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Douglas Gregoreb11cd02009-01-14 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//===----------------------------------------------------------------------===//
Douglas Gregore737f502010-08-12 20:07:10 +000014#include "clang/Sema/Sema.h"
John McCall2d887082010-08-25 22:03:47 +000015#include "clang/Sema/SemaInternal.h"
Douglas Gregore737f502010-08-12 20:07:10 +000016#include "clang/Sema/Lookup.h"
John McCall19510852010-08-20 18:27:03 +000017#include "clang/Sema/DeclSpec.h"
John McCall5f1e0942010-08-24 08:50:51 +000018#include "clang/Sema/Scope.h"
John McCall781472f2010-08-25 08:40:02 +000019#include "clang/Sema/ScopeInfo.h"
John McCall2a7fb272010-08-25 05:32:35 +000020#include "clang/Sema/TemplateDeduction.h"
Douglas Gregor7176fff2009-01-15 00:26:24 +000021#include "clang/AST/ASTContext.h"
Douglas Gregora8f32e02009-10-06 17:59:45 +000022#include "clang/AST/CXXInheritance.h"
Douglas Gregoreb11cd02009-01-14 22:20:51 +000023#include "clang/AST/Decl.h"
24#include "clang/AST/DeclCXX.h"
25#include "clang/AST/DeclObjC.h"
Douglas Gregor42af25f2009-05-11 19:58:34 +000026#include "clang/AST/DeclTemplate.h"
Douglas Gregorfa047642009-02-04 00:32:51 +000027#include "clang/AST/Expr.h"
Douglas Gregordaa439a2009-07-08 10:57:20 +000028#include "clang/AST/ExprCXX.h"
Chris Lattner1b63e4f2009-06-14 01:54:56 +000029#include "clang/Basic/Builtins.h"
Douglas Gregoreb11cd02009-01-14 22:20:51 +000030#include "clang/Basic/LangOptions.h"
John McCall50df6ae2010-08-25 07:03:20 +000031#include "llvm/ADT/DenseSet.h"
Douglas Gregoreb11cd02009-01-14 22:20:51 +000032#include "llvm/ADT/STLExtras.h"
Douglas Gregorfa047642009-02-04 00:32:51 +000033#include "llvm/ADT/SmallPtrSet.h"
Douglas Gregore24b5752010-10-14 20:34:08 +000034#include "llvm/ADT/StringMap.h"
John McCall6e247262009-10-10 05:48:19 +000035#include "llvm/Support/ErrorHandling.h"
Douglas Gregore24b5752010-10-14 20:34:08 +000036#include <limits>
Douglas Gregor546be3c2009-12-30 17:04:44 +000037#include <list>
Douglas Gregor4dc6b1c2009-01-16 00:38:09 +000038#include <set>
Douglas Gregor2a3009a2009-02-03 19:21:40 +000039#include <vector>
40#include <iterator>
41#include <utility>
42#include <algorithm>
Douglas Gregoreb11cd02009-01-14 22:20:51 +000043
44using namespace clang;
John McCall2a7fb272010-08-25 05:32:35 +000045using namespace sema;
Douglas Gregoreb11cd02009-01-14 22:20:51 +000046
John McCalld7be78a2009-11-10 07:01:13 +000047namespace {
48 class UnqualUsingEntry {
49 const DeclContext *Nominated;
50 const DeclContext *CommonAncestor;
Douglas Gregor2a3009a2009-02-03 19:21:40 +000051
John McCalld7be78a2009-11-10 07:01:13 +000052 public:
53 UnqualUsingEntry(const DeclContext *Nominated,
54 const DeclContext *CommonAncestor)
55 : Nominated(Nominated), CommonAncestor(CommonAncestor) {
56 }
Douglas Gregor2a3009a2009-02-03 19:21:40 +000057
John McCalld7be78a2009-11-10 07:01:13 +000058 const DeclContext *getCommonAncestor() const {
59 return CommonAncestor;
60 }
Douglas Gregor2a3009a2009-02-03 19:21:40 +000061
John McCalld7be78a2009-11-10 07:01:13 +000062 const DeclContext *getNominatedNamespace() const {
63 return Nominated;
64 }
Douglas Gregor2a3009a2009-02-03 19:21:40 +000065
John McCalld7be78a2009-11-10 07:01:13 +000066 // Sort by the pointer value of the common ancestor.
67 struct Comparator {
68 bool operator()(const UnqualUsingEntry &L, const UnqualUsingEntry &R) {
69 return L.getCommonAncestor() < R.getCommonAncestor();
70 }
Douglas Gregor2a3009a2009-02-03 19:21:40 +000071
John McCalld7be78a2009-11-10 07:01:13 +000072 bool operator()(const UnqualUsingEntry &E, const DeclContext *DC) {
73 return E.getCommonAncestor() < DC;
74 }
Douglas Gregor2a3009a2009-02-03 19:21:40 +000075
John McCalld7be78a2009-11-10 07:01:13 +000076 bool operator()(const DeclContext *DC, const UnqualUsingEntry &E) {
77 return DC < E.getCommonAncestor();
78 }
79 };
80 };
Douglas Gregor2a3009a2009-02-03 19:21:40 +000081
John McCalld7be78a2009-11-10 07:01:13 +000082 /// A collection of using directives, as used by C++ unqualified
83 /// lookup.
84 class UnqualUsingDirectiveSet {
85 typedef llvm::SmallVector<UnqualUsingEntry, 8> ListTy;
Douglas Gregor2a3009a2009-02-03 19:21:40 +000086
John McCalld7be78a2009-11-10 07:01:13 +000087 ListTy list;
88 llvm::SmallPtrSet<DeclContext*, 8> visited;
Douglas Gregor2a3009a2009-02-03 19:21:40 +000089
John McCalld7be78a2009-11-10 07:01:13 +000090 public:
91 UnqualUsingDirectiveSet() {}
Douglas Gregor2a3009a2009-02-03 19:21:40 +000092
John McCalld7be78a2009-11-10 07:01:13 +000093 void visitScopeChain(Scope *S, Scope *InnermostFileScope) {
94 // C++ [namespace.udir]p1:
95 // During unqualified name lookup, the names appear as if they
96 // were declared in the nearest enclosing namespace which contains
97 // both the using-directive and the nominated namespace.
98 DeclContext *InnermostFileDC
99 = static_cast<DeclContext*>(InnermostFileScope->getEntity());
100 assert(InnermostFileDC && InnermostFileDC->isFileContext());
Douglas Gregor2a3009a2009-02-03 19:21:40 +0000101
John McCalld7be78a2009-11-10 07:01:13 +0000102 for (; S; S = S->getParent()) {
John McCalld7be78a2009-11-10 07:01:13 +0000103 if (DeclContext *Ctx = static_cast<DeclContext*>(S->getEntity())) {
104 DeclContext *EffectiveDC = (Ctx->isFileContext() ? Ctx : InnermostFileDC);
105 visit(Ctx, EffectiveDC);
106 } else {
107 Scope::udir_iterator I = S->using_directives_begin(),
108 End = S->using_directives_end();
109
110 for (; I != End; ++I)
John McCalld226f652010-08-21 09:40:31 +0000111 visit(*I, InnermostFileDC);
John McCalld7be78a2009-11-10 07:01:13 +0000112 }
Douglas Gregor2a3009a2009-02-03 19:21:40 +0000113 }
114 }
John McCalld7be78a2009-11-10 07:01:13 +0000115
116 // Visits a context and collect all of its using directives
117 // recursively. Treats all using directives as if they were
118 // declared in the context.
119 //
120 // A given context is only every visited once, so it is important
121 // that contexts be visited from the inside out in order to get
122 // the effective DCs right.
123 void visit(DeclContext *DC, DeclContext *EffectiveDC) {
124 if (!visited.insert(DC))
125 return;
126
127 addUsingDirectives(DC, EffectiveDC);
128 }
129
130 // Visits a using directive and collects all of its using
131 // directives recursively. Treats all using directives as if they
132 // were declared in the effective DC.
133 void visit(UsingDirectiveDecl *UD, DeclContext *EffectiveDC) {
134 DeclContext *NS = UD->getNominatedNamespace();
135 if (!visited.insert(NS))
136 return;
137
138 addUsingDirective(UD, EffectiveDC);
139 addUsingDirectives(NS, EffectiveDC);
140 }
141
142 // Adds all the using directives in a context (and those nominated
143 // by its using directives, transitively) as if they appeared in
144 // the given effective context.
145 void addUsingDirectives(DeclContext *DC, DeclContext *EffectiveDC) {
146 llvm::SmallVector<DeclContext*,4> queue;
147 while (true) {
148 DeclContext::udir_iterator I, End;
149 for (llvm::tie(I, End) = DC->getUsingDirectives(); I != End; ++I) {
150 UsingDirectiveDecl *UD = *I;
151 DeclContext *NS = UD->getNominatedNamespace();
152 if (visited.insert(NS)) {
153 addUsingDirective(UD, EffectiveDC);
154 queue.push_back(NS);
155 }
156 }
157
158 if (queue.empty())
159 return;
160
161 DC = queue.back();
162 queue.pop_back();
163 }
164 }
165
166 // Add a using directive as if it had been declared in the given
167 // context. This helps implement C++ [namespace.udir]p3:
168 // The using-directive is transitive: if a scope contains a
169 // using-directive that nominates a second namespace that itself
170 // contains using-directives, the effect is as if the
171 // using-directives from the second namespace also appeared in
172 // the first.
173 void addUsingDirective(UsingDirectiveDecl *UD, DeclContext *EffectiveDC) {
174 // Find the common ancestor between the effective context and
175 // the nominated namespace.
176 DeclContext *Common = UD->getNominatedNamespace();
177 while (!Common->Encloses(EffectiveDC))
178 Common = Common->getParent();
John McCall12ea5782009-11-10 09:20:04 +0000179 Common = Common->getPrimaryContext();
John McCalld7be78a2009-11-10 07:01:13 +0000180
181 list.push_back(UnqualUsingEntry(UD->getNominatedNamespace(), Common));
182 }
183
184 void done() {
185 std::sort(list.begin(), list.end(), UnqualUsingEntry::Comparator());
186 }
187
John McCalld7be78a2009-11-10 07:01:13 +0000188 typedef ListTy::const_iterator const_iterator;
189
John McCalld7be78a2009-11-10 07:01:13 +0000190 const_iterator begin() const { return list.begin(); }
191 const_iterator end() const { return list.end(); }
192
193 std::pair<const_iterator,const_iterator>
194 getNamespacesFor(DeclContext *DC) const {
John McCall12ea5782009-11-10 09:20:04 +0000195 return std::equal_range(begin(), end(), DC->getPrimaryContext(),
John McCalld7be78a2009-11-10 07:01:13 +0000196 UnqualUsingEntry::Comparator());
197 }
198 };
Douglas Gregor2a3009a2009-02-03 19:21:40 +0000199}
200
Douglas Gregor2a3009a2009-02-03 19:21:40 +0000201// Retrieve the set of identifier namespaces that correspond to a
202// specific kind of name lookup.
John McCall1d7c5282009-12-18 10:40:03 +0000203static inline unsigned getIDNS(Sema::LookupNameKind NameKind,
204 bool CPlusPlus,
205 bool Redeclaration) {
Douglas Gregor2a3009a2009-02-03 19:21:40 +0000206 unsigned IDNS = 0;
207 switch (NameKind) {
208 case Sema::LookupOrdinaryName:
Douglas Gregord6f7e9d2009-02-24 20:03:32 +0000209 case Sema::LookupRedeclarationWithLinkage:
Douglas Gregor2a3009a2009-02-03 19:21:40 +0000210 IDNS = Decl::IDNS_Ordinary;
John McCall1d7c5282009-12-18 10:40:03 +0000211 if (CPlusPlus) {
John McCall0d6b1642010-04-23 18:46:30 +0000212 IDNS |= Decl::IDNS_Tag | Decl::IDNS_Member | Decl::IDNS_Namespace;
John McCall1d7c5282009-12-18 10:40:03 +0000213 if (Redeclaration) IDNS |= Decl::IDNS_TagFriend | Decl::IDNS_OrdinaryFriend;
214 }
Douglas Gregor2a3009a2009-02-03 19:21:40 +0000215 break;
216
John McCall76d32642010-04-24 01:30:58 +0000217 case Sema::LookupOperatorName:
218 // Operator lookup is its own crazy thing; it is not the same
219 // as (e.g.) looking up an operator name for redeclaration.
220 assert(!Redeclaration && "cannot do redeclaration operator lookup");
221 IDNS = Decl::IDNS_NonMemberOperator;
222 break;
223
Douglas Gregor2a3009a2009-02-03 19:21:40 +0000224 case Sema::LookupTagName:
John McCall0d6b1642010-04-23 18:46:30 +0000225 if (CPlusPlus) {
226 IDNS = Decl::IDNS_Type;
227
228 // When looking for a redeclaration of a tag name, we add:
229 // 1) TagFriend to find undeclared friend decls
230 // 2) Namespace because they can't "overload" with tag decls.
231 // 3) Tag because it includes class templates, which can't
232 // "overload" with tag decls.
233 if (Redeclaration)
234 IDNS |= Decl::IDNS_Tag | Decl::IDNS_TagFriend | Decl::IDNS_Namespace;
235 } else {
236 IDNS = Decl::IDNS_Tag;
237 }
Douglas Gregor2a3009a2009-02-03 19:21:40 +0000238 break;
239
240 case Sema::LookupMemberName:
241 IDNS = Decl::IDNS_Member;
242 if (CPlusPlus)
Mike Stump1eb44332009-09-09 15:08:12 +0000243 IDNS |= Decl::IDNS_Tag | Decl::IDNS_Ordinary;
Douglas Gregor2a3009a2009-02-03 19:21:40 +0000244 break;
245
246 case Sema::LookupNestedNameSpecifierName:
John McCall0d6b1642010-04-23 18:46:30 +0000247 IDNS = Decl::IDNS_Type | Decl::IDNS_Namespace;
248 break;
249
Douglas Gregor2a3009a2009-02-03 19:21:40 +0000250 case Sema::LookupNamespaceName:
John McCall0d6b1642010-04-23 18:46:30 +0000251 IDNS = Decl::IDNS_Namespace;
Douglas Gregor2a3009a2009-02-03 19:21:40 +0000252 break;
Douglas Gregor6e378de2009-04-23 23:18:26 +0000253
John McCall9f54ad42009-12-10 09:41:52 +0000254 case Sema::LookupUsingDeclName:
255 IDNS = Decl::IDNS_Ordinary | Decl::IDNS_Tag
256 | Decl::IDNS_Member | Decl::IDNS_Using;
257 break;
258
Douglas Gregor8fc463a2009-04-24 00:11:27 +0000259 case Sema::LookupObjCProtocolName:
260 IDNS = Decl::IDNS_ObjCProtocol;
261 break;
Douglas Gregor8071e422010-08-15 06:18:01 +0000262
263 case Sema::LookupAnyName:
264 IDNS = Decl::IDNS_Ordinary | Decl::IDNS_Tag | Decl::IDNS_Member
265 | Decl::IDNS_Using | Decl::IDNS_Namespace | Decl::IDNS_ObjCProtocol
266 | Decl::IDNS_Type;
267 break;
Douglas Gregor2a3009a2009-02-03 19:21:40 +0000268 }
269 return IDNS;
270}
271
John McCall1d7c5282009-12-18 10:40:03 +0000272void LookupResult::configure() {
273 IDNS = getIDNS(LookupKind,
274 SemaRef.getLangOptions().CPlusPlus,
275 isForRedeclaration());
Douglas Gregorb5b2ccb2010-03-24 05:07:21 +0000276
277 // If we're looking for one of the allocation or deallocation
278 // operators, make sure that the implicitly-declared new and delete
279 // operators can be found.
280 if (!isForRedeclaration()) {
Abramo Bagnara25777432010-08-11 22:01:17 +0000281 switch (NameInfo.getName().getCXXOverloadedOperator()) {
Douglas Gregorb5b2ccb2010-03-24 05:07:21 +0000282 case OO_New:
283 case OO_Delete:
284 case OO_Array_New:
285 case OO_Array_Delete:
286 SemaRef.DeclareGlobalNewDelete();
287 break;
288
289 default:
290 break;
291 }
292 }
John McCall1d7c5282009-12-18 10:40:03 +0000293}
294
John McCall2a7fb272010-08-25 05:32:35 +0000295#ifndef NDEBUG
296void LookupResult::sanity() const {
297 assert(ResultKind != NotFound || Decls.size() == 0);
298 assert(ResultKind != Found || Decls.size() == 1);
299 assert(ResultKind != FoundOverloaded || Decls.size() > 1 ||
300 (Decls.size() == 1 &&
301 isa<FunctionTemplateDecl>((*begin())->getUnderlyingDecl())));
302 assert(ResultKind != FoundUnresolvedValue || sanityCheckUnresolved());
303 assert(ResultKind != Ambiguous || Decls.size() > 1 ||
Douglas Gregorf17b58c2010-10-22 22:08:47 +0000304 (Decls.size() == 1 && (Ambiguity == AmbiguousBaseSubobjects ||
305 Ambiguity == AmbiguousBaseSubobjectTypes)));
John McCall2a7fb272010-08-25 05:32:35 +0000306 assert((Paths != NULL) == (ResultKind == Ambiguous &&
307 (Ambiguity == AmbiguousBaseSubobjectTypes ||
308 Ambiguity == AmbiguousBaseSubobjects)));
309}
310#endif
311
John McCallf36e02d2009-10-09 21:13:30 +0000312// Necessary because CXXBasePaths is not complete in Sema.h
John McCall7d384dd2009-11-18 07:57:50 +0000313void LookupResult::deletePaths(CXXBasePaths *Paths) {
John McCallf36e02d2009-10-09 21:13:30 +0000314 delete Paths;
Douglas Gregor2a3009a2009-02-03 19:21:40 +0000315}
316
John McCall7453ed42009-11-22 00:44:51 +0000317/// Resolves the result kind of this lookup.
John McCall7d384dd2009-11-18 07:57:50 +0000318void LookupResult::resolveKind() {
John McCallf36e02d2009-10-09 21:13:30 +0000319 unsigned N = Decls.size();
John McCall9f54ad42009-12-10 09:41:52 +0000320
John McCallf36e02d2009-10-09 21:13:30 +0000321 // Fast case: no possible ambiguity.
John McCall68263142009-11-18 22:49:29 +0000322 if (N == 0) {
John McCalldc5c7862010-01-15 21:27:01 +0000323 assert(ResultKind == NotFound || ResultKind == NotFoundInCurrentInstantiation);
John McCall68263142009-11-18 22:49:29 +0000324 return;
325 }
326
John McCall7453ed42009-11-22 00:44:51 +0000327 // If there's a single decl, we need to examine it to decide what
328 // kind of lookup this is.
John McCall7ba107a2009-11-18 02:36:19 +0000329 if (N == 1) {
Douglas Gregor2b147f02010-04-25 21:15:30 +0000330 NamedDecl *D = (*Decls.begin())->getUnderlyingDecl();
331 if (isa<FunctionTemplateDecl>(D))
John McCall7453ed42009-11-22 00:44:51 +0000332 ResultKind = FoundOverloaded;
Douglas Gregor2b147f02010-04-25 21:15:30 +0000333 else if (isa<UnresolvedUsingValueDecl>(D))
John McCall7ba107a2009-11-18 02:36:19 +0000334 ResultKind = FoundUnresolvedValue;
335 return;
336 }
John McCallf36e02d2009-10-09 21:13:30 +0000337
John McCall6e247262009-10-10 05:48:19 +0000338 // Don't do any extra resolution if we've already resolved as ambiguous.
John McCalla24dc2e2009-11-17 02:14:36 +0000339 if (ResultKind == Ambiguous) return;
John McCall6e247262009-10-10 05:48:19 +0000340
John McCallf36e02d2009-10-09 21:13:30 +0000341 llvm::SmallPtrSet<NamedDecl*, 16> Unique;
Douglas Gregor7f1c5472010-08-11 14:45:53 +0000342 llvm::SmallPtrSet<QualType, 16> UniqueTypes;
343
John McCallf36e02d2009-10-09 21:13:30 +0000344 bool Ambiguous = false;
345 bool HasTag = false, HasFunction = false, HasNonFunction = false;
John McCall7453ed42009-11-22 00:44:51 +0000346 bool HasFunctionTemplate = false, HasUnresolved = false;
John McCallf36e02d2009-10-09 21:13:30 +0000347
348 unsigned UniqueTagIndex = 0;
349
350 unsigned I = 0;
351 while (I < N) {
John McCall314be4e2009-11-17 07:50:12 +0000352 NamedDecl *D = Decls[I]->getUnderlyingDecl();
353 D = cast<NamedDecl>(D->getCanonicalDecl());
John McCallf36e02d2009-10-09 21:13:30 +0000354
Douglas Gregor7f1c5472010-08-11 14:45:53 +0000355 // Redeclarations of types via typedef can occur both within a scope
356 // and, through using declarations and directives, across scopes. There is
357 // no ambiguity if they all refer to the same type, so unique based on the
358 // canonical type.
359 if (TypeDecl *TD = dyn_cast<TypeDecl>(D)) {
360 if (!TD->getDeclContext()->isRecord()) {
361 QualType T = SemaRef.Context.getTypeDeclType(TD);
362 if (!UniqueTypes.insert(SemaRef.Context.getCanonicalType(T))) {
363 // The type is not unique; pull something off the back and continue
364 // at this index.
365 Decls[I] = Decls[--N];
366 continue;
367 }
368 }
369 }
370
John McCall314be4e2009-11-17 07:50:12 +0000371 if (!Unique.insert(D)) {
John McCallf36e02d2009-10-09 21:13:30 +0000372 // If it's not unique, pull something off the back (and
373 // continue at this index).
374 Decls[I] = Decls[--N];
Douglas Gregor7f1c5472010-08-11 14:45:53 +0000375 continue;
376 }
377
378 // Otherwise, do some decl type analysis and then continue.
John McCall7ba107a2009-11-18 02:36:19 +0000379
Douglas Gregor7f1c5472010-08-11 14:45:53 +0000380 if (isa<UnresolvedUsingValueDecl>(D)) {
381 HasUnresolved = true;
382 } else if (isa<TagDecl>(D)) {
383 if (HasTag)
384 Ambiguous = true;
385 UniqueTagIndex = I;
386 HasTag = true;
387 } else if (isa<FunctionTemplateDecl>(D)) {
388 HasFunction = true;
389 HasFunctionTemplate = true;
390 } else if (isa<FunctionDecl>(D)) {
391 HasFunction = true;
392 } else {
393 if (HasNonFunction)
394 Ambiguous = true;
395 HasNonFunction = true;
Douglas Gregor7176fff2009-01-15 00:26:24 +0000396 }
Douglas Gregor7f1c5472010-08-11 14:45:53 +0000397 I++;
Mike Stump1eb44332009-09-09 15:08:12 +0000398 }
Douglas Gregor516ff432009-04-24 02:57:34 +0000399
John McCallf36e02d2009-10-09 21:13:30 +0000400 // C++ [basic.scope.hiding]p2:
401 // A class name or enumeration name can be hidden by the name of
402 // an object, function, or enumerator declared in the same
403 // scope. If a class or enumeration name and an object, function,
404 // or enumerator are declared in the same scope (in any order)
405 // with the same name, the class or enumeration name is hidden
406 // wherever the object, function, or enumerator name is visible.
407 // But it's still an error if there are distinct tag types found,
408 // even if they're not visible. (ref?)
John McCallfda8e122009-12-03 00:58:24 +0000409 if (HideTags && HasTag && !Ambiguous &&
Douglas Gregor77a1a882010-10-23 16:06:17 +0000410 (HasFunction || HasNonFunction || HasUnresolved)) {
411 if (Decls[UniqueTagIndex]->getDeclContext()->getRedeclContext()->Equals(
412 Decls[UniqueTagIndex? 0 : N-1]->getDeclContext()->getRedeclContext()))
413 Decls[UniqueTagIndex] = Decls[--N];
414 else
415 Ambiguous = true;
416 }
Anders Carlsson8b50d012009-06-26 03:37:05 +0000417
John McCallf36e02d2009-10-09 21:13:30 +0000418 Decls.set_size(N);
Douglas Gregor7176fff2009-01-15 00:26:24 +0000419
John McCallfda8e122009-12-03 00:58:24 +0000420 if (HasNonFunction && (HasFunction || HasUnresolved))
John McCallf36e02d2009-10-09 21:13:30 +0000421 Ambiguous = true;
Douglas Gregor69d993a2009-01-17 01:13:24 +0000422
John McCallf36e02d2009-10-09 21:13:30 +0000423 if (Ambiguous)
John McCall6e247262009-10-10 05:48:19 +0000424 setAmbiguous(LookupResult::AmbiguousReference);
John McCall7ba107a2009-11-18 02:36:19 +0000425 else if (HasUnresolved)
426 ResultKind = LookupResult::FoundUnresolvedValue;
John McCall7453ed42009-11-22 00:44:51 +0000427 else if (N > 1 || HasFunctionTemplate)
John McCalla24dc2e2009-11-17 02:14:36 +0000428 ResultKind = LookupResult::FoundOverloaded;
John McCallf36e02d2009-10-09 21:13:30 +0000429 else
John McCalla24dc2e2009-11-17 02:14:36 +0000430 ResultKind = LookupResult::Found;
Douglas Gregoreb11cd02009-01-14 22:20:51 +0000431}
432
John McCall7d384dd2009-11-18 07:57:50 +0000433void LookupResult::addDeclsFromBasePaths(const CXXBasePaths &P) {
John McCall6b2accb2010-02-10 09:31:12 +0000434 CXXBasePaths::const_paths_iterator I, E;
John McCallf36e02d2009-10-09 21:13:30 +0000435 DeclContext::lookup_iterator DI, DE;
436 for (I = P.begin(), E = P.end(); I != E; ++I)
437 for (llvm::tie(DI,DE) = I->Decls; DI != DE; ++DI)
438 addDecl(*DI);
Douglas Gregor31a19b62009-04-01 21:51:26 +0000439}
440
John McCall7d384dd2009-11-18 07:57:50 +0000441void LookupResult::setAmbiguousBaseSubobjects(CXXBasePaths &P) {
John McCallf36e02d2009-10-09 21:13:30 +0000442 Paths = new CXXBasePaths;
443 Paths->swap(P);
444 addDeclsFromBasePaths(*Paths);
445 resolveKind();
John McCall6e247262009-10-10 05:48:19 +0000446 setAmbiguous(AmbiguousBaseSubobjects);
Douglas Gregord8635172009-02-02 21:35:47 +0000447}
448
John McCall7d384dd2009-11-18 07:57:50 +0000449void LookupResult::setAmbiguousBaseSubobjectTypes(CXXBasePaths &P) {
John McCallf36e02d2009-10-09 21:13:30 +0000450 Paths = new CXXBasePaths;
451 Paths->swap(P);
452 addDeclsFromBasePaths(*Paths);
453 resolveKind();
John McCall6e247262009-10-10 05:48:19 +0000454 setAmbiguous(AmbiguousBaseSubobjectTypes);
John McCallf36e02d2009-10-09 21:13:30 +0000455}
456
John McCall7d384dd2009-11-18 07:57:50 +0000457void LookupResult::print(llvm::raw_ostream &Out) {
John McCallf36e02d2009-10-09 21:13:30 +0000458 Out << Decls.size() << " result(s)";
459 if (isAmbiguous()) Out << ", ambiguous";
460 if (Paths) Out << ", base paths present";
461
462 for (iterator I = begin(), E = end(); I != E; ++I) {
463 Out << "\n";
464 (*I)->print(Out, 2);
465 }
466}
467
Douglas Gregor85910982010-02-12 05:48:04 +0000468/// \brief Lookup a builtin function, when name lookup would otherwise
469/// fail.
470static bool LookupBuiltin(Sema &S, LookupResult &R) {
471 Sema::LookupNameKind NameKind = R.getLookupKind();
472
473 // If we didn't find a use of this identifier, and if the identifier
474 // corresponds to a compiler builtin, create the decl object for the builtin
475 // now, injecting it into translation unit scope, and return it.
476 if (NameKind == Sema::LookupOrdinaryName ||
477 NameKind == Sema::LookupRedeclarationWithLinkage) {
478 IdentifierInfo *II = R.getLookupName().getAsIdentifierInfo();
479 if (II) {
480 // If this is a builtin on this (or all) targets, create the decl.
481 if (unsigned BuiltinID = II->getBuiltinID()) {
482 // In C++, we don't have any predefined library functions like
483 // 'malloc'. Instead, we'll just error.
484 if (S.getLangOptions().CPlusPlus &&
485 S.Context.BuiltinInfo.isPredefinedLibFunction(BuiltinID))
486 return false;
487
488 NamedDecl *D = S.LazilyCreateBuiltin((IdentifierInfo *)II, BuiltinID,
489 S.TUScope, R.isForRedeclaration(),
490 R.getNameLoc());
491 if (D)
492 R.addDecl(D);
493 return (D != NULL);
494 }
495 }
496 }
497
498 return false;
499}
500
Douglas Gregor4923aa22010-07-02 20:37:36 +0000501/// \brief Determine whether we can declare a special member function within
502/// the class at this point.
503static bool CanDeclareSpecialMemberFunction(ASTContext &Context,
504 const CXXRecordDecl *Class) {
John McCallb3b50a82010-08-11 23:52:36 +0000505 // Don't do it if the class is invalid.
506 if (Class->isInvalidDecl())
507 return false;
508
Douglas Gregor4923aa22010-07-02 20:37:36 +0000509 // We need to have a definition for the class.
510 if (!Class->getDefinition() || Class->isDependentContext())
511 return false;
512
513 // We can't be in the middle of defining the class.
514 if (const RecordType *RecordTy
515 = Context.getTypeDeclType(Class)->getAs<RecordType>())
516 return !RecordTy->isBeingDefined();
517
518 return false;
519}
520
521void Sema::ForceDeclarationOfImplicitMembers(CXXRecordDecl *Class) {
Douglas Gregor22584312010-07-02 23:41:54 +0000522 if (!CanDeclareSpecialMemberFunction(Context, Class))
523 return;
Douglas Gregor18274032010-07-03 00:47:00 +0000524
525 // If the default constructor has not yet been declared, do so now.
526 if (!Class->hasDeclaredDefaultConstructor())
527 DeclareImplicitDefaultConstructor(Class);
Douglas Gregor22584312010-07-02 23:41:54 +0000528
529 // If the copy constructor has not yet been declared, do so now.
530 if (!Class->hasDeclaredCopyConstructor())
531 DeclareImplicitCopyConstructor(Class);
532
Douglas Gregora376d102010-07-02 21:50:04 +0000533 // If the copy assignment operator has not yet been declared, do so now.
Douglas Gregor22584312010-07-02 23:41:54 +0000534 if (!Class->hasDeclaredCopyAssignment())
Douglas Gregora376d102010-07-02 21:50:04 +0000535 DeclareImplicitCopyAssignment(Class);
536
Douglas Gregor4923aa22010-07-02 20:37:36 +0000537 // If the destructor has not yet been declared, do so now.
Douglas Gregor22584312010-07-02 23:41:54 +0000538 if (!Class->hasDeclaredDestructor())
Douglas Gregor4923aa22010-07-02 20:37:36 +0000539 DeclareImplicitDestructor(Class);
540}
541
Douglas Gregora376d102010-07-02 21:50:04 +0000542/// \brief Determine whether this is the name of an implicitly-declared
543/// special member function.
544static bool isImplicitlyDeclaredMemberFunctionName(DeclarationName Name) {
545 switch (Name.getNameKind()) {
Douglas Gregor22584312010-07-02 23:41:54 +0000546 case DeclarationName::CXXConstructorName:
Douglas Gregora376d102010-07-02 21:50:04 +0000547 case DeclarationName::CXXDestructorName:
548 return true;
549
550 case DeclarationName::CXXOperatorName:
551 return Name.getCXXOverloadedOperator() == OO_Equal;
552
553 default:
554 break;
555 }
556
557 return false;
558}
559
560/// \brief If there are any implicit member functions with the given name
561/// that need to be declared in the given declaration context, do so.
562static void DeclareImplicitMemberFunctionsWithName(Sema &S,
563 DeclarationName Name,
564 const DeclContext *DC) {
565 if (!DC)
566 return;
567
568 switch (Name.getNameKind()) {
Douglas Gregor22584312010-07-02 23:41:54 +0000569 case DeclarationName::CXXConstructorName:
570 if (const CXXRecordDecl *Record = dyn_cast<CXXRecordDecl>(DC))
Douglas Gregor18274032010-07-03 00:47:00 +0000571 if (Record->getDefinition() &&
572 CanDeclareSpecialMemberFunction(S.Context, Record)) {
573 if (!Record->hasDeclaredDefaultConstructor())
574 S.DeclareImplicitDefaultConstructor(
575 const_cast<CXXRecordDecl *>(Record));
576 if (!Record->hasDeclaredCopyConstructor())
577 S.DeclareImplicitCopyConstructor(const_cast<CXXRecordDecl *>(Record));
578 }
Douglas Gregor22584312010-07-02 23:41:54 +0000579 break;
580
Douglas Gregora376d102010-07-02 21:50:04 +0000581 case DeclarationName::CXXDestructorName:
582 if (const CXXRecordDecl *Record = dyn_cast<CXXRecordDecl>(DC))
583 if (Record->getDefinition() && !Record->hasDeclaredDestructor() &&
584 CanDeclareSpecialMemberFunction(S.Context, Record))
585 S.DeclareImplicitDestructor(const_cast<CXXRecordDecl *>(Record));
Douglas Gregora376d102010-07-02 21:50:04 +0000586 break;
587
588 case DeclarationName::CXXOperatorName:
589 if (Name.getCXXOverloadedOperator() != OO_Equal)
590 break;
591
592 if (const CXXRecordDecl *Record = dyn_cast<CXXRecordDecl>(DC))
593 if (Record->getDefinition() && !Record->hasDeclaredCopyAssignment() &&
594 CanDeclareSpecialMemberFunction(S.Context, Record))
595 S.DeclareImplicitCopyAssignment(const_cast<CXXRecordDecl *>(Record));
596 break;
597
598 default:
599 break;
600 }
601}
Douglas Gregor4923aa22010-07-02 20:37:36 +0000602
John McCallf36e02d2009-10-09 21:13:30 +0000603// Adds all qualifying matches for a name within a decl context to the
604// given lookup result. Returns true if any matches were found.
Douglas Gregor85910982010-02-12 05:48:04 +0000605static bool LookupDirect(Sema &S, LookupResult &R, const DeclContext *DC) {
John McCallf36e02d2009-10-09 21:13:30 +0000606 bool Found = false;
607
Douglas Gregor4923aa22010-07-02 20:37:36 +0000608 // Lazily declare C++ special member functions.
Douglas Gregora376d102010-07-02 21:50:04 +0000609 if (S.getLangOptions().CPlusPlus)
610 DeclareImplicitMemberFunctionsWithName(S, R.getLookupName(), DC);
Douglas Gregor4923aa22010-07-02 20:37:36 +0000611
612 // Perform lookup into this declaration context.
John McCalld7be78a2009-11-10 07:01:13 +0000613 DeclContext::lookup_const_iterator I, E;
Douglas Gregor48026d22010-01-11 18:40:55 +0000614 for (llvm::tie(I, E) = DC->lookup(R.getLookupName()); I != E; ++I) {
John McCall46460a62010-01-20 21:53:11 +0000615 NamedDecl *D = *I;
616 if (R.isAcceptableDecl(D)) {
617 R.addDecl(D);
Douglas Gregor48026d22010-01-11 18:40:55 +0000618 Found = true;
619 }
620 }
John McCallf36e02d2009-10-09 21:13:30 +0000621
Douglas Gregor85910982010-02-12 05:48:04 +0000622 if (!Found && DC->isTranslationUnit() && LookupBuiltin(S, R))
623 return true;
624
Douglas Gregor48026d22010-01-11 18:40:55 +0000625 if (R.getLookupName().getNameKind()
Chandler Carruthaaa1a892010-01-31 11:44:02 +0000626 != DeclarationName::CXXConversionFunctionName ||
627 R.getLookupName().getCXXNameType()->isDependentType() ||
628 !isa<CXXRecordDecl>(DC))
629 return Found;
630
631 // C++ [temp.mem]p6:
632 // A specialization of a conversion function template is not found by
633 // name lookup. Instead, any conversion function templates visible in the
634 // context of the use are considered. [...]
635 const CXXRecordDecl *Record = cast<CXXRecordDecl>(DC);
636 if (!Record->isDefinition())
637 return Found;
638
639 const UnresolvedSetImpl *Unresolved = Record->getConversionFunctions();
640 for (UnresolvedSetImpl::iterator U = Unresolved->begin(),
641 UEnd = Unresolved->end(); U != UEnd; ++U) {
642 FunctionTemplateDecl *ConvTemplate = dyn_cast<FunctionTemplateDecl>(*U);
643 if (!ConvTemplate)
644 continue;
645
646 // When we're performing lookup for the purposes of redeclaration, just
647 // add the conversion function template. When we deduce template
648 // arguments for specializations, we'll end up unifying the return
649 // type of the new declaration with the type of the function template.
650 if (R.isForRedeclaration()) {
651 R.addDecl(ConvTemplate);
652 Found = true;
653 continue;
654 }
655
Douglas Gregor48026d22010-01-11 18:40:55 +0000656 // C++ [temp.mem]p6:
Chandler Carruthaaa1a892010-01-31 11:44:02 +0000657 // [...] For each such operator, if argument deduction succeeds
658 // (14.9.2.3), the resulting specialization is used as if found by
659 // name lookup.
660 //
661 // When referencing a conversion function for any purpose other than
662 // a redeclaration (such that we'll be building an expression with the
663 // result), perform template argument deduction and place the
664 // specialization into the result set. We do this to avoid forcing all
665 // callers to perform special deduction for conversion functions.
John McCall2a7fb272010-08-25 05:32:35 +0000666 TemplateDeductionInfo Info(R.getSema().Context, R.getNameLoc());
Chandler Carruthaaa1a892010-01-31 11:44:02 +0000667 FunctionDecl *Specialization = 0;
668
669 const FunctionProtoType *ConvProto
670 = ConvTemplate->getTemplatedDecl()->getType()->getAs<FunctionProtoType>();
671 assert(ConvProto && "Nonsensical conversion function template type");
Douglas Gregor3f477a12010-01-12 01:17:50 +0000672
Chandler Carruthaaa1a892010-01-31 11:44:02 +0000673 // Compute the type of the function that we would expect the conversion
674 // function to have, if it were to match the name given.
675 // FIXME: Calling convention!
Rafael Espindola264ba482010-03-30 20:24:48 +0000676 FunctionType::ExtInfo ConvProtoInfo = ConvProto->getExtInfo();
Chandler Carruthaaa1a892010-01-31 11:44:02 +0000677 QualType ExpectedType
678 = R.getSema().Context.getFunctionType(R.getLookupName().getCXXNameType(),
679 0, 0, ConvProto->isVariadic(),
680 ConvProto->getTypeQuals(),
681 false, false, 0, 0,
Rafael Espindola264ba482010-03-30 20:24:48 +0000682 ConvProtoInfo.withCallingConv(CC_Default));
Chandler Carruthaaa1a892010-01-31 11:44:02 +0000683
684 // Perform template argument deduction against the type that we would
685 // expect the function to have.
686 if (R.getSema().DeduceTemplateArguments(ConvTemplate, 0, ExpectedType,
687 Specialization, Info)
688 == Sema::TDK_Success) {
689 R.addDecl(Specialization);
690 Found = true;
Douglas Gregor48026d22010-01-11 18:40:55 +0000691 }
692 }
Chandler Carruthaaa1a892010-01-31 11:44:02 +0000693
John McCallf36e02d2009-10-09 21:13:30 +0000694 return Found;
695}
696
John McCalld7be78a2009-11-10 07:01:13 +0000697// Performs C++ unqualified lookup into the given file context.
John McCallf36e02d2009-10-09 21:13:30 +0000698static bool
Douglas Gregor85910982010-02-12 05:48:04 +0000699CppNamespaceLookup(Sema &S, LookupResult &R, ASTContext &Context,
700 DeclContext *NS, UnqualUsingDirectiveSet &UDirs) {
Douglas Gregor7dda67d2009-02-05 19:25:20 +0000701
702 assert(NS && NS->isFileContext() && "CppNamespaceLookup() requires namespace!");
703
John McCalld7be78a2009-11-10 07:01:13 +0000704 // Perform direct name lookup into the LookupCtx.
Douglas Gregor85910982010-02-12 05:48:04 +0000705 bool Found = LookupDirect(S, R, NS);
Douglas Gregor7dda67d2009-02-05 19:25:20 +0000706
John McCalld7be78a2009-11-10 07:01:13 +0000707 // Perform direct name lookup into the namespaces nominated by the
708 // using directives whose common ancestor is this namespace.
709 UnqualUsingDirectiveSet::const_iterator UI, UEnd;
710 llvm::tie(UI, UEnd) = UDirs.getNamespacesFor(NS);
Mike Stump1eb44332009-09-09 15:08:12 +0000711
John McCalld7be78a2009-11-10 07:01:13 +0000712 for (; UI != UEnd; ++UI)
Douglas Gregor85910982010-02-12 05:48:04 +0000713 if (LookupDirect(S, R, UI->getNominatedNamespace()))
John McCalld7be78a2009-11-10 07:01:13 +0000714 Found = true;
John McCallf36e02d2009-10-09 21:13:30 +0000715
716 R.resolveKind();
717
718 return Found;
Douglas Gregor7dda67d2009-02-05 19:25:20 +0000719}
720
721static bool isNamespaceOrTranslationUnitScope(Scope *S) {
Douglas Gregor2a3009a2009-02-03 19:21:40 +0000722 if (DeclContext *Ctx = static_cast<DeclContext*>(S->getEntity()))
Douglas Gregor7dda67d2009-02-05 19:25:20 +0000723 return Ctx->isFileContext();
724 return false;
Douglas Gregor2a3009a2009-02-03 19:21:40 +0000725}
Douglas Gregor4c921ae2009-01-30 01:04:22 +0000726
Douglas Gregor711be1e2010-03-15 14:33:29 +0000727// Find the next outer declaration context from this scope. This
728// routine actually returns the semantic outer context, which may
729// differ from the lexical context (encoded directly in the Scope
730// stack) when we are parsing a member of a class template. In this
731// case, the second element of the pair will be true, to indicate that
732// name lookup should continue searching in this semantic context when
733// it leaves the current template parameter scope.
734static std::pair<DeclContext *, bool> findOuterContext(Scope *S) {
735 DeclContext *DC = static_cast<DeclContext *>(S->getEntity());
736 DeclContext *Lexical = 0;
737 for (Scope *OuterS = S->getParent(); OuterS;
738 OuterS = OuterS->getParent()) {
739 if (OuterS->getEntity()) {
Douglas Gregordbdf5e72010-03-15 15:26:48 +0000740 Lexical = static_cast<DeclContext *>(OuterS->getEntity());
Douglas Gregor711be1e2010-03-15 14:33:29 +0000741 break;
742 }
743 }
744
745 // C++ [temp.local]p8:
746 // In the definition of a member of a class template that appears
747 // outside of the namespace containing the class template
748 // definition, the name of a template-parameter hides the name of
749 // a member of this namespace.
750 //
751 // Example:
752 //
753 // namespace N {
754 // class C { };
755 //
756 // template<class T> class B {
757 // void f(T);
758 // };
759 // }
760 //
761 // template<class C> void N::B<C>::f(C) {
762 // C b; // C is the template parameter, not N::C
763 // }
764 //
765 // In this example, the lexical context we return is the
766 // TranslationUnit, while the semantic context is the namespace N.
767 if (!Lexical || !DC || !S->getParent() ||
768 !S->getParent()->isTemplateParamScope())
769 return std::make_pair(Lexical, false);
770
771 // Find the outermost template parameter scope.
772 // For the example, this is the scope for the template parameters of
773 // template<class C>.
774 Scope *OutermostTemplateScope = S->getParent();
775 while (OutermostTemplateScope->getParent() &&
776 OutermostTemplateScope->getParent()->isTemplateParamScope())
777 OutermostTemplateScope = OutermostTemplateScope->getParent();
Douglas Gregore942bbe2009-09-10 16:57:35 +0000778
Douglas Gregor711be1e2010-03-15 14:33:29 +0000779 // Find the namespace context in which the original scope occurs. In
780 // the example, this is namespace N.
781 DeclContext *Semantic = DC;
782 while (!Semantic->isFileContext())
783 Semantic = Semantic->getParent();
784
785 // Find the declaration context just outside of the template
786 // parameter scope. This is the context in which the template is
787 // being lexically declaration (a namespace context). In the
788 // example, this is the global scope.
789 if (Lexical->isFileContext() && !Lexical->Equals(Semantic) &&
790 Lexical->Encloses(Semantic))
791 return std::make_pair(Semantic, true);
792
793 return std::make_pair(Lexical, false);
Douglas Gregore942bbe2009-09-10 16:57:35 +0000794}
795
John McCalla24dc2e2009-11-17 02:14:36 +0000796bool Sema::CppLookupName(LookupResult &R, Scope *S) {
John McCall1d7c5282009-12-18 10:40:03 +0000797 assert(getLangOptions().CPlusPlus && "Can perform only C++ lookup");
John McCalla24dc2e2009-11-17 02:14:36 +0000798
799 DeclarationName Name = R.getLookupName();
800
Douglas Gregora376d102010-07-02 21:50:04 +0000801 // If this is the name of an implicitly-declared special member function,
802 // go through the scope stack to implicitly declare
803 if (isImplicitlyDeclaredMemberFunctionName(Name)) {
804 for (Scope *PreS = S; PreS; PreS = PreS->getParent())
805 if (DeclContext *DC = static_cast<DeclContext *>(PreS->getEntity()))
806 DeclareImplicitMemberFunctionsWithName(*this, Name, DC);
807 }
808
809 // Implicitly declare member functions with the name we're looking for, if in
810 // fact we are in a scope where it matters.
811
Douglas Gregor2a3009a2009-02-03 19:21:40 +0000812 Scope *Initial = S;
Mike Stump1eb44332009-09-09 15:08:12 +0000813 IdentifierResolver::iterator
Douglas Gregor2a3009a2009-02-03 19:21:40 +0000814 I = IdResolver.begin(Name),
815 IEnd = IdResolver.end();
Douglas Gregor4c921ae2009-01-30 01:04:22 +0000816
Douglas Gregor2a3009a2009-02-03 19:21:40 +0000817 // First we lookup local scope.
Douglas Gregoraaba5e32009-02-04 19:02:06 +0000818 // We don't consider using-directives, as per 7.3.4.p1 [namespace.udir]
Douglas Gregor2a3009a2009-02-03 19:21:40 +0000819 // ...During unqualified name lookup (3.4.1), the names appear as if
820 // they were declared in the nearest enclosing namespace which contains
821 // both the using-directive and the nominated namespace.
Eli Friedman33a31382009-08-05 19:21:58 +0000822 // [Note: in this context, "contains" means "contains directly or
Mike Stump1eb44332009-09-09 15:08:12 +0000823 // indirectly".
Douglas Gregor2a3009a2009-02-03 19:21:40 +0000824 //
825 // For example:
826 // namespace A { int i; }
827 // void foo() {
828 // int i;
829 // {
830 // using namespace A;
831 // ++i; // finds local 'i', A::i appears at global scope
832 // }
833 // }
Douglas Gregor47b9a1c2009-02-04 17:27:36 +0000834 //
Douglas Gregor711be1e2010-03-15 14:33:29 +0000835 DeclContext *OutsideOfTemplateParamDC = 0;
Douglas Gregor7dda67d2009-02-05 19:25:20 +0000836 for (; S && !isNamespaceOrTranslationUnitScope(S); S = S->getParent()) {
Douglas Gregord2235f62010-05-20 20:58:56 +0000837 DeclContext *Ctx = static_cast<DeclContext*>(S->getEntity());
838
Douglas Gregor2a3009a2009-02-03 19:21:40 +0000839 // Check whether the IdResolver has anything in this scope.
John McCallf36e02d2009-10-09 21:13:30 +0000840 bool Found = false;
John McCalld226f652010-08-21 09:40:31 +0000841 for (; I != IEnd && S->isDeclScope(*I); ++I) {
John McCall1d7c5282009-12-18 10:40:03 +0000842 if (R.isAcceptableDecl(*I)) {
John McCallf36e02d2009-10-09 21:13:30 +0000843 Found = true;
844 R.addDecl(*I);
Douglas Gregor2a3009a2009-02-03 19:21:40 +0000845 }
846 }
John McCallf36e02d2009-10-09 21:13:30 +0000847 if (Found) {
848 R.resolveKind();
Douglas Gregord2235f62010-05-20 20:58:56 +0000849 if (S->isClassScope())
850 if (CXXRecordDecl *Record = dyn_cast_or_null<CXXRecordDecl>(Ctx))
851 R.setNamingClass(Record);
John McCallf36e02d2009-10-09 21:13:30 +0000852 return true;
853 }
854
Douglas Gregor711be1e2010-03-15 14:33:29 +0000855 if (!Ctx && S->isTemplateParamScope() && OutsideOfTemplateParamDC &&
856 S->getParent() && !S->getParent()->isTemplateParamScope()) {
857 // We've just searched the last template parameter scope and
858 // found nothing, so look into the the contexts between the
859 // lexical and semantic declaration contexts returned by
860 // findOuterContext(). This implements the name lookup behavior
861 // of C++ [temp.local]p8.
862 Ctx = OutsideOfTemplateParamDC;
863 OutsideOfTemplateParamDC = 0;
864 }
865
866 if (Ctx) {
867 DeclContext *OuterCtx;
868 bool SearchAfterTemplateScope;
869 llvm::tie(OuterCtx, SearchAfterTemplateScope) = findOuterContext(S);
870 if (SearchAfterTemplateScope)
871 OutsideOfTemplateParamDC = OuterCtx;
872
Douglas Gregordbdf5e72010-03-15 15:26:48 +0000873 for (; Ctx && !Ctx->Equals(OuterCtx); Ctx = Ctx->getLookupParent()) {
Douglas Gregor36262b82010-02-19 16:08:35 +0000874 // We do not directly look into transparent contexts, since
875 // those entities will be found in the nearest enclosing
876 // non-transparent context.
877 if (Ctx->isTransparentContext())
Douglas Gregore942bbe2009-09-10 16:57:35 +0000878 continue;
Douglas Gregor36262b82010-02-19 16:08:35 +0000879
880 // We do not look directly into function or method contexts,
881 // since all of the local variables and parameters of the
882 // function/method are present within the Scope.
883 if (Ctx->isFunctionOrMethod()) {
884 // If we have an Objective-C instance method, look for ivars
885 // in the corresponding interface.
886 if (ObjCMethodDecl *Method = dyn_cast<ObjCMethodDecl>(Ctx)) {
887 if (Method->isInstanceMethod() && Name.getAsIdentifierInfo())
888 if (ObjCInterfaceDecl *Class = Method->getClassInterface()) {
889 ObjCInterfaceDecl *ClassDeclared;
890 if (ObjCIvarDecl *Ivar = Class->lookupInstanceVariable(
891 Name.getAsIdentifierInfo(),
892 ClassDeclared)) {
893 if (R.isAcceptableDecl(Ivar)) {
894 R.addDecl(Ivar);
895 R.resolveKind();
896 return true;
897 }
898 }
899 }
900 }
901
902 continue;
903 }
904
Douglas Gregore942bbe2009-09-10 16:57:35 +0000905 // Perform qualified name lookup into this context.
906 // FIXME: In some cases, we know that every name that could be found by
907 // this qualified name lookup will also be on the identifier chain. For
908 // example, inside a class without any base classes, we never need to
909 // perform qualified lookup because all of the members are on top of the
910 // identifier chain.
Douglas Gregor7d3f5762010-01-15 01:44:47 +0000911 if (LookupQualifiedName(R, Ctx, /*InUnqualifiedLookup=*/true))
John McCallf36e02d2009-10-09 21:13:30 +0000912 return true;
Douglas Gregor551f48c2009-03-27 04:21:56 +0000913 }
Douglas Gregor7dda67d2009-02-05 19:25:20 +0000914 }
Douglas Gregor4c921ae2009-01-30 01:04:22 +0000915 }
Douglas Gregor2a3009a2009-02-03 19:21:40 +0000916
John McCalld7be78a2009-11-10 07:01:13 +0000917 // Stop if we ran out of scopes.
918 // FIXME: This really, really shouldn't be happening.
919 if (!S) return false;
920
Douglas Gregor7dda67d2009-02-05 19:25:20 +0000921 // Collect UsingDirectiveDecls in all scopes, and recursively all
Douglas Gregor2a3009a2009-02-03 19:21:40 +0000922 // nominated namespaces by those using-directives.
John McCalld7be78a2009-11-10 07:01:13 +0000923 //
Mike Stump390b4cc2009-05-16 07:39:55 +0000924 // FIXME: Cache this sorted list in Scope structure, and DeclContext, so we
925 // don't build it for each lookup!
Douglas Gregor2a3009a2009-02-03 19:21:40 +0000926
John McCalld7be78a2009-11-10 07:01:13 +0000927 UnqualUsingDirectiveSet UDirs;
928 UDirs.visitScopeChain(Initial, S);
929 UDirs.done();
Douglas Gregor2a3009a2009-02-03 19:21:40 +0000930
Douglas Gregor7dda67d2009-02-05 19:25:20 +0000931 // Lookup namespace scope, and global scope.
Douglas Gregor2a3009a2009-02-03 19:21:40 +0000932 // Unqualified name lookup in C++ requires looking into scopes
933 // that aren't strictly lexical, and therefore we walk through the
934 // context as well as walking through the scopes.
Douglas Gregor7dda67d2009-02-05 19:25:20 +0000935
Douglas Gregor2a3009a2009-02-03 19:21:40 +0000936 for (; S; S = S->getParent()) {
Douglas Gregor2a3009a2009-02-03 19:21:40 +0000937 // Check whether the IdResolver has anything in this scope.
John McCallf36e02d2009-10-09 21:13:30 +0000938 bool Found = false;
John McCalld226f652010-08-21 09:40:31 +0000939 for (; I != IEnd && S->isDeclScope(*I); ++I) {
John McCall1d7c5282009-12-18 10:40:03 +0000940 if (R.isAcceptableDecl(*I)) {
Douglas Gregor2a3009a2009-02-03 19:21:40 +0000941 // We found something. Look for anything else in our scope
942 // with this same name and in an acceptable identifier
943 // namespace, so that we can construct an overload set if we
944 // need to.
John McCallf36e02d2009-10-09 21:13:30 +0000945 Found = true;
946 R.addDecl(*I);
Douglas Gregor2a3009a2009-02-03 19:21:40 +0000947 }
948 }
949
Douglas Gregor00b4b032010-05-14 04:53:42 +0000950 if (Found && S->isTemplateParamScope()) {
John McCallf36e02d2009-10-09 21:13:30 +0000951 R.resolveKind();
952 return true;
953 }
954
Douglas Gregor00b4b032010-05-14 04:53:42 +0000955 DeclContext *Ctx = static_cast<DeclContext *>(S->getEntity());
956 if (!Ctx && S->isTemplateParamScope() && OutsideOfTemplateParamDC &&
957 S->getParent() && !S->getParent()->isTemplateParamScope()) {
958 // We've just searched the last template parameter scope and
959 // found nothing, so look into the the contexts between the
960 // lexical and semantic declaration contexts returned by
961 // findOuterContext(). This implements the name lookup behavior
962 // of C++ [temp.local]p8.
963 Ctx = OutsideOfTemplateParamDC;
964 OutsideOfTemplateParamDC = 0;
965 }
966
967 if (Ctx) {
968 DeclContext *OuterCtx;
969 bool SearchAfterTemplateScope;
970 llvm::tie(OuterCtx, SearchAfterTemplateScope) = findOuterContext(S);
971 if (SearchAfterTemplateScope)
972 OutsideOfTemplateParamDC = OuterCtx;
973
974 for (; Ctx && !Ctx->Equals(OuterCtx); Ctx = Ctx->getLookupParent()) {
975 // We do not directly look into transparent contexts, since
976 // those entities will be found in the nearest enclosing
977 // non-transparent context.
978 if (Ctx->isTransparentContext())
979 continue;
980
981 // If we have a context, and it's not a context stashed in the
982 // template parameter scope for an out-of-line definition, also
983 // look into that context.
984 if (!(Found && S && S->isTemplateParamScope())) {
985 assert(Ctx->isFileContext() &&
986 "We should have been looking only at file context here already.");
987
988 // Look into context considering using-directives.
989 if (CppNamespaceLookup(*this, R, Context, Ctx, UDirs))
990 Found = true;
991 }
992
993 if (Found) {
994 R.resolveKind();
995 return true;
996 }
997
998 if (R.isForRedeclaration() && !Ctx->isTransparentContext())
999 return false;
1000 }
1001 }
1002
Douglas Gregor1df0ee92010-02-05 07:07:10 +00001003 if (R.isForRedeclaration() && Ctx && !Ctx->isTransparentContext())
John McCallf36e02d2009-10-09 21:13:30 +00001004 return false;
Douglas Gregor7dda67d2009-02-05 19:25:20 +00001005 }
Douglas Gregor2a3009a2009-02-03 19:21:40 +00001006
John McCallf36e02d2009-10-09 21:13:30 +00001007 return !R.empty();
Douglas Gregor4c921ae2009-01-30 01:04:22 +00001008}
1009
Douglas Gregoreb11cd02009-01-14 22:20:51 +00001010/// @brief Perform unqualified name lookup starting from a given
1011/// scope.
1012///
1013/// Unqualified name lookup (C++ [basic.lookup.unqual], C99 6.2.1) is
1014/// used to find names within the current scope. For example, 'x' in
1015/// @code
1016/// int x;
1017/// int f() {
1018/// return x; // unqualified name look finds 'x' in the global scope
1019/// }
1020/// @endcode
1021///
1022/// Different lookup criteria can find different names. For example, a
1023/// particular scope can have both a struct and a function of the same
1024/// name, and each can be found by certain lookup criteria. For more
1025/// information about lookup criteria, see the documentation for the
1026/// class LookupCriteria.
1027///
1028/// @param S The scope from which unqualified name lookup will
1029/// begin. If the lookup criteria permits, name lookup may also search
1030/// in the parent scopes.
1031///
1032/// @param Name The name of the entity that we are searching for.
1033///
Douglas Gregor3e41d602009-02-13 23:20:09 +00001034/// @param Loc If provided, the source location where we're performing
Mike Stump1eb44332009-09-09 15:08:12 +00001035/// name lookup. At present, this is only used to produce diagnostics when
Douglas Gregor3e41d602009-02-13 23:20:09 +00001036/// C library functions (like "malloc") are implicitly declared.
Douglas Gregoreb11cd02009-01-14 22:20:51 +00001037///
1038/// @returns The result of name lookup, which includes zero or more
1039/// declarations and possibly additional information used to diagnose
1040/// ambiguities.
John McCalla24dc2e2009-11-17 02:14:36 +00001041bool Sema::LookupName(LookupResult &R, Scope *S, bool AllowBuiltinCreation) {
1042 DeclarationName Name = R.getLookupName();
John McCallf36e02d2009-10-09 21:13:30 +00001043 if (!Name) return false;
Douglas Gregoreb11cd02009-01-14 22:20:51 +00001044
John McCalla24dc2e2009-11-17 02:14:36 +00001045 LookupNameKind NameKind = R.getLookupKind();
1046
Douglas Gregoreb11cd02009-01-14 22:20:51 +00001047 if (!getLangOptions().CPlusPlus) {
1048 // Unqualified name lookup in C/Objective-C is purely lexical, so
1049 // search in the declarations attached to the name.
1050
John McCall1d7c5282009-12-18 10:40:03 +00001051 if (NameKind == Sema::LookupRedeclarationWithLinkage) {
Douglas Gregord6f7e9d2009-02-24 20:03:32 +00001052 // Find the nearest non-transparent declaration scope.
1053 while (!(S->getFlags() & Scope::DeclScope) ||
Mike Stump1eb44332009-09-09 15:08:12 +00001054 (S->getEntity() &&
Douglas Gregord6f7e9d2009-02-24 20:03:32 +00001055 static_cast<DeclContext *>(S->getEntity())
1056 ->isTransparentContext()))
1057 S = S->getParent();
Douglas Gregor4c921ae2009-01-30 01:04:22 +00001058 }
1059
John McCall1d7c5282009-12-18 10:40:03 +00001060 unsigned IDNS = R.getIdentifierNamespace();
1061
Douglas Gregoreb11cd02009-01-14 22:20:51 +00001062 // Scan up the scope chain looking for a decl that matches this
1063 // identifier that is in the appropriate namespace. This search
1064 // should not take long, as shadowing of names is uncommon, and
1065 // deep shadowing is extremely uncommon.
Douglas Gregord6f7e9d2009-02-24 20:03:32 +00001066 bool LeftStartingScope = false;
1067
Douglas Gregor4c921ae2009-01-30 01:04:22 +00001068 for (IdentifierResolver::iterator I = IdResolver.begin(Name),
Mike Stump1eb44332009-09-09 15:08:12 +00001069 IEnd = IdResolver.end();
Douglas Gregor4c921ae2009-01-30 01:04:22 +00001070 I != IEnd; ++I)
Douglas Gregorf9201e02009-02-11 23:02:49 +00001071 if ((*I)->isInIdentifierNamespace(IDNS)) {
Douglas Gregord6f7e9d2009-02-24 20:03:32 +00001072 if (NameKind == LookupRedeclarationWithLinkage) {
1073 // Determine whether this (or a previous) declaration is
1074 // out-of-scope.
John McCalld226f652010-08-21 09:40:31 +00001075 if (!LeftStartingScope && !S->isDeclScope(*I))
Douglas Gregord6f7e9d2009-02-24 20:03:32 +00001076 LeftStartingScope = true;
1077
1078 // If we found something outside of our starting scope that
1079 // does not have linkage, skip it.
1080 if (LeftStartingScope && !((*I)->hasLinkage()))
1081 continue;
1082 }
1083
John McCallf36e02d2009-10-09 21:13:30 +00001084 R.addDecl(*I);
1085
Argyrios Kyrtzidis40b598e2009-06-30 02:34:44 +00001086 if ((*I)->getAttr<OverloadableAttr>()) {
Douglas Gregorf9201e02009-02-11 23:02:49 +00001087 // If this declaration has the "overloadable" attribute, we
1088 // might have a set of overloaded functions.
1089
1090 // Figure out what scope the identifier is in.
Chris Lattnerb28317a2009-03-28 19:18:32 +00001091 while (!(S->getFlags() & Scope::DeclScope) ||
John McCalld226f652010-08-21 09:40:31 +00001092 !S->isDeclScope(*I))
Douglas Gregorf9201e02009-02-11 23:02:49 +00001093 S = S->getParent();
1094
1095 // Find the last declaration in this scope (with the same
1096 // name, naturally).
1097 IdentifierResolver::iterator LastI = I;
1098 for (++LastI; LastI != IEnd; ++LastI) {
John McCalld226f652010-08-21 09:40:31 +00001099 if (!S->isDeclScope(*LastI))
Douglas Gregorf9201e02009-02-11 23:02:49 +00001100 break;
John McCallf36e02d2009-10-09 21:13:30 +00001101 R.addDecl(*LastI);
Douglas Gregorf9201e02009-02-11 23:02:49 +00001102 }
Douglas Gregorf9201e02009-02-11 23:02:49 +00001103 }
1104
John McCallf36e02d2009-10-09 21:13:30 +00001105 R.resolveKind();
1106
1107 return true;
Douglas Gregorf9201e02009-02-11 23:02:49 +00001108 }
Douglas Gregoreb11cd02009-01-14 22:20:51 +00001109 } else {
Douglas Gregor2a3009a2009-02-03 19:21:40 +00001110 // Perform C++ unqualified name lookup.
John McCalla24dc2e2009-11-17 02:14:36 +00001111 if (CppLookupName(R, S))
John McCallf36e02d2009-10-09 21:13:30 +00001112 return true;
Douglas Gregoreb11cd02009-01-14 22:20:51 +00001113 }
1114
1115 // If we didn't find a use of this identifier, and if the identifier
1116 // corresponds to a compiler builtin, create the decl object for the builtin
1117 // now, injecting it into translation unit scope, and return it.
Douglas Gregor85910982010-02-12 05:48:04 +00001118 if (AllowBuiltinCreation)
1119 return LookupBuiltin(*this, R);
Douglas Gregor3e41d602009-02-13 23:20:09 +00001120
John McCallf36e02d2009-10-09 21:13:30 +00001121 return false;
Douglas Gregoreb11cd02009-01-14 22:20:51 +00001122}
1123
John McCall6e247262009-10-10 05:48:19 +00001124/// @brief Perform qualified name lookup in the namespaces nominated by
1125/// using directives by the given context.
1126///
1127/// C++98 [namespace.qual]p2:
1128/// Given X::m (where X is a user-declared namespace), or given ::m
1129/// (where X is the global namespace), let S be the set of all
1130/// declarations of m in X and in the transitive closure of all
1131/// namespaces nominated by using-directives in X and its used
1132/// namespaces, except that using-directives are ignored in any
1133/// namespace, including X, directly containing one or more
1134/// declarations of m. No namespace is searched more than once in
1135/// the lookup of a name. If S is the empty set, the program is
1136/// ill-formed. Otherwise, if S has exactly one member, or if the
1137/// context of the reference is a using-declaration
1138/// (namespace.udecl), S is the required set of declarations of
1139/// m. Otherwise if the use of m is not one that allows a unique
1140/// declaration to be chosen from S, the program is ill-formed.
1141/// C++98 [namespace.qual]p5:
1142/// During the lookup of a qualified namespace member name, if the
1143/// lookup finds more than one declaration of the member, and if one
1144/// declaration introduces a class name or enumeration name and the
1145/// other declarations either introduce the same object, the same
1146/// enumerator or a set of functions, the non-type name hides the
1147/// class or enumeration name if and only if the declarations are
1148/// from the same namespace; otherwise (the declarations are from
1149/// different namespaces), the program is ill-formed.
Douglas Gregor85910982010-02-12 05:48:04 +00001150static bool LookupQualifiedNameInUsingDirectives(Sema &S, LookupResult &R,
John McCalla24dc2e2009-11-17 02:14:36 +00001151 DeclContext *StartDC) {
John McCall6e247262009-10-10 05:48:19 +00001152 assert(StartDC->isFileContext() && "start context is not a file context");
1153
1154 DeclContext::udir_iterator I = StartDC->using_directives_begin();
1155 DeclContext::udir_iterator E = StartDC->using_directives_end();
1156
1157 if (I == E) return false;
1158
1159 // We have at least added all these contexts to the queue.
1160 llvm::DenseSet<DeclContext*> Visited;
1161 Visited.insert(StartDC);
1162
1163 // We have not yet looked into these namespaces, much less added
1164 // their "using-children" to the queue.
1165 llvm::SmallVector<NamespaceDecl*, 8> Queue;
1166
1167 // We have already looked into the initial namespace; seed the queue
1168 // with its using-children.
1169 for (; I != E; ++I) {
John McCalld9f01d42009-11-10 09:25:37 +00001170 NamespaceDecl *ND = (*I)->getNominatedNamespace()->getOriginalNamespace();
John McCall6e247262009-10-10 05:48:19 +00001171 if (Visited.insert(ND).second)
1172 Queue.push_back(ND);
1173 }
1174
1175 // The easiest way to implement the restriction in [namespace.qual]p5
1176 // is to check whether any of the individual results found a tag
1177 // and, if so, to declare an ambiguity if the final result is not
1178 // a tag.
1179 bool FoundTag = false;
1180 bool FoundNonTag = false;
1181
John McCall7d384dd2009-11-18 07:57:50 +00001182 LookupResult LocalR(LookupResult::Temporary, R);
John McCall6e247262009-10-10 05:48:19 +00001183
1184 bool Found = false;
1185 while (!Queue.empty()) {
1186 NamespaceDecl *ND = Queue.back();
1187 Queue.pop_back();
1188
1189 // We go through some convolutions here to avoid copying results
1190 // between LookupResults.
1191 bool UseLocal = !R.empty();
John McCall7d384dd2009-11-18 07:57:50 +00001192 LookupResult &DirectR = UseLocal ? LocalR : R;
Douglas Gregor85910982010-02-12 05:48:04 +00001193 bool FoundDirect = LookupDirect(S, DirectR, ND);
John McCall6e247262009-10-10 05:48:19 +00001194
1195 if (FoundDirect) {
1196 // First do any local hiding.
1197 DirectR.resolveKind();
1198
1199 // If the local result is a tag, remember that.
1200 if (DirectR.isSingleTagDecl())
1201 FoundTag = true;
1202 else
1203 FoundNonTag = true;
1204
1205 // Append the local results to the total results if necessary.
1206 if (UseLocal) {
1207 R.addAllDecls(LocalR);
1208 LocalR.clear();
1209 }
1210 }
1211
1212 // If we find names in this namespace, ignore its using directives.
1213 if (FoundDirect) {
1214 Found = true;
1215 continue;
1216 }
1217
1218 for (llvm::tie(I,E) = ND->getUsingDirectives(); I != E; ++I) {
1219 NamespaceDecl *Nom = (*I)->getNominatedNamespace();
1220 if (Visited.insert(Nom).second)
1221 Queue.push_back(Nom);
1222 }
1223 }
1224
1225 if (Found) {
1226 if (FoundTag && FoundNonTag)
1227 R.setAmbiguousQualifiedTagHiding();
1228 else
1229 R.resolveKind();
1230 }
1231
1232 return Found;
1233}
1234
Douglas Gregor8071e422010-08-15 06:18:01 +00001235/// \brief Callback that looks for any member of a class with the given name.
1236static bool LookupAnyMember(const CXXBaseSpecifier *Specifier,
1237 CXXBasePath &Path,
1238 void *Name) {
1239 RecordDecl *BaseRecord = Specifier->getType()->getAs<RecordType>()->getDecl();
1240
1241 DeclarationName N = DeclarationName::getFromOpaquePtr(Name);
1242 Path.Decls = BaseRecord->lookup(N);
1243 return Path.Decls.first != Path.Decls.second;
1244}
1245
Douglas Gregorf17b58c2010-10-22 22:08:47 +00001246/// \brief Determine whether the given set of member declarations contains only
1247/// static members, nested types, and enumerators.
1248template<typename InputIterator>
1249static bool HasOnlyStaticMembers(InputIterator First, InputIterator Last) {
1250 Decl *D = (*First)->getUnderlyingDecl();
1251 if (isa<VarDecl>(D) || isa<TypeDecl>(D) || isa<EnumConstantDecl>(D))
1252 return true;
1253
1254 if (isa<CXXMethodDecl>(D)) {
1255 // Determine whether all of the methods are static.
1256 bool AllMethodsAreStatic = true;
1257 for(; First != Last; ++First) {
1258 D = (*First)->getUnderlyingDecl();
1259
1260 if (!isa<CXXMethodDecl>(D)) {
1261 assert(isa<TagDecl>(D) && "Non-function must be a tag decl");
1262 break;
1263 }
1264
1265 if (!cast<CXXMethodDecl>(D)->isStatic()) {
1266 AllMethodsAreStatic = false;
1267 break;
1268 }
1269 }
1270
1271 if (AllMethodsAreStatic)
1272 return true;
1273 }
1274
1275 return false;
1276}
1277
Douglas Gregor7d3f5762010-01-15 01:44:47 +00001278/// \brief Perform qualified name lookup into a given context.
Douglas Gregoreb11cd02009-01-14 22:20:51 +00001279///
1280/// Qualified name lookup (C++ [basic.lookup.qual]) is used to find
1281/// names when the context of those names is explicit specified, e.g.,
Douglas Gregor7d3f5762010-01-15 01:44:47 +00001282/// "std::vector" or "x->member", or as part of unqualified name lookup.
Douglas Gregoreb11cd02009-01-14 22:20:51 +00001283///
1284/// Different lookup criteria can find different names. For example, a
1285/// particular scope can have both a struct and a function of the same
1286/// name, and each can be found by certain lookup criteria. For more
1287/// information about lookup criteria, see the documentation for the
1288/// class LookupCriteria.
1289///
Douglas Gregor7d3f5762010-01-15 01:44:47 +00001290/// \param R captures both the lookup criteria and any lookup results found.
1291///
1292/// \param LookupCtx The context in which qualified name lookup will
Douglas Gregoreb11cd02009-01-14 22:20:51 +00001293/// search. If the lookup criteria permits, name lookup may also search
1294/// in the parent contexts or (for C++ classes) base classes.
1295///
Douglas Gregor7d3f5762010-01-15 01:44:47 +00001296/// \param InUnqualifiedLookup true if this is qualified name lookup that
1297/// occurs as part of unqualified name lookup.
Douglas Gregoreb11cd02009-01-14 22:20:51 +00001298///
Douglas Gregor7d3f5762010-01-15 01:44:47 +00001299/// \returns true if lookup succeeded, false if it failed.
1300bool Sema::LookupQualifiedName(LookupResult &R, DeclContext *LookupCtx,
1301 bool InUnqualifiedLookup) {
Douglas Gregoreb11cd02009-01-14 22:20:51 +00001302 assert(LookupCtx && "Sema::LookupQualifiedName requires a lookup context");
Mike Stump1eb44332009-09-09 15:08:12 +00001303
John McCalla24dc2e2009-11-17 02:14:36 +00001304 if (!R.getLookupName())
John McCallf36e02d2009-10-09 21:13:30 +00001305 return false;
Mike Stump1eb44332009-09-09 15:08:12 +00001306
Douglas Gregor2dd078a2009-09-02 22:59:36 +00001307 // Make sure that the declaration context is complete.
1308 assert((!isa<TagDecl>(LookupCtx) ||
1309 LookupCtx->isDependentContext() ||
1310 cast<TagDecl>(LookupCtx)->isDefinition() ||
1311 Context.getTypeDeclType(cast<TagDecl>(LookupCtx))->getAs<TagType>()
1312 ->isBeingDefined()) &&
1313 "Declaration context must already be complete!");
Mike Stump1eb44332009-09-09 15:08:12 +00001314
Douglas Gregoreb11cd02009-01-14 22:20:51 +00001315 // Perform qualified name lookup into the LookupCtx.
Douglas Gregor85910982010-02-12 05:48:04 +00001316 if (LookupDirect(*this, R, LookupCtx)) {
John McCallf36e02d2009-10-09 21:13:30 +00001317 R.resolveKind();
John McCall92f88312010-01-23 00:46:32 +00001318 if (isa<CXXRecordDecl>(LookupCtx))
1319 R.setNamingClass(cast<CXXRecordDecl>(LookupCtx));
John McCallf36e02d2009-10-09 21:13:30 +00001320 return true;
1321 }
Douglas Gregoreb11cd02009-01-14 22:20:51 +00001322
John McCall6e247262009-10-10 05:48:19 +00001323 // Don't descend into implied contexts for redeclarations.
1324 // C++98 [namespace.qual]p6:
1325 // In a declaration for a namespace member in which the
1326 // declarator-id is a qualified-id, given that the qualified-id
1327 // for the namespace member has the form
1328 // nested-name-specifier unqualified-id
1329 // the unqualified-id shall name a member of the namespace
1330 // designated by the nested-name-specifier.
1331 // See also [class.mfct]p5 and [class.static.data]p2.
John McCalla24dc2e2009-11-17 02:14:36 +00001332 if (R.isForRedeclaration())
John McCall6e247262009-10-10 05:48:19 +00001333 return false;
1334
John McCalla24dc2e2009-11-17 02:14:36 +00001335 // If this is a namespace, look it up in the implied namespaces.
John McCall6e247262009-10-10 05:48:19 +00001336 if (LookupCtx->isFileContext())
Douglas Gregor85910982010-02-12 05:48:04 +00001337 return LookupQualifiedNameInUsingDirectives(*this, R, LookupCtx);
John McCall6e247262009-10-10 05:48:19 +00001338
Douglas Gregor2dd078a2009-09-02 22:59:36 +00001339 // If this isn't a C++ class, we aren't allowed to look into base
Douglas Gregor4719f4e2009-09-11 22:57:37 +00001340 // classes, we're done.
Douglas Gregor7d3f5762010-01-15 01:44:47 +00001341 CXXRecordDecl *LookupRec = dyn_cast<CXXRecordDecl>(LookupCtx);
Douglas Gregor025291b2010-07-01 00:21:21 +00001342 if (!LookupRec || !LookupRec->getDefinition())
John McCallf36e02d2009-10-09 21:13:30 +00001343 return false;
Douglas Gregor7176fff2009-01-15 00:26:24 +00001344
Douglas Gregor7d3f5762010-01-15 01:44:47 +00001345 // If we're performing qualified name lookup into a dependent class,
1346 // then we are actually looking into a current instantiation. If we have any
1347 // dependent base classes, then we either have to delay lookup until
1348 // template instantiation time (at which point all bases will be available)
1349 // or we have to fail.
1350 if (!InUnqualifiedLookup && LookupRec->isDependentContext() &&
1351 LookupRec->hasAnyDependentBases()) {
1352 R.setNotFoundInCurrentInstantiation();
1353 return false;
1354 }
1355
Douglas Gregor7176fff2009-01-15 00:26:24 +00001356 // Perform lookup into our base classes.
Douglas Gregora8f32e02009-10-06 17:59:45 +00001357 CXXBasePaths Paths;
1358 Paths.setOrigin(LookupRec);
Douglas Gregor7176fff2009-01-15 00:26:24 +00001359
1360 // Look for this member in our base classes
Douglas Gregora8f32e02009-10-06 17:59:45 +00001361 CXXRecordDecl::BaseMatchesCallback *BaseCallback = 0;
John McCalla24dc2e2009-11-17 02:14:36 +00001362 switch (R.getLookupKind()) {
Douglas Gregora8f32e02009-10-06 17:59:45 +00001363 case LookupOrdinaryName:
1364 case LookupMemberName:
1365 case LookupRedeclarationWithLinkage:
1366 BaseCallback = &CXXRecordDecl::FindOrdinaryMember;
1367 break;
1368
1369 case LookupTagName:
1370 BaseCallback = &CXXRecordDecl::FindTagMember;
1371 break;
John McCall9f54ad42009-12-10 09:41:52 +00001372
Douglas Gregor8071e422010-08-15 06:18:01 +00001373 case LookupAnyName:
1374 BaseCallback = &LookupAnyMember;
1375 break;
1376
John McCall9f54ad42009-12-10 09:41:52 +00001377 case LookupUsingDeclName:
1378 // This lookup is for redeclarations only.
Douglas Gregora8f32e02009-10-06 17:59:45 +00001379
1380 case LookupOperatorName:
1381 case LookupNamespaceName:
1382 case LookupObjCProtocolName:
Douglas Gregora8f32e02009-10-06 17:59:45 +00001383 // These lookups will never find a member in a C++ class (or base class).
John McCallf36e02d2009-10-09 21:13:30 +00001384 return false;
Douglas Gregora8f32e02009-10-06 17:59:45 +00001385
1386 case LookupNestedNameSpecifierName:
1387 BaseCallback = &CXXRecordDecl::FindNestedNameSpecifierMember;
1388 break;
1389 }
1390
John McCalla24dc2e2009-11-17 02:14:36 +00001391 if (!LookupRec->lookupInBases(BaseCallback,
1392 R.getLookupName().getAsOpaquePtr(), Paths))
John McCallf36e02d2009-10-09 21:13:30 +00001393 return false;
Douglas Gregor7176fff2009-01-15 00:26:24 +00001394
John McCall92f88312010-01-23 00:46:32 +00001395 R.setNamingClass(LookupRec);
1396
Douglas Gregor7176fff2009-01-15 00:26:24 +00001397 // C++ [class.member.lookup]p2:
1398 // [...] If the resulting set of declarations are not all from
1399 // sub-objects of the same type, or the set has a nonstatic member
1400 // and includes members from distinct sub-objects, there is an
1401 // ambiguity and the program is ill-formed. Otherwise that set is
1402 // the result of the lookup.
Douglas Gregor7176fff2009-01-15 00:26:24 +00001403 QualType SubobjectType;
Daniel Dunbarf1853192009-01-15 18:32:35 +00001404 int SubobjectNumber = 0;
John McCall7aceaf82010-03-18 23:49:19 +00001405 AccessSpecifier SubobjectAccess = AS_none;
Douglas Gregorf17b58c2010-10-22 22:08:47 +00001406
Douglas Gregora8f32e02009-10-06 17:59:45 +00001407 for (CXXBasePaths::paths_iterator Path = Paths.begin(), PathEnd = Paths.end();
Douglas Gregor7176fff2009-01-15 00:26:24 +00001408 Path != PathEnd; ++Path) {
Douglas Gregora8f32e02009-10-06 17:59:45 +00001409 const CXXBasePathElement &PathElement = Path->back();
Douglas Gregor7176fff2009-01-15 00:26:24 +00001410
John McCall46460a62010-01-20 21:53:11 +00001411 // Pick the best (i.e. most permissive i.e. numerically lowest) access
1412 // across all paths.
1413 SubobjectAccess = std::min(SubobjectAccess, Path->Access);
1414
Douglas Gregor7176fff2009-01-15 00:26:24 +00001415 // Determine whether we're looking at a distinct sub-object or not.
1416 if (SubobjectType.isNull()) {
John McCallf36e02d2009-10-09 21:13:30 +00001417 // This is the first subobject we've looked at. Record its type.
Douglas Gregor7176fff2009-01-15 00:26:24 +00001418 SubobjectType = Context.getCanonicalType(PathElement.Base->getType());
1419 SubobjectNumber = PathElement.SubobjectNumber;
Douglas Gregorf17b58c2010-10-22 22:08:47 +00001420 continue;
1421 }
1422
1423 if (SubobjectType
Douglas Gregor7176fff2009-01-15 00:26:24 +00001424 != Context.getCanonicalType(PathElement.Base->getType())) {
1425 // We found members of the given name in two subobjects of
Douglas Gregorf17b58c2010-10-22 22:08:47 +00001426 // different types. If the declaration sets aren't the same, this
1427 // this lookup is ambiguous.
1428 if (HasOnlyStaticMembers(Path->Decls.first, Path->Decls.second)) {
1429 CXXBasePaths::paths_iterator FirstPath = Paths.begin();
1430 DeclContext::lookup_iterator FirstD = FirstPath->Decls.first;
1431 DeclContext::lookup_iterator CurrentD = Path->Decls.first;
1432
1433 while (FirstD != FirstPath->Decls.second &&
1434 CurrentD != Path->Decls.second) {
1435 if ((*FirstD)->getUnderlyingDecl()->getCanonicalDecl() !=
1436 (*CurrentD)->getUnderlyingDecl()->getCanonicalDecl())
1437 break;
1438
1439 ++FirstD;
1440 ++CurrentD;
1441 }
1442
1443 if (FirstD == FirstPath->Decls.second &&
1444 CurrentD == Path->Decls.second)
1445 continue;
1446 }
1447
John McCallf36e02d2009-10-09 21:13:30 +00001448 R.setAmbiguousBaseSubobjectTypes(Paths);
1449 return true;
Douglas Gregorf17b58c2010-10-22 22:08:47 +00001450 }
1451
1452 if (SubobjectNumber != PathElement.SubobjectNumber) {
Douglas Gregor7176fff2009-01-15 00:26:24 +00001453 // We have a different subobject of the same type.
1454
1455 // C++ [class.member.lookup]p5:
1456 // A static member, a nested type or an enumerator defined in
1457 // a base class T can unambiguously be found even if an object
Mike Stump1eb44332009-09-09 15:08:12 +00001458 // has more than one base class subobject of type T.
Douglas Gregorf17b58c2010-10-22 22:08:47 +00001459 if (HasOnlyStaticMembers(Path->Decls.first, Path->Decls.second))
Douglas Gregor7176fff2009-01-15 00:26:24 +00001460 continue;
Douglas Gregorf17b58c2010-10-22 22:08:47 +00001461
Douglas Gregor7176fff2009-01-15 00:26:24 +00001462 // We have found a nonstatic member name in multiple, distinct
1463 // subobjects. Name lookup is ambiguous.
John McCallf36e02d2009-10-09 21:13:30 +00001464 R.setAmbiguousBaseSubobjects(Paths);
1465 return true;
Douglas Gregor7176fff2009-01-15 00:26:24 +00001466 }
1467 }
1468
1469 // Lookup in a base class succeeded; return these results.
1470
John McCallf36e02d2009-10-09 21:13:30 +00001471 DeclContext::lookup_iterator I, E;
John McCall92f88312010-01-23 00:46:32 +00001472 for (llvm::tie(I,E) = Paths.front().Decls; I != E; ++I) {
1473 NamedDecl *D = *I;
1474 AccessSpecifier AS = CXXRecordDecl::MergeAccess(SubobjectAccess,
1475 D->getAccess());
1476 R.addDecl(D, AS);
1477 }
John McCallf36e02d2009-10-09 21:13:30 +00001478 R.resolveKind();
1479 return true;
Douglas Gregoreb11cd02009-01-14 22:20:51 +00001480}
1481
1482/// @brief Performs name lookup for a name that was parsed in the
1483/// source code, and may contain a C++ scope specifier.
1484///
1485/// This routine is a convenience routine meant to be called from
1486/// contexts that receive a name and an optional C++ scope specifier
1487/// (e.g., "N::M::x"). It will then perform either qualified or
1488/// unqualified name lookup (with LookupQualifiedName or LookupName,
1489/// respectively) on the given name and return those results.
1490///
1491/// @param S The scope from which unqualified name lookup will
1492/// begin.
Mike Stump1eb44332009-09-09 15:08:12 +00001493///
Douglas Gregor495c35d2009-08-25 22:51:20 +00001494/// @param SS An optional C++ scope-specifier, e.g., "::N::M".
Douglas Gregoreb11cd02009-01-14 22:20:51 +00001495///
1496/// @param Name The name of the entity that name lookup will
1497/// search for.
1498///
Douglas Gregor3e41d602009-02-13 23:20:09 +00001499/// @param Loc If provided, the source location where we're performing
Mike Stump1eb44332009-09-09 15:08:12 +00001500/// name lookup. At present, this is only used to produce diagnostics when
Douglas Gregor3e41d602009-02-13 23:20:09 +00001501/// C library functions (like "malloc") are implicitly declared.
1502///
Douglas Gregor495c35d2009-08-25 22:51:20 +00001503/// @param EnteringContext Indicates whether we are going to enter the
1504/// context of the scope-specifier SS (if present).
1505///
John McCallf36e02d2009-10-09 21:13:30 +00001506/// @returns True if any decls were found (but possibly ambiguous)
Jeffrey Yasskin9ab14542010-04-08 16:38:48 +00001507bool Sema::LookupParsedName(LookupResult &R, Scope *S, CXXScopeSpec *SS,
John McCalla24dc2e2009-11-17 02:14:36 +00001508 bool AllowBuiltinCreation, bool EnteringContext) {
Douglas Gregor495c35d2009-08-25 22:51:20 +00001509 if (SS && SS->isInvalid()) {
1510 // When the scope specifier is invalid, don't even look for
Douglas Gregor42af25f2009-05-11 19:58:34 +00001511 // anything.
John McCallf36e02d2009-10-09 21:13:30 +00001512 return false;
Douglas Gregor495c35d2009-08-25 22:51:20 +00001513 }
Mike Stump1eb44332009-09-09 15:08:12 +00001514
Douglas Gregor495c35d2009-08-25 22:51:20 +00001515 if (SS && SS->isSet()) {
1516 if (DeclContext *DC = computeDeclContext(*SS, EnteringContext)) {
Mike Stump1eb44332009-09-09 15:08:12 +00001517 // We have resolved the scope specifier to a particular declaration
Douglas Gregor495c35d2009-08-25 22:51:20 +00001518 // contex, and will perform name lookup in that context.
John McCall77bb1aa2010-05-01 00:40:08 +00001519 if (!DC->isDependentContext() && RequireCompleteDeclContext(*SS, DC))
John McCallf36e02d2009-10-09 21:13:30 +00001520 return false;
Mike Stump1eb44332009-09-09 15:08:12 +00001521
John McCalla24dc2e2009-11-17 02:14:36 +00001522 R.setContextRange(SS->getRange());
1523
1524 return LookupQualifiedName(R, DC);
Douglas Gregore4e5b052009-03-19 00:18:19 +00001525 }
Douglas Gregor42af25f2009-05-11 19:58:34 +00001526
Douglas Gregor495c35d2009-08-25 22:51:20 +00001527 // We could not resolve the scope specified to a specific declaration
Mike Stump1eb44332009-09-09 15:08:12 +00001528 // context, which means that SS refers to an unknown specialization.
Douglas Gregor495c35d2009-08-25 22:51:20 +00001529 // Name lookup can't find anything in this case.
John McCallf36e02d2009-10-09 21:13:30 +00001530 return false;
Douglas Gregor4c921ae2009-01-30 01:04:22 +00001531 }
1532
Mike Stump1eb44332009-09-09 15:08:12 +00001533 // Perform unqualified name lookup starting in the given scope.
John McCalla24dc2e2009-11-17 02:14:36 +00001534 return LookupName(R, S, AllowBuiltinCreation);
Douglas Gregoreb11cd02009-01-14 22:20:51 +00001535}
1536
Douglas Gregor2a3009a2009-02-03 19:21:40 +00001537
Douglas Gregor7176fff2009-01-15 00:26:24 +00001538/// @brief Produce a diagnostic describing the ambiguity that resulted
1539/// from name lookup.
1540///
1541/// @param Result The ambiguous name lookup result.
Mike Stump1eb44332009-09-09 15:08:12 +00001542///
Douglas Gregor7176fff2009-01-15 00:26:24 +00001543/// @param Name The name of the entity that name lookup was
1544/// searching for.
1545///
1546/// @param NameLoc The location of the name within the source code.
1547///
1548/// @param LookupRange A source range that provides more
1549/// source-location information concerning the lookup itself. For
1550/// example, this range might highlight a nested-name-specifier that
1551/// precedes the name.
1552///
1553/// @returns true
John McCalla24dc2e2009-11-17 02:14:36 +00001554bool Sema::DiagnoseAmbiguousLookup(LookupResult &Result) {
Douglas Gregor7176fff2009-01-15 00:26:24 +00001555 assert(Result.isAmbiguous() && "Lookup result must be ambiguous");
1556
John McCalla24dc2e2009-11-17 02:14:36 +00001557 DeclarationName Name = Result.getLookupName();
1558 SourceLocation NameLoc = Result.getNameLoc();
1559 SourceRange LookupRange = Result.getContextRange();
1560
John McCall6e247262009-10-10 05:48:19 +00001561 switch (Result.getAmbiguityKind()) {
1562 case LookupResult::AmbiguousBaseSubobjects: {
1563 CXXBasePaths *Paths = Result.getBasePaths();
1564 QualType SubobjectType = Paths->front().back().Base->getType();
1565 Diag(NameLoc, diag::err_ambiguous_member_multiple_subobjects)
1566 << Name << SubobjectType << getAmbiguousPathsDisplayString(*Paths)
1567 << LookupRange;
1568
1569 DeclContext::lookup_iterator Found = Paths->front().Decls.first;
1570 while (isa<CXXMethodDecl>(*Found) &&
1571 cast<CXXMethodDecl>(*Found)->isStatic())
1572 ++Found;
1573
1574 Diag((*Found)->getLocation(), diag::note_ambiguous_member_found);
1575
1576 return true;
1577 }
Douglas Gregor4dc6b1c2009-01-16 00:38:09 +00001578
John McCall6e247262009-10-10 05:48:19 +00001579 case LookupResult::AmbiguousBaseSubobjectTypes: {
Douglas Gregor2a3009a2009-02-03 19:21:40 +00001580 Diag(NameLoc, diag::err_ambiguous_member_multiple_subobject_types)
1581 << Name << LookupRange;
John McCall6e247262009-10-10 05:48:19 +00001582
1583 CXXBasePaths *Paths = Result.getBasePaths();
Douglas Gregor2a3009a2009-02-03 19:21:40 +00001584 std::set<Decl *> DeclsPrinted;
John McCall6e247262009-10-10 05:48:19 +00001585 for (CXXBasePaths::paths_iterator Path = Paths->begin(),
1586 PathEnd = Paths->end();
Douglas Gregor2a3009a2009-02-03 19:21:40 +00001587 Path != PathEnd; ++Path) {
1588 Decl *D = *Path->Decls.first;
1589 if (DeclsPrinted.insert(D).second)
1590 Diag(D->getLocation(), diag::note_ambiguous_member_found);
1591 }
1592
Douglas Gregor4dc6b1c2009-01-16 00:38:09 +00001593 return true;
Douglas Gregor4dc6b1c2009-01-16 00:38:09 +00001594 }
1595
John McCall6e247262009-10-10 05:48:19 +00001596 case LookupResult::AmbiguousTagHiding: {
1597 Diag(NameLoc, diag::err_ambiguous_tag_hiding) << Name << LookupRange;
Douglas Gregor69d993a2009-01-17 01:13:24 +00001598
John McCall6e247262009-10-10 05:48:19 +00001599 llvm::SmallPtrSet<NamedDecl*,8> TagDecls;
1600
1601 LookupResult::iterator DI, DE = Result.end();
1602 for (DI = Result.begin(); DI != DE; ++DI)
1603 if (TagDecl *TD = dyn_cast<TagDecl>(*DI)) {
1604 TagDecls.insert(TD);
1605 Diag(TD->getLocation(), diag::note_hidden_tag);
1606 }
1607
1608 for (DI = Result.begin(); DI != DE; ++DI)
1609 if (!isa<TagDecl>(*DI))
1610 Diag((*DI)->getLocation(), diag::note_hiding_object);
1611
1612 // For recovery purposes, go ahead and implement the hiding.
John McCalleec51cf2010-01-20 00:46:10 +00001613 LookupResult::Filter F = Result.makeFilter();
1614 while (F.hasNext()) {
1615 if (TagDecls.count(F.next()))
1616 F.erase();
1617 }
1618 F.done();
John McCall6e247262009-10-10 05:48:19 +00001619
1620 return true;
1621 }
1622
1623 case LookupResult::AmbiguousReference: {
1624 Diag(NameLoc, diag::err_ambiguous_reference) << Name << LookupRange;
John McCallf36e02d2009-10-09 21:13:30 +00001625
John McCall6e247262009-10-10 05:48:19 +00001626 LookupResult::iterator DI = Result.begin(), DE = Result.end();
1627 for (; DI != DE; ++DI)
1628 Diag((*DI)->getLocation(), diag::note_ambiguous_candidate) << *DI;
John McCallf36e02d2009-10-09 21:13:30 +00001629
John McCall6e247262009-10-10 05:48:19 +00001630 return true;
1631 }
1632 }
1633
Jeffrey Yasskin9f61aa92009-12-12 05:05:38 +00001634 llvm_unreachable("unknown ambiguity kind");
Douglas Gregor7176fff2009-01-15 00:26:24 +00001635 return true;
1636}
Douglas Gregorfa047642009-02-04 00:32:51 +00001637
John McCallc7e04da2010-05-28 18:45:08 +00001638namespace {
1639 struct AssociatedLookup {
1640 AssociatedLookup(Sema &S,
1641 Sema::AssociatedNamespaceSet &Namespaces,
1642 Sema::AssociatedClassSet &Classes)
1643 : S(S), Namespaces(Namespaces), Classes(Classes) {
1644 }
1645
1646 Sema &S;
1647 Sema::AssociatedNamespaceSet &Namespaces;
1648 Sema::AssociatedClassSet &Classes;
1649 };
1650}
1651
Mike Stump1eb44332009-09-09 15:08:12 +00001652static void
John McCallc7e04da2010-05-28 18:45:08 +00001653addAssociatedClassesAndNamespaces(AssociatedLookup &Result, QualType T);
John McCall6ff07852009-08-07 22:18:02 +00001654
Douglas Gregor54022952010-04-30 07:08:38 +00001655static void CollectEnclosingNamespace(Sema::AssociatedNamespaceSet &Namespaces,
1656 DeclContext *Ctx) {
1657 // Add the associated namespace for this class.
1658
1659 // We don't use DeclContext::getEnclosingNamespaceContext() as this may
1660 // be a locally scoped record.
1661
Sebastian Redl410c4f22010-08-31 20:53:31 +00001662 // We skip out of inline namespaces. The innermost non-inline namespace
1663 // contains all names of all its nested inline namespaces anyway, so we can
1664 // replace the entire inline namespace tree with its root.
1665 while (Ctx->isRecord() || Ctx->isTransparentContext() ||
1666 Ctx->isInlineNamespace())
Douglas Gregor54022952010-04-30 07:08:38 +00001667 Ctx = Ctx->getParent();
1668
John McCall6ff07852009-08-07 22:18:02 +00001669 if (Ctx->isFileContext())
Douglas Gregor54022952010-04-30 07:08:38 +00001670 Namespaces.insert(Ctx->getPrimaryContext());
John McCall6ff07852009-08-07 22:18:02 +00001671}
Douglas Gregor69be8d62009-07-08 07:51:57 +00001672
Mike Stump1eb44332009-09-09 15:08:12 +00001673// \brief Add the associated classes and namespaces for argument-dependent
Douglas Gregor69be8d62009-07-08 07:51:57 +00001674// lookup that involves a template argument (C++ [basic.lookup.koenig]p2).
Mike Stump1eb44332009-09-09 15:08:12 +00001675static void
John McCallc7e04da2010-05-28 18:45:08 +00001676addAssociatedClassesAndNamespaces(AssociatedLookup &Result,
1677 const TemplateArgument &Arg) {
Douglas Gregor69be8d62009-07-08 07:51:57 +00001678 // C++ [basic.lookup.koenig]p2, last bullet:
Mike Stump1eb44332009-09-09 15:08:12 +00001679 // -- [...] ;
Douglas Gregor69be8d62009-07-08 07:51:57 +00001680 switch (Arg.getKind()) {
1681 case TemplateArgument::Null:
1682 break;
Mike Stump1eb44332009-09-09 15:08:12 +00001683
Douglas Gregor69be8d62009-07-08 07:51:57 +00001684 case TemplateArgument::Type:
1685 // [...] the namespaces and classes associated with the types of the
1686 // template arguments provided for template type parameters (excluding
1687 // template template parameters)
John McCallc7e04da2010-05-28 18:45:08 +00001688 addAssociatedClassesAndNamespaces(Result, Arg.getAsType());
Douglas Gregor69be8d62009-07-08 07:51:57 +00001689 break;
Mike Stump1eb44332009-09-09 15:08:12 +00001690
Douglas Gregor788cd062009-11-11 01:00:40 +00001691 case TemplateArgument::Template: {
Mike Stump1eb44332009-09-09 15:08:12 +00001692 // [...] the namespaces in which any template template arguments are
1693 // defined; and the classes in which any member templates used as
Douglas Gregor69be8d62009-07-08 07:51:57 +00001694 // template template arguments are defined.
Douglas Gregor788cd062009-11-11 01:00:40 +00001695 TemplateName Template = Arg.getAsTemplate();
Mike Stump1eb44332009-09-09 15:08:12 +00001696 if (ClassTemplateDecl *ClassTemplate
Douglas Gregor788cd062009-11-11 01:00:40 +00001697 = dyn_cast<ClassTemplateDecl>(Template.getAsTemplateDecl())) {
Douglas Gregor69be8d62009-07-08 07:51:57 +00001698 DeclContext *Ctx = ClassTemplate->getDeclContext();
1699 if (CXXRecordDecl *EnclosingClass = dyn_cast<CXXRecordDecl>(Ctx))
John McCallc7e04da2010-05-28 18:45:08 +00001700 Result.Classes.insert(EnclosingClass);
Douglas Gregor69be8d62009-07-08 07:51:57 +00001701 // Add the associated namespace for this class.
John McCallc7e04da2010-05-28 18:45:08 +00001702 CollectEnclosingNamespace(Result.Namespaces, Ctx);
Douglas Gregor69be8d62009-07-08 07:51:57 +00001703 }
1704 break;
Douglas Gregor788cd062009-11-11 01:00:40 +00001705 }
1706
1707 case TemplateArgument::Declaration:
Douglas Gregor69be8d62009-07-08 07:51:57 +00001708 case TemplateArgument::Integral:
1709 case TemplateArgument::Expression:
Mike Stump1eb44332009-09-09 15:08:12 +00001710 // [Note: non-type template arguments do not contribute to the set of
Douglas Gregor69be8d62009-07-08 07:51:57 +00001711 // associated namespaces. ]
1712 break;
Mike Stump1eb44332009-09-09 15:08:12 +00001713
Douglas Gregor69be8d62009-07-08 07:51:57 +00001714 case TemplateArgument::Pack:
1715 for (TemplateArgument::pack_iterator P = Arg.pack_begin(),
1716 PEnd = Arg.pack_end();
1717 P != PEnd; ++P)
John McCallc7e04da2010-05-28 18:45:08 +00001718 addAssociatedClassesAndNamespaces(Result, *P);
Douglas Gregor69be8d62009-07-08 07:51:57 +00001719 break;
1720 }
1721}
1722
Douglas Gregorfa047642009-02-04 00:32:51 +00001723// \brief Add the associated classes and namespaces for
Mike Stump1eb44332009-09-09 15:08:12 +00001724// argument-dependent lookup with an argument of class type
1725// (C++ [basic.lookup.koenig]p2).
1726static void
John McCallc7e04da2010-05-28 18:45:08 +00001727addAssociatedClassesAndNamespaces(AssociatedLookup &Result,
1728 CXXRecordDecl *Class) {
1729
1730 // Just silently ignore anything whose name is __va_list_tag.
1731 if (Class->getDeclName() == Result.S.VAListTagName)
1732 return;
1733
Douglas Gregorfa047642009-02-04 00:32:51 +00001734 // C++ [basic.lookup.koenig]p2:
1735 // [...]
1736 // -- If T is a class type (including unions), its associated
1737 // classes are: the class itself; the class of which it is a
1738 // member, if any; and its direct and indirect base
1739 // classes. Its associated namespaces are the namespaces in
Mike Stump1eb44332009-09-09 15:08:12 +00001740 // which its associated classes are defined.
Douglas Gregorfa047642009-02-04 00:32:51 +00001741
1742 // Add the class of which it is a member, if any.
1743 DeclContext *Ctx = Class->getDeclContext();
1744 if (CXXRecordDecl *EnclosingClass = dyn_cast<CXXRecordDecl>(Ctx))
John McCallc7e04da2010-05-28 18:45:08 +00001745 Result.Classes.insert(EnclosingClass);
Douglas Gregorfa047642009-02-04 00:32:51 +00001746 // Add the associated namespace for this class.
John McCallc7e04da2010-05-28 18:45:08 +00001747 CollectEnclosingNamespace(Result.Namespaces, Ctx);
Mike Stump1eb44332009-09-09 15:08:12 +00001748
Douglas Gregorfa047642009-02-04 00:32:51 +00001749 // Add the class itself. If we've already seen this class, we don't
1750 // need to visit base classes.
John McCallc7e04da2010-05-28 18:45:08 +00001751 if (!Result.Classes.insert(Class))
Douglas Gregorfa047642009-02-04 00:32:51 +00001752 return;
1753
Mike Stump1eb44332009-09-09 15:08:12 +00001754 // -- If T is a template-id, its associated namespaces and classes are
1755 // the namespace in which the template is defined; for member
Douglas Gregor69be8d62009-07-08 07:51:57 +00001756 // templates, the member template’s class; the namespaces and classes
Mike Stump1eb44332009-09-09 15:08:12 +00001757 // associated with the types of the template arguments provided for
Douglas Gregor69be8d62009-07-08 07:51:57 +00001758 // template type parameters (excluding template template parameters); the
Mike Stump1eb44332009-09-09 15:08:12 +00001759 // namespaces in which any template template arguments are defined; and
1760 // the classes in which any member templates used as template template
1761 // arguments are defined. [Note: non-type template arguments do not
Douglas Gregor69be8d62009-07-08 07:51:57 +00001762 // contribute to the set of associated namespaces. ]
Mike Stump1eb44332009-09-09 15:08:12 +00001763 if (ClassTemplateSpecializationDecl *Spec
Douglas Gregor69be8d62009-07-08 07:51:57 +00001764 = dyn_cast<ClassTemplateSpecializationDecl>(Class)) {
1765 DeclContext *Ctx = Spec->getSpecializedTemplate()->getDeclContext();
1766 if (CXXRecordDecl *EnclosingClass = dyn_cast<CXXRecordDecl>(Ctx))
John McCallc7e04da2010-05-28 18:45:08 +00001767 Result.Classes.insert(EnclosingClass);
Douglas Gregor69be8d62009-07-08 07:51:57 +00001768 // Add the associated namespace for this class.
John McCallc7e04da2010-05-28 18:45:08 +00001769 CollectEnclosingNamespace(Result.Namespaces, Ctx);
Mike Stump1eb44332009-09-09 15:08:12 +00001770
Douglas Gregor69be8d62009-07-08 07:51:57 +00001771 const TemplateArgumentList &TemplateArgs = Spec->getTemplateArgs();
1772 for (unsigned I = 0, N = TemplateArgs.size(); I != N; ++I)
John McCallc7e04da2010-05-28 18:45:08 +00001773 addAssociatedClassesAndNamespaces(Result, TemplateArgs[I]);
Douglas Gregor69be8d62009-07-08 07:51:57 +00001774 }
Mike Stump1eb44332009-09-09 15:08:12 +00001775
John McCall86ff3082010-02-04 22:26:26 +00001776 // Only recurse into base classes for complete types.
1777 if (!Class->hasDefinition()) {
1778 // FIXME: we might need to instantiate templates here
1779 return;
1780 }
1781
Douglas Gregorfa047642009-02-04 00:32:51 +00001782 // Add direct and indirect base classes along with their associated
1783 // namespaces.
1784 llvm::SmallVector<CXXRecordDecl *, 32> Bases;
1785 Bases.push_back(Class);
1786 while (!Bases.empty()) {
1787 // Pop this class off the stack.
1788 Class = Bases.back();
1789 Bases.pop_back();
1790
1791 // Visit the base classes.
1792 for (CXXRecordDecl::base_class_iterator Base = Class->bases_begin(),
1793 BaseEnd = Class->bases_end();
1794 Base != BaseEnd; ++Base) {
Ted Kremenek6217b802009-07-29 21:53:49 +00001795 const RecordType *BaseType = Base->getType()->getAs<RecordType>();
Sebastian Redlbbc1cc52009-10-25 09:35:33 +00001796 // In dependent contexts, we do ADL twice, and the first time around,
1797 // the base type might be a dependent TemplateSpecializationType, or a
1798 // TemplateTypeParmType. If that happens, simply ignore it.
1799 // FIXME: If we want to support export, we probably need to add the
1800 // namespace of the template in a TemplateSpecializationType, or even
1801 // the classes and namespaces of known non-dependent arguments.
1802 if (!BaseType)
1803 continue;
Douglas Gregorfa047642009-02-04 00:32:51 +00001804 CXXRecordDecl *BaseDecl = cast<CXXRecordDecl>(BaseType->getDecl());
John McCallc7e04da2010-05-28 18:45:08 +00001805 if (Result.Classes.insert(BaseDecl)) {
Douglas Gregorfa047642009-02-04 00:32:51 +00001806 // Find the associated namespace for this base class.
1807 DeclContext *BaseCtx = BaseDecl->getDeclContext();
John McCallc7e04da2010-05-28 18:45:08 +00001808 CollectEnclosingNamespace(Result.Namespaces, BaseCtx);
Douglas Gregorfa047642009-02-04 00:32:51 +00001809
1810 // Make sure we visit the bases of this base class.
1811 if (BaseDecl->bases_begin() != BaseDecl->bases_end())
1812 Bases.push_back(BaseDecl);
1813 }
1814 }
1815 }
1816}
1817
1818// \brief Add the associated classes and namespaces for
1819// argument-dependent lookup with an argument of type T
Mike Stump1eb44332009-09-09 15:08:12 +00001820// (C++ [basic.lookup.koenig]p2).
1821static void
John McCallc7e04da2010-05-28 18:45:08 +00001822addAssociatedClassesAndNamespaces(AssociatedLookup &Result, QualType Ty) {
Douglas Gregorfa047642009-02-04 00:32:51 +00001823 // C++ [basic.lookup.koenig]p2:
1824 //
1825 // For each argument type T in the function call, there is a set
1826 // of zero or more associated namespaces and a set of zero or more
1827 // associated classes to be considered. The sets of namespaces and
1828 // classes is determined entirely by the types of the function
1829 // arguments (and the namespace of any template template
1830 // argument). Typedef names and using-declarations used to specify
1831 // the types do not contribute to this set. The sets of namespaces
1832 // and classes are determined in the following way:
Douglas Gregorfa047642009-02-04 00:32:51 +00001833
John McCallfa4edcf2010-05-28 06:08:54 +00001834 llvm::SmallVector<const Type *, 16> Queue;
1835 const Type *T = Ty->getCanonicalTypeInternal().getTypePtr();
1836
Douglas Gregorfa047642009-02-04 00:32:51 +00001837 while (true) {
John McCallfa4edcf2010-05-28 06:08:54 +00001838 switch (T->getTypeClass()) {
1839
1840#define TYPE(Class, Base)
1841#define DEPENDENT_TYPE(Class, Base) case Type::Class:
1842#define NON_CANONICAL_TYPE(Class, Base) case Type::Class:
1843#define NON_CANONICAL_UNLESS_DEPENDENT_TYPE(Class, Base) case Type::Class:
1844#define ABSTRACT_TYPE(Class, Base)
1845#include "clang/AST/TypeNodes.def"
1846 // T is canonical. We can also ignore dependent types because
1847 // we don't need to do ADL at the definition point, but if we
1848 // wanted to implement template export (or if we find some other
1849 // use for associated classes and namespaces...) this would be
1850 // wrong.
Douglas Gregorfa047642009-02-04 00:32:51 +00001851 break;
Douglas Gregorfa047642009-02-04 00:32:51 +00001852
John McCallfa4edcf2010-05-28 06:08:54 +00001853 // -- If T is a pointer to U or an array of U, its associated
1854 // namespaces and classes are those associated with U.
1855 case Type::Pointer:
1856 T = cast<PointerType>(T)->getPointeeType().getTypePtr();
1857 continue;
1858 case Type::ConstantArray:
1859 case Type::IncompleteArray:
1860 case Type::VariableArray:
1861 T = cast<ArrayType>(T)->getElementType().getTypePtr();
1862 continue;
Douglas Gregorfa047642009-02-04 00:32:51 +00001863
John McCallfa4edcf2010-05-28 06:08:54 +00001864 // -- If T is a fundamental type, its associated sets of
1865 // namespaces and classes are both empty.
1866 case Type::Builtin:
1867 break;
1868
1869 // -- If T is a class type (including unions), its associated
1870 // classes are: the class itself; the class of which it is a
1871 // member, if any; and its direct and indirect base
1872 // classes. Its associated namespaces are the namespaces in
1873 // which its associated classes are defined.
1874 case Type::Record: {
1875 CXXRecordDecl *Class
1876 = cast<CXXRecordDecl>(cast<RecordType>(T)->getDecl());
John McCallc7e04da2010-05-28 18:45:08 +00001877 addAssociatedClassesAndNamespaces(Result, Class);
John McCallfa4edcf2010-05-28 06:08:54 +00001878 break;
Douglas Gregorc1efaec2009-02-28 01:32:25 +00001879 }
Douglas Gregor4e58c252010-05-20 02:26:51 +00001880
John McCallfa4edcf2010-05-28 06:08:54 +00001881 // -- If T is an enumeration type, its associated namespace is
1882 // the namespace in which it is defined. If it is class
1883 // member, its associated class is the member’s class; else
1884 // it has no associated class.
1885 case Type::Enum: {
1886 EnumDecl *Enum = cast<EnumType>(T)->getDecl();
Douglas Gregorfa047642009-02-04 00:32:51 +00001887
John McCallfa4edcf2010-05-28 06:08:54 +00001888 DeclContext *Ctx = Enum->getDeclContext();
1889 if (CXXRecordDecl *EnclosingClass = dyn_cast<CXXRecordDecl>(Ctx))
John McCallc7e04da2010-05-28 18:45:08 +00001890 Result.Classes.insert(EnclosingClass);
Douglas Gregorfa047642009-02-04 00:32:51 +00001891
John McCallfa4edcf2010-05-28 06:08:54 +00001892 // Add the associated namespace for this class.
John McCallc7e04da2010-05-28 18:45:08 +00001893 CollectEnclosingNamespace(Result.Namespaces, Ctx);
Douglas Gregorfa047642009-02-04 00:32:51 +00001894
John McCallfa4edcf2010-05-28 06:08:54 +00001895 break;
1896 }
1897
1898 // -- If T is a function type, its associated namespaces and
1899 // classes are those associated with the function parameter
1900 // types and those associated with the return type.
1901 case Type::FunctionProto: {
1902 const FunctionProtoType *Proto = cast<FunctionProtoType>(T);
1903 for (FunctionProtoType::arg_type_iterator Arg = Proto->arg_type_begin(),
1904 ArgEnd = Proto->arg_type_end();
1905 Arg != ArgEnd; ++Arg)
1906 Queue.push_back(Arg->getTypePtr());
1907 // fallthrough
1908 }
1909 case Type::FunctionNoProto: {
1910 const FunctionType *FnType = cast<FunctionType>(T);
1911 T = FnType->getResultType().getTypePtr();
1912 continue;
1913 }
1914
1915 // -- If T is a pointer to a member function of a class X, its
1916 // associated namespaces and classes are those associated
1917 // with the function parameter types and return type,
1918 // together with those associated with X.
1919 //
1920 // -- If T is a pointer to a data member of class X, its
1921 // associated namespaces and classes are those associated
1922 // with the member type together with those associated with
1923 // X.
1924 case Type::MemberPointer: {
1925 const MemberPointerType *MemberPtr = cast<MemberPointerType>(T);
1926
1927 // Queue up the class type into which this points.
1928 Queue.push_back(MemberPtr->getClass());
1929
1930 // And directly continue with the pointee type.
1931 T = MemberPtr->getPointeeType().getTypePtr();
1932 continue;
1933 }
1934
1935 // As an extension, treat this like a normal pointer.
1936 case Type::BlockPointer:
1937 T = cast<BlockPointerType>(T)->getPointeeType().getTypePtr();
1938 continue;
1939
1940 // References aren't covered by the standard, but that's such an
1941 // obvious defect that we cover them anyway.
1942 case Type::LValueReference:
1943 case Type::RValueReference:
1944 T = cast<ReferenceType>(T)->getPointeeType().getTypePtr();
1945 continue;
1946
1947 // These are fundamental types.
1948 case Type::Vector:
1949 case Type::ExtVector:
1950 case Type::Complex:
1951 break;
1952
1953 // These are ignored by ADL.
1954 case Type::ObjCObject:
1955 case Type::ObjCInterface:
1956 case Type::ObjCObjectPointer:
1957 break;
1958 }
1959
1960 if (Queue.empty()) break;
1961 T = Queue.back();
1962 Queue.pop_back();
Douglas Gregorfa047642009-02-04 00:32:51 +00001963 }
Douglas Gregorfa047642009-02-04 00:32:51 +00001964}
1965
1966/// \brief Find the associated classes and namespaces for
1967/// argument-dependent lookup for a call with the given set of
1968/// arguments.
1969///
1970/// This routine computes the sets of associated classes and associated
Mike Stump1eb44332009-09-09 15:08:12 +00001971/// namespaces searched by argument-dependent lookup
Douglas Gregorfa047642009-02-04 00:32:51 +00001972/// (C++ [basic.lookup.argdep]) for a given set of arguments.
Mike Stump1eb44332009-09-09 15:08:12 +00001973void
Douglas Gregorfa047642009-02-04 00:32:51 +00001974Sema::FindAssociatedClassesAndNamespaces(Expr **Args, unsigned NumArgs,
1975 AssociatedNamespaceSet &AssociatedNamespaces,
John McCall6ff07852009-08-07 22:18:02 +00001976 AssociatedClassSet &AssociatedClasses) {
Douglas Gregorfa047642009-02-04 00:32:51 +00001977 AssociatedNamespaces.clear();
1978 AssociatedClasses.clear();
1979
John McCallc7e04da2010-05-28 18:45:08 +00001980 AssociatedLookup Result(*this, AssociatedNamespaces, AssociatedClasses);
1981
Douglas Gregorfa047642009-02-04 00:32:51 +00001982 // C++ [basic.lookup.koenig]p2:
1983 // For each argument type T in the function call, there is a set
1984 // of zero or more associated namespaces and a set of zero or more
1985 // associated classes to be considered. The sets of namespaces and
1986 // classes is determined entirely by the types of the function
1987 // arguments (and the namespace of any template template
Mike Stump1eb44332009-09-09 15:08:12 +00001988 // argument).
Douglas Gregorfa047642009-02-04 00:32:51 +00001989 for (unsigned ArgIdx = 0; ArgIdx != NumArgs; ++ArgIdx) {
1990 Expr *Arg = Args[ArgIdx];
1991
1992 if (Arg->getType() != Context.OverloadTy) {
John McCallc7e04da2010-05-28 18:45:08 +00001993 addAssociatedClassesAndNamespaces(Result, Arg->getType());
Douglas Gregorfa047642009-02-04 00:32:51 +00001994 continue;
1995 }
1996
1997 // [...] In addition, if the argument is the name or address of a
1998 // set of overloaded functions and/or function templates, its
1999 // associated classes and namespaces are the union of those
2000 // associated with each of the members of the set: the namespace
2001 // in which the function or function template is defined and the
2002 // classes and namespaces associated with its (non-dependent)
2003 // parameter types and return type.
Douglas Gregordaa439a2009-07-08 10:57:20 +00002004 Arg = Arg->IgnoreParens();
John McCallba135432009-11-21 08:51:07 +00002005 if (UnaryOperator *unaryOp = dyn_cast<UnaryOperator>(Arg))
John McCall2de56d12010-08-25 11:45:40 +00002006 if (unaryOp->getOpcode() == UO_AddrOf)
John McCallba135432009-11-21 08:51:07 +00002007 Arg = unaryOp->getSubExpr();
Mike Stump1eb44332009-09-09 15:08:12 +00002008
John McCallc7e04da2010-05-28 18:45:08 +00002009 UnresolvedLookupExpr *ULE = dyn_cast<UnresolvedLookupExpr>(Arg);
2010 if (!ULE) continue;
John McCallba135432009-11-21 08:51:07 +00002011
John McCallc7e04da2010-05-28 18:45:08 +00002012 for (UnresolvedSetIterator I = ULE->decls_begin(), E = ULE->decls_end();
2013 I != E; ++I) {
Chandler Carruthbd647292009-12-29 06:17:27 +00002014 // Look through any using declarations to find the underlying function.
2015 NamedDecl *Fn = (*I)->getUnderlyingDecl();
Douglas Gregorfa047642009-02-04 00:32:51 +00002016
Chandler Carruthbd647292009-12-29 06:17:27 +00002017 FunctionDecl *FDecl = dyn_cast<FunctionDecl>(Fn);
2018 if (!FDecl)
2019 FDecl = cast<FunctionTemplateDecl>(Fn)->getTemplatedDecl();
Douglas Gregorfa047642009-02-04 00:32:51 +00002020
2021 // Add the classes and namespaces associated with the parameter
2022 // types and return type of this function.
John McCallc7e04da2010-05-28 18:45:08 +00002023 addAssociatedClassesAndNamespaces(Result, FDecl->getType());
Douglas Gregorfa047642009-02-04 00:32:51 +00002024 }
2025 }
2026}
Douglas Gregor3fd95ce2009-03-13 00:33:25 +00002027
2028/// IsAcceptableNonMemberOperatorCandidate - Determine whether Fn is
2029/// an acceptable non-member overloaded operator for a call whose
2030/// arguments have types T1 (and, if non-empty, T2). This routine
2031/// implements the check in C++ [over.match.oper]p3b2 concerning
2032/// enumeration types.
Mike Stump1eb44332009-09-09 15:08:12 +00002033static bool
Douglas Gregor3fd95ce2009-03-13 00:33:25 +00002034IsAcceptableNonMemberOperatorCandidate(FunctionDecl *Fn,
2035 QualType T1, QualType T2,
2036 ASTContext &Context) {
Douglas Gregorba498172009-03-13 21:01:28 +00002037 if (T1->isDependentType() || (!T2.isNull() && T2->isDependentType()))
2038 return true;
2039
Douglas Gregor3fd95ce2009-03-13 00:33:25 +00002040 if (T1->isRecordType() || (!T2.isNull() && T2->isRecordType()))
2041 return true;
2042
John McCall183700f2009-09-21 23:43:11 +00002043 const FunctionProtoType *Proto = Fn->getType()->getAs<FunctionProtoType>();
Douglas Gregor3fd95ce2009-03-13 00:33:25 +00002044 if (Proto->getNumArgs() < 1)
2045 return false;
2046
2047 if (T1->isEnumeralType()) {
2048 QualType ArgType = Proto->getArgType(0).getNonReferenceType();
Douglas Gregora4923eb2009-11-16 21:35:15 +00002049 if (Context.hasSameUnqualifiedType(T1, ArgType))
Douglas Gregor3fd95ce2009-03-13 00:33:25 +00002050 return true;
2051 }
2052
2053 if (Proto->getNumArgs() < 2)
2054 return false;
2055
2056 if (!T2.isNull() && T2->isEnumeralType()) {
2057 QualType ArgType = Proto->getArgType(1).getNonReferenceType();
Douglas Gregora4923eb2009-11-16 21:35:15 +00002058 if (Context.hasSameUnqualifiedType(T2, ArgType))
Douglas Gregor3fd95ce2009-03-13 00:33:25 +00002059 return true;
2060 }
2061
2062 return false;
2063}
2064
John McCall7d384dd2009-11-18 07:57:50 +00002065NamedDecl *Sema::LookupSingleName(Scope *S, DeclarationName Name,
Douglas Gregorc83c6872010-04-15 22:33:43 +00002066 SourceLocation Loc,
John McCall7d384dd2009-11-18 07:57:50 +00002067 LookupNameKind NameKind,
2068 RedeclarationKind Redecl) {
Douglas Gregorc83c6872010-04-15 22:33:43 +00002069 LookupResult R(*this, Name, Loc, NameKind, Redecl);
John McCall7d384dd2009-11-18 07:57:50 +00002070 LookupName(R, S);
John McCall1bcee0a2009-12-02 08:25:40 +00002071 return R.getAsSingle<NamedDecl>();
John McCall7d384dd2009-11-18 07:57:50 +00002072}
2073
Douglas Gregor6e378de2009-04-23 23:18:26 +00002074/// \brief Find the protocol with the given name, if any.
Douglas Gregorc83c6872010-04-15 22:33:43 +00002075ObjCProtocolDecl *Sema::LookupProtocol(IdentifierInfo *II,
2076 SourceLocation IdLoc) {
2077 Decl *D = LookupSingleName(TUScope, II, IdLoc,
2078 LookupObjCProtocolName);
Douglas Gregor6e378de2009-04-23 23:18:26 +00002079 return cast_or_null<ObjCProtocolDecl>(D);
2080}
2081
Douglas Gregor3fd95ce2009-03-13 00:33:25 +00002082void Sema::LookupOverloadedOperatorName(OverloadedOperatorKind Op, Scope *S,
Mike Stump1eb44332009-09-09 15:08:12 +00002083 QualType T1, QualType T2,
John McCall6e266892010-01-26 03:27:55 +00002084 UnresolvedSetImpl &Functions) {
Douglas Gregor3fd95ce2009-03-13 00:33:25 +00002085 // C++ [over.match.oper]p3:
2086 // -- The set of non-member candidates is the result of the
2087 // unqualified lookup of operator@ in the context of the
2088 // expression according to the usual rules for name lookup in
2089 // unqualified function calls (3.4.2) except that all member
2090 // functions are ignored. However, if no operand has a class
2091 // type, only those non-member functions in the lookup set
Eli Friedman33a31382009-08-05 19:21:58 +00002092 // that have a first parameter of type T1 or "reference to
2093 // (possibly cv-qualified) T1", when T1 is an enumeration
Douglas Gregor3fd95ce2009-03-13 00:33:25 +00002094 // type, or (if there is a right operand) a second parameter
Eli Friedman33a31382009-08-05 19:21:58 +00002095 // of type T2 or "reference to (possibly cv-qualified) T2",
Douglas Gregor3fd95ce2009-03-13 00:33:25 +00002096 // when T2 is an enumeration type, are candidate functions.
2097 DeclarationName OpName = Context.DeclarationNames.getCXXOperatorName(Op);
John McCalla24dc2e2009-11-17 02:14:36 +00002098 LookupResult Operators(*this, OpName, SourceLocation(), LookupOperatorName);
2099 LookupName(Operators, S);
Mike Stump1eb44332009-09-09 15:08:12 +00002100
Douglas Gregor3fd95ce2009-03-13 00:33:25 +00002101 assert(!Operators.isAmbiguous() && "Operator lookup cannot be ambiguous");
2102
John McCallf36e02d2009-10-09 21:13:30 +00002103 if (Operators.empty())
Douglas Gregor3fd95ce2009-03-13 00:33:25 +00002104 return;
2105
2106 for (LookupResult::iterator Op = Operators.begin(), OpEnd = Operators.end();
2107 Op != OpEnd; ++Op) {
Douglas Gregor6bf356f2010-04-25 20:25:43 +00002108 NamedDecl *Found = (*Op)->getUnderlyingDecl();
2109 if (FunctionDecl *FD = dyn_cast<FunctionDecl>(Found)) {
Douglas Gregor3fd95ce2009-03-13 00:33:25 +00002110 if (IsAcceptableNonMemberOperatorCandidate(FD, T1, T2, Context))
Douglas Gregor6bf356f2010-04-25 20:25:43 +00002111 Functions.addDecl(*Op, Op.getAccess()); // FIXME: canonical FD
Mike Stump1eb44332009-09-09 15:08:12 +00002112 } else if (FunctionTemplateDecl *FunTmpl
Douglas Gregor6bf356f2010-04-25 20:25:43 +00002113 = dyn_cast<FunctionTemplateDecl>(Found)) {
Douglas Gregor364e0212009-06-27 21:05:07 +00002114 // FIXME: friend operators?
Mike Stump1eb44332009-09-09 15:08:12 +00002115 // FIXME: do we need to check IsAcceptableNonMemberOperatorCandidate,
Douglas Gregor364e0212009-06-27 21:05:07 +00002116 // later?
2117 if (!FunTmpl->getDeclContext()->isRecord())
Douglas Gregor6bf356f2010-04-25 20:25:43 +00002118 Functions.addDecl(*Op, Op.getAccess());
Douglas Gregor364e0212009-06-27 21:05:07 +00002119 }
Douglas Gregor3fd95ce2009-03-13 00:33:25 +00002120 }
2121}
2122
Douglas Gregore5eee5a2010-07-02 23:12:18 +00002123/// \brief Look up the constructors for the given class.
2124DeclContext::lookup_result Sema::LookupConstructors(CXXRecordDecl *Class) {
Douglas Gregor22584312010-07-02 23:41:54 +00002125 // If the copy constructor has not yet been declared, do so now.
Douglas Gregor18274032010-07-03 00:47:00 +00002126 if (CanDeclareSpecialMemberFunction(Context, Class)) {
2127 if (!Class->hasDeclaredDefaultConstructor())
2128 DeclareImplicitDefaultConstructor(Class);
2129 if (!Class->hasDeclaredCopyConstructor())
2130 DeclareImplicitCopyConstructor(Class);
2131 }
Douglas Gregor22584312010-07-02 23:41:54 +00002132
Douglas Gregore5eee5a2010-07-02 23:12:18 +00002133 CanQualType T = Context.getCanonicalType(Context.getTypeDeclType(Class));
2134 DeclarationName Name = Context.DeclarationNames.getCXXConstructorName(T);
2135 return Class->lookup(Name);
2136}
2137
Douglas Gregordb89f282010-07-01 22:47:18 +00002138/// \brief Look for the destructor of the given class.
2139///
2140/// During semantic analysis, this routine should be used in lieu of
2141/// CXXRecordDecl::getDestructor().
2142///
2143/// \returns The destructor for this class.
2144CXXDestructorDecl *Sema::LookupDestructor(CXXRecordDecl *Class) {
Douglas Gregor4923aa22010-07-02 20:37:36 +00002145 // If the destructor has not yet been declared, do so now.
2146 if (CanDeclareSpecialMemberFunction(Context, Class) &&
2147 !Class->hasDeclaredDestructor())
2148 DeclareImplicitDestructor(Class);
2149
Douglas Gregordb89f282010-07-01 22:47:18 +00002150 return Class->getDestructor();
2151}
2152
John McCall7edb5fd2010-01-26 07:16:45 +00002153void ADLResult::insert(NamedDecl *New) {
2154 NamedDecl *&Old = Decls[cast<NamedDecl>(New->getCanonicalDecl())];
2155
2156 // If we haven't yet seen a decl for this key, or the last decl
2157 // was exactly this one, we're done.
2158 if (Old == 0 || Old == New) {
2159 Old = New;
2160 return;
2161 }
2162
2163 // Otherwise, decide which is a more recent redeclaration.
2164 FunctionDecl *OldFD, *NewFD;
2165 if (isa<FunctionTemplateDecl>(New)) {
2166 OldFD = cast<FunctionTemplateDecl>(Old)->getTemplatedDecl();
2167 NewFD = cast<FunctionTemplateDecl>(New)->getTemplatedDecl();
2168 } else {
2169 OldFD = cast<FunctionDecl>(Old);
2170 NewFD = cast<FunctionDecl>(New);
2171 }
2172
2173 FunctionDecl *Cursor = NewFD;
2174 while (true) {
2175 Cursor = Cursor->getPreviousDeclaration();
2176
2177 // If we got to the end without finding OldFD, OldFD is the newer
2178 // declaration; leave things as they are.
2179 if (!Cursor) return;
2180
2181 // If we do find OldFD, then NewFD is newer.
2182 if (Cursor == OldFD) break;
2183
2184 // Otherwise, keep looking.
2185 }
2186
2187 Old = New;
2188}
2189
Sebastian Redl644be852009-10-23 19:23:15 +00002190void Sema::ArgumentDependentLookup(DeclarationName Name, bool Operator,
Douglas Gregor3fd95ce2009-03-13 00:33:25 +00002191 Expr **Args, unsigned NumArgs,
John McCall7edb5fd2010-01-26 07:16:45 +00002192 ADLResult &Result) {
Douglas Gregor3fd95ce2009-03-13 00:33:25 +00002193 // Find all of the associated namespaces and classes based on the
2194 // arguments we have.
2195 AssociatedNamespaceSet AssociatedNamespaces;
2196 AssociatedClassSet AssociatedClasses;
Mike Stump1eb44332009-09-09 15:08:12 +00002197 FindAssociatedClassesAndNamespaces(Args, NumArgs,
John McCall6ff07852009-08-07 22:18:02 +00002198 AssociatedNamespaces,
2199 AssociatedClasses);
Douglas Gregor3fd95ce2009-03-13 00:33:25 +00002200
Sebastian Redl644be852009-10-23 19:23:15 +00002201 QualType T1, T2;
2202 if (Operator) {
2203 T1 = Args[0]->getType();
2204 if (NumArgs >= 2)
2205 T2 = Args[1]->getType();
2206 }
2207
Douglas Gregor3fd95ce2009-03-13 00:33:25 +00002208 // C++ [basic.lookup.argdep]p3:
Douglas Gregor3fd95ce2009-03-13 00:33:25 +00002209 // Let X be the lookup set produced by unqualified lookup (3.4.1)
2210 // and let Y be the lookup set produced by argument dependent
2211 // lookup (defined as follows). If X contains [...] then Y is
2212 // empty. Otherwise Y is the set of declarations found in the
2213 // namespaces associated with the argument types as described
2214 // below. The set of declarations found by the lookup of the name
2215 // is the union of X and Y.
2216 //
2217 // Here, we compute Y and add its members to the overloaded
2218 // candidate set.
2219 for (AssociatedNamespaceSet::iterator NS = AssociatedNamespaces.begin(),
Mike Stump1eb44332009-09-09 15:08:12 +00002220 NSEnd = AssociatedNamespaces.end();
2221 NS != NSEnd; ++NS) {
Douglas Gregor3fd95ce2009-03-13 00:33:25 +00002222 // When considering an associated namespace, the lookup is the
2223 // same as the lookup performed when the associated namespace is
2224 // used as a qualifier (3.4.3.2) except that:
2225 //
2226 // -- Any using-directives in the associated namespace are
2227 // ignored.
2228 //
John McCall6ff07852009-08-07 22:18:02 +00002229 // -- Any namespace-scope friend functions declared in
Douglas Gregor3fd95ce2009-03-13 00:33:25 +00002230 // associated classes are visible within their respective
2231 // namespaces even if they are not visible during an ordinary
2232 // lookup (11.4).
2233 DeclContext::lookup_iterator I, E;
John McCall3f9a8a62009-08-11 06:59:38 +00002234 for (llvm::tie(I, E) = (*NS)->lookup(Name); I != E; ++I) {
John McCall6e266892010-01-26 03:27:55 +00002235 NamedDecl *D = *I;
John McCall02cace72009-08-28 07:59:38 +00002236 // If the only declaration here is an ordinary friend, consider
2237 // it only if it was declared in an associated classes.
2238 if (D->getIdentifierNamespace() == Decl::IDNS_OrdinaryFriend) {
John McCall3f9a8a62009-08-11 06:59:38 +00002239 DeclContext *LexDC = D->getLexicalDeclContext();
2240 if (!AssociatedClasses.count(cast<CXXRecordDecl>(LexDC)))
2241 continue;
2242 }
Mike Stump1eb44332009-09-09 15:08:12 +00002243
John McCalla113e722010-01-26 06:04:06 +00002244 if (isa<UsingShadowDecl>(D))
2245 D = cast<UsingShadowDecl>(D)->getTargetDecl();
John McCall6e266892010-01-26 03:27:55 +00002246
John McCalla113e722010-01-26 06:04:06 +00002247 if (isa<FunctionDecl>(D)) {
2248 if (Operator &&
2249 !IsAcceptableNonMemberOperatorCandidate(cast<FunctionDecl>(D),
2250 T1, T2, Context))
2251 continue;
John McCall7edb5fd2010-01-26 07:16:45 +00002252 } else if (!isa<FunctionTemplateDecl>(D))
2253 continue;
2254
2255 Result.insert(D);
Douglas Gregor44bc2d52009-06-23 20:14:09 +00002256 }
2257 }
Douglas Gregor3fd95ce2009-03-13 00:33:25 +00002258}
Douglas Gregor546be3c2009-12-30 17:04:44 +00002259
2260//----------------------------------------------------------------------------
2261// Search for all visible declarations.
2262//----------------------------------------------------------------------------
2263VisibleDeclConsumer::~VisibleDeclConsumer() { }
2264
2265namespace {
2266
2267class ShadowContextRAII;
2268
2269class VisibleDeclsRecord {
2270public:
2271 /// \brief An entry in the shadow map, which is optimized to store a
2272 /// single declaration (the common case) but can also store a list
2273 /// of declarations.
2274 class ShadowMapEntry {
2275 typedef llvm::SmallVector<NamedDecl *, 4> DeclVector;
2276
2277 /// \brief Contains either the solitary NamedDecl * or a vector
2278 /// of declarations.
2279 llvm::PointerUnion<NamedDecl *, DeclVector*> DeclOrVector;
2280
2281 public:
2282 ShadowMapEntry() : DeclOrVector() { }
2283
2284 void Add(NamedDecl *ND);
2285 void Destroy();
2286
2287 // Iteration.
2288 typedef NamedDecl **iterator;
2289 iterator begin();
2290 iterator end();
2291 };
2292
2293private:
2294 /// \brief A mapping from declaration names to the declarations that have
2295 /// this name within a particular scope.
2296 typedef llvm::DenseMap<DeclarationName, ShadowMapEntry> ShadowMap;
2297
2298 /// \brief A list of shadow maps, which is used to model name hiding.
2299 std::list<ShadowMap> ShadowMaps;
2300
2301 /// \brief The declaration contexts we have already visited.
2302 llvm::SmallPtrSet<DeclContext *, 8> VisitedContexts;
2303
2304 friend class ShadowContextRAII;
2305
2306public:
2307 /// \brief Determine whether we have already visited this context
2308 /// (and, if not, note that we are going to visit that context now).
2309 bool visitedContext(DeclContext *Ctx) {
2310 return !VisitedContexts.insert(Ctx);
2311 }
2312
Douglas Gregor8071e422010-08-15 06:18:01 +00002313 bool alreadyVisitedContext(DeclContext *Ctx) {
2314 return VisitedContexts.count(Ctx);
2315 }
2316
Douglas Gregor546be3c2009-12-30 17:04:44 +00002317 /// \brief Determine whether the given declaration is hidden in the
2318 /// current scope.
2319 ///
2320 /// \returns the declaration that hides the given declaration, or
2321 /// NULL if no such declaration exists.
2322 NamedDecl *checkHidden(NamedDecl *ND);
2323
2324 /// \brief Add a declaration to the current shadow map.
2325 void add(NamedDecl *ND) { ShadowMaps.back()[ND->getDeclName()].Add(ND); }
2326};
2327
2328/// \brief RAII object that records when we've entered a shadow context.
2329class ShadowContextRAII {
2330 VisibleDeclsRecord &Visible;
2331
2332 typedef VisibleDeclsRecord::ShadowMap ShadowMap;
2333
2334public:
2335 ShadowContextRAII(VisibleDeclsRecord &Visible) : Visible(Visible) {
2336 Visible.ShadowMaps.push_back(ShadowMap());
2337 }
2338
2339 ~ShadowContextRAII() {
2340 for (ShadowMap::iterator E = Visible.ShadowMaps.back().begin(),
2341 EEnd = Visible.ShadowMaps.back().end();
2342 E != EEnd;
2343 ++E)
2344 E->second.Destroy();
2345
2346 Visible.ShadowMaps.pop_back();
2347 }
2348};
2349
2350} // end anonymous namespace
2351
2352void VisibleDeclsRecord::ShadowMapEntry::Add(NamedDecl *ND) {
2353 if (DeclOrVector.isNull()) {
2354 // 0 - > 1 elements: just set the single element information.
2355 DeclOrVector = ND;
2356 return;
2357 }
2358
2359 if (NamedDecl *PrevND = DeclOrVector.dyn_cast<NamedDecl *>()) {
2360 // 1 -> 2 elements: create the vector of results and push in the
2361 // existing declaration.
2362 DeclVector *Vec = new DeclVector;
2363 Vec->push_back(PrevND);
2364 DeclOrVector = Vec;
2365 }
2366
2367 // Add the new element to the end of the vector.
2368 DeclOrVector.get<DeclVector*>()->push_back(ND);
2369}
2370
2371void VisibleDeclsRecord::ShadowMapEntry::Destroy() {
2372 if (DeclVector *Vec = DeclOrVector.dyn_cast<DeclVector *>()) {
2373 delete Vec;
2374 DeclOrVector = ((NamedDecl *)0);
2375 }
2376}
2377
2378VisibleDeclsRecord::ShadowMapEntry::iterator
2379VisibleDeclsRecord::ShadowMapEntry::begin() {
2380 if (DeclOrVector.isNull())
2381 return 0;
2382
2383 if (DeclOrVector.dyn_cast<NamedDecl *>())
2384 return &reinterpret_cast<NamedDecl*&>(DeclOrVector);
2385
2386 return DeclOrVector.get<DeclVector *>()->begin();
2387}
2388
2389VisibleDeclsRecord::ShadowMapEntry::iterator
2390VisibleDeclsRecord::ShadowMapEntry::end() {
2391 if (DeclOrVector.isNull())
2392 return 0;
2393
2394 if (DeclOrVector.dyn_cast<NamedDecl *>())
2395 return &reinterpret_cast<NamedDecl*&>(DeclOrVector) + 1;
2396
2397 return DeclOrVector.get<DeclVector *>()->end();
2398}
2399
2400NamedDecl *VisibleDeclsRecord::checkHidden(NamedDecl *ND) {
Douglas Gregorefcf16d2010-01-14 00:06:47 +00002401 // Look through using declarations.
2402 ND = ND->getUnderlyingDecl();
2403
Douglas Gregor546be3c2009-12-30 17:04:44 +00002404 unsigned IDNS = ND->getIdentifierNamespace();
2405 std::list<ShadowMap>::reverse_iterator SM = ShadowMaps.rbegin();
2406 for (std::list<ShadowMap>::reverse_iterator SMEnd = ShadowMaps.rend();
2407 SM != SMEnd; ++SM) {
2408 ShadowMap::iterator Pos = SM->find(ND->getDeclName());
2409 if (Pos == SM->end())
2410 continue;
2411
2412 for (ShadowMapEntry::iterator I = Pos->second.begin(),
2413 IEnd = Pos->second.end();
2414 I != IEnd; ++I) {
2415 // A tag declaration does not hide a non-tag declaration.
John McCall0d6b1642010-04-23 18:46:30 +00002416 if ((*I)->hasTagIdentifierNamespace() &&
Douglas Gregor546be3c2009-12-30 17:04:44 +00002417 (IDNS & (Decl::IDNS_Member | Decl::IDNS_Ordinary |
2418 Decl::IDNS_ObjCProtocol)))
2419 continue;
2420
2421 // Protocols are in distinct namespaces from everything else.
2422 if ((((*I)->getIdentifierNamespace() & Decl::IDNS_ObjCProtocol)
2423 || (IDNS & Decl::IDNS_ObjCProtocol)) &&
2424 (*I)->getIdentifierNamespace() != IDNS)
2425 continue;
2426
Douglas Gregor0cc84042010-01-14 15:47:35 +00002427 // Functions and function templates in the same scope overload
2428 // rather than hide. FIXME: Look for hiding based on function
2429 // signatures!
Douglas Gregordef91072010-01-14 03:35:48 +00002430 if ((*I)->isFunctionOrFunctionTemplate() &&
Douglas Gregor0cc84042010-01-14 15:47:35 +00002431 ND->isFunctionOrFunctionTemplate() &&
2432 SM == ShadowMaps.rbegin())
Douglas Gregordef91072010-01-14 03:35:48 +00002433 continue;
2434
Douglas Gregor546be3c2009-12-30 17:04:44 +00002435 // We've found a declaration that hides this one.
2436 return *I;
2437 }
2438 }
2439
2440 return 0;
2441}
2442
2443static void LookupVisibleDecls(DeclContext *Ctx, LookupResult &Result,
2444 bool QualifiedNameLookup,
Douglas Gregor0cc84042010-01-14 15:47:35 +00002445 bool InBaseClass,
Douglas Gregor546be3c2009-12-30 17:04:44 +00002446 VisibleDeclConsumer &Consumer,
2447 VisibleDeclsRecord &Visited) {
Douglas Gregor62021192010-02-04 23:42:48 +00002448 if (!Ctx)
2449 return;
2450
Douglas Gregor546be3c2009-12-30 17:04:44 +00002451 // Make sure we don't visit the same context twice.
2452 if (Visited.visitedContext(Ctx->getPrimaryContext()))
2453 return;
2454
Douglas Gregor4923aa22010-07-02 20:37:36 +00002455 if (CXXRecordDecl *Class = dyn_cast<CXXRecordDecl>(Ctx))
2456 Result.getSema().ForceDeclarationOfImplicitMembers(Class);
2457
Douglas Gregor546be3c2009-12-30 17:04:44 +00002458 // Enumerate all of the results in this context.
2459 for (DeclContext *CurCtx = Ctx->getPrimaryContext(); CurCtx;
2460 CurCtx = CurCtx->getNextContext()) {
2461 for (DeclContext::decl_iterator D = CurCtx->decls_begin(),
2462 DEnd = CurCtx->decls_end();
2463 D != DEnd; ++D) {
2464 if (NamedDecl *ND = dyn_cast<NamedDecl>(*D))
2465 if (Result.isAcceptableDecl(ND)) {
Douglas Gregor0cc84042010-01-14 15:47:35 +00002466 Consumer.FoundDecl(ND, Visited.checkHidden(ND), InBaseClass);
Douglas Gregor546be3c2009-12-30 17:04:44 +00002467 Visited.add(ND);
2468 }
2469
Sebastian Redl410c4f22010-08-31 20:53:31 +00002470 // Visit transparent contexts and inline namespaces inside this context.
Douglas Gregor546be3c2009-12-30 17:04:44 +00002471 if (DeclContext *InnerCtx = dyn_cast<DeclContext>(*D)) {
Sebastian Redl410c4f22010-08-31 20:53:31 +00002472 if (InnerCtx->isTransparentContext() || InnerCtx->isInlineNamespace())
Douglas Gregor0cc84042010-01-14 15:47:35 +00002473 LookupVisibleDecls(InnerCtx, Result, QualifiedNameLookup, InBaseClass,
Douglas Gregor546be3c2009-12-30 17:04:44 +00002474 Consumer, Visited);
2475 }
2476 }
2477 }
2478
2479 // Traverse using directives for qualified name lookup.
2480 if (QualifiedNameLookup) {
2481 ShadowContextRAII Shadow(Visited);
2482 DeclContext::udir_iterator I, E;
2483 for (llvm::tie(I, E) = Ctx->getUsingDirectives(); I != E; ++I) {
2484 LookupVisibleDecls((*I)->getNominatedNamespace(), Result,
Douglas Gregor0cc84042010-01-14 15:47:35 +00002485 QualifiedNameLookup, InBaseClass, Consumer, Visited);
Douglas Gregor546be3c2009-12-30 17:04:44 +00002486 }
2487 }
2488
Douglas Gregorf06cdae2010-01-03 18:01:57 +00002489 // Traverse the contexts of inherited C++ classes.
Douglas Gregor546be3c2009-12-30 17:04:44 +00002490 if (CXXRecordDecl *Record = dyn_cast<CXXRecordDecl>(Ctx)) {
John McCall86ff3082010-02-04 22:26:26 +00002491 if (!Record->hasDefinition())
2492 return;
2493
Douglas Gregor546be3c2009-12-30 17:04:44 +00002494 for (CXXRecordDecl::base_class_iterator B = Record->bases_begin(),
2495 BEnd = Record->bases_end();
2496 B != BEnd; ++B) {
2497 QualType BaseType = B->getType();
2498
2499 // Don't look into dependent bases, because name lookup can't look
2500 // there anyway.
2501 if (BaseType->isDependentType())
2502 continue;
2503
2504 const RecordType *Record = BaseType->getAs<RecordType>();
2505 if (!Record)
2506 continue;
2507
2508 // FIXME: It would be nice to be able to determine whether referencing
2509 // a particular member would be ambiguous. For example, given
2510 //
2511 // struct A { int member; };
2512 // struct B { int member; };
2513 // struct C : A, B { };
2514 //
2515 // void f(C *c) { c->### }
2516 //
2517 // accessing 'member' would result in an ambiguity. However, we
2518 // could be smart enough to qualify the member with the base
2519 // class, e.g.,
2520 //
2521 // c->B::member
2522 //
2523 // or
2524 //
2525 // c->A::member
2526
2527 // Find results in this base class (and its bases).
2528 ShadowContextRAII Shadow(Visited);
2529 LookupVisibleDecls(Record->getDecl(), Result, QualifiedNameLookup,
Douglas Gregor0cc84042010-01-14 15:47:35 +00002530 true, Consumer, Visited);
Douglas Gregor546be3c2009-12-30 17:04:44 +00002531 }
2532 }
2533
Douglas Gregorf06cdae2010-01-03 18:01:57 +00002534 // Traverse the contexts of Objective-C classes.
2535 if (ObjCInterfaceDecl *IFace = dyn_cast<ObjCInterfaceDecl>(Ctx)) {
2536 // Traverse categories.
2537 for (ObjCCategoryDecl *Category = IFace->getCategoryList();
2538 Category; Category = Category->getNextClassCategory()) {
2539 ShadowContextRAII Shadow(Visited);
Douglas Gregor0cc84042010-01-14 15:47:35 +00002540 LookupVisibleDecls(Category, Result, QualifiedNameLookup, false,
2541 Consumer, Visited);
Douglas Gregorf06cdae2010-01-03 18:01:57 +00002542 }
2543
2544 // Traverse protocols.
Ted Kremenek53b94412010-09-01 01:21:15 +00002545 for (ObjCInterfaceDecl::all_protocol_iterator
2546 I = IFace->all_referenced_protocol_begin(),
2547 E = IFace->all_referenced_protocol_end(); I != E; ++I) {
Douglas Gregorf06cdae2010-01-03 18:01:57 +00002548 ShadowContextRAII Shadow(Visited);
Douglas Gregor0cc84042010-01-14 15:47:35 +00002549 LookupVisibleDecls(*I, Result, QualifiedNameLookup, false, Consumer,
2550 Visited);
Douglas Gregorf06cdae2010-01-03 18:01:57 +00002551 }
2552
2553 // Traverse the superclass.
2554 if (IFace->getSuperClass()) {
2555 ShadowContextRAII Shadow(Visited);
2556 LookupVisibleDecls(IFace->getSuperClass(), Result, QualifiedNameLookup,
Douglas Gregor0cc84042010-01-14 15:47:35 +00002557 true, Consumer, Visited);
Douglas Gregorf06cdae2010-01-03 18:01:57 +00002558 }
Douglas Gregorc220a182010-04-19 18:02:19 +00002559
2560 // If there is an implementation, traverse it. We do this to find
2561 // synthesized ivars.
2562 if (IFace->getImplementation()) {
2563 ShadowContextRAII Shadow(Visited);
2564 LookupVisibleDecls(IFace->getImplementation(), Result,
2565 QualifiedNameLookup, true, Consumer, Visited);
2566 }
Douglas Gregorf06cdae2010-01-03 18:01:57 +00002567 } else if (ObjCProtocolDecl *Protocol = dyn_cast<ObjCProtocolDecl>(Ctx)) {
2568 for (ObjCProtocolDecl::protocol_iterator I = Protocol->protocol_begin(),
2569 E = Protocol->protocol_end(); I != E; ++I) {
2570 ShadowContextRAII Shadow(Visited);
Douglas Gregor0cc84042010-01-14 15:47:35 +00002571 LookupVisibleDecls(*I, Result, QualifiedNameLookup, false, Consumer,
2572 Visited);
Douglas Gregorf06cdae2010-01-03 18:01:57 +00002573 }
2574 } else if (ObjCCategoryDecl *Category = dyn_cast<ObjCCategoryDecl>(Ctx)) {
2575 for (ObjCCategoryDecl::protocol_iterator I = Category->protocol_begin(),
2576 E = Category->protocol_end(); I != E; ++I) {
2577 ShadowContextRAII Shadow(Visited);
Douglas Gregor0cc84042010-01-14 15:47:35 +00002578 LookupVisibleDecls(*I, Result, QualifiedNameLookup, false, Consumer,
2579 Visited);
Douglas Gregorf06cdae2010-01-03 18:01:57 +00002580 }
Douglas Gregorc220a182010-04-19 18:02:19 +00002581
2582 // If there is an implementation, traverse it.
2583 if (Category->getImplementation()) {
2584 ShadowContextRAII Shadow(Visited);
2585 LookupVisibleDecls(Category->getImplementation(), Result,
2586 QualifiedNameLookup, true, Consumer, Visited);
2587 }
Douglas Gregorf06cdae2010-01-03 18:01:57 +00002588 }
Douglas Gregor546be3c2009-12-30 17:04:44 +00002589}
2590
2591static void LookupVisibleDecls(Scope *S, LookupResult &Result,
2592 UnqualUsingDirectiveSet &UDirs,
2593 VisibleDeclConsumer &Consumer,
2594 VisibleDeclsRecord &Visited) {
2595 if (!S)
2596 return;
2597
Douglas Gregor8071e422010-08-15 06:18:01 +00002598 if (!S->getEntity() ||
2599 (!S->getParent() &&
2600 !Visited.alreadyVisitedContext((DeclContext *)S->getEntity())) ||
Douglas Gregor539c5c32010-01-07 00:31:29 +00002601 ((DeclContext *)S->getEntity())->isFunctionOrMethod()) {
2602 // Walk through the declarations in this Scope.
2603 for (Scope::decl_iterator D = S->decl_begin(), DEnd = S->decl_end();
2604 D != DEnd; ++D) {
John McCalld226f652010-08-21 09:40:31 +00002605 if (NamedDecl *ND = dyn_cast<NamedDecl>(*D))
Douglas Gregor539c5c32010-01-07 00:31:29 +00002606 if (Result.isAcceptableDecl(ND)) {
Douglas Gregor0cc84042010-01-14 15:47:35 +00002607 Consumer.FoundDecl(ND, Visited.checkHidden(ND), false);
Douglas Gregor539c5c32010-01-07 00:31:29 +00002608 Visited.add(ND);
2609 }
2610 }
2611 }
2612
Douglas Gregor711be1e2010-03-15 14:33:29 +00002613 // FIXME: C++ [temp.local]p8
Douglas Gregor546be3c2009-12-30 17:04:44 +00002614 DeclContext *Entity = 0;
Douglas Gregore3582012010-01-01 17:44:25 +00002615 if (S->getEntity()) {
Douglas Gregor546be3c2009-12-30 17:04:44 +00002616 // Look into this scope's declaration context, along with any of its
2617 // parent lookup contexts (e.g., enclosing classes), up to the point
2618 // where we hit the context stored in the next outer scope.
2619 Entity = (DeclContext *)S->getEntity();
Douglas Gregor711be1e2010-03-15 14:33:29 +00002620 DeclContext *OuterCtx = findOuterContext(S).first; // FIXME
Douglas Gregor546be3c2009-12-30 17:04:44 +00002621
Douglas Gregordbdf5e72010-03-15 15:26:48 +00002622 for (DeclContext *Ctx = Entity; Ctx && !Ctx->Equals(OuterCtx);
Douglas Gregor546be3c2009-12-30 17:04:44 +00002623 Ctx = Ctx->getLookupParent()) {
Douglas Gregorf06cdae2010-01-03 18:01:57 +00002624 if (ObjCMethodDecl *Method = dyn_cast<ObjCMethodDecl>(Ctx)) {
2625 if (Method->isInstanceMethod()) {
2626 // For instance methods, look for ivars in the method's interface.
2627 LookupResult IvarResult(Result.getSema(), Result.getLookupName(),
2628 Result.getNameLoc(), Sema::LookupMemberName);
Douglas Gregor62021192010-02-04 23:42:48 +00002629 if (ObjCInterfaceDecl *IFace = Method->getClassInterface())
2630 LookupVisibleDecls(IFace, IvarResult, /*QualifiedNameLookup=*/false,
2631 /*InBaseClass=*/false, Consumer, Visited);
Douglas Gregorf06cdae2010-01-03 18:01:57 +00002632 }
2633
2634 // We've already performed all of the name lookup that we need
2635 // to for Objective-C methods; the next context will be the
2636 // outer scope.
2637 break;
2638 }
2639
Douglas Gregor546be3c2009-12-30 17:04:44 +00002640 if (Ctx->isFunctionOrMethod())
2641 continue;
2642
2643 LookupVisibleDecls(Ctx, Result, /*QualifiedNameLookup=*/false,
Douglas Gregor0cc84042010-01-14 15:47:35 +00002644 /*InBaseClass=*/false, Consumer, Visited);
Douglas Gregor546be3c2009-12-30 17:04:44 +00002645 }
2646 } else if (!S->getParent()) {
2647 // Look into the translation unit scope. We walk through the translation
2648 // unit's declaration context, because the Scope itself won't have all of
2649 // the declarations if we loaded a precompiled header.
2650 // FIXME: We would like the translation unit's Scope object to point to the
2651 // translation unit, so we don't need this special "if" branch. However,
2652 // doing so would force the normal C++ name-lookup code to look into the
2653 // translation unit decl when the IdentifierInfo chains would suffice.
2654 // Once we fix that problem (which is part of a more general "don't look
Douglas Gregor539c5c32010-01-07 00:31:29 +00002655 // in DeclContexts unless we have to" optimization), we can eliminate this.
Douglas Gregor546be3c2009-12-30 17:04:44 +00002656 Entity = Result.getSema().Context.getTranslationUnitDecl();
2657 LookupVisibleDecls(Entity, Result, /*QualifiedNameLookup=*/false,
Douglas Gregor0cc84042010-01-14 15:47:35 +00002658 /*InBaseClass=*/false, Consumer, Visited);
Douglas Gregor539c5c32010-01-07 00:31:29 +00002659 }
Douglas Gregor546be3c2009-12-30 17:04:44 +00002660
2661 if (Entity) {
2662 // Lookup visible declarations in any namespaces found by using
2663 // directives.
2664 UnqualUsingDirectiveSet::const_iterator UI, UEnd;
2665 llvm::tie(UI, UEnd) = UDirs.getNamespacesFor(Entity);
2666 for (; UI != UEnd; ++UI)
2667 LookupVisibleDecls(const_cast<DeclContext *>(UI->getNominatedNamespace()),
Douglas Gregor0cc84042010-01-14 15:47:35 +00002668 Result, /*QualifiedNameLookup=*/false,
2669 /*InBaseClass=*/false, Consumer, Visited);
Douglas Gregor546be3c2009-12-30 17:04:44 +00002670 }
2671
2672 // Lookup names in the parent scope.
2673 ShadowContextRAII Shadow(Visited);
2674 LookupVisibleDecls(S->getParent(), Result, UDirs, Consumer, Visited);
2675}
2676
2677void Sema::LookupVisibleDecls(Scope *S, LookupNameKind Kind,
Douglas Gregor8071e422010-08-15 06:18:01 +00002678 VisibleDeclConsumer &Consumer,
2679 bool IncludeGlobalScope) {
Douglas Gregor546be3c2009-12-30 17:04:44 +00002680 // Determine the set of using directives available during
2681 // unqualified name lookup.
2682 Scope *Initial = S;
2683 UnqualUsingDirectiveSet UDirs;
2684 if (getLangOptions().CPlusPlus) {
2685 // Find the first namespace or translation-unit scope.
2686 while (S && !isNamespaceOrTranslationUnitScope(S))
2687 S = S->getParent();
2688
2689 UDirs.visitScopeChain(Initial, S);
2690 }
2691 UDirs.done();
2692
2693 // Look for visible declarations.
2694 LookupResult Result(*this, DeclarationName(), SourceLocation(), Kind);
2695 VisibleDeclsRecord Visited;
Douglas Gregor8071e422010-08-15 06:18:01 +00002696 if (!IncludeGlobalScope)
2697 Visited.visitedContext(Context.getTranslationUnitDecl());
Douglas Gregor546be3c2009-12-30 17:04:44 +00002698 ShadowContextRAII Shadow(Visited);
2699 ::LookupVisibleDecls(Initial, Result, UDirs, Consumer, Visited);
2700}
2701
2702void Sema::LookupVisibleDecls(DeclContext *Ctx, LookupNameKind Kind,
Douglas Gregor8071e422010-08-15 06:18:01 +00002703 VisibleDeclConsumer &Consumer,
2704 bool IncludeGlobalScope) {
Douglas Gregor546be3c2009-12-30 17:04:44 +00002705 LookupResult Result(*this, DeclarationName(), SourceLocation(), Kind);
2706 VisibleDeclsRecord Visited;
Douglas Gregor8071e422010-08-15 06:18:01 +00002707 if (!IncludeGlobalScope)
2708 Visited.visitedContext(Context.getTranslationUnitDecl());
Douglas Gregor546be3c2009-12-30 17:04:44 +00002709 ShadowContextRAII Shadow(Visited);
Douglas Gregor0cc84042010-01-14 15:47:35 +00002710 ::LookupVisibleDecls(Ctx, Result, /*QualifiedNameLookup=*/true,
2711 /*InBaseClass=*/false, Consumer, Visited);
Douglas Gregor546be3c2009-12-30 17:04:44 +00002712}
2713
2714//----------------------------------------------------------------------------
2715// Typo correction
2716//----------------------------------------------------------------------------
2717
2718namespace {
2719class TypoCorrectionConsumer : public VisibleDeclConsumer {
2720 /// \brief The name written that is a typo in the source.
2721 llvm::StringRef Typo;
2722
2723 /// \brief The results found that have the smallest edit distance
2724 /// found (so far) with the typo name.
Douglas Gregore24b5752010-10-14 20:34:08 +00002725 ///
2726 /// The boolean value indicates whether there is a keyword with this name.
2727 llvm::StringMap<bool, llvm::BumpPtrAllocator> BestResults;
Douglas Gregor546be3c2009-12-30 17:04:44 +00002728
2729 /// \brief The best edit distance found so far.
2730 unsigned BestEditDistance;
2731
2732public:
2733 explicit TypoCorrectionConsumer(IdentifierInfo *Typo)
Douglas Gregore24b5752010-10-14 20:34:08 +00002734 : Typo(Typo->getName()),
2735 BestEditDistance((std::numeric_limits<unsigned>::max)()) { }
Douglas Gregor546be3c2009-12-30 17:04:44 +00002736
Douglas Gregor0cc84042010-01-14 15:47:35 +00002737 virtual void FoundDecl(NamedDecl *ND, NamedDecl *Hiding, bool InBaseClass);
Douglas Gregor95f42922010-10-14 22:11:03 +00002738 void FoundName(llvm::StringRef Name);
Douglas Gregoraaf87162010-04-14 20:04:41 +00002739 void addKeywordResult(ASTContext &Context, llvm::StringRef Keyword);
Douglas Gregor546be3c2009-12-30 17:04:44 +00002740
Douglas Gregore24b5752010-10-14 20:34:08 +00002741 typedef llvm::StringMap<bool, llvm::BumpPtrAllocator>::iterator iterator;
2742 iterator begin() { return BestResults.begin(); }
2743 iterator end() { return BestResults.end(); }
2744 void erase(iterator I) { BestResults.erase(I); }
2745 unsigned size() const { return BestResults.size(); }
2746 bool empty() const { return BestResults.empty(); }
Douglas Gregor546be3c2009-12-30 17:04:44 +00002747
Douglas Gregor7b824e82010-10-15 13:35:25 +00002748 bool &operator[](llvm::StringRef Name) {
2749 return BestResults[Name];
2750 }
2751
Douglas Gregoraaf87162010-04-14 20:04:41 +00002752 unsigned getBestEditDistance() const { return BestEditDistance; }
Douglas Gregor546be3c2009-12-30 17:04:44 +00002753};
2754
2755}
2756
Douglas Gregor0cc84042010-01-14 15:47:35 +00002757void TypoCorrectionConsumer::FoundDecl(NamedDecl *ND, NamedDecl *Hiding,
2758 bool InBaseClass) {
Douglas Gregor546be3c2009-12-30 17:04:44 +00002759 // Don't consider hidden names for typo correction.
2760 if (Hiding)
2761 return;
2762
2763 // Only consider entities with identifiers for names, ignoring
2764 // special names (constructors, overloaded operators, selectors,
2765 // etc.).
2766 IdentifierInfo *Name = ND->getIdentifier();
2767 if (!Name)
2768 return;
2769
Douglas Gregor95f42922010-10-14 22:11:03 +00002770 FoundName(Name->getName());
2771}
2772
2773void TypoCorrectionConsumer::FoundName(llvm::StringRef Name) {
Douglas Gregora1194772010-10-19 22:14:33 +00002774 using namespace std;
2775
Douglas Gregor362a8f22010-10-19 19:39:10 +00002776 // Use a simple length-based heuristic to determine the minimum possible
2777 // edit distance. If the minimum isn't good enough, bail out early.
2778 unsigned MinED = abs((int)Name.size() - (int)Typo.size());
2779 if (MinED > BestEditDistance || (MinED && Typo.size() / MinED < 3))
2780 return;
2781
Douglas Gregora1194772010-10-19 22:14:33 +00002782 // Compute an upper bound on the allowable edit distance, so that the
2783 // edit-distance algorithm can short-circuit.
2784 unsigned UpperBound = min(unsigned((Typo.size() + 2) / 3), BestEditDistance);
2785
Douglas Gregor546be3c2009-12-30 17:04:44 +00002786 // Compute the edit distance between the typo and the name of this
2787 // entity. If this edit distance is not worse than the best edit
2788 // distance we've seen so far, add it to the list of results.
Douglas Gregora1194772010-10-19 22:14:33 +00002789 unsigned ED = Typo.edit_distance(Name, true, UpperBound);
Douglas Gregor95f42922010-10-14 22:11:03 +00002790 if (ED == 0)
2791 return;
2792
Douglas Gregore24b5752010-10-14 20:34:08 +00002793 if (ED < BestEditDistance) {
2794 // This result is better than any we've seen before; clear out
2795 // the previous results.
2796 BestResults.clear();
Douglas Gregor546be3c2009-12-30 17:04:44 +00002797 BestEditDistance = ED;
Douglas Gregore24b5752010-10-14 20:34:08 +00002798 } else if (ED > BestEditDistance) {
2799 // This result is worse than the best results we've seen so far;
2800 // ignore it.
2801 return;
2802 }
Douglas Gregor95f42922010-10-14 22:11:03 +00002803
Douglas Gregore24b5752010-10-14 20:34:08 +00002804 // Add this name to the list of results. By not assigning a value, we
2805 // keep the current value if we've seen this name before (either as a
2806 // keyword or as a declaration), or get the default value (not a keyword)
2807 // if we haven't seen it before.
Douglas Gregor95f42922010-10-14 22:11:03 +00002808 (void)BestResults[Name];
Douglas Gregor546be3c2009-12-30 17:04:44 +00002809}
2810
Douglas Gregoraaf87162010-04-14 20:04:41 +00002811void TypoCorrectionConsumer::addKeywordResult(ASTContext &Context,
2812 llvm::StringRef Keyword) {
2813 // Compute the edit distance between the typo and this keyword.
2814 // If this edit distance is not worse than the best edit
2815 // distance we've seen so far, add it to the list of results.
2816 unsigned ED = Typo.edit_distance(Keyword);
Douglas Gregore24b5752010-10-14 20:34:08 +00002817 if (ED < BestEditDistance) {
2818 BestResults.clear();
Douglas Gregoraaf87162010-04-14 20:04:41 +00002819 BestEditDistance = ED;
Douglas Gregore24b5752010-10-14 20:34:08 +00002820 } else if (ED > BestEditDistance) {
2821 // This result is worse than the best results we've seen so far;
2822 // ignore it.
2823 return;
2824 }
Douglas Gregoraaf87162010-04-14 20:04:41 +00002825
Douglas Gregore24b5752010-10-14 20:34:08 +00002826 BestResults[Keyword] = true;
Douglas Gregoraaf87162010-04-14 20:04:41 +00002827}
2828
Douglas Gregor9a632ea2010-10-20 03:06:34 +00002829/// \brief Perform name lookup for a possible result for typo correction.
2830static void LookupPotentialTypoResult(Sema &SemaRef,
2831 LookupResult &Res,
2832 IdentifierInfo *Name,
2833 Scope *S, CXXScopeSpec *SS,
2834 DeclContext *MemberContext,
2835 bool EnteringContext,
2836 Sema::CorrectTypoContext CTC) {
2837 Res.suppressDiagnostics();
2838 Res.clear();
2839 Res.setLookupName(Name);
2840 if (MemberContext) {
2841 if (ObjCInterfaceDecl *Class = dyn_cast<ObjCInterfaceDecl>(MemberContext)) {
2842 if (CTC == Sema::CTC_ObjCIvarLookup) {
2843 if (ObjCIvarDecl *Ivar = Class->lookupInstanceVariable(Name)) {
2844 Res.addDecl(Ivar);
2845 Res.resolveKind();
2846 return;
2847 }
2848 }
2849
2850 if (ObjCPropertyDecl *Prop = Class->FindPropertyDeclaration(Name)) {
2851 Res.addDecl(Prop);
2852 Res.resolveKind();
2853 return;
2854 }
2855 }
2856
2857 SemaRef.LookupQualifiedName(Res, MemberContext);
2858 return;
2859 }
2860
2861 SemaRef.LookupParsedName(Res, S, SS, /*AllowBuiltinCreation=*/false,
2862 EnteringContext);
2863
2864 // Fake ivar lookup; this should really be part of
2865 // LookupParsedName.
2866 if (ObjCMethodDecl *Method = SemaRef.getCurMethodDecl()) {
2867 if (Method->isInstanceMethod() && Method->getClassInterface() &&
2868 (Res.empty() ||
2869 (Res.isSingleResult() &&
2870 Res.getFoundDecl()->isDefinedOutsideFunctionOrMethod()))) {
2871 if (ObjCIvarDecl *IV
2872 = Method->getClassInterface()->lookupInstanceVariable(Name)) {
2873 Res.addDecl(IV);
2874 Res.resolveKind();
2875 }
2876 }
2877 }
2878}
2879
Douglas Gregor546be3c2009-12-30 17:04:44 +00002880/// \brief Try to "correct" a typo in the source code by finding
2881/// visible declarations whose names are similar to the name that was
2882/// present in the source code.
2883///
2884/// \param Res the \c LookupResult structure that contains the name
2885/// that was present in the source code along with the name-lookup
2886/// criteria used to search for the name. On success, this structure
2887/// will contain the results of name lookup.
2888///
2889/// \param S the scope in which name lookup occurs.
2890///
2891/// \param SS the nested-name-specifier that precedes the name we're
2892/// looking for, if present.
2893///
Douglas Gregor2dcc0112009-12-31 07:42:17 +00002894/// \param MemberContext if non-NULL, the context in which to look for
2895/// a member access expression.
2896///
Douglas Gregorbb092ba2009-12-31 05:20:13 +00002897/// \param EnteringContext whether we're entering the context described by
2898/// the nested-name-specifier SS.
2899///
Douglas Gregoraaf87162010-04-14 20:04:41 +00002900/// \param CTC The context in which typo correction occurs, which impacts the
2901/// set of keywords permitted.
2902///
Douglas Gregorf06cdae2010-01-03 18:01:57 +00002903/// \param OPT when non-NULL, the search for visible declarations will
2904/// also walk the protocols in the qualified interfaces of \p OPT.
2905///
Douglas Gregor931f98a2010-04-14 17:09:22 +00002906/// \returns the corrected name if the typo was corrected, otherwise returns an
2907/// empty \c DeclarationName. When a typo was corrected, the result structure
2908/// may contain the results of name lookup for the correct name or it may be
2909/// empty.
2910DeclarationName Sema::CorrectTypo(LookupResult &Res, Scope *S, CXXScopeSpec *SS,
Douglas Gregoraaf87162010-04-14 20:04:41 +00002911 DeclContext *MemberContext,
2912 bool EnteringContext,
2913 CorrectTypoContext CTC,
2914 const ObjCObjectPointerType *OPT) {
Douglas Gregora0068fc2010-07-09 17:35:33 +00002915 if (Diags.hasFatalErrorOccurred() || !getLangOptions().SpellChecking)
Douglas Gregor931f98a2010-04-14 17:09:22 +00002916 return DeclarationName();
Ted Kremenek1dac3412010-01-06 00:23:04 +00002917
Douglas Gregor546be3c2009-12-30 17:04:44 +00002918 // We only attempt to correct typos for identifiers.
2919 IdentifierInfo *Typo = Res.getLookupName().getAsIdentifierInfo();
2920 if (!Typo)
Douglas Gregor931f98a2010-04-14 17:09:22 +00002921 return DeclarationName();
Douglas Gregor546be3c2009-12-30 17:04:44 +00002922
2923 // If the scope specifier itself was invalid, don't try to correct
2924 // typos.
2925 if (SS && SS->isInvalid())
Douglas Gregor931f98a2010-04-14 17:09:22 +00002926 return DeclarationName();
Douglas Gregor546be3c2009-12-30 17:04:44 +00002927
2928 // Never try to correct typos during template deduction or
2929 // instantiation.
2930 if (!ActiveTemplateInstantiations.empty())
Douglas Gregor931f98a2010-04-14 17:09:22 +00002931 return DeclarationName();
Douglas Gregoraaf87162010-04-14 20:04:41 +00002932
Douglas Gregor546be3c2009-12-30 17:04:44 +00002933 TypoCorrectionConsumer Consumer(Typo);
Douglas Gregoraaf87162010-04-14 20:04:41 +00002934
2935 // Perform name lookup to find visible, similarly-named entities.
Douglas Gregor3eedbb02010-10-20 01:32:02 +00002936 bool IsUnqualifiedLookup = false;
Douglas Gregorf06cdae2010-01-03 18:01:57 +00002937 if (MemberContext) {
Douglas Gregor2dcc0112009-12-31 07:42:17 +00002938 LookupVisibleDecls(MemberContext, Res.getLookupKind(), Consumer);
Douglas Gregorf06cdae2010-01-03 18:01:57 +00002939
2940 // Look in qualified interfaces.
2941 if (OPT) {
2942 for (ObjCObjectPointerType::qual_iterator
2943 I = OPT->qual_begin(), E = OPT->qual_end();
2944 I != E; ++I)
2945 LookupVisibleDecls(*I, Res.getLookupKind(), Consumer);
2946 }
2947 } else if (SS && SS->isSet()) {
Douglas Gregor546be3c2009-12-30 17:04:44 +00002948 DeclContext *DC = computeDeclContext(*SS, EnteringContext);
2949 if (!DC)
Douglas Gregor931f98a2010-04-14 17:09:22 +00002950 return DeclarationName();
Douglas Gregor546be3c2009-12-30 17:04:44 +00002951
Douglas Gregor3eedbb02010-10-20 01:32:02 +00002952 // Provide a stop gap for files that are just seriously broken. Trying
2953 // to correct all typos can turn into a HUGE performance penalty, causing
2954 // some files to take minutes to get rejected by the parser.
2955 if (TyposCorrected + UnqualifiedTyposCorrected.size() >= 20)
2956 return DeclarationName();
2957 ++TyposCorrected;
2958
Douglas Gregor546be3c2009-12-30 17:04:44 +00002959 LookupVisibleDecls(DC, Res.getLookupKind(), Consumer);
2960 } else {
Douglas Gregor3eedbb02010-10-20 01:32:02 +00002961 IsUnqualifiedLookup = true;
2962 UnqualifiedTyposCorrectedMap::iterator Cached
2963 = UnqualifiedTyposCorrected.find(Typo);
2964 if (Cached == UnqualifiedTyposCorrected.end()) {
2965 // Provide a stop gap for files that are just seriously broken. Trying
2966 // to correct all typos can turn into a HUGE performance penalty, causing
2967 // some files to take minutes to get rejected by the parser.
2968 if (TyposCorrected + UnqualifiedTyposCorrected.size() >= 20)
2969 return DeclarationName();
2970
2971 // For unqualified lookup, look through all of the names that we have
2972 // seen in this translation unit.
2973 for (IdentifierTable::iterator I = Context.Idents.begin(),
2974 IEnd = Context.Idents.end();
2975 I != IEnd; ++I)
2976 Consumer.FoundName(I->getKey());
2977
2978 // Walk through identifiers in external identifier sources.
2979 if (IdentifierInfoLookup *External
Douglas Gregor95f42922010-10-14 22:11:03 +00002980 = Context.Idents.getExternalIdentifierLookup()) {
Douglas Gregor3eedbb02010-10-20 01:32:02 +00002981 IdentifierIterator *Iter = External->getIdentifiers();
2982 do {
2983 llvm::StringRef Name = Iter->Next();
2984 if (Name.empty())
2985 break;
Douglas Gregor95f42922010-10-14 22:11:03 +00002986
Douglas Gregor3eedbb02010-10-20 01:32:02 +00002987 Consumer.FoundName(Name);
2988 } while (true);
2989 }
2990 } else {
2991 // Use the cached value, unless it's a keyword. In the keyword case, we'll
2992 // end up adding the keyword below.
2993 if (Cached->second.first.empty())
2994 return DeclarationName();
2995
2996 if (!Cached->second.second)
2997 Consumer.FoundName(Cached->second.first);
Douglas Gregor95f42922010-10-14 22:11:03 +00002998 }
Douglas Gregor546be3c2009-12-30 17:04:44 +00002999 }
3000
Douglas Gregoraaf87162010-04-14 20:04:41 +00003001 // Add context-dependent keywords.
3002 bool WantTypeSpecifiers = false;
3003 bool WantExpressionKeywords = false;
3004 bool WantCXXNamedCasts = false;
3005 bool WantRemainingKeywords = false;
3006 switch (CTC) {
3007 case CTC_Unknown:
3008 WantTypeSpecifiers = true;
3009 WantExpressionKeywords = true;
3010 WantCXXNamedCasts = true;
3011 WantRemainingKeywords = true;
Douglas Gregor91f7ac72010-05-18 16:14:23 +00003012
3013 if (ObjCMethodDecl *Method = getCurMethodDecl())
3014 if (Method->getClassInterface() &&
3015 Method->getClassInterface()->getSuperClass())
3016 Consumer.addKeywordResult(Context, "super");
3017
Douglas Gregoraaf87162010-04-14 20:04:41 +00003018 break;
3019
3020 case CTC_NoKeywords:
3021 break;
3022
3023 case CTC_Type:
3024 WantTypeSpecifiers = true;
3025 break;
3026
3027 case CTC_ObjCMessageReceiver:
3028 Consumer.addKeywordResult(Context, "super");
3029 // Fall through to handle message receivers like expressions.
3030
3031 case CTC_Expression:
3032 if (getLangOptions().CPlusPlus)
3033 WantTypeSpecifiers = true;
3034 WantExpressionKeywords = true;
3035 // Fall through to get C++ named casts.
3036
3037 case CTC_CXXCasts:
3038 WantCXXNamedCasts = true;
3039 break;
3040
Douglas Gregor9a632ea2010-10-20 03:06:34 +00003041 case CTC_ObjCPropertyLookup:
3042 // FIXME: Add "isa"?
3043 break;
3044
Douglas Gregoraaf87162010-04-14 20:04:41 +00003045 case CTC_MemberLookup:
3046 if (getLangOptions().CPlusPlus)
3047 Consumer.addKeywordResult(Context, "template");
3048 break;
Douglas Gregor9a632ea2010-10-20 03:06:34 +00003049
3050 case CTC_ObjCIvarLookup:
3051 break;
Douglas Gregoraaf87162010-04-14 20:04:41 +00003052 }
3053
3054 if (WantTypeSpecifiers) {
3055 // Add type-specifier keywords to the set of results.
3056 const char *CTypeSpecs[] = {
3057 "char", "const", "double", "enum", "float", "int", "long", "short",
3058 "signed", "struct", "union", "unsigned", "void", "volatile", "_Bool",
3059 "_Complex", "_Imaginary",
3060 // storage-specifiers as well
3061 "extern", "inline", "static", "typedef"
3062 };
3063
3064 const unsigned NumCTypeSpecs = sizeof(CTypeSpecs) / sizeof(CTypeSpecs[0]);
3065 for (unsigned I = 0; I != NumCTypeSpecs; ++I)
3066 Consumer.addKeywordResult(Context, CTypeSpecs[I]);
3067
3068 if (getLangOptions().C99)
3069 Consumer.addKeywordResult(Context, "restrict");
3070 if (getLangOptions().Bool || getLangOptions().CPlusPlus)
3071 Consumer.addKeywordResult(Context, "bool");
3072
3073 if (getLangOptions().CPlusPlus) {
3074 Consumer.addKeywordResult(Context, "class");
3075 Consumer.addKeywordResult(Context, "typename");
3076 Consumer.addKeywordResult(Context, "wchar_t");
3077
3078 if (getLangOptions().CPlusPlus0x) {
3079 Consumer.addKeywordResult(Context, "char16_t");
3080 Consumer.addKeywordResult(Context, "char32_t");
3081 Consumer.addKeywordResult(Context, "constexpr");
3082 Consumer.addKeywordResult(Context, "decltype");
3083 Consumer.addKeywordResult(Context, "thread_local");
3084 }
3085 }
3086
3087 if (getLangOptions().GNUMode)
3088 Consumer.addKeywordResult(Context, "typeof");
3089 }
3090
Douglas Gregord0785ea2010-05-18 16:30:22 +00003091 if (WantCXXNamedCasts && getLangOptions().CPlusPlus) {
Douglas Gregoraaf87162010-04-14 20:04:41 +00003092 Consumer.addKeywordResult(Context, "const_cast");
3093 Consumer.addKeywordResult(Context, "dynamic_cast");
3094 Consumer.addKeywordResult(Context, "reinterpret_cast");
3095 Consumer.addKeywordResult(Context, "static_cast");
3096 }
3097
3098 if (WantExpressionKeywords) {
3099 Consumer.addKeywordResult(Context, "sizeof");
3100 if (getLangOptions().Bool || getLangOptions().CPlusPlus) {
3101 Consumer.addKeywordResult(Context, "false");
3102 Consumer.addKeywordResult(Context, "true");
3103 }
3104
3105 if (getLangOptions().CPlusPlus) {
3106 const char *CXXExprs[] = {
3107 "delete", "new", "operator", "throw", "typeid"
3108 };
3109 const unsigned NumCXXExprs = sizeof(CXXExprs) / sizeof(CXXExprs[0]);
3110 for (unsigned I = 0; I != NumCXXExprs; ++I)
3111 Consumer.addKeywordResult(Context, CXXExprs[I]);
3112
3113 if (isa<CXXMethodDecl>(CurContext) &&
3114 cast<CXXMethodDecl>(CurContext)->isInstance())
3115 Consumer.addKeywordResult(Context, "this");
3116
3117 if (getLangOptions().CPlusPlus0x) {
3118 Consumer.addKeywordResult(Context, "alignof");
3119 Consumer.addKeywordResult(Context, "nullptr");
3120 }
3121 }
3122 }
3123
3124 if (WantRemainingKeywords) {
3125 if (getCurFunctionOrMethodDecl() || getCurBlock()) {
3126 // Statements.
3127 const char *CStmts[] = {
3128 "do", "else", "for", "goto", "if", "return", "switch", "while" };
3129 const unsigned NumCStmts = sizeof(CStmts) / sizeof(CStmts[0]);
3130 for (unsigned I = 0; I != NumCStmts; ++I)
3131 Consumer.addKeywordResult(Context, CStmts[I]);
3132
3133 if (getLangOptions().CPlusPlus) {
3134 Consumer.addKeywordResult(Context, "catch");
3135 Consumer.addKeywordResult(Context, "try");
3136 }
3137
3138 if (S && S->getBreakParent())
3139 Consumer.addKeywordResult(Context, "break");
3140
3141 if (S && S->getContinueParent())
3142 Consumer.addKeywordResult(Context, "continue");
3143
John McCall781472f2010-08-25 08:40:02 +00003144 if (!getCurFunction()->SwitchStack.empty()) {
Douglas Gregoraaf87162010-04-14 20:04:41 +00003145 Consumer.addKeywordResult(Context, "case");
3146 Consumer.addKeywordResult(Context, "default");
3147 }
3148 } else {
3149 if (getLangOptions().CPlusPlus) {
3150 Consumer.addKeywordResult(Context, "namespace");
3151 Consumer.addKeywordResult(Context, "template");
3152 }
3153
3154 if (S && S->isClassScope()) {
3155 Consumer.addKeywordResult(Context, "explicit");
3156 Consumer.addKeywordResult(Context, "friend");
3157 Consumer.addKeywordResult(Context, "mutable");
3158 Consumer.addKeywordResult(Context, "private");
3159 Consumer.addKeywordResult(Context, "protected");
3160 Consumer.addKeywordResult(Context, "public");
3161 Consumer.addKeywordResult(Context, "virtual");
3162 }
3163 }
3164
3165 if (getLangOptions().CPlusPlus) {
3166 Consumer.addKeywordResult(Context, "using");
3167
3168 if (getLangOptions().CPlusPlus0x)
3169 Consumer.addKeywordResult(Context, "static_assert");
3170 }
3171 }
3172
3173 // If we haven't found anything, we're done.
Douglas Gregor3eedbb02010-10-20 01:32:02 +00003174 if (Consumer.empty()) {
3175 // If this was an unqualified lookup, note that no correction was found.
3176 if (IsUnqualifiedLookup)
3177 (void)UnqualifiedTyposCorrected[Typo];
3178
Douglas Gregor931f98a2010-04-14 17:09:22 +00003179 return DeclarationName();
Douglas Gregor3eedbb02010-10-20 01:32:02 +00003180 }
Douglas Gregor546be3c2009-12-30 17:04:44 +00003181
Douglas Gregore24b5752010-10-14 20:34:08 +00003182 // Make sure that the user typed at least 3 characters for each correction
3183 // made. Otherwise, we don't even both looking at the results.
3184 unsigned ED = Consumer.getBestEditDistance();
Douglas Gregor3eedbb02010-10-20 01:32:02 +00003185 if (ED > 0 && Typo->getName().size() / ED < 3) {
3186 // If this was an unqualified lookup, note that no correction was found.
3187 if (IsUnqualifiedLookup)
3188 (void)UnqualifiedTyposCorrected[Typo];
3189
Douglas Gregore24b5752010-10-14 20:34:08 +00003190 return DeclarationName();
Douglas Gregor3eedbb02010-10-20 01:32:02 +00003191 }
Douglas Gregore24b5752010-10-14 20:34:08 +00003192
3193 // Weed out any names that could not be found by name lookup.
Douglas Gregor6eaac8b2010-10-15 16:49:56 +00003194 bool LastLookupWasAccepted = false;
Douglas Gregoraaf87162010-04-14 20:04:41 +00003195 for (TypoCorrectionConsumer::iterator I = Consumer.begin(),
3196 IEnd = Consumer.end();
Douglas Gregore24b5752010-10-14 20:34:08 +00003197 I != IEnd; /* Increment in loop. */) {
3198 // Keywords are always found.
3199 if (I->second) {
3200 ++I;
3201 continue;
Douglas Gregoraaf87162010-04-14 20:04:41 +00003202 }
Douglas Gregore24b5752010-10-14 20:34:08 +00003203
3204 // Perform name lookup on this name.
3205 IdentifierInfo *Name = &Context.Idents.get(I->getKey());
Douglas Gregor9a632ea2010-10-20 03:06:34 +00003206 LookupPotentialTypoResult(*this, Res, Name, S, SS, MemberContext,
3207 EnteringContext, CTC);
Douglas Gregore24b5752010-10-14 20:34:08 +00003208
3209 switch (Res.getResultKind()) {
3210 case LookupResult::NotFound:
3211 case LookupResult::NotFoundInCurrentInstantiation:
3212 case LookupResult::Ambiguous:
3213 // We didn't find this name in our scope, or didn't like what we found;
3214 // ignore it.
3215 Res.suppressDiagnostics();
3216 {
3217 TypoCorrectionConsumer::iterator Next = I;
3218 ++Next;
3219 Consumer.erase(I);
3220 I = Next;
3221 }
Douglas Gregor6eaac8b2010-10-15 16:49:56 +00003222 LastLookupWasAccepted = false;
Douglas Gregore24b5752010-10-14 20:34:08 +00003223 break;
3224
3225 case LookupResult::Found:
3226 case LookupResult::FoundOverloaded:
3227 case LookupResult::FoundUnresolvedValue:
3228 ++I;
Douglas Gregor9a632ea2010-10-20 03:06:34 +00003229 LastLookupWasAccepted = true;
Douglas Gregoraaf87162010-04-14 20:04:41 +00003230 break;
Douglas Gregore24b5752010-10-14 20:34:08 +00003231 }
3232
3233 if (Res.isAmbiguous()) {
3234 // We don't deal with ambiguities.
3235 Res.suppressDiagnostics();
3236 Res.clear();
3237 return DeclarationName();
3238 }
Douglas Gregoraaf87162010-04-14 20:04:41 +00003239 }
Douglas Gregor546be3c2009-12-30 17:04:44 +00003240
Douglas Gregore24b5752010-10-14 20:34:08 +00003241 // If only a single name remains, return that result.
Douglas Gregor6eaac8b2010-10-15 16:49:56 +00003242 if (Consumer.size() == 1) {
3243 IdentifierInfo *Name = &Context.Idents.get(Consumer.begin()->getKey());
Douglas Gregorf98402d2010-10-20 01:01:57 +00003244 if (Consumer.begin()->second) {
3245 Res.suppressDiagnostics();
3246 Res.clear();
3247 } else if (!LastLookupWasAccepted) {
Douglas Gregor6eaac8b2010-10-15 16:49:56 +00003248 // Perform name lookup on this name.
Douglas Gregor9a632ea2010-10-20 03:06:34 +00003249 LookupPotentialTypoResult(*this, Res, Name, S, SS, MemberContext,
3250 EnteringContext, CTC);
Douglas Gregor6eaac8b2010-10-15 16:49:56 +00003251 }
3252
Douglas Gregor3eedbb02010-10-20 01:32:02 +00003253 // Record the correction for unqualified lookup.
3254 if (IsUnqualifiedLookup)
3255 UnqualifiedTyposCorrected[Typo]
Douglas Gregor9a632ea2010-10-20 03:06:34 +00003256 = std::make_pair(Name->getName(), Consumer.begin()->second);
Douglas Gregor3eedbb02010-10-20 01:32:02 +00003257
Douglas Gregore24b5752010-10-14 20:34:08 +00003258 return &Context.Idents.get(Consumer.begin()->getKey());
Douglas Gregor6eaac8b2010-10-15 16:49:56 +00003259 }
Douglas Gregor7b824e82010-10-15 13:35:25 +00003260 else if (Consumer.size() > 1 && CTC == CTC_ObjCMessageReceiver
3261 && Consumer["super"]) {
3262 // Prefix 'super' when we're completing in a message-receiver
3263 // context.
3264 Res.suppressDiagnostics();
3265 Res.clear();
Douglas Gregor3eedbb02010-10-20 01:32:02 +00003266
3267 // Record the correction for unqualified lookup.
3268 if (IsUnqualifiedLookup)
3269 UnqualifiedTyposCorrected[Typo]
Douglas Gregor9a632ea2010-10-20 03:06:34 +00003270 = std::make_pair("super", Consumer.begin()->second);
Douglas Gregor3eedbb02010-10-20 01:32:02 +00003271
Douglas Gregor7b824e82010-10-15 13:35:25 +00003272 return &Context.Idents.get("super");
3273 }
3274
Douglas Gregore24b5752010-10-14 20:34:08 +00003275 Res.suppressDiagnostics();
3276 Res.setLookupName(Typo);
Douglas Gregor546be3c2009-12-30 17:04:44 +00003277 Res.clear();
Douglas Gregor3eedbb02010-10-20 01:32:02 +00003278 // Record the correction for unqualified lookup.
3279 if (IsUnqualifiedLookup)
3280 (void)UnqualifiedTyposCorrected[Typo];
3281
Douglas Gregor931f98a2010-04-14 17:09:22 +00003282 return DeclarationName();
Douglas Gregor546be3c2009-12-30 17:04:44 +00003283}