Changes in src/SymTab/Autogen.h [6b0b624:d56e5bc]
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src/SymTab/Autogen.h
r6b0b624 rd56e5bc 10 10 // Created On : Sun May 17 21:53:34 2015 11 11 // Last Modified By : Peter A. Buhr 12 // Last Modified On : Sat Jul 22 09:50:25201713 // Update Count : 1 512 // Last Modified On : Wed Jun 21 17:25:26 2017 13 // Update Count : 14 14 14 // 15 15 16 #pragma once 16 #ifndef AUTOGEN_H 17 #define AUTOGEN_H 17 18 18 19 #include <string> … … 24 25 25 26 namespace SymTab { 26 /// Generates assignment operators, constructors, and destructor for aggregate types as required27 void autogenerateRoutines( std::list< Declaration * > &translationUnit );27 /// Generates assignment operators, constructors, and destructor for aggregate types as required 28 void autogenerateRoutines( std::list< Declaration * > &translationUnit ); 28 29 29 /// returns true if obj's name is the empty string and it has a bitfield width30 bool isUnnamedBitfield( ObjectDecl * obj );30 /// returns true if obj's name is the empty string and it has a bitfield width 31 bool isUnnamedBitfield( ObjectDecl * obj ); 31 32 32 /// size_t type - set when size_t typedef is seen. Useful in a few places,33 /// such as in determining array dimension type34 extern Type * SizeType;33 /// size_t type - set when size_t typedef is seen. Useful in a few places, 34 /// such as in determining array dimension type 35 extern Type * SizeType; 35 36 36 /// inserts into out a generated call expression to function fname with arguments dstParam and srcParam. Intended to be used with generated ?=?, ?{}, and ^?{} calls.37 template< typename OutputIterator >37 /// inserts into out a generated call expression to function fname with arguments dstParam and srcParam. Intended to be used with generated ?=?, ?{}, and ^?{} calls. 38 template< typename OutputIterator > 38 39 Statement * genCall( InitTweak::InitExpander & srcParam, Expression * dstParam, const std::string & fname, OutputIterator out, Type * type, bool addCast = false, bool forward = true ); 39 40 40 /// inserts into out a generated call expression to function fname with arguments dstParam and srcParam. Should only be called with non-array types.41 /// optionally returns a statement which must be inserted prior to the containing loop, if there is one42 template< typename OutputIterator >41 /// inserts into out a generated call expression to function fname with arguments dstParam and srcParam. Should only be called with non-array types. 42 /// optionally returns a statement which must be inserted prior to the containing loop, if there is one 43 template< typename OutputIterator > 43 44 Statement * genScalarCall( InitTweak::InitExpander & srcParam, Expression *dstParam, const std::string & fname, OutputIterator out, Type * type, bool addCast = false ) { 44 45 // want to be able to generate assignment, ctor, and dtor generically, … … 49 50 dstParam = new AddressExpr( dstParam ); 50 51 if ( addCast ) { 51 // cast to T* with qualifiers removed, so that qualified objects can be constructed 52 // and destructed with the same functions as non-qualified objects. 53 // unfortunately, lvalue is considered a qualifier. For AddressExpr to resolve, its argument 54 // must have an lvalue qualified type, so remove all qualifiers except lvalue. If we ever 55 // remove lvalue as a qualifier, this can change to 56 // type->get_qualifiers() = Type::Qualifiers(); 57 assert( type ); 58 Type * castType = type->clone(); 59 castType->get_qualifiers() -= Type::Qualifiers( Type::Const | Type::Volatile | Type::Restrict | Type::Atomic ); 60 castType->set_lvalue( true ); // xxx - might not need this 61 dstParam = new CastExpr( dstParam, new PointerType( Type::Qualifiers(), castType ) ); 52 // cast to T* with qualifiers removed, so that qualified objects can be constructed 53 // and destructed with the same functions as non-qualified objects. 54 // unfortunately, lvalue is considered a qualifier. For AddressExpr to resolve, its argument 55 // must have an lvalue qualified type, so remove all qualifiers except lvalue. If we ever 56 // remove lvalue as a qualifier, this can change to 57 // type->get_qualifiers() = Type::Qualifiers(); 58 assert( type ); 59 Type * castType = type->clone(); 60 // castType->get_qualifiers() -= Type::Qualifiers(true, true, true, false, true, false); 61 castType->get_qualifiers() -= Type::Qualifiers( Type::Const | Type::Volatile | Type::Restrict | Type::Atomic ); 62 castType->set_lvalue( true ); // xxx - might not need this 63 dstParam = new CastExpr( dstParam, new PointerType( Type::Qualifiers(), castType ) ); 62 64 } 63 65 fExpr->get_args().push_back( dstParam ); … … 73 75 74 76 return listInit; 77 } 78 79 /// Store in out a loop which calls fname on each element of the array with srcParam and dstParam as arguments. 80 /// If forward is true, loop goes from 0 to N-1, else N-1 to 0 81 template< typename OutputIterator > 82 void genArrayCall( InitTweak::InitExpander & srcParam, Expression *dstParam, const std::string & fname, OutputIterator out, ArrayType *array, bool addCast = false, bool forward = true ) { 83 static UniqueName indexName( "_index" ); 84 85 // for a flexible array member nothing is done -- user must define own assignment 86 if ( ! array->get_dimension() ) return ; 87 88 Expression * begin, * end, * update, * cmp; 89 if ( forward ) { 90 // generate: for ( int i = 0; i < N; ++i ) 91 begin = new ConstantExpr( Constant::from_int( 0 ) ); 92 end = array->get_dimension()->clone(); 93 cmp = new NameExpr( "?<?" ); 94 update = new NameExpr( "++?" ); 95 } else { 96 // generate: for ( int i = N-1; i >= 0; --i ) 97 begin = new UntypedExpr( new NameExpr( "?-?" ) ); 98 ((UntypedExpr*)begin)->get_args().push_back( array->get_dimension()->clone() ); 99 ((UntypedExpr*)begin)->get_args().push_back( new ConstantExpr( Constant::from_int( 1 ) ) ); 100 end = new ConstantExpr( Constant::from_int( 0 ) ); 101 cmp = new NameExpr( "?>=?" ); 102 update = new NameExpr( "--?" ); 75 103 } 76 104 77 /// Store in out a loop which calls fname on each element of the array with srcParam and dstParam as arguments. 78 /// If forward is true, loop goes from 0 to N-1, else N-1 to 0 79 template< typename OutputIterator > 80 void genArrayCall( InitTweak::InitExpander & srcParam, Expression *dstParam, const std::string & fname, OutputIterator out, ArrayType *array, bool addCast = false, bool forward = true ) { 81 static UniqueName indexName( "_index" ); 105 ObjectDecl *index = new ObjectDecl( indexName.newName(), Type::StorageClasses(), LinkageSpec::C, 0, new BasicType( Type::Qualifiers(), BasicType::SignedInt ), new SingleInit( begin, std::list<Expression*>() ) ); 82 106 83 // for a flexible array member nothing is done -- user must define own assignment 84 if ( ! array->get_dimension() ) return ; 107 UntypedExpr *cond = new UntypedExpr( cmp ); 108 cond->get_args().push_back( new VariableExpr( index ) ); 109 cond->get_args().push_back( end ); 85 110 86 Expression * begin, * end, * update, * cmp; 87 if ( forward ) { 88 // generate: for ( int i = 0; i < N; ++i ) 89 begin = new ConstantExpr( Constant::from_int( 0 ) ); 90 end = array->get_dimension()->clone(); 91 cmp = new NameExpr( "?<?" ); 92 update = new NameExpr( "++?" ); 93 } else { 94 // generate: for ( int i = N-1; i >= 0; --i ) 95 begin = new UntypedExpr( new NameExpr( "?-?" ) ); 96 ((UntypedExpr*)begin)->get_args().push_back( array->get_dimension()->clone() ); 97 ((UntypedExpr*)begin)->get_args().push_back( new ConstantExpr( Constant::from_int( 1 ) ) ); 98 end = new ConstantExpr( Constant::from_int( 0 ) ); 99 cmp = new NameExpr( "?>=?" ); 100 update = new NameExpr( "--?" ); 101 } 111 UntypedExpr *inc = new UntypedExpr( update ); 112 inc->get_args().push_back( new AddressExpr( new VariableExpr( index ) ) ); 102 113 103 ObjectDecl *index = new ObjectDecl( indexName.newName(), Type::StorageClasses(), LinkageSpec::C, 0, new BasicType( Type::Qualifiers(), BasicType::SignedInt ), new SingleInit( begin ) ); 114 UntypedExpr *dstIndex = new UntypedExpr( new NameExpr( "?[?]" ) ); 115 dstIndex->get_args().push_back( dstParam ); 116 dstIndex->get_args().push_back( new VariableExpr( index ) ); 117 dstParam = dstIndex; 104 118 105 UntypedExpr *cond = new UntypedExpr( cmp );106 cond->get_args().push_back( new VariableExpr( index ) );107 cond->get_args().push_back( end);119 // srcParam must keep track of the array indices to build the 120 // source parameter and/or array list initializer 121 srcParam.addArrayIndex( new VariableExpr( index ), array->get_dimension()->clone() ); 108 122 109 UntypedExpr *inc = new UntypedExpr( update ); 110 inc->get_args().push_back( new AddressExpr( new VariableExpr( index ) ) ); 123 // for stmt's body, eventually containing call 124 CompoundStmt * body = new CompoundStmt( noLabels ); 125 Statement * listInit = genCall( srcParam, dstParam, fname, back_inserter( body->get_kids() ), array->get_base(), addCast, forward ); 111 126 112 UntypedExpr *dstIndex = new UntypedExpr( new NameExpr( "?[?]" ) ); 113 dstIndex->get_args().push_back( dstParam ); 114 dstIndex->get_args().push_back( new VariableExpr( index ) ); 115 dstParam = dstIndex; 127 // block containing for stmt and index variable 128 std::list<Statement *> initList; 129 CompoundStmt * block = new CompoundStmt( noLabels ); 130 block->get_kids().push_back( new DeclStmt( noLabels, index ) ); 131 if ( listInit ) block->get_kids().push_back( listInit ); 132 block->get_kids().push_back( new ForStmt( noLabels, initList, cond, inc, body ) ); 116 133 117 // srcParam must keep track of the array indices to build the 118 // source parameter and/or array list initializer 119 srcParam.addArrayIndex( new VariableExpr( index ), array->get_dimension()->clone() ); 134 *out++ = block; 135 } 120 136 121 // for stmt's body, eventually containing call 122 CompoundStmt * body = new CompoundStmt( noLabels ); 123 Statement * listInit = genCall( srcParam, dstParam, fname, back_inserter( body->get_kids() ), array->get_base(), addCast, forward ); 137 template< typename OutputIterator > 138 Statement * genCall( InitTweak::InitExpander & srcParam, Expression * dstParam, const std::string & fname, OutputIterator out, Type * type, bool addCast, bool forward ) { 139 if ( ArrayType * at = dynamic_cast< ArrayType * >( type ) ) { 140 genArrayCall( srcParam, dstParam, fname, out, at, addCast, forward ); 141 return 0; 142 } else { 143 return genScalarCall( srcParam, dstParam, fname, out, type, addCast ); 144 } 145 } 124 146 125 // block containing for stmt and index variable 126 std::list<Statement *> initList; 127 CompoundStmt * block = new CompoundStmt( noLabels ); 128 block->get_kids().push_back( new DeclStmt( noLabels, index ) ); 129 if ( listInit ) block->get_kids().push_back( listInit ); 130 block->get_kids().push_back( new ForStmt( noLabels, initList, cond, inc, body ) ); 147 /// inserts into out a generated call expression to function fname with arguments dstParam 148 /// and srcParam. Intended to be used with generated ?=?, ?{}, and ^?{} calls. decl is the 149 /// object being constructed. The function wraps constructor and destructor calls in an 150 /// ImplicitCtorDtorStmt node. 151 template< typename OutputIterator > 152 void genImplicitCall( InitTweak::InitExpander & srcParam, Expression * dstParam, const std::string & fname, OutputIterator out, DeclarationWithType * decl, bool forward = true ) { 153 ObjectDecl *obj = dynamic_cast<ObjectDecl *>( decl ); 154 assert( obj ); 155 // unnamed bit fields are not copied as they cannot be accessed 156 if ( isUnnamedBitfield( obj ) ) return; 131 157 132 *out++ = block; 158 bool addCast = (fname == "?{}" || fname == "^?{}") && ( !obj || ( obj && obj->get_bitfieldWidth() == NULL ) ); 159 std::list< Statement * > stmts; 160 genCall( srcParam, dstParam, fname, back_inserter( stmts ), obj->get_type(), addCast, forward ); 161 162 // currently genCall should produce at most one element, but if that changes then the next line needs to be updated to grab the statement which contains the call 163 assert( stmts.size() <= 1 ); 164 if ( stmts.size() == 1 ) { 165 Statement * callStmt = stmts.front(); 166 if ( addCast ) { 167 // implicitly generated ctor/dtor calls should be wrapped 168 // so that later passes are aware they were generated. 169 // xxx - don't mark as an implicit ctor/dtor if obj is a bitfield, 170 // because this causes the address to be taken at codegen, which is illegal in C. 171 callStmt = new ImplicitCtorDtorStmt( callStmt ); 172 } 173 *out++ = callStmt; 133 174 } 134 135 template< typename OutputIterator > 136 Statement * genCall( InitTweak::InitExpander & srcParam, Expression * dstParam, const std::string & fname, OutputIterator out, Type * type, bool addCast, bool forward ) { 137 if ( ArrayType * at = dynamic_cast< ArrayType * >( type ) ) { 138 genArrayCall( srcParam, dstParam, fname, out, at, addCast, forward ); 139 return 0; 140 } else { 141 return genScalarCall( srcParam, dstParam, fname, out, type, addCast ); 142 } 143 } 144 145 /// inserts into out a generated call expression to function fname with arguments dstParam 146 /// and srcParam. Intended to be used with generated ?=?, ?{}, and ^?{} calls. decl is the 147 /// object being constructed. The function wraps constructor and destructor calls in an 148 /// ImplicitCtorDtorStmt node. 149 template< typename OutputIterator > 150 void genImplicitCall( InitTweak::InitExpander & srcParam, Expression * dstParam, const std::string & fname, OutputIterator out, DeclarationWithType * decl, bool forward = true ) { 151 ObjectDecl *obj = dynamic_cast<ObjectDecl *>( decl ); 152 assert( obj ); 153 // unnamed bit fields are not copied as they cannot be accessed 154 if ( isUnnamedBitfield( obj ) ) return; 155 156 bool addCast = (fname == "?{}" || fname == "^?{}") && ( !obj || ( obj && obj->get_bitfieldWidth() == NULL ) ); 157 std::list< Statement * > stmts; 158 genCall( srcParam, dstParam, fname, back_inserter( stmts ), obj->get_type(), addCast, forward ); 159 160 // currently genCall should produce at most one element, but if that changes then the next line needs to be updated to grab the statement which contains the call 161 assert( stmts.size() <= 1 ); 162 if ( stmts.size() == 1 ) { 163 Statement * callStmt = stmts.front(); 164 if ( addCast ) { 165 // implicitly generated ctor/dtor calls should be wrapped 166 // so that later passes are aware they were generated. 167 // xxx - don't mark as an implicit ctor/dtor if obj is a bitfield, 168 // because this causes the address to be taken at codegen, which is illegal in C. 169 callStmt = new ImplicitCtorDtorStmt( callStmt ); 170 } 171 *out++ = callStmt; 172 } 173 } 175 } 174 176 } // namespace SymTab 175 176 // Local Variables: // 177 // tab-width: 4 // 178 // mode: c++ // 179 // compile-command: "make install" // 180 // End: // 181 177 #endif // AUTOGEN_H
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