[0dd3a2f] | 1 | // |
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| 2 | // Cforall Version 1.0.0 Copyright (C) 2015 University of Waterloo |
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| 3 | // |
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| 4 | // The contents of this file are covered under the licence agreement in the |
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| 5 | // file "LICENCE" distributed with Cforall. |
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| 6 | // |
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[9cb8e88d] | 7 | // Validate.cc -- |
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[0dd3a2f] | 8 | // |
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| 9 | // Author : Richard C. Bilson |
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| 10 | // Created On : Sun May 17 21:50:04 2015 |
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[312029a] | 11 | // Last Modified By : Peter A. Buhr |
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[07de76b] | 12 | // Last Modified On : Fri Dec 13 23:43:34 2019 |
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| 13 | // Update Count : 363 |
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[0dd3a2f] | 14 | // |
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| 15 | |
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| 16 | // The "validate" phase of translation is used to take a syntax tree and convert it into a standard form that aims to be |
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| 17 | // as regular in structure as possible. Some assumptions can be made regarding the state of the tree after this pass is |
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| 18 | // complete, including: |
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| 19 | // |
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| 20 | // - No nested structure or union definitions; any in the input are "hoisted" to the level of the containing struct or |
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| 21 | // union. |
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| 22 | // |
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| 23 | // - All enumeration constants have type EnumInstType. |
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| 24 | // |
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[3c13c03] | 25 | // - The type "void" never occurs in lists of function parameter or return types. A function |
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| 26 | // taking no arguments has no argument types. |
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[0dd3a2f] | 27 | // |
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| 28 | // - No context instances exist; they are all replaced by the set of declarations signified by the context, instantiated |
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| 29 | // by the particular set of type arguments. |
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| 30 | // |
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| 31 | // - Every declaration is assigned a unique id. |
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| 32 | // |
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| 33 | // - No typedef declarations or instances exist; the actual type is substituted for each instance. |
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| 34 | // |
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| 35 | // - Each type, struct, and union definition is followed by an appropriate assignment operator. |
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| 36 | // |
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| 37 | // - Each use of a struct or union is connected to a complete definition of that struct or union, even if that |
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| 38 | // definition occurs later in the input. |
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[51b7345] | 39 | |
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[0db6fc0] | 40 | #include "Validate.h" |
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| 41 | |
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[d180746] | 42 | #include <cassert> // for assertf, assert |
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[30f9072] | 43 | #include <cstddef> // for size_t |
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[d180746] | 44 | #include <list> // for list |
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| 45 | #include <string> // for string |
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[18e683b] | 46 | #include <unordered_map> // for unordered_map |
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[d180746] | 47 | #include <utility> // for pair |
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[30f9072] | 48 | |
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[18e683b] | 49 | #include "AST/Chain.hpp" |
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[c1ed2ee] | 50 | #include "AST/Decl.hpp" |
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| 51 | #include "AST/Node.hpp" |
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| 52 | #include "AST/Pass.hpp" |
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| 53 | #include "AST/SymbolTable.hpp" |
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| 54 | #include "AST/Type.hpp" |
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[c1398e4] | 55 | #include "AST/TypeSubstitution.hpp" |
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[30f9072] | 56 | #include "CodeGen/CodeGenerator.h" // for genName |
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[9236060] | 57 | #include "CodeGen/OperatorTable.h" // for isCtorDtor, isCtorDtorAssign |
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[25fcb84] | 58 | #include "ControlStruct/Mutate.h" // for ForExprMutator |
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[18e683b] | 59 | #include "Common/CodeLocation.h" // for CodeLocation |
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[7abee38] | 60 | #include "Common/Stats.h" // for Stats::Heap |
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[30f9072] | 61 | #include "Common/PassVisitor.h" // for PassVisitor, WithDeclsToAdd |
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[d180746] | 62 | #include "Common/ScopedMap.h" // for ScopedMap |
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[30f9072] | 63 | #include "Common/SemanticError.h" // for SemanticError |
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| 64 | #include "Common/UniqueName.h" // for UniqueName |
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| 65 | #include "Common/utility.h" // for operator+, cloneAll, deleteAll |
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[16ba4a6f] | 66 | #include "CompilationState.h" // skip some passes in new-ast build |
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[be9288a] | 67 | #include "Concurrency/Keywords.h" // for applyKeywords |
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[30f9072] | 68 | #include "FixFunction.h" // for FixFunction |
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| 69 | #include "Indexer.h" // for Indexer |
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[8b11840] | 70 | #include "InitTweak/GenInit.h" // for fixReturnStatements |
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[d180746] | 71 | #include "InitTweak/InitTweak.h" // for isCtorDtorAssign |
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| 72 | #include "ResolvExpr/typeops.h" // for typesCompatible |
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[4934ea3] | 73 | #include "ResolvExpr/Resolver.h" // for findSingleExpression |
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[2b79a70] | 74 | #include "ResolvExpr/ResolveTypeof.h" // for resolveTypeof |
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[be9288a] | 75 | #include "SymTab/Autogen.h" // for SizeType |
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[07de76b] | 76 | #include "SynTree/LinkageSpec.h" // for C |
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[be9288a] | 77 | #include "SynTree/Attribute.h" // for noAttributes, Attribute |
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[30f9072] | 78 | #include "SynTree/Constant.h" // for Constant |
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[d180746] | 79 | #include "SynTree/Declaration.h" // for ObjectDecl, DeclarationWithType |
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| 80 | #include "SynTree/Expression.h" // for CompoundLiteralExpr, Expressio... |
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| 81 | #include "SynTree/Initializer.h" // for ListInit, Initializer |
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| 82 | #include "SynTree/Label.h" // for operator==, Label |
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| 83 | #include "SynTree/Mutator.h" // for Mutator |
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| 84 | #include "SynTree/Type.h" // for Type, TypeInstType, EnumInstType |
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| 85 | #include "SynTree/TypeSubstitution.h" // for TypeSubstitution |
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| 86 | #include "SynTree/Visitor.h" // for Visitor |
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[fd2debf] | 87 | #include "Validate/HandleAttributes.h" // for handleAttributes |
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[2bfc6b2] | 88 | #include "Validate/FindSpecialDecls.h" // for FindSpecialDecls |
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[d180746] | 89 | |
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| 90 | class CompoundStmt; |
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| 91 | class ReturnStmt; |
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| 92 | class SwitchStmt; |
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[51b7345] | 93 | |
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[b16923d] | 94 | #define debugPrint( x ) if ( doDebug ) x |
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[51b7345] | 95 | |
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| 96 | namespace SymTab { |
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[15f5c5e] | 97 | /// hoists declarations that are difficult to hoist while parsing |
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| 98 | struct HoistTypeDecls final : public WithDeclsToAdd { |
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[29f9e20] | 99 | void previsit( SizeofExpr * ); |
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| 100 | void previsit( AlignofExpr * ); |
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| 101 | void previsit( UntypedOffsetofExpr * ); |
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[95d09bdb] | 102 | void previsit( CompoundLiteralExpr * ); |
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[29f9e20] | 103 | void handleType( Type * ); |
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| 104 | }; |
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| 105 | |
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[a12c81f3] | 106 | struct FixQualifiedTypes final : public WithIndexer { |
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| 107 | Type * postmutate( QualifiedType * ); |
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| 108 | }; |
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| 109 | |
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[a09e45b] | 110 | struct HoistStruct final : public WithDeclsToAdd, public WithGuards { |
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[82dd287] | 111 | /// Flattens nested struct types |
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[0dd3a2f] | 112 | static void hoistStruct( std::list< Declaration * > &translationUnit ); |
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[9cb8e88d] | 113 | |
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[a09e45b] | 114 | void previsit( StructDecl * aggregateDecl ); |
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| 115 | void previsit( UnionDecl * aggregateDecl ); |
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[0f40912] | 116 | void previsit( StaticAssertDecl * assertDecl ); |
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[d419d8e] | 117 | void previsit( StructInstType * type ); |
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| 118 | void previsit( UnionInstType * type ); |
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| 119 | void previsit( EnumInstType * type ); |
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[9cb8e88d] | 120 | |
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[a08ba92] | 121 | private: |
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[ef5b828] | 122 | template< typename AggDecl > void handleAggregate( AggDecl * aggregateDecl ); |
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[c8ffe20b] | 123 | |
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[bdad6eb7] | 124 | AggregateDecl * parentAggr = nullptr; |
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[a08ba92] | 125 | }; |
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[c8ffe20b] | 126 | |
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[cce9429] | 127 | /// Fix return types so that every function returns exactly one value |
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[d24d4e1] | 128 | struct ReturnTypeFixer { |
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[cce9429] | 129 | static void fix( std::list< Declaration * > &translationUnit ); |
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| 130 | |
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[0db6fc0] | 131 | void postvisit( FunctionDecl * functionDecl ); |
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| 132 | void postvisit( FunctionType * ftype ); |
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[cce9429] | 133 | }; |
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| 134 | |
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[de91427b] | 135 | /// Replaces enum types by int, and function or array types in function parameter and return lists by appropriate pointers. |
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[c1ed2ee] | 136 | struct EnumAndPointerDecay_old { |
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[ef5b828] | 137 | void previsit( EnumDecl * aggregateDecl ); |
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| 138 | void previsit( FunctionType * func ); |
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[a08ba92] | 139 | }; |
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[82dd287] | 140 | |
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| 141 | /// Associates forward declarations of aggregates with their definitions |
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[c1ed2ee] | 142 | struct LinkReferenceToTypes_old final : public WithIndexer, public WithGuards, public WithVisitorRef<LinkReferenceToTypes_old>, public WithShortCircuiting { |
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[ef5b828] | 143 | LinkReferenceToTypes_old( const Indexer * indexer ); |
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| 144 | void postvisit( TypeInstType * typeInst ); |
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[be9036d] | 145 | |
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[ef5b828] | 146 | void postvisit( EnumInstType * enumInst ); |
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| 147 | void postvisit( StructInstType * structInst ); |
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| 148 | void postvisit( UnionInstType * unionInst ); |
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| 149 | void postvisit( TraitInstType * traitInst ); |
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[afcb0a3] | 150 | void previsit( QualifiedType * qualType ); |
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| 151 | void postvisit( QualifiedType * qualType ); |
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[be9036d] | 152 | |
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[ef5b828] | 153 | void postvisit( EnumDecl * enumDecl ); |
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| 154 | void postvisit( StructDecl * structDecl ); |
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| 155 | void postvisit( UnionDecl * unionDecl ); |
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[522363e] | 156 | void postvisit( TraitDecl * traitDecl ); |
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[be9036d] | 157 | |
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[ef5b828] | 158 | void previsit( StructDecl * structDecl ); |
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| 159 | void previsit( UnionDecl * unionDecl ); |
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[b95fe40] | 160 | |
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| 161 | void renameGenericParams( std::list< TypeDecl * > & params ); |
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| 162 | |
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[06edda0] | 163 | private: |
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[ef5b828] | 164 | const Indexer * local_indexer; |
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[9cb8e88d] | 165 | |
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[c0aa336] | 166 | typedef std::map< std::string, std::list< EnumInstType * > > ForwardEnumsType; |
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[0dd3a2f] | 167 | typedef std::map< std::string, std::list< StructInstType * > > ForwardStructsType; |
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| 168 | typedef std::map< std::string, std::list< UnionInstType * > > ForwardUnionsType; |
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[c0aa336] | 169 | ForwardEnumsType forwardEnums; |
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[0dd3a2f] | 170 | ForwardStructsType forwardStructs; |
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| 171 | ForwardUnionsType forwardUnions; |
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[b95fe40] | 172 | /// true if currently in a generic type body, so that type parameter instances can be renamed appropriately |
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| 173 | bool inGeneric = false; |
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[a08ba92] | 174 | }; |
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[c8ffe20b] | 175 | |
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[06edda0] | 176 | /// Replaces array and function types in forall lists by appropriate pointer type and assigns each Object and Function declaration a unique ID. |
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[c1ed2ee] | 177 | struct ForallPointerDecay_old final { |
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[8b11840] | 178 | void previsit( ObjectDecl * object ); |
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| 179 | void previsit( FunctionDecl * func ); |
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[bbf3fda] | 180 | void previsit( FunctionType * ftype ); |
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[bd7e609] | 181 | void previsit( StructDecl * aggrDecl ); |
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| 182 | void previsit( UnionDecl * aggrDecl ); |
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[a08ba92] | 183 | }; |
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[c8ffe20b] | 184 | |
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[d24d4e1] | 185 | struct ReturnChecker : public WithGuards { |
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[de91427b] | 186 | /// Checks that return statements return nothing if their return type is void |
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| 187 | /// and return something if the return type is non-void. |
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| 188 | static void checkFunctionReturns( std::list< Declaration * > & translationUnit ); |
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| 189 | |
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[0db6fc0] | 190 | void previsit( FunctionDecl * functionDecl ); |
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| 191 | void previsit( ReturnStmt * returnStmt ); |
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[de91427b] | 192 | |
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[0db6fc0] | 193 | typedef std::list< DeclarationWithType * > ReturnVals; |
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| 194 | ReturnVals returnVals; |
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[de91427b] | 195 | }; |
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| 196 | |
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[48ed81c] | 197 | struct ReplaceTypedef final : public WithVisitorRef<ReplaceTypedef>, public WithGuards, public WithShortCircuiting, public WithDeclsToAdd { |
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| 198 | ReplaceTypedef() : scopeLevel( 0 ) {} |
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[de91427b] | 199 | /// Replaces typedefs by forward declarations |
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[48ed81c] | 200 | static void replaceTypedef( std::list< Declaration * > &translationUnit ); |
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[85c4ef0] | 201 | |
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[48ed81c] | 202 | void premutate( QualifiedType * ); |
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| 203 | Type * postmutate( QualifiedType * qualType ); |
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[a506df4] | 204 | Type * postmutate( TypeInstType * aggregateUseType ); |
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| 205 | Declaration * postmutate( TypedefDecl * typeDecl ); |
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| 206 | void premutate( TypeDecl * typeDecl ); |
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| 207 | void premutate( FunctionDecl * funcDecl ); |
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| 208 | void premutate( ObjectDecl * objDecl ); |
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| 209 | DeclarationWithType * postmutate( ObjectDecl * objDecl ); |
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| 210 | |
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| 211 | void premutate( CastExpr * castExpr ); |
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| 212 | |
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| 213 | void premutate( CompoundStmt * compoundStmt ); |
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| 214 | |
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| 215 | void premutate( StructDecl * structDecl ); |
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| 216 | void premutate( UnionDecl * unionDecl ); |
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| 217 | void premutate( EnumDecl * enumDecl ); |
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[0bcc2b7] | 218 | void premutate( TraitDecl * ); |
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[a506df4] | 219 | |
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[1f370451] | 220 | void premutate( FunctionType * ftype ); |
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| 221 | |
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[a506df4] | 222 | private: |
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[45161b4d] | 223 | template<typename AggDecl> |
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| 224 | void addImplicitTypedef( AggDecl * aggDecl ); |
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[48ed81c] | 225 | template< typename AggDecl > |
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| 226 | void handleAggregate( AggDecl * aggr ); |
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[70a06f6] | 227 | |
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[46f6134] | 228 | typedef std::unique_ptr<TypedefDecl> TypedefDeclPtr; |
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[e491159] | 229 | typedef ScopedMap< std::string, std::pair< TypedefDeclPtr, int > > TypedefMap; |
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[0bcc2b7] | 230 | typedef ScopedMap< std::string, TypeDecl * > TypeDeclMap; |
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[cc79d97] | 231 | TypedefMap typedefNames; |
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[679864e1] | 232 | TypeDeclMap typedeclNames; |
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[cc79d97] | 233 | int scopeLevel; |
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[1f370451] | 234 | bool inFunctionType = false; |
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[a08ba92] | 235 | }; |
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[c8ffe20b] | 236 | |
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[69918cea] | 237 | struct EliminateTypedef { |
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| 238 | /// removes TypedefDecls from the AST |
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| 239 | static void eliminateTypedef( std::list< Declaration * > &translationUnit ); |
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| 240 | |
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| 241 | template<typename AggDecl> |
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[ef5b828] | 242 | void handleAggregate( AggDecl * aggregateDecl ); |
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[69918cea] | 243 | |
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| 244 | void previsit( StructDecl * aggregateDecl ); |
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| 245 | void previsit( UnionDecl * aggregateDecl ); |
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| 246 | void previsit( CompoundStmt * compoundStmt ); |
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| 247 | }; |
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| 248 | |
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[d24d4e1] | 249 | struct VerifyCtorDtorAssign { |
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[d1969a6] | 250 | /// ensure that constructors, destructors, and assignment have at least one |
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| 251 | /// parameter, the first of which must be a pointer, and that ctor/dtors have no |
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[9cb8e88d] | 252 | /// return values. |
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| 253 | static void verify( std::list< Declaration * > &translationUnit ); |
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| 254 | |
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[ef5b828] | 255 | void previsit( FunctionDecl * funcDecl ); |
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[5f98ce5] | 256 | }; |
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[70a06f6] | 257 | |
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[11ab8ea8] | 258 | /// ensure that generic types have the correct number of type arguments |
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[d24d4e1] | 259 | struct ValidateGenericParameters { |
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[0db6fc0] | 260 | void previsit( StructInstType * inst ); |
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| 261 | void previsit( UnionInstType * inst ); |
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[5f98ce5] | 262 | }; |
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[70a06f6] | 263 | |
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[2b79a70] | 264 | struct FixObjectType : public WithIndexer { |
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| 265 | /// resolves typeof type in object, function, and type declarations |
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| 266 | static void fix( std::list< Declaration * > & translationUnit ); |
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| 267 | |
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| 268 | void previsit( ObjectDecl * ); |
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| 269 | void previsit( FunctionDecl * ); |
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| 270 | void previsit( TypeDecl * ); |
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| 271 | }; |
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| 272 | |
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[09867ec] | 273 | struct InitializerLength { |
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[fbd7ad6] | 274 | /// for array types without an explicit length, compute the length and store it so that it |
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| 275 | /// is known to the rest of the phases. For example, |
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| 276 | /// int x[] = { 1, 2, 3 }; |
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| 277 | /// int y[][2] = { { 1, 2, 3 }, { 1, 2, 3 } }; |
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| 278 | /// here x and y are known at compile-time to have length 3, so change this into |
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| 279 | /// int x[3] = { 1, 2, 3 }; |
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| 280 | /// int y[3][2] = { { 1, 2, 3 }, { 1, 2, 3 } }; |
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| 281 | static void computeLength( std::list< Declaration * > & translationUnit ); |
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| 282 | |
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[0db6fc0] | 283 | void previsit( ObjectDecl * objDecl ); |
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[09867ec] | 284 | }; |
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| 285 | |
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| 286 | struct ArrayLength : public WithIndexer { |
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| 287 | static void computeLength( std::list< Declaration * > & translationUnit ); |
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| 288 | |
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[3ff4c1e] | 289 | void previsit( ArrayType * arrayType ); |
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[fbd7ad6] | 290 | }; |
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| 291 | |
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[d24d4e1] | 292 | struct CompoundLiteral final : public WithDeclsToAdd, public WithVisitorRef<CompoundLiteral> { |
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[68fe077a] | 293 | Type::StorageClasses storageClasses; |
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[630a82a] | 294 | |
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[ef5b828] | 295 | void premutate( ObjectDecl * objectDecl ); |
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| 296 | Expression * postmutate( CompoundLiteralExpr * compLitExpr ); |
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[9cb8e88d] | 297 | }; |
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| 298 | |
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[5809461] | 299 | struct LabelAddressFixer final : public WithGuards { |
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| 300 | std::set< Label > labels; |
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| 301 | |
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| 302 | void premutate( FunctionDecl * funcDecl ); |
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| 303 | Expression * postmutate( AddressExpr * addrExpr ); |
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| 304 | }; |
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[4fbdfae0] | 305 | |
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[522363e] | 306 | void validate( std::list< Declaration * > &translationUnit, __attribute__((unused)) bool doDebug ) { |
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[c1ed2ee] | 307 | PassVisitor<EnumAndPointerDecay_old> epc; |
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| 308 | PassVisitor<LinkReferenceToTypes_old> lrt( nullptr ); |
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| 309 | PassVisitor<ForallPointerDecay_old> fpd; |
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[d24d4e1] | 310 | PassVisitor<CompoundLiteral> compoundliteral; |
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[0db6fc0] | 311 | PassVisitor<ValidateGenericParameters> genericParams; |
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[5809461] | 312 | PassVisitor<LabelAddressFixer> labelAddrFixer; |
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[15f5c5e] | 313 | PassVisitor<HoistTypeDecls> hoistDecls; |
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[a12c81f3] | 314 | PassVisitor<FixQualifiedTypes> fixQual; |
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[630a82a] | 315 | |
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[3c0d4cd] | 316 | { |
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| 317 | Stats::Heap::newPass("validate-A"); |
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| 318 | Stats::Time::BlockGuard guard("validate-A"); |
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[98538288] | 319 | VerifyCtorDtorAssign::verify( translationUnit ); // must happen before autogen, because autogen examines existing ctor/dtors |
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[3c0d4cd] | 320 | acceptAll( translationUnit, hoistDecls ); |
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| 321 | ReplaceTypedef::replaceTypedef( translationUnit ); |
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| 322 | ReturnTypeFixer::fix( translationUnit ); // must happen before autogen |
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[c1ed2ee] | 323 | acceptAll( translationUnit, epc ); // must happen before VerifyCtorDtorAssign, because void return objects should not exist; before LinkReferenceToTypes_old because it is an indexer and needs correct types for mangling |
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[3c0d4cd] | 324 | } |
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| 325 | { |
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| 326 | Stats::Heap::newPass("validate-B"); |
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| 327 | Stats::Time::BlockGuard guard("validate-B"); |
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[c884f2d] | 328 | Stats::Time::TimeBlock("Link Reference To Types", [&]() { |
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| 329 | acceptAll( translationUnit, lrt ); // must happen before autogen, because sized flag needs to propagate to generated functions |
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| 330 | }); |
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| 331 | Stats::Time::TimeBlock("Fix Qualified Types", [&]() { |
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[c1ed2ee] | 332 | mutateAll( translationUnit, fixQual ); // must happen after LinkReferenceToTypes_old, because aggregate members are accessed |
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[c884f2d] | 333 | }); |
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| 334 | Stats::Time::TimeBlock("Hoist Structs", [&]() { |
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| 335 | HoistStruct::hoistStruct( translationUnit ); // must happen after EliminateTypedef, so that aggregate typedefs occur in the correct order |
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| 336 | }); |
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| 337 | Stats::Time::TimeBlock("Eliminate Typedefs", [&]() { |
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| 338 | EliminateTypedef::eliminateTypedef( translationUnit ); // |
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| 339 | }); |
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[3c0d4cd] | 340 | } |
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| 341 | { |
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| 342 | Stats::Heap::newPass("validate-C"); |
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| 343 | Stats::Time::BlockGuard guard("validate-C"); |
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[c1ed2ee] | 344 | acceptAll( translationUnit, genericParams ); // check as early as possible - can't happen before LinkReferenceToTypes_old |
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[3c0d4cd] | 345 | ReturnChecker::checkFunctionReturns( translationUnit ); |
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| 346 | InitTweak::fixReturnStatements( translationUnit ); // must happen before autogen |
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| 347 | } |
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| 348 | { |
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| 349 | Stats::Heap::newPass("validate-D"); |
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| 350 | Stats::Time::BlockGuard guard("validate-D"); |
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[c884f2d] | 351 | Stats::Time::TimeBlock("Apply Concurrent Keywords", [&]() { |
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| 352 | Concurrency::applyKeywords( translationUnit ); |
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| 353 | }); |
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| 354 | Stats::Time::TimeBlock("Forall Pointer Decay", [&]() { |
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| 355 | acceptAll( translationUnit, fpd ); // must happen before autogenerateRoutines, after Concurrency::applyKeywords because uniqueIds must be set on declaration before resolution |
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| 356 | }); |
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| 357 | Stats::Time::TimeBlock("Hoist Control Declarations", [&]() { |
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| 358 | ControlStruct::hoistControlDecls( translationUnit ); // hoist initialization out of for statements; must happen before autogenerateRoutines |
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| 359 | }); |
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| 360 | Stats::Time::TimeBlock("Generate Autogen routines", [&]() { |
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[c1ed2ee] | 361 | autogenerateRoutines( translationUnit ); // moved up, used to be below compoundLiteral - currently needs EnumAndPointerDecay_old |
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[c884f2d] | 362 | }); |
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[3c0d4cd] | 363 | } |
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| 364 | { |
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| 365 | Stats::Heap::newPass("validate-E"); |
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| 366 | Stats::Time::BlockGuard guard("validate-E"); |
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[c884f2d] | 367 | Stats::Time::TimeBlock("Implement Mutex Func", [&]() { |
---|
| 368 | Concurrency::implementMutexFuncs( translationUnit ); |
---|
| 369 | }); |
---|
| 370 | Stats::Time::TimeBlock("Implement Thread Start", [&]() { |
---|
| 371 | Concurrency::implementThreadStarter( translationUnit ); |
---|
| 372 | }); |
---|
| 373 | Stats::Time::TimeBlock("Compound Literal", [&]() { |
---|
| 374 | mutateAll( translationUnit, compoundliteral ); |
---|
| 375 | }); |
---|
[16ba4a6f] | 376 | if (!useNewAST) { |
---|
| 377 | Stats::Time::TimeBlock("Resolve With Expressions", [&]() { |
---|
| 378 | ResolvExpr::resolveWithExprs( translationUnit ); // must happen before FixObjectType because user-code is resolved and may contain with variables |
---|
| 379 | }); |
---|
| 380 | } |
---|
[3c0d4cd] | 381 | } |
---|
| 382 | { |
---|
| 383 | Stats::Heap::newPass("validate-F"); |
---|
| 384 | Stats::Time::BlockGuard guard("validate-F"); |
---|
[16ba4a6f] | 385 | if (!useNewAST) { |
---|
| 386 | Stats::Time::TimeCall("Fix Object Type", |
---|
| 387 | FixObjectType::fix, translationUnit); |
---|
| 388 | } |
---|
[09867ec] | 389 | Stats::Time::TimeCall("Initializer Length", |
---|
| 390 | InitializerLength::computeLength, translationUnit); |
---|
| 391 | if (!useNewAST) { |
---|
| 392 | Stats::Time::TimeCall("Array Length", |
---|
| 393 | ArrayLength::computeLength, translationUnit); |
---|
| 394 | } |
---|
[095b99a] | 395 | Stats::Time::TimeCall("Find Special Declarations", |
---|
| 396 | Validate::findSpecialDecls, translationUnit); |
---|
| 397 | Stats::Time::TimeCall("Fix Label Address", |
---|
| 398 | mutateAll<LabelAddressFixer>, translationUnit, labelAddrFixer); |
---|
[16ba4a6f] | 399 | if (!useNewAST) { |
---|
| 400 | Stats::Time::TimeCall("Handle Attributes", |
---|
| 401 | Validate::handleAttributes, translationUnit); |
---|
| 402 | } |
---|
[3c0d4cd] | 403 | } |
---|
[a08ba92] | 404 | } |
---|
[9cb8e88d] | 405 | |
---|
[ef5b828] | 406 | void validateType( Type * type, const Indexer * indexer ) { |
---|
[c1ed2ee] | 407 | PassVisitor<EnumAndPointerDecay_old> epc; |
---|
| 408 | PassVisitor<LinkReferenceToTypes_old> lrt( indexer ); |
---|
| 409 | PassVisitor<ForallPointerDecay_old> fpd; |
---|
[bda58ad] | 410 | type->accept( epc ); |
---|
[cce9429] | 411 | type->accept( lrt ); |
---|
[06edda0] | 412 | type->accept( fpd ); |
---|
[a08ba92] | 413 | } |
---|
[c8ffe20b] | 414 | |
---|
[29f9e20] | 415 | |
---|
[15f5c5e] | 416 | void HoistTypeDecls::handleType( Type * type ) { |
---|
[29f9e20] | 417 | // some type declarations are buried in expressions and not easy to hoist during parsing; hoist them here |
---|
| 418 | AggregateDecl * aggr = nullptr; |
---|
| 419 | if ( StructInstType * inst = dynamic_cast< StructInstType * >( type ) ) { |
---|
| 420 | aggr = inst->baseStruct; |
---|
| 421 | } else if ( UnionInstType * inst = dynamic_cast< UnionInstType * >( type ) ) { |
---|
| 422 | aggr = inst->baseUnion; |
---|
| 423 | } else if ( EnumInstType * inst = dynamic_cast< EnumInstType * >( type ) ) { |
---|
| 424 | aggr = inst->baseEnum; |
---|
| 425 | } |
---|
| 426 | if ( aggr && aggr->body ) { |
---|
| 427 | declsToAddBefore.push_front( aggr ); |
---|
| 428 | } |
---|
| 429 | } |
---|
| 430 | |
---|
[15f5c5e] | 431 | void HoistTypeDecls::previsit( SizeofExpr * expr ) { |
---|
[29f9e20] | 432 | handleType( expr->type ); |
---|
| 433 | } |
---|
| 434 | |
---|
[15f5c5e] | 435 | void HoistTypeDecls::previsit( AlignofExpr * expr ) { |
---|
[29f9e20] | 436 | handleType( expr->type ); |
---|
| 437 | } |
---|
| 438 | |
---|
[15f5c5e] | 439 | void HoistTypeDecls::previsit( UntypedOffsetofExpr * expr ) { |
---|
[29f9e20] | 440 | handleType( expr->type ); |
---|
| 441 | } |
---|
| 442 | |
---|
[95d09bdb] | 443 | void HoistTypeDecls::previsit( CompoundLiteralExpr * expr ) { |
---|
| 444 | handleType( expr->result ); |
---|
| 445 | } |
---|
| 446 | |
---|
[29f9e20] | 447 | |
---|
[a12c81f3] | 448 | Type * FixQualifiedTypes::postmutate( QualifiedType * qualType ) { |
---|
| 449 | Type * parent = qualType->parent; |
---|
| 450 | Type * child = qualType->child; |
---|
| 451 | if ( dynamic_cast< GlobalScopeType * >( qualType->parent ) ) { |
---|
| 452 | // .T => lookup T at global scope |
---|
[062e8df] | 453 | if ( TypeInstType * inst = dynamic_cast< TypeInstType * >( child ) ) { |
---|
[a12c81f3] | 454 | auto td = indexer.globalLookupType( inst->name ); |
---|
[062e8df] | 455 | if ( ! td ) { |
---|
| 456 | SemanticError( qualType->location, toString("Use of undefined global type ", inst->name) ); |
---|
| 457 | } |
---|
[a12c81f3] | 458 | auto base = td->base; |
---|
[062e8df] | 459 | assert( base ); |
---|
[8a3ecb9] | 460 | Type * ret = base->clone(); |
---|
| 461 | ret->get_qualifiers() = qualType->get_qualifiers(); |
---|
| 462 | return ret; |
---|
[a12c81f3] | 463 | } else { |
---|
[062e8df] | 464 | // .T => T is not a type name |
---|
| 465 | assertf( false, "unhandled global qualified child type: %s", toCString(child) ); |
---|
[a12c81f3] | 466 | } |
---|
| 467 | } else { |
---|
| 468 | // S.T => S must be an aggregate type, find the declaration for T in S. |
---|
| 469 | AggregateDecl * aggr = nullptr; |
---|
| 470 | if ( StructInstType * inst = dynamic_cast< StructInstType * >( parent ) ) { |
---|
| 471 | aggr = inst->baseStruct; |
---|
| 472 | } else if ( UnionInstType * inst = dynamic_cast< UnionInstType * > ( parent ) ) { |
---|
| 473 | aggr = inst->baseUnion; |
---|
| 474 | } else { |
---|
[062e8df] | 475 | SemanticError( qualType->location, toString("Qualified type requires an aggregate on the left, but has: ", parent) ); |
---|
[a12c81f3] | 476 | } |
---|
| 477 | assert( aggr ); // TODO: need to handle forward declarations |
---|
| 478 | for ( Declaration * member : aggr->members ) { |
---|
[7e08acf] | 479 | if ( TypeInstType * inst = dynamic_cast< TypeInstType * >( child ) ) { |
---|
[8a3ecb9] | 480 | // name on the right is a typedef |
---|
[a12c81f3] | 481 | if ( NamedTypeDecl * aggr = dynamic_cast< NamedTypeDecl * > ( member ) ) { |
---|
| 482 | if ( aggr->name == inst->name ) { |
---|
[062e8df] | 483 | assert( aggr->base ); |
---|
[8a3ecb9] | 484 | Type * ret = aggr->base->clone(); |
---|
| 485 | ret->get_qualifiers() = qualType->get_qualifiers(); |
---|
[7e08acf] | 486 | TypeSubstitution sub = parent->genericSubstitution(); |
---|
| 487 | sub.apply(ret); |
---|
[8a3ecb9] | 488 | return ret; |
---|
[a12c81f3] | 489 | } |
---|
| 490 | } |
---|
| 491 | } else { |
---|
| 492 | // S.T - S is not an aggregate => error |
---|
| 493 | assertf( false, "unhandled qualified child type: %s", toCString(qualType) ); |
---|
| 494 | } |
---|
| 495 | } |
---|
| 496 | // failed to find a satisfying definition of type |
---|
[062e8df] | 497 | SemanticError( qualType->location, toString("Undefined type in qualified type: ", qualType) ); |
---|
[a12c81f3] | 498 | } |
---|
| 499 | |
---|
| 500 | // ... may want to link canonical SUE definition to each forward decl so that it becomes easier to lookup? |
---|
| 501 | } |
---|
| 502 | |
---|
| 503 | |
---|
[a08ba92] | 504 | void HoistStruct::hoistStruct( std::list< Declaration * > &translationUnit ) { |
---|
[a09e45b] | 505 | PassVisitor<HoistStruct> hoister; |
---|
| 506 | acceptAll( translationUnit, hoister ); |
---|
[a08ba92] | 507 | } |
---|
[c8ffe20b] | 508 | |
---|
[ef5b828] | 509 | bool shouldHoist( Declaration * decl ) { |
---|
[0f40912] | 510 | return dynamic_cast< StructDecl * >( decl ) || dynamic_cast< UnionDecl * >( decl ) || dynamic_cast< StaticAssertDecl * >( decl ); |
---|
[a08ba92] | 511 | } |
---|
[c0aa336] | 512 | |
---|
[d419d8e] | 513 | namespace { |
---|
| 514 | void qualifiedName( AggregateDecl * aggr, std::ostringstream & ss ) { |
---|
| 515 | if ( aggr->parent ) qualifiedName( aggr->parent, ss ); |
---|
| 516 | ss << "__" << aggr->name; |
---|
| 517 | } |
---|
| 518 | |
---|
| 519 | // mangle nested type names using entire parent chain |
---|
| 520 | std::string qualifiedName( AggregateDecl * aggr ) { |
---|
| 521 | std::ostringstream ss; |
---|
| 522 | qualifiedName( aggr, ss ); |
---|
| 523 | return ss.str(); |
---|
| 524 | } |
---|
| 525 | } |
---|
| 526 | |
---|
[a08ba92] | 527 | template< typename AggDecl > |
---|
[ef5b828] | 528 | void HoistStruct::handleAggregate( AggDecl * aggregateDecl ) { |
---|
[bdad6eb7] | 529 | if ( parentAggr ) { |
---|
[d419d8e] | 530 | aggregateDecl->parent = parentAggr; |
---|
| 531 | aggregateDecl->name = qualifiedName( aggregateDecl ); |
---|
[0dd3a2f] | 532 | // Add elements in stack order corresponding to nesting structure. |
---|
[a09e45b] | 533 | declsToAddBefore.push_front( aggregateDecl ); |
---|
[0dd3a2f] | 534 | } else { |
---|
[bdad6eb7] | 535 | GuardValue( parentAggr ); |
---|
| 536 | parentAggr = aggregateDecl; |
---|
[0dd3a2f] | 537 | } // if |
---|
| 538 | // Always remove the hoisted aggregate from the inner structure. |
---|
[0f40912] | 539 | GuardAction( [aggregateDecl]() { filter( aggregateDecl->members, shouldHoist, false ); } ); |
---|
[a08ba92] | 540 | } |
---|
[c8ffe20b] | 541 | |
---|
[0f40912] | 542 | void HoistStruct::previsit( StaticAssertDecl * assertDecl ) { |
---|
| 543 | if ( parentAggr ) { |
---|
| 544 | declsToAddBefore.push_back( assertDecl ); |
---|
| 545 | } |
---|
| 546 | } |
---|
| 547 | |
---|
[a09e45b] | 548 | void HoistStruct::previsit( StructDecl * aggregateDecl ) { |
---|
[0dd3a2f] | 549 | handleAggregate( aggregateDecl ); |
---|
[a08ba92] | 550 | } |
---|
[c8ffe20b] | 551 | |
---|
[a09e45b] | 552 | void HoistStruct::previsit( UnionDecl * aggregateDecl ) { |
---|
[0dd3a2f] | 553 | handleAggregate( aggregateDecl ); |
---|
[a08ba92] | 554 | } |
---|
[c8ffe20b] | 555 | |
---|
[d419d8e] | 556 | void HoistStruct::previsit( StructInstType * type ) { |
---|
| 557 | // need to reset type name after expanding to qualified name |
---|
| 558 | assert( type->baseStruct ); |
---|
| 559 | type->name = type->baseStruct->name; |
---|
| 560 | } |
---|
| 561 | |
---|
| 562 | void HoistStruct::previsit( UnionInstType * type ) { |
---|
| 563 | assert( type->baseUnion ); |
---|
| 564 | type->name = type->baseUnion->name; |
---|
| 565 | } |
---|
| 566 | |
---|
| 567 | void HoistStruct::previsit( EnumInstType * type ) { |
---|
| 568 | assert( type->baseEnum ); |
---|
| 569 | type->name = type->baseEnum->name; |
---|
| 570 | } |
---|
| 571 | |
---|
| 572 | |
---|
[ef5b828] | 573 | bool isTypedef( Declaration * decl ) { |
---|
[69918cea] | 574 | return dynamic_cast< TypedefDecl * >( decl ); |
---|
| 575 | } |
---|
| 576 | |
---|
| 577 | void EliminateTypedef::eliminateTypedef( std::list< Declaration * > &translationUnit ) { |
---|
| 578 | PassVisitor<EliminateTypedef> eliminator; |
---|
| 579 | acceptAll( translationUnit, eliminator ); |
---|
| 580 | filter( translationUnit, isTypedef, true ); |
---|
| 581 | } |
---|
| 582 | |
---|
| 583 | template< typename AggDecl > |
---|
[ef5b828] | 584 | void EliminateTypedef::handleAggregate( AggDecl * aggregateDecl ) { |
---|
[69918cea] | 585 | filter( aggregateDecl->members, isTypedef, true ); |
---|
| 586 | } |
---|
| 587 | |
---|
| 588 | void EliminateTypedef::previsit( StructDecl * aggregateDecl ) { |
---|
| 589 | handleAggregate( aggregateDecl ); |
---|
| 590 | } |
---|
| 591 | |
---|
| 592 | void EliminateTypedef::previsit( UnionDecl * aggregateDecl ) { |
---|
| 593 | handleAggregate( aggregateDecl ); |
---|
| 594 | } |
---|
| 595 | |
---|
| 596 | void EliminateTypedef::previsit( CompoundStmt * compoundStmt ) { |
---|
| 597 | // remove and delete decl stmts |
---|
| 598 | filter( compoundStmt->kids, [](Statement * stmt) { |
---|
[ef5b828] | 599 | if ( DeclStmt * declStmt = dynamic_cast< DeclStmt * >( stmt ) ) { |
---|
[69918cea] | 600 | if ( dynamic_cast< TypedefDecl * >( declStmt->decl ) ) { |
---|
| 601 | return true; |
---|
| 602 | } // if |
---|
| 603 | } // if |
---|
| 604 | return false; |
---|
| 605 | }, true); |
---|
| 606 | } |
---|
| 607 | |
---|
[ef5b828] | 608 | void EnumAndPointerDecay_old::previsit( EnumDecl * enumDecl ) { |
---|
[0dd3a2f] | 609 | // Set the type of each member of the enumeration to be EnumConstant |
---|
[0b3b2ae] | 610 | for ( std::list< Declaration * >::iterator i = enumDecl->members.begin(); i != enumDecl->members.end(); ++i ) { |
---|
[ef5b828] | 611 | ObjectDecl * obj = dynamic_cast< ObjectDecl * >( * i ); |
---|
[0dd3a2f] | 612 | assert( obj ); |
---|
[0b3b2ae] | 613 | obj->set_type( new EnumInstType( Type::Qualifiers( Type::Const ), enumDecl->name ) ); |
---|
[0dd3a2f] | 614 | } // for |
---|
[a08ba92] | 615 | } |
---|
[51b7345] | 616 | |
---|
[a08ba92] | 617 | namespace { |
---|
[83de11e] | 618 | template< typename DWTList > |
---|
[4bda2cf] | 619 | void fixFunctionList( DWTList & dwts, bool isVarArgs, FunctionType * func ) { |
---|
| 620 | auto nvals = dwts.size(); |
---|
| 621 | bool containsVoid = false; |
---|
| 622 | for ( auto & dwt : dwts ) { |
---|
| 623 | // fix each DWT and record whether a void was found |
---|
| 624 | containsVoid |= fixFunction( dwt ); |
---|
| 625 | } |
---|
| 626 | |
---|
| 627 | // the only case in which "void" is valid is where it is the only one in the list |
---|
| 628 | if ( containsVoid && ( nvals > 1 || isVarArgs ) ) { |
---|
[a16764a6] | 629 | SemanticError( func, "invalid type void in function type " ); |
---|
[4bda2cf] | 630 | } |
---|
| 631 | |
---|
| 632 | // one void is the only thing in the list; remove it. |
---|
| 633 | if ( containsVoid ) { |
---|
| 634 | delete dwts.front(); |
---|
| 635 | dwts.clear(); |
---|
| 636 | } |
---|
[0dd3a2f] | 637 | } |
---|
[a08ba92] | 638 | } |
---|
[c8ffe20b] | 639 | |
---|
[ef5b828] | 640 | void EnumAndPointerDecay_old::previsit( FunctionType * func ) { |
---|
[0dd3a2f] | 641 | // Fix up parameters and return types |
---|
[4bda2cf] | 642 | fixFunctionList( func->parameters, func->isVarArgs, func ); |
---|
| 643 | fixFunctionList( func->returnVals, false, func ); |
---|
[a08ba92] | 644 | } |
---|
[c8ffe20b] | 645 | |
---|
[ef5b828] | 646 | LinkReferenceToTypes_old::LinkReferenceToTypes_old( const Indexer * other_indexer ) { |
---|
[0dd3a2f] | 647 | if ( other_indexer ) { |
---|
[522363e] | 648 | local_indexer = other_indexer; |
---|
[0dd3a2f] | 649 | } else { |
---|
[522363e] | 650 | local_indexer = &indexer; |
---|
[0dd3a2f] | 651 | } // if |
---|
[a08ba92] | 652 | } |
---|
[c8ffe20b] | 653 | |
---|
[ef5b828] | 654 | void LinkReferenceToTypes_old::postvisit( EnumInstType * enumInst ) { |
---|
[8fd52e90] | 655 | const EnumDecl * st = local_indexer->lookupEnum( enumInst->name ); |
---|
[c0aa336] | 656 | // it's not a semantic error if the enum is not found, just an implicit forward declaration |
---|
| 657 | if ( st ) { |
---|
[8fd52e90] | 658 | enumInst->baseEnum = const_cast<EnumDecl *>(st); // Just linking in the node |
---|
[c0aa336] | 659 | } // if |
---|
[29f9e20] | 660 | if ( ! st || ! st->body ) { |
---|
[c0aa336] | 661 | // use of forward declaration |
---|
[eaa6430] | 662 | forwardEnums[ enumInst->name ].push_back( enumInst ); |
---|
[c0aa336] | 663 | } // if |
---|
| 664 | } |
---|
| 665 | |
---|
[48fa824] | 666 | void checkGenericParameters( ReferenceToType * inst ) { |
---|
| 667 | for ( Expression * param : inst->parameters ) { |
---|
| 668 | if ( ! dynamic_cast< TypeExpr * >( param ) ) { |
---|
[a16764a6] | 669 | SemanticError( inst, "Expression parameters for generic types are currently unsupported: " ); |
---|
[48fa824] | 670 | } |
---|
| 671 | } |
---|
| 672 | } |
---|
| 673 | |
---|
[ef5b828] | 674 | void LinkReferenceToTypes_old::postvisit( StructInstType * structInst ) { |
---|
[8fd52e90] | 675 | const StructDecl * st = local_indexer->lookupStruct( structInst->name ); |
---|
[0dd3a2f] | 676 | // it's not a semantic error if the struct is not found, just an implicit forward declaration |
---|
| 677 | if ( st ) { |
---|
[8fd52e90] | 678 | structInst->baseStruct = const_cast<StructDecl *>(st); // Just linking in the node |
---|
[0dd3a2f] | 679 | } // if |
---|
[29f9e20] | 680 | if ( ! st || ! st->body ) { |
---|
[0dd3a2f] | 681 | // use of forward declaration |
---|
[eaa6430] | 682 | forwardStructs[ structInst->name ].push_back( structInst ); |
---|
[0dd3a2f] | 683 | } // if |
---|
[48fa824] | 684 | checkGenericParameters( structInst ); |
---|
[a08ba92] | 685 | } |
---|
[c8ffe20b] | 686 | |
---|
[ef5b828] | 687 | void LinkReferenceToTypes_old::postvisit( UnionInstType * unionInst ) { |
---|
[8fd52e90] | 688 | const UnionDecl * un = local_indexer->lookupUnion( unionInst->name ); |
---|
[0dd3a2f] | 689 | // it's not a semantic error if the union is not found, just an implicit forward declaration |
---|
| 690 | if ( un ) { |
---|
[8fd52e90] | 691 | unionInst->baseUnion = const_cast<UnionDecl *>(un); // Just linking in the node |
---|
[0dd3a2f] | 692 | } // if |
---|
[29f9e20] | 693 | if ( ! un || ! un->body ) { |
---|
[0dd3a2f] | 694 | // use of forward declaration |
---|
[eaa6430] | 695 | forwardUnions[ unionInst->name ].push_back( unionInst ); |
---|
[0dd3a2f] | 696 | } // if |
---|
[48fa824] | 697 | checkGenericParameters( unionInst ); |
---|
[a08ba92] | 698 | } |
---|
[c8ffe20b] | 699 | |
---|
[c1ed2ee] | 700 | void LinkReferenceToTypes_old::previsit( QualifiedType * ) { |
---|
[afcb0a3] | 701 | visit_children = false; |
---|
| 702 | } |
---|
| 703 | |
---|
[c1ed2ee] | 704 | void LinkReferenceToTypes_old::postvisit( QualifiedType * qualType ) { |
---|
[afcb0a3] | 705 | // linking only makes sense for the 'oldest ancestor' of the qualified type |
---|
[ef5b828] | 706 | qualType->parent->accept( * visitor ); |
---|
[afcb0a3] | 707 | } |
---|
| 708 | |
---|
[be9036d] | 709 | template< typename Decl > |
---|
| 710 | void normalizeAssertions( std::list< Decl * > & assertions ) { |
---|
| 711 | // ensure no duplicate trait members after the clone |
---|
| 712 | auto pred = [](Decl * d1, Decl * d2) { |
---|
| 713 | // only care if they're equal |
---|
| 714 | DeclarationWithType * dwt1 = dynamic_cast<DeclarationWithType *>( d1 ); |
---|
| 715 | DeclarationWithType * dwt2 = dynamic_cast<DeclarationWithType *>( d2 ); |
---|
| 716 | if ( dwt1 && dwt2 ) { |
---|
[eaa6430] | 717 | if ( dwt1->name == dwt2->name && ResolvExpr::typesCompatible( dwt1->get_type(), dwt2->get_type(), SymTab::Indexer() ) ) { |
---|
[be9036d] | 718 | // std::cerr << "=========== equal:" << std::endl; |
---|
| 719 | // std::cerr << "d1: " << d1 << std::endl; |
---|
| 720 | // std::cerr << "d2: " << d2 << std::endl; |
---|
| 721 | return false; |
---|
| 722 | } |
---|
[2c57025] | 723 | } |
---|
[be9036d] | 724 | return d1 < d2; |
---|
| 725 | }; |
---|
| 726 | std::set<Decl *, decltype(pred)> unique_members( assertions.begin(), assertions.end(), pred ); |
---|
| 727 | // if ( unique_members.size() != assertions.size() ) { |
---|
| 728 | // std::cerr << "============different" << std::endl; |
---|
| 729 | // std::cerr << unique_members.size() << " " << assertions.size() << std::endl; |
---|
| 730 | // } |
---|
| 731 | |
---|
| 732 | std::list< Decl * > order; |
---|
| 733 | order.splice( order.end(), assertions ); |
---|
| 734 | std::copy_if( order.begin(), order.end(), back_inserter( assertions ), [&]( Decl * decl ) { |
---|
| 735 | return unique_members.count( decl ); |
---|
| 736 | }); |
---|
| 737 | } |
---|
| 738 | |
---|
| 739 | // expand assertions from trait instance, performing the appropriate type variable substitutions |
---|
| 740 | template< typename Iterator > |
---|
| 741 | void expandAssertions( TraitInstType * inst, Iterator out ) { |
---|
[eaa6430] | 742 | assertf( inst->baseTrait, "Trait instance not linked to base trait: %s", toCString( inst ) ); |
---|
[be9036d] | 743 | std::list< DeclarationWithType * > asserts; |
---|
| 744 | for ( Declaration * decl : inst->baseTrait->members ) { |
---|
[e3e16bc] | 745 | asserts.push_back( strict_dynamic_cast<DeclarationWithType *>( decl->clone() ) ); |
---|
[2c57025] | 746 | } |
---|
[be9036d] | 747 | // substitute trait decl parameters for instance parameters |
---|
| 748 | applySubstitution( inst->baseTrait->parameters.begin(), inst->baseTrait->parameters.end(), inst->parameters.begin(), asserts.begin(), asserts.end(), out ); |
---|
| 749 | } |
---|
| 750 | |
---|
[c1ed2ee] | 751 | void LinkReferenceToTypes_old::postvisit( TraitDecl * traitDecl ) { |
---|
[be9036d] | 752 | if ( traitDecl->name == "sized" ) { |
---|
| 753 | // "sized" is a special trait - flick the sized status on for the type variable |
---|
| 754 | assertf( traitDecl->parameters.size() == 1, "Built-in trait 'sized' has incorrect number of parameters: %zd", traitDecl->parameters.size() ); |
---|
| 755 | TypeDecl * td = traitDecl->parameters.front(); |
---|
| 756 | td->set_sized( true ); |
---|
| 757 | } |
---|
| 758 | |
---|
| 759 | // move assertions from type parameters into the body of the trait |
---|
| 760 | for ( TypeDecl * td : traitDecl->parameters ) { |
---|
| 761 | for ( DeclarationWithType * assert : td->assertions ) { |
---|
| 762 | if ( TraitInstType * inst = dynamic_cast< TraitInstType * >( assert->get_type() ) ) { |
---|
| 763 | expandAssertions( inst, back_inserter( traitDecl->members ) ); |
---|
| 764 | } else { |
---|
| 765 | traitDecl->members.push_back( assert->clone() ); |
---|
| 766 | } |
---|
| 767 | } |
---|
| 768 | deleteAll( td->assertions ); |
---|
| 769 | td->assertions.clear(); |
---|
| 770 | } // for |
---|
| 771 | } |
---|
[2ae171d8] | 772 | |
---|
[c1ed2ee] | 773 | void LinkReferenceToTypes_old::postvisit( TraitInstType * traitInst ) { |
---|
[2ae171d8] | 774 | // handle other traits |
---|
[8fd52e90] | 775 | const TraitDecl * traitDecl = local_indexer->lookupTrait( traitInst->name ); |
---|
[4a9ccc3] | 776 | if ( ! traitDecl ) { |
---|
[a16764a6] | 777 | SemanticError( traitInst->location, "use of undeclared trait " + traitInst->name ); |
---|
[17cd4eb] | 778 | } // if |
---|
[0b3b2ae] | 779 | if ( traitDecl->parameters.size() != traitInst->parameters.size() ) { |
---|
[a16764a6] | 780 | SemanticError( traitInst, "incorrect number of trait parameters: " ); |
---|
[4a9ccc3] | 781 | } // if |
---|
[8fd52e90] | 782 | traitInst->baseTrait = const_cast<TraitDecl *>(traitDecl); // Just linking in the node |
---|
[79970ed] | 783 | |
---|
[4a9ccc3] | 784 | // need to carry over the 'sized' status of each decl in the instance |
---|
[eaa6430] | 785 | for ( auto p : group_iterate( traitDecl->parameters, traitInst->parameters ) ) { |
---|
[5c4d27f] | 786 | TypeExpr * expr = dynamic_cast< TypeExpr * >( std::get<1>(p) ); |
---|
| 787 | if ( ! expr ) { |
---|
[a16764a6] | 788 | SemanticError( std::get<1>(p), "Expression parameters for trait instances are currently unsupported: " ); |
---|
[5c4d27f] | 789 | } |
---|
[4a9ccc3] | 790 | if ( TypeInstType * inst = dynamic_cast< TypeInstType * >( expr->get_type() ) ) { |
---|
| 791 | TypeDecl * formalDecl = std::get<0>(p); |
---|
[eaa6430] | 792 | TypeDecl * instDecl = inst->baseType; |
---|
[4a9ccc3] | 793 | if ( formalDecl->get_sized() ) instDecl->set_sized( true ); |
---|
| 794 | } |
---|
| 795 | } |
---|
[be9036d] | 796 | // normalizeAssertions( traitInst->members ); |
---|
[a08ba92] | 797 | } |
---|
[c8ffe20b] | 798 | |
---|
[ef5b828] | 799 | void LinkReferenceToTypes_old::postvisit( EnumDecl * enumDecl ) { |
---|
[c0aa336] | 800 | // visit enum members first so that the types of self-referencing members are updated properly |
---|
[b16923d] | 801 | if ( enumDecl->body ) { |
---|
[eaa6430] | 802 | ForwardEnumsType::iterator fwds = forwardEnums.find( enumDecl->name ); |
---|
[c0aa336] | 803 | if ( fwds != forwardEnums.end() ) { |
---|
| 804 | for ( std::list< EnumInstType * >::iterator inst = fwds->second.begin(); inst != fwds->second.end(); ++inst ) { |
---|
[ef5b828] | 805 | (* inst)->baseEnum = enumDecl; |
---|
[c0aa336] | 806 | } // for |
---|
| 807 | forwardEnums.erase( fwds ); |
---|
| 808 | } // if |
---|
[ac3362c] | 809 | |
---|
| 810 | for ( Declaration * member : enumDecl->members ) { |
---|
| 811 | ObjectDecl * field = strict_dynamic_cast<ObjectDecl *>( member ); |
---|
| 812 | if ( field->init ) { |
---|
| 813 | // need to resolve enumerator initializers early so that other passes that determine if an expression is constexpr have the appropriate information. |
---|
| 814 | SingleInit * init = strict_dynamic_cast<SingleInit *>( field->init ); |
---|
| 815 | ResolvExpr::findSingleExpression( init->value, new BasicType( Type::Qualifiers(), BasicType::SignedInt ), indexer ); |
---|
| 816 | } |
---|
| 817 | } |
---|
[c0aa336] | 818 | } // if |
---|
| 819 | } |
---|
| 820 | |
---|
[c1ed2ee] | 821 | void LinkReferenceToTypes_old::renameGenericParams( std::list< TypeDecl * > & params ) { |
---|
[b95fe40] | 822 | // rename generic type parameters uniquely so that they do not conflict with user-defined function forall parameters, e.g. |
---|
| 823 | // forall(otype T) |
---|
| 824 | // struct Box { |
---|
| 825 | // T x; |
---|
| 826 | // }; |
---|
| 827 | // forall(otype T) |
---|
| 828 | // void f(Box(T) b) { |
---|
| 829 | // ... |
---|
| 830 | // } |
---|
| 831 | // The T in Box and the T in f are different, so internally the naming must reflect that. |
---|
| 832 | GuardValue( inGeneric ); |
---|
| 833 | inGeneric = ! params.empty(); |
---|
| 834 | for ( TypeDecl * td : params ) { |
---|
| 835 | td->name = "__" + td->name + "_generic_"; |
---|
| 836 | } |
---|
| 837 | } |
---|
| 838 | |
---|
[c1ed2ee] | 839 | void LinkReferenceToTypes_old::previsit( StructDecl * structDecl ) { |
---|
[b95fe40] | 840 | renameGenericParams( structDecl->parameters ); |
---|
| 841 | } |
---|
| 842 | |
---|
[c1ed2ee] | 843 | void LinkReferenceToTypes_old::previsit( UnionDecl * unionDecl ) { |
---|
[b95fe40] | 844 | renameGenericParams( unionDecl->parameters ); |
---|
| 845 | } |
---|
| 846 | |
---|
[ef5b828] | 847 | void LinkReferenceToTypes_old::postvisit( StructDecl * structDecl ) { |
---|
[677c1be] | 848 | // visit struct members first so that the types of self-referencing members are updated properly |
---|
[522363e] | 849 | // xxx - need to ensure that type parameters match up between forward declarations and definition (most importantly, number of type parameters and their defaults) |
---|
[b16923d] | 850 | if ( structDecl->body ) { |
---|
[eaa6430] | 851 | ForwardStructsType::iterator fwds = forwardStructs.find( structDecl->name ); |
---|
[0dd3a2f] | 852 | if ( fwds != forwardStructs.end() ) { |
---|
| 853 | for ( std::list< StructInstType * >::iterator inst = fwds->second.begin(); inst != fwds->second.end(); ++inst ) { |
---|
[ef5b828] | 854 | (* inst)->baseStruct = structDecl; |
---|
[0dd3a2f] | 855 | } // for |
---|
| 856 | forwardStructs.erase( fwds ); |
---|
| 857 | } // if |
---|
| 858 | } // if |
---|
[a08ba92] | 859 | } |
---|
[c8ffe20b] | 860 | |
---|
[ef5b828] | 861 | void LinkReferenceToTypes_old::postvisit( UnionDecl * unionDecl ) { |
---|
[b16923d] | 862 | if ( unionDecl->body ) { |
---|
[eaa6430] | 863 | ForwardUnionsType::iterator fwds = forwardUnions.find( unionDecl->name ); |
---|
[0dd3a2f] | 864 | if ( fwds != forwardUnions.end() ) { |
---|
| 865 | for ( std::list< UnionInstType * >::iterator inst = fwds->second.begin(); inst != fwds->second.end(); ++inst ) { |
---|
[ef5b828] | 866 | (* inst)->baseUnion = unionDecl; |
---|
[0dd3a2f] | 867 | } // for |
---|
| 868 | forwardUnions.erase( fwds ); |
---|
| 869 | } // if |
---|
| 870 | } // if |
---|
[a08ba92] | 871 | } |
---|
[c8ffe20b] | 872 | |
---|
[ef5b828] | 873 | void LinkReferenceToTypes_old::postvisit( TypeInstType * typeInst ) { |
---|
[b95fe40] | 874 | // ensure generic parameter instances are renamed like the base type |
---|
| 875 | if ( inGeneric && typeInst->baseType ) typeInst->name = typeInst->baseType->name; |
---|
[ef5b828] | 876 | if ( const NamedTypeDecl * namedTypeDecl = local_indexer->lookupType( typeInst->name ) ) { |
---|
| 877 | if ( const TypeDecl * typeDecl = dynamic_cast< const TypeDecl * >( namedTypeDecl ) ) { |
---|
| 878 | typeInst->set_isFtype( typeDecl->kind == TypeDecl::Ftype ); |
---|
[0dd3a2f] | 879 | } // if |
---|
| 880 | } // if |
---|
[a08ba92] | 881 | } |
---|
[c8ffe20b] | 882 | |
---|
[4a9ccc3] | 883 | /// Fix up assertions - flattens assertion lists, removing all trait instances |
---|
[8b11840] | 884 | void forallFixer( std::list< TypeDecl * > & forall, BaseSyntaxNode * node ) { |
---|
| 885 | for ( TypeDecl * type : forall ) { |
---|
[be9036d] | 886 | std::list< DeclarationWithType * > asserts; |
---|
| 887 | asserts.splice( asserts.end(), type->assertions ); |
---|
| 888 | // expand trait instances into their members |
---|
| 889 | for ( DeclarationWithType * assertion : asserts ) { |
---|
[ef5b828] | 890 | if ( TraitInstType * traitInst = dynamic_cast< TraitInstType * >( assertion->get_type() ) ) { |
---|
[be9036d] | 891 | // expand trait instance into all of its members |
---|
| 892 | expandAssertions( traitInst, back_inserter( type->assertions ) ); |
---|
| 893 | delete traitInst; |
---|
| 894 | } else { |
---|
| 895 | // pass other assertions through |
---|
| 896 | type->assertions.push_back( assertion ); |
---|
| 897 | } // if |
---|
| 898 | } // for |
---|
| 899 | // apply FixFunction to every assertion to check for invalid void type |
---|
| 900 | for ( DeclarationWithType *& assertion : type->assertions ) { |
---|
[4bda2cf] | 901 | bool isVoid = fixFunction( assertion ); |
---|
| 902 | if ( isVoid ) { |
---|
[a16764a6] | 903 | SemanticError( node, "invalid type void in assertion of function " ); |
---|
[be9036d] | 904 | } // if |
---|
| 905 | } // for |
---|
| 906 | // normalizeAssertions( type->assertions ); |
---|
[0dd3a2f] | 907 | } // for |
---|
[a08ba92] | 908 | } |
---|
[c8ffe20b] | 909 | |
---|
[ef5b828] | 910 | void ForallPointerDecay_old::previsit( ObjectDecl * object ) { |
---|
[3d2b7bc] | 911 | // ensure that operator names only apply to functions or function pointers |
---|
| 912 | if ( CodeGen::isOperator( object->name ) && ! dynamic_cast< FunctionType * >( object->type->stripDeclarator() ) ) { |
---|
| 913 | SemanticError( object->location, toCString( "operator ", object->name.c_str(), " is not a function or function pointer." ) ); |
---|
| 914 | } |
---|
[0dd3a2f] | 915 | object->fixUniqueId(); |
---|
[a08ba92] | 916 | } |
---|
[c8ffe20b] | 917 | |
---|
[ef5b828] | 918 | void ForallPointerDecay_old::previsit( FunctionDecl * func ) { |
---|
[0dd3a2f] | 919 | func->fixUniqueId(); |
---|
[a08ba92] | 920 | } |
---|
[c8ffe20b] | 921 | |
---|
[c1ed2ee] | 922 | void ForallPointerDecay_old::previsit( FunctionType * ftype ) { |
---|
[bbf3fda] | 923 | forallFixer( ftype->forall, ftype ); |
---|
| 924 | } |
---|
| 925 | |
---|
[c1ed2ee] | 926 | void ForallPointerDecay_old::previsit( StructDecl * aggrDecl ) { |
---|
[bd7e609] | 927 | forallFixer( aggrDecl->parameters, aggrDecl ); |
---|
| 928 | } |
---|
| 929 | |
---|
[c1ed2ee] | 930 | void ForallPointerDecay_old::previsit( UnionDecl * aggrDecl ) { |
---|
[bd7e609] | 931 | forallFixer( aggrDecl->parameters, aggrDecl ); |
---|
| 932 | } |
---|
| 933 | |
---|
[de91427b] | 934 | void ReturnChecker::checkFunctionReturns( std::list< Declaration * > & translationUnit ) { |
---|
[0db6fc0] | 935 | PassVisitor<ReturnChecker> checker; |
---|
[de91427b] | 936 | acceptAll( translationUnit, checker ); |
---|
| 937 | } |
---|
| 938 | |
---|
[0db6fc0] | 939 | void ReturnChecker::previsit( FunctionDecl * functionDecl ) { |
---|
[0508ab3] | 940 | GuardValue( returnVals ); |
---|
[de91427b] | 941 | returnVals = functionDecl->get_functionType()->get_returnVals(); |
---|
| 942 | } |
---|
| 943 | |
---|
[0db6fc0] | 944 | void ReturnChecker::previsit( ReturnStmt * returnStmt ) { |
---|
[74d1804] | 945 | // Previously this also checked for the existence of an expr paired with no return values on |
---|
| 946 | // the function return type. This is incorrect, since you can have an expression attached to |
---|
| 947 | // a return statement in a void-returning function in C. The expression is treated as if it |
---|
| 948 | // were cast to void. |
---|
[30f9072] | 949 | if ( ! returnStmt->get_expr() && returnVals.size() != 0 ) { |
---|
[a16764a6] | 950 | SemanticError( returnStmt, "Non-void function returns no values: " ); |
---|
[de91427b] | 951 | } |
---|
| 952 | } |
---|
| 953 | |
---|
| 954 | |
---|
[48ed81c] | 955 | void ReplaceTypedef::replaceTypedef( std::list< Declaration * > &translationUnit ) { |
---|
| 956 | PassVisitor<ReplaceTypedef> eliminator; |
---|
[0dd3a2f] | 957 | mutateAll( translationUnit, eliminator ); |
---|
[a506df4] | 958 | if ( eliminator.pass.typedefNames.count( "size_t" ) ) { |
---|
[5f98ce5] | 959 | // grab and remember declaration of size_t |
---|
[2bfc6b2] | 960 | Validate::SizeType = eliminator.pass.typedefNames["size_t"].first->base->clone(); |
---|
[5f98ce5] | 961 | } else { |
---|
[40e636a] | 962 | // xxx - missing global typedef for size_t - default to long unsigned int, even though that may be wrong |
---|
| 963 | // eventually should have a warning for this case. |
---|
[2bfc6b2] | 964 | Validate::SizeType = new BasicType( Type::Qualifiers(), BasicType::LongUnsignedInt ); |
---|
[5f98ce5] | 965 | } |
---|
[a08ba92] | 966 | } |
---|
[c8ffe20b] | 967 | |
---|
[48ed81c] | 968 | void ReplaceTypedef::premutate( QualifiedType * ) { |
---|
| 969 | visit_children = false; |
---|
| 970 | } |
---|
| 971 | |
---|
| 972 | Type * ReplaceTypedef::postmutate( QualifiedType * qualType ) { |
---|
| 973 | // replacing typedefs only makes sense for the 'oldest ancestor' of the qualified type |
---|
[ef5b828] | 974 | qualType->parent = qualType->parent->acceptMutator( * visitor ); |
---|
[48ed81c] | 975 | return qualType; |
---|
| 976 | } |
---|
| 977 | |
---|
[a7c31e0] | 978 | static bool isNonParameterAttribute( Attribute * attr ) { |
---|
| 979 | static const std::vector<std::string> bad_names = { |
---|
| 980 | "aligned", "__aligned__", |
---|
| 981 | }; |
---|
| 982 | for ( auto name : bad_names ) { |
---|
| 983 | if ( name == attr->name ) { |
---|
| 984 | return true; |
---|
| 985 | } |
---|
| 986 | } |
---|
| 987 | return false; |
---|
| 988 | } |
---|
| 989 | |
---|
[48ed81c] | 990 | Type * ReplaceTypedef::postmutate( TypeInstType * typeInst ) { |
---|
[9cb8e88d] | 991 | // instances of typedef types will come here. If it is an instance |
---|
[cc79d97] | 992 | // of a typdef type, link the instance to its actual type. |
---|
[0b3b2ae] | 993 | TypedefMap::const_iterator def = typedefNames.find( typeInst->name ); |
---|
[0dd3a2f] | 994 | if ( def != typedefNames.end() ) { |
---|
[ef5b828] | 995 | Type * ret = def->second.first->base->clone(); |
---|
[e82ef13] | 996 | ret->location = typeInst->location; |
---|
[6f95000] | 997 | ret->get_qualifiers() |= typeInst->get_qualifiers(); |
---|
[a7c31e0] | 998 | // GCC ignores certain attributes if they arrive by typedef, this mimics that. |
---|
| 999 | if ( inFunctionType ) { |
---|
| 1000 | ret->attributes.remove_if( isNonParameterAttribute ); |
---|
[1f370451] | 1001 | } |
---|
[a7c31e0] | 1002 | ret->attributes.splice( ret->attributes.end(), typeInst->attributes ); |
---|
[0215a76f] | 1003 | // place instance parameters on the typedef'd type |
---|
[f53836b] | 1004 | if ( ! typeInst->parameters.empty() ) { |
---|
[ef5b828] | 1005 | ReferenceToType * rtt = dynamic_cast<ReferenceToType *>(ret); |
---|
[0215a76f] | 1006 | if ( ! rtt ) { |
---|
[a16764a6] | 1007 | SemanticError( typeInst->location, "Cannot apply type parameters to base type of " + typeInst->name ); |
---|
[0215a76f] | 1008 | } |
---|
[0b3b2ae] | 1009 | rtt->parameters.clear(); |
---|
[f53836b] | 1010 | cloneAll( typeInst->parameters, rtt->parameters ); |
---|
[ef5b828] | 1011 | mutateAll( rtt->parameters, * visitor ); // recursively fix typedefs on parameters |
---|
[1db21619] | 1012 | } // if |
---|
[0dd3a2f] | 1013 | delete typeInst; |
---|
| 1014 | return ret; |
---|
[679864e1] | 1015 | } else { |
---|
[0b3b2ae] | 1016 | TypeDeclMap::const_iterator base = typedeclNames.find( typeInst->name ); |
---|
[062e8df] | 1017 | if ( base == typedeclNames.end() ) { |
---|
| 1018 | SemanticError( typeInst->location, toString("Use of undefined type ", typeInst->name) ); |
---|
| 1019 | } |
---|
[1e8b02f5] | 1020 | typeInst->set_baseType( base->second ); |
---|
[062e8df] | 1021 | return typeInst; |
---|
[0dd3a2f] | 1022 | } // if |
---|
[062e8df] | 1023 | assert( false ); |
---|
[a08ba92] | 1024 | } |
---|
[c8ffe20b] | 1025 | |
---|
[f53836b] | 1026 | struct VarLenChecker : WithShortCircuiting { |
---|
| 1027 | void previsit( FunctionType * ) { visit_children = false; } |
---|
| 1028 | void previsit( ArrayType * at ) { |
---|
| 1029 | isVarLen |= at->isVarLen; |
---|
| 1030 | } |
---|
| 1031 | bool isVarLen = false; |
---|
| 1032 | }; |
---|
| 1033 | |
---|
| 1034 | bool isVariableLength( Type * t ) { |
---|
| 1035 | PassVisitor<VarLenChecker> varLenChecker; |
---|
| 1036 | maybeAccept( t, varLenChecker ); |
---|
| 1037 | return varLenChecker.pass.isVarLen; |
---|
| 1038 | } |
---|
| 1039 | |
---|
[48ed81c] | 1040 | Declaration * ReplaceTypedef::postmutate( TypedefDecl * tyDecl ) { |
---|
[0b3b2ae] | 1041 | if ( typedefNames.count( tyDecl->name ) == 1 && typedefNames[ tyDecl->name ].second == scopeLevel ) { |
---|
[9cb8e88d] | 1042 | // typedef to the same name from the same scope |
---|
[cc79d97] | 1043 | // must be from the same type |
---|
| 1044 | |
---|
[0b3b2ae] | 1045 | Type * t1 = tyDecl->base; |
---|
| 1046 | Type * t2 = typedefNames[ tyDecl->name ].first->base; |
---|
[1cbca6e] | 1047 | if ( ! ResolvExpr::typesCompatible( t1, t2, Indexer() ) ) { |
---|
[a16764a6] | 1048 | SemanticError( tyDecl->location, "Cannot redefine typedef: " + tyDecl->name ); |
---|
[f53836b] | 1049 | } |
---|
[4b97770] | 1050 | // Cannot redefine VLA typedefs. Note: this is slightly incorrect, because our notion of VLAs |
---|
| 1051 | // at this point in the translator is imprecise. In particular, this will disallow redefining typedefs |
---|
| 1052 | // with arrays whose dimension is an enumerator or a cast of a constant/enumerator. The effort required |
---|
| 1053 | // to fix this corner case likely outweighs the utility of allowing it. |
---|
[f53836b] | 1054 | if ( isVariableLength( t1 ) || isVariableLength( t2 ) ) { |
---|
[a16764a6] | 1055 | SemanticError( tyDecl->location, "Cannot redefine typedef: " + tyDecl->name ); |
---|
[85c4ef0] | 1056 | } |
---|
[cc79d97] | 1057 | } else { |
---|
[0b3b2ae] | 1058 | typedefNames[ tyDecl->name ] = std::make_pair( TypedefDeclPtr( tyDecl ), scopeLevel ); |
---|
[cc79d97] | 1059 | } // if |
---|
| 1060 | |
---|
[0dd3a2f] | 1061 | // When a typedef is a forward declaration: |
---|
| 1062 | // typedef struct screen SCREEN; |
---|
| 1063 | // the declaration portion must be retained: |
---|
| 1064 | // struct screen; |
---|
| 1065 | // because the expansion of the typedef is: |
---|
[ef5b828] | 1066 | // void rtn( SCREEN * p ) => void rtn( struct screen * p ) |
---|
[0dd3a2f] | 1067 | // hence the type-name "screen" must be defined. |
---|
| 1068 | // Note, qualifiers on the typedef are superfluous for the forward declaration. |
---|
[6f95000] | 1069 | |
---|
[ef5b828] | 1070 | Type * designatorType = tyDecl->base->stripDeclarator(); |
---|
| 1071 | if ( StructInstType * aggDecl = dynamic_cast< StructInstType * >( designatorType ) ) { |
---|
[312029a] | 1072 | declsToAddBefore.push_back( new StructDecl( aggDecl->name, AggregateDecl::Struct, noAttributes, tyDecl->linkage ) ); |
---|
[ef5b828] | 1073 | } else if ( UnionInstType * aggDecl = dynamic_cast< UnionInstType * >( designatorType ) ) { |
---|
[48ed81c] | 1074 | declsToAddBefore.push_back( new UnionDecl( aggDecl->name, noAttributes, tyDecl->linkage ) ); |
---|
[ef5b828] | 1075 | } else if ( EnumInstType * enumDecl = dynamic_cast< EnumInstType * >( designatorType ) ) { |
---|
[48ed81c] | 1076 | declsToAddBefore.push_back( new EnumDecl( enumDecl->name, noAttributes, tyDecl->linkage ) ); |
---|
[0dd3a2f] | 1077 | } // if |
---|
[48ed81c] | 1078 | return tyDecl->clone(); |
---|
[a08ba92] | 1079 | } |
---|
[c8ffe20b] | 1080 | |
---|
[48ed81c] | 1081 | void ReplaceTypedef::premutate( TypeDecl * typeDecl ) { |
---|
[0b3b2ae] | 1082 | TypedefMap::iterator i = typedefNames.find( typeDecl->name ); |
---|
[0dd3a2f] | 1083 | if ( i != typedefNames.end() ) { |
---|
| 1084 | typedefNames.erase( i ) ; |
---|
| 1085 | } // if |
---|
[679864e1] | 1086 | |
---|
[0bcc2b7] | 1087 | typedeclNames.insert( typeDecl->name, typeDecl ); |
---|
[a08ba92] | 1088 | } |
---|
[c8ffe20b] | 1089 | |
---|
[48ed81c] | 1090 | void ReplaceTypedef::premutate( FunctionDecl * ) { |
---|
[a506df4] | 1091 | GuardScope( typedefNames ); |
---|
[0bcc2b7] | 1092 | GuardScope( typedeclNames ); |
---|
[a08ba92] | 1093 | } |
---|
[c8ffe20b] | 1094 | |
---|
[48ed81c] | 1095 | void ReplaceTypedef::premutate( ObjectDecl * ) { |
---|
[a506df4] | 1096 | GuardScope( typedefNames ); |
---|
[0bcc2b7] | 1097 | GuardScope( typedeclNames ); |
---|
[a506df4] | 1098 | } |
---|
[dd020c0] | 1099 | |
---|
[48ed81c] | 1100 | DeclarationWithType * ReplaceTypedef::postmutate( ObjectDecl * objDecl ) { |
---|
[ef5b828] | 1101 | if ( FunctionType * funtype = dynamic_cast<FunctionType *>( objDecl->type ) ) { // function type? |
---|
[02e5ab6] | 1102 | // replace the current object declaration with a function declaration |
---|
[0b3b2ae] | 1103 | FunctionDecl * newDecl = new FunctionDecl( objDecl->name, objDecl->get_storageClasses(), objDecl->linkage, funtype, 0, objDecl->attributes, objDecl->get_funcSpec() ); |
---|
| 1104 | objDecl->attributes.clear(); |
---|
[dbe8f244] | 1105 | objDecl->set_type( nullptr ); |
---|
[0a86a30] | 1106 | delete objDecl; |
---|
| 1107 | return newDecl; |
---|
[1db21619] | 1108 | } // if |
---|
[a506df4] | 1109 | return objDecl; |
---|
[a08ba92] | 1110 | } |
---|
[c8ffe20b] | 1111 | |
---|
[48ed81c] | 1112 | void ReplaceTypedef::premutate( CastExpr * ) { |
---|
[a506df4] | 1113 | GuardScope( typedefNames ); |
---|
[0bcc2b7] | 1114 | GuardScope( typedeclNames ); |
---|
[a08ba92] | 1115 | } |
---|
[c8ffe20b] | 1116 | |
---|
[48ed81c] | 1117 | void ReplaceTypedef::premutate( CompoundStmt * ) { |
---|
[a506df4] | 1118 | GuardScope( typedefNames ); |
---|
[0bcc2b7] | 1119 | GuardScope( typedeclNames ); |
---|
[cc79d97] | 1120 | scopeLevel += 1; |
---|
[a506df4] | 1121 | GuardAction( [this](){ scopeLevel -= 1; } ); |
---|
| 1122 | } |
---|
| 1123 | |
---|
[45161b4d] | 1124 | template<typename AggDecl> |
---|
[48ed81c] | 1125 | void ReplaceTypedef::addImplicitTypedef( AggDecl * aggDecl ) { |
---|
[45161b4d] | 1126 | if ( typedefNames.count( aggDecl->get_name() ) == 0 ) { |
---|
[ef5b828] | 1127 | Type * type = nullptr; |
---|
[45161b4d] | 1128 | if ( StructDecl * newDeclStructDecl = dynamic_cast< StructDecl * >( aggDecl ) ) { |
---|
| 1129 | type = new StructInstType( Type::Qualifiers(), newDeclStructDecl->get_name() ); |
---|
| 1130 | } else if ( UnionDecl * newDeclUnionDecl = dynamic_cast< UnionDecl * >( aggDecl ) ) { |
---|
| 1131 | type = new UnionInstType( Type::Qualifiers(), newDeclUnionDecl->get_name() ); |
---|
| 1132 | } else if ( EnumDecl * newDeclEnumDecl = dynamic_cast< EnumDecl * >( aggDecl ) ) { |
---|
| 1133 | type = new EnumInstType( Type::Qualifiers(), newDeclEnumDecl->get_name() ); |
---|
| 1134 | } // if |
---|
[0b0f1dd] | 1135 | TypedefDeclPtr tyDecl( new TypedefDecl( aggDecl->get_name(), aggDecl->location, Type::StorageClasses(), type, aggDecl->get_linkage() ) ); |
---|
[46f6134] | 1136 | typedefNames[ aggDecl->get_name() ] = std::make_pair( std::move( tyDecl ), scopeLevel ); |
---|
[48ed81c] | 1137 | // add the implicit typedef to the AST |
---|
| 1138 | declsToAddBefore.push_back( new TypedefDecl( aggDecl->get_name(), aggDecl->location, Type::StorageClasses(), type->clone(), aggDecl->get_linkage() ) ); |
---|
[45161b4d] | 1139 | } // if |
---|
| 1140 | } |
---|
[4e06c1e] | 1141 | |
---|
[48ed81c] | 1142 | template< typename AggDecl > |
---|
| 1143 | void ReplaceTypedef::handleAggregate( AggDecl * aggr ) { |
---|
| 1144 | SemanticErrorException errors; |
---|
[a506df4] | 1145 | |
---|
[48ed81c] | 1146 | ValueGuard< std::list<Declaration * > > oldBeforeDecls( declsToAddBefore ); |
---|
| 1147 | ValueGuard< std::list<Declaration * > > oldAfterDecls ( declsToAddAfter ); |
---|
| 1148 | declsToAddBefore.clear(); |
---|
| 1149 | declsToAddAfter.clear(); |
---|
[a506df4] | 1150 | |
---|
[48ed81c] | 1151 | GuardScope( typedefNames ); |
---|
[0bcc2b7] | 1152 | GuardScope( typedeclNames ); |
---|
[ef5b828] | 1153 | mutateAll( aggr->parameters, * visitor ); |
---|
[85c4ef0] | 1154 | |
---|
[48ed81c] | 1155 | // unroll mutateAll for aggr->members so that implicit typedefs for nested types are added to the aggregate body. |
---|
| 1156 | for ( std::list< Declaration * >::iterator i = aggr->members.begin(); i != aggr->members.end(); ++i ) { |
---|
| 1157 | if ( !declsToAddAfter.empty() ) { aggr->members.splice( i, declsToAddAfter ); } |
---|
[a506df4] | 1158 | |
---|
[48ed81c] | 1159 | try { |
---|
[ef5b828] | 1160 | * i = maybeMutate( * i, * visitor ); |
---|
[48ed81c] | 1161 | } catch ( SemanticErrorException &e ) { |
---|
| 1162 | errors.append( e ); |
---|
| 1163 | } |
---|
| 1164 | |
---|
| 1165 | if ( !declsToAddBefore.empty() ) { aggr->members.splice( i, declsToAddBefore ); } |
---|
| 1166 | } |
---|
| 1167 | |
---|
| 1168 | if ( !declsToAddAfter.empty() ) { aggr->members.splice( aggr->members.end(), declsToAddAfter ); } |
---|
| 1169 | if ( !errors.isEmpty() ) { throw errors; } |
---|
[85c4ef0] | 1170 | } |
---|
| 1171 | |
---|
[48ed81c] | 1172 | void ReplaceTypedef::premutate( StructDecl * structDecl ) { |
---|
| 1173 | visit_children = false; |
---|
| 1174 | addImplicitTypedef( structDecl ); |
---|
| 1175 | handleAggregate( structDecl ); |
---|
[a506df4] | 1176 | } |
---|
| 1177 | |
---|
[48ed81c] | 1178 | void ReplaceTypedef::premutate( UnionDecl * unionDecl ) { |
---|
| 1179 | visit_children = false; |
---|
| 1180 | addImplicitTypedef( unionDecl ); |
---|
| 1181 | handleAggregate( unionDecl ); |
---|
[85c4ef0] | 1182 | } |
---|
| 1183 | |
---|
[48ed81c] | 1184 | void ReplaceTypedef::premutate( EnumDecl * enumDecl ) { |
---|
| 1185 | addImplicitTypedef( enumDecl ); |
---|
[85c4ef0] | 1186 | } |
---|
| 1187 | |
---|
[48ed81c] | 1188 | void ReplaceTypedef::premutate( FunctionType * ) { |
---|
[1f370451] | 1189 | GuardValue( inFunctionType ); |
---|
| 1190 | inFunctionType = true; |
---|
| 1191 | } |
---|
| 1192 | |
---|
[0bcc2b7] | 1193 | void ReplaceTypedef::premutate( TraitDecl * ) { |
---|
| 1194 | GuardScope( typedefNames ); |
---|
| 1195 | GuardScope( typedeclNames); |
---|
| 1196 | } |
---|
| 1197 | |
---|
[d1969a6] | 1198 | void VerifyCtorDtorAssign::verify( std::list< Declaration * > & translationUnit ) { |
---|
[0db6fc0] | 1199 | PassVisitor<VerifyCtorDtorAssign> verifier; |
---|
[9cb8e88d] | 1200 | acceptAll( translationUnit, verifier ); |
---|
| 1201 | } |
---|
| 1202 | |
---|
[0db6fc0] | 1203 | void VerifyCtorDtorAssign::previsit( FunctionDecl * funcDecl ) { |
---|
[9cb8e88d] | 1204 | FunctionType * funcType = funcDecl->get_functionType(); |
---|
| 1205 | std::list< DeclarationWithType * > &returnVals = funcType->get_returnVals(); |
---|
| 1206 | std::list< DeclarationWithType * > ¶ms = funcType->get_parameters(); |
---|
| 1207 | |
---|
[bff227f] | 1208 | if ( CodeGen::isCtorDtorAssign( funcDecl->get_name() ) ) { // TODO: also check /=, etc. |
---|
[9cb8e88d] | 1209 | if ( params.size() == 0 ) { |
---|
[98538288] | 1210 | SemanticError( funcDecl->location, "Constructors, destructors, and assignment functions require at least one parameter." ); |
---|
[9cb8e88d] | 1211 | } |
---|
[ce8c12f] | 1212 | ReferenceType * refType = dynamic_cast< ReferenceType * >( params.front()->get_type() ); |
---|
[084fecc] | 1213 | if ( ! refType ) { |
---|
[98538288] | 1214 | SemanticError( funcDecl->location, "First parameter of a constructor, destructor, or assignment function must be a reference." ); |
---|
[9cb8e88d] | 1215 | } |
---|
[bff227f] | 1216 | if ( CodeGen::isCtorDtor( funcDecl->get_name() ) && returnVals.size() != 0 ) { |
---|
[98538288] | 1217 | if(!returnVals.front()->get_type()->isVoid()) { |
---|
| 1218 | SemanticError( funcDecl->location, "Constructors and destructors cannot have explicit return values." ); |
---|
| 1219 | } |
---|
[9cb8e88d] | 1220 | } |
---|
| 1221 | } |
---|
| 1222 | } |
---|
[70a06f6] | 1223 | |
---|
[11ab8ea8] | 1224 | template< typename Aggr > |
---|
| 1225 | void validateGeneric( Aggr * inst ) { |
---|
| 1226 | std::list< TypeDecl * > * params = inst->get_baseParameters(); |
---|
[30f9072] | 1227 | if ( params ) { |
---|
[11ab8ea8] | 1228 | std::list< Expression * > & args = inst->get_parameters(); |
---|
[67cf18c] | 1229 | |
---|
| 1230 | // insert defaults arguments when a type argument is missing (currently only supports missing arguments at the end of the list). |
---|
| 1231 | // A substitution is used to ensure that defaults are replaced correctly, e.g., |
---|
| 1232 | // forall(otype T, otype alloc = heap_allocator(T)) struct vector; |
---|
| 1233 | // vector(int) v; |
---|
| 1234 | // after insertion of default values becomes |
---|
| 1235 | // vector(int, heap_allocator(T)) |
---|
| 1236 | // and the substitution is built with T=int so that after substitution, the result is |
---|
| 1237 | // vector(int, heap_allocator(int)) |
---|
| 1238 | TypeSubstitution sub; |
---|
| 1239 | auto paramIter = params->begin(); |
---|
| 1240 | for ( size_t i = 0; paramIter != params->end(); ++paramIter, ++i ) { |
---|
| 1241 | if ( i < args.size() ) { |
---|
[ef5b828] | 1242 | TypeExpr * expr = strict_dynamic_cast< TypeExpr * >( * std::next( args.begin(), i ) ); |
---|
| 1243 | sub.add( (* paramIter)->get_name(), expr->get_type()->clone() ); |
---|
[67cf18c] | 1244 | } else if ( i == args.size() ) { |
---|
[ef5b828] | 1245 | Type * defaultType = (* paramIter)->get_init(); |
---|
[67cf18c] | 1246 | if ( defaultType ) { |
---|
| 1247 | args.push_back( new TypeExpr( defaultType->clone() ) ); |
---|
[ef5b828] | 1248 | sub.add( (* paramIter)->get_name(), defaultType->clone() ); |
---|
[67cf18c] | 1249 | } |
---|
| 1250 | } |
---|
| 1251 | } |
---|
| 1252 | |
---|
| 1253 | sub.apply( inst ); |
---|
[a16764a6] | 1254 | if ( args.size() < params->size() ) SemanticError( inst, "Too few type arguments in generic type " ); |
---|
| 1255 | if ( args.size() > params->size() ) SemanticError( inst, "Too many type arguments in generic type " ); |
---|
[11ab8ea8] | 1256 | } |
---|
| 1257 | } |
---|
| 1258 | |
---|
[0db6fc0] | 1259 | void ValidateGenericParameters::previsit( StructInstType * inst ) { |
---|
[11ab8ea8] | 1260 | validateGeneric( inst ); |
---|
| 1261 | } |
---|
[9cb8e88d] | 1262 | |
---|
[0db6fc0] | 1263 | void ValidateGenericParameters::previsit( UnionInstType * inst ) { |
---|
[11ab8ea8] | 1264 | validateGeneric( inst ); |
---|
[9cb8e88d] | 1265 | } |
---|
[70a06f6] | 1266 | |
---|
[ef5b828] | 1267 | void CompoundLiteral::premutate( ObjectDecl * objectDecl ) { |
---|
[a7c90d4] | 1268 | storageClasses = objectDecl->get_storageClasses(); |
---|
[630a82a] | 1269 | } |
---|
| 1270 | |
---|
[ef5b828] | 1271 | Expression * CompoundLiteral::postmutate( CompoundLiteralExpr * compLitExpr ) { |
---|
[630a82a] | 1272 | // transform [storage_class] ... (struct S){ 3, ... }; |
---|
| 1273 | // into [storage_class] struct S temp = { 3, ... }; |
---|
| 1274 | static UniqueName indexName( "_compLit" ); |
---|
| 1275 | |
---|
[ef5b828] | 1276 | ObjectDecl * tempvar = new ObjectDecl( indexName.newName(), storageClasses, LinkageSpec::C, nullptr, compLitExpr->get_result(), compLitExpr->get_initializer() ); |
---|
[d24d4e1] | 1277 | compLitExpr->set_result( nullptr ); |
---|
| 1278 | compLitExpr->set_initializer( nullptr ); |
---|
[630a82a] | 1279 | delete compLitExpr; |
---|
[d24d4e1] | 1280 | declsToAddBefore.push_back( tempvar ); // add modified temporary to current block |
---|
| 1281 | return new VariableExpr( tempvar ); |
---|
[630a82a] | 1282 | } |
---|
[cce9429] | 1283 | |
---|
| 1284 | void ReturnTypeFixer::fix( std::list< Declaration * > &translationUnit ) { |
---|
[0db6fc0] | 1285 | PassVisitor<ReturnTypeFixer> fixer; |
---|
[cce9429] | 1286 | acceptAll( translationUnit, fixer ); |
---|
| 1287 | } |
---|
| 1288 | |
---|
[0db6fc0] | 1289 | void ReturnTypeFixer::postvisit( FunctionDecl * functionDecl ) { |
---|
[9facf3b] | 1290 | FunctionType * ftype = functionDecl->get_functionType(); |
---|
| 1291 | std::list< DeclarationWithType * > & retVals = ftype->get_returnVals(); |
---|
[56e49b0] | 1292 | assertf( retVals.size() == 0 || retVals.size() == 1, "Function %s has too many return values: %zu", functionDecl->get_name().c_str(), retVals.size() ); |
---|
[9facf3b] | 1293 | if ( retVals.size() == 1 ) { |
---|
[861799c] | 1294 | // ensure all function return values have a name - use the name of the function to disambiguate (this also provides a nice bit of help for debugging). |
---|
| 1295 | // ensure other return values have a name. |
---|
[9facf3b] | 1296 | DeclarationWithType * ret = retVals.front(); |
---|
| 1297 | if ( ret->get_name() == "" ) { |
---|
| 1298 | ret->set_name( toString( "_retval_", CodeGen::genName( functionDecl ) ) ); |
---|
| 1299 | } |
---|
[c6d2e93] | 1300 | ret->get_attributes().push_back( new Attribute( "unused" ) ); |
---|
[9facf3b] | 1301 | } |
---|
| 1302 | } |
---|
[cce9429] | 1303 | |
---|
[0db6fc0] | 1304 | void ReturnTypeFixer::postvisit( FunctionType * ftype ) { |
---|
[cce9429] | 1305 | // xxx - need to handle named return values - this information needs to be saved somehow |
---|
| 1306 | // so that resolution has access to the names. |
---|
| 1307 | // Note that this pass needs to happen early so that other passes which look for tuple types |
---|
| 1308 | // find them in all of the right places, including function return types. |
---|
| 1309 | std::list< DeclarationWithType * > & retVals = ftype->get_returnVals(); |
---|
| 1310 | if ( retVals.size() > 1 ) { |
---|
| 1311 | // generate a single return parameter which is the tuple of all of the return values |
---|
[e3e16bc] | 1312 | TupleType * tupleType = strict_dynamic_cast< TupleType * >( ResolvExpr::extractResultType( ftype ) ); |
---|
[cce9429] | 1313 | // ensure return value is not destructed by explicitly creating an empty ListInit node wherein maybeConstruct is false. |
---|
[ef5b828] | 1314 | ObjectDecl * newRet = new ObjectDecl( "", Type::StorageClasses(), LinkageSpec::Cforall, 0, tupleType, new ListInit( std::list<Initializer *>(), noDesignators, false ) ); |
---|
[cce9429] | 1315 | deleteAll( retVals ); |
---|
| 1316 | retVals.clear(); |
---|
| 1317 | retVals.push_back( newRet ); |
---|
| 1318 | } |
---|
| 1319 | } |
---|
[fbd7ad6] | 1320 | |
---|
[2b79a70] | 1321 | void FixObjectType::fix( std::list< Declaration * > & translationUnit ) { |
---|
| 1322 | PassVisitor<FixObjectType> fixer; |
---|
| 1323 | acceptAll( translationUnit, fixer ); |
---|
| 1324 | } |
---|
| 1325 | |
---|
| 1326 | void FixObjectType::previsit( ObjectDecl * objDecl ) { |
---|
[ef5b828] | 1327 | Type * new_type = ResolvExpr::resolveTypeof( objDecl->get_type(), indexer ); |
---|
[2b79a70] | 1328 | objDecl->set_type( new_type ); |
---|
| 1329 | } |
---|
| 1330 | |
---|
| 1331 | void FixObjectType::previsit( FunctionDecl * funcDecl ) { |
---|
[ef5b828] | 1332 | Type * new_type = ResolvExpr::resolveTypeof( funcDecl->type, indexer ); |
---|
[2b79a70] | 1333 | funcDecl->set_type( new_type ); |
---|
| 1334 | } |
---|
| 1335 | |
---|
[ef5b828] | 1336 | void FixObjectType::previsit( TypeDecl * typeDecl ) { |
---|
[2b79a70] | 1337 | if ( typeDecl->get_base() ) { |
---|
[ef5b828] | 1338 | Type * new_type = ResolvExpr::resolveTypeof( typeDecl->get_base(), indexer ); |
---|
[2b79a70] | 1339 | typeDecl->set_base( new_type ); |
---|
| 1340 | } // if |
---|
| 1341 | } |
---|
| 1342 | |
---|
[09867ec] | 1343 | void InitializerLength::computeLength( std::list< Declaration * > & translationUnit ) { |
---|
| 1344 | PassVisitor<InitializerLength> len; |
---|
| 1345 | acceptAll( translationUnit, len ); |
---|
| 1346 | } |
---|
| 1347 | |
---|
[fbd7ad6] | 1348 | void ArrayLength::computeLength( std::list< Declaration * > & translationUnit ) { |
---|
[0db6fc0] | 1349 | PassVisitor<ArrayLength> len; |
---|
[fbd7ad6] | 1350 | acceptAll( translationUnit, len ); |
---|
| 1351 | } |
---|
| 1352 | |
---|
[09867ec] | 1353 | void InitializerLength::previsit( ObjectDecl * objDecl ) { |
---|
[0b3b2ae] | 1354 | if ( ArrayType * at = dynamic_cast< ArrayType * >( objDecl->type ) ) { |
---|
[f072892] | 1355 | if ( at->dimension ) return; |
---|
[0b3b2ae] | 1356 | if ( ListInit * init = dynamic_cast< ListInit * >( objDecl->init ) ) { |
---|
[f072892] | 1357 | at->dimension = new ConstantExpr( Constant::from_ulong( init->initializers.size() ) ); |
---|
[fbd7ad6] | 1358 | } |
---|
| 1359 | } |
---|
| 1360 | } |
---|
[4fbdfae0] | 1361 | |
---|
[4934ea3] | 1362 | void ArrayLength::previsit( ArrayType * type ) { |
---|
[09867ec] | 1363 | if ( type->dimension ) { |
---|
| 1364 | // need to resolve array dimensions early so that constructor code can correctly determine |
---|
| 1365 | // if a type is a VLA (and hence whether its elements need to be constructed) |
---|
| 1366 | ResolvExpr::findSingleExpression( type->dimension, Validate::SizeType->clone(), indexer ); |
---|
| 1367 | |
---|
| 1368 | // must re-evaluate whether a type is a VLA, now that more information is available |
---|
| 1369 | // (e.g. the dimension may have been an enumerator, which was unknown prior to this step) |
---|
| 1370 | type->isVarLen = ! InitTweak::isConstExpr( type->dimension ); |
---|
[4934ea3] | 1371 | } |
---|
| 1372 | } |
---|
| 1373 | |
---|
[5809461] | 1374 | struct LabelFinder { |
---|
| 1375 | std::set< Label > & labels; |
---|
| 1376 | LabelFinder( std::set< Label > & labels ) : labels( labels ) {} |
---|
| 1377 | void previsit( Statement * stmt ) { |
---|
| 1378 | for ( Label & l : stmt->labels ) { |
---|
| 1379 | labels.insert( l ); |
---|
| 1380 | } |
---|
| 1381 | } |
---|
| 1382 | }; |
---|
| 1383 | |
---|
| 1384 | void LabelAddressFixer::premutate( FunctionDecl * funcDecl ) { |
---|
| 1385 | GuardValue( labels ); |
---|
| 1386 | PassVisitor<LabelFinder> finder( labels ); |
---|
| 1387 | funcDecl->accept( finder ); |
---|
| 1388 | } |
---|
| 1389 | |
---|
| 1390 | Expression * LabelAddressFixer::postmutate( AddressExpr * addrExpr ) { |
---|
| 1391 | // convert &&label into label address |
---|
| 1392 | if ( AddressExpr * inner = dynamic_cast< AddressExpr * >( addrExpr->arg ) ) { |
---|
| 1393 | if ( NameExpr * nameExpr = dynamic_cast< NameExpr * >( inner->arg ) ) { |
---|
| 1394 | if ( labels.count( nameExpr->name ) ) { |
---|
| 1395 | Label name = nameExpr->name; |
---|
| 1396 | delete addrExpr; |
---|
| 1397 | return new LabelAddressExpr( name ); |
---|
| 1398 | } |
---|
| 1399 | } |
---|
| 1400 | } |
---|
| 1401 | return addrExpr; |
---|
| 1402 | } |
---|
[c8e4d2f8] | 1403 | |
---|
[c1ed2ee] | 1404 | namespace { |
---|
[ef5b828] | 1405 | /// Replaces enum types by int, and function/array types in function parameter and return |
---|
[c1ed2ee] | 1406 | /// lists by appropriate pointers |
---|
[954c954] | 1407 | /* |
---|
[c1ed2ee] | 1408 | struct EnumAndPointerDecay_new { |
---|
| 1409 | const ast::EnumDecl * previsit( const ast::EnumDecl * enumDecl ) { |
---|
| 1410 | // set the type of each member of the enumeration to be EnumConstant |
---|
| 1411 | for ( unsigned i = 0; i < enumDecl->members.size(); ++i ) { |
---|
| 1412 | // build new version of object with EnumConstant |
---|
[ef5b828] | 1413 | ast::ptr< ast::ObjectDecl > obj = |
---|
[c1ed2ee] | 1414 | enumDecl->members[i].strict_as< ast::ObjectDecl >(); |
---|
[ef5b828] | 1415 | obj.get_and_mutate()->type = |
---|
[c1ed2ee] | 1416 | new ast::EnumInstType{ enumDecl->name, ast::CV::Const }; |
---|
[ef5b828] | 1417 | |
---|
[c1ed2ee] | 1418 | // set into decl |
---|
| 1419 | ast::EnumDecl * mut = mutate( enumDecl ); |
---|
| 1420 | mut->members[i] = obj.get(); |
---|
| 1421 | enumDecl = mut; |
---|
| 1422 | } |
---|
| 1423 | return enumDecl; |
---|
| 1424 | } |
---|
| 1425 | |
---|
| 1426 | static const ast::FunctionType * fixFunctionList( |
---|
[ef5b828] | 1427 | const ast::FunctionType * func, |
---|
[c1ed2ee] | 1428 | std::vector< ast::ptr< ast::DeclWithType > > ast::FunctionType::* field, |
---|
| 1429 | ast::ArgumentFlag isVarArgs = ast::FixedArgs |
---|
| 1430 | ) { |
---|
[ef5b828] | 1431 | const auto & dwts = func->* field; |
---|
[c1ed2ee] | 1432 | unsigned nvals = dwts.size(); |
---|
| 1433 | bool hasVoid = false; |
---|
| 1434 | for ( unsigned i = 0; i < nvals; ++i ) { |
---|
| 1435 | func = ast::mutate_field_index( func, field, i, fixFunction( dwts[i], hasVoid ) ); |
---|
| 1436 | } |
---|
[ef5b828] | 1437 | |
---|
[c1ed2ee] | 1438 | // the only case in which "void" is valid is where it is the only one in the list |
---|
| 1439 | if ( hasVoid && ( nvals > 1 || isVarArgs ) ) { |
---|
[ef5b828] | 1440 | SemanticError( |
---|
[c1ed2ee] | 1441 | dwts.front()->location, func, "invalid type void in function type" ); |
---|
| 1442 | } |
---|
| 1443 | |
---|
| 1444 | // one void is the only thing in the list, remove it |
---|
| 1445 | if ( hasVoid ) { |
---|
[ef5b828] | 1446 | func = ast::mutate_field( |
---|
[c1ed2ee] | 1447 | func, field, std::vector< ast::ptr< ast::DeclWithType > >{} ); |
---|
| 1448 | } |
---|
| 1449 | |
---|
| 1450 | return func; |
---|
| 1451 | } |
---|
| 1452 | |
---|
| 1453 | const ast::FunctionType * previsit( const ast::FunctionType * func ) { |
---|
| 1454 | func = fixFunctionList( func, &ast::FunctionType::params, func->isVarArgs ); |
---|
| 1455 | return fixFunctionList( func, &ast::FunctionType::returns ); |
---|
| 1456 | } |
---|
| 1457 | }; |
---|
[954c954] | 1458 | */ |
---|
[c1ed2ee] | 1459 | |
---|
[c1398e4] | 1460 | /// expand assertions from a trait instance, performing appropriate type variable substitutions |
---|
[ef5b828] | 1461 | void expandAssertions( |
---|
| 1462 | const ast::TraitInstType * inst, std::vector< ast::ptr< ast::DeclWithType > > & out |
---|
[c1398e4] | 1463 | ) { |
---|
| 1464 | assertf( inst->base, "Trait instance not linked to base trait: %s", toCString( inst ) ); |
---|
| 1465 | |
---|
| 1466 | // build list of trait members, substituting trait decl parameters for instance parameters |
---|
[ef5b828] | 1467 | ast::TypeSubstitution sub{ |
---|
[c1398e4] | 1468 | inst->base->params.begin(), inst->base->params.end(), inst->params.begin() }; |
---|
| 1469 | // deliberately take ast::ptr by-value to ensure this does not mutate inst->base |
---|
| 1470 | for ( ast::ptr< ast::Decl > decl : inst->base->members ) { |
---|
| 1471 | auto member = decl.strict_as< ast::DeclWithType >(); |
---|
| 1472 | sub.apply( member ); |
---|
| 1473 | out.emplace_back( member ); |
---|
| 1474 | } |
---|
| 1475 | } |
---|
| 1476 | |
---|
[3e5dd913] | 1477 | /* |
---|
| 1478 | |
---|
[c1ed2ee] | 1479 | /// Associates forward declarations of aggregates with their definitions |
---|
[ef5b828] | 1480 | class LinkReferenceToTypes_new final |
---|
| 1481 | : public ast::WithSymbolTable, public ast::WithGuards, public |
---|
[c1ed2ee] | 1482 | ast::WithVisitorRef<LinkReferenceToTypes_new>, public ast::WithShortCircuiting { |
---|
[ef5b828] | 1483 | |
---|
| 1484 | // these maps of uses of forward declarations of types need to have the actual type |
---|
| 1485 | // declaration switched in * after * they have been traversed. To enable this in the |
---|
| 1486 | // ast::Pass framework, any node that needs to be so mutated has mutate() called on it |
---|
| 1487 | // before it is placed in the map, properly updating its parents in the usual traversal, |
---|
[18e683b] | 1488 | // then can have the actual mutation applied later |
---|
| 1489 | using ForwardEnumsType = std::unordered_multimap< std::string, ast::EnumInstType * >; |
---|
| 1490 | using ForwardStructsType = std::unordered_multimap< std::string, ast::StructInstType * >; |
---|
| 1491 | using ForwardUnionsType = std::unordered_multimap< std::string, ast::UnionInstType * >; |
---|
[ef5b828] | 1492 | |
---|
[18e683b] | 1493 | const CodeLocation & location; |
---|
| 1494 | const ast::SymbolTable * localSymtab; |
---|
[ef5b828] | 1495 | |
---|
[18e683b] | 1496 | ForwardEnumsType forwardEnums; |
---|
| 1497 | ForwardStructsType forwardStructs; |
---|
| 1498 | ForwardUnionsType forwardUnions; |
---|
[c1ed2ee] | 1499 | |
---|
[ef5b828] | 1500 | /// true if currently in a generic type body, so that type parameter instances can be |
---|
[18e683b] | 1501 | /// renamed appropriately |
---|
| 1502 | bool inGeneric = false; |
---|
[c1ed2ee] | 1503 | |
---|
[18e683b] | 1504 | public: |
---|
| 1505 | /// contstruct using running symbol table |
---|
[ef5b828] | 1506 | LinkReferenceToTypes_new( const CodeLocation & loc ) |
---|
[18e683b] | 1507 | : location( loc ), localSymtab( &symtab ) {} |
---|
[ef5b828] | 1508 | |
---|
[18e683b] | 1509 | /// construct using provided symbol table |
---|
[ef5b828] | 1510 | LinkReferenceToTypes_new( const CodeLocation & loc, const ast::SymbolTable & syms ) |
---|
[18e683b] | 1511 | : location( loc ), localSymtab( &syms ) {} |
---|
| 1512 | |
---|
| 1513 | const ast::Type * postvisit( const ast::TypeInstType * typeInst ) { |
---|
| 1514 | // ensure generic parameter instances are renamed like the base type |
---|
| 1515 | if ( inGeneric && typeInst->base ) { |
---|
[ef5b828] | 1516 | typeInst = ast::mutate_field( |
---|
[18e683b] | 1517 | typeInst, &ast::TypeInstType::name, typeInst->base->name ); |
---|
| 1518 | } |
---|
| 1519 | |
---|
[ef5b828] | 1520 | if ( |
---|
| 1521 | auto typeDecl = dynamic_cast< const ast::TypeDecl * >( |
---|
| 1522 | localSymtab->lookupType( typeInst->name ) ) |
---|
[18e683b] | 1523 | ) { |
---|
| 1524 | typeInst = ast::mutate_field( typeInst, &ast::TypeInstType::kind, typeDecl->kind ); |
---|
| 1525 | } |
---|
| 1526 | |
---|
| 1527 | return typeInst; |
---|
| 1528 | } |
---|
| 1529 | |
---|
| 1530 | const ast::Type * postvisit( const ast::EnumInstType * inst ) { |
---|
| 1531 | const ast::EnumDecl * decl = localSymtab->lookupEnum( inst->name ); |
---|
| 1532 | // not a semantic error if the enum is not found, just an implicit forward declaration |
---|
| 1533 | if ( decl ) { |
---|
| 1534 | inst = ast::mutate_field( inst, &ast::EnumInstType::base, decl ); |
---|
| 1535 | } |
---|
| 1536 | if ( ! decl || ! decl->body ) { |
---|
| 1537 | // forward declaration |
---|
| 1538 | auto mut = mutate( inst ); |
---|
| 1539 | forwardEnums.emplace( inst->name, mut ); |
---|
| 1540 | inst = mut; |
---|
| 1541 | } |
---|
| 1542 | return inst; |
---|
| 1543 | } |
---|
| 1544 | |
---|
[98e8b3b] | 1545 | void checkGenericParameters( const ast::BaseInstType * inst ) { |
---|
[18e683b] | 1546 | for ( const ast::Expr * param : inst->params ) { |
---|
| 1547 | if ( ! dynamic_cast< const ast::TypeExpr * >( param ) ) { |
---|
[ef5b828] | 1548 | SemanticError( |
---|
[18e683b] | 1549 | location, inst, "Expression parameters for generic types are currently " |
---|
| 1550 | "unsupported: " ); |
---|
| 1551 | } |
---|
| 1552 | } |
---|
| 1553 | } |
---|
| 1554 | |
---|
| 1555 | const ast::StructInstType * postvisit( const ast::StructInstType * inst ) { |
---|
| 1556 | const ast::StructDecl * decl = localSymtab->lookupStruct( inst->name ); |
---|
| 1557 | // not a semantic error if the struct is not found, just an implicit forward declaration |
---|
| 1558 | if ( decl ) { |
---|
| 1559 | inst = ast::mutate_field( inst, &ast::StructInstType::base, decl ); |
---|
| 1560 | } |
---|
| 1561 | if ( ! decl || ! decl->body ) { |
---|
| 1562 | // forward declaration |
---|
| 1563 | auto mut = mutate( inst ); |
---|
| 1564 | forwardStructs.emplace( inst->name, mut ); |
---|
| 1565 | inst = mut; |
---|
| 1566 | } |
---|
| 1567 | checkGenericParameters( inst ); |
---|
| 1568 | return inst; |
---|
| 1569 | } |
---|
| 1570 | |
---|
| 1571 | const ast::UnionInstType * postvisit( const ast::UnionInstType * inst ) { |
---|
| 1572 | const ast::UnionDecl * decl = localSymtab->lookupUnion( inst->name ); |
---|
| 1573 | // not a semantic error if the struct is not found, just an implicit forward declaration |
---|
| 1574 | if ( decl ) { |
---|
| 1575 | inst = ast::mutate_field( inst, &ast::UnionInstType::base, decl ); |
---|
| 1576 | } |
---|
| 1577 | if ( ! decl || ! decl->body ) { |
---|
| 1578 | // forward declaration |
---|
| 1579 | auto mut = mutate( inst ); |
---|
| 1580 | forwardUnions.emplace( inst->name, mut ); |
---|
| 1581 | inst = mut; |
---|
| 1582 | } |
---|
| 1583 | checkGenericParameters( inst ); |
---|
| 1584 | return inst; |
---|
| 1585 | } |
---|
| 1586 | |
---|
| 1587 | const ast::Type * postvisit( const ast::TraitInstType * traitInst ) { |
---|
| 1588 | // handle other traits |
---|
| 1589 | const ast::TraitDecl * traitDecl = localSymtab->lookupTrait( traitInst->name ); |
---|
| 1590 | if ( ! traitDecl ) { |
---|
| 1591 | SemanticError( location, "use of undeclared trait " + traitInst->name ); |
---|
| 1592 | } |
---|
| 1593 | if ( traitDecl->params.size() != traitInst->params.size() ) { |
---|
| 1594 | SemanticError( location, traitInst, "incorrect number of trait parameters: " ); |
---|
| 1595 | } |
---|
| 1596 | traitInst = ast::mutate_field( traitInst, &ast::TraitInstType::base, traitDecl ); |
---|
| 1597 | |
---|
| 1598 | // need to carry over the "sized" status of each decl in the instance |
---|
| 1599 | for ( unsigned i = 0; i < traitDecl->params.size(); ++i ) { |
---|
| 1600 | auto expr = traitInst->params[i].as< ast::TypeExpr >(); |
---|
| 1601 | if ( ! expr ) { |
---|
[ef5b828] | 1602 | SemanticError( |
---|
[18e683b] | 1603 | traitInst->params[i].get(), "Expression parameters for trait instances " |
---|
| 1604 | "are currently unsupported: " ); |
---|
| 1605 | } |
---|
| 1606 | |
---|
| 1607 | if ( auto inst = expr->type.as< ast::TypeInstType >() ) { |
---|
| 1608 | if ( traitDecl->params[i]->sized && ! inst->base->sized ) { |
---|
| 1609 | // traitInst = ast::mutate_field_index( |
---|
| 1610 | // traitInst, &ast::TraitInstType::params, i, |
---|
| 1611 | // ... |
---|
| 1612 | // ); |
---|
| 1613 | ast::TraitInstType * mut = ast::mutate( traitInst ); |
---|
| 1614 | ast::chain_mutate( mut->params[i] ) |
---|
| 1615 | ( &ast::TypeExpr::type ) |
---|
| 1616 | ( &ast::TypeInstType::base )->sized = true; |
---|
| 1617 | traitInst = mut; |
---|
| 1618 | } |
---|
| 1619 | } |
---|
| 1620 | } |
---|
| 1621 | |
---|
| 1622 | return traitInst; |
---|
| 1623 | } |
---|
[ef5b828] | 1624 | |
---|
[18e683b] | 1625 | void previsit( const ast::QualifiedType * ) { visit_children = false; } |
---|
[ef5b828] | 1626 | |
---|
[18e683b] | 1627 | const ast::Type * postvisit( const ast::QualifiedType * qualType ) { |
---|
| 1628 | // linking only makes sense for the "oldest ancestor" of the qualified type |
---|
[ef5b828] | 1629 | return ast::mutate_field( |
---|
| 1630 | qualType, &ast::QualifiedType::parent, qualType->parent->accept( * visitor ) ); |
---|
[18e683b] | 1631 | } |
---|
| 1632 | |
---|
| 1633 | const ast::Decl * postvisit( const ast::EnumDecl * enumDecl ) { |
---|
[ef5b828] | 1634 | // visit enum members first so that the types of self-referencing members are updated |
---|
[18e683b] | 1635 | // properly |
---|
| 1636 | if ( ! enumDecl->body ) return enumDecl; |
---|
| 1637 | |
---|
| 1638 | // update forward declarations to point here |
---|
| 1639 | auto fwds = forwardEnums.equal_range( enumDecl->name ); |
---|
| 1640 | if ( fwds.first != fwds.second ) { |
---|
| 1641 | auto inst = fwds.first; |
---|
| 1642 | do { |
---|
[ef5b828] | 1643 | // forward decl is stored * mutably * in map, can thus be updated |
---|
[18e683b] | 1644 | inst->second->base = enumDecl; |
---|
| 1645 | } while ( ++inst != fwds.second ); |
---|
| 1646 | forwardEnums.erase( fwds.first, fwds.second ); |
---|
| 1647 | } |
---|
[ef5b828] | 1648 | |
---|
[18e683b] | 1649 | // ensure that enumerator initializers are properly set |
---|
| 1650 | for ( unsigned i = 0; i < enumDecl->members.size(); ++i ) { |
---|
| 1651 | auto field = enumDecl->members[i].strict_as< ast::ObjectDecl >(); |
---|
| 1652 | if ( field->init ) { |
---|
[ef5b828] | 1653 | // need to resolve enumerator initializers early so that other passes that |
---|
[18e683b] | 1654 | // determine if an expression is constexpr have appropriate information |
---|
| 1655 | auto init = field->init.strict_as< ast::SingleInit >(); |
---|
[ef5b828] | 1656 | |
---|
| 1657 | enumDecl = ast::mutate_field_index( |
---|
| 1658 | enumDecl, &ast::EnumDecl::members, i, |
---|
| 1659 | ast::mutate_field( field, &ast::ObjectDecl::init, |
---|
[18e683b] | 1660 | ast::mutate_field( init, &ast::SingleInit::value, |
---|
[ef5b828] | 1661 | ResolvExpr::findSingleExpression( |
---|
[18e683b] | 1662 | init->value, new ast::BasicType{ ast::BasicType::SignedInt }, |
---|
| 1663 | symtab ) ) ) ); |
---|
| 1664 | } |
---|
| 1665 | } |
---|
| 1666 | |
---|
| 1667 | return enumDecl; |
---|
| 1668 | } |
---|
| 1669 | |
---|
[ef5b828] | 1670 | /// rename generic type parameters uniquely so that they do not conflict with user defined |
---|
[18e683b] | 1671 | /// function forall parameters, e.g. the T in Box and the T in f, below |
---|
| 1672 | /// forall(otype T) |
---|
| 1673 | /// struct Box { |
---|
| 1674 | /// T x; |
---|
| 1675 | /// }; |
---|
| 1676 | /// forall(otype T) |
---|
| 1677 | /// void f(Box(T) b) { |
---|
| 1678 | /// ... |
---|
| 1679 | /// } |
---|
| 1680 | template< typename AggrDecl > |
---|
| 1681 | const AggrDecl * renameGenericParams( const AggrDecl * aggr ) { |
---|
| 1682 | GuardValue( inGeneric ); |
---|
| 1683 | inGeneric = ! aggr->params.empty(); |
---|
| 1684 | |
---|
| 1685 | for ( unsigned i = 0; i < aggr->params.size(); ++i ) { |
---|
| 1686 | const ast::TypeDecl * td = aggr->params[i]; |
---|
| 1687 | |
---|
[ef5b828] | 1688 | aggr = ast::mutate_field_index( |
---|
| 1689 | aggr, &AggrDecl::params, i, |
---|
[18e683b] | 1690 | ast::mutate_field( td, &ast::TypeDecl::name, "__" + td->name + "_generic_" ) ); |
---|
| 1691 | } |
---|
| 1692 | return aggr; |
---|
| 1693 | } |
---|
| 1694 | |
---|
| 1695 | const ast::StructDecl * previsit( const ast::StructDecl * structDecl ) { |
---|
| 1696 | return renameGenericParams( structDecl ); |
---|
| 1697 | } |
---|
| 1698 | |
---|
| 1699 | void postvisit( const ast::StructDecl * structDecl ) { |
---|
[ef5b828] | 1700 | // visit struct members first so that the types of self-referencing members are |
---|
[18e683b] | 1701 | // updated properly |
---|
| 1702 | if ( ! structDecl->body ) return; |
---|
| 1703 | |
---|
| 1704 | // update forward declarations to point here |
---|
| 1705 | auto fwds = forwardStructs.equal_range( structDecl->name ); |
---|
| 1706 | if ( fwds.first != fwds.second ) { |
---|
| 1707 | auto inst = fwds.first; |
---|
| 1708 | do { |
---|
[ef5b828] | 1709 | // forward decl is stored * mutably * in map, can thus be updated |
---|
[18e683b] | 1710 | inst->second->base = structDecl; |
---|
| 1711 | } while ( ++inst != fwds.second ); |
---|
| 1712 | forwardStructs.erase( fwds.first, fwds.second ); |
---|
| 1713 | } |
---|
| 1714 | } |
---|
| 1715 | |
---|
| 1716 | const ast::UnionDecl * previsit( const ast::UnionDecl * unionDecl ) { |
---|
| 1717 | return renameGenericParams( unionDecl ); |
---|
| 1718 | } |
---|
| 1719 | |
---|
| 1720 | void postvisit( const ast::UnionDecl * unionDecl ) { |
---|
[ef5b828] | 1721 | // visit union members first so that the types of self-referencing members are updated |
---|
[18e683b] | 1722 | // properly |
---|
| 1723 | if ( ! unionDecl->body ) return; |
---|
| 1724 | |
---|
| 1725 | // update forward declarations to point here |
---|
| 1726 | auto fwds = forwardUnions.equal_range( unionDecl->name ); |
---|
| 1727 | if ( fwds.first != fwds.second ) { |
---|
| 1728 | auto inst = fwds.first; |
---|
| 1729 | do { |
---|
[ef5b828] | 1730 | // forward decl is stored * mutably * in map, can thus be updated |
---|
[18e683b] | 1731 | inst->second->base = unionDecl; |
---|
| 1732 | } while ( ++inst != fwds.second ); |
---|
| 1733 | forwardUnions.erase( fwds.first, fwds.second ); |
---|
| 1734 | } |
---|
| 1735 | } |
---|
| 1736 | |
---|
| 1737 | const ast::Decl * postvisit( const ast::TraitDecl * traitDecl ) { |
---|
| 1738 | // set the "sized" status for the special "sized" trait |
---|
[c1398e4] | 1739 | if ( traitDecl->name == "sized" ) { |
---|
| 1740 | assertf( traitDecl->params.size() == 1, "Built-in trait 'sized' has incorrect " |
---|
| 1741 | "number of parameters: %zd", traitDecl->params.size() ); |
---|
| 1742 | |
---|
[ef5b828] | 1743 | traitDecl = ast::mutate_field_index( |
---|
| 1744 | traitDecl, &ast::TraitDecl::params, 0, |
---|
| 1745 | ast::mutate_field( |
---|
[c1398e4] | 1746 | traitDecl->params.front().get(), &ast::TypeDecl::sized, true ) ); |
---|
| 1747 | } |
---|
[18e683b] | 1748 | |
---|
[c1398e4] | 1749 | // move assertions from type parameters into the body of the trait |
---|
| 1750 | std::vector< ast::ptr< ast::DeclWithType > > added; |
---|
| 1751 | for ( const ast::TypeDecl * td : traitDecl->params ) { |
---|
| 1752 | for ( const ast::DeclWithType * assn : td->assertions ) { |
---|
| 1753 | auto inst = dynamic_cast< const ast::TraitInstType * >( assn->get_type() ); |
---|
| 1754 | if ( inst ) { |
---|
| 1755 | expandAssertions( inst, added ); |
---|
| 1756 | } else { |
---|
| 1757 | added.emplace_back( assn ); |
---|
| 1758 | } |
---|
| 1759 | } |
---|
| 1760 | } |
---|
| 1761 | if ( ! added.empty() ) { |
---|
| 1762 | auto mut = mutate( traitDecl ); |
---|
| 1763 | for ( const ast::DeclWithType * decl : added ) { |
---|
| 1764 | mut->members.emplace_back( decl ); |
---|
| 1765 | } |
---|
| 1766 | traitDecl = mut; |
---|
| 1767 | } |
---|
[ef5b828] | 1768 | |
---|
[c1398e4] | 1769 | return traitDecl; |
---|
[18e683b] | 1770 | } |
---|
[c1ed2ee] | 1771 | }; |
---|
| 1772 | |
---|
[ef5b828] | 1773 | /// Replaces array and function types in forall lists by appropriate pointer type and assigns |
---|
[c1ed2ee] | 1774 | /// each object and function declaration a unique ID |
---|
[c1398e4] | 1775 | class ForallPointerDecay_new { |
---|
| 1776 | const CodeLocation & location; |
---|
| 1777 | public: |
---|
| 1778 | ForallPointerDecay_new( const CodeLocation & loc ) : location( loc ) {} |
---|
| 1779 | |
---|
| 1780 | const ast::ObjectDecl * previsit( const ast::ObjectDecl * obj ) { |
---|
| 1781 | // ensure that operator names only apply to functions or function pointers |
---|
[ef5b828] | 1782 | if ( |
---|
| 1783 | CodeGen::isOperator( obj->name ) |
---|
[c1398e4] | 1784 | && ! dynamic_cast< const ast::FunctionType * >( obj->type->stripDeclarator() ) |
---|
| 1785 | ) { |
---|
| 1786 | SemanticError( obj->location, toCString( "operator ", obj->name.c_str(), " is not " |
---|
| 1787 | "a function or function pointer." ) ); |
---|
| 1788 | } |
---|
| 1789 | |
---|
| 1790 | // ensure object has unique ID |
---|
| 1791 | if ( obj->uniqueId ) return obj; |
---|
| 1792 | auto mut = mutate( obj ); |
---|
| 1793 | mut->fixUniqueId(); |
---|
| 1794 | return mut; |
---|
| 1795 | } |
---|
| 1796 | |
---|
| 1797 | const ast::FunctionDecl * previsit( const ast::FunctionDecl * func ) { |
---|
| 1798 | // ensure function has unique ID |
---|
| 1799 | if ( func->uniqueId ) return func; |
---|
| 1800 | auto mut = mutate( func ); |
---|
| 1801 | mut->fixUniqueId(); |
---|
| 1802 | return mut; |
---|
| 1803 | } |
---|
| 1804 | |
---|
| 1805 | /// Fix up assertions -- flattens assertion lists, removing all trait instances |
---|
| 1806 | template< typename node_t, typename parent_t > |
---|
[ef5b828] | 1807 | static const node_t * forallFixer( |
---|
| 1808 | const CodeLocation & loc, const node_t * node, |
---|
[361bf01] | 1809 | ast::FunctionType::ForallList parent_t::* forallField |
---|
[c1398e4] | 1810 | ) { |
---|
[ef5b828] | 1811 | for ( unsigned i = 0; i < (node->* forallField).size(); ++i ) { |
---|
| 1812 | const ast::TypeDecl * type = (node->* forallField)[i]; |
---|
[c1398e4] | 1813 | if ( type->assertions.empty() ) continue; |
---|
| 1814 | |
---|
| 1815 | std::vector< ast::ptr< ast::DeclWithType > > asserts; |
---|
| 1816 | asserts.reserve( type->assertions.size() ); |
---|
| 1817 | |
---|
| 1818 | // expand trait instances into their members |
---|
| 1819 | for ( const ast::DeclWithType * assn : type->assertions ) { |
---|
[ef5b828] | 1820 | auto traitInst = |
---|
| 1821 | dynamic_cast< const ast::TraitInstType * >( assn->get_type() ); |
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[c1398e4] | 1822 | if ( traitInst ) { |
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| 1823 | // expand trait instance to all its members |
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| 1824 | expandAssertions( traitInst, asserts ); |
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| 1825 | } else { |
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| 1826 | // pass other assertions through |
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| 1827 | asserts.emplace_back( assn ); |
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| 1828 | } |
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| 1829 | } |
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| 1830 | |
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| 1831 | // apply FixFunction to every assertion to check for invalid void type |
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| 1832 | for ( ast::ptr< ast::DeclWithType > & assn : asserts ) { |
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| 1833 | bool isVoid = false; |
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| 1834 | assn = fixFunction( assn, isVoid ); |
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| 1835 | if ( isVoid ) { |
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| 1836 | SemanticError( loc, node, "invalid type void in assertion of function " ); |
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| 1837 | } |
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| 1838 | } |
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| 1839 | |
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| 1840 | // place mutated assertion list in node |
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| 1841 | auto mut = mutate( type ); |
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| 1842 | mut->assertions = move( asserts ); |
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| 1843 | node = ast::mutate_field_index( node, forallField, i, mut ); |
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| 1844 | } |
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| 1845 | return node; |
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| 1846 | } |
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| 1847 | |
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| 1848 | const ast::FunctionType * previsit( const ast::FunctionType * ftype ) { |
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| 1849 | return forallFixer( location, ftype, &ast::FunctionType::forall ); |
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| 1850 | } |
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| 1851 | |
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| 1852 | const ast::StructDecl * previsit( const ast::StructDecl * aggrDecl ) { |
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| 1853 | return forallFixer( aggrDecl->location, aggrDecl, &ast::StructDecl::params ); |
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| 1854 | } |
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| 1855 | |
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| 1856 | const ast::UnionDecl * previsit( const ast::UnionDecl * aggrDecl ) { |
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| 1857 | return forallFixer( aggrDecl->location, aggrDecl, &ast::UnionDecl::params ); |
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| 1858 | } |
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[c1ed2ee] | 1859 | }; |
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[3e5dd913] | 1860 | */ |
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[c1ed2ee] | 1861 | } // anonymous namespace |
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| 1862 | |
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[3e5dd913] | 1863 | /* |
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[ef5b828] | 1864 | const ast::Type * validateType( |
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[18e683b] | 1865 | const CodeLocation & loc, const ast::Type * type, const ast::SymbolTable & symtab ) { |
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[954c954] | 1866 | // ast::Pass< EnumAndPointerDecay_new > epc; |
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[18e683b] | 1867 | ast::Pass< LinkReferenceToTypes_new > lrt{ loc, symtab }; |
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[c1398e4] | 1868 | ast::Pass< ForallPointerDecay_new > fpd{ loc }; |
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[c1ed2ee] | 1869 | |
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[954c954] | 1870 | return type->accept( lrt )->accept( fpd ); |
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[c1ed2ee] | 1871 | } |
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[3e5dd913] | 1872 | */ |
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[c1ed2ee] | 1873 | |
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[51b7345] | 1874 | } // namespace SymTab |
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[0dd3a2f] | 1875 | |
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| 1876 | // Local Variables: // |
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| 1877 | // tab-width: 4 // |
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| 1878 | // mode: c++ // |
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| 1879 | // compile-command: "make install" // |
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| 1880 | // End: // |
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