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 | // TupleAssignment.cc -- |
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8 | // |
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9 | // Author : Rodolfo G. Esteves |
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10 | // Created On : Mon May 18 07:44:20 2015 |
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11 | // Last Modified By : Peter A. Buhr |
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12 | // Last Modified On : Fri Mar 17 09:43:03 2017 |
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13 | // Update Count : 8 |
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14 | // |
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15 | |
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16 | #include <algorithm> // for transform |
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17 | #include <cassert> // for assert |
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18 | #include <iterator> // for back_insert_iterator, back... |
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19 | #include <list> // for _List_const_iterator, _Lis... |
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20 | #include <memory> // for unique_ptr, allocator_trai... |
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21 | #include <string> // for string |
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22 | #include <vector> |
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23 | |
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24 | #include "CodeGen/OperatorTable.h" |
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25 | #include "Common/PassVisitor.h" |
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26 | #include "Common/UniqueName.h" // for UniqueName |
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27 | #include "Common/utility.h" // for zipWith |
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28 | #include "Explode.h" // for explode |
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29 | #include "InitTweak/GenInit.h" // for genCtorInit |
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30 | #include "InitTweak/InitTweak.h" // for getPointerBase, isAssignment |
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31 | #include "Parser/LinkageSpec.h" // for Cforall |
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32 | #include "ResolvExpr/Alternative.h" // for AltList, Alternative |
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33 | #include "ResolvExpr/AlternativeFinder.h" // for AlternativeFinder, simpleC... |
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34 | #include "ResolvExpr/Cost.h" // for Cost |
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35 | #include "ResolvExpr/Resolver.h" // for resolveCtorInit |
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36 | #include "ResolvExpr/TypeEnvironment.h" // for TypeEnvironment |
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37 | #include "ResolvExpr/typeops.h" // for combos |
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38 | #include "SynTree/Declaration.h" // for ObjectDecl |
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39 | #include "SynTree/Expression.h" // for Expression, CastExpr, Name... |
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40 | #include "SynTree/Initializer.h" // for ConstructorInit, SingleInit |
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41 | #include "SynTree/Statement.h" // for ExprStmt |
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42 | #include "SynTree/Type.h" // for Type, Type::Qualifiers |
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43 | #include "SynTree/TypeSubstitution.h" // for TypeSubstitution |
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44 | #include "SynTree/Visitor.h" // for Visitor |
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45 | |
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46 | #if 0 |
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47 | #define PRINT(x) x |
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48 | #else |
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49 | #define PRINT(x) |
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50 | #endif |
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51 | |
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52 | namespace Tuples { |
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53 | class TupleAssignSpotter { |
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54 | public: |
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55 | // dispatcher for Tuple (multiple and mass) assignment operations |
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56 | TupleAssignSpotter( ResolvExpr::AlternativeFinder & ); |
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57 | void spot( UntypedExpr * expr, std::vector<ResolvExpr::AlternativeFinder> &args ); |
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58 | |
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59 | private: |
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60 | void match(); |
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61 | |
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62 | struct Matcher { |
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63 | public: |
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64 | Matcher( TupleAssignSpotter &spotter, const ResolvExpr::AltList& lhs, |
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65 | const ResolvExpr::AltList& rhs ); |
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66 | virtual ~Matcher() {} |
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67 | |
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68 | virtual void match( std::list< Expression * > &out ) = 0; |
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69 | ObjectDecl * newObject( UniqueName & namer, Expression * expr ); |
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70 | |
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71 | void combineState( const ResolvExpr::Alternative& alt ) { |
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72 | compositeEnv.simpleCombine( alt.env ); |
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73 | ResolvExpr::mergeOpenVars( openVars, alt.openVars ); |
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74 | cloneAll( alt.need, need ); |
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75 | } |
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76 | |
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77 | void combineState( const ResolvExpr::AltList& alts ) { |
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78 | for ( const ResolvExpr::Alternative& alt : alts ) { combineState( alt ); } |
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79 | } |
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80 | |
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81 | ResolvExpr::AltList lhs, rhs; |
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82 | TupleAssignSpotter &spotter; |
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83 | ResolvExpr::Cost baseCost; |
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84 | std::list< ObjectDecl * > tmpDecls; |
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85 | ResolvExpr::TypeEnvironment compositeEnv; |
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86 | ResolvExpr::OpenVarSet openVars; |
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87 | ResolvExpr::AssertionSet need; |
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88 | }; |
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89 | |
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90 | struct MassAssignMatcher : public Matcher { |
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91 | public: |
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92 | MassAssignMatcher( TupleAssignSpotter &spotter, const ResolvExpr::AltList& lhs, |
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93 | const ResolvExpr::AltList& rhs ) : Matcher(spotter, lhs, rhs) {} |
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94 | virtual void match( std::list< Expression * > &out ); |
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95 | }; |
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96 | |
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97 | struct MultipleAssignMatcher : public Matcher { |
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98 | public: |
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99 | MultipleAssignMatcher( TupleAssignSpotter &spotter, const ResolvExpr::AltList& lhs, |
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100 | const ResolvExpr::AltList& rhs ) : Matcher(spotter, lhs, rhs) {} |
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101 | virtual void match( std::list< Expression * > &out ); |
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102 | }; |
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103 | |
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104 | ResolvExpr::AlternativeFinder ¤tFinder; |
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105 | std::string fname; |
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106 | std::unique_ptr< Matcher > matcher; |
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107 | }; |
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108 | |
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109 | /// true if expr is an expression of tuple type |
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110 | bool isTuple( Expression *expr ) { |
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111 | if ( ! expr ) return false; |
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112 | assert( expr->result ); |
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113 | return dynamic_cast< TupleType * >( expr->get_result()->stripReferences() ); |
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114 | } |
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115 | |
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116 | template< typename AltIter > |
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117 | bool isMultAssign( AltIter begin, AltIter end ) { |
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118 | // multiple assignment if more than one alternative in the range or if |
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119 | // the alternative is a tuple |
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120 | if ( begin == end ) return false; |
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121 | if ( isTuple( begin->expr ) ) return true; |
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122 | return ++begin != end; |
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123 | } |
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124 | |
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125 | bool refToTuple( Expression *expr ) { |
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126 | assert( expr->get_result() ); |
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127 | // also check for function returning tuple of reference types |
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128 | if ( CastExpr * castExpr = dynamic_cast< CastExpr * >( expr ) ) { |
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129 | return refToTuple( castExpr->get_arg() ); |
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130 | } else { |
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131 | return isTuple( expr ); |
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132 | } |
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133 | return false; |
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134 | } |
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135 | |
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136 | void handleTupleAssignment( ResolvExpr::AlternativeFinder & currentFinder, UntypedExpr * expr, |
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137 | std::vector<ResolvExpr::AlternativeFinder> &args ) { |
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138 | TupleAssignSpotter spotter( currentFinder ); |
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139 | spotter.spot( expr, args ); |
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140 | } |
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141 | |
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142 | TupleAssignSpotter::TupleAssignSpotter( ResolvExpr::AlternativeFinder &f ) |
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143 | : currentFinder(f) {} |
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144 | |
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145 | void TupleAssignSpotter::spot( UntypedExpr * expr, |
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146 | std::vector<ResolvExpr::AlternativeFinder> &args ) { |
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147 | if ( NameExpr *op = dynamic_cast< NameExpr * >(expr->get_function()) ) { |
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148 | if ( CodeGen::isCtorDtorAssign( op->get_name() ) ) { |
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149 | fname = op->get_name(); |
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150 | |
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151 | // AlternativeFinder will naturally handle this case case, if it's legal |
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152 | if ( args.size() == 0 ) return; |
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153 | |
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154 | // if an assignment only takes 1 argument, that's odd, but maybe someone wrote |
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155 | // the function, in which case AlternativeFinder will handle it normally |
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156 | if ( args.size() == 1 && CodeGen::isAssignment( fname ) ) return; |
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157 | |
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158 | // look over all possible left-hand-sides |
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159 | for ( ResolvExpr::Alternative& lhsAlt : args[0] ) { |
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160 | // skip non-tuple LHS |
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161 | if ( ! refToTuple(lhsAlt.expr) ) continue; |
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162 | |
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163 | // explode is aware of casts - ensure every LHS expression is sent into explode |
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164 | // with a reference cast |
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165 | // xxx - this seems to change the alternatives before the normal |
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166 | // AlternativeFinder flow; maybe this is desired? |
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167 | if ( ! dynamic_cast<CastExpr*>( lhsAlt.expr ) ) { |
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168 | lhsAlt.expr = new CastExpr( lhsAlt.expr, |
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169 | new ReferenceType( Type::Qualifiers(), |
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170 | lhsAlt.expr->result->clone() ) ); |
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171 | } |
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172 | |
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173 | // explode the LHS so that each field of a tuple-valued-expr is assigned |
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174 | ResolvExpr::AltList lhs; |
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175 | explode( lhsAlt, currentFinder.get_indexer(), back_inserter(lhs), true ); |
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176 | for ( ResolvExpr::Alternative& alt : lhs ) { |
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177 | // each LHS value must be a reference - some come in with a cast expression, |
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178 | // if not just cast to reference here |
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179 | if ( ! dynamic_cast<ReferenceType*>( alt.expr->get_result() ) ) { |
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180 | alt.expr = new CastExpr( alt.expr, |
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181 | new ReferenceType( Type::Qualifiers(), |
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182 | alt.expr->get_result()->clone() ) ); |
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183 | } |
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184 | } |
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185 | |
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186 | if ( args.size() == 1 ) { |
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187 | // mass default-initialization/destruction |
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188 | ResolvExpr::AltList rhs{}; |
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189 | matcher.reset( new MassAssignMatcher( *this, lhs, rhs ) ); |
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190 | match(); |
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191 | } else if ( args.size() > 2 ) { |
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192 | // expand all possible RHS possibilities |
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193 | // TODO build iterative version of this instead of using combos |
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194 | std::vector< ResolvExpr::AltList > rhsAlts; |
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195 | combos( std::next(args.begin(), 1), args.end(), |
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196 | std::back_inserter( rhsAlts ) ); |
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197 | for ( const ResolvExpr::AltList& rhsAlt : rhsAlts ) { |
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198 | // multiple assignment |
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199 | ResolvExpr::AltList rhs; |
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200 | explode( rhsAlt, currentFinder.get_indexer(), |
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201 | std::back_inserter(rhs), true ); |
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202 | matcher.reset( new MultipleAssignMatcher( *this, lhs, rhs ) ); |
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203 | match(); |
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204 | } |
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205 | } else { |
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206 | for ( const ResolvExpr::Alternative& rhsAlt : args[1] ) { |
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207 | ResolvExpr::AltList rhs; |
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208 | if ( isTuple(rhsAlt.expr) ) { |
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209 | // multiple assignment |
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210 | explode( rhsAlt, currentFinder.get_indexer(), |
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211 | std::back_inserter(rhs), true ); |
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212 | matcher.reset( new MultipleAssignMatcher( *this, lhs, rhs ) ); |
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213 | } else { |
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214 | // mass assignment |
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215 | rhs.push_back( rhsAlt ); |
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216 | matcher.reset( new MassAssignMatcher( *this, lhs, rhs ) ); |
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217 | } |
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218 | match(); |
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219 | } |
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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 | } |
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225 | |
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226 | void TupleAssignSpotter::match() { |
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227 | assert ( matcher != 0 ); |
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228 | |
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229 | std::list< Expression * > new_assigns; |
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230 | matcher->match( new_assigns ); |
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231 | |
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232 | if ( ! matcher->lhs.empty() || ! matcher->rhs.empty() ) { |
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233 | // if both lhs and rhs are empty then this is the empty tuple case, wherein it's okay for new_assigns to be empty. |
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234 | // if not the empty tuple case, return early so that no new alternatives are generated. |
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235 | if ( new_assigns.empty() ) return; |
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236 | } |
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237 | ResolvExpr::AltList current; |
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238 | // now resolve new assignments |
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239 | for ( std::list< Expression * >::iterator i = new_assigns.begin(); |
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240 | i != new_assigns.end(); ++i ) { |
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241 | PRINT( |
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242 | std::cerr << "== resolving tuple assign ==" << std::endl; |
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243 | std::cerr << *i << std::endl; |
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244 | ) |
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245 | |
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246 | ResolvExpr::AlternativeFinder finder{ currentFinder.get_indexer(), |
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247 | matcher->compositeEnv }; |
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248 | |
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249 | try { |
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250 | finder.findWithAdjustment(*i); |
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251 | } catch (...) { |
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252 | return; // no match should not mean failure, it just means this particular tuple assignment isn't valid |
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253 | } |
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254 | // prune expressions that don't coincide with |
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255 | ResolvExpr::AltList alts = finder.get_alternatives(); |
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256 | assert( alts.size() == 1 ); |
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257 | assert( alts.front().expr != 0 ); |
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258 | current.push_back( alts.front() ); |
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259 | } |
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260 | |
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261 | // extract expressions from the assignment alternatives to produce a list of assignments |
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262 | // that together form a single alternative |
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263 | std::list< Expression *> solved_assigns; |
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264 | for ( ResolvExpr::Alternative & alt : current ) { |
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265 | solved_assigns.push_back( alt.expr->clone() ); |
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266 | matcher->combineState( alt ); |
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267 | } |
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268 | |
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269 | // xxx -- was push_front |
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270 | currentFinder.get_alternatives().push_back( ResolvExpr::Alternative{ |
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271 | new TupleAssignExpr{ solved_assigns, matcher->tmpDecls }, matcher->compositeEnv, |
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272 | matcher->openVars, |
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273 | ResolvExpr::AssertionList( matcher->need.begin(), matcher->need.end() ), |
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274 | ResolvExpr::sumCost( current ) + matcher->baseCost } ); |
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275 | } |
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276 | |
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277 | TupleAssignSpotter::Matcher::Matcher( TupleAssignSpotter &spotter, |
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278 | const ResolvExpr::AltList &lhs, const ResolvExpr::AltList &rhs ) |
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279 | : lhs(lhs), rhs(rhs), spotter(spotter), |
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280 | baseCost( ResolvExpr::sumCost( lhs ) + ResolvExpr::sumCost( rhs ) ) { |
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281 | combineState( lhs ); |
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282 | combineState( rhs ); |
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283 | } |
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284 | |
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285 | UntypedExpr * createFunc( const std::string &fname, ObjectDecl *left, ObjectDecl *right ) { |
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286 | assert( left ); |
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287 | std::list< Expression * > args; |
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288 | args.push_back( new VariableExpr( left ) ); |
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289 | // args.push_back( new AddressExpr( new VariableExpr( left ) ) ); |
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290 | if ( right ) args.push_back( new VariableExpr( right ) ); |
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291 | if ( left->type->referenceDepth() > 1 && CodeGen::isConstructor( fname ) ) { |
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292 | args.front() = new AddressExpr( args.front() ); |
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293 | if ( right ) args.back() = new AddressExpr( args.back() ); |
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294 | return new UntypedExpr( new NameExpr( "?=?" ), args ); |
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295 | } else { |
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296 | return new UntypedExpr( new NameExpr( fname ), args ); |
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297 | } |
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298 | } |
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299 | |
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300 | // removes environments from subexpressions within statement exprs, which could throw off later passes like those in Box which rely on PolyMutator, and adds the bindings to the compositeEnv |
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301 | // xxx - maybe this should happen in alternative finder for every StmtExpr? |
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302 | struct EnvRemover { |
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303 | void previsit( ExprStmt * stmt ) { |
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304 | assert( compositeEnv ); |
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305 | if ( stmt->expr->env ) { |
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306 | compositeEnv->add( *stmt->expr->env ); |
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307 | delete stmt->expr->env; |
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308 | stmt->expr->env = nullptr; |
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309 | } |
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310 | } |
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311 | |
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312 | ResolvExpr::TypeEnvironment * compositeEnv = nullptr; |
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313 | }; |
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314 | |
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315 | ObjectDecl * TupleAssignSpotter::Matcher::newObject( UniqueName & namer, Expression * expr ) { |
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316 | assert( expr->result && ! expr->get_result()->isVoid() ); |
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317 | ObjectDecl * ret = new ObjectDecl( namer.newName(), Type::StorageClasses(), LinkageSpec::Cforall, nullptr, expr->result->clone(), new SingleInit( expr->clone() ) ); |
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318 | // if expression type is a reference, don't need to construct anything, a simple initializer is sufficient. |
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319 | if ( ! dynamic_cast< ReferenceType * >( expr->result ) ) { |
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320 | ConstructorInit * ctorInit = InitTweak::genCtorInit( ret ); |
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321 | ret->init = ctorInit; |
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322 | ResolvExpr::resolveCtorInit( ctorInit, spotter.currentFinder.get_indexer() ); // resolve ctor/dtors for the new object |
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323 | PassVisitor<EnvRemover> rm; // remove environments from subexpressions of StmtExprs |
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324 | rm.pass.compositeEnv = &compositeEnv; |
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325 | ctorInit->accept( rm ); |
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326 | } |
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327 | PRINT( std::cerr << "new object: " << ret << std::endl; ) |
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328 | return ret; |
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329 | } |
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330 | |
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331 | void TupleAssignSpotter::MassAssignMatcher::match( std::list< Expression * > &out ) { |
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332 | static UniqueName lhsNamer( "__massassign_L" ); |
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333 | static UniqueName rhsNamer( "__massassign_R" ); |
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334 | // empty tuple case falls into this matcher, hence the second part of the assert |
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335 | assert( (! lhs.empty() && rhs.size() <= 1) || (lhs.empty() && rhs.empty()) ); |
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336 | |
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337 | // xxx - may need to split this up into multiple declarations, because potential conversion to references |
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338 | // probably should not reference local variable - see MultipleAssignMatcher::match |
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339 | ObjectDecl * rtmp = rhs.size() == 1 ? newObject( rhsNamer, rhs.front().expr ) : nullptr; |
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340 | for ( ResolvExpr::Alternative & lhsAlt : lhs ) { |
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341 | // create a temporary object for each value in the lhs and create a call involving the rhs |
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342 | ObjectDecl * ltmp = newObject( lhsNamer, lhsAlt.expr ); |
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343 | out.push_back( createFunc( spotter.fname, ltmp, rtmp ) ); |
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344 | tmpDecls.push_back( ltmp ); |
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345 | } |
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346 | if ( rtmp ) tmpDecls.push_back( rtmp ); |
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347 | } |
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348 | |
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349 | void TupleAssignSpotter::MultipleAssignMatcher::match( std::list< Expression * > &out ) { |
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350 | static UniqueName lhsNamer( "__multassign_L" ); |
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351 | static UniqueName rhsNamer( "__multassign_R" ); |
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352 | |
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353 | if ( lhs.size() == rhs.size() ) { |
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354 | // produce a new temporary object for each value in the lhs and rhs and pairwise create the calls |
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355 | std::list< ObjectDecl * > ltmp; |
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356 | std::list< ObjectDecl * > rtmp; |
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357 | for ( auto p : group_iterate( lhs, rhs ) ) { |
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358 | ResolvExpr::Alternative & lhsAlt = std::get<0>(p); |
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359 | ResolvExpr::Alternative & rhsAlt = std::get<1>(p); |
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360 | // convert RHS to LHS type minus one reference -- important for the case where LHS is && and RHS is lvalue, etc. |
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361 | ReferenceType * lhsType = strict_dynamic_cast<ReferenceType *>( lhsAlt.expr->result ); |
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362 | rhsAlt.expr = new CastExpr( rhsAlt.expr, lhsType->base->clone() ); |
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363 | ObjectDecl * lobj = newObject( lhsNamer, lhsAlt.expr ); |
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364 | ObjectDecl * robj = newObject( rhsNamer, rhsAlt.expr ); |
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365 | out.push_back( createFunc(spotter.fname, lobj, robj) ); |
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366 | ltmp.push_back( lobj ); |
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367 | rtmp.push_back( robj ); |
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368 | |
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369 | // resolve the cast expression so that rhsAlt return type is bound by the cast type as needed, and transfer the resulting environment |
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370 | ResolvExpr::AlternativeFinder finder{ spotter.currentFinder.get_indexer(), compositeEnv }; |
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371 | finder.findWithAdjustment( rhsAlt.expr ); |
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372 | assert( finder.get_alternatives().size() == 1 ); |
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373 | compositeEnv = std::move( finder.get_alternatives().front().env ); |
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374 | } |
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375 | tmpDecls.splice( tmpDecls.end(), ltmp ); |
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376 | tmpDecls.splice( tmpDecls.end(), rtmp ); |
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377 | } |
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378 | } |
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379 | |
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380 | void handleTupleAssignment( |
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381 | ResolvExpr::CandidateFinder & finder, const ast::UntypedExpr * assign, |
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382 | std::vector< ResolvExpr::CandidateFinder > & args |
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383 | ) { |
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384 | #warning unimplmented |
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385 | (void)finder; (void)assign; (void)args; |
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386 | assert(false); |
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387 | } |
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388 | } // namespace Tuples |
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389 | |
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390 | // Local Variables: // |
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391 | // tab-width: 4 // |
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392 | // mode: c++ // |
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393 | // compile-command: "make install" // |
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394 | // End: // |
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