source: src/Parser/ExpressionNode.cc@ 9706554

ADT aaron-thesis arm-eh ast-experimental cleanup-dtors ctor deferred_resn demangler enum forall-pointer-decay jacob/cs343-translation jenkins-sandbox memory new-ast new-ast-unique-expr new-env no_list persistent-indexer pthread-emulation qualifiedEnum resolv-new with_gc
Last change on this file since 9706554 was 9706554, checked in by Peter A. Buhr <pabuhr@…>, 9 years ago

even more refactoring of parser code

  • Property mode set to 100644
File size: 22.9 KB
Line 
1//
2// Cforall Version 1.0.0 Copyright (C) 2015 University of Waterloo
3//
4// The contents of this file are covered under the licence agreement in the
5// file "LICENCE" distributed with Cforall.
6//
7// ExpressionNode.cc --
8//
9// Author : Rodolfo G. Esteves
10// Created On : Sat May 16 13:17:07 2015
11// Last Modified By : Peter A. Buhr
12// Last Modified On : Fri Aug 5 11:39:25 2016
13// Update Count : 391
14//
15
16#include <cassert>
17#include <cctype>
18#include <algorithm>
19#include <sstream>
20#include <cstdio>
21
22#include "ParseNode.h"
23#include "TypeData.h"
24#include "SynTree/Constant.h"
25#include "SynTree/Expression.h"
26#include "SynTree/Declaration.h"
27#include "Common/UnimplementedError.h"
28#include "parseutility.h"
29#include "Common/utility.h"
30
31using namespace std;
32
33ExpressionNode::ExpressionNode() : ParseNode() {}
34
35ExpressionNode::ExpressionNode( const string *name ) : ParseNode( name ) {}
36
37ExpressionNode::ExpressionNode( const ExpressionNode &other ) : ParseNode( other.name ), extension( other.extension ) {
38 if ( other.argName ) {
39 argName = other.argName->clone();
40 } else {
41 argName = 0;
42 } // if
43}
44
45ExpressionNode * ExpressionNode::set_argName( const std::string *aName ) {
46 argName = new VarRefNode( aName );
47 return this;
48}
49
50ExpressionNode * ExpressionNode::set_argName( ExpressionNode *aDesignator ) {
51 argName = aDesignator;
52 return this;
53}
54
55void ExpressionNode::printDesignation( std::ostream &os, int indent ) const {
56 if ( argName ) {
57 os << string( indent, ' ' ) << "(designated by: ";
58 argName->printOneLine( os, indent );
59 os << ")" << std::endl;
60 } // if
61}
62
63//##############################################################################
64
65NullExprNode::NullExprNode() {}
66
67NullExprNode *NullExprNode::clone() const {
68 return new NullExprNode();
69}
70
71void NullExprNode::print( std::ostream & os, int indent ) const {
72 printDesignation( os );
73 os << "null expression";
74}
75
76void NullExprNode::printOneLine( std::ostream & os, int indent ) const {
77 printDesignation( os );
78 os << "null";
79}
80
81Expression *NullExprNode::build() const {
82 return 0;
83}
84
85// CommaExprNode *ExpressionNode::add_to_list( ExpressionNode *exp ) {
86// return new CommaExprNode( this, exp );
87// }
88
89//##############################################################################
90
91ConstantNode::ConstantNode( ConstantExpr *expr ) : expr( expr ) {
92} // ConstantNode::ConstantNode
93
94ConstantNode *ConstantNode::appendstr( const std::string *newValue ) {
95 assert( newValue != 0 );
96
97 string value = expr->get_constant()->get_value();
98
99 // "abc" "def" "ghi" => "abcdefghi", remove new text from quotes and insert before last quote in old string.
100 value.insert( value.length() - 1, newValue->substr( 1, newValue->length() - 2 ) );
101 expr->get_constant()->set_value( value );
102
103 delete newValue; // allocated by lexer
104 return this;
105}
106
107void ConstantNode::printOneLine( std::ostream &os, int indent ) const {
108 // os << string( indent, ' ' );
109 // printDesignation( os );
110
111 // switch ( type ) {
112 // case Integer:
113 // case Float:
114 // os << value ;
115 // break;
116 // case Character:
117 // os << "'" << value << "'";
118 // break;
119 // case String:
120 // os << '"' << value << '"';
121 // break;
122 // } // switch
123
124 // os << ' ';
125}
126
127void ConstantNode::print( std::ostream &os, int indent ) const {
128 printOneLine( os, indent );
129 os << endl;
130}
131
132Expression *ConstantNode::build() const {
133 return expr->clone();
134}
135
136//##############################################################################
137
138VarRefNode::VarRefNode() : isLabel( false ) {}
139
140VarRefNode::VarRefNode( const string *name_, bool labelp ) : ExpressionNode( name_ ), isLabel( labelp ) {}
141
142VarRefNode::VarRefNode( const VarRefNode &other ) : ExpressionNode( other ), isLabel( other.isLabel ) {
143}
144
145Expression *VarRefNode::build() const {
146 return new NameExpr( get_name(), maybeBuild< Expression >( get_argName() ) );
147}
148
149void VarRefNode::printOneLine( std::ostream &os, int indent ) const {
150 printDesignation( os );
151 os << get_name() << ' ';
152}
153
154void VarRefNode::print( std::ostream &os, int indent ) const {
155 printDesignation( os );
156 os << string( indent, ' ' ) << "Referencing: ";
157 os << "Variable: " << get_name();
158 os << endl;
159}
160
161//##############################################################################
162
163DesignatorNode::DesignatorNode( ExpressionNode *expr, bool isArrayIndex ) : isArrayIndex( isArrayIndex ) {
164 set_argName( expr );
165 assert( get_argName() );
166
167 if ( ! isArrayIndex ) {
168 if ( VarRefNode * var = dynamic_cast< VarRefNode * >( expr ) ) {
169
170 stringstream ss( var->get_name() );
171 double value;
172 if ( ss >> value ) {
173 // this is a floating point constant. It MUST be
174 // ".0" or ".1", otherwise the program is invalid
175 if ( ! (var->get_name() == ".0" || var->get_name() == ".1") ) {
176 throw SemanticError( "invalid designator name: " + var->get_name() );
177 } // if
178 var->set_name( var->get_name().substr(1) );
179 } // if
180 } // if
181 } // if
182}
183
184DesignatorNode::DesignatorNode( const DesignatorNode &other ) : ExpressionNode( other ), isArrayIndex( other.isArrayIndex ) {
185}
186
187class DesignatorFixer : public Mutator {
188public:
189 virtual Expression* mutate( NameExpr *nameExpr ) {
190 if ( nameExpr->get_name() == "0" || nameExpr->get_name() == "1" ) {
191 Constant val( new BasicType( Type::Qualifiers(), BasicType::SignedInt ), nameExpr->get_name() );
192 delete nameExpr;
193 return new ConstantExpr( val );
194 }
195 return nameExpr;
196 }
197};
198
199Expression *DesignatorNode::build() const {
200 Expression * ret = maybeBuild<Expression>(get_argName());
201
202 if ( isArrayIndex ) {
203 // need to traverse entire structure and change any instances of 0 or 1 to
204 // ConstantExpr
205 DesignatorFixer fixer;
206 ret = ret->acceptMutator( fixer );
207 } // if
208
209 return ret;
210}
211
212void DesignatorNode::printOneLine( std::ostream &os, int indent ) const {
213 if ( get_argName() ) {
214 if ( isArrayIndex ) {
215 os << "[";
216 get_argName()->printOneLine( os, indent );
217 os << "]";
218 } else {
219 os << ".";
220 get_argName()->printOneLine( os, indent );
221 }
222 } // if
223}
224
225void DesignatorNode::print( std::ostream &os, int indent ) const {
226 if ( get_argName() ) {
227 if ( isArrayIndex ) {
228 os << "[";
229 get_argName()->print( os, indent );
230 os << "]";
231 } else {
232 os << ".";
233 get_argName()->print( os, indent );
234 }
235 } // if
236}
237
238//##############################################################################
239
240static const char *opName[] = {
241 "TupleC", "Comma", "TupleFieldSel", // "TuplePFieldSel", // n-adic
242 // triadic
243 "Cond", "NCond",
244 // diadic
245 "SizeOf", "AlignOf", "OffsetOf", "Attr", "?+?", "?-?", "?*?", "?/?", "?%?", "||", "&&",
246 "?|?", "?&?", "?^?", "Cast", "?<<?", "?>>?", "?<?", "?>?", "?<=?", "?>=?", "?==?", "?!=?",
247 "?=?", "?*=?", "?/=?", "?%=?", "?+=?", "?-=?", "?<<=?", "?>>=?", "?&=?", "?^=?", "?|=?",
248 "?[?]", "FieldSel", "PFieldSel", "...",
249 // monadic
250 "+?", "-?", "AddressOf", "*?", "!?", "~?", "++?", "?++", "--?", "?--", "&&"
251};
252
253OperatorNode::OperatorNode( Type t ) : type( t ) {}
254
255OperatorNode::OperatorNode( const OperatorNode &other ) : ExpressionNode( other ), type( other.type ) {
256}
257
258OperatorNode::~OperatorNode() {}
259
260OperatorNode::Type OperatorNode::get_type( void ) const {
261 return type;
262}
263
264void OperatorNode::printOneLine( std::ostream &os, int indent ) const {
265 printDesignation( os );
266 os << opName[ type ] << ' ';
267}
268
269void OperatorNode::print( std::ostream &os, int indent ) const{
270 printDesignation( os );
271 os << string( indent, ' ' ) << "Operator: " << opName[type] << endl;
272 return;
273}
274
275const char *OperatorNode::get_typename( void ) const{
276 return opName[ type ];
277}
278
279//##############################################################################
280
281CompositeExprNode::CompositeExprNode() : ExpressionNode(), function( 0 ), arguments( 0 ) {
282}
283
284CompositeExprNode::CompositeExprNode( const string *name_ ) : ExpressionNode( name_ ), function( 0 ), arguments( 0 ) {
285}
286
287CompositeExprNode::CompositeExprNode( ExpressionNode *f, ExpressionNode *args ):
288 function( f ), arguments( args ) {
289}
290
291CompositeExprNode::CompositeExprNode( ExpressionNode *f, ExpressionNode *arg1, ExpressionNode *arg2 ):
292 function( f ), arguments( arg1 ) {
293 arguments->set_link( arg2 );
294}
295
296CompositeExprNode::CompositeExprNode( const CompositeExprNode &other ) : ExpressionNode( other ), function( maybeClone( other.function ) ), arguments( 0 ) {
297 ParseNode *cur = other.arguments;
298 while ( cur ) {
299 if ( arguments ) {
300 arguments->set_link( cur->clone() );
301 } else {
302 arguments = ( ExpressionNode*)cur->clone();
303 } // if
304 cur = cur->get_link();
305 }
306}
307
308CompositeExprNode::~CompositeExprNode() {
309 delete function;
310 delete arguments;
311}
312
313
314Expression *build_cast( TypeValueNode * arg, ExpressionNode *expr_node ) {
315 DeclarationNode *decl_node = arg->get_decl();
316
317 Type *targetType = decl_node->buildType();
318 if ( dynamic_cast< VoidType* >( targetType ) ) {
319 delete targetType;
320 return new CastExpr( maybeBuild<Expression>(expr_node) );
321 } else {
322 return new CastExpr( maybeBuild<Expression>(expr_node), targetType );
323 } // if
324}
325
326Expression *build_fieldSel( ExpressionNode *expr_node, VarRefNode *member ) {
327 NameExpr* memberExpr = dynamic_cast<NameExpr*> ( maybeBuild<Expression>( member) );
328 assert( memberExpr );
329 UntypedMemberExpr *ret = new UntypedMemberExpr( memberExpr->get_name(), maybeBuild<Expression>(expr_node) );
330 delete member;
331 return ret;
332}
333
334Expression *build_pfieldSel( ExpressionNode *expr_node, VarRefNode *member ) {
335 NameExpr* memberExpr = dynamic_cast<NameExpr*> ( maybeBuild<Expression>( member) );
336 assert( memberExpr );
337 UntypedExpr *deref = new UntypedExpr( new NameExpr( "*?" ) );
338 deref->get_args().push_back( maybeBuild<Expression>(expr_node) );
339 UntypedMemberExpr *ret = new UntypedMemberExpr( memberExpr->get_name(), deref );
340 delete member;
341 return ret;
342}
343
344Expression *build_addressOf( ExpressionNode *expr_node ) {
345 return new AddressExpr( maybeBuild<Expression>(expr_node) );
346}
347Expression *build_sizeOf( ExpressionNode *expr_node ) {
348 if ( TypeValueNode * arg = dynamic_cast<TypeValueNode *>( expr_node ) ) {
349 return new SizeofExpr( arg->get_decl()->buildType() );
350 } else {
351 return new SizeofExpr( maybeBuild<Expression>(expr_node) );
352 } // if
353}
354Expression *build_alignOf( ExpressionNode *expr_node ) {
355 if ( TypeValueNode * arg = dynamic_cast<TypeValueNode *>( expr_node ) ) {
356 return new AlignofExpr( arg->get_decl()->buildType() );
357 } else {
358 return new AlignofExpr( maybeBuild<Expression>(expr_node) );
359 } // if
360}
361Expression *build_offsetOf( TypeValueNode * arg, VarRefNode *member ) {
362 NameExpr *memberExpr = dynamic_cast<NameExpr *>( maybeBuild<Expression>( member ) );
363 assert( memberExpr );
364 return new UntypedOffsetofExpr( arg->get_decl()->buildType(), memberExpr->get_name() );
365}
366
367Expression *build_and_or( ExpressionNode *expr_node1, ExpressionNode *expr_node2, bool kind ) {
368 return new LogicalExpr( notZeroExpr( maybeBuild<Expression>(expr_node1) ), notZeroExpr( maybeBuild<Expression>(expr_node2) ), kind );
369}
370
371Expression *build_unary_val( OperatorNode::Type op, ExpressionNode *expr_node ) {
372 std::list<Expression *> args;
373 args.push_back( maybeBuild<Expression>(expr_node) );
374 return new UntypedExpr( new NameExpr( opName[ op ] ), args );
375}
376Expression *build_unary_ptr( OperatorNode::Type op, ExpressionNode *expr_node ) {
377 std::list<Expression *> args;
378 args.push_back( new AddressExpr( maybeBuild<Expression>(expr_node) ) );
379 return new UntypedExpr( new NameExpr( opName[ op ] ), args );
380}
381Expression *build_binary_val( OperatorNode::Type op, ExpressionNode *expr_node1, ExpressionNode *expr_node2 ) {
382 std::list<Expression *> args;
383 args.push_back( maybeBuild<Expression>(expr_node1) );
384 args.push_back( maybeBuild<Expression>(expr_node2) );
385 return new UntypedExpr( new NameExpr( opName[ op ] ), args );
386}
387Expression *build_binary_ptr( OperatorNode::Type op, ExpressionNode *expr_node1, ExpressionNode *expr_node2 ) {
388 std::list<Expression *> args;
389 args.push_back( new AddressExpr( maybeBuild<Expression>(expr_node1) ) );
390 args.push_back( maybeBuild<Expression>(expr_node2) );
391 return new UntypedExpr( new NameExpr( opName[ op ] ), args );
392}
393
394Expression *build_cond( ExpressionNode *expr_node1, ExpressionNode *expr_node2, ExpressionNode *expr_node3 ) {
395 return new ConditionalExpr( notZeroExpr( maybeBuild<Expression>(expr_node1) ), maybeBuild<Expression>(expr_node2), maybeBuild<Expression>(expr_node3) );
396}
397
398Expression *build_comma( ExpressionNode *expr_node1, ExpressionNode *expr_node2 ) {
399 return new CommaExpr( maybeBuild<Expression>(expr_node1), maybeBuild<Expression>(expr_node2) );
400}
401
402Expression *build_attr( VarRefNode *var, ExpressionNode * expr ) {
403 if ( TypeValueNode * arg = dynamic_cast<TypeValueNode *>( expr ) ) {
404 return new AttrExpr( maybeBuild<Expression>(var), arg->get_decl()->buildType() );
405 } else {
406 return new AttrExpr( maybeBuild<Expression>(var), maybeBuild<Expression>(expr) );
407 } // if
408}
409
410Expression *build_tuple( ExpressionNode * expr ) {
411 TupleExpr *ret = new TupleExpr();
412 buildList( expr, ret->get_exprs() );
413 return ret;
414}
415
416Expression *build_func( ExpressionNode * function, ExpressionNode * expr ) {
417 std::list<Expression *> args;
418
419 buildList( expr, args );
420 return new UntypedExpr( maybeBuild<Expression>(function), args, nullptr );
421}
422
423CompositeExprNode2::CompositeExprNode2( Expression *expr ) : expr( expr ) {}
424CompositeExprNode2::CompositeExprNode2( const CompositeExprNode2 &other ) : expr( other.expr->clone() ) {}
425CompositeExprNode2::~CompositeExprNode2() { delete expr; }
426void CompositeExprNode2::print( std::ostream &, int indent ) const { assert( false ); }
427void CompositeExprNode2::printOneLine( std::ostream &, int indent ) const { assert( false ); }
428
429
430Expression *CompositeExprNode::build() const {
431 OperatorNode *op;
432 std::list<Expression *> args;
433
434 buildList( get_args(), args );
435
436 if ( ! ( op = dynamic_cast<OperatorNode *>( function ) ) ) { // function as opposed to operator
437 return new UntypedExpr( maybeBuild<Expression>(function), args, maybeBuild< Expression >( get_argName() ));
438 } // if
439
440 assert( ((void)"CompositeExprNode::build", false) );
441 return nullptr;
442}
443
444void CompositeExprNode::printOneLine( std::ostream &os, int indent ) const {
445 printDesignation( os );
446 os << "( ";
447 function->printOneLine( os, indent );
448 for ( ExpressionNode *cur = arguments; cur != 0; cur = dynamic_cast< ExpressionNode* >( cur->get_link() ) ) {
449 cur->printOneLine( os, indent );
450 } // for
451 os << ") ";
452}
453
454void CompositeExprNode::print( std::ostream &os, int indent ) const {
455 printDesignation( os );
456 os << string( indent, ' ' ) << "Application of: " << endl;
457 function->print( os, indent + ParseNode::indent_by );
458
459 os << string( indent, ' ' ) ;
460 if ( arguments ) {
461 os << "... on arguments: " << endl;
462 arguments->printList( os, indent + ParseNode::indent_by );
463 } else
464 os << "... on no arguments: " << endl;
465}
466
467void CompositeExprNode::set_function( ExpressionNode *f ) {
468 function = f;
469}
470
471void CompositeExprNode::set_args( ExpressionNode *args ) {
472 arguments = args;
473}
474
475ExpressionNode *CompositeExprNode::get_function( void ) const {
476 return function;
477}
478
479ExpressionNode *CompositeExprNode::get_args( void ) const {
480 return arguments;
481}
482
483void CompositeExprNode::add_arg( ExpressionNode *arg ) {
484 if ( arguments )
485 arguments->set_link( arg );
486 else
487 set_args( arg );
488}
489
490//##############################################################################
491
492Expression *AsmExprNode::build() const {
493 return new AsmExpr( maybeBuild< Expression >( inout ), (ConstantExpr *)maybeBuild<Expression>(constraint), maybeBuild<Expression>(operand) );
494}
495
496void AsmExprNode::print( std::ostream &os, int indent ) const {
497 os << string( indent, ' ' ) << "Assembler Expression:" << endl;
498 if ( inout ) {
499 os << string( indent, ' ' ) << "inout: " << std::endl;
500 inout->print( os, indent + 2 );
501 } // if
502 if ( constraint ) {
503 os << string( indent, ' ' ) << "constraint: " << std::endl;
504 constraint->print( os, indent + 2 );
505 } // if
506 if ( operand ) {
507 os << string( indent, ' ' ) << "operand: " << std::endl;
508 operand->print( os, indent + 2 );
509 } // if
510}
511
512void AsmExprNode::printOneLine( std::ostream &os, int indent ) const {
513 printDesignation( os );
514 os << "( ";
515 if ( inout ) inout->printOneLine( os, indent + 2 );
516 os << ", ";
517 if ( constraint ) constraint->printOneLine( os, indent + 2 );
518 os << ", ";
519 if ( operand ) operand->printOneLine( os, indent + 2 );
520 os << ") ";
521}
522
523//##############################################################################
524
525void LabelNode::print( std::ostream &os, int indent ) const {}
526
527void LabelNode::printOneLine( std::ostream &os, int indent ) const {}
528
529//##############################################################################
530
531CommaExprNode::CommaExprNode(): CompositeExprNode( new OperatorNode( OperatorNode::Comma )) {}
532
533CommaExprNode::CommaExprNode( ExpressionNode *exp ) : CompositeExprNode( new OperatorNode( OperatorNode::Comma ), exp ) {
534}
535
536CommaExprNode::CommaExprNode( ExpressionNode *exp1, ExpressionNode *exp2) : CompositeExprNode( new OperatorNode( OperatorNode::Comma ), exp1, exp2) {
537}
538
539// CommaExprNode *CommaExprNode::add_to_list( ExpressionNode *exp ) {
540// add_arg( exp );
541//
542// return this;
543// }
544
545CommaExprNode::CommaExprNode( const CommaExprNode &other ) : CompositeExprNode( other ) {
546}
547
548//##############################################################################
549
550ValofExprNode::ValofExprNode( StatementNode *s ): body( s ) {}
551
552ValofExprNode::ValofExprNode( const ValofExprNode &other ) : ExpressionNode( other ), body( maybeClone( body ) ) {
553}
554
555ValofExprNode::~ValofExprNode() {
556 delete body;
557}
558
559void ValofExprNode::print( std::ostream &os, int indent ) const {
560 printDesignation( os );
561 os << string( indent, ' ' ) << "Valof Expression:" << std::endl;
562 get_body()->print( os, indent + 4);
563}
564
565void ValofExprNode::printOneLine( std::ostream &, int indent ) const {
566 assert( false );
567}
568
569Expression *ValofExprNode::build() const {
570 return new UntypedValofExpr ( maybeBuild<Statement>(get_body()), maybeBuild< Expression >( get_argName() ) );
571}
572
573//##############################################################################
574
575ForCtlExprNode::ForCtlExprNode( ParseNode *init_, ExpressionNode *cond, ExpressionNode *incr ) throw ( SemanticError ) : condition( cond ), change( incr ) {
576 if ( init_ == 0 )
577 init = 0;
578 else {
579 DeclarationNode *decl;
580 ExpressionNode *exp;
581
582 if (( decl = dynamic_cast<DeclarationNode *>(init_) ) != 0)
583 init = new StatementNode( decl );
584 else if (( exp = dynamic_cast<ExpressionNode *>( init_)) != 0)
585 init = new StatementNode( StatementNode::Exp, exp );
586 else
587 throw SemanticError("Error in for control expression");
588 }
589}
590
591ForCtlExprNode::ForCtlExprNode( const ForCtlExprNode &other )
592 : ExpressionNode( other ), init( maybeClone( other.init ) ), condition( maybeClone( other.condition ) ), change( maybeClone( other.change ) ) {
593}
594
595ForCtlExprNode::~ForCtlExprNode() {
596 delete init;
597 delete condition;
598 delete change;
599}
600
601Expression *ForCtlExprNode::build() const {
602 // this shouldn't be used!
603 assert( false );
604 return 0;
605}
606
607void ForCtlExprNode::print( std::ostream &os, int indent ) const{
608 os << string( indent,' ' ) << "For Control Expression -- :" << endl;
609
610 os << string( indent + 2, ' ' ) << "initialization:" << endl;
611 if ( init != 0 )
612 init->printList( os, indent + 4 );
613
614 os << string( indent + 2, ' ' ) << "condition: " << endl;
615 if ( condition != 0 )
616 condition->print( os, indent + 4 );
617 os << string( indent + 2, ' ' ) << "increment: " << endl;
618 if ( change != 0 )
619 change->print( os, indent + 4 );
620}
621
622void ForCtlExprNode::printOneLine( std::ostream &, int indent ) const {
623 assert( false );
624}
625
626//##############################################################################
627
628TypeValueNode::TypeValueNode( DeclarationNode *decl ) : decl( decl ) {
629}
630
631TypeValueNode::TypeValueNode( const TypeValueNode &other ) : ExpressionNode( other ), decl( maybeClone( other.decl ) ) {
632}
633
634Expression *TypeValueNode::build() const {
635 return new TypeExpr( decl->buildType() );
636}
637
638void TypeValueNode::print( std::ostream &os, int indent ) const {
639 os << std::string( indent, ' ' ) << "Type:";
640 get_decl()->print( os, indent + 2);
641}
642
643void TypeValueNode::printOneLine( std::ostream &os, int indent ) const {
644 os << "Type:";
645 get_decl()->print( os, indent + 2);
646}
647
648
649CompoundLiteralNode::CompoundLiteralNode( DeclarationNode *type, InitializerNode *kids ) : type( type ), kids( kids ) {}
650CompoundLiteralNode::CompoundLiteralNode( const CompoundLiteralNode &other ) : ExpressionNode( other ), type( other.type ), kids( other.kids ) {}
651
652CompoundLiteralNode::~CompoundLiteralNode() {
653 delete kids;
654 delete type;
655}
656
657CompoundLiteralNode *CompoundLiteralNode::clone() const {
658 return new CompoundLiteralNode( *this );
659}
660
661void CompoundLiteralNode::print( std::ostream &os, int indent ) const {
662 os << string( indent,' ' ) << "CompoundLiteralNode:" << endl;
663
664 os << string( indent + 2, ' ' ) << "type:" << endl;
665 if ( type != 0 )
666 type->print( os, indent + 4 );
667
668 os << string( indent + 2, ' ' ) << "initialization:" << endl;
669 if ( kids != 0 )
670 kids->printList( os, indent + 4 );
671}
672
673void CompoundLiteralNode::printOneLine( std::ostream &os, int indent ) const {
674 os << "( ";
675 if ( type ) type->print( os );
676 os << ", ";
677 if ( kids ) kids->printOneLine( os );
678 os << ") ";
679}
680
681Expression *CompoundLiteralNode::build() const {
682 Declaration * newDecl = maybeBuild<Declaration>(type); // compound literal type
683 if ( DeclarationWithType * newDeclWithType = dynamic_cast< DeclarationWithType * >( newDecl ) ) { // non-sue compound-literal type
684 return new CompoundLiteralExpr( newDeclWithType->get_type(), maybeBuild<Initializer>(kids) );
685 // these types do not have associated type information
686 } else if ( StructDecl * newDeclStructDecl = dynamic_cast< StructDecl * >( newDecl ) ) {
687 return new CompoundLiteralExpr( new StructInstType( Type::Qualifiers(), newDeclStructDecl->get_name() ), maybeBuild<Initializer>(kids) );
688 } else if ( UnionDecl * newDeclUnionDecl = dynamic_cast< UnionDecl * >( newDecl ) ) {
689 return new CompoundLiteralExpr( new UnionInstType( Type::Qualifiers(), newDeclUnionDecl->get_name() ), maybeBuild<Initializer>(kids) );
690 } else if ( EnumDecl * newDeclEnumDecl = dynamic_cast< EnumDecl * >( newDecl ) ) {
691 return new CompoundLiteralExpr( new EnumInstType( Type::Qualifiers(), newDeclEnumDecl->get_name() ), maybeBuild<Initializer>(kids) );
692 } else {
693 assert( false );
694 } // if
695}
696
697ExpressionNode *flattenCommas( ExpressionNode *list ) {
698 if ( CompositeExprNode *composite = dynamic_cast< CompositeExprNode * >( list ) ) {
699 OperatorNode *op;
700 if ( ( op = dynamic_cast< OperatorNode * >( composite->get_function() )) && ( op->get_type() == OperatorNode::Comma ) ) {
701 if ( ExpressionNode *next = dynamic_cast< ExpressionNode * >( list->get_link() ) )
702 composite->add_arg( next );
703 return flattenCommas( composite->get_args() );
704 } // if
705 } // if
706
707 if ( ExpressionNode *next = dynamic_cast< ExpressionNode * >( list->get_link() ) )
708 list->set_next( flattenCommas( next ) );
709
710 return list;
711}
712
713ExpressionNode *tupleContents( ExpressionNode *tuple ) {
714 if ( CompositeExprNode *composite = dynamic_cast< CompositeExprNode * >( tuple ) ) {
715 OperatorNode *op = 0;
716 if ( ( op = dynamic_cast< OperatorNode * >( composite->get_function() )) && ( op->get_type() == OperatorNode::TupleC ) )
717 return composite->get_args();
718 } // if
719 return tuple;
720}
721
722// Local Variables: //
723// tab-width: 4 //
724// mode: c++ //
725// compile-command: "make install" //
726// End: //
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