| [51587aa] | 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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| [5af62f1] | 7 | // TupleAssignment.cc --
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| [51587aa] | 8 | //
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| [843054c2] | 9 | // Author           : Rodolfo G. Esteves
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| [51587aa] | 10 | // Created On       : Mon May 18 07:44:20 2015
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| [c0aa336] | 11 | // Last Modified By : Peter A. Buhr
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| [615a096] | 12 | // Last Modified On : Fri Mar 17 09:43:03 2017
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 | 13 | // Update Count     : 8
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| [51587aa] | 14 | //
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 | 15 | 
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| [51b73452] | 16 | #include "ResolvExpr/AlternativeFinder.h"
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 | 17 | #include "ResolvExpr/Alternative.h"
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 | 18 | #include "ResolvExpr/typeops.h"
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 | 19 | #include "SynTree/Expression.h"
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| [6eb8948] | 20 | #include "SynTree/Initializer.h"
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 | 21 | #include "Tuples.h"
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| [141b786] | 22 | #include "Explode.h"
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| [d3b7937] | 23 | #include "Common/SemanticError.h"
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| [65660bd] | 24 | #include "InitTweak/InitTweak.h"
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| [1d2b64f] | 25 | #include "InitTweak/GenInit.h"
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| [51b73452] | 26 | 
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 | 27 | #include <functional>
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 | 28 | #include <algorithm>
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 | 29 | #include <iterator>
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 | 30 | #include <iostream>
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 | 31 | #include <cassert>
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 | 32 | #include <set>
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| [5af62f1] | 33 | #include <unordered_set>
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| [51b73452] | 34 | 
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 | 35 | namespace Tuples {
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| [5af62f1] | 36 |         class TupleAssignSpotter {
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 | 37 |           public:
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 | 38 |                 // dispatcher for Tuple (multiple and mass) assignment operations
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 | 39 |                 TupleAssignSpotter( ResolvExpr::AlternativeFinder & );
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| [65660bd] | 40 |                 void spot( UntypedExpr * expr, const std::list<ResolvExpr::AltList> &possibilities );
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| [5af62f1] | 41 | 
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 | 42 |           private:
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 | 43 |                 void match();
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 | 44 | 
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| [6eb8948] | 45 |                 struct Matcher {
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| [5af62f1] | 46 |                   public:
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| [65660bd] | 47 |                         Matcher( TupleAssignSpotter &spotter, const ResolvExpr::AltList & alts );
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| [5af62f1] | 48 |                         virtual ~Matcher() {}
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 | 49 |                         virtual void match( std::list< Expression * > &out ) = 0;
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| [1d2b64f] | 50 |                         ObjectDecl * newObject( UniqueName & namer, Expression * expr );
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| [3c13c03] | 51 |                         ResolvExpr::AltList lhs, rhs;
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| [5af62f1] | 52 |                         TupleAssignSpotter &spotter;
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| [1d2b64f] | 53 |                         ResolvExpr::Cost baseCost;
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| [6eb8948] | 54 |                         std::list< ObjectDecl * > tmpDecls;
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| [1d2b64f] | 55 |                         ResolvExpr::TypeEnvironment compositeEnv;
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| [5af62f1] | 56 |                 };
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 | 57 | 
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| [6eb8948] | 58 |                 struct MassAssignMatcher : public Matcher {
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| [5af62f1] | 59 |                   public:
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| [65660bd] | 60 |                         MassAssignMatcher( TupleAssignSpotter &spotter, const ResolvExpr::AltList & alts );
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| [5af62f1] | 61 |                         virtual void match( std::list< Expression * > &out );
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 | 62 |                 };
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 | 63 | 
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| [6eb8948] | 64 |                 struct MultipleAssignMatcher : public Matcher {
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| [5af62f1] | 65 |                   public:
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| [65660bd] | 66 |                         MultipleAssignMatcher( TupleAssignSpotter &spot, const ResolvExpr::AltList & alts );
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| [5af62f1] | 67 |                         virtual void match( std::list< Expression * > &out );
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 | 68 |                 };
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 | 69 | 
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 | 70 |                 ResolvExpr::AlternativeFinder ¤tFinder;
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| [65660bd] | 71 |                 std::string fname;
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 | 72 |                 std::unique_ptr< Matcher > matcher;
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| [5af62f1] | 73 |         };
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 | 74 | 
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| [f831177] | 75 |         /// true if expr is an expression of tuple type
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| [5af62f1] | 76 |         bool isTuple( Expression *expr ) {
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| [51587aa] | 77 |                 if ( ! expr ) return false;
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| [aa8f9df] | 78 |                 assert( expr->has_result() );
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| [f831177] | 79 |                 return dynamic_cast< TupleType * >( expr->get_result() );
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| [51587aa] | 80 |         }
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 | 81 | 
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| [65660bd] | 82 |         template< typename AltIter >
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 | 83 |         bool isMultAssign( AltIter begin, AltIter end ) {
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 | 84 |                 // multiple assignment if more than one alternative in the range or if
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 | 85 |                 // the alternative is a tuple
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 | 86 |                 if ( begin == end ) return false;
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 | 87 |                 if ( isTuple( begin->expr ) ) return true;
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 | 88 |                 return ++begin != end;
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 | 89 |         }
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 | 90 | 
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| [5af62f1] | 91 |         bool pointsToTuple( Expression *expr ) {
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 | 92 |                 // also check for function returning tuple of reference types
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| [65660bd] | 93 |                 if ( CastExpr * castExpr = dynamic_cast< CastExpr * >( expr ) ) {
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 | 94 |                         return pointsToTuple( castExpr->get_arg() );
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 | 95 |                 } else if ( AddressExpr *addr = dynamic_cast< AddressExpr * >( expr) ) {
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| [5af62f1] | 96 |                         return isTuple( addr->get_arg() );
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| [51587aa] | 97 |                 }
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 | 98 |                 return false;
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 | 99 |         }
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 | 100 | 
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| [65660bd] | 101 |         void handleTupleAssignment( ResolvExpr::AlternativeFinder & currentFinder, UntypedExpr * expr, const std::list<ResolvExpr::AltList> &possibilities ) {
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| [5af62f1] | 102 |                 TupleAssignSpotter spotter( currentFinder );
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 | 103 |                 spotter.spot( expr, possibilities );
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 | 104 |         }
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| [51587aa] | 105 | 
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| [5af62f1] | 106 |         TupleAssignSpotter::TupleAssignSpotter( ResolvExpr::AlternativeFinder &f )
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 | 107 |                 : currentFinder(f) {}
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| [51587aa] | 108 | 
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| [65660bd] | 109 |         void TupleAssignSpotter::spot( UntypedExpr * expr, const std::list<ResolvExpr::AltList> &possibilities ) {
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 | 110 |                 if (  NameExpr *op = dynamic_cast< NameExpr * >(expr->get_function()) ) {
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 | 111 |                         if ( InitTweak::isCtorDtorAssign( op->get_name() ) ) {
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 | 112 |                                 fname = op->get_name();
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 | 113 |                                 for ( std::list<ResolvExpr::AltList>::const_iterator ali = possibilities.begin(); ali != possibilities.end(); ++ali ) {
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 | 114 |                                         if ( ali->size() == 0 ) continue; // AlternativeFinder will natrually handle this case, if it's legal
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 | 115 |                                         if ( ali->size() <= 1 && InitTweak::isAssignment( op->get_name() ) ) {
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 | 116 |                                                 // what does it mean if an assignment takes 1 argument? maybe someone defined such a function, in which case AlternativeFinder will naturally handle it
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 | 117 |                                                 continue;
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 | 118 |                                         }
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| [51587aa] | 119 | 
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| [65660bd] | 120 |                                         assert( ! ali->empty() );
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 | 121 |                                         // grab args 2-N and group into a TupleExpr
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 | 122 |                                         const ResolvExpr::Alternative & alt1 = ali->front();
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 | 123 |                                         auto begin = std::next(ali->begin(), 1), end = ali->end();
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| [3c13c03] | 124 |                                         if ( pointsToTuple(alt1.expr) ) {
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| [65660bd] | 125 |                                                 if ( isMultAssign( begin, end ) ) {
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 | 126 |                                                         matcher.reset( new MultipleAssignMatcher( *this, *ali ) );
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| [5af62f1] | 127 |                                                 } else {
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| [51587aa] | 128 |                                                         // mass assignment
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| [65660bd] | 129 |                                                         matcher.reset( new MassAssignMatcher( *this,  *ali ) );
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| [51587aa] | 130 |                                                 }
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| [5af62f1] | 131 |                                                 match();
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| [51587aa] | 132 |                                         }
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 | 133 |                                 }
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 | 134 |                         }
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 | 135 |                 }
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 | 136 |         }
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 | 137 | 
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| [5af62f1] | 138 |         void TupleAssignSpotter::match() {
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 | 139 |                 assert ( matcher != 0 );
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| [51587aa] | 140 | 
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| [5af62f1] | 141 |                 std::list< Expression * > new_assigns;
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 | 142 |                 matcher->match( new_assigns );
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 | 143 | 
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| [f831177] | 144 |                 if ( ! matcher->lhs.empty() || ! matcher->rhs.empty() ) {
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 | 145 |                         // 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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 | 146 |                         // if not the empty tuple case, return early so that no new alternatives are generated.
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 | 147 |                         if ( new_assigns.empty() ) return;
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 | 148 |                 }
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| [5af62f1] | 149 |                 ResolvExpr::AltList current;
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 | 150 |                 // now resolve new assignments
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 | 151 |                 for ( std::list< Expression * >::iterator i = new_assigns.begin(); i != new_assigns.end(); ++i ) {
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 | 152 |                         ResolvExpr::AlternativeFinder finder( currentFinder.get_indexer(), currentFinder.get_environ() );
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| [ac9ca96] | 153 |                         try {
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 | 154 |                                 finder.findWithAdjustment(*i);
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 | 155 |                         } catch (...) {
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| [1d2b64f] | 156 |                                 return; // no match should not mean failure, it just means this particular tuple assignment isn't valid
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| [ac9ca96] | 157 |                         }
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| [5af62f1] | 158 |                         // prune expressions that don't coincide with
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 | 159 |                         ResolvExpr::AltList alts = finder.get_alternatives();
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 | 160 |                         assert( alts.size() == 1 );
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 | 161 |                         assert( alts.front().expr != 0 );
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| [908cc83] | 162 |                         current.push_back( alts.front() );
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| [5af62f1] | 163 |                 }
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 | 164 | 
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| [6eb8948] | 165 |                 // extract expressions from the assignment alternatives to produce a list of assignments that
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 | 166 |                 // together form a single alternative
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 | 167 |                 std::list< Expression *> solved_assigns;
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 | 168 |                 for ( ResolvExpr::Alternative & alt : current ) {
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 | 169 |                         solved_assigns.push_back( alt.expr->clone() );
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 | 170 |                 }
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| [1d2b64f] | 171 |                 // combine assignment environments into combined expression environment
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 | 172 |                 simpleCombineEnvironments( current.begin(), current.end(), matcher->compositeEnv );
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 | 173 |                 currentFinder.get_alternatives().push_front( ResolvExpr::Alternative(new TupleAssignExpr(solved_assigns, matcher->tmpDecls), matcher->compositeEnv, ResolvExpr::sumCost( current  ) + matcher->baseCost ) );
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| [51587aa] | 174 |         }
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 | 175 | 
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| [1d2b64f] | 176 |         TupleAssignSpotter::Matcher::Matcher( TupleAssignSpotter &spotter, const ResolvExpr::AltList &alts ) : spotter(spotter), baseCost( ResolvExpr::sumCost( alts ) ) {
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| [65660bd] | 177 |                 assert( ! alts.empty() );
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| [1d2b64f] | 178 |                 // combine argument environments into combined expression environment
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 | 179 |                 simpleCombineEnvironments( alts.begin(), alts.end(), compositeEnv );
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 | 180 | 
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| [65660bd] | 181 |                 ResolvExpr::Alternative lhsAlt = alts.front();
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 | 182 |                 // peel off the cast that exists on ctor/dtor expressions
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 | 183 |                 bool isCast = false;
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 | 184 |                 if ( CastExpr * castExpr = dynamic_cast< CastExpr * >( lhsAlt.expr ) ) {
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 | 185 |                         lhsAlt.expr = castExpr->get_arg();
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 | 186 |                         castExpr->set_arg( nullptr );
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 | 187 |                         delete castExpr;
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 | 188 |                         isCast = true;
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 | 189 |                 }
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| [3c13c03] | 190 | 
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| [65660bd] | 191 |                 // explode the lhs so that each field of the tuple-valued-expr is assigned.
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| [f831177] | 192 |                 explode( lhsAlt, spotter.currentFinder.get_indexer(), back_inserter(lhs), true );
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| [b3b2077] | 193 | 
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| [65660bd] | 194 |                 // and finally, re-add the cast to each lhs expr, so that qualified tuple fields can be constructed
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 | 195 |                 if ( isCast ) {
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 | 196 |                         for ( ResolvExpr::Alternative & alt : lhs ) {
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 | 197 |                                 Expression *& expr = alt.expr;
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 | 198 |                                 Type * castType = expr->get_result()->clone();
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 | 199 |                                 Type * type = InitTweak::getPointerBase( castType );
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 | 200 |                                 assert( type );
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| [bf4ac09] | 201 |                                 type->get_qualifiers() -= Type::Qualifiers( Type::Const | Type::Volatile | Type::Restrict | Type::Atomic );
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| [615a096] | 202 |                                 type->set_lvalue( true ); // xxx - might not need this
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| [65660bd] | 203 |                                 expr = new CastExpr( expr, castType );
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 | 204 |                         }
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| [3c13c03] | 205 |                 }
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 | 206 |         }
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 | 207 | 
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| [b3b2077] | 208 |         TupleAssignSpotter::MassAssignMatcher::MassAssignMatcher( TupleAssignSpotter &spotter, const ResolvExpr::AltList & alts ) : Matcher( spotter, alts ) {
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| [65660bd] | 209 |                 assert( alts.size() == 1 || alts.size() == 2 );
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 | 210 |                 if ( alts.size() == 2 ) {
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 | 211 |                         rhs.push_back( alts.back() );
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 | 212 |                 }
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| [51587aa] | 213 |         }
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 | 214 | 
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| [65660bd] | 215 |         TupleAssignSpotter::MultipleAssignMatcher::MultipleAssignMatcher( TupleAssignSpotter &spotter, const ResolvExpr::AltList & alts ) : Matcher( spotter, alts ) {
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| [3c13c03] | 216 |                 // explode the rhs so that each field of the tuple-valued-expr is assigned.
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| [f831177] | 217 |                 explode( std::next(alts.begin(), 1), alts.end(), spotter.currentFinder.get_indexer(), back_inserter(rhs), true );
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| [51587aa] | 218 |         }
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 | 219 | 
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| [65660bd] | 220 |         UntypedExpr * createFunc( const std::string &fname, ObjectDecl *left, ObjectDecl *right ) {
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 | 221 |                 assert( left );
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| [5af62f1] | 222 |                 std::list< Expression * > args;
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| [b3b2077] | 223 |                 args.push_back( new AddressExpr( UntypedExpr::createDeref( new VariableExpr( left ) ) ) );
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| [65660bd] | 224 |                 // args.push_back( new AddressExpr( new VariableExpr( left ) ) );
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 | 225 |                 if ( right ) args.push_back( new VariableExpr( right ) );
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 | 226 |                 return new UntypedExpr( new NameExpr( fname ), args );
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| [51587aa] | 227 |         }
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 | 228 | 
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| [1d2b64f] | 229 |         // removes environments from subexpressions within statement exprs, which could throw off later passes like those in Box which rely on PolyMutator.
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 | 230 |         // xxx - maybe this should happen in alternative finder for every StmtExpr?
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 | 231 |         // xxx - it's possible that these environments could contain some useful information. Maybe the right thing to do is aggregate the environments and pass the aggregate back to be added into the compositeEnv
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 | 232 |         struct EnvRemover : public Visitor {
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 | 233 |                 virtual void visit( ExprStmt * stmt ) {
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 | 234 |                         delete stmt->get_expr()->get_env();
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 | 235 |                         stmt->get_expr()->set_env( nullptr );
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 | 236 |                         Visitor::visit( stmt );
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 | 237 |                 }
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 | 238 |         };
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 | 239 | 
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 | 240 |         ObjectDecl * TupleAssignSpotter::Matcher::newObject( UniqueName & namer, Expression * expr ) {
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| [aa8f9df] | 241 |                 assert( expr->has_result() && ! expr->get_result()->isVoid() );
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| [68fe077a] | 242 |                 ObjectDecl * ret = new ObjectDecl( namer.newName(), Type::StorageClasses(), LinkageSpec::Cforall, nullptr, expr->get_result()->clone(), new SingleInit( expr->clone() ) );
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| [1d2b64f] | 243 |                 ConstructorInit * ctorInit = InitTweak::genCtorInit( ret );
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 | 244 |                 ret->set_init( ctorInit );
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 | 245 |                 ResolvExpr::resolveCtorInit( ctorInit, spotter.currentFinder.get_indexer() ); // resolve ctor/dtors for the new object
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 | 246 |                 EnvRemover rm; // remove environments from subexpressions of StmtExprs
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 | 247 |                 ctorInit->accept( rm );
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 | 248 |                 return ret;
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| [6eb8948] | 249 |         }
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 | 250 | 
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| [5af62f1] | 251 |         void TupleAssignSpotter::MassAssignMatcher::match( std::list< Expression * > &out ) {
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| [6eb8948] | 252 |                 static UniqueName lhsNamer( "__massassign_L" );
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 | 253 |                 static UniqueName rhsNamer( "__massassign_R" );
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| [f831177] | 254 |                 // empty tuple case falls into this matcher, hence the second part of the assert
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 | 255 |                 assert( (! lhs.empty() && rhs.size() <= 1) || (lhs.empty() && rhs.empty()) );
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| [51587aa] | 256 | 
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| [65660bd] | 257 |                 ObjectDecl * rtmp = rhs.size() == 1 ? newObject( rhsNamer, rhs.front().expr ) : nullptr;
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| [3c13c03] | 258 |                 for ( ResolvExpr::Alternative & lhsAlt : lhs ) {
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| [f831177] | 259 |                         // create a temporary object for each value in the lhs and create a call involving the rhs
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| [65660bd] | 260 |                         ObjectDecl * ltmp = newObject( lhsNamer, lhsAlt.expr );
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 | 261 |                         out.push_back( createFunc( spotter.fname, ltmp, rtmp ) );
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| [6eb8948] | 262 |                         tmpDecls.push_back( ltmp );
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| [5af62f1] | 263 |                 }
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| [65660bd] | 264 |                 if ( rtmp ) tmpDecls.push_back( rtmp );
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| [51b73452] | 265 |         }
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 | 266 | 
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| [5af62f1] | 267 |         void TupleAssignSpotter::MultipleAssignMatcher::match( std::list< Expression * > &out ) {
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| [6eb8948] | 268 |                 static UniqueName lhsNamer( "__multassign_L" );
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 | 269 |                 static UniqueName rhsNamer( "__multassign_R" );
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| [b3b2077] | 270 | 
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| [51587aa] | 271 |                 if ( lhs.size() == rhs.size() ) {
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| [f831177] | 272 |                         // produce a new temporary object for each value in the lhs and rhs and pairwise create the calls
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| [6eb8948] | 273 |                         std::list< ObjectDecl * > ltmp;
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 | 274 |                         std::list< ObjectDecl * > rtmp;
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| [1d2b64f] | 275 |                         std::transform( lhs.begin(), lhs.end(), back_inserter( ltmp ), [&]( ResolvExpr::Alternative & alt ){
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| [65660bd] | 276 |                                 return newObject( lhsNamer, alt.expr );
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| [6eb8948] | 277 |                         });
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| [1d2b64f] | 278 |                         std::transform( rhs.begin(), rhs.end(), back_inserter( rtmp ), [&]( ResolvExpr::Alternative & alt ){
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| [3c13c03] | 279 |                                 return newObject( rhsNamer, alt.expr );
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| [6eb8948] | 280 |                         });
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| [65660bd] | 281 |                         zipWith( ltmp.begin(), ltmp.end(), rtmp.begin(), rtmp.end(), back_inserter(out), [&](ObjectDecl * obj1, ObjectDecl * obj2 ) { return createFunc(spotter.fname, obj1, obj2); } );
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| [6eb8948] | 282 |                         tmpDecls.splice( tmpDecls.end(), ltmp );
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 | 283 |                         tmpDecls.splice( tmpDecls.end(), rtmp );
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| [5af62f1] | 284 |                 }
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| [51587aa] | 285 |         }
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| [51b73452] | 286 | } // namespace Tuples
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| [51587aa] | 287 | 
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 | 288 | // Local Variables: //
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 | 289 | // tab-width: 4 //
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 | 290 | // mode: c++ //
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 | 291 | // compile-command: "make install" //
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 | 292 | // End: //
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