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Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001//===--- SemaExprMember.cpp - Semantic Analysis for Expressions -----------===//
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 semantic analysis member access expressions.
11//
12//===----------------------------------------------------------------------===//
13#include "clang/Sema/SemaInternal.h"
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +000014#include "clang/AST/DeclCXX.h"
15#include "clang/AST/DeclObjC.h"
16#include "clang/AST/DeclTemplate.h"
17#include "clang/AST/ExprCXX.h"
18#include "clang/AST/ExprObjC.h"
19#include "clang/Lex/Preprocessor.h"
Chandler Carruth55fc8732012-12-04 09:13:33 +000020#include "clang/Sema/Lookup.h"
21#include "clang/Sema/Scope.h"
22#include "clang/Sema/ScopeInfo.h"
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +000023
24using namespace clang;
25using namespace sema;
26
Richard Smithf62c6902012-11-22 00:24:47 +000027typedef llvm::SmallPtrSet<const CXXRecordDecl*, 4> BaseSet;
28static bool BaseIsNotInSet(const CXXRecordDecl *Base, void *BasesPtr) {
29 const BaseSet &Bases = *reinterpret_cast<const BaseSet*>(BasesPtr);
30 return !Bases.count(Base->getCanonicalDecl());
31}
32
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +000033/// Determines if the given class is provably not derived from all of
34/// the prospective base classes.
Richard Smithf62c6902012-11-22 00:24:47 +000035static bool isProvablyNotDerivedFrom(Sema &SemaRef, CXXRecordDecl *Record,
36 const BaseSet &Bases) {
37 void *BasesPtr = const_cast<void*>(reinterpret_cast<const void*>(&Bases));
38 return BaseIsNotInSet(Record, BasesPtr) &&
39 Record->forallBases(BaseIsNotInSet, BasesPtr);
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +000040}
41
42enum IMAKind {
43 /// The reference is definitely not an instance member access.
44 IMA_Static,
45
46 /// The reference may be an implicit instance member access.
47 IMA_Mixed,
48
Eli Friedman9bc291d2012-01-18 03:53:45 +000049 /// The reference may be to an instance member, but it might be invalid if
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +000050 /// so, because the context is not an instance method.
51 IMA_Mixed_StaticContext,
52
53 /// The reference may be to an instance member, but it is invalid if
54 /// so, because the context is from an unrelated class.
55 IMA_Mixed_Unrelated,
56
57 /// The reference is definitely an implicit instance member access.
58 IMA_Instance,
59
60 /// The reference may be to an unresolved using declaration.
61 IMA_Unresolved,
62
John McCallaeeacf72013-05-03 00:10:13 +000063 /// The reference is a contextually-permitted abstract member reference.
64 IMA_Abstract,
65
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +000066 /// The reference may be to an unresolved using declaration and the
67 /// context is not an instance method.
68 IMA_Unresolved_StaticContext,
69
Eli Friedmanef331b72012-01-20 01:26:23 +000070 // The reference refers to a field which is not a member of the containing
71 // class, which is allowed because we're in C++11 mode and the context is
72 // unevaluated.
73 IMA_Field_Uneval_Context,
Eli Friedman9bc291d2012-01-18 03:53:45 +000074
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +000075 /// All possible referrents are instance members and the current
76 /// context is not an instance method.
77 IMA_Error_StaticContext,
78
79 /// All possible referrents are instance members of an unrelated
80 /// class.
81 IMA_Error_Unrelated
82};
83
84/// The given lookup names class member(s) and is not being used for
85/// an address-of-member expression. Classify the type of access
86/// according to whether it's possible that this reference names an
Eli Friedman9bc291d2012-01-18 03:53:45 +000087/// instance member. This is best-effort in dependent contexts; it is okay to
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +000088/// conservatively answer "yes", in which case some errors will simply
89/// not be caught until template-instantiation.
90static IMAKind ClassifyImplicitMemberAccess(Sema &SemaRef,
91 Scope *CurScope,
92 const LookupResult &R) {
93 assert(!R.empty() && (*R.begin())->isCXXClassMember());
94
95 DeclContext *DC = SemaRef.getFunctionLevelDeclContext();
96
Douglas Gregorcefc3af2012-04-16 07:05:22 +000097 bool isStaticContext = SemaRef.CXXThisTypeOverride.isNull() &&
98 (!isa<CXXMethodDecl>(DC) || cast<CXXMethodDecl>(DC)->isStatic());
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +000099
100 if (R.isUnresolvableResult())
101 return isStaticContext ? IMA_Unresolved_StaticContext : IMA_Unresolved;
102
103 // Collect all the declaring classes of instance members we find.
104 bool hasNonInstance = false;
Eli Friedman9bc291d2012-01-18 03:53:45 +0000105 bool isField = false;
Richard Smithf62c6902012-11-22 00:24:47 +0000106 BaseSet Classes;
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000107 for (LookupResult::iterator I = R.begin(), E = R.end(); I != E; ++I) {
108 NamedDecl *D = *I;
109
110 if (D->isCXXInstanceMember()) {
John McCall76da55d2013-04-16 07:28:30 +0000111 if (dyn_cast<FieldDecl>(D) || dyn_cast<MSPropertyDecl>(D)
112 || dyn_cast<IndirectFieldDecl>(D))
Eli Friedman9bc291d2012-01-18 03:53:45 +0000113 isField = true;
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000114
115 CXXRecordDecl *R = cast<CXXRecordDecl>(D->getDeclContext());
116 Classes.insert(R->getCanonicalDecl());
117 }
118 else
119 hasNonInstance = true;
120 }
121
122 // If we didn't find any instance members, it can't be an implicit
123 // member reference.
124 if (Classes.empty())
125 return IMA_Static;
John McCallaeeacf72013-05-03 00:10:13 +0000126
127 // C++11 [expr.prim.general]p12:
128 // An id-expression that denotes a non-static data member or non-static
129 // member function of a class can only be used:
130 // (...)
131 // - if that id-expression denotes a non-static data member and it
132 // appears in an unevaluated operand.
133 //
134 // This rule is specific to C++11. However, we also permit this form
135 // in unevaluated inline assembly operands, like the operand to a SIZE.
136 IMAKind AbstractInstanceResult = IMA_Static; // happens to be 'false'
137 assert(!AbstractInstanceResult);
138 switch (SemaRef.ExprEvalContexts.back().Context) {
139 case Sema::Unevaluated:
140 if (isField && SemaRef.getLangOpts().CPlusPlus11)
141 AbstractInstanceResult = IMA_Field_Uneval_Context;
142 break;
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000143
John McCallaeeacf72013-05-03 00:10:13 +0000144 case Sema::UnevaluatedAbstract:
145 AbstractInstanceResult = IMA_Abstract;
146 break;
147
148 case Sema::ConstantEvaluated:
149 case Sema::PotentiallyEvaluated:
150 case Sema::PotentiallyEvaluatedIfUsed:
151 break;
Richard Smith2c8aee42012-02-25 10:04:07 +0000152 }
153
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000154 // If the current context is not an instance method, it can't be
155 // an implicit member reference.
156 if (isStaticContext) {
157 if (hasNonInstance)
Richard Smith2c8aee42012-02-25 10:04:07 +0000158 return IMA_Mixed_StaticContext;
159
John McCallaeeacf72013-05-03 00:10:13 +0000160 return AbstractInstanceResult ? AbstractInstanceResult
161 : IMA_Error_StaticContext;
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000162 }
163
164 CXXRecordDecl *contextClass;
165 if (CXXMethodDecl *MD = dyn_cast<CXXMethodDecl>(DC))
166 contextClass = MD->getParent()->getCanonicalDecl();
167 else
168 contextClass = cast<CXXRecordDecl>(DC);
169
170 // [class.mfct.non-static]p3:
171 // ...is used in the body of a non-static member function of class X,
172 // if name lookup (3.4.1) resolves the name in the id-expression to a
173 // non-static non-type member of some class C [...]
174 // ...if C is not X or a base class of X, the class member access expression
175 // is ill-formed.
176 if (R.getNamingClass() &&
DeLesley Hutchinsd08d5992012-02-25 00:11:55 +0000177 contextClass->getCanonicalDecl() !=
Richard Smithf62c6902012-11-22 00:24:47 +0000178 R.getNamingClass()->getCanonicalDecl()) {
179 // If the naming class is not the current context, this was a qualified
180 // member name lookup, and it's sufficient to check that we have the naming
181 // class as a base class.
182 Classes.clear();
Richard Smith746619a2012-11-22 00:40:54 +0000183 Classes.insert(R.getNamingClass()->getCanonicalDecl());
Richard Smithf62c6902012-11-22 00:24:47 +0000184 }
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000185
186 // If we can prove that the current context is unrelated to all the
187 // declaring classes, it can't be an implicit member reference (in
188 // which case it's an error if any of those members are selected).
Richard Smithf62c6902012-11-22 00:24:47 +0000189 if (isProvablyNotDerivedFrom(SemaRef, contextClass, Classes))
Richard Smithd390de92012-02-25 10:20:59 +0000190 return hasNonInstance ? IMA_Mixed_Unrelated :
John McCallaeeacf72013-05-03 00:10:13 +0000191 AbstractInstanceResult ? AbstractInstanceResult :
192 IMA_Error_Unrelated;
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000193
194 return (hasNonInstance ? IMA_Mixed : IMA_Instance);
195}
196
197/// Diagnose a reference to a field with no object available.
Richard Smitha85cf392012-04-05 01:13:04 +0000198static void diagnoseInstanceReference(Sema &SemaRef,
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000199 const CXXScopeSpec &SS,
Richard Smitha85cf392012-04-05 01:13:04 +0000200 NamedDecl *Rep,
Eli Friedmanef331b72012-01-20 01:26:23 +0000201 const DeclarationNameInfo &nameInfo) {
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000202 SourceLocation Loc = nameInfo.getLoc();
203 SourceRange Range(Loc);
204 if (SS.isSet()) Range.setBegin(SS.getRange().getBegin());
Eli Friedman9bc291d2012-01-18 03:53:45 +0000205
Richard Smitha85cf392012-04-05 01:13:04 +0000206 DeclContext *FunctionLevelDC = SemaRef.getFunctionLevelDeclContext();
207 CXXMethodDecl *Method = dyn_cast<CXXMethodDecl>(FunctionLevelDC);
208 CXXRecordDecl *ContextClass = Method ? Method->getParent() : 0;
209 CXXRecordDecl *RepClass = dyn_cast<CXXRecordDecl>(Rep->getDeclContext());
210
211 bool InStaticMethod = Method && Method->isStatic();
212 bool IsField = isa<FieldDecl>(Rep) || isa<IndirectFieldDecl>(Rep);
213
214 if (IsField && InStaticMethod)
215 // "invalid use of member 'x' in static member function"
216 SemaRef.Diag(Loc, diag::err_invalid_member_use_in_static_method)
217 << Range << nameInfo.getName();
218 else if (ContextClass && RepClass && SS.isEmpty() && !InStaticMethod &&
219 !RepClass->Equals(ContextClass) && RepClass->Encloses(ContextClass))
220 // Unqualified lookup in a non-static member function found a member of an
221 // enclosing class.
222 SemaRef.Diag(Loc, diag::err_nested_non_static_member_use)
223 << IsField << RepClass << nameInfo.getName() << ContextClass << Range;
224 else if (IsField)
Eli Friedmanef331b72012-01-20 01:26:23 +0000225 SemaRef.Diag(Loc, diag::err_invalid_non_static_member_use)
Richard Smitha85cf392012-04-05 01:13:04 +0000226 << nameInfo.getName() << Range;
227 else
228 SemaRef.Diag(Loc, diag::err_member_call_without_object)
229 << Range;
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000230}
231
232/// Builds an expression which might be an implicit member expression.
233ExprResult
234Sema::BuildPossibleImplicitMemberExpr(const CXXScopeSpec &SS,
Abramo Bagnarae4b92762012-01-27 09:46:47 +0000235 SourceLocation TemplateKWLoc,
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000236 LookupResult &R,
237 const TemplateArgumentListInfo *TemplateArgs) {
238 switch (ClassifyImplicitMemberAccess(*this, CurScope, R)) {
239 case IMA_Instance:
Abramo Bagnarae4b92762012-01-27 09:46:47 +0000240 return BuildImplicitMemberExpr(SS, TemplateKWLoc, R, TemplateArgs, true);
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000241
242 case IMA_Mixed:
243 case IMA_Mixed_Unrelated:
244 case IMA_Unresolved:
Abramo Bagnarae4b92762012-01-27 09:46:47 +0000245 return BuildImplicitMemberExpr(SS, TemplateKWLoc, R, TemplateArgs, false);
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000246
Richard Smithd390de92012-02-25 10:20:59 +0000247 case IMA_Field_Uneval_Context:
248 Diag(R.getNameLoc(), diag::warn_cxx98_compat_non_static_member_use)
249 << R.getLookupNameInfo().getName();
250 // Fall through.
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000251 case IMA_Static:
John McCallaeeacf72013-05-03 00:10:13 +0000252 case IMA_Abstract:
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000253 case IMA_Mixed_StaticContext:
254 case IMA_Unresolved_StaticContext:
Abramo Bagnara9d9922a2012-02-06 14:31:00 +0000255 if (TemplateArgs || TemplateKWLoc.isValid())
256 return BuildTemplateIdExpr(SS, TemplateKWLoc, R, false, TemplateArgs);
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000257 return BuildDeclarationNameExpr(SS, R, false);
258
259 case IMA_Error_StaticContext:
260 case IMA_Error_Unrelated:
Richard Smitha85cf392012-04-05 01:13:04 +0000261 diagnoseInstanceReference(*this, SS, R.getRepresentativeDecl(),
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000262 R.getLookupNameInfo());
263 return ExprError();
264 }
265
266 llvm_unreachable("unexpected instance member access kind");
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000267}
268
269/// Check an ext-vector component access expression.
270///
271/// VK should be set in advance to the value kind of the base
272/// expression.
273static QualType
274CheckExtVectorComponent(Sema &S, QualType baseType, ExprValueKind &VK,
275 SourceLocation OpLoc, const IdentifierInfo *CompName,
276 SourceLocation CompLoc) {
277 // FIXME: Share logic with ExtVectorElementExpr::containsDuplicateElements,
278 // see FIXME there.
279 //
280 // FIXME: This logic can be greatly simplified by splitting it along
281 // halving/not halving and reworking the component checking.
282 const ExtVectorType *vecType = baseType->getAs<ExtVectorType>();
283
284 // The vector accessor can't exceed the number of elements.
285 const char *compStr = CompName->getNameStart();
286
287 // This flag determines whether or not the component is one of the four
288 // special names that indicate a subset of exactly half the elements are
289 // to be selected.
290 bool HalvingSwizzle = false;
291
292 // This flag determines whether or not CompName has an 's' char prefix,
293 // indicating that it is a string of hex values to be used as vector indices.
294 bool HexSwizzle = *compStr == 's' || *compStr == 'S';
295
296 bool HasRepeated = false;
297 bool HasIndex[16] = {};
298
299 int Idx;
300
301 // Check that we've found one of the special components, or that the component
302 // names must come from the same set.
303 if (!strcmp(compStr, "hi") || !strcmp(compStr, "lo") ||
304 !strcmp(compStr, "even") || !strcmp(compStr, "odd")) {
305 HalvingSwizzle = true;
306 } else if (!HexSwizzle &&
307 (Idx = vecType->getPointAccessorIdx(*compStr)) != -1) {
308 do {
309 if (HasIndex[Idx]) HasRepeated = true;
310 HasIndex[Idx] = true;
311 compStr++;
312 } while (*compStr && (Idx = vecType->getPointAccessorIdx(*compStr)) != -1);
313 } else {
314 if (HexSwizzle) compStr++;
315 while ((Idx = vecType->getNumericAccessorIdx(*compStr)) != -1) {
316 if (HasIndex[Idx]) HasRepeated = true;
317 HasIndex[Idx] = true;
318 compStr++;
319 }
320 }
321
322 if (!HalvingSwizzle && *compStr) {
323 // We didn't get to the end of the string. This means the component names
324 // didn't come from the same set *or* we encountered an illegal name.
325 S.Diag(OpLoc, diag::err_ext_vector_component_name_illegal)
Chris Lattner5f9e2722011-07-23 10:55:15 +0000326 << StringRef(compStr, 1) << SourceRange(CompLoc);
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000327 return QualType();
328 }
329
330 // Ensure no component accessor exceeds the width of the vector type it
331 // operates on.
332 if (!HalvingSwizzle) {
333 compStr = CompName->getNameStart();
334
335 if (HexSwizzle)
336 compStr++;
337
338 while (*compStr) {
339 if (!vecType->isAccessorWithinNumElements(*compStr++)) {
340 S.Diag(OpLoc, diag::err_ext_vector_component_exceeds_length)
341 << baseType << SourceRange(CompLoc);
342 return QualType();
343 }
344 }
345 }
346
347 // The component accessor looks fine - now we need to compute the actual type.
348 // The vector type is implied by the component accessor. For example,
349 // vec4.b is a float, vec4.xy is a vec2, vec4.rgb is a vec3, etc.
350 // vec4.s0 is a float, vec4.s23 is a vec3, etc.
351 // vec4.hi, vec4.lo, vec4.e, and vec4.o all return vec2.
352 unsigned CompSize = HalvingSwizzle ? (vecType->getNumElements() + 1) / 2
353 : CompName->getLength();
354 if (HexSwizzle)
355 CompSize--;
356
357 if (CompSize == 1)
358 return vecType->getElementType();
359
360 if (HasRepeated) VK = VK_RValue;
361
362 QualType VT = S.Context.getExtVectorType(vecType->getElementType(), CompSize);
363 // Now look up the TypeDefDecl from the vector type. Without this,
364 // diagostics look bad. We want extended vector types to appear built-in.
Douglas Gregord58a0a52011-07-28 00:39:29 +0000365 for (Sema::ExtVectorDeclsType::iterator
Axel Naumann0ec56b72012-10-18 19:05:02 +0000366 I = S.ExtVectorDecls.begin(S.getExternalSource()),
Douglas Gregord58a0a52011-07-28 00:39:29 +0000367 E = S.ExtVectorDecls.end();
368 I != E; ++I) {
369 if ((*I)->getUnderlyingType() == VT)
370 return S.Context.getTypedefType(*I);
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000371 }
Douglas Gregord58a0a52011-07-28 00:39:29 +0000372
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000373 return VT; // should never get here (a typedef type should always be found).
374}
375
376static Decl *FindGetterSetterNameDeclFromProtocolList(const ObjCProtocolDecl*PDecl,
377 IdentifierInfo *Member,
378 const Selector &Sel,
379 ASTContext &Context) {
380 if (Member)
381 if (ObjCPropertyDecl *PD = PDecl->FindPropertyDeclaration(Member))
382 return PD;
383 if (ObjCMethodDecl *OMD = PDecl->getInstanceMethod(Sel))
384 return OMD;
385
386 for (ObjCProtocolDecl::protocol_iterator I = PDecl->protocol_begin(),
387 E = PDecl->protocol_end(); I != E; ++I) {
388 if (Decl *D = FindGetterSetterNameDeclFromProtocolList(*I, Member, Sel,
389 Context))
390 return D;
391 }
392 return 0;
393}
394
395static Decl *FindGetterSetterNameDecl(const ObjCObjectPointerType *QIdTy,
396 IdentifierInfo *Member,
397 const Selector &Sel,
398 ASTContext &Context) {
399 // Check protocols on qualified interfaces.
400 Decl *GDecl = 0;
401 for (ObjCObjectPointerType::qual_iterator I = QIdTy->qual_begin(),
402 E = QIdTy->qual_end(); I != E; ++I) {
403 if (Member)
404 if (ObjCPropertyDecl *PD = (*I)->FindPropertyDeclaration(Member)) {
405 GDecl = PD;
406 break;
407 }
408 // Also must look for a getter or setter name which uses property syntax.
409 if (ObjCMethodDecl *OMD = (*I)->getInstanceMethod(Sel)) {
410 GDecl = OMD;
411 break;
412 }
413 }
414 if (!GDecl) {
415 for (ObjCObjectPointerType::qual_iterator I = QIdTy->qual_begin(),
416 E = QIdTy->qual_end(); I != E; ++I) {
417 // Search in the protocol-qualifier list of current protocol.
418 GDecl = FindGetterSetterNameDeclFromProtocolList(*I, Member, Sel,
419 Context);
420 if (GDecl)
421 return GDecl;
422 }
423 }
424 return GDecl;
425}
426
427ExprResult
428Sema::ActOnDependentMemberExpr(Expr *BaseExpr, QualType BaseType,
429 bool IsArrow, SourceLocation OpLoc,
430 const CXXScopeSpec &SS,
Abramo Bagnarae4b92762012-01-27 09:46:47 +0000431 SourceLocation TemplateKWLoc,
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000432 NamedDecl *FirstQualifierInScope,
433 const DeclarationNameInfo &NameInfo,
434 const TemplateArgumentListInfo *TemplateArgs) {
435 // Even in dependent contexts, try to diagnose base expressions with
436 // obviously wrong types, e.g.:
437 //
438 // T* t;
439 // t.f;
440 //
441 // In Obj-C++, however, the above expression is valid, since it could be
442 // accessing the 'f' property if T is an Obj-C interface. The extra check
443 // allows this, while still reporting an error if T is a struct pointer.
444 if (!IsArrow) {
445 const PointerType *PT = BaseType->getAs<PointerType>();
David Blaikie4e4d0842012-03-11 07:00:24 +0000446 if (PT && (!getLangOpts().ObjC1 ||
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000447 PT->getPointeeType()->isRecordType())) {
448 assert(BaseExpr && "cannot happen with implicit member accesses");
Matt Beaumont-Gay7d90fe52012-04-21 01:12:48 +0000449 Diag(OpLoc, diag::err_typecheck_member_reference_struct_union)
Matt Beaumont-Gay73664a42012-04-21 02:13:04 +0000450 << BaseType << BaseExpr->getSourceRange() << NameInfo.getSourceRange();
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000451 return ExprError();
452 }
453 }
454
455 assert(BaseType->isDependentType() ||
456 NameInfo.getName().isDependentName() ||
457 isDependentScopeSpecifier(SS));
458
459 // Get the type being accessed in BaseType. If this is an arrow, the BaseExpr
460 // must have pointer type, and the accessed type is the pointee.
461 return Owned(CXXDependentScopeMemberExpr::Create(Context, BaseExpr, BaseType,
462 IsArrow, OpLoc,
463 SS.getWithLocInContext(Context),
Abramo Bagnarae4b92762012-01-27 09:46:47 +0000464 TemplateKWLoc,
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000465 FirstQualifierInScope,
466 NameInfo, TemplateArgs));
467}
468
469/// We know that the given qualified member reference points only to
470/// declarations which do not belong to the static type of the base
471/// expression. Diagnose the problem.
472static void DiagnoseQualifiedMemberReference(Sema &SemaRef,
473 Expr *BaseExpr,
474 QualType BaseType,
475 const CXXScopeSpec &SS,
476 NamedDecl *rep,
477 const DeclarationNameInfo &nameInfo) {
478 // If this is an implicit member access, use a different set of
479 // diagnostics.
480 if (!BaseExpr)
Richard Smitha85cf392012-04-05 01:13:04 +0000481 return diagnoseInstanceReference(SemaRef, SS, rep, nameInfo);
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000482
483 SemaRef.Diag(nameInfo.getLoc(), diag::err_qualified_member_of_unrelated)
484 << SS.getRange() << rep << BaseType;
485}
486
487// Check whether the declarations we found through a nested-name
488// specifier in a member expression are actually members of the base
489// type. The restriction here is:
490//
491// C++ [expr.ref]p2:
492// ... In these cases, the id-expression shall name a
493// member of the class or of one of its base classes.
494//
495// So it's perfectly legitimate for the nested-name specifier to name
496// an unrelated class, and for us to find an overload set including
497// decls from classes which are not superclasses, as long as the decl
498// we actually pick through overload resolution is from a superclass.
499bool Sema::CheckQualifiedMemberReference(Expr *BaseExpr,
500 QualType BaseType,
501 const CXXScopeSpec &SS,
502 const LookupResult &R) {
Richard Smithf62c6902012-11-22 00:24:47 +0000503 CXXRecordDecl *BaseRecord =
504 cast_or_null<CXXRecordDecl>(computeDeclContext(BaseType));
505 if (!BaseRecord) {
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000506 // We can't check this yet because the base type is still
507 // dependent.
508 assert(BaseType->isDependentType());
509 return false;
510 }
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000511
512 for (LookupResult::iterator I = R.begin(), E = R.end(); I != E; ++I) {
513 // If this is an implicit member reference and we find a
514 // non-instance member, it's not an error.
515 if (!BaseExpr && !(*I)->isCXXInstanceMember())
516 return false;
517
518 // Note that we use the DC of the decl, not the underlying decl.
519 DeclContext *DC = (*I)->getDeclContext();
520 while (DC->isTransparentContext())
521 DC = DC->getParent();
522
523 if (!DC->isRecord())
524 continue;
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000525
Richard Smithf62c6902012-11-22 00:24:47 +0000526 CXXRecordDecl *MemberRecord = cast<CXXRecordDecl>(DC)->getCanonicalDecl();
527 if (BaseRecord->getCanonicalDecl() == MemberRecord ||
528 !BaseRecord->isProvablyNotDerivedFrom(MemberRecord))
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000529 return false;
530 }
531
532 DiagnoseQualifiedMemberReference(*this, BaseExpr, BaseType, SS,
533 R.getRepresentativeDecl(),
534 R.getLookupNameInfo());
535 return true;
536}
537
Kaelyn Uhraine4c7f902012-01-13 21:28:55 +0000538namespace {
539
540// Callback to only accept typo corrections that are either a ValueDecl or a
541// FunctionTemplateDecl.
542class RecordMemberExprValidatorCCC : public CorrectionCandidateCallback {
543 public:
544 virtual bool ValidateCandidate(const TypoCorrection &candidate) {
545 NamedDecl *ND = candidate.getCorrectionDecl();
546 return ND && (isa<ValueDecl>(ND) || isa<FunctionTemplateDecl>(ND));
547 }
548};
549
550}
551
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000552static bool
Douglas Gregorcefc3af2012-04-16 07:05:22 +0000553LookupMemberExprInRecord(Sema &SemaRef, LookupResult &R,
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000554 SourceRange BaseRange, const RecordType *RTy,
555 SourceLocation OpLoc, CXXScopeSpec &SS,
556 bool HasTemplateArgs) {
557 RecordDecl *RDecl = RTy->getDecl();
Douglas Gregorcefc3af2012-04-16 07:05:22 +0000558 if (!SemaRef.isThisOutsideMemberFunctionBody(QualType(RTy, 0)) &&
559 SemaRef.RequireCompleteType(OpLoc, QualType(RTy, 0),
Douglas Gregord10099e2012-05-04 16:32:21 +0000560 diag::err_typecheck_incomplete_tag,
561 BaseRange))
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000562 return true;
563
564 if (HasTemplateArgs) {
565 // LookupTemplateName doesn't expect these both to exist simultaneously.
566 QualType ObjectType = SS.isSet() ? QualType() : QualType(RTy, 0);
567
568 bool MOUS;
569 SemaRef.LookupTemplateName(R, 0, SS, ObjectType, false, MOUS);
570 return false;
571 }
572
573 DeclContext *DC = RDecl;
574 if (SS.isSet()) {
575 // If the member name was a qualified-id, look into the
576 // nested-name-specifier.
577 DC = SemaRef.computeDeclContext(SS, false);
578
579 if (SemaRef.RequireCompleteDeclContext(SS, DC)) {
580 SemaRef.Diag(SS.getRange().getEnd(), diag::err_typecheck_incomplete_tag)
581 << SS.getRange() << DC;
582 return true;
583 }
584
585 assert(DC && "Cannot handle non-computable dependent contexts in lookup");
586
587 if (!isa<TypeDecl>(DC)) {
588 SemaRef.Diag(R.getNameLoc(), diag::err_qualified_member_nonclass)
589 << DC << SS.getRange();
590 return true;
591 }
592 }
593
594 // The record definition is complete, now look up the member.
595 SemaRef.LookupQualifiedName(R, DC);
596
597 if (!R.empty())
598 return false;
599
600 // We didn't find anything with the given name, so try to correct
601 // for typos.
602 DeclarationName Name = R.getLookupName();
Kaelyn Uhraine4c7f902012-01-13 21:28:55 +0000603 RecordMemberExprValidatorCCC Validator;
Douglas Gregord8bba9c2011-06-28 16:20:02 +0000604 TypoCorrection Corrected = SemaRef.CorrectTypo(R.getLookupNameInfo(),
605 R.getLookupKind(), NULL,
Kaelyn Uhrain16e46dd2012-01-31 23:49:25 +0000606 &SS, Validator, DC);
Douglas Gregord8bba9c2011-06-28 16:20:02 +0000607 R.clear();
Nick Lewyckyd9de51f2013-05-07 22:14:37 +0000608 if (Corrected.isResolved() && !Corrected.isKeyword()) {
Douglas Gregord8bba9c2011-06-28 16:20:02 +0000609 R.setLookupName(Corrected.getCorrection());
Nick Lewyckyd9de51f2013-05-07 22:14:37 +0000610 for (TypoCorrection::decl_iterator DI = Corrected.begin(),
611 DIEnd = Corrected.end();
612 DI != DIEnd; ++DI) {
613 R.addDecl(*DI);
614 }
615 R.resolveKind();
616
Nick Lewyckyd9de51f2013-05-07 22:14:37 +0000617 // If we're typo-correcting to an overloaded name, we don't yet have enough
618 // information to do overload resolution, so we don't know which previous
619 // declaration to point to.
Richard Smith2d670972013-08-17 00:46:16 +0000620 if (Corrected.isOverloaded())
621 Corrected.setCorrectionDecl(0);
622 bool DroppedSpecifier =
623 Corrected.WillReplaceSpecifier() &&
624 Name.getAsString() == Corrected.getAsString(SemaRef.getLangOpts());
625 SemaRef.diagnoseTypo(Corrected,
626 SemaRef.PDiag(diag::err_no_member_suggest)
627 << Name << DC << DroppedSpecifier << SS.getRange());
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000628 }
629
630 return false;
631}
632
633ExprResult
634Sema::BuildMemberReferenceExpr(Expr *Base, QualType BaseType,
635 SourceLocation OpLoc, bool IsArrow,
636 CXXScopeSpec &SS,
Abramo Bagnarae4b92762012-01-27 09:46:47 +0000637 SourceLocation TemplateKWLoc,
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000638 NamedDecl *FirstQualifierInScope,
639 const DeclarationNameInfo &NameInfo,
640 const TemplateArgumentListInfo *TemplateArgs) {
641 if (BaseType->isDependentType() ||
642 (SS.isSet() && isDependentScopeSpecifier(SS)))
643 return ActOnDependentMemberExpr(Base, BaseType,
644 IsArrow, OpLoc,
Abramo Bagnarae4b92762012-01-27 09:46:47 +0000645 SS, TemplateKWLoc, FirstQualifierInScope,
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000646 NameInfo, TemplateArgs);
647
648 LookupResult R(*this, NameInfo, LookupMemberName);
649
650 // Implicit member accesses.
651 if (!Base) {
652 QualType RecordTy = BaseType;
653 if (IsArrow) RecordTy = RecordTy->getAs<PointerType>()->getPointeeType();
654 if (LookupMemberExprInRecord(*this, R, SourceRange(),
655 RecordTy->getAs<RecordType>(),
656 OpLoc, SS, TemplateArgs != 0))
657 return ExprError();
658
659 // Explicit member accesses.
660 } else {
661 ExprResult BaseResult = Owned(Base);
662 ExprResult Result =
663 LookupMemberExpr(R, BaseResult, IsArrow, OpLoc,
664 SS, /*ObjCImpDecl*/ 0, TemplateArgs != 0);
665
666 if (BaseResult.isInvalid())
667 return ExprError();
668 Base = BaseResult.take();
669
670 if (Result.isInvalid()) {
671 Owned(Base);
672 return ExprError();
673 }
674
675 if (Result.get())
Benjamin Kramer3fe198b2012-08-23 21:35:17 +0000676 return Result;
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000677
678 // LookupMemberExpr can modify Base, and thus change BaseType
679 BaseType = Base->getType();
680 }
681
682 return BuildMemberReferenceExpr(Base, BaseType,
Abramo Bagnarae4b92762012-01-27 09:46:47 +0000683 OpLoc, IsArrow, SS, TemplateKWLoc,
684 FirstQualifierInScope, R, TemplateArgs);
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000685}
686
687static ExprResult
688BuildFieldReferenceExpr(Sema &S, Expr *BaseExpr, bool IsArrow,
689 const CXXScopeSpec &SS, FieldDecl *Field,
690 DeclAccessPair FoundDecl,
691 const DeclarationNameInfo &MemberNameInfo);
692
693ExprResult
694Sema::BuildAnonymousStructUnionMemberReference(const CXXScopeSpec &SS,
695 SourceLocation loc,
696 IndirectFieldDecl *indirectField,
Eli Friedmanbf03b372013-07-16 00:01:31 +0000697 DeclAccessPair foundDecl,
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000698 Expr *baseObjectExpr,
699 SourceLocation opLoc) {
700 // First, build the expression that refers to the base object.
701
702 bool baseObjectIsPointer = false;
703 Qualifiers baseQuals;
704
705 // Case 1: the base of the indirect field is not a field.
706 VarDecl *baseVariable = indirectField->getVarDecl();
707 CXXScopeSpec EmptySS;
708 if (baseVariable) {
709 assert(baseVariable->getType()->isRecordType());
710
711 // In principle we could have a member access expression that
712 // accesses an anonymous struct/union that's a static member of
713 // the base object's class. However, under the current standard,
714 // static data members cannot be anonymous structs or unions.
715 // Supporting this is as easy as building a MemberExpr here.
716 assert(!baseObjectExpr && "anonymous struct/union is static data member?");
717
718 DeclarationNameInfo baseNameInfo(DeclarationName(), loc);
719
720 ExprResult result
721 = BuildDeclarationNameExpr(EmptySS, baseNameInfo, baseVariable);
722 if (result.isInvalid()) return ExprError();
723
724 baseObjectExpr = result.take();
725 baseObjectIsPointer = false;
726 baseQuals = baseObjectExpr->getType().getQualifiers();
727
728 // Case 2: the base of the indirect field is a field and the user
729 // wrote a member expression.
730 } else if (baseObjectExpr) {
731 // The caller provided the base object expression. Determine
732 // whether its a pointer and whether it adds any qualifiers to the
733 // anonymous struct/union fields we're looking into.
734 QualType objectType = baseObjectExpr->getType();
735
736 if (const PointerType *ptr = objectType->getAs<PointerType>()) {
737 baseObjectIsPointer = true;
738 objectType = ptr->getPointeeType();
739 } else {
740 baseObjectIsPointer = false;
741 }
742 baseQuals = objectType.getQualifiers();
743
744 // Case 3: the base of the indirect field is a field and we should
745 // build an implicit member access.
746 } else {
747 // We've found a member of an anonymous struct/union that is
748 // inside a non-anonymous struct/union, so in a well-formed
749 // program our base object expression is "this".
Douglas Gregor341350e2011-10-18 16:47:30 +0000750 QualType ThisTy = getCurrentThisType();
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000751 if (ThisTy.isNull()) {
752 Diag(loc, diag::err_invalid_member_use_in_static_method)
753 << indirectField->getDeclName();
754 return ExprError();
755 }
756
757 // Our base object expression is "this".
Eli Friedman72899c32012-01-07 04:59:52 +0000758 CheckCXXThisCapture(loc);
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000759 baseObjectExpr
760 = new (Context) CXXThisExpr(loc, ThisTy, /*isImplicit=*/ true);
761 baseObjectIsPointer = true;
762 baseQuals = ThisTy->castAs<PointerType>()->getPointeeType().getQualifiers();
763 }
764
765 // Build the implicit member references to the field of the
766 // anonymous struct/union.
767 Expr *result = baseObjectExpr;
768 IndirectFieldDecl::chain_iterator
769 FI = indirectField->chain_begin(), FEnd = indirectField->chain_end();
770
771 // Build the first member access in the chain with full information.
772 if (!baseVariable) {
773 FieldDecl *field = cast<FieldDecl>(*FI);
774
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000775 // Make a nameInfo that properly uses the anonymous name.
776 DeclarationNameInfo memberNameInfo(field->getDeclName(), loc);
777
778 result = BuildFieldReferenceExpr(*this, result, baseObjectIsPointer,
779 EmptySS, field, foundDecl,
780 memberNameInfo).take();
Eli Friedmanbf03b372013-07-16 00:01:31 +0000781 if (!result)
782 return ExprError();
783
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000784 baseObjectIsPointer = false;
785
786 // FIXME: check qualified member access
787 }
788
789 // In all cases, we should now skip the first declaration in the chain.
790 ++FI;
791
792 while (FI != FEnd) {
793 FieldDecl *field = cast<FieldDecl>(*FI++);
Eli Friedmanbf03b372013-07-16 00:01:31 +0000794
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000795 // FIXME: these are somewhat meaningless
796 DeclarationNameInfo memberNameInfo(field->getDeclName(), loc);
Eli Friedmanbf03b372013-07-16 00:01:31 +0000797 DeclAccessPair fakeFoundDecl =
798 DeclAccessPair::make(field, field->getAccess());
799
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000800 result = BuildFieldReferenceExpr(*this, result, /*isarrow*/ false,
Eli Friedmanbf03b372013-07-16 00:01:31 +0000801 (FI == FEnd? SS : EmptySS), field,
802 fakeFoundDecl, memberNameInfo).take();
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000803 }
804
805 return Owned(result);
806}
807
John McCall76da55d2013-04-16 07:28:30 +0000808static ExprResult
809BuildMSPropertyRefExpr(Sema &S, Expr *BaseExpr, bool IsArrow,
810 const CXXScopeSpec &SS,
811 MSPropertyDecl *PD,
812 const DeclarationNameInfo &NameInfo) {
813 // Property names are always simple identifiers and therefore never
814 // require any interesting additional storage.
815 return new (S.Context) MSPropertyRefExpr(BaseExpr, PD, IsArrow,
816 S.Context.PseudoObjectTy, VK_LValue,
817 SS.getWithLocInContext(S.Context),
818 NameInfo.getLoc());
819}
820
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000821/// \brief Build a MemberExpr AST node.
Eli Friedman5f2987c2012-02-02 03:46:19 +0000822static MemberExpr *BuildMemberExpr(Sema &SemaRef,
823 ASTContext &C, Expr *Base, bool isArrow,
Abramo Bagnarae4b92762012-01-27 09:46:47 +0000824 const CXXScopeSpec &SS,
825 SourceLocation TemplateKWLoc,
826 ValueDecl *Member,
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000827 DeclAccessPair FoundDecl,
828 const DeclarationNameInfo &MemberNameInfo,
829 QualType Ty,
830 ExprValueKind VK, ExprObjectKind OK,
831 const TemplateArgumentListInfo *TemplateArgs = 0) {
Richard Smith4f870622011-10-27 22:11:44 +0000832 assert((!isArrow || Base->isRValue()) && "-> base must be a pointer rvalue");
Eli Friedman5f2987c2012-02-02 03:46:19 +0000833 MemberExpr *E =
834 MemberExpr::Create(C, Base, isArrow, SS.getWithLocInContext(C),
835 TemplateKWLoc, Member, FoundDecl, MemberNameInfo,
836 TemplateArgs, Ty, VK, OK);
837 SemaRef.MarkMemberReferenced(E);
838 return E;
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000839}
840
841ExprResult
842Sema::BuildMemberReferenceExpr(Expr *BaseExpr, QualType BaseExprType,
843 SourceLocation OpLoc, bool IsArrow,
844 const CXXScopeSpec &SS,
Abramo Bagnarae4b92762012-01-27 09:46:47 +0000845 SourceLocation TemplateKWLoc,
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000846 NamedDecl *FirstQualifierInScope,
847 LookupResult &R,
Kaelyn Uhrain2b90f762012-04-25 19:49:54 +0000848 const TemplateArgumentListInfo *TemplateArgs,
849 bool SuppressQualifierCheck,
850 ActOnMemberAccessExtraArgs *ExtraArgs) {
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000851 QualType BaseType = BaseExprType;
852 if (IsArrow) {
853 assert(BaseType->isPointerType());
John McCall3c3b7f92011-10-25 17:37:35 +0000854 BaseType = BaseType->castAs<PointerType>()->getPointeeType();
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000855 }
856 R.setBaseObjectType(BaseType);
857
858 const DeclarationNameInfo &MemberNameInfo = R.getLookupNameInfo();
859 DeclarationName MemberName = MemberNameInfo.getName();
860 SourceLocation MemberLoc = MemberNameInfo.getLoc();
861
862 if (R.isAmbiguous())
863 return ExprError();
864
865 if (R.empty()) {
866 // Rederive where we looked up.
867 DeclContext *DC = (SS.isSet()
868 ? computeDeclContext(SS, false)
869 : BaseType->getAs<RecordType>()->getDecl());
870
Kaelyn Uhrain2b90f762012-04-25 19:49:54 +0000871 if (ExtraArgs) {
872 ExprResult RetryExpr;
873 if (!IsArrow && BaseExpr) {
Kaelyn Uhrain111263c2012-05-01 01:17:53 +0000874 SFINAETrap Trap(*this, true);
Kaelyn Uhrain2b90f762012-04-25 19:49:54 +0000875 ParsedType ObjectType;
876 bool MayBePseudoDestructor = false;
877 RetryExpr = ActOnStartCXXMemberReference(getCurScope(), BaseExpr,
878 OpLoc, tok::arrow, ObjectType,
879 MayBePseudoDestructor);
880 if (RetryExpr.isUsable() && !Trap.hasErrorOccurred()) {
881 CXXScopeSpec TempSS(SS);
882 RetryExpr = ActOnMemberAccessExpr(
883 ExtraArgs->S, RetryExpr.get(), OpLoc, tok::arrow, TempSS,
884 TemplateKWLoc, ExtraArgs->Id, ExtraArgs->ObjCImpDecl,
885 ExtraArgs->HasTrailingLParen);
886 }
887 if (Trap.hasErrorOccurred())
888 RetryExpr = ExprError();
889 }
890 if (RetryExpr.isUsable()) {
891 Diag(OpLoc, diag::err_no_member_overloaded_arrow)
892 << MemberName << DC << FixItHint::CreateReplacement(OpLoc, "->");
893 return RetryExpr;
894 }
895 }
896
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000897 Diag(R.getNameLoc(), diag::err_no_member)
898 << MemberName << DC
899 << (BaseExpr ? BaseExpr->getSourceRange() : SourceRange());
900 return ExprError();
901 }
902
903 // Diagnose lookups that find only declarations from a non-base
904 // type. This is possible for either qualified lookups (which may
905 // have been qualified with an unrelated type) or implicit member
906 // expressions (which were found with unqualified lookup and thus
907 // may have come from an enclosing scope). Note that it's okay for
908 // lookup to find declarations from a non-base type as long as those
909 // aren't the ones picked by overload resolution.
910 if ((SS.isSet() || !BaseExpr ||
911 (isa<CXXThisExpr>(BaseExpr) &&
912 cast<CXXThisExpr>(BaseExpr)->isImplicit())) &&
913 !SuppressQualifierCheck &&
914 CheckQualifiedMemberReference(BaseExpr, BaseType, SS, R))
915 return ExprError();
Fariborz Jahaniand1250502011-10-17 21:00:22 +0000916
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000917 // Construct an unresolved result if we in fact got an unresolved
918 // result.
919 if (R.isOverloadedResult() || R.isUnresolvableResult()) {
920 // Suppress any lookup-related diagnostics; we'll do these when we
921 // pick a member.
922 R.suppressDiagnostics();
923
924 UnresolvedMemberExpr *MemExpr
925 = UnresolvedMemberExpr::Create(Context, R.isUnresolvableResult(),
926 BaseExpr, BaseExprType,
927 IsArrow, OpLoc,
928 SS.getWithLocInContext(Context),
Abramo Bagnarae4b92762012-01-27 09:46:47 +0000929 TemplateKWLoc, MemberNameInfo,
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000930 TemplateArgs, R.begin(), R.end());
931
932 return Owned(MemExpr);
933 }
934
935 assert(R.isSingleResult());
936 DeclAccessPair FoundDecl = R.begin().getPair();
937 NamedDecl *MemberDecl = R.getFoundDecl();
938
939 // FIXME: diagnose the presence of template arguments now.
940
941 // If the decl being referenced had an error, return an error for this
942 // sub-expr without emitting another error, in order to avoid cascading
943 // error cases.
944 if (MemberDecl->isInvalidDecl())
945 return ExprError();
946
947 // Handle the implicit-member-access case.
948 if (!BaseExpr) {
949 // If this is not an instance member, convert to a non-member access.
950 if (!MemberDecl->isCXXInstanceMember())
951 return BuildDeclarationNameExpr(SS, R.getLookupNameInfo(), MemberDecl);
952
953 SourceLocation Loc = R.getNameLoc();
954 if (SS.getRange().isValid())
955 Loc = SS.getRange().getBegin();
Eli Friedman72899c32012-01-07 04:59:52 +0000956 CheckCXXThisCapture(Loc);
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000957 BaseExpr = new (Context) CXXThisExpr(Loc, BaseExprType,/*isImplicit=*/true);
958 }
959
960 bool ShouldCheckUse = true;
961 if (CXXMethodDecl *MD = dyn_cast<CXXMethodDecl>(MemberDecl)) {
962 // Don't diagnose the use of a virtual member function unless it's
963 // explicitly qualified.
964 if (MD->isVirtual() && !SS.isSet())
965 ShouldCheckUse = false;
966 }
967
968 // Check the use of this member.
969 if (ShouldCheckUse && DiagnoseUseOfDecl(MemberDecl, MemberLoc)) {
970 Owned(BaseExpr);
971 return ExprError();
972 }
973
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000974 if (FieldDecl *FD = dyn_cast<FieldDecl>(MemberDecl))
975 return BuildFieldReferenceExpr(*this, BaseExpr, IsArrow,
976 SS, FD, FoundDecl, MemberNameInfo);
977
John McCall76da55d2013-04-16 07:28:30 +0000978 if (MSPropertyDecl *PD = dyn_cast<MSPropertyDecl>(MemberDecl))
979 return BuildMSPropertyRefExpr(*this, BaseExpr, IsArrow, SS, PD,
980 MemberNameInfo);
981
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000982 if (IndirectFieldDecl *FD = dyn_cast<IndirectFieldDecl>(MemberDecl))
983 // We may have found a field within an anonymous union or struct
984 // (C++ [class.union]).
985 return BuildAnonymousStructUnionMemberReference(SS, MemberLoc, FD,
Eli Friedmanbf03b372013-07-16 00:01:31 +0000986 FoundDecl, BaseExpr,
987 OpLoc);
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000988
989 if (VarDecl *Var = dyn_cast<VarDecl>(MemberDecl)) {
Eli Friedman5f2987c2012-02-02 03:46:19 +0000990 return Owned(BuildMemberExpr(*this, Context, BaseExpr, IsArrow, SS,
991 TemplateKWLoc, Var, FoundDecl, MemberNameInfo,
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +0000992 Var->getType().getNonReferenceType(),
993 VK_LValue, OK_Ordinary));
994 }
995
996 if (CXXMethodDecl *MemberFn = dyn_cast<CXXMethodDecl>(MemberDecl)) {
997 ExprValueKind valueKind;
998 QualType type;
999 if (MemberFn->isInstance()) {
1000 valueKind = VK_RValue;
1001 type = Context.BoundMemberTy;
1002 } else {
1003 valueKind = VK_LValue;
1004 type = MemberFn->getType();
1005 }
1006
Eli Friedman5f2987c2012-02-02 03:46:19 +00001007 return Owned(BuildMemberExpr(*this, Context, BaseExpr, IsArrow, SS,
1008 TemplateKWLoc, MemberFn, FoundDecl,
1009 MemberNameInfo, type, valueKind,
1010 OK_Ordinary));
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001011 }
1012 assert(!isa<FunctionDecl>(MemberDecl) && "member function not C++ method?");
1013
1014 if (EnumConstantDecl *Enum = dyn_cast<EnumConstantDecl>(MemberDecl)) {
Eli Friedman5f2987c2012-02-02 03:46:19 +00001015 return Owned(BuildMemberExpr(*this, Context, BaseExpr, IsArrow, SS,
1016 TemplateKWLoc, Enum, FoundDecl, MemberNameInfo,
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001017 Enum->getType(), VK_RValue, OK_Ordinary));
1018 }
1019
1020 Owned(BaseExpr);
1021
1022 // We found something that we didn't expect. Complain.
1023 if (isa<TypeDecl>(MemberDecl))
1024 Diag(MemberLoc, diag::err_typecheck_member_reference_type)
1025 << MemberName << BaseType << int(IsArrow);
1026 else
1027 Diag(MemberLoc, diag::err_typecheck_member_reference_unknown)
1028 << MemberName << BaseType << int(IsArrow);
1029
1030 Diag(MemberDecl->getLocation(), diag::note_member_declared_here)
1031 << MemberName;
1032 R.suppressDiagnostics();
1033 return ExprError();
1034}
1035
1036/// Given that normal member access failed on the given expression,
1037/// and given that the expression's type involves builtin-id or
1038/// builtin-Class, decide whether substituting in the redefinition
1039/// types would be profitable. The redefinition type is whatever
1040/// this translation unit tried to typedef to id/Class; we store
1041/// it to the side and then re-use it in places like this.
1042static bool ShouldTryAgainWithRedefinitionType(Sema &S, ExprResult &base) {
1043 const ObjCObjectPointerType *opty
1044 = base.get()->getType()->getAs<ObjCObjectPointerType>();
1045 if (!opty) return false;
1046
1047 const ObjCObjectType *ty = opty->getObjectType();
1048
1049 QualType redef;
1050 if (ty->isObjCId()) {
Douglas Gregor01a4cf12011-08-11 20:58:55 +00001051 redef = S.Context.getObjCIdRedefinitionType();
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001052 } else if (ty->isObjCClass()) {
Douglas Gregor01a4cf12011-08-11 20:58:55 +00001053 redef = S.Context.getObjCClassRedefinitionType();
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001054 } else {
1055 return false;
1056 }
1057
1058 // Do the substitution as long as the redefinition type isn't just a
1059 // possibly-qualified pointer to builtin-id or builtin-Class again.
1060 opty = redef->getAs<ObjCObjectPointerType>();
Richard Trieu47fcbba2012-10-12 17:48:40 +00001061 if (opty && !opty->getObjectType()->getInterface())
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001062 return false;
1063
1064 base = S.ImpCastExprToType(base.take(), redef, CK_BitCast);
1065 return true;
1066}
1067
John McCall6dbba4f2011-10-11 23:14:30 +00001068static bool isRecordType(QualType T) {
1069 return T->isRecordType();
1070}
1071static bool isPointerToRecordType(QualType T) {
1072 if (const PointerType *PT = T->getAs<PointerType>())
1073 return PT->getPointeeType()->isRecordType();
1074 return false;
1075}
1076
Richard Smith9138b4e2011-10-26 19:06:56 +00001077/// Perform conversions on the LHS of a member access expression.
1078ExprResult
1079Sema::PerformMemberExprBaseConversion(Expr *Base, bool IsArrow) {
Eli Friedman059d5782012-01-13 02:20:01 +00001080 if (IsArrow && !Base->getType()->isFunctionType())
1081 return DefaultFunctionArrayLvalueConversion(Base);
Richard Smith9138b4e2011-10-26 19:06:56 +00001082
Eli Friedman059d5782012-01-13 02:20:01 +00001083 return CheckPlaceholderExpr(Base);
Richard Smith9138b4e2011-10-26 19:06:56 +00001084}
1085
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001086/// Look up the given member of the given non-type-dependent
1087/// expression. This can return in one of two ways:
1088/// * If it returns a sentinel null-but-valid result, the caller will
1089/// assume that lookup was performed and the results written into
1090/// the provided structure. It will take over from there.
1091/// * Otherwise, the returned expression will be produced in place of
1092/// an ordinary member expression.
1093///
1094/// The ObjCImpDecl bit is a gross hack that will need to be properly
1095/// fixed for ObjC++.
1096ExprResult
1097Sema::LookupMemberExpr(LookupResult &R, ExprResult &BaseExpr,
1098 bool &IsArrow, SourceLocation OpLoc,
1099 CXXScopeSpec &SS,
1100 Decl *ObjCImpDecl, bool HasTemplateArgs) {
1101 assert(BaseExpr.get() && "no base expression");
1102
1103 // Perform default conversions.
Richard Smith9138b4e2011-10-26 19:06:56 +00001104 BaseExpr = PerformMemberExprBaseConversion(BaseExpr.take(), IsArrow);
John McCall6dbba4f2011-10-11 23:14:30 +00001105 if (BaseExpr.isInvalid())
1106 return ExprError();
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001107
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001108 QualType BaseType = BaseExpr.get()->getType();
1109 assert(!BaseType->isDependentType());
1110
1111 DeclarationName MemberName = R.getLookupName();
1112 SourceLocation MemberLoc = R.getNameLoc();
1113
1114 // For later type-checking purposes, turn arrow accesses into dot
1115 // accesses. The only access type we support that doesn't follow
1116 // the C equivalence "a->b === (*a).b" is ObjC property accesses,
1117 // and those never use arrows, so this is unaffected.
1118 if (IsArrow) {
1119 if (const PointerType *Ptr = BaseType->getAs<PointerType>())
1120 BaseType = Ptr->getPointeeType();
1121 else if (const ObjCObjectPointerType *Ptr
1122 = BaseType->getAs<ObjCObjectPointerType>())
1123 BaseType = Ptr->getPointeeType();
1124 else if (BaseType->isRecordType()) {
1125 // Recover from arrow accesses to records, e.g.:
1126 // struct MyRecord foo;
1127 // foo->bar
1128 // This is actually well-formed in C++ if MyRecord has an
1129 // overloaded operator->, but that should have been dealt with
Kaelyn Uhrainbaaeb852013-07-31 17:38:24 +00001130 // by now--or a diagnostic message already issued if a problem
1131 // was encountered while looking for the overloaded operator->.
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001132 IsArrow = false;
Eli Friedman059d5782012-01-13 02:20:01 +00001133 } else if (BaseType->isFunctionType()) {
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001134 goto fail;
1135 } else {
1136 Diag(MemberLoc, diag::err_typecheck_member_reference_arrow)
1137 << BaseType << BaseExpr.get()->getSourceRange();
1138 return ExprError();
1139 }
1140 }
1141
1142 // Handle field access to simple records.
1143 if (const RecordType *RTy = BaseType->getAs<RecordType>()) {
1144 if (LookupMemberExprInRecord(*this, R, BaseExpr.get()->getSourceRange(),
1145 RTy, OpLoc, SS, HasTemplateArgs))
1146 return ExprError();
1147
1148 // Returning valid-but-null is how we indicate to the caller that
1149 // the lookup result was filled in.
1150 return Owned((Expr*) 0);
1151 }
1152
1153 // Handle ivar access to Objective-C objects.
1154 if (const ObjCObjectType *OTy = BaseType->getAs<ObjCObjectType>()) {
Douglas Gregor5a706dc2011-10-10 16:09:49 +00001155 if (!SS.isEmpty() && !SS.isInvalid()) {
Douglas Gregorb5ae92f2011-10-09 23:22:49 +00001156 Diag(SS.getRange().getBegin(), diag::err_qualified_objc_access)
1157 << 1 << SS.getScopeRep()
1158 << FixItHint::CreateRemoval(SS.getRange());
1159 SS.clear();
1160 }
1161
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001162 IdentifierInfo *Member = MemberName.getAsIdentifierInfo();
1163
1164 // There are three cases for the base type:
1165 // - builtin id (qualified or unqualified)
1166 // - builtin Class (qualified or unqualified)
1167 // - an interface
1168 ObjCInterfaceDecl *IDecl = OTy->getInterface();
1169 if (!IDecl) {
David Blaikie4e4d0842012-03-11 07:00:24 +00001170 if (getLangOpts().ObjCAutoRefCount &&
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001171 (OTy->isObjCId() || OTy->isObjCClass()))
1172 goto fail;
1173 // There's an implicit 'isa' ivar on all objects.
1174 // But we only actually find it this way on objects of type 'id',
Eric Christopher2502ec82012-08-16 23:50:37 +00001175 // apparently.
Fariborz Jahanian7e352742013-03-27 21:19:25 +00001176 if (OTy->isObjCId() && Member->isStr("isa"))
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001177 return Owned(new (Context) ObjCIsaExpr(BaseExpr.take(), IsArrow, MemberLoc,
Fariborz Jahanianec8deba2013-03-28 19:50:55 +00001178 OpLoc,
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001179 Context.getObjCClassType()));
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001180 if (ShouldTryAgainWithRedefinitionType(*this, BaseExpr))
1181 return LookupMemberExpr(R, BaseExpr, IsArrow, OpLoc, SS,
1182 ObjCImpDecl, HasTemplateArgs);
1183 goto fail;
1184 }
Fariborz Jahanian09100592012-06-21 21:35:15 +00001185
Douglas Gregord10099e2012-05-04 16:32:21 +00001186 if (RequireCompleteType(OpLoc, BaseType, diag::err_typecheck_incomplete_tag,
1187 BaseExpr.get()))
Douglas Gregord07cc362012-01-02 17:18:37 +00001188 return ExprError();
1189
Ted Kremenek2c085ed2012-03-17 00:53:39 +00001190 ObjCInterfaceDecl *ClassDeclared = 0;
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001191 ObjCIvarDecl *IV = IDecl->lookupInstanceVariable(Member, ClassDeclared);
1192
1193 if (!IV) {
1194 // Attempt to correct for typos in ivar names.
Kaelyn Uhraine4c7f902012-01-13 21:28:55 +00001195 DeclFilterCCC<ObjCIvarDecl> Validator;
1196 Validator.IsObjCIvarLookup = IsArrow;
1197 if (TypoCorrection Corrected = CorrectTypo(R.getLookupNameInfo(),
1198 LookupMemberName, NULL, NULL,
Kaelyn Uhrain16e46dd2012-01-31 23:49:25 +00001199 Validator, IDecl)) {
Kaelyn Uhraine4c7f902012-01-13 21:28:55 +00001200 IV = Corrected.getCorrectionDeclAs<ObjCIvarDecl>();
Richard Smith2d670972013-08-17 00:46:16 +00001201 diagnoseTypo(Corrected,
1202 PDiag(diag::err_typecheck_member_reference_ivar_suggest)
1203 << IDecl->getDeclName() << MemberName);
1204
Ted Kremenek2c085ed2012-03-17 00:53:39 +00001205 // Figure out the class that declares the ivar.
1206 assert(!ClassDeclared);
1207 Decl *D = cast<Decl>(IV->getDeclContext());
1208 if (ObjCCategoryDecl *CAT = dyn_cast<ObjCCategoryDecl>(D))
1209 D = CAT->getClassInterface();
1210 ClassDeclared = cast<ObjCInterfaceDecl>(D);
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001211 } else {
Fariborz Jahanian6326e052011-06-28 00:00:52 +00001212 if (IsArrow && IDecl->FindPropertyDeclaration(Member)) {
1213 Diag(MemberLoc,
1214 diag::err_property_found_suggest)
1215 << Member << BaseExpr.get()->getType()
1216 << FixItHint::CreateReplacement(OpLoc, ".");
1217 return ExprError();
1218 }
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001219
1220 Diag(MemberLoc, diag::err_typecheck_member_reference_ivar)
1221 << IDecl->getDeclName() << MemberName
1222 << BaseExpr.get()->getSourceRange();
1223 return ExprError();
1224 }
1225 }
Ted Kremenek2c085ed2012-03-17 00:53:39 +00001226
1227 assert(ClassDeclared);
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001228
1229 // If the decl being referenced had an error, return an error for this
1230 // sub-expr without emitting another error, in order to avoid cascading
1231 // error cases.
1232 if (IV->isInvalidDecl())
1233 return ExprError();
1234
1235 // Check whether we can reference this field.
1236 if (DiagnoseUseOfDecl(IV, MemberLoc))
1237 return ExprError();
1238 if (IV->getAccessControl() != ObjCIvarDecl::Public &&
1239 IV->getAccessControl() != ObjCIvarDecl::Package) {
1240 ObjCInterfaceDecl *ClassOfMethodDecl = 0;
1241 if (ObjCMethodDecl *MD = getCurMethodDecl())
1242 ClassOfMethodDecl = MD->getClassInterface();
1243 else if (ObjCImpDecl && getCurFunctionDecl()) {
1244 // Case of a c-function declared inside an objc implementation.
1245 // FIXME: For a c-style function nested inside an objc implementation
1246 // class, there is no implementation context available, so we pass
1247 // down the context as argument to this routine. Ideally, this context
1248 // need be passed down in the AST node and somehow calculated from the
1249 // AST for a function decl.
1250 if (ObjCImplementationDecl *IMPD =
1251 dyn_cast<ObjCImplementationDecl>(ObjCImpDecl))
1252 ClassOfMethodDecl = IMPD->getClassInterface();
1253 else if (ObjCCategoryImplDecl* CatImplClass =
1254 dyn_cast<ObjCCategoryImplDecl>(ObjCImpDecl))
1255 ClassOfMethodDecl = CatImplClass->getClassInterface();
1256 }
David Blaikie4e4d0842012-03-11 07:00:24 +00001257 if (!getLangOpts().DebuggerSupport) {
Fariborz Jahanian458a7fb2012-03-07 00:58:41 +00001258 if (IV->getAccessControl() == ObjCIvarDecl::Private) {
1259 if (!declaresSameEntity(ClassDeclared, IDecl) ||
1260 !declaresSameEntity(ClassOfMethodDecl, ClassDeclared))
1261 Diag(MemberLoc, diag::error_private_ivar_access)
1262 << IV->getDeclName();
1263 } else if (!IDecl->isSuperClassOf(ClassOfMethodDecl))
1264 // @protected
1265 Diag(MemberLoc, diag::error_protected_ivar_access)
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001266 << IV->getDeclName();
Fariborz Jahanian458a7fb2012-03-07 00:58:41 +00001267 }
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001268 }
Fariborz Jahanianb25466e2012-08-07 23:48:10 +00001269 bool warn = true;
David Blaikie4e4d0842012-03-11 07:00:24 +00001270 if (getLangOpts().ObjCAutoRefCount) {
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001271 Expr *BaseExp = BaseExpr.get()->IgnoreParenImpCasts();
1272 if (UnaryOperator *UO = dyn_cast<UnaryOperator>(BaseExp))
1273 if (UO->getOpcode() == UO_Deref)
1274 BaseExp = UO->getSubExpr()->IgnoreParenCasts();
1275
1276 if (DeclRefExpr *DE = dyn_cast<DeclRefExpr>(BaseExp))
Fariborz Jahanianb25466e2012-08-07 23:48:10 +00001277 if (DE->getType().getObjCLifetime() == Qualifiers::OCL_Weak) {
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001278 Diag(DE->getLocation(), diag::error_arc_weak_ivar_access);
Fariborz Jahanianb25466e2012-08-07 23:48:10 +00001279 warn = false;
1280 }
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001281 }
Fariborz Jahanianed6662d2012-08-08 16:41:04 +00001282 if (warn) {
Fariborz Jahaniancff863f2012-08-07 16:38:44 +00001283 if (ObjCMethodDecl *MD = getCurMethodDecl()) {
1284 ObjCMethodFamily MF = MD->getMethodFamily();
1285 warn = (MF != OMF_init && MF != OMF_dealloc &&
Fariborz Jahanian26202292013-02-14 19:07:19 +00001286 MF != OMF_finalize &&
1287 !IvarBacksCurrentMethodAccessor(IDecl, MD, IV));
Fariborz Jahaniancff863f2012-08-07 16:38:44 +00001288 }
1289 if (warn)
1290 Diag(MemberLoc, diag::warn_direct_ivar_access) << IV->getDeclName();
1291 }
Jordan Rose7a270482012-09-28 22:21:35 +00001292
1293 ObjCIvarRefExpr *Result = new (Context) ObjCIvarRefExpr(IV, IV->getType(),
Fariborz Jahanian0c701812013-04-02 18:57:54 +00001294 MemberLoc, OpLoc,
Jordan Rose7a270482012-09-28 22:21:35 +00001295 BaseExpr.take(),
1296 IsArrow);
1297
1298 if (getLangOpts().ObjCAutoRefCount) {
1299 if (IV->getType().getObjCLifetime() == Qualifiers::OCL_Weak) {
1300 DiagnosticsEngine::Level Level =
1301 Diags.getDiagnosticLevel(diag::warn_arc_repeated_use_of_weak,
1302 MemberLoc);
1303 if (Level != DiagnosticsEngine::Ignored)
Fariborz Jahanian569b4ad2013-05-21 21:20:26 +00001304 recordUseOfEvaluatedWeak(Result);
Jordan Rose7a270482012-09-28 22:21:35 +00001305 }
1306 }
1307
1308 return Owned(Result);
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001309 }
1310
1311 // Objective-C property access.
1312 const ObjCObjectPointerType *OPT;
1313 if (!IsArrow && (OPT = BaseType->getAs<ObjCObjectPointerType>())) {
Douglas Gregor5a706dc2011-10-10 16:09:49 +00001314 if (!SS.isEmpty() && !SS.isInvalid()) {
Douglas Gregorb5ae92f2011-10-09 23:22:49 +00001315 Diag(SS.getRange().getBegin(), diag::err_qualified_objc_access)
1316 << 0 << SS.getScopeRep()
1317 << FixItHint::CreateRemoval(SS.getRange());
1318 SS.clear();
1319 }
1320
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001321 // This actually uses the base as an r-value.
1322 BaseExpr = DefaultLvalueConversion(BaseExpr.take());
1323 if (BaseExpr.isInvalid())
1324 return ExprError();
1325
1326 assert(Context.hasSameUnqualifiedType(BaseType, BaseExpr.get()->getType()));
1327
1328 IdentifierInfo *Member = MemberName.getAsIdentifierInfo();
1329
1330 const ObjCObjectType *OT = OPT->getObjectType();
1331
1332 // id, with and without qualifiers.
1333 if (OT->isObjCId()) {
1334 // Check protocols on qualified interfaces.
1335 Selector Sel = PP.getSelectorTable().getNullarySelector(Member);
1336 if (Decl *PMDecl = FindGetterSetterNameDecl(OPT, Member, Sel, Context)) {
1337 if (ObjCPropertyDecl *PD = dyn_cast<ObjCPropertyDecl>(PMDecl)) {
1338 // Check the use of this declaration
1339 if (DiagnoseUseOfDecl(PD, MemberLoc))
1340 return ExprError();
1341
John McCall3c3b7f92011-10-25 17:37:35 +00001342 return Owned(new (Context) ObjCPropertyRefExpr(PD,
1343 Context.PseudoObjectTy,
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001344 VK_LValue,
1345 OK_ObjCProperty,
1346 MemberLoc,
1347 BaseExpr.take()));
1348 }
1349
1350 if (ObjCMethodDecl *OMD = dyn_cast<ObjCMethodDecl>(PMDecl)) {
1351 // Check the use of this method.
1352 if (DiagnoseUseOfDecl(OMD, MemberLoc))
1353 return ExprError();
1354 Selector SetterSel =
Adrian Prantl80e8ea92013-06-07 22:29:12 +00001355 SelectorTable::constructSetterSelector(PP.getIdentifierTable(),
1356 PP.getSelectorTable(),
1357 Member);
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001358 ObjCMethodDecl *SMD = 0;
1359 if (Decl *SDecl = FindGetterSetterNameDecl(OPT, /*Property id*/0,
1360 SetterSel, Context))
1361 SMD = dyn_cast<ObjCMethodDecl>(SDecl);
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001362
John McCall3c3b7f92011-10-25 17:37:35 +00001363 return Owned(new (Context) ObjCPropertyRefExpr(OMD, SMD,
1364 Context.PseudoObjectTy,
1365 VK_LValue, OK_ObjCProperty,
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001366 MemberLoc, BaseExpr.take()));
1367 }
1368 }
1369 // Use of id.member can only be for a property reference. Do not
1370 // use the 'id' redefinition in this case.
1371 if (IsArrow && ShouldTryAgainWithRedefinitionType(*this, BaseExpr))
1372 return LookupMemberExpr(R, BaseExpr, IsArrow, OpLoc, SS,
1373 ObjCImpDecl, HasTemplateArgs);
1374
1375 return ExprError(Diag(MemberLoc, diag::err_property_not_found)
1376 << MemberName << BaseType);
1377 }
1378
1379 // 'Class', unqualified only.
1380 if (OT->isObjCClass()) {
1381 // Only works in a method declaration (??!).
1382 ObjCMethodDecl *MD = getCurMethodDecl();
1383 if (!MD) {
1384 if (ShouldTryAgainWithRedefinitionType(*this, BaseExpr))
1385 return LookupMemberExpr(R, BaseExpr, IsArrow, OpLoc, SS,
1386 ObjCImpDecl, HasTemplateArgs);
1387
1388 goto fail;
1389 }
1390
1391 // Also must look for a getter name which uses property syntax.
1392 Selector Sel = PP.getSelectorTable().getNullarySelector(Member);
1393 ObjCInterfaceDecl *IFace = MD->getClassInterface();
1394 ObjCMethodDecl *Getter;
1395 if ((Getter = IFace->lookupClassMethod(Sel))) {
1396 // Check the use of this method.
1397 if (DiagnoseUseOfDecl(Getter, MemberLoc))
1398 return ExprError();
1399 } else
1400 Getter = IFace->lookupPrivateMethod(Sel, false);
1401 // If we found a getter then this may be a valid dot-reference, we
1402 // will look for the matching setter, in case it is needed.
1403 Selector SetterSel =
Adrian Prantl80e8ea92013-06-07 22:29:12 +00001404 SelectorTable::constructSetterSelector(PP.getIdentifierTable(),
1405 PP.getSelectorTable(),
1406 Member);
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001407 ObjCMethodDecl *Setter = IFace->lookupClassMethod(SetterSel);
1408 if (!Setter) {
1409 // If this reference is in an @implementation, also check for 'private'
1410 // methods.
1411 Setter = IFace->lookupPrivateMethod(SetterSel, false);
1412 }
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001413
1414 if (Setter && DiagnoseUseOfDecl(Setter, MemberLoc))
1415 return ExprError();
1416
1417 if (Getter || Setter) {
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001418 return Owned(new (Context) ObjCPropertyRefExpr(Getter, Setter,
John McCall3c3b7f92011-10-25 17:37:35 +00001419 Context.PseudoObjectTy,
1420 VK_LValue, OK_ObjCProperty,
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001421 MemberLoc, BaseExpr.take()));
1422 }
1423
1424 if (ShouldTryAgainWithRedefinitionType(*this, BaseExpr))
1425 return LookupMemberExpr(R, BaseExpr, IsArrow, OpLoc, SS,
1426 ObjCImpDecl, HasTemplateArgs);
1427
1428 return ExprError(Diag(MemberLoc, diag::err_property_not_found)
1429 << MemberName << BaseType);
1430 }
1431
1432 // Normal property access.
Fariborz Jahanian6326e052011-06-28 00:00:52 +00001433 return HandleExprPropertyRefExpr(OPT, BaseExpr.get(), OpLoc,
1434 MemberName, MemberLoc,
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001435 SourceLocation(), QualType(), false);
1436 }
1437
1438 // Handle 'field access' to vectors, such as 'V.xx'.
1439 if (BaseType->isExtVectorType()) {
1440 // FIXME: this expr should store IsArrow.
1441 IdentifierInfo *Member = MemberName.getAsIdentifierInfo();
1442 ExprValueKind VK = (IsArrow ? VK_LValue : BaseExpr.get()->getValueKind());
1443 QualType ret = CheckExtVectorComponent(*this, BaseType, VK, OpLoc,
1444 Member, MemberLoc);
1445 if (ret.isNull())
1446 return ExprError();
1447
1448 return Owned(new (Context) ExtVectorElementExpr(ret, VK, BaseExpr.take(),
1449 *Member, MemberLoc));
1450 }
1451
1452 // Adjust builtin-sel to the appropriate redefinition type if that's
1453 // not just a pointer to builtin-sel again.
1454 if (IsArrow &&
1455 BaseType->isSpecificBuiltinType(BuiltinType::ObjCSel) &&
Douglas Gregor01a4cf12011-08-11 20:58:55 +00001456 !Context.getObjCSelRedefinitionType()->isObjCSelType()) {
1457 BaseExpr = ImpCastExprToType(BaseExpr.take(),
1458 Context.getObjCSelRedefinitionType(),
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001459 CK_BitCast);
1460 return LookupMemberExpr(R, BaseExpr, IsArrow, OpLoc, SS,
1461 ObjCImpDecl, HasTemplateArgs);
1462 }
1463
1464 // Failure cases.
1465 fail:
1466
1467 // Recover from dot accesses to pointers, e.g.:
1468 // type *foo;
1469 // foo.bar
1470 // This is actually well-formed in two cases:
1471 // - 'type' is an Objective C type
1472 // - 'bar' is a pseudo-destructor name which happens to refer to
1473 // the appropriate pointer type
1474 if (const PointerType *Ptr = BaseType->getAs<PointerType>()) {
1475 if (!IsArrow && Ptr->getPointeeType()->isRecordType() &&
1476 MemberName.getNameKind() != DeclarationName::CXXDestructorName) {
1477 Diag(OpLoc, diag::err_typecheck_member_reference_suggestion)
1478 << BaseType << int(IsArrow) << BaseExpr.get()->getSourceRange()
1479 << FixItHint::CreateReplacement(OpLoc, "->");
1480
1481 // Recurse as an -> access.
1482 IsArrow = true;
1483 return LookupMemberExpr(R, BaseExpr, IsArrow, OpLoc, SS,
1484 ObjCImpDecl, HasTemplateArgs);
1485 }
1486 }
1487
1488 // If the user is trying to apply -> or . to a function name, it's probably
1489 // because they forgot parentheses to call that function.
John McCall6dbba4f2011-10-11 23:14:30 +00001490 if (tryToRecoverWithCall(BaseExpr,
1491 PDiag(diag::err_member_reference_needs_call),
1492 /*complain*/ false,
Eli Friedman059d5782012-01-13 02:20:01 +00001493 IsArrow ? &isPointerToRecordType : &isRecordType)) {
John McCall6dbba4f2011-10-11 23:14:30 +00001494 if (BaseExpr.isInvalid())
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001495 return ExprError();
John McCall6dbba4f2011-10-11 23:14:30 +00001496 BaseExpr = DefaultFunctionArrayConversion(BaseExpr.take());
1497 return LookupMemberExpr(R, BaseExpr, IsArrow, OpLoc, SS,
1498 ObjCImpDecl, HasTemplateArgs);
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001499 }
1500
Matt Beaumont-Gay7d90fe52012-04-21 01:12:48 +00001501 Diag(OpLoc, diag::err_typecheck_member_reference_struct_union)
Matt Beaumont-Gay73664a42012-04-21 02:13:04 +00001502 << BaseType << BaseExpr.get()->getSourceRange() << MemberLoc;
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001503
1504 return ExprError();
1505}
1506
1507/// The main callback when the parser finds something like
1508/// expression . [nested-name-specifier] identifier
1509/// expression -> [nested-name-specifier] identifier
1510/// where 'identifier' encompasses a fairly broad spectrum of
1511/// possibilities, including destructor and operator references.
1512///
1513/// \param OpKind either tok::arrow or tok::period
1514/// \param HasTrailingLParen whether the next token is '(', which
1515/// is used to diagnose mis-uses of special members that can
1516/// only be called
James Dennett699c9042012-06-15 07:13:21 +00001517/// \param ObjCImpDecl the current Objective-C \@implementation
1518/// decl; this is an ugly hack around the fact that Objective-C
1519/// \@implementations aren't properly put in the context chain
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001520ExprResult Sema::ActOnMemberAccessExpr(Scope *S, Expr *Base,
1521 SourceLocation OpLoc,
1522 tok::TokenKind OpKind,
1523 CXXScopeSpec &SS,
Abramo Bagnarae4b92762012-01-27 09:46:47 +00001524 SourceLocation TemplateKWLoc,
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001525 UnqualifiedId &Id,
1526 Decl *ObjCImpDecl,
1527 bool HasTrailingLParen) {
1528 if (SS.isSet() && SS.isInvalid())
1529 return ExprError();
1530
1531 // Warn about the explicit constructor calls Microsoft extension.
David Blaikie4e4d0842012-03-11 07:00:24 +00001532 if (getLangOpts().MicrosoftExt &&
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001533 Id.getKind() == UnqualifiedId::IK_ConstructorName)
1534 Diag(Id.getSourceRange().getBegin(),
1535 diag::ext_ms_explicit_constructor_call);
1536
1537 TemplateArgumentListInfo TemplateArgsBuffer;
1538
1539 // Decompose the name into its component parts.
1540 DeclarationNameInfo NameInfo;
1541 const TemplateArgumentListInfo *TemplateArgs;
1542 DecomposeUnqualifiedId(Id, TemplateArgsBuffer,
1543 NameInfo, TemplateArgs);
1544
1545 DeclarationName Name = NameInfo.getName();
1546 bool IsArrow = (OpKind == tok::arrow);
1547
1548 NamedDecl *FirstQualifierInScope
1549 = (!SS.isSet() ? 0 : FindFirstQualifierInScope(S,
1550 static_cast<NestedNameSpecifier*>(SS.getScopeRep())));
1551
1552 // This is a postfix expression, so get rid of ParenListExprs.
1553 ExprResult Result = MaybeConvertParenListExprToParenExpr(S, Base);
1554 if (Result.isInvalid()) return ExprError();
1555 Base = Result.take();
1556
1557 if (Base->getType()->isDependentType() || Name.isDependentName() ||
1558 isDependentScopeSpecifier(SS)) {
1559 Result = ActOnDependentMemberExpr(Base, Base->getType(),
1560 IsArrow, OpLoc,
Abramo Bagnarae4b92762012-01-27 09:46:47 +00001561 SS, TemplateKWLoc, FirstQualifierInScope,
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001562 NameInfo, TemplateArgs);
1563 } else {
1564 LookupResult R(*this, NameInfo, LookupMemberName);
1565 ExprResult BaseResult = Owned(Base);
1566 Result = LookupMemberExpr(R, BaseResult, IsArrow, OpLoc,
1567 SS, ObjCImpDecl, TemplateArgs != 0);
1568 if (BaseResult.isInvalid())
1569 return ExprError();
1570 Base = BaseResult.take();
1571
1572 if (Result.isInvalid()) {
1573 Owned(Base);
1574 return ExprError();
1575 }
1576
1577 if (Result.get()) {
1578 // The only way a reference to a destructor can be used is to
1579 // immediately call it, which falls into this case. If the
1580 // next token is not a '(', produce a diagnostic and build the
1581 // call now.
1582 if (!HasTrailingLParen &&
1583 Id.getKind() == UnqualifiedId::IK_DestructorName)
1584 return DiagnoseDtorReference(NameInfo.getLoc(), Result.get());
1585
Benjamin Kramer3fe198b2012-08-23 21:35:17 +00001586 return Result;
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001587 }
1588
Kaelyn Uhrain2b90f762012-04-25 19:49:54 +00001589 ActOnMemberAccessExtraArgs ExtraArgs = {S, Id, ObjCImpDecl, HasTrailingLParen};
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001590 Result = BuildMemberReferenceExpr(Base, Base->getType(),
Abramo Bagnarae4b92762012-01-27 09:46:47 +00001591 OpLoc, IsArrow, SS, TemplateKWLoc,
Kaelyn Uhrain2b90f762012-04-25 19:49:54 +00001592 FirstQualifierInScope, R, TemplateArgs,
1593 false, &ExtraArgs);
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001594 }
1595
Benjamin Kramer3fe198b2012-08-23 21:35:17 +00001596 return Result;
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001597}
1598
1599static ExprResult
1600BuildFieldReferenceExpr(Sema &S, Expr *BaseExpr, bool IsArrow,
1601 const CXXScopeSpec &SS, FieldDecl *Field,
1602 DeclAccessPair FoundDecl,
1603 const DeclarationNameInfo &MemberNameInfo) {
1604 // x.a is an l-value if 'a' has a reference type. Otherwise:
1605 // x.a is an l-value/x-value/pr-value if the base is (and note
1606 // that *x is always an l-value), except that if the base isn't
1607 // an ordinary object then we must have an rvalue.
1608 ExprValueKind VK = VK_LValue;
1609 ExprObjectKind OK = OK_Ordinary;
1610 if (!IsArrow) {
1611 if (BaseExpr->getObjectKind() == OK_Ordinary)
1612 VK = BaseExpr->getValueKind();
1613 else
1614 VK = VK_RValue;
1615 }
1616 if (VK != VK_RValue && Field->isBitField())
1617 OK = OK_BitField;
1618
1619 // Figure out the type of the member; see C99 6.5.2.3p3, C++ [expr.ref]
1620 QualType MemberType = Field->getType();
1621 if (const ReferenceType *Ref = MemberType->getAs<ReferenceType>()) {
1622 MemberType = Ref->getPointeeType();
1623 VK = VK_LValue;
1624 } else {
1625 QualType BaseType = BaseExpr->getType();
1626 if (IsArrow) BaseType = BaseType->getAs<PointerType>()->getPointeeType();
Matt Arsenault34b0adb2013-02-26 21:16:00 +00001627
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001628 Qualifiers BaseQuals = BaseType.getQualifiers();
Matt Arsenault34b0adb2013-02-26 21:16:00 +00001629
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001630 // GC attributes are never picked up by members.
1631 BaseQuals.removeObjCGCAttr();
Matt Arsenault34b0adb2013-02-26 21:16:00 +00001632
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001633 // CVR attributes from the base are picked up by members,
1634 // except that 'mutable' members don't pick up 'const'.
1635 if (Field->isMutable()) BaseQuals.removeConst();
Matt Arsenault34b0adb2013-02-26 21:16:00 +00001636
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001637 Qualifiers MemberQuals
1638 = S.Context.getCanonicalType(MemberType).getQualifiers();
Matt Arsenault34b0adb2013-02-26 21:16:00 +00001639
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001640 assert(!MemberQuals.hasAddressSpace());
Matt Arsenault34b0adb2013-02-26 21:16:00 +00001641
1642
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001643 Qualifiers Combined = BaseQuals + MemberQuals;
1644 if (Combined != MemberQuals)
1645 MemberType = S.Context.getQualifiedType(MemberType, Combined);
1646 }
Matt Arsenault34b0adb2013-02-26 21:16:00 +00001647
Daniel Jasperf8cc02e2012-06-06 08:32:04 +00001648 S.UnusedPrivateFields.remove(Field);
1649
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001650 ExprResult Base =
1651 S.PerformObjectMemberConversion(BaseExpr, SS.getScopeRep(),
1652 FoundDecl, Field);
1653 if (Base.isInvalid())
1654 return ExprError();
Eli Friedman5f2987c2012-02-02 03:46:19 +00001655 return S.Owned(BuildMemberExpr(S, S.Context, Base.take(), IsArrow, SS,
Abramo Bagnarae4b92762012-01-27 09:46:47 +00001656 /*TemplateKWLoc=*/SourceLocation(),
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001657 Field, FoundDecl, MemberNameInfo,
1658 MemberType, VK, OK));
1659}
1660
1661/// Builds an implicit member access expression. The current context
1662/// is known to be an instance method, and the given unqualified lookup
1663/// set is known to contain only instance members, at least one of which
1664/// is from an appropriate type.
1665ExprResult
1666Sema::BuildImplicitMemberExpr(const CXXScopeSpec &SS,
Abramo Bagnarae4b92762012-01-27 09:46:47 +00001667 SourceLocation TemplateKWLoc,
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001668 LookupResult &R,
1669 const TemplateArgumentListInfo *TemplateArgs,
1670 bool IsKnownInstance) {
1671 assert(!R.empty() && !R.isAmbiguous());
1672
1673 SourceLocation loc = R.getNameLoc();
1674
1675 // We may have found a field within an anonymous union or struct
1676 // (C++ [class.union]).
1677 // FIXME: template-ids inside anonymous structs?
1678 if (IndirectFieldDecl *FD = R.getAsSingle<IndirectFieldDecl>())
Eli Friedmanbf03b372013-07-16 00:01:31 +00001679 return BuildAnonymousStructUnionMemberReference(SS, R.getNameLoc(), FD,
1680 R.begin().getPair());
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001681
1682 // If this is known to be an instance access, go ahead and build an
1683 // implicit 'this' expression now.
1684 // 'this' expression now.
Douglas Gregor341350e2011-10-18 16:47:30 +00001685 QualType ThisTy = getCurrentThisType();
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001686 assert(!ThisTy.isNull() && "didn't correctly pre-flight capture of 'this'");
1687
1688 Expr *baseExpr = 0; // null signifies implicit access
1689 if (IsKnownInstance) {
1690 SourceLocation Loc = R.getNameLoc();
1691 if (SS.getRange().isValid())
1692 Loc = SS.getRange().getBegin();
Eli Friedman72899c32012-01-07 04:59:52 +00001693 CheckCXXThisCapture(Loc);
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001694 baseExpr = new (Context) CXXThisExpr(loc, ThisTy, /*isImplicit=*/true);
1695 }
1696
1697 return BuildMemberReferenceExpr(baseExpr, ThisTy,
1698 /*OpLoc*/ SourceLocation(),
1699 /*IsArrow*/ true,
Abramo Bagnarae4b92762012-01-27 09:46:47 +00001700 SS, TemplateKWLoc,
Douglas Gregor2b1ad8b2011-06-23 00:49:38 +00001701 /*FirstQualifierInScope*/ 0,
1702 R, TemplateArgs);
1703}