[972e6f7] | 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 | // Autogen.cc --
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| 8 | //
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| 9 | // Author : Rob Schluntz
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| 10 | // Created On : Thu Mar 03 15:45:56 2016
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[fa4805f] | 11 | // Last Modified By : Andrew Beach
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[6ea87486] | 12 | // Last Modified On : Fri Jul 14 16:41:00 2017
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| 13 | // Update Count : 62
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[972e6f7] | 14 | //
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| 15 |
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| 16 | #include "Autogen.h"
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[30f9072] | 17 |
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| 18 | #include <algorithm> // for count_if
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[e3e16bc] | 19 | #include <cassert> // for strict_dynamic_cast, assert, assertf
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[30f9072] | 20 | #include <iterator> // for back_insert_iterator, back_inserter
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| 21 | #include <list> // for list, _List_iterator, list<>::iter...
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| 22 | #include <set> // for set, _Rb_tree_const_iterator
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[be9288a] | 23 | #include <utility> // for pair
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[30f9072] | 24 | #include <vector> // for vector
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| 25 |
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| 26 | #include "AddVisit.h" // for addVisit
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[9236060] | 27 | #include "CodeGen/OperatorTable.h" // for isCtorDtor, isCtorDtorAssign
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[d67cdb7] | 28 | #include "Common/PassVisitor.h" // for PassVisitor
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[30f9072] | 29 | #include "Common/ScopedMap.h" // for ScopedMap<>::const_iterator, Scope...
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| 30 | #include "Common/utility.h" // for cloneAll, operator+
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| 31 | #include "GenPoly/ScopedSet.h" // for ScopedSet, ScopedSet<>::iterator
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[d67cdb7] | 32 | #include "InitTweak/GenInit.h" // for fixReturnStatements
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| 33 | #include "ResolvExpr/Resolver.h" // for resolveDecl
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[30f9072] | 34 | #include "SymTab/Mangler.h" // for Mangler
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[9236060] | 35 | #include "SynTree/Attribute.h" // For Attribute
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[30f9072] | 36 | #include "SynTree/Mutator.h" // for maybeMutate
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| 37 | #include "SynTree/Statement.h" // for CompoundStmt, ReturnStmt, ExprStmt
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| 38 | #include "SynTree/Type.h" // for FunctionType, Type, TypeInstType
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| 39 | #include "SynTree/Visitor.h" // for maybeAccept, Visitor, acceptAll
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| 40 |
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| 41 | class Attribute;
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[972e6f7] | 42 |
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| 43 | namespace SymTab {
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[5f98ce5] | 44 | Type * SizeType = 0;
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[207c7e1d] | 45 | typedef ScopedMap< std::string, bool > TypeMap;
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| 46 |
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| 47 | /// Data used to generate functions generically. Specifically, the name of the generated function, a function which generates the routine protoype, and a map which contains data to determine whether a function should be generated.
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| 48 | struct FuncData {
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| 49 | typedef FunctionType * (*TypeGen)( Type * );
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| 50 | FuncData( const std::string & fname, const TypeGen & genType, TypeMap & map ) : fname( fname ), genType( genType ), map( map ) {}
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| 51 | std::string fname;
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| 52 | TypeGen genType;
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| 53 | TypeMap & map;
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| 54 | };
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[5f98ce5] | 55 |
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[d67cdb7] | 56 | struct AutogenerateRoutines final : public WithDeclsToAdd, public WithVisitorRef<AutogenerateRoutines>, public WithGuards, public WithShortCircuiting {
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[207c7e1d] | 57 | AutogenerateRoutines();
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| 58 |
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[d67cdb7] | 59 | void previsit( EnumDecl * enumDecl );
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| 60 | void previsit( StructDecl * structDecl );
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| 61 | void previsit( UnionDecl * structDecl );
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| 62 | void previsit( TypeDecl * typeDecl );
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| 63 | void previsit( TraitDecl * traitDecl );
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| 64 | void previsit( FunctionDecl * functionDecl );
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[972e6f7] | 65 |
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[d67cdb7] | 66 | void previsit( FunctionType * ftype );
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| 67 | void previsit( PointerType * ptype );
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[972e6f7] | 68 |
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[d67cdb7] | 69 | void previsit( CompoundStmt * compoundStmt );
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[972e6f7] | 70 |
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[1486116] | 71 | private:
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[d67cdb7] | 72 | GenPoly::ScopedSet< std::string > structsDone;
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[1486116] | 73 | unsigned int functionNesting = 0; // current level of nested functions
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[207c7e1d] | 74 | /// Note: the following maps could be ScopedSets, but it should be easier to work
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| 75 | /// deleted functions in if they are maps, since the value false can be inserted
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| 76 | /// at the current scope without affecting outer scopes or requiring copies.
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| 77 | TypeMap copyable, assignable, constructable, destructable;
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| 78 | std::vector< FuncData > data;
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[1486116] | 79 | };
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| 80 |
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| 81 | /// generates routines for tuple types.
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[d67cdb7] | 82 | struct AutogenTupleRoutines : public WithDeclsToAdd, public WithVisitorRef<AutogenTupleRoutines>, public WithGuards, public WithShortCircuiting {
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| 83 | void previsit( FunctionDecl *functionDecl );
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[1486116] | 84 |
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[d67cdb7] | 85 | void postvisit( TupleType *tupleType );
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[1486116] | 86 |
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[d67cdb7] | 87 | void previsit( CompoundStmt *compoundStmt );
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[1486116] | 88 |
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| 89 | private:
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| 90 | unsigned int functionNesting = 0; // current level of nested functions
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| 91 | GenPoly::ScopedSet< std::string > seenTuples;
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[972e6f7] | 92 | };
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| 93 |
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| 94 | void autogenerateRoutines( std::list< Declaration * > &translationUnit ) {
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[d67cdb7] | 95 | PassVisitor<AutogenerateRoutines> generator;
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| 96 | acceptAll( translationUnit, generator );
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[1486116] | 97 |
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| 98 | // needs to be done separately because AutogenerateRoutines skips types that appear as function arguments, etc.
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| 99 | // AutogenTupleRoutines tupleGenerator;
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[d67cdb7] | 100 | // acceptAll( translationUnit, tupleGenerator );
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[972e6f7] | 101 | }
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| 102 |
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[356189a] | 103 | bool isUnnamedBitfield( ObjectDecl * obj ) {
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[d67cdb7] | 104 | return obj != nullptr && obj->get_name() == "" && obj->get_bitfieldWidth() != nullptr;
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[356189a] | 105 | }
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| 106 |
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[186fd86] | 107 | /// inserts a forward declaration for functionDecl into declsToAdd
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| 108 | void addForwardDecl( FunctionDecl * functionDecl, std::list< Declaration * > & declsToAdd ) {
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| 109 | FunctionDecl * decl = functionDecl->clone();
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| 110 | delete decl->get_statements();
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[d67cdb7] | 111 | decl->set_statements( nullptr );
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[186fd86] | 112 | declsToAdd.push_back( decl );
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| 113 | decl->fixUniqueId();
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[972e6f7] | 114 | }
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| 115 |
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[186fd86] | 116 | /// given type T, generate type of default ctor/dtor, i.e. function type void (*) (T *)
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| 117 | FunctionType * genDefaultType( Type * paramType ) {
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| 118 | FunctionType *ftype = new FunctionType( Type::Qualifiers(), false );
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[49148d5] | 119 | ObjectDecl *dstParam = new ObjectDecl( "_dst", Type::StorageClasses(), LinkageSpec::Cforall, nullptr, new ReferenceType( Type::Qualifiers(), paramType->clone() ), nullptr );
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[186fd86] | 120 | ftype->get_parameters().push_back( dstParam );
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[972e6f7] | 121 |
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[186fd86] | 122 | return ftype;
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| 123 | }
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[d0f8b19] | 124 |
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[186fd86] | 125 | /// given type T, generate type of copy ctor, i.e. function type void (*) (T *, T)
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| 126 | FunctionType * genCopyType( Type * paramType ) {
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| 127 | FunctionType *ftype = genDefaultType( paramType );
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[68fe077a] | 128 | ObjectDecl *srcParam = new ObjectDecl( "_src", Type::StorageClasses(), LinkageSpec::Cforall, nullptr, paramType->clone(), nullptr );
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[186fd86] | 129 | ftype->get_parameters().push_back( srcParam );
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| 130 | return ftype;
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| 131 | }
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[d0f8b19] | 132 |
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[186fd86] | 133 | /// given type T, generate type of assignment, i.e. function type T (*) (T *, T)
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[1486116] | 134 | FunctionType * genAssignType( Type * paramType ) {
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[186fd86] | 135 | FunctionType *ftype = genCopyType( paramType );
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[68fe077a] | 136 | ObjectDecl *returnVal = new ObjectDecl( "_ret", Type::StorageClasses(), LinkageSpec::Cforall, nullptr, paramType->clone(), nullptr );
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[186fd86] | 137 | ftype->get_returnVals().push_back( returnVal );
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| 138 | return ftype;
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| 139 | }
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[972e6f7] | 140 |
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[186fd86] | 141 | /// generate a function decl from a name and type. Nesting depth determines whether
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| 142 | /// the declaration is static or not; optional paramter determines if declaration is intrinsic
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| 143 | FunctionDecl * genFunc( const std::string & fname, FunctionType * ftype, unsigned int functionNesting, bool isIntrinsic = false ) {
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| 144 | // Routines at global scope marked "static" to prevent multiple definitions in separate translation units
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[972e6f7] | 145 | // because each unit generates copies of the default routines for each aggregate.
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[68fe077a] | 146 | Type::StorageClasses scs = functionNesting > 0 ? Type::StorageClasses() : Type::StorageClasses( Type::Static );
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[186fd86] | 147 | LinkageSpec::Spec spec = isIntrinsic ? LinkageSpec::Intrinsic : LinkageSpec::AutoGen;
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[a7c90d4] | 148 | FunctionDecl * decl = new FunctionDecl( fname, scs, spec, ftype, new CompoundStmt( noLabels ),
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[ddfd945] | 149 | std::list< Attribute * >(), Type::FuncSpecifiers( Type::Inline ) );
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[186fd86] | 150 | decl->fixUniqueId();
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| 151 | return decl;
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| 152 | }
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[d0f8b19] | 153 |
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[207c7e1d] | 154 | /// inserts base type of first argument into map if pred(funcDecl) is true
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| 155 | void insert( FunctionDecl *funcDecl, TypeMap & map, FunctionDecl * (*pred)(Declaration *) ) {
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| 156 | // insert type into constructable, etc. map if appropriate
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| 157 | if ( pred( funcDecl ) ) {
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| 158 | FunctionType * ftype = funcDecl->get_functionType();
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| 159 | assert( ! ftype->get_parameters().empty() );
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[ce8c12f] | 160 | Type * t = InitTweak::getPointerBase( ftype->get_parameters().front()->get_type() );
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| 161 | assert( t );
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[207c7e1d] | 162 | map.insert( Mangler::mangleType( t ), true );
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| 163 | }
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| 164 | }
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| 165 |
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| 166 | /// using map and t, determines if is constructable, etc.
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| 167 | bool lookup( const TypeMap & map, Type * t ) {
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[108f3cdb] | 168 | assertf( t, "Autogenerate lookup was given non-type: %s", toString( t ).c_str() );
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[207c7e1d] | 169 | if ( dynamic_cast< PointerType * >( t ) ) {
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| 170 | // will need more complicated checking if we want this to work with pointer types, since currently
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| 171 | return true;
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| 172 | } else if ( ArrayType * at = dynamic_cast< ArrayType * >( t ) ) {
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| 173 | // an array's constructor, etc. is generated on the fly based on the base type's constructor, etc.
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| 174 | return lookup( map, at->get_base() );
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| 175 | }
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| 176 | TypeMap::const_iterator it = map.find( Mangler::mangleType( t ) );
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| 177 | if ( it != map.end() ) return it->second;
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| 178 | // something that does not appear in the map is by default not constructable, etc.
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| 179 | return false;
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| 180 | }
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| 181 |
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| 182 | /// using map and aggr, examines each member to determine if constructor, etc. should be generated
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[108f3cdb] | 183 | template<typename Container>
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| 184 | bool shouldGenerate( const TypeMap & map, const Container & container ) {
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| 185 | for ( Type * t : container ) {
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| 186 | if ( ! lookup( map, t ) ) return false;
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[207c7e1d] | 187 | }
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| 188 | return true;
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| 189 | }
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| 190 |
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| 191 | /// data structure for abstracting the generation of special functions
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[108f3cdb] | 192 | template< typename OutputIterator, typename Container >
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[207c7e1d] | 193 | struct FuncGenerator {
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[108f3cdb] | 194 | const Container & container;
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| 195 | Type *refType;
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[207c7e1d] | 196 | unsigned int functionNesting;
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| 197 | const std::list< TypeDecl* > & typeParams;
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| 198 | OutputIterator out;
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[108f3cdb] | 199 | FuncGenerator( const Container & container, Type *refType, unsigned int functionNesting, const std::list< TypeDecl* > & typeParams, OutputIterator out ) : container( container ), refType( refType ), functionNesting( functionNesting ), typeParams( typeParams ), out( out ) {}
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[207c7e1d] | 200 |
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| 201 | /// generates a function (?{}, ?=?, ^?{}) based on the data argument and members. If function is generated, inserts the type into the map.
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[bcda04c] | 202 | void gen( const FuncData & data, bool concurrent_type ) {
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[108f3cdb] | 203 | if ( ! shouldGenerate( data.map, container ) ) return;
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[207c7e1d] | 204 | FunctionType * ftype = data.genType( refType );
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[bcda04c] | 205 |
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[4e8949f] | 206 | if ( concurrent_type && CodeGen::isDestructor( data.fname ) ) {
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[108f3cdb] | 207 | ftype->parameters.front()->get_type()->set_mutex( true );
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[bcda04c] | 208 | }
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| 209 |
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[108f3cdb] | 210 | cloneAll( typeParams, ftype->forall );
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[207c7e1d] | 211 | *out++ = genFunc( data.fname, ftype, functionNesting );
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| 212 | data.map.insert( Mangler::mangleType( refType ), true );
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| 213 | }
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| 214 | };
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| 215 |
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[108f3cdb] | 216 | template< typename OutputIterator, typename Container >
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| 217 | FuncGenerator<OutputIterator, Container> makeFuncGenerator( const Container & container, Type *refType, unsigned int functionNesting, const std::list< TypeDecl* > & typeParams, OutputIterator out ) {
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| 218 | return FuncGenerator<OutputIterator, Container>( container, refType, functionNesting, typeParams, out );
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[207c7e1d] | 219 | }
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| 220 |
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[186fd86] | 221 | /// generates a single enumeration assignment expression
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| 222 | ApplicationExpr * genEnumAssign( FunctionType * ftype, FunctionDecl * assignDecl ) {
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[d0f8b19] | 223 | // enum copy construct and assignment is just C-style assignment.
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| 224 | // this looks like a bad recursive call, but code gen will turn it into
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| 225 | // a C-style assignment.
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| 226 | // This happens before function pointer type conversion, so need to do it manually here
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[186fd86] | 227 | // NOTE: ftype is not necessarily the functionType belonging to assignDecl - ftype is the
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| 228 | // type of the function that this expression is being generated for (so that the correct
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| 229 | // parameters) are using in the variable exprs
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| 230 | assert( ftype->get_parameters().size() == 2 );
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[e3e16bc] | 231 | ObjectDecl * dstParam = strict_dynamic_cast< ObjectDecl * >( ftype->get_parameters().front() );
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| 232 | ObjectDecl * srcParam = strict_dynamic_cast< ObjectDecl * >( ftype->get_parameters().back() );
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[186fd86] | 233 |
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[d0f8b19] | 234 | VariableExpr * assignVarExpr = new VariableExpr( assignDecl );
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[906e24d] | 235 | Type * assignVarExprType = assignVarExpr->get_result();
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[d0f8b19] | 236 | assignVarExprType = new PointerType( Type::Qualifiers(), assignVarExprType );
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[906e24d] | 237 | assignVarExpr->set_result( assignVarExprType );
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[d0f8b19] | 238 | ApplicationExpr * assignExpr = new ApplicationExpr( assignVarExpr );
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| 239 | assignExpr->get_args().push_back( new VariableExpr( dstParam ) );
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| 240 | assignExpr->get_args().push_back( new VariableExpr( srcParam ) );
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[186fd86] | 241 | return assignExpr;
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[972e6f7] | 242 | }
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| 243 |
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[186fd86] | 244 | // E ?=?(E volatile*, int),
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| 245 | // ?=?(E _Atomic volatile*, int);
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[d7dc824] | 246 | void makeEnumFunctions( EnumInstType *refType, unsigned int functionNesting, std::list< Declaration * > &declsToAdd ) {
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[972e6f7] | 247 |
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[186fd86] | 248 | // T ?=?(E *, E);
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| 249 | FunctionType *assignType = genAssignType( refType );
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[9554d9b] | 250 |
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[186fd86] | 251 | // void ?{}(E *); void ^?{}(E *);
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| 252 | FunctionType * ctorType = genDefaultType( refType->clone() );
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| 253 | FunctionType * dtorType = genDefaultType( refType->clone() );
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[9554d9b] | 254 |
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[186fd86] | 255 | // void ?{}(E *, E);
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| 256 | FunctionType *copyCtorType = genCopyType( refType->clone() );
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[9554d9b] | 257 |
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[46adb83] | 258 | // add unused attribute to parameters of default constructor and destructor
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| 259 | ctorType->get_parameters().front()->get_attributes().push_back( new Attribute( "unused" ) );
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| 260 | dtorType->get_parameters().front()->get_attributes().push_back( new Attribute( "unused" ) );
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| 261 |
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[186fd86] | 262 | // xxx - should we also generate void ?{}(E *, int) and E ?{}(E *, E)?
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| 263 | // right now these cases work, but that might change.
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[9554d9b] | 264 |
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[186fd86] | 265 | // xxx - Temporary: make these functions intrinsic so they codegen as C assignment.
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| 266 | // Really they're something of a cross between instrinsic and autogen, so should
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| 267 | // probably make a new linkage type
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| 268 | FunctionDecl *assignDecl = genFunc( "?=?", assignType, functionNesting, true );
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| 269 | FunctionDecl *ctorDecl = genFunc( "?{}", ctorType, functionNesting, true );
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| 270 | FunctionDecl *copyCtorDecl = genFunc( "?{}", copyCtorType, functionNesting, true );
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| 271 | FunctionDecl *dtorDecl = genFunc( "^?{}", dtorType, functionNesting, true );
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[9554d9b] | 272 |
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[186fd86] | 273 | // body is either return stmt or expr stmt
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| 274 | assignDecl->get_statements()->get_kids().push_back( new ReturnStmt( noLabels, genEnumAssign( assignType, assignDecl ) ) );
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| 275 | copyCtorDecl->get_statements()->get_kids().push_back( new ExprStmt( noLabels, genEnumAssign( copyCtorType, assignDecl ) ) );
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[9554d9b] | 276 |
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[186fd86] | 277 | declsToAdd.push_back( ctorDecl );
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| 278 | declsToAdd.push_back( copyCtorDecl );
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| 279 | declsToAdd.push_back( dtorDecl );
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[1486116] | 280 | declsToAdd.push_back( assignDecl ); // assignment should come last since it uses copy constructor in return
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[972e6f7] | 281 | }
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| 282 |
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[186fd86] | 283 | /// generates a single struct member operation (constructor call, destructor call, assignment call)
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[74b007ba] | 284 | void makeStructMemberOp( ObjectDecl * dstParam, Expression * src, DeclarationWithType * field, FunctionDecl * func, bool forward = true ) {
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[39f84a4] | 285 | InitTweak::InitExpander srcParam( src );
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| 286 |
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[49148d5] | 287 | // assign to destination
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[e3e16bc] | 288 | Expression *dstselect = new MemberExpr( field, new CastExpr( new VariableExpr( dstParam ), strict_dynamic_cast< ReferenceType* >( dstParam->get_type() )->get_base()->clone() ) );
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[39f84a4] | 289 | genImplicitCall( srcParam, dstselect, func->get_name(), back_inserter( func->get_statements()->get_kids() ), field, forward );
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[dac0aa9] | 290 | }
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| 291 |
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[186fd86] | 292 | /// generates the body of a struct function by iterating the struct members (via parameters) - generates default ctor, copy ctor, assignment, and dtor bodies, but NOT field ctor bodies
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[972e6f7] | 293 | template<typename Iterator>
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[74b007ba] | 294 | void makeStructFunctionBody( Iterator member, Iterator end, FunctionDecl * func, bool forward = true ) {
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[972e6f7] | 295 | for ( ; member != end; ++member ) {
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[dac0aa9] | 296 | if ( DeclarationWithType *field = dynamic_cast< DeclarationWithType * >( *member ) ) { // otherwise some form of type declaration, e.g. Aggregate
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[972e6f7] | 297 | // query the type qualifiers of this field and skip assigning it if it is marked const.
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| 298 | // If it is an array type, we need to strip off the array layers to find its qualifiers.
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[dac0aa9] | 299 | Type * type = field->get_type();
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[972e6f7] | 300 | while ( ArrayType * at = dynamic_cast< ArrayType * >( type ) ) {
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| 301 | type = at->get_base();
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| 302 | }
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| 303 |
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[615a096] | 304 | if ( type->get_const() && func->get_name() == "?=?" ) {
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[cad355a] | 305 | // don't assign const members, but do construct/destruct
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[972e6f7] | 306 | continue;
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| 307 | }
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| 308 |
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[fb24492] | 309 | if ( field->get_name() == "" ) {
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| 310 | // don't assign to anonymous members
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| 311 | // xxx - this is a temporary fix. Anonymous members tie into
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| 312 | // our inheritance model. I think the correct way to handle this is to
|
---|
| 313 | // cast the structure to the type of the member and let the resolver
|
---|
| 314 | // figure out whether it's valid and have a pass afterwards that fixes
|
---|
| 315 | // the assignment to use pointer arithmetic with the offset of the
|
---|
| 316 | // member, much like how generic type members are handled.
|
---|
| 317 | continue;
|
---|
| 318 | }
|
---|
| 319 |
|
---|
[972e6f7] | 320 | assert( ! func->get_functionType()->get_parameters().empty() );
|
---|
| 321 | ObjectDecl * dstParam = dynamic_cast<ObjectDecl*>( func->get_functionType()->get_parameters().front() );
|
---|
[d67cdb7] | 322 | ObjectDecl * srcParam = nullptr;
|
---|
[972e6f7] | 323 | if ( func->get_functionType()->get_parameters().size() == 2 ) {
|
---|
| 324 | srcParam = dynamic_cast<ObjectDecl*>( func->get_functionType()->get_parameters().back() );
|
---|
| 325 | }
|
---|
| 326 | // srcParam may be NULL, in which case we have default ctor/dtor
|
---|
| 327 | assert( dstParam );
|
---|
| 328 |
|
---|
[d67cdb7] | 329 | Expression *srcselect = srcParam ? new MemberExpr( field, new VariableExpr( srcParam ) ) : nullptr;
|
---|
[74b007ba] | 330 | makeStructMemberOp( dstParam, srcselect, field, func, forward );
|
---|
[972e6f7] | 331 | } // if
|
---|
| 332 | } // for
|
---|
| 333 | } // makeStructFunctionBody
|
---|
| 334 |
|
---|
[dac0aa9] | 335 | /// generate the body of a constructor which takes parameters that match fields, e.g.
|
---|
| 336 | /// void ?{}(A *, int) and void?{}(A *, int, int) for a struct A which has two int fields.
|
---|
| 337 | template<typename Iterator>
|
---|
[74b007ba] | 338 | void makeStructFieldCtorBody( Iterator member, Iterator end, FunctionDecl * func ) {
|
---|
[dac0aa9] | 339 | FunctionType * ftype = func->get_functionType();
|
---|
| 340 | std::list<DeclarationWithType*> & params = ftype->get_parameters();
|
---|
| 341 | assert( params.size() >= 2 ); // should not call this function for default ctor, etc.
|
---|
| 342 |
|
---|
| 343 | // skip 'this' parameter
|
---|
| 344 | ObjectDecl * dstParam = dynamic_cast<ObjectDecl*>( params.front() );
|
---|
| 345 | assert( dstParam );
|
---|
| 346 | std::list<DeclarationWithType*>::iterator parameter = params.begin()+1;
|
---|
| 347 | for ( ; member != end; ++member ) {
|
---|
| 348 | if ( DeclarationWithType * field = dynamic_cast<DeclarationWithType*>( *member ) ) {
|
---|
[0b4d93ab] | 349 | if ( isUnnamedBitfield( dynamic_cast< ObjectDecl * > ( field ) ) ) {
|
---|
| 350 | // don't make a function whose parameter is an unnamed bitfield
|
---|
| 351 | continue;
|
---|
| 352 | } else if ( field->get_name() == "" ) {
|
---|
| 353 | // don't assign to anonymous members
|
---|
| 354 | // xxx - this is a temporary fix. Anonymous members tie into
|
---|
| 355 | // our inheritance model. I think the correct way to handle this is to
|
---|
| 356 | // cast the structure to the type of the member and let the resolver
|
---|
| 357 | // figure out whether it's valid and have a pass afterwards that fixes
|
---|
| 358 | // the assignment to use pointer arithmetic with the offset of the
|
---|
| 359 | // member, much like how generic type members are handled.
|
---|
| 360 | continue;
|
---|
| 361 | } else if ( parameter != params.end() ) {
|
---|
[dac0aa9] | 362 | // matching parameter, initialize field with copy ctor
|
---|
| 363 | Expression *srcselect = new VariableExpr(*parameter);
|
---|
[74b007ba] | 364 | makeStructMemberOp( dstParam, srcselect, field, func );
|
---|
[dac0aa9] | 365 | ++parameter;
|
---|
| 366 | } else {
|
---|
| 367 | // no matching parameter, initialize field with default ctor
|
---|
[d67cdb7] | 368 | makeStructMemberOp( dstParam, nullptr, field, func );
|
---|
[dac0aa9] | 369 | }
|
---|
| 370 | }
|
---|
| 371 | }
|
---|
| 372 | }
|
---|
| 373 |
|
---|
[108f3cdb] | 374 | Type * declToType( Declaration * decl ) {
|
---|
| 375 | if ( DeclarationWithType * dwt = dynamic_cast< DeclarationWithType * >( decl ) ) {
|
---|
| 376 | return dwt->get_type();
|
---|
| 377 | }
|
---|
| 378 | return nullptr;
|
---|
| 379 | }
|
---|
| 380 |
|
---|
[186fd86] | 381 | /// generates struct constructors, destructor, and assignment functions
|
---|
[207c7e1d] | 382 | void makeStructFunctions( StructDecl *aggregateDecl, StructInstType *refType, unsigned int functionNesting, std::list< Declaration * > & declsToAdd, const std::vector< FuncData > & data ) {
|
---|
[fa4805f] | 383 | // Builtins do not use autogeneration.
|
---|
[d67cdb7] | 384 | if ( LinkageSpec::isBuiltin( aggregateDecl->get_linkage() ) ) {
|
---|
[fa4805f] | 385 | return;
|
---|
| 386 | }
|
---|
| 387 |
|
---|
[972e6f7] | 388 | // Make function polymorphic in same parameters as generic struct, if applicable
|
---|
[d67cdb7] | 389 | const std::list< TypeDecl * > & typeParams = aggregateDecl->get_parameters(); // List of type variables to be placed on the generated functions
|
---|
[972e6f7] | 390 |
|
---|
[207c7e1d] | 391 | // generate each of the functions based on the supplied FuncData objects
|
---|
| 392 | std::list< FunctionDecl * > newFuncs;
|
---|
[108f3cdb] | 393 | // structure that iterates aggregate decl members, returning their types
|
---|
| 394 | auto generator = makeFuncGenerator( lazy_map( aggregateDecl->members, declToType ), refType, functionNesting, typeParams, back_inserter( newFuncs ) );
|
---|
[207c7e1d] | 395 | for ( const FuncData & d : data ) {
|
---|
[bcda04c] | 396 | generator.gen( d, aggregateDecl->is_thread() || aggregateDecl->is_monitor() );
|
---|
[207c7e1d] | 397 | }
|
---|
[bcda04c] | 398 |
|
---|
[207c7e1d] | 399 | // field ctors are only generated if default constructor and copy constructor are both generated
|
---|
[bff227f] | 400 | unsigned numCtors = std::count_if( newFuncs.begin(), newFuncs.end(), [](FunctionDecl * dcl) { return CodeGen::isConstructor( dcl->get_name() ); } );
|
---|
[972e6f7] | 401 |
|
---|
[9f70ab57] | 402 | if ( functionNesting == 0 ) {
|
---|
| 403 | // forward declare if top-level struct, so that
|
---|
| 404 | // type is complete as soon as its body ends
|
---|
[1486116] | 405 | // Note: this is necessary if we want structs which contain
|
---|
| 406 | // generic (otype) structs as members.
|
---|
[207c7e1d] | 407 | for ( FunctionDecl * dcl : newFuncs ) {
|
---|
| 408 | addForwardDecl( dcl, declsToAdd );
|
---|
| 409 | }
|
---|
| 410 | }
|
---|
| 411 |
|
---|
| 412 | for ( FunctionDecl * dcl : newFuncs ) {
|
---|
| 413 | // generate appropriate calls to member ctor, assignment
|
---|
| 414 | // destructor needs to do everything in reverse, so pass "forward" based on whether the function is a destructor
|
---|
[bff227f] | 415 | if ( ! CodeGen::isDestructor( dcl->get_name() ) ) {
|
---|
[74b007ba] | 416 | makeStructFunctionBody( aggregateDecl->get_members().begin(), aggregateDecl->get_members().end(), dcl );
|
---|
[207c7e1d] | 417 | } else {
|
---|
[74b007ba] | 418 | makeStructFunctionBody( aggregateDecl->get_members().rbegin(), aggregateDecl->get_members().rend(), dcl, false );
|
---|
[207c7e1d] | 419 | }
|
---|
[bff227f] | 420 | if ( CodeGen::isAssignment( dcl->get_name() ) ) {
|
---|
[207c7e1d] | 421 | // assignment needs to return a value
|
---|
| 422 | FunctionType * assignType = dcl->get_functionType();
|
---|
| 423 | assert( assignType->get_parameters().size() == 2 );
|
---|
[e3e16bc] | 424 | ObjectDecl * srcParam = strict_dynamic_cast< ObjectDecl * >( assignType->get_parameters().back() );
|
---|
[207c7e1d] | 425 | dcl->get_statements()->get_kids().push_back( new ReturnStmt( noLabels, new VariableExpr( srcParam ) ) );
|
---|
| 426 | }
|
---|
| 427 | declsToAdd.push_back( dcl );
|
---|
[9f70ab57] | 428 | }
|
---|
| 429 |
|
---|
[dac0aa9] | 430 | // create constructors which take each member type as a parameter.
|
---|
[f5ef08c] | 431 | // for example, for struct A { int x, y; }; generate
|
---|
[207c7e1d] | 432 | // void ?{}(A *, int) and void ?{}(A *, int, int)
|
---|
| 433 | // Field constructors are only generated if default and copy constructor
|
---|
| 434 | // are generated, since they need access to both
|
---|
| 435 | if ( numCtors == 2 ) {
|
---|
| 436 | FunctionType * memCtorType = genDefaultType( refType );
|
---|
| 437 | cloneAll( typeParams, memCtorType->get_forall() );
|
---|
| 438 | for ( std::list<Declaration *>::iterator i = aggregateDecl->get_members().begin(); i != aggregateDecl->get_members().end(); ++i ) {
|
---|
| 439 | DeclarationWithType * member = dynamic_cast<DeclarationWithType *>( *i );
|
---|
| 440 | assert( member );
|
---|
| 441 | if ( isUnnamedBitfield( dynamic_cast< ObjectDecl * > ( member ) ) ) {
|
---|
| 442 | // don't make a function whose parameter is an unnamed bitfield
|
---|
| 443 | continue;
|
---|
| 444 | } else if ( member->get_name() == "" ) {
|
---|
| 445 | // don't assign to anonymous members
|
---|
| 446 | // xxx - this is a temporary fix. Anonymous members tie into
|
---|
| 447 | // our inheritance model. I think the correct way to handle this is to
|
---|
| 448 | // cast the structure to the type of the member and let the resolver
|
---|
[49148d5] | 449 | // figure out whether it's valid/choose the correct unnamed member
|
---|
[207c7e1d] | 450 | continue;
|
---|
| 451 | }
|
---|
[68fe077a] | 452 | memCtorType->get_parameters().push_back( new ObjectDecl( member->get_name(), Type::StorageClasses(), LinkageSpec::Cforall, 0, member->get_type()->clone(), 0 ) );
|
---|
[207c7e1d] | 453 | FunctionDecl * ctor = genFunc( "?{}", memCtorType->clone(), functionNesting );
|
---|
[74b007ba] | 454 | makeStructFieldCtorBody( aggregateDecl->get_members().begin(), aggregateDecl->get_members().end(), ctor );
|
---|
[207c7e1d] | 455 | declsToAdd.push_back( ctor );
|
---|
[356189a] | 456 | }
|
---|
[207c7e1d] | 457 | delete memCtorType;
|
---|
[dac0aa9] | 458 | }
|
---|
[972e6f7] | 459 | }
|
---|
| 460 |
|
---|
[186fd86] | 461 | /// generate a single union assignment expression (using memcpy)
|
---|
| 462 | template< typename OutputIterator >
|
---|
| 463 | void makeUnionFieldsAssignment( ObjectDecl * srcParam, ObjectDecl * dstParam, OutputIterator out ) {
|
---|
| 464 | UntypedExpr *copy = new UntypedExpr( new NameExpr( "__builtin_memcpy" ) );
|
---|
[49148d5] | 465 | copy->get_args().push_back( new AddressExpr( new VariableExpr( dstParam ) ) );
|
---|
[186fd86] | 466 | copy->get_args().push_back( new AddressExpr( new VariableExpr( srcParam ) ) );
|
---|
| 467 | copy->get_args().push_back( new SizeofExpr( srcParam->get_type()->clone() ) );
|
---|
| 468 | *out++ = new ExprStmt( noLabels, copy );
|
---|
| 469 | }
|
---|
[972e6f7] | 470 |
|
---|
[186fd86] | 471 | /// generates the body of a union assignment/copy constructor/field constructor
|
---|
[d7dc824] | 472 | void makeUnionAssignBody( FunctionDecl * funcDecl ) {
|
---|
[186fd86] | 473 | FunctionType * ftype = funcDecl->get_functionType();
|
---|
| 474 | assert( ftype->get_parameters().size() == 2 );
|
---|
[e3e16bc] | 475 | ObjectDecl * dstParam = strict_dynamic_cast< ObjectDecl * >( ftype->get_parameters().front() );
|
---|
| 476 | ObjectDecl * srcParam = strict_dynamic_cast< ObjectDecl * >( ftype->get_parameters().back() );
|
---|
[972e6f7] | 477 |
|
---|
[186fd86] | 478 | makeUnionFieldsAssignment( srcParam, dstParam, back_inserter( funcDecl->get_statements()->get_kids() ) );
|
---|
[bff227f] | 479 | if ( CodeGen::isAssignment( funcDecl->get_name() ) ) {
|
---|
[49148d5] | 480 | // also generate return statement in assignment
|
---|
[4b0f997] | 481 | funcDecl->get_statements()->get_kids().push_back( new ReturnStmt( noLabels, new VariableExpr( srcParam ) ) );
|
---|
[186fd86] | 482 | }
|
---|
| 483 | }
|
---|
[972e6f7] | 484 |
|
---|
[186fd86] | 485 | /// generates union constructors, destructors, and assignment operator
|
---|
| 486 | void makeUnionFunctions( UnionDecl *aggregateDecl, UnionInstType *refType, unsigned int functionNesting, std::list< Declaration * > & declsToAdd ) {
|
---|
| 487 | // Make function polymorphic in same parameters as generic union, if applicable
|
---|
| 488 | const std::list< TypeDecl* > & typeParams = aggregateDecl->get_parameters(); // List of type variables to be placed on the generated functions
|
---|
[49148d5] | 489 |
|
---|
[186fd86] | 490 | // default ctor/dtor need only first parameter
|
---|
| 491 | // void ?{}(T *); void ^?{}(T *);
|
---|
| 492 | FunctionType *ctorType = genDefaultType( refType );
|
---|
| 493 | FunctionType *dtorType = genDefaultType( refType );
|
---|
[972e6f7] | 494 |
|
---|
| 495 | // copy ctor needs both parameters
|
---|
[186fd86] | 496 | // void ?{}(T *, T);
|
---|
| 497 | FunctionType *copyCtorType = genCopyType( refType );
|
---|
[972e6f7] | 498 |
|
---|
| 499 | // assignment needs both and return value
|
---|
[186fd86] | 500 | // T ?=?(T *, T);
|
---|
| 501 | FunctionType *assignType = genAssignType( refType );
|
---|
[1486116] | 502 |
|
---|
| 503 | cloneAll( typeParams, ctorType->get_forall() );
|
---|
| 504 | cloneAll( typeParams, dtorType->get_forall() );
|
---|
| 505 | cloneAll( typeParams, copyCtorType->get_forall() );
|
---|
[186fd86] | 506 | cloneAll( typeParams, assignType->get_forall() );
|
---|
[972e6f7] | 507 |
|
---|
[46adb83] | 508 | // add unused attribute to parameters of default constructor and destructor
|
---|
| 509 | ctorType->get_parameters().front()->get_attributes().push_back( new Attribute( "unused" ) );
|
---|
| 510 | dtorType->get_parameters().front()->get_attributes().push_back( new Attribute( "unused" ) );
|
---|
| 511 |
|
---|
[972e6f7] | 512 | // Routines at global scope marked "static" to prevent multiple definitions is separate translation units
|
---|
| 513 | // because each unit generates copies of the default routines for each aggregate.
|
---|
[186fd86] | 514 | FunctionDecl *assignDecl = genFunc( "?=?", assignType, functionNesting );
|
---|
| 515 | FunctionDecl *ctorDecl = genFunc( "?{}", ctorType, functionNesting );
|
---|
| 516 | FunctionDecl *copyCtorDecl = genFunc( "?{}", copyCtorType, functionNesting );
|
---|
| 517 | FunctionDecl *dtorDecl = genFunc( "^?{}", dtorType, functionNesting );
|
---|
[972e6f7] | 518 |
|
---|
[d7dc824] | 519 | makeUnionAssignBody( assignDecl );
|
---|
[972e6f7] | 520 |
|
---|
| 521 | // body of assignment and copy ctor is the same
|
---|
[d7dc824] | 522 | makeUnionAssignBody( copyCtorDecl );
|
---|
[972e6f7] | 523 |
|
---|
[a465caff] | 524 | // create a constructor which takes the first member type as a parameter.
|
---|
| 525 | // for example, for Union A { int x; double y; }; generate
|
---|
| 526 | // void ?{}(A *, int)
|
---|
| 527 | // This is to mimic C's behaviour which initializes the first member of the union.
|
---|
| 528 | std::list<Declaration *> memCtors;
|
---|
| 529 | for ( Declaration * member : aggregateDecl->get_members() ) {
|
---|
| 530 | if ( DeclarationWithType * field = dynamic_cast< DeclarationWithType * >( member ) ) {
|
---|
[68fe077a] | 531 | ObjectDecl * srcParam = new ObjectDecl( "src", Type::StorageClasses(), LinkageSpec::Cforall, 0, field->get_type()->clone(), 0 );
|
---|
[a465caff] | 532 |
|
---|
| 533 | FunctionType * memCtorType = ctorType->clone();
|
---|
| 534 | memCtorType->get_parameters().push_back( srcParam );
|
---|
[186fd86] | 535 | FunctionDecl * ctor = genFunc( "?{}", memCtorType, functionNesting );
|
---|
[a465caff] | 536 |
|
---|
[d7dc824] | 537 | makeUnionAssignBody( ctor );
|
---|
[a465caff] | 538 | memCtors.push_back( ctor );
|
---|
| 539 | // only generate a ctor for the first field
|
---|
| 540 | break;
|
---|
| 541 | }
|
---|
| 542 | }
|
---|
| 543 |
|
---|
[972e6f7] | 544 | declsToAdd.push_back( ctorDecl );
|
---|
| 545 | declsToAdd.push_back( copyCtorDecl );
|
---|
| 546 | declsToAdd.push_back( dtorDecl );
|
---|
[1486116] | 547 | declsToAdd.push_back( assignDecl ); // assignment should come last since it uses copy constructor in return
|
---|
[a465caff] | 548 | declsToAdd.splice( declsToAdd.end(), memCtors );
|
---|
[972e6f7] | 549 | }
|
---|
| 550 |
|
---|
[207c7e1d] | 551 | AutogenerateRoutines::AutogenerateRoutines() {
|
---|
| 552 | // the order here determines the order that these functions are generated.
|
---|
| 553 | // assignment should come last since it uses copy constructor in return.
|
---|
[d67cdb7] | 554 | data.emplace_back( "?{}", genDefaultType, constructable );
|
---|
| 555 | data.emplace_back( "?{}", genCopyType, copyable );
|
---|
| 556 | data.emplace_back( "^?{}", genDefaultType, destructable );
|
---|
| 557 | data.emplace_back( "?=?", genAssignType, assignable );
|
---|
[207c7e1d] | 558 | }
|
---|
| 559 |
|
---|
[d67cdb7] | 560 | void AutogenerateRoutines::previsit( EnumDecl * enumDecl ) {
|
---|
| 561 | visit_children = false;
|
---|
[972e6f7] | 562 | if ( ! enumDecl->get_members().empty() ) {
|
---|
| 563 | EnumInstType *enumInst = new EnumInstType( Type::Qualifiers(), enumDecl->get_name() );
|
---|
| 564 | // enumInst->set_baseEnum( enumDecl );
|
---|
[d7dc824] | 565 | makeEnumFunctions( enumInst, functionNesting, declsToAddAfter );
|
---|
[972e6f7] | 566 | }
|
---|
| 567 | }
|
---|
| 568 |
|
---|
[d67cdb7] | 569 | void AutogenerateRoutines::previsit( StructDecl * structDecl ) {
|
---|
| 570 | visit_children = false;
|
---|
| 571 | if ( structDecl->has_body() && structsDone.find( structDecl->name ) == structsDone.end() ) {
|
---|
| 572 | StructInstType structInst( Type::Qualifiers(), structDecl->name );
|
---|
| 573 | for ( TypeDecl * typeDecl : structDecl->parameters ) {
|
---|
[207c7e1d] | 574 | // need to visit assertions so that they are added to the appropriate maps
|
---|
[d67cdb7] | 575 | acceptAll( typeDecl->assertions, *visitor );
|
---|
| 576 | structInst.parameters.push_back( new TypeExpr( new TypeInstType( Type::Qualifiers(), typeDecl->name, typeDecl ) ) );
|
---|
[186fd86] | 577 | }
|
---|
[972e6f7] | 578 | structInst.set_baseStruct( structDecl );
|
---|
[c0aa336] | 579 | makeStructFunctions( structDecl, &structInst, functionNesting, declsToAddAfter, data );
|
---|
[d67cdb7] | 580 | structsDone.insert( structDecl->name );
|
---|
[972e6f7] | 581 | } // if
|
---|
| 582 | }
|
---|
| 583 |
|
---|
[d67cdb7] | 584 | void AutogenerateRoutines::previsit( UnionDecl * unionDecl ) {
|
---|
| 585 | visit_children = false;
|
---|
[972e6f7] | 586 | if ( ! unionDecl->get_members().empty() ) {
|
---|
| 587 | UnionInstType unionInst( Type::Qualifiers(), unionDecl->get_name() );
|
---|
| 588 | unionInst.set_baseUnion( unionDecl );
|
---|
[186fd86] | 589 | for ( TypeDecl * typeDecl : unionDecl->get_parameters() ) {
|
---|
| 590 | unionInst.get_parameters().push_back( new TypeExpr( new TypeInstType( Type::Qualifiers(), typeDecl->get_name(), typeDecl ) ) );
|
---|
| 591 | }
|
---|
[c0aa336] | 592 | makeUnionFunctions( unionDecl, &unionInst, functionNesting, declsToAddAfter );
|
---|
[972e6f7] | 593 | } // if
|
---|
| 594 | }
|
---|
| 595 |
|
---|
[108f3cdb] | 596 | Type * declToTypeDeclBase( Declaration * decl ) {
|
---|
| 597 | if ( TypeDecl * td = dynamic_cast< TypeDecl * >( decl ) ) {
|
---|
| 598 | return td->base;
|
---|
| 599 | }
|
---|
| 600 | return nullptr;
|
---|
| 601 | }
|
---|
| 602 |
|
---|
| 603 | // generate ctor/dtors/assign for typedecls, e.g., otype T = int *;
|
---|
[d67cdb7] | 604 | void AutogenerateRoutines::previsit( TypeDecl * typeDecl ) {
|
---|
| 605 | visit_children = false;
|
---|
[108f3cdb] | 606 | if ( ! typeDecl->base ) return;
|
---|
| 607 |
|
---|
| 608 | // generate each of the functions based on the supplied FuncData objects
|
---|
| 609 | std::list< FunctionDecl * > newFuncs;
|
---|
| 610 | std::list< Declaration * > tds { typeDecl };
|
---|
| 611 | std::list< TypeDecl * > typeParams;
|
---|
| 612 | TypeInstType refType( Type::Qualifiers(), typeDecl->name, typeDecl );
|
---|
| 613 | auto generator = makeFuncGenerator( lazy_map( tds, declToTypeDeclBase ), &refType, functionNesting, typeParams, back_inserter( newFuncs ) );
|
---|
| 614 | for ( const FuncData & d : data ) {
|
---|
| 615 | generator.gen( d, false );
|
---|
| 616 | }
|
---|
| 617 |
|
---|
| 618 | if ( functionNesting == 0 ) {
|
---|
| 619 | // forward declare if top-level struct, so that
|
---|
| 620 | // type is complete as soon as its body ends
|
---|
| 621 | // Note: this is necessary if we want structs which contain
|
---|
| 622 | // generic (otype) structs as members.
|
---|
| 623 | for ( FunctionDecl * dcl : newFuncs ) {
|
---|
| 624 | addForwardDecl( dcl, declsToAddAfter );
|
---|
| 625 | }
|
---|
| 626 | }
|
---|
| 627 |
|
---|
| 628 | for ( FunctionDecl * dcl : newFuncs ) {
|
---|
| 629 | FunctionType * ftype = dcl->type;
|
---|
| 630 | assertf( ftype->parameters.size() == 1 || ftype->parameters.size() == 2, "Incorrect number of parameters in autogenerated typedecl function: %zd", ftype->parameters.size() );
|
---|
| 631 | DeclarationWithType * dst = ftype->parameters.front();
|
---|
| 632 | DeclarationWithType * src = ftype->parameters.size() == 2 ? ftype->parameters.back() : nullptr;
|
---|
| 633 | // generate appropriate calls to member ctor, assignment
|
---|
| 634 | // destructor needs to do everything in reverse, so pass "forward" based on whether the function is a destructor
|
---|
| 635 | UntypedExpr * expr = new UntypedExpr( new NameExpr( dcl->name ) );
|
---|
| 636 | expr->args.push_back( new CastExpr( new VariableExpr( dst ), new ReferenceType( Type::Qualifiers(), typeDecl->base->clone() ) ) );
|
---|
| 637 | if ( src ) expr->args.push_back( new CastExpr( new VariableExpr( src ), typeDecl->base->clone() ) );
|
---|
| 638 | dcl->statements->kids.push_back( new ExprStmt( noLabels, expr ) );
|
---|
| 639 | if ( CodeGen::isAssignment( dcl->get_name() ) ) {
|
---|
| 640 | // assignment needs to return a value
|
---|
| 641 | FunctionType * assignType = dcl->type;
|
---|
| 642 | assert( assignType->parameters.size() == 2 );
|
---|
[982832e] | 643 | ObjectDecl * srcParam = strict_dynamic_cast< ObjectDecl * >( assignType->parameters.back() );
|
---|
[108f3cdb] | 644 | dcl->statements->kids.push_back( new ReturnStmt( noLabels, new VariableExpr( srcParam ) ) );
|
---|
| 645 | }
|
---|
| 646 | declsToAddAfter.push_back( dcl );
|
---|
| 647 | }
|
---|
[972e6f7] | 648 | }
|
---|
| 649 |
|
---|
[d67cdb7] | 650 | void AutogenerateRoutines::previsit( FunctionType *) {
|
---|
[972e6f7] | 651 | // ensure that we don't add assignment ops for types defined as part of the function
|
---|
[d67cdb7] | 652 | visit_children = false;
|
---|
[972e6f7] | 653 | }
|
---|
| 654 |
|
---|
[d67cdb7] | 655 | void AutogenerateRoutines::previsit( PointerType *) {
|
---|
[972e6f7] | 656 | // ensure that we don't add assignment ops for types defined as part of the pointer
|
---|
[d67cdb7] | 657 | visit_children = false;
|
---|
[972e6f7] | 658 | }
|
---|
| 659 |
|
---|
[d67cdb7] | 660 | void AutogenerateRoutines::previsit( TraitDecl * ) {
|
---|
[a5a71d0] | 661 | // ensure that we don't add assignment ops for types defined as part of the trait
|
---|
[d67cdb7] | 662 | visit_children = false;
|
---|
[972e6f7] | 663 | }
|
---|
| 664 |
|
---|
[d67cdb7] | 665 | void AutogenerateRoutines::previsit( FunctionDecl * functionDecl ) {
|
---|
| 666 | visit_children = false;
|
---|
[207c7e1d] | 667 | // record the existence of this function as appropriate
|
---|
| 668 | insert( functionDecl, constructable, InitTweak::isDefaultConstructor );
|
---|
| 669 | insert( functionDecl, assignable, InitTweak::isAssignment );
|
---|
| 670 | insert( functionDecl, copyable, InitTweak::isCopyConstructor );
|
---|
| 671 | insert( functionDecl, destructable, InitTweak::isDestructor );
|
---|
| 672 |
|
---|
[d67cdb7] | 673 | maybeAccept( functionDecl->type, *visitor );
|
---|
[972e6f7] | 674 | functionNesting += 1;
|
---|
[d67cdb7] | 675 | maybeAccept( functionDecl->statements, *visitor );
|
---|
[972e6f7] | 676 | functionNesting -= 1;
|
---|
| 677 | }
|
---|
| 678 |
|
---|
[d67cdb7] | 679 | void AutogenerateRoutines::previsit( CompoundStmt * ) {
|
---|
| 680 | GuardScope( constructable );
|
---|
| 681 | GuardScope( assignable );
|
---|
| 682 | GuardScope( copyable );
|
---|
| 683 | GuardScope( destructable );
|
---|
| 684 | GuardScope( structsDone );
|
---|
[972e6f7] | 685 | }
|
---|
[1486116] | 686 |
|
---|
| 687 | void makeTupleFunctionBody( FunctionDecl * function ) {
|
---|
| 688 | FunctionType * ftype = function->get_functionType();
|
---|
| 689 | assertf( ftype->get_parameters().size() == 1 || ftype->get_parameters().size() == 2, "too many parameters in generated tuple function" );
|
---|
| 690 |
|
---|
| 691 | UntypedExpr * untyped = new UntypedExpr( new NameExpr( function->get_name() ) );
|
---|
| 692 |
|
---|
| 693 | /// xxx - &* is used to make this easier for later passes to handle
|
---|
| 694 | untyped->get_args().push_back( new AddressExpr( UntypedExpr::createDeref( new VariableExpr( ftype->get_parameters().front() ) ) ) );
|
---|
| 695 | if ( ftype->get_parameters().size() == 2 ) {
|
---|
| 696 | untyped->get_args().push_back( new VariableExpr( ftype->get_parameters().back() ) );
|
---|
| 697 | }
|
---|
| 698 | function->get_statements()->get_kids().push_back( new ExprStmt( noLabels, untyped ) );
|
---|
| 699 | function->get_statements()->get_kids().push_back( new ReturnStmt( noLabels, UntypedExpr::createDeref( new VariableExpr( ftype->get_parameters().front() ) ) ) );
|
---|
| 700 | }
|
---|
| 701 |
|
---|
[d67cdb7] | 702 | void AutogenTupleRoutines::postvisit( TupleType * tupleType ) {
|
---|
[1486116] | 703 | std::string mangleName = SymTab::Mangler::mangleType( tupleType );
|
---|
[d67cdb7] | 704 | if ( seenTuples.find( mangleName ) != seenTuples.end() ) return;
|
---|
[1486116] | 705 | seenTuples.insert( mangleName );
|
---|
| 706 |
|
---|
| 707 | // T ?=?(T *, T);
|
---|
| 708 | FunctionType *assignType = genAssignType( tupleType );
|
---|
| 709 |
|
---|
| 710 | // void ?{}(T *); void ^?{}(T *);
|
---|
| 711 | FunctionType *ctorType = genDefaultType( tupleType );
|
---|
| 712 | FunctionType *dtorType = genDefaultType( tupleType );
|
---|
| 713 |
|
---|
| 714 | // void ?{}(T *, T);
|
---|
| 715 | FunctionType *copyCtorType = genCopyType( tupleType );
|
---|
| 716 |
|
---|
| 717 | std::set< TypeDecl* > done;
|
---|
| 718 | std::list< TypeDecl * > typeParams;
|
---|
| 719 | for ( Type * t : *tupleType ) {
|
---|
| 720 | if ( TypeInstType * ty = dynamic_cast< TypeInstType * >( t ) ) {
|
---|
| 721 | if ( ! done.count( ty->get_baseType() ) ) {
|
---|
[68fe077a] | 722 | TypeDecl * newDecl = new TypeDecl( ty->get_baseType()->get_name(), Type::StorageClasses(), nullptr, TypeDecl::Any );
|
---|
[1486116] | 723 | TypeInstType * inst = new TypeInstType( Type::Qualifiers(), newDecl->get_name(), newDecl );
|
---|
[68fe077a] | 724 | newDecl->get_assertions().push_back( new FunctionDecl( "?=?", Type::StorageClasses(), LinkageSpec::Cforall, genAssignType( inst ), nullptr,
|
---|
[ddfd945] | 725 | std::list< Attribute * >(), Type::FuncSpecifiers( Type::Inline ) ) );
|
---|
[68fe077a] | 726 | newDecl->get_assertions().push_back( new FunctionDecl( "?{}", Type::StorageClasses(), LinkageSpec::Cforall, genDefaultType( inst ), nullptr,
|
---|
[ddfd945] | 727 | std::list< Attribute * >(), Type::FuncSpecifiers( Type::Inline ) ) );
|
---|
[68fe077a] | 728 | newDecl->get_assertions().push_back( new FunctionDecl( "?{}", Type::StorageClasses(), LinkageSpec::Cforall, genCopyType( inst ), nullptr,
|
---|
[ddfd945] | 729 | std::list< Attribute * >(), Type::FuncSpecifiers( Type::Inline ) ) );
|
---|
[68fe077a] | 730 | newDecl->get_assertions().push_back( new FunctionDecl( "^?{}", Type::StorageClasses(), LinkageSpec::Cforall, genDefaultType( inst ), nullptr,
|
---|
[ddfd945] | 731 | std::list< Attribute * >(), Type::FuncSpecifiers( Type::Inline ) ) );
|
---|
[1486116] | 732 | typeParams.push_back( newDecl );
|
---|
| 733 | done.insert( ty->get_baseType() );
|
---|
| 734 | }
|
---|
| 735 | }
|
---|
| 736 | }
|
---|
| 737 | cloneAll( typeParams, ctorType->get_forall() );
|
---|
| 738 | cloneAll( typeParams, dtorType->get_forall() );
|
---|
| 739 | cloneAll( typeParams, copyCtorType->get_forall() );
|
---|
| 740 | cloneAll( typeParams, assignType->get_forall() );
|
---|
| 741 |
|
---|
| 742 | FunctionDecl *assignDecl = genFunc( "?=?", assignType, functionNesting );
|
---|
| 743 | FunctionDecl *ctorDecl = genFunc( "?{}", ctorType, functionNesting );
|
---|
| 744 | FunctionDecl *copyCtorDecl = genFunc( "?{}", copyCtorType, functionNesting );
|
---|
| 745 | FunctionDecl *dtorDecl = genFunc( "^?{}", dtorType, functionNesting );
|
---|
| 746 |
|
---|
| 747 | makeTupleFunctionBody( assignDecl );
|
---|
| 748 | makeTupleFunctionBody( ctorDecl );
|
---|
| 749 | makeTupleFunctionBody( copyCtorDecl );
|
---|
| 750 | makeTupleFunctionBody( dtorDecl );
|
---|
| 751 |
|
---|
[d67cdb7] | 752 | declsToAddBefore.push_back( ctorDecl );
|
---|
| 753 | declsToAddBefore.push_back( copyCtorDecl );
|
---|
| 754 | declsToAddBefore.push_back( dtorDecl );
|
---|
| 755 | declsToAddBefore.push_back( assignDecl ); // assignment should come last since it uses copy constructor in return
|
---|
[1486116] | 756 | }
|
---|
| 757 |
|
---|
[d67cdb7] | 758 | void AutogenTupleRoutines::previsit( FunctionDecl *functionDecl ) {
|
---|
| 759 | visit_children = false;
|
---|
| 760 | maybeAccept( functionDecl->type, *visitor );
|
---|
[1486116] | 761 | functionNesting += 1;
|
---|
[d67cdb7] | 762 | maybeAccept( functionDecl->statements, *visitor );
|
---|
[1486116] | 763 | functionNesting -= 1;
|
---|
| 764 | }
|
---|
| 765 |
|
---|
[d67cdb7] | 766 | void AutogenTupleRoutines::previsit( CompoundStmt * ) {
|
---|
| 767 | GuardScope( seenTuples );
|
---|
[1486116] | 768 | }
|
---|
[972e6f7] | 769 | } // SymTab
|
---|
[c0aa336] | 770 |
|
---|
| 771 | // Local Variables: //
|
---|
| 772 | // tab-width: 4 //
|
---|
| 773 | // mode: c++ //
|
---|
| 774 | // compile-command: "make install" //
|
---|
| 775 | // End: //
|
---|