInt16Imm>(val);
  233. value_proto->set_dtype(irpb::DT_UINT16);
  234. value_proto->set_uint_val(value->value());
  235. } else if (val->isa<UInt32Imm>()) {
  236. const UInt32ImmPtr &value = dyn_cast<UInt32Imm>(val);
  237. value_proto->set_dtype(irpb::DT_UINT32);
  238. value_proto->set_uint_val(value->value());
  239. } else if (val->isa<UInt64Imm>()) {
  240. const UInt64ImmPtr &value = dyn_cast<UInt64Imm>(val);
  241. value_proto->set_dtype(irpb::DT_UINT64);
  242. value_proto->set_uint_val(value->value());
  243. } else if (val->isa<FP32Imm>()) {
  244. const FP32ImmPtr &value = dyn_cast<FP32Imm>(val);
  245. value_proto->set_dtype(irpb::DT_FLOAT32);
  246. value_proto->set_float_val(value->value());
  247. } else if (val->isa<FP64Imm>()) {
  248. const FP64ImmPtr &value = dyn_cast<FP64Imm>(val);
  249. value_proto->set_dtype(irpb::DT_FLOAT64);
  250. value_proto->set_double_val(value->value());
  251. } else {
  252. MS_LOG(EXCEPTION) << "Unknown scalar type " << val->ToString();
  253. }
  254. }
  255. void ProtoExporter::SetSequenceToProto(const ValueSequeuePtr &val, irpb::ValueProto *value_proto) {
  256. if (val == nullptr || value_proto == nullptr) {
  257. return;
  258. }
  259. if (val->isa<ValueTuple>()) {
  260. const ValueTuplePtr &value = dyn_cast<ValueTuple>(val);
  261. value_proto->set_dtype(irpb::DT_TUPLE);
  262. for (const auto &item : value->value()) {
  263. SetValueToProto(item, value_proto->add_values());
  264. }
  265. } else if (val->isa<ValueList>()) {
  266. const ValueListPtr &value = dyn_cast<ValueList>(val);
  267. value_proto->set_dtype(irpb::DT_LIST);
  268. for (const auto &item : value->value()) {
  269. SetValueToProto(item, value_proto->add_values());
  270. }
  271. }
  272. }
  273. void ProtoExporter::SetDictionaryToProto(const ValueDictionaryPtr &val, irpb::ValueProto *value_proto) {
  274. if (val == nullptr || value_proto == nullptr) {
  275. return;
  276. }
  277. value_proto->set_dtype(irpb::DT_DICT);
  278. for (const auto &item : val->value()) {
  279. irpb::NamedValueProto *named_val = value_proto->add_dict_val();
  280. named_val->set_key(item.first);
  281. SetValueToProto(item.second, named_val->mutable_value());
  282. }
  283. }
  284. void ProtoExporter::GetOpNodeTypeAndAttrs(const FuncGraphPtr &, const AnfNodePtr &node, irpb::NodeProto *node_proto) {
  285. if (node == nullptr || node_proto == nullptr) {
  286. return;
  287. }
  288. if (node->isa<CNode>() || node->isa<Parameter>() || IsValueNode<FuncGraph>(node)) {
  289. MS_LOG(EXCEPTION) << "Op node can not be CNode, Parameter or ValueNode Graph. But got " << node->ToString();
  290. }
  291. if (!IsValueNode<Primitive>(node)) {
  292. MS_LOG(EXCEPTION) << "Op node is not primitive: " << node->ToString();
  293. }
  294. const PrimitivePtr &prim = GetValueNode<PrimitivePtr>(node);
  295. node_proto->set_op_type(prim->name());
  296. for (const auto &attr : prim->attrs()) {
  297. irpb::AttributeProto *attr_proto = node_proto->add_attribute();
  298. attr_proto->set_name(attr.first);
  299. SetValueToProto(attr.second, attr_proto->mutable_value());
  300. }
  301. node_proto->set_scope(node->scope()->name());
  302. }
  303. std::string ProtoExporter::GetOpNodeInputId(const FuncGraphPtr &, const AnfNodePtr &node,
  304. const std::map<AnfNodePtr, size_t> &apply_map,
  305. std::map<AnfNodePtr, size_t> *const_map_ptr) {
  306. if (node == nullptr || const_map_ptr == nullptr) {
  307. return "";
  308. }
  309. if (node->isa<CNode>()) {
  310. auto iter = apply_map.find(node);
  311. if (iter == apply_map.end()) {
  312. MS_LOG(EXCEPTION) << "Can not find node '" << node->ToString() << "' in apply_map";
  313. }
  314. return std::to_string(iter->second);
  315. }
  316. if (node->isa<Parameter>()) {
  317. return node->ToString();
  318. }
  319. if (node->isa<ValueNode>()) {
  320. auto iter = const_map_ptr->find(node);
  321. if (iter == const_map_ptr->end()) {
  322. // Start index number from 1
  323. auto const_idx = const_map_ptr->size() + 1;
  324. (*const_map_ptr)[node] = const_idx;
  325. }
  326. return GetConstNodeId((*const_map_ptr)[node]);
  327. }
  328. MS_LOG(EXCEPTION) << "Unknown node type. node is '" << node->ToString() << "'";
  329. }
  330. std::string ProtoExporter::GetFuncGraphProtoString(const FuncGraphPtr &func_graph) {
  331. if (func_graph == nullptr) {
  332. return "";
  333. }
  334. InitModelInfo();
  335. irpb::GraphProto *graph_proto = model_.mutable_graph();
  336. ExportFuncGraph(func_graph, graph_proto);
  337. return model_.SerializeAsString();
  338. }
  339. void ProtoExporter::ExportFuncGraph(const FuncGraphPtr &func_graph, irpb::GraphProto *graph_proto) {
  340. if (func_graph == nullptr || graph_proto == nullptr) {
  341. return;
  342. }
  343. // map for store ValueNodes of this graph
  344. std::map<AnfNodePtr, size_t> const_map;
  345. // set graph name
  346. graph_proto->set_name(func_graph->ToString());
  347. ExportParameters(func_graph, graph_proto);
  348. ExportCNodes(func_graph, graph_proto, &const_map);
  349. ExportValueNodes(const_map, graph_proto);
  350. }
  351. void ProtoExporter::ExportParameters(const FuncGraphPtr &func_graph, irpb::GraphProto *graph_proto) {
  352. if (func_graph == nullptr || graph_proto == nullptr) {
  353. return;
  354. }
  355. std::vector<AnfNodePtr> parameters = func_graph->parameters();
  356. for (auto &param : parameters) {
  357. irpb::ParameterProto *param_proto = graph_proto->add_parameters();
  358. param_proto->set_name(param->ToString());
  359. SetNodeOutputType(param, param_proto->mutable_type());
  360. const ParameterPtr param_ptr = dyn_cast<Parameter>(param);
  361. if (param_ptr == nullptr) {
  362. MS_LOG(EXCEPTION) << "Parameter '" << param->ToString() << "' could not cast to parameter.";
  363. }
  364. }
  365. }
  366. void ProtoExporter::ExportCNodes(const FuncGraphPtr &func_graph, irpb::GraphProto *graph_proto,
  367. std::map<AnfNodePtr, size_t> *const_map_ptr) {
  368. if (func_graph == nullptr || graph_proto == nullptr || const_map_ptr == nullptr) {
  369. return;
  370. }
  371. // topo sort nodes
  372. std::vector<AnfNodePtr> nodes = TopoSort(func_graph->get_return(), SuccIncoming, AlwaysInclude);
  373. std::map<AnfNodePtr, size_t> apply_map;
  374. for (const AnfNodePtr &node : nodes) {
  375. MS_EXCEPTION_IF_NULL(node);
  376. if (!node->isa<CNode>()) {
  377. continue;
  378. }
  379. auto cnode = node->cast<CNodePtr>();
  380. if (cnode != func_graph->get_return()) {
  381. ExportCNode(func_graph, cnode, &apply_map, const_map_ptr, graph_proto);
  382. } else {
  383. ExportFuncGraphOutput(func_graph, cnode, apply_map, const_map_ptr, graph_proto);
  384. }
  385. }
  386. }
  387. void ProtoExporter::ExportCNode(const FuncGraphPtr &func_graph, const CNodePtr &node,
  388. std::map<AnfNodePtr, size_t> *apply_map_ptr,
  389. std::map<AnfNodePtr, size_t> *const_map_ptr, irpb::GraphProto *graph_proto) {
  390. if (func_graph == nullptr || node == nullptr || apply_map_ptr == nullptr || const_map_ptr == nullptr ||
  391. graph_proto == nullptr) {
  392. return;
  393. }
  394. auto apply_idx = apply_map_ptr->size() + 1;
  395. (*apply_map_ptr)[node] = apply_idx;
  396. auto &inputs = node->inputs();
  397. if (inputs.size() < 1) {
  398. MS_LOG(EXCEPTION) << "Inputs of apply node is empty";
  399. }
  400. AnfNodePtr op = inputs[0];
  401. irpb::NodeProto *node_proto = graph_proto->add_node();
  402. // CNode/ConstGraph/Const/Parameter
  403. if (op->isa<CNode>() || IsValueNode<FuncGraph>(op) || op->isa<Parameter>()) {
  404. MS_LOG(WARNING) << "Operator must be a primitive";
  405. } else {
  406. GetOpNodeTypeAndAttrs(func_graph, op, node_proto);
  407. node_proto->set_name(std::to_string(apply_idx));
  408. node_proto->set_scope(node->scope()->name());
  409. // process OP inputs
  410. for (size_t i = 1; i < inputs.size(); ++i) {
  411. irpb::InputProto *input_proto = node_proto->add_input();
  412. input_proto->set_type(irpb::InputProto_EdgeType_DATA_EDGE);
  413. std::string id = GetOpNodeInputId(func_graph, inputs[i], *apply_map_ptr, const_map_ptr);
  414. input_proto->set_name(id);
  415. }
  416. // set node output type
  417. SetNodeOutputType(node, node_proto->mutable_output_type());
  418. }
  419. }
  420. void ProtoExporter::ExportFuncGraphOutput(const FuncGraphPtr &func_graph, const CNodePtr &ret_node,
  421. const std::map<AnfNodePtr, size_t> &apply_map,
  422. std::map<AnfNodePtr, size_t> *const_map_ptr, irpb::GraphProto *graph_proto) {
  423. if (ret_node == nullptr || !ret_node->isa<CNode>()) {
  424. MS_LOG(EXCEPTION) << "Graph return node is illegal";
  425. }
  426. AnfNodePtr arg = ret_node->input(1);
  427. if (graph_proto == nullptr) {
  428. MS_LOG(EXCEPTION) << "graph_proto is nullptr";
  429. }
  430. irpb::OutputProto *output_proto = graph_proto->add_outputs();
  431. if (output_proto == nullptr) {
  432. MS_LOG(EXCEPTION) << "output_proto is nullptr";
  433. }
  434. std::string id = GetOpNodeInputId(func_graph, arg, apply_map, const_map_ptr);
  435. output_proto->set_name(id);
  436. SetNodeOutputType(arg, output_proto->mutable_type());
  437. }
  438. static bool CompareValue(const std::pair<AnfNodePtr, size_t> &x, const std::pair<AnfNodePtr, size_t> &y) {
  439. return x.second < y.second;
  440. }
  441. void ProtoExporter::ExportValueNodes(const std::map<AnfNodePtr, size_t> &const_map, irpb::GraphProto *graph_proto) {
  442. std::vector<std::pair<AnfNodePtr, size_t>> nodes;
  443. (void)std::transform(const_map.cbegin(), const_map.cend(), std::back_inserter(nodes),
  444. [](const std::pair<AnfNodePtr, size_t> &item) { return item; });
  445. sort(nodes.begin(), nodes.end(), CompareValue);
  446. for (auto &item : nodes) {
  447. if (graph_proto == nullptr) {
  448. MS_LOG(EXCEPTION) << "graph_proto is nullptr";
  449. }
  450. irpb::NamedValueProto *named_value = graph_proto->add_const_vals();
  451. MS_EXCEPTION_IF_NULL(named_value);
  452. named_value->set_key(GetConstNodeId(item.second));
  453. SetValueToProto(GetValueNode(item.first), named_value->mutable_value());
  454. }
  455. }
  456. void ProtoExporter::InitModelInfo() { model_.set_ir_version(irpb::IR_VERSION); }
  457. std::string GetFuncGraphProtoString(const FuncGraphPtr &func_graph) {
  458. ProtoExporter exporter;
  459. return exporter.GetFuncGraphProtoString(func_graph);
  460. }
  461. } // namespace mindspore