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Douglas Gregor34074322009-01-14 22:20:51 +00001//===--------------------- SemaLookup.cpp - Name Lookup ------------------===//
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 name lookup for C, C++, Objective-C, and
11// Objective-C++.
12//
13//===----------------------------------------------------------------------===//
14#include "Sema.h"
John McCall5cebab12009-11-18 07:57:50 +000015#include "Lookup.h"
Douglas Gregor960b5bc2009-01-15 00:26:24 +000016#include "clang/AST/ASTContext.h"
Douglas Gregor36d1b142009-10-06 17:59:45 +000017#include "clang/AST/CXXInheritance.h"
Douglas Gregor34074322009-01-14 22:20:51 +000018#include "clang/AST/Decl.h"
19#include "clang/AST/DeclCXX.h"
20#include "clang/AST/DeclObjC.h"
Douglas Gregorc9f9b862009-05-11 19:58:34 +000021#include "clang/AST/DeclTemplate.h"
Douglas Gregore254f902009-02-04 00:32:51 +000022#include "clang/AST/Expr.h"
Douglas Gregorbe759252009-07-08 10:57:20 +000023#include "clang/AST/ExprCXX.h"
Douglas Gregor34074322009-01-14 22:20:51 +000024#include "clang/Parse/DeclSpec.h"
Chris Lattner15ba9492009-06-14 01:54:56 +000025#include "clang/Basic/Builtins.h"
Douglas Gregor34074322009-01-14 22:20:51 +000026#include "clang/Basic/LangOptions.h"
27#include "llvm/ADT/STLExtras.h"
Douglas Gregore254f902009-02-04 00:32:51 +000028#include "llvm/ADT/SmallPtrSet.h"
John McCall6538c932009-10-10 05:48:19 +000029#include "llvm/Support/ErrorHandling.h"
Douglas Gregor2d435302009-12-30 17:04:44 +000030#include <list>
Douglas Gregor1c846b02009-01-16 00:38:09 +000031#include <set>
Douglas Gregor889ceb72009-02-03 19:21:40 +000032#include <vector>
33#include <iterator>
34#include <utility>
35#include <algorithm>
Douglas Gregor34074322009-01-14 22:20:51 +000036
37using namespace clang;
38
John McCallf6c8a4e2009-11-10 07:01:13 +000039namespace {
40 class UnqualUsingEntry {
41 const DeclContext *Nominated;
42 const DeclContext *CommonAncestor;
Douglas Gregor889ceb72009-02-03 19:21:40 +000043
John McCallf6c8a4e2009-11-10 07:01:13 +000044 public:
45 UnqualUsingEntry(const DeclContext *Nominated,
46 const DeclContext *CommonAncestor)
47 : Nominated(Nominated), CommonAncestor(CommonAncestor) {
48 }
Douglas Gregor889ceb72009-02-03 19:21:40 +000049
John McCallf6c8a4e2009-11-10 07:01:13 +000050 const DeclContext *getCommonAncestor() const {
51 return CommonAncestor;
52 }
Douglas Gregor889ceb72009-02-03 19:21:40 +000053
John McCallf6c8a4e2009-11-10 07:01:13 +000054 const DeclContext *getNominatedNamespace() const {
55 return Nominated;
56 }
Douglas Gregor889ceb72009-02-03 19:21:40 +000057
John McCallf6c8a4e2009-11-10 07:01:13 +000058 // Sort by the pointer value of the common ancestor.
59 struct Comparator {
60 bool operator()(const UnqualUsingEntry &L, const UnqualUsingEntry &R) {
61 return L.getCommonAncestor() < R.getCommonAncestor();
62 }
Douglas Gregor889ceb72009-02-03 19:21:40 +000063
John McCallf6c8a4e2009-11-10 07:01:13 +000064 bool operator()(const UnqualUsingEntry &E, const DeclContext *DC) {
65 return E.getCommonAncestor() < DC;
66 }
Douglas Gregor889ceb72009-02-03 19:21:40 +000067
John McCallf6c8a4e2009-11-10 07:01:13 +000068 bool operator()(const DeclContext *DC, const UnqualUsingEntry &E) {
69 return DC < E.getCommonAncestor();
70 }
71 };
72 };
Douglas Gregor889ceb72009-02-03 19:21:40 +000073
John McCallf6c8a4e2009-11-10 07:01:13 +000074 /// A collection of using directives, as used by C++ unqualified
75 /// lookup.
76 class UnqualUsingDirectiveSet {
77 typedef llvm::SmallVector<UnqualUsingEntry, 8> ListTy;
Douglas Gregor889ceb72009-02-03 19:21:40 +000078
John McCallf6c8a4e2009-11-10 07:01:13 +000079 ListTy list;
80 llvm::SmallPtrSet<DeclContext*, 8> visited;
Douglas Gregor889ceb72009-02-03 19:21:40 +000081
John McCallf6c8a4e2009-11-10 07:01:13 +000082 public:
83 UnqualUsingDirectiveSet() {}
Douglas Gregor889ceb72009-02-03 19:21:40 +000084
John McCallf6c8a4e2009-11-10 07:01:13 +000085 void visitScopeChain(Scope *S, Scope *InnermostFileScope) {
86 // C++ [namespace.udir]p1:
87 // During unqualified name lookup, the names appear as if they
88 // were declared in the nearest enclosing namespace which contains
89 // both the using-directive and the nominated namespace.
90 DeclContext *InnermostFileDC
91 = static_cast<DeclContext*>(InnermostFileScope->getEntity());
92 assert(InnermostFileDC && InnermostFileDC->isFileContext());
Douglas Gregor889ceb72009-02-03 19:21:40 +000093
John McCallf6c8a4e2009-11-10 07:01:13 +000094 for (; S; S = S->getParent()) {
John McCallf6c8a4e2009-11-10 07:01:13 +000095 if (DeclContext *Ctx = static_cast<DeclContext*>(S->getEntity())) {
96 DeclContext *EffectiveDC = (Ctx->isFileContext() ? Ctx : InnermostFileDC);
97 visit(Ctx, EffectiveDC);
98 } else {
99 Scope::udir_iterator I = S->using_directives_begin(),
100 End = S->using_directives_end();
101
102 for (; I != End; ++I)
103 visit(I->getAs<UsingDirectiveDecl>(), InnermostFileDC);
104 }
Douglas Gregor889ceb72009-02-03 19:21:40 +0000105 }
106 }
John McCallf6c8a4e2009-11-10 07:01:13 +0000107
108 // Visits a context and collect all of its using directives
109 // recursively. Treats all using directives as if they were
110 // declared in the context.
111 //
112 // A given context is only every visited once, so it is important
113 // that contexts be visited from the inside out in order to get
114 // the effective DCs right.
115 void visit(DeclContext *DC, DeclContext *EffectiveDC) {
116 if (!visited.insert(DC))
117 return;
118
119 addUsingDirectives(DC, EffectiveDC);
120 }
121
122 // Visits a using directive and collects all of its using
123 // directives recursively. Treats all using directives as if they
124 // were declared in the effective DC.
125 void visit(UsingDirectiveDecl *UD, DeclContext *EffectiveDC) {
126 DeclContext *NS = UD->getNominatedNamespace();
127 if (!visited.insert(NS))
128 return;
129
130 addUsingDirective(UD, EffectiveDC);
131 addUsingDirectives(NS, EffectiveDC);
132 }
133
134 // Adds all the using directives in a context (and those nominated
135 // by its using directives, transitively) as if they appeared in
136 // the given effective context.
137 void addUsingDirectives(DeclContext *DC, DeclContext *EffectiveDC) {
138 llvm::SmallVector<DeclContext*,4> queue;
139 while (true) {
140 DeclContext::udir_iterator I, End;
141 for (llvm::tie(I, End) = DC->getUsingDirectives(); I != End; ++I) {
142 UsingDirectiveDecl *UD = *I;
143 DeclContext *NS = UD->getNominatedNamespace();
144 if (visited.insert(NS)) {
145 addUsingDirective(UD, EffectiveDC);
146 queue.push_back(NS);
147 }
148 }
149
150 if (queue.empty())
151 return;
152
153 DC = queue.back();
154 queue.pop_back();
155 }
156 }
157
158 // Add a using directive as if it had been declared in the given
159 // context. This helps implement C++ [namespace.udir]p3:
160 // The using-directive is transitive: if a scope contains a
161 // using-directive that nominates a second namespace that itself
162 // contains using-directives, the effect is as if the
163 // using-directives from the second namespace also appeared in
164 // the first.
165 void addUsingDirective(UsingDirectiveDecl *UD, DeclContext *EffectiveDC) {
166 // Find the common ancestor between the effective context and
167 // the nominated namespace.
168 DeclContext *Common = UD->getNominatedNamespace();
169 while (!Common->Encloses(EffectiveDC))
170 Common = Common->getParent();
John McCall9757d032009-11-10 09:20:04 +0000171 Common = Common->getPrimaryContext();
John McCallf6c8a4e2009-11-10 07:01:13 +0000172
173 list.push_back(UnqualUsingEntry(UD->getNominatedNamespace(), Common));
174 }
175
176 void done() {
177 std::sort(list.begin(), list.end(), UnqualUsingEntry::Comparator());
178 }
179
180 typedef ListTy::iterator iterator;
181 typedef ListTy::const_iterator const_iterator;
182
183 iterator begin() { return list.begin(); }
184 iterator end() { return list.end(); }
185 const_iterator begin() const { return list.begin(); }
186 const_iterator end() const { return list.end(); }
187
188 std::pair<const_iterator,const_iterator>
189 getNamespacesFor(DeclContext *DC) const {
John McCall9757d032009-11-10 09:20:04 +0000190 return std::equal_range(begin(), end(), DC->getPrimaryContext(),
John McCallf6c8a4e2009-11-10 07:01:13 +0000191 UnqualUsingEntry::Comparator());
192 }
193 };
Douglas Gregor889ceb72009-02-03 19:21:40 +0000194}
195
John McCallea305ed2009-12-18 10:40:03 +0000196static bool IsAcceptableIDNS(NamedDecl *D, unsigned IDNS) {
197 return D->isInIdentifierNamespace(IDNS);
198}
199
200static bool IsAcceptableOperatorName(NamedDecl *D, unsigned IDNS) {
201 return D->isInIdentifierNamespace(IDNS) &&
202 !D->getDeclContext()->isRecord();
203}
204
205static bool IsAcceptableNestedNameSpecifierName(NamedDecl *D, unsigned IDNS) {
John McCallc3f09ad2009-12-18 10:48:10 +0000206 // This lookup ignores everything that isn't a type.
207
208 // This is a fast check for the far most common case.
209 if (D->isInIdentifierNamespace(Decl::IDNS_Tag))
210 return true;
211
212 if (isa<UsingShadowDecl>(D))
213 D = cast<UsingShadowDecl>(D)->getTargetDecl();
214
215 return isa<TypeDecl>(D);
John McCallea305ed2009-12-18 10:40:03 +0000216}
217
218static bool IsAcceptableNamespaceName(NamedDecl *D, unsigned IDNS) {
John McCallc3f09ad2009-12-18 10:48:10 +0000219 // We don't need to look through using decls here because
220 // using decls aren't allowed to name namespaces.
221
John McCallea305ed2009-12-18 10:40:03 +0000222 return isa<NamespaceDecl>(D) || isa<NamespaceAliasDecl>(D);
223}
224
225/// Gets the default result filter for the given lookup.
226static inline
227LookupResult::ResultFilter getResultFilter(Sema::LookupNameKind NameKind) {
228 switch (NameKind) {
229 case Sema::LookupOrdinaryName:
230 case Sema::LookupTagName:
231 case Sema::LookupMemberName:
232 case Sema::LookupRedeclarationWithLinkage: // FIXME: check linkage, scoping
233 case Sema::LookupUsingDeclName:
234 case Sema::LookupObjCProtocolName:
235 case Sema::LookupObjCImplementationName:
236 return &IsAcceptableIDNS;
237
238 case Sema::LookupOperatorName:
239 return &IsAcceptableOperatorName;
240
241 case Sema::LookupNestedNameSpecifierName:
242 return &IsAcceptableNestedNameSpecifierName;
243
244 case Sema::LookupNamespaceName:
245 return &IsAcceptableNamespaceName;
246 }
247
248 llvm_unreachable("unkknown lookup kind");
249 return 0;
250}
251
Douglas Gregor889ceb72009-02-03 19:21:40 +0000252// Retrieve the set of identifier namespaces that correspond to a
253// specific kind of name lookup.
John McCallea305ed2009-12-18 10:40:03 +0000254static inline unsigned getIDNS(Sema::LookupNameKind NameKind,
255 bool CPlusPlus,
256 bool Redeclaration) {
Douglas Gregor889ceb72009-02-03 19:21:40 +0000257 unsigned IDNS = 0;
258 switch (NameKind) {
259 case Sema::LookupOrdinaryName:
Douglas Gregor94eabf32009-02-04 16:44:47 +0000260 case Sema::LookupOperatorName:
Douglas Gregoreddf4332009-02-24 20:03:32 +0000261 case Sema::LookupRedeclarationWithLinkage:
Douglas Gregor889ceb72009-02-03 19:21:40 +0000262 IDNS = Decl::IDNS_Ordinary;
John McCallea305ed2009-12-18 10:40:03 +0000263 if (CPlusPlus) {
Douglas Gregor889ceb72009-02-03 19:21:40 +0000264 IDNS |= Decl::IDNS_Tag | Decl::IDNS_Member;
John McCallea305ed2009-12-18 10:40:03 +0000265 if (Redeclaration) IDNS |= Decl::IDNS_TagFriend | Decl::IDNS_OrdinaryFriend;
266 }
Douglas Gregor889ceb72009-02-03 19:21:40 +0000267 break;
268
269 case Sema::LookupTagName:
270 IDNS = Decl::IDNS_Tag;
John McCallea305ed2009-12-18 10:40:03 +0000271 if (CPlusPlus && Redeclaration)
272 IDNS |= Decl::IDNS_TagFriend;
Douglas Gregor889ceb72009-02-03 19:21:40 +0000273 break;
274
275 case Sema::LookupMemberName:
276 IDNS = Decl::IDNS_Member;
277 if (CPlusPlus)
Mike Stump11289f42009-09-09 15:08:12 +0000278 IDNS |= Decl::IDNS_Tag | Decl::IDNS_Ordinary;
Douglas Gregor889ceb72009-02-03 19:21:40 +0000279 break;
280
281 case Sema::LookupNestedNameSpecifierName:
282 case Sema::LookupNamespaceName:
283 IDNS = Decl::IDNS_Ordinary | Decl::IDNS_Tag | Decl::IDNS_Member;
284 break;
Douglas Gregorde9f17e2009-04-23 23:18:26 +0000285
John McCall84d87672009-12-10 09:41:52 +0000286 case Sema::LookupUsingDeclName:
287 IDNS = Decl::IDNS_Ordinary | Decl::IDNS_Tag
288 | Decl::IDNS_Member | Decl::IDNS_Using;
289 break;
290
Douglas Gregor79947a22009-04-24 00:11:27 +0000291 case Sema::LookupObjCProtocolName:
292 IDNS = Decl::IDNS_ObjCProtocol;
293 break;
294
295 case Sema::LookupObjCImplementationName:
296 IDNS = Decl::IDNS_ObjCImplementation;
297 break;
Douglas Gregor889ceb72009-02-03 19:21:40 +0000298 }
299 return IDNS;
300}
301
John McCallea305ed2009-12-18 10:40:03 +0000302void LookupResult::configure() {
303 IDNS = getIDNS(LookupKind,
304 SemaRef.getLangOptions().CPlusPlus,
305 isForRedeclaration());
306 IsAcceptableFn = getResultFilter(LookupKind);
307}
308
John McCall9f3059a2009-10-09 21:13:30 +0000309// Necessary because CXXBasePaths is not complete in Sema.h
John McCall5cebab12009-11-18 07:57:50 +0000310void LookupResult::deletePaths(CXXBasePaths *Paths) {
John McCall9f3059a2009-10-09 21:13:30 +0000311 delete Paths;
Douglas Gregor889ceb72009-02-03 19:21:40 +0000312}
313
John McCall283b9012009-11-22 00:44:51 +0000314/// Resolves the result kind of this lookup.
John McCall5cebab12009-11-18 07:57:50 +0000315void LookupResult::resolveKind() {
John McCall9f3059a2009-10-09 21:13:30 +0000316 unsigned N = Decls.size();
John McCall84d87672009-12-10 09:41:52 +0000317
John McCall9f3059a2009-10-09 21:13:30 +0000318 // Fast case: no possible ambiguity.
John McCall1f82f242009-11-18 22:49:29 +0000319 if (N == 0) {
John McCall7fe6e9c2010-01-15 21:27:01 +0000320 assert(ResultKind == NotFound || ResultKind == NotFoundInCurrentInstantiation);
John McCall1f82f242009-11-18 22:49:29 +0000321 return;
322 }
323
John McCall283b9012009-11-22 00:44:51 +0000324 // If there's a single decl, we need to examine it to decide what
325 // kind of lookup this is.
John McCalle61f2ba2009-11-18 02:36:19 +0000326 if (N == 1) {
John McCallad371252010-01-20 00:46:10 +0000327 if (isa<FunctionTemplateDecl>(*Decls.begin()))
John McCall283b9012009-11-22 00:44:51 +0000328 ResultKind = FoundOverloaded;
John McCallad371252010-01-20 00:46:10 +0000329 else if (isa<UnresolvedUsingValueDecl>(*Decls.begin()))
John McCalle61f2ba2009-11-18 02:36:19 +0000330 ResultKind = FoundUnresolvedValue;
331 return;
332 }
John McCall9f3059a2009-10-09 21:13:30 +0000333
John McCall6538c932009-10-10 05:48:19 +0000334 // Don't do any extra resolution if we've already resolved as ambiguous.
John McCall27b18f82009-11-17 02:14:36 +0000335 if (ResultKind == Ambiguous) return;
John McCall6538c932009-10-10 05:48:19 +0000336
John McCall9f3059a2009-10-09 21:13:30 +0000337 llvm::SmallPtrSet<NamedDecl*, 16> Unique;
338
339 bool Ambiguous = false;
340 bool HasTag = false, HasFunction = false, HasNonFunction = false;
John McCall283b9012009-11-22 00:44:51 +0000341 bool HasFunctionTemplate = false, HasUnresolved = false;
John McCall9f3059a2009-10-09 21:13:30 +0000342
343 unsigned UniqueTagIndex = 0;
344
345 unsigned I = 0;
346 while (I < N) {
John McCallf0f1cf02009-11-17 07:50:12 +0000347 NamedDecl *D = Decls[I]->getUnderlyingDecl();
348 D = cast<NamedDecl>(D->getCanonicalDecl());
John McCall9f3059a2009-10-09 21:13:30 +0000349
John McCallf0f1cf02009-11-17 07:50:12 +0000350 if (!Unique.insert(D)) {
John McCall9f3059a2009-10-09 21:13:30 +0000351 // If it's not unique, pull something off the back (and
352 // continue at this index).
353 Decls[I] = Decls[--N];
John McCall9f3059a2009-10-09 21:13:30 +0000354 } else {
355 // Otherwise, do some decl type analysis and then continue.
John McCalle61f2ba2009-11-18 02:36:19 +0000356
357 if (isa<UnresolvedUsingValueDecl>(D)) {
358 HasUnresolved = true;
359 } else if (isa<TagDecl>(D)) {
John McCall9f3059a2009-10-09 21:13:30 +0000360 if (HasTag)
361 Ambiguous = true;
362 UniqueTagIndex = I;
363 HasTag = true;
John McCall283b9012009-11-22 00:44:51 +0000364 } else if (isa<FunctionTemplateDecl>(D)) {
365 HasFunction = true;
366 HasFunctionTemplate = true;
367 } else if (isa<FunctionDecl>(D)) {
John McCall9f3059a2009-10-09 21:13:30 +0000368 HasFunction = true;
369 } else {
370 if (HasNonFunction)
371 Ambiguous = true;
372 HasNonFunction = true;
373 }
374 I++;
Douglas Gregor960b5bc2009-01-15 00:26:24 +0000375 }
Mike Stump11289f42009-09-09 15:08:12 +0000376 }
Douglas Gregor38feed82009-04-24 02:57:34 +0000377
John McCall9f3059a2009-10-09 21:13:30 +0000378 // C++ [basic.scope.hiding]p2:
379 // A class name or enumeration name can be hidden by the name of
380 // an object, function, or enumerator declared in the same
381 // scope. If a class or enumeration name and an object, function,
382 // or enumerator are declared in the same scope (in any order)
383 // with the same name, the class or enumeration name is hidden
384 // wherever the object, function, or enumerator name is visible.
385 // But it's still an error if there are distinct tag types found,
386 // even if they're not visible. (ref?)
John McCall80053822009-12-03 00:58:24 +0000387 if (HideTags && HasTag && !Ambiguous &&
388 (HasFunction || HasNonFunction || HasUnresolved))
John McCall9f3059a2009-10-09 21:13:30 +0000389 Decls[UniqueTagIndex] = Decls[--N];
Anders Carlsson8d0f6b72009-06-26 03:37:05 +0000390
John McCall9f3059a2009-10-09 21:13:30 +0000391 Decls.set_size(N);
Douglas Gregor960b5bc2009-01-15 00:26:24 +0000392
John McCall80053822009-12-03 00:58:24 +0000393 if (HasNonFunction && (HasFunction || HasUnresolved))
John McCall9f3059a2009-10-09 21:13:30 +0000394 Ambiguous = true;
Douglas Gregorf23311d2009-01-17 01:13:24 +0000395
John McCall9f3059a2009-10-09 21:13:30 +0000396 if (Ambiguous)
John McCall6538c932009-10-10 05:48:19 +0000397 setAmbiguous(LookupResult::AmbiguousReference);
John McCalle61f2ba2009-11-18 02:36:19 +0000398 else if (HasUnresolved)
399 ResultKind = LookupResult::FoundUnresolvedValue;
John McCall283b9012009-11-22 00:44:51 +0000400 else if (N > 1 || HasFunctionTemplate)
John McCall27b18f82009-11-17 02:14:36 +0000401 ResultKind = LookupResult::FoundOverloaded;
John McCall9f3059a2009-10-09 21:13:30 +0000402 else
John McCall27b18f82009-11-17 02:14:36 +0000403 ResultKind = LookupResult::Found;
Douglas Gregor34074322009-01-14 22:20:51 +0000404}
405
John McCall5cebab12009-11-18 07:57:50 +0000406void LookupResult::addDeclsFromBasePaths(const CXXBasePaths &P) {
John McCall5b0829a2010-02-10 09:31:12 +0000407 CXXBasePaths::const_paths_iterator I, E;
John McCall9f3059a2009-10-09 21:13:30 +0000408 DeclContext::lookup_iterator DI, DE;
409 for (I = P.begin(), E = P.end(); I != E; ++I)
410 for (llvm::tie(DI,DE) = I->Decls; DI != DE; ++DI)
411 addDecl(*DI);
Douglas Gregorfe3d7d02009-04-01 21:51:26 +0000412}
413
John McCall5cebab12009-11-18 07:57:50 +0000414void LookupResult::setAmbiguousBaseSubobjects(CXXBasePaths &P) {
John McCall9f3059a2009-10-09 21:13:30 +0000415 Paths = new CXXBasePaths;
416 Paths->swap(P);
417 addDeclsFromBasePaths(*Paths);
418 resolveKind();
John McCall6538c932009-10-10 05:48:19 +0000419 setAmbiguous(AmbiguousBaseSubobjects);
Douglas Gregor0e8fc3c2009-02-02 21:35:47 +0000420}
421
John McCall5cebab12009-11-18 07:57:50 +0000422void LookupResult::setAmbiguousBaseSubobjectTypes(CXXBasePaths &P) {
John McCall9f3059a2009-10-09 21:13:30 +0000423 Paths = new CXXBasePaths;
424 Paths->swap(P);
425 addDeclsFromBasePaths(*Paths);
426 resolveKind();
John McCall6538c932009-10-10 05:48:19 +0000427 setAmbiguous(AmbiguousBaseSubobjectTypes);
John McCall9f3059a2009-10-09 21:13:30 +0000428}
429
John McCall5cebab12009-11-18 07:57:50 +0000430void LookupResult::print(llvm::raw_ostream &Out) {
John McCall9f3059a2009-10-09 21:13:30 +0000431 Out << Decls.size() << " result(s)";
432 if (isAmbiguous()) Out << ", ambiguous";
433 if (Paths) Out << ", base paths present";
434
435 for (iterator I = begin(), E = end(); I != E; ++I) {
436 Out << "\n";
437 (*I)->print(Out, 2);
438 }
439}
440
Douglas Gregord3a59182010-02-12 05:48:04 +0000441/// \brief Lookup a builtin function, when name lookup would otherwise
442/// fail.
443static bool LookupBuiltin(Sema &S, LookupResult &R) {
444 Sema::LookupNameKind NameKind = R.getLookupKind();
445
446 // If we didn't find a use of this identifier, and if the identifier
447 // corresponds to a compiler builtin, create the decl object for the builtin
448 // now, injecting it into translation unit scope, and return it.
449 if (NameKind == Sema::LookupOrdinaryName ||
450 NameKind == Sema::LookupRedeclarationWithLinkage) {
451 IdentifierInfo *II = R.getLookupName().getAsIdentifierInfo();
452 if (II) {
453 // If this is a builtin on this (or all) targets, create the decl.
454 if (unsigned BuiltinID = II->getBuiltinID()) {
455 // In C++, we don't have any predefined library functions like
456 // 'malloc'. Instead, we'll just error.
457 if (S.getLangOptions().CPlusPlus &&
458 S.Context.BuiltinInfo.isPredefinedLibFunction(BuiltinID))
459 return false;
460
461 NamedDecl *D = S.LazilyCreateBuiltin((IdentifierInfo *)II, BuiltinID,
462 S.TUScope, R.isForRedeclaration(),
463 R.getNameLoc());
464 if (D)
465 R.addDecl(D);
466 return (D != NULL);
467 }
468 }
469 }
470
471 return false;
472}
473
John McCall9f3059a2009-10-09 21:13:30 +0000474// Adds all qualifying matches for a name within a decl context to the
475// given lookup result. Returns true if any matches were found.
Douglas Gregord3a59182010-02-12 05:48:04 +0000476static bool LookupDirect(Sema &S, LookupResult &R, const DeclContext *DC) {
John McCall9f3059a2009-10-09 21:13:30 +0000477 bool Found = false;
478
John McCallf6c8a4e2009-11-10 07:01:13 +0000479 DeclContext::lookup_const_iterator I, E;
Douglas Gregorea0a0a92010-01-11 18:40:55 +0000480 for (llvm::tie(I, E) = DC->lookup(R.getLookupName()); I != E; ++I) {
John McCall401982f2010-01-20 21:53:11 +0000481 NamedDecl *D = *I;
482 if (R.isAcceptableDecl(D)) {
483 R.addDecl(D);
Douglas Gregorea0a0a92010-01-11 18:40:55 +0000484 Found = true;
485 }
486 }
John McCall9f3059a2009-10-09 21:13:30 +0000487
Douglas Gregord3a59182010-02-12 05:48:04 +0000488 if (!Found && DC->isTranslationUnit() && LookupBuiltin(S, R))
489 return true;
490
Douglas Gregorea0a0a92010-01-11 18:40:55 +0000491 if (R.getLookupName().getNameKind()
Chandler Carruth3a693b72010-01-31 11:44:02 +0000492 != DeclarationName::CXXConversionFunctionName ||
493 R.getLookupName().getCXXNameType()->isDependentType() ||
494 !isa<CXXRecordDecl>(DC))
495 return Found;
496
497 // C++ [temp.mem]p6:
498 // A specialization of a conversion function template is not found by
499 // name lookup. Instead, any conversion function templates visible in the
500 // context of the use are considered. [...]
501 const CXXRecordDecl *Record = cast<CXXRecordDecl>(DC);
502 if (!Record->isDefinition())
503 return Found;
504
505 const UnresolvedSetImpl *Unresolved = Record->getConversionFunctions();
506 for (UnresolvedSetImpl::iterator U = Unresolved->begin(),
507 UEnd = Unresolved->end(); U != UEnd; ++U) {
508 FunctionTemplateDecl *ConvTemplate = dyn_cast<FunctionTemplateDecl>(*U);
509 if (!ConvTemplate)
510 continue;
511
512 // When we're performing lookup for the purposes of redeclaration, just
513 // add the conversion function template. When we deduce template
514 // arguments for specializations, we'll end up unifying the return
515 // type of the new declaration with the type of the function template.
516 if (R.isForRedeclaration()) {
517 R.addDecl(ConvTemplate);
518 Found = true;
519 continue;
520 }
521
Douglas Gregorea0a0a92010-01-11 18:40:55 +0000522 // C++ [temp.mem]p6:
Chandler Carruth3a693b72010-01-31 11:44:02 +0000523 // [...] For each such operator, if argument deduction succeeds
524 // (14.9.2.3), the resulting specialization is used as if found by
525 // name lookup.
526 //
527 // When referencing a conversion function for any purpose other than
528 // a redeclaration (such that we'll be building an expression with the
529 // result), perform template argument deduction and place the
530 // specialization into the result set. We do this to avoid forcing all
531 // callers to perform special deduction for conversion functions.
John McCallbc077cf2010-02-08 23:07:23 +0000532 Sema::TemplateDeductionInfo Info(R.getSema().Context, R.getNameLoc());
Chandler Carruth3a693b72010-01-31 11:44:02 +0000533 FunctionDecl *Specialization = 0;
534
535 const FunctionProtoType *ConvProto
536 = ConvTemplate->getTemplatedDecl()->getType()->getAs<FunctionProtoType>();
537 assert(ConvProto && "Nonsensical conversion function template type");
Douglas Gregor3c96a462010-01-12 01:17:50 +0000538
Chandler Carruth3a693b72010-01-31 11:44:02 +0000539 // Compute the type of the function that we would expect the conversion
540 // function to have, if it were to match the name given.
541 // FIXME: Calling convention!
542 QualType ExpectedType
543 = R.getSema().Context.getFunctionType(R.getLookupName().getCXXNameType(),
544 0, 0, ConvProto->isVariadic(),
545 ConvProto->getTypeQuals(),
546 false, false, 0, 0,
Douglas Gregor36c569f2010-02-21 22:15:06 +0000547 ConvProto->getNoReturnAttr(),
548 CC_Default);
Chandler Carruth3a693b72010-01-31 11:44:02 +0000549
550 // Perform template argument deduction against the type that we would
551 // expect the function to have.
552 if (R.getSema().DeduceTemplateArguments(ConvTemplate, 0, ExpectedType,
553 Specialization, Info)
554 == Sema::TDK_Success) {
555 R.addDecl(Specialization);
556 Found = true;
Douglas Gregorea0a0a92010-01-11 18:40:55 +0000557 }
558 }
Chandler Carruth3a693b72010-01-31 11:44:02 +0000559
John McCall9f3059a2009-10-09 21:13:30 +0000560 return Found;
561}
562
John McCallf6c8a4e2009-11-10 07:01:13 +0000563// Performs C++ unqualified lookup into the given file context.
John McCall9f3059a2009-10-09 21:13:30 +0000564static bool
Douglas Gregord3a59182010-02-12 05:48:04 +0000565CppNamespaceLookup(Sema &S, LookupResult &R, ASTContext &Context,
566 DeclContext *NS, UnqualUsingDirectiveSet &UDirs) {
Douglas Gregor700792c2009-02-05 19:25:20 +0000567
568 assert(NS && NS->isFileContext() && "CppNamespaceLookup() requires namespace!");
569
John McCallf6c8a4e2009-11-10 07:01:13 +0000570 // Perform direct name lookup into the LookupCtx.
Douglas Gregord3a59182010-02-12 05:48:04 +0000571 bool Found = LookupDirect(S, R, NS);
Douglas Gregor700792c2009-02-05 19:25:20 +0000572
John McCallf6c8a4e2009-11-10 07:01:13 +0000573 // Perform direct name lookup into the namespaces nominated by the
574 // using directives whose common ancestor is this namespace.
575 UnqualUsingDirectiveSet::const_iterator UI, UEnd;
576 llvm::tie(UI, UEnd) = UDirs.getNamespacesFor(NS);
Mike Stump11289f42009-09-09 15:08:12 +0000577
John McCallf6c8a4e2009-11-10 07:01:13 +0000578 for (; UI != UEnd; ++UI)
Douglas Gregord3a59182010-02-12 05:48:04 +0000579 if (LookupDirect(S, R, UI->getNominatedNamespace()))
John McCallf6c8a4e2009-11-10 07:01:13 +0000580 Found = true;
John McCall9f3059a2009-10-09 21:13:30 +0000581
582 R.resolveKind();
583
584 return Found;
Douglas Gregor700792c2009-02-05 19:25:20 +0000585}
586
587static bool isNamespaceOrTranslationUnitScope(Scope *S) {
Douglas Gregor889ceb72009-02-03 19:21:40 +0000588 if (DeclContext *Ctx = static_cast<DeclContext*>(S->getEntity()))
Douglas Gregor700792c2009-02-05 19:25:20 +0000589 return Ctx->isFileContext();
590 return false;
Douglas Gregor889ceb72009-02-03 19:21:40 +0000591}
Douglas Gregored8f2882009-01-30 01:04:22 +0000592
Douglas Gregor66230062010-03-15 14:33:29 +0000593// Find the next outer declaration context from this scope. This
594// routine actually returns the semantic outer context, which may
595// differ from the lexical context (encoded directly in the Scope
596// stack) when we are parsing a member of a class template. In this
597// case, the second element of the pair will be true, to indicate that
598// name lookup should continue searching in this semantic context when
599// it leaves the current template parameter scope.
600static std::pair<DeclContext *, bool> findOuterContext(Scope *S) {
601 DeclContext *DC = static_cast<DeclContext *>(S->getEntity());
602 DeclContext *Lexical = 0;
603 for (Scope *OuterS = S->getParent(); OuterS;
604 OuterS = OuterS->getParent()) {
605 if (OuterS->getEntity()) {
Douglas Gregorea166062010-03-15 15:26:48 +0000606 Lexical = static_cast<DeclContext *>(OuterS->getEntity());
Douglas Gregor66230062010-03-15 14:33:29 +0000607 break;
608 }
609 }
610
611 // C++ [temp.local]p8:
612 // In the definition of a member of a class template that appears
613 // outside of the namespace containing the class template
614 // definition, the name of a template-parameter hides the name of
615 // a member of this namespace.
616 //
617 // Example:
618 //
619 // namespace N {
620 // class C { };
621 //
622 // template<class T> class B {
623 // void f(T);
624 // };
625 // }
626 //
627 // template<class C> void N::B<C>::f(C) {
628 // C b; // C is the template parameter, not N::C
629 // }
630 //
631 // In this example, the lexical context we return is the
632 // TranslationUnit, while the semantic context is the namespace N.
633 if (!Lexical || !DC || !S->getParent() ||
634 !S->getParent()->isTemplateParamScope())
635 return std::make_pair(Lexical, false);
636
637 // Find the outermost template parameter scope.
638 // For the example, this is the scope for the template parameters of
639 // template<class C>.
640 Scope *OutermostTemplateScope = S->getParent();
641 while (OutermostTemplateScope->getParent() &&
642 OutermostTemplateScope->getParent()->isTemplateParamScope())
643 OutermostTemplateScope = OutermostTemplateScope->getParent();
Douglas Gregor7f737c02009-09-10 16:57:35 +0000644
Douglas Gregor66230062010-03-15 14:33:29 +0000645 // Find the namespace context in which the original scope occurs. In
646 // the example, this is namespace N.
647 DeclContext *Semantic = DC;
648 while (!Semantic->isFileContext())
649 Semantic = Semantic->getParent();
650
651 // Find the declaration context just outside of the template
652 // parameter scope. This is the context in which the template is
653 // being lexically declaration (a namespace context). In the
654 // example, this is the global scope.
655 if (Lexical->isFileContext() && !Lexical->Equals(Semantic) &&
656 Lexical->Encloses(Semantic))
657 return std::make_pair(Semantic, true);
658
659 return std::make_pair(Lexical, false);
Douglas Gregor7f737c02009-09-10 16:57:35 +0000660}
661
John McCall27b18f82009-11-17 02:14:36 +0000662bool Sema::CppLookupName(LookupResult &R, Scope *S) {
John McCallea305ed2009-12-18 10:40:03 +0000663 assert(getLangOptions().CPlusPlus && "Can perform only C++ lookup");
John McCall27b18f82009-11-17 02:14:36 +0000664
665 DeclarationName Name = R.getLookupName();
666
Douglas Gregor889ceb72009-02-03 19:21:40 +0000667 Scope *Initial = S;
Mike Stump11289f42009-09-09 15:08:12 +0000668 IdentifierResolver::iterator
Douglas Gregor889ceb72009-02-03 19:21:40 +0000669 I = IdResolver.begin(Name),
670 IEnd = IdResolver.end();
Douglas Gregored8f2882009-01-30 01:04:22 +0000671
Douglas Gregor889ceb72009-02-03 19:21:40 +0000672 // First we lookup local scope.
Douglas Gregorded2d7b2009-02-04 19:02:06 +0000673 // We don't consider using-directives, as per 7.3.4.p1 [namespace.udir]
Douglas Gregor889ceb72009-02-03 19:21:40 +0000674 // ...During unqualified name lookup (3.4.1), the names appear as if
675 // they were declared in the nearest enclosing namespace which contains
676 // both the using-directive and the nominated namespace.
Eli Friedman44b83ee2009-08-05 19:21:58 +0000677 // [Note: in this context, "contains" means "contains directly or
Mike Stump11289f42009-09-09 15:08:12 +0000678 // indirectly".
Douglas Gregor889ceb72009-02-03 19:21:40 +0000679 //
680 // For example:
681 // namespace A { int i; }
682 // void foo() {
683 // int i;
684 // {
685 // using namespace A;
686 // ++i; // finds local 'i', A::i appears at global scope
687 // }
688 // }
Douglas Gregor2ada0482009-02-04 17:27:36 +0000689 //
Douglas Gregor66230062010-03-15 14:33:29 +0000690 DeclContext *OutsideOfTemplateParamDC = 0;
Douglas Gregor700792c2009-02-05 19:25:20 +0000691 for (; S && !isNamespaceOrTranslationUnitScope(S); S = S->getParent()) {
Douglas Gregor889ceb72009-02-03 19:21:40 +0000692 // Check whether the IdResolver has anything in this scope.
John McCall9f3059a2009-10-09 21:13:30 +0000693 bool Found = false;
Chris Lattner83f095c2009-03-28 19:18:32 +0000694 for (; I != IEnd && S->isDeclScope(DeclPtrTy::make(*I)); ++I) {
John McCallea305ed2009-12-18 10:40:03 +0000695 if (R.isAcceptableDecl(*I)) {
John McCall9f3059a2009-10-09 21:13:30 +0000696 Found = true;
697 R.addDecl(*I);
Douglas Gregor889ceb72009-02-03 19:21:40 +0000698 }
699 }
John McCall9f3059a2009-10-09 21:13:30 +0000700 if (Found) {
701 R.resolveKind();
702 return true;
703 }
704
Douglas Gregor66230062010-03-15 14:33:29 +0000705 DeclContext *Ctx = static_cast<DeclContext*>(S->getEntity());
706 if (!Ctx && S->isTemplateParamScope() && OutsideOfTemplateParamDC &&
707 S->getParent() && !S->getParent()->isTemplateParamScope()) {
708 // We've just searched the last template parameter scope and
709 // found nothing, so look into the the contexts between the
710 // lexical and semantic declaration contexts returned by
711 // findOuterContext(). This implements the name lookup behavior
712 // of C++ [temp.local]p8.
713 Ctx = OutsideOfTemplateParamDC;
714 OutsideOfTemplateParamDC = 0;
715 }
716
717 if (Ctx) {
718 DeclContext *OuterCtx;
719 bool SearchAfterTemplateScope;
720 llvm::tie(OuterCtx, SearchAfterTemplateScope) = findOuterContext(S);
721 if (SearchAfterTemplateScope)
722 OutsideOfTemplateParamDC = OuterCtx;
723
Douglas Gregorea166062010-03-15 15:26:48 +0000724 for (; Ctx && !Ctx->Equals(OuterCtx); Ctx = Ctx->getLookupParent()) {
Douglas Gregor337caf92010-02-19 16:08:35 +0000725 // We do not directly look into transparent contexts, since
726 // those entities will be found in the nearest enclosing
727 // non-transparent context.
728 if (Ctx->isTransparentContext())
Douglas Gregor7f737c02009-09-10 16:57:35 +0000729 continue;
Douglas Gregor337caf92010-02-19 16:08:35 +0000730
731 // We do not look directly into function or method contexts,
732 // since all of the local variables and parameters of the
733 // function/method are present within the Scope.
734 if (Ctx->isFunctionOrMethod()) {
735 // If we have an Objective-C instance method, look for ivars
736 // in the corresponding interface.
737 if (ObjCMethodDecl *Method = dyn_cast<ObjCMethodDecl>(Ctx)) {
738 if (Method->isInstanceMethod() && Name.getAsIdentifierInfo())
739 if (ObjCInterfaceDecl *Class = Method->getClassInterface()) {
740 ObjCInterfaceDecl *ClassDeclared;
741 if (ObjCIvarDecl *Ivar = Class->lookupInstanceVariable(
742 Name.getAsIdentifierInfo(),
743 ClassDeclared)) {
744 if (R.isAcceptableDecl(Ivar)) {
745 R.addDecl(Ivar);
746 R.resolveKind();
747 return true;
748 }
749 }
750 }
751 }
752
753 continue;
754 }
755
Douglas Gregor7f737c02009-09-10 16:57:35 +0000756 // Perform qualified name lookup into this context.
757 // FIXME: In some cases, we know that every name that could be found by
758 // this qualified name lookup will also be on the identifier chain. For
759 // example, inside a class without any base classes, we never need to
760 // perform qualified lookup because all of the members are on top of the
761 // identifier chain.
Douglas Gregord0d2ee02010-01-15 01:44:47 +0000762 if (LookupQualifiedName(R, Ctx, /*InUnqualifiedLookup=*/true))
John McCall9f3059a2009-10-09 21:13:30 +0000763 return true;
Douglas Gregorfdca4a72009-03-27 04:21:56 +0000764 }
Douglas Gregor700792c2009-02-05 19:25:20 +0000765 }
Douglas Gregored8f2882009-01-30 01:04:22 +0000766 }
Douglas Gregor889ceb72009-02-03 19:21:40 +0000767
John McCallf6c8a4e2009-11-10 07:01:13 +0000768 // Stop if we ran out of scopes.
769 // FIXME: This really, really shouldn't be happening.
770 if (!S) return false;
771
Douglas Gregor700792c2009-02-05 19:25:20 +0000772 // Collect UsingDirectiveDecls in all scopes, and recursively all
Douglas Gregor889ceb72009-02-03 19:21:40 +0000773 // nominated namespaces by those using-directives.
John McCallf6c8a4e2009-11-10 07:01:13 +0000774 //
Mike Stump87c57ac2009-05-16 07:39:55 +0000775 // FIXME: Cache this sorted list in Scope structure, and DeclContext, so we
776 // don't build it for each lookup!
Douglas Gregor889ceb72009-02-03 19:21:40 +0000777
John McCallf6c8a4e2009-11-10 07:01:13 +0000778 UnqualUsingDirectiveSet UDirs;
779 UDirs.visitScopeChain(Initial, S);
780 UDirs.done();
Douglas Gregor889ceb72009-02-03 19:21:40 +0000781
Douglas Gregor700792c2009-02-05 19:25:20 +0000782 // Lookup namespace scope, and global scope.
Douglas Gregor889ceb72009-02-03 19:21:40 +0000783 // Unqualified name lookup in C++ requires looking into scopes
784 // that aren't strictly lexical, and therefore we walk through the
785 // context as well as walking through the scopes.
Douglas Gregor700792c2009-02-05 19:25:20 +0000786
Douglas Gregor889ceb72009-02-03 19:21:40 +0000787 for (; S; S = S->getParent()) {
Douglas Gregor700792c2009-02-05 19:25:20 +0000788 DeclContext *Ctx = static_cast<DeclContext *>(S->getEntity());
Douglas Gregor3ce74932010-02-05 07:07:10 +0000789 if (Ctx && Ctx->isTransparentContext())
Douglas Gregorf2270432009-08-24 18:55:03 +0000790 continue;
791
Douglas Gregor889ceb72009-02-03 19:21:40 +0000792 // Check whether the IdResolver has anything in this scope.
John McCall9f3059a2009-10-09 21:13:30 +0000793 bool Found = false;
Chris Lattner83f095c2009-03-28 19:18:32 +0000794 for (; I != IEnd && S->isDeclScope(DeclPtrTy::make(*I)); ++I) {
John McCallea305ed2009-12-18 10:40:03 +0000795 if (R.isAcceptableDecl(*I)) {
Douglas Gregor889ceb72009-02-03 19:21:40 +0000796 // We found something. Look for anything else in our scope
797 // with this same name and in an acceptable identifier
798 // namespace, so that we can construct an overload set if we
799 // need to.
John McCall9f3059a2009-10-09 21:13:30 +0000800 Found = true;
801 R.addDecl(*I);
Douglas Gregor889ceb72009-02-03 19:21:40 +0000802 }
803 }
804
Douglas Gregor66230062010-03-15 14:33:29 +0000805 // If we have a context, and it's not a context stashed in the
806 // template parameter scope for an out-of-line definition, also
807 // look into that context.
808 if (Ctx && !(Found && S && S->isTemplateParamScope())) {
Douglas Gregor3ce74932010-02-05 07:07:10 +0000809 assert(Ctx->isFileContext() &&
810 "We should have been looking only at file context here already.");
811
812 // Look into context considering using-directives.
Douglas Gregord3a59182010-02-12 05:48:04 +0000813 if (CppNamespaceLookup(*this, R, Context, Ctx, UDirs))
Douglas Gregor3ce74932010-02-05 07:07:10 +0000814 Found = true;
815 }
Douglas Gregor889ceb72009-02-03 19:21:40 +0000816
John McCall9f3059a2009-10-09 21:13:30 +0000817 if (Found) {
818 R.resolveKind();
819 return true;
820 }
821
Douglas Gregor3ce74932010-02-05 07:07:10 +0000822 if (R.isForRedeclaration() && Ctx && !Ctx->isTransparentContext())
John McCall9f3059a2009-10-09 21:13:30 +0000823 return false;
Douglas Gregor700792c2009-02-05 19:25:20 +0000824 }
Douglas Gregor889ceb72009-02-03 19:21:40 +0000825
John McCall9f3059a2009-10-09 21:13:30 +0000826 return !R.empty();
Douglas Gregored8f2882009-01-30 01:04:22 +0000827}
828
Douglas Gregor34074322009-01-14 22:20:51 +0000829/// @brief Perform unqualified name lookup starting from a given
830/// scope.
831///
832/// Unqualified name lookup (C++ [basic.lookup.unqual], C99 6.2.1) is
833/// used to find names within the current scope. For example, 'x' in
834/// @code
835/// int x;
836/// int f() {
837/// return x; // unqualified name look finds 'x' in the global scope
838/// }
839/// @endcode
840///
841/// Different lookup criteria can find different names. For example, a
842/// particular scope can have both a struct and a function of the same
843/// name, and each can be found by certain lookup criteria. For more
844/// information about lookup criteria, see the documentation for the
845/// class LookupCriteria.
846///
847/// @param S The scope from which unqualified name lookup will
848/// begin. If the lookup criteria permits, name lookup may also search
849/// in the parent scopes.
850///
851/// @param Name The name of the entity that we are searching for.
852///
Douglas Gregorb9063fc2009-02-13 23:20:09 +0000853/// @param Loc If provided, the source location where we're performing
Mike Stump11289f42009-09-09 15:08:12 +0000854/// name lookup. At present, this is only used to produce diagnostics when
Douglas Gregorb9063fc2009-02-13 23:20:09 +0000855/// C library functions (like "malloc") are implicitly declared.
Douglas Gregor34074322009-01-14 22:20:51 +0000856///
857/// @returns The result of name lookup, which includes zero or more
858/// declarations and possibly additional information used to diagnose
859/// ambiguities.
John McCall27b18f82009-11-17 02:14:36 +0000860bool Sema::LookupName(LookupResult &R, Scope *S, bool AllowBuiltinCreation) {
861 DeclarationName Name = R.getLookupName();
John McCall9f3059a2009-10-09 21:13:30 +0000862 if (!Name) return false;
Douglas Gregor34074322009-01-14 22:20:51 +0000863
John McCall27b18f82009-11-17 02:14:36 +0000864 LookupNameKind NameKind = R.getLookupKind();
865
Douglas Gregor34074322009-01-14 22:20:51 +0000866 if (!getLangOptions().CPlusPlus) {
867 // Unqualified name lookup in C/Objective-C is purely lexical, so
868 // search in the declarations attached to the name.
869
John McCallea305ed2009-12-18 10:40:03 +0000870 if (NameKind == Sema::LookupRedeclarationWithLinkage) {
Douglas Gregoreddf4332009-02-24 20:03:32 +0000871 // Find the nearest non-transparent declaration scope.
872 while (!(S->getFlags() & Scope::DeclScope) ||
Mike Stump11289f42009-09-09 15:08:12 +0000873 (S->getEntity() &&
Douglas Gregoreddf4332009-02-24 20:03:32 +0000874 static_cast<DeclContext *>(S->getEntity())
875 ->isTransparentContext()))
876 S = S->getParent();
Douglas Gregored8f2882009-01-30 01:04:22 +0000877 }
878
John McCallea305ed2009-12-18 10:40:03 +0000879 unsigned IDNS = R.getIdentifierNamespace();
880
Douglas Gregor34074322009-01-14 22:20:51 +0000881 // Scan up the scope chain looking for a decl that matches this
882 // identifier that is in the appropriate namespace. This search
883 // should not take long, as shadowing of names is uncommon, and
884 // deep shadowing is extremely uncommon.
Douglas Gregoreddf4332009-02-24 20:03:32 +0000885 bool LeftStartingScope = false;
886
Douglas Gregored8f2882009-01-30 01:04:22 +0000887 for (IdentifierResolver::iterator I = IdResolver.begin(Name),
Mike Stump11289f42009-09-09 15:08:12 +0000888 IEnd = IdResolver.end();
Douglas Gregored8f2882009-01-30 01:04:22 +0000889 I != IEnd; ++I)
Douglas Gregor4e5cbdc2009-02-11 23:02:49 +0000890 if ((*I)->isInIdentifierNamespace(IDNS)) {
Douglas Gregoreddf4332009-02-24 20:03:32 +0000891 if (NameKind == LookupRedeclarationWithLinkage) {
892 // Determine whether this (or a previous) declaration is
893 // out-of-scope.
Chris Lattner83f095c2009-03-28 19:18:32 +0000894 if (!LeftStartingScope && !S->isDeclScope(DeclPtrTy::make(*I)))
Douglas Gregoreddf4332009-02-24 20:03:32 +0000895 LeftStartingScope = true;
896
897 // If we found something outside of our starting scope that
898 // does not have linkage, skip it.
899 if (LeftStartingScope && !((*I)->hasLinkage()))
900 continue;
901 }
902
John McCall9f3059a2009-10-09 21:13:30 +0000903 R.addDecl(*I);
904
Argyrios Kyrtzidisb4b64ca2009-06-30 02:34:44 +0000905 if ((*I)->getAttr<OverloadableAttr>()) {
Douglas Gregor4e5cbdc2009-02-11 23:02:49 +0000906 // If this declaration has the "overloadable" attribute, we
907 // might have a set of overloaded functions.
908
909 // Figure out what scope the identifier is in.
Chris Lattner83f095c2009-03-28 19:18:32 +0000910 while (!(S->getFlags() & Scope::DeclScope) ||
911 !S->isDeclScope(DeclPtrTy::make(*I)))
Douglas Gregor4e5cbdc2009-02-11 23:02:49 +0000912 S = S->getParent();
913
914 // Find the last declaration in this scope (with the same
915 // name, naturally).
916 IdentifierResolver::iterator LastI = I;
917 for (++LastI; LastI != IEnd; ++LastI) {
Chris Lattner83f095c2009-03-28 19:18:32 +0000918 if (!S->isDeclScope(DeclPtrTy::make(*LastI)))
Douglas Gregor4e5cbdc2009-02-11 23:02:49 +0000919 break;
John McCall9f3059a2009-10-09 21:13:30 +0000920 R.addDecl(*LastI);
Douglas Gregor4e5cbdc2009-02-11 23:02:49 +0000921 }
Douglas Gregor4e5cbdc2009-02-11 23:02:49 +0000922 }
923
John McCall9f3059a2009-10-09 21:13:30 +0000924 R.resolveKind();
925
926 return true;
Douglas Gregor4e5cbdc2009-02-11 23:02:49 +0000927 }
Douglas Gregor34074322009-01-14 22:20:51 +0000928 } else {
Douglas Gregor889ceb72009-02-03 19:21:40 +0000929 // Perform C++ unqualified name lookup.
John McCall27b18f82009-11-17 02:14:36 +0000930 if (CppLookupName(R, S))
John McCall9f3059a2009-10-09 21:13:30 +0000931 return true;
Douglas Gregor34074322009-01-14 22:20:51 +0000932 }
933
934 // If we didn't find a use of this identifier, and if the identifier
935 // corresponds to a compiler builtin, create the decl object for the builtin
936 // now, injecting it into translation unit scope, and return it.
Douglas Gregord3a59182010-02-12 05:48:04 +0000937 if (AllowBuiltinCreation)
938 return LookupBuiltin(*this, R);
Douglas Gregorb9063fc2009-02-13 23:20:09 +0000939
John McCall9f3059a2009-10-09 21:13:30 +0000940 return false;
Douglas Gregor34074322009-01-14 22:20:51 +0000941}
942
John McCall6538c932009-10-10 05:48:19 +0000943/// @brief Perform qualified name lookup in the namespaces nominated by
944/// using directives by the given context.
945///
946/// C++98 [namespace.qual]p2:
947/// Given X::m (where X is a user-declared namespace), or given ::m
948/// (where X is the global namespace), let S be the set of all
949/// declarations of m in X and in the transitive closure of all
950/// namespaces nominated by using-directives in X and its used
951/// namespaces, except that using-directives are ignored in any
952/// namespace, including X, directly containing one or more
953/// declarations of m. No namespace is searched more than once in
954/// the lookup of a name. If S is the empty set, the program is
955/// ill-formed. Otherwise, if S has exactly one member, or if the
956/// context of the reference is a using-declaration
957/// (namespace.udecl), S is the required set of declarations of
958/// m. Otherwise if the use of m is not one that allows a unique
959/// declaration to be chosen from S, the program is ill-formed.
960/// C++98 [namespace.qual]p5:
961/// During the lookup of a qualified namespace member name, if the
962/// lookup finds more than one declaration of the member, and if one
963/// declaration introduces a class name or enumeration name and the
964/// other declarations either introduce the same object, the same
965/// enumerator or a set of functions, the non-type name hides the
966/// class or enumeration name if and only if the declarations are
967/// from the same namespace; otherwise (the declarations are from
968/// different namespaces), the program is ill-formed.
Douglas Gregord3a59182010-02-12 05:48:04 +0000969static bool LookupQualifiedNameInUsingDirectives(Sema &S, LookupResult &R,
John McCall27b18f82009-11-17 02:14:36 +0000970 DeclContext *StartDC) {
John McCall6538c932009-10-10 05:48:19 +0000971 assert(StartDC->isFileContext() && "start context is not a file context");
972
973 DeclContext::udir_iterator I = StartDC->using_directives_begin();
974 DeclContext::udir_iterator E = StartDC->using_directives_end();
975
976 if (I == E) return false;
977
978 // We have at least added all these contexts to the queue.
979 llvm::DenseSet<DeclContext*> Visited;
980 Visited.insert(StartDC);
981
982 // We have not yet looked into these namespaces, much less added
983 // their "using-children" to the queue.
984 llvm::SmallVector<NamespaceDecl*, 8> Queue;
985
986 // We have already looked into the initial namespace; seed the queue
987 // with its using-children.
988 for (; I != E; ++I) {
John McCallb8be78b2009-11-10 09:25:37 +0000989 NamespaceDecl *ND = (*I)->getNominatedNamespace()->getOriginalNamespace();
John McCall6538c932009-10-10 05:48:19 +0000990 if (Visited.insert(ND).second)
991 Queue.push_back(ND);
992 }
993
994 // The easiest way to implement the restriction in [namespace.qual]p5
995 // is to check whether any of the individual results found a tag
996 // and, if so, to declare an ambiguity if the final result is not
997 // a tag.
998 bool FoundTag = false;
999 bool FoundNonTag = false;
1000
John McCall5cebab12009-11-18 07:57:50 +00001001 LookupResult LocalR(LookupResult::Temporary, R);
John McCall6538c932009-10-10 05:48:19 +00001002
1003 bool Found = false;
1004 while (!Queue.empty()) {
1005 NamespaceDecl *ND = Queue.back();
1006 Queue.pop_back();
1007
1008 // We go through some convolutions here to avoid copying results
1009 // between LookupResults.
1010 bool UseLocal = !R.empty();
John McCall5cebab12009-11-18 07:57:50 +00001011 LookupResult &DirectR = UseLocal ? LocalR : R;
Douglas Gregord3a59182010-02-12 05:48:04 +00001012 bool FoundDirect = LookupDirect(S, DirectR, ND);
John McCall6538c932009-10-10 05:48:19 +00001013
1014 if (FoundDirect) {
1015 // First do any local hiding.
1016 DirectR.resolveKind();
1017
1018 // If the local result is a tag, remember that.
1019 if (DirectR.isSingleTagDecl())
1020 FoundTag = true;
1021 else
1022 FoundNonTag = true;
1023
1024 // Append the local results to the total results if necessary.
1025 if (UseLocal) {
1026 R.addAllDecls(LocalR);
1027 LocalR.clear();
1028 }
1029 }
1030
1031 // If we find names in this namespace, ignore its using directives.
1032 if (FoundDirect) {
1033 Found = true;
1034 continue;
1035 }
1036
1037 for (llvm::tie(I,E) = ND->getUsingDirectives(); I != E; ++I) {
1038 NamespaceDecl *Nom = (*I)->getNominatedNamespace();
1039 if (Visited.insert(Nom).second)
1040 Queue.push_back(Nom);
1041 }
1042 }
1043
1044 if (Found) {
1045 if (FoundTag && FoundNonTag)
1046 R.setAmbiguousQualifiedTagHiding();
1047 else
1048 R.resolveKind();
1049 }
1050
1051 return Found;
1052}
1053
Douglas Gregord0d2ee02010-01-15 01:44:47 +00001054/// \brief Perform qualified name lookup into a given context.
Douglas Gregor34074322009-01-14 22:20:51 +00001055///
1056/// Qualified name lookup (C++ [basic.lookup.qual]) is used to find
1057/// names when the context of those names is explicit specified, e.g.,
Douglas Gregord0d2ee02010-01-15 01:44:47 +00001058/// "std::vector" or "x->member", or as part of unqualified name lookup.
Douglas Gregor34074322009-01-14 22:20:51 +00001059///
1060/// Different lookup criteria can find different names. For example, a
1061/// particular scope can have both a struct and a function of the same
1062/// name, and each can be found by certain lookup criteria. For more
1063/// information about lookup criteria, see the documentation for the
1064/// class LookupCriteria.
1065///
Douglas Gregord0d2ee02010-01-15 01:44:47 +00001066/// \param R captures both the lookup criteria and any lookup results found.
1067///
1068/// \param LookupCtx The context in which qualified name lookup will
Douglas Gregor34074322009-01-14 22:20:51 +00001069/// search. If the lookup criteria permits, name lookup may also search
1070/// in the parent contexts or (for C++ classes) base classes.
1071///
Douglas Gregord0d2ee02010-01-15 01:44:47 +00001072/// \param InUnqualifiedLookup true if this is qualified name lookup that
1073/// occurs as part of unqualified name lookup.
Douglas Gregor34074322009-01-14 22:20:51 +00001074///
Douglas Gregord0d2ee02010-01-15 01:44:47 +00001075/// \returns true if lookup succeeded, false if it failed.
1076bool Sema::LookupQualifiedName(LookupResult &R, DeclContext *LookupCtx,
1077 bool InUnqualifiedLookup) {
Douglas Gregor34074322009-01-14 22:20:51 +00001078 assert(LookupCtx && "Sema::LookupQualifiedName requires a lookup context");
Mike Stump11289f42009-09-09 15:08:12 +00001079
John McCall27b18f82009-11-17 02:14:36 +00001080 if (!R.getLookupName())
John McCall9f3059a2009-10-09 21:13:30 +00001081 return false;
Mike Stump11289f42009-09-09 15:08:12 +00001082
Douglas Gregorb7bfe792009-09-02 22:59:36 +00001083 // Make sure that the declaration context is complete.
1084 assert((!isa<TagDecl>(LookupCtx) ||
1085 LookupCtx->isDependentContext() ||
1086 cast<TagDecl>(LookupCtx)->isDefinition() ||
1087 Context.getTypeDeclType(cast<TagDecl>(LookupCtx))->getAs<TagType>()
1088 ->isBeingDefined()) &&
1089 "Declaration context must already be complete!");
Mike Stump11289f42009-09-09 15:08:12 +00001090
Douglas Gregor34074322009-01-14 22:20:51 +00001091 // Perform qualified name lookup into the LookupCtx.
Douglas Gregord3a59182010-02-12 05:48:04 +00001092 if (LookupDirect(*this, R, LookupCtx)) {
John McCall9f3059a2009-10-09 21:13:30 +00001093 R.resolveKind();
John McCall553c0792010-01-23 00:46:32 +00001094 if (isa<CXXRecordDecl>(LookupCtx))
1095 R.setNamingClass(cast<CXXRecordDecl>(LookupCtx));
John McCall9f3059a2009-10-09 21:13:30 +00001096 return true;
1097 }
Douglas Gregor34074322009-01-14 22:20:51 +00001098
John McCall6538c932009-10-10 05:48:19 +00001099 // Don't descend into implied contexts for redeclarations.
1100 // C++98 [namespace.qual]p6:
1101 // In a declaration for a namespace member in which the
1102 // declarator-id is a qualified-id, given that the qualified-id
1103 // for the namespace member has the form
1104 // nested-name-specifier unqualified-id
1105 // the unqualified-id shall name a member of the namespace
1106 // designated by the nested-name-specifier.
1107 // See also [class.mfct]p5 and [class.static.data]p2.
John McCall27b18f82009-11-17 02:14:36 +00001108 if (R.isForRedeclaration())
John McCall6538c932009-10-10 05:48:19 +00001109 return false;
1110
John McCall27b18f82009-11-17 02:14:36 +00001111 // If this is a namespace, look it up in the implied namespaces.
John McCall6538c932009-10-10 05:48:19 +00001112 if (LookupCtx->isFileContext())
Douglas Gregord3a59182010-02-12 05:48:04 +00001113 return LookupQualifiedNameInUsingDirectives(*this, R, LookupCtx);
John McCall6538c932009-10-10 05:48:19 +00001114
Douglas Gregorb7bfe792009-09-02 22:59:36 +00001115 // If this isn't a C++ class, we aren't allowed to look into base
Douglas Gregorcc2427c2009-09-11 22:57:37 +00001116 // classes, we're done.
Douglas Gregord0d2ee02010-01-15 01:44:47 +00001117 CXXRecordDecl *LookupRec = dyn_cast<CXXRecordDecl>(LookupCtx);
1118 if (!LookupRec)
John McCall9f3059a2009-10-09 21:13:30 +00001119 return false;
Douglas Gregor960b5bc2009-01-15 00:26:24 +00001120
Douglas Gregord0d2ee02010-01-15 01:44:47 +00001121 // If we're performing qualified name lookup into a dependent class,
1122 // then we are actually looking into a current instantiation. If we have any
1123 // dependent base classes, then we either have to delay lookup until
1124 // template instantiation time (at which point all bases will be available)
1125 // or we have to fail.
1126 if (!InUnqualifiedLookup && LookupRec->isDependentContext() &&
1127 LookupRec->hasAnyDependentBases()) {
1128 R.setNotFoundInCurrentInstantiation();
1129 return false;
1130 }
1131
Douglas Gregor960b5bc2009-01-15 00:26:24 +00001132 // Perform lookup into our base classes.
Douglas Gregor36d1b142009-10-06 17:59:45 +00001133 CXXBasePaths Paths;
1134 Paths.setOrigin(LookupRec);
Douglas Gregor960b5bc2009-01-15 00:26:24 +00001135
1136 // Look for this member in our base classes
Douglas Gregor36d1b142009-10-06 17:59:45 +00001137 CXXRecordDecl::BaseMatchesCallback *BaseCallback = 0;
John McCall27b18f82009-11-17 02:14:36 +00001138 switch (R.getLookupKind()) {
Douglas Gregor36d1b142009-10-06 17:59:45 +00001139 case LookupOrdinaryName:
1140 case LookupMemberName:
1141 case LookupRedeclarationWithLinkage:
1142 BaseCallback = &CXXRecordDecl::FindOrdinaryMember;
1143 break;
1144
1145 case LookupTagName:
1146 BaseCallback = &CXXRecordDecl::FindTagMember;
1147 break;
John McCall84d87672009-12-10 09:41:52 +00001148
1149 case LookupUsingDeclName:
1150 // This lookup is for redeclarations only.
Douglas Gregor36d1b142009-10-06 17:59:45 +00001151
1152 case LookupOperatorName:
1153 case LookupNamespaceName:
1154 case LookupObjCProtocolName:
1155 case LookupObjCImplementationName:
Douglas Gregor36d1b142009-10-06 17:59:45 +00001156 // These lookups will never find a member in a C++ class (or base class).
John McCall9f3059a2009-10-09 21:13:30 +00001157 return false;
Douglas Gregor36d1b142009-10-06 17:59:45 +00001158
1159 case LookupNestedNameSpecifierName:
1160 BaseCallback = &CXXRecordDecl::FindNestedNameSpecifierMember;
1161 break;
1162 }
1163
John McCall27b18f82009-11-17 02:14:36 +00001164 if (!LookupRec->lookupInBases(BaseCallback,
1165 R.getLookupName().getAsOpaquePtr(), Paths))
John McCall9f3059a2009-10-09 21:13:30 +00001166 return false;
Douglas Gregor960b5bc2009-01-15 00:26:24 +00001167
John McCall553c0792010-01-23 00:46:32 +00001168 R.setNamingClass(LookupRec);
1169
Douglas Gregor960b5bc2009-01-15 00:26:24 +00001170 // C++ [class.member.lookup]p2:
1171 // [...] If the resulting set of declarations are not all from
1172 // sub-objects of the same type, or the set has a nonstatic member
1173 // and includes members from distinct sub-objects, there is an
1174 // ambiguity and the program is ill-formed. Otherwise that set is
1175 // the result of the lookup.
1176 // FIXME: support using declarations!
1177 QualType SubobjectType;
Daniel Dunbar435bbe02009-01-15 18:32:35 +00001178 int SubobjectNumber = 0;
John McCall401982f2010-01-20 21:53:11 +00001179 AccessSpecifier SubobjectAccess = AS_private;
Douglas Gregor36d1b142009-10-06 17:59:45 +00001180 for (CXXBasePaths::paths_iterator Path = Paths.begin(), PathEnd = Paths.end();
Douglas Gregor960b5bc2009-01-15 00:26:24 +00001181 Path != PathEnd; ++Path) {
Douglas Gregor36d1b142009-10-06 17:59:45 +00001182 const CXXBasePathElement &PathElement = Path->back();
Douglas Gregor960b5bc2009-01-15 00:26:24 +00001183
John McCall401982f2010-01-20 21:53:11 +00001184 // Pick the best (i.e. most permissive i.e. numerically lowest) access
1185 // across all paths.
1186 SubobjectAccess = std::min(SubobjectAccess, Path->Access);
1187
Douglas Gregor960b5bc2009-01-15 00:26:24 +00001188 // Determine whether we're looking at a distinct sub-object or not.
1189 if (SubobjectType.isNull()) {
John McCall9f3059a2009-10-09 21:13:30 +00001190 // This is the first subobject we've looked at. Record its type.
Douglas Gregor960b5bc2009-01-15 00:26:24 +00001191 SubobjectType = Context.getCanonicalType(PathElement.Base->getType());
1192 SubobjectNumber = PathElement.SubobjectNumber;
Mike Stump11289f42009-09-09 15:08:12 +00001193 } else if (SubobjectType
Douglas Gregor960b5bc2009-01-15 00:26:24 +00001194 != Context.getCanonicalType(PathElement.Base->getType())) {
1195 // We found members of the given name in two subobjects of
1196 // different types. This lookup is ambiguous.
John McCall9f3059a2009-10-09 21:13:30 +00001197 R.setAmbiguousBaseSubobjectTypes(Paths);
1198 return true;
Douglas Gregor960b5bc2009-01-15 00:26:24 +00001199 } else if (SubobjectNumber != PathElement.SubobjectNumber) {
1200 // We have a different subobject of the same type.
1201
1202 // C++ [class.member.lookup]p5:
1203 // A static member, a nested type or an enumerator defined in
1204 // a base class T can unambiguously be found even if an object
Mike Stump11289f42009-09-09 15:08:12 +00001205 // has more than one base class subobject of type T.
Douglas Gregor6e6ad602009-01-20 01:17:11 +00001206 Decl *FirstDecl = *Path->Decls.first;
Douglas Gregor960b5bc2009-01-15 00:26:24 +00001207 if (isa<VarDecl>(FirstDecl) ||
1208 isa<TypeDecl>(FirstDecl) ||
1209 isa<EnumConstantDecl>(FirstDecl))
1210 continue;
1211
1212 if (isa<CXXMethodDecl>(FirstDecl)) {
1213 // Determine whether all of the methods are static.
1214 bool AllMethodsAreStatic = true;
1215 for (DeclContext::lookup_iterator Func = Path->Decls.first;
1216 Func != Path->Decls.second; ++Func) {
1217 if (!isa<CXXMethodDecl>(*Func)) {
1218 assert(isa<TagDecl>(*Func) && "Non-function must be a tag decl");
1219 break;
1220 }
1221
1222 if (!cast<CXXMethodDecl>(*Func)->isStatic()) {
1223 AllMethodsAreStatic = false;
1224 break;
1225 }
1226 }
1227
1228 if (AllMethodsAreStatic)
1229 continue;
1230 }
1231
1232 // We have found a nonstatic member name in multiple, distinct
1233 // subobjects. Name lookup is ambiguous.
John McCall9f3059a2009-10-09 21:13:30 +00001234 R.setAmbiguousBaseSubobjects(Paths);
1235 return true;
Douglas Gregor960b5bc2009-01-15 00:26:24 +00001236 }
1237 }
1238
1239 // Lookup in a base class succeeded; return these results.
1240
John McCall9f3059a2009-10-09 21:13:30 +00001241 DeclContext::lookup_iterator I, E;
John McCall553c0792010-01-23 00:46:32 +00001242 for (llvm::tie(I,E) = Paths.front().Decls; I != E; ++I) {
1243 NamedDecl *D = *I;
1244 AccessSpecifier AS = CXXRecordDecl::MergeAccess(SubobjectAccess,
1245 D->getAccess());
1246 R.addDecl(D, AS);
1247 }
John McCall9f3059a2009-10-09 21:13:30 +00001248 R.resolveKind();
1249 return true;
Douglas Gregor34074322009-01-14 22:20:51 +00001250}
1251
1252/// @brief Performs name lookup for a name that was parsed in the
1253/// source code, and may contain a C++ scope specifier.
1254///
1255/// This routine is a convenience routine meant to be called from
1256/// contexts that receive a name and an optional C++ scope specifier
1257/// (e.g., "N::M::x"). It will then perform either qualified or
1258/// unqualified name lookup (with LookupQualifiedName or LookupName,
1259/// respectively) on the given name and return those results.
1260///
1261/// @param S The scope from which unqualified name lookup will
1262/// begin.
Mike Stump11289f42009-09-09 15:08:12 +00001263///
Douglas Gregore861bac2009-08-25 22:51:20 +00001264/// @param SS An optional C++ scope-specifier, e.g., "::N::M".
Douglas Gregor34074322009-01-14 22:20:51 +00001265///
1266/// @param Name The name of the entity that name lookup will
1267/// search for.
1268///
Douglas Gregorb9063fc2009-02-13 23:20:09 +00001269/// @param Loc If provided, the source location where we're performing
Mike Stump11289f42009-09-09 15:08:12 +00001270/// name lookup. At present, this is only used to produce diagnostics when
Douglas Gregorb9063fc2009-02-13 23:20:09 +00001271/// C library functions (like "malloc") are implicitly declared.
1272///
Douglas Gregore861bac2009-08-25 22:51:20 +00001273/// @param EnteringContext Indicates whether we are going to enter the
1274/// context of the scope-specifier SS (if present).
1275///
John McCall9f3059a2009-10-09 21:13:30 +00001276/// @returns True if any decls were found (but possibly ambiguous)
1277bool Sema::LookupParsedName(LookupResult &R, Scope *S, const CXXScopeSpec *SS,
John McCall27b18f82009-11-17 02:14:36 +00001278 bool AllowBuiltinCreation, bool EnteringContext) {
Douglas Gregore861bac2009-08-25 22:51:20 +00001279 if (SS && SS->isInvalid()) {
1280 // When the scope specifier is invalid, don't even look for
Douglas Gregorc9f9b862009-05-11 19:58:34 +00001281 // anything.
John McCall9f3059a2009-10-09 21:13:30 +00001282 return false;
Douglas Gregore861bac2009-08-25 22:51:20 +00001283 }
Mike Stump11289f42009-09-09 15:08:12 +00001284
Douglas Gregore861bac2009-08-25 22:51:20 +00001285 if (SS && SS->isSet()) {
1286 if (DeclContext *DC = computeDeclContext(*SS, EnteringContext)) {
Mike Stump11289f42009-09-09 15:08:12 +00001287 // We have resolved the scope specifier to a particular declaration
Douglas Gregore861bac2009-08-25 22:51:20 +00001288 // contex, and will perform name lookup in that context.
Douglas Gregorb7bfe792009-09-02 22:59:36 +00001289 if (!DC->isDependentContext() && RequireCompleteDeclContext(*SS))
John McCall9f3059a2009-10-09 21:13:30 +00001290 return false;
Mike Stump11289f42009-09-09 15:08:12 +00001291
John McCall27b18f82009-11-17 02:14:36 +00001292 R.setContextRange(SS->getRange());
1293
1294 return LookupQualifiedName(R, DC);
Douglas Gregor52537682009-03-19 00:18:19 +00001295 }
Douglas Gregorc9f9b862009-05-11 19:58:34 +00001296
Douglas Gregore861bac2009-08-25 22:51:20 +00001297 // We could not resolve the scope specified to a specific declaration
Mike Stump11289f42009-09-09 15:08:12 +00001298 // context, which means that SS refers to an unknown specialization.
Douglas Gregore861bac2009-08-25 22:51:20 +00001299 // Name lookup can't find anything in this case.
John McCall9f3059a2009-10-09 21:13:30 +00001300 return false;
Douglas Gregored8f2882009-01-30 01:04:22 +00001301 }
1302
Mike Stump11289f42009-09-09 15:08:12 +00001303 // Perform unqualified name lookup starting in the given scope.
John McCall27b18f82009-11-17 02:14:36 +00001304 return LookupName(R, S, AllowBuiltinCreation);
Douglas Gregor34074322009-01-14 22:20:51 +00001305}
1306
Douglas Gregor889ceb72009-02-03 19:21:40 +00001307
Douglas Gregor960b5bc2009-01-15 00:26:24 +00001308/// @brief Produce a diagnostic describing the ambiguity that resulted
1309/// from name lookup.
1310///
1311/// @param Result The ambiguous name lookup result.
Mike Stump11289f42009-09-09 15:08:12 +00001312///
Douglas Gregor960b5bc2009-01-15 00:26:24 +00001313/// @param Name The name of the entity that name lookup was
1314/// searching for.
1315///
1316/// @param NameLoc The location of the name within the source code.
1317///
1318/// @param LookupRange A source range that provides more
1319/// source-location information concerning the lookup itself. For
1320/// example, this range might highlight a nested-name-specifier that
1321/// precedes the name.
1322///
1323/// @returns true
John McCall27b18f82009-11-17 02:14:36 +00001324bool Sema::DiagnoseAmbiguousLookup(LookupResult &Result) {
Douglas Gregor960b5bc2009-01-15 00:26:24 +00001325 assert(Result.isAmbiguous() && "Lookup result must be ambiguous");
1326
John McCall27b18f82009-11-17 02:14:36 +00001327 DeclarationName Name = Result.getLookupName();
1328 SourceLocation NameLoc = Result.getNameLoc();
1329 SourceRange LookupRange = Result.getContextRange();
1330
John McCall6538c932009-10-10 05:48:19 +00001331 switch (Result.getAmbiguityKind()) {
1332 case LookupResult::AmbiguousBaseSubobjects: {
1333 CXXBasePaths *Paths = Result.getBasePaths();
1334 QualType SubobjectType = Paths->front().back().Base->getType();
1335 Diag(NameLoc, diag::err_ambiguous_member_multiple_subobjects)
1336 << Name << SubobjectType << getAmbiguousPathsDisplayString(*Paths)
1337 << LookupRange;
1338
1339 DeclContext::lookup_iterator Found = Paths->front().Decls.first;
1340 while (isa<CXXMethodDecl>(*Found) &&
1341 cast<CXXMethodDecl>(*Found)->isStatic())
1342 ++Found;
1343
1344 Diag((*Found)->getLocation(), diag::note_ambiguous_member_found);
1345
1346 return true;
1347 }
Douglas Gregor1c846b02009-01-16 00:38:09 +00001348
John McCall6538c932009-10-10 05:48:19 +00001349 case LookupResult::AmbiguousBaseSubobjectTypes: {
Douglas Gregor889ceb72009-02-03 19:21:40 +00001350 Diag(NameLoc, diag::err_ambiguous_member_multiple_subobject_types)
1351 << Name << LookupRange;
John McCall6538c932009-10-10 05:48:19 +00001352
1353 CXXBasePaths *Paths = Result.getBasePaths();
Douglas Gregor889ceb72009-02-03 19:21:40 +00001354 std::set<Decl *> DeclsPrinted;
John McCall6538c932009-10-10 05:48:19 +00001355 for (CXXBasePaths::paths_iterator Path = Paths->begin(),
1356 PathEnd = Paths->end();
Douglas Gregor889ceb72009-02-03 19:21:40 +00001357 Path != PathEnd; ++Path) {
1358 Decl *D = *Path->Decls.first;
1359 if (DeclsPrinted.insert(D).second)
1360 Diag(D->getLocation(), diag::note_ambiguous_member_found);
1361 }
1362
Douglas Gregor1c846b02009-01-16 00:38:09 +00001363 return true;
Douglas Gregor1c846b02009-01-16 00:38:09 +00001364 }
1365
John McCall6538c932009-10-10 05:48:19 +00001366 case LookupResult::AmbiguousTagHiding: {
1367 Diag(NameLoc, diag::err_ambiguous_tag_hiding) << Name << LookupRange;
Douglas Gregorf23311d2009-01-17 01:13:24 +00001368
John McCall6538c932009-10-10 05:48:19 +00001369 llvm::SmallPtrSet<NamedDecl*,8> TagDecls;
1370
1371 LookupResult::iterator DI, DE = Result.end();
1372 for (DI = Result.begin(); DI != DE; ++DI)
1373 if (TagDecl *TD = dyn_cast<TagDecl>(*DI)) {
1374 TagDecls.insert(TD);
1375 Diag(TD->getLocation(), diag::note_hidden_tag);
1376 }
1377
1378 for (DI = Result.begin(); DI != DE; ++DI)
1379 if (!isa<TagDecl>(*DI))
1380 Diag((*DI)->getLocation(), diag::note_hiding_object);
1381
1382 // For recovery purposes, go ahead and implement the hiding.
John McCallad371252010-01-20 00:46:10 +00001383 LookupResult::Filter F = Result.makeFilter();
1384 while (F.hasNext()) {
1385 if (TagDecls.count(F.next()))
1386 F.erase();
1387 }
1388 F.done();
John McCall6538c932009-10-10 05:48:19 +00001389
1390 return true;
1391 }
1392
1393 case LookupResult::AmbiguousReference: {
1394 Diag(NameLoc, diag::err_ambiguous_reference) << Name << LookupRange;
John McCall9f3059a2009-10-09 21:13:30 +00001395
John McCall6538c932009-10-10 05:48:19 +00001396 LookupResult::iterator DI = Result.begin(), DE = Result.end();
1397 for (; DI != DE; ++DI)
1398 Diag((*DI)->getLocation(), diag::note_ambiguous_candidate) << *DI;
John McCall9f3059a2009-10-09 21:13:30 +00001399
John McCall6538c932009-10-10 05:48:19 +00001400 return true;
1401 }
1402 }
1403
Jeffrey Yasskin1615d452009-12-12 05:05:38 +00001404 llvm_unreachable("unknown ambiguity kind");
Douglas Gregor960b5bc2009-01-15 00:26:24 +00001405 return true;
1406}
Douglas Gregore254f902009-02-04 00:32:51 +00001407
Mike Stump11289f42009-09-09 15:08:12 +00001408static void
1409addAssociatedClassesAndNamespaces(QualType T,
Douglas Gregor197e5f72009-07-08 07:51:57 +00001410 ASTContext &Context,
1411 Sema::AssociatedNamespaceSet &AssociatedNamespaces,
John McCallc7e8e792009-08-07 22:18:02 +00001412 Sema::AssociatedClassSet &AssociatedClasses);
1413
1414static void CollectNamespace(Sema::AssociatedNamespaceSet &Namespaces,
1415 DeclContext *Ctx) {
1416 if (Ctx->isFileContext())
1417 Namespaces.insert(Ctx);
1418}
Douglas Gregor197e5f72009-07-08 07:51:57 +00001419
Mike Stump11289f42009-09-09 15:08:12 +00001420// \brief Add the associated classes and namespaces for argument-dependent
Douglas Gregor197e5f72009-07-08 07:51:57 +00001421// lookup that involves a template argument (C++ [basic.lookup.koenig]p2).
Mike Stump11289f42009-09-09 15:08:12 +00001422static void
1423addAssociatedClassesAndNamespaces(const TemplateArgument &Arg,
Douglas Gregor197e5f72009-07-08 07:51:57 +00001424 ASTContext &Context,
1425 Sema::AssociatedNamespaceSet &AssociatedNamespaces,
John McCallc7e8e792009-08-07 22:18:02 +00001426 Sema::AssociatedClassSet &AssociatedClasses) {
Douglas Gregor197e5f72009-07-08 07:51:57 +00001427 // C++ [basic.lookup.koenig]p2, last bullet:
Mike Stump11289f42009-09-09 15:08:12 +00001428 // -- [...] ;
Douglas Gregor197e5f72009-07-08 07:51:57 +00001429 switch (Arg.getKind()) {
1430 case TemplateArgument::Null:
1431 break;
Mike Stump11289f42009-09-09 15:08:12 +00001432
Douglas Gregor197e5f72009-07-08 07:51:57 +00001433 case TemplateArgument::Type:
1434 // [...] the namespaces and classes associated with the types of the
1435 // template arguments provided for template type parameters (excluding
1436 // template template parameters)
1437 addAssociatedClassesAndNamespaces(Arg.getAsType(), Context,
1438 AssociatedNamespaces,
John McCallc7e8e792009-08-07 22:18:02 +00001439 AssociatedClasses);
Douglas Gregor197e5f72009-07-08 07:51:57 +00001440 break;
Mike Stump11289f42009-09-09 15:08:12 +00001441
Douglas Gregor9167f8b2009-11-11 01:00:40 +00001442 case TemplateArgument::Template: {
Mike Stump11289f42009-09-09 15:08:12 +00001443 // [...] the namespaces in which any template template arguments are
1444 // defined; and the classes in which any member templates used as
Douglas Gregor197e5f72009-07-08 07:51:57 +00001445 // template template arguments are defined.
Douglas Gregor9167f8b2009-11-11 01:00:40 +00001446 TemplateName Template = Arg.getAsTemplate();
Mike Stump11289f42009-09-09 15:08:12 +00001447 if (ClassTemplateDecl *ClassTemplate
Douglas Gregor9167f8b2009-11-11 01:00:40 +00001448 = dyn_cast<ClassTemplateDecl>(Template.getAsTemplateDecl())) {
Douglas Gregor197e5f72009-07-08 07:51:57 +00001449 DeclContext *Ctx = ClassTemplate->getDeclContext();
1450 if (CXXRecordDecl *EnclosingClass = dyn_cast<CXXRecordDecl>(Ctx))
1451 AssociatedClasses.insert(EnclosingClass);
1452 // Add the associated namespace for this class.
1453 while (Ctx->isRecord())
1454 Ctx = Ctx->getParent();
John McCallc7e8e792009-08-07 22:18:02 +00001455 CollectNamespace(AssociatedNamespaces, Ctx);
Douglas Gregor197e5f72009-07-08 07:51:57 +00001456 }
1457 break;
Douglas Gregor9167f8b2009-11-11 01:00:40 +00001458 }
1459
1460 case TemplateArgument::Declaration:
Douglas Gregor197e5f72009-07-08 07:51:57 +00001461 case TemplateArgument::Integral:
1462 case TemplateArgument::Expression:
Mike Stump11289f42009-09-09 15:08:12 +00001463 // [Note: non-type template arguments do not contribute to the set of
Douglas Gregor197e5f72009-07-08 07:51:57 +00001464 // associated namespaces. ]
1465 break;
Mike Stump11289f42009-09-09 15:08:12 +00001466
Douglas Gregor197e5f72009-07-08 07:51:57 +00001467 case TemplateArgument::Pack:
1468 for (TemplateArgument::pack_iterator P = Arg.pack_begin(),
1469 PEnd = Arg.pack_end();
1470 P != PEnd; ++P)
1471 addAssociatedClassesAndNamespaces(*P, Context,
1472 AssociatedNamespaces,
John McCallc7e8e792009-08-07 22:18:02 +00001473 AssociatedClasses);
Douglas Gregor197e5f72009-07-08 07:51:57 +00001474 break;
1475 }
1476}
1477
Douglas Gregore254f902009-02-04 00:32:51 +00001478// \brief Add the associated classes and namespaces for
Mike Stump11289f42009-09-09 15:08:12 +00001479// argument-dependent lookup with an argument of class type
1480// (C++ [basic.lookup.koenig]p2).
1481static void
1482addAssociatedClassesAndNamespaces(CXXRecordDecl *Class,
Douglas Gregore254f902009-02-04 00:32:51 +00001483 ASTContext &Context,
1484 Sema::AssociatedNamespaceSet &AssociatedNamespaces,
John McCallc7e8e792009-08-07 22:18:02 +00001485 Sema::AssociatedClassSet &AssociatedClasses) {
Douglas Gregore254f902009-02-04 00:32:51 +00001486 // C++ [basic.lookup.koenig]p2:
1487 // [...]
1488 // -- If T is a class type (including unions), its associated
1489 // classes are: the class itself; the class of which it is a
1490 // member, if any; and its direct and indirect base
1491 // classes. Its associated namespaces are the namespaces in
Mike Stump11289f42009-09-09 15:08:12 +00001492 // which its associated classes are defined.
Douglas Gregore254f902009-02-04 00:32:51 +00001493
1494 // Add the class of which it is a member, if any.
1495 DeclContext *Ctx = Class->getDeclContext();
1496 if (CXXRecordDecl *EnclosingClass = dyn_cast<CXXRecordDecl>(Ctx))
1497 AssociatedClasses.insert(EnclosingClass);
Douglas Gregore254f902009-02-04 00:32:51 +00001498 // Add the associated namespace for this class.
1499 while (Ctx->isRecord())
1500 Ctx = Ctx->getParent();
John McCallc7e8e792009-08-07 22:18:02 +00001501 CollectNamespace(AssociatedNamespaces, Ctx);
Mike Stump11289f42009-09-09 15:08:12 +00001502
Douglas Gregore254f902009-02-04 00:32:51 +00001503 // Add the class itself. If we've already seen this class, we don't
1504 // need to visit base classes.
1505 if (!AssociatedClasses.insert(Class))
1506 return;
1507
Mike Stump11289f42009-09-09 15:08:12 +00001508 // -- If T is a template-id, its associated namespaces and classes are
1509 // the namespace in which the template is defined; for member
Douglas Gregor197e5f72009-07-08 07:51:57 +00001510 // templates, the member template’s class; the namespaces and classes
Mike Stump11289f42009-09-09 15:08:12 +00001511 // associated with the types of the template arguments provided for
Douglas Gregor197e5f72009-07-08 07:51:57 +00001512 // template type parameters (excluding template template parameters); the
Mike Stump11289f42009-09-09 15:08:12 +00001513 // namespaces in which any template template arguments are defined; and
1514 // the classes in which any member templates used as template template
1515 // arguments are defined. [Note: non-type template arguments do not
Douglas Gregor197e5f72009-07-08 07:51:57 +00001516 // contribute to the set of associated namespaces. ]
Mike Stump11289f42009-09-09 15:08:12 +00001517 if (ClassTemplateSpecializationDecl *Spec
Douglas Gregor197e5f72009-07-08 07:51:57 +00001518 = dyn_cast<ClassTemplateSpecializationDecl>(Class)) {
1519 DeclContext *Ctx = Spec->getSpecializedTemplate()->getDeclContext();
1520 if (CXXRecordDecl *EnclosingClass = dyn_cast<CXXRecordDecl>(Ctx))
1521 AssociatedClasses.insert(EnclosingClass);
1522 // Add the associated namespace for this class.
1523 while (Ctx->isRecord())
1524 Ctx = Ctx->getParent();
John McCallc7e8e792009-08-07 22:18:02 +00001525 CollectNamespace(AssociatedNamespaces, Ctx);
Mike Stump11289f42009-09-09 15:08:12 +00001526
Douglas Gregor197e5f72009-07-08 07:51:57 +00001527 const TemplateArgumentList &TemplateArgs = Spec->getTemplateArgs();
1528 for (unsigned I = 0, N = TemplateArgs.size(); I != N; ++I)
1529 addAssociatedClassesAndNamespaces(TemplateArgs[I], Context,
1530 AssociatedNamespaces,
John McCallc7e8e792009-08-07 22:18:02 +00001531 AssociatedClasses);
Douglas Gregor197e5f72009-07-08 07:51:57 +00001532 }
Mike Stump11289f42009-09-09 15:08:12 +00001533
John McCall67da35c2010-02-04 22:26:26 +00001534 // Only recurse into base classes for complete types.
1535 if (!Class->hasDefinition()) {
1536 // FIXME: we might need to instantiate templates here
1537 return;
1538 }
1539
Douglas Gregore254f902009-02-04 00:32:51 +00001540 // Add direct and indirect base classes along with their associated
1541 // namespaces.
1542 llvm::SmallVector<CXXRecordDecl *, 32> Bases;
1543 Bases.push_back(Class);
1544 while (!Bases.empty()) {
1545 // Pop this class off the stack.
1546 Class = Bases.back();
1547 Bases.pop_back();
1548
1549 // Visit the base classes.
1550 for (CXXRecordDecl::base_class_iterator Base = Class->bases_begin(),
1551 BaseEnd = Class->bases_end();
1552 Base != BaseEnd; ++Base) {
Ted Kremenekc23c7e62009-07-29 21:53:49 +00001553 const RecordType *BaseType = Base->getType()->getAs<RecordType>();
Sebastian Redlc45c03c2009-10-25 09:35:33 +00001554 // In dependent contexts, we do ADL twice, and the first time around,
1555 // the base type might be a dependent TemplateSpecializationType, or a
1556 // TemplateTypeParmType. If that happens, simply ignore it.
1557 // FIXME: If we want to support export, we probably need to add the
1558 // namespace of the template in a TemplateSpecializationType, or even
1559 // the classes and namespaces of known non-dependent arguments.
1560 if (!BaseType)
1561 continue;
Douglas Gregore254f902009-02-04 00:32:51 +00001562 CXXRecordDecl *BaseDecl = cast<CXXRecordDecl>(BaseType->getDecl());
1563 if (AssociatedClasses.insert(BaseDecl)) {
1564 // Find the associated namespace for this base class.
1565 DeclContext *BaseCtx = BaseDecl->getDeclContext();
1566 while (BaseCtx->isRecord())
1567 BaseCtx = BaseCtx->getParent();
John McCallc7e8e792009-08-07 22:18:02 +00001568 CollectNamespace(AssociatedNamespaces, BaseCtx);
Douglas Gregore254f902009-02-04 00:32:51 +00001569
1570 // Make sure we visit the bases of this base class.
1571 if (BaseDecl->bases_begin() != BaseDecl->bases_end())
1572 Bases.push_back(BaseDecl);
1573 }
1574 }
1575 }
1576}
1577
1578// \brief Add the associated classes and namespaces for
1579// argument-dependent lookup with an argument of type T
Mike Stump11289f42009-09-09 15:08:12 +00001580// (C++ [basic.lookup.koenig]p2).
1581static void
1582addAssociatedClassesAndNamespaces(QualType T,
Douglas Gregore254f902009-02-04 00:32:51 +00001583 ASTContext &Context,
1584 Sema::AssociatedNamespaceSet &AssociatedNamespaces,
John McCallc7e8e792009-08-07 22:18:02 +00001585 Sema::AssociatedClassSet &AssociatedClasses) {
Douglas Gregore254f902009-02-04 00:32:51 +00001586 // C++ [basic.lookup.koenig]p2:
1587 //
1588 // For each argument type T in the function call, there is a set
1589 // of zero or more associated namespaces and a set of zero or more
1590 // associated classes to be considered. The sets of namespaces and
1591 // classes is determined entirely by the types of the function
1592 // arguments (and the namespace of any template template
1593 // argument). Typedef names and using-declarations used to specify
1594 // the types do not contribute to this set. The sets of namespaces
1595 // and classes are determined in the following way:
1596 T = Context.getCanonicalType(T).getUnqualifiedType();
1597
1598 // -- If T is a pointer to U or an array of U, its associated
Mike Stump11289f42009-09-09 15:08:12 +00001599 // namespaces and classes are those associated with U.
Douglas Gregore254f902009-02-04 00:32:51 +00001600 //
1601 // We handle this by unwrapping pointer and array types immediately,
1602 // to avoid unnecessary recursion.
1603 while (true) {
Ted Kremenekc23c7e62009-07-29 21:53:49 +00001604 if (const PointerType *Ptr = T->getAs<PointerType>())
Douglas Gregore254f902009-02-04 00:32:51 +00001605 T = Ptr->getPointeeType();
1606 else if (const ArrayType *Ptr = Context.getAsArrayType(T))
1607 T = Ptr->getElementType();
Mike Stump11289f42009-09-09 15:08:12 +00001608 else
Douglas Gregore254f902009-02-04 00:32:51 +00001609 break;
1610 }
1611
1612 // -- If T is a fundamental type, its associated sets of
1613 // namespaces and classes are both empty.
John McCall9dd450b2009-09-21 23:43:11 +00001614 if (T->getAs<BuiltinType>())
Douglas Gregore254f902009-02-04 00:32:51 +00001615 return;
1616
1617 // -- If T is a class type (including unions), its associated
1618 // classes are: the class itself; the class of which it is a
1619 // member, if any; and its direct and indirect base
1620 // classes. Its associated namespaces are the namespaces in
Mike Stump11289f42009-09-09 15:08:12 +00001621 // which its associated classes are defined.
Ted Kremenekc23c7e62009-07-29 21:53:49 +00001622 if (const RecordType *ClassType = T->getAs<RecordType>())
Mike Stump11289f42009-09-09 15:08:12 +00001623 if (CXXRecordDecl *ClassDecl
Douglas Gregor89ee6822009-02-28 01:32:25 +00001624 = dyn_cast<CXXRecordDecl>(ClassType->getDecl())) {
Mike Stump11289f42009-09-09 15:08:12 +00001625 addAssociatedClassesAndNamespaces(ClassDecl, Context,
1626 AssociatedNamespaces,
John McCallc7e8e792009-08-07 22:18:02 +00001627 AssociatedClasses);
Douglas Gregor89ee6822009-02-28 01:32:25 +00001628 return;
1629 }
Douglas Gregore254f902009-02-04 00:32:51 +00001630
1631 // -- If T is an enumeration type, its associated namespace is
1632 // the namespace in which it is defined. If it is class
1633 // member, its associated class is the member’s class; else
Mike Stump11289f42009-09-09 15:08:12 +00001634 // it has no associated class.
John McCall9dd450b2009-09-21 23:43:11 +00001635 if (const EnumType *EnumT = T->getAs<EnumType>()) {
Douglas Gregore254f902009-02-04 00:32:51 +00001636 EnumDecl *Enum = EnumT->getDecl();
1637
1638 DeclContext *Ctx = Enum->getDeclContext();
1639 if (CXXRecordDecl *EnclosingClass = dyn_cast<CXXRecordDecl>(Ctx))
1640 AssociatedClasses.insert(EnclosingClass);
1641
1642 // Add the associated namespace for this class.
1643 while (Ctx->isRecord())
1644 Ctx = Ctx->getParent();
John McCallc7e8e792009-08-07 22:18:02 +00001645 CollectNamespace(AssociatedNamespaces, Ctx);
Douglas Gregore254f902009-02-04 00:32:51 +00001646
1647 return;
1648 }
1649
1650 // -- If T is a function type, its associated namespaces and
1651 // classes are those associated with the function parameter
1652 // types and those associated with the return type.
John McCall9dd450b2009-09-21 23:43:11 +00001653 if (const FunctionType *FnType = T->getAs<FunctionType>()) {
Douglas Gregore254f902009-02-04 00:32:51 +00001654 // Return type
John McCall9dd450b2009-09-21 23:43:11 +00001655 addAssociatedClassesAndNamespaces(FnType->getResultType(),
Douglas Gregore254f902009-02-04 00:32:51 +00001656 Context,
John McCallc7e8e792009-08-07 22:18:02 +00001657 AssociatedNamespaces, AssociatedClasses);
Douglas Gregore254f902009-02-04 00:32:51 +00001658
John McCall9dd450b2009-09-21 23:43:11 +00001659 const FunctionProtoType *Proto = dyn_cast<FunctionProtoType>(FnType);
Douglas Gregore254f902009-02-04 00:32:51 +00001660 if (!Proto)
1661 return;
1662
1663 // Argument types
Douglas Gregordeaad8c2009-02-26 23:50:07 +00001664 for (FunctionProtoType::arg_type_iterator Arg = Proto->arg_type_begin(),
Mike Stump11289f42009-09-09 15:08:12 +00001665 ArgEnd = Proto->arg_type_end();
Douglas Gregore254f902009-02-04 00:32:51 +00001666 Arg != ArgEnd; ++Arg)
1667 addAssociatedClassesAndNamespaces(*Arg, Context,
John McCallc7e8e792009-08-07 22:18:02 +00001668 AssociatedNamespaces, AssociatedClasses);
Mike Stump11289f42009-09-09 15:08:12 +00001669
Douglas Gregore254f902009-02-04 00:32:51 +00001670 return;
1671 }
1672
1673 // -- If T is a pointer to a member function of a class X, its
1674 // associated namespaces and classes are those associated
1675 // with the function parameter types and return type,
Mike Stump11289f42009-09-09 15:08:12 +00001676 // together with those associated with X.
Douglas Gregore254f902009-02-04 00:32:51 +00001677 //
1678 // -- If T is a pointer to a data member of class X, its
1679 // associated namespaces and classes are those associated
1680 // with the member type together with those associated with
Mike Stump11289f42009-09-09 15:08:12 +00001681 // X.
Ted Kremenekc23c7e62009-07-29 21:53:49 +00001682 if (const MemberPointerType *MemberPtr = T->getAs<MemberPointerType>()) {
Douglas Gregore254f902009-02-04 00:32:51 +00001683 // Handle the type that the pointer to member points to.
1684 addAssociatedClassesAndNamespaces(MemberPtr->getPointeeType(),
1685 Context,
John McCallc7e8e792009-08-07 22:18:02 +00001686 AssociatedNamespaces,
1687 AssociatedClasses);
Douglas Gregore254f902009-02-04 00:32:51 +00001688
1689 // Handle the class type into which this points.
Ted Kremenekc23c7e62009-07-29 21:53:49 +00001690 if (const RecordType *Class = MemberPtr->getClass()->getAs<RecordType>())
Douglas Gregore254f902009-02-04 00:32:51 +00001691 addAssociatedClassesAndNamespaces(cast<CXXRecordDecl>(Class->getDecl()),
1692 Context,
John McCallc7e8e792009-08-07 22:18:02 +00001693 AssociatedNamespaces,
1694 AssociatedClasses);
Douglas Gregore254f902009-02-04 00:32:51 +00001695
1696 return;
1697 }
1698
1699 // FIXME: What about block pointers?
1700 // FIXME: What about Objective-C message sends?
1701}
1702
1703/// \brief Find the associated classes and namespaces for
1704/// argument-dependent lookup for a call with the given set of
1705/// arguments.
1706///
1707/// This routine computes the sets of associated classes and associated
Mike Stump11289f42009-09-09 15:08:12 +00001708/// namespaces searched by argument-dependent lookup
Douglas Gregore254f902009-02-04 00:32:51 +00001709/// (C++ [basic.lookup.argdep]) for a given set of arguments.
Mike Stump11289f42009-09-09 15:08:12 +00001710void
Douglas Gregore254f902009-02-04 00:32:51 +00001711Sema::FindAssociatedClassesAndNamespaces(Expr **Args, unsigned NumArgs,
1712 AssociatedNamespaceSet &AssociatedNamespaces,
John McCallc7e8e792009-08-07 22:18:02 +00001713 AssociatedClassSet &AssociatedClasses) {
Douglas Gregore254f902009-02-04 00:32:51 +00001714 AssociatedNamespaces.clear();
1715 AssociatedClasses.clear();
1716
1717 // C++ [basic.lookup.koenig]p2:
1718 // For each argument type T in the function call, there is a set
1719 // of zero or more associated namespaces and a set of zero or more
1720 // associated classes to be considered. The sets of namespaces and
1721 // classes is determined entirely by the types of the function
1722 // arguments (and the namespace of any template template
Mike Stump11289f42009-09-09 15:08:12 +00001723 // argument).
Douglas Gregore254f902009-02-04 00:32:51 +00001724 for (unsigned ArgIdx = 0; ArgIdx != NumArgs; ++ArgIdx) {
1725 Expr *Arg = Args[ArgIdx];
1726
1727 if (Arg->getType() != Context.OverloadTy) {
1728 addAssociatedClassesAndNamespaces(Arg->getType(), Context,
John McCallc7e8e792009-08-07 22:18:02 +00001729 AssociatedNamespaces,
1730 AssociatedClasses);
Douglas Gregore254f902009-02-04 00:32:51 +00001731 continue;
1732 }
1733
1734 // [...] In addition, if the argument is the name or address of a
1735 // set of overloaded functions and/or function templates, its
1736 // associated classes and namespaces are the union of those
1737 // associated with each of the members of the set: the namespace
1738 // in which the function or function template is defined and the
1739 // classes and namespaces associated with its (non-dependent)
1740 // parameter types and return type.
Douglas Gregorbe759252009-07-08 10:57:20 +00001741 Arg = Arg->IgnoreParens();
John McCalld14a8642009-11-21 08:51:07 +00001742 if (UnaryOperator *unaryOp = dyn_cast<UnaryOperator>(Arg))
1743 if (unaryOp->getOpcode() == UnaryOperator::AddrOf)
1744 Arg = unaryOp->getSubExpr();
Mike Stump11289f42009-09-09 15:08:12 +00001745
John McCalld14a8642009-11-21 08:51:07 +00001746 // TODO: avoid the copies. This should be easy when the cases
1747 // share a storage implementation.
1748 llvm::SmallVector<NamedDecl*, 8> Functions;
1749
1750 if (UnresolvedLookupExpr *ULE = dyn_cast<UnresolvedLookupExpr>(Arg))
1751 Functions.append(ULE->decls_begin(), ULE->decls_end());
John McCalle66edc12009-11-24 19:00:30 +00001752 else
Douglas Gregore254f902009-02-04 00:32:51 +00001753 continue;
1754
John McCalld14a8642009-11-21 08:51:07 +00001755 for (llvm::SmallVectorImpl<NamedDecl*>::iterator I = Functions.begin(),
1756 E = Functions.end(); I != E; ++I) {
Chandler Carruthc25c6ee2009-12-29 06:17:27 +00001757 // Look through any using declarations to find the underlying function.
1758 NamedDecl *Fn = (*I)->getUnderlyingDecl();
Douglas Gregore254f902009-02-04 00:32:51 +00001759
Chandler Carruthc25c6ee2009-12-29 06:17:27 +00001760 FunctionDecl *FDecl = dyn_cast<FunctionDecl>(Fn);
1761 if (!FDecl)
1762 FDecl = cast<FunctionTemplateDecl>(Fn)->getTemplatedDecl();
Douglas Gregore254f902009-02-04 00:32:51 +00001763
1764 // Add the classes and namespaces associated with the parameter
1765 // types and return type of this function.
1766 addAssociatedClassesAndNamespaces(FDecl->getType(), Context,
John McCallc7e8e792009-08-07 22:18:02 +00001767 AssociatedNamespaces,
1768 AssociatedClasses);
Douglas Gregore254f902009-02-04 00:32:51 +00001769 }
1770 }
1771}
Douglas Gregord2b7ef62009-03-13 00:33:25 +00001772
1773/// IsAcceptableNonMemberOperatorCandidate - Determine whether Fn is
1774/// an acceptable non-member overloaded operator for a call whose
1775/// arguments have types T1 (and, if non-empty, T2). This routine
1776/// implements the check in C++ [over.match.oper]p3b2 concerning
1777/// enumeration types.
Mike Stump11289f42009-09-09 15:08:12 +00001778static bool
Douglas Gregord2b7ef62009-03-13 00:33:25 +00001779IsAcceptableNonMemberOperatorCandidate(FunctionDecl *Fn,
1780 QualType T1, QualType T2,
1781 ASTContext &Context) {
Douglas Gregor0950e412009-03-13 21:01:28 +00001782 if (T1->isDependentType() || (!T2.isNull() && T2->isDependentType()))
1783 return true;
1784
Douglas Gregord2b7ef62009-03-13 00:33:25 +00001785 if (T1->isRecordType() || (!T2.isNull() && T2->isRecordType()))
1786 return true;
1787
John McCall9dd450b2009-09-21 23:43:11 +00001788 const FunctionProtoType *Proto = Fn->getType()->getAs<FunctionProtoType>();
Douglas Gregord2b7ef62009-03-13 00:33:25 +00001789 if (Proto->getNumArgs() < 1)
1790 return false;
1791
1792 if (T1->isEnumeralType()) {
1793 QualType ArgType = Proto->getArgType(0).getNonReferenceType();
Douglas Gregor1b8fe5b72009-11-16 21:35:15 +00001794 if (Context.hasSameUnqualifiedType(T1, ArgType))
Douglas Gregord2b7ef62009-03-13 00:33:25 +00001795 return true;
1796 }
1797
1798 if (Proto->getNumArgs() < 2)
1799 return false;
1800
1801 if (!T2.isNull() && T2->isEnumeralType()) {
1802 QualType ArgType = Proto->getArgType(1).getNonReferenceType();
Douglas Gregor1b8fe5b72009-11-16 21:35:15 +00001803 if (Context.hasSameUnqualifiedType(T2, ArgType))
Douglas Gregord2b7ef62009-03-13 00:33:25 +00001804 return true;
1805 }
1806
1807 return false;
1808}
1809
John McCall5cebab12009-11-18 07:57:50 +00001810NamedDecl *Sema::LookupSingleName(Scope *S, DeclarationName Name,
1811 LookupNameKind NameKind,
1812 RedeclarationKind Redecl) {
1813 LookupResult R(*this, Name, SourceLocation(), NameKind, Redecl);
1814 LookupName(R, S);
John McCall67c00872009-12-02 08:25:40 +00001815 return R.getAsSingle<NamedDecl>();
John McCall5cebab12009-11-18 07:57:50 +00001816}
1817
Douglas Gregorde9f17e2009-04-23 23:18:26 +00001818/// \brief Find the protocol with the given name, if any.
1819ObjCProtocolDecl *Sema::LookupProtocol(IdentifierInfo *II) {
John McCall9f3059a2009-10-09 21:13:30 +00001820 Decl *D = LookupSingleName(TUScope, II, LookupObjCProtocolName);
Douglas Gregorde9f17e2009-04-23 23:18:26 +00001821 return cast_or_null<ObjCProtocolDecl>(D);
1822}
1823
Douglas Gregord2b7ef62009-03-13 00:33:25 +00001824void Sema::LookupOverloadedOperatorName(OverloadedOperatorKind Op, Scope *S,
Mike Stump11289f42009-09-09 15:08:12 +00001825 QualType T1, QualType T2,
John McCall4c4c1df2010-01-26 03:27:55 +00001826 UnresolvedSetImpl &Functions) {
Douglas Gregord2b7ef62009-03-13 00:33:25 +00001827 // C++ [over.match.oper]p3:
1828 // -- The set of non-member candidates is the result of the
1829 // unqualified lookup of operator@ in the context of the
1830 // expression according to the usual rules for name lookup in
1831 // unqualified function calls (3.4.2) except that all member
1832 // functions are ignored. However, if no operand has a class
1833 // type, only those non-member functions in the lookup set
Eli Friedman44b83ee2009-08-05 19:21:58 +00001834 // that have a first parameter of type T1 or "reference to
1835 // (possibly cv-qualified) T1", when T1 is an enumeration
Douglas Gregord2b7ef62009-03-13 00:33:25 +00001836 // type, or (if there is a right operand) a second parameter
Eli Friedman44b83ee2009-08-05 19:21:58 +00001837 // of type T2 or "reference to (possibly cv-qualified) T2",
Douglas Gregord2b7ef62009-03-13 00:33:25 +00001838 // when T2 is an enumeration type, are candidate functions.
1839 DeclarationName OpName = Context.DeclarationNames.getCXXOperatorName(Op);
John McCall27b18f82009-11-17 02:14:36 +00001840 LookupResult Operators(*this, OpName, SourceLocation(), LookupOperatorName);
1841 LookupName(Operators, S);
Mike Stump11289f42009-09-09 15:08:12 +00001842
Douglas Gregord2b7ef62009-03-13 00:33:25 +00001843 assert(!Operators.isAmbiguous() && "Operator lookup cannot be ambiguous");
1844
John McCall9f3059a2009-10-09 21:13:30 +00001845 if (Operators.empty())
Douglas Gregord2b7ef62009-03-13 00:33:25 +00001846 return;
1847
1848 for (LookupResult::iterator Op = Operators.begin(), OpEnd = Operators.end();
1849 Op != OpEnd; ++Op) {
Douglas Gregor15448f82009-06-27 21:05:07 +00001850 if (FunctionDecl *FD = dyn_cast<FunctionDecl>(*Op)) {
Douglas Gregord2b7ef62009-03-13 00:33:25 +00001851 if (IsAcceptableNonMemberOperatorCandidate(FD, T1, T2, Context))
John McCall4c4c1df2010-01-26 03:27:55 +00001852 Functions.addDecl(FD, Op.getAccess()); // FIXME: canonical FD
Mike Stump11289f42009-09-09 15:08:12 +00001853 } else if (FunctionTemplateDecl *FunTmpl
Douglas Gregor15448f82009-06-27 21:05:07 +00001854 = dyn_cast<FunctionTemplateDecl>(*Op)) {
1855 // FIXME: friend operators?
Mike Stump11289f42009-09-09 15:08:12 +00001856 // FIXME: do we need to check IsAcceptableNonMemberOperatorCandidate,
Douglas Gregor15448f82009-06-27 21:05:07 +00001857 // later?
1858 if (!FunTmpl->getDeclContext()->isRecord())
John McCall4c4c1df2010-01-26 03:27:55 +00001859 Functions.addDecl(FunTmpl, Op.getAccess());
Douglas Gregor15448f82009-06-27 21:05:07 +00001860 }
Douglas Gregord2b7ef62009-03-13 00:33:25 +00001861 }
1862}
1863
John McCall8fe68082010-01-26 07:16:45 +00001864void ADLResult::insert(NamedDecl *New) {
1865 NamedDecl *&Old = Decls[cast<NamedDecl>(New->getCanonicalDecl())];
1866
1867 // If we haven't yet seen a decl for this key, or the last decl
1868 // was exactly this one, we're done.
1869 if (Old == 0 || Old == New) {
1870 Old = New;
1871 return;
1872 }
1873
1874 // Otherwise, decide which is a more recent redeclaration.
1875 FunctionDecl *OldFD, *NewFD;
1876 if (isa<FunctionTemplateDecl>(New)) {
1877 OldFD = cast<FunctionTemplateDecl>(Old)->getTemplatedDecl();
1878 NewFD = cast<FunctionTemplateDecl>(New)->getTemplatedDecl();
1879 } else {
1880 OldFD = cast<FunctionDecl>(Old);
1881 NewFD = cast<FunctionDecl>(New);
1882 }
1883
1884 FunctionDecl *Cursor = NewFD;
1885 while (true) {
1886 Cursor = Cursor->getPreviousDeclaration();
1887
1888 // If we got to the end without finding OldFD, OldFD is the newer
1889 // declaration; leave things as they are.
1890 if (!Cursor) return;
1891
1892 // If we do find OldFD, then NewFD is newer.
1893 if (Cursor == OldFD) break;
1894
1895 // Otherwise, keep looking.
1896 }
1897
1898 Old = New;
1899}
1900
Sebastian Redlc057f422009-10-23 19:23:15 +00001901void Sema::ArgumentDependentLookup(DeclarationName Name, bool Operator,
Douglas Gregord2b7ef62009-03-13 00:33:25 +00001902 Expr **Args, unsigned NumArgs,
John McCall8fe68082010-01-26 07:16:45 +00001903 ADLResult &Result) {
Douglas Gregord2b7ef62009-03-13 00:33:25 +00001904 // Find all of the associated namespaces and classes based on the
1905 // arguments we have.
1906 AssociatedNamespaceSet AssociatedNamespaces;
1907 AssociatedClassSet AssociatedClasses;
Mike Stump11289f42009-09-09 15:08:12 +00001908 FindAssociatedClassesAndNamespaces(Args, NumArgs,
John McCallc7e8e792009-08-07 22:18:02 +00001909 AssociatedNamespaces,
1910 AssociatedClasses);
Douglas Gregord2b7ef62009-03-13 00:33:25 +00001911
Sebastian Redlc057f422009-10-23 19:23:15 +00001912 QualType T1, T2;
1913 if (Operator) {
1914 T1 = Args[0]->getType();
1915 if (NumArgs >= 2)
1916 T2 = Args[1]->getType();
1917 }
1918
Douglas Gregord2b7ef62009-03-13 00:33:25 +00001919 // C++ [basic.lookup.argdep]p3:
Douglas Gregord2b7ef62009-03-13 00:33:25 +00001920 // Let X be the lookup set produced by unqualified lookup (3.4.1)
1921 // and let Y be the lookup set produced by argument dependent
1922 // lookup (defined as follows). If X contains [...] then Y is
1923 // empty. Otherwise Y is the set of declarations found in the
1924 // namespaces associated with the argument types as described
1925 // below. The set of declarations found by the lookup of the name
1926 // is the union of X and Y.
1927 //
1928 // Here, we compute Y and add its members to the overloaded
1929 // candidate set.
1930 for (AssociatedNamespaceSet::iterator NS = AssociatedNamespaces.begin(),
Mike Stump11289f42009-09-09 15:08:12 +00001931 NSEnd = AssociatedNamespaces.end();
1932 NS != NSEnd; ++NS) {
Douglas Gregord2b7ef62009-03-13 00:33:25 +00001933 // When considering an associated namespace, the lookup is the
1934 // same as the lookup performed when the associated namespace is
1935 // used as a qualifier (3.4.3.2) except that:
1936 //
1937 // -- Any using-directives in the associated namespace are
1938 // ignored.
1939 //
John McCallc7e8e792009-08-07 22:18:02 +00001940 // -- Any namespace-scope friend functions declared in
Douglas Gregord2b7ef62009-03-13 00:33:25 +00001941 // associated classes are visible within their respective
1942 // namespaces even if they are not visible during an ordinary
1943 // lookup (11.4).
1944 DeclContext::lookup_iterator I, E;
John McCalld1e9d832009-08-11 06:59:38 +00001945 for (llvm::tie(I, E) = (*NS)->lookup(Name); I != E; ++I) {
John McCall4c4c1df2010-01-26 03:27:55 +00001946 NamedDecl *D = *I;
John McCallaa74a0c2009-08-28 07:59:38 +00001947 // If the only declaration here is an ordinary friend, consider
1948 // it only if it was declared in an associated classes.
1949 if (D->getIdentifierNamespace() == Decl::IDNS_OrdinaryFriend) {
John McCalld1e9d832009-08-11 06:59:38 +00001950 DeclContext *LexDC = D->getLexicalDeclContext();
1951 if (!AssociatedClasses.count(cast<CXXRecordDecl>(LexDC)))
1952 continue;
1953 }
Mike Stump11289f42009-09-09 15:08:12 +00001954
John McCall91f61fc2010-01-26 06:04:06 +00001955 if (isa<UsingShadowDecl>(D))
1956 D = cast<UsingShadowDecl>(D)->getTargetDecl();
John McCall4c4c1df2010-01-26 03:27:55 +00001957
John McCall91f61fc2010-01-26 06:04:06 +00001958 if (isa<FunctionDecl>(D)) {
1959 if (Operator &&
1960 !IsAcceptableNonMemberOperatorCandidate(cast<FunctionDecl>(D),
1961 T1, T2, Context))
1962 continue;
John McCall8fe68082010-01-26 07:16:45 +00001963 } else if (!isa<FunctionTemplateDecl>(D))
1964 continue;
1965
1966 Result.insert(D);
Douglas Gregor6127ca42009-06-23 20:14:09 +00001967 }
1968 }
Douglas Gregord2b7ef62009-03-13 00:33:25 +00001969}
Douglas Gregor2d435302009-12-30 17:04:44 +00001970
1971//----------------------------------------------------------------------------
1972// Search for all visible declarations.
1973//----------------------------------------------------------------------------
1974VisibleDeclConsumer::~VisibleDeclConsumer() { }
1975
1976namespace {
1977
1978class ShadowContextRAII;
1979
1980class VisibleDeclsRecord {
1981public:
1982 /// \brief An entry in the shadow map, which is optimized to store a
1983 /// single declaration (the common case) but can also store a list
1984 /// of declarations.
1985 class ShadowMapEntry {
1986 typedef llvm::SmallVector<NamedDecl *, 4> DeclVector;
1987
1988 /// \brief Contains either the solitary NamedDecl * or a vector
1989 /// of declarations.
1990 llvm::PointerUnion<NamedDecl *, DeclVector*> DeclOrVector;
1991
1992 public:
1993 ShadowMapEntry() : DeclOrVector() { }
1994
1995 void Add(NamedDecl *ND);
1996 void Destroy();
1997
1998 // Iteration.
1999 typedef NamedDecl **iterator;
2000 iterator begin();
2001 iterator end();
2002 };
2003
2004private:
2005 /// \brief A mapping from declaration names to the declarations that have
2006 /// this name within a particular scope.
2007 typedef llvm::DenseMap<DeclarationName, ShadowMapEntry> ShadowMap;
2008
2009 /// \brief A list of shadow maps, which is used to model name hiding.
2010 std::list<ShadowMap> ShadowMaps;
2011
2012 /// \brief The declaration contexts we have already visited.
2013 llvm::SmallPtrSet<DeclContext *, 8> VisitedContexts;
2014
2015 friend class ShadowContextRAII;
2016
2017public:
2018 /// \brief Determine whether we have already visited this context
2019 /// (and, if not, note that we are going to visit that context now).
2020 bool visitedContext(DeclContext *Ctx) {
2021 return !VisitedContexts.insert(Ctx);
2022 }
2023
2024 /// \brief Determine whether the given declaration is hidden in the
2025 /// current scope.
2026 ///
2027 /// \returns the declaration that hides the given declaration, or
2028 /// NULL if no such declaration exists.
2029 NamedDecl *checkHidden(NamedDecl *ND);
2030
2031 /// \brief Add a declaration to the current shadow map.
2032 void add(NamedDecl *ND) { ShadowMaps.back()[ND->getDeclName()].Add(ND); }
2033};
2034
2035/// \brief RAII object that records when we've entered a shadow context.
2036class ShadowContextRAII {
2037 VisibleDeclsRecord &Visible;
2038
2039 typedef VisibleDeclsRecord::ShadowMap ShadowMap;
2040
2041public:
2042 ShadowContextRAII(VisibleDeclsRecord &Visible) : Visible(Visible) {
2043 Visible.ShadowMaps.push_back(ShadowMap());
2044 }
2045
2046 ~ShadowContextRAII() {
2047 for (ShadowMap::iterator E = Visible.ShadowMaps.back().begin(),
2048 EEnd = Visible.ShadowMaps.back().end();
2049 E != EEnd;
2050 ++E)
2051 E->second.Destroy();
2052
2053 Visible.ShadowMaps.pop_back();
2054 }
2055};
2056
2057} // end anonymous namespace
2058
2059void VisibleDeclsRecord::ShadowMapEntry::Add(NamedDecl *ND) {
2060 if (DeclOrVector.isNull()) {
2061 // 0 - > 1 elements: just set the single element information.
2062 DeclOrVector = ND;
2063 return;
2064 }
2065
2066 if (NamedDecl *PrevND = DeclOrVector.dyn_cast<NamedDecl *>()) {
2067 // 1 -> 2 elements: create the vector of results and push in the
2068 // existing declaration.
2069 DeclVector *Vec = new DeclVector;
2070 Vec->push_back(PrevND);
2071 DeclOrVector = Vec;
2072 }
2073
2074 // Add the new element to the end of the vector.
2075 DeclOrVector.get<DeclVector*>()->push_back(ND);
2076}
2077
2078void VisibleDeclsRecord::ShadowMapEntry::Destroy() {
2079 if (DeclVector *Vec = DeclOrVector.dyn_cast<DeclVector *>()) {
2080 delete Vec;
2081 DeclOrVector = ((NamedDecl *)0);
2082 }
2083}
2084
2085VisibleDeclsRecord::ShadowMapEntry::iterator
2086VisibleDeclsRecord::ShadowMapEntry::begin() {
2087 if (DeclOrVector.isNull())
2088 return 0;
2089
2090 if (DeclOrVector.dyn_cast<NamedDecl *>())
2091 return &reinterpret_cast<NamedDecl*&>(DeclOrVector);
2092
2093 return DeclOrVector.get<DeclVector *>()->begin();
2094}
2095
2096VisibleDeclsRecord::ShadowMapEntry::iterator
2097VisibleDeclsRecord::ShadowMapEntry::end() {
2098 if (DeclOrVector.isNull())
2099 return 0;
2100
2101 if (DeclOrVector.dyn_cast<NamedDecl *>())
2102 return &reinterpret_cast<NamedDecl*&>(DeclOrVector) + 1;
2103
2104 return DeclOrVector.get<DeclVector *>()->end();
2105}
2106
2107NamedDecl *VisibleDeclsRecord::checkHidden(NamedDecl *ND) {
Douglas Gregor0235c422010-01-14 00:06:47 +00002108 // Look through using declarations.
2109 ND = ND->getUnderlyingDecl();
2110
Douglas Gregor2d435302009-12-30 17:04:44 +00002111 unsigned IDNS = ND->getIdentifierNamespace();
2112 std::list<ShadowMap>::reverse_iterator SM = ShadowMaps.rbegin();
2113 for (std::list<ShadowMap>::reverse_iterator SMEnd = ShadowMaps.rend();
2114 SM != SMEnd; ++SM) {
2115 ShadowMap::iterator Pos = SM->find(ND->getDeclName());
2116 if (Pos == SM->end())
2117 continue;
2118
2119 for (ShadowMapEntry::iterator I = Pos->second.begin(),
2120 IEnd = Pos->second.end();
2121 I != IEnd; ++I) {
2122 // A tag declaration does not hide a non-tag declaration.
2123 if ((*I)->getIdentifierNamespace() == Decl::IDNS_Tag &&
2124 (IDNS & (Decl::IDNS_Member | Decl::IDNS_Ordinary |
2125 Decl::IDNS_ObjCProtocol)))
2126 continue;
2127
2128 // Protocols are in distinct namespaces from everything else.
2129 if ((((*I)->getIdentifierNamespace() & Decl::IDNS_ObjCProtocol)
2130 || (IDNS & Decl::IDNS_ObjCProtocol)) &&
2131 (*I)->getIdentifierNamespace() != IDNS)
2132 continue;
2133
Douglas Gregor09bbc652010-01-14 15:47:35 +00002134 // Functions and function templates in the same scope overload
2135 // rather than hide. FIXME: Look for hiding based on function
2136 // signatures!
Douglas Gregor200c99d2010-01-14 03:35:48 +00002137 if ((*I)->isFunctionOrFunctionTemplate() &&
Douglas Gregor09bbc652010-01-14 15:47:35 +00002138 ND->isFunctionOrFunctionTemplate() &&
2139 SM == ShadowMaps.rbegin())
Douglas Gregor200c99d2010-01-14 03:35:48 +00002140 continue;
2141
Douglas Gregor2d435302009-12-30 17:04:44 +00002142 // We've found a declaration that hides this one.
2143 return *I;
2144 }
2145 }
2146
2147 return 0;
2148}
2149
2150static void LookupVisibleDecls(DeclContext *Ctx, LookupResult &Result,
2151 bool QualifiedNameLookup,
Douglas Gregor09bbc652010-01-14 15:47:35 +00002152 bool InBaseClass,
Douglas Gregor2d435302009-12-30 17:04:44 +00002153 VisibleDeclConsumer &Consumer,
2154 VisibleDeclsRecord &Visited) {
Douglas Gregor0c8a1722010-02-04 23:42:48 +00002155 if (!Ctx)
2156 return;
2157
Douglas Gregor2d435302009-12-30 17:04:44 +00002158 // Make sure we don't visit the same context twice.
2159 if (Visited.visitedContext(Ctx->getPrimaryContext()))
2160 return;
2161
2162 // Enumerate all of the results in this context.
2163 for (DeclContext *CurCtx = Ctx->getPrimaryContext(); CurCtx;
2164 CurCtx = CurCtx->getNextContext()) {
2165 for (DeclContext::decl_iterator D = CurCtx->decls_begin(),
2166 DEnd = CurCtx->decls_end();
2167 D != DEnd; ++D) {
2168 if (NamedDecl *ND = dyn_cast<NamedDecl>(*D))
2169 if (Result.isAcceptableDecl(ND)) {
Douglas Gregor09bbc652010-01-14 15:47:35 +00002170 Consumer.FoundDecl(ND, Visited.checkHidden(ND), InBaseClass);
Douglas Gregor2d435302009-12-30 17:04:44 +00002171 Visited.add(ND);
2172 }
2173
2174 // Visit transparent contexts inside this context.
2175 if (DeclContext *InnerCtx = dyn_cast<DeclContext>(*D)) {
2176 if (InnerCtx->isTransparentContext())
Douglas Gregor09bbc652010-01-14 15:47:35 +00002177 LookupVisibleDecls(InnerCtx, Result, QualifiedNameLookup, InBaseClass,
Douglas Gregor2d435302009-12-30 17:04:44 +00002178 Consumer, Visited);
2179 }
2180 }
2181 }
2182
2183 // Traverse using directives for qualified name lookup.
2184 if (QualifiedNameLookup) {
2185 ShadowContextRAII Shadow(Visited);
2186 DeclContext::udir_iterator I, E;
2187 for (llvm::tie(I, E) = Ctx->getUsingDirectives(); I != E; ++I) {
2188 LookupVisibleDecls((*I)->getNominatedNamespace(), Result,
Douglas Gregor09bbc652010-01-14 15:47:35 +00002189 QualifiedNameLookup, InBaseClass, Consumer, Visited);
Douglas Gregor2d435302009-12-30 17:04:44 +00002190 }
2191 }
2192
Douglas Gregor35b0bac2010-01-03 18:01:57 +00002193 // Traverse the contexts of inherited C++ classes.
Douglas Gregor2d435302009-12-30 17:04:44 +00002194 if (CXXRecordDecl *Record = dyn_cast<CXXRecordDecl>(Ctx)) {
John McCall67da35c2010-02-04 22:26:26 +00002195 if (!Record->hasDefinition())
2196 return;
2197
Douglas Gregor2d435302009-12-30 17:04:44 +00002198 for (CXXRecordDecl::base_class_iterator B = Record->bases_begin(),
2199 BEnd = Record->bases_end();
2200 B != BEnd; ++B) {
2201 QualType BaseType = B->getType();
2202
2203 // Don't look into dependent bases, because name lookup can't look
2204 // there anyway.
2205 if (BaseType->isDependentType())
2206 continue;
2207
2208 const RecordType *Record = BaseType->getAs<RecordType>();
2209 if (!Record)
2210 continue;
2211
2212 // FIXME: It would be nice to be able to determine whether referencing
2213 // a particular member would be ambiguous. For example, given
2214 //
2215 // struct A { int member; };
2216 // struct B { int member; };
2217 // struct C : A, B { };
2218 //
2219 // void f(C *c) { c->### }
2220 //
2221 // accessing 'member' would result in an ambiguity. However, we
2222 // could be smart enough to qualify the member with the base
2223 // class, e.g.,
2224 //
2225 // c->B::member
2226 //
2227 // or
2228 //
2229 // c->A::member
2230
2231 // Find results in this base class (and its bases).
2232 ShadowContextRAII Shadow(Visited);
2233 LookupVisibleDecls(Record->getDecl(), Result, QualifiedNameLookup,
Douglas Gregor09bbc652010-01-14 15:47:35 +00002234 true, Consumer, Visited);
Douglas Gregor2d435302009-12-30 17:04:44 +00002235 }
2236 }
2237
Douglas Gregor35b0bac2010-01-03 18:01:57 +00002238 // Traverse the contexts of Objective-C classes.
2239 if (ObjCInterfaceDecl *IFace = dyn_cast<ObjCInterfaceDecl>(Ctx)) {
2240 // Traverse categories.
2241 for (ObjCCategoryDecl *Category = IFace->getCategoryList();
2242 Category; Category = Category->getNextClassCategory()) {
2243 ShadowContextRAII Shadow(Visited);
Douglas Gregor09bbc652010-01-14 15:47:35 +00002244 LookupVisibleDecls(Category, Result, QualifiedNameLookup, false,
2245 Consumer, Visited);
Douglas Gregor35b0bac2010-01-03 18:01:57 +00002246 }
2247
2248 // Traverse protocols.
2249 for (ObjCInterfaceDecl::protocol_iterator I = IFace->protocol_begin(),
2250 E = IFace->protocol_end(); I != E; ++I) {
2251 ShadowContextRAII Shadow(Visited);
Douglas Gregor09bbc652010-01-14 15:47:35 +00002252 LookupVisibleDecls(*I, Result, QualifiedNameLookup, false, Consumer,
2253 Visited);
Douglas Gregor35b0bac2010-01-03 18:01:57 +00002254 }
2255
2256 // Traverse the superclass.
2257 if (IFace->getSuperClass()) {
2258 ShadowContextRAII Shadow(Visited);
2259 LookupVisibleDecls(IFace->getSuperClass(), Result, QualifiedNameLookup,
Douglas Gregor09bbc652010-01-14 15:47:35 +00002260 true, Consumer, Visited);
Douglas Gregor35b0bac2010-01-03 18:01:57 +00002261 }
2262 } else if (ObjCProtocolDecl *Protocol = dyn_cast<ObjCProtocolDecl>(Ctx)) {
2263 for (ObjCProtocolDecl::protocol_iterator I = Protocol->protocol_begin(),
2264 E = Protocol->protocol_end(); I != E; ++I) {
2265 ShadowContextRAII Shadow(Visited);
Douglas Gregor09bbc652010-01-14 15:47:35 +00002266 LookupVisibleDecls(*I, Result, QualifiedNameLookup, false, Consumer,
2267 Visited);
Douglas Gregor35b0bac2010-01-03 18:01:57 +00002268 }
2269 } else if (ObjCCategoryDecl *Category = dyn_cast<ObjCCategoryDecl>(Ctx)) {
2270 for (ObjCCategoryDecl::protocol_iterator I = Category->protocol_begin(),
2271 E = Category->protocol_end(); I != E; ++I) {
2272 ShadowContextRAII Shadow(Visited);
Douglas Gregor09bbc652010-01-14 15:47:35 +00002273 LookupVisibleDecls(*I, Result, QualifiedNameLookup, false, Consumer,
2274 Visited);
Douglas Gregor35b0bac2010-01-03 18:01:57 +00002275 }
2276 }
Douglas Gregor2d435302009-12-30 17:04:44 +00002277}
2278
2279static void LookupVisibleDecls(Scope *S, LookupResult &Result,
2280 UnqualUsingDirectiveSet &UDirs,
2281 VisibleDeclConsumer &Consumer,
2282 VisibleDeclsRecord &Visited) {
2283 if (!S)
2284 return;
2285
Douglas Gregor712dcfe2010-01-07 00:31:29 +00002286 if (!S->getEntity() || !S->getParent() ||
2287 ((DeclContext *)S->getEntity())->isFunctionOrMethod()) {
2288 // Walk through the declarations in this Scope.
2289 for (Scope::decl_iterator D = S->decl_begin(), DEnd = S->decl_end();
2290 D != DEnd; ++D) {
2291 if (NamedDecl *ND = dyn_cast<NamedDecl>((Decl *)((*D).get())))
2292 if (Result.isAcceptableDecl(ND)) {
Douglas Gregor09bbc652010-01-14 15:47:35 +00002293 Consumer.FoundDecl(ND, Visited.checkHidden(ND), false);
Douglas Gregor712dcfe2010-01-07 00:31:29 +00002294 Visited.add(ND);
2295 }
2296 }
2297 }
2298
Douglas Gregor66230062010-03-15 14:33:29 +00002299 // FIXME: C++ [temp.local]p8
Douglas Gregor2d435302009-12-30 17:04:44 +00002300 DeclContext *Entity = 0;
Douglas Gregor4f248632010-01-01 17:44:25 +00002301 if (S->getEntity()) {
Douglas Gregor2d435302009-12-30 17:04:44 +00002302 // Look into this scope's declaration context, along with any of its
2303 // parent lookup contexts (e.g., enclosing classes), up to the point
2304 // where we hit the context stored in the next outer scope.
2305 Entity = (DeclContext *)S->getEntity();
Douglas Gregor66230062010-03-15 14:33:29 +00002306 DeclContext *OuterCtx = findOuterContext(S).first; // FIXME
Douglas Gregor2d435302009-12-30 17:04:44 +00002307
Douglas Gregorea166062010-03-15 15:26:48 +00002308 for (DeclContext *Ctx = Entity; Ctx && !Ctx->Equals(OuterCtx);
Douglas Gregor2d435302009-12-30 17:04:44 +00002309 Ctx = Ctx->getLookupParent()) {
Douglas Gregor35b0bac2010-01-03 18:01:57 +00002310 if (ObjCMethodDecl *Method = dyn_cast<ObjCMethodDecl>(Ctx)) {
2311 if (Method->isInstanceMethod()) {
2312 // For instance methods, look for ivars in the method's interface.
2313 LookupResult IvarResult(Result.getSema(), Result.getLookupName(),
2314 Result.getNameLoc(), Sema::LookupMemberName);
Douglas Gregor0c8a1722010-02-04 23:42:48 +00002315 if (ObjCInterfaceDecl *IFace = Method->getClassInterface())
2316 LookupVisibleDecls(IFace, IvarResult, /*QualifiedNameLookup=*/false,
2317 /*InBaseClass=*/false, Consumer, Visited);
Douglas Gregor35b0bac2010-01-03 18:01:57 +00002318 }
2319
2320 // We've already performed all of the name lookup that we need
2321 // to for Objective-C methods; the next context will be the
2322 // outer scope.
2323 break;
2324 }
2325
Douglas Gregor2d435302009-12-30 17:04:44 +00002326 if (Ctx->isFunctionOrMethod())
2327 continue;
2328
2329 LookupVisibleDecls(Ctx, Result, /*QualifiedNameLookup=*/false,
Douglas Gregor09bbc652010-01-14 15:47:35 +00002330 /*InBaseClass=*/false, Consumer, Visited);
Douglas Gregor2d435302009-12-30 17:04:44 +00002331 }
2332 } else if (!S->getParent()) {
2333 // Look into the translation unit scope. We walk through the translation
2334 // unit's declaration context, because the Scope itself won't have all of
2335 // the declarations if we loaded a precompiled header.
2336 // FIXME: We would like the translation unit's Scope object to point to the
2337 // translation unit, so we don't need this special "if" branch. However,
2338 // doing so would force the normal C++ name-lookup code to look into the
2339 // translation unit decl when the IdentifierInfo chains would suffice.
2340 // Once we fix that problem (which is part of a more general "don't look
Douglas Gregor712dcfe2010-01-07 00:31:29 +00002341 // in DeclContexts unless we have to" optimization), we can eliminate this.
Douglas Gregor2d435302009-12-30 17:04:44 +00002342 Entity = Result.getSema().Context.getTranslationUnitDecl();
2343 LookupVisibleDecls(Entity, Result, /*QualifiedNameLookup=*/false,
Douglas Gregor09bbc652010-01-14 15:47:35 +00002344 /*InBaseClass=*/false, Consumer, Visited);
Douglas Gregor712dcfe2010-01-07 00:31:29 +00002345 }
Douglas Gregor2d435302009-12-30 17:04:44 +00002346
2347 if (Entity) {
2348 // Lookup visible declarations in any namespaces found by using
2349 // directives.
2350 UnqualUsingDirectiveSet::const_iterator UI, UEnd;
2351 llvm::tie(UI, UEnd) = UDirs.getNamespacesFor(Entity);
2352 for (; UI != UEnd; ++UI)
2353 LookupVisibleDecls(const_cast<DeclContext *>(UI->getNominatedNamespace()),
Douglas Gregor09bbc652010-01-14 15:47:35 +00002354 Result, /*QualifiedNameLookup=*/false,
2355 /*InBaseClass=*/false, Consumer, Visited);
Douglas Gregor2d435302009-12-30 17:04:44 +00002356 }
2357
2358 // Lookup names in the parent scope.
2359 ShadowContextRAII Shadow(Visited);
2360 LookupVisibleDecls(S->getParent(), Result, UDirs, Consumer, Visited);
2361}
2362
2363void Sema::LookupVisibleDecls(Scope *S, LookupNameKind Kind,
2364 VisibleDeclConsumer &Consumer) {
2365 // Determine the set of using directives available during
2366 // unqualified name lookup.
2367 Scope *Initial = S;
2368 UnqualUsingDirectiveSet UDirs;
2369 if (getLangOptions().CPlusPlus) {
2370 // Find the first namespace or translation-unit scope.
2371 while (S && !isNamespaceOrTranslationUnitScope(S))
2372 S = S->getParent();
2373
2374 UDirs.visitScopeChain(Initial, S);
2375 }
2376 UDirs.done();
2377
2378 // Look for visible declarations.
2379 LookupResult Result(*this, DeclarationName(), SourceLocation(), Kind);
2380 VisibleDeclsRecord Visited;
2381 ShadowContextRAII Shadow(Visited);
2382 ::LookupVisibleDecls(Initial, Result, UDirs, Consumer, Visited);
2383}
2384
2385void Sema::LookupVisibleDecls(DeclContext *Ctx, LookupNameKind Kind,
2386 VisibleDeclConsumer &Consumer) {
2387 LookupResult Result(*this, DeclarationName(), SourceLocation(), Kind);
2388 VisibleDeclsRecord Visited;
2389 ShadowContextRAII Shadow(Visited);
Douglas Gregor09bbc652010-01-14 15:47:35 +00002390 ::LookupVisibleDecls(Ctx, Result, /*QualifiedNameLookup=*/true,
2391 /*InBaseClass=*/false, Consumer, Visited);
Douglas Gregor2d435302009-12-30 17:04:44 +00002392}
2393
2394//----------------------------------------------------------------------------
2395// Typo correction
2396//----------------------------------------------------------------------------
2397
2398namespace {
2399class TypoCorrectionConsumer : public VisibleDeclConsumer {
2400 /// \brief The name written that is a typo in the source.
2401 llvm::StringRef Typo;
2402
2403 /// \brief The results found that have the smallest edit distance
2404 /// found (so far) with the typo name.
2405 llvm::SmallVector<NamedDecl *, 4> BestResults;
2406
2407 /// \brief The best edit distance found so far.
2408 unsigned BestEditDistance;
2409
2410public:
2411 explicit TypoCorrectionConsumer(IdentifierInfo *Typo)
2412 : Typo(Typo->getName()) { }
2413
Douglas Gregor09bbc652010-01-14 15:47:35 +00002414 virtual void FoundDecl(NamedDecl *ND, NamedDecl *Hiding, bool InBaseClass);
Douglas Gregor2d435302009-12-30 17:04:44 +00002415
2416 typedef llvm::SmallVector<NamedDecl *, 4>::const_iterator iterator;
2417 iterator begin() const { return BestResults.begin(); }
2418 iterator end() const { return BestResults.end(); }
2419 bool empty() const { return BestResults.empty(); }
2420
2421 unsigned getBestEditDistance() const { return BestEditDistance; }
2422};
2423
2424}
2425
Douglas Gregor09bbc652010-01-14 15:47:35 +00002426void TypoCorrectionConsumer::FoundDecl(NamedDecl *ND, NamedDecl *Hiding,
2427 bool InBaseClass) {
Douglas Gregor2d435302009-12-30 17:04:44 +00002428 // Don't consider hidden names for typo correction.
2429 if (Hiding)
2430 return;
2431
2432 // Only consider entities with identifiers for names, ignoring
2433 // special names (constructors, overloaded operators, selectors,
2434 // etc.).
2435 IdentifierInfo *Name = ND->getIdentifier();
2436 if (!Name)
2437 return;
2438
2439 // Compute the edit distance between the typo and the name of this
2440 // entity. If this edit distance is not worse than the best edit
2441 // distance we've seen so far, add it to the list of results.
2442 unsigned ED = Typo.edit_distance(Name->getName());
2443 if (!BestResults.empty()) {
2444 if (ED < BestEditDistance) {
2445 // This result is better than any we've seen before; clear out
2446 // the previous results.
2447 BestResults.clear();
2448 BestEditDistance = ED;
2449 } else if (ED > BestEditDistance) {
2450 // This result is worse than the best results we've seen so far;
2451 // ignore it.
2452 return;
2453 }
2454 } else
2455 BestEditDistance = ED;
2456
2457 BestResults.push_back(ND);
2458}
2459
2460/// \brief Try to "correct" a typo in the source code by finding
2461/// visible declarations whose names are similar to the name that was
2462/// present in the source code.
2463///
2464/// \param Res the \c LookupResult structure that contains the name
2465/// that was present in the source code along with the name-lookup
2466/// criteria used to search for the name. On success, this structure
2467/// will contain the results of name lookup.
2468///
2469/// \param S the scope in which name lookup occurs.
2470///
2471/// \param SS the nested-name-specifier that precedes the name we're
2472/// looking for, if present.
2473///
Douglas Gregoraf2bd472009-12-31 07:42:17 +00002474/// \param MemberContext if non-NULL, the context in which to look for
2475/// a member access expression.
2476///
Douglas Gregor598b08f2009-12-31 05:20:13 +00002477/// \param EnteringContext whether we're entering the context described by
2478/// the nested-name-specifier SS.
2479///
Douglas Gregor35b0bac2010-01-03 18:01:57 +00002480/// \param OPT when non-NULL, the search for visible declarations will
2481/// also walk the protocols in the qualified interfaces of \p OPT.
2482///
Douglas Gregor2d435302009-12-30 17:04:44 +00002483/// \returns true if the typo was corrected, in which case the \p Res
2484/// structure will contain the results of name lookup for the
2485/// corrected name. Otherwise, returns false.
2486bool Sema::CorrectTypo(LookupResult &Res, Scope *S, const CXXScopeSpec *SS,
Douglas Gregor35b0bac2010-01-03 18:01:57 +00002487 DeclContext *MemberContext, bool EnteringContext,
2488 const ObjCObjectPointerType *OPT) {
Ted Kremeneke51136e2010-01-06 00:23:04 +00002489 if (Diags.hasFatalErrorOccurred())
2490 return false;
Ted Kremenek54516822010-02-02 02:07:01 +00002491
2492 // Provide a stop gap for files that are just seriously broken. Trying
2493 // to correct all typos can turn into a HUGE performance penalty, causing
2494 // some files to take minutes to get rejected by the parser.
2495 // FIXME: Is this the right solution?
2496 if (TyposCorrected == 20)
2497 return false;
2498 ++TyposCorrected;
Ted Kremeneke51136e2010-01-06 00:23:04 +00002499
Douglas Gregor2d435302009-12-30 17:04:44 +00002500 // We only attempt to correct typos for identifiers.
2501 IdentifierInfo *Typo = Res.getLookupName().getAsIdentifierInfo();
2502 if (!Typo)
2503 return false;
2504
2505 // If the scope specifier itself was invalid, don't try to correct
2506 // typos.
2507 if (SS && SS->isInvalid())
2508 return false;
2509
2510 // Never try to correct typos during template deduction or
2511 // instantiation.
2512 if (!ActiveTemplateInstantiations.empty())
2513 return false;
2514
2515 TypoCorrectionConsumer Consumer(Typo);
Douglas Gregor35b0bac2010-01-03 18:01:57 +00002516 if (MemberContext) {
Douglas Gregoraf2bd472009-12-31 07:42:17 +00002517 LookupVisibleDecls(MemberContext, Res.getLookupKind(), Consumer);
Douglas Gregor35b0bac2010-01-03 18:01:57 +00002518
2519 // Look in qualified interfaces.
2520 if (OPT) {
2521 for (ObjCObjectPointerType::qual_iterator
2522 I = OPT->qual_begin(), E = OPT->qual_end();
2523 I != E; ++I)
2524 LookupVisibleDecls(*I, Res.getLookupKind(), Consumer);
2525 }
2526 } else if (SS && SS->isSet()) {
Douglas Gregor2d435302009-12-30 17:04:44 +00002527 DeclContext *DC = computeDeclContext(*SS, EnteringContext);
2528 if (!DC)
2529 return false;
2530
2531 LookupVisibleDecls(DC, Res.getLookupKind(), Consumer);
2532 } else {
2533 LookupVisibleDecls(S, Res.getLookupKind(), Consumer);
2534 }
2535
2536 if (Consumer.empty())
2537 return false;
2538
2539 // Only allow a single, closest name in the result set (it's okay to
2540 // have overloads of that name, though).
2541 TypoCorrectionConsumer::iterator I = Consumer.begin();
2542 DeclarationName BestName = (*I)->getDeclName();
Douglas Gregor35b0bac2010-01-03 18:01:57 +00002543
2544 // If we've found an Objective-C ivar or property, don't perform
2545 // name lookup again; we'll just return the result directly.
2546 NamedDecl *FoundBest = 0;
2547 if (isa<ObjCIvarDecl>(*I) || isa<ObjCPropertyDecl>(*I))
2548 FoundBest = *I;
Douglas Gregor2d435302009-12-30 17:04:44 +00002549 ++I;
2550 for(TypoCorrectionConsumer::iterator IEnd = Consumer.end(); I != IEnd; ++I) {
2551 if (BestName != (*I)->getDeclName())
2552 return false;
Douglas Gregor35b0bac2010-01-03 18:01:57 +00002553
2554 // FIXME: If there are both ivars and properties of the same name,
2555 // don't return both because the callee can't handle two
2556 // results. We really need to separate ivar lookup from property
2557 // lookup to avoid this problem.
2558 FoundBest = 0;
Douglas Gregor2d435302009-12-30 17:04:44 +00002559 }
2560
2561 // BestName is the closest viable name to what the user
2562 // typed. However, to make sure that we don't pick something that's
2563 // way off, make sure that the user typed at least 3 characters for
2564 // each correction.
2565 unsigned ED = Consumer.getBestEditDistance();
2566 if (ED == 0 || (BestName.getAsIdentifierInfo()->getName().size() / ED) < 3)
2567 return false;
2568
2569 // Perform name lookup again with the name we chose, and declare
2570 // success if we found something that was not ambiguous.
2571 Res.clear();
2572 Res.setLookupName(BestName);
Douglas Gregor35b0bac2010-01-03 18:01:57 +00002573
2574 // If we found an ivar or property, add that result; no further
2575 // lookup is required.
2576 if (FoundBest)
2577 Res.addDecl(FoundBest);
2578 // If we're looking into the context of a member, perform qualified
2579 // name lookup on the best name.
2580 else if (MemberContext)
Douglas Gregoraf2bd472009-12-31 07:42:17 +00002581 LookupQualifiedName(Res, MemberContext);
Douglas Gregor35b0bac2010-01-03 18:01:57 +00002582 // Perform lookup as if we had just parsed the best name.
Douglas Gregoraf2bd472009-12-31 07:42:17 +00002583 else
2584 LookupParsedName(Res, S, SS, /*AllowBuiltinCreation=*/false,
2585 EnteringContext);
Douglas Gregor598b08f2009-12-31 05:20:13 +00002586
2587 if (Res.isAmbiguous()) {
2588 Res.suppressDiagnostics();
2589 return false;
2590 }
2591
2592 return Res.getResultKind() != LookupResult::NotFound;
Douglas Gregor2d435302009-12-30 17:04:44 +00002593}