| 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 | // Specialize.cc --
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| 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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| 11 | // Last Modified By : Rob Schluntz
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| 12 | // Last Modified On : Thu Apr 28 15:17:45 2016
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| 13 | // Update Count     : 24
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| 14 | //
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| 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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| 19 | #include "GenPoly.h"
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| 20 | #include "PolyMutator.h"
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| 21 | 
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| 22 | #include "Parser/ParseNode.h"
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| 23 | 
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| 24 | #include "SynTree/Expression.h"
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| 25 | #include "SynTree/Statement.h"
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| 26 | #include "SynTree/Type.h"
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| 27 | #include "SynTree/Attribute.h"
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| 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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| 31 | #include "Common/UniqueName.h"
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| 32 | #include "Common/utility.h"
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| 33 | 
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| 34 | namespace GenPoly {
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| 35 |         const std::list<Label> noLabels;
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| 36 | 
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| 37 |         class Specialize : public PolyMutator {
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| 38 |           public:
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| 39 |                 Specialize( std::string paramPrefix = "_p" );
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| 40 | 
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| 41 |                 virtual Expression * mutate( ApplicationExpr *applicationExpr );
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| 42 |                 virtual Expression * mutate( AddressExpr *castExpr );
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| 43 |                 virtual Expression * mutate( CastExpr *castExpr );
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| 44 |                 // virtual Expression * mutate( LogicalExpr *logicalExpr );
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| 45 |                 // virtual Expression * mutate( ConditionalExpr *conditionalExpr );
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| 46 |                 // virtual Expression * mutate( CommaExpr *commaExpr );
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| 47 | 
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| 48 |           private:
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| 49 |                 Expression *createThunkFunction( FunctionType *funType, Expression *actual, InferredParams *inferParams = 0 );
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| 50 |                 Expression *doSpecialization( Type *formalType, Expression *actual, InferredParams *inferParams = 0 );
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| 51 |                 void handleExplicitParams( ApplicationExpr *appExpr );
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| 52 | 
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| 53 |                 UniqueName thunkNamer;
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| 54 |                 std::string paramPrefix;
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| 55 |         };
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| 56 | 
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| 57 |         void convertSpecializations( std::list< Declaration* >& translationUnit ) {
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| 58 |                 Specialize specializer;
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| 59 |                 mutateAll( translationUnit, specializer );
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| 60 |         }
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| 61 | 
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| 62 |         Specialize::Specialize( std::string paramPrefix )
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| 63 |                 : thunkNamer( "_thunk" ), paramPrefix( paramPrefix ) {
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| 64 |         }
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| 65 | 
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| 66 |         /// 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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| 67 |         bool needsSpecialization( Type *formalType, Type *actualType, TypeSubstitution *env ) {
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| 68 |                 if ( env ) {
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| 69 |                         using namespace ResolvExpr;
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| 70 |                         OpenVarSet openVars, closedVars;
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| 71 |                         AssertionSet need, have;
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| 72 |                         findOpenVars( formalType, openVars, closedVars, need, have, false );
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| 73 |                         findOpenVars( actualType, openVars, closedVars, need, have, true );
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| 74 |                         for ( OpenVarSet::const_iterator openVar = openVars.begin(); openVar != openVars.end(); ++openVar ) {
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| 75 |                                 Type *boundType = env->lookup( openVar->first );
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| 76 |                                 if ( ! boundType ) continue;
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| 77 |                                 if ( TypeInstType *typeInst = dynamic_cast< TypeInstType* >( boundType ) ) {
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| 78 |                                         if ( closedVars.find( typeInst->get_name() ) == closedVars.end() ) {
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| 79 |                                                 return true;
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| 80 |                                         } // if
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| 81 |                                 } else {
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| 82 |                                         return true;
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| 83 |                                 } // if
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| 84 |                         } // for
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| 85 |                         return false;
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| 86 |                 } else {
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| 87 |                         return false;
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| 88 |                 } // if
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| 89 |         }
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| 90 | 
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| 91 |         /// Generates a thunk that calls `actual` with type `funType` and returns its address
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| 92 |         Expression * Specialize::createThunkFunction( FunctionType *funType, Expression *actual, InferredParams *inferParams ) {
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| 93 |                 FunctionType *newType = funType->clone();
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| 94 |                 if ( env ) {
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| 95 |                         TypeSubstitution newEnv( *env );
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| 96 |                         // it is important to replace only occurrences of type variables that occur free in the
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| 97 |                         // thunk's type
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| 98 |                         newEnv.applyFree( newType );
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| 99 |                 } // if
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| 100 |                 // create new thunk with same signature as formal type (C linkage, empty body)
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| 101 |                 FunctionDecl *thunkFunc = new FunctionDecl( thunkNamer.newName(), DeclarationNode::NoStorageClass, LinkageSpec::C, newType, new CompoundStmt( std::list< std::string >() ), false, false );
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| 102 |                 thunkFunc->fixUniqueId();
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| 103 | 
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| 104 |                 // thunks may be generated and not used - silence warning with attribute
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| 105 |                 thunkFunc->get_attributes().push_back( new Attribute( "unused" ) );
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| 106 | 
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| 107 |                 // thread thunk parameters into call to actual function, naming thunk parameters as we go
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| 108 |                 UniqueName paramNamer( paramPrefix );
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| 109 |                 ApplicationExpr *appExpr = new ApplicationExpr( actual );
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| 110 |                 for ( std::list< DeclarationWithType* >::iterator param = thunkFunc->get_functionType()->get_parameters().begin(); param != thunkFunc->get_functionType()->get_parameters().end(); ++param ) {
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| 111 |                         (*param )->set_name( paramNamer.newName() );
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| 112 |                         appExpr->get_args().push_back( new VariableExpr( *param ) );
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| 113 |                 } // for
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| 114 |                 appExpr->set_env( maybeClone( env ) );
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| 115 |                 if ( inferParams ) {
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| 116 |                         appExpr->get_inferParams() = *inferParams;
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| 117 |                 } // if
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| 118 | 
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| 119 |                 // handle any specializations that may still be present
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| 120 |                 std::string oldParamPrefix = paramPrefix;
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| 121 |                 paramPrefix += "p";
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| 122 |                 // save stmtsToAdd in oldStmts
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| 123 |                 std::list< Statement* > oldStmts;
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| 124 |                 oldStmts.splice( oldStmts.end(), stmtsToAdd );
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| 125 |                 handleExplicitParams( appExpr );
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| 126 |                 paramPrefix = oldParamPrefix;
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| 127 |                 // write any statements added for recursive specializations into the thunk body
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| 128 |                 thunkFunc->get_statements()->get_kids().splice( thunkFunc->get_statements()->get_kids().end(), stmtsToAdd );
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| 129 |                 // restore oldStmts into stmtsToAdd
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| 130 |                 stmtsToAdd.splice( stmtsToAdd.end(), oldStmts );
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| 131 | 
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| 132 |                 // add return (or valueless expression) to the thunk
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| 133 |                 Statement *appStmt;
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| 134 |                 if ( funType->get_returnVals().empty() ) {
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| 135 |                         appStmt = new ExprStmt( noLabels, appExpr );
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| 136 |                 } else {
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| 137 |                         appStmt = new ReturnStmt( noLabels, appExpr );
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| 138 |                 } // if
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| 139 |                 thunkFunc->get_statements()->get_kids().push_back( appStmt );
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| 140 | 
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| 141 |                 // add thunk definition to queue of statements to add
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| 142 |                 stmtsToAdd.push_back( new DeclStmt( noLabels, thunkFunc ) );
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| 143 |                 // return address of thunk function as replacement expression
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| 144 |                 return new AddressExpr( new VariableExpr( thunkFunc ) );
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| 145 |         }
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| 146 | 
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| 147 |         Expression * Specialize::doSpecialization( Type *formalType, Expression *actual, InferredParams *inferParams ) {
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| 148 |                 assert( ! actual->get_results().empty() ); // using front, should have this assert
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| 149 |                 if ( needsSpecialization( formalType, actual->get_results().front(), env ) ) {
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| 150 |                         FunctionType *funType;
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| 151 |                         if ( ( funType = getFunctionType( formalType ) ) ) {
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| 152 |                                 ApplicationExpr *appExpr;
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| 153 |                                 VariableExpr *varExpr;
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| 154 |                                 if ( ( appExpr = dynamic_cast<ApplicationExpr*>( actual ) ) ) {
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| 155 |                                         return createThunkFunction( funType, appExpr->get_function(), inferParams );
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| 156 |                                 } else if ( ( varExpr = dynamic_cast<VariableExpr*>( actual ) ) ) {
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| 157 |                                         return createThunkFunction( funType, varExpr, inferParams );
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| 158 |                                 } else {
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| 159 |                                         // This likely won't work, as anything that could build an ApplicationExpr probably hit one of the previous two branches
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| 160 |                                         return createThunkFunction( funType, actual, inferParams );
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| 161 |                                 }
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| 162 |                         } else {
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| 163 |                                 return actual;
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| 164 |                         } // if
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| 165 |                 } else {
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| 166 |                         return actual;
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| 167 |                 } // if
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| 168 |         }
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| 169 | 
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| 170 |         void Specialize::handleExplicitParams( ApplicationExpr *appExpr ) {
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| 171 |                 // create thunks for the explicit parameters
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| 172 |                 assert( ! appExpr->get_function()->get_results().empty() );
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| 173 |                 FunctionType *function = getFunctionType( appExpr->get_function()->get_results().front() );
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| 174 |                 assert( function );
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| 175 |                 std::list< DeclarationWithType* >::iterator formal;
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| 176 |                 std::list< Expression* >::iterator actual;
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| 177 |                 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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| 178 |                         *actual = doSpecialization( (*formal )->get_type(), *actual, &appExpr->get_inferParams() );
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| 179 |                 }
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| 180 |         }
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| 181 | 
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| 182 |         Expression * Specialize::mutate( ApplicationExpr *appExpr ) {
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| 183 |                 appExpr->get_function()->acceptMutator( *this );
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| 184 |                 mutateAll( appExpr->get_args(), *this );
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| 185 | 
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| 186 |                 // create thunks for the inferred parameters
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| 187 |                 for ( InferredParams::iterator inferParam = appExpr->get_inferParams().begin(); inferParam != appExpr->get_inferParams().end(); ++inferParam ) {
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| 188 |                         inferParam->second.expr = doSpecialization( inferParam->second.formalType, inferParam->second.expr, &appExpr->get_inferParams() );
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| 189 |                 }
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| 190 | 
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| 191 |                 handleExplicitParams( appExpr );
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| 192 | 
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| 193 |                 return appExpr;
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| 194 |         }
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| 195 | 
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| 196 |         Expression * Specialize::mutate( AddressExpr *addrExpr ) {
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| 197 |                 addrExpr->get_arg()->acceptMutator( *this );
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| 198 |                 assert( ! addrExpr->get_results().empty() );
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| 199 |                 addrExpr->set_arg( doSpecialization( addrExpr->get_results().front(), addrExpr->get_arg() ) );
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| 200 |                 return addrExpr;
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| 201 |         }
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| 202 | 
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| 203 |         Expression * Specialize::mutate( CastExpr *castExpr ) {
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| 204 |                 castExpr->get_arg()->acceptMutator( *this );
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| 205 |                 if ( castExpr->get_results().empty() ) {
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| 206 |                         // can't specialize if we don't have a return value
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| 207 |                         return castExpr;
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| 208 |                 }
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| 209 |                 Expression *specialized = doSpecialization( castExpr->get_results().front(), castExpr->get_arg() );
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| 210 |                 if ( specialized != castExpr->get_arg() ) {
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| 211 |                         // assume here that the specialization incorporates the cast
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| 212 |                         return specialized;
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| 213 |                 } else {
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| 214 |                         return castExpr;
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| 215 |                 }
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| 216 |         }
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| 217 | 
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| 218 |         // Removing these for now. Richard put these in for some reason, but it's not clear why.
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| 219 |         // In particular, copy constructors produce a comma expression, and with this code the parts
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| 220 |         // of that comma expression are not specialized, which causes problems.
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| 221 | 
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| 222 |         // Expression * Specialize::mutate( LogicalExpr *logicalExpr ) {
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| 223 |         //      return logicalExpr;
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| 224 |         // }
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| 225 | 
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| 226 |         // Expression * Specialize::mutate( ConditionalExpr *condExpr ) {
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| 227 |         //      return condExpr;
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| 228 |         // }
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| 229 | 
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| 230 |         // Expression * Specialize::mutate( CommaExpr *commaExpr ) {
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| 231 |         //      return commaExpr;
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| 232 |         // }
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| 233 | } // namespace GenPoly
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| 234 | 
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| 235 | // Local Variables: //
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| 236 | // tab-width: 4 //
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| 237 | // mode: c++ //
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| 238 | // compile-command: "make install" //
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| 239 | // End: //
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