1 //===--- Parser.cpp - C Language Family Parser ----------------------------===// 2 // 3 // The LLVM Compiler Infrastructure 4 // 5 // This file is distributed under the University of Illinois Open Source 6 // License. See LICENSE.TXT for details. 7 // 8 //===----------------------------------------------------------------------===// 9 // 10 // This file implements the Parser interfaces. 11 // 12 //===----------------------------------------------------------------------===// 13 14 #include "clang/Parse/Parser.h" 15 #include "ParsePragma.h" 16 #include "RAIIObjectsForParser.h" 17 #include "clang/AST/ASTConsumer.h" 18 #include "clang/AST/ASTContext.h" 19 #include "clang/AST/DeclTemplate.h" 20 #include "clang/Parse/ParseDiagnostic.h" 21 #include "clang/Sema/DeclSpec.h" 22 #include "clang/Sema/ParsedTemplate.h" 23 #include "clang/Sema/Scope.h" 24 #include "llvm/Support/raw_ostream.h" 25 using namespace clang; 26 27 28 namespace { 29 /// \brief A comment handler that passes comments found by the preprocessor 30 /// to the parser action. 31 class ActionCommentHandler : public CommentHandler { 32 Sema &S; 33 34 public: 35 explicit ActionCommentHandler(Sema &S) : S(S) { } 36 37 virtual bool HandleComment(Preprocessor &PP, SourceRange Comment) { 38 S.ActOnComment(Comment); 39 return false; 40 } 41 }; 42 } // end anonymous namespace 43 44 IdentifierInfo *Parser::getSEHExceptKeyword() { 45 // __except is accepted as a (contextual) keyword 46 if (!Ident__except && (getLangOpts().MicrosoftExt || getLangOpts().Borland)) 47 Ident__except = PP.getIdentifierInfo("__except"); 48 49 return Ident__except; 50 } 51 52 Parser::Parser(Preprocessor &pp, Sema &actions, bool skipFunctionBodies) 53 : PP(pp), Actions(actions), Diags(PP.getDiagnostics()), 54 GreaterThanIsOperator(true), ColonIsSacred(false), 55 InMessageExpression(false), TemplateParameterDepth(0), 56 ParsingInObjCContainer(false) { 57 SkipFunctionBodies = pp.isCodeCompletionEnabled() || skipFunctionBodies; 58 Tok.startToken(); 59 Tok.setKind(tok::eof); 60 Actions.CurScope = 0; 61 NumCachedScopes = 0; 62 ParenCount = BracketCount = BraceCount = 0; 63 CurParsedObjCImpl = 0; 64 65 // Add #pragma handlers. These are removed and destroyed in the 66 // destructor. 67 AlignHandler.reset(new PragmaAlignHandler()); 68 PP.AddPragmaHandler(AlignHandler.get()); 69 70 GCCVisibilityHandler.reset(new PragmaGCCVisibilityHandler()); 71 PP.AddPragmaHandler("GCC", GCCVisibilityHandler.get()); 72 73 OptionsHandler.reset(new PragmaOptionsHandler()); 74 PP.AddPragmaHandler(OptionsHandler.get()); 75 76 PackHandler.reset(new PragmaPackHandler()); 77 PP.AddPragmaHandler(PackHandler.get()); 78 79 MSStructHandler.reset(new PragmaMSStructHandler()); 80 PP.AddPragmaHandler(MSStructHandler.get()); 81 82 UnusedHandler.reset(new PragmaUnusedHandler()); 83 PP.AddPragmaHandler(UnusedHandler.get()); 84 85 WeakHandler.reset(new PragmaWeakHandler()); 86 PP.AddPragmaHandler(WeakHandler.get()); 87 88 RedefineExtnameHandler.reset(new PragmaRedefineExtnameHandler()); 89 PP.AddPragmaHandler(RedefineExtnameHandler.get()); 90 91 FPContractHandler.reset(new PragmaFPContractHandler()); 92 PP.AddPragmaHandler("STDC", FPContractHandler.get()); 93 94 if (getLangOpts().OpenCL) { 95 OpenCLExtensionHandler.reset(new PragmaOpenCLExtensionHandler()); 96 PP.AddPragmaHandler("OPENCL", OpenCLExtensionHandler.get()); 97 98 PP.AddPragmaHandler("OPENCL", FPContractHandler.get()); 99 } 100 if (getLangOpts().OpenMP) 101 OpenMPHandler.reset(new PragmaOpenMPHandler()); 102 else 103 OpenMPHandler.reset(new PragmaNoOpenMPHandler()); 104 PP.AddPragmaHandler(OpenMPHandler.get()); 105 106 if (getLangOpts().MicrosoftExt) { 107 MSCommentHandler.reset(new PragmaCommentHandler(actions)); 108 PP.AddPragmaHandler(MSCommentHandler.get()); 109 MSDetectMismatchHandler.reset(new PragmaDetectMismatchHandler(actions)); 110 PP.AddPragmaHandler(MSDetectMismatchHandler.get()); 111 MSPointersToMembers.reset(new PragmaMSPointersToMembers()); 112 PP.AddPragmaHandler(MSPointersToMembers.get()); 113 MSVtorDisp.reset(new PragmaMSVtorDisp()); 114 PP.AddPragmaHandler(MSVtorDisp.get()); 115 } 116 117 CommentSemaHandler.reset(new ActionCommentHandler(actions)); 118 PP.addCommentHandler(CommentSemaHandler.get()); 119 120 PP.setCodeCompletionHandler(*this); 121 } 122 123 DiagnosticBuilder Parser::Diag(SourceLocation Loc, unsigned DiagID) { 124 return Diags.Report(Loc, DiagID); 125 } 126 127 DiagnosticBuilder Parser::Diag(const Token &Tok, unsigned DiagID) { 128 return Diag(Tok.getLocation(), DiagID); 129 } 130 131 /// \brief Emits a diagnostic suggesting parentheses surrounding a 132 /// given range. 133 /// 134 /// \param Loc The location where we'll emit the diagnostic. 135 /// \param DK The kind of diagnostic to emit. 136 /// \param ParenRange Source range enclosing code that should be parenthesized. 137 void Parser::SuggestParentheses(SourceLocation Loc, unsigned DK, 138 SourceRange ParenRange) { 139 SourceLocation EndLoc = PP.getLocForEndOfToken(ParenRange.getEnd()); 140 if (!ParenRange.getEnd().isFileID() || EndLoc.isInvalid()) { 141 // We can't display the parentheses, so just dig the 142 // warning/error and return. 143 Diag(Loc, DK); 144 return; 145 } 146 147 Diag(Loc, DK) 148 << FixItHint::CreateInsertion(ParenRange.getBegin(), "(") 149 << FixItHint::CreateInsertion(EndLoc, ")"); 150 } 151 152 static bool IsCommonTypo(tok::TokenKind ExpectedTok, const Token &Tok) { 153 switch (ExpectedTok) { 154 case tok::semi: 155 return Tok.is(tok::colon) || Tok.is(tok::comma); // : or , for ; 156 default: return false; 157 } 158 } 159 160 bool Parser::ExpectAndConsume(tok::TokenKind ExpectedTok, unsigned DiagID, 161 const char *Msg) { 162 if (Tok.is(ExpectedTok) || Tok.is(tok::code_completion)) { 163 ConsumeAnyToken(); 164 return false; 165 } 166 167 // Detect common single-character typos and resume. 168 if (IsCommonTypo(ExpectedTok, Tok)) { 169 SourceLocation Loc = Tok.getLocation(); 170 DiagnosticBuilder DB = Diag(Loc, DiagID); 171 DB << FixItHint::CreateReplacement(SourceRange(Loc), 172 getPunctuatorSpelling(ExpectedTok)); 173 if (DiagID == diag::err_expected) 174 DB << ExpectedTok; 175 else if (DiagID == diag::err_expected_after) 176 DB << Msg << ExpectedTok; 177 else 178 DB << Msg; 179 ConsumeAnyToken(); 180 181 // Pretend there wasn't a problem. 182 return false; 183 } 184 185 SourceLocation EndLoc = PP.getLocForEndOfToken(PrevTokLocation); 186 const char *Spelling = 0; 187 if (EndLoc.isValid()) 188 Spelling = tok::getPunctuatorSpelling(ExpectedTok); 189 190 DiagnosticBuilder DB = 191 Spelling 192 ? Diag(EndLoc, DiagID) << FixItHint::CreateInsertion(EndLoc, Spelling) 193 : Diag(Tok, DiagID); 194 if (DiagID == diag::err_expected) 195 DB << ExpectedTok; 196 else if (DiagID == diag::err_expected_after) 197 DB << Msg << ExpectedTok; 198 else 199 DB << Msg; 200 201 return true; 202 } 203 204 bool Parser::ExpectAndConsumeSemi(unsigned DiagID) { 205 if (TryConsumeToken(tok::semi)) 206 return false; 207 208 if (Tok.is(tok::code_completion)) { 209 handleUnexpectedCodeCompletionToken(); 210 return false; 211 } 212 213 if ((Tok.is(tok::r_paren) || Tok.is(tok::r_square)) && 214 NextToken().is(tok::semi)) { 215 Diag(Tok, diag::err_extraneous_token_before_semi) 216 << PP.getSpelling(Tok) 217 << FixItHint::CreateRemoval(Tok.getLocation()); 218 ConsumeAnyToken(); // The ')' or ']'. 219 ConsumeToken(); // The ';'. 220 return false; 221 } 222 223 return ExpectAndConsume(tok::semi, DiagID); 224 } 225 226 void Parser::ConsumeExtraSemi(ExtraSemiKind Kind, unsigned TST) { 227 if (!Tok.is(tok::semi)) return; 228 229 bool HadMultipleSemis = false; 230 SourceLocation StartLoc = Tok.getLocation(); 231 SourceLocation EndLoc = Tok.getLocation(); 232 ConsumeToken(); 233 234 while ((Tok.is(tok::semi) && !Tok.isAtStartOfLine())) { 235 HadMultipleSemis = true; 236 EndLoc = Tok.getLocation(); 237 ConsumeToken(); 238 } 239 240 // C++11 allows extra semicolons at namespace scope, but not in any of the 241 // other contexts. 242 if (Kind == OutsideFunction && getLangOpts().CPlusPlus) { 243 if (getLangOpts().CPlusPlus11) 244 Diag(StartLoc, diag::warn_cxx98_compat_top_level_semi) 245 << FixItHint::CreateRemoval(SourceRange(StartLoc, EndLoc)); 246 else 247 Diag(StartLoc, diag::ext_extra_semi_cxx11) 248 << FixItHint::CreateRemoval(SourceRange(StartLoc, EndLoc)); 249 return; 250 } 251 252 if (Kind != AfterMemberFunctionDefinition || HadMultipleSemis) 253 Diag(StartLoc, diag::ext_extra_semi) 254 << Kind << DeclSpec::getSpecifierName((DeclSpec::TST)TST, 255 Actions.getASTContext().getPrintingPolicy()) 256 << FixItHint::CreateRemoval(SourceRange(StartLoc, EndLoc)); 257 else 258 // A single semicolon is valid after a member function definition. 259 Diag(StartLoc, diag::warn_extra_semi_after_mem_fn_def) 260 << FixItHint::CreateRemoval(SourceRange(StartLoc, EndLoc)); 261 } 262 263 //===----------------------------------------------------------------------===// 264 // Error recovery. 265 //===----------------------------------------------------------------------===// 266 267 static bool HasFlagsSet(Parser::SkipUntilFlags L, Parser::SkipUntilFlags R) { 268 return (static_cast<unsigned>(L) & static_cast<unsigned>(R)) != 0; 269 } 270 271 /// SkipUntil - Read tokens until we get to the specified token, then consume 272 /// it (unless no flag StopBeforeMatch). Because we cannot guarantee that the 273 /// token will ever occur, this skips to the next token, or to some likely 274 /// good stopping point. If StopAtSemi is true, skipping will stop at a ';' 275 /// character. 276 /// 277 /// If SkipUntil finds the specified token, it returns true, otherwise it 278 /// returns false. 279 bool Parser::SkipUntil(ArrayRef<tok::TokenKind> Toks, SkipUntilFlags Flags) { 280 // We always want this function to skip at least one token if the first token 281 // isn't T and if not at EOF. 282 bool isFirstTokenSkipped = true; 283 while (1) { 284 // If we found one of the tokens, stop and return true. 285 for (unsigned i = 0, NumToks = Toks.size(); i != NumToks; ++i) { 286 if (Tok.is(Toks[i])) { 287 if (HasFlagsSet(Flags, StopBeforeMatch)) { 288 // Noop, don't consume the token. 289 } else { 290 ConsumeAnyToken(); 291 } 292 return true; 293 } 294 } 295 296 // Important special case: The caller has given up and just wants us to 297 // skip the rest of the file. Do this without recursing, since we can 298 // get here precisely because the caller detected too much recursion. 299 if (Toks.size() == 1 && Toks[0] == tok::eof && 300 !HasFlagsSet(Flags, StopAtSemi) && 301 !HasFlagsSet(Flags, StopAtCodeCompletion)) { 302 while (Tok.isNot(tok::eof)) 303 ConsumeAnyToken(); 304 return true; 305 } 306 307 switch (Tok.getKind()) { 308 case tok::eof: 309 // Ran out of tokens. 310 return false; 311 312 case tok::annot_pragma_openmp_end: 313 // Stop before an OpenMP pragma boundary. 314 case tok::annot_module_begin: 315 case tok::annot_module_end: 316 case tok::annot_module_include: 317 // Stop before we change submodules. They generally indicate a "good" 318 // place to pick up parsing again (except in the special case where 319 // we're trying to skip to EOF). 320 return false; 321 322 case tok::code_completion: 323 if (!HasFlagsSet(Flags, StopAtCodeCompletion)) 324 handleUnexpectedCodeCompletionToken(); 325 return false; 326 327 case tok::l_paren: 328 // Recursively skip properly-nested parens. 329 ConsumeParen(); 330 if (HasFlagsSet(Flags, StopAtCodeCompletion)) 331 SkipUntil(tok::r_paren, StopAtCodeCompletion); 332 else 333 SkipUntil(tok::r_paren); 334 break; 335 case tok::l_square: 336 // Recursively skip properly-nested square brackets. 337 ConsumeBracket(); 338 if (HasFlagsSet(Flags, StopAtCodeCompletion)) 339 SkipUntil(tok::r_square, StopAtCodeCompletion); 340 else 341 SkipUntil(tok::r_square); 342 break; 343 case tok::l_brace: 344 // Recursively skip properly-nested braces. 345 ConsumeBrace(); 346 if (HasFlagsSet(Flags, StopAtCodeCompletion)) 347 SkipUntil(tok::r_brace, StopAtCodeCompletion); 348 else 349 SkipUntil(tok::r_brace); 350 break; 351 352 // Okay, we found a ']' or '}' or ')', which we think should be balanced. 353 // Since the user wasn't looking for this token (if they were, it would 354 // already be handled), this isn't balanced. If there is a LHS token at a 355 // higher level, we will assume that this matches the unbalanced token 356 // and return it. Otherwise, this is a spurious RHS token, which we skip. 357 case tok::r_paren: 358 if (ParenCount && !isFirstTokenSkipped) 359 return false; // Matches something. 360 ConsumeParen(); 361 break; 362 case tok::r_square: 363 if (BracketCount && !isFirstTokenSkipped) 364 return false; // Matches something. 365 ConsumeBracket(); 366 break; 367 case tok::r_brace: 368 if (BraceCount && !isFirstTokenSkipped) 369 return false; // Matches something. 370 ConsumeBrace(); 371 break; 372 373 case tok::string_literal: 374 case tok::wide_string_literal: 375 case tok::utf8_string_literal: 376 case tok::utf16_string_literal: 377 case tok::utf32_string_literal: 378 ConsumeStringToken(); 379 break; 380 381 case tok::semi: 382 if (HasFlagsSet(Flags, StopAtSemi)) 383 return false; 384 // FALL THROUGH. 385 default: 386 // Skip this token. 387 ConsumeToken(); 388 break; 389 } 390 isFirstTokenSkipped = false; 391 } 392 } 393 394 //===----------------------------------------------------------------------===// 395 // Scope manipulation 396 //===----------------------------------------------------------------------===// 397 398 /// EnterScope - Start a new scope. 399 void Parser::EnterScope(unsigned ScopeFlags) { 400 if (NumCachedScopes) { 401 Scope *N = ScopeCache[--NumCachedScopes]; 402 N->Init(getCurScope(), ScopeFlags); 403 Actions.CurScope = N; 404 } else { 405 Actions.CurScope = new Scope(getCurScope(), ScopeFlags, Diags); 406 } 407 } 408 409 /// ExitScope - Pop a scope off the scope stack. 410 void Parser::ExitScope() { 411 assert(getCurScope() && "Scope imbalance!"); 412 413 // Inform the actions module that this scope is going away if there are any 414 // decls in it. 415 if (!getCurScope()->decl_empty()) 416 Actions.ActOnPopScope(Tok.getLocation(), getCurScope()); 417 418 Scope *OldScope = getCurScope(); 419 Actions.CurScope = OldScope->getParent(); 420 421 if (NumCachedScopes == ScopeCacheSize) 422 delete OldScope; 423 else 424 ScopeCache[NumCachedScopes++] = OldScope; 425 } 426 427 /// Set the flags for the current scope to ScopeFlags. If ManageFlags is false, 428 /// this object does nothing. 429 Parser::ParseScopeFlags::ParseScopeFlags(Parser *Self, unsigned ScopeFlags, 430 bool ManageFlags) 431 : CurScope(ManageFlags ? Self->getCurScope() : 0) { 432 if (CurScope) { 433 OldFlags = CurScope->getFlags(); 434 CurScope->setFlags(ScopeFlags); 435 } 436 } 437 438 /// Restore the flags for the current scope to what they were before this 439 /// object overrode them. 440 Parser::ParseScopeFlags::~ParseScopeFlags() { 441 if (CurScope) 442 CurScope->setFlags(OldFlags); 443 } 444 445 446 //===----------------------------------------------------------------------===// 447 // C99 6.9: External Definitions. 448 //===----------------------------------------------------------------------===// 449 450 Parser::~Parser() { 451 // If we still have scopes active, delete the scope tree. 452 delete getCurScope(); 453 Actions.CurScope = 0; 454 455 // Free the scope cache. 456 for (unsigned i = 0, e = NumCachedScopes; i != e; ++i) 457 delete ScopeCache[i]; 458 459 // Remove the pragma handlers we installed. 460 PP.RemovePragmaHandler(AlignHandler.get()); 461 AlignHandler.reset(); 462 PP.RemovePragmaHandler("GCC", GCCVisibilityHandler.get()); 463 GCCVisibilityHandler.reset(); 464 PP.RemovePragmaHandler(OptionsHandler.get()); 465 OptionsHandler.reset(); 466 PP.RemovePragmaHandler(PackHandler.get()); 467 PackHandler.reset(); 468 PP.RemovePragmaHandler(MSStructHandler.get()); 469 MSStructHandler.reset(); 470 PP.RemovePragmaHandler(UnusedHandler.get()); 471 UnusedHandler.reset(); 472 PP.RemovePragmaHandler(WeakHandler.get()); 473 WeakHandler.reset(); 474 PP.RemovePragmaHandler(RedefineExtnameHandler.get()); 475 RedefineExtnameHandler.reset(); 476 477 if (getLangOpts().OpenCL) { 478 PP.RemovePragmaHandler("OPENCL", OpenCLExtensionHandler.get()); 479 OpenCLExtensionHandler.reset(); 480 PP.RemovePragmaHandler("OPENCL", FPContractHandler.get()); 481 } 482 PP.RemovePragmaHandler(OpenMPHandler.get()); 483 OpenMPHandler.reset(); 484 485 if (getLangOpts().MicrosoftExt) { 486 PP.RemovePragmaHandler(MSCommentHandler.get()); 487 MSCommentHandler.reset(); 488 PP.RemovePragmaHandler(MSDetectMismatchHandler.get()); 489 MSDetectMismatchHandler.reset(); 490 PP.RemovePragmaHandler(MSPointersToMembers.get()); 491 MSPointersToMembers.reset(); 492 PP.RemovePragmaHandler(MSVtorDisp.get()); 493 MSVtorDisp.reset(); 494 } 495 496 PP.RemovePragmaHandler("STDC", FPContractHandler.get()); 497 FPContractHandler.reset(); 498 499 PP.removeCommentHandler(CommentSemaHandler.get()); 500 501 PP.clearCodeCompletionHandler(); 502 503 assert(TemplateIds.empty() && "Still alive TemplateIdAnnotations around?"); 504 } 505 506 /// Initialize - Warm up the parser. 507 /// 508 void Parser::Initialize() { 509 // Create the translation unit scope. Install it as the current scope. 510 assert(getCurScope() == 0 && "A scope is already active?"); 511 EnterScope(Scope::DeclScope); 512 Actions.ActOnTranslationUnitScope(getCurScope()); 513 514 // Initialization for Objective-C context sensitive keywords recognition. 515 // Referenced in Parser::ParseObjCTypeQualifierList. 516 if (getLangOpts().ObjC1) { 517 ObjCTypeQuals[objc_in] = &PP.getIdentifierTable().get("in"); 518 ObjCTypeQuals[objc_out] = &PP.getIdentifierTable().get("out"); 519 ObjCTypeQuals[objc_inout] = &PP.getIdentifierTable().get("inout"); 520 ObjCTypeQuals[objc_oneway] = &PP.getIdentifierTable().get("oneway"); 521 ObjCTypeQuals[objc_bycopy] = &PP.getIdentifierTable().get("bycopy"); 522 ObjCTypeQuals[objc_byref] = &PP.getIdentifierTable().get("byref"); 523 } 524 525 Ident_instancetype = 0; 526 Ident_final = 0; 527 Ident_sealed = 0; 528 Ident_override = 0; 529 530 Ident_super = &PP.getIdentifierTable().get("super"); 531 532 if (getLangOpts().AltiVec) { 533 Ident_vector = &PP.getIdentifierTable().get("vector"); 534 Ident_pixel = &PP.getIdentifierTable().get("pixel"); 535 Ident_bool = &PP.getIdentifierTable().get("bool"); 536 } 537 538 Ident_introduced = 0; 539 Ident_deprecated = 0; 540 Ident_obsoleted = 0; 541 Ident_unavailable = 0; 542 543 Ident__except = 0; 544 545 Ident__exception_code = Ident__exception_info = Ident__abnormal_termination = 0; 546 Ident___exception_code = Ident___exception_info = Ident___abnormal_termination = 0; 547 Ident_GetExceptionCode = Ident_GetExceptionInfo = Ident_AbnormalTermination = 0; 548 549 if(getLangOpts().Borland) { 550 Ident__exception_info = PP.getIdentifierInfo("_exception_info"); 551 Ident___exception_info = PP.getIdentifierInfo("__exception_info"); 552 Ident_GetExceptionInfo = PP.getIdentifierInfo("GetExceptionInformation"); 553 Ident__exception_code = PP.getIdentifierInfo("_exception_code"); 554 Ident___exception_code = PP.getIdentifierInfo("__exception_code"); 555 Ident_GetExceptionCode = PP.getIdentifierInfo("GetExceptionCode"); 556 Ident__abnormal_termination = PP.getIdentifierInfo("_abnormal_termination"); 557 Ident___abnormal_termination = PP.getIdentifierInfo("__abnormal_termination"); 558 Ident_AbnormalTermination = PP.getIdentifierInfo("AbnormalTermination"); 559 560 PP.SetPoisonReason(Ident__exception_code,diag::err_seh___except_block); 561 PP.SetPoisonReason(Ident___exception_code,diag::err_seh___except_block); 562 PP.SetPoisonReason(Ident_GetExceptionCode,diag::err_seh___except_block); 563 PP.SetPoisonReason(Ident__exception_info,diag::err_seh___except_filter); 564 PP.SetPoisonReason(Ident___exception_info,diag::err_seh___except_filter); 565 PP.SetPoisonReason(Ident_GetExceptionInfo,diag::err_seh___except_filter); 566 PP.SetPoisonReason(Ident__abnormal_termination,diag::err_seh___finally_block); 567 PP.SetPoisonReason(Ident___abnormal_termination,diag::err_seh___finally_block); 568 PP.SetPoisonReason(Ident_AbnormalTermination,diag::err_seh___finally_block); 569 } 570 571 Actions.Initialize(); 572 573 // Prime the lexer look-ahead. 574 ConsumeToken(); 575 } 576 577 namespace { 578 /// \brief RAIIObject to destroy the contents of a SmallVector of 579 /// TemplateIdAnnotation pointers and clear the vector. 580 class DestroyTemplateIdAnnotationsRAIIObj { 581 SmallVectorImpl<TemplateIdAnnotation *> &Container; 582 public: 583 DestroyTemplateIdAnnotationsRAIIObj(SmallVectorImpl<TemplateIdAnnotation *> 584 &Container) 585 : Container(Container) {} 586 587 ~DestroyTemplateIdAnnotationsRAIIObj() { 588 for (SmallVectorImpl<TemplateIdAnnotation *>::iterator I = 589 Container.begin(), E = Container.end(); 590 I != E; ++I) 591 (*I)->Destroy(); 592 Container.clear(); 593 } 594 }; 595 } 596 597 /// ParseTopLevelDecl - Parse one top-level declaration, return whatever the 598 /// action tells us to. This returns true if the EOF was encountered. 599 bool Parser::ParseTopLevelDecl(DeclGroupPtrTy &Result) { 600 DestroyTemplateIdAnnotationsRAIIObj CleanupRAII(TemplateIds); 601 602 // Skip over the EOF token, flagging end of previous input for incremental 603 // processing 604 if (PP.isIncrementalProcessingEnabled() && Tok.is(tok::eof)) 605 ConsumeToken(); 606 607 Result = DeclGroupPtrTy(); 608 switch (Tok.getKind()) { 609 case tok::annot_pragma_unused: 610 HandlePragmaUnused(); 611 return false; 612 613 case tok::annot_module_include: 614 Actions.ActOnModuleInclude(Tok.getLocation(), 615 reinterpret_cast<Module *>( 616 Tok.getAnnotationValue())); 617 ConsumeToken(); 618 return false; 619 620 case tok::annot_module_begin: 621 case tok::annot_module_end: 622 // FIXME: Update visibility based on the submodule we're in. 623 ConsumeToken(); 624 return false; 625 626 case tok::eof: 627 // Late template parsing can begin. 628 if (getLangOpts().DelayedTemplateParsing) 629 Actions.SetLateTemplateParser(LateTemplateParserCallback, this); 630 if (!PP.isIncrementalProcessingEnabled()) 631 Actions.ActOnEndOfTranslationUnit(); 632 //else don't tell Sema that we ended parsing: more input might come. 633 return true; 634 635 default: 636 break; 637 } 638 639 ParsedAttributesWithRange attrs(AttrFactory); 640 MaybeParseCXX11Attributes(attrs); 641 MaybeParseMicrosoftAttributes(attrs); 642 643 Result = ParseExternalDeclaration(attrs); 644 return false; 645 } 646 647 /// ParseExternalDeclaration: 648 /// 649 /// external-declaration: [C99 6.9], declaration: [C++ dcl.dcl] 650 /// function-definition 651 /// declaration 652 /// [GNU] asm-definition 653 /// [GNU] __extension__ external-declaration 654 /// [OBJC] objc-class-definition 655 /// [OBJC] objc-class-declaration 656 /// [OBJC] objc-alias-declaration 657 /// [OBJC] objc-protocol-definition 658 /// [OBJC] objc-method-definition 659 /// [OBJC] @end 660 /// [C++] linkage-specification 661 /// [GNU] asm-definition: 662 /// simple-asm-expr ';' 663 /// [C++11] empty-declaration 664 /// [C++11] attribute-declaration 665 /// 666 /// [C++11] empty-declaration: 667 /// ';' 668 /// 669 /// [C++0x/GNU] 'extern' 'template' declaration 670 Parser::DeclGroupPtrTy 671 Parser::ParseExternalDeclaration(ParsedAttributesWithRange &attrs, 672 ParsingDeclSpec *DS) { 673 DestroyTemplateIdAnnotationsRAIIObj CleanupRAII(TemplateIds); 674 ParenBraceBracketBalancer BalancerRAIIObj(*this); 675 676 if (PP.isCodeCompletionReached()) { 677 cutOffParsing(); 678 return DeclGroupPtrTy(); 679 } 680 681 Decl *SingleDecl = 0; 682 switch (Tok.getKind()) { 683 case tok::annot_pragma_vis: 684 HandlePragmaVisibility(); 685 return DeclGroupPtrTy(); 686 case tok::annot_pragma_pack: 687 HandlePragmaPack(); 688 return DeclGroupPtrTy(); 689 case tok::annot_pragma_msstruct: 690 HandlePragmaMSStruct(); 691 return DeclGroupPtrTy(); 692 case tok::annot_pragma_align: 693 HandlePragmaAlign(); 694 return DeclGroupPtrTy(); 695 case tok::annot_pragma_weak: 696 HandlePragmaWeak(); 697 return DeclGroupPtrTy(); 698 case tok::annot_pragma_weakalias: 699 HandlePragmaWeakAlias(); 700 return DeclGroupPtrTy(); 701 case tok::annot_pragma_redefine_extname: 702 HandlePragmaRedefineExtname(); 703 return DeclGroupPtrTy(); 704 case tok::annot_pragma_fp_contract: 705 HandlePragmaFPContract(); 706 return DeclGroupPtrTy(); 707 case tok::annot_pragma_opencl_extension: 708 HandlePragmaOpenCLExtension(); 709 return DeclGroupPtrTy(); 710 case tok::annot_pragma_openmp: 711 ParseOpenMPDeclarativeDirective(); 712 return DeclGroupPtrTy(); 713 case tok::annot_pragma_ms_pointers_to_members: 714 HandlePragmaMSPointersToMembers(); 715 return DeclGroupPtrTy(); 716 case tok::annot_pragma_ms_vtordisp: 717 HandlePragmaMSVtorDisp(); 718 return DeclGroupPtrTy(); 719 case tok::semi: 720 // Either a C++11 empty-declaration or attribute-declaration. 721 SingleDecl = Actions.ActOnEmptyDeclaration(getCurScope(), 722 attrs.getList(), 723 Tok.getLocation()); 724 ConsumeExtraSemi(OutsideFunction); 725 break; 726 case tok::r_brace: 727 Diag(Tok, diag::err_extraneous_closing_brace); 728 ConsumeBrace(); 729 return DeclGroupPtrTy(); 730 case tok::eof: 731 Diag(Tok, diag::err_expected_external_declaration); 732 return DeclGroupPtrTy(); 733 case tok::kw___extension__: { 734 // __extension__ silences extension warnings in the subexpression. 735 ExtensionRAIIObject O(Diags); // Use RAII to do this. 736 ConsumeToken(); 737 return ParseExternalDeclaration(attrs); 738 } 739 case tok::kw_asm: { 740 ProhibitAttributes(attrs); 741 742 SourceLocation StartLoc = Tok.getLocation(); 743 SourceLocation EndLoc; 744 ExprResult Result(ParseSimpleAsm(&EndLoc)); 745 746 ExpectAndConsume(tok::semi, diag::err_expected_after, 747 "top-level asm block"); 748 749 if (Result.isInvalid()) 750 return DeclGroupPtrTy(); 751 SingleDecl = Actions.ActOnFileScopeAsmDecl(Result.get(), StartLoc, EndLoc); 752 break; 753 } 754 case tok::at: 755 return ParseObjCAtDirectives(); 756 case tok::minus: 757 case tok::plus: 758 if (!getLangOpts().ObjC1) { 759 Diag(Tok, diag::err_expected_external_declaration); 760 ConsumeToken(); 761 return DeclGroupPtrTy(); 762 } 763 SingleDecl = ParseObjCMethodDefinition(); 764 break; 765 case tok::code_completion: 766 Actions.CodeCompleteOrdinaryName(getCurScope(), 767 CurParsedObjCImpl? Sema::PCC_ObjCImplementation 768 : Sema::PCC_Namespace); 769 cutOffParsing(); 770 return DeclGroupPtrTy(); 771 case tok::kw_using: 772 case tok::kw_namespace: 773 case tok::kw_typedef: 774 case tok::kw_template: 775 case tok::kw_export: // As in 'export template' 776 case tok::kw_static_assert: 777 case tok::kw__Static_assert: 778 // A function definition cannot start with any of these keywords. 779 { 780 SourceLocation DeclEnd; 781 StmtVector Stmts; 782 return ParseDeclaration(Stmts, Declarator::FileContext, DeclEnd, attrs); 783 } 784 785 case tok::kw_static: 786 // Parse (then ignore) 'static' prior to a template instantiation. This is 787 // a GCC extension that we intentionally do not support. 788 if (getLangOpts().CPlusPlus && NextToken().is(tok::kw_template)) { 789 Diag(ConsumeToken(), diag::warn_static_inline_explicit_inst_ignored) 790 << 0; 791 SourceLocation DeclEnd; 792 StmtVector Stmts; 793 return ParseDeclaration(Stmts, Declarator::FileContext, DeclEnd, attrs); 794 } 795 goto dont_know; 796 797 case tok::kw_inline: 798 if (getLangOpts().CPlusPlus) { 799 tok::TokenKind NextKind = NextToken().getKind(); 800 801 // Inline namespaces. Allowed as an extension even in C++03. 802 if (NextKind == tok::kw_namespace) { 803 SourceLocation DeclEnd; 804 StmtVector Stmts; 805 return ParseDeclaration(Stmts, Declarator::FileContext, DeclEnd, attrs); 806 } 807 808 // Parse (then ignore) 'inline' prior to a template instantiation. This is 809 // a GCC extension that we intentionally do not support. 810 if (NextKind == tok::kw_template) { 811 Diag(ConsumeToken(), diag::warn_static_inline_explicit_inst_ignored) 812 << 1; 813 SourceLocation DeclEnd; 814 StmtVector Stmts; 815 return ParseDeclaration(Stmts, Declarator::FileContext, DeclEnd, attrs); 816 } 817 } 818 goto dont_know; 819 820 case tok::kw_extern: 821 if (getLangOpts().CPlusPlus && NextToken().is(tok::kw_template)) { 822 // Extern templates 823 SourceLocation ExternLoc = ConsumeToken(); 824 SourceLocation TemplateLoc = ConsumeToken(); 825 Diag(ExternLoc, getLangOpts().CPlusPlus11 ? 826 diag::warn_cxx98_compat_extern_template : 827 diag::ext_extern_template) << SourceRange(ExternLoc, TemplateLoc); 828 SourceLocation DeclEnd; 829 return Actions.ConvertDeclToDeclGroup( 830 ParseExplicitInstantiation(Declarator::FileContext, 831 ExternLoc, TemplateLoc, DeclEnd)); 832 } 833 goto dont_know; 834 835 case tok::kw___if_exists: 836 case tok::kw___if_not_exists: 837 ParseMicrosoftIfExistsExternalDeclaration(); 838 return DeclGroupPtrTy(); 839 840 default: 841 dont_know: 842 // We can't tell whether this is a function-definition or declaration yet. 843 return ParseDeclarationOrFunctionDefinition(attrs, DS); 844 } 845 846 // This routine returns a DeclGroup, if the thing we parsed only contains a 847 // single decl, convert it now. 848 return Actions.ConvertDeclToDeclGroup(SingleDecl); 849 } 850 851 /// \brief Determine whether the current token, if it occurs after a 852 /// declarator, continues a declaration or declaration list. 853 bool Parser::isDeclarationAfterDeclarator() { 854 // Check for '= delete' or '= default' 855 if (getLangOpts().CPlusPlus && Tok.is(tok::equal)) { 856 const Token &KW = NextToken(); 857 if (KW.is(tok::kw_default) || KW.is(tok::kw_delete)) 858 return false; 859 } 860 861 return Tok.is(tok::equal) || // int X()= -> not a function def 862 Tok.is(tok::comma) || // int X(), -> not a function def 863 Tok.is(tok::semi) || // int X(); -> not a function def 864 Tok.is(tok::kw_asm) || // int X() __asm__ -> not a function def 865 Tok.is(tok::kw___attribute) || // int X() __attr__ -> not a function def 866 (getLangOpts().CPlusPlus && 867 Tok.is(tok::l_paren)); // int X(0) -> not a function def [C++] 868 } 869 870 /// \brief Determine whether the current token, if it occurs after a 871 /// declarator, indicates the start of a function definition. 872 bool Parser::isStartOfFunctionDefinition(const ParsingDeclarator &Declarator) { 873 assert(Declarator.isFunctionDeclarator() && "Isn't a function declarator"); 874 if (Tok.is(tok::l_brace)) // int X() {} 875 return true; 876 877 // Handle K&R C argument lists: int X(f) int f; {} 878 if (!getLangOpts().CPlusPlus && 879 Declarator.getFunctionTypeInfo().isKNRPrototype()) 880 return isDeclarationSpecifier(); 881 882 if (getLangOpts().CPlusPlus && Tok.is(tok::equal)) { 883 const Token &KW = NextToken(); 884 return KW.is(tok::kw_default) || KW.is(tok::kw_delete); 885 } 886 887 return Tok.is(tok::colon) || // X() : Base() {} (used for ctors) 888 Tok.is(tok::kw_try); // X() try { ... } 889 } 890 891 /// ParseDeclarationOrFunctionDefinition - Parse either a function-definition or 892 /// a declaration. We can't tell which we have until we read up to the 893 /// compound-statement in function-definition. TemplateParams, if 894 /// non-NULL, provides the template parameters when we're parsing a 895 /// C++ template-declaration. 896 /// 897 /// function-definition: [C99 6.9.1] 898 /// decl-specs declarator declaration-list[opt] compound-statement 899 /// [C90] function-definition: [C99 6.7.1] - implicit int result 900 /// [C90] decl-specs[opt] declarator declaration-list[opt] compound-statement 901 /// 902 /// declaration: [C99 6.7] 903 /// declaration-specifiers init-declarator-list[opt] ';' 904 /// [!C99] init-declarator-list ';' [TODO: warn in c99 mode] 905 /// [OMP] threadprivate-directive [TODO] 906 /// 907 Parser::DeclGroupPtrTy 908 Parser::ParseDeclOrFunctionDefInternal(ParsedAttributesWithRange &attrs, 909 ParsingDeclSpec &DS, 910 AccessSpecifier AS) { 911 // Parse the common declaration-specifiers piece. 912 ParseDeclarationSpecifiers(DS, ParsedTemplateInfo(), AS, DSC_top_level); 913 914 // If we had a free-standing type definition with a missing semicolon, we 915 // may get this far before the problem becomes obvious. 916 if (DS.hasTagDefinition() && 917 DiagnoseMissingSemiAfterTagDefinition(DS, AS, DSC_top_level)) 918 return DeclGroupPtrTy(); 919 920 // C99 6.7.2.3p6: Handle "struct-or-union identifier;", "enum { X };" 921 // declaration-specifiers init-declarator-list[opt] ';' 922 if (Tok.is(tok::semi)) { 923 ProhibitAttributes(attrs); 924 ConsumeToken(); 925 Decl *TheDecl = Actions.ParsedFreeStandingDeclSpec(getCurScope(), AS, DS); 926 DS.complete(TheDecl); 927 return Actions.ConvertDeclToDeclGroup(TheDecl); 928 } 929 930 DS.takeAttributesFrom(attrs); 931 932 // ObjC2 allows prefix attributes on class interfaces and protocols. 933 // FIXME: This still needs better diagnostics. We should only accept 934 // attributes here, no types, etc. 935 if (getLangOpts().ObjC2 && Tok.is(tok::at)) { 936 SourceLocation AtLoc = ConsumeToken(); // the "@" 937 if (!Tok.isObjCAtKeyword(tok::objc_interface) && 938 !Tok.isObjCAtKeyword(tok::objc_protocol)) { 939 Diag(Tok, diag::err_objc_unexpected_attr); 940 SkipUntil(tok::semi); // FIXME: better skip? 941 return DeclGroupPtrTy(); 942 } 943 944 DS.abort(); 945 946 const char *PrevSpec = 0; 947 unsigned DiagID; 948 if (DS.SetTypeSpecType(DeclSpec::TST_unspecified, AtLoc, PrevSpec, DiagID, 949 Actions.getASTContext().getPrintingPolicy())) 950 Diag(AtLoc, DiagID) << PrevSpec; 951 952 if (Tok.isObjCAtKeyword(tok::objc_protocol)) 953 return ParseObjCAtProtocolDeclaration(AtLoc, DS.getAttributes()); 954 955 return Actions.ConvertDeclToDeclGroup( 956 ParseObjCAtInterfaceDeclaration(AtLoc, DS.getAttributes())); 957 } 958 959 // If the declspec consisted only of 'extern' and we have a string 960 // literal following it, this must be a C++ linkage specifier like 961 // 'extern "C"'. 962 if (getLangOpts().CPlusPlus && isTokenStringLiteral() && 963 DS.getStorageClassSpec() == DeclSpec::SCS_extern && 964 DS.getParsedSpecifiers() == DeclSpec::PQ_StorageClassSpecifier) { 965 Decl *TheDecl = ParseLinkage(DS, Declarator::FileContext); 966 return Actions.ConvertDeclToDeclGroup(TheDecl); 967 } 968 969 return ParseDeclGroup(DS, Declarator::FileContext, true); 970 } 971 972 Parser::DeclGroupPtrTy 973 Parser::ParseDeclarationOrFunctionDefinition(ParsedAttributesWithRange &attrs, 974 ParsingDeclSpec *DS, 975 AccessSpecifier AS) { 976 if (DS) { 977 return ParseDeclOrFunctionDefInternal(attrs, *DS, AS); 978 } else { 979 ParsingDeclSpec PDS(*this); 980 // Must temporarily exit the objective-c container scope for 981 // parsing c constructs and re-enter objc container scope 982 // afterwards. 983 ObjCDeclContextSwitch ObjCDC(*this); 984 985 return ParseDeclOrFunctionDefInternal(attrs, PDS, AS); 986 } 987 } 988 989 990 static inline bool isFunctionDeclaratorRequiringReturnTypeDeduction( 991 const Declarator &D) { 992 if (!D.isFunctionDeclarator() || !D.getDeclSpec().containsPlaceholderType()) 993 return false; 994 for (unsigned I = 0, E = D.getNumTypeObjects(); I != E; ++I) { 995 unsigned chunkIndex = E - I - 1; 996 const DeclaratorChunk &DeclType = D.getTypeObject(chunkIndex); 997 if (DeclType.Kind == DeclaratorChunk::Function) { 998 const DeclaratorChunk::FunctionTypeInfo &FTI = DeclType.Fun; 999 if (!FTI.hasTrailingReturnType()) 1000 return true; 1001 QualType TrailingRetType = FTI.getTrailingReturnType().get(); 1002 return TrailingRetType->getCanonicalTypeInternal() 1003 ->getContainedAutoType(); 1004 } 1005 } 1006 return false; 1007 } 1008 1009 /// ParseFunctionDefinition - We parsed and verified that the specified 1010 /// Declarator is well formed. If this is a K&R-style function, read the 1011 /// parameters declaration-list, then start the compound-statement. 1012 /// 1013 /// function-definition: [C99 6.9.1] 1014 /// decl-specs declarator declaration-list[opt] compound-statement 1015 /// [C90] function-definition: [C99 6.7.1] - implicit int result 1016 /// [C90] decl-specs[opt] declarator declaration-list[opt] compound-statement 1017 /// [C++] function-definition: [C++ 8.4] 1018 /// decl-specifier-seq[opt] declarator ctor-initializer[opt] 1019 /// function-body 1020 /// [C++] function-definition: [C++ 8.4] 1021 /// decl-specifier-seq[opt] declarator function-try-block 1022 /// 1023 Decl *Parser::ParseFunctionDefinition(ParsingDeclarator &D, 1024 const ParsedTemplateInfo &TemplateInfo, 1025 LateParsedAttrList *LateParsedAttrs) { 1026 // Poison the SEH identifiers so they are flagged as illegal in function bodies 1027 PoisonSEHIdentifiersRAIIObject PoisonSEHIdentifiers(*this, true); 1028 const DeclaratorChunk::FunctionTypeInfo &FTI = D.getFunctionTypeInfo(); 1029 1030 // If this is C90 and the declspecs were completely missing, fudge in an 1031 // implicit int. We do this here because this is the only place where 1032 // declaration-specifiers are completely optional in the grammar. 1033 if (getLangOpts().ImplicitInt && D.getDeclSpec().isEmpty()) { 1034 const char *PrevSpec; 1035 unsigned DiagID; 1036 const PrintingPolicy &Policy = Actions.getASTContext().getPrintingPolicy(); 1037 D.getMutableDeclSpec().SetTypeSpecType(DeclSpec::TST_int, 1038 D.getIdentifierLoc(), 1039 PrevSpec, DiagID, 1040 Policy); 1041 D.SetRangeBegin(D.getDeclSpec().getSourceRange().getBegin()); 1042 } 1043 1044 // If this declaration was formed with a K&R-style identifier list for the 1045 // arguments, parse declarations for all of the args next. 1046 // int foo(a,b) int a; float b; {} 1047 if (FTI.isKNRPrototype()) 1048 ParseKNRParamDeclarations(D); 1049 1050 // We should have either an opening brace or, in a C++ constructor, 1051 // we may have a colon. 1052 if (Tok.isNot(tok::l_brace) && 1053 (!getLangOpts().CPlusPlus || 1054 (Tok.isNot(tok::colon) && Tok.isNot(tok::kw_try) && 1055 Tok.isNot(tok::equal)))) { 1056 Diag(Tok, diag::err_expected_fn_body); 1057 1058 // Skip over garbage, until we get to '{'. Don't eat the '{'. 1059 SkipUntil(tok::l_brace, StopAtSemi | StopBeforeMatch); 1060 1061 // If we didn't find the '{', bail out. 1062 if (Tok.isNot(tok::l_brace)) 1063 return 0; 1064 } 1065 1066 // Check to make sure that any normal attributes are allowed to be on 1067 // a definition. Late parsed attributes are checked at the end. 1068 if (Tok.isNot(tok::equal)) { 1069 AttributeList *DtorAttrs = D.getAttributes(); 1070 while (DtorAttrs) { 1071 if (DtorAttrs->isKnownToGCC() && 1072 !DtorAttrs->isCXX11Attribute()) { 1073 Diag(DtorAttrs->getLoc(), diag::warn_attribute_on_function_definition) 1074 << DtorAttrs->getName(); 1075 } 1076 DtorAttrs = DtorAttrs->getNext(); 1077 } 1078 } 1079 1080 // In delayed template parsing mode, for function template we consume the 1081 // tokens and store them for late parsing at the end of the translation unit. 1082 if (getLangOpts().DelayedTemplateParsing && Tok.isNot(tok::equal) && 1083 TemplateInfo.Kind == ParsedTemplateInfo::Template && 1084 !D.getDeclSpec().isConstexprSpecified() && 1085 !isFunctionDeclaratorRequiringReturnTypeDeduction(D)) { 1086 MultiTemplateParamsArg TemplateParameterLists(*TemplateInfo.TemplateParams); 1087 1088 ParseScope BodyScope(this, Scope::FnScope|Scope::DeclScope); 1089 Scope *ParentScope = getCurScope()->getParent(); 1090 1091 D.setFunctionDefinitionKind(FDK_Definition); 1092 Decl *DP = Actions.HandleDeclarator(ParentScope, D, 1093 TemplateParameterLists); 1094 D.complete(DP); 1095 D.getMutableDeclSpec().abort(); 1096 1097 CachedTokens Toks; 1098 LexTemplateFunctionForLateParsing(Toks); 1099 1100 if (DP) { 1101 FunctionDecl *FnD = DP->getAsFunction(); 1102 Actions.CheckForFunctionRedefinition(FnD); 1103 Actions.MarkAsLateParsedTemplate(FnD, DP, Toks); 1104 } 1105 return DP; 1106 } 1107 else if (CurParsedObjCImpl && 1108 !TemplateInfo.TemplateParams && 1109 (Tok.is(tok::l_brace) || Tok.is(tok::kw_try) || 1110 Tok.is(tok::colon)) && 1111 Actions.CurContext->isTranslationUnit()) { 1112 ParseScope BodyScope(this, Scope::FnScope|Scope::DeclScope); 1113 Scope *ParentScope = getCurScope()->getParent(); 1114 1115 D.setFunctionDefinitionKind(FDK_Definition); 1116 Decl *FuncDecl = Actions.HandleDeclarator(ParentScope, D, 1117 MultiTemplateParamsArg()); 1118 D.complete(FuncDecl); 1119 D.getMutableDeclSpec().abort(); 1120 if (FuncDecl) { 1121 // Consume the tokens and store them for later parsing. 1122 StashAwayMethodOrFunctionBodyTokens(FuncDecl); 1123 CurParsedObjCImpl->HasCFunction = true; 1124 return FuncDecl; 1125 } 1126 } 1127 1128 // Enter a scope for the function body. 1129 ParseScope BodyScope(this, Scope::FnScope|Scope::DeclScope); 1130 1131 // Tell the actions module that we have entered a function definition with the 1132 // specified Declarator for the function. 1133 Decl *Res = TemplateInfo.TemplateParams? 1134 Actions.ActOnStartOfFunctionTemplateDef(getCurScope(), 1135 *TemplateInfo.TemplateParams, D) 1136 : Actions.ActOnStartOfFunctionDef(getCurScope(), D); 1137 1138 // Break out of the ParsingDeclarator context before we parse the body. 1139 D.complete(Res); 1140 1141 // Break out of the ParsingDeclSpec context, too. This const_cast is 1142 // safe because we're always the sole owner. 1143 D.getMutableDeclSpec().abort(); 1144 1145 if (TryConsumeToken(tok::equal)) { 1146 assert(getLangOpts().CPlusPlus && "Only C++ function definitions have '='"); 1147 Actions.ActOnFinishFunctionBody(Res, 0, false); 1148 1149 bool Delete = false; 1150 SourceLocation KWLoc; 1151 if (TryConsumeToken(tok::kw_delete, KWLoc)) { 1152 Diag(KWLoc, getLangOpts().CPlusPlus11 1153 ? diag::warn_cxx98_compat_deleted_function 1154 : diag::ext_deleted_function); 1155 Actions.SetDeclDeleted(Res, KWLoc); 1156 Delete = true; 1157 } else if (TryConsumeToken(tok::kw_default, KWLoc)) { 1158 Diag(KWLoc, getLangOpts().CPlusPlus11 1159 ? diag::warn_cxx98_compat_defaulted_function 1160 : diag::ext_defaulted_function); 1161 Actions.SetDeclDefaulted(Res, KWLoc); 1162 } else { 1163 llvm_unreachable("function definition after = not 'delete' or 'default'"); 1164 } 1165 1166 if (Tok.is(tok::comma)) { 1167 Diag(KWLoc, diag::err_default_delete_in_multiple_declaration) 1168 << Delete; 1169 SkipUntil(tok::semi); 1170 } else if (ExpectAndConsume(tok::semi, diag::err_expected_after, 1171 Delete ? "delete" : "default")) { 1172 SkipUntil(tok::semi); 1173 } 1174 1175 return Res; 1176 } 1177 1178 if (Tok.is(tok::kw_try)) 1179 return ParseFunctionTryBlock(Res, BodyScope); 1180 1181 // If we have a colon, then we're probably parsing a C++ 1182 // ctor-initializer. 1183 if (Tok.is(tok::colon)) { 1184 ParseConstructorInitializer(Res); 1185 1186 // Recover from error. 1187 if (!Tok.is(tok::l_brace)) { 1188 BodyScope.Exit(); 1189 Actions.ActOnFinishFunctionBody(Res, 0); 1190 return Res; 1191 } 1192 } else 1193 Actions.ActOnDefaultCtorInitializers(Res); 1194 1195 // Late attributes are parsed in the same scope as the function body. 1196 if (LateParsedAttrs) 1197 ParseLexedAttributeList(*LateParsedAttrs, Res, false, true); 1198 1199 return ParseFunctionStatementBody(Res, BodyScope); 1200 } 1201 1202 /// ParseKNRParamDeclarations - Parse 'declaration-list[opt]' which provides 1203 /// types for a function with a K&R-style identifier list for arguments. 1204 void Parser::ParseKNRParamDeclarations(Declarator &D) { 1205 // We know that the top-level of this declarator is a function. 1206 DeclaratorChunk::FunctionTypeInfo &FTI = D.getFunctionTypeInfo(); 1207 1208 // Enter function-declaration scope, limiting any declarators to the 1209 // function prototype scope, including parameter declarators. 1210 ParseScope PrototypeScope(this, Scope::FunctionPrototypeScope | 1211 Scope::FunctionDeclarationScope | Scope::DeclScope); 1212 1213 // Read all the argument declarations. 1214 while (isDeclarationSpecifier()) { 1215 SourceLocation DSStart = Tok.getLocation(); 1216 1217 // Parse the common declaration-specifiers piece. 1218 DeclSpec DS(AttrFactory); 1219 ParseDeclarationSpecifiers(DS); 1220 1221 // C99 6.9.1p6: 'each declaration in the declaration list shall have at 1222 // least one declarator'. 1223 // NOTE: GCC just makes this an ext-warn. It's not clear what it does with 1224 // the declarations though. It's trivial to ignore them, really hard to do 1225 // anything else with them. 1226 if (TryConsumeToken(tok::semi)) { 1227 Diag(DSStart, diag::err_declaration_does_not_declare_param); 1228 continue; 1229 } 1230 1231 // C99 6.9.1p6: Declarations shall contain no storage-class specifiers other 1232 // than register. 1233 if (DS.getStorageClassSpec() != DeclSpec::SCS_unspecified && 1234 DS.getStorageClassSpec() != DeclSpec::SCS_register) { 1235 Diag(DS.getStorageClassSpecLoc(), 1236 diag::err_invalid_storage_class_in_func_decl); 1237 DS.ClearStorageClassSpecs(); 1238 } 1239 if (DS.getThreadStorageClassSpec() != DeclSpec::TSCS_unspecified) { 1240 Diag(DS.getThreadStorageClassSpecLoc(), 1241 diag::err_invalid_storage_class_in_func_decl); 1242 DS.ClearStorageClassSpecs(); 1243 } 1244 1245 // Parse the first declarator attached to this declspec. 1246 Declarator ParmDeclarator(DS, Declarator::KNRTypeListContext); 1247 ParseDeclarator(ParmDeclarator); 1248 1249 // Handle the full declarator list. 1250 while (1) { 1251 // If attributes are present, parse them. 1252 MaybeParseGNUAttributes(ParmDeclarator); 1253 1254 // Ask the actions module to compute the type for this declarator. 1255 Decl *Param = 1256 Actions.ActOnParamDeclarator(getCurScope(), ParmDeclarator); 1257 1258 if (Param && 1259 // A missing identifier has already been diagnosed. 1260 ParmDeclarator.getIdentifier()) { 1261 1262 // Scan the argument list looking for the correct param to apply this 1263 // type. 1264 for (unsigned i = 0; ; ++i) { 1265 // C99 6.9.1p6: those declarators shall declare only identifiers from 1266 // the identifier list. 1267 if (i == FTI.NumArgs) { 1268 Diag(ParmDeclarator.getIdentifierLoc(), diag::err_no_matching_param) 1269 << ParmDeclarator.getIdentifier(); 1270 break; 1271 } 1272 1273 if (FTI.ArgInfo[i].Ident == ParmDeclarator.getIdentifier()) { 1274 // Reject redefinitions of parameters. 1275 if (FTI.ArgInfo[i].Param) { 1276 Diag(ParmDeclarator.getIdentifierLoc(), 1277 diag::err_param_redefinition) 1278 << ParmDeclarator.getIdentifier(); 1279 } else { 1280 FTI.ArgInfo[i].Param = Param; 1281 } 1282 break; 1283 } 1284 } 1285 } 1286 1287 // If we don't have a comma, it is either the end of the list (a ';') or 1288 // an error, bail out. 1289 if (Tok.isNot(tok::comma)) 1290 break; 1291 1292 ParmDeclarator.clear(); 1293 1294 // Consume the comma. 1295 ParmDeclarator.setCommaLoc(ConsumeToken()); 1296 1297 // Parse the next declarator. 1298 ParseDeclarator(ParmDeclarator); 1299 } 1300 1301 // Consume ';' and continue parsing. 1302 if (!ExpectAndConsumeSemi(diag::err_expected_semi_declaration)) 1303 continue; 1304 1305 // Otherwise recover by skipping to next semi or mandatory function body. 1306 if (SkipUntil(tok::l_brace, StopAtSemi | StopBeforeMatch)) 1307 break; 1308 TryConsumeToken(tok::semi); 1309 } 1310 1311 // The actions module must verify that all arguments were declared. 1312 Actions.ActOnFinishKNRParamDeclarations(getCurScope(), D, Tok.getLocation()); 1313 } 1314 1315 1316 /// ParseAsmStringLiteral - This is just a normal string-literal, but is not 1317 /// allowed to be a wide string, and is not subject to character translation. 1318 /// 1319 /// [GNU] asm-string-literal: 1320 /// string-literal 1321 /// 1322 Parser::ExprResult Parser::ParseAsmStringLiteral() { 1323 switch (Tok.getKind()) { 1324 case tok::string_literal: 1325 break; 1326 case tok::utf8_string_literal: 1327 case tok::utf16_string_literal: 1328 case tok::utf32_string_literal: 1329 case tok::wide_string_literal: { 1330 SourceLocation L = Tok.getLocation(); 1331 Diag(Tok, diag::err_asm_operand_wide_string_literal) 1332 << (Tok.getKind() == tok::wide_string_literal) 1333 << SourceRange(L, L); 1334 return ExprError(); 1335 } 1336 default: 1337 Diag(Tok, diag::err_expected_string_literal) 1338 << /*Source='in...'*/0 << "'asm'"; 1339 return ExprError(); 1340 } 1341 1342 return ParseStringLiteralExpression(); 1343 } 1344 1345 /// ParseSimpleAsm 1346 /// 1347 /// [GNU] simple-asm-expr: 1348 /// 'asm' '(' asm-string-literal ')' 1349 /// 1350 Parser::ExprResult Parser::ParseSimpleAsm(SourceLocation *EndLoc) { 1351 assert(Tok.is(tok::kw_asm) && "Not an asm!"); 1352 SourceLocation Loc = ConsumeToken(); 1353 1354 if (Tok.is(tok::kw_volatile)) { 1355 // Remove from the end of 'asm' to the end of 'volatile'. 1356 SourceRange RemovalRange(PP.getLocForEndOfToken(Loc), 1357 PP.getLocForEndOfToken(Tok.getLocation())); 1358 1359 Diag(Tok, diag::warn_file_asm_volatile) 1360 << FixItHint::CreateRemoval(RemovalRange); 1361 ConsumeToken(); 1362 } 1363 1364 BalancedDelimiterTracker T(*this, tok::l_paren); 1365 if (T.consumeOpen()) { 1366 Diag(Tok, diag::err_expected_lparen_after) << "asm"; 1367 return ExprError(); 1368 } 1369 1370 ExprResult Result(ParseAsmStringLiteral()); 1371 1372 if (!Result.isInvalid()) { 1373 // Close the paren and get the location of the end bracket 1374 T.consumeClose(); 1375 if (EndLoc) 1376 *EndLoc = T.getCloseLocation(); 1377 } else if (SkipUntil(tok::r_paren, StopAtSemi | StopBeforeMatch)) { 1378 if (EndLoc) 1379 *EndLoc = Tok.getLocation(); 1380 ConsumeParen(); 1381 } 1382 1383 return Result; 1384 } 1385 1386 /// \brief Get the TemplateIdAnnotation from the token and put it in the 1387 /// cleanup pool so that it gets destroyed when parsing the current top level 1388 /// declaration is finished. 1389 TemplateIdAnnotation *Parser::takeTemplateIdAnnotation(const Token &tok) { 1390 assert(tok.is(tok::annot_template_id) && "Expected template-id token"); 1391 TemplateIdAnnotation * 1392 Id = static_cast<TemplateIdAnnotation *>(tok.getAnnotationValue()); 1393 return Id; 1394 } 1395 1396 void Parser::AnnotateScopeToken(CXXScopeSpec &SS, bool IsNewAnnotation) { 1397 // Push the current token back into the token stream (or revert it if it is 1398 // cached) and use an annotation scope token for current token. 1399 if (PP.isBacktrackEnabled()) 1400 PP.RevertCachedTokens(1); 1401 else 1402 PP.EnterToken(Tok); 1403 Tok.setKind(tok::annot_cxxscope); 1404 Tok.setAnnotationValue(Actions.SaveNestedNameSpecifierAnnotation(SS)); 1405 Tok.setAnnotationRange(SS.getRange()); 1406 1407 // In case the tokens were cached, have Preprocessor replace them 1408 // with the annotation token. We don't need to do this if we've 1409 // just reverted back to a prior state. 1410 if (IsNewAnnotation) 1411 PP.AnnotateCachedTokens(Tok); 1412 } 1413 1414 /// \brief Attempt to classify the name at the current token position. This may 1415 /// form a type, scope or primary expression annotation, or replace the token 1416 /// with a typo-corrected keyword. This is only appropriate when the current 1417 /// name must refer to an entity which has already been declared. 1418 /// 1419 /// \param IsAddressOfOperand Must be \c true if the name is preceded by an '&' 1420 /// and might possibly have a dependent nested name specifier. 1421 /// \param CCC Indicates how to perform typo-correction for this name. If NULL, 1422 /// no typo correction will be performed. 1423 Parser::AnnotatedNameKind 1424 Parser::TryAnnotateName(bool IsAddressOfOperand, 1425 CorrectionCandidateCallback *CCC) { 1426 assert(Tok.is(tok::identifier) || Tok.is(tok::annot_cxxscope)); 1427 1428 const bool EnteringContext = false; 1429 const bool WasScopeAnnotation = Tok.is(tok::annot_cxxscope); 1430 1431 CXXScopeSpec SS; 1432 if (getLangOpts().CPlusPlus && 1433 ParseOptionalCXXScopeSpecifier(SS, ParsedType(), EnteringContext)) 1434 return ANK_Error; 1435 1436 if (Tok.isNot(tok::identifier) || SS.isInvalid()) { 1437 if (TryAnnotateTypeOrScopeTokenAfterScopeSpec(EnteringContext, false, SS, 1438 !WasScopeAnnotation)) 1439 return ANK_Error; 1440 return ANK_Unresolved; 1441 } 1442 1443 IdentifierInfo *Name = Tok.getIdentifierInfo(); 1444 SourceLocation NameLoc = Tok.getLocation(); 1445 1446 // FIXME: Move the tentative declaration logic into ClassifyName so we can 1447 // typo-correct to tentatively-declared identifiers. 1448 if (isTentativelyDeclared(Name)) { 1449 // Identifier has been tentatively declared, and thus cannot be resolved as 1450 // an expression. Fall back to annotating it as a type. 1451 if (TryAnnotateTypeOrScopeTokenAfterScopeSpec(EnteringContext, false, SS, 1452 !WasScopeAnnotation)) 1453 return ANK_Error; 1454 return Tok.is(tok::annot_typename) ? ANK_Success : ANK_TentativeDecl; 1455 } 1456 1457 Token Next = NextToken(); 1458 1459 // Look up and classify the identifier. We don't perform any typo-correction 1460 // after a scope specifier, because in general we can't recover from typos 1461 // there (eg, after correcting 'A::tempalte B<X>::C' [sic], we would need to 1462 // jump back into scope specifier parsing). 1463 Sema::NameClassification Classification 1464 = Actions.ClassifyName(getCurScope(), SS, Name, NameLoc, Next, 1465 IsAddressOfOperand, SS.isEmpty() ? CCC : 0); 1466 1467 switch (Classification.getKind()) { 1468 case Sema::NC_Error: 1469 return ANK_Error; 1470 1471 case Sema::NC_Keyword: 1472 // The identifier was typo-corrected to a keyword. 1473 Tok.setIdentifierInfo(Name); 1474 Tok.setKind(Name->getTokenID()); 1475 PP.TypoCorrectToken(Tok); 1476 if (SS.isNotEmpty()) 1477 AnnotateScopeToken(SS, !WasScopeAnnotation); 1478 // We've "annotated" this as a keyword. 1479 return ANK_Success; 1480 1481 case Sema::NC_Unknown: 1482 // It's not something we know about. Leave it unannotated. 1483 break; 1484 1485 case Sema::NC_Type: 1486 Tok.setKind(tok::annot_typename); 1487 setTypeAnnotation(Tok, Classification.getType()); 1488 Tok.setAnnotationEndLoc(NameLoc); 1489 if (SS.isNotEmpty()) 1490 Tok.setLocation(SS.getBeginLoc()); 1491 PP.AnnotateCachedTokens(Tok); 1492 return ANK_Success; 1493 1494 case Sema::NC_Expression: 1495 Tok.setKind(tok::annot_primary_expr); 1496 setExprAnnotation(Tok, Classification.getExpression()); 1497 Tok.setAnnotationEndLoc(NameLoc); 1498 if (SS.isNotEmpty()) 1499 Tok.setLocation(SS.getBeginLoc()); 1500 PP.AnnotateCachedTokens(Tok); 1501 return ANK_Success; 1502 1503 case Sema::NC_TypeTemplate: 1504 if (Next.isNot(tok::less)) { 1505 // This may be a type template being used as a template template argument. 1506 if (SS.isNotEmpty()) 1507 AnnotateScopeToken(SS, !WasScopeAnnotation); 1508 return ANK_TemplateName; 1509 } 1510 // Fall through. 1511 case Sema::NC_VarTemplate: 1512 case Sema::NC_FunctionTemplate: { 1513 // We have a type, variable or function template followed by '<'. 1514 ConsumeToken(); 1515 UnqualifiedId Id; 1516 Id.setIdentifier(Name, NameLoc); 1517 if (AnnotateTemplateIdToken( 1518 TemplateTy::make(Classification.getTemplateName()), 1519 Classification.getTemplateNameKind(), SS, SourceLocation(), Id)) 1520 return ANK_Error; 1521 return ANK_Success; 1522 } 1523 1524 case Sema::NC_NestedNameSpecifier: 1525 llvm_unreachable("already parsed nested name specifier"); 1526 } 1527 1528 // Unable to classify the name, but maybe we can annotate a scope specifier. 1529 if (SS.isNotEmpty()) 1530 AnnotateScopeToken(SS, !WasScopeAnnotation); 1531 return ANK_Unresolved; 1532 } 1533 1534 bool Parser::TryKeywordIdentFallback(bool DisableKeyword) { 1535 assert(!Tok.is(tok::identifier) && !Tok.isAnnotation()); 1536 Diag(Tok, diag::ext_keyword_as_ident) 1537 << PP.getSpelling(Tok) 1538 << DisableKeyword; 1539 if (DisableKeyword) { 1540 IdentifierInfo *II = Tok.getIdentifierInfo(); 1541 ContextualKeywords[II] = Tok.getKind(); 1542 II->RevertTokenIDToIdentifier(); 1543 } 1544 Tok.setKind(tok::identifier); 1545 return true; 1546 } 1547 1548 bool Parser::TryIdentKeywordUpgrade() { 1549 assert(Tok.is(tok::identifier)); 1550 const IdentifierInfo *II = Tok.getIdentifierInfo(); 1551 assert(II->hasRevertedTokenIDToIdentifier()); 1552 // If we find that this is in fact the name of a type trait, 1553 // update the token kind in place and parse again to treat it as 1554 // the appropriate kind of type trait. 1555 llvm::SmallDenseMap<const IdentifierInfo *, tok::TokenKind>::iterator Known = 1556 ContextualKeywords.find(II); 1557 if (Known == ContextualKeywords.end()) 1558 return false; 1559 Tok.setKind(Known->second); 1560 return true; 1561 } 1562 1563 /// TryAnnotateTypeOrScopeToken - If the current token position is on a 1564 /// typename (possibly qualified in C++) or a C++ scope specifier not followed 1565 /// by a typename, TryAnnotateTypeOrScopeToken will replace one or more tokens 1566 /// with a single annotation token representing the typename or C++ scope 1567 /// respectively. 1568 /// This simplifies handling of C++ scope specifiers and allows efficient 1569 /// backtracking without the need to re-parse and resolve nested-names and 1570 /// typenames. 1571 /// It will mainly be called when we expect to treat identifiers as typenames 1572 /// (if they are typenames). For example, in C we do not expect identifiers 1573 /// inside expressions to be treated as typenames so it will not be called 1574 /// for expressions in C. 1575 /// The benefit for C/ObjC is that a typename will be annotated and 1576 /// Actions.getTypeName will not be needed to be called again (e.g. getTypeName 1577 /// will not be called twice, once to check whether we have a declaration 1578 /// specifier, and another one to get the actual type inside 1579 /// ParseDeclarationSpecifiers). 1580 /// 1581 /// This returns true if an error occurred. 1582 /// 1583 /// Note that this routine emits an error if you call it with ::new or ::delete 1584 /// as the current tokens, so only call it in contexts where these are invalid. 1585 bool Parser::TryAnnotateTypeOrScopeToken(bool EnteringContext, bool NeedType) { 1586 assert((Tok.is(tok::identifier) || Tok.is(tok::coloncolon) 1587 || Tok.is(tok::kw_typename) || Tok.is(tok::annot_cxxscope) 1588 || Tok.is(tok::kw_decltype) || Tok.is(tok::annot_template_id)) 1589 && "Cannot be a type or scope token!"); 1590 1591 if (Tok.is(tok::kw_typename)) { 1592 // MSVC lets you do stuff like: 1593 // typename typedef T_::D D; 1594 // 1595 // We will consume the typedef token here and put it back after we have 1596 // parsed the first identifier, transforming it into something more like: 1597 // typename T_::D typedef D; 1598 if (getLangOpts().MSVCCompat && NextToken().is(tok::kw_typedef)) { 1599 Token TypedefToken; 1600 PP.Lex(TypedefToken); 1601 bool Result = TryAnnotateTypeOrScopeToken(EnteringContext, NeedType); 1602 PP.EnterToken(Tok); 1603 Tok = TypedefToken; 1604 if (!Result) 1605 Diag(Tok.getLocation(), diag::warn_expected_qualified_after_typename); 1606 return Result; 1607 } 1608 1609 // Parse a C++ typename-specifier, e.g., "typename T::type". 1610 // 1611 // typename-specifier: 1612 // 'typename' '::' [opt] nested-name-specifier identifier 1613 // 'typename' '::' [opt] nested-name-specifier template [opt] 1614 // simple-template-id 1615 SourceLocation TypenameLoc = ConsumeToken(); 1616 CXXScopeSpec SS; 1617 if (ParseOptionalCXXScopeSpecifier(SS, /*ObjectType=*/ParsedType(), 1618 /*EnteringContext=*/false, 1619 0, /*IsTypename*/true)) 1620 return true; 1621 if (!SS.isSet()) { 1622 if (Tok.is(tok::identifier) || Tok.is(tok::annot_template_id) || 1623 Tok.is(tok::annot_decltype)) { 1624 // Attempt to recover by skipping the invalid 'typename' 1625 if (Tok.is(tok::annot_decltype) || 1626 (!TryAnnotateTypeOrScopeToken(EnteringContext, NeedType) && 1627 Tok.isAnnotation())) { 1628 unsigned DiagID = diag::err_expected_qualified_after_typename; 1629 // MS compatibility: MSVC permits using known types with typename. 1630 // e.g. "typedef typename T* pointer_type" 1631 if (getLangOpts().MicrosoftExt) 1632 DiagID = diag::warn_expected_qualified_after_typename; 1633 Diag(Tok.getLocation(), DiagID); 1634 return false; 1635 } 1636 } 1637 1638 Diag(Tok.getLocation(), diag::err_expected_qualified_after_typename); 1639 return true; 1640 } 1641 1642 TypeResult Ty; 1643 if (Tok.is(tok::identifier)) { 1644 // FIXME: check whether the next token is '<', first! 1645 Ty = Actions.ActOnTypenameType(getCurScope(), TypenameLoc, SS, 1646 *Tok.getIdentifierInfo(), 1647 Tok.getLocation()); 1648 } else if (Tok.is(tok::annot_template_id)) { 1649 TemplateIdAnnotation *TemplateId = takeTemplateIdAnnotation(Tok); 1650 if (TemplateId->Kind != TNK_Type_template && 1651 TemplateId->Kind != TNK_Dependent_template_name) { 1652 Diag(Tok, diag::err_typename_refers_to_non_type_template) 1653 << Tok.getAnnotationRange(); 1654 return true; 1655 } 1656 1657 ASTTemplateArgsPtr TemplateArgsPtr(TemplateId->getTemplateArgs(), 1658 TemplateId->NumArgs); 1659 1660 Ty = Actions.ActOnTypenameType(getCurScope(), TypenameLoc, SS, 1661 TemplateId->TemplateKWLoc, 1662 TemplateId->Template, 1663 TemplateId->TemplateNameLoc, 1664 TemplateId->LAngleLoc, 1665 TemplateArgsPtr, 1666 TemplateId->RAngleLoc); 1667 } else { 1668 Diag(Tok, diag::err_expected_type_name_after_typename) 1669 << SS.getRange(); 1670 return true; 1671 } 1672 1673 SourceLocation EndLoc = Tok.getLastLoc(); 1674 Tok.setKind(tok::annot_typename); 1675 setTypeAnnotation(Tok, Ty.isInvalid() ? ParsedType() : Ty.get()); 1676 Tok.setAnnotationEndLoc(EndLoc); 1677 Tok.setLocation(TypenameLoc); 1678 PP.AnnotateCachedTokens(Tok); 1679 return false; 1680 } 1681 1682 // Remembers whether the token was originally a scope annotation. 1683 bool WasScopeAnnotation = Tok.is(tok::annot_cxxscope); 1684 1685 CXXScopeSpec SS; 1686 if (getLangOpts().CPlusPlus) 1687 if (ParseOptionalCXXScopeSpecifier(SS, ParsedType(), EnteringContext)) 1688 return true; 1689 1690 return TryAnnotateTypeOrScopeTokenAfterScopeSpec(EnteringContext, NeedType, 1691 SS, !WasScopeAnnotation); 1692 } 1693 1694 /// \brief Try to annotate a type or scope token, having already parsed an 1695 /// optional scope specifier. \p IsNewScope should be \c true unless the scope 1696 /// specifier was extracted from an existing tok::annot_cxxscope annotation. 1697 bool Parser::TryAnnotateTypeOrScopeTokenAfterScopeSpec(bool EnteringContext, 1698 bool NeedType, 1699 CXXScopeSpec &SS, 1700 bool IsNewScope) { 1701 if (Tok.is(tok::identifier)) { 1702 IdentifierInfo *CorrectedII = 0; 1703 // Determine whether the identifier is a type name. 1704 if (ParsedType Ty = Actions.getTypeName(*Tok.getIdentifierInfo(), 1705 Tok.getLocation(), getCurScope(), 1706 &SS, false, 1707 NextToken().is(tok::period), 1708 ParsedType(), 1709 /*IsCtorOrDtorName=*/false, 1710 /*NonTrivialTypeSourceInfo*/true, 1711 NeedType ? &CorrectedII : NULL)) { 1712 // A FixIt was applied as a result of typo correction 1713 if (CorrectedII) 1714 Tok.setIdentifierInfo(CorrectedII); 1715 // This is a typename. Replace the current token in-place with an 1716 // annotation type token. 1717 Tok.setKind(tok::annot_typename); 1718 setTypeAnnotation(Tok, Ty); 1719 Tok.setAnnotationEndLoc(Tok.getLocation()); 1720 if (SS.isNotEmpty()) // it was a C++ qualified type name. 1721 Tok.setLocation(SS.getBeginLoc()); 1722 1723 // In case the tokens were cached, have Preprocessor replace 1724 // them with the annotation token. 1725 PP.AnnotateCachedTokens(Tok); 1726 return false; 1727 } 1728 1729 if (!getLangOpts().CPlusPlus) { 1730 // If we're in C, we can't have :: tokens at all (the lexer won't return 1731 // them). If the identifier is not a type, then it can't be scope either, 1732 // just early exit. 1733 return false; 1734 } 1735 1736 // If this is a template-id, annotate with a template-id or type token. 1737 if (NextToken().is(tok::less)) { 1738 TemplateTy Template; 1739 UnqualifiedId TemplateName; 1740 TemplateName.setIdentifier(Tok.getIdentifierInfo(), Tok.getLocation()); 1741 bool MemberOfUnknownSpecialization; 1742 if (TemplateNameKind TNK 1743 = Actions.isTemplateName(getCurScope(), SS, 1744 /*hasTemplateKeyword=*/false, TemplateName, 1745 /*ObjectType=*/ ParsedType(), 1746 EnteringContext, 1747 Template, MemberOfUnknownSpecialization)) { 1748 // Consume the identifier. 1749 ConsumeToken(); 1750 if (AnnotateTemplateIdToken(Template, TNK, SS, SourceLocation(), 1751 TemplateName)) { 1752 // If an unrecoverable error occurred, we need to return true here, 1753 // because the token stream is in a damaged state. We may not return 1754 // a valid identifier. 1755 return true; 1756 } 1757 } 1758 } 1759 1760 // The current token, which is either an identifier or a 1761 // template-id, is not part of the annotation. Fall through to 1762 // push that token back into the stream and complete the C++ scope 1763 // specifier annotation. 1764 } 1765 1766 if (Tok.is(tok::annot_template_id)) { 1767 TemplateIdAnnotation *TemplateId = takeTemplateIdAnnotation(Tok); 1768 if (TemplateId->Kind == TNK_Type_template) { 1769 // A template-id that refers to a type was parsed into a 1770 // template-id annotation in a context where we weren't allowed 1771 // to produce a type annotation token. Update the template-id 1772 // annotation token to a type annotation token now. 1773 AnnotateTemplateIdTokenAsType(); 1774 return false; 1775 } 1776 } 1777 1778 if (SS.isEmpty()) 1779 return false; 1780 1781 // A C++ scope specifier that isn't followed by a typename. 1782 AnnotateScopeToken(SS, IsNewScope); 1783 return false; 1784 } 1785 1786 /// TryAnnotateScopeToken - Like TryAnnotateTypeOrScopeToken but only 1787 /// annotates C++ scope specifiers and template-ids. This returns 1788 /// true if there was an error that could not be recovered from. 1789 /// 1790 /// Note that this routine emits an error if you call it with ::new or ::delete 1791 /// as the current tokens, so only call it in contexts where these are invalid. 1792 bool Parser::TryAnnotateCXXScopeToken(bool EnteringContext) { 1793 assert(getLangOpts().CPlusPlus && 1794 "Call sites of this function should be guarded by checking for C++"); 1795 assert((Tok.is(tok::identifier) || Tok.is(tok::coloncolon) || 1796 (Tok.is(tok::annot_template_id) && NextToken().is(tok::coloncolon)) || 1797 Tok.is(tok::kw_decltype)) && "Cannot be a type or scope token!"); 1798 1799 CXXScopeSpec SS; 1800 if (ParseOptionalCXXScopeSpecifier(SS, ParsedType(), EnteringContext)) 1801 return true; 1802 if (SS.isEmpty()) 1803 return false; 1804 1805 AnnotateScopeToken(SS, true); 1806 return false; 1807 } 1808 1809 bool Parser::isTokenEqualOrEqualTypo() { 1810 tok::TokenKind Kind = Tok.getKind(); 1811 switch (Kind) { 1812 default: 1813 return false; 1814 case tok::ampequal: // &= 1815 case tok::starequal: // *= 1816 case tok::plusequal: // += 1817 case tok::minusequal: // -= 1818 case tok::exclaimequal: // != 1819 case tok::slashequal: // /= 1820 case tok::percentequal: // %= 1821 case tok::lessequal: // <= 1822 case tok::lesslessequal: // <<= 1823 case tok::greaterequal: // >= 1824 case tok::greatergreaterequal: // >>= 1825 case tok::caretequal: // ^= 1826 case tok::pipeequal: // |= 1827 case tok::equalequal: // == 1828 Diag(Tok, diag::err_invalid_token_after_declarator_suggest_equal) 1829 << Kind 1830 << FixItHint::CreateReplacement(SourceRange(Tok.getLocation()), "="); 1831 case tok::equal: 1832 return true; 1833 } 1834 } 1835 1836 SourceLocation Parser::handleUnexpectedCodeCompletionToken() { 1837 assert(Tok.is(tok::code_completion)); 1838 PrevTokLocation = Tok.getLocation(); 1839 1840 for (Scope *S = getCurScope(); S; S = S->getParent()) { 1841 if (S->getFlags() & Scope::FnScope) { 1842 Actions.CodeCompleteOrdinaryName(getCurScope(), Sema::PCC_RecoveryInFunction); 1843 cutOffParsing(); 1844 return PrevTokLocation; 1845 } 1846 1847 if (S->getFlags() & Scope::ClassScope) { 1848 Actions.CodeCompleteOrdinaryName(getCurScope(), Sema::PCC_Class); 1849 cutOffParsing(); 1850 return PrevTokLocation; 1851 } 1852 } 1853 1854 Actions.CodeCompleteOrdinaryName(getCurScope(), Sema::PCC_Namespace); 1855 cutOffParsing(); 1856 return PrevTokLocation; 1857 } 1858 1859 // Anchor the Parser::FieldCallback vtable to this translation unit. 1860 // We use a spurious method instead of the destructor because 1861 // destroying FieldCallbacks can actually be slightly 1862 // performance-sensitive. 1863 void Parser::FieldCallback::_anchor() { 1864 } 1865 1866 // Code-completion pass-through functions 1867 1868 void Parser::CodeCompleteDirective(bool InConditional) { 1869 Actions.CodeCompletePreprocessorDirective(InConditional); 1870 } 1871 1872 void Parser::CodeCompleteInConditionalExclusion() { 1873 Actions.CodeCompleteInPreprocessorConditionalExclusion(getCurScope()); 1874 } 1875 1876 void Parser::CodeCompleteMacroName(bool IsDefinition) { 1877 Actions.CodeCompletePreprocessorMacroName(IsDefinition); 1878 } 1879 1880 void Parser::CodeCompletePreprocessorExpression() { 1881 Actions.CodeCompletePreprocessorExpression(); 1882 } 1883 1884 void Parser::CodeCompleteMacroArgument(IdentifierInfo *Macro, 1885 MacroInfo *MacroInfo, 1886 unsigned ArgumentIndex) { 1887 Actions.CodeCompletePreprocessorMacroArgument(getCurScope(), Macro, MacroInfo, 1888 ArgumentIndex); 1889 } 1890 1891 void Parser::CodeCompleteNaturalLanguage() { 1892 Actions.CodeCompleteNaturalLanguage(); 1893 } 1894 1895 bool Parser::ParseMicrosoftIfExistsCondition(IfExistsCondition& Result) { 1896 assert((Tok.is(tok::kw___if_exists) || Tok.is(tok::kw___if_not_exists)) && 1897 "Expected '__if_exists' or '__if_not_exists'"); 1898 Result.IsIfExists = Tok.is(tok::kw___if_exists); 1899 Result.KeywordLoc = ConsumeToken(); 1900 1901 BalancedDelimiterTracker T(*this, tok::l_paren); 1902 if (T.consumeOpen()) { 1903 Diag(Tok, diag::err_expected_lparen_after) 1904 << (Result.IsIfExists? "__if_exists" : "__if_not_exists"); 1905 return true; 1906 } 1907 1908 // Parse nested-name-specifier. 1909 ParseOptionalCXXScopeSpecifier(Result.SS, ParsedType(), 1910 /*EnteringContext=*/false); 1911 1912 // Check nested-name specifier. 1913 if (Result.SS.isInvalid()) { 1914 T.skipToEnd(); 1915 return true; 1916 } 1917 1918 // Parse the unqualified-id. 1919 SourceLocation TemplateKWLoc; // FIXME: parsed, but unused. 1920 if (ParseUnqualifiedId(Result.SS, false, true, true, ParsedType(), 1921 TemplateKWLoc, Result.Name)) { 1922 T.skipToEnd(); 1923 return true; 1924 } 1925 1926 if (T.consumeClose()) 1927 return true; 1928 1929 // Check if the symbol exists. 1930 switch (Actions.CheckMicrosoftIfExistsSymbol(getCurScope(), Result.KeywordLoc, 1931 Result.IsIfExists, Result.SS, 1932 Result.Name)) { 1933 case Sema::IER_Exists: 1934 Result.Behavior = Result.IsIfExists ? IEB_Parse : IEB_Skip; 1935 break; 1936 1937 case Sema::IER_DoesNotExist: 1938 Result.Behavior = !Result.IsIfExists ? IEB_Parse : IEB_Skip; 1939 break; 1940 1941 case Sema::IER_Dependent: 1942 Result.Behavior = IEB_Dependent; 1943 break; 1944 1945 case Sema::IER_Error: 1946 return true; 1947 } 1948 1949 return false; 1950 } 1951 1952 void Parser::ParseMicrosoftIfExistsExternalDeclaration() { 1953 IfExistsCondition Result; 1954 if (ParseMicrosoftIfExistsCondition(Result)) 1955 return; 1956 1957 BalancedDelimiterTracker Braces(*this, tok::l_brace); 1958 if (Braces.consumeOpen()) { 1959 Diag(Tok, diag::err_expected) << tok::l_brace; 1960 return; 1961 } 1962 1963 switch (Result.Behavior) { 1964 case IEB_Parse: 1965 // Parse declarations below. 1966 break; 1967 1968 case IEB_Dependent: 1969 llvm_unreachable("Cannot have a dependent external declaration"); 1970 1971 case IEB_Skip: 1972 Braces.skipToEnd(); 1973 return; 1974 } 1975 1976 // Parse the declarations. 1977 // FIXME: Support module import within __if_exists? 1978 while (Tok.isNot(tok::r_brace) && !isEofOrEom()) { 1979 ParsedAttributesWithRange attrs(AttrFactory); 1980 MaybeParseCXX11Attributes(attrs); 1981 MaybeParseMicrosoftAttributes(attrs); 1982 DeclGroupPtrTy Result = ParseExternalDeclaration(attrs); 1983 if (Result && !getCurScope()->getParent()) 1984 Actions.getASTConsumer().HandleTopLevelDecl(Result.get()); 1985 } 1986 Braces.consumeClose(); 1987 } 1988 1989 Parser::DeclGroupPtrTy Parser::ParseModuleImport(SourceLocation AtLoc) { 1990 assert(Tok.isObjCAtKeyword(tok::objc_import) && 1991 "Improper start to module import"); 1992 SourceLocation ImportLoc = ConsumeToken(); 1993 1994 SmallVector<std::pair<IdentifierInfo *, SourceLocation>, 2> Path; 1995 1996 // Parse the module path. 1997 do { 1998 if (!Tok.is(tok::identifier)) { 1999 if (Tok.is(tok::code_completion)) { 2000 Actions.CodeCompleteModuleImport(ImportLoc, Path); 2001 ConsumeCodeCompletionToken(); 2002 SkipUntil(tok::semi); 2003 return DeclGroupPtrTy(); 2004 } 2005 2006 Diag(Tok, diag::err_module_expected_ident); 2007 SkipUntil(tok::semi); 2008 return DeclGroupPtrTy(); 2009 } 2010 2011 // Record this part of the module path. 2012 Path.push_back(std::make_pair(Tok.getIdentifierInfo(), Tok.getLocation())); 2013 ConsumeToken(); 2014 2015 if (Tok.is(tok::period)) { 2016 ConsumeToken(); 2017 continue; 2018 } 2019 2020 break; 2021 } while (true); 2022 2023 if (PP.hadModuleLoaderFatalFailure()) { 2024 // With a fatal failure in the module loader, we abort parsing. 2025 cutOffParsing(); 2026 return DeclGroupPtrTy(); 2027 } 2028 2029 DeclResult Import = Actions.ActOnModuleImport(AtLoc, ImportLoc, Path); 2030 ExpectAndConsumeSemi(diag::err_module_expected_semi); 2031 if (Import.isInvalid()) 2032 return DeclGroupPtrTy(); 2033 2034 return Actions.ConvertDeclToDeclGroup(Import.get()); 2035 } 2036 2037 bool BalancedDelimiterTracker::diagnoseOverflow() { 2038 P.Diag(P.Tok, diag::err_bracket_depth_exceeded) 2039 << P.getLangOpts().BracketDepth; 2040 P.Diag(P.Tok, diag::note_bracket_depth); 2041 P.cutOffParsing(); 2042 return true; 2043 } 2044 2045 bool BalancedDelimiterTracker::expectAndConsume(unsigned DiagID, 2046 const char *Msg, 2047 tok::TokenKind SkipToTok) { 2048 LOpen = P.Tok.getLocation(); 2049 if (P.ExpectAndConsume(Kind, DiagID, Msg)) { 2050 if (SkipToTok != tok::unknown) 2051 P.SkipUntil(SkipToTok, Parser::StopAtSemi); 2052 return true; 2053 } 2054 2055 if (getDepth() < MaxDepth) 2056 return false; 2057 2058 return diagnoseOverflow(); 2059 } 2060 2061 bool BalancedDelimiterTracker::diagnoseMissingClose() { 2062 assert(!P.Tok.is(Close) && "Should have consumed closing delimiter"); 2063 2064 P.Diag(P.Tok, diag::err_expected) << Close; 2065 P.Diag(LOpen, diag::note_matching) << Kind; 2066 2067 // If we're not already at some kind of closing bracket, skip to our closing 2068 // token. 2069 if (P.Tok.isNot(tok::r_paren) && P.Tok.isNot(tok::r_brace) && 2070 P.Tok.isNot(tok::r_square) && 2071 P.SkipUntil(Close, FinalToken, 2072 Parser::StopAtSemi | Parser::StopBeforeMatch) && 2073 P.Tok.is(Close)) 2074 LClose = P.ConsumeAnyToken(); 2075 return true; 2076 } 2077 2078 void BalancedDelimiterTracker::skipToEnd() { 2079 P.SkipUntil(Close, Parser::StopBeforeMatch); 2080 consumeClose(); 2081 } 2082