xref: /freebsd/contrib/llvm-project/clang/lib/AST/DeclBase.cpp (revision a3266ba2697a383d2ede56803320d941866c7e76)
1 //===- DeclBase.cpp - Declaration AST Node Implementation -----------------===//
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 implements the Decl and DeclContext classes.
10 //
11 //===----------------------------------------------------------------------===//
12 
13 #include "clang/AST/DeclBase.h"
14 #include "clang/AST/ASTContext.h"
15 #include "clang/AST/ASTLambda.h"
16 #include "clang/AST/ASTMutationListener.h"
17 #include "clang/AST/Attr.h"
18 #include "clang/AST/AttrIterator.h"
19 #include "clang/AST/Decl.h"
20 #include "clang/AST/DeclCXX.h"
21 #include "clang/AST/DeclContextInternals.h"
22 #include "clang/AST/DeclFriend.h"
23 #include "clang/AST/DeclObjC.h"
24 #include "clang/AST/DeclOpenMP.h"
25 #include "clang/AST/DeclTemplate.h"
26 #include "clang/AST/DependentDiagnostic.h"
27 #include "clang/AST/ExternalASTSource.h"
28 #include "clang/AST/Stmt.h"
29 #include "clang/AST/Type.h"
30 #include "clang/Basic/IdentifierTable.h"
31 #include "clang/Basic/LLVM.h"
32 #include "clang/Basic/LangOptions.h"
33 #include "clang/Basic/ObjCRuntime.h"
34 #include "clang/Basic/PartialDiagnostic.h"
35 #include "clang/Basic/SourceLocation.h"
36 #include "clang/Basic/TargetInfo.h"
37 #include "llvm/ADT/ArrayRef.h"
38 #include "llvm/ADT/PointerIntPair.h"
39 #include "llvm/ADT/SmallVector.h"
40 #include "llvm/ADT/StringRef.h"
41 #include "llvm/Support/Casting.h"
42 #include "llvm/Support/ErrorHandling.h"
43 #include "llvm/Support/MathExtras.h"
44 #include "llvm/Support/VersionTuple.h"
45 #include "llvm/Support/raw_ostream.h"
46 #include <algorithm>
47 #include <cassert>
48 #include <cstddef>
49 #include <string>
50 #include <tuple>
51 #include <utility>
52 
53 using namespace clang;
54 
55 //===----------------------------------------------------------------------===//
56 //  Statistics
57 //===----------------------------------------------------------------------===//
58 
59 #define DECL(DERIVED, BASE) static int n##DERIVED##s = 0;
60 #define ABSTRACT_DECL(DECL)
61 #include "clang/AST/DeclNodes.inc"
62 
63 void Decl::updateOutOfDate(IdentifierInfo &II) const {
64   getASTContext().getExternalSource()->updateOutOfDateIdentifier(II);
65 }
66 
67 #define DECL(DERIVED, BASE)                                                    \
68   static_assert(alignof(Decl) >= alignof(DERIVED##Decl),                       \
69                 "Alignment sufficient after objects prepended to " #DERIVED);
70 #define ABSTRACT_DECL(DECL)
71 #include "clang/AST/DeclNodes.inc"
72 
73 void *Decl::operator new(std::size_t Size, const ASTContext &Context,
74                          unsigned ID, std::size_t Extra) {
75   // Allocate an extra 8 bytes worth of storage, which ensures that the
76   // resulting pointer will still be 8-byte aligned.
77   static_assert(sizeof(unsigned) * 2 >= alignof(Decl),
78                 "Decl won't be misaligned");
79   void *Start = Context.Allocate(Size + Extra + 8);
80   void *Result = (char*)Start + 8;
81 
82   unsigned *PrefixPtr = (unsigned *)Result - 2;
83 
84   // Zero out the first 4 bytes; this is used to store the owning module ID.
85   PrefixPtr[0] = 0;
86 
87   // Store the global declaration ID in the second 4 bytes.
88   PrefixPtr[1] = ID;
89 
90   return Result;
91 }
92 
93 void *Decl::operator new(std::size_t Size, const ASTContext &Ctx,
94                          DeclContext *Parent, std::size_t Extra) {
95   assert(!Parent || &Parent->getParentASTContext() == &Ctx);
96   // With local visibility enabled, we track the owning module even for local
97   // declarations. We create the TU decl early and may not yet know what the
98   // LangOpts are, so conservatively allocate the storage.
99   if (Ctx.getLangOpts().trackLocalOwningModule() || !Parent) {
100     // Ensure required alignment of the resulting object by adding extra
101     // padding at the start if required.
102     size_t ExtraAlign =
103         llvm::offsetToAlignment(sizeof(Module *), llvm::Align(alignof(Decl)));
104     auto *Buffer = reinterpret_cast<char *>(
105         ::operator new(ExtraAlign + sizeof(Module *) + Size + Extra, Ctx));
106     Buffer += ExtraAlign;
107     auto *ParentModule =
108         Parent ? cast<Decl>(Parent)->getOwningModule() : nullptr;
109     return new (Buffer) Module*(ParentModule) + 1;
110   }
111   return ::operator new(Size + Extra, Ctx);
112 }
113 
114 Module *Decl::getOwningModuleSlow() const {
115   assert(isFromASTFile() && "Not from AST file?");
116   return getASTContext().getExternalSource()->getModule(getOwningModuleID());
117 }
118 
119 bool Decl::hasLocalOwningModuleStorage() const {
120   return getASTContext().getLangOpts().trackLocalOwningModule();
121 }
122 
123 const char *Decl::getDeclKindName() const {
124   switch (DeclKind) {
125   default: llvm_unreachable("Declaration not in DeclNodes.inc!");
126 #define DECL(DERIVED, BASE) case DERIVED: return #DERIVED;
127 #define ABSTRACT_DECL(DECL)
128 #include "clang/AST/DeclNodes.inc"
129   }
130 }
131 
132 void Decl::setInvalidDecl(bool Invalid) {
133   InvalidDecl = Invalid;
134   assert(!isa<TagDecl>(this) || !cast<TagDecl>(this)->isCompleteDefinition());
135   if (!Invalid) {
136     return;
137   }
138 
139   if (!isa<ParmVarDecl>(this)) {
140     // Defensive maneuver for ill-formed code: we're likely not to make it to
141     // a point where we set the access specifier, so default it to "public"
142     // to avoid triggering asserts elsewhere in the front end.
143     setAccess(AS_public);
144   }
145 
146   // Marking a DecompositionDecl as invalid implies all the child BindingDecl's
147   // are invalid too.
148   if (auto *DD = dyn_cast<DecompositionDecl>(this)) {
149     for (auto *Binding : DD->bindings()) {
150       Binding->setInvalidDecl();
151     }
152   }
153 }
154 
155 const char *DeclContext::getDeclKindName() const {
156   switch (getDeclKind()) {
157 #define DECL(DERIVED, BASE) case Decl::DERIVED: return #DERIVED;
158 #define ABSTRACT_DECL(DECL)
159 #include "clang/AST/DeclNodes.inc"
160   }
161   llvm_unreachable("Declaration context not in DeclNodes.inc!");
162 }
163 
164 bool Decl::StatisticsEnabled = false;
165 void Decl::EnableStatistics() {
166   StatisticsEnabled = true;
167 }
168 
169 void Decl::PrintStats() {
170   llvm::errs() << "\n*** Decl Stats:\n";
171 
172   int totalDecls = 0;
173 #define DECL(DERIVED, BASE) totalDecls += n##DERIVED##s;
174 #define ABSTRACT_DECL(DECL)
175 #include "clang/AST/DeclNodes.inc"
176   llvm::errs() << "  " << totalDecls << " decls total.\n";
177 
178   int totalBytes = 0;
179 #define DECL(DERIVED, BASE)                                             \
180   if (n##DERIVED##s > 0) {                                              \
181     totalBytes += (int)(n##DERIVED##s * sizeof(DERIVED##Decl));         \
182     llvm::errs() << "    " << n##DERIVED##s << " " #DERIVED " decls, "  \
183                  << sizeof(DERIVED##Decl) << " each ("                  \
184                  << n##DERIVED##s * sizeof(DERIVED##Decl)               \
185                  << " bytes)\n";                                        \
186   }
187 #define ABSTRACT_DECL(DECL)
188 #include "clang/AST/DeclNodes.inc"
189 
190   llvm::errs() << "Total bytes = " << totalBytes << "\n";
191 }
192 
193 void Decl::add(Kind k) {
194   switch (k) {
195 #define DECL(DERIVED, BASE) case DERIVED: ++n##DERIVED##s; break;
196 #define ABSTRACT_DECL(DECL)
197 #include "clang/AST/DeclNodes.inc"
198   }
199 }
200 
201 bool Decl::isTemplateParameterPack() const {
202   if (const auto *TTP = dyn_cast<TemplateTypeParmDecl>(this))
203     return TTP->isParameterPack();
204   if (const auto *NTTP = dyn_cast<NonTypeTemplateParmDecl>(this))
205     return NTTP->isParameterPack();
206   if (const auto *TTP = dyn_cast<TemplateTemplateParmDecl>(this))
207     return TTP->isParameterPack();
208   return false;
209 }
210 
211 bool Decl::isParameterPack() const {
212   if (const auto *Var = dyn_cast<VarDecl>(this))
213     return Var->isParameterPack();
214 
215   return isTemplateParameterPack();
216 }
217 
218 FunctionDecl *Decl::getAsFunction() {
219   if (auto *FD = dyn_cast<FunctionDecl>(this))
220     return FD;
221   if (const auto *FTD = dyn_cast<FunctionTemplateDecl>(this))
222     return FTD->getTemplatedDecl();
223   return nullptr;
224 }
225 
226 bool Decl::isTemplateDecl() const {
227   return isa<TemplateDecl>(this);
228 }
229 
230 TemplateDecl *Decl::getDescribedTemplate() const {
231   if (auto *FD = dyn_cast<FunctionDecl>(this))
232     return FD->getDescribedFunctionTemplate();
233   if (auto *RD = dyn_cast<CXXRecordDecl>(this))
234     return RD->getDescribedClassTemplate();
235   if (auto *VD = dyn_cast<VarDecl>(this))
236     return VD->getDescribedVarTemplate();
237   if (auto *AD = dyn_cast<TypeAliasDecl>(this))
238     return AD->getDescribedAliasTemplate();
239 
240   return nullptr;
241 }
242 
243 const TemplateParameterList *Decl::getDescribedTemplateParams() const {
244   if (auto *TD = getDescribedTemplate())
245     return TD->getTemplateParameters();
246   if (auto *CTPSD = dyn_cast<ClassTemplatePartialSpecializationDecl>(this))
247     return CTPSD->getTemplateParameters();
248   if (auto *VTPSD = dyn_cast<VarTemplatePartialSpecializationDecl>(this))
249     return VTPSD->getTemplateParameters();
250   return nullptr;
251 }
252 
253 bool Decl::isTemplated() const {
254   // A declaration is templated if it is a template or a template pattern, or
255   // is within (lexcially for a friend, semantically otherwise) a dependent
256   // context.
257   // FIXME: Should local extern declarations be treated like friends?
258   if (auto *AsDC = dyn_cast<DeclContext>(this))
259     return AsDC->isDependentContext();
260   auto *DC = getFriendObjectKind() ? getLexicalDeclContext() : getDeclContext();
261   return DC->isDependentContext() || isTemplateDecl() ||
262          getDescribedTemplateParams();
263 }
264 
265 unsigned Decl::getTemplateDepth() const {
266   if (auto *DC = dyn_cast<DeclContext>(this))
267     if (DC->isFileContext())
268       return 0;
269 
270   if (auto *TPL = getDescribedTemplateParams())
271     return TPL->getDepth() + 1;
272 
273   // If this is a dependent lambda, there might be an enclosing variable
274   // template. In this case, the next step is not the parent DeclContext (or
275   // even a DeclContext at all).
276   auto *RD = dyn_cast<CXXRecordDecl>(this);
277   if (RD && RD->isDependentLambda())
278     if (Decl *Context = RD->getLambdaContextDecl())
279       return Context->getTemplateDepth();
280 
281   const DeclContext *DC =
282       getFriendObjectKind() ? getLexicalDeclContext() : getDeclContext();
283   return cast<Decl>(DC)->getTemplateDepth();
284 }
285 
286 const DeclContext *Decl::getParentFunctionOrMethod() const {
287   for (const DeclContext *DC = getDeclContext();
288        DC && !DC->isTranslationUnit() && !DC->isNamespace();
289        DC = DC->getParent())
290     if (DC->isFunctionOrMethod())
291       return DC;
292 
293   return nullptr;
294 }
295 
296 //===----------------------------------------------------------------------===//
297 // PrettyStackTraceDecl Implementation
298 //===----------------------------------------------------------------------===//
299 
300 void PrettyStackTraceDecl::print(raw_ostream &OS) const {
301   SourceLocation TheLoc = Loc;
302   if (TheLoc.isInvalid() && TheDecl)
303     TheLoc = TheDecl->getLocation();
304 
305   if (TheLoc.isValid()) {
306     TheLoc.print(OS, SM);
307     OS << ": ";
308   }
309 
310   OS << Message;
311 
312   if (const auto *DN = dyn_cast_or_null<NamedDecl>(TheDecl)) {
313     OS << " '";
314     DN->printQualifiedName(OS);
315     OS << '\'';
316   }
317   OS << '\n';
318 }
319 
320 //===----------------------------------------------------------------------===//
321 // Decl Implementation
322 //===----------------------------------------------------------------------===//
323 
324 // Out-of-line virtual method providing a home for Decl.
325 Decl::~Decl() = default;
326 
327 void Decl::setDeclContext(DeclContext *DC) {
328   DeclCtx = DC;
329 }
330 
331 void Decl::setLexicalDeclContext(DeclContext *DC) {
332   if (DC == getLexicalDeclContext())
333     return;
334 
335   if (isInSemaDC()) {
336     setDeclContextsImpl(getDeclContext(), DC, getASTContext());
337   } else {
338     getMultipleDC()->LexicalDC = DC;
339   }
340 
341   // FIXME: We shouldn't be changing the lexical context of declarations
342   // imported from AST files.
343   if (!isFromASTFile()) {
344     setModuleOwnershipKind(getModuleOwnershipKindForChildOf(DC));
345     if (hasOwningModule())
346       setLocalOwningModule(cast<Decl>(DC)->getOwningModule());
347   }
348 
349   assert(
350       (getModuleOwnershipKind() != ModuleOwnershipKind::VisibleWhenImported ||
351        getOwningModule()) &&
352       "hidden declaration has no owning module");
353 }
354 
355 void Decl::setDeclContextsImpl(DeclContext *SemaDC, DeclContext *LexicalDC,
356                                ASTContext &Ctx) {
357   if (SemaDC == LexicalDC) {
358     DeclCtx = SemaDC;
359   } else {
360     auto *MDC = new (Ctx) Decl::MultipleDC();
361     MDC->SemanticDC = SemaDC;
362     MDC->LexicalDC = LexicalDC;
363     DeclCtx = MDC;
364   }
365 }
366 
367 bool Decl::isInLocalScopeForInstantiation() const {
368   const DeclContext *LDC = getLexicalDeclContext();
369   if (!LDC->isDependentContext())
370     return false;
371   while (true) {
372     if (LDC->isFunctionOrMethod())
373       return true;
374     if (!isa<TagDecl>(LDC))
375       return false;
376     if (const auto *CRD = dyn_cast<CXXRecordDecl>(LDC))
377       if (CRD->isLambda())
378         return true;
379     LDC = LDC->getLexicalParent();
380   }
381   return false;
382 }
383 
384 bool Decl::isInAnonymousNamespace() const {
385   for (const DeclContext *DC = getDeclContext(); DC; DC = DC->getParent()) {
386     if (const auto *ND = dyn_cast<NamespaceDecl>(DC))
387       if (ND->isAnonymousNamespace())
388         return true;
389   }
390 
391   return false;
392 }
393 
394 bool Decl::isInStdNamespace() const {
395   const DeclContext *DC = getDeclContext();
396   return DC && DC->isStdNamespace();
397 }
398 
399 TranslationUnitDecl *Decl::getTranslationUnitDecl() {
400   if (auto *TUD = dyn_cast<TranslationUnitDecl>(this))
401     return TUD;
402 
403   DeclContext *DC = getDeclContext();
404   assert(DC && "This decl is not contained in a translation unit!");
405 
406   while (!DC->isTranslationUnit()) {
407     DC = DC->getParent();
408     assert(DC && "This decl is not contained in a translation unit!");
409   }
410 
411   return cast<TranslationUnitDecl>(DC);
412 }
413 
414 ASTContext &Decl::getASTContext() const {
415   return getTranslationUnitDecl()->getASTContext();
416 }
417 
418 /// Helper to get the language options from the ASTContext.
419 /// Defined out of line to avoid depending on ASTContext.h.
420 const LangOptions &Decl::getLangOpts() const {
421   return getASTContext().getLangOpts();
422 }
423 
424 ASTMutationListener *Decl::getASTMutationListener() const {
425   return getASTContext().getASTMutationListener();
426 }
427 
428 unsigned Decl::getMaxAlignment() const {
429   if (!hasAttrs())
430     return 0;
431 
432   unsigned Align = 0;
433   const AttrVec &V = getAttrs();
434   ASTContext &Ctx = getASTContext();
435   specific_attr_iterator<AlignedAttr> I(V.begin()), E(V.end());
436   for (; I != E; ++I) {
437     if (!I->isAlignmentErrorDependent())
438       Align = std::max(Align, I->getAlignment(Ctx));
439   }
440   return Align;
441 }
442 
443 bool Decl::isUsed(bool CheckUsedAttr) const {
444   const Decl *CanonD = getCanonicalDecl();
445   if (CanonD->Used)
446     return true;
447 
448   // Check for used attribute.
449   // Ask the most recent decl, since attributes accumulate in the redecl chain.
450   if (CheckUsedAttr && getMostRecentDecl()->hasAttr<UsedAttr>())
451     return true;
452 
453   // The information may have not been deserialized yet. Force deserialization
454   // to complete the needed information.
455   return getMostRecentDecl()->getCanonicalDecl()->Used;
456 }
457 
458 void Decl::markUsed(ASTContext &C) {
459   if (isUsed(false))
460     return;
461 
462   if (C.getASTMutationListener())
463     C.getASTMutationListener()->DeclarationMarkedUsed(this);
464 
465   setIsUsed();
466 }
467 
468 bool Decl::isReferenced() const {
469   if (Referenced)
470     return true;
471 
472   // Check redeclarations.
473   for (const auto *I : redecls())
474     if (I->Referenced)
475       return true;
476 
477   return false;
478 }
479 
480 ExternalSourceSymbolAttr *Decl::getExternalSourceSymbolAttr() const {
481   const Decl *Definition = nullptr;
482   if (auto *ID = dyn_cast<ObjCInterfaceDecl>(this)) {
483     Definition = ID->getDefinition();
484   } else if (auto *PD = dyn_cast<ObjCProtocolDecl>(this)) {
485     Definition = PD->getDefinition();
486   } else if (auto *TD = dyn_cast<TagDecl>(this)) {
487     Definition = TD->getDefinition();
488   }
489   if (!Definition)
490     Definition = this;
491 
492   if (auto *attr = Definition->getAttr<ExternalSourceSymbolAttr>())
493     return attr;
494   if (auto *dcd = dyn_cast<Decl>(getDeclContext())) {
495     return dcd->getAttr<ExternalSourceSymbolAttr>();
496   }
497 
498   return nullptr;
499 }
500 
501 bool Decl::hasDefiningAttr() const {
502   return hasAttr<AliasAttr>() || hasAttr<IFuncAttr>() ||
503          hasAttr<LoaderUninitializedAttr>();
504 }
505 
506 const Attr *Decl::getDefiningAttr() const {
507   if (auto *AA = getAttr<AliasAttr>())
508     return AA;
509   if (auto *IFA = getAttr<IFuncAttr>())
510     return IFA;
511   if (auto *NZA = getAttr<LoaderUninitializedAttr>())
512     return NZA;
513   return nullptr;
514 }
515 
516 static StringRef getRealizedPlatform(const AvailabilityAttr *A,
517                                      const ASTContext &Context) {
518   // Check if this is an App Extension "platform", and if so chop off
519   // the suffix for matching with the actual platform.
520   StringRef RealizedPlatform = A->getPlatform()->getName();
521   if (!Context.getLangOpts().AppExt)
522     return RealizedPlatform;
523   size_t suffix = RealizedPlatform.rfind("_app_extension");
524   if (suffix != StringRef::npos)
525     return RealizedPlatform.slice(0, suffix);
526   return RealizedPlatform;
527 }
528 
529 /// Determine the availability of the given declaration based on
530 /// the target platform.
531 ///
532 /// When it returns an availability result other than \c AR_Available,
533 /// if the \p Message parameter is non-NULL, it will be set to a
534 /// string describing why the entity is unavailable.
535 ///
536 /// FIXME: Make these strings localizable, since they end up in
537 /// diagnostics.
538 static AvailabilityResult CheckAvailability(ASTContext &Context,
539                                             const AvailabilityAttr *A,
540                                             std::string *Message,
541                                             VersionTuple EnclosingVersion) {
542   if (EnclosingVersion.empty())
543     EnclosingVersion = Context.getTargetInfo().getPlatformMinVersion();
544 
545   if (EnclosingVersion.empty())
546     return AR_Available;
547 
548   StringRef ActualPlatform = A->getPlatform()->getName();
549   StringRef TargetPlatform = Context.getTargetInfo().getPlatformName();
550 
551   // Match the platform name.
552   if (getRealizedPlatform(A, Context) != TargetPlatform)
553     return AR_Available;
554 
555   StringRef PrettyPlatformName
556     = AvailabilityAttr::getPrettyPlatformName(ActualPlatform);
557 
558   if (PrettyPlatformName.empty())
559     PrettyPlatformName = ActualPlatform;
560 
561   std::string HintMessage;
562   if (!A->getMessage().empty()) {
563     HintMessage = " - ";
564     HintMessage += A->getMessage();
565   }
566 
567   // Make sure that this declaration has not been marked 'unavailable'.
568   if (A->getUnavailable()) {
569     if (Message) {
570       Message->clear();
571       llvm::raw_string_ostream Out(*Message);
572       Out << "not available on " << PrettyPlatformName
573           << HintMessage;
574     }
575 
576     return AR_Unavailable;
577   }
578 
579   // Make sure that this declaration has already been introduced.
580   if (!A->getIntroduced().empty() &&
581       EnclosingVersion < A->getIntroduced()) {
582     if (Message) {
583       Message->clear();
584       llvm::raw_string_ostream Out(*Message);
585       VersionTuple VTI(A->getIntroduced());
586       Out << "introduced in " << PrettyPlatformName << ' '
587           << VTI << HintMessage;
588     }
589 
590     return A->getStrict() ? AR_Unavailable : AR_NotYetIntroduced;
591   }
592 
593   // Make sure that this declaration hasn't been obsoleted.
594   if (!A->getObsoleted().empty() && EnclosingVersion >= A->getObsoleted()) {
595     if (Message) {
596       Message->clear();
597       llvm::raw_string_ostream Out(*Message);
598       VersionTuple VTO(A->getObsoleted());
599       Out << "obsoleted in " << PrettyPlatformName << ' '
600           << VTO << HintMessage;
601     }
602 
603     return AR_Unavailable;
604   }
605 
606   // Make sure that this declaration hasn't been deprecated.
607   if (!A->getDeprecated().empty() && EnclosingVersion >= A->getDeprecated()) {
608     if (Message) {
609       Message->clear();
610       llvm::raw_string_ostream Out(*Message);
611       VersionTuple VTD(A->getDeprecated());
612       Out << "first deprecated in " << PrettyPlatformName << ' '
613           << VTD << HintMessage;
614     }
615 
616     return AR_Deprecated;
617   }
618 
619   return AR_Available;
620 }
621 
622 AvailabilityResult Decl::getAvailability(std::string *Message,
623                                          VersionTuple EnclosingVersion,
624                                          StringRef *RealizedPlatform) const {
625   if (auto *FTD = dyn_cast<FunctionTemplateDecl>(this))
626     return FTD->getTemplatedDecl()->getAvailability(Message, EnclosingVersion,
627                                                     RealizedPlatform);
628 
629   AvailabilityResult Result = AR_Available;
630   std::string ResultMessage;
631 
632   for (const auto *A : attrs()) {
633     if (const auto *Deprecated = dyn_cast<DeprecatedAttr>(A)) {
634       if (Result >= AR_Deprecated)
635         continue;
636 
637       if (Message)
638         ResultMessage = std::string(Deprecated->getMessage());
639 
640       Result = AR_Deprecated;
641       continue;
642     }
643 
644     if (const auto *Unavailable = dyn_cast<UnavailableAttr>(A)) {
645       if (Message)
646         *Message = std::string(Unavailable->getMessage());
647       return AR_Unavailable;
648     }
649 
650     if (const auto *Availability = dyn_cast<AvailabilityAttr>(A)) {
651       AvailabilityResult AR = CheckAvailability(getASTContext(), Availability,
652                                                 Message, EnclosingVersion);
653 
654       if (AR == AR_Unavailable) {
655         if (RealizedPlatform)
656           *RealizedPlatform = Availability->getPlatform()->getName();
657         return AR_Unavailable;
658       }
659 
660       if (AR > Result) {
661         Result = AR;
662         if (Message)
663           ResultMessage.swap(*Message);
664       }
665       continue;
666     }
667   }
668 
669   if (Message)
670     Message->swap(ResultMessage);
671   return Result;
672 }
673 
674 VersionTuple Decl::getVersionIntroduced() const {
675   const ASTContext &Context = getASTContext();
676   StringRef TargetPlatform = Context.getTargetInfo().getPlatformName();
677   for (const auto *A : attrs()) {
678     if (const auto *Availability = dyn_cast<AvailabilityAttr>(A)) {
679       if (getRealizedPlatform(Availability, Context) != TargetPlatform)
680         continue;
681       if (!Availability->getIntroduced().empty())
682         return Availability->getIntroduced();
683     }
684   }
685   return {};
686 }
687 
688 bool Decl::canBeWeakImported(bool &IsDefinition) const {
689   IsDefinition = false;
690 
691   // Variables, if they aren't definitions.
692   if (const auto *Var = dyn_cast<VarDecl>(this)) {
693     if (Var->isThisDeclarationADefinition()) {
694       IsDefinition = true;
695       return false;
696     }
697     return true;
698   }
699   // Functions, if they aren't definitions.
700   if (const auto *FD = dyn_cast<FunctionDecl>(this)) {
701     if (FD->hasBody()) {
702       IsDefinition = true;
703       return false;
704     }
705     return true;
706 
707   }
708   // Objective-C classes, if this is the non-fragile runtime.
709   if (isa<ObjCInterfaceDecl>(this) &&
710              getASTContext().getLangOpts().ObjCRuntime.hasWeakClassImport()) {
711     return true;
712   }
713   // Nothing else.
714   return false;
715 }
716 
717 bool Decl::isWeakImported() const {
718   bool IsDefinition;
719   if (!canBeWeakImported(IsDefinition))
720     return false;
721 
722   for (const auto *A : getMostRecentDecl()->attrs()) {
723     if (isa<WeakImportAttr>(A))
724       return true;
725 
726     if (const auto *Availability = dyn_cast<AvailabilityAttr>(A)) {
727       if (CheckAvailability(getASTContext(), Availability, nullptr,
728                             VersionTuple()) == AR_NotYetIntroduced)
729         return true;
730     }
731   }
732 
733   return false;
734 }
735 
736 unsigned Decl::getIdentifierNamespaceForKind(Kind DeclKind) {
737   switch (DeclKind) {
738     case Function:
739     case CXXDeductionGuide:
740     case CXXMethod:
741     case CXXConstructor:
742     case ConstructorUsingShadow:
743     case CXXDestructor:
744     case CXXConversion:
745     case EnumConstant:
746     case Var:
747     case ImplicitParam:
748     case ParmVar:
749     case ObjCMethod:
750     case ObjCProperty:
751     case MSProperty:
752       return IDNS_Ordinary;
753     case Label:
754       return IDNS_Label;
755     case IndirectField:
756       return IDNS_Ordinary | IDNS_Member;
757 
758     case Binding:
759     case NonTypeTemplateParm:
760     case VarTemplate:
761     case Concept:
762       // These (C++-only) declarations are found by redeclaration lookup for
763       // tag types, so we include them in the tag namespace.
764       return IDNS_Ordinary | IDNS_Tag;
765 
766     case ObjCCompatibleAlias:
767     case ObjCInterface:
768       return IDNS_Ordinary | IDNS_Type;
769 
770     case Typedef:
771     case TypeAlias:
772     case TemplateTypeParm:
773     case ObjCTypeParam:
774       return IDNS_Ordinary | IDNS_Type;
775 
776     case UnresolvedUsingTypename:
777       return IDNS_Ordinary | IDNS_Type | IDNS_Using;
778 
779     case UsingShadow:
780       return 0; // we'll actually overwrite this later
781 
782     case UnresolvedUsingValue:
783       return IDNS_Ordinary | IDNS_Using;
784 
785     case Using:
786     case UsingPack:
787       return IDNS_Using;
788 
789     case ObjCProtocol:
790       return IDNS_ObjCProtocol;
791 
792     case Field:
793     case ObjCAtDefsField:
794     case ObjCIvar:
795       return IDNS_Member;
796 
797     case Record:
798     case CXXRecord:
799     case Enum:
800       return IDNS_Tag | IDNS_Type;
801 
802     case Namespace:
803     case NamespaceAlias:
804       return IDNS_Namespace;
805 
806     case FunctionTemplate:
807       return IDNS_Ordinary;
808 
809     case ClassTemplate:
810     case TemplateTemplateParm:
811     case TypeAliasTemplate:
812       return IDNS_Ordinary | IDNS_Tag | IDNS_Type;
813 
814     case OMPDeclareReduction:
815       return IDNS_OMPReduction;
816 
817     case OMPDeclareMapper:
818       return IDNS_OMPMapper;
819 
820     // Never have names.
821     case Friend:
822     case FriendTemplate:
823     case AccessSpec:
824     case LinkageSpec:
825     case Export:
826     case FileScopeAsm:
827     case StaticAssert:
828     case ObjCPropertyImpl:
829     case PragmaComment:
830     case PragmaDetectMismatch:
831     case Block:
832     case Captured:
833     case TranslationUnit:
834     case ExternCContext:
835     case Decomposition:
836     case MSGuid:
837     case TemplateParamObject:
838 
839     case UsingDirective:
840     case BuiltinTemplate:
841     case ClassTemplateSpecialization:
842     case ClassTemplatePartialSpecialization:
843     case ClassScopeFunctionSpecialization:
844     case VarTemplateSpecialization:
845     case VarTemplatePartialSpecialization:
846     case ObjCImplementation:
847     case ObjCCategory:
848     case ObjCCategoryImpl:
849     case Import:
850     case OMPThreadPrivate:
851     case OMPAllocate:
852     case OMPRequires:
853     case OMPCapturedExpr:
854     case Empty:
855     case LifetimeExtendedTemporary:
856     case RequiresExprBody:
857       // Never looked up by name.
858       return 0;
859   }
860 
861   llvm_unreachable("Invalid DeclKind!");
862 }
863 
864 void Decl::setAttrsImpl(const AttrVec &attrs, ASTContext &Ctx) {
865   assert(!HasAttrs && "Decl already contains attrs.");
866 
867   AttrVec &AttrBlank = Ctx.getDeclAttrs(this);
868   assert(AttrBlank.empty() && "HasAttrs was wrong?");
869 
870   AttrBlank = attrs;
871   HasAttrs = true;
872 }
873 
874 void Decl::dropAttrs() {
875   if (!HasAttrs) return;
876 
877   HasAttrs = false;
878   getASTContext().eraseDeclAttrs(this);
879 }
880 
881 void Decl::addAttr(Attr *A) {
882   if (!hasAttrs()) {
883     setAttrs(AttrVec(1, A));
884     return;
885   }
886 
887   AttrVec &Attrs = getAttrs();
888   if (!A->isInherited()) {
889     Attrs.push_back(A);
890     return;
891   }
892 
893   // Attribute inheritance is processed after attribute parsing. To keep the
894   // order as in the source code, add inherited attributes before non-inherited
895   // ones.
896   auto I = Attrs.begin(), E = Attrs.end();
897   for (; I != E; ++I) {
898     if (!(*I)->isInherited())
899       break;
900   }
901   Attrs.insert(I, A);
902 }
903 
904 const AttrVec &Decl::getAttrs() const {
905   assert(HasAttrs && "No attrs to get!");
906   return getASTContext().getDeclAttrs(this);
907 }
908 
909 Decl *Decl::castFromDeclContext (const DeclContext *D) {
910   Decl::Kind DK = D->getDeclKind();
911   switch(DK) {
912 #define DECL(NAME, BASE)
913 #define DECL_CONTEXT(NAME) \
914     case Decl::NAME:       \
915       return static_cast<NAME##Decl *>(const_cast<DeclContext *>(D));
916 #define DECL_CONTEXT_BASE(NAME)
917 #include "clang/AST/DeclNodes.inc"
918     default:
919 #define DECL(NAME, BASE)
920 #define DECL_CONTEXT_BASE(NAME)                  \
921       if (DK >= first##NAME && DK <= last##NAME) \
922         return static_cast<NAME##Decl *>(const_cast<DeclContext *>(D));
923 #include "clang/AST/DeclNodes.inc"
924       llvm_unreachable("a decl that inherits DeclContext isn't handled");
925   }
926 }
927 
928 DeclContext *Decl::castToDeclContext(const Decl *D) {
929   Decl::Kind DK = D->getKind();
930   switch(DK) {
931 #define DECL(NAME, BASE)
932 #define DECL_CONTEXT(NAME) \
933     case Decl::NAME:       \
934       return static_cast<NAME##Decl *>(const_cast<Decl *>(D));
935 #define DECL_CONTEXT_BASE(NAME)
936 #include "clang/AST/DeclNodes.inc"
937     default:
938 #define DECL(NAME, BASE)
939 #define DECL_CONTEXT_BASE(NAME)                                   \
940       if (DK >= first##NAME && DK <= last##NAME)                  \
941         return static_cast<NAME##Decl *>(const_cast<Decl *>(D));
942 #include "clang/AST/DeclNodes.inc"
943       llvm_unreachable("a decl that inherits DeclContext isn't handled");
944   }
945 }
946 
947 SourceLocation Decl::getBodyRBrace() const {
948   // Special handling of FunctionDecl to avoid de-serializing the body from PCH.
949   // FunctionDecl stores EndRangeLoc for this purpose.
950   if (const auto *FD = dyn_cast<FunctionDecl>(this)) {
951     const FunctionDecl *Definition;
952     if (FD->hasBody(Definition))
953       return Definition->getSourceRange().getEnd();
954     return {};
955   }
956 
957   if (Stmt *Body = getBody())
958     return Body->getSourceRange().getEnd();
959 
960   return {};
961 }
962 
963 bool Decl::AccessDeclContextSanity() const {
964 #ifndef NDEBUG
965   // Suppress this check if any of the following hold:
966   // 1. this is the translation unit (and thus has no parent)
967   // 2. this is a template parameter (and thus doesn't belong to its context)
968   // 3. this is a non-type template parameter
969   // 4. the context is not a record
970   // 5. it's invalid
971   // 6. it's a C++0x static_assert.
972   // 7. it's a block literal declaration
973   // 8. it's a temporary with lifetime extended due to being default value.
974   if (isa<TranslationUnitDecl>(this) || isa<TemplateTypeParmDecl>(this) ||
975       isa<NonTypeTemplateParmDecl>(this) || !getDeclContext() ||
976       !isa<CXXRecordDecl>(getDeclContext()) || isInvalidDecl() ||
977       isa<StaticAssertDecl>(this) || isa<BlockDecl>(this) ||
978       // FIXME: a ParmVarDecl can have ClassTemplateSpecialization
979       // as DeclContext (?).
980       isa<ParmVarDecl>(this) ||
981       // FIXME: a ClassTemplateSpecialization or CXXRecordDecl can have
982       // AS_none as access specifier.
983       isa<CXXRecordDecl>(this) ||
984       isa<ClassScopeFunctionSpecializationDecl>(this) ||
985       isa<LifetimeExtendedTemporaryDecl>(this))
986     return true;
987 
988   assert(Access != AS_none &&
989          "Access specifier is AS_none inside a record decl");
990 #endif
991   return true;
992 }
993 
994 static Decl::Kind getKind(const Decl *D) { return D->getKind(); }
995 static Decl::Kind getKind(const DeclContext *DC) { return DC->getDeclKind(); }
996 
997 int64_t Decl::getID() const {
998   return getASTContext().getAllocator().identifyKnownAlignedObject<Decl>(this);
999 }
1000 
1001 const FunctionType *Decl::getFunctionType(bool BlocksToo) const {
1002   QualType Ty;
1003   if (const auto *D = dyn_cast<ValueDecl>(this))
1004     Ty = D->getType();
1005   else if (const auto *D = dyn_cast<TypedefNameDecl>(this))
1006     Ty = D->getUnderlyingType();
1007   else
1008     return nullptr;
1009 
1010   if (Ty->isFunctionPointerType())
1011     Ty = Ty->castAs<PointerType>()->getPointeeType();
1012   else if (Ty->isFunctionReferenceType())
1013     Ty = Ty->castAs<ReferenceType>()->getPointeeType();
1014   else if (BlocksToo && Ty->isBlockPointerType())
1015     Ty = Ty->castAs<BlockPointerType>()->getPointeeType();
1016 
1017   return Ty->getAs<FunctionType>();
1018 }
1019 
1020 /// Starting at a given context (a Decl or DeclContext), look for a
1021 /// code context that is not a closure (a lambda, block, etc.).
1022 template <class T> static Decl *getNonClosureContext(T *D) {
1023   if (getKind(D) == Decl::CXXMethod) {
1024     auto *MD = cast<CXXMethodDecl>(D);
1025     if (MD->getOverloadedOperator() == OO_Call &&
1026         MD->getParent()->isLambda())
1027       return getNonClosureContext(MD->getParent()->getParent());
1028     return MD;
1029   }
1030   if (auto *FD = dyn_cast<FunctionDecl>(D))
1031     return FD;
1032   if (auto *MD = dyn_cast<ObjCMethodDecl>(D))
1033     return MD;
1034   if (auto *BD = dyn_cast<BlockDecl>(D))
1035     return getNonClosureContext(BD->getParent());
1036   if (auto *CD = dyn_cast<CapturedDecl>(D))
1037     return getNonClosureContext(CD->getParent());
1038   return nullptr;
1039 }
1040 
1041 Decl *Decl::getNonClosureContext() {
1042   return ::getNonClosureContext(this);
1043 }
1044 
1045 Decl *DeclContext::getNonClosureAncestor() {
1046   return ::getNonClosureContext(this);
1047 }
1048 
1049 //===----------------------------------------------------------------------===//
1050 // DeclContext Implementation
1051 //===----------------------------------------------------------------------===//
1052 
1053 DeclContext::DeclContext(Decl::Kind K) {
1054   DeclContextBits.DeclKind = K;
1055   setHasExternalLexicalStorage(false);
1056   setHasExternalVisibleStorage(false);
1057   setNeedToReconcileExternalVisibleStorage(false);
1058   setHasLazyLocalLexicalLookups(false);
1059   setHasLazyExternalLexicalLookups(false);
1060   setUseQualifiedLookup(false);
1061 }
1062 
1063 bool DeclContext::classof(const Decl *D) {
1064   switch (D->getKind()) {
1065 #define DECL(NAME, BASE)
1066 #define DECL_CONTEXT(NAME) case Decl::NAME:
1067 #define DECL_CONTEXT_BASE(NAME)
1068 #include "clang/AST/DeclNodes.inc"
1069       return true;
1070     default:
1071 #define DECL(NAME, BASE)
1072 #define DECL_CONTEXT_BASE(NAME)                 \
1073       if (D->getKind() >= Decl::first##NAME &&  \
1074           D->getKind() <= Decl::last##NAME)     \
1075         return true;
1076 #include "clang/AST/DeclNodes.inc"
1077       return false;
1078   }
1079 }
1080 
1081 DeclContext::~DeclContext() = default;
1082 
1083 /// Find the parent context of this context that will be
1084 /// used for unqualified name lookup.
1085 ///
1086 /// Generally, the parent lookup context is the semantic context. However, for
1087 /// a friend function the parent lookup context is the lexical context, which
1088 /// is the class in which the friend is declared.
1089 DeclContext *DeclContext::getLookupParent() {
1090   // FIXME: Find a better way to identify friends.
1091   if (isa<FunctionDecl>(this))
1092     if (getParent()->getRedeclContext()->isFileContext() &&
1093         getLexicalParent()->getRedeclContext()->isRecord())
1094       return getLexicalParent();
1095 
1096   // A lookup within the call operator of a lambda never looks in the lambda
1097   // class; instead, skip to the context in which that closure type is
1098   // declared.
1099   if (isLambdaCallOperator(this))
1100     return getParent()->getParent();
1101 
1102   return getParent();
1103 }
1104 
1105 const BlockDecl *DeclContext::getInnermostBlockDecl() const {
1106   const DeclContext *Ctx = this;
1107 
1108   do {
1109     if (Ctx->isClosure())
1110       return cast<BlockDecl>(Ctx);
1111     Ctx = Ctx->getParent();
1112   } while (Ctx);
1113 
1114   return nullptr;
1115 }
1116 
1117 bool DeclContext::isInlineNamespace() const {
1118   return isNamespace() &&
1119          cast<NamespaceDecl>(this)->isInline();
1120 }
1121 
1122 bool DeclContext::isStdNamespace() const {
1123   if (!isNamespace())
1124     return false;
1125 
1126   const auto *ND = cast<NamespaceDecl>(this);
1127   if (ND->isInline()) {
1128     return ND->getParent()->isStdNamespace();
1129   }
1130 
1131   if (!getParent()->getRedeclContext()->isTranslationUnit())
1132     return false;
1133 
1134   const IdentifierInfo *II = ND->getIdentifier();
1135   return II && II->isStr("std");
1136 }
1137 
1138 bool DeclContext::isDependentContext() const {
1139   if (isFileContext())
1140     return false;
1141 
1142   if (isa<ClassTemplatePartialSpecializationDecl>(this))
1143     return true;
1144 
1145   if (const auto *Record = dyn_cast<CXXRecordDecl>(this)) {
1146     if (Record->getDescribedClassTemplate())
1147       return true;
1148 
1149     if (Record->isDependentLambda())
1150       return true;
1151   }
1152 
1153   if (const auto *Function = dyn_cast<FunctionDecl>(this)) {
1154     if (Function->getDescribedFunctionTemplate())
1155       return true;
1156 
1157     // Friend function declarations are dependent if their *lexical*
1158     // context is dependent.
1159     if (cast<Decl>(this)->getFriendObjectKind())
1160       return getLexicalParent()->isDependentContext();
1161   }
1162 
1163   // FIXME: A variable template is a dependent context, but is not a
1164   // DeclContext. A context within it (such as a lambda-expression)
1165   // should be considered dependent.
1166 
1167   return getParent() && getParent()->isDependentContext();
1168 }
1169 
1170 bool DeclContext::isTransparentContext() const {
1171   if (getDeclKind() == Decl::Enum)
1172     return !cast<EnumDecl>(this)->isScoped();
1173 
1174   return getDeclKind() == Decl::LinkageSpec || getDeclKind() == Decl::Export;
1175 }
1176 
1177 static bool isLinkageSpecContext(const DeclContext *DC,
1178                                  LinkageSpecDecl::LanguageIDs ID) {
1179   while (DC->getDeclKind() != Decl::TranslationUnit) {
1180     if (DC->getDeclKind() == Decl::LinkageSpec)
1181       return cast<LinkageSpecDecl>(DC)->getLanguage() == ID;
1182     DC = DC->getLexicalParent();
1183   }
1184   return false;
1185 }
1186 
1187 bool DeclContext::isExternCContext() const {
1188   return isLinkageSpecContext(this, LinkageSpecDecl::lang_c);
1189 }
1190 
1191 const LinkageSpecDecl *DeclContext::getExternCContext() const {
1192   const DeclContext *DC = this;
1193   while (DC->getDeclKind() != Decl::TranslationUnit) {
1194     if (DC->getDeclKind() == Decl::LinkageSpec &&
1195         cast<LinkageSpecDecl>(DC)->getLanguage() == LinkageSpecDecl::lang_c)
1196       return cast<LinkageSpecDecl>(DC);
1197     DC = DC->getLexicalParent();
1198   }
1199   return nullptr;
1200 }
1201 
1202 bool DeclContext::isExternCXXContext() const {
1203   return isLinkageSpecContext(this, LinkageSpecDecl::lang_cxx);
1204 }
1205 
1206 bool DeclContext::Encloses(const DeclContext *DC) const {
1207   if (getPrimaryContext() != this)
1208     return getPrimaryContext()->Encloses(DC);
1209 
1210   for (; DC; DC = DC->getParent())
1211     if (DC->getPrimaryContext() == this)
1212       return true;
1213   return false;
1214 }
1215 
1216 DeclContext *DeclContext::getPrimaryContext() {
1217   switch (getDeclKind()) {
1218   case Decl::TranslationUnit:
1219   case Decl::ExternCContext:
1220   case Decl::LinkageSpec:
1221   case Decl::Export:
1222   case Decl::Block:
1223   case Decl::Captured:
1224   case Decl::OMPDeclareReduction:
1225   case Decl::OMPDeclareMapper:
1226   case Decl::RequiresExprBody:
1227     // There is only one DeclContext for these entities.
1228     return this;
1229 
1230   case Decl::Namespace:
1231     // The original namespace is our primary context.
1232     return static_cast<NamespaceDecl *>(this)->getOriginalNamespace();
1233 
1234   case Decl::ObjCMethod:
1235     return this;
1236 
1237   case Decl::ObjCInterface:
1238     if (auto *OID = dyn_cast<ObjCInterfaceDecl>(this))
1239       if (auto *Def = OID->getDefinition())
1240         return Def;
1241     return this;
1242 
1243   case Decl::ObjCProtocol:
1244     if (auto *OPD = dyn_cast<ObjCProtocolDecl>(this))
1245       if (auto *Def = OPD->getDefinition())
1246         return Def;
1247     return this;
1248 
1249   case Decl::ObjCCategory:
1250     return this;
1251 
1252   case Decl::ObjCImplementation:
1253   case Decl::ObjCCategoryImpl:
1254     return this;
1255 
1256   default:
1257     if (getDeclKind() >= Decl::firstTag && getDeclKind() <= Decl::lastTag) {
1258       // If this is a tag type that has a definition or is currently
1259       // being defined, that definition is our primary context.
1260       auto *Tag = cast<TagDecl>(this);
1261 
1262       if (TagDecl *Def = Tag->getDefinition())
1263         return Def;
1264 
1265       if (const auto *TagTy = dyn_cast<TagType>(Tag->getTypeForDecl())) {
1266         // Note, TagType::getDecl returns the (partial) definition one exists.
1267         TagDecl *PossiblePartialDef = TagTy->getDecl();
1268         if (PossiblePartialDef->isBeingDefined())
1269           return PossiblePartialDef;
1270       } else {
1271         assert(isa<InjectedClassNameType>(Tag->getTypeForDecl()));
1272       }
1273 
1274       return Tag;
1275     }
1276 
1277     assert(getDeclKind() >= Decl::firstFunction &&
1278            getDeclKind() <= Decl::lastFunction &&
1279           "Unknown DeclContext kind");
1280     return this;
1281   }
1282 }
1283 
1284 void
1285 DeclContext::collectAllContexts(SmallVectorImpl<DeclContext *> &Contexts){
1286   Contexts.clear();
1287 
1288   if (getDeclKind() != Decl::Namespace) {
1289     Contexts.push_back(this);
1290     return;
1291   }
1292 
1293   auto *Self = static_cast<NamespaceDecl *>(this);
1294   for (NamespaceDecl *N = Self->getMostRecentDecl(); N;
1295        N = N->getPreviousDecl())
1296     Contexts.push_back(N);
1297 
1298   std::reverse(Contexts.begin(), Contexts.end());
1299 }
1300 
1301 std::pair<Decl *, Decl *>
1302 DeclContext::BuildDeclChain(ArrayRef<Decl *> Decls,
1303                             bool FieldsAlreadyLoaded) {
1304   // Build up a chain of declarations via the Decl::NextInContextAndBits field.
1305   Decl *FirstNewDecl = nullptr;
1306   Decl *PrevDecl = nullptr;
1307   for (auto *D : Decls) {
1308     if (FieldsAlreadyLoaded && isa<FieldDecl>(D))
1309       continue;
1310 
1311     if (PrevDecl)
1312       PrevDecl->NextInContextAndBits.setPointer(D);
1313     else
1314       FirstNewDecl = D;
1315 
1316     PrevDecl = D;
1317   }
1318 
1319   return std::make_pair(FirstNewDecl, PrevDecl);
1320 }
1321 
1322 /// We have just acquired external visible storage, and we already have
1323 /// built a lookup map. For every name in the map, pull in the new names from
1324 /// the external storage.
1325 void DeclContext::reconcileExternalVisibleStorage() const {
1326   assert(hasNeedToReconcileExternalVisibleStorage() && LookupPtr);
1327   setNeedToReconcileExternalVisibleStorage(false);
1328 
1329   for (auto &Lookup : *LookupPtr)
1330     Lookup.second.setHasExternalDecls();
1331 }
1332 
1333 /// Load the declarations within this lexical storage from an
1334 /// external source.
1335 /// \return \c true if any declarations were added.
1336 bool
1337 DeclContext::LoadLexicalDeclsFromExternalStorage() const {
1338   ExternalASTSource *Source = getParentASTContext().getExternalSource();
1339   assert(hasExternalLexicalStorage() && Source && "No external storage?");
1340 
1341   // Notify that we have a DeclContext that is initializing.
1342   ExternalASTSource::Deserializing ADeclContext(Source);
1343 
1344   // Load the external declarations, if any.
1345   SmallVector<Decl*, 64> Decls;
1346   setHasExternalLexicalStorage(false);
1347   Source->FindExternalLexicalDecls(this, Decls);
1348 
1349   if (Decls.empty())
1350     return false;
1351 
1352   // We may have already loaded just the fields of this record, in which case
1353   // we need to ignore them.
1354   bool FieldsAlreadyLoaded = false;
1355   if (const auto *RD = dyn_cast<RecordDecl>(this))
1356     FieldsAlreadyLoaded = RD->hasLoadedFieldsFromExternalStorage();
1357 
1358   // Splice the newly-read declarations into the beginning of the list
1359   // of declarations.
1360   Decl *ExternalFirst, *ExternalLast;
1361   std::tie(ExternalFirst, ExternalLast) =
1362       BuildDeclChain(Decls, FieldsAlreadyLoaded);
1363   ExternalLast->NextInContextAndBits.setPointer(FirstDecl);
1364   FirstDecl = ExternalFirst;
1365   if (!LastDecl)
1366     LastDecl = ExternalLast;
1367   return true;
1368 }
1369 
1370 DeclContext::lookup_result
1371 ExternalASTSource::SetNoExternalVisibleDeclsForName(const DeclContext *DC,
1372                                                     DeclarationName Name) {
1373   ASTContext &Context = DC->getParentASTContext();
1374   StoredDeclsMap *Map;
1375   if (!(Map = DC->LookupPtr))
1376     Map = DC->CreateStoredDeclsMap(Context);
1377   if (DC->hasNeedToReconcileExternalVisibleStorage())
1378     DC->reconcileExternalVisibleStorage();
1379 
1380   (*Map)[Name].removeExternalDecls();
1381 
1382   return DeclContext::lookup_result();
1383 }
1384 
1385 DeclContext::lookup_result
1386 ExternalASTSource::SetExternalVisibleDeclsForName(const DeclContext *DC,
1387                                                   DeclarationName Name,
1388                                                   ArrayRef<NamedDecl*> Decls) {
1389   ASTContext &Context = DC->getParentASTContext();
1390   StoredDeclsMap *Map;
1391   if (!(Map = DC->LookupPtr))
1392     Map = DC->CreateStoredDeclsMap(Context);
1393   if (DC->hasNeedToReconcileExternalVisibleStorage())
1394     DC->reconcileExternalVisibleStorage();
1395 
1396   StoredDeclsList &List = (*Map)[Name];
1397 
1398   // Clear out any old external visible declarations, to avoid quadratic
1399   // performance in the redeclaration checks below.
1400   List.removeExternalDecls();
1401 
1402   if (!List.isNull()) {
1403     // We have both existing declarations and new declarations for this name.
1404     // Some of the declarations may simply replace existing ones. Handle those
1405     // first.
1406     llvm::SmallVector<unsigned, 8> Skip;
1407     for (unsigned I = 0, N = Decls.size(); I != N; ++I)
1408       if (List.HandleRedeclaration(Decls[I], /*IsKnownNewer*/false))
1409         Skip.push_back(I);
1410     Skip.push_back(Decls.size());
1411 
1412     // Add in any new declarations.
1413     unsigned SkipPos = 0;
1414     for (unsigned I = 0, N = Decls.size(); I != N; ++I) {
1415       if (I == Skip[SkipPos])
1416         ++SkipPos;
1417       else
1418         List.AddSubsequentDecl(Decls[I]);
1419     }
1420   } else {
1421     // Convert the array to a StoredDeclsList.
1422     for (auto *D : Decls) {
1423       if (List.isNull())
1424         List.setOnlyValue(D);
1425       else
1426         List.AddSubsequentDecl(D);
1427     }
1428   }
1429 
1430   return List.getLookupResult();
1431 }
1432 
1433 DeclContext::decl_iterator DeclContext::decls_begin() const {
1434   if (hasExternalLexicalStorage())
1435     LoadLexicalDeclsFromExternalStorage();
1436   return decl_iterator(FirstDecl);
1437 }
1438 
1439 bool DeclContext::decls_empty() const {
1440   if (hasExternalLexicalStorage())
1441     LoadLexicalDeclsFromExternalStorage();
1442 
1443   return !FirstDecl;
1444 }
1445 
1446 bool DeclContext::containsDecl(Decl *D) const {
1447   return (D->getLexicalDeclContext() == this &&
1448           (D->NextInContextAndBits.getPointer() || D == LastDecl));
1449 }
1450 
1451 bool DeclContext::containsDeclAndLoad(Decl *D) const {
1452   if (hasExternalLexicalStorage())
1453     LoadLexicalDeclsFromExternalStorage();
1454   return containsDecl(D);
1455 }
1456 
1457 /// shouldBeHidden - Determine whether a declaration which was declared
1458 /// within its semantic context should be invisible to qualified name lookup.
1459 static bool shouldBeHidden(NamedDecl *D) {
1460   // Skip unnamed declarations.
1461   if (!D->getDeclName())
1462     return true;
1463 
1464   // Skip entities that can't be found by name lookup into a particular
1465   // context.
1466   if ((D->getIdentifierNamespace() == 0 && !isa<UsingDirectiveDecl>(D)) ||
1467       D->isTemplateParameter())
1468     return true;
1469 
1470   // Skip friends and local extern declarations unless they're the first
1471   // declaration of the entity.
1472   if ((D->isLocalExternDecl() || D->getFriendObjectKind()) &&
1473       D != D->getCanonicalDecl())
1474     return true;
1475 
1476   // Skip template specializations.
1477   // FIXME: This feels like a hack. Should DeclarationName support
1478   // template-ids, or is there a better way to keep specializations
1479   // from being visible?
1480   if (isa<ClassTemplateSpecializationDecl>(D))
1481     return true;
1482   if (auto *FD = dyn_cast<FunctionDecl>(D))
1483     if (FD->isFunctionTemplateSpecialization())
1484       return true;
1485 
1486   // Hide destructors that are invalid. There should always be one destructor,
1487   // but if it is an invalid decl, another one is created. We need to hide the
1488   // invalid one from places that expect exactly one destructor, like the
1489   // serialization code.
1490   if (isa<CXXDestructorDecl>(D) && D->isInvalidDecl())
1491     return true;
1492 
1493   return false;
1494 }
1495 
1496 void DeclContext::removeDecl(Decl *D) {
1497   assert(D->getLexicalDeclContext() == this &&
1498          "decl being removed from non-lexical context");
1499   assert((D->NextInContextAndBits.getPointer() || D == LastDecl) &&
1500          "decl is not in decls list");
1501 
1502   // Remove D from the decl chain.  This is O(n) but hopefully rare.
1503   if (D == FirstDecl) {
1504     if (D == LastDecl)
1505       FirstDecl = LastDecl = nullptr;
1506     else
1507       FirstDecl = D->NextInContextAndBits.getPointer();
1508   } else {
1509     for (Decl *I = FirstDecl; true; I = I->NextInContextAndBits.getPointer()) {
1510       assert(I && "decl not found in linked list");
1511       if (I->NextInContextAndBits.getPointer() == D) {
1512         I->NextInContextAndBits.setPointer(D->NextInContextAndBits.getPointer());
1513         if (D == LastDecl) LastDecl = I;
1514         break;
1515       }
1516     }
1517   }
1518 
1519   // Mark that D is no longer in the decl chain.
1520   D->NextInContextAndBits.setPointer(nullptr);
1521 
1522   // Remove D from the lookup table if necessary.
1523   if (isa<NamedDecl>(D)) {
1524     auto *ND = cast<NamedDecl>(D);
1525 
1526     // Do not try to remove the declaration if that is invisible to qualified
1527     // lookup.  E.g. template specializations are skipped.
1528     if (shouldBeHidden(ND))
1529       return;
1530 
1531     // Remove only decls that have a name
1532     if (!ND->getDeclName())
1533       return;
1534 
1535     auto *DC = D->getDeclContext();
1536     do {
1537       StoredDeclsMap *Map = DC->getPrimaryContext()->LookupPtr;
1538       if (Map) {
1539         StoredDeclsMap::iterator Pos = Map->find(ND->getDeclName());
1540         assert(Pos != Map->end() && "no lookup entry for decl");
1541         // Remove the decl only if it is contained.
1542         StoredDeclsList::DeclsTy *Vec = Pos->second.getAsVector();
1543         if ((Vec && is_contained(*Vec, ND)) || Pos->second.getAsDecl() == ND)
1544           Pos->second.remove(ND);
1545       }
1546     } while (DC->isTransparentContext() && (DC = DC->getParent()));
1547   }
1548 }
1549 
1550 void DeclContext::addHiddenDecl(Decl *D) {
1551   assert(D->getLexicalDeclContext() == this &&
1552          "Decl inserted into wrong lexical context");
1553   assert(!D->getNextDeclInContext() && D != LastDecl &&
1554          "Decl already inserted into a DeclContext");
1555 
1556   if (FirstDecl) {
1557     LastDecl->NextInContextAndBits.setPointer(D);
1558     LastDecl = D;
1559   } else {
1560     FirstDecl = LastDecl = D;
1561   }
1562 
1563   // Notify a C++ record declaration that we've added a member, so it can
1564   // update its class-specific state.
1565   if (auto *Record = dyn_cast<CXXRecordDecl>(this))
1566     Record->addedMember(D);
1567 
1568   // If this is a newly-created (not de-serialized) import declaration, wire
1569   // it in to the list of local import declarations.
1570   if (!D->isFromASTFile()) {
1571     if (auto *Import = dyn_cast<ImportDecl>(D))
1572       D->getASTContext().addedLocalImportDecl(Import);
1573   }
1574 }
1575 
1576 void DeclContext::addDecl(Decl *D) {
1577   addHiddenDecl(D);
1578 
1579   if (auto *ND = dyn_cast<NamedDecl>(D))
1580     ND->getDeclContext()->getPrimaryContext()->
1581         makeDeclVisibleInContextWithFlags(ND, false, true);
1582 }
1583 
1584 void DeclContext::addDeclInternal(Decl *D) {
1585   addHiddenDecl(D);
1586 
1587   if (auto *ND = dyn_cast<NamedDecl>(D))
1588     ND->getDeclContext()->getPrimaryContext()->
1589         makeDeclVisibleInContextWithFlags(ND, true, true);
1590 }
1591 
1592 /// buildLookup - Build the lookup data structure with all of the
1593 /// declarations in this DeclContext (and any other contexts linked
1594 /// to it or transparent contexts nested within it) and return it.
1595 ///
1596 /// Note that the produced map may miss out declarations from an
1597 /// external source. If it does, those entries will be marked with
1598 /// the 'hasExternalDecls' flag.
1599 StoredDeclsMap *DeclContext::buildLookup() {
1600   assert(this == getPrimaryContext() && "buildLookup called on non-primary DC");
1601 
1602   if (!hasLazyLocalLexicalLookups() &&
1603       !hasLazyExternalLexicalLookups())
1604     return LookupPtr;
1605 
1606   SmallVector<DeclContext *, 2> Contexts;
1607   collectAllContexts(Contexts);
1608 
1609   if (hasLazyExternalLexicalLookups()) {
1610     setHasLazyExternalLexicalLookups(false);
1611     for (auto *DC : Contexts) {
1612       if (DC->hasExternalLexicalStorage()) {
1613         bool LoadedDecls = DC->LoadLexicalDeclsFromExternalStorage();
1614         setHasLazyLocalLexicalLookups(
1615             hasLazyLocalLexicalLookups() | LoadedDecls );
1616       }
1617     }
1618 
1619     if (!hasLazyLocalLexicalLookups())
1620       return LookupPtr;
1621   }
1622 
1623   for (auto *DC : Contexts)
1624     buildLookupImpl(DC, hasExternalVisibleStorage());
1625 
1626   // We no longer have any lazy decls.
1627   setHasLazyLocalLexicalLookups(false);
1628   return LookupPtr;
1629 }
1630 
1631 /// buildLookupImpl - Build part of the lookup data structure for the
1632 /// declarations contained within DCtx, which will either be this
1633 /// DeclContext, a DeclContext linked to it, or a transparent context
1634 /// nested within it.
1635 void DeclContext::buildLookupImpl(DeclContext *DCtx, bool Internal) {
1636   for (auto *D : DCtx->noload_decls()) {
1637     // Insert this declaration into the lookup structure, but only if
1638     // it's semantically within its decl context. Any other decls which
1639     // should be found in this context are added eagerly.
1640     //
1641     // If it's from an AST file, don't add it now. It'll get handled by
1642     // FindExternalVisibleDeclsByName if needed. Exception: if we're not
1643     // in C++, we do not track external visible decls for the TU, so in
1644     // that case we need to collect them all here.
1645     if (auto *ND = dyn_cast<NamedDecl>(D))
1646       if (ND->getDeclContext() == DCtx && !shouldBeHidden(ND) &&
1647           (!ND->isFromASTFile() ||
1648            (isTranslationUnit() &&
1649             !getParentASTContext().getLangOpts().CPlusPlus)))
1650         makeDeclVisibleInContextImpl(ND, Internal);
1651 
1652     // If this declaration is itself a transparent declaration context
1653     // or inline namespace, add the members of this declaration of that
1654     // context (recursively).
1655     if (auto *InnerCtx = dyn_cast<DeclContext>(D))
1656       if (InnerCtx->isTransparentContext() || InnerCtx->isInlineNamespace())
1657         buildLookupImpl(InnerCtx, Internal);
1658   }
1659 }
1660 
1661 NamedDecl *const DeclContextLookupResult::SingleElementDummyList = nullptr;
1662 
1663 DeclContext::lookup_result
1664 DeclContext::lookup(DeclarationName Name) const {
1665   assert(getDeclKind() != Decl::LinkageSpec &&
1666          getDeclKind() != Decl::Export &&
1667          "should not perform lookups into transparent contexts");
1668 
1669   const DeclContext *PrimaryContext = getPrimaryContext();
1670   if (PrimaryContext != this)
1671     return PrimaryContext->lookup(Name);
1672 
1673   // If we have an external source, ensure that any later redeclarations of this
1674   // context have been loaded, since they may add names to the result of this
1675   // lookup (or add external visible storage).
1676   ExternalASTSource *Source = getParentASTContext().getExternalSource();
1677   if (Source)
1678     (void)cast<Decl>(this)->getMostRecentDecl();
1679 
1680   if (hasExternalVisibleStorage()) {
1681     assert(Source && "external visible storage but no external source?");
1682 
1683     if (hasNeedToReconcileExternalVisibleStorage())
1684       reconcileExternalVisibleStorage();
1685 
1686     StoredDeclsMap *Map = LookupPtr;
1687 
1688     if (hasLazyLocalLexicalLookups() ||
1689         hasLazyExternalLexicalLookups())
1690       // FIXME: Make buildLookup const?
1691       Map = const_cast<DeclContext*>(this)->buildLookup();
1692 
1693     if (!Map)
1694       Map = CreateStoredDeclsMap(getParentASTContext());
1695 
1696     // If we have a lookup result with no external decls, we are done.
1697     std::pair<StoredDeclsMap::iterator, bool> R =
1698         Map->insert(std::make_pair(Name, StoredDeclsList()));
1699     if (!R.second && !R.first->second.hasExternalDecls())
1700       return R.first->second.getLookupResult();
1701 
1702     if (Source->FindExternalVisibleDeclsByName(this, Name) || !R.second) {
1703       if (StoredDeclsMap *Map = LookupPtr) {
1704         StoredDeclsMap::iterator I = Map->find(Name);
1705         if (I != Map->end())
1706           return I->second.getLookupResult();
1707       }
1708     }
1709 
1710     return {};
1711   }
1712 
1713   StoredDeclsMap *Map = LookupPtr;
1714   if (hasLazyLocalLexicalLookups() ||
1715       hasLazyExternalLexicalLookups())
1716     Map = const_cast<DeclContext*>(this)->buildLookup();
1717 
1718   if (!Map)
1719     return {};
1720 
1721   StoredDeclsMap::iterator I = Map->find(Name);
1722   if (I == Map->end())
1723     return {};
1724 
1725   return I->second.getLookupResult();
1726 }
1727 
1728 DeclContext::lookup_result
1729 DeclContext::noload_lookup(DeclarationName Name) {
1730   assert(getDeclKind() != Decl::LinkageSpec &&
1731          getDeclKind() != Decl::Export &&
1732          "should not perform lookups into transparent contexts");
1733 
1734   DeclContext *PrimaryContext = getPrimaryContext();
1735   if (PrimaryContext != this)
1736     return PrimaryContext->noload_lookup(Name);
1737 
1738   loadLazyLocalLexicalLookups();
1739   StoredDeclsMap *Map = LookupPtr;
1740   if (!Map)
1741     return {};
1742 
1743   StoredDeclsMap::iterator I = Map->find(Name);
1744   return I != Map->end() ? I->second.getLookupResult()
1745                          : lookup_result();
1746 }
1747 
1748 // If we have any lazy lexical declarations not in our lookup map, add them
1749 // now. Don't import any external declarations, not even if we know we have
1750 // some missing from the external visible lookups.
1751 void DeclContext::loadLazyLocalLexicalLookups() {
1752   if (hasLazyLocalLexicalLookups()) {
1753     SmallVector<DeclContext *, 2> Contexts;
1754     collectAllContexts(Contexts);
1755     for (auto *Context : Contexts)
1756       buildLookupImpl(Context, hasExternalVisibleStorage());
1757     setHasLazyLocalLexicalLookups(false);
1758   }
1759 }
1760 
1761 void DeclContext::localUncachedLookup(DeclarationName Name,
1762                                       SmallVectorImpl<NamedDecl *> &Results) {
1763   Results.clear();
1764 
1765   // If there's no external storage, just perform a normal lookup and copy
1766   // the results.
1767   if (!hasExternalVisibleStorage() && !hasExternalLexicalStorage() && Name) {
1768     lookup_result LookupResults = lookup(Name);
1769     Results.insert(Results.end(), LookupResults.begin(), LookupResults.end());
1770     return;
1771   }
1772 
1773   // If we have a lookup table, check there first. Maybe we'll get lucky.
1774   // FIXME: Should we be checking these flags on the primary context?
1775   if (Name && !hasLazyLocalLexicalLookups() &&
1776       !hasLazyExternalLexicalLookups()) {
1777     if (StoredDeclsMap *Map = LookupPtr) {
1778       StoredDeclsMap::iterator Pos = Map->find(Name);
1779       if (Pos != Map->end()) {
1780         Results.insert(Results.end(),
1781                        Pos->second.getLookupResult().begin(),
1782                        Pos->second.getLookupResult().end());
1783         return;
1784       }
1785     }
1786   }
1787 
1788   // Slow case: grovel through the declarations in our chain looking for
1789   // matches.
1790   // FIXME: If we have lazy external declarations, this will not find them!
1791   // FIXME: Should we CollectAllContexts and walk them all here?
1792   for (Decl *D = FirstDecl; D; D = D->getNextDeclInContext()) {
1793     if (auto *ND = dyn_cast<NamedDecl>(D))
1794       if (ND->getDeclName() == Name)
1795         Results.push_back(ND);
1796   }
1797 }
1798 
1799 DeclContext *DeclContext::getRedeclContext() {
1800   DeclContext *Ctx = this;
1801 
1802   // In C, a record type is the redeclaration context for its fields only. If
1803   // we arrive at a record context after skipping anything else, we should skip
1804   // the record as well. Currently, this means skipping enumerations because
1805   // they're the only transparent context that can exist within a struct or
1806   // union.
1807   bool SkipRecords = getDeclKind() == Decl::Kind::Enum &&
1808                      !getParentASTContext().getLangOpts().CPlusPlus;
1809 
1810   // Skip through contexts to get to the redeclaration context. Transparent
1811   // contexts are always skipped.
1812   while ((SkipRecords && Ctx->isRecord()) || Ctx->isTransparentContext())
1813     Ctx = Ctx->getParent();
1814   return Ctx;
1815 }
1816 
1817 DeclContext *DeclContext::getEnclosingNamespaceContext() {
1818   DeclContext *Ctx = this;
1819   // Skip through non-namespace, non-translation-unit contexts.
1820   while (!Ctx->isFileContext())
1821     Ctx = Ctx->getParent();
1822   return Ctx->getPrimaryContext();
1823 }
1824 
1825 RecordDecl *DeclContext::getOuterLexicalRecordContext() {
1826   // Loop until we find a non-record context.
1827   RecordDecl *OutermostRD = nullptr;
1828   DeclContext *DC = this;
1829   while (DC->isRecord()) {
1830     OutermostRD = cast<RecordDecl>(DC);
1831     DC = DC->getLexicalParent();
1832   }
1833   return OutermostRD;
1834 }
1835 
1836 bool DeclContext::InEnclosingNamespaceSetOf(const DeclContext *O) const {
1837   // For non-file contexts, this is equivalent to Equals.
1838   if (!isFileContext())
1839     return O->Equals(this);
1840 
1841   do {
1842     if (O->Equals(this))
1843       return true;
1844 
1845     const auto *NS = dyn_cast<NamespaceDecl>(O);
1846     if (!NS || !NS->isInline())
1847       break;
1848     O = NS->getParent();
1849   } while (O);
1850 
1851   return false;
1852 }
1853 
1854 void DeclContext::makeDeclVisibleInContext(NamedDecl *D) {
1855   DeclContext *PrimaryDC = this->getPrimaryContext();
1856   DeclContext *DeclDC = D->getDeclContext()->getPrimaryContext();
1857   // If the decl is being added outside of its semantic decl context, we
1858   // need to ensure that we eagerly build the lookup information for it.
1859   PrimaryDC->makeDeclVisibleInContextWithFlags(D, false, PrimaryDC == DeclDC);
1860 }
1861 
1862 void DeclContext::makeDeclVisibleInContextWithFlags(NamedDecl *D, bool Internal,
1863                                                     bool Recoverable) {
1864   assert(this == getPrimaryContext() && "expected a primary DC");
1865 
1866   if (!isLookupContext()) {
1867     if (isTransparentContext())
1868       getParent()->getPrimaryContext()
1869         ->makeDeclVisibleInContextWithFlags(D, Internal, Recoverable);
1870     return;
1871   }
1872 
1873   // Skip declarations which should be invisible to name lookup.
1874   if (shouldBeHidden(D))
1875     return;
1876 
1877   // If we already have a lookup data structure, perform the insertion into
1878   // it. If we might have externally-stored decls with this name, look them
1879   // up and perform the insertion. If this decl was declared outside its
1880   // semantic context, buildLookup won't add it, so add it now.
1881   //
1882   // FIXME: As a performance hack, don't add such decls into the translation
1883   // unit unless we're in C++, since qualified lookup into the TU is never
1884   // performed.
1885   if (LookupPtr || hasExternalVisibleStorage() ||
1886       ((!Recoverable || D->getDeclContext() != D->getLexicalDeclContext()) &&
1887        (getParentASTContext().getLangOpts().CPlusPlus ||
1888         !isTranslationUnit()))) {
1889     // If we have lazily omitted any decls, they might have the same name as
1890     // the decl which we are adding, so build a full lookup table before adding
1891     // this decl.
1892     buildLookup();
1893     makeDeclVisibleInContextImpl(D, Internal);
1894   } else {
1895     setHasLazyLocalLexicalLookups(true);
1896   }
1897 
1898   // If we are a transparent context or inline namespace, insert into our
1899   // parent context, too. This operation is recursive.
1900   if (isTransparentContext() || isInlineNamespace())
1901     getParent()->getPrimaryContext()->
1902         makeDeclVisibleInContextWithFlags(D, Internal, Recoverable);
1903 
1904   auto *DCAsDecl = cast<Decl>(this);
1905   // Notify that a decl was made visible unless we are a Tag being defined.
1906   if (!(isa<TagDecl>(DCAsDecl) && cast<TagDecl>(DCAsDecl)->isBeingDefined()))
1907     if (ASTMutationListener *L = DCAsDecl->getASTMutationListener())
1908       L->AddedVisibleDecl(this, D);
1909 }
1910 
1911 void DeclContext::makeDeclVisibleInContextImpl(NamedDecl *D, bool Internal) {
1912   // Find or create the stored declaration map.
1913   StoredDeclsMap *Map = LookupPtr;
1914   if (!Map) {
1915     ASTContext *C = &getParentASTContext();
1916     Map = CreateStoredDeclsMap(*C);
1917   }
1918 
1919   // If there is an external AST source, load any declarations it knows about
1920   // with this declaration's name.
1921   // If the lookup table contains an entry about this name it means that we
1922   // have already checked the external source.
1923   if (!Internal)
1924     if (ExternalASTSource *Source = getParentASTContext().getExternalSource())
1925       if (hasExternalVisibleStorage() &&
1926           Map->find(D->getDeclName()) == Map->end())
1927         Source->FindExternalVisibleDeclsByName(this, D->getDeclName());
1928 
1929   // Insert this declaration into the map.
1930   StoredDeclsList &DeclNameEntries = (*Map)[D->getDeclName()];
1931 
1932   if (Internal) {
1933     // If this is being added as part of loading an external declaration,
1934     // this may not be the only external declaration with this name.
1935     // In this case, we never try to replace an existing declaration; we'll
1936     // handle that when we finalize the list of declarations for this name.
1937     DeclNameEntries.setHasExternalDecls();
1938     DeclNameEntries.AddSubsequentDecl(D);
1939     return;
1940   }
1941 
1942   if (DeclNameEntries.isNull()) {
1943     DeclNameEntries.setOnlyValue(D);
1944     return;
1945   }
1946 
1947   if (DeclNameEntries.HandleRedeclaration(D, /*IsKnownNewer*/!Internal)) {
1948     // This declaration has replaced an existing one for which
1949     // declarationReplaces returns true.
1950     return;
1951   }
1952 
1953   // Put this declaration into the appropriate slot.
1954   DeclNameEntries.AddSubsequentDecl(D);
1955 }
1956 
1957 UsingDirectiveDecl *DeclContext::udir_iterator::operator*() const {
1958   return cast<UsingDirectiveDecl>(*I);
1959 }
1960 
1961 /// Returns iterator range [First, Last) of UsingDirectiveDecls stored within
1962 /// this context.
1963 DeclContext::udir_range DeclContext::using_directives() const {
1964   // FIXME: Use something more efficient than normal lookup for using
1965   // directives. In C++, using directives are looked up more than anything else.
1966   lookup_result Result = lookup(UsingDirectiveDecl::getName());
1967   return udir_range(Result.begin(), Result.end());
1968 }
1969 
1970 //===----------------------------------------------------------------------===//
1971 // Creation and Destruction of StoredDeclsMaps.                               //
1972 //===----------------------------------------------------------------------===//
1973 
1974 StoredDeclsMap *DeclContext::CreateStoredDeclsMap(ASTContext &C) const {
1975   assert(!LookupPtr && "context already has a decls map");
1976   assert(getPrimaryContext() == this &&
1977          "creating decls map on non-primary context");
1978 
1979   StoredDeclsMap *M;
1980   bool Dependent = isDependentContext();
1981   if (Dependent)
1982     M = new DependentStoredDeclsMap();
1983   else
1984     M = new StoredDeclsMap();
1985   M->Previous = C.LastSDM;
1986   C.LastSDM = llvm::PointerIntPair<StoredDeclsMap*,1>(M, Dependent);
1987   LookupPtr = M;
1988   return M;
1989 }
1990 
1991 void ASTContext::ReleaseDeclContextMaps() {
1992   // It's okay to delete DependentStoredDeclsMaps via a StoredDeclsMap
1993   // pointer because the subclass doesn't add anything that needs to
1994   // be deleted.
1995   StoredDeclsMap::DestroyAll(LastSDM.getPointer(), LastSDM.getInt());
1996 }
1997 
1998 void StoredDeclsMap::DestroyAll(StoredDeclsMap *Map, bool Dependent) {
1999   while (Map) {
2000     // Advance the iteration before we invalidate memory.
2001     llvm::PointerIntPair<StoredDeclsMap*,1> Next = Map->Previous;
2002 
2003     if (Dependent)
2004       delete static_cast<DependentStoredDeclsMap*>(Map);
2005     else
2006       delete Map;
2007 
2008     Map = Next.getPointer();
2009     Dependent = Next.getInt();
2010   }
2011 }
2012 
2013 DependentDiagnostic *DependentDiagnostic::Create(ASTContext &C,
2014                                                  DeclContext *Parent,
2015                                            const PartialDiagnostic &PDiag) {
2016   assert(Parent->isDependentContext()
2017          && "cannot iterate dependent diagnostics of non-dependent context");
2018   Parent = Parent->getPrimaryContext();
2019   if (!Parent->LookupPtr)
2020     Parent->CreateStoredDeclsMap(C);
2021 
2022   auto *Map = static_cast<DependentStoredDeclsMap *>(Parent->LookupPtr);
2023 
2024   // Allocate the copy of the PartialDiagnostic via the ASTContext's
2025   // BumpPtrAllocator, rather than the ASTContext itself.
2026   DiagnosticStorage *DiagStorage = nullptr;
2027   if (PDiag.hasStorage())
2028     DiagStorage = new (C) DiagnosticStorage;
2029 
2030   auto *DD = new (C) DependentDiagnostic(PDiag, DiagStorage);
2031 
2032   // TODO: Maybe we shouldn't reverse the order during insertion.
2033   DD->NextDiagnostic = Map->FirstDiagnostic;
2034   Map->FirstDiagnostic = DD;
2035 
2036   return DD;
2037 }
2038