source: src/Parser/DeclarationNode.cc@ 486caad

Last change on this file since 486caad was bf050c5, checked in by Andrew Beach <ajbeach@…>, 20 months ago

Removed unused field from TypeData.

  • Property mode set to 100644
File size: 35.4 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 : Fri Feb 23 18:25:57 2024
13// Update Count : 1533
14//
15
16#include "DeclarationNode.h"
17
18#include <cassert> // for assert, assertf, strict_dynamic_cast
19#include <iterator> // for back_insert_iterator
20#include <list> // for list
21#include <memory> // for unique_ptr
22#include <ostream> // for operator<<, ostream, basic_ostream
23#include <string> // for string, operator+, allocator, char...
24
25#include "AST/Attribute.hpp" // for Attribute
26#include "AST/Copy.hpp" // for shallowCopy
27#include "AST/Decl.hpp" // for Decl
28#include "AST/Expr.hpp" // for Expr
29#include "AST/Print.hpp" // for print
30#include "AST/Stmt.hpp" // for AsmStmt, DirectiveStmt
31#include "AST/StorageClasses.hpp" // for Storage::Class
32#include "AST/Type.hpp" // for Type
33#include "Common/CodeLocation.h" // for CodeLocation
34#include "Common/Iterate.hpp" // for reverseIterate
35#include "Common/SemanticError.h" // for SemanticError
36#include "Common/UniqueName.h" // for UniqueName
37#include "Common/utility.h" // for copy, spliceBegin
38#include "Parser/ExpressionNode.h" // for ExpressionNode
39#include "Parser/InitializerNode.h"// for InitializerNode
40#include "Parser/StatementNode.h" // for StatementNode
41#include "TypeData.h" // for TypeData, TypeData::Aggregate_t
42#include "TypedefTable.h" // for TypedefTable
43
44extern TypedefTable typedefTable;
45
46using namespace std;
47
48UniqueName DeclarationNode::anonymous( "__anonymous" );
49
50extern ast::Linkage::Spec linkage; // defined in parser.yy
51
52DeclarationNode::DeclarationNode() :
53 linkage( ::linkage ) {
54
55// variable.name = nullptr;
56 variable.tyClass = ast::TypeDecl::NUMBER_OF_KINDS;
57 variable.assertions = nullptr;
58 variable.initializer = nullptr;
59
60 assert.condition = nullptr;
61 assert.message = nullptr;
62}
63
64DeclarationNode::~DeclarationNode() {
65 delete name;
66
67// delete variable.name;
68 delete variable.assertions;
69 delete variable.initializer;
70
71// delete type;
72 delete bitfieldWidth;
73
74 delete asmStmt;
75 // asmName, no delete, passed to next stage
76 delete initializer;
77
78 delete assert.condition;
79 delete assert.message;
80}
81
82DeclarationNode * DeclarationNode::clone() const {
83 DeclarationNode * newnode = new DeclarationNode;
84 newnode->next = maybeCopy( next );
85 newnode->name = name ? new string( *name ) : nullptr;
86
87 newnode->type = maybeCopy( type );
88 newnode->inLine = inLine;
89 newnode->storageClasses = storageClasses;
90 newnode->funcSpecs = funcSpecs;
91 newnode->bitfieldWidth = maybeCopy( bitfieldWidth );
92 newnode->enumeratorValue.reset( maybeCopy( enumeratorValue.get() ) );
93 newnode->hasEllipsis = hasEllipsis;
94 newnode->linkage = linkage;
95 newnode->asmName = maybeCopy( asmName );
96 newnode->attributes = attributes;
97 newnode->initializer = maybeCopy( initializer );
98 newnode->extension = extension;
99 newnode->asmStmt = maybeCopy( asmStmt );
100 newnode->error = error;
101
102// newnode->variable.name = variable.name ? new string( *variable.name ) : nullptr;
103 newnode->variable.tyClass = variable.tyClass;
104 newnode->variable.assertions = maybeCopy( variable.assertions );
105 newnode->variable.initializer = maybeCopy( variable.initializer );
106
107 newnode->assert.condition = maybeCopy( assert.condition );
108 newnode->assert.message = maybeCopy( assert.message );
109 return newnode;
110} // DeclarationNode::clone
111
112void DeclarationNode::print( std::ostream & os, int indent ) const {
113 os << string( indent, ' ' );
114 if ( name ) {
115 os << *name << ": ";
116 } // if
117
118 if ( linkage != ast::Linkage::Cforall ) {
119 os << ast::Linkage::name( linkage ) << " ";
120 } // if
121
122 ast::print( os, storageClasses );
123 ast::print( os, funcSpecs );
124
125 if ( type ) {
126 type->print( os, indent );
127 } else {
128 os << "untyped entity ";
129 } // if
130
131 if ( bitfieldWidth ) {
132 os << endl << string( indent + 2, ' ' ) << "with bitfield width ";
133 bitfieldWidth->printOneLine( os );
134 } // if
135
136 if ( initializer ) {
137 os << endl << string( indent + 2, ' ' ) << "with initializer ";
138 initializer->printOneLine( os );
139 os << " maybe constructed? " << initializer->get_maybeConstructed();
140 } // if
141
142 if ( ! attributes.empty() ) {
143 os << string( indent + 2, ' ' ) << "with attributes" << endl;
144 for ( ast::ptr<ast::Attribute> const & attr : reverseIterate( attributes ) ) {
145 os << string( indent + 4, ' ' );
146 ast::print( os, attr, indent + 2 );
147 } // for
148 } // if
149
150 os << endl;
151}
152
153void DeclarationNode::printList( std::ostream & os, int indent ) const {
154 ParseList::printList( os, indent );
155 if ( hasEllipsis ) {
156 os << string( indent, ' ' ) << "and a variable number of other arguments" << endl;
157 } // if
158}
159
160DeclarationNode * DeclarationNode::newFromTypeData( TypeData * type ) {
161 DeclarationNode * newnode = new DeclarationNode;
162 newnode->type = type;
163 return newnode;
164} // DeclarationNode::newFromTypeData
165
166DeclarationNode * DeclarationNode::newStorageClass( ast::Storage::Classes sc ) {
167 DeclarationNode * newnode = new DeclarationNode;
168 newnode->storageClasses = sc;
169 return newnode;
170} // DeclarationNode::newStorageClass
171
172DeclarationNode * DeclarationNode::newFuncSpecifier( ast::Function::Specs fs ) {
173 DeclarationNode * newnode = new DeclarationNode;
174 newnode->funcSpecs = fs;
175 return newnode;
176} // DeclarationNode::newFuncSpecifier
177
178DeclarationNode * DeclarationNode::newAggregate( ast::AggregateDecl::Aggregate kind, const string * name, ExpressionNode * actuals, DeclarationNode * fields, bool body ) {
179 DeclarationNode * newnode = new DeclarationNode;
180 newnode->type = new TypeData( TypeData::Aggregate );
181 newnode->type->aggregate.kind = kind;
182 newnode->type->aggregate.anon = name == nullptr;
183 newnode->type->aggregate.name = newnode->type->aggregate.anon ? new string( DeclarationNode::anonymous.newName() ) : name;
184 newnode->type->aggregate.actuals = actuals;
185 newnode->type->aggregate.fields = fields;
186 newnode->type->aggregate.body = body;
187 return newnode;
188} // DeclarationNode::newAggregate
189
190DeclarationNode * DeclarationNode::newEnum( const string * name, DeclarationNode * constants, bool body, bool typed, DeclarationNode * base, EnumHiding hiding ) {
191 DeclarationNode * newnode = new DeclarationNode;
192 newnode->type = new TypeData( TypeData::Enum );
193 newnode->type->enumeration.anon = name == nullptr;
194 newnode->type->enumeration.name = newnode->type->enumeration.anon ? new string( DeclarationNode::anonymous.newName() ) : name;
195 newnode->type->enumeration.constants = constants;
196 newnode->type->enumeration.body = body;
197 newnode->type->enumeration.typed = typed;
198 newnode->type->enumeration.hiding = hiding;
199 if ( base ) {
200 assert( typed );
201 assert( base->type );
202 newnode->type->base = base->type;
203 base->type = nullptr;
204 delete base;
205 } // if
206
207 return newnode;
208} // DeclarationNode::newEnum
209
210DeclarationNode * DeclarationNode::newName( const string * name ) {
211 DeclarationNode * newnode = new DeclarationNode;
212 assert( ! newnode->name );
213 newnode->name = name;
214 return newnode;
215} // DeclarationNode::newName
216
217DeclarationNode * DeclarationNode::newEnumConstant( const string * name, ExpressionNode * constant ) {
218 DeclarationNode * newnode = newName( name );
219 newnode->enumeratorValue.reset( constant );
220 return newnode;
221} // DeclarationNode::newEnumConstant
222
223DeclarationNode * DeclarationNode::newEnumValueGeneric( const string * name, InitializerNode * init ) {
224 if ( nullptr == init ) {
225 return newName( name );
226 } else if ( init->get_expression() ) {
227 return newEnumConstant( name, init->get_expression() );
228 } else {
229 DeclarationNode * newnode = newName( name );
230 newnode->initializer = init;
231 return newnode;
232 } // if
233} // DeclarationNode::newEnumValueGeneric
234
235DeclarationNode * DeclarationNode::newEnumInLine( const string name ) {
236 DeclarationNode * newnode = newName( new std::string(name) );
237 newnode->enumInLine = true;
238 return newnode;
239}
240
241DeclarationNode * DeclarationNode::newTypeParam( ast::TypeDecl::Kind tc, const string * name ) {
242 DeclarationNode * newnode = newName( name );
243 newnode->type = nullptr;
244 newnode->variable.tyClass = tc;
245 newnode->variable.assertions = nullptr;
246 return newnode;
247} // DeclarationNode::newTypeParam
248
249DeclarationNode * DeclarationNode::newTrait( const string * name, DeclarationNode * params, DeclarationNode * asserts ) {
250 DeclarationNode * newnode = new DeclarationNode;
251 newnode->type = new TypeData( TypeData::Aggregate );
252 newnode->type->aggregate.name = name;
253 newnode->type->aggregate.kind = ast::AggregateDecl::Trait;
254 newnode->type->aggregate.params = params;
255 newnode->type->aggregate.fields = asserts;
256 return newnode;
257} // DeclarationNode::newTrait
258
259DeclarationNode * DeclarationNode::newTraitUse( const string * name, ExpressionNode * params ) {
260 DeclarationNode * newnode = new DeclarationNode;
261 newnode->type = new TypeData( TypeData::AggregateInst );
262 newnode->type->aggInst.aggregate = new TypeData( TypeData::Aggregate );
263 newnode->type->aggInst.aggregate->aggregate.kind = ast::AggregateDecl::Trait;
264 newnode->type->aggInst.aggregate->aggregate.name = name;
265 newnode->type->aggInst.params = params;
266 return newnode;
267} // DeclarationNode::newTraitUse
268
269DeclarationNode * DeclarationNode::newTypeDecl( const string * name, DeclarationNode * typeParams ) {
270 DeclarationNode * newnode = newName( name );
271 newnode->type = new TypeData( TypeData::Symbolic );
272 newnode->type->symbolic.isTypedef = false;
273 newnode->type->symbolic.params = typeParams;
274 return newnode;
275} // DeclarationNode::newTypeDecl
276
277DeclarationNode * DeclarationNode::newPointer( DeclarationNode * qualifiers, OperKinds kind ) {
278 DeclarationNode * newnode = new DeclarationNode;
279 newnode->type = new TypeData( kind == OperKinds::PointTo ? TypeData::Pointer : TypeData::Reference );
280 if ( kind == OperKinds::And ) {
281 // T && is parsed as 'And' operator rather than two references => add a second reference type
282 TypeData * td = new TypeData( TypeData::Reference );
283 td->base = newnode->type;
284 newnode->type = td;
285 }
286 if ( qualifiers ) {
287 return newnode->addQualifiers( qualifiers );
288 } else {
289 return newnode;
290 } // if
291} // DeclarationNode::newPointer
292
293DeclarationNode * DeclarationNode::newArray( ExpressionNode * size, DeclarationNode * qualifiers, bool isStatic ) {
294 DeclarationNode * newnode = new DeclarationNode;
295 newnode->type = new TypeData( TypeData::Array );
296 newnode->type->array.dimension = size;
297 newnode->type->array.isStatic = isStatic;
298 newnode->type->array.isVarLen = size && !size->isExpressionType<ast::ConstantExpr *>();
299 return newnode->addQualifiers( qualifiers );
300} // DeclarationNode::newArray
301
302DeclarationNode * DeclarationNode::newVarArray( DeclarationNode * qualifiers ) {
303 DeclarationNode * newnode = new DeclarationNode;
304 newnode->type = new TypeData( TypeData::Array );
305 newnode->type->array.dimension = nullptr;
306 newnode->type->array.isStatic = false;
307 newnode->type->array.isVarLen = true;
308 return newnode->addQualifiers( qualifiers );
309}
310
311DeclarationNode * DeclarationNode::newBitfield( ExpressionNode * size ) {
312 DeclarationNode * newnode = new DeclarationNode;
313 newnode->bitfieldWidth = size;
314 return newnode;
315}
316
317DeclarationNode * DeclarationNode::newTuple( DeclarationNode * members ) {
318 DeclarationNode * newnode = new DeclarationNode;
319 newnode->type = new TypeData( TypeData::Tuple );
320 newnode->type->tuple = members;
321 return newnode;
322}
323
324DeclarationNode * DeclarationNode::newTypeof( ExpressionNode * expr, bool basetypeof ) {
325 DeclarationNode * newnode = new DeclarationNode;
326 newnode->type = new TypeData( basetypeof ? TypeData::Basetypeof : TypeData::Typeof );
327 newnode->type->typeexpr = expr;
328 return newnode;
329}
330
331DeclarationNode * DeclarationNode::newFunction( const string * name, DeclarationNode * ret, DeclarationNode * param, StatementNode * body ) {
332 DeclarationNode * newnode = newName( name );
333 newnode->type = new TypeData( TypeData::Function );
334 newnode->type->function.params = param;
335 newnode->type->function.body = body;
336
337 if ( ret ) {
338 newnode->type->base = ret->type;
339 ret->type = nullptr;
340 delete ret;
341 } // if
342
343 return newnode;
344} // DeclarationNode::newFunction
345
346DeclarationNode * DeclarationNode::newAttribute( const string * name, ExpressionNode * expr ) {
347 DeclarationNode * newnode = new DeclarationNode;
348 newnode->type = nullptr;
349 std::vector<ast::ptr<ast::Expr>> exprs;
350 buildList( expr, exprs );
351 newnode->attributes.push_back( new ast::Attribute( *name, std::move( exprs ) ) );
352 delete name;
353 return newnode;
354}
355
356DeclarationNode * DeclarationNode::newDirectiveStmt( StatementNode * stmt ) {
357 DeclarationNode * newnode = new DeclarationNode;
358 newnode->directiveStmt = stmt;
359 return newnode;
360}
361
362DeclarationNode * DeclarationNode::newAsmStmt( StatementNode * stmt ) {
363 DeclarationNode * newnode = new DeclarationNode;
364 newnode->asmStmt = stmt;
365 return newnode;
366}
367
368DeclarationNode * DeclarationNode::newStaticAssert( ExpressionNode * condition, ast::Expr * message ) {
369 DeclarationNode * newnode = new DeclarationNode;
370 newnode->assert.condition = condition;
371 newnode->assert.message = message;
372 return newnode;
373}
374
375static void appendError( string & dst, const string & src ) {
376 if ( src.empty() ) return;
377 if ( dst.empty() ) { dst = src; return; }
378 dst += ", " + src;
379} // appendError
380
381void DeclarationNode::checkQualifiers( const TypeData * src, const TypeData * dst ) {
382 const ast::CV::Qualifiers qsrc = src->qualifiers, qdst = dst->qualifiers; // optimization
383 const ast::CV::Qualifiers duplicates = qsrc & qdst;
384
385 if ( duplicates.any() ) {
386 std::stringstream str;
387 str << "duplicate ";
388 ast::print( str, duplicates );
389 str << "qualifier(s)";
390 appendError( error, str.str() );
391 } // for
392} // DeclarationNode::checkQualifiers
393
394void DeclarationNode::checkSpecifiers( DeclarationNode * src ) {
395 ast::Function::Specs fsDups = funcSpecs & src->funcSpecs;
396 if ( fsDups.any() ) {
397 std::stringstream str;
398 str << "duplicate ";
399 ast::print( str, fsDups );
400 str << "function specifier(s)";
401 appendError( error, str.str() );
402 } // if
403
404 // Skip if everything is unset.
405 if ( storageClasses.any() && src->storageClasses.any() ) {
406 ast::Storage::Classes dups = storageClasses & src->storageClasses;
407 // Check for duplicates.
408 if ( dups.any() ) {
409 std::stringstream str;
410 str << "duplicate ";
411 ast::print( str, dups );
412 str << "storage class(es)";
413 appendError( error, str.str() );
414 // Check for conflicts.
415 } else if ( !src->storageClasses.is_threadlocal_any() ) {
416 std::stringstream str;
417 str << "conflicting ";
418 ast::print( str, ast::Storage::Classes( 1 << storageClasses.ffs() ) );
419 str << "& ";
420 ast::print( str, ast::Storage::Classes( 1 << src->storageClasses.ffs() ) );
421 str << "storage classes";
422 appendError( error, str.str() );
423 // FIX to preserve invariant of one basic storage specifier
424 src->storageClasses.reset();
425 }
426 } // if
427
428 appendError( error, src->error );
429} // DeclarationNode::checkSpecifiers
430
431DeclarationNode * DeclarationNode::copySpecifiers( DeclarationNode * q, bool copyattr ) {
432 funcSpecs |= q->funcSpecs;
433 storageClasses |= q->storageClasses;
434
435 if ( copyattr ) {
436 std::vector<ast::ptr<ast::Attribute>> tmp;
437 tmp.reserve( q->attributes.size() );
438 for ( auto const & attr : q->attributes ) {
439 tmp.emplace_back( ast::shallowCopy( attr.get() ) );
440 } // for
441 spliceBegin( attributes, tmp );
442 } // if
443
444 return this;
445} // DeclarationNode::copySpecifiers
446
447DeclarationNode * DeclarationNode::addQualifiers( DeclarationNode * q ) {
448 if ( ! q ) { return this; } // empty qualifier
449
450 checkSpecifiers( q );
451 copySpecifiers( q );
452
453 if ( ! q->type ) { delete q; return this; }
454
455 if ( ! type ) {
456 type = q->type; // reuse structure
457 q->type = nullptr;
458 delete q;
459 return this;
460 } // if
461
462 checkQualifiers( type, q->type );
463 TypeData::BuiltinType const builtin = type->builtintype;
464 if ( (builtin == TypeData::Zero || builtin == TypeData::One) && q->type->qualifiers.any() && error.length() == 0 ) {
465 SemanticWarning( yylloc, Warning::BadQualifiersZeroOne, TypeData::builtinTypeNames[builtin] );
466 } // if
467 type = ::addQualifiers( q->type, type );
468 q->type = nullptr;
469
470 delete q;
471 return this;
472} // addQualifiers
473
474DeclarationNode * DeclarationNode::addType( DeclarationNode * o, bool copyattr ) {
475 if ( !o ) return this;
476
477 checkSpecifiers( o );
478 copySpecifiers( o, copyattr );
479 if ( o->type ) {
480 type = ::addType( o->type, type, o->attributes );
481 o->type = nullptr;
482 } // if
483 if ( o->bitfieldWidth ) {
484 bitfieldWidth = o->bitfieldWidth;
485 } // if
486
487 // there may be typedefs chained onto the type
488 if ( o->next ) {
489 set_last( o->next->clone() );
490 } // if
491
492 delete o;
493 return this;
494}
495
496DeclarationNode * DeclarationNode::addEnumBase( DeclarationNode * o ) {
497 if ( o && o->type ) {
498 type->base = o->type;
499 } // if
500 delete o;
501 return this;
502}
503
504// This code handles a special issue with the attribute transparent_union.
505//
506// typedef union U { int i; } typedef_name __attribute__(( aligned(16) )) __attribute__(( transparent_union ))
507//
508// Here the attribute aligned goes with the typedef_name, so variables declared of this type are
509// aligned. However, the attribute transparent_union must be moved from the typedef_name to
510// alias union U. Currently, this is the only know attribute that must be moved from typedef to
511// alias.
512static void moveUnionAttribute( DeclarationNode * decl, DeclarationNode * unionDecl ) {
513 assert( decl->type->kind == TypeData::Symbolic );
514 assert( decl->type->symbolic.isTypedef );
515 assert( unionDecl->type->kind == TypeData::Aggregate );
516
517 if ( unionDecl->type->aggregate.kind != ast::AggregateDecl::Union ) return;
518
519 // Ignore the Aggregate_t::attributes. Why did we add that before the rework?
520 for ( auto attr = decl->attributes.begin() ; attr != decl->attributes.end() ; ) {
521 if ( (*attr)->name == "transparent_union" || (*attr)->name == "__transparent_union__" ) {
522 unionDecl->attributes.emplace_back( attr->release() );
523 attr = decl->attributes.erase( attr );
524 } else {
525 ++attr;
526 }
527 }
528}
529
530// Helper for addTypedef, handles the case where the typedef wraps an
531// aggregate declaration (not a type), returns a chain of nodes.
532static DeclarationNode * addTypedefAggr(
533 DeclarationNode * olddecl, TypeData * newtype ) {
534 TypeData *& oldaggr = olddecl->type->aggInst.aggregate;
535
536 // Handle anonymous aggregates: typedef struct { int i; } foo
537 // Give the typedefed type a consistent name across translation units.
538 if ( oldaggr->aggregate.anon ) {
539 delete oldaggr->aggregate.name;
540 oldaggr->aggregate.name = new string( "__anonymous_" + *olddecl->name );
541 oldaggr->aggregate.anon = false;
542 oldaggr->qualifiers.reset();
543 }
544
545 // Replace the wrapped TypeData with a forward declaration.
546 TypeData * newaggr = new TypeData( TypeData::Aggregate );
547 newaggr->aggregate.kind = oldaggr->aggregate.kind;
548 newaggr->aggregate.name = oldaggr->aggregate.name ? new string( *oldaggr->aggregate.name ) : nullptr;
549 newaggr->aggregate.body = false;
550 newaggr->aggregate.anon = oldaggr->aggregate.anon;
551 swap( newaggr, oldaggr );
552
553 newtype->base = olddecl->type;
554 olddecl->type = newtype;
555 DeclarationNode * newdecl = new DeclarationNode;
556 newdecl->type = newaggr;
557 newdecl->next = olddecl;
558
559 moveUnionAttribute( olddecl, newdecl );
560
561 return newdecl;
562}
563
564// Helper for addTypedef, handles the case where the typedef wraps an
565// enumeration declaration (not a type), returns a chain of nodes.
566static DeclarationNode * addTypedefEnum(
567 DeclarationNode * olddecl, TypeData * newtype ) {
568 TypeData *& oldenum = olddecl->type->aggInst.aggregate;
569
570 // Handle anonymous enumeration: typedef enum { A, B, C } foo
571 // Give the typedefed type a consistent name across translation units.
572 if ( oldenum->enumeration.anon ) {
573 delete oldenum->enumeration.name;
574 oldenum->enumeration.name = new string( "__anonymous_" + *olddecl->name );
575 oldenum->enumeration.anon = false;
576 oldenum->qualifiers.reset();
577 }
578
579 // Replace the wrapped TypeData with a forward declaration.
580 TypeData * newenum = new TypeData( TypeData::Enum );
581 newenum->enumeration.name = oldenum->enumeration.name ? new string( *oldenum->enumeration.name ) : nullptr;
582 newenum->enumeration.body = false;
583 newenum->enumeration.anon = oldenum->enumeration.anon;
584 newenum->enumeration.typed = oldenum->enumeration.typed;
585 newenum->enumeration.hiding = oldenum->enumeration.hiding;
586 swap( newenum, oldenum );
587
588 newtype->base = olddecl->type;
589 olddecl->type = newtype;
590 DeclarationNode * newdecl = new DeclarationNode;
591 newdecl->type = newenum;
592 newdecl->next = olddecl;
593
594 return newdecl;
595}
596
597// Wrap the declaration in a typedef. It actually does that by modifying the
598// existing declaration, and may split it into two declarations.
599// This only happens if the wrapped type is actually a declaration of a SUE
600// type. If it does, the DeclarationNode for the SUE declaration is the node
601// returned, make sure later transformations are applied to the right node.
602DeclarationNode * DeclarationNode::addTypedef() {
603 TypeData * newtype = new TypeData( TypeData::Symbolic );
604 newtype->symbolic.params = nullptr;
605 newtype->symbolic.isTypedef = true;
606 newtype->symbolic.name = name ? new string( *name ) : nullptr;
607 // If this typedef is wrapping an aggregate, separate them out.
608 if ( TypeData::AggregateInst == type->kind
609 && TypeData::Aggregate == type->aggInst.aggregate->kind
610 && type->aggInst.aggregate->aggregate.body ) {
611 return addTypedefAggr( this, newtype );
612 // If this typedef is wrapping an enumeration, separate them out.
613 } else if ( TypeData::AggregateInst == type->kind
614 && TypeData::Enum == type->aggInst.aggregate->kind
615 && type->aggInst.aggregate->enumeration.body ) {
616 return addTypedefEnum( this, newtype );
617 // There is no internal declaration, just a type.
618 } else {
619 newtype->base = type;
620 type = newtype;
621 return this;
622 }
623}
624
625DeclarationNode * DeclarationNode::addAssertions( DeclarationNode * assertions ) {
626 if ( variable.tyClass != ast::TypeDecl::NUMBER_OF_KINDS ) {
627 if ( variable.assertions ) {
628 variable.assertions->set_last( assertions );
629 } else {
630 variable.assertions = assertions;
631 } // if
632 return this;
633 } // if
634
635 assert( type );
636 switch ( type->kind ) {
637 case TypeData::Symbolic:
638 if ( type->symbolic.assertions ) {
639 type->symbolic.assertions->set_last( assertions );
640 } else {
641 type->symbolic.assertions = assertions;
642 } // if
643 break;
644 default:
645 assert( false );
646 } // switch
647
648 return this;
649}
650
651DeclarationNode * DeclarationNode::addName( string * newname ) {
652 assert( ! name );
653 name = newname;
654 return this;
655}
656
657DeclarationNode * DeclarationNode::addAsmName( DeclarationNode * newname ) {
658 assert( ! asmName );
659 asmName = newname ? newname->asmName : nullptr;
660 return this->addQualifiers( newname );
661}
662
663DeclarationNode * DeclarationNode::addBitfield( ExpressionNode * size ) {
664 bitfieldWidth = size;
665 return this;
666}
667
668DeclarationNode * DeclarationNode::addVarArgs() {
669 assert( type );
670 hasEllipsis = true;
671 return this;
672}
673
674DeclarationNode * DeclarationNode::addFunctionBody( StatementNode * body, ExpressionNode * withExprs ) {
675 assert( type );
676 assert( type->kind == TypeData::Function );
677 assert( ! type->function.body );
678 type->function.body = body;
679 type->function.withExprs = withExprs;
680 return this;
681}
682
683DeclarationNode * DeclarationNode::addOldDeclList( DeclarationNode * list ) {
684 assert( type );
685 assert( type->kind == TypeData::Function );
686 assert( ! type->function.oldDeclList );
687 type->function.oldDeclList = list;
688 return this;
689}
690
691DeclarationNode * DeclarationNode::setBase( TypeData * newType ) {
692 if ( type ) {
693 type->setLastBase( newType );
694 } else {
695 type = newType;
696 } // if
697 return this;
698}
699
700DeclarationNode * DeclarationNode::copyAttribute( DeclarationNode * a ) {
701 if ( a ) {
702 spliceBegin( attributes, a->attributes );
703 a->attributes.clear();
704 } // if
705 return this;
706} // copyAttribute
707
708DeclarationNode * DeclarationNode::addPointer( DeclarationNode * p ) {
709 if ( p ) {
710 assert( p->type->kind == TypeData::Pointer || p->type->kind == TypeData::Reference );
711 setBase( p->type );
712 p->type = nullptr;
713 copyAttribute( p );
714 delete p;
715 } // if
716 return this;
717}
718
719DeclarationNode * DeclarationNode::addArray( DeclarationNode * a ) {
720 if ( a ) {
721 assert( a->type->kind == TypeData::Array );
722 setBase( a->type );
723 a->type = nullptr;
724 copyAttribute( a );
725 delete a;
726 } // if
727 return this;
728}
729
730DeclarationNode * DeclarationNode::addNewPointer( DeclarationNode * p ) {
731 if ( p ) {
732 assert( p->type->kind == TypeData::Pointer || p->type->kind == TypeData::Reference );
733 if ( type ) {
734 p->type->base = makeNewBase( type );
735 type = nullptr;
736 } // if
737 delete this;
738 return p;
739 } else {
740 return this;
741 } // if
742}
743
744DeclarationNode * DeclarationNode::addNewArray( DeclarationNode * a ) {
745 if ( ! a ) return this;
746 assert( a->type->kind == TypeData::Array );
747 if ( type ) {
748 a->type->setLastBase( makeNewBase( type ) );
749 type = nullptr;
750 } // if
751 delete this;
752 return a;
753}
754
755DeclarationNode * DeclarationNode::addParamList( DeclarationNode * params ) {
756 TypeData * ftype = new TypeData( TypeData::Function );
757 ftype->function.params = params;
758 setBase( ftype );
759 return this;
760}
761
762static TypeData * addIdListToType( TypeData * type, DeclarationNode * ids ) {
763 if ( type ) {
764 if ( type->kind != TypeData::Function ) {
765 type->base = addIdListToType( type->base, ids );
766 } else {
767 type->function.idList = ids;
768 } // if
769 return type;
770 } else {
771 TypeData * newtype = new TypeData( TypeData::Function );
772 newtype->function.idList = ids;
773 return newtype;
774 } // if
775} // addIdListToType
776
777DeclarationNode * DeclarationNode::addIdList( DeclarationNode * ids ) {
778 type = addIdListToType( type, ids );
779 return this;
780}
781
782DeclarationNode * DeclarationNode::addInitializer( InitializerNode * init ) {
783 initializer = init;
784 return this;
785}
786
787DeclarationNode * DeclarationNode::addTypeInitializer( DeclarationNode * init ) {
788 assertf( variable.tyClass != ast::TypeDecl::NUMBER_OF_KINDS, "Called addTypeInitializer on something that isn't a type variable." );
789 variable.initializer = init;
790 return this;
791}
792
793DeclarationNode * DeclarationNode::cloneType( string * name ) {
794 DeclarationNode * newnode = newName( name );
795 newnode->type = maybeCopy( type );
796 newnode->copySpecifiers( this );
797 return newnode;
798}
799
800DeclarationNode * DeclarationNode::cloneBaseType( DeclarationNode * o, bool copyattr ) {
801 if ( ! o ) return nullptr;
802 o->copySpecifiers( this, copyattr );
803 if ( type ) {
804 o->type = ::cloneBaseType( type, o->type );
805 } // if
806 return o;
807}
808
809DeclarationNode * DeclarationNode::extractAggregate() const {
810 if ( type ) {
811 TypeData * ret = typeextractAggregate( type );
812 if ( ret ) {
813 DeclarationNode * newnode = new DeclarationNode;
814 newnode->type = ret;
815 if ( ret->kind == TypeData::Aggregate ) {
816 newnode->attributes.swap( ret->aggregate.attributes );
817 } // if
818 return newnode;
819 } // if
820 } // if
821 return nullptr;
822}
823
824// Get the non-anonymous name of the instance type of the declaration,
825// if one exists.
826static const std::string * getInstTypeOfName( ast::Decl * decl ) {
827 if ( auto dwt = dynamic_cast<ast::DeclWithType *>( decl ) ) {
828 if ( auto aggr = dynamic_cast<ast::BaseInstType const *>( dwt->get_type() ) ) {
829 if ( aggr->name.find("anonymous") == std::string::npos ) {
830 return &aggr->name;
831 }
832 }
833 }
834 return nullptr;
835}
836
837void buildList( DeclarationNode * firstNode, std::vector<ast::ptr<ast::Decl>> & outputList ) {
838 SemanticErrorException errors;
839 std::back_insert_iterator<std::vector<ast::ptr<ast::Decl>>> out( outputList );
840
841 for ( const DeclarationNode * cur = firstNode ; cur ; cur = cur->next ) {
842 try {
843 bool extracted_named = false;
844
845 if ( DeclarationNode * extr = cur->extractAggregate() ) {
846 assert( cur->type );
847
848 if ( ast::Decl * decl = extr->build() ) {
849 *out++ = decl;
850
851 // need to remember the cases where a declaration contains an anonymous aggregate definition
852 assert( extr->type );
853 if ( extr->type->kind == TypeData::Aggregate ) {
854 // typedef struct { int A } B is the only case?
855 extracted_named = ! extr->type->aggregate.anon;
856 } else if ( extr->type->kind == TypeData::Enum ) {
857 // typedef enum { A } B is the only case?
858 extracted_named = ! extr->type->enumeration.anon;
859 } else {
860 extracted_named = true;
861 }
862 } // if
863 delete extr;
864 } // if
865
866 if ( ast::Decl * decl = cur->build() ) {
867 if ( "" == decl->name && !cur->get_inLine() ) {
868 // Don't include anonymous declaration for named aggregates,
869 // but do include them for anonymous aggregates, e.g.:
870 // struct S {
871 // struct T { int x; }; // no anonymous member
872 // struct { int y; }; // anonymous member
873 // struct T; // anonymous member
874 // };
875 if ( extracted_named ) {
876 continue;
877 }
878
879 if ( auto name = getInstTypeOfName( decl ) ) {
880 // Temporary: warn about anonymous member declarations of named types, since
881 // this conflicts with the syntax for the forward declaration of an anonymous type.
882 SemanticWarning( cur->location, Warning::AggrForwardDecl, name->c_str() );
883 }
884 } // if
885 *out++ = decl;
886 } // if
887 } catch ( SemanticErrorException & e ) {
888 errors.append( e );
889 } // try
890 } // for
891
892 if ( ! errors.isEmpty() ) {
893 throw errors;
894 } // if
895} // buildList
896
897// currently only builds assertions, function parameters, and return values
898void buildList( DeclarationNode * firstNode, std::vector<ast::ptr<ast::DeclWithType>> & outputList ) {
899 SemanticErrorException errors;
900 std::back_insert_iterator<std::vector<ast::ptr<ast::DeclWithType>>> out( outputList );
901
902 for ( const DeclarationNode * cur = firstNode; cur; cur = cur->next ) {
903 try {
904 ast::Decl * decl = cur->build();
905 assertf( decl, "buildList: build for ast::DeclWithType." );
906 if ( ast::DeclWithType * dwt = dynamic_cast<ast::DeclWithType *>( decl ) ) {
907 dwt->location = cur->location;
908 *out++ = dwt;
909 } else if ( ast::StructDecl * agg = dynamic_cast<ast::StructDecl *>( decl ) ) {
910 // e.g., int foo(struct S) {}
911 auto inst = new ast::StructInstType( agg->name );
912 auto obj = new ast::ObjectDecl( cur->location, "", inst );
913 obj->linkage = linkage;
914 *out++ = obj;
915 delete agg;
916 } else if ( ast::UnionDecl * agg = dynamic_cast<ast::UnionDecl *>( decl ) ) {
917 // e.g., int foo(union U) {}
918 auto inst = new ast::UnionInstType( agg->name );
919 auto obj = new ast::ObjectDecl( cur->location,
920 "", inst, nullptr, ast::Storage::Classes(),
921 linkage );
922 *out++ = obj;
923 } else if ( ast::EnumDecl * agg = dynamic_cast<ast::EnumDecl *>( decl ) ) {
924 // e.g., int foo(enum E) {}
925 auto inst = new ast::EnumInstType( agg->name );
926 auto obj = new ast::ObjectDecl( cur->location,
927 "",
928 inst,
929 nullptr,
930 ast::Storage::Classes(),
931 linkage
932 );
933 *out++ = obj;
934 } else {
935 assertf( false, "buildList: Could not convert to ast::DeclWithType." );
936 } // if
937 } catch ( SemanticErrorException & e ) {
938 errors.append( e );
939 } // try
940 } // for
941
942 if ( ! errors.isEmpty() ) {
943 throw errors;
944 } // if
945} // buildList
946
947void buildTypeList( const DeclarationNode * firstNode,
948 std::vector<ast::ptr<ast::Type>> & outputList ) {
949 SemanticErrorException errors;
950 std::back_insert_iterator<std::vector<ast::ptr<ast::Type>>> out( outputList );
951
952 for ( const DeclarationNode * cur = firstNode ; cur ; cur = cur->next ) {
953 try {
954 * out++ = cur->buildType();
955 } catch ( SemanticErrorException & e ) {
956 errors.append( e );
957 } // try
958 } // for
959
960 if ( ! errors.isEmpty() ) {
961 throw errors;
962 } // if
963} // buildTypeList
964
965ast::Decl * DeclarationNode::build() const {
966 if ( ! error.empty() ) SemanticError( this, error + " in declaration of " );
967
968 if ( asmStmt ) {
969 auto stmt = strict_dynamic_cast<ast::AsmStmt *>( asmStmt->build() );
970 return new ast::AsmDecl( stmt->location, stmt );
971 } // if
972 if ( directiveStmt ) {
973 auto stmt = strict_dynamic_cast<ast::DirectiveStmt *>( directiveStmt->build() );
974 return new ast::DirectiveDecl( stmt->location, stmt );
975 } // if
976
977 if ( variable.tyClass != ast::TypeDecl::NUMBER_OF_KINDS ) {
978 // otype is internally converted to dtype + otype parameters
979 static const ast::TypeDecl::Kind kindMap[] = { ast::TypeDecl::Dtype, ast::TypeDecl::Dtype, ast::TypeDecl::Dtype, ast::TypeDecl::Ftype, ast::TypeDecl::Ttype, ast::TypeDecl::Dimension };
980 static_assert( sizeof(kindMap) / sizeof(kindMap[0]) == ast::TypeDecl::NUMBER_OF_KINDS, "DeclarationNode::build: kindMap is out of sync." );
981 assertf( variable.tyClass < sizeof(kindMap)/sizeof(kindMap[0]), "Variable's tyClass is out of bounds." );
982 ast::TypeDecl * ret = new ast::TypeDecl( location,
983 *name,
984 ast::Storage::Classes(),
985 (ast::Type *)nullptr,
986 kindMap[ variable.tyClass ],
987 variable.tyClass == ast::TypeDecl::Otype || variable.tyClass == ast::TypeDecl::DStype,
988 variable.initializer ? variable.initializer->buildType() : nullptr
989 );
990 buildList( variable.assertions, ret->assertions );
991 return ret;
992 } // if
993
994 if ( type ) {
995 // Function specifiers can only appear on a function definition/declaration.
996 //
997 // inline _Noreturn int f(); // allowed
998 // inline _Noreturn int g( int i ); // allowed
999 // inline _Noreturn int i; // disallowed
1000 if ( type->kind != TypeData::Function && funcSpecs.any() ) {
1001 SemanticError( this, "invalid function specifier for " );
1002 } // if
1003 // Forall qualifier can only appear on a function/aggregate definition/declaration.
1004 //
1005 // forall int f(); // allowed
1006 // forall int g( int i ); // allowed
1007 // forall int i; // disallowed
1008 if ( type->kind != TypeData::Function && type->forall ) {
1009 SemanticError( this, "invalid type qualifier for " );
1010 } // if
1011 bool isDelete = initializer && initializer->get_isDelete();
1012 ast::Decl * decl = buildDecl(
1013 type,
1014 name ? *name : string( "" ),
1015 storageClasses,
1016 maybeBuild( bitfieldWidth ),
1017 funcSpecs,
1018 linkage,
1019 asmName,
1020 isDelete ? nullptr : maybeBuild( initializer ),
1021 copy( attributes )
1022 )->set_extension( extension );
1023 if ( isDelete ) {
1024 auto dwt = strict_dynamic_cast<ast::DeclWithType *>( decl );
1025 dwt->isDeleted = true;
1026 }
1027 return decl;
1028 } // if
1029
1030 if ( assert.condition ) {
1031 auto cond = maybeBuild( assert.condition );
1032 auto msg = strict_dynamic_cast<ast::ConstantExpr *>( maybeCopy( assert.message ) );
1033 return new ast::StaticAssertDecl( location, cond, msg );
1034 }
1035
1036 // SUE's cannot have function specifiers, either
1037 //
1038 // inline _Noreturn struct S { ... }; // disallowed
1039 // inline _Noreturn enum E { ... }; // disallowed
1040 if ( funcSpecs.any() ) {
1041 SemanticError( this, "invalid function specifier for " );
1042 } // if
1043 if ( enumInLine ) {
1044 return new ast::InlineMemberDecl( location,
1045 *name, (ast::Type*)nullptr, storageClasses, linkage );
1046 } // if
1047 assertf( name, "ObjectDecl must a have name\n" );
1048 auto ret = new ast::ObjectDecl( location,
1049 *name,
1050 (ast::Type*)nullptr,
1051 maybeBuild( initializer ),
1052 storageClasses,
1053 linkage,
1054 maybeBuild( bitfieldWidth )
1055 );
1056 ret->asmName = asmName;
1057 ret->extension = extension;
1058 return ret;
1059}
1060
1061ast::Type * DeclarationNode::buildType() const {
1062 assert( type );
1063
1064 switch ( type->kind ) {
1065 case TypeData::Enum:
1066 case TypeData::Aggregate: {
1067 ast::BaseInstType * ret =
1068 buildComAggInst( type, copy( attributes ), linkage );
1069 buildList( type->aggregate.actuals, ret->params );
1070 return ret;
1071 }
1072 case TypeData::Symbolic: {
1073 ast::TypeInstType * ret = new ast::TypeInstType(
1074 *type->symbolic.name,
1075 // This is just a default, the true value is not known yet.
1076 ast::TypeDecl::Dtype,
1077 buildQualifiers( type ),
1078 copy( attributes ) );
1079 buildList( type->symbolic.actuals, ret->params );
1080 return ret;
1081 }
1082 default:
1083 ast::Type * simpletypes = typebuild( type );
1084 // copy because member is const
1085 simpletypes->attributes = attributes;
1086 return simpletypes;
1087 } // switch
1088}
1089
1090// Local Variables: //
1091// tab-width: 4 //
1092// mode: c++ //
1093// compile-command: "make install" //
1094// End: //
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