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static_analysis.h 11 kB

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  1. /**
  2. * This is the C++ adaptation and derivative work of Myia (https://github.com/mila-iqia/myia/).
  3. *
  4. * Copyright 2019 Huawei Technologies Co., Ltd
  5. *
  6. * Licensed under the Apache License, Version 2.0 (the "License");
  7. * you may not use this file except in compliance with the License.
  8. * You may obtain a copy of the License at
  9. *
  10. * http://www.apache.org/licenses/LICENSE-2.0
  11. *
  12. * Unless required by applicable law or agreed to in writing, software
  13. * distributed under the License is distributed on an "AS IS" BASIS,
  14. * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  15. * See the License for the specific language governing permissions and
  16. * limitations under the License.
  17. */
  18. #ifndef PIPELINE_STATIC_ANALYSIS_STATIC_ANALYSIS_H_
  19. #define PIPELINE_STATIC_ANALYSIS_STATIC_ANALYSIS_H_
  20. #include <list>
  21. #include <memory>
  22. #include <string>
  23. #include <unordered_map>
  24. #include <vector>
  25. #include <utility>
  26. #include <map>
  27. #ifdef DEBUG
  28. #include <stack>
  29. #endif
  30. #include "utils/log_adapter.h"
  31. #include "ir/anf.h"
  32. #include "ir/primitive.h"
  33. #include "pipeline/static_analysis/analysis_context.h"
  34. #include "pipeline/static_analysis/abstract_function.h"
  35. #include "pipeline/parse/parse.h"
  36. namespace mindspore {
  37. namespace abstract {
  38. // define attribute value map
  39. using AttrValueMap = std::unordered_map<std::string, ValuePtr>;
  40. using AttrValueMapPtr = std::shared_ptr<AttrValueMap>;
  41. // the class to save evaluated result: abstract value and modified attribute
  42. class EvalResult : public Base {
  43. public:
  44. EvalResult(AbstractBasePtr abs, AttrValueMapPtr attr) : abstract_(abs), attribute_(attr) {}
  45. ~EvalResult() override = default;
  46. MS_DECLARE_PARENT(EvalResult, Base);
  47. AbstractBasePtr abstract() { return abstract_; }
  48. AttrValueMapPtr attribute() { return attribute_; }
  49. private:
  50. AbstractBasePtr abstract_;
  51. AttrValueMapPtr attribute_;
  52. };
  53. using EvalResultPtr = std::shared_ptr<EvalResult>;
  54. // Superclass for AnfNodeConfig and VirtualConfig.
  55. class Config : public Base {
  56. public:
  57. Config() = default;
  58. ~Config() override = default;
  59. MS_DECLARE_PARENT(Config, Base);
  60. virtual EvalResultPtr GetEvaluatedValue() = 0;
  61. };
  62. // Config will be stored in AnalysisCache
  63. using ConfigPtr = std::shared_ptr<Config>;
  64. using ConfigPtrList = std::vector<ConfigPtr>;
  65. // Config to a certain node in a certain context.
  66. class AnfNodeConfig : public Config {
  67. public:
  68. AnfNodeConfig(const AnalysisEnginePtr &engine, const AnfNodePtr &node, const AnalysisContextPtr &context)
  69. : Config(), engine_(std::weak_ptr<AnalysisEngine>(engine)), node_(node) {
  70. FuncGraphPtr fg;
  71. if (IsValueNode<FuncGraph>(node)) {
  72. auto v = node->cast<ValueNodePtr>();
  73. fg = v->value()->cast<FuncGraphPtr>();
  74. } else {
  75. fg = node->func_graph();
  76. }
  77. context_ = nullptr;
  78. if (context != nullptr) {
  79. context_ = context->Filter(fg);
  80. }
  81. }
  82. ~AnfNodeConfig() override = default;
  83. MS_DECLARE_PARENT(AnfNodeConfig, Config);
  84. EvalResultPtr GetEvaluatedValue() override;
  85. AnalysisContextPtr context() const { return context_; }
  86. AnfNodePtr node() const { return node_; }
  87. AnalysisEnginePtr engine() const { return engine_.lock(); }
  88. // used by unordered_map;
  89. bool operator==(const AnfNodeConfig &other) const {
  90. // compare node with pointer, context with pointer except DummyContext as it's created by make_shared;
  91. // context should not be nullptr;
  92. if (context_->IsDummyContext() && other.context_->IsDummyContext()) {
  93. return true;
  94. }
  95. return (node_ == other.node_) && (context_ == other.context_);
  96. }
  97. std::string ToString() const override {
  98. std::ostringstream buffer;
  99. buffer << "Node: " << node_->DebugString() << ", Context: " << context_->ToString();
  100. return buffer.str();
  101. }
  102. private:
  103. // AnalysisEngine is global.
  104. // As AnfNodeConfig is cached in AnalysisEngine.AnalysisCache, use
  105. // weak_ptr to break Config cycle.
  106. std::weak_ptr<AnalysisEngine> engine_;
  107. AnfNodePtr node_;
  108. AnalysisContextPtr context_;
  109. };
  110. using AnfNodeConfigPtr = std::shared_ptr<AnfNodeConfig>;
  111. struct AnfNodeConfigHasher {
  112. std::size_t operator()(const AnfNodeConfigPtr conf) const;
  113. };
  114. struct AnfNodeConfigEqual {
  115. bool operator()(const AnfNodeConfigPtr lhs, const AnfNodeConfigPtr rhs) const;
  116. };
  117. class VirtualConfig : public Config {
  118. public:
  119. explicit VirtualConfig(const AbstractBasePtr &abstract) : Config(), abstract_(abstract) {}
  120. ~VirtualConfig() override = default;
  121. MS_DECLARE_PARENT(VirtualConfig, Config);
  122. EvalResultPtr GetEvaluatedValue() override {
  123. return std::make_shared<EvalResult>(abstract_, std::make_shared<AttrValueMap>());
  124. }
  125. private:
  126. AbstractBasePtr abstract_;
  127. };
  128. // AnalysisCache
  129. class AnalysisCache {
  130. public:
  131. AnalysisCache() = default;
  132. ~AnalysisCache() = default;
  133. void Clear() { cache_.clear(); }
  134. void set_value(const AnfNodeConfigPtr &conf, const EvalResultPtr &arg);
  135. EvalResultPtr GetValue(const AnfNodeConfigPtr &conf);
  136. private:
  137. std::unordered_map<AnfNodeConfigPtr, EvalResultPtr, AnfNodeConfigHasher, AnfNodeConfigEqual> cache_;
  138. };
  139. using PrimEvaluatorMap = std::unordered_map<PrimitivePtr, EvaluatorPtr, PrimitiveHasher, PrimitiveEqual>;
  140. using AnfNodeConfigMap =
  141. std::unordered_map<AnfNodeConfigPtr, AnfNodeConfigPtr, AnfNodeConfigHasher, AnfNodeConfigEqual>;
  142. struct AnalysisResult {
  143. EvalResultPtr inferred;
  144. AnalysisContextPtr context;
  145. };
  146. using EvalTraceRevIter = std::list<std::pair<EvaluatorPtr, AbstractBasePtrList>>::reverse_iterator;
  147. class AnalysisEngine : public std::enable_shared_from_this<AnalysisEngine> {
  148. public:
  149. AnalysisEngine(const PrimEvaluatorMap &prim_evaluator_map, const FuncGraphManagerPtr &func_graph_manager)
  150. : cache_(AnalysisCache()), prim_constructors_(prim_evaluator_map), func_graph_manager_(func_graph_manager) {}
  151. ~AnalysisEngine() = default;
  152. // func_graph: The func_graph to analyze.
  153. // args_spec_list: The abstracted arguments for the func_graph. Must be a tuple of AbstractBase.
  154. AnalysisResult Run(const FuncGraphPtr &func_graph, const AbstractBasePtrList &args_spec_list);
  155. EvalResultPtr GetEvaluatedValue(const AnfNodeConfigPtr &conf);
  156. // Return the Evaluator for the given function.
  157. EvaluatorPtr GetEvaluatorFor(const AbstractFunctionPtr &fn);
  158. AbstractBasePtr EvalValueNode(const ValueNodePtr &value_node, const AnfNodeConfigPtr &conf);
  159. EvalResultPtr EvalCNode(const CNodePtr &cnode, const AnfNodeConfigPtr &conf);
  160. // Infer the result of fn(args).
  161. EvalResultPtr Execute(const AbstractFunctionPtr &fn, const AbstractBasePtrList &args_spec_list);
  162. void Clear();
  163. void ClearEvaluatorCache();
  164. AnalysisCache &cache() { return cache_; }
  165. AnfNodeConfigPtr MakeConfig(const AnfNodePtr &node, const AnalysisContextPtr &context) {
  166. return std::make_shared<AnfNodeConfig>(shared_from_this(), node, context);
  167. }
  168. // Overloaded function.
  169. EvaluatorPtr _GetEvaluatorFor(const std::shared_ptr<PrimitiveAbstractClosure> &fn);
  170. EvaluatorPtr _GetEvaluatorFor(const std::shared_ptr<PartialAbstractClosure> &fn);
  171. EvaluatorPtr _GetEvaluatorFor(const std::shared_ptr<FuncGraphAbstractClosure> &fn);
  172. EvaluatorPtr _GetEvaluatorFor(const std::shared_ptr<MetaFuncGraphAbstractClosure> &fn);
  173. EvaluatorPtr _GetEvaluatorFor(const std::shared_ptr<VirtualAbstractClosure> &fn);
  174. EvaluatorPtr _GetEvaluatorFor(const std::shared_ptr<TypedPrimitiveAbstractClosure> &);
  175. EvaluatorPtr _GetEvaluatorFor(const std::shared_ptr<JTransformedAbstractClosure> &fn);
  176. FuncGraphManagerPtr func_graph_manager() { return func_graph_manager_; }
  177. const AnfNodeConfigMap &anfnode_config_map() const { return anfnode_config_map_; }
  178. // Set the analysis result for orig to the result for new.
  179. // This sets an entry in anfnode_config_map from orig to new.
  180. EvalResultPtr ForwardConfig(const AnfNodeConfigPtr &orig_conf, const AnfNodeConfigPtr new_conf) {
  181. // Use anfnode_config_map_[orig_conf] = new_conf will require AnfNodeConfig provide copy constructor.
  182. (void)anfnode_config_map_.emplace(orig_conf, new_conf);
  183. MS_LOG(DEBUG) << "Forward orig_conf: " << orig_conf->node()->DebugString()
  184. << ", to new_conf: " << new_conf->node()->DebugString();
  185. return GetEvaluatedValue(new_conf);
  186. }
  187. const PrimEvaluatorMap &PrimConstructors() const { return prim_constructors_; }
  188. AnalysisCache cache_;
  189. std::unordered_map<PrimitivePyPtr, EvaluatorPtr> prim_py_evaluators_;
  190. private:
  191. void SetUndeterminedFlag(const EvaluatorPtr &evaluator);
  192. EvaluatorPtr HandleNestedRecursion(const std::vector<EvaluatorPtr> &evaluators, const EvaluatorPtr &eval,
  193. const AbstractBasePtrList &args_spec_list, const EvalTraceRevIter &it,
  194. bool *continue_flag);
  195. EvalResultPtr ProcessEvalResults(const AbstractBasePtrList &out_specs);
  196. const PrimEvaluatorMap &prim_constructors_;
  197. FuncGraphManagerPtr func_graph_manager_;
  198. std::unordered_map<AbstractFunctionPtr, EvaluatorPtr> constructors_;
  199. AnfNodeConfigMap anfnode_config_map_;
  200. // Use a list to trace multiple evaluators.
  201. std::list<std::pair<EvaluatorPtr, AbstractBasePtrList>> eval_trace_;
  202. std::map<EvaluatorPtr, EvaluatorPtr> multi_poss_;
  203. AnalysisContextPtr Run(const FuncGraphPtr &func_graph, const AnalysisContextPtr &context,
  204. const ConfigPtrList &args_conf_list);
  205. EvalResultPtr Eval(const AnfNodeConfigPtr &conf);
  206. EvaluatorPtr _GetEvaluatorFor(const AbstractFunctionPtr &fn);
  207. EvalResultPtr ExecuteEvaluators(const std::vector<EvaluatorPtr> &evaluators, const AnfNodeConfigPtr &out_conf,
  208. const ConfigPtrList &args_conf_list);
  209. EvalResultPtr ExecuteMultipleEvaluators(const std::vector<EvaluatorPtr> &evaluators, const AnfNodeConfigPtr &out_conf,
  210. const ConfigPtrList &args_conf_list);
  211. #ifdef DEBUG
  212. std::vector<AnfNodePtr> compute_conf_stack_;
  213. #endif
  214. };
  215. // Translate the value to an abstract value.
  216. // Arguments:
  217. // value: The value to convert.
  218. // context: The context in which the value was found, used if the value is a Graph.
  219. // conf: The Config to the valuenode we are converting, if there is one,
  220. // so that we can generate a tracking_id.
  221. AbstractBasePtr ToAbstract(const ValuePtr &value, const AnalysisContextPtr &context = nullptr,
  222. const AnfNodeConfigPtr &conf = nullptr);
  223. // Convert a value to an abstract value.
  224. // Arguments:
  225. // v: The value to convert.
  226. // broaden: If True, concrete values will be made more abstract, so e.g.
  227. // the value 1234 would become ANYTHING.
  228. AbstractBasePtr FromValueInside(const ValuePtr &value, bool broaden = false);
  229. template <typename T>
  230. AbstractBasePtr FromValue(const T &value, bool broaden = false) {
  231. return FromValueInside(MakeValue(value), broaden);
  232. }
  233. EvalResultPtr EvalOnePrim(const PrimitivePtr &p, const AbstractBasePtrList &arg_specs);
  234. } // namespace abstract
  235. } // namespace mindspore
  236. #endif // PIPELINE_STATIC_ANALYSIS_STATIC_ANALYSIS_H_