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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7 | // AlternativeFinder.cc --
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8 | //
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9 | // Author : Richard C. Bilson
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10 | // Created On : Sat May 16 23:52:08 2015
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11 | // Last Modified By : Andrew Beach
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12 | // Last Modified On : Thu Aug 8 16:35:00 2019
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13 | // Update Count : 38
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14 | //
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15 |
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16 | #include "AlternativeFinder.h"
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17 |
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18 | #include <algorithm> // for copy
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19 | #include <cassert> // for strict_dynamic_cast, assert, assertf
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20 | #include <cstddef> // for size_t
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21 | #include <iostream> // for operator<<, cerr, ostream, endl
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22 | #include <iterator> // for back_insert_iterator, back_inserter
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23 | #include <list> // for _List_iterator, list, _List_const_...
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24 | #include <map> // for _Rb_tree_iterator, map, _Rb_tree_c...
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25 | #include <memory> // for allocator_traits<>::value_type, unique_ptr
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26 | #include <utility> // for pair
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27 | #include <vector> // for vector
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28 |
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29 | #include "CompilationState.h" // for resolvep
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30 | #include "AdjustExprType.hpp" // for adjustExprType
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31 | #include "Alternative.h" // for AltList, Alternative
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32 | #include "AST/Expr.hpp"
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33 | #include "AST/SymbolTable.hpp"
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34 | #include "AST/Type.hpp"
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35 | #include "CastCost.hpp" // for castCost
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36 | #include "Common/SemanticError.h" // for SemanticError
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37 | #include "Common/utility.h" // for deleteAll, printAll, CodeLocation
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38 | #include "ConversionCost.h" // for conversionCost
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39 | #include "Cost.h" // for Cost, Cost::zero, operator<<, Cost...
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40 | #include "ExplodedActual.h" // for ExplodedActual
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41 | #include "InitTweak/InitTweak.h" // for getFunctionName
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42 | #include "PolyCost.hpp" // for polyCost
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43 | #include "RenameVars.h" // for RenameVars, global_renamer
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44 | #include "ResolveAssertions.h" // for resolveAssertions
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45 | #include "ResolveTypeof.h" // for resolveTypeof
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46 | #include "Resolver.h" // for resolveStmtExpr
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47 | #include "SpecCost.hpp" // for specCost
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48 | #include "SymTab/Indexer.h" // for Indexer
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49 | #include "SymTab/Mangler.h" // for Mangler
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50 | #include "SymTab/ValidateType.h" // for validateType
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51 | #include "SynTree/Constant.h" // for Constant
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52 | #include "SynTree/Declaration.h" // for DeclarationWithType, TypeDecl, Dec...
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53 | #include "SynTree/Expression.h" // for Expression, CastExpr, NameExpr
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54 | #include "SynTree/Initializer.h" // for SingleInit, operator<<, Designation
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55 | #include "SynTree/SynTree.h" // for UniqueId
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56 | #include "SynTree/Type.h" // for Type, FunctionType, PointerType
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57 | #include "Tuples/Explode.h" // for explode
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58 | #include "Tuples/Tuples.h" // for isTtype, handleTupleAssignment
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59 | #include "typeops.h" // for combos
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60 | #include "Unify.h" // for unify
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61 |
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62 | #define PRINT( text ) if ( resolvep ) { text }
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63 | //#define DEBUG_COST
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64 |
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65 | namespace ResolvExpr {
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66 | struct AlternativeFinder::Finder : public WithShortCircuiting {
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67 | Finder( AlternativeFinder & altFinder ) : altFinder( altFinder ), indexer( altFinder.indexer ), alternatives( altFinder.alternatives ), env( altFinder.env ), targetType( altFinder.targetType ) {}
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68 |
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69 | void previsit( BaseSyntaxNode * ) { visit_children = false; }
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70 |
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71 | void postvisit( ApplicationExpr * applicationExpr );
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72 | void postvisit( UntypedExpr * untypedExpr );
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73 | void postvisit( AddressExpr * addressExpr );
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74 | void postvisit( LabelAddressExpr * labelExpr );
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75 | void postvisit( CastExpr * castExpr );
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76 | void postvisit( VirtualCastExpr * castExpr );
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77 | void postvisit( KeywordCastExpr * castExpr );
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78 | void postvisit( UntypedMemberExpr * memberExpr );
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79 | void postvisit( MemberExpr * memberExpr );
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80 | void postvisit( NameExpr * variableExpr );
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81 | void postvisit( VariableExpr * variableExpr );
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82 | void postvisit( ConstantExpr * constantExpr );
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83 | void postvisit( SizeofExpr * sizeofExpr );
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84 | void postvisit( AlignofExpr * alignofExpr );
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85 | void postvisit( UntypedOffsetofExpr * offsetofExpr );
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86 | void postvisit( OffsetofExpr * offsetofExpr );
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87 | void postvisit( OffsetPackExpr * offsetPackExpr );
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88 | void postvisit( LogicalExpr * logicalExpr );
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89 | void postvisit( ConditionalExpr * conditionalExpr );
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90 | void postvisit( CommaExpr * commaExpr );
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91 | void postvisit( ImplicitCopyCtorExpr * impCpCtorExpr );
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92 | void postvisit( ConstructorExpr * ctorExpr );
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93 | void postvisit( RangeExpr * rangeExpr );
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94 | void postvisit( UntypedTupleExpr * tupleExpr );
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95 | void postvisit( TupleExpr * tupleExpr );
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96 | void postvisit( TupleIndexExpr * tupleExpr );
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97 | void postvisit( TupleAssignExpr * tupleExpr );
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98 | void postvisit( UniqueExpr * unqExpr );
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99 | void postvisit( StmtExpr * stmtExpr );
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100 | void postvisit( UntypedInitExpr * initExpr );
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101 | void postvisit( InitExpr * initExpr );
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102 | void postvisit( DeletedExpr * delExpr );
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103 | void postvisit( GenericExpr * genExpr );
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104 |
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105 | /// Adds alternatives for anonymous members
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106 | void addAnonConversions( const Alternative & alt );
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107 | /// Adds alternatives for member expressions, given the aggregate, conversion cost for that aggregate, and name of the member
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108 | template< typename StructOrUnionType > void addAggMembers( StructOrUnionType *aggInst, Expression *expr, const Alternative &alt, const Cost &newCost, const std::string & name );
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109 | /// Adds alternatives for member expressions where the left side has tuple type
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110 | void addTupleMembers( TupleType *tupleType, Expression *expr, const Alternative &alt, const Cost &newCost, Expression *member );
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111 | /// Adds alternatives for offsetof expressions, given the base type and name of the member
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112 | template< typename StructOrUnionType > void addOffsetof( StructOrUnionType *aggInst, const std::string &name );
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113 | /// Takes a final result and checks if its assertions can be satisfied
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114 | template<typename OutputIterator>
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115 | void validateFunctionAlternative( const Alternative &func, ArgPack& result, const std::vector<ArgPack>& results, OutputIterator out );
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116 | /// Finds matching alternatives for a function, given a set of arguments
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117 | template<typename OutputIterator>
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118 | void makeFunctionAlternatives( const Alternative &func, FunctionType *funcType, const ExplodedArgs_old& args, OutputIterator out );
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119 | /// Sets up parameter inference for an output alternative
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120 | template< typename OutputIterator >
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121 | void inferParameters( Alternative &newAlt, OutputIterator out );
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122 | private:
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123 | AlternativeFinder & altFinder;
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124 | const SymTab::Indexer &indexer;
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125 | AltList & alternatives;
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126 | const TypeEnvironment &env;
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127 | Type *& targetType;
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128 | };
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129 |
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130 | Cost sumCost( const AltList &in ) {
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131 | Cost total = Cost::zero;
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132 | for ( AltList::const_iterator i = in.begin(); i != in.end(); ++i ) {
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133 | total += i->cost;
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134 | }
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135 | return total;
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136 | }
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137 |
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138 | void printAlts( const AltList &list, std::ostream &os, unsigned int indentAmt ) {
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139 | std::vector<std::string> sorted;
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140 | sorted.reserve(list.size());
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141 | for(const auto & c : list) {
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142 | std::stringstream ss;
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143 | c.print( ss, indentAmt );
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144 | sorted.push_back(ss.str());
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145 | }
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146 |
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147 | std::sort(sorted.begin(), sorted.end());
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148 |
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149 | for ( const auto & s : sorted ) {
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150 | os << s << std::endl;
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151 | }
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152 | }
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153 |
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154 | namespace {
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155 | void makeExprList( const AltList &in, std::list< Expression* > &out ) {
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156 | for ( AltList::const_iterator i = in.begin(); i != in.end(); ++i ) {
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157 | out.push_back( i->expr->clone() );
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158 | }
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159 | }
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160 |
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161 | struct PruneStruct {
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162 | bool isAmbiguous;
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163 | AltList::iterator candidate;
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164 | PruneStruct() {}
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165 | PruneStruct( AltList::iterator candidate ): isAmbiguous( false ), candidate( candidate ) {}
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166 | };
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167 |
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168 | /// Prunes a list of alternatives down to those that have the minimum conversion cost for a given return type; skips ambiguous interpretations
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169 | template< typename InputIterator, typename OutputIterator >
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170 | void pruneAlternatives( InputIterator begin, InputIterator end, OutputIterator out ) {
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171 | // select the alternatives that have the minimum conversion cost for a particular set of result types
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172 | std::map< std::string, PruneStruct > selected;
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173 | for ( AltList::iterator candidate = begin; candidate != end; ++candidate ) {
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174 | PruneStruct current( candidate );
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175 | std::string mangleName;
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176 | {
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177 | Type * newType = candidate->expr->get_result()->clone();
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178 | candidate->env.apply( newType );
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179 | mangleName = SymTab::Mangler::mangle( newType );
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180 | delete newType;
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181 | }
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182 | std::map< std::string, PruneStruct >::iterator mapPlace = selected.find( mangleName );
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183 | if ( mapPlace != selected.end() ) {
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184 | if ( candidate->cost < mapPlace->second.candidate->cost ) {
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185 | PRINT(
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186 | std::cerr << "cost " << candidate->cost << " beats " << mapPlace->second.candidate->cost << std::endl;
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187 | )
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188 | selected[ mangleName ] = current;
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189 | } else if ( candidate->cost == mapPlace->second.candidate->cost ) {
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190 | // if one of the candidates contains a deleted identifier, can pick the other, since
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191 | // deleted expressions should not be ambiguous if there is another option that is at least as good
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192 | if ( findDeletedExpr( candidate->expr ) ) {
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193 | // do nothing
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194 | PRINT( std::cerr << "candidate is deleted" << std::endl; )
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195 | } else if ( findDeletedExpr( mapPlace->second.candidate->expr ) ) {
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196 | PRINT( std::cerr << "current is deleted" << std::endl; )
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197 | selected[ mangleName ] = current;
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198 | } else {
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199 | PRINT(
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200 | std::cerr << "marking ambiguous" << std::endl;
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201 | )
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202 | mapPlace->second.isAmbiguous = true;
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203 | }
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204 | } else {
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205 | PRINT(
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206 | std::cerr << "cost " << candidate->cost << " loses to " << mapPlace->second.candidate->cost << std::endl;
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207 | )
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208 | }
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209 | } else {
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210 | selected[ mangleName ] = current;
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211 | }
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212 | }
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213 |
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214 | // accept the alternatives that were unambiguous
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215 | for ( std::map< std::string, PruneStruct >::iterator target = selected.begin(); target != selected.end(); ++target ) {
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216 | if ( ! target->second.isAmbiguous ) {
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217 | Alternative &alt = *target->second.candidate;
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218 | alt.env.applyFree( alt.expr->get_result() );
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219 | *out++ = alt;
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220 | }
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221 | }
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222 | }
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223 |
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224 | void renameTypes( Expression *expr ) {
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225 | renameTyVars( expr->result );
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226 | }
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227 | } // namespace
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228 |
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229 | void referenceToRvalueConversion( Expression *& expr, Cost & cost ) {
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230 | if ( dynamic_cast< ReferenceType * >( expr->get_result() ) ) {
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231 | // cast away reference from expr
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232 | expr = new CastExpr( expr, expr->get_result()->stripReferences()->clone() );
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233 | cost.incReference();
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234 | }
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235 | }
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236 |
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237 | template< typename InputIterator, typename OutputIterator >
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238 | void AlternativeFinder::findSubExprs( InputIterator begin, InputIterator end, OutputIterator out ) {
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239 | while ( begin != end ) {
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240 | AlternativeFinder finder( indexer, env );
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241 | finder.findWithAdjustment( *begin );
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242 | // XXX either this
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243 | //Designators::fixDesignations( finder, (*begin++)->get_argName() );
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244 | // or XXX this
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245 | begin++;
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246 | PRINT(
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247 | std::cerr << "findSubExprs" << std::endl;
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248 | printAlts( finder.alternatives, std::cerr );
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249 | )
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250 | *out++ = finder;
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251 | }
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252 | }
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253 |
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254 | AlternativeFinder::AlternativeFinder( const SymTab::Indexer &indexer, const TypeEnvironment &env )
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255 | : indexer( indexer ), env( env ) {
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256 | }
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257 |
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258 | void AlternativeFinder::find( Expression *expr, ResolvMode mode ) {
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259 | PassVisitor<Finder> finder( *this );
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260 | expr->accept( finder );
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261 | if ( mode.failFast && alternatives.empty() ) {
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262 | PRINT(
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263 | std::cerr << "No reasonable alternatives for expression " << expr << std::endl;
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264 | )
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265 | SemanticError( expr, "No reasonable alternatives for expression " );
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266 | }
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267 | if ( mode.prune ) {
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268 | // trim candidates just to those where the assertions resolve
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269 | // - necessary pre-requisite to pruning
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270 | AltList candidates;
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271 | std::list<std::string> errors;
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272 | for ( unsigned i = 0; i < alternatives.size(); ++i ) {
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273 | resolveAssertions( alternatives[i], indexer, candidates, errors );
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274 | }
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275 | // fail early if none such
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276 | if ( mode.failFast && candidates.empty() ) {
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277 | std::ostringstream stream;
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278 | stream << "No alternatives with satisfiable assertions for " << expr << "\n";
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279 | // << "Alternatives with failing assertions are:\n";
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280 | // printAlts( alternatives, stream, 1 );
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281 | for ( const auto& err : errors ) {
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282 | stream << err;
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283 | }
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284 | SemanticError( expr->location, stream.str() );
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285 | }
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286 | // reset alternatives
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287 | alternatives = std::move( candidates );
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288 | }
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289 | if ( mode.prune ) {
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290 | auto oldsize = alternatives.size();
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291 | PRINT(
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292 | std::cerr << "alternatives before prune:" << std::endl;
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293 | printAlts( alternatives, std::cerr );
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294 | )
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295 | AltList pruned;
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296 | pruneAlternatives( alternatives.begin(), alternatives.end(), back_inserter( pruned ) );
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297 | if ( mode.failFast && pruned.empty() ) {
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298 | std::ostringstream stream;
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299 | AltList winners;
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300 | findMinCost( alternatives.begin(), alternatives.end(), back_inserter( winners ) );
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301 | stream << "Cannot choose between " << winners.size() << " alternatives for expression\n";
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302 | expr->print( stream );
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303 | stream << " Alternatives are:\n";
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304 | printAlts( winners, stream, 1 );
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305 | SemanticError( expr->location, stream.str() );
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306 | }
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307 | alternatives = std::move(pruned);
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308 | PRINT(
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309 | std::cerr << "there are " << oldsize << " alternatives before elimination" << std::endl;
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310 | )
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311 | PRINT(
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312 | std::cerr << "there are " << alternatives.size() << " alternatives after elimination" << std::endl;
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313 | )
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314 | }
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315 | // adjust types after pruning so that types substituted by pruneAlternatives are correctly adjusted
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316 | if ( mode.adjust ) {
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317 | for ( Alternative& i : alternatives ) {
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318 | adjustExprType( i.expr->get_result(), i.env, indexer );
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319 | }
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320 | }
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321 |
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322 | // Central location to handle gcc extension keyword, etc. for all expression types.
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323 | for ( Alternative &iter: alternatives ) {
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324 | iter.expr->set_extension( expr->get_extension() );
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325 | iter.expr->location = expr->location;
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326 | } // for
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327 | }
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328 |
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329 | void AlternativeFinder::findWithAdjustment( Expression *expr ) {
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330 | find( expr, ResolvMode::withAdjustment() );
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331 | }
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332 |
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333 | void AlternativeFinder::findWithoutPrune( Expression * expr ) {
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334 | find( expr, ResolvMode::withoutPrune() );
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335 | }
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336 |
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337 | void AlternativeFinder::maybeFind( Expression * expr ) {
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338 | find( expr, ResolvMode::withoutFailFast() );
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339 | }
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340 |
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341 | void AlternativeFinder::Finder::addAnonConversions( const Alternative & alt ) {
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342 | // adds anonymous member interpretations whenever an aggregate value type is seen.
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343 | // it's okay for the aggregate expression to have reference type -- cast it to the base type to treat the aggregate as the referenced value
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344 | std::unique_ptr<Expression> aggrExpr( alt.expr->clone() );
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345 | alt.env.apply( aggrExpr->result );
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346 | Type * aggrType = aggrExpr->result;
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347 | if ( dynamic_cast< ReferenceType * >( aggrType ) ) {
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348 | aggrType = aggrType->stripReferences();
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349 | aggrExpr.reset( new CastExpr( aggrExpr.release(), aggrType->clone() ) );
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350 | }
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351 |
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352 | if ( StructInstType * structInst = dynamic_cast< StructInstType* >( aggrExpr->result ) ) {
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353 | addAggMembers( structInst, aggrExpr.get(), alt, alt.cost+Cost::safe, "" );
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354 | } else if ( UnionInstType * unionInst = dynamic_cast< UnionInstType* >( aggrExpr->result ) ) {
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355 | addAggMembers( unionInst, aggrExpr.get(), alt, alt.cost+Cost::safe, "" );
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356 | } // if
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357 | }
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358 |
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359 | template< typename StructOrUnionType >
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360 | void AlternativeFinder::Finder::addAggMembers( StructOrUnionType * aggInst, Expression * expr, const Alternative& alt, const Cost &newCost, const std::string & name ) {
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361 | std::list< Declaration* > members;
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362 | aggInst->lookup( name, members );
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363 |
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364 | for ( Declaration * decl : members ) {
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365 | if ( DeclarationWithType * dwt = dynamic_cast< DeclarationWithType* >( decl ) ) {
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366 | // addAnonAlternatives uses vector::push_back, which invalidates references to existing elements, so
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367 | // can't construct in place and use vector::back
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368 | Alternative newAlt{ alt, new MemberExpr{ dwt, expr->clone() }, newCost };
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369 | renameTypes( newAlt.expr );
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370 | addAnonConversions( newAlt ); // add anonymous member interpretations whenever an aggregate value type is seen as a member expression.
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371 | alternatives.push_back( std::move(newAlt) );
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372 | } else {
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373 | assert( false );
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374 | }
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375 | }
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376 | }
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377 |
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378 | void AlternativeFinder::Finder::addTupleMembers( TupleType * tupleType, Expression * expr, const Alternative &alt, const Cost &newCost, Expression * member ) {
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379 | if ( ConstantExpr * constantExpr = dynamic_cast< ConstantExpr * >( member ) ) {
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380 | // get the value of the constant expression as an int, must be between 0 and the length of the tuple type to have meaning
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381 | auto val = constantExpr->intValue();
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382 | std::string tmp;
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383 | if ( val >= 0 && (unsigned long long)val < tupleType->size() ) {
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384 | alternatives.push_back( Alternative{
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385 | alt, new TupleIndexExpr( expr->clone(), val ), newCost } );
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386 | } // if
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387 | } // if
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388 | }
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389 |
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390 | void AlternativeFinder::Finder::postvisit( ApplicationExpr * applicationExpr ) {
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391 | alternatives.push_back( Alternative{ applicationExpr->clone(), env } );
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392 | }
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393 |
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394 | Cost computeConversionCost( Type * actualType, Type * formalType, bool actualIsLvalue,
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395 | const SymTab::Indexer &indexer, const TypeEnvironment & env ) {
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396 | PRINT(
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397 | std::cerr << std::endl << "converting ";
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398 | actualType->print( std::cerr, 8 );
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399 | std::cerr << std::endl << " to ";
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400 | formalType->print( std::cerr, 8 );
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401 | std::cerr << std::endl << "environment is: ";
|
---|
402 | env.print( std::cerr, 8 );
|
---|
403 | std::cerr << std::endl;
|
---|
404 | )
|
---|
405 | Cost convCost = conversionCost( actualType, formalType, actualIsLvalue, indexer, env );
|
---|
406 | PRINT(
|
---|
407 | std::cerr << std::endl << "cost is " << convCost << std::endl;
|
---|
408 | )
|
---|
409 | if ( convCost == Cost::infinity ) {
|
---|
410 | return convCost;
|
---|
411 | }
|
---|
412 | convCost.incPoly( polyCost( formalType, env, indexer ) + polyCost( actualType, env, indexer ) );
|
---|
413 | PRINT(
|
---|
414 | std::cerr << "cost with polycost is " << convCost << std::endl;
|
---|
415 | )
|
---|
416 | return convCost;
|
---|
417 | }
|
---|
418 |
|
---|
419 | Cost computeExpressionConversionCost( Expression *& actualExpr, Type * formalType, const SymTab::Indexer &indexer, const TypeEnvironment & env ) {
|
---|
420 | Cost convCost = computeConversionCost(
|
---|
421 | actualExpr->result, formalType, actualExpr->get_lvalue(), indexer, env );
|
---|
422 |
|
---|
423 | // if there is a non-zero conversion cost, ignoring poly cost, then the expression requires conversion.
|
---|
424 | // ignore poly cost for now, since this requires resolution of the cast to infer parameters and this
|
---|
425 | // does not currently work for the reason stated below.
|
---|
426 | Cost tmpCost = convCost;
|
---|
427 | tmpCost.incPoly( -tmpCost.get_polyCost() );
|
---|
428 | if ( tmpCost != Cost::zero ) {
|
---|
429 | Type *newType = formalType->clone();
|
---|
430 | env.apply( newType );
|
---|
431 | actualExpr = new CastExpr( actualExpr, newType );
|
---|
432 | // xxx - SHOULD be able to resolve this cast, but at the moment pointers are not castable to zero_t, but are implicitly convertible. This is clearly
|
---|
433 | // inconsistent, once this is fixed it should be possible to resolve the cast.
|
---|
434 | // xxx - this isn't working, it appears because type1 (the formal type) is seen as widenable, but it shouldn't be, because this makes the conversion from DT* to DT* since commontype(zero_t, DT*) is DT*, rather than just nothing.
|
---|
435 |
|
---|
436 | // AlternativeFinder finder( indexer, env );
|
---|
437 | // finder.findWithAdjustment( actualExpr );
|
---|
438 | // assertf( finder.get_alternatives().size() > 0, "Somehow castable expression failed to find alternatives." );
|
---|
439 | // assertf( finder.get_alternatives().size() == 1, "Somehow got multiple alternatives for known cast expression." );
|
---|
440 | // Alternative & alt = finder.get_alternatives().front();
|
---|
441 | // delete actualExpr;
|
---|
442 | // actualExpr = alt.expr->clone();
|
---|
443 | }
|
---|
444 | return convCost;
|
---|
445 | }
|
---|
446 |
|
---|
447 | Cost computeApplicationConversionCost( Alternative &alt, const SymTab::Indexer &indexer ) {
|
---|
448 | ApplicationExpr *appExpr = strict_dynamic_cast< ApplicationExpr* >( alt.expr );
|
---|
449 | PointerType *pointer = strict_dynamic_cast< PointerType* >( appExpr->function->result );
|
---|
450 | FunctionType *function = strict_dynamic_cast< FunctionType* >( pointer->base );
|
---|
451 |
|
---|
452 | Cost convCost = Cost::zero;
|
---|
453 | std::list< DeclarationWithType* >& formals = function->parameters;
|
---|
454 | std::list< DeclarationWithType* >::iterator formal = formals.begin();
|
---|
455 | std::list< Expression* >& actuals = appExpr->args;
|
---|
456 |
|
---|
457 | for ( Expression*& actualExpr : actuals ) {
|
---|
458 | Type * actualType = actualExpr->result;
|
---|
459 | PRINT(
|
---|
460 | std::cerr << "actual expression:" << std::endl;
|
---|
461 | actualExpr->print( std::cerr, 8 );
|
---|
462 | std::cerr << "--- results are" << std::endl;
|
---|
463 | actualType->print( std::cerr, 8 );
|
---|
464 | )
|
---|
465 | if ( formal == formals.end() ) {
|
---|
466 | if ( function->isVarArgs ) {
|
---|
467 | convCost.incUnsafe();
|
---|
468 | PRINT( std::cerr << "end of formals with varargs function: inc unsafe: " << convCost << std::endl; ; )
|
---|
469 | // convert reference-typed expressions to value-typed expressions
|
---|
470 | referenceToRvalueConversion( actualExpr, convCost );
|
---|
471 | continue;
|
---|
472 | } else {
|
---|
473 | return Cost::infinity;
|
---|
474 | }
|
---|
475 | }
|
---|
476 | if ( DefaultArgExpr * def = dynamic_cast< DefaultArgExpr * >( actualExpr ) ) {
|
---|
477 | // default arguments should be free - don't include conversion cost.
|
---|
478 | // Unwrap them here because they are not relevant to the rest of the system.
|
---|
479 | actualExpr = def->expr;
|
---|
480 | ++formal;
|
---|
481 | continue;
|
---|
482 | }
|
---|
483 | // mark conversion cost to formal and also specialization cost of formal type
|
---|
484 | Type * formalType = (*formal)->get_type();
|
---|
485 | convCost += computeExpressionConversionCost( actualExpr, formalType, indexer, alt.env );
|
---|
486 | convCost.decSpec( specCost( formalType ) );
|
---|
487 | ++formal; // can't be in for-loop update because of the continue
|
---|
488 | }
|
---|
489 | if ( formal != formals.end() ) {
|
---|
490 | return Cost::infinity;
|
---|
491 | }
|
---|
492 |
|
---|
493 | // specialization cost of return types can't be accounted for directly, it disables
|
---|
494 | // otherwise-identical calls, like this example based on auto-newline in the I/O lib:
|
---|
495 | //
|
---|
496 | // forall(otype OS) {
|
---|
497 | // void ?|?(OS&, int); // with newline
|
---|
498 | // OS& ?|?(OS&, int); // no newline, always chosen due to more specialization
|
---|
499 | // }
|
---|
500 |
|
---|
501 | // mark type variable and specialization cost of forall clause
|
---|
502 | convCost.incVar( function->forall.size() );
|
---|
503 | for ( TypeDecl* td : function->forall ) {
|
---|
504 | convCost.decSpec( td->assertions.size() );
|
---|
505 | }
|
---|
506 |
|
---|
507 | return convCost;
|
---|
508 | }
|
---|
509 |
|
---|
510 | /// Adds type variables to the open variable set and marks their assertions
|
---|
511 | void makeUnifiableVars( Type *type, OpenVarSet &unifiableVars, AssertionSet &needAssertions ) {
|
---|
512 | for ( Type::ForallList::const_iterator tyvar = type->forall.begin(); tyvar != type->forall.end(); ++tyvar ) {
|
---|
513 | unifiableVars[ (*tyvar)->get_name() ] = TypeDecl::Data{ *tyvar };
|
---|
514 | for ( std::list< DeclarationWithType* >::iterator assert = (*tyvar)->assertions.begin(); assert != (*tyvar)->assertions.end(); ++assert ) {
|
---|
515 | needAssertions[ *assert ].isUsed = true;
|
---|
516 | }
|
---|
517 | }
|
---|
518 | }
|
---|
519 |
|
---|
520 | /// Unique identifier for matching expression resolutions to their requesting expression (located in CandidateFinder.cpp)
|
---|
521 | extern UniqueId globalResnSlot;
|
---|
522 |
|
---|
523 | template< typename OutputIterator >
|
---|
524 | void AlternativeFinder::Finder::inferParameters( Alternative &newAlt, OutputIterator out ) {
|
---|
525 | // Set need bindings for any unbound assertions
|
---|
526 | UniqueId crntResnSlot = 0; // matching ID for this expression's assertions
|
---|
527 | for ( auto& assn : newAlt.need ) {
|
---|
528 | // skip already-matched assertions
|
---|
529 | if ( assn.info.resnSlot != 0 ) continue;
|
---|
530 | // assign slot for expression if needed
|
---|
531 | if ( crntResnSlot == 0 ) { crntResnSlot = ++globalResnSlot; }
|
---|
532 | // fix slot to assertion
|
---|
533 | assn.info.resnSlot = crntResnSlot;
|
---|
534 | }
|
---|
535 | // pair slot to expression
|
---|
536 | if ( crntResnSlot != 0 ) { newAlt.expr->resnSlots.push_back( crntResnSlot ); }
|
---|
537 |
|
---|
538 | // add to output list, assertion resolution is deferred
|
---|
539 | *out++ = newAlt;
|
---|
540 | }
|
---|
541 |
|
---|
542 | /// Gets a default value from an initializer, nullptr if not present
|
---|
543 | ConstantExpr* getDefaultValue( Initializer* init ) {
|
---|
544 | if ( SingleInit* si = dynamic_cast<SingleInit*>( init ) ) {
|
---|
545 | if ( CastExpr* ce = dynamic_cast<CastExpr*>( si->value ) ) {
|
---|
546 | return dynamic_cast<ConstantExpr*>( ce->arg );
|
---|
547 | } else {
|
---|
548 | return dynamic_cast<ConstantExpr*>( si->value );
|
---|
549 | }
|
---|
550 | }
|
---|
551 | return nullptr;
|
---|
552 | }
|
---|
553 |
|
---|
554 | /// State to iteratively build a match of parameter expressions to arguments
|
---|
555 | struct ArgPack {
|
---|
556 | std::size_t parent; ///< Index of parent pack
|
---|
557 | std::unique_ptr<Expression> expr; ///< The argument stored here
|
---|
558 | Cost cost; ///< The cost of this argument
|
---|
559 | TypeEnvironment env; ///< Environment for this pack
|
---|
560 | AssertionSet need; ///< Assertions outstanding for this pack
|
---|
561 | AssertionSet have; ///< Assertions found for this pack
|
---|
562 | OpenVarSet openVars; ///< Open variables for this pack
|
---|
563 | unsigned nextArg; ///< Index of next argument in arguments list
|
---|
564 | unsigned tupleStart; ///< Number of tuples that start at this index
|
---|
565 | unsigned nextExpl; ///< Index of next exploded element
|
---|
566 | unsigned explAlt; ///< Index of alternative for nextExpl > 0
|
---|
567 |
|
---|
568 | ArgPack()
|
---|
569 | : parent(0), expr(), cost(Cost::zero), env(), need(), have(), openVars(), nextArg(0),
|
---|
570 | tupleStart(0), nextExpl(0), explAlt(0) {}
|
---|
571 |
|
---|
572 | ArgPack(const TypeEnvironment& env, const AssertionSet& need, const AssertionSet& have,
|
---|
573 | const OpenVarSet& openVars)
|
---|
574 | : parent(0), expr(), cost(Cost::zero), env(env), need(need), have(have),
|
---|
575 | openVars(openVars), nextArg(0), tupleStart(0), nextExpl(0), explAlt(0) {}
|
---|
576 |
|
---|
577 | ArgPack(std::size_t parent, Expression* expr, TypeEnvironment&& env, AssertionSet&& need,
|
---|
578 | AssertionSet&& have, OpenVarSet&& openVars, unsigned nextArg,
|
---|
579 | unsigned tupleStart = 0, Cost cost = Cost::zero, unsigned nextExpl = 0,
|
---|
580 | unsigned explAlt = 0 )
|
---|
581 | : parent(parent), expr(expr->clone()), cost(cost), env(std::move(env)), need(std::move(need)),
|
---|
582 | have(std::move(have)), openVars(std::move(openVars)), nextArg(nextArg), tupleStart(tupleStart),
|
---|
583 | nextExpl(nextExpl), explAlt(explAlt) {}
|
---|
584 |
|
---|
585 | ArgPack(const ArgPack& o, TypeEnvironment&& env, AssertionSet&& need, AssertionSet&& have,
|
---|
586 | OpenVarSet&& openVars, unsigned nextArg, Cost added )
|
---|
587 | : parent(o.parent), expr(o.expr ? o.expr->clone() : nullptr), cost(o.cost + added),
|
---|
588 | env(std::move(env)), need(std::move(need)), have(std::move(have)), openVars(std::move(openVars)),
|
---|
589 | nextArg(nextArg), tupleStart(o.tupleStart), nextExpl(0), explAlt(0) {}
|
---|
590 |
|
---|
591 | /// true iff this pack is in the middle of an exploded argument
|
---|
592 | bool hasExpl() const { return nextExpl > 0; }
|
---|
593 |
|
---|
594 | /// Gets the list of exploded alternatives for this pack
|
---|
595 | const ExplodedActual& getExpl( const ExplodedArgs_old& args ) const {
|
---|
596 | return args[nextArg-1][explAlt];
|
---|
597 | }
|
---|
598 |
|
---|
599 | /// Ends a tuple expression, consolidating the appropriate actuals
|
---|
600 | void endTuple( const std::vector<ArgPack>& packs ) {
|
---|
601 | // add all expressions in tuple to list, summing cost
|
---|
602 | std::list<Expression*> exprs;
|
---|
603 | const ArgPack* pack = this;
|
---|
604 | if ( expr ) { exprs.push_front( expr.release() ); }
|
---|
605 | while ( pack->tupleStart == 0 ) {
|
---|
606 | pack = &packs[pack->parent];
|
---|
607 | exprs.push_front( pack->expr->clone() );
|
---|
608 | cost += pack->cost;
|
---|
609 | }
|
---|
610 | // reset pack to appropriate tuple
|
---|
611 | expr.reset( new TupleExpr( exprs ) );
|
---|
612 | tupleStart = pack->tupleStart - 1;
|
---|
613 | parent = pack->parent;
|
---|
614 | }
|
---|
615 | };
|
---|
616 |
|
---|
617 | /// Instantiates an argument to match a formal, returns false if no results left
|
---|
618 | bool instantiateArgument( Type* formalType, Initializer* initializer,
|
---|
619 | const ExplodedArgs_old& args, std::vector<ArgPack>& results, std::size_t& genStart,
|
---|
620 | const SymTab::Indexer& indexer, unsigned nTuples = 0 ) {
|
---|
621 | if ( TupleType * tupleType = dynamic_cast<TupleType*>( formalType ) ) {
|
---|
622 | // formalType is a TupleType - group actuals into a TupleExpr
|
---|
623 | ++nTuples;
|
---|
624 | for ( Type* type : *tupleType ) {
|
---|
625 | // xxx - dropping initializer changes behaviour from previous, but seems correct
|
---|
626 | // ^^^ need to handle the case where a tuple has a default argument
|
---|
627 | if ( ! instantiateArgument(
|
---|
628 | type, nullptr, args, results, genStart, indexer, nTuples ) )
|
---|
629 | return false;
|
---|
630 | nTuples = 0;
|
---|
631 | }
|
---|
632 | // re-consititute tuples for final generation
|
---|
633 | for ( auto i = genStart; i < results.size(); ++i ) {
|
---|
634 | results[i].endTuple( results );
|
---|
635 | }
|
---|
636 | return true;
|
---|
637 | } else if ( TypeInstType * ttype = Tuples::isTtype( formalType ) ) {
|
---|
638 | // formalType is a ttype, consumes all remaining arguments
|
---|
639 | // xxx - mixing default arguments with variadic??
|
---|
640 |
|
---|
641 | // completed tuples; will be spliced to end of results to finish
|
---|
642 | std::vector<ArgPack> finalResults{};
|
---|
643 |
|
---|
644 | // iterate until all results completed
|
---|
645 | std::size_t genEnd;
|
---|
646 | ++nTuples;
|
---|
647 | do {
|
---|
648 | genEnd = results.size();
|
---|
649 |
|
---|
650 | // add another argument to results
|
---|
651 | for ( std::size_t i = genStart; i < genEnd; ++i ) {
|
---|
652 | auto nextArg = results[i].nextArg;
|
---|
653 |
|
---|
654 | // use next element of exploded tuple if present
|
---|
655 | if ( results[i].hasExpl() ) {
|
---|
656 | const ExplodedActual& expl = results[i].getExpl( args );
|
---|
657 |
|
---|
658 | unsigned nextExpl = results[i].nextExpl + 1;
|
---|
659 | if ( nextExpl == expl.exprs.size() ) {
|
---|
660 | nextExpl = 0;
|
---|
661 | }
|
---|
662 |
|
---|
663 | results.emplace_back(
|
---|
664 | i, expl.exprs[results[i].nextExpl].get(), copy(results[i].env),
|
---|
665 | copy(results[i].need), copy(results[i].have),
|
---|
666 | copy(results[i].openVars), nextArg, nTuples, Cost::zero, nextExpl,
|
---|
667 | results[i].explAlt );
|
---|
668 |
|
---|
669 | continue;
|
---|
670 | }
|
---|
671 |
|
---|
672 | // finish result when out of arguments
|
---|
673 | if ( nextArg >= args.size() ) {
|
---|
674 | ArgPack newResult{
|
---|
675 | results[i].env, results[i].need, results[i].have,
|
---|
676 | results[i].openVars };
|
---|
677 | newResult.nextArg = nextArg;
|
---|
678 | Type* argType;
|
---|
679 |
|
---|
680 | if ( nTuples > 0 || ! results[i].expr ) {
|
---|
681 | // first iteration or no expression to clone,
|
---|
682 | // push empty tuple expression
|
---|
683 | newResult.parent = i;
|
---|
684 | std::list<Expression*> emptyList;
|
---|
685 | newResult.expr.reset( new TupleExpr( emptyList ) );
|
---|
686 | argType = newResult.expr->get_result();
|
---|
687 | } else {
|
---|
688 | // clone result to collect tuple
|
---|
689 | newResult.parent = results[i].parent;
|
---|
690 | newResult.cost = results[i].cost;
|
---|
691 | newResult.tupleStart = results[i].tupleStart;
|
---|
692 | newResult.expr.reset( results[i].expr->clone() );
|
---|
693 | argType = newResult.expr->get_result();
|
---|
694 |
|
---|
695 | if ( results[i].tupleStart > 0 && Tuples::isTtype( argType ) ) {
|
---|
696 | // the case where a ttype value is passed directly is special,
|
---|
697 | // e.g. for argument forwarding purposes
|
---|
698 | // xxx - what if passing multiple arguments, last of which is
|
---|
699 | // ttype?
|
---|
700 | // xxx - what would happen if unify was changed so that unifying
|
---|
701 | // tuple
|
---|
702 | // types flattened both before unifying lists? then pass in
|
---|
703 | // TupleType (ttype) below.
|
---|
704 | --newResult.tupleStart;
|
---|
705 | } else {
|
---|
706 | // collapse leftover arguments into tuple
|
---|
707 | newResult.endTuple( results );
|
---|
708 | argType = newResult.expr->get_result();
|
---|
709 | }
|
---|
710 | }
|
---|
711 |
|
---|
712 | // check unification for ttype before adding to final
|
---|
713 | if ( unify( ttype, argType, newResult.env, newResult.need, newResult.have,
|
---|
714 | newResult.openVars, indexer ) ) {
|
---|
715 | finalResults.push_back( std::move(newResult) );
|
---|
716 | }
|
---|
717 |
|
---|
718 | continue;
|
---|
719 | }
|
---|
720 |
|
---|
721 | // add each possible next argument
|
---|
722 | for ( std::size_t j = 0; j < args[nextArg].size(); ++j ) {
|
---|
723 | const ExplodedActual& expl = args[nextArg][j];
|
---|
724 |
|
---|
725 | // fresh copies of parent parameters for this iteration
|
---|
726 | TypeEnvironment env = results[i].env;
|
---|
727 | OpenVarSet openVars = results[i].openVars;
|
---|
728 |
|
---|
729 | env.addActual( expl.env, openVars );
|
---|
730 |
|
---|
731 | // skip empty tuple arguments by (near-)cloning parent into next gen
|
---|
732 | if ( expl.exprs.empty() ) {
|
---|
733 | results.emplace_back(
|
---|
734 | results[i], std::move(env), copy(results[i].need),
|
---|
735 | copy(results[i].have), std::move(openVars), nextArg + 1, expl.cost );
|
---|
736 |
|
---|
737 | continue;
|
---|
738 | }
|
---|
739 |
|
---|
740 | // add new result
|
---|
741 | results.emplace_back(
|
---|
742 | i, expl.exprs.front().get(), std::move(env), copy(results[i].need),
|
---|
743 | copy(results[i].have), std::move(openVars), nextArg + 1,
|
---|
744 | nTuples, expl.cost, expl.exprs.size() == 1 ? 0 : 1, j );
|
---|
745 | }
|
---|
746 | }
|
---|
747 |
|
---|
748 | // reset for next round
|
---|
749 | genStart = genEnd;
|
---|
750 | nTuples = 0;
|
---|
751 | } while ( genEnd != results.size() );
|
---|
752 |
|
---|
753 | // splice final results onto results
|
---|
754 | for ( std::size_t i = 0; i < finalResults.size(); ++i ) {
|
---|
755 | results.push_back( std::move(finalResults[i]) );
|
---|
756 | }
|
---|
757 | return ! finalResults.empty();
|
---|
758 | }
|
---|
759 |
|
---|
760 | // iterate each current subresult
|
---|
761 | std::size_t genEnd = results.size();
|
---|
762 | for ( std::size_t i = genStart; i < genEnd; ++i ) {
|
---|
763 | auto nextArg = results[i].nextArg;
|
---|
764 |
|
---|
765 | // use remainder of exploded tuple if present
|
---|
766 | if ( results[i].hasExpl() ) {
|
---|
767 | const ExplodedActual& expl = results[i].getExpl( args );
|
---|
768 | Expression* expr = expl.exprs[results[i].nextExpl].get();
|
---|
769 |
|
---|
770 | TypeEnvironment env = results[i].env;
|
---|
771 | AssertionSet need = results[i].need, have = results[i].have;
|
---|
772 | OpenVarSet openVars = results[i].openVars;
|
---|
773 |
|
---|
774 | Type* actualType = expr->get_result();
|
---|
775 |
|
---|
776 | PRINT(
|
---|
777 | std::cerr << "formal type is ";
|
---|
778 | formalType->print( std::cerr );
|
---|
779 | std::cerr << std::endl << "actual type is ";
|
---|
780 | actualType->print( std::cerr );
|
---|
781 | std::cerr << std::endl;
|
---|
782 | )
|
---|
783 |
|
---|
784 | if ( unify( formalType, actualType, env, need, have, openVars, indexer ) ) {
|
---|
785 | unsigned nextExpl = results[i].nextExpl + 1;
|
---|
786 | if ( nextExpl == expl.exprs.size() ) {
|
---|
787 | nextExpl = 0;
|
---|
788 | }
|
---|
789 |
|
---|
790 | results.emplace_back(
|
---|
791 | i, expr, std::move(env), std::move(need), std::move(have), std::move(openVars), nextArg,
|
---|
792 | nTuples, Cost::zero, nextExpl, results[i].explAlt );
|
---|
793 | }
|
---|
794 |
|
---|
795 | continue;
|
---|
796 | }
|
---|
797 |
|
---|
798 | // use default initializers if out of arguments
|
---|
799 | if ( nextArg >= args.size() ) {
|
---|
800 | if ( ConstantExpr* cnstExpr = getDefaultValue( initializer ) ) {
|
---|
801 | if ( Constant* cnst = dynamic_cast<Constant*>( cnstExpr->get_constant() ) ) {
|
---|
802 | TypeEnvironment env = results[i].env;
|
---|
803 | AssertionSet need = results[i].need, have = results[i].have;
|
---|
804 | OpenVarSet openVars = results[i].openVars;
|
---|
805 |
|
---|
806 | if ( unify( formalType, cnst->get_type(), env, need, have, openVars,
|
---|
807 | indexer ) ) {
|
---|
808 | results.emplace_back(
|
---|
809 | i, new DefaultArgExpr( cnstExpr ), std::move(env), std::move(need), std::move(have),
|
---|
810 | std::move(openVars), nextArg, nTuples );
|
---|
811 | }
|
---|
812 | }
|
---|
813 | }
|
---|
814 |
|
---|
815 | continue;
|
---|
816 | }
|
---|
817 |
|
---|
818 | // Check each possible next argument
|
---|
819 | for ( std::size_t j = 0; j < args[nextArg].size(); ++j ) {
|
---|
820 | const ExplodedActual& expl = args[nextArg][j];
|
---|
821 |
|
---|
822 | // fresh copies of parent parameters for this iteration
|
---|
823 | TypeEnvironment env = results[i].env;
|
---|
824 | AssertionSet need = results[i].need, have = results[i].have;
|
---|
825 | OpenVarSet openVars = results[i].openVars;
|
---|
826 |
|
---|
827 | env.addActual( expl.env, openVars );
|
---|
828 |
|
---|
829 | // skip empty tuple arguments by (near-)cloning parent into next gen
|
---|
830 | if ( expl.exprs.empty() ) {
|
---|
831 | results.emplace_back(
|
---|
832 | results[i], std::move(env), std::move(need), std::move(have), std::move(openVars),
|
---|
833 | nextArg + 1, expl.cost );
|
---|
834 |
|
---|
835 | continue;
|
---|
836 | }
|
---|
837 |
|
---|
838 | // consider only first exploded actual
|
---|
839 | Expression* expr = expl.exprs.front().get();
|
---|
840 | Type* actualType = expr->result->clone();
|
---|
841 |
|
---|
842 | PRINT(
|
---|
843 | std::cerr << "formal type is ";
|
---|
844 | formalType->print( std::cerr );
|
---|
845 | std::cerr << std::endl << "actual type is ";
|
---|
846 | actualType->print( std::cerr );
|
---|
847 | std::cerr << std::endl;
|
---|
848 | )
|
---|
849 |
|
---|
850 | // attempt to unify types
|
---|
851 | if ( unify( formalType, actualType, env, need, have, openVars, indexer ) ) {
|
---|
852 | // add new result
|
---|
853 | results.emplace_back(
|
---|
854 | i, expr, std::move(env), std::move(need), std::move(have), std::move(openVars), nextArg + 1,
|
---|
855 | nTuples, expl.cost, expl.exprs.size() == 1 ? 0 : 1, j );
|
---|
856 | }
|
---|
857 | }
|
---|
858 | }
|
---|
859 |
|
---|
860 | // reset for next parameter
|
---|
861 | genStart = genEnd;
|
---|
862 |
|
---|
863 | return genEnd != results.size();
|
---|
864 | }
|
---|
865 |
|
---|
866 | template<typename OutputIterator>
|
---|
867 | void AlternativeFinder::Finder::validateFunctionAlternative( const Alternative &func, ArgPack& result,
|
---|
868 | const std::vector<ArgPack>& results, OutputIterator out ) {
|
---|
869 | ApplicationExpr *appExpr = new ApplicationExpr( func.expr->clone() );
|
---|
870 | // sum cost and accumulate actuals
|
---|
871 | std::list<Expression*>& args = appExpr->args;
|
---|
872 | Cost cost = func.cost;
|
---|
873 | const ArgPack* pack = &result;
|
---|
874 | while ( pack->expr ) {
|
---|
875 | args.push_front( pack->expr->clone() );
|
---|
876 | cost += pack->cost;
|
---|
877 | pack = &results[pack->parent];
|
---|
878 | }
|
---|
879 | // build and validate new alternative
|
---|
880 | Alternative newAlt{ appExpr, result.env, result.openVars, result.need, cost };
|
---|
881 | PRINT(
|
---|
882 | std::cerr << "instantiate function success: " << appExpr << std::endl;
|
---|
883 | std::cerr << "need assertions:" << std::endl;
|
---|
884 | printAssertionSet( result.need, std::cerr, 8 );
|
---|
885 | )
|
---|
886 | inferParameters( newAlt, out );
|
---|
887 | }
|
---|
888 |
|
---|
889 | template<typename OutputIterator>
|
---|
890 | void AlternativeFinder::Finder::makeFunctionAlternatives( const Alternative &func,
|
---|
891 | FunctionType *funcType, const ExplodedArgs_old &args, OutputIterator out ) {
|
---|
892 | OpenVarSet funcOpenVars;
|
---|
893 | AssertionSet funcNeed, funcHave;
|
---|
894 | TypeEnvironment funcEnv( func.env );
|
---|
895 | makeUnifiableVars( funcType, funcOpenVars, funcNeed );
|
---|
896 | // add all type variables as open variables now so that those not used in the parameter
|
---|
897 | // list are still considered open.
|
---|
898 | funcEnv.add( funcType->forall );
|
---|
899 |
|
---|
900 | if ( targetType && ! targetType->isVoid() && ! funcType->returnVals.empty() ) {
|
---|
901 | // attempt to narrow based on expected target type
|
---|
902 | Type * returnType = funcType->returnVals.front()->get_type();
|
---|
903 | if ( ! unify( returnType, targetType, funcEnv, funcNeed, funcHave, funcOpenVars,
|
---|
904 | indexer ) ) {
|
---|
905 | // unification failed, don't pursue this function alternative
|
---|
906 | return;
|
---|
907 | }
|
---|
908 | }
|
---|
909 |
|
---|
910 | // iteratively build matches, one parameter at a time
|
---|
911 | std::vector<ArgPack> results;
|
---|
912 | results.push_back( ArgPack{ funcEnv, funcNeed, funcHave, funcOpenVars } );
|
---|
913 | std::size_t genStart = 0;
|
---|
914 |
|
---|
915 | for ( DeclarationWithType* formal : funcType->parameters ) {
|
---|
916 | ObjectDecl* obj = strict_dynamic_cast< ObjectDecl* >( formal );
|
---|
917 | if ( ! instantiateArgument(
|
---|
918 | obj->type, obj->init, args, results, genStart, indexer ) )
|
---|
919 | return;
|
---|
920 | }
|
---|
921 |
|
---|
922 | if ( funcType->get_isVarArgs() ) {
|
---|
923 | // append any unused arguments to vararg pack
|
---|
924 | std::size_t genEnd;
|
---|
925 | do {
|
---|
926 | genEnd = results.size();
|
---|
927 |
|
---|
928 | // iterate results
|
---|
929 | for ( std::size_t i = genStart; i < genEnd; ++i ) {
|
---|
930 | auto nextArg = results[i].nextArg;
|
---|
931 |
|
---|
932 | // use remainder of exploded tuple if present
|
---|
933 | if ( results[i].hasExpl() ) {
|
---|
934 | const ExplodedActual& expl = results[i].getExpl( args );
|
---|
935 |
|
---|
936 | unsigned nextExpl = results[i].nextExpl + 1;
|
---|
937 | if ( nextExpl == expl.exprs.size() ) {
|
---|
938 | nextExpl = 0;
|
---|
939 | }
|
---|
940 |
|
---|
941 | results.emplace_back(
|
---|
942 | i, expl.exprs[results[i].nextExpl].get(), copy(results[i].env),
|
---|
943 | copy(results[i].need), copy(results[i].have),
|
---|
944 | copy(results[i].openVars), nextArg, 0, Cost::zero, nextExpl,
|
---|
945 | results[i].explAlt );
|
---|
946 |
|
---|
947 | continue;
|
---|
948 | }
|
---|
949 |
|
---|
950 | // finish result when out of arguments
|
---|
951 | if ( nextArg >= args.size() ) {
|
---|
952 | validateFunctionAlternative( func, results[i], results, out );
|
---|
953 |
|
---|
954 | continue;
|
---|
955 | }
|
---|
956 |
|
---|
957 | // add each possible next argument
|
---|
958 | for ( std::size_t j = 0; j < args[nextArg].size(); ++j ) {
|
---|
959 | const ExplodedActual& expl = args[nextArg][j];
|
---|
960 |
|
---|
961 | // fresh copies of parent parameters for this iteration
|
---|
962 | TypeEnvironment env = results[i].env;
|
---|
963 | OpenVarSet openVars = results[i].openVars;
|
---|
964 |
|
---|
965 | env.addActual( expl.env, openVars );
|
---|
966 |
|
---|
967 | // skip empty tuple arguments by (near-)cloning parent into next gen
|
---|
968 | if ( expl.exprs.empty() ) {
|
---|
969 | results.emplace_back(
|
---|
970 | results[i], std::move(env), copy(results[i].need),
|
---|
971 | copy(results[i].have), std::move(openVars), nextArg + 1, expl.cost );
|
---|
972 |
|
---|
973 | continue;
|
---|
974 | }
|
---|
975 |
|
---|
976 | // add new result
|
---|
977 | results.emplace_back(
|
---|
978 | i, expl.exprs.front().get(), std::move(env), copy(results[i].need),
|
---|
979 | copy(results[i].have), std::move(openVars), nextArg + 1, 0,
|
---|
980 | expl.cost, expl.exprs.size() == 1 ? 0 : 1, j );
|
---|
981 | }
|
---|
982 | }
|
---|
983 |
|
---|
984 | genStart = genEnd;
|
---|
985 | } while ( genEnd != results.size() );
|
---|
986 | } else {
|
---|
987 | // filter out results that don't use all the arguments
|
---|
988 | for ( std::size_t i = genStart; i < results.size(); ++i ) {
|
---|
989 | ArgPack& result = results[i];
|
---|
990 | if ( ! result.hasExpl() && result.nextArg >= args.size() ) {
|
---|
991 | validateFunctionAlternative( func, result, results, out );
|
---|
992 | }
|
---|
993 | }
|
---|
994 | }
|
---|
995 | }
|
---|
996 |
|
---|
997 | void AlternativeFinder::Finder::postvisit( UntypedExpr *untypedExpr ) {
|
---|
998 | AlternativeFinder funcFinder( indexer, env );
|
---|
999 | funcFinder.findWithAdjustment( untypedExpr->function );
|
---|
1000 | // if there are no function alternatives, then proceeding is a waste of time.
|
---|
1001 | // xxx - findWithAdjustment throws, so this check and others like it shouldn't be necessary.
|
---|
1002 | if ( funcFinder.alternatives.empty() ) return;
|
---|
1003 |
|
---|
1004 | std::vector< AlternativeFinder > argAlternatives;
|
---|
1005 | altFinder.findSubExprs( untypedExpr->begin_args(), untypedExpr->end_args(),
|
---|
1006 | back_inserter( argAlternatives ) );
|
---|
1007 |
|
---|
1008 | // take care of possible tuple assignments
|
---|
1009 | // if not tuple assignment, assignment is taken care of as a normal function call
|
---|
1010 | Tuples::handleTupleAssignment( altFinder, untypedExpr, argAlternatives );
|
---|
1011 |
|
---|
1012 | // find function operators
|
---|
1013 | static NameExpr *opExpr = new NameExpr( "?()" );
|
---|
1014 | AlternativeFinder funcOpFinder( indexer, env );
|
---|
1015 | // it's ok if there aren't any defined function ops
|
---|
1016 | funcOpFinder.maybeFind( opExpr );
|
---|
1017 | PRINT(
|
---|
1018 | std::cerr << "known function ops:" << std::endl;
|
---|
1019 | printAlts( funcOpFinder.alternatives, std::cerr, 1 );
|
---|
1020 | )
|
---|
1021 |
|
---|
1022 | // pre-explode arguments
|
---|
1023 | ExplodedArgs_old argExpansions;
|
---|
1024 | argExpansions.reserve( argAlternatives.size() );
|
---|
1025 |
|
---|
1026 | for ( const AlternativeFinder& arg : argAlternatives ) {
|
---|
1027 | argExpansions.emplace_back();
|
---|
1028 | auto& argE = argExpansions.back();
|
---|
1029 | // argE.reserve( arg.alternatives.size() );
|
---|
1030 |
|
---|
1031 | for ( const Alternative& actual : arg ) {
|
---|
1032 | argE.emplace_back( actual, indexer );
|
---|
1033 | }
|
---|
1034 | }
|
---|
1035 |
|
---|
1036 | AltList candidates;
|
---|
1037 | SemanticErrorException errors;
|
---|
1038 | for ( AltList::iterator func = funcFinder.alternatives.begin(); func != funcFinder.alternatives.end(); ++func ) {
|
---|
1039 | try {
|
---|
1040 | PRINT(
|
---|
1041 | std::cerr << "working on alternative: " << std::endl;
|
---|
1042 | func->print( std::cerr, 8 );
|
---|
1043 | )
|
---|
1044 | // check if the type is pointer to function
|
---|
1045 | if ( PointerType *pointer = dynamic_cast< PointerType* >( func->expr->result->stripReferences() ) ) {
|
---|
1046 | if ( FunctionType *function = dynamic_cast< FunctionType* >( pointer->base ) ) {
|
---|
1047 | Alternative newFunc( *func );
|
---|
1048 | referenceToRvalueConversion( newFunc.expr, newFunc.cost );
|
---|
1049 | makeFunctionAlternatives( newFunc, function, argExpansions,
|
---|
1050 | std::back_inserter( candidates ) );
|
---|
1051 | }
|
---|
1052 | } else if ( TypeInstType *typeInst = dynamic_cast< TypeInstType* >( func->expr->result->stripReferences() ) ) { // handle ftype (e.g. *? on function pointer)
|
---|
1053 | if ( const EqvClass *eqvClass = func->env.lookup( typeInst->name ) ) {
|
---|
1054 | if ( FunctionType *function = dynamic_cast< FunctionType* >( eqvClass->type ) ) {
|
---|
1055 | Alternative newFunc( *func );
|
---|
1056 | referenceToRvalueConversion( newFunc.expr, newFunc.cost );
|
---|
1057 | makeFunctionAlternatives( newFunc, function, argExpansions,
|
---|
1058 | std::back_inserter( candidates ) );
|
---|
1059 | } // if
|
---|
1060 | } // if
|
---|
1061 | }
|
---|
1062 | } catch ( SemanticErrorException &e ) {
|
---|
1063 | errors.append( e );
|
---|
1064 | }
|
---|
1065 | } // for
|
---|
1066 |
|
---|
1067 | // try each function operator ?() with each function alternative
|
---|
1068 | if ( ! funcOpFinder.alternatives.empty() ) {
|
---|
1069 | // add exploded function alternatives to front of argument list
|
---|
1070 | std::vector<ExplodedActual> funcE;
|
---|
1071 | funcE.reserve( funcFinder.alternatives.size() );
|
---|
1072 | for ( const Alternative& actual : funcFinder ) {
|
---|
1073 | funcE.emplace_back( actual, indexer );
|
---|
1074 | }
|
---|
1075 | argExpansions.insert( argExpansions.begin(), std::move(funcE) );
|
---|
1076 |
|
---|
1077 | for ( AltList::iterator funcOp = funcOpFinder.alternatives.begin();
|
---|
1078 | funcOp != funcOpFinder.alternatives.end(); ++funcOp ) {
|
---|
1079 | try {
|
---|
1080 | // check if type is a pointer to function
|
---|
1081 | if ( PointerType* pointer = dynamic_cast<PointerType*>(
|
---|
1082 | funcOp->expr->result->stripReferences() ) ) {
|
---|
1083 | if ( FunctionType* function =
|
---|
1084 | dynamic_cast<FunctionType*>( pointer->base ) ) {
|
---|
1085 | Alternative newFunc( *funcOp );
|
---|
1086 | referenceToRvalueConversion( newFunc.expr, newFunc.cost );
|
---|
1087 | makeFunctionAlternatives( newFunc, function, argExpansions,
|
---|
1088 | std::back_inserter( candidates ) );
|
---|
1089 | }
|
---|
1090 | }
|
---|
1091 | } catch ( SemanticErrorException &e ) {
|
---|
1092 | errors.append( e );
|
---|
1093 | }
|
---|
1094 | }
|
---|
1095 | }
|
---|
1096 |
|
---|
1097 | // Implement SFINAE; resolution errors are only errors if there aren't any non-erroneous resolutions
|
---|
1098 | if ( candidates.empty() && ! errors.isEmpty() ) { throw errors; }
|
---|
1099 |
|
---|
1100 | // compute conversionsion costs
|
---|
1101 | for ( Alternative& withFunc : candidates ) {
|
---|
1102 | Cost cvtCost = computeApplicationConversionCost( withFunc, indexer );
|
---|
1103 |
|
---|
1104 | PRINT(
|
---|
1105 | ApplicationExpr *appExpr = strict_dynamic_cast< ApplicationExpr* >( withFunc.expr );
|
---|
1106 | PointerType *pointer = strict_dynamic_cast< PointerType* >( appExpr->function->result );
|
---|
1107 | FunctionType *function = strict_dynamic_cast< FunctionType* >( pointer->base );
|
---|
1108 | std::cerr << "Case +++++++++++++ " << appExpr->function << std::endl;
|
---|
1109 | std::cerr << "formals are:" << std::endl;
|
---|
1110 | printAll( function->parameters, std::cerr, 8 );
|
---|
1111 | std::cerr << "actuals are:" << std::endl;
|
---|
1112 | printAll( appExpr->args, std::cerr, 8 );
|
---|
1113 | std::cerr << "bindings are:" << std::endl;
|
---|
1114 | withFunc.env.print( std::cerr, 8 );
|
---|
1115 | std::cerr << "cost is: " << withFunc.cost << std::endl;
|
---|
1116 | std::cerr << "cost of conversion is:" << cvtCost << std::endl;
|
---|
1117 | )
|
---|
1118 | if ( cvtCost != Cost::infinity ) {
|
---|
1119 | withFunc.cvtCost = cvtCost;
|
---|
1120 | alternatives.push_back( withFunc );
|
---|
1121 | } // if
|
---|
1122 | } // for
|
---|
1123 |
|
---|
1124 | candidates = std::move(alternatives);
|
---|
1125 |
|
---|
1126 | // use a new list so that alternatives are not examined by addAnonConversions twice.
|
---|
1127 | AltList winners;
|
---|
1128 | findMinCost( candidates.begin(), candidates.end(), std::back_inserter( winners ) );
|
---|
1129 |
|
---|
1130 | // function may return struct or union value, in which case we need to add alternatives
|
---|
1131 | // for implicit conversions to each of the anonymous members, must happen after findMinCost
|
---|
1132 | // since anon conversions are never the cheapest expression
|
---|
1133 | for ( const Alternative & alt : winners ) {
|
---|
1134 | addAnonConversions( alt );
|
---|
1135 | }
|
---|
1136 | spliceBegin( alternatives, winners );
|
---|
1137 |
|
---|
1138 | if ( alternatives.empty() && targetType && ! targetType->isVoid() ) {
|
---|
1139 | // xxx - this is a temporary hack. If resolution is unsuccessful with a target type, try again without a
|
---|
1140 | // target type, since it will sometimes succeed when it wouldn't easily with target type binding. For example,
|
---|
1141 | // forall( otype T ) lvalue T ?[?]( T *, ptrdiff_t );
|
---|
1142 | // const char * x = "hello world";
|
---|
1143 | // unsigned char ch = x[0];
|
---|
1144 | // Fails with simple return type binding. First, T is bound to unsigned char, then (x: const char *) is unified
|
---|
1145 | // with unsigned char *, which fails because pointer base types must be unified exactly. The new resolver should
|
---|
1146 | // fix this issue in a more robust way.
|
---|
1147 | targetType = nullptr;
|
---|
1148 | postvisit( untypedExpr );
|
---|
1149 | }
|
---|
1150 | }
|
---|
1151 |
|
---|
1152 | bool isLvalue( Expression *expr ) {
|
---|
1153 | // xxx - recurse into tuples?
|
---|
1154 | return expr->result && ( expr->get_lvalue() || dynamic_cast< ReferenceType * >( expr->result ) );
|
---|
1155 | }
|
---|
1156 |
|
---|
1157 | void AlternativeFinder::Finder::postvisit( AddressExpr *addressExpr ) {
|
---|
1158 | AlternativeFinder finder( indexer, env );
|
---|
1159 | finder.find( addressExpr->get_arg() );
|
---|
1160 | for ( Alternative& alt : finder.alternatives ) {
|
---|
1161 | if ( isLvalue( alt.expr ) ) {
|
---|
1162 | alternatives.push_back(
|
---|
1163 | Alternative{ alt, new AddressExpr( alt.expr->clone() ), alt.cost } );
|
---|
1164 | } // if
|
---|
1165 | } // for
|
---|
1166 | }
|
---|
1167 |
|
---|
1168 | void AlternativeFinder::Finder::postvisit( LabelAddressExpr * expr ) {
|
---|
1169 | alternatives.push_back( Alternative{ expr->clone(), env } );
|
---|
1170 | }
|
---|
1171 |
|
---|
1172 | Expression * restructureCast( Expression * argExpr, Type * toType, bool isGenerated ) {
|
---|
1173 | if ( argExpr->get_result()->size() > 1 && ! toType->isVoid() && ! dynamic_cast<ReferenceType *>( toType ) ) {
|
---|
1174 | // Argument expression is a tuple and the target type is not void and not a reference type.
|
---|
1175 | // Cast each member of the tuple to its corresponding target type, producing the tuple of those
|
---|
1176 | // cast expressions. If there are more components of the tuple than components in the target type,
|
---|
1177 | // then excess components do not come out in the result expression (but UniqueExprs ensure that
|
---|
1178 | // side effects will still be done).
|
---|
1179 | if ( Tuples::maybeImpureIgnoreUnique( argExpr ) ) {
|
---|
1180 | // expressions which may contain side effects require a single unique instance of the expression.
|
---|
1181 | argExpr = new UniqueExpr( argExpr );
|
---|
1182 | }
|
---|
1183 | std::list< Expression * > componentExprs;
|
---|
1184 | for ( unsigned int i = 0; i < toType->size(); i++ ) {
|
---|
1185 | // cast each component
|
---|
1186 | TupleIndexExpr * idx = new TupleIndexExpr( argExpr->clone(), i );
|
---|
1187 | componentExprs.push_back( restructureCast( idx, toType->getComponent( i ), isGenerated ) );
|
---|
1188 | }
|
---|
1189 | delete argExpr;
|
---|
1190 | assert( componentExprs.size() > 0 );
|
---|
1191 | // produce the tuple of casts
|
---|
1192 | return new TupleExpr( componentExprs );
|
---|
1193 | } else {
|
---|
1194 | // handle normally
|
---|
1195 | CastExpr * ret = new CastExpr( argExpr, toType->clone() );
|
---|
1196 | ret->isGenerated = isGenerated;
|
---|
1197 | return ret;
|
---|
1198 | }
|
---|
1199 | }
|
---|
1200 |
|
---|
1201 | void AlternativeFinder::Finder::postvisit( CastExpr *castExpr ) {
|
---|
1202 | Type *& toType = castExpr->get_result();
|
---|
1203 | assert( toType );
|
---|
1204 | toType = resolveTypeof( toType, indexer );
|
---|
1205 | assert(!dynamic_cast<TypeofType *>(toType));
|
---|
1206 | SymTab::validateType( toType, &indexer );
|
---|
1207 | adjustExprType( toType, env, indexer );
|
---|
1208 |
|
---|
1209 | AlternativeFinder finder( indexer, env );
|
---|
1210 | finder.targetType = toType;
|
---|
1211 | finder.findWithAdjustment( castExpr->arg );
|
---|
1212 |
|
---|
1213 | AltList candidates;
|
---|
1214 | for ( Alternative & alt : finder.alternatives ) {
|
---|
1215 | AssertionSet needAssertions( alt.need.begin(), alt.need.end() );
|
---|
1216 | AssertionSet haveAssertions;
|
---|
1217 | OpenVarSet openVars{ alt.openVars };
|
---|
1218 |
|
---|
1219 | alt.env.extractOpenVars( openVars );
|
---|
1220 |
|
---|
1221 | // It's possible that a cast can throw away some values in a multiply-valued expression. (An example is a
|
---|
1222 | // cast-to-void, which casts from one value to zero.) Figure out the prefix of the subexpression results
|
---|
1223 | // that are cast directly. The candidate is invalid if it has fewer results than there are types to cast
|
---|
1224 | // to.
|
---|
1225 | int discardedValues = alt.expr->result->size() - castExpr->result->size();
|
---|
1226 | if ( discardedValues < 0 ) continue;
|
---|
1227 | // xxx - may need to go into tuple types and extract relevant types and use unifyList. Note that currently, this does not
|
---|
1228 | // allow casting a tuple to an atomic type (e.g. (int)([1, 2, 3]))
|
---|
1229 | // unification run for side-effects
|
---|
1230 | unify( castExpr->result, alt.expr->result, alt.env, needAssertions,
|
---|
1231 | haveAssertions, openVars, indexer );
|
---|
1232 | Cost thisCost =
|
---|
1233 | castExpr->isGenerated
|
---|
1234 | ? conversionCost( alt.expr->result, castExpr->result, alt.expr->get_lvalue(), indexer, alt.env )
|
---|
1235 | : castCost( alt.expr->result, castExpr->result, alt.expr->get_lvalue(), indexer, alt.env );
|
---|
1236 | PRINT(
|
---|
1237 | std::cerr << "working on cast with result: " << castExpr->result << std::endl;
|
---|
1238 | std::cerr << "and expr type: " << alt.expr->result << std::endl;
|
---|
1239 | std::cerr << "env: " << alt.env << std::endl;
|
---|
1240 | )
|
---|
1241 | if ( thisCost != Cost::infinity ) {
|
---|
1242 | PRINT(
|
---|
1243 | std::cerr << "has finite cost." << std::endl;
|
---|
1244 | )
|
---|
1245 | // count one safe conversion for each value that is thrown away
|
---|
1246 | thisCost.incSafe( discardedValues );
|
---|
1247 | Alternative newAlt{
|
---|
1248 | restructureCast( alt.expr->clone(), toType, castExpr->isGenerated ),
|
---|
1249 | alt.env, openVars, needAssertions, alt.cost, alt.cost + thisCost };
|
---|
1250 | inferParameters( newAlt, back_inserter( candidates ) );
|
---|
1251 | } // if
|
---|
1252 | } // for
|
---|
1253 |
|
---|
1254 | // findMinCost selects the alternatives with the lowest "cost" members, but has the side effect of copying the
|
---|
1255 | // cvtCost member to the cost member (since the old cost is now irrelevant). Thus, calling findMinCost twice
|
---|
1256 | // selects first based on argument cost, then on conversion cost.
|
---|
1257 | AltList minArgCost;
|
---|
1258 | findMinCost( candidates.begin(), candidates.end(), std::back_inserter( minArgCost ) );
|
---|
1259 | findMinCost( minArgCost.begin(), minArgCost.end(), std::back_inserter( alternatives ) );
|
---|
1260 | }
|
---|
1261 |
|
---|
1262 | void AlternativeFinder::Finder::postvisit( VirtualCastExpr * castExpr ) {
|
---|
1263 | assertf( castExpr->get_result(), "Implicit virtual cast targets not yet supported." );
|
---|
1264 | AlternativeFinder finder( indexer, env );
|
---|
1265 | // don't prune here, since it's guaranteed all alternatives will have the same type
|
---|
1266 | finder.findWithoutPrune( castExpr->get_arg() );
|
---|
1267 | for ( Alternative & alt : finder.alternatives ) {
|
---|
1268 | alternatives.push_back( Alternative{
|
---|
1269 | alt, new VirtualCastExpr{ alt.expr->clone(), castExpr->get_result()->clone() },
|
---|
1270 | alt.cost } );
|
---|
1271 | }
|
---|
1272 | }
|
---|
1273 |
|
---|
1274 | void AlternativeFinder::Finder::postvisit( KeywordCastExpr * castExpr ) {
|
---|
1275 | assertf( castExpr->get_result(), "Cast target should have been set in Validate." );
|
---|
1276 | auto ref = dynamic_cast<ReferenceType*>(castExpr->get_result());
|
---|
1277 | assert(ref);
|
---|
1278 | auto inst = dynamic_cast<StructInstType*>(ref->base);
|
---|
1279 | assert(inst);
|
---|
1280 | auto target = inst->baseStruct;
|
---|
1281 |
|
---|
1282 | AlternativeFinder finder( indexer, env );
|
---|
1283 |
|
---|
1284 | auto pick_alternatives = [target, this](AltList & found, bool expect_ref) {
|
---|
1285 | for(auto & alt : found) {
|
---|
1286 | Type * expr = alt.expr->get_result();
|
---|
1287 | if(expect_ref) {
|
---|
1288 | auto res = dynamic_cast<ReferenceType*>(expr);
|
---|
1289 | if(!res) { continue; }
|
---|
1290 | expr = res->base;
|
---|
1291 | }
|
---|
1292 |
|
---|
1293 | if(auto insttype = dynamic_cast<TypeInstType*>(expr)) {
|
---|
1294 | auto td = alt.env.lookup(insttype->name);
|
---|
1295 | if(!td) { continue; }
|
---|
1296 | expr = td->type;
|
---|
1297 | }
|
---|
1298 |
|
---|
1299 | if(auto base = dynamic_cast<StructInstType*>(expr)) {
|
---|
1300 | if(base->baseStruct == target) {
|
---|
1301 | alternatives.push_back(
|
---|
1302 | std::move(alt)
|
---|
1303 | );
|
---|
1304 | }
|
---|
1305 | }
|
---|
1306 | }
|
---|
1307 | };
|
---|
1308 |
|
---|
1309 | try {
|
---|
1310 | // Attempt 1 : turn (thread&)X into (thread$&)X.__thrd
|
---|
1311 | // Clone is purely for memory management
|
---|
1312 | std::unique_ptr<Expression> tech1 { new UntypedMemberExpr(new NameExpr(castExpr->concrete_target.field), castExpr->arg->clone()) };
|
---|
1313 |
|
---|
1314 | // don't prune here, since it's guaranteed all alternatives will have the same type
|
---|
1315 | finder.findWithoutPrune( tech1.get() );
|
---|
1316 | pick_alternatives(finder.alternatives, false);
|
---|
1317 |
|
---|
1318 | return;
|
---|
1319 | } catch(SemanticErrorException & ) {}
|
---|
1320 |
|
---|
1321 | // Fallback : turn (thread&)X into (thread$&)get_thread(X)
|
---|
1322 | std::unique_ptr<Expression> fallback { UntypedExpr::createDeref( new UntypedExpr(new NameExpr(castExpr->concrete_target.getter), { castExpr->arg->clone() })) };
|
---|
1323 | // don't prune here, since it's guaranteed all alternatives will have the same type
|
---|
1324 | finder.findWithoutPrune( fallback.get() );
|
---|
1325 |
|
---|
1326 | pick_alternatives(finder.alternatives, true);
|
---|
1327 |
|
---|
1328 | // Whatever happens here, we have no more fallbacks
|
---|
1329 | }
|
---|
1330 |
|
---|
1331 | namespace {
|
---|
1332 | /// Gets name from untyped member expression (member must be NameExpr)
|
---|
1333 | const std::string& get_member_name( UntypedMemberExpr *memberExpr ) {
|
---|
1334 | if ( dynamic_cast< ConstantExpr * >( memberExpr->get_member() ) ) {
|
---|
1335 | SemanticError( memberExpr, "Indexed access to struct fields unsupported: " );
|
---|
1336 | } // if
|
---|
1337 | NameExpr * nameExpr = dynamic_cast< NameExpr * >( memberExpr->get_member() );
|
---|
1338 | assert( nameExpr );
|
---|
1339 | return nameExpr->get_name();
|
---|
1340 | }
|
---|
1341 | }
|
---|
1342 |
|
---|
1343 | void AlternativeFinder::Finder::postvisit( UntypedMemberExpr *memberExpr ) {
|
---|
1344 | AlternativeFinder funcFinder( indexer, env );
|
---|
1345 | funcFinder.findWithAdjustment( memberExpr->get_aggregate() );
|
---|
1346 | for ( AltList::const_iterator agg = funcFinder.alternatives.begin(); agg != funcFinder.alternatives.end(); ++agg ) {
|
---|
1347 | // it's okay for the aggregate expression to have reference type -- cast it to the base type to treat the aggregate as the referenced value
|
---|
1348 | Cost cost = agg->cost;
|
---|
1349 | Expression * aggrExpr = agg->expr->clone();
|
---|
1350 | referenceToRvalueConversion( aggrExpr, cost );
|
---|
1351 | std::unique_ptr<Expression> guard( aggrExpr );
|
---|
1352 |
|
---|
1353 | // find member of the given type
|
---|
1354 | if ( StructInstType *structInst = dynamic_cast< StructInstType* >( aggrExpr->get_result() ) ) {
|
---|
1355 | addAggMembers( structInst, aggrExpr, *agg, cost, get_member_name(memberExpr) );
|
---|
1356 | } else if ( UnionInstType *unionInst = dynamic_cast< UnionInstType* >( aggrExpr->get_result() ) ) {
|
---|
1357 | addAggMembers( unionInst, aggrExpr, *agg, cost, get_member_name(memberExpr) );
|
---|
1358 | } else if ( TupleType * tupleType = dynamic_cast< TupleType * >( aggrExpr->get_result() ) ) {
|
---|
1359 | addTupleMembers( tupleType, aggrExpr, *agg, cost, memberExpr->get_member() );
|
---|
1360 | } // if
|
---|
1361 | } // for
|
---|
1362 | }
|
---|
1363 |
|
---|
1364 | void AlternativeFinder::Finder::postvisit( MemberExpr *memberExpr ) {
|
---|
1365 | alternatives.push_back( Alternative{ memberExpr->clone(), env } );
|
---|
1366 | }
|
---|
1367 |
|
---|
1368 | void AlternativeFinder::Finder::postvisit( NameExpr *nameExpr ) {
|
---|
1369 | std::list< SymTab::Indexer::IdData > declList;
|
---|
1370 | indexer.lookupId( nameExpr->name, declList );
|
---|
1371 | PRINT( std::cerr << "nameExpr is " << nameExpr->name << std::endl; )
|
---|
1372 | for ( auto & data : declList ) {
|
---|
1373 | Cost cost = Cost::zero;
|
---|
1374 | Expression * newExpr = data.combine( cost );
|
---|
1375 |
|
---|
1376 | // addAnonAlternatives uses vector::push_back, which invalidates references to existing elements, so
|
---|
1377 | // can't construct in place and use vector::back
|
---|
1378 | Alternative newAlt{ newExpr, env, OpenVarSet{}, AssertionList{}, Cost::zero, cost };
|
---|
1379 | PRINT(
|
---|
1380 | std::cerr << "decl is ";
|
---|
1381 | data.id->print( std::cerr );
|
---|
1382 | std::cerr << std::endl;
|
---|
1383 | std::cerr << "newExpr is ";
|
---|
1384 | newExpr->print( std::cerr );
|
---|
1385 | std::cerr << std::endl;
|
---|
1386 | )
|
---|
1387 | renameTypes( newAlt.expr );
|
---|
1388 | addAnonConversions( newAlt ); // add anonymous member interpretations whenever an aggregate value type is seen as a name expression.
|
---|
1389 | alternatives.push_back( std::move(newAlt) );
|
---|
1390 | } // for
|
---|
1391 | }
|
---|
1392 |
|
---|
1393 | void AlternativeFinder::Finder::postvisit( VariableExpr *variableExpr ) {
|
---|
1394 | // not sufficient to clone here, because variable's type may have changed
|
---|
1395 | // since the VariableExpr was originally created.
|
---|
1396 | alternatives.push_back( Alternative{ new VariableExpr{ variableExpr->var }, env } );
|
---|
1397 | }
|
---|
1398 |
|
---|
1399 | void AlternativeFinder::Finder::postvisit( ConstantExpr *constantExpr ) {
|
---|
1400 | alternatives.push_back( Alternative{ constantExpr->clone(), env } );
|
---|
1401 | }
|
---|
1402 |
|
---|
1403 | void AlternativeFinder::Finder::postvisit( SizeofExpr *sizeofExpr ) {
|
---|
1404 | if ( sizeofExpr->get_isType() ) {
|
---|
1405 | Type * newType = sizeofExpr->get_type()->clone();
|
---|
1406 | alternatives.push_back( Alternative{
|
---|
1407 | new SizeofExpr{ resolveTypeof( newType, indexer ) }, env } );
|
---|
1408 | } else {
|
---|
1409 | // find all alternatives for the argument to sizeof
|
---|
1410 | AlternativeFinder finder( indexer, env );
|
---|
1411 | finder.find( sizeofExpr->get_expr() );
|
---|
1412 | // find the lowest cost alternative among the alternatives, otherwise ambiguous
|
---|
1413 | AltList winners;
|
---|
1414 | findMinCost( finder.alternatives.begin(), finder.alternatives.end(), back_inserter( winners ) );
|
---|
1415 | if ( winners.size() != 1 ) {
|
---|
1416 | SemanticError( sizeofExpr->get_expr(), "Ambiguous expression in sizeof operand: " );
|
---|
1417 | } // if
|
---|
1418 | // return the lowest cost alternative for the argument
|
---|
1419 | Alternative &choice = winners.front();
|
---|
1420 | referenceToRvalueConversion( choice.expr, choice.cost );
|
---|
1421 | alternatives.push_back( Alternative{
|
---|
1422 | choice, new SizeofExpr( choice.expr->clone() ), Cost::zero } );
|
---|
1423 | } // if
|
---|
1424 | }
|
---|
1425 |
|
---|
1426 | void AlternativeFinder::Finder::postvisit( AlignofExpr *alignofExpr ) {
|
---|
1427 | if ( alignofExpr->get_isType() ) {
|
---|
1428 | Type * newType = alignofExpr->get_type()->clone();
|
---|
1429 | alternatives.push_back( Alternative{
|
---|
1430 | new AlignofExpr{ resolveTypeof( newType, indexer ) }, env } );
|
---|
1431 | } else {
|
---|
1432 | // find all alternatives for the argument to sizeof
|
---|
1433 | AlternativeFinder finder( indexer, env );
|
---|
1434 | finder.find( alignofExpr->get_expr() );
|
---|
1435 | // find the lowest cost alternative among the alternatives, otherwise ambiguous
|
---|
1436 | AltList winners;
|
---|
1437 | findMinCost( finder.alternatives.begin(), finder.alternatives.end(), back_inserter( winners ) );
|
---|
1438 | if ( winners.size() != 1 ) {
|
---|
1439 | SemanticError( alignofExpr->get_expr(), "Ambiguous expression in alignof operand: " );
|
---|
1440 | } // if
|
---|
1441 | // return the lowest cost alternative for the argument
|
---|
1442 | Alternative &choice = winners.front();
|
---|
1443 | referenceToRvalueConversion( choice.expr, choice.cost );
|
---|
1444 | alternatives.push_back( Alternative{
|
---|
1445 | choice, new AlignofExpr{ choice.expr->clone() }, Cost::zero } );
|
---|
1446 | } // if
|
---|
1447 | }
|
---|
1448 |
|
---|
1449 | template< typename StructOrUnionType >
|
---|
1450 | void AlternativeFinder::Finder::addOffsetof( StructOrUnionType *aggInst, const std::string &name ) {
|
---|
1451 | std::list< Declaration* > members;
|
---|
1452 | aggInst->lookup( name, members );
|
---|
1453 | for ( std::list< Declaration* >::const_iterator i = members.begin(); i != members.end(); ++i ) {
|
---|
1454 | if ( DeclarationWithType *dwt = dynamic_cast< DeclarationWithType* >( *i ) ) {
|
---|
1455 | alternatives.push_back( Alternative{
|
---|
1456 | new OffsetofExpr{ aggInst->clone(), dwt }, env } );
|
---|
1457 | renameTypes( alternatives.back().expr );
|
---|
1458 | } else {
|
---|
1459 | assert( false );
|
---|
1460 | }
|
---|
1461 | }
|
---|
1462 | }
|
---|
1463 |
|
---|
1464 | void AlternativeFinder::Finder::postvisit( UntypedOffsetofExpr *offsetofExpr ) {
|
---|
1465 | AlternativeFinder funcFinder( indexer, env );
|
---|
1466 | // xxx - resolveTypeof?
|
---|
1467 | if ( StructInstType *structInst = dynamic_cast< StructInstType* >( offsetofExpr->get_type() ) ) {
|
---|
1468 | addOffsetof( structInst, offsetofExpr->member );
|
---|
1469 | } else if ( UnionInstType *unionInst = dynamic_cast< UnionInstType* >( offsetofExpr->get_type() ) ) {
|
---|
1470 | addOffsetof( unionInst, offsetofExpr->member );
|
---|
1471 | }
|
---|
1472 | }
|
---|
1473 |
|
---|
1474 | void AlternativeFinder::Finder::postvisit( OffsetofExpr *offsetofExpr ) {
|
---|
1475 | alternatives.push_back( Alternative{ offsetofExpr->clone(), env } );
|
---|
1476 | }
|
---|
1477 |
|
---|
1478 | void AlternativeFinder::Finder::postvisit( OffsetPackExpr *offsetPackExpr ) {
|
---|
1479 | alternatives.push_back( Alternative{ offsetPackExpr->clone(), env } );
|
---|
1480 | }
|
---|
1481 |
|
---|
1482 | void AlternativeFinder::Finder::postvisit( LogicalExpr * logicalExpr ) {
|
---|
1483 | AlternativeFinder firstFinder( indexer, env );
|
---|
1484 | firstFinder.findWithAdjustment( logicalExpr->get_arg1() );
|
---|
1485 | if ( firstFinder.alternatives.empty() ) return;
|
---|
1486 | AlternativeFinder secondFinder( indexer, env );
|
---|
1487 | secondFinder.findWithAdjustment( logicalExpr->get_arg2() );
|
---|
1488 | if ( secondFinder.alternatives.empty() ) return;
|
---|
1489 | for ( const Alternative & first : firstFinder.alternatives ) {
|
---|
1490 | for ( const Alternative & second : secondFinder.alternatives ) {
|
---|
1491 | TypeEnvironment compositeEnv{ first.env };
|
---|
1492 | compositeEnv.simpleCombine( second.env );
|
---|
1493 | OpenVarSet openVars{ first.openVars };
|
---|
1494 | mergeOpenVars( openVars, second.openVars );
|
---|
1495 | AssertionSet need;
|
---|
1496 | cloneAll( first.need, need );
|
---|
1497 | cloneAll( second.need, need );
|
---|
1498 |
|
---|
1499 | LogicalExpr *newExpr = new LogicalExpr{
|
---|
1500 | first.expr->clone(), second.expr->clone(), logicalExpr->get_isAnd() };
|
---|
1501 | alternatives.push_back( Alternative{
|
---|
1502 | newExpr, std::move(compositeEnv), std::move(openVars),
|
---|
1503 | AssertionList( need.begin(), need.end() ), first.cost + second.cost } );
|
---|
1504 | }
|
---|
1505 | }
|
---|
1506 | }
|
---|
1507 |
|
---|
1508 | void AlternativeFinder::Finder::postvisit( ConditionalExpr *conditionalExpr ) {
|
---|
1509 | // find alternatives for condition
|
---|
1510 | AlternativeFinder firstFinder( indexer, env );
|
---|
1511 | firstFinder.findWithAdjustment( conditionalExpr->arg1 );
|
---|
1512 | if ( firstFinder.alternatives.empty() ) return;
|
---|
1513 | // find alternatives for true expression
|
---|
1514 | AlternativeFinder secondFinder( indexer, env );
|
---|
1515 | secondFinder.findWithAdjustment( conditionalExpr->arg2 );
|
---|
1516 | if ( secondFinder.alternatives.empty() ) return;
|
---|
1517 | // find alterantives for false expression
|
---|
1518 | AlternativeFinder thirdFinder( indexer, env );
|
---|
1519 | thirdFinder.findWithAdjustment( conditionalExpr->arg3 );
|
---|
1520 | if ( thirdFinder.alternatives.empty() ) return;
|
---|
1521 | for ( const Alternative & first : firstFinder.alternatives ) {
|
---|
1522 | for ( const Alternative & second : secondFinder.alternatives ) {
|
---|
1523 | for ( const Alternative & third : thirdFinder.alternatives ) {
|
---|
1524 | TypeEnvironment compositeEnv{ first.env };
|
---|
1525 | compositeEnv.simpleCombine( second.env );
|
---|
1526 | compositeEnv.simpleCombine( third.env );
|
---|
1527 | OpenVarSet openVars{ first.openVars };
|
---|
1528 | mergeOpenVars( openVars, second.openVars );
|
---|
1529 | mergeOpenVars( openVars, third.openVars );
|
---|
1530 | AssertionSet need;
|
---|
1531 | cloneAll( first.need, need );
|
---|
1532 | cloneAll( second.need, need );
|
---|
1533 | cloneAll( third.need, need );
|
---|
1534 | AssertionSet have;
|
---|
1535 |
|
---|
1536 | // unify true and false types, then infer parameters to produce new alternatives
|
---|
1537 | Type* commonType = nullptr;
|
---|
1538 | if ( unify( second.expr->result, third.expr->result, compositeEnv,
|
---|
1539 | need, have, openVars, indexer, commonType ) ) {
|
---|
1540 | ConditionalExpr *newExpr = new ConditionalExpr{
|
---|
1541 | first.expr->clone(), second.expr->clone(), third.expr->clone() };
|
---|
1542 | newExpr->result = commonType ? commonType : second.expr->result->clone();
|
---|
1543 | // convert both options to the conditional result type
|
---|
1544 | Cost cost = first.cost + second.cost + third.cost;
|
---|
1545 | cost += computeExpressionConversionCost(
|
---|
1546 | newExpr->arg2, newExpr->result, indexer, compositeEnv );
|
---|
1547 | cost += computeExpressionConversionCost(
|
---|
1548 | newExpr->arg3, newExpr->result, indexer, compositeEnv );
|
---|
1549 | // output alternative
|
---|
1550 | Alternative newAlt{
|
---|
1551 | newExpr, std::move(compositeEnv), std::move(openVars),
|
---|
1552 | AssertionList( need.begin(), need.end() ), cost };
|
---|
1553 | inferParameters( newAlt, back_inserter( alternatives ) );
|
---|
1554 | } // if
|
---|
1555 | } // for
|
---|
1556 | } // for
|
---|
1557 | } // for
|
---|
1558 | }
|
---|
1559 |
|
---|
1560 | void AlternativeFinder::Finder::postvisit( CommaExpr *commaExpr ) {
|
---|
1561 | TypeEnvironment newEnv( env );
|
---|
1562 | Expression *newFirstArg = resolveInVoidContext( commaExpr->get_arg1(), indexer, newEnv );
|
---|
1563 | AlternativeFinder secondFinder( indexer, newEnv );
|
---|
1564 | secondFinder.findWithAdjustment( commaExpr->get_arg2() );
|
---|
1565 | for ( const Alternative & alt : secondFinder.alternatives ) {
|
---|
1566 | alternatives.push_back( Alternative{
|
---|
1567 | alt, new CommaExpr{ newFirstArg->clone(), alt.expr->clone() }, alt.cost } );
|
---|
1568 | } // for
|
---|
1569 | delete newFirstArg;
|
---|
1570 | }
|
---|
1571 |
|
---|
1572 | void AlternativeFinder::Finder::postvisit( RangeExpr * rangeExpr ) {
|
---|
1573 | // resolve low and high, accept alternatives whose low and high types unify
|
---|
1574 | AlternativeFinder firstFinder( indexer, env );
|
---|
1575 | firstFinder.findWithAdjustment( rangeExpr->low );
|
---|
1576 | if ( firstFinder.alternatives.empty() ) return;
|
---|
1577 | AlternativeFinder secondFinder( indexer, env );
|
---|
1578 | secondFinder.findWithAdjustment( rangeExpr->high );
|
---|
1579 | if ( secondFinder.alternatives.empty() ) return;
|
---|
1580 | for ( const Alternative & first : firstFinder.alternatives ) {
|
---|
1581 | for ( const Alternative & second : secondFinder.alternatives ) {
|
---|
1582 | TypeEnvironment compositeEnv{ first.env };
|
---|
1583 | compositeEnv.simpleCombine( second.env );
|
---|
1584 | OpenVarSet openVars{ first.openVars };
|
---|
1585 | mergeOpenVars( openVars, second.openVars );
|
---|
1586 | AssertionSet need;
|
---|
1587 | cloneAll( first.need, need );
|
---|
1588 | cloneAll( second.need, need );
|
---|
1589 | AssertionSet have;
|
---|
1590 |
|
---|
1591 | Type* commonType = nullptr;
|
---|
1592 | if ( unify( first.expr->result, second.expr->result, compositeEnv, need, have,
|
---|
1593 | openVars, indexer, commonType ) ) {
|
---|
1594 | RangeExpr * newExpr =
|
---|
1595 | new RangeExpr{ first.expr->clone(), second.expr->clone() };
|
---|
1596 | newExpr->result = commonType ? commonType : first.expr->result->clone();
|
---|
1597 | Alternative newAlt{
|
---|
1598 | newExpr, std::move(compositeEnv), std::move(openVars),
|
---|
1599 | AssertionList( need.begin(), need.end() ), first.cost + second.cost };
|
---|
1600 | inferParameters( newAlt, back_inserter( alternatives ) );
|
---|
1601 | } // if
|
---|
1602 | } // for
|
---|
1603 | } // for
|
---|
1604 | }
|
---|
1605 |
|
---|
1606 | void AlternativeFinder::Finder::postvisit( UntypedTupleExpr *tupleExpr ) {
|
---|
1607 | std::vector< AlternativeFinder > subExprAlternatives;
|
---|
1608 | altFinder.findSubExprs( tupleExpr->get_exprs().begin(), tupleExpr->get_exprs().end(),
|
---|
1609 | back_inserter( subExprAlternatives ) );
|
---|
1610 | std::vector< AltList > possibilities;
|
---|
1611 | combos( subExprAlternatives.begin(), subExprAlternatives.end(),
|
---|
1612 | back_inserter( possibilities ) );
|
---|
1613 | for ( const AltList& alts : possibilities ) {
|
---|
1614 | std::list< Expression * > exprs;
|
---|
1615 | makeExprList( alts, exprs );
|
---|
1616 |
|
---|
1617 | TypeEnvironment compositeEnv;
|
---|
1618 | OpenVarSet openVars;
|
---|
1619 | AssertionSet need;
|
---|
1620 | for ( const Alternative& alt : alts ) {
|
---|
1621 | compositeEnv.simpleCombine( alt.env );
|
---|
1622 | mergeOpenVars( openVars, alt.openVars );
|
---|
1623 | cloneAll( alt.need, need );
|
---|
1624 | }
|
---|
1625 |
|
---|
1626 | alternatives.push_back( Alternative{
|
---|
1627 | new TupleExpr{ exprs }, std::move(compositeEnv), std::move(openVars),
|
---|
1628 | AssertionList( need.begin(), need.end() ), sumCost( alts ) } );
|
---|
1629 | } // for
|
---|
1630 | }
|
---|
1631 |
|
---|
1632 | void AlternativeFinder::Finder::postvisit( TupleExpr *tupleExpr ) {
|
---|
1633 | alternatives.push_back( Alternative{ tupleExpr->clone(), env } );
|
---|
1634 | }
|
---|
1635 |
|
---|
1636 | void AlternativeFinder::Finder::postvisit( ImplicitCopyCtorExpr * impCpCtorExpr ) {
|
---|
1637 | alternatives.push_back( Alternative{ impCpCtorExpr->clone(), env } );
|
---|
1638 | }
|
---|
1639 |
|
---|
1640 | void AlternativeFinder::Finder::postvisit( ConstructorExpr * ctorExpr ) {
|
---|
1641 | AlternativeFinder finder( indexer, env );
|
---|
1642 | // don't prune here, since it's guaranteed all alternatives will have the same type
|
---|
1643 | // (giving the alternatives different types is half of the point of ConstructorExpr nodes)
|
---|
1644 | finder.findWithoutPrune( ctorExpr->get_callExpr() );
|
---|
1645 | for ( Alternative & alt : finder.alternatives ) {
|
---|
1646 | alternatives.push_back( Alternative{
|
---|
1647 | alt, new ConstructorExpr( alt.expr->clone() ), alt.cost } );
|
---|
1648 | }
|
---|
1649 | }
|
---|
1650 |
|
---|
1651 | void AlternativeFinder::Finder::postvisit( TupleIndexExpr *tupleExpr ) {
|
---|
1652 | alternatives.push_back( Alternative{ tupleExpr->clone(), env } );
|
---|
1653 | }
|
---|
1654 |
|
---|
1655 | void AlternativeFinder::Finder::postvisit( TupleAssignExpr *tupleAssignExpr ) {
|
---|
1656 | alternatives.push_back( Alternative{ tupleAssignExpr->clone(), env } );
|
---|
1657 | }
|
---|
1658 |
|
---|
1659 | void AlternativeFinder::Finder::postvisit( UniqueExpr *unqExpr ) {
|
---|
1660 | AlternativeFinder finder( indexer, env );
|
---|
1661 | finder.findWithAdjustment( unqExpr->get_expr() );
|
---|
1662 | for ( Alternative & alt : finder.alternatives ) {
|
---|
1663 | // ensure that the id is passed on to the UniqueExpr alternative so that the expressions are "linked"
|
---|
1664 | UniqueExpr * newUnqExpr = new UniqueExpr( alt.expr->clone(), unqExpr->get_id() );
|
---|
1665 | alternatives.push_back( Alternative{ alt, newUnqExpr, alt.cost } );
|
---|
1666 | }
|
---|
1667 | }
|
---|
1668 |
|
---|
1669 | void AlternativeFinder::Finder::postvisit( StmtExpr *stmtExpr ) {
|
---|
1670 | StmtExpr * newStmtExpr = stmtExpr->clone();
|
---|
1671 | ResolvExpr::resolveStmtExpr( newStmtExpr, indexer );
|
---|
1672 | // xxx - this env is almost certainly wrong, and needs to somehow contain the combined environments from all of the statements in the stmtExpr...
|
---|
1673 | alternatives.push_back( Alternative{ newStmtExpr, env } );
|
---|
1674 | }
|
---|
1675 |
|
---|
1676 | void AlternativeFinder::Finder::postvisit( UntypedInitExpr *initExpr ) {
|
---|
1677 | // handle each option like a cast
|
---|
1678 | AltList candidates;
|
---|
1679 | PRINT(
|
---|
1680 | std::cerr << "untyped init expr: " << initExpr << std::endl;
|
---|
1681 | )
|
---|
1682 | // O(N^2) checks of d-types with e-types
|
---|
1683 | for ( InitAlternative & initAlt : initExpr->get_initAlts() ) {
|
---|
1684 | Type * toType = resolveTypeof( initAlt.type->clone(), indexer );
|
---|
1685 | SymTab::validateType( toType, &indexer );
|
---|
1686 | adjustExprType( toType, env, indexer );
|
---|
1687 | // Ideally the call to findWithAdjustment could be moved out of the loop, but unfortunately it currently has to occur inside or else
|
---|
1688 | // polymorphic return types are not properly bound to the initialization type, since return type variables are only open for the duration of resolving
|
---|
1689 | // the UntypedExpr. This is only actually an issue in initialization contexts that allow more than one possible initialization type, but it is still suboptimal.
|
---|
1690 | AlternativeFinder finder( indexer, env );
|
---|
1691 | finder.targetType = toType;
|
---|
1692 | finder.findWithAdjustment( initExpr->expr );
|
---|
1693 | for ( Alternative & alt : finder.get_alternatives() ) {
|
---|
1694 | TypeEnvironment newEnv( alt.env );
|
---|
1695 | AssertionSet need;
|
---|
1696 | cloneAll( alt.need, need );
|
---|
1697 | AssertionSet have;
|
---|
1698 | OpenVarSet openVars( alt.openVars );
|
---|
1699 | // xxx - find things in env that don't have a "representative type" and claim
|
---|
1700 | // those are open vars?
|
---|
1701 | PRINT(
|
---|
1702 | std::cerr << " @ " << toType << " " << initAlt.designation << std::endl;
|
---|
1703 | )
|
---|
1704 | // It's possible that a cast can throw away some values in a multiply-valued
|
---|
1705 | // expression. (An example is a cast-to-void, which casts from one value to
|
---|
1706 | // zero.) Figure out the prefix of the subexpression results that are cast
|
---|
1707 | // directly. The candidate is invalid if it has fewer results than there are
|
---|
1708 | // types to cast to.
|
---|
1709 | int discardedValues = alt.expr->result->size() - toType->size();
|
---|
1710 | if ( discardedValues < 0 ) continue;
|
---|
1711 | // xxx - may need to go into tuple types and extract relevant types and use
|
---|
1712 | // unifyList. Note that currently, this does not allow casting a tuple to an
|
---|
1713 | // atomic type (e.g. (int)([1, 2, 3]))
|
---|
1714 |
|
---|
1715 | // unification run for side-effects
|
---|
1716 | bool canUnify = unify( toType, alt.expr->result, newEnv, need, have, openVars, indexer );
|
---|
1717 | (void) canUnify;
|
---|
1718 | // xxx - do some inspecting on this line... why isn't result bound to initAlt.type?
|
---|
1719 |
|
---|
1720 | Cost thisCost = computeConversionCost( alt.expr->result, toType, alt.expr->get_lvalue(),
|
---|
1721 | indexer, newEnv );
|
---|
1722 |
|
---|
1723 | PRINT(
|
---|
1724 | Cost legacyCost = castCost( alt.expr->result, toType, alt.expr->get_lvalue(),
|
---|
1725 | indexer, newEnv );
|
---|
1726 | std::cerr << "Considering initialization:";
|
---|
1727 | std::cerr << std::endl << " FROM: "; alt.expr->result->print(std::cerr);
|
---|
1728 | std::cerr << std::endl << " TO: "; toType ->print(std::cerr);
|
---|
1729 | std::cerr << std::endl << " Unification " << (canUnify ? "succeeded" : "failed");
|
---|
1730 | std::cerr << std::endl << " Legacy cost " << legacyCost;
|
---|
1731 | std::cerr << std::endl << " New cost " << thisCost;
|
---|
1732 | std::cerr << std::endl;
|
---|
1733 | )
|
---|
1734 |
|
---|
1735 | if ( thisCost != Cost::infinity ) {
|
---|
1736 | // count one safe conversion for each value that is thrown away
|
---|
1737 | thisCost.incSafe( discardedValues );
|
---|
1738 | Alternative newAlt{
|
---|
1739 | new InitExpr{
|
---|
1740 | restructureCast( alt.expr->clone(), toType, true ), initAlt.designation->clone() },
|
---|
1741 | std::move(newEnv), std::move(openVars),
|
---|
1742 | AssertionList( need.begin(), need.end() ), alt.cost, thisCost };
|
---|
1743 | inferParameters( newAlt, back_inserter( candidates ) );
|
---|
1744 | }
|
---|
1745 | }
|
---|
1746 | }
|
---|
1747 |
|
---|
1748 | // findMinCost selects the alternatives with the lowest "cost" members, but has the side effect of copying the
|
---|
1749 | // cvtCost member to the cost member (since the old cost is now irrelevant). Thus, calling findMinCost twice
|
---|
1750 | // selects first based on argument cost, then on conversion cost.
|
---|
1751 | AltList minArgCost;
|
---|
1752 | findMinCost( candidates.begin(), candidates.end(), std::back_inserter( minArgCost ) );
|
---|
1753 | findMinCost( minArgCost.begin(), minArgCost.end(), std::back_inserter( alternatives ) );
|
---|
1754 | }
|
---|
1755 |
|
---|
1756 | void AlternativeFinder::Finder::postvisit( InitExpr * ) {
|
---|
1757 | assertf( false, "AlternativeFinder should never see a resolved InitExpr." );
|
---|
1758 | }
|
---|
1759 |
|
---|
1760 | void AlternativeFinder::Finder::postvisit( DeletedExpr * ) {
|
---|
1761 | assertf( false, "AlternativeFinder should never see a DeletedExpr." );
|
---|
1762 | }
|
---|
1763 |
|
---|
1764 | void AlternativeFinder::Finder::postvisit( GenericExpr * ) {
|
---|
1765 | assertf( false, "_Generic is not yet supported." );
|
---|
1766 | }
|
---|
1767 | } // namespace ResolvExpr
|
---|
1768 |
|
---|
1769 | // Local Variables: //
|
---|
1770 | // tab-width: 4 //
|
---|
1771 | // mode: c++ //
|
---|
1772 | // compile-command: "make install" //
|
---|
1773 | // End: //
|
---|