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Chris Lattner4b009652007-07-25 00:24:17 +00001//===--- ParseStmt.cpp - Statement and Block Parser -----------------------===//
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 Statement and Block portions of the Parser
11// interface.
12//
13//===----------------------------------------------------------------------===//
14
15#include "clang/Parse/Parser.h"
16#include "clang/Basic/Diagnostic.h"
17#include "clang/Parse/DeclSpec.h"
18#include "clang/Parse/Scope.h"
19using namespace clang;
20
21//===----------------------------------------------------------------------===//
22// C99 6.8: Statements and Blocks.
23//===----------------------------------------------------------------------===//
24
25/// ParseStatementOrDeclaration - Read 'statement' or 'declaration'.
26/// StatementOrDeclaration:
27/// statement
28/// declaration
29///
30/// statement:
31/// labeled-statement
32/// compound-statement
33/// expression-statement
34/// selection-statement
35/// iteration-statement
36/// jump-statement
37/// [OBC] objc-throw-statement [TODO]
38/// [OBC] objc-try-catch-statement [TODO]
39/// [OBC] objc-synchronized-statement [TODO]
40/// [GNU] asm-statement
41/// [OMP] openmp-construct [TODO]
42///
43/// labeled-statement:
44/// identifier ':' statement
45/// 'case' constant-expression ':' statement
46/// 'default' ':' statement
47///
48/// selection-statement:
49/// if-statement
50/// switch-statement
51///
52/// iteration-statement:
53/// while-statement
54/// do-statement
55/// for-statement
56///
57/// expression-statement:
58/// expression[opt] ';'
59///
60/// jump-statement:
61/// 'goto' identifier ';'
62/// 'continue' ';'
63/// 'break' ';'
64/// 'return' expression[opt] ';'
65/// [GNU] 'goto' '*' expression ';'
66///
67/// [OBC] objc-throw-statement: [TODO]
68/// [OBC] '@' 'throw' expression ';' [TODO]
69/// [OBC] '@' 'throw' ';' [TODO]
70///
71Parser::StmtResult Parser::ParseStatementOrDeclaration(bool OnlyStatement) {
72 const char *SemiError = 0;
73 Parser::StmtResult Res;
74
75 // Cases in this switch statement should fall through if the parser expects
76 // the token to end in a semicolon (in which case SemiError should be set),
77 // or they directly 'return;' if not.
78 switch (Tok.getKind()) {
79 case tok::identifier: // C99 6.8.1: labeled-statement
80 // identifier ':' statement
81 // declaration (if !OnlyStatement)
82 // expression[opt] ';'
83 return ParseIdentifierStatement(OnlyStatement);
84
85 default:
86 if (!OnlyStatement && isDeclarationSpecifier()) {
87 // TODO: warn/disable if declaration is in the middle of a block and !C99.
88 return Actions.ParseDeclStmt(ParseDeclaration(Declarator::BlockContext));
89 } else if (Tok.getKind() == tok::r_brace) {
90 Diag(Tok, diag::err_expected_statement);
91 return true;
92 } else {
93 // expression[opt] ';'
94 ExprResult Res = ParseExpression();
95 if (Res.isInvalid) {
96 // If the expression is invalid, skip ahead to the next semicolon. Not
97 // doing this opens us up to the possibility of infinite loops if
98 // ParseExpression does not consume any tokens.
99 SkipUntil(tok::semi);
100 return true;
101 }
102 // Otherwise, eat the semicolon.
103 ExpectAndConsume(tok::semi, diag::err_expected_semi_after_expr);
104 return Actions.ParseExprStmt(Res.Val);
105 }
106
107 case tok::kw_case: // C99 6.8.1: labeled-statement
108 return ParseCaseStatement();
109 case tok::kw_default: // C99 6.8.1: labeled-statement
110 return ParseDefaultStatement();
111
112 case tok::l_brace: // C99 6.8.2: compound-statement
113 return ParseCompoundStatement();
114 case tok::semi: // C99 6.8.3p3: expression[opt] ';'
115 return Actions.ParseNullStmt(ConsumeToken());
116
117 case tok::kw_if: // C99 6.8.4.1: if-statement
118 return ParseIfStatement();
119 case tok::kw_switch: // C99 6.8.4.2: switch-statement
120 return ParseSwitchStatement();
121
122 case tok::kw_while: // C99 6.8.5.1: while-statement
123 return ParseWhileStatement();
124 case tok::kw_do: // C99 6.8.5.2: do-statement
125 Res = ParseDoStatement();
126 SemiError = "do/while loop";
127 break;
128 case tok::kw_for: // C99 6.8.5.3: for-statement
129 return ParseForStatement();
130
131 case tok::kw_goto: // C99 6.8.6.1: goto-statement
132 Res = ParseGotoStatement();
133 SemiError = "goto statement";
134 break;
135 case tok::kw_continue: // C99 6.8.6.2: continue-statement
136 Res = ParseContinueStatement();
137 SemiError = "continue statement";
138 break;
139 case tok::kw_break: // C99 6.8.6.3: break-statement
140 Res = ParseBreakStatement();
141 SemiError = "break statement";
142 break;
143 case tok::kw_return: // C99 6.8.6.4: return-statement
144 Res = ParseReturnStatement();
145 SemiError = "return statement";
146 break;
147
148 case tok::kw_asm:
149 Res = ParseAsmStatement();
150 SemiError = "asm statement";
151 break;
152 }
153
154 // If we reached this code, the statement must end in a semicolon.
155 if (Tok.getKind() == tok::semi) {
156 ConsumeToken();
157 } else {
158 Diag(Tok, diag::err_expected_semi_after, SemiError);
159 SkipUntil(tok::semi);
160 }
161 return Res;
162}
163
164/// ParseIdentifierStatement - Because we don't have two-token lookahead, we
165/// have a bit of a quandry here. Reading the identifier is necessary to see if
166/// there is a ':' after it. If there is, this is a label, regardless of what
167/// else the identifier can mean. If not, this is either part of a declaration
168/// (if the identifier is a type-name) or part of an expression.
169///
170/// labeled-statement:
171/// identifier ':' statement
172/// [GNU] identifier ':' attributes[opt] statement
173/// declaration (if !OnlyStatement)
174/// expression[opt] ';'
175///
176Parser::StmtResult Parser::ParseIdentifierStatement(bool OnlyStatement) {
177 assert(Tok.getKind() == tok::identifier && Tok.getIdentifierInfo() &&
178 "Not an identifier!");
179
180 Token IdentTok = Tok; // Save the whole token.
181 ConsumeToken(); // eat the identifier.
182
183 // identifier ':' statement
184 if (Tok.getKind() == tok::colon) {
185 SourceLocation ColonLoc = ConsumeToken();
186
187 // Read label attributes, if present.
188 DeclTy *AttrList = 0;
189 if (Tok.getKind() == tok::kw___attribute)
190 // TODO: save these somewhere.
191 AttrList = ParseAttributes();
192
193 StmtResult SubStmt = ParseStatement();
194
195 // Broken substmt shouldn't prevent the label from being added to the AST.
196 if (SubStmt.isInvalid)
197 SubStmt = Actions.ParseNullStmt(ColonLoc);
198
199 return Actions.ParseLabelStmt(IdentTok.getLocation(),
200 IdentTok.getIdentifierInfo(),
201 ColonLoc, SubStmt.Val);
202 }
203
204 // Check to see if this is a declaration.
205 void *TypeRep;
206 if (!OnlyStatement &&
207 (TypeRep = Actions.isTypeName(*IdentTok.getIdentifierInfo(), CurScope))) {
208 // Handle this. Warn/disable if in middle of block and !C99.
209 DeclSpec DS;
210
211 // Add the typedef name to the start of the decl-specs.
212 const char *PrevSpec = 0;
213 int isInvalid = DS.SetTypeSpecType(DeclSpec::TST_typedef,
214 IdentTok.getLocation(), PrevSpec,
215 TypeRep);
216 assert(!isInvalid && "First declspec can't be invalid!");
217
218 // ParseDeclarationSpecifiers will continue from there.
219 ParseDeclarationSpecifiers(DS);
220
221 // C99 6.7.2.3p6: Handle "struct-or-union identifier;", "enum { X };"
222 // declaration-specifiers init-declarator-list[opt] ';'
223 if (Tok.getKind() == tok::semi) {
224 // TODO: emit error on 'int;' or 'const enum foo;'.
225 // if (!DS.isMissingDeclaratorOk()) Diag(...);
226
227 ConsumeToken();
228 // FIXME: Return this as a type decl.
229 return 0;
230 }
231
232 // Parse all the declarators.
233 Declarator DeclaratorInfo(DS, Declarator::BlockContext);
234 ParseDeclarator(DeclaratorInfo);
235
236 DeclTy *Decl = ParseInitDeclaratorListAfterFirstDeclarator(DeclaratorInfo);
237 return Decl ? Actions.ParseDeclStmt(Decl) : 0;
238 }
239
240 // Otherwise, this is an expression. Seed it with II and parse it.
241 ExprResult Res = ParseExpressionWithLeadingIdentifier(IdentTok);
242 if (Res.isInvalid) {
243 SkipUntil(tok::semi);
244 return true;
245 } else if (Tok.getKind() != tok::semi) {
246 Diag(Tok, diag::err_expected_semi_after, "expression");
247 SkipUntil(tok::semi);
248 return true;
249 } else {
250 ConsumeToken();
251 // Convert expr to a stmt.
252 return Actions.ParseExprStmt(Res.Val);
253 }
254}
255
256/// ParseCaseStatement
257/// labeled-statement:
258/// 'case' constant-expression ':' statement
259/// [GNU] 'case' constant-expression '...' constant-expression ':' statement
260///
261/// Note that this does not parse the 'statement' at the end.
262///
263Parser::StmtResult Parser::ParseCaseStatement() {
264 assert(Tok.getKind() == tok::kw_case && "Not a case stmt!");
265 SourceLocation CaseLoc = ConsumeToken(); // eat the 'case'.
266
267 ExprResult LHS = ParseConstantExpression();
268 if (LHS.isInvalid) {
269 SkipUntil(tok::colon);
270 return true;
271 }
272
273 // GNU case range extension.
274 SourceLocation DotDotDotLoc;
275 ExprTy *RHSVal = 0;
276 if (Tok.getKind() == tok::ellipsis) {
277 Diag(Tok, diag::ext_gnu_case_range);
278 DotDotDotLoc = ConsumeToken();
279
280 ExprResult RHS = ParseConstantExpression();
281 if (RHS.isInvalid) {
282 SkipUntil(tok::colon);
283 return true;
284 }
285 RHSVal = RHS.Val;
286 }
287
288 if (Tok.getKind() != tok::colon) {
289 Diag(Tok, diag::err_expected_colon_after, "'case'");
290 SkipUntil(tok::colon);
291 return true;
292 }
293
294 SourceLocation ColonLoc = ConsumeToken();
295
296 // Diagnose the common error "switch (X) { case 4: }", which is not valid.
297 if (Tok.getKind() == tok::r_brace) {
298 Diag(Tok, diag::err_label_end_of_compound_statement);
299 return true;
300 }
301
302 StmtResult SubStmt = ParseStatement();
303
304 // Broken substmt shouldn't prevent the case from being added to the AST.
305 if (SubStmt.isInvalid)
306 SubStmt = Actions.ParseNullStmt(ColonLoc);
307
308 // TODO: look up enclosing switch stmt.
309 return Actions.ParseCaseStmt(CaseLoc, LHS.Val, DotDotDotLoc, RHSVal, ColonLoc,
310 SubStmt.Val);
311}
312
313/// ParseDefaultStatement
314/// labeled-statement:
315/// 'default' ':' statement
316/// Note that this does not parse the 'statement' at the end.
317///
318Parser::StmtResult Parser::ParseDefaultStatement() {
319 assert(Tok.getKind() == tok::kw_default && "Not a default stmt!");
320 SourceLocation DefaultLoc = ConsumeToken(); // eat the 'default'.
321
322 if (Tok.getKind() != tok::colon) {
323 Diag(Tok, diag::err_expected_colon_after, "'default'");
324 SkipUntil(tok::colon);
325 return true;
326 }
327
328 SourceLocation ColonLoc = ConsumeToken();
329
330 // Diagnose the common error "switch (X) {... default: }", which is not valid.
331 if (Tok.getKind() == tok::r_brace) {
332 Diag(Tok, diag::err_label_end_of_compound_statement);
333 return true;
334 }
335
336 StmtResult SubStmt = ParseStatement();
337 if (SubStmt.isInvalid)
338 return true;
339
340 // TODO: look up enclosing switch stmt.
341 return Actions.ParseDefaultStmt(DefaultLoc, ColonLoc, SubStmt.Val, CurScope);
342}
343
344
345/// ParseCompoundStatement - Parse a "{}" block.
346///
347/// compound-statement: [C99 6.8.2]
348/// { block-item-list[opt] }
349/// [GNU] { label-declarations block-item-list } [TODO]
350///
351/// block-item-list:
352/// block-item
353/// block-item-list block-item
354///
355/// block-item:
356/// declaration
357/// [GNU] '__extension__' declaration [TODO]
358/// statement
359/// [OMP] openmp-directive [TODO]
360///
361/// [GNU] label-declarations:
362/// [GNU] label-declaration
363/// [GNU] label-declarations label-declaration
364///
365/// [GNU] label-declaration:
366/// [GNU] '__label__' identifier-list ';'
367///
368/// [OMP] openmp-directive: [TODO]
369/// [OMP] barrier-directive
370/// [OMP] flush-directive
371///
372Parser::StmtResult Parser::ParseCompoundStatement() {
373 assert(Tok.getKind() == tok::l_brace && "Not a compount stmt!");
374
375 // Enter a scope to hold everything within the compound stmt.
376 EnterScope(0);
377
378 // Parse the statements in the body.
379 StmtResult Body = ParseCompoundStatementBody();
380
381 ExitScope();
382 return Body;
383}
384
385
386/// ParseCompoundStatementBody - Parse a sequence of statements and invoke the
387/// ParseCompoundStmt action. This expects the '{' to be the current token, and
388/// consume the '}' at the end of the block. It does not manipulate the scope
389/// stack.
390Parser::StmtResult Parser::ParseCompoundStatementBody() {
391 SourceLocation LBraceLoc = ConsumeBrace(); // eat the '{'.
392
393 // TODO: "__label__ X, Y, Z;" is the GNU "Local Label" extension. These are
394 // only allowed at the start of a compound stmt.
395
396 llvm::SmallVector<StmtTy*, 32> Stmts;
397 while (Tok.getKind() != tok::r_brace && Tok.getKind() != tok::eof) {
398 StmtResult R = ParseStatementOrDeclaration(false);
399 if (!R.isInvalid && R.Val)
400 Stmts.push_back(R.Val);
401 }
402
403 // We broke out of the while loop because we found a '}' or EOF.
404 if (Tok.getKind() != tok::r_brace) {
405 Diag(Tok, diag::err_expected_rbrace);
406 return 0;
407 }
408
409 SourceLocation RBraceLoc = ConsumeBrace();
410 return Actions.ParseCompoundStmt(LBraceLoc, RBraceLoc,
411 &Stmts[0], Stmts.size());
412}
413
414/// ParseIfStatement
415/// if-statement: [C99 6.8.4.1]
416/// 'if' '(' expression ')' statement
417/// 'if' '(' expression ')' statement 'else' statement
418///
419Parser::StmtResult Parser::ParseIfStatement() {
420 assert(Tok.getKind() == tok::kw_if && "Not an if stmt!");
421 SourceLocation IfLoc = ConsumeToken(); // eat the 'if'.
422
423 if (Tok.getKind() != tok::l_paren) {
424 Diag(Tok, diag::err_expected_lparen_after, "if");
425 SkipUntil(tok::semi);
426 return true;
427 }
428
429 // Parse the condition.
430 ExprResult CondExp = ParseSimpleParenExpression();
431 if (CondExp.isInvalid) {
432 SkipUntil(tok::semi);
433 return true;
434 }
435
Chris Lattnerd190ac22007-08-22 05:16:28 +0000436 // In C99, the body of the if statement is a scope, even if there is no
437 // compound stmt.
438 if (getLang().C99) EnterScope(0);
439
Chris Lattner4b009652007-07-25 00:24:17 +0000440 // Read the if condition.
441 StmtResult CondStmt = ParseStatement();
442
443 // Broken substmt shouldn't prevent the label from being added to the AST.
444 if (CondStmt.isInvalid)
445 CondStmt = Actions.ParseNullStmt(Tok.getLocation());
446
Chris Lattnerd190ac22007-08-22 05:16:28 +0000447 // Pop the 'if' scope if needed.
448 if (getLang().C99) ExitScope();
Chris Lattner4b009652007-07-25 00:24:17 +0000449
450 // If it has an else, parse it.
451 SourceLocation ElseLoc;
452 StmtResult ElseStmt(false);
453 if (Tok.getKind() == tok::kw_else) {
454 ElseLoc = ConsumeToken();
Chris Lattnerd190ac22007-08-22 05:16:28 +0000455
456 // In C99, the body of the if statement is a scope, even if there is no
457 // compound stmt.
458 if (getLang().C99) EnterScope(0);
459
Chris Lattner4b009652007-07-25 00:24:17 +0000460 ElseStmt = ParseStatement();
Chris Lattnerd190ac22007-08-22 05:16:28 +0000461
462 // Pop the 'else' scope if needed.
463 if (getLang().C99) ExitScope();
Chris Lattner4b009652007-07-25 00:24:17 +0000464
465 if (ElseStmt.isInvalid)
466 ElseStmt = Actions.ParseNullStmt(ElseLoc);
467 }
468
469 return Actions.ParseIfStmt(IfLoc, CondExp.Val, CondStmt.Val,
470 ElseLoc, ElseStmt.Val);
471}
472
473/// ParseSwitchStatement
474/// switch-statement:
475/// 'switch' '(' expression ')' statement
476Parser::StmtResult Parser::ParseSwitchStatement() {
477 assert(Tok.getKind() == tok::kw_switch && "Not a switch stmt!");
478 SourceLocation SwitchLoc = ConsumeToken(); // eat the 'switch'.
479
480 if (Tok.getKind() != tok::l_paren) {
481 Diag(Tok, diag::err_expected_lparen_after, "switch");
482 SkipUntil(tok::semi);
483 return true;
484 }
485
486 // Start the switch scope.
487 EnterScope(Scope::BreakScope);
488
489 // Parse the condition.
490 ExprResult Cond = ParseSimpleParenExpression();
491
492 if (Cond.isInvalid) {
493 ExitScope();
494 return true;
495 }
496
497 StmtResult Switch = Actions.StartSwitchStmt(Cond.Val);
498
499 // Read the body statement.
500 StmtResult Body = ParseStatement();
501
502 if (Body.isInvalid) {
503 Body = Actions.ParseNullStmt(Tok.getLocation());
504 // FIXME: Remove the case statement list from the Switch statement.
505 }
506
507 ExitScope();
508
509 return Actions.FinishSwitchStmt(SwitchLoc, Switch.Val, Body.Val);
510}
511
512/// ParseWhileStatement
513/// while-statement: [C99 6.8.5.1]
514/// 'while' '(' expression ')' statement
515Parser::StmtResult Parser::ParseWhileStatement() {
516 assert(Tok.getKind() == tok::kw_while && "Not a while stmt!");
517 SourceLocation WhileLoc = Tok.getLocation();
518 ConsumeToken(); // eat the 'while'.
519
520 if (Tok.getKind() != tok::l_paren) {
521 Diag(Tok, diag::err_expected_lparen_after, "while");
522 SkipUntil(tok::semi);
523 return true;
524 }
525
526 // Start the loop scope.
527 EnterScope(Scope::BreakScope | Scope::ContinueScope);
528
529 // Parse the condition.
530 ExprResult Cond = ParseSimpleParenExpression();
531
532 // Read the body statement.
533 StmtResult Body = ParseStatement();
534
535 ExitScope();
536
537 if (Cond.isInvalid || Body.isInvalid) return true;
538
539 return Actions.ParseWhileStmt(WhileLoc, Cond.Val, Body.Val);
540}
541
542/// ParseDoStatement
543/// do-statement: [C99 6.8.5.2]
544/// 'do' statement 'while' '(' expression ')' ';'
545/// Note: this lets the caller parse the end ';'.
546Parser::StmtResult Parser::ParseDoStatement() {
547 assert(Tok.getKind() == tok::kw_do && "Not a do stmt!");
548 SourceLocation DoLoc = ConsumeToken(); // eat the 'do'.
549
550 // Start the loop scope.
551 EnterScope(Scope::BreakScope | Scope::ContinueScope);
552
553 // Read the body statement.
554 StmtResult Body = ParseStatement();
555
556 if (Tok.getKind() != tok::kw_while) {
557 ExitScope();
558 Diag(Tok, diag::err_expected_while);
559 Diag(DoLoc, diag::err_matching, "do");
560 SkipUntil(tok::semi);
561 return true;
562 }
563 SourceLocation WhileLoc = ConsumeToken();
564
565 if (Tok.getKind() != tok::l_paren) {
566 ExitScope();
567 Diag(Tok, diag::err_expected_lparen_after, "do/while");
568 SkipUntil(tok::semi);
569 return true;
570 }
571
572 // Parse the condition.
573 ExprResult Cond = ParseSimpleParenExpression();
574
575 ExitScope();
576
577 if (Cond.isInvalid || Body.isInvalid) return true;
578
579 return Actions.ParseDoStmt(DoLoc, Body.Val, WhileLoc, Cond.Val);
580}
581
582/// ParseForStatement
583/// for-statement: [C99 6.8.5.3]
584/// 'for' '(' expr[opt] ';' expr[opt] ';' expr[opt] ')' statement
585/// 'for' '(' declaration expr[opt] ';' expr[opt] ')' statement
586Parser::StmtResult Parser::ParseForStatement() {
587 assert(Tok.getKind() == tok::kw_for && "Not a for stmt!");
588 SourceLocation ForLoc = ConsumeToken(); // eat the 'for'.
589
590 if (Tok.getKind() != tok::l_paren) {
591 Diag(Tok, diag::err_expected_lparen_after, "for");
592 SkipUntil(tok::semi);
593 return true;
594 }
595
596 EnterScope(Scope::BreakScope | Scope::ContinueScope);
597
598 SourceLocation LParenLoc = ConsumeParen();
599 ExprResult Value;
600
601 StmtTy *FirstPart = 0;
602 ExprTy *SecondPart = 0;
603 StmtTy *ThirdPart = 0;
604
605 // Parse the first part of the for specifier.
606 if (Tok.getKind() == tok::semi) { // for (;
607 // no first part, eat the ';'.
608 ConsumeToken();
609 } else if (isDeclarationSpecifier()) { // for (int X = 4;
610 // Parse declaration, which eats the ';'.
611 if (!getLang().C99) // Use of C99-style for loops in C90 mode?
612 Diag(Tok, diag::ext_c99_variable_decl_in_for_loop);
613 DeclTy *aBlockVarDecl = ParseDeclaration(Declarator::ForContext);
614 StmtResult stmtResult = Actions.ParseDeclStmt(aBlockVarDecl);
615 FirstPart = stmtResult.isInvalid ? 0 : stmtResult.Val;
616 } else {
617 Value = ParseExpression();
618
619 // Turn the expression into a stmt.
620 if (!Value.isInvalid) {
621 StmtResult R = Actions.ParseExprStmt(Value.Val);
622 if (!R.isInvalid)
623 FirstPart = R.Val;
624 }
625
626 if (Tok.getKind() == tok::semi) {
627 ConsumeToken();
628 } else {
629 if (!Value.isInvalid) Diag(Tok, diag::err_expected_semi_for);
630 SkipUntil(tok::semi);
631 }
632 }
633
634 // Parse the second part of the for specifier.
635 if (Tok.getKind() == tok::semi) { // for (...;;
636 // no second part.
637 Value = ExprResult();
638 } else {
639 Value = ParseExpression();
640 if (!Value.isInvalid)
641 SecondPart = Value.Val;
642 }
643
644 if (Tok.getKind() == tok::semi) {
645 ConsumeToken();
646 } else {
647 if (!Value.isInvalid) Diag(Tok, diag::err_expected_semi_for);
648 SkipUntil(tok::semi);
649 }
650
651 // Parse the third part of the for specifier.
652 if (Tok.getKind() == tok::r_paren) { // for (...;...;)
653 // no third part.
654 Value = ExprResult();
655 } else {
656 Value = ParseExpression();
657 if (!Value.isInvalid) {
658 // Turn the expression into a stmt.
659 StmtResult R = Actions.ParseExprStmt(Value.Val);
660 if (!R.isInvalid)
661 ThirdPart = R.Val;
662 }
663 }
664
665 // Match the ')'.
666 SourceLocation RParenLoc = MatchRHSPunctuation(tok::r_paren, LParenLoc);
667
668 // Read the body statement.
669 StmtResult Body = ParseStatement();
670
671 // Leave the for-scope.
672 ExitScope();
673
674 if (Body.isInvalid)
675 return Body;
676
677 return Actions.ParseForStmt(ForLoc, LParenLoc, FirstPart, SecondPart,
678 ThirdPart, RParenLoc, Body.Val);
679}
680
681/// ParseGotoStatement
682/// jump-statement:
683/// 'goto' identifier ';'
684/// [GNU] 'goto' '*' expression ';'
685///
686/// Note: this lets the caller parse the end ';'.
687///
688Parser::StmtResult Parser::ParseGotoStatement() {
689 assert(Tok.getKind() == tok::kw_goto && "Not a goto stmt!");
690 SourceLocation GotoLoc = ConsumeToken(); // eat the 'goto'.
691
692 StmtResult Res;
693 if (Tok.getKind() == tok::identifier) {
694 Res = Actions.ParseGotoStmt(GotoLoc, Tok.getLocation(),
695 Tok.getIdentifierInfo());
696 ConsumeToken();
697 } else if (Tok.getKind() == tok::star && !getLang().NoExtensions) {
698 // GNU indirect goto extension.
699 Diag(Tok, diag::ext_gnu_indirect_goto);
700 SourceLocation StarLoc = ConsumeToken();
701 ExprResult R = ParseExpression();
702 if (R.isInvalid) { // Skip to the semicolon, but don't consume it.
703 SkipUntil(tok::semi, false, true);
704 return true;
705 }
706 Res = Actions.ParseIndirectGotoStmt(GotoLoc, StarLoc, R.Val);
707 } else {
708 Diag(Tok, diag::err_expected_ident);
709 return true;
710 }
711
712 return Res;
713}
714
715/// ParseContinueStatement
716/// jump-statement:
717/// 'continue' ';'
718///
719/// Note: this lets the caller parse the end ';'.
720///
721Parser::StmtResult Parser::ParseContinueStatement() {
722 SourceLocation ContinueLoc = ConsumeToken(); // eat the 'continue'.
723 return Actions.ParseContinueStmt(ContinueLoc, CurScope);
724}
725
726/// ParseBreakStatement
727/// jump-statement:
728/// 'break' ';'
729///
730/// Note: this lets the caller parse the end ';'.
731///
732Parser::StmtResult Parser::ParseBreakStatement() {
733 SourceLocation BreakLoc = ConsumeToken(); // eat the 'break'.
734 return Actions.ParseBreakStmt(BreakLoc, CurScope);
735}
736
737/// ParseReturnStatement
738/// jump-statement:
739/// 'return' expression[opt] ';'
740Parser::StmtResult Parser::ParseReturnStatement() {
741 assert(Tok.getKind() == tok::kw_return && "Not a return stmt!");
742 SourceLocation ReturnLoc = ConsumeToken(); // eat the 'return'.
743
744 ExprResult R(0);
745 if (Tok.getKind() != tok::semi) {
746 R = ParseExpression();
747 if (R.isInvalid) { // Skip to the semicolon, but don't consume it.
748 SkipUntil(tok::semi, false, true);
749 return true;
750 }
751 }
752 return Actions.ParseReturnStmt(ReturnLoc, R.Val);
753}
754
755/// ParseAsmStatement - Parse a GNU extended asm statement.
756/// [GNU] asm-statement:
757/// 'asm' type-qualifier[opt] '(' asm-argument ')' ';'
758///
759/// [GNU] asm-argument:
760/// asm-string-literal
761/// asm-string-literal ':' asm-operands[opt]
762/// asm-string-literal ':' asm-operands[opt] ':' asm-operands[opt]
763/// asm-string-literal ':' asm-operands[opt] ':' asm-operands[opt]
764/// ':' asm-clobbers
765///
766/// [GNU] asm-clobbers:
767/// asm-string-literal
768/// asm-clobbers ',' asm-string-literal
769///
770Parser::StmtResult Parser::ParseAsmStatement() {
771 assert(Tok.getKind() == tok::kw_asm && "Not an asm stmt");
772 ConsumeToken();
773
774 DeclSpec DS;
775 SourceLocation Loc = Tok.getLocation();
776 ParseTypeQualifierListOpt(DS);
777
778 // GNU asms accept, but warn, about type-qualifiers other than volatile.
779 if (DS.getTypeQualifiers() & DeclSpec::TQ_const)
780 Diag(Loc, diag::w_asm_qualifier_ignored, "const");
781 if (DS.getTypeQualifiers() & DeclSpec::TQ_restrict)
782 Diag(Loc, diag::w_asm_qualifier_ignored, "restrict");
783
784 // Remember if this was a volatile asm.
785 //bool isVolatile = DS.TypeQualifiers & DeclSpec::TQ_volatile;
786
787 if (Tok.getKind() != tok::l_paren) {
788 Diag(Tok, diag::err_expected_lparen_after, "asm");
789 SkipUntil(tok::r_paren);
790 return true;
791 }
792 Loc = ConsumeParen();
793
794 ParseAsmStringLiteral();
795
796 // Parse Outputs, if present.
797 ParseAsmOperandsOpt();
798
799 // Parse Inputs, if present.
800 ParseAsmOperandsOpt();
801
802 // Parse the clobbers, if present.
803 if (Tok.getKind() == tok::colon) {
804 ConsumeToken();
805
806 if (isTokenStringLiteral()) {
807 // Parse the asm-string list for clobbers.
808 while (1) {
809 ParseAsmStringLiteral();
810
811 if (Tok.getKind() != tok::comma) break;
812 ConsumeToken();
813 }
814 }
815 }
816
817 MatchRHSPunctuation(tok::r_paren, Loc);
818
819 // FIXME: Implement action for asm parsing.
820 return false;
821}
822
823/// ParseAsmOperands - Parse the asm-operands production as used by
824/// asm-statement. We also parse a leading ':' token. If the leading colon is
825/// not present, we do not parse anything.
826///
827/// [GNU] asm-operands:
828/// asm-operand
829/// asm-operands ',' asm-operand
830///
831/// [GNU] asm-operand:
832/// asm-string-literal '(' expression ')'
833/// '[' identifier ']' asm-string-literal '(' expression ')'
834///
835void Parser::ParseAsmOperandsOpt() {
836 // Only do anything if this operand is present.
837 if (Tok.getKind() != tok::colon) return;
838 ConsumeToken();
839
840 // 'asm-operands' isn't present?
841 if (!isTokenStringLiteral() && Tok.getKind() != tok::l_square)
842 return;
843
844 while (1) {
845 // Read the [id] if present.
846 if (Tok.getKind() == tok::l_square) {
847 SourceLocation Loc = ConsumeBracket();
848
849 if (Tok.getKind() != tok::identifier) {
850 Diag(Tok, diag::err_expected_ident);
851 SkipUntil(tok::r_paren);
852 return;
853 }
854 MatchRHSPunctuation(tok::r_square, Loc);
855 }
856
857 ParseAsmStringLiteral();
858
859 if (Tok.getKind() != tok::l_paren) {
860 Diag(Tok, diag::err_expected_lparen_after, "asm operand");
861 SkipUntil(tok::r_paren);
862 return;
863 }
864
865 // Read the parenthesized expression.
866 ExprResult Res = ParseSimpleParenExpression();
867 if (Res.isInvalid) {
868 SkipUntil(tok::r_paren);
869 return;
870 }
871
872 // Eat the comma and continue parsing if it exists.
873 if (Tok.getKind() != tok::comma) return;
874 ConsumeToken();
875 }
876}