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Chris Lattner4b009652007-07-25 00:24:17 +00001//===--- SemaExprCXX.cpp - Semantic Analysis for Expressions --------------===//
2//
3// The LLVM Compiler Infrastructure
4//
Chris Lattner959e5be2007-12-29 19:59:25 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Chris Lattner4b009652007-07-25 00:24:17 +00007//
8//===----------------------------------------------------------------------===//
9//
10// This file implements semantic analysis for C++ expressions.
11//
12//===----------------------------------------------------------------------===//
13
Sebastian Redlaa4c3732009-02-07 20:10:22 +000014#include "SemaInherit.h"
Chris Lattner4b009652007-07-25 00:24:17 +000015#include "Sema.h"
Steve Naroffac5d4f12007-08-25 14:02:58 +000016#include "clang/AST/ASTContext.h"
Anders Carlssonb5247af2009-08-26 22:59:12 +000017#include "clang/AST/ExprCXX.h"
18#include "clang/Basic/PartialDiagnostic.h"
Sebastian Redlb5ee8742008-12-03 20:26:15 +000019#include "clang/Basic/TargetInfo.h"
Anders Carlssonb5247af2009-08-26 22:59:12 +000020#include "clang/Lex/Preprocessor.h"
21#include "clang/Parse/DeclSpec.h"
Douglas Gregorddfd9d52008-12-23 00:26:44 +000022#include "llvm/ADT/STLExtras.h"
Chris Lattner4b009652007-07-25 00:24:17 +000023using namespace clang;
24
Douglas Gregor24094772008-11-19 19:09:45 +000025/// ActOnCXXConversionFunctionExpr - Parse a C++ conversion function
Douglas Gregorb0212bd2008-11-17 20:34:05 +000026/// name (e.g., operator void const *) as an expression. This is
27/// very similar to ActOnIdentifierExpr, except that instead of
28/// providing an identifier the parser provides the type of the
29/// conversion function.
Sebastian Redlcd883f72009-01-18 18:53:16 +000030Sema::OwningExprResult
Douglas Gregor24094772008-11-19 19:09:45 +000031Sema::ActOnCXXConversionFunctionExpr(Scope *S, SourceLocation OperatorLoc,
32 TypeTy *Ty, bool HasTrailingLParen,
Sebastian Redl0c9da212009-02-03 20:19:35 +000033 const CXXScopeSpec &SS,
34 bool isAddressOfOperand) {
Argiris Kirtzidisd6802ba2009-08-19 01:28:28 +000035 //FIXME: Preserve type source info.
36 QualType ConvType = GetTypeFromParser(Ty);
Douglas Gregorcfe6ae52009-08-05 05:36:45 +000037 CanQualType ConvTypeCanon = Context.getCanonicalType(ConvType);
Douglas Gregorb0212bd2008-11-17 20:34:05 +000038 DeclarationName ConvName
39 = Context.DeclarationNames.getCXXConversionFunctionName(ConvTypeCanon);
Sebastian Redlcd883f72009-01-18 18:53:16 +000040 return ActOnDeclarationNameExpr(S, OperatorLoc, ConvName, HasTrailingLParen,
Douglas Gregor4646f9c2009-02-04 15:01:18 +000041 &SS, isAddressOfOperand);
Douglas Gregorb0212bd2008-11-17 20:34:05 +000042}
Sebastian Redlb93b49c2008-11-11 11:37:55 +000043
Douglas Gregor24094772008-11-19 19:09:45 +000044/// ActOnCXXOperatorFunctionIdExpr - Parse a C++ overloaded operator
Douglas Gregor96a32dd2008-11-18 14:39:36 +000045/// name (e.g., @c operator+ ) as an expression. This is very
46/// similar to ActOnIdentifierExpr, except that instead of providing
47/// an identifier the parser provides the kind of overloaded
48/// operator that was parsed.
Sebastian Redlcd883f72009-01-18 18:53:16 +000049Sema::OwningExprResult
Douglas Gregor24094772008-11-19 19:09:45 +000050Sema::ActOnCXXOperatorFunctionIdExpr(Scope *S, SourceLocation OperatorLoc,
51 OverloadedOperatorKind Op,
52 bool HasTrailingLParen,
Sebastian Redl0c9da212009-02-03 20:19:35 +000053 const CXXScopeSpec &SS,
54 bool isAddressOfOperand) {
Douglas Gregor96a32dd2008-11-18 14:39:36 +000055 DeclarationName Name = Context.DeclarationNames.getCXXOperatorName(Op);
Sebastian Redl0c9da212009-02-03 20:19:35 +000056 return ActOnDeclarationNameExpr(S, OperatorLoc, Name, HasTrailingLParen, &SS,
Douglas Gregor4646f9c2009-02-04 15:01:18 +000057 isAddressOfOperand);
Douglas Gregor96a32dd2008-11-18 14:39:36 +000058}
59
Sebastian Redlb93b49c2008-11-11 11:37:55 +000060/// ActOnCXXTypeidOfType - Parse typeid( type-id ).
Sebastian Redl76bb8ec2009-03-15 17:47:39 +000061Action::OwningExprResult
Sebastian Redlb93b49c2008-11-11 11:37:55 +000062Sema::ActOnCXXTypeid(SourceLocation OpLoc, SourceLocation LParenLoc,
63 bool isType, void *TyOrExpr, SourceLocation RParenLoc) {
Douglas Gregor52ae30c2009-01-30 01:04:22 +000064 NamespaceDecl *StdNs = GetStdNamespace();
Chris Lattnerc2a5f512008-11-20 05:51:55 +000065 if (!StdNs)
Sebastian Redl76bb8ec2009-03-15 17:47:39 +000066 return ExprError(Diag(OpLoc, diag::err_need_header_before_typeid));
Argiris Kirtzidisd6802ba2009-08-19 01:28:28 +000067
68 if (isType)
69 // FIXME: Preserve type source info.
70 TyOrExpr = GetTypeFromParser(TyOrExpr).getAsOpaquePtr();
71
Chris Lattnerc2a5f512008-11-20 05:51:55 +000072 IdentifierInfo *TypeInfoII = &PP.getIdentifierTable().get("type_info");
Douglas Gregor52ae30c2009-01-30 01:04:22 +000073 Decl *TypeInfoDecl = LookupQualifiedName(StdNs, TypeInfoII, LookupTagName);
Sebastian Redlb93b49c2008-11-11 11:37:55 +000074 RecordDecl *TypeInfoRecordDecl = dyn_cast_or_null<RecordDecl>(TypeInfoDecl);
Chris Lattnerc2a5f512008-11-20 05:51:55 +000075 if (!TypeInfoRecordDecl)
Sebastian Redl76bb8ec2009-03-15 17:47:39 +000076 return ExprError(Diag(OpLoc, diag::err_need_header_before_typeid));
Sebastian Redlb93b49c2008-11-11 11:37:55 +000077
78 QualType TypeInfoType = Context.getTypeDeclType(TypeInfoRecordDecl);
79
Douglas Gregora8b2fbf2009-06-22 20:57:11 +000080 if (!isType) {
81 // C++0x [expr.typeid]p3:
82 // When typeid is applied to an expression other than an lvalue of a
83 // polymorphic class type [...] [the] expression is an unevaluated
84 // operand.
85
86 // FIXME: if the type of the expression is a class type, the class
87 // shall be completely defined.
88 bool isUnevaluatedOperand = true;
89 Expr *E = static_cast<Expr *>(TyOrExpr);
90 if (E && !E->isTypeDependent() && E->isLvalue(Context) == Expr::LV_Valid) {
91 QualType T = E->getType();
Ted Kremenekd00cd9e2009-07-29 21:53:49 +000092 if (const RecordType *RecordT = T->getAs<RecordType>()) {
Douglas Gregora8b2fbf2009-06-22 20:57:11 +000093 CXXRecordDecl *RecordD = cast<CXXRecordDecl>(RecordT->getDecl());
94 if (RecordD->isPolymorphic())
95 isUnevaluatedOperand = false;
96 }
97 }
98
99 // If this is an unevaluated operand, clear out the set of declaration
100 // references we have been computing.
101 if (isUnevaluatedOperand)
102 PotentiallyReferencedDeclStack.back().clear();
103 }
104
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000105 return Owned(new (Context) CXXTypeidExpr(isType, TyOrExpr,
106 TypeInfoType.withConst(),
107 SourceRange(OpLoc, RParenLoc)));
Sebastian Redlb93b49c2008-11-11 11:37:55 +0000108}
109
Steve Naroff5cbb02f2007-09-16 14:56:35 +0000110/// ActOnCXXBoolLiteral - Parse {true,false} literals.
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000111Action::OwningExprResult
Steve Naroff5cbb02f2007-09-16 14:56:35 +0000112Sema::ActOnCXXBoolLiteral(SourceLocation OpLoc, tok::TokenKind Kind) {
Douglas Gregorf8e92702008-10-24 15:36:09 +0000113 assert((Kind == tok::kw_true || Kind == tok::kw_false) &&
Chris Lattner4b009652007-07-25 00:24:17 +0000114 "Unknown C++ Boolean value!");
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000115 return Owned(new (Context) CXXBoolLiteralExpr(Kind == tok::kw_true,
116 Context.BoolTy, OpLoc));
Chris Lattner4b009652007-07-25 00:24:17 +0000117}
Chris Lattnera7447ba2008-02-26 00:51:44 +0000118
Sebastian Redl5d0ead72009-05-10 18:38:11 +0000119/// ActOnCXXNullPtrLiteral - Parse 'nullptr'.
120Action::OwningExprResult
121Sema::ActOnCXXNullPtrLiteral(SourceLocation Loc) {
122 return Owned(new (Context) CXXNullPtrLiteralExpr(Context.NullPtrTy, Loc));
123}
124
Chris Lattnera7447ba2008-02-26 00:51:44 +0000125/// ActOnCXXThrow - Parse throw expressions.
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000126Action::OwningExprResult
127Sema::ActOnCXXThrow(SourceLocation OpLoc, ExprArg E) {
Sebastian Redl9949a5e2009-04-27 20:27:31 +0000128 Expr *Ex = E.takeAs<Expr>();
129 if (Ex && !Ex->isTypeDependent() && CheckCXXThrowOperand(OpLoc, Ex))
130 return ExprError();
131 return Owned(new (Context) CXXThrowExpr(Ex, Context.VoidTy, OpLoc));
132}
133
134/// CheckCXXThrowOperand - Validate the operand of a throw.
135bool Sema::CheckCXXThrowOperand(SourceLocation ThrowLoc, Expr *&E) {
136 // C++ [except.throw]p3:
137 // [...] adjusting the type from "array of T" or "function returning T"
138 // to "pointer to T" or "pointer to function returning T", [...]
139 DefaultFunctionArrayConversion(E);
140
141 // If the type of the exception would be an incomplete type or a pointer
142 // to an incomplete type other than (cv) void the program is ill-formed.
143 QualType Ty = E->getType();
144 int isPointer = 0;
Ted Kremenekd00cd9e2009-07-29 21:53:49 +0000145 if (const PointerType* Ptr = Ty->getAs<PointerType>()) {
Sebastian Redl9949a5e2009-04-27 20:27:31 +0000146 Ty = Ptr->getPointeeType();
147 isPointer = 1;
148 }
149 if (!isPointer || !Ty->isVoidType()) {
150 if (RequireCompleteType(ThrowLoc, Ty,
Anders Carlssonb5247af2009-08-26 22:59:12 +0000151 PDiag(isPointer ? diag::err_throw_incomplete_ptr
152 : diag::err_throw_incomplete)
153 << E->getSourceRange()))
Sebastian Redl9949a5e2009-04-27 20:27:31 +0000154 return true;
155 }
156
157 // FIXME: Construct a temporary here.
158 return false;
Chris Lattnera7447ba2008-02-26 00:51:44 +0000159}
Argiris Kirtzidis38f16712008-07-01 10:37:29 +0000160
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000161Action::OwningExprResult Sema::ActOnCXXThis(SourceLocation ThisLoc) {
Argiris Kirtzidis38f16712008-07-01 10:37:29 +0000162 /// C++ 9.3.2: In the body of a non-static member function, the keyword this
163 /// is a non-lvalue expression whose value is the address of the object for
164 /// which the function is called.
165
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000166 if (!isa<FunctionDecl>(CurContext))
167 return ExprError(Diag(ThisLoc, diag::err_invalid_this_use));
Argiris Kirtzidis38f16712008-07-01 10:37:29 +0000168
169 if (CXXMethodDecl *MD = dyn_cast<CXXMethodDecl>(CurContext))
170 if (MD->isInstance())
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000171 return Owned(new (Context) CXXThisExpr(ThisLoc,
172 MD->getThisType(Context)));
Argiris Kirtzidis38f16712008-07-01 10:37:29 +0000173
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000174 return ExprError(Diag(ThisLoc, diag::err_invalid_this_use));
Argiris Kirtzidis38f16712008-07-01 10:37:29 +0000175}
Argiris Kirtzidis7a1e7412008-08-22 15:38:55 +0000176
177/// ActOnCXXTypeConstructExpr - Parse construction of a specified type.
178/// Can be interpreted either as function-style casting ("int(x)")
179/// or class type construction ("ClassType(x,y,z)")
180/// or creation of a value-initialized type ("int()").
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000181Action::OwningExprResult
Argiris Kirtzidis7a1e7412008-08-22 15:38:55 +0000182Sema::ActOnCXXTypeConstructExpr(SourceRange TypeRange, TypeTy *TypeRep,
183 SourceLocation LParenLoc,
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000184 MultiExprArg exprs,
Argiris Kirtzidis7a1e7412008-08-22 15:38:55 +0000185 SourceLocation *CommaLocs,
186 SourceLocation RParenLoc) {
187 assert(TypeRep && "Missing type!");
Argiris Kirtzidisd6802ba2009-08-19 01:28:28 +0000188 // FIXME: Preserve type source info.
189 QualType Ty = GetTypeFromParser(TypeRep);
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000190 unsigned NumExprs = exprs.size();
191 Expr **Exprs = (Expr**)exprs.get();
Argiris Kirtzidis7a1e7412008-08-22 15:38:55 +0000192 SourceLocation TyBeginLoc = TypeRange.getBegin();
193 SourceRange FullRange = SourceRange(TyBeginLoc, RParenLoc);
194
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000195 if (Ty->isDependentType() ||
Douglas Gregor396f1142009-03-13 21:01:28 +0000196 CallExpr::hasAnyTypeDependentArguments(Exprs, NumExprs)) {
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000197 exprs.release();
Anders Carlssonebbd7cd2009-04-24 05:23:13 +0000198
Douglas Gregorf27b7652009-05-20 18:46:25 +0000199 return Owned(CXXUnresolvedConstructExpr::Create(Context,
200 TypeRange.getBegin(), Ty,
201 LParenLoc,
202 Exprs, NumExprs,
203 RParenLoc));
Douglas Gregor396f1142009-03-13 21:01:28 +0000204 }
205
Anders Carlsson3a4fed12009-08-27 03:53:50 +0000206 if (Ty->isArrayType())
207 return ExprError(Diag(TyBeginLoc,
208 diag::err_value_init_for_array_type) << FullRange);
209 if (!Ty->isVoidType() &&
210 RequireCompleteType(TyBeginLoc, Ty,
211 PDiag(diag::err_invalid_incomplete_type_use)
212 << FullRange))
213 return ExprError();
214
215 if (RequireNonAbstractType(TyBeginLoc, Ty,
216 diag::err_allocation_of_abstract_type))
217 return ExprError();
218
219
Douglas Gregor861e7902009-01-16 18:33:17 +0000220 // C++ [expr.type.conv]p1:
Argiris Kirtzidis7a1e7412008-08-22 15:38:55 +0000221 // If the expression list is a single expression, the type conversion
222 // expression is equivalent (in definedness, and if defined in meaning) to the
223 // corresponding cast expression.
224 //
225 if (NumExprs == 1) {
Anders Carlsson9583fa72009-08-07 22:21:05 +0000226 CastExpr::CastKind Kind = CastExpr::CK_Unknown;
Fariborz Jahaniancf13d4a2009-08-26 18:55:36 +0000227 CXXMethodDecl *ConversionDecl = 0;
228 if (CheckCastTypes(TypeRange, Ty, Exprs[0], Kind, ConversionDecl,
229 /*functional-style*/true))
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000230 return ExprError();
231 exprs.release();
232 return Owned(new (Context) CXXFunctionalCastExpr(Ty.getNonReferenceType(),
Fariborz Jahanianc3e81132009-08-26 20:34:58 +0000233 Ty, TyBeginLoc,
234 CastExpr::CK_UserDefinedConversion,
235 Exprs[0], ConversionDecl,
236 RParenLoc));
Argiris Kirtzidis7a1e7412008-08-22 15:38:55 +0000237 }
238
Ted Kremenekd00cd9e2009-07-29 21:53:49 +0000239 if (const RecordType *RT = Ty->getAs<RecordType>()) {
Douglas Gregor861e7902009-01-16 18:33:17 +0000240 CXXRecordDecl *Record = cast<CXXRecordDecl>(RT->getDecl());
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000241
Anders Carlssonef8fd082009-08-27 05:08:22 +0000242 if (NumExprs > 1 || !Record->hasTrivialConstructor() ||
243 !Record->hasTrivialDestructor()) {
Douglas Gregor861e7902009-01-16 18:33:17 +0000244 CXXConstructorDecl *Constructor
245 = PerformInitializationByConstructor(Ty, Exprs, NumExprs,
246 TypeRange.getBegin(),
247 SourceRange(TypeRange.getBegin(),
248 RParenLoc),
249 DeclarationName(),
250 IK_Direct);
Douglas Gregor861e7902009-01-16 18:33:17 +0000251
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000252 if (!Constructor)
253 return ExprError();
254
Anders Carlssonef8fd082009-08-27 05:08:22 +0000255 OwningExprResult Result =
256 BuildCXXTemporaryObjectExpr(Constructor, Ty, TyBeginLoc,
257 move(exprs), RParenLoc);
258 if (Result.isInvalid())
259 return ExprError();
260
261 return MaybeBindToTemporary(Result.takeAs<Expr>());
Douglas Gregor861e7902009-01-16 18:33:17 +0000262 }
263
264 // Fall through to value-initialize an object of class type that
265 // doesn't have a user-declared default constructor.
266 }
267
268 // C++ [expr.type.conv]p1:
Argiris Kirtzidis7a1e7412008-08-22 15:38:55 +0000269 // If the expression list specifies more than a single value, the type shall
270 // be a class with a suitably declared constructor.
271 //
272 if (NumExprs > 1)
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000273 return ExprError(Diag(CommaLocs[0],
274 diag::err_builtin_func_cast_more_than_one_arg)
275 << FullRange);
Argiris Kirtzidis7a1e7412008-08-22 15:38:55 +0000276
277 assert(NumExprs == 0 && "Expected 0 expressions");
278
Douglas Gregor861e7902009-01-16 18:33:17 +0000279 // C++ [expr.type.conv]p2:
Argiris Kirtzidis7a1e7412008-08-22 15:38:55 +0000280 // The expression T(), where T is a simple-type-specifier for a non-array
281 // complete object type or the (possibly cv-qualified) void type, creates an
282 // rvalue of the specified type, which is value-initialized.
283 //
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000284 exprs.release();
285 return Owned(new (Context) CXXZeroInitValueExpr(Ty, TyBeginLoc, RParenLoc));
Argiris Kirtzidis7a1e7412008-08-22 15:38:55 +0000286}
Argiris Kirtzidis810c0f72008-09-10 02:17:11 +0000287
288
Sebastian Redl19fec9d2008-11-21 19:14:01 +0000289/// ActOnCXXNew - Parsed a C++ 'new' expression (C++ 5.3.4), as in e.g.:
290/// @code new (memory) int[size][4] @endcode
291/// or
292/// @code ::new Foo(23, "hello") @endcode
293/// For the interpretation of this heap of arguments, consult the base version.
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000294Action::OwningExprResult
Sebastian Redl19fec9d2008-11-21 19:14:01 +0000295Sema::ActOnCXXNew(SourceLocation StartLoc, bool UseGlobal,
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000296 SourceLocation PlacementLParen, MultiExprArg PlacementArgs,
Sebastian Redl19fec9d2008-11-21 19:14:01 +0000297 SourceLocation PlacementRParen, bool ParenTypeId,
Sebastian Redl66df3ef2008-12-02 14:43:59 +0000298 Declarator &D, SourceLocation ConstructorLParen,
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000299 MultiExprArg ConstructorArgs,
Sebastian Redl19fec9d2008-11-21 19:14:01 +0000300 SourceLocation ConstructorRParen)
301{
Sebastian Redl66df3ef2008-12-02 14:43:59 +0000302 Expr *ArraySize = 0;
303 unsigned Skip = 0;
304 // If the specified type is an array, unwrap it and save the expression.
305 if (D.getNumTypeObjects() > 0 &&
306 D.getTypeObject(0).Kind == DeclaratorChunk::Array) {
307 DeclaratorChunk &Chunk = D.getTypeObject(0);
308 if (Chunk.Arr.hasStatic)
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000309 return ExprError(Diag(Chunk.Loc, diag::err_static_illegal_in_new)
310 << D.getSourceRange());
Sebastian Redl66df3ef2008-12-02 14:43:59 +0000311 if (!Chunk.Arr.NumElts)
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000312 return ExprError(Diag(Chunk.Loc, diag::err_array_new_needs_size)
313 << D.getSourceRange());
Sebastian Redl66df3ef2008-12-02 14:43:59 +0000314 ArraySize = static_cast<Expr*>(Chunk.Arr.NumElts);
315 Skip = 1;
316 }
317
Argiris Kirtzidisb17120c2009-08-19 01:27:57 +0000318 //FIXME: Store DeclaratorInfo in CXXNew expression.
319 DeclaratorInfo *DInfo = 0;
320 QualType AllocType = GetTypeForDeclarator(D, /*Scope=*/0, &DInfo, Skip);
Chris Lattner34c61332009-04-25 08:06:05 +0000321 if (D.isInvalidType())
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000322 return ExprError();
Sebastian Redl19fec9d2008-11-21 19:14:01 +0000323
Douglas Gregord8c23702009-05-21 00:00:09 +0000324 // Every dimension shall be of constant size.
325 unsigned i = 1;
326 QualType ElementType = AllocType;
327 while (const ArrayType *Array = Context.getAsArrayType(ElementType)) {
328 if (!Array->isConstantArrayType()) {
329 Diag(D.getTypeObject(i).Loc, diag::err_new_array_nonconst)
330 << static_cast<Expr*>(D.getTypeObject(i).Arr.NumElts)->getSourceRange();
331 return ExprError();
332 }
333 ElementType = Array->getElementType();
334 ++i;
335 }
336
337 return BuildCXXNew(StartLoc, UseGlobal,
338 PlacementLParen,
339 move(PlacementArgs),
340 PlacementRParen,
341 ParenTypeId,
342 AllocType,
343 D.getSourceRange().getBegin(),
344 D.getSourceRange(),
345 Owned(ArraySize),
346 ConstructorLParen,
347 move(ConstructorArgs),
348 ConstructorRParen);
349}
350
351Sema::OwningExprResult
352Sema::BuildCXXNew(SourceLocation StartLoc, bool UseGlobal,
353 SourceLocation PlacementLParen,
354 MultiExprArg PlacementArgs,
355 SourceLocation PlacementRParen,
356 bool ParenTypeId,
357 QualType AllocType,
358 SourceLocation TypeLoc,
359 SourceRange TypeRange,
360 ExprArg ArraySizeE,
361 SourceLocation ConstructorLParen,
362 MultiExprArg ConstructorArgs,
363 SourceLocation ConstructorRParen) {
364 if (CheckAllocatedType(AllocType, TypeLoc, TypeRange))
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000365 return ExprError();
Sebastian Redl66df3ef2008-12-02 14:43:59 +0000366
Douglas Gregord8c23702009-05-21 00:00:09 +0000367 QualType ResultType = Context.getPointerType(AllocType);
Sebastian Redl19fec9d2008-11-21 19:14:01 +0000368
369 // That every array dimension except the first is constant was already
370 // checked by the type check above.
Sebastian Redl66df3ef2008-12-02 14:43:59 +0000371
Sebastian Redl19fec9d2008-11-21 19:14:01 +0000372 // C++ 5.3.4p6: "The expression in a direct-new-declarator shall have integral
373 // or enumeration type with a non-negative value."
Douglas Gregord8c23702009-05-21 00:00:09 +0000374 Expr *ArraySize = (Expr *)ArraySizeE.get();
Sebastian Redl6fdb28d2009-02-26 14:39:58 +0000375 if (ArraySize && !ArraySize->isTypeDependent()) {
Sebastian Redl66df3ef2008-12-02 14:43:59 +0000376 QualType SizeType = ArraySize->getType();
377 if (!SizeType->isIntegralType() && !SizeType->isEnumeralType())
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000378 return ExprError(Diag(ArraySize->getSourceRange().getBegin(),
379 diag::err_array_size_not_integral)
380 << SizeType << ArraySize->getSourceRange());
Sebastian Redl66df3ef2008-12-02 14:43:59 +0000381 // Let's see if this is a constant < 0. If so, we reject it out of hand.
382 // We don't care about special rules, so we tell the machinery it's not
383 // evaluated - it gives us a result in more cases.
Sebastian Redl6fdb28d2009-02-26 14:39:58 +0000384 if (!ArraySize->isValueDependent()) {
385 llvm::APSInt Value;
386 if (ArraySize->isIntegerConstantExpr(Value, Context, 0, false)) {
387 if (Value < llvm::APSInt(
388 llvm::APInt::getNullValue(Value.getBitWidth()), false))
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000389 return ExprError(Diag(ArraySize->getSourceRange().getBegin(),
390 diag::err_typecheck_negative_array_size)
391 << ArraySize->getSourceRange());
Sebastian Redl6fdb28d2009-02-26 14:39:58 +0000392 }
Sebastian Redl66df3ef2008-12-02 14:43:59 +0000393 }
394 }
Sebastian Redl19fec9d2008-11-21 19:14:01 +0000395
Sebastian Redl19fec9d2008-11-21 19:14:01 +0000396 FunctionDecl *OperatorNew = 0;
397 FunctionDecl *OperatorDelete = 0;
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000398 Expr **PlaceArgs = (Expr**)PlacementArgs.get();
399 unsigned NumPlaceArgs = PlacementArgs.size();
Sebastian Redl6fdb28d2009-02-26 14:39:58 +0000400 if (!AllocType->isDependentType() &&
401 !Expr::hasAnyTypeDependentArguments(PlaceArgs, NumPlaceArgs) &&
402 FindAllocationFunctions(StartLoc,
Sebastian Redl3b7ec4b2009-02-09 18:24:27 +0000403 SourceRange(PlacementLParen, PlacementRParen),
404 UseGlobal, AllocType, ArraySize, PlaceArgs,
405 NumPlaceArgs, OperatorNew, OperatorDelete))
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000406 return ExprError();
Sebastian Redl19fec9d2008-11-21 19:14:01 +0000407
408 bool Init = ConstructorLParen.isValid();
409 // --- Choosing a constructor ---
410 // C++ 5.3.4p15
411 // 1) If T is a POD and there's no initializer (ConstructorLParen is invalid)
412 // the object is not initialized. If the object, or any part of it, is
413 // const-qualified, it's an error.
414 // 2) If T is a POD and there's an empty initializer, the object is value-
415 // initialized.
416 // 3) If T is a POD and there's one initializer argument, the object is copy-
417 // constructed.
418 // 4) If T is a POD and there's more initializer arguments, it's an error.
419 // 5) If T is not a POD, the initializer arguments are used as constructor
420 // arguments.
421 //
422 // Or by the C++0x formulation:
423 // 1) If there's no initializer, the object is default-initialized according
424 // to C++0x rules.
425 // 2) Otherwise, the object is direct-initialized.
426 CXXConstructorDecl *Constructor = 0;
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000427 Expr **ConsArgs = (Expr**)ConstructorArgs.get();
Sebastian Redl091cf8d2009-05-07 16:14:23 +0000428 const RecordType *RT;
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000429 unsigned NumConsArgs = ConstructorArgs.size();
Sebastian Redl6fdb28d2009-02-26 14:39:58 +0000430 if (AllocType->isDependentType()) {
431 // Skip all the checks.
Mike Stump90fc78e2009-08-04 21:02:39 +0000432 } else if ((RT = AllocType->getAs<RecordType>()) &&
433 !AllocType->isAggregateType()) {
Sebastian Redl19fec9d2008-11-21 19:14:01 +0000434 Constructor = PerformInitializationByConstructor(
Sebastian Redl66df3ef2008-12-02 14:43:59 +0000435 AllocType, ConsArgs, NumConsArgs,
Douglas Gregord8c23702009-05-21 00:00:09 +0000436 TypeLoc,
437 SourceRange(TypeLoc, ConstructorRParen),
Chris Lattner271d4c22008-11-24 05:29:24 +0000438 RT->getDecl()->getDeclName(),
Sebastian Redl19fec9d2008-11-21 19:14:01 +0000439 NumConsArgs != 0 ? IK_Direct : IK_Default);
440 if (!Constructor)
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000441 return ExprError();
Sebastian Redl19fec9d2008-11-21 19:14:01 +0000442 } else {
443 if (!Init) {
444 // FIXME: Check that no subpart is const.
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000445 if (AllocType.isConstQualified())
446 return ExprError(Diag(StartLoc, diag::err_new_uninitialized_const)
Douglas Gregord8c23702009-05-21 00:00:09 +0000447 << TypeRange);
Sebastian Redl19fec9d2008-11-21 19:14:01 +0000448 } else if (NumConsArgs == 0) {
449 // Object is value-initialized. Do nothing.
450 } else if (NumConsArgs == 1) {
451 // Object is direct-initialized.
Sebastian Redl091cf8d2009-05-07 16:14:23 +0000452 // FIXME: What DeclarationName do we pass in here?
Sebastian Redl66df3ef2008-12-02 14:43:59 +0000453 if (CheckInitializerTypes(ConsArgs[0], AllocType, StartLoc,
Douglas Gregor6214d8a2009-01-14 15:45:31 +0000454 DeclarationName() /*AllocType.getAsString()*/,
455 /*DirectInit=*/true))
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000456 return ExprError();
Sebastian Redl19fec9d2008-11-21 19:14:01 +0000457 } else {
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000458 return ExprError(Diag(StartLoc,
459 diag::err_builtin_direct_init_more_than_one_arg)
460 << SourceRange(ConstructorLParen, ConstructorRParen));
Sebastian Redl19fec9d2008-11-21 19:14:01 +0000461 }
462 }
463
464 // FIXME: Also check that the destructor is accessible. (C++ 5.3.4p16)
465
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000466 PlacementArgs.release();
467 ConstructorArgs.release();
Douglas Gregord8c23702009-05-21 00:00:09 +0000468 ArraySizeE.release();
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000469 return Owned(new (Context) CXXNewExpr(UseGlobal, OperatorNew, PlaceArgs,
Ted Kremenek0c97e042009-02-07 01:47:29 +0000470 NumPlaceArgs, ParenTypeId, ArraySize, Constructor, Init,
Sebastian Redl19fec9d2008-11-21 19:14:01 +0000471 ConsArgs, NumConsArgs, OperatorDelete, ResultType,
Douglas Gregord8c23702009-05-21 00:00:09 +0000472 StartLoc, Init ? ConstructorRParen : SourceLocation()));
Sebastian Redl19fec9d2008-11-21 19:14:01 +0000473}
474
475/// CheckAllocatedType - Checks that a type is suitable as the allocated type
476/// in a new-expression.
477/// dimension off and stores the size expression in ArraySize.
Douglas Gregord8c23702009-05-21 00:00:09 +0000478bool Sema::CheckAllocatedType(QualType AllocType, SourceLocation Loc,
479 SourceRange R)
Sebastian Redl19fec9d2008-11-21 19:14:01 +0000480{
481 // C++ 5.3.4p1: "[The] type shall be a complete object type, but not an
482 // abstract class type or array thereof.
Douglas Gregor05e28f62009-03-24 19:52:54 +0000483 if (AllocType->isFunctionType())
Douglas Gregord8c23702009-05-21 00:00:09 +0000484 return Diag(Loc, diag::err_bad_new_type)
485 << AllocType << 0 << R;
Douglas Gregor05e28f62009-03-24 19:52:54 +0000486 else if (AllocType->isReferenceType())
Douglas Gregord8c23702009-05-21 00:00:09 +0000487 return Diag(Loc, diag::err_bad_new_type)
488 << AllocType << 1 << R;
Douglas Gregor05e28f62009-03-24 19:52:54 +0000489 else if (!AllocType->isDependentType() &&
Douglas Gregord8c23702009-05-21 00:00:09 +0000490 RequireCompleteType(Loc, AllocType,
Anders Carlssona21e7872009-08-26 23:45:07 +0000491 PDiag(diag::err_new_incomplete_type)
492 << R))
Sebastian Redl19fec9d2008-11-21 19:14:01 +0000493 return true;
Douglas Gregord8c23702009-05-21 00:00:09 +0000494 else if (RequireNonAbstractType(Loc, AllocType,
Douglas Gregor05e28f62009-03-24 19:52:54 +0000495 diag::err_allocation_of_abstract_type))
496 return true;
Sebastian Redl19fec9d2008-11-21 19:14:01 +0000497
Sebastian Redl19fec9d2008-11-21 19:14:01 +0000498 return false;
499}
500
Sebastian Redlb5ee8742008-12-03 20:26:15 +0000501/// FindAllocationFunctions - Finds the overloads of operator new and delete
502/// that are appropriate for the allocation.
Sebastian Redl3b7ec4b2009-02-09 18:24:27 +0000503bool Sema::FindAllocationFunctions(SourceLocation StartLoc, SourceRange Range,
504 bool UseGlobal, QualType AllocType,
505 bool IsArray, Expr **PlaceArgs,
506 unsigned NumPlaceArgs,
Sebastian Redlb5ee8742008-12-03 20:26:15 +0000507 FunctionDecl *&OperatorNew,
508 FunctionDecl *&OperatorDelete)
509{
510 // --- Choosing an allocation function ---
511 // C++ 5.3.4p8 - 14 & 18
512 // 1) If UseGlobal is true, only look in the global scope. Else, also look
513 // in the scope of the allocated class.
514 // 2) If an array size is given, look for operator new[], else look for
515 // operator new.
516 // 3) The first argument is always size_t. Append the arguments from the
517 // placement form.
518 // FIXME: Also find the appropriate delete operator.
519
520 llvm::SmallVector<Expr*, 8> AllocArgs(1 + NumPlaceArgs);
521 // We don't care about the actual value of this argument.
522 // FIXME: Should the Sema create the expression and embed it in the syntax
523 // tree? Or should the consumer just recalculate the value?
Anders Carlsson44443f82009-08-16 20:29:29 +0000524 IntegerLiteral Size(llvm::APInt::getNullValue(
525 Context.Target.getPointerWidth(0)),
526 Context.getSizeType(),
527 SourceLocation());
528 AllocArgs[0] = &Size;
Sebastian Redlb5ee8742008-12-03 20:26:15 +0000529 std::copy(PlaceArgs, PlaceArgs + NumPlaceArgs, AllocArgs.begin() + 1);
530
531 DeclarationName NewName = Context.DeclarationNames.getCXXOperatorName(
532 IsArray ? OO_Array_New : OO_New);
533 if (AllocType->isRecordType() && !UseGlobal) {
Douglas Gregor2e047592009-02-28 01:32:25 +0000534 CXXRecordDecl *Record
Ted Kremenekd00cd9e2009-07-29 21:53:49 +0000535 = cast<CXXRecordDecl>(AllocType->getAs<RecordType>()->getDecl());
Sebastian Redlec5f3262008-12-04 22:20:51 +0000536 // FIXME: We fail to find inherited overloads.
Sebastian Redl3b7ec4b2009-02-09 18:24:27 +0000537 if (FindAllocationOverload(StartLoc, Range, NewName, &AllocArgs[0],
Sebastian Redlec5f3262008-12-04 22:20:51 +0000538 AllocArgs.size(), Record, /*AllowMissing=*/true,
539 OperatorNew))
Sebastian Redlb5ee8742008-12-03 20:26:15 +0000540 return true;
Sebastian Redlb5ee8742008-12-03 20:26:15 +0000541 }
542 if (!OperatorNew) {
543 // Didn't find a member overload. Look for a global one.
544 DeclareGlobalNewDelete();
Sebastian Redlec5f3262008-12-04 22:20:51 +0000545 DeclContext *TUDecl = Context.getTranslationUnitDecl();
Sebastian Redl3b7ec4b2009-02-09 18:24:27 +0000546 if (FindAllocationOverload(StartLoc, Range, NewName, &AllocArgs[0],
Sebastian Redlec5f3262008-12-04 22:20:51 +0000547 AllocArgs.size(), TUDecl, /*AllowMissing=*/false,
548 OperatorNew))
Sebastian Redlb5ee8742008-12-03 20:26:15 +0000549 return true;
Sebastian Redlb5ee8742008-12-03 20:26:15 +0000550 }
551
Anders Carlsson0db4ade2009-05-31 20:26:12 +0000552 // FindAllocationOverload can change the passed in arguments, so we need to
553 // copy them back.
554 if (NumPlaceArgs > 0)
555 std::copy(&AllocArgs[1], AllocArgs.end(), PlaceArgs);
556
Sebastian Redlb5ee8742008-12-03 20:26:15 +0000557 return false;
558}
559
Sebastian Redlec5f3262008-12-04 22:20:51 +0000560/// FindAllocationOverload - Find an fitting overload for the allocation
561/// function in the specified scope.
Sebastian Redl3b7ec4b2009-02-09 18:24:27 +0000562bool Sema::FindAllocationOverload(SourceLocation StartLoc, SourceRange Range,
563 DeclarationName Name, Expr** Args,
564 unsigned NumArgs, DeclContext *Ctx,
565 bool AllowMissing, FunctionDecl *&Operator)
Sebastian Redlec5f3262008-12-04 22:20:51 +0000566{
Douglas Gregorddfd9d52008-12-23 00:26:44 +0000567 DeclContext::lookup_iterator Alloc, AllocEnd;
Argiris Kirtzidisab6e38a2009-06-30 02:36:12 +0000568 llvm::tie(Alloc, AllocEnd) = Ctx->lookup(Name);
Douglas Gregorddfd9d52008-12-23 00:26:44 +0000569 if (Alloc == AllocEnd) {
Sebastian Redlec5f3262008-12-04 22:20:51 +0000570 if (AllowMissing)
571 return false;
Sebastian Redlec5f3262008-12-04 22:20:51 +0000572 return Diag(StartLoc, diag::err_ovl_no_viable_function_in_call)
Chris Lattner4a526112009-02-17 07:29:20 +0000573 << Name << Range;
Sebastian Redlec5f3262008-12-04 22:20:51 +0000574 }
575
576 OverloadCandidateSet Candidates;
Douglas Gregorddfd9d52008-12-23 00:26:44 +0000577 for (; Alloc != AllocEnd; ++Alloc) {
578 // Even member operator new/delete are implicitly treated as
579 // static, so don't use AddMemberCandidate.
580 if (FunctionDecl *Fn = dyn_cast<FunctionDecl>(*Alloc))
581 AddOverloadCandidate(Fn, Args, NumArgs, Candidates,
582 /*SuppressUserConversions=*/false);
Sebastian Redlec5f3262008-12-04 22:20:51 +0000583 }
584
585 // Do the resolution.
586 OverloadCandidateSet::iterator Best;
Douglas Gregor98189262009-06-19 23:52:42 +0000587 switch(BestViableFunction(Candidates, StartLoc, Best)) {
Sebastian Redlec5f3262008-12-04 22:20:51 +0000588 case OR_Success: {
589 // Got one!
590 FunctionDecl *FnDecl = Best->Function;
591 // The first argument is size_t, and the first parameter must be size_t,
592 // too. This is checked on declaration and can be assumed. (It can't be
593 // asserted on, though, since invalid decls are left in there.)
594 for (unsigned i = 1; i < NumArgs; ++i) {
595 // FIXME: Passing word to diagnostic.
Anders Carlsson88719742009-05-31 19:49:47 +0000596 if (PerformCopyInitialization(Args[i],
Sebastian Redlec5f3262008-12-04 22:20:51 +0000597 FnDecl->getParamDecl(i)->getType(),
598 "passing"))
599 return true;
600 }
601 Operator = FnDecl;
602 return false;
603 }
604
605 case OR_No_Viable_Function:
Sebastian Redlec5f3262008-12-04 22:20:51 +0000606 Diag(StartLoc, diag::err_ovl_no_viable_function_in_call)
Chris Lattner4a526112009-02-17 07:29:20 +0000607 << Name << Range;
Sebastian Redlec5f3262008-12-04 22:20:51 +0000608 PrintOverloadCandidates(Candidates, /*OnlyViable=*/false);
609 return true;
610
611 case OR_Ambiguous:
Sebastian Redlec5f3262008-12-04 22:20:51 +0000612 Diag(StartLoc, diag::err_ovl_ambiguous_call)
Sebastian Redl3b7ec4b2009-02-09 18:24:27 +0000613 << Name << Range;
Sebastian Redlec5f3262008-12-04 22:20:51 +0000614 PrintOverloadCandidates(Candidates, /*OnlyViable=*/true);
615 return true;
Douglas Gregoraa57e862009-02-18 21:56:37 +0000616
617 case OR_Deleted:
618 Diag(StartLoc, diag::err_ovl_deleted_call)
619 << Best->Function->isDeleted()
620 << Name << Range;
621 PrintOverloadCandidates(Candidates, /*OnlyViable=*/true);
622 return true;
Sebastian Redlec5f3262008-12-04 22:20:51 +0000623 }
624 assert(false && "Unreachable, bad result from BestViableFunction");
625 return true;
626}
627
628
Sebastian Redlb5ee8742008-12-03 20:26:15 +0000629/// DeclareGlobalNewDelete - Declare the global forms of operator new and
630/// delete. These are:
631/// @code
632/// void* operator new(std::size_t) throw(std::bad_alloc);
633/// void* operator new[](std::size_t) throw(std::bad_alloc);
634/// void operator delete(void *) throw();
635/// void operator delete[](void *) throw();
636/// @endcode
637/// Note that the placement and nothrow forms of new are *not* implicitly
638/// declared. Their use requires including \<new\>.
639void Sema::DeclareGlobalNewDelete()
640{
641 if (GlobalNewDeleteDeclared)
642 return;
643 GlobalNewDeleteDeclared = true;
644
645 QualType VoidPtr = Context.getPointerType(Context.VoidTy);
646 QualType SizeT = Context.getSizeType();
647
648 // FIXME: Exception specifications are not added.
649 DeclareGlobalAllocationFunction(
650 Context.DeclarationNames.getCXXOperatorName(OO_New),
651 VoidPtr, SizeT);
652 DeclareGlobalAllocationFunction(
653 Context.DeclarationNames.getCXXOperatorName(OO_Array_New),
654 VoidPtr, SizeT);
655 DeclareGlobalAllocationFunction(
656 Context.DeclarationNames.getCXXOperatorName(OO_Delete),
657 Context.VoidTy, VoidPtr);
658 DeclareGlobalAllocationFunction(
659 Context.DeclarationNames.getCXXOperatorName(OO_Array_Delete),
660 Context.VoidTy, VoidPtr);
661}
662
663/// DeclareGlobalAllocationFunction - Declares a single implicit global
664/// allocation function if it doesn't already exist.
665void Sema::DeclareGlobalAllocationFunction(DeclarationName Name,
666 QualType Return, QualType Argument)
667{
668 DeclContext *GlobalCtx = Context.getTranslationUnitDecl();
669
670 // Check if this function is already declared.
Douglas Gregor6e71edc2008-12-23 21:05:05 +0000671 {
Douglas Gregor7c865852008-12-23 22:05:29 +0000672 DeclContext::lookup_iterator Alloc, AllocEnd;
Argiris Kirtzidisab6e38a2009-06-30 02:36:12 +0000673 for (llvm::tie(Alloc, AllocEnd) = GlobalCtx->lookup(Name);
Douglas Gregor6e71edc2008-12-23 21:05:05 +0000674 Alloc != AllocEnd; ++Alloc) {
675 // FIXME: Do we need to check for default arguments here?
676 FunctionDecl *Func = cast<FunctionDecl>(*Alloc);
677 if (Func->getNumParams() == 1 &&
Ted Kremenek0c97e042009-02-07 01:47:29 +0000678 Context.getCanonicalType(Func->getParamDecl(0)->getType())==Argument)
Sebastian Redlb5ee8742008-12-03 20:26:15 +0000679 return;
Sebastian Redlb5ee8742008-12-03 20:26:15 +0000680 }
681 }
682
683 QualType FnType = Context.getFunctionType(Return, &Argument, 1, false, 0);
684 FunctionDecl *Alloc =
685 FunctionDecl::Create(Context, GlobalCtx, SourceLocation(), Name,
Argiris Kirtzidis42556e42009-08-21 00:31:54 +0000686 FnType, /*DInfo=*/0, FunctionDecl::None, false, true);
Sebastian Redlb5ee8742008-12-03 20:26:15 +0000687 Alloc->setImplicit();
688 ParmVarDecl *Param = ParmVarDecl::Create(Context, Alloc, SourceLocation(),
Argiris Kirtzidisb17120c2009-08-19 01:27:57 +0000689 0, Argument, /*DInfo=*/0,
690 VarDecl::None, 0);
Ted Kremenek8494c962009-01-14 00:42:25 +0000691 Alloc->setParams(Context, &Param, 1);
Sebastian Redlb5ee8742008-12-03 20:26:15 +0000692
Douglas Gregor6e71edc2008-12-23 21:05:05 +0000693 // FIXME: Also add this declaration to the IdentifierResolver, but
694 // make sure it is at the end of the chain to coincide with the
695 // global scope.
Argiris Kirtzidisab6e38a2009-06-30 02:36:12 +0000696 ((DeclContext *)TUScope->getEntity())->addDecl(Alloc);
Sebastian Redlb5ee8742008-12-03 20:26:15 +0000697}
698
Sebastian Redl19fec9d2008-11-21 19:14:01 +0000699/// ActOnCXXDelete - Parsed a C++ 'delete' expression (C++ 5.3.5), as in:
700/// @code ::delete ptr; @endcode
701/// or
702/// @code delete [] ptr; @endcode
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000703Action::OwningExprResult
Sebastian Redl19fec9d2008-11-21 19:14:01 +0000704Sema::ActOnCXXDelete(SourceLocation StartLoc, bool UseGlobal,
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000705 bool ArrayForm, ExprArg Operand)
Sebastian Redl19fec9d2008-11-21 19:14:01 +0000706{
707 // C++ 5.3.5p1: "The operand shall have a pointer type, or a class type
708 // having a single conversion function to a pointer type. The result has
709 // type void."
710 // DR599 amends "pointer type" to "pointer to object type" in both cases.
711
Anders Carlsson44443f82009-08-16 20:29:29 +0000712 FunctionDecl *OperatorDelete = 0;
713
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000714 Expr *Ex = (Expr *)Operand.get();
Sebastian Redl6fdb28d2009-02-26 14:39:58 +0000715 if (!Ex->isTypeDependent()) {
716 QualType Type = Ex->getType();
Sebastian Redl19fec9d2008-11-21 19:14:01 +0000717
Sebastian Redl6fdb28d2009-02-26 14:39:58 +0000718 if (Type->isRecordType()) {
719 // FIXME: Find that one conversion function and amend the type.
720 }
721
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000722 if (!Type->isPointerType())
723 return ExprError(Diag(StartLoc, diag::err_delete_operand)
724 << Type << Ex->getSourceRange());
Sebastian Redl6fdb28d2009-02-26 14:39:58 +0000725
Ted Kremenekd00cd9e2009-07-29 21:53:49 +0000726 QualType Pointee = Type->getAs<PointerType>()->getPointeeType();
Douglas Gregorcde3a2d2009-03-24 20:13:58 +0000727 if (Pointee->isFunctionType() || Pointee->isVoidType())
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000728 return ExprError(Diag(StartLoc, diag::err_delete_operand)
729 << Type << Ex->getSourceRange());
Douglas Gregorcde3a2d2009-03-24 20:13:58 +0000730 else if (!Pointee->isDependentType() &&
731 RequireCompleteType(StartLoc, Pointee,
Anders Carlssona21e7872009-08-26 23:45:07 +0000732 PDiag(diag::warn_delete_incomplete)
733 << Ex->getSourceRange()))
Douglas Gregorcde3a2d2009-03-24 20:13:58 +0000734 return ExprError();
Sebastian Redl6fdb28d2009-02-26 14:39:58 +0000735
Anders Carlsson44443f82009-08-16 20:29:29 +0000736 // FIXME: This should be shared with the code for finding the delete
737 // operator in ActOnCXXNew.
738 IntegerLiteral Size(llvm::APInt::getNullValue(
739 Context.Target.getPointerWidth(0)),
740 Context.getSizeType(),
741 SourceLocation());
742 ImplicitCastExpr Cast(Context.getPointerType(Context.VoidTy),
743 CastExpr::CK_Unknown, &Size, false);
744 Expr *DeleteArg = &Cast;
745
746 DeclarationName DeleteName = Context.DeclarationNames.getCXXOperatorName(
747 ArrayForm ? OO_Array_Delete : OO_Delete);
748
749 if (Pointee->isRecordType() && !UseGlobal) {
750 CXXRecordDecl *Record
751 = cast<CXXRecordDecl>(Pointee->getAs<RecordType>()->getDecl());
752 // FIXME: We fail to find inherited overloads.
753 if (FindAllocationOverload(StartLoc, SourceRange(), DeleteName,
754 &DeleteArg, 1, Record, /*AllowMissing=*/true,
755 OperatorDelete))
756 return ExprError();
757 }
758
759 if (!OperatorDelete) {
760 // Didn't find a member overload. Look for a global one.
761 DeclareGlobalNewDelete();
762 DeclContext *TUDecl = Context.getTranslationUnitDecl();
763 if (FindAllocationOverload(StartLoc, SourceRange(), DeleteName,
764 &DeleteArg, 1, TUDecl, /*AllowMissing=*/false,
765 OperatorDelete))
766 return ExprError();
767 }
768
Sebastian Redl6fdb28d2009-02-26 14:39:58 +0000769 // FIXME: Check access and ambiguity of operator delete and destructor.
Sebastian Redl19fec9d2008-11-21 19:14:01 +0000770 }
771
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000772 Operand.release();
773 return Owned(new (Context) CXXDeleteExpr(Context.VoidTy, UseGlobal, ArrayForm,
Anders Carlsson44443f82009-08-16 20:29:29 +0000774 OperatorDelete, Ex, StartLoc));
Sebastian Redl19fec9d2008-11-21 19:14:01 +0000775}
776
777
Argiris Kirtzidis810c0f72008-09-10 02:17:11 +0000778/// ActOnCXXConditionDeclarationExpr - Parsed a condition declaration of a
779/// C++ if/switch/while/for statement.
780/// e.g: "if (int x = f()) {...}"
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000781Action::OwningExprResult
Argiris Kirtzidis810c0f72008-09-10 02:17:11 +0000782Sema::ActOnCXXConditionDeclarationExpr(Scope *S, SourceLocation StartLoc,
783 Declarator &D,
784 SourceLocation EqualLoc,
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000785 ExprArg AssignExprVal) {
786 assert(AssignExprVal.get() && "Null assignment expression");
Argiris Kirtzidis810c0f72008-09-10 02:17:11 +0000787
788 // C++ 6.4p2:
789 // The declarator shall not specify a function or an array.
790 // The type-specifier-seq shall not contain typedef and shall not declare a
791 // new class or enumeration.
792
793 assert(D.getDeclSpec().getStorageClassSpec() != DeclSpec::SCS_typedef &&
794 "Parser allowed 'typedef' as storage class of condition decl.");
795
Argiris Kirtzidisb17120c2009-08-19 01:27:57 +0000796 // FIXME: Store DeclaratorInfo in the expression.
797 DeclaratorInfo *DInfo = 0;
Argiris Kirtzidis40688ad2009-08-11 05:20:41 +0000798 TagDecl *OwnedTag = 0;
Argiris Kirtzidisb17120c2009-08-19 01:27:57 +0000799 QualType Ty = GetTypeForDeclarator(D, S, &DInfo, /*Skip=*/0, &OwnedTag);
Argiris Kirtzidis810c0f72008-09-10 02:17:11 +0000800
801 if (Ty->isFunctionType()) { // The declarator shall not specify a function...
802 // We exit without creating a CXXConditionDeclExpr because a FunctionDecl
803 // would be created and CXXConditionDeclExpr wants a VarDecl.
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000804 return ExprError(Diag(StartLoc, diag::err_invalid_use_of_function_type)
805 << SourceRange(StartLoc, EqualLoc));
Argiris Kirtzidis810c0f72008-09-10 02:17:11 +0000806 } else if (Ty->isArrayType()) { // ...or an array.
Chris Lattner9d2cf082008-11-19 05:27:50 +0000807 Diag(StartLoc, diag::err_invalid_use_of_array_type)
808 << SourceRange(StartLoc, EqualLoc);
Argiris Kirtzidis40688ad2009-08-11 05:20:41 +0000809 } else if (OwnedTag && OwnedTag->isDefinition()) {
810 // The type-specifier-seq shall not declare a new class or enumeration.
811 Diag(OwnedTag->getLocation(), diag::err_type_defined_in_condition);
Argiris Kirtzidis810c0f72008-09-10 02:17:11 +0000812 }
813
Douglas Gregore153fcf2009-06-23 21:43:56 +0000814 DeclPtrTy Dcl = ActOnDeclarator(S, D);
Argiris Kirtzidis810c0f72008-09-10 02:17:11 +0000815 if (!Dcl)
Sebastian Redl76bb8ec2009-03-15 17:47:39 +0000816 return ExprError();
Anders Carlssonf9f05b82009-05-30 21:37:25 +0000817 AddInitializerToDecl(Dcl, move(AssignExprVal), /*DirectInit=*/false);
Argiris Kirtzidis810c0f72008-09-10 02:17:11 +0000818
Douglas Gregor48840c72008-12-10 23:01:14 +0000819 // Mark this variable as one that is declared within a conditional.
Chris Lattner5261d0c2009-03-28 19:18:32 +0000820 // We know that the decl had to be a VarDecl because that is the only type of
821 // decl that can be assigned and the grammar requires an '='.
822 VarDecl *VD = cast<VarDecl>(Dcl.getAs<Decl>());
823 VD->setDeclaredInCondition(true);
824 return Owned(new (Context) CXXConditionDeclExpr(StartLoc, EqualLoc, VD));
Argiris Kirtzidis810c0f72008-09-10 02:17:11 +0000825}
826
827/// CheckCXXBooleanCondition - Returns true if a conversion to bool is invalid.
828bool Sema::CheckCXXBooleanCondition(Expr *&CondExpr) {
829 // C++ 6.4p4:
830 // The value of a condition that is an initialized declaration in a statement
831 // other than a switch statement is the value of the declared variable
832 // implicitly converted to type bool. If that conversion is ill-formed, the
833 // program is ill-formed.
834 // The value of a condition that is an expression is the value of the
835 // expression, implicitly converted to bool.
836 //
Douglas Gregor6214d8a2009-01-14 15:45:31 +0000837 return PerformContextuallyConvertToBool(CondExpr);
Argiris Kirtzidis810c0f72008-09-10 02:17:11 +0000838}
Douglas Gregor1815b3b2008-09-12 00:47:35 +0000839
840/// Helper function to determine whether this is the (deprecated) C++
841/// conversion from a string literal to a pointer to non-const char or
842/// non-const wchar_t (for narrow and wide string literals,
843/// respectively).
844bool
845Sema::IsStringLiteralToNonConstPointerConversion(Expr *From, QualType ToType) {
846 // Look inside the implicit cast, if it exists.
847 if (ImplicitCastExpr *Cast = dyn_cast<ImplicitCastExpr>(From))
848 From = Cast->getSubExpr();
849
850 // A string literal (2.13.4) that is not a wide string literal can
851 // be converted to an rvalue of type "pointer to char"; a wide
852 // string literal can be converted to an rvalue of type "pointer
853 // to wchar_t" (C++ 4.2p2).
854 if (StringLiteral *StrLit = dyn_cast<StringLiteral>(From))
Ted Kremenekd00cd9e2009-07-29 21:53:49 +0000855 if (const PointerType *ToPtrType = ToType->getAs<PointerType>())
Douglas Gregor1815b3b2008-09-12 00:47:35 +0000856 if (const BuiltinType *ToPointeeType
857 = ToPtrType->getPointeeType()->getAsBuiltinType()) {
858 // This conversion is considered only when there is an
859 // explicit appropriate pointer target type (C++ 4.2p2).
860 if (ToPtrType->getPointeeType().getCVRQualifiers() == 0 &&
861 ((StrLit->isWide() && ToPointeeType->isWideCharType()) ||
862 (!StrLit->isWide() &&
863 (ToPointeeType->getKind() == BuiltinType::Char_U ||
864 ToPointeeType->getKind() == BuiltinType::Char_S))))
865 return true;
866 }
867
868 return false;
869}
Douglas Gregorbb461502008-10-24 04:54:22 +0000870
871/// PerformImplicitConversion - Perform an implicit conversion of the
872/// expression From to the type ToType. Returns true if there was an
873/// error, false otherwise. The expression From is replaced with the
Douglas Gregor6fd35572008-12-19 17:40:08 +0000874/// converted expression. Flavor is the kind of conversion we're
Douglas Gregor6214d8a2009-01-14 15:45:31 +0000875/// performing, used in the error message. If @p AllowExplicit,
Sebastian Redla55834a2009-04-12 17:16:29 +0000876/// explicit user-defined conversions are permitted. @p Elidable should be true
877/// when called for copies which may be elided (C++ 12.8p15). C++0x overload
878/// resolution works differently in that case.
879bool
Douglas Gregor6fd35572008-12-19 17:40:08 +0000880Sema::PerformImplicitConversion(Expr *&From, QualType ToType,
Sebastian Redla55834a2009-04-12 17:16:29 +0000881 const char *Flavor, bool AllowExplicit,
882 bool Elidable)
Douglas Gregorbb461502008-10-24 04:54:22 +0000883{
Anders Carlssonf4a65092009-08-27 16:01:18 +0000884 unsigned Flags = ORF_None;
885 if (AllowExplicit)
886 Flags |= ORF_AllowExplicit;
887
Sebastian Redla55834a2009-04-12 17:16:29 +0000888 ImplicitConversionSequence ICS;
889 ICS.ConversionKind = ImplicitConversionSequence::BadConversion;
890 if (Elidable && getLangOptions().CPlusPlus0x) {
Anders Carlssonf4a65092009-08-27 16:01:18 +0000891 Flags |= ORF_ForceRValue;
892
893 ICS = TryImplicitConversion(From, ToType, Flags);
Sebastian Redla55834a2009-04-12 17:16:29 +0000894 }
895 if (ICS.ConversionKind == ImplicitConversionSequence::BadConversion) {
Anders Carlssonf4a65092009-08-27 16:01:18 +0000896 ICS = TryImplicitConversion(From, ToType, Flags);
Sebastian Redla55834a2009-04-12 17:16:29 +0000897 }
Douglas Gregor6214d8a2009-01-14 15:45:31 +0000898 return PerformImplicitConversion(From, ToType, ICS, Flavor);
899}
900
901/// PerformImplicitConversion - Perform an implicit conversion of the
902/// expression From to the type ToType using the pre-computed implicit
903/// conversion sequence ICS. Returns true if there was an error, false
904/// otherwise. The expression From is replaced with the converted
905/// expression. Flavor is the kind of conversion we're performing,
906/// used in the error message.
907bool
908Sema::PerformImplicitConversion(Expr *&From, QualType ToType,
909 const ImplicitConversionSequence &ICS,
910 const char* Flavor) {
Douglas Gregorbb461502008-10-24 04:54:22 +0000911 switch (ICS.ConversionKind) {
912 case ImplicitConversionSequence::StandardConversion:
Douglas Gregor6fd35572008-12-19 17:40:08 +0000913 if (PerformImplicitConversion(From, ToType, ICS.Standard, Flavor))
Douglas Gregorbb461502008-10-24 04:54:22 +0000914 return true;
915 break;
916
917 case ImplicitConversionSequence::UserDefinedConversion:
Fariborz Jahanianc3e81132009-08-26 20:34:58 +0000918 // FIXME. Support other kinds of user defined convesions.
919 if (CXXConversionDecl *CV =
920 dyn_cast<CXXConversionDecl>(ICS.UserDefined.ConversionFunction))
921 // FIXME. Get actual Source Location.
922 From =
923 new (Context) CXXFunctionalCastExpr(ToType.getNonReferenceType(),
924 ToType, SourceLocation(),
925 CastExpr::CK_UserDefinedConversion,
926 From, CV,
927 SourceLocation());
Douglas Gregor6214d8a2009-01-14 15:45:31 +0000928 ImpCastExprToType(From, ToType.getNonReferenceType(),
Anders Carlsson85186942009-07-31 01:23:52 +0000929 CastExpr::CK_Unknown,
Sebastian Redlce6fff02009-03-16 23:22:08 +0000930 ToType->isLValueReferenceType());
Douglas Gregorb72e9da2008-10-31 16:23:19 +0000931 return false;
Douglas Gregorbb461502008-10-24 04:54:22 +0000932
933 case ImplicitConversionSequence::EllipsisConversion:
934 assert(false && "Cannot perform an ellipsis conversion");
Douglas Gregorb72e9da2008-10-31 16:23:19 +0000935 return false;
Douglas Gregorbb461502008-10-24 04:54:22 +0000936
937 case ImplicitConversionSequence::BadConversion:
938 return true;
939 }
940
941 // Everything went well.
942 return false;
943}
944
945/// PerformImplicitConversion - Perform an implicit conversion of the
946/// expression From to the type ToType by following the standard
947/// conversion sequence SCS. Returns true if there was an error, false
948/// otherwise. The expression From is replaced with the converted
Douglas Gregor6fd35572008-12-19 17:40:08 +0000949/// expression. Flavor is the context in which we're performing this
950/// conversion, for use in error messages.
Douglas Gregorbb461502008-10-24 04:54:22 +0000951bool
952Sema::PerformImplicitConversion(Expr *&From, QualType ToType,
Douglas Gregor6fd35572008-12-19 17:40:08 +0000953 const StandardConversionSequence& SCS,
Douglas Gregor6214d8a2009-01-14 15:45:31 +0000954 const char *Flavor) {
Mike Stumpe127ae32009-05-16 07:39:55 +0000955 // Overall FIXME: we are recomputing too many types here and doing far too
956 // much extra work. What this means is that we need to keep track of more
957 // information that is computed when we try the implicit conversion initially,
958 // so that we don't need to recompute anything here.
Douglas Gregorbb461502008-10-24 04:54:22 +0000959 QualType FromType = From->getType();
960
Douglas Gregora3b34bb2008-11-03 19:09:14 +0000961 if (SCS.CopyConstructor) {
Anders Carlsson0e098352009-05-19 04:45:15 +0000962 // FIXME: When can ToType be a reference type?
963 assert(!ToType->isReferenceType());
964
Anders Carlsson665e4692009-08-25 05:12:04 +0000965 OwningExprResult FromResult =
966 BuildCXXConstructExpr(ToType, SCS.CopyConstructor, &From, 1);
967
968 if (FromResult.isInvalid())
969 return true;
970
971 From = FromResult.takeAs<Expr>();
Douglas Gregora3b34bb2008-11-03 19:09:14 +0000972 return false;
973 }
974
Douglas Gregorbb461502008-10-24 04:54:22 +0000975 // Perform the first implicit conversion.
976 switch (SCS.First) {
977 case ICK_Identity:
978 case ICK_Lvalue_To_Rvalue:
979 // Nothing to do.
980 break;
981
982 case ICK_Array_To_Pointer:
Douglas Gregoraa57e862009-02-18 21:56:37 +0000983 FromType = Context.getArrayDecayedType(FromType);
Anders Carlssond6e11722009-08-08 21:04:35 +0000984 ImpCastExprToType(From, FromType, CastExpr::CK_ArrayToPointerDecay);
Douglas Gregoraa57e862009-02-18 21:56:37 +0000985 break;
986
987 case ICK_Function_To_Pointer:
Douglas Gregor00fe3f62009-03-13 18:40:31 +0000988 if (Context.getCanonicalType(FromType) == Context.OverloadTy) {
Douglas Gregor45014fd2008-11-10 20:40:00 +0000989 FunctionDecl *Fn = ResolveAddressOfOverloadedFunction(From, ToType, true);
990 if (!Fn)
991 return true;
992
Douglas Gregoraa57e862009-02-18 21:56:37 +0000993 if (DiagnoseUseOfDecl(Fn, From->getSourceRange().getBegin()))
994 return true;
995
Douglas Gregor45014fd2008-11-10 20:40:00 +0000996 FixOverloadedFunctionReference(From, Fn);
997 FromType = From->getType();
Douglas Gregor45014fd2008-11-10 20:40:00 +0000998 }
Douglas Gregorbb461502008-10-24 04:54:22 +0000999 FromType = Context.getPointerType(FromType);
1000 ImpCastExprToType(From, FromType);
1001 break;
1002
1003 default:
1004 assert(false && "Improper first standard conversion");
1005 break;
1006 }
1007
1008 // Perform the second implicit conversion
1009 switch (SCS.Second) {
1010 case ICK_Identity:
1011 // Nothing to do.
1012 break;
1013
1014 case ICK_Integral_Promotion:
1015 case ICK_Floating_Promotion:
Douglas Gregore819caf2009-02-12 00:15:05 +00001016 case ICK_Complex_Promotion:
Douglas Gregorbb461502008-10-24 04:54:22 +00001017 case ICK_Integral_Conversion:
1018 case ICK_Floating_Conversion:
Douglas Gregore819caf2009-02-12 00:15:05 +00001019 case ICK_Complex_Conversion:
Douglas Gregorbb461502008-10-24 04:54:22 +00001020 case ICK_Floating_Integral:
Douglas Gregore819caf2009-02-12 00:15:05 +00001021 case ICK_Complex_Real:
Douglas Gregorfcb19192009-02-11 23:02:49 +00001022 case ICK_Compatible_Conversion:
1023 // FIXME: Go deeper to get the unqualified type!
Douglas Gregorbb461502008-10-24 04:54:22 +00001024 FromType = ToType.getUnqualifiedType();
1025 ImpCastExprToType(From, FromType);
1026 break;
1027
1028 case ICK_Pointer_Conversion:
Douglas Gregor6fd35572008-12-19 17:40:08 +00001029 if (SCS.IncompatibleObjC) {
1030 // Diagnose incompatible Objective-C conversions
1031 Diag(From->getSourceRange().getBegin(),
1032 diag::ext_typecheck_convert_incompatible_pointer)
1033 << From->getType() << ToType << Flavor
1034 << From->getSourceRange();
1035 }
1036
Douglas Gregorbb461502008-10-24 04:54:22 +00001037 if (CheckPointerConversion(From, ToType))
1038 return true;
1039 ImpCastExprToType(From, ToType);
1040 break;
1041
Anders Carlsson512f4ba2009-08-22 23:33:40 +00001042 case ICK_Pointer_Member: {
1043 CastExpr::CastKind Kind = CastExpr::CK_Unknown;
1044 if (CheckMemberPointerConversion(From, ToType, Kind))
1045 return true;
1046 ImpCastExprToType(From, ToType, Kind);
1047 break;
1048 }
Douglas Gregorbb461502008-10-24 04:54:22 +00001049 case ICK_Boolean_Conversion:
1050 FromType = Context.BoolTy;
1051 ImpCastExprToType(From, FromType);
1052 break;
1053
1054 default:
1055 assert(false && "Improper second standard conversion");
1056 break;
1057 }
1058
1059 switch (SCS.Third) {
1060 case ICK_Identity:
1061 // Nothing to do.
1062 break;
1063
1064 case ICK_Qualification:
Mike Stumpe127ae32009-05-16 07:39:55 +00001065 // FIXME: Not sure about lvalue vs rvalue here in the presence of rvalue
1066 // references.
Douglas Gregor5ac8ffa2009-01-16 19:38:23 +00001067 ImpCastExprToType(From, ToType.getNonReferenceType(),
Anders Carlsson85186942009-07-31 01:23:52 +00001068 CastExpr::CK_Unknown,
Sebastian Redlce6fff02009-03-16 23:22:08 +00001069 ToType->isLValueReferenceType());
Douglas Gregorbb461502008-10-24 04:54:22 +00001070 break;
1071
1072 default:
1073 assert(false && "Improper second standard conversion");
1074 break;
1075 }
1076
1077 return false;
1078}
1079
Sebastian Redl39c0f6f2009-01-05 20:52:13 +00001080Sema::OwningExprResult Sema::ActOnUnaryTypeTrait(UnaryTypeTrait OTT,
1081 SourceLocation KWLoc,
1082 SourceLocation LParen,
1083 TypeTy *Ty,
1084 SourceLocation RParen) {
Argiris Kirtzidisd6802ba2009-08-19 01:28:28 +00001085 QualType T = GetTypeFromParser(Ty);
Anders Carlsson1b749a02009-07-07 19:06:02 +00001086
1087 // According to http://gcc.gnu.org/onlinedocs/gcc/Type-Traits.html
1088 // all traits except __is_class, __is_enum and __is_union require a the type
1089 // to be complete.
1090 if (OTT != UTT_IsClass && OTT != UTT_IsEnum && OTT != UTT_IsUnion) {
1091 if (RequireCompleteType(KWLoc, T,
Anders Carlssonb5247af2009-08-26 22:59:12 +00001092 diag::err_incomplete_type_used_in_type_trait_expr))
Anders Carlsson1b749a02009-07-07 19:06:02 +00001093 return ExprError();
1094 }
Sebastian Redl39c0f6f2009-01-05 20:52:13 +00001095
1096 // There is no point in eagerly computing the value. The traits are designed
1097 // to be used from type trait templates, so Ty will be a template parameter
1098 // 99% of the time.
Anders Carlsson1b749a02009-07-07 19:06:02 +00001099 return Owned(new (Context) UnaryTypeTraitExpr(KWLoc, OTT, T,
1100 RParen, Context.BoolTy));
Sebastian Redl39c0f6f2009-01-05 20:52:13 +00001101}
Sebastian Redlaa4c3732009-02-07 20:10:22 +00001102
1103QualType Sema::CheckPointerToMemberOperands(
1104 Expr *&lex, Expr *&rex, SourceLocation Loc, bool isIndirect)
1105{
1106 const char *OpSpelling = isIndirect ? "->*" : ".*";
1107 // C++ 5.5p2
1108 // The binary operator .* [p3: ->*] binds its second operand, which shall
1109 // be of type "pointer to member of T" (where T is a completely-defined
1110 // class type) [...]
1111 QualType RType = rex->getType();
Ted Kremenekd00cd9e2009-07-29 21:53:49 +00001112 const MemberPointerType *MemPtr = RType->getAs<MemberPointerType>();
Douglas Gregor05e28f62009-03-24 19:52:54 +00001113 if (!MemPtr) {
Sebastian Redlaa4c3732009-02-07 20:10:22 +00001114 Diag(Loc, diag::err_bad_memptr_rhs)
1115 << OpSpelling << RType << rex->getSourceRange();
1116 return QualType();
Douglas Gregor96b6df92009-05-14 00:28:11 +00001117 }
Douglas Gregor05e28f62009-03-24 19:52:54 +00001118
Sebastian Redlaa4c3732009-02-07 20:10:22 +00001119 QualType Class(MemPtr->getClass(), 0);
1120
1121 // C++ 5.5p2
1122 // [...] to its first operand, which shall be of class T or of a class of
1123 // which T is an unambiguous and accessible base class. [p3: a pointer to
1124 // such a class]
1125 QualType LType = lex->getType();
1126 if (isIndirect) {
Ted Kremenekd00cd9e2009-07-29 21:53:49 +00001127 if (const PointerType *Ptr = LType->getAs<PointerType>())
Sebastian Redlaa4c3732009-02-07 20:10:22 +00001128 LType = Ptr->getPointeeType().getNonReferenceType();
1129 else {
1130 Diag(Loc, diag::err_bad_memptr_lhs)
1131 << OpSpelling << 1 << LType << lex->getSourceRange();
1132 return QualType();
1133 }
1134 }
1135
1136 if (Context.getCanonicalType(Class).getUnqualifiedType() !=
1137 Context.getCanonicalType(LType).getUnqualifiedType()) {
1138 BasePaths Paths(/*FindAmbiguities=*/true, /*RecordPaths=*/false,
1139 /*DetectVirtual=*/false);
Mike Stumpe127ae32009-05-16 07:39:55 +00001140 // FIXME: Would it be useful to print full ambiguity paths, or is that
1141 // overkill?
Sebastian Redlaa4c3732009-02-07 20:10:22 +00001142 if (!IsDerivedFrom(LType, Class, Paths) ||
1143 Paths.isAmbiguous(Context.getCanonicalType(Class))) {
1144 Diag(Loc, diag::err_bad_memptr_lhs) << OpSpelling
1145 << (int)isIndirect << lex->getType() << lex->getSourceRange();
1146 return QualType();
1147 }
1148 }
1149
1150 // C++ 5.5p2
1151 // The result is an object or a function of the type specified by the
1152 // second operand.
1153 // The cv qualifiers are the union of those in the pointer and the left side,
1154 // in accordance with 5.5p5 and 5.2.5.
1155 // FIXME: This returns a dereferenced member function pointer as a normal
1156 // function type. However, the only operation valid on such functions is
Mike Stumpe127ae32009-05-16 07:39:55 +00001157 // calling them. There's also a GCC extension to get a function pointer to the
1158 // thing, which is another complication, because this type - unlike the type
1159 // that is the result of this expression - takes the class as the first
Sebastian Redlaa4c3732009-02-07 20:10:22 +00001160 // argument.
1161 // We probably need a "MemberFunctionClosureType" or something like that.
1162 QualType Result = MemPtr->getPointeeType();
1163 if (LType.isConstQualified())
1164 Result.addConst();
1165 if (LType.isVolatileQualified())
1166 Result.addVolatile();
1167 return Result;
1168}
Sebastian Redlbd261962009-04-16 17:51:27 +00001169
1170/// \brief Get the target type of a standard or user-defined conversion.
1171static QualType TargetType(const ImplicitConversionSequence &ICS) {
1172 assert((ICS.ConversionKind ==
1173 ImplicitConversionSequence::StandardConversion ||
1174 ICS.ConversionKind ==
1175 ImplicitConversionSequence::UserDefinedConversion) &&
1176 "function only valid for standard or user-defined conversions");
1177 if (ICS.ConversionKind == ImplicitConversionSequence::StandardConversion)
1178 return QualType::getFromOpaquePtr(ICS.Standard.ToTypePtr);
1179 return QualType::getFromOpaquePtr(ICS.UserDefined.After.ToTypePtr);
1180}
1181
1182/// \brief Try to convert a type to another according to C++0x 5.16p3.
1183///
1184/// This is part of the parameter validation for the ? operator. If either
1185/// value operand is a class type, the two operands are attempted to be
1186/// converted to each other. This function does the conversion in one direction.
1187/// It emits a diagnostic and returns true only if it finds an ambiguous
1188/// conversion.
1189static bool TryClassUnification(Sema &Self, Expr *From, Expr *To,
1190 SourceLocation QuestionLoc,
1191 ImplicitConversionSequence &ICS)
1192{
1193 // C++0x 5.16p3
1194 // The process for determining whether an operand expression E1 of type T1
1195 // can be converted to match an operand expression E2 of type T2 is defined
1196 // as follows:
1197 // -- If E2 is an lvalue:
1198 if (To->isLvalue(Self.Context) == Expr::LV_Valid) {
1199 // E1 can be converted to match E2 if E1 can be implicitly converted to
1200 // type "lvalue reference to T2", subject to the constraint that in the
1201 // conversion the reference must bind directly to E1.
1202 if (!Self.CheckReferenceInit(From,
1203 Self.Context.getLValueReferenceType(To->getType()),
1204 &ICS))
1205 {
1206 assert((ICS.ConversionKind ==
1207 ImplicitConversionSequence::StandardConversion ||
1208 ICS.ConversionKind ==
1209 ImplicitConversionSequence::UserDefinedConversion) &&
1210 "expected a definite conversion");
1211 bool DirectBinding =
1212 ICS.ConversionKind == ImplicitConversionSequence::StandardConversion ?
1213 ICS.Standard.DirectBinding : ICS.UserDefined.After.DirectBinding;
1214 if (DirectBinding)
1215 return false;
1216 }
1217 }
1218 ICS.ConversionKind = ImplicitConversionSequence::BadConversion;
1219 // -- If E2 is an rvalue, or if the conversion above cannot be done:
1220 // -- if E1 and E2 have class type, and the underlying class types are
1221 // the same or one is a base class of the other:
1222 QualType FTy = From->getType();
1223 QualType TTy = To->getType();
Ted Kremenekd00cd9e2009-07-29 21:53:49 +00001224 const RecordType *FRec = FTy->getAs<RecordType>();
1225 const RecordType *TRec = TTy->getAs<RecordType>();
Sebastian Redlbd261962009-04-16 17:51:27 +00001226 bool FDerivedFromT = FRec && TRec && Self.IsDerivedFrom(FTy, TTy);
1227 if (FRec && TRec && (FRec == TRec ||
1228 FDerivedFromT || Self.IsDerivedFrom(TTy, FTy))) {
1229 // E1 can be converted to match E2 if the class of T2 is the
1230 // same type as, or a base class of, the class of T1, and
1231 // [cv2 > cv1].
1232 if ((FRec == TRec || FDerivedFromT) && TTy.isAtLeastAsQualifiedAs(FTy)) {
1233 // Could still fail if there's no copy constructor.
1234 // FIXME: Is this a hard error then, or just a conversion failure? The
1235 // standard doesn't say.
1236 ICS = Self.TryCopyInitialization(From, TTy);
1237 }
1238 } else {
1239 // -- Otherwise: E1 can be converted to match E2 if E1 can be
1240 // implicitly converted to the type that expression E2 would have
1241 // if E2 were converted to an rvalue.
1242 // First find the decayed type.
1243 if (TTy->isFunctionType())
1244 TTy = Self.Context.getPointerType(TTy);
1245 else if(TTy->isArrayType())
1246 TTy = Self.Context.getArrayDecayedType(TTy);
1247
1248 // Now try the implicit conversion.
1249 // FIXME: This doesn't detect ambiguities.
1250 ICS = Self.TryImplicitConversion(From, TTy);
1251 }
1252 return false;
1253}
1254
1255/// \brief Try to find a common type for two according to C++0x 5.16p5.
1256///
1257/// This is part of the parameter validation for the ? operator. If either
1258/// value operand is a class type, overload resolution is used to find a
1259/// conversion to a common type.
1260static bool FindConditionalOverload(Sema &Self, Expr *&LHS, Expr *&RHS,
1261 SourceLocation Loc) {
1262 Expr *Args[2] = { LHS, RHS };
1263 OverloadCandidateSet CandidateSet;
1264 Self.AddBuiltinOperatorCandidates(OO_Conditional, Args, 2, CandidateSet);
1265
1266 OverloadCandidateSet::iterator Best;
Douglas Gregor98189262009-06-19 23:52:42 +00001267 switch (Self.BestViableFunction(CandidateSet, Loc, Best)) {
Sebastian Redlbd261962009-04-16 17:51:27 +00001268 case Sema::OR_Success:
1269 // We found a match. Perform the conversions on the arguments and move on.
1270 if (Self.PerformImplicitConversion(LHS, Best->BuiltinTypes.ParamTypes[0],
1271 Best->Conversions[0], "converting") ||
1272 Self.PerformImplicitConversion(RHS, Best->BuiltinTypes.ParamTypes[1],
1273 Best->Conversions[1], "converting"))
1274 break;
1275 return false;
1276
1277 case Sema::OR_No_Viable_Function:
1278 Self.Diag(Loc, diag::err_typecheck_cond_incompatible_operands)
1279 << LHS->getType() << RHS->getType()
1280 << LHS->getSourceRange() << RHS->getSourceRange();
1281 return true;
1282
1283 case Sema::OR_Ambiguous:
1284 Self.Diag(Loc, diag::err_conditional_ambiguous_ovl)
1285 << LHS->getType() << RHS->getType()
1286 << LHS->getSourceRange() << RHS->getSourceRange();
Mike Stumpe127ae32009-05-16 07:39:55 +00001287 // FIXME: Print the possible common types by printing the return types of
1288 // the viable candidates.
Sebastian Redlbd261962009-04-16 17:51:27 +00001289 break;
1290
1291 case Sema::OR_Deleted:
1292 assert(false && "Conditional operator has only built-in overloads");
1293 break;
1294 }
1295 return true;
1296}
1297
Sebastian Redld3169132009-04-17 16:30:52 +00001298/// \brief Perform an "extended" implicit conversion as returned by
1299/// TryClassUnification.
1300///
1301/// TryClassUnification generates ICSs that include reference bindings.
1302/// PerformImplicitConversion is not suitable for this; it chokes if the
1303/// second part of a standard conversion is ICK_DerivedToBase. This function
1304/// handles the reference binding specially.
1305static bool ConvertForConditional(Sema &Self, Expr *&E,
1306 const ImplicitConversionSequence &ICS)
1307{
1308 if (ICS.ConversionKind == ImplicitConversionSequence::StandardConversion &&
1309 ICS.Standard.ReferenceBinding) {
1310 assert(ICS.Standard.DirectBinding &&
1311 "TryClassUnification should never generate indirect ref bindings");
Sebastian Redlf6b86182009-04-26 11:21:02 +00001312 // FIXME: CheckReferenceInit should be able to reuse the ICS instead of
1313 // redoing all the work.
1314 return Self.CheckReferenceInit(E, Self.Context.getLValueReferenceType(
1315 TargetType(ICS)));
Sebastian Redld3169132009-04-17 16:30:52 +00001316 }
1317 if (ICS.ConversionKind == ImplicitConversionSequence::UserDefinedConversion &&
1318 ICS.UserDefined.After.ReferenceBinding) {
1319 assert(ICS.UserDefined.After.DirectBinding &&
1320 "TryClassUnification should never generate indirect ref bindings");
Sebastian Redlf6b86182009-04-26 11:21:02 +00001321 return Self.CheckReferenceInit(E, Self.Context.getLValueReferenceType(
1322 TargetType(ICS)));
Sebastian Redld3169132009-04-17 16:30:52 +00001323 }
1324 if (Self.PerformImplicitConversion(E, TargetType(ICS), ICS, "converting"))
1325 return true;
1326 return false;
1327}
1328
Sebastian Redlbd261962009-04-16 17:51:27 +00001329/// \brief Check the operands of ?: under C++ semantics.
1330///
1331/// See C++ [expr.cond]. Note that LHS is never null, even for the GNU x ?: y
1332/// extension. In this case, LHS == Cond. (But they're not aliases.)
1333QualType Sema::CXXCheckConditionalOperands(Expr *&Cond, Expr *&LHS, Expr *&RHS,
1334 SourceLocation QuestionLoc) {
Mike Stumpe127ae32009-05-16 07:39:55 +00001335 // FIXME: Handle C99's complex types, vector types, block pointers and Obj-C++
1336 // interface pointers.
Sebastian Redlbd261962009-04-16 17:51:27 +00001337
1338 // C++0x 5.16p1
1339 // The first expression is contextually converted to bool.
1340 if (!Cond->isTypeDependent()) {
1341 if (CheckCXXBooleanCondition(Cond))
1342 return QualType();
1343 }
1344
1345 // Either of the arguments dependent?
1346 if (LHS->isTypeDependent() || RHS->isTypeDependent())
1347 return Context.DependentTy;
1348
1349 // C++0x 5.16p2
1350 // If either the second or the third operand has type (cv) void, ...
1351 QualType LTy = LHS->getType();
1352 QualType RTy = RHS->getType();
1353 bool LVoid = LTy->isVoidType();
1354 bool RVoid = RTy->isVoidType();
1355 if (LVoid || RVoid) {
1356 // ... then the [l2r] conversions are performed on the second and third
1357 // operands ...
1358 DefaultFunctionArrayConversion(LHS);
1359 DefaultFunctionArrayConversion(RHS);
1360 LTy = LHS->getType();
1361 RTy = RHS->getType();
1362
1363 // ... and one of the following shall hold:
1364 // -- The second or the third operand (but not both) is a throw-
1365 // expression; the result is of the type of the other and is an rvalue.
1366 bool LThrow = isa<CXXThrowExpr>(LHS);
1367 bool RThrow = isa<CXXThrowExpr>(RHS);
1368 if (LThrow && !RThrow)
1369 return RTy;
1370 if (RThrow && !LThrow)
1371 return LTy;
1372
1373 // -- Both the second and third operands have type void; the result is of
1374 // type void and is an rvalue.
1375 if (LVoid && RVoid)
1376 return Context.VoidTy;
1377
1378 // Neither holds, error.
1379 Diag(QuestionLoc, diag::err_conditional_void_nonvoid)
1380 << (LVoid ? RTy : LTy) << (LVoid ? 0 : 1)
1381 << LHS->getSourceRange() << RHS->getSourceRange();
1382 return QualType();
1383 }
1384
1385 // Neither is void.
1386
1387 // C++0x 5.16p3
1388 // Otherwise, if the second and third operand have different types, and
1389 // either has (cv) class type, and attempt is made to convert each of those
1390 // operands to the other.
1391 if (Context.getCanonicalType(LTy) != Context.getCanonicalType(RTy) &&
1392 (LTy->isRecordType() || RTy->isRecordType())) {
1393 ImplicitConversionSequence ICSLeftToRight, ICSRightToLeft;
1394 // These return true if a single direction is already ambiguous.
1395 if (TryClassUnification(*this, LHS, RHS, QuestionLoc, ICSLeftToRight))
1396 return QualType();
1397 if (TryClassUnification(*this, RHS, LHS, QuestionLoc, ICSRightToLeft))
1398 return QualType();
1399
1400 bool HaveL2R = ICSLeftToRight.ConversionKind !=
1401 ImplicitConversionSequence::BadConversion;
1402 bool HaveR2L = ICSRightToLeft.ConversionKind !=
1403 ImplicitConversionSequence::BadConversion;
1404 // If both can be converted, [...] the program is ill-formed.
1405 if (HaveL2R && HaveR2L) {
1406 Diag(QuestionLoc, diag::err_conditional_ambiguous)
1407 << LTy << RTy << LHS->getSourceRange() << RHS->getSourceRange();
1408 return QualType();
1409 }
1410
1411 // If exactly one conversion is possible, that conversion is applied to
1412 // the chosen operand and the converted operands are used in place of the
1413 // original operands for the remainder of this section.
1414 if (HaveL2R) {
Sebastian Redld3169132009-04-17 16:30:52 +00001415 if (ConvertForConditional(*this, LHS, ICSLeftToRight))
Sebastian Redlbd261962009-04-16 17:51:27 +00001416 return QualType();
1417 LTy = LHS->getType();
1418 } else if (HaveR2L) {
Sebastian Redld3169132009-04-17 16:30:52 +00001419 if (ConvertForConditional(*this, RHS, ICSRightToLeft))
Sebastian Redlbd261962009-04-16 17:51:27 +00001420 return QualType();
1421 RTy = RHS->getType();
1422 }
1423 }
1424
1425 // C++0x 5.16p4
1426 // If the second and third operands are lvalues and have the same type,
1427 // the result is of that type [...]
1428 bool Same = Context.getCanonicalType(LTy) == Context.getCanonicalType(RTy);
1429 if (Same && LHS->isLvalue(Context) == Expr::LV_Valid &&
1430 RHS->isLvalue(Context) == Expr::LV_Valid)
1431 return LTy;
1432
1433 // C++0x 5.16p5
1434 // Otherwise, the result is an rvalue. If the second and third operands
1435 // do not have the same type, and either has (cv) class type, ...
1436 if (!Same && (LTy->isRecordType() || RTy->isRecordType())) {
1437 // ... overload resolution is used to determine the conversions (if any)
1438 // to be applied to the operands. If the overload resolution fails, the
1439 // program is ill-formed.
1440 if (FindConditionalOverload(*this, LHS, RHS, QuestionLoc))
1441 return QualType();
1442 }
1443
1444 // C++0x 5.16p6
1445 // LValue-to-rvalue, array-to-pointer, and function-to-pointer standard
1446 // conversions are performed on the second and third operands.
1447 DefaultFunctionArrayConversion(LHS);
1448 DefaultFunctionArrayConversion(RHS);
1449 LTy = LHS->getType();
1450 RTy = RHS->getType();
1451
1452 // After those conversions, one of the following shall hold:
1453 // -- The second and third operands have the same type; the result
1454 // is of that type.
1455 if (Context.getCanonicalType(LTy) == Context.getCanonicalType(RTy))
1456 return LTy;
1457
1458 // -- The second and third operands have arithmetic or enumeration type;
1459 // the usual arithmetic conversions are performed to bring them to a
1460 // common type, and the result is of that type.
1461 if (LTy->isArithmeticType() && RTy->isArithmeticType()) {
1462 UsualArithmeticConversions(LHS, RHS);
1463 return LHS->getType();
1464 }
1465
1466 // -- The second and third operands have pointer type, or one has pointer
1467 // type and the other is a null pointer constant; pointer conversions
1468 // and qualification conversions are performed to bring them to their
1469 // composite pointer type. The result is of the composite pointer type.
Sebastian Redl42b81a22009-04-19 19:26:31 +00001470 QualType Composite = FindCompositePointerType(LHS, RHS);
1471 if (!Composite.isNull())
1472 return Composite;
Sebastian Redlbd261962009-04-16 17:51:27 +00001473
Sebastian Redl5b3fcf82009-04-19 21:15:26 +00001474 // Fourth bullet is same for pointers-to-member. However, the possible
1475 // conversions are far more limited: we have null-to-pointer, upcast of
1476 // containing class, and second-level cv-ness.
1477 // cv-ness is not a union, but must match one of the two operands. (Which,
1478 // frankly, is stupid.)
Ted Kremenekd00cd9e2009-07-29 21:53:49 +00001479 const MemberPointerType *LMemPtr = LTy->getAs<MemberPointerType>();
1480 const MemberPointerType *RMemPtr = RTy->getAs<MemberPointerType>();
Sebastian Redl5b3fcf82009-04-19 21:15:26 +00001481 if (LMemPtr && RHS->isNullPointerConstant(Context)) {
1482 ImpCastExprToType(RHS, LTy);
1483 return LTy;
1484 }
1485 if (RMemPtr && LHS->isNullPointerConstant(Context)) {
1486 ImpCastExprToType(LHS, RTy);
1487 return RTy;
1488 }
1489 if (LMemPtr && RMemPtr) {
1490 QualType LPointee = LMemPtr->getPointeeType();
1491 QualType RPointee = RMemPtr->getPointeeType();
1492 // First, we check that the unqualified pointee type is the same. If it's
1493 // not, there's no conversion that will unify the two pointers.
1494 if (Context.getCanonicalType(LPointee).getUnqualifiedType() ==
1495 Context.getCanonicalType(RPointee).getUnqualifiedType()) {
1496 // Second, we take the greater of the two cv qualifications. If neither
1497 // is greater than the other, the conversion is not possible.
1498 unsigned Q = LPointee.getCVRQualifiers() | RPointee.getCVRQualifiers();
1499 if (Q == LPointee.getCVRQualifiers() || Q == RPointee.getCVRQualifiers()){
1500 // Third, we check if either of the container classes is derived from
1501 // the other.
1502 QualType LContainer(LMemPtr->getClass(), 0);
1503 QualType RContainer(RMemPtr->getClass(), 0);
1504 QualType MoreDerived;
1505 if (Context.getCanonicalType(LContainer) ==
1506 Context.getCanonicalType(RContainer))
1507 MoreDerived = LContainer;
1508 else if (IsDerivedFrom(LContainer, RContainer))
1509 MoreDerived = LContainer;
1510 else if (IsDerivedFrom(RContainer, LContainer))
1511 MoreDerived = RContainer;
1512
1513 if (!MoreDerived.isNull()) {
1514 // The type 'Q Pointee (MoreDerived::*)' is the common type.
1515 // We don't use ImpCastExprToType here because this could still fail
1516 // for ambiguous or inaccessible conversions.
1517 QualType Common = Context.getMemberPointerType(
1518 LPointee.getQualifiedType(Q), MoreDerived.getTypePtr());
1519 if (PerformImplicitConversion(LHS, Common, "converting"))
1520 return QualType();
1521 if (PerformImplicitConversion(RHS, Common, "converting"))
1522 return QualType();
1523 return Common;
1524 }
1525 }
1526 }
1527 }
1528
Sebastian Redlbd261962009-04-16 17:51:27 +00001529 Diag(QuestionLoc, diag::err_typecheck_cond_incompatible_operands)
1530 << LHS->getType() << RHS->getType()
1531 << LHS->getSourceRange() << RHS->getSourceRange();
1532 return QualType();
1533}
Sebastian Redl42b81a22009-04-19 19:26:31 +00001534
1535/// \brief Find a merged pointer type and convert the two expressions to it.
1536///
Douglas Gregor70be4db2009-08-24 17:42:35 +00001537/// This finds the composite pointer type (or member pointer type) for @p E1
1538/// and @p E2 according to C++0x 5.9p2. It converts both expressions to this
1539/// type and returns it.
Sebastian Redl42b81a22009-04-19 19:26:31 +00001540/// It does not emit diagnostics.
1541QualType Sema::FindCompositePointerType(Expr *&E1, Expr *&E2) {
1542 assert(getLangOptions().CPlusPlus && "This function assumes C++");
1543 QualType T1 = E1->getType(), T2 = E2->getType();
Douglas Gregor70be4db2009-08-24 17:42:35 +00001544
1545 if (!T1->isPointerType() && !T1->isMemberPointerType() &&
1546 !T2->isPointerType() && !T2->isMemberPointerType())
1547 return QualType();
Sebastian Redl42b81a22009-04-19 19:26:31 +00001548
Douglas Gregor70be4db2009-08-24 17:42:35 +00001549 // FIXME: Do we need to work on the canonical types?
1550
Sebastian Redl42b81a22009-04-19 19:26:31 +00001551 // C++0x 5.9p2
1552 // Pointer conversions and qualification conversions are performed on
1553 // pointer operands to bring them to their composite pointer type. If
1554 // one operand is a null pointer constant, the composite pointer type is
1555 // the type of the other operand.
1556 if (E1->isNullPointerConstant(Context)) {
1557 ImpCastExprToType(E1, T2);
1558 return T2;
1559 }
1560 if (E2->isNullPointerConstant(Context)) {
1561 ImpCastExprToType(E2, T1);
1562 return T1;
1563 }
Douglas Gregor70be4db2009-08-24 17:42:35 +00001564
1565 // Now both have to be pointers or member pointers.
1566 if (!T1->isPointerType() && !T1->isMemberPointerType() &&
1567 !T2->isPointerType() && !T2->isMemberPointerType())
Sebastian Redl42b81a22009-04-19 19:26:31 +00001568 return QualType();
1569
1570 // Otherwise, of one of the operands has type "pointer to cv1 void," then
1571 // the other has type "pointer to cv2 T" and the composite pointer type is
1572 // "pointer to cv12 void," where cv12 is the union of cv1 and cv2.
1573 // Otherwise, the composite pointer type is a pointer type similar to the
1574 // type of one of the operands, with a cv-qualification signature that is
1575 // the union of the cv-qualification signatures of the operand types.
1576 // In practice, the first part here is redundant; it's subsumed by the second.
1577 // What we do here is, we build the two possible composite types, and try the
1578 // conversions in both directions. If only one works, or if the two composite
1579 // types are the same, we have succeeded.
1580 llvm::SmallVector<unsigned, 4> QualifierUnion;
Douglas Gregor70be4db2009-08-24 17:42:35 +00001581 llvm::SmallVector<std::pair<const Type *, const Type *>, 4> MemberOfClass;
Sebastian Redl42b81a22009-04-19 19:26:31 +00001582 QualType Composite1 = T1, Composite2 = T2;
Douglas Gregor70be4db2009-08-24 17:42:35 +00001583 do {
1584 const PointerType *Ptr1, *Ptr2;
1585 if ((Ptr1 = Composite1->getAs<PointerType>()) &&
1586 (Ptr2 = Composite2->getAs<PointerType>())) {
1587 Composite1 = Ptr1->getPointeeType();
1588 Composite2 = Ptr2->getPointeeType();
1589 QualifierUnion.push_back(
1590 Composite1.getCVRQualifiers() | Composite2.getCVRQualifiers());
1591 MemberOfClass.push_back(std::make_pair((const Type *)0, (const Type *)0));
1592 continue;
1593 }
1594
1595 const MemberPointerType *MemPtr1, *MemPtr2;
1596 if ((MemPtr1 = Composite1->getAs<MemberPointerType>()) &&
1597 (MemPtr2 = Composite2->getAs<MemberPointerType>())) {
1598 Composite1 = MemPtr1->getPointeeType();
1599 Composite2 = MemPtr2->getPointeeType();
1600 QualifierUnion.push_back(
1601 Composite1.getCVRQualifiers() | Composite2.getCVRQualifiers());
1602 MemberOfClass.push_back(std::make_pair(MemPtr1->getClass(),
1603 MemPtr2->getClass()));
1604 continue;
1605 }
1606
1607 // FIXME: block pointer types?
1608
1609 // Cannot unwrap any more types.
1610 break;
1611 } while (true);
1612
1613 // Rewrap the composites as pointers or member pointers with the union CVRs.
1614 llvm::SmallVector<std::pair<const Type *, const Type *>, 4>::iterator MOC
1615 = MemberOfClass.begin();
1616 for (llvm::SmallVector<unsigned, 4>::iterator
1617 I = QualifierUnion.begin(),
1618 E = QualifierUnion.end();
1619 I != E; (void)++I, ++MOC) {
1620 if (MOC->first && MOC->second) {
1621 // Rebuild member pointer type
1622 Composite1 = Context.getMemberPointerType(Composite1.getQualifiedType(*I),
1623 MOC->first);
1624 Composite2 = Context.getMemberPointerType(Composite2.getQualifiedType(*I),
1625 MOC->second);
1626 } else {
1627 // Rebuild pointer type
1628 Composite1 = Context.getPointerType(Composite1.getQualifiedType(*I));
1629 Composite2 = Context.getPointerType(Composite2.getQualifiedType(*I));
1630 }
Sebastian Redl42b81a22009-04-19 19:26:31 +00001631 }
1632
1633 ImplicitConversionSequence E1ToC1 = TryImplicitConversion(E1, Composite1);
1634 ImplicitConversionSequence E2ToC1 = TryImplicitConversion(E2, Composite1);
1635 ImplicitConversionSequence E1ToC2, E2ToC2;
1636 E1ToC2.ConversionKind = ImplicitConversionSequence::BadConversion;
1637 E2ToC2.ConversionKind = ImplicitConversionSequence::BadConversion;
1638 if (Context.getCanonicalType(Composite1) !=
1639 Context.getCanonicalType(Composite2)) {
1640 E1ToC2 = TryImplicitConversion(E1, Composite2);
1641 E2ToC2 = TryImplicitConversion(E2, Composite2);
1642 }
1643
1644 bool ToC1Viable = E1ToC1.ConversionKind !=
1645 ImplicitConversionSequence::BadConversion
1646 && E2ToC1.ConversionKind !=
1647 ImplicitConversionSequence::BadConversion;
1648 bool ToC2Viable = E1ToC2.ConversionKind !=
1649 ImplicitConversionSequence::BadConversion
1650 && E2ToC2.ConversionKind !=
1651 ImplicitConversionSequence::BadConversion;
1652 if (ToC1Viable && !ToC2Viable) {
1653 if (!PerformImplicitConversion(E1, Composite1, E1ToC1, "converting") &&
1654 !PerformImplicitConversion(E2, Composite1, E2ToC1, "converting"))
1655 return Composite1;
1656 }
1657 if (ToC2Viable && !ToC1Viable) {
1658 if (!PerformImplicitConversion(E1, Composite2, E1ToC2, "converting") &&
1659 !PerformImplicitConversion(E2, Composite2, E2ToC2, "converting"))
1660 return Composite2;
1661 }
1662 return QualType();
1663}
Anders Carlssonf0967d72009-05-17 18:41:29 +00001664
Anders Carlssona05fa102009-05-30 20:36:53 +00001665Sema::OwningExprResult Sema::MaybeBindToTemporary(Expr *E) {
Anders Carlsson1bfe1c42009-08-15 23:41:35 +00001666 if (!Context.getLangOptions().CPlusPlus)
1667 return Owned(E);
1668
Ted Kremenekd00cd9e2009-07-29 21:53:49 +00001669 const RecordType *RT = E->getType()->getAs<RecordType>();
Anders Carlssona05fa102009-05-30 20:36:53 +00001670 if (!RT)
1671 return Owned(E);
1672
1673 CXXRecordDecl *RD = cast<CXXRecordDecl>(RT->getDecl());
1674 if (RD->hasTrivialDestructor())
1675 return Owned(E);
1676
1677 CXXTemporary *Temp = CXXTemporary::Create(Context,
1678 RD->getDestructor(Context));
Anders Carlsson1ef0ee92009-05-30 21:21:49 +00001679 ExprTemporaries.push_back(Temp);
Fariborz Jahaniancd208112009-08-03 19:13:25 +00001680 if (CXXDestructorDecl *Destructor =
1681 const_cast<CXXDestructorDecl*>(RD->getDestructor(Context)))
1682 MarkDeclarationReferenced(E->getExprLoc(), Destructor);
Anders Carlssona05fa102009-05-30 20:36:53 +00001683 // FIXME: Add the temporary to the temporaries vector.
1684 return Owned(CXXBindTemporaryExpr::Create(Context, Temp, E));
1685}
1686
Anders Carlsson8f75fbc2009-06-05 15:38:08 +00001687Expr *Sema::MaybeCreateCXXExprWithTemporaries(Expr *SubExpr,
Anders Carlsson37bb2bd2009-06-16 03:37:31 +00001688 bool ShouldDestroyTemps) {
Anders Carlsson8f75fbc2009-06-05 15:38:08 +00001689 assert(SubExpr && "sub expression can't be null!");
1690
1691 if (ExprTemporaries.empty())
1692 return SubExpr;
1693
1694 Expr *E = CXXExprWithTemporaries::Create(Context, SubExpr,
1695 &ExprTemporaries[0],
1696 ExprTemporaries.size(),
Anders Carlsson37bb2bd2009-06-16 03:37:31 +00001697 ShouldDestroyTemps);
Anders Carlsson8f75fbc2009-06-05 15:38:08 +00001698 ExprTemporaries.clear();
1699
1700 return E;
1701}
1702
Anders Carlsson093ba8b2009-08-25 23:46:41 +00001703Sema::OwningExprResult
Anders Carlsson691e04e2009-08-26 17:36:19 +00001704Sema::ActOnDestructorReferenceExpr(Scope *S, ExprArg Base,
Anders Carlsson093ba8b2009-08-25 23:46:41 +00001705 SourceLocation OpLoc,
1706 tok::TokenKind OpKind,
1707 SourceLocation ClassNameLoc,
1708 IdentifierInfo *ClassName,
1709 const CXXScopeSpec *SS) {
1710 if (SS && SS->isInvalid())
1711 return ExprError();
Anders Carlsson3d567482009-08-26 19:22:42 +00001712
1713 Expr *BaseExpr = (Expr *)Base.get();
Anders Carlsson093ba8b2009-08-25 23:46:41 +00001714
Anders Carlsson3d567482009-08-26 19:22:42 +00001715 if (BaseExpr->isTypeDependent() ||
1716 (SS && isDependentScopeSpecifier(*SS))) {
1717 // FIXME: Return an unresolved ref expr.
1718 return ExprError();
1719 }
1720
1721 TypeTy *BaseTy = getTypeName(*ClassName, ClassNameLoc, S, SS);
1722 if (!BaseTy) {
1723 Diag(ClassNameLoc, diag::err_ident_in_pseudo_dtor_not_a_type)
1724 << ClassName;
1725 return ExprError();
1726 }
Anders Carlsson093ba8b2009-08-25 23:46:41 +00001727
Anders Carlsson3d567482009-08-26 19:22:42 +00001728 QualType BaseType = GetTypeFromParser(BaseTy);
1729 if (!BaseType->isRecordType()) {
1730 Diag(ClassNameLoc, diag::err_type_in_pseudo_dtor_not_a_class_type)
1731 << BaseType;
1732 return ExprError();
1733 }
Anders Carlsson093ba8b2009-08-25 23:46:41 +00001734
Anders Carlsson3d567482009-08-26 19:22:42 +00001735 CanQualType CanBaseType = Context.getCanonicalType(BaseType);
1736 DeclarationName DtorName =
1737 Context.DeclarationNames.getCXXDestructorName(CanBaseType);
1738
1739 return BuildMemberReferenceExpr(S, move(Base), OpLoc, OpKind, ClassNameLoc,
1740 DtorName, DeclPtrTy(), SS);
Anders Carlsson093ba8b2009-08-25 23:46:41 +00001741}
1742
Anders Carlssonf0967d72009-05-17 18:41:29 +00001743Sema::OwningExprResult Sema::ActOnFinishFullExpr(ExprArg Arg) {
1744 Expr *FullExpr = Arg.takeAs<Expr>();
Anders Carlsson8f75fbc2009-06-05 15:38:08 +00001745 if (FullExpr)
Anders Carlsson37bb2bd2009-06-16 03:37:31 +00001746 FullExpr = MaybeCreateCXXExprWithTemporaries(FullExpr,
1747 /*ShouldDestroyTemps=*/true);
Anders Carlssonf0967d72009-05-17 18:41:29 +00001748
Anders Carlsson093ba8b2009-08-25 23:46:41 +00001749
Anders Carlssonf0967d72009-05-17 18:41:29 +00001750 return Owned(FullExpr);
1751}