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Reid Spencer5f016e22007-07-11 17:01:13 +00001//===--- SemaExprCXX.cpp - Semantic Analysis for Expressions --------------===//
2//
3// The LLVM Compiler Infrastructure
4//
Chris Lattner0bc735f2007-12-29 19:59:25 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Reid Spencer5f016e22007-07-11 17:01:13 +00007//
8//===----------------------------------------------------------------------===//
9//
10// This file implements semantic analysis for C++ expressions.
11//
12//===----------------------------------------------------------------------===//
13
14#include "Sema.h"
Douglas Gregor20093b42009-12-09 23:02:17 +000015#include "SemaInit.h"
John McCall7d384dd2009-11-18 07:57:50 +000016#include "Lookup.h"
Steve Naroff210679c2007-08-25 14:02:58 +000017#include "clang/AST/ASTContext.h"
Douglas Gregora8f32e02009-10-06 17:59:45 +000018#include "clang/AST/CXXInheritance.h"
Anders Carlssond497ba72009-08-26 22:59:12 +000019#include "clang/AST/ExprCXX.h"
Fariborz Jahaniand4266622010-06-16 18:56:04 +000020#include "clang/AST/ExprObjC.h"
Douglas Gregorb57fb492010-02-24 22:38:50 +000021#include "clang/AST/TypeLoc.h"
Anders Carlssond497ba72009-08-26 22:59:12 +000022#include "clang/Basic/PartialDiagnostic.h"
Sebastian Redlb5a57a62008-12-03 20:26:15 +000023#include "clang/Basic/TargetInfo.h"
Anders Carlssond497ba72009-08-26 22:59:12 +000024#include "clang/Lex/Preprocessor.h"
25#include "clang/Parse/DeclSpec.h"
Douglas Gregord4dca082010-02-24 18:44:31 +000026#include "clang/Parse/Template.h"
Douglas Gregor3fc749d2008-12-23 00:26:44 +000027#include "llvm/ADT/STLExtras.h"
Reid Spencer5f016e22007-07-11 17:01:13 +000028using namespace clang;
29
Douglas Gregor124b8782010-02-16 19:09:40 +000030Action::TypeTy *Sema::getDestructorName(SourceLocation TildeLoc,
31 IdentifierInfo &II,
32 SourceLocation NameLoc,
Jeffrey Yasskin9ab14542010-04-08 16:38:48 +000033 Scope *S, CXXScopeSpec &SS,
Douglas Gregor124b8782010-02-16 19:09:40 +000034 TypeTy *ObjectTypePtr,
35 bool EnteringContext) {
36 // Determine where to perform name lookup.
37
38 // FIXME: This area of the standard is very messy, and the current
39 // wording is rather unclear about which scopes we search for the
40 // destructor name; see core issues 399 and 555. Issue 399 in
41 // particular shows where the current description of destructor name
42 // lookup is completely out of line with existing practice, e.g.,
43 // this appears to be ill-formed:
44 //
45 // namespace N {
46 // template <typename T> struct S {
47 // ~S();
48 // };
49 // }
50 //
51 // void f(N::S<int>* s) {
52 // s->N::S<int>::~S();
53 // }
54 //
Douglas Gregor93649fd2010-02-23 00:15:22 +000055 // See also PR6358 and PR6359.
Douglas Gregor124b8782010-02-16 19:09:40 +000056 QualType SearchType;
57 DeclContext *LookupCtx = 0;
58 bool isDependent = false;
59 bool LookInScope = false;
60
61 // If we have an object type, it's because we are in a
62 // pseudo-destructor-expression or a member access expression, and
63 // we know what type we're looking for.
64 if (ObjectTypePtr)
65 SearchType = GetTypeFromParser(ObjectTypePtr);
66
67 if (SS.isSet()) {
Douglas Gregor93649fd2010-02-23 00:15:22 +000068 NestedNameSpecifier *NNS = (NestedNameSpecifier *)SS.getScopeRep();
69
70 bool AlreadySearched = false;
71 bool LookAtPrefix = true;
72 if (!getLangOptions().CPlusPlus0x) {
73 // C++ [basic.lookup.qual]p6:
74 // If a pseudo-destructor-name (5.2.4) contains a nested-name-specifier,
75 // the type-names are looked up as types in the scope designated by the
76 // nested-name-specifier. In a qualified-id of the form:
77 //
78 // ::[opt] nested-name-specifier ̃ class-name
79 //
80 // where the nested-name-specifier designates a namespace scope, and in
81 // a qualified-id of the form:
82 //
83 // ::opt nested-name-specifier class-name :: ̃ class-name
84 //
85 // the class-names are looked up as types in the scope designated by
86 // the nested-name-specifier.
87 //
88 // Here, we check the first case (completely) and determine whether the
89 // code below is permitted to look at the prefix of the
90 // nested-name-specifier (as we do in C++0x).
91 DeclContext *DC = computeDeclContext(SS, EnteringContext);
92 if (DC && DC->isFileContext()) {
93 AlreadySearched = true;
94 LookupCtx = DC;
95 isDependent = false;
96 } else if (DC && isa<CXXRecordDecl>(DC))
97 LookAtPrefix = false;
98 }
99
100 // C++0x [basic.lookup.qual]p6:
Douglas Gregor124b8782010-02-16 19:09:40 +0000101 // If a pseudo-destructor-name (5.2.4) contains a
102 // nested-name-specifier, the type-names are looked up as types
103 // in the scope designated by the nested-name-specifier. Similarly, in
Chandler Carruth5e895a82010-02-21 10:19:54 +0000104 // a qualified-id of the form:
Douglas Gregor124b8782010-02-16 19:09:40 +0000105 //
106 // :: [opt] nested-name-specifier[opt] class-name :: ~class-name
107 //
108 // the second class-name is looked up in the same scope as the first.
109 //
Douglas Gregor93649fd2010-02-23 00:15:22 +0000110 // To implement this, we look at the prefix of the
111 // nested-name-specifier we were given, and determine the lookup
112 // context from that.
113 //
114 // We also fold in the second case from the C++03 rules quoted further
115 // above.
116 NestedNameSpecifier *Prefix = 0;
117 if (AlreadySearched) {
118 // Nothing left to do.
119 } else if (LookAtPrefix && (Prefix = NNS->getPrefix())) {
120 CXXScopeSpec PrefixSS;
121 PrefixSS.setScopeRep(Prefix);
122 LookupCtx = computeDeclContext(PrefixSS, EnteringContext);
123 isDependent = isDependentScopeSpecifier(PrefixSS);
124 } else if (getLangOptions().CPlusPlus0x &&
125 (LookupCtx = computeDeclContext(SS, EnteringContext))) {
126 if (!LookupCtx->isTranslationUnit())
127 LookupCtx = LookupCtx->getParent();
128 isDependent = LookupCtx && LookupCtx->isDependentContext();
129 } else if (ObjectTypePtr) {
Douglas Gregor124b8782010-02-16 19:09:40 +0000130 LookupCtx = computeDeclContext(SearchType);
131 isDependent = SearchType->isDependentType();
132 } else {
133 LookupCtx = computeDeclContext(SS, EnteringContext);
Douglas Gregor93649fd2010-02-23 00:15:22 +0000134 isDependent = LookupCtx && LookupCtx->isDependentContext();
Douglas Gregor124b8782010-02-16 19:09:40 +0000135 }
Douglas Gregor93649fd2010-02-23 00:15:22 +0000136
Douglas Gregoredc90502010-02-25 04:46:04 +0000137 LookInScope = false;
Douglas Gregor124b8782010-02-16 19:09:40 +0000138 } else if (ObjectTypePtr) {
139 // C++ [basic.lookup.classref]p3:
140 // If the unqualified-id is ~type-name, the type-name is looked up
141 // in the context of the entire postfix-expression. If the type T
142 // of the object expression is of a class type C, the type-name is
143 // also looked up in the scope of class C. At least one of the
144 // lookups shall find a name that refers to (possibly
145 // cv-qualified) T.
146 LookupCtx = computeDeclContext(SearchType);
147 isDependent = SearchType->isDependentType();
148 assert((isDependent || !SearchType->isIncompleteType()) &&
149 "Caller should have completed object type");
150
151 LookInScope = true;
152 } else {
153 // Perform lookup into the current scope (only).
154 LookInScope = true;
155 }
156
157 LookupResult Found(*this, &II, NameLoc, LookupOrdinaryName);
158 for (unsigned Step = 0; Step != 2; ++Step) {
159 // Look for the name first in the computed lookup context (if we
160 // have one) and, if that fails to find a match, in the sope (if
161 // we're allowed to look there).
162 Found.clear();
163 if (Step == 0 && LookupCtx)
164 LookupQualifiedName(Found, LookupCtx);
Douglas Gregora2e7dd22010-02-25 01:56:36 +0000165 else if (Step == 1 && LookInScope && S)
Douglas Gregor124b8782010-02-16 19:09:40 +0000166 LookupName(Found, S);
167 else
168 continue;
169
170 // FIXME: Should we be suppressing ambiguities here?
171 if (Found.isAmbiguous())
172 return 0;
173
174 if (TypeDecl *Type = Found.getAsSingle<TypeDecl>()) {
175 QualType T = Context.getTypeDeclType(Type);
Douglas Gregor124b8782010-02-16 19:09:40 +0000176
177 if (SearchType.isNull() || SearchType->isDependentType() ||
178 Context.hasSameUnqualifiedType(T, SearchType)) {
179 // We found our type!
180
181 return T.getAsOpaquePtr();
182 }
183 }
184
185 // If the name that we found is a class template name, and it is
186 // the same name as the template name in the last part of the
187 // nested-name-specifier (if present) or the object type, then
188 // this is the destructor for that class.
189 // FIXME: This is a workaround until we get real drafting for core
190 // issue 399, for which there isn't even an obvious direction.
191 if (ClassTemplateDecl *Template = Found.getAsSingle<ClassTemplateDecl>()) {
192 QualType MemberOfType;
193 if (SS.isSet()) {
194 if (DeclContext *Ctx = computeDeclContext(SS, EnteringContext)) {
195 // Figure out the type of the context, if it has one.
John McCall3cb0ebd2010-03-10 03:28:59 +0000196 if (CXXRecordDecl *Record = dyn_cast<CXXRecordDecl>(Ctx))
197 MemberOfType = Context.getTypeDeclType(Record);
Douglas Gregor124b8782010-02-16 19:09:40 +0000198 }
199 }
200 if (MemberOfType.isNull())
201 MemberOfType = SearchType;
202
203 if (MemberOfType.isNull())
204 continue;
205
206 // We're referring into a class template specialization. If the
207 // class template we found is the same as the template being
208 // specialized, we found what we are looking for.
209 if (const RecordType *Record = MemberOfType->getAs<RecordType>()) {
210 if (ClassTemplateSpecializationDecl *Spec
211 = dyn_cast<ClassTemplateSpecializationDecl>(Record->getDecl())) {
212 if (Spec->getSpecializedTemplate()->getCanonicalDecl() ==
213 Template->getCanonicalDecl())
214 return MemberOfType.getAsOpaquePtr();
215 }
216
217 continue;
218 }
219
220 // We're referring to an unresolved class template
221 // specialization. Determine whether we class template we found
222 // is the same as the template being specialized or, if we don't
223 // know which template is being specialized, that it at least
224 // has the same name.
225 if (const TemplateSpecializationType *SpecType
226 = MemberOfType->getAs<TemplateSpecializationType>()) {
227 TemplateName SpecName = SpecType->getTemplateName();
228
229 // The class template we found is the same template being
230 // specialized.
231 if (TemplateDecl *SpecTemplate = SpecName.getAsTemplateDecl()) {
232 if (SpecTemplate->getCanonicalDecl() == Template->getCanonicalDecl())
233 return MemberOfType.getAsOpaquePtr();
234
235 continue;
236 }
237
238 // The class template we found has the same name as the
239 // (dependent) template name being specialized.
240 if (DependentTemplateName *DepTemplate
241 = SpecName.getAsDependentTemplateName()) {
242 if (DepTemplate->isIdentifier() &&
243 DepTemplate->getIdentifier() == Template->getIdentifier())
244 return MemberOfType.getAsOpaquePtr();
245
246 continue;
247 }
248 }
249 }
250 }
251
252 if (isDependent) {
253 // We didn't find our type, but that's okay: it's dependent
254 // anyway.
255 NestedNameSpecifier *NNS = 0;
256 SourceRange Range;
257 if (SS.isSet()) {
258 NNS = (NestedNameSpecifier *)SS.getScopeRep();
259 Range = SourceRange(SS.getRange().getBegin(), NameLoc);
260 } else {
261 NNS = NestedNameSpecifier::Create(Context, &II);
262 Range = SourceRange(NameLoc);
263 }
264
Abramo Bagnarae4da7a02010-05-19 21:37:53 +0000265 return CheckTypenameType(ETK_None, NNS, II, SourceLocation(),
266 Range, NameLoc).getAsOpaquePtr();
Douglas Gregor124b8782010-02-16 19:09:40 +0000267 }
268
269 if (ObjectTypePtr)
270 Diag(NameLoc, diag::err_ident_in_pseudo_dtor_not_a_type)
271 << &II;
272 else
273 Diag(NameLoc, diag::err_destructor_class_name);
274
275 return 0;
276}
277
Douglas Gregor57fdc8a2010-04-26 22:37:10 +0000278/// \brief Build a C++ typeid expression with a type operand.
279Sema::OwningExprResult Sema::BuildCXXTypeId(QualType TypeInfoType,
280 SourceLocation TypeidLoc,
281 TypeSourceInfo *Operand,
282 SourceLocation RParenLoc) {
283 // C++ [expr.typeid]p4:
284 // The top-level cv-qualifiers of the lvalue expression or the type-id
285 // that is the operand of typeid are always ignored.
286 // If the type of the type-id is a class type or a reference to a class
287 // type, the class shall be completely-defined.
Douglas Gregord1c1d7b2010-06-02 06:16:02 +0000288 Qualifiers Quals;
289 QualType T
290 = Context.getUnqualifiedArrayType(Operand->getType().getNonReferenceType(),
291 Quals);
Douglas Gregor57fdc8a2010-04-26 22:37:10 +0000292 if (T->getAs<RecordType>() &&
293 RequireCompleteType(TypeidLoc, T, diag::err_incomplete_typeid))
294 return ExprError();
Daniel Dunbar380c2132010-05-11 21:32:35 +0000295
Douglas Gregor57fdc8a2010-04-26 22:37:10 +0000296 return Owned(new (Context) CXXTypeidExpr(TypeInfoType.withConst(),
297 Operand,
298 SourceRange(TypeidLoc, RParenLoc)));
299}
300
301/// \brief Build a C++ typeid expression with an expression operand.
302Sema::OwningExprResult Sema::BuildCXXTypeId(QualType TypeInfoType,
303 SourceLocation TypeidLoc,
304 ExprArg Operand,
305 SourceLocation RParenLoc) {
306 bool isUnevaluatedOperand = true;
307 Expr *E = static_cast<Expr *>(Operand.get());
308 if (E && !E->isTypeDependent()) {
309 QualType T = E->getType();
310 if (const RecordType *RecordT = T->getAs<RecordType>()) {
311 CXXRecordDecl *RecordD = cast<CXXRecordDecl>(RecordT->getDecl());
312 // C++ [expr.typeid]p3:
313 // [...] If the type of the expression is a class type, the class
314 // shall be completely-defined.
315 if (RequireCompleteType(TypeidLoc, T, diag::err_incomplete_typeid))
316 return ExprError();
317
318 // C++ [expr.typeid]p3:
319 // When typeid is applied to an expression other than an lvalue of a
320 // polymorphic class type [...] [the] expression is an unevaluated
321 // operand. [...]
Douglas Gregor6fb745b2010-05-13 16:44:06 +0000322 if (RecordD->isPolymorphic() && E->isLvalue(Context) == Expr::LV_Valid) {
Douglas Gregor57fdc8a2010-04-26 22:37:10 +0000323 isUnevaluatedOperand = false;
Douglas Gregor6fb745b2010-05-13 16:44:06 +0000324
325 // We require a vtable to query the type at run time.
326 MarkVTableUsed(TypeidLoc, RecordD);
327 }
Douglas Gregor57fdc8a2010-04-26 22:37:10 +0000328 }
329
330 // C++ [expr.typeid]p4:
331 // [...] If the type of the type-id is a reference to a possibly
332 // cv-qualified type, the result of the typeid expression refers to a
333 // std::type_info object representing the cv-unqualified referenced
334 // type.
Douglas Gregord1c1d7b2010-06-02 06:16:02 +0000335 Qualifiers Quals;
336 QualType UnqualT = Context.getUnqualifiedArrayType(T, Quals);
337 if (!Context.hasSameType(T, UnqualT)) {
338 T = UnqualT;
339 ImpCastExprToType(E, UnqualT, CastExpr::CK_NoOp, E->isLvalue(Context));
Douglas Gregor57fdc8a2010-04-26 22:37:10 +0000340 Operand.release();
341 Operand = Owned(E);
342 }
343 }
344
345 // If this is an unevaluated operand, clear out the set of
346 // declaration references we have been computing and eliminate any
347 // temporaries introduced in its computation.
348 if (isUnevaluatedOperand)
349 ExprEvalContexts.back().Context = Unevaluated;
350
351 return Owned(new (Context) CXXTypeidExpr(TypeInfoType.withConst(),
352 Operand.takeAs<Expr>(),
353 SourceRange(TypeidLoc, RParenLoc)));
354}
355
356/// ActOnCXXTypeidOfType - Parse typeid( type-id ) or typeid (expression);
Sebastian Redlf53597f2009-03-15 17:47:39 +0000357Action::OwningExprResult
Sebastian Redlc42e1182008-11-11 11:37:55 +0000358Sema::ActOnCXXTypeid(SourceLocation OpLoc, SourceLocation LParenLoc,
359 bool isType, void *TyOrExpr, SourceLocation RParenLoc) {
Douglas Gregor57fdc8a2010-04-26 22:37:10 +0000360 // Find the std::type_info type.
Douglas Gregor7adb10f2009-09-15 22:30:29 +0000361 if (!StdNamespace)
Sebastian Redlf53597f2009-03-15 17:47:39 +0000362 return ExprError(Diag(OpLoc, diag::err_need_header_before_typeid));
Argyrios Kyrtzidise8661902009-08-19 01:28:28 +0000363
Chris Lattner572af492008-11-20 05:51:55 +0000364 IdentifierInfo *TypeInfoII = &PP.getIdentifierTable().get("type_info");
John McCalla24dc2e2009-11-17 02:14:36 +0000365 LookupResult R(*this, TypeInfoII, SourceLocation(), LookupTagName);
366 LookupQualifiedName(R, StdNamespace);
John McCall1bcee0a2009-12-02 08:25:40 +0000367 RecordDecl *TypeInfoRecordDecl = R.getAsSingle<RecordDecl>();
Chris Lattner572af492008-11-20 05:51:55 +0000368 if (!TypeInfoRecordDecl)
Sebastian Redlf53597f2009-03-15 17:47:39 +0000369 return ExprError(Diag(OpLoc, diag::err_need_header_before_typeid));
Douglas Gregor57fdc8a2010-04-26 22:37:10 +0000370
Sebastian Redlc42e1182008-11-11 11:37:55 +0000371 QualType TypeInfoType = Context.getTypeDeclType(TypeInfoRecordDecl);
Douglas Gregor57fdc8a2010-04-26 22:37:10 +0000372
373 if (isType) {
374 // The operand is a type; handle it as such.
375 TypeSourceInfo *TInfo = 0;
376 QualType T = GetTypeFromParser(TyOrExpr, &TInfo);
377 if (T.isNull())
378 return ExprError();
379
380 if (!TInfo)
381 TInfo = Context.getTrivialTypeSourceInfo(T, OpLoc);
Sebastian Redlc42e1182008-11-11 11:37:55 +0000382
Douglas Gregor57fdc8a2010-04-26 22:37:10 +0000383 return BuildCXXTypeId(TypeInfoType, OpLoc, TInfo, RParenLoc);
Douglas Gregorac7610d2009-06-22 20:57:11 +0000384 }
Mike Stump1eb44332009-09-09 15:08:12 +0000385
Douglas Gregor57fdc8a2010-04-26 22:37:10 +0000386 // The operand is an expression.
387 return BuildCXXTypeId(TypeInfoType, OpLoc, Owned((Expr*)TyOrExpr), RParenLoc);
Sebastian Redlc42e1182008-11-11 11:37:55 +0000388}
389
Steve Naroff1b273c42007-09-16 14:56:35 +0000390/// ActOnCXXBoolLiteral - Parse {true,false} literals.
Sebastian Redlf53597f2009-03-15 17:47:39 +0000391Action::OwningExprResult
Steve Naroff1b273c42007-09-16 14:56:35 +0000392Sema::ActOnCXXBoolLiteral(SourceLocation OpLoc, tok::TokenKind Kind) {
Douglas Gregor2f639b92008-10-24 15:36:09 +0000393 assert((Kind == tok::kw_true || Kind == tok::kw_false) &&
Reid Spencer5f016e22007-07-11 17:01:13 +0000394 "Unknown C++ Boolean value!");
Sebastian Redlf53597f2009-03-15 17:47:39 +0000395 return Owned(new (Context) CXXBoolLiteralExpr(Kind == tok::kw_true,
396 Context.BoolTy, OpLoc));
Reid Spencer5f016e22007-07-11 17:01:13 +0000397}
Chris Lattner50dd2892008-02-26 00:51:44 +0000398
Sebastian Redl6e8ed162009-05-10 18:38:11 +0000399/// ActOnCXXNullPtrLiteral - Parse 'nullptr'.
400Action::OwningExprResult
401Sema::ActOnCXXNullPtrLiteral(SourceLocation Loc) {
402 return Owned(new (Context) CXXNullPtrLiteralExpr(Context.NullPtrTy, Loc));
403}
404
Chris Lattner50dd2892008-02-26 00:51:44 +0000405/// ActOnCXXThrow - Parse throw expressions.
Sebastian Redlf53597f2009-03-15 17:47:39 +0000406Action::OwningExprResult
407Sema::ActOnCXXThrow(SourceLocation OpLoc, ExprArg E) {
Sebastian Redl972041f2009-04-27 20:27:31 +0000408 Expr *Ex = E.takeAs<Expr>();
409 if (Ex && !Ex->isTypeDependent() && CheckCXXThrowOperand(OpLoc, Ex))
410 return ExprError();
411 return Owned(new (Context) CXXThrowExpr(Ex, Context.VoidTy, OpLoc));
412}
413
414/// CheckCXXThrowOperand - Validate the operand of a throw.
415bool Sema::CheckCXXThrowOperand(SourceLocation ThrowLoc, Expr *&E) {
416 // C++ [except.throw]p3:
Douglas Gregor154fe982009-12-23 22:04:40 +0000417 // A throw-expression initializes a temporary object, called the exception
418 // object, the type of which is determined by removing any top-level
419 // cv-qualifiers from the static type of the operand of throw and adjusting
420 // the type from "array of T" or "function returning T" to "pointer to T"
421 // or "pointer to function returning T", [...]
422 if (E->getType().hasQualifiers())
423 ImpCastExprToType(E, E->getType().getUnqualifiedType(), CastExpr::CK_NoOp,
424 E->isLvalue(Context) == Expr::LV_Valid);
425
Sebastian Redl972041f2009-04-27 20:27:31 +0000426 DefaultFunctionArrayConversion(E);
427
428 // If the type of the exception would be an incomplete type or a pointer
429 // to an incomplete type other than (cv) void the program is ill-formed.
430 QualType Ty = E->getType();
John McCallac418162010-04-22 01:10:34 +0000431 bool isPointer = false;
Ted Kremenek6217b802009-07-29 21:53:49 +0000432 if (const PointerType* Ptr = Ty->getAs<PointerType>()) {
Sebastian Redl972041f2009-04-27 20:27:31 +0000433 Ty = Ptr->getPointeeType();
John McCallac418162010-04-22 01:10:34 +0000434 isPointer = true;
Sebastian Redl972041f2009-04-27 20:27:31 +0000435 }
436 if (!isPointer || !Ty->isVoidType()) {
437 if (RequireCompleteType(ThrowLoc, Ty,
Anders Carlssond497ba72009-08-26 22:59:12 +0000438 PDiag(isPointer ? diag::err_throw_incomplete_ptr
439 : diag::err_throw_incomplete)
440 << E->getSourceRange()))
Sebastian Redl972041f2009-04-27 20:27:31 +0000441 return true;
Rafael Espindola7b9a5aa2010-03-02 21:28:26 +0000442
Douglas Gregorbf422f92010-04-15 18:05:39 +0000443 if (RequireNonAbstractType(ThrowLoc, E->getType(),
444 PDiag(diag::err_throw_abstract_type)
445 << E->getSourceRange()))
446 return true;
Sebastian Redl972041f2009-04-27 20:27:31 +0000447 }
448
John McCallac418162010-04-22 01:10:34 +0000449 // Initialize the exception result. This implicitly weeds out
450 // abstract types or types with inaccessible copy constructors.
Douglas Gregor3c9034c2010-05-15 00:13:29 +0000451 // FIXME: Determine whether we can elide this copy per C++0x [class.copy]p34.
John McCallac418162010-04-22 01:10:34 +0000452 InitializedEntity Entity =
Douglas Gregor3c9034c2010-05-15 00:13:29 +0000453 InitializedEntity::InitializeException(ThrowLoc, E->getType(),
454 /*NRVO=*/false);
John McCallac418162010-04-22 01:10:34 +0000455 OwningExprResult Res = PerformCopyInitialization(Entity,
456 SourceLocation(),
457 Owned(E));
458 if (Res.isInvalid())
459 return true;
460 E = Res.takeAs<Expr>();
Douglas Gregor6fb745b2010-05-13 16:44:06 +0000461
Eli Friedman5ed9b932010-06-03 20:39:03 +0000462 // If the exception has class type, we need additional handling.
463 const RecordType *RecordTy = Ty->getAs<RecordType>();
464 if (!RecordTy)
465 return false;
466 CXXRecordDecl *RD = cast<CXXRecordDecl>(RecordTy->getDecl());
467
Douglas Gregor6fb745b2010-05-13 16:44:06 +0000468 // If we are throwing a polymorphic class type or pointer thereof,
469 // exception handling will make use of the vtable.
Eli Friedman5ed9b932010-06-03 20:39:03 +0000470 MarkVTableUsed(ThrowLoc, RD);
471
472 // If the class has a non-trivial destructor, we must be able to call it.
473 if (RD->hasTrivialDestructor())
474 return false;
475
476 CXXDestructorDecl *Destructor =
477 const_cast<CXXDestructorDecl*>(RD->getDestructor(Context));
478 if (!Destructor)
479 return false;
480
481 MarkDeclarationReferenced(E->getExprLoc(), Destructor);
482 CheckDestructorAccess(E->getExprLoc(), Destructor,
483 PDiag(diag::err_access_dtor_temp) << Ty);
Sebastian Redl972041f2009-04-27 20:27:31 +0000484 return false;
Chris Lattner50dd2892008-02-26 00:51:44 +0000485}
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000486
Sebastian Redlf53597f2009-03-15 17:47:39 +0000487Action::OwningExprResult Sema::ActOnCXXThis(SourceLocation ThisLoc) {
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000488 /// C++ 9.3.2: In the body of a non-static member function, the keyword this
489 /// is a non-lvalue expression whose value is the address of the object for
490 /// which the function is called.
491
John McCallea1471e2010-05-20 01:18:31 +0000492 DeclContext *DC = getFunctionLevelDeclContext();
493 if (CXXMethodDecl *MD = dyn_cast<CXXMethodDecl>(DC))
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000494 if (MD->isInstance())
Sebastian Redlf53597f2009-03-15 17:47:39 +0000495 return Owned(new (Context) CXXThisExpr(ThisLoc,
Douglas Gregor828a1972010-01-07 23:12:05 +0000496 MD->getThisType(Context),
497 /*isImplicit=*/false));
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000498
Sebastian Redlf53597f2009-03-15 17:47:39 +0000499 return ExprError(Diag(ThisLoc, diag::err_invalid_this_use));
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000500}
Argyrios Kyrtzidis987a14b2008-08-22 15:38:55 +0000501
502/// ActOnCXXTypeConstructExpr - Parse construction of a specified type.
503/// Can be interpreted either as function-style casting ("int(x)")
504/// or class type construction ("ClassType(x,y,z)")
505/// or creation of a value-initialized type ("int()").
Sebastian Redlf53597f2009-03-15 17:47:39 +0000506Action::OwningExprResult
Argyrios Kyrtzidis987a14b2008-08-22 15:38:55 +0000507Sema::ActOnCXXTypeConstructExpr(SourceRange TypeRange, TypeTy *TypeRep,
508 SourceLocation LParenLoc,
Sebastian Redlf53597f2009-03-15 17:47:39 +0000509 MultiExprArg exprs,
Argyrios Kyrtzidis987a14b2008-08-22 15:38:55 +0000510 SourceLocation *CommaLocs,
511 SourceLocation RParenLoc) {
Douglas Gregorae4c77d2010-02-05 19:11:37 +0000512 if (!TypeRep)
513 return ExprError();
514
John McCall9d125032010-01-15 18:39:57 +0000515 TypeSourceInfo *TInfo;
516 QualType Ty = GetTypeFromParser(TypeRep, &TInfo);
517 if (!TInfo)
518 TInfo = Context.getTrivialTypeSourceInfo(Ty, SourceLocation());
Sebastian Redlf53597f2009-03-15 17:47:39 +0000519 unsigned NumExprs = exprs.size();
520 Expr **Exprs = (Expr**)exprs.get();
Argyrios Kyrtzidis987a14b2008-08-22 15:38:55 +0000521 SourceLocation TyBeginLoc = TypeRange.getBegin();
522 SourceRange FullRange = SourceRange(TyBeginLoc, RParenLoc);
523
Sebastian Redlf53597f2009-03-15 17:47:39 +0000524 if (Ty->isDependentType() ||
Douglas Gregorba498172009-03-13 21:01:28 +0000525 CallExpr::hasAnyTypeDependentArguments(Exprs, NumExprs)) {
Sebastian Redlf53597f2009-03-15 17:47:39 +0000526 exprs.release();
Mike Stump1eb44332009-09-09 15:08:12 +0000527
528 return Owned(CXXUnresolvedConstructExpr::Create(Context,
529 TypeRange.getBegin(), Ty,
Douglas Gregord81e6ca2009-05-20 18:46:25 +0000530 LParenLoc,
531 Exprs, NumExprs,
532 RParenLoc));
Douglas Gregorba498172009-03-13 21:01:28 +0000533 }
534
Anders Carlssonbb60a502009-08-27 03:53:50 +0000535 if (Ty->isArrayType())
536 return ExprError(Diag(TyBeginLoc,
537 diag::err_value_init_for_array_type) << FullRange);
538 if (!Ty->isVoidType() &&
539 RequireCompleteType(TyBeginLoc, Ty,
540 PDiag(diag::err_invalid_incomplete_type_use)
541 << FullRange))
542 return ExprError();
Fariborz Jahanianf071e9b2009-10-23 21:01:39 +0000543
Anders Carlssonbb60a502009-08-27 03:53:50 +0000544 if (RequireNonAbstractType(TyBeginLoc, Ty,
545 diag::err_allocation_of_abstract_type))
546 return ExprError();
Mike Stump1eb44332009-09-09 15:08:12 +0000547
548
Douglas Gregor506ae412009-01-16 18:33:17 +0000549 // C++ [expr.type.conv]p1:
Argyrios Kyrtzidis987a14b2008-08-22 15:38:55 +0000550 // If the expression list is a single expression, the type conversion
551 // expression is equivalent (in definedness, and if defined in meaning) to the
552 // corresponding cast expression.
553 //
554 if (NumExprs == 1) {
Anders Carlssoncdb61972009-08-07 22:21:05 +0000555 CastExpr::CastKind Kind = CastExpr::CK_Unknown;
Anders Carlsson41b2dcd2010-04-24 18:38:56 +0000556 CXXBaseSpecifierArray BasePath;
Anders Carlsson5cf86ba2010-04-24 19:06:50 +0000557 if (CheckCastTypes(TypeRange, Ty, Exprs[0], Kind, BasePath,
558 /*FunctionalStyle=*/true))
Sebastian Redlf53597f2009-03-15 17:47:39 +0000559 return ExprError();
Anders Carlsson0aebc812009-09-09 21:33:21 +0000560
561 exprs.release();
Anders Carlsson0aebc812009-09-09 21:33:21 +0000562
563 return Owned(new (Context) CXXFunctionalCastExpr(Ty.getNonReferenceType(),
John McCall9d125032010-01-15 18:39:57 +0000564 TInfo, TyBeginLoc, Kind,
Anders Carlsson41b2dcd2010-04-24 18:38:56 +0000565 Exprs[0], BasePath,
566 RParenLoc));
Argyrios Kyrtzidis987a14b2008-08-22 15:38:55 +0000567 }
568
Ted Kremenek6217b802009-07-29 21:53:49 +0000569 if (const RecordType *RT = Ty->getAs<RecordType>()) {
Douglas Gregor506ae412009-01-16 18:33:17 +0000570 CXXRecordDecl *Record = cast<CXXRecordDecl>(RT->getDecl());
Sebastian Redlf53597f2009-03-15 17:47:39 +0000571
Mike Stump1eb44332009-09-09 15:08:12 +0000572 if (NumExprs > 1 || !Record->hasTrivialConstructor() ||
Anders Carlssone7624a72009-08-27 05:08:22 +0000573 !Record->hasTrivialDestructor()) {
Eli Friedman6997aae2010-01-31 20:58:15 +0000574 InitializedEntity Entity = InitializedEntity::InitializeTemporary(Ty);
575 InitializationKind Kind
576 = NumExprs ? InitializationKind::CreateDirect(TypeRange.getBegin(),
577 LParenLoc, RParenLoc)
578 : InitializationKind::CreateValue(TypeRange.getBegin(),
579 LParenLoc, RParenLoc);
580 InitializationSequence InitSeq(*this, Entity, Kind, Exprs, NumExprs);
581 OwningExprResult Result = InitSeq.Perform(*this, Entity, Kind,
582 move(exprs));
Douglas Gregor506ae412009-01-16 18:33:17 +0000583
Eli Friedman6997aae2010-01-31 20:58:15 +0000584 // FIXME: Improve AST representation?
585 return move(Result);
Douglas Gregor506ae412009-01-16 18:33:17 +0000586 }
587
588 // Fall through to value-initialize an object of class type that
589 // doesn't have a user-declared default constructor.
590 }
591
592 // C++ [expr.type.conv]p1:
Argyrios Kyrtzidis987a14b2008-08-22 15:38:55 +0000593 // If the expression list specifies more than a single value, the type shall
594 // be a class with a suitably declared constructor.
595 //
596 if (NumExprs > 1)
Sebastian Redlf53597f2009-03-15 17:47:39 +0000597 return ExprError(Diag(CommaLocs[0],
598 diag::err_builtin_func_cast_more_than_one_arg)
599 << FullRange);
Argyrios Kyrtzidis987a14b2008-08-22 15:38:55 +0000600
601 assert(NumExprs == 0 && "Expected 0 expressions");
Douglas Gregor506ae412009-01-16 18:33:17 +0000602 // C++ [expr.type.conv]p2:
Argyrios Kyrtzidis987a14b2008-08-22 15:38:55 +0000603 // The expression T(), where T is a simple-type-specifier for a non-array
604 // complete object type or the (possibly cv-qualified) void type, creates an
605 // rvalue of the specified type, which is value-initialized.
606 //
Sebastian Redlf53597f2009-03-15 17:47:39 +0000607 exprs.release();
608 return Owned(new (Context) CXXZeroInitValueExpr(Ty, TyBeginLoc, RParenLoc));
Argyrios Kyrtzidis987a14b2008-08-22 15:38:55 +0000609}
Argyrios Kyrtzidis59210932008-09-10 02:17:11 +0000610
611
Sebastian Redl4c5d3202008-11-21 19:14:01 +0000612/// ActOnCXXNew - Parsed a C++ 'new' expression (C++ 5.3.4), as in e.g.:
613/// @code new (memory) int[size][4] @endcode
614/// or
615/// @code ::new Foo(23, "hello") @endcode
616/// For the interpretation of this heap of arguments, consult the base version.
Sebastian Redlf53597f2009-03-15 17:47:39 +0000617Action::OwningExprResult
Sebastian Redl4c5d3202008-11-21 19:14:01 +0000618Sema::ActOnCXXNew(SourceLocation StartLoc, bool UseGlobal,
Sebastian Redlf53597f2009-03-15 17:47:39 +0000619 SourceLocation PlacementLParen, MultiExprArg PlacementArgs,
Sebastian Redl4c5d3202008-11-21 19:14:01 +0000620 SourceLocation PlacementRParen, bool ParenTypeId,
Sebastian Redlcee63fb2008-12-02 14:43:59 +0000621 Declarator &D, SourceLocation ConstructorLParen,
Sebastian Redlf53597f2009-03-15 17:47:39 +0000622 MultiExprArg ConstructorArgs,
Mike Stump1eb44332009-09-09 15:08:12 +0000623 SourceLocation ConstructorRParen) {
Sebastian Redlcee63fb2008-12-02 14:43:59 +0000624 Expr *ArraySize = 0;
Sebastian Redlcee63fb2008-12-02 14:43:59 +0000625 // If the specified type is an array, unwrap it and save the expression.
626 if (D.getNumTypeObjects() > 0 &&
627 D.getTypeObject(0).Kind == DeclaratorChunk::Array) {
628 DeclaratorChunk &Chunk = D.getTypeObject(0);
629 if (Chunk.Arr.hasStatic)
Sebastian Redlf53597f2009-03-15 17:47:39 +0000630 return ExprError(Diag(Chunk.Loc, diag::err_static_illegal_in_new)
631 << D.getSourceRange());
Sebastian Redlcee63fb2008-12-02 14:43:59 +0000632 if (!Chunk.Arr.NumElts)
Sebastian Redlf53597f2009-03-15 17:47:39 +0000633 return ExprError(Diag(Chunk.Loc, diag::err_array_new_needs_size)
634 << D.getSourceRange());
Sebastian Redl8ce35b02009-10-25 21:45:37 +0000635
636 if (ParenTypeId) {
637 // Can't have dynamic array size when the type-id is in parentheses.
638 Expr *NumElts = (Expr *)Chunk.Arr.NumElts;
639 if (!NumElts->isTypeDependent() && !NumElts->isValueDependent() &&
640 !NumElts->isIntegerConstantExpr(Context)) {
641 Diag(D.getTypeObject(0).Loc, diag::err_new_paren_array_nonconst)
642 << NumElts->getSourceRange();
643 return ExprError();
644 }
645 }
646
Sebastian Redlcee63fb2008-12-02 14:43:59 +0000647 ArraySize = static_cast<Expr*>(Chunk.Arr.NumElts);
Sebastian Redl8ce35b02009-10-25 21:45:37 +0000648 D.DropFirstTypeObject();
Sebastian Redlcee63fb2008-12-02 14:43:59 +0000649 }
650
Douglas Gregor043cad22009-09-11 00:18:58 +0000651 // Every dimension shall be of constant size.
Sebastian Redl8ce35b02009-10-25 21:45:37 +0000652 if (ArraySize) {
653 for (unsigned I = 0, N = D.getNumTypeObjects(); I < N; ++I) {
Douglas Gregor043cad22009-09-11 00:18:58 +0000654 if (D.getTypeObject(I).Kind != DeclaratorChunk::Array)
655 break;
656
657 DeclaratorChunk::ArrayTypeInfo &Array = D.getTypeObject(I).Arr;
658 if (Expr *NumElts = (Expr *)Array.NumElts) {
659 if (!NumElts->isTypeDependent() && !NumElts->isValueDependent() &&
660 !NumElts->isIntegerConstantExpr(Context)) {
661 Diag(D.getTypeObject(I).Loc, diag::err_new_array_nonconst)
662 << NumElts->getSourceRange();
663 return ExprError();
664 }
665 }
666 }
667 }
Sebastian Redl8ce35b02009-10-25 21:45:37 +0000668
John McCalla93c9342009-12-07 02:54:59 +0000669 //FIXME: Store TypeSourceInfo in CXXNew expression.
John McCallbf1a0282010-06-04 23:28:52 +0000670 TypeSourceInfo *TInfo = GetTypeForDeclarator(D, /*Scope=*/0);
671 QualType AllocType = TInfo->getType();
Chris Lattnereaaebc72009-04-25 08:06:05 +0000672 if (D.isInvalidType())
Sebastian Redlf53597f2009-03-15 17:47:39 +0000673 return ExprError();
Ted Kremenekf9d5bac2010-06-25 22:48:49 +0000674
675 SourceRange R = TInfo->getTypeLoc().getSourceRange();
Mike Stump1eb44332009-09-09 15:08:12 +0000676 return BuildCXXNew(StartLoc, UseGlobal,
Douglas Gregor3433cf72009-05-21 00:00:09 +0000677 PlacementLParen,
Mike Stump1eb44332009-09-09 15:08:12 +0000678 move(PlacementArgs),
Douglas Gregor3433cf72009-05-21 00:00:09 +0000679 PlacementRParen,
680 ParenTypeId,
Mike Stump1eb44332009-09-09 15:08:12 +0000681 AllocType,
Douglas Gregor3433cf72009-05-21 00:00:09 +0000682 D.getSourceRange().getBegin(),
Ted Kremenekf9d5bac2010-06-25 22:48:49 +0000683 R,
Douglas Gregor3433cf72009-05-21 00:00:09 +0000684 Owned(ArraySize),
685 ConstructorLParen,
686 move(ConstructorArgs),
687 ConstructorRParen);
688}
689
Mike Stump1eb44332009-09-09 15:08:12 +0000690Sema::OwningExprResult
Douglas Gregor3433cf72009-05-21 00:00:09 +0000691Sema::BuildCXXNew(SourceLocation StartLoc, bool UseGlobal,
692 SourceLocation PlacementLParen,
693 MultiExprArg PlacementArgs,
694 SourceLocation PlacementRParen,
Mike Stump1eb44332009-09-09 15:08:12 +0000695 bool ParenTypeId,
Douglas Gregor3433cf72009-05-21 00:00:09 +0000696 QualType AllocType,
697 SourceLocation TypeLoc,
698 SourceRange TypeRange,
699 ExprArg ArraySizeE,
700 SourceLocation ConstructorLParen,
701 MultiExprArg ConstructorArgs,
702 SourceLocation ConstructorRParen) {
703 if (CheckAllocatedType(AllocType, TypeLoc, TypeRange))
Sebastian Redlf53597f2009-03-15 17:47:39 +0000704 return ExprError();
Sebastian Redlcee63fb2008-12-02 14:43:59 +0000705
Douglas Gregor3caf04e2010-05-16 16:01:03 +0000706 // Per C++0x [expr.new]p5, the type being constructed may be a
707 // typedef of an array type.
708 if (!ArraySizeE.get()) {
709 if (const ConstantArrayType *Array
710 = Context.getAsConstantArrayType(AllocType)) {
711 ArraySizeE = Owned(new (Context) IntegerLiteral(Array->getSize(),
712 Context.getSizeType(),
713 TypeRange.getEnd()));
714 AllocType = Array->getElementType();
715 }
716 }
Sebastian Redl4c5d3202008-11-21 19:14:01 +0000717
Douglas Gregor3caf04e2010-05-16 16:01:03 +0000718 QualType ResultType = Context.getPointerType(AllocType);
Sebastian Redlcee63fb2008-12-02 14:43:59 +0000719
Sebastian Redl4c5d3202008-11-21 19:14:01 +0000720 // C++ 5.3.4p6: "The expression in a direct-new-declarator shall have integral
721 // or enumeration type with a non-negative value."
Douglas Gregor3433cf72009-05-21 00:00:09 +0000722 Expr *ArraySize = (Expr *)ArraySizeE.get();
Sebastian Redl28507842009-02-26 14:39:58 +0000723 if (ArraySize && !ArraySize->isTypeDependent()) {
Sebastian Redlcee63fb2008-12-02 14:43:59 +0000724 QualType SizeType = ArraySize->getType();
Douglas Gregorc30614b2010-06-29 23:17:37 +0000725
Douglas Gregor2ade35e2010-06-16 00:17:44 +0000726 if (!SizeType->isIntegralOrEnumerationType())
Sebastian Redlf53597f2009-03-15 17:47:39 +0000727 return ExprError(Diag(ArraySize->getSourceRange().getBegin(),
728 diag::err_array_size_not_integral)
729 << SizeType << ArraySize->getSourceRange());
Sebastian Redlcee63fb2008-12-02 14:43:59 +0000730 // Let's see if this is a constant < 0. If so, we reject it out of hand.
731 // We don't care about special rules, so we tell the machinery it's not
732 // evaluated - it gives us a result in more cases.
Sebastian Redl28507842009-02-26 14:39:58 +0000733 if (!ArraySize->isValueDependent()) {
734 llvm::APSInt Value;
735 if (ArraySize->isIntegerConstantExpr(Value, Context, 0, false)) {
736 if (Value < llvm::APSInt(
Anders Carlssonac18b2e2009-09-23 00:37:25 +0000737 llvm::APInt::getNullValue(Value.getBitWidth()),
738 Value.isUnsigned()))
Sebastian Redlf53597f2009-03-15 17:47:39 +0000739 return ExprError(Diag(ArraySize->getSourceRange().getBegin(),
740 diag::err_typecheck_negative_array_size)
741 << ArraySize->getSourceRange());
Sebastian Redl28507842009-02-26 14:39:58 +0000742 }
Sebastian Redlcee63fb2008-12-02 14:43:59 +0000743 }
Anders Carlssonac18b2e2009-09-23 00:37:25 +0000744
Eli Friedman73c39ab2009-10-20 08:27:19 +0000745 ImpCastExprToType(ArraySize, Context.getSizeType(),
746 CastExpr::CK_IntegralCast);
Sebastian Redlcee63fb2008-12-02 14:43:59 +0000747 }
Sebastian Redl4c5d3202008-11-21 19:14:01 +0000748
Sebastian Redl4c5d3202008-11-21 19:14:01 +0000749 FunctionDecl *OperatorNew = 0;
750 FunctionDecl *OperatorDelete = 0;
Sebastian Redlf53597f2009-03-15 17:47:39 +0000751 Expr **PlaceArgs = (Expr**)PlacementArgs.get();
752 unsigned NumPlaceArgs = PlacementArgs.size();
Fariborz Jahanian498429f2009-11-19 18:39:40 +0000753
Sebastian Redl28507842009-02-26 14:39:58 +0000754 if (!AllocType->isDependentType() &&
755 !Expr::hasAnyTypeDependentArguments(PlaceArgs, NumPlaceArgs) &&
756 FindAllocationFunctions(StartLoc,
Sebastian Redl00e68e22009-02-09 18:24:27 +0000757 SourceRange(PlacementLParen, PlacementRParen),
758 UseGlobal, AllocType, ArraySize, PlaceArgs,
759 NumPlaceArgs, OperatorNew, OperatorDelete))
Sebastian Redlf53597f2009-03-15 17:47:39 +0000760 return ExprError();
Fariborz Jahanian048f52a2009-11-24 18:29:37 +0000761 llvm::SmallVector<Expr *, 8> AllPlaceArgs;
Fariborz Jahanian498429f2009-11-19 18:39:40 +0000762 if (OperatorNew) {
763 // Add default arguments, if any.
764 const FunctionProtoType *Proto =
765 OperatorNew->getType()->getAs<FunctionProtoType>();
Fariborz Jahanian4cd1c702009-11-24 19:27:49 +0000766 VariadicCallType CallType =
767 Proto->isVariadic() ? VariadicFunction : VariadicDoesNotApply;
Anders Carlsson28e94832010-05-03 02:07:56 +0000768
769 if (GatherArgumentsForCall(PlacementLParen, OperatorNew,
770 Proto, 1, PlaceArgs, NumPlaceArgs,
771 AllPlaceArgs, CallType))
Fariborz Jahanian048f52a2009-11-24 18:29:37 +0000772 return ExprError();
Fariborz Jahanian498429f2009-11-19 18:39:40 +0000773
Fariborz Jahanian498429f2009-11-19 18:39:40 +0000774 NumPlaceArgs = AllPlaceArgs.size();
775 if (NumPlaceArgs > 0)
776 PlaceArgs = &AllPlaceArgs[0];
777 }
778
Sebastian Redl4c5d3202008-11-21 19:14:01 +0000779 bool Init = ConstructorLParen.isValid();
780 // --- Choosing a constructor ---
Sebastian Redl4c5d3202008-11-21 19:14:01 +0000781 CXXConstructorDecl *Constructor = 0;
Sebastian Redlf53597f2009-03-15 17:47:39 +0000782 Expr **ConsArgs = (Expr**)ConstructorArgs.get();
783 unsigned NumConsArgs = ConstructorArgs.size();
Eli Friedmana8ce9ec2009-11-08 22:15:39 +0000784 ASTOwningVector<&ActionBase::DeleteExpr> ConvertedConstructorArgs(*this);
785
Anders Carlsson48c95012010-05-03 15:45:23 +0000786 // Array 'new' can't have any initializers.
Anders Carlsson55cbd6e2010-05-16 16:24:20 +0000787 if (NumConsArgs && (ResultType->isArrayType() || ArraySize)) {
Anders Carlsson48c95012010-05-03 15:45:23 +0000788 SourceRange InitRange(ConsArgs[0]->getLocStart(),
789 ConsArgs[NumConsArgs - 1]->getLocEnd());
790
791 Diag(StartLoc, diag::err_new_array_init_args) << InitRange;
792 return ExprError();
793 }
794
Douglas Gregor99a2e602009-12-16 01:38:02 +0000795 if (!AllocType->isDependentType() &&
796 !Expr::hasAnyTypeDependentArguments(ConsArgs, NumConsArgs)) {
797 // C++0x [expr.new]p15:
798 // A new-expression that creates an object of type T initializes that
799 // object as follows:
800 InitializationKind Kind
801 // - If the new-initializer is omitted, the object is default-
802 // initialized (8.5); if no initialization is performed,
803 // the object has indeterminate value
804 = !Init? InitializationKind::CreateDefault(TypeLoc)
805 // - Otherwise, the new-initializer is interpreted according to the
806 // initialization rules of 8.5 for direct-initialization.
807 : InitializationKind::CreateDirect(TypeLoc,
808 ConstructorLParen,
809 ConstructorRParen);
810
Douglas Gregor99a2e602009-12-16 01:38:02 +0000811 InitializedEntity Entity
Douglas Gregord6542d82009-12-22 15:35:07 +0000812 = InitializedEntity::InitializeNew(StartLoc, AllocType);
Douglas Gregor99a2e602009-12-16 01:38:02 +0000813 InitializationSequence InitSeq(*this, Entity, Kind, ConsArgs, NumConsArgs);
Douglas Gregor99a2e602009-12-16 01:38:02 +0000814 OwningExprResult FullInit = InitSeq.Perform(*this, Entity, Kind,
815 move(ConstructorArgs));
816 if (FullInit.isInvalid())
817 return ExprError();
818
819 // FullInit is our initializer; walk through it to determine if it's a
820 // constructor call, which CXXNewExpr handles directly.
821 if (Expr *FullInitExpr = (Expr *)FullInit.get()) {
822 if (CXXBindTemporaryExpr *Binder
823 = dyn_cast<CXXBindTemporaryExpr>(FullInitExpr))
824 FullInitExpr = Binder->getSubExpr();
825 if (CXXConstructExpr *Construct
826 = dyn_cast<CXXConstructExpr>(FullInitExpr)) {
827 Constructor = Construct->getConstructor();
828 for (CXXConstructExpr::arg_iterator A = Construct->arg_begin(),
829 AEnd = Construct->arg_end();
830 A != AEnd; ++A)
831 ConvertedConstructorArgs.push_back(A->Retain());
832 } else {
833 // Take the converted initializer.
834 ConvertedConstructorArgs.push_back(FullInit.release());
835 }
836 } else {
837 // No initialization required.
838 }
839
840 // Take the converted arguments and use them for the new expression.
Douglas Gregor39da0b82009-09-09 23:08:42 +0000841 NumConsArgs = ConvertedConstructorArgs.size();
842 ConsArgs = (Expr **)ConvertedConstructorArgs.take();
Sebastian Redl4c5d3202008-11-21 19:14:01 +0000843 }
Douglas Gregor99a2e602009-12-16 01:38:02 +0000844
Douglas Gregor6d908702010-02-26 05:06:18 +0000845 // Mark the new and delete operators as referenced.
846 if (OperatorNew)
847 MarkDeclarationReferenced(StartLoc, OperatorNew);
848 if (OperatorDelete)
849 MarkDeclarationReferenced(StartLoc, OperatorDelete);
850
Sebastian Redl4c5d3202008-11-21 19:14:01 +0000851 // FIXME: Also check that the destructor is accessible. (C++ 5.3.4p16)
Douglas Gregor089407b2009-10-17 21:40:42 +0000852
Sebastian Redlf53597f2009-03-15 17:47:39 +0000853 PlacementArgs.release();
854 ConstructorArgs.release();
Douglas Gregor3433cf72009-05-21 00:00:09 +0000855 ArraySizeE.release();
Ted Kremenekf9d5bac2010-06-25 22:48:49 +0000856
857 // FIXME: The TypeSourceInfo should also be included in CXXNewExpr.
Ted Kremenekad7fe862010-02-11 22:51:03 +0000858 return Owned(new (Context) CXXNewExpr(Context, UseGlobal, OperatorNew,
859 PlaceArgs, NumPlaceArgs, ParenTypeId,
860 ArraySize, Constructor, Init,
861 ConsArgs, NumConsArgs, OperatorDelete,
862 ResultType, StartLoc,
863 Init ? ConstructorRParen :
Ted Kremenekf9d5bac2010-06-25 22:48:49 +0000864 TypeRange.getEnd()));
Sebastian Redl4c5d3202008-11-21 19:14:01 +0000865}
866
867/// CheckAllocatedType - Checks that a type is suitable as the allocated type
868/// in a new-expression.
869/// dimension off and stores the size expression in ArraySize.
Douglas Gregor3433cf72009-05-21 00:00:09 +0000870bool Sema::CheckAllocatedType(QualType AllocType, SourceLocation Loc,
Mike Stump1eb44332009-09-09 15:08:12 +0000871 SourceRange R) {
Sebastian Redl4c5d3202008-11-21 19:14:01 +0000872 // C++ 5.3.4p1: "[The] type shall be a complete object type, but not an
873 // abstract class type or array thereof.
Douglas Gregore7450f52009-03-24 19:52:54 +0000874 if (AllocType->isFunctionType())
Douglas Gregor3433cf72009-05-21 00:00:09 +0000875 return Diag(Loc, diag::err_bad_new_type)
876 << AllocType << 0 << R;
Douglas Gregore7450f52009-03-24 19:52:54 +0000877 else if (AllocType->isReferenceType())
Douglas Gregor3433cf72009-05-21 00:00:09 +0000878 return Diag(Loc, diag::err_bad_new_type)
879 << AllocType << 1 << R;
Douglas Gregore7450f52009-03-24 19:52:54 +0000880 else if (!AllocType->isDependentType() &&
Douglas Gregor3433cf72009-05-21 00:00:09 +0000881 RequireCompleteType(Loc, AllocType,
Anders Carlssonb7906612009-08-26 23:45:07 +0000882 PDiag(diag::err_new_incomplete_type)
883 << R))
Sebastian Redl4c5d3202008-11-21 19:14:01 +0000884 return true;
Douglas Gregor3433cf72009-05-21 00:00:09 +0000885 else if (RequireNonAbstractType(Loc, AllocType,
Douglas Gregore7450f52009-03-24 19:52:54 +0000886 diag::err_allocation_of_abstract_type))
887 return true;
Sebastian Redl4c5d3202008-11-21 19:14:01 +0000888
Sebastian Redl4c5d3202008-11-21 19:14:01 +0000889 return false;
890}
891
Douglas Gregor6d908702010-02-26 05:06:18 +0000892/// \brief Determine whether the given function is a non-placement
893/// deallocation function.
894static bool isNonPlacementDeallocationFunction(FunctionDecl *FD) {
895 if (FD->isInvalidDecl())
896 return false;
897
898 if (CXXMethodDecl *Method = dyn_cast<CXXMethodDecl>(FD))
899 return Method->isUsualDeallocationFunction();
900
901 return ((FD->getOverloadedOperator() == OO_Delete ||
902 FD->getOverloadedOperator() == OO_Array_Delete) &&
903 FD->getNumParams() == 1);
904}
905
Sebastian Redlb5a57a62008-12-03 20:26:15 +0000906/// FindAllocationFunctions - Finds the overloads of operator new and delete
907/// that are appropriate for the allocation.
Sebastian Redl00e68e22009-02-09 18:24:27 +0000908bool Sema::FindAllocationFunctions(SourceLocation StartLoc, SourceRange Range,
909 bool UseGlobal, QualType AllocType,
910 bool IsArray, Expr **PlaceArgs,
911 unsigned NumPlaceArgs,
Sebastian Redlb5a57a62008-12-03 20:26:15 +0000912 FunctionDecl *&OperatorNew,
Mike Stump1eb44332009-09-09 15:08:12 +0000913 FunctionDecl *&OperatorDelete) {
Sebastian Redlb5a57a62008-12-03 20:26:15 +0000914 // --- Choosing an allocation function ---
915 // C++ 5.3.4p8 - 14 & 18
916 // 1) If UseGlobal is true, only look in the global scope. Else, also look
917 // in the scope of the allocated class.
918 // 2) If an array size is given, look for operator new[], else look for
919 // operator new.
920 // 3) The first argument is always size_t. Append the arguments from the
921 // placement form.
Sebastian Redlb5a57a62008-12-03 20:26:15 +0000922
923 llvm::SmallVector<Expr*, 8> AllocArgs(1 + NumPlaceArgs);
924 // We don't care about the actual value of this argument.
925 // FIXME: Should the Sema create the expression and embed it in the syntax
926 // tree? Or should the consumer just recalculate the value?
Anders Carlssond67c4c32009-08-16 20:29:29 +0000927 IntegerLiteral Size(llvm::APInt::getNullValue(
928 Context.Target.getPointerWidth(0)),
929 Context.getSizeType(),
930 SourceLocation());
931 AllocArgs[0] = &Size;
Sebastian Redlb5a57a62008-12-03 20:26:15 +0000932 std::copy(PlaceArgs, PlaceArgs + NumPlaceArgs, AllocArgs.begin() + 1);
933
Douglas Gregor6d908702010-02-26 05:06:18 +0000934 // C++ [expr.new]p8:
935 // If the allocated type is a non-array type, the allocation
936 // function’s name is operator new and the deallocation function’s
937 // name is operator delete. If the allocated type is an array
938 // type, the allocation function’s name is operator new[] and the
939 // deallocation function’s name is operator delete[].
Sebastian Redlb5a57a62008-12-03 20:26:15 +0000940 DeclarationName NewName = Context.DeclarationNames.getCXXOperatorName(
941 IsArray ? OO_Array_New : OO_New);
Douglas Gregor6d908702010-02-26 05:06:18 +0000942 DeclarationName DeleteName = Context.DeclarationNames.getCXXOperatorName(
943 IsArray ? OO_Array_Delete : OO_Delete);
944
Sebastian Redlb5a57a62008-12-03 20:26:15 +0000945 if (AllocType->isRecordType() && !UseGlobal) {
Mike Stump1eb44332009-09-09 15:08:12 +0000946 CXXRecordDecl *Record
Ted Kremenek6217b802009-07-29 21:53:49 +0000947 = cast<CXXRecordDecl>(AllocType->getAs<RecordType>()->getDecl());
Sebastian Redl00e68e22009-02-09 18:24:27 +0000948 if (FindAllocationOverload(StartLoc, Range, NewName, &AllocArgs[0],
Sebastian Redl7f662392008-12-04 22:20:51 +0000949 AllocArgs.size(), Record, /*AllowMissing=*/true,
950 OperatorNew))
Sebastian Redlb5a57a62008-12-03 20:26:15 +0000951 return true;
Sebastian Redlb5a57a62008-12-03 20:26:15 +0000952 }
953 if (!OperatorNew) {
954 // Didn't find a member overload. Look for a global one.
955 DeclareGlobalNewDelete();
Sebastian Redl7f662392008-12-04 22:20:51 +0000956 DeclContext *TUDecl = Context.getTranslationUnitDecl();
Sebastian Redl00e68e22009-02-09 18:24:27 +0000957 if (FindAllocationOverload(StartLoc, Range, NewName, &AllocArgs[0],
Sebastian Redl7f662392008-12-04 22:20:51 +0000958 AllocArgs.size(), TUDecl, /*AllowMissing=*/false,
959 OperatorNew))
Sebastian Redlb5a57a62008-12-03 20:26:15 +0000960 return true;
Sebastian Redlb5a57a62008-12-03 20:26:15 +0000961 }
962
John McCall9c82afc2010-04-20 02:18:25 +0000963 // We don't need an operator delete if we're running under
964 // -fno-exceptions.
965 if (!getLangOptions().Exceptions) {
966 OperatorDelete = 0;
967 return false;
968 }
969
Anders Carlssond9583892009-05-31 20:26:12 +0000970 // FindAllocationOverload can change the passed in arguments, so we need to
971 // copy them back.
972 if (NumPlaceArgs > 0)
973 std::copy(&AllocArgs[1], AllocArgs.end(), PlaceArgs);
Mike Stump1eb44332009-09-09 15:08:12 +0000974
Douglas Gregor6d908702010-02-26 05:06:18 +0000975 // C++ [expr.new]p19:
976 //
977 // If the new-expression begins with a unary :: operator, the
978 // deallocation function’s name is looked up in the global
979 // scope. Otherwise, if the allocated type is a class type T or an
980 // array thereof, the deallocation function’s name is looked up in
981 // the scope of T. If this lookup fails to find the name, or if
982 // the allocated type is not a class type or array thereof, the
983 // deallocation function’s name is looked up in the global scope.
984 LookupResult FoundDelete(*this, DeleteName, StartLoc, LookupOrdinaryName);
985 if (AllocType->isRecordType() && !UseGlobal) {
986 CXXRecordDecl *RD
987 = cast<CXXRecordDecl>(AllocType->getAs<RecordType>()->getDecl());
988 LookupQualifiedName(FoundDelete, RD);
989 }
John McCall90c8c572010-03-18 08:19:33 +0000990 if (FoundDelete.isAmbiguous())
991 return true; // FIXME: clean up expressions?
Douglas Gregor6d908702010-02-26 05:06:18 +0000992
993 if (FoundDelete.empty()) {
994 DeclareGlobalNewDelete();
995 LookupQualifiedName(FoundDelete, Context.getTranslationUnitDecl());
996 }
997
998 FoundDelete.suppressDiagnostics();
John McCall9aa472c2010-03-19 07:35:19 +0000999
1000 llvm::SmallVector<std::pair<DeclAccessPair,FunctionDecl*>, 2> Matches;
1001
John McCall90c8c572010-03-18 08:19:33 +00001002 if (NumPlaceArgs > 0) {
Douglas Gregor6d908702010-02-26 05:06:18 +00001003 // C++ [expr.new]p20:
1004 // A declaration of a placement deallocation function matches the
1005 // declaration of a placement allocation function if it has the
1006 // same number of parameters and, after parameter transformations
1007 // (8.3.5), all parameter types except the first are
1008 // identical. [...]
1009 //
1010 // To perform this comparison, we compute the function type that
1011 // the deallocation function should have, and use that type both
1012 // for template argument deduction and for comparison purposes.
1013 QualType ExpectedFunctionType;
1014 {
1015 const FunctionProtoType *Proto
1016 = OperatorNew->getType()->getAs<FunctionProtoType>();
1017 llvm::SmallVector<QualType, 4> ArgTypes;
1018 ArgTypes.push_back(Context.VoidPtrTy);
1019 for (unsigned I = 1, N = Proto->getNumArgs(); I < N; ++I)
1020 ArgTypes.push_back(Proto->getArgType(I));
1021
1022 ExpectedFunctionType
1023 = Context.getFunctionType(Context.VoidTy, ArgTypes.data(),
1024 ArgTypes.size(),
1025 Proto->isVariadic(),
Rafael Espindola264ba482010-03-30 20:24:48 +00001026 0, false, false, 0, 0,
1027 FunctionType::ExtInfo());
Douglas Gregor6d908702010-02-26 05:06:18 +00001028 }
1029
1030 for (LookupResult::iterator D = FoundDelete.begin(),
1031 DEnd = FoundDelete.end();
1032 D != DEnd; ++D) {
1033 FunctionDecl *Fn = 0;
1034 if (FunctionTemplateDecl *FnTmpl
1035 = dyn_cast<FunctionTemplateDecl>((*D)->getUnderlyingDecl())) {
1036 // Perform template argument deduction to try to match the
1037 // expected function type.
1038 TemplateDeductionInfo Info(Context, StartLoc);
1039 if (DeduceTemplateArguments(FnTmpl, 0, ExpectedFunctionType, Fn, Info))
1040 continue;
1041 } else
1042 Fn = cast<FunctionDecl>((*D)->getUnderlyingDecl());
1043
1044 if (Context.hasSameType(Fn->getType(), ExpectedFunctionType))
John McCall9aa472c2010-03-19 07:35:19 +00001045 Matches.push_back(std::make_pair(D.getPair(), Fn));
Douglas Gregor6d908702010-02-26 05:06:18 +00001046 }
1047 } else {
1048 // C++ [expr.new]p20:
1049 // [...] Any non-placement deallocation function matches a
1050 // non-placement allocation function. [...]
1051 for (LookupResult::iterator D = FoundDelete.begin(),
1052 DEnd = FoundDelete.end();
1053 D != DEnd; ++D) {
1054 if (FunctionDecl *Fn = dyn_cast<FunctionDecl>((*D)->getUnderlyingDecl()))
1055 if (isNonPlacementDeallocationFunction(Fn))
John McCall9aa472c2010-03-19 07:35:19 +00001056 Matches.push_back(std::make_pair(D.getPair(), Fn));
Douglas Gregor6d908702010-02-26 05:06:18 +00001057 }
1058 }
1059
1060 // C++ [expr.new]p20:
1061 // [...] If the lookup finds a single matching deallocation
1062 // function, that function will be called; otherwise, no
1063 // deallocation function will be called.
1064 if (Matches.size() == 1) {
John McCall9aa472c2010-03-19 07:35:19 +00001065 OperatorDelete = Matches[0].second;
Douglas Gregor6d908702010-02-26 05:06:18 +00001066
1067 // C++0x [expr.new]p20:
1068 // If the lookup finds the two-parameter form of a usual
1069 // deallocation function (3.7.4.2) and that function, considered
1070 // as a placement deallocation function, would have been
1071 // selected as a match for the allocation function, the program
1072 // is ill-formed.
1073 if (NumPlaceArgs && getLangOptions().CPlusPlus0x &&
1074 isNonPlacementDeallocationFunction(OperatorDelete)) {
1075 Diag(StartLoc, diag::err_placement_new_non_placement_delete)
1076 << SourceRange(PlaceArgs[0]->getLocStart(),
1077 PlaceArgs[NumPlaceArgs - 1]->getLocEnd());
1078 Diag(OperatorDelete->getLocation(), diag::note_previous_decl)
1079 << DeleteName;
John McCall90c8c572010-03-18 08:19:33 +00001080 } else {
1081 CheckAllocationAccess(StartLoc, Range, FoundDelete.getNamingClass(),
John McCall9aa472c2010-03-19 07:35:19 +00001082 Matches[0].first);
Douglas Gregor6d908702010-02-26 05:06:18 +00001083 }
1084 }
1085
Sebastian Redlb5a57a62008-12-03 20:26:15 +00001086 return false;
1087}
1088
Sebastian Redl7f662392008-12-04 22:20:51 +00001089/// FindAllocationOverload - Find an fitting overload for the allocation
1090/// function in the specified scope.
Sebastian Redl00e68e22009-02-09 18:24:27 +00001091bool Sema::FindAllocationOverload(SourceLocation StartLoc, SourceRange Range,
1092 DeclarationName Name, Expr** Args,
1093 unsigned NumArgs, DeclContext *Ctx,
Mike Stump1eb44332009-09-09 15:08:12 +00001094 bool AllowMissing, FunctionDecl *&Operator) {
John McCalla24dc2e2009-11-17 02:14:36 +00001095 LookupResult R(*this, Name, StartLoc, LookupOrdinaryName);
1096 LookupQualifiedName(R, Ctx);
John McCallf36e02d2009-10-09 21:13:30 +00001097 if (R.empty()) {
Sebastian Redl7f662392008-12-04 22:20:51 +00001098 if (AllowMissing)
1099 return false;
Sebastian Redl7f662392008-12-04 22:20:51 +00001100 return Diag(StartLoc, diag::err_ovl_no_viable_function_in_call)
Chris Lattner4330d652009-02-17 07:29:20 +00001101 << Name << Range;
Sebastian Redl7f662392008-12-04 22:20:51 +00001102 }
1103
John McCall90c8c572010-03-18 08:19:33 +00001104 if (R.isAmbiguous())
1105 return true;
1106
1107 R.suppressDiagnostics();
John McCallf36e02d2009-10-09 21:13:30 +00001108
John McCall5769d612010-02-08 23:07:23 +00001109 OverloadCandidateSet Candidates(StartLoc);
Douglas Gregor5d64e5b2009-09-30 00:03:47 +00001110 for (LookupResult::iterator Alloc = R.begin(), AllocEnd = R.end();
1111 Alloc != AllocEnd; ++Alloc) {
Douglas Gregor3fc749d2008-12-23 00:26:44 +00001112 // Even member operator new/delete are implicitly treated as
1113 // static, so don't use AddMemberCandidate.
John McCall9aa472c2010-03-19 07:35:19 +00001114 NamedDecl *D = (*Alloc)->getUnderlyingDecl();
Chandler Carruth4a73ea92010-02-03 11:02:14 +00001115
John McCall9aa472c2010-03-19 07:35:19 +00001116 if (FunctionTemplateDecl *FnTemplate = dyn_cast<FunctionTemplateDecl>(D)) {
1117 AddTemplateOverloadCandidate(FnTemplate, Alloc.getPair(),
Chandler Carruth4a73ea92010-02-03 11:02:14 +00001118 /*ExplicitTemplateArgs=*/0, Args, NumArgs,
1119 Candidates,
1120 /*SuppressUserConversions=*/false);
Douglas Gregor90916562009-09-29 18:16:17 +00001121 continue;
Chandler Carruth4a73ea92010-02-03 11:02:14 +00001122 }
1123
John McCall9aa472c2010-03-19 07:35:19 +00001124 FunctionDecl *Fn = cast<FunctionDecl>(D);
1125 AddOverloadCandidate(Fn, Alloc.getPair(), Args, NumArgs, Candidates,
Chandler Carruth4a73ea92010-02-03 11:02:14 +00001126 /*SuppressUserConversions=*/false);
Sebastian Redl7f662392008-12-04 22:20:51 +00001127 }
1128
1129 // Do the resolution.
1130 OverloadCandidateSet::iterator Best;
Douglas Gregore0762c92009-06-19 23:52:42 +00001131 switch(BestViableFunction(Candidates, StartLoc, Best)) {
Sebastian Redl7f662392008-12-04 22:20:51 +00001132 case OR_Success: {
1133 // Got one!
1134 FunctionDecl *FnDecl = Best->Function;
1135 // The first argument is size_t, and the first parameter must be size_t,
1136 // too. This is checked on declaration and can be assumed. (It can't be
1137 // asserted on, though, since invalid decls are left in there.)
John McCall90c8c572010-03-18 08:19:33 +00001138 // Watch out for variadic allocator function.
Fariborz Jahanian048f52a2009-11-24 18:29:37 +00001139 unsigned NumArgsInFnDecl = FnDecl->getNumParams();
1140 for (unsigned i = 0; (i < NumArgs && i < NumArgsInFnDecl); ++i) {
Douglas Gregor29ecaba2010-03-26 20:35:59 +00001141 OwningExprResult Result
1142 = PerformCopyInitialization(InitializedEntity::InitializeParameter(
1143 FnDecl->getParamDecl(i)),
1144 SourceLocation(),
1145 Owned(Args[i]->Retain()));
1146 if (Result.isInvalid())
Sebastian Redl7f662392008-12-04 22:20:51 +00001147 return true;
Douglas Gregor29ecaba2010-03-26 20:35:59 +00001148
1149 Args[i] = Result.takeAs<Expr>();
Sebastian Redl7f662392008-12-04 22:20:51 +00001150 }
1151 Operator = FnDecl;
John McCall9aa472c2010-03-19 07:35:19 +00001152 CheckAllocationAccess(StartLoc, Range, R.getNamingClass(), Best->FoundDecl);
Sebastian Redl7f662392008-12-04 22:20:51 +00001153 return false;
1154 }
1155
1156 case OR_No_Viable_Function:
Sebastian Redl7f662392008-12-04 22:20:51 +00001157 Diag(StartLoc, diag::err_ovl_no_viable_function_in_call)
Chris Lattner4330d652009-02-17 07:29:20 +00001158 << Name << Range;
John McCallcbce6062010-01-12 07:18:19 +00001159 PrintOverloadCandidates(Candidates, OCD_AllCandidates, Args, NumArgs);
Sebastian Redl7f662392008-12-04 22:20:51 +00001160 return true;
1161
1162 case OR_Ambiguous:
Sebastian Redl7f662392008-12-04 22:20:51 +00001163 Diag(StartLoc, diag::err_ovl_ambiguous_call)
Sebastian Redl00e68e22009-02-09 18:24:27 +00001164 << Name << Range;
John McCallcbce6062010-01-12 07:18:19 +00001165 PrintOverloadCandidates(Candidates, OCD_ViableCandidates, Args, NumArgs);
Sebastian Redl7f662392008-12-04 22:20:51 +00001166 return true;
Douglas Gregor48f3bb92009-02-18 21:56:37 +00001167
1168 case OR_Deleted:
1169 Diag(StartLoc, diag::err_ovl_deleted_call)
1170 << Best->Function->isDeleted()
1171 << Name << Range;
John McCallcbce6062010-01-12 07:18:19 +00001172 PrintOverloadCandidates(Candidates, OCD_AllCandidates, Args, NumArgs);
Douglas Gregor48f3bb92009-02-18 21:56:37 +00001173 return true;
Sebastian Redl7f662392008-12-04 22:20:51 +00001174 }
1175 assert(false && "Unreachable, bad result from BestViableFunction");
1176 return true;
1177}
1178
1179
Sebastian Redlb5a57a62008-12-03 20:26:15 +00001180/// DeclareGlobalNewDelete - Declare the global forms of operator new and
1181/// delete. These are:
1182/// @code
1183/// void* operator new(std::size_t) throw(std::bad_alloc);
1184/// void* operator new[](std::size_t) throw(std::bad_alloc);
1185/// void operator delete(void *) throw();
1186/// void operator delete[](void *) throw();
1187/// @endcode
1188/// Note that the placement and nothrow forms of new are *not* implicitly
1189/// declared. Their use requires including \<new\>.
Mike Stump1eb44332009-09-09 15:08:12 +00001190void Sema::DeclareGlobalNewDelete() {
Sebastian Redlb5a57a62008-12-03 20:26:15 +00001191 if (GlobalNewDeleteDeclared)
1192 return;
Douglas Gregor7adb10f2009-09-15 22:30:29 +00001193
1194 // C++ [basic.std.dynamic]p2:
1195 // [...] The following allocation and deallocation functions (18.4) are
1196 // implicitly declared in global scope in each translation unit of a
1197 // program
1198 //
1199 // void* operator new(std::size_t) throw(std::bad_alloc);
1200 // void* operator new[](std::size_t) throw(std::bad_alloc);
1201 // void operator delete(void*) throw();
1202 // void operator delete[](void*) throw();
1203 //
1204 // These implicit declarations introduce only the function names operator
1205 // new, operator new[], operator delete, operator delete[].
1206 //
1207 // Here, we need to refer to std::bad_alloc, so we will implicitly declare
1208 // "std" or "bad_alloc" as necessary to form the exception specification.
1209 // However, we do not make these implicit declarations visible to name
1210 // lookup.
Douglas Gregor7adb10f2009-09-15 22:30:29 +00001211 if (!StdBadAlloc) {
1212 // The "std::bad_alloc" class has not yet been declared, so build it
1213 // implicitly.
Abramo Bagnara465d41b2010-05-11 21:36:43 +00001214 StdBadAlloc = CXXRecordDecl::Create(Context, TTK_Class,
Douglas Gregor66992202010-06-29 17:53:46 +00001215 getStdNamespace(),
Douglas Gregor7adb10f2009-09-15 22:30:29 +00001216 SourceLocation(),
1217 &PP.getIdentifierTable().get("bad_alloc"),
1218 SourceLocation(), 0);
1219 StdBadAlloc->setImplicit(true);
1220 }
1221
Sebastian Redlb5a57a62008-12-03 20:26:15 +00001222 GlobalNewDeleteDeclared = true;
1223
1224 QualType VoidPtr = Context.getPointerType(Context.VoidTy);
1225 QualType SizeT = Context.getSizeType();
Nuno Lopesfc284482009-12-16 16:59:22 +00001226 bool AssumeSaneOperatorNew = getLangOptions().AssumeSaneOperatorNew;
Sebastian Redlb5a57a62008-12-03 20:26:15 +00001227
Sebastian Redlb5a57a62008-12-03 20:26:15 +00001228 DeclareGlobalAllocationFunction(
1229 Context.DeclarationNames.getCXXOperatorName(OO_New),
Nuno Lopesfc284482009-12-16 16:59:22 +00001230 VoidPtr, SizeT, AssumeSaneOperatorNew);
Sebastian Redlb5a57a62008-12-03 20:26:15 +00001231 DeclareGlobalAllocationFunction(
1232 Context.DeclarationNames.getCXXOperatorName(OO_Array_New),
Nuno Lopesfc284482009-12-16 16:59:22 +00001233 VoidPtr, SizeT, AssumeSaneOperatorNew);
Sebastian Redlb5a57a62008-12-03 20:26:15 +00001234 DeclareGlobalAllocationFunction(
1235 Context.DeclarationNames.getCXXOperatorName(OO_Delete),
1236 Context.VoidTy, VoidPtr);
1237 DeclareGlobalAllocationFunction(
1238 Context.DeclarationNames.getCXXOperatorName(OO_Array_Delete),
1239 Context.VoidTy, VoidPtr);
1240}
1241
1242/// DeclareGlobalAllocationFunction - Declares a single implicit global
1243/// allocation function if it doesn't already exist.
1244void Sema::DeclareGlobalAllocationFunction(DeclarationName Name,
Nuno Lopesfc284482009-12-16 16:59:22 +00001245 QualType Return, QualType Argument,
1246 bool AddMallocAttr) {
Sebastian Redlb5a57a62008-12-03 20:26:15 +00001247 DeclContext *GlobalCtx = Context.getTranslationUnitDecl();
1248
1249 // Check if this function is already declared.
Douglas Gregor6ed40e32008-12-23 21:05:05 +00001250 {
Douglas Gregor5cc37092008-12-23 22:05:29 +00001251 DeclContext::lookup_iterator Alloc, AllocEnd;
Argyrios Kyrtzidis17945a02009-06-30 02:36:12 +00001252 for (llvm::tie(Alloc, AllocEnd) = GlobalCtx->lookup(Name);
Douglas Gregor6ed40e32008-12-23 21:05:05 +00001253 Alloc != AllocEnd; ++Alloc) {
Chandler Carruth4a73ea92010-02-03 11:02:14 +00001254 // Only look at non-template functions, as it is the predefined,
1255 // non-templated allocation function we are trying to declare here.
1256 if (FunctionDecl *Func = dyn_cast<FunctionDecl>(*Alloc)) {
1257 QualType InitialParamType =
Douglas Gregor6e790ab2009-12-22 23:42:49 +00001258 Context.getCanonicalType(
Chandler Carruth4a73ea92010-02-03 11:02:14 +00001259 Func->getParamDecl(0)->getType().getUnqualifiedType());
1260 // FIXME: Do we need to check for default arguments here?
1261 if (Func->getNumParams() == 1 && InitialParamType == Argument)
1262 return;
1263 }
Sebastian Redlb5a57a62008-12-03 20:26:15 +00001264 }
1265 }
1266
Douglas Gregor7adb10f2009-09-15 22:30:29 +00001267 QualType BadAllocType;
1268 bool HasBadAllocExceptionSpec
1269 = (Name.getCXXOverloadedOperator() == OO_New ||
1270 Name.getCXXOverloadedOperator() == OO_Array_New);
1271 if (HasBadAllocExceptionSpec) {
1272 assert(StdBadAlloc && "Must have std::bad_alloc declared");
1273 BadAllocType = Context.getTypeDeclType(StdBadAlloc);
1274 }
1275
1276 QualType FnType = Context.getFunctionType(Return, &Argument, 1, false, 0,
1277 true, false,
1278 HasBadAllocExceptionSpec? 1 : 0,
Rafael Espindola264ba482010-03-30 20:24:48 +00001279 &BadAllocType,
1280 FunctionType::ExtInfo());
Sebastian Redlb5a57a62008-12-03 20:26:15 +00001281 FunctionDecl *Alloc =
1282 FunctionDecl::Create(Context, GlobalCtx, SourceLocation(), Name,
Douglas Gregor16573fa2010-04-19 22:54:31 +00001283 FnType, /*TInfo=*/0, FunctionDecl::None,
1284 FunctionDecl::None, false, true);
Sebastian Redlb5a57a62008-12-03 20:26:15 +00001285 Alloc->setImplicit();
Nuno Lopesfc284482009-12-16 16:59:22 +00001286
1287 if (AddMallocAttr)
1288 Alloc->addAttr(::new (Context) MallocAttr());
1289
Sebastian Redlb5a57a62008-12-03 20:26:15 +00001290 ParmVarDecl *Param = ParmVarDecl::Create(Context, Alloc, SourceLocation(),
John McCalla93c9342009-12-07 02:54:59 +00001291 0, Argument, /*TInfo=*/0,
Douglas Gregor16573fa2010-04-19 22:54:31 +00001292 VarDecl::None,
Argyrios Kyrtzidisa1d56622009-08-19 01:27:57 +00001293 VarDecl::None, 0);
Douglas Gregor838db382010-02-11 01:19:42 +00001294 Alloc->setParams(&Param, 1);
Sebastian Redlb5a57a62008-12-03 20:26:15 +00001295
Douglas Gregor6ed40e32008-12-23 21:05:05 +00001296 // FIXME: Also add this declaration to the IdentifierResolver, but
1297 // make sure it is at the end of the chain to coincide with the
1298 // global scope.
Argyrios Kyrtzidis17945a02009-06-30 02:36:12 +00001299 ((DeclContext *)TUScope->getEntity())->addDecl(Alloc);
Sebastian Redlb5a57a62008-12-03 20:26:15 +00001300}
1301
Anders Carlsson78f74552009-11-15 18:45:20 +00001302bool Sema::FindDeallocationFunction(SourceLocation StartLoc, CXXRecordDecl *RD,
1303 DeclarationName Name,
Anders Carlsson5ec02ae2009-12-02 17:15:43 +00001304 FunctionDecl* &Operator) {
John McCalla24dc2e2009-11-17 02:14:36 +00001305 LookupResult Found(*this, Name, StartLoc, LookupOrdinaryName);
Anders Carlsson78f74552009-11-15 18:45:20 +00001306 // Try to find operator delete/operator delete[] in class scope.
John McCalla24dc2e2009-11-17 02:14:36 +00001307 LookupQualifiedName(Found, RD);
Anders Carlsson78f74552009-11-15 18:45:20 +00001308
John McCalla24dc2e2009-11-17 02:14:36 +00001309 if (Found.isAmbiguous())
Anders Carlsson78f74552009-11-15 18:45:20 +00001310 return true;
Anders Carlsson78f74552009-11-15 18:45:20 +00001311
Chandler Carruth23893242010-06-28 00:30:51 +00001312 Found.suppressDiagnostics();
1313
Anders Carlsson78f74552009-11-15 18:45:20 +00001314 for (LookupResult::iterator F = Found.begin(), FEnd = Found.end();
1315 F != FEnd; ++F) {
1316 if (CXXMethodDecl *Delete = dyn_cast<CXXMethodDecl>(*F))
1317 if (Delete->isUsualDeallocationFunction()) {
1318 Operator = Delete;
Chandler Carruth23893242010-06-28 00:30:51 +00001319 CheckAllocationAccess(StartLoc, SourceRange(), Found.getNamingClass(),
1320 F.getPair());
Anders Carlsson78f74552009-11-15 18:45:20 +00001321 return false;
1322 }
1323 }
1324
1325 // We did find operator delete/operator delete[] declarations, but
1326 // none of them were suitable.
1327 if (!Found.empty()) {
1328 Diag(StartLoc, diag::err_no_suitable_delete_member_function_found)
1329 << Name << RD;
1330
1331 for (LookupResult::iterator F = Found.begin(), FEnd = Found.end();
1332 F != FEnd; ++F) {
Douglas Gregorb0fd4832010-04-25 20:55:08 +00001333 Diag((*F)->getLocation(), diag::note_member_declared_here)
Anders Carlsson78f74552009-11-15 18:45:20 +00001334 << Name;
1335 }
1336
1337 return true;
1338 }
1339
1340 // Look for a global declaration.
1341 DeclareGlobalNewDelete();
1342 DeclContext *TUDecl = Context.getTranslationUnitDecl();
1343
1344 CXXNullPtrLiteralExpr Null(Context.VoidPtrTy, SourceLocation());
1345 Expr* DeallocArgs[1];
1346 DeallocArgs[0] = &Null;
1347 if (FindAllocationOverload(StartLoc, SourceRange(), Name,
1348 DeallocArgs, 1, TUDecl, /*AllowMissing=*/false,
1349 Operator))
1350 return true;
1351
1352 assert(Operator && "Did not find a deallocation function!");
1353 return false;
1354}
1355
Sebastian Redl4c5d3202008-11-21 19:14:01 +00001356/// ActOnCXXDelete - Parsed a C++ 'delete' expression (C++ 5.3.5), as in:
1357/// @code ::delete ptr; @endcode
1358/// or
1359/// @code delete [] ptr; @endcode
Sebastian Redlf53597f2009-03-15 17:47:39 +00001360Action::OwningExprResult
Sebastian Redl4c5d3202008-11-21 19:14:01 +00001361Sema::ActOnCXXDelete(SourceLocation StartLoc, bool UseGlobal,
Mike Stump1eb44332009-09-09 15:08:12 +00001362 bool ArrayForm, ExprArg Operand) {
Douglas Gregor9cd9f3f2009-09-09 23:39:55 +00001363 // C++ [expr.delete]p1:
1364 // The operand shall have a pointer type, or a class type having a single
1365 // conversion function to a pointer type. The result has type void.
1366 //
Sebastian Redl4c5d3202008-11-21 19:14:01 +00001367 // DR599 amends "pointer type" to "pointer to object type" in both cases.
1368
Anders Carlssond67c4c32009-08-16 20:29:29 +00001369 FunctionDecl *OperatorDelete = 0;
Mike Stump1eb44332009-09-09 15:08:12 +00001370
Sebastian Redlf53597f2009-03-15 17:47:39 +00001371 Expr *Ex = (Expr *)Operand.get();
Sebastian Redl28507842009-02-26 14:39:58 +00001372 if (!Ex->isTypeDependent()) {
1373 QualType Type = Ex->getType();
Sebastian Redl4c5d3202008-11-21 19:14:01 +00001374
Douglas Gregor9cd9f3f2009-09-09 23:39:55 +00001375 if (const RecordType *Record = Type->getAs<RecordType>()) {
John McCall32daa422010-03-31 01:36:47 +00001376 llvm::SmallVector<CXXConversionDecl*, 4> ObjectPtrConversions;
1377
Fariborz Jahanian53462782009-09-11 21:44:33 +00001378 CXXRecordDecl *RD = cast<CXXRecordDecl>(Record->getDecl());
John McCall32daa422010-03-31 01:36:47 +00001379 const UnresolvedSetImpl *Conversions = RD->getVisibleConversionFunctions();
John McCalleec51cf2010-01-20 00:46:10 +00001380 for (UnresolvedSetImpl::iterator I = Conversions->begin(),
John McCallba135432009-11-21 08:51:07 +00001381 E = Conversions->end(); I != E; ++I) {
John McCall32daa422010-03-31 01:36:47 +00001382 NamedDecl *D = I.getDecl();
1383 if (isa<UsingShadowDecl>(D))
1384 D = cast<UsingShadowDecl>(D)->getTargetDecl();
1385
Douglas Gregor9cd9f3f2009-09-09 23:39:55 +00001386 // Skip over templated conversion functions; they aren't considered.
John McCall32daa422010-03-31 01:36:47 +00001387 if (isa<FunctionTemplateDecl>(D))
Douglas Gregor9cd9f3f2009-09-09 23:39:55 +00001388 continue;
1389
John McCall32daa422010-03-31 01:36:47 +00001390 CXXConversionDecl *Conv = cast<CXXConversionDecl>(D);
Douglas Gregor9cd9f3f2009-09-09 23:39:55 +00001391
1392 QualType ConvType = Conv->getConversionType().getNonReferenceType();
1393 if (const PointerType *ConvPtrType = ConvType->getAs<PointerType>())
1394 if (ConvPtrType->getPointeeType()->isObjectType())
Fariborz Jahanian8b915e72009-09-15 22:15:23 +00001395 ObjectPtrConversions.push_back(Conv);
Douglas Gregor9cd9f3f2009-09-09 23:39:55 +00001396 }
Fariborz Jahanian8b915e72009-09-15 22:15:23 +00001397 if (ObjectPtrConversions.size() == 1) {
1398 // We have a single conversion to a pointer-to-object type. Perform
1399 // that conversion.
John McCall32daa422010-03-31 01:36:47 +00001400 // TODO: don't redo the conversion calculation.
Fariborz Jahanian8b915e72009-09-15 22:15:23 +00001401 Operand.release();
John McCall32daa422010-03-31 01:36:47 +00001402 if (!PerformImplicitConversion(Ex,
1403 ObjectPtrConversions.front()->getConversionType(),
Douglas Gregor68647482009-12-16 03:45:30 +00001404 AA_Converting)) {
Fariborz Jahanian8b915e72009-09-15 22:15:23 +00001405 Operand = Owned(Ex);
1406 Type = Ex->getType();
1407 }
1408 }
1409 else if (ObjectPtrConversions.size() > 1) {
1410 Diag(StartLoc, diag::err_ambiguous_delete_operand)
1411 << Type << Ex->getSourceRange();
John McCall32daa422010-03-31 01:36:47 +00001412 for (unsigned i= 0; i < ObjectPtrConversions.size(); i++)
1413 NoteOverloadCandidate(ObjectPtrConversions[i]);
Fariborz Jahanian8b915e72009-09-15 22:15:23 +00001414 return ExprError();
Douglas Gregor9cd9f3f2009-09-09 23:39:55 +00001415 }
Sebastian Redl28507842009-02-26 14:39:58 +00001416 }
1417
Sebastian Redlf53597f2009-03-15 17:47:39 +00001418 if (!Type->isPointerType())
1419 return ExprError(Diag(StartLoc, diag::err_delete_operand)
1420 << Type << Ex->getSourceRange());
Sebastian Redl28507842009-02-26 14:39:58 +00001421
Ted Kremenek6217b802009-07-29 21:53:49 +00001422 QualType Pointee = Type->getAs<PointerType>()->getPointeeType();
Douglas Gregor94a61572010-05-24 17:01:56 +00001423 if (Pointee->isVoidType() && !isSFINAEContext()) {
1424 // The C++ standard bans deleting a pointer to a non-object type, which
1425 // effectively bans deletion of "void*". However, most compilers support
1426 // this, so we treat it as a warning unless we're in a SFINAE context.
1427 Diag(StartLoc, diag::ext_delete_void_ptr_operand)
1428 << Type << Ex->getSourceRange();
1429 } else if (Pointee->isFunctionType() || Pointee->isVoidType())
Sebastian Redlf53597f2009-03-15 17:47:39 +00001430 return ExprError(Diag(StartLoc, diag::err_delete_operand)
1431 << Type << Ex->getSourceRange());
Douglas Gregor8dcb29d2009-03-24 20:13:58 +00001432 else if (!Pointee->isDependentType() &&
Mike Stump1eb44332009-09-09 15:08:12 +00001433 RequireCompleteType(StartLoc, Pointee,
Anders Carlssonb7906612009-08-26 23:45:07 +00001434 PDiag(diag::warn_delete_incomplete)
1435 << Ex->getSourceRange()))
Douglas Gregor8dcb29d2009-03-24 20:13:58 +00001436 return ExprError();
Sebastian Redl28507842009-02-26 14:39:58 +00001437
Douglas Gregor1070c9f2009-09-29 21:38:53 +00001438 // C++ [expr.delete]p2:
1439 // [Note: a pointer to a const type can be the operand of a
1440 // delete-expression; it is not necessary to cast away the constness
1441 // (5.2.11) of the pointer expression before it is used as the operand
1442 // of the delete-expression. ]
1443 ImpCastExprToType(Ex, Context.getPointerType(Context.VoidTy),
1444 CastExpr::CK_NoOp);
1445
1446 // Update the operand.
1447 Operand.take();
1448 Operand = ExprArg(*this, Ex);
1449
Anders Carlssond67c4c32009-08-16 20:29:29 +00001450 DeclarationName DeleteName = Context.DeclarationNames.getCXXOperatorName(
1451 ArrayForm ? OO_Array_Delete : OO_Delete);
1452
Anders Carlsson78f74552009-11-15 18:45:20 +00001453 if (const RecordType *RT = Pointee->getAs<RecordType>()) {
1454 CXXRecordDecl *RD = cast<CXXRecordDecl>(RT->getDecl());
1455
1456 if (!UseGlobal &&
1457 FindDeallocationFunction(StartLoc, RD, DeleteName, OperatorDelete))
Anders Carlsson0ba63ea2009-11-14 03:17:38 +00001458 return ExprError();
Anders Carlsson0ba63ea2009-11-14 03:17:38 +00001459
Anders Carlsson78f74552009-11-15 18:45:20 +00001460 if (!RD->hasTrivialDestructor())
1461 if (const CXXDestructorDecl *Dtor = RD->getDestructor(Context))
Mike Stump1eb44332009-09-09 15:08:12 +00001462 MarkDeclarationReferenced(StartLoc,
Fariborz Jahanian34374e62009-09-03 23:18:17 +00001463 const_cast<CXXDestructorDecl*>(Dtor));
Anders Carlssond67c4c32009-08-16 20:29:29 +00001464 }
Anders Carlsson78f74552009-11-15 18:45:20 +00001465
Anders Carlssond67c4c32009-08-16 20:29:29 +00001466 if (!OperatorDelete) {
Anders Carlsson78f74552009-11-15 18:45:20 +00001467 // Look for a global declaration.
Anders Carlssond67c4c32009-08-16 20:29:29 +00001468 DeclareGlobalNewDelete();
1469 DeclContext *TUDecl = Context.getTranslationUnitDecl();
Mike Stump1eb44332009-09-09 15:08:12 +00001470 if (FindAllocationOverload(StartLoc, SourceRange(), DeleteName,
Douglas Gregor90916562009-09-29 18:16:17 +00001471 &Ex, 1, TUDecl, /*AllowMissing=*/false,
Anders Carlssond67c4c32009-08-16 20:29:29 +00001472 OperatorDelete))
1473 return ExprError();
1474 }
Mike Stump1eb44332009-09-09 15:08:12 +00001475
John McCall9c82afc2010-04-20 02:18:25 +00001476 MarkDeclarationReferenced(StartLoc, OperatorDelete);
1477
Sebastian Redl28507842009-02-26 14:39:58 +00001478 // FIXME: Check access and ambiguity of operator delete and destructor.
Sebastian Redl4c5d3202008-11-21 19:14:01 +00001479 }
1480
Sebastian Redlf53597f2009-03-15 17:47:39 +00001481 Operand.release();
1482 return Owned(new (Context) CXXDeleteExpr(Context.VoidTy, UseGlobal, ArrayForm,
Anders Carlssond67c4c32009-08-16 20:29:29 +00001483 OperatorDelete, Ex, StartLoc));
Sebastian Redl4c5d3202008-11-21 19:14:01 +00001484}
1485
Douglas Gregor8cfe5a72009-11-23 23:44:04 +00001486/// \brief Check the use of the given variable as a C++ condition in an if,
1487/// while, do-while, or switch statement.
Douglas Gregor586596f2010-05-06 17:25:47 +00001488Action::OwningExprResult Sema::CheckConditionVariable(VarDecl *ConditionVar,
1489 SourceLocation StmtLoc,
1490 bool ConvertToBoolean) {
Douglas Gregor8cfe5a72009-11-23 23:44:04 +00001491 QualType T = ConditionVar->getType();
1492
1493 // C++ [stmt.select]p2:
1494 // The declarator shall not specify a function or an array.
1495 if (T->isFunctionType())
1496 return ExprError(Diag(ConditionVar->getLocation(),
1497 diag::err_invalid_use_of_function_type)
1498 << ConditionVar->getSourceRange());
1499 else if (T->isArrayType())
1500 return ExprError(Diag(ConditionVar->getLocation(),
1501 diag::err_invalid_use_of_array_type)
1502 << ConditionVar->getSourceRange());
Douglas Gregora7605db2009-11-24 16:07:02 +00001503
Douglas Gregor586596f2010-05-06 17:25:47 +00001504 Expr *Condition = DeclRefExpr::Create(Context, 0, SourceRange(), ConditionVar,
1505 ConditionVar->getLocation(),
1506 ConditionVar->getType().getNonReferenceType());
1507 if (ConvertToBoolean && CheckBooleanCondition(Condition, StmtLoc)) {
1508 Condition->Destroy(Context);
1509 return ExprError();
1510 }
1511
1512 return Owned(Condition);
Douglas Gregor8cfe5a72009-11-23 23:44:04 +00001513}
1514
Argyrios Kyrtzidis59210932008-09-10 02:17:11 +00001515/// CheckCXXBooleanCondition - Returns true if a conversion to bool is invalid.
1516bool Sema::CheckCXXBooleanCondition(Expr *&CondExpr) {
1517 // C++ 6.4p4:
1518 // The value of a condition that is an initialized declaration in a statement
1519 // other than a switch statement is the value of the declared variable
1520 // implicitly converted to type bool. If that conversion is ill-formed, the
1521 // program is ill-formed.
1522 // The value of a condition that is an expression is the value of the
1523 // expression, implicitly converted to bool.
1524 //
Douglas Gregor09f41cf2009-01-14 15:45:31 +00001525 return PerformContextuallyConvertToBool(CondExpr);
Argyrios Kyrtzidis59210932008-09-10 02:17:11 +00001526}
Douglas Gregor77a52232008-09-12 00:47:35 +00001527
1528/// Helper function to determine whether this is the (deprecated) C++
1529/// conversion from a string literal to a pointer to non-const char or
1530/// non-const wchar_t (for narrow and wide string literals,
1531/// respectively).
Mike Stump1eb44332009-09-09 15:08:12 +00001532bool
Douglas Gregor77a52232008-09-12 00:47:35 +00001533Sema::IsStringLiteralToNonConstPointerConversion(Expr *From, QualType ToType) {
1534 // Look inside the implicit cast, if it exists.
1535 if (ImplicitCastExpr *Cast = dyn_cast<ImplicitCastExpr>(From))
1536 From = Cast->getSubExpr();
1537
1538 // A string literal (2.13.4) that is not a wide string literal can
1539 // be converted to an rvalue of type "pointer to char"; a wide
1540 // string literal can be converted to an rvalue of type "pointer
1541 // to wchar_t" (C++ 4.2p2).
Douglas Gregor1984eb92010-06-22 23:47:37 +00001542 if (StringLiteral *StrLit = dyn_cast<StringLiteral>(From->IgnoreParens()))
Ted Kremenek6217b802009-07-29 21:53:49 +00001543 if (const PointerType *ToPtrType = ToType->getAs<PointerType>())
Mike Stump1eb44332009-09-09 15:08:12 +00001544 if (const BuiltinType *ToPointeeType
John McCall183700f2009-09-21 23:43:11 +00001545 = ToPtrType->getPointeeType()->getAs<BuiltinType>()) {
Douglas Gregor77a52232008-09-12 00:47:35 +00001546 // This conversion is considered only when there is an
1547 // explicit appropriate pointer target type (C++ 4.2p2).
John McCall0953e762009-09-24 19:53:00 +00001548 if (!ToPtrType->getPointeeType().hasQualifiers() &&
Douglas Gregor77a52232008-09-12 00:47:35 +00001549 ((StrLit->isWide() && ToPointeeType->isWideCharType()) ||
1550 (!StrLit->isWide() &&
1551 (ToPointeeType->getKind() == BuiltinType::Char_U ||
1552 ToPointeeType->getKind() == BuiltinType::Char_S))))
1553 return true;
1554 }
1555
1556 return false;
1557}
Douglas Gregor94b1dd22008-10-24 04:54:22 +00001558
Douglas Gregorba70ab62010-04-16 22:17:36 +00001559static Sema::OwningExprResult BuildCXXCastArgument(Sema &S,
1560 SourceLocation CastLoc,
1561 QualType Ty,
1562 CastExpr::CastKind Kind,
1563 CXXMethodDecl *Method,
1564 Sema::ExprArg Arg) {
1565 Expr *From = Arg.takeAs<Expr>();
1566
1567 switch (Kind) {
1568 default: assert(0 && "Unhandled cast kind!");
1569 case CastExpr::CK_ConstructorConversion: {
1570 ASTOwningVector<&ActionBase::DeleteExpr> ConstructorArgs(S);
1571
1572 if (S.CompleteConstructorCall(cast<CXXConstructorDecl>(Method),
1573 Sema::MultiExprArg(S, (void **)&From, 1),
1574 CastLoc, ConstructorArgs))
1575 return S.ExprError();
1576
1577 Sema::OwningExprResult Result =
1578 S.BuildCXXConstructExpr(CastLoc, Ty, cast<CXXConstructorDecl>(Method),
1579 move_arg(ConstructorArgs));
1580 if (Result.isInvalid())
1581 return S.ExprError();
1582
1583 return S.MaybeBindToTemporary(Result.takeAs<Expr>());
1584 }
1585
1586 case CastExpr::CK_UserDefinedConversion: {
1587 assert(!From->getType()->isPointerType() && "Arg can't have pointer type!");
1588
1589 // Create an implicit call expr that calls it.
1590 // FIXME: pass the FoundDecl for the user-defined conversion here
1591 CXXMemberCallExpr *CE = S.BuildCXXMemberCallExpr(From, Method, Method);
1592 return S.MaybeBindToTemporary(CE);
1593 }
1594 }
1595}
1596
Douglas Gregor09f41cf2009-01-14 15:45:31 +00001597/// PerformImplicitConversion - Perform an implicit conversion of the
1598/// expression From to the type ToType using the pre-computed implicit
1599/// conversion sequence ICS. Returns true if there was an error, false
1600/// otherwise. The expression From is replaced with the converted
Douglas Gregor68647482009-12-16 03:45:30 +00001601/// expression. Action is the kind of conversion we're performing,
Douglas Gregor09f41cf2009-01-14 15:45:31 +00001602/// used in the error message.
1603bool
1604Sema::PerformImplicitConversion(Expr *&From, QualType ToType,
1605 const ImplicitConversionSequence &ICS,
Douglas Gregor68647482009-12-16 03:45:30 +00001606 AssignmentAction Action, bool IgnoreBaseAccess) {
John McCall1d318332010-01-12 00:44:57 +00001607 switch (ICS.getKind()) {
Douglas Gregor94b1dd22008-10-24 04:54:22 +00001608 case ImplicitConversionSequence::StandardConversion:
Douglas Gregor68647482009-12-16 03:45:30 +00001609 if (PerformImplicitConversion(From, ToType, ICS.Standard, Action,
Sebastian Redla82e4ae2009-11-14 21:15:49 +00001610 IgnoreBaseAccess))
Douglas Gregor94b1dd22008-10-24 04:54:22 +00001611 return true;
1612 break;
1613
Anders Carlssonf6c213a2009-09-15 06:28:28 +00001614 case ImplicitConversionSequence::UserDefinedConversion: {
1615
Fariborz Jahanian7fe5d722009-08-28 22:04:50 +00001616 FunctionDecl *FD = ICS.UserDefined.ConversionFunction;
1617 CastExpr::CastKind CastKind = CastExpr::CK_Unknown;
Anders Carlssonf6c213a2009-09-15 06:28:28 +00001618 QualType BeforeToType;
1619 if (const CXXConversionDecl *Conv = dyn_cast<CXXConversionDecl>(FD)) {
Fariborz Jahanian7fe5d722009-08-28 22:04:50 +00001620 CastKind = CastExpr::CK_UserDefinedConversion;
Anders Carlssonf6c213a2009-09-15 06:28:28 +00001621
1622 // If the user-defined conversion is specified by a conversion function,
1623 // the initial standard conversion sequence converts the source type to
1624 // the implicit object parameter of the conversion function.
1625 BeforeToType = Context.getTagDeclType(Conv->getParent());
1626 } else if (const CXXConstructorDecl *Ctor =
1627 dyn_cast<CXXConstructorDecl>(FD)) {
Anders Carlsson0aebc812009-09-09 21:33:21 +00001628 CastKind = CastExpr::CK_ConstructorConversion;
Fariborz Jahanian966256a2009-11-06 00:23:08 +00001629 // Do no conversion if dealing with ... for the first conversion.
Douglas Gregore44201a2009-11-20 02:31:03 +00001630 if (!ICS.UserDefined.EllipsisConversion) {
Fariborz Jahanian966256a2009-11-06 00:23:08 +00001631 // If the user-defined conversion is specified by a constructor, the
1632 // initial standard conversion sequence converts the source type to the
1633 // type required by the argument of the constructor
Douglas Gregore44201a2009-11-20 02:31:03 +00001634 BeforeToType = Ctor->getParamDecl(0)->getType().getNonReferenceType();
1635 }
Anders Carlssonf6c213a2009-09-15 06:28:28 +00001636 }
Anders Carlsson0aebc812009-09-09 21:33:21 +00001637 else
1638 assert(0 && "Unknown conversion function kind!");
Fariborz Jahanian966256a2009-11-06 00:23:08 +00001639 // Whatch out for elipsis conversion.
Fariborz Jahanian4c0cea22009-11-06 00:55:14 +00001640 if (!ICS.UserDefined.EllipsisConversion) {
Fariborz Jahanian966256a2009-11-06 00:23:08 +00001641 if (PerformImplicitConversion(From, BeforeToType,
Douglas Gregor68647482009-12-16 03:45:30 +00001642 ICS.UserDefined.Before, AA_Converting,
Sebastian Redla82e4ae2009-11-14 21:15:49 +00001643 IgnoreBaseAccess))
Fariborz Jahanian966256a2009-11-06 00:23:08 +00001644 return true;
1645 }
Anders Carlssonf6c213a2009-09-15 06:28:28 +00001646
Anders Carlsson0aebc812009-09-09 21:33:21 +00001647 OwningExprResult CastArg
Douglas Gregorba70ab62010-04-16 22:17:36 +00001648 = BuildCXXCastArgument(*this,
1649 From->getLocStart(),
Anders Carlsson0aebc812009-09-09 21:33:21 +00001650 ToType.getNonReferenceType(),
1651 CastKind, cast<CXXMethodDecl>(FD),
1652 Owned(From));
1653
1654 if (CastArg.isInvalid())
1655 return true;
Eli Friedmand8889622009-11-27 04:41:50 +00001656
1657 From = CastArg.takeAs<Expr>();
1658
Eli Friedmand8889622009-11-27 04:41:50 +00001659 return PerformImplicitConversion(From, ToType, ICS.UserDefined.After,
Douglas Gregor68647482009-12-16 03:45:30 +00001660 AA_Converting, IgnoreBaseAccess);
Fariborz Jahanian93034ca2009-10-16 19:20:59 +00001661 }
John McCall1d318332010-01-12 00:44:57 +00001662
1663 case ImplicitConversionSequence::AmbiguousConversion:
1664 DiagnoseAmbiguousConversion(ICS, From->getExprLoc(),
1665 PDiag(diag::err_typecheck_ambiguous_condition)
1666 << From->getSourceRange());
1667 return true;
Fariborz Jahanian93034ca2009-10-16 19:20:59 +00001668
Douglas Gregor94b1dd22008-10-24 04:54:22 +00001669 case ImplicitConversionSequence::EllipsisConversion:
1670 assert(false && "Cannot perform an ellipsis conversion");
Douglas Gregor60d62c22008-10-31 16:23:19 +00001671 return false;
Douglas Gregor94b1dd22008-10-24 04:54:22 +00001672
1673 case ImplicitConversionSequence::BadConversion:
1674 return true;
1675 }
1676
1677 // Everything went well.
1678 return false;
1679}
1680
1681/// PerformImplicitConversion - Perform an implicit conversion of the
1682/// expression From to the type ToType by following the standard
1683/// conversion sequence SCS. Returns true if there was an error, false
1684/// otherwise. The expression From is replaced with the converted
Douglas Gregor45920e82008-12-19 17:40:08 +00001685/// expression. Flavor is the context in which we're performing this
1686/// conversion, for use in error messages.
Mike Stump1eb44332009-09-09 15:08:12 +00001687bool
Douglas Gregor94b1dd22008-10-24 04:54:22 +00001688Sema::PerformImplicitConversion(Expr *&From, QualType ToType,
Douglas Gregor45920e82008-12-19 17:40:08 +00001689 const StandardConversionSequence& SCS,
Douglas Gregor68647482009-12-16 03:45:30 +00001690 AssignmentAction Action, bool IgnoreBaseAccess) {
Mike Stump390b4cc2009-05-16 07:39:55 +00001691 // Overall FIXME: we are recomputing too many types here and doing far too
1692 // much extra work. What this means is that we need to keep track of more
1693 // information that is computed when we try the implicit conversion initially,
1694 // so that we don't need to recompute anything here.
Douglas Gregor94b1dd22008-10-24 04:54:22 +00001695 QualType FromType = From->getType();
1696
Douglas Gregor225c41e2008-11-03 19:09:14 +00001697 if (SCS.CopyConstructor) {
Anders Carlsson7c3e8a12009-05-19 04:45:15 +00001698 // FIXME: When can ToType be a reference type?
1699 assert(!ToType->isReferenceType());
Fariborz Jahanianb3c47742009-09-25 18:59:21 +00001700 if (SCS.Second == ICK_Derived_To_Base) {
1701 ASTOwningVector<&ActionBase::DeleteExpr> ConstructorArgs(*this);
1702 if (CompleteConstructorCall(cast<CXXConstructorDecl>(SCS.CopyConstructor),
1703 MultiExprArg(*this, (void **)&From, 1),
1704 /*FIXME:ConstructLoc*/SourceLocation(),
1705 ConstructorArgs))
1706 return true;
1707 OwningExprResult FromResult =
1708 BuildCXXConstructExpr(/*FIXME:ConstructLoc*/SourceLocation(),
1709 ToType, SCS.CopyConstructor,
1710 move_arg(ConstructorArgs));
1711 if (FromResult.isInvalid())
1712 return true;
1713 From = FromResult.takeAs<Expr>();
1714 return false;
1715 }
Mike Stump1eb44332009-09-09 15:08:12 +00001716 OwningExprResult FromResult =
1717 BuildCXXConstructExpr(/*FIXME:ConstructLoc*/SourceLocation(),
1718 ToType, SCS.CopyConstructor,
Anders Carlssonf47511a2009-09-07 22:23:31 +00001719 MultiExprArg(*this, (void**)&From, 1));
Mike Stump1eb44332009-09-09 15:08:12 +00001720
Anders Carlssonda3f4e22009-08-25 05:12:04 +00001721 if (FromResult.isInvalid())
1722 return true;
Mike Stump1eb44332009-09-09 15:08:12 +00001723
Anders Carlssonda3f4e22009-08-25 05:12:04 +00001724 From = FromResult.takeAs<Expr>();
Douglas Gregor225c41e2008-11-03 19:09:14 +00001725 return false;
1726 }
1727
Douglas Gregorad4e02f2010-04-29 18:24:40 +00001728 // Resolve overloaded function references.
1729 if (Context.hasSameType(FromType, Context.OverloadTy)) {
1730 DeclAccessPair Found;
1731 FunctionDecl *Fn = ResolveAddressOfOverloadedFunction(From, ToType,
1732 true, Found);
1733 if (!Fn)
1734 return true;
1735
1736 if (DiagnoseUseOfDecl(Fn, From->getSourceRange().getBegin()))
1737 return true;
1738
1739 From = FixOverloadedFunctionReference(From, Found, Fn);
1740 FromType = From->getType();
1741 }
1742
Douglas Gregor94b1dd22008-10-24 04:54:22 +00001743 // Perform the first implicit conversion.
1744 switch (SCS.First) {
1745 case ICK_Identity:
1746 case ICK_Lvalue_To_Rvalue:
1747 // Nothing to do.
1748 break;
1749
1750 case ICK_Array_To_Pointer:
Douglas Gregor48f3bb92009-02-18 21:56:37 +00001751 FromType = Context.getArrayDecayedType(FromType);
Anders Carlsson82495762009-08-08 21:04:35 +00001752 ImpCastExprToType(From, FromType, CastExpr::CK_ArrayToPointerDecay);
Douglas Gregor48f3bb92009-02-18 21:56:37 +00001753 break;
1754
1755 case ICK_Function_To_Pointer:
Douglas Gregor94b1dd22008-10-24 04:54:22 +00001756 FromType = Context.getPointerType(FromType);
Anders Carlssonb633c4e2009-09-01 20:37:18 +00001757 ImpCastExprToType(From, FromType, CastExpr::CK_FunctionToPointerDecay);
Douglas Gregor94b1dd22008-10-24 04:54:22 +00001758 break;
1759
1760 default:
1761 assert(false && "Improper first standard conversion");
1762 break;
1763 }
1764
1765 // Perform the second implicit conversion
1766 switch (SCS.Second) {
1767 case ICK_Identity:
Sebastian Redl2c7588f2009-10-10 12:04:10 +00001768 // If both sides are functions (or pointers/references to them), there could
1769 // be incompatible exception declarations.
1770 if (CheckExceptionSpecCompatibility(From, ToType))
1771 return true;
1772 // Nothing else to do.
Douglas Gregor94b1dd22008-10-24 04:54:22 +00001773 break;
1774
Douglas Gregor43c79c22009-12-09 00:47:37 +00001775 case ICK_NoReturn_Adjustment:
1776 // If both sides are functions (or pointers/references to them), there could
1777 // be incompatible exception declarations.
1778 if (CheckExceptionSpecCompatibility(From, ToType))
1779 return true;
1780
1781 ImpCastExprToType(From, Context.getNoReturnType(From->getType(), false),
1782 CastExpr::CK_NoOp);
1783 break;
1784
Douglas Gregor94b1dd22008-10-24 04:54:22 +00001785 case ICK_Integral_Promotion:
Douglas Gregor94b1dd22008-10-24 04:54:22 +00001786 case ICK_Integral_Conversion:
Eli Friedman73c39ab2009-10-20 08:27:19 +00001787 ImpCastExprToType(From, ToType, CastExpr::CK_IntegralCast);
1788 break;
1789
1790 case ICK_Floating_Promotion:
Douglas Gregor94b1dd22008-10-24 04:54:22 +00001791 case ICK_Floating_Conversion:
Eli Friedman73c39ab2009-10-20 08:27:19 +00001792 ImpCastExprToType(From, ToType, CastExpr::CK_FloatingCast);
1793 break;
1794
1795 case ICK_Complex_Promotion:
Douglas Gregor5cdf8212009-02-12 00:15:05 +00001796 case ICK_Complex_Conversion:
Eli Friedman73c39ab2009-10-20 08:27:19 +00001797 ImpCastExprToType(From, ToType, CastExpr::CK_Unknown);
1798 break;
1799
Douglas Gregor94b1dd22008-10-24 04:54:22 +00001800 case ICK_Floating_Integral:
Douglas Gregor0c293ea2010-06-22 23:07:26 +00001801 if (ToType->isRealFloatingType())
Eli Friedman73c39ab2009-10-20 08:27:19 +00001802 ImpCastExprToType(From, ToType, CastExpr::CK_IntegralToFloating);
1803 else
1804 ImpCastExprToType(From, ToType, CastExpr::CK_FloatingToIntegral);
1805 break;
1806
Douglas Gregorf9201e02009-02-11 23:02:49 +00001807 case ICK_Compatible_Conversion:
Eli Friedman73c39ab2009-10-20 08:27:19 +00001808 ImpCastExprToType(From, ToType, CastExpr::CK_NoOp);
Douglas Gregor94b1dd22008-10-24 04:54:22 +00001809 break;
1810
Anders Carlsson61faec12009-09-12 04:46:44 +00001811 case ICK_Pointer_Conversion: {
Douglas Gregor45920e82008-12-19 17:40:08 +00001812 if (SCS.IncompatibleObjC) {
1813 // Diagnose incompatible Objective-C conversions
Mike Stump1eb44332009-09-09 15:08:12 +00001814 Diag(From->getSourceRange().getBegin(),
Douglas Gregor45920e82008-12-19 17:40:08 +00001815 diag::ext_typecheck_convert_incompatible_pointer)
Douglas Gregor68647482009-12-16 03:45:30 +00001816 << From->getType() << ToType << Action
Douglas Gregor45920e82008-12-19 17:40:08 +00001817 << From->getSourceRange();
1818 }
1819
Anders Carlsson61faec12009-09-12 04:46:44 +00001820
1821 CastExpr::CastKind Kind = CastExpr::CK_Unknown;
Anders Carlsson5cf86ba2010-04-24 19:06:50 +00001822 CXXBaseSpecifierArray BasePath;
1823 if (CheckPointerConversion(From, ToType, Kind, BasePath, IgnoreBaseAccess))
Douglas Gregor94b1dd22008-10-24 04:54:22 +00001824 return true;
Anders Carlsson5cf86ba2010-04-24 19:06:50 +00001825 ImpCastExprToType(From, ToType, Kind, /*isLvalue=*/false, BasePath);
Douglas Gregor94b1dd22008-10-24 04:54:22 +00001826 break;
Anders Carlsson61faec12009-09-12 04:46:44 +00001827 }
1828
1829 case ICK_Pointer_Member: {
1830 CastExpr::CastKind Kind = CastExpr::CK_Unknown;
Anders Carlssonf9d68e12010-04-24 19:36:51 +00001831 CXXBaseSpecifierArray BasePath;
1832 if (CheckMemberPointerConversion(From, ToType, Kind, BasePath,
1833 IgnoreBaseAccess))
Anders Carlsson61faec12009-09-12 04:46:44 +00001834 return true;
Sebastian Redl2c7588f2009-10-10 12:04:10 +00001835 if (CheckExceptionSpecCompatibility(From, ToType))
1836 return true;
Anders Carlssonf9d68e12010-04-24 19:36:51 +00001837 ImpCastExprToType(From, ToType, Kind, /*isLvalue=*/false, BasePath);
Anders Carlsson61faec12009-09-12 04:46:44 +00001838 break;
1839 }
Anders Carlssonbc0e0782009-11-23 20:04:44 +00001840 case ICK_Boolean_Conversion: {
1841 CastExpr::CastKind Kind = CastExpr::CK_Unknown;
1842 if (FromType->isMemberPointerType())
1843 Kind = CastExpr::CK_MemberPointerToBoolean;
1844
1845 ImpCastExprToType(From, Context.BoolTy, Kind);
Douglas Gregor94b1dd22008-10-24 04:54:22 +00001846 break;
Anders Carlssonbc0e0782009-11-23 20:04:44 +00001847 }
Douglas Gregor94b1dd22008-10-24 04:54:22 +00001848
Douglas Gregor6fb745b2010-05-13 16:44:06 +00001849 case ICK_Derived_To_Base: {
1850 CXXBaseSpecifierArray BasePath;
Douglas Gregorb7a86f52009-11-06 01:02:41 +00001851 if (CheckDerivedToBaseConversion(From->getType(),
1852 ToType.getNonReferenceType(),
1853 From->getLocStart(),
Douglas Gregor6fb745b2010-05-13 16:44:06 +00001854 From->getSourceRange(),
1855 &BasePath,
Sebastian Redla82e4ae2009-11-14 21:15:49 +00001856 IgnoreBaseAccess))
Douglas Gregorb7a86f52009-11-06 01:02:41 +00001857 return true;
Douglas Gregor6fb745b2010-05-13 16:44:06 +00001858
Douglas Gregorb7a86f52009-11-06 01:02:41 +00001859 ImpCastExprToType(From, ToType.getNonReferenceType(),
Douglas Gregor6fb745b2010-05-13 16:44:06 +00001860 CastExpr::CK_DerivedToBase,
1861 /*isLvalue=*/(From->getType()->isRecordType() &&
1862 From->isLvalue(Context) == Expr::LV_Valid),
1863 BasePath);
Douglas Gregorb7a86f52009-11-06 01:02:41 +00001864 break;
Douglas Gregor6fb745b2010-05-13 16:44:06 +00001865 }
1866
Douglas Gregorfb4a5432010-05-18 22:42:18 +00001867 case ICK_Vector_Conversion:
1868 ImpCastExprToType(From, ToType, CastExpr::CK_BitCast);
1869 break;
1870
1871 case ICK_Vector_Splat:
1872 ImpCastExprToType(From, ToType, CastExpr::CK_VectorSplat);
1873 break;
1874
1875 case ICK_Complex_Real:
1876 ImpCastExprToType(From, ToType, CastExpr::CK_Unknown);
1877 break;
1878
1879 case ICK_Lvalue_To_Rvalue:
1880 case ICK_Array_To_Pointer:
1881 case ICK_Function_To_Pointer:
1882 case ICK_Qualification:
1883 case ICK_Num_Conversion_Kinds:
Douglas Gregor94b1dd22008-10-24 04:54:22 +00001884 assert(false && "Improper second standard conversion");
1885 break;
1886 }
1887
1888 switch (SCS.Third) {
1889 case ICK_Identity:
1890 // Nothing to do.
1891 break;
1892
1893 case ICK_Qualification:
Mike Stump390b4cc2009-05-16 07:39:55 +00001894 // FIXME: Not sure about lvalue vs rvalue here in the presence of rvalue
1895 // references.
Mike Stump1eb44332009-09-09 15:08:12 +00001896 ImpCastExprToType(From, ToType.getNonReferenceType(),
Anders Carlssonf1b48b72010-04-24 16:57:13 +00001897 CastExpr::CK_NoOp, ToType->isLValueReferenceType());
Douglas Gregora9bff302010-02-28 18:30:25 +00001898
1899 if (SCS.DeprecatedStringLiteralToCharPtr)
1900 Diag(From->getLocStart(), diag::warn_deprecated_string_literal_conversion)
1901 << ToType.getNonReferenceType();
1902
Douglas Gregor94b1dd22008-10-24 04:54:22 +00001903 break;
Douglas Gregorb7a86f52009-11-06 01:02:41 +00001904
Douglas Gregor94b1dd22008-10-24 04:54:22 +00001905 default:
Douglas Gregorfb4a5432010-05-18 22:42:18 +00001906 assert(false && "Improper third standard conversion");
Douglas Gregor94b1dd22008-10-24 04:54:22 +00001907 break;
1908 }
1909
1910 return false;
1911}
1912
Sebastian Redl64b45f72009-01-05 20:52:13 +00001913Sema::OwningExprResult Sema::ActOnUnaryTypeTrait(UnaryTypeTrait OTT,
1914 SourceLocation KWLoc,
1915 SourceLocation LParen,
1916 TypeTy *Ty,
1917 SourceLocation RParen) {
Argyrios Kyrtzidise8661902009-08-19 01:28:28 +00001918 QualType T = GetTypeFromParser(Ty);
Mike Stump1eb44332009-09-09 15:08:12 +00001919
Anders Carlsson3292d5c2009-07-07 19:06:02 +00001920 // According to http://gcc.gnu.org/onlinedocs/gcc/Type-Traits.html
1921 // all traits except __is_class, __is_enum and __is_union require a the type
1922 // to be complete.
1923 if (OTT != UTT_IsClass && OTT != UTT_IsEnum && OTT != UTT_IsUnion) {
Mike Stump1eb44332009-09-09 15:08:12 +00001924 if (RequireCompleteType(KWLoc, T,
Anders Carlssond497ba72009-08-26 22:59:12 +00001925 diag::err_incomplete_type_used_in_type_trait_expr))
Anders Carlsson3292d5c2009-07-07 19:06:02 +00001926 return ExprError();
1927 }
Sebastian Redl64b45f72009-01-05 20:52:13 +00001928
1929 // There is no point in eagerly computing the value. The traits are designed
1930 // to be used from type trait templates, so Ty will be a template parameter
1931 // 99% of the time.
Anders Carlsson3292d5c2009-07-07 19:06:02 +00001932 return Owned(new (Context) UnaryTypeTraitExpr(KWLoc, OTT, T,
1933 RParen, Context.BoolTy));
Sebastian Redl64b45f72009-01-05 20:52:13 +00001934}
Sebastian Redl7c8bd602009-02-07 20:10:22 +00001935
1936QualType Sema::CheckPointerToMemberOperands(
Mike Stump1eb44332009-09-09 15:08:12 +00001937 Expr *&lex, Expr *&rex, SourceLocation Loc, bool isIndirect) {
Sebastian Redl7c8bd602009-02-07 20:10:22 +00001938 const char *OpSpelling = isIndirect ? "->*" : ".*";
1939 // C++ 5.5p2
1940 // The binary operator .* [p3: ->*] binds its second operand, which shall
1941 // be of type "pointer to member of T" (where T is a completely-defined
1942 // class type) [...]
1943 QualType RType = rex->getType();
Ted Kremenek6217b802009-07-29 21:53:49 +00001944 const MemberPointerType *MemPtr = RType->getAs<MemberPointerType>();
Douglas Gregore7450f52009-03-24 19:52:54 +00001945 if (!MemPtr) {
Sebastian Redl7c8bd602009-02-07 20:10:22 +00001946 Diag(Loc, diag::err_bad_memptr_rhs)
1947 << OpSpelling << RType << rex->getSourceRange();
1948 return QualType();
Mike Stump1eb44332009-09-09 15:08:12 +00001949 }
Douglas Gregore7450f52009-03-24 19:52:54 +00001950
Sebastian Redl7c8bd602009-02-07 20:10:22 +00001951 QualType Class(MemPtr->getClass(), 0);
1952
Sebastian Redl59fc2692010-04-10 10:14:54 +00001953 if (RequireCompleteType(Loc, Class, diag::err_memptr_rhs_to_incomplete))
1954 return QualType();
1955
Sebastian Redl7c8bd602009-02-07 20:10:22 +00001956 // C++ 5.5p2
1957 // [...] to its first operand, which shall be of class T or of a class of
1958 // which T is an unambiguous and accessible base class. [p3: a pointer to
1959 // such a class]
1960 QualType LType = lex->getType();
1961 if (isIndirect) {
Ted Kremenek6217b802009-07-29 21:53:49 +00001962 if (const PointerType *Ptr = LType->getAs<PointerType>())
Sebastian Redl7c8bd602009-02-07 20:10:22 +00001963 LType = Ptr->getPointeeType().getNonReferenceType();
1964 else {
1965 Diag(Loc, diag::err_bad_memptr_lhs)
Fariborz Jahanianef78ac62009-10-26 20:45:27 +00001966 << OpSpelling << 1 << LType
Douglas Gregor849b2432010-03-31 17:46:05 +00001967 << FixItHint::CreateReplacement(SourceRange(Loc), ".*");
Sebastian Redl7c8bd602009-02-07 20:10:22 +00001968 return QualType();
1969 }
1970 }
1971
Douglas Gregora4923eb2009-11-16 21:35:15 +00001972 if (!Context.hasSameUnqualifiedType(Class, LType)) {
Sebastian Redl17e1d352010-04-23 17:18:26 +00001973 // If we want to check the hierarchy, we need a complete type.
1974 if (RequireCompleteType(Loc, LType, PDiag(diag::err_bad_memptr_lhs)
1975 << OpSpelling << (int)isIndirect)) {
1976 return QualType();
1977 }
Anders Carlsson5cf86ba2010-04-24 19:06:50 +00001978 CXXBasePaths Paths(/*FindAmbiguities=*/true, /*RecordPaths=*/true,
Douglas Gregora8f32e02009-10-06 17:59:45 +00001979 /*DetectVirtual=*/false);
Mike Stump390b4cc2009-05-16 07:39:55 +00001980 // FIXME: Would it be useful to print full ambiguity paths, or is that
1981 // overkill?
Sebastian Redl7c8bd602009-02-07 20:10:22 +00001982 if (!IsDerivedFrom(LType, Class, Paths) ||
1983 Paths.isAmbiguous(Context.getCanonicalType(Class))) {
1984 Diag(Loc, diag::err_bad_memptr_lhs) << OpSpelling
Eli Friedman3005efe2010-01-16 00:00:48 +00001985 << (int)isIndirect << lex->getType();
Sebastian Redl7c8bd602009-02-07 20:10:22 +00001986 return QualType();
1987 }
Eli Friedman3005efe2010-01-16 00:00:48 +00001988 // Cast LHS to type of use.
1989 QualType UseType = isIndirect ? Context.getPointerType(Class) : Class;
1990 bool isLValue = !isIndirect && lex->isLvalue(Context) == Expr::LV_Valid;
Anders Carlsson5cf86ba2010-04-24 19:06:50 +00001991
1992 CXXBaseSpecifierArray BasePath;
1993 BuildBasePathArray(Paths, BasePath);
1994 ImpCastExprToType(lex, UseType, CastExpr::CK_DerivedToBase, isLValue,
1995 BasePath);
Sebastian Redl7c8bd602009-02-07 20:10:22 +00001996 }
1997
Fariborz Jahanian19d70732009-11-18 22:16:17 +00001998 if (isa<CXXZeroInitValueExpr>(rex->IgnoreParens())) {
Fariborz Jahanian05ebda92009-11-18 21:54:48 +00001999 // Diagnose use of pointer-to-member type which when used as
2000 // the functional cast in a pointer-to-member expression.
2001 Diag(Loc, diag::err_pointer_to_member_type) << isIndirect;
2002 return QualType();
2003 }
Sebastian Redl7c8bd602009-02-07 20:10:22 +00002004 // C++ 5.5p2
2005 // The result is an object or a function of the type specified by the
2006 // second operand.
2007 // The cv qualifiers are the union of those in the pointer and the left side,
2008 // in accordance with 5.5p5 and 5.2.5.
2009 // FIXME: This returns a dereferenced member function pointer as a normal
2010 // function type. However, the only operation valid on such functions is
Mike Stump390b4cc2009-05-16 07:39:55 +00002011 // calling them. There's also a GCC extension to get a function pointer to the
2012 // thing, which is another complication, because this type - unlike the type
2013 // that is the result of this expression - takes the class as the first
Sebastian Redl7c8bd602009-02-07 20:10:22 +00002014 // argument.
2015 // We probably need a "MemberFunctionClosureType" or something like that.
2016 QualType Result = MemPtr->getPointeeType();
John McCall0953e762009-09-24 19:53:00 +00002017 Result = Context.getCVRQualifiedType(Result, LType.getCVRQualifiers());
Sebastian Redl7c8bd602009-02-07 20:10:22 +00002018 return Result;
2019}
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002020
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002021/// \brief Try to convert a type to another according to C++0x 5.16p3.
2022///
2023/// This is part of the parameter validation for the ? operator. If either
2024/// value operand is a class type, the two operands are attempted to be
2025/// converted to each other. This function does the conversion in one direction.
Douglas Gregorb70cf442010-03-26 20:14:36 +00002026/// It returns true if the program is ill-formed and has already been diagnosed
2027/// as such.
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002028static bool TryClassUnification(Sema &Self, Expr *From, Expr *To,
2029 SourceLocation QuestionLoc,
Douglas Gregorb70cf442010-03-26 20:14:36 +00002030 bool &HaveConversion,
2031 QualType &ToType) {
2032 HaveConversion = false;
2033 ToType = To->getType();
2034
2035 InitializationKind Kind = InitializationKind::CreateCopy(To->getLocStart(),
2036 SourceLocation());
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002037 // C++0x 5.16p3
2038 // The process for determining whether an operand expression E1 of type T1
2039 // can be converted to match an operand expression E2 of type T2 is defined
2040 // as follows:
2041 // -- If E2 is an lvalue:
Douglas Gregor0fd8ff72010-03-26 20:59:55 +00002042 bool ToIsLvalue = (To->isLvalue(Self.Context) == Expr::LV_Valid);
2043 if (ToIsLvalue) {
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002044 // E1 can be converted to match E2 if E1 can be implicitly converted to
2045 // type "lvalue reference to T2", subject to the constraint that in the
2046 // conversion the reference must bind directly to E1.
Douglas Gregorb70cf442010-03-26 20:14:36 +00002047 QualType T = Self.Context.getLValueReferenceType(ToType);
2048 InitializedEntity Entity = InitializedEntity::InitializeTemporary(T);
2049
2050 InitializationSequence InitSeq(Self, Entity, Kind, &From, 1);
2051 if (InitSeq.isDirectReferenceBinding()) {
2052 ToType = T;
2053 HaveConversion = true;
2054 return false;
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002055 }
Douglas Gregorb70cf442010-03-26 20:14:36 +00002056
2057 if (InitSeq.isAmbiguous())
2058 return InitSeq.Diagnose(Self, Entity, Kind, &From, 1);
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002059 }
John McCallb1bdc622010-02-25 01:37:24 +00002060
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002061 // -- If E2 is an rvalue, or if the conversion above cannot be done:
2062 // -- if E1 and E2 have class type, and the underlying class types are
2063 // the same or one is a base class of the other:
2064 QualType FTy = From->getType();
2065 QualType TTy = To->getType();
Ted Kremenek6217b802009-07-29 21:53:49 +00002066 const RecordType *FRec = FTy->getAs<RecordType>();
2067 const RecordType *TRec = TTy->getAs<RecordType>();
Douglas Gregorb70cf442010-03-26 20:14:36 +00002068 bool FDerivedFromT = FRec && TRec && FRec != TRec &&
2069 Self.IsDerivedFrom(FTy, TTy);
2070 if (FRec && TRec &&
2071 (FRec == TRec || FDerivedFromT || Self.IsDerivedFrom(TTy, FTy))) {
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002072 // E1 can be converted to match E2 if the class of T2 is the
2073 // same type as, or a base class of, the class of T1, and
2074 // [cv2 > cv1].
John McCallb1bdc622010-02-25 01:37:24 +00002075 if (FRec == TRec || FDerivedFromT) {
2076 if (TTy.isAtLeastAsQualifiedAs(FTy)) {
Douglas Gregorb70cf442010-03-26 20:14:36 +00002077 InitializedEntity Entity = InitializedEntity::InitializeTemporary(TTy);
2078 InitializationSequence InitSeq(Self, Entity, Kind, &From, 1);
2079 if (InitSeq.getKind() != InitializationSequence::FailedSequence) {
2080 HaveConversion = true;
2081 return false;
2082 }
2083
2084 if (InitSeq.isAmbiguous())
2085 return InitSeq.Diagnose(Self, Entity, Kind, &From, 1);
2086 }
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002087 }
Douglas Gregorb70cf442010-03-26 20:14:36 +00002088
2089 return false;
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002090 }
Douglas Gregorb70cf442010-03-26 20:14:36 +00002091
2092 // -- Otherwise: E1 can be converted to match E2 if E1 can be
2093 // implicitly converted to the type that expression E2 would have
Douglas Gregor0fd8ff72010-03-26 20:59:55 +00002094 // if E2 were converted to an rvalue (or the type it has, if E2 is
2095 // an rvalue).
2096 //
2097 // This actually refers very narrowly to the lvalue-to-rvalue conversion, not
2098 // to the array-to-pointer or function-to-pointer conversions.
2099 if (!TTy->getAs<TagType>())
2100 TTy = TTy.getUnqualifiedType();
Douglas Gregorb70cf442010-03-26 20:14:36 +00002101
2102 InitializedEntity Entity = InitializedEntity::InitializeTemporary(TTy);
2103 InitializationSequence InitSeq(Self, Entity, Kind, &From, 1);
2104 HaveConversion = InitSeq.getKind() != InitializationSequence::FailedSequence;
2105 ToType = TTy;
2106 if (InitSeq.isAmbiguous())
2107 return InitSeq.Diagnose(Self, Entity, Kind, &From, 1);
2108
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002109 return false;
2110}
2111
2112/// \brief Try to find a common type for two according to C++0x 5.16p5.
2113///
2114/// This is part of the parameter validation for the ? operator. If either
2115/// value operand is a class type, overload resolution is used to find a
2116/// conversion to a common type.
2117static bool FindConditionalOverload(Sema &Self, Expr *&LHS, Expr *&RHS,
2118 SourceLocation Loc) {
2119 Expr *Args[2] = { LHS, RHS };
John McCall5769d612010-02-08 23:07:23 +00002120 OverloadCandidateSet CandidateSet(Loc);
Douglas Gregor573d9c32009-10-21 23:19:44 +00002121 Self.AddBuiltinOperatorCandidates(OO_Conditional, Loc, Args, 2, CandidateSet);
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002122
2123 OverloadCandidateSet::iterator Best;
Douglas Gregore0762c92009-06-19 23:52:42 +00002124 switch (Self.BestViableFunction(CandidateSet, Loc, Best)) {
Douglas Gregor20093b42009-12-09 23:02:17 +00002125 case OR_Success:
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002126 // We found a match. Perform the conversions on the arguments and move on.
2127 if (Self.PerformImplicitConversion(LHS, Best->BuiltinTypes.ParamTypes[0],
Douglas Gregor68647482009-12-16 03:45:30 +00002128 Best->Conversions[0], Sema::AA_Converting) ||
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002129 Self.PerformImplicitConversion(RHS, Best->BuiltinTypes.ParamTypes[1],
Douglas Gregor68647482009-12-16 03:45:30 +00002130 Best->Conversions[1], Sema::AA_Converting))
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002131 break;
2132 return false;
2133
Douglas Gregor20093b42009-12-09 23:02:17 +00002134 case OR_No_Viable_Function:
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002135 Self.Diag(Loc, diag::err_typecheck_cond_incompatible_operands)
2136 << LHS->getType() << RHS->getType()
2137 << LHS->getSourceRange() << RHS->getSourceRange();
2138 return true;
2139
Douglas Gregor20093b42009-12-09 23:02:17 +00002140 case OR_Ambiguous:
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002141 Self.Diag(Loc, diag::err_conditional_ambiguous_ovl)
2142 << LHS->getType() << RHS->getType()
2143 << LHS->getSourceRange() << RHS->getSourceRange();
Mike Stump390b4cc2009-05-16 07:39:55 +00002144 // FIXME: Print the possible common types by printing the return types of
2145 // the viable candidates.
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002146 break;
2147
Douglas Gregor20093b42009-12-09 23:02:17 +00002148 case OR_Deleted:
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002149 assert(false && "Conditional operator has only built-in overloads");
2150 break;
2151 }
2152 return true;
2153}
2154
Sebastian Redl76458502009-04-17 16:30:52 +00002155/// \brief Perform an "extended" implicit conversion as returned by
2156/// TryClassUnification.
Douglas Gregorb70cf442010-03-26 20:14:36 +00002157static bool ConvertForConditional(Sema &Self, Expr *&E, QualType T) {
2158 InitializedEntity Entity = InitializedEntity::InitializeTemporary(T);
2159 InitializationKind Kind = InitializationKind::CreateCopy(E->getLocStart(),
2160 SourceLocation());
2161 InitializationSequence InitSeq(Self, Entity, Kind, &E, 1);
2162 Sema::OwningExprResult Result = InitSeq.Perform(Self, Entity, Kind,
2163 Sema::MultiExprArg(Self, (void **)&E, 1));
2164 if (Result.isInvalid())
Sebastian Redl76458502009-04-17 16:30:52 +00002165 return true;
Douglas Gregorb70cf442010-03-26 20:14:36 +00002166
2167 E = Result.takeAs<Expr>();
Sebastian Redl76458502009-04-17 16:30:52 +00002168 return false;
2169}
2170
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002171/// \brief Check the operands of ?: under C++ semantics.
2172///
2173/// See C++ [expr.cond]. Note that LHS is never null, even for the GNU x ?: y
2174/// extension. In this case, LHS == Cond. (But they're not aliases.)
2175QualType Sema::CXXCheckConditionalOperands(Expr *&Cond, Expr *&LHS, Expr *&RHS,
2176 SourceLocation QuestionLoc) {
Mike Stump390b4cc2009-05-16 07:39:55 +00002177 // FIXME: Handle C99's complex types, vector types, block pointers and Obj-C++
2178 // interface pointers.
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002179
2180 // C++0x 5.16p1
2181 // The first expression is contextually converted to bool.
2182 if (!Cond->isTypeDependent()) {
2183 if (CheckCXXBooleanCondition(Cond))
2184 return QualType();
2185 }
2186
2187 // Either of the arguments dependent?
2188 if (LHS->isTypeDependent() || RHS->isTypeDependent())
2189 return Context.DependentTy;
2190
2191 // C++0x 5.16p2
2192 // If either the second or the third operand has type (cv) void, ...
2193 QualType LTy = LHS->getType();
2194 QualType RTy = RHS->getType();
2195 bool LVoid = LTy->isVoidType();
2196 bool RVoid = RTy->isVoidType();
2197 if (LVoid || RVoid) {
2198 // ... then the [l2r] conversions are performed on the second and third
2199 // operands ...
Douglas Gregora873dfc2010-02-03 00:27:59 +00002200 DefaultFunctionArrayLvalueConversion(LHS);
2201 DefaultFunctionArrayLvalueConversion(RHS);
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002202 LTy = LHS->getType();
2203 RTy = RHS->getType();
2204
2205 // ... and one of the following shall hold:
2206 // -- The second or the third operand (but not both) is a throw-
2207 // expression; the result is of the type of the other and is an rvalue.
2208 bool LThrow = isa<CXXThrowExpr>(LHS);
2209 bool RThrow = isa<CXXThrowExpr>(RHS);
2210 if (LThrow && !RThrow)
2211 return RTy;
2212 if (RThrow && !LThrow)
2213 return LTy;
2214
2215 // -- Both the second and third operands have type void; the result is of
2216 // type void and is an rvalue.
2217 if (LVoid && RVoid)
2218 return Context.VoidTy;
2219
2220 // Neither holds, error.
2221 Diag(QuestionLoc, diag::err_conditional_void_nonvoid)
2222 << (LVoid ? RTy : LTy) << (LVoid ? 0 : 1)
2223 << LHS->getSourceRange() << RHS->getSourceRange();
2224 return QualType();
2225 }
2226
2227 // Neither is void.
2228
2229 // C++0x 5.16p3
2230 // Otherwise, if the second and third operand have different types, and
2231 // either has (cv) class type, and attempt is made to convert each of those
2232 // operands to the other.
Douglas Gregorb70cf442010-03-26 20:14:36 +00002233 if (!Context.hasSameType(LTy, RTy) &&
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002234 (LTy->isRecordType() || RTy->isRecordType())) {
2235 ImplicitConversionSequence ICSLeftToRight, ICSRightToLeft;
2236 // These return true if a single direction is already ambiguous.
Douglas Gregorb70cf442010-03-26 20:14:36 +00002237 QualType L2RType, R2LType;
2238 bool HaveL2R, HaveR2L;
2239 if (TryClassUnification(*this, LHS, RHS, QuestionLoc, HaveL2R, L2RType))
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002240 return QualType();
Douglas Gregorb70cf442010-03-26 20:14:36 +00002241 if (TryClassUnification(*this, RHS, LHS, QuestionLoc, HaveR2L, R2LType))
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002242 return QualType();
Douglas Gregorb70cf442010-03-26 20:14:36 +00002243
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002244 // If both can be converted, [...] the program is ill-formed.
2245 if (HaveL2R && HaveR2L) {
2246 Diag(QuestionLoc, diag::err_conditional_ambiguous)
2247 << LTy << RTy << LHS->getSourceRange() << RHS->getSourceRange();
2248 return QualType();
2249 }
2250
2251 // If exactly one conversion is possible, that conversion is applied to
2252 // the chosen operand and the converted operands are used in place of the
2253 // original operands for the remainder of this section.
2254 if (HaveL2R) {
Douglas Gregorb70cf442010-03-26 20:14:36 +00002255 if (ConvertForConditional(*this, LHS, L2RType))
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002256 return QualType();
2257 LTy = LHS->getType();
2258 } else if (HaveR2L) {
Douglas Gregorb70cf442010-03-26 20:14:36 +00002259 if (ConvertForConditional(*this, RHS, R2LType))
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002260 return QualType();
2261 RTy = RHS->getType();
2262 }
2263 }
2264
2265 // C++0x 5.16p4
2266 // If the second and third operands are lvalues and have the same type,
2267 // the result is of that type [...]
Douglas Gregor1927b1f2010-04-01 22:47:07 +00002268 bool Same = Context.hasSameType(LTy, RTy);
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002269 if (Same && LHS->isLvalue(Context) == Expr::LV_Valid &&
2270 RHS->isLvalue(Context) == Expr::LV_Valid)
2271 return LTy;
2272
2273 // C++0x 5.16p5
2274 // Otherwise, the result is an rvalue. If the second and third operands
2275 // do not have the same type, and either has (cv) class type, ...
2276 if (!Same && (LTy->isRecordType() || RTy->isRecordType())) {
2277 // ... overload resolution is used to determine the conversions (if any)
2278 // to be applied to the operands. If the overload resolution fails, the
2279 // program is ill-formed.
2280 if (FindConditionalOverload(*this, LHS, RHS, QuestionLoc))
2281 return QualType();
2282 }
2283
2284 // C++0x 5.16p6
2285 // LValue-to-rvalue, array-to-pointer, and function-to-pointer standard
2286 // conversions are performed on the second and third operands.
Douglas Gregora873dfc2010-02-03 00:27:59 +00002287 DefaultFunctionArrayLvalueConversion(LHS);
2288 DefaultFunctionArrayLvalueConversion(RHS);
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002289 LTy = LHS->getType();
2290 RTy = RHS->getType();
2291
2292 // After those conversions, one of the following shall hold:
2293 // -- The second and third operands have the same type; the result
Douglas Gregorb65a4582010-05-19 23:40:50 +00002294 // is of that type. If the operands have class type, the result
2295 // is a prvalue temporary of the result type, which is
2296 // copy-initialized from either the second operand or the third
2297 // operand depending on the value of the first operand.
2298 if (Context.getCanonicalType(LTy) == Context.getCanonicalType(RTy)) {
2299 if (LTy->isRecordType()) {
2300 // The operands have class type. Make a temporary copy.
2301 InitializedEntity Entity = InitializedEntity::InitializeTemporary(LTy);
2302 OwningExprResult LHSCopy = PerformCopyInitialization(Entity,
2303 SourceLocation(),
2304 Owned(LHS));
2305 if (LHSCopy.isInvalid())
2306 return QualType();
2307
2308 OwningExprResult RHSCopy = PerformCopyInitialization(Entity,
2309 SourceLocation(),
2310 Owned(RHS));
2311 if (RHSCopy.isInvalid())
2312 return QualType();
2313
2314 LHS = LHSCopy.takeAs<Expr>();
2315 RHS = RHSCopy.takeAs<Expr>();
2316 }
2317
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002318 return LTy;
Douglas Gregorb65a4582010-05-19 23:40:50 +00002319 }
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002320
Douglas Gregorfb4a5432010-05-18 22:42:18 +00002321 // Extension: conditional operator involving vector types.
2322 if (LTy->isVectorType() || RTy->isVectorType())
2323 return CheckVectorOperands(QuestionLoc, LHS, RHS);
2324
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002325 // -- The second and third operands have arithmetic or enumeration type;
2326 // the usual arithmetic conversions are performed to bring them to a
2327 // common type, and the result is of that type.
2328 if (LTy->isArithmeticType() && RTy->isArithmeticType()) {
2329 UsualArithmeticConversions(LHS, RHS);
2330 return LHS->getType();
2331 }
2332
2333 // -- The second and third operands have pointer type, or one has pointer
2334 // type and the other is a null pointer constant; pointer conversions
2335 // and qualification conversions are performed to bring them to their
2336 // composite pointer type. The result is of the composite pointer type.
Eli Friedmande8ac492010-01-02 22:56:07 +00002337 // -- The second and third operands have pointer to member type, or one has
2338 // pointer to member type and the other is a null pointer constant;
2339 // pointer to member conversions and qualification conversions are
2340 // performed to bring them to a common type, whose cv-qualification
2341 // shall match the cv-qualification of either the second or the third
2342 // operand. The result is of the common type.
Douglas Gregorb2cb1cb2010-02-25 22:29:57 +00002343 bool NonStandardCompositeType = false;
Douglas Gregor8f00dcf2010-04-16 23:20:25 +00002344 QualType Composite = FindCompositePointerType(QuestionLoc, LHS, RHS,
Douglas Gregorb2cb1cb2010-02-25 22:29:57 +00002345 isSFINAEContext()? 0 : &NonStandardCompositeType);
2346 if (!Composite.isNull()) {
2347 if (NonStandardCompositeType)
2348 Diag(QuestionLoc,
2349 diag::ext_typecheck_cond_incompatible_operands_nonstandard)
2350 << LTy << RTy << Composite
2351 << LHS->getSourceRange() << RHS->getSourceRange();
2352
Sebastian Redld1bd7fc2009-04-19 19:26:31 +00002353 return Composite;
Douglas Gregorb2cb1cb2010-02-25 22:29:57 +00002354 }
Fariborz Jahanian55016362009-12-10 20:46:08 +00002355
Douglas Gregor1927b1f2010-04-01 22:47:07 +00002356 // Similarly, attempt to find composite type of two objective-c pointers.
Fariborz Jahanian55016362009-12-10 20:46:08 +00002357 Composite = FindCompositeObjCPointerType(LHS, RHS, QuestionLoc);
2358 if (!Composite.isNull())
2359 return Composite;
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002360
Sebastian Redl3201f6b2009-04-16 17:51:27 +00002361 Diag(QuestionLoc, diag::err_typecheck_cond_incompatible_operands)
2362 << LHS->getType() << RHS->getType()
2363 << LHS->getSourceRange() << RHS->getSourceRange();
2364 return QualType();
2365}
Sebastian Redld1bd7fc2009-04-19 19:26:31 +00002366
2367/// \brief Find a merged pointer type and convert the two expressions to it.
2368///
Douglas Gregor20b3e992009-08-24 17:42:35 +00002369/// This finds the composite pointer type (or member pointer type) for @p E1
2370/// and @p E2 according to C++0x 5.9p2. It converts both expressions to this
2371/// type and returns it.
Sebastian Redld1bd7fc2009-04-19 19:26:31 +00002372/// It does not emit diagnostics.
Douglas Gregorb2cb1cb2010-02-25 22:29:57 +00002373///
Douglas Gregor8f00dcf2010-04-16 23:20:25 +00002374/// \param Loc The location of the operator requiring these two expressions to
2375/// be converted to the composite pointer type.
2376///
Douglas Gregorb2cb1cb2010-02-25 22:29:57 +00002377/// If \p NonStandardCompositeType is non-NULL, then we are permitted to find
2378/// a non-standard (but still sane) composite type to which both expressions
2379/// can be converted. When such a type is chosen, \c *NonStandardCompositeType
2380/// will be set true.
Douglas Gregor8f00dcf2010-04-16 23:20:25 +00002381QualType Sema::FindCompositePointerType(SourceLocation Loc,
2382 Expr *&E1, Expr *&E2,
Douglas Gregorb2cb1cb2010-02-25 22:29:57 +00002383 bool *NonStandardCompositeType) {
2384 if (NonStandardCompositeType)
2385 *NonStandardCompositeType = false;
2386
Sebastian Redld1bd7fc2009-04-19 19:26:31 +00002387 assert(getLangOptions().CPlusPlus && "This function assumes C++");
2388 QualType T1 = E1->getType(), T2 = E2->getType();
Mike Stump1eb44332009-09-09 15:08:12 +00002389
Fariborz Jahanian0cedfbd2009-12-08 20:04:24 +00002390 if (!T1->isAnyPointerType() && !T1->isMemberPointerType() &&
2391 !T2->isAnyPointerType() && !T2->isMemberPointerType())
Douglas Gregor20b3e992009-08-24 17:42:35 +00002392 return QualType();
Sebastian Redld1bd7fc2009-04-19 19:26:31 +00002393
2394 // C++0x 5.9p2
2395 // Pointer conversions and qualification conversions are performed on
2396 // pointer operands to bring them to their composite pointer type. If
2397 // one operand is a null pointer constant, the composite pointer type is
2398 // the type of the other operand.
Douglas Gregorce940492009-09-25 04:25:58 +00002399 if (E1->isNullPointerConstant(Context, Expr::NPC_ValueDependentIsNull)) {
Eli Friedman73c39ab2009-10-20 08:27:19 +00002400 if (T2->isMemberPointerType())
2401 ImpCastExprToType(E1, T2, CastExpr::CK_NullToMemberPointer);
2402 else
2403 ImpCastExprToType(E1, T2, CastExpr::CK_IntegralToPointer);
Sebastian Redld1bd7fc2009-04-19 19:26:31 +00002404 return T2;
2405 }
Douglas Gregorce940492009-09-25 04:25:58 +00002406 if (E2->isNullPointerConstant(Context, Expr::NPC_ValueDependentIsNull)) {
Eli Friedman73c39ab2009-10-20 08:27:19 +00002407 if (T1->isMemberPointerType())
2408 ImpCastExprToType(E2, T1, CastExpr::CK_NullToMemberPointer);
2409 else
2410 ImpCastExprToType(E2, T1, CastExpr::CK_IntegralToPointer);
Sebastian Redld1bd7fc2009-04-19 19:26:31 +00002411 return T1;
2412 }
Mike Stump1eb44332009-09-09 15:08:12 +00002413
Douglas Gregor20b3e992009-08-24 17:42:35 +00002414 // Now both have to be pointers or member pointers.
Sebastian Redla439e6f2009-11-16 21:03:45 +00002415 if ((!T1->isPointerType() && !T1->isMemberPointerType()) ||
2416 (!T2->isPointerType() && !T2->isMemberPointerType()))
Sebastian Redld1bd7fc2009-04-19 19:26:31 +00002417 return QualType();
2418
2419 // Otherwise, of one of the operands has type "pointer to cv1 void," then
2420 // the other has type "pointer to cv2 T" and the composite pointer type is
2421 // "pointer to cv12 void," where cv12 is the union of cv1 and cv2.
2422 // Otherwise, the composite pointer type is a pointer type similar to the
2423 // type of one of the operands, with a cv-qualification signature that is
2424 // the union of the cv-qualification signatures of the operand types.
2425 // In practice, the first part here is redundant; it's subsumed by the second.
2426 // What we do here is, we build the two possible composite types, and try the
2427 // conversions in both directions. If only one works, or if the two composite
2428 // types are the same, we have succeeded.
John McCall0953e762009-09-24 19:53:00 +00002429 // FIXME: extended qualifiers?
Sebastian Redla439e6f2009-11-16 21:03:45 +00002430 typedef llvm::SmallVector<unsigned, 4> QualifierVector;
2431 QualifierVector QualifierUnion;
2432 typedef llvm::SmallVector<std::pair<const Type *, const Type *>, 4>
2433 ContainingClassVector;
2434 ContainingClassVector MemberOfClass;
2435 QualType Composite1 = Context.getCanonicalType(T1),
2436 Composite2 = Context.getCanonicalType(T2);
Douglas Gregorb2cb1cb2010-02-25 22:29:57 +00002437 unsigned NeedConstBefore = 0;
Douglas Gregor20b3e992009-08-24 17:42:35 +00002438 do {
2439 const PointerType *Ptr1, *Ptr2;
2440 if ((Ptr1 = Composite1->getAs<PointerType>()) &&
2441 (Ptr2 = Composite2->getAs<PointerType>())) {
2442 Composite1 = Ptr1->getPointeeType();
2443 Composite2 = Ptr2->getPointeeType();
Douglas Gregorb2cb1cb2010-02-25 22:29:57 +00002444
2445 // If we're allowed to create a non-standard composite type, keep track
2446 // of where we need to fill in additional 'const' qualifiers.
2447 if (NonStandardCompositeType &&
2448 Composite1.getCVRQualifiers() != Composite2.getCVRQualifiers())
2449 NeedConstBefore = QualifierUnion.size();
2450
Douglas Gregor20b3e992009-08-24 17:42:35 +00002451 QualifierUnion.push_back(
2452 Composite1.getCVRQualifiers() | Composite2.getCVRQualifiers());
2453 MemberOfClass.push_back(std::make_pair((const Type *)0, (const Type *)0));
2454 continue;
2455 }
Mike Stump1eb44332009-09-09 15:08:12 +00002456
Douglas Gregor20b3e992009-08-24 17:42:35 +00002457 const MemberPointerType *MemPtr1, *MemPtr2;
2458 if ((MemPtr1 = Composite1->getAs<MemberPointerType>()) &&
2459 (MemPtr2 = Composite2->getAs<MemberPointerType>())) {
2460 Composite1 = MemPtr1->getPointeeType();
2461 Composite2 = MemPtr2->getPointeeType();
Douglas Gregorb2cb1cb2010-02-25 22:29:57 +00002462
2463 // If we're allowed to create a non-standard composite type, keep track
2464 // of where we need to fill in additional 'const' qualifiers.
2465 if (NonStandardCompositeType &&
2466 Composite1.getCVRQualifiers() != Composite2.getCVRQualifiers())
2467 NeedConstBefore = QualifierUnion.size();
2468
Douglas Gregor20b3e992009-08-24 17:42:35 +00002469 QualifierUnion.push_back(
2470 Composite1.getCVRQualifiers() | Composite2.getCVRQualifiers());
2471 MemberOfClass.push_back(std::make_pair(MemPtr1->getClass(),
2472 MemPtr2->getClass()));
2473 continue;
2474 }
Mike Stump1eb44332009-09-09 15:08:12 +00002475
Douglas Gregor20b3e992009-08-24 17:42:35 +00002476 // FIXME: block pointer types?
Mike Stump1eb44332009-09-09 15:08:12 +00002477
Douglas Gregor20b3e992009-08-24 17:42:35 +00002478 // Cannot unwrap any more types.
2479 break;
2480 } while (true);
Mike Stump1eb44332009-09-09 15:08:12 +00002481
Douglas Gregorb2cb1cb2010-02-25 22:29:57 +00002482 if (NeedConstBefore && NonStandardCompositeType) {
2483 // Extension: Add 'const' to qualifiers that come before the first qualifier
2484 // mismatch, so that our (non-standard!) composite type meets the
2485 // requirements of C++ [conv.qual]p4 bullet 3.
2486 for (unsigned I = 0; I != NeedConstBefore; ++I) {
2487 if ((QualifierUnion[I] & Qualifiers::Const) == 0) {
2488 QualifierUnion[I] = QualifierUnion[I] | Qualifiers::Const;
2489 *NonStandardCompositeType = true;
2490 }
2491 }
2492 }
2493
Douglas Gregor20b3e992009-08-24 17:42:35 +00002494 // Rewrap the composites as pointers or member pointers with the union CVRs.
Sebastian Redla439e6f2009-11-16 21:03:45 +00002495 ContainingClassVector::reverse_iterator MOC
2496 = MemberOfClass.rbegin();
2497 for (QualifierVector::reverse_iterator
2498 I = QualifierUnion.rbegin(),
2499 E = QualifierUnion.rend();
Douglas Gregor20b3e992009-08-24 17:42:35 +00002500 I != E; (void)++I, ++MOC) {
John McCall0953e762009-09-24 19:53:00 +00002501 Qualifiers Quals = Qualifiers::fromCVRMask(*I);
Douglas Gregor20b3e992009-08-24 17:42:35 +00002502 if (MOC->first && MOC->second) {
2503 // Rebuild member pointer type
John McCall0953e762009-09-24 19:53:00 +00002504 Composite1 = Context.getMemberPointerType(
2505 Context.getQualifiedType(Composite1, Quals),
2506 MOC->first);
2507 Composite2 = Context.getMemberPointerType(
2508 Context.getQualifiedType(Composite2, Quals),
2509 MOC->second);
Douglas Gregor20b3e992009-08-24 17:42:35 +00002510 } else {
2511 // Rebuild pointer type
John McCall0953e762009-09-24 19:53:00 +00002512 Composite1
2513 = Context.getPointerType(Context.getQualifiedType(Composite1, Quals));
2514 Composite2
2515 = Context.getPointerType(Context.getQualifiedType(Composite2, Quals));
Douglas Gregor20b3e992009-08-24 17:42:35 +00002516 }
Sebastian Redld1bd7fc2009-04-19 19:26:31 +00002517 }
2518
Douglas Gregor8f00dcf2010-04-16 23:20:25 +00002519 // Try to convert to the first composite pointer type.
2520 InitializedEntity Entity1
2521 = InitializedEntity::InitializeTemporary(Composite1);
2522 InitializationKind Kind
2523 = InitializationKind::CreateCopy(Loc, SourceLocation());
2524 InitializationSequence E1ToC1(*this, Entity1, Kind, &E1, 1);
2525 InitializationSequence E2ToC1(*this, Entity1, Kind, &E2, 1);
Mike Stump1eb44332009-09-09 15:08:12 +00002526
Douglas Gregor8f00dcf2010-04-16 23:20:25 +00002527 if (E1ToC1 && E2ToC1) {
2528 // Conversion to Composite1 is viable.
2529 if (!Context.hasSameType(Composite1, Composite2)) {
2530 // Composite2 is a different type from Composite1. Check whether
2531 // Composite2 is also viable.
2532 InitializedEntity Entity2
2533 = InitializedEntity::InitializeTemporary(Composite2);
2534 InitializationSequence E1ToC2(*this, Entity2, Kind, &E1, 1);
2535 InitializationSequence E2ToC2(*this, Entity2, Kind, &E2, 1);
2536 if (E1ToC2 && E2ToC2) {
2537 // Both Composite1 and Composite2 are viable and are different;
2538 // this is an ambiguity.
2539 return QualType();
2540 }
2541 }
2542
2543 // Convert E1 to Composite1
2544 OwningExprResult E1Result
2545 = E1ToC1.Perform(*this, Entity1, Kind, MultiExprArg(*this,(void**)&E1,1));
2546 if (E1Result.isInvalid())
2547 return QualType();
2548 E1 = E1Result.takeAs<Expr>();
2549
2550 // Convert E2 to Composite1
2551 OwningExprResult E2Result
2552 = E2ToC1.Perform(*this, Entity1, Kind, MultiExprArg(*this,(void**)&E2,1));
2553 if (E2Result.isInvalid())
2554 return QualType();
2555 E2 = E2Result.takeAs<Expr>();
2556
2557 return Composite1;
Sebastian Redld1bd7fc2009-04-19 19:26:31 +00002558 }
2559
Douglas Gregor8f00dcf2010-04-16 23:20:25 +00002560 // Check whether Composite2 is viable.
2561 InitializedEntity Entity2
2562 = InitializedEntity::InitializeTemporary(Composite2);
2563 InitializationSequence E1ToC2(*this, Entity2, Kind, &E1, 1);
2564 InitializationSequence E2ToC2(*this, Entity2, Kind, &E2, 1);
2565 if (!E1ToC2 || !E2ToC2)
2566 return QualType();
2567
2568 // Convert E1 to Composite2
2569 OwningExprResult E1Result
2570 = E1ToC2.Perform(*this, Entity2, Kind, MultiExprArg(*this, (void**)&E1, 1));
2571 if (E1Result.isInvalid())
2572 return QualType();
2573 E1 = E1Result.takeAs<Expr>();
2574
2575 // Convert E2 to Composite2
2576 OwningExprResult E2Result
2577 = E2ToC2.Perform(*this, Entity2, Kind, MultiExprArg(*this, (void**)&E2, 1));
2578 if (E2Result.isInvalid())
2579 return QualType();
2580 E2 = E2Result.takeAs<Expr>();
2581
2582 return Composite2;
Sebastian Redld1bd7fc2009-04-19 19:26:31 +00002583}
Anders Carlsson165a0a02009-05-17 18:41:29 +00002584
Anders Carlssondef11992009-05-30 20:36:53 +00002585Sema::OwningExprResult Sema::MaybeBindToTemporary(Expr *E) {
Anders Carlsson089c2602009-08-15 23:41:35 +00002586 if (!Context.getLangOptions().CPlusPlus)
2587 return Owned(E);
Mike Stump1eb44332009-09-09 15:08:12 +00002588
Douglas Gregor51326552009-12-24 18:51:59 +00002589 assert(!isa<CXXBindTemporaryExpr>(E) && "Double-bound temporary?");
2590
Ted Kremenek6217b802009-07-29 21:53:49 +00002591 const RecordType *RT = E->getType()->getAs<RecordType>();
Anders Carlssondef11992009-05-30 20:36:53 +00002592 if (!RT)
2593 return Owned(E);
Mike Stump1eb44332009-09-09 15:08:12 +00002594
John McCall86ff3082010-02-04 22:26:26 +00002595 // If this is the result of a call expression, our source might
2596 // actually be a reference, in which case we shouldn't bind.
Anders Carlsson283e4d52009-09-14 01:30:44 +00002597 if (CallExpr *CE = dyn_cast<CallExpr>(E)) {
2598 QualType Ty = CE->getCallee()->getType();
2599 if (const PointerType *PT = Ty->getAs<PointerType>())
2600 Ty = PT->getPointeeType();
Fariborz Jahanianb372b0f2010-02-18 20:31:02 +00002601 else if (const BlockPointerType *BPT = Ty->getAs<BlockPointerType>())
2602 Ty = BPT->getPointeeType();
2603
John McCall183700f2009-09-21 23:43:11 +00002604 const FunctionType *FTy = Ty->getAs<FunctionType>();
Anders Carlsson283e4d52009-09-14 01:30:44 +00002605 if (FTy->getResultType()->isReferenceType())
2606 return Owned(E);
2607 }
Fariborz Jahaniand4266622010-06-16 18:56:04 +00002608 else if (ObjCMessageExpr *ME = dyn_cast<ObjCMessageExpr>(E)) {
2609 QualType Ty = ME->getType();
2610 if (const PointerType *PT = Ty->getAs<PointerType>())
2611 Ty = PT->getPointeeType();
2612 else if (const BlockPointerType *BPT = Ty->getAs<BlockPointerType>())
2613 Ty = BPT->getPointeeType();
2614 if (Ty->isReferenceType())
2615 return Owned(E);
2616 }
2617
John McCall86ff3082010-02-04 22:26:26 +00002618
2619 // That should be enough to guarantee that this type is complete.
2620 // If it has a trivial destructor, we can avoid the extra copy.
2621 CXXRecordDecl *RD = cast<CXXRecordDecl>(RT->getDecl());
2622 if (RD->hasTrivialDestructor())
2623 return Owned(E);
2624
Mike Stump1eb44332009-09-09 15:08:12 +00002625 CXXTemporary *Temp = CXXTemporary::Create(Context,
Anders Carlssondef11992009-05-30 20:36:53 +00002626 RD->getDestructor(Context));
Anders Carlsson860306e2009-05-30 21:21:49 +00002627 ExprTemporaries.push_back(Temp);
Fariborz Jahaniana83f7ed2009-08-03 19:13:25 +00002628 if (CXXDestructorDecl *Destructor =
John McCallc91cc662010-04-07 00:41:46 +00002629 const_cast<CXXDestructorDecl*>(RD->getDestructor(Context))) {
Fariborz Jahaniana83f7ed2009-08-03 19:13:25 +00002630 MarkDeclarationReferenced(E->getExprLoc(), Destructor);
John McCallc91cc662010-04-07 00:41:46 +00002631 CheckDestructorAccess(E->getExprLoc(), Destructor,
2632 PDiag(diag::err_access_dtor_temp)
2633 << E->getType());
2634 }
Anders Carlssondef11992009-05-30 20:36:53 +00002635 // FIXME: Add the temporary to the temporaries vector.
2636 return Owned(CXXBindTemporaryExpr::Create(Context, Temp, E));
2637}
2638
Anders Carlsson0ece4912009-12-15 20:51:39 +00002639Expr *Sema::MaybeCreateCXXExprWithTemporaries(Expr *SubExpr) {
Anders Carlsson99ba36d2009-06-05 15:38:08 +00002640 assert(SubExpr && "sub expression can't be null!");
Mike Stump1eb44332009-09-09 15:08:12 +00002641
John McCall323ed742010-05-06 08:58:33 +00002642 // Check any implicit conversions within the expression.
2643 CheckImplicitConversions(SubExpr);
2644
Douglas Gregor1f5f3a42009-12-03 17:10:37 +00002645 unsigned FirstTemporary = ExprEvalContexts.back().NumTemporaries;
2646 assert(ExprTemporaries.size() >= FirstTemporary);
2647 if (ExprTemporaries.size() == FirstTemporary)
Anders Carlsson99ba36d2009-06-05 15:38:08 +00002648 return SubExpr;
Mike Stump1eb44332009-09-09 15:08:12 +00002649
Anders Carlsson99ba36d2009-06-05 15:38:08 +00002650 Expr *E = CXXExprWithTemporaries::Create(Context, SubExpr,
Douglas Gregor1f5f3a42009-12-03 17:10:37 +00002651 &ExprTemporaries[FirstTemporary],
Anders Carlsson0ece4912009-12-15 20:51:39 +00002652 ExprTemporaries.size() - FirstTemporary);
Douglas Gregor1f5f3a42009-12-03 17:10:37 +00002653 ExprTemporaries.erase(ExprTemporaries.begin() + FirstTemporary,
2654 ExprTemporaries.end());
Mike Stump1eb44332009-09-09 15:08:12 +00002655
Anders Carlsson99ba36d2009-06-05 15:38:08 +00002656 return E;
2657}
2658
Douglas Gregor90f93822009-12-22 22:17:25 +00002659Sema::OwningExprResult
2660Sema::MaybeCreateCXXExprWithTemporaries(OwningExprResult SubExpr) {
2661 if (SubExpr.isInvalid())
2662 return ExprError();
2663
2664 return Owned(MaybeCreateCXXExprWithTemporaries(SubExpr.takeAs<Expr>()));
2665}
2666
Anders Carlsson5ee56e92009-12-16 02:09:40 +00002667FullExpr Sema::CreateFullExpr(Expr *SubExpr) {
2668 unsigned FirstTemporary = ExprEvalContexts.back().NumTemporaries;
2669 assert(ExprTemporaries.size() >= FirstTemporary);
2670
2671 unsigned NumTemporaries = ExprTemporaries.size() - FirstTemporary;
2672 CXXTemporary **Temporaries =
2673 NumTemporaries == 0 ? 0 : &ExprTemporaries[FirstTemporary];
2674
2675 FullExpr E = FullExpr::Create(Context, SubExpr, Temporaries, NumTemporaries);
2676
2677 ExprTemporaries.erase(ExprTemporaries.begin() + FirstTemporary,
2678 ExprTemporaries.end());
2679
2680 return E;
2681}
2682
Mike Stump1eb44332009-09-09 15:08:12 +00002683Sema::OwningExprResult
Douglas Gregor2dd078a2009-09-02 22:59:36 +00002684Sema::ActOnStartCXXMemberReference(Scope *S, ExprArg Base, SourceLocation OpLoc,
Douglas Gregord4dca082010-02-24 18:44:31 +00002685 tok::TokenKind OpKind, TypeTy *&ObjectType,
2686 bool &MayBePseudoDestructor) {
Douglas Gregor2dd078a2009-09-02 22:59:36 +00002687 // Since this might be a postfix expression, get rid of ParenListExprs.
2688 Base = MaybeConvertParenListExprToParenExpr(S, move(Base));
Mike Stump1eb44332009-09-09 15:08:12 +00002689
Douglas Gregor2dd078a2009-09-02 22:59:36 +00002690 Expr *BaseExpr = (Expr*)Base.get();
2691 assert(BaseExpr && "no record expansion");
Mike Stump1eb44332009-09-09 15:08:12 +00002692
Douglas Gregor2dd078a2009-09-02 22:59:36 +00002693 QualType BaseType = BaseExpr->getType();
Douglas Gregord4dca082010-02-24 18:44:31 +00002694 MayBePseudoDestructor = false;
Douglas Gregor2dd078a2009-09-02 22:59:36 +00002695 if (BaseType->isDependentType()) {
Douglas Gregor43d88632009-11-04 22:49:18 +00002696 // If we have a pointer to a dependent type and are using the -> operator,
2697 // the object type is the type that the pointer points to. We might still
2698 // have enough information about that type to do something useful.
2699 if (OpKind == tok::arrow)
2700 if (const PointerType *Ptr = BaseType->getAs<PointerType>())
2701 BaseType = Ptr->getPointeeType();
2702
Douglas Gregor2dd078a2009-09-02 22:59:36 +00002703 ObjectType = BaseType.getAsOpaquePtr();
Douglas Gregord4dca082010-02-24 18:44:31 +00002704 MayBePseudoDestructor = true;
Douglas Gregor2dd078a2009-09-02 22:59:36 +00002705 return move(Base);
2706 }
Mike Stump1eb44332009-09-09 15:08:12 +00002707
Douglas Gregor2dd078a2009-09-02 22:59:36 +00002708 // C++ [over.match.oper]p8:
Mike Stump1eb44332009-09-09 15:08:12 +00002709 // [...] When operator->returns, the operator-> is applied to the value
Douglas Gregor2dd078a2009-09-02 22:59:36 +00002710 // returned, with the original second operand.
2711 if (OpKind == tok::arrow) {
John McCallc4e83212009-09-30 01:01:30 +00002712 // The set of types we've considered so far.
John McCall432887f2009-09-30 01:30:54 +00002713 llvm::SmallPtrSet<CanQualType,8> CTypes;
Fariborz Jahanian7a8233a2009-09-30 17:46:20 +00002714 llvm::SmallVector<SourceLocation, 8> Locations;
John McCall432887f2009-09-30 01:30:54 +00002715 CTypes.insert(Context.getCanonicalType(BaseType));
John McCallc4e83212009-09-30 01:01:30 +00002716
Douglas Gregor2dd078a2009-09-02 22:59:36 +00002717 while (BaseType->isRecordType()) {
Anders Carlsson15ea3782009-10-13 22:43:21 +00002718 Base = BuildOverloadedArrowExpr(S, move(Base), OpLoc);
Douglas Gregor2dd078a2009-09-02 22:59:36 +00002719 BaseExpr = (Expr*)Base.get();
2720 if (BaseExpr == NULL)
2721 return ExprError();
Fariborz Jahanian7a8233a2009-09-30 17:46:20 +00002722 if (CXXOperatorCallExpr *OpCall = dyn_cast<CXXOperatorCallExpr>(BaseExpr))
Anders Carlssonde699e52009-10-13 22:55:59 +00002723 Locations.push_back(OpCall->getDirectCallee()->getLocation());
John McCallc4e83212009-09-30 01:01:30 +00002724 BaseType = BaseExpr->getType();
2725 CanQualType CBaseType = Context.getCanonicalType(BaseType);
John McCall432887f2009-09-30 01:30:54 +00002726 if (!CTypes.insert(CBaseType)) {
Fariborz Jahanian4a4e3452009-09-30 00:19:41 +00002727 Diag(OpLoc, diag::err_operator_arrow_circular);
Fariborz Jahanian7a8233a2009-09-30 17:46:20 +00002728 for (unsigned i = 0; i < Locations.size(); i++)
2729 Diag(Locations[i], diag::note_declared_at);
Fariborz Jahanian4a4e3452009-09-30 00:19:41 +00002730 return ExprError();
2731 }
Douglas Gregor2dd078a2009-09-02 22:59:36 +00002732 }
Mike Stump1eb44332009-09-09 15:08:12 +00002733
Douglas Gregor31658df2009-11-20 19:58:21 +00002734 if (BaseType->isPointerType())
2735 BaseType = BaseType->getPointeeType();
2736 }
Mike Stump1eb44332009-09-09 15:08:12 +00002737
2738 // We could end up with various non-record types here, such as extended
Douglas Gregor2dd078a2009-09-02 22:59:36 +00002739 // vector types or Objective-C interfaces. Just return early and let
2740 // ActOnMemberReferenceExpr do the work.
Douglas Gregorc68afe22009-09-03 21:38:09 +00002741 if (!BaseType->isRecordType()) {
2742 // C++ [basic.lookup.classref]p2:
2743 // [...] If the type of the object expression is of pointer to scalar
2744 // type, the unqualified-id is looked up in the context of the complete
2745 // postfix-expression.
Douglas Gregord4dca082010-02-24 18:44:31 +00002746 //
2747 // This also indicates that we should be parsing a
2748 // pseudo-destructor-name.
Douglas Gregorc68afe22009-09-03 21:38:09 +00002749 ObjectType = 0;
Douglas Gregord4dca082010-02-24 18:44:31 +00002750 MayBePseudoDestructor = true;
Douglas Gregor2dd078a2009-09-02 22:59:36 +00002751 return move(Base);
Douglas Gregorc68afe22009-09-03 21:38:09 +00002752 }
Mike Stump1eb44332009-09-09 15:08:12 +00002753
Douglas Gregor03c57052009-11-17 05:17:33 +00002754 // The object type must be complete (or dependent).
2755 if (!BaseType->isDependentType() &&
2756 RequireCompleteType(OpLoc, BaseType,
2757 PDiag(diag::err_incomplete_member_access)))
2758 return ExprError();
2759
Douglas Gregorc68afe22009-09-03 21:38:09 +00002760 // C++ [basic.lookup.classref]p2:
Mike Stump1eb44332009-09-09 15:08:12 +00002761 // If the id-expression in a class member access (5.2.5) is an
Douglas Gregor03c57052009-11-17 05:17:33 +00002762 // unqualified-id, and the type of the object expression is of a class
Douglas Gregorc68afe22009-09-03 21:38:09 +00002763 // type C (or of pointer to a class type C), the unqualified-id is looked
2764 // up in the scope of class C. [...]
Douglas Gregor2dd078a2009-09-02 22:59:36 +00002765 ObjectType = BaseType.getAsOpaquePtr();
Mike Stump1eb44332009-09-09 15:08:12 +00002766 return move(Base);
Douglas Gregor2dd078a2009-09-02 22:59:36 +00002767}
2768
Douglas Gregor77549082010-02-24 21:29:12 +00002769Sema::OwningExprResult Sema::DiagnoseDtorReference(SourceLocation NameLoc,
2770 ExprArg MemExpr) {
2771 Expr *E = (Expr *) MemExpr.get();
2772 SourceLocation ExpectedLParenLoc = PP.getLocForEndOfToken(NameLoc);
2773 Diag(E->getLocStart(), diag::err_dtor_expr_without_call)
2774 << isa<CXXPseudoDestructorExpr>(E)
Douglas Gregor849b2432010-03-31 17:46:05 +00002775 << FixItHint::CreateInsertion(ExpectedLParenLoc, "()");
Douglas Gregor77549082010-02-24 21:29:12 +00002776
2777 return ActOnCallExpr(/*Scope*/ 0,
2778 move(MemExpr),
2779 /*LPLoc*/ ExpectedLParenLoc,
2780 Sema::MultiExprArg(*this, 0, 0),
2781 /*CommaLocs*/ 0,
2782 /*RPLoc*/ ExpectedLParenLoc);
2783}
Douglas Gregord4dca082010-02-24 18:44:31 +00002784
Douglas Gregorb57fb492010-02-24 22:38:50 +00002785Sema::OwningExprResult Sema::BuildPseudoDestructorExpr(ExprArg Base,
2786 SourceLocation OpLoc,
2787 tok::TokenKind OpKind,
2788 const CXXScopeSpec &SS,
Douglas Gregor26d4ac92010-02-24 23:40:28 +00002789 TypeSourceInfo *ScopeTypeInfo,
Douglas Gregorb57fb492010-02-24 22:38:50 +00002790 SourceLocation CCLoc,
Douglas Gregorfce46ee2010-02-24 23:50:37 +00002791 SourceLocation TildeLoc,
Douglas Gregora2e7dd22010-02-25 01:56:36 +00002792 PseudoDestructorTypeStorage Destructed,
Douglas Gregorb57fb492010-02-24 22:38:50 +00002793 bool HasTrailingLParen) {
Douglas Gregora2e7dd22010-02-25 01:56:36 +00002794 TypeSourceInfo *DestructedTypeInfo = Destructed.getTypeSourceInfo();
Douglas Gregorb57fb492010-02-24 22:38:50 +00002795
2796 // C++ [expr.pseudo]p2:
2797 // The left-hand side of the dot operator shall be of scalar type. The
2798 // left-hand side of the arrow operator shall be of pointer to scalar type.
2799 // This scalar type is the object type.
2800 Expr *BaseE = (Expr *)Base.get();
2801 QualType ObjectType = BaseE->getType();
2802 if (OpKind == tok::arrow) {
2803 if (const PointerType *Ptr = ObjectType->getAs<PointerType>()) {
2804 ObjectType = Ptr->getPointeeType();
2805 } else if (!BaseE->isTypeDependent()) {
2806 // The user wrote "p->" when she probably meant "p."; fix it.
2807 Diag(OpLoc, diag::err_typecheck_member_reference_suggestion)
2808 << ObjectType << true
Douglas Gregor849b2432010-03-31 17:46:05 +00002809 << FixItHint::CreateReplacement(OpLoc, ".");
Douglas Gregorb57fb492010-02-24 22:38:50 +00002810 if (isSFINAEContext())
2811 return ExprError();
2812
2813 OpKind = tok::period;
2814 }
2815 }
2816
2817 if (!ObjectType->isDependentType() && !ObjectType->isScalarType()) {
2818 Diag(OpLoc, diag::err_pseudo_dtor_base_not_scalar)
2819 << ObjectType << BaseE->getSourceRange();
2820 return ExprError();
2821 }
2822
2823 // C++ [expr.pseudo]p2:
2824 // [...] The cv-unqualified versions of the object type and of the type
2825 // designated by the pseudo-destructor-name shall be the same type.
Douglas Gregora2e7dd22010-02-25 01:56:36 +00002826 if (DestructedTypeInfo) {
2827 QualType DestructedType = DestructedTypeInfo->getType();
2828 SourceLocation DestructedTypeStart
Abramo Bagnarabd054db2010-05-20 10:00:11 +00002829 = DestructedTypeInfo->getTypeLoc().getLocalSourceRange().getBegin();
Douglas Gregora2e7dd22010-02-25 01:56:36 +00002830 if (!DestructedType->isDependentType() && !ObjectType->isDependentType() &&
2831 !Context.hasSameUnqualifiedType(DestructedType, ObjectType)) {
2832 Diag(DestructedTypeStart, diag::err_pseudo_dtor_type_mismatch)
2833 << ObjectType << DestructedType << BaseE->getSourceRange()
Abramo Bagnarabd054db2010-05-20 10:00:11 +00002834 << DestructedTypeInfo->getTypeLoc().getLocalSourceRange();
Douglas Gregora2e7dd22010-02-25 01:56:36 +00002835
2836 // Recover by setting the destructed type to the object type.
2837 DestructedType = ObjectType;
2838 DestructedTypeInfo = Context.getTrivialTypeSourceInfo(ObjectType,
2839 DestructedTypeStart);
2840 Destructed = PseudoDestructorTypeStorage(DestructedTypeInfo);
2841 }
Douglas Gregorb57fb492010-02-24 22:38:50 +00002842 }
Douglas Gregora2e7dd22010-02-25 01:56:36 +00002843
Douglas Gregorb57fb492010-02-24 22:38:50 +00002844 // C++ [expr.pseudo]p2:
2845 // [...] Furthermore, the two type-names in a pseudo-destructor-name of the
2846 // form
2847 //
2848 // ::[opt] nested-name-specifier[opt] type-name :: ~ type-name
2849 //
2850 // shall designate the same scalar type.
2851 if (ScopeTypeInfo) {
2852 QualType ScopeType = ScopeTypeInfo->getType();
2853 if (!ScopeType->isDependentType() && !ObjectType->isDependentType() &&
John McCall81e317a2010-06-11 17:36:40 +00002854 !Context.hasSameUnqualifiedType(ScopeType, ObjectType)) {
Douglas Gregorb57fb492010-02-24 22:38:50 +00002855
Abramo Bagnarabd054db2010-05-20 10:00:11 +00002856 Diag(ScopeTypeInfo->getTypeLoc().getLocalSourceRange().getBegin(),
Douglas Gregorb57fb492010-02-24 22:38:50 +00002857 diag::err_pseudo_dtor_type_mismatch)
2858 << ObjectType << ScopeType << BaseE->getSourceRange()
Abramo Bagnarabd054db2010-05-20 10:00:11 +00002859 << ScopeTypeInfo->getTypeLoc().getLocalSourceRange();
Douglas Gregorb57fb492010-02-24 22:38:50 +00002860
2861 ScopeType = QualType();
2862 ScopeTypeInfo = 0;
2863 }
2864 }
2865
2866 OwningExprResult Result
2867 = Owned(new (Context) CXXPseudoDestructorExpr(Context,
2868 Base.takeAs<Expr>(),
2869 OpKind == tok::arrow,
2870 OpLoc,
2871 (NestedNameSpecifier *) SS.getScopeRep(),
2872 SS.getRange(),
2873 ScopeTypeInfo,
2874 CCLoc,
Douglas Gregorfce46ee2010-02-24 23:50:37 +00002875 TildeLoc,
Douglas Gregora2e7dd22010-02-25 01:56:36 +00002876 Destructed));
2877
Douglas Gregorb57fb492010-02-24 22:38:50 +00002878 if (HasTrailingLParen)
2879 return move(Result);
2880
Douglas Gregora2e7dd22010-02-25 01:56:36 +00002881 return DiagnoseDtorReference(Destructed.getLocation(), move(Result));
Douglas Gregor77549082010-02-24 21:29:12 +00002882}
2883
2884Sema::OwningExprResult Sema::ActOnPseudoDestructorExpr(Scope *S, ExprArg Base,
2885 SourceLocation OpLoc,
2886 tok::TokenKind OpKind,
Jeffrey Yasskin9ab14542010-04-08 16:38:48 +00002887 CXXScopeSpec &SS,
Douglas Gregor77549082010-02-24 21:29:12 +00002888 UnqualifiedId &FirstTypeName,
2889 SourceLocation CCLoc,
2890 SourceLocation TildeLoc,
2891 UnqualifiedId &SecondTypeName,
2892 bool HasTrailingLParen) {
2893 assert((FirstTypeName.getKind() == UnqualifiedId::IK_TemplateId ||
2894 FirstTypeName.getKind() == UnqualifiedId::IK_Identifier) &&
2895 "Invalid first type name in pseudo-destructor");
2896 assert((SecondTypeName.getKind() == UnqualifiedId::IK_TemplateId ||
2897 SecondTypeName.getKind() == UnqualifiedId::IK_Identifier) &&
2898 "Invalid second type name in pseudo-destructor");
2899
2900 Expr *BaseE = (Expr *)Base.get();
Douglas Gregor77549082010-02-24 21:29:12 +00002901
2902 // C++ [expr.pseudo]p2:
2903 // The left-hand side of the dot operator shall be of scalar type. The
2904 // left-hand side of the arrow operator shall be of pointer to scalar type.
2905 // This scalar type is the object type.
2906 QualType ObjectType = BaseE->getType();
2907 if (OpKind == tok::arrow) {
2908 if (const PointerType *Ptr = ObjectType->getAs<PointerType>()) {
2909 ObjectType = Ptr->getPointeeType();
Douglas Gregora2e7dd22010-02-25 01:56:36 +00002910 } else if (!ObjectType->isDependentType()) {
Douglas Gregor77549082010-02-24 21:29:12 +00002911 // The user wrote "p->" when she probably meant "p."; fix it.
2912 Diag(OpLoc, diag::err_typecheck_member_reference_suggestion)
Douglas Gregora2e7dd22010-02-25 01:56:36 +00002913 << ObjectType << true
Douglas Gregor849b2432010-03-31 17:46:05 +00002914 << FixItHint::CreateReplacement(OpLoc, ".");
Douglas Gregor77549082010-02-24 21:29:12 +00002915 if (isSFINAEContext())
2916 return ExprError();
2917
2918 OpKind = tok::period;
2919 }
2920 }
Douglas Gregora2e7dd22010-02-25 01:56:36 +00002921
2922 // Compute the object type that we should use for name lookup purposes. Only
2923 // record types and dependent types matter.
2924 void *ObjectTypePtrForLookup = 0;
2925 if (!SS.isSet()) {
Gabor Greif170e5082010-06-17 11:29:31 +00002926 ObjectTypePtrForLookup = const_cast<RecordType*>(
2927 ObjectType->getAs<RecordType>());
Douglas Gregora2e7dd22010-02-25 01:56:36 +00002928 if (!ObjectTypePtrForLookup && ObjectType->isDependentType())
2929 ObjectTypePtrForLookup = Context.DependentTy.getAsOpaquePtr();
2930 }
Douglas Gregor77549082010-02-24 21:29:12 +00002931
Douglas Gregorb57fb492010-02-24 22:38:50 +00002932 // Convert the name of the type being destructed (following the ~) into a
2933 // type (with source-location information).
Douglas Gregor77549082010-02-24 21:29:12 +00002934 QualType DestructedType;
2935 TypeSourceInfo *DestructedTypeInfo = 0;
Douglas Gregora2e7dd22010-02-25 01:56:36 +00002936 PseudoDestructorTypeStorage Destructed;
Douglas Gregor77549082010-02-24 21:29:12 +00002937 if (SecondTypeName.getKind() == UnqualifiedId::IK_Identifier) {
2938 TypeTy *T = getTypeName(*SecondTypeName.Identifier,
2939 SecondTypeName.StartLocation,
Douglas Gregora2e7dd22010-02-25 01:56:36 +00002940 S, &SS, true, ObjectTypePtrForLookup);
2941 if (!T &&
2942 ((SS.isSet() && !computeDeclContext(SS, false)) ||
2943 (!SS.isSet() && ObjectType->isDependentType()))) {
2944 // The name of the type being destroyed is a dependent name, and we
2945 // couldn't find anything useful in scope. Just store the identifier and
2946 // it's location, and we'll perform (qualified) name lookup again at
2947 // template instantiation time.
2948 Destructed = PseudoDestructorTypeStorage(SecondTypeName.Identifier,
2949 SecondTypeName.StartLocation);
2950 } else if (!T) {
Douglas Gregor77549082010-02-24 21:29:12 +00002951 Diag(SecondTypeName.StartLocation,
2952 diag::err_pseudo_dtor_destructor_non_type)
2953 << SecondTypeName.Identifier << ObjectType;
2954 if (isSFINAEContext())
2955 return ExprError();
2956
2957 // Recover by assuming we had the right type all along.
2958 DestructedType = ObjectType;
Douglas Gregorb57fb492010-02-24 22:38:50 +00002959 } else
Douglas Gregor77549082010-02-24 21:29:12 +00002960 DestructedType = GetTypeFromParser(T, &DestructedTypeInfo);
Douglas Gregor77549082010-02-24 21:29:12 +00002961 } else {
Douglas Gregorb57fb492010-02-24 22:38:50 +00002962 // Resolve the template-id to a type.
Douglas Gregor77549082010-02-24 21:29:12 +00002963 TemplateIdAnnotation *TemplateId = SecondTypeName.TemplateId;
Douglas Gregorb57fb492010-02-24 22:38:50 +00002964 ASTTemplateArgsPtr TemplateArgsPtr(*this,
2965 TemplateId->getTemplateArgs(),
2966 TemplateId->NumArgs);
2967 TypeResult T = ActOnTemplateIdType(TemplateTy::make(TemplateId->Template),
2968 TemplateId->TemplateNameLoc,
2969 TemplateId->LAngleLoc,
2970 TemplateArgsPtr,
2971 TemplateId->RAngleLoc);
2972 if (T.isInvalid() || !T.get()) {
2973 // Recover by assuming we had the right type all along.
2974 DestructedType = ObjectType;
2975 } else
2976 DestructedType = GetTypeFromParser(T.get(), &DestructedTypeInfo);
Douglas Gregor77549082010-02-24 21:29:12 +00002977 }
2978
Douglas Gregorb57fb492010-02-24 22:38:50 +00002979 // If we've performed some kind of recovery, (re-)build the type source
2980 // information.
Douglas Gregora2e7dd22010-02-25 01:56:36 +00002981 if (!DestructedType.isNull()) {
2982 if (!DestructedTypeInfo)
2983 DestructedTypeInfo = Context.getTrivialTypeSourceInfo(DestructedType,
Douglas Gregorb57fb492010-02-24 22:38:50 +00002984 SecondTypeName.StartLocation);
Douglas Gregora2e7dd22010-02-25 01:56:36 +00002985 Destructed = PseudoDestructorTypeStorage(DestructedTypeInfo);
2986 }
Douglas Gregorb57fb492010-02-24 22:38:50 +00002987
2988 // Convert the name of the scope type (the type prior to '::') into a type.
2989 TypeSourceInfo *ScopeTypeInfo = 0;
Douglas Gregor77549082010-02-24 21:29:12 +00002990 QualType ScopeType;
2991 if (FirstTypeName.getKind() == UnqualifiedId::IK_TemplateId ||
2992 FirstTypeName.Identifier) {
2993 if (FirstTypeName.getKind() == UnqualifiedId::IK_Identifier) {
2994 TypeTy *T = getTypeName(*FirstTypeName.Identifier,
2995 FirstTypeName.StartLocation,
Douglas Gregora2e7dd22010-02-25 01:56:36 +00002996 S, &SS, false, ObjectTypePtrForLookup);
Douglas Gregor77549082010-02-24 21:29:12 +00002997 if (!T) {
2998 Diag(FirstTypeName.StartLocation,
2999 diag::err_pseudo_dtor_destructor_non_type)
3000 << FirstTypeName.Identifier << ObjectType;
Douglas Gregor77549082010-02-24 21:29:12 +00003001
Douglas Gregorb57fb492010-02-24 22:38:50 +00003002 if (isSFINAEContext())
3003 return ExprError();
3004
3005 // Just drop this type. It's unnecessary anyway.
3006 ScopeType = QualType();
3007 } else
3008 ScopeType = GetTypeFromParser(T, &ScopeTypeInfo);
Douglas Gregor77549082010-02-24 21:29:12 +00003009 } else {
Douglas Gregorb57fb492010-02-24 22:38:50 +00003010 // Resolve the template-id to a type.
Douglas Gregor77549082010-02-24 21:29:12 +00003011 TemplateIdAnnotation *TemplateId = FirstTypeName.TemplateId;
Douglas Gregorb57fb492010-02-24 22:38:50 +00003012 ASTTemplateArgsPtr TemplateArgsPtr(*this,
3013 TemplateId->getTemplateArgs(),
3014 TemplateId->NumArgs);
3015 TypeResult T = ActOnTemplateIdType(TemplateTy::make(TemplateId->Template),
3016 TemplateId->TemplateNameLoc,
3017 TemplateId->LAngleLoc,
3018 TemplateArgsPtr,
3019 TemplateId->RAngleLoc);
3020 if (T.isInvalid() || !T.get()) {
3021 // Recover by dropping this type.
3022 ScopeType = QualType();
3023 } else
3024 ScopeType = GetTypeFromParser(T.get(), &ScopeTypeInfo);
Douglas Gregor77549082010-02-24 21:29:12 +00003025 }
3026 }
Douglas Gregorb4a418f2010-02-24 23:02:30 +00003027
3028 if (!ScopeType.isNull() && !ScopeTypeInfo)
3029 ScopeTypeInfo = Context.getTrivialTypeSourceInfo(ScopeType,
3030 FirstTypeName.StartLocation);
3031
3032
Douglas Gregorb57fb492010-02-24 22:38:50 +00003033 return BuildPseudoDestructorExpr(move(Base), OpLoc, OpKind, SS,
Douglas Gregorfce46ee2010-02-24 23:50:37 +00003034 ScopeTypeInfo, CCLoc, TildeLoc,
Douglas Gregora2e7dd22010-02-25 01:56:36 +00003035 Destructed, HasTrailingLParen);
Douglas Gregord4dca082010-02-24 18:44:31 +00003036}
3037
Fariborz Jahanianb7400232009-09-28 23:23:40 +00003038CXXMemberCallExpr *Sema::BuildCXXMemberCallExpr(Expr *Exp,
John McCall6bb80172010-03-30 21:47:33 +00003039 NamedDecl *FoundDecl,
Fariborz Jahanianb7400232009-09-28 23:23:40 +00003040 CXXMethodDecl *Method) {
John McCall6bb80172010-03-30 21:47:33 +00003041 if (PerformObjectArgumentInitialization(Exp, /*Qualifier=*/0,
3042 FoundDecl, Method))
Eli Friedman772fffa2009-12-09 04:53:56 +00003043 assert(0 && "Calling BuildCXXMemberCallExpr with invalid call?");
3044
Fariborz Jahanianb7400232009-09-28 23:23:40 +00003045 MemberExpr *ME =
3046 new (Context) MemberExpr(Exp, /*IsArrow=*/false, Method,
3047 SourceLocation(), Method->getType());
Eli Friedman772fffa2009-12-09 04:53:56 +00003048 QualType ResultType = Method->getResultType().getNonReferenceType();
Douglas Gregor7edfb692009-11-23 12:27:39 +00003049 MarkDeclarationReferenced(Exp->getLocStart(), Method);
3050 CXXMemberCallExpr *CE =
3051 new (Context) CXXMemberCallExpr(Context, ME, 0, 0, ResultType,
3052 Exp->getLocEnd());
Fariborz Jahanianb7400232009-09-28 23:23:40 +00003053 return CE;
3054}
3055
Anders Carlsson165a0a02009-05-17 18:41:29 +00003056Sema::OwningExprResult Sema::ActOnFinishFullExpr(ExprArg Arg) {
3057 Expr *FullExpr = Arg.takeAs<Expr>();
Anders Carlsson99ba36d2009-06-05 15:38:08 +00003058 if (FullExpr)
Anders Carlsson0ece4912009-12-15 20:51:39 +00003059 FullExpr = MaybeCreateCXXExprWithTemporaries(FullExpr);
Douglas Gregoreecf38f2010-05-06 21:39:56 +00003060 else
3061 return ExprError();
3062
Anders Carlsson165a0a02009-05-17 18:41:29 +00003063 return Owned(FullExpr);
3064}