source: src/Parser/DeclarationNode.cc@ 6a276a0

ADT aaron-thesis arm-eh ast-experimental cleanup-dtors deferred_resn demangler enum forall-pointer-decay jacob/cs343-translation jenkins-sandbox new-ast new-ast-unique-expr new-env no_list persistent-indexer pthread-emulation qualifiedEnum with_gc
Last change on this file since 6a276a0 was a16764a6, checked in by Thierry Delisle <tdelisle@…>, 8 years ago

Changed warning system to prepare for toggling warnings

  • Property mode set to 100644
File size: 35.9 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// DeclarationNode.cc --
8//
9// Author : Rodolfo G. Esteves
10// Created On : Sat May 16 12:34:05 2015
11// Last Modified By : Peter A. Buhr
12// Last Modified On : Thu Feb 22 15:37:17 2018
13// Update Count : 1033
14//
15
16#include <cassert> // for assert, assertf, strict_dynamic_cast
17#include <iterator> // for back_insert_iterator
18#include <list> // for list
19#include <memory> // for unique_ptr
20#include <ostream> // for operator<<, ostream, basic_ostream
21#include <string> // for string, operator+, allocator, char...
22
23#include "Common/SemanticError.h" // for SemanticError
24#include "Common/UniqueName.h" // for UniqueName
25#include "Common/utility.h" // for maybeClone, maybeBuild, CodeLocation
26#include "Parser/LinkageSpec.h" // for Spec, linkageName, Cforall
27#include "Parser/ParseNode.h" // for DeclarationNode, ExpressionNode
28#include "SynTree/Attribute.h" // for Attribute
29#include "SynTree/Declaration.h" // for TypeDecl, ObjectDecl, Declaration
30#include "SynTree/Expression.h" // for Expression, ConstantExpr
31#include "SynTree/Statement.h" // for AsmStmt
32#include "SynTree/Type.h" // for Type, Type::StorageClasses, Type::...
33#include "TypeData.h" // for TypeData, TypeData::Aggregate_t
34#include "TypedefTable.h" // for TypedefTable, TypedefTable::kind_t...
35
36class Initializer;
37
38extern TypedefTable typedefTable;
39
40using namespace std;
41
42// These must harmonize with the corresponding DeclarationNode enumerations.
43const char * DeclarationNode::basicTypeNames[] = { "void", "_Bool", "char", "int", "float", "double", "long double", "int128", "float80", "float128", "NoBasicTypeNames" };
44const char * DeclarationNode::complexTypeNames[] = { "_Complex", "_Imaginary", "NoComplexTypeNames" };
45const char * DeclarationNode::signednessNames[] = { "signed", "unsigned", "NoSignednessNames" };
46const char * DeclarationNode::lengthNames[] = { "short", "long", "long long", "NoLengthNames" };
47const char * DeclarationNode::aggregateNames[] = { "struct", "union", "trait", "coroutine", "monitor", "thread", "NoAggregateNames" };
48const char * DeclarationNode::typeClassNames[] = { "otype", "dtype", "ftype", "NoTypeClassNames" };
49const char * DeclarationNode::builtinTypeNames[] = { "__builtin_va_list", "NoBuiltinTypeNames" };
50
51UniqueName DeclarationNode::anonymous( "__anonymous" );
52
53extern LinkageSpec::Spec linkage; // defined in parser.yy
54
55DeclarationNode::DeclarationNode() :
56 type( nullptr ),
57 bitfieldWidth( nullptr ),
58 hasEllipsis( false ),
59 linkage( ::linkage ),
60 asmName( nullptr ),
61 initializer( nullptr ),
62 extension( false ),
63 asmStmt( nullptr ) {
64
65// variable.name = nullptr;
66 variable.tyClass = NoTypeClass;
67 variable.assertions = nullptr;
68 variable.initializer = nullptr;
69
70// attr.name = nullptr;
71 attr.expr = nullptr;
72 attr.type = nullptr;
73}
74
75DeclarationNode::~DeclarationNode() {
76// delete attr.name;
77 delete attr.expr;
78 delete attr.type;
79
80// delete variable.name;
81 delete variable.assertions;
82 delete variable.initializer;
83
84 delete type;
85 delete bitfieldWidth;
86
87 delete asmStmt;
88 // asmName, no delete, passed to next stage
89 delete initializer;
90}
91
92DeclarationNode * DeclarationNode::clone() const {
93 DeclarationNode * newnode = new DeclarationNode;
94 newnode->set_next( maybeClone( get_next() ) );
95 newnode->name = name ? new string( *name ) : nullptr;
96
97 newnode->type = maybeClone( type );
98 newnode->storageClasses = storageClasses;
99 newnode->funcSpecs = funcSpecs;
100 newnode->bitfieldWidth = maybeClone( bitfieldWidth );
101 newnode->enumeratorValue.reset( maybeClone( enumeratorValue.get() ) );
102 newnode->hasEllipsis = hasEllipsis;
103 newnode->linkage = linkage;
104 newnode->asmName = maybeClone( asmName );
105 cloneAll( attributes, newnode->attributes );
106 newnode->initializer = maybeClone( initializer );
107 newnode->extension = extension;
108 newnode->asmStmt = maybeClone( asmStmt );
109 newnode->error = error;
110
111// newnode->variable.name = variable.name ? new string( *variable.name ) : nullptr;
112 newnode->variable.tyClass = variable.tyClass;
113 newnode->variable.assertions = maybeClone( variable.assertions );
114 newnode->variable.initializer = maybeClone( variable.initializer );
115
116// newnode->attr.name = attr.name ? new string( *attr.name ) : nullptr;
117 newnode->attr.expr = maybeClone( attr.expr );
118 newnode->attr.type = maybeClone( attr.type );
119 return newnode;
120} // DeclarationNode::clone
121
122void DeclarationNode::print( std::ostream &os, int indent ) const {
123 os << string( indent, ' ' );
124 if ( name ) {
125 os << *name << ": ";
126 } else {
127 os << "unnamed: ";
128 } // if
129
130 if ( linkage != LinkageSpec::Cforall ) {
131 os << LinkageSpec::linkageName( linkage ) << " ";
132 } // if
133
134 storageClasses.print( os );
135 funcSpecs.print( os );
136
137 if ( type ) {
138 type->print( os, indent );
139 } else {
140 os << "untyped entity ";
141 } // if
142
143 if ( bitfieldWidth ) {
144 os << endl << string( indent + 2, ' ' ) << "with bitfield width ";
145 bitfieldWidth->printOneLine( os );
146 } // if
147
148 if ( initializer ) {
149 os << endl << string( indent + 2, ' ' ) << "with initializer ";
150 initializer->printOneLine( os );
151 os << " maybe constructed? " << initializer->get_maybeConstructed();
152
153 } // if
154
155 os << endl;
156}
157
158void DeclarationNode::printList( std::ostream &os, int indent ) const {
159 ParseNode::printList( os, indent );
160 if ( hasEllipsis ) {
161 os << string( indent, ' ' ) << "and a variable number of other arguments" << endl;
162 } // if
163}
164
165DeclarationNode * DeclarationNode::newFunction( string * name, DeclarationNode * ret, DeclarationNode * param, StatementNode * body ) {
166 DeclarationNode * newnode = new DeclarationNode;
167 newnode->name = name;
168 newnode->type = new TypeData( TypeData::Function );
169 newnode->type->function.params = param;
170 newnode->type->function.body = body;
171
172 // ignore unnamed routine declarations: void p( int (*)(int) );
173 if ( newnode->name ) {
174 typedefTable.addToEnclosingScope( *newnode->name, TypedefTable::ID );
175 } // if
176
177 if ( ret ) {
178 newnode->type->base = ret->type;
179 ret->type = nullptr;
180 delete ret;
181 } // if
182
183 return newnode;
184} // DeclarationNode::newFunction
185
186
187DeclarationNode * DeclarationNode::newStorageClass( Type::StorageClasses sc ) {
188 DeclarationNode * newnode = new DeclarationNode;
189 newnode->storageClasses = sc;
190 return newnode;
191} // DeclarationNode::newStorageClass
192
193DeclarationNode * DeclarationNode::newFuncSpecifier( Type::FuncSpecifiers fs ) {
194 DeclarationNode * newnode = new DeclarationNode;
195 newnode->funcSpecs = fs;
196 return newnode;
197} // DeclarationNode::newFuncSpecifier
198
199DeclarationNode * DeclarationNode::newTypeQualifier( Type::Qualifiers tq ) {
200 DeclarationNode * newnode = new DeclarationNode;
201 newnode->type = new TypeData();
202 newnode->type->qualifiers = tq;
203 return newnode;
204} // DeclarationNode::newQualifier
205
206DeclarationNode * DeclarationNode::newBasicType( BasicType bt ) {
207 DeclarationNode * newnode = new DeclarationNode;
208 newnode->type = new TypeData( TypeData::Basic );
209 newnode->type->basictype = bt;
210 return newnode;
211} // DeclarationNode::newBasicType
212
213DeclarationNode * DeclarationNode::newComplexType( ComplexType ct ) {
214 DeclarationNode * newnode = new DeclarationNode;
215 newnode->type = new TypeData( TypeData::Basic );
216 newnode->type->complextype = ct;
217 return newnode;
218} // DeclarationNode::newComplexType
219
220DeclarationNode * DeclarationNode::newSignedNess( Signedness sn ) {
221 DeclarationNode * newnode = new DeclarationNode;
222 newnode->type = new TypeData( TypeData::Basic );
223 newnode->type->signedness = sn;
224 return newnode;
225} // DeclarationNode::newSignedNess
226
227DeclarationNode * DeclarationNode::newLength( Length lnth ) {
228 DeclarationNode * newnode = new DeclarationNode;
229 newnode->type = new TypeData( TypeData::Basic );
230 newnode->type->length = lnth;
231 return newnode;
232} // DeclarationNode::newLength
233
234DeclarationNode * DeclarationNode::newForall( DeclarationNode * forall ) {
235 DeclarationNode * newnode = new DeclarationNode;
236 newnode->type = new TypeData( TypeData::Unknown );
237 newnode->type->forall = forall;
238 return newnode;
239} // DeclarationNode::newForall
240
241DeclarationNode * DeclarationNode::newFromTypedef( string * name ) {
242 DeclarationNode * newnode = new DeclarationNode;
243 newnode->type = new TypeData( TypeData::SymbolicInst );
244 newnode->type->symbolic.name = name;
245 newnode->type->symbolic.isTypedef = true;
246 newnode->type->symbolic.params = nullptr;
247 return newnode;
248} // DeclarationNode::newFromTypedef
249
250DeclarationNode * DeclarationNode::newAggregate( Aggregate kind, const string * name, ExpressionNode * actuals, DeclarationNode * fields, bool body ) {
251 assert( name );
252 DeclarationNode * newnode = new DeclarationNode;
253 newnode->type = new TypeData( TypeData::Aggregate );
254 newnode->type->aggregate.kind = kind;
255 newnode->type->aggregate.name = name;
256 newnode->type->aggregate.actuals = actuals;
257 newnode->type->aggregate.fields = fields;
258 newnode->type->aggregate.body = body;
259 newnode->type->aggregate.tagged = false;
260 newnode->type->aggregate.parent = nullptr;
261 return newnode;
262} // DeclarationNode::newAggregate
263
264DeclarationNode * DeclarationNode::newEnum( string * name, DeclarationNode * constants, bool body ) {
265 assert( name );
266 DeclarationNode * newnode = new DeclarationNode;
267 newnode->type = new TypeData( TypeData::Enum );
268 newnode->type->enumeration.name = name;
269 newnode->type->enumeration.constants = constants;
270 newnode->type->enumeration.body = body;
271 return newnode;
272} // DeclarationNode::newEnum
273
274DeclarationNode * DeclarationNode::newEnumConstant( string * name, ExpressionNode * constant ) {
275 DeclarationNode * newnode = new DeclarationNode;
276 newnode->name = name;
277 newnode->enumeratorValue.reset( constant );
278 typedefTable.addToEnclosingScope( *newnode->name, TypedefTable::ID );
279 return newnode;
280} // DeclarationNode::newEnumConstant
281
282DeclarationNode * DeclarationNode::newName( string * name ) {
283 DeclarationNode * newnode = new DeclarationNode;
284 newnode->name = name;
285 return newnode;
286} // DeclarationNode::newName
287
288DeclarationNode * DeclarationNode::newFromTypeGen( string * name, ExpressionNode * params ) {
289 DeclarationNode * newnode = new DeclarationNode;
290 newnode->type = new TypeData( TypeData::SymbolicInst );
291 newnode->type->symbolic.name = name;
292 newnode->type->symbolic.isTypedef = false;
293 newnode->type->symbolic.actuals = params;
294 return newnode;
295} // DeclarationNode::newFromTypeGen
296
297DeclarationNode * DeclarationNode::newTypeParam( TypeClass tc, string * name ) {
298 DeclarationNode * newnode = new DeclarationNode;
299 newnode->type = nullptr;
300 assert( ! newnode->name );
301// newnode->variable.name = name;
302 newnode->name = name;
303 newnode->variable.tyClass = tc;
304 newnode->variable.assertions = nullptr;
305 return newnode;
306} // DeclarationNode::newTypeParam
307
308DeclarationNode * DeclarationNode::newTrait( const string * name, DeclarationNode * params, DeclarationNode * asserts ) {
309 DeclarationNode * newnode = new DeclarationNode;
310 newnode->type = new TypeData( TypeData::Aggregate );
311 newnode->type->aggregate.name = name;
312 newnode->type->aggregate.kind = Trait;
313 newnode->type->aggregate.params = params;
314 newnode->type->aggregate.fields = asserts;
315 return newnode;
316} // DeclarationNode::newTrait
317
318DeclarationNode * DeclarationNode::newTraitUse( const string * name, ExpressionNode * params ) {
319 DeclarationNode * newnode = new DeclarationNode;
320 newnode->type = new TypeData( TypeData::AggregateInst );
321 newnode->type->aggInst.aggregate = new TypeData( TypeData::Aggregate );
322 newnode->type->aggInst.aggregate->aggregate.kind = Trait;
323 newnode->type->aggInst.aggregate->aggregate.name = name;
324 newnode->type->aggInst.params = params;
325 return newnode;
326} // DeclarationNode::newTraitUse
327
328DeclarationNode * DeclarationNode::newTypeDecl( string * name, DeclarationNode * typeParams ) {
329 DeclarationNode * newnode = new DeclarationNode;
330 newnode->name = name;
331 newnode->type = new TypeData( TypeData::Symbolic );
332 newnode->type->symbolic.isTypedef = false;
333 newnode->type->symbolic.params = typeParams;
334 return newnode;
335} // DeclarationNode::newTypeDecl
336
337DeclarationNode * DeclarationNode::newPointer( DeclarationNode * qualifiers, OperKinds kind ) {
338 DeclarationNode * newnode = new DeclarationNode;
339 newnode->type = new TypeData( kind == OperKinds::PointTo ? TypeData::Pointer : TypeData::Reference );
340 if ( kind == OperKinds::And ) {
341 // T && is parsed as 'And' operator rather than two references => add a second reference type
342 TypeData * td = new TypeData( TypeData::Reference );
343 td->base = newnode->type;
344 newnode->type = td;
345 }
346 if ( qualifiers ) {
347 return newnode->addQualifiers( qualifiers );
348 } else {
349 return newnode;
350 } // if
351} // DeclarationNode::newPointer
352
353DeclarationNode * DeclarationNode::newArray( ExpressionNode * size, DeclarationNode * qualifiers, bool isStatic ) {
354 DeclarationNode * newnode = new DeclarationNode;
355 newnode->type = new TypeData( TypeData::Array );
356 newnode->type->array.dimension = size;
357 newnode->type->array.isStatic = isStatic;
358 if ( newnode->type->array.dimension == nullptr || newnode->type->array.dimension->isExpressionType<ConstantExpr * >() ) {
359 newnode->type->array.isVarLen = false;
360 } else {
361 newnode->type->array.isVarLen = true;
362 } // if
363 return newnode->addQualifiers( qualifiers );
364} // DeclarationNode::newArray
365
366DeclarationNode * DeclarationNode::newVarArray( DeclarationNode * qualifiers ) {
367 DeclarationNode * newnode = new DeclarationNode;
368 newnode->type = new TypeData( TypeData::Array );
369 newnode->type->array.dimension = nullptr;
370 newnode->type->array.isStatic = false;
371 newnode->type->array.isVarLen = true;
372 return newnode->addQualifiers( qualifiers );
373}
374
375DeclarationNode * DeclarationNode::newBitfield( ExpressionNode * size ) {
376 DeclarationNode * newnode = new DeclarationNode;
377 newnode->bitfieldWidth = size;
378 return newnode;
379}
380
381DeclarationNode * DeclarationNode::newTuple( DeclarationNode * members ) {
382 DeclarationNode * newnode = new DeclarationNode;
383 newnode->type = new TypeData( TypeData::Tuple );
384 newnode->type->tuple = members;
385 return newnode;
386}
387
388DeclarationNode * DeclarationNode::newTypeof( ExpressionNode * expr ) {
389 DeclarationNode * newnode = new DeclarationNode;
390 newnode->type = new TypeData( TypeData::Typeof );
391 newnode->type->typeexpr = expr;
392 return newnode;
393}
394
395DeclarationNode * DeclarationNode::newBuiltinType( BuiltinType bt ) {
396 DeclarationNode * newnode = new DeclarationNode;
397 newnode->type = new TypeData( TypeData::Builtin );
398 newnode->builtin = bt;
399 newnode->type->builtintype = newnode->builtin;
400 return newnode;
401} // DeclarationNode::newBuiltinType
402
403DeclarationNode * DeclarationNode::newAttr( string * name, ExpressionNode * expr ) {
404 DeclarationNode * newnode = new DeclarationNode;
405 newnode->type = nullptr;
406// newnode->attr.name = name;
407 newnode->name = name;
408 newnode->attr.expr = expr;
409 return newnode;
410}
411
412DeclarationNode * DeclarationNode::newAttr( string * name, DeclarationNode * type ) {
413 DeclarationNode * newnode = new DeclarationNode;
414 newnode->type = nullptr;
415// newnode->attr.name = name;
416 newnode->name = name;
417 newnode->attr.type = type;
418 return newnode;
419}
420
421DeclarationNode * DeclarationNode::newAttribute( string * name, ExpressionNode * expr ) {
422 DeclarationNode * newnode = new DeclarationNode;
423 newnode->type = nullptr;
424 std::list< Expression * > exprs;
425 buildList( expr, exprs );
426 newnode->attributes.push_back( new Attribute( *name, exprs ) );
427 delete name;
428 return newnode;
429}
430
431DeclarationNode * DeclarationNode::newAsmStmt( StatementNode * stmt ) {
432 DeclarationNode * newnode = new DeclarationNode;
433 newnode->asmStmt = stmt;
434 return newnode;
435}
436
437void appendError( string & dst, const string & src ) {
438 if ( src.empty() ) return;
439 if ( dst.empty() ) { dst = src; return; }
440 dst += ", " + src;
441} // appendError
442
443void DeclarationNode::checkQualifiers( const TypeData * src, const TypeData * dst ) {
444 const Type::Qualifiers qsrc = src->qualifiers, qdst = dst->qualifiers; // optimization
445
446 if ( (qsrc & qdst).any() ) { // duplicates ?
447 for ( unsigned int i = 0; i < Type::NumTypeQualifier; i += 1 ) { // find duplicates
448 if ( qsrc[i] && qdst[i] ) {
449 appendError( error, string( "duplicate " ) + Type::QualifiersNames[i] );
450 } // if
451 } // for
452 } // for
453} // DeclarationNode::checkQualifiers
454
455void DeclarationNode::checkSpecifiers( DeclarationNode * src ) {
456 if ( (funcSpecs & src->funcSpecs).any() ) { // duplicates ?
457 for ( unsigned int i = 0; i < Type::NumFuncSpecifier; i += 1 ) { // find duplicates
458 if ( funcSpecs[i] && src->funcSpecs[i] ) {
459 appendError( error, string( "duplicate " ) + Type::FuncSpecifiersNames[i] );
460 } // if
461 } // for
462 } // if
463
464 if ( storageClasses.any() && src->storageClasses.any() ) { // any reason to check ?
465 if ( (storageClasses & src->storageClasses ).any() ) { // duplicates ?
466 for ( unsigned int i = 0; i < Type::NumStorageClass; i += 1 ) { // find duplicates
467 if ( storageClasses[i] && src->storageClasses[i] ) {
468 appendError( error, string( "duplicate " ) + Type::StorageClassesNames[i] );
469 } // if
470 } // for
471 // src is the new item being added and has a single bit
472 } else if ( ! src->storageClasses.is_threadlocal ) { // conflict ?
473 appendError( error, string( "conflicting " ) + Type::StorageClassesNames[storageClasses.ffs()] +
474 " & " + Type::StorageClassesNames[src->storageClasses.ffs()] );
475 src->storageClasses.reset(); // FIX to preserve invariant of one basic storage specifier
476 } // if
477 } // if
478
479 appendError( error, src->error );
480} // DeclarationNode::checkSpecifiers
481
482DeclarationNode * DeclarationNode::copySpecifiers( DeclarationNode * q ) {
483 funcSpecs |= q->funcSpecs;
484 storageClasses |= q->storageClasses;
485
486 for ( Attribute *attr: reverseIterate( q->attributes ) ) {
487 attributes.push_front( attr->clone() );
488 } // for
489 return this;
490} // DeclarationNode::copySpecifiers
491
492static void addQualifiersToType( TypeData *&src, TypeData * dst ) {
493 if ( src->forall && dst->kind == TypeData::Function ) {
494 if ( dst->forall ) {
495 dst->forall->appendList( src->forall );
496 } else {
497 dst->forall = src->forall;
498 } // if
499 src->forall = nullptr;
500 } // if
501 if ( dst->base ) {
502 addQualifiersToType( src, dst->base );
503 } else if ( dst->kind == TypeData::Function ) {
504 dst->base = src;
505 src = nullptr;
506 } else {
507 dst->qualifiers |= src->qualifiers;
508 } // if
509} // addQualifiersToType
510
511DeclarationNode * DeclarationNode::addQualifiers( DeclarationNode * q ) {
512 if ( ! q ) { delete q; return this; } // empty qualifier
513
514 checkSpecifiers( q );
515 copySpecifiers( q );
516
517 if ( ! q->type ) { delete q; return this; }
518
519 if ( ! type ) {
520 type = q->type; // reuse structure
521 q->type = nullptr;
522 delete q;
523 return this;
524 } // if
525
526 if ( q->type->forall ) { // forall qualifier ?
527 if ( type->forall ) { // polymorphic routine ?
528 type->forall->appendList( q->type->forall ); // augment forall qualifier
529 } else {
530 if ( type->kind == TypeData::Aggregate ) { // struct/union ?
531 if ( type->aggregate.params ) { // polymorphic ?
532 type->aggregate.params->appendList( q->type->forall ); // augment forall qualifier
533 } else { // not polymorphic
534 type->aggregate.params = q->type->forall; // make polymorphic type
535 // change implicit typedef from TYPEDEFname to TYPEGENname
536 typedefTable.changeKind( *type->aggregate.name, TypedefTable::TG );
537 } // if
538 } else { // not polymorphic
539 type->forall = q->type->forall; // make polymorphic routine
540 } // if
541 } // if
542 q->type->forall = nullptr; // forall qualifier moved
543 } // if
544
545 checkQualifiers( type, q->type );
546 addQualifiersToType( q->type, type );
547
548 delete q;
549 return this;
550} // addQualifiers
551
552static void addTypeToType( TypeData *&src, TypeData *&dst ) {
553 if ( src->forall && dst->kind == TypeData::Function ) {
554 if ( dst->forall ) {
555 dst->forall->appendList( src->forall );
556 } else {
557 dst->forall = src->forall;
558 } // if
559 src->forall = nullptr;
560 } // if
561 if ( dst->base ) {
562 addTypeToType( src, dst->base );
563 } else {
564 switch ( dst->kind ) {
565 case TypeData::Unknown:
566 src->qualifiers |= dst->qualifiers;
567 dst = src;
568 src = nullptr;
569 break;
570 case TypeData::Basic:
571 dst->qualifiers |= src->qualifiers;
572 if ( src->kind != TypeData::Unknown ) {
573 assert( src->kind == TypeData::Basic );
574
575 if ( dst->basictype == DeclarationNode::NoBasicType ) {
576 dst->basictype = src->basictype;
577 } else if ( src->basictype != DeclarationNode::NoBasicType )
578 SemanticError( yylloc, src, string( "conflicting type specifier " ) + DeclarationNode::basicTypeNames[ src->basictype ] + " in type: " );
579
580 if ( dst->complextype == DeclarationNode::NoComplexType ) {
581 dst->complextype = src->complextype;
582 } else if ( src->complextype != DeclarationNode::NoComplexType )
583 SemanticError( yylloc, src, string( "conflicting type specifier " ) + DeclarationNode::complexTypeNames[ src->complextype ] + " in type: " );
584
585 if ( dst->signedness == DeclarationNode::NoSignedness ) {
586 dst->signedness = src->signedness;
587 } else if ( src->signedness != DeclarationNode::NoSignedness )
588 SemanticError( yylloc, src, string( "conflicting type specifier " ) + DeclarationNode::signednessNames[ src->signedness ] + " in type: " );
589
590 if ( dst->length == DeclarationNode::NoLength ) {
591 dst->length = src->length;
592 } else if ( dst->length == DeclarationNode::Long && src->length == DeclarationNode::Long ) {
593 dst->length = DeclarationNode::LongLong;
594 } else if ( src->length != DeclarationNode::NoLength )
595 SemanticError( yylloc, src, string( "conflicting type specifier " ) + DeclarationNode::lengthNames[ src->length ] + " in type: " );
596 } // if
597 break;
598 default:
599 switch ( src->kind ) {
600 case TypeData::Aggregate:
601 case TypeData::Enum:
602 dst->base = new TypeData( TypeData::AggregateInst );
603 dst->base->aggInst.aggregate = src;
604 if ( src->kind == TypeData::Aggregate ) {
605 dst->base->aggInst.params = maybeClone( src->aggregate.actuals );
606 } // if
607 dst->base->qualifiers |= src->qualifiers;
608 src = nullptr;
609 break;
610 default:
611 if ( dst->forall ) {
612 dst->forall->appendList( src->forall );
613 } else {
614 dst->forall = src->forall;
615 } // if
616 src->forall = nullptr;
617 dst->base = src;
618 src = nullptr;
619 } // switch
620 } // switch
621 } // if
622}
623
624DeclarationNode * DeclarationNode::addType( DeclarationNode * o ) {
625 if ( o ) {
626 checkSpecifiers( o );
627 copySpecifiers( o );
628 if ( o->type ) {
629 if ( ! type ) {
630 if ( o->type->kind == TypeData::Aggregate || o->type->kind == TypeData::Enum ) {
631 type = new TypeData( TypeData::AggregateInst );
632 type->aggInst.aggregate = o->type;
633 if ( o->type->kind == TypeData::Aggregate ) {
634 type->aggInst.hoistType = o->type->aggregate.body;
635 type->aggInst.params = maybeClone( o->type->aggregate.actuals );
636 } else {
637 type->aggInst.hoistType = o->type->enumeration.body;
638 } // if
639 type->qualifiers |= o->type->qualifiers;
640 } else {
641 type = o->type;
642 } // if
643 o->type = nullptr;
644 } else {
645 addTypeToType( o->type, type );
646 } // if
647 } // if
648 if ( o->bitfieldWidth ) {
649 bitfieldWidth = o->bitfieldWidth;
650 } // if
651
652 // there may be typedefs chained onto the type
653 if ( o->get_next() ) {
654 set_last( o->get_next()->clone() );
655 } // if
656 } // if
657 delete o;
658 return this;
659}
660
661DeclarationNode * DeclarationNode::addTypedef() {
662 TypeData * newtype = new TypeData( TypeData::Symbolic );
663 newtype->symbolic.params = nullptr;
664 newtype->symbolic.isTypedef = true;
665 newtype->symbolic.name = name ? new string( *name ) : nullptr;
666 newtype->base = type;
667 type = newtype;
668 return this;
669}
670
671DeclarationNode * DeclarationNode::addAssertions( DeclarationNode * assertions ) {
672 if ( variable.tyClass != NoTypeClass ) {
673 if ( variable.assertions ) {
674 variable.assertions->appendList( assertions );
675 } else {
676 variable.assertions = assertions;
677 } // if
678 return this;
679 } // if
680
681 assert( type );
682 switch ( type->kind ) {
683 case TypeData::Symbolic:
684 if ( type->symbolic.assertions ) {
685 type->symbolic.assertions->appendList( assertions );
686 } else {
687 type->symbolic.assertions = assertions;
688 } // if
689 break;
690 default:
691 assert( false );
692 } // switch
693
694 return this;
695}
696
697DeclarationNode * DeclarationNode::addName( string * newname ) {
698 assert( ! name );
699 name = newname;
700 return this;
701}
702
703DeclarationNode * DeclarationNode::addAsmName( DeclarationNode * newname ) {
704 assert( ! asmName );
705 asmName = newname ? newname->asmName : nullptr;
706 return this->addQualifiers( newname );
707}
708
709DeclarationNode * DeclarationNode::addBitfield( ExpressionNode * size ) {
710 bitfieldWidth = size;
711 return this;
712}
713
714DeclarationNode * DeclarationNode::addVarArgs() {
715 assert( type );
716 hasEllipsis = true;
717 return this;
718}
719
720DeclarationNode * DeclarationNode::addFunctionBody( StatementNode * body, ExpressionNode * withExprs ) {
721 assert( type );
722 assert( type->kind == TypeData::Function );
723 assert( ! type->function.body );
724 type->function.body = body;
725 type->function.withExprs = withExprs;
726 return this;
727}
728
729DeclarationNode * DeclarationNode::addOldDeclList( DeclarationNode * list ) {
730 assert( type );
731 assert( type->kind == TypeData::Function );
732 assert( ! type->function.oldDeclList );
733 type->function.oldDeclList = list;
734 return this;
735}
736
737DeclarationNode * DeclarationNode::setBase( TypeData * newType ) {
738 if ( type ) {
739 TypeData * prevBase = type;
740 TypeData * curBase = type->base;
741 while ( curBase != nullptr ) {
742 prevBase = curBase;
743 curBase = curBase->base;
744 } // while
745 prevBase->base = newType;
746 } else {
747 type = newType;
748 } // if
749 return this;
750}
751
752DeclarationNode * DeclarationNode::copyAttribute( DeclarationNode * a ) {
753 if ( a ) {
754 for ( Attribute *attr: reverseIterate( a->attributes ) ) {
755 attributes.push_front( attr );
756 } // for
757 a->attributes.clear();
758 } // if
759 return this;
760} // copyAttribute
761
762DeclarationNode * DeclarationNode::addPointer( DeclarationNode * p ) {
763 if ( p ) {
764 assert( p->type->kind == TypeData::Pointer || TypeData::Reference );
765 setBase( p->type );
766 p->type = nullptr;
767 copyAttribute( p );
768 delete p;
769 } // if
770 return this;
771}
772
773DeclarationNode * DeclarationNode::addArray( DeclarationNode * a ) {
774 if ( a ) {
775 assert( a->type->kind == TypeData::Array );
776 setBase( a->type );
777 a->type = nullptr;
778 copyAttribute( a );
779 delete a;
780 } // if
781 return this;
782}
783
784DeclarationNode * DeclarationNode::addNewPointer( DeclarationNode * p ) {
785 if ( p ) {
786 assert( p->type->kind == TypeData::Pointer || p->type->kind == TypeData::Reference );
787 if ( type ) {
788 switch ( type->kind ) {
789 case TypeData::Aggregate:
790 case TypeData::Enum:
791 p->type->base = new TypeData( TypeData::AggregateInst );
792 p->type->base->aggInst.aggregate = type;
793 if ( type->kind == TypeData::Aggregate ) {
794 p->type->base->aggInst.params = maybeClone( type->aggregate.actuals );
795 } // if
796 p->type->base->qualifiers |= type->qualifiers;
797 break;
798
799 default:
800 p->type->base = type;
801 } // switch
802 type = nullptr;
803 } // if
804 delete this;
805 return p;
806 } else {
807 return this;
808 } // if
809}
810
811static TypeData * findLast( TypeData * a ) {
812 assert( a );
813 TypeData * cur = a;
814 while ( cur->base ) {
815 cur = cur->base;
816 } // while
817 return cur;
818}
819
820DeclarationNode * DeclarationNode::addNewArray( DeclarationNode * a ) {
821 if ( ! a ) return this;
822 assert( a->type->kind == TypeData::Array );
823 TypeData * lastArray = findLast( a->type );
824 if ( type ) {
825 switch ( type->kind ) {
826 case TypeData::Aggregate:
827 case TypeData::Enum:
828 lastArray->base = new TypeData( TypeData::AggregateInst );
829 lastArray->base->aggInst.aggregate = type;
830 if ( type->kind == TypeData::Aggregate ) {
831 lastArray->base->aggInst.params = maybeClone( type->aggregate.actuals );
832 } // if
833 lastArray->base->qualifiers |= type->qualifiers;
834 break;
835 default:
836 lastArray->base = type;
837 } // switch
838 type = nullptr;
839 } // if
840 delete this;
841 return a;
842}
843
844DeclarationNode * DeclarationNode::addParamList( DeclarationNode * params ) {
845 TypeData * ftype = new TypeData( TypeData::Function );
846 ftype->function.params = params;
847 setBase( ftype );
848 return this;
849}
850
851static TypeData * addIdListToType( TypeData * type, DeclarationNode * ids ) {
852 if ( type ) {
853 if ( type->kind != TypeData::Function ) {
854 type->base = addIdListToType( type->base, ids );
855 } else {
856 type->function.idList = ids;
857 } // if
858 return type;
859 } else {
860 TypeData * newtype = new TypeData( TypeData::Function );
861 newtype->function.idList = ids;
862 return newtype;
863 } // if
864} // addIdListToType
865
866DeclarationNode * DeclarationNode::addIdList( DeclarationNode * ids ) {
867 type = addIdListToType( type, ids );
868 return this;
869}
870
871DeclarationNode * DeclarationNode::addInitializer( InitializerNode * init ) {
872 initializer = init;
873 return this;
874}
875
876DeclarationNode * DeclarationNode::addTypeInitializer( DeclarationNode * init ) {
877 assertf( variable.tyClass != NoTypeClass, "Called addTypeInitializer on something that isn't a type variable." );
878 variable.initializer = init;
879 return this;
880}
881
882DeclarationNode * DeclarationNode::cloneType( string * newName ) {
883 DeclarationNode * newnode = new DeclarationNode;
884 newnode->type = maybeClone( type );
885 newnode->copySpecifiers( this );
886 assert( newName );
887 newnode->name = newName;
888 return newnode;
889}
890
891DeclarationNode * DeclarationNode::cloneBaseType( DeclarationNode * o ) {
892 if ( ! o ) return nullptr;
893
894 o->copySpecifiers( this );
895 if ( type ) {
896 TypeData * srcType = type;
897
898 // search for the base type by scanning off pointers and array designators
899 while ( srcType->base ) {
900 srcType = srcType->base;
901 } // while
902
903 TypeData * newType = srcType->clone();
904 if ( newType->kind == TypeData::AggregateInst ) {
905 // don't duplicate members
906 if ( newType->aggInst.aggregate->kind == TypeData::Enum ) {
907 delete newType->aggInst.aggregate->enumeration.constants;
908 newType->aggInst.aggregate->enumeration.constants = nullptr;
909 } else {
910 assert( newType->aggInst.aggregate->kind == TypeData::Aggregate );
911 delete newType->aggInst.aggregate->aggregate.fields;
912 newType->aggInst.aggregate->aggregate.fields = nullptr;
913 } // if
914 // don't hoist twice
915 newType->aggInst.hoistType = false;
916 } // if
917
918 newType->forall = maybeClone( type->forall );
919 if ( ! o->type ) {
920 o->type = newType;
921 } else {
922 addTypeToType( newType, o->type );
923 delete newType;
924 } // if
925 } // if
926 return o;
927}
928
929DeclarationNode * DeclarationNode::extractAggregate() const {
930 if ( type ) {
931 TypeData * ret = typeextractAggregate( type );
932 if ( ret ) {
933 DeclarationNode * newnode = new DeclarationNode;
934 newnode->type = ret;
935 return newnode;
936 } // if
937 } // if
938 return nullptr;
939}
940
941void buildList( const DeclarationNode * firstNode, std::list< Declaration * > &outputList ) {
942 SemanticErrorException errors;
943 std::back_insert_iterator< std::list< Declaration * > > out( outputList );
944
945 for ( const DeclarationNode * cur = firstNode; cur; cur = dynamic_cast< DeclarationNode * >( cur->get_next() ) ) {
946 try {
947 if ( DeclarationNode * extr = cur->extractAggregate() ) {
948 // handle the case where a structure declaration is contained within an object or type declaration
949 Declaration * decl = extr->build();
950 if ( decl ) {
951 decl->location = cur->location;
952 * out++ = decl;
953 } // if
954 delete extr;
955 } // if
956
957 Declaration * decl = cur->build();
958 if ( decl ) {
959 decl->location = cur->location;
960 * out++ = decl;
961 } // if
962 } catch( SemanticErrorException &e ) {
963 errors.append( e );
964 } // try
965 } // while
966
967 if ( ! errors.isEmpty() ) {
968 throw errors;
969 } // if
970} // buildList
971
972void buildList( const DeclarationNode * firstNode, std::list< DeclarationWithType * > &outputList ) {
973 SemanticErrorException errors;
974 std::back_insert_iterator< std::list< DeclarationWithType * > > out( outputList );
975
976 for ( const DeclarationNode * cur = firstNode; cur; cur = dynamic_cast< DeclarationNode * >( cur->get_next() ) ) {
977 try {
978 Declaration * decl = cur->build();
979 if ( decl ) {
980 if ( DeclarationWithType * dwt = dynamic_cast< DeclarationWithType * >( decl ) ) {
981 dwt->location = cur->location;
982 * out++ = dwt;
983 } else if ( StructDecl * agg = dynamic_cast< StructDecl * >( decl ) ) {
984 StructInstType * inst = new StructInstType( Type::Qualifiers(), agg->get_name() );
985 auto obj = new ObjectDecl( "", Type::StorageClasses(), linkage, nullptr, inst, nullptr );
986 obj->location = cur->location;
987 * out++ = obj;
988 delete agg;
989 } else if ( UnionDecl * agg = dynamic_cast< UnionDecl * >( decl ) ) {
990 UnionInstType * inst = new UnionInstType( Type::Qualifiers(), agg->get_name() );
991 auto obj = new ObjectDecl( "", Type::StorageClasses(), linkage, nullptr, inst, nullptr );
992 obj->location = cur->location;
993 * out++ = obj;
994 } // if
995 } // if
996 } catch( SemanticErrorException &e ) {
997 errors.append( e );
998 } // try
999 } // for
1000
1001 if ( ! errors.isEmpty() ) {
1002 throw errors;
1003 } // if
1004} // buildList
1005
1006void buildTypeList( const DeclarationNode * firstNode, std::list< Type * > &outputList ) {
1007 SemanticErrorException errors;
1008 std::back_insert_iterator< std::list< Type * > > out( outputList );
1009 const DeclarationNode * cur = firstNode;
1010
1011 while ( cur ) {
1012 try {
1013 * out++ = cur->buildType();
1014 } catch( SemanticErrorException &e ) {
1015 errors.append( e );
1016 } // try
1017 cur = dynamic_cast< DeclarationNode * >( cur->get_next() );
1018 } // while
1019
1020 if ( ! errors.isEmpty() ) {
1021 throw errors;
1022 } // if
1023} // buildTypeList
1024
1025Declaration * DeclarationNode::build() const {
1026 if ( ! error.empty() ) SemanticError( this, error + " in declaration of " );
1027
1028 if ( asmStmt ) {
1029 return new AsmDecl( strict_dynamic_cast<AsmStmt *>( asmStmt->build() ) );
1030 } // if
1031
1032 if ( variable.tyClass != NoTypeClass ) {
1033 // otype is internally converted to dtype + otype parameters
1034 static const TypeDecl::Kind kindMap[] = { TypeDecl::Dtype, TypeDecl::Dtype, TypeDecl::Ftype, TypeDecl::Ttype };
1035 assertf( sizeof(kindMap)/sizeof(kindMap[0]) == NoTypeClass, "DeclarationNode::build: kindMap is out of sync." );
1036 assertf( variable.tyClass < sizeof(kindMap)/sizeof(kindMap[0]), "Variable's tyClass is out of bounds." );
1037 TypeDecl * ret = new TypeDecl( *name, Type::StorageClasses(), nullptr, kindMap[ variable.tyClass ], variable.tyClass == Otype, variable.initializer ? variable.initializer->buildType() : nullptr );
1038 buildList( variable.assertions, ret->get_assertions() );
1039 return ret;
1040 } // if
1041
1042 if ( type ) {
1043 // Function specifiers can only appear on a function definition/declaration.
1044 //
1045 // inline _Noreturn int f(); // allowed
1046 // inline _Noreturn int g( int i ); // allowed
1047 // inline _Noreturn int i; // disallowed
1048 if ( type->kind != TypeData::Function && funcSpecs.any() ) {
1049 SemanticError( this, "invalid function specifier for " );
1050 } // if
1051 return buildDecl( type, name ? *name : string( "" ), storageClasses, maybeBuild< Expression >( bitfieldWidth ), funcSpecs, linkage, asmName, maybeBuild< Initializer >(initializer), attributes )->set_extension( extension );
1052 } // if
1053
1054 // SUE's cannot have function specifiers, either
1055 //
1056 // inlne _Noreturn struct S { ... }; // disallowed
1057 // inlne _Noreturn enum E { ... }; // disallowed
1058 if ( funcSpecs.any() ) {
1059 SemanticError( this, "invalid function specifier for " );
1060 } // if
1061 assertf( name, "ObjectDecl must a have name\n" );
1062 return (new ObjectDecl( *name, storageClasses, linkage, maybeBuild< Expression >( bitfieldWidth ), nullptr, maybeBuild< Initializer >( initializer ) ))->set_asmName( asmName )->set_extension( extension );
1063}
1064
1065Type * DeclarationNode::buildType() const {
1066 assert( type );
1067
1068 if ( attr.expr ) {
1069 return new AttrType( buildQualifiers( type ), *name, attr.expr->build(), attributes );
1070 } else if ( attr.type ) {
1071 return new AttrType( buildQualifiers( type ), *name, attr.type->buildType(), attributes );
1072 } // if
1073
1074 switch ( type->kind ) {
1075 case TypeData::Enum:
1076 case TypeData::Aggregate: {
1077 ReferenceToType * ret = buildComAggInst( type, attributes, linkage );
1078 buildList( type->aggregate.actuals, ret->get_parameters() );
1079 return ret;
1080 }
1081 case TypeData::Symbolic: {
1082 TypeInstType * ret = new TypeInstType( buildQualifiers( type ), *type->symbolic.name, false, attributes );
1083 buildList( type->symbolic.actuals, ret->get_parameters() );
1084 return ret;
1085 }
1086 default:
1087 Type * simpletypes = typebuild( type );
1088 simpletypes->get_attributes() = attributes; // copy because member is const
1089 return simpletypes;
1090 } // switch
1091}
1092
1093// Local Variables: //
1094// tab-width: 4 //
1095// mode: c++ //
1096// compile-command: "make install" //
1097// End: //
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