1 //===--- Parser.h - C Language Parser ---------------------------*- C++ -*-===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 // 9 // This file defines the Parser interface. 10 // 11 //===----------------------------------------------------------------------===// 12 13 #ifndef LLVM_CLANG_PARSE_PARSER_H 14 #define LLVM_CLANG_PARSE_PARSER_H 15 16 #include "clang/AST/Availability.h" 17 #include "clang/Basic/BitmaskEnum.h" 18 #include "clang/Basic/OpenMPKinds.h" 19 #include "clang/Basic/OperatorPrecedence.h" 20 #include "clang/Basic/Specifiers.h" 21 #include "clang/Lex/CodeCompletionHandler.h" 22 #include "clang/Lex/Preprocessor.h" 23 #include "clang/Sema/DeclSpec.h" 24 #include "clang/Sema/Sema.h" 25 #include "llvm/ADT/SmallVector.h" 26 #include "llvm/Frontend/OpenMP/OMPContext.h" 27 #include "llvm/Support/Compiler.h" 28 #include "llvm/Support/PrettyStackTrace.h" 29 #include "llvm/Support/SaveAndRestore.h" 30 #include <memory> 31 #include <stack> 32 33 namespace clang { 34 class PragmaHandler; 35 class Scope; 36 class BalancedDelimiterTracker; 37 class CorrectionCandidateCallback; 38 class DeclGroupRef; 39 class DiagnosticBuilder; 40 struct LoopHint; 41 class Parser; 42 class ParsingDeclRAIIObject; 43 class ParsingDeclSpec; 44 class ParsingDeclarator; 45 class ParsingFieldDeclarator; 46 class ColonProtectionRAIIObject; 47 class InMessageExpressionRAIIObject; 48 class PoisonSEHIdentifiersRAIIObject; 49 class OMPClause; 50 class ObjCTypeParamList; 51 struct OMPTraitProperty; 52 struct OMPTraitSelector; 53 struct OMPTraitSet; 54 class OMPTraitInfo; 55 56 /// Parser - This implements a parser for the C family of languages. After 57 /// parsing units of the grammar, productions are invoked to handle whatever has 58 /// been read. 59 /// 60 class Parser : public CodeCompletionHandler { 61 friend class ColonProtectionRAIIObject; 62 friend class ParsingOpenMPDirectiveRAII; 63 friend class InMessageExpressionRAIIObject; 64 friend class PoisonSEHIdentifiersRAIIObject; 65 friend class ObjCDeclContextSwitch; 66 friend class ParenBraceBracketBalancer; 67 friend class BalancedDelimiterTracker; 68 69 Preprocessor &PP; 70 71 /// Tok - The current token we are peeking ahead. All parsing methods assume 72 /// that this is valid. 73 Token Tok; 74 75 // PrevTokLocation - The location of the token we previously 76 // consumed. This token is used for diagnostics where we expected to 77 // see a token following another token (e.g., the ';' at the end of 78 // a statement). 79 SourceLocation PrevTokLocation; 80 81 /// Tracks an expected type for the current token when parsing an expression. 82 /// Used by code completion for ranking. 83 PreferredTypeBuilder PreferredType; 84 85 unsigned short ParenCount = 0, BracketCount = 0, BraceCount = 0; 86 unsigned short MisplacedModuleBeginCount = 0; 87 88 /// Actions - These are the callbacks we invoke as we parse various constructs 89 /// in the file. 90 Sema &Actions; 91 92 DiagnosticsEngine &Diags; 93 94 /// ScopeCache - Cache scopes to reduce malloc traffic. 95 enum { ScopeCacheSize = 16 }; 96 unsigned NumCachedScopes; 97 Scope *ScopeCache[ScopeCacheSize]; 98 99 /// Identifiers used for SEH handling in Borland. These are only 100 /// allowed in particular circumstances 101 // __except block 102 IdentifierInfo *Ident__exception_code, 103 *Ident___exception_code, 104 *Ident_GetExceptionCode; 105 // __except filter expression 106 IdentifierInfo *Ident__exception_info, 107 *Ident___exception_info, 108 *Ident_GetExceptionInfo; 109 // __finally 110 IdentifierInfo *Ident__abnormal_termination, 111 *Ident___abnormal_termination, 112 *Ident_AbnormalTermination; 113 114 /// Contextual keywords for Microsoft extensions. 115 IdentifierInfo *Ident__except; 116 mutable IdentifierInfo *Ident_sealed; 117 118 /// Ident_super - IdentifierInfo for "super", to support fast 119 /// comparison. 120 IdentifierInfo *Ident_super; 121 /// Ident_vector, Ident_bool, Ident_Bool - cached IdentifierInfos for "vector" 122 /// and "bool" fast comparison. Only present if AltiVec or ZVector are 123 /// enabled. 124 IdentifierInfo *Ident_vector; 125 IdentifierInfo *Ident_bool; 126 IdentifierInfo *Ident_Bool; 127 /// Ident_pixel - cached IdentifierInfos for "pixel" fast comparison. 128 /// Only present if AltiVec enabled. 129 IdentifierInfo *Ident_pixel; 130 131 /// Objective-C contextual keywords. 132 IdentifierInfo *Ident_instancetype; 133 134 /// Identifier for "introduced". 135 IdentifierInfo *Ident_introduced; 136 137 /// Identifier for "deprecated". 138 IdentifierInfo *Ident_deprecated; 139 140 /// Identifier for "obsoleted". 141 IdentifierInfo *Ident_obsoleted; 142 143 /// Identifier for "unavailable". 144 IdentifierInfo *Ident_unavailable; 145 146 /// Identifier for "message". 147 IdentifierInfo *Ident_message; 148 149 /// Identifier for "strict". 150 IdentifierInfo *Ident_strict; 151 152 /// Identifier for "replacement". 153 IdentifierInfo *Ident_replacement; 154 155 /// Identifiers used by the 'external_source_symbol' attribute. 156 IdentifierInfo *Ident_language, *Ident_defined_in, 157 *Ident_generated_declaration; 158 159 /// C++11 contextual keywords. 160 mutable IdentifierInfo *Ident_final; 161 mutable IdentifierInfo *Ident_GNU_final; 162 mutable IdentifierInfo *Ident_override; 163 164 // C++2a contextual keywords. 165 mutable IdentifierInfo *Ident_import; 166 mutable IdentifierInfo *Ident_module; 167 168 // C++ type trait keywords that can be reverted to identifiers and still be 169 // used as type traits. 170 llvm::SmallDenseMap<IdentifierInfo *, tok::TokenKind> RevertibleTypeTraits; 171 172 std::unique_ptr<PragmaHandler> AlignHandler; 173 std::unique_ptr<PragmaHandler> GCCVisibilityHandler; 174 std::unique_ptr<PragmaHandler> OptionsHandler; 175 std::unique_ptr<PragmaHandler> PackHandler; 176 std::unique_ptr<PragmaHandler> MSStructHandler; 177 std::unique_ptr<PragmaHandler> UnusedHandler; 178 std::unique_ptr<PragmaHandler> WeakHandler; 179 std::unique_ptr<PragmaHandler> RedefineExtnameHandler; 180 std::unique_ptr<PragmaHandler> FPContractHandler; 181 std::unique_ptr<PragmaHandler> OpenCLExtensionHandler; 182 std::unique_ptr<PragmaHandler> OpenMPHandler; 183 std::unique_ptr<PragmaHandler> PCSectionHandler; 184 std::unique_ptr<PragmaHandler> MSCommentHandler; 185 std::unique_ptr<PragmaHandler> MSDetectMismatchHandler; 186 std::unique_ptr<PragmaHandler> FloatControlHandler; 187 std::unique_ptr<PragmaHandler> MSPointersToMembers; 188 std::unique_ptr<PragmaHandler> MSVtorDisp; 189 std::unique_ptr<PragmaHandler> MSInitSeg; 190 std::unique_ptr<PragmaHandler> MSDataSeg; 191 std::unique_ptr<PragmaHandler> MSBSSSeg; 192 std::unique_ptr<PragmaHandler> MSConstSeg; 193 std::unique_ptr<PragmaHandler> MSCodeSeg; 194 std::unique_ptr<PragmaHandler> MSSection; 195 std::unique_ptr<PragmaHandler> MSRuntimeChecks; 196 std::unique_ptr<PragmaHandler> MSIntrinsic; 197 std::unique_ptr<PragmaHandler> MSOptimize; 198 std::unique_ptr<PragmaHandler> CUDAForceHostDeviceHandler; 199 std::unique_ptr<PragmaHandler> OptimizeHandler; 200 std::unique_ptr<PragmaHandler> LoopHintHandler; 201 std::unique_ptr<PragmaHandler> UnrollHintHandler; 202 std::unique_ptr<PragmaHandler> NoUnrollHintHandler; 203 std::unique_ptr<PragmaHandler> UnrollAndJamHintHandler; 204 std::unique_ptr<PragmaHandler> NoUnrollAndJamHintHandler; 205 std::unique_ptr<PragmaHandler> FPHandler; 206 std::unique_ptr<PragmaHandler> STDCFenvAccessHandler; 207 std::unique_ptr<PragmaHandler> STDCFenvRoundHandler; 208 std::unique_ptr<PragmaHandler> STDCCXLIMITHandler; 209 std::unique_ptr<PragmaHandler> STDCUnknownHandler; 210 std::unique_ptr<PragmaHandler> AttributePragmaHandler; 211 std::unique_ptr<PragmaHandler> MaxTokensHerePragmaHandler; 212 std::unique_ptr<PragmaHandler> MaxTokensTotalPragmaHandler; 213 214 std::unique_ptr<CommentHandler> CommentSemaHandler; 215 216 /// Whether the '>' token acts as an operator or not. This will be 217 /// true except when we are parsing an expression within a C++ 218 /// template argument list, where the '>' closes the template 219 /// argument list. 220 bool GreaterThanIsOperator; 221 222 /// ColonIsSacred - When this is false, we aggressively try to recover from 223 /// code like "foo : bar" as if it were a typo for "foo :: bar". This is not 224 /// safe in case statements and a few other things. This is managed by the 225 /// ColonProtectionRAIIObject RAII object. 226 bool ColonIsSacred; 227 228 /// Parsing OpenMP directive mode. 229 bool OpenMPDirectiveParsing = false; 230 231 /// When true, we are directly inside an Objective-C message 232 /// send expression. 233 /// 234 /// This is managed by the \c InMessageExpressionRAIIObject class, and 235 /// should not be set directly. 236 bool InMessageExpression; 237 238 /// Gets set to true after calling ProduceSignatureHelp, it is for a 239 /// workaround to make sure ProduceSignatureHelp is only called at the deepest 240 /// function call. 241 bool CalledSignatureHelp = false; 242 243 /// The "depth" of the template parameters currently being parsed. 244 unsigned TemplateParameterDepth; 245 246 /// Current kind of OpenMP clause 247 OpenMPClauseKind OMPClauseKind = llvm::omp::OMPC_unknown; 248 249 /// RAII class that manages the template parameter depth. 250 class TemplateParameterDepthRAII { 251 unsigned &Depth; 252 unsigned AddedLevels; 253 public: TemplateParameterDepthRAII(unsigned & Depth)254 explicit TemplateParameterDepthRAII(unsigned &Depth) 255 : Depth(Depth), AddedLevels(0) {} 256 ~TemplateParameterDepthRAII()257 ~TemplateParameterDepthRAII() { 258 Depth -= AddedLevels; 259 } 260 261 void operator++() { 262 ++Depth; 263 ++AddedLevels; 264 } addDepth(unsigned D)265 void addDepth(unsigned D) { 266 Depth += D; 267 AddedLevels += D; 268 } setAddedDepth(unsigned D)269 void setAddedDepth(unsigned D) { 270 Depth = Depth - AddedLevels + D; 271 AddedLevels = D; 272 } 273 getDepth()274 unsigned getDepth() const { return Depth; } getOriginalDepth()275 unsigned getOriginalDepth() const { return Depth - AddedLevels; } 276 }; 277 278 /// Factory object for creating ParsedAttr objects. 279 AttributeFactory AttrFactory; 280 281 /// Gathers and cleans up TemplateIdAnnotations when parsing of a 282 /// top-level declaration is finished. 283 SmallVector<TemplateIdAnnotation *, 16> TemplateIds; 284 MaybeDestroyTemplateIds()285 void MaybeDestroyTemplateIds() { 286 if (!TemplateIds.empty() && 287 (Tok.is(tok::eof) || !PP.mightHavePendingAnnotationTokens())) 288 DestroyTemplateIds(); 289 } 290 void DestroyTemplateIds(); 291 292 /// RAII object to destroy TemplateIdAnnotations where possible, from a 293 /// likely-good position during parsing. 294 struct DestroyTemplateIdAnnotationsRAIIObj { 295 Parser &Self; 296 DestroyTemplateIdAnnotationsRAIIObjDestroyTemplateIdAnnotationsRAIIObj297 DestroyTemplateIdAnnotationsRAIIObj(Parser &Self) : Self(Self) {} ~DestroyTemplateIdAnnotationsRAIIObjDestroyTemplateIdAnnotationsRAIIObj298 ~DestroyTemplateIdAnnotationsRAIIObj() { Self.MaybeDestroyTemplateIds(); } 299 }; 300 301 /// Identifiers which have been declared within a tentative parse. 302 SmallVector<IdentifierInfo *, 8> TentativelyDeclaredIdentifiers; 303 304 /// Tracker for '<' tokens that might have been intended to be treated as an 305 /// angle bracket instead of a less-than comparison. 306 /// 307 /// This happens when the user intends to form a template-id, but typoes the 308 /// template-name or forgets a 'template' keyword for a dependent template 309 /// name. 310 /// 311 /// We track these locations from the point where we see a '<' with a 312 /// name-like expression on its left until we see a '>' or '>>' that might 313 /// match it. 314 struct AngleBracketTracker { 315 /// Flags used to rank candidate template names when there is more than one 316 /// '<' in a scope. 317 enum Priority : unsigned short { 318 /// A non-dependent name that is a potential typo for a template name. 319 PotentialTypo = 0x0, 320 /// A dependent name that might instantiate to a template-name. 321 DependentName = 0x2, 322 323 /// A space appears before the '<' token. 324 SpaceBeforeLess = 0x0, 325 /// No space before the '<' token 326 NoSpaceBeforeLess = 0x1, 327 328 LLVM_MARK_AS_BITMASK_ENUM(/*LargestValue*/ DependentName) 329 }; 330 331 struct Loc { 332 Expr *TemplateName; 333 SourceLocation LessLoc; 334 AngleBracketTracker::Priority Priority; 335 unsigned short ParenCount, BracketCount, BraceCount; 336 isActiveAngleBracketTracker::Loc337 bool isActive(Parser &P) const { 338 return P.ParenCount == ParenCount && P.BracketCount == BracketCount && 339 P.BraceCount == BraceCount; 340 } 341 isActiveOrNestedAngleBracketTracker::Loc342 bool isActiveOrNested(Parser &P) const { 343 return isActive(P) || P.ParenCount > ParenCount || 344 P.BracketCount > BracketCount || P.BraceCount > BraceCount; 345 } 346 }; 347 348 SmallVector<Loc, 8> Locs; 349 350 /// Add an expression that might have been intended to be a template name. 351 /// In the case of ambiguity, we arbitrarily select the innermost such 352 /// expression, for example in 'foo < bar < baz', 'bar' is the current 353 /// candidate. No attempt is made to track that 'foo' is also a candidate 354 /// for the case where we see a second suspicious '>' token. addAngleBracketTracker355 void add(Parser &P, Expr *TemplateName, SourceLocation LessLoc, 356 Priority Prio) { 357 if (!Locs.empty() && Locs.back().isActive(P)) { 358 if (Locs.back().Priority <= Prio) { 359 Locs.back().TemplateName = TemplateName; 360 Locs.back().LessLoc = LessLoc; 361 Locs.back().Priority = Prio; 362 } 363 } else { 364 Locs.push_back({TemplateName, LessLoc, Prio, 365 P.ParenCount, P.BracketCount, P.BraceCount}); 366 } 367 } 368 369 /// Mark the current potential missing template location as having been 370 /// handled (this happens if we pass a "corresponding" '>' or '>>' token 371 /// or leave a bracket scope). clearAngleBracketTracker372 void clear(Parser &P) { 373 while (!Locs.empty() && Locs.back().isActiveOrNested(P)) 374 Locs.pop_back(); 375 } 376 377 /// Get the current enclosing expression that might hve been intended to be 378 /// a template name. getCurrentAngleBracketTracker379 Loc *getCurrent(Parser &P) { 380 if (!Locs.empty() && Locs.back().isActive(P)) 381 return &Locs.back(); 382 return nullptr; 383 } 384 }; 385 386 AngleBracketTracker AngleBrackets; 387 388 IdentifierInfo *getSEHExceptKeyword(); 389 390 /// True if we are within an Objective-C container while parsing C-like decls. 391 /// 392 /// This is necessary because Sema thinks we have left the container 393 /// to parse the C-like decls, meaning Actions.getObjCDeclContext() will 394 /// be NULL. 395 bool ParsingInObjCContainer; 396 397 /// Whether to skip parsing of function bodies. 398 /// 399 /// This option can be used, for example, to speed up searches for 400 /// declarations/definitions when indexing. 401 bool SkipFunctionBodies; 402 403 /// The location of the expression statement that is being parsed right now. 404 /// Used to determine if an expression that is being parsed is a statement or 405 /// just a regular sub-expression. 406 SourceLocation ExprStatementTokLoc; 407 408 /// Flags describing a context in which we're parsing a statement. 409 enum class ParsedStmtContext { 410 /// This context permits declarations in language modes where declarations 411 /// are not statements. 412 AllowDeclarationsInC = 0x1, 413 /// This context permits standalone OpenMP directives. 414 AllowStandaloneOpenMPDirectives = 0x2, 415 /// This context is at the top level of a GNU statement expression. 416 InStmtExpr = 0x4, 417 418 /// The context of a regular substatement. 419 SubStmt = 0, 420 /// The context of a compound-statement. 421 Compound = AllowDeclarationsInC | AllowStandaloneOpenMPDirectives, 422 423 LLVM_MARK_AS_BITMASK_ENUM(InStmtExpr) 424 }; 425 426 /// Act on an expression statement that might be the last statement in a 427 /// GNU statement expression. Checks whether we are actually at the end of 428 /// a statement expression and builds a suitable expression statement. 429 StmtResult handleExprStmt(ExprResult E, ParsedStmtContext StmtCtx); 430 431 public: 432 Parser(Preprocessor &PP, Sema &Actions, bool SkipFunctionBodies); 433 ~Parser() override; 434 getLangOpts()435 const LangOptions &getLangOpts() const { return PP.getLangOpts(); } getTargetInfo()436 const TargetInfo &getTargetInfo() const { return PP.getTargetInfo(); } getPreprocessor()437 Preprocessor &getPreprocessor() const { return PP; } getActions()438 Sema &getActions() const { return Actions; } getAttrFactory()439 AttributeFactory &getAttrFactory() { return AttrFactory; } 440 getCurToken()441 const Token &getCurToken() const { return Tok; } getCurScope()442 Scope *getCurScope() const { return Actions.getCurScope(); } incrementMSManglingNumber()443 void incrementMSManglingNumber() const { 444 return Actions.incrementMSManglingNumber(); 445 } 446 getObjCDeclContext()447 Decl *getObjCDeclContext() const { return Actions.getObjCDeclContext(); } 448 449 // Type forwarding. All of these are statically 'void*', but they may all be 450 // different actual classes based on the actions in place. 451 typedef OpaquePtr<DeclGroupRef> DeclGroupPtrTy; 452 typedef OpaquePtr<TemplateName> TemplateTy; 453 454 typedef SmallVector<TemplateParameterList *, 4> TemplateParameterLists; 455 456 typedef Sema::FullExprArg FullExprArg; 457 458 // Parsing methods. 459 460 /// Initialize - Warm up the parser. 461 /// 462 void Initialize(); 463 464 /// Parse the first top-level declaration in a translation unit. 465 bool ParseFirstTopLevelDecl(DeclGroupPtrTy &Result); 466 467 /// ParseTopLevelDecl - Parse one top-level declaration. Returns true if 468 /// the EOF was encountered. 469 bool ParseTopLevelDecl(DeclGroupPtrTy &Result, bool IsFirstDecl = false); ParseTopLevelDecl()470 bool ParseTopLevelDecl() { 471 DeclGroupPtrTy Result; 472 return ParseTopLevelDecl(Result); 473 } 474 475 /// ConsumeToken - Consume the current 'peek token' and lex the next one. 476 /// This does not work with special tokens: string literals, code completion, 477 /// annotation tokens and balanced tokens must be handled using the specific 478 /// consume methods. 479 /// Returns the location of the consumed token. ConsumeToken()480 SourceLocation ConsumeToken() { 481 assert(!isTokenSpecial() && 482 "Should consume special tokens with Consume*Token"); 483 PrevTokLocation = Tok.getLocation(); 484 PP.Lex(Tok); 485 return PrevTokLocation; 486 } 487 TryConsumeToken(tok::TokenKind Expected)488 bool TryConsumeToken(tok::TokenKind Expected) { 489 if (Tok.isNot(Expected)) 490 return false; 491 assert(!isTokenSpecial() && 492 "Should consume special tokens with Consume*Token"); 493 PrevTokLocation = Tok.getLocation(); 494 PP.Lex(Tok); 495 return true; 496 } 497 TryConsumeToken(tok::TokenKind Expected,SourceLocation & Loc)498 bool TryConsumeToken(tok::TokenKind Expected, SourceLocation &Loc) { 499 if (!TryConsumeToken(Expected)) 500 return false; 501 Loc = PrevTokLocation; 502 return true; 503 } 504 505 /// ConsumeAnyToken - Dispatch to the right Consume* method based on the 506 /// current token type. This should only be used in cases where the type of 507 /// the token really isn't known, e.g. in error recovery. 508 SourceLocation ConsumeAnyToken(bool ConsumeCodeCompletionTok = false) { 509 if (isTokenParen()) 510 return ConsumeParen(); 511 if (isTokenBracket()) 512 return ConsumeBracket(); 513 if (isTokenBrace()) 514 return ConsumeBrace(); 515 if (isTokenStringLiteral()) 516 return ConsumeStringToken(); 517 if (Tok.is(tok::code_completion)) 518 return ConsumeCodeCompletionTok ? ConsumeCodeCompletionToken() 519 : handleUnexpectedCodeCompletionToken(); 520 if (Tok.isAnnotation()) 521 return ConsumeAnnotationToken(); 522 return ConsumeToken(); 523 } 524 525 getEndOfPreviousToken()526 SourceLocation getEndOfPreviousToken() { 527 return PP.getLocForEndOfToken(PrevTokLocation); 528 } 529 530 /// Retrieve the underscored keyword (_Nonnull, _Nullable) that corresponds 531 /// to the given nullability kind. getNullabilityKeyword(NullabilityKind nullability)532 IdentifierInfo *getNullabilityKeyword(NullabilityKind nullability) { 533 return Actions.getNullabilityKeyword(nullability); 534 } 535 536 private: 537 //===--------------------------------------------------------------------===// 538 // Low-Level token peeking and consumption methods. 539 // 540 541 /// isTokenParen - Return true if the cur token is '(' or ')'. isTokenParen()542 bool isTokenParen() const { 543 return Tok.isOneOf(tok::l_paren, tok::r_paren); 544 } 545 /// isTokenBracket - Return true if the cur token is '[' or ']'. isTokenBracket()546 bool isTokenBracket() const { 547 return Tok.isOneOf(tok::l_square, tok::r_square); 548 } 549 /// isTokenBrace - Return true if the cur token is '{' or '}'. isTokenBrace()550 bool isTokenBrace() const { 551 return Tok.isOneOf(tok::l_brace, tok::r_brace); 552 } 553 /// isTokenStringLiteral - True if this token is a string-literal. isTokenStringLiteral()554 bool isTokenStringLiteral() const { 555 return tok::isStringLiteral(Tok.getKind()); 556 } 557 /// isTokenSpecial - True if this token requires special consumption methods. isTokenSpecial()558 bool isTokenSpecial() const { 559 return isTokenStringLiteral() || isTokenParen() || isTokenBracket() || 560 isTokenBrace() || Tok.is(tok::code_completion) || Tok.isAnnotation(); 561 } 562 563 /// Returns true if the current token is '=' or is a type of '='. 564 /// For typos, give a fixit to '=' 565 bool isTokenEqualOrEqualTypo(); 566 567 /// Return the current token to the token stream and make the given 568 /// token the current token. UnconsumeToken(Token & Consumed)569 void UnconsumeToken(Token &Consumed) { 570 Token Next = Tok; 571 PP.EnterToken(Consumed, /*IsReinject*/true); 572 PP.Lex(Tok); 573 PP.EnterToken(Next, /*IsReinject*/true); 574 } 575 ConsumeAnnotationToken()576 SourceLocation ConsumeAnnotationToken() { 577 assert(Tok.isAnnotation() && "wrong consume method"); 578 SourceLocation Loc = Tok.getLocation(); 579 PrevTokLocation = Tok.getAnnotationEndLoc(); 580 PP.Lex(Tok); 581 return Loc; 582 } 583 584 /// ConsumeParen - This consume method keeps the paren count up-to-date. 585 /// ConsumeParen()586 SourceLocation ConsumeParen() { 587 assert(isTokenParen() && "wrong consume method"); 588 if (Tok.getKind() == tok::l_paren) 589 ++ParenCount; 590 else if (ParenCount) { 591 AngleBrackets.clear(*this); 592 --ParenCount; // Don't let unbalanced )'s drive the count negative. 593 } 594 PrevTokLocation = Tok.getLocation(); 595 PP.Lex(Tok); 596 return PrevTokLocation; 597 } 598 599 /// ConsumeBracket - This consume method keeps the bracket count up-to-date. 600 /// ConsumeBracket()601 SourceLocation ConsumeBracket() { 602 assert(isTokenBracket() && "wrong consume method"); 603 if (Tok.getKind() == tok::l_square) 604 ++BracketCount; 605 else if (BracketCount) { 606 AngleBrackets.clear(*this); 607 --BracketCount; // Don't let unbalanced ]'s drive the count negative. 608 } 609 610 PrevTokLocation = Tok.getLocation(); 611 PP.Lex(Tok); 612 return PrevTokLocation; 613 } 614 615 /// ConsumeBrace - This consume method keeps the brace count up-to-date. 616 /// ConsumeBrace()617 SourceLocation ConsumeBrace() { 618 assert(isTokenBrace() && "wrong consume method"); 619 if (Tok.getKind() == tok::l_brace) 620 ++BraceCount; 621 else if (BraceCount) { 622 AngleBrackets.clear(*this); 623 --BraceCount; // Don't let unbalanced }'s drive the count negative. 624 } 625 626 PrevTokLocation = Tok.getLocation(); 627 PP.Lex(Tok); 628 return PrevTokLocation; 629 } 630 631 /// ConsumeStringToken - Consume the current 'peek token', lexing a new one 632 /// and returning the token kind. This method is specific to strings, as it 633 /// handles string literal concatenation, as per C99 5.1.1.2, translation 634 /// phase #6. ConsumeStringToken()635 SourceLocation ConsumeStringToken() { 636 assert(isTokenStringLiteral() && 637 "Should only consume string literals with this method"); 638 PrevTokLocation = Tok.getLocation(); 639 PP.Lex(Tok); 640 return PrevTokLocation; 641 } 642 643 /// Consume the current code-completion token. 644 /// 645 /// This routine can be called to consume the code-completion token and 646 /// continue processing in special cases where \c cutOffParsing() isn't 647 /// desired, such as token caching or completion with lookahead. ConsumeCodeCompletionToken()648 SourceLocation ConsumeCodeCompletionToken() { 649 assert(Tok.is(tok::code_completion)); 650 PrevTokLocation = Tok.getLocation(); 651 PP.Lex(Tok); 652 return PrevTokLocation; 653 } 654 655 ///\ brief When we are consuming a code-completion token without having 656 /// matched specific position in the grammar, provide code-completion results 657 /// based on context. 658 /// 659 /// \returns the source location of the code-completion token. 660 SourceLocation handleUnexpectedCodeCompletionToken(); 661 662 /// Abruptly cut off parsing; mainly used when we have reached the 663 /// code-completion point. cutOffParsing()664 void cutOffParsing() { 665 if (PP.isCodeCompletionEnabled()) 666 PP.setCodeCompletionReached(); 667 // Cut off parsing by acting as if we reached the end-of-file. 668 Tok.setKind(tok::eof); 669 } 670 671 /// Determine if we're at the end of the file or at a transition 672 /// between modules. isEofOrEom()673 bool isEofOrEom() { 674 tok::TokenKind Kind = Tok.getKind(); 675 return Kind == tok::eof || Kind == tok::annot_module_begin || 676 Kind == tok::annot_module_end || Kind == tok::annot_module_include; 677 } 678 679 /// Checks if the \p Level is valid for use in a fold expression. 680 bool isFoldOperator(prec::Level Level) const; 681 682 /// Checks if the \p Kind is a valid operator for fold expressions. 683 bool isFoldOperator(tok::TokenKind Kind) const; 684 685 /// Initialize all pragma handlers. 686 void initializePragmaHandlers(); 687 688 /// Destroy and reset all pragma handlers. 689 void resetPragmaHandlers(); 690 691 /// Handle the annotation token produced for #pragma unused(...) 692 void HandlePragmaUnused(); 693 694 /// Handle the annotation token produced for 695 /// #pragma GCC visibility... 696 void HandlePragmaVisibility(); 697 698 /// Handle the annotation token produced for 699 /// #pragma pack... 700 void HandlePragmaPack(); 701 702 /// Handle the annotation token produced for 703 /// #pragma ms_struct... 704 void HandlePragmaMSStruct(); 705 706 void HandlePragmaMSPointersToMembers(); 707 708 void HandlePragmaMSVtorDisp(); 709 710 void HandlePragmaMSPragma(); 711 bool HandlePragmaMSSection(StringRef PragmaName, 712 SourceLocation PragmaLocation); 713 bool HandlePragmaMSSegment(StringRef PragmaName, 714 SourceLocation PragmaLocation); 715 bool HandlePragmaMSInitSeg(StringRef PragmaName, 716 SourceLocation PragmaLocation); 717 718 /// Handle the annotation token produced for 719 /// #pragma align... 720 void HandlePragmaAlign(); 721 722 /// Handle the annotation token produced for 723 /// #pragma clang __debug dump... 724 void HandlePragmaDump(); 725 726 /// Handle the annotation token produced for 727 /// #pragma weak id... 728 void HandlePragmaWeak(); 729 730 /// Handle the annotation token produced for 731 /// #pragma weak id = id... 732 void HandlePragmaWeakAlias(); 733 734 /// Handle the annotation token produced for 735 /// #pragma redefine_extname... 736 void HandlePragmaRedefineExtname(); 737 738 /// Handle the annotation token produced for 739 /// #pragma STDC FP_CONTRACT... 740 void HandlePragmaFPContract(); 741 742 /// Handle the annotation token produced for 743 /// #pragma STDC FENV_ACCESS... 744 void HandlePragmaFEnvAccess(); 745 746 /// Handle the annotation token produced for 747 /// #pragma STDC FENV_ROUND... 748 void HandlePragmaFEnvRound(); 749 750 /// Handle the annotation token produced for 751 /// #pragma float_control 752 void HandlePragmaFloatControl(); 753 754 /// \brief Handle the annotation token produced for 755 /// #pragma clang fp ... 756 void HandlePragmaFP(); 757 758 /// Handle the annotation token produced for 759 /// #pragma OPENCL EXTENSION... 760 void HandlePragmaOpenCLExtension(); 761 762 /// Handle the annotation token produced for 763 /// #pragma clang __debug captured 764 StmtResult HandlePragmaCaptured(); 765 766 /// Handle the annotation token produced for 767 /// #pragma clang loop and #pragma unroll. 768 bool HandlePragmaLoopHint(LoopHint &Hint); 769 770 bool ParsePragmaAttributeSubjectMatchRuleSet( 771 attr::ParsedSubjectMatchRuleSet &SubjectMatchRules, 772 SourceLocation &AnyLoc, SourceLocation &LastMatchRuleEndLoc); 773 774 void HandlePragmaAttribute(); 775 776 /// GetLookAheadToken - This peeks ahead N tokens and returns that token 777 /// without consuming any tokens. LookAhead(0) returns 'Tok', LookAhead(1) 778 /// returns the token after Tok, etc. 779 /// 780 /// Note that this differs from the Preprocessor's LookAhead method, because 781 /// the Parser always has one token lexed that the preprocessor doesn't. 782 /// GetLookAheadToken(unsigned N)783 const Token &GetLookAheadToken(unsigned N) { 784 if (N == 0 || Tok.is(tok::eof)) return Tok; 785 return PP.LookAhead(N-1); 786 } 787 788 public: 789 /// NextToken - This peeks ahead one token and returns it without 790 /// consuming it. NextToken()791 const Token &NextToken() { 792 return PP.LookAhead(0); 793 } 794 795 /// getTypeAnnotation - Read a parsed type out of an annotation token. getTypeAnnotation(const Token & Tok)796 static TypeResult getTypeAnnotation(const Token &Tok) { 797 if (!Tok.getAnnotationValue()) 798 return TypeError(); 799 return ParsedType::getFromOpaquePtr(Tok.getAnnotationValue()); 800 } 801 802 private: setTypeAnnotation(Token & Tok,TypeResult T)803 static void setTypeAnnotation(Token &Tok, TypeResult T) { 804 assert((T.isInvalid() || T.get()) && 805 "produced a valid-but-null type annotation?"); 806 Tok.setAnnotationValue(T.isInvalid() ? nullptr : T.get().getAsOpaquePtr()); 807 } 808 getNonTypeAnnotation(const Token & Tok)809 static NamedDecl *getNonTypeAnnotation(const Token &Tok) { 810 return static_cast<NamedDecl*>(Tok.getAnnotationValue()); 811 } 812 setNonTypeAnnotation(Token & Tok,NamedDecl * ND)813 static void setNonTypeAnnotation(Token &Tok, NamedDecl *ND) { 814 Tok.setAnnotationValue(ND); 815 } 816 getIdentifierAnnotation(const Token & Tok)817 static IdentifierInfo *getIdentifierAnnotation(const Token &Tok) { 818 return static_cast<IdentifierInfo*>(Tok.getAnnotationValue()); 819 } 820 setIdentifierAnnotation(Token & Tok,IdentifierInfo * ND)821 static void setIdentifierAnnotation(Token &Tok, IdentifierInfo *ND) { 822 Tok.setAnnotationValue(ND); 823 } 824 825 /// Read an already-translated primary expression out of an annotation 826 /// token. getExprAnnotation(const Token & Tok)827 static ExprResult getExprAnnotation(const Token &Tok) { 828 return ExprResult::getFromOpaquePointer(Tok.getAnnotationValue()); 829 } 830 831 /// Set the primary expression corresponding to the given annotation 832 /// token. setExprAnnotation(Token & Tok,ExprResult ER)833 static void setExprAnnotation(Token &Tok, ExprResult ER) { 834 Tok.setAnnotationValue(ER.getAsOpaquePointer()); 835 } 836 837 public: 838 // If NeedType is true, then TryAnnotateTypeOrScopeToken will try harder to 839 // find a type name by attempting typo correction. 840 bool TryAnnotateTypeOrScopeToken(); 841 bool TryAnnotateTypeOrScopeTokenAfterScopeSpec(CXXScopeSpec &SS, 842 bool IsNewScope); 843 bool TryAnnotateCXXScopeToken(bool EnteringContext = false); 844 MightBeCXXScopeToken()845 bool MightBeCXXScopeToken() { 846 return Tok.is(tok::identifier) || Tok.is(tok::coloncolon) || 847 (Tok.is(tok::annot_template_id) && 848 NextToken().is(tok::coloncolon)) || 849 Tok.is(tok::kw_decltype) || Tok.is(tok::kw___super); 850 } 851 bool TryAnnotateOptionalCXXScopeToken(bool EnteringContext = false) { 852 return MightBeCXXScopeToken() && TryAnnotateCXXScopeToken(EnteringContext); 853 } 854 855 private: 856 enum AnnotatedNameKind { 857 /// Annotation has failed and emitted an error. 858 ANK_Error, 859 /// The identifier is a tentatively-declared name. 860 ANK_TentativeDecl, 861 /// The identifier is a template name. FIXME: Add an annotation for that. 862 ANK_TemplateName, 863 /// The identifier can't be resolved. 864 ANK_Unresolved, 865 /// Annotation was successful. 866 ANK_Success 867 }; 868 AnnotatedNameKind TryAnnotateName(CorrectionCandidateCallback *CCC = nullptr); 869 870 /// Push a tok::annot_cxxscope token onto the token stream. 871 void AnnotateScopeToken(CXXScopeSpec &SS, bool IsNewAnnotation); 872 873 /// TryAltiVecToken - Check for context-sensitive AltiVec identifier tokens, 874 /// replacing them with the non-context-sensitive keywords. This returns 875 /// true if the token was replaced. TryAltiVecToken(DeclSpec & DS,SourceLocation Loc,const char * & PrevSpec,unsigned & DiagID,bool & isInvalid)876 bool TryAltiVecToken(DeclSpec &DS, SourceLocation Loc, 877 const char *&PrevSpec, unsigned &DiagID, 878 bool &isInvalid) { 879 if (!getLangOpts().AltiVec && !getLangOpts().ZVector) 880 return false; 881 882 if (Tok.getIdentifierInfo() != Ident_vector && 883 Tok.getIdentifierInfo() != Ident_bool && 884 Tok.getIdentifierInfo() != Ident_Bool && 885 (!getLangOpts().AltiVec || Tok.getIdentifierInfo() != Ident_pixel)) 886 return false; 887 888 return TryAltiVecTokenOutOfLine(DS, Loc, PrevSpec, DiagID, isInvalid); 889 } 890 891 /// TryAltiVecVectorToken - Check for context-sensitive AltiVec vector 892 /// identifier token, replacing it with the non-context-sensitive __vector. 893 /// This returns true if the token was replaced. TryAltiVecVectorToken()894 bool TryAltiVecVectorToken() { 895 if ((!getLangOpts().AltiVec && !getLangOpts().ZVector) || 896 Tok.getIdentifierInfo() != Ident_vector) return false; 897 return TryAltiVecVectorTokenOutOfLine(); 898 } 899 900 bool TryAltiVecVectorTokenOutOfLine(); 901 bool TryAltiVecTokenOutOfLine(DeclSpec &DS, SourceLocation Loc, 902 const char *&PrevSpec, unsigned &DiagID, 903 bool &isInvalid); 904 905 /// Returns true if the current token is the identifier 'instancetype'. 906 /// 907 /// Should only be used in Objective-C language modes. isObjCInstancetype()908 bool isObjCInstancetype() { 909 assert(getLangOpts().ObjC); 910 if (Tok.isAnnotation()) 911 return false; 912 if (!Ident_instancetype) 913 Ident_instancetype = PP.getIdentifierInfo("instancetype"); 914 return Tok.getIdentifierInfo() == Ident_instancetype; 915 } 916 917 /// TryKeywordIdentFallback - For compatibility with system headers using 918 /// keywords as identifiers, attempt to convert the current token to an 919 /// identifier and optionally disable the keyword for the remainder of the 920 /// translation unit. This returns false if the token was not replaced, 921 /// otherwise emits a diagnostic and returns true. 922 bool TryKeywordIdentFallback(bool DisableKeyword); 923 924 /// Get the TemplateIdAnnotation from the token. 925 TemplateIdAnnotation *takeTemplateIdAnnotation(const Token &tok); 926 927 /// TentativeParsingAction - An object that is used as a kind of "tentative 928 /// parsing transaction". It gets instantiated to mark the token position and 929 /// after the token consumption is done, Commit() or Revert() is called to 930 /// either "commit the consumed tokens" or revert to the previously marked 931 /// token position. Example: 932 /// 933 /// TentativeParsingAction TPA(*this); 934 /// ConsumeToken(); 935 /// .... 936 /// TPA.Revert(); 937 /// 938 class TentativeParsingAction { 939 Parser &P; 940 PreferredTypeBuilder PrevPreferredType; 941 Token PrevTok; 942 size_t PrevTentativelyDeclaredIdentifierCount; 943 unsigned short PrevParenCount, PrevBracketCount, PrevBraceCount; 944 bool isActive; 945 946 public: TentativeParsingAction(Parser & p)947 explicit TentativeParsingAction(Parser &p) 948 : P(p), PrevPreferredType(P.PreferredType) { 949 PrevTok = P.Tok; 950 PrevTentativelyDeclaredIdentifierCount = 951 P.TentativelyDeclaredIdentifiers.size(); 952 PrevParenCount = P.ParenCount; 953 PrevBracketCount = P.BracketCount; 954 PrevBraceCount = P.BraceCount; 955 P.PP.EnableBacktrackAtThisPos(); 956 isActive = true; 957 } Commit()958 void Commit() { 959 assert(isActive && "Parsing action was finished!"); 960 P.TentativelyDeclaredIdentifiers.resize( 961 PrevTentativelyDeclaredIdentifierCount); 962 P.PP.CommitBacktrackedTokens(); 963 isActive = false; 964 } Revert()965 void Revert() { 966 assert(isActive && "Parsing action was finished!"); 967 P.PP.Backtrack(); 968 P.PreferredType = PrevPreferredType; 969 P.Tok = PrevTok; 970 P.TentativelyDeclaredIdentifiers.resize( 971 PrevTentativelyDeclaredIdentifierCount); 972 P.ParenCount = PrevParenCount; 973 P.BracketCount = PrevBracketCount; 974 P.BraceCount = PrevBraceCount; 975 isActive = false; 976 } ~TentativeParsingAction()977 ~TentativeParsingAction() { 978 assert(!isActive && "Forgot to call Commit or Revert!"); 979 } 980 }; 981 /// A TentativeParsingAction that automatically reverts in its destructor. 982 /// Useful for disambiguation parses that will always be reverted. 983 class RevertingTentativeParsingAction 984 : private Parser::TentativeParsingAction { 985 public: RevertingTentativeParsingAction(Parser & P)986 RevertingTentativeParsingAction(Parser &P) 987 : Parser::TentativeParsingAction(P) {} ~RevertingTentativeParsingAction()988 ~RevertingTentativeParsingAction() { Revert(); } 989 }; 990 991 class UnannotatedTentativeParsingAction; 992 993 /// ObjCDeclContextSwitch - An object used to switch context from 994 /// an objective-c decl context to its enclosing decl context and 995 /// back. 996 class ObjCDeclContextSwitch { 997 Parser &P; 998 Decl *DC; 999 SaveAndRestore<bool> WithinObjCContainer; 1000 public: ObjCDeclContextSwitch(Parser & p)1001 explicit ObjCDeclContextSwitch(Parser &p) 1002 : P(p), DC(p.getObjCDeclContext()), 1003 WithinObjCContainer(P.ParsingInObjCContainer, DC != nullptr) { 1004 if (DC) 1005 P.Actions.ActOnObjCTemporaryExitContainerContext(cast<DeclContext>(DC)); 1006 } ~ObjCDeclContextSwitch()1007 ~ObjCDeclContextSwitch() { 1008 if (DC) 1009 P.Actions.ActOnObjCReenterContainerContext(cast<DeclContext>(DC)); 1010 } 1011 }; 1012 1013 /// ExpectAndConsume - The parser expects that 'ExpectedTok' is next in the 1014 /// input. If so, it is consumed and false is returned. 1015 /// 1016 /// If a trivial punctuator misspelling is encountered, a FixIt error 1017 /// diagnostic is issued and false is returned after recovery. 1018 /// 1019 /// If the input is malformed, this emits the specified diagnostic and true is 1020 /// returned. 1021 bool ExpectAndConsume(tok::TokenKind ExpectedTok, 1022 unsigned Diag = diag::err_expected, 1023 StringRef DiagMsg = ""); 1024 1025 /// The parser expects a semicolon and, if present, will consume it. 1026 /// 1027 /// If the next token is not a semicolon, this emits the specified diagnostic, 1028 /// or, if there's just some closing-delimiter noise (e.g., ')' or ']') prior 1029 /// to the semicolon, consumes that extra token. 1030 bool ExpectAndConsumeSemi(unsigned DiagID); 1031 1032 /// The kind of extra semi diagnostic to emit. 1033 enum ExtraSemiKind { 1034 OutsideFunction = 0, 1035 InsideStruct = 1, 1036 InstanceVariableList = 2, 1037 AfterMemberFunctionDefinition = 3 1038 }; 1039 1040 /// Consume any extra semi-colons until the end of the line. 1041 void ConsumeExtraSemi(ExtraSemiKind Kind, DeclSpec::TST T = TST_unspecified); 1042 1043 /// Return false if the next token is an identifier. An 'expected identifier' 1044 /// error is emitted otherwise. 1045 /// 1046 /// The parser tries to recover from the error by checking if the next token 1047 /// is a C++ keyword when parsing Objective-C++. Return false if the recovery 1048 /// was successful. 1049 bool expectIdentifier(); 1050 1051 /// Kinds of compound pseudo-tokens formed by a sequence of two real tokens. 1052 enum class CompoundToken { 1053 /// A '(' '{' beginning a statement-expression. 1054 StmtExprBegin, 1055 /// A '}' ')' ending a statement-expression. 1056 StmtExprEnd, 1057 /// A '[' '[' beginning a C++11 or C2x attribute. 1058 AttrBegin, 1059 /// A ']' ']' ending a C++11 or C2x attribute. 1060 AttrEnd, 1061 /// A '::' '*' forming a C++ pointer-to-member declaration. 1062 MemberPtr, 1063 }; 1064 1065 /// Check that a compound operator was written in a "sensible" way, and warn 1066 /// if not. 1067 void checkCompoundToken(SourceLocation FirstTokLoc, 1068 tok::TokenKind FirstTokKind, CompoundToken Op); 1069 1070 public: 1071 //===--------------------------------------------------------------------===// 1072 // Scope manipulation 1073 1074 /// ParseScope - Introduces a new scope for parsing. The kind of 1075 /// scope is determined by ScopeFlags. Objects of this type should 1076 /// be created on the stack to coincide with the position where the 1077 /// parser enters the new scope, and this object's constructor will 1078 /// create that new scope. Similarly, once the object is destroyed 1079 /// the parser will exit the scope. 1080 class ParseScope { 1081 Parser *Self; 1082 ParseScope(const ParseScope &) = delete; 1083 void operator=(const ParseScope &) = delete; 1084 1085 public: 1086 // ParseScope - Construct a new object to manage a scope in the 1087 // parser Self where the new Scope is created with the flags 1088 // ScopeFlags, but only when we aren't about to enter a compound statement. 1089 ParseScope(Parser *Self, unsigned ScopeFlags, bool EnteredScope = true, 1090 bool BeforeCompoundStmt = false) Self(Self)1091 : Self(Self) { 1092 if (EnteredScope && !BeforeCompoundStmt) 1093 Self->EnterScope(ScopeFlags); 1094 else { 1095 if (BeforeCompoundStmt) 1096 Self->incrementMSManglingNumber(); 1097 1098 this->Self = nullptr; 1099 } 1100 } 1101 1102 // Exit - Exit the scope associated with this object now, rather 1103 // than waiting until the object is destroyed. Exit()1104 void Exit() { 1105 if (Self) { 1106 Self->ExitScope(); 1107 Self = nullptr; 1108 } 1109 } 1110 ~ParseScope()1111 ~ParseScope() { 1112 Exit(); 1113 } 1114 }; 1115 1116 /// Introduces zero or more scopes for parsing. The scopes will all be exited 1117 /// when the object is destroyed. 1118 class MultiParseScope { 1119 Parser &Self; 1120 unsigned NumScopes = 0; 1121 1122 MultiParseScope(const MultiParseScope&) = delete; 1123 1124 public: MultiParseScope(Parser & Self)1125 MultiParseScope(Parser &Self) : Self(Self) {} Enter(unsigned ScopeFlags)1126 void Enter(unsigned ScopeFlags) { 1127 Self.EnterScope(ScopeFlags); 1128 ++NumScopes; 1129 } Exit()1130 void Exit() { 1131 while (NumScopes) { 1132 Self.ExitScope(); 1133 --NumScopes; 1134 } 1135 } ~MultiParseScope()1136 ~MultiParseScope() { 1137 Exit(); 1138 } 1139 }; 1140 1141 /// EnterScope - Start a new scope. 1142 void EnterScope(unsigned ScopeFlags); 1143 1144 /// ExitScope - Pop a scope off the scope stack. 1145 void ExitScope(); 1146 1147 /// Re-enter the template scopes for a declaration that might be a template. 1148 unsigned ReenterTemplateScopes(MultiParseScope &S, Decl *D); 1149 1150 private: 1151 /// RAII object used to modify the scope flags for the current scope. 1152 class ParseScopeFlags { 1153 Scope *CurScope; 1154 unsigned OldFlags; 1155 ParseScopeFlags(const ParseScopeFlags &) = delete; 1156 void operator=(const ParseScopeFlags &) = delete; 1157 1158 public: 1159 ParseScopeFlags(Parser *Self, unsigned ScopeFlags, bool ManageFlags = true); 1160 ~ParseScopeFlags(); 1161 }; 1162 1163 //===--------------------------------------------------------------------===// 1164 // Diagnostic Emission and Error recovery. 1165 1166 public: 1167 DiagnosticBuilder Diag(SourceLocation Loc, unsigned DiagID); 1168 DiagnosticBuilder Diag(const Token &Tok, unsigned DiagID); Diag(unsigned DiagID)1169 DiagnosticBuilder Diag(unsigned DiagID) { 1170 return Diag(Tok, DiagID); 1171 } 1172 1173 private: 1174 void SuggestParentheses(SourceLocation Loc, unsigned DK, 1175 SourceRange ParenRange); 1176 void CheckNestedObjCContexts(SourceLocation AtLoc); 1177 1178 public: 1179 1180 /// Control flags for SkipUntil functions. 1181 enum SkipUntilFlags { 1182 StopAtSemi = 1 << 0, ///< Stop skipping at semicolon 1183 /// Stop skipping at specified token, but don't skip the token itself 1184 StopBeforeMatch = 1 << 1, 1185 StopAtCodeCompletion = 1 << 2 ///< Stop at code completion 1186 }; 1187 1188 friend constexpr SkipUntilFlags operator|(SkipUntilFlags L, 1189 SkipUntilFlags R) { 1190 return static_cast<SkipUntilFlags>(static_cast<unsigned>(L) | 1191 static_cast<unsigned>(R)); 1192 } 1193 1194 /// SkipUntil - Read tokens until we get to the specified token, then consume 1195 /// it (unless StopBeforeMatch is specified). Because we cannot guarantee 1196 /// that the token will ever occur, this skips to the next token, or to some 1197 /// likely good stopping point. If Flags has StopAtSemi flag, skipping will 1198 /// stop at a ';' character. Balances (), [], and {} delimiter tokens while 1199 /// skipping. 1200 /// 1201 /// If SkipUntil finds the specified token, it returns true, otherwise it 1202 /// returns false. 1203 bool SkipUntil(tok::TokenKind T, 1204 SkipUntilFlags Flags = static_cast<SkipUntilFlags>(0)) { 1205 return SkipUntil(llvm::makeArrayRef(T), Flags); 1206 } 1207 bool SkipUntil(tok::TokenKind T1, tok::TokenKind T2, 1208 SkipUntilFlags Flags = static_cast<SkipUntilFlags>(0)) { 1209 tok::TokenKind TokArray[] = {T1, T2}; 1210 return SkipUntil(TokArray, Flags); 1211 } 1212 bool SkipUntil(tok::TokenKind T1, tok::TokenKind T2, tok::TokenKind T3, 1213 SkipUntilFlags Flags = static_cast<SkipUntilFlags>(0)) { 1214 tok::TokenKind TokArray[] = {T1, T2, T3}; 1215 return SkipUntil(TokArray, Flags); 1216 } 1217 bool SkipUntil(ArrayRef<tok::TokenKind> Toks, 1218 SkipUntilFlags Flags = static_cast<SkipUntilFlags>(0)); 1219 1220 /// SkipMalformedDecl - Read tokens until we get to some likely good stopping 1221 /// point for skipping past a simple-declaration. 1222 void SkipMalformedDecl(); 1223 1224 /// The location of the first statement inside an else that might 1225 /// have a missleading indentation. If there is no 1226 /// MisleadingIndentationChecker on an else active, this location is invalid. 1227 SourceLocation MisleadingIndentationElseLoc; 1228 1229 private: 1230 //===--------------------------------------------------------------------===// 1231 // Lexing and parsing of C++ inline methods. 1232 1233 struct ParsingClass; 1234 1235 /// [class.mem]p1: "... the class is regarded as complete within 1236 /// - function bodies 1237 /// - default arguments 1238 /// - exception-specifications (TODO: C++0x) 1239 /// - and brace-or-equal-initializers for non-static data members 1240 /// (including such things in nested classes)." 1241 /// LateParsedDeclarations build the tree of those elements so they can 1242 /// be parsed after parsing the top-level class. 1243 class LateParsedDeclaration { 1244 public: 1245 virtual ~LateParsedDeclaration(); 1246 1247 virtual void ParseLexedMethodDeclarations(); 1248 virtual void ParseLexedMemberInitializers(); 1249 virtual void ParseLexedMethodDefs(); 1250 virtual void ParseLexedAttributes(); 1251 virtual void ParseLexedPragmas(); 1252 }; 1253 1254 /// Inner node of the LateParsedDeclaration tree that parses 1255 /// all its members recursively. 1256 class LateParsedClass : public LateParsedDeclaration { 1257 public: 1258 LateParsedClass(Parser *P, ParsingClass *C); 1259 ~LateParsedClass() override; 1260 1261 void ParseLexedMethodDeclarations() override; 1262 void ParseLexedMemberInitializers() override; 1263 void ParseLexedMethodDefs() override; 1264 void ParseLexedAttributes() override; 1265 void ParseLexedPragmas() override; 1266 1267 private: 1268 Parser *Self; 1269 ParsingClass *Class; 1270 }; 1271 1272 /// Contains the lexed tokens of an attribute with arguments that 1273 /// may reference member variables and so need to be parsed at the 1274 /// end of the class declaration after parsing all other member 1275 /// member declarations. 1276 /// FIXME: Perhaps we should change the name of LateParsedDeclaration to 1277 /// LateParsedTokens. 1278 struct LateParsedAttribute : public LateParsedDeclaration { 1279 Parser *Self; 1280 CachedTokens Toks; 1281 IdentifierInfo &AttrName; 1282 IdentifierInfo *MacroII = nullptr; 1283 SourceLocation AttrNameLoc; 1284 SmallVector<Decl*, 2> Decls; 1285 LateParsedAttributeLateParsedAttribute1286 explicit LateParsedAttribute(Parser *P, IdentifierInfo &Name, 1287 SourceLocation Loc) 1288 : Self(P), AttrName(Name), AttrNameLoc(Loc) {} 1289 1290 void ParseLexedAttributes() override; 1291 addDeclLateParsedAttribute1292 void addDecl(Decl *D) { Decls.push_back(D); } 1293 }; 1294 1295 /// Contains the lexed tokens of a pragma with arguments that 1296 /// may reference member variables and so need to be parsed at the 1297 /// end of the class declaration after parsing all other member 1298 /// member declarations. 1299 class LateParsedPragma : public LateParsedDeclaration { 1300 Parser *Self = nullptr; 1301 AccessSpecifier AS = AS_none; 1302 CachedTokens Toks; 1303 1304 public: LateParsedPragma(Parser * P,AccessSpecifier AS)1305 explicit LateParsedPragma(Parser *P, AccessSpecifier AS) 1306 : Self(P), AS(AS) {} 1307 takeToks(CachedTokens & Cached)1308 void takeToks(CachedTokens &Cached) { Toks.swap(Cached); } toks()1309 const CachedTokens &toks() const { return Toks; } getAccessSpecifier()1310 AccessSpecifier getAccessSpecifier() const { return AS; } 1311 1312 void ParseLexedPragmas() override; 1313 }; 1314 1315 // A list of late-parsed attributes. Used by ParseGNUAttributes. 1316 class LateParsedAttrList: public SmallVector<LateParsedAttribute *, 2> { 1317 public: ParseSoon(PSoon)1318 LateParsedAttrList(bool PSoon = false) : ParseSoon(PSoon) { } 1319 parseSoon()1320 bool parseSoon() { return ParseSoon; } 1321 1322 private: 1323 bool ParseSoon; // Are we planning to parse these shortly after creation? 1324 }; 1325 1326 /// Contains the lexed tokens of a member function definition 1327 /// which needs to be parsed at the end of the class declaration 1328 /// after parsing all other member declarations. 1329 struct LexedMethod : public LateParsedDeclaration { 1330 Parser *Self; 1331 Decl *D; 1332 CachedTokens Toks; 1333 LexedMethodLexedMethod1334 explicit LexedMethod(Parser *P, Decl *MD) : Self(P), D(MD) {} 1335 1336 void ParseLexedMethodDefs() override; 1337 }; 1338 1339 /// LateParsedDefaultArgument - Keeps track of a parameter that may 1340 /// have a default argument that cannot be parsed yet because it 1341 /// occurs within a member function declaration inside the class 1342 /// (C++ [class.mem]p2). 1343 struct LateParsedDefaultArgument { 1344 explicit LateParsedDefaultArgument(Decl *P, 1345 std::unique_ptr<CachedTokens> Toks = nullptr) ParamLateParsedDefaultArgument1346 : Param(P), Toks(std::move(Toks)) { } 1347 1348 /// Param - The parameter declaration for this parameter. 1349 Decl *Param; 1350 1351 /// Toks - The sequence of tokens that comprises the default 1352 /// argument expression, not including the '=' or the terminating 1353 /// ')' or ','. This will be NULL for parameters that have no 1354 /// default argument. 1355 std::unique_ptr<CachedTokens> Toks; 1356 }; 1357 1358 /// LateParsedMethodDeclaration - A method declaration inside a class that 1359 /// contains at least one entity whose parsing needs to be delayed 1360 /// until the class itself is completely-defined, such as a default 1361 /// argument (C++ [class.mem]p2). 1362 struct LateParsedMethodDeclaration : public LateParsedDeclaration { LateParsedMethodDeclarationLateParsedMethodDeclaration1363 explicit LateParsedMethodDeclaration(Parser *P, Decl *M) 1364 : Self(P), Method(M), ExceptionSpecTokens(nullptr) {} 1365 1366 void ParseLexedMethodDeclarations() override; 1367 1368 Parser *Self; 1369 1370 /// Method - The method declaration. 1371 Decl *Method; 1372 1373 /// DefaultArgs - Contains the parameters of the function and 1374 /// their default arguments. At least one of the parameters will 1375 /// have a default argument, but all of the parameters of the 1376 /// method will be stored so that they can be reintroduced into 1377 /// scope at the appropriate times. 1378 SmallVector<LateParsedDefaultArgument, 8> DefaultArgs; 1379 1380 /// The set of tokens that make up an exception-specification that 1381 /// has not yet been parsed. 1382 CachedTokens *ExceptionSpecTokens; 1383 }; 1384 1385 /// LateParsedMemberInitializer - An initializer for a non-static class data 1386 /// member whose parsing must to be delayed until the class is completely 1387 /// defined (C++11 [class.mem]p2). 1388 struct LateParsedMemberInitializer : public LateParsedDeclaration { LateParsedMemberInitializerLateParsedMemberInitializer1389 LateParsedMemberInitializer(Parser *P, Decl *FD) 1390 : Self(P), Field(FD) { } 1391 1392 void ParseLexedMemberInitializers() override; 1393 1394 Parser *Self; 1395 1396 /// Field - The field declaration. 1397 Decl *Field; 1398 1399 /// CachedTokens - The sequence of tokens that comprises the initializer, 1400 /// including any leading '='. 1401 CachedTokens Toks; 1402 }; 1403 1404 /// LateParsedDeclarationsContainer - During parsing of a top (non-nested) 1405 /// C++ class, its method declarations that contain parts that won't be 1406 /// parsed until after the definition is completed (C++ [class.mem]p2), 1407 /// the method declarations and possibly attached inline definitions 1408 /// will be stored here with the tokens that will be parsed to create those 1409 /// entities. 1410 typedef SmallVector<LateParsedDeclaration*,2> LateParsedDeclarationsContainer; 1411 1412 /// Representation of a class that has been parsed, including 1413 /// any member function declarations or definitions that need to be 1414 /// parsed after the corresponding top-level class is complete. 1415 struct ParsingClass { ParsingClassParsingClass1416 ParsingClass(Decl *TagOrTemplate, bool TopLevelClass, bool IsInterface) 1417 : TopLevelClass(TopLevelClass), IsInterface(IsInterface), 1418 TagOrTemplate(TagOrTemplate) {} 1419 1420 /// Whether this is a "top-level" class, meaning that it is 1421 /// not nested within another class. 1422 bool TopLevelClass : 1; 1423 1424 /// Whether this class is an __interface. 1425 bool IsInterface : 1; 1426 1427 /// The class or class template whose definition we are parsing. 1428 Decl *TagOrTemplate; 1429 1430 /// LateParsedDeclarations - Method declarations, inline definitions and 1431 /// nested classes that contain pieces whose parsing will be delayed until 1432 /// the top-level class is fully defined. 1433 LateParsedDeclarationsContainer LateParsedDeclarations; 1434 }; 1435 1436 /// The stack of classes that is currently being 1437 /// parsed. Nested and local classes will be pushed onto this stack 1438 /// when they are parsed, and removed afterward. 1439 std::stack<ParsingClass *> ClassStack; 1440 getCurrentClass()1441 ParsingClass &getCurrentClass() { 1442 assert(!ClassStack.empty() && "No lexed method stacks!"); 1443 return *ClassStack.top(); 1444 } 1445 1446 /// RAII object used to manage the parsing of a class definition. 1447 class ParsingClassDefinition { 1448 Parser &P; 1449 bool Popped; 1450 Sema::ParsingClassState State; 1451 1452 public: ParsingClassDefinition(Parser & P,Decl * TagOrTemplate,bool TopLevelClass,bool IsInterface)1453 ParsingClassDefinition(Parser &P, Decl *TagOrTemplate, bool TopLevelClass, 1454 bool IsInterface) 1455 : P(P), Popped(false), 1456 State(P.PushParsingClass(TagOrTemplate, TopLevelClass, IsInterface)) { 1457 } 1458 1459 /// Pop this class of the stack. Pop()1460 void Pop() { 1461 assert(!Popped && "Nested class has already been popped"); 1462 Popped = true; 1463 P.PopParsingClass(State); 1464 } 1465 ~ParsingClassDefinition()1466 ~ParsingClassDefinition() { 1467 if (!Popped) 1468 P.PopParsingClass(State); 1469 } 1470 }; 1471 1472 /// Contains information about any template-specific 1473 /// information that has been parsed prior to parsing declaration 1474 /// specifiers. 1475 struct ParsedTemplateInfo { ParsedTemplateInfoParsedTemplateInfo1476 ParsedTemplateInfo() 1477 : Kind(NonTemplate), TemplateParams(nullptr), TemplateLoc() { } 1478 1479 ParsedTemplateInfo(TemplateParameterLists *TemplateParams, 1480 bool isSpecialization, 1481 bool lastParameterListWasEmpty = false) 1482 : Kind(isSpecialization? ExplicitSpecialization : Template), 1483 TemplateParams(TemplateParams), 1484 LastParameterListWasEmpty(lastParameterListWasEmpty) { } 1485 ParsedTemplateInfoParsedTemplateInfo1486 explicit ParsedTemplateInfo(SourceLocation ExternLoc, 1487 SourceLocation TemplateLoc) 1488 : Kind(ExplicitInstantiation), TemplateParams(nullptr), 1489 ExternLoc(ExternLoc), TemplateLoc(TemplateLoc), 1490 LastParameterListWasEmpty(false){ } 1491 1492 /// The kind of template we are parsing. 1493 enum { 1494 /// We are not parsing a template at all. 1495 NonTemplate = 0, 1496 /// We are parsing a template declaration. 1497 Template, 1498 /// We are parsing an explicit specialization. 1499 ExplicitSpecialization, 1500 /// We are parsing an explicit instantiation. 1501 ExplicitInstantiation 1502 } Kind; 1503 1504 /// The template parameter lists, for template declarations 1505 /// and explicit specializations. 1506 TemplateParameterLists *TemplateParams; 1507 1508 /// The location of the 'extern' keyword, if any, for an explicit 1509 /// instantiation 1510 SourceLocation ExternLoc; 1511 1512 /// The location of the 'template' keyword, for an explicit 1513 /// instantiation. 1514 SourceLocation TemplateLoc; 1515 1516 /// Whether the last template parameter list was empty. 1517 bool LastParameterListWasEmpty; 1518 1519 SourceRange getSourceRange() const LLVM_READONLY; 1520 }; 1521 1522 // In ParseCXXInlineMethods.cpp. 1523 struct ReenterTemplateScopeRAII; 1524 struct ReenterClassScopeRAII; 1525 1526 void LexTemplateFunctionForLateParsing(CachedTokens &Toks); 1527 void ParseLateTemplatedFuncDef(LateParsedTemplate &LPT); 1528 1529 static void LateTemplateParserCallback(void *P, LateParsedTemplate &LPT); 1530 1531 Sema::ParsingClassState 1532 PushParsingClass(Decl *TagOrTemplate, bool TopLevelClass, bool IsInterface); 1533 void DeallocateParsedClasses(ParsingClass *Class); 1534 void PopParsingClass(Sema::ParsingClassState); 1535 1536 enum CachedInitKind { 1537 CIK_DefaultArgument, 1538 CIK_DefaultInitializer 1539 }; 1540 1541 NamedDecl *ParseCXXInlineMethodDef(AccessSpecifier AS, 1542 ParsedAttributes &AccessAttrs, 1543 ParsingDeclarator &D, 1544 const ParsedTemplateInfo &TemplateInfo, 1545 const VirtSpecifiers &VS, 1546 SourceLocation PureSpecLoc); 1547 void ParseCXXNonStaticMemberInitializer(Decl *VarD); 1548 void ParseLexedAttributes(ParsingClass &Class); 1549 void ParseLexedAttributeList(LateParsedAttrList &LAs, Decl *D, 1550 bool EnterScope, bool OnDefinition); 1551 void ParseLexedAttribute(LateParsedAttribute &LA, 1552 bool EnterScope, bool OnDefinition); 1553 void ParseLexedMethodDeclarations(ParsingClass &Class); 1554 void ParseLexedMethodDeclaration(LateParsedMethodDeclaration &LM); 1555 void ParseLexedMethodDefs(ParsingClass &Class); 1556 void ParseLexedMethodDef(LexedMethod &LM); 1557 void ParseLexedMemberInitializers(ParsingClass &Class); 1558 void ParseLexedMemberInitializer(LateParsedMemberInitializer &MI); 1559 void ParseLexedObjCMethodDefs(LexedMethod &LM, bool parseMethod); 1560 void ParseLexedPragmas(ParsingClass &Class); 1561 void ParseLexedPragma(LateParsedPragma &LP); 1562 bool ConsumeAndStoreFunctionPrologue(CachedTokens &Toks); 1563 bool ConsumeAndStoreInitializer(CachedTokens &Toks, CachedInitKind CIK); 1564 bool ConsumeAndStoreConditional(CachedTokens &Toks); 1565 bool ConsumeAndStoreUntil(tok::TokenKind T1, 1566 CachedTokens &Toks, 1567 bool StopAtSemi = true, 1568 bool ConsumeFinalToken = true) { 1569 return ConsumeAndStoreUntil(T1, T1, Toks, StopAtSemi, ConsumeFinalToken); 1570 } 1571 bool ConsumeAndStoreUntil(tok::TokenKind T1, tok::TokenKind T2, 1572 CachedTokens &Toks, 1573 bool StopAtSemi = true, 1574 bool ConsumeFinalToken = true); 1575 1576 //===--------------------------------------------------------------------===// 1577 // C99 6.9: External Definitions. 1578 DeclGroupPtrTy ParseExternalDeclaration(ParsedAttributesWithRange &attrs, 1579 ParsingDeclSpec *DS = nullptr); 1580 bool isDeclarationAfterDeclarator(); 1581 bool isStartOfFunctionDefinition(const ParsingDeclarator &Declarator); 1582 DeclGroupPtrTy ParseDeclarationOrFunctionDefinition( 1583 ParsedAttributesWithRange &attrs, 1584 ParsingDeclSpec *DS = nullptr, 1585 AccessSpecifier AS = AS_none); 1586 DeclGroupPtrTy ParseDeclOrFunctionDefInternal(ParsedAttributesWithRange &attrs, 1587 ParsingDeclSpec &DS, 1588 AccessSpecifier AS); 1589 1590 void SkipFunctionBody(); 1591 Decl *ParseFunctionDefinition(ParsingDeclarator &D, 1592 const ParsedTemplateInfo &TemplateInfo = ParsedTemplateInfo(), 1593 LateParsedAttrList *LateParsedAttrs = nullptr); 1594 void ParseKNRParamDeclarations(Declarator &D); 1595 // EndLoc is filled with the location of the last token of the simple-asm. 1596 ExprResult ParseSimpleAsm(bool ForAsmLabel, SourceLocation *EndLoc); 1597 ExprResult ParseAsmStringLiteral(bool ForAsmLabel); 1598 1599 // Objective-C External Declarations 1600 void MaybeSkipAttributes(tok::ObjCKeywordKind Kind); 1601 DeclGroupPtrTy ParseObjCAtDirectives(ParsedAttributesWithRange &Attrs); 1602 DeclGroupPtrTy ParseObjCAtClassDeclaration(SourceLocation atLoc); 1603 Decl *ParseObjCAtInterfaceDeclaration(SourceLocation AtLoc, 1604 ParsedAttributes &prefixAttrs); 1605 class ObjCTypeParamListScope; 1606 ObjCTypeParamList *parseObjCTypeParamList(); 1607 ObjCTypeParamList *parseObjCTypeParamListOrProtocolRefs( 1608 ObjCTypeParamListScope &Scope, SourceLocation &lAngleLoc, 1609 SmallVectorImpl<IdentifierLocPair> &protocolIdents, 1610 SourceLocation &rAngleLoc, bool mayBeProtocolList = true); 1611 1612 void HelperActionsForIvarDeclarations(Decl *interfaceDecl, SourceLocation atLoc, 1613 BalancedDelimiterTracker &T, 1614 SmallVectorImpl<Decl *> &AllIvarDecls, 1615 bool RBraceMissing); 1616 void ParseObjCClassInstanceVariables(Decl *interfaceDecl, 1617 tok::ObjCKeywordKind visibility, 1618 SourceLocation atLoc); 1619 bool ParseObjCProtocolReferences(SmallVectorImpl<Decl *> &P, 1620 SmallVectorImpl<SourceLocation> &PLocs, 1621 bool WarnOnDeclarations, 1622 bool ForObjCContainer, 1623 SourceLocation &LAngleLoc, 1624 SourceLocation &EndProtoLoc, 1625 bool consumeLastToken); 1626 1627 /// Parse the first angle-bracket-delimited clause for an 1628 /// Objective-C object or object pointer type, which may be either 1629 /// type arguments or protocol qualifiers. 1630 void parseObjCTypeArgsOrProtocolQualifiers( 1631 ParsedType baseType, 1632 SourceLocation &typeArgsLAngleLoc, 1633 SmallVectorImpl<ParsedType> &typeArgs, 1634 SourceLocation &typeArgsRAngleLoc, 1635 SourceLocation &protocolLAngleLoc, 1636 SmallVectorImpl<Decl *> &protocols, 1637 SmallVectorImpl<SourceLocation> &protocolLocs, 1638 SourceLocation &protocolRAngleLoc, 1639 bool consumeLastToken, 1640 bool warnOnIncompleteProtocols); 1641 1642 /// Parse either Objective-C type arguments or protocol qualifiers; if the 1643 /// former, also parse protocol qualifiers afterward. 1644 void parseObjCTypeArgsAndProtocolQualifiers( 1645 ParsedType baseType, 1646 SourceLocation &typeArgsLAngleLoc, 1647 SmallVectorImpl<ParsedType> &typeArgs, 1648 SourceLocation &typeArgsRAngleLoc, 1649 SourceLocation &protocolLAngleLoc, 1650 SmallVectorImpl<Decl *> &protocols, 1651 SmallVectorImpl<SourceLocation> &protocolLocs, 1652 SourceLocation &protocolRAngleLoc, 1653 bool consumeLastToken); 1654 1655 /// Parse a protocol qualifier type such as '<NSCopying>', which is 1656 /// an anachronistic way of writing 'id<NSCopying>'. 1657 TypeResult parseObjCProtocolQualifierType(SourceLocation &rAngleLoc); 1658 1659 /// Parse Objective-C type arguments and protocol qualifiers, extending the 1660 /// current type with the parsed result. 1661 TypeResult parseObjCTypeArgsAndProtocolQualifiers(SourceLocation loc, 1662 ParsedType type, 1663 bool consumeLastToken, 1664 SourceLocation &endLoc); 1665 1666 void ParseObjCInterfaceDeclList(tok::ObjCKeywordKind contextKey, 1667 Decl *CDecl); 1668 DeclGroupPtrTy ParseObjCAtProtocolDeclaration(SourceLocation atLoc, 1669 ParsedAttributes &prefixAttrs); 1670 1671 struct ObjCImplParsingDataRAII { 1672 Parser &P; 1673 Decl *Dcl; 1674 bool HasCFunction; 1675 typedef SmallVector<LexedMethod*, 8> LateParsedObjCMethodContainer; 1676 LateParsedObjCMethodContainer LateParsedObjCMethods; 1677 ObjCImplParsingDataRAIIObjCImplParsingDataRAII1678 ObjCImplParsingDataRAII(Parser &parser, Decl *D) 1679 : P(parser), Dcl(D), HasCFunction(false) { 1680 P.CurParsedObjCImpl = this; 1681 Finished = false; 1682 } 1683 ~ObjCImplParsingDataRAII(); 1684 1685 void finish(SourceRange AtEnd); isFinishedObjCImplParsingDataRAII1686 bool isFinished() const { return Finished; } 1687 1688 private: 1689 bool Finished; 1690 }; 1691 ObjCImplParsingDataRAII *CurParsedObjCImpl; 1692 void StashAwayMethodOrFunctionBodyTokens(Decl *MDecl); 1693 1694 DeclGroupPtrTy ParseObjCAtImplementationDeclaration(SourceLocation AtLoc, 1695 ParsedAttributes &Attrs); 1696 DeclGroupPtrTy ParseObjCAtEndDeclaration(SourceRange atEnd); 1697 Decl *ParseObjCAtAliasDeclaration(SourceLocation atLoc); 1698 Decl *ParseObjCPropertySynthesize(SourceLocation atLoc); 1699 Decl *ParseObjCPropertyDynamic(SourceLocation atLoc); 1700 1701 IdentifierInfo *ParseObjCSelectorPiece(SourceLocation &MethodLocation); 1702 // Definitions for Objective-c context sensitive keywords recognition. 1703 enum ObjCTypeQual { 1704 objc_in=0, objc_out, objc_inout, objc_oneway, objc_bycopy, objc_byref, 1705 objc_nonnull, objc_nullable, objc_null_unspecified, 1706 objc_NumQuals 1707 }; 1708 IdentifierInfo *ObjCTypeQuals[objc_NumQuals]; 1709 1710 bool isTokIdentifier_in() const; 1711 1712 ParsedType ParseObjCTypeName(ObjCDeclSpec &DS, DeclaratorContext Ctx, 1713 ParsedAttributes *ParamAttrs); 1714 Decl *ParseObjCMethodPrototype( 1715 tok::ObjCKeywordKind MethodImplKind = tok::objc_not_keyword, 1716 bool MethodDefinition = true); 1717 Decl *ParseObjCMethodDecl(SourceLocation mLoc, tok::TokenKind mType, 1718 tok::ObjCKeywordKind MethodImplKind = tok::objc_not_keyword, 1719 bool MethodDefinition=true); 1720 void ParseObjCPropertyAttribute(ObjCDeclSpec &DS); 1721 1722 Decl *ParseObjCMethodDefinition(); 1723 1724 public: 1725 //===--------------------------------------------------------------------===// 1726 // C99 6.5: Expressions. 1727 1728 /// TypeCastState - State whether an expression is or may be a type cast. 1729 enum TypeCastState { 1730 NotTypeCast = 0, 1731 MaybeTypeCast, 1732 IsTypeCast 1733 }; 1734 1735 ExprResult ParseExpression(TypeCastState isTypeCast = NotTypeCast); 1736 ExprResult ParseConstantExpressionInExprEvalContext( 1737 TypeCastState isTypeCast = NotTypeCast); 1738 ExprResult ParseConstantExpression(TypeCastState isTypeCast = NotTypeCast); 1739 ExprResult ParseCaseExpression(SourceLocation CaseLoc); 1740 ExprResult ParseConstraintExpression(); 1741 ExprResult 1742 ParseConstraintLogicalAndExpression(bool IsTrailingRequiresClause); 1743 ExprResult ParseConstraintLogicalOrExpression(bool IsTrailingRequiresClause); 1744 // Expr that doesn't include commas. 1745 ExprResult ParseAssignmentExpression(TypeCastState isTypeCast = NotTypeCast); 1746 1747 ExprResult ParseMSAsmIdentifier(llvm::SmallVectorImpl<Token> &LineToks, 1748 unsigned &NumLineToksConsumed, 1749 bool IsUnevaluated); 1750 1751 ExprResult ParseStringLiteralExpression(bool AllowUserDefinedLiteral = false); 1752 1753 private: 1754 ExprResult ParseExpressionWithLeadingAt(SourceLocation AtLoc); 1755 1756 ExprResult ParseExpressionWithLeadingExtension(SourceLocation ExtLoc); 1757 1758 ExprResult ParseRHSOfBinaryExpression(ExprResult LHS, 1759 prec::Level MinPrec); 1760 /// Control what ParseCastExpression will parse. 1761 enum CastParseKind { 1762 AnyCastExpr = 0, 1763 UnaryExprOnly, 1764 PrimaryExprOnly 1765 }; 1766 ExprResult ParseCastExpression(CastParseKind ParseKind, 1767 bool isAddressOfOperand, 1768 bool &NotCastExpr, 1769 TypeCastState isTypeCast, 1770 bool isVectorLiteral = false, 1771 bool *NotPrimaryExpression = nullptr); 1772 ExprResult ParseCastExpression(CastParseKind ParseKind, 1773 bool isAddressOfOperand = false, 1774 TypeCastState isTypeCast = NotTypeCast, 1775 bool isVectorLiteral = false, 1776 bool *NotPrimaryExpression = nullptr); 1777 1778 /// Returns true if the next token cannot start an expression. 1779 bool isNotExpressionStart(); 1780 1781 /// Returns true if the next token would start a postfix-expression 1782 /// suffix. isPostfixExpressionSuffixStart()1783 bool isPostfixExpressionSuffixStart() { 1784 tok::TokenKind K = Tok.getKind(); 1785 return (K == tok::l_square || K == tok::l_paren || 1786 K == tok::period || K == tok::arrow || 1787 K == tok::plusplus || K == tok::minusminus); 1788 } 1789 1790 bool diagnoseUnknownTemplateId(ExprResult TemplateName, SourceLocation Less); 1791 void checkPotentialAngleBracket(ExprResult &PotentialTemplateName); 1792 bool checkPotentialAngleBracketDelimiter(const AngleBracketTracker::Loc &, 1793 const Token &OpToken); checkPotentialAngleBracketDelimiter(const Token & OpToken)1794 bool checkPotentialAngleBracketDelimiter(const Token &OpToken) { 1795 if (auto *Info = AngleBrackets.getCurrent(*this)) 1796 return checkPotentialAngleBracketDelimiter(*Info, OpToken); 1797 return false; 1798 } 1799 1800 ExprResult ParsePostfixExpressionSuffix(ExprResult LHS); 1801 ExprResult ParseUnaryExprOrTypeTraitExpression(); 1802 ExprResult ParseBuiltinPrimaryExpression(); 1803 1804 ExprResult ParseExprAfterUnaryExprOrTypeTrait(const Token &OpTok, 1805 bool &isCastExpr, 1806 ParsedType &CastTy, 1807 SourceRange &CastRange); 1808 1809 typedef SmallVector<SourceLocation, 20> CommaLocsTy; 1810 1811 /// ParseExpressionList - Used for C/C++ (argument-)expression-list. 1812 bool ParseExpressionList(SmallVectorImpl<Expr *> &Exprs, 1813 SmallVectorImpl<SourceLocation> &CommaLocs, 1814 llvm::function_ref<void()> ExpressionStarts = 1815 llvm::function_ref<void()>()); 1816 1817 /// ParseSimpleExpressionList - A simple comma-separated list of expressions, 1818 /// used for misc language extensions. 1819 bool ParseSimpleExpressionList(SmallVectorImpl<Expr*> &Exprs, 1820 SmallVectorImpl<SourceLocation> &CommaLocs); 1821 1822 1823 /// ParenParseOption - Control what ParseParenExpression will parse. 1824 enum ParenParseOption { 1825 SimpleExpr, // Only parse '(' expression ')' 1826 FoldExpr, // Also allow fold-expression <anything> 1827 CompoundStmt, // Also allow '(' compound-statement ')' 1828 CompoundLiteral, // Also allow '(' type-name ')' '{' ... '}' 1829 CastExpr // Also allow '(' type-name ')' <anything> 1830 }; 1831 ExprResult ParseParenExpression(ParenParseOption &ExprType, 1832 bool stopIfCastExpr, 1833 bool isTypeCast, 1834 ParsedType &CastTy, 1835 SourceLocation &RParenLoc); 1836 1837 ExprResult ParseCXXAmbiguousParenExpression( 1838 ParenParseOption &ExprType, ParsedType &CastTy, 1839 BalancedDelimiterTracker &Tracker, ColonProtectionRAIIObject &ColonProt); 1840 ExprResult ParseCompoundLiteralExpression(ParsedType Ty, 1841 SourceLocation LParenLoc, 1842 SourceLocation RParenLoc); 1843 1844 ExprResult ParseGenericSelectionExpression(); 1845 1846 ExprResult ParseObjCBoolLiteral(); 1847 1848 ExprResult ParseFoldExpression(ExprResult LHS, BalancedDelimiterTracker &T); 1849 1850 //===--------------------------------------------------------------------===// 1851 // C++ Expressions 1852 ExprResult tryParseCXXIdExpression(CXXScopeSpec &SS, bool isAddressOfOperand, 1853 Token &Replacement); 1854 ExprResult ParseCXXIdExpression(bool isAddressOfOperand = false); 1855 1856 bool areTokensAdjacent(const Token &A, const Token &B); 1857 1858 void CheckForTemplateAndDigraph(Token &Next, ParsedType ObjectTypePtr, 1859 bool EnteringContext, IdentifierInfo &II, 1860 CXXScopeSpec &SS); 1861 1862 bool ParseOptionalCXXScopeSpecifier(CXXScopeSpec &SS, 1863 ParsedType ObjectType, 1864 bool ObjectHasErrors, 1865 bool EnteringContext, 1866 bool *MayBePseudoDestructor = nullptr, 1867 bool IsTypename = false, 1868 IdentifierInfo **LastII = nullptr, 1869 bool OnlyNamespace = false, 1870 bool InUsingDeclaration = false); 1871 1872 //===--------------------------------------------------------------------===// 1873 // C++11 5.1.2: Lambda expressions 1874 1875 /// Result of tentatively parsing a lambda-introducer. 1876 enum class LambdaIntroducerTentativeParse { 1877 /// This appears to be a lambda-introducer, which has been fully parsed. 1878 Success, 1879 /// This is a lambda-introducer, but has not been fully parsed, and this 1880 /// function needs to be called again to parse it. 1881 Incomplete, 1882 /// This is definitely an Objective-C message send expression, rather than 1883 /// a lambda-introducer, attribute-specifier, or array designator. 1884 MessageSend, 1885 /// This is not a lambda-introducer. 1886 Invalid, 1887 }; 1888 1889 // [...] () -> type {...} 1890 ExprResult ParseLambdaExpression(); 1891 ExprResult TryParseLambdaExpression(); 1892 bool 1893 ParseLambdaIntroducer(LambdaIntroducer &Intro, 1894 LambdaIntroducerTentativeParse *Tentative = nullptr); 1895 ExprResult ParseLambdaExpressionAfterIntroducer(LambdaIntroducer &Intro); 1896 1897 //===--------------------------------------------------------------------===// 1898 // C++ 5.2p1: C++ Casts 1899 ExprResult ParseCXXCasts(); 1900 1901 /// Parse a __builtin_bit_cast(T, E), used to implement C++2a std::bit_cast. 1902 ExprResult ParseBuiltinBitCast(); 1903 1904 //===--------------------------------------------------------------------===// 1905 // C++ 5.2p1: C++ Type Identification 1906 ExprResult ParseCXXTypeid(); 1907 1908 //===--------------------------------------------------------------------===// 1909 // C++ : Microsoft __uuidof Expression 1910 ExprResult ParseCXXUuidof(); 1911 1912 //===--------------------------------------------------------------------===// 1913 // C++ 5.2.4: C++ Pseudo-Destructor Expressions 1914 ExprResult ParseCXXPseudoDestructor(Expr *Base, SourceLocation OpLoc, 1915 tok::TokenKind OpKind, 1916 CXXScopeSpec &SS, 1917 ParsedType ObjectType); 1918 1919 //===--------------------------------------------------------------------===// 1920 // C++ 9.3.2: C++ 'this' pointer 1921 ExprResult ParseCXXThis(); 1922 1923 //===--------------------------------------------------------------------===// 1924 // C++ 15: C++ Throw Expression 1925 ExprResult ParseThrowExpression(); 1926 1927 ExceptionSpecificationType tryParseExceptionSpecification( 1928 bool Delayed, 1929 SourceRange &SpecificationRange, 1930 SmallVectorImpl<ParsedType> &DynamicExceptions, 1931 SmallVectorImpl<SourceRange> &DynamicExceptionRanges, 1932 ExprResult &NoexceptExpr, 1933 CachedTokens *&ExceptionSpecTokens); 1934 1935 // EndLoc is filled with the location of the last token of the specification. 1936 ExceptionSpecificationType ParseDynamicExceptionSpecification( 1937 SourceRange &SpecificationRange, 1938 SmallVectorImpl<ParsedType> &Exceptions, 1939 SmallVectorImpl<SourceRange> &Ranges); 1940 1941 //===--------------------------------------------------------------------===// 1942 // C++0x 8: Function declaration trailing-return-type 1943 TypeResult ParseTrailingReturnType(SourceRange &Range, 1944 bool MayBeFollowedByDirectInit); 1945 1946 //===--------------------------------------------------------------------===// 1947 // C++ 2.13.5: C++ Boolean Literals 1948 ExprResult ParseCXXBoolLiteral(); 1949 1950 //===--------------------------------------------------------------------===// 1951 // C++ 5.2.3: Explicit type conversion (functional notation) 1952 ExprResult ParseCXXTypeConstructExpression(const DeclSpec &DS); 1953 1954 /// ParseCXXSimpleTypeSpecifier - [C++ 7.1.5.2] Simple type specifiers. 1955 /// This should only be called when the current token is known to be part of 1956 /// simple-type-specifier. 1957 void ParseCXXSimpleTypeSpecifier(DeclSpec &DS); 1958 1959 bool ParseCXXTypeSpecifierSeq(DeclSpec &DS); 1960 1961 //===--------------------------------------------------------------------===// 1962 // C++ 5.3.4 and 5.3.5: C++ new and delete 1963 bool ParseExpressionListOrTypeId(SmallVectorImpl<Expr*> &Exprs, 1964 Declarator &D); 1965 void ParseDirectNewDeclarator(Declarator &D); 1966 ExprResult ParseCXXNewExpression(bool UseGlobal, SourceLocation Start); 1967 ExprResult ParseCXXDeleteExpression(bool UseGlobal, 1968 SourceLocation Start); 1969 1970 //===--------------------------------------------------------------------===// 1971 // C++ if/switch/while/for condition expression. 1972 struct ForRangeInfo; 1973 Sema::ConditionResult ParseCXXCondition(StmtResult *InitStmt, 1974 SourceLocation Loc, 1975 Sema::ConditionKind CK, 1976 ForRangeInfo *FRI = nullptr, 1977 bool EnterForConditionScope = false); 1978 1979 //===--------------------------------------------------------------------===// 1980 // C++ Coroutines 1981 1982 ExprResult ParseCoyieldExpression(); 1983 1984 //===--------------------------------------------------------------------===// 1985 // C++ Concepts 1986 1987 ExprResult ParseRequiresExpression(); 1988 void ParseTrailingRequiresClause(Declarator &D); 1989 1990 //===--------------------------------------------------------------------===// 1991 // C99 6.7.8: Initialization. 1992 1993 /// ParseInitializer 1994 /// initializer: [C99 6.7.8] 1995 /// assignment-expression 1996 /// '{' ... ParseInitializer()1997 ExprResult ParseInitializer() { 1998 if (Tok.isNot(tok::l_brace)) 1999 return ParseAssignmentExpression(); 2000 return ParseBraceInitializer(); 2001 } 2002 bool MayBeDesignationStart(); 2003 ExprResult ParseBraceInitializer(); 2004 struct DesignatorCompletionInfo { 2005 SmallVectorImpl<Expr *> &InitExprs; 2006 QualType PreferredBaseType; 2007 }; 2008 ExprResult ParseInitializerWithPotentialDesignator(DesignatorCompletionInfo); 2009 2010 //===--------------------------------------------------------------------===// 2011 // clang Expressions 2012 2013 ExprResult ParseBlockLiteralExpression(); // ^{...} 2014 2015 //===--------------------------------------------------------------------===// 2016 // Objective-C Expressions 2017 ExprResult ParseObjCAtExpression(SourceLocation AtLocation); 2018 ExprResult ParseObjCStringLiteral(SourceLocation AtLoc); 2019 ExprResult ParseObjCCharacterLiteral(SourceLocation AtLoc); 2020 ExprResult ParseObjCNumericLiteral(SourceLocation AtLoc); 2021 ExprResult ParseObjCBooleanLiteral(SourceLocation AtLoc, bool ArgValue); 2022 ExprResult ParseObjCArrayLiteral(SourceLocation AtLoc); 2023 ExprResult ParseObjCDictionaryLiteral(SourceLocation AtLoc); 2024 ExprResult ParseObjCBoxedExpr(SourceLocation AtLoc); 2025 ExprResult ParseObjCEncodeExpression(SourceLocation AtLoc); 2026 ExprResult ParseObjCSelectorExpression(SourceLocation AtLoc); 2027 ExprResult ParseObjCProtocolExpression(SourceLocation AtLoc); 2028 bool isSimpleObjCMessageExpression(); 2029 ExprResult ParseObjCMessageExpression(); 2030 ExprResult ParseObjCMessageExpressionBody(SourceLocation LBracloc, 2031 SourceLocation SuperLoc, 2032 ParsedType ReceiverType, 2033 Expr *ReceiverExpr); 2034 ExprResult ParseAssignmentExprWithObjCMessageExprStart( 2035 SourceLocation LBracloc, SourceLocation SuperLoc, 2036 ParsedType ReceiverType, Expr *ReceiverExpr); 2037 bool ParseObjCXXMessageReceiver(bool &IsExpr, void *&TypeOrExpr); 2038 2039 //===--------------------------------------------------------------------===// 2040 // C99 6.8: Statements and Blocks. 2041 2042 /// A SmallVector of statements, with stack size 32 (as that is the only one 2043 /// used.) 2044 typedef SmallVector<Stmt*, 32> StmtVector; 2045 /// A SmallVector of expressions, with stack size 12 (the maximum used.) 2046 typedef SmallVector<Expr*, 12> ExprVector; 2047 /// A SmallVector of types. 2048 typedef SmallVector<ParsedType, 12> TypeVector; 2049 2050 StmtResult 2051 ParseStatement(SourceLocation *TrailingElseLoc = nullptr, 2052 ParsedStmtContext StmtCtx = ParsedStmtContext::SubStmt); 2053 StmtResult ParseStatementOrDeclaration( 2054 StmtVector &Stmts, ParsedStmtContext StmtCtx, 2055 SourceLocation *TrailingElseLoc = nullptr); 2056 StmtResult ParseStatementOrDeclarationAfterAttributes( 2057 StmtVector &Stmts, 2058 ParsedStmtContext StmtCtx, 2059 SourceLocation *TrailingElseLoc, 2060 ParsedAttributesWithRange &Attrs); 2061 StmtResult ParseExprStatement(ParsedStmtContext StmtCtx); 2062 StmtResult ParseLabeledStatement(ParsedAttributesWithRange &attrs, 2063 ParsedStmtContext StmtCtx); 2064 StmtResult ParseCaseStatement(ParsedStmtContext StmtCtx, 2065 bool MissingCase = false, 2066 ExprResult Expr = ExprResult()); 2067 StmtResult ParseDefaultStatement(ParsedStmtContext StmtCtx); 2068 StmtResult ParseCompoundStatement(bool isStmtExpr = false); 2069 StmtResult ParseCompoundStatement(bool isStmtExpr, 2070 unsigned ScopeFlags); 2071 void ParseCompoundStatementLeadingPragmas(); 2072 bool ConsumeNullStmt(StmtVector &Stmts); 2073 StmtResult ParseCompoundStatementBody(bool isStmtExpr = false); 2074 bool ParseParenExprOrCondition(StmtResult *InitStmt, 2075 Sema::ConditionResult &CondResult, 2076 SourceLocation Loc, Sema::ConditionKind CK, 2077 SourceLocation *LParenLoc = nullptr, 2078 SourceLocation *RParenLoc = nullptr); 2079 StmtResult ParseIfStatement(SourceLocation *TrailingElseLoc); 2080 StmtResult ParseSwitchStatement(SourceLocation *TrailingElseLoc); 2081 StmtResult ParseWhileStatement(SourceLocation *TrailingElseLoc); 2082 StmtResult ParseDoStatement(); 2083 StmtResult ParseForStatement(SourceLocation *TrailingElseLoc); 2084 StmtResult ParseGotoStatement(); 2085 StmtResult ParseContinueStatement(); 2086 StmtResult ParseBreakStatement(); 2087 StmtResult ParseReturnStatement(); 2088 StmtResult ParseAsmStatement(bool &msAsm); 2089 StmtResult ParseMicrosoftAsmStatement(SourceLocation AsmLoc); 2090 StmtResult ParsePragmaLoopHint(StmtVector &Stmts, 2091 ParsedStmtContext StmtCtx, 2092 SourceLocation *TrailingElseLoc, 2093 ParsedAttributesWithRange &Attrs); 2094 2095 /// Describes the behavior that should be taken for an __if_exists 2096 /// block. 2097 enum IfExistsBehavior { 2098 /// Parse the block; this code is always used. 2099 IEB_Parse, 2100 /// Skip the block entirely; this code is never used. 2101 IEB_Skip, 2102 /// Parse the block as a dependent block, which may be used in 2103 /// some template instantiations but not others. 2104 IEB_Dependent 2105 }; 2106 2107 /// Describes the condition of a Microsoft __if_exists or 2108 /// __if_not_exists block. 2109 struct IfExistsCondition { 2110 /// The location of the initial keyword. 2111 SourceLocation KeywordLoc; 2112 /// Whether this is an __if_exists block (rather than an 2113 /// __if_not_exists block). 2114 bool IsIfExists; 2115 2116 /// Nested-name-specifier preceding the name. 2117 CXXScopeSpec SS; 2118 2119 /// The name we're looking for. 2120 UnqualifiedId Name; 2121 2122 /// The behavior of this __if_exists or __if_not_exists block 2123 /// should. 2124 IfExistsBehavior Behavior; 2125 }; 2126 2127 bool ParseMicrosoftIfExistsCondition(IfExistsCondition& Result); 2128 void ParseMicrosoftIfExistsStatement(StmtVector &Stmts); 2129 void ParseMicrosoftIfExistsExternalDeclaration(); 2130 void ParseMicrosoftIfExistsClassDeclaration(DeclSpec::TST TagType, 2131 ParsedAttributes &AccessAttrs, 2132 AccessSpecifier &CurAS); 2133 bool ParseMicrosoftIfExistsBraceInitializer(ExprVector &InitExprs, 2134 bool &InitExprsOk); 2135 bool ParseAsmOperandsOpt(SmallVectorImpl<IdentifierInfo *> &Names, 2136 SmallVectorImpl<Expr *> &Constraints, 2137 SmallVectorImpl<Expr *> &Exprs); 2138 2139 //===--------------------------------------------------------------------===// 2140 // C++ 6: Statements and Blocks 2141 2142 StmtResult ParseCXXTryBlock(); 2143 StmtResult ParseCXXTryBlockCommon(SourceLocation TryLoc, bool FnTry = false); 2144 StmtResult ParseCXXCatchBlock(bool FnCatch = false); 2145 2146 //===--------------------------------------------------------------------===// 2147 // MS: SEH Statements and Blocks 2148 2149 StmtResult ParseSEHTryBlock(); 2150 StmtResult ParseSEHExceptBlock(SourceLocation Loc); 2151 StmtResult ParseSEHFinallyBlock(SourceLocation Loc); 2152 StmtResult ParseSEHLeaveStatement(); 2153 2154 //===--------------------------------------------------------------------===// 2155 // Objective-C Statements 2156 2157 StmtResult ParseObjCAtStatement(SourceLocation atLoc, 2158 ParsedStmtContext StmtCtx); 2159 StmtResult ParseObjCTryStmt(SourceLocation atLoc); 2160 StmtResult ParseObjCThrowStmt(SourceLocation atLoc); 2161 StmtResult ParseObjCSynchronizedStmt(SourceLocation atLoc); 2162 StmtResult ParseObjCAutoreleasePoolStmt(SourceLocation atLoc); 2163 2164 2165 //===--------------------------------------------------------------------===// 2166 // C99 6.7: Declarations. 2167 2168 /// A context for parsing declaration specifiers. TODO: flesh this 2169 /// out, there are other significant restrictions on specifiers than 2170 /// would be best implemented in the parser. 2171 enum class DeclSpecContext { 2172 DSC_normal, // normal context 2173 DSC_class, // class context, enables 'friend' 2174 DSC_type_specifier, // C++ type-specifier-seq or C specifier-qualifier-list 2175 DSC_trailing, // C++11 trailing-type-specifier in a trailing return type 2176 DSC_alias_declaration, // C++11 type-specifier-seq in an alias-declaration 2177 DSC_top_level, // top-level/namespace declaration context 2178 DSC_template_param, // template parameter context 2179 DSC_template_type_arg, // template type argument context 2180 DSC_objc_method_result, // ObjC method result context, enables 'instancetype' 2181 DSC_condition // condition declaration context 2182 }; 2183 2184 /// Is this a context in which we are parsing just a type-specifier (or 2185 /// trailing-type-specifier)? isTypeSpecifier(DeclSpecContext DSC)2186 static bool isTypeSpecifier(DeclSpecContext DSC) { 2187 switch (DSC) { 2188 case DeclSpecContext::DSC_normal: 2189 case DeclSpecContext::DSC_template_param: 2190 case DeclSpecContext::DSC_class: 2191 case DeclSpecContext::DSC_top_level: 2192 case DeclSpecContext::DSC_objc_method_result: 2193 case DeclSpecContext::DSC_condition: 2194 return false; 2195 2196 case DeclSpecContext::DSC_template_type_arg: 2197 case DeclSpecContext::DSC_type_specifier: 2198 case DeclSpecContext::DSC_trailing: 2199 case DeclSpecContext::DSC_alias_declaration: 2200 return true; 2201 } 2202 llvm_unreachable("Missing DeclSpecContext case"); 2203 } 2204 2205 /// Whether a defining-type-specifier is permitted in a given context. 2206 enum class AllowDefiningTypeSpec { 2207 /// The grammar doesn't allow a defining-type-specifier here, and we must 2208 /// not parse one (eg, because a '{' could mean something else). 2209 No, 2210 /// The grammar doesn't allow a defining-type-specifier here, but we permit 2211 /// one for error recovery purposes. Sema will reject. 2212 NoButErrorRecovery, 2213 /// The grammar allows a defining-type-specifier here, even though it's 2214 /// always invalid. Sema will reject. 2215 YesButInvalid, 2216 /// The grammar allows a defining-type-specifier here, and one can be valid. 2217 Yes 2218 }; 2219 2220 /// Is this a context in which we are parsing defining-type-specifiers (and 2221 /// so permit class and enum definitions in addition to non-defining class and 2222 /// enum elaborated-type-specifiers)? 2223 static AllowDefiningTypeSpec isDefiningTypeSpecifierContext(DeclSpecContext DSC)2224 isDefiningTypeSpecifierContext(DeclSpecContext DSC) { 2225 switch (DSC) { 2226 case DeclSpecContext::DSC_normal: 2227 case DeclSpecContext::DSC_class: 2228 case DeclSpecContext::DSC_top_level: 2229 case DeclSpecContext::DSC_alias_declaration: 2230 case DeclSpecContext::DSC_objc_method_result: 2231 return AllowDefiningTypeSpec::Yes; 2232 2233 case DeclSpecContext::DSC_condition: 2234 case DeclSpecContext::DSC_template_param: 2235 return AllowDefiningTypeSpec::YesButInvalid; 2236 2237 case DeclSpecContext::DSC_template_type_arg: 2238 case DeclSpecContext::DSC_type_specifier: 2239 return AllowDefiningTypeSpec::NoButErrorRecovery; 2240 2241 case DeclSpecContext::DSC_trailing: 2242 return AllowDefiningTypeSpec::No; 2243 } 2244 llvm_unreachable("Missing DeclSpecContext case"); 2245 } 2246 2247 /// Is this a context in which an opaque-enum-declaration can appear? isOpaqueEnumDeclarationContext(DeclSpecContext DSC)2248 static bool isOpaqueEnumDeclarationContext(DeclSpecContext DSC) { 2249 switch (DSC) { 2250 case DeclSpecContext::DSC_normal: 2251 case DeclSpecContext::DSC_class: 2252 case DeclSpecContext::DSC_top_level: 2253 return true; 2254 2255 case DeclSpecContext::DSC_alias_declaration: 2256 case DeclSpecContext::DSC_objc_method_result: 2257 case DeclSpecContext::DSC_condition: 2258 case DeclSpecContext::DSC_template_param: 2259 case DeclSpecContext::DSC_template_type_arg: 2260 case DeclSpecContext::DSC_type_specifier: 2261 case DeclSpecContext::DSC_trailing: 2262 return false; 2263 } 2264 llvm_unreachable("Missing DeclSpecContext case"); 2265 } 2266 2267 /// Is this a context in which we can perform class template argument 2268 /// deduction? isClassTemplateDeductionContext(DeclSpecContext DSC)2269 static bool isClassTemplateDeductionContext(DeclSpecContext DSC) { 2270 switch (DSC) { 2271 case DeclSpecContext::DSC_normal: 2272 case DeclSpecContext::DSC_template_param: 2273 case DeclSpecContext::DSC_class: 2274 case DeclSpecContext::DSC_top_level: 2275 case DeclSpecContext::DSC_condition: 2276 case DeclSpecContext::DSC_type_specifier: 2277 return true; 2278 2279 case DeclSpecContext::DSC_objc_method_result: 2280 case DeclSpecContext::DSC_template_type_arg: 2281 case DeclSpecContext::DSC_trailing: 2282 case DeclSpecContext::DSC_alias_declaration: 2283 return false; 2284 } 2285 llvm_unreachable("Missing DeclSpecContext case"); 2286 } 2287 2288 /// Information on a C++0x for-range-initializer found while parsing a 2289 /// declaration which turns out to be a for-range-declaration. 2290 struct ForRangeInit { 2291 SourceLocation ColonLoc; 2292 ExprResult RangeExpr; 2293 ParsedForRangeDeclForRangeInit2294 bool ParsedForRangeDecl() { return !ColonLoc.isInvalid(); } 2295 }; 2296 struct ForRangeInfo : ForRangeInit { 2297 StmtResult LoopVar; 2298 }; 2299 2300 DeclGroupPtrTy ParseDeclaration(DeclaratorContext Context, 2301 SourceLocation &DeclEnd, 2302 ParsedAttributesWithRange &attrs, 2303 SourceLocation *DeclSpecStart = nullptr); 2304 DeclGroupPtrTy 2305 ParseSimpleDeclaration(DeclaratorContext Context, SourceLocation &DeclEnd, 2306 ParsedAttributesWithRange &attrs, bool RequireSemi, 2307 ForRangeInit *FRI = nullptr, 2308 SourceLocation *DeclSpecStart = nullptr); 2309 bool MightBeDeclarator(DeclaratorContext Context); 2310 DeclGroupPtrTy ParseDeclGroup(ParsingDeclSpec &DS, DeclaratorContext Context, 2311 SourceLocation *DeclEnd = nullptr, 2312 ForRangeInit *FRI = nullptr); 2313 Decl *ParseDeclarationAfterDeclarator(Declarator &D, 2314 const ParsedTemplateInfo &TemplateInfo = ParsedTemplateInfo()); 2315 bool ParseAsmAttributesAfterDeclarator(Declarator &D); 2316 Decl *ParseDeclarationAfterDeclaratorAndAttributes( 2317 Declarator &D, 2318 const ParsedTemplateInfo &TemplateInfo = ParsedTemplateInfo(), 2319 ForRangeInit *FRI = nullptr); 2320 Decl *ParseFunctionStatementBody(Decl *Decl, ParseScope &BodyScope); 2321 Decl *ParseFunctionTryBlock(Decl *Decl, ParseScope &BodyScope); 2322 2323 /// When in code-completion, skip parsing of the function/method body 2324 /// unless the body contains the code-completion point. 2325 /// 2326 /// \returns true if the function body was skipped. 2327 bool trySkippingFunctionBody(); 2328 2329 bool ParseImplicitInt(DeclSpec &DS, CXXScopeSpec *SS, 2330 const ParsedTemplateInfo &TemplateInfo, 2331 AccessSpecifier AS, DeclSpecContext DSC, 2332 ParsedAttributesWithRange &Attrs); 2333 DeclSpecContext 2334 getDeclSpecContextFromDeclaratorContext(DeclaratorContext Context); 2335 void ParseDeclarationSpecifiers( 2336 DeclSpec &DS, 2337 const ParsedTemplateInfo &TemplateInfo = ParsedTemplateInfo(), 2338 AccessSpecifier AS = AS_none, 2339 DeclSpecContext DSC = DeclSpecContext::DSC_normal, 2340 LateParsedAttrList *LateAttrs = nullptr); 2341 bool DiagnoseMissingSemiAfterTagDefinition( 2342 DeclSpec &DS, AccessSpecifier AS, DeclSpecContext DSContext, 2343 LateParsedAttrList *LateAttrs = nullptr); 2344 2345 void ParseSpecifierQualifierList( 2346 DeclSpec &DS, AccessSpecifier AS = AS_none, 2347 DeclSpecContext DSC = DeclSpecContext::DSC_normal); 2348 2349 void ParseObjCTypeQualifierList(ObjCDeclSpec &DS, 2350 DeclaratorContext Context); 2351 2352 void ParseEnumSpecifier(SourceLocation TagLoc, DeclSpec &DS, 2353 const ParsedTemplateInfo &TemplateInfo, 2354 AccessSpecifier AS, DeclSpecContext DSC); 2355 void ParseEnumBody(SourceLocation StartLoc, Decl *TagDecl); 2356 void ParseStructUnionBody(SourceLocation StartLoc, DeclSpec::TST TagType, 2357 RecordDecl *TagDecl); 2358 2359 void ParseStructDeclaration( 2360 ParsingDeclSpec &DS, 2361 llvm::function_ref<void(ParsingFieldDeclarator &)> FieldsCallback); 2362 2363 bool isDeclarationSpecifier(bool DisambiguatingWithExpression = false); 2364 bool isTypeSpecifierQualifier(); 2365 2366 /// isKnownToBeTypeSpecifier - Return true if we know that the specified token 2367 /// is definitely a type-specifier. Return false if it isn't part of a type 2368 /// specifier or if we're not sure. 2369 bool isKnownToBeTypeSpecifier(const Token &Tok) const; 2370 2371 /// Return true if we know that we are definitely looking at a 2372 /// decl-specifier, and isn't part of an expression such as a function-style 2373 /// cast. Return false if it's no a decl-specifier, or we're not sure. isKnownToBeDeclarationSpecifier()2374 bool isKnownToBeDeclarationSpecifier() { 2375 if (getLangOpts().CPlusPlus) 2376 return isCXXDeclarationSpecifier() == TPResult::True; 2377 return isDeclarationSpecifier(true); 2378 } 2379 2380 /// isDeclarationStatement - Disambiguates between a declaration or an 2381 /// expression statement, when parsing function bodies. 2382 /// Returns true for declaration, false for expression. isDeclarationStatement()2383 bool isDeclarationStatement() { 2384 if (getLangOpts().CPlusPlus) 2385 return isCXXDeclarationStatement(); 2386 return isDeclarationSpecifier(true); 2387 } 2388 2389 /// isForInitDeclaration - Disambiguates between a declaration or an 2390 /// expression in the context of the C 'clause-1' or the C++ 2391 // 'for-init-statement' part of a 'for' statement. 2392 /// Returns true for declaration, false for expression. isForInitDeclaration()2393 bool isForInitDeclaration() { 2394 if (getLangOpts().OpenMP) 2395 Actions.startOpenMPLoop(); 2396 if (getLangOpts().CPlusPlus) 2397 return isCXXSimpleDeclaration(/*AllowForRangeDecl=*/true); 2398 return isDeclarationSpecifier(true); 2399 } 2400 2401 /// Determine whether this is a C++1z for-range-identifier. 2402 bool isForRangeIdentifier(); 2403 2404 /// Determine whether we are currently at the start of an Objective-C 2405 /// class message that appears to be missing the open bracket '['. 2406 bool isStartOfObjCClassMessageMissingOpenBracket(); 2407 2408 /// Starting with a scope specifier, identifier, or 2409 /// template-id that refers to the current class, determine whether 2410 /// this is a constructor declarator. 2411 bool isConstructorDeclarator(bool Unqualified, bool DeductionGuide = false); 2412 2413 /// Specifies the context in which type-id/expression 2414 /// disambiguation will occur. 2415 enum TentativeCXXTypeIdContext { 2416 TypeIdInParens, 2417 TypeIdUnambiguous, 2418 TypeIdAsTemplateArgument 2419 }; 2420 2421 2422 /// isTypeIdInParens - Assumes that a '(' was parsed and now we want to know 2423 /// whether the parens contain an expression or a type-id. 2424 /// Returns true for a type-id and false for an expression. isTypeIdInParens(bool & isAmbiguous)2425 bool isTypeIdInParens(bool &isAmbiguous) { 2426 if (getLangOpts().CPlusPlus) 2427 return isCXXTypeId(TypeIdInParens, isAmbiguous); 2428 isAmbiguous = false; 2429 return isTypeSpecifierQualifier(); 2430 } isTypeIdInParens()2431 bool isTypeIdInParens() { 2432 bool isAmbiguous; 2433 return isTypeIdInParens(isAmbiguous); 2434 } 2435 2436 /// Checks if the current tokens form type-id or expression. 2437 /// It is similar to isTypeIdInParens but does not suppose that type-id 2438 /// is in parenthesis. isTypeIdUnambiguously()2439 bool isTypeIdUnambiguously() { 2440 bool IsAmbiguous; 2441 if (getLangOpts().CPlusPlus) 2442 return isCXXTypeId(TypeIdUnambiguous, IsAmbiguous); 2443 return isTypeSpecifierQualifier(); 2444 } 2445 2446 /// isCXXDeclarationStatement - C++-specialized function that disambiguates 2447 /// between a declaration or an expression statement, when parsing function 2448 /// bodies. Returns true for declaration, false for expression. 2449 bool isCXXDeclarationStatement(); 2450 2451 /// isCXXSimpleDeclaration - C++-specialized function that disambiguates 2452 /// between a simple-declaration or an expression-statement. 2453 /// If during the disambiguation process a parsing error is encountered, 2454 /// the function returns true to let the declaration parsing code handle it. 2455 /// Returns false if the statement is disambiguated as expression. 2456 bool isCXXSimpleDeclaration(bool AllowForRangeDecl); 2457 2458 /// isCXXFunctionDeclarator - Disambiguates between a function declarator or 2459 /// a constructor-style initializer, when parsing declaration statements. 2460 /// Returns true for function declarator and false for constructor-style 2461 /// initializer. Sets 'IsAmbiguous' to true to indicate that this declaration 2462 /// might be a constructor-style initializer. 2463 /// If during the disambiguation process a parsing error is encountered, 2464 /// the function returns true to let the declaration parsing code handle it. 2465 bool isCXXFunctionDeclarator(bool *IsAmbiguous = nullptr); 2466 2467 struct ConditionDeclarationOrInitStatementState; 2468 enum class ConditionOrInitStatement { 2469 Expression, ///< Disambiguated as an expression (either kind). 2470 ConditionDecl, ///< Disambiguated as the declaration form of condition. 2471 InitStmtDecl, ///< Disambiguated as a simple-declaration init-statement. 2472 ForRangeDecl, ///< Disambiguated as a for-range declaration. 2473 Error ///< Can't be any of the above! 2474 }; 2475 /// Disambiguates between the different kinds of things that can happen 2476 /// after 'if (' or 'switch ('. This could be one of two different kinds of 2477 /// declaration (depending on whether there is a ';' later) or an expression. 2478 ConditionOrInitStatement 2479 isCXXConditionDeclarationOrInitStatement(bool CanBeInitStmt, 2480 bool CanBeForRangeDecl); 2481 2482 bool isCXXTypeId(TentativeCXXTypeIdContext Context, bool &isAmbiguous); isCXXTypeId(TentativeCXXTypeIdContext Context)2483 bool isCXXTypeId(TentativeCXXTypeIdContext Context) { 2484 bool isAmbiguous; 2485 return isCXXTypeId(Context, isAmbiguous); 2486 } 2487 2488 /// TPResult - Used as the result value for functions whose purpose is to 2489 /// disambiguate C++ constructs by "tentatively parsing" them. 2490 enum class TPResult { 2491 True, False, Ambiguous, Error 2492 }; 2493 2494 /// Determine whether we could have an enum-base. 2495 /// 2496 /// \p AllowSemi If \c true, then allow a ';' after the enum-base; otherwise 2497 /// only consider this to be an enum-base if the next token is a '{'. 2498 /// 2499 /// \return \c false if this cannot possibly be an enum base; \c true 2500 /// otherwise. 2501 bool isEnumBase(bool AllowSemi); 2502 2503 /// isCXXDeclarationSpecifier - Returns TPResult::True if it is a 2504 /// declaration specifier, TPResult::False if it is not, 2505 /// TPResult::Ambiguous if it could be either a decl-specifier or a 2506 /// function-style cast, and TPResult::Error if a parsing error was 2507 /// encountered. If it could be a braced C++11 function-style cast, returns 2508 /// BracedCastResult. 2509 /// Doesn't consume tokens. 2510 TPResult 2511 isCXXDeclarationSpecifier(TPResult BracedCastResult = TPResult::False, 2512 bool *InvalidAsDeclSpec = nullptr); 2513 2514 /// Given that isCXXDeclarationSpecifier returns \c TPResult::True or 2515 /// \c TPResult::Ambiguous, determine whether the decl-specifier would be 2516 /// a type-specifier other than a cv-qualifier. 2517 bool isCXXDeclarationSpecifierAType(); 2518 2519 /// Determine whether the current token sequence might be 2520 /// '<' template-argument-list '>' 2521 /// rather than a less-than expression. 2522 TPResult isTemplateArgumentList(unsigned TokensToSkip); 2523 2524 /// Determine whether an '(' after an 'explicit' keyword is part of a C++20 2525 /// 'explicit(bool)' declaration, in earlier language modes where that is an 2526 /// extension. 2527 TPResult isExplicitBool(); 2528 2529 /// Determine whether an identifier has been tentatively declared as a 2530 /// non-type. Such tentative declarations should not be found to name a type 2531 /// during a tentative parse, but also should not be annotated as a non-type. 2532 bool isTentativelyDeclared(IdentifierInfo *II); 2533 2534 // "Tentative parsing" functions, used for disambiguation. If a parsing error 2535 // is encountered they will return TPResult::Error. 2536 // Returning TPResult::True/False indicates that the ambiguity was 2537 // resolved and tentative parsing may stop. TPResult::Ambiguous indicates 2538 // that more tentative parsing is necessary for disambiguation. 2539 // They all consume tokens, so backtracking should be used after calling them. 2540 2541 TPResult TryParseSimpleDeclaration(bool AllowForRangeDecl); 2542 TPResult TryParseTypeofSpecifier(); 2543 TPResult TryParseProtocolQualifiers(); 2544 TPResult TryParsePtrOperatorSeq(); 2545 TPResult TryParseOperatorId(); 2546 TPResult TryParseInitDeclaratorList(); 2547 TPResult TryParseDeclarator(bool mayBeAbstract, bool mayHaveIdentifier = true, 2548 bool mayHaveDirectInit = false); 2549 TPResult 2550 TryParseParameterDeclarationClause(bool *InvalidAsDeclaration = nullptr, 2551 bool VersusTemplateArg = false); 2552 TPResult TryParseFunctionDeclarator(); 2553 TPResult TryParseBracketDeclarator(); 2554 TPResult TryConsumeDeclarationSpecifier(); 2555 2556 /// Try to skip a possibly empty sequence of 'attribute-specifier's without 2557 /// full validation of the syntactic structure of attributes. 2558 bool TrySkipAttributes(); 2559 2560 public: 2561 TypeResult 2562 ParseTypeName(SourceRange *Range = nullptr, 2563 DeclaratorContext Context = DeclaratorContext::TypeName, 2564 AccessSpecifier AS = AS_none, Decl **OwnedType = nullptr, 2565 ParsedAttributes *Attrs = nullptr); 2566 2567 private: 2568 void ParseBlockId(SourceLocation CaretLoc); 2569 2570 /// Are [[]] attributes enabled? standardAttributesAllowed()2571 bool standardAttributesAllowed() const { 2572 const LangOptions &LO = getLangOpts(); 2573 return LO.DoubleSquareBracketAttributes; 2574 } 2575 2576 // Check for the start of an attribute-specifier-seq in a context where an 2577 // attribute is not allowed. CheckProhibitedCXX11Attribute()2578 bool CheckProhibitedCXX11Attribute() { 2579 assert(Tok.is(tok::l_square)); 2580 if (!standardAttributesAllowed() || NextToken().isNot(tok::l_square)) 2581 return false; 2582 return DiagnoseProhibitedCXX11Attribute(); 2583 } 2584 2585 bool DiagnoseProhibitedCXX11Attribute(); CheckMisplacedCXX11Attribute(ParsedAttributesWithRange & Attrs,SourceLocation CorrectLocation)2586 void CheckMisplacedCXX11Attribute(ParsedAttributesWithRange &Attrs, 2587 SourceLocation CorrectLocation) { 2588 if (!standardAttributesAllowed()) 2589 return; 2590 if ((Tok.isNot(tok::l_square) || NextToken().isNot(tok::l_square)) && 2591 Tok.isNot(tok::kw_alignas)) 2592 return; 2593 DiagnoseMisplacedCXX11Attribute(Attrs, CorrectLocation); 2594 } 2595 void DiagnoseMisplacedCXX11Attribute(ParsedAttributesWithRange &Attrs, 2596 SourceLocation CorrectLocation); 2597 2598 void stripTypeAttributesOffDeclSpec(ParsedAttributesWithRange &Attrs, 2599 DeclSpec &DS, Sema::TagUseKind TUK); 2600 2601 // FixItLoc = possible correct location for the attributes 2602 void ProhibitAttributes(ParsedAttributesWithRange &Attrs, 2603 SourceLocation FixItLoc = SourceLocation()) { 2604 if (Attrs.Range.isInvalid()) 2605 return; 2606 DiagnoseProhibitedAttributes(Attrs.Range, FixItLoc); 2607 Attrs.clear(); 2608 } 2609 2610 void ProhibitAttributes(ParsedAttributesViewWithRange &Attrs, 2611 SourceLocation FixItLoc = SourceLocation()) { 2612 if (Attrs.Range.isInvalid()) 2613 return; 2614 DiagnoseProhibitedAttributes(Attrs.Range, FixItLoc); 2615 Attrs.clearListOnly(); 2616 } 2617 void DiagnoseProhibitedAttributes(const SourceRange &Range, 2618 SourceLocation FixItLoc); 2619 2620 // Forbid C++11 and C2x attributes that appear on certain syntactic locations 2621 // which standard permits but we don't supported yet, for example, attributes 2622 // appertain to decl specifiers. 2623 void ProhibitCXX11Attributes(ParsedAttributesWithRange &Attrs, 2624 unsigned DiagID, 2625 bool DiagnoseEmptyAttrs = false); 2626 2627 /// Skip C++11 and C2x attributes and return the end location of the 2628 /// last one. 2629 /// \returns SourceLocation() if there are no attributes. 2630 SourceLocation SkipCXX11Attributes(); 2631 2632 /// Diagnose and skip C++11 and C2x attributes that appear in syntactic 2633 /// locations where attributes are not allowed. 2634 void DiagnoseAndSkipCXX11Attributes(); 2635 2636 /// Parses syntax-generic attribute arguments for attributes which are 2637 /// known to the implementation, and adds them to the given ParsedAttributes 2638 /// list with the given attribute syntax. Returns the number of arguments 2639 /// parsed for the attribute. 2640 unsigned 2641 ParseAttributeArgsCommon(IdentifierInfo *AttrName, SourceLocation AttrNameLoc, 2642 ParsedAttributes &Attrs, SourceLocation *EndLoc, 2643 IdentifierInfo *ScopeName, SourceLocation ScopeLoc, 2644 ParsedAttr::Syntax Syntax); 2645 2646 enum ParseAttrKindMask { 2647 PAKM_GNU = 1 << 0, 2648 PAKM_Declspec = 1 << 1, 2649 PAKM_CXX11 = 1 << 2, 2650 }; 2651 2652 /// \brief Parse attributes based on what syntaxes are desired, allowing for 2653 /// the order to vary. e.g. with PAKM_GNU | PAKM_Declspec: 2654 /// __attribute__((...)) __declspec(...) __attribute__((...))) 2655 /// Note that Microsoft attributes (spelled with single square brackets) are 2656 /// not supported by this because of parsing ambiguities with other 2657 /// constructs. 2658 /// 2659 /// There are some attribute parse orderings that should not be allowed in 2660 /// arbitrary order. e.g., 2661 /// 2662 /// [[]] __attribute__(()) int i; // OK 2663 /// __attribute__(()) [[]] int i; // Not OK 2664 /// 2665 /// Such situations should use the specific attribute parsing functionality. 2666 void ParseAttributes(unsigned WhichAttrKinds, 2667 ParsedAttributesWithRange &Attrs, 2668 SourceLocation *End = nullptr, 2669 LateParsedAttrList *LateAttrs = nullptr); 2670 void ParseAttributes(unsigned WhichAttrKinds, ParsedAttributes &Attrs, 2671 SourceLocation *End = nullptr, 2672 LateParsedAttrList *LateAttrs = nullptr) { 2673 ParsedAttributesWithRange AttrsWithRange(AttrFactory); 2674 ParseAttributes(WhichAttrKinds, AttrsWithRange, End, LateAttrs); 2675 Attrs.takeAllFrom(AttrsWithRange); 2676 } 2677 /// \brief Possibly parse attributes based on what syntaxes are desired, 2678 /// allowing for the order to vary. 2679 bool MaybeParseAttributes(unsigned WhichAttrKinds, 2680 ParsedAttributesWithRange &Attrs, 2681 SourceLocation *End = nullptr, 2682 LateParsedAttrList *LateAttrs = nullptr) { 2683 if (Tok.isOneOf(tok::kw___attribute, tok::kw___declspec) || 2684 (standardAttributesAllowed() && isCXX11AttributeSpecifier())) { 2685 ParseAttributes(WhichAttrKinds, Attrs, End, LateAttrs); 2686 return true; 2687 } 2688 return false; 2689 } 2690 bool MaybeParseAttributes(unsigned WhichAttrKinds, ParsedAttributes &Attrs, 2691 SourceLocation *End = nullptr, 2692 LateParsedAttrList *LateAttrs = nullptr) { 2693 if (Tok.isOneOf(tok::kw___attribute, tok::kw___declspec) || 2694 (standardAttributesAllowed() && isCXX11AttributeSpecifier())) { 2695 ParseAttributes(WhichAttrKinds, Attrs, End, LateAttrs); 2696 return true; 2697 } 2698 return false; 2699 } 2700 2701 void MaybeParseGNUAttributes(Declarator &D, 2702 LateParsedAttrList *LateAttrs = nullptr) { 2703 if (Tok.is(tok::kw___attribute)) { 2704 ParsedAttributes attrs(AttrFactory); 2705 SourceLocation endLoc; 2706 ParseGNUAttributes(attrs, &endLoc, LateAttrs, &D); 2707 D.takeAttributes(attrs, endLoc); 2708 } 2709 } 2710 2711 /// Parses GNU-style attributes and returns them without source range 2712 /// information. 2713 /// 2714 /// This API is discouraged. Use the version that takes a 2715 /// ParsedAttributesWithRange instead. 2716 bool MaybeParseGNUAttributes(ParsedAttributes &Attrs, 2717 SourceLocation *EndLoc = nullptr, 2718 LateParsedAttrList *LateAttrs = nullptr) { 2719 if (Tok.is(tok::kw___attribute)) { 2720 ParsedAttributesWithRange AttrsWithRange(AttrFactory); 2721 ParseGNUAttributes(Attrs, EndLoc, LateAttrs); 2722 Attrs.takeAllFrom(AttrsWithRange); 2723 return true; 2724 } 2725 return false; 2726 } 2727 2728 bool MaybeParseGNUAttributes(ParsedAttributesWithRange &Attrs, 2729 SourceLocation *EndLoc = nullptr, 2730 LateParsedAttrList *LateAttrs = nullptr) { 2731 if (Tok.is(tok::kw___attribute)) { 2732 ParseGNUAttributes(Attrs, EndLoc, LateAttrs); 2733 return true; 2734 } 2735 return false; 2736 } 2737 2738 /// Parses GNU-style attributes and returns them without source range 2739 /// information. 2740 /// 2741 /// This API is discouraged. Use the version that takes a 2742 /// ParsedAttributesWithRange instead. 2743 void ParseGNUAttributes(ParsedAttributes &Attrs, 2744 SourceLocation *EndLoc = nullptr, 2745 LateParsedAttrList *LateAttrs = nullptr, 2746 Declarator *D = nullptr) { 2747 ParsedAttributesWithRange AttrsWithRange(AttrFactory); 2748 ParseGNUAttributes(AttrsWithRange, EndLoc, LateAttrs, D); 2749 Attrs.takeAllFrom(AttrsWithRange); 2750 } 2751 2752 void ParseGNUAttributes(ParsedAttributesWithRange &Attrs, 2753 SourceLocation *EndLoc = nullptr, 2754 LateParsedAttrList *LateAttrs = nullptr, 2755 Declarator *D = nullptr); 2756 void ParseGNUAttributeArgs(IdentifierInfo *AttrName, 2757 SourceLocation AttrNameLoc, 2758 ParsedAttributes &Attrs, SourceLocation *EndLoc, 2759 IdentifierInfo *ScopeName, SourceLocation ScopeLoc, 2760 ParsedAttr::Syntax Syntax, Declarator *D); 2761 IdentifierLoc *ParseIdentifierLoc(); 2762 2763 unsigned 2764 ParseClangAttributeArgs(IdentifierInfo *AttrName, SourceLocation AttrNameLoc, 2765 ParsedAttributes &Attrs, SourceLocation *EndLoc, 2766 IdentifierInfo *ScopeName, SourceLocation ScopeLoc, 2767 ParsedAttr::Syntax Syntax); 2768 MaybeParseCXX11Attributes(Declarator & D)2769 void MaybeParseCXX11Attributes(Declarator &D) { 2770 if (standardAttributesAllowed() && isCXX11AttributeSpecifier()) { 2771 ParsedAttributesWithRange attrs(AttrFactory); 2772 SourceLocation endLoc; 2773 ParseCXX11Attributes(attrs, &endLoc); 2774 D.takeAttributes(attrs, endLoc); 2775 } 2776 } 2777 bool MaybeParseCXX11Attributes(ParsedAttributes &attrs, 2778 SourceLocation *endLoc = nullptr) { 2779 if (standardAttributesAllowed() && isCXX11AttributeSpecifier()) { 2780 ParsedAttributesWithRange attrsWithRange(AttrFactory); 2781 ParseCXX11Attributes(attrsWithRange, endLoc); 2782 attrs.takeAllFrom(attrsWithRange); 2783 return true; 2784 } 2785 return false; 2786 } 2787 bool MaybeParseCXX11Attributes(ParsedAttributesWithRange &attrs, 2788 SourceLocation *endLoc = nullptr, 2789 bool OuterMightBeMessageSend = false) { 2790 if (standardAttributesAllowed() && 2791 isCXX11AttributeSpecifier(false, OuterMightBeMessageSend)) { 2792 ParseCXX11Attributes(attrs, endLoc); 2793 return true; 2794 } 2795 return false; 2796 } 2797 2798 void ParseCXX11AttributeSpecifier(ParsedAttributes &attrs, 2799 SourceLocation *EndLoc = nullptr); 2800 void ParseCXX11Attributes(ParsedAttributesWithRange &attrs, 2801 SourceLocation *EndLoc = nullptr); 2802 /// Parses a C++11 (or C2x)-style attribute argument list. Returns true 2803 /// if this results in adding an attribute to the ParsedAttributes list. 2804 bool ParseCXX11AttributeArgs(IdentifierInfo *AttrName, 2805 SourceLocation AttrNameLoc, 2806 ParsedAttributes &Attrs, SourceLocation *EndLoc, 2807 IdentifierInfo *ScopeName, 2808 SourceLocation ScopeLoc); 2809 2810 IdentifierInfo *TryParseCXX11AttributeIdentifier(SourceLocation &Loc); 2811 2812 void MaybeParseMicrosoftAttributes(ParsedAttributes &attrs, 2813 SourceLocation *endLoc = nullptr) { 2814 if (getLangOpts().MicrosoftExt && Tok.is(tok::l_square)) 2815 ParseMicrosoftAttributes(attrs, endLoc); 2816 } 2817 void ParseMicrosoftUuidAttributeArgs(ParsedAttributes &Attrs); 2818 void ParseMicrosoftAttributes(ParsedAttributes &attrs, 2819 SourceLocation *endLoc = nullptr); 2820 bool MaybeParseMicrosoftDeclSpecs(ParsedAttributes &Attrs, 2821 SourceLocation *End = nullptr) { 2822 const auto &LO = getLangOpts(); 2823 if (LO.DeclSpecKeyword && Tok.is(tok::kw___declspec)) { 2824 ParseMicrosoftDeclSpecs(Attrs, End); 2825 return true; 2826 } 2827 return false; 2828 } 2829 void ParseMicrosoftDeclSpecs(ParsedAttributes &Attrs, 2830 SourceLocation *End = nullptr); 2831 bool ParseMicrosoftDeclSpecArgs(IdentifierInfo *AttrName, 2832 SourceLocation AttrNameLoc, 2833 ParsedAttributes &Attrs); 2834 void ParseMicrosoftTypeAttributes(ParsedAttributes &attrs); 2835 void DiagnoseAndSkipExtendedMicrosoftTypeAttributes(); 2836 SourceLocation SkipExtendedMicrosoftTypeAttributes(); 2837 void ParseMicrosoftInheritanceClassAttributes(ParsedAttributes &attrs); 2838 void ParseBorlandTypeAttributes(ParsedAttributes &attrs); 2839 void ParseOpenCLKernelAttributes(ParsedAttributes &attrs); 2840 void ParseOpenCLQualifiers(ParsedAttributes &Attrs); 2841 void ParseNullabilityTypeSpecifiers(ParsedAttributes &attrs); 2842 2843 VersionTuple ParseVersionTuple(SourceRange &Range); 2844 void ParseAvailabilityAttribute(IdentifierInfo &Availability, 2845 SourceLocation AvailabilityLoc, 2846 ParsedAttributes &attrs, 2847 SourceLocation *endLoc, 2848 IdentifierInfo *ScopeName, 2849 SourceLocation ScopeLoc, 2850 ParsedAttr::Syntax Syntax); 2851 2852 Optional<AvailabilitySpec> ParseAvailabilitySpec(); 2853 ExprResult ParseAvailabilityCheckExpr(SourceLocation StartLoc); 2854 2855 void ParseExternalSourceSymbolAttribute(IdentifierInfo &ExternalSourceSymbol, 2856 SourceLocation Loc, 2857 ParsedAttributes &Attrs, 2858 SourceLocation *EndLoc, 2859 IdentifierInfo *ScopeName, 2860 SourceLocation ScopeLoc, 2861 ParsedAttr::Syntax Syntax); 2862 2863 void ParseObjCBridgeRelatedAttribute(IdentifierInfo &ObjCBridgeRelated, 2864 SourceLocation ObjCBridgeRelatedLoc, 2865 ParsedAttributes &attrs, 2866 SourceLocation *endLoc, 2867 IdentifierInfo *ScopeName, 2868 SourceLocation ScopeLoc, 2869 ParsedAttr::Syntax Syntax); 2870 2871 void ParseSwiftNewTypeAttribute(IdentifierInfo &AttrName, 2872 SourceLocation AttrNameLoc, 2873 ParsedAttributes &Attrs, 2874 SourceLocation *EndLoc, 2875 IdentifierInfo *ScopeName, 2876 SourceLocation ScopeLoc, 2877 ParsedAttr::Syntax Syntax); 2878 2879 void ParseTypeTagForDatatypeAttribute(IdentifierInfo &AttrName, 2880 SourceLocation AttrNameLoc, 2881 ParsedAttributes &Attrs, 2882 SourceLocation *EndLoc, 2883 IdentifierInfo *ScopeName, 2884 SourceLocation ScopeLoc, 2885 ParsedAttr::Syntax Syntax); 2886 2887 void 2888 ParseAttributeWithTypeArg(IdentifierInfo &AttrName, 2889 SourceLocation AttrNameLoc, ParsedAttributes &Attrs, 2890 SourceLocation *EndLoc, IdentifierInfo *ScopeName, 2891 SourceLocation ScopeLoc, ParsedAttr::Syntax Syntax); 2892 2893 void ParseTypeofSpecifier(DeclSpec &DS); 2894 SourceLocation ParseDecltypeSpecifier(DeclSpec &DS); 2895 void AnnotateExistingDecltypeSpecifier(const DeclSpec &DS, 2896 SourceLocation StartLoc, 2897 SourceLocation EndLoc); 2898 void ParseUnderlyingTypeSpecifier(DeclSpec &DS); 2899 void ParseAtomicSpecifier(DeclSpec &DS); 2900 2901 ExprResult ParseAlignArgument(SourceLocation Start, 2902 SourceLocation &EllipsisLoc); 2903 void ParseAlignmentSpecifier(ParsedAttributes &Attrs, 2904 SourceLocation *endLoc = nullptr); 2905 ExprResult ParseExtIntegerArgument(); 2906 2907 VirtSpecifiers::Specifier isCXX11VirtSpecifier(const Token &Tok) const; isCXX11VirtSpecifier()2908 VirtSpecifiers::Specifier isCXX11VirtSpecifier() const { 2909 return isCXX11VirtSpecifier(Tok); 2910 } 2911 void ParseOptionalCXX11VirtSpecifierSeq(VirtSpecifiers &VS, bool IsInterface, 2912 SourceLocation FriendLoc); 2913 2914 bool isCXX11FinalKeyword() const; 2915 2916 /// DeclaratorScopeObj - RAII object used in Parser::ParseDirectDeclarator to 2917 /// enter a new C++ declarator scope and exit it when the function is 2918 /// finished. 2919 class DeclaratorScopeObj { 2920 Parser &P; 2921 CXXScopeSpec &SS; 2922 bool EnteredScope; 2923 bool CreatedScope; 2924 public: DeclaratorScopeObj(Parser & p,CXXScopeSpec & ss)2925 DeclaratorScopeObj(Parser &p, CXXScopeSpec &ss) 2926 : P(p), SS(ss), EnteredScope(false), CreatedScope(false) {} 2927 EnterDeclaratorScope()2928 void EnterDeclaratorScope() { 2929 assert(!EnteredScope && "Already entered the scope!"); 2930 assert(SS.isSet() && "C++ scope was not set!"); 2931 2932 CreatedScope = true; 2933 P.EnterScope(0); // Not a decl scope. 2934 2935 if (!P.Actions.ActOnCXXEnterDeclaratorScope(P.getCurScope(), SS)) 2936 EnteredScope = true; 2937 } 2938 ~DeclaratorScopeObj()2939 ~DeclaratorScopeObj() { 2940 if (EnteredScope) { 2941 assert(SS.isSet() && "C++ scope was cleared ?"); 2942 P.Actions.ActOnCXXExitDeclaratorScope(P.getCurScope(), SS); 2943 } 2944 if (CreatedScope) 2945 P.ExitScope(); 2946 } 2947 }; 2948 2949 /// ParseDeclarator - Parse and verify a newly-initialized declarator. 2950 void ParseDeclarator(Declarator &D); 2951 /// A function that parses a variant of direct-declarator. 2952 typedef void (Parser::*DirectDeclParseFunction)(Declarator&); 2953 void ParseDeclaratorInternal(Declarator &D, 2954 DirectDeclParseFunction DirectDeclParser); 2955 2956 enum AttrRequirements { 2957 AR_NoAttributesParsed = 0, ///< No attributes are diagnosed. 2958 AR_GNUAttributesParsedAndRejected = 1 << 0, ///< Diagnose GNU attributes. 2959 AR_GNUAttributesParsed = 1 << 1, 2960 AR_CXX11AttributesParsed = 1 << 2, 2961 AR_DeclspecAttributesParsed = 1 << 3, 2962 AR_AllAttributesParsed = AR_GNUAttributesParsed | 2963 AR_CXX11AttributesParsed | 2964 AR_DeclspecAttributesParsed, 2965 AR_VendorAttributesParsed = AR_GNUAttributesParsed | 2966 AR_DeclspecAttributesParsed 2967 }; 2968 2969 void ParseTypeQualifierListOpt( 2970 DeclSpec &DS, unsigned AttrReqs = AR_AllAttributesParsed, 2971 bool AtomicAllowed = true, bool IdentifierRequired = false, 2972 Optional<llvm::function_ref<void()>> CodeCompletionHandler = None); 2973 void ParseDirectDeclarator(Declarator &D); 2974 void ParseDecompositionDeclarator(Declarator &D); 2975 void ParseParenDeclarator(Declarator &D); 2976 void ParseFunctionDeclarator(Declarator &D, 2977 ParsedAttributes &attrs, 2978 BalancedDelimiterTracker &Tracker, 2979 bool IsAmbiguous, 2980 bool RequiresArg = false); 2981 void InitCXXThisScopeForDeclaratorIfRelevant( 2982 const Declarator &D, const DeclSpec &DS, 2983 llvm::Optional<Sema::CXXThisScopeRAII> &ThisScope); 2984 bool ParseRefQualifier(bool &RefQualifierIsLValueRef, 2985 SourceLocation &RefQualifierLoc); 2986 bool isFunctionDeclaratorIdentifierList(); 2987 void ParseFunctionDeclaratorIdentifierList( 2988 Declarator &D, 2989 SmallVectorImpl<DeclaratorChunk::ParamInfo> &ParamInfo); 2990 void ParseParameterDeclarationClause( 2991 DeclaratorContext DeclaratorContext, 2992 ParsedAttributes &attrs, 2993 SmallVectorImpl<DeclaratorChunk::ParamInfo> &ParamInfo, 2994 SourceLocation &EllipsisLoc); 2995 void ParseBracketDeclarator(Declarator &D); 2996 void ParseMisplacedBracketDeclarator(Declarator &D); 2997 2998 //===--------------------------------------------------------------------===// 2999 // C++ 7: Declarations [dcl.dcl] 3000 3001 /// The kind of attribute specifier we have found. 3002 enum CXX11AttributeKind { 3003 /// This is not an attribute specifier. 3004 CAK_NotAttributeSpecifier, 3005 /// This should be treated as an attribute-specifier. 3006 CAK_AttributeSpecifier, 3007 /// The next tokens are '[[', but this is not an attribute-specifier. This 3008 /// is ill-formed by C++11 [dcl.attr.grammar]p6. 3009 CAK_InvalidAttributeSpecifier 3010 }; 3011 CXX11AttributeKind 3012 isCXX11AttributeSpecifier(bool Disambiguate = false, 3013 bool OuterMightBeMessageSend = false); 3014 3015 void DiagnoseUnexpectedNamespace(NamedDecl *Context); 3016 3017 DeclGroupPtrTy ParseNamespace(DeclaratorContext Context, 3018 SourceLocation &DeclEnd, 3019 SourceLocation InlineLoc = SourceLocation()); 3020 3021 struct InnerNamespaceInfo { 3022 SourceLocation NamespaceLoc; 3023 SourceLocation InlineLoc; 3024 SourceLocation IdentLoc; 3025 IdentifierInfo *Ident; 3026 }; 3027 using InnerNamespaceInfoList = llvm::SmallVector<InnerNamespaceInfo, 4>; 3028 3029 void ParseInnerNamespace(const InnerNamespaceInfoList &InnerNSs, 3030 unsigned int index, SourceLocation &InlineLoc, 3031 ParsedAttributes &attrs, 3032 BalancedDelimiterTracker &Tracker); 3033 Decl *ParseLinkage(ParsingDeclSpec &DS, DeclaratorContext Context); 3034 Decl *ParseExportDeclaration(); 3035 DeclGroupPtrTy ParseUsingDirectiveOrDeclaration( 3036 DeclaratorContext Context, const ParsedTemplateInfo &TemplateInfo, 3037 SourceLocation &DeclEnd, ParsedAttributesWithRange &attrs); 3038 Decl *ParseUsingDirective(DeclaratorContext Context, 3039 SourceLocation UsingLoc, 3040 SourceLocation &DeclEnd, 3041 ParsedAttributes &attrs); 3042 3043 struct UsingDeclarator { 3044 SourceLocation TypenameLoc; 3045 CXXScopeSpec SS; 3046 UnqualifiedId Name; 3047 SourceLocation EllipsisLoc; 3048 clearUsingDeclarator3049 void clear() { 3050 TypenameLoc = EllipsisLoc = SourceLocation(); 3051 SS.clear(); 3052 Name.clear(); 3053 } 3054 }; 3055 3056 bool ParseUsingDeclarator(DeclaratorContext Context, UsingDeclarator &D); 3057 DeclGroupPtrTy ParseUsingDeclaration(DeclaratorContext Context, 3058 const ParsedTemplateInfo &TemplateInfo, 3059 SourceLocation UsingLoc, 3060 SourceLocation &DeclEnd, 3061 AccessSpecifier AS = AS_none); 3062 Decl *ParseAliasDeclarationAfterDeclarator( 3063 const ParsedTemplateInfo &TemplateInfo, SourceLocation UsingLoc, 3064 UsingDeclarator &D, SourceLocation &DeclEnd, AccessSpecifier AS, 3065 ParsedAttributes &Attrs, Decl **OwnedType = nullptr); 3066 3067 Decl *ParseStaticAssertDeclaration(SourceLocation &DeclEnd); 3068 Decl *ParseNamespaceAlias(SourceLocation NamespaceLoc, 3069 SourceLocation AliasLoc, IdentifierInfo *Alias, 3070 SourceLocation &DeclEnd); 3071 3072 //===--------------------------------------------------------------------===// 3073 // C++ 9: classes [class] and C structs/unions. 3074 bool isValidAfterTypeSpecifier(bool CouldBeBitfield); 3075 void ParseClassSpecifier(tok::TokenKind TagTokKind, SourceLocation TagLoc, 3076 DeclSpec &DS, const ParsedTemplateInfo &TemplateInfo, 3077 AccessSpecifier AS, bool EnteringContext, 3078 DeclSpecContext DSC, 3079 ParsedAttributesWithRange &Attributes); 3080 void SkipCXXMemberSpecification(SourceLocation StartLoc, 3081 SourceLocation AttrFixitLoc, 3082 unsigned TagType, 3083 Decl *TagDecl); 3084 void ParseCXXMemberSpecification(SourceLocation StartLoc, 3085 SourceLocation AttrFixitLoc, 3086 ParsedAttributesWithRange &Attrs, 3087 unsigned TagType, 3088 Decl *TagDecl); 3089 ExprResult ParseCXXMemberInitializer(Decl *D, bool IsFunction, 3090 SourceLocation &EqualLoc); 3091 bool 3092 ParseCXXMemberDeclaratorBeforeInitializer(Declarator &DeclaratorInfo, 3093 VirtSpecifiers &VS, 3094 ExprResult &BitfieldSize, 3095 LateParsedAttrList &LateAttrs); 3096 void MaybeParseAndDiagnoseDeclSpecAfterCXX11VirtSpecifierSeq(Declarator &D, 3097 VirtSpecifiers &VS); 3098 DeclGroupPtrTy ParseCXXClassMemberDeclaration( 3099 AccessSpecifier AS, ParsedAttributes &Attr, 3100 const ParsedTemplateInfo &TemplateInfo = ParsedTemplateInfo(), 3101 ParsingDeclRAIIObject *DiagsFromTParams = nullptr); 3102 DeclGroupPtrTy ParseCXXClassMemberDeclarationWithPragmas( 3103 AccessSpecifier &AS, ParsedAttributesWithRange &AccessAttrs, 3104 DeclSpec::TST TagType, Decl *Tag); 3105 void ParseConstructorInitializer(Decl *ConstructorDecl); 3106 MemInitResult ParseMemInitializer(Decl *ConstructorDecl); 3107 void HandleMemberFunctionDeclDelays(Declarator& DeclaratorInfo, 3108 Decl *ThisDecl); 3109 3110 //===--------------------------------------------------------------------===// 3111 // C++ 10: Derived classes [class.derived] 3112 TypeResult ParseBaseTypeSpecifier(SourceLocation &BaseLoc, 3113 SourceLocation &EndLocation); 3114 void ParseBaseClause(Decl *ClassDecl); 3115 BaseResult ParseBaseSpecifier(Decl *ClassDecl); 3116 AccessSpecifier getAccessSpecifierIfPresent() const; 3117 3118 bool ParseUnqualifiedIdTemplateId(CXXScopeSpec &SS, 3119 ParsedType ObjectType, 3120 bool ObjectHadErrors, 3121 SourceLocation TemplateKWLoc, 3122 IdentifierInfo *Name, 3123 SourceLocation NameLoc, 3124 bool EnteringContext, 3125 UnqualifiedId &Id, 3126 bool AssumeTemplateId); 3127 bool ParseUnqualifiedIdOperator(CXXScopeSpec &SS, bool EnteringContext, 3128 ParsedType ObjectType, 3129 UnqualifiedId &Result); 3130 3131 //===--------------------------------------------------------------------===// 3132 // OpenMP: Directives and clauses. 3133 /// Parse clauses for '#pragma omp declare simd'. 3134 DeclGroupPtrTy ParseOMPDeclareSimdClauses(DeclGroupPtrTy Ptr, 3135 CachedTokens &Toks, 3136 SourceLocation Loc); 3137 3138 /// Parse a property kind into \p TIProperty for the selector set \p Set and 3139 /// selector \p Selector. 3140 void parseOMPTraitPropertyKind(OMPTraitProperty &TIProperty, 3141 llvm::omp::TraitSet Set, 3142 llvm::omp::TraitSelector Selector, 3143 llvm::StringMap<SourceLocation> &Seen); 3144 3145 /// Parse a selector kind into \p TISelector for the selector set \p Set. 3146 void parseOMPTraitSelectorKind(OMPTraitSelector &TISelector, 3147 llvm::omp::TraitSet Set, 3148 llvm::StringMap<SourceLocation> &Seen); 3149 3150 /// Parse a selector set kind into \p TISet. 3151 void parseOMPTraitSetKind(OMPTraitSet &TISet, 3152 llvm::StringMap<SourceLocation> &Seen); 3153 3154 /// Parses an OpenMP context property. 3155 void parseOMPContextProperty(OMPTraitSelector &TISelector, 3156 llvm::omp::TraitSet Set, 3157 llvm::StringMap<SourceLocation> &Seen); 3158 3159 /// Parses an OpenMP context selector. 3160 void parseOMPContextSelector(OMPTraitSelector &TISelector, 3161 llvm::omp::TraitSet Set, 3162 llvm::StringMap<SourceLocation> &SeenSelectors); 3163 3164 /// Parses an OpenMP context selector set. 3165 void parseOMPContextSelectorSet(OMPTraitSet &TISet, 3166 llvm::StringMap<SourceLocation> &SeenSets); 3167 3168 /// Parses OpenMP context selectors. 3169 bool parseOMPContextSelectors(SourceLocation Loc, OMPTraitInfo &TI); 3170 3171 /// Parse a `match` clause for an '#pragma omp declare variant'. Return true 3172 /// if there was an error. 3173 bool parseOMPDeclareVariantMatchClause(SourceLocation Loc, OMPTraitInfo &TI, 3174 OMPTraitInfo *ParentTI); 3175 3176 /// Parse clauses for '#pragma omp declare variant'. 3177 void ParseOMPDeclareVariantClauses(DeclGroupPtrTy Ptr, CachedTokens &Toks, 3178 SourceLocation Loc); 3179 3180 /// Parse 'omp [begin] assume[s]' directive. 3181 void ParseOpenMPAssumesDirective(OpenMPDirectiveKind DKind, 3182 SourceLocation Loc); 3183 3184 /// Parse 'omp end assumes' directive. 3185 void ParseOpenMPEndAssumesDirective(SourceLocation Loc); 3186 3187 /// Parse clauses for '#pragma omp [begin] declare target'. 3188 void ParseOMPDeclareTargetClauses(Sema::DeclareTargetContextInfo &DTCI); 3189 3190 /// Parse '#pragma omp end declare target'. 3191 void ParseOMPEndDeclareTargetDirective(OpenMPDirectiveKind BeginDKind, 3192 OpenMPDirectiveKind EndDKind, 3193 SourceLocation Loc); 3194 3195 /// Skip tokens until a `annot_pragma_openmp_end` was found. Emit a warning if 3196 /// it is not the current token. 3197 void skipUntilPragmaOpenMPEnd(OpenMPDirectiveKind DKind); 3198 3199 /// Check the \p FoundKind against the \p ExpectedKind, if not issue an error 3200 /// that the "end" matching the "begin" directive of kind \p BeginKind was not 3201 /// found. Finally, if the expected kind was found or if \p SkipUntilOpenMPEnd 3202 /// is set, skip ahead using the helper `skipUntilPragmaOpenMPEnd`. 3203 void parseOMPEndDirective(OpenMPDirectiveKind BeginKind, 3204 OpenMPDirectiveKind ExpectedKind, 3205 OpenMPDirectiveKind FoundKind, 3206 SourceLocation MatchingLoc, 3207 SourceLocation FoundLoc, 3208 bool SkipUntilOpenMPEnd); 3209 3210 /// Parses declarative OpenMP directives. 3211 DeclGroupPtrTy ParseOpenMPDeclarativeDirectiveWithExtDecl( 3212 AccessSpecifier &AS, ParsedAttributesWithRange &Attrs, 3213 bool Delayed = false, DeclSpec::TST TagType = DeclSpec::TST_unspecified, 3214 Decl *TagDecl = nullptr); 3215 /// Parse 'omp declare reduction' construct. 3216 DeclGroupPtrTy ParseOpenMPDeclareReductionDirective(AccessSpecifier AS); 3217 /// Parses initializer for provided omp_priv declaration inside the reduction 3218 /// initializer. 3219 void ParseOpenMPReductionInitializerForDecl(VarDecl *OmpPrivParm); 3220 3221 /// Parses 'omp declare mapper' directive. 3222 DeclGroupPtrTy ParseOpenMPDeclareMapperDirective(AccessSpecifier AS); 3223 /// Parses variable declaration in 'omp declare mapper' directive. 3224 TypeResult parseOpenMPDeclareMapperVarDecl(SourceRange &Range, 3225 DeclarationName &Name, 3226 AccessSpecifier AS = AS_none); 3227 3228 /// Tries to parse cast part of OpenMP array shaping operation: 3229 /// '[' expression ']' { '[' expression ']' } ')'. 3230 bool tryParseOpenMPArrayShapingCastPart(); 3231 3232 /// Parses simple list of variables. 3233 /// 3234 /// \param Kind Kind of the directive. 3235 /// \param Callback Callback function to be called for the list elements. 3236 /// \param AllowScopeSpecifier true, if the variables can have fully 3237 /// qualified names. 3238 /// 3239 bool ParseOpenMPSimpleVarList( 3240 OpenMPDirectiveKind Kind, 3241 const llvm::function_ref<void(CXXScopeSpec &, DeclarationNameInfo)> & 3242 Callback, 3243 bool AllowScopeSpecifier); 3244 /// Parses declarative or executable directive. 3245 /// 3246 /// \param StmtCtx The context in which we're parsing the directive. 3247 StmtResult 3248 ParseOpenMPDeclarativeOrExecutableDirective(ParsedStmtContext StmtCtx); 3249 /// Parses clause of kind \a CKind for directive of a kind \a Kind. 3250 /// 3251 /// \param DKind Kind of current directive. 3252 /// \param CKind Kind of current clause. 3253 /// \param FirstClause true, if this is the first clause of a kind \a CKind 3254 /// in current directive. 3255 /// 3256 OMPClause *ParseOpenMPClause(OpenMPDirectiveKind DKind, 3257 OpenMPClauseKind CKind, bool FirstClause); 3258 /// Parses clause with a single expression of a kind \a Kind. 3259 /// 3260 /// \param Kind Kind of current clause. 3261 /// \param ParseOnly true to skip the clause's semantic actions and return 3262 /// nullptr. 3263 /// 3264 OMPClause *ParseOpenMPSingleExprClause(OpenMPClauseKind Kind, 3265 bool ParseOnly); 3266 /// Parses simple clause of a kind \a Kind. 3267 /// 3268 /// \param Kind Kind of current clause. 3269 /// \param ParseOnly true to skip the clause's semantic actions and return 3270 /// nullptr. 3271 /// 3272 OMPClause *ParseOpenMPSimpleClause(OpenMPClauseKind Kind, bool ParseOnly); 3273 /// Parses clause with a single expression and an additional argument 3274 /// of a kind \a Kind. 3275 /// 3276 /// \param DKind Directive kind. 3277 /// \param Kind Kind of current clause. 3278 /// \param ParseOnly true to skip the clause's semantic actions and return 3279 /// nullptr. 3280 /// 3281 OMPClause *ParseOpenMPSingleExprWithArgClause(OpenMPDirectiveKind DKind, 3282 OpenMPClauseKind Kind, 3283 bool ParseOnly); 3284 3285 /// Parses the 'sizes' clause of a '#pragma omp tile' directive. 3286 OMPClause *ParseOpenMPSizesClause(); 3287 3288 /// Parses clause without any additional arguments. 3289 /// 3290 /// \param Kind Kind of current clause. 3291 /// \param ParseOnly true to skip the clause's semantic actions and return 3292 /// nullptr. 3293 /// 3294 OMPClause *ParseOpenMPClause(OpenMPClauseKind Kind, bool ParseOnly = false); 3295 /// Parses clause with the list of variables of a kind \a Kind. 3296 /// 3297 /// \param Kind Kind of current clause. 3298 /// \param ParseOnly true to skip the clause's semantic actions and return 3299 /// nullptr. 3300 /// 3301 OMPClause *ParseOpenMPVarListClause(OpenMPDirectiveKind DKind, 3302 OpenMPClauseKind Kind, bool ParseOnly); 3303 3304 /// Parses and creates OpenMP 5.0 iterators expression: 3305 /// <iterators> = 'iterator' '(' { [ <iterator-type> ] identifier = 3306 /// <range-specification> }+ ')' 3307 ExprResult ParseOpenMPIteratorsExpr(); 3308 3309 /// Parses allocators and traits in the context of the uses_allocator clause. 3310 /// Expected format: 3311 /// '(' { <allocator> [ '(' <allocator_traits> ')' ] }+ ')' 3312 OMPClause *ParseOpenMPUsesAllocatorClause(OpenMPDirectiveKind DKind); 3313 3314 /// Parses clause with an interop variable of kind \a Kind. 3315 /// 3316 /// \param Kind Kind of current clause. 3317 /// \param ParseOnly true to skip the clause's semantic actions and return 3318 /// nullptr. 3319 // 3320 OMPClause *ParseOpenMPInteropClause(OpenMPClauseKind Kind, bool ParseOnly); 3321 3322 public: 3323 /// Parses simple expression in parens for single-expression clauses of OpenMP 3324 /// constructs. 3325 /// \param RLoc Returned location of right paren. 3326 ExprResult ParseOpenMPParensExpr(StringRef ClauseName, SourceLocation &RLoc, 3327 bool IsAddressOfOperand = false); 3328 3329 /// Data used for parsing list of variables in OpenMP clauses. 3330 struct OpenMPVarListDataTy { 3331 Expr *DepModOrTailExpr = nullptr; 3332 SourceLocation ColonLoc; 3333 SourceLocation RLoc; 3334 CXXScopeSpec ReductionOrMapperIdScopeSpec; 3335 DeclarationNameInfo ReductionOrMapperId; 3336 int ExtraModifier = -1; ///< Additional modifier for linear, map, depend or 3337 ///< lastprivate clause. 3338 SmallVector<OpenMPMapModifierKind, NumberOfOMPMapClauseModifiers> 3339 MapTypeModifiers; 3340 SmallVector<SourceLocation, NumberOfOMPMapClauseModifiers> 3341 MapTypeModifiersLoc; 3342 SmallVector<OpenMPMotionModifierKind, NumberOfOMPMotionModifiers> 3343 MotionModifiers; 3344 SmallVector<SourceLocation, NumberOfOMPMotionModifiers> MotionModifiersLoc; 3345 bool IsMapTypeImplicit = false; 3346 SourceLocation ExtraModifierLoc; 3347 }; 3348 3349 /// Parses clauses with list. 3350 bool ParseOpenMPVarList(OpenMPDirectiveKind DKind, OpenMPClauseKind Kind, 3351 SmallVectorImpl<Expr *> &Vars, 3352 OpenMPVarListDataTy &Data); 3353 bool ParseUnqualifiedId(CXXScopeSpec &SS, ParsedType ObjectType, 3354 bool ObjectHadErrors, bool EnteringContext, 3355 bool AllowDestructorName, bool AllowConstructorName, 3356 bool AllowDeductionGuide, 3357 SourceLocation *TemplateKWLoc, UnqualifiedId &Result); 3358 3359 /// Parses the mapper modifier in map, to, and from clauses. 3360 bool parseMapperModifier(OpenMPVarListDataTy &Data); 3361 /// Parses map-type-modifiers in map clause. 3362 /// map([ [map-type-modifier[,] [map-type-modifier[,] ...] map-type : ] list) 3363 /// where, map-type-modifier ::= always | close | mapper(mapper-identifier) 3364 bool parseMapTypeModifiers(OpenMPVarListDataTy &Data); 3365 3366 private: 3367 //===--------------------------------------------------------------------===// 3368 // C++ 14: Templates [temp] 3369 3370 // C++ 14.1: Template Parameters [temp.param] 3371 Decl *ParseDeclarationStartingWithTemplate(DeclaratorContext Context, 3372 SourceLocation &DeclEnd, 3373 ParsedAttributes &AccessAttrs, 3374 AccessSpecifier AS = AS_none); 3375 Decl *ParseTemplateDeclarationOrSpecialization(DeclaratorContext Context, 3376 SourceLocation &DeclEnd, 3377 ParsedAttributes &AccessAttrs, 3378 AccessSpecifier AS); 3379 Decl *ParseSingleDeclarationAfterTemplate( 3380 DeclaratorContext Context, const ParsedTemplateInfo &TemplateInfo, 3381 ParsingDeclRAIIObject &DiagsFromParams, SourceLocation &DeclEnd, 3382 ParsedAttributes &AccessAttrs, AccessSpecifier AS = AS_none); 3383 bool ParseTemplateParameters(MultiParseScope &TemplateScopes, unsigned Depth, 3384 SmallVectorImpl<NamedDecl *> &TemplateParams, 3385 SourceLocation &LAngleLoc, 3386 SourceLocation &RAngleLoc); 3387 bool ParseTemplateParameterList(unsigned Depth, 3388 SmallVectorImpl<NamedDecl*> &TemplateParams); 3389 TPResult isStartOfTemplateTypeParameter(); 3390 NamedDecl *ParseTemplateParameter(unsigned Depth, unsigned Position); 3391 NamedDecl *ParseTypeParameter(unsigned Depth, unsigned Position); 3392 NamedDecl *ParseTemplateTemplateParameter(unsigned Depth, unsigned Position); 3393 NamedDecl *ParseNonTypeTemplateParameter(unsigned Depth, unsigned Position); 3394 bool isTypeConstraintAnnotation(); 3395 bool TryAnnotateTypeConstraint(); 3396 void DiagnoseMisplacedEllipsis(SourceLocation EllipsisLoc, 3397 SourceLocation CorrectLoc, 3398 bool AlreadyHasEllipsis, 3399 bool IdentifierHasName); 3400 void DiagnoseMisplacedEllipsisInDeclarator(SourceLocation EllipsisLoc, 3401 Declarator &D); 3402 // C++ 14.3: Template arguments [temp.arg] 3403 typedef SmallVector<ParsedTemplateArgument, 16> TemplateArgList; 3404 3405 bool ParseGreaterThanInTemplateList(SourceLocation LAngleLoc, 3406 SourceLocation &RAngleLoc, 3407 bool ConsumeLastToken, 3408 bool ObjCGenericList); 3409 bool ParseTemplateIdAfterTemplateName(bool ConsumeLastToken, 3410 SourceLocation &LAngleLoc, 3411 TemplateArgList &TemplateArgs, 3412 SourceLocation &RAngleLoc); 3413 3414 bool AnnotateTemplateIdToken(TemplateTy Template, TemplateNameKind TNK, 3415 CXXScopeSpec &SS, 3416 SourceLocation TemplateKWLoc, 3417 UnqualifiedId &TemplateName, 3418 bool AllowTypeAnnotation = true, 3419 bool TypeConstraint = false); 3420 void AnnotateTemplateIdTokenAsType(CXXScopeSpec &SS, 3421 bool IsClassName = false); 3422 bool ParseTemplateArgumentList(TemplateArgList &TemplateArgs); 3423 ParsedTemplateArgument ParseTemplateTemplateArgument(); 3424 ParsedTemplateArgument ParseTemplateArgument(); 3425 Decl *ParseExplicitInstantiation(DeclaratorContext Context, 3426 SourceLocation ExternLoc, 3427 SourceLocation TemplateLoc, 3428 SourceLocation &DeclEnd, 3429 ParsedAttributes &AccessAttrs, 3430 AccessSpecifier AS = AS_none); 3431 // C++2a: Template, concept definition [temp] 3432 Decl * 3433 ParseConceptDefinition(const ParsedTemplateInfo &TemplateInfo, 3434 SourceLocation &DeclEnd); 3435 3436 //===--------------------------------------------------------------------===// 3437 // Modules 3438 DeclGroupPtrTy ParseModuleDecl(bool IsFirstDecl); 3439 Decl *ParseModuleImport(SourceLocation AtLoc); 3440 bool parseMisplacedModuleImport(); tryParseMisplacedModuleImport()3441 bool tryParseMisplacedModuleImport() { 3442 tok::TokenKind Kind = Tok.getKind(); 3443 if (Kind == tok::annot_module_begin || Kind == tok::annot_module_end || 3444 Kind == tok::annot_module_include) 3445 return parseMisplacedModuleImport(); 3446 return false; 3447 } 3448 3449 bool ParseModuleName( 3450 SourceLocation UseLoc, 3451 SmallVectorImpl<std::pair<IdentifierInfo *, SourceLocation>> &Path, 3452 bool IsImport); 3453 3454 //===--------------------------------------------------------------------===// 3455 // C++11/G++: Type Traits [Type-Traits.html in the GCC manual] 3456 ExprResult ParseTypeTrait(); 3457 3458 //===--------------------------------------------------------------------===// 3459 // Embarcadero: Arary and Expression Traits 3460 ExprResult ParseArrayTypeTrait(); 3461 ExprResult ParseExpressionTrait(); 3462 3463 //===--------------------------------------------------------------------===// 3464 // Preprocessor code-completion pass-through 3465 void CodeCompleteDirective(bool InConditional) override; 3466 void CodeCompleteInConditionalExclusion() override; 3467 void CodeCompleteMacroName(bool IsDefinition) override; 3468 void CodeCompletePreprocessorExpression() override; 3469 void CodeCompleteMacroArgument(IdentifierInfo *Macro, MacroInfo *MacroInfo, 3470 unsigned ArgumentIndex) override; 3471 void CodeCompleteIncludedFile(llvm::StringRef Dir, bool IsAngled) override; 3472 void CodeCompleteNaturalLanguage() override; 3473 3474 class GNUAsmQualifiers { 3475 unsigned Qualifiers = AQ_unspecified; 3476 3477 public: 3478 enum AQ { 3479 AQ_unspecified = 0, 3480 AQ_volatile = 1, 3481 AQ_inline = 2, 3482 AQ_goto = 4, 3483 }; 3484 static const char *getQualifierName(AQ Qualifier); 3485 bool setAsmQualifier(AQ Qualifier); isVolatile()3486 inline bool isVolatile() const { return Qualifiers & AQ_volatile; }; isInline()3487 inline bool isInline() const { return Qualifiers & AQ_inline; }; isGoto()3488 inline bool isGoto() const { return Qualifiers & AQ_goto; } 3489 }; 3490 bool isGCCAsmStatement(const Token &TokAfterAsm) const; 3491 bool isGNUAsmQualifier(const Token &TokAfterAsm) const; 3492 GNUAsmQualifiers::AQ getGNUAsmQualifier(const Token &Tok) const; 3493 bool parseGNUAsmQualifierListOpt(GNUAsmQualifiers &AQ); 3494 }; 3495 3496 } // end namespace clang 3497 3498 #endif 3499