| [a32b204] | 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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| [41a2620] | 7 | // Unify.cc -- | 
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| [a32b204] | 8 | // | 
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|  | 9 | // Author           : Richard C. Bilson | 
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|  | 10 | // Created On       : Sun May 17 12:27:10 2015 | 
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| [d286cf68] | 11 | // Last Modified By : Aaron B. Moss | 
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|  | 12 | // Last Modified On : Mon Jun 18 11:58:00 2018 | 
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|  | 13 | // Update Count     : 43 | 
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| [a32b204] | 14 | // | 
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| [51b73452] | 15 |  | 
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| [ea6332d] | 16 | #include <cassert>                // for assertf, assert | 
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|  | 17 | #include <iterator>               // for back_insert_iterator, back_inserter | 
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|  | 18 | #include <map>                    // for _Rb_tree_const_iterator, _Rb_tree_i... | 
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| [aeef2bd] | 19 | #include <memory>                 // for unique_ptr | 
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| [ea6332d] | 20 | #include <set>                    // for set | 
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|  | 21 | #include <string>                 // for string, operator==, operator!=, bas... | 
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| [00ac42e] | 22 | #include <utility>                // for pair, move | 
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| [51b73452] | 23 |  | 
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| [3096ec1] | 24 | #include "Common/PassVisitor.h"   // for PassVisitor | 
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| [ea6332d] | 25 | #include "FindOpenVars.h"         // for findOpenVars | 
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|  | 26 | #include "Parser/LinkageSpec.h"   // for C | 
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|  | 27 | #include "SynTree/Constant.h"     // for Constant | 
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|  | 28 | #include "SynTree/Declaration.h"  // for TypeDecl, TypeDecl::Data, Declarati... | 
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|  | 29 | #include "SynTree/Expression.h"   // for TypeExpr, Expression, ConstantExpr | 
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|  | 30 | #include "SynTree/Mutator.h"      // for Mutator | 
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|  | 31 | #include "SynTree/Type.h"         // for Type, TypeInstType, FunctionType | 
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|  | 32 | #include "SynTree/Visitor.h"      // for Visitor | 
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|  | 33 | #include "Tuples/Tuples.h"        // for isTtype | 
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|  | 34 | #include "TypeEnvironment.h"      // for EqvClass, AssertionSet, OpenVarSet | 
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| [51b73452] | 35 | #include "Unify.h" | 
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| [ea6332d] | 36 | #include "typeops.h"              // for flatten, occurs, commonType | 
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|  | 37 |  | 
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|  | 38 | namespace SymTab { | 
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|  | 39 | class Indexer; | 
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|  | 40 | }  // namespace SymTab | 
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| [51b73452] | 41 |  | 
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| [1cbca6e] | 42 | // #define DEBUG | 
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| [51b73452] | 43 |  | 
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|  | 44 | namespace ResolvExpr { | 
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|  | 45 |  | 
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| [36a2367] | 46 | struct Unify : public WithShortCircuiting { | 
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| [a32b204] | 47 | Unify( Type *type2, TypeEnvironment &env, AssertionSet &needAssertions, AssertionSet &haveAssertions, const OpenVarSet &openVars, WidenMode widenMode, const SymTab::Indexer &indexer ); | 
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| [41a2620] | 48 |  | 
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| [a32b204] | 49 | bool get_result() const { return result; } | 
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|  | 50 |  | 
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| [36a2367] | 51 | void previsit( BaseSyntaxNode * ) { visit_children = false; } | 
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|  | 52 |  | 
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|  | 53 | void postvisit( VoidType * voidType ); | 
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|  | 54 | void postvisit( BasicType * basicType ); | 
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|  | 55 | void postvisit( PointerType * pointerType ); | 
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|  | 56 | void postvisit( ArrayType * arrayType ); | 
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|  | 57 | void postvisit( ReferenceType * refType ); | 
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|  | 58 | void postvisit( FunctionType * functionType ); | 
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|  | 59 | void postvisit( StructInstType * aggregateUseType ); | 
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|  | 60 | void postvisit( UnionInstType * aggregateUseType ); | 
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|  | 61 | void postvisit( EnumInstType * aggregateUseType ); | 
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|  | 62 | void postvisit( TraitInstType * aggregateUseType ); | 
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|  | 63 | void postvisit( TypeInstType * aggregateUseType ); | 
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|  | 64 | void postvisit( TupleType * tupleType ); | 
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|  | 65 | void postvisit( VarArgsType * varArgsType ); | 
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|  | 66 | void postvisit( ZeroType * zeroType ); | 
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|  | 67 | void postvisit( OneType * oneType ); | 
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|  | 68 |  | 
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|  | 69 | private: | 
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| [a32b204] | 70 | template< typename RefType > void handleRefType( RefType *inst, Type *other ); | 
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| [02ec390] | 71 | template< typename RefType > void handleGenericRefType( RefType *inst, Type *other ); | 
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| [a32b204] | 72 |  | 
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|  | 73 | bool result; | 
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|  | 74 | Type *type2;                            // inherited | 
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|  | 75 | TypeEnvironment &env; | 
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|  | 76 | AssertionSet &needAssertions; | 
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|  | 77 | AssertionSet &haveAssertions; | 
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|  | 78 | const OpenVarSet &openVars; | 
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|  | 79 | WidenMode widenMode; | 
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|  | 80 | const SymTab::Indexer &indexer; | 
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|  | 81 | }; | 
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|  | 82 |  | 
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| [eb50842] | 83 | /// Attempts an inexact unification of type1 and type2. | 
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|  | 84 | /// Returns false if no such unification; if the types can be unified, sets common (unless they unify exactly and have identical type qualifiers) | 
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| [a32b204] | 85 | bool unifyInexact( Type *type1, Type *type2, TypeEnvironment &env, AssertionSet &needAssertions, AssertionSet &haveAssertions, const OpenVarSet &openVars, WidenMode widenMode, const SymTab::Indexer &indexer, Type *&common ); | 
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|  | 86 | bool unifyExact( Type *type1, Type *type2, TypeEnvironment &env, AssertionSet &needAssertions, AssertionSet &haveAssertions, const OpenVarSet &openVars, WidenMode widenMode, const SymTab::Indexer &indexer ); | 
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| [41a2620] | 87 |  | 
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| [a32b204] | 88 | bool typesCompatible( Type *first, Type *second, const SymTab::Indexer &indexer, const TypeEnvironment &env ) { | 
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|  | 89 | TypeEnvironment newEnv; | 
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| [1cbca6e] | 90 | OpenVarSet openVars, closedVars; // added closedVars | 
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| [a32b204] | 91 | AssertionSet needAssertions, haveAssertions; | 
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|  | 92 | Type *newFirst = first->clone(), *newSecond = second->clone(); | 
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|  | 93 | env.apply( newFirst ); | 
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|  | 94 | env.apply( newSecond ); | 
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| [1cbca6e] | 95 |  | 
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|  | 96 | // do we need to do this? Seems like we do, types should be able to be compatible if they | 
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|  | 97 | // have free variables that can unify | 
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|  | 98 | findOpenVars( newFirst, openVars, closedVars, needAssertions, haveAssertions, false ); | 
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|  | 99 | findOpenVars( newSecond, openVars, closedVars, needAssertions, haveAssertions, true ); | 
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|  | 100 |  | 
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| [a32b204] | 101 | bool result = unifyExact( newFirst, newSecond, newEnv, needAssertions, haveAssertions, openVars, WidenMode( false, false ), indexer ); | 
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|  | 102 | delete newFirst; | 
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|  | 103 | delete newSecond; | 
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|  | 104 | return result; | 
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|  | 105 | } | 
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|  | 106 |  | 
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|  | 107 | bool typesCompatibleIgnoreQualifiers( Type *first, Type *second, const SymTab::Indexer &indexer, const TypeEnvironment &env ) { | 
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|  | 108 | TypeEnvironment newEnv; | 
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|  | 109 | OpenVarSet openVars; | 
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|  | 110 | AssertionSet needAssertions, haveAssertions; | 
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|  | 111 | Type *newFirst = first->clone(), *newSecond = second->clone(); | 
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|  | 112 | env.apply( newFirst ); | 
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|  | 113 | env.apply( newSecond ); | 
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|  | 114 | newFirst->get_qualifiers() = Type::Qualifiers(); | 
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|  | 115 | newSecond->get_qualifiers() = Type::Qualifiers(); | 
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| [2c57025] | 116 | ///   std::cerr << "first is "; | 
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|  | 117 | ///   first->print( std::cerr ); | 
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|  | 118 | ///   std::cerr << std::endl << "second is "; | 
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|  | 119 | ///   second->print( std::cerr ); | 
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|  | 120 | ///   std::cerr << std::endl << "newFirst is "; | 
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|  | 121 | ///   newFirst->print( std::cerr ); | 
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|  | 122 | ///   std::cerr << std::endl << "newSecond is "; | 
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|  | 123 | ///   newSecond->print( std::cerr ); | 
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|  | 124 | ///   std::cerr << std::endl; | 
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| [a32b204] | 125 | bool result = unifyExact( newFirst, newSecond, newEnv, needAssertions, haveAssertions, openVars, WidenMode( false, false ), indexer ); | 
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|  | 126 | delete newFirst; | 
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|  | 127 | delete newSecond; | 
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|  | 128 | return result; | 
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|  | 129 | } | 
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|  | 130 |  | 
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|  | 131 | bool unify( Type *type1, Type *type2, TypeEnvironment &env, AssertionSet &needAssertions, AssertionSet &haveAssertions, OpenVarSet &openVars, const SymTab::Indexer &indexer ) { | 
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|  | 132 | OpenVarSet closedVars; | 
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|  | 133 | findOpenVars( type1, openVars, closedVars, needAssertions, haveAssertions, false ); | 
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|  | 134 | findOpenVars( type2, openVars, closedVars, needAssertions, haveAssertions, true ); | 
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|  | 135 | Type *commonType = 0; | 
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|  | 136 | if ( unifyInexact( type1, type2, env, needAssertions, haveAssertions, openVars, WidenMode( true, true ), indexer, commonType ) ) { | 
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|  | 137 | if ( commonType ) { | 
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|  | 138 | delete commonType; | 
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|  | 139 | } // if | 
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|  | 140 | return true; | 
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|  | 141 | } else { | 
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|  | 142 | return false; | 
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|  | 143 | } // if | 
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|  | 144 | } | 
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|  | 145 |  | 
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|  | 146 | bool unify( Type *type1, Type *type2, TypeEnvironment &env, AssertionSet &needAssertions, AssertionSet &haveAssertions, OpenVarSet &openVars, const SymTab::Indexer &indexer, Type *&commonType ) { | 
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|  | 147 | OpenVarSet closedVars; | 
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|  | 148 | findOpenVars( type1, openVars, closedVars, needAssertions, haveAssertions, false ); | 
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|  | 149 | findOpenVars( type2, openVars, closedVars, needAssertions, haveAssertions, true ); | 
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|  | 150 | return unifyInexact( type1, type2, env, needAssertions, haveAssertions, openVars, WidenMode( true, true ), indexer, commonType ); | 
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|  | 151 | } | 
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|  | 152 |  | 
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|  | 153 | bool unifyExact( Type *type1, Type *type2, TypeEnvironment &env, AssertionSet &needAssertions, AssertionSet &haveAssertions, const OpenVarSet &openVars, WidenMode widenMode, const SymTab::Indexer &indexer ) { | 
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| [51b73452] | 154 | #ifdef DEBUG | 
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| [a32b204] | 155 | TypeEnvironment debugEnv( env ); | 
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| [51b73452] | 156 | #endif | 
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| [eb50842] | 157 | if ( type1->get_qualifiers() != type2->get_qualifiers() ) { | 
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|  | 158 | return false; | 
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|  | 159 | } | 
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|  | 160 |  | 
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| [a32b204] | 161 | bool result; | 
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|  | 162 | TypeInstType *var1 = dynamic_cast< TypeInstType* >( type1 ); | 
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|  | 163 | TypeInstType *var2 = dynamic_cast< TypeInstType* >( type2 ); | 
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|  | 164 | OpenVarSet::const_iterator entry1, entry2; | 
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|  | 165 | if ( var1 ) { | 
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|  | 166 | entry1 = openVars.find( var1->get_name() ); | 
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|  | 167 | } // if | 
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|  | 168 | if ( var2 ) { | 
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|  | 169 | entry2 = openVars.find( var2->get_name() ); | 
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|  | 170 | } // if | 
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|  | 171 | bool isopen1 = var1 && ( entry1 != openVars.end() ); | 
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|  | 172 | bool isopen2 = var2 && ( entry2 != openVars.end() ); | 
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| [eb50842] | 173 |  | 
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|  | 174 | if ( isopen1 && isopen2 && entry1->second == entry2->second ) { | 
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| [d286cf68] | 175 | result = env.bindVarToVar( var1, var2, entry1->second, needAssertions, haveAssertions, openVars, widenMode, indexer ); | 
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| [a32b204] | 176 | } else if ( isopen1 ) { | 
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| [d286cf68] | 177 | result = env.bindVar( var1, type2, entry1->second, needAssertions, haveAssertions, openVars, widenMode, indexer ); | 
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| [0873d22e] | 178 | } else if ( isopen2 ) { // TODO: swap widenMode values in call, since type positions are flipped? | 
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| [d286cf68] | 179 | result = env.bindVar( var2, type1, entry2->second, needAssertions, haveAssertions, openVars, widenMode, indexer ); | 
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| [a32b204] | 180 | } else { | 
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| [36a2367] | 181 | PassVisitor<Unify> comparator( type2, env, needAssertions, haveAssertions, openVars, widenMode, indexer ); | 
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| [a32b204] | 182 | type1->accept( comparator ); | 
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| [36a2367] | 183 | result = comparator.pass.get_result(); | 
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| [a32b204] | 184 | } // if | 
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| [51b73452] | 185 | #ifdef DEBUG | 
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| [2c57025] | 186 | std::cerr << "============ unifyExact" << std::endl; | 
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|  | 187 | std::cerr << "type1 is "; | 
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|  | 188 | type1->print( std::cerr ); | 
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|  | 189 | std::cerr << std::endl << "type2 is "; | 
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|  | 190 | type2->print( std::cerr ); | 
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|  | 191 | std::cerr << std::endl << "openVars are "; | 
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|  | 192 | printOpenVarSet( openVars, std::cerr, 8 ); | 
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|  | 193 | std::cerr << std::endl << "input env is " << std::endl; | 
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|  | 194 | debugEnv.print( std::cerr, 8 ); | 
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|  | 195 | std::cerr << std::endl << "result env is " << std::endl; | 
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|  | 196 | env.print( std::cerr, 8 ); | 
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|  | 197 | std::cerr << "result is " << result << std::endl; | 
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| [51b73452] | 198 | #endif | 
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| [a32b204] | 199 | return result; | 
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|  | 200 | } | 
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|  | 201 |  | 
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|  | 202 | bool unifyExact( Type *type1, Type *type2, TypeEnvironment &env, AssertionSet &needAssertions, AssertionSet &haveAssertions, OpenVarSet &openVars, const SymTab::Indexer &indexer ) { | 
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|  | 203 | return unifyExact( type1, type2, env, needAssertions, haveAssertions, openVars, WidenMode( false, false ), indexer ); | 
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|  | 204 | } | 
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|  | 205 |  | 
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|  | 206 | bool unifyInexact( Type *type1, Type *type2, TypeEnvironment &env, AssertionSet &needAssertions, AssertionSet &haveAssertions, const OpenVarSet &openVars, WidenMode widenMode, const SymTab::Indexer &indexer, Type *&common ) { | 
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|  | 207 | Type::Qualifiers tq1 = type1->get_qualifiers(), tq2 = type2->get_qualifiers(); | 
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|  | 208 | type1->get_qualifiers() = Type::Qualifiers(); | 
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|  | 209 | type2->get_qualifiers() = Type::Qualifiers(); | 
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|  | 210 | bool result; | 
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| [51b73452] | 211 | #ifdef DEBUG | 
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| [2c57025] | 212 | std::cerr << "unifyInexact type 1 is "; | 
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|  | 213 | type1->print( std::cerr ); | 
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| [0b150ec] | 214 | std::cerr << " type 2 is "; | 
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| [2c57025] | 215 | type2->print( std::cerr ); | 
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|  | 216 | std::cerr << std::endl; | 
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| [51b73452] | 217 | #endif | 
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| [a32b204] | 218 | if ( ! unifyExact( type1, type2, env, needAssertions, haveAssertions, openVars, widenMode, indexer ) ) { | 
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| [51b73452] | 219 | #ifdef DEBUG | 
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| [2c57025] | 220 | std::cerr << "unifyInexact: no exact unification found" << std::endl; | 
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| [51b73452] | 221 | #endif | 
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| [a32b204] | 222 | if ( ( common = commonType( type1, type2, widenMode.widenFirst, widenMode.widenSecond, indexer, env, openVars ) ) ) { | 
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| [6f95000] | 223 | common->get_qualifiers() = tq1 | tq2; | 
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| [51b73452] | 224 | #ifdef DEBUG | 
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| [2c57025] | 225 | std::cerr << "unifyInexact: common type is "; | 
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|  | 226 | common->print( std::cerr ); | 
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|  | 227 | std::cerr << std::endl; | 
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| [51b73452] | 228 | #endif | 
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| [a32b204] | 229 | result = true; | 
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|  | 230 | } else { | 
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| [51b73452] | 231 | #ifdef DEBUG | 
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| [2c57025] | 232 | std::cerr << "unifyInexact: no common type found" << std::endl; | 
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| [51b73452] | 233 | #endif | 
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| [a32b204] | 234 | result = false; | 
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|  | 235 | } // if | 
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|  | 236 | } else { | 
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|  | 237 | if ( tq1 != tq2 ) { | 
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|  | 238 | if ( ( tq1 > tq2 || widenMode.widenFirst ) && ( tq2 > tq1 || widenMode.widenSecond ) ) { | 
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|  | 239 | common = type1->clone(); | 
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| [6f95000] | 240 | common->get_qualifiers() = tq1 | tq2; | 
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| [a32b204] | 241 | result = true; | 
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|  | 242 | } else { | 
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|  | 243 | result = false; | 
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|  | 244 | } // if | 
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|  | 245 | } else { | 
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| [e6cee92] | 246 | common = type1->clone(); | 
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|  | 247 | common->get_qualifiers() = tq1 | tq2; | 
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| [a32b204] | 248 | result = true; | 
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|  | 249 | } // if | 
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|  | 250 | } // if | 
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|  | 251 | type1->get_qualifiers() = tq1; | 
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|  | 252 | type2->get_qualifiers() = tq2; | 
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|  | 253 | return result; | 
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|  | 254 | } | 
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|  | 255 |  | 
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|  | 256 | Unify::Unify( Type *type2, TypeEnvironment &env, AssertionSet &needAssertions, AssertionSet &haveAssertions, const OpenVarSet &openVars, WidenMode widenMode, const SymTab::Indexer &indexer ) | 
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|  | 257 | : result( false ), type2( type2 ), env( env ), needAssertions( needAssertions ), haveAssertions( haveAssertions ), openVars( openVars ), widenMode( widenMode ), indexer( indexer ) { | 
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|  | 258 | } | 
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|  | 259 |  | 
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| [36a2367] | 260 | void Unify::postvisit( __attribute__((unused)) VoidType *voidType) { | 
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| [a32b204] | 261 | result = dynamic_cast< VoidType* >( type2 ); | 
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|  | 262 | } | 
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|  | 263 |  | 
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| [36a2367] | 264 | void Unify::postvisit(BasicType *basicType) { | 
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| [a32b204] | 265 | if ( BasicType *otherBasic = dynamic_cast< BasicType* >( type2 ) ) { | 
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|  | 266 | result = basicType->get_kind() == otherBasic->get_kind(); | 
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|  | 267 | } // if | 
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|  | 268 | } | 
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|  | 269 |  | 
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|  | 270 | void markAssertionSet( AssertionSet &assertions, DeclarationWithType *assert ) { | 
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| [2c57025] | 271 | ///   std::cerr << "assertion set is" << std::endl; | 
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|  | 272 | ///   printAssertionSet( assertions, std::cerr, 8 ); | 
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|  | 273 | ///   std::cerr << "looking for "; | 
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|  | 274 | ///   assert->print( std::cerr ); | 
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|  | 275 | ///   std::cerr << std::endl; | 
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| [a32b204] | 276 | AssertionSet::iterator i = assertions.find( assert ); | 
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|  | 277 | if ( i != assertions.end() ) { | 
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| [2c57025] | 278 | ///     std::cerr << "found it!" << std::endl; | 
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| [6c3a988f] | 279 | i->second.isUsed = true; | 
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| [a32b204] | 280 | } // if | 
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|  | 281 | } | 
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|  | 282 |  | 
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|  | 283 | void markAssertions( AssertionSet &assertion1, AssertionSet &assertion2, Type *type ) { | 
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| [aefcc3b] | 284 | for ( std::list< TypeDecl* >::const_iterator tyvar = type->get_forall().begin(); tyvar != type->get_forall().end(); ++tyvar ) { | 
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| [a32b204] | 285 | for ( std::list< DeclarationWithType* >::const_iterator assert = (*tyvar)->get_assertions().begin(); assert != (*tyvar)->get_assertions().end(); ++assert ) { | 
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|  | 286 | markAssertionSet( assertion1, *assert ); | 
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|  | 287 | markAssertionSet( assertion2, *assert ); | 
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|  | 288 | } // for | 
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|  | 289 | } // for | 
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|  | 290 | } | 
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|  | 291 |  | 
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| [36a2367] | 292 | void Unify::postvisit(PointerType *pointerType) { | 
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| [a32b204] | 293 | if ( PointerType *otherPointer = dynamic_cast< PointerType* >( type2 ) ) { | 
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|  | 294 | result = unifyExact( pointerType->get_base(), otherPointer->get_base(), env, needAssertions, haveAssertions, openVars, WidenMode( false, false ), indexer ); | 
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|  | 295 | markAssertions( haveAssertions, needAssertions, pointerType ); | 
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|  | 296 | markAssertions( haveAssertions, needAssertions, otherPointer ); | 
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|  | 297 | } // if | 
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|  | 298 | } | 
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|  | 299 |  | 
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| [36a2367] | 300 | void Unify::postvisit(ReferenceType *refType) { | 
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| [ce8c12f] | 301 | if ( ReferenceType *otherRef = dynamic_cast< ReferenceType* >( type2 ) ) { | 
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|  | 302 | result = unifyExact( refType->get_base(), otherRef->get_base(), env, needAssertions, haveAssertions, openVars, WidenMode( false, false ), indexer ); | 
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|  | 303 | markAssertions( haveAssertions, needAssertions, refType ); | 
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|  | 304 | markAssertions( haveAssertions, needAssertions, otherRef ); | 
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|  | 305 | } // if | 
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|  | 306 | } | 
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|  | 307 |  | 
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| [36a2367] | 308 | void Unify::postvisit(ArrayType *arrayType) { | 
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| [a32b204] | 309 | ArrayType *otherArray = dynamic_cast< ArrayType* >( type2 ); | 
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| [1cbca6e] | 310 | // to unify, array types must both be VLA or both not VLA | 
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|  | 311 | // and must both have a dimension expression or not have a dimension | 
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| [41a2620] | 312 | if ( otherArray && arrayType->get_isVarLen() == otherArray->get_isVarLen() ) { | 
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| [1cbca6e] | 313 |  | 
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|  | 314 | if ( ! arrayType->get_isVarLen() && ! otherArray->get_isVarLen() && | 
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|  | 315 | arrayType->get_dimension() != 0 && otherArray->get_dimension() != 0 ) { | 
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|  | 316 | ConstantExpr * ce1 = dynamic_cast< ConstantExpr * >( arrayType->get_dimension() ); | 
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|  | 317 | ConstantExpr * ce2 = dynamic_cast< ConstantExpr * >( otherArray->get_dimension() ); | 
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| [41a2620] | 318 | // see C11 Reference Manual 6.7.6.2.6 | 
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|  | 319 | // two array types with size specifiers that are integer constant expressions are | 
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|  | 320 | // compatible if both size specifiers have the same constant value | 
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|  | 321 | if ( ce1 && ce2 ) { | 
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|  | 322 | Constant * c1 = ce1->get_constant(); | 
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|  | 323 | Constant * c2 = ce2->get_constant(); | 
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|  | 324 |  | 
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|  | 325 | if ( c1->get_value() != c2->get_value() ) { | 
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|  | 326 | // does not unify if the dimension is different | 
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|  | 327 | return; | 
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|  | 328 | } | 
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| [1cbca6e] | 329 | } | 
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|  | 330 | } | 
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|  | 331 |  | 
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| [a32b204] | 332 | result = unifyExact( arrayType->get_base(), otherArray->get_base(), env, needAssertions, haveAssertions, openVars, WidenMode( false, false ), indexer ); | 
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|  | 333 | } // if | 
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|  | 334 | } | 
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|  | 335 |  | 
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| [f3b0a07] | 336 | template< typename Iterator, typename Func > | 
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|  | 337 | std::unique_ptr<Type> combineTypes( Iterator begin, Iterator end, Func & toType ) { | 
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| [53e3b4a] | 338 | std::list< Type * > types; | 
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|  | 339 | for ( ; begin != end; ++begin ) { | 
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| [64eae56] | 340 | // it's guaranteed that a ttype variable will be bound to a flat tuple, so ensure that this results in a flat tuple | 
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| [f3b0a07] | 341 | flatten( toType( *begin ), back_inserter( types ) ); | 
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| [53e3b4a] | 342 | } | 
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| [6c3a988f] | 343 | return std::unique_ptr<Type>( new TupleType( Type::Qualifiers(), types ) ); | 
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| [53e3b4a] | 344 | } | 
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|  | 345 |  | 
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| [a32b204] | 346 | template< typename Iterator1, typename Iterator2 > | 
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|  | 347 | bool unifyDeclList( Iterator1 list1Begin, Iterator1 list1End, Iterator2 list2Begin, Iterator2 list2End, TypeEnvironment &env, AssertionSet &needAssertions, AssertionSet &haveAssertions, const OpenVarSet &openVars, const SymTab::Indexer &indexer ) { | 
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| [f3b0a07] | 348 | auto get_type = [](DeclarationWithType * dwt){ return dwt->get_type(); }; | 
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| [a32b204] | 349 | for ( ; list1Begin != list1End && list2Begin != list2End; ++list1Begin, ++list2Begin ) { | 
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| [53e3b4a] | 350 | Type * t1 = (*list1Begin)->get_type(); | 
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|  | 351 | Type * t2 = (*list2Begin)->get_type(); | 
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|  | 352 | bool isTtype1 = Tuples::isTtype( t1 ); | 
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|  | 353 | bool isTtype2 = Tuples::isTtype( t2 ); | 
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| [6c3a988f] | 354 | // xxx - assumes ttype must be last parameter | 
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|  | 355 | // xxx - there may be a nice way to refactor this, but be careful because the argument positioning might matter in some cases. | 
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| [53e3b4a] | 356 | if ( isTtype1 && ! isTtype2 ) { | 
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|  | 357 | // combine all of the things in list2, then unify | 
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| [f3b0a07] | 358 | return unifyExact( t1, combineTypes( list2Begin, list2End, get_type ).get(), env, needAssertions, haveAssertions, openVars, WidenMode( false, false ), indexer ); | 
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| [53e3b4a] | 359 | } else if ( isTtype2 && ! isTtype1 ) { | 
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|  | 360 | // combine all of the things in list1, then unify | 
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| [f3b0a07] | 361 | return unifyExact( combineTypes( list1Begin, list1End, get_type ).get(), t2, env, needAssertions, haveAssertions, openVars, WidenMode( false, false ), indexer ); | 
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| [53e3b4a] | 362 | } else if ( ! unifyExact( t1, t2, env, needAssertions, haveAssertions, openVars, WidenMode( false, false ), indexer ) ) { | 
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| [a32b204] | 363 | return false; | 
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|  | 364 | } // if | 
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|  | 365 | } // for | 
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| [6c3a988f] | 366 | // may get to the end of one argument list before the end of the other. This is only okay when the other is a ttype | 
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| [4c8621ac] | 367 | if ( list1Begin != list1End ) { | 
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|  | 368 | // try unifying empty tuple type with ttype | 
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|  | 369 | Type * t1 = (*list1Begin)->get_type(); | 
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|  | 370 | if ( Tuples::isTtype( t1 ) ) { | 
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| [f3b0a07] | 371 | return unifyExact( t1, combineTypes( list2Begin, list2End, get_type ).get(), env, needAssertions, haveAssertions, openVars, WidenMode( false, false ), indexer ); | 
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| [4c8621ac] | 372 | } else return false; | 
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|  | 373 | } else if ( list2Begin != list2End ) { | 
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|  | 374 | // try unifying empty tuple type with ttype | 
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|  | 375 | Type * t2 = (*list2Begin)->get_type(); | 
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|  | 376 | if ( Tuples::isTtype( t2 ) ) { | 
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| [f3b0a07] | 377 | return unifyExact( combineTypes( list1Begin, list1End, get_type ).get(), t2, env, needAssertions, haveAssertions, openVars, WidenMode( false, false ), indexer ); | 
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| [4c8621ac] | 378 | } else return false; | 
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| [a32b204] | 379 | } else { | 
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|  | 380 | return true; | 
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|  | 381 | } // if | 
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|  | 382 | } | 
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|  | 383 |  | 
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| [6c3a988f] | 384 | /// Finds ttypes and replaces them with their expansion, if known. | 
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|  | 385 | /// This needs to be done so that satisfying ttype assertions is easier. | 
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|  | 386 | /// If this isn't done then argument lists can have wildly different | 
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|  | 387 | /// size and structure, when they should be compatible. | 
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| [3096ec1] | 388 | struct TtypeExpander : public WithShortCircuiting { | 
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|  | 389 | TypeEnvironment & tenv; | 
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|  | 390 | TtypeExpander( TypeEnvironment & tenv ) : tenv( tenv ) {} | 
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|  | 391 | void premutate( TypeInstType * ) { visit_children = false; } | 
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|  | 392 | Type * postmutate( TypeInstType * typeInst ) { | 
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| [00ac42e] | 393 | if ( const EqvClass *eqvClass = tenv.lookup( typeInst->get_name() ) ) { | 
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|  | 394 | // expand ttype parameter into its actual type | 
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|  | 395 | if ( eqvClass->data.kind == TypeDecl::Ttype && eqvClass->type ) { | 
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|  | 396 | delete typeInst; | 
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|  | 397 | return eqvClass->type->clone(); | 
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| [6c3a988f] | 398 | } | 
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|  | 399 | } | 
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|  | 400 | return typeInst; | 
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|  | 401 | } | 
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|  | 402 | }; | 
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|  | 403 |  | 
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|  | 404 | /// flattens a list of declarations, so that each tuple type has a single declaration. | 
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|  | 405 | /// makes use of TtypeExpander to ensure ttypes are flat as well. | 
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|  | 406 | void flattenList( std::list< DeclarationWithType * > src, std::list< DeclarationWithType * > & dst, TypeEnvironment & env ) { | 
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|  | 407 | dst.clear(); | 
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|  | 408 | for ( DeclarationWithType * dcl : src ) { | 
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| [3096ec1] | 409 | PassVisitor<TtypeExpander> expander( env ); | 
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| [6c3a988f] | 410 | dcl->acceptMutator( expander ); | 
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|  | 411 | std::list< Type * > types; | 
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|  | 412 | flatten( dcl->get_type(), back_inserter( types ) ); | 
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|  | 413 | for ( Type * t : types ) { | 
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| [1dcd52a3] | 414 | // outermost const, volatile, _Atomic qualifiers in parameters should not play a role in the unification of function types, since they do not determine whether a function is callable. | 
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|  | 415 | // Note: MUST consider at least mutex qualifier, since functions can be overloaded on outermost mutex and a mutex function has different requirements than a non-mutex function. | 
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|  | 416 | t->get_qualifiers() -= Type::Qualifiers(Type::Const | Type::Volatile | Type::Atomic); | 
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|  | 417 |  | 
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| [68fe077a] | 418 | dst.push_back( new ObjectDecl( "", Type::StorageClasses(), LinkageSpec::C, nullptr, t, nullptr ) ); | 
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| [6c3a988f] | 419 | } | 
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|  | 420 | delete dcl; | 
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|  | 421 | } | 
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|  | 422 | } | 
|---|
|  | 423 |  | 
|---|
| [36a2367] | 424 | void Unify::postvisit(FunctionType *functionType) { | 
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| [a32b204] | 425 | FunctionType *otherFunction = dynamic_cast< FunctionType* >( type2 ); | 
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|  | 426 | if ( otherFunction && functionType->get_isVarArgs() == otherFunction->get_isVarArgs() ) { | 
|---|
| [6c3a988f] | 427 | // flatten the parameter lists for both functions so that tuple structure | 
|---|
|  | 428 | // doesn't affect unification. Must be a clone so that the types don't change. | 
|---|
|  | 429 | std::unique_ptr<FunctionType> flatFunc( functionType->clone() ); | 
|---|
|  | 430 | std::unique_ptr<FunctionType> flatOther( otherFunction->clone() ); | 
|---|
|  | 431 | flattenList( flatFunc->get_parameters(), flatFunc->get_parameters(), env ); | 
|---|
|  | 432 | flattenList( flatOther->get_parameters(), flatOther->get_parameters(), env ); | 
|---|
|  | 433 |  | 
|---|
| [53e3b4a] | 434 | // sizes don't have to match if ttypes are involved; need to be more precise wrt where the ttype is to prevent errors | 
|---|
| [538334a] | 435 | if ( (flatFunc->parameters.size() == flatOther->parameters.size() && flatFunc->returnVals.size() == flatOther->returnVals.size()) || flatFunc->isTtype() || flatOther->isTtype() ) { | 
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|  | 436 | if ( unifyDeclList( flatFunc->parameters.begin(), flatFunc->parameters.end(), flatOther->parameters.begin(), flatOther->parameters.end(), env, needAssertions, haveAssertions, openVars, indexer ) ) { | 
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|  | 437 | if ( unifyDeclList( flatFunc->returnVals.begin(), flatFunc->returnVals.end(), flatOther->returnVals.begin(), flatOther->returnVals.end(), env, needAssertions, haveAssertions, openVars, indexer ) ) { | 
|---|
| [1cbca6e] | 438 |  | 
|---|
| [6c3a988f] | 439 | // the original types must be used in mark assertions, since pointer comparisons are used | 
|---|
| [03da511] | 440 | markAssertions( haveAssertions, needAssertions, functionType ); | 
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|  | 441 | markAssertions( haveAssertions, needAssertions, otherFunction ); | 
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| [41a2620] | 442 |  | 
|---|
| [03da511] | 443 | result = true; | 
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|  | 444 | } // if | 
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| [a32b204] | 445 | } // if | 
|---|
|  | 446 | } // if | 
|---|
|  | 447 | } // if | 
|---|
|  | 448 | } | 
|---|
|  | 449 |  | 
|---|
|  | 450 | template< typename RefType > | 
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| [02ec390] | 451 | void Unify::handleRefType( RefType *inst, Type *other ) { | 
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|  | 452 | // check that other type is compatible and named the same | 
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| [a32b204] | 453 | RefType *otherStruct = dynamic_cast< RefType* >( other ); | 
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| [538334a] | 454 | result = otherStruct && inst->name == otherStruct->name; | 
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| [02ec390] | 455 | } | 
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|  | 456 |  | 
|---|
|  | 457 | template< typename RefType > | 
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|  | 458 | void Unify::handleGenericRefType( RefType *inst, Type *other ) { | 
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|  | 459 | // Check that other type is compatible and named the same | 
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|  | 460 | handleRefType( inst, other ); | 
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|  | 461 | if ( ! result ) return; | 
|---|
| [f5234f3] | 462 | // Check that parameters of types unify, if any | 
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| [538334a] | 463 | std::list< Expression* > params = inst->parameters; | 
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|  | 464 | std::list< Expression* > otherParams = ((RefType*)other)->parameters; | 
|---|
| [f5234f3] | 465 |  | 
|---|
|  | 466 | std::list< Expression* >::const_iterator it = params.begin(), jt = otherParams.begin(); | 
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|  | 467 | for ( ; it != params.end() && jt != otherParams.end(); ++it, ++jt ) { | 
|---|
|  | 468 | TypeExpr *param = dynamic_cast< TypeExpr* >(*it); | 
|---|
| [b2daebd4] | 469 | assertf(param, "Aggregate parameters should be type expressions"); | 
|---|
| [f5234f3] | 470 | TypeExpr *otherParam = dynamic_cast< TypeExpr* >(*jt); | 
|---|
| [b2daebd4] | 471 | assertf(otherParam, "Aggregate parameters should be type expressions"); | 
|---|
| [ce8c12f] | 472 |  | 
|---|
| [b2daebd4] | 473 | Type* paramTy = param->get_type(); | 
|---|
|  | 474 | Type* otherParamTy = otherParam->get_type(); | 
|---|
| [f5234f3] | 475 |  | 
|---|
| [b2daebd4] | 476 | bool tupleParam = Tuples::isTtype( paramTy ); | 
|---|
|  | 477 | bool otherTupleParam = Tuples::isTtype( otherParamTy ); | 
|---|
|  | 478 |  | 
|---|
|  | 479 | if ( tupleParam && otherTupleParam ) { | 
|---|
|  | 480 | ++it; ++jt;  // skip ttype parameters for break | 
|---|
|  | 481 | } else if ( tupleParam ) { | 
|---|
|  | 482 | // bundle other parameters into tuple to match | 
|---|
| [62423350] | 483 | std::list< Type * > binderTypes; | 
|---|
| [b2daebd4] | 484 |  | 
|---|
|  | 485 | do { | 
|---|
| [62423350] | 486 | binderTypes.push_back( otherParam->get_type()->clone() ); | 
|---|
| [b2daebd4] | 487 | ++jt; | 
|---|
|  | 488 |  | 
|---|
|  | 489 | if ( jt == otherParams.end() ) break; | 
|---|
|  | 490 |  | 
|---|
|  | 491 | otherParam = dynamic_cast< TypeExpr* >(*jt); | 
|---|
|  | 492 | assertf(otherParam, "Aggregate parameters should be type expressions"); | 
|---|
|  | 493 | } while (true); | 
|---|
|  | 494 |  | 
|---|
| [62423350] | 495 | otherParamTy = new TupleType{ paramTy->get_qualifiers(), binderTypes }; | 
|---|
| [b2daebd4] | 496 | ++it;  // skip ttype parameter for break | 
|---|
|  | 497 | } else if ( otherTupleParam ) { | 
|---|
|  | 498 | // bundle parameters into tuple to match other | 
|---|
| [62423350] | 499 | std::list< Type * > binderTypes; | 
|---|
| [b2daebd4] | 500 |  | 
|---|
|  | 501 | do { | 
|---|
| [62423350] | 502 | binderTypes.push_back( param->get_type()->clone() ); | 
|---|
| [b2daebd4] | 503 | ++it; | 
|---|
|  | 504 |  | 
|---|
|  | 505 | if ( it == params.end() ) break; | 
|---|
|  | 506 |  | 
|---|
|  | 507 | param = dynamic_cast< TypeExpr* >(*it); | 
|---|
|  | 508 | assertf(param, "Aggregate parameters should be type expressions"); | 
|---|
|  | 509 | } while (true); | 
|---|
|  | 510 |  | 
|---|
| [62423350] | 511 | paramTy = new TupleType{ otherParamTy->get_qualifiers(), binderTypes }; | 
|---|
| [b2daebd4] | 512 | ++jt;  // skip ttype parameter for break | 
|---|
|  | 513 | } | 
|---|
|  | 514 |  | 
|---|
|  | 515 | if ( ! unifyExact( paramTy, otherParamTy, env, needAssertions, haveAssertions, openVars, WidenMode(false, false), indexer ) ) { | 
|---|
| [02ec390] | 516 | result = false; | 
|---|
|  | 517 | return; | 
|---|
|  | 518 | } | 
|---|
| [b2daebd4] | 519 |  | 
|---|
|  | 520 | // ttype parameter should be last | 
|---|
|  | 521 | if ( tupleParam || otherTupleParam ) break; | 
|---|
| [02ec390] | 522 | } | 
|---|
| [f5234f3] | 523 | result = ( it == params.end() && jt == otherParams.end() ); | 
|---|
| [02ec390] | 524 | } | 
|---|
| [a32b204] | 525 |  | 
|---|
| [36a2367] | 526 | void Unify::postvisit(StructInstType *structInst) { | 
|---|
| [02ec390] | 527 | handleGenericRefType( structInst, type2 ); | 
|---|
| [a32b204] | 528 | } | 
|---|
|  | 529 |  | 
|---|
| [36a2367] | 530 | void Unify::postvisit(UnionInstType *unionInst) { | 
|---|
| [02ec390] | 531 | handleGenericRefType( unionInst, type2 ); | 
|---|
| [a32b204] | 532 | } | 
|---|
|  | 533 |  | 
|---|
| [36a2367] | 534 | void Unify::postvisit(EnumInstType *enumInst) { | 
|---|
| [a32b204] | 535 | handleRefType( enumInst, type2 ); | 
|---|
|  | 536 | } | 
|---|
|  | 537 |  | 
|---|
| [36a2367] | 538 | void Unify::postvisit(TraitInstType *contextInst) { | 
|---|
| [a32b204] | 539 | handleRefType( contextInst, type2 ); | 
|---|
|  | 540 | } | 
|---|
|  | 541 |  | 
|---|
| [36a2367] | 542 | void Unify::postvisit(TypeInstType *typeInst) { | 
|---|
| [a32b204] | 543 | assert( openVars.find( typeInst->get_name() ) == openVars.end() ); | 
|---|
|  | 544 | TypeInstType *otherInst = dynamic_cast< TypeInstType* >( type2 ); | 
|---|
|  | 545 | if ( otherInst && typeInst->get_name() == otherInst->get_name() ) { | 
|---|
|  | 546 | result = true; | 
|---|
| [51b73452] | 547 | ///   } else { | 
|---|
|  | 548 | ///     NamedTypeDecl *nt = indexer.lookupType( typeInst->get_name() ); | 
|---|
| [a32b204] | 549 | ///     if ( nt ) { | 
|---|
| [51b73452] | 550 | ///       TypeDecl *type = dynamic_cast< TypeDecl* >( nt ); | 
|---|
|  | 551 | ///       assert( type ); | 
|---|
| [a32b204] | 552 | ///       if ( type->get_base() ) { | 
|---|
| [51b73452] | 553 | ///         result = unifyExact( type->get_base(), typeInst, env, needAssertions, haveAssertions, openVars, WidenMode( false, false ), indexer ); | 
|---|
|  | 554 | ///       } | 
|---|
|  | 555 | ///     } | 
|---|
| [a32b204] | 556 | } // if | 
|---|
|  | 557 | } | 
|---|
|  | 558 |  | 
|---|
|  | 559 | template< typename Iterator1, typename Iterator2 > | 
|---|
| [c77fd8b] | 560 | bool unifyList( Iterator1 list1Begin, Iterator1 list1End, Iterator2 list2Begin, Iterator2 list2End, TypeEnvironment &env, AssertionSet &needAssertions, AssertionSet &haveAssertions, const OpenVarSet &openVars, const SymTab::Indexer &indexer ) { | 
|---|
| [f3b0a07] | 561 | auto get_type = [](Type * t) { return t; }; | 
|---|
| [a32b204] | 562 | for ( ; list1Begin != list1End && list2Begin != list2End; ++list1Begin, ++list2Begin ) { | 
|---|
| [f3b0a07] | 563 | Type * t1 = *list1Begin; | 
|---|
|  | 564 | Type * t2 = *list2Begin; | 
|---|
|  | 565 | bool isTtype1 = Tuples::isTtype( t1 ); | 
|---|
|  | 566 | bool isTtype2 = Tuples::isTtype( t2 ); | 
|---|
|  | 567 | // xxx - assumes ttype must be last parameter | 
|---|
|  | 568 | // xxx - there may be a nice way to refactor this, but be careful because the argument positioning might matter in some cases. | 
|---|
|  | 569 | if ( isTtype1 && ! isTtype2 ) { | 
|---|
|  | 570 | // combine all of the things in list2, then unify | 
|---|
|  | 571 | return unifyExact( t1, combineTypes( list2Begin, list2End, get_type ).get(), env, needAssertions, haveAssertions, openVars, WidenMode( false, false ), indexer ); | 
|---|
|  | 572 | } else if ( isTtype2 && ! isTtype1 ) { | 
|---|
|  | 573 | // combine all of the things in list1, then unify | 
|---|
|  | 574 | return unifyExact( combineTypes( list1Begin, list1End, get_type ).get(), t2, env, needAssertions, haveAssertions, openVars, WidenMode( false, false ), indexer ); | 
|---|
|  | 575 | } else if ( ! unifyExact( t1, t2, env, needAssertions, haveAssertions, openVars, WidenMode( false, false ), indexer ) ) { | 
|---|
| [a32b204] | 576 | return false; | 
|---|
| [f3b0a07] | 577 | } // if | 
|---|
|  | 578 |  | 
|---|
| [a32b204] | 579 | } // for | 
|---|
| [f3b0a07] | 580 | if ( list1Begin != list1End ) { | 
|---|
|  | 581 | // try unifying empty tuple type with ttype | 
|---|
|  | 582 | Type * t1 = *list1Begin; | 
|---|
|  | 583 | if ( Tuples::isTtype( t1 ) ) { | 
|---|
|  | 584 | return unifyExact( t1, combineTypes( list2Begin, list2End, get_type ).get(), env, needAssertions, haveAssertions, openVars, WidenMode( false, false ), indexer ); | 
|---|
|  | 585 | } else return false; | 
|---|
|  | 586 | } else if ( list2Begin != list2End ) { | 
|---|
|  | 587 | // try unifying empty tuple type with ttype | 
|---|
|  | 588 | Type * t2 = *list2Begin; | 
|---|
|  | 589 | if ( Tuples::isTtype( t2 ) ) { | 
|---|
|  | 590 | return unifyExact( combineTypes( list1Begin, list1End, get_type ).get(), t2, env, needAssertions, haveAssertions, openVars, WidenMode( false, false ), indexer ); | 
|---|
|  | 591 | } else return false; | 
|---|
| [a32b204] | 592 | } else { | 
|---|
|  | 593 | return true; | 
|---|
| [f3b0a07] | 594 | } // if | 
|---|
| [a32b204] | 595 | } | 
|---|
|  | 596 |  | 
|---|
| [36a2367] | 597 | void Unify::postvisit(TupleType *tupleType) { | 
|---|
| [a32b204] | 598 | if ( TupleType *otherTuple = dynamic_cast< TupleType* >( type2 ) ) { | 
|---|
| [f3b0a07] | 599 | std::unique_ptr<TupleType> flat1( tupleType->clone() ); | 
|---|
|  | 600 | std::unique_ptr<TupleType> flat2( otherTuple->clone() ); | 
|---|
|  | 601 | std::list<Type *> types1, types2; | 
|---|
|  | 602 |  | 
|---|
| [3096ec1] | 603 | PassVisitor<TtypeExpander> expander( env ); | 
|---|
| [f3b0a07] | 604 | flat1->acceptMutator( expander ); | 
|---|
|  | 605 | flat2->acceptMutator( expander ); | 
|---|
|  | 606 |  | 
|---|
|  | 607 | flatten( flat1.get(), back_inserter( types1 ) ); | 
|---|
|  | 608 | flatten( flat2.get(), back_inserter( types2 ) ); | 
|---|
|  | 609 |  | 
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| [c77fd8b] | 610 | result = unifyList( types1.begin(), types1.end(), types2.begin(), types2.end(), env, needAssertions, haveAssertions, openVars, indexer ); | 
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| [a32b204] | 611 | } // if | 
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|  | 612 | } | 
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| [51b73452] | 613 |  | 
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| [36a2367] | 614 | void Unify::postvisit( __attribute__((unused)) VarArgsType *varArgsType ) { | 
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| [44b7088] | 615 | result = dynamic_cast< VarArgsType* >( type2 ); | 
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|  | 616 | } | 
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|  | 617 |  | 
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| [36a2367] | 618 | void Unify::postvisit( __attribute__((unused)) ZeroType *zeroType ) { | 
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| [89e6ffc] | 619 | result = dynamic_cast< ZeroType* >( type2 ); | 
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|  | 620 | } | 
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|  | 621 |  | 
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| [36a2367] | 622 | void Unify::postvisit( __attribute__((unused)) OneType *oneType ) { | 
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| [89e6ffc] | 623 | result = dynamic_cast< OneType* >( type2 ); | 
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|  | 624 | } | 
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|  | 625 |  | 
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| [906e24d] | 626 | // xxx - compute once and store in the FunctionType? | 
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|  | 627 | Type * extractResultType( FunctionType * function ) { | 
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|  | 628 | if ( function->get_returnVals().size() == 0 ) { | 
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|  | 629 | return new VoidType( Type::Qualifiers() ); | 
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|  | 630 | } else if ( function->get_returnVals().size() == 1 ) { | 
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|  | 631 | return function->get_returnVals().front()->get_type()->clone(); | 
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|  | 632 | } else { | 
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| [62423350] | 633 | std::list< Type * > types; | 
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| [906e24d] | 634 | for ( DeclarationWithType * decl : function->get_returnVals() ) { | 
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| [62423350] | 635 | types.push_back( decl->get_type()->clone() ); | 
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| [906e24d] | 636 | } // for | 
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| [62423350] | 637 | return new TupleType( Type::Qualifiers(), types ); | 
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| [906e24d] | 638 | } | 
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|  | 639 | } | 
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| [51b73452] | 640 | } // namespace ResolvExpr | 
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| [a32b204] | 641 |  | 
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|  | 642 | // Local Variables: // | 
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|  | 643 | // tab-width: 4 // | 
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|  | 644 | // mode: c++ // | 
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|  | 645 | // compile-command: "make install" // | 
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|  | 646 | // End: // | 
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