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Douglas Gregor78d70132009-01-14 22:20:51 +00001//===--------------------- SemaLookup.cpp - Name Lookup ------------------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file implements name lookup for C, C++, Objective-C, and
11// Objective-C++.
12//
13//===----------------------------------------------------------------------===//
14#include "Sema.h"
Douglas Gregor29dfa2f2009-01-15 00:26:24 +000015#include "SemaInherit.h"
16#include "clang/AST/ASTContext.h"
Douglas Gregor78d70132009-01-14 22:20:51 +000017#include "clang/AST/Decl.h"
18#include "clang/AST/DeclCXX.h"
19#include "clang/AST/DeclObjC.h"
Douglas Gregoraa1da4a2009-02-04 00:32:51 +000020#include "clang/AST/Expr.h"
Douglas Gregor78d70132009-01-14 22:20:51 +000021#include "clang/Parse/DeclSpec.h"
22#include "clang/Basic/LangOptions.h"
23#include "llvm/ADT/STLExtras.h"
Douglas Gregoraa1da4a2009-02-04 00:32:51 +000024#include "llvm/ADT/SmallPtrSet.h"
Douglas Gregorb9ef0552009-01-16 00:38:09 +000025#include <set>
Douglas Gregor7a7be652009-02-03 19:21:40 +000026#include <vector>
27#include <iterator>
28#include <utility>
29#include <algorithm>
Douglas Gregor78d70132009-01-14 22:20:51 +000030
31using namespace clang;
32
Douglas Gregor7a7be652009-02-03 19:21:40 +000033typedef llvm::SmallVector<UsingDirectiveDecl*, 4> UsingDirectivesTy;
34typedef llvm::DenseSet<NamespaceDecl*> NamespaceSet;
35typedef llvm::SmallVector<Sema::LookupResult, 3> LookupResultsTy;
36
37/// UsingDirAncestorCompare - Implements strict weak ordering of
38/// UsingDirectives. It orders them by address of its common ancestor.
39struct UsingDirAncestorCompare {
40
41 /// @brief Compares UsingDirectiveDecl common ancestor with DeclContext.
42 bool operator () (UsingDirectiveDecl *U, const DeclContext *Ctx) const {
43 return U->getCommonAncestor() < Ctx;
44 }
45
46 /// @brief Compares UsingDirectiveDecl common ancestor with DeclContext.
47 bool operator () (const DeclContext *Ctx, UsingDirectiveDecl *U) const {
48 return Ctx < U->getCommonAncestor();
49 }
50
51 /// @brief Compares UsingDirectiveDecl common ancestors.
52 bool operator () (UsingDirectiveDecl *U1, UsingDirectiveDecl *U2) const {
53 return U1->getCommonAncestor() < U2->getCommonAncestor();
54 }
55};
56
57/// AddNamespaceUsingDirectives - Adds all UsingDirectiveDecl's to heap UDirs
58/// (ordered by common ancestors), found in namespace NS,
59/// including all found (recursively) in their nominated namespaces.
Douglas Gregorc55b0b02009-04-09 21:40:53 +000060void AddNamespaceUsingDirectives(ASTContext &Context,
61 DeclContext *NS,
Douglas Gregor7a7be652009-02-03 19:21:40 +000062 UsingDirectivesTy &UDirs,
63 NamespaceSet &Visited) {
64 DeclContext::udir_iterator I, End;
65
Douglas Gregorc55b0b02009-04-09 21:40:53 +000066 for (llvm::tie(I, End) = NS->getUsingDirectives(Context); I !=End; ++I) {
Douglas Gregor7a7be652009-02-03 19:21:40 +000067 UDirs.push_back(*I);
68 std::push_heap(UDirs.begin(), UDirs.end(), UsingDirAncestorCompare());
69 NamespaceDecl *Nominated = (*I)->getNominatedNamespace();
70 if (Visited.insert(Nominated).second)
Douglas Gregorc55b0b02009-04-09 21:40:53 +000071 AddNamespaceUsingDirectives(Context, Nominated, UDirs, /*ref*/ Visited);
Douglas Gregor7a7be652009-02-03 19:21:40 +000072 }
73}
74
75/// AddScopeUsingDirectives - Adds all UsingDirectiveDecl's found in Scope S,
76/// including all found in the namespaces they nominate.
Douglas Gregorc55b0b02009-04-09 21:40:53 +000077static void AddScopeUsingDirectives(ASTContext &Context, Scope *S,
78 UsingDirectivesTy &UDirs) {
Douglas Gregor7a7be652009-02-03 19:21:40 +000079 NamespaceSet VisitedNS;
80
81 if (DeclContext *Ctx = static_cast<DeclContext*>(S->getEntity())) {
82
83 if (NamespaceDecl *NS = dyn_cast<NamespaceDecl>(Ctx))
84 VisitedNS.insert(NS);
85
Douglas Gregorc55b0b02009-04-09 21:40:53 +000086 AddNamespaceUsingDirectives(Context, Ctx, UDirs, /*ref*/ VisitedNS);
Douglas Gregor7a7be652009-02-03 19:21:40 +000087
88 } else {
Chris Lattner5261d0c2009-03-28 19:18:32 +000089 Scope::udir_iterator I = S->using_directives_begin(),
90 End = S->using_directives_end();
Douglas Gregor7a7be652009-02-03 19:21:40 +000091
92 for (; I != End; ++I) {
Chris Lattner5261d0c2009-03-28 19:18:32 +000093 UsingDirectiveDecl *UD = I->getAs<UsingDirectiveDecl>();
Douglas Gregor7a7be652009-02-03 19:21:40 +000094 UDirs.push_back(UD);
95 std::push_heap(UDirs.begin(), UDirs.end(), UsingDirAncestorCompare());
96
97 NamespaceDecl *Nominated = UD->getNominatedNamespace();
98 if (!VisitedNS.count(Nominated)) {
99 VisitedNS.insert(Nominated);
Douglas Gregorc55b0b02009-04-09 21:40:53 +0000100 AddNamespaceUsingDirectives(Context, Nominated, UDirs,
101 /*ref*/ VisitedNS);
Douglas Gregor7a7be652009-02-03 19:21:40 +0000102 }
103 }
104 }
105}
106
Douglas Gregor78d70132009-01-14 22:20:51 +0000107/// MaybeConstructOverloadSet - Name lookup has determined that the
108/// elements in [I, IEnd) have the name that we are looking for, and
109/// *I is a match for the namespace. This routine returns an
110/// appropriate Decl for name lookup, which may either be *I or an
Douglas Gregor7a7be652009-02-03 19:21:40 +0000111/// OverloadedFunctionDecl that represents the overloaded functions in
Douglas Gregor78d70132009-01-14 22:20:51 +0000112/// [I, IEnd).
113///
Douglas Gregor52ae30c2009-01-30 01:04:22 +0000114/// The existance of this routine is temporary; users of LookupResult
115/// should be able to handle multiple results, to deal with cases of
Douglas Gregor78d70132009-01-14 22:20:51 +0000116/// ambiguity and overloaded functions without needing to create a
117/// Decl node.
118template<typename DeclIterator>
Douglas Gregor09be81b2009-02-04 17:27:36 +0000119static NamedDecl *
Douglas Gregor78d70132009-01-14 22:20:51 +0000120MaybeConstructOverloadSet(ASTContext &Context,
121 DeclIterator I, DeclIterator IEnd) {
122 assert(I != IEnd && "Iterator range cannot be empty");
123 assert(!isa<OverloadedFunctionDecl>(*I) &&
124 "Cannot have an overloaded function");
125
126 if (isa<FunctionDecl>(*I)) {
127 // If we found a function, there might be more functions. If
128 // so, collect them into an overload set.
129 DeclIterator Last = I;
130 OverloadedFunctionDecl *Ovl = 0;
131 for (++Last; Last != IEnd && isa<FunctionDecl>(*Last); ++Last) {
132 if (!Ovl) {
133 // FIXME: We leak this overload set. Eventually, we want to
134 // stop building the declarations for these overload sets, so
135 // there will be nothing to leak.
Douglas Gregoraf8ad2b2009-01-20 01:17:11 +0000136 Ovl = OverloadedFunctionDecl::Create(Context, (*I)->getDeclContext(),
Douglas Gregor78d70132009-01-14 22:20:51 +0000137 (*I)->getDeclName());
138 Ovl->addOverload(cast<FunctionDecl>(*I));
139 }
140 Ovl->addOverload(cast<FunctionDecl>(*Last));
141 }
142
143 // If we had more than one function, we built an overload
144 // set. Return it.
145 if (Ovl)
146 return Ovl;
147 }
148
149 return *I;
150}
151
Douglas Gregor7a7be652009-02-03 19:21:40 +0000152/// Merges together multiple LookupResults dealing with duplicated Decl's.
153static Sema::LookupResult
154MergeLookupResults(ASTContext &Context, LookupResultsTy &Results) {
155 typedef Sema::LookupResult LResult;
Douglas Gregor09be81b2009-02-04 17:27:36 +0000156 typedef llvm::SmallPtrSet<NamedDecl*, 4> DeclsSetTy;
Douglas Gregor7a7be652009-02-03 19:21:40 +0000157
Douglas Gregorb96b92d2009-02-05 19:25:20 +0000158 // Remove duplicated Decl pointing at same Decl, by storing them in
159 // associative collection. This might be case for code like:
Douglas Gregor7a7be652009-02-03 19:21:40 +0000160 //
161 // namespace A { int i; }
162 // namespace B { using namespace A; }
163 // namespace C { using namespace A; }
164 //
165 // void foo() {
166 // using namespace B;
167 // using namespace C;
168 // ++i; // finds A::i, from both namespace B and C at global scope
169 // }
170 //
171 // C++ [namespace.qual].p3:
172 // The same declaration found more than once is not an ambiguity
173 // (because it is still a unique declaration).
Douglas Gregorb96b92d2009-02-05 19:25:20 +0000174 DeclsSetTy FoundDecls;
Douglas Gregor7a7be652009-02-03 19:21:40 +0000175
Douglas Gregorb96b92d2009-02-05 19:25:20 +0000176 // Counter of tag names, and functions for resolving ambiguity
177 // and name hiding.
178 std::size_t TagNames = 0, Functions = 0, OrdinaryNonFunc = 0;
Douglas Gregor09be81b2009-02-04 17:27:36 +0000179
Douglas Gregorb96b92d2009-02-05 19:25:20 +0000180 LookupResultsTy::iterator I = Results.begin(), End = Results.end();
181
182 // No name lookup results, return early.
183 if (I == End) return LResult::CreateLookupResult(Context, 0);
184
185 // Keep track of the tag declaration we found. We only use this if
186 // we find a single tag declaration.
187 TagDecl *TagFound = 0;
188
189 for (; I != End; ++I) {
190 switch (I->getKind()) {
191 case LResult::NotFound:
192 assert(false &&
193 "Should be always successful name lookup result here.");
194 break;
195
196 case LResult::AmbiguousReference:
197 case LResult::AmbiguousBaseSubobjectTypes:
198 case LResult::AmbiguousBaseSubobjects:
199 assert(false && "Shouldn't get ambiguous lookup here.");
200 break;
201
202 case LResult::Found: {
203 NamedDecl *ND = I->getAsDecl();
204 if (TagDecl *TD = dyn_cast<TagDecl>(ND)) {
205 TagFound = Context.getCanonicalDecl(TD);
206 TagNames += FoundDecls.insert(TagFound)? 1 : 0;
207 } else if (isa<FunctionDecl>(ND))
208 Functions += FoundDecls.insert(ND)? 1 : 0;
209 else
210 FoundDecls.insert(ND);
211 break;
Douglas Gregor7a7be652009-02-03 19:21:40 +0000212 }
213
Douglas Gregorb96b92d2009-02-05 19:25:20 +0000214 case LResult::FoundOverloaded:
215 for (LResult::iterator FI = I->begin(), FEnd = I->end(); FI != FEnd; ++FI)
216 Functions += FoundDecls.insert(*FI)? 1 : 0;
217 break;
Douglas Gregor7a7be652009-02-03 19:21:40 +0000218 }
Douglas Gregorb96b92d2009-02-05 19:25:20 +0000219 }
220 OrdinaryNonFunc = FoundDecls.size() - TagNames - Functions;
221 bool Ambiguous = false, NameHidesTags = false;
222
223 if (FoundDecls.size() == 1) {
224 // 1) Exactly one result.
225 } else if (TagNames > 1) {
226 // 2) Multiple tag names (even though they may be hidden by an
227 // object name).
228 Ambiguous = true;
229 } else if (FoundDecls.size() - TagNames == 1) {
230 // 3) Ordinary name hides (optional) tag.
231 NameHidesTags = TagFound;
232 } else if (Functions) {
Douglas Gregor09be81b2009-02-04 17:27:36 +0000233 // C++ [basic.lookup].p1:
234 // ... Name lookup may associate more than one declaration with
Douglas Gregor7a7be652009-02-03 19:21:40 +0000235 // a name if it finds the name to be a function name; the declarations
236 // are said to form a set of overloaded functions (13.1).
237 // Overload resolution (13.3) takes place after name lookup has succeeded.
Douglas Gregor09be81b2009-02-04 17:27:36 +0000238 //
Douglas Gregorb96b92d2009-02-05 19:25:20 +0000239 if (!OrdinaryNonFunc) {
240 // 4) Functions hide tag names.
241 NameHidesTags = TagFound;
242 } else {
243 // 5) Functions + ordinary names.
244 Ambiguous = true;
245 }
246 } else {
247 // 6) Multiple non-tag names
248 Ambiguous = true;
Douglas Gregor7a7be652009-02-03 19:21:40 +0000249 }
250
Douglas Gregorb96b92d2009-02-05 19:25:20 +0000251 if (Ambiguous)
252 return LResult::CreateLookupResult(Context,
253 FoundDecls.begin(), FoundDecls.size());
254 if (NameHidesTags) {
255 // There's only one tag, TagFound. Remove it.
256 assert(TagFound && FoundDecls.count(TagFound) && "No tag name found?");
257 FoundDecls.erase(TagFound);
258 }
259
260 // Return successful name lookup result.
261 return LResult::CreateLookupResult(Context,
262 MaybeConstructOverloadSet(Context,
263 FoundDecls.begin(),
264 FoundDecls.end()));
Douglas Gregor7a7be652009-02-03 19:21:40 +0000265}
266
267// Retrieve the set of identifier namespaces that correspond to a
268// specific kind of name lookup.
269inline unsigned
270getIdentifierNamespacesFromLookupNameKind(Sema::LookupNameKind NameKind,
271 bool CPlusPlus) {
272 unsigned IDNS = 0;
273 switch (NameKind) {
274 case Sema::LookupOrdinaryName:
Douglas Gregor48a87322009-02-04 16:44:47 +0000275 case Sema::LookupOperatorName:
Douglas Gregor1c52c632009-02-24 20:03:32 +0000276 case Sema::LookupRedeclarationWithLinkage:
Douglas Gregor7a7be652009-02-03 19:21:40 +0000277 IDNS = Decl::IDNS_Ordinary;
278 if (CPlusPlus)
279 IDNS |= Decl::IDNS_Tag | Decl::IDNS_Member;
280 break;
281
282 case Sema::LookupTagName:
283 IDNS = Decl::IDNS_Tag;
284 break;
285
286 case Sema::LookupMemberName:
287 IDNS = Decl::IDNS_Member;
288 if (CPlusPlus)
289 IDNS |= Decl::IDNS_Tag | Decl::IDNS_Ordinary;
290 break;
291
292 case Sema::LookupNestedNameSpecifierName:
293 case Sema::LookupNamespaceName:
294 IDNS = Decl::IDNS_Ordinary | Decl::IDNS_Tag | Decl::IDNS_Member;
295 break;
296 }
297 return IDNS;
298}
299
Douglas Gregor7a7be652009-02-03 19:21:40 +0000300Sema::LookupResult
Douglas Gregor09be81b2009-02-04 17:27:36 +0000301Sema::LookupResult::CreateLookupResult(ASTContext &Context, NamedDecl *D) {
Douglas Gregor7a7be652009-02-03 19:21:40 +0000302 LookupResult Result;
303 Result.StoredKind = (D && isa<OverloadedFunctionDecl>(D))?
304 OverloadedDeclSingleDecl : SingleDecl;
305 Result.First = reinterpret_cast<uintptr_t>(D);
306 Result.Last = 0;
307 Result.Context = &Context;
308 return Result;
309}
310
Douglas Gregor6beddfe2009-01-15 02:19:31 +0000311/// @brief Moves the name-lookup results from Other to this LookupResult.
Douglas Gregord07474b2009-01-17 01:13:24 +0000312Sema::LookupResult
313Sema::LookupResult::CreateLookupResult(ASTContext &Context,
314 IdentifierResolver::iterator F,
315 IdentifierResolver::iterator L) {
316 LookupResult Result;
317 Result.Context = &Context;
318
Douglas Gregor29dfa2f2009-01-15 00:26:24 +0000319 if (F != L && isa<FunctionDecl>(*F)) {
320 IdentifierResolver::iterator Next = F;
321 ++Next;
322 if (Next != L && isa<FunctionDecl>(*Next)) {
Douglas Gregord07474b2009-01-17 01:13:24 +0000323 Result.StoredKind = OverloadedDeclFromIdResolver;
324 Result.First = F.getAsOpaqueValue();
325 Result.Last = L.getAsOpaqueValue();
326 return Result;
Douglas Gregor29dfa2f2009-01-15 00:26:24 +0000327 }
328 }
329
Douglas Gregord07474b2009-01-17 01:13:24 +0000330 Result.StoredKind = SingleDecl;
331 Result.First = reinterpret_cast<uintptr_t>(*F);
332 Result.Last = 0;
333 return Result;
Douglas Gregor29dfa2f2009-01-15 00:26:24 +0000334}
335
Douglas Gregord07474b2009-01-17 01:13:24 +0000336Sema::LookupResult
337Sema::LookupResult::CreateLookupResult(ASTContext &Context,
338 DeclContext::lookup_iterator F,
339 DeclContext::lookup_iterator L) {
340 LookupResult Result;
341 Result.Context = &Context;
342
Douglas Gregor29dfa2f2009-01-15 00:26:24 +0000343 if (F != L && isa<FunctionDecl>(*F)) {
344 DeclContext::lookup_iterator Next = F;
345 ++Next;
346 if (Next != L && isa<FunctionDecl>(*Next)) {
Douglas Gregord07474b2009-01-17 01:13:24 +0000347 Result.StoredKind = OverloadedDeclFromDeclContext;
348 Result.First = reinterpret_cast<uintptr_t>(F);
349 Result.Last = reinterpret_cast<uintptr_t>(L);
350 return Result;
Douglas Gregor29dfa2f2009-01-15 00:26:24 +0000351 }
352 }
353
Douglas Gregord07474b2009-01-17 01:13:24 +0000354 Result.StoredKind = SingleDecl;
355 Result.First = reinterpret_cast<uintptr_t>(*F);
356 Result.Last = 0;
357 return Result;
Douglas Gregor29dfa2f2009-01-15 00:26:24 +0000358}
359
Douglas Gregor78d70132009-01-14 22:20:51 +0000360/// @brief Determine the result of name lookup.
361Sema::LookupResult::LookupKind Sema::LookupResult::getKind() const {
362 switch (StoredKind) {
363 case SingleDecl:
364 return (reinterpret_cast<Decl *>(First) != 0)? Found : NotFound;
365
Douglas Gregor7a7be652009-02-03 19:21:40 +0000366 case OverloadedDeclSingleDecl:
Douglas Gregor78d70132009-01-14 22:20:51 +0000367 case OverloadedDeclFromIdResolver:
368 case OverloadedDeclFromDeclContext:
369 return FoundOverloaded;
370
Douglas Gregor7a7be652009-02-03 19:21:40 +0000371 case AmbiguousLookupStoresBasePaths:
Douglas Gregor29dfa2f2009-01-15 00:26:24 +0000372 return Last? AmbiguousBaseSubobjectTypes : AmbiguousBaseSubobjects;
Douglas Gregor7a7be652009-02-03 19:21:40 +0000373
374 case AmbiguousLookupStoresDecls:
375 return AmbiguousReference;
Douglas Gregor78d70132009-01-14 22:20:51 +0000376 }
377
Douglas Gregor29dfa2f2009-01-15 00:26:24 +0000378 // We can't ever get here.
379 return NotFound;
Douglas Gregor78d70132009-01-14 22:20:51 +0000380}
381
382/// @brief Converts the result of name lookup into a single (possible
383/// NULL) pointer to a declaration.
384///
385/// The resulting declaration will either be the declaration we found
386/// (if only a single declaration was found), an
387/// OverloadedFunctionDecl (if an overloaded function was found), or
388/// NULL (if no declaration was found). This conversion must not be
389/// used anywhere where name lookup could result in an ambiguity.
390///
391/// The OverloadedFunctionDecl conversion is meant as a stop-gap
392/// solution, since it causes the OverloadedFunctionDecl to be
393/// leaked. FIXME: Eventually, there will be a better way to iterate
394/// over the set of overloaded functions returned by name lookup.
Douglas Gregor09be81b2009-02-04 17:27:36 +0000395NamedDecl *Sema::LookupResult::getAsDecl() const {
Douglas Gregor78d70132009-01-14 22:20:51 +0000396 switch (StoredKind) {
397 case SingleDecl:
Douglas Gregor09be81b2009-02-04 17:27:36 +0000398 return reinterpret_cast<NamedDecl *>(First);
Douglas Gregor78d70132009-01-14 22:20:51 +0000399
400 case OverloadedDeclFromIdResolver:
401 return MaybeConstructOverloadSet(*Context,
402 IdentifierResolver::iterator::getFromOpaqueValue(First),
403 IdentifierResolver::iterator::getFromOpaqueValue(Last));
404
405 case OverloadedDeclFromDeclContext:
406 return MaybeConstructOverloadSet(*Context,
407 reinterpret_cast<DeclContext::lookup_iterator>(First),
408 reinterpret_cast<DeclContext::lookup_iterator>(Last));
409
Douglas Gregor7a7be652009-02-03 19:21:40 +0000410 case OverloadedDeclSingleDecl:
411 return reinterpret_cast<OverloadedFunctionDecl*>(First);
412
413 case AmbiguousLookupStoresDecls:
414 case AmbiguousLookupStoresBasePaths:
Douglas Gregor78d70132009-01-14 22:20:51 +0000415 assert(false &&
416 "Name lookup returned an ambiguity that could not be handled");
417 break;
418 }
419
420 return 0;
421}
422
Douglas Gregor29dfa2f2009-01-15 00:26:24 +0000423/// @brief Retrieves the BasePaths structure describing an ambiguous
Douglas Gregor7a7be652009-02-03 19:21:40 +0000424/// name lookup, or null.
Douglas Gregor29dfa2f2009-01-15 00:26:24 +0000425BasePaths *Sema::LookupResult::getBasePaths() const {
Douglas Gregor7a7be652009-02-03 19:21:40 +0000426 if (StoredKind == AmbiguousLookupStoresBasePaths)
427 return reinterpret_cast<BasePaths *>(First);
428 return 0;
Douglas Gregor29dfa2f2009-01-15 00:26:24 +0000429}
430
Douglas Gregorbd4b0852009-02-02 21:35:47 +0000431Sema::LookupResult::iterator::reference
432Sema::LookupResult::iterator::operator*() const {
433 switch (Result->StoredKind) {
434 case SingleDecl:
Douglas Gregor09be81b2009-02-04 17:27:36 +0000435 return reinterpret_cast<NamedDecl*>(Current);
Douglas Gregorbd4b0852009-02-02 21:35:47 +0000436
Douglas Gregor7a7be652009-02-03 19:21:40 +0000437 case OverloadedDeclSingleDecl:
Douglas Gregor09be81b2009-02-04 17:27:36 +0000438 return *reinterpret_cast<NamedDecl**>(Current);
Douglas Gregor7a7be652009-02-03 19:21:40 +0000439
Douglas Gregorbd4b0852009-02-02 21:35:47 +0000440 case OverloadedDeclFromIdResolver:
441 return *IdentifierResolver::iterator::getFromOpaqueValue(Current);
442
Douglas Gregor7a7be652009-02-03 19:21:40 +0000443 case AmbiguousLookupStoresBasePaths:
Douglas Gregord7cb0372009-04-01 21:51:26 +0000444 if (Result->Last)
445 return *reinterpret_cast<NamedDecl**>(Current);
446
447 // Fall through to handle the DeclContext::lookup_iterator we're
448 // storing.
449
450 case OverloadedDeclFromDeclContext:
451 case AmbiguousLookupStoresDecls:
452 return *reinterpret_cast<DeclContext::lookup_iterator>(Current);
Douglas Gregorbd4b0852009-02-02 21:35:47 +0000453 }
454
455 return 0;
456}
457
458Sema::LookupResult::iterator& Sema::LookupResult::iterator::operator++() {
459 switch (Result->StoredKind) {
460 case SingleDecl:
Douglas Gregor09be81b2009-02-04 17:27:36 +0000461 Current = reinterpret_cast<uintptr_t>((NamedDecl*)0);
Douglas Gregorbd4b0852009-02-02 21:35:47 +0000462 break;
463
Douglas Gregor7a7be652009-02-03 19:21:40 +0000464 case OverloadedDeclSingleDecl: {
Douglas Gregor09be81b2009-02-04 17:27:36 +0000465 NamedDecl ** I = reinterpret_cast<NamedDecl**>(Current);
Douglas Gregor7a7be652009-02-03 19:21:40 +0000466 ++I;
467 Current = reinterpret_cast<uintptr_t>(I);
Douglas Gregor48a87322009-02-04 16:44:47 +0000468 break;
Douglas Gregor7a7be652009-02-03 19:21:40 +0000469 }
470
Douglas Gregorbd4b0852009-02-02 21:35:47 +0000471 case OverloadedDeclFromIdResolver: {
472 IdentifierResolver::iterator I
473 = IdentifierResolver::iterator::getFromOpaqueValue(Current);
474 ++I;
475 Current = I.getAsOpaqueValue();
476 break;
477 }
478
Douglas Gregord7cb0372009-04-01 21:51:26 +0000479 case AmbiguousLookupStoresBasePaths:
480 if (Result->Last) {
481 NamedDecl ** I = reinterpret_cast<NamedDecl**>(Current);
482 ++I;
483 Current = reinterpret_cast<uintptr_t>(I);
484 break;
485 }
486 // Fall through to handle the DeclContext::lookup_iterator we're
487 // storing.
488
489 case OverloadedDeclFromDeclContext:
490 case AmbiguousLookupStoresDecls: {
Douglas Gregorbd4b0852009-02-02 21:35:47 +0000491 DeclContext::lookup_iterator I
492 = reinterpret_cast<DeclContext::lookup_iterator>(Current);
493 ++I;
494 Current = reinterpret_cast<uintptr_t>(I);
495 break;
496 }
Douglas Gregorbd4b0852009-02-02 21:35:47 +0000497 }
498
499 return *this;
500}
501
502Sema::LookupResult::iterator Sema::LookupResult::begin() {
Douglas Gregord7cb0372009-04-01 21:51:26 +0000503 switch (StoredKind) {
504 case SingleDecl:
505 case OverloadedDeclFromIdResolver:
506 case OverloadedDeclFromDeclContext:
507 case AmbiguousLookupStoresDecls:
Douglas Gregor7a7be652009-02-03 19:21:40 +0000508 return iterator(this, First);
Douglas Gregord7cb0372009-04-01 21:51:26 +0000509
510 case OverloadedDeclSingleDecl: {
511 OverloadedFunctionDecl * Ovl =
512 reinterpret_cast<OverloadedFunctionDecl*>(First);
513 return iterator(this,
514 reinterpret_cast<uintptr_t>(&(*Ovl->function_begin())));
515 }
516
517 case AmbiguousLookupStoresBasePaths:
518 if (Last)
519 return iterator(this,
520 reinterpret_cast<uintptr_t>(getBasePaths()->found_decls_begin()));
521 else
522 return iterator(this,
523 reinterpret_cast<uintptr_t>(getBasePaths()->front().Decls.first));
524 }
525
526 // Required to suppress GCC warning.
527 return iterator();
Douglas Gregorbd4b0852009-02-02 21:35:47 +0000528}
529
530Sema::LookupResult::iterator Sema::LookupResult::end() {
Douglas Gregord7cb0372009-04-01 21:51:26 +0000531 switch (StoredKind) {
532 case SingleDecl:
533 case OverloadedDeclFromIdResolver:
534 case OverloadedDeclFromDeclContext:
535 case AmbiguousLookupStoresDecls:
Douglas Gregor7a7be652009-02-03 19:21:40 +0000536 return iterator(this, Last);
Douglas Gregord7cb0372009-04-01 21:51:26 +0000537
538 case OverloadedDeclSingleDecl: {
539 OverloadedFunctionDecl * Ovl =
540 reinterpret_cast<OverloadedFunctionDecl*>(First);
541 return iterator(this,
542 reinterpret_cast<uintptr_t>(&(*Ovl->function_end())));
543 }
544
545 case AmbiguousLookupStoresBasePaths:
546 if (Last)
547 return iterator(this,
548 reinterpret_cast<uintptr_t>(getBasePaths()->found_decls_end()));
549 else
550 return iterator(this, reinterpret_cast<uintptr_t>(
551 getBasePaths()->front().Decls.second));
552 }
553
554 // Required to suppress GCC warning.
555 return iterator();
556}
557
558void Sema::LookupResult::Destroy() {
559 if (BasePaths *Paths = getBasePaths())
560 delete Paths;
561 else if (getKind() == AmbiguousReference)
562 delete[] reinterpret_cast<NamedDecl **>(First);
Douglas Gregorbd4b0852009-02-02 21:35:47 +0000563}
564
Douglas Gregorb96b92d2009-02-05 19:25:20 +0000565static void
566CppNamespaceLookup(ASTContext &Context, DeclContext *NS,
567 DeclarationName Name, Sema::LookupNameKind NameKind,
568 unsigned IDNS, LookupResultsTy &Results,
569 UsingDirectivesTy *UDirs = 0) {
570
571 assert(NS && NS->isFileContext() && "CppNamespaceLookup() requires namespace!");
572
573 // Perform qualified name lookup into the LookupCtx.
574 DeclContext::lookup_iterator I, E;
Douglas Gregorc55b0b02009-04-09 21:40:53 +0000575 for (llvm::tie(I, E) = NS->lookup(Context, Name); I != E; ++I)
Douglas Gregorb96b92d2009-02-05 19:25:20 +0000576 if (Sema::isAcceptableLookupResult(*I, NameKind, IDNS)) {
577 Results.push_back(Sema::LookupResult::CreateLookupResult(Context, I, E));
578 break;
579 }
580
581 if (UDirs) {
582 // For each UsingDirectiveDecl, which common ancestor is equal
583 // to NS, we preform qualified name lookup into namespace nominated by it.
584 UsingDirectivesTy::const_iterator UI, UEnd;
585 llvm::tie(UI, UEnd) =
586 std::equal_range(UDirs->begin(), UDirs->end(), NS,
587 UsingDirAncestorCompare());
588
589 for (; UI != UEnd; ++UI)
590 CppNamespaceLookup(Context, (*UI)->getNominatedNamespace(),
591 Name, NameKind, IDNS, Results);
592 }
593}
594
595static bool isNamespaceOrTranslationUnitScope(Scope *S) {
Douglas Gregor7a7be652009-02-03 19:21:40 +0000596 if (DeclContext *Ctx = static_cast<DeclContext*>(S->getEntity()))
Douglas Gregorb96b92d2009-02-05 19:25:20 +0000597 return Ctx->isFileContext();
598 return false;
Douglas Gregor7a7be652009-02-03 19:21:40 +0000599}
Douglas Gregor52ae30c2009-01-30 01:04:22 +0000600
Douglas Gregor7a7be652009-02-03 19:21:40 +0000601std::pair<bool, Sema::LookupResult>
602Sema::CppLookupName(Scope *S, DeclarationName Name,
603 LookupNameKind NameKind, bool RedeclarationOnly) {
604 assert(getLangOptions().CPlusPlus &&
605 "Can perform only C++ lookup");
Douglas Gregor48a87322009-02-04 16:44:47 +0000606 unsigned IDNS
Douglas Gregor09be81b2009-02-04 17:27:36 +0000607 = getIdentifierNamespacesFromLookupNameKind(NameKind, /*CPlusPlus*/ true);
Douglas Gregor7a7be652009-02-03 19:21:40 +0000608 Scope *Initial = S;
Douglas Gregorb96b92d2009-02-05 19:25:20 +0000609 DeclContext *OutOfLineCtx = 0;
Douglas Gregor7a7be652009-02-03 19:21:40 +0000610 IdentifierResolver::iterator
611 I = IdResolver.begin(Name),
612 IEnd = IdResolver.end();
Douglas Gregor52ae30c2009-01-30 01:04:22 +0000613
Douglas Gregor7a7be652009-02-03 19:21:40 +0000614 // First we lookup local scope.
Douglas Gregor279272e2009-02-04 19:02:06 +0000615 // We don't consider using-directives, as per 7.3.4.p1 [namespace.udir]
Douglas Gregor7a7be652009-02-03 19:21:40 +0000616 // ...During unqualified name lookup (3.4.1), the names appear as if
617 // they were declared in the nearest enclosing namespace which contains
618 // both the using-directive and the nominated namespace.
619 // [Note: in this context, “contains” means “contains directly or
620 // indirectly”.
621 //
622 // For example:
623 // namespace A { int i; }
624 // void foo() {
625 // int i;
626 // {
627 // using namespace A;
628 // ++i; // finds local 'i', A::i appears at global scope
629 // }
630 // }
Douglas Gregor09be81b2009-02-04 17:27:36 +0000631 //
Douglas Gregorb96b92d2009-02-05 19:25:20 +0000632 for (; S && !isNamespaceOrTranslationUnitScope(S); S = S->getParent()) {
Douglas Gregor7a7be652009-02-03 19:21:40 +0000633 // Check whether the IdResolver has anything in this scope.
Chris Lattner5261d0c2009-03-28 19:18:32 +0000634 for (; I != IEnd && S->isDeclScope(DeclPtrTy::make(*I)); ++I) {
Douglas Gregor7a7be652009-02-03 19:21:40 +0000635 if (isAcceptableLookupResult(*I, NameKind, IDNS)) {
636 // We found something. Look for anything else in our scope
637 // with this same name and in an acceptable identifier
638 // namespace, so that we can construct an overload set if we
639 // need to.
640 IdentifierResolver::iterator LastI = I;
641 for (++LastI; LastI != IEnd; ++LastI) {
Chris Lattner5261d0c2009-03-28 19:18:32 +0000642 if (!S->isDeclScope(DeclPtrTy::make(*LastI)))
Douglas Gregor7a7be652009-02-03 19:21:40 +0000643 break;
644 }
645 LookupResult Result =
646 LookupResult::CreateLookupResult(Context, I, LastI);
647 return std::make_pair(true, Result);
648 }
649 }
Douglas Gregorb96b92d2009-02-05 19:25:20 +0000650 if (DeclContext *Ctx = static_cast<DeclContext*>(S->getEntity())) {
651 LookupResult R;
652 // Perform member lookup into struct.
653 // FIXME: In some cases, we know that every name that could be
654 // found by this qualified name lookup will also be on the
655 // identifier chain. For example, inside a class without any
656 // base classes, we never need to perform qualified lookup
657 // because all of the members are on top of the identifier
658 // chain.
Douglas Gregord3c78592009-03-27 04:21:56 +0000659 if (isa<RecordDecl>(Ctx)) {
660 R = LookupQualifiedName(Ctx, Name, NameKind, RedeclarationOnly);
661 if (R || RedeclarationOnly)
662 return std::make_pair(true, R);
663 }
Douglas Gregorb96b92d2009-02-05 19:25:20 +0000664 if (Ctx->getParent() != Ctx->getLexicalParent()) {
665 // It is out of line defined C++ method or struct, we continue
666 // doing name lookup in parent context. Once we will find namespace
667 // or translation-unit we save it for possible checking
668 // using-directives later.
669 for (OutOfLineCtx = Ctx; OutOfLineCtx && !OutOfLineCtx->isFileContext();
670 OutOfLineCtx = OutOfLineCtx->getParent()) {
Douglas Gregord3c78592009-03-27 04:21:56 +0000671 R = LookupQualifiedName(OutOfLineCtx, Name, NameKind, RedeclarationOnly);
672 if (R || RedeclarationOnly)
Douglas Gregorb96b92d2009-02-05 19:25:20 +0000673 return std::make_pair(true, R);
674 }
675 }
676 }
Douglas Gregor52ae30c2009-01-30 01:04:22 +0000677 }
Douglas Gregor7a7be652009-02-03 19:21:40 +0000678
Douglas Gregorb96b92d2009-02-05 19:25:20 +0000679 // Collect UsingDirectiveDecls in all scopes, and recursively all
Douglas Gregor7a7be652009-02-03 19:21:40 +0000680 // nominated namespaces by those using-directives.
681 // UsingDirectives are pushed to heap, in common ancestor pointer
682 // value order.
Douglas Gregorb96b92d2009-02-05 19:25:20 +0000683 // FIXME: Cache this sorted list in Scope structure, and DeclContext,
684 // so we don't build it for each lookup!
Douglas Gregor7a7be652009-02-03 19:21:40 +0000685 UsingDirectivesTy UDirs;
686 for (Scope *SC = Initial; SC; SC = SC->getParent())
Douglas Gregor09be81b2009-02-04 17:27:36 +0000687 if (SC->getFlags() & Scope::DeclScope)
Douglas Gregorc55b0b02009-04-09 21:40:53 +0000688 AddScopeUsingDirectives(Context, SC, UDirs);
Douglas Gregor7a7be652009-02-03 19:21:40 +0000689
690 // Sort heapified UsingDirectiveDecls.
691 std::sort_heap(UDirs.begin(), UDirs.end());
692
Douglas Gregorb96b92d2009-02-05 19:25:20 +0000693 // Lookup namespace scope, and global scope.
Douglas Gregor7a7be652009-02-03 19:21:40 +0000694 // Unqualified name lookup in C++ requires looking into scopes
695 // that aren't strictly lexical, and therefore we walk through the
696 // context as well as walking through the scopes.
Douglas Gregorb96b92d2009-02-05 19:25:20 +0000697
698 LookupResultsTy LookupResults;
Sebastian Redl95216a62009-02-07 00:15:38 +0000699 assert((!OutOfLineCtx || OutOfLineCtx->isFileContext()) &&
Douglas Gregorb96b92d2009-02-05 19:25:20 +0000700 "We should have been looking only at file context here already.");
701 bool LookedInCtx = false;
702 LookupResult Result;
703 while (OutOfLineCtx &&
704 OutOfLineCtx != S->getEntity() &&
705 OutOfLineCtx->isNamespace()) {
706 LookedInCtx = true;
707
708 // Look into context considering using-directives.
709 CppNamespaceLookup(Context, OutOfLineCtx, Name, NameKind, IDNS,
710 LookupResults, &UDirs);
711
712 if ((Result = MergeLookupResults(Context, LookupResults)) ||
713 (RedeclarationOnly && !OutOfLineCtx->isTransparentContext()))
714 return std::make_pair(true, Result);
715
716 OutOfLineCtx = OutOfLineCtx->getParent();
717 }
718
Douglas Gregor7a7be652009-02-03 19:21:40 +0000719 for (; S; S = S->getParent()) {
Douglas Gregorb96b92d2009-02-05 19:25:20 +0000720 DeclContext *Ctx = static_cast<DeclContext *>(S->getEntity());
721 assert(Ctx && Ctx->isFileContext() &&
722 "We should have been looking only at file context here already.");
Douglas Gregor7a7be652009-02-03 19:21:40 +0000723
724 // Check whether the IdResolver has anything in this scope.
Chris Lattner5261d0c2009-03-28 19:18:32 +0000725 for (; I != IEnd && S->isDeclScope(DeclPtrTy::make(*I)); ++I) {
Douglas Gregor7a7be652009-02-03 19:21:40 +0000726 if (isAcceptableLookupResult(*I, NameKind, IDNS)) {
727 // We found something. Look for anything else in our scope
728 // with this same name and in an acceptable identifier
729 // namespace, so that we can construct an overload set if we
730 // need to.
731 IdentifierResolver::iterator LastI = I;
732 for (++LastI; LastI != IEnd; ++LastI) {
Chris Lattner5261d0c2009-03-28 19:18:32 +0000733 if (!S->isDeclScope(DeclPtrTy::make(*LastI)))
Douglas Gregor7a7be652009-02-03 19:21:40 +0000734 break;
735 }
736
737 // We store name lookup result, and continue trying to look into
738 // associated context, and maybe namespaces nominated by
739 // using-directives.
740 LookupResults.push_back(
741 LookupResult::CreateLookupResult(Context, I, LastI));
742 break;
743 }
744 }
745
Douglas Gregorb96b92d2009-02-05 19:25:20 +0000746 LookedInCtx = true;
747 // Look into context considering using-directives.
748 CppNamespaceLookup(Context, Ctx, Name, NameKind, IDNS,
749 LookupResults, &UDirs);
Douglas Gregor7a7be652009-02-03 19:21:40 +0000750
Douglas Gregorb96b92d2009-02-05 19:25:20 +0000751 if ((Result = MergeLookupResults(Context, LookupResults)) ||
752 (RedeclarationOnly && !Ctx->isTransparentContext()))
753 return std::make_pair(true, Result);
754 }
Douglas Gregor7a7be652009-02-03 19:21:40 +0000755
Douglas Gregorb96b92d2009-02-05 19:25:20 +0000756 if (!(LookedInCtx || LookupResults.empty())) {
757 // We didn't Performed lookup in Scope entity, so we return
758 // result form IdentifierResolver.
759 assert((LookupResults.size() == 1) && "Wrong size!");
760 return std::make_pair(true, LookupResults.front());
Douglas Gregor7a7be652009-02-03 19:21:40 +0000761 }
762 return std::make_pair(false, LookupResult());
Douglas Gregor52ae30c2009-01-30 01:04:22 +0000763}
764
Douglas Gregor78d70132009-01-14 22:20:51 +0000765/// @brief Perform unqualified name lookup starting from a given
766/// scope.
767///
768/// Unqualified name lookup (C++ [basic.lookup.unqual], C99 6.2.1) is
769/// used to find names within the current scope. For example, 'x' in
770/// @code
771/// int x;
772/// int f() {
773/// return x; // unqualified name look finds 'x' in the global scope
774/// }
775/// @endcode
776///
777/// Different lookup criteria can find different names. For example, a
778/// particular scope can have both a struct and a function of the same
779/// name, and each can be found by certain lookup criteria. For more
780/// information about lookup criteria, see the documentation for the
781/// class LookupCriteria.
782///
783/// @param S The scope from which unqualified name lookup will
784/// begin. If the lookup criteria permits, name lookup may also search
785/// in the parent scopes.
786///
787/// @param Name The name of the entity that we are searching for.
788///
Douglas Gregor411889e2009-02-13 23:20:09 +0000789/// @param Loc If provided, the source location where we're performing
790/// name lookup. At present, this is only used to produce diagnostics when
791/// C library functions (like "malloc") are implicitly declared.
Douglas Gregor78d70132009-01-14 22:20:51 +0000792///
793/// @returns The result of name lookup, which includes zero or more
794/// declarations and possibly additional information used to diagnose
795/// ambiguities.
796Sema::LookupResult
Douglas Gregor52ae30c2009-01-30 01:04:22 +0000797Sema::LookupName(Scope *S, DeclarationName Name, LookupNameKind NameKind,
Douglas Gregor411889e2009-02-13 23:20:09 +0000798 bool RedeclarationOnly, bool AllowBuiltinCreation,
799 SourceLocation Loc) {
Douglas Gregord07474b2009-01-17 01:13:24 +0000800 if (!Name) return LookupResult::CreateLookupResult(Context, 0);
Douglas Gregor78d70132009-01-14 22:20:51 +0000801
802 if (!getLangOptions().CPlusPlus) {
803 // Unqualified name lookup in C/Objective-C is purely lexical, so
804 // search in the declarations attached to the name.
Douglas Gregor52ae30c2009-01-30 01:04:22 +0000805 unsigned IDNS = 0;
806 switch (NameKind) {
807 case Sema::LookupOrdinaryName:
808 IDNS = Decl::IDNS_Ordinary;
809 break;
Douglas Gregor78d70132009-01-14 22:20:51 +0000810
Douglas Gregor52ae30c2009-01-30 01:04:22 +0000811 case Sema::LookupTagName:
812 IDNS = Decl::IDNS_Tag;
813 break;
814
815 case Sema::LookupMemberName:
816 IDNS = Decl::IDNS_Member;
817 break;
818
Douglas Gregor48a87322009-02-04 16:44:47 +0000819 case Sema::LookupOperatorName:
Douglas Gregor52ae30c2009-01-30 01:04:22 +0000820 case Sema::LookupNestedNameSpecifierName:
821 case Sema::LookupNamespaceName:
822 assert(false && "C does not perform these kinds of name lookup");
823 break;
Douglas Gregor1c52c632009-02-24 20:03:32 +0000824
825 case Sema::LookupRedeclarationWithLinkage:
826 // Find the nearest non-transparent declaration scope.
827 while (!(S->getFlags() & Scope::DeclScope) ||
828 (S->getEntity() &&
829 static_cast<DeclContext *>(S->getEntity())
830 ->isTransparentContext()))
831 S = S->getParent();
832 IDNS = Decl::IDNS_Ordinary;
833 break;
Douglas Gregor52ae30c2009-01-30 01:04:22 +0000834 }
835
Douglas Gregor78d70132009-01-14 22:20:51 +0000836 // Scan up the scope chain looking for a decl that matches this
837 // identifier that is in the appropriate namespace. This search
838 // should not take long, as shadowing of names is uncommon, and
839 // deep shadowing is extremely uncommon.
Douglas Gregor1c52c632009-02-24 20:03:32 +0000840 bool LeftStartingScope = false;
841
Douglas Gregor52ae30c2009-01-30 01:04:22 +0000842 for (IdentifierResolver::iterator I = IdResolver.begin(Name),
843 IEnd = IdResolver.end();
844 I != IEnd; ++I)
Douglas Gregorfcb19192009-02-11 23:02:49 +0000845 if ((*I)->isInIdentifierNamespace(IDNS)) {
Douglas Gregor1c52c632009-02-24 20:03:32 +0000846 if (NameKind == LookupRedeclarationWithLinkage) {
847 // Determine whether this (or a previous) declaration is
848 // out-of-scope.
Chris Lattner5261d0c2009-03-28 19:18:32 +0000849 if (!LeftStartingScope && !S->isDeclScope(DeclPtrTy::make(*I)))
Douglas Gregor1c52c632009-02-24 20:03:32 +0000850 LeftStartingScope = true;
851
852 // If we found something outside of our starting scope that
853 // does not have linkage, skip it.
854 if (LeftStartingScope && !((*I)->hasLinkage()))
855 continue;
856 }
857
Douglas Gregorfcb19192009-02-11 23:02:49 +0000858 if ((*I)->getAttr<OverloadableAttr>()) {
859 // If this declaration has the "overloadable" attribute, we
860 // might have a set of overloaded functions.
861
862 // Figure out what scope the identifier is in.
Chris Lattner5261d0c2009-03-28 19:18:32 +0000863 while (!(S->getFlags() & Scope::DeclScope) ||
864 !S->isDeclScope(DeclPtrTy::make(*I)))
Douglas Gregorfcb19192009-02-11 23:02:49 +0000865 S = S->getParent();
866
867 // Find the last declaration in this scope (with the same
868 // name, naturally).
869 IdentifierResolver::iterator LastI = I;
870 for (++LastI; LastI != IEnd; ++LastI) {
Chris Lattner5261d0c2009-03-28 19:18:32 +0000871 if (!S->isDeclScope(DeclPtrTy::make(*LastI)))
Douglas Gregorfcb19192009-02-11 23:02:49 +0000872 break;
873 }
874
875 return LookupResult::CreateLookupResult(Context, I, LastI);
876 }
877
878 // We have a single lookup result.
Douglas Gregord07474b2009-01-17 01:13:24 +0000879 return LookupResult::CreateLookupResult(Context, *I);
Douglas Gregorfcb19192009-02-11 23:02:49 +0000880 }
Douglas Gregorc34897d2009-04-09 22:27:44 +0000881
882 /// If the context has an external AST source attached, look at
883 /// translation unit scope.
884 if (Context.getExternalSource()) {
885 DeclContext::lookup_iterator I, E;
886 for (llvm::tie(I, E)
887 = Context.getTranslationUnitDecl()->lookup(Context, Name);
888 I != E; ++I)
889 if (isAcceptableLookupResult(*I, NameKind, IDNS))
890 return LookupResult::CreateLookupResult(Context, I, E);
891 }
Douglas Gregor78d70132009-01-14 22:20:51 +0000892 } else {
Douglas Gregor7a7be652009-02-03 19:21:40 +0000893 // Perform C++ unqualified name lookup.
894 std::pair<bool, LookupResult> MaybeResult =
895 CppLookupName(S, Name, NameKind, RedeclarationOnly);
896 if (MaybeResult.first)
897 return MaybeResult.second;
Douglas Gregor78d70132009-01-14 22:20:51 +0000898 }
899
900 // If we didn't find a use of this identifier, and if the identifier
901 // corresponds to a compiler builtin, create the decl object for the builtin
902 // now, injecting it into translation unit scope, and return it.
Douglas Gregor1c52c632009-02-24 20:03:32 +0000903 if (NameKind == LookupOrdinaryName ||
904 NameKind == LookupRedeclarationWithLinkage) {
Douglas Gregor78d70132009-01-14 22:20:51 +0000905 IdentifierInfo *II = Name.getAsIdentifierInfo();
Douglas Gregor411889e2009-02-13 23:20:09 +0000906 if (II && AllowBuiltinCreation) {
Douglas Gregor78d70132009-01-14 22:20:51 +0000907 // If this is a builtin on this (or all) targets, create the decl.
Douglas Gregor411889e2009-02-13 23:20:09 +0000908 if (unsigned BuiltinID = II->getBuiltinID()) {
909 // In C++, we don't have any predefined library functions like
910 // 'malloc'. Instead, we'll just error.
911 if (getLangOptions().CPlusPlus &&
912 Context.BuiltinInfo.isPredefinedLibFunction(BuiltinID))
913 return LookupResult::CreateLookupResult(Context, 0);
914
Douglas Gregord07474b2009-01-17 01:13:24 +0000915 return LookupResult::CreateLookupResult(Context,
Douglas Gregor78d70132009-01-14 22:20:51 +0000916 LazilyCreateBuiltin((IdentifierInfo *)II, BuiltinID,
Douglas Gregor411889e2009-02-13 23:20:09 +0000917 S, RedeclarationOnly, Loc));
918 }
Douglas Gregor78d70132009-01-14 22:20:51 +0000919 }
920 if (getLangOptions().ObjC1 && II) {
921 // @interface and @compatibility_alias introduce typedef-like names.
922 // Unlike typedef's, they can only be introduced at file-scope (and are
923 // therefore not scoped decls). They can, however, be shadowed by
924 // other names in IDNS_Ordinary.
925 ObjCInterfaceDeclsTy::iterator IDI = ObjCInterfaceDecls.find(II);
926 if (IDI != ObjCInterfaceDecls.end())
Douglas Gregord07474b2009-01-17 01:13:24 +0000927 return LookupResult::CreateLookupResult(Context, IDI->second);
Douglas Gregor78d70132009-01-14 22:20:51 +0000928 ObjCAliasTy::iterator I = ObjCAliasDecls.find(II);
929 if (I != ObjCAliasDecls.end())
Douglas Gregord07474b2009-01-17 01:13:24 +0000930 return LookupResult::CreateLookupResult(Context,
931 I->second->getClassInterface());
Douglas Gregor78d70132009-01-14 22:20:51 +0000932 }
933 }
Douglas Gregord07474b2009-01-17 01:13:24 +0000934 return LookupResult::CreateLookupResult(Context, 0);
Douglas Gregor78d70132009-01-14 22:20:51 +0000935}
936
937/// @brief Perform qualified name lookup into a given context.
938///
939/// Qualified name lookup (C++ [basic.lookup.qual]) is used to find
940/// names when the context of those names is explicit specified, e.g.,
941/// "std::vector" or "x->member".
942///
943/// Different lookup criteria can find different names. For example, a
944/// particular scope can have both a struct and a function of the same
945/// name, and each can be found by certain lookup criteria. For more
946/// information about lookup criteria, see the documentation for the
947/// class LookupCriteria.
948///
949/// @param LookupCtx The context in which qualified name lookup will
950/// search. If the lookup criteria permits, name lookup may also search
951/// in the parent contexts or (for C++ classes) base classes.
952///
953/// @param Name The name of the entity that we are searching for.
954///
955/// @param Criteria The criteria that this routine will use to
956/// determine which names are visible and which names will be
957/// found. Note that name lookup will find a name that is visible by
958/// the given criteria, but the entity itself may not be semantically
959/// correct or even the kind of entity expected based on the
960/// lookup. For example, searching for a nested-name-specifier name
961/// might result in an EnumDecl, which is visible but is not permitted
962/// as a nested-name-specifier in C++03.
963///
964/// @returns The result of name lookup, which includes zero or more
965/// declarations and possibly additional information used to diagnose
966/// ambiguities.
967Sema::LookupResult
968Sema::LookupQualifiedName(DeclContext *LookupCtx, DeclarationName Name,
Douglas Gregor52ae30c2009-01-30 01:04:22 +0000969 LookupNameKind NameKind, bool RedeclarationOnly) {
Douglas Gregor78d70132009-01-14 22:20:51 +0000970 assert(LookupCtx && "Sema::LookupQualifiedName requires a lookup context");
971
Douglas Gregord07474b2009-01-17 01:13:24 +0000972 if (!Name) return LookupResult::CreateLookupResult(Context, 0);
Douglas Gregor78d70132009-01-14 22:20:51 +0000973
974 // If we're performing qualified name lookup (e.g., lookup into a
975 // struct), find fields as part of ordinary name lookup.
Douglas Gregor52ae30c2009-01-30 01:04:22 +0000976 unsigned IDNS
977 = getIdentifierNamespacesFromLookupNameKind(NameKind,
978 getLangOptions().CPlusPlus);
979 if (NameKind == LookupOrdinaryName)
980 IDNS |= Decl::IDNS_Member;
Douglas Gregor78d70132009-01-14 22:20:51 +0000981
982 // Perform qualified name lookup into the LookupCtx.
Douglas Gregor78d70132009-01-14 22:20:51 +0000983 DeclContext::lookup_iterator I, E;
Douglas Gregorc55b0b02009-04-09 21:40:53 +0000984 for (llvm::tie(I, E) = LookupCtx->lookup(Context, Name); I != E; ++I)
Douglas Gregor52ae30c2009-01-30 01:04:22 +0000985 if (isAcceptableLookupResult(*I, NameKind, IDNS))
Douglas Gregord07474b2009-01-17 01:13:24 +0000986 return LookupResult::CreateLookupResult(Context, I, E);
Douglas Gregor78d70132009-01-14 22:20:51 +0000987
Douglas Gregor29dfa2f2009-01-15 00:26:24 +0000988 // If this isn't a C++ class or we aren't allowed to look into base
989 // classes, we're done.
Douglas Gregor52ae30c2009-01-30 01:04:22 +0000990 if (RedeclarationOnly || !isa<CXXRecordDecl>(LookupCtx))
Douglas Gregord07474b2009-01-17 01:13:24 +0000991 return LookupResult::CreateLookupResult(Context, 0);
Douglas Gregor29dfa2f2009-01-15 00:26:24 +0000992
993 // Perform lookup into our base classes.
994 BasePaths Paths;
Douglas Gregorb9ef0552009-01-16 00:38:09 +0000995 Paths.setOrigin(Context.getTypeDeclType(cast<RecordDecl>(LookupCtx)));
Douglas Gregor29dfa2f2009-01-15 00:26:24 +0000996
997 // Look for this member in our base classes
998 if (!LookupInBases(cast<CXXRecordDecl>(LookupCtx),
Douglas Gregor52ae30c2009-01-30 01:04:22 +0000999 MemberLookupCriteria(Name, NameKind, IDNS), Paths))
Douglas Gregord07474b2009-01-17 01:13:24 +00001000 return LookupResult::CreateLookupResult(Context, 0);
Douglas Gregor29dfa2f2009-01-15 00:26:24 +00001001
1002 // C++ [class.member.lookup]p2:
1003 // [...] If the resulting set of declarations are not all from
1004 // sub-objects of the same type, or the set has a nonstatic member
1005 // and includes members from distinct sub-objects, there is an
1006 // ambiguity and the program is ill-formed. Otherwise that set is
1007 // the result of the lookup.
1008 // FIXME: support using declarations!
1009 QualType SubobjectType;
Daniel Dunbarddebeca2009-01-15 18:32:35 +00001010 int SubobjectNumber = 0;
Douglas Gregor29dfa2f2009-01-15 00:26:24 +00001011 for (BasePaths::paths_iterator Path = Paths.begin(), PathEnd = Paths.end();
1012 Path != PathEnd; ++Path) {
1013 const BasePathElement &PathElement = Path->back();
1014
1015 // Determine whether we're looking at a distinct sub-object or not.
1016 if (SubobjectType.isNull()) {
1017 // This is the first subobject we've looked at. Record it's type.
1018 SubobjectType = Context.getCanonicalType(PathElement.Base->getType());
1019 SubobjectNumber = PathElement.SubobjectNumber;
1020 } else if (SubobjectType
1021 != Context.getCanonicalType(PathElement.Base->getType())) {
1022 // We found members of the given name in two subobjects of
1023 // different types. This lookup is ambiguous.
1024 BasePaths *PathsOnHeap = new BasePaths;
1025 PathsOnHeap->swap(Paths);
Douglas Gregord07474b2009-01-17 01:13:24 +00001026 return LookupResult::CreateLookupResult(Context, PathsOnHeap, true);
Douglas Gregor29dfa2f2009-01-15 00:26:24 +00001027 } else if (SubobjectNumber != PathElement.SubobjectNumber) {
1028 // We have a different subobject of the same type.
1029
1030 // C++ [class.member.lookup]p5:
1031 // A static member, a nested type or an enumerator defined in
1032 // a base class T can unambiguously be found even if an object
1033 // has more than one base class subobject of type T.
Douglas Gregoraf8ad2b2009-01-20 01:17:11 +00001034 Decl *FirstDecl = *Path->Decls.first;
Douglas Gregor29dfa2f2009-01-15 00:26:24 +00001035 if (isa<VarDecl>(FirstDecl) ||
1036 isa<TypeDecl>(FirstDecl) ||
1037 isa<EnumConstantDecl>(FirstDecl))
1038 continue;
1039
1040 if (isa<CXXMethodDecl>(FirstDecl)) {
1041 // Determine whether all of the methods are static.
1042 bool AllMethodsAreStatic = true;
1043 for (DeclContext::lookup_iterator Func = Path->Decls.first;
1044 Func != Path->Decls.second; ++Func) {
1045 if (!isa<CXXMethodDecl>(*Func)) {
1046 assert(isa<TagDecl>(*Func) && "Non-function must be a tag decl");
1047 break;
1048 }
1049
1050 if (!cast<CXXMethodDecl>(*Func)->isStatic()) {
1051 AllMethodsAreStatic = false;
1052 break;
1053 }
1054 }
1055
1056 if (AllMethodsAreStatic)
1057 continue;
1058 }
1059
1060 // We have found a nonstatic member name in multiple, distinct
1061 // subobjects. Name lookup is ambiguous.
1062 BasePaths *PathsOnHeap = new BasePaths;
1063 PathsOnHeap->swap(Paths);
Douglas Gregord07474b2009-01-17 01:13:24 +00001064 return LookupResult::CreateLookupResult(Context, PathsOnHeap, false);
Douglas Gregor29dfa2f2009-01-15 00:26:24 +00001065 }
1066 }
1067
1068 // Lookup in a base class succeeded; return these results.
1069
1070 // If we found a function declaration, return an overload set.
1071 if (isa<FunctionDecl>(*Paths.front().Decls.first))
Douglas Gregord07474b2009-01-17 01:13:24 +00001072 return LookupResult::CreateLookupResult(Context,
Douglas Gregor29dfa2f2009-01-15 00:26:24 +00001073 Paths.front().Decls.first, Paths.front().Decls.second);
1074
1075 // We found a non-function declaration; return a single declaration.
Douglas Gregord07474b2009-01-17 01:13:24 +00001076 return LookupResult::CreateLookupResult(Context, *Paths.front().Decls.first);
Douglas Gregor78d70132009-01-14 22:20:51 +00001077}
1078
1079/// @brief Performs name lookup for a name that was parsed in the
1080/// source code, and may contain a C++ scope specifier.
1081///
1082/// This routine is a convenience routine meant to be called from
1083/// contexts that receive a name and an optional C++ scope specifier
1084/// (e.g., "N::M::x"). It will then perform either qualified or
1085/// unqualified name lookup (with LookupQualifiedName or LookupName,
1086/// respectively) on the given name and return those results.
1087///
1088/// @param S The scope from which unqualified name lookup will
1089/// begin.
1090///
1091/// @param SS An optional C++ scope-specified, e.g., "::N::M".
1092///
1093/// @param Name The name of the entity that name lookup will
1094/// search for.
1095///
Douglas Gregor411889e2009-02-13 23:20:09 +00001096/// @param Loc If provided, the source location where we're performing
1097/// name lookup. At present, this is only used to produce diagnostics when
1098/// C library functions (like "malloc") are implicitly declared.
1099///
Douglas Gregor78d70132009-01-14 22:20:51 +00001100/// @returns The result of qualified or unqualified name lookup.
1101Sema::LookupResult
Douglas Gregor52ae30c2009-01-30 01:04:22 +00001102Sema::LookupParsedName(Scope *S, const CXXScopeSpec *SS,
1103 DeclarationName Name, LookupNameKind NameKind,
Douglas Gregor411889e2009-02-13 23:20:09 +00001104 bool RedeclarationOnly, bool AllowBuiltinCreation,
1105 SourceLocation Loc) {
Douglas Gregor52ae30c2009-01-30 01:04:22 +00001106 if (SS) {
Douglas Gregor6e7c27c2009-03-11 16:48:53 +00001107 if (SS->isInvalid() || RequireCompleteDeclContext(*SS))
Douglas Gregor52ae30c2009-01-30 01:04:22 +00001108 return LookupResult::CreateLookupResult(Context, 0);
Douglas Gregor78d70132009-01-14 22:20:51 +00001109
Douglas Gregor734b4ba2009-03-19 00:18:19 +00001110 if (SS->isSet()) {
1111 return LookupQualifiedName(computeDeclContext(*SS),
Douglas Gregor52ae30c2009-01-30 01:04:22 +00001112 Name, NameKind, RedeclarationOnly);
Douglas Gregor734b4ba2009-03-19 00:18:19 +00001113 }
Douglas Gregor52ae30c2009-01-30 01:04:22 +00001114 }
1115
Douglas Gregor411889e2009-02-13 23:20:09 +00001116 return LookupName(S, Name, NameKind, RedeclarationOnly,
1117 AllowBuiltinCreation, Loc);
Douglas Gregor78d70132009-01-14 22:20:51 +00001118}
1119
Douglas Gregor7a7be652009-02-03 19:21:40 +00001120
Douglas Gregor29dfa2f2009-01-15 00:26:24 +00001121/// @brief Produce a diagnostic describing the ambiguity that resulted
1122/// from name lookup.
1123///
1124/// @param Result The ambiguous name lookup result.
1125///
1126/// @param Name The name of the entity that name lookup was
1127/// searching for.
1128///
1129/// @param NameLoc The location of the name within the source code.
1130///
1131/// @param LookupRange A source range that provides more
1132/// source-location information concerning the lookup itself. For
1133/// example, this range might highlight a nested-name-specifier that
1134/// precedes the name.
1135///
1136/// @returns true
1137bool Sema::DiagnoseAmbiguousLookup(LookupResult &Result, DeclarationName Name,
1138 SourceLocation NameLoc,
1139 SourceRange LookupRange) {
1140 assert(Result.isAmbiguous() && "Lookup result must be ambiguous");
1141
Douglas Gregord7cb0372009-04-01 21:51:26 +00001142 if (BasePaths *Paths = Result.getBasePaths()) {
Douglas Gregor7a7be652009-02-03 19:21:40 +00001143 if (Result.getKind() == LookupResult::AmbiguousBaseSubobjects) {
1144 QualType SubobjectType = Paths->front().back().Base->getType();
1145 Diag(NameLoc, diag::err_ambiguous_member_multiple_subobjects)
1146 << Name << SubobjectType << getAmbiguousPathsDisplayString(*Paths)
1147 << LookupRange;
Douglas Gregorb9ef0552009-01-16 00:38:09 +00001148
Douglas Gregor7a7be652009-02-03 19:21:40 +00001149 DeclContext::lookup_iterator Found = Paths->front().Decls.first;
Douglas Gregord7cb0372009-04-01 21:51:26 +00001150 while (isa<CXXMethodDecl>(*Found) &&
1151 cast<CXXMethodDecl>(*Found)->isStatic())
Douglas Gregor7a7be652009-02-03 19:21:40 +00001152 ++Found;
Douglas Gregorb9ef0552009-01-16 00:38:09 +00001153
Douglas Gregor7a7be652009-02-03 19:21:40 +00001154 Diag((*Found)->getLocation(), diag::note_ambiguous_member_found);
1155
Douglas Gregord7cb0372009-04-01 21:51:26 +00001156 Result.Destroy();
Douglas Gregor7a7be652009-02-03 19:21:40 +00001157 return true;
1158 }
1159
1160 assert(Result.getKind() == LookupResult::AmbiguousBaseSubobjectTypes &&
1161 "Unhandled form of name lookup ambiguity");
1162
1163 Diag(NameLoc, diag::err_ambiguous_member_multiple_subobject_types)
1164 << Name << LookupRange;
1165
1166 std::set<Decl *> DeclsPrinted;
1167 for (BasePaths::paths_iterator Path = Paths->begin(), PathEnd = Paths->end();
1168 Path != PathEnd; ++Path) {
1169 Decl *D = *Path->Decls.first;
1170 if (DeclsPrinted.insert(D).second)
1171 Diag(D->getLocation(), diag::note_ambiguous_member_found);
1172 }
1173
Douglas Gregord7cb0372009-04-01 21:51:26 +00001174 Result.Destroy();
Douglas Gregor7a7be652009-02-03 19:21:40 +00001175 return true;
1176 } else if (Result.getKind() == LookupResult::AmbiguousReference) {
Douglas Gregor7a7be652009-02-03 19:21:40 +00001177 Diag(NameLoc, diag::err_ambiguous_reference) << Name << LookupRange;
1178
Douglas Gregor09be81b2009-02-04 17:27:36 +00001179 NamedDecl **DI = reinterpret_cast<NamedDecl **>(Result.First),
Douglas Gregord7cb0372009-04-01 21:51:26 +00001180 **DEnd = reinterpret_cast<NamedDecl **>(Result.Last);
Douglas Gregor7a7be652009-02-03 19:21:40 +00001181
Chris Lattnerb02f5f22009-02-03 21:29:32 +00001182 for (; DI != DEnd; ++DI)
Douglas Gregor09be81b2009-02-04 17:27:36 +00001183 Diag((*DI)->getLocation(), diag::note_ambiguous_candidate) << *DI;
Douglas Gregor7a7be652009-02-03 19:21:40 +00001184
Douglas Gregord7cb0372009-04-01 21:51:26 +00001185 Result.Destroy();
Douglas Gregorb9ef0552009-01-16 00:38:09 +00001186 return true;
Douglas Gregorb9ef0552009-01-16 00:38:09 +00001187 }
1188
Douglas Gregor7a7be652009-02-03 19:21:40 +00001189 assert(false && "Unhandled form of name lookup ambiguity");
Douglas Gregord07474b2009-01-17 01:13:24 +00001190
Douglas Gregor7a7be652009-02-03 19:21:40 +00001191 // We can't reach here.
Douglas Gregor29dfa2f2009-01-15 00:26:24 +00001192 return true;
1193}
Douglas Gregoraa1da4a2009-02-04 00:32:51 +00001194
1195// \brief Add the associated classes and namespaces for
1196// argument-dependent lookup with an argument of class type
1197// (C++ [basic.lookup.koenig]p2).
1198static void
1199addAssociatedClassesAndNamespaces(CXXRecordDecl *Class,
1200 ASTContext &Context,
1201 Sema::AssociatedNamespaceSet &AssociatedNamespaces,
1202 Sema::AssociatedClassSet &AssociatedClasses) {
1203 // C++ [basic.lookup.koenig]p2:
1204 // [...]
1205 // -- If T is a class type (including unions), its associated
1206 // classes are: the class itself; the class of which it is a
1207 // member, if any; and its direct and indirect base
1208 // classes. Its associated namespaces are the namespaces in
1209 // which its associated classes are defined.
1210
1211 // Add the class of which it is a member, if any.
1212 DeclContext *Ctx = Class->getDeclContext();
1213 if (CXXRecordDecl *EnclosingClass = dyn_cast<CXXRecordDecl>(Ctx))
1214 AssociatedClasses.insert(EnclosingClass);
1215
1216 // Add the associated namespace for this class.
1217 while (Ctx->isRecord())
1218 Ctx = Ctx->getParent();
1219 if (NamespaceDecl *EnclosingNamespace = dyn_cast<NamespaceDecl>(Ctx))
1220 AssociatedNamespaces.insert(EnclosingNamespace);
1221
1222 // Add the class itself. If we've already seen this class, we don't
1223 // need to visit base classes.
1224 if (!AssociatedClasses.insert(Class))
1225 return;
1226
1227 // FIXME: Handle class template specializations
1228
1229 // Add direct and indirect base classes along with their associated
1230 // namespaces.
1231 llvm::SmallVector<CXXRecordDecl *, 32> Bases;
1232 Bases.push_back(Class);
1233 while (!Bases.empty()) {
1234 // Pop this class off the stack.
1235 Class = Bases.back();
1236 Bases.pop_back();
1237
1238 // Visit the base classes.
1239 for (CXXRecordDecl::base_class_iterator Base = Class->bases_begin(),
1240 BaseEnd = Class->bases_end();
1241 Base != BaseEnd; ++Base) {
1242 const RecordType *BaseType = Base->getType()->getAsRecordType();
1243 CXXRecordDecl *BaseDecl = cast<CXXRecordDecl>(BaseType->getDecl());
1244 if (AssociatedClasses.insert(BaseDecl)) {
1245 // Find the associated namespace for this base class.
1246 DeclContext *BaseCtx = BaseDecl->getDeclContext();
1247 while (BaseCtx->isRecord())
1248 BaseCtx = BaseCtx->getParent();
1249 if (NamespaceDecl *EnclosingNamespace = dyn_cast<NamespaceDecl>(BaseCtx))
1250 AssociatedNamespaces.insert(EnclosingNamespace);
1251
1252 // Make sure we visit the bases of this base class.
1253 if (BaseDecl->bases_begin() != BaseDecl->bases_end())
1254 Bases.push_back(BaseDecl);
1255 }
1256 }
1257 }
1258}
1259
1260// \brief Add the associated classes and namespaces for
1261// argument-dependent lookup with an argument of type T
1262// (C++ [basic.lookup.koenig]p2).
1263static void
1264addAssociatedClassesAndNamespaces(QualType T,
1265 ASTContext &Context,
1266 Sema::AssociatedNamespaceSet &AssociatedNamespaces,
1267 Sema::AssociatedClassSet &AssociatedClasses) {
1268 // C++ [basic.lookup.koenig]p2:
1269 //
1270 // For each argument type T in the function call, there is a set
1271 // of zero or more associated namespaces and a set of zero or more
1272 // associated classes to be considered. The sets of namespaces and
1273 // classes is determined entirely by the types of the function
1274 // arguments (and the namespace of any template template
1275 // argument). Typedef names and using-declarations used to specify
1276 // the types do not contribute to this set. The sets of namespaces
1277 // and classes are determined in the following way:
1278 T = Context.getCanonicalType(T).getUnqualifiedType();
1279
1280 // -- If T is a pointer to U or an array of U, its associated
1281 // namespaces and classes are those associated with U.
1282 //
1283 // We handle this by unwrapping pointer and array types immediately,
1284 // to avoid unnecessary recursion.
1285 while (true) {
1286 if (const PointerType *Ptr = T->getAsPointerType())
1287 T = Ptr->getPointeeType();
1288 else if (const ArrayType *Ptr = Context.getAsArrayType(T))
1289 T = Ptr->getElementType();
1290 else
1291 break;
1292 }
1293
1294 // -- If T is a fundamental type, its associated sets of
1295 // namespaces and classes are both empty.
1296 if (T->getAsBuiltinType())
1297 return;
1298
1299 // -- If T is a class type (including unions), its associated
1300 // classes are: the class itself; the class of which it is a
1301 // member, if any; and its direct and indirect base
1302 // classes. Its associated namespaces are the namespaces in
1303 // which its associated classes are defined.
Douglas Gregor2e047592009-02-28 01:32:25 +00001304 if (const RecordType *ClassType = T->getAsRecordType())
1305 if (CXXRecordDecl *ClassDecl
1306 = dyn_cast<CXXRecordDecl>(ClassType->getDecl())) {
1307 addAssociatedClassesAndNamespaces(ClassDecl, Context,
1308 AssociatedNamespaces,
1309 AssociatedClasses);
1310 return;
1311 }
Douglas Gregoraa1da4a2009-02-04 00:32:51 +00001312
1313 // -- If T is an enumeration type, its associated namespace is
1314 // the namespace in which it is defined. If it is class
1315 // member, its associated class is the member’s class; else
1316 // it has no associated class.
1317 if (const EnumType *EnumT = T->getAsEnumType()) {
1318 EnumDecl *Enum = EnumT->getDecl();
1319
1320 DeclContext *Ctx = Enum->getDeclContext();
1321 if (CXXRecordDecl *EnclosingClass = dyn_cast<CXXRecordDecl>(Ctx))
1322 AssociatedClasses.insert(EnclosingClass);
1323
1324 // Add the associated namespace for this class.
1325 while (Ctx->isRecord())
1326 Ctx = Ctx->getParent();
1327 if (NamespaceDecl *EnclosingNamespace = dyn_cast<NamespaceDecl>(Ctx))
1328 AssociatedNamespaces.insert(EnclosingNamespace);
1329
1330 return;
1331 }
1332
1333 // -- If T is a function type, its associated namespaces and
1334 // classes are those associated with the function parameter
1335 // types and those associated with the return type.
1336 if (const FunctionType *FunctionType = T->getAsFunctionType()) {
1337 // Return type
1338 addAssociatedClassesAndNamespaces(FunctionType->getResultType(),
1339 Context,
1340 AssociatedNamespaces, AssociatedClasses);
1341
Douglas Gregor4fa58902009-02-26 23:50:07 +00001342 const FunctionProtoType *Proto = dyn_cast<FunctionProtoType>(FunctionType);
Douglas Gregoraa1da4a2009-02-04 00:32:51 +00001343 if (!Proto)
1344 return;
1345
1346 // Argument types
Douglas Gregor4fa58902009-02-26 23:50:07 +00001347 for (FunctionProtoType::arg_type_iterator Arg = Proto->arg_type_begin(),
Douglas Gregoraa1da4a2009-02-04 00:32:51 +00001348 ArgEnd = Proto->arg_type_end();
1349 Arg != ArgEnd; ++Arg)
1350 addAssociatedClassesAndNamespaces(*Arg, Context,
1351 AssociatedNamespaces, AssociatedClasses);
1352
1353 return;
1354 }
1355
1356 // -- If T is a pointer to a member function of a class X, its
1357 // associated namespaces and classes are those associated
1358 // with the function parameter types and return type,
1359 // together with those associated with X.
1360 //
1361 // -- If T is a pointer to a data member of class X, its
1362 // associated namespaces and classes are those associated
1363 // with the member type together with those associated with
1364 // X.
1365 if (const MemberPointerType *MemberPtr = T->getAsMemberPointerType()) {
1366 // Handle the type that the pointer to member points to.
1367 addAssociatedClassesAndNamespaces(MemberPtr->getPointeeType(),
1368 Context,
1369 AssociatedNamespaces, AssociatedClasses);
1370
1371 // Handle the class type into which this points.
1372 if (const RecordType *Class = MemberPtr->getClass()->getAsRecordType())
1373 addAssociatedClassesAndNamespaces(cast<CXXRecordDecl>(Class->getDecl()),
1374 Context,
1375 AssociatedNamespaces, AssociatedClasses);
1376
1377 return;
1378 }
1379
1380 // FIXME: What about block pointers?
1381 // FIXME: What about Objective-C message sends?
1382}
1383
1384/// \brief Find the associated classes and namespaces for
1385/// argument-dependent lookup for a call with the given set of
1386/// arguments.
1387///
1388/// This routine computes the sets of associated classes and associated
1389/// namespaces searched by argument-dependent lookup
1390/// (C++ [basic.lookup.argdep]) for a given set of arguments.
1391void
1392Sema::FindAssociatedClassesAndNamespaces(Expr **Args, unsigned NumArgs,
1393 AssociatedNamespaceSet &AssociatedNamespaces,
1394 AssociatedClassSet &AssociatedClasses) {
1395 AssociatedNamespaces.clear();
1396 AssociatedClasses.clear();
1397
1398 // C++ [basic.lookup.koenig]p2:
1399 // For each argument type T in the function call, there is a set
1400 // of zero or more associated namespaces and a set of zero or more
1401 // associated classes to be considered. The sets of namespaces and
1402 // classes is determined entirely by the types of the function
1403 // arguments (and the namespace of any template template
1404 // argument).
1405 for (unsigned ArgIdx = 0; ArgIdx != NumArgs; ++ArgIdx) {
1406 Expr *Arg = Args[ArgIdx];
1407
1408 if (Arg->getType() != Context.OverloadTy) {
1409 addAssociatedClassesAndNamespaces(Arg->getType(), Context,
1410 AssociatedNamespaces, AssociatedClasses);
1411 continue;
1412 }
1413
1414 // [...] In addition, if the argument is the name or address of a
1415 // set of overloaded functions and/or function templates, its
1416 // associated classes and namespaces are the union of those
1417 // associated with each of the members of the set: the namespace
1418 // in which the function or function template is defined and the
1419 // classes and namespaces associated with its (non-dependent)
1420 // parameter types and return type.
1421 DeclRefExpr *DRE = 0;
1422 if (UnaryOperator *unaryOp = dyn_cast<UnaryOperator>(Arg)) {
1423 if (unaryOp->getOpcode() == UnaryOperator::AddrOf)
1424 DRE = dyn_cast<DeclRefExpr>(unaryOp->getSubExpr());
1425 } else
1426 DRE = dyn_cast<DeclRefExpr>(Arg);
1427 if (!DRE)
1428 continue;
1429
1430 OverloadedFunctionDecl *Ovl
1431 = dyn_cast<OverloadedFunctionDecl>(DRE->getDecl());
1432 if (!Ovl)
1433 continue;
1434
1435 for (OverloadedFunctionDecl::function_iterator Func = Ovl->function_begin(),
1436 FuncEnd = Ovl->function_end();
1437 Func != FuncEnd; ++Func) {
1438 FunctionDecl *FDecl = cast<FunctionDecl>(*Func);
1439
1440 // Add the namespace in which this function was defined. Note
1441 // that, if this is a member function, we do *not* consider the
1442 // enclosing namespace of its class.
1443 DeclContext *Ctx = FDecl->getDeclContext();
1444 if (NamespaceDecl *EnclosingNamespace = dyn_cast<NamespaceDecl>(Ctx))
1445 AssociatedNamespaces.insert(EnclosingNamespace);
1446
1447 // Add the classes and namespaces associated with the parameter
1448 // types and return type of this function.
1449 addAssociatedClassesAndNamespaces(FDecl->getType(), Context,
1450 AssociatedNamespaces, AssociatedClasses);
1451 }
1452 }
1453}
Douglas Gregor3fc092f2009-03-13 00:33:25 +00001454
1455/// IsAcceptableNonMemberOperatorCandidate - Determine whether Fn is
1456/// an acceptable non-member overloaded operator for a call whose
1457/// arguments have types T1 (and, if non-empty, T2). This routine
1458/// implements the check in C++ [over.match.oper]p3b2 concerning
1459/// enumeration types.
1460static bool
1461IsAcceptableNonMemberOperatorCandidate(FunctionDecl *Fn,
1462 QualType T1, QualType T2,
1463 ASTContext &Context) {
Douglas Gregor396f1142009-03-13 21:01:28 +00001464 if (T1->isDependentType() || (!T2.isNull() && T2->isDependentType()))
1465 return true;
1466
Douglas Gregor3fc092f2009-03-13 00:33:25 +00001467 if (T1->isRecordType() || (!T2.isNull() && T2->isRecordType()))
1468 return true;
1469
1470 const FunctionProtoType *Proto = Fn->getType()->getAsFunctionProtoType();
1471 if (Proto->getNumArgs() < 1)
1472 return false;
1473
1474 if (T1->isEnumeralType()) {
1475 QualType ArgType = Proto->getArgType(0).getNonReferenceType();
1476 if (Context.getCanonicalType(T1).getUnqualifiedType()
1477 == Context.getCanonicalType(ArgType).getUnqualifiedType())
1478 return true;
1479 }
1480
1481 if (Proto->getNumArgs() < 2)
1482 return false;
1483
1484 if (!T2.isNull() && T2->isEnumeralType()) {
1485 QualType ArgType = Proto->getArgType(1).getNonReferenceType();
1486 if (Context.getCanonicalType(T2).getUnqualifiedType()
1487 == Context.getCanonicalType(ArgType).getUnqualifiedType())
1488 return true;
1489 }
1490
1491 return false;
1492}
1493
1494void Sema::LookupOverloadedOperatorName(OverloadedOperatorKind Op, Scope *S,
1495 QualType T1, QualType T2,
1496 FunctionSet &Functions) {
1497 // C++ [over.match.oper]p3:
1498 // -- The set of non-member candidates is the result of the
1499 // unqualified lookup of operator@ in the context of the
1500 // expression according to the usual rules for name lookup in
1501 // unqualified function calls (3.4.2) except that all member
1502 // functions are ignored. However, if no operand has a class
1503 // type, only those non-member functions in the lookup set
1504 // that have a first parameter of type T1 or “reference to
1505 // (possibly cv-qualified) T1”, when T1 is an enumeration
1506 // type, or (if there is a right operand) a second parameter
1507 // of type T2 or “reference to (possibly cv-qualified) T2”,
1508 // when T2 is an enumeration type, are candidate functions.
1509 DeclarationName OpName = Context.DeclarationNames.getCXXOperatorName(Op);
1510 LookupResult Operators = LookupName(S, OpName, LookupOperatorName);
1511
1512 assert(!Operators.isAmbiguous() && "Operator lookup cannot be ambiguous");
1513
1514 if (!Operators)
1515 return;
1516
1517 for (LookupResult::iterator Op = Operators.begin(), OpEnd = Operators.end();
1518 Op != OpEnd; ++Op) {
1519 if (FunctionDecl *FD = dyn_cast<FunctionDecl>(*Op))
1520 if (IsAcceptableNonMemberOperatorCandidate(FD, T1, T2, Context))
1521 Functions.insert(FD); // FIXME: canonical FD
1522 }
1523}
1524
1525void Sema::ArgumentDependentLookup(DeclarationName Name,
1526 Expr **Args, unsigned NumArgs,
1527 FunctionSet &Functions) {
1528 // Find all of the associated namespaces and classes based on the
1529 // arguments we have.
1530 AssociatedNamespaceSet AssociatedNamespaces;
1531 AssociatedClassSet AssociatedClasses;
1532 FindAssociatedClassesAndNamespaces(Args, NumArgs,
1533 AssociatedNamespaces, AssociatedClasses);
1534
1535 // C++ [basic.lookup.argdep]p3:
Douglas Gregor3fc092f2009-03-13 00:33:25 +00001536 // Let X be the lookup set produced by unqualified lookup (3.4.1)
1537 // and let Y be the lookup set produced by argument dependent
1538 // lookup (defined as follows). If X contains [...] then Y is
1539 // empty. Otherwise Y is the set of declarations found in the
1540 // namespaces associated with the argument types as described
1541 // below. The set of declarations found by the lookup of the name
1542 // is the union of X and Y.
1543 //
1544 // Here, we compute Y and add its members to the overloaded
1545 // candidate set.
1546 for (AssociatedNamespaceSet::iterator NS = AssociatedNamespaces.begin(),
1547 NSEnd = AssociatedNamespaces.end();
1548 NS != NSEnd; ++NS) {
1549 // When considering an associated namespace, the lookup is the
1550 // same as the lookup performed when the associated namespace is
1551 // used as a qualifier (3.4.3.2) except that:
1552 //
1553 // -- Any using-directives in the associated namespace are
1554 // ignored.
1555 //
1556 // -- FIXME: Any namespace-scope friend functions declared in
1557 // associated classes are visible within their respective
1558 // namespaces even if they are not visible during an ordinary
1559 // lookup (11.4).
1560 DeclContext::lookup_iterator I, E;
Douglas Gregorc55b0b02009-04-09 21:40:53 +00001561 for (llvm::tie(I, E) = (*NS)->lookup(Context, Name); I != E; ++I) {
Douglas Gregor3fc092f2009-03-13 00:33:25 +00001562 FunctionDecl *Func = dyn_cast<FunctionDecl>(*I);
1563 if (!Func)
1564 break;
1565
1566 Functions.insert(Func);
1567 }
1568 }
1569}
1570