blob: 485d012b6e6ea652a51dba025e297595cc778178 [file] [log] [blame]
Chris Lattner29375652006-12-04 18:06:35 +00001//===--- SemaExprCXX.cpp - Semantic Analysis for Expressions --------------===//
2//
3// The LLVM Compiler Infrastructure
4//
Chris Lattner5b12ab82007-12-29 19:59:25 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Chris Lattner29375652006-12-04 18:06:35 +00007//
8//===----------------------------------------------------------------------===//
James Dennett84053fb2012-06-22 05:14:59 +00009///
10/// \file
11/// \brief Implements semantic analysis for C++ expressions.
12///
13//===----------------------------------------------------------------------===//
Chris Lattner29375652006-12-04 18:06:35 +000014
John McCall83024632010-08-25 22:03:47 +000015#include "clang/Sema/SemaInternal.h"
Kaelyn Takata6c759512014-10-27 18:07:37 +000016#include "TreeTransform.h"
Chandler Carruth3a022472012-12-04 09:13:33 +000017#include "TypeLocBuilder.h"
Steve Naroffaac94152007-08-25 14:02:58 +000018#include "clang/AST/ASTContext.h"
Faisal Vali47d9ed42014-05-30 04:39:37 +000019#include "clang/AST/ASTLambda.h"
Douglas Gregor36d1b142009-10-06 17:59:45 +000020#include "clang/AST/CXXInheritance.h"
Chandler Carruth3a022472012-12-04 09:13:33 +000021#include "clang/AST/CharUnits.h"
John McCallde6836a2010-08-24 07:21:54 +000022#include "clang/AST/DeclObjC.h"
Anders Carlsson029fc692009-08-26 22:59:12 +000023#include "clang/AST/ExprCXX.h"
Fariborz Jahanian1d446082010-06-16 18:56:04 +000024#include "clang/AST/ExprObjC.h"
Faisal Valia17d19f2013-11-07 05:17:06 +000025#include "clang/AST/RecursiveASTVisitor.h"
Douglas Gregorb1dd23f2010-02-24 22:38:50 +000026#include "clang/AST/TypeLoc.h"
Anders Carlsson029fc692009-08-26 22:59:12 +000027#include "clang/Basic/PartialDiagnostic.h"
Sebastian Redlfaf68082008-12-03 20:26:15 +000028#include "clang/Basic/TargetInfo.h"
Anders Carlsson029fc692009-08-26 22:59:12 +000029#include "clang/Lex/Preprocessor.h"
Chandler Carruth3a022472012-12-04 09:13:33 +000030#include "clang/Sema/DeclSpec.h"
31#include "clang/Sema/Initialization.h"
32#include "clang/Sema/Lookup.h"
33#include "clang/Sema/ParsedTemplate.h"
34#include "clang/Sema/Scope.h"
35#include "clang/Sema/ScopeInfo.h"
Faisal Valia17d19f2013-11-07 05:17:06 +000036#include "clang/Sema/SemaLambda.h"
Chandler Carruth3a022472012-12-04 09:13:33 +000037#include "clang/Sema/TemplateDeduction.h"
Sebastian Redlb8fc4772012-02-16 12:59:47 +000038#include "llvm/ADT/APInt.h"
Douglas Gregor55297ac2008-12-23 00:26:44 +000039#include "llvm/ADT/STLExtras.h"
Chandler Carruth8b0cf1d2011-05-01 07:23:17 +000040#include "llvm/Support/ErrorHandling.h"
Chris Lattner29375652006-12-04 18:06:35 +000041using namespace clang;
John McCall19c1bfd2010-08-25 05:32:35 +000042using namespace sema;
Chris Lattner29375652006-12-04 18:06:35 +000043
Richard Smith7447af42013-03-26 01:15:19 +000044/// \brief Handle the result of the special case name lookup for inheriting
45/// constructor declarations. 'NS::X::X' and 'NS::X<...>::X' are treated as
46/// constructor names in member using declarations, even if 'X' is not the
47/// name of the corresponding type.
48ParsedType Sema::getInheritingConstructorName(CXXScopeSpec &SS,
49 SourceLocation NameLoc,
50 IdentifierInfo &Name) {
51 NestedNameSpecifier *NNS = SS.getScopeRep();
52
53 // Convert the nested-name-specifier into a type.
54 QualType Type;
55 switch (NNS->getKind()) {
56 case NestedNameSpecifier::TypeSpec:
57 case NestedNameSpecifier::TypeSpecWithTemplate:
58 Type = QualType(NNS->getAsType(), 0);
59 break;
60
61 case NestedNameSpecifier::Identifier:
62 // Strip off the last layer of the nested-name-specifier and build a
63 // typename type for it.
64 assert(NNS->getAsIdentifier() == &Name && "not a constructor name");
65 Type = Context.getDependentNameType(ETK_None, NNS->getPrefix(),
66 NNS->getAsIdentifier());
67 break;
68
69 case NestedNameSpecifier::Global:
Nikola Smiljanic67860242014-09-26 00:28:20 +000070 case NestedNameSpecifier::Super:
Richard Smith7447af42013-03-26 01:15:19 +000071 case NestedNameSpecifier::Namespace:
72 case NestedNameSpecifier::NamespaceAlias:
73 llvm_unreachable("Nested name specifier is not a type for inheriting ctor");
74 }
75
76 // This reference to the type is located entirely at the location of the
77 // final identifier in the qualified-id.
78 return CreateParsedType(Type,
79 Context.getTrivialTypeSourceInfo(Type, NameLoc));
80}
81
John McCallba7bf592010-08-24 05:47:05 +000082ParsedType Sema::getDestructorName(SourceLocation TildeLoc,
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +000083 IdentifierInfo &II,
John McCallba7bf592010-08-24 05:47:05 +000084 SourceLocation NameLoc,
85 Scope *S, CXXScopeSpec &SS,
86 ParsedType ObjectTypePtr,
87 bool EnteringContext) {
Douglas Gregorfe17d252010-02-16 19:09:40 +000088 // Determine where to perform name lookup.
89
90 // FIXME: This area of the standard is very messy, and the current
91 // wording is rather unclear about which scopes we search for the
92 // destructor name; see core issues 399 and 555. Issue 399 in
93 // particular shows where the current description of destructor name
94 // lookup is completely out of line with existing practice, e.g.,
95 // this appears to be ill-formed:
96 //
97 // namespace N {
98 // template <typename T> struct S {
99 // ~S();
100 // };
101 // }
102 //
103 // void f(N::S<int>* s) {
104 // s->N::S<int>::~S();
105 // }
106 //
Douglas Gregor46841e12010-02-23 00:15:22 +0000107 // See also PR6358 and PR6359.
Sebastian Redla771d222010-07-07 23:17:38 +0000108 // For this reason, we're currently only doing the C++03 version of this
109 // code; the C++0x version has to wait until we get a proper spec.
Douglas Gregorfe17d252010-02-16 19:09:40 +0000110 QualType SearchType;
Craig Topperc3ec1492014-05-26 06:22:03 +0000111 DeclContext *LookupCtx = nullptr;
Douglas Gregorfe17d252010-02-16 19:09:40 +0000112 bool isDependent = false;
113 bool LookInScope = false;
114
Richard Smith64e033f2015-01-15 00:48:52 +0000115 if (SS.isInvalid())
David Blaikieefdccaa2016-01-15 23:43:34 +0000116 return nullptr;
Richard Smith64e033f2015-01-15 00:48:52 +0000117
Douglas Gregorfe17d252010-02-16 19:09:40 +0000118 // If we have an object type, it's because we are in a
119 // pseudo-destructor-expression or a member access expression, and
120 // we know what type we're looking for.
121 if (ObjectTypePtr)
122 SearchType = GetTypeFromParser(ObjectTypePtr);
123
124 if (SS.isSet()) {
Aaron Ballman4a979672014-01-03 13:56:08 +0000125 NestedNameSpecifier *NNS = SS.getScopeRep();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +0000126
Douglas Gregor46841e12010-02-23 00:15:22 +0000127 bool AlreadySearched = false;
128 bool LookAtPrefix = true;
David Majnemere37a6ce2014-05-21 20:19:59 +0000129 // C++11 [basic.lookup.qual]p6:
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +0000130 // If a pseudo-destructor-name (5.2.4) contains a nested-name-specifier,
Sebastian Redla771d222010-07-07 23:17:38 +0000131 // the type-names are looked up as types in the scope designated by the
David Majnemere37a6ce2014-05-21 20:19:59 +0000132 // nested-name-specifier. Similarly, in a qualified-id of the form:
NAKAMURA Takumi7c288862011-01-27 07:09:49 +0000133 //
David Majnemere37a6ce2014-05-21 20:19:59 +0000134 // nested-name-specifier[opt] class-name :: ~ class-name
Sebastian Redla771d222010-07-07 23:17:38 +0000135 //
David Majnemere37a6ce2014-05-21 20:19:59 +0000136 // the second class-name is looked up in the same scope as the first.
Douglas Gregorfe17d252010-02-16 19:09:40 +0000137 //
David Majnemere37a6ce2014-05-21 20:19:59 +0000138 // Here, we determine whether the code below is permitted to look at the
139 // prefix of the nested-name-specifier.
Sebastian Redla771d222010-07-07 23:17:38 +0000140 DeclContext *DC = computeDeclContext(SS, EnteringContext);
141 if (DC && DC->isFileContext()) {
142 AlreadySearched = true;
143 LookupCtx = DC;
144 isDependent = false;
David Majnemere37a6ce2014-05-21 20:19:59 +0000145 } else if (DC && isa<CXXRecordDecl>(DC)) {
Sebastian Redla771d222010-07-07 23:17:38 +0000146 LookAtPrefix = false;
David Majnemere37a6ce2014-05-21 20:19:59 +0000147 LookInScope = true;
148 }
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +0000149
Sebastian Redla771d222010-07-07 23:17:38 +0000150 // The second case from the C++03 rules quoted further above.
Craig Topperc3ec1492014-05-26 06:22:03 +0000151 NestedNameSpecifier *Prefix = nullptr;
Douglas Gregor46841e12010-02-23 00:15:22 +0000152 if (AlreadySearched) {
153 // Nothing left to do.
154 } else if (LookAtPrefix && (Prefix = NNS->getPrefix())) {
155 CXXScopeSpec PrefixSS;
Douglas Gregor10176412011-02-25 16:07:42 +0000156 PrefixSS.Adopt(NestedNameSpecifierLoc(Prefix, SS.location_data()));
Douglas Gregor46841e12010-02-23 00:15:22 +0000157 LookupCtx = computeDeclContext(PrefixSS, EnteringContext);
158 isDependent = isDependentScopeSpecifier(PrefixSS);
Douglas Gregor46841e12010-02-23 00:15:22 +0000159 } else if (ObjectTypePtr) {
Douglas Gregorfe17d252010-02-16 19:09:40 +0000160 LookupCtx = computeDeclContext(SearchType);
161 isDependent = SearchType->isDependentType();
162 } else {
163 LookupCtx = computeDeclContext(SS, EnteringContext);
Douglas Gregor46841e12010-02-23 00:15:22 +0000164 isDependent = LookupCtx && LookupCtx->isDependentContext();
Douglas Gregorfe17d252010-02-16 19:09:40 +0000165 }
Douglas Gregorfe17d252010-02-16 19:09:40 +0000166 } else if (ObjectTypePtr) {
167 // C++ [basic.lookup.classref]p3:
168 // If the unqualified-id is ~type-name, the type-name is looked up
169 // in the context of the entire postfix-expression. If the type T
170 // of the object expression is of a class type C, the type-name is
171 // also looked up in the scope of class C. At least one of the
172 // lookups shall find a name that refers to (possibly
173 // cv-qualified) T.
174 LookupCtx = computeDeclContext(SearchType);
175 isDependent = SearchType->isDependentType();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +0000176 assert((isDependent || !SearchType->isIncompleteType()) &&
Douglas Gregorfe17d252010-02-16 19:09:40 +0000177 "Caller should have completed object type");
178
179 LookInScope = true;
180 } else {
181 // Perform lookup into the current scope (only).
182 LookInScope = true;
183 }
184
Craig Topperc3ec1492014-05-26 06:22:03 +0000185 TypeDecl *NonMatchingTypeDecl = nullptr;
Douglas Gregorfe17d252010-02-16 19:09:40 +0000186 LookupResult Found(*this, &II, NameLoc, LookupOrdinaryName);
187 for (unsigned Step = 0; Step != 2; ++Step) {
188 // Look for the name first in the computed lookup context (if we
Douglas Gregor4cf85a72011-03-04 22:32:08 +0000189 // have one) and, if that fails to find a match, in the scope (if
Douglas Gregorfe17d252010-02-16 19:09:40 +0000190 // we're allowed to look there).
191 Found.clear();
192 if (Step == 0 && LookupCtx)
193 LookupQualifiedName(Found, LookupCtx);
Douglas Gregor678f90d2010-02-25 01:56:36 +0000194 else if (Step == 1 && LookInScope && S)
Douglas Gregorfe17d252010-02-16 19:09:40 +0000195 LookupName(Found, S);
196 else
197 continue;
198
199 // FIXME: Should we be suppressing ambiguities here?
200 if (Found.isAmbiguous())
David Blaikieefdccaa2016-01-15 23:43:34 +0000201 return nullptr;
Douglas Gregorfe17d252010-02-16 19:09:40 +0000202
203 if (TypeDecl *Type = Found.getAsSingle<TypeDecl>()) {
204 QualType T = Context.getTypeDeclType(Type);
Nico Weber83a63872014-11-12 04:33:52 +0000205 MarkAnyDeclReferenced(Type->getLocation(), Type, /*OdrUse=*/false);
Douglas Gregorfe17d252010-02-16 19:09:40 +0000206
207 if (SearchType.isNull() || SearchType->isDependentType() ||
208 Context.hasSameUnqualifiedType(T, SearchType)) {
209 // We found our type!
210
Richard Smithc278c002014-01-22 00:30:17 +0000211 return CreateParsedType(T,
212 Context.getTrivialTypeSourceInfo(T, NameLoc));
Douglas Gregorfe17d252010-02-16 19:09:40 +0000213 }
John Wiegleyb4a9e512011-03-08 08:13:22 +0000214
Douglas Gregor4cf85a72011-03-04 22:32:08 +0000215 if (!SearchType.isNull())
216 NonMatchingTypeDecl = Type;
Douglas Gregorfe17d252010-02-16 19:09:40 +0000217 }
218
219 // If the name that we found is a class template name, and it is
220 // the same name as the template name in the last part of the
221 // nested-name-specifier (if present) or the object type, then
222 // this is the destructor for that class.
223 // FIXME: This is a workaround until we get real drafting for core
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +0000224 // issue 399, for which there isn't even an obvious direction.
Douglas Gregorfe17d252010-02-16 19:09:40 +0000225 if (ClassTemplateDecl *Template = Found.getAsSingle<ClassTemplateDecl>()) {
226 QualType MemberOfType;
227 if (SS.isSet()) {
228 if (DeclContext *Ctx = computeDeclContext(SS, EnteringContext)) {
229 // Figure out the type of the context, if it has one.
John McCalle78aac42010-03-10 03:28:59 +0000230 if (CXXRecordDecl *Record = dyn_cast<CXXRecordDecl>(Ctx))
231 MemberOfType = Context.getTypeDeclType(Record);
Douglas Gregorfe17d252010-02-16 19:09:40 +0000232 }
233 }
234 if (MemberOfType.isNull())
235 MemberOfType = SearchType;
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +0000236
Douglas Gregorfe17d252010-02-16 19:09:40 +0000237 if (MemberOfType.isNull())
238 continue;
239
240 // We're referring into a class template specialization. If the
241 // class template we found is the same as the template being
242 // specialized, we found what we are looking for.
243 if (const RecordType *Record = MemberOfType->getAs<RecordType>()) {
244 if (ClassTemplateSpecializationDecl *Spec
245 = dyn_cast<ClassTemplateSpecializationDecl>(Record->getDecl())) {
246 if (Spec->getSpecializedTemplate()->getCanonicalDecl() ==
247 Template->getCanonicalDecl())
Richard Smithc278c002014-01-22 00:30:17 +0000248 return CreateParsedType(
249 MemberOfType,
250 Context.getTrivialTypeSourceInfo(MemberOfType, NameLoc));
Douglas Gregorfe17d252010-02-16 19:09:40 +0000251 }
252
253 continue;
254 }
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +0000255
Douglas Gregorfe17d252010-02-16 19:09:40 +0000256 // We're referring to an unresolved class template
257 // specialization. Determine whether we class template we found
258 // is the same as the template being specialized or, if we don't
259 // know which template is being specialized, that it at least
260 // has the same name.
261 if (const TemplateSpecializationType *SpecType
262 = MemberOfType->getAs<TemplateSpecializationType>()) {
263 TemplateName SpecName = SpecType->getTemplateName();
264
265 // The class template we found is the same template being
266 // specialized.
267 if (TemplateDecl *SpecTemplate = SpecName.getAsTemplateDecl()) {
268 if (SpecTemplate->getCanonicalDecl() == Template->getCanonicalDecl())
Richard Smithc278c002014-01-22 00:30:17 +0000269 return CreateParsedType(
270 MemberOfType,
271 Context.getTrivialTypeSourceInfo(MemberOfType, NameLoc));
Douglas Gregorfe17d252010-02-16 19:09:40 +0000272
273 continue;
274 }
275
276 // The class template we found has the same name as the
277 // (dependent) template name being specialized.
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +0000278 if (DependentTemplateName *DepTemplate
Douglas Gregorfe17d252010-02-16 19:09:40 +0000279 = SpecName.getAsDependentTemplateName()) {
280 if (DepTemplate->isIdentifier() &&
281 DepTemplate->getIdentifier() == Template->getIdentifier())
Richard Smithc278c002014-01-22 00:30:17 +0000282 return CreateParsedType(
283 MemberOfType,
284 Context.getTrivialTypeSourceInfo(MemberOfType, NameLoc));
Douglas Gregorfe17d252010-02-16 19:09:40 +0000285
286 continue;
287 }
288 }
289 }
290 }
291
292 if (isDependent) {
293 // We didn't find our type, but that's okay: it's dependent
294 // anyway.
Simon Pilgrim75c26882016-09-30 14:25:09 +0000295
Douglas Gregor9cbc22b2011-02-28 22:42:13 +0000296 // FIXME: What if we have no nested-name-specifier?
297 QualType T = CheckTypenameType(ETK_None, SourceLocation(),
298 SS.getWithLocInContext(Context),
299 II, NameLoc);
John McCallba7bf592010-08-24 05:47:05 +0000300 return ParsedType::make(T);
Douglas Gregorfe17d252010-02-16 19:09:40 +0000301 }
302
Douglas Gregor4cf85a72011-03-04 22:32:08 +0000303 if (NonMatchingTypeDecl) {
304 QualType T = Context.getTypeDeclType(NonMatchingTypeDecl);
305 Diag(NameLoc, diag::err_destructor_expr_type_mismatch)
306 << T << SearchType;
307 Diag(NonMatchingTypeDecl->getLocation(), diag::note_destructor_type_here)
308 << T;
309 } else if (ObjectTypePtr)
310 Diag(NameLoc, diag::err_ident_in_dtor_not_a_type)
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +0000311 << &II;
David Blaikie5e026f52013-03-20 17:42:13 +0000312 else {
313 SemaDiagnosticBuilder DtorDiag = Diag(NameLoc,
314 diag::err_destructor_class_name);
315 if (S) {
Ted Kremenekc37877d2013-10-08 17:08:03 +0000316 const DeclContext *Ctx = S->getEntity();
David Blaikie5e026f52013-03-20 17:42:13 +0000317 if (const CXXRecordDecl *Class = dyn_cast_or_null<CXXRecordDecl>(Ctx))
318 DtorDiag << FixItHint::CreateReplacement(SourceRange(NameLoc),
319 Class->getNameAsString());
320 }
321 }
Douglas Gregorfe17d252010-02-16 19:09:40 +0000322
David Blaikieefdccaa2016-01-15 23:43:34 +0000323 return nullptr;
Douglas Gregorfe17d252010-02-16 19:09:40 +0000324}
325
Richard Smithef2cd8f2017-02-08 20:39:08 +0000326ParsedType Sema::getDestructorTypeForDecltype(const DeclSpec &DS,
327 ParsedType ObjectType) {
328 if (DS.getTypeSpecType() == DeclSpec::TST_error)
329 return nullptr;
Simon Pilgrim75c26882016-09-30 14:25:09 +0000330
Richard Smithef2cd8f2017-02-08 20:39:08 +0000331 if (DS.getTypeSpecType() == DeclSpec::TST_decltype_auto) {
332 Diag(DS.getTypeSpecTypeLoc(), diag::err_decltype_auto_invalid);
333 return nullptr;
334 }
335
336 assert(DS.getTypeSpecType() == DeclSpec::TST_decltype &&
337 "unexpected type in getDestructorType");
338 QualType T = BuildDecltypeType(DS.getRepAsExpr(), DS.getTypeSpecTypeLoc());
339
340 // If we know the type of the object, check that the correct destructor
341 // type was named now; we can give better diagnostics this way.
342 QualType SearchType = GetTypeFromParser(ObjectType);
343 if (!SearchType.isNull() && !SearchType->isDependentType() &&
344 !Context.hasSameUnqualifiedType(T, SearchType)) {
David Blaikieecd8a942011-12-08 16:13:53 +0000345 Diag(DS.getTypeSpecTypeLoc(), diag::err_destructor_expr_type_mismatch)
346 << T << SearchType;
David Blaikieefdccaa2016-01-15 23:43:34 +0000347 return nullptr;
Richard Smithef2cd8f2017-02-08 20:39:08 +0000348 }
349
350 return ParsedType::make(T);
David Blaikieecd8a942011-12-08 16:13:53 +0000351}
352
Richard Smithd091dc12013-12-05 00:58:33 +0000353bool Sema::checkLiteralOperatorId(const CXXScopeSpec &SS,
354 const UnqualifiedId &Name) {
355 assert(Name.getKind() == UnqualifiedId::IK_LiteralOperatorId);
356
357 if (!SS.isValid())
358 return false;
359
360 switch (SS.getScopeRep()->getKind()) {
361 case NestedNameSpecifier::Identifier:
362 case NestedNameSpecifier::TypeSpec:
363 case NestedNameSpecifier::TypeSpecWithTemplate:
364 // Per C++11 [over.literal]p2, literal operators can only be declared at
365 // namespace scope. Therefore, this unqualified-id cannot name anything.
366 // Reject it early, because we have no AST representation for this in the
367 // case where the scope is dependent.
368 Diag(Name.getLocStart(), diag::err_literal_operator_id_outside_namespace)
369 << SS.getScopeRep();
370 return true;
371
372 case NestedNameSpecifier::Global:
Nikola Smiljanic67860242014-09-26 00:28:20 +0000373 case NestedNameSpecifier::Super:
Richard Smithd091dc12013-12-05 00:58:33 +0000374 case NestedNameSpecifier::Namespace:
375 case NestedNameSpecifier::NamespaceAlias:
376 return false;
377 }
378
379 llvm_unreachable("unknown nested name specifier kind");
380}
381
Douglas Gregor9da64192010-04-26 22:37:10 +0000382/// \brief Build a C++ typeid expression with a type operand.
John McCalldadc5752010-08-24 06:29:42 +0000383ExprResult Sema::BuildCXXTypeId(QualType TypeInfoType,
Douglas Gregor4c7c1092010-09-08 23:14:30 +0000384 SourceLocation TypeidLoc,
385 TypeSourceInfo *Operand,
386 SourceLocation RParenLoc) {
Douglas Gregor9da64192010-04-26 22:37:10 +0000387 // C++ [expr.typeid]p4:
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +0000388 // The top-level cv-qualifiers of the lvalue expression or the type-id
Douglas Gregor9da64192010-04-26 22:37:10 +0000389 // that is the operand of typeid are always ignored.
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +0000390 // If the type of the type-id is a class type or a reference to a class
Douglas Gregor9da64192010-04-26 22:37:10 +0000391 // type, the class shall be completely-defined.
Douglas Gregor876cec22010-06-02 06:16:02 +0000392 Qualifiers Quals;
393 QualType T
394 = Context.getUnqualifiedArrayType(Operand->getType().getNonReferenceType(),
395 Quals);
Douglas Gregor9da64192010-04-26 22:37:10 +0000396 if (T->getAs<RecordType>() &&
397 RequireCompleteType(TypeidLoc, T, diag::err_incomplete_typeid))
398 return ExprError();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +0000399
David Majnemer6f3150a2014-11-21 21:09:12 +0000400 if (T->isVariablyModifiedType())
401 return ExprError(Diag(TypeidLoc, diag::err_variably_modified_typeid) << T);
402
Nikola Smiljanic03ff2592014-05-29 14:05:12 +0000403 return new (Context) CXXTypeidExpr(TypeInfoType.withConst(), Operand,
404 SourceRange(TypeidLoc, RParenLoc));
Douglas Gregor9da64192010-04-26 22:37:10 +0000405}
406
407/// \brief Build a C++ typeid expression with an expression operand.
John McCalldadc5752010-08-24 06:29:42 +0000408ExprResult Sema::BuildCXXTypeId(QualType TypeInfoType,
Douglas Gregor4c7c1092010-09-08 23:14:30 +0000409 SourceLocation TypeidLoc,
410 Expr *E,
411 SourceLocation RParenLoc) {
Aaron Ballman6c93b3e2014-12-17 21:57:17 +0000412 bool WasEvaluated = false;
Douglas Gregor9da64192010-04-26 22:37:10 +0000413 if (E && !E->isTypeDependent()) {
John McCall50a2c2c2011-10-11 23:14:30 +0000414 if (E->getType()->isPlaceholderType()) {
415 ExprResult result = CheckPlaceholderExpr(E);
416 if (result.isInvalid()) return ExprError();
Nikola Smiljanic01a75982014-05-29 10:55:11 +0000417 E = result.get();
John McCall50a2c2c2011-10-11 23:14:30 +0000418 }
419
Douglas Gregor9da64192010-04-26 22:37:10 +0000420 QualType T = E->getType();
421 if (const RecordType *RecordT = T->getAs<RecordType>()) {
422 CXXRecordDecl *RecordD = cast<CXXRecordDecl>(RecordT->getDecl());
423 // C++ [expr.typeid]p3:
424 // [...] If the type of the expression is a class type, the class
425 // shall be completely-defined.
426 if (RequireCompleteType(TypeidLoc, T, diag::err_incomplete_typeid))
427 return ExprError();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +0000428
Douglas Gregor9da64192010-04-26 22:37:10 +0000429 // C++ [expr.typeid]p3:
Sebastian Redlc57d34b2010-07-20 04:20:21 +0000430 // When typeid is applied to an expression other than an glvalue of a
Douglas Gregor9da64192010-04-26 22:37:10 +0000431 // polymorphic class type [...] [the] expression is an unevaluated
432 // operand. [...]
Richard Smithef8bf432012-08-13 20:08:14 +0000433 if (RecordD->isPolymorphic() && E->isGLValue()) {
Eli Friedman456f0182012-01-20 01:26:23 +0000434 // The subexpression is potentially evaluated; switch the context
435 // and recheck the subexpression.
Benjamin Kramerd81108f2012-11-14 15:08:31 +0000436 ExprResult Result = TransformToPotentiallyEvaluated(E);
Eli Friedman456f0182012-01-20 01:26:23 +0000437 if (Result.isInvalid()) return ExprError();
Nikola Smiljanic01a75982014-05-29 10:55:11 +0000438 E = Result.get();
Douglas Gregor88d292c2010-05-13 16:44:06 +0000439
440 // We require a vtable to query the type at run time.
441 MarkVTableUsed(TypeidLoc, RecordD);
Aaron Ballman6c93b3e2014-12-17 21:57:17 +0000442 WasEvaluated = true;
Douglas Gregor88d292c2010-05-13 16:44:06 +0000443 }
Douglas Gregor9da64192010-04-26 22:37:10 +0000444 }
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +0000445
Douglas Gregor9da64192010-04-26 22:37:10 +0000446 // C++ [expr.typeid]p4:
447 // [...] If the type of the type-id is a reference to a possibly
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +0000448 // cv-qualified type, the result of the typeid expression refers to a
449 // std::type_info object representing the cv-unqualified referenced
Douglas Gregor9da64192010-04-26 22:37:10 +0000450 // type.
Douglas Gregor876cec22010-06-02 06:16:02 +0000451 Qualifiers Quals;
452 QualType UnqualT = Context.getUnqualifiedArrayType(T, Quals);
453 if (!Context.hasSameType(T, UnqualT)) {
454 T = UnqualT;
Nikola Smiljanic01a75982014-05-29 10:55:11 +0000455 E = ImpCastExprToType(E, UnqualT, CK_NoOp, E->getValueKind()).get();
Douglas Gregor9da64192010-04-26 22:37:10 +0000456 }
457 }
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +0000458
David Majnemer6f3150a2014-11-21 21:09:12 +0000459 if (E->getType()->isVariablyModifiedType())
460 return ExprError(Diag(TypeidLoc, diag::err_variably_modified_typeid)
461 << E->getType());
Richard Smith51ec0cf2017-02-21 01:17:38 +0000462 else if (!inTemplateInstantiation() &&
Aaron Ballman6c93b3e2014-12-17 21:57:17 +0000463 E->HasSideEffects(Context, WasEvaluated)) {
464 // The expression operand for typeid is in an unevaluated expression
465 // context, so side effects could result in unintended consequences.
466 Diag(E->getExprLoc(), WasEvaluated
467 ? diag::warn_side_effects_typeid
468 : diag::warn_side_effects_unevaluated_context);
469 }
David Majnemer6f3150a2014-11-21 21:09:12 +0000470
Nikola Smiljanic03ff2592014-05-29 14:05:12 +0000471 return new (Context) CXXTypeidExpr(TypeInfoType.withConst(), E,
472 SourceRange(TypeidLoc, RParenLoc));
Douglas Gregor9da64192010-04-26 22:37:10 +0000473}
474
475/// ActOnCXXTypeidOfType - Parse typeid( type-id ) or typeid (expression);
John McCalldadc5752010-08-24 06:29:42 +0000476ExprResult
Sebastian Redlc4704762008-11-11 11:37:55 +0000477Sema::ActOnCXXTypeid(SourceLocation OpLoc, SourceLocation LParenLoc,
478 bool isType, void *TyOrExpr, SourceLocation RParenLoc) {
Douglas Gregor9da64192010-04-26 22:37:10 +0000479 // Find the std::type_info type.
Sebastian Redl7ac97412011-03-31 19:29:24 +0000480 if (!getStdNamespace())
Sebastian Redl6d4256c2009-03-15 17:47:39 +0000481 return ExprError(Diag(OpLoc, diag::err_need_header_before_typeid));
Argyrios Kyrtzidisc7148c92009-08-19 01:28:28 +0000482
Douglas Gregor4c7c1092010-09-08 23:14:30 +0000483 if (!CXXTypeInfoDecl) {
484 IdentifierInfo *TypeInfoII = &PP.getIdentifierTable().get("type_info");
485 LookupResult R(*this, TypeInfoII, SourceLocation(), LookupTagName);
486 LookupQualifiedName(R, getStdNamespace());
487 CXXTypeInfoDecl = R.getAsSingle<RecordDecl>();
Nico Weber5f968832012-06-19 23:58:27 +0000488 // Microsoft's typeinfo doesn't have type_info in std but in the global
489 // namespace if _HAS_EXCEPTIONS is defined to 0. See PR13153.
Alp Tokerbfa39342014-01-14 12:51:41 +0000490 if (!CXXTypeInfoDecl && LangOpts.MSVCCompat) {
Nico Weber5f968832012-06-19 23:58:27 +0000491 LookupQualifiedName(R, Context.getTranslationUnitDecl());
492 CXXTypeInfoDecl = R.getAsSingle<RecordDecl>();
493 }
Douglas Gregor4c7c1092010-09-08 23:14:30 +0000494 if (!CXXTypeInfoDecl)
495 return ExprError(Diag(OpLoc, diag::err_need_header_before_typeid));
496 }
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +0000497
Nico Weber1b7f39d2012-05-20 01:27:21 +0000498 if (!getLangOpts().RTTI) {
499 return ExprError(Diag(OpLoc, diag::err_no_typeid_with_fno_rtti));
500 }
501
Douglas Gregor4c7c1092010-09-08 23:14:30 +0000502 QualType TypeInfoType = Context.getTypeDeclType(CXXTypeInfoDecl);
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +0000503
Douglas Gregor9da64192010-04-26 22:37:10 +0000504 if (isType) {
505 // The operand is a type; handle it as such.
Craig Topperc3ec1492014-05-26 06:22:03 +0000506 TypeSourceInfo *TInfo = nullptr;
John McCallba7bf592010-08-24 05:47:05 +0000507 QualType T = GetTypeFromParser(ParsedType::getFromOpaquePtr(TyOrExpr),
508 &TInfo);
Douglas Gregor9da64192010-04-26 22:37:10 +0000509 if (T.isNull())
510 return ExprError();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +0000511
Douglas Gregor9da64192010-04-26 22:37:10 +0000512 if (!TInfo)
513 TInfo = Context.getTrivialTypeSourceInfo(T, OpLoc);
Sebastian Redlc4704762008-11-11 11:37:55 +0000514
Douglas Gregor9da64192010-04-26 22:37:10 +0000515 return BuildCXXTypeId(TypeInfoType, OpLoc, TInfo, RParenLoc);
Douglas Gregor0b6a6242009-06-22 20:57:11 +0000516 }
Mike Stump11289f42009-09-09 15:08:12 +0000517
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +0000518 // The operand is an expression.
John McCallb268a282010-08-23 23:25:46 +0000519 return BuildCXXTypeId(TypeInfoType, OpLoc, (Expr*)TyOrExpr, RParenLoc);
Sebastian Redlc4704762008-11-11 11:37:55 +0000520}
521
David Majnemer1dbc7a72016-03-27 04:46:07 +0000522/// Grabs __declspec(uuid()) off a type, or returns 0 if we cannot resolve to
523/// a single GUID.
524static void
525getUuidAttrOfType(Sema &SemaRef, QualType QT,
526 llvm::SmallSetVector<const UuidAttr *, 1> &UuidAttrs) {
527 // Optionally remove one level of pointer, reference or array indirection.
528 const Type *Ty = QT.getTypePtr();
529 if (QT->isPointerType() || QT->isReferenceType())
530 Ty = QT->getPointeeType().getTypePtr();
531 else if (QT->isArrayType())
532 Ty = Ty->getBaseElementTypeUnsafe();
533
Reid Klecknere516eab2016-12-13 18:58:09 +0000534 const auto *TD = Ty->getAsTagDecl();
535 if (!TD)
David Majnemer1dbc7a72016-03-27 04:46:07 +0000536 return;
537
Reid Klecknere516eab2016-12-13 18:58:09 +0000538 if (const auto *Uuid = TD->getMostRecentDecl()->getAttr<UuidAttr>()) {
David Majnemer1dbc7a72016-03-27 04:46:07 +0000539 UuidAttrs.insert(Uuid);
540 return;
541 }
542
543 // __uuidof can grab UUIDs from template arguments.
Reid Klecknere516eab2016-12-13 18:58:09 +0000544 if (const auto *CTSD = dyn_cast<ClassTemplateSpecializationDecl>(TD)) {
David Majnemer1dbc7a72016-03-27 04:46:07 +0000545 const TemplateArgumentList &TAL = CTSD->getTemplateArgs();
546 for (const TemplateArgument &TA : TAL.asArray()) {
547 const UuidAttr *UuidForTA = nullptr;
548 if (TA.getKind() == TemplateArgument::Type)
549 getUuidAttrOfType(SemaRef, TA.getAsType(), UuidAttrs);
550 else if (TA.getKind() == TemplateArgument::Declaration)
551 getUuidAttrOfType(SemaRef, TA.getAsDecl()->getType(), UuidAttrs);
552
553 if (UuidForTA)
554 UuidAttrs.insert(UuidForTA);
555 }
556 }
557}
558
Francois Pichet9f4f2072010-09-08 12:20:18 +0000559/// \brief Build a Microsoft __uuidof expression with a type operand.
560ExprResult Sema::BuildCXXUuidof(QualType TypeInfoType,
561 SourceLocation TypeidLoc,
562 TypeSourceInfo *Operand,
563 SourceLocation RParenLoc) {
David Majnemer2041b462016-03-28 03:19:50 +0000564 StringRef UuidStr;
Francois Pichetb7577652010-12-27 01:32:00 +0000565 if (!Operand->getType()->isDependentType()) {
David Majnemer1dbc7a72016-03-27 04:46:07 +0000566 llvm::SmallSetVector<const UuidAttr *, 1> UuidAttrs;
567 getUuidAttrOfType(*this, Operand->getType(), UuidAttrs);
568 if (UuidAttrs.empty())
569 return ExprError(Diag(TypeidLoc, diag::err_uuidof_without_guid));
570 if (UuidAttrs.size() > 1)
571 return ExprError(Diag(TypeidLoc, diag::err_uuidof_with_multiple_guids));
David Majnemer2041b462016-03-28 03:19:50 +0000572 UuidStr = UuidAttrs.back()->getGuid();
Francois Pichetb7577652010-12-27 01:32:00 +0000573 }
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +0000574
David Majnemer2041b462016-03-28 03:19:50 +0000575 return new (Context) CXXUuidofExpr(TypeInfoType.withConst(), Operand, UuidStr,
Nikola Smiljanic03ff2592014-05-29 14:05:12 +0000576 SourceRange(TypeidLoc, RParenLoc));
Francois Pichet9f4f2072010-09-08 12:20:18 +0000577}
578
579/// \brief Build a Microsoft __uuidof expression with an expression operand.
580ExprResult Sema::BuildCXXUuidof(QualType TypeInfoType,
581 SourceLocation TypeidLoc,
582 Expr *E,
583 SourceLocation RParenLoc) {
David Majnemer2041b462016-03-28 03:19:50 +0000584 StringRef UuidStr;
Francois Pichetb7577652010-12-27 01:32:00 +0000585 if (!E->getType()->isDependentType()) {
David Majnemer2041b462016-03-28 03:19:50 +0000586 if (E->isNullPointerConstant(Context, Expr::NPC_ValueDependentIsNull)) {
587 UuidStr = "00000000-0000-0000-0000-000000000000";
588 } else {
David Majnemer1dbc7a72016-03-27 04:46:07 +0000589 llvm::SmallSetVector<const UuidAttr *, 1> UuidAttrs;
590 getUuidAttrOfType(*this, E->getType(), UuidAttrs);
591 if (UuidAttrs.empty())
David Majnemer59c0ec22013-09-07 06:59:46 +0000592 return ExprError(Diag(TypeidLoc, diag::err_uuidof_without_guid));
David Majnemer1dbc7a72016-03-27 04:46:07 +0000593 if (UuidAttrs.size() > 1)
594 return ExprError(Diag(TypeidLoc, diag::err_uuidof_with_multiple_guids));
David Majnemer2041b462016-03-28 03:19:50 +0000595 UuidStr = UuidAttrs.back()->getGuid();
David Majnemer59c0ec22013-09-07 06:59:46 +0000596 }
Francois Pichetb7577652010-12-27 01:32:00 +0000597 }
David Majnemer59c0ec22013-09-07 06:59:46 +0000598
David Majnemer2041b462016-03-28 03:19:50 +0000599 return new (Context) CXXUuidofExpr(TypeInfoType.withConst(), E, UuidStr,
Nikola Smiljanic03ff2592014-05-29 14:05:12 +0000600 SourceRange(TypeidLoc, RParenLoc));
Francois Pichet9f4f2072010-09-08 12:20:18 +0000601}
602
603/// ActOnCXXUuidof - Parse __uuidof( type-id ) or __uuidof (expression);
604ExprResult
605Sema::ActOnCXXUuidof(SourceLocation OpLoc, SourceLocation LParenLoc,
606 bool isType, void *TyOrExpr, SourceLocation RParenLoc) {
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +0000607 // If MSVCGuidDecl has not been cached, do the lookup.
Francois Pichet9f4f2072010-09-08 12:20:18 +0000608 if (!MSVCGuidDecl) {
609 IdentifierInfo *GuidII = &PP.getIdentifierTable().get("_GUID");
610 LookupResult R(*this, GuidII, SourceLocation(), LookupTagName);
611 LookupQualifiedName(R, Context.getTranslationUnitDecl());
612 MSVCGuidDecl = R.getAsSingle<RecordDecl>();
613 if (!MSVCGuidDecl)
614 return ExprError(Diag(OpLoc, diag::err_need_header_before_ms_uuidof));
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +0000615 }
616
Francois Pichet9f4f2072010-09-08 12:20:18 +0000617 QualType GuidType = Context.getTypeDeclType(MSVCGuidDecl);
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +0000618
Francois Pichet9f4f2072010-09-08 12:20:18 +0000619 if (isType) {
620 // The operand is a type; handle it as such.
Craig Topperc3ec1492014-05-26 06:22:03 +0000621 TypeSourceInfo *TInfo = nullptr;
Francois Pichet9f4f2072010-09-08 12:20:18 +0000622 QualType T = GetTypeFromParser(ParsedType::getFromOpaquePtr(TyOrExpr),
623 &TInfo);
624 if (T.isNull())
625 return ExprError();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +0000626
Francois Pichet9f4f2072010-09-08 12:20:18 +0000627 if (!TInfo)
628 TInfo = Context.getTrivialTypeSourceInfo(T, OpLoc);
629
630 return BuildCXXUuidof(GuidType, OpLoc, TInfo, RParenLoc);
631 }
632
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +0000633 // The operand is an expression.
Francois Pichet9f4f2072010-09-08 12:20:18 +0000634 return BuildCXXUuidof(GuidType, OpLoc, (Expr*)TyOrExpr, RParenLoc);
635}
636
Steve Naroff66356bd2007-09-16 14:56:35 +0000637/// ActOnCXXBoolLiteral - Parse {true,false} literals.
John McCalldadc5752010-08-24 06:29:42 +0000638ExprResult
Steve Naroff66356bd2007-09-16 14:56:35 +0000639Sema::ActOnCXXBoolLiteral(SourceLocation OpLoc, tok::TokenKind Kind) {
Douglas Gregor08d918a2008-10-24 15:36:09 +0000640 assert((Kind == tok::kw_true || Kind == tok::kw_false) &&
Bill Wendlingbf313b02007-02-13 20:09:46 +0000641 "Unknown C++ Boolean value!");
Nikola Smiljanic03ff2592014-05-29 14:05:12 +0000642 return new (Context)
643 CXXBoolLiteralExpr(Kind == tok::kw_true, Context.BoolTy, OpLoc);
Bill Wendling4073ed52007-02-13 01:51:42 +0000644}
Chris Lattnerb7e656b2008-02-26 00:51:44 +0000645
Sebastian Redl576fd422009-05-10 18:38:11 +0000646/// ActOnCXXNullPtrLiteral - Parse 'nullptr'.
John McCalldadc5752010-08-24 06:29:42 +0000647ExprResult
Sebastian Redl576fd422009-05-10 18:38:11 +0000648Sema::ActOnCXXNullPtrLiteral(SourceLocation Loc) {
Nikola Smiljanic03ff2592014-05-29 14:05:12 +0000649 return new (Context) CXXNullPtrLiteralExpr(Context.NullPtrTy, Loc);
Sebastian Redl576fd422009-05-10 18:38:11 +0000650}
651
Chris Lattnerb7e656b2008-02-26 00:51:44 +0000652/// ActOnCXXThrow - Parse throw expressions.
John McCalldadc5752010-08-24 06:29:42 +0000653ExprResult
Douglas Gregor53e191ed2011-07-06 22:04:06 +0000654Sema::ActOnCXXThrow(Scope *S, SourceLocation OpLoc, Expr *Ex) {
655 bool IsThrownVarInScope = false;
656 if (Ex) {
657 // C++0x [class.copymove]p31:
Nico Weberb58e51c2014-11-19 05:21:39 +0000658 // When certain criteria are met, an implementation is allowed to omit the
Douglas Gregor53e191ed2011-07-06 22:04:06 +0000659 // copy/move construction of a class object [...]
660 //
David Blaikie3c8c46e2014-11-19 05:48:40 +0000661 // - in a throw-expression, when the operand is the name of a
Douglas Gregor53e191ed2011-07-06 22:04:06 +0000662 // non-volatile automatic object (other than a function or catch-
Nico Weberb58e51c2014-11-19 05:21:39 +0000663 // clause parameter) whose scope does not extend beyond the end of the
David Blaikie3c8c46e2014-11-19 05:48:40 +0000664 // innermost enclosing try-block (if there is one), the copy/move
665 // operation from the operand to the exception object (15.1) can be
666 // omitted by constructing the automatic object directly into the
Douglas Gregor53e191ed2011-07-06 22:04:06 +0000667 // exception object
668 if (DeclRefExpr *DRE = dyn_cast<DeclRefExpr>(Ex->IgnoreParens()))
669 if (VarDecl *Var = dyn_cast<VarDecl>(DRE->getDecl())) {
670 if (Var->hasLocalStorage() && !Var->getType().isVolatileQualified()) {
671 for( ; S; S = S->getParent()) {
672 if (S->isDeclScope(Var)) {
673 IsThrownVarInScope = true;
674 break;
675 }
Simon Pilgrim75c26882016-09-30 14:25:09 +0000676
Douglas Gregor53e191ed2011-07-06 22:04:06 +0000677 if (S->getFlags() &
678 (Scope::FnScope | Scope::ClassScope | Scope::BlockScope |
679 Scope::FunctionPrototypeScope | Scope::ObjCMethodScope |
680 Scope::TryScope))
681 break;
682 }
683 }
684 }
685 }
Simon Pilgrim75c26882016-09-30 14:25:09 +0000686
Douglas Gregor53e191ed2011-07-06 22:04:06 +0000687 return BuildCXXThrow(OpLoc, Ex, IsThrownVarInScope);
688}
689
Simon Pilgrim75c26882016-09-30 14:25:09 +0000690ExprResult Sema::BuildCXXThrow(SourceLocation OpLoc, Expr *Ex,
Douglas Gregor53e191ed2011-07-06 22:04:06 +0000691 bool IsThrownVarInScope) {
Anders Carlssond99dbcc2011-02-23 03:46:46 +0000692 // Don't report an error if 'throw' is used in system headers.
David Blaikiebbafb8a2012-03-11 07:00:24 +0000693 if (!getLangOpts().CXXExceptions &&
Anders Carlssond99dbcc2011-02-23 03:46:46 +0000694 !getSourceManager().isInSystemHeader(OpLoc))
Anders Carlssonb94ad3e2011-02-19 21:53:09 +0000695 Diag(OpLoc, diag::err_exceptions_disabled) << "throw";
Alexander Musmana8e9d2e2014-06-03 10:16:47 +0000696
Justin Lebar2a8db342016-09-28 22:45:54 +0000697 // Exceptions aren't allowed in CUDA device code.
698 if (getLangOpts().CUDA)
Justin Lebar179bdce2016-10-13 18:45:08 +0000699 CUDADiagIfDeviceCode(OpLoc, diag::err_cuda_device_exceptions)
700 << "throw" << CurrentCUDATarget();
Justin Lebar2a8db342016-09-28 22:45:54 +0000701
Alexander Musmana8e9d2e2014-06-03 10:16:47 +0000702 if (getCurScope() && getCurScope()->isOpenMPSimdDirectiveScope())
703 Diag(OpLoc, diag::err_omp_simd_region_cannot_use_stmt) << "throw";
704
John Wiegley01296292011-04-08 18:41:53 +0000705 if (Ex && !Ex->isTypeDependent()) {
David Majnemerba3e5ec2015-03-13 18:26:17 +0000706 QualType ExceptionObjectTy = Context.getExceptionObjectType(Ex->getType());
707 if (CheckCXXThrowOperand(OpLoc, ExceptionObjectTy, Ex))
John Wiegley01296292011-04-08 18:41:53 +0000708 return ExprError();
David Majnemerba3e5ec2015-03-13 18:26:17 +0000709
710 // Initialize the exception result. This implicitly weeds out
711 // abstract types or types with inaccessible copy constructors.
712
713 // C++0x [class.copymove]p31:
714 // When certain criteria are met, an implementation is allowed to omit the
715 // copy/move construction of a class object [...]
716 //
717 // - in a throw-expression, when the operand is the name of a
718 // non-volatile automatic object (other than a function or
719 // catch-clause
720 // parameter) whose scope does not extend beyond the end of the
721 // innermost enclosing try-block (if there is one), the copy/move
722 // operation from the operand to the exception object (15.1) can be
723 // omitted by constructing the automatic object directly into the
724 // exception object
725 const VarDecl *NRVOVariable = nullptr;
726 if (IsThrownVarInScope)
727 NRVOVariable = getCopyElisionCandidate(QualType(), Ex, false);
728
729 InitializedEntity Entity = InitializedEntity::InitializeException(
730 OpLoc, ExceptionObjectTy,
731 /*NRVO=*/NRVOVariable != nullptr);
732 ExprResult Res = PerformMoveOrCopyInitialization(
733 Entity, NRVOVariable, QualType(), Ex, IsThrownVarInScope);
734 if (Res.isInvalid())
735 return ExprError();
736 Ex = Res.get();
John Wiegley01296292011-04-08 18:41:53 +0000737 }
David Majnemerba3e5ec2015-03-13 18:26:17 +0000738
Nikola Smiljanic03ff2592014-05-29 14:05:12 +0000739 return new (Context)
740 CXXThrowExpr(Ex, Context.VoidTy, OpLoc, IsThrownVarInScope);
Sebastian Redl4de47b42009-04-27 20:27:31 +0000741}
742
David Majnemere7a818f2015-03-06 18:53:55 +0000743static void
744collectPublicBases(CXXRecordDecl *RD,
745 llvm::DenseMap<CXXRecordDecl *, unsigned> &SubobjectsSeen,
746 llvm::SmallPtrSetImpl<CXXRecordDecl *> &VBases,
747 llvm::SetVector<CXXRecordDecl *> &PublicSubobjectsSeen,
748 bool ParentIsPublic) {
749 for (const CXXBaseSpecifier &BS : RD->bases()) {
750 CXXRecordDecl *BaseDecl = BS.getType()->getAsCXXRecordDecl();
751 bool NewSubobject;
752 // Virtual bases constitute the same subobject. Non-virtual bases are
753 // always distinct subobjects.
754 if (BS.isVirtual())
755 NewSubobject = VBases.insert(BaseDecl).second;
756 else
757 NewSubobject = true;
758
759 if (NewSubobject)
760 ++SubobjectsSeen[BaseDecl];
761
762 // Only add subobjects which have public access throughout the entire chain.
763 bool PublicPath = ParentIsPublic && BS.getAccessSpecifier() == AS_public;
764 if (PublicPath)
765 PublicSubobjectsSeen.insert(BaseDecl);
766
767 // Recurse on to each base subobject.
768 collectPublicBases(BaseDecl, SubobjectsSeen, VBases, PublicSubobjectsSeen,
769 PublicPath);
770 }
771}
772
773static void getUnambiguousPublicSubobjects(
774 CXXRecordDecl *RD, llvm::SmallVectorImpl<CXXRecordDecl *> &Objects) {
775 llvm::DenseMap<CXXRecordDecl *, unsigned> SubobjectsSeen;
776 llvm::SmallSet<CXXRecordDecl *, 2> VBases;
777 llvm::SetVector<CXXRecordDecl *> PublicSubobjectsSeen;
778 SubobjectsSeen[RD] = 1;
779 PublicSubobjectsSeen.insert(RD);
780 collectPublicBases(RD, SubobjectsSeen, VBases, PublicSubobjectsSeen,
781 /*ParentIsPublic=*/true);
782
783 for (CXXRecordDecl *PublicSubobject : PublicSubobjectsSeen) {
784 // Skip ambiguous objects.
785 if (SubobjectsSeen[PublicSubobject] > 1)
786 continue;
787
788 Objects.push_back(PublicSubobject);
789 }
790}
791
Sebastian Redl4de47b42009-04-27 20:27:31 +0000792/// CheckCXXThrowOperand - Validate the operand of a throw.
David Majnemerba3e5ec2015-03-13 18:26:17 +0000793bool Sema::CheckCXXThrowOperand(SourceLocation ThrowLoc,
794 QualType ExceptionObjectTy, Expr *E) {
Sebastian Redl4de47b42009-04-27 20:27:31 +0000795 // If the type of the exception would be an incomplete type or a pointer
796 // to an incomplete type other than (cv) void the program is ill-formed.
David Majnemerd09a51c2015-03-03 01:50:05 +0000797 QualType Ty = ExceptionObjectTy;
John McCall2e6567a2010-04-22 01:10:34 +0000798 bool isPointer = false;
Ted Kremenekc23c7e62009-07-29 21:53:49 +0000799 if (const PointerType* Ptr = Ty->getAs<PointerType>()) {
Sebastian Redl4de47b42009-04-27 20:27:31 +0000800 Ty = Ptr->getPointeeType();
John McCall2e6567a2010-04-22 01:10:34 +0000801 isPointer = true;
Sebastian Redl4de47b42009-04-27 20:27:31 +0000802 }
803 if (!isPointer || !Ty->isVoidType()) {
804 if (RequireCompleteType(ThrowLoc, Ty,
David Majnemerba3e5ec2015-03-13 18:26:17 +0000805 isPointer ? diag::err_throw_incomplete_ptr
806 : diag::err_throw_incomplete,
Douglas Gregor7bfb2d02012-05-04 16:32:21 +0000807 E->getSourceRange()))
David Majnemerba3e5ec2015-03-13 18:26:17 +0000808 return true;
Rafael Espindola70e040d2010-03-02 21:28:26 +0000809
David Majnemerd09a51c2015-03-03 01:50:05 +0000810 if (RequireNonAbstractType(ThrowLoc, ExceptionObjectTy,
Douglas Gregorae298422012-05-04 17:09:59 +0000811 diag::err_throw_abstract_type, E))
David Majnemerba3e5ec2015-03-13 18:26:17 +0000812 return true;
Sebastian Redl4de47b42009-04-27 20:27:31 +0000813 }
814
Eli Friedman91a3d272010-06-03 20:39:03 +0000815 // If the exception has class type, we need additional handling.
David Majnemerba3e5ec2015-03-13 18:26:17 +0000816 CXXRecordDecl *RD = Ty->getAsCXXRecordDecl();
817 if (!RD)
818 return false;
Eli Friedman91a3d272010-06-03 20:39:03 +0000819
Douglas Gregor88d292c2010-05-13 16:44:06 +0000820 // If we are throwing a polymorphic class type or pointer thereof,
821 // exception handling will make use of the vtable.
Eli Friedman91a3d272010-06-03 20:39:03 +0000822 MarkVTableUsed(ThrowLoc, RD);
823
Eli Friedman36ebbec2010-10-12 20:32:36 +0000824 // If a pointer is thrown, the referenced object will not be destroyed.
825 if (isPointer)
David Majnemerba3e5ec2015-03-13 18:26:17 +0000826 return false;
Eli Friedman36ebbec2010-10-12 20:32:36 +0000827
Richard Smitheec915d62012-02-18 04:13:32 +0000828 // If the class has a destructor, we must be able to call it.
David Majnemere7a818f2015-03-06 18:53:55 +0000829 if (!RD->hasIrrelevantDestructor()) {
830 if (CXXDestructorDecl *Destructor = LookupDestructor(RD)) {
831 MarkFunctionReferenced(E->getExprLoc(), Destructor);
832 CheckDestructorAccess(E->getExprLoc(), Destructor,
833 PDiag(diag::err_access_dtor_exception) << Ty);
834 if (DiagnoseUseOfDecl(Destructor, E->getExprLoc()))
David Majnemerba3e5ec2015-03-13 18:26:17 +0000835 return true;
David Majnemere7a818f2015-03-06 18:53:55 +0000836 }
837 }
Eli Friedman91a3d272010-06-03 20:39:03 +0000838
David Majnemerdfa6d202015-03-11 18:36:39 +0000839 // The MSVC ABI creates a list of all types which can catch the exception
840 // object. This list also references the appropriate copy constructor to call
841 // if the object is caught by value and has a non-trivial copy constructor.
David Majnemere7a818f2015-03-06 18:53:55 +0000842 if (Context.getTargetInfo().getCXXABI().isMicrosoft()) {
David Majnemerdfa6d202015-03-11 18:36:39 +0000843 // We are only interested in the public, unambiguous bases contained within
844 // the exception object. Bases which are ambiguous or otherwise
845 // inaccessible are not catchable types.
David Majnemere7a818f2015-03-06 18:53:55 +0000846 llvm::SmallVector<CXXRecordDecl *, 2> UnambiguousPublicSubobjects;
847 getUnambiguousPublicSubobjects(RD, UnambiguousPublicSubobjects);
David Majnemerdfa6d202015-03-11 18:36:39 +0000848
David Majnemere7a818f2015-03-06 18:53:55 +0000849 for (CXXRecordDecl *Subobject : UnambiguousPublicSubobjects) {
David Majnemerdfa6d202015-03-11 18:36:39 +0000850 // Attempt to lookup the copy constructor. Various pieces of machinery
851 // will spring into action, like template instantiation, which means this
852 // cannot be a simple walk of the class's decls. Instead, we must perform
853 // lookup and overload resolution.
854 CXXConstructorDecl *CD = LookupCopyingConstructor(Subobject, 0);
855 if (!CD)
856 continue;
857
858 // Mark the constructor referenced as it is used by this throw expression.
859 MarkFunctionReferenced(E->getExprLoc(), CD);
860
861 // Skip this copy constructor if it is trivial, we don't need to record it
862 // in the catchable type data.
863 if (CD->isTrivial())
864 continue;
865
866 // The copy constructor is non-trivial, create a mapping from this class
867 // type to this constructor.
868 // N.B. The selection of copy constructor is not sensitive to this
869 // particular throw-site. Lookup will be performed at the catch-site to
870 // ensure that the copy constructor is, in fact, accessible (via
871 // friendship or any other means).
872 Context.addCopyConstructorForExceptionObject(Subobject, CD);
873
874 // We don't keep the instantiated default argument expressions around so
875 // we must rebuild them here.
876 for (unsigned I = 1, E = CD->getNumParams(); I != E; ++I) {
Reid Klecknerc01ee752016-11-23 16:51:30 +0000877 if (CheckCXXDefaultArgExpr(ThrowLoc, CD, CD->getParamDecl(I)))
878 return true;
David Majnemere7a818f2015-03-06 18:53:55 +0000879 }
880 }
881 }
Eli Friedman91a3d272010-06-03 20:39:03 +0000882
David Majnemerba3e5ec2015-03-13 18:26:17 +0000883 return false;
Chris Lattnerb7e656b2008-02-26 00:51:44 +0000884}
Argyrios Kyrtzidised983422008-07-01 10:37:29 +0000885
Faisal Vali67b04462016-06-11 16:41:54 +0000886static QualType adjustCVQualifiersForCXXThisWithinLambda(
887 ArrayRef<FunctionScopeInfo *> FunctionScopes, QualType ThisTy,
888 DeclContext *CurSemaContext, ASTContext &ASTCtx) {
889
890 QualType ClassType = ThisTy->getPointeeType();
891 LambdaScopeInfo *CurLSI = nullptr;
892 DeclContext *CurDC = CurSemaContext;
893
894 // Iterate through the stack of lambdas starting from the innermost lambda to
895 // the outermost lambda, checking if '*this' is ever captured by copy - since
896 // that could change the cv-qualifiers of the '*this' object.
897 // The object referred to by '*this' starts out with the cv-qualifiers of its
898 // member function. We then start with the innermost lambda and iterate
899 // outward checking to see if any lambda performs a by-copy capture of '*this'
900 // - and if so, any nested lambda must respect the 'constness' of that
901 // capturing lamdbda's call operator.
902 //
903
904 // The issue is that we cannot rely entirely on the FunctionScopeInfo stack
905 // since ScopeInfos are pushed on during parsing and treetransforming. But
906 // since a generic lambda's call operator can be instantiated anywhere (even
907 // end of the TU) we need to be able to examine its enclosing lambdas and so
908 // we use the DeclContext to get a hold of the closure-class and query it for
909 // capture information. The reason we don't just resort to always using the
910 // DeclContext chain is that it is only mature for lambda expressions
911 // enclosing generic lambda's call operators that are being instantiated.
912
913 for (int I = FunctionScopes.size();
914 I-- && isa<LambdaScopeInfo>(FunctionScopes[I]);
915 CurDC = getLambdaAwareParentOfDeclContext(CurDC)) {
916 CurLSI = cast<LambdaScopeInfo>(FunctionScopes[I]);
Simon Pilgrim75c26882016-09-30 14:25:09 +0000917
918 if (!CurLSI->isCXXThisCaptured())
Faisal Vali67b04462016-06-11 16:41:54 +0000919 continue;
Simon Pilgrim75c26882016-09-30 14:25:09 +0000920
Faisal Vali67b04462016-06-11 16:41:54 +0000921 auto C = CurLSI->getCXXThisCapture();
922
923 if (C.isCopyCapture()) {
924 ClassType.removeLocalCVRQualifiers(Qualifiers::CVRMask);
925 if (CurLSI->CallOperator->isConst())
926 ClassType.addConst();
927 return ASTCtx.getPointerType(ClassType);
928 }
929 }
930 // We've run out of ScopeInfos but check if CurDC is a lambda (which can
931 // happen during instantiation of generic lambdas)
932 if (isLambdaCallOperator(CurDC)) {
933 assert(CurLSI);
934 assert(isGenericLambdaCallOperatorSpecialization(CurLSI->CallOperator));
935 assert(CurDC == getLambdaAwareParentOfDeclContext(CurLSI->CallOperator));
Simon Pilgrim75c26882016-09-30 14:25:09 +0000936
Faisal Vali67b04462016-06-11 16:41:54 +0000937 auto IsThisCaptured =
938 [](CXXRecordDecl *Closure, bool &IsByCopy, bool &IsConst) {
939 IsConst = false;
940 IsByCopy = false;
941 for (auto &&C : Closure->captures()) {
942 if (C.capturesThis()) {
943 if (C.getCaptureKind() == LCK_StarThis)
944 IsByCopy = true;
945 if (Closure->getLambdaCallOperator()->isConst())
946 IsConst = true;
947 return true;
948 }
949 }
950 return false;
951 };
952
953 bool IsByCopyCapture = false;
954 bool IsConstCapture = false;
955 CXXRecordDecl *Closure = cast<CXXRecordDecl>(CurDC->getParent());
956 while (Closure &&
957 IsThisCaptured(Closure, IsByCopyCapture, IsConstCapture)) {
958 if (IsByCopyCapture) {
959 ClassType.removeLocalCVRQualifiers(Qualifiers::CVRMask);
960 if (IsConstCapture)
961 ClassType.addConst();
962 return ASTCtx.getPointerType(ClassType);
963 }
964 Closure = isLambdaCallOperator(Closure->getParent())
965 ? cast<CXXRecordDecl>(Closure->getParent()->getParent())
966 : nullptr;
967 }
968 }
969 return ASTCtx.getPointerType(ClassType);
970}
971
Eli Friedman73a04092012-01-07 04:59:52 +0000972QualType Sema::getCurrentThisType() {
973 DeclContext *DC = getFunctionLevelDeclContext();
Douglas Gregor3024f072012-04-16 07:05:22 +0000974 QualType ThisTy = CXXThisTypeOverride;
Erik Pilkington3cdc3172016-07-27 18:25:10 +0000975
Richard Smith938f40b2011-06-11 17:19:42 +0000976 if (CXXMethodDecl *method = dyn_cast<CXXMethodDecl>(DC)) {
977 if (method && method->isInstance())
978 ThisTy = method->getThisType(Context);
Richard Smith938f40b2011-06-11 17:19:42 +0000979 }
Faisal Validc6b5962016-03-21 09:25:37 +0000980
Erik Pilkington3cdc3172016-07-27 18:25:10 +0000981 if (ThisTy.isNull() && isLambdaCallOperator(CurContext) &&
Richard Smith51ec0cf2017-02-21 01:17:38 +0000982 inTemplateInstantiation()) {
Faisal Validc6b5962016-03-21 09:25:37 +0000983
Erik Pilkington3cdc3172016-07-27 18:25:10 +0000984 assert(isa<CXXRecordDecl>(DC) &&
985 "Trying to get 'this' type from static method?");
986
987 // This is a lambda call operator that is being instantiated as a default
988 // initializer. DC must point to the enclosing class type, so we can recover
989 // the 'this' type from it.
990
991 QualType ClassTy = Context.getTypeDeclType(cast<CXXRecordDecl>(DC));
992 // There are no cv-qualifiers for 'this' within default initializers,
993 // per [expr.prim.general]p4.
994 ThisTy = Context.getPointerType(ClassTy);
Faisal Validc6b5962016-03-21 09:25:37 +0000995 }
Faisal Vali67b04462016-06-11 16:41:54 +0000996
997 // If we are within a lambda's call operator, the cv-qualifiers of 'this'
998 // might need to be adjusted if the lambda or any of its enclosing lambda's
999 // captures '*this' by copy.
1000 if (!ThisTy.isNull() && isLambdaCallOperator(CurContext))
1001 return adjustCVQualifiersForCXXThisWithinLambda(FunctionScopes, ThisTy,
1002 CurContext, Context);
Richard Smith938f40b2011-06-11 17:19:42 +00001003 return ThisTy;
John McCallf3a88602011-02-03 08:15:49 +00001004}
1005
Simon Pilgrim75c26882016-09-30 14:25:09 +00001006Sema::CXXThisScopeRAII::CXXThisScopeRAII(Sema &S,
Douglas Gregor3024f072012-04-16 07:05:22 +00001007 Decl *ContextDecl,
1008 unsigned CXXThisTypeQuals,
Simon Pilgrim75c26882016-09-30 14:25:09 +00001009 bool Enabled)
Douglas Gregor3024f072012-04-16 07:05:22 +00001010 : S(S), OldCXXThisTypeOverride(S.CXXThisTypeOverride), Enabled(false)
1011{
1012 if (!Enabled || !ContextDecl)
1013 return;
Craig Topperc3ec1492014-05-26 06:22:03 +00001014
1015 CXXRecordDecl *Record = nullptr;
Douglas Gregor3024f072012-04-16 07:05:22 +00001016 if (ClassTemplateDecl *Template = dyn_cast<ClassTemplateDecl>(ContextDecl))
1017 Record = Template->getTemplatedDecl();
1018 else
1019 Record = cast<CXXRecordDecl>(ContextDecl);
Simon Pilgrim75c26882016-09-30 14:25:09 +00001020
Andrey Bokhanko67a41862016-05-26 10:06:01 +00001021 // We care only for CVR qualifiers here, so cut everything else.
1022 CXXThisTypeQuals &= Qualifiers::FastMask;
Douglas Gregor3024f072012-04-16 07:05:22 +00001023 S.CXXThisTypeOverride
1024 = S.Context.getPointerType(
1025 S.Context.getRecordType(Record).withCVRQualifiers(CXXThisTypeQuals));
Simon Pilgrim75c26882016-09-30 14:25:09 +00001026
Douglas Gregor3024f072012-04-16 07:05:22 +00001027 this->Enabled = true;
1028}
1029
1030
1031Sema::CXXThisScopeRAII::~CXXThisScopeRAII() {
1032 if (Enabled) {
1033 S.CXXThisTypeOverride = OldCXXThisTypeOverride;
1034 }
1035}
1036
Faisal Validc6b5962016-03-21 09:25:37 +00001037static Expr *captureThis(Sema &S, ASTContext &Context, RecordDecl *RD,
1038 QualType ThisTy, SourceLocation Loc,
1039 const bool ByCopy) {
Simon Pilgrim75c26882016-09-30 14:25:09 +00001040
Faisal Vali67b04462016-06-11 16:41:54 +00001041 QualType AdjustedThisTy = ThisTy;
1042 // The type of the corresponding data member (not a 'this' pointer if 'by
1043 // copy').
1044 QualType CaptureThisFieldTy = ThisTy;
1045 if (ByCopy) {
1046 // If we are capturing the object referred to by '*this' by copy, ignore any
1047 // cv qualifiers inherited from the type of the member function for the type
1048 // of the closure-type's corresponding data member and any use of 'this'.
1049 CaptureThisFieldTy = ThisTy->getPointeeType();
1050 CaptureThisFieldTy.removeLocalCVRQualifiers(Qualifiers::CVRMask);
1051 AdjustedThisTy = Context.getPointerType(CaptureThisFieldTy);
1052 }
Simon Pilgrim75c26882016-09-30 14:25:09 +00001053
Faisal Vali67b04462016-06-11 16:41:54 +00001054 FieldDecl *Field = FieldDecl::Create(
1055 Context, RD, Loc, Loc, nullptr, CaptureThisFieldTy,
1056 Context.getTrivialTypeSourceInfo(CaptureThisFieldTy, Loc), nullptr, false,
1057 ICIS_NoInit);
1058
Ben Langmuire7d7c4c2013-04-29 13:32:41 +00001059 Field->setImplicit(true);
1060 Field->setAccess(AS_private);
1061 RD->addDecl(Field);
Faisal Vali67b04462016-06-11 16:41:54 +00001062 Expr *This =
1063 new (Context) CXXThisExpr(Loc, ThisTy, /*isImplicit*/ true);
Faisal Validc6b5962016-03-21 09:25:37 +00001064 if (ByCopy) {
1065 Expr *StarThis = S.CreateBuiltinUnaryOp(Loc,
1066 UO_Deref,
1067 This).get();
1068 InitializedEntity Entity = InitializedEntity::InitializeLambdaCapture(
Faisal Vali67b04462016-06-11 16:41:54 +00001069 nullptr, CaptureThisFieldTy, Loc);
Faisal Validc6b5962016-03-21 09:25:37 +00001070 InitializationKind InitKind = InitializationKind::CreateDirect(Loc, Loc, Loc);
1071 InitializationSequence Init(S, Entity, InitKind, StarThis);
1072 ExprResult ER = Init.Perform(S, Entity, InitKind, StarThis);
1073 if (ER.isInvalid()) return nullptr;
1074 return ER.get();
1075 }
1076 return This;
Ben Langmuire7d7c4c2013-04-29 13:32:41 +00001077}
1078
Simon Pilgrim75c26882016-09-30 14:25:09 +00001079bool Sema::CheckCXXThisCapture(SourceLocation Loc, const bool Explicit,
Faisal Validc6b5962016-03-21 09:25:37 +00001080 bool BuildAndDiagnose, const unsigned *const FunctionScopeIndexToStopAt,
1081 const bool ByCopy) {
Eli Friedman73a04092012-01-07 04:59:52 +00001082 // We don't need to capture this in an unevaluated context.
John McCallf413f5e2013-05-03 00:10:13 +00001083 if (isUnevaluatedContext() && !Explicit)
Faisal Valia17d19f2013-11-07 05:17:06 +00001084 return true;
Simon Pilgrim75c26882016-09-30 14:25:09 +00001085
Faisal Validc6b5962016-03-21 09:25:37 +00001086 assert((!ByCopy || Explicit) && "cannot implicitly capture *this by value");
Eli Friedman73a04092012-01-07 04:59:52 +00001087
Faisal Valia17d19f2013-11-07 05:17:06 +00001088 const unsigned MaxFunctionScopesIndex = FunctionScopeIndexToStopAt ?
Faisal Validc6b5962016-03-21 09:25:37 +00001089 *FunctionScopeIndexToStopAt : FunctionScopes.size() - 1;
Faisal Validc6b5962016-03-21 09:25:37 +00001090
Simon Pilgrim75c26882016-09-30 14:25:09 +00001091 // Check that we can capture the *enclosing object* (referred to by '*this')
1092 // by the capturing-entity/closure (lambda/block/etc) at
1093 // MaxFunctionScopesIndex-deep on the FunctionScopes stack.
1094
1095 // Note: The *enclosing object* can only be captured by-value by a
1096 // closure that is a lambda, using the explicit notation:
Faisal Validc6b5962016-03-21 09:25:37 +00001097 // [*this] { ... }.
1098 // Every other capture of the *enclosing object* results in its by-reference
1099 // capture.
1100
1101 // For a closure 'L' (at MaxFunctionScopesIndex in the FunctionScopes
1102 // stack), we can capture the *enclosing object* only if:
1103 // - 'L' has an explicit byref or byval capture of the *enclosing object*
1104 // - or, 'L' has an implicit capture.
Simon Pilgrim75c26882016-09-30 14:25:09 +00001105 // AND
Faisal Validc6b5962016-03-21 09:25:37 +00001106 // -- there is no enclosing closure
Simon Pilgrim75c26882016-09-30 14:25:09 +00001107 // -- or, there is some enclosing closure 'E' that has already captured the
1108 // *enclosing object*, and every intervening closure (if any) between 'E'
Faisal Validc6b5962016-03-21 09:25:37 +00001109 // and 'L' can implicitly capture the *enclosing object*.
Simon Pilgrim75c26882016-09-30 14:25:09 +00001110 // -- or, every enclosing closure can implicitly capture the
Faisal Validc6b5962016-03-21 09:25:37 +00001111 // *enclosing object*
Simon Pilgrim75c26882016-09-30 14:25:09 +00001112
1113
Faisal Validc6b5962016-03-21 09:25:37 +00001114 unsigned NumCapturingClosures = 0;
Faisal Valia17d19f2013-11-07 05:17:06 +00001115 for (unsigned idx = MaxFunctionScopesIndex; idx != 0; idx--) {
Eli Friedman20139d32012-01-11 02:36:31 +00001116 if (CapturingScopeInfo *CSI =
1117 dyn_cast<CapturingScopeInfo>(FunctionScopes[idx])) {
1118 if (CSI->CXXThisCaptureIndex != 0) {
1119 // 'this' is already being captured; there isn't anything more to do.
Malcolm Parsons87a03622017-01-13 15:01:06 +00001120 CSI->Captures[CSI->CXXThisCaptureIndex - 1].markUsed(BuildAndDiagnose);
Eli Friedman73a04092012-01-07 04:59:52 +00001121 break;
1122 }
Faisal Valia17d19f2013-11-07 05:17:06 +00001123 LambdaScopeInfo *LSI = dyn_cast<LambdaScopeInfo>(CSI);
1124 if (LSI && isGenericLambdaCallOperatorSpecialization(LSI->CallOperator)) {
1125 // This context can't implicitly capture 'this'; fail out.
1126 if (BuildAndDiagnose)
Faisal Validc6b5962016-03-21 09:25:37 +00001127 Diag(Loc, diag::err_this_capture)
1128 << (Explicit && idx == MaxFunctionScopesIndex);
Faisal Valia17d19f2013-11-07 05:17:06 +00001129 return true;
1130 }
Eli Friedman20139d32012-01-11 02:36:31 +00001131 if (CSI->ImpCaptureStyle == CapturingScopeInfo::ImpCap_LambdaByref ||
Douglas Gregora1bffa22012-02-10 17:46:20 +00001132 CSI->ImpCaptureStyle == CapturingScopeInfo::ImpCap_LambdaByval ||
Douglas Gregorcdd11d42012-02-01 17:04:21 +00001133 CSI->ImpCaptureStyle == CapturingScopeInfo::ImpCap_Block ||
Tareq A. Siraj6dfa25a2013-04-16 19:37:38 +00001134 CSI->ImpCaptureStyle == CapturingScopeInfo::ImpCap_CapturedRegion ||
Faisal Validc6b5962016-03-21 09:25:37 +00001135 (Explicit && idx == MaxFunctionScopesIndex)) {
1136 // Regarding (Explicit && idx == MaxFunctionScopesIndex): only the first
1137 // iteration through can be an explicit capture, all enclosing closures,
1138 // if any, must perform implicit captures.
1139
Douglas Gregorcdd11d42012-02-01 17:04:21 +00001140 // This closure can capture 'this'; continue looking upwards.
Faisal Validc6b5962016-03-21 09:25:37 +00001141 NumCapturingClosures++;
Eli Friedman73a04092012-01-07 04:59:52 +00001142 continue;
1143 }
Eli Friedman20139d32012-01-11 02:36:31 +00001144 // This context can't implicitly capture 'this'; fail out.
Faisal Valia17d19f2013-11-07 05:17:06 +00001145 if (BuildAndDiagnose)
Faisal Validc6b5962016-03-21 09:25:37 +00001146 Diag(Loc, diag::err_this_capture)
1147 << (Explicit && idx == MaxFunctionScopesIndex);
Faisal Valia17d19f2013-11-07 05:17:06 +00001148 return true;
Eli Friedman73a04092012-01-07 04:59:52 +00001149 }
Eli Friedman73a04092012-01-07 04:59:52 +00001150 break;
1151 }
Faisal Valia17d19f2013-11-07 05:17:06 +00001152 if (!BuildAndDiagnose) return false;
Faisal Validc6b5962016-03-21 09:25:37 +00001153
1154 // If we got here, then the closure at MaxFunctionScopesIndex on the
1155 // FunctionScopes stack, can capture the *enclosing object*, so capture it
1156 // (including implicit by-reference captures in any enclosing closures).
1157
1158 // In the loop below, respect the ByCopy flag only for the closure requesting
1159 // the capture (i.e. first iteration through the loop below). Ignore it for
Simon Pilgrimb17efcb2016-11-15 18:28:07 +00001160 // all enclosing closure's up to NumCapturingClosures (since they must be
Faisal Validc6b5962016-03-21 09:25:37 +00001161 // implicitly capturing the *enclosing object* by reference (see loop
1162 // above)).
1163 assert((!ByCopy ||
1164 dyn_cast<LambdaScopeInfo>(FunctionScopes[MaxFunctionScopesIndex])) &&
1165 "Only a lambda can capture the enclosing object (referred to by "
1166 "*this) by copy");
Eli Friedman73a04092012-01-07 04:59:52 +00001167 // FIXME: We need to delay this marking in PotentiallyPotentiallyEvaluated
1168 // contexts.
Faisal Vali67b04462016-06-11 16:41:54 +00001169 QualType ThisTy = getCurrentThisType();
Simon Pilgrim75c26882016-09-30 14:25:09 +00001170 for (unsigned idx = MaxFunctionScopesIndex; NumCapturingClosures;
Faisal Validc6b5962016-03-21 09:25:37 +00001171 --idx, --NumCapturingClosures) {
Eli Friedman20139d32012-01-11 02:36:31 +00001172 CapturingScopeInfo *CSI = cast<CapturingScopeInfo>(FunctionScopes[idx]);
Craig Topperc3ec1492014-05-26 06:22:03 +00001173 Expr *ThisExpr = nullptr;
Simon Pilgrim75c26882016-09-30 14:25:09 +00001174
Faisal Validc6b5962016-03-21 09:25:37 +00001175 if (LambdaScopeInfo *LSI = dyn_cast<LambdaScopeInfo>(CSI)) {
1176 // For lambda expressions, build a field and an initializing expression,
1177 // and capture the *enclosing object* by copy only if this is the first
1178 // iteration.
1179 ThisExpr = captureThis(*this, Context, LSI->Lambda, ThisTy, Loc,
1180 ByCopy && idx == MaxFunctionScopesIndex);
Simon Pilgrim75c26882016-09-30 14:25:09 +00001181
Faisal Validc6b5962016-03-21 09:25:37 +00001182 } else if (CapturedRegionScopeInfo *RSI
Ben Langmuire7d7c4c2013-04-29 13:32:41 +00001183 = dyn_cast<CapturedRegionScopeInfo>(FunctionScopes[idx]))
Faisal Validc6b5962016-03-21 09:25:37 +00001184 ThisExpr =
1185 captureThis(*this, Context, RSI->TheRecordDecl, ThisTy, Loc,
1186 false/*ByCopy*/);
Tareq A. Siraj6dfa25a2013-04-16 19:37:38 +00001187
Faisal Validc6b5962016-03-21 09:25:37 +00001188 bool isNested = NumCapturingClosures > 1;
Faisal Vali67b04462016-06-11 16:41:54 +00001189 CSI->addThisCapture(isNested, Loc, ThisExpr, ByCopy);
Eli Friedman73a04092012-01-07 04:59:52 +00001190 }
Faisal Valia17d19f2013-11-07 05:17:06 +00001191 return false;
Eli Friedman73a04092012-01-07 04:59:52 +00001192}
1193
Richard Smith938f40b2011-06-11 17:19:42 +00001194ExprResult Sema::ActOnCXXThis(SourceLocation Loc) {
John McCallf3a88602011-02-03 08:15:49 +00001195 /// C++ 9.3.2: In the body of a non-static member function, the keyword this
1196 /// is a non-lvalue expression whose value is the address of the object for
1197 /// which the function is called.
1198
Douglas Gregor09deffa2011-10-18 16:47:30 +00001199 QualType ThisTy = getCurrentThisType();
Richard Smith938f40b2011-06-11 17:19:42 +00001200 if (ThisTy.isNull()) return Diag(Loc, diag::err_invalid_this_use);
John McCallf3a88602011-02-03 08:15:49 +00001201
Eli Friedman73a04092012-01-07 04:59:52 +00001202 CheckCXXThisCapture(Loc);
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00001203 return new (Context) CXXThisExpr(Loc, ThisTy, /*isImplicit=*/false);
Argyrios Kyrtzidised983422008-07-01 10:37:29 +00001204}
Argyrios Kyrtzidis857fcc22008-08-22 15:38:55 +00001205
Douglas Gregor3024f072012-04-16 07:05:22 +00001206bool Sema::isThisOutsideMemberFunctionBody(QualType BaseType) {
1207 // If we're outside the body of a member function, then we'll have a specified
1208 // type for 'this'.
1209 if (CXXThisTypeOverride.isNull())
1210 return false;
Simon Pilgrim75c26882016-09-30 14:25:09 +00001211
Douglas Gregor3024f072012-04-16 07:05:22 +00001212 // Determine whether we're looking into a class that's currently being
1213 // defined.
1214 CXXRecordDecl *Class = BaseType->getAsCXXRecordDecl();
1215 return Class && Class->isBeingDefined();
1216}
1217
John McCalldadc5752010-08-24 06:29:42 +00001218ExprResult
Douglas Gregor2b88c112010-09-08 00:15:04 +00001219Sema::ActOnCXXTypeConstructExpr(ParsedType TypeRep,
Argyrios Kyrtzidis857fcc22008-08-22 15:38:55 +00001220 SourceLocation LParenLoc,
Sebastian Redl6d4256c2009-03-15 17:47:39 +00001221 MultiExprArg exprs,
Argyrios Kyrtzidis857fcc22008-08-22 15:38:55 +00001222 SourceLocation RParenLoc) {
Douglas Gregor7df89f52010-02-05 19:11:37 +00001223 if (!TypeRep)
1224 return ExprError();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00001225
John McCall97513962010-01-15 18:39:57 +00001226 TypeSourceInfo *TInfo;
1227 QualType Ty = GetTypeFromParser(TypeRep, &TInfo);
1228 if (!TInfo)
1229 TInfo = Context.getTrivialTypeSourceInfo(Ty, SourceLocation());
Douglas Gregor2b88c112010-09-08 00:15:04 +00001230
Richard Smithb8c414c2016-06-30 20:24:30 +00001231 auto Result = BuildCXXTypeConstructExpr(TInfo, LParenLoc, exprs, RParenLoc);
1232 // Avoid creating a non-type-dependent expression that contains typos.
1233 // Non-type-dependent expressions are liable to be discarded without
1234 // checking for embedded typos.
1235 if (!Result.isInvalid() && Result.get()->isInstantiationDependent() &&
1236 !Result.get()->isTypeDependent())
1237 Result = CorrectDelayedTyposInExpr(Result.get());
1238 return Result;
Douglas Gregor2b88c112010-09-08 00:15:04 +00001239}
1240
1241/// ActOnCXXTypeConstructExpr - Parse construction of a specified type.
1242/// Can be interpreted either as function-style casting ("int(x)")
1243/// or class type construction ("ClassType(x,y,z)")
1244/// or creation of a value-initialized type ("int()").
1245ExprResult
1246Sema::BuildCXXTypeConstructExpr(TypeSourceInfo *TInfo,
1247 SourceLocation LParenLoc,
Dmitri Gribenko8f8930f2013-05-03 15:05:50 +00001248 MultiExprArg Exprs,
Douglas Gregor2b88c112010-09-08 00:15:04 +00001249 SourceLocation RParenLoc) {
1250 QualType Ty = TInfo->getType();
Douglas Gregor2b88c112010-09-08 00:15:04 +00001251 SourceLocation TyBeginLoc = TInfo->getTypeLoc().getBeginLoc();
Argyrios Kyrtzidis857fcc22008-08-22 15:38:55 +00001252
Dmitri Gribenko8f8930f2013-05-03 15:05:50 +00001253 if (Ty->isDependentType() || CallExpr::hasAnyTypeDependentArguments(Exprs)) {
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00001254 return CXXUnresolvedConstructExpr::Create(Context, TInfo, LParenLoc, Exprs,
1255 RParenLoc);
Douglas Gregor0950e412009-03-13 21:01:28 +00001256 }
1257
Sebastian Redld74dd492012-02-12 18:41:05 +00001258 bool ListInitialization = LParenLoc.isInvalid();
Richard Smith600b5262017-01-26 20:40:47 +00001259 assert((!ListInitialization ||
1260 (Exprs.size() == 1 && isa<InitListExpr>(Exprs[0]))) &&
1261 "List initialization must have initializer list as expression.");
Sebastian Redld74dd492012-02-12 18:41:05 +00001262 SourceRange FullRange = SourceRange(TyBeginLoc,
1263 ListInitialization ? Exprs[0]->getSourceRange().getEnd() : RParenLoc);
1264
Richard Smith60437622017-02-09 19:17:44 +00001265 InitializedEntity Entity = InitializedEntity::InitializeTemporary(TInfo);
1266 InitializationKind Kind =
1267 Exprs.size()
1268 ? ListInitialization
1269 ? InitializationKind::CreateDirectList(TyBeginLoc)
1270 : InitializationKind::CreateDirect(TyBeginLoc, LParenLoc,
1271 RParenLoc)
1272 : InitializationKind::CreateValue(TyBeginLoc, LParenLoc, RParenLoc);
1273
1274 // C++1z [expr.type.conv]p1:
1275 // If the type is a placeholder for a deduced class type, [...perform class
1276 // template argument deduction...]
1277 DeducedType *Deduced = Ty->getContainedDeducedType();
1278 if (Deduced && isa<DeducedTemplateSpecializationType>(Deduced)) {
1279 Ty = DeduceTemplateSpecializationFromInitializer(TInfo, Entity,
1280 Kind, Exprs);
1281 if (Ty.isNull())
1282 return ExprError();
1283 Entity = InitializedEntity::InitializeTemporary(TInfo, Ty);
1284 }
1285
Douglas Gregordd04d332009-01-16 18:33:17 +00001286 // C++ [expr.type.conv]p1:
Richard Smith49a6b6e2017-03-24 01:14:25 +00001287 // If the expression list is a parenthesized single expression, the type
1288 // conversion expression is equivalent (in definedness, and if defined in
1289 // meaning) to the corresponding cast expression.
1290 if (Exprs.size() == 1 && !ListInitialization &&
1291 !isa<InitListExpr>(Exprs[0])) {
John McCallb50451a2011-10-05 07:41:44 +00001292 Expr *Arg = Exprs[0];
Richard Smith60437622017-02-09 19:17:44 +00001293 return BuildCXXFunctionalCastExpr(TInfo, Ty, LParenLoc, Arg, RParenLoc);
Argyrios Kyrtzidis857fcc22008-08-22 15:38:55 +00001294 }
1295
Richard Smith49a6b6e2017-03-24 01:14:25 +00001296 // For an expression of the form T(), T shall not be an array type.
Eli Friedman576cbd02012-02-29 00:00:28 +00001297 QualType ElemTy = Ty;
1298 if (Ty->isArrayType()) {
1299 if (!ListInitialization)
Richard Smith49a6b6e2017-03-24 01:14:25 +00001300 return ExprError(Diag(TyBeginLoc, diag::err_value_init_for_array_type)
1301 << FullRange);
Eli Friedman576cbd02012-02-29 00:00:28 +00001302 ElemTy = Context.getBaseElementType(Ty);
1303 }
1304
Richard Smith49a6b6e2017-03-24 01:14:25 +00001305 // There doesn't seem to be an explicit rule against this but sanity demands
1306 // we only construct objects with object types.
1307 if (Ty->isFunctionType())
1308 return ExprError(Diag(TyBeginLoc, diag::err_init_for_function_type)
1309 << Ty << FullRange);
David Majnemer7eddcff2015-09-14 07:05:00 +00001310
Richard Smith49a6b6e2017-03-24 01:14:25 +00001311 // C++17 [expr.type.conv]p2:
1312 // If the type is cv void and the initializer is (), the expression is a
1313 // prvalue of the specified type that performs no initialization.
Eli Friedman576cbd02012-02-29 00:00:28 +00001314 if (!Ty->isVoidType() &&
1315 RequireCompleteType(TyBeginLoc, ElemTy,
Douglas Gregor7bfb2d02012-05-04 16:32:21 +00001316 diag::err_invalid_incomplete_type_use, FullRange))
Eli Friedman576cbd02012-02-29 00:00:28 +00001317 return ExprError();
1318
Richard Smith49a6b6e2017-03-24 01:14:25 +00001319 // Otherwise, the expression is a prvalue of the specified type whose
1320 // result object is direct-initialized (11.6) with the initializer.
Dmitri Gribenko8f8930f2013-05-03 15:05:50 +00001321 InitializationSequence InitSeq(*this, Entity, Kind, Exprs);
1322 ExprResult Result = InitSeq.Perform(*this, Entity, Kind, Exprs);
Sebastian Redl6d4256c2009-03-15 17:47:39 +00001323
Richard Smith49a6b6e2017-03-24 01:14:25 +00001324 if (Result.isInvalid())
Richard Smith90061902013-09-23 02:20:00 +00001325 return Result;
1326
1327 Expr *Inner = Result.get();
1328 if (CXXBindTemporaryExpr *BTE = dyn_cast_or_null<CXXBindTemporaryExpr>(Inner))
1329 Inner = BTE->getSubExpr();
Richard Smith49a6b6e2017-03-24 01:14:25 +00001330 if (!isa<CXXTemporaryObjectExpr>(Inner) &&
1331 !isa<CXXScalarValueInitExpr>(Inner)) {
Richard Smith1ae689c2015-01-28 22:06:01 +00001332 // If we created a CXXTemporaryObjectExpr, that node also represents the
1333 // functional cast. Otherwise, create an explicit cast to represent
1334 // the syntactic form of a functional-style cast that was used here.
1335 //
1336 // FIXME: Creating a CXXFunctionalCastExpr around a CXXConstructExpr
1337 // would give a more consistent AST representation than using a
1338 // CXXTemporaryObjectExpr. It's also weird that the functional cast
1339 // is sometimes handled by initialization and sometimes not.
Richard Smith90061902013-09-23 02:20:00 +00001340 QualType ResultType = Result.get()->getType();
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00001341 Result = CXXFunctionalCastExpr::Create(
Richard Smith60437622017-02-09 19:17:44 +00001342 Context, ResultType, Expr::getValueKindForType(Ty), TInfo,
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00001343 CK_NoOp, Result.get(), /*Path=*/nullptr, LParenLoc, RParenLoc);
Sebastian Redl2b80af42012-02-13 19:55:43 +00001344 }
1345
Benjamin Kramer62b95d82012-08-23 21:35:17 +00001346 return Result;
Argyrios Kyrtzidis857fcc22008-08-22 15:38:55 +00001347}
Argyrios Kyrtzidis7620ee42008-09-10 02:17:11 +00001348
Richard Smithb2f0f052016-10-10 18:54:32 +00001349/// \brief Determine whether the given function is a non-placement
1350/// deallocation function.
1351static bool isNonPlacementDeallocationFunction(Sema &S, FunctionDecl *FD) {
1352 if (FD->isInvalidDecl())
1353 return false;
1354
1355 if (CXXMethodDecl *Method = dyn_cast<CXXMethodDecl>(FD))
1356 return Method->isUsualDeallocationFunction();
1357
1358 if (FD->getOverloadedOperator() != OO_Delete &&
1359 FD->getOverloadedOperator() != OO_Array_Delete)
1360 return false;
1361
1362 unsigned UsualParams = 1;
1363
1364 if (S.getLangOpts().SizedDeallocation && UsualParams < FD->getNumParams() &&
1365 S.Context.hasSameUnqualifiedType(
1366 FD->getParamDecl(UsualParams)->getType(),
1367 S.Context.getSizeType()))
1368 ++UsualParams;
1369
1370 if (S.getLangOpts().AlignedAllocation && UsualParams < FD->getNumParams() &&
1371 S.Context.hasSameUnqualifiedType(
1372 FD->getParamDecl(UsualParams)->getType(),
1373 S.Context.getTypeDeclType(S.getStdAlignValT())))
1374 ++UsualParams;
1375
1376 return UsualParams == FD->getNumParams();
1377}
1378
1379namespace {
1380 struct UsualDeallocFnInfo {
1381 UsualDeallocFnInfo() : Found(), FD(nullptr) {}
Richard Smithf75dcbe2016-10-11 00:21:10 +00001382 UsualDeallocFnInfo(Sema &S, DeclAccessPair Found)
Richard Smithb2f0f052016-10-10 18:54:32 +00001383 : Found(Found), FD(dyn_cast<FunctionDecl>(Found->getUnderlyingDecl())),
Richard Smithf75dcbe2016-10-11 00:21:10 +00001384 HasSizeT(false), HasAlignValT(false), CUDAPref(Sema::CFP_Native) {
Richard Smithb2f0f052016-10-10 18:54:32 +00001385 // A function template declaration is never a usual deallocation function.
1386 if (!FD)
1387 return;
1388 if (FD->getNumParams() == 3)
1389 HasAlignValT = HasSizeT = true;
1390 else if (FD->getNumParams() == 2) {
1391 HasSizeT = FD->getParamDecl(1)->getType()->isIntegerType();
1392 HasAlignValT = !HasSizeT;
1393 }
Richard Smithf75dcbe2016-10-11 00:21:10 +00001394
1395 // In CUDA, determine how much we'd like / dislike to call this.
1396 if (S.getLangOpts().CUDA)
1397 if (auto *Caller = dyn_cast<FunctionDecl>(S.CurContext))
1398 CUDAPref = S.IdentifyCUDAPreference(Caller, FD);
Richard Smithb2f0f052016-10-10 18:54:32 +00001399 }
1400
1401 operator bool() const { return FD; }
1402
Richard Smithf75dcbe2016-10-11 00:21:10 +00001403 bool isBetterThan(const UsualDeallocFnInfo &Other, bool WantSize,
1404 bool WantAlign) const {
1405 // C++17 [expr.delete]p10:
1406 // If the type has new-extended alignment, a function with a parameter
1407 // of type std::align_val_t is preferred; otherwise a function without
1408 // such a parameter is preferred
1409 if (HasAlignValT != Other.HasAlignValT)
1410 return HasAlignValT == WantAlign;
1411
1412 if (HasSizeT != Other.HasSizeT)
1413 return HasSizeT == WantSize;
1414
1415 // Use CUDA call preference as a tiebreaker.
1416 return CUDAPref > Other.CUDAPref;
1417 }
1418
Richard Smithb2f0f052016-10-10 18:54:32 +00001419 DeclAccessPair Found;
1420 FunctionDecl *FD;
1421 bool HasSizeT, HasAlignValT;
Richard Smithf75dcbe2016-10-11 00:21:10 +00001422 Sema::CUDAFunctionPreference CUDAPref;
Richard Smithb2f0f052016-10-10 18:54:32 +00001423 };
1424}
1425
1426/// Determine whether a type has new-extended alignment. This may be called when
1427/// the type is incomplete (for a delete-expression with an incomplete pointee
1428/// type), in which case it will conservatively return false if the alignment is
1429/// not known.
1430static bool hasNewExtendedAlignment(Sema &S, QualType AllocType) {
1431 return S.getLangOpts().AlignedAllocation &&
1432 S.getASTContext().getTypeAlignIfKnown(AllocType) >
1433 S.getASTContext().getTargetInfo().getNewAlign();
1434}
1435
1436/// Select the correct "usual" deallocation function to use from a selection of
1437/// deallocation functions (either global or class-scope).
1438static UsualDeallocFnInfo resolveDeallocationOverload(
1439 Sema &S, LookupResult &R, bool WantSize, bool WantAlign,
1440 llvm::SmallVectorImpl<UsualDeallocFnInfo> *BestFns = nullptr) {
1441 UsualDeallocFnInfo Best;
1442
Richard Smithb2f0f052016-10-10 18:54:32 +00001443 for (auto I = R.begin(), E = R.end(); I != E; ++I) {
Richard Smithf75dcbe2016-10-11 00:21:10 +00001444 UsualDeallocFnInfo Info(S, I.getPair());
1445 if (!Info || !isNonPlacementDeallocationFunction(S, Info.FD) ||
1446 Info.CUDAPref == Sema::CFP_Never)
Richard Smithb2f0f052016-10-10 18:54:32 +00001447 continue;
1448
1449 if (!Best) {
1450 Best = Info;
1451 if (BestFns)
1452 BestFns->push_back(Info);
1453 continue;
1454 }
1455
Richard Smithf75dcbe2016-10-11 00:21:10 +00001456 if (Best.isBetterThan(Info, WantSize, WantAlign))
Richard Smithb2f0f052016-10-10 18:54:32 +00001457 continue;
1458
1459 // If more than one preferred function is found, all non-preferred
1460 // functions are eliminated from further consideration.
Richard Smithf75dcbe2016-10-11 00:21:10 +00001461 if (BestFns && Info.isBetterThan(Best, WantSize, WantAlign))
Richard Smithb2f0f052016-10-10 18:54:32 +00001462 BestFns->clear();
1463
1464 Best = Info;
1465 if (BestFns)
1466 BestFns->push_back(Info);
1467 }
1468
1469 return Best;
1470}
1471
1472/// Determine whether a given type is a class for which 'delete[]' would call
1473/// a member 'operator delete[]' with a 'size_t' parameter. This implies that
1474/// we need to store the array size (even if the type is
1475/// trivially-destructible).
John McCall284c48f2011-01-27 09:37:56 +00001476static bool doesUsualArrayDeleteWantSize(Sema &S, SourceLocation loc,
1477 QualType allocType) {
1478 const RecordType *record =
1479 allocType->getBaseElementTypeUnsafe()->getAs<RecordType>();
1480 if (!record) return false;
1481
1482 // Try to find an operator delete[] in class scope.
1483
1484 DeclarationName deleteName =
1485 S.Context.DeclarationNames.getCXXOperatorName(OO_Array_Delete);
1486 LookupResult ops(S, deleteName, loc, Sema::LookupOrdinaryName);
1487 S.LookupQualifiedName(ops, record->getDecl());
1488
1489 // We're just doing this for information.
1490 ops.suppressDiagnostics();
1491
1492 // Very likely: there's no operator delete[].
1493 if (ops.empty()) return false;
1494
1495 // If it's ambiguous, it should be illegal to call operator delete[]
1496 // on this thing, so it doesn't matter if we allocate extra space or not.
1497 if (ops.isAmbiguous()) return false;
1498
Richard Smithb2f0f052016-10-10 18:54:32 +00001499 // C++17 [expr.delete]p10:
1500 // If the deallocation functions have class scope, the one without a
1501 // parameter of type std::size_t is selected.
1502 auto Best = resolveDeallocationOverload(
1503 S, ops, /*WantSize*/false,
1504 /*WantAlign*/hasNewExtendedAlignment(S, allocType));
1505 return Best && Best.HasSizeT;
John McCall284c48f2011-01-27 09:37:56 +00001506}
Argyrios Kyrtzidis7620ee42008-09-10 02:17:11 +00001507
Sebastian Redld74dd492012-02-12 18:41:05 +00001508/// \brief Parsed a C++ 'new' expression (C++ 5.3.4).
James Dennettf14a6e52012-06-15 22:23:43 +00001509///
Sebastian Redld74dd492012-02-12 18:41:05 +00001510/// E.g.:
Sebastian Redlbd150f42008-11-21 19:14:01 +00001511/// @code new (memory) int[size][4] @endcode
1512/// or
1513/// @code ::new Foo(23, "hello") @endcode
Sebastian Redld74dd492012-02-12 18:41:05 +00001514///
1515/// \param StartLoc The first location of the expression.
1516/// \param UseGlobal True if 'new' was prefixed with '::'.
1517/// \param PlacementLParen Opening paren of the placement arguments.
1518/// \param PlacementArgs Placement new arguments.
1519/// \param PlacementRParen Closing paren of the placement arguments.
1520/// \param TypeIdParens If the type is in parens, the source range.
1521/// \param D The type to be allocated, as well as array dimensions.
James Dennettf14a6e52012-06-15 22:23:43 +00001522/// \param Initializer The initializing expression or initializer-list, or null
1523/// if there is none.
John McCalldadc5752010-08-24 06:29:42 +00001524ExprResult
Sebastian Redlbd150f42008-11-21 19:14:01 +00001525Sema::ActOnCXXNew(SourceLocation StartLoc, bool UseGlobal,
Sebastian Redl6d4256c2009-03-15 17:47:39 +00001526 SourceLocation PlacementLParen, MultiExprArg PlacementArgs,
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00001527 SourceLocation PlacementRParen, SourceRange TypeIdParens,
Sebastian Redl6047f072012-02-16 12:22:20 +00001528 Declarator &D, Expr *Initializer) {
Craig Topperc3ec1492014-05-26 06:22:03 +00001529 Expr *ArraySize = nullptr;
Sebastian Redl351bb782008-12-02 14:43:59 +00001530 // If the specified type is an array, unwrap it and save the expression.
1531 if (D.getNumTypeObjects() > 0 &&
1532 D.getTypeObject(0).Kind == DeclaratorChunk::Array) {
Richard Smith3beb7c62017-01-12 02:27:38 +00001533 DeclaratorChunk &Chunk = D.getTypeObject(0);
Richard Smithbfbff072017-02-10 22:35:37 +00001534 if (D.getDeclSpec().hasAutoTypeSpec())
Richard Smith30482bc2011-02-20 03:19:35 +00001535 return ExprError(Diag(Chunk.Loc, diag::err_new_array_of_auto)
1536 << D.getSourceRange());
Sebastian Redl351bb782008-12-02 14:43:59 +00001537 if (Chunk.Arr.hasStatic)
Sebastian Redl6d4256c2009-03-15 17:47:39 +00001538 return ExprError(Diag(Chunk.Loc, diag::err_static_illegal_in_new)
1539 << D.getSourceRange());
Sebastian Redl351bb782008-12-02 14:43:59 +00001540 if (!Chunk.Arr.NumElts)
Sebastian Redl6d4256c2009-03-15 17:47:39 +00001541 return ExprError(Diag(Chunk.Loc, diag::err_array_new_needs_size)
1542 << D.getSourceRange());
Sebastian Redld7b3d7d2009-10-25 21:45:37 +00001543
Sebastian Redl351bb782008-12-02 14:43:59 +00001544 ArraySize = static_cast<Expr*>(Chunk.Arr.NumElts);
Sebastian Redld7b3d7d2009-10-25 21:45:37 +00001545 D.DropFirstTypeObject();
Sebastian Redl351bb782008-12-02 14:43:59 +00001546 }
1547
Douglas Gregor73341c42009-09-11 00:18:58 +00001548 // Every dimension shall be of constant size.
Sebastian Redld7b3d7d2009-10-25 21:45:37 +00001549 if (ArraySize) {
1550 for (unsigned I = 0, N = D.getNumTypeObjects(); I < N; ++I) {
Douglas Gregor73341c42009-09-11 00:18:58 +00001551 if (D.getTypeObject(I).Kind != DeclaratorChunk::Array)
1552 break;
1553
1554 DeclaratorChunk::ArrayTypeInfo &Array = D.getTypeObject(I).Arr;
1555 if (Expr *NumElts = (Expr *)Array.NumElts) {
Richard Smithf4c51d92012-02-04 09:53:13 +00001556 if (!NumElts->isTypeDependent() && !NumElts->isValueDependent()) {
Aaron Ballmandd69ef32014-08-19 15:55:55 +00001557 if (getLangOpts().CPlusPlus14) {
Larisse Voufo0f1394c2013-06-15 20:17:46 +00001558 // C++1y [expr.new]p6: Every constant-expression in a noptr-new-declarator
1559 // shall be a converted constant expression (5.19) of type std::size_t
1560 // and shall evaluate to a strictly positive value.
1561 unsigned IntWidth = Context.getTargetInfo().getIntWidth();
1562 assert(IntWidth && "Builtin type of size 0?");
1563 llvm::APSInt Value(IntWidth);
1564 Array.NumElts
1565 = CheckConvertedConstantExpression(NumElts, Context.getSizeType(), Value,
1566 CCEK_NewExpr)
Nikola Smiljanic01a75982014-05-29 10:55:11 +00001567 .get();
Larisse Voufo0f1394c2013-06-15 20:17:46 +00001568 } else {
1569 Array.NumElts
Craig Topperc3ec1492014-05-26 06:22:03 +00001570 = VerifyIntegerConstantExpression(NumElts, nullptr,
Larisse Voufo0f1394c2013-06-15 20:17:46 +00001571 diag::err_new_array_nonconst)
Nikola Smiljanic01a75982014-05-29 10:55:11 +00001572 .get();
Larisse Voufo0f1394c2013-06-15 20:17:46 +00001573 }
Richard Smithf4c51d92012-02-04 09:53:13 +00001574 if (!Array.NumElts)
1575 return ExprError();
Douglas Gregor73341c42009-09-11 00:18:58 +00001576 }
1577 }
1578 }
1579 }
Sebastian Redld7b3d7d2009-10-25 21:45:37 +00001580
Craig Topperc3ec1492014-05-26 06:22:03 +00001581 TypeSourceInfo *TInfo = GetTypeForDeclarator(D, /*Scope=*/nullptr);
John McCall8cb7bdf2010-06-04 23:28:52 +00001582 QualType AllocType = TInfo->getType();
Chris Lattnerf6d1c9c2009-04-25 08:06:05 +00001583 if (D.isInvalidType())
Sebastian Redl6d4256c2009-03-15 17:47:39 +00001584 return ExprError();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00001585
Sebastian Redl6047f072012-02-16 12:22:20 +00001586 SourceRange DirectInitRange;
Richard Smith49a6b6e2017-03-24 01:14:25 +00001587 if (ParenListExpr *List = dyn_cast_or_null<ParenListExpr>(Initializer))
Sebastian Redl6047f072012-02-16 12:22:20 +00001588 DirectInitRange = List->getSourceRange();
1589
David Blaikie7b97aef2012-11-07 00:12:38 +00001590 return BuildCXXNew(SourceRange(StartLoc, D.getLocEnd()), UseGlobal,
Douglas Gregord0fefba2009-05-21 00:00:09 +00001591 PlacementLParen,
Benjamin Kramer62b95d82012-08-23 21:35:17 +00001592 PlacementArgs,
Douglas Gregord0fefba2009-05-21 00:00:09 +00001593 PlacementRParen,
Douglas Gregorf2753b32010-07-13 15:54:32 +00001594 TypeIdParens,
Mike Stump11289f42009-09-09 15:08:12 +00001595 AllocType,
Douglas Gregor0744ef62010-09-07 21:49:58 +00001596 TInfo,
John McCallb268a282010-08-23 23:25:46 +00001597 ArraySize,
Sebastian Redl6047f072012-02-16 12:22:20 +00001598 DirectInitRange,
Richard Smith3beb7c62017-01-12 02:27:38 +00001599 Initializer);
Douglas Gregord0fefba2009-05-21 00:00:09 +00001600}
1601
Sebastian Redlb8fc4772012-02-16 12:59:47 +00001602static bool isLegalArrayNewInitializer(CXXNewExpr::InitializationStyle Style,
1603 Expr *Init) {
Sebastian Redl6047f072012-02-16 12:22:20 +00001604 if (!Init)
1605 return true;
Sebastian Redleb54f082012-02-17 08:42:32 +00001606 if (ParenListExpr *PLE = dyn_cast<ParenListExpr>(Init))
1607 return PLE->getNumExprs() == 0;
Sebastian Redl6047f072012-02-16 12:22:20 +00001608 if (isa<ImplicitValueInitExpr>(Init))
1609 return true;
1610 else if (CXXConstructExpr *CCE = dyn_cast<CXXConstructExpr>(Init))
1611 return !CCE->isListInitialization() &&
1612 CCE->getConstructor()->isDefaultConstructor();
Sebastian Redlb8fc4772012-02-16 12:59:47 +00001613 else if (Style == CXXNewExpr::ListInit) {
1614 assert(isa<InitListExpr>(Init) &&
1615 "Shouldn't create list CXXConstructExprs for arrays.");
1616 return true;
1617 }
Sebastian Redl6047f072012-02-16 12:22:20 +00001618 return false;
1619}
1620
John McCalldadc5752010-08-24 06:29:42 +00001621ExprResult
David Blaikie7b97aef2012-11-07 00:12:38 +00001622Sema::BuildCXXNew(SourceRange Range, bool UseGlobal,
Douglas Gregord0fefba2009-05-21 00:00:09 +00001623 SourceLocation PlacementLParen,
1624 MultiExprArg PlacementArgs,
1625 SourceLocation PlacementRParen,
Douglas Gregorf2753b32010-07-13 15:54:32 +00001626 SourceRange TypeIdParens,
Douglas Gregord0fefba2009-05-21 00:00:09 +00001627 QualType AllocType,
Douglas Gregor0744ef62010-09-07 21:49:58 +00001628 TypeSourceInfo *AllocTypeInfo,
John McCallb268a282010-08-23 23:25:46 +00001629 Expr *ArraySize,
Sebastian Redl6047f072012-02-16 12:22:20 +00001630 SourceRange DirectInitRange,
Richard Smith3beb7c62017-01-12 02:27:38 +00001631 Expr *Initializer) {
Douglas Gregor0744ef62010-09-07 21:49:58 +00001632 SourceRange TypeRange = AllocTypeInfo->getTypeLoc().getSourceRange();
David Blaikie7b97aef2012-11-07 00:12:38 +00001633 SourceLocation StartLoc = Range.getBegin();
Sebastian Redl351bb782008-12-02 14:43:59 +00001634
Sebastian Redl6047f072012-02-16 12:22:20 +00001635 CXXNewExpr::InitializationStyle initStyle;
1636 if (DirectInitRange.isValid()) {
1637 assert(Initializer && "Have parens but no initializer.");
1638 initStyle = CXXNewExpr::CallInit;
1639 } else if (Initializer && isa<InitListExpr>(Initializer))
1640 initStyle = CXXNewExpr::ListInit;
1641 else {
1642 assert((!Initializer || isa<ImplicitValueInitExpr>(Initializer) ||
1643 isa<CXXConstructExpr>(Initializer)) &&
1644 "Initializer expression that cannot have been implicitly created.");
1645 initStyle = CXXNewExpr::NoInit;
1646 }
1647
1648 Expr **Inits = &Initializer;
1649 unsigned NumInits = Initializer ? 1 : 0;
Richard Smithdd2ca572012-11-26 08:32:48 +00001650 if (ParenListExpr *List = dyn_cast_or_null<ParenListExpr>(Initializer)) {
1651 assert(initStyle == CXXNewExpr::CallInit && "paren init for non-call init");
1652 Inits = List->getExprs();
1653 NumInits = List->getNumExprs();
Sebastian Redl6047f072012-02-16 12:22:20 +00001654 }
1655
Richard Smith60437622017-02-09 19:17:44 +00001656 // C++11 [expr.new]p15:
1657 // A new-expression that creates an object of type T initializes that
1658 // object as follows:
1659 InitializationKind Kind
1660 // - If the new-initializer is omitted, the object is default-
1661 // initialized (8.5); if no initialization is performed,
1662 // the object has indeterminate value
1663 = initStyle == CXXNewExpr::NoInit
1664 ? InitializationKind::CreateDefault(TypeRange.getBegin())
1665 // - Otherwise, the new-initializer is interpreted according to the
1666 // initialization rules of 8.5 for direct-initialization.
1667 : initStyle == CXXNewExpr::ListInit
1668 ? InitializationKind::CreateDirectList(TypeRange.getBegin())
1669 : InitializationKind::CreateDirect(TypeRange.getBegin(),
1670 DirectInitRange.getBegin(),
1671 DirectInitRange.getEnd());
Richard Smith600b5262017-01-26 20:40:47 +00001672
Richard Smith60437622017-02-09 19:17:44 +00001673 // C++11 [dcl.spec.auto]p6. Deduce the type which 'auto' stands in for.
1674 auto *Deduced = AllocType->getContainedDeducedType();
1675 if (Deduced && isa<DeducedTemplateSpecializationType>(Deduced)) {
1676 if (ArraySize)
1677 return ExprError(Diag(ArraySize->getExprLoc(),
1678 diag::err_deduced_class_template_compound_type)
1679 << /*array*/ 2 << ArraySize->getSourceRange());
1680
1681 InitializedEntity Entity
1682 = InitializedEntity::InitializeNew(StartLoc, AllocType);
1683 AllocType = DeduceTemplateSpecializationFromInitializer(
1684 AllocTypeInfo, Entity, Kind, MultiExprArg(Inits, NumInits));
1685 if (AllocType.isNull())
1686 return ExprError();
1687 } else if (Deduced) {
Sebastian Redl6047f072012-02-16 12:22:20 +00001688 if (initStyle == CXXNewExpr::NoInit || NumInits == 0)
Richard Smith30482bc2011-02-20 03:19:35 +00001689 return ExprError(Diag(StartLoc, diag::err_auto_new_requires_ctor_arg)
1690 << AllocType << TypeRange);
Richard Smith66204ec2014-03-12 17:42:45 +00001691 if (initStyle == CXXNewExpr::ListInit ||
1692 (NumInits == 1 && isa<InitListExpr>(Inits[0])))
Daniel Dunbar62ee6412012-03-09 18:35:03 +00001693 return ExprError(Diag(Inits[0]->getLocStart(),
Richard Smith66204ec2014-03-12 17:42:45 +00001694 diag::err_auto_new_list_init)
Sebastian Redl6047f072012-02-16 12:22:20 +00001695 << AllocType << TypeRange);
1696 if (NumInits > 1) {
1697 Expr *FirstBad = Inits[1];
Daniel Dunbar62ee6412012-03-09 18:35:03 +00001698 return ExprError(Diag(FirstBad->getLocStart(),
Richard Smith30482bc2011-02-20 03:19:35 +00001699 diag::err_auto_new_ctor_multiple_expressions)
1700 << AllocType << TypeRange);
1701 }
Sebastian Redl6047f072012-02-16 12:22:20 +00001702 Expr *Deduce = Inits[0];
Richard Smith061f1e22013-04-30 21:23:01 +00001703 QualType DeducedType;
Richard Smith74801c82012-07-08 04:13:07 +00001704 if (DeduceAutoType(AllocTypeInfo, Deduce, DeducedType) == DAR_Failed)
Richard Smith30482bc2011-02-20 03:19:35 +00001705 return ExprError(Diag(StartLoc, diag::err_auto_new_deduction_failure)
Sebastian Redld74dd492012-02-12 18:41:05 +00001706 << AllocType << Deduce->getType()
1707 << TypeRange << Deduce->getSourceRange());
Richard Smith061f1e22013-04-30 21:23:01 +00001708 if (DeducedType.isNull())
Richard Smith9647d3c2011-03-17 16:11:59 +00001709 return ExprError();
Richard Smith061f1e22013-04-30 21:23:01 +00001710 AllocType = DeducedType;
Richard Smith30482bc2011-02-20 03:19:35 +00001711 }
Sebastian Redld74dd492012-02-12 18:41:05 +00001712
Douglas Gregorcda95f42010-05-16 16:01:03 +00001713 // Per C++0x [expr.new]p5, the type being constructed may be a
1714 // typedef of an array type.
John McCallb268a282010-08-23 23:25:46 +00001715 if (!ArraySize) {
Douglas Gregorcda95f42010-05-16 16:01:03 +00001716 if (const ConstantArrayType *Array
1717 = Context.getAsConstantArrayType(AllocType)) {
Argyrios Kyrtzidis43b20572010-08-28 09:06:06 +00001718 ArraySize = IntegerLiteral::Create(Context, Array->getSize(),
1719 Context.getSizeType(),
1720 TypeRange.getEnd());
Douglas Gregorcda95f42010-05-16 16:01:03 +00001721 AllocType = Array->getElementType();
1722 }
1723 }
Sebastian Redlbd150f42008-11-21 19:14:01 +00001724
Douglas Gregor3999e152010-10-06 16:00:31 +00001725 if (CheckAllocatedType(AllocType, TypeRange.getBegin(), TypeRange))
1726 return ExprError();
1727
Craig Topperc3ec1492014-05-26 06:22:03 +00001728 if (initStyle == CXXNewExpr::ListInit &&
1729 isStdInitializerList(AllocType, nullptr)) {
Sebastian Redld74dd492012-02-12 18:41:05 +00001730 Diag(AllocTypeInfo->getTypeLoc().getBeginLoc(),
1731 diag::warn_dangling_std_initializer_list)
Sebastian Redl73cfbeb2012-02-19 16:31:05 +00001732 << /*at end of FE*/0 << Inits[0]->getSourceRange();
Sebastian Redld74dd492012-02-12 18:41:05 +00001733 }
1734
Simon Pilgrim75c26882016-09-30 14:25:09 +00001735 // In ARC, infer 'retaining' for the allocated
David Blaikiebbafb8a2012-03-11 07:00:24 +00001736 if (getLangOpts().ObjCAutoRefCount &&
John McCall31168b02011-06-15 23:02:42 +00001737 AllocType.getObjCLifetime() == Qualifiers::OCL_None &&
1738 AllocType->isObjCLifetimeType()) {
1739 AllocType = Context.getLifetimeQualifiedType(AllocType,
1740 AllocType->getObjCARCImplicitLifetime());
1741 }
Sebastian Redl351bb782008-12-02 14:43:59 +00001742
John McCall31168b02011-06-15 23:02:42 +00001743 QualType ResultType = Context.getPointerType(AllocType);
Simon Pilgrim75c26882016-09-30 14:25:09 +00001744
John McCall5e77d762013-04-16 07:28:30 +00001745 if (ArraySize && ArraySize->getType()->isNonOverloadPlaceholderType()) {
1746 ExprResult result = CheckPlaceholderExpr(ArraySize);
1747 if (result.isInvalid()) return ExprError();
Nikola Smiljanic01a75982014-05-29 10:55:11 +00001748 ArraySize = result.get();
John McCall5e77d762013-04-16 07:28:30 +00001749 }
Richard Smith8dd34252012-02-04 07:07:42 +00001750 // C++98 5.3.4p6: "The expression in a direct-new-declarator shall have
1751 // integral or enumeration type with a non-negative value."
1752 // C++11 [expr.new]p6: The expression [...] shall be of integral or unscoped
1753 // enumeration type, or a class type for which a single non-explicit
1754 // conversion function to integral or unscoped enumeration type exists.
Richard Smithccc11812013-05-21 19:05:48 +00001755 // C++1y [expr.new]p6: The expression [...] is implicitly converted to
Larisse Voufobf4aa572013-06-18 03:08:53 +00001756 // std::size_t.
Richard Smith0511d232016-10-05 22:41:02 +00001757 llvm::Optional<uint64_t> KnownArraySize;
Sebastian Redl8d2ccae2009-02-26 14:39:58 +00001758 if (ArraySize && !ArraySize->isTypeDependent()) {
Larisse Voufo0f1394c2013-06-15 20:17:46 +00001759 ExprResult ConvertedSize;
Aaron Ballmandd69ef32014-08-19 15:55:55 +00001760 if (getLangOpts().CPlusPlus14) {
Alp Toker965f8822013-11-27 05:22:15 +00001761 assert(Context.getTargetInfo().getIntWidth() && "Builtin type of size 0?");
1762
Larisse Voufo0f1394c2013-06-15 20:17:46 +00001763 ConvertedSize = PerformImplicitConversion(ArraySize, Context.getSizeType(),
1764 AA_Converting);
Richard Smithccc11812013-05-21 19:05:48 +00001765
Simon Pilgrim75c26882016-09-30 14:25:09 +00001766 if (!ConvertedSize.isInvalid() &&
Larisse Voufobf4aa572013-06-18 03:08:53 +00001767 ArraySize->getType()->getAs<RecordType>())
Larisse Voufo9f380c52013-06-18 01:27:47 +00001768 // Diagnose the compatibility of this conversion.
1769 Diag(StartLoc, diag::warn_cxx98_compat_array_size_conversion)
1770 << ArraySize->getType() << 0 << "'size_t'";
Larisse Voufo0f1394c2013-06-15 20:17:46 +00001771 } else {
1772 class SizeConvertDiagnoser : public ICEConvertDiagnoser {
1773 protected:
1774 Expr *ArraySize;
Simon Pilgrim75c26882016-09-30 14:25:09 +00001775
Larisse Voufo0f1394c2013-06-15 20:17:46 +00001776 public:
1777 SizeConvertDiagnoser(Expr *ArraySize)
1778 : ICEConvertDiagnoser(/*AllowScopedEnumerations*/false, false, false),
1779 ArraySize(ArraySize) {}
Craig Toppere14c0f82014-03-12 04:55:44 +00001780
1781 SemaDiagnosticBuilder diagnoseNotInt(Sema &S, SourceLocation Loc,
1782 QualType T) override {
Larisse Voufo0f1394c2013-06-15 20:17:46 +00001783 return S.Diag(Loc, diag::err_array_size_not_integral)
1784 << S.getLangOpts().CPlusPlus11 << T;
1785 }
Craig Toppere14c0f82014-03-12 04:55:44 +00001786
1787 SemaDiagnosticBuilder diagnoseIncomplete(
1788 Sema &S, SourceLocation Loc, QualType T) override {
Larisse Voufo0f1394c2013-06-15 20:17:46 +00001789 return S.Diag(Loc, diag::err_array_size_incomplete_type)
1790 << T << ArraySize->getSourceRange();
1791 }
Craig Toppere14c0f82014-03-12 04:55:44 +00001792
1793 SemaDiagnosticBuilder diagnoseExplicitConv(
1794 Sema &S, SourceLocation Loc, QualType T, QualType ConvTy) override {
Larisse Voufo0f1394c2013-06-15 20:17:46 +00001795 return S.Diag(Loc, diag::err_array_size_explicit_conversion) << T << ConvTy;
1796 }
Craig Toppere14c0f82014-03-12 04:55:44 +00001797
1798 SemaDiagnosticBuilder noteExplicitConv(
1799 Sema &S, CXXConversionDecl *Conv, QualType ConvTy) override {
Larisse Voufo0f1394c2013-06-15 20:17:46 +00001800 return S.Diag(Conv->getLocation(), diag::note_array_size_conversion)
1801 << ConvTy->isEnumeralType() << ConvTy;
1802 }
Craig Toppere14c0f82014-03-12 04:55:44 +00001803
1804 SemaDiagnosticBuilder diagnoseAmbiguous(
1805 Sema &S, SourceLocation Loc, QualType T) override {
Larisse Voufo0f1394c2013-06-15 20:17:46 +00001806 return S.Diag(Loc, diag::err_array_size_ambiguous_conversion) << T;
1807 }
Craig Toppere14c0f82014-03-12 04:55:44 +00001808
1809 SemaDiagnosticBuilder noteAmbiguous(
1810 Sema &S, CXXConversionDecl *Conv, QualType ConvTy) override {
Larisse Voufo0f1394c2013-06-15 20:17:46 +00001811 return S.Diag(Conv->getLocation(), diag::note_array_size_conversion)
1812 << ConvTy->isEnumeralType() << ConvTy;
1813 }
Richard Smithccc11812013-05-21 19:05:48 +00001814
Alexander Kornienko34eb2072015-04-11 02:00:23 +00001815 SemaDiagnosticBuilder diagnoseConversion(Sema &S, SourceLocation Loc,
1816 QualType T,
1817 QualType ConvTy) override {
Larisse Voufo0f1394c2013-06-15 20:17:46 +00001818 return S.Diag(Loc,
1819 S.getLangOpts().CPlusPlus11
1820 ? diag::warn_cxx98_compat_array_size_conversion
1821 : diag::ext_array_size_conversion)
1822 << T << ConvTy->isEnumeralType() << ConvTy;
1823 }
1824 } SizeDiagnoser(ArraySize);
Richard Smithccc11812013-05-21 19:05:48 +00001825
Larisse Voufo0f1394c2013-06-15 20:17:46 +00001826 ConvertedSize = PerformContextualImplicitConversion(StartLoc, ArraySize,
1827 SizeDiagnoser);
1828 }
Douglas Gregor4799d032010-06-30 00:20:43 +00001829 if (ConvertedSize.isInvalid())
1830 return ExprError();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00001831
Nikola Smiljanic01a75982014-05-29 10:55:11 +00001832 ArraySize = ConvertedSize.get();
John McCall9b80c212012-01-11 00:14:46 +00001833 QualType SizeType = ArraySize->getType();
Larisse Voufo0f1394c2013-06-15 20:17:46 +00001834
Douglas Gregor0bf31402010-10-08 23:50:27 +00001835 if (!SizeType->isIntegralOrUnscopedEnumerationType())
Douglas Gregor4799d032010-06-30 00:20:43 +00001836 return ExprError();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00001837
Richard Smithbcc9bcb2012-02-04 05:35:53 +00001838 // C++98 [expr.new]p7:
1839 // The expression in a direct-new-declarator shall have integral type
1840 // with a non-negative value.
1841 //
Richard Smith0511d232016-10-05 22:41:02 +00001842 // Let's see if this is a constant < 0. If so, we reject it out of hand,
1843 // per CWG1464. Otherwise, if it's not a constant, we must have an
1844 // unparenthesized array type.
Sebastian Redl8d2ccae2009-02-26 14:39:58 +00001845 if (!ArraySize->isValueDependent()) {
1846 llvm::APSInt Value;
Richard Smithf4c51d92012-02-04 09:53:13 +00001847 // We've already performed any required implicit conversion to integer or
1848 // unscoped enumeration type.
Richard Smith0511d232016-10-05 22:41:02 +00001849 // FIXME: Per CWG1464, we are required to check the value prior to
1850 // converting to size_t. This will never find a negative array size in
1851 // C++14 onwards, because Value is always unsigned here!
Richard Smithbcc9bcb2012-02-04 05:35:53 +00001852 if (ArraySize->isIntegerConstantExpr(Value, Context)) {
Richard Smith0511d232016-10-05 22:41:02 +00001853 if (Value.isSigned() && Value.isNegative()) {
1854 return ExprError(Diag(ArraySize->getLocStart(),
1855 diag::err_typecheck_negative_array_size)
1856 << ArraySize->getSourceRange());
1857 }
1858
1859 if (!AllocType->isDependentType()) {
Richard Smithbcc9bcb2012-02-04 05:35:53 +00001860 unsigned ActiveSizeBits =
1861 ConstantArrayType::getNumAddressingBits(Context, AllocType, Value);
Richard Smith0511d232016-10-05 22:41:02 +00001862 if (ActiveSizeBits > ConstantArrayType::getMaxSizeBits(Context))
1863 return ExprError(Diag(ArraySize->getLocStart(),
1864 diag::err_array_too_large)
1865 << Value.toString(10)
1866 << ArraySize->getSourceRange());
Douglas Gregorcaa1bf42010-08-18 00:39:00 +00001867 }
Richard Smith0511d232016-10-05 22:41:02 +00001868
1869 KnownArraySize = Value.getZExtValue();
Douglas Gregorf2753b32010-07-13 15:54:32 +00001870 } else if (TypeIdParens.isValid()) {
1871 // Can't have dynamic array size when the type-id is in parentheses.
1872 Diag(ArraySize->getLocStart(), diag::ext_new_paren_array_nonconst)
1873 << ArraySize->getSourceRange()
1874 << FixItHint::CreateRemoval(TypeIdParens.getBegin())
1875 << FixItHint::CreateRemoval(TypeIdParens.getEnd());
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00001876
Douglas Gregorf2753b32010-07-13 15:54:32 +00001877 TypeIdParens = SourceRange();
Sebastian Redl8d2ccae2009-02-26 14:39:58 +00001878 }
Sebastian Redl351bb782008-12-02 14:43:59 +00001879 }
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00001880
John McCall036f2f62011-05-15 07:14:44 +00001881 // Note that we do *not* convert the argument in any way. It can
1882 // be signed, larger than size_t, whatever.
Sebastian Redl351bb782008-12-02 14:43:59 +00001883 }
Sebastian Redlbd150f42008-11-21 19:14:01 +00001884
Craig Topperc3ec1492014-05-26 06:22:03 +00001885 FunctionDecl *OperatorNew = nullptr;
1886 FunctionDecl *OperatorDelete = nullptr;
Richard Smithb2f0f052016-10-10 18:54:32 +00001887 unsigned Alignment =
1888 AllocType->isDependentType() ? 0 : Context.getTypeAlign(AllocType);
1889 unsigned NewAlignment = Context.getTargetInfo().getNewAlign();
1890 bool PassAlignment = getLangOpts().AlignedAllocation &&
1891 Alignment > NewAlignment;
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00001892
Sebastian Redl8d2ccae2009-02-26 14:39:58 +00001893 if (!AllocType->isDependentType() &&
Dmitri Gribenkobe022102013-05-10 13:22:23 +00001894 !Expr::hasAnyTypeDependentArguments(PlacementArgs) &&
Sebastian Redl8d2ccae2009-02-26 14:39:58 +00001895 FindAllocationFunctions(StartLoc,
Sebastian Redl1df2bbe2009-02-09 18:24:27 +00001896 SourceRange(PlacementLParen, PlacementRParen),
Richard Smithb2f0f052016-10-10 18:54:32 +00001897 UseGlobal, AllocType, ArraySize, PassAlignment,
1898 PlacementArgs, OperatorNew, OperatorDelete))
Sebastian Redl6d4256c2009-03-15 17:47:39 +00001899 return ExprError();
John McCall284c48f2011-01-27 09:37:56 +00001900
1901 // If this is an array allocation, compute whether the usual array
1902 // deallocation function for the type has a size_t parameter.
1903 bool UsualArrayDeleteWantsSize = false;
1904 if (ArraySize && !AllocType->isDependentType())
Richard Smithb2f0f052016-10-10 18:54:32 +00001905 UsualArrayDeleteWantsSize =
1906 doesUsualArrayDeleteWantSize(*this, StartLoc, AllocType);
John McCall284c48f2011-01-27 09:37:56 +00001907
Chris Lattner0e62c1c2011-07-23 10:55:15 +00001908 SmallVector<Expr *, 8> AllPlaceArgs;
Fariborz Jahanian1eab66c2009-11-19 18:39:40 +00001909 if (OperatorNew) {
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00001910 const FunctionProtoType *Proto =
Richard Smithd6f9e732014-05-13 19:56:21 +00001911 OperatorNew->getType()->getAs<FunctionProtoType>();
1912 VariadicCallType CallType = Proto->isVariadic() ? VariadicFunction
1913 : VariadicDoesNotApply;
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00001914
Richard Smithd6f9e732014-05-13 19:56:21 +00001915 // We've already converted the placement args, just fill in any default
1916 // arguments. Skip the first parameter because we don't have a corresponding
Richard Smithb2f0f052016-10-10 18:54:32 +00001917 // argument. Skip the second parameter too if we're passing in the
1918 // alignment; we've already filled it in.
1919 if (GatherArgumentsForCall(PlacementLParen, OperatorNew, Proto,
1920 PassAlignment ? 2 : 1, PlacementArgs,
1921 AllPlaceArgs, CallType))
Fariborz Jahanian835026e2009-11-24 18:29:37 +00001922 return ExprError();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00001923
Dmitri Gribenkobe022102013-05-10 13:22:23 +00001924 if (!AllPlaceArgs.empty())
1925 PlacementArgs = AllPlaceArgs;
Eli Friedmanff4b4072012-02-18 04:48:30 +00001926
Richard Smithd6f9e732014-05-13 19:56:21 +00001927 // FIXME: This is wrong: PlacementArgs misses out the first (size) argument.
Dmitri Gribenkobe022102013-05-10 13:22:23 +00001928 DiagnoseSentinelCalls(OperatorNew, PlacementLParen, PlacementArgs);
Eli Friedmanff4b4072012-02-18 04:48:30 +00001929
1930 // FIXME: Missing call to CheckFunctionCall or equivalent
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00001931
Richard Smithb2f0f052016-10-10 18:54:32 +00001932 // Warn if the type is over-aligned and is being allocated by (unaligned)
1933 // global operator new.
1934 if (PlacementArgs.empty() && !PassAlignment &&
1935 (OperatorNew->isImplicit() ||
1936 (OperatorNew->getLocStart().isValid() &&
1937 getSourceManager().isInSystemHeader(OperatorNew->getLocStart())))) {
1938 if (Alignment > NewAlignment)
Nick Lewycky411fc652012-01-24 21:15:41 +00001939 Diag(StartLoc, diag::warn_overaligned_type)
1940 << AllocType
Richard Smithb2f0f052016-10-10 18:54:32 +00001941 << unsigned(Alignment / Context.getCharWidth())
1942 << unsigned(NewAlignment / Context.getCharWidth());
Nick Lewycky411fc652012-01-24 21:15:41 +00001943 }
1944 }
1945
Sebastian Redl6047f072012-02-16 12:22:20 +00001946 // Array 'new' can't have any initializers except empty parentheses.
Sebastian Redlb8fc4772012-02-16 12:59:47 +00001947 // Initializer lists are also allowed, in C++11. Rely on the parser for the
1948 // dialect distinction.
Richard Smith0511d232016-10-05 22:41:02 +00001949 if (ArraySize && !isLegalArrayNewInitializer(initStyle, Initializer)) {
1950 SourceRange InitRange(Inits[0]->getLocStart(),
1951 Inits[NumInits - 1]->getLocEnd());
1952 Diag(StartLoc, diag::err_new_array_init_args) << InitRange;
1953 return ExprError();
Anders Carlssonc6bb0e12010-05-03 15:45:23 +00001954 }
1955
Richard Smithdd2ca572012-11-26 08:32:48 +00001956 // If we can perform the initialization, and we've not already done so,
1957 // do it now.
Douglas Gregor85dabae2009-12-16 01:38:02 +00001958 if (!AllocType->isDependentType() &&
Ahmed Charlesb24b9aa2012-02-25 11:00:22 +00001959 !Expr::hasAnyTypeDependentArguments(
Richard Smithc6abd962014-07-25 01:12:44 +00001960 llvm::makeArrayRef(Inits, NumInits))) {
Richard Smith0511d232016-10-05 22:41:02 +00001961 // The type we initialize is the complete type, including the array bound.
1962 QualType InitType;
1963 if (KnownArraySize)
1964 InitType = Context.getConstantArrayType(
1965 AllocType, llvm::APInt(Context.getTypeSize(Context.getSizeType()),
1966 *KnownArraySize),
1967 ArrayType::Normal, 0);
1968 else if (ArraySize)
1969 InitType =
1970 Context.getIncompleteArrayType(AllocType, ArrayType::Normal, 0);
1971 else
1972 InitType = AllocType;
1973
Douglas Gregor85dabae2009-12-16 01:38:02 +00001974 InitializedEntity Entity
Sebastian Redlb8fc4772012-02-16 12:59:47 +00001975 = InitializedEntity::InitializeNew(StartLoc, InitType);
Richard Smith0511d232016-10-05 22:41:02 +00001976 InitializationSequence InitSeq(*this, Entity, Kind,
1977 MultiExprArg(Inits, NumInits));
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00001978 ExprResult FullInit = InitSeq.Perform(*this, Entity, Kind,
Sebastian Redl6047f072012-02-16 12:22:20 +00001979 MultiExprArg(Inits, NumInits));
Douglas Gregor85dabae2009-12-16 01:38:02 +00001980 if (FullInit.isInvalid())
1981 return ExprError();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00001982
Sebastian Redl6047f072012-02-16 12:22:20 +00001983 // FullInit is our initializer; strip off CXXBindTemporaryExprs, because
1984 // we don't want the initialized object to be destructed.
Richard Smith0511d232016-10-05 22:41:02 +00001985 // FIXME: We should not create these in the first place.
Sebastian Redl6047f072012-02-16 12:22:20 +00001986 if (CXXBindTemporaryExpr *Binder =
1987 dyn_cast_or_null<CXXBindTemporaryExpr>(FullInit.get()))
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00001988 FullInit = Binder->getSubExpr();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00001989
Nikola Smiljanic01a75982014-05-29 10:55:11 +00001990 Initializer = FullInit.get();
Sebastian Redlbd150f42008-11-21 19:14:01 +00001991 }
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00001992
Douglas Gregor6642ca22010-02-26 05:06:18 +00001993 // Mark the new and delete operators as referenced.
Nick Lewyckya096b142013-02-12 08:08:54 +00001994 if (OperatorNew) {
Richard Smith22262ab2013-05-04 06:44:46 +00001995 if (DiagnoseUseOfDecl(OperatorNew, StartLoc))
1996 return ExprError();
Eli Friedmanfa0df832012-02-02 03:46:19 +00001997 MarkFunctionReferenced(StartLoc, OperatorNew);
Nick Lewyckya096b142013-02-12 08:08:54 +00001998 }
1999 if (OperatorDelete) {
Richard Smith22262ab2013-05-04 06:44:46 +00002000 if (DiagnoseUseOfDecl(OperatorDelete, StartLoc))
2001 return ExprError();
Eli Friedmanfa0df832012-02-02 03:46:19 +00002002 MarkFunctionReferenced(StartLoc, OperatorDelete);
Nick Lewyckya096b142013-02-12 08:08:54 +00002003 }
Douglas Gregor6642ca22010-02-26 05:06:18 +00002004
John McCall928a2572011-07-13 20:12:57 +00002005 // C++0x [expr.new]p17:
2006 // If the new expression creates an array of objects of class type,
2007 // access and ambiguity control are done for the destructor.
David Blaikie631a4862012-03-10 23:40:02 +00002008 QualType BaseAllocType = Context.getBaseElementType(AllocType);
2009 if (ArraySize && !BaseAllocType->isDependentType()) {
2010 if (const RecordType *BaseRecordType = BaseAllocType->getAs<RecordType>()) {
2011 if (CXXDestructorDecl *dtor = LookupDestructor(
2012 cast<CXXRecordDecl>(BaseRecordType->getDecl()))) {
2013 MarkFunctionReferenced(StartLoc, dtor);
Simon Pilgrim75c26882016-09-30 14:25:09 +00002014 CheckDestructorAccess(StartLoc, dtor,
David Blaikie631a4862012-03-10 23:40:02 +00002015 PDiag(diag::err_access_dtor)
2016 << BaseAllocType);
Richard Smith22262ab2013-05-04 06:44:46 +00002017 if (DiagnoseUseOfDecl(dtor, StartLoc))
2018 return ExprError();
David Blaikie631a4862012-03-10 23:40:02 +00002019 }
John McCall928a2572011-07-13 20:12:57 +00002020 }
2021 }
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00002022
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00002023 return new (Context)
Richard Smithb2f0f052016-10-10 18:54:32 +00002024 CXXNewExpr(Context, UseGlobal, OperatorNew, OperatorDelete, PassAlignment,
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00002025 UsualArrayDeleteWantsSize, PlacementArgs, TypeIdParens,
2026 ArraySize, initStyle, Initializer, ResultType, AllocTypeInfo,
2027 Range, DirectInitRange);
Sebastian Redlbd150f42008-11-21 19:14:01 +00002028}
2029
Sebastian Redl6047f072012-02-16 12:22:20 +00002030/// \brief Checks that a type is suitable as the allocated type
Sebastian Redlbd150f42008-11-21 19:14:01 +00002031/// in a new-expression.
Douglas Gregord0fefba2009-05-21 00:00:09 +00002032bool Sema::CheckAllocatedType(QualType AllocType, SourceLocation Loc,
Mike Stump11289f42009-09-09 15:08:12 +00002033 SourceRange R) {
Sebastian Redlbd150f42008-11-21 19:14:01 +00002034 // C++ 5.3.4p1: "[The] type shall be a complete object type, but not an
2035 // abstract class type or array thereof.
Douglas Gregorac1fb652009-03-24 19:52:54 +00002036 if (AllocType->isFunctionType())
Douglas Gregord0fefba2009-05-21 00:00:09 +00002037 return Diag(Loc, diag::err_bad_new_type)
2038 << AllocType << 0 << R;
Douglas Gregorac1fb652009-03-24 19:52:54 +00002039 else if (AllocType->isReferenceType())
Douglas Gregord0fefba2009-05-21 00:00:09 +00002040 return Diag(Loc, diag::err_bad_new_type)
2041 << AllocType << 1 << R;
Douglas Gregorac1fb652009-03-24 19:52:54 +00002042 else if (!AllocType->isDependentType() &&
Douglas Gregor7bfb2d02012-05-04 16:32:21 +00002043 RequireCompleteType(Loc, AllocType, diag::err_new_incomplete_type,R))
Sebastian Redlbd150f42008-11-21 19:14:01 +00002044 return true;
Douglas Gregord0fefba2009-05-21 00:00:09 +00002045 else if (RequireNonAbstractType(Loc, AllocType,
Douglas Gregorac1fb652009-03-24 19:52:54 +00002046 diag::err_allocation_of_abstract_type))
2047 return true;
Douglas Gregor3999e152010-10-06 16:00:31 +00002048 else if (AllocType->isVariablyModifiedType())
2049 return Diag(Loc, diag::err_variably_modified_new_type)
2050 << AllocType;
Yaxun Liub34ec822017-04-11 17:24:23 +00002051 else if (AllocType.getAddressSpace())
Douglas Gregor39d1a092011-04-15 19:46:20 +00002052 return Diag(Loc, diag::err_address_space_qualified_new)
Yaxun Liub34ec822017-04-11 17:24:23 +00002053 << AllocType.getUnqualifiedType()
2054 << AllocType.getQualifiers().getAddressSpaceAttributePrintValue();
David Blaikiebbafb8a2012-03-11 07:00:24 +00002055 else if (getLangOpts().ObjCAutoRefCount) {
John McCall31168b02011-06-15 23:02:42 +00002056 if (const ArrayType *AT = Context.getAsArrayType(AllocType)) {
2057 QualType BaseAllocType = Context.getBaseElementType(AT);
2058 if (BaseAllocType.getObjCLifetime() == Qualifiers::OCL_None &&
2059 BaseAllocType->isObjCLifetimeType())
Argyrios Kyrtzidiscff00d92011-06-24 00:08:59 +00002060 return Diag(Loc, diag::err_arc_new_array_without_ownership)
John McCall31168b02011-06-15 23:02:42 +00002061 << BaseAllocType;
2062 }
2063 }
Simon Pilgrim75c26882016-09-30 14:25:09 +00002064
Sebastian Redlbd150f42008-11-21 19:14:01 +00002065 return false;
2066}
2067
Richard Smithb2f0f052016-10-10 18:54:32 +00002068static bool
2069resolveAllocationOverload(Sema &S, LookupResult &R, SourceRange Range,
2070 SmallVectorImpl<Expr *> &Args, bool &PassAlignment,
2071 FunctionDecl *&Operator,
2072 OverloadCandidateSet *AlignedCandidates = nullptr,
2073 Expr *AlignArg = nullptr) {
2074 OverloadCandidateSet Candidates(R.getNameLoc(),
2075 OverloadCandidateSet::CSK_Normal);
2076 for (LookupResult::iterator Alloc = R.begin(), AllocEnd = R.end();
2077 Alloc != AllocEnd; ++Alloc) {
2078 // Even member operator new/delete are implicitly treated as
2079 // static, so don't use AddMemberCandidate.
2080 NamedDecl *D = (*Alloc)->getUnderlyingDecl();
2081
2082 if (FunctionTemplateDecl *FnTemplate = dyn_cast<FunctionTemplateDecl>(D)) {
2083 S.AddTemplateOverloadCandidate(FnTemplate, Alloc.getPair(),
2084 /*ExplicitTemplateArgs=*/nullptr, Args,
2085 Candidates,
2086 /*SuppressUserConversions=*/false);
2087 continue;
2088 }
2089
2090 FunctionDecl *Fn = cast<FunctionDecl>(D);
2091 S.AddOverloadCandidate(Fn, Alloc.getPair(), Args, Candidates,
2092 /*SuppressUserConversions=*/false);
2093 }
2094
2095 // Do the resolution.
2096 OverloadCandidateSet::iterator Best;
2097 switch (Candidates.BestViableFunction(S, R.getNameLoc(), Best)) {
2098 case OR_Success: {
2099 // Got one!
2100 FunctionDecl *FnDecl = Best->Function;
2101 if (S.CheckAllocationAccess(R.getNameLoc(), Range, R.getNamingClass(),
2102 Best->FoundDecl) == Sema::AR_inaccessible)
2103 return true;
2104
2105 Operator = FnDecl;
Douglas Gregor6642ca22010-02-26 05:06:18 +00002106 return false;
Richard Smithb2f0f052016-10-10 18:54:32 +00002107 }
Douglas Gregor6642ca22010-02-26 05:06:18 +00002108
Richard Smithb2f0f052016-10-10 18:54:32 +00002109 case OR_No_Viable_Function:
2110 // C++17 [expr.new]p13:
2111 // If no matching function is found and the allocated object type has
2112 // new-extended alignment, the alignment argument is removed from the
2113 // argument list, and overload resolution is performed again.
2114 if (PassAlignment) {
2115 PassAlignment = false;
2116 AlignArg = Args[1];
2117 Args.erase(Args.begin() + 1);
2118 return resolveAllocationOverload(S, R, Range, Args, PassAlignment,
2119 Operator, &Candidates, AlignArg);
2120 }
Douglas Gregor6642ca22010-02-26 05:06:18 +00002121
Richard Smithb2f0f052016-10-10 18:54:32 +00002122 // MSVC will fall back on trying to find a matching global operator new
2123 // if operator new[] cannot be found. Also, MSVC will leak by not
2124 // generating a call to operator delete or operator delete[], but we
2125 // will not replicate that bug.
2126 // FIXME: Find out how this interacts with the std::align_val_t fallback
2127 // once MSVC implements it.
2128 if (R.getLookupName().getCXXOverloadedOperator() == OO_Array_New &&
2129 S.Context.getLangOpts().MSVCCompat) {
2130 R.clear();
2131 R.setLookupName(S.Context.DeclarationNames.getCXXOperatorName(OO_New));
2132 S.LookupQualifiedName(R, S.Context.getTranslationUnitDecl());
2133 // FIXME: This will give bad diagnostics pointing at the wrong functions.
2134 return resolveAllocationOverload(S, R, Range, Args, PassAlignment,
2135 Operator, nullptr);
2136 }
Richard Smith1cdec012013-09-29 04:40:38 +00002137
Richard Smithb2f0f052016-10-10 18:54:32 +00002138 S.Diag(R.getNameLoc(), diag::err_ovl_no_viable_function_in_call)
2139 << R.getLookupName() << Range;
2140
2141 // If we have aligned candidates, only note the align_val_t candidates
2142 // from AlignedCandidates and the non-align_val_t candidates from
2143 // Candidates.
2144 if (AlignedCandidates) {
2145 auto IsAligned = [](OverloadCandidate &C) {
2146 return C.Function->getNumParams() > 1 &&
2147 C.Function->getParamDecl(1)->getType()->isAlignValT();
2148 };
2149 auto IsUnaligned = [&](OverloadCandidate &C) { return !IsAligned(C); };
2150
2151 // This was an overaligned allocation, so list the aligned candidates
2152 // first.
2153 Args.insert(Args.begin() + 1, AlignArg);
2154 AlignedCandidates->NoteCandidates(S, OCD_AllCandidates, Args, "",
2155 R.getNameLoc(), IsAligned);
2156 Args.erase(Args.begin() + 1);
2157 Candidates.NoteCandidates(S, OCD_AllCandidates, Args, "", R.getNameLoc(),
2158 IsUnaligned);
2159 } else {
2160 Candidates.NoteCandidates(S, OCD_AllCandidates, Args);
2161 }
Richard Smith1cdec012013-09-29 04:40:38 +00002162 return true;
2163
Richard Smithb2f0f052016-10-10 18:54:32 +00002164 case OR_Ambiguous:
2165 S.Diag(R.getNameLoc(), diag::err_ovl_ambiguous_call)
2166 << R.getLookupName() << Range;
2167 Candidates.NoteCandidates(S, OCD_ViableCandidates, Args);
2168 return true;
2169
2170 case OR_Deleted: {
2171 S.Diag(R.getNameLoc(), diag::err_ovl_deleted_call)
2172 << Best->Function->isDeleted()
2173 << R.getLookupName()
2174 << S.getDeletedOrUnavailableSuffix(Best->Function)
2175 << Range;
2176 Candidates.NoteCandidates(S, OCD_AllCandidates, Args);
2177 return true;
2178 }
2179 }
2180 llvm_unreachable("Unreachable, bad result from BestViableFunction");
Douglas Gregor6642ca22010-02-26 05:06:18 +00002181}
2182
Richard Smithb2f0f052016-10-10 18:54:32 +00002183
Sebastian Redlfaf68082008-12-03 20:26:15 +00002184/// FindAllocationFunctions - Finds the overloads of operator new and delete
2185/// that are appropriate for the allocation.
Sebastian Redl1df2bbe2009-02-09 18:24:27 +00002186bool Sema::FindAllocationFunctions(SourceLocation StartLoc, SourceRange Range,
2187 bool UseGlobal, QualType AllocType,
Richard Smithb2f0f052016-10-10 18:54:32 +00002188 bool IsArray, bool &PassAlignment,
2189 MultiExprArg PlaceArgs,
Sebastian Redlfaf68082008-12-03 20:26:15 +00002190 FunctionDecl *&OperatorNew,
Mike Stump11289f42009-09-09 15:08:12 +00002191 FunctionDecl *&OperatorDelete) {
Sebastian Redlfaf68082008-12-03 20:26:15 +00002192 // --- Choosing an allocation function ---
2193 // C++ 5.3.4p8 - 14 & 18
2194 // 1) If UseGlobal is true, only look in the global scope. Else, also look
2195 // in the scope of the allocated class.
2196 // 2) If an array size is given, look for operator new[], else look for
2197 // operator new.
2198 // 3) The first argument is always size_t. Append the arguments from the
2199 // placement form.
Sebastian Redlfaf68082008-12-03 20:26:15 +00002200
Richard Smithb2f0f052016-10-10 18:54:32 +00002201 SmallVector<Expr*, 8> AllocArgs;
2202 AllocArgs.reserve((PassAlignment ? 2 : 1) + PlaceArgs.size());
2203
2204 // We don't care about the actual value of these arguments.
Sebastian Redlfaf68082008-12-03 20:26:15 +00002205 // FIXME: Should the Sema create the expression and embed it in the syntax
2206 // tree? Or should the consumer just recalculate the value?
Richard Smithb2f0f052016-10-10 18:54:32 +00002207 // FIXME: Using a dummy value will interact poorly with attribute enable_if.
Argyrios Kyrtzidis43b20572010-08-28 09:06:06 +00002208 IntegerLiteral Size(Context, llvm::APInt::getNullValue(
Douglas Gregore8bbc122011-09-02 00:18:52 +00002209 Context.getTargetInfo().getPointerWidth(0)),
Anders Carlssona471db02009-08-16 20:29:29 +00002210 Context.getSizeType(),
2211 SourceLocation());
Richard Smithb2f0f052016-10-10 18:54:32 +00002212 AllocArgs.push_back(&Size);
2213
2214 QualType AlignValT = Context.VoidTy;
2215 if (PassAlignment) {
2216 DeclareGlobalNewDelete();
2217 AlignValT = Context.getTypeDeclType(getStdAlignValT());
2218 }
2219 CXXScalarValueInitExpr Align(AlignValT, nullptr, SourceLocation());
2220 if (PassAlignment)
2221 AllocArgs.push_back(&Align);
2222
2223 AllocArgs.insert(AllocArgs.end(), PlaceArgs.begin(), PlaceArgs.end());
Sebastian Redlfaf68082008-12-03 20:26:15 +00002224
Douglas Gregor6642ca22010-02-26 05:06:18 +00002225 // C++ [expr.new]p8:
2226 // If the allocated type is a non-array type, the allocation
NAKAMURA Takumi7c288862011-01-27 07:09:49 +00002227 // function's name is operator new and the deallocation function's
Douglas Gregor6642ca22010-02-26 05:06:18 +00002228 // name is operator delete. If the allocated type is an array
NAKAMURA Takumi7c288862011-01-27 07:09:49 +00002229 // type, the allocation function's name is operator new[] and the
2230 // deallocation function's name is operator delete[].
Sebastian Redlfaf68082008-12-03 20:26:15 +00002231 DeclarationName NewName = Context.DeclarationNames.getCXXOperatorName(
Richard Smithb2f0f052016-10-10 18:54:32 +00002232 IsArray ? OO_Array_New : OO_New);
Douglas Gregor6642ca22010-02-26 05:06:18 +00002233
Argyrios Kyrtzidis1194d5e2010-08-25 23:14:56 +00002234 QualType AllocElemType = Context.getBaseElementType(AllocType);
2235
Richard Smithb2f0f052016-10-10 18:54:32 +00002236 // Find the allocation function.
2237 {
2238 LookupResult R(*this, NewName, StartLoc, LookupOrdinaryName);
2239
2240 // C++1z [expr.new]p9:
2241 // If the new-expression begins with a unary :: operator, the allocation
2242 // function's name is looked up in the global scope. Otherwise, if the
2243 // allocated type is a class type T or array thereof, the allocation
2244 // function's name is looked up in the scope of T.
2245 if (AllocElemType->isRecordType() && !UseGlobal)
2246 LookupQualifiedName(R, AllocElemType->getAsCXXRecordDecl());
2247
2248 // We can see ambiguity here if the allocation function is found in
2249 // multiple base classes.
2250 if (R.isAmbiguous())
2251 return true;
2252
2253 // If this lookup fails to find the name, or if the allocated type is not
2254 // a class type, the allocation function's name is looked up in the
2255 // global scope.
2256 if (R.empty())
2257 LookupQualifiedName(R, Context.getTranslationUnitDecl());
2258
2259 assert(!R.empty() && "implicitly declared allocation functions not found");
2260 assert(!R.isAmbiguous() && "global allocation functions are ambiguous");
2261
2262 // We do our own custom access checks below.
2263 R.suppressDiagnostics();
2264
2265 if (resolveAllocationOverload(*this, R, Range, AllocArgs, PassAlignment,
2266 OperatorNew))
Sebastian Redlfaf68082008-12-03 20:26:15 +00002267 return true;
Sebastian Redlfaf68082008-12-03 20:26:15 +00002268 }
Aaron Ballman324fbee2013-05-30 01:55:39 +00002269
Richard Smithb2f0f052016-10-10 18:54:32 +00002270 // We don't need an operator delete if we're running under -fno-exceptions.
David Blaikiebbafb8a2012-03-11 07:00:24 +00002271 if (!getLangOpts().Exceptions) {
Craig Topperc3ec1492014-05-26 06:22:03 +00002272 OperatorDelete = nullptr;
John McCall0f55a032010-04-20 02:18:25 +00002273 return false;
2274 }
2275
Richard Smithb2f0f052016-10-10 18:54:32 +00002276 // Note, the name of OperatorNew might have been changed from array to
2277 // non-array by resolveAllocationOverload.
2278 DeclarationName DeleteName = Context.DeclarationNames.getCXXOperatorName(
2279 OperatorNew->getDeclName().getCXXOverloadedOperator() == OO_Array_New
2280 ? OO_Array_Delete
2281 : OO_Delete);
2282
Douglas Gregor6642ca22010-02-26 05:06:18 +00002283 // C++ [expr.new]p19:
2284 //
2285 // If the new-expression begins with a unary :: operator, the
NAKAMURA Takumi7c288862011-01-27 07:09:49 +00002286 // deallocation function's name is looked up in the global
Douglas Gregor6642ca22010-02-26 05:06:18 +00002287 // scope. Otherwise, if the allocated type is a class type T or an
NAKAMURA Takumi7c288862011-01-27 07:09:49 +00002288 // array thereof, the deallocation function's name is looked up in
Douglas Gregor6642ca22010-02-26 05:06:18 +00002289 // the scope of T. If this lookup fails to find the name, or if
2290 // the allocated type is not a class type or array thereof, the
NAKAMURA Takumi7c288862011-01-27 07:09:49 +00002291 // deallocation function's name is looked up in the global scope.
Douglas Gregor6642ca22010-02-26 05:06:18 +00002292 LookupResult FoundDelete(*this, DeleteName, StartLoc, LookupOrdinaryName);
Argyrios Kyrtzidis1194d5e2010-08-25 23:14:56 +00002293 if (AllocElemType->isRecordType() && !UseGlobal) {
Douglas Gregor6642ca22010-02-26 05:06:18 +00002294 CXXRecordDecl *RD
Argyrios Kyrtzidis1194d5e2010-08-25 23:14:56 +00002295 = cast<CXXRecordDecl>(AllocElemType->getAs<RecordType>()->getDecl());
Douglas Gregor6642ca22010-02-26 05:06:18 +00002296 LookupQualifiedName(FoundDelete, RD);
2297 }
John McCallfb6f5262010-03-18 08:19:33 +00002298 if (FoundDelete.isAmbiguous())
2299 return true; // FIXME: clean up expressions?
Douglas Gregor6642ca22010-02-26 05:06:18 +00002300
Richard Smithb2f0f052016-10-10 18:54:32 +00002301 bool FoundGlobalDelete = FoundDelete.empty();
Douglas Gregor6642ca22010-02-26 05:06:18 +00002302 if (FoundDelete.empty()) {
2303 DeclareGlobalNewDelete();
2304 LookupQualifiedName(FoundDelete, Context.getTranslationUnitDecl());
2305 }
2306
2307 FoundDelete.suppressDiagnostics();
John McCalla0296f72010-03-19 07:35:19 +00002308
Chris Lattner0e62c1c2011-07-23 10:55:15 +00002309 SmallVector<std::pair<DeclAccessPair,FunctionDecl*>, 2> Matches;
John McCalla0296f72010-03-19 07:35:19 +00002310
John McCalld3be2c82010-09-14 21:34:24 +00002311 // Whether we're looking for a placement operator delete is dictated
2312 // by whether we selected a placement operator new, not by whether
2313 // we had explicit placement arguments. This matters for things like
2314 // struct A { void *operator new(size_t, int = 0); ... };
2315 // A *a = new A()
Richard Smithb2f0f052016-10-10 18:54:32 +00002316 //
2317 // We don't have any definition for what a "placement allocation function"
2318 // is, but we assume it's any allocation function whose
2319 // parameter-declaration-clause is anything other than (size_t).
2320 //
2321 // FIXME: Should (size_t, std::align_val_t) also be considered non-placement?
2322 // This affects whether an exception from the constructor of an overaligned
2323 // type uses the sized or non-sized form of aligned operator delete.
2324 bool isPlacementNew = !PlaceArgs.empty() || OperatorNew->param_size() != 1 ||
2325 OperatorNew->isVariadic();
John McCalld3be2c82010-09-14 21:34:24 +00002326
2327 if (isPlacementNew) {
Douglas Gregor6642ca22010-02-26 05:06:18 +00002328 // C++ [expr.new]p20:
2329 // A declaration of a placement deallocation function matches the
2330 // declaration of a placement allocation function if it has the
2331 // same number of parameters and, after parameter transformations
2332 // (8.3.5), all parameter types except the first are
2333 // identical. [...]
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00002334 //
Douglas Gregor6642ca22010-02-26 05:06:18 +00002335 // To perform this comparison, we compute the function type that
2336 // the deallocation function should have, and use that type both
2337 // for template argument deduction and for comparison purposes.
2338 QualType ExpectedFunctionType;
2339 {
2340 const FunctionProtoType *Proto
2341 = OperatorNew->getType()->getAs<FunctionProtoType>();
John McCalldb40c7f2010-12-14 08:05:40 +00002342
Chris Lattner0e62c1c2011-07-23 10:55:15 +00002343 SmallVector<QualType, 4> ArgTypes;
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00002344 ArgTypes.push_back(Context.VoidPtrTy);
Alp Toker9cacbab2014-01-20 20:26:09 +00002345 for (unsigned I = 1, N = Proto->getNumParams(); I < N; ++I)
2346 ArgTypes.push_back(Proto->getParamType(I));
Douglas Gregor6642ca22010-02-26 05:06:18 +00002347
John McCalldb40c7f2010-12-14 08:05:40 +00002348 FunctionProtoType::ExtProtoInfo EPI;
Richard Smithb2f0f052016-10-10 18:54:32 +00002349 // FIXME: This is not part of the standard's rule.
John McCalldb40c7f2010-12-14 08:05:40 +00002350 EPI.Variadic = Proto->isVariadic();
2351
Douglas Gregor6642ca22010-02-26 05:06:18 +00002352 ExpectedFunctionType
Jordan Rose5c382722013-03-08 21:51:21 +00002353 = Context.getFunctionType(Context.VoidTy, ArgTypes, EPI);
Douglas Gregor6642ca22010-02-26 05:06:18 +00002354 }
2355
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00002356 for (LookupResult::iterator D = FoundDelete.begin(),
Douglas Gregor6642ca22010-02-26 05:06:18 +00002357 DEnd = FoundDelete.end();
2358 D != DEnd; ++D) {
Craig Topperc3ec1492014-05-26 06:22:03 +00002359 FunctionDecl *Fn = nullptr;
Richard Smithbaa47832016-12-01 02:11:49 +00002360 if (FunctionTemplateDecl *FnTmpl =
2361 dyn_cast<FunctionTemplateDecl>((*D)->getUnderlyingDecl())) {
Douglas Gregor6642ca22010-02-26 05:06:18 +00002362 // Perform template argument deduction to try to match the
2363 // expected function type.
Craig Toppere6706e42012-09-19 02:26:47 +00002364 TemplateDeductionInfo Info(StartLoc);
Craig Topperc3ec1492014-05-26 06:22:03 +00002365 if (DeduceTemplateArguments(FnTmpl, nullptr, ExpectedFunctionType, Fn,
2366 Info))
Douglas Gregor6642ca22010-02-26 05:06:18 +00002367 continue;
2368 } else
2369 Fn = cast<FunctionDecl>((*D)->getUnderlyingDecl());
2370
Richard Smithbaa47832016-12-01 02:11:49 +00002371 if (Context.hasSameType(adjustCCAndNoReturn(Fn->getType(),
2372 ExpectedFunctionType,
2373 /*AdjustExcpetionSpec*/true),
2374 ExpectedFunctionType))
John McCalla0296f72010-03-19 07:35:19 +00002375 Matches.push_back(std::make_pair(D.getPair(), Fn));
Douglas Gregor6642ca22010-02-26 05:06:18 +00002376 }
Daniel Jaspere9abe642016-10-10 14:13:55 +00002377
Richard Smithb2f0f052016-10-10 18:54:32 +00002378 if (getLangOpts().CUDA)
2379 EraseUnwantedCUDAMatches(dyn_cast<FunctionDecl>(CurContext), Matches);
2380 } else {
Richard Smith1cdec012013-09-29 04:40:38 +00002381 // C++1y [expr.new]p22:
2382 // For a non-placement allocation function, the normal deallocation
2383 // function lookup is used
Richard Smithb2f0f052016-10-10 18:54:32 +00002384 //
2385 // Per [expr.delete]p10, this lookup prefers a member operator delete
2386 // without a size_t argument, but prefers a non-member operator delete
2387 // with a size_t where possible (which it always is in this case).
2388 llvm::SmallVector<UsualDeallocFnInfo, 4> BestDeallocFns;
2389 UsualDeallocFnInfo Selected = resolveDeallocationOverload(
2390 *this, FoundDelete, /*WantSize*/ FoundGlobalDelete,
2391 /*WantAlign*/ hasNewExtendedAlignment(*this, AllocElemType),
2392 &BestDeallocFns);
2393 if (Selected)
2394 Matches.push_back(std::make_pair(Selected.Found, Selected.FD));
2395 else {
2396 // If we failed to select an operator, all remaining functions are viable
2397 // but ambiguous.
2398 for (auto Fn : BestDeallocFns)
2399 Matches.push_back(std::make_pair(Fn.Found, Fn.FD));
Richard Smith1cdec012013-09-29 04:40:38 +00002400 }
Douglas Gregor6642ca22010-02-26 05:06:18 +00002401 }
2402
2403 // C++ [expr.new]p20:
2404 // [...] If the lookup finds a single matching deallocation
2405 // function, that function will be called; otherwise, no
2406 // deallocation function will be called.
2407 if (Matches.size() == 1) {
John McCalla0296f72010-03-19 07:35:19 +00002408 OperatorDelete = Matches[0].second;
Douglas Gregor6642ca22010-02-26 05:06:18 +00002409
Richard Smithb2f0f052016-10-10 18:54:32 +00002410 // C++1z [expr.new]p23:
2411 // If the lookup finds a usual deallocation function (3.7.4.2)
2412 // with a parameter of type std::size_t and that function, considered
Douglas Gregor6642ca22010-02-26 05:06:18 +00002413 // as a placement deallocation function, would have been
2414 // selected as a match for the allocation function, the program
2415 // is ill-formed.
Richard Smithb2f0f052016-10-10 18:54:32 +00002416 if (getLangOpts().CPlusPlus11 && isPlacementNew &&
Richard Smith1cdec012013-09-29 04:40:38 +00002417 isNonPlacementDeallocationFunction(*this, OperatorDelete)) {
Richard Smithf75dcbe2016-10-11 00:21:10 +00002418 UsualDeallocFnInfo Info(*this,
2419 DeclAccessPair::make(OperatorDelete, AS_public));
Richard Smithb2f0f052016-10-10 18:54:32 +00002420 // Core issue, per mail to core reflector, 2016-10-09:
2421 // If this is a member operator delete, and there is a corresponding
2422 // non-sized member operator delete, this isn't /really/ a sized
2423 // deallocation function, it just happens to have a size_t parameter.
2424 bool IsSizedDelete = Info.HasSizeT;
2425 if (IsSizedDelete && !FoundGlobalDelete) {
2426 auto NonSizedDelete =
2427 resolveDeallocationOverload(*this, FoundDelete, /*WantSize*/false,
2428 /*WantAlign*/Info.HasAlignValT);
2429 if (NonSizedDelete && !NonSizedDelete.HasSizeT &&
2430 NonSizedDelete.HasAlignValT == Info.HasAlignValT)
2431 IsSizedDelete = false;
2432 }
2433
2434 if (IsSizedDelete) {
2435 SourceRange R = PlaceArgs.empty()
2436 ? SourceRange()
2437 : SourceRange(PlaceArgs.front()->getLocStart(),
2438 PlaceArgs.back()->getLocEnd());
2439 Diag(StartLoc, diag::err_placement_new_non_placement_delete) << R;
2440 if (!OperatorDelete->isImplicit())
2441 Diag(OperatorDelete->getLocation(), diag::note_previous_decl)
2442 << DeleteName;
2443 }
Douglas Gregor6642ca22010-02-26 05:06:18 +00002444 }
Richard Smithb2f0f052016-10-10 18:54:32 +00002445
2446 CheckAllocationAccess(StartLoc, Range, FoundDelete.getNamingClass(),
2447 Matches[0].first);
2448 } else if (!Matches.empty()) {
2449 // We found multiple suitable operators. Per [expr.new]p20, that means we
2450 // call no 'operator delete' function, but we should at least warn the user.
2451 // FIXME: Suppress this warning if the construction cannot throw.
2452 Diag(StartLoc, diag::warn_ambiguous_suitable_delete_function_found)
2453 << DeleteName << AllocElemType;
2454
2455 for (auto &Match : Matches)
2456 Diag(Match.second->getLocation(),
2457 diag::note_member_declared_here) << DeleteName;
Douglas Gregor6642ca22010-02-26 05:06:18 +00002458 }
2459
Sebastian Redlfaf68082008-12-03 20:26:15 +00002460 return false;
2461}
2462
2463/// DeclareGlobalNewDelete - Declare the global forms of operator new and
2464/// delete. These are:
2465/// @code
Sebastian Redl37588092011-03-14 18:08:30 +00002466/// // C++03:
Sebastian Redlfaf68082008-12-03 20:26:15 +00002467/// void* operator new(std::size_t) throw(std::bad_alloc);
2468/// void* operator new[](std::size_t) throw(std::bad_alloc);
2469/// void operator delete(void *) throw();
2470/// void operator delete[](void *) throw();
Richard Smith1cdec012013-09-29 04:40:38 +00002471/// // C++11:
Sebastian Redl37588092011-03-14 18:08:30 +00002472/// void* operator new(std::size_t);
2473/// void* operator new[](std::size_t);
Richard Smith1cdec012013-09-29 04:40:38 +00002474/// void operator delete(void *) noexcept;
2475/// void operator delete[](void *) noexcept;
2476/// // C++1y:
2477/// void* operator new(std::size_t);
2478/// void* operator new[](std::size_t);
2479/// void operator delete(void *) noexcept;
2480/// void operator delete[](void *) noexcept;
2481/// void operator delete(void *, std::size_t) noexcept;
2482/// void operator delete[](void *, std::size_t) noexcept;
Sebastian Redlfaf68082008-12-03 20:26:15 +00002483/// @endcode
2484/// Note that the placement and nothrow forms of new are *not* implicitly
2485/// declared. Their use requires including \<new\>.
Mike Stump11289f42009-09-09 15:08:12 +00002486void Sema::DeclareGlobalNewDelete() {
Sebastian Redlfaf68082008-12-03 20:26:15 +00002487 if (GlobalNewDeleteDeclared)
2488 return;
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00002489
Douglas Gregor87f54062009-09-15 22:30:29 +00002490 // C++ [basic.std.dynamic]p2:
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00002491 // [...] The following allocation and deallocation functions (18.4) are
2492 // implicitly declared in global scope in each translation unit of a
Douglas Gregor87f54062009-09-15 22:30:29 +00002493 // program
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00002494 //
Sebastian Redl37588092011-03-14 18:08:30 +00002495 // C++03:
Douglas Gregor87f54062009-09-15 22:30:29 +00002496 // void* operator new(std::size_t) throw(std::bad_alloc);
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00002497 // void* operator new[](std::size_t) throw(std::bad_alloc);
2498 // void operator delete(void*) throw();
Douglas Gregor87f54062009-09-15 22:30:29 +00002499 // void operator delete[](void*) throw();
Richard Smith1cdec012013-09-29 04:40:38 +00002500 // C++11:
Sebastian Redl37588092011-03-14 18:08:30 +00002501 // void* operator new(std::size_t);
2502 // void* operator new[](std::size_t);
Richard Smith1cdec012013-09-29 04:40:38 +00002503 // void operator delete(void*) noexcept;
2504 // void operator delete[](void*) noexcept;
2505 // C++1y:
2506 // void* operator new(std::size_t);
2507 // void* operator new[](std::size_t);
2508 // void operator delete(void*) noexcept;
2509 // void operator delete[](void*) noexcept;
2510 // void operator delete(void*, std::size_t) noexcept;
2511 // void operator delete[](void*, std::size_t) noexcept;
Douglas Gregor87f54062009-09-15 22:30:29 +00002512 //
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00002513 // These implicit declarations introduce only the function names operator
Douglas Gregor87f54062009-09-15 22:30:29 +00002514 // new, operator new[], operator delete, operator delete[].
2515 //
2516 // Here, we need to refer to std::bad_alloc, so we will implicitly declare
2517 // "std" or "bad_alloc" as necessary to form the exception specification.
2518 // However, we do not make these implicit declarations visible to name
2519 // lookup.
Richard Smith2bf7fdb2013-01-02 11:42:31 +00002520 if (!StdBadAlloc && !getLangOpts().CPlusPlus11) {
Douglas Gregor87f54062009-09-15 22:30:29 +00002521 // The "std::bad_alloc" class has not yet been declared, so build it
2522 // implicitly.
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00002523 StdBadAlloc = CXXRecordDecl::Create(Context, TTK_Class,
2524 getOrCreateStdNamespace(),
Abramo Bagnara29c2d462011-03-09 14:09:51 +00002525 SourceLocation(), SourceLocation(),
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00002526 &PP.getIdentifierTable().get("bad_alloc"),
Craig Topperc3ec1492014-05-26 06:22:03 +00002527 nullptr);
Argyrios Kyrtzidis2d688102010-08-02 07:14:54 +00002528 getStdBadAlloc()->setImplicit(true);
Douglas Gregor87f54062009-09-15 22:30:29 +00002529 }
Richard Smith59139022016-09-30 22:41:36 +00002530 if (!StdAlignValT && getLangOpts().AlignedAllocation) {
Richard Smith96269c52016-09-29 22:49:46 +00002531 // The "std::align_val_t" enum class has not yet been declared, so build it
2532 // implicitly.
2533 auto *AlignValT = EnumDecl::Create(
2534 Context, getOrCreateStdNamespace(), SourceLocation(), SourceLocation(),
2535 &PP.getIdentifierTable().get("align_val_t"), nullptr, true, true, true);
2536 AlignValT->setIntegerType(Context.getSizeType());
2537 AlignValT->setPromotionType(Context.getSizeType());
2538 AlignValT->setImplicit(true);
2539 StdAlignValT = AlignValT;
2540 }
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00002541
Sebastian Redlfaf68082008-12-03 20:26:15 +00002542 GlobalNewDeleteDeclared = true;
2543
2544 QualType VoidPtr = Context.getPointerType(Context.VoidTy);
2545 QualType SizeT = Context.getSizeType();
2546
Richard Smith96269c52016-09-29 22:49:46 +00002547 auto DeclareGlobalAllocationFunctions = [&](OverloadedOperatorKind Kind,
2548 QualType Return, QualType Param) {
2549 llvm::SmallVector<QualType, 3> Params;
2550 Params.push_back(Param);
2551
2552 // Create up to four variants of the function (sized/aligned).
2553 bool HasSizedVariant = getLangOpts().SizedDeallocation &&
2554 (Kind == OO_Delete || Kind == OO_Array_Delete);
Richard Smith59139022016-09-30 22:41:36 +00002555 bool HasAlignedVariant = getLangOpts().AlignedAllocation;
Simon Pilgrimd69fc8e2016-09-30 14:18:06 +00002556
2557 int NumSizeVariants = (HasSizedVariant ? 2 : 1);
2558 int NumAlignVariants = (HasAlignedVariant ? 2 : 1);
2559 for (int Sized = 0; Sized < NumSizeVariants; ++Sized) {
Richard Smith96269c52016-09-29 22:49:46 +00002560 if (Sized)
2561 Params.push_back(SizeT);
2562
Simon Pilgrimd69fc8e2016-09-30 14:18:06 +00002563 for (int Aligned = 0; Aligned < NumAlignVariants; ++Aligned) {
Richard Smith96269c52016-09-29 22:49:46 +00002564 if (Aligned)
2565 Params.push_back(Context.getTypeDeclType(getStdAlignValT()));
2566
2567 DeclareGlobalAllocationFunction(
2568 Context.DeclarationNames.getCXXOperatorName(Kind), Return, Params);
2569
2570 if (Aligned)
2571 Params.pop_back();
2572 }
2573 }
2574 };
2575
2576 DeclareGlobalAllocationFunctions(OO_New, VoidPtr, SizeT);
2577 DeclareGlobalAllocationFunctions(OO_Array_New, VoidPtr, SizeT);
2578 DeclareGlobalAllocationFunctions(OO_Delete, Context.VoidTy, VoidPtr);
2579 DeclareGlobalAllocationFunctions(OO_Array_Delete, Context.VoidTy, VoidPtr);
Sebastian Redlfaf68082008-12-03 20:26:15 +00002580}
2581
2582/// DeclareGlobalAllocationFunction - Declares a single implicit global
2583/// allocation function if it doesn't already exist.
2584void Sema::DeclareGlobalAllocationFunction(DeclarationName Name,
Richard Smith1cdec012013-09-29 04:40:38 +00002585 QualType Return,
Richard Smith96269c52016-09-29 22:49:46 +00002586 ArrayRef<QualType> Params) {
Sebastian Redlfaf68082008-12-03 20:26:15 +00002587 DeclContext *GlobalCtx = Context.getTranslationUnitDecl();
2588
2589 // Check if this function is already declared.
Serge Pavlovd5489072013-09-14 12:00:01 +00002590 DeclContext::lookup_result R = GlobalCtx->lookup(Name);
2591 for (DeclContext::lookup_iterator Alloc = R.begin(), AllocEnd = R.end();
2592 Alloc != AllocEnd; ++Alloc) {
2593 // Only look at non-template functions, as it is the predefined,
2594 // non-templated allocation function we are trying to declare here.
2595 if (FunctionDecl *Func = dyn_cast<FunctionDecl>(*Alloc)) {
Richard Smith96269c52016-09-29 22:49:46 +00002596 if (Func->getNumParams() == Params.size()) {
2597 llvm::SmallVector<QualType, 3> FuncParams;
2598 for (auto *P : Func->parameters())
2599 FuncParams.push_back(
2600 Context.getCanonicalType(P->getType().getUnqualifiedType()));
2601 if (llvm::makeArrayRef(FuncParams) == Params) {
Serge Pavlovd5489072013-09-14 12:00:01 +00002602 // Make the function visible to name lookup, even if we found it in
2603 // an unimported module. It either is an implicitly-declared global
Richard Smith42713d72013-07-14 02:01:48 +00002604 // allocation function, or is suppressing that function.
2605 Func->setHidden(false);
Chandler Carruth93538422010-02-03 11:02:14 +00002606 return;
Douglas Gregorc1a42fd2010-08-18 15:06:25 +00002607 }
Chandler Carruth93538422010-02-03 11:02:14 +00002608 }
Sebastian Redlfaf68082008-12-03 20:26:15 +00002609 }
2610 }
Reid Kleckner7270ef52015-03-19 17:03:58 +00002611
Richard Smithc015bc22014-02-07 22:39:53 +00002612 FunctionProtoType::ExtProtoInfo EPI;
2613
Richard Smithf8b417c2014-02-08 00:42:45 +00002614 QualType BadAllocType;
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00002615 bool HasBadAllocExceptionSpec
Douglas Gregor87f54062009-09-15 22:30:29 +00002616 = (Name.getCXXOverloadedOperator() == OO_New ||
2617 Name.getCXXOverloadedOperator() == OO_Array_New);
John McCalldb40c7f2010-12-14 08:05:40 +00002618 if (HasBadAllocExceptionSpec) {
Richard Smith2bf7fdb2013-01-02 11:42:31 +00002619 if (!getLangOpts().CPlusPlus11) {
Richard Smithf8b417c2014-02-08 00:42:45 +00002620 BadAllocType = Context.getTypeDeclType(getStdBadAlloc());
Richard Smithc015bc22014-02-07 22:39:53 +00002621 assert(StdBadAlloc && "Must have std::bad_alloc declared");
Richard Smith8acb4282014-07-31 21:57:55 +00002622 EPI.ExceptionSpec.Type = EST_Dynamic;
2623 EPI.ExceptionSpec.Exceptions = llvm::makeArrayRef(BadAllocType);
Sebastian Redl37588092011-03-14 18:08:30 +00002624 }
Sebastian Redlfa453cf2011-03-12 11:50:43 +00002625 } else {
Richard Smith8acb4282014-07-31 21:57:55 +00002626 EPI.ExceptionSpec =
2627 getLangOpts().CPlusPlus11 ? EST_BasicNoexcept : EST_DynamicNone;
John McCalldb40c7f2010-12-14 08:05:40 +00002628 }
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00002629
Artem Belevich07db5cf2016-10-21 20:34:05 +00002630 auto CreateAllocationFunctionDecl = [&](Attr *ExtraAttr) {
2631 QualType FnType = Context.getFunctionType(Return, Params, EPI);
2632 FunctionDecl *Alloc = FunctionDecl::Create(
2633 Context, GlobalCtx, SourceLocation(), SourceLocation(), Name,
2634 FnType, /*TInfo=*/nullptr, SC_None, false, true);
2635 Alloc->setImplicit();
Simon Pilgrim75c26882016-09-30 14:25:09 +00002636
Artem Belevich07db5cf2016-10-21 20:34:05 +00002637 // Implicit sized deallocation functions always have default visibility.
2638 Alloc->addAttr(
2639 VisibilityAttr::CreateImplicit(Context, VisibilityAttr::Default));
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00002640
Artem Belevich07db5cf2016-10-21 20:34:05 +00002641 llvm::SmallVector<ParmVarDecl *, 3> ParamDecls;
2642 for (QualType T : Params) {
2643 ParamDecls.push_back(ParmVarDecl::Create(
2644 Context, Alloc, SourceLocation(), SourceLocation(), nullptr, T,
2645 /*TInfo=*/nullptr, SC_None, nullptr));
2646 ParamDecls.back()->setImplicit();
2647 }
2648 Alloc->setParams(ParamDecls);
2649 if (ExtraAttr)
2650 Alloc->addAttr(ExtraAttr);
2651 Context.getTranslationUnitDecl()->addDecl(Alloc);
2652 IdResolver.tryAddTopLevelDecl(Alloc, Name);
2653 };
2654
2655 if (!LangOpts.CUDA)
2656 CreateAllocationFunctionDecl(nullptr);
2657 else {
2658 // Host and device get their own declaration so each can be
2659 // defined or re-declared independently.
2660 CreateAllocationFunctionDecl(CUDAHostAttr::CreateImplicit(Context));
2661 CreateAllocationFunctionDecl(CUDADeviceAttr::CreateImplicit(Context));
Richard Smithbdd14642014-02-04 01:14:30 +00002662 }
Sebastian Redlfaf68082008-12-03 20:26:15 +00002663}
2664
Richard Smith1cdec012013-09-29 04:40:38 +00002665FunctionDecl *Sema::FindUsualDeallocationFunction(SourceLocation StartLoc,
2666 bool CanProvideSize,
Richard Smithb2f0f052016-10-10 18:54:32 +00002667 bool Overaligned,
Richard Smith1cdec012013-09-29 04:40:38 +00002668 DeclarationName Name) {
2669 DeclareGlobalNewDelete();
2670
2671 LookupResult FoundDelete(*this, Name, StartLoc, LookupOrdinaryName);
2672 LookupQualifiedName(FoundDelete, Context.getTranslationUnitDecl());
2673
Richard Smithb2f0f052016-10-10 18:54:32 +00002674 // FIXME: It's possible for this to result in ambiguity, through a
2675 // user-declared variadic operator delete or the enable_if attribute. We
2676 // should probably not consider those cases to be usual deallocation
2677 // functions. But for now we just make an arbitrary choice in that case.
2678 auto Result = resolveDeallocationOverload(*this, FoundDelete, CanProvideSize,
2679 Overaligned);
2680 assert(Result.FD && "operator delete missing from global scope?");
2681 return Result.FD;
2682}
Richard Smith1cdec012013-09-29 04:40:38 +00002683
Richard Smithb2f0f052016-10-10 18:54:32 +00002684FunctionDecl *Sema::FindDeallocationFunctionForDestructor(SourceLocation Loc,
2685 CXXRecordDecl *RD) {
2686 DeclarationName Name = Context.DeclarationNames.getCXXOperatorName(OO_Delete);
Richard Smith1cdec012013-09-29 04:40:38 +00002687
Richard Smithb2f0f052016-10-10 18:54:32 +00002688 FunctionDecl *OperatorDelete = nullptr;
2689 if (FindDeallocationFunction(Loc, RD, Name, OperatorDelete))
2690 return nullptr;
2691 if (OperatorDelete)
2692 return OperatorDelete;
Artem Belevich94a55e82015-09-22 17:22:59 +00002693
Richard Smithb2f0f052016-10-10 18:54:32 +00002694 // If there's no class-specific operator delete, look up the global
2695 // non-array delete.
2696 return FindUsualDeallocationFunction(
2697 Loc, true, hasNewExtendedAlignment(*this, Context.getRecordType(RD)),
2698 Name);
Richard Smith1cdec012013-09-29 04:40:38 +00002699}
2700
Anders Carlssone1d34ba02009-11-15 18:45:20 +00002701bool Sema::FindDeallocationFunction(SourceLocation StartLoc, CXXRecordDecl *RD,
2702 DeclarationName Name,
Richard Smithb2f0f052016-10-10 18:54:32 +00002703 FunctionDecl *&Operator, bool Diagnose) {
John McCall27b18f82009-11-17 02:14:36 +00002704 LookupResult Found(*this, Name, StartLoc, LookupOrdinaryName);
Anders Carlssone1d34ba02009-11-15 18:45:20 +00002705 // Try to find operator delete/operator delete[] in class scope.
John McCall27b18f82009-11-17 02:14:36 +00002706 LookupQualifiedName(Found, RD);
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00002707
John McCall27b18f82009-11-17 02:14:36 +00002708 if (Found.isAmbiguous())
Anders Carlssone1d34ba02009-11-15 18:45:20 +00002709 return true;
Anders Carlssone1d34ba02009-11-15 18:45:20 +00002710
Chandler Carruthb6f99172010-06-28 00:30:51 +00002711 Found.suppressDiagnostics();
2712
Richard Smithb2f0f052016-10-10 18:54:32 +00002713 bool Overaligned = hasNewExtendedAlignment(*this, Context.getRecordType(RD));
Chandler Carruth9b418232010-08-08 07:04:00 +00002714
Richard Smithb2f0f052016-10-10 18:54:32 +00002715 // C++17 [expr.delete]p10:
2716 // If the deallocation functions have class scope, the one without a
2717 // parameter of type std::size_t is selected.
2718 llvm::SmallVector<UsualDeallocFnInfo, 4> Matches;
2719 resolveDeallocationOverload(*this, Found, /*WantSize*/ false,
2720 /*WantAlign*/ Overaligned, &Matches);
Chandler Carruth9b418232010-08-08 07:04:00 +00002721
Richard Smithb2f0f052016-10-10 18:54:32 +00002722 // If we could find an overload, use it.
John McCall66a87592010-08-04 00:31:26 +00002723 if (Matches.size() == 1) {
Richard Smithb2f0f052016-10-10 18:54:32 +00002724 Operator = cast<CXXMethodDecl>(Matches[0].FD);
Alexis Hunt1f69a022011-05-12 22:46:29 +00002725
Richard Smithb2f0f052016-10-10 18:54:32 +00002726 // FIXME: DiagnoseUseOfDecl?
Alexis Hunt1f69a022011-05-12 22:46:29 +00002727 if (Operator->isDeleted()) {
2728 if (Diagnose) {
2729 Diag(StartLoc, diag::err_deleted_function_use);
Richard Smith852265f2012-03-30 20:53:28 +00002730 NoteDeletedFunction(Operator);
Alexis Hunt1f69a022011-05-12 22:46:29 +00002731 }
2732 return true;
2733 }
2734
Richard Smith921bd202012-02-26 09:11:52 +00002735 if (CheckAllocationAccess(StartLoc, SourceRange(), Found.getNamingClass(),
Richard Smithb2f0f052016-10-10 18:54:32 +00002736 Matches[0].Found, Diagnose) == AR_inaccessible)
Richard Smith921bd202012-02-26 09:11:52 +00002737 return true;
2738
John McCall66a87592010-08-04 00:31:26 +00002739 return false;
Richard Smithb2f0f052016-10-10 18:54:32 +00002740 }
John McCall66a87592010-08-04 00:31:26 +00002741
Richard Smithb2f0f052016-10-10 18:54:32 +00002742 // We found multiple suitable operators; complain about the ambiguity.
2743 // FIXME: The standard doesn't say to do this; it appears that the intent
2744 // is that this should never happen.
2745 if (!Matches.empty()) {
Alexis Hunt1f69a022011-05-12 22:46:29 +00002746 if (Diagnose) {
Alexis Huntf91729462011-05-12 22:46:25 +00002747 Diag(StartLoc, diag::err_ambiguous_suitable_delete_member_function_found)
2748 << Name << RD;
Richard Smithb2f0f052016-10-10 18:54:32 +00002749 for (auto &Match : Matches)
2750 Diag(Match.FD->getLocation(), diag::note_member_declared_here) << Name;
Alexis Huntf91729462011-05-12 22:46:25 +00002751 }
John McCall66a87592010-08-04 00:31:26 +00002752 return true;
Anders Carlssone1d34ba02009-11-15 18:45:20 +00002753 }
2754
2755 // We did find operator delete/operator delete[] declarations, but
2756 // none of them were suitable.
2757 if (!Found.empty()) {
Alexis Hunt1f69a022011-05-12 22:46:29 +00002758 if (Diagnose) {
Alexis Huntf91729462011-05-12 22:46:25 +00002759 Diag(StartLoc, diag::err_no_suitable_delete_member_function_found)
2760 << Name << RD;
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00002761
Richard Smithb2f0f052016-10-10 18:54:32 +00002762 for (NamedDecl *D : Found)
2763 Diag(D->getUnderlyingDecl()->getLocation(),
Alexis Huntf91729462011-05-12 22:46:25 +00002764 diag::note_member_declared_here) << Name;
2765 }
Anders Carlssone1d34ba02009-11-15 18:45:20 +00002766 return true;
2767 }
2768
Craig Topperc3ec1492014-05-26 06:22:03 +00002769 Operator = nullptr;
Anders Carlssone1d34ba02009-11-15 18:45:20 +00002770 return false;
2771}
2772
Ismail Pazarbasie5768d12015-05-18 19:59:11 +00002773namespace {
2774/// \brief Checks whether delete-expression, and new-expression used for
2775/// initializing deletee have the same array form.
2776class MismatchingNewDeleteDetector {
2777public:
2778 enum MismatchResult {
2779 /// Indicates that there is no mismatch or a mismatch cannot be proven.
2780 NoMismatch,
2781 /// Indicates that variable is initialized with mismatching form of \a new.
2782 VarInitMismatches,
2783 /// Indicates that member is initialized with mismatching form of \a new.
2784 MemberInitMismatches,
2785 /// Indicates that 1 or more constructors' definitions could not been
2786 /// analyzed, and they will be checked again at the end of translation unit.
2787 AnalyzeLater
2788 };
2789
2790 /// \param EndOfTU True, if this is the final analysis at the end of
2791 /// translation unit. False, if this is the initial analysis at the point
2792 /// delete-expression was encountered.
2793 explicit MismatchingNewDeleteDetector(bool EndOfTU)
Alexander Shaposhnikov3087b2c2016-09-01 23:18:00 +00002794 : Field(nullptr), IsArrayForm(false), EndOfTU(EndOfTU),
Ismail Pazarbasie5768d12015-05-18 19:59:11 +00002795 HasUndefinedConstructors(false) {}
2796
2797 /// \brief Checks whether pointee of a delete-expression is initialized with
2798 /// matching form of new-expression.
2799 ///
2800 /// If return value is \c VarInitMismatches or \c MemberInitMismatches at the
2801 /// point where delete-expression is encountered, then a warning will be
2802 /// issued immediately. If return value is \c AnalyzeLater at the point where
2803 /// delete-expression is seen, then member will be analyzed at the end of
2804 /// translation unit. \c AnalyzeLater is returned iff at least one constructor
2805 /// couldn't be analyzed. If at least one constructor initializes the member
2806 /// with matching type of new, the return value is \c NoMismatch.
2807 MismatchResult analyzeDeleteExpr(const CXXDeleteExpr *DE);
2808 /// \brief Analyzes a class member.
2809 /// \param Field Class member to analyze.
2810 /// \param DeleteWasArrayForm Array form-ness of the delete-expression used
2811 /// for deleting the \p Field.
2812 MismatchResult analyzeField(FieldDecl *Field, bool DeleteWasArrayForm);
Alexander Shaposhnikov3087b2c2016-09-01 23:18:00 +00002813 FieldDecl *Field;
Ismail Pazarbasie5768d12015-05-18 19:59:11 +00002814 /// List of mismatching new-expressions used for initialization of the pointee
2815 llvm::SmallVector<const CXXNewExpr *, 4> NewExprs;
2816 /// Indicates whether delete-expression was in array form.
2817 bool IsArrayForm;
Ismail Pazarbasie5768d12015-05-18 19:59:11 +00002818
2819private:
2820 const bool EndOfTU;
2821 /// \brief Indicates that there is at least one constructor without body.
2822 bool HasUndefinedConstructors;
2823 /// \brief Returns \c CXXNewExpr from given initialization expression.
2824 /// \param E Expression used for initializing pointee in delete-expression.
NAKAMURA Takumi4bd67d82015-05-19 06:47:23 +00002825 /// E can be a single-element \c InitListExpr consisting of new-expression.
Ismail Pazarbasie5768d12015-05-18 19:59:11 +00002826 const CXXNewExpr *getNewExprFromInitListOrExpr(const Expr *E);
2827 /// \brief Returns whether member is initialized with mismatching form of
2828 /// \c new either by the member initializer or in-class initialization.
2829 ///
2830 /// If bodies of all constructors are not visible at the end of translation
2831 /// unit or at least one constructor initializes member with the matching
2832 /// form of \c new, mismatch cannot be proven, and this function will return
2833 /// \c NoMismatch.
2834 MismatchResult analyzeMemberExpr(const MemberExpr *ME);
2835 /// \brief Returns whether variable is initialized with mismatching form of
2836 /// \c new.
2837 ///
2838 /// If variable is initialized with matching form of \c new or variable is not
2839 /// initialized with a \c new expression, this function will return true.
2840 /// If variable is initialized with mismatching form of \c new, returns false.
2841 /// \param D Variable to analyze.
2842 bool hasMatchingVarInit(const DeclRefExpr *D);
2843 /// \brief Checks whether the constructor initializes pointee with mismatching
2844 /// form of \c new.
2845 ///
2846 /// Returns true, if member is initialized with matching form of \c new in
2847 /// member initializer list. Returns false, if member is initialized with the
2848 /// matching form of \c new in this constructor's initializer or given
2849 /// constructor isn't defined at the point where delete-expression is seen, or
2850 /// member isn't initialized by the constructor.
2851 bool hasMatchingNewInCtor(const CXXConstructorDecl *CD);
2852 /// \brief Checks whether member is initialized with matching form of
2853 /// \c new in member initializer list.
2854 bool hasMatchingNewInCtorInit(const CXXCtorInitializer *CI);
2855 /// Checks whether member is initialized with mismatching form of \c new by
2856 /// in-class initializer.
2857 MismatchResult analyzeInClassInitializer();
2858};
Alexander Kornienkoab9db512015-06-22 23:07:51 +00002859}
Ismail Pazarbasie5768d12015-05-18 19:59:11 +00002860
2861MismatchingNewDeleteDetector::MismatchResult
2862MismatchingNewDeleteDetector::analyzeDeleteExpr(const CXXDeleteExpr *DE) {
2863 NewExprs.clear();
2864 assert(DE && "Expected delete-expression");
2865 IsArrayForm = DE->isArrayForm();
2866 const Expr *E = DE->getArgument()->IgnoreParenImpCasts();
2867 if (const MemberExpr *ME = dyn_cast<const MemberExpr>(E)) {
2868 return analyzeMemberExpr(ME);
2869 } else if (const DeclRefExpr *D = dyn_cast<const DeclRefExpr>(E)) {
2870 if (!hasMatchingVarInit(D))
2871 return VarInitMismatches;
2872 }
2873 return NoMismatch;
2874}
2875
2876const CXXNewExpr *
2877MismatchingNewDeleteDetector::getNewExprFromInitListOrExpr(const Expr *E) {
2878 assert(E != nullptr && "Expected a valid initializer expression");
2879 E = E->IgnoreParenImpCasts();
2880 if (const InitListExpr *ILE = dyn_cast<const InitListExpr>(E)) {
2881 if (ILE->getNumInits() == 1)
2882 E = dyn_cast<const CXXNewExpr>(ILE->getInit(0)->IgnoreParenImpCasts());
2883 }
2884
2885 return dyn_cast_or_null<const CXXNewExpr>(E);
2886}
2887
2888bool MismatchingNewDeleteDetector::hasMatchingNewInCtorInit(
2889 const CXXCtorInitializer *CI) {
2890 const CXXNewExpr *NE = nullptr;
2891 if (Field == CI->getMember() &&
2892 (NE = getNewExprFromInitListOrExpr(CI->getInit()))) {
2893 if (NE->isArray() == IsArrayForm)
2894 return true;
2895 else
2896 NewExprs.push_back(NE);
2897 }
2898 return false;
2899}
2900
2901bool MismatchingNewDeleteDetector::hasMatchingNewInCtor(
2902 const CXXConstructorDecl *CD) {
2903 if (CD->isImplicit())
2904 return false;
2905 const FunctionDecl *Definition = CD;
2906 if (!CD->isThisDeclarationADefinition() && !CD->isDefined(Definition)) {
2907 HasUndefinedConstructors = true;
2908 return EndOfTU;
2909 }
2910 for (const auto *CI : cast<const CXXConstructorDecl>(Definition)->inits()) {
2911 if (hasMatchingNewInCtorInit(CI))
2912 return true;
2913 }
2914 return false;
2915}
2916
2917MismatchingNewDeleteDetector::MismatchResult
2918MismatchingNewDeleteDetector::analyzeInClassInitializer() {
2919 assert(Field != nullptr && "This should be called only for members");
Ismail Pazarbasi7ff18362015-10-26 19:20:24 +00002920 const Expr *InitExpr = Field->getInClassInitializer();
2921 if (!InitExpr)
2922 return EndOfTU ? NoMismatch : AnalyzeLater;
2923 if (const CXXNewExpr *NE = getNewExprFromInitListOrExpr(InitExpr)) {
Ismail Pazarbasie5768d12015-05-18 19:59:11 +00002924 if (NE->isArray() != IsArrayForm) {
2925 NewExprs.push_back(NE);
2926 return MemberInitMismatches;
2927 }
2928 }
2929 return NoMismatch;
2930}
2931
2932MismatchingNewDeleteDetector::MismatchResult
2933MismatchingNewDeleteDetector::analyzeField(FieldDecl *Field,
2934 bool DeleteWasArrayForm) {
2935 assert(Field != nullptr && "Analysis requires a valid class member.");
2936 this->Field = Field;
2937 IsArrayForm = DeleteWasArrayForm;
2938 const CXXRecordDecl *RD = cast<const CXXRecordDecl>(Field->getParent());
2939 for (const auto *CD : RD->ctors()) {
2940 if (hasMatchingNewInCtor(CD))
2941 return NoMismatch;
2942 }
2943 if (HasUndefinedConstructors)
2944 return EndOfTU ? NoMismatch : AnalyzeLater;
2945 if (!NewExprs.empty())
2946 return MemberInitMismatches;
2947 return Field->hasInClassInitializer() ? analyzeInClassInitializer()
2948 : NoMismatch;
2949}
2950
2951MismatchingNewDeleteDetector::MismatchResult
2952MismatchingNewDeleteDetector::analyzeMemberExpr(const MemberExpr *ME) {
2953 assert(ME != nullptr && "Expected a member expression");
2954 if (FieldDecl *F = dyn_cast<FieldDecl>(ME->getMemberDecl()))
2955 return analyzeField(F, IsArrayForm);
2956 return NoMismatch;
2957}
2958
2959bool MismatchingNewDeleteDetector::hasMatchingVarInit(const DeclRefExpr *D) {
2960 const CXXNewExpr *NE = nullptr;
2961 if (const VarDecl *VD = dyn_cast<const VarDecl>(D->getDecl())) {
2962 if (VD->hasInit() && (NE = getNewExprFromInitListOrExpr(VD->getInit())) &&
2963 NE->isArray() != IsArrayForm) {
2964 NewExprs.push_back(NE);
2965 }
2966 }
2967 return NewExprs.empty();
2968}
2969
2970static void
2971DiagnoseMismatchedNewDelete(Sema &SemaRef, SourceLocation DeleteLoc,
2972 const MismatchingNewDeleteDetector &Detector) {
2973 SourceLocation EndOfDelete = SemaRef.getLocForEndOfToken(DeleteLoc);
2974 FixItHint H;
2975 if (!Detector.IsArrayForm)
2976 H = FixItHint::CreateInsertion(EndOfDelete, "[]");
2977 else {
2978 SourceLocation RSquare = Lexer::findLocationAfterToken(
2979 DeleteLoc, tok::l_square, SemaRef.getSourceManager(),
2980 SemaRef.getLangOpts(), true);
2981 if (RSquare.isValid())
2982 H = FixItHint::CreateRemoval(SourceRange(EndOfDelete, RSquare));
2983 }
2984 SemaRef.Diag(DeleteLoc, diag::warn_mismatched_delete_new)
2985 << Detector.IsArrayForm << H;
2986
2987 for (const auto *NE : Detector.NewExprs)
2988 SemaRef.Diag(NE->getExprLoc(), diag::note_allocated_here)
2989 << Detector.IsArrayForm;
2990}
2991
2992void Sema::AnalyzeDeleteExprMismatch(const CXXDeleteExpr *DE) {
2993 if (Diags.isIgnored(diag::warn_mismatched_delete_new, SourceLocation()))
2994 return;
2995 MismatchingNewDeleteDetector Detector(/*EndOfTU=*/false);
2996 switch (Detector.analyzeDeleteExpr(DE)) {
2997 case MismatchingNewDeleteDetector::VarInitMismatches:
2998 case MismatchingNewDeleteDetector::MemberInitMismatches: {
2999 DiagnoseMismatchedNewDelete(*this, DE->getLocStart(), Detector);
3000 break;
3001 }
3002 case MismatchingNewDeleteDetector::AnalyzeLater: {
3003 DeleteExprs[Detector.Field].push_back(
3004 std::make_pair(DE->getLocStart(), DE->isArrayForm()));
3005 break;
3006 }
3007 case MismatchingNewDeleteDetector::NoMismatch:
3008 break;
3009 }
3010}
3011
3012void Sema::AnalyzeDeleteExprMismatch(FieldDecl *Field, SourceLocation DeleteLoc,
3013 bool DeleteWasArrayForm) {
3014 MismatchingNewDeleteDetector Detector(/*EndOfTU=*/true);
3015 switch (Detector.analyzeField(Field, DeleteWasArrayForm)) {
3016 case MismatchingNewDeleteDetector::VarInitMismatches:
3017 llvm_unreachable("This analysis should have been done for class members.");
3018 case MismatchingNewDeleteDetector::AnalyzeLater:
3019 llvm_unreachable("Analysis cannot be postponed any point beyond end of "
3020 "translation unit.");
3021 case MismatchingNewDeleteDetector::MemberInitMismatches:
3022 DiagnoseMismatchedNewDelete(*this, DeleteLoc, Detector);
3023 break;
3024 case MismatchingNewDeleteDetector::NoMismatch:
3025 break;
3026 }
3027}
3028
Sebastian Redlbd150f42008-11-21 19:14:01 +00003029/// ActOnCXXDelete - Parsed a C++ 'delete' expression (C++ 5.3.5), as in:
3030/// @code ::delete ptr; @endcode
3031/// or
3032/// @code delete [] ptr; @endcode
John McCalldadc5752010-08-24 06:29:42 +00003033ExprResult
Sebastian Redlbd150f42008-11-21 19:14:01 +00003034Sema::ActOnCXXDelete(SourceLocation StartLoc, bool UseGlobal,
John Wiegley01296292011-04-08 18:41:53 +00003035 bool ArrayForm, Expr *ExE) {
Douglas Gregor0fea62d2009-09-09 23:39:55 +00003036 // C++ [expr.delete]p1:
3037 // The operand shall have a pointer type, or a class type having a single
Richard Smithccc11812013-05-21 19:05:48 +00003038 // non-explicit conversion function to a pointer type. The result has type
3039 // void.
Douglas Gregor0fea62d2009-09-09 23:39:55 +00003040 //
Sebastian Redlbd150f42008-11-21 19:14:01 +00003041 // DR599 amends "pointer type" to "pointer to object type" in both cases.
3042
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00003043 ExprResult Ex = ExE;
Craig Topperc3ec1492014-05-26 06:22:03 +00003044 FunctionDecl *OperatorDelete = nullptr;
Argyrios Kyrtzidis14ec9f62010-09-13 20:15:54 +00003045 bool ArrayFormAsWritten = ArrayForm;
John McCall284c48f2011-01-27 09:37:56 +00003046 bool UsualArrayDeleteWantsSize = false;
Mike Stump11289f42009-09-09 15:08:12 +00003047
John Wiegley01296292011-04-08 18:41:53 +00003048 if (!Ex.get()->isTypeDependent()) {
John McCallef429022012-03-09 04:08:29 +00003049 // Perform lvalue-to-rvalue cast, if needed.
Nikola Smiljanic01a75982014-05-29 10:55:11 +00003050 Ex = DefaultLvalueConversion(Ex.get());
Eli Friedman89a4a2c2012-12-13 00:37:17 +00003051 if (Ex.isInvalid())
3052 return ExprError();
John McCallef429022012-03-09 04:08:29 +00003053
John Wiegley01296292011-04-08 18:41:53 +00003054 QualType Type = Ex.get()->getType();
Sebastian Redlbd150f42008-11-21 19:14:01 +00003055
Richard Smithccc11812013-05-21 19:05:48 +00003056 class DeleteConverter : public ContextualImplicitConverter {
3057 public:
3058 DeleteConverter() : ContextualImplicitConverter(false, true) {}
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00003059
Craig Toppere14c0f82014-03-12 04:55:44 +00003060 bool match(QualType ConvType) override {
Richard Smithccc11812013-05-21 19:05:48 +00003061 // FIXME: If we have an operator T* and an operator void*, we must pick
3062 // the operator T*.
Douglas Gregor0fea62d2009-09-09 23:39:55 +00003063 if (const PointerType *ConvPtrType = ConvType->getAs<PointerType>())
Eli Friedmana170cd62010-08-05 02:49:48 +00003064 if (ConvPtrType->getPointeeType()->isIncompleteOrObjectType())
Richard Smithccc11812013-05-21 19:05:48 +00003065 return true;
3066 return false;
Douglas Gregor0fea62d2009-09-09 23:39:55 +00003067 }
Sebastian Redl8d2ccae2009-02-26 14:39:58 +00003068
Richard Smithccc11812013-05-21 19:05:48 +00003069 SemaDiagnosticBuilder diagnoseNoMatch(Sema &S, SourceLocation Loc,
Craig Toppere14c0f82014-03-12 04:55:44 +00003070 QualType T) override {
Richard Smithccc11812013-05-21 19:05:48 +00003071 return S.Diag(Loc, diag::err_delete_operand) << T;
3072 }
3073
3074 SemaDiagnosticBuilder diagnoseIncomplete(Sema &S, SourceLocation Loc,
Craig Toppere14c0f82014-03-12 04:55:44 +00003075 QualType T) override {
Richard Smithccc11812013-05-21 19:05:48 +00003076 return S.Diag(Loc, diag::err_delete_incomplete_class_type) << T;
3077 }
3078
3079 SemaDiagnosticBuilder diagnoseExplicitConv(Sema &S, SourceLocation Loc,
Craig Toppere14c0f82014-03-12 04:55:44 +00003080 QualType T,
3081 QualType ConvTy) override {
Richard Smithccc11812013-05-21 19:05:48 +00003082 return S.Diag(Loc, diag::err_delete_explicit_conversion) << T << ConvTy;
3083 }
3084
3085 SemaDiagnosticBuilder noteExplicitConv(Sema &S, CXXConversionDecl *Conv,
Craig Toppere14c0f82014-03-12 04:55:44 +00003086 QualType ConvTy) override {
Richard Smithccc11812013-05-21 19:05:48 +00003087 return S.Diag(Conv->getLocation(), diag::note_delete_conversion)
3088 << ConvTy;
3089 }
3090
3091 SemaDiagnosticBuilder diagnoseAmbiguous(Sema &S, SourceLocation Loc,
Craig Toppere14c0f82014-03-12 04:55:44 +00003092 QualType T) override {
Richard Smithccc11812013-05-21 19:05:48 +00003093 return S.Diag(Loc, diag::err_ambiguous_delete_operand) << T;
3094 }
3095
3096 SemaDiagnosticBuilder noteAmbiguous(Sema &S, CXXConversionDecl *Conv,
Craig Toppere14c0f82014-03-12 04:55:44 +00003097 QualType ConvTy) override {
Richard Smithccc11812013-05-21 19:05:48 +00003098 return S.Diag(Conv->getLocation(), diag::note_delete_conversion)
3099 << ConvTy;
3100 }
3101
3102 SemaDiagnosticBuilder diagnoseConversion(Sema &S, SourceLocation Loc,
Craig Toppere14c0f82014-03-12 04:55:44 +00003103 QualType T,
3104 QualType ConvTy) override {
Richard Smithccc11812013-05-21 19:05:48 +00003105 llvm_unreachable("conversion functions are permitted");
3106 }
3107 } Converter;
3108
Nikola Smiljanic01a75982014-05-29 10:55:11 +00003109 Ex = PerformContextualImplicitConversion(StartLoc, Ex.get(), Converter);
Richard Smithccc11812013-05-21 19:05:48 +00003110 if (Ex.isInvalid())
3111 return ExprError();
3112 Type = Ex.get()->getType();
3113 if (!Converter.match(Type))
3114 // FIXME: PerformContextualImplicitConversion should return ExprError
3115 // itself in this case.
3116 return ExprError();
Sebastian Redl8d2ccae2009-02-26 14:39:58 +00003117
Ted Kremenekc23c7e62009-07-29 21:53:49 +00003118 QualType Pointee = Type->getAs<PointerType>()->getPointeeType();
Eli Friedmanae4280f2011-07-26 22:25:31 +00003119 QualType PointeeElem = Context.getBaseElementType(Pointee);
3120
Yaxun Liub34ec822017-04-11 17:24:23 +00003121 if (Pointee.getAddressSpace())
Simon Pilgrim75c26882016-09-30 14:25:09 +00003122 return Diag(Ex.get()->getLocStart(),
Eli Friedmanae4280f2011-07-26 22:25:31 +00003123 diag::err_address_space_qualified_delete)
Yaxun Liub34ec822017-04-11 17:24:23 +00003124 << Pointee.getUnqualifiedType()
3125 << Pointee.getQualifiers().getAddressSpaceAttributePrintValue();
Eli Friedmanae4280f2011-07-26 22:25:31 +00003126
Craig Topperc3ec1492014-05-26 06:22:03 +00003127 CXXRecordDecl *PointeeRD = nullptr;
Douglas Gregorbb3348e2010-05-24 17:01:56 +00003128 if (Pointee->isVoidType() && !isSFINAEContext()) {
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00003129 // The C++ standard bans deleting a pointer to a non-object type, which
Douglas Gregorbb3348e2010-05-24 17:01:56 +00003130 // effectively bans deletion of "void*". However, most compilers support
3131 // this, so we treat it as a warning unless we're in a SFINAE context.
3132 Diag(StartLoc, diag::ext_delete_void_ptr_operand)
John Wiegley01296292011-04-08 18:41:53 +00003133 << Type << Ex.get()->getSourceRange();
Eli Friedmanae4280f2011-07-26 22:25:31 +00003134 } else if (Pointee->isFunctionType() || Pointee->isVoidType()) {
Sebastian Redl6d4256c2009-03-15 17:47:39 +00003135 return ExprError(Diag(StartLoc, diag::err_delete_operand)
John Wiegley01296292011-04-08 18:41:53 +00003136 << Type << Ex.get()->getSourceRange());
Eli Friedmanae4280f2011-07-26 22:25:31 +00003137 } else if (!Pointee->isDependentType()) {
Richard Smithdb0ac552015-12-18 22:40:25 +00003138 // FIXME: This can result in errors if the definition was imported from a
3139 // module but is hidden.
Eli Friedmanae4280f2011-07-26 22:25:31 +00003140 if (!RequireCompleteType(StartLoc, Pointee,
Douglas Gregor7bfb2d02012-05-04 16:32:21 +00003141 diag::warn_delete_incomplete, Ex.get())) {
Eli Friedmanae4280f2011-07-26 22:25:31 +00003142 if (const RecordType *RT = PointeeElem->getAs<RecordType>())
3143 PointeeRD = cast<CXXRecordDecl>(RT->getDecl());
3144 }
3145 }
3146
Argyrios Kyrtzidis14ec9f62010-09-13 20:15:54 +00003147 if (Pointee->isArrayType() && !ArrayForm) {
3148 Diag(StartLoc, diag::warn_delete_array_type)
John Wiegley01296292011-04-08 18:41:53 +00003149 << Type << Ex.get()->getSourceRange()
Craig Topper07fa1762015-11-15 02:31:46 +00003150 << FixItHint::CreateInsertion(getLocForEndOfToken(StartLoc), "[]");
Argyrios Kyrtzidis14ec9f62010-09-13 20:15:54 +00003151 ArrayForm = true;
3152 }
3153
Anders Carlssona471db02009-08-16 20:29:29 +00003154 DeclarationName DeleteName = Context.DeclarationNames.getCXXOperatorName(
3155 ArrayForm ? OO_Array_Delete : OO_Delete);
3156
Eli Friedmanae4280f2011-07-26 22:25:31 +00003157 if (PointeeRD) {
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00003158 if (!UseGlobal &&
Eli Friedmanae4280f2011-07-26 22:25:31 +00003159 FindDeallocationFunction(StartLoc, PointeeRD, DeleteName,
3160 OperatorDelete))
Anders Carlsson654e5c72009-11-14 03:17:38 +00003161 return ExprError();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00003162
John McCall284c48f2011-01-27 09:37:56 +00003163 // If we're allocating an array of records, check whether the
3164 // usual operator delete[] has a size_t parameter.
3165 if (ArrayForm) {
3166 // If the user specifically asked to use the global allocator,
3167 // we'll need to do the lookup into the class.
3168 if (UseGlobal)
3169 UsualArrayDeleteWantsSize =
3170 doesUsualArrayDeleteWantSize(*this, StartLoc, PointeeElem);
3171
3172 // Otherwise, the usual operator delete[] should be the
3173 // function we just found.
Richard Smithf03bd302013-12-05 08:30:59 +00003174 else if (OperatorDelete && isa<CXXMethodDecl>(OperatorDelete))
Richard Smithb2f0f052016-10-10 18:54:32 +00003175 UsualArrayDeleteWantsSize =
Richard Smithf75dcbe2016-10-11 00:21:10 +00003176 UsualDeallocFnInfo(*this,
3177 DeclAccessPair::make(OperatorDelete, AS_public))
3178 .HasSizeT;
John McCall284c48f2011-01-27 09:37:56 +00003179 }
3180
Richard Smitheec915d62012-02-18 04:13:32 +00003181 if (!PointeeRD->hasIrrelevantDestructor())
Eli Friedmanae4280f2011-07-26 22:25:31 +00003182 if (CXXDestructorDecl *Dtor = LookupDestructor(PointeeRD)) {
Eli Friedmanfa0df832012-02-02 03:46:19 +00003183 MarkFunctionReferenced(StartLoc,
Fariborz Jahanian37d06562009-09-03 23:18:17 +00003184 const_cast<CXXDestructorDecl*>(Dtor));
Richard Smith22262ab2013-05-04 06:44:46 +00003185 if (DiagnoseUseOfDecl(Dtor, StartLoc))
3186 return ExprError();
Douglas Gregor5bb5e4a2010-10-12 23:32:35 +00003187 }
Argyrios Kyrtzidis8bd42852011-05-24 19:53:26 +00003188
Nico Weber5a9259c2016-01-15 21:45:31 +00003189 CheckVirtualDtorCall(PointeeRD->getDestructor(), StartLoc,
3190 /*IsDelete=*/true, /*CallCanBeVirtual=*/true,
3191 /*WarnOnNonAbstractTypes=*/!ArrayForm,
3192 SourceLocation());
Anders Carlssona471db02009-08-16 20:29:29 +00003193 }
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00003194
Richard Smithb2f0f052016-10-10 18:54:32 +00003195 if (!OperatorDelete) {
3196 bool IsComplete = isCompleteType(StartLoc, Pointee);
3197 bool CanProvideSize =
3198 IsComplete && (!ArrayForm || UsualArrayDeleteWantsSize ||
3199 Pointee.isDestructedType());
3200 bool Overaligned = hasNewExtendedAlignment(*this, Pointee);
3201
Anders Carlssone1d34ba02009-11-15 18:45:20 +00003202 // Look for a global declaration.
Richard Smithb2f0f052016-10-10 18:54:32 +00003203 OperatorDelete = FindUsualDeallocationFunction(StartLoc, CanProvideSize,
3204 Overaligned, DeleteName);
3205 }
Mike Stump11289f42009-09-09 15:08:12 +00003206
Eli Friedmanfa0df832012-02-02 03:46:19 +00003207 MarkFunctionReferenced(StartLoc, OperatorDelete);
Ismail Pazarbasie5768d12015-05-18 19:59:11 +00003208
Douglas Gregorfa778132011-02-01 15:50:11 +00003209 // Check access and ambiguity of operator delete and destructor.
Eli Friedmanae4280f2011-07-26 22:25:31 +00003210 if (PointeeRD) {
3211 if (CXXDestructorDecl *Dtor = LookupDestructor(PointeeRD)) {
Simon Pilgrim75c26882016-09-30 14:25:09 +00003212 CheckDestructorAccess(Ex.get()->getExprLoc(), Dtor,
Douglas Gregorfa778132011-02-01 15:50:11 +00003213 PDiag(diag::err_access_dtor) << PointeeElem);
3214 }
3215 }
Sebastian Redlbd150f42008-11-21 19:14:01 +00003216 }
3217
Ismail Pazarbasie5768d12015-05-18 19:59:11 +00003218 CXXDeleteExpr *Result = new (Context) CXXDeleteExpr(
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00003219 Context.VoidTy, UseGlobal, ArrayForm, ArrayFormAsWritten,
3220 UsualArrayDeleteWantsSize, OperatorDelete, Ex.get(), StartLoc);
Ismail Pazarbasie5768d12015-05-18 19:59:11 +00003221 AnalyzeDeleteExprMismatch(Result);
3222 return Result;
Sebastian Redlbd150f42008-11-21 19:14:01 +00003223}
3224
Nico Weber5a9259c2016-01-15 21:45:31 +00003225void Sema::CheckVirtualDtorCall(CXXDestructorDecl *dtor, SourceLocation Loc,
3226 bool IsDelete, bool CallCanBeVirtual,
3227 bool WarnOnNonAbstractTypes,
3228 SourceLocation DtorLoc) {
3229 if (!dtor || dtor->isVirtual() || !CallCanBeVirtual)
3230 return;
3231
3232 // C++ [expr.delete]p3:
3233 // In the first alternative (delete object), if the static type of the
3234 // object to be deleted is different from its dynamic type, the static
3235 // type shall be a base class of the dynamic type of the object to be
3236 // deleted and the static type shall have a virtual destructor or the
3237 // behavior is undefined.
3238 //
3239 const CXXRecordDecl *PointeeRD = dtor->getParent();
3240 // Note: a final class cannot be derived from, no issue there
3241 if (!PointeeRD->isPolymorphic() || PointeeRD->hasAttr<FinalAttr>())
3242 return;
3243
3244 QualType ClassType = dtor->getThisType(Context)->getPointeeType();
3245 if (PointeeRD->isAbstract()) {
3246 // If the class is abstract, we warn by default, because we're
3247 // sure the code has undefined behavior.
3248 Diag(Loc, diag::warn_delete_abstract_non_virtual_dtor) << (IsDelete ? 0 : 1)
3249 << ClassType;
3250 } else if (WarnOnNonAbstractTypes) {
3251 // Otherwise, if this is not an array delete, it's a bit suspect,
3252 // but not necessarily wrong.
3253 Diag(Loc, diag::warn_delete_non_virtual_dtor) << (IsDelete ? 0 : 1)
3254 << ClassType;
3255 }
3256 if (!IsDelete) {
3257 std::string TypeStr;
3258 ClassType.getAsStringInternal(TypeStr, getPrintingPolicy());
3259 Diag(DtorLoc, diag::note_delete_non_virtual)
3260 << FixItHint::CreateInsertion(DtorLoc, TypeStr + "::");
3261 }
3262}
3263
Richard Smith03a4aa32016-06-23 19:02:52 +00003264Sema::ConditionResult Sema::ActOnConditionVariable(Decl *ConditionVar,
3265 SourceLocation StmtLoc,
3266 ConditionKind CK) {
3267 ExprResult E =
3268 CheckConditionVariable(cast<VarDecl>(ConditionVar), StmtLoc, CK);
3269 if (E.isInvalid())
3270 return ConditionError();
Richard Smithb130fe72016-06-23 19:16:49 +00003271 return ConditionResult(*this, ConditionVar, MakeFullExpr(E.get(), StmtLoc),
3272 CK == ConditionKind::ConstexprIf);
Richard Smith03a4aa32016-06-23 19:02:52 +00003273}
3274
Douglas Gregor633caca2009-11-23 23:44:04 +00003275/// \brief Check the use of the given variable as a C++ condition in an if,
3276/// while, do-while, or switch statement.
John McCalldadc5752010-08-24 06:29:42 +00003277ExprResult Sema::CheckConditionVariable(VarDecl *ConditionVar,
John McCall7decc9e2010-11-18 06:31:45 +00003278 SourceLocation StmtLoc,
Richard Smith03a4aa32016-06-23 19:02:52 +00003279 ConditionKind CK) {
Richard Smith27d807c2013-04-30 13:56:41 +00003280 if (ConditionVar->isInvalidDecl())
3281 return ExprError();
3282
Douglas Gregor633caca2009-11-23 23:44:04 +00003283 QualType T = ConditionVar->getType();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00003284
Douglas Gregor633caca2009-11-23 23:44:04 +00003285 // C++ [stmt.select]p2:
3286 // The declarator shall not specify a function or an array.
3287 if (T->isFunctionType())
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00003288 return ExprError(Diag(ConditionVar->getLocation(),
Douglas Gregor633caca2009-11-23 23:44:04 +00003289 diag::err_invalid_use_of_function_type)
3290 << ConditionVar->getSourceRange());
3291 else if (T->isArrayType())
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00003292 return ExprError(Diag(ConditionVar->getLocation(),
Douglas Gregor633caca2009-11-23 23:44:04 +00003293 diag::err_invalid_use_of_array_type)
3294 << ConditionVar->getSourceRange());
Douglas Gregor0156d1c2009-11-24 16:07:02 +00003295
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00003296 ExprResult Condition = DeclRefExpr::Create(
3297 Context, NestedNameSpecifierLoc(), SourceLocation(), ConditionVar,
3298 /*enclosing*/ false, ConditionVar->getLocation(),
3299 ConditionVar->getType().getNonReferenceType(), VK_LValue);
Eli Friedman2dfa7932012-01-16 21:00:51 +00003300
Eli Friedmanfa0df832012-02-02 03:46:19 +00003301 MarkDeclRefReferenced(cast<DeclRefExpr>(Condition.get()));
Eli Friedman2dfa7932012-01-16 21:00:51 +00003302
Richard Smith03a4aa32016-06-23 19:02:52 +00003303 switch (CK) {
3304 case ConditionKind::Boolean:
3305 return CheckBooleanCondition(StmtLoc, Condition.get());
3306
Richard Smithb130fe72016-06-23 19:16:49 +00003307 case ConditionKind::ConstexprIf:
3308 return CheckBooleanCondition(StmtLoc, Condition.get(), true);
3309
Richard Smith03a4aa32016-06-23 19:02:52 +00003310 case ConditionKind::Switch:
3311 return CheckSwitchCondition(StmtLoc, Condition.get());
John Wiegley01296292011-04-08 18:41:53 +00003312 }
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00003313
Richard Smith03a4aa32016-06-23 19:02:52 +00003314 llvm_unreachable("unexpected condition kind");
Douglas Gregor633caca2009-11-23 23:44:04 +00003315}
3316
Argyrios Kyrtzidis7620ee42008-09-10 02:17:11 +00003317/// CheckCXXBooleanCondition - Returns true if a conversion to bool is invalid.
Richard Smithb130fe72016-06-23 19:16:49 +00003318ExprResult Sema::CheckCXXBooleanCondition(Expr *CondExpr, bool IsConstexpr) {
Argyrios Kyrtzidis7620ee42008-09-10 02:17:11 +00003319 // C++ 6.4p4:
3320 // The value of a condition that is an initialized declaration in a statement
3321 // other than a switch statement is the value of the declared variable
3322 // implicitly converted to type bool. If that conversion is ill-formed, the
3323 // program is ill-formed.
3324 // The value of a condition that is an expression is the value of the
3325 // expression, implicitly converted to bool.
3326 //
Richard Smithb130fe72016-06-23 19:16:49 +00003327 // FIXME: Return this value to the caller so they don't need to recompute it.
3328 llvm::APSInt Value(/*BitWidth*/1);
3329 return (IsConstexpr && !CondExpr->isValueDependent())
3330 ? CheckConvertedConstantExpression(CondExpr, Context.BoolTy, Value,
3331 CCEK_ConstexprIf)
3332 : PerformContextuallyConvertToBool(CondExpr);
Argyrios Kyrtzidis7620ee42008-09-10 02:17:11 +00003333}
Douglas Gregoraa1e21d2008-09-12 00:47:35 +00003334
3335/// Helper function to determine whether this is the (deprecated) C++
3336/// conversion from a string literal to a pointer to non-const char or
3337/// non-const wchar_t (for narrow and wide string literals,
3338/// respectively).
Mike Stump11289f42009-09-09 15:08:12 +00003339bool
Douglas Gregoraa1e21d2008-09-12 00:47:35 +00003340Sema::IsStringLiteralToNonConstPointerConversion(Expr *From, QualType ToType) {
3341 // Look inside the implicit cast, if it exists.
3342 if (ImplicitCastExpr *Cast = dyn_cast<ImplicitCastExpr>(From))
3343 From = Cast->getSubExpr();
3344
3345 // A string literal (2.13.4) that is not a wide string literal can
3346 // be converted to an rvalue of type "pointer to char"; a wide
3347 // string literal can be converted to an rvalue of type "pointer
3348 // to wchar_t" (C++ 4.2p2).
Douglas Gregor689999d2010-06-22 23:47:37 +00003349 if (StringLiteral *StrLit = dyn_cast<StringLiteral>(From->IgnoreParens()))
Ted Kremenekc23c7e62009-07-29 21:53:49 +00003350 if (const PointerType *ToPtrType = ToType->getAs<PointerType>())
Mike Stump11289f42009-09-09 15:08:12 +00003351 if (const BuiltinType *ToPointeeType
John McCall9dd450b2009-09-21 23:43:11 +00003352 = ToPtrType->getPointeeType()->getAs<BuiltinType>()) {
Douglas Gregoraa1e21d2008-09-12 00:47:35 +00003353 // This conversion is considered only when there is an
3354 // explicit appropriate pointer target type (C++ 4.2p2).
Douglas Gregorfb65e592011-07-27 05:40:30 +00003355 if (!ToPtrType->getPointeeType().hasQualifiers()) {
3356 switch (StrLit->getKind()) {
3357 case StringLiteral::UTF8:
3358 case StringLiteral::UTF16:
3359 case StringLiteral::UTF32:
3360 // We don't allow UTF literals to be implicitly converted
3361 break;
3362 case StringLiteral::Ascii:
3363 return (ToPointeeType->getKind() == BuiltinType::Char_U ||
3364 ToPointeeType->getKind() == BuiltinType::Char_S);
3365 case StringLiteral::Wide:
Dmitry Polukhin9d64f722016-04-14 09:52:06 +00003366 return Context.typesAreCompatible(Context.getWideCharType(),
3367 QualType(ToPointeeType, 0));
Douglas Gregorfb65e592011-07-27 05:40:30 +00003368 }
3369 }
Douglas Gregoraa1e21d2008-09-12 00:47:35 +00003370 }
3371
3372 return false;
3373}
Douglas Gregor39c16d42008-10-24 04:54:22 +00003374
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00003375static ExprResult BuildCXXCastArgument(Sema &S,
John McCalle3027922010-08-25 11:45:40 +00003376 SourceLocation CastLoc,
3377 QualType Ty,
3378 CastKind Kind,
3379 CXXMethodDecl *Method,
John McCall30909032011-09-21 08:36:56 +00003380 DeclAccessPair FoundDecl,
Abramo Bagnara635ed24e2011-10-05 07:56:41 +00003381 bool HadMultipleCandidates,
John McCalle3027922010-08-25 11:45:40 +00003382 Expr *From) {
Douglas Gregora4253922010-04-16 22:17:36 +00003383 switch (Kind) {
David Blaikie83d382b2011-09-23 05:06:16 +00003384 default: llvm_unreachable("Unhandled cast kind!");
John McCalle3027922010-08-25 11:45:40 +00003385 case CK_ConstructorConversion: {
Douglas Gregorc7a31072011-10-10 22:41:00 +00003386 CXXConstructorDecl *Constructor = cast<CXXConstructorDecl>(Method);
Benjamin Kramerf0623432012-08-23 22:51:59 +00003387 SmallVector<Expr*, 8> ConstructorArgs;
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00003388
Richard Smith72d74052013-07-20 19:41:36 +00003389 if (S.RequireNonAbstractType(CastLoc, Ty,
3390 diag::err_allocation_of_abstract_type))
3391 return ExprError();
3392
Benjamin Kramercc4c49d2012-08-23 23:38:35 +00003393 if (S.CompleteConstructorCall(Constructor, From, CastLoc, ConstructorArgs))
John McCallfaf5fb42010-08-26 23:41:50 +00003394 return ExprError();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00003395
Richard Smith5179eb72016-06-28 19:03:57 +00003396 S.CheckConstructorAccess(CastLoc, Constructor, FoundDecl,
3397 InitializedEntity::InitializeTemporary(Ty));
Richard Smith7c9442a2015-02-24 21:44:43 +00003398 if (S.DiagnoseUseOfDecl(Method, CastLoc))
Richard Smithd3f2d322015-02-24 21:16:19 +00003399 return ExprError();
Richard Smithd59b8322012-12-19 01:39:02 +00003400
Richard Smithf8adcdc2014-07-17 05:12:35 +00003401 ExprResult Result = S.BuildCXXConstructExpr(
Richard Smithc2bebe92016-05-11 20:37:46 +00003402 CastLoc, Ty, FoundDecl, cast<CXXConstructorDecl>(Method),
Richard Smithf8adcdc2014-07-17 05:12:35 +00003403 ConstructorArgs, HadMultipleCandidates,
3404 /*ListInit*/ false, /*StdInitListInit*/ false, /*ZeroInit*/ false,
3405 CXXConstructExpr::CK_Complete, SourceRange());
Douglas Gregora4253922010-04-16 22:17:36 +00003406 if (Result.isInvalid())
John McCallfaf5fb42010-08-26 23:41:50 +00003407 return ExprError();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00003408
Nikola Smiljanic01a75982014-05-29 10:55:11 +00003409 return S.MaybeBindToTemporary(Result.getAs<Expr>());
Douglas Gregora4253922010-04-16 22:17:36 +00003410 }
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00003411
John McCalle3027922010-08-25 11:45:40 +00003412 case CK_UserDefinedConversion: {
Douglas Gregora4253922010-04-16 22:17:36 +00003413 assert(!From->getType()->isPointerType() && "Arg can't have pointer type!");
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00003414
Richard Smithd3f2d322015-02-24 21:16:19 +00003415 S.CheckMemberOperatorAccess(CastLoc, From, /*arg*/ nullptr, FoundDecl);
Richard Smith7c9442a2015-02-24 21:44:43 +00003416 if (S.DiagnoseUseOfDecl(Method, CastLoc))
Richard Smithd3f2d322015-02-24 21:16:19 +00003417 return ExprError();
3418
Douglas Gregora4253922010-04-16 22:17:36 +00003419 // Create an implicit call expr that calls it.
Eli Friedman2fb85122012-03-01 01:30:04 +00003420 CXXConversionDecl *Conv = cast<CXXConversionDecl>(Method);
3421 ExprResult Result = S.BuildCXXMemberCallExpr(From, FoundDecl, Conv,
Abramo Bagnara635ed24e2011-10-05 07:56:41 +00003422 HadMultipleCandidates);
Douglas Gregor668443e2011-01-20 00:18:04 +00003423 if (Result.isInvalid())
3424 return ExprError();
Abramo Bagnarab0cf2972011-11-16 22:46:05 +00003425 // Record usage of conversion in an implicit cast.
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00003426 Result = ImplicitCastExpr::Create(S.Context, Result.get()->getType(),
3427 CK_UserDefinedConversion, Result.get(),
3428 nullptr, Result.get()->getValueKind());
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00003429
Douglas Gregor668443e2011-01-20 00:18:04 +00003430 return S.MaybeBindToTemporary(Result.get());
Douglas Gregora4253922010-04-16 22:17:36 +00003431 }
3432 }
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00003433}
Douglas Gregora4253922010-04-16 22:17:36 +00003434
Douglas Gregor5fb53972009-01-14 15:45:31 +00003435/// PerformImplicitConversion - Perform an implicit conversion of the
3436/// expression From to the type ToType using the pre-computed implicit
John Wiegley01296292011-04-08 18:41:53 +00003437/// conversion sequence ICS. Returns the converted
Douglas Gregor7c3bbdf2009-12-16 03:45:30 +00003438/// expression. Action is the kind of conversion we're performing,
Douglas Gregor5fb53972009-01-14 15:45:31 +00003439/// used in the error message.
John Wiegley01296292011-04-08 18:41:53 +00003440ExprResult
3441Sema::PerformImplicitConversion(Expr *From, QualType ToType,
Douglas Gregor5fb53972009-01-14 15:45:31 +00003442 const ImplicitConversionSequence &ICS,
Simon Pilgrim75c26882016-09-30 14:25:09 +00003443 AssignmentAction Action,
John McCall31168b02011-06-15 23:02:42 +00003444 CheckedConversionKind CCK) {
John McCall0d1da222010-01-12 00:44:57 +00003445 switch (ICS.getKind()) {
John Wiegley01296292011-04-08 18:41:53 +00003446 case ImplicitConversionSequence::StandardConversion: {
Richard Smith507840d2011-11-29 22:48:16 +00003447 ExprResult Res = PerformImplicitConversion(From, ToType, ICS.Standard,
3448 Action, CCK);
John Wiegley01296292011-04-08 18:41:53 +00003449 if (Res.isInvalid())
3450 return ExprError();
Nikola Smiljanic01a75982014-05-29 10:55:11 +00003451 From = Res.get();
Douglas Gregor39c16d42008-10-24 04:54:22 +00003452 break;
John Wiegley01296292011-04-08 18:41:53 +00003453 }
Douglas Gregor39c16d42008-10-24 04:54:22 +00003454
Anders Carlsson110b07b2009-09-15 06:28:28 +00003455 case ImplicitConversionSequence::UserDefinedConversion: {
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00003456
Fariborz Jahanian2fee79a2009-08-28 22:04:50 +00003457 FunctionDecl *FD = ICS.UserDefined.ConversionFunction;
John McCall8cb679e2010-11-15 09:13:47 +00003458 CastKind CastKind;
Anders Carlsson110b07b2009-09-15 06:28:28 +00003459 QualType BeforeToType;
Richard Smithd3f2d322015-02-24 21:16:19 +00003460 assert(FD && "no conversion function for user-defined conversion seq");
Anders Carlsson110b07b2009-09-15 06:28:28 +00003461 if (const CXXConversionDecl *Conv = dyn_cast<CXXConversionDecl>(FD)) {
John McCalle3027922010-08-25 11:45:40 +00003462 CastKind = CK_UserDefinedConversion;
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00003463
Anders Carlsson110b07b2009-09-15 06:28:28 +00003464 // If the user-defined conversion is specified by a conversion function,
3465 // the initial standard conversion sequence converts the source type to
3466 // the implicit object parameter of the conversion function.
3467 BeforeToType = Context.getTagDeclType(Conv->getParent());
John McCalla03edda2010-12-04 09:57:16 +00003468 } else {
3469 const CXXConstructorDecl *Ctor = cast<CXXConstructorDecl>(FD);
John McCalle3027922010-08-25 11:45:40 +00003470 CastKind = CK_ConstructorConversion;
Fariborz Jahanian55824512009-11-06 00:23:08 +00003471 // Do no conversion if dealing with ... for the first conversion.
Douglas Gregor3153da72009-11-20 02:31:03 +00003472 if (!ICS.UserDefined.EllipsisConversion) {
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00003473 // If the user-defined conversion is specified by a constructor, the
Nico Weberb58e51c2014-11-19 05:21:39 +00003474 // initial standard conversion sequence converts the source type to
3475 // the type required by the argument of the constructor
Douglas Gregor3153da72009-11-20 02:31:03 +00003476 BeforeToType = Ctor->getParamDecl(0)->getType().getNonReferenceType();
3477 }
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00003478 }
Richard Smith72d74052013-07-20 19:41:36 +00003479 // Watch out for ellipsis conversion.
Fariborz Jahanianeec642f2009-11-06 00:55:14 +00003480 if (!ICS.UserDefined.EllipsisConversion) {
John Wiegley01296292011-04-08 18:41:53 +00003481 ExprResult Res =
Richard Smith507840d2011-11-29 22:48:16 +00003482 PerformImplicitConversion(From, BeforeToType,
3483 ICS.UserDefined.Before, AA_Converting,
3484 CCK);
John Wiegley01296292011-04-08 18:41:53 +00003485 if (Res.isInvalid())
3486 return ExprError();
Nikola Smiljanic01a75982014-05-29 10:55:11 +00003487 From = Res.get();
Fariborz Jahanian55824512009-11-06 00:23:08 +00003488 }
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00003489
3490 ExprResult CastArg
Douglas Gregora4253922010-04-16 22:17:36 +00003491 = BuildCXXCastArgument(*this,
3492 From->getLocStart(),
Anders Carlssone9766d52009-09-09 21:33:21 +00003493 ToType.getNonReferenceType(),
Douglas Gregor2bbfba02011-01-20 01:32:05 +00003494 CastKind, cast<CXXMethodDecl>(FD),
3495 ICS.UserDefined.FoundConversionFunction,
Abramo Bagnara635ed24e2011-10-05 07:56:41 +00003496 ICS.UserDefined.HadMultipleCandidates,
John McCallb268a282010-08-23 23:25:46 +00003497 From);
Anders Carlssone9766d52009-09-09 21:33:21 +00003498
3499 if (CastArg.isInvalid())
John Wiegley01296292011-04-08 18:41:53 +00003500 return ExprError();
Eli Friedmane96f1d32009-11-27 04:41:50 +00003501
Nikola Smiljanic01a75982014-05-29 10:55:11 +00003502 From = CastArg.get();
Eli Friedmane96f1d32009-11-27 04:41:50 +00003503
Richard Smith507840d2011-11-29 22:48:16 +00003504 return PerformImplicitConversion(From, ToType, ICS.UserDefined.After,
3505 AA_Converting, CCK);
Fariborz Jahanianda21efb2009-10-16 19:20:59 +00003506 }
John McCall0d1da222010-01-12 00:44:57 +00003507
3508 case ImplicitConversionSequence::AmbiguousConversion:
John McCall5c32be02010-08-24 20:38:10 +00003509 ICS.DiagnoseAmbiguousConversion(*this, From->getExprLoc(),
John McCall0d1da222010-01-12 00:44:57 +00003510 PDiag(diag::err_typecheck_ambiguous_condition)
3511 << From->getSourceRange());
John Wiegley01296292011-04-08 18:41:53 +00003512 return ExprError();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00003513
Douglas Gregor39c16d42008-10-24 04:54:22 +00003514 case ImplicitConversionSequence::EllipsisConversion:
David Blaikie83d382b2011-09-23 05:06:16 +00003515 llvm_unreachable("Cannot perform an ellipsis conversion");
Douglas Gregor39c16d42008-10-24 04:54:22 +00003516
3517 case ImplicitConversionSequence::BadConversion:
Richard Smithe15a3702016-10-06 23:12:58 +00003518 bool Diagnosed =
3519 DiagnoseAssignmentResult(Incompatible, From->getExprLoc(), ToType,
3520 From->getType(), From, Action);
3521 assert(Diagnosed && "failed to diagnose bad conversion"); (void)Diagnosed;
John Wiegley01296292011-04-08 18:41:53 +00003522 return ExprError();
Douglas Gregor39c16d42008-10-24 04:54:22 +00003523 }
3524
3525 // Everything went well.
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00003526 return From;
Douglas Gregor39c16d42008-10-24 04:54:22 +00003527}
3528
Richard Smith507840d2011-11-29 22:48:16 +00003529/// PerformImplicitConversion - Perform an implicit conversion of the
Douglas Gregor39c16d42008-10-24 04:54:22 +00003530/// expression From to the type ToType by following the standard
John Wiegley01296292011-04-08 18:41:53 +00003531/// conversion sequence SCS. Returns the converted
Douglas Gregor47d3f272008-12-19 17:40:08 +00003532/// expression. Flavor is the context in which we're performing this
3533/// conversion, for use in error messages.
John Wiegley01296292011-04-08 18:41:53 +00003534ExprResult
Richard Smith507840d2011-11-29 22:48:16 +00003535Sema::PerformImplicitConversion(Expr *From, QualType ToType,
Douglas Gregor47d3f272008-12-19 17:40:08 +00003536 const StandardConversionSequence& SCS,
Simon Pilgrim75c26882016-09-30 14:25:09 +00003537 AssignmentAction Action,
John McCall31168b02011-06-15 23:02:42 +00003538 CheckedConversionKind CCK) {
3539 bool CStyle = (CCK == CCK_CStyleCast || CCK == CCK_FunctionalCast);
Simon Pilgrim75c26882016-09-30 14:25:09 +00003540
Mike Stump87c57ac2009-05-16 07:39:55 +00003541 // Overall FIXME: we are recomputing too many types here and doing far too
3542 // much extra work. What this means is that we need to keep track of more
3543 // information that is computed when we try the implicit conversion initially,
3544 // so that we don't need to recompute anything here.
Douglas Gregor39c16d42008-10-24 04:54:22 +00003545 QualType FromType = From->getType();
Simon Pilgrim75c26882016-09-30 14:25:09 +00003546
Douglas Gregor2fe98832008-11-03 19:09:14 +00003547 if (SCS.CopyConstructor) {
Anders Carlsson549c5bd2009-05-19 04:45:15 +00003548 // FIXME: When can ToType be a reference type?
3549 assert(!ToType->isReferenceType());
Fariborz Jahanian49850df2009-09-25 18:59:21 +00003550 if (SCS.Second == ICK_Derived_To_Base) {
Benjamin Kramerf0623432012-08-23 22:51:59 +00003551 SmallVector<Expr*, 8> ConstructorArgs;
Fariborz Jahanian49850df2009-09-25 18:59:21 +00003552 if (CompleteConstructorCall(cast<CXXConstructorDecl>(SCS.CopyConstructor),
Benjamin Kramercc4c49d2012-08-23 23:38:35 +00003553 From, /*FIXME:ConstructLoc*/SourceLocation(),
Fariborz Jahanian49850df2009-09-25 18:59:21 +00003554 ConstructorArgs))
John Wiegley01296292011-04-08 18:41:53 +00003555 return ExprError();
Richard Smithf8adcdc2014-07-17 05:12:35 +00003556 return BuildCXXConstructExpr(
Richard Smithc2bebe92016-05-11 20:37:46 +00003557 /*FIXME:ConstructLoc*/ SourceLocation(), ToType,
3558 SCS.FoundCopyConstructor, SCS.CopyConstructor,
Richard Smithf8adcdc2014-07-17 05:12:35 +00003559 ConstructorArgs, /*HadMultipleCandidates*/ false,
3560 /*ListInit*/ false, /*StdInitListInit*/ false, /*ZeroInit*/ false,
3561 CXXConstructExpr::CK_Complete, SourceRange());
Fariborz Jahanian49850df2009-09-25 18:59:21 +00003562 }
Richard Smithf8adcdc2014-07-17 05:12:35 +00003563 return BuildCXXConstructExpr(
Richard Smithc2bebe92016-05-11 20:37:46 +00003564 /*FIXME:ConstructLoc*/ SourceLocation(), ToType,
3565 SCS.FoundCopyConstructor, SCS.CopyConstructor,
Richard Smithf8adcdc2014-07-17 05:12:35 +00003566 From, /*HadMultipleCandidates*/ false,
3567 /*ListInit*/ false, /*StdInitListInit*/ false, /*ZeroInit*/ false,
3568 CXXConstructExpr::CK_Complete, SourceRange());
Douglas Gregor2fe98832008-11-03 19:09:14 +00003569 }
3570
Douglas Gregor980fb162010-04-29 18:24:40 +00003571 // Resolve overloaded function references.
3572 if (Context.hasSameType(FromType, Context.OverloadTy)) {
3573 DeclAccessPair Found;
3574 FunctionDecl *Fn = ResolveAddressOfOverloadedFunction(From, ToType,
3575 true, Found);
3576 if (!Fn)
John Wiegley01296292011-04-08 18:41:53 +00003577 return ExprError();
Douglas Gregor980fb162010-04-29 18:24:40 +00003578
Daniel Dunbar62ee6412012-03-09 18:35:03 +00003579 if (DiagnoseUseOfDecl(Fn, From->getLocStart()))
John Wiegley01296292011-04-08 18:41:53 +00003580 return ExprError();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00003581
Douglas Gregor980fb162010-04-29 18:24:40 +00003582 From = FixOverloadedFunctionReference(From, Found, Fn);
3583 FromType = From->getType();
3584 }
3585
Richard Smitha23ab512013-05-23 00:30:41 +00003586 // If we're converting to an atomic type, first convert to the corresponding
3587 // non-atomic type.
3588 QualType ToAtomicType;
3589 if (const AtomicType *ToAtomic = ToType->getAs<AtomicType>()) {
3590 ToAtomicType = ToType;
3591 ToType = ToAtomic->getValueType();
3592 }
3593
George Burgess IV8d141e02015-12-14 22:00:49 +00003594 QualType InitialFromType = FromType;
Richard Smith507840d2011-11-29 22:48:16 +00003595 // Perform the first implicit conversion.
Douglas Gregor39c16d42008-10-24 04:54:22 +00003596 switch (SCS.First) {
3597 case ICK_Identity:
David Majnemer3087a2b2014-12-28 21:47:31 +00003598 if (const AtomicType *FromAtomic = FromType->getAs<AtomicType>()) {
3599 FromType = FromAtomic->getValueType().getUnqualifiedType();
3600 From = ImplicitCastExpr::Create(Context, FromType, CK_AtomicToNonAtomic,
3601 From, /*BasePath=*/nullptr, VK_RValue);
3602 }
Douglas Gregor39c16d42008-10-24 04:54:22 +00003603 break;
3604
Eli Friedman946b7b52012-01-24 22:51:26 +00003605 case ICK_Lvalue_To_Rvalue: {
John McCall526ab472011-10-25 17:37:35 +00003606 assert(From->getObjectKind() != OK_ObjCProperty);
Eli Friedman946b7b52012-01-24 22:51:26 +00003607 ExprResult FromRes = DefaultLvalueConversion(From);
3608 assert(!FromRes.isInvalid() && "Can't perform deduced conversion?!");
Nikola Smiljanic01a75982014-05-29 10:55:11 +00003609 From = FromRes.get();
David Majnemere7029bc2014-12-16 06:31:17 +00003610 FromType = From->getType();
John McCall34376a62010-12-04 03:47:34 +00003611 break;
Eli Friedman946b7b52012-01-24 22:51:26 +00003612 }
John McCall34376a62010-12-04 03:47:34 +00003613
Douglas Gregor39c16d42008-10-24 04:54:22 +00003614 case ICK_Array_To_Pointer:
Douglas Gregor171c45a2009-02-18 21:56:37 +00003615 FromType = Context.getArrayDecayedType(FromType);
Simon Pilgrim75c26882016-09-30 14:25:09 +00003616 From = ImpCastExprToType(From, FromType, CK_ArrayToPointerDecay,
Nikola Smiljanic01a75982014-05-29 10:55:11 +00003617 VK_RValue, /*BasePath=*/nullptr, CCK).get();
Douglas Gregor171c45a2009-02-18 21:56:37 +00003618 break;
3619
3620 case ICK_Function_To_Pointer:
Douglas Gregor39c16d42008-10-24 04:54:22 +00003621 FromType = Context.getPointerType(FromType);
Simon Pilgrim75c26882016-09-30 14:25:09 +00003622 From = ImpCastExprToType(From, FromType, CK_FunctionToPointerDecay,
Nikola Smiljanic01a75982014-05-29 10:55:11 +00003623 VK_RValue, /*BasePath=*/nullptr, CCK).get();
Douglas Gregor39c16d42008-10-24 04:54:22 +00003624 break;
3625
3626 default:
David Blaikie83d382b2011-09-23 05:06:16 +00003627 llvm_unreachable("Improper first standard conversion");
Douglas Gregor39c16d42008-10-24 04:54:22 +00003628 }
3629
Richard Smith507840d2011-11-29 22:48:16 +00003630 // Perform the second implicit conversion
Douglas Gregor39c16d42008-10-24 04:54:22 +00003631 switch (SCS.Second) {
3632 case ICK_Identity:
Richard Smith410cc892014-11-26 03:26:53 +00003633 // C++ [except.spec]p5:
3634 // [For] assignment to and initialization of pointers to functions,
3635 // pointers to member functions, and references to functions: the
3636 // target entity shall allow at least the exceptions allowed by the
3637 // source value in the assignment or initialization.
3638 switch (Action) {
3639 case AA_Assigning:
3640 case AA_Initializing:
3641 // Note, function argument passing and returning are initialization.
3642 case AA_Passing:
3643 case AA_Returning:
3644 case AA_Sending:
3645 case AA_Passing_CFAudited:
3646 if (CheckExceptionSpecCompatibility(From, ToType))
3647 return ExprError();
3648 break;
3649
3650 case AA_Casting:
3651 case AA_Converting:
3652 // Casts and implicit conversions are not initialization, so are not
3653 // checked for exception specification mismatches.
3654 break;
3655 }
Sebastian Redl5d431642009-10-10 12:04:10 +00003656 // Nothing else to do.
Douglas Gregor39c16d42008-10-24 04:54:22 +00003657 break;
3658
3659 case ICK_Integral_Promotion:
Douglas Gregor39c16d42008-10-24 04:54:22 +00003660 case ICK_Integral_Conversion:
Richard Smithb9c5a602012-09-13 21:18:54 +00003661 if (ToType->isBooleanType()) {
3662 assert(FromType->castAs<EnumType>()->getDecl()->isFixed() &&
3663 SCS.Second == ICK_Integral_Promotion &&
3664 "only enums with fixed underlying type can promote to bool");
3665 From = ImpCastExprToType(From, ToType, CK_IntegralToBoolean,
Nikola Smiljanic01a75982014-05-29 10:55:11 +00003666 VK_RValue, /*BasePath=*/nullptr, CCK).get();
Richard Smithb9c5a602012-09-13 21:18:54 +00003667 } else {
3668 From = ImpCastExprToType(From, ToType, CK_IntegralCast,
Nikola Smiljanic01a75982014-05-29 10:55:11 +00003669 VK_RValue, /*BasePath=*/nullptr, CCK).get();
Richard Smithb9c5a602012-09-13 21:18:54 +00003670 }
Eli Friedman06ed2a52009-10-20 08:27:19 +00003671 break;
3672
3673 case ICK_Floating_Promotion:
Douglas Gregor39c16d42008-10-24 04:54:22 +00003674 case ICK_Floating_Conversion:
Simon Pilgrim75c26882016-09-30 14:25:09 +00003675 From = ImpCastExprToType(From, ToType, CK_FloatingCast,
Nikola Smiljanic01a75982014-05-29 10:55:11 +00003676 VK_RValue, /*BasePath=*/nullptr, CCK).get();
Eli Friedman06ed2a52009-10-20 08:27:19 +00003677 break;
3678
3679 case ICK_Complex_Promotion:
John McCall8cb679e2010-11-15 09:13:47 +00003680 case ICK_Complex_Conversion: {
3681 QualType FromEl = From->getType()->getAs<ComplexType>()->getElementType();
3682 QualType ToEl = ToType->getAs<ComplexType>()->getElementType();
3683 CastKind CK;
3684 if (FromEl->isRealFloatingType()) {
3685 if (ToEl->isRealFloatingType())
3686 CK = CK_FloatingComplexCast;
3687 else
3688 CK = CK_FloatingComplexToIntegralComplex;
3689 } else if (ToEl->isRealFloatingType()) {
3690 CK = CK_IntegralComplexToFloatingComplex;
3691 } else {
3692 CK = CK_IntegralComplexCast;
3693 }
Simon Pilgrim75c26882016-09-30 14:25:09 +00003694 From = ImpCastExprToType(From, ToType, CK,
Nikola Smiljanic01a75982014-05-29 10:55:11 +00003695 VK_RValue, /*BasePath=*/nullptr, CCK).get();
Eli Friedman06ed2a52009-10-20 08:27:19 +00003696 break;
John McCall8cb679e2010-11-15 09:13:47 +00003697 }
Eli Friedman06ed2a52009-10-20 08:27:19 +00003698
Douglas Gregor39c16d42008-10-24 04:54:22 +00003699 case ICK_Floating_Integral:
Douglas Gregor49b4d732010-06-22 23:07:26 +00003700 if (ToType->isRealFloatingType())
Simon Pilgrim75c26882016-09-30 14:25:09 +00003701 From = ImpCastExprToType(From, ToType, CK_IntegralToFloating,
Nikola Smiljanic01a75982014-05-29 10:55:11 +00003702 VK_RValue, /*BasePath=*/nullptr, CCK).get();
Eli Friedman06ed2a52009-10-20 08:27:19 +00003703 else
Simon Pilgrim75c26882016-09-30 14:25:09 +00003704 From = ImpCastExprToType(From, ToType, CK_FloatingToIntegral,
Nikola Smiljanic01a75982014-05-29 10:55:11 +00003705 VK_RValue, /*BasePath=*/nullptr, CCK).get();
Eli Friedman06ed2a52009-10-20 08:27:19 +00003706 break;
3707
Douglas Gregor4e5cbdc2009-02-11 23:02:49 +00003708 case ICK_Compatible_Conversion:
Simon Pilgrim75c26882016-09-30 14:25:09 +00003709 From = ImpCastExprToType(From, ToType, CK_NoOp,
Nikola Smiljanic01a75982014-05-29 10:55:11 +00003710 VK_RValue, /*BasePath=*/nullptr, CCK).get();
Douglas Gregor39c16d42008-10-24 04:54:22 +00003711 break;
3712
John McCall31168b02011-06-15 23:02:42 +00003713 case ICK_Writeback_Conversion:
Anders Carlsson7ec8ccd2009-09-12 04:46:44 +00003714 case ICK_Pointer_Conversion: {
Douglas Gregor6dd3a6a2010-12-02 21:47:04 +00003715 if (SCS.IncompatibleObjC && Action != AA_Casting) {
Douglas Gregor47d3f272008-12-19 17:40:08 +00003716 // Diagnose incompatible Objective-C conversions
Douglas Gregor2720dc62011-06-11 04:42:12 +00003717 if (Action == AA_Initializing || Action == AA_Assigning)
Daniel Dunbar62ee6412012-03-09 18:35:03 +00003718 Diag(From->getLocStart(),
Fariborz Jahanian413e0642011-03-21 19:08:42 +00003719 diag::ext_typecheck_convert_incompatible_pointer)
3720 << ToType << From->getType() << Action
Anna Zaks3b402712011-07-28 19:51:27 +00003721 << From->getSourceRange() << 0;
Fariborz Jahanian413e0642011-03-21 19:08:42 +00003722 else
Daniel Dunbar62ee6412012-03-09 18:35:03 +00003723 Diag(From->getLocStart(),
Fariborz Jahanian413e0642011-03-21 19:08:42 +00003724 diag::ext_typecheck_convert_incompatible_pointer)
3725 << From->getType() << ToType << Action
Anna Zaks3b402712011-07-28 19:51:27 +00003726 << From->getSourceRange() << 0;
John McCall31168b02011-06-15 23:02:42 +00003727
Douglas Gregor33823722011-06-11 01:09:30 +00003728 if (From->getType()->isObjCObjectPointerType() &&
3729 ToType->isObjCObjectPointerType())
3730 EmitRelatedResultTypeNote(From);
Brian Kelley11352a82017-03-29 18:09:02 +00003731 } else if (getLangOpts().allowsNonTrivialObjCLifetimeQualifiers() &&
3732 !CheckObjCARCUnavailableWeakConversion(ToType,
3733 From->getType())) {
John McCall9c3467e2011-09-09 06:12:06 +00003734 if (Action == AA_Initializing)
Simon Pilgrim75c26882016-09-30 14:25:09 +00003735 Diag(From->getLocStart(),
John McCall9c3467e2011-09-09 06:12:06 +00003736 diag::err_arc_weak_unavailable_assign);
3737 else
Daniel Dunbar62ee6412012-03-09 18:35:03 +00003738 Diag(From->getLocStart(),
Simon Pilgrim75c26882016-09-30 14:25:09 +00003739 diag::err_arc_convesion_of_weak_unavailable)
3740 << (Action == AA_Casting) << From->getType() << ToType
John McCall9c3467e2011-09-09 06:12:06 +00003741 << From->getSourceRange();
3742 }
Simon Pilgrim75c26882016-09-30 14:25:09 +00003743
John McCall8cb679e2010-11-15 09:13:47 +00003744 CastKind Kind = CK_Invalid;
John McCallcf142162010-08-07 06:22:56 +00003745 CXXCastPath BasePath;
Douglas Gregor58281352011-01-27 00:58:17 +00003746 if (CheckPointerConversion(From, ToType, Kind, BasePath, CStyle))
John Wiegley01296292011-04-08 18:41:53 +00003747 return ExprError();
John McCallcd78e802011-09-10 01:16:55 +00003748
3749 // Make sure we extend blocks if necessary.
3750 // FIXME: doing this here is really ugly.
3751 if (Kind == CK_BlockPointerToObjCPointerCast) {
3752 ExprResult E = From;
3753 (void) PrepareCastToObjCObjectPointer(E);
Nikola Smiljanic01a75982014-05-29 10:55:11 +00003754 From = E.get();
John McCallcd78e802011-09-10 01:16:55 +00003755 }
Brian Kelley11352a82017-03-29 18:09:02 +00003756 if (getLangOpts().allowsNonTrivialObjCLifetimeQualifiers())
3757 CheckObjCConversion(SourceRange(), ToType, From, CCK);
Richard Smith507840d2011-11-29 22:48:16 +00003758 From = ImpCastExprToType(From, ToType, Kind, VK_RValue, &BasePath, CCK)
Nikola Smiljanic01a75982014-05-29 10:55:11 +00003759 .get();
Douglas Gregor39c16d42008-10-24 04:54:22 +00003760 break;
Anders Carlsson7ec8ccd2009-09-12 04:46:44 +00003761 }
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00003762
Anders Carlsson7ec8ccd2009-09-12 04:46:44 +00003763 case ICK_Pointer_Member: {
John McCall8cb679e2010-11-15 09:13:47 +00003764 CastKind Kind = CK_Invalid;
John McCallcf142162010-08-07 06:22:56 +00003765 CXXCastPath BasePath;
Douglas Gregor58281352011-01-27 00:58:17 +00003766 if (CheckMemberPointerConversion(From, ToType, Kind, BasePath, CStyle))
John Wiegley01296292011-04-08 18:41:53 +00003767 return ExprError();
Sebastian Redl5d431642009-10-10 12:04:10 +00003768 if (CheckExceptionSpecCompatibility(From, ToType))
John Wiegley01296292011-04-08 18:41:53 +00003769 return ExprError();
David Majnemerd96b9972014-08-08 00:10:39 +00003770
3771 // We may not have been able to figure out what this member pointer resolved
3772 // to up until this exact point. Attempt to lock-in it's inheritance model.
David Majnemerfc22e472015-06-12 17:55:44 +00003773 if (Context.getTargetInfo().getCXXABI().isMicrosoft()) {
Richard Smithdb0ac552015-12-18 22:40:25 +00003774 (void)isCompleteType(From->getExprLoc(), From->getType());
3775 (void)isCompleteType(From->getExprLoc(), ToType);
David Majnemerfc22e472015-06-12 17:55:44 +00003776 }
David Majnemerd96b9972014-08-08 00:10:39 +00003777
Richard Smith507840d2011-11-29 22:48:16 +00003778 From = ImpCastExprToType(From, ToType, Kind, VK_RValue, &BasePath, CCK)
Nikola Smiljanic01a75982014-05-29 10:55:11 +00003779 .get();
Anders Carlsson7ec8ccd2009-09-12 04:46:44 +00003780 break;
3781 }
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00003782
Abramo Bagnara7ccce982011-04-07 09:26:19 +00003783 case ICK_Boolean_Conversion:
Anton Korobeynikovf0c267e2011-10-14 23:23:15 +00003784 // Perform half-to-boolean conversion via float.
3785 if (From->getType()->isHalfType()) {
Nikola Smiljanic01a75982014-05-29 10:55:11 +00003786 From = ImpCastExprToType(From, Context.FloatTy, CK_FloatingCast).get();
Anton Korobeynikovf0c267e2011-10-14 23:23:15 +00003787 FromType = Context.FloatTy;
3788 }
3789
Richard Smith507840d2011-11-29 22:48:16 +00003790 From = ImpCastExprToType(From, Context.BoolTy,
Simon Pilgrim75c26882016-09-30 14:25:09 +00003791 ScalarTypeToBooleanCastKind(FromType),
Nikola Smiljanic01a75982014-05-29 10:55:11 +00003792 VK_RValue, /*BasePath=*/nullptr, CCK).get();
Douglas Gregor39c16d42008-10-24 04:54:22 +00003793 break;
3794
Douglas Gregor88d292c2010-05-13 16:44:06 +00003795 case ICK_Derived_To_Base: {
John McCallcf142162010-08-07 06:22:56 +00003796 CXXCastPath BasePath;
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00003797 if (CheckDerivedToBaseConversion(From->getType(),
Douglas Gregor02ba0ea2009-11-06 01:02:41 +00003798 ToType.getNonReferenceType(),
3799 From->getLocStart(),
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00003800 From->getSourceRange(),
Douglas Gregor88d292c2010-05-13 16:44:06 +00003801 &BasePath,
Douglas Gregor58281352011-01-27 00:58:17 +00003802 CStyle))
John Wiegley01296292011-04-08 18:41:53 +00003803 return ExprError();
Douglas Gregor88d292c2010-05-13 16:44:06 +00003804
Richard Smith507840d2011-11-29 22:48:16 +00003805 From = ImpCastExprToType(From, ToType.getNonReferenceType(),
3806 CK_DerivedToBase, From->getValueKind(),
Nikola Smiljanic01a75982014-05-29 10:55:11 +00003807 &BasePath, CCK).get();
Douglas Gregor02ba0ea2009-11-06 01:02:41 +00003808 break;
Douglas Gregor88d292c2010-05-13 16:44:06 +00003809 }
3810
Douglas Gregor46188682010-05-18 22:42:18 +00003811 case ICK_Vector_Conversion:
Simon Pilgrim75c26882016-09-30 14:25:09 +00003812 From = ImpCastExprToType(From, ToType, CK_BitCast,
Nikola Smiljanic01a75982014-05-29 10:55:11 +00003813 VK_RValue, /*BasePath=*/nullptr, CCK).get();
Douglas Gregor46188682010-05-18 22:42:18 +00003814 break;
3815
George Burgess IVdf1ed002016-01-13 01:52:39 +00003816 case ICK_Vector_Splat: {
Fariborz Jahanian28d94b12015-03-05 23:06:09 +00003817 // Vector splat from any arithmetic type to a vector.
George Burgess IVdf1ed002016-01-13 01:52:39 +00003818 Expr *Elem = prepareVectorSplat(ToType, From).get();
3819 From = ImpCastExprToType(Elem, ToType, CK_VectorSplat, VK_RValue,
3820 /*BasePath=*/nullptr, CCK).get();
Douglas Gregor46188682010-05-18 22:42:18 +00003821 break;
George Burgess IVdf1ed002016-01-13 01:52:39 +00003822 }
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00003823
Douglas Gregor46188682010-05-18 22:42:18 +00003824 case ICK_Complex_Real:
John McCall8cb679e2010-11-15 09:13:47 +00003825 // Case 1. x -> _Complex y
3826 if (const ComplexType *ToComplex = ToType->getAs<ComplexType>()) {
3827 QualType ElType = ToComplex->getElementType();
3828 bool isFloatingComplex = ElType->isRealFloatingType();
3829
3830 // x -> y
3831 if (Context.hasSameUnqualifiedType(ElType, From->getType())) {
3832 // do nothing
3833 } else if (From->getType()->isRealFloatingType()) {
Richard Smith507840d2011-11-29 22:48:16 +00003834 From = ImpCastExprToType(From, ElType,
Nikola Smiljanic01a75982014-05-29 10:55:11 +00003835 isFloatingComplex ? CK_FloatingCast : CK_FloatingToIntegral).get();
John McCall8cb679e2010-11-15 09:13:47 +00003836 } else {
3837 assert(From->getType()->isIntegerType());
Richard Smith507840d2011-11-29 22:48:16 +00003838 From = ImpCastExprToType(From, ElType,
Nikola Smiljanic01a75982014-05-29 10:55:11 +00003839 isFloatingComplex ? CK_IntegralToFloating : CK_IntegralCast).get();
John McCall8cb679e2010-11-15 09:13:47 +00003840 }
3841 // y -> _Complex y
Richard Smith507840d2011-11-29 22:48:16 +00003842 From = ImpCastExprToType(From, ToType,
3843 isFloatingComplex ? CK_FloatingRealToComplex
Nikola Smiljanic01a75982014-05-29 10:55:11 +00003844 : CK_IntegralRealToComplex).get();
John McCall8cb679e2010-11-15 09:13:47 +00003845
3846 // Case 2. _Complex x -> y
3847 } else {
3848 const ComplexType *FromComplex = From->getType()->getAs<ComplexType>();
3849 assert(FromComplex);
3850
3851 QualType ElType = FromComplex->getElementType();
3852 bool isFloatingComplex = ElType->isRealFloatingType();
3853
3854 // _Complex x -> x
Richard Smith507840d2011-11-29 22:48:16 +00003855 From = ImpCastExprToType(From, ElType,
3856 isFloatingComplex ? CK_FloatingComplexToReal
Simon Pilgrim75c26882016-09-30 14:25:09 +00003857 : CK_IntegralComplexToReal,
Nikola Smiljanic01a75982014-05-29 10:55:11 +00003858 VK_RValue, /*BasePath=*/nullptr, CCK).get();
John McCall8cb679e2010-11-15 09:13:47 +00003859
3860 // x -> y
3861 if (Context.hasSameUnqualifiedType(ElType, ToType)) {
3862 // do nothing
3863 } else if (ToType->isRealFloatingType()) {
Richard Smith507840d2011-11-29 22:48:16 +00003864 From = ImpCastExprToType(From, ToType,
Simon Pilgrim75c26882016-09-30 14:25:09 +00003865 isFloatingComplex ? CK_FloatingCast : CK_IntegralToFloating,
Nikola Smiljanic01a75982014-05-29 10:55:11 +00003866 VK_RValue, /*BasePath=*/nullptr, CCK).get();
John McCall8cb679e2010-11-15 09:13:47 +00003867 } else {
3868 assert(ToType->isIntegerType());
Richard Smith507840d2011-11-29 22:48:16 +00003869 From = ImpCastExprToType(From, ToType,
Simon Pilgrim75c26882016-09-30 14:25:09 +00003870 isFloatingComplex ? CK_FloatingToIntegral : CK_IntegralCast,
Nikola Smiljanic01a75982014-05-29 10:55:11 +00003871 VK_RValue, /*BasePath=*/nullptr, CCK).get();
John McCall8cb679e2010-11-15 09:13:47 +00003872 }
3873 }
Douglas Gregor46188682010-05-18 22:42:18 +00003874 break;
Simon Pilgrim75c26882016-09-30 14:25:09 +00003875
Fariborz Jahanian42455ea2011-02-12 19:07:46 +00003876 case ICK_Block_Pointer_Conversion: {
Richard Smith507840d2011-11-29 22:48:16 +00003877 From = ImpCastExprToType(From, ToType.getUnqualifiedType(), CK_BitCast,
Nikola Smiljanic01a75982014-05-29 10:55:11 +00003878 VK_RValue, /*BasePath=*/nullptr, CCK).get();
John McCall31168b02011-06-15 23:02:42 +00003879 break;
3880 }
Simon Pilgrim75c26882016-09-30 14:25:09 +00003881
Fariborz Jahanian16f92ce2011-03-23 19:50:54 +00003882 case ICK_TransparentUnionConversion: {
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00003883 ExprResult FromRes = From;
Fariborz Jahanian16f92ce2011-03-23 19:50:54 +00003884 Sema::AssignConvertType ConvTy =
John Wiegley01296292011-04-08 18:41:53 +00003885 CheckTransparentUnionArgumentConstraints(ToType, FromRes);
3886 if (FromRes.isInvalid())
3887 return ExprError();
Nikola Smiljanic01a75982014-05-29 10:55:11 +00003888 From = FromRes.get();
Fariborz Jahanian16f92ce2011-03-23 19:50:54 +00003889 assert ((ConvTy == Sema::Compatible) &&
3890 "Improper transparent union conversion");
3891 (void)ConvTy;
3892 break;
3893 }
3894
Guy Benyei259f9f42013-02-07 16:05:33 +00003895 case ICK_Zero_Event_Conversion:
3896 From = ImpCastExprToType(From, ToType,
3897 CK_ZeroToOCLEvent,
Nikola Smiljanic01a75982014-05-29 10:55:11 +00003898 From->getValueKind()).get();
Guy Benyei259f9f42013-02-07 16:05:33 +00003899 break;
3900
Egor Churaev89831422016-12-23 14:55:49 +00003901 case ICK_Zero_Queue_Conversion:
3902 From = ImpCastExprToType(From, ToType,
3903 CK_ZeroToOCLQueue,
3904 From->getValueKind()).get();
3905 break;
3906
Douglas Gregor46188682010-05-18 22:42:18 +00003907 case ICK_Lvalue_To_Rvalue:
3908 case ICK_Array_To_Pointer:
3909 case ICK_Function_To_Pointer:
Richard Smitheb7ef2e2016-10-20 21:53:09 +00003910 case ICK_Function_Conversion:
Douglas Gregor46188682010-05-18 22:42:18 +00003911 case ICK_Qualification:
3912 case ICK_Num_Conversion_Kinds:
George Burgess IV78ed9b42015-10-11 20:37:14 +00003913 case ICK_C_Only_Conversion:
George Burgess IV2099b542016-09-02 22:59:57 +00003914 case ICK_Incompatible_Pointer_Conversion:
David Blaikie83d382b2011-09-23 05:06:16 +00003915 llvm_unreachable("Improper second standard conversion");
Douglas Gregor39c16d42008-10-24 04:54:22 +00003916 }
3917
3918 switch (SCS.Third) {
3919 case ICK_Identity:
3920 // Nothing to do.
3921 break;
3922
Richard Smitheb7ef2e2016-10-20 21:53:09 +00003923 case ICK_Function_Conversion:
3924 // If both sides are functions (or pointers/references to them), there could
3925 // be incompatible exception declarations.
3926 if (CheckExceptionSpecCompatibility(From, ToType))
3927 return ExprError();
3928
3929 From = ImpCastExprToType(From, ToType, CK_NoOp,
3930 VK_RValue, /*BasePath=*/nullptr, CCK).get();
3931 break;
3932
Sebastian Redlc57d34b2010-07-20 04:20:21 +00003933 case ICK_Qualification: {
3934 // The qualification keeps the category of the inner expression, unless the
3935 // target type isn't a reference.
John McCall2536c6d2010-08-25 10:28:54 +00003936 ExprValueKind VK = ToType->isReferenceType() ?
Eli Friedmanbe4b3632011-09-27 21:58:52 +00003937 From->getValueKind() : VK_RValue;
Richard Smith507840d2011-11-29 22:48:16 +00003938 From = ImpCastExprToType(From, ToType.getNonLValueExprType(Context),
Nikola Smiljanic01a75982014-05-29 10:55:11 +00003939 CK_NoOp, VK, /*BasePath=*/nullptr, CCK).get();
Douglas Gregore489a7d2010-02-28 18:30:25 +00003940
Douglas Gregore981bb02011-03-14 16:13:32 +00003941 if (SCS.DeprecatedStringLiteralToCharPtr &&
Ismail Pazarbasi1121de32014-01-17 21:08:52 +00003942 !getLangOpts().WritableStrings) {
3943 Diag(From->getLocStart(), getLangOpts().CPlusPlus11
3944 ? diag::ext_deprecated_string_literal_conversion
3945 : diag::warn_deprecated_string_literal_conversion)
Douglas Gregore489a7d2010-02-28 18:30:25 +00003946 << ToType.getNonReferenceType();
Ismail Pazarbasi1121de32014-01-17 21:08:52 +00003947 }
Douglas Gregore489a7d2010-02-28 18:30:25 +00003948
Douglas Gregor39c16d42008-10-24 04:54:22 +00003949 break;
Richard Smitha23ab512013-05-23 00:30:41 +00003950 }
Sebastian Redlc57d34b2010-07-20 04:20:21 +00003951
Douglas Gregor39c16d42008-10-24 04:54:22 +00003952 default:
David Blaikie83d382b2011-09-23 05:06:16 +00003953 llvm_unreachable("Improper third standard conversion");
Douglas Gregor39c16d42008-10-24 04:54:22 +00003954 }
3955
Douglas Gregor298f43d2012-04-12 20:42:30 +00003956 // If this conversion sequence involved a scalar -> atomic conversion, perform
3957 // that conversion now.
Richard Smitha23ab512013-05-23 00:30:41 +00003958 if (!ToAtomicType.isNull()) {
3959 assert(Context.hasSameType(
3960 ToAtomicType->castAs<AtomicType>()->getValueType(), From->getType()));
3961 From = ImpCastExprToType(From, ToAtomicType, CK_NonAtomicToAtomic,
Nikola Smiljanic01a75982014-05-29 10:55:11 +00003962 VK_RValue, nullptr, CCK).get();
Richard Smitha23ab512013-05-23 00:30:41 +00003963 }
3964
George Burgess IV8d141e02015-12-14 22:00:49 +00003965 // If this conversion sequence succeeded and involved implicitly converting a
3966 // _Nullable type to a _Nonnull one, complain.
3967 if (CCK == CCK_ImplicitConversion)
3968 diagnoseNullableToNonnullConversion(ToType, InitialFromType,
3969 From->getLocStart());
3970
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00003971 return From;
Douglas Gregor39c16d42008-10-24 04:54:22 +00003972}
3973
Chandler Carruth8e172c62011-05-01 06:51:22 +00003974/// \brief Check the completeness of a type in a unary type trait.
3975///
3976/// If the particular type trait requires a complete type, tries to complete
3977/// it. If completing the type fails, a diagnostic is emitted and false
3978/// returned. If completing the type succeeds or no completion was required,
3979/// returns true.
Alp Toker95e7ff22014-01-01 05:57:51 +00003980static bool CheckUnaryTypeTraitTypeCompleteness(Sema &S, TypeTrait UTT,
Chandler Carruth8e172c62011-05-01 06:51:22 +00003981 SourceLocation Loc,
3982 QualType ArgTy) {
3983 // C++0x [meta.unary.prop]p3:
3984 // For all of the class templates X declared in this Clause, instantiating
3985 // that template with a template argument that is a class template
3986 // specialization may result in the implicit instantiation of the template
3987 // argument if and only if the semantics of X require that the argument
3988 // must be a complete type.
3989 // We apply this rule to all the type trait expressions used to implement
3990 // these class templates. We also try to follow any GCC documented behavior
3991 // in these expressions to ensure portability of standard libraries.
3992 switch (UTT) {
Alp Toker95e7ff22014-01-01 05:57:51 +00003993 default: llvm_unreachable("not a UTT");
Chandler Carruth8e172c62011-05-01 06:51:22 +00003994 // is_complete_type somewhat obviously cannot require a complete type.
3995 case UTT_IsCompleteType:
Chandler Carrutha62d8a52011-05-01 19:18:02 +00003996 // Fall-through
Chandler Carruth8e172c62011-05-01 06:51:22 +00003997
3998 // These traits are modeled on the type predicates in C++0x
3999 // [meta.unary.cat] and [meta.unary.comp]. They are not specified as
4000 // requiring a complete type, as whether or not they return true cannot be
4001 // impacted by the completeness of the type.
4002 case UTT_IsVoid:
4003 case UTT_IsIntegral:
4004 case UTT_IsFloatingPoint:
4005 case UTT_IsArray:
4006 case UTT_IsPointer:
4007 case UTT_IsLvalueReference:
4008 case UTT_IsRvalueReference:
4009 case UTT_IsMemberFunctionPointer:
4010 case UTT_IsMemberObjectPointer:
4011 case UTT_IsEnum:
4012 case UTT_IsUnion:
4013 case UTT_IsClass:
4014 case UTT_IsFunction:
4015 case UTT_IsReference:
4016 case UTT_IsArithmetic:
4017 case UTT_IsFundamental:
4018 case UTT_IsObject:
4019 case UTT_IsScalar:
4020 case UTT_IsCompound:
4021 case UTT_IsMemberPointer:
Chandler Carrutha62d8a52011-05-01 19:18:02 +00004022 // Fall-through
Chandler Carruth8e172c62011-05-01 06:51:22 +00004023
4024 // These traits are modeled on type predicates in C++0x [meta.unary.prop]
4025 // which requires some of its traits to have the complete type. However,
4026 // the completeness of the type cannot impact these traits' semantics, and
4027 // so they don't require it. This matches the comments on these traits in
4028 // Table 49.
4029 case UTT_IsConst:
4030 case UTT_IsVolatile:
4031 case UTT_IsSigned:
4032 case UTT_IsUnsigned:
David Majnemer213bea32015-11-16 06:58:51 +00004033
4034 // This type trait always returns false, checking the type is moot.
4035 case UTT_IsInterfaceClass:
Chandler Carruth8e172c62011-05-01 06:51:22 +00004036 return true;
4037
David Majnemer213bea32015-11-16 06:58:51 +00004038 // C++14 [meta.unary.prop]:
4039 // If T is a non-union class type, T shall be a complete type.
4040 case UTT_IsEmpty:
4041 case UTT_IsPolymorphic:
4042 case UTT_IsAbstract:
4043 if (const auto *RD = ArgTy->getAsCXXRecordDecl())
4044 if (!RD->isUnion())
4045 return !S.RequireCompleteType(
4046 Loc, ArgTy, diag::err_incomplete_type_used_in_type_trait_expr);
4047 return true;
4048
4049 // C++14 [meta.unary.prop]:
4050 // If T is a class type, T shall be a complete type.
4051 case UTT_IsFinal:
4052 case UTT_IsSealed:
4053 if (ArgTy->getAsCXXRecordDecl())
4054 return !S.RequireCompleteType(
4055 Loc, ArgTy, diag::err_incomplete_type_used_in_type_trait_expr);
4056 return true;
4057
4058 // C++0x [meta.unary.prop] Table 49 requires the following traits to be
4059 // applied to a complete type.
Eric Fiselier07360662017-04-12 22:12:15 +00004060 case UTT_IsAggregate:
Chandler Carruth8e172c62011-05-01 06:51:22 +00004061 case UTT_IsTrivial:
Alexis Huntd9a5cc12011-05-13 00:31:07 +00004062 case UTT_IsTriviallyCopyable:
Chandler Carruth8e172c62011-05-01 06:51:22 +00004063 case UTT_IsStandardLayout:
4064 case UTT_IsPOD:
4065 case UTT_IsLiteral:
David Majnemer213bea32015-11-16 06:58:51 +00004066
Alp Toker73287bf2014-01-20 00:24:09 +00004067 case UTT_IsDestructible:
4068 case UTT_IsNothrowDestructible:
Chandler Carrutha62d8a52011-05-01 19:18:02 +00004069 // Fall-through
Chandler Carruth8e172c62011-05-01 06:51:22 +00004070
Chandler Carrutha62d8a52011-05-01 19:18:02 +00004071 // These trait expressions are designed to help implement predicates in
Chandler Carruth8e172c62011-05-01 06:51:22 +00004072 // [meta.unary.prop] despite not being named the same. They are specified
4073 // by both GCC and the Embarcadero C++ compiler, and require the complete
4074 // type due to the overarching C++0x type predicates being implemented
4075 // requiring the complete type.
4076 case UTT_HasNothrowAssign:
Joao Matosc9523d42013-03-27 01:34:16 +00004077 case UTT_HasNothrowMoveAssign:
Chandler Carruth8e172c62011-05-01 06:51:22 +00004078 case UTT_HasNothrowConstructor:
4079 case UTT_HasNothrowCopy:
4080 case UTT_HasTrivialAssign:
Joao Matosc9523d42013-03-27 01:34:16 +00004081 case UTT_HasTrivialMoveAssign:
Alexis Huntf479f1b2011-05-09 18:22:59 +00004082 case UTT_HasTrivialDefaultConstructor:
Joao Matosc9523d42013-03-27 01:34:16 +00004083 case UTT_HasTrivialMoveConstructor:
Chandler Carruth8e172c62011-05-01 06:51:22 +00004084 case UTT_HasTrivialCopy:
4085 case UTT_HasTrivialDestructor:
4086 case UTT_HasVirtualDestructor:
4087 // Arrays of unknown bound are expressly allowed.
4088 QualType ElTy = ArgTy;
4089 if (ArgTy->isIncompleteArrayType())
4090 ElTy = S.Context.getAsArrayType(ArgTy)->getElementType();
4091
4092 // The void type is expressly allowed.
4093 if (ElTy->isVoidType())
4094 return true;
4095
4096 return !S.RequireCompleteType(
4097 Loc, ElTy, diag::err_incomplete_type_used_in_type_trait_expr);
John Wiegleyd3522222011-04-28 02:06:46 +00004098 }
Chandler Carruth8e172c62011-05-01 06:51:22 +00004099}
4100
Joao Matosc9523d42013-03-27 01:34:16 +00004101static bool HasNoThrowOperator(const RecordType *RT, OverloadedOperatorKind Op,
4102 Sema &Self, SourceLocation KeyLoc, ASTContext &C,
Simon Pilgrim75c26882016-09-30 14:25:09 +00004103 bool (CXXRecordDecl::*HasTrivial)() const,
4104 bool (CXXRecordDecl::*HasNonTrivial)() const,
Joao Matosc9523d42013-03-27 01:34:16 +00004105 bool (CXXMethodDecl::*IsDesiredOp)() const)
4106{
4107 CXXRecordDecl *RD = cast<CXXRecordDecl>(RT->getDecl());
4108 if ((RD->*HasTrivial)() && !(RD->*HasNonTrivial)())
4109 return true;
4110
4111 DeclarationName Name = C.DeclarationNames.getCXXOperatorName(Op);
4112 DeclarationNameInfo NameInfo(Name, KeyLoc);
4113 LookupResult Res(Self, NameInfo, Sema::LookupOrdinaryName);
4114 if (Self.LookupQualifiedName(Res, RD)) {
4115 bool FoundOperator = false;
4116 Res.suppressDiagnostics();
4117 for (LookupResult::iterator Op = Res.begin(), OpEnd = Res.end();
4118 Op != OpEnd; ++Op) {
4119 if (isa<FunctionTemplateDecl>(*Op))
4120 continue;
4121
4122 CXXMethodDecl *Operator = cast<CXXMethodDecl>(*Op);
4123 if((Operator->*IsDesiredOp)()) {
4124 FoundOperator = true;
4125 const FunctionProtoType *CPT =
4126 Operator->getType()->getAs<FunctionProtoType>();
4127 CPT = Self.ResolveExceptionSpec(KeyLoc, CPT);
Alp Toker73287bf2014-01-20 00:24:09 +00004128 if (!CPT || !CPT->isNothrow(C))
Joao Matosc9523d42013-03-27 01:34:16 +00004129 return false;
4130 }
4131 }
4132 return FoundOperator;
4133 }
4134 return false;
4135}
4136
Alp Toker95e7ff22014-01-01 05:57:51 +00004137static bool EvaluateUnaryTypeTrait(Sema &Self, TypeTrait UTT,
Chandler Carruth8e172c62011-05-01 06:51:22 +00004138 SourceLocation KeyLoc, QualType T) {
Chandler Carruth0d1a54f2011-05-01 08:41:10 +00004139 assert(!T->isDependentType() && "Cannot evaluate traits of dependent type");
John Wiegleyd3522222011-04-28 02:06:46 +00004140
Sebastian Redl8eb06f12010-09-13 20:56:31 +00004141 ASTContext &C = Self.Context;
4142 switch(UTT) {
Alp Toker95e7ff22014-01-01 05:57:51 +00004143 default: llvm_unreachable("not a UTT");
Chandler Carruthd2479ea2011-05-01 06:11:07 +00004144 // Type trait expressions corresponding to the primary type category
4145 // predicates in C++0x [meta.unary.cat].
4146 case UTT_IsVoid:
4147 return T->isVoidType();
4148 case UTT_IsIntegral:
4149 return T->isIntegralType(C);
4150 case UTT_IsFloatingPoint:
4151 return T->isFloatingType();
4152 case UTT_IsArray:
4153 return T->isArrayType();
4154 case UTT_IsPointer:
4155 return T->isPointerType();
4156 case UTT_IsLvalueReference:
4157 return T->isLValueReferenceType();
4158 case UTT_IsRvalueReference:
4159 return T->isRValueReferenceType();
4160 case UTT_IsMemberFunctionPointer:
4161 return T->isMemberFunctionPointerType();
4162 case UTT_IsMemberObjectPointer:
4163 return T->isMemberDataPointerType();
4164 case UTT_IsEnum:
4165 return T->isEnumeralType();
Chandler Carruth100f3a92011-05-01 06:11:03 +00004166 case UTT_IsUnion:
Chandler Carruthaf858862011-05-01 09:29:58 +00004167 return T->isUnionType();
Chandler Carruthd2479ea2011-05-01 06:11:07 +00004168 case UTT_IsClass:
Joao Matosdc86f942012-08-31 18:45:21 +00004169 return T->isClassType() || T->isStructureType() || T->isInterfaceType();
Chandler Carruthd2479ea2011-05-01 06:11:07 +00004170 case UTT_IsFunction:
4171 return T->isFunctionType();
4172
4173 // Type trait expressions which correspond to the convenient composition
4174 // predicates in C++0x [meta.unary.comp].
4175 case UTT_IsReference:
4176 return T->isReferenceType();
4177 case UTT_IsArithmetic:
Chandler Carruthaf858862011-05-01 09:29:58 +00004178 return T->isArithmeticType() && !T->isEnumeralType();
Chandler Carruthd2479ea2011-05-01 06:11:07 +00004179 case UTT_IsFundamental:
Chandler Carruthaf858862011-05-01 09:29:58 +00004180 return T->isFundamentalType();
Chandler Carruthd2479ea2011-05-01 06:11:07 +00004181 case UTT_IsObject:
Chandler Carruthaf858862011-05-01 09:29:58 +00004182 return T->isObjectType();
Chandler Carruthd2479ea2011-05-01 06:11:07 +00004183 case UTT_IsScalar:
John McCall31168b02011-06-15 23:02:42 +00004184 // Note: semantic analysis depends on Objective-C lifetime types to be
4185 // considered scalar types. However, such types do not actually behave
4186 // like scalar types at run time (since they may require retain/release
4187 // operations), so we report them as non-scalar.
4188 if (T->isObjCLifetimeType()) {
4189 switch (T.getObjCLifetime()) {
4190 case Qualifiers::OCL_None:
4191 case Qualifiers::OCL_ExplicitNone:
4192 return true;
4193
4194 case Qualifiers::OCL_Strong:
4195 case Qualifiers::OCL_Weak:
4196 case Qualifiers::OCL_Autoreleasing:
4197 return false;
4198 }
4199 }
Simon Pilgrim75c26882016-09-30 14:25:09 +00004200
Chandler Carruth7ba7bd32011-05-01 09:29:55 +00004201 return T->isScalarType();
Chandler Carruthd2479ea2011-05-01 06:11:07 +00004202 case UTT_IsCompound:
Chandler Carruthaf858862011-05-01 09:29:58 +00004203 return T->isCompoundType();
Chandler Carruthd2479ea2011-05-01 06:11:07 +00004204 case UTT_IsMemberPointer:
4205 return T->isMemberPointerType();
4206
4207 // Type trait expressions which correspond to the type property predicates
4208 // in C++0x [meta.unary.prop].
4209 case UTT_IsConst:
4210 return T.isConstQualified();
4211 case UTT_IsVolatile:
4212 return T.isVolatileQualified();
4213 case UTT_IsTrivial:
Aaron Ballmand4a392c2015-07-21 21:07:11 +00004214 return T.isTrivialType(C);
Alexis Huntd9a5cc12011-05-13 00:31:07 +00004215 case UTT_IsTriviallyCopyable:
Aaron Ballmand4a392c2015-07-21 21:07:11 +00004216 return T.isTriviallyCopyableType(C);
Chandler Carruthd2479ea2011-05-01 06:11:07 +00004217 case UTT_IsStandardLayout:
4218 return T->isStandardLayoutType();
4219 case UTT_IsPOD:
Aaron Ballmand4a392c2015-07-21 21:07:11 +00004220 return T.isPODType(C);
Chandler Carruthd2479ea2011-05-01 06:11:07 +00004221 case UTT_IsLiteral:
Aaron Ballmand4a392c2015-07-21 21:07:11 +00004222 return T->isLiteralType(C);
Chandler Carruthd2479ea2011-05-01 06:11:07 +00004223 case UTT_IsEmpty:
4224 if (const CXXRecordDecl *RD = T->getAsCXXRecordDecl())
4225 return !RD->isUnion() && RD->isEmpty();
4226 return false;
Sebastian Redl8eb06f12010-09-13 20:56:31 +00004227 case UTT_IsPolymorphic:
Chandler Carruth100f3a92011-05-01 06:11:03 +00004228 if (const CXXRecordDecl *RD = T->getAsCXXRecordDecl())
David Majnemer213bea32015-11-16 06:58:51 +00004229 return !RD->isUnion() && RD->isPolymorphic();
Sebastian Redl8eb06f12010-09-13 20:56:31 +00004230 return false;
4231 case UTT_IsAbstract:
Chandler Carruth100f3a92011-05-01 06:11:03 +00004232 if (const CXXRecordDecl *RD = T->getAsCXXRecordDecl())
David Majnemer213bea32015-11-16 06:58:51 +00004233 return !RD->isUnion() && RD->isAbstract();
Sebastian Redl8eb06f12010-09-13 20:56:31 +00004234 return false;
Eric Fiselier07360662017-04-12 22:12:15 +00004235 case UTT_IsAggregate:
4236 // Report vector extensions and complex types as aggregates because they
4237 // support aggregate initialization. GCC mirrors this behavior for vectors
4238 // but not _Complex.
4239 return T->isAggregateType() || T->isVectorType() || T->isExtVectorType() ||
4240 T->isAnyComplexType();
David Majnemer213bea32015-11-16 06:58:51 +00004241 // __is_interface_class only returns true when CL is invoked in /CLR mode and
4242 // even then only when it is used with the 'interface struct ...' syntax
4243 // Clang doesn't support /CLR which makes this type trait moot.
John McCallbf4a7d72012-09-25 07:32:49 +00004244 case UTT_IsInterfaceClass:
John McCallbf4a7d72012-09-25 07:32:49 +00004245 return false;
Douglas Gregordca70af2011-12-03 18:14:24 +00004246 case UTT_IsFinal:
David Majnemera5433082013-10-18 00:33:31 +00004247 case UTT_IsSealed:
4248 if (const CXXRecordDecl *RD = T->getAsCXXRecordDecl())
David Majnemer213bea32015-11-16 06:58:51 +00004249 return RD->hasAttr<FinalAttr>();
David Majnemera5433082013-10-18 00:33:31 +00004250 return false;
John Wiegley65497cc2011-04-27 23:09:49 +00004251 case UTT_IsSigned:
4252 return T->isSignedIntegerType();
John Wiegley65497cc2011-04-27 23:09:49 +00004253 case UTT_IsUnsigned:
4254 return T->isUnsignedIntegerType();
Chandler Carruthd2479ea2011-05-01 06:11:07 +00004255
4256 // Type trait expressions which query classes regarding their construction,
4257 // destruction, and copying. Rather than being based directly on the
4258 // related type predicates in the standard, they are specified by both
4259 // GCC[1] and the Embarcadero C++ compiler[2], and Clang implements those
4260 // specifications.
4261 //
4262 // 1: http://gcc.gnu/.org/onlinedocs/gcc/Type-Traits.html
4263 // 2: http://docwiki.embarcadero.com/RADStudio/XE/en/Type_Trait_Functions_(C%2B%2B0x)_Index
Richard Smith92f241f2012-12-08 02:53:02 +00004264 //
4265 // Note that these builtins do not behave as documented in g++: if a class
4266 // has both a trivial and a non-trivial special member of a particular kind,
4267 // they return false! For now, we emulate this behavior.
4268 // FIXME: This appears to be a g++ bug: more complex cases reveal that it
4269 // does not correctly compute triviality in the presence of multiple special
4270 // members of the same kind. Revisit this once the g++ bug is fixed.
Alexis Huntf479f1b2011-05-09 18:22:59 +00004271 case UTT_HasTrivialDefaultConstructor:
Sebastian Redl8eb06f12010-09-13 20:56:31 +00004272 // http://gcc.gnu.org/onlinedocs/gcc/Type-Traits.html:
4273 // If __is_pod (type) is true then the trait is true, else if type is
4274 // a cv class or union type (or array thereof) with a trivial default
4275 // constructor ([class.ctor]) then the trait is true, else it is false.
Aaron Ballmand4a392c2015-07-21 21:07:11 +00004276 if (T.isPODType(C))
Sebastian Redl8eb06f12010-09-13 20:56:31 +00004277 return true;
Richard Smith92f241f2012-12-08 02:53:02 +00004278 if (CXXRecordDecl *RD = C.getBaseElementType(T)->getAsCXXRecordDecl())
4279 return RD->hasTrivialDefaultConstructor() &&
4280 !RD->hasNonTrivialDefaultConstructor();
Sebastian Redl8eb06f12010-09-13 20:56:31 +00004281 return false;
Joao Matosc9523d42013-03-27 01:34:16 +00004282 case UTT_HasTrivialMoveConstructor:
4283 // This trait is implemented by MSVC 2012 and needed to parse the
4284 // standard library headers. Specifically this is used as the logic
4285 // behind std::is_trivially_move_constructible (20.9.4.3).
Aaron Ballmand4a392c2015-07-21 21:07:11 +00004286 if (T.isPODType(C))
Joao Matosc9523d42013-03-27 01:34:16 +00004287 return true;
4288 if (CXXRecordDecl *RD = C.getBaseElementType(T)->getAsCXXRecordDecl())
4289 return RD->hasTrivialMoveConstructor() && !RD->hasNonTrivialMoveConstructor();
4290 return false;
Sebastian Redl8eb06f12010-09-13 20:56:31 +00004291 case UTT_HasTrivialCopy:
4292 // http://gcc.gnu.org/onlinedocs/gcc/Type-Traits.html:
4293 // If __is_pod (type) is true or type is a reference type then
4294 // the trait is true, else if type is a cv class or union type
4295 // with a trivial copy constructor ([class.copy]) then the trait
4296 // is true, else it is false.
Aaron Ballmand4a392c2015-07-21 21:07:11 +00004297 if (T.isPODType(C) || T->isReferenceType())
Sebastian Redl8eb06f12010-09-13 20:56:31 +00004298 return true;
Richard Smith92f241f2012-12-08 02:53:02 +00004299 if (CXXRecordDecl *RD = T->getAsCXXRecordDecl())
4300 return RD->hasTrivialCopyConstructor() &&
4301 !RD->hasNonTrivialCopyConstructor();
Sebastian Redl8eb06f12010-09-13 20:56:31 +00004302 return false;
Joao Matosc9523d42013-03-27 01:34:16 +00004303 case UTT_HasTrivialMoveAssign:
4304 // This trait is implemented by MSVC 2012 and needed to parse the
4305 // standard library headers. Specifically it is used as the logic
4306 // behind std::is_trivially_move_assignable (20.9.4.3)
Aaron Ballmand4a392c2015-07-21 21:07:11 +00004307 if (T.isPODType(C))
Joao Matosc9523d42013-03-27 01:34:16 +00004308 return true;
4309 if (CXXRecordDecl *RD = C.getBaseElementType(T)->getAsCXXRecordDecl())
4310 return RD->hasTrivialMoveAssignment() && !RD->hasNonTrivialMoveAssignment();
4311 return false;
Sebastian Redl8eb06f12010-09-13 20:56:31 +00004312 case UTT_HasTrivialAssign:
4313 // http://gcc.gnu.org/onlinedocs/gcc/Type-Traits.html:
4314 // If type is const qualified or is a reference type then the
4315 // trait is false. Otherwise if __is_pod (type) is true then the
4316 // trait is true, else if type is a cv class or union type with
4317 // a trivial copy assignment ([class.copy]) then the trait is
4318 // true, else it is false.
4319 // Note: the const and reference restrictions are interesting,
4320 // given that const and reference members don't prevent a class
4321 // from having a trivial copy assignment operator (but do cause
4322 // errors if the copy assignment operator is actually used, q.v.
4323 // [class.copy]p12).
4324
Richard Smith92f241f2012-12-08 02:53:02 +00004325 if (T.isConstQualified())
Sebastian Redl8eb06f12010-09-13 20:56:31 +00004326 return false;
Aaron Ballmand4a392c2015-07-21 21:07:11 +00004327 if (T.isPODType(C))
Sebastian Redl8eb06f12010-09-13 20:56:31 +00004328 return true;
Richard Smith92f241f2012-12-08 02:53:02 +00004329 if (CXXRecordDecl *RD = T->getAsCXXRecordDecl())
4330 return RD->hasTrivialCopyAssignment() &&
4331 !RD->hasNonTrivialCopyAssignment();
Sebastian Redl8eb06f12010-09-13 20:56:31 +00004332 return false;
Alp Toker73287bf2014-01-20 00:24:09 +00004333 case UTT_IsDestructible:
4334 case UTT_IsNothrowDestructible:
David Majnemerac73de92015-08-11 03:03:28 +00004335 // C++14 [meta.unary.prop]:
4336 // For reference types, is_destructible<T>::value is true.
4337 if (T->isReferenceType())
4338 return true;
4339
4340 // Objective-C++ ARC: autorelease types don't require destruction.
4341 if (T->isObjCLifetimeType() &&
4342 T.getObjCLifetime() == Qualifiers::OCL_Autoreleasing)
4343 return true;
4344
4345 // C++14 [meta.unary.prop]:
4346 // For incomplete types and function types, is_destructible<T>::value is
4347 // false.
4348 if (T->isIncompleteType() || T->isFunctionType())
4349 return false;
4350
4351 // C++14 [meta.unary.prop]:
4352 // For object types and given U equal to remove_all_extents_t<T>, if the
4353 // expression std::declval<U&>().~U() is well-formed when treated as an
4354 // unevaluated operand (Clause 5), then is_destructible<T>::value is true
4355 if (auto *RD = C.getBaseElementType(T)->getAsCXXRecordDecl()) {
4356 CXXDestructorDecl *Destructor = Self.LookupDestructor(RD);
4357 if (!Destructor)
4358 return false;
4359 // C++14 [dcl.fct.def.delete]p2:
4360 // A program that refers to a deleted function implicitly or
4361 // explicitly, other than to declare it, is ill-formed.
4362 if (Destructor->isDeleted())
4363 return false;
4364 if (C.getLangOpts().AccessControl && Destructor->getAccess() != AS_public)
4365 return false;
4366 if (UTT == UTT_IsNothrowDestructible) {
4367 const FunctionProtoType *CPT =
4368 Destructor->getType()->getAs<FunctionProtoType>();
4369 CPT = Self.ResolveExceptionSpec(KeyLoc, CPT);
4370 if (!CPT || !CPT->isNothrow(C))
4371 return false;
4372 }
4373 }
4374 return true;
4375
Sebastian Redl8eb06f12010-09-13 20:56:31 +00004376 case UTT_HasTrivialDestructor:
Alp Toker73287bf2014-01-20 00:24:09 +00004377 // http://gcc.gnu.org/onlinedocs/gcc/Type-Traits.html
Sebastian Redl8eb06f12010-09-13 20:56:31 +00004378 // If __is_pod (type) is true or type is a reference type
4379 // then the trait is true, else if type is a cv class or union
4380 // type (or array thereof) with a trivial destructor
4381 // ([class.dtor]) then the trait is true, else it is
4382 // false.
Aaron Ballmand4a392c2015-07-21 21:07:11 +00004383 if (T.isPODType(C) || T->isReferenceType())
Sebastian Redl8eb06f12010-09-13 20:56:31 +00004384 return true;
Simon Pilgrim75c26882016-09-30 14:25:09 +00004385
John McCall31168b02011-06-15 23:02:42 +00004386 // Objective-C++ ARC: autorelease types don't require destruction.
Simon Pilgrim75c26882016-09-30 14:25:09 +00004387 if (T->isObjCLifetimeType() &&
John McCall31168b02011-06-15 23:02:42 +00004388 T.getObjCLifetime() == Qualifiers::OCL_Autoreleasing)
4389 return true;
Simon Pilgrim75c26882016-09-30 14:25:09 +00004390
Richard Smith92f241f2012-12-08 02:53:02 +00004391 if (CXXRecordDecl *RD = C.getBaseElementType(T)->getAsCXXRecordDecl())
4392 return RD->hasTrivialDestructor();
Sebastian Redl8eb06f12010-09-13 20:56:31 +00004393 return false;
4394 // TODO: Propagate nothrowness for implicitly declared special members.
4395 case UTT_HasNothrowAssign:
4396 // http://gcc.gnu.org/onlinedocs/gcc/Type-Traits.html:
4397 // If type is const qualified or is a reference type then the
4398 // trait is false. Otherwise if __has_trivial_assign (type)
4399 // is true then the trait is true, else if type is a cv class
4400 // or union type with copy assignment operators that are known
4401 // not to throw an exception then the trait is true, else it is
4402 // false.
4403 if (C.getBaseElementType(T).isConstQualified())
4404 return false;
4405 if (T->isReferenceType())
4406 return false;
Aaron Ballmand4a392c2015-07-21 21:07:11 +00004407 if (T.isPODType(C) || T->isObjCLifetimeType())
Joao Matosc9523d42013-03-27 01:34:16 +00004408 return true;
Sebastian Redl8eb06f12010-09-13 20:56:31 +00004409
Joao Matosc9523d42013-03-27 01:34:16 +00004410 if (const RecordType *RT = T->getAs<RecordType>())
4411 return HasNoThrowOperator(RT, OO_Equal, Self, KeyLoc, C,
4412 &CXXRecordDecl::hasTrivialCopyAssignment,
4413 &CXXRecordDecl::hasNonTrivialCopyAssignment,
4414 &CXXMethodDecl::isCopyAssignmentOperator);
4415 return false;
4416 case UTT_HasNothrowMoveAssign:
4417 // This trait is implemented by MSVC 2012 and needed to parse the
4418 // standard library headers. Specifically this is used as the logic
4419 // behind std::is_nothrow_move_assignable (20.9.4.3).
Aaron Ballmand4a392c2015-07-21 21:07:11 +00004420 if (T.isPODType(C))
Joao Matosc9523d42013-03-27 01:34:16 +00004421 return true;
4422
4423 if (const RecordType *RT = C.getBaseElementType(T)->getAs<RecordType>())
4424 return HasNoThrowOperator(RT, OO_Equal, Self, KeyLoc, C,
4425 &CXXRecordDecl::hasTrivialMoveAssignment,
4426 &CXXRecordDecl::hasNonTrivialMoveAssignment,
4427 &CXXMethodDecl::isMoveAssignmentOperator);
Sebastian Redl8eb06f12010-09-13 20:56:31 +00004428 return false;
4429 case UTT_HasNothrowCopy:
4430 // http://gcc.gnu.org/onlinedocs/gcc/Type-Traits.html:
4431 // If __has_trivial_copy (type) is true then the trait is true, else
4432 // if type is a cv class or union type with copy constructors that are
4433 // known not to throw an exception then the trait is true, else it is
4434 // false.
John McCall31168b02011-06-15 23:02:42 +00004435 if (T.isPODType(C) || T->isReferenceType() || T->isObjCLifetimeType())
Sebastian Redl8eb06f12010-09-13 20:56:31 +00004436 return true;
Richard Smith92f241f2012-12-08 02:53:02 +00004437 if (CXXRecordDecl *RD = T->getAsCXXRecordDecl()) {
4438 if (RD->hasTrivialCopyConstructor() &&
4439 !RD->hasNonTrivialCopyConstructor())
Sebastian Redl8eb06f12010-09-13 20:56:31 +00004440 return true;
4441
4442 bool FoundConstructor = false;
Sebastian Redl8eb06f12010-09-13 20:56:31 +00004443 unsigned FoundTQs;
Aaron Ballmane4de1a512015-07-21 22:33:52 +00004444 for (const auto *ND : Self.LookupConstructors(RD)) {
Sebastian Redl5c649bc2010-09-13 22:18:28 +00004445 // A template constructor is never a copy constructor.
4446 // FIXME: However, it may actually be selected at the actual overload
4447 // resolution point.
Hal Finkelfec83452016-11-27 16:26:14 +00004448 if (isa<FunctionTemplateDecl>(ND->getUnderlyingDecl()))
Sebastian Redl5c649bc2010-09-13 22:18:28 +00004449 continue;
Hal Finkelfec83452016-11-27 16:26:14 +00004450 // UsingDecl itself is not a constructor
4451 if (isa<UsingDecl>(ND))
4452 continue;
4453 auto *Constructor = cast<CXXConstructorDecl>(ND->getUnderlyingDecl());
Sebastian Redl8eb06f12010-09-13 20:56:31 +00004454 if (Constructor->isCopyConstructor(FoundTQs)) {
4455 FoundConstructor = true;
4456 const FunctionProtoType *CPT
4457 = Constructor->getType()->getAs<FunctionProtoType>();
Richard Smithf623c962012-04-17 00:58:00 +00004458 CPT = Self.ResolveExceptionSpec(KeyLoc, CPT);
4459 if (!CPT)
4460 return false;
Alp Toker73287bf2014-01-20 00:24:09 +00004461 // TODO: check whether evaluating default arguments can throw.
Sebastian Redlc15c3262010-09-13 22:02:47 +00004462 // For now, we'll be conservative and assume that they can throw.
Aaron Ballmand4a392c2015-07-21 21:07:11 +00004463 if (!CPT->isNothrow(C) || CPT->getNumParams() > 1)
Richard Smith938f40b2011-06-11 17:19:42 +00004464 return false;
Sebastian Redl8eb06f12010-09-13 20:56:31 +00004465 }
4466 }
4467
Richard Smith938f40b2011-06-11 17:19:42 +00004468 return FoundConstructor;
Sebastian Redl8eb06f12010-09-13 20:56:31 +00004469 }
4470 return false;
4471 case UTT_HasNothrowConstructor:
Alp Tokerb4bca412014-01-20 00:23:47 +00004472 // http://gcc.gnu.org/onlinedocs/gcc/Type-Traits.html
Sebastian Redl8eb06f12010-09-13 20:56:31 +00004473 // If __has_trivial_constructor (type) is true then the trait is
4474 // true, else if type is a cv class or union type (or array
4475 // thereof) with a default constructor that is known not to
4476 // throw an exception then the trait is true, else it is false.
John McCall31168b02011-06-15 23:02:42 +00004477 if (T.isPODType(C) || T->isObjCLifetimeType())
Sebastian Redl8eb06f12010-09-13 20:56:31 +00004478 return true;
Richard Smith92f241f2012-12-08 02:53:02 +00004479 if (CXXRecordDecl *RD = C.getBaseElementType(T)->getAsCXXRecordDecl()) {
4480 if (RD->hasTrivialDefaultConstructor() &&
4481 !RD->hasNonTrivialDefaultConstructor())
Sebastian Redl8eb06f12010-09-13 20:56:31 +00004482 return true;
4483
Alp Tokerb4bca412014-01-20 00:23:47 +00004484 bool FoundConstructor = false;
Aaron Ballmane4de1a512015-07-21 22:33:52 +00004485 for (const auto *ND : Self.LookupConstructors(RD)) {
Sebastian Redl5c649bc2010-09-13 22:18:28 +00004486 // FIXME: In C++0x, a constructor template can be a default constructor.
Hal Finkelfec83452016-11-27 16:26:14 +00004487 if (isa<FunctionTemplateDecl>(ND->getUnderlyingDecl()))
Sebastian Redl5c649bc2010-09-13 22:18:28 +00004488 continue;
Hal Finkelfec83452016-11-27 16:26:14 +00004489 // UsingDecl itself is not a constructor
4490 if (isa<UsingDecl>(ND))
4491 continue;
4492 auto *Constructor = cast<CXXConstructorDecl>(ND->getUnderlyingDecl());
Sebastian Redlc15c3262010-09-13 22:02:47 +00004493 if (Constructor->isDefaultConstructor()) {
Alp Tokerb4bca412014-01-20 00:23:47 +00004494 FoundConstructor = true;
Sebastian Redlc15c3262010-09-13 22:02:47 +00004495 const FunctionProtoType *CPT
4496 = Constructor->getType()->getAs<FunctionProtoType>();
Richard Smithf623c962012-04-17 00:58:00 +00004497 CPT = Self.ResolveExceptionSpec(KeyLoc, CPT);
4498 if (!CPT)
4499 return false;
Alp Tokerb4bca412014-01-20 00:23:47 +00004500 // FIXME: check whether evaluating default arguments can throw.
Sebastian Redlc15c3262010-09-13 22:02:47 +00004501 // For now, we'll be conservative and assume that they can throw.
Aaron Ballmand4a392c2015-07-21 21:07:11 +00004502 if (!CPT->isNothrow(C) || CPT->getNumParams() > 0)
Alp Tokerb4bca412014-01-20 00:23:47 +00004503 return false;
Sebastian Redlc15c3262010-09-13 22:02:47 +00004504 }
Sebastian Redl8eb06f12010-09-13 20:56:31 +00004505 }
Alp Tokerb4bca412014-01-20 00:23:47 +00004506 return FoundConstructor;
Sebastian Redl8eb06f12010-09-13 20:56:31 +00004507 }
4508 return false;
4509 case UTT_HasVirtualDestructor:
4510 // http://gcc.gnu.org/onlinedocs/gcc/Type-Traits.html:
4511 // If type is a class type with a virtual destructor ([class.dtor])
4512 // then the trait is true, else it is false.
Richard Smith92f241f2012-12-08 02:53:02 +00004513 if (CXXRecordDecl *RD = T->getAsCXXRecordDecl())
Sebastian Redl058fc822010-09-14 23:40:14 +00004514 if (CXXDestructorDecl *Destructor = Self.LookupDestructor(RD))
Sebastian Redl8eb06f12010-09-13 20:56:31 +00004515 return Destructor->isVirtual();
Sebastian Redl8eb06f12010-09-13 20:56:31 +00004516 return false;
Chandler Carruthd2479ea2011-05-01 06:11:07 +00004517
4518 // These type trait expressions are modeled on the specifications for the
4519 // Embarcadero C++0x type trait functions:
4520 // http://docwiki.embarcadero.com/RADStudio/XE/en/Type_Trait_Functions_(C%2B%2B0x)_Index
4521 case UTT_IsCompleteType:
4522 // http://docwiki.embarcadero.com/RADStudio/XE/en/Is_complete_type_(typename_T_):
4523 // Returns True if and only if T is a complete type at the point of the
4524 // function call.
4525 return !T->isIncompleteType();
Sebastian Redl8eb06f12010-09-13 20:56:31 +00004526 }
Sebastian Redlbaad4e72009-01-05 20:52:13 +00004527}
Sebastian Redl5822f082009-02-07 20:10:22 +00004528
Alp Tokercbb90342013-12-13 20:49:58 +00004529static bool EvaluateBinaryTypeTrait(Sema &Self, TypeTrait BTT, QualType LhsT,
4530 QualType RhsT, SourceLocation KeyLoc);
4531
Douglas Gregor29c42f22012-02-24 07:38:34 +00004532static bool evaluateTypeTrait(Sema &S, TypeTrait Kind, SourceLocation KWLoc,
4533 ArrayRef<TypeSourceInfo *> Args,
4534 SourceLocation RParenLoc) {
Alp Toker95e7ff22014-01-01 05:57:51 +00004535 if (Kind <= UTT_Last)
4536 return EvaluateUnaryTypeTrait(S, Kind, KWLoc, Args[0]->getType());
4537
Alp Tokercbb90342013-12-13 20:49:58 +00004538 if (Kind <= BTT_Last)
4539 return EvaluateBinaryTypeTrait(S, Kind, Args[0]->getType(),
4540 Args[1]->getType(), RParenLoc);
4541
Douglas Gregor29c42f22012-02-24 07:38:34 +00004542 switch (Kind) {
Alp Toker73287bf2014-01-20 00:24:09 +00004543 case clang::TT_IsConstructible:
4544 case clang::TT_IsNothrowConstructible:
Douglas Gregor29c42f22012-02-24 07:38:34 +00004545 case clang::TT_IsTriviallyConstructible: {
4546 // C++11 [meta.unary.prop]:
Dmitri Gribenko85e87642012-02-24 20:03:35 +00004547 // is_trivially_constructible is defined as:
Douglas Gregor29c42f22012-02-24 07:38:34 +00004548 //
Dmitri Gribenko85e87642012-02-24 20:03:35 +00004549 // is_constructible<T, Args...>::value is true and the variable
Richard Smith8b86f2d2013-11-04 01:48:18 +00004550 // definition for is_constructible, as defined below, is known to call
4551 // no operation that is not trivial.
Douglas Gregor29c42f22012-02-24 07:38:34 +00004552 //
Simon Pilgrim75c26882016-09-30 14:25:09 +00004553 // The predicate condition for a template specialization
4554 // is_constructible<T, Args...> shall be satisfied if and only if the
4555 // following variable definition would be well-formed for some invented
Douglas Gregor29c42f22012-02-24 07:38:34 +00004556 // variable t:
4557 //
4558 // T t(create<Args>()...);
Alp Toker40f9b1c2013-12-12 21:23:03 +00004559 assert(!Args.empty());
Eli Friedman9ea1e162013-09-11 02:53:02 +00004560
4561 // Precondition: T and all types in the parameter pack Args shall be
4562 // complete types, (possibly cv-qualified) void, or arrays of
4563 // unknown bound.
Aaron Ballman2bf2cad2015-07-21 21:18:29 +00004564 for (const auto *TSI : Args) {
4565 QualType ArgTy = TSI->getType();
Eli Friedman9ea1e162013-09-11 02:53:02 +00004566 if (ArgTy->isVoidType() || ArgTy->isIncompleteArrayType())
Douglas Gregor29c42f22012-02-24 07:38:34 +00004567 continue;
Eli Friedman9ea1e162013-09-11 02:53:02 +00004568
Simon Pilgrim75c26882016-09-30 14:25:09 +00004569 if (S.RequireCompleteType(KWLoc, ArgTy,
Douglas Gregor29c42f22012-02-24 07:38:34 +00004570 diag::err_incomplete_type_used_in_type_trait_expr))
4571 return false;
4572 }
Eli Friedman9ea1e162013-09-11 02:53:02 +00004573
David Majnemer9658ecc2015-11-13 05:32:43 +00004574 // Make sure the first argument is not incomplete nor a function type.
4575 QualType T = Args[0]->getType();
4576 if (T->isIncompleteType() || T->isFunctionType())
Douglas Gregor29c42f22012-02-24 07:38:34 +00004577 return false;
Eli Friedman9ea1e162013-09-11 02:53:02 +00004578
Nikola Smiljanic1b4b6ba2014-04-15 11:30:15 +00004579 // Make sure the first argument is not an abstract type.
David Majnemer9658ecc2015-11-13 05:32:43 +00004580 CXXRecordDecl *RD = T->getAsCXXRecordDecl();
Nikola Smiljanic1b4b6ba2014-04-15 11:30:15 +00004581 if (RD && RD->isAbstract())
4582 return false;
4583
Dmitri Gribenkof8579502013-01-12 19:30:44 +00004584 SmallVector<OpaqueValueExpr, 2> OpaqueArgExprs;
4585 SmallVector<Expr *, 2> ArgExprs;
Douglas Gregor29c42f22012-02-24 07:38:34 +00004586 ArgExprs.reserve(Args.size() - 1);
4587 for (unsigned I = 1, N = Args.size(); I != N; ++I) {
David Majnemer9658ecc2015-11-13 05:32:43 +00004588 QualType ArgTy = Args[I]->getType();
4589 if (ArgTy->isObjectType() || ArgTy->isFunctionType())
4590 ArgTy = S.Context.getRValueReferenceType(ArgTy);
Douglas Gregor29c42f22012-02-24 07:38:34 +00004591 OpaqueArgExprs.push_back(
David Majnemer9658ecc2015-11-13 05:32:43 +00004592 OpaqueValueExpr(Args[I]->getTypeLoc().getLocStart(),
4593 ArgTy.getNonLValueExprType(S.Context),
4594 Expr::getValueKindForType(ArgTy)));
Douglas Gregor29c42f22012-02-24 07:38:34 +00004595 }
Richard Smitha507bfc2014-07-23 20:07:08 +00004596 for (Expr &E : OpaqueArgExprs)
4597 ArgExprs.push_back(&E);
4598
Simon Pilgrim75c26882016-09-30 14:25:09 +00004599 // Perform the initialization in an unevaluated context within a SFINAE
Douglas Gregor29c42f22012-02-24 07:38:34 +00004600 // trap at translation unit scope.
Faisal Valid143a0c2017-04-01 21:30:49 +00004601 EnterExpressionEvaluationContext Unevaluated(
4602 S, Sema::ExpressionEvaluationContext::Unevaluated);
Douglas Gregor29c42f22012-02-24 07:38:34 +00004603 Sema::SFINAETrap SFINAE(S, /*AccessCheckingSFINAE=*/true);
4604 Sema::ContextRAII TUContext(S, S.Context.getTranslationUnitDecl());
4605 InitializedEntity To(InitializedEntity::InitializeTemporary(Args[0]));
4606 InitializationKind InitKind(InitializationKind::CreateDirect(KWLoc, KWLoc,
4607 RParenLoc));
Dmitri Gribenko8f8930f2013-05-03 15:05:50 +00004608 InitializationSequence Init(S, To, InitKind, ArgExprs);
Douglas Gregor29c42f22012-02-24 07:38:34 +00004609 if (Init.Failed())
4610 return false;
Alp Toker73287bf2014-01-20 00:24:09 +00004611
Benjamin Kramercc4c49d2012-08-23 23:38:35 +00004612 ExprResult Result = Init.Perform(S, To, InitKind, ArgExprs);
Douglas Gregor29c42f22012-02-24 07:38:34 +00004613 if (Result.isInvalid() || SFINAE.hasErrorOccurred())
4614 return false;
Douglas Gregor6bd56ca2012-06-29 00:49:17 +00004615
Alp Toker73287bf2014-01-20 00:24:09 +00004616 if (Kind == clang::TT_IsConstructible)
4617 return true;
Douglas Gregor6bd56ca2012-06-29 00:49:17 +00004618
Alp Toker73287bf2014-01-20 00:24:09 +00004619 if (Kind == clang::TT_IsNothrowConstructible)
4620 return S.canThrow(Result.get()) == CT_Cannot;
4621
4622 if (Kind == clang::TT_IsTriviallyConstructible) {
Brian Kelley93c640b2017-03-29 17:40:35 +00004623 // Under Objective-C ARC and Weak, if the destination has non-trivial
4624 // Objective-C lifetime, this is a non-trivial construction.
4625 if (T.getNonReferenceType().hasNonTrivialObjCLifetime())
Alp Toker73287bf2014-01-20 00:24:09 +00004626 return false;
4627
4628 // The initialization succeeded; now make sure there are no non-trivial
4629 // calls.
4630 return !Result.get()->hasNonTrivialCall(S.Context);
4631 }
4632
4633 llvm_unreachable("unhandled type trait");
4634 return false;
Douglas Gregor29c42f22012-02-24 07:38:34 +00004635 }
Alp Tokercbb90342013-12-13 20:49:58 +00004636 default: llvm_unreachable("not a TT");
Douglas Gregor29c42f22012-02-24 07:38:34 +00004637 }
Simon Pilgrim75c26882016-09-30 14:25:09 +00004638
Douglas Gregor29c42f22012-02-24 07:38:34 +00004639 return false;
4640}
4641
Simon Pilgrim75c26882016-09-30 14:25:09 +00004642ExprResult Sema::BuildTypeTrait(TypeTrait Kind, SourceLocation KWLoc,
4643 ArrayRef<TypeSourceInfo *> Args,
Douglas Gregor29c42f22012-02-24 07:38:34 +00004644 SourceLocation RParenLoc) {
Alp Toker5294e6e2013-12-25 01:47:02 +00004645 QualType ResultType = Context.getLogicalOperationType();
Alp Tokercbb90342013-12-13 20:49:58 +00004646
Alp Toker95e7ff22014-01-01 05:57:51 +00004647 if (Kind <= UTT_Last && !CheckUnaryTypeTraitTypeCompleteness(
4648 *this, Kind, KWLoc, Args[0]->getType()))
4649 return ExprError();
4650
Douglas Gregor29c42f22012-02-24 07:38:34 +00004651 bool Dependent = false;
4652 for (unsigned I = 0, N = Args.size(); I != N; ++I) {
4653 if (Args[I]->getType()->isDependentType()) {
4654 Dependent = true;
4655 break;
4656 }
4657 }
Alp Tokercbb90342013-12-13 20:49:58 +00004658
4659 bool Result = false;
Douglas Gregor29c42f22012-02-24 07:38:34 +00004660 if (!Dependent)
Alp Tokercbb90342013-12-13 20:49:58 +00004661 Result = evaluateTypeTrait(*this, Kind, KWLoc, Args, RParenLoc);
4662
4663 return TypeTraitExpr::Create(Context, ResultType, KWLoc, Kind, Args,
4664 RParenLoc, Result);
Douglas Gregor29c42f22012-02-24 07:38:34 +00004665}
4666
Alp Toker88f64e62013-12-13 21:19:30 +00004667ExprResult Sema::ActOnTypeTrait(TypeTrait Kind, SourceLocation KWLoc,
4668 ArrayRef<ParsedType> Args,
Douglas Gregor29c42f22012-02-24 07:38:34 +00004669 SourceLocation RParenLoc) {
Dmitri Gribenkof8579502013-01-12 19:30:44 +00004670 SmallVector<TypeSourceInfo *, 4> ConvertedArgs;
Douglas Gregor29c42f22012-02-24 07:38:34 +00004671 ConvertedArgs.reserve(Args.size());
Simon Pilgrim75c26882016-09-30 14:25:09 +00004672
Douglas Gregor29c42f22012-02-24 07:38:34 +00004673 for (unsigned I = 0, N = Args.size(); I != N; ++I) {
4674 TypeSourceInfo *TInfo;
4675 QualType T = GetTypeFromParser(Args[I], &TInfo);
4676 if (!TInfo)
4677 TInfo = Context.getTrivialTypeSourceInfo(T, KWLoc);
Simon Pilgrim75c26882016-09-30 14:25:09 +00004678
4679 ConvertedArgs.push_back(TInfo);
Douglas Gregor29c42f22012-02-24 07:38:34 +00004680 }
Alp Tokercbb90342013-12-13 20:49:58 +00004681
Douglas Gregor29c42f22012-02-24 07:38:34 +00004682 return BuildTypeTrait(Kind, KWLoc, ConvertedArgs, RParenLoc);
4683}
4684
Alp Tokercbb90342013-12-13 20:49:58 +00004685static bool EvaluateBinaryTypeTrait(Sema &Self, TypeTrait BTT, QualType LhsT,
4686 QualType RhsT, SourceLocation KeyLoc) {
Chandler Carruth0d1a54f2011-05-01 08:41:10 +00004687 assert(!LhsT->isDependentType() && !RhsT->isDependentType() &&
4688 "Cannot evaluate traits of dependent types");
Francois Pichet9dfa3ce2010-12-07 00:08:36 +00004689
4690 switch(BTT) {
John McCall388ef532011-01-28 22:02:36 +00004691 case BTT_IsBaseOf: {
Francois Pichet9dfa3ce2010-12-07 00:08:36 +00004692 // C++0x [meta.rel]p2
John McCall388ef532011-01-28 22:02:36 +00004693 // Base is a base class of Derived without regard to cv-qualifiers or
Francois Pichet9dfa3ce2010-12-07 00:08:36 +00004694 // Base and Derived are not unions and name the same class type without
4695 // regard to cv-qualifiers.
Francois Pichet9dfa3ce2010-12-07 00:08:36 +00004696
John McCall388ef532011-01-28 22:02:36 +00004697 const RecordType *lhsRecord = LhsT->getAs<RecordType>();
4698 if (!lhsRecord) return false;
4699
4700 const RecordType *rhsRecord = RhsT->getAs<RecordType>();
4701 if (!rhsRecord) return false;
4702
4703 assert(Self.Context.hasSameUnqualifiedType(LhsT, RhsT)
4704 == (lhsRecord == rhsRecord));
4705
4706 if (lhsRecord == rhsRecord)
4707 return !lhsRecord->getDecl()->isUnion();
4708
4709 // C++0x [meta.rel]p2:
4710 // If Base and Derived are class types and are different types
4711 // (ignoring possible cv-qualifiers) then Derived shall be a
4712 // complete type.
Simon Pilgrim75c26882016-09-30 14:25:09 +00004713 if (Self.RequireCompleteType(KeyLoc, RhsT,
John McCall388ef532011-01-28 22:02:36 +00004714 diag::err_incomplete_type_used_in_type_trait_expr))
4715 return false;
4716
4717 return cast<CXXRecordDecl>(rhsRecord->getDecl())
4718 ->isDerivedFrom(cast<CXXRecordDecl>(lhsRecord->getDecl()));
4719 }
John Wiegley65497cc2011-04-27 23:09:49 +00004720 case BTT_IsSame:
4721 return Self.Context.hasSameType(LhsT, RhsT);
Francois Pichet34b21132010-12-08 22:35:30 +00004722 case BTT_TypeCompatible:
4723 return Self.Context.typesAreCompatible(LhsT.getUnqualifiedType(),
4724 RhsT.getUnqualifiedType());
John Wiegley65497cc2011-04-27 23:09:49 +00004725 case BTT_IsConvertible:
Douglas Gregor8006e762011-01-27 20:28:01 +00004726 case BTT_IsConvertibleTo: {
4727 // C++0x [meta.rel]p4:
4728 // Given the following function prototype:
4729 //
Simon Pilgrim75c26882016-09-30 14:25:09 +00004730 // template <class T>
Douglas Gregor8006e762011-01-27 20:28:01 +00004731 // typename add_rvalue_reference<T>::type create();
4732 //
Simon Pilgrim75c26882016-09-30 14:25:09 +00004733 // the predicate condition for a template specialization
4734 // is_convertible<From, To> shall be satisfied if and only if
4735 // the return expression in the following code would be
Douglas Gregor8006e762011-01-27 20:28:01 +00004736 // well-formed, including any implicit conversions to the return
4737 // type of the function:
4738 //
Simon Pilgrim75c26882016-09-30 14:25:09 +00004739 // To test() {
Douglas Gregor8006e762011-01-27 20:28:01 +00004740 // return create<From>();
4741 // }
4742 //
Simon Pilgrim75c26882016-09-30 14:25:09 +00004743 // Access checking is performed as if in a context unrelated to To and
4744 // From. Only the validity of the immediate context of the expression
Douglas Gregor8006e762011-01-27 20:28:01 +00004745 // of the return-statement (including conversions to the return type)
4746 // is considered.
4747 //
4748 // We model the initialization as a copy-initialization of a temporary
4749 // of the appropriate type, which for this expression is identical to the
4750 // return statement (since NRVO doesn't apply).
Eli Friedman1d4c3cf2012-08-14 02:06:07 +00004751
4752 // Functions aren't allowed to return function or array types.
4753 if (RhsT->isFunctionType() || RhsT->isArrayType())
4754 return false;
4755
4756 // A return statement in a void function must have void type.
4757 if (RhsT->isVoidType())
4758 return LhsT->isVoidType();
4759
4760 // A function definition requires a complete, non-abstract return type.
Richard Smithdb0ac552015-12-18 22:40:25 +00004761 if (!Self.isCompleteType(KeyLoc, RhsT) || Self.isAbstractType(KeyLoc, RhsT))
Eli Friedman1d4c3cf2012-08-14 02:06:07 +00004762 return false;
4763
4764 // Compute the result of add_rvalue_reference.
Douglas Gregor8006e762011-01-27 20:28:01 +00004765 if (LhsT->isObjectType() || LhsT->isFunctionType())
4766 LhsT = Self.Context.getRValueReferenceType(LhsT);
Eli Friedman1d4c3cf2012-08-14 02:06:07 +00004767
4768 // Build a fake source and destination for initialization.
Douglas Gregor8006e762011-01-27 20:28:01 +00004769 InitializedEntity To(InitializedEntity::InitializeTemporary(RhsT));
Douglas Gregorc03a1082011-01-28 02:26:04 +00004770 OpaqueValueExpr From(KeyLoc, LhsT.getNonLValueExprType(Self.Context),
Douglas Gregor8006e762011-01-27 20:28:01 +00004771 Expr::getValueKindForType(LhsT));
4772 Expr *FromPtr = &From;
Simon Pilgrim75c26882016-09-30 14:25:09 +00004773 InitializationKind Kind(InitializationKind::CreateCopy(KeyLoc,
Douglas Gregor8006e762011-01-27 20:28:01 +00004774 SourceLocation()));
Simon Pilgrim75c26882016-09-30 14:25:09 +00004775
4776 // Perform the initialization in an unevaluated context within a SFINAE
Eli Friedmana59b1902012-01-25 01:05:57 +00004777 // trap at translation unit scope.
Faisal Valid143a0c2017-04-01 21:30:49 +00004778 EnterExpressionEvaluationContext Unevaluated(
4779 Self, Sema::ExpressionEvaluationContext::Unevaluated);
Douglas Gregoredb76852011-01-27 22:31:44 +00004780 Sema::SFINAETrap SFINAE(Self, /*AccessCheckingSFINAE=*/true);
4781 Sema::ContextRAII TUContext(Self, Self.Context.getTranslationUnitDecl());
Dmitri Gribenko8f8930f2013-05-03 15:05:50 +00004782 InitializationSequence Init(Self, To, Kind, FromPtr);
Sebastian Redlc7ca5872011-06-05 12:23:28 +00004783 if (Init.Failed())
Douglas Gregor8006e762011-01-27 20:28:01 +00004784 return false;
Douglas Gregoredb76852011-01-27 22:31:44 +00004785
Benjamin Kramercc4c49d2012-08-23 23:38:35 +00004786 ExprResult Result = Init.Perform(Self, To, Kind, FromPtr);
Douglas Gregor8006e762011-01-27 20:28:01 +00004787 return !Result.isInvalid() && !SFINAE.hasErrorOccurred();
4788 }
Alp Toker73287bf2014-01-20 00:24:09 +00004789
David Majnemerb3d96882016-05-23 17:21:55 +00004790 case BTT_IsAssignable:
Alp Toker73287bf2014-01-20 00:24:09 +00004791 case BTT_IsNothrowAssignable:
Douglas Gregor1be329d2012-02-23 07:33:15 +00004792 case BTT_IsTriviallyAssignable: {
4793 // C++11 [meta.unary.prop]p3:
4794 // is_trivially_assignable is defined as:
4795 // is_assignable<T, U>::value is true and the assignment, as defined by
4796 // is_assignable, is known to call no operation that is not trivial
4797 //
4798 // is_assignable is defined as:
Simon Pilgrim75c26882016-09-30 14:25:09 +00004799 // The expression declval<T>() = declval<U>() is well-formed when
Douglas Gregor1be329d2012-02-23 07:33:15 +00004800 // treated as an unevaluated operand (Clause 5).
4801 //
Simon Pilgrim75c26882016-09-30 14:25:09 +00004802 // For both, T and U shall be complete types, (possibly cv-qualified)
Douglas Gregor1be329d2012-02-23 07:33:15 +00004803 // void, or arrays of unknown bound.
4804 if (!LhsT->isVoidType() && !LhsT->isIncompleteArrayType() &&
Simon Pilgrim75c26882016-09-30 14:25:09 +00004805 Self.RequireCompleteType(KeyLoc, LhsT,
Douglas Gregor1be329d2012-02-23 07:33:15 +00004806 diag::err_incomplete_type_used_in_type_trait_expr))
4807 return false;
4808 if (!RhsT->isVoidType() && !RhsT->isIncompleteArrayType() &&
Simon Pilgrim75c26882016-09-30 14:25:09 +00004809 Self.RequireCompleteType(KeyLoc, RhsT,
Douglas Gregor1be329d2012-02-23 07:33:15 +00004810 diag::err_incomplete_type_used_in_type_trait_expr))
4811 return false;
4812
4813 // cv void is never assignable.
4814 if (LhsT->isVoidType() || RhsT->isVoidType())
4815 return false;
4816
Simon Pilgrim75c26882016-09-30 14:25:09 +00004817 // Build expressions that emulate the effect of declval<T>() and
Douglas Gregor1be329d2012-02-23 07:33:15 +00004818 // declval<U>().
4819 if (LhsT->isObjectType() || LhsT->isFunctionType())
4820 LhsT = Self.Context.getRValueReferenceType(LhsT);
4821 if (RhsT->isObjectType() || RhsT->isFunctionType())
4822 RhsT = Self.Context.getRValueReferenceType(RhsT);
4823 OpaqueValueExpr Lhs(KeyLoc, LhsT.getNonLValueExprType(Self.Context),
4824 Expr::getValueKindForType(LhsT));
4825 OpaqueValueExpr Rhs(KeyLoc, RhsT.getNonLValueExprType(Self.Context),
4826 Expr::getValueKindForType(RhsT));
Simon Pilgrim75c26882016-09-30 14:25:09 +00004827
4828 // Attempt the assignment in an unevaluated context within a SFINAE
Douglas Gregor1be329d2012-02-23 07:33:15 +00004829 // trap at translation unit scope.
Faisal Valid143a0c2017-04-01 21:30:49 +00004830 EnterExpressionEvaluationContext Unevaluated(
4831 Self, Sema::ExpressionEvaluationContext::Unevaluated);
Douglas Gregor1be329d2012-02-23 07:33:15 +00004832 Sema::SFINAETrap SFINAE(Self, /*AccessCheckingSFINAE=*/true);
4833 Sema::ContextRAII TUContext(Self, Self.Context.getTranslationUnitDecl());
Craig Topperc3ec1492014-05-26 06:22:03 +00004834 ExprResult Result = Self.BuildBinOp(/*S=*/nullptr, KeyLoc, BO_Assign, &Lhs,
4835 &Rhs);
Douglas Gregor1be329d2012-02-23 07:33:15 +00004836 if (Result.isInvalid() || SFINAE.hasErrorOccurred())
4837 return false;
4838
David Majnemerb3d96882016-05-23 17:21:55 +00004839 if (BTT == BTT_IsAssignable)
4840 return true;
4841
Alp Toker73287bf2014-01-20 00:24:09 +00004842 if (BTT == BTT_IsNothrowAssignable)
4843 return Self.canThrow(Result.get()) == CT_Cannot;
Douglas Gregor6bd56ca2012-06-29 00:49:17 +00004844
Alp Toker73287bf2014-01-20 00:24:09 +00004845 if (BTT == BTT_IsTriviallyAssignable) {
Brian Kelley93c640b2017-03-29 17:40:35 +00004846 // Under Objective-C ARC and Weak, if the destination has non-trivial
4847 // Objective-C lifetime, this is a non-trivial assignment.
4848 if (LhsT.getNonReferenceType().hasNonTrivialObjCLifetime())
Alp Toker73287bf2014-01-20 00:24:09 +00004849 return false;
4850
4851 return !Result.get()->hasNonTrivialCall(Self.Context);
4852 }
4853
4854 llvm_unreachable("unhandled type trait");
4855 return false;
Douglas Gregor1be329d2012-02-23 07:33:15 +00004856 }
Alp Tokercbb90342013-12-13 20:49:58 +00004857 default: llvm_unreachable("not a BTT");
Francois Pichet9dfa3ce2010-12-07 00:08:36 +00004858 }
4859 llvm_unreachable("Unknown type trait or not implemented");
4860}
4861
John Wiegley6242b6a2011-04-28 00:16:57 +00004862ExprResult Sema::ActOnArrayTypeTrait(ArrayTypeTrait ATT,
4863 SourceLocation KWLoc,
4864 ParsedType Ty,
4865 Expr* DimExpr,
4866 SourceLocation RParen) {
4867 TypeSourceInfo *TSInfo;
4868 QualType T = GetTypeFromParser(Ty, &TSInfo);
4869 if (!TSInfo)
4870 TSInfo = Context.getTrivialTypeSourceInfo(T);
4871
4872 return BuildArrayTypeTrait(ATT, KWLoc, TSInfo, DimExpr, RParen);
4873}
4874
4875static uint64_t EvaluateArrayTypeTrait(Sema &Self, ArrayTypeTrait ATT,
4876 QualType T, Expr *DimExpr,
4877 SourceLocation KeyLoc) {
Chandler Carruth0d1a54f2011-05-01 08:41:10 +00004878 assert(!T->isDependentType() && "Cannot evaluate traits of dependent type");
John Wiegley6242b6a2011-04-28 00:16:57 +00004879
4880 switch(ATT) {
4881 case ATT_ArrayRank:
4882 if (T->isArrayType()) {
4883 unsigned Dim = 0;
4884 while (const ArrayType *AT = Self.Context.getAsArrayType(T)) {
4885 ++Dim;
4886 T = AT->getElementType();
4887 }
4888 return Dim;
John Wiegley6242b6a2011-04-28 00:16:57 +00004889 }
John Wiegleyd3522222011-04-28 02:06:46 +00004890 return 0;
4891
John Wiegley6242b6a2011-04-28 00:16:57 +00004892 case ATT_ArrayExtent: {
4893 llvm::APSInt Value;
4894 uint64_t Dim;
Richard Smithf4c51d92012-02-04 09:53:13 +00004895 if (Self.VerifyIntegerConstantExpression(DimExpr, &Value,
Douglas Gregore2b37442012-05-04 22:38:52 +00004896 diag::err_dimension_expr_not_constant_integer,
Richard Smithf4c51d92012-02-04 09:53:13 +00004897 false).isInvalid())
4898 return 0;
4899 if (Value.isSigned() && Value.isNegative()) {
Daniel Dunbar900cead2012-03-09 21:38:22 +00004900 Self.Diag(KeyLoc, diag::err_dimension_expr_not_constant_integer)
4901 << DimExpr->getSourceRange();
Richard Smithf4c51d92012-02-04 09:53:13 +00004902 return 0;
John Wiegleyd3522222011-04-28 02:06:46 +00004903 }
Richard Smithf4c51d92012-02-04 09:53:13 +00004904 Dim = Value.getLimitedValue();
John Wiegley6242b6a2011-04-28 00:16:57 +00004905
4906 if (T->isArrayType()) {
4907 unsigned D = 0;
4908 bool Matched = false;
4909 while (const ArrayType *AT = Self.Context.getAsArrayType(T)) {
4910 if (Dim == D) {
4911 Matched = true;
4912 break;
4913 }
4914 ++D;
4915 T = AT->getElementType();
4916 }
4917
John Wiegleyd3522222011-04-28 02:06:46 +00004918 if (Matched && T->isArrayType()) {
4919 if (const ConstantArrayType *CAT = Self.Context.getAsConstantArrayType(T))
4920 return CAT->getSize().getLimitedValue();
4921 }
John Wiegley6242b6a2011-04-28 00:16:57 +00004922 }
John Wiegleyd3522222011-04-28 02:06:46 +00004923 return 0;
John Wiegley6242b6a2011-04-28 00:16:57 +00004924 }
4925 }
4926 llvm_unreachable("Unknown type trait or not implemented");
4927}
4928
4929ExprResult Sema::BuildArrayTypeTrait(ArrayTypeTrait ATT,
4930 SourceLocation KWLoc,
4931 TypeSourceInfo *TSInfo,
4932 Expr* DimExpr,
4933 SourceLocation RParen) {
4934 QualType T = TSInfo->getType();
John Wiegley6242b6a2011-04-28 00:16:57 +00004935
Chandler Carruthc5276e52011-05-01 08:48:21 +00004936 // FIXME: This should likely be tracked as an APInt to remove any host
4937 // assumptions about the width of size_t on the target.
Chandler Carruth0d1a54f2011-05-01 08:41:10 +00004938 uint64_t Value = 0;
4939 if (!T->isDependentType())
4940 Value = EvaluateArrayTypeTrait(*this, ATT, T, DimExpr, KWLoc);
4941
Chandler Carruthc5276e52011-05-01 08:48:21 +00004942 // While the specification for these traits from the Embarcadero C++
4943 // compiler's documentation says the return type is 'unsigned int', Clang
4944 // returns 'size_t'. On Windows, the primary platform for the Embarcadero
4945 // compiler, there is no difference. On several other platforms this is an
4946 // important distinction.
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00004947 return new (Context) ArrayTypeTraitExpr(KWLoc, ATT, TSInfo, Value, DimExpr,
4948 RParen, Context.getSizeType());
John Wiegley6242b6a2011-04-28 00:16:57 +00004949}
4950
John Wiegleyf9f65842011-04-25 06:54:41 +00004951ExprResult Sema::ActOnExpressionTrait(ExpressionTrait ET,
Chandler Carruth20b9bc82011-05-01 07:44:20 +00004952 SourceLocation KWLoc,
4953 Expr *Queried,
4954 SourceLocation RParen) {
John Wiegleyf9f65842011-04-25 06:54:41 +00004955 // If error parsing the expression, ignore.
4956 if (!Queried)
Chandler Carruth20b9bc82011-05-01 07:44:20 +00004957 return ExprError();
John Wiegleyf9f65842011-04-25 06:54:41 +00004958
Chandler Carruth20b9bc82011-05-01 07:44:20 +00004959 ExprResult Result = BuildExpressionTrait(ET, KWLoc, Queried, RParen);
John Wiegleyf9f65842011-04-25 06:54:41 +00004960
Benjamin Kramer62b95d82012-08-23 21:35:17 +00004961 return Result;
John Wiegleyf9f65842011-04-25 06:54:41 +00004962}
4963
Chandler Carruth20b9bc82011-05-01 07:44:20 +00004964static bool EvaluateExpressionTrait(ExpressionTrait ET, Expr *E) {
4965 switch (ET) {
4966 case ET_IsLValueExpr: return E->isLValue();
4967 case ET_IsRValueExpr: return E->isRValue();
4968 }
4969 llvm_unreachable("Expression trait not covered by switch");
4970}
4971
John Wiegleyf9f65842011-04-25 06:54:41 +00004972ExprResult Sema::BuildExpressionTrait(ExpressionTrait ET,
Chandler Carruth20b9bc82011-05-01 07:44:20 +00004973 SourceLocation KWLoc,
4974 Expr *Queried,
4975 SourceLocation RParen) {
John Wiegleyf9f65842011-04-25 06:54:41 +00004976 if (Queried->isTypeDependent()) {
4977 // Delay type-checking for type-dependent expressions.
4978 } else if (Queried->getType()->isPlaceholderType()) {
4979 ExprResult PE = CheckPlaceholderExpr(Queried);
4980 if (PE.isInvalid()) return ExprError();
Nikola Smiljanic01a75982014-05-29 10:55:11 +00004981 return BuildExpressionTrait(ET, KWLoc, PE.get(), RParen);
John Wiegleyf9f65842011-04-25 06:54:41 +00004982 }
4983
Chandler Carruth20b9bc82011-05-01 07:44:20 +00004984 bool Value = EvaluateExpressionTrait(ET, Queried);
Chandler Carruthf57eba32011-05-01 08:48:19 +00004985
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00004986 return new (Context)
4987 ExpressionTraitExpr(KWLoc, ET, Queried, Value, RParen, Context.BoolTy);
John Wiegleyf9f65842011-04-25 06:54:41 +00004988}
4989
Richard Trieu82402a02011-09-15 21:56:47 +00004990QualType Sema::CheckPointerToMemberOperands(ExprResult &LHS, ExprResult &RHS,
John McCall7decc9e2010-11-18 06:31:45 +00004991 ExprValueKind &VK,
4992 SourceLocation Loc,
4993 bool isIndirect) {
Richard Trieu82402a02011-09-15 21:56:47 +00004994 assert(!LHS.get()->getType()->isPlaceholderType() &&
4995 !RHS.get()->getType()->isPlaceholderType() &&
John McCall0b645e92011-06-30 17:15:34 +00004996 "placeholders should have been weeded out by now");
4997
Richard Smith4baaa5a2016-12-03 01:14:32 +00004998 // The LHS undergoes lvalue conversions if this is ->*, and undergoes the
4999 // temporary materialization conversion otherwise.
5000 if (isIndirect)
Nikola Smiljanic01a75982014-05-29 10:55:11 +00005001 LHS = DefaultLvalueConversion(LHS.get());
Richard Smith4baaa5a2016-12-03 01:14:32 +00005002 else if (LHS.get()->isRValue())
5003 LHS = TemporaryMaterializationConversion(LHS.get());
5004 if (LHS.isInvalid())
5005 return QualType();
John McCall0b645e92011-06-30 17:15:34 +00005006
5007 // The RHS always undergoes lvalue conversions.
Nikola Smiljanic01a75982014-05-29 10:55:11 +00005008 RHS = DefaultLvalueConversion(RHS.get());
Richard Trieu82402a02011-09-15 21:56:47 +00005009 if (RHS.isInvalid()) return QualType();
John McCall0b645e92011-06-30 17:15:34 +00005010
Sebastian Redl5822f082009-02-07 20:10:22 +00005011 const char *OpSpelling = isIndirect ? "->*" : ".*";
5012 // C++ 5.5p2
5013 // The binary operator .* [p3: ->*] binds its second operand, which shall
5014 // be of type "pointer to member of T" (where T is a completely-defined
5015 // class type) [...]
Richard Trieu82402a02011-09-15 21:56:47 +00005016 QualType RHSType = RHS.get()->getType();
5017 const MemberPointerType *MemPtr = RHSType->getAs<MemberPointerType>();
Douglas Gregorac1fb652009-03-24 19:52:54 +00005018 if (!MemPtr) {
Sebastian Redl5822f082009-02-07 20:10:22 +00005019 Diag(Loc, diag::err_bad_memptr_rhs)
Richard Trieu82402a02011-09-15 21:56:47 +00005020 << OpSpelling << RHSType << RHS.get()->getSourceRange();
Sebastian Redl5822f082009-02-07 20:10:22 +00005021 return QualType();
Mike Stump11289f42009-09-09 15:08:12 +00005022 }
Douglas Gregorac1fb652009-03-24 19:52:54 +00005023
Sebastian Redl5822f082009-02-07 20:10:22 +00005024 QualType Class(MemPtr->getClass(), 0);
5025
Douglas Gregord07ba342010-10-13 20:41:14 +00005026 // Note: C++ [expr.mptr.oper]p2-3 says that the class type into which the
5027 // member pointer points must be completely-defined. However, there is no
5028 // reason for this semantic distinction, and the rule is not enforced by
5029 // other compilers. Therefore, we do not check this property, as it is
5030 // likely to be considered a defect.
Sebastian Redlc72350e2010-04-10 10:14:54 +00005031
Sebastian Redl5822f082009-02-07 20:10:22 +00005032 // C++ 5.5p2
5033 // [...] to its first operand, which shall be of class T or of a class of
5034 // which T is an unambiguous and accessible base class. [p3: a pointer to
5035 // such a class]
Richard Trieu82402a02011-09-15 21:56:47 +00005036 QualType LHSType = LHS.get()->getType();
Sebastian Redl5822f082009-02-07 20:10:22 +00005037 if (isIndirect) {
Richard Trieu82402a02011-09-15 21:56:47 +00005038 if (const PointerType *Ptr = LHSType->getAs<PointerType>())
5039 LHSType = Ptr->getPointeeType();
Sebastian Redl5822f082009-02-07 20:10:22 +00005040 else {
5041 Diag(Loc, diag::err_bad_memptr_lhs)
Richard Trieu82402a02011-09-15 21:56:47 +00005042 << OpSpelling << 1 << LHSType
Douglas Gregora771f462010-03-31 17:46:05 +00005043 << FixItHint::CreateReplacement(SourceRange(Loc), ".*");
Sebastian Redl5822f082009-02-07 20:10:22 +00005044 return QualType();
5045 }
5046 }
5047
Richard Trieu82402a02011-09-15 21:56:47 +00005048 if (!Context.hasSameUnqualifiedType(Class, LHSType)) {
Sebastian Redl26a0f1c2010-04-23 17:18:26 +00005049 // If we want to check the hierarchy, we need a complete type.
Douglas Gregor7bfb2d02012-05-04 16:32:21 +00005050 if (RequireCompleteType(Loc, LHSType, diag::err_bad_memptr_lhs,
5051 OpSpelling, (int)isIndirect)) {
Sebastian Redl26a0f1c2010-04-23 17:18:26 +00005052 return QualType();
5053 }
Richard Smithdb05cd32013-12-12 03:40:18 +00005054
Richard Smith0f59cb32015-12-18 21:45:41 +00005055 if (!IsDerivedFrom(Loc, LHSType, Class)) {
Sebastian Redl5822f082009-02-07 20:10:22 +00005056 Diag(Loc, diag::err_bad_memptr_lhs) << OpSpelling
Richard Trieu82402a02011-09-15 21:56:47 +00005057 << (int)isIndirect << LHS.get()->getType();
Sebastian Redl5822f082009-02-07 20:10:22 +00005058 return QualType();
5059 }
Richard Smithdb05cd32013-12-12 03:40:18 +00005060
5061 CXXCastPath BasePath;
5062 if (CheckDerivedToBaseConversion(LHSType, Class, Loc,
5063 SourceRange(LHS.get()->getLocStart(),
5064 RHS.get()->getLocEnd()),
5065 &BasePath))
5066 return QualType();
5067
Eli Friedman1fcf66b2010-01-16 00:00:48 +00005068 // Cast LHS to type of use.
5069 QualType UseType = isIndirect ? Context.getPointerType(Class) : Class;
Eli Friedmanbe4b3632011-09-27 21:58:52 +00005070 ExprValueKind VK = isIndirect ? VK_RValue : LHS.get()->getValueKind();
Nikola Smiljanic01a75982014-05-29 10:55:11 +00005071 LHS = ImpCastExprToType(LHS.get(), UseType, CK_DerivedToBase, VK,
Richard Trieu82402a02011-09-15 21:56:47 +00005072 &BasePath);
Sebastian Redl5822f082009-02-07 20:10:22 +00005073 }
5074
Richard Trieu82402a02011-09-15 21:56:47 +00005075 if (isa<CXXScalarValueInitExpr>(RHS.get()->IgnoreParens())) {
Fariborz Jahanian1bc0f9a2009-11-18 21:54:48 +00005076 // Diagnose use of pointer-to-member type which when used as
5077 // the functional cast in a pointer-to-member expression.
5078 Diag(Loc, diag::err_pointer_to_member_type) << isIndirect;
5079 return QualType();
5080 }
John McCall7decc9e2010-11-18 06:31:45 +00005081
Sebastian Redl5822f082009-02-07 20:10:22 +00005082 // C++ 5.5p2
5083 // The result is an object or a function of the type specified by the
5084 // second operand.
5085 // The cv qualifiers are the union of those in the pointer and the left side,
5086 // in accordance with 5.5p5 and 5.2.5.
Sebastian Redl5822f082009-02-07 20:10:22 +00005087 QualType Result = MemPtr->getPointeeType();
Richard Trieu82402a02011-09-15 21:56:47 +00005088 Result = Context.getCVRQualifiedType(Result, LHSType.getCVRQualifiers());
John McCall7decc9e2010-11-18 06:31:45 +00005089
Douglas Gregor1d042092011-01-26 16:40:18 +00005090 // C++0x [expr.mptr.oper]p6:
5091 // In a .* expression whose object expression is an rvalue, the program is
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00005092 // ill-formed if the second operand is a pointer to member function with
5093 // ref-qualifier &. In a ->* expression or in a .* expression whose object
5094 // expression is an lvalue, the program is ill-formed if the second operand
Douglas Gregor1d042092011-01-26 16:40:18 +00005095 // is a pointer to member function with ref-qualifier &&.
5096 if (const FunctionProtoType *Proto = Result->getAs<FunctionProtoType>()) {
5097 switch (Proto->getRefQualifier()) {
5098 case RQ_None:
5099 // Do nothing
5100 break;
5101
5102 case RQ_LValue:
Richard Trieu82402a02011-09-15 21:56:47 +00005103 if (!isIndirect && !LHS.get()->Classify(Context).isLValue())
Douglas Gregor1d042092011-01-26 16:40:18 +00005104 Diag(Loc, diag::err_pointer_to_member_oper_value_classify)
Richard Trieu82402a02011-09-15 21:56:47 +00005105 << RHSType << 1 << LHS.get()->getSourceRange();
Douglas Gregor1d042092011-01-26 16:40:18 +00005106 break;
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00005107
Douglas Gregor1d042092011-01-26 16:40:18 +00005108 case RQ_RValue:
Richard Trieu82402a02011-09-15 21:56:47 +00005109 if (isIndirect || !LHS.get()->Classify(Context).isRValue())
Douglas Gregor1d042092011-01-26 16:40:18 +00005110 Diag(Loc, diag::err_pointer_to_member_oper_value_classify)
Richard Trieu82402a02011-09-15 21:56:47 +00005111 << RHSType << 0 << LHS.get()->getSourceRange();
Douglas Gregor1d042092011-01-26 16:40:18 +00005112 break;
5113 }
5114 }
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00005115
John McCall7decc9e2010-11-18 06:31:45 +00005116 // C++ [expr.mptr.oper]p6:
5117 // The result of a .* expression whose second operand is a pointer
5118 // to a data member is of the same value category as its
5119 // first operand. The result of a .* expression whose second
5120 // operand is a pointer to a member function is a prvalue. The
5121 // result of an ->* expression is an lvalue if its second operand
5122 // is a pointer to data member and a prvalue otherwise.
John McCall0009fcc2011-04-26 20:42:42 +00005123 if (Result->isFunctionType()) {
John McCall7decc9e2010-11-18 06:31:45 +00005124 VK = VK_RValue;
John McCall0009fcc2011-04-26 20:42:42 +00005125 return Context.BoundMemberTy;
5126 } else if (isIndirect) {
John McCall7decc9e2010-11-18 06:31:45 +00005127 VK = VK_LValue;
John McCall0009fcc2011-04-26 20:42:42 +00005128 } else {
Richard Trieu82402a02011-09-15 21:56:47 +00005129 VK = LHS.get()->getValueKind();
John McCall0009fcc2011-04-26 20:42:42 +00005130 }
John McCall7decc9e2010-11-18 06:31:45 +00005131
Sebastian Redl5822f082009-02-07 20:10:22 +00005132 return Result;
5133}
Sebastian Redl1a99f442009-04-16 17:51:27 +00005134
Richard Smith2414bca2016-04-25 19:30:37 +00005135/// \brief Try to convert a type to another according to C++11 5.16p3.
Sebastian Redl1a99f442009-04-16 17:51:27 +00005136///
5137/// This is part of the parameter validation for the ? operator. If either
5138/// value operand is a class type, the two operands are attempted to be
5139/// converted to each other. This function does the conversion in one direction.
Douglas Gregor838fcc32010-03-26 20:14:36 +00005140/// It returns true if the program is ill-formed and has already been diagnosed
5141/// as such.
Sebastian Redl1a99f442009-04-16 17:51:27 +00005142static bool TryClassUnification(Sema &Self, Expr *From, Expr *To,
5143 SourceLocation QuestionLoc,
Douglas Gregor838fcc32010-03-26 20:14:36 +00005144 bool &HaveConversion,
5145 QualType &ToType) {
5146 HaveConversion = false;
5147 ToType = To->getType();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00005148
5149 InitializationKind Kind = InitializationKind::CreateCopy(To->getLocStart(),
Douglas Gregor838fcc32010-03-26 20:14:36 +00005150 SourceLocation());
Richard Smith2414bca2016-04-25 19:30:37 +00005151 // C++11 5.16p3
Sebastian Redl1a99f442009-04-16 17:51:27 +00005152 // The process for determining whether an operand expression E1 of type T1
5153 // can be converted to match an operand expression E2 of type T2 is defined
5154 // as follows:
Richard Smith2414bca2016-04-25 19:30:37 +00005155 // -- If E2 is an lvalue: E1 can be converted to match E2 if E1 can be
5156 // implicitly converted to type "lvalue reference to T2", subject to the
5157 // constraint that in the conversion the reference must bind directly to
5158 // an lvalue.
5159 // -- If E2 is an xvalue: E1 can be converted to match E2 if E1 can be
5160 // implicitly conveted to the type "rvalue reference to R2", subject to
5161 // the constraint that the reference must bind directly.
5162 if (To->isLValue() || To->isXValue()) {
5163 QualType T = To->isLValue() ? Self.Context.getLValueReferenceType(ToType)
5164 : Self.Context.getRValueReferenceType(ToType);
5165
Douglas Gregor838fcc32010-03-26 20:14:36 +00005166 InitializedEntity Entity = InitializedEntity::InitializeTemporary(T);
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00005167
Dmitri Gribenko8f8930f2013-05-03 15:05:50 +00005168 InitializationSequence InitSeq(Self, Entity, Kind, From);
Douglas Gregor838fcc32010-03-26 20:14:36 +00005169 if (InitSeq.isDirectReferenceBinding()) {
5170 ToType = T;
5171 HaveConversion = true;
5172 return false;
Sebastian Redl1a99f442009-04-16 17:51:27 +00005173 }
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00005174
Douglas Gregor838fcc32010-03-26 20:14:36 +00005175 if (InitSeq.isAmbiguous())
Dmitri Gribenko8f8930f2013-05-03 15:05:50 +00005176 return InitSeq.Diagnose(Self, Entity, Kind, From);
Sebastian Redl1a99f442009-04-16 17:51:27 +00005177 }
John McCall65eb8792010-02-25 01:37:24 +00005178
Sebastian Redl1a99f442009-04-16 17:51:27 +00005179 // -- If E2 is an rvalue, or if the conversion above cannot be done:
5180 // -- if E1 and E2 have class type, and the underlying class types are
5181 // the same or one is a base class of the other:
5182 QualType FTy = From->getType();
5183 QualType TTy = To->getType();
Ted Kremenekc23c7e62009-07-29 21:53:49 +00005184 const RecordType *FRec = FTy->getAs<RecordType>();
5185 const RecordType *TRec = TTy->getAs<RecordType>();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00005186 bool FDerivedFromT = FRec && TRec && FRec != TRec &&
Richard Smith0f59cb32015-12-18 21:45:41 +00005187 Self.IsDerivedFrom(QuestionLoc, FTy, TTy);
5188 if (FRec && TRec && (FRec == TRec || FDerivedFromT ||
5189 Self.IsDerivedFrom(QuestionLoc, TTy, FTy))) {
Sebastian Redl1a99f442009-04-16 17:51:27 +00005190 // E1 can be converted to match E2 if the class of T2 is the
5191 // same type as, or a base class of, the class of T1, and
5192 // [cv2 > cv1].
John McCall65eb8792010-02-25 01:37:24 +00005193 if (FRec == TRec || FDerivedFromT) {
5194 if (TTy.isAtLeastAsQualifiedAs(FTy)) {
Douglas Gregor838fcc32010-03-26 20:14:36 +00005195 InitializedEntity Entity = InitializedEntity::InitializeTemporary(TTy);
Dmitri Gribenko8f8930f2013-05-03 15:05:50 +00005196 InitializationSequence InitSeq(Self, Entity, Kind, From);
Sebastian Redlc7ca5872011-06-05 12:23:28 +00005197 if (InitSeq) {
Douglas Gregor838fcc32010-03-26 20:14:36 +00005198 HaveConversion = true;
5199 return false;
5200 }
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00005201
Douglas Gregor838fcc32010-03-26 20:14:36 +00005202 if (InitSeq.isAmbiguous())
Dmitri Gribenko8f8930f2013-05-03 15:05:50 +00005203 return InitSeq.Diagnose(Self, Entity, Kind, From);
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00005204 }
Sebastian Redl1a99f442009-04-16 17:51:27 +00005205 }
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00005206
Douglas Gregor838fcc32010-03-26 20:14:36 +00005207 return false;
Sebastian Redl1a99f442009-04-16 17:51:27 +00005208 }
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00005209
Douglas Gregor838fcc32010-03-26 20:14:36 +00005210 // -- Otherwise: E1 can be converted to match E2 if E1 can be
5211 // implicitly converted to the type that expression E2 would have
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00005212 // if E2 were converted to an rvalue (or the type it has, if E2 is
Douglas Gregorf9edf802010-03-26 20:59:55 +00005213 // an rvalue).
5214 //
5215 // This actually refers very narrowly to the lvalue-to-rvalue conversion, not
5216 // to the array-to-pointer or function-to-pointer conversions.
Richard Smith16d31502016-12-21 01:31:56 +00005217 TTy = TTy.getNonLValueExprType(Self.Context);
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00005218
Douglas Gregor838fcc32010-03-26 20:14:36 +00005219 InitializedEntity Entity = InitializedEntity::InitializeTemporary(TTy);
Dmitri Gribenko8f8930f2013-05-03 15:05:50 +00005220 InitializationSequence InitSeq(Self, Entity, Kind, From);
Sebastian Redlc7ca5872011-06-05 12:23:28 +00005221 HaveConversion = !InitSeq.Failed();
Douglas Gregor838fcc32010-03-26 20:14:36 +00005222 ToType = TTy;
5223 if (InitSeq.isAmbiguous())
Dmitri Gribenko8f8930f2013-05-03 15:05:50 +00005224 return InitSeq.Diagnose(Self, Entity, Kind, From);
Douglas Gregor838fcc32010-03-26 20:14:36 +00005225
Sebastian Redl1a99f442009-04-16 17:51:27 +00005226 return false;
5227}
5228
5229/// \brief Try to find a common type for two according to C++0x 5.16p5.
5230///
5231/// This is part of the parameter validation for the ? operator. If either
5232/// value operand is a class type, overload resolution is used to find a
5233/// conversion to a common type.
John Wiegley01296292011-04-08 18:41:53 +00005234static bool FindConditionalOverload(Sema &Self, ExprResult &LHS, ExprResult &RHS,
Chandler Carrutha8bea4b2011-02-18 23:54:50 +00005235 SourceLocation QuestionLoc) {
John Wiegley01296292011-04-08 18:41:53 +00005236 Expr *Args[2] = { LHS.get(), RHS.get() };
Richard Smith100b24a2014-04-17 01:52:14 +00005237 OverloadCandidateSet CandidateSet(QuestionLoc,
5238 OverloadCandidateSet::CSK_Operator);
Richard Smithe54c3072013-05-05 15:51:06 +00005239 Self.AddBuiltinOperatorCandidates(OO_Conditional, QuestionLoc, Args,
Chandler Carrutha8bea4b2011-02-18 23:54:50 +00005240 CandidateSet);
Sebastian Redl1a99f442009-04-16 17:51:27 +00005241
5242 OverloadCandidateSet::iterator Best;
Chandler Carrutha8bea4b2011-02-18 23:54:50 +00005243 switch (CandidateSet.BestViableFunction(Self, QuestionLoc, Best)) {
John Wiegley01296292011-04-08 18:41:53 +00005244 case OR_Success: {
Sebastian Redl1a99f442009-04-16 17:51:27 +00005245 // We found a match. Perform the conversions on the arguments and move on.
John Wiegley01296292011-04-08 18:41:53 +00005246 ExprResult LHSRes =
5247 Self.PerformImplicitConversion(LHS.get(), Best->BuiltinTypes.ParamTypes[0],
5248 Best->Conversions[0], Sema::AA_Converting);
5249 if (LHSRes.isInvalid())
Sebastian Redl1a99f442009-04-16 17:51:27 +00005250 break;
Benjamin Kramer62b95d82012-08-23 21:35:17 +00005251 LHS = LHSRes;
John Wiegley01296292011-04-08 18:41:53 +00005252
5253 ExprResult RHSRes =
5254 Self.PerformImplicitConversion(RHS.get(), Best->BuiltinTypes.ParamTypes[1],
5255 Best->Conversions[1], Sema::AA_Converting);
5256 if (RHSRes.isInvalid())
5257 break;
Benjamin Kramer62b95d82012-08-23 21:35:17 +00005258 RHS = RHSRes;
Chandler Carruth30141632011-02-25 19:41:05 +00005259 if (Best->Function)
Eli Friedmanfa0df832012-02-02 03:46:19 +00005260 Self.MarkFunctionReferenced(QuestionLoc, Best->Function);
Sebastian Redl1a99f442009-04-16 17:51:27 +00005261 return false;
John Wiegley01296292011-04-08 18:41:53 +00005262 }
Simon Pilgrim75c26882016-09-30 14:25:09 +00005263
Douglas Gregor3e1e5272009-12-09 23:02:17 +00005264 case OR_No_Viable_Function:
Chandler Carrutha8bea4b2011-02-18 23:54:50 +00005265
5266 // Emit a better diagnostic if one of the expressions is a null pointer
5267 // constant and the other is a pointer type. In this case, the user most
5268 // likely forgot to take the address of the other expression.
John Wiegley01296292011-04-08 18:41:53 +00005269 if (Self.DiagnoseConditionalForNull(LHS.get(), RHS.get(), QuestionLoc))
Chandler Carrutha8bea4b2011-02-18 23:54:50 +00005270 return true;
5271
5272 Self.Diag(QuestionLoc, diag::err_typecheck_cond_incompatible_operands)
John Wiegley01296292011-04-08 18:41:53 +00005273 << LHS.get()->getType() << RHS.get()->getType()
5274 << LHS.get()->getSourceRange() << RHS.get()->getSourceRange();
Sebastian Redl1a99f442009-04-16 17:51:27 +00005275 return true;
5276
Douglas Gregor3e1e5272009-12-09 23:02:17 +00005277 case OR_Ambiguous:
Chandler Carrutha8bea4b2011-02-18 23:54:50 +00005278 Self.Diag(QuestionLoc, diag::err_conditional_ambiguous_ovl)
John Wiegley01296292011-04-08 18:41:53 +00005279 << LHS.get()->getType() << RHS.get()->getType()
5280 << LHS.get()->getSourceRange() << RHS.get()->getSourceRange();
Mike Stump87c57ac2009-05-16 07:39:55 +00005281 // FIXME: Print the possible common types by printing the return types of
5282 // the viable candidates.
Sebastian Redl1a99f442009-04-16 17:51:27 +00005283 break;
5284
Douglas Gregor3e1e5272009-12-09 23:02:17 +00005285 case OR_Deleted:
David Blaikie83d382b2011-09-23 05:06:16 +00005286 llvm_unreachable("Conditional operator has only built-in overloads");
Sebastian Redl1a99f442009-04-16 17:51:27 +00005287 }
5288 return true;
5289}
5290
Sebastian Redl5775af1a2009-04-17 16:30:52 +00005291/// \brief Perform an "extended" implicit conversion as returned by
5292/// TryClassUnification.
John Wiegley01296292011-04-08 18:41:53 +00005293static bool ConvertForConditional(Sema &Self, ExprResult &E, QualType T) {
Douglas Gregor838fcc32010-03-26 20:14:36 +00005294 InitializedEntity Entity = InitializedEntity::InitializeTemporary(T);
John Wiegley01296292011-04-08 18:41:53 +00005295 InitializationKind Kind = InitializationKind::CreateCopy(E.get()->getLocStart(),
Douglas Gregor838fcc32010-03-26 20:14:36 +00005296 SourceLocation());
Nikola Smiljanic01a75982014-05-29 10:55:11 +00005297 Expr *Arg = E.get();
Dmitri Gribenko8f8930f2013-05-03 15:05:50 +00005298 InitializationSequence InitSeq(Self, Entity, Kind, Arg);
Benjamin Kramercc4c49d2012-08-23 23:38:35 +00005299 ExprResult Result = InitSeq.Perform(Self, Entity, Kind, Arg);
Douglas Gregor838fcc32010-03-26 20:14:36 +00005300 if (Result.isInvalid())
Sebastian Redl5775af1a2009-04-17 16:30:52 +00005301 return true;
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00005302
John Wiegley01296292011-04-08 18:41:53 +00005303 E = Result;
Sebastian Redl5775af1a2009-04-17 16:30:52 +00005304 return false;
5305}
5306
Sebastian Redl1a99f442009-04-16 17:51:27 +00005307/// \brief Check the operands of ?: under C++ semantics.
5308///
5309/// See C++ [expr.cond]. Note that LHS is never null, even for the GNU x ?: y
5310/// extension. In this case, LHS == Cond. (But they're not aliases.)
Richard Smithf2b084f2012-08-08 06:13:49 +00005311QualType Sema::CXXCheckConditionalOperands(ExprResult &Cond, ExprResult &LHS,
5312 ExprResult &RHS, ExprValueKind &VK,
5313 ExprObjectKind &OK,
Sebastian Redl1a99f442009-04-16 17:51:27 +00005314 SourceLocation QuestionLoc) {
Mike Stump87c57ac2009-05-16 07:39:55 +00005315 // FIXME: Handle C99's complex types, vector types, block pointers and Obj-C++
5316 // interface pointers.
Sebastian Redl1a99f442009-04-16 17:51:27 +00005317
Richard Smith45edb702012-08-07 22:06:48 +00005318 // C++11 [expr.cond]p1
Sebastian Redl1a99f442009-04-16 17:51:27 +00005319 // The first expression is contextually converted to bool.
John Wiegley01296292011-04-08 18:41:53 +00005320 if (!Cond.get()->isTypeDependent()) {
Nikola Smiljanic01a75982014-05-29 10:55:11 +00005321 ExprResult CondRes = CheckCXXBooleanCondition(Cond.get());
John Wiegley01296292011-04-08 18:41:53 +00005322 if (CondRes.isInvalid())
Sebastian Redl1a99f442009-04-16 17:51:27 +00005323 return QualType();
Benjamin Kramer62b95d82012-08-23 21:35:17 +00005324 Cond = CondRes;
Sebastian Redl1a99f442009-04-16 17:51:27 +00005325 }
5326
John McCall7decc9e2010-11-18 06:31:45 +00005327 // Assume r-value.
5328 VK = VK_RValue;
John McCall4bc41ae2010-11-18 19:01:18 +00005329 OK = OK_Ordinary;
John McCall7decc9e2010-11-18 06:31:45 +00005330
Sebastian Redl1a99f442009-04-16 17:51:27 +00005331 // Either of the arguments dependent?
John Wiegley01296292011-04-08 18:41:53 +00005332 if (LHS.get()->isTypeDependent() || RHS.get()->isTypeDependent())
Sebastian Redl1a99f442009-04-16 17:51:27 +00005333 return Context.DependentTy;
5334
Richard Smith45edb702012-08-07 22:06:48 +00005335 // C++11 [expr.cond]p2
Sebastian Redl1a99f442009-04-16 17:51:27 +00005336 // If either the second or the third operand has type (cv) void, ...
John Wiegley01296292011-04-08 18:41:53 +00005337 QualType LTy = LHS.get()->getType();
5338 QualType RTy = RHS.get()->getType();
Sebastian Redl1a99f442009-04-16 17:51:27 +00005339 bool LVoid = LTy->isVoidType();
5340 bool RVoid = RTy->isVoidType();
5341 if (LVoid || RVoid) {
Richard Smith6a6a4bb2014-01-27 04:19:56 +00005342 // ... one of the following shall hold:
5343 // -- The second or the third operand (but not both) is a (possibly
5344 // parenthesized) throw-expression; the result is of the type
5345 // and value category of the other.
5346 bool LThrow = isa<CXXThrowExpr>(LHS.get()->IgnoreParenImpCasts());
5347 bool RThrow = isa<CXXThrowExpr>(RHS.get()->IgnoreParenImpCasts());
5348 if (LThrow != RThrow) {
5349 Expr *NonThrow = LThrow ? RHS.get() : LHS.get();
5350 VK = NonThrow->getValueKind();
5351 // DR (no number yet): the result is a bit-field if the
5352 // non-throw-expression operand is a bit-field.
5353 OK = NonThrow->getObjectKind();
5354 return NonThrow->getType();
Richard Smith45edb702012-08-07 22:06:48 +00005355 }
5356
Sebastian Redl1a99f442009-04-16 17:51:27 +00005357 // -- Both the second and third operands have type void; the result is of
Richard Smith45edb702012-08-07 22:06:48 +00005358 // type void and is a prvalue.
Sebastian Redl1a99f442009-04-16 17:51:27 +00005359 if (LVoid && RVoid)
5360 return Context.VoidTy;
5361
5362 // Neither holds, error.
5363 Diag(QuestionLoc, diag::err_conditional_void_nonvoid)
5364 << (LVoid ? RTy : LTy) << (LVoid ? 0 : 1)
John Wiegley01296292011-04-08 18:41:53 +00005365 << LHS.get()->getSourceRange() << RHS.get()->getSourceRange();
Sebastian Redl1a99f442009-04-16 17:51:27 +00005366 return QualType();
5367 }
5368
5369 // Neither is void.
5370
Richard Smithf2b084f2012-08-08 06:13:49 +00005371 // C++11 [expr.cond]p3
Sebastian Redl1a99f442009-04-16 17:51:27 +00005372 // Otherwise, if the second and third operand have different types, and
Richard Smithf2b084f2012-08-08 06:13:49 +00005373 // either has (cv) class type [...] an attempt is made to convert each of
5374 // those operands to the type of the other.
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00005375 if (!Context.hasSameType(LTy, RTy) &&
Sebastian Redl1a99f442009-04-16 17:51:27 +00005376 (LTy->isRecordType() || RTy->isRecordType())) {
Sebastian Redl1a99f442009-04-16 17:51:27 +00005377 // These return true if a single direction is already ambiguous.
Douglas Gregor838fcc32010-03-26 20:14:36 +00005378 QualType L2RType, R2LType;
5379 bool HaveL2R, HaveR2L;
John Wiegley01296292011-04-08 18:41:53 +00005380 if (TryClassUnification(*this, LHS.get(), RHS.get(), QuestionLoc, HaveL2R, L2RType))
Sebastian Redl1a99f442009-04-16 17:51:27 +00005381 return QualType();
John Wiegley01296292011-04-08 18:41:53 +00005382 if (TryClassUnification(*this, RHS.get(), LHS.get(), QuestionLoc, HaveR2L, R2LType))
Sebastian Redl1a99f442009-04-16 17:51:27 +00005383 return QualType();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00005384
Sebastian Redl1a99f442009-04-16 17:51:27 +00005385 // If both can be converted, [...] the program is ill-formed.
5386 if (HaveL2R && HaveR2L) {
5387 Diag(QuestionLoc, diag::err_conditional_ambiguous)
John Wiegley01296292011-04-08 18:41:53 +00005388 << LTy << RTy << LHS.get()->getSourceRange() << RHS.get()->getSourceRange();
Sebastian Redl1a99f442009-04-16 17:51:27 +00005389 return QualType();
5390 }
5391
5392 // If exactly one conversion is possible, that conversion is applied to
5393 // the chosen operand and the converted operands are used in place of the
5394 // original operands for the remainder of this section.
5395 if (HaveL2R) {
John Wiegley01296292011-04-08 18:41:53 +00005396 if (ConvertForConditional(*this, LHS, L2RType) || LHS.isInvalid())
Sebastian Redl1a99f442009-04-16 17:51:27 +00005397 return QualType();
John Wiegley01296292011-04-08 18:41:53 +00005398 LTy = LHS.get()->getType();
Sebastian Redl1a99f442009-04-16 17:51:27 +00005399 } else if (HaveR2L) {
John Wiegley01296292011-04-08 18:41:53 +00005400 if (ConvertForConditional(*this, RHS, R2LType) || RHS.isInvalid())
Sebastian Redl1a99f442009-04-16 17:51:27 +00005401 return QualType();
John Wiegley01296292011-04-08 18:41:53 +00005402 RTy = RHS.get()->getType();
Sebastian Redl1a99f442009-04-16 17:51:27 +00005403 }
5404 }
5405
Richard Smithf2b084f2012-08-08 06:13:49 +00005406 // C++11 [expr.cond]p3
5407 // if both are glvalues of the same value category and the same type except
5408 // for cv-qualification, an attempt is made to convert each of those
5409 // operands to the type of the other.
Richard Smith1be59c52016-10-22 01:32:19 +00005410 // FIXME:
5411 // Resolving a defect in P0012R1: we extend this to cover all cases where
5412 // one of the operands is reference-compatible with the other, in order
5413 // to support conditionals between functions differing in noexcept.
Richard Smithf2b084f2012-08-08 06:13:49 +00005414 ExprValueKind LVK = LHS.get()->getValueKind();
5415 ExprValueKind RVK = RHS.get()->getValueKind();
5416 if (!Context.hasSameType(LTy, RTy) &&
Richard Smithf2b084f2012-08-08 06:13:49 +00005417 LVK == RVK && LVK != VK_RValue) {
Richard Smith1be59c52016-10-22 01:32:19 +00005418 // DerivedToBase was already handled by the class-specific case above.
5419 // FIXME: Should we allow ObjC conversions here?
5420 bool DerivedToBase, ObjCConversion, ObjCLifetimeConversion;
5421 if (CompareReferenceRelationship(
5422 QuestionLoc, LTy, RTy, DerivedToBase,
5423 ObjCConversion, ObjCLifetimeConversion) == Ref_Compatible &&
Richard Smithb8c0f552016-12-09 18:49:13 +00005424 !DerivedToBase && !ObjCConversion && !ObjCLifetimeConversion &&
5425 // [...] subject to the constraint that the reference must bind
5426 // directly [...]
5427 !RHS.get()->refersToBitField() &&
5428 !RHS.get()->refersToVectorElement()) {
Nikola Smiljanic01a75982014-05-29 10:55:11 +00005429 RHS = ImpCastExprToType(RHS.get(), LTy, CK_NoOp, RVK);
Richard Smithf2b084f2012-08-08 06:13:49 +00005430 RTy = RHS.get()->getType();
Richard Smith1be59c52016-10-22 01:32:19 +00005431 } else if (CompareReferenceRelationship(
5432 QuestionLoc, RTy, LTy, DerivedToBase,
5433 ObjCConversion, ObjCLifetimeConversion) == Ref_Compatible &&
Richard Smithb8c0f552016-12-09 18:49:13 +00005434 !DerivedToBase && !ObjCConversion && !ObjCLifetimeConversion &&
5435 !LHS.get()->refersToBitField() &&
5436 !LHS.get()->refersToVectorElement()) {
Richard Smith1be59c52016-10-22 01:32:19 +00005437 LHS = ImpCastExprToType(LHS.get(), RTy, CK_NoOp, LVK);
5438 LTy = LHS.get()->getType();
Richard Smithf2b084f2012-08-08 06:13:49 +00005439 }
5440 }
5441
5442 // C++11 [expr.cond]p4
John McCall7decc9e2010-11-18 06:31:45 +00005443 // If the second and third operands are glvalues of the same value
5444 // category and have the same type, the result is of that type and
5445 // value category and it is a bit-field if the second or the third
5446 // operand is a bit-field, or if both are bit-fields.
John McCall4bc41ae2010-11-18 19:01:18 +00005447 // We only extend this to bitfields, not to the crazy other kinds of
5448 // l-values.
Douglas Gregor697a3912010-04-01 22:47:07 +00005449 bool Same = Context.hasSameType(LTy, RTy);
Richard Smithf2b084f2012-08-08 06:13:49 +00005450 if (Same && LVK == RVK && LVK != VK_RValue &&
John Wiegley01296292011-04-08 18:41:53 +00005451 LHS.get()->isOrdinaryOrBitFieldObject() &&
5452 RHS.get()->isOrdinaryOrBitFieldObject()) {
5453 VK = LHS.get()->getValueKind();
5454 if (LHS.get()->getObjectKind() == OK_BitField ||
5455 RHS.get()->getObjectKind() == OK_BitField)
John McCall4bc41ae2010-11-18 19:01:18 +00005456 OK = OK_BitField;
Richard Smitheb7ef2e2016-10-20 21:53:09 +00005457
5458 // If we have function pointer types, unify them anyway to unify their
5459 // exception specifications, if any.
5460 if (LTy->isFunctionPointerType() || LTy->isMemberFunctionPointerType()) {
5461 Qualifiers Qs = LTy.getQualifiers();
Richard Smith5e9746f2016-10-21 22:00:42 +00005462 LTy = FindCompositePointerType(QuestionLoc, LHS, RHS,
Richard Smitheb7ef2e2016-10-20 21:53:09 +00005463 /*ConvertArgs*/false);
5464 LTy = Context.getQualifiedType(LTy, Qs);
5465
5466 assert(!LTy.isNull() && "failed to find composite pointer type for "
5467 "canonically equivalent function ptr types");
5468 assert(Context.hasSameType(LTy, RTy) && "bad composite pointer type");
5469 }
5470
John McCall7decc9e2010-11-18 06:31:45 +00005471 return LTy;
Fariborz Jahanianc60da032010-09-25 01:08:05 +00005472 }
Sebastian Redl1a99f442009-04-16 17:51:27 +00005473
Richard Smithf2b084f2012-08-08 06:13:49 +00005474 // C++11 [expr.cond]p5
5475 // Otherwise, the result is a prvalue. If the second and third operands
Sebastian Redl1a99f442009-04-16 17:51:27 +00005476 // do not have the same type, and either has (cv) class type, ...
5477 if (!Same && (LTy->isRecordType() || RTy->isRecordType())) {
5478 // ... overload resolution is used to determine the conversions (if any)
5479 // to be applied to the operands. If the overload resolution fails, the
5480 // program is ill-formed.
5481 if (FindConditionalOverload(*this, LHS, RHS, QuestionLoc))
5482 return QualType();
5483 }
5484
Richard Smithf2b084f2012-08-08 06:13:49 +00005485 // C++11 [expr.cond]p6
5486 // Lvalue-to-rvalue, array-to-pointer, and function-to-pointer standard
Sebastian Redl1a99f442009-04-16 17:51:27 +00005487 // conversions are performed on the second and third operands.
Nikola Smiljanic01a75982014-05-29 10:55:11 +00005488 LHS = DefaultFunctionArrayLvalueConversion(LHS.get());
5489 RHS = DefaultFunctionArrayLvalueConversion(RHS.get());
John Wiegley01296292011-04-08 18:41:53 +00005490 if (LHS.isInvalid() || RHS.isInvalid())
5491 return QualType();
5492 LTy = LHS.get()->getType();
5493 RTy = RHS.get()->getType();
Sebastian Redl1a99f442009-04-16 17:51:27 +00005494
5495 // After those conversions, one of the following shall hold:
5496 // -- The second and third operands have the same type; the result
Douglas Gregorfa6010b2010-05-19 23:40:50 +00005497 // is of that type. If the operands have class type, the result
5498 // is a prvalue temporary of the result type, which is
5499 // copy-initialized from either the second operand or the third
5500 // operand depending on the value of the first operand.
5501 if (Context.getCanonicalType(LTy) == Context.getCanonicalType(RTy)) {
5502 if (LTy->isRecordType()) {
5503 // The operands have class type. Make a temporary copy.
5504 InitializedEntity Entity = InitializedEntity::InitializeTemporary(LTy);
David Blaikie6154ef92012-09-10 22:05:41 +00005505
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00005506 ExprResult LHSCopy = PerformCopyInitialization(Entity,
5507 SourceLocation(),
John Wiegley01296292011-04-08 18:41:53 +00005508 LHS);
Douglas Gregorfa6010b2010-05-19 23:40:50 +00005509 if (LHSCopy.isInvalid())
5510 return QualType();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00005511
5512 ExprResult RHSCopy = PerformCopyInitialization(Entity,
5513 SourceLocation(),
John Wiegley01296292011-04-08 18:41:53 +00005514 RHS);
Douglas Gregorfa6010b2010-05-19 23:40:50 +00005515 if (RHSCopy.isInvalid())
5516 return QualType();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00005517
John Wiegley01296292011-04-08 18:41:53 +00005518 LHS = LHSCopy;
5519 RHS = RHSCopy;
Douglas Gregorfa6010b2010-05-19 23:40:50 +00005520 }
5521
Richard Smitheb7ef2e2016-10-20 21:53:09 +00005522 // If we have function pointer types, unify them anyway to unify their
5523 // exception specifications, if any.
5524 if (LTy->isFunctionPointerType() || LTy->isMemberFunctionPointerType()) {
5525 LTy = FindCompositePointerType(QuestionLoc, LHS, RHS);
5526 assert(!LTy.isNull() && "failed to find composite pointer type for "
5527 "canonically equivalent function ptr types");
5528 }
5529
Sebastian Redl1a99f442009-04-16 17:51:27 +00005530 return LTy;
Douglas Gregorfa6010b2010-05-19 23:40:50 +00005531 }
Sebastian Redl1a99f442009-04-16 17:51:27 +00005532
Douglas Gregor46188682010-05-18 22:42:18 +00005533 // Extension: conditional operator involving vector types.
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00005534 if (LTy->isVectorType() || RTy->isVectorType())
Ulrich Weigand3c5038a2015-07-30 14:08:36 +00005535 return CheckVectorOperands(LHS, RHS, QuestionLoc, /*isCompAssign*/false,
5536 /*AllowBothBool*/true,
5537 /*AllowBoolConversions*/false);
Douglas Gregor46188682010-05-18 22:42:18 +00005538
Sebastian Redl1a99f442009-04-16 17:51:27 +00005539 // -- The second and third operands have arithmetic or enumeration type;
5540 // the usual arithmetic conversions are performed to bring them to a
5541 // common type, and the result is of that type.
5542 if (LTy->isArithmeticType() && RTy->isArithmeticType()) {
Anton Korobeynikov5f951ee2014-11-14 22:09:15 +00005543 QualType ResTy = UsualArithmeticConversions(LHS, RHS);
John Wiegley01296292011-04-08 18:41:53 +00005544 if (LHS.isInvalid() || RHS.isInvalid())
5545 return QualType();
Nemanja Ivanovicbb1ea2d2016-05-09 08:52:33 +00005546 if (ResTy.isNull()) {
5547 Diag(QuestionLoc,
5548 diag::err_typecheck_cond_incompatible_operands) << LTy << RTy
5549 << LHS.get()->getSourceRange() << RHS.get()->getSourceRange();
5550 return QualType();
5551 }
Anton Korobeynikov5f951ee2014-11-14 22:09:15 +00005552
5553 LHS = ImpCastExprToType(LHS.get(), ResTy, PrepareScalarCast(LHS, ResTy));
5554 RHS = ImpCastExprToType(RHS.get(), ResTy, PrepareScalarCast(RHS, ResTy));
5555
5556 return ResTy;
Sebastian Redl1a99f442009-04-16 17:51:27 +00005557 }
5558
5559 // -- The second and third operands have pointer type, or one has pointer
Richard Smithf2b084f2012-08-08 06:13:49 +00005560 // type and the other is a null pointer constant, or both are null
5561 // pointer constants, at least one of which is non-integral; pointer
5562 // conversions and qualification conversions are performed to bring them
5563 // to their composite pointer type. The result is of the composite
5564 // pointer type.
Eli Friedman81390df2010-01-02 22:56:07 +00005565 // -- The second and third operands have pointer to member type, or one has
5566 // pointer to member type and the other is a null pointer constant;
5567 // pointer to member conversions and qualification conversions are
5568 // performed to bring them to a common type, whose cv-qualification
5569 // shall match the cv-qualification of either the second or the third
5570 // operand. The result is of the common type.
Richard Smith5e9746f2016-10-21 22:00:42 +00005571 QualType Composite = FindCompositePointerType(QuestionLoc, LHS, RHS);
5572 if (!Composite.isNull())
Sebastian Redl3b7ef5e2009-04-19 19:26:31 +00005573 return Composite;
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00005574
Douglas Gregor697a3912010-04-01 22:47:07 +00005575 // Similarly, attempt to find composite type of two objective-c pointers.
Fariborz Jahanian798d2bd2009-12-10 20:46:08 +00005576 Composite = FindCompositeObjCPointerType(LHS, RHS, QuestionLoc);
5577 if (!Composite.isNull())
5578 return Composite;
Sebastian Redl1a99f442009-04-16 17:51:27 +00005579
Chandler Carruth9c9127e2011-02-19 00:13:59 +00005580 // Check if we are using a null with a non-pointer type.
John Wiegley01296292011-04-08 18:41:53 +00005581 if (DiagnoseConditionalForNull(LHS.get(), RHS.get(), QuestionLoc))
Chandler Carruth9c9127e2011-02-19 00:13:59 +00005582 return QualType();
5583
Sebastian Redl1a99f442009-04-16 17:51:27 +00005584 Diag(QuestionLoc, diag::err_typecheck_cond_incompatible_operands)
John Wiegley01296292011-04-08 18:41:53 +00005585 << LHS.get()->getType() << RHS.get()->getType()
5586 << LHS.get()->getSourceRange() << RHS.get()->getSourceRange();
Sebastian Redl1a99f442009-04-16 17:51:27 +00005587 return QualType();
5588}
Sebastian Redl3b7ef5e2009-04-19 19:26:31 +00005589
Richard Smitheb7ef2e2016-10-20 21:53:09 +00005590static FunctionProtoType::ExceptionSpecInfo
5591mergeExceptionSpecs(Sema &S, FunctionProtoType::ExceptionSpecInfo ESI1,
5592 FunctionProtoType::ExceptionSpecInfo ESI2,
5593 SmallVectorImpl<QualType> &ExceptionTypeStorage) {
5594 ExceptionSpecificationType EST1 = ESI1.Type;
5595 ExceptionSpecificationType EST2 = ESI2.Type;
5596
5597 // If either of them can throw anything, that is the result.
5598 if (EST1 == EST_None) return ESI1;
5599 if (EST2 == EST_None) return ESI2;
5600 if (EST1 == EST_MSAny) return ESI1;
5601 if (EST2 == EST_MSAny) return ESI2;
5602
5603 // If either of them is non-throwing, the result is the other.
5604 if (EST1 == EST_DynamicNone) return ESI2;
5605 if (EST2 == EST_DynamicNone) return ESI1;
5606 if (EST1 == EST_BasicNoexcept) return ESI2;
5607 if (EST2 == EST_BasicNoexcept) return ESI1;
5608
5609 // If either of them is a non-value-dependent computed noexcept, that
5610 // determines the result.
5611 if (EST2 == EST_ComputedNoexcept && ESI2.NoexceptExpr &&
5612 !ESI2.NoexceptExpr->isValueDependent())
5613 return !ESI2.NoexceptExpr->EvaluateKnownConstInt(S.Context) ? ESI2 : ESI1;
5614 if (EST1 == EST_ComputedNoexcept && ESI1.NoexceptExpr &&
5615 !ESI1.NoexceptExpr->isValueDependent())
5616 return !ESI1.NoexceptExpr->EvaluateKnownConstInt(S.Context) ? ESI1 : ESI2;
5617 // If we're left with value-dependent computed noexcept expressions, we're
5618 // stuck. Before C++17, we can just drop the exception specification entirely,
5619 // since it's not actually part of the canonical type. And this should never
5620 // happen in C++17, because it would mean we were computing the composite
5621 // pointer type of dependent types, which should never happen.
5622 if (EST1 == EST_ComputedNoexcept || EST2 == EST_ComputedNoexcept) {
5623 assert(!S.getLangOpts().CPlusPlus1z &&
5624 "computing composite pointer type of dependent types");
5625 return FunctionProtoType::ExceptionSpecInfo();
5626 }
5627
5628 // Switch over the possibilities so that people adding new values know to
5629 // update this function.
5630 switch (EST1) {
5631 case EST_None:
5632 case EST_DynamicNone:
5633 case EST_MSAny:
5634 case EST_BasicNoexcept:
5635 case EST_ComputedNoexcept:
5636 llvm_unreachable("handled above");
5637
5638 case EST_Dynamic: {
5639 // This is the fun case: both exception specifications are dynamic. Form
5640 // the union of the two lists.
5641 assert(EST2 == EST_Dynamic && "other cases should already be handled");
5642 llvm::SmallPtrSet<QualType, 8> Found;
5643 for (auto &Exceptions : {ESI1.Exceptions, ESI2.Exceptions})
5644 for (QualType E : Exceptions)
5645 if (Found.insert(S.Context.getCanonicalType(E)).second)
5646 ExceptionTypeStorage.push_back(E);
5647
5648 FunctionProtoType::ExceptionSpecInfo Result(EST_Dynamic);
5649 Result.Exceptions = ExceptionTypeStorage;
5650 return Result;
5651 }
5652
5653 case EST_Unevaluated:
5654 case EST_Uninstantiated:
5655 case EST_Unparsed:
5656 llvm_unreachable("shouldn't see unresolved exception specifications here");
5657 }
5658
5659 llvm_unreachable("invalid ExceptionSpecificationType");
5660}
5661
Sebastian Redl3b7ef5e2009-04-19 19:26:31 +00005662/// \brief Find a merged pointer type and convert the two expressions to it.
5663///
Douglas Gregorb00b10e2009-08-24 17:42:35 +00005664/// This finds the composite pointer type (or member pointer type) for @p E1
Richard Smith6ffdb1f2016-10-20 01:20:00 +00005665/// and @p E2 according to C++1z 5p14. It converts both expressions to this
Douglas Gregorb00b10e2009-08-24 17:42:35 +00005666/// type and returns it.
Sebastian Redl3b7ef5e2009-04-19 19:26:31 +00005667/// It does not emit diagnostics.
Douglas Gregor6f5f6422010-02-25 22:29:57 +00005668///
Douglas Gregor19175ff2010-04-16 23:20:25 +00005669/// \param Loc The location of the operator requiring these two expressions to
5670/// be converted to the composite pointer type.
5671///
Richard Smitheb7ef2e2016-10-20 21:53:09 +00005672/// \param ConvertArgs If \c false, do not convert E1 and E2 to the target type.
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00005673QualType Sema::FindCompositePointerType(SourceLocation Loc,
Douglas Gregor19175ff2010-04-16 23:20:25 +00005674 Expr *&E1, Expr *&E2,
Richard Smitheb7ef2e2016-10-20 21:53:09 +00005675 bool ConvertArgs) {
David Blaikiebbafb8a2012-03-11 07:00:24 +00005676 assert(getLangOpts().CPlusPlus && "This function assumes C++");
Richard Smith6ffdb1f2016-10-20 01:20:00 +00005677
5678 // C++1z [expr]p14:
5679 // The composite pointer type of two operands p1 and p2 having types T1
5680 // and T2
Sebastian Redl3b7ef5e2009-04-19 19:26:31 +00005681 QualType T1 = E1->getType(), T2 = E2->getType();
Mike Stump11289f42009-09-09 15:08:12 +00005682
Richard Smith6ffdb1f2016-10-20 01:20:00 +00005683 // where at least one is a pointer or pointer to member type or
5684 // std::nullptr_t is:
5685 bool T1IsPointerLike = T1->isAnyPointerType() || T1->isMemberPointerType() ||
5686 T1->isNullPtrType();
5687 bool T2IsPointerLike = T2->isAnyPointerType() || T2->isMemberPointerType() ||
5688 T2->isNullPtrType();
5689 if (!T1IsPointerLike && !T2IsPointerLike)
Richard Smithf2b084f2012-08-08 06:13:49 +00005690 return QualType();
Richard Smithf2b084f2012-08-08 06:13:49 +00005691
Richard Smith6ffdb1f2016-10-20 01:20:00 +00005692 // - if both p1 and p2 are null pointer constants, std::nullptr_t;
5693 // This can't actually happen, following the standard, but we also use this
5694 // to implement the end of [expr.conv], which hits this case.
5695 //
5696 // - if either p1 or p2 is a null pointer constant, T2 or T1, respectively;
5697 if (T1IsPointerLike &&
5698 E2->isNullPointerConstant(Context, Expr::NPC_ValueDependentIsNull)) {
Richard Smitheb7ef2e2016-10-20 21:53:09 +00005699 if (ConvertArgs)
5700 E2 = ImpCastExprToType(E2, T1, T1->isMemberPointerType()
5701 ? CK_NullToMemberPointer
5702 : CK_NullToPointer).get();
Sebastian Redl3b7ef5e2009-04-19 19:26:31 +00005703 return T1;
5704 }
Richard Smith6ffdb1f2016-10-20 01:20:00 +00005705 if (T2IsPointerLike &&
5706 E1->isNullPointerConstant(Context, Expr::NPC_ValueDependentIsNull)) {
Richard Smitheb7ef2e2016-10-20 21:53:09 +00005707 if (ConvertArgs)
5708 E1 = ImpCastExprToType(E1, T2, T2->isMemberPointerType()
5709 ? CK_NullToMemberPointer
5710 : CK_NullToPointer).get();
Richard Smith6ffdb1f2016-10-20 01:20:00 +00005711 return T2;
5712 }
Mike Stump11289f42009-09-09 15:08:12 +00005713
Douglas Gregorb00b10e2009-08-24 17:42:35 +00005714 // Now both have to be pointers or member pointers.
Richard Smith6ffdb1f2016-10-20 01:20:00 +00005715 if (!T1IsPointerLike || !T2IsPointerLike)
Sebastian Redl3b7ef5e2009-04-19 19:26:31 +00005716 return QualType();
Richard Smith6ffdb1f2016-10-20 01:20:00 +00005717 assert(!T1->isNullPtrType() && !T2->isNullPtrType() &&
5718 "nullptr_t should be a null pointer constant");
Sebastian Redl3b7ef5e2009-04-19 19:26:31 +00005719
Richard Smith6ffdb1f2016-10-20 01:20:00 +00005720 // - if T1 or T2 is "pointer to cv1 void" and the other type is
5721 // "pointer to cv2 T", "pointer to cv12 void", where cv12 is
5722 // the union of cv1 and cv2;
5723 // - if T1 or T2 is "pointer to noexcept function" and the other type is
5724 // "pointer to function", where the function types are otherwise the same,
5725 // "pointer to function";
5726 // FIXME: This rule is defective: it should also permit removing noexcept
5727 // from a pointer to member function. As a Clang extension, we also
5728 // permit removing 'noreturn', so we generalize this rule to;
5729 // - [Clang] If T1 and T2 are both of type "pointer to function" or
5730 // "pointer to member function" and the pointee types can be unified
5731 // by a function pointer conversion, that conversion is applied
5732 // before checking the following rules.
5733 // - if T1 is "pointer to cv1 C1" and T2 is "pointer to cv2 C2", where C1
5734 // is reference-related to C2 or C2 is reference-related to C1 (8.6.3),
5735 // the cv-combined type of T1 and T2 or the cv-combined type of T2 and T1,
5736 // respectively;
5737 // - if T1 is "pointer to member of C1 of type cv1 U1" and T2 is "pointer
5738 // to member of C2 of type cv2 U2" where C1 is reference-related to C2 or
5739 // C2 is reference-related to C1 (8.6.3), the cv-combined type of T2 and
5740 // T1 or the cv-combined type of T1 and T2, respectively;
5741 // - if T1 and T2 are similar types (4.5), the cv-combined type of T1 and
5742 // T2;
5743 //
5744 // If looked at in the right way, these bullets all do the same thing.
5745 // What we do here is, we build the two possible cv-combined types, and try
5746 // the conversions in both directions. If only one works, or if the two
5747 // composite types are the same, we have succeeded.
John McCall8ccfcb52009-09-24 19:53:00 +00005748 // FIXME: extended qualifiers?
Richard Smith6ffdb1f2016-10-20 01:20:00 +00005749 //
5750 // Note that this will fail to find a composite pointer type for "pointer
5751 // to void" and "pointer to function". We can't actually perform the final
5752 // conversion in this case, even though a composite pointer type formally
5753 // exists.
5754 SmallVector<unsigned, 4> QualifierUnion;
5755 SmallVector<std::pair<const Type *, const Type *>, 4> MemberOfClass;
Richard Smitheb7ef2e2016-10-20 21:53:09 +00005756 QualType Composite1 = T1;
5757 QualType Composite2 = T2;
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00005758 unsigned NeedConstBefore = 0;
Richard Smith6ffdb1f2016-10-20 01:20:00 +00005759 while (true) {
Douglas Gregorb00b10e2009-08-24 17:42:35 +00005760 const PointerType *Ptr1, *Ptr2;
5761 if ((Ptr1 = Composite1->getAs<PointerType>()) &&
5762 (Ptr2 = Composite2->getAs<PointerType>())) {
5763 Composite1 = Ptr1->getPointeeType();
5764 Composite2 = Ptr2->getPointeeType();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00005765
Douglas Gregor6f5f6422010-02-25 22:29:57 +00005766 // If we're allowed to create a non-standard composite type, keep track
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00005767 // of where we need to fill in additional 'const' qualifiers.
Richard Smith5e9746f2016-10-21 22:00:42 +00005768 if (Composite1.getCVRQualifiers() != Composite2.getCVRQualifiers())
Douglas Gregor6f5f6422010-02-25 22:29:57 +00005769 NeedConstBefore = QualifierUnion.size();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00005770
Douglas Gregorb00b10e2009-08-24 17:42:35 +00005771 QualifierUnion.push_back(
5772 Composite1.getCVRQualifiers() | Composite2.getCVRQualifiers());
Craig Topperc3ec1492014-05-26 06:22:03 +00005773 MemberOfClass.push_back(std::make_pair(nullptr, nullptr));
Douglas Gregorb00b10e2009-08-24 17:42:35 +00005774 continue;
5775 }
Mike Stump11289f42009-09-09 15:08:12 +00005776
Douglas Gregorb00b10e2009-08-24 17:42:35 +00005777 const MemberPointerType *MemPtr1, *MemPtr2;
5778 if ((MemPtr1 = Composite1->getAs<MemberPointerType>()) &&
5779 (MemPtr2 = Composite2->getAs<MemberPointerType>())) {
5780 Composite1 = MemPtr1->getPointeeType();
5781 Composite2 = MemPtr2->getPointeeType();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00005782
Douglas Gregor6f5f6422010-02-25 22:29:57 +00005783 // If we're allowed to create a non-standard composite type, keep track
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00005784 // of where we need to fill in additional 'const' qualifiers.
Richard Smith5e9746f2016-10-21 22:00:42 +00005785 if (Composite1.getCVRQualifiers() != Composite2.getCVRQualifiers())
Douglas Gregor6f5f6422010-02-25 22:29:57 +00005786 NeedConstBefore = QualifierUnion.size();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00005787
Douglas Gregorb00b10e2009-08-24 17:42:35 +00005788 QualifierUnion.push_back(
5789 Composite1.getCVRQualifiers() | Composite2.getCVRQualifiers());
5790 MemberOfClass.push_back(std::make_pair(MemPtr1->getClass(),
5791 MemPtr2->getClass()));
5792 continue;
5793 }
Mike Stump11289f42009-09-09 15:08:12 +00005794
Douglas Gregorb00b10e2009-08-24 17:42:35 +00005795 // FIXME: block pointer types?
Mike Stump11289f42009-09-09 15:08:12 +00005796
Douglas Gregorb00b10e2009-08-24 17:42:35 +00005797 // Cannot unwrap any more types.
5798 break;
Richard Smith6ffdb1f2016-10-20 01:20:00 +00005799 }
Mike Stump11289f42009-09-09 15:08:12 +00005800
Richard Smitheb7ef2e2016-10-20 21:53:09 +00005801 // Apply the function pointer conversion to unify the types. We've already
5802 // unwrapped down to the function types, and we want to merge rather than
5803 // just convert, so do this ourselves rather than calling
5804 // IsFunctionConversion.
5805 //
5806 // FIXME: In order to match the standard wording as closely as possible, we
5807 // currently only do this under a single level of pointers. Ideally, we would
5808 // allow this in general, and set NeedConstBefore to the relevant depth on
5809 // the side(s) where we changed anything.
5810 if (QualifierUnion.size() == 1) {
5811 if (auto *FPT1 = Composite1->getAs<FunctionProtoType>()) {
5812 if (auto *FPT2 = Composite2->getAs<FunctionProtoType>()) {
5813 FunctionProtoType::ExtProtoInfo EPI1 = FPT1->getExtProtoInfo();
5814 FunctionProtoType::ExtProtoInfo EPI2 = FPT2->getExtProtoInfo();
5815
5816 // The result is noreturn if both operands are.
5817 bool Noreturn =
5818 EPI1.ExtInfo.getNoReturn() && EPI2.ExtInfo.getNoReturn();
5819 EPI1.ExtInfo = EPI1.ExtInfo.withNoReturn(Noreturn);
5820 EPI2.ExtInfo = EPI2.ExtInfo.withNoReturn(Noreturn);
5821
5822 // The result is nothrow if both operands are.
5823 SmallVector<QualType, 8> ExceptionTypeStorage;
5824 EPI1.ExceptionSpec = EPI2.ExceptionSpec =
5825 mergeExceptionSpecs(*this, EPI1.ExceptionSpec, EPI2.ExceptionSpec,
5826 ExceptionTypeStorage);
5827
5828 Composite1 = Context.getFunctionType(FPT1->getReturnType(),
5829 FPT1->getParamTypes(), EPI1);
5830 Composite2 = Context.getFunctionType(FPT2->getReturnType(),
5831 FPT2->getParamTypes(), EPI2);
5832 }
5833 }
5834 }
5835
Richard Smith5e9746f2016-10-21 22:00:42 +00005836 if (NeedConstBefore) {
Douglas Gregor6f5f6422010-02-25 22:29:57 +00005837 // Extension: Add 'const' to qualifiers that come before the first qualifier
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00005838 // mismatch, so that our (non-standard!) composite type meets the
Douglas Gregor6f5f6422010-02-25 22:29:57 +00005839 // requirements of C++ [conv.qual]p4 bullet 3.
Richard Smith5e9746f2016-10-21 22:00:42 +00005840 for (unsigned I = 0; I != NeedConstBefore; ++I)
5841 if ((QualifierUnion[I] & Qualifiers::Const) == 0)
Douglas Gregor6f5f6422010-02-25 22:29:57 +00005842 QualifierUnion[I] = QualifierUnion[I] | Qualifiers::Const;
Douglas Gregor6f5f6422010-02-25 22:29:57 +00005843 }
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00005844
Douglas Gregorb00b10e2009-08-24 17:42:35 +00005845 // Rewrap the composites as pointers or member pointers with the union CVRs.
Richard Smith6ffdb1f2016-10-20 01:20:00 +00005846 auto MOC = MemberOfClass.rbegin();
5847 for (unsigned CVR : llvm::reverse(QualifierUnion)) {
5848 Qualifiers Quals = Qualifiers::fromCVRMask(CVR);
5849 auto Classes = *MOC++;
5850 if (Classes.first && Classes.second) {
Douglas Gregorb00b10e2009-08-24 17:42:35 +00005851 // Rebuild member pointer type
John McCall8ccfcb52009-09-24 19:53:00 +00005852 Composite1 = Context.getMemberPointerType(
Richard Smith6ffdb1f2016-10-20 01:20:00 +00005853 Context.getQualifiedType(Composite1, Quals), Classes.first);
John McCall8ccfcb52009-09-24 19:53:00 +00005854 Composite2 = Context.getMemberPointerType(
Richard Smith6ffdb1f2016-10-20 01:20:00 +00005855 Context.getQualifiedType(Composite2, Quals), Classes.second);
Douglas Gregorb00b10e2009-08-24 17:42:35 +00005856 } else {
5857 // Rebuild pointer type
Richard Smith6ffdb1f2016-10-20 01:20:00 +00005858 Composite1 =
5859 Context.getPointerType(Context.getQualifiedType(Composite1, Quals));
5860 Composite2 =
5861 Context.getPointerType(Context.getQualifiedType(Composite2, Quals));
Douglas Gregorb00b10e2009-08-24 17:42:35 +00005862 }
Sebastian Redl3b7ef5e2009-04-19 19:26:31 +00005863 }
5864
Richard Smith6ffdb1f2016-10-20 01:20:00 +00005865 struct Conversion {
5866 Sema &S;
Richard Smith6ffdb1f2016-10-20 01:20:00 +00005867 Expr *&E1, *&E2;
5868 QualType Composite;
Richard Smithe38da032016-10-20 07:53:17 +00005869 InitializedEntity Entity;
5870 InitializationKind Kind;
Richard Smith6ffdb1f2016-10-20 01:20:00 +00005871 InitializationSequence E1ToC, E2ToC;
Richard Smithe38da032016-10-20 07:53:17 +00005872 bool Viable;
Mike Stump11289f42009-09-09 15:08:12 +00005873
Richard Smith6ffdb1f2016-10-20 01:20:00 +00005874 Conversion(Sema &S, SourceLocation Loc, Expr *&E1, Expr *&E2,
5875 QualType Composite)
Richard Smithe38da032016-10-20 07:53:17 +00005876 : S(S), E1(E1), E2(E2), Composite(Composite),
5877 Entity(InitializedEntity::InitializeTemporary(Composite)),
5878 Kind(InitializationKind::CreateCopy(Loc, SourceLocation())),
5879 E1ToC(S, Entity, Kind, E1), E2ToC(S, Entity, Kind, E2),
5880 Viable(E1ToC && E2ToC) {}
Richard Smith6ffdb1f2016-10-20 01:20:00 +00005881
Richard Smitheb7ef2e2016-10-20 21:53:09 +00005882 bool perform() {
Richard Smith6ffdb1f2016-10-20 01:20:00 +00005883 ExprResult E1Result = E1ToC.Perform(S, Entity, Kind, E1);
5884 if (E1Result.isInvalid())
Richard Smitheb7ef2e2016-10-20 21:53:09 +00005885 return true;
Richard Smith6ffdb1f2016-10-20 01:20:00 +00005886 E1 = E1Result.getAs<Expr>();
5887
5888 ExprResult E2Result = E2ToC.Perform(S, Entity, Kind, E2);
5889 if (E2Result.isInvalid())
Richard Smitheb7ef2e2016-10-20 21:53:09 +00005890 return true;
Richard Smith6ffdb1f2016-10-20 01:20:00 +00005891 E2 = E2Result.getAs<Expr>();
5892
Richard Smitheb7ef2e2016-10-20 21:53:09 +00005893 return false;
Douglas Gregor19175ff2010-04-16 23:20:25 +00005894 }
Richard Smith6ffdb1f2016-10-20 01:20:00 +00005895 };
Douglas Gregor19175ff2010-04-16 23:20:25 +00005896
Richard Smith6ffdb1f2016-10-20 01:20:00 +00005897 // Try to convert to each composite pointer type.
5898 Conversion C1(*this, Loc, E1, E2, Composite1);
Richard Smitheb7ef2e2016-10-20 21:53:09 +00005899 if (C1.Viable && Context.hasSameType(Composite1, Composite2)) {
5900 if (ConvertArgs && C1.perform())
5901 return QualType();
5902 return C1.Composite;
5903 }
Richard Smith6ffdb1f2016-10-20 01:20:00 +00005904 Conversion C2(*this, Loc, E1, E2, Composite2);
Douglas Gregor19175ff2010-04-16 23:20:25 +00005905
Richard Smith6ffdb1f2016-10-20 01:20:00 +00005906 if (C1.Viable == C2.Viable) {
5907 // Either Composite1 and Composite2 are viable and are different, or
5908 // neither is viable.
5909 // FIXME: How both be viable and different?
5910 return QualType();
Sebastian Redl3b7ef5e2009-04-19 19:26:31 +00005911 }
5912
Richard Smith6ffdb1f2016-10-20 01:20:00 +00005913 // Convert to the chosen type.
Richard Smitheb7ef2e2016-10-20 21:53:09 +00005914 if (ConvertArgs && (C1.Viable ? C1 : C2).perform())
5915 return QualType();
5916
5917 return C1.Viable ? C1.Composite : C2.Composite;
Sebastian Redl3b7ef5e2009-04-19 19:26:31 +00005918}
Anders Carlsson85a307d2009-05-17 18:41:29 +00005919
John McCalldadc5752010-08-24 06:29:42 +00005920ExprResult Sema::MaybeBindToTemporary(Expr *E) {
Douglas Gregor298087b2010-11-01 21:10:29 +00005921 if (!E)
5922 return ExprError();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00005923
John McCall31168b02011-06-15 23:02:42 +00005924 assert(!isa<CXXBindTemporaryExpr>(E) && "Double-bound temporary?");
5925
5926 // If the result is a glvalue, we shouldn't bind it.
5927 if (!E->isRValue())
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00005928 return E;
Mike Stump11289f42009-09-09 15:08:12 +00005929
John McCall31168b02011-06-15 23:02:42 +00005930 // In ARC, calls that return a retainable type can return retained,
5931 // in which case we have to insert a consuming cast.
David Blaikiebbafb8a2012-03-11 07:00:24 +00005932 if (getLangOpts().ObjCAutoRefCount &&
John McCall31168b02011-06-15 23:02:42 +00005933 E->getType()->isObjCRetainableType()) {
5934
5935 bool ReturnsRetained;
5936
5937 // For actual calls, we compute this by examining the type of the
5938 // called value.
5939 if (CallExpr *Call = dyn_cast<CallExpr>(E)) {
5940 Expr *Callee = Call->getCallee()->IgnoreParens();
5941 QualType T = Callee->getType();
5942
5943 if (T == Context.BoundMemberTy) {
5944 // Handle pointer-to-members.
5945 if (BinaryOperator *BinOp = dyn_cast<BinaryOperator>(Callee))
5946 T = BinOp->getRHS()->getType();
5947 else if (MemberExpr *Mem = dyn_cast<MemberExpr>(Callee))
5948 T = Mem->getMemberDecl()->getType();
5949 }
Simon Pilgrim75c26882016-09-30 14:25:09 +00005950
John McCall31168b02011-06-15 23:02:42 +00005951 if (const PointerType *Ptr = T->getAs<PointerType>())
5952 T = Ptr->getPointeeType();
5953 else if (const BlockPointerType *Ptr = T->getAs<BlockPointerType>())
5954 T = Ptr->getPointeeType();
5955 else if (const MemberPointerType *MemPtr = T->getAs<MemberPointerType>())
5956 T = MemPtr->getPointeeType();
Simon Pilgrim75c26882016-09-30 14:25:09 +00005957
John McCall31168b02011-06-15 23:02:42 +00005958 const FunctionType *FTy = T->getAs<FunctionType>();
5959 assert(FTy && "call to value not of function type?");
5960 ReturnsRetained = FTy->getExtInfo().getProducesResult();
5961
5962 // ActOnStmtExpr arranges things so that StmtExprs of retainable
5963 // type always produce a +1 object.
5964 } else if (isa<StmtExpr>(E)) {
5965 ReturnsRetained = true;
5966
Ted Kremeneke65b0862012-03-06 20:05:56 +00005967 // We hit this case with the lambda conversion-to-block optimization;
5968 // we don't want any extra casts here.
5969 } else if (isa<CastExpr>(E) &&
5970 isa<BlockExpr>(cast<CastExpr>(E)->getSubExpr())) {
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00005971 return E;
Ted Kremeneke65b0862012-03-06 20:05:56 +00005972
John McCall31168b02011-06-15 23:02:42 +00005973 // For message sends and property references, we try to find an
5974 // actual method. FIXME: we should infer retention by selector in
5975 // cases where we don't have an actual method.
Ted Kremeneke65b0862012-03-06 20:05:56 +00005976 } else {
Craig Topperc3ec1492014-05-26 06:22:03 +00005977 ObjCMethodDecl *D = nullptr;
Ted Kremeneke65b0862012-03-06 20:05:56 +00005978 if (ObjCMessageExpr *Send = dyn_cast<ObjCMessageExpr>(E)) {
5979 D = Send->getMethodDecl();
Patrick Beard0caa3942012-04-19 00:25:12 +00005980 } else if (ObjCBoxedExpr *BoxedExpr = dyn_cast<ObjCBoxedExpr>(E)) {
5981 D = BoxedExpr->getBoxingMethod();
Ted Kremeneke65b0862012-03-06 20:05:56 +00005982 } else if (ObjCArrayLiteral *ArrayLit = dyn_cast<ObjCArrayLiteral>(E)) {
5983 D = ArrayLit->getArrayWithObjectsMethod();
5984 } else if (ObjCDictionaryLiteral *DictLit
5985 = dyn_cast<ObjCDictionaryLiteral>(E)) {
5986 D = DictLit->getDictWithObjectsMethod();
5987 }
John McCall31168b02011-06-15 23:02:42 +00005988
5989 ReturnsRetained = (D && D->hasAttr<NSReturnsRetainedAttr>());
John McCall32a4da02011-08-03 07:02:44 +00005990
5991 // Don't do reclaims on performSelector calls; despite their
5992 // return type, the invoked method doesn't necessarily actually
5993 // return an object.
5994 if (!ReturnsRetained &&
5995 D && D->getMethodFamily() == OMF_performSelector)
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00005996 return E;
John McCall31168b02011-06-15 23:02:42 +00005997 }
5998
John McCall16de4d22011-11-14 19:53:16 +00005999 // Don't reclaim an object of Class type.
6000 if (!ReturnsRetained && E->getType()->isObjCARCImplicitlyUnretainedType())
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00006001 return E;
John McCall16de4d22011-11-14 19:53:16 +00006002
Tim Shen4a05bb82016-06-21 20:29:17 +00006003 Cleanup.setExprNeedsCleanups(true);
John McCall4db5c3c2011-07-07 06:58:02 +00006004
John McCall2d637d22011-09-10 06:18:15 +00006005 CastKind ck = (ReturnsRetained ? CK_ARCConsumeObject
6006 : CK_ARCReclaimReturnedObject);
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00006007 return ImplicitCastExpr::Create(Context, E->getType(), ck, E, nullptr,
6008 VK_RValue);
John McCall31168b02011-06-15 23:02:42 +00006009 }
6010
David Blaikiebbafb8a2012-03-11 07:00:24 +00006011 if (!getLangOpts().CPlusPlus)
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00006012 return E;
Douglas Gregor363b1512009-12-24 18:51:59 +00006013
Peter Collingbournec331a1e2012-01-26 03:33:51 +00006014 // Search for the base element type (cf. ASTContext::getBaseElementType) with
6015 // a fast path for the common case that the type is directly a RecordType.
6016 const Type *T = Context.getCanonicalType(E->getType().getTypePtr());
Craig Topperc3ec1492014-05-26 06:22:03 +00006017 const RecordType *RT = nullptr;
Peter Collingbournec331a1e2012-01-26 03:33:51 +00006018 while (!RT) {
6019 switch (T->getTypeClass()) {
6020 case Type::Record:
6021 RT = cast<RecordType>(T);
6022 break;
6023 case Type::ConstantArray:
6024 case Type::IncompleteArray:
6025 case Type::VariableArray:
6026 case Type::DependentSizedArray:
6027 T = cast<ArrayType>(T)->getElementType().getTypePtr();
6028 break;
6029 default:
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00006030 return E;
Peter Collingbournec331a1e2012-01-26 03:33:51 +00006031 }
6032 }
Mike Stump11289f42009-09-09 15:08:12 +00006033
Richard Smithfd555f62012-02-22 02:04:18 +00006034 // That should be enough to guarantee that this type is complete, if we're
6035 // not processing a decltype expression.
Jeffrey Yasskinbbc4eea2011-01-27 19:17:54 +00006036 CXXRecordDecl *RD = cast<CXXRecordDecl>(RT->getDecl());
Richard Smitheec915d62012-02-18 04:13:32 +00006037 if (RD->isInvalidDecl() || RD->isDependentContext())
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00006038 return E;
Richard Smithfd555f62012-02-22 02:04:18 +00006039
6040 bool IsDecltype = ExprEvalContexts.back().IsDecltype;
Craig Topperc3ec1492014-05-26 06:22:03 +00006041 CXXDestructorDecl *Destructor = IsDecltype ? nullptr : LookupDestructor(RD);
John McCall31168b02011-06-15 23:02:42 +00006042
John McCall31168b02011-06-15 23:02:42 +00006043 if (Destructor) {
Eli Friedmanfa0df832012-02-02 03:46:19 +00006044 MarkFunctionReferenced(E->getExprLoc(), Destructor);
John McCall8e36d532010-04-07 00:41:46 +00006045 CheckDestructorAccess(E->getExprLoc(), Destructor,
6046 PDiag(diag::err_access_dtor_temp)
6047 << E->getType());
Richard Smith22262ab2013-05-04 06:44:46 +00006048 if (DiagnoseUseOfDecl(Destructor, E->getExprLoc()))
6049 return ExprError();
John McCall31168b02011-06-15 23:02:42 +00006050
Richard Smithfd555f62012-02-22 02:04:18 +00006051 // If destructor is trivial, we can avoid the extra copy.
6052 if (Destructor->isTrivial())
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00006053 return E;
Richard Smitheec915d62012-02-18 04:13:32 +00006054
John McCall28fc7092011-11-10 05:35:25 +00006055 // We need a cleanup, but we don't need to remember the temporary.
Tim Shen4a05bb82016-06-21 20:29:17 +00006056 Cleanup.setExprNeedsCleanups(true);
Richard Smithfd555f62012-02-22 02:04:18 +00006057 }
Richard Smitheec915d62012-02-18 04:13:32 +00006058
6059 CXXTemporary *Temp = CXXTemporary::Create(Context, Destructor);
Richard Smithfd555f62012-02-22 02:04:18 +00006060 CXXBindTemporaryExpr *Bind = CXXBindTemporaryExpr::Create(Context, Temp, E);
6061
6062 if (IsDecltype)
6063 ExprEvalContexts.back().DelayedDecltypeBinds.push_back(Bind);
6064
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00006065 return Bind;
Anders Carlsson2d4cada2009-05-30 20:36:53 +00006066}
6067
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00006068ExprResult
John McCall5d413782010-12-06 08:20:24 +00006069Sema::MaybeCreateExprWithCleanups(ExprResult SubExpr) {
Douglas Gregorb6ea6082009-12-22 22:17:25 +00006070 if (SubExpr.isInvalid())
6071 return ExprError();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00006072
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00006073 return MaybeCreateExprWithCleanups(SubExpr.get());
Douglas Gregorb6ea6082009-12-22 22:17:25 +00006074}
6075
John McCall28fc7092011-11-10 05:35:25 +00006076Expr *Sema::MaybeCreateExprWithCleanups(Expr *SubExpr) {
Alp Toker028ed912013-12-06 17:56:43 +00006077 assert(SubExpr && "subexpression can't be null!");
John McCall28fc7092011-11-10 05:35:25 +00006078
Eli Friedman3bda6b12012-02-02 23:15:15 +00006079 CleanupVarDeclMarking();
6080
John McCall28fc7092011-11-10 05:35:25 +00006081 unsigned FirstCleanup = ExprEvalContexts.back().NumCleanupObjects;
6082 assert(ExprCleanupObjects.size() >= FirstCleanup);
Tim Shen4a05bb82016-06-21 20:29:17 +00006083 assert(Cleanup.exprNeedsCleanups() ||
6084 ExprCleanupObjects.size() == FirstCleanup);
6085 if (!Cleanup.exprNeedsCleanups())
John McCall28fc7092011-11-10 05:35:25 +00006086 return SubExpr;
6087
Craig Topper5fc8fc22014-08-27 06:28:36 +00006088 auto Cleanups = llvm::makeArrayRef(ExprCleanupObjects.begin() + FirstCleanup,
6089 ExprCleanupObjects.size() - FirstCleanup);
John McCall28fc7092011-11-10 05:35:25 +00006090
Tim Shen4a05bb82016-06-21 20:29:17 +00006091 auto *E = ExprWithCleanups::Create(
6092 Context, SubExpr, Cleanup.cleanupsHaveSideEffects(), Cleanups);
John McCall28fc7092011-11-10 05:35:25 +00006093 DiscardCleanupsInEvaluationContext();
6094
6095 return E;
6096}
6097
John McCall5d413782010-12-06 08:20:24 +00006098Stmt *Sema::MaybeCreateStmtWithCleanups(Stmt *SubStmt) {
Alp Toker028ed912013-12-06 17:56:43 +00006099 assert(SubStmt && "sub-statement can't be null!");
Argyrios Kyrtzidis3050d9b2010-11-02 02:33:08 +00006100
Eli Friedman3bda6b12012-02-02 23:15:15 +00006101 CleanupVarDeclMarking();
6102
Tim Shen4a05bb82016-06-21 20:29:17 +00006103 if (!Cleanup.exprNeedsCleanups())
Argyrios Kyrtzidis3050d9b2010-11-02 02:33:08 +00006104 return SubStmt;
6105
6106 // FIXME: In order to attach the temporaries, wrap the statement into
6107 // a StmtExpr; currently this is only used for asm statements.
6108 // This is hacky, either create a new CXXStmtWithTemporaries statement or
6109 // a new AsmStmtWithTemporaries.
Nico Webera2a0eb92012-12-29 20:03:39 +00006110 CompoundStmt *CompStmt = new (Context) CompoundStmt(Context, SubStmt,
Argyrios Kyrtzidis3050d9b2010-11-02 02:33:08 +00006111 SourceLocation(),
6112 SourceLocation());
6113 Expr *E = new (Context) StmtExpr(CompStmt, Context.VoidTy, SourceLocation(),
6114 SourceLocation());
John McCall5d413782010-12-06 08:20:24 +00006115 return MaybeCreateExprWithCleanups(E);
Argyrios Kyrtzidis3050d9b2010-11-02 02:33:08 +00006116}
6117
Richard Smithfd555f62012-02-22 02:04:18 +00006118/// Process the expression contained within a decltype. For such expressions,
6119/// certain semantic checks on temporaries are delayed until this point, and
6120/// are omitted for the 'topmost' call in the decltype expression. If the
6121/// topmost call bound a temporary, strip that temporary off the expression.
6122ExprResult Sema::ActOnDecltypeExpression(Expr *E) {
Benjamin Kramer671f4c02012-11-15 15:18:42 +00006123 assert(ExprEvalContexts.back().IsDecltype && "not in a decltype expression");
Richard Smithfd555f62012-02-22 02:04:18 +00006124
6125 // C++11 [expr.call]p11:
6126 // If a function call is a prvalue of object type,
6127 // -- if the function call is either
6128 // -- the operand of a decltype-specifier, or
6129 // -- the right operand of a comma operator that is the operand of a
6130 // decltype-specifier,
6131 // a temporary object is not introduced for the prvalue.
6132
6133 // Recursively rebuild ParenExprs and comma expressions to strip out the
6134 // outermost CXXBindTemporaryExpr, if any.
6135 if (ParenExpr *PE = dyn_cast<ParenExpr>(E)) {
6136 ExprResult SubExpr = ActOnDecltypeExpression(PE->getSubExpr());
6137 if (SubExpr.isInvalid())
6138 return ExprError();
6139 if (SubExpr.get() == PE->getSubExpr())
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00006140 return E;
Nikola Smiljanic01a75982014-05-29 10:55:11 +00006141 return ActOnParenExpr(PE->getLParen(), PE->getRParen(), SubExpr.get());
Richard Smithfd555f62012-02-22 02:04:18 +00006142 }
6143 if (BinaryOperator *BO = dyn_cast<BinaryOperator>(E)) {
6144 if (BO->getOpcode() == BO_Comma) {
6145 ExprResult RHS = ActOnDecltypeExpression(BO->getRHS());
6146 if (RHS.isInvalid())
6147 return ExprError();
6148 if (RHS.get() == BO->getRHS())
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00006149 return E;
6150 return new (Context) BinaryOperator(
6151 BO->getLHS(), RHS.get(), BO_Comma, BO->getType(), BO->getValueKind(),
Adam Nemet484aa452017-03-27 19:17:25 +00006152 BO->getObjectKind(), BO->getOperatorLoc(), BO->getFPFeatures());
Richard Smithfd555f62012-02-22 02:04:18 +00006153 }
6154 }
6155
6156 CXXBindTemporaryExpr *TopBind = dyn_cast<CXXBindTemporaryExpr>(E);
Craig Topperc3ec1492014-05-26 06:22:03 +00006157 CallExpr *TopCall = TopBind ? dyn_cast<CallExpr>(TopBind->getSubExpr())
6158 : nullptr;
Richard Smith202dc132014-02-18 03:51:47 +00006159 if (TopCall)
6160 E = TopCall;
6161 else
Craig Topperc3ec1492014-05-26 06:22:03 +00006162 TopBind = nullptr;
Richard Smithfd555f62012-02-22 02:04:18 +00006163
6164 // Disable the special decltype handling now.
Benjamin Kramer671f4c02012-11-15 15:18:42 +00006165 ExprEvalContexts.back().IsDecltype = false;
Richard Smithfd555f62012-02-22 02:04:18 +00006166
Richard Smithf86b0ae2012-07-28 19:54:11 +00006167 // In MS mode, don't perform any extra checking of call return types within a
6168 // decltype expression.
Alp Tokerbfa39342014-01-14 12:51:41 +00006169 if (getLangOpts().MSVCCompat)
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00006170 return E;
Richard Smithf86b0ae2012-07-28 19:54:11 +00006171
Richard Smithfd555f62012-02-22 02:04:18 +00006172 // Perform the semantic checks we delayed until this point.
Benjamin Kramer671f4c02012-11-15 15:18:42 +00006173 for (unsigned I = 0, N = ExprEvalContexts.back().DelayedDecltypeCalls.size();
6174 I != N; ++I) {
6175 CallExpr *Call = ExprEvalContexts.back().DelayedDecltypeCalls[I];
Richard Smithfd555f62012-02-22 02:04:18 +00006176 if (Call == TopCall)
6177 continue;
6178
David Majnemerced8bdf2015-02-25 17:36:15 +00006179 if (CheckCallReturnType(Call->getCallReturnType(Context),
Daniel Dunbar62ee6412012-03-09 18:35:03 +00006180 Call->getLocStart(),
Richard Smithfd555f62012-02-22 02:04:18 +00006181 Call, Call->getDirectCallee()))
6182 return ExprError();
6183 }
6184
6185 // Now all relevant types are complete, check the destructors are accessible
6186 // and non-deleted, and annotate them on the temporaries.
Benjamin Kramer671f4c02012-11-15 15:18:42 +00006187 for (unsigned I = 0, N = ExprEvalContexts.back().DelayedDecltypeBinds.size();
6188 I != N; ++I) {
6189 CXXBindTemporaryExpr *Bind =
6190 ExprEvalContexts.back().DelayedDecltypeBinds[I];
Richard Smithfd555f62012-02-22 02:04:18 +00006191 if (Bind == TopBind)
6192 continue;
6193
6194 CXXTemporary *Temp = Bind->getTemporary();
6195
6196 CXXRecordDecl *RD =
6197 Bind->getType()->getBaseElementTypeUnsafe()->getAsCXXRecordDecl();
6198 CXXDestructorDecl *Destructor = LookupDestructor(RD);
6199 Temp->setDestructor(Destructor);
6200
Richard Smith7d847b12012-05-11 22:20:10 +00006201 MarkFunctionReferenced(Bind->getExprLoc(), Destructor);
6202 CheckDestructorAccess(Bind->getExprLoc(), Destructor,
Richard Smithfd555f62012-02-22 02:04:18 +00006203 PDiag(diag::err_access_dtor_temp)
Richard Smith7d847b12012-05-11 22:20:10 +00006204 << Bind->getType());
Richard Smith22262ab2013-05-04 06:44:46 +00006205 if (DiagnoseUseOfDecl(Destructor, Bind->getExprLoc()))
6206 return ExprError();
Richard Smithfd555f62012-02-22 02:04:18 +00006207
6208 // We need a cleanup, but we don't need to remember the temporary.
Tim Shen4a05bb82016-06-21 20:29:17 +00006209 Cleanup.setExprNeedsCleanups(true);
Richard Smithfd555f62012-02-22 02:04:18 +00006210 }
6211
6212 // Possibly strip off the top CXXBindTemporaryExpr.
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00006213 return E;
Richard Smithfd555f62012-02-22 02:04:18 +00006214}
6215
Richard Smith79c927b2013-11-06 19:31:51 +00006216/// Note a set of 'operator->' functions that were used for a member access.
6217static void noteOperatorArrows(Sema &S,
Craig Topper00bbdcf2014-06-28 23:22:23 +00006218 ArrayRef<FunctionDecl *> OperatorArrows) {
Richard Smith79c927b2013-11-06 19:31:51 +00006219 unsigned SkipStart = OperatorArrows.size(), SkipCount = 0;
6220 // FIXME: Make this configurable?
6221 unsigned Limit = 9;
6222 if (OperatorArrows.size() > Limit) {
6223 // Produce Limit-1 normal notes and one 'skipping' note.
6224 SkipStart = (Limit - 1) / 2 + (Limit - 1) % 2;
6225 SkipCount = OperatorArrows.size() - (Limit - 1);
6226 }
6227
6228 for (unsigned I = 0; I < OperatorArrows.size(); /**/) {
6229 if (I == SkipStart) {
6230 S.Diag(OperatorArrows[I]->getLocation(),
6231 diag::note_operator_arrows_suppressed)
6232 << SkipCount;
6233 I += SkipCount;
6234 } else {
6235 S.Diag(OperatorArrows[I]->getLocation(), diag::note_operator_arrow_here)
6236 << OperatorArrows[I]->getCallResultType();
6237 ++I;
6238 }
6239 }
6240}
6241
Nico Weber964d3322015-02-16 22:35:45 +00006242ExprResult Sema::ActOnStartCXXMemberReference(Scope *S, Expr *Base,
6243 SourceLocation OpLoc,
6244 tok::TokenKind OpKind,
6245 ParsedType &ObjectType,
6246 bool &MayBePseudoDestructor) {
Douglas Gregorb7bfe792009-09-02 22:59:36 +00006247 // Since this might be a postfix expression, get rid of ParenListExprs.
John McCalldadc5752010-08-24 06:29:42 +00006248 ExprResult Result = MaybeConvertParenListExprToParenExpr(S, Base);
John McCallb268a282010-08-23 23:25:46 +00006249 if (Result.isInvalid()) return ExprError();
6250 Base = Result.get();
Mike Stump11289f42009-09-09 15:08:12 +00006251
John McCall526ab472011-10-25 17:37:35 +00006252 Result = CheckPlaceholderExpr(Base);
6253 if (Result.isInvalid()) return ExprError();
Nikola Smiljanic01a75982014-05-29 10:55:11 +00006254 Base = Result.get();
John McCall526ab472011-10-25 17:37:35 +00006255
John McCallb268a282010-08-23 23:25:46 +00006256 QualType BaseType = Base->getType();
Douglas Gregore610ada2010-02-24 18:44:31 +00006257 MayBePseudoDestructor = false;
Douglas Gregorb7bfe792009-09-02 22:59:36 +00006258 if (BaseType->isDependentType()) {
Douglas Gregor41127182009-11-04 22:49:18 +00006259 // If we have a pointer to a dependent type and are using the -> operator,
6260 // the object type is the type that the pointer points to. We might still
6261 // have enough information about that type to do something useful.
6262 if (OpKind == tok::arrow)
6263 if (const PointerType *Ptr = BaseType->getAs<PointerType>())
6264 BaseType = Ptr->getPointeeType();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00006265
John McCallba7bf592010-08-24 05:47:05 +00006266 ObjectType = ParsedType::make(BaseType);
Douglas Gregore610ada2010-02-24 18:44:31 +00006267 MayBePseudoDestructor = true;
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00006268 return Base;
Douglas Gregorb7bfe792009-09-02 22:59:36 +00006269 }
Mike Stump11289f42009-09-09 15:08:12 +00006270
Douglas Gregorb7bfe792009-09-02 22:59:36 +00006271 // C++ [over.match.oper]p8:
Mike Stump11289f42009-09-09 15:08:12 +00006272 // [...] When operator->returns, the operator-> is applied to the value
Douglas Gregorb7bfe792009-09-02 22:59:36 +00006273 // returned, with the original second operand.
6274 if (OpKind == tok::arrow) {
Richard Smith79c927b2013-11-06 19:31:51 +00006275 QualType StartingType = BaseType;
Kaelyn Uhrain0c51de42013-07-31 17:38:24 +00006276 bool NoArrowOperatorFound = false;
6277 bool FirstIteration = true;
6278 FunctionDecl *CurFD = dyn_cast<FunctionDecl>(CurContext);
John McCallc1538c02009-09-30 01:01:30 +00006279 // The set of types we've considered so far.
John McCallbd0465b2009-09-30 01:30:54 +00006280 llvm::SmallPtrSet<CanQualType,8> CTypes;
Richard Smith79c927b2013-11-06 19:31:51 +00006281 SmallVector<FunctionDecl*, 8> OperatorArrows;
John McCallbd0465b2009-09-30 01:30:54 +00006282 CTypes.insert(Context.getCanonicalType(BaseType));
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00006283
Douglas Gregorb7bfe792009-09-02 22:59:36 +00006284 while (BaseType->isRecordType()) {
Richard Smith79c927b2013-11-06 19:31:51 +00006285 if (OperatorArrows.size() >= getLangOpts().ArrowDepth) {
6286 Diag(OpLoc, diag::err_operator_arrow_depth_exceeded)
Richard Smith9dbc5742013-11-06 19:43:09 +00006287 << StartingType << getLangOpts().ArrowDepth << Base->getSourceRange();
Richard Smith79c927b2013-11-06 19:31:51 +00006288 noteOperatorArrows(*this, OperatorArrows);
6289 Diag(OpLoc, diag::note_operator_arrow_depth)
6290 << getLangOpts().ArrowDepth;
6291 return ExprError();
6292 }
6293
Kaelyn Uhrain0c51de42013-07-31 17:38:24 +00006294 Result = BuildOverloadedArrowExpr(
6295 S, Base, OpLoc,
6296 // When in a template specialization and on the first loop iteration,
6297 // potentially give the default diagnostic (with the fixit in a
6298 // separate note) instead of having the error reported back to here
6299 // and giving a diagnostic with a fixit attached to the error itself.
6300 (FirstIteration && CurFD && CurFD->isFunctionTemplateSpecialization())
Craig Topperc3ec1492014-05-26 06:22:03 +00006301 ? nullptr
Kaelyn Uhrain0c51de42013-07-31 17:38:24 +00006302 : &NoArrowOperatorFound);
6303 if (Result.isInvalid()) {
6304 if (NoArrowOperatorFound) {
6305 if (FirstIteration) {
6306 Diag(OpLoc, diag::err_typecheck_member_reference_suggestion)
Richard Smith9dbc5742013-11-06 19:43:09 +00006307 << BaseType << 1 << Base->getSourceRange()
Kaelyn Uhrain0c51de42013-07-31 17:38:24 +00006308 << FixItHint::CreateReplacement(OpLoc, ".");
6309 OpKind = tok::period;
6310 break;
Kaelyn Uhrain957c8b12013-07-31 20:16:17 +00006311 }
6312 Diag(OpLoc, diag::err_typecheck_member_reference_arrow)
6313 << BaseType << Base->getSourceRange();
6314 CallExpr *CE = dyn_cast<CallExpr>(Base);
Craig Topperc3ec1492014-05-26 06:22:03 +00006315 if (Decl *CD = (CE ? CE->getCalleeDecl() : nullptr)) {
Kaelyn Uhrain957c8b12013-07-31 20:16:17 +00006316 Diag(CD->getLocStart(),
6317 diag::note_member_reference_arrow_from_operator_arrow);
Kaelyn Uhrain0c51de42013-07-31 17:38:24 +00006318 }
6319 }
Douglas Gregorb7bfe792009-09-02 22:59:36 +00006320 return ExprError();
Kaelyn Uhrain0c51de42013-07-31 17:38:24 +00006321 }
John McCallb268a282010-08-23 23:25:46 +00006322 Base = Result.get();
6323 if (CXXOperatorCallExpr *OpCall = dyn_cast<CXXOperatorCallExpr>(Base))
Richard Smith79c927b2013-11-06 19:31:51 +00006324 OperatorArrows.push_back(OpCall->getDirectCallee());
John McCallb268a282010-08-23 23:25:46 +00006325 BaseType = Base->getType();
John McCallc1538c02009-09-30 01:01:30 +00006326 CanQualType CBaseType = Context.getCanonicalType(BaseType);
David Blaikie82e95a32014-11-19 07:49:47 +00006327 if (!CTypes.insert(CBaseType).second) {
Richard Smith79c927b2013-11-06 19:31:51 +00006328 Diag(OpLoc, diag::err_operator_arrow_circular) << StartingType;
6329 noteOperatorArrows(*this, OperatorArrows);
Fariborz Jahanian10ce9582009-09-30 00:19:41 +00006330 return ExprError();
6331 }
Kaelyn Uhrain0c51de42013-07-31 17:38:24 +00006332 FirstIteration = false;
Douglas Gregorb7bfe792009-09-02 22:59:36 +00006333 }
Mike Stump11289f42009-09-09 15:08:12 +00006334
Kaelyn Uhrain0c51de42013-07-31 17:38:24 +00006335 if (OpKind == tok::arrow &&
6336 (BaseType->isPointerType() || BaseType->isObjCObjectPointerType()))
Douglas Gregore4f764f2009-11-20 19:58:21 +00006337 BaseType = BaseType->getPointeeType();
6338 }
Mike Stump11289f42009-09-09 15:08:12 +00006339
Douglas Gregorbf3a8262012-01-12 16:11:24 +00006340 // Objective-C properties allow "." access on Objective-C pointer types,
6341 // so adjust the base type to the object type itself.
6342 if (BaseType->isObjCObjectPointerType())
6343 BaseType = BaseType->getPointeeType();
Simon Pilgrim75c26882016-09-30 14:25:09 +00006344
Douglas Gregorbf3a8262012-01-12 16:11:24 +00006345 // C++ [basic.lookup.classref]p2:
6346 // [...] If the type of the object expression is of pointer to scalar
6347 // type, the unqualified-id is looked up in the context of the complete
6348 // postfix-expression.
6349 //
6350 // This also indicates that we could be parsing a pseudo-destructor-name.
6351 // Note that Objective-C class and object types can be pseudo-destructor
John McCall9d145df2015-12-14 19:12:54 +00006352 // expressions or normal member (ivar or property) access expressions, and
6353 // it's legal for the type to be incomplete if this is a pseudo-destructor
6354 // call. We'll do more incomplete-type checks later in the lookup process,
6355 // so just skip this check for ObjC types.
Douglas Gregorbf3a8262012-01-12 16:11:24 +00006356 if (BaseType->isObjCObjectOrInterfaceType()) {
John McCall9d145df2015-12-14 19:12:54 +00006357 ObjectType = ParsedType::make(BaseType);
Douglas Gregorbf3a8262012-01-12 16:11:24 +00006358 MayBePseudoDestructor = true;
John McCall9d145df2015-12-14 19:12:54 +00006359 return Base;
Douglas Gregorbf3a8262012-01-12 16:11:24 +00006360 } else if (!BaseType->isRecordType()) {
David Blaikieefdccaa2016-01-15 23:43:34 +00006361 ObjectType = nullptr;
Douglas Gregore610ada2010-02-24 18:44:31 +00006362 MayBePseudoDestructor = true;
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00006363 return Base;
Douglas Gregor2b6ca462009-09-03 21:38:09 +00006364 }
Mike Stump11289f42009-09-09 15:08:12 +00006365
Douglas Gregor3024f072012-04-16 07:05:22 +00006366 // The object type must be complete (or dependent), or
6367 // C++11 [expr.prim.general]p3:
6368 // Unlike the object expression in other contexts, *this is not required to
Simon Pilgrim75c26882016-09-30 14:25:09 +00006369 // be of complete type for purposes of class member access (5.2.5) outside
Douglas Gregor3024f072012-04-16 07:05:22 +00006370 // the member function body.
Douglas Gregor3fad6172009-11-17 05:17:33 +00006371 if (!BaseType->isDependentType() &&
Douglas Gregor3024f072012-04-16 07:05:22 +00006372 !isThisOutsideMemberFunctionBody(BaseType) &&
Douglas Gregor7bfb2d02012-05-04 16:32:21 +00006373 RequireCompleteType(OpLoc, BaseType, diag::err_incomplete_member_access))
Douglas Gregor3fad6172009-11-17 05:17:33 +00006374 return ExprError();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00006375
Douglas Gregor2b6ca462009-09-03 21:38:09 +00006376 // C++ [basic.lookup.classref]p2:
Mike Stump11289f42009-09-09 15:08:12 +00006377 // If the id-expression in a class member access (5.2.5) is an
Douglas Gregor3fad6172009-11-17 05:17:33 +00006378 // unqualified-id, and the type of the object expression is of a class
Douglas Gregor2b6ca462009-09-03 21:38:09 +00006379 // type C (or of pointer to a class type C), the unqualified-id is looked
6380 // up in the scope of class C. [...]
John McCallba7bf592010-08-24 05:47:05 +00006381 ObjectType = ParsedType::make(BaseType);
Benjamin Kramer62b95d82012-08-23 21:35:17 +00006382 return Base;
Douglas Gregorb7bfe792009-09-02 22:59:36 +00006383}
6384
Simon Pilgrim75c26882016-09-30 14:25:09 +00006385static bool CheckArrow(Sema& S, QualType& ObjectType, Expr *&Base,
David Blaikie1d578782011-12-16 16:03:09 +00006386 tok::TokenKind& OpKind, SourceLocation OpLoc) {
Eli Friedman6601b552012-01-25 04:29:24 +00006387 if (Base->hasPlaceholderType()) {
6388 ExprResult result = S.CheckPlaceholderExpr(Base);
6389 if (result.isInvalid()) return true;
Nikola Smiljanic01a75982014-05-29 10:55:11 +00006390 Base = result.get();
Eli Friedman6601b552012-01-25 04:29:24 +00006391 }
6392 ObjectType = Base->getType();
6393
David Blaikie1d578782011-12-16 16:03:09 +00006394 // C++ [expr.pseudo]p2:
6395 // The left-hand side of the dot operator shall be of scalar type. The
6396 // left-hand side of the arrow operator shall be of pointer to scalar type.
6397 // This scalar type is the object type.
Eli Friedman6601b552012-01-25 04:29:24 +00006398 // Note that this is rather different from the normal handling for the
6399 // arrow operator.
David Blaikie1d578782011-12-16 16:03:09 +00006400 if (OpKind == tok::arrow) {
6401 if (const PointerType *Ptr = ObjectType->getAs<PointerType>()) {
6402 ObjectType = Ptr->getPointeeType();
6403 } else if (!Base->isTypeDependent()) {
Nico Webera6916892016-06-10 18:53:04 +00006404 // The user wrote "p->" when they probably meant "p."; fix it.
David Blaikie1d578782011-12-16 16:03:09 +00006405 S.Diag(OpLoc, diag::err_typecheck_member_reference_suggestion)
6406 << ObjectType << true
6407 << FixItHint::CreateReplacement(OpLoc, ".");
6408 if (S.isSFINAEContext())
6409 return true;
6410
6411 OpKind = tok::period;
6412 }
6413 }
6414
6415 return false;
6416}
6417
Alex Lorenz56fb6fe2017-01-20 15:38:58 +00006418/// \brief Check if it's ok to try and recover dot pseudo destructor calls on
6419/// pointer objects.
6420static bool
6421canRecoverDotPseudoDestructorCallsOnPointerObjects(Sema &SemaRef,
6422 QualType DestructedType) {
6423 // If this is a record type, check if its destructor is callable.
6424 if (auto *RD = DestructedType->getAsCXXRecordDecl()) {
6425 if (CXXDestructorDecl *D = SemaRef.LookupDestructor(RD))
6426 return SemaRef.CanUseDecl(D, /*TreatUnavailableAsInvalid=*/false);
6427 return false;
6428 }
6429
6430 // Otherwise, check if it's a type for which it's valid to use a pseudo-dtor.
6431 return DestructedType->isDependentType() || DestructedType->isScalarType() ||
6432 DestructedType->isVectorType();
6433}
6434
John McCalldadc5752010-08-24 06:29:42 +00006435ExprResult Sema::BuildPseudoDestructorExpr(Expr *Base,
John McCalla2c4e722011-02-25 05:21:17 +00006436 SourceLocation OpLoc,
6437 tok::TokenKind OpKind,
6438 const CXXScopeSpec &SS,
6439 TypeSourceInfo *ScopeTypeInfo,
6440 SourceLocation CCLoc,
6441 SourceLocation TildeLoc,
David Majnemerced8bdf2015-02-25 17:36:15 +00006442 PseudoDestructorTypeStorage Destructed) {
Douglas Gregor678f90d2010-02-25 01:56:36 +00006443 TypeSourceInfo *DestructedTypeInfo = Destructed.getTypeSourceInfo();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00006444
Eli Friedman0ce4de42012-01-25 04:35:06 +00006445 QualType ObjectType;
David Blaikie1d578782011-12-16 16:03:09 +00006446 if (CheckArrow(*this, ObjectType, Base, OpKind, OpLoc))
6447 return ExprError();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00006448
Douglas Gregorc5c57342012-09-10 14:57:06 +00006449 if (!ObjectType->isDependentType() && !ObjectType->isScalarType() &&
6450 !ObjectType->isVectorType()) {
Alp Tokerbfa39342014-01-14 12:51:41 +00006451 if (getLangOpts().MSVCCompat && ObjectType->isVoidType())
Nico Weber4bc64992012-01-23 06:08:16 +00006452 Diag(OpLoc, diag::ext_pseudo_dtor_on_void) << Base->getSourceRange();
Reid Klecknere5025072014-05-01 16:50:23 +00006453 else {
Nico Weber58829272012-01-23 05:50:57 +00006454 Diag(OpLoc, diag::err_pseudo_dtor_base_not_scalar)
6455 << ObjectType << Base->getSourceRange();
Reid Klecknere5025072014-05-01 16:50:23 +00006456 return ExprError();
6457 }
Douglas Gregorb1dd23f2010-02-24 22:38:50 +00006458 }
6459
6460 // C++ [expr.pseudo]p2:
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00006461 // [...] The cv-unqualified versions of the object type and of the type
Douglas Gregorb1dd23f2010-02-24 22:38:50 +00006462 // designated by the pseudo-destructor-name shall be the same type.
Douglas Gregor678f90d2010-02-25 01:56:36 +00006463 if (DestructedTypeInfo) {
6464 QualType DestructedType = DestructedTypeInfo->getType();
6465 SourceLocation DestructedTypeStart
Abramo Bagnara1108e7b2010-05-20 10:00:11 +00006466 = DestructedTypeInfo->getTypeLoc().getLocalSourceRange().getBegin();
John McCall31168b02011-06-15 23:02:42 +00006467 if (!DestructedType->isDependentType() && !ObjectType->isDependentType()) {
6468 if (!Context.hasSameUnqualifiedType(DestructedType, ObjectType)) {
Alex Lorenz56fb6fe2017-01-20 15:38:58 +00006469 // Detect dot pseudo destructor calls on pointer objects, e.g.:
6470 // Foo *foo;
6471 // foo.~Foo();
6472 if (OpKind == tok::period && ObjectType->isPointerType() &&
6473 Context.hasSameUnqualifiedType(DestructedType,
6474 ObjectType->getPointeeType())) {
6475 auto Diagnostic =
6476 Diag(OpLoc, diag::err_typecheck_member_reference_suggestion)
6477 << ObjectType << /*IsArrow=*/0 << Base->getSourceRange();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00006478
Alex Lorenz56fb6fe2017-01-20 15:38:58 +00006479 // Issue a fixit only when the destructor is valid.
6480 if (canRecoverDotPseudoDestructorCallsOnPointerObjects(
6481 *this, DestructedType))
6482 Diagnostic << FixItHint::CreateReplacement(OpLoc, "->");
6483
6484 // Recover by setting the object type to the destructed type and the
6485 // operator to '->'.
6486 ObjectType = DestructedType;
6487 OpKind = tok::arrow;
6488 } else {
6489 Diag(DestructedTypeStart, diag::err_pseudo_dtor_type_mismatch)
6490 << ObjectType << DestructedType << Base->getSourceRange()
6491 << DestructedTypeInfo->getTypeLoc().getLocalSourceRange();
6492
6493 // Recover by setting the destructed type to the object type.
6494 DestructedType = ObjectType;
6495 DestructedTypeInfo =
6496 Context.getTrivialTypeSourceInfo(ObjectType, DestructedTypeStart);
6497 Destructed = PseudoDestructorTypeStorage(DestructedTypeInfo);
6498 }
Simon Pilgrim75c26882016-09-30 14:25:09 +00006499 } else if (DestructedType.getObjCLifetime() !=
John McCall31168b02011-06-15 23:02:42 +00006500 ObjectType.getObjCLifetime()) {
Simon Pilgrim75c26882016-09-30 14:25:09 +00006501
John McCall31168b02011-06-15 23:02:42 +00006502 if (DestructedType.getObjCLifetime() == Qualifiers::OCL_None) {
6503 // Okay: just pretend that the user provided the correctly-qualified
6504 // type.
6505 } else {
6506 Diag(DestructedTypeStart, diag::err_arc_pseudo_dtor_inconstant_quals)
6507 << ObjectType << DestructedType << Base->getSourceRange()
6508 << DestructedTypeInfo->getTypeLoc().getLocalSourceRange();
6509 }
Simon Pilgrim75c26882016-09-30 14:25:09 +00006510
John McCall31168b02011-06-15 23:02:42 +00006511 // Recover by setting the destructed type to the object type.
6512 DestructedType = ObjectType;
6513 DestructedTypeInfo = Context.getTrivialTypeSourceInfo(ObjectType,
6514 DestructedTypeStart);
6515 Destructed = PseudoDestructorTypeStorage(DestructedTypeInfo);
6516 }
Douglas Gregor678f90d2010-02-25 01:56:36 +00006517 }
Douglas Gregorb1dd23f2010-02-24 22:38:50 +00006518 }
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00006519
Douglas Gregorb1dd23f2010-02-24 22:38:50 +00006520 // C++ [expr.pseudo]p2:
6521 // [...] Furthermore, the two type-names in a pseudo-destructor-name of the
6522 // form
6523 //
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00006524 // ::[opt] nested-name-specifier[opt] type-name :: ~ type-name
Douglas Gregorb1dd23f2010-02-24 22:38:50 +00006525 //
6526 // shall designate the same scalar type.
6527 if (ScopeTypeInfo) {
6528 QualType ScopeType = ScopeTypeInfo->getType();
6529 if (!ScopeType->isDependentType() && !ObjectType->isDependentType() &&
John McCallb86a6b82010-06-11 17:36:40 +00006530 !Context.hasSameUnqualifiedType(ScopeType, ObjectType)) {
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00006531
Abramo Bagnara1108e7b2010-05-20 10:00:11 +00006532 Diag(ScopeTypeInfo->getTypeLoc().getLocalSourceRange().getBegin(),
Douglas Gregorb1dd23f2010-02-24 22:38:50 +00006533 diag::err_pseudo_dtor_type_mismatch)
John McCallb268a282010-08-23 23:25:46 +00006534 << ObjectType << ScopeType << Base->getSourceRange()
Abramo Bagnara1108e7b2010-05-20 10:00:11 +00006535 << ScopeTypeInfo->getTypeLoc().getLocalSourceRange();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00006536
Douglas Gregorb1dd23f2010-02-24 22:38:50 +00006537 ScopeType = QualType();
Craig Topperc3ec1492014-05-26 06:22:03 +00006538 ScopeTypeInfo = nullptr;
Douglas Gregorb1dd23f2010-02-24 22:38:50 +00006539 }
6540 }
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00006541
John McCallb268a282010-08-23 23:25:46 +00006542 Expr *Result
6543 = new (Context) CXXPseudoDestructorExpr(Context, Base,
6544 OpKind == tok::arrow, OpLoc,
Douglas Gregora6ce6082011-02-25 18:19:59 +00006545 SS.getWithLocInContext(Context),
John McCallb268a282010-08-23 23:25:46 +00006546 ScopeTypeInfo,
6547 CCLoc,
6548 TildeLoc,
6549 Destructed);
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00006550
David Majnemerced8bdf2015-02-25 17:36:15 +00006551 return Result;
Douglas Gregor0d5b0a12010-02-24 21:29:12 +00006552}
6553
John McCalldadc5752010-08-24 06:29:42 +00006554ExprResult Sema::ActOnPseudoDestructorExpr(Scope *S, Expr *Base,
John McCalla2c4e722011-02-25 05:21:17 +00006555 SourceLocation OpLoc,
6556 tok::TokenKind OpKind,
6557 CXXScopeSpec &SS,
6558 UnqualifiedId &FirstTypeName,
6559 SourceLocation CCLoc,
6560 SourceLocation TildeLoc,
David Majnemerced8bdf2015-02-25 17:36:15 +00006561 UnqualifiedId &SecondTypeName) {
Douglas Gregor0d5b0a12010-02-24 21:29:12 +00006562 assert((FirstTypeName.getKind() == UnqualifiedId::IK_TemplateId ||
6563 FirstTypeName.getKind() == UnqualifiedId::IK_Identifier) &&
6564 "Invalid first type name in pseudo-destructor");
6565 assert((SecondTypeName.getKind() == UnqualifiedId::IK_TemplateId ||
6566 SecondTypeName.getKind() == UnqualifiedId::IK_Identifier) &&
6567 "Invalid second type name in pseudo-destructor");
6568
Eli Friedman0ce4de42012-01-25 04:35:06 +00006569 QualType ObjectType;
David Blaikie1d578782011-12-16 16:03:09 +00006570 if (CheckArrow(*this, ObjectType, Base, OpKind, OpLoc))
6571 return ExprError();
Douglas Gregor678f90d2010-02-25 01:56:36 +00006572
6573 // Compute the object type that we should use for name lookup purposes. Only
6574 // record types and dependent types matter.
John McCallba7bf592010-08-24 05:47:05 +00006575 ParsedType ObjectTypePtrForLookup;
Douglas Gregor678f90d2010-02-25 01:56:36 +00006576 if (!SS.isSet()) {
John McCalla2c4e722011-02-25 05:21:17 +00006577 if (ObjectType->isRecordType())
6578 ObjectTypePtrForLookup = ParsedType::make(ObjectType);
John McCallba7bf592010-08-24 05:47:05 +00006579 else if (ObjectType->isDependentType())
6580 ObjectTypePtrForLookup = ParsedType::make(Context.DependentTy);
Douglas Gregor678f90d2010-02-25 01:56:36 +00006581 }
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00006582
6583 // Convert the name of the type being destructed (following the ~) into a
Douglas Gregorb1dd23f2010-02-24 22:38:50 +00006584 // type (with source-location information).
Douglas Gregor0d5b0a12010-02-24 21:29:12 +00006585 QualType DestructedType;
Craig Topperc3ec1492014-05-26 06:22:03 +00006586 TypeSourceInfo *DestructedTypeInfo = nullptr;
Douglas Gregor678f90d2010-02-25 01:56:36 +00006587 PseudoDestructorTypeStorage Destructed;
Douglas Gregor0d5b0a12010-02-24 21:29:12 +00006588 if (SecondTypeName.getKind() == UnqualifiedId::IK_Identifier) {
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00006589 ParsedType T = getTypeName(*SecondTypeName.Identifier,
John McCallba7bf592010-08-24 05:47:05 +00006590 SecondTypeName.StartLocation,
Richard Smith74f02342017-01-19 21:00:13 +00006591 S, &SS, true, false, ObjectTypePtrForLookup,
6592 /*IsCtorOrDtorName*/true);
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00006593 if (!T &&
Douglas Gregor678f90d2010-02-25 01:56:36 +00006594 ((SS.isSet() && !computeDeclContext(SS, false)) ||
6595 (!SS.isSet() && ObjectType->isDependentType()))) {
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00006596 // The name of the type being destroyed is a dependent name, and we
Douglas Gregor678f90d2010-02-25 01:56:36 +00006597 // couldn't find anything useful in scope. Just store the identifier and
6598 // it's location, and we'll perform (qualified) name lookup again at
6599 // template instantiation time.
6600 Destructed = PseudoDestructorTypeStorage(SecondTypeName.Identifier,
6601 SecondTypeName.StartLocation);
6602 } else if (!T) {
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00006603 Diag(SecondTypeName.StartLocation,
Douglas Gregor0d5b0a12010-02-24 21:29:12 +00006604 diag::err_pseudo_dtor_destructor_non_type)
6605 << SecondTypeName.Identifier << ObjectType;
6606 if (isSFINAEContext())
6607 return ExprError();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00006608
Douglas Gregor0d5b0a12010-02-24 21:29:12 +00006609 // Recover by assuming we had the right type all along.
6610 DestructedType = ObjectType;
Douglas Gregorb1dd23f2010-02-24 22:38:50 +00006611 } else
Douglas Gregor0d5b0a12010-02-24 21:29:12 +00006612 DestructedType = GetTypeFromParser(T, &DestructedTypeInfo);
Douglas Gregor0d5b0a12010-02-24 21:29:12 +00006613 } else {
Douglas Gregorb1dd23f2010-02-24 22:38:50 +00006614 // Resolve the template-id to a type.
Douglas Gregor0d5b0a12010-02-24 21:29:12 +00006615 TemplateIdAnnotation *TemplateId = SecondTypeName.TemplateId;
Benjamin Kramercc4c49d2012-08-23 23:38:35 +00006616 ASTTemplateArgsPtr TemplateArgsPtr(TemplateId->getTemplateArgs(),
Douglas Gregorb1dd23f2010-02-24 22:38:50 +00006617 TemplateId->NumArgs);
Douglas Gregore7c20652011-03-02 00:47:37 +00006618 TypeResult T = ActOnTemplateIdType(TemplateId->SS,
Abramo Bagnara48c05be2012-02-06 14:41:24 +00006619 TemplateId->TemplateKWLoc,
Douglas Gregore7c20652011-03-02 00:47:37 +00006620 TemplateId->Template,
Richard Smith74f02342017-01-19 21:00:13 +00006621 TemplateId->Name,
Douglas Gregorb1dd23f2010-02-24 22:38:50 +00006622 TemplateId->TemplateNameLoc,
6623 TemplateId->LAngleLoc,
6624 TemplateArgsPtr,
Richard Smith74f02342017-01-19 21:00:13 +00006625 TemplateId->RAngleLoc,
6626 /*IsCtorOrDtorName*/true);
Douglas Gregorb1dd23f2010-02-24 22:38:50 +00006627 if (T.isInvalid() || !T.get()) {
6628 // Recover by assuming we had the right type all along.
6629 DestructedType = ObjectType;
6630 } else
6631 DestructedType = GetTypeFromParser(T.get(), &DestructedTypeInfo);
Douglas Gregor0d5b0a12010-02-24 21:29:12 +00006632 }
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00006633
6634 // If we've performed some kind of recovery, (re-)build the type source
Douglas Gregorb1dd23f2010-02-24 22:38:50 +00006635 // information.
Douglas Gregor678f90d2010-02-25 01:56:36 +00006636 if (!DestructedType.isNull()) {
6637 if (!DestructedTypeInfo)
6638 DestructedTypeInfo = Context.getTrivialTypeSourceInfo(DestructedType,
Douglas Gregorb1dd23f2010-02-24 22:38:50 +00006639 SecondTypeName.StartLocation);
Douglas Gregor678f90d2010-02-25 01:56:36 +00006640 Destructed = PseudoDestructorTypeStorage(DestructedTypeInfo);
6641 }
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00006642
Douglas Gregorb1dd23f2010-02-24 22:38:50 +00006643 // Convert the name of the scope type (the type prior to '::') into a type.
Craig Topperc3ec1492014-05-26 06:22:03 +00006644 TypeSourceInfo *ScopeTypeInfo = nullptr;
Douglas Gregor0d5b0a12010-02-24 21:29:12 +00006645 QualType ScopeType;
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00006646 if (FirstTypeName.getKind() == UnqualifiedId::IK_TemplateId ||
Douglas Gregor0d5b0a12010-02-24 21:29:12 +00006647 FirstTypeName.Identifier) {
6648 if (FirstTypeName.getKind() == UnqualifiedId::IK_Identifier) {
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00006649 ParsedType T = getTypeName(*FirstTypeName.Identifier,
John McCallba7bf592010-08-24 05:47:05 +00006650 FirstTypeName.StartLocation,
Richard Smith74f02342017-01-19 21:00:13 +00006651 S, &SS, true, false, ObjectTypePtrForLookup,
6652 /*IsCtorOrDtorName*/true);
Douglas Gregor0d5b0a12010-02-24 21:29:12 +00006653 if (!T) {
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00006654 Diag(FirstTypeName.StartLocation,
Douglas Gregor0d5b0a12010-02-24 21:29:12 +00006655 diag::err_pseudo_dtor_destructor_non_type)
6656 << FirstTypeName.Identifier << ObjectType;
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00006657
Douglas Gregorb1dd23f2010-02-24 22:38:50 +00006658 if (isSFINAEContext())
6659 return ExprError();
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00006660
Douglas Gregorb1dd23f2010-02-24 22:38:50 +00006661 // Just drop this type. It's unnecessary anyway.
6662 ScopeType = QualType();
6663 } else
6664 ScopeType = GetTypeFromParser(T, &ScopeTypeInfo);
Douglas Gregor0d5b0a12010-02-24 21:29:12 +00006665 } else {
Douglas Gregorb1dd23f2010-02-24 22:38:50 +00006666 // Resolve the template-id to a type.
Douglas Gregor0d5b0a12010-02-24 21:29:12 +00006667 TemplateIdAnnotation *TemplateId = FirstTypeName.TemplateId;
Benjamin Kramercc4c49d2012-08-23 23:38:35 +00006668 ASTTemplateArgsPtr TemplateArgsPtr(TemplateId->getTemplateArgs(),
Douglas Gregorb1dd23f2010-02-24 22:38:50 +00006669 TemplateId->NumArgs);
Douglas Gregore7c20652011-03-02 00:47:37 +00006670 TypeResult T = ActOnTemplateIdType(TemplateId->SS,
Abramo Bagnara48c05be2012-02-06 14:41:24 +00006671 TemplateId->TemplateKWLoc,
Douglas Gregore7c20652011-03-02 00:47:37 +00006672 TemplateId->Template,
Richard Smith74f02342017-01-19 21:00:13 +00006673 TemplateId->Name,
Douglas Gregorb1dd23f2010-02-24 22:38:50 +00006674 TemplateId->TemplateNameLoc,
6675 TemplateId->LAngleLoc,
6676 TemplateArgsPtr,
Richard Smith74f02342017-01-19 21:00:13 +00006677 TemplateId->RAngleLoc,
6678 /*IsCtorOrDtorName*/true);
Douglas Gregorb1dd23f2010-02-24 22:38:50 +00006679 if (T.isInvalid() || !T.get()) {
6680 // Recover by dropping this type.
6681 ScopeType = QualType();
6682 } else
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00006683 ScopeType = GetTypeFromParser(T.get(), &ScopeTypeInfo);
Douglas Gregor0d5b0a12010-02-24 21:29:12 +00006684 }
6685 }
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00006686
Douglas Gregor90ad9222010-02-24 23:02:30 +00006687 if (!ScopeType.isNull() && !ScopeTypeInfo)
6688 ScopeTypeInfo = Context.getTrivialTypeSourceInfo(ScopeType,
6689 FirstTypeName.StartLocation);
6690
NAKAMURA Takumif9cbcc42011-01-27 07:10:08 +00006691
John McCallb268a282010-08-23 23:25:46 +00006692 return BuildPseudoDestructorExpr(Base, OpLoc, OpKind, SS,
Douglas Gregorcdbd5152010-02-24 23:50:37 +00006693 ScopeTypeInfo, CCLoc, TildeLoc,
David Majnemerced8bdf2015-02-25 17:36:15 +00006694 Destructed);
Douglas Gregore610ada2010-02-24 18:44:31 +00006695}
6696
David Blaikie1d578782011-12-16 16:03:09 +00006697ExprResult Sema::ActOnPseudoDestructorExpr(Scope *S, Expr *Base,
6698 SourceLocation OpLoc,
6699 tok::TokenKind OpKind,
Simon Pilgrim75c26882016-09-30 14:25:09 +00006700 SourceLocation TildeLoc,
David Majnemerced8bdf2015-02-25 17:36:15 +00006701 const DeclSpec& DS) {
Eli Friedman0ce4de42012-01-25 04:35:06 +00006702 QualType ObjectType;
David Blaikie1d578782011-12-16 16:03:09 +00006703 if (CheckArrow(*this, ObjectType, Base, OpKind, OpLoc))
6704 return ExprError();
6705
Aaron Ballman6c93b3e2014-12-17 21:57:17 +00006706 QualType T = BuildDecltypeType(DS.getRepAsExpr(), DS.getTypeSpecTypeLoc(),
6707 false);
David Blaikie1d578782011-12-16 16:03:09 +00006708
6709 TypeLocBuilder TLB;
6710 DecltypeTypeLoc DecltypeTL = TLB.push<DecltypeTypeLoc>(T);
6711 DecltypeTL.setNameLoc(DS.getTypeSpecTypeLoc());
6712 TypeSourceInfo *DestructedTypeInfo = TLB.getTypeSourceInfo(Context, T);
6713 PseudoDestructorTypeStorage Destructed(DestructedTypeInfo);
6714
6715 return BuildPseudoDestructorExpr(Base, OpLoc, OpKind, CXXScopeSpec(),
Craig Topperc3ec1492014-05-26 06:22:03 +00006716 nullptr, SourceLocation(), TildeLoc,
David Majnemerced8bdf2015-02-25 17:36:15 +00006717 Destructed);
David Blaikie1d578782011-12-16 16:03:09 +00006718}
6719
John Wiegley01296292011-04-08 18:41:53 +00006720ExprResult Sema::BuildCXXMemberCallExpr(Expr *E, NamedDecl *FoundDecl,
Eli Friedman2fb85122012-03-01 01:30:04 +00006721 CXXConversionDecl *Method,
Abramo Bagnara635ed24e2011-10-05 07:56:41 +00006722 bool HadMultipleCandidates) {
Eli Friedman98b01ed2012-03-01 04:01:32 +00006723 if (Method->getParent()->isLambda() &&
6724 Method->getConversionType()->isBlockPointerType()) {
6725 // This is a lambda coversion to block pointer; check if the argument
6726 // is a LambdaExpr.
6727 Expr *SubE = E;
6728 CastExpr *CE = dyn_cast<CastExpr>(SubE);
6729 if (CE && CE->getCastKind() == CK_NoOp)
6730 SubE = CE->getSubExpr();
6731 SubE = SubE->IgnoreParens();
6732 if (CXXBindTemporaryExpr *BE = dyn_cast<CXXBindTemporaryExpr>(SubE))
6733 SubE = BE->getSubExpr();
6734 if (isa<LambdaExpr>(SubE)) {
6735 // For the conversion to block pointer on a lambda expression, we
6736 // construct a special BlockLiteral instead; this doesn't really make
6737 // a difference in ARC, but outside of ARC the resulting block literal
6738 // follows the normal lifetime rules for block literals instead of being
6739 // autoreleased.
6740 DiagnosticErrorTrap Trap(Diags);
Faisal Valid143a0c2017-04-01 21:30:49 +00006741 PushExpressionEvaluationContext(
6742 ExpressionEvaluationContext::PotentiallyEvaluated);
Eli Friedman98b01ed2012-03-01 04:01:32 +00006743 ExprResult Exp = BuildBlockForLambdaConversion(E->getExprLoc(),
6744 E->getExprLoc(),
6745 Method, E);
Akira Hatanakac482acd2016-05-04 18:07:20 +00006746 PopExpressionEvaluationContext();
6747
Eli Friedman98b01ed2012-03-01 04:01:32 +00006748 if (Exp.isInvalid())
6749 Diag(E->getExprLoc(), diag::note_lambda_to_block_conv);
6750 return Exp;
6751 }
6752 }
Eli Friedman98b01ed2012-03-01 04:01:32 +00006753
Craig Topperc3ec1492014-05-26 06:22:03 +00006754 ExprResult Exp = PerformObjectArgumentInitialization(E, /*Qualifier=*/nullptr,
John Wiegley01296292011-04-08 18:41:53 +00006755 FoundDecl, Method);
6756 if (Exp.isInvalid())
Douglas Gregor668443e2011-01-20 00:18:04 +00006757 return true;
Eli Friedmanf7195532009-12-09 04:53:56 +00006758
Aaron Ballmanf4cb2be2015-03-24 15:07:53 +00006759 MemberExpr *ME = new (Context) MemberExpr(
6760 Exp.get(), /*IsArrow=*/false, SourceLocation(), Method, SourceLocation(),
6761 Context.BoundMemberTy, VK_RValue, OK_Ordinary);
Abramo Bagnara635ed24e2011-10-05 07:56:41 +00006762 if (HadMultipleCandidates)
6763 ME->setHadMultipleCandidates(true);
Nick Lewyckya096b142013-02-12 08:08:54 +00006764 MarkMemberReferenced(ME);
Abramo Bagnara635ed24e2011-10-05 07:56:41 +00006765
Alp Toker314cc812014-01-25 16:55:45 +00006766 QualType ResultType = Method->getReturnType();
John McCall7decc9e2010-11-18 06:31:45 +00006767 ExprValueKind VK = Expr::getValueKindForType(ResultType);
6768 ResultType = ResultType.getNonLValueExprType(Context);
6769
Douglas Gregor27381f32009-11-23 12:27:39 +00006770 CXXMemberCallExpr *CE =
Dmitri Gribenko78852e92013-05-05 20:40:26 +00006771 new (Context) CXXMemberCallExpr(Context, ME, None, ResultType, VK,
John Wiegley01296292011-04-08 18:41:53 +00006772 Exp.get()->getLocEnd());
George Burgess IVce6284b2017-01-28 02:19:40 +00006773
6774 if (CheckFunctionCall(Method, CE,
6775 Method->getType()->castAs<FunctionProtoType>()))
6776 return ExprError();
6777
Fariborz Jahanian78cfcb52009-09-28 23:23:40 +00006778 return CE;
6779}
6780
Sebastian Redl4202c0f2010-09-10 20:55:43 +00006781ExprResult Sema::BuildCXXNoexceptExpr(SourceLocation KeyLoc, Expr *Operand,
6782 SourceLocation RParen) {
Aaron Ballmanedc80842015-04-27 22:31:12 +00006783 // If the operand is an unresolved lookup expression, the expression is ill-
6784 // formed per [over.over]p1, because overloaded function names cannot be used
6785 // without arguments except in explicit contexts.
6786 ExprResult R = CheckPlaceholderExpr(Operand);
6787 if (R.isInvalid())
6788 return R;
6789
6790 // The operand may have been modified when checking the placeholder type.
6791 Operand = R.get();
6792
Richard Smith51ec0cf2017-02-21 01:17:38 +00006793 if (!inTemplateInstantiation() && Operand->HasSideEffects(Context, false)) {
Aaron Ballman6c93b3e2014-12-17 21:57:17 +00006794 // The expression operand for noexcept is in an unevaluated expression
6795 // context, so side effects could result in unintended consequences.
6796 Diag(Operand->getExprLoc(), diag::warn_side_effects_unevaluated_context);
6797 }
6798
Richard Smithf623c962012-04-17 00:58:00 +00006799 CanThrowResult CanThrow = canThrow(Operand);
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00006800 return new (Context)
6801 CXXNoexceptExpr(Context.BoolTy, Operand, CanThrow, KeyLoc, RParen);
Sebastian Redl4202c0f2010-09-10 20:55:43 +00006802}
6803
6804ExprResult Sema::ActOnNoexceptExpr(SourceLocation KeyLoc, SourceLocation,
6805 Expr *Operand, SourceLocation RParen) {
6806 return BuildCXXNoexceptExpr(KeyLoc, Operand, RParen);
Sebastian Redl22e3a932010-09-10 20:55:37 +00006807}
6808
Eli Friedmanf798f652012-05-24 22:04:19 +00006809static bool IsSpecialDiscardedValue(Expr *E) {
6810 // In C++11, discarded-value expressions of a certain form are special,
6811 // according to [expr]p10:
6812 // The lvalue-to-rvalue conversion (4.1) is applied only if the
6813 // expression is an lvalue of volatile-qualified type and it has
6814 // one of the following forms:
6815 E = E->IgnoreParens();
6816
Eli Friedmanc49c2262012-05-24 22:36:31 +00006817 // - id-expression (5.1.1),
Eli Friedmanf798f652012-05-24 22:04:19 +00006818 if (isa<DeclRefExpr>(E))
6819 return true;
6820
Eli Friedmanc49c2262012-05-24 22:36:31 +00006821 // - subscripting (5.2.1),
Eli Friedmanf798f652012-05-24 22:04:19 +00006822 if (isa<ArraySubscriptExpr>(E))
6823 return true;
6824
Eli Friedmanc49c2262012-05-24 22:36:31 +00006825 // - class member access (5.2.5),
Eli Friedmanf798f652012-05-24 22:04:19 +00006826 if (isa<MemberExpr>(E))
6827 return true;
6828
Eli Friedmanc49c2262012-05-24 22:36:31 +00006829 // - indirection (5.3.1),
Eli Friedmanf798f652012-05-24 22:04:19 +00006830 if (UnaryOperator *UO = dyn_cast<UnaryOperator>(E))
6831 if (UO->getOpcode() == UO_Deref)
6832 return true;
6833
6834 if (BinaryOperator *BO = dyn_cast<BinaryOperator>(E)) {
Eli Friedmanc49c2262012-05-24 22:36:31 +00006835 // - pointer-to-member operation (5.5),
Eli Friedmanf798f652012-05-24 22:04:19 +00006836 if (BO->isPtrMemOp())
6837 return true;
6838
Eli Friedmanc49c2262012-05-24 22:36:31 +00006839 // - comma expression (5.18) where the right operand is one of the above.
Eli Friedmanf798f652012-05-24 22:04:19 +00006840 if (BO->getOpcode() == BO_Comma)
6841 return IsSpecialDiscardedValue(BO->getRHS());
6842 }
6843
Eli Friedmanc49c2262012-05-24 22:36:31 +00006844 // - conditional expression (5.16) where both the second and the third
Eli Friedmanf798f652012-05-24 22:04:19 +00006845 // operands are one of the above, or
6846 if (ConditionalOperator *CO = dyn_cast<ConditionalOperator>(E))
6847 return IsSpecialDiscardedValue(CO->getTrueExpr()) &&
6848 IsSpecialDiscardedValue(CO->getFalseExpr());
6849 // The related edge case of "*x ?: *x".
6850 if (BinaryConditionalOperator *BCO =
6851 dyn_cast<BinaryConditionalOperator>(E)) {
6852 if (OpaqueValueExpr *OVE = dyn_cast<OpaqueValueExpr>(BCO->getTrueExpr()))
6853 return IsSpecialDiscardedValue(OVE->getSourceExpr()) &&
6854 IsSpecialDiscardedValue(BCO->getFalseExpr());
6855 }
6856
6857 // Objective-C++ extensions to the rule.
6858 if (isa<PseudoObjectExpr>(E) || isa<ObjCIvarRefExpr>(E))
6859 return true;
6860
6861 return false;
6862}
6863
John McCall34376a62010-12-04 03:47:34 +00006864/// Perform the conversions required for an expression used in a
6865/// context that ignores the result.
John Wiegley01296292011-04-08 18:41:53 +00006866ExprResult Sema::IgnoredValueConversions(Expr *E) {
John McCall526ab472011-10-25 17:37:35 +00006867 if (E->hasPlaceholderType()) {
6868 ExprResult result = CheckPlaceholderExpr(E);
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00006869 if (result.isInvalid()) return E;
Nikola Smiljanic01a75982014-05-29 10:55:11 +00006870 E = result.get();
John McCall526ab472011-10-25 17:37:35 +00006871 }
6872
John McCallfee942d2010-12-02 02:07:15 +00006873 // C99 6.3.2.1:
6874 // [Except in specific positions,] an lvalue that does not have
6875 // array type is converted to the value stored in the
6876 // designated object (and is no longer an lvalue).
John McCalld68b2d02011-06-27 21:24:11 +00006877 if (E->isRValue()) {
6878 // In C, function designators (i.e. expressions of function type)
6879 // are r-values, but we still want to do function-to-pointer decay
6880 // on them. This is both technically correct and convenient for
6881 // some clients.
David Blaikiebbafb8a2012-03-11 07:00:24 +00006882 if (!getLangOpts().CPlusPlus && E->getType()->isFunctionType())
John McCalld68b2d02011-06-27 21:24:11 +00006883 return DefaultFunctionArrayConversion(E);
6884
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00006885 return E;
John McCalld68b2d02011-06-27 21:24:11 +00006886 }
John McCallfee942d2010-12-02 02:07:15 +00006887
Eli Friedmanf798f652012-05-24 22:04:19 +00006888 if (getLangOpts().CPlusPlus) {
6889 // The C++11 standard defines the notion of a discarded-value expression;
6890 // normally, we don't need to do anything to handle it, but if it is a
6891 // volatile lvalue with a special form, we perform an lvalue-to-rvalue
6892 // conversion.
Richard Smith2bf7fdb2013-01-02 11:42:31 +00006893 if (getLangOpts().CPlusPlus11 && E->isGLValue() &&
Eli Friedmanf798f652012-05-24 22:04:19 +00006894 E->getType().isVolatileQualified() &&
6895 IsSpecialDiscardedValue(E)) {
6896 ExprResult Res = DefaultLvalueConversion(E);
6897 if (Res.isInvalid())
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00006898 return E;
Nikola Smiljanic01a75982014-05-29 10:55:11 +00006899 E = Res.get();
Simon Pilgrim75c26882016-09-30 14:25:09 +00006900 }
Richard Smith122f88d2016-12-06 23:52:28 +00006901
6902 // C++1z:
6903 // If the expression is a prvalue after this optional conversion, the
6904 // temporary materialization conversion is applied.
6905 //
6906 // We skip this step: IR generation is able to synthesize the storage for
6907 // itself in the aggregate case, and adding the extra node to the AST is
6908 // just clutter.
6909 // FIXME: We don't emit lifetime markers for the temporaries due to this.
6910 // FIXME: Do any other AST consumers care about this?
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00006911 return E;
Eli Friedmanf798f652012-05-24 22:04:19 +00006912 }
John McCall34376a62010-12-04 03:47:34 +00006913
6914 // GCC seems to also exclude expressions of incomplete enum type.
6915 if (const EnumType *T = E->getType()->getAs<EnumType>()) {
6916 if (!T->getDecl()->isComplete()) {
6917 // FIXME: stupid workaround for a codegen bug!
Nikola Smiljanic01a75982014-05-29 10:55:11 +00006918 E = ImpCastExprToType(E, Context.VoidTy, CK_ToVoid).get();
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00006919 return E;
John McCall34376a62010-12-04 03:47:34 +00006920 }
6921 }
6922
John Wiegley01296292011-04-08 18:41:53 +00006923 ExprResult Res = DefaultFunctionArrayLvalueConversion(E);
6924 if (Res.isInvalid())
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00006925 return E;
Nikola Smiljanic01a75982014-05-29 10:55:11 +00006926 E = Res.get();
John Wiegley01296292011-04-08 18:41:53 +00006927
John McCallca61b652010-12-04 12:29:11 +00006928 if (!E->getType()->isVoidType())
6929 RequireCompleteType(E->getExprLoc(), E->getType(),
6930 diag::err_incomplete_type);
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00006931 return E;
John McCall34376a62010-12-04 03:47:34 +00006932}
6933
Faisal Valia17d19f2013-11-07 05:17:06 +00006934// If we can unambiguously determine whether Var can never be used
6935// in a constant expression, return true.
6936// - if the variable and its initializer are non-dependent, then
6937// we can unambiguously check if the variable is a constant expression.
6938// - if the initializer is not value dependent - we can determine whether
6939// it can be used to initialize a constant expression. If Init can not
Simon Pilgrim75c26882016-09-30 14:25:09 +00006940// be used to initialize a constant expression we conclude that Var can
Faisal Valia17d19f2013-11-07 05:17:06 +00006941// never be a constant expression.
6942// - FXIME: if the initializer is dependent, we can still do some analysis and
6943// identify certain cases unambiguously as non-const by using a Visitor:
6944// - such as those that involve odr-use of a ParmVarDecl, involve a new
6945// delete, lambda-expr, dynamic-cast, reinterpret-cast etc...
Simon Pilgrim75c26882016-09-30 14:25:09 +00006946static inline bool VariableCanNeverBeAConstantExpression(VarDecl *Var,
Faisal Valia17d19f2013-11-07 05:17:06 +00006947 ASTContext &Context) {
6948 if (isa<ParmVarDecl>(Var)) return true;
Craig Topperc3ec1492014-05-26 06:22:03 +00006949 const VarDecl *DefVD = nullptr;
Faisal Valia17d19f2013-11-07 05:17:06 +00006950
6951 // If there is no initializer - this can not be a constant expression.
6952 if (!Var->getAnyInitializer(DefVD)) return true;
6953 assert(DefVD);
6954 if (DefVD->isWeak()) return false;
6955 EvaluatedStmt *Eval = DefVD->ensureEvaluatedStmt();
Richard Smithc941ba92014-02-06 23:35:16 +00006956
Faisal Valia17d19f2013-11-07 05:17:06 +00006957 Expr *Init = cast<Expr>(Eval->Value);
6958
6959 if (Var->getType()->isDependentType() || Init->isValueDependent()) {
Richard Smithc941ba92014-02-06 23:35:16 +00006960 // FIXME: Teach the constant evaluator to deal with the non-dependent parts
6961 // of value-dependent expressions, and use it here to determine whether the
6962 // initializer is a potential constant expression.
Faisal Valia17d19f2013-11-07 05:17:06 +00006963 return false;
Richard Smithc941ba92014-02-06 23:35:16 +00006964 }
6965
Simon Pilgrim75c26882016-09-30 14:25:09 +00006966 return !IsVariableAConstantExpression(Var, Context);
Faisal Valia17d19f2013-11-07 05:17:06 +00006967}
6968
Simon Pilgrim75c26882016-09-30 14:25:09 +00006969/// \brief Check if the current lambda has any potential captures
6970/// that must be captured by any of its enclosing lambdas that are ready to
6971/// capture. If there is a lambda that can capture a nested
6972/// potential-capture, go ahead and do so. Also, check to see if any
6973/// variables are uncaptureable or do not involve an odr-use so do not
Faisal Valiab3d6462013-12-07 20:22:44 +00006974/// need to be captured.
Faisal Valia17d19f2013-11-07 05:17:06 +00006975
Faisal Valiab3d6462013-12-07 20:22:44 +00006976static void CheckIfAnyEnclosingLambdasMustCaptureAnyPotentialCaptures(
6977 Expr *const FE, LambdaScopeInfo *const CurrentLSI, Sema &S) {
6978
Simon Pilgrim75c26882016-09-30 14:25:09 +00006979 assert(!S.isUnevaluatedContext());
6980 assert(S.CurContext->isDependentContext());
Alexey Bataev31939e32016-11-11 12:36:20 +00006981#ifndef NDEBUG
6982 DeclContext *DC = S.CurContext;
6983 while (DC && isa<CapturedDecl>(DC))
6984 DC = DC->getParent();
6985 assert(
6986 CurrentLSI->CallOperator == DC &&
Faisal Valiab3d6462013-12-07 20:22:44 +00006987 "The current call operator must be synchronized with Sema's CurContext");
Alexey Bataev31939e32016-11-11 12:36:20 +00006988#endif // NDEBUG
Faisal Valiab3d6462013-12-07 20:22:44 +00006989
6990 const bool IsFullExprInstantiationDependent = FE->isInstantiationDependent();
6991
6992 ArrayRef<const FunctionScopeInfo *> FunctionScopesArrayRef(
6993 S.FunctionScopes.data(), S.FunctionScopes.size());
Simon Pilgrim75c26882016-09-30 14:25:09 +00006994
Faisal Valiab3d6462013-12-07 20:22:44 +00006995 // All the potentially captureable variables in the current nested
Faisal Valia17d19f2013-11-07 05:17:06 +00006996 // lambda (within a generic outer lambda), must be captured by an
6997 // outer lambda that is enclosed within a non-dependent context.
Faisal Valiab3d6462013-12-07 20:22:44 +00006998 const unsigned NumPotentialCaptures =
6999 CurrentLSI->getNumPotentialVariableCaptures();
7000 for (unsigned I = 0; I != NumPotentialCaptures; ++I) {
Craig Topperc3ec1492014-05-26 06:22:03 +00007001 Expr *VarExpr = nullptr;
7002 VarDecl *Var = nullptr;
Faisal Valia17d19f2013-11-07 05:17:06 +00007003 CurrentLSI->getPotentialVariableCapture(I, Var, VarExpr);
Faisal Valiab3d6462013-12-07 20:22:44 +00007004 // If the variable is clearly identified as non-odr-used and the full
Simon Pilgrim75c26882016-09-30 14:25:09 +00007005 // expression is not instantiation dependent, only then do we not
Faisal Valiab3d6462013-12-07 20:22:44 +00007006 // need to check enclosing lambda's for speculative captures.
7007 // For e.g.:
7008 // Even though 'x' is not odr-used, it should be captured.
7009 // int test() {
7010 // const int x = 10;
7011 // auto L = [=](auto a) {
7012 // (void) +x + a;
7013 // };
7014 // }
7015 if (CurrentLSI->isVariableExprMarkedAsNonODRUsed(VarExpr) &&
Faisal Valia17d19f2013-11-07 05:17:06 +00007016 !IsFullExprInstantiationDependent)
Faisal Valiab3d6462013-12-07 20:22:44 +00007017 continue;
7018
7019 // If we have a capture-capable lambda for the variable, go ahead and
7020 // capture the variable in that lambda (and all its enclosing lambdas).
7021 if (const Optional<unsigned> Index =
7022 getStackIndexOfNearestEnclosingCaptureCapableLambda(
7023 FunctionScopesArrayRef, Var, S)) {
7024 const unsigned FunctionScopeIndexOfCapturableLambda = Index.getValue();
7025 MarkVarDeclODRUsed(Var, VarExpr->getExprLoc(), S,
7026 &FunctionScopeIndexOfCapturableLambda);
Simon Pilgrim75c26882016-09-30 14:25:09 +00007027 }
7028 const bool IsVarNeverAConstantExpression =
Faisal Valia17d19f2013-11-07 05:17:06 +00007029 VariableCanNeverBeAConstantExpression(Var, S.Context);
7030 if (!IsFullExprInstantiationDependent || IsVarNeverAConstantExpression) {
7031 // This full expression is not instantiation dependent or the variable
Simon Pilgrim75c26882016-09-30 14:25:09 +00007032 // can not be used in a constant expression - which means
7033 // this variable must be odr-used here, so diagnose a
Faisal Valia17d19f2013-11-07 05:17:06 +00007034 // capture violation early, if the variable is un-captureable.
7035 // This is purely for diagnosing errors early. Otherwise, this
7036 // error would get diagnosed when the lambda becomes capture ready.
7037 QualType CaptureType, DeclRefType;
7038 SourceLocation ExprLoc = VarExpr->getExprLoc();
7039 if (S.tryCaptureVariable(Var, ExprLoc, S.TryCapture_Implicit,
Simon Pilgrim75c26882016-09-30 14:25:09 +00007040 /*EllipsisLoc*/ SourceLocation(),
7041 /*BuildAndDiagnose*/false, CaptureType,
Craig Topperc3ec1492014-05-26 06:22:03 +00007042 DeclRefType, nullptr)) {
Faisal Valia17d19f2013-11-07 05:17:06 +00007043 // We will never be able to capture this variable, and we need
7044 // to be able to in any and all instantiations, so diagnose it.
7045 S.tryCaptureVariable(Var, ExprLoc, S.TryCapture_Implicit,
Simon Pilgrim75c26882016-09-30 14:25:09 +00007046 /*EllipsisLoc*/ SourceLocation(),
7047 /*BuildAndDiagnose*/true, CaptureType,
Craig Topperc3ec1492014-05-26 06:22:03 +00007048 DeclRefType, nullptr);
Faisal Valia17d19f2013-11-07 05:17:06 +00007049 }
7050 }
7051 }
7052
Faisal Valiab3d6462013-12-07 20:22:44 +00007053 // Check if 'this' needs to be captured.
Faisal Valia17d19f2013-11-07 05:17:06 +00007054 if (CurrentLSI->hasPotentialThisCapture()) {
Faisal Valiab3d6462013-12-07 20:22:44 +00007055 // If we have a capture-capable lambda for 'this', go ahead and capture
7056 // 'this' in that lambda (and all its enclosing lambdas).
7057 if (const Optional<unsigned> Index =
7058 getStackIndexOfNearestEnclosingCaptureCapableLambda(
Craig Topperc3ec1492014-05-26 06:22:03 +00007059 FunctionScopesArrayRef, /*0 is 'this'*/ nullptr, S)) {
Faisal Valiab3d6462013-12-07 20:22:44 +00007060 const unsigned FunctionScopeIndexOfCapturableLambda = Index.getValue();
7061 S.CheckCXXThisCapture(CurrentLSI->PotentialThisCaptureLocation,
7062 /*Explicit*/ false, /*BuildAndDiagnose*/ true,
7063 &FunctionScopeIndexOfCapturableLambda);
Faisal Valia17d19f2013-11-07 05:17:06 +00007064 }
7065 }
Faisal Valiab3d6462013-12-07 20:22:44 +00007066
7067 // Reset all the potential captures at the end of each full-expression.
Faisal Valia17d19f2013-11-07 05:17:06 +00007068 CurrentLSI->clearPotentialCaptures();
7069}
7070
Kaelyn Takata3f9794f2014-11-20 22:06:30 +00007071static ExprResult attemptRecovery(Sema &SemaRef,
7072 const TypoCorrectionConsumer &Consumer,
Benjamin Kramer7320b992016-06-15 14:20:56 +00007073 const TypoCorrection &TC) {
Kaelyn Takata3f9794f2014-11-20 22:06:30 +00007074 LookupResult R(SemaRef, Consumer.getLookupResult().getLookupNameInfo(),
7075 Consumer.getLookupResult().getLookupKind());
7076 const CXXScopeSpec *SS = Consumer.getSS();
7077 CXXScopeSpec NewSS;
7078
7079 // Use an approprate CXXScopeSpec for building the expr.
7080 if (auto *NNS = TC.getCorrectionSpecifier())
7081 NewSS.MakeTrivial(SemaRef.Context, NNS, TC.getCorrectionRange());
7082 else if (SS && !TC.WillReplaceSpecifier())
7083 NewSS = *SS;
7084
Richard Smithde6d6c42015-12-29 19:43:10 +00007085 if (auto *ND = TC.getFoundDecl()) {
Nick Lewycky01ad4ae2014-12-13 02:54:28 +00007086 R.setLookupName(ND->getDeclName());
Kaelyn Takata3f9794f2014-11-20 22:06:30 +00007087 R.addDecl(ND);
7088 if (ND->isCXXClassMember()) {
Nick Lewycky01ad4ae2014-12-13 02:54:28 +00007089 // Figure out the correct naming class to add to the LookupResult.
Kaelyn Takata3f9794f2014-11-20 22:06:30 +00007090 CXXRecordDecl *Record = nullptr;
7091 if (auto *NNS = TC.getCorrectionSpecifier())
7092 Record = NNS->getAsType()->getAsCXXRecordDecl();
7093 if (!Record)
Olivier Goffarted13fab2015-01-09 09:37:26 +00007094 Record =
7095 dyn_cast<CXXRecordDecl>(ND->getDeclContext()->getRedeclContext());
7096 if (Record)
7097 R.setNamingClass(Record);
Kaelyn Takata3f9794f2014-11-20 22:06:30 +00007098
7099 // Detect and handle the case where the decl might be an implicit
7100 // member.
7101 bool MightBeImplicitMember;
7102 if (!Consumer.isAddressOfOperand())
7103 MightBeImplicitMember = true;
7104 else if (!NewSS.isEmpty())
7105 MightBeImplicitMember = false;
7106 else if (R.isOverloadedResult())
7107 MightBeImplicitMember = false;
7108 else if (R.isUnresolvableResult())
7109 MightBeImplicitMember = true;
7110 else
7111 MightBeImplicitMember = isa<FieldDecl>(ND) ||
7112 isa<IndirectFieldDecl>(ND) ||
7113 isa<MSPropertyDecl>(ND);
7114
7115 if (MightBeImplicitMember)
7116 return SemaRef.BuildPossibleImplicitMemberExpr(
7117 NewSS, /*TemplateKWLoc*/ SourceLocation(), R,
Aaron Ballman6924dcd2015-09-01 14:49:24 +00007118 /*TemplateArgs*/ nullptr, /*S*/ nullptr);
Kaelyn Takata3f9794f2014-11-20 22:06:30 +00007119 } else if (auto *Ivar = dyn_cast<ObjCIvarDecl>(ND)) {
7120 return SemaRef.LookupInObjCMethod(R, Consumer.getScope(),
7121 Ivar->getIdentifier());
7122 }
7123 }
7124
Kaelyn Takata6f71ce22014-11-20 22:06:33 +00007125 return SemaRef.BuildDeclarationNameExpr(NewSS, R, /*NeedsADL*/ false,
7126 /*AcceptInvalidDecl*/ true);
Kaelyn Takata3f9794f2014-11-20 22:06:30 +00007127}
7128
Kaelyn Takata6c759512014-10-27 18:07:37 +00007129namespace {
Kaelyn Takata57e07c92014-11-20 22:06:44 +00007130class FindTypoExprs : public RecursiveASTVisitor<FindTypoExprs> {
7131 llvm::SmallSetVector<TypoExpr *, 2> &TypoExprs;
7132
7133public:
7134 explicit FindTypoExprs(llvm::SmallSetVector<TypoExpr *, 2> &TypoExprs)
7135 : TypoExprs(TypoExprs) {}
7136 bool VisitTypoExpr(TypoExpr *TE) {
7137 TypoExprs.insert(TE);
7138 return true;
7139 }
7140};
7141
Kaelyn Takata6c759512014-10-27 18:07:37 +00007142class TransformTypos : public TreeTransform<TransformTypos> {
7143 typedef TreeTransform<TransformTypos> BaseTransform;
7144
Kaelyn Takatab8499f02015-05-05 19:17:03 +00007145 VarDecl *InitDecl; // A decl to avoid as a correction because it is in the
7146 // process of being initialized.
Kaelyn Takata49d84322014-11-11 23:26:56 +00007147 llvm::function_ref<ExprResult(Expr *)> ExprFilter;
Kaelyn Takata5ca2ecd2014-11-21 18:47:58 +00007148 llvm::SmallSetVector<TypoExpr *, 2> TypoExprs, AmbiguousTypoExprs;
Kaelyn Takata6c759512014-10-27 18:07:37 +00007149 llvm::SmallDenseMap<TypoExpr *, ExprResult, 2> TransformCache;
Kaelyn Takatafe408a72014-10-27 18:07:46 +00007150 llvm::SmallDenseMap<OverloadExpr *, Expr *, 4> OverloadResolution;
Kaelyn Takata6c759512014-10-27 18:07:37 +00007151
7152 /// \brief Emit diagnostics for all of the TypoExprs encountered.
7153 /// If the TypoExprs were successfully corrected, then the diagnostics should
7154 /// suggest the corrections. Otherwise the diagnostics will not suggest
7155 /// anything (having been passed an empty TypoCorrection).
7156 void EmitAllDiagnostics() {
7157 for (auto E : TypoExprs) {
7158 TypoExpr *TE = cast<TypoExpr>(E);
7159 auto &State = SemaRef.getTypoExprState(TE);
Kaelyn Takatafe408a72014-10-27 18:07:46 +00007160 if (State.DiagHandler) {
7161 TypoCorrection TC = State.Consumer->getCurrentCorrection();
7162 ExprResult Replacement = TransformCache[TE];
7163
7164 // Extract the NamedDecl from the transformed TypoExpr and add it to the
7165 // TypoCorrection, replacing the existing decls. This ensures the right
7166 // NamedDecl is used in diagnostics e.g. in the case where overload
7167 // resolution was used to select one from several possible decls that
7168 // had been stored in the TypoCorrection.
7169 if (auto *ND = getDeclFromExpr(
7170 Replacement.isInvalid() ? nullptr : Replacement.get()))
7171 TC.setCorrectionDecl(ND);
7172
7173 State.DiagHandler(TC);
7174 }
Kaelyn Takata6c759512014-10-27 18:07:37 +00007175 SemaRef.clearDelayedTypo(TE);
7176 }
7177 }
7178
7179 /// \brief If corrections for the first TypoExpr have been exhausted for a
7180 /// given combination of the other TypoExprs, retry those corrections against
7181 /// the next combination of substitutions for the other TypoExprs by advancing
7182 /// to the next potential correction of the second TypoExpr. For the second
7183 /// and subsequent TypoExprs, if its stream of corrections has been exhausted,
7184 /// the stream is reset and the next TypoExpr's stream is advanced by one (a
7185 /// TypoExpr's correction stream is advanced by removing the TypoExpr from the
7186 /// TransformCache). Returns true if there is still any untried combinations
7187 /// of corrections.
7188 bool CheckAndAdvanceTypoExprCorrectionStreams() {
7189 for (auto TE : TypoExprs) {
7190 auto &State = SemaRef.getTypoExprState(TE);
7191 TransformCache.erase(TE);
7192 if (!State.Consumer->finished())
7193 return true;
7194 State.Consumer->resetCorrectionStream();
7195 }
7196 return false;
7197 }
7198
Kaelyn Takatafe408a72014-10-27 18:07:46 +00007199 NamedDecl *getDeclFromExpr(Expr *E) {
7200 if (auto *OE = dyn_cast_or_null<OverloadExpr>(E))
7201 E = OverloadResolution[OE];
7202
7203 if (!E)
7204 return nullptr;
7205 if (auto *DRE = dyn_cast<DeclRefExpr>(E))
Richard Smithde6d6c42015-12-29 19:43:10 +00007206 return DRE->getFoundDecl();
Kaelyn Takatafe408a72014-10-27 18:07:46 +00007207 if (auto *ME = dyn_cast<MemberExpr>(E))
Richard Smithde6d6c42015-12-29 19:43:10 +00007208 return ME->getFoundDecl();
Kaelyn Takatafe408a72014-10-27 18:07:46 +00007209 // FIXME: Add any other expr types that could be be seen by the delayed typo
7210 // correction TreeTransform for which the corresponding TypoCorrection could
Nick Lewycky39f9dbc2014-12-16 21:48:39 +00007211 // contain multiple decls.
Kaelyn Takatafe408a72014-10-27 18:07:46 +00007212 return nullptr;
7213 }
7214
Kaelyn Takata5ca2ecd2014-11-21 18:47:58 +00007215 ExprResult TryTransform(Expr *E) {
7216 Sema::SFINAETrap Trap(SemaRef);
7217 ExprResult Res = TransformExpr(E);
7218 if (Trap.hasErrorOccurred() || Res.isInvalid())
7219 return ExprError();
7220
7221 return ExprFilter(Res.get());
7222 }
7223
Kaelyn Takata6c759512014-10-27 18:07:37 +00007224public:
Kaelyn Takatab8499f02015-05-05 19:17:03 +00007225 TransformTypos(Sema &SemaRef, VarDecl *InitDecl, llvm::function_ref<ExprResult(Expr *)> Filter)
7226 : BaseTransform(SemaRef), InitDecl(InitDecl), ExprFilter(Filter) {}
Kaelyn Takata6c759512014-10-27 18:07:37 +00007227
Kaelyn Takatafe408a72014-10-27 18:07:46 +00007228 ExprResult RebuildCallExpr(Expr *Callee, SourceLocation LParenLoc,
7229 MultiExprArg Args,
7230 SourceLocation RParenLoc,
7231 Expr *ExecConfig = nullptr) {
7232 auto Result = BaseTransform::RebuildCallExpr(Callee, LParenLoc, Args,
7233 RParenLoc, ExecConfig);
7234 if (auto *OE = dyn_cast<OverloadExpr>(Callee)) {
Reid Klecknera9e65ba2014-12-13 01:11:23 +00007235 if (Result.isUsable()) {
Reid Klecknera7fe33e2014-12-13 00:53:10 +00007236 Expr *ResultCall = Result.get();
7237 if (auto *BE = dyn_cast<CXXBindTemporaryExpr>(ResultCall))
7238 ResultCall = BE->getSubExpr();
7239 if (auto *CE = dyn_cast<CallExpr>(ResultCall))
7240 OverloadResolution[OE] = CE->getCallee();
7241 }
Kaelyn Takatafe408a72014-10-27 18:07:46 +00007242 }
7243 return Result;
7244 }
7245
Kaelyn Takata6c759512014-10-27 18:07:37 +00007246 ExprResult TransformLambdaExpr(LambdaExpr *E) { return Owned(E); }
7247
Saleem Abdulrasoola1742412015-10-31 00:39:15 +00007248 ExprResult TransformBlockExpr(BlockExpr *E) { return Owned(E); }
7249
Kaelyn Takata6c759512014-10-27 18:07:37 +00007250 ExprResult Transform(Expr *E) {
Kaelyn Takata5ca2ecd2014-11-21 18:47:58 +00007251 ExprResult Res;
Kaelyn Takata6c759512014-10-27 18:07:37 +00007252 while (true) {
Kaelyn Takata5ca2ecd2014-11-21 18:47:58 +00007253 Res = TryTransform(E);
Kaelyn Takata49d84322014-11-11 23:26:56 +00007254
Kaelyn Takata6c759512014-10-27 18:07:37 +00007255 // Exit if either the transform was valid or if there were no TypoExprs
7256 // to transform that still have any untried correction candidates..
Kaelyn Takata5ca2ecd2014-11-21 18:47:58 +00007257 if (!Res.isInvalid() ||
Kaelyn Takata6c759512014-10-27 18:07:37 +00007258 !CheckAndAdvanceTypoExprCorrectionStreams())
7259 break;
7260 }
7261
Kaelyn Takata5ca2ecd2014-11-21 18:47:58 +00007262 // Ensure none of the TypoExprs have multiple typo correction candidates
7263 // with the same edit length that pass all the checks and filters.
7264 // TODO: Properly handle various permutations of possible corrections when
7265 // there is more than one potentially ambiguous typo correction.
Kaelyn Takata26ffc5f2015-06-25 23:47:39 +00007266 // Also, disable typo correction while attempting the transform when
7267 // handling potentially ambiguous typo corrections as any new TypoExprs will
7268 // have been introduced by the application of one of the correction
7269 // candidates and add little to no value if corrected.
7270 SemaRef.DisableTypoCorrection = true;
Kaelyn Takata5ca2ecd2014-11-21 18:47:58 +00007271 while (!AmbiguousTypoExprs.empty()) {
7272 auto TE = AmbiguousTypoExprs.back();
7273 auto Cached = TransformCache[TE];
Kaelyn Takata7a503692015-01-27 22:01:39 +00007274 auto &State = SemaRef.getTypoExprState(TE);
7275 State.Consumer->saveCurrentPosition();
Kaelyn Takata5ca2ecd2014-11-21 18:47:58 +00007276 TransformCache.erase(TE);
7277 if (!TryTransform(E).isInvalid()) {
Kaelyn Takata7a503692015-01-27 22:01:39 +00007278 State.Consumer->resetCorrectionStream();
Kaelyn Takata5ca2ecd2014-11-21 18:47:58 +00007279 TransformCache.erase(TE);
7280 Res = ExprError();
7281 break;
Kaelyn Takata7a503692015-01-27 22:01:39 +00007282 }
7283 AmbiguousTypoExprs.remove(TE);
7284 State.Consumer->restoreSavedPosition();
7285 TransformCache[TE] = Cached;
Kaelyn Takata5ca2ecd2014-11-21 18:47:58 +00007286 }
Kaelyn Takata26ffc5f2015-06-25 23:47:39 +00007287 SemaRef.DisableTypoCorrection = false;
Kaelyn Takata5ca2ecd2014-11-21 18:47:58 +00007288
Kaelyn Takata57e07c92014-11-20 22:06:44 +00007289 // Ensure that all of the TypoExprs within the current Expr have been found.
Kaelyn Takata5ca2ecd2014-11-21 18:47:58 +00007290 if (!Res.isUsable())
Kaelyn Takata57e07c92014-11-20 22:06:44 +00007291 FindTypoExprs(TypoExprs).TraverseStmt(E);
7292
Kaelyn Takata6c759512014-10-27 18:07:37 +00007293 EmitAllDiagnostics();
7294
Kaelyn Takata5ca2ecd2014-11-21 18:47:58 +00007295 return Res;
Kaelyn Takata6c759512014-10-27 18:07:37 +00007296 }
7297
7298 ExprResult TransformTypoExpr(TypoExpr *E) {
7299 // If the TypoExpr hasn't been seen before, record it. Otherwise, return the
7300 // cached transformation result if there is one and the TypoExpr isn't the
7301 // first one that was encountered.
7302 auto &CacheEntry = TransformCache[E];
7303 if (!TypoExprs.insert(E) && !CacheEntry.isUnset()) {
7304 return CacheEntry;
7305 }
7306
7307 auto &State = SemaRef.getTypoExprState(E);
7308 assert(State.Consumer && "Cannot transform a cleared TypoExpr");
7309
7310 // For the first TypoExpr and an uncached TypoExpr, find the next likely
7311 // typo correction and return it.
7312 while (TypoCorrection TC = State.Consumer->getNextCorrection()) {
Richard Smithde6d6c42015-12-29 19:43:10 +00007313 if (InitDecl && TC.getFoundDecl() == InitDecl)
Kaelyn Takatab8499f02015-05-05 19:17:03 +00007314 continue;
Richard Smith1cf45412017-01-04 23:14:16 +00007315 // FIXME: If we would typo-correct to an invalid declaration, it's
7316 // probably best to just suppress all errors from this typo correction.
Kaelyn Takata3f9794f2014-11-20 22:06:30 +00007317 ExprResult NE = State.RecoveryHandler ?
7318 State.RecoveryHandler(SemaRef, E, TC) :
7319 attemptRecovery(SemaRef, *State.Consumer, TC);
7320 if (!NE.isInvalid()) {
Kaelyn Takata5ca2ecd2014-11-21 18:47:58 +00007321 // Check whether there may be a second viable correction with the same
7322 // edit distance; if so, remember this TypoExpr may have an ambiguous
7323 // correction so it can be more thoroughly vetted later.
Kaelyn Takata3f9794f2014-11-20 22:06:30 +00007324 TypoCorrection Next;
Kaelyn Takata5ca2ecd2014-11-21 18:47:58 +00007325 if ((Next = State.Consumer->peekNextCorrection()) &&
7326 Next.getEditDistance(false) == TC.getEditDistance(false)) {
7327 AmbiguousTypoExprs.insert(E);
7328 } else {
7329 AmbiguousTypoExprs.remove(E);
Kaelyn Takata3f9794f2014-11-20 22:06:30 +00007330 }
7331 assert(!NE.isUnset() &&
7332 "Typo was transformed into a valid-but-null ExprResult");
Kaelyn Takata6c759512014-10-27 18:07:37 +00007333 return CacheEntry = NE;
Kaelyn Takata3f9794f2014-11-20 22:06:30 +00007334 }
Kaelyn Takata6c759512014-10-27 18:07:37 +00007335 }
7336 return CacheEntry = ExprError();
7337 }
7338};
Alexander Kornienkoab9db512015-06-22 23:07:51 +00007339}
Faisal Valia17d19f2013-11-07 05:17:06 +00007340
Kaelyn Takatab8499f02015-05-05 19:17:03 +00007341ExprResult
7342Sema::CorrectDelayedTyposInExpr(Expr *E, VarDecl *InitDecl,
7343 llvm::function_ref<ExprResult(Expr *)> Filter) {
Kaelyn Takata49d84322014-11-11 23:26:56 +00007344 // If the current evaluation context indicates there are uncorrected typos
7345 // and the current expression isn't guaranteed to not have typos, try to
7346 // resolve any TypoExpr nodes that might be in the expression.
Kaelyn Takatac71dda22014-12-02 22:05:35 +00007347 if (E && !ExprEvalContexts.empty() && ExprEvalContexts.back().NumTypos &&
Kaelyn Takata49d84322014-11-11 23:26:56 +00007348 (E->isTypeDependent() || E->isValueDependent() ||
7349 E->isInstantiationDependent())) {
Kaelyn Takatac49838b2015-01-28 21:10:46 +00007350 auto TyposInContext = ExprEvalContexts.back().NumTypos;
7351 assert(TyposInContext < ~0U && "Recursive call of CorrectDelayedTyposInExpr");
7352 ExprEvalContexts.back().NumTypos = ~0U;
Kaelyn Takata49d84322014-11-11 23:26:56 +00007353 auto TyposResolved = DelayedTypos.size();
Kaelyn Takatab8499f02015-05-05 19:17:03 +00007354 auto Result = TransformTypos(*this, InitDecl, Filter).Transform(E);
Kaelyn Takatac49838b2015-01-28 21:10:46 +00007355 ExprEvalContexts.back().NumTypos = TyposInContext;
Kaelyn Takata49d84322014-11-11 23:26:56 +00007356 TyposResolved -= DelayedTypos.size();
Nick Lewycky4d59b772014-12-16 22:02:06 +00007357 if (Result.isInvalid() || Result.get() != E) {
Kaelyn Takata49d84322014-11-11 23:26:56 +00007358 ExprEvalContexts.back().NumTypos -= TyposResolved;
7359 return Result;
7360 }
Nick Lewycky4d59b772014-12-16 22:02:06 +00007361 assert(TyposResolved == 0 && "Corrected typo but got same Expr back?");
Kaelyn Takata49d84322014-11-11 23:26:56 +00007362 }
7363 return E;
7364}
7365
Richard Smith945f8d32013-01-14 22:39:08 +00007366ExprResult Sema::ActOnFinishFullExpr(Expr *FE, SourceLocation CC,
Fariborz Jahaniane735ff92013-01-24 22:11:45 +00007367 bool DiscardedValue,
Simon Pilgrim75c26882016-09-30 14:25:09 +00007368 bool IsConstexpr,
Faisal Vali5fb7c3c2013-12-05 01:40:41 +00007369 bool IsLambdaInitCaptureInitializer) {
Nikola Smiljanic03ff2592014-05-29 14:05:12 +00007370 ExprResult FullExpr = FE;
John Wiegley01296292011-04-08 18:41:53 +00007371
7372 if (!FullExpr.get())
Douglas Gregora6e053e2010-12-15 01:34:56 +00007373 return ExprError();
Simon Pilgrim75c26882016-09-30 14:25:09 +00007374
7375 // If we are an init-expression in a lambdas init-capture, we should not
7376 // diagnose an unexpanded pack now (will be diagnosed once lambda-expr
Faisal Vali5fb7c3c2013-12-05 01:40:41 +00007377 // containing full-expression is done).
7378 // template<class ... Ts> void test(Ts ... t) {
7379 // test([&a(t)]() { <-- (t) is an init-expr that shouldn't be diagnosed now.
7380 // return a;
7381 // }() ...);
7382 // }
7383 // FIXME: This is a hack. It would be better if we pushed the lambda scope
7384 // when we parse the lambda introducer, and teach capturing (but not
7385 // unexpanded pack detection) to walk over LambdaScopeInfos which don't have a
7386 // corresponding class yet (that is, have LambdaScopeInfo either represent a
7387 // lambda where we've entered the introducer but not the body, or represent a
7388 // lambda where we've entered the body, depending on where the
7389 // parser/instantiation has got to).
Simon Pilgrim75c26882016-09-30 14:25:09 +00007390 if (!IsLambdaInitCaptureInitializer &&
Faisal Vali5fb7c3c2013-12-05 01:40:41 +00007391 DiagnoseUnexpandedParameterPack(FullExpr.get()))
Douglas Gregor506bd562010-12-13 22:49:22 +00007392 return ExprError();
7393
Douglas Gregorb5af2e92013-03-07 22:57:58 +00007394 // Top-level expressions default to 'id' when we're in a debugger.
Richard Smith945f8d32013-01-14 22:39:08 +00007395 if (DiscardedValue && getLangOpts().DebuggerCastResultToId &&
Douglas Gregorb5af2e92013-03-07 22:57:58 +00007396 FullExpr.get()->getType() == Context.UnknownAnyTy) {
Nikola Smiljanic01a75982014-05-29 10:55:11 +00007397 FullExpr = forceUnknownAnyToType(FullExpr.get(), Context.getObjCIdType());
Douglas Gregor95715f92011-12-15 00:53:32 +00007398 if (FullExpr.isInvalid())
7399 return ExprError();
7400 }
Douglas Gregor0ec210b2011-03-07 02:05:23 +00007401
Richard Smith945f8d32013-01-14 22:39:08 +00007402 if (DiscardedValue) {
Nikola Smiljanic01a75982014-05-29 10:55:11 +00007403 FullExpr = CheckPlaceholderExpr(FullExpr.get());
Richard Smith945f8d32013-01-14 22:39:08 +00007404 if (FullExpr.isInvalid())
7405 return ExprError();
7406
Nikola Smiljanic01a75982014-05-29 10:55:11 +00007407 FullExpr = IgnoredValueConversions(FullExpr.get());
Richard Smith945f8d32013-01-14 22:39:08 +00007408 if (FullExpr.isInvalid())
7409 return ExprError();
7410 }
John Wiegley01296292011-04-08 18:41:53 +00007411
Kaelyn Takata49d84322014-11-11 23:26:56 +00007412 FullExpr = CorrectDelayedTyposInExpr(FullExpr.get());
7413 if (FullExpr.isInvalid())
7414 return ExprError();
Kaelyn Takata6c759512014-10-27 18:07:37 +00007415
Fariborz Jahaniane735ff92013-01-24 22:11:45 +00007416 CheckCompletedExpr(FullExpr.get(), CC, IsConstexpr);
Faisal Valia17d19f2013-11-07 05:17:06 +00007417
Simon Pilgrim75c26882016-09-30 14:25:09 +00007418 // At the end of this full expression (which could be a deeply nested
7419 // lambda), if there is a potential capture within the nested lambda,
Faisal Vali218e94b2013-11-12 03:56:08 +00007420 // have the outer capture-able lambda try and capture it.
Faisal Valia17d19f2013-11-07 05:17:06 +00007421 // Consider the following code:
7422 // void f(int, int);
7423 // void f(const int&, double);
Simon Pilgrim75c26882016-09-30 14:25:09 +00007424 // void foo() {
Faisal Valia17d19f2013-11-07 05:17:06 +00007425 // const int x = 10, y = 20;
7426 // auto L = [=](auto a) {
7427 // auto M = [=](auto b) {
7428 // f(x, b); <-- requires x to be captured by L and M
7429 // f(y, a); <-- requires y to be captured by L, but not all Ms
7430 // };
7431 // };
7432 // }
7433
Simon Pilgrim75c26882016-09-30 14:25:09 +00007434 // FIXME: Also consider what happens for something like this that involves
7435 // the gnu-extension statement-expressions or even lambda-init-captures:
Faisal Valia17d19f2013-11-07 05:17:06 +00007436 // void f() {
7437 // const int n = 0;
7438 // auto L = [&](auto a) {
7439 // +n + ({ 0; a; });
7440 // };
7441 // }
Simon Pilgrim75c26882016-09-30 14:25:09 +00007442 //
7443 // Here, we see +n, and then the full-expression 0; ends, so we don't
7444 // capture n (and instead remove it from our list of potential captures),
7445 // and then the full-expression +n + ({ 0; }); ends, but it's too late
Faisal Vali218e94b2013-11-12 03:56:08 +00007446 // for us to see that we need to capture n after all.
Faisal Valia17d19f2013-11-07 05:17:06 +00007447
Alexey Bataev31939e32016-11-11 12:36:20 +00007448 LambdaScopeInfo *const CurrentLSI =
7449 getCurLambda(/*IgnoreCapturedRegions=*/true);
Simon Pilgrim75c26882016-09-30 14:25:09 +00007450 // FIXME: PR 17877 showed that getCurLambda() can return a valid pointer
Faisal Vali8bc2bc72013-11-12 03:48:27 +00007451 // even if CurContext is not a lambda call operator. Refer to that Bug Report
Simon Pilgrim75c26882016-09-30 14:25:09 +00007452 // for an example of the code that might cause this asynchrony.
Faisal Vali8bc2bc72013-11-12 03:48:27 +00007453 // By ensuring we are in the context of a lambda's call operator
7454 // we can fix the bug (we only need to check whether we need to capture
Simon Pilgrim75c26882016-09-30 14:25:09 +00007455 // if we are within a lambda's body); but per the comments in that
Faisal Vali8bc2bc72013-11-12 03:48:27 +00007456 // PR, a proper fix would entail :
7457 // "Alternative suggestion:
Simon Pilgrim75c26882016-09-30 14:25:09 +00007458 // - Add to Sema an integer holding the smallest (outermost) scope
7459 // index that we are *lexically* within, and save/restore/set to
7460 // FunctionScopes.size() in InstantiatingTemplate's
Faisal Vali8bc2bc72013-11-12 03:48:27 +00007461 // constructor/destructor.
Simon Pilgrim75c26882016-09-30 14:25:09 +00007462 // - Teach the handful of places that iterate over FunctionScopes to
Faisal Valiab3d6462013-12-07 20:22:44 +00007463 // stop at the outermost enclosing lexical scope."
Alexey Bataev31939e32016-11-11 12:36:20 +00007464 DeclContext *DC = CurContext;
7465 while (DC && isa<CapturedDecl>(DC))
7466 DC = DC->getParent();
7467 const bool IsInLambdaDeclContext = isLambdaCallOperator(DC);
Faisal Valiab3d6462013-12-07 20:22:44 +00007468 if (IsInLambdaDeclContext && CurrentLSI &&
Faisal Vali8bc2bc72013-11-12 03:48:27 +00007469 CurrentLSI->hasPotentialCaptures() && !FullExpr.isInvalid())
Faisal Valiab3d6462013-12-07 20:22:44 +00007470 CheckIfAnyEnclosingLambdasMustCaptureAnyPotentialCaptures(FE, CurrentLSI,
7471 *this);
John McCall5d413782010-12-06 08:20:24 +00007472 return MaybeCreateExprWithCleanups(FullExpr);
Anders Carlsson85a307d2009-05-17 18:41:29 +00007473}
Argyrios Kyrtzidis3050d9b2010-11-02 02:33:08 +00007474
7475StmtResult Sema::ActOnFinishFullStmt(Stmt *FullStmt) {
7476 if (!FullStmt) return StmtError();
7477
John McCall5d413782010-12-06 08:20:24 +00007478 return MaybeCreateStmtWithCleanups(FullStmt);
Argyrios Kyrtzidis3050d9b2010-11-02 02:33:08 +00007479}
Francois Pichet4a7de3e2011-05-06 20:48:22 +00007480
Simon Pilgrim75c26882016-09-30 14:25:09 +00007481Sema::IfExistsResult
Douglas Gregordeb4a2be2011-10-25 01:33:02 +00007482Sema::CheckMicrosoftIfExistsSymbol(Scope *S,
7483 CXXScopeSpec &SS,
7484 const DeclarationNameInfo &TargetNameInfo) {
Francois Pichet4a7de3e2011-05-06 20:48:22 +00007485 DeclarationName TargetName = TargetNameInfo.getName();
7486 if (!TargetName)
Douglas Gregor43edb322011-10-24 22:31:10 +00007487 return IER_DoesNotExist;
Simon Pilgrim75c26882016-09-30 14:25:09 +00007488
Douglas Gregor43edb322011-10-24 22:31:10 +00007489 // If the name itself is dependent, then the result is dependent.
7490 if (TargetName.isDependentName())
7491 return IER_Dependent;
Simon Pilgrim75c26882016-09-30 14:25:09 +00007492
Francois Pichet4a7de3e2011-05-06 20:48:22 +00007493 // Do the redeclaration lookup in the current scope.
7494 LookupResult R(*this, TargetNameInfo, Sema::LookupAnyName,
7495 Sema::NotForRedeclaration);
Douglas Gregor43edb322011-10-24 22:31:10 +00007496 LookupParsedName(R, S, &SS);
Francois Pichet4a7de3e2011-05-06 20:48:22 +00007497 R.suppressDiagnostics();
Simon Pilgrim75c26882016-09-30 14:25:09 +00007498
Douglas Gregor43edb322011-10-24 22:31:10 +00007499 switch (R.getResultKind()) {
7500 case LookupResult::Found:
7501 case LookupResult::FoundOverloaded:
7502 case LookupResult::FoundUnresolvedValue:
7503 case LookupResult::Ambiguous:
7504 return IER_Exists;
Simon Pilgrim75c26882016-09-30 14:25:09 +00007505
Douglas Gregor43edb322011-10-24 22:31:10 +00007506 case LookupResult::NotFound:
7507 return IER_DoesNotExist;
Simon Pilgrim75c26882016-09-30 14:25:09 +00007508
Douglas Gregor43edb322011-10-24 22:31:10 +00007509 case LookupResult::NotFoundInCurrentInstantiation:
7510 return IER_Dependent;
7511 }
David Blaikie8a40f702012-01-17 06:56:22 +00007512
7513 llvm_unreachable("Invalid LookupResult Kind!");
Francois Pichet4a7de3e2011-05-06 20:48:22 +00007514}
Douglas Gregordeb4a2be2011-10-25 01:33:02 +00007515
Simon Pilgrim75c26882016-09-30 14:25:09 +00007516Sema::IfExistsResult
Douglas Gregor4a2a8f72011-10-25 03:44:56 +00007517Sema::CheckMicrosoftIfExistsSymbol(Scope *S, SourceLocation KeywordLoc,
7518 bool IsIfExists, CXXScopeSpec &SS,
7519 UnqualifiedId &Name) {
Douglas Gregordeb4a2be2011-10-25 01:33:02 +00007520 DeclarationNameInfo TargetNameInfo = GetNameFromUnqualifiedId(Name);
Simon Pilgrim75c26882016-09-30 14:25:09 +00007521
Richard Smith151c4562016-12-20 21:35:28 +00007522 // Check for an unexpanded parameter pack.
7523 auto UPPC = IsIfExists ? UPPC_IfExists : UPPC_IfNotExists;
7524 if (DiagnoseUnexpandedParameterPack(SS, UPPC) ||
7525 DiagnoseUnexpandedParameterPack(TargetNameInfo, UPPC))
Douglas Gregor4a2a8f72011-10-25 03:44:56 +00007526 return IER_Error;
Simon Pilgrim75c26882016-09-30 14:25:09 +00007527
Douglas Gregordeb4a2be2011-10-25 01:33:02 +00007528 return CheckMicrosoftIfExistsSymbol(S, SS, TargetNameInfo);
7529}