forked from huawei/mindspore2022
216 lines
8.7 KiB
C++
216 lines
8.7 KiB
C++
/**
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* This is the C++ adaptation and derivative work of Myia (https://github.com/mila-iqia/myia/).
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*
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* Copyright 2019 Huawei Technologies Co., Ltd
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#ifndef MINDSPORE_CCSRC_OPERATOR_COMPOSITE_H_
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#define MINDSPORE_CCSRC_OPERATOR_COMPOSITE_H_
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#include <vector>
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#include <string>
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#include <unordered_map>
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#include <utility>
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#include <map>
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#include <set>
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#include <memory>
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#include "operator/composite/zip_operation.h"
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#include "operator/composite/list_append_operation.h"
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#include "operator/composite/do_signature.h"
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#include "operator/composite/unpack_call.h"
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#include "pipeline/static_analysis/static_analysis.h"
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#include "utils/misc.h"
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#include "utils/any.h"
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#include "ir/dtype.h"
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#include "ir/meta_func_graph.h"
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namespace mindspore {
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// namespace to support composite operators definition
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namespace prim {
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using AbstractSlicePtr = abstract::AbstractSlicePtr;
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using AbstractScalarPtr = abstract::AbstractScalarPtr;
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using AbstractTensorPtr = abstract::AbstractTensorPtr;
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using ElemwiseMap = std::unordered_map<std::string, PrimitivePtr>;
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using ArgsPairList = std::vector<std::pair<AnfNodePtr, TypePtr>>;
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class MultitypeFuncGraph : public MetaFuncGraph {
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public:
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explicit MultitypeFuncGraph(const std::string& name);
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~MultitypeFuncGraph() override = default;
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MS_DECLARE_PARENT(MultitypeFuncGraph, MetaFuncGraph)
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using specialize_fn = FuncGraph* (*)(TypePtrList);
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// Register a method which specialize based on types vectors;
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virtual void Register(const TypePtrList& types, specialize_fn s_fn);
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virtual void Register(const TypePtrList& types, const py::function& py_fn);
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virtual void Register(const std::vector<std::string>& types_name, const py::function& py_fn);
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virtual void PyRegister(const py::tuple& tuple, const py::function& py_fn);
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FuncGraphPtr GenerateFromTypes(const TypePtrList& types) override;
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size_t GetPyFnCacheSize() const { return fn_cache_py_.size(); }
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const std::unordered_map<TypePtrList, py::function, TypeListHasher, TypeListEqual>& GetPyFunctions() const {
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return fn_cache_py_;
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}
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private:
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std::unordered_map<TypePtrList, specialize_fn, TypeListHasher, TypeListEqual> fn_cache_;
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std::unordered_map<TypePtrList, py::function, TypeListHasher, TypeListEqual> fn_cache_py_;
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};
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using MultitypeFuncGraphPtr = std::shared_ptr<MultitypeFuncGraph>;
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class HyperMap : public MetaFuncGraph {
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public:
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explicit HyperMap(const std::shared_ptr<MultitypeFuncGraph>& fn_leaf = nullptr);
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HyperMap(const HyperMap& h);
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void Init();
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HyperMap& operator=(const HyperMap& h) {
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if (this != &h) {
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fn_leaf_ = h.fn_leaf_;
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broadcast_ = h.broadcast_;
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nonleaf_ = h.nonleaf_;
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if (fn_leaf_) {
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name_ = "hyper_map[" + fn_leaf_->name() + "]";
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}
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}
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return *this;
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}
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~HyperMap() override = default;
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MS_DECLARE_PARENT(HyperMap, MetaFuncGraph)
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abstract::AbstractBasePtrList NormalizeArgs(const abstract::AbstractBasePtrList& args_spec_list) const override;
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FuncGraphPtr GenerateFromTypes(const TypePtrList& args_spec_list) override;
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MetaFuncGraphPtr GetFnLeaf() { return fn_leaf_; }
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private:
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AnfNodePtr FullMake(TypePtr type, const FuncGraphPtr& func_graph, const AnfNodePtr& fn_arg,
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const ArgsPairList& arg_map);
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AnfNodePtr FullMake(const std::shared_ptr<List>& type, const FuncGraphPtr& func_graph, const AnfNodePtr& fn_arg,
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const ArgsPairList& arg_map);
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AnfNodePtr FullMake(const std::shared_ptr<Tuple>& type, const FuncGraphPtr& func_graph, const AnfNodePtr& fn_arg,
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const ArgsPairList& arg_map);
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AnfNodePtr FullMake(const std::shared_ptr<Class>& type, const FuncGraphPtr& func_graph, const AnfNodePtr& fn_arg,
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const ArgsPairList& arg_map);
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AnfNodePtr Make(const FuncGraphPtr& graph, const AnfNodePtr& fn_arg, const ArgsPairList& arg_map);
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ArgsPairList Harmonize(const FuncGraphPtr& graph, const ArgsPairList& args_spec_list);
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MultitypeFuncGraphPtr fn_leaf_;
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bool broadcast_;
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std::set<TypeId> nonleaf_;
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};
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using HyperMapPtr = std::shared_ptr<HyperMap>;
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class HyperMapPy : public HyperMap {
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public:
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explicit HyperMapPy(const std::shared_ptr<MultitypeFuncGraph>& fn_leaf = nullptr) : HyperMap(fn_leaf) {}
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~HyperMapPy() override = default;
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MS_DECLARE_PARENT(HyperMapPy, HyperMap)
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};
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using HyperMapPyPtr = std::shared_ptr<HyperMapPy>;
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extern ValuePtr kCompositeHyperMap;
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class Tail : public MetaFuncGraph {
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public:
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explicit Tail(const std::string& name) : MetaFuncGraph(name) {}
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~Tail() override = default;
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MS_DECLARE_PARENT(Tail, MetaFuncGraph)
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FuncGraphPtr GenerateFuncGraph(const AbstractBasePtrList& args_spec_list) override;
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FuncGraphPtr GenerateTupleFuncGraph(const abstract::AbstractTuplePtr& a_tuple);
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FuncGraphPtr GenerateListFuncGraph(const abstract::AbstractListPtr& a_list);
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friend bool operator==(const Tail& lhs, const Tail& rhs) { return lhs.name_ == rhs.name_; }
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};
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using TailPtr = std::shared_ptr<Tail>;
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class MakeTupleGradient : public MetaFuncGraph {
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public:
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explicit MakeTupleGradient(const std::string& name) : MetaFuncGraph(name) {}
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~MakeTupleGradient() override = default;
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MS_DECLARE_PARENT(MakeTupleGradient, MetaFuncGraph)
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FuncGraphPtr GenerateFuncGraph(const AbstractBasePtrList& args_spec_list) override;
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friend bool operator==(const MakeTupleGradient& lhs, const MakeTupleGradient& rhs) { return lhs.name_ == rhs.name_; }
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};
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using MakeTupleGradientPtr = std::shared_ptr<MakeTupleGradient>;
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class GradOperation : public MetaFuncGraph {
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public:
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explicit GradOperation(const std::string& name, bool get_all = false, bool get_by_list = false,
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bool sens_param = false);
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~GradOperation() override = default;
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MS_DECLARE_PARENT(GradOperation, MetaFuncGraph)
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FuncGraphPtr GetGrad(AnfNodePtr ptrNode, const AnfNodePtr& weights, const std::vector<AnfNodePtr>& ptrParams,
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bool applyJ = false);
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FuncGraphPtr GenerateFuncGraph(const AbstractBasePtrList& args_spec_list) override;
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bool sens_param() const { return sens_param_; }
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bool get_all_;
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bool get_by_list_;
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bool sens_param_;
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private:
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void doGetGrad(const FuncGraphPtr& func_graph, AnfNodePtr ptrOut, AnfNodePtr ptrBprop, AnfNodePtr weights,
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ValueNodePtr opsTupleItem);
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};
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using GradOperationPtr = std::shared_ptr<GradOperation>;
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class ListMap {
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public:
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explicit ListMap(const std::string& name) : name_(name) { cache_.clear(); }
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~ListMap() = default;
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void MakeCond(const std::vector<AnfNodePtr>& lists, const FuncGraphPtr& gnext_ptr, const FuncGraphPtr& graph_ptr);
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void MakeNext(const std::vector<AnfNodePtr>& lists, const FuncGraphPtr& gcond_ptr, const FuncGraphPtr& graph_ptr);
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FuncGraphPtr GenerateFuncGraph(const AbstractBasePtrList& args_spec_list);
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private:
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std::string name_;
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std::map<std::vector<AnyPtr>, FuncGraphPtr> cache_;
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};
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class TupleAdd : public MetaFuncGraph {
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public:
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explicit TupleAdd(const std::string& name) : MetaFuncGraph(name) {}
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~TupleAdd() override = default;
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MS_DECLARE_PARENT(TupleAdd, MetaFuncGraph)
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FuncGraphPtr GenerateFuncGraph(const AbstractBasePtrList& args_spec_list) override;
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friend bool operator==(const TupleAdd& lhs, const TupleAdd& rhs) { return lhs.name_ == rhs.name_; }
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};
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using TupleAddPtr = std::shared_ptr<TupleAdd>;
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class TupleSlice : public MetaFuncGraph {
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public:
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explicit TupleSlice(const std::string& name) : MetaFuncGraph(name) {}
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~TupleSlice() override = default;
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MS_DECLARE_PARENT(TupleSlice, MetaFuncGraph)
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FuncGraphPtr GenerateFuncGraph(const AbstractBasePtrList& args_spec_list) override;
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friend bool operator==(const TupleSlice& lhs, const TupleSlice& rhs) { return lhs.name_ == rhs.name_; }
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};
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using TupleSlicePtr = std::shared_ptr<TupleSlice>;
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class TensorSlice : public MetaFuncGraph {
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public:
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explicit TensorSlice(const std::string& name) : MetaFuncGraph(name) {}
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~TensorSlice() override = default;
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MS_DECLARE_PARENT(TensorSlice, MetaFuncGraph)
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FuncGraphPtr GenerateFuncGraph(const AbstractBasePtrList& args_spec_list) override;
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friend bool operator==(const TensorSlice& lhs, const TensorSlice& rhs) { return lhs.name_ == rhs.name_; }
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};
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using TensorSlicePtr = std::shared_ptr<TensorSlice>;
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} // namespace prim
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} // namespace mindspore
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#endif // MINDSPORE_CCSRC_OPERATOR_COMPOSITE_H_
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