| [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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| [f1e012b] | 7 | // Specialize.cc -- | 
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| [51587aa] | 8 | // | 
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|  | 9 | // Author           : Richard C. Bilson | 
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|  | 10 | // Created On       : Mon May 18 07:44:20 2015 | 
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| [dd020c0] | 11 | // Last Modified By : Peter A. Buhr | 
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| [68fe077a] | 12 | // Last Modified On : Thu Mar 16 07:53:59 2017 | 
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|  | 13 | // Update Count     : 31 | 
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| [51587aa] | 14 | // | 
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| [51b73452] | 15 |  | 
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|  | 16 | #include <cassert> | 
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|  | 17 |  | 
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|  | 18 | #include "Specialize.h" | 
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| [7754cde] | 19 | #include "GenPoly.h" | 
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| [51b73452] | 20 | #include "PolyMutator.h" | 
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|  | 21 |  | 
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| [68cd1ce] | 22 | #include "Parser/ParseNode.h" | 
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|  | 23 |  | 
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| [51b73452] | 24 | #include "SynTree/Expression.h" | 
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| [68cd1ce] | 25 | #include "SynTree/Statement.h" | 
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| [51b73452] | 26 | #include "SynTree/Type.h" | 
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| [64a32c6] | 27 | #include "SynTree/Attribute.h" | 
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| [51b73452] | 28 | #include "SynTree/TypeSubstitution.h" | 
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|  | 29 | #include "SynTree/Mutator.h" | 
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|  | 30 | #include "ResolvExpr/FindOpenVars.h" | 
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| [d3b7937] | 31 | #include "Common/UniqueName.h" | 
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|  | 32 | #include "Common/utility.h" | 
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| [aedfd91] | 33 | #include "InitTweak/InitTweak.h" | 
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| [4c8621ac] | 34 | #include "Tuples/Tuples.h" | 
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| [51b73452] | 35 |  | 
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|  | 36 | namespace GenPoly { | 
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| [62e5546] | 37 | class Specialize final : public PolyMutator { | 
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| [01aeade] | 38 | public: | 
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| [62e5546] | 39 | using PolyMutator::mutate; | 
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|  | 40 | virtual Expression * mutate( ApplicationExpr *applicationExpr ) override; | 
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|  | 41 | virtual Expression * mutate( AddressExpr *castExpr ) override; | 
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|  | 42 | virtual Expression * mutate( CastExpr *castExpr ) override; | 
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| [fea7ca7] | 43 | // virtual Expression * mutate( LogicalExpr *logicalExpr ); | 
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|  | 44 | // virtual Expression * mutate( ConditionalExpr *conditionalExpr ); | 
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|  | 45 | // virtual Expression * mutate( CommaExpr *commaExpr ); | 
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| [01aeade] | 46 |  | 
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|  | 47 | void handleExplicitParams( ApplicationExpr *appExpr ); | 
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| [f3b0a07] | 48 | Expression * createThunkFunction( FunctionType *funType, Expression *actual, InferredParams *inferParams ); | 
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|  | 49 | Expression * doSpecialization( Type *formalType, Expression *actual, InferredParams *inferParams = nullptr ); | 
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| [626dbc10] | 50 |  | 
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|  | 51 | std::string paramPrefix = "_p"; | 
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|  | 52 | }; | 
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| [01aeade] | 53 |  | 
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| [698664b3] | 54 | /// Looks up open variables in actual type, returning true if any of them are bound in the environment or formal type. | 
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| [f3b0a07] | 55 | bool needsPolySpecialization( Type *formalType, Type *actualType, TypeSubstitution *env ) { | 
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| [01aeade] | 56 | if ( env ) { | 
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|  | 57 | using namespace ResolvExpr; | 
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|  | 58 | OpenVarSet openVars, closedVars; | 
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|  | 59 | AssertionSet need, have; | 
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|  | 60 | findOpenVars( formalType, openVars, closedVars, need, have, false ); | 
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|  | 61 | findOpenVars( actualType, openVars, closedVars, need, have, true ); | 
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|  | 62 | for ( OpenVarSet::const_iterator openVar = openVars.begin(); openVar != openVars.end(); ++openVar ) { | 
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|  | 63 | Type *boundType = env->lookup( openVar->first ); | 
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|  | 64 | if ( ! boundType ) continue; | 
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|  | 65 | if ( TypeInstType *typeInst = dynamic_cast< TypeInstType* >( boundType ) ) { | 
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|  | 66 | if ( closedVars.find( typeInst->get_name() ) == closedVars.end() ) { | 
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|  | 67 | return true; | 
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|  | 68 | } // if | 
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|  | 69 | } else { | 
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|  | 70 | return true; | 
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|  | 71 | } // if | 
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|  | 72 | } // for | 
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|  | 73 | return false; | 
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|  | 74 | } else { | 
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|  | 75 | return false; | 
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|  | 76 | } // if | 
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|  | 77 | } | 
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|  | 78 |  | 
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| [dc0557d] | 79 | /// True if both types have the same structure, but not necessarily the same types. | 
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|  | 80 | /// That is, either both types are tuple types with the same size (recursively), or | 
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|  | 81 | /// both are not tuple types. | 
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|  | 82 | bool matchingTupleStructure( Type * t1, Type * t2 ) { | 
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|  | 83 | TupleType * tuple1 = dynamic_cast< TupleType * >( t1 ); | 
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|  | 84 | TupleType * tuple2 = dynamic_cast< TupleType * >( t2 ); | 
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|  | 85 | if ( tuple1 && tuple2 ) { | 
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|  | 86 | if ( tuple1->size() != tuple2->size() ) return false; | 
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|  | 87 | for ( auto types : group_iterate( tuple1->get_types(), tuple2->get_types() ) ) { | 
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|  | 88 | if ( ! matchingTupleStructure( std::get<0>( types ), std::get<1>( types ) ) ) return false; | 
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|  | 89 | } | 
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|  | 90 | return true; | 
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|  | 91 | } else if ( ! tuple1 && ! tuple2 ) return true; | 
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|  | 92 | return false; | 
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|  | 93 | } | 
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|  | 94 |  | 
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| [d7dc824] | 95 | bool needsTupleSpecialization( Type *formalType, Type *actualType ) { | 
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| [dc0557d] | 96 | // Needs tuple specialization if the structure of the formal type and actual type do not match. | 
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|  | 97 | // This is the case if the formal type has ttype polymorphism, or if the structure  of tuple types | 
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|  | 98 | // between the function do not match exactly. | 
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|  | 99 | if ( FunctionType * fftype = getFunctionType( formalType ) ) { | 
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|  | 100 | if ( fftype->isTtype() ) return true; | 
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| [969ee0df] | 101 | // conversion of 0 (null) to function type does not require tuple specialization | 
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|  | 102 | if ( dynamic_cast< ZeroType * >( actualType ) ) return false; | 
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| [dc0557d] | 103 | FunctionType * aftype = getFunctionType( actualType ); | 
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|  | 104 | assertf( aftype, "formal type is a function type, but actual type is not." ); | 
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|  | 105 | if ( fftype->get_parameters().size() != aftype->get_parameters().size() ) return true; | 
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|  | 106 | for ( auto params : group_iterate( fftype->get_parameters(), aftype->get_parameters() ) ) { | 
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|  | 107 | DeclarationWithType * formal = std::get<0>(params); | 
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|  | 108 | DeclarationWithType * actual = std::get<1>(params); | 
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|  | 109 | if ( ! matchingTupleStructure( formal->get_type(), actual->get_type() ) ) return true; | 
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|  | 110 | } | 
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| [f3b0a07] | 111 | } | 
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|  | 112 | return false; | 
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|  | 113 | } | 
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| [698664b3] | 114 |  | 
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| [f3b0a07] | 115 | bool needsSpecialization( Type *formalType, Type *actualType, TypeSubstitution *env ) { | 
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| [d7dc824] | 116 | return needsPolySpecialization( formalType, actualType, env ) || needsTupleSpecialization( formalType, actualType ); | 
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| [698664b3] | 117 | } | 
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| [f1e012b] | 118 |  | 
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| [f3b0a07] | 119 | Expression * Specialize::doSpecialization( Type *formalType, Expression *actual, InferredParams *inferParams ) { | 
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| [b3b2077] | 120 | assertf( actual->has_result(), "attempting to specialize an untyped expression" ); | 
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| [906e24d] | 121 | if ( needsSpecialization( formalType, actual->get_result(), env ) ) { | 
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| [6c3a988f] | 122 | if ( FunctionType *funType = getFunctionType( formalType ) ) { | 
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| [698664b3] | 123 | ApplicationExpr *appExpr; | 
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|  | 124 | VariableExpr *varExpr; | 
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|  | 125 | if ( ( appExpr = dynamic_cast<ApplicationExpr*>( actual ) ) ) { | 
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|  | 126 | return createThunkFunction( funType, appExpr->get_function(), inferParams ); | 
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|  | 127 | } else if ( ( varExpr = dynamic_cast<VariableExpr*>( actual ) ) ) { | 
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|  | 128 | return createThunkFunction( funType, varExpr, inferParams ); | 
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| [01aeade] | 129 | } else { | 
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| [698664b3] | 130 | // This likely won't work, as anything that could build an ApplicationExpr probably hit one of the previous two branches | 
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|  | 131 | return createThunkFunction( funType, actual, inferParams ); | 
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|  | 132 | } | 
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| [01aeade] | 133 | } else { | 
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|  | 134 | return actual; | 
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|  | 135 | } // if | 
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|  | 136 | } else { | 
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|  | 137 | return actual; | 
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|  | 138 | } // if | 
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|  | 139 | } | 
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|  | 140 |  | 
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| [dc0557d] | 141 | /// restructures the arguments to match the structure of the formal parameters of the actual function. | 
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|  | 142 | /// [begin, end) are the exploded arguments. | 
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|  | 143 | template< typename Iterator, typename OutIterator > | 
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|  | 144 | void structureArg( Type * type, Iterator & begin, Iterator end, OutIterator out ) { | 
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|  | 145 | if ( TupleType * tuple = dynamic_cast< TupleType * >( type ) ) { | 
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| [64eae56] | 146 | std::list< Expression * > exprs; | 
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| [dc0557d] | 147 | for ( Type * t : *tuple ) { | 
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|  | 148 | structureArg( t, begin, end, back_inserter( exprs ) ); | 
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| [64eae56] | 149 | } | 
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|  | 150 | *out++ = new TupleExpr( exprs ); | 
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|  | 151 | } else { | 
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| [dc0557d] | 152 | assertf( begin != end, "reached the end of the arguments while structuring" ); | 
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|  | 153 | *out++ = *begin++; | 
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| [64eae56] | 154 | } | 
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|  | 155 | } | 
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|  | 156 |  | 
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| [dc0557d] | 157 | /// explode assuming simple cases: either type is pure tuple (but not tuple expr) or type is non-tuple. | 
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|  | 158 | template< typename OutputIterator > | 
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|  | 159 | void explodeSimple( Expression * expr, OutputIterator out ) { | 
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|  | 160 | if ( TupleType * tupleType = dynamic_cast< TupleType * > ( expr->get_result() ) ) { | 
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|  | 161 | // tuple type, recursively index into its components | 
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|  | 162 | for ( unsigned int i = 0; i < tupleType->size(); i++ ) { | 
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|  | 163 | explodeSimple( new TupleIndexExpr( expr->clone(), i ), out ); | 
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| [f3b0a07] | 164 | } | 
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| [dc0557d] | 165 | delete expr; | 
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|  | 166 | } else { | 
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|  | 167 | // non-tuple type - output a clone of the expression | 
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|  | 168 | *out++ = expr; | 
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| [626dbc10] | 169 | } | 
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|  | 170 | } | 
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|  | 171 |  | 
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| [623ecf3] | 172 | struct EnvTrimmer : public Visitor { | 
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|  | 173 | TypeSubstitution * env, * newEnv; | 
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|  | 174 | EnvTrimmer( TypeSubstitution * env, TypeSubstitution * newEnv ) : env( env ), newEnv( newEnv ){} | 
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|  | 175 | virtual void visit( TypeDecl * tyDecl ) { | 
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|  | 176 | // transfer known bindings for seen type variables | 
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|  | 177 | if ( Type * t = env->lookup( tyDecl->get_name() ) ) { | 
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|  | 178 | newEnv->add( tyDecl->get_name(), t ); | 
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|  | 179 | } | 
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|  | 180 | } | 
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|  | 181 | }; | 
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|  | 182 |  | 
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|  | 183 | /// reduce environment to just the parts that are referenced in a given expression | 
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|  | 184 | TypeSubstitution * trimEnv( ApplicationExpr * expr, TypeSubstitution * env ) { | 
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|  | 185 | if ( env ) { | 
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|  | 186 | TypeSubstitution * newEnv = new TypeSubstitution(); | 
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|  | 187 | EnvTrimmer trimmer( env, newEnv ); | 
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|  | 188 | expr->accept( trimmer ); | 
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|  | 189 | return newEnv; | 
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|  | 190 | } | 
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|  | 191 | return nullptr; | 
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|  | 192 | } | 
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|  | 193 |  | 
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| [f3b0a07] | 194 | /// Generates a thunk that calls `actual` with type `funType` and returns its address | 
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|  | 195 | Expression * Specialize::createThunkFunction( FunctionType *funType, Expression *actual, InferredParams *inferParams ) { | 
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|  | 196 | static UniqueName thunkNamer( "_thunk" ); | 
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| [626dbc10] | 197 |  | 
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|  | 198 | FunctionType *newType = funType->clone(); | 
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|  | 199 | if ( env ) { | 
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|  | 200 | // it is important to replace only occurrences of type variables that occur free in the | 
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|  | 201 | // thunk's type | 
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| [6c3a988f] | 202 | env->applyFree( newType ); | 
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| [626dbc10] | 203 | } // if | 
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|  | 204 | // create new thunk with same signature as formal type (C linkage, empty body) | 
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| [68fe077a] | 205 | FunctionDecl *thunkFunc = new FunctionDecl( thunkNamer.newName(), Type::StorageClasses(), LinkageSpec::C, newType, new CompoundStmt( noLabels ) ); | 
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| [626dbc10] | 206 | thunkFunc->fixUniqueId(); | 
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|  | 207 |  | 
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|  | 208 | // thunks may be generated and not used - silence warning with attribute | 
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|  | 209 | thunkFunc->get_attributes().push_back( new Attribute( "unused" ) ); | 
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|  | 210 |  | 
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|  | 211 | // thread thunk parameters into call to actual function, naming thunk parameters as we go | 
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|  | 212 | UniqueName paramNamer( paramPrefix ); | 
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|  | 213 | ApplicationExpr *appExpr = new ApplicationExpr( actual ); | 
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|  | 214 |  | 
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| [6c3a988f] | 215 | FunctionType * actualType = getFunctionType( actual->get_result() )->clone(); | 
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|  | 216 | if ( env ) { | 
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|  | 217 | // need to apply the environment to the actual function's type, since it may itself be polymorphic | 
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|  | 218 | env->apply( actualType ); | 
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|  | 219 | } | 
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|  | 220 | std::unique_ptr< FunctionType > actualTypeManager( actualType ); // for RAII | 
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| [4c8621ac] | 221 | std::list< DeclarationWithType * >::iterator actualBegin = actualType->get_parameters().begin(); | 
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|  | 222 | std::list< DeclarationWithType * >::iterator actualEnd = actualType->get_parameters().end(); | 
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| [626dbc10] | 223 |  | 
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| [dc0557d] | 224 | std::list< Expression * > args; | 
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| [626dbc10] | 225 | for ( DeclarationWithType* param : thunkFunc->get_functionType()->get_parameters() ) { | 
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| [dc0557d] | 226 | // name each thunk parameter and explode it - these are then threaded back into the actual function call. | 
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| [626dbc10] | 227 | param->set_name( paramNamer.newName() ); | 
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| [dc0557d] | 228 | explodeSimple( new VariableExpr( param ), back_inserter( args ) ); | 
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|  | 229 | } | 
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|  | 230 |  | 
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|  | 231 | // walk parameters to the actual function alongside the exploded thunk parameters and restructure the arguments to match the actual parameters. | 
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|  | 232 | std::list< Expression * >::iterator argBegin = args.begin(), argEnd = args.end(); | 
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|  | 233 | for ( ; actualBegin != actualEnd; ++actualBegin ) { | 
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|  | 234 | structureArg( (*actualBegin)->get_type(), argBegin, argEnd, back_inserter( appExpr->get_args() ) ); | 
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|  | 235 | } | 
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| [4c8621ac] | 236 |  | 
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| [623ecf3] | 237 | appExpr->set_env( trimEnv( appExpr, env ) ); | 
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| [626dbc10] | 238 | if ( inferParams ) { | 
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|  | 239 | appExpr->get_inferParams() = *inferParams; | 
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|  | 240 | } // if | 
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|  | 241 |  | 
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|  | 242 | // handle any specializations that may still be present | 
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|  | 243 | std::string oldParamPrefix = paramPrefix; | 
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|  | 244 | paramPrefix += "p"; | 
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|  | 245 | // save stmtsToAdd in oldStmts | 
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|  | 246 | std::list< Statement* > oldStmts; | 
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|  | 247 | oldStmts.splice( oldStmts.end(), stmtsToAdd ); | 
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| [f3b0a07] | 248 | mutate( appExpr ); | 
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| [626dbc10] | 249 | paramPrefix = oldParamPrefix; | 
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|  | 250 | // write any statements added for recursive specializations into the thunk body | 
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|  | 251 | thunkFunc->get_statements()->get_kids().splice( thunkFunc->get_statements()->get_kids().end(), stmtsToAdd ); | 
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|  | 252 | // restore oldStmts into stmtsToAdd | 
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|  | 253 | stmtsToAdd.splice( stmtsToAdd.end(), oldStmts ); | 
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|  | 254 |  | 
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|  | 255 | // add return (or valueless expression) to the thunk | 
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|  | 256 | Statement *appStmt; | 
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|  | 257 | if ( funType->get_returnVals().empty() ) { | 
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|  | 258 | appStmt = new ExprStmt( noLabels, appExpr ); | 
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|  | 259 | } else { | 
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|  | 260 | appStmt = new ReturnStmt( noLabels, appExpr ); | 
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|  | 261 | } // if | 
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|  | 262 | thunkFunc->get_statements()->get_kids().push_back( appStmt ); | 
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|  | 263 |  | 
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|  | 264 | // add thunk definition to queue of statements to add | 
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|  | 265 | stmtsToAdd.push_back( new DeclStmt( noLabels, thunkFunc ) ); | 
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|  | 266 | // return address of thunk function as replacement expression | 
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|  | 267 | return new AddressExpr( new VariableExpr( thunkFunc ) ); | 
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|  | 268 | } | 
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|  | 269 |  | 
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| [01aeade] | 270 | void Specialize::handleExplicitParams( ApplicationExpr *appExpr ) { | 
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|  | 271 | // create thunks for the explicit parameters | 
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| [906e24d] | 272 | assert( appExpr->get_function()->has_result() ); | 
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|  | 273 | FunctionType *function = getFunctionType( appExpr->get_function()->get_result() ); | 
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| [698664b3] | 274 | assert( function ); | 
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| [01aeade] | 275 | std::list< DeclarationWithType* >::iterator formal; | 
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|  | 276 | std::list< Expression* >::iterator actual; | 
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|  | 277 | for ( formal = function->get_parameters().begin(), actual = appExpr->get_args().begin(); formal != function->get_parameters().end() && actual != appExpr->get_args().end(); ++formal, ++actual ) { | 
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| [f3b0a07] | 278 | *actual = doSpecialization( (*formal )->get_type(), *actual, &appExpr->get_inferParams() ); | 
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| [01aeade] | 279 | } | 
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|  | 280 | } | 
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|  | 281 |  | 
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|  | 282 | Expression * Specialize::mutate( ApplicationExpr *appExpr ) { | 
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|  | 283 | appExpr->get_function()->acceptMutator( *this ); | 
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|  | 284 | mutateAll( appExpr->get_args(), *this ); | 
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|  | 285 |  | 
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| [aedfd91] | 286 | if ( ! InitTweak::isIntrinsicCallExpr( appExpr ) ) { | 
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|  | 287 | // create thunks for the inferred parameters | 
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|  | 288 | // don't need to do this for intrinsic calls, because they aren't actually passed | 
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| [f3b0a07] | 289 | // need to handle explicit params before inferred params so that explicit params do not recieve a changed set of inferParams (and change them again) | 
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|  | 290 | // alternatively, if order starts to matter then copy appExpr's inferParams and pass them to handleExplicitParams. | 
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|  | 291 | handleExplicitParams( appExpr ); | 
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| [aedfd91] | 292 | for ( InferredParams::iterator inferParam = appExpr->get_inferParams().begin(); inferParam != appExpr->get_inferParams().end(); ++inferParam ) { | 
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| [f3b0a07] | 293 | inferParam->second.expr = doSpecialization( inferParam->second.formalType, inferParam->second.expr, inferParam->second.inferParams.get() ); | 
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| [aedfd91] | 294 | } | 
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|  | 295 | } | 
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| [01aeade] | 296 | return appExpr; | 
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|  | 297 | } | 
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|  | 298 |  | 
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|  | 299 | Expression * Specialize::mutate( AddressExpr *addrExpr ) { | 
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|  | 300 | addrExpr->get_arg()->acceptMutator( *this ); | 
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| [906e24d] | 301 | assert( addrExpr->has_result() ); | 
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| [f3b0a07] | 302 | addrExpr->set_arg( doSpecialization( addrExpr->get_result(), addrExpr->get_arg() ) ); | 
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| [01aeade] | 303 | return addrExpr; | 
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|  | 304 | } | 
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|  | 305 |  | 
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|  | 306 | Expression * Specialize::mutate( CastExpr *castExpr ) { | 
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|  | 307 | castExpr->get_arg()->acceptMutator( *this ); | 
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| [906e24d] | 308 | if ( castExpr->get_result()->isVoid() ) { | 
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| [803deb1] | 309 | // can't specialize if we don't have a return value | 
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|  | 310 | return castExpr; | 
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|  | 311 | } | 
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| [f3b0a07] | 312 | Expression *specialized = doSpecialization( castExpr->get_result(), castExpr->get_arg() ); | 
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| [698664b3] | 313 | if ( specialized != castExpr->get_arg() ) { | 
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|  | 314 | // assume here that the specialization incorporates the cast | 
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|  | 315 | return specialized; | 
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|  | 316 | } else { | 
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|  | 317 | return castExpr; | 
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|  | 318 | } | 
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| [01aeade] | 319 | } | 
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|  | 320 |  | 
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| [fea7ca7] | 321 | // Removing these for now. Richard put these in for some reason, but it's not clear why. | 
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|  | 322 | // In particular, copy constructors produce a comma expression, and with this code the parts | 
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|  | 323 | // of that comma expression are not specialized, which causes problems. | 
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| [01aeade] | 324 |  | 
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| [fea7ca7] | 325 | // Expression * Specialize::mutate( LogicalExpr *logicalExpr ) { | 
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|  | 326 | //      return logicalExpr; | 
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|  | 327 | // } | 
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| [01aeade] | 328 |  | 
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| [fea7ca7] | 329 | // Expression * Specialize::mutate( ConditionalExpr *condExpr ) { | 
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|  | 330 | //      return condExpr; | 
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|  | 331 | // } | 
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|  | 332 |  | 
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|  | 333 | // Expression * Specialize::mutate( CommaExpr *commaExpr ) { | 
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|  | 334 | //      return commaExpr; | 
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|  | 335 | // } | 
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| [626dbc10] | 336 |  | 
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|  | 337 | void convertSpecializations( std::list< Declaration* >& translationUnit ) { | 
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|  | 338 | Specialize spec; | 
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|  | 339 | mutateAll( translationUnit, spec ); | 
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|  | 340 | } | 
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| [51b73452] | 341 | } // namespace GenPoly | 
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| [01aeade] | 342 |  | 
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| [51587aa] | 343 | // Local Variables: // | 
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|  | 344 | // tab-width: 4 // | 
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|  | 345 | // mode: c++ // | 
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|  | 346 | // compile-command: "make install" // | 
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|  | 347 | // End: // | 
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