1 //===--- DeclBase.cpp - Declaration AST Node Implementation ---------------===// 2 // 3 // The LLVM Compiler Infrastructure 4 // 5 // This file is distributed under the University of Illinois Open Source 6 // License. See LICENSE.TXT for details. 7 // 8 //===----------------------------------------------------------------------===// 9 // 10 // This file implements the Decl and DeclContext classes. 11 // 12 //===----------------------------------------------------------------------===// 13 14 #include "clang/AST/DeclBase.h" 15 #include "clang/AST/ASTContext.h" 16 #include "clang/AST/ASTMutationListener.h" 17 #include "clang/AST/Attr.h" 18 #include "clang/AST/Decl.h" 19 #include "clang/AST/DeclCXX.h" 20 #include "clang/AST/DeclContextInternals.h" 21 #include "clang/AST/DeclFriend.h" 22 #include "clang/AST/DeclObjC.h" 23 #include "clang/AST/DeclOpenMP.h" 24 #include "clang/AST/DeclTemplate.h" 25 #include "clang/AST/DependentDiagnostic.h" 26 #include "clang/AST/ExternalASTSource.h" 27 #include "clang/AST/Stmt.h" 28 #include "clang/AST/StmtCXX.h" 29 #include "clang/AST/Type.h" 30 #include "clang/Basic/TargetInfo.h" 31 #include "llvm/ADT/DenseMap.h" 32 #include "llvm/Support/raw_ostream.h" 33 #include <algorithm> 34 using namespace clang; 35 36 //===----------------------------------------------------------------------===// 37 // Statistics 38 //===----------------------------------------------------------------------===// 39 40 #define DECL(DERIVED, BASE) static int n##DERIVED##s = 0; 41 #define ABSTRACT_DECL(DECL) 42 #include "clang/AST/DeclNodes.inc" 43 44 void Decl::updateOutOfDate(IdentifierInfo &II) const { 45 getASTContext().getExternalSource()->updateOutOfDateIdentifier(II); 46 } 47 48 void *Decl::operator new(std::size_t Size, const ASTContext &Context, 49 unsigned ID, std::size_t Extra) { 50 // Allocate an extra 8 bytes worth of storage, which ensures that the 51 // resulting pointer will still be 8-byte aligned. 52 void *Start = Context.Allocate(Size + Extra + 8); 53 void *Result = (char*)Start + 8; 54 55 unsigned *PrefixPtr = (unsigned *)Result - 2; 56 57 // Zero out the first 4 bytes; this is used to store the owning module ID. 58 PrefixPtr[0] = 0; 59 60 // Store the global declaration ID in the second 4 bytes. 61 PrefixPtr[1] = ID; 62 63 return Result; 64 } 65 66 void *Decl::operator new(std::size_t Size, const ASTContext &Ctx, 67 DeclContext *Parent, std::size_t Extra) { 68 assert(!Parent || &Parent->getParentASTContext() == &Ctx); 69 return ::operator new(Size + Extra, Ctx); 70 } 71 72 Module *Decl::getOwningModuleSlow() const { 73 assert(isFromASTFile() && "Not from AST file?"); 74 return getASTContext().getExternalSource()->getModule(getOwningModuleID()); 75 } 76 77 const char *Decl::getDeclKindName() const { 78 switch (DeclKind) { 79 default: llvm_unreachable("Declaration not in DeclNodes.inc!"); 80 #define DECL(DERIVED, BASE) case DERIVED: return #DERIVED; 81 #define ABSTRACT_DECL(DECL) 82 #include "clang/AST/DeclNodes.inc" 83 } 84 } 85 86 void Decl::setInvalidDecl(bool Invalid) { 87 InvalidDecl = Invalid; 88 assert(!isa<TagDecl>(this) || !cast<TagDecl>(this)->isCompleteDefinition()); 89 if (Invalid && !isa<ParmVarDecl>(this)) { 90 // Defensive maneuver for ill-formed code: we're likely not to make it to 91 // a point where we set the access specifier, so default it to "public" 92 // to avoid triggering asserts elsewhere in the front end. 93 setAccess(AS_public); 94 } 95 } 96 97 const char *DeclContext::getDeclKindName() const { 98 switch (DeclKind) { 99 default: llvm_unreachable("Declaration context not in DeclNodes.inc!"); 100 #define DECL(DERIVED, BASE) case Decl::DERIVED: return #DERIVED; 101 #define ABSTRACT_DECL(DECL) 102 #include "clang/AST/DeclNodes.inc" 103 } 104 } 105 106 bool Decl::StatisticsEnabled = false; 107 void Decl::EnableStatistics() { 108 StatisticsEnabled = true; 109 } 110 111 void Decl::PrintStats() { 112 llvm::errs() << "\n*** Decl Stats:\n"; 113 114 int totalDecls = 0; 115 #define DECL(DERIVED, BASE) totalDecls += n##DERIVED##s; 116 #define ABSTRACT_DECL(DECL) 117 #include "clang/AST/DeclNodes.inc" 118 llvm::errs() << " " << totalDecls << " decls total.\n"; 119 120 int totalBytes = 0; 121 #define DECL(DERIVED, BASE) \ 122 if (n##DERIVED##s > 0) { \ 123 totalBytes += (int)(n##DERIVED##s * sizeof(DERIVED##Decl)); \ 124 llvm::errs() << " " << n##DERIVED##s << " " #DERIVED " decls, " \ 125 << sizeof(DERIVED##Decl) << " each (" \ 126 << n##DERIVED##s * sizeof(DERIVED##Decl) \ 127 << " bytes)\n"; \ 128 } 129 #define ABSTRACT_DECL(DECL) 130 #include "clang/AST/DeclNodes.inc" 131 132 llvm::errs() << "Total bytes = " << totalBytes << "\n"; 133 } 134 135 void Decl::add(Kind k) { 136 switch (k) { 137 #define DECL(DERIVED, BASE) case DERIVED: ++n##DERIVED##s; break; 138 #define ABSTRACT_DECL(DECL) 139 #include "clang/AST/DeclNodes.inc" 140 } 141 } 142 143 bool Decl::isTemplateParameterPack() const { 144 if (const TemplateTypeParmDecl *TTP = dyn_cast<TemplateTypeParmDecl>(this)) 145 return TTP->isParameterPack(); 146 if (const NonTypeTemplateParmDecl *NTTP 147 = dyn_cast<NonTypeTemplateParmDecl>(this)) 148 return NTTP->isParameterPack(); 149 if (const TemplateTemplateParmDecl *TTP 150 = dyn_cast<TemplateTemplateParmDecl>(this)) 151 return TTP->isParameterPack(); 152 return false; 153 } 154 155 bool Decl::isParameterPack() const { 156 if (const ParmVarDecl *Parm = dyn_cast<ParmVarDecl>(this)) 157 return Parm->isParameterPack(); 158 159 return isTemplateParameterPack(); 160 } 161 162 FunctionDecl *Decl::getAsFunction() { 163 if (FunctionDecl *FD = dyn_cast<FunctionDecl>(this)) 164 return FD; 165 if (const FunctionTemplateDecl *FTD = dyn_cast<FunctionTemplateDecl>(this)) 166 return FTD->getTemplatedDecl(); 167 return 0; 168 } 169 170 bool Decl::isTemplateDecl() const { 171 return isa<TemplateDecl>(this); 172 } 173 174 const DeclContext *Decl::getParentFunctionOrMethod() const { 175 for (const DeclContext *DC = getDeclContext(); 176 DC && !DC->isTranslationUnit() && !DC->isNamespace(); 177 DC = DC->getParent()) 178 if (DC->isFunctionOrMethod()) 179 return DC; 180 181 return 0; 182 } 183 184 185 //===----------------------------------------------------------------------===// 186 // PrettyStackTraceDecl Implementation 187 //===----------------------------------------------------------------------===// 188 189 void PrettyStackTraceDecl::print(raw_ostream &OS) const { 190 SourceLocation TheLoc = Loc; 191 if (TheLoc.isInvalid() && TheDecl) 192 TheLoc = TheDecl->getLocation(); 193 194 if (TheLoc.isValid()) { 195 TheLoc.print(OS, SM); 196 OS << ": "; 197 } 198 199 OS << Message; 200 201 if (const NamedDecl *DN = dyn_cast_or_null<NamedDecl>(TheDecl)) { 202 OS << " '"; 203 DN->printQualifiedName(OS); 204 OS << '\''; 205 } 206 OS << '\n'; 207 } 208 209 //===----------------------------------------------------------------------===// 210 // Decl Implementation 211 //===----------------------------------------------------------------------===// 212 213 // Out-of-line virtual method providing a home for Decl. 214 Decl::~Decl() { } 215 216 void Decl::setDeclContext(DeclContext *DC) { 217 DeclCtx = DC; 218 } 219 220 void Decl::setLexicalDeclContext(DeclContext *DC) { 221 if (DC == getLexicalDeclContext()) 222 return; 223 224 if (isInSemaDC()) { 225 setDeclContextsImpl(getDeclContext(), DC, getASTContext()); 226 } else { 227 getMultipleDC()->LexicalDC = DC; 228 } 229 } 230 231 void Decl::setDeclContextsImpl(DeclContext *SemaDC, DeclContext *LexicalDC, 232 ASTContext &Ctx) { 233 if (SemaDC == LexicalDC) { 234 DeclCtx = SemaDC; 235 } else { 236 Decl::MultipleDC *MDC = new (Ctx) Decl::MultipleDC(); 237 MDC->SemanticDC = SemaDC; 238 MDC->LexicalDC = LexicalDC; 239 DeclCtx = MDC; 240 } 241 } 242 243 bool Decl::isInAnonymousNamespace() const { 244 const DeclContext *DC = getDeclContext(); 245 do { 246 if (const NamespaceDecl *ND = dyn_cast<NamespaceDecl>(DC)) 247 if (ND->isAnonymousNamespace()) 248 return true; 249 } while ((DC = DC->getParent())); 250 251 return false; 252 } 253 254 TranslationUnitDecl *Decl::getTranslationUnitDecl() { 255 if (TranslationUnitDecl *TUD = dyn_cast<TranslationUnitDecl>(this)) 256 return TUD; 257 258 DeclContext *DC = getDeclContext(); 259 assert(DC && "This decl is not contained in a translation unit!"); 260 261 while (!DC->isTranslationUnit()) { 262 DC = DC->getParent(); 263 assert(DC && "This decl is not contained in a translation unit!"); 264 } 265 266 return cast<TranslationUnitDecl>(DC); 267 } 268 269 ASTContext &Decl::getASTContext() const { 270 return getTranslationUnitDecl()->getASTContext(); 271 } 272 273 ASTMutationListener *Decl::getASTMutationListener() const { 274 return getASTContext().getASTMutationListener(); 275 } 276 277 unsigned Decl::getMaxAlignment() const { 278 if (!hasAttrs()) 279 return 0; 280 281 unsigned Align = 0; 282 const AttrVec &V = getAttrs(); 283 ASTContext &Ctx = getASTContext(); 284 specific_attr_iterator<AlignedAttr> I(V.begin()), E(V.end()); 285 for (; I != E; ++I) 286 Align = std::max(Align, I->getAlignment(Ctx)); 287 return Align; 288 } 289 290 bool Decl::isUsed(bool CheckUsedAttr) const { 291 if (Used) 292 return true; 293 294 // Check for used attribute. 295 if (CheckUsedAttr && hasAttr<UsedAttr>()) 296 return true; 297 298 return false; 299 } 300 301 void Decl::markUsed(ASTContext &C) { 302 if (Used) 303 return; 304 305 if (C.getASTMutationListener()) 306 C.getASTMutationListener()->DeclarationMarkedUsed(this); 307 308 Used = true; 309 } 310 311 bool Decl::isReferenced() const { 312 if (Referenced) 313 return true; 314 315 // Check redeclarations. 316 for (auto I : redecls()) 317 if (I->Referenced) 318 return true; 319 320 return false; 321 } 322 323 /// \brief Determine the availability of the given declaration based on 324 /// the target platform. 325 /// 326 /// When it returns an availability result other than \c AR_Available, 327 /// if the \p Message parameter is non-NULL, it will be set to a 328 /// string describing why the entity is unavailable. 329 /// 330 /// FIXME: Make these strings localizable, since they end up in 331 /// diagnostics. 332 static AvailabilityResult CheckAvailability(ASTContext &Context, 333 const AvailabilityAttr *A, 334 std::string *Message) { 335 StringRef TargetPlatform = Context.getTargetInfo().getPlatformName(); 336 StringRef PrettyPlatformName 337 = AvailabilityAttr::getPrettyPlatformName(TargetPlatform); 338 if (PrettyPlatformName.empty()) 339 PrettyPlatformName = TargetPlatform; 340 341 VersionTuple TargetMinVersion = Context.getTargetInfo().getPlatformMinVersion(); 342 if (TargetMinVersion.empty()) 343 return AR_Available; 344 345 // Match the platform name. 346 if (A->getPlatform()->getName() != TargetPlatform) 347 return AR_Available; 348 349 std::string HintMessage; 350 if (!A->getMessage().empty()) { 351 HintMessage = " - "; 352 HintMessage += A->getMessage(); 353 } 354 355 // Make sure that this declaration has not been marked 'unavailable'. 356 if (A->getUnavailable()) { 357 if (Message) { 358 Message->clear(); 359 llvm::raw_string_ostream Out(*Message); 360 Out << "not available on " << PrettyPlatformName 361 << HintMessage; 362 } 363 364 return AR_Unavailable; 365 } 366 367 // Make sure that this declaration has already been introduced. 368 if (!A->getIntroduced().empty() && 369 TargetMinVersion < A->getIntroduced()) { 370 if (Message) { 371 Message->clear(); 372 llvm::raw_string_ostream Out(*Message); 373 Out << "introduced in " << PrettyPlatformName << ' ' 374 << A->getIntroduced() << HintMessage; 375 } 376 377 return AR_NotYetIntroduced; 378 } 379 380 // Make sure that this declaration hasn't been obsoleted. 381 if (!A->getObsoleted().empty() && TargetMinVersion >= A->getObsoleted()) { 382 if (Message) { 383 Message->clear(); 384 llvm::raw_string_ostream Out(*Message); 385 Out << "obsoleted in " << PrettyPlatformName << ' ' 386 << A->getObsoleted() << HintMessage; 387 } 388 389 return AR_Unavailable; 390 } 391 392 // Make sure that this declaration hasn't been deprecated. 393 if (!A->getDeprecated().empty() && TargetMinVersion >= A->getDeprecated()) { 394 if (Message) { 395 Message->clear(); 396 llvm::raw_string_ostream Out(*Message); 397 Out << "first deprecated in " << PrettyPlatformName << ' ' 398 << A->getDeprecated() << HintMessage; 399 } 400 401 return AR_Deprecated; 402 } 403 404 return AR_Available; 405 } 406 407 AvailabilityResult Decl::getAvailability(std::string *Message) const { 408 AvailabilityResult Result = AR_Available; 409 std::string ResultMessage; 410 411 for (attr_iterator A = attr_begin(), AEnd = attr_end(); A != AEnd; ++A) { 412 if (DeprecatedAttr *Deprecated = dyn_cast<DeprecatedAttr>(*A)) { 413 if (Result >= AR_Deprecated) 414 continue; 415 416 if (Message) 417 ResultMessage = Deprecated->getMessage(); 418 419 Result = AR_Deprecated; 420 continue; 421 } 422 423 if (UnavailableAttr *Unavailable = dyn_cast<UnavailableAttr>(*A)) { 424 if (Message) 425 *Message = Unavailable->getMessage(); 426 return AR_Unavailable; 427 } 428 429 if (AvailabilityAttr *Availability = dyn_cast<AvailabilityAttr>(*A)) { 430 AvailabilityResult AR = CheckAvailability(getASTContext(), Availability, 431 Message); 432 433 if (AR == AR_Unavailable) 434 return AR_Unavailable; 435 436 if (AR > Result) { 437 Result = AR; 438 if (Message) 439 ResultMessage.swap(*Message); 440 } 441 continue; 442 } 443 } 444 445 if (Message) 446 Message->swap(ResultMessage); 447 return Result; 448 } 449 450 bool Decl::canBeWeakImported(bool &IsDefinition) const { 451 IsDefinition = false; 452 453 // Variables, if they aren't definitions. 454 if (const VarDecl *Var = dyn_cast<VarDecl>(this)) { 455 if (Var->isThisDeclarationADefinition()) { 456 IsDefinition = true; 457 return false; 458 } 459 return true; 460 461 // Functions, if they aren't definitions. 462 } else if (const FunctionDecl *FD = dyn_cast<FunctionDecl>(this)) { 463 if (FD->hasBody()) { 464 IsDefinition = true; 465 return false; 466 } 467 return true; 468 469 // Objective-C classes, if this is the non-fragile runtime. 470 } else if (isa<ObjCInterfaceDecl>(this) && 471 getASTContext().getLangOpts().ObjCRuntime.hasWeakClassImport()) { 472 return true; 473 474 // Nothing else. 475 } else { 476 return false; 477 } 478 } 479 480 bool Decl::isWeakImported() const { 481 bool IsDefinition; 482 if (!canBeWeakImported(IsDefinition)) 483 return false; 484 485 for (attr_iterator A = attr_begin(), AEnd = attr_end(); A != AEnd; ++A) { 486 if (isa<WeakImportAttr>(*A)) 487 return true; 488 489 if (AvailabilityAttr *Availability = dyn_cast<AvailabilityAttr>(*A)) { 490 if (CheckAvailability(getASTContext(), Availability, 0) 491 == AR_NotYetIntroduced) 492 return true; 493 } 494 } 495 496 return false; 497 } 498 499 unsigned Decl::getIdentifierNamespaceForKind(Kind DeclKind) { 500 switch (DeclKind) { 501 case Function: 502 case CXXMethod: 503 case CXXConstructor: 504 case CXXDestructor: 505 case CXXConversion: 506 case EnumConstant: 507 case Var: 508 case ImplicitParam: 509 case ParmVar: 510 case NonTypeTemplateParm: 511 case ObjCMethod: 512 case ObjCProperty: 513 case MSProperty: 514 return IDNS_Ordinary; 515 case Label: 516 return IDNS_Label; 517 case IndirectField: 518 return IDNS_Ordinary | IDNS_Member; 519 520 case ObjCCompatibleAlias: 521 case ObjCInterface: 522 return IDNS_Ordinary | IDNS_Type; 523 524 case Typedef: 525 case TypeAlias: 526 case TypeAliasTemplate: 527 case UnresolvedUsingTypename: 528 case TemplateTypeParm: 529 return IDNS_Ordinary | IDNS_Type; 530 531 case UsingShadow: 532 return 0; // we'll actually overwrite this later 533 534 case UnresolvedUsingValue: 535 return IDNS_Ordinary | IDNS_Using; 536 537 case Using: 538 return IDNS_Using; 539 540 case ObjCProtocol: 541 return IDNS_ObjCProtocol; 542 543 case Field: 544 case ObjCAtDefsField: 545 case ObjCIvar: 546 return IDNS_Member; 547 548 case Record: 549 case CXXRecord: 550 case Enum: 551 return IDNS_Tag | IDNS_Type; 552 553 case Namespace: 554 case NamespaceAlias: 555 return IDNS_Namespace; 556 557 case FunctionTemplate: 558 case VarTemplate: 559 return IDNS_Ordinary; 560 561 case ClassTemplate: 562 case TemplateTemplateParm: 563 return IDNS_Ordinary | IDNS_Tag | IDNS_Type; 564 565 // Never have names. 566 case Friend: 567 case FriendTemplate: 568 case AccessSpec: 569 case LinkageSpec: 570 case FileScopeAsm: 571 case StaticAssert: 572 case ObjCPropertyImpl: 573 case Block: 574 case Captured: 575 case TranslationUnit: 576 577 case UsingDirective: 578 case ClassTemplateSpecialization: 579 case ClassTemplatePartialSpecialization: 580 case ClassScopeFunctionSpecialization: 581 case VarTemplateSpecialization: 582 case VarTemplatePartialSpecialization: 583 case ObjCImplementation: 584 case ObjCCategory: 585 case ObjCCategoryImpl: 586 case Import: 587 case OMPThreadPrivate: 588 case Empty: 589 // Never looked up by name. 590 return 0; 591 } 592 593 llvm_unreachable("Invalid DeclKind!"); 594 } 595 596 void Decl::setAttrsImpl(const AttrVec &attrs, ASTContext &Ctx) { 597 assert(!HasAttrs && "Decl already contains attrs."); 598 599 AttrVec &AttrBlank = Ctx.getDeclAttrs(this); 600 assert(AttrBlank.empty() && "HasAttrs was wrong?"); 601 602 AttrBlank = attrs; 603 HasAttrs = true; 604 } 605 606 void Decl::dropAttrs() { 607 if (!HasAttrs) return; 608 609 HasAttrs = false; 610 getASTContext().eraseDeclAttrs(this); 611 } 612 613 const AttrVec &Decl::getAttrs() const { 614 assert(HasAttrs && "No attrs to get!"); 615 return getASTContext().getDeclAttrs(this); 616 } 617 618 Decl *Decl::castFromDeclContext (const DeclContext *D) { 619 Decl::Kind DK = D->getDeclKind(); 620 switch(DK) { 621 #define DECL(NAME, BASE) 622 #define DECL_CONTEXT(NAME) \ 623 case Decl::NAME: \ 624 return static_cast<NAME##Decl*>(const_cast<DeclContext*>(D)); 625 #define DECL_CONTEXT_BASE(NAME) 626 #include "clang/AST/DeclNodes.inc" 627 default: 628 #define DECL(NAME, BASE) 629 #define DECL_CONTEXT_BASE(NAME) \ 630 if (DK >= first##NAME && DK <= last##NAME) \ 631 return static_cast<NAME##Decl*>(const_cast<DeclContext*>(D)); 632 #include "clang/AST/DeclNodes.inc" 633 llvm_unreachable("a decl that inherits DeclContext isn't handled"); 634 } 635 } 636 637 DeclContext *Decl::castToDeclContext(const Decl *D) { 638 Decl::Kind DK = D->getKind(); 639 switch(DK) { 640 #define DECL(NAME, BASE) 641 #define DECL_CONTEXT(NAME) \ 642 case Decl::NAME: \ 643 return static_cast<NAME##Decl*>(const_cast<Decl*>(D)); 644 #define DECL_CONTEXT_BASE(NAME) 645 #include "clang/AST/DeclNodes.inc" 646 default: 647 #define DECL(NAME, BASE) 648 #define DECL_CONTEXT_BASE(NAME) \ 649 if (DK >= first##NAME && DK <= last##NAME) \ 650 return static_cast<NAME##Decl*>(const_cast<Decl*>(D)); 651 #include "clang/AST/DeclNodes.inc" 652 llvm_unreachable("a decl that inherits DeclContext isn't handled"); 653 } 654 } 655 656 SourceLocation Decl::getBodyRBrace() const { 657 // Special handling of FunctionDecl to avoid de-serializing the body from PCH. 658 // FunctionDecl stores EndRangeLoc for this purpose. 659 if (const FunctionDecl *FD = dyn_cast<FunctionDecl>(this)) { 660 const FunctionDecl *Definition; 661 if (FD->hasBody(Definition)) 662 return Definition->getSourceRange().getEnd(); 663 return SourceLocation(); 664 } 665 666 if (Stmt *Body = getBody()) 667 return Body->getSourceRange().getEnd(); 668 669 return SourceLocation(); 670 } 671 672 bool Decl::AccessDeclContextSanity() const { 673 #ifndef NDEBUG 674 // Suppress this check if any of the following hold: 675 // 1. this is the translation unit (and thus has no parent) 676 // 2. this is a template parameter (and thus doesn't belong to its context) 677 // 3. this is a non-type template parameter 678 // 4. the context is not a record 679 // 5. it's invalid 680 // 6. it's a C++0x static_assert. 681 if (isa<TranslationUnitDecl>(this) || 682 isa<TemplateTypeParmDecl>(this) || 683 isa<NonTypeTemplateParmDecl>(this) || 684 !isa<CXXRecordDecl>(getDeclContext()) || 685 isInvalidDecl() || 686 isa<StaticAssertDecl>(this) || 687 // FIXME: a ParmVarDecl can have ClassTemplateSpecialization 688 // as DeclContext (?). 689 isa<ParmVarDecl>(this) || 690 // FIXME: a ClassTemplateSpecialization or CXXRecordDecl can have 691 // AS_none as access specifier. 692 isa<CXXRecordDecl>(this) || 693 isa<ClassScopeFunctionSpecializationDecl>(this)) 694 return true; 695 696 assert(Access != AS_none && 697 "Access specifier is AS_none inside a record decl"); 698 #endif 699 return true; 700 } 701 702 static Decl::Kind getKind(const Decl *D) { return D->getKind(); } 703 static Decl::Kind getKind(const DeclContext *DC) { return DC->getDeclKind(); } 704 705 const FunctionType *Decl::getFunctionType(bool BlocksToo) const { 706 QualType Ty; 707 if (const ValueDecl *D = dyn_cast<ValueDecl>(this)) 708 Ty = D->getType(); 709 else if (const TypedefNameDecl *D = dyn_cast<TypedefNameDecl>(this)) 710 Ty = D->getUnderlyingType(); 711 else 712 return 0; 713 714 if (Ty->isFunctionPointerType()) 715 Ty = Ty->getAs<PointerType>()->getPointeeType(); 716 else if (BlocksToo && Ty->isBlockPointerType()) 717 Ty = Ty->getAs<BlockPointerType>()->getPointeeType(); 718 719 return Ty->getAs<FunctionType>(); 720 } 721 722 723 /// Starting at a given context (a Decl or DeclContext), look for a 724 /// code context that is not a closure (a lambda, block, etc.). 725 template <class T> static Decl *getNonClosureContext(T *D) { 726 if (getKind(D) == Decl::CXXMethod) { 727 CXXMethodDecl *MD = cast<CXXMethodDecl>(D); 728 if (MD->getOverloadedOperator() == OO_Call && 729 MD->getParent()->isLambda()) 730 return getNonClosureContext(MD->getParent()->getParent()); 731 return MD; 732 } else if (FunctionDecl *FD = dyn_cast<FunctionDecl>(D)) { 733 return FD; 734 } else if (ObjCMethodDecl *MD = dyn_cast<ObjCMethodDecl>(D)) { 735 return MD; 736 } else if (BlockDecl *BD = dyn_cast<BlockDecl>(D)) { 737 return getNonClosureContext(BD->getParent()); 738 } else if (CapturedDecl *CD = dyn_cast<CapturedDecl>(D)) { 739 return getNonClosureContext(CD->getParent()); 740 } else { 741 return 0; 742 } 743 } 744 745 Decl *Decl::getNonClosureContext() { 746 return ::getNonClosureContext(this); 747 } 748 749 Decl *DeclContext::getNonClosureAncestor() { 750 return ::getNonClosureContext(this); 751 } 752 753 //===----------------------------------------------------------------------===// 754 // DeclContext Implementation 755 //===----------------------------------------------------------------------===// 756 757 bool DeclContext::classof(const Decl *D) { 758 switch (D->getKind()) { 759 #define DECL(NAME, BASE) 760 #define DECL_CONTEXT(NAME) case Decl::NAME: 761 #define DECL_CONTEXT_BASE(NAME) 762 #include "clang/AST/DeclNodes.inc" 763 return true; 764 default: 765 #define DECL(NAME, BASE) 766 #define DECL_CONTEXT_BASE(NAME) \ 767 if (D->getKind() >= Decl::first##NAME && \ 768 D->getKind() <= Decl::last##NAME) \ 769 return true; 770 #include "clang/AST/DeclNodes.inc" 771 return false; 772 } 773 } 774 775 DeclContext::~DeclContext() { } 776 777 /// \brief Find the parent context of this context that will be 778 /// used for unqualified name lookup. 779 /// 780 /// Generally, the parent lookup context is the semantic context. However, for 781 /// a friend function the parent lookup context is the lexical context, which 782 /// is the class in which the friend is declared. 783 DeclContext *DeclContext::getLookupParent() { 784 // FIXME: Find a better way to identify friends 785 if (isa<FunctionDecl>(this)) 786 if (getParent()->getRedeclContext()->isFileContext() && 787 getLexicalParent()->getRedeclContext()->isRecord()) 788 return getLexicalParent(); 789 790 return getParent(); 791 } 792 793 bool DeclContext::isInlineNamespace() const { 794 return isNamespace() && 795 cast<NamespaceDecl>(this)->isInline(); 796 } 797 798 bool DeclContext::isDependentContext() const { 799 if (isFileContext()) 800 return false; 801 802 if (isa<ClassTemplatePartialSpecializationDecl>(this)) 803 return true; 804 805 if (const CXXRecordDecl *Record = dyn_cast<CXXRecordDecl>(this)) { 806 if (Record->getDescribedClassTemplate()) 807 return true; 808 809 if (Record->isDependentLambda()) 810 return true; 811 } 812 813 if (const FunctionDecl *Function = dyn_cast<FunctionDecl>(this)) { 814 if (Function->getDescribedFunctionTemplate()) 815 return true; 816 817 // Friend function declarations are dependent if their *lexical* 818 // context is dependent. 819 if (cast<Decl>(this)->getFriendObjectKind()) 820 return getLexicalParent()->isDependentContext(); 821 } 822 823 return getParent() && getParent()->isDependentContext(); 824 } 825 826 bool DeclContext::isTransparentContext() const { 827 if (DeclKind == Decl::Enum) 828 return !cast<EnumDecl>(this)->isScoped(); 829 else if (DeclKind == Decl::LinkageSpec) 830 return true; 831 832 return false; 833 } 834 835 static bool isLinkageSpecContext(const DeclContext *DC, 836 LinkageSpecDecl::LanguageIDs ID) { 837 while (DC->getDeclKind() != Decl::TranslationUnit) { 838 if (DC->getDeclKind() == Decl::LinkageSpec) 839 return cast<LinkageSpecDecl>(DC)->getLanguage() == ID; 840 DC = DC->getParent(); 841 } 842 return false; 843 } 844 845 bool DeclContext::isExternCContext() const { 846 return isLinkageSpecContext(this, clang::LinkageSpecDecl::lang_c); 847 } 848 849 bool DeclContext::isExternCXXContext() const { 850 return isLinkageSpecContext(this, clang::LinkageSpecDecl::lang_cxx); 851 } 852 853 bool DeclContext::Encloses(const DeclContext *DC) const { 854 if (getPrimaryContext() != this) 855 return getPrimaryContext()->Encloses(DC); 856 857 for (; DC; DC = DC->getParent()) 858 if (DC->getPrimaryContext() == this) 859 return true; 860 return false; 861 } 862 863 DeclContext *DeclContext::getPrimaryContext() { 864 switch (DeclKind) { 865 case Decl::TranslationUnit: 866 case Decl::LinkageSpec: 867 case Decl::Block: 868 case Decl::Captured: 869 // There is only one DeclContext for these entities. 870 return this; 871 872 case Decl::Namespace: 873 // The original namespace is our primary context. 874 return static_cast<NamespaceDecl*>(this)->getOriginalNamespace(); 875 876 case Decl::ObjCMethod: 877 return this; 878 879 case Decl::ObjCInterface: 880 if (ObjCInterfaceDecl *Def = cast<ObjCInterfaceDecl>(this)->getDefinition()) 881 return Def; 882 883 return this; 884 885 case Decl::ObjCProtocol: 886 if (ObjCProtocolDecl *Def = cast<ObjCProtocolDecl>(this)->getDefinition()) 887 return Def; 888 889 return this; 890 891 case Decl::ObjCCategory: 892 return this; 893 894 case Decl::ObjCImplementation: 895 case Decl::ObjCCategoryImpl: 896 return this; 897 898 default: 899 if (DeclKind >= Decl::firstTag && DeclKind <= Decl::lastTag) { 900 // If this is a tag type that has a definition or is currently 901 // being defined, that definition is our primary context. 902 TagDecl *Tag = cast<TagDecl>(this); 903 assert(isa<TagType>(Tag->TypeForDecl) || 904 isa<InjectedClassNameType>(Tag->TypeForDecl)); 905 906 if (TagDecl *Def = Tag->getDefinition()) 907 return Def; 908 909 if (!isa<InjectedClassNameType>(Tag->TypeForDecl)) { 910 const TagType *TagTy = cast<TagType>(Tag->TypeForDecl); 911 if (TagTy->isBeingDefined()) 912 // FIXME: is it necessarily being defined in the decl 913 // that owns the type? 914 return TagTy->getDecl(); 915 } 916 917 return Tag; 918 } 919 920 assert(DeclKind >= Decl::firstFunction && DeclKind <= Decl::lastFunction && 921 "Unknown DeclContext kind"); 922 return this; 923 } 924 } 925 926 void 927 DeclContext::collectAllContexts(SmallVectorImpl<DeclContext *> &Contexts){ 928 Contexts.clear(); 929 930 if (DeclKind != Decl::Namespace) { 931 Contexts.push_back(this); 932 return; 933 } 934 935 NamespaceDecl *Self = static_cast<NamespaceDecl *>(this); 936 for (NamespaceDecl *N = Self->getMostRecentDecl(); N; 937 N = N->getPreviousDecl()) 938 Contexts.push_back(N); 939 940 std::reverse(Contexts.begin(), Contexts.end()); 941 } 942 943 std::pair<Decl *, Decl *> 944 DeclContext::BuildDeclChain(ArrayRef<Decl*> Decls, 945 bool FieldsAlreadyLoaded) { 946 // Build up a chain of declarations via the Decl::NextInContextAndBits field. 947 Decl *FirstNewDecl = 0; 948 Decl *PrevDecl = 0; 949 for (unsigned I = 0, N = Decls.size(); I != N; ++I) { 950 if (FieldsAlreadyLoaded && isa<FieldDecl>(Decls[I])) 951 continue; 952 953 Decl *D = Decls[I]; 954 if (PrevDecl) 955 PrevDecl->NextInContextAndBits.setPointer(D); 956 else 957 FirstNewDecl = D; 958 959 PrevDecl = D; 960 } 961 962 return std::make_pair(FirstNewDecl, PrevDecl); 963 } 964 965 /// \brief We have just acquired external visible storage, and we already have 966 /// built a lookup map. For every name in the map, pull in the new names from 967 /// the external storage. 968 void DeclContext::reconcileExternalVisibleStorage() { 969 assert(NeedToReconcileExternalVisibleStorage && LookupPtr.getPointer()); 970 NeedToReconcileExternalVisibleStorage = false; 971 972 StoredDeclsMap &Map = *LookupPtr.getPointer(); 973 for (StoredDeclsMap::iterator I = Map.begin(); I != Map.end(); ++I) 974 I->second.setHasExternalDecls(); 975 } 976 977 /// \brief Load the declarations within this lexical storage from an 978 /// external source. 979 void 980 DeclContext::LoadLexicalDeclsFromExternalStorage() const { 981 ExternalASTSource *Source = getParentASTContext().getExternalSource(); 982 assert(hasExternalLexicalStorage() && Source && "No external storage?"); 983 984 // Notify that we have a DeclContext that is initializing. 985 ExternalASTSource::Deserializing ADeclContext(Source); 986 987 // Load the external declarations, if any. 988 SmallVector<Decl*, 64> Decls; 989 ExternalLexicalStorage = false; 990 switch (Source->FindExternalLexicalDecls(this, Decls)) { 991 case ELR_Success: 992 break; 993 994 case ELR_Failure: 995 case ELR_AlreadyLoaded: 996 return; 997 } 998 999 if (Decls.empty()) 1000 return; 1001 1002 // We may have already loaded just the fields of this record, in which case 1003 // we need to ignore them. 1004 bool FieldsAlreadyLoaded = false; 1005 if (const RecordDecl *RD = dyn_cast<RecordDecl>(this)) 1006 FieldsAlreadyLoaded = RD->LoadedFieldsFromExternalStorage; 1007 1008 // Splice the newly-read declarations into the beginning of the list 1009 // of declarations. 1010 Decl *ExternalFirst, *ExternalLast; 1011 std::tie(ExternalFirst, ExternalLast) = 1012 BuildDeclChain(Decls, FieldsAlreadyLoaded); 1013 ExternalLast->NextInContextAndBits.setPointer(FirstDecl); 1014 FirstDecl = ExternalFirst; 1015 if (!LastDecl) 1016 LastDecl = ExternalLast; 1017 } 1018 1019 DeclContext::lookup_result 1020 ExternalASTSource::SetNoExternalVisibleDeclsForName(const DeclContext *DC, 1021 DeclarationName Name) { 1022 ASTContext &Context = DC->getParentASTContext(); 1023 StoredDeclsMap *Map; 1024 if (!(Map = DC->LookupPtr.getPointer())) 1025 Map = DC->CreateStoredDeclsMap(Context); 1026 1027 (*Map)[Name].removeExternalDecls(); 1028 1029 return DeclContext::lookup_result(); 1030 } 1031 1032 DeclContext::lookup_result 1033 ExternalASTSource::SetExternalVisibleDeclsForName(const DeclContext *DC, 1034 DeclarationName Name, 1035 ArrayRef<NamedDecl*> Decls) { 1036 ASTContext &Context = DC->getParentASTContext(); 1037 StoredDeclsMap *Map; 1038 if (!(Map = DC->LookupPtr.getPointer())) 1039 Map = DC->CreateStoredDeclsMap(Context); 1040 1041 StoredDeclsList &List = (*Map)[Name]; 1042 1043 // Clear out any old external visible declarations, to avoid quadratic 1044 // performance in the redeclaration checks below. 1045 List.removeExternalDecls(); 1046 1047 if (!List.isNull()) { 1048 // We have both existing declarations and new declarations for this name. 1049 // Some of the declarations may simply replace existing ones. Handle those 1050 // first. 1051 llvm::SmallVector<unsigned, 8> Skip; 1052 for (unsigned I = 0, N = Decls.size(); I != N; ++I) 1053 if (List.HandleRedeclaration(Decls[I])) 1054 Skip.push_back(I); 1055 Skip.push_back(Decls.size()); 1056 1057 // Add in any new declarations. 1058 unsigned SkipPos = 0; 1059 for (unsigned I = 0, N = Decls.size(); I != N; ++I) { 1060 if (I == Skip[SkipPos]) 1061 ++SkipPos; 1062 else 1063 List.AddSubsequentDecl(Decls[I]); 1064 } 1065 } else { 1066 // Convert the array to a StoredDeclsList. 1067 for (ArrayRef<NamedDecl*>::iterator 1068 I = Decls.begin(), E = Decls.end(); I != E; ++I) { 1069 if (List.isNull()) 1070 List.setOnlyValue(*I); 1071 else 1072 List.AddSubsequentDecl(*I); 1073 } 1074 } 1075 1076 return List.getLookupResult(); 1077 } 1078 1079 DeclContext::decl_range DeclContext::noload_decls() const { 1080 return decl_range(decl_iterator(FirstDecl), decl_iterator()); 1081 } 1082 1083 DeclContext::decl_iterator DeclContext::noload_decls_begin() const { 1084 return decl_iterator(FirstDecl); 1085 } 1086 1087 DeclContext::decl_range DeclContext::decls() const { 1088 if (hasExternalLexicalStorage()) 1089 LoadLexicalDeclsFromExternalStorage(); 1090 return decl_range(decl_iterator(FirstDecl), decl_iterator()); 1091 } 1092 1093 DeclContext::decl_iterator DeclContext::decls_begin() const { 1094 if (hasExternalLexicalStorage()) 1095 LoadLexicalDeclsFromExternalStorage(); 1096 return decl_iterator(FirstDecl); 1097 } 1098 1099 bool DeclContext::decls_empty() const { 1100 if (hasExternalLexicalStorage()) 1101 LoadLexicalDeclsFromExternalStorage(); 1102 1103 return !FirstDecl; 1104 } 1105 1106 bool DeclContext::containsDecl(Decl *D) const { 1107 return (D->getLexicalDeclContext() == this && 1108 (D->NextInContextAndBits.getPointer() || D == LastDecl)); 1109 } 1110 1111 void DeclContext::removeDecl(Decl *D) { 1112 assert(D->getLexicalDeclContext() == this && 1113 "decl being removed from non-lexical context"); 1114 assert((D->NextInContextAndBits.getPointer() || D == LastDecl) && 1115 "decl is not in decls list"); 1116 1117 // Remove D from the decl chain. This is O(n) but hopefully rare. 1118 if (D == FirstDecl) { 1119 if (D == LastDecl) 1120 FirstDecl = LastDecl = 0; 1121 else 1122 FirstDecl = D->NextInContextAndBits.getPointer(); 1123 } else { 1124 for (Decl *I = FirstDecl; true; I = I->NextInContextAndBits.getPointer()) { 1125 assert(I && "decl not found in linked list"); 1126 if (I->NextInContextAndBits.getPointer() == D) { 1127 I->NextInContextAndBits.setPointer(D->NextInContextAndBits.getPointer()); 1128 if (D == LastDecl) LastDecl = I; 1129 break; 1130 } 1131 } 1132 } 1133 1134 // Mark that D is no longer in the decl chain. 1135 D->NextInContextAndBits.setPointer(0); 1136 1137 // Remove D from the lookup table if necessary. 1138 if (isa<NamedDecl>(D)) { 1139 NamedDecl *ND = cast<NamedDecl>(D); 1140 1141 // Remove only decls that have a name 1142 if (!ND->getDeclName()) return; 1143 1144 StoredDeclsMap *Map = getPrimaryContext()->LookupPtr.getPointer(); 1145 if (!Map) return; 1146 1147 StoredDeclsMap::iterator Pos = Map->find(ND->getDeclName()); 1148 assert(Pos != Map->end() && "no lookup entry for decl"); 1149 if (Pos->second.getAsVector() || Pos->second.getAsDecl() == ND) 1150 Pos->second.remove(ND); 1151 } 1152 } 1153 1154 void DeclContext::addHiddenDecl(Decl *D) { 1155 assert(D->getLexicalDeclContext() == this && 1156 "Decl inserted into wrong lexical context"); 1157 assert(!D->getNextDeclInContext() && D != LastDecl && 1158 "Decl already inserted into a DeclContext"); 1159 1160 if (FirstDecl) { 1161 LastDecl->NextInContextAndBits.setPointer(D); 1162 LastDecl = D; 1163 } else { 1164 FirstDecl = LastDecl = D; 1165 } 1166 1167 // Notify a C++ record declaration that we've added a member, so it can 1168 // update it's class-specific state. 1169 if (CXXRecordDecl *Record = dyn_cast<CXXRecordDecl>(this)) 1170 Record->addedMember(D); 1171 1172 // If this is a newly-created (not de-serialized) import declaration, wire 1173 // it in to the list of local import declarations. 1174 if (!D->isFromASTFile()) { 1175 if (ImportDecl *Import = dyn_cast<ImportDecl>(D)) 1176 D->getASTContext().addedLocalImportDecl(Import); 1177 } 1178 } 1179 1180 void DeclContext::addDecl(Decl *D) { 1181 addHiddenDecl(D); 1182 1183 if (NamedDecl *ND = dyn_cast<NamedDecl>(D)) 1184 ND->getDeclContext()->getPrimaryContext()-> 1185 makeDeclVisibleInContextWithFlags(ND, false, true); 1186 } 1187 1188 void DeclContext::addDeclInternal(Decl *D) { 1189 addHiddenDecl(D); 1190 1191 if (NamedDecl *ND = dyn_cast<NamedDecl>(D)) 1192 ND->getDeclContext()->getPrimaryContext()-> 1193 makeDeclVisibleInContextWithFlags(ND, true, true); 1194 } 1195 1196 /// shouldBeHidden - Determine whether a declaration which was declared 1197 /// within its semantic context should be invisible to qualified name lookup. 1198 static bool shouldBeHidden(NamedDecl *D) { 1199 // Skip unnamed declarations. 1200 if (!D->getDeclName()) 1201 return true; 1202 1203 // Skip entities that can't be found by name lookup into a particular 1204 // context. 1205 if ((D->getIdentifierNamespace() == 0 && !isa<UsingDirectiveDecl>(D)) || 1206 D->isTemplateParameter()) 1207 return true; 1208 1209 // Skip template specializations. 1210 // FIXME: This feels like a hack. Should DeclarationName support 1211 // template-ids, or is there a better way to keep specializations 1212 // from being visible? 1213 if (isa<ClassTemplateSpecializationDecl>(D)) 1214 return true; 1215 if (FunctionDecl *FD = dyn_cast<FunctionDecl>(D)) 1216 if (FD->isFunctionTemplateSpecialization()) 1217 return true; 1218 1219 return false; 1220 } 1221 1222 /// buildLookup - Build the lookup data structure with all of the 1223 /// declarations in this DeclContext (and any other contexts linked 1224 /// to it or transparent contexts nested within it) and return it. 1225 StoredDeclsMap *DeclContext::buildLookup() { 1226 assert(this == getPrimaryContext() && "buildLookup called on non-primary DC"); 1227 1228 // FIXME: Should we keep going if hasExternalVisibleStorage? 1229 if (!LookupPtr.getInt()) 1230 return LookupPtr.getPointer(); 1231 1232 SmallVector<DeclContext *, 2> Contexts; 1233 collectAllContexts(Contexts); 1234 for (unsigned I = 0, N = Contexts.size(); I != N; ++I) 1235 buildLookupImpl<&DeclContext::decls_begin, 1236 &DeclContext::decls_end>(Contexts[I]); 1237 1238 // We no longer have any lazy decls. 1239 LookupPtr.setInt(false); 1240 NeedToReconcileExternalVisibleStorage = false; 1241 return LookupPtr.getPointer(); 1242 } 1243 1244 /// buildLookupImpl - Build part of the lookup data structure for the 1245 /// declarations contained within DCtx, which will either be this 1246 /// DeclContext, a DeclContext linked to it, or a transparent context 1247 /// nested within it. 1248 template<DeclContext::decl_iterator (DeclContext::*Begin)() const, 1249 DeclContext::decl_iterator (DeclContext::*End)() const> 1250 void DeclContext::buildLookupImpl(DeclContext *DCtx) { 1251 for (decl_iterator I = (DCtx->*Begin)(), E = (DCtx->*End)(); 1252 I != E; ++I) { 1253 Decl *D = *I; 1254 1255 // Insert this declaration into the lookup structure, but only if 1256 // it's semantically within its decl context. Any other decls which 1257 // should be found in this context are added eagerly. 1258 // 1259 // If it's from an AST file, don't add it now. It'll get handled by 1260 // FindExternalVisibleDeclsByName if needed. Exception: if we're not 1261 // in C++, we do not track external visible decls for the TU, so in 1262 // that case we need to collect them all here. 1263 if (NamedDecl *ND = dyn_cast<NamedDecl>(D)) 1264 if (ND->getDeclContext() == DCtx && !shouldBeHidden(ND) && 1265 (!ND->isFromASTFile() || 1266 (isTranslationUnit() && 1267 !getParentASTContext().getLangOpts().CPlusPlus))) 1268 makeDeclVisibleInContextImpl(ND, false); 1269 1270 // If this declaration is itself a transparent declaration context 1271 // or inline namespace, add the members of this declaration of that 1272 // context (recursively). 1273 if (DeclContext *InnerCtx = dyn_cast<DeclContext>(D)) 1274 if (InnerCtx->isTransparentContext() || InnerCtx->isInlineNamespace()) 1275 buildLookupImpl<Begin, End>(InnerCtx); 1276 } 1277 } 1278 1279 DeclContext::lookup_result 1280 DeclContext::lookup(DeclarationName Name) { 1281 assert(DeclKind != Decl::LinkageSpec && 1282 "Should not perform lookups into linkage specs!"); 1283 1284 DeclContext *PrimaryContext = getPrimaryContext(); 1285 if (PrimaryContext != this) 1286 return PrimaryContext->lookup(Name); 1287 1288 if (hasExternalVisibleStorage()) { 1289 StoredDeclsMap *Map = LookupPtr.getPointer(); 1290 if (LookupPtr.getInt()) 1291 Map = buildLookup(); 1292 else if (NeedToReconcileExternalVisibleStorage) 1293 reconcileExternalVisibleStorage(); 1294 1295 if (!Map) 1296 Map = CreateStoredDeclsMap(getParentASTContext()); 1297 1298 // If we have a lookup result with no external decls, we are done. 1299 std::pair<StoredDeclsMap::iterator, bool> R = 1300 Map->insert(std::make_pair(Name, StoredDeclsList())); 1301 if (!R.second && !R.first->second.hasExternalDecls()) 1302 return R.first->second.getLookupResult(); 1303 1304 ExternalASTSource *Source = getParentASTContext().getExternalSource(); 1305 if (Source->FindExternalVisibleDeclsByName(this, Name) || !R.second) { 1306 if (StoredDeclsMap *Map = LookupPtr.getPointer()) { 1307 StoredDeclsMap::iterator I = Map->find(Name); 1308 if (I != Map->end()) 1309 return I->second.getLookupResult(); 1310 } 1311 } 1312 1313 return lookup_result(lookup_iterator(0), lookup_iterator(0)); 1314 } 1315 1316 StoredDeclsMap *Map = LookupPtr.getPointer(); 1317 if (LookupPtr.getInt()) 1318 Map = buildLookup(); 1319 1320 if (!Map) 1321 return lookup_result(lookup_iterator(0), lookup_iterator(0)); 1322 1323 StoredDeclsMap::iterator I = Map->find(Name); 1324 if (I == Map->end()) 1325 return lookup_result(lookup_iterator(0), lookup_iterator(0)); 1326 1327 return I->second.getLookupResult(); 1328 } 1329 1330 DeclContext::lookup_result 1331 DeclContext::noload_lookup(DeclarationName Name) { 1332 assert(DeclKind != Decl::LinkageSpec && 1333 "Should not perform lookups into linkage specs!"); 1334 if (!hasExternalVisibleStorage()) 1335 return lookup(Name); 1336 1337 DeclContext *PrimaryContext = getPrimaryContext(); 1338 if (PrimaryContext != this) 1339 return PrimaryContext->noload_lookup(Name); 1340 1341 StoredDeclsMap *Map = LookupPtr.getPointer(); 1342 if (LookupPtr.getInt()) { 1343 // Carefully build the lookup map, without deserializing anything. 1344 SmallVector<DeclContext *, 2> Contexts; 1345 collectAllContexts(Contexts); 1346 for (unsigned I = 0, N = Contexts.size(); I != N; ++I) 1347 buildLookupImpl<&DeclContext::noload_decls_begin, 1348 &DeclContext::noload_decls_end>(Contexts[I]); 1349 1350 // We no longer have any lazy decls. 1351 LookupPtr.setInt(false); 1352 1353 // There may now be names for which we have local decls but are 1354 // missing the external decls. FIXME: Just set the hasExternalDecls 1355 // flag on those names that have external decls. 1356 NeedToReconcileExternalVisibleStorage = true; 1357 1358 Map = LookupPtr.getPointer(); 1359 } 1360 1361 if (!Map) 1362 return lookup_result(lookup_iterator(0), lookup_iterator(0)); 1363 1364 StoredDeclsMap::iterator I = Map->find(Name); 1365 return I != Map->end() 1366 ? I->second.getLookupResult() 1367 : lookup_result(lookup_iterator(0), lookup_iterator(0)); 1368 } 1369 1370 void DeclContext::localUncachedLookup(DeclarationName Name, 1371 SmallVectorImpl<NamedDecl *> &Results) { 1372 Results.clear(); 1373 1374 // If there's no external storage, just perform a normal lookup and copy 1375 // the results. 1376 if (!hasExternalVisibleStorage() && !hasExternalLexicalStorage() && Name) { 1377 lookup_result LookupResults = lookup(Name); 1378 Results.insert(Results.end(), LookupResults.begin(), LookupResults.end()); 1379 return; 1380 } 1381 1382 // If we have a lookup table, check there first. Maybe we'll get lucky. 1383 if (Name && !LookupPtr.getInt()) { 1384 if (StoredDeclsMap *Map = LookupPtr.getPointer()) { 1385 StoredDeclsMap::iterator Pos = Map->find(Name); 1386 if (Pos != Map->end()) { 1387 Results.insert(Results.end(), 1388 Pos->second.getLookupResult().begin(), 1389 Pos->second.getLookupResult().end()); 1390 return; 1391 } 1392 } 1393 } 1394 1395 // Slow case: grovel through the declarations in our chain looking for 1396 // matches. 1397 for (Decl *D = FirstDecl; D; D = D->getNextDeclInContext()) { 1398 if (NamedDecl *ND = dyn_cast<NamedDecl>(D)) 1399 if (ND->getDeclName() == Name) 1400 Results.push_back(ND); 1401 } 1402 } 1403 1404 DeclContext *DeclContext::getRedeclContext() { 1405 DeclContext *Ctx = this; 1406 // Skip through transparent contexts. 1407 while (Ctx->isTransparentContext()) 1408 Ctx = Ctx->getParent(); 1409 return Ctx; 1410 } 1411 1412 DeclContext *DeclContext::getEnclosingNamespaceContext() { 1413 DeclContext *Ctx = this; 1414 // Skip through non-namespace, non-translation-unit contexts. 1415 while (!Ctx->isFileContext()) 1416 Ctx = Ctx->getParent(); 1417 return Ctx->getPrimaryContext(); 1418 } 1419 1420 bool DeclContext::InEnclosingNamespaceSetOf(const DeclContext *O) const { 1421 // For non-file contexts, this is equivalent to Equals. 1422 if (!isFileContext()) 1423 return O->Equals(this); 1424 1425 do { 1426 if (O->Equals(this)) 1427 return true; 1428 1429 const NamespaceDecl *NS = dyn_cast<NamespaceDecl>(O); 1430 if (!NS || !NS->isInline()) 1431 break; 1432 O = NS->getParent(); 1433 } while (O); 1434 1435 return false; 1436 } 1437 1438 void DeclContext::makeDeclVisibleInContext(NamedDecl *D) { 1439 DeclContext *PrimaryDC = this->getPrimaryContext(); 1440 DeclContext *DeclDC = D->getDeclContext()->getPrimaryContext(); 1441 // If the decl is being added outside of its semantic decl context, we 1442 // need to ensure that we eagerly build the lookup information for it. 1443 PrimaryDC->makeDeclVisibleInContextWithFlags(D, false, PrimaryDC == DeclDC); 1444 } 1445 1446 void DeclContext::makeDeclVisibleInContextWithFlags(NamedDecl *D, bool Internal, 1447 bool Recoverable) { 1448 assert(this == getPrimaryContext() && "expected a primary DC"); 1449 1450 // Skip declarations within functions. 1451 if (isFunctionOrMethod()) 1452 return; 1453 1454 // Skip declarations which should be invisible to name lookup. 1455 if (shouldBeHidden(D)) 1456 return; 1457 1458 // If we already have a lookup data structure, perform the insertion into 1459 // it. If we might have externally-stored decls with this name, look them 1460 // up and perform the insertion. If this decl was declared outside its 1461 // semantic context, buildLookup won't add it, so add it now. 1462 // 1463 // FIXME: As a performance hack, don't add such decls into the translation 1464 // unit unless we're in C++, since qualified lookup into the TU is never 1465 // performed. 1466 if (LookupPtr.getPointer() || hasExternalVisibleStorage() || 1467 ((!Recoverable || D->getDeclContext() != D->getLexicalDeclContext()) && 1468 (getParentASTContext().getLangOpts().CPlusPlus || 1469 !isTranslationUnit()))) { 1470 // If we have lazily omitted any decls, they might have the same name as 1471 // the decl which we are adding, so build a full lookup table before adding 1472 // this decl. 1473 buildLookup(); 1474 makeDeclVisibleInContextImpl(D, Internal); 1475 } else { 1476 LookupPtr.setInt(true); 1477 } 1478 1479 // If we are a transparent context or inline namespace, insert into our 1480 // parent context, too. This operation is recursive. 1481 if (isTransparentContext() || isInlineNamespace()) 1482 getParent()->getPrimaryContext()-> 1483 makeDeclVisibleInContextWithFlags(D, Internal, Recoverable); 1484 1485 Decl *DCAsDecl = cast<Decl>(this); 1486 // Notify that a decl was made visible unless we are a Tag being defined. 1487 if (!(isa<TagDecl>(DCAsDecl) && cast<TagDecl>(DCAsDecl)->isBeingDefined())) 1488 if (ASTMutationListener *L = DCAsDecl->getASTMutationListener()) 1489 L->AddedVisibleDecl(this, D); 1490 } 1491 1492 void DeclContext::makeDeclVisibleInContextImpl(NamedDecl *D, bool Internal) { 1493 // Find or create the stored declaration map. 1494 StoredDeclsMap *Map = LookupPtr.getPointer(); 1495 if (!Map) { 1496 ASTContext *C = &getParentASTContext(); 1497 Map = CreateStoredDeclsMap(*C); 1498 } 1499 1500 // If there is an external AST source, load any declarations it knows about 1501 // with this declaration's name. 1502 // If the lookup table contains an entry about this name it means that we 1503 // have already checked the external source. 1504 if (!Internal) 1505 if (ExternalASTSource *Source = getParentASTContext().getExternalSource()) 1506 if (hasExternalVisibleStorage() && 1507 Map->find(D->getDeclName()) == Map->end()) 1508 Source->FindExternalVisibleDeclsByName(this, D->getDeclName()); 1509 1510 // Insert this declaration into the map. 1511 StoredDeclsList &DeclNameEntries = (*Map)[D->getDeclName()]; 1512 1513 if (Internal) { 1514 // If this is being added as part of loading an external declaration, 1515 // this may not be the only external declaration with this name. 1516 // In this case, we never try to replace an existing declaration; we'll 1517 // handle that when we finalize the list of declarations for this name. 1518 DeclNameEntries.setHasExternalDecls(); 1519 DeclNameEntries.AddSubsequentDecl(D); 1520 return; 1521 } 1522 1523 else if (DeclNameEntries.isNull()) { 1524 DeclNameEntries.setOnlyValue(D); 1525 return; 1526 } 1527 1528 if (DeclNameEntries.HandleRedeclaration(D)) { 1529 // This declaration has replaced an existing one for which 1530 // declarationReplaces returns true. 1531 return; 1532 } 1533 1534 // Put this declaration into the appropriate slot. 1535 DeclNameEntries.AddSubsequentDecl(D); 1536 } 1537 1538 /// Returns iterator range [First, Last) of UsingDirectiveDecls stored within 1539 /// this context. 1540 DeclContext::udir_range 1541 DeclContext::getUsingDirectives() const { 1542 // FIXME: Use something more efficient than normal lookup for using 1543 // directives. In C++, using directives are looked up more than anything else. 1544 lookup_const_result Result = lookup(UsingDirectiveDecl::getName()); 1545 return udir_range(reinterpret_cast<udir_iterator>(Result.begin()), 1546 reinterpret_cast<udir_iterator>(Result.end())); 1547 } 1548 1549 //===----------------------------------------------------------------------===// 1550 // Creation and Destruction of StoredDeclsMaps. // 1551 //===----------------------------------------------------------------------===// 1552 1553 StoredDeclsMap *DeclContext::CreateStoredDeclsMap(ASTContext &C) const { 1554 assert(!LookupPtr.getPointer() && "context already has a decls map"); 1555 assert(getPrimaryContext() == this && 1556 "creating decls map on non-primary context"); 1557 1558 StoredDeclsMap *M; 1559 bool Dependent = isDependentContext(); 1560 if (Dependent) 1561 M = new DependentStoredDeclsMap(); 1562 else 1563 M = new StoredDeclsMap(); 1564 M->Previous = C.LastSDM; 1565 C.LastSDM = llvm::PointerIntPair<StoredDeclsMap*,1>(M, Dependent); 1566 LookupPtr.setPointer(M); 1567 return M; 1568 } 1569 1570 void ASTContext::ReleaseDeclContextMaps() { 1571 // It's okay to delete DependentStoredDeclsMaps via a StoredDeclsMap 1572 // pointer because the subclass doesn't add anything that needs to 1573 // be deleted. 1574 StoredDeclsMap::DestroyAll(LastSDM.getPointer(), LastSDM.getInt()); 1575 } 1576 1577 void StoredDeclsMap::DestroyAll(StoredDeclsMap *Map, bool Dependent) { 1578 while (Map) { 1579 // Advance the iteration before we invalidate memory. 1580 llvm::PointerIntPair<StoredDeclsMap*,1> Next = Map->Previous; 1581 1582 if (Dependent) 1583 delete static_cast<DependentStoredDeclsMap*>(Map); 1584 else 1585 delete Map; 1586 1587 Map = Next.getPointer(); 1588 Dependent = Next.getInt(); 1589 } 1590 } 1591 1592 DependentDiagnostic *DependentDiagnostic::Create(ASTContext &C, 1593 DeclContext *Parent, 1594 const PartialDiagnostic &PDiag) { 1595 assert(Parent->isDependentContext() 1596 && "cannot iterate dependent diagnostics of non-dependent context"); 1597 Parent = Parent->getPrimaryContext(); 1598 if (!Parent->LookupPtr.getPointer()) 1599 Parent->CreateStoredDeclsMap(C); 1600 1601 DependentStoredDeclsMap *Map 1602 = static_cast<DependentStoredDeclsMap*>(Parent->LookupPtr.getPointer()); 1603 1604 // Allocate the copy of the PartialDiagnostic via the ASTContext's 1605 // BumpPtrAllocator, rather than the ASTContext itself. 1606 PartialDiagnostic::Storage *DiagStorage = 0; 1607 if (PDiag.hasStorage()) 1608 DiagStorage = new (C) PartialDiagnostic::Storage; 1609 1610 DependentDiagnostic *DD = new (C) DependentDiagnostic(PDiag, DiagStorage); 1611 1612 // TODO: Maybe we shouldn't reverse the order during insertion. 1613 DD->NextDiagnostic = Map->FirstDiagnostic; 1614 Map->FirstDiagnostic = DD; 1615 1616 return DD; 1617 } 1618