201 lines
6.0 KiB
C++
201 lines
6.0 KiB
C++
// Copyright 2021 The Tint Authors.
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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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#ifndef SRC_PROGRAM_H_
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#define SRC_PROGRAM_H_
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#include <string>
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#include <unordered_set>
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#include "src/ast/function.h"
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#include "src/program_id.h"
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#include "src/sem/info.h"
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#include "src/sem/type_manager.h"
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#include "src/symbol_table.h"
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namespace tint {
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// Forward declarations
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class CloneContext;
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namespace ast {
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class Module;
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} // namespace ast
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/// Program holds the AST, Type information and SymbolTable for a tint program.
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class Program {
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public:
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/// ASTNodeAllocator is an alias to BlockAllocator<ast::Node>
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using ASTNodeAllocator = BlockAllocator<ast::Node>;
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/// SemNodeAllocator is an alias to BlockAllocator<sem::Node>
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using SemNodeAllocator = BlockAllocator<sem::Node>;
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/// Constructor
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Program();
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/// Move constructor
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/// @param rhs the Program to move
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Program(Program&& rhs);
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/// Move constructor from builder
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/// @param builder the builder used to construct the program
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explicit Program(ProgramBuilder&& builder);
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/// Destructor
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~Program();
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/// Move assignment operator
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/// @param rhs the Program to move
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/// @return this Program
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Program& operator=(Program&& rhs);
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/// @returns the unique identifier for this program
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ProgramID ID() const { return id_; }
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/// @returns a reference to the program's types
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const sem::Manager& Types() const {
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AssertNotMoved();
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return types_;
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}
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/// @returns a reference to the program's AST nodes storage
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const ASTNodeAllocator& ASTNodes() const {
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AssertNotMoved();
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return ast_nodes_;
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}
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/// @returns a reference to the program's semantic nodes storage
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const SemNodeAllocator& SemNodes() const {
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AssertNotMoved();
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return sem_nodes_;
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}
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/// @returns a reference to the program's AST root Module
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const ast::Module& AST() const {
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AssertNotMoved();
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return *ast_;
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}
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/// @returns a reference to the program's semantic info
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const sem::Info& Sem() const {
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AssertNotMoved();
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return sem_;
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}
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/// @returns a reference to the program's SymbolTable
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const SymbolTable& Symbols() const {
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AssertNotMoved();
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return symbols_;
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}
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/// @returns a reference to the program's diagnostics
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const diag::List& Diagnostics() const {
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AssertNotMoved();
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return diagnostics_;
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}
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/// Performs a deep clone of this program.
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/// The returned Program will contain no pointers to objects owned by this
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/// Program, and so after calling, this Program can be safely destructed.
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/// @return a new Program copied from this Program
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Program Clone() const;
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/// Performs a deep clone of this Program's AST nodes, types and symbols into
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/// a new ProgramBuilder. Semantic nodes are not cloned, as these will be
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/// rebuilt when the ProgramBuilder builds its Program.
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/// The returned ProgramBuilder will contain no pointers to objects owned by
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/// this Program, and so after calling, this Program can be safely destructed.
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/// @return a new ProgramBuilder copied from this Program
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ProgramBuilder CloneAsBuilder() const;
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/// @returns true if the program has no error diagnostics and is not missing
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/// information
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bool IsValid() const;
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/// @return the TypeInfo pointers of all transforms that have been applied to
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/// this program.
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std::unordered_set<const TypeInfo*> TransformsApplied() const {
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return transforms_applied_;
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}
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/// @param transform the TypeInfo of the transform
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/// @returns true if the transform with the given TypeInfo was applied to the
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/// Program
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bool HasTransformApplied(const TypeInfo* transform) const {
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return transforms_applied_.count(transform);
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}
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/// @returns true if the transform of type `T` was applied.
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template <typename T>
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bool HasTransformApplied() const {
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return HasTransformApplied(&TypeInfo::Of<T>());
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}
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/// Helper for returning the resolved semantic type of the expression `expr`.
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/// @param expr the AST expression
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/// @return the resolved semantic type for the expression, or nullptr if the
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/// expression has no resolved type.
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const sem::Type* TypeOf(const ast::Expression* expr) const;
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/// Helper for returning the resolved semantic type of the AST type `type`.
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/// @param type the AST type
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/// @return the resolved semantic type for the type, or nullptr if the type
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/// has no resolved type.
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const sem::Type* TypeOf(const ast::Type* type) const;
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/// Helper for returning the resolved semantic type of the AST type
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/// declaration `type_decl`.
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/// @param type_decl the AST type declaration
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/// @return the resolved semantic type for the type declaration, or nullptr if
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/// the type declaration has no resolved type.
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const sem::Type* TypeOf(const ast::TypeDecl* type_decl) const;
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/// A function that can be used to print a program
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using Printer = std::string (*)(const Program*);
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/// The Program printer used for testing and debugging.
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static Printer printer;
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private:
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Program(const Program&) = delete;
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/// Asserts that the program has not been moved.
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void AssertNotMoved() const;
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ProgramID id_;
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sem::Manager types_;
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ASTNodeAllocator ast_nodes_;
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SemNodeAllocator sem_nodes_;
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ast::Module* ast_ = nullptr;
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sem::Info sem_;
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SymbolTable symbols_{id_};
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diag::List diagnostics_;
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std::unordered_set<const TypeInfo*> transforms_applied_;
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bool is_valid_ = false; // Not valid until it is built
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bool moved_ = false;
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};
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/// @param program the Program
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/// @returns the ProgramID of the Program
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inline ProgramID ProgramIDOf(const Program* program) {
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return program->ID();
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}
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} // namespace tint
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#endif // SRC_PROGRAM_H_
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