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Chris Lattner4b009652007-07-25 00:24:17 +00001//===--- ParseDecl.cpp - Declaration Parsing ------------------------------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file was developed by Chris Lattner and is distributed under
6// the University of Illinois Open Source License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file implements the Declaration portions of the Parser interfaces.
11//
12//===----------------------------------------------------------------------===//
13
14#include "clang/Parse/Parser.h"
15#include "clang/Parse/DeclSpec.h"
16#include "llvm/ADT/SmallSet.h"
17using namespace clang;
18
19//===----------------------------------------------------------------------===//
20// C99 6.7: Declarations.
21//===----------------------------------------------------------------------===//
22
23/// ParseTypeName
24/// type-name: [C99 6.7.6]
25/// specifier-qualifier-list abstract-declarator[opt]
26Parser::TypeTy *Parser::ParseTypeName() {
27 // Parse the common declaration-specifiers piece.
28 DeclSpec DS;
29 ParseSpecifierQualifierList(DS);
30
31 // Parse the abstract-declarator, if present.
32 Declarator DeclaratorInfo(DS, Declarator::TypeNameContext);
33 ParseDeclarator(DeclaratorInfo);
34
35 return Actions.ParseTypeName(CurScope, DeclaratorInfo).Val;
36}
37
38/// ParseAttributes - Parse a non-empty attributes list.
39///
40/// [GNU] attributes:
41/// attribute
42/// attributes attribute
43///
44/// [GNU] attribute:
45/// '__attribute__' '(' '(' attribute-list ')' ')'
46///
47/// [GNU] attribute-list:
48/// attrib
49/// attribute_list ',' attrib
50///
51/// [GNU] attrib:
52/// empty
53/// attrib-name
54/// attrib-name '(' identifier ')'
55/// attrib-name '(' identifier ',' nonempty-expr-list ')'
56/// attrib-name '(' argument-expression-list [C99 6.5.2] ')'
57///
58/// [GNU] attrib-name:
59/// identifier
60/// typespec
61/// typequal
62/// storageclass
63///
64/// FIXME: The GCC grammar/code for this construct implies we need two
65/// token lookahead. Comment from gcc: "If they start with an identifier
66/// which is followed by a comma or close parenthesis, then the arguments
67/// start with that identifier; otherwise they are an expression list."
68///
69/// At the moment, I am not doing 2 token lookahead. I am also unaware of
70/// any attributes that don't work (based on my limited testing). Most
71/// attributes are very simple in practice. Until we find a bug, I don't see
72/// a pressing need to implement the 2 token lookahead.
73
74AttributeList *Parser::ParseAttributes() {
75 assert(Tok.getKind() == tok::kw___attribute && "Not an attribute list!");
76
77 AttributeList *CurrAttr = 0;
78
79 while (Tok.getKind() == tok::kw___attribute) {
80 ConsumeToken();
81 if (ExpectAndConsume(tok::l_paren, diag::err_expected_lparen_after,
82 "attribute")) {
83 SkipUntil(tok::r_paren, true); // skip until ) or ;
84 return CurrAttr;
85 }
86 if (ExpectAndConsume(tok::l_paren, diag::err_expected_lparen_after, "(")) {
87 SkipUntil(tok::r_paren, true); // skip until ) or ;
88 return CurrAttr;
89 }
90 // Parse the attribute-list. e.g. __attribute__(( weak, alias("__f") ))
91 while (Tok.getKind() == tok::identifier || isDeclarationSpecifier() ||
92 Tok.getKind() == tok::comma) {
93
94 if (Tok.getKind() == tok::comma) {
95 // allows for empty/non-empty attributes. ((__vector_size__(16),,,,))
96 ConsumeToken();
97 continue;
98 }
99 // we have an identifier or declaration specifier (const, int, etc.)
100 IdentifierInfo *AttrName = Tok.getIdentifierInfo();
101 SourceLocation AttrNameLoc = ConsumeToken();
102
103 // check if we have a "paramterized" attribute
104 if (Tok.getKind() == tok::l_paren) {
105 ConsumeParen(); // ignore the left paren loc for now
106
107 if (Tok.getKind() == tok::identifier) {
108 IdentifierInfo *ParmName = Tok.getIdentifierInfo();
109 SourceLocation ParmLoc = ConsumeToken();
110
111 if (Tok.getKind() == tok::r_paren) {
112 // __attribute__(( mode(byte) ))
113 ConsumeParen(); // ignore the right paren loc for now
114 CurrAttr = new AttributeList(AttrName, AttrNameLoc,
115 ParmName, ParmLoc, 0, 0, CurrAttr);
116 } else if (Tok.getKind() == tok::comma) {
117 ConsumeToken();
118 // __attribute__(( format(printf, 1, 2) ))
119 llvm::SmallVector<ExprTy*, 8> ArgExprs;
120 bool ArgExprsOk = true;
121
122 // now parse the non-empty comma separated list of expressions
123 while (1) {
124 ExprResult ArgExpr = ParseAssignmentExpression();
125 if (ArgExpr.isInvalid) {
126 ArgExprsOk = false;
127 SkipUntil(tok::r_paren);
128 break;
129 } else {
130 ArgExprs.push_back(ArgExpr.Val);
131 }
132 if (Tok.getKind() != tok::comma)
133 break;
134 ConsumeToken(); // Eat the comma, move to the next argument
135 }
136 if (ArgExprsOk && Tok.getKind() == tok::r_paren) {
137 ConsumeParen(); // ignore the right paren loc for now
138 CurrAttr = new AttributeList(AttrName, AttrNameLoc, ParmName,
139 ParmLoc, &ArgExprs[0], ArgExprs.size(), CurrAttr);
140 }
141 }
142 } else { // not an identifier
143 // parse a possibly empty comma separated list of expressions
144 if (Tok.getKind() == tok::r_paren) {
145 // __attribute__(( nonnull() ))
146 ConsumeParen(); // ignore the right paren loc for now
147 CurrAttr = new AttributeList(AttrName, AttrNameLoc,
148 0, SourceLocation(), 0, 0, CurrAttr);
149 } else {
150 // __attribute__(( aligned(16) ))
151 llvm::SmallVector<ExprTy*, 8> ArgExprs;
152 bool ArgExprsOk = true;
153
154 // now parse the list of expressions
155 while (1) {
156 ExprResult ArgExpr = ParseAssignmentExpression();
157 if (ArgExpr.isInvalid) {
158 ArgExprsOk = false;
159 SkipUntil(tok::r_paren);
160 break;
161 } else {
162 ArgExprs.push_back(ArgExpr.Val);
163 }
164 if (Tok.getKind() != tok::comma)
165 break;
166 ConsumeToken(); // Eat the comma, move to the next argument
167 }
168 // Match the ')'.
169 if (ArgExprsOk && Tok.getKind() == tok::r_paren) {
170 ConsumeParen(); // ignore the right paren loc for now
171 CurrAttr = new AttributeList(AttrName, AttrNameLoc, 0,
172 SourceLocation(), &ArgExprs[0], ArgExprs.size(),
173 CurrAttr);
174 }
175 }
176 }
177 } else {
178 CurrAttr = new AttributeList(AttrName, AttrNameLoc,
179 0, SourceLocation(), 0, 0, CurrAttr);
180 }
181 }
182 if (ExpectAndConsume(tok::r_paren, diag::err_expected_rparen))
183 SkipUntil(tok::r_paren, false);
184 if (ExpectAndConsume(tok::r_paren, diag::err_expected_rparen))
185 SkipUntil(tok::r_paren, false);
186 }
187 return CurrAttr;
188}
189
190/// ParseDeclaration - Parse a full 'declaration', which consists of
191/// declaration-specifiers, some number of declarators, and a semicolon.
192/// 'Context' should be a Declarator::TheContext value.
193Parser::DeclTy *Parser::ParseDeclaration(unsigned Context) {
194 // Parse the common declaration-specifiers piece.
195 DeclSpec DS;
196 ParseDeclarationSpecifiers(DS);
197
198 // C99 6.7.2.3p6: Handle "struct-or-union identifier;", "enum { X };"
199 // declaration-specifiers init-declarator-list[opt] ';'
200 if (Tok.getKind() == tok::semi) {
201 ConsumeToken();
202 return Actions.ParsedFreeStandingDeclSpec(CurScope, DS);
203 }
204
205 Declarator DeclaratorInfo(DS, (Declarator::TheContext)Context);
206 ParseDeclarator(DeclaratorInfo);
207
208 return ParseInitDeclaratorListAfterFirstDeclarator(DeclaratorInfo);
209}
210
211/// ParseInitDeclaratorListAfterFirstDeclarator - Parse 'declaration' after
212/// parsing 'declaration-specifiers declarator'. This method is split out this
213/// way to handle the ambiguity between top-level function-definitions and
214/// declarations.
215///
216/// declaration: [C99 6.7]
217/// declaration-specifiers init-declarator-list[opt] ';' [TODO]
218/// [!C99] init-declarator-list ';' [TODO]
219/// [OMP] threadprivate-directive [TODO]
220///
221/// init-declarator-list: [C99 6.7]
222/// init-declarator
223/// init-declarator-list ',' init-declarator
224/// init-declarator: [C99 6.7]
225/// declarator
226/// declarator '=' initializer
227/// [GNU] declarator simple-asm-expr[opt] attributes[opt]
228/// [GNU] declarator simple-asm-expr[opt] attributes[opt] '=' initializer
229///
230Parser::DeclTy *Parser::
231ParseInitDeclaratorListAfterFirstDeclarator(Declarator &D) {
232
233 // Declarators may be grouped together ("int X, *Y, Z();"). Provide info so
234 // that they can be chained properly if the actions want this.
235 Parser::DeclTy *LastDeclInGroup = 0;
236
237 // At this point, we know that it is not a function definition. Parse the
238 // rest of the init-declarator-list.
239 while (1) {
240 // If a simple-asm-expr is present, parse it.
241 if (Tok.getKind() == tok::kw_asm)
242 ParseSimpleAsm();
243
244 // If attributes are present, parse them.
245 if (Tok.getKind() == tok::kw___attribute)
246 D.AddAttributes(ParseAttributes());
247
248 // Parse declarator '=' initializer.
249 ExprResult Init;
250 if (Tok.getKind() == tok::equal) {
251 ConsumeToken();
252 Init = ParseInitializer();
253 if (Init.isInvalid) {
254 SkipUntil(tok::semi);
255 return 0;
256 }
257 }
258
259 // Inform the current actions module that we just parsed this declarator.
260 // FIXME: pass asm & attributes.
261 LastDeclInGroup = Actions.ParseDeclarator(CurScope, D, Init.Val,
262 LastDeclInGroup);
263
264 // If we don't have a comma, it is either the end of the list (a ';') or an
265 // error, bail out.
266 if (Tok.getKind() != tok::comma)
267 break;
268
269 // Consume the comma.
270 ConsumeToken();
271
272 // Parse the next declarator.
273 D.clear();
274 ParseDeclarator(D);
275 }
276
277 if (Tok.getKind() == tok::semi) {
278 ConsumeToken();
279 return Actions.FinalizeDeclaratorGroup(CurScope, LastDeclInGroup);
280 }
281
282 Diag(Tok, diag::err_parse_error);
283 // Skip to end of block or statement
Chris Lattnerf491b412007-08-21 18:36:18 +0000284 SkipUntil(tok::r_brace, true, true);
Chris Lattner4b009652007-07-25 00:24:17 +0000285 if (Tok.getKind() == tok::semi)
286 ConsumeToken();
287 return 0;
288}
289
290/// ParseSpecifierQualifierList
291/// specifier-qualifier-list:
292/// type-specifier specifier-qualifier-list[opt]
293/// type-qualifier specifier-qualifier-list[opt]
294/// [GNU] attributes specifier-qualifier-list[opt]
295///
296void Parser::ParseSpecifierQualifierList(DeclSpec &DS) {
297 /// specifier-qualifier-list is a subset of declaration-specifiers. Just
298 /// parse declaration-specifiers and complain about extra stuff.
299 ParseDeclarationSpecifiers(DS);
300
301 // Validate declspec for type-name.
302 unsigned Specs = DS.getParsedSpecifiers();
303 if (Specs == DeclSpec::PQ_None)
304 Diag(Tok, diag::err_typename_requires_specqual);
305
306 // Issue diagnostic and remove storage class if present.
307 if (Specs & DeclSpec::PQ_StorageClassSpecifier) {
308 if (DS.getStorageClassSpecLoc().isValid())
309 Diag(DS.getStorageClassSpecLoc(),diag::err_typename_invalid_storageclass);
310 else
311 Diag(DS.getThreadSpecLoc(), diag::err_typename_invalid_storageclass);
312 DS.ClearStorageClassSpecs();
313 }
314
315 // Issue diagnostic and remove function specfier if present.
316 if (Specs & DeclSpec::PQ_FunctionSpecifier) {
317 Diag(DS.getInlineSpecLoc(), diag::err_typename_invalid_functionspec);
318 DS.ClearFunctionSpecs();
319 }
320}
321
322/// ParseDeclarationSpecifiers
323/// declaration-specifiers: [C99 6.7]
324/// storage-class-specifier declaration-specifiers[opt]
325/// type-specifier declaration-specifiers[opt]
326/// type-qualifier declaration-specifiers[opt]
327/// [C99] function-specifier declaration-specifiers[opt]
328/// [GNU] attributes declaration-specifiers[opt]
329///
330/// storage-class-specifier: [C99 6.7.1]
331/// 'typedef'
332/// 'extern'
333/// 'static'
334/// 'auto'
335/// 'register'
336/// [GNU] '__thread'
337/// type-specifier: [C99 6.7.2]
338/// 'void'
339/// 'char'
340/// 'short'
341/// 'int'
342/// 'long'
343/// 'float'
344/// 'double'
345/// 'signed'
346/// 'unsigned'
347/// struct-or-union-specifier
348/// enum-specifier
349/// typedef-name
350/// [C++] 'bool'
351/// [C99] '_Bool'
352/// [C99] '_Complex'
353/// [C99] '_Imaginary' // Removed in TC2?
354/// [GNU] '_Decimal32'
355/// [GNU] '_Decimal64'
356/// [GNU] '_Decimal128'
Steve Naroff4c255ab2007-07-31 23:56:32 +0000357/// [GNU] typeof-specifier
Chris Lattner4b009652007-07-25 00:24:17 +0000358/// [OBJC] class-name objc-protocol-refs[opt] [TODO]
Steve Naroffa8ee2262007-08-22 23:18:22 +0000359/// [OBJC] typedef-name objc-protocol-refs[opt] [TODO]
Chris Lattner4b009652007-07-25 00:24:17 +0000360/// type-qualifier:
361/// 'const'
362/// 'volatile'
363/// [C99] 'restrict'
364/// function-specifier: [C99 6.7.4]
365/// [C99] 'inline'
366///
367void Parser::ParseDeclarationSpecifiers(DeclSpec &DS) {
368 DS.Range.setBegin(Tok.getLocation());
369 while (1) {
370 int isInvalid = false;
371 const char *PrevSpec = 0;
372 SourceLocation Loc = Tok.getLocation();
373
374 switch (Tok.getKind()) {
375 // typedef-name
376 case tok::identifier:
377 // This identifier can only be a typedef name if we haven't already seen
378 // a type-specifier. Without this check we misparse:
379 // typedef int X; struct Y { short X; }; as 'short int'.
380 if (!DS.hasTypeSpecifier()) {
381 // It has to be available as a typedef too!
382 if (void *TypeRep = Actions.isTypeName(*Tok.getIdentifierInfo(),
383 CurScope)) {
384 isInvalid = DS.SetTypeSpecType(DeclSpec::TST_typedef, Loc, PrevSpec,
385 TypeRep);
Steve Naroffa8ee2262007-08-22 23:18:22 +0000386 if (isInvalid)
387 break;
388 else { // FIXME: restrict this to "id" and ObjC classnames.
389 DS.Range.setEnd(Tok.getLocation());
390 ConsumeToken(); // The identifier
391 if (Tok.getKind() == tok::less)
392 ParseObjCProtocolReferences();
393 continue;
394 }
Chris Lattner4b009652007-07-25 00:24:17 +0000395 }
396 }
397 // FALL THROUGH.
398 default:
399 // If this is not a declaration specifier token, we're done reading decl
400 // specifiers. First verify that DeclSpec's are consistent.
401 DS.Finish(Diags, getLang());
402 return;
403
404 // GNU attributes support.
405 case tok::kw___attribute:
406 DS.AddAttributes(ParseAttributes());
407 continue;
408
409 // storage-class-specifier
410 case tok::kw_typedef:
411 isInvalid = DS.SetStorageClassSpec(DeclSpec::SCS_typedef, Loc, PrevSpec);
412 break;
413 case tok::kw_extern:
414 if (DS.isThreadSpecified())
415 Diag(Tok, diag::ext_thread_before, "extern");
416 isInvalid = DS.SetStorageClassSpec(DeclSpec::SCS_extern, Loc, PrevSpec);
417 break;
418 case tok::kw_static:
419 if (DS.isThreadSpecified())
420 Diag(Tok, diag::ext_thread_before, "static");
421 isInvalid = DS.SetStorageClassSpec(DeclSpec::SCS_static, Loc, PrevSpec);
422 break;
423 case tok::kw_auto:
424 isInvalid = DS.SetStorageClassSpec(DeclSpec::SCS_auto, Loc, PrevSpec);
425 break;
426 case tok::kw_register:
427 isInvalid = DS.SetStorageClassSpec(DeclSpec::SCS_register, Loc, PrevSpec);
428 break;
429 case tok::kw___thread:
430 isInvalid = DS.SetStorageClassSpecThread(Loc, PrevSpec)*2;
431 break;
432
433 // type-specifiers
434 case tok::kw_short:
435 isInvalid = DS.SetTypeSpecWidth(DeclSpec::TSW_short, Loc, PrevSpec);
436 break;
437 case tok::kw_long:
438 if (DS.getTypeSpecWidth() != DeclSpec::TSW_long)
439 isInvalid = DS.SetTypeSpecWidth(DeclSpec::TSW_long, Loc, PrevSpec);
440 else
441 isInvalid = DS.SetTypeSpecWidth(DeclSpec::TSW_longlong, Loc, PrevSpec);
442 break;
443 case tok::kw_signed:
444 isInvalid = DS.SetTypeSpecSign(DeclSpec::TSS_signed, Loc, PrevSpec);
445 break;
446 case tok::kw_unsigned:
447 isInvalid = DS.SetTypeSpecSign(DeclSpec::TSS_unsigned, Loc, PrevSpec);
448 break;
449 case tok::kw__Complex:
450 isInvalid = DS.SetTypeSpecComplex(DeclSpec::TSC_complex, Loc, PrevSpec);
451 break;
452 case tok::kw__Imaginary:
453 isInvalid = DS.SetTypeSpecComplex(DeclSpec::TSC_imaginary, Loc, PrevSpec);
454 break;
455 case tok::kw_void:
456 isInvalid = DS.SetTypeSpecType(DeclSpec::TST_void, Loc, PrevSpec);
457 break;
458 case tok::kw_char:
459 isInvalid = DS.SetTypeSpecType(DeclSpec::TST_char, Loc, PrevSpec);
460 break;
461 case tok::kw_int:
462 isInvalid = DS.SetTypeSpecType(DeclSpec::TST_int, Loc, PrevSpec);
463 break;
464 case tok::kw_float:
465 isInvalid = DS.SetTypeSpecType(DeclSpec::TST_float, Loc, PrevSpec);
466 break;
467 case tok::kw_double:
468 isInvalid = DS.SetTypeSpecType(DeclSpec::TST_double, Loc, PrevSpec);
469 break;
470 case tok::kw_bool: // [C++ 2.11p1]
471 case tok::kw__Bool:
472 isInvalid = DS.SetTypeSpecType(DeclSpec::TST_bool, Loc, PrevSpec);
473 break;
474 case tok::kw__Decimal32:
475 isInvalid = DS.SetTypeSpecType(DeclSpec::TST_decimal32, Loc, PrevSpec);
476 break;
477 case tok::kw__Decimal64:
478 isInvalid = DS.SetTypeSpecType(DeclSpec::TST_decimal64, Loc, PrevSpec);
479 break;
480 case tok::kw__Decimal128:
481 isInvalid = DS.SetTypeSpecType(DeclSpec::TST_decimal128, Loc, PrevSpec);
482 break;
483
484 case tok::kw_struct:
485 case tok::kw_union:
486 ParseStructUnionSpecifier(DS);
487 continue;
488 case tok::kw_enum:
489 ParseEnumSpecifier(DS);
490 continue;
491
Steve Naroff7cbb1462007-07-31 12:34:36 +0000492 // GNU typeof support.
493 case tok::kw_typeof:
494 ParseTypeofSpecifier(DS);
495 continue;
496
Chris Lattner4b009652007-07-25 00:24:17 +0000497 // type-qualifier
498 case tok::kw_const:
499 isInvalid = DS.SetTypeQual(DeclSpec::TQ_const , Loc, PrevSpec,
500 getLang())*2;
501 break;
502 case tok::kw_volatile:
503 isInvalid = DS.SetTypeQual(DeclSpec::TQ_volatile, Loc, PrevSpec,
504 getLang())*2;
505 break;
506 case tok::kw_restrict:
507 isInvalid = DS.SetTypeQual(DeclSpec::TQ_restrict, Loc, PrevSpec,
508 getLang())*2;
509 break;
510
511 // function-specifier
512 case tok::kw_inline:
513 isInvalid = DS.SetFunctionSpecInline(Loc, PrevSpec);
514 break;
515 }
516 // If the specifier combination wasn't legal, issue a diagnostic.
517 if (isInvalid) {
518 assert(PrevSpec && "Method did not return previous specifier!");
519 if (isInvalid == 1) // Error.
520 Diag(Tok, diag::err_invalid_decl_spec_combination, PrevSpec);
521 else // extwarn.
522 Diag(Tok, diag::ext_duplicate_declspec, PrevSpec);
523 }
524 DS.Range.setEnd(Tok.getLocation());
525 ConsumeToken();
526 }
527}
528
529/// ParseTag - Parse "struct-or-union-or-class-or-enum identifier[opt]", where
530/// the first token has already been read and has been turned into an instance
531/// of DeclSpec::TST (TagType). This returns true if there is an error parsing,
532/// otherwise it returns false and fills in Decl.
533bool Parser::ParseTag(DeclTy *&Decl, unsigned TagType, SourceLocation StartLoc){
534 AttributeList *Attr = 0;
535 // If attributes exist after tag, parse them.
536 if (Tok.getKind() == tok::kw___attribute)
537 Attr = ParseAttributes();
538
539 // Must have either 'struct name' or 'struct {...}'.
540 if (Tok.getKind() != tok::identifier &&
541 Tok.getKind() != tok::l_brace) {
542 Diag(Tok, diag::err_expected_ident_lbrace);
543
544 // Skip the rest of this declarator, up until the comma or semicolon.
545 SkipUntil(tok::comma, true);
546 return true;
547 }
548
549 // If an identifier is present, consume and remember it.
550 IdentifierInfo *Name = 0;
551 SourceLocation NameLoc;
552 if (Tok.getKind() == tok::identifier) {
553 Name = Tok.getIdentifierInfo();
554 NameLoc = ConsumeToken();
555 }
556
557 // There are three options here. If we have 'struct foo;', then this is a
558 // forward declaration. If we have 'struct foo {...' then this is a
559 // definition. Otherwise we have something like 'struct foo xyz', a reference.
560 //
561 // This is needed to handle stuff like this right (C99 6.7.2.3p11):
562 // struct foo {..}; void bar() { struct foo; } <- new foo in bar.
563 // struct foo {..}; void bar() { struct foo x; } <- use of old foo.
564 //
565 Action::TagKind TK;
566 if (Tok.getKind() == tok::l_brace)
567 TK = Action::TK_Definition;
568 else if (Tok.getKind() == tok::semi)
569 TK = Action::TK_Declaration;
570 else
571 TK = Action::TK_Reference;
572 Decl = Actions.ParseTag(CurScope, TagType, TK, StartLoc, Name, NameLoc, Attr);
573 return false;
574}
575
576
577/// ParseStructUnionSpecifier
578/// struct-or-union-specifier: [C99 6.7.2.1]
579/// struct-or-union identifier[opt] '{' struct-contents '}'
580/// struct-or-union identifier
581/// [GNU] struct-or-union attributes[opt] identifier[opt] '{' struct-contents
582/// '}' attributes[opt]
583/// [GNU] struct-or-union attributes[opt] identifier
584/// struct-or-union:
585/// 'struct'
586/// 'union'
587///
588void Parser::ParseStructUnionSpecifier(DeclSpec &DS) {
589 assert((Tok.getKind() == tok::kw_struct ||
590 Tok.getKind() == tok::kw_union) && "Not a struct/union specifier");
591 DeclSpec::TST TagType =
592 Tok.getKind() == tok::kw_union ? DeclSpec::TST_union : DeclSpec::TST_struct;
593 SourceLocation StartLoc = ConsumeToken();
594
595 // Parse the tag portion of this.
596 DeclTy *TagDecl;
597 if (ParseTag(TagDecl, TagType, StartLoc))
598 return;
599
600 // If there is a body, parse it and inform the actions module.
601 if (Tok.getKind() == tok::l_brace)
602 ParseStructUnionBody(StartLoc, TagType, TagDecl);
603
604 const char *PrevSpec = 0;
605 if (DS.SetTypeSpecType(TagType, StartLoc, PrevSpec, TagDecl))
606 Diag(StartLoc, diag::err_invalid_decl_spec_combination, PrevSpec);
607}
608
Steve Naroffa9adf112007-08-20 22:28:22 +0000609/// ParseStructDeclaration
Chris Lattner4b009652007-07-25 00:24:17 +0000610/// struct-declaration:
611/// specifier-qualifier-list struct-declarator-list ';'
612/// [GNU] __extension__ struct-declaration
613/// [GNU] specifier-qualifier-list ';'
614/// struct-declarator-list:
615/// struct-declarator
616/// struct-declarator-list ',' struct-declarator
617/// [GNU] struct-declarator-list ',' attributes[opt] struct-declarator
618/// struct-declarator:
619/// declarator
620/// [GNU] declarator attributes[opt]
621/// declarator[opt] ':' constant-expression
622/// [GNU] declarator[opt] ':' constant-expression attributes[opt]
623///
Steve Naroffa9adf112007-08-20 22:28:22 +0000624void Parser::ParseStructDeclaration(DeclTy *TagDecl,
625 llvm::SmallVector<DeclTy*, 32> &FieldDecls) {
626 // FIXME: When __extension__ is specified, disable extension diagnostics.
627 if (Tok.getKind() == tok::kw___extension__)
628 ConsumeToken();
629
630 // Parse the common specifier-qualifiers-list piece.
631 DeclSpec DS;
632 SourceLocation SpecQualLoc = Tok.getLocation();
633 ParseSpecifierQualifierList(DS);
634 // TODO: Does specifier-qualifier list correctly check that *something* is
635 // specified?
636
637 // If there are no declarators, issue a warning.
638 if (Tok.getKind() == tok::semi) {
639 Diag(SpecQualLoc, diag::w_no_declarators);
640 ConsumeToken();
641 return;
642 }
643
644 // Read struct-declarators until we find the semicolon.
645 Declarator DeclaratorInfo(DS, Declarator::MemberContext);
646
647 while (1) {
648 /// struct-declarator: declarator
649 /// struct-declarator: declarator[opt] ':' constant-expression
650 if (Tok.getKind() != tok::colon)
651 ParseDeclarator(DeclaratorInfo);
652
653 ExprTy *BitfieldSize = 0;
654 if (Tok.getKind() == tok::colon) {
655 ConsumeToken();
656 ExprResult Res = ParseConstantExpression();
657 if (Res.isInvalid) {
658 SkipUntil(tok::semi, true, true);
659 } else {
660 BitfieldSize = Res.Val;
661 }
662 }
663
664 // If attributes exist after the declarator, parse them.
665 if (Tok.getKind() == tok::kw___attribute)
666 DeclaratorInfo.AddAttributes(ParseAttributes());
667
668 // Install the declarator into the current TagDecl.
669 DeclTy *Field = Actions.ParseField(CurScope, TagDecl, SpecQualLoc,
670 DeclaratorInfo, BitfieldSize);
671 FieldDecls.push_back(Field);
672
673 // If we don't have a comma, it is either the end of the list (a ';')
674 // or an error, bail out.
675 if (Tok.getKind() != tok::comma)
676 break;
677
678 // Consume the comma.
679 ConsumeToken();
680
681 // Parse the next declarator.
682 DeclaratorInfo.clear();
683
684 // Attributes are only allowed on the second declarator.
685 if (Tok.getKind() == tok::kw___attribute)
686 DeclaratorInfo.AddAttributes(ParseAttributes());
687 }
688 return;
689}
690
691/// ParseStructUnionBody
692/// struct-contents:
693/// struct-declaration-list
694/// [EXT] empty
695/// [GNU] "struct-declaration-list" without terminatoring ';'
696/// struct-declaration-list:
697/// struct-declaration
698/// struct-declaration-list struct-declaration
699/// [OBC] '@' 'defs' '(' class-name ')' [TODO]
700///
Chris Lattner4b009652007-07-25 00:24:17 +0000701void Parser::ParseStructUnionBody(SourceLocation RecordLoc,
702 unsigned TagType, DeclTy *TagDecl) {
703 SourceLocation LBraceLoc = ConsumeBrace();
704
705 // Empty structs are an extension in C (C99 6.7.2.1p7), but are allowed in
706 // C++.
707 if (Tok.getKind() == tok::r_brace)
708 Diag(Tok, diag::ext_empty_struct_union_enum,
709 DeclSpec::getSpecifierName((DeclSpec::TST)TagType));
710
711 llvm::SmallVector<DeclTy*, 32> FieldDecls;
712
713 // While we still have something to read, read the declarations in the struct.
714 while (Tok.getKind() != tok::r_brace &&
715 Tok.getKind() != tok::eof) {
716 // Each iteration of this loop reads one struct-declaration.
717
718 // Check for extraneous top-level semicolon.
719 if (Tok.getKind() == tok::semi) {
720 Diag(Tok, diag::ext_extra_struct_semi);
721 ConsumeToken();
722 continue;
723 }
Steve Naroffa9adf112007-08-20 22:28:22 +0000724 ParseStructDeclaration(TagDecl, FieldDecls);
Chris Lattner4b009652007-07-25 00:24:17 +0000725
Chris Lattner4b009652007-07-25 00:24:17 +0000726 if (Tok.getKind() == tok::semi) {
727 ConsumeToken();
728 } else if (Tok.getKind() == tok::r_brace) {
729 Diag(Tok.getLocation(), diag::ext_expected_semi_decl_list);
730 break;
731 } else {
732 Diag(Tok, diag::err_expected_semi_decl_list);
733 // Skip to end of block or statement
734 SkipUntil(tok::r_brace, true, true);
735 }
736 }
737
738 MatchRHSPunctuation(tok::r_brace, LBraceLoc);
739
740 Actions.ParseRecordBody(RecordLoc, TagDecl, &FieldDecls[0],FieldDecls.size());
741
742 AttributeList *AttrList = 0;
743 // If attributes exist after struct contents, parse them.
744 if (Tok.getKind() == tok::kw___attribute)
745 AttrList = ParseAttributes(); // FIXME: where should I put them?
746}
747
748
749/// ParseEnumSpecifier
750/// enum-specifier: [C99 6.7.2.2]
751/// 'enum' identifier[opt] '{' enumerator-list '}'
752/// [C99] 'enum' identifier[opt] '{' enumerator-list ',' '}'
753/// [GNU] 'enum' attributes[opt] identifier[opt] '{' enumerator-list ',' [opt]
754/// '}' attributes[opt]
755/// 'enum' identifier
756/// [GNU] 'enum' attributes[opt] identifier
757void Parser::ParseEnumSpecifier(DeclSpec &DS) {
758 assert(Tok.getKind() == tok::kw_enum && "Not an enum specifier");
759 SourceLocation StartLoc = ConsumeToken();
760
761 // Parse the tag portion of this.
762 DeclTy *TagDecl;
763 if (ParseTag(TagDecl, DeclSpec::TST_enum, StartLoc))
764 return;
765
766 if (Tok.getKind() == tok::l_brace)
767 ParseEnumBody(StartLoc, TagDecl);
768
769 // TODO: semantic analysis on the declspec for enums.
770 const char *PrevSpec = 0;
771 if (DS.SetTypeSpecType(DeclSpec::TST_enum, StartLoc, PrevSpec, TagDecl))
772 Diag(StartLoc, diag::err_invalid_decl_spec_combination, PrevSpec);
773}
774
775/// ParseEnumBody - Parse a {} enclosed enumerator-list.
776/// enumerator-list:
777/// enumerator
778/// enumerator-list ',' enumerator
779/// enumerator:
780/// enumeration-constant
781/// enumeration-constant '=' constant-expression
782/// enumeration-constant:
783/// identifier
784///
785void Parser::ParseEnumBody(SourceLocation StartLoc, DeclTy *EnumDecl) {
786 SourceLocation LBraceLoc = ConsumeBrace();
787
788 if (Tok.getKind() == tok::r_brace)
789 Diag(Tok, diag::ext_empty_struct_union_enum, "enum");
790
791 llvm::SmallVector<DeclTy*, 32> EnumConstantDecls;
792
793 DeclTy *LastEnumConstDecl = 0;
794
795 // Parse the enumerator-list.
796 while (Tok.getKind() == tok::identifier) {
797 IdentifierInfo *Ident = Tok.getIdentifierInfo();
798 SourceLocation IdentLoc = ConsumeToken();
799
800 SourceLocation EqualLoc;
801 ExprTy *AssignedVal = 0;
802 if (Tok.getKind() == tok::equal) {
803 EqualLoc = ConsumeToken();
804 ExprResult Res = ParseConstantExpression();
805 if (Res.isInvalid)
806 SkipUntil(tok::comma, tok::r_brace, true, true);
807 else
808 AssignedVal = Res.Val;
809 }
810
811 // Install the enumerator constant into EnumDecl.
812 DeclTy *EnumConstDecl = Actions.ParseEnumConstant(CurScope, EnumDecl,
813 LastEnumConstDecl,
814 IdentLoc, Ident,
815 EqualLoc, AssignedVal);
816 EnumConstantDecls.push_back(EnumConstDecl);
817 LastEnumConstDecl = EnumConstDecl;
818
819 if (Tok.getKind() != tok::comma)
820 break;
821 SourceLocation CommaLoc = ConsumeToken();
822
823 if (Tok.getKind() != tok::identifier && !getLang().C99)
824 Diag(CommaLoc, diag::ext_c99_enumerator_list_comma);
825 }
826
827 // Eat the }.
828 MatchRHSPunctuation(tok::r_brace, LBraceLoc);
829
830 Actions.ParseEnumBody(StartLoc, EnumDecl, &EnumConstantDecls[0],
831 EnumConstantDecls.size());
832
833 DeclTy *AttrList = 0;
834 // If attributes exist after the identifier list, parse them.
835 if (Tok.getKind() == tok::kw___attribute)
836 AttrList = ParseAttributes(); // FIXME: where do they do?
837}
838
839/// isTypeSpecifierQualifier - Return true if the current token could be the
840/// start of a specifier-qualifier-list.
841bool Parser::isTypeSpecifierQualifier() const {
842 switch (Tok.getKind()) {
843 default: return false;
844 // GNU attributes support.
845 case tok::kw___attribute:
Steve Naroff7cbb1462007-07-31 12:34:36 +0000846 // GNU typeof support.
847 case tok::kw_typeof:
848
Chris Lattner4b009652007-07-25 00:24:17 +0000849 // type-specifiers
850 case tok::kw_short:
851 case tok::kw_long:
852 case tok::kw_signed:
853 case tok::kw_unsigned:
854 case tok::kw__Complex:
855 case tok::kw__Imaginary:
856 case tok::kw_void:
857 case tok::kw_char:
858 case tok::kw_int:
859 case tok::kw_float:
860 case tok::kw_double:
861 case tok::kw__Bool:
862 case tok::kw__Decimal32:
863 case tok::kw__Decimal64:
864 case tok::kw__Decimal128:
865
866 // struct-or-union-specifier
867 case tok::kw_struct:
868 case tok::kw_union:
869 // enum-specifier
870 case tok::kw_enum:
871
872 // type-qualifier
873 case tok::kw_const:
874 case tok::kw_volatile:
875 case tok::kw_restrict:
876 return true;
877
878 // typedef-name
879 case tok::identifier:
880 return Actions.isTypeName(*Tok.getIdentifierInfo(), CurScope) != 0;
Chris Lattner4b009652007-07-25 00:24:17 +0000881 }
882}
883
884/// isDeclarationSpecifier() - Return true if the current token is part of a
885/// declaration specifier.
886bool Parser::isDeclarationSpecifier() const {
887 switch (Tok.getKind()) {
888 default: return false;
889 // storage-class-specifier
890 case tok::kw_typedef:
891 case tok::kw_extern:
892 case tok::kw_static:
893 case tok::kw_auto:
894 case tok::kw_register:
895 case tok::kw___thread:
896
897 // type-specifiers
898 case tok::kw_short:
899 case tok::kw_long:
900 case tok::kw_signed:
901 case tok::kw_unsigned:
902 case tok::kw__Complex:
903 case tok::kw__Imaginary:
904 case tok::kw_void:
905 case tok::kw_char:
906 case tok::kw_int:
907 case tok::kw_float:
908 case tok::kw_double:
909 case tok::kw__Bool:
910 case tok::kw__Decimal32:
911 case tok::kw__Decimal64:
912 case tok::kw__Decimal128:
913
914 // struct-or-union-specifier
915 case tok::kw_struct:
916 case tok::kw_union:
917 // enum-specifier
918 case tok::kw_enum:
919
920 // type-qualifier
921 case tok::kw_const:
922 case tok::kw_volatile:
923 case tok::kw_restrict:
Steve Naroff7cbb1462007-07-31 12:34:36 +0000924
Chris Lattner4b009652007-07-25 00:24:17 +0000925 // function-specifier
926 case tok::kw_inline:
Chris Lattnere35d2582007-08-09 16:40:21 +0000927
Chris Lattnerb707a7a2007-08-09 17:01:07 +0000928 // GNU typeof support.
929 case tok::kw_typeof:
930
931 // GNU attributes.
Chris Lattnere35d2582007-08-09 16:40:21 +0000932 case tok::kw___attribute:
Chris Lattner4b009652007-07-25 00:24:17 +0000933 return true;
934
935 // typedef-name
936 case tok::identifier:
937 return Actions.isTypeName(*Tok.getIdentifierInfo(), CurScope) != 0;
Chris Lattner4b009652007-07-25 00:24:17 +0000938 }
939}
940
941
942/// ParseTypeQualifierListOpt
943/// type-qualifier-list: [C99 6.7.5]
944/// type-qualifier
945/// [GNU] attributes
946/// type-qualifier-list type-qualifier
947/// [GNU] type-qualifier-list attributes
948///
949void Parser::ParseTypeQualifierListOpt(DeclSpec &DS) {
950 while (1) {
951 int isInvalid = false;
952 const char *PrevSpec = 0;
953 SourceLocation Loc = Tok.getLocation();
954
955 switch (Tok.getKind()) {
956 default:
957 // If this is not a type-qualifier token, we're done reading type
958 // qualifiers. First verify that DeclSpec's are consistent.
959 DS.Finish(Diags, getLang());
960 return;
961 case tok::kw_const:
962 isInvalid = DS.SetTypeQual(DeclSpec::TQ_const , Loc, PrevSpec,
963 getLang())*2;
964 break;
965 case tok::kw_volatile:
966 isInvalid = DS.SetTypeQual(DeclSpec::TQ_volatile, Loc, PrevSpec,
967 getLang())*2;
968 break;
969 case tok::kw_restrict:
970 isInvalid = DS.SetTypeQual(DeclSpec::TQ_restrict, Loc, PrevSpec,
971 getLang())*2;
972 break;
973 case tok::kw___attribute:
974 DS.AddAttributes(ParseAttributes());
975 continue; // do *not* consume the next token!
976 }
977
978 // If the specifier combination wasn't legal, issue a diagnostic.
979 if (isInvalid) {
980 assert(PrevSpec && "Method did not return previous specifier!");
981 if (isInvalid == 1) // Error.
982 Diag(Tok, diag::err_invalid_decl_spec_combination, PrevSpec);
983 else // extwarn.
984 Diag(Tok, diag::ext_duplicate_declspec, PrevSpec);
985 }
986 ConsumeToken();
987 }
988}
989
990
991/// ParseDeclarator - Parse and verify a newly-initialized declarator.
992///
993void Parser::ParseDeclarator(Declarator &D) {
994 /// This implements the 'declarator' production in the C grammar, then checks
995 /// for well-formedness and issues diagnostics.
996 ParseDeclaratorInternal(D);
997
998 // TODO: validate D.
999
1000}
1001
1002/// ParseDeclaratorInternal
1003/// declarator: [C99 6.7.5]
1004/// pointer[opt] direct-declarator
1005/// [C++] '&' declarator [C++ 8p4, dcl.decl]
1006/// [GNU] '&' restrict[opt] attributes[opt] declarator
1007///
1008/// pointer: [C99 6.7.5]
1009/// '*' type-qualifier-list[opt]
1010/// '*' type-qualifier-list[opt] pointer
1011///
1012void Parser::ParseDeclaratorInternal(Declarator &D) {
1013 tok::TokenKind Kind = Tok.getKind();
1014
1015 // Not a pointer or C++ reference.
1016 if (Kind != tok::star && !(Kind == tok::amp && getLang().CPlusPlus))
1017 return ParseDirectDeclarator(D);
1018
1019 // Otherwise, '*' -> pointer or '&' -> reference.
1020 SourceLocation Loc = ConsumeToken(); // Eat the * or &.
1021
1022 if (Kind == tok::star) {
1023 // Is a pointer
1024 DeclSpec DS;
1025
1026 ParseTypeQualifierListOpt(DS);
1027
1028 // Recursively parse the declarator.
1029 ParseDeclaratorInternal(D);
1030
1031 // Remember that we parsed a pointer type, and remember the type-quals.
1032 D.AddTypeInfo(DeclaratorChunk::getPointer(DS.getTypeQualifiers(), Loc));
1033 } else {
1034 // Is a reference
1035 DeclSpec DS;
1036
1037 // C++ 8.3.2p1: cv-qualified references are ill-formed except when the
1038 // cv-qualifiers are introduced through the use of a typedef or of a
1039 // template type argument, in which case the cv-qualifiers are ignored.
1040 //
1041 // [GNU] Retricted references are allowed.
1042 // [GNU] Attributes on references are allowed.
1043 ParseTypeQualifierListOpt(DS);
1044
1045 if (DS.getTypeQualifiers() != DeclSpec::TQ_unspecified) {
1046 if (DS.getTypeQualifiers() & DeclSpec::TQ_const)
1047 Diag(DS.getConstSpecLoc(),
1048 diag::err_invalid_reference_qualifier_application,
1049 "const");
1050 if (DS.getTypeQualifiers() & DeclSpec::TQ_volatile)
1051 Diag(DS.getVolatileSpecLoc(),
1052 diag::err_invalid_reference_qualifier_application,
1053 "volatile");
1054 }
1055
1056 // Recursively parse the declarator.
1057 ParseDeclaratorInternal(D);
1058
1059 // Remember that we parsed a reference type. It doesn't have type-quals.
1060 D.AddTypeInfo(DeclaratorChunk::getReference(DS.getTypeQualifiers(), Loc));
1061 }
1062}
1063
1064/// ParseDirectDeclarator
1065/// direct-declarator: [C99 6.7.5]
1066/// identifier
1067/// '(' declarator ')'
1068/// [GNU] '(' attributes declarator ')'
1069/// [C90] direct-declarator '[' constant-expression[opt] ']'
1070/// [C99] direct-declarator '[' type-qual-list[opt] assignment-expr[opt] ']'
1071/// [C99] direct-declarator '[' 'static' type-qual-list[opt] assign-expr ']'
1072/// [C99] direct-declarator '[' type-qual-list 'static' assignment-expr ']'
1073/// [C99] direct-declarator '[' type-qual-list[opt] '*' ']'
1074/// direct-declarator '(' parameter-type-list ')'
1075/// direct-declarator '(' identifier-list[opt] ')'
1076/// [GNU] direct-declarator '(' parameter-forward-declarations
1077/// parameter-type-list[opt] ')'
1078///
1079void Parser::ParseDirectDeclarator(Declarator &D) {
1080 // Parse the first direct-declarator seen.
1081 if (Tok.getKind() == tok::identifier && D.mayHaveIdentifier()) {
1082 assert(Tok.getIdentifierInfo() && "Not an identifier?");
1083 D.SetIdentifier(Tok.getIdentifierInfo(), Tok.getLocation());
1084 ConsumeToken();
1085 } else if (Tok.getKind() == tok::l_paren) {
1086 // direct-declarator: '(' declarator ')'
1087 // direct-declarator: '(' attributes declarator ')'
1088 // Example: 'char (*X)' or 'int (*XX)(void)'
1089 ParseParenDeclarator(D);
1090 } else if (D.mayOmitIdentifier()) {
1091 // This could be something simple like "int" (in which case the declarator
1092 // portion is empty), if an abstract-declarator is allowed.
1093 D.SetIdentifier(0, Tok.getLocation());
1094 } else {
1095 // Expected identifier or '('.
1096 Diag(Tok, diag::err_expected_ident_lparen);
1097 D.SetIdentifier(0, Tok.getLocation());
1098 }
1099
1100 assert(D.isPastIdentifier() &&
1101 "Haven't past the location of the identifier yet?");
1102
1103 while (1) {
1104 if (Tok.getKind() == tok::l_paren) {
1105 ParseParenDeclarator(D);
1106 } else if (Tok.getKind() == tok::l_square) {
1107 ParseBracketDeclarator(D);
1108 } else {
1109 break;
1110 }
1111 }
1112}
1113
1114/// ParseParenDeclarator - We parsed the declarator D up to a paren. This may
1115/// either be before the identifier (in which case these are just grouping
1116/// parens for precedence) or it may be after the identifier, in which case
1117/// these are function arguments.
1118///
1119/// This method also handles this portion of the grammar:
1120/// parameter-type-list: [C99 6.7.5]
1121/// parameter-list
1122/// parameter-list ',' '...'
1123///
1124/// parameter-list: [C99 6.7.5]
1125/// parameter-declaration
1126/// parameter-list ',' parameter-declaration
1127///
1128/// parameter-declaration: [C99 6.7.5]
1129/// declaration-specifiers declarator
1130/// [GNU] declaration-specifiers declarator attributes
1131/// declaration-specifiers abstract-declarator[opt]
1132/// [GNU] declaration-specifiers abstract-declarator[opt] attributes
1133///
1134/// identifier-list: [C99 6.7.5]
1135/// identifier
1136/// identifier-list ',' identifier
1137///
1138void Parser::ParseParenDeclarator(Declarator &D) {
1139 SourceLocation StartLoc = ConsumeParen();
1140
1141 // If we haven't past the identifier yet (or where the identifier would be
1142 // stored, if this is an abstract declarator), then this is probably just
1143 // grouping parens.
1144 if (!D.isPastIdentifier()) {
1145 // Okay, this is probably a grouping paren. However, if this could be an
1146 // abstract-declarator, then this could also be the start of function
1147 // arguments (consider 'void()').
1148 bool isGrouping;
1149
1150 if (!D.mayOmitIdentifier()) {
1151 // If this can't be an abstract-declarator, this *must* be a grouping
1152 // paren, because we haven't seen the identifier yet.
1153 isGrouping = true;
1154 } else if (Tok.getKind() == tok::r_paren || // 'int()' is a function.
1155 isDeclarationSpecifier()) { // 'int(int)' is a function.
1156 // This handles C99 6.7.5.3p11: in "typedef int X; void foo(X)", X is
1157 // considered to be a type, not a K&R identifier-list.
1158 isGrouping = false;
1159 } else {
1160 // Otherwise, this is a grouping paren, e.g. 'int (*X)' or 'int(X)'.
1161 isGrouping = true;
1162 }
1163
1164 // If this is a grouping paren, handle:
1165 // direct-declarator: '(' declarator ')'
1166 // direct-declarator: '(' attributes declarator ')'
1167 if (isGrouping) {
1168 if (Tok.getKind() == tok::kw___attribute)
1169 D.AddAttributes(ParseAttributes());
1170
1171 ParseDeclaratorInternal(D);
1172 // Match the ')'.
1173 MatchRHSPunctuation(tok::r_paren, StartLoc);
1174 return;
1175 }
1176
1177 // Okay, if this wasn't a grouping paren, it must be the start of a function
1178 // argument list. Recognize that this declarator will never have an
1179 // identifier (and remember where it would have been), then fall through to
1180 // the handling of argument lists.
1181 D.SetIdentifier(0, Tok.getLocation());
1182 }
1183
1184 // Okay, this is the parameter list of a function definition, or it is an
1185 // identifier list of a K&R-style function.
1186 bool IsVariadic;
1187 bool HasPrototype;
1188 bool ErrorEmitted = false;
1189
1190 // Build up an array of information about the parsed arguments.
1191 llvm::SmallVector<DeclaratorChunk::ParamInfo, 16> ParamInfo;
1192 llvm::SmallSet<const IdentifierInfo*, 16> ParamsSoFar;
1193
1194 if (Tok.getKind() == tok::r_paren) {
1195 // int() -> no prototype, no '...'.
1196 IsVariadic = false;
1197 HasPrototype = false;
1198 } else if (Tok.getKind() == tok::identifier &&
1199 // K&R identifier lists can't have typedefs as identifiers, per
1200 // C99 6.7.5.3p11.
1201 !Actions.isTypeName(*Tok.getIdentifierInfo(), CurScope)) {
1202 // Identifier list. Note that '(' identifier-list ')' is only allowed for
1203 // normal declarators, not for abstract-declarators.
1204 assert(D.isPastIdentifier() && "Identifier (if present) must be passed!");
1205
1206 // If there was no identifier specified, either we are in an
1207 // abstract-declarator, or we are in a parameter declarator which was found
1208 // to be abstract. In abstract-declarators, identifier lists are not valid,
1209 // diagnose this.
1210 if (!D.getIdentifier())
1211 Diag(Tok, diag::ext_ident_list_in_param);
1212
1213 // Remember this identifier in ParamInfo.
1214 ParamInfo.push_back(DeclaratorChunk::ParamInfo(Tok.getIdentifierInfo(),
1215 Tok.getLocation(), 0));
1216
1217 ConsumeToken();
1218 while (Tok.getKind() == tok::comma) {
1219 // Eat the comma.
1220 ConsumeToken();
1221
1222 if (Tok.getKind() != tok::identifier) {
1223 Diag(Tok, diag::err_expected_ident);
1224 ErrorEmitted = true;
1225 break;
1226 }
1227
1228 IdentifierInfo *ParmII = Tok.getIdentifierInfo();
1229
1230 // Verify that the argument identifier has not already been mentioned.
1231 if (!ParamsSoFar.insert(ParmII)) {
1232 Diag(Tok.getLocation(), diag::err_param_redefinition,ParmII->getName());
1233 ParmII = 0;
1234 }
1235
1236 // Remember this identifier in ParamInfo.
1237 if (ParmII)
1238 ParamInfo.push_back(DeclaratorChunk::ParamInfo(ParmII,
1239 Tok.getLocation(), 0));
1240
1241 // Eat the identifier.
1242 ConsumeToken();
1243 }
1244
1245 // K&R 'prototype'.
1246 IsVariadic = false;
1247 HasPrototype = false;
1248 } else {
1249 // Finally, a normal, non-empty parameter type list.
1250
1251 // Enter function-declaration scope, limiting any declarators for struct
1252 // tags to the function prototype scope.
1253 // FIXME: is this needed?
1254 EnterScope(0);
1255
1256 IsVariadic = false;
1257 while (1) {
1258 if (Tok.getKind() == tok::ellipsis) {
1259 IsVariadic = true;
1260
1261 // Check to see if this is "void(...)" which is not allowed.
1262 if (ParamInfo.empty()) {
1263 // Otherwise, parse parameter type list. If it starts with an
1264 // ellipsis, diagnose the malformed function.
1265 Diag(Tok, diag::err_ellipsis_first_arg);
1266 IsVariadic = false; // Treat this like 'void()'.
1267 }
1268
1269 // Consume the ellipsis.
1270 ConsumeToken();
1271 break;
1272 }
1273
1274 // Parse the declaration-specifiers.
1275 DeclSpec DS;
1276 ParseDeclarationSpecifiers(DS);
1277
1278 // Parse the declarator. This is "PrototypeContext", because we must
1279 // accept either 'declarator' or 'abstract-declarator' here.
1280 Declarator ParmDecl(DS, Declarator::PrototypeContext);
1281 ParseDeclarator(ParmDecl);
1282
1283 // Parse GNU attributes, if present.
1284 if (Tok.getKind() == tok::kw___attribute)
1285 ParmDecl.AddAttributes(ParseAttributes());
1286
1287 // Verify C99 6.7.5.3p2: The only SCS allowed is 'register'.
1288 // NOTE: we could trivially allow 'int foo(auto int X)' if we wanted.
1289 if (DS.getStorageClassSpec() != DeclSpec::SCS_unspecified &&
1290 DS.getStorageClassSpec() != DeclSpec::SCS_register) {
1291 Diag(DS.getStorageClassSpecLoc(),
1292 diag::err_invalid_storage_class_in_func_decl);
1293 DS.ClearStorageClassSpecs();
1294 }
1295 if (DS.isThreadSpecified()) {
1296 Diag(DS.getThreadSpecLoc(),
1297 diag::err_invalid_storage_class_in_func_decl);
1298 DS.ClearStorageClassSpecs();
1299 }
1300
1301 // Inform the actions module about the parameter declarator, so it gets
1302 // added to the current scope.
1303 Action::TypeResult ParamTy =
1304 Actions.ParseParamDeclaratorType(CurScope, ParmDecl);
1305
1306 // Remember this parsed parameter in ParamInfo.
1307 IdentifierInfo *ParmII = ParmDecl.getIdentifier();
1308
1309 // Verify that the argument identifier has not already been mentioned.
1310 if (ParmII && !ParamsSoFar.insert(ParmII)) {
1311 Diag(ParmDecl.getIdentifierLoc(), diag::err_param_redefinition,
1312 ParmII->getName());
1313 ParmII = 0;
1314 }
1315
1316 ParamInfo.push_back(DeclaratorChunk::ParamInfo(ParmII,
1317 ParmDecl.getIdentifierLoc(),
1318 ParamTy.Val));
1319
1320 // If the next token is a comma, consume it and keep reading arguments.
1321 if (Tok.getKind() != tok::comma) break;
1322
1323 // Consume the comma.
1324 ConsumeToken();
1325 }
1326
1327 HasPrototype = true;
1328
1329 // Leave prototype scope.
1330 ExitScope();
1331 }
1332
1333 // Remember that we parsed a function type, and remember the attributes.
1334 if (!ErrorEmitted)
1335 D.AddTypeInfo(DeclaratorChunk::getFunction(HasPrototype, IsVariadic,
1336 &ParamInfo[0], ParamInfo.size(),
1337 StartLoc));
1338
1339 // If we have the closing ')', eat it and we're done.
1340 if (Tok.getKind() == tok::r_paren) {
1341 ConsumeParen();
1342 } else {
1343 // If an error happened earlier parsing something else in the proto, don't
1344 // issue another error.
1345 if (!ErrorEmitted)
1346 Diag(Tok, diag::err_expected_rparen);
1347 SkipUntil(tok::r_paren);
1348 }
1349}
1350
1351
1352/// [C90] direct-declarator '[' constant-expression[opt] ']'
1353/// [C99] direct-declarator '[' type-qual-list[opt] assignment-expr[opt] ']'
1354/// [C99] direct-declarator '[' 'static' type-qual-list[opt] assign-expr ']'
1355/// [C99] direct-declarator '[' type-qual-list 'static' assignment-expr ']'
1356/// [C99] direct-declarator '[' type-qual-list[opt] '*' ']'
1357void Parser::ParseBracketDeclarator(Declarator &D) {
1358 SourceLocation StartLoc = ConsumeBracket();
1359
1360 // If valid, this location is the position where we read the 'static' keyword.
1361 SourceLocation StaticLoc;
1362 if (Tok.getKind() == tok::kw_static)
1363 StaticLoc = ConsumeToken();
1364
1365 // If there is a type-qualifier-list, read it now.
1366 DeclSpec DS;
1367 ParseTypeQualifierListOpt(DS);
1368
1369 // If we haven't already read 'static', check to see if there is one after the
1370 // type-qualifier-list.
1371 if (!StaticLoc.isValid() && Tok.getKind() == tok::kw_static)
1372 StaticLoc = ConsumeToken();
1373
1374 // Handle "direct-declarator [ type-qual-list[opt] * ]".
1375 bool isStar = false;
1376 ExprResult NumElements(false);
1377 if (Tok.getKind() == tok::star) {
1378 // Remember the '*' token, in case we have to un-get it.
1379 Token StarTok = Tok;
1380 ConsumeToken();
1381
1382 // Check that the ']' token is present to avoid incorrectly parsing
1383 // expressions starting with '*' as [*].
1384 if (Tok.getKind() == tok::r_square) {
1385 if (StaticLoc.isValid())
1386 Diag(StaticLoc, diag::err_unspecified_vla_size_with_static);
1387 StaticLoc = SourceLocation(); // Drop the static.
1388 isStar = true;
1389 } else {
1390 // Otherwise, the * must have been some expression (such as '*ptr') that
1391 // started an assignment-expr. We already consumed the token, but now we
1392 // need to reparse it. This handles cases like 'X[*p + 4]'
1393 NumElements = ParseAssignmentExpressionWithLeadingStar(StarTok);
1394 }
1395 } else if (Tok.getKind() != tok::r_square) {
1396 // Parse the assignment-expression now.
1397 NumElements = ParseAssignmentExpression();
1398 }
1399
1400 // If there was an error parsing the assignment-expression, recover.
1401 if (NumElements.isInvalid) {
1402 // If the expression was invalid, skip it.
1403 SkipUntil(tok::r_square);
1404 return;
1405 }
1406
1407 MatchRHSPunctuation(tok::r_square, StartLoc);
1408
1409 // If C99 isn't enabled, emit an ext-warn if the arg list wasn't empty and if
1410 // it was not a constant expression.
1411 if (!getLang().C99) {
1412 // TODO: check C90 array constant exprness.
1413 if (isStar || StaticLoc.isValid() ||
1414 0/*TODO: NumElts is not a C90 constantexpr */)
1415 Diag(StartLoc, diag::ext_c99_array_usage);
1416 }
1417
1418 // Remember that we parsed a pointer type, and remember the type-quals.
1419 D.AddTypeInfo(DeclaratorChunk::getArray(DS.getTypeQualifiers(),
1420 StaticLoc.isValid(), isStar,
1421 NumElements.Val, StartLoc));
1422}
1423
Steve Naroff7cbb1462007-07-31 12:34:36 +00001424/// [GNU] typeof-specifier:
1425/// typeof ( expressions )
1426/// typeof ( type-name )
1427///
1428void Parser::ParseTypeofSpecifier(DeclSpec &DS) {
1429 assert(Tok.getKind() == tok::kw_typeof && "Not a typeof specifier");
Steve Naroff14bbce82007-08-02 02:53:48 +00001430 const IdentifierInfo *BuiltinII = Tok.getIdentifierInfo();
Steve Naroff7cbb1462007-07-31 12:34:36 +00001431 SourceLocation StartLoc = ConsumeToken();
1432
1433 if (Tok.getKind() != tok::l_paren) {
Steve Naroff14bbce82007-08-02 02:53:48 +00001434 Diag(Tok, diag::err_expected_lparen_after, BuiltinII->getName());
1435 return;
Steve Naroff7cbb1462007-07-31 12:34:36 +00001436 }
1437 SourceLocation LParenLoc = ConsumeParen(), RParenLoc;
1438
1439 if (isTypeSpecifierQualifier()) {
1440 TypeTy *Ty = ParseTypeName();
1441
Steve Naroff4c255ab2007-07-31 23:56:32 +00001442 assert(Ty && "Parser::ParseTypeofSpecifier(): missing type");
1443
Steve Naroff14bbce82007-08-02 02:53:48 +00001444 if (Tok.getKind() != tok::r_paren) {
Steve Naroff4c255ab2007-07-31 23:56:32 +00001445 MatchRHSPunctuation(tok::r_paren, LParenLoc);
Steve Naroff14bbce82007-08-02 02:53:48 +00001446 return;
1447 }
1448 RParenLoc = ConsumeParen();
1449 const char *PrevSpec = 0;
1450 // Check for duplicate type specifiers (e.g. "int typeof(int)").
1451 if (DS.SetTypeSpecType(DeclSpec::TST_typeofType, StartLoc, PrevSpec, Ty))
1452 Diag(StartLoc, diag::err_invalid_decl_spec_combination, PrevSpec);
Steve Naroff7cbb1462007-07-31 12:34:36 +00001453 } else { // we have an expression.
1454 ExprResult Result = ParseExpression();
Steve Naroff4c255ab2007-07-31 23:56:32 +00001455
Steve Naroff14bbce82007-08-02 02:53:48 +00001456 if (Result.isInvalid || Tok.getKind() != tok::r_paren) {
Steve Naroff4c255ab2007-07-31 23:56:32 +00001457 MatchRHSPunctuation(tok::r_paren, LParenLoc);
Steve Naroff14bbce82007-08-02 02:53:48 +00001458 return;
1459 }
1460 RParenLoc = ConsumeParen();
1461 const char *PrevSpec = 0;
1462 // Check for duplicate type specifiers (e.g. "int typeof(int)").
1463 if (DS.SetTypeSpecType(DeclSpec::TST_typeofExpr, StartLoc, PrevSpec,
1464 Result.Val))
1465 Diag(StartLoc, diag::err_invalid_decl_spec_combination, PrevSpec);
Steve Naroff7cbb1462007-07-31 12:34:36 +00001466 }
Steve Naroff7cbb1462007-07-31 12:34:36 +00001467}
1468