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Chris Lattner3d1cee32008-04-08 05:04:30 +00001//===------ SemaDeclCXX.cpp - Semantic Analysis for C++ Declarations ------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file implements semantic analysis for C++ declarations.
11//
12//===----------------------------------------------------------------------===//
13
14#include "Sema.h"
Douglas Gregor7ad83902008-11-05 04:29:56 +000015#include "SemaInherit.h"
Argyrios Kyrtzidisa4755c62008-08-09 00:58:37 +000016#include "clang/AST/ASTConsumer.h"
Douglas Gregore37ac4f2008-04-13 21:30:24 +000017#include "clang/AST/ASTContext.h"
Douglas Gregor02189362008-10-22 21:13:31 +000018#include "clang/AST/TypeOrdering.h"
Chris Lattner8123a952008-04-10 02:22:51 +000019#include "clang/AST/StmtVisitor.h"
Argyrios Kyrtzidis06ad1f52008-10-06 18:37:09 +000020#include "clang/Lex/Preprocessor.h"
Daniel Dunbar12bc6922008-08-11 03:27:53 +000021#include "clang/Basic/Diagnostic.h"
Daniel Dunbar12bc6922008-08-11 03:27:53 +000022#include "clang/Parse/DeclSpec.h"
Douglas Gregor3fc749d2008-12-23 00:26:44 +000023#include "llvm/ADT/STLExtras.h"
Chris Lattner8123a952008-04-10 02:22:51 +000024#include "llvm/Support/Compiler.h"
Douglas Gregor8e9bebd2008-10-21 16:13:35 +000025#include <algorithm> // for std::equal
Douglas Gregorf8268ae2008-10-22 17:49:05 +000026#include <map>
Chris Lattner3d1cee32008-04-08 05:04:30 +000027
28using namespace clang;
29
Chris Lattner8123a952008-04-10 02:22:51 +000030//===----------------------------------------------------------------------===//
31// CheckDefaultArgumentVisitor
32//===----------------------------------------------------------------------===//
33
Chris Lattner9e979552008-04-12 23:52:44 +000034namespace {
35 /// CheckDefaultArgumentVisitor - C++ [dcl.fct.default] Traverses
36 /// the default argument of a parameter to determine whether it
37 /// contains any ill-formed subexpressions. For example, this will
38 /// diagnose the use of local variables or parameters within the
39 /// default argument expression.
40 class VISIBILITY_HIDDEN CheckDefaultArgumentVisitor
Chris Lattnerb77792e2008-07-26 22:17:49 +000041 : public StmtVisitor<CheckDefaultArgumentVisitor, bool> {
Chris Lattner9e979552008-04-12 23:52:44 +000042 Expr *DefaultArg;
43 Sema *S;
Chris Lattner8123a952008-04-10 02:22:51 +000044
Chris Lattner9e979552008-04-12 23:52:44 +000045 public:
46 CheckDefaultArgumentVisitor(Expr *defarg, Sema *s)
47 : DefaultArg(defarg), S(s) {}
Chris Lattner8123a952008-04-10 02:22:51 +000048
Chris Lattner9e979552008-04-12 23:52:44 +000049 bool VisitExpr(Expr *Node);
50 bool VisitDeclRefExpr(DeclRefExpr *DRE);
Douglas Gregor796da182008-11-04 14:32:21 +000051 bool VisitCXXThisExpr(CXXThisExpr *ThisE);
Chris Lattner9e979552008-04-12 23:52:44 +000052 };
Chris Lattner8123a952008-04-10 02:22:51 +000053
Chris Lattner9e979552008-04-12 23:52:44 +000054 /// VisitExpr - Visit all of the children of this expression.
55 bool CheckDefaultArgumentVisitor::VisitExpr(Expr *Node) {
56 bool IsInvalid = false;
Chris Lattnerb77792e2008-07-26 22:17:49 +000057 for (Stmt::child_iterator I = Node->child_begin(),
58 E = Node->child_end(); I != E; ++I)
59 IsInvalid |= Visit(*I);
Chris Lattner9e979552008-04-12 23:52:44 +000060 return IsInvalid;
Chris Lattner8123a952008-04-10 02:22:51 +000061 }
62
Chris Lattner9e979552008-04-12 23:52:44 +000063 /// VisitDeclRefExpr - Visit a reference to a declaration, to
64 /// determine whether this declaration can be used in the default
65 /// argument expression.
66 bool CheckDefaultArgumentVisitor::VisitDeclRefExpr(DeclRefExpr *DRE) {
Douglas Gregor8e9bebd2008-10-21 16:13:35 +000067 NamedDecl *Decl = DRE->getDecl();
Chris Lattner9e979552008-04-12 23:52:44 +000068 if (ParmVarDecl *Param = dyn_cast<ParmVarDecl>(Decl)) {
69 // C++ [dcl.fct.default]p9
70 // Default arguments are evaluated each time the function is
71 // called. The order of evaluation of function arguments is
72 // unspecified. Consequently, parameters of a function shall not
73 // be used in default argument expressions, even if they are not
74 // evaluated. Parameters of a function declared before a default
75 // argument expression are in scope and can hide namespace and
76 // class member names.
77 return S->Diag(DRE->getSourceRange().getBegin(),
Chris Lattnerfa25bbb2008-11-19 05:08:23 +000078 diag::err_param_default_argument_references_param)
Chris Lattner08631c52008-11-23 21:45:46 +000079 << Param->getDeclName() << DefaultArg->getSourceRange();
Steve Naroff248a7532008-04-15 22:42:06 +000080 } else if (VarDecl *VDecl = dyn_cast<VarDecl>(Decl)) {
Chris Lattner9e979552008-04-12 23:52:44 +000081 // C++ [dcl.fct.default]p7
82 // Local variables shall not be used in default argument
83 // expressions.
Steve Naroff248a7532008-04-15 22:42:06 +000084 if (VDecl->isBlockVarDecl())
85 return S->Diag(DRE->getSourceRange().getBegin(),
Chris Lattnerfa25bbb2008-11-19 05:08:23 +000086 diag::err_param_default_argument_references_local)
Chris Lattner08631c52008-11-23 21:45:46 +000087 << VDecl->getDeclName() << DefaultArg->getSourceRange();
Chris Lattner9e979552008-04-12 23:52:44 +000088 }
Chris Lattner8123a952008-04-10 02:22:51 +000089
Douglas Gregor3996f232008-11-04 13:41:56 +000090 return false;
91 }
Chris Lattner9e979552008-04-12 23:52:44 +000092
Douglas Gregor796da182008-11-04 14:32:21 +000093 /// VisitCXXThisExpr - Visit a C++ "this" expression.
94 bool CheckDefaultArgumentVisitor::VisitCXXThisExpr(CXXThisExpr *ThisE) {
95 // C++ [dcl.fct.default]p8:
96 // The keyword this shall not be used in a default argument of a
97 // member function.
98 return S->Diag(ThisE->getSourceRange().getBegin(),
Chris Lattnerfa25bbb2008-11-19 05:08:23 +000099 diag::err_param_default_argument_references_this)
100 << ThisE->getSourceRange();
Chris Lattner9e979552008-04-12 23:52:44 +0000101 }
Chris Lattner8123a952008-04-10 02:22:51 +0000102}
103
104/// ActOnParamDefaultArgument - Check whether the default argument
105/// provided for a function parameter is well-formed. If so, attach it
106/// to the parameter declaration.
Chris Lattner3d1cee32008-04-08 05:04:30 +0000107void
108Sema::ActOnParamDefaultArgument(DeclTy *param, SourceLocation EqualLoc,
109 ExprTy *defarg) {
110 ParmVarDecl *Param = (ParmVarDecl *)param;
111 llvm::OwningPtr<Expr> DefaultArg((Expr *)defarg);
112 QualType ParamType = Param->getType();
113
114 // Default arguments are only permitted in C++
115 if (!getLangOptions().CPlusPlus) {
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000116 Diag(EqualLoc, diag::err_param_default_argument)
117 << DefaultArg->getSourceRange();
Douglas Gregor72b505b2008-12-16 21:30:33 +0000118 Param->setInvalidDecl();
Chris Lattner3d1cee32008-04-08 05:04:30 +0000119 return;
120 }
121
122 // C++ [dcl.fct.default]p5
123 // A default argument expression is implicitly converted (clause
124 // 4) to the parameter type. The default argument expression has
125 // the same semantic constraints as the initializer expression in
126 // a declaration of a variable of the parameter type, using the
127 // copy-initialization semantics (8.5).
Chris Lattner3d1cee32008-04-08 05:04:30 +0000128 Expr *DefaultArgPtr = DefaultArg.get();
Douglas Gregor61366e92008-12-24 00:01:03 +0000129 bool DefaultInitFailed = CheckInitializerTypes(DefaultArgPtr, ParamType,
130 EqualLoc,
131 Param->getDeclName());
Chris Lattner3d1cee32008-04-08 05:04:30 +0000132 if (DefaultArgPtr != DefaultArg.get()) {
133 DefaultArg.take();
134 DefaultArg.reset(DefaultArgPtr);
135 }
Douglas Gregoreb704f22008-11-04 13:57:51 +0000136 if (DefaultInitFailed) {
Chris Lattner3d1cee32008-04-08 05:04:30 +0000137 return;
138 }
139
Chris Lattner8123a952008-04-10 02:22:51 +0000140 // Check that the default argument is well-formed
Chris Lattner9e979552008-04-12 23:52:44 +0000141 CheckDefaultArgumentVisitor DefaultArgChecker(DefaultArg.get(), this);
Douglas Gregor72b505b2008-12-16 21:30:33 +0000142 if (DefaultArgChecker.Visit(DefaultArg.get())) {
143 Param->setInvalidDecl();
Chris Lattner8123a952008-04-10 02:22:51 +0000144 return;
Douglas Gregor72b505b2008-12-16 21:30:33 +0000145 }
Chris Lattner8123a952008-04-10 02:22:51 +0000146
Chris Lattner3d1cee32008-04-08 05:04:30 +0000147 // Okay: add the default argument to the parameter
148 Param->setDefaultArg(DefaultArg.take());
149}
150
Douglas Gregor61366e92008-12-24 00:01:03 +0000151/// ActOnParamUnparsedDefaultArgument - We've seen a default
152/// argument for a function parameter, but we can't parse it yet
153/// because we're inside a class definition. Note that this default
154/// argument will be parsed later.
155void Sema::ActOnParamUnparsedDefaultArgument(DeclTy *param,
156 SourceLocation EqualLoc) {
157 ParmVarDecl *Param = (ParmVarDecl*)param;
158 if (Param)
159 Param->setUnparsedDefaultArg();
160}
161
Douglas Gregor72b505b2008-12-16 21:30:33 +0000162/// ActOnParamDefaultArgumentError - Parsing or semantic analysis of
163/// the default argument for the parameter param failed.
164void Sema::ActOnParamDefaultArgumentError(DeclTy *param) {
165 ((ParmVarDecl*)param)->setInvalidDecl();
166}
167
Douglas Gregor6d6eb572008-05-07 04:49:29 +0000168/// CheckExtraCXXDefaultArguments - Check for any extra default
169/// arguments in the declarator, which is not a function declaration
170/// or definition and therefore is not permitted to have default
171/// arguments. This routine should be invoked for every declarator
172/// that is not a function declaration or definition.
173void Sema::CheckExtraCXXDefaultArguments(Declarator &D) {
174 // C++ [dcl.fct.default]p3
175 // A default argument expression shall be specified only in the
176 // parameter-declaration-clause of a function declaration or in a
177 // template-parameter (14.1). It shall not be specified for a
178 // parameter pack. If it is specified in a
179 // parameter-declaration-clause, it shall not occur within a
180 // declarator or abstract-declarator of a parameter-declaration.
181 for (unsigned i = 0; i < D.getNumTypeObjects(); ++i) {
182 DeclaratorChunk &chunk = D.getTypeObject(i);
183 if (chunk.Kind == DeclaratorChunk::Function) {
184 for (unsigned argIdx = 0; argIdx < chunk.Fun.NumArgs; ++argIdx) {
185 ParmVarDecl *Param = (ParmVarDecl *)chunk.Fun.ArgInfo[argIdx].Param;
Douglas Gregor61366e92008-12-24 00:01:03 +0000186 if (Param->hasUnparsedDefaultArg()) {
187 CachedTokens *Toks = chunk.Fun.ArgInfo[argIdx].DefaultArgTokens;
Douglas Gregor72b505b2008-12-16 21:30:33 +0000188 Diag(Param->getLocation(), diag::err_param_default_argument_nonfunc)
189 << SourceRange((*Toks)[1].getLocation(), Toks->back().getLocation());
190 delete Toks;
191 chunk.Fun.ArgInfo[argIdx].DefaultArgTokens = 0;
Douglas Gregor61366e92008-12-24 00:01:03 +0000192 } else if (Param->getDefaultArg()) {
193 Diag(Param->getLocation(), diag::err_param_default_argument_nonfunc)
194 << Param->getDefaultArg()->getSourceRange();
195 Param->setDefaultArg(0);
Douglas Gregor6d6eb572008-05-07 04:49:29 +0000196 }
197 }
198 }
199 }
200}
201
Chris Lattner3d1cee32008-04-08 05:04:30 +0000202// MergeCXXFunctionDecl - Merge two declarations of the same C++
203// function, once we already know that they have the same
204// type. Subroutine of MergeFunctionDecl.
205FunctionDecl *
206Sema::MergeCXXFunctionDecl(FunctionDecl *New, FunctionDecl *Old) {
207 // C++ [dcl.fct.default]p4:
208 //
209 // For non-template functions, default arguments can be added in
210 // later declarations of a function in the same
211 // scope. Declarations in different scopes have completely
212 // distinct sets of default arguments. That is, declarations in
213 // inner scopes do not acquire default arguments from
214 // declarations in outer scopes, and vice versa. In a given
215 // function declaration, all parameters subsequent to a
216 // parameter with a default argument shall have default
217 // arguments supplied in this or previous declarations. A
218 // default argument shall not be redefined by a later
219 // declaration (not even to the same value).
220 for (unsigned p = 0, NumParams = Old->getNumParams(); p < NumParams; ++p) {
221 ParmVarDecl *OldParam = Old->getParamDecl(p);
222 ParmVarDecl *NewParam = New->getParamDecl(p);
223
224 if(OldParam->getDefaultArg() && NewParam->getDefaultArg()) {
225 Diag(NewParam->getLocation(),
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000226 diag::err_param_default_argument_redefinition)
227 << NewParam->getDefaultArg()->getSourceRange();
Chris Lattner5f4a6822008-11-23 23:12:31 +0000228 Diag(OldParam->getLocation(), diag::note_previous_definition);
Chris Lattner3d1cee32008-04-08 05:04:30 +0000229 } else if (OldParam->getDefaultArg()) {
230 // Merge the old default argument into the new parameter
231 NewParam->setDefaultArg(OldParam->getDefaultArg());
232 }
233 }
234
235 return New;
236}
237
238/// CheckCXXDefaultArguments - Verify that the default arguments for a
239/// function declaration are well-formed according to C++
240/// [dcl.fct.default].
241void Sema::CheckCXXDefaultArguments(FunctionDecl *FD) {
242 unsigned NumParams = FD->getNumParams();
243 unsigned p;
244
245 // Find first parameter with a default argument
246 for (p = 0; p < NumParams; ++p) {
247 ParmVarDecl *Param = FD->getParamDecl(p);
248 if (Param->getDefaultArg())
249 break;
250 }
251
252 // C++ [dcl.fct.default]p4:
253 // In a given function declaration, all parameters
254 // subsequent to a parameter with a default argument shall
255 // have default arguments supplied in this or previous
256 // declarations. A default argument shall not be redefined
257 // by a later declaration (not even to the same value).
258 unsigned LastMissingDefaultArg = 0;
259 for(; p < NumParams; ++p) {
260 ParmVarDecl *Param = FD->getParamDecl(p);
261 if (!Param->getDefaultArg()) {
Douglas Gregor72b505b2008-12-16 21:30:33 +0000262 if (Param->isInvalidDecl())
263 /* We already complained about this parameter. */;
264 else if (Param->getIdentifier())
Chris Lattner3d1cee32008-04-08 05:04:30 +0000265 Diag(Param->getLocation(),
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000266 diag::err_param_default_argument_missing_name)
Chris Lattner43b628c2008-11-19 07:32:16 +0000267 << Param->getIdentifier();
Chris Lattner3d1cee32008-04-08 05:04:30 +0000268 else
269 Diag(Param->getLocation(),
270 diag::err_param_default_argument_missing);
271
272 LastMissingDefaultArg = p;
273 }
274 }
275
276 if (LastMissingDefaultArg > 0) {
277 // Some default arguments were missing. Clear out all of the
278 // default arguments up to (and including) the last missing
279 // default argument, so that we leave the function parameters
280 // in a semantically valid state.
281 for (p = 0; p <= LastMissingDefaultArg; ++p) {
282 ParmVarDecl *Param = FD->getParamDecl(p);
283 if (Param->getDefaultArg()) {
Douglas Gregor61366e92008-12-24 00:01:03 +0000284 if (!Param->hasUnparsedDefaultArg())
285 Param->getDefaultArg()->Destroy(Context);
Chris Lattner3d1cee32008-04-08 05:04:30 +0000286 Param->setDefaultArg(0);
287 }
288 }
289 }
290}
Douglas Gregore37ac4f2008-04-13 21:30:24 +0000291
Douglas Gregorb48fe382008-10-31 09:07:45 +0000292/// isCurrentClassName - Determine whether the identifier II is the
293/// name of the class type currently being defined. In the case of
294/// nested classes, this will only return true if II is the name of
295/// the innermost class.
Argyrios Kyrtzidiseb83ecd2008-11-08 16:45:02 +0000296bool Sema::isCurrentClassName(const IdentifierInfo &II, Scope *,
297 const CXXScopeSpec *SS) {
Argyrios Kyrtzidisef6e6472008-11-08 17:17:31 +0000298 CXXRecordDecl *CurDecl;
299 if (SS) {
300 DeclContext *DC = static_cast<DeclContext*>(SS->getScopeRep());
301 CurDecl = dyn_cast_or_null<CXXRecordDecl>(DC);
302 } else
303 CurDecl = dyn_cast_or_null<CXXRecordDecl>(CurContext);
304
305 if (CurDecl)
Douglas Gregorb48fe382008-10-31 09:07:45 +0000306 return &II == CurDecl->getIdentifier();
307 else
308 return false;
309}
310
Douglas Gregore37ac4f2008-04-13 21:30:24 +0000311/// ActOnBaseSpecifier - Parsed a base specifier. A base specifier is
312/// one entry in the base class list of a class specifier, for
313/// example:
314/// class foo : public bar, virtual private baz {
315/// 'public bar' and 'virtual private baz' are each base-specifiers.
Douglas Gregorf8268ae2008-10-22 17:49:05 +0000316Sema::BaseResult
317Sema::ActOnBaseSpecifier(DeclTy *classdecl, SourceRange SpecifierRange,
318 bool Virtual, AccessSpecifier Access,
319 TypeTy *basetype, SourceLocation BaseLoc) {
Douglas Gregore37ac4f2008-04-13 21:30:24 +0000320 RecordDecl *Decl = (RecordDecl*)classdecl;
321 QualType BaseType = Context.getTypeDeclType((TypeDecl*)basetype);
322
323 // Base specifiers must be record types.
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000324 if (!BaseType->isRecordType())
325 return Diag(BaseLoc, diag::err_base_must_be_class) << SpecifierRange;
Douglas Gregore37ac4f2008-04-13 21:30:24 +0000326
327 // C++ [class.union]p1:
328 // A union shall not be used as a base class.
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000329 if (BaseType->isUnionType())
330 return Diag(BaseLoc, diag::err_union_as_base_class) << SpecifierRange;
Douglas Gregore37ac4f2008-04-13 21:30:24 +0000331
332 // C++ [class.union]p1:
333 // A union shall not have base classes.
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000334 if (Decl->isUnion())
335 return Diag(Decl->getLocation(), diag::err_base_clause_on_union)
336 << SpecifierRange;
Douglas Gregore37ac4f2008-04-13 21:30:24 +0000337
338 // C++ [class.derived]p2:
339 // The class-name in a base-specifier shall not be an incompletely
340 // defined class.
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000341 if (BaseType->isIncompleteType())
342 return Diag(BaseLoc, diag::err_incomplete_base_class) << SpecifierRange;
Douglas Gregore37ac4f2008-04-13 21:30:24 +0000343
Sebastian Redld93f0dd2008-11-06 15:59:35 +0000344 // If the base class is polymorphic, the new one is, too.
345 RecordDecl *BaseDecl = BaseType->getAsRecordType()->getDecl();
346 assert(BaseDecl && "Record type has no declaration");
347 BaseDecl = BaseDecl->getDefinition(Context);
348 assert(BaseDecl && "Base type is not incomplete, but has no definition");
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000349 if (cast<CXXRecordDecl>(BaseDecl)->isPolymorphic())
Sebastian Redld93f0dd2008-11-06 15:59:35 +0000350 cast<CXXRecordDecl>(Decl)->setPolymorphic(true);
Sebastian Redld93f0dd2008-11-06 15:59:35 +0000351
Douglas Gregorf8268ae2008-10-22 17:49:05 +0000352 // Create the base specifier.
Douglas Gregor57c856b2008-10-23 18:13:27 +0000353 return new CXXBaseSpecifier(SpecifierRange, Virtual,
354 BaseType->isClassType(), Access, BaseType);
Douglas Gregorf8268ae2008-10-22 17:49:05 +0000355}
Douglas Gregore37ac4f2008-04-13 21:30:24 +0000356
Douglas Gregorf8268ae2008-10-22 17:49:05 +0000357/// ActOnBaseSpecifiers - Attach the given base specifiers to the
358/// class, after checking whether there are any duplicate base
359/// classes.
360void Sema::ActOnBaseSpecifiers(DeclTy *ClassDecl, BaseTy **Bases,
361 unsigned NumBases) {
362 if (NumBases == 0)
363 return;
364
365 // Used to keep track of which base types we have already seen, so
366 // that we can properly diagnose redundant direct base types. Note
Douglas Gregor57c856b2008-10-23 18:13:27 +0000367 // that the key is always the unqualified canonical type of the base
368 // class.
Douglas Gregorf8268ae2008-10-22 17:49:05 +0000369 std::map<QualType, CXXBaseSpecifier*, QualTypeOrdering> KnownBaseTypes;
370
371 // Copy non-redundant base specifiers into permanent storage.
Douglas Gregor57c856b2008-10-23 18:13:27 +0000372 CXXBaseSpecifier **BaseSpecs = (CXXBaseSpecifier **)Bases;
373 unsigned NumGoodBases = 0;
374 for (unsigned idx = 0; idx < NumBases; ++idx) {
Douglas Gregorf8268ae2008-10-22 17:49:05 +0000375 QualType NewBaseType
Douglas Gregor57c856b2008-10-23 18:13:27 +0000376 = Context.getCanonicalType(BaseSpecs[idx]->getType());
377 NewBaseType = NewBaseType.getUnqualifiedType();
378
Douglas Gregorf8268ae2008-10-22 17:49:05 +0000379 if (KnownBaseTypes[NewBaseType]) {
380 // C++ [class.mi]p3:
381 // A class shall not be specified as a direct base class of a
382 // derived class more than once.
Douglas Gregor57c856b2008-10-23 18:13:27 +0000383 Diag(BaseSpecs[idx]->getSourceRange().getBegin(),
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000384 diag::err_duplicate_base_class)
Chris Lattnerd1625842008-11-24 06:25:27 +0000385 << KnownBaseTypes[NewBaseType]->getType()
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000386 << BaseSpecs[idx]->getSourceRange();
Douglas Gregor57c856b2008-10-23 18:13:27 +0000387
388 // Delete the duplicate base class specifier; we're going to
389 // overwrite its pointer later.
390 delete BaseSpecs[idx];
Douglas Gregorf8268ae2008-10-22 17:49:05 +0000391 } else {
392 // Okay, add this new base class.
Douglas Gregor57c856b2008-10-23 18:13:27 +0000393 KnownBaseTypes[NewBaseType] = BaseSpecs[idx];
394 BaseSpecs[NumGoodBases++] = BaseSpecs[idx];
Douglas Gregorf8268ae2008-10-22 17:49:05 +0000395 }
396 }
397
398 // Attach the remaining base class specifiers to the derived class.
399 CXXRecordDecl *Decl = (CXXRecordDecl*)ClassDecl;
Douglas Gregor57c856b2008-10-23 18:13:27 +0000400 Decl->setBases(BaseSpecs, NumGoodBases);
401
402 // Delete the remaining (good) base class specifiers, since their
403 // data has been copied into the CXXRecordDecl.
404 for (unsigned idx = 0; idx < NumGoodBases; ++idx)
405 delete BaseSpecs[idx];
Douglas Gregore37ac4f2008-04-13 21:30:24 +0000406}
Argyrios Kyrtzidis2d1c5d32008-04-27 13:50:30 +0000407
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000408//===----------------------------------------------------------------------===//
409// C++ class member Handling
410//===----------------------------------------------------------------------===//
411
412/// ActOnStartCXXClassDef - This is called at the start of a class/struct/union
413/// definition, when on C++.
414void Sema::ActOnStartCXXClassDef(Scope *S, DeclTy *D, SourceLocation LBrace) {
Douglas Gregorb48fe382008-10-31 09:07:45 +0000415 CXXRecordDecl *Dcl = cast<CXXRecordDecl>(static_cast<Decl *>(D));
Douglas Gregor44b43212008-12-11 16:49:14 +0000416 PushDeclContext(S, Dcl);
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000417 FieldCollector->StartClass();
Douglas Gregorb48fe382008-10-31 09:07:45 +0000418
419 if (Dcl->getIdentifier()) {
420 // C++ [class]p2:
421 // [...] The class-name is also inserted into the scope of the
422 // class itself; this is known as the injected-class-name. For
423 // purposes of access checking, the injected-class-name is treated
424 // as if it were a public member name.
Douglas Gregor510ffae2008-12-17 16:48:01 +0000425 PushOnScopeChains(CXXRecordDecl::Create(Context, Dcl->getTagKind(),
426 CurContext, Dcl->getLocation(),
427 Dcl->getIdentifier(), Dcl), S);
Douglas Gregorb48fe382008-10-31 09:07:45 +0000428 }
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000429}
430
431/// ActOnCXXMemberDeclarator - This is invoked when a C++ class member
432/// declarator is parsed. 'AS' is the access specifier, 'BW' specifies the
433/// bitfield width if there is one and 'InitExpr' specifies the initializer if
434/// any. 'LastInGroup' is non-null for cases where one declspec has multiple
435/// declarators on it.
436///
Douglas Gregor72b505b2008-12-16 21:30:33 +0000437/// FIXME: The note below is out-of-date.
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000438/// NOTE: Because of CXXFieldDecl's inability to be chained like ScopedDecls, if
439/// an instance field is declared, a new CXXFieldDecl is created but the method
440/// does *not* return it; it returns LastInGroup instead. The other C++ members
441/// (which are all ScopedDecls) are returned after appending them to
442/// LastInGroup.
443Sema::DeclTy *
444Sema::ActOnCXXMemberDeclarator(Scope *S, AccessSpecifier AS, Declarator &D,
445 ExprTy *BW, ExprTy *InitExpr,
446 DeclTy *LastInGroup) {
447 const DeclSpec &DS = D.getDeclSpec();
Douglas Gregor10bd3682008-11-17 22:58:34 +0000448 DeclarationName Name = GetNameForDeclarator(D);
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000449 Expr *BitWidth = static_cast<Expr*>(BW);
450 Expr *Init = static_cast<Expr*>(InitExpr);
451 SourceLocation Loc = D.getIdentifierLoc();
452
Sebastian Redl669d5d72008-11-14 23:42:31 +0000453 bool isFunc = D.isFunctionDeclarator();
454
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000455 // C++ 9.2p6: A member shall not be declared to have automatic storage
456 // duration (auto, register) or with the extern storage-class-specifier.
Sebastian Redl669d5d72008-11-14 23:42:31 +0000457 // C++ 7.1.1p8: The mutable specifier can be applied only to names of class
458 // data members and cannot be applied to names declared const or static,
459 // and cannot be applied to reference members.
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000460 switch (DS.getStorageClassSpec()) {
461 case DeclSpec::SCS_unspecified:
462 case DeclSpec::SCS_typedef:
463 case DeclSpec::SCS_static:
464 // FALL THROUGH.
465 break;
Sebastian Redl669d5d72008-11-14 23:42:31 +0000466 case DeclSpec::SCS_mutable:
467 if (isFunc) {
468 if (DS.getStorageClassSpecLoc().isValid())
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000469 Diag(DS.getStorageClassSpecLoc(), diag::err_mutable_function);
Sebastian Redl669d5d72008-11-14 23:42:31 +0000470 else
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000471 Diag(DS.getThreadSpecLoc(), diag::err_mutable_function);
472
Sebastian Redla11f42f2008-11-17 23:24:37 +0000473 // FIXME: It would be nicer if the keyword was ignored only for this
474 // declarator. Otherwise we could get follow-up errors.
Sebastian Redl669d5d72008-11-14 23:42:31 +0000475 D.getMutableDeclSpec().ClearStorageClassSpecs();
476 } else {
477 QualType T = GetTypeForDeclarator(D, S);
478 diag::kind err = static_cast<diag::kind>(0);
479 if (T->isReferenceType())
480 err = diag::err_mutable_reference;
481 else if (T.isConstQualified())
482 err = diag::err_mutable_const;
483 if (err != 0) {
484 if (DS.getStorageClassSpecLoc().isValid())
485 Diag(DS.getStorageClassSpecLoc(), err);
486 else
487 Diag(DS.getThreadSpecLoc(), err);
Sebastian Redla11f42f2008-11-17 23:24:37 +0000488 // FIXME: It would be nicer if the keyword was ignored only for this
489 // declarator. Otherwise we could get follow-up errors.
Sebastian Redl669d5d72008-11-14 23:42:31 +0000490 D.getMutableDeclSpec().ClearStorageClassSpecs();
491 }
492 }
493 break;
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000494 default:
495 if (DS.getStorageClassSpecLoc().isValid())
496 Diag(DS.getStorageClassSpecLoc(),
497 diag::err_storageclass_invalid_for_member);
498 else
499 Diag(DS.getThreadSpecLoc(), diag::err_storageclass_invalid_for_member);
500 D.getMutableDeclSpec().ClearStorageClassSpecs();
501 }
502
Argyrios Kyrtzidisd6caa9e2008-10-15 20:23:22 +0000503 if (!isFunc &&
504 D.getDeclSpec().getTypeSpecType() == DeclSpec::TST_typedef &&
505 D.getNumTypeObjects() == 0) {
Argyrios Kyrtzidisde933f02008-10-08 22:20:31 +0000506 // Check also for this case:
507 //
508 // typedef int f();
509 // f a;
510 //
511 Decl *TD = static_cast<Decl *>(DS.getTypeRep());
512 isFunc = Context.getTypeDeclType(cast<TypeDecl>(TD))->isFunctionType();
513 }
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000514
Sebastian Redl669d5d72008-11-14 23:42:31 +0000515 bool isInstField = ((DS.getStorageClassSpec() == DeclSpec::SCS_unspecified ||
516 DS.getStorageClassSpec() == DeclSpec::SCS_mutable) &&
Argyrios Kyrtzidisde933f02008-10-08 22:20:31 +0000517 !isFunc);
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000518
519 Decl *Member;
520 bool InvalidDecl = false;
521
522 if (isInstField)
Douglas Gregor44b43212008-12-11 16:49:14 +0000523 Member = static_cast<Decl*>(ActOnField(S, cast<CXXRecordDecl>(CurContext),
524 Loc, D, BitWidth));
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000525 else
Daniel Dunbar914701e2008-08-05 16:28:08 +0000526 Member = static_cast<Decl*>(ActOnDeclarator(S, D, LastInGroup));
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000527
528 if (!Member) return LastInGroup;
529
Douglas Gregor10bd3682008-11-17 22:58:34 +0000530 assert((Name || isInstField) && "No identifier for non-field ?");
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000531
532 // set/getAccess is not part of Decl's interface to avoid bloating it with C++
533 // specific methods. Use a wrapper class that can be used with all C++ class
534 // member decls.
535 CXXClassMemberWrapper(Member).setAccess(AS);
536
Douglas Gregor64bffa92008-11-05 16:20:31 +0000537 // C++ [dcl.init.aggr]p1:
538 // An aggregate is an array or a class (clause 9) with [...] no
539 // private or protected non-static data members (clause 11).
540 if (isInstField && (AS == AS_private || AS == AS_protected))
541 cast<CXXRecordDecl>(CurContext)->setAggregate(false);
542
Sebastian Redld93f0dd2008-11-06 15:59:35 +0000543 if (DS.isVirtualSpecified()) {
544 if (!isFunc || DS.getStorageClassSpec() == DeclSpec::SCS_static) {
545 Diag(DS.getVirtualSpecLoc(), diag::err_virtual_non_function);
546 InvalidDecl = true;
547 } else {
548 CXXRecordDecl *CurClass = cast<CXXRecordDecl>(CurContext);
549 CurClass->setAggregate(false);
550 CurClass->setPolymorphic(true);
551 }
552 }
Douglas Gregor64bffa92008-11-05 16:20:31 +0000553
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000554 if (BitWidth) {
555 // C++ 9.6p2: Only when declaring an unnamed bit-field may the
556 // constant-expression be a value equal to zero.
557 // FIXME: Check this.
558
559 if (D.isFunctionDeclarator()) {
560 // FIXME: Emit diagnostic about only constructors taking base initializers
561 // or something similar, when constructor support is in place.
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000562 Diag(Loc, diag::err_not_bitfield_type)
Anders Carlssona75023d2008-12-06 20:05:35 +0000563 << Name << BitWidth->getSourceRange();
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000564 InvalidDecl = true;
565
Argyrios Kyrtzidisde933f02008-10-08 22:20:31 +0000566 } else if (isInstField) {
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000567 // C++ 9.6p3: A bit-field shall have integral or enumeration type.
Argyrios Kyrtzidisde933f02008-10-08 22:20:31 +0000568 if (!cast<FieldDecl>(Member)->getType()->isIntegralType()) {
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000569 Diag(Loc, diag::err_not_integral_type_bitfield)
Anders Carlssona75023d2008-12-06 20:05:35 +0000570 << Name << BitWidth->getSourceRange();
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000571 InvalidDecl = true;
572 }
573
Argyrios Kyrtzidisde933f02008-10-08 22:20:31 +0000574 } else if (isa<FunctionDecl>(Member)) {
575 // A function typedef ("typedef int f(); f a;").
576 // C++ 9.6p3: A bit-field shall have integral or enumeration type.
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000577 Diag(Loc, diag::err_not_integral_type_bitfield)
Anders Carlssona75023d2008-12-06 20:05:35 +0000578 << Name << BitWidth->getSourceRange();
Argyrios Kyrtzidisde933f02008-10-08 22:20:31 +0000579 InvalidDecl = true;
580
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000581 } else if (isa<TypedefDecl>(Member)) {
582 // "cannot declare 'A' to be a bit-field type"
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000583 Diag(Loc, diag::err_not_bitfield_type)
Anders Carlssona75023d2008-12-06 20:05:35 +0000584 << Name << BitWidth->getSourceRange();
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000585 InvalidDecl = true;
586
587 } else {
588 assert(isa<CXXClassVarDecl>(Member) &&
589 "Didn't we cover all member kinds?");
590 // C++ 9.6p3: A bit-field shall not be a static member.
591 // "static member 'A' cannot be a bit-field"
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000592 Diag(Loc, diag::err_static_not_bitfield)
Anders Carlssona75023d2008-12-06 20:05:35 +0000593 << Name << BitWidth->getSourceRange();
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000594 InvalidDecl = true;
595 }
596 }
597
598 if (Init) {
599 // C++ 9.2p4: A member-declarator can contain a constant-initializer only
600 // if it declares a static member of const integral or const enumeration
601 // type.
Chris Lattnerb77792e2008-07-26 22:17:49 +0000602 if (CXXClassVarDecl *CVD = dyn_cast<CXXClassVarDecl>(Member)) {
603 // ...static member of...
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000604 CVD->setInit(Init);
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000605 // ...const integral or const enumeration type.
Chris Lattnerb77792e2008-07-26 22:17:49 +0000606 if (Context.getCanonicalType(CVD->getType()).isConstQualified() &&
607 CVD->getType()->isIntegralType()) {
608 // constant-initializer
609 if (CheckForConstantInitializer(Init, CVD->getType()))
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000610 InvalidDecl = true;
611
612 } else {
613 // not const integral.
Chris Lattnerd3a94e22008-11-20 06:06:08 +0000614 Diag(Loc, diag::err_member_initialization)
Anders Carlssona75023d2008-12-06 20:05:35 +0000615 << Name << Init->getSourceRange();
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000616 InvalidDecl = true;
617 }
618
619 } else {
620 // not static member.
Chris Lattnerd3a94e22008-11-20 06:06:08 +0000621 Diag(Loc, diag::err_member_initialization)
Anders Carlssona75023d2008-12-06 20:05:35 +0000622 << Name << Init->getSourceRange();
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000623 InvalidDecl = true;
624 }
625 }
626
627 if (InvalidDecl)
628 Member->setInvalidDecl();
629
630 if (isInstField) {
Douglas Gregor44b43212008-12-11 16:49:14 +0000631 FieldCollector->Add(cast<FieldDecl>(Member));
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000632 return LastInGroup;
633 }
634 return Member;
635}
636
Douglas Gregor7ad83902008-11-05 04:29:56 +0000637/// ActOnMemInitializer - Handle a C++ member initializer.
638Sema::MemInitResult
639Sema::ActOnMemInitializer(DeclTy *ConstructorD,
640 Scope *S,
641 IdentifierInfo *MemberOrBase,
642 SourceLocation IdLoc,
643 SourceLocation LParenLoc,
644 ExprTy **Args, unsigned NumArgs,
645 SourceLocation *CommaLocs,
646 SourceLocation RParenLoc) {
647 CXXConstructorDecl *Constructor
648 = dyn_cast<CXXConstructorDecl>((Decl*)ConstructorD);
649 if (!Constructor) {
650 // The user wrote a constructor initializer on a function that is
651 // not a C++ constructor. Ignore the error for now, because we may
652 // have more member initializers coming; we'll diagnose it just
653 // once in ActOnMemInitializers.
654 return true;
655 }
656
657 CXXRecordDecl *ClassDecl = Constructor->getParent();
658
659 // C++ [class.base.init]p2:
660 // Names in a mem-initializer-id are looked up in the scope of the
661 // constructor’s class and, if not found in that scope, are looked
662 // up in the scope containing the constructor’s
663 // definition. [Note: if the constructor’s class contains a member
664 // with the same name as a direct or virtual base class of the
665 // class, a mem-initializer-id naming the member or base class and
666 // composed of a single identifier refers to the class member. A
667 // mem-initializer-id for the hidden base class may be specified
668 // using a qualified name. ]
669 // Look for a member, first.
Douglas Gregor44b43212008-12-11 16:49:14 +0000670 FieldDecl *Member = 0;
671 DeclContext::lookup_result Result = ClassDecl->lookup(Context, MemberOrBase);
672 if (Result.first != Result.second)
673 Member = dyn_cast<FieldDecl>(*Result.first);
Douglas Gregor7ad83902008-11-05 04:29:56 +0000674
675 // FIXME: Handle members of an anonymous union.
676
677 if (Member) {
678 // FIXME: Perform direct initialization of the member.
679 return new CXXBaseOrMemberInitializer(Member, (Expr **)Args, NumArgs);
680 }
681
682 // It didn't name a member, so see if it names a class.
Argyrios Kyrtzidiseb83ecd2008-11-08 16:45:02 +0000683 TypeTy *BaseTy = isTypeName(*MemberOrBase, S, 0/*SS*/);
Douglas Gregor7ad83902008-11-05 04:29:56 +0000684 if (!BaseTy)
Chris Lattner3c73c412008-11-19 08:23:25 +0000685 return Diag(IdLoc, diag::err_mem_init_not_member_or_class)
686 << MemberOrBase << SourceRange(IdLoc, RParenLoc);
Douglas Gregor7ad83902008-11-05 04:29:56 +0000687
688 QualType BaseType = Context.getTypeDeclType((TypeDecl *)BaseTy);
689 if (!BaseType->isRecordType())
Chris Lattner3c73c412008-11-19 08:23:25 +0000690 return Diag(IdLoc, diag::err_base_init_does_not_name_class)
Chris Lattner08631c52008-11-23 21:45:46 +0000691 << BaseType << SourceRange(IdLoc, RParenLoc);
Douglas Gregor7ad83902008-11-05 04:29:56 +0000692
693 // C++ [class.base.init]p2:
694 // [...] Unless the mem-initializer-id names a nonstatic data
695 // member of the constructor’s class or a direct or virtual base
696 // of that class, the mem-initializer is ill-formed. A
697 // mem-initializer-list can initialize a base class using any
698 // name that denotes that base class type.
699
700 // First, check for a direct base class.
701 const CXXBaseSpecifier *DirectBaseSpec = 0;
702 for (CXXRecordDecl::base_class_const_iterator Base = ClassDecl->bases_begin();
703 Base != ClassDecl->bases_end(); ++Base) {
704 if (Context.getCanonicalType(BaseType).getUnqualifiedType() ==
705 Context.getCanonicalType(Base->getType()).getUnqualifiedType()) {
706 // We found a direct base of this type. That's what we're
707 // initializing.
708 DirectBaseSpec = &*Base;
709 break;
710 }
711 }
712
713 // Check for a virtual base class.
714 // FIXME: We might be able to short-circuit this if we know in
715 // advance that there are no virtual bases.
716 const CXXBaseSpecifier *VirtualBaseSpec = 0;
717 if (!DirectBaseSpec || !DirectBaseSpec->isVirtual()) {
718 // We haven't found a base yet; search the class hierarchy for a
719 // virtual base class.
720 BasePaths Paths(/*FindAmbiguities=*/true, /*RecordPaths=*/true,
721 /*DetectVirtual=*/false);
722 if (IsDerivedFrom(Context.getTypeDeclType(ClassDecl), BaseType, Paths)) {
723 for (BasePaths::paths_iterator Path = Paths.begin();
724 Path != Paths.end(); ++Path) {
725 if (Path->back().Base->isVirtual()) {
726 VirtualBaseSpec = Path->back().Base;
727 break;
728 }
729 }
730 }
731 }
732
733 // C++ [base.class.init]p2:
734 // If a mem-initializer-id is ambiguous because it designates both
735 // a direct non-virtual base class and an inherited virtual base
736 // class, the mem-initializer is ill-formed.
737 if (DirectBaseSpec && VirtualBaseSpec)
Chris Lattner3c73c412008-11-19 08:23:25 +0000738 return Diag(IdLoc, diag::err_base_init_direct_and_virtual)
739 << MemberOrBase << SourceRange(IdLoc, RParenLoc);
Douglas Gregor7ad83902008-11-05 04:29:56 +0000740
741 return new CXXBaseOrMemberInitializer(BaseType, (Expr **)Args, NumArgs);
742}
743
744
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000745void Sema::ActOnFinishCXXMemberSpecification(Scope* S, SourceLocation RLoc,
746 DeclTy *TagDecl,
747 SourceLocation LBrac,
748 SourceLocation RBrac) {
749 ActOnFields(S, RLoc, TagDecl,
750 (DeclTy**)FieldCollector->getCurFields(),
Daniel Dunbar1bfe1c22008-10-03 02:03:53 +0000751 FieldCollector->getCurNumFields(), LBrac, RBrac, 0);
Douglas Gregor61366e92008-12-24 00:01:03 +0000752 AddImplicitlyDeclaredMembersToClass(cast<CXXRecordDecl>((Decl*)TagDecl));
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000753}
754
Douglas Gregor396b7cd2008-11-03 17:51:48 +0000755/// AddImplicitlyDeclaredMembersToClass - Adds any implicitly-declared
756/// special functions, such as the default constructor, copy
757/// constructor, or destructor, to the given C++ class (C++
758/// [special]p1). This routine can only be executed just before the
759/// definition of the class is complete.
760void Sema::AddImplicitlyDeclaredMembersToClass(CXXRecordDecl *ClassDecl) {
Douglas Gregor2e1cd422008-11-17 14:58:09 +0000761 QualType ClassType = Context.getTypeDeclType(ClassDecl);
762 ClassType = Context.getCanonicalType(ClassType);
763
Douglas Gregor396b7cd2008-11-03 17:51:48 +0000764 if (!ClassDecl->hasUserDeclaredConstructor()) {
765 // C++ [class.ctor]p5:
766 // A default constructor for a class X is a constructor of class X
767 // that can be called without an argument. If there is no
768 // user-declared constructor for class X, a default constructor is
769 // implicitly declared. An implicitly-declared default constructor
770 // is an inline public member of its class.
Douglas Gregor2e1cd422008-11-17 14:58:09 +0000771 DeclarationName Name
772 = Context.DeclarationNames.getCXXConstructorName(ClassType);
Douglas Gregor396b7cd2008-11-03 17:51:48 +0000773 CXXConstructorDecl *DefaultCon =
774 CXXConstructorDecl::Create(Context, ClassDecl,
Douglas Gregor2e1cd422008-11-17 14:58:09 +0000775 ClassDecl->getLocation(), Name,
Douglas Gregor396b7cd2008-11-03 17:51:48 +0000776 Context.getFunctionType(Context.VoidTy,
777 0, 0, false, 0),
778 /*isExplicit=*/false,
779 /*isInline=*/true,
780 /*isImplicitlyDeclared=*/true);
781 DefaultCon->setAccess(AS_public);
Douglas Gregor9e7d9de2008-12-15 21:24:18 +0000782 ClassDecl->addDecl(Context, DefaultCon);
783
784 // Notify the class that we've added a constructor.
785 ClassDecl->addedConstructor(Context, DefaultCon);
Douglas Gregor396b7cd2008-11-03 17:51:48 +0000786 }
787
788 if (!ClassDecl->hasUserDeclaredCopyConstructor()) {
789 // C++ [class.copy]p4:
790 // If the class definition does not explicitly declare a copy
791 // constructor, one is declared implicitly.
792
793 // C++ [class.copy]p5:
794 // The implicitly-declared copy constructor for a class X will
795 // have the form
796 //
797 // X::X(const X&)
798 //
799 // if
800 bool HasConstCopyConstructor = true;
801
802 // -- each direct or virtual base class B of X has a copy
803 // constructor whose first parameter is of type const B& or
804 // const volatile B&, and
805 for (CXXRecordDecl::base_class_iterator Base = ClassDecl->bases_begin();
806 HasConstCopyConstructor && Base != ClassDecl->bases_end(); ++Base) {
807 const CXXRecordDecl *BaseClassDecl
808 = cast<CXXRecordDecl>(Base->getType()->getAsRecordType()->getDecl());
809 HasConstCopyConstructor
810 = BaseClassDecl->hasConstCopyConstructor(Context);
811 }
812
813 // -- for all the nonstatic data members of X that are of a
814 // class type M (or array thereof), each such class type
815 // has a copy constructor whose first parameter is of type
816 // const M& or const volatile M&.
817 for (CXXRecordDecl::field_iterator Field = ClassDecl->field_begin();
818 HasConstCopyConstructor && Field != ClassDecl->field_end(); ++Field) {
819 QualType FieldType = (*Field)->getType();
820 if (const ArrayType *Array = Context.getAsArrayType(FieldType))
821 FieldType = Array->getElementType();
822 if (const RecordType *FieldClassType = FieldType->getAsRecordType()) {
823 const CXXRecordDecl *FieldClassDecl
824 = cast<CXXRecordDecl>(FieldClassType->getDecl());
825 HasConstCopyConstructor
826 = FieldClassDecl->hasConstCopyConstructor(Context);
827 }
828 }
829
830 // Otherwise, the implicitly declared copy constructor will have
831 // the form
832 //
833 // X::X(X&)
834 QualType ArgType = Context.getTypeDeclType(ClassDecl);
835 if (HasConstCopyConstructor)
836 ArgType = ArgType.withConst();
837 ArgType = Context.getReferenceType(ArgType);
838
839 // An implicitly-declared copy constructor is an inline public
840 // member of its class.
Douglas Gregor2e1cd422008-11-17 14:58:09 +0000841 DeclarationName Name
842 = Context.DeclarationNames.getCXXConstructorName(ClassType);
Douglas Gregor396b7cd2008-11-03 17:51:48 +0000843 CXXConstructorDecl *CopyConstructor
844 = CXXConstructorDecl::Create(Context, ClassDecl,
Douglas Gregor2e1cd422008-11-17 14:58:09 +0000845 ClassDecl->getLocation(), Name,
Douglas Gregor396b7cd2008-11-03 17:51:48 +0000846 Context.getFunctionType(Context.VoidTy,
847 &ArgType, 1,
848 false, 0),
849 /*isExplicit=*/false,
850 /*isInline=*/true,
851 /*isImplicitlyDeclared=*/true);
852 CopyConstructor->setAccess(AS_public);
853
854 // Add the parameter to the constructor.
855 ParmVarDecl *FromParam = ParmVarDecl::Create(Context, CopyConstructor,
856 ClassDecl->getLocation(),
857 /*IdentifierInfo=*/0,
858 ArgType, VarDecl::None, 0, 0);
859 CopyConstructor->setParams(&FromParam, 1);
860
Douglas Gregor9e7d9de2008-12-15 21:24:18 +0000861 ClassDecl->addedConstructor(Context, CopyConstructor);
Douglas Gregor3fc749d2008-12-23 00:26:44 +0000862 ClassDecl->addDecl(Context, CopyConstructor);
Douglas Gregor396b7cd2008-11-03 17:51:48 +0000863 }
864
Douglas Gregor9e7d9de2008-12-15 21:24:18 +0000865 if (!ClassDecl->hasUserDeclaredDestructor()) {
Douglas Gregor42a552f2008-11-05 20:51:48 +0000866 // C++ [class.dtor]p2:
867 // If a class has no user-declared destructor, a destructor is
868 // declared implicitly. An implicitly-declared destructor is an
869 // inline public member of its class.
Douglas Gregor2e1cd422008-11-17 14:58:09 +0000870 DeclarationName Name
871 = Context.DeclarationNames.getCXXDestructorName(ClassType);
Douglas Gregor42a552f2008-11-05 20:51:48 +0000872 CXXDestructorDecl *Destructor
873 = CXXDestructorDecl::Create(Context, ClassDecl,
Douglas Gregor2e1cd422008-11-17 14:58:09 +0000874 ClassDecl->getLocation(), Name,
Douglas Gregor42a552f2008-11-05 20:51:48 +0000875 Context.getFunctionType(Context.VoidTy,
876 0, 0, false, 0),
877 /*isInline=*/true,
878 /*isImplicitlyDeclared=*/true);
879 Destructor->setAccess(AS_public);
Douglas Gregor9e7d9de2008-12-15 21:24:18 +0000880 ClassDecl->addDecl(Context, Destructor);
Douglas Gregor42a552f2008-11-05 20:51:48 +0000881 }
882
Douglas Gregor396b7cd2008-11-03 17:51:48 +0000883 // FIXME: Implicit copy assignment operator
884}
885
Argyrios Kyrtzidis5b7f0c82008-08-09 00:39:29 +0000886void Sema::ActOnFinishCXXClassDef(DeclTy *D) {
Argyrios Kyrtzidisa4755c62008-08-09 00:58:37 +0000887 CXXRecordDecl *Rec = cast<CXXRecordDecl>(static_cast<Decl *>(D));
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000888 FieldCollector->FinishClass();
889 PopDeclContext();
Argyrios Kyrtzidisa4755c62008-08-09 00:58:37 +0000890
891 // Everything, including inline method definitions, have been parsed.
892 // Let the consumer know of the new TagDecl definition.
893 Consumer.HandleTagDeclDefinition(Rec);
Argyrios Kyrtzidis07952322008-07-01 10:37:29 +0000894}
Argyrios Kyrtzidis2d1c5d32008-04-27 13:50:30 +0000895
Douglas Gregor72b505b2008-12-16 21:30:33 +0000896/// ActOnStartDelayedCXXMethodDeclaration - We have completed
897/// parsing a top-level (non-nested) C++ class, and we are now
898/// parsing those parts of the given Method declaration that could
899/// not be parsed earlier (C++ [class.mem]p2), such as default
900/// arguments. This action should enter the scope of the given
901/// Method declaration as if we had just parsed the qualified method
902/// name. However, it should not bring the parameters into scope;
903/// that will be performed by ActOnDelayedCXXMethodParameter.
904void Sema::ActOnStartDelayedCXXMethodDeclaration(Scope *S, DeclTy *Method) {
905 CXXScopeSpec SS;
906 SS.setScopeRep(((FunctionDecl*)Method)->getDeclContext());
907 ActOnCXXEnterDeclaratorScope(S, SS);
908}
909
910/// ActOnDelayedCXXMethodParameter - We've already started a delayed
911/// C++ method declaration. We're (re-)introducing the given
912/// function parameter into scope for use in parsing later parts of
913/// the method declaration. For example, we could see an
914/// ActOnParamDefaultArgument event for this parameter.
915void Sema::ActOnDelayedCXXMethodParameter(Scope *S, DeclTy *ParamD) {
916 ParmVarDecl *Param = (ParmVarDecl*)ParamD;
Douglas Gregor61366e92008-12-24 00:01:03 +0000917
918 // If this parameter has an unparsed default argument, clear it out
919 // to make way for the parsed default argument.
920 if (Param->hasUnparsedDefaultArg())
921 Param->setDefaultArg(0);
922
Douglas Gregor72b505b2008-12-16 21:30:33 +0000923 S->AddDecl(Param);
924 if (Param->getDeclName())
925 IdResolver.AddDecl(Param);
926}
927
928/// ActOnFinishDelayedCXXMethodDeclaration - We have finished
929/// processing the delayed method declaration for Method. The method
930/// declaration is now considered finished. There may be a separate
931/// ActOnStartOfFunctionDef action later (not necessarily
932/// immediately!) for this method, if it was also defined inside the
933/// class body.
934void Sema::ActOnFinishDelayedCXXMethodDeclaration(Scope *S, DeclTy *MethodD) {
935 FunctionDecl *Method = (FunctionDecl*)MethodD;
936 CXXScopeSpec SS;
937 SS.setScopeRep(Method->getDeclContext());
938 ActOnCXXExitDeclaratorScope(S, SS);
939
940 // Now that we have our default arguments, check the constructor
941 // again. It could produce additional diagnostics or affect whether
942 // the class has implicitly-declared destructors, among other
943 // things.
944 if (CXXConstructorDecl *Constructor = dyn_cast<CXXConstructorDecl>(Method)) {
945 if (CheckConstructor(Constructor))
946 Constructor->setInvalidDecl();
947 }
948
949 // Check the default arguments, which we may have added.
950 if (!Method->isInvalidDecl())
951 CheckCXXDefaultArguments(Method);
952}
953
Douglas Gregor42a552f2008-11-05 20:51:48 +0000954/// CheckConstructorDeclarator - Called by ActOnDeclarator to check
Douglas Gregor72b505b2008-12-16 21:30:33 +0000955/// the well-formedness of the constructor declarator @p D with type @p
Douglas Gregor42a552f2008-11-05 20:51:48 +0000956/// R. If there are any errors in the declarator, this routine will
957/// emit diagnostics and return true. Otherwise, it will return
958/// false. Either way, the type @p R will be updated to reflect a
959/// well-formed type for the constructor.
960bool Sema::CheckConstructorDeclarator(Declarator &D, QualType &R,
961 FunctionDecl::StorageClass& SC) {
962 bool isVirtual = D.getDeclSpec().isVirtualSpecified();
963 bool isInvalid = false;
964
965 // C++ [class.ctor]p3:
966 // A constructor shall not be virtual (10.3) or static (9.4). A
967 // constructor can be invoked for a const, volatile or const
968 // volatile object. A constructor shall not be declared const,
969 // volatile, or const volatile (9.3.2).
970 if (isVirtual) {
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000971 Diag(D.getIdentifierLoc(), diag::err_constructor_cannot_be)
972 << "virtual" << SourceRange(D.getDeclSpec().getVirtualSpecLoc())
973 << SourceRange(D.getIdentifierLoc());
Douglas Gregor42a552f2008-11-05 20:51:48 +0000974 isInvalid = true;
975 }
976 if (SC == FunctionDecl::Static) {
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000977 Diag(D.getIdentifierLoc(), diag::err_constructor_cannot_be)
978 << "static" << SourceRange(D.getDeclSpec().getStorageClassSpecLoc())
979 << SourceRange(D.getIdentifierLoc());
Douglas Gregor42a552f2008-11-05 20:51:48 +0000980 isInvalid = true;
981 SC = FunctionDecl::None;
982 }
983 if (D.getDeclSpec().hasTypeSpecifier()) {
984 // Constructors don't have return types, but the parser will
985 // happily parse something like:
986 //
987 // class X {
988 // float X(float);
989 // };
990 //
991 // The return type will be eliminated later.
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000992 Diag(D.getIdentifierLoc(), diag::err_constructor_return_type)
993 << SourceRange(D.getDeclSpec().getTypeSpecTypeLoc())
994 << SourceRange(D.getIdentifierLoc());
Douglas Gregor42a552f2008-11-05 20:51:48 +0000995 }
996 if (R->getAsFunctionTypeProto()->getTypeQuals() != 0) {
997 DeclaratorChunk::FunctionTypeInfo &FTI = D.getTypeObject(0).Fun;
998 if (FTI.TypeQuals & QualType::Const)
Chris Lattnerfa25bbb2008-11-19 05:08:23 +0000999 Diag(D.getIdentifierLoc(), diag::err_invalid_qualified_constructor)
1000 << "const" << SourceRange(D.getIdentifierLoc());
Douglas Gregor42a552f2008-11-05 20:51:48 +00001001 if (FTI.TypeQuals & QualType::Volatile)
Chris Lattnerfa25bbb2008-11-19 05:08:23 +00001002 Diag(D.getIdentifierLoc(), diag::err_invalid_qualified_constructor)
1003 << "volatile" << SourceRange(D.getIdentifierLoc());
Douglas Gregor42a552f2008-11-05 20:51:48 +00001004 if (FTI.TypeQuals & QualType::Restrict)
Chris Lattnerfa25bbb2008-11-19 05:08:23 +00001005 Diag(D.getIdentifierLoc(), diag::err_invalid_qualified_constructor)
1006 << "restrict" << SourceRange(D.getIdentifierLoc());
Douglas Gregor42a552f2008-11-05 20:51:48 +00001007 }
1008
1009 // Rebuild the function type "R" without any type qualifiers (in
1010 // case any of the errors above fired) and with "void" as the
1011 // return type, since constructors don't have return types. We
1012 // *always* have to do this, because GetTypeForDeclarator will
1013 // put in a result type of "int" when none was specified.
1014 const FunctionTypeProto *Proto = R->getAsFunctionTypeProto();
1015 R = Context.getFunctionType(Context.VoidTy, Proto->arg_type_begin(),
1016 Proto->getNumArgs(),
1017 Proto->isVariadic(),
1018 0);
1019
1020 return isInvalid;
1021}
1022
Douglas Gregor72b505b2008-12-16 21:30:33 +00001023/// CheckConstructor - Checks a fully-formed constructor for
1024/// well-formedness, issuing any diagnostics required. Returns true if
1025/// the constructor declarator is invalid.
1026bool Sema::CheckConstructor(CXXConstructorDecl *Constructor) {
1027 if (Constructor->isInvalidDecl())
1028 return true;
1029
1030 CXXRecordDecl *ClassDecl = cast<CXXRecordDecl>(Constructor->getDeclContext());
1031 bool Invalid = false;
1032
1033 // C++ [class.copy]p3:
1034 // A declaration of a constructor for a class X is ill-formed if
1035 // its first parameter is of type (optionally cv-qualified) X and
1036 // either there are no other parameters or else all other
1037 // parameters have default arguments.
1038 if ((Constructor->getNumParams() == 1) ||
1039 (Constructor->getNumParams() > 1 &&
1040 Constructor->getParamDecl(1)->getDefaultArg() != 0)) {
1041 QualType ParamType = Constructor->getParamDecl(0)->getType();
1042 QualType ClassTy = Context.getTagDeclType(ClassDecl);
1043 if (Context.getCanonicalType(ParamType).getUnqualifiedType() == ClassTy) {
1044 Diag(Constructor->getLocation(), diag::err_constructor_byvalue_arg)
1045 << SourceRange(Constructor->getParamDecl(0)->getLocation());
1046 Invalid = true;
1047 }
1048 }
1049
1050 // Notify the class that we've added a constructor.
1051 ClassDecl->addedConstructor(Context, Constructor);
1052
1053 return Invalid;
1054}
1055
Douglas Gregor42a552f2008-11-05 20:51:48 +00001056/// CheckDestructorDeclarator - Called by ActOnDeclarator to check
1057/// the well-formednes of the destructor declarator @p D with type @p
1058/// R. If there are any errors in the declarator, this routine will
1059/// emit diagnostics and return true. Otherwise, it will return
1060/// false. Either way, the type @p R will be updated to reflect a
1061/// well-formed type for the destructor.
1062bool Sema::CheckDestructorDeclarator(Declarator &D, QualType &R,
1063 FunctionDecl::StorageClass& SC) {
1064 bool isInvalid = false;
1065
1066 // C++ [class.dtor]p1:
1067 // [...] A typedef-name that names a class is a class-name
1068 // (7.1.3); however, a typedef-name that names a class shall not
1069 // be used as the identifier in the declarator for a destructor
1070 // declaration.
1071 TypeDecl *DeclaratorTypeD = (TypeDecl *)D.getDeclaratorIdType();
1072 if (const TypedefDecl *TypedefD = dyn_cast<TypedefDecl>(DeclaratorTypeD)) {
Chris Lattnerfa25bbb2008-11-19 05:08:23 +00001073 Diag(D.getIdentifierLoc(), diag::err_destructor_typedef_name)
Chris Lattnerd9d22dd2008-11-24 05:29:24 +00001074 << TypedefD->getDeclName();
Douglas Gregor55c60952008-11-10 14:41:22 +00001075 isInvalid = true;
Douglas Gregor42a552f2008-11-05 20:51:48 +00001076 }
1077
1078 // C++ [class.dtor]p2:
1079 // A destructor is used to destroy objects of its class type. A
1080 // destructor takes no parameters, and no return type can be
1081 // specified for it (not even void). The address of a destructor
1082 // shall not be taken. A destructor shall not be static. A
1083 // destructor can be invoked for a const, volatile or const
1084 // volatile object. A destructor shall not be declared const,
1085 // volatile or const volatile (9.3.2).
1086 if (SC == FunctionDecl::Static) {
Chris Lattnerfa25bbb2008-11-19 05:08:23 +00001087 Diag(D.getIdentifierLoc(), diag::err_destructor_cannot_be)
1088 << "static" << SourceRange(D.getDeclSpec().getStorageClassSpecLoc())
1089 << SourceRange(D.getIdentifierLoc());
Douglas Gregor42a552f2008-11-05 20:51:48 +00001090 isInvalid = true;
1091 SC = FunctionDecl::None;
1092 }
1093 if (D.getDeclSpec().hasTypeSpecifier()) {
1094 // Destructors don't have return types, but the parser will
1095 // happily parse something like:
1096 //
1097 // class X {
1098 // float ~X();
1099 // };
1100 //
1101 // The return type will be eliminated later.
Chris Lattnerfa25bbb2008-11-19 05:08:23 +00001102 Diag(D.getIdentifierLoc(), diag::err_destructor_return_type)
1103 << SourceRange(D.getDeclSpec().getTypeSpecTypeLoc())
1104 << SourceRange(D.getIdentifierLoc());
Douglas Gregor42a552f2008-11-05 20:51:48 +00001105 }
1106 if (R->getAsFunctionTypeProto()->getTypeQuals() != 0) {
1107 DeclaratorChunk::FunctionTypeInfo &FTI = D.getTypeObject(0).Fun;
1108 if (FTI.TypeQuals & QualType::Const)
Chris Lattnerfa25bbb2008-11-19 05:08:23 +00001109 Diag(D.getIdentifierLoc(), diag::err_invalid_qualified_destructor)
1110 << "const" << SourceRange(D.getIdentifierLoc());
Douglas Gregor42a552f2008-11-05 20:51:48 +00001111 if (FTI.TypeQuals & QualType::Volatile)
Chris Lattnerfa25bbb2008-11-19 05:08:23 +00001112 Diag(D.getIdentifierLoc(), diag::err_invalid_qualified_destructor)
1113 << "volatile" << SourceRange(D.getIdentifierLoc());
Douglas Gregor42a552f2008-11-05 20:51:48 +00001114 if (FTI.TypeQuals & QualType::Restrict)
Chris Lattnerfa25bbb2008-11-19 05:08:23 +00001115 Diag(D.getIdentifierLoc(), diag::err_invalid_qualified_destructor)
1116 << "restrict" << SourceRange(D.getIdentifierLoc());
Douglas Gregor42a552f2008-11-05 20:51:48 +00001117 }
1118
1119 // Make sure we don't have any parameters.
1120 if (R->getAsFunctionTypeProto()->getNumArgs() > 0) {
1121 Diag(D.getIdentifierLoc(), diag::err_destructor_with_params);
1122
1123 // Delete the parameters.
1124 DeclaratorChunk::FunctionTypeInfo &FTI = D.getTypeObject(0).Fun;
1125 if (FTI.NumArgs) {
1126 delete [] FTI.ArgInfo;
1127 FTI.NumArgs = 0;
1128 FTI.ArgInfo = 0;
1129 }
1130 }
1131
1132 // Make sure the destructor isn't variadic.
1133 if (R->getAsFunctionTypeProto()->isVariadic())
1134 Diag(D.getIdentifierLoc(), diag::err_destructor_variadic);
1135
1136 // Rebuild the function type "R" without any type qualifiers or
1137 // parameters (in case any of the errors above fired) and with
1138 // "void" as the return type, since destructors don't have return
1139 // types. We *always* have to do this, because GetTypeForDeclarator
1140 // will put in a result type of "int" when none was specified.
1141 R = Context.getFunctionType(Context.VoidTy, 0, 0, false, 0);
1142
1143 return isInvalid;
1144}
1145
Douglas Gregor2f1bc522008-11-07 20:08:42 +00001146/// CheckConversionDeclarator - Called by ActOnDeclarator to check the
1147/// well-formednes of the conversion function declarator @p D with
1148/// type @p R. If there are any errors in the declarator, this routine
1149/// will emit diagnostics and return true. Otherwise, it will return
1150/// false. Either way, the type @p R will be updated to reflect a
1151/// well-formed type for the conversion operator.
1152bool Sema::CheckConversionDeclarator(Declarator &D, QualType &R,
1153 FunctionDecl::StorageClass& SC) {
1154 bool isInvalid = false;
1155
1156 // C++ [class.conv.fct]p1:
1157 // Neither parameter types nor return type can be specified. The
1158 // type of a conversion function (8.3.5) is “function taking no
1159 // parameter returning conversion-type-id.”
1160 if (SC == FunctionDecl::Static) {
Chris Lattnerfa25bbb2008-11-19 05:08:23 +00001161 Diag(D.getIdentifierLoc(), diag::err_conv_function_not_member)
1162 << "static" << SourceRange(D.getDeclSpec().getStorageClassSpecLoc())
1163 << SourceRange(D.getIdentifierLoc());
Douglas Gregor2f1bc522008-11-07 20:08:42 +00001164 isInvalid = true;
1165 SC = FunctionDecl::None;
1166 }
1167 if (D.getDeclSpec().hasTypeSpecifier()) {
1168 // Conversion functions don't have return types, but the parser will
1169 // happily parse something like:
1170 //
1171 // class X {
1172 // float operator bool();
1173 // };
1174 //
1175 // The return type will be changed later anyway.
Chris Lattnerfa25bbb2008-11-19 05:08:23 +00001176 Diag(D.getIdentifierLoc(), diag::err_conv_function_return_type)
1177 << SourceRange(D.getDeclSpec().getTypeSpecTypeLoc())
1178 << SourceRange(D.getIdentifierLoc());
Douglas Gregor2f1bc522008-11-07 20:08:42 +00001179 }
1180
1181 // Make sure we don't have any parameters.
1182 if (R->getAsFunctionTypeProto()->getNumArgs() > 0) {
1183 Diag(D.getIdentifierLoc(), diag::err_conv_function_with_params);
1184
1185 // Delete the parameters.
1186 DeclaratorChunk::FunctionTypeInfo &FTI = D.getTypeObject(0).Fun;
1187 if (FTI.NumArgs) {
1188 delete [] FTI.ArgInfo;
1189 FTI.NumArgs = 0;
1190 FTI.ArgInfo = 0;
1191 }
1192 }
1193
1194 // Make sure the conversion function isn't variadic.
1195 if (R->getAsFunctionTypeProto()->isVariadic())
1196 Diag(D.getIdentifierLoc(), diag::err_conv_function_variadic);
1197
1198 // C++ [class.conv.fct]p4:
1199 // The conversion-type-id shall not represent a function type nor
1200 // an array type.
1201 QualType ConvType = QualType::getFromOpaquePtr(D.getDeclaratorIdType());
1202 if (ConvType->isArrayType()) {
1203 Diag(D.getIdentifierLoc(), diag::err_conv_function_to_array);
1204 ConvType = Context.getPointerType(ConvType);
1205 } else if (ConvType->isFunctionType()) {
1206 Diag(D.getIdentifierLoc(), diag::err_conv_function_to_function);
1207 ConvType = Context.getPointerType(ConvType);
1208 }
1209
1210 // Rebuild the function type "R" without any parameters (in case any
1211 // of the errors above fired) and with the conversion type as the
1212 // return type.
1213 R = Context.getFunctionType(ConvType, 0, 0, false,
1214 R->getAsFunctionTypeProto()->getTypeQuals());
1215
1216 return isInvalid;
1217}
1218
Douglas Gregor2f1bc522008-11-07 20:08:42 +00001219/// ActOnConversionDeclarator - Called by ActOnDeclarator to complete
1220/// the declaration of the given C++ conversion function. This routine
1221/// is responsible for recording the conversion function in the C++
1222/// class, if possible.
1223Sema::DeclTy *Sema::ActOnConversionDeclarator(CXXConversionDecl *Conversion) {
1224 assert(Conversion && "Expected to receive a conversion function declaration");
1225
Douglas Gregor9d350972008-12-12 08:25:50 +00001226 // Set the lexical context of this conversion function
1227 Conversion->setLexicalDeclContext(CurContext);
1228
1229 CXXRecordDecl *ClassDecl = cast<CXXRecordDecl>(Conversion->getDeclContext());
Douglas Gregor2f1bc522008-11-07 20:08:42 +00001230
1231 // Make sure we aren't redeclaring the conversion function.
1232 QualType ConvType = Context.getCanonicalType(Conversion->getConversionType());
Douglas Gregor2f1bc522008-11-07 20:08:42 +00001233
1234 // C++ [class.conv.fct]p1:
1235 // [...] A conversion function is never used to convert a
1236 // (possibly cv-qualified) object to the (possibly cv-qualified)
1237 // same object type (or a reference to it), to a (possibly
1238 // cv-qualified) base class of that type (or a reference to it),
1239 // or to (possibly cv-qualified) void.
1240 // FIXME: Suppress this warning if the conversion function ends up
1241 // being a virtual function that overrides a virtual function in a
1242 // base class.
1243 QualType ClassType
1244 = Context.getCanonicalType(Context.getTypeDeclType(ClassDecl));
1245 if (const ReferenceType *ConvTypeRef = ConvType->getAsReferenceType())
1246 ConvType = ConvTypeRef->getPointeeType();
1247 if (ConvType->isRecordType()) {
1248 ConvType = Context.getCanonicalType(ConvType).getUnqualifiedType();
1249 if (ConvType == ClassType)
Chris Lattner5dc266a2008-11-20 06:13:02 +00001250 Diag(Conversion->getLocation(), diag::warn_conv_to_self_not_used)
Chris Lattnerd1625842008-11-24 06:25:27 +00001251 << ClassType;
Douglas Gregor2f1bc522008-11-07 20:08:42 +00001252 else if (IsDerivedFrom(ClassType, ConvType))
Chris Lattner5dc266a2008-11-20 06:13:02 +00001253 Diag(Conversion->getLocation(), diag::warn_conv_to_base_not_used)
Chris Lattnerd1625842008-11-24 06:25:27 +00001254 << ClassType << ConvType;
Douglas Gregor2f1bc522008-11-07 20:08:42 +00001255 } else if (ConvType->isVoidType()) {
Chris Lattner5dc266a2008-11-20 06:13:02 +00001256 Diag(Conversion->getLocation(), diag::warn_conv_to_void_not_used)
Chris Lattnerd1625842008-11-24 06:25:27 +00001257 << ClassType << ConvType;
Douglas Gregor2f1bc522008-11-07 20:08:42 +00001258 }
1259
Douglas Gregor70316a02008-12-26 15:00:45 +00001260 if (Conversion->getPreviousDeclaration()) {
1261 OverloadedFunctionDecl *Conversions = ClassDecl->getConversionFunctions();
1262 for (OverloadedFunctionDecl::function_iterator
1263 Conv = Conversions->function_begin(),
1264 ConvEnd = Conversions->function_end();
1265 Conv != ConvEnd; ++Conv) {
1266 if (*Conv == Conversion->getPreviousDeclaration()) {
1267 *Conv = Conversion;
1268 return (DeclTy *)Conversion;
1269 }
1270 }
1271 assert(Conversion->isInvalidDecl() && "Conversion should not get here.");
1272 } else
1273 ClassDecl->addConversionFunction(Context, Conversion);
Douglas Gregor2f1bc522008-11-07 20:08:42 +00001274
1275 return (DeclTy *)Conversion;
1276}
1277
Argyrios Kyrtzidis2d1c5d32008-04-27 13:50:30 +00001278//===----------------------------------------------------------------------===//
1279// Namespace Handling
1280//===----------------------------------------------------------------------===//
1281
1282/// ActOnStartNamespaceDef - This is called at the start of a namespace
1283/// definition.
1284Sema::DeclTy *Sema::ActOnStartNamespaceDef(Scope *NamespcScope,
1285 SourceLocation IdentLoc,
1286 IdentifierInfo *II,
1287 SourceLocation LBrace) {
1288 NamespaceDecl *Namespc =
1289 NamespaceDecl::Create(Context, CurContext, IdentLoc, II);
1290 Namespc->setLBracLoc(LBrace);
1291
1292 Scope *DeclRegionScope = NamespcScope->getParent();
1293
1294 if (II) {
1295 // C++ [namespace.def]p2:
1296 // The identifier in an original-namespace-definition shall not have been
1297 // previously defined in the declarative region in which the
1298 // original-namespace-definition appears. The identifier in an
1299 // original-namespace-definition is the name of the namespace. Subsequently
1300 // in that declarative region, it is treated as an original-namespace-name.
1301
1302 Decl *PrevDecl =
Douglas Gregor44b43212008-12-11 16:49:14 +00001303 LookupDecl(II, Decl::IDNS_Tag | Decl::IDNS_Ordinary, DeclRegionScope, 0,
1304 /*enableLazyBuiltinCreation=*/false,
1305 /*LookupInParent=*/false);
1306
1307 if (NamespaceDecl *OrigNS = dyn_cast_or_null<NamespaceDecl>(PrevDecl)) {
1308 // This is an extended namespace definition.
1309 // Attach this namespace decl to the chain of extended namespace
1310 // definitions.
1311 OrigNS->setNextNamespace(Namespc);
1312 Namespc->setOriginalNamespace(OrigNS->getOriginalNamespace());
Argyrios Kyrtzidis2d1c5d32008-04-27 13:50:30 +00001313
Douglas Gregor44b43212008-12-11 16:49:14 +00001314 // Remove the previous declaration from the scope.
1315 if (DeclRegionScope->isDeclScope(OrigNS)) {
Douglas Gregore267ff32008-12-11 20:41:00 +00001316 IdResolver.RemoveDecl(OrigNS);
1317 DeclRegionScope->RemoveDecl(OrigNS);
Argyrios Kyrtzidis2d1c5d32008-04-27 13:50:30 +00001318 }
Douglas Gregor44b43212008-12-11 16:49:14 +00001319 } else if (PrevDecl) {
1320 // This is an invalid name redefinition.
1321 Diag(Namespc->getLocation(), diag::err_redefinition_different_kind)
1322 << Namespc->getDeclName();
1323 Diag(PrevDecl->getLocation(), diag::note_previous_definition);
1324 Namespc->setInvalidDecl();
1325 // Continue on to push Namespc as current DeclContext and return it.
1326 }
1327
1328 PushOnScopeChains(Namespc, DeclRegionScope);
1329 } else {
Argyrios Kyrtzidis2d1c5d32008-04-27 13:50:30 +00001330 // FIXME: Handle anonymous namespaces
1331 }
1332
1333 // Although we could have an invalid decl (i.e. the namespace name is a
1334 // redefinition), push it as current DeclContext and try to continue parsing.
Douglas Gregor44b43212008-12-11 16:49:14 +00001335 // FIXME: We should be able to push Namespc here, so that the
1336 // each DeclContext for the namespace has the declarations
1337 // that showed up in that particular namespace definition.
1338 PushDeclContext(NamespcScope, Namespc);
Argyrios Kyrtzidis2d1c5d32008-04-27 13:50:30 +00001339 return Namespc;
1340}
1341
1342/// ActOnFinishNamespaceDef - This callback is called after a namespace is
1343/// exited. Decl is the DeclTy returned by ActOnStartNamespaceDef.
1344void Sema::ActOnFinishNamespaceDef(DeclTy *D, SourceLocation RBrace) {
1345 Decl *Dcl = static_cast<Decl *>(D);
1346 NamespaceDecl *Namespc = dyn_cast_or_null<NamespaceDecl>(Dcl);
1347 assert(Namespc && "Invalid parameter, expected NamespaceDecl");
1348 Namespc->setRBracLoc(RBrace);
1349 PopDeclContext();
1350}
Argyrios Kyrtzidis73a0d882008-10-06 17:10:33 +00001351
Douglas Gregorf780abc2008-12-30 03:27:21 +00001352Sema::DeclTy *Sema::ActOnUsingDirective(Scope *S,
1353 SourceLocation UsingLoc,
1354 SourceLocation NamespcLoc,
1355 const CXXScopeSpec &SS,
1356 SourceLocation IdentLoc,
1357 IdentifierInfo *NamespcName,
1358 AttributeList *AttrList) {
1359 assert(!SS.isInvalid() && "Invalid CXXScopeSpec.");
1360 assert(NamespcName && "Invalid NamespcName.");
1361 assert(IdentLoc.isValid() && "Invalid NamespceName location.");
1362
1363 // FIXME: This still requires lot more checks, and AST support.
1364 // Lookup namespace name.
1365 DeclContext *DC = static_cast<DeclContext*>(SS.getScopeRep());
1366 Decl *NS = 0;
1367
1368 if ((NS = LookupNamespaceName(NamespcName, S, DC))) {
1369 assert(isa<NamespaceDecl>(NS) && "expected namespace decl");
1370 } else {
1371 DiagnosticBuilder Builder = Diag(IdentLoc, diag::err_expected_namespace_name);
1372 if (SS.isSet())
1373 Builder << SS.getRange();
1374 }
1375
1376 // FIXME: We ignore AttrList for now, and delete it to avoid leak.
1377 delete AttrList;
1378 return 0;
1379}
Argyrios Kyrtzidis73a0d882008-10-06 17:10:33 +00001380
1381/// AddCXXDirectInitializerToDecl - This action is called immediately after
1382/// ActOnDeclarator, when a C++ direct initializer is present.
1383/// e.g: "int x(1);"
1384void Sema::AddCXXDirectInitializerToDecl(DeclTy *Dcl, SourceLocation LParenLoc,
1385 ExprTy **ExprTys, unsigned NumExprs,
1386 SourceLocation *CommaLocs,
1387 SourceLocation RParenLoc) {
Argyrios Kyrtzidis73a0d882008-10-06 17:10:33 +00001388 assert(NumExprs != 0 && ExprTys && "missing expressions");
Argyrios Kyrtzidisce8e2922008-10-06 23:08:37 +00001389 Decl *RealDecl = static_cast<Decl *>(Dcl);
Argyrios Kyrtzidis73a0d882008-10-06 17:10:33 +00001390
1391 // If there is no declaration, there was an error parsing it. Just ignore
1392 // the initializer.
1393 if (RealDecl == 0) {
Ted Kremenek15f61392008-10-06 20:35:04 +00001394 for (unsigned i = 0; i != NumExprs; ++i)
Argyrios Kyrtzidis73a0d882008-10-06 17:10:33 +00001395 delete static_cast<Expr *>(ExprTys[i]);
1396 return;
1397 }
1398
1399 VarDecl *VDecl = dyn_cast<VarDecl>(RealDecl);
1400 if (!VDecl) {
1401 Diag(RealDecl->getLocation(), diag::err_illegal_initializer);
1402 RealDecl->setInvalidDecl();
1403 return;
1404 }
1405
Argyrios Kyrtzidisce8e2922008-10-06 23:08:37 +00001406 // We will treat direct-initialization as a copy-initialization:
1407 // int x(1); -as-> int x = 1;
Argyrios Kyrtzidis73a0d882008-10-06 17:10:33 +00001408 // ClassType x(a,b,c); -as-> ClassType x = ClassType(a,b,c);
1409 //
1410 // Clients that want to distinguish between the two forms, can check for
1411 // direct initializer using VarDecl::hasCXXDirectInitializer().
1412 // A major benefit is that clients that don't particularly care about which
1413 // exactly form was it (like the CodeGen) can handle both cases without
1414 // special case code.
Argyrios Kyrtzidis06ad1f52008-10-06 18:37:09 +00001415
Argyrios Kyrtzidis73a0d882008-10-06 17:10:33 +00001416 // C++ 8.5p11:
1417 // The form of initialization (using parentheses or '=') is generally
1418 // insignificant, but does matter when the entity being initialized has a
Argyrios Kyrtzidis06ad1f52008-10-06 18:37:09 +00001419 // class type.
Douglas Gregor18fe5682008-11-03 20:45:27 +00001420 QualType DeclInitType = VDecl->getType();
1421 if (const ArrayType *Array = Context.getAsArrayType(DeclInitType))
1422 DeclInitType = Array->getElementType();
Argyrios Kyrtzidis06ad1f52008-10-06 18:37:09 +00001423
Argyrios Kyrtzidis06ad1f52008-10-06 18:37:09 +00001424 if (VDecl->getType()->isRecordType()) {
Douglas Gregor18fe5682008-11-03 20:45:27 +00001425 CXXConstructorDecl *Constructor
Douglas Gregorf03d7c72008-11-05 15:29:30 +00001426 = PerformInitializationByConstructor(DeclInitType,
1427 (Expr **)ExprTys, NumExprs,
1428 VDecl->getLocation(),
1429 SourceRange(VDecl->getLocation(),
1430 RParenLoc),
Chris Lattnerd9d22dd2008-11-24 05:29:24 +00001431 VDecl->getDeclName(),
Douglas Gregorf03d7c72008-11-05 15:29:30 +00001432 IK_Direct);
Douglas Gregor18fe5682008-11-03 20:45:27 +00001433 if (!Constructor) {
1434 RealDecl->setInvalidDecl();
1435 }
Douglas Gregorf03d7c72008-11-05 15:29:30 +00001436
1437 // Let clients know that initialization was done with a direct
1438 // initializer.
1439 VDecl->setCXXDirectInitializer(true);
1440
1441 // FIXME: Add ExprTys and Constructor to the RealDecl as part of
1442 // the initializer.
Argyrios Kyrtzidis06ad1f52008-10-06 18:37:09 +00001443 return;
1444 }
Argyrios Kyrtzidis73a0d882008-10-06 17:10:33 +00001445
Argyrios Kyrtzidisce8e2922008-10-06 23:08:37 +00001446 if (NumExprs > 1) {
Chris Lattnerdcd5ef12008-11-19 05:27:50 +00001447 Diag(CommaLocs[0], diag::err_builtin_direct_init_more_than_one_arg)
1448 << SourceRange(VDecl->getLocation(), RParenLoc);
Argyrios Kyrtzidis73a0d882008-10-06 17:10:33 +00001449 RealDecl->setInvalidDecl();
1450 return;
1451 }
1452
Argyrios Kyrtzidis73a0d882008-10-06 17:10:33 +00001453 // Let clients know that initialization was done with a direct initializer.
1454 VDecl->setCXXDirectInitializer(true);
Argyrios Kyrtzidisce8e2922008-10-06 23:08:37 +00001455
1456 assert(NumExprs == 1 && "Expected 1 expression");
1457 // Set the init expression, handles conversions.
Sebastian Redl798d1192008-12-13 16:23:55 +00001458 AddInitializerToDecl(Dcl, ExprArg(*this, ExprTys[0]));
Argyrios Kyrtzidis73a0d882008-10-06 17:10:33 +00001459}
Douglas Gregor27c8dc02008-10-29 00:13:59 +00001460
Douglas Gregorf03d7c72008-11-05 15:29:30 +00001461/// PerformInitializationByConstructor - Perform initialization by
1462/// constructor (C++ [dcl.init]p14), which may occur as part of
1463/// direct-initialization or copy-initialization. We are initializing
1464/// an object of type @p ClassType with the given arguments @p
1465/// Args. @p Loc is the location in the source code where the
1466/// initializer occurs (e.g., a declaration, member initializer,
1467/// functional cast, etc.) while @p Range covers the whole
1468/// initialization. @p InitEntity is the entity being initialized,
1469/// which may by the name of a declaration or a type. @p Kind is the
1470/// kind of initialization we're performing, which affects whether
1471/// explicit constructors will be considered. When successful, returns
Douglas Gregor18fe5682008-11-03 20:45:27 +00001472/// the constructor that will be used to perform the initialization;
Douglas Gregorf03d7c72008-11-05 15:29:30 +00001473/// when the initialization fails, emits a diagnostic and returns
1474/// null.
Douglas Gregor18fe5682008-11-03 20:45:27 +00001475CXXConstructorDecl *
Douglas Gregorf03d7c72008-11-05 15:29:30 +00001476Sema::PerformInitializationByConstructor(QualType ClassType,
1477 Expr **Args, unsigned NumArgs,
1478 SourceLocation Loc, SourceRange Range,
Chris Lattnerd9d22dd2008-11-24 05:29:24 +00001479 DeclarationName InitEntity,
Douglas Gregorf03d7c72008-11-05 15:29:30 +00001480 InitializationKind Kind) {
Douglas Gregor18fe5682008-11-03 20:45:27 +00001481 const RecordType *ClassRec = ClassType->getAsRecordType();
1482 assert(ClassRec && "Can only initialize a class type here");
1483
1484 // C++ [dcl.init]p14:
1485 //
1486 // If the initialization is direct-initialization, or if it is
1487 // copy-initialization where the cv-unqualified version of the
1488 // source type is the same class as, or a derived class of, the
1489 // class of the destination, constructors are considered. The
1490 // applicable constructors are enumerated (13.3.1.3), and the
1491 // best one is chosen through overload resolution (13.3). The
1492 // constructor so selected is called to initialize the object,
1493 // with the initializer expression(s) as its argument(s). If no
1494 // constructor applies, or the overload resolution is ambiguous,
1495 // the initialization is ill-formed.
Douglas Gregor18fe5682008-11-03 20:45:27 +00001496 const CXXRecordDecl *ClassDecl = cast<CXXRecordDecl>(ClassRec->getDecl());
1497 OverloadCandidateSet CandidateSet;
Douglas Gregorf03d7c72008-11-05 15:29:30 +00001498
1499 // Add constructors to the overload set.
Douglas Gregor9e7d9de2008-12-15 21:24:18 +00001500 DeclarationName ConstructorName
1501 = Context.DeclarationNames.getCXXConstructorName(
1502 Context.getCanonicalType(ClassType.getUnqualifiedType()));
Douglas Gregor3fc749d2008-12-23 00:26:44 +00001503 DeclContext::lookup_const_iterator Con, ConEnd;
1504 for (llvm::tie(Con, ConEnd) = ClassDecl->lookup(Context, ConstructorName);
1505 Con != ConEnd; ++Con) {
1506 CXXConstructorDecl *Constructor = cast<CXXConstructorDecl>(*Con);
Douglas Gregorf03d7c72008-11-05 15:29:30 +00001507 if ((Kind == IK_Direct) ||
1508 (Kind == IK_Copy && Constructor->isConvertingConstructor()) ||
1509 (Kind == IK_Default && Constructor->isDefaultConstructor()))
1510 AddOverloadCandidate(Constructor, Args, NumArgs, CandidateSet);
1511 }
1512
Douglas Gregor9e7d9de2008-12-15 21:24:18 +00001513 // FIXME: When we decide not to synthesize the implicitly-declared
1514 // constructors, we'll need to make them appear here.
1515
Douglas Gregor18fe5682008-11-03 20:45:27 +00001516 OverloadCandidateSet::iterator Best;
Douglas Gregor18fe5682008-11-03 20:45:27 +00001517 switch (BestViableFunction(CandidateSet, Best)) {
1518 case OR_Success:
1519 // We found a constructor. Return it.
1520 return cast<CXXConstructorDecl>(Best->Function);
1521
1522 case OR_No_Viable_Function:
Sebastian Redle4c452c2008-11-22 13:44:36 +00001523 Diag(Loc, diag::err_ovl_no_viable_function_in_init)
1524 << InitEntity << (unsigned)CandidateSet.size() << Range;
1525 PrintOverloadCandidates(CandidateSet, /*OnlyViable=*/false);
Douglas Gregor18fe5682008-11-03 20:45:27 +00001526 return 0;
1527
1528 case OR_Ambiguous:
Chris Lattnerd3a94e22008-11-20 06:06:08 +00001529 Diag(Loc, diag::err_ovl_ambiguous_init) << InitEntity << Range;
Douglas Gregor18fe5682008-11-03 20:45:27 +00001530 PrintOverloadCandidates(CandidateSet, /*OnlyViable=*/true);
1531 return 0;
1532 }
1533
1534 return 0;
1535}
1536
Douglas Gregor27c8dc02008-10-29 00:13:59 +00001537/// CompareReferenceRelationship - Compare the two types T1 and T2 to
1538/// determine whether they are reference-related,
1539/// reference-compatible, reference-compatible with added
1540/// qualification, or incompatible, for use in C++ initialization by
1541/// reference (C++ [dcl.ref.init]p4). Neither type can be a reference
1542/// type, and the first type (T1) is the pointee type of the reference
1543/// type being initialized.
1544Sema::ReferenceCompareResult
Douglas Gregor15da57e2008-10-29 02:00:59 +00001545Sema::CompareReferenceRelationship(QualType T1, QualType T2,
1546 bool& DerivedToBase) {
Douglas Gregor27c8dc02008-10-29 00:13:59 +00001547 assert(!T1->isReferenceType() && "T1 must be the pointee type of the reference type");
1548 assert(!T2->isReferenceType() && "T2 cannot be a reference type");
1549
1550 T1 = Context.getCanonicalType(T1);
1551 T2 = Context.getCanonicalType(T2);
1552 QualType UnqualT1 = T1.getUnqualifiedType();
1553 QualType UnqualT2 = T2.getUnqualifiedType();
1554
1555 // C++ [dcl.init.ref]p4:
1556 // Given types “cv1 T1” and “cv2 T2,” “cv1 T1” is
1557 // reference-related to “cv2 T2” if T1 is the same type as T2, or
1558 // T1 is a base class of T2.
Douglas Gregor15da57e2008-10-29 02:00:59 +00001559 if (UnqualT1 == UnqualT2)
1560 DerivedToBase = false;
1561 else if (IsDerivedFrom(UnqualT2, UnqualT1))
1562 DerivedToBase = true;
1563 else
Douglas Gregor27c8dc02008-10-29 00:13:59 +00001564 return Ref_Incompatible;
1565
1566 // At this point, we know that T1 and T2 are reference-related (at
1567 // least).
1568
1569 // C++ [dcl.init.ref]p4:
1570 // "cv1 T1” is reference-compatible with “cv2 T2” if T1 is
1571 // reference-related to T2 and cv1 is the same cv-qualification
1572 // as, or greater cv-qualification than, cv2. For purposes of
1573 // overload resolution, cases for which cv1 is greater
1574 // cv-qualification than cv2 are identified as
1575 // reference-compatible with added qualification (see 13.3.3.2).
1576 if (T1.getCVRQualifiers() == T2.getCVRQualifiers())
1577 return Ref_Compatible;
1578 else if (T1.isMoreQualifiedThan(T2))
1579 return Ref_Compatible_With_Added_Qualification;
1580 else
1581 return Ref_Related;
1582}
1583
1584/// CheckReferenceInit - Check the initialization of a reference
1585/// variable with the given initializer (C++ [dcl.init.ref]). Init is
1586/// the initializer (either a simple initializer or an initializer
Douglas Gregor3205a782008-10-29 23:31:03 +00001587/// list), and DeclType is the type of the declaration. When ICS is
1588/// non-null, this routine will compute the implicit conversion
1589/// sequence according to C++ [over.ics.ref] and will not produce any
1590/// diagnostics; when ICS is null, it will emit diagnostics when any
1591/// errors are found. Either way, a return value of true indicates
1592/// that there was a failure, a return value of false indicates that
1593/// the reference initialization succeeded.
Douglas Gregor225c41e2008-11-03 19:09:14 +00001594///
1595/// When @p SuppressUserConversions, user-defined conversions are
1596/// suppressed.
Douglas Gregor15da57e2008-10-29 02:00:59 +00001597bool
1598Sema::CheckReferenceInit(Expr *&Init, QualType &DeclType,
Douglas Gregor225c41e2008-11-03 19:09:14 +00001599 ImplicitConversionSequence *ICS,
1600 bool SuppressUserConversions) {
Douglas Gregor27c8dc02008-10-29 00:13:59 +00001601 assert(DeclType->isReferenceType() && "Reference init needs a reference");
1602
1603 QualType T1 = DeclType->getAsReferenceType()->getPointeeType();
1604 QualType T2 = Init->getType();
1605
Douglas Gregor904eed32008-11-10 20:40:00 +00001606 // If the initializer is the address of an overloaded function, try
1607 // to resolve the overloaded function. If all goes well, T2 is the
1608 // type of the resulting function.
1609 if (T2->isOverloadType()) {
1610 FunctionDecl *Fn = ResolveAddressOfOverloadedFunction(Init, DeclType,
1611 ICS != 0);
1612 if (Fn) {
1613 // Since we're performing this reference-initialization for
1614 // real, update the initializer with the resulting function.
1615 if (!ICS)
1616 FixOverloadedFunctionReference(Init, Fn);
1617
1618 T2 = Fn->getType();
1619 }
1620 }
1621
Douglas Gregor15da57e2008-10-29 02:00:59 +00001622 // Compute some basic properties of the types and the initializer.
1623 bool DerivedToBase = false;
Douglas Gregor27c8dc02008-10-29 00:13:59 +00001624 Expr::isLvalueResult InitLvalue = Init->isLvalue(Context);
Douglas Gregor15da57e2008-10-29 02:00:59 +00001625 ReferenceCompareResult RefRelationship
1626 = CompareReferenceRelationship(T1, T2, DerivedToBase);
1627
1628 // Most paths end in a failed conversion.
1629 if (ICS)
1630 ICS->ConversionKind = ImplicitConversionSequence::BadConversion;
Douglas Gregor27c8dc02008-10-29 00:13:59 +00001631
1632 // C++ [dcl.init.ref]p5:
1633 // A reference to type “cv1 T1” is initialized by an expression
1634 // of type “cv2 T2” as follows:
1635
1636 // -- If the initializer expression
1637
1638 bool BindsDirectly = false;
1639 // -- is an lvalue (but is not a bit-field), and “cv1 T1” is
1640 // reference-compatible with “cv2 T2,” or
Douglas Gregor15da57e2008-10-29 02:00:59 +00001641 //
1642 // Note that the bit-field check is skipped if we are just computing
1643 // the implicit conversion sequence (C++ [over.best.ics]p2).
1644 if (InitLvalue == Expr::LV_Valid && (ICS || !Init->isBitField()) &&
1645 RefRelationship >= Ref_Compatible_With_Added_Qualification) {
Douglas Gregor27c8dc02008-10-29 00:13:59 +00001646 BindsDirectly = true;
1647
Douglas Gregor15da57e2008-10-29 02:00:59 +00001648 if (ICS) {
1649 // C++ [over.ics.ref]p1:
1650 // When a parameter of reference type binds directly (8.5.3)
1651 // to an argument expression, the implicit conversion sequence
1652 // is the identity conversion, unless the argument expression
1653 // has a type that is a derived class of the parameter type,
1654 // in which case the implicit conversion sequence is a
1655 // derived-to-base Conversion (13.3.3.1).
1656 ICS->ConversionKind = ImplicitConversionSequence::StandardConversion;
1657 ICS->Standard.First = ICK_Identity;
1658 ICS->Standard.Second = DerivedToBase? ICK_Derived_To_Base : ICK_Identity;
1659 ICS->Standard.Third = ICK_Identity;
1660 ICS->Standard.FromTypePtr = T2.getAsOpaquePtr();
1661 ICS->Standard.ToTypePtr = T1.getAsOpaquePtr();
Douglas Gregorf70bdb92008-10-29 14:50:44 +00001662 ICS->Standard.ReferenceBinding = true;
1663 ICS->Standard.DirectBinding = true;
Douglas Gregor15da57e2008-10-29 02:00:59 +00001664
1665 // Nothing more to do: the inaccessibility/ambiguity check for
1666 // derived-to-base conversions is suppressed when we're
1667 // computing the implicit conversion sequence (C++
1668 // [over.best.ics]p2).
1669 return false;
1670 } else {
1671 // Perform the conversion.
Douglas Gregor27c8dc02008-10-29 00:13:59 +00001672 // FIXME: Binding to a subobject of the lvalue is going to require
1673 // more AST annotation than this.
Douglas Gregoreb8f3062008-11-12 17:17:38 +00001674 ImpCastExprToType(Init, T1, /*isLvalue=*/true);
Douglas Gregor27c8dc02008-10-29 00:13:59 +00001675 }
1676 }
1677
1678 // -- has a class type (i.e., T2 is a class type) and can be
1679 // implicitly converted to an lvalue of type “cv3 T3,”
1680 // where “cv1 T1” is reference-compatible with “cv3 T3”
1681 // 92) (this conversion is selected by enumerating the
1682 // applicable conversion functions (13.3.1.6) and choosing
1683 // the best one through overload resolution (13.3)),
Douglas Gregorcb9b9772008-11-10 16:14:15 +00001684 if (!SuppressUserConversions && T2->isRecordType()) {
1685 // FIXME: Look for conversions in base classes!
1686 CXXRecordDecl *T2RecordDecl
1687 = dyn_cast<CXXRecordDecl>(T2->getAsRecordType()->getDecl());
Douglas Gregor27c8dc02008-10-29 00:13:59 +00001688
Douglas Gregorcb9b9772008-11-10 16:14:15 +00001689 OverloadCandidateSet CandidateSet;
1690 OverloadedFunctionDecl *Conversions
1691 = T2RecordDecl->getConversionFunctions();
1692 for (OverloadedFunctionDecl::function_iterator Func
1693 = Conversions->function_begin();
1694 Func != Conversions->function_end(); ++Func) {
1695 CXXConversionDecl *Conv = cast<CXXConversionDecl>(*Func);
1696
1697 // If the conversion function doesn't return a reference type,
1698 // it can't be considered for this conversion.
1699 // FIXME: This will change when we support rvalue references.
1700 if (Conv->getConversionType()->isReferenceType())
1701 AddConversionCandidate(Conv, Init, DeclType, CandidateSet);
1702 }
1703
1704 OverloadCandidateSet::iterator Best;
1705 switch (BestViableFunction(CandidateSet, Best)) {
1706 case OR_Success:
1707 // This is a direct binding.
1708 BindsDirectly = true;
1709
1710 if (ICS) {
1711 // C++ [over.ics.ref]p1:
1712 //
1713 // [...] If the parameter binds directly to the result of
1714 // applying a conversion function to the argument
1715 // expression, the implicit conversion sequence is a
1716 // user-defined conversion sequence (13.3.3.1.2), with the
1717 // second standard conversion sequence either an identity
1718 // conversion or, if the conversion function returns an
1719 // entity of a type that is a derived class of the parameter
1720 // type, a derived-to-base Conversion.
1721 ICS->ConversionKind = ImplicitConversionSequence::UserDefinedConversion;
1722 ICS->UserDefined.Before = Best->Conversions[0].Standard;
1723 ICS->UserDefined.After = Best->FinalConversion;
1724 ICS->UserDefined.ConversionFunction = Best->Function;
1725 assert(ICS->UserDefined.After.ReferenceBinding &&
1726 ICS->UserDefined.After.DirectBinding &&
1727 "Expected a direct reference binding!");
1728 return false;
1729 } else {
1730 // Perform the conversion.
1731 // FIXME: Binding to a subobject of the lvalue is going to require
1732 // more AST annotation than this.
Douglas Gregoreb8f3062008-11-12 17:17:38 +00001733 ImpCastExprToType(Init, T1, /*isLvalue=*/true);
Douglas Gregorcb9b9772008-11-10 16:14:15 +00001734 }
1735 break;
1736
1737 case OR_Ambiguous:
1738 assert(false && "Ambiguous reference binding conversions not implemented.");
1739 return true;
1740
1741 case OR_No_Viable_Function:
1742 // There was no suitable conversion; continue with other checks.
1743 break;
1744 }
1745 }
1746
Douglas Gregor27c8dc02008-10-29 00:13:59 +00001747 if (BindsDirectly) {
1748 // C++ [dcl.init.ref]p4:
1749 // [...] In all cases where the reference-related or
1750 // reference-compatible relationship of two types is used to
1751 // establish the validity of a reference binding, and T1 is a
1752 // base class of T2, a program that necessitates such a binding
1753 // is ill-formed if T1 is an inaccessible (clause 11) or
1754 // ambiguous (10.2) base class of T2.
1755 //
1756 // Note that we only check this condition when we're allowed to
1757 // complain about errors, because we should not be checking for
1758 // ambiguity (or inaccessibility) unless the reference binding
1759 // actually happens.
Douglas Gregor15da57e2008-10-29 02:00:59 +00001760 if (DerivedToBase)
1761 return CheckDerivedToBaseConversion(T2, T1,
1762 Init->getSourceRange().getBegin(),
1763 Init->getSourceRange());
1764 else
1765 return false;
Douglas Gregor27c8dc02008-10-29 00:13:59 +00001766 }
1767
1768 // -- Otherwise, the reference shall be to a non-volatile const
1769 // type (i.e., cv1 shall be const).
1770 if (T1.getCVRQualifiers() != QualType::Const) {
Douglas Gregor15da57e2008-10-29 02:00:59 +00001771 if (!ICS)
Douglas Gregor27c8dc02008-10-29 00:13:59 +00001772 Diag(Init->getSourceRange().getBegin(),
Chris Lattnerc9c7c4e2008-11-18 22:52:51 +00001773 diag::err_not_reference_to_const_init)
Chris Lattnerd1625842008-11-24 06:25:27 +00001774 << T1 << (InitLvalue != Expr::LV_Valid? "temporary" : "value")
1775 << T2 << Init->getSourceRange();
Douglas Gregor27c8dc02008-10-29 00:13:59 +00001776 return true;
1777 }
1778
1779 // -- If the initializer expression is an rvalue, with T2 a
1780 // class type, and “cv1 T1” is reference-compatible with
1781 // “cv2 T2,” the reference is bound in one of the
1782 // following ways (the choice is implementation-defined):
1783 //
1784 // -- The reference is bound to the object represented by
1785 // the rvalue (see 3.10) or to a sub-object within that
1786 // object.
1787 //
1788 // -- A temporary of type “cv1 T2” [sic] is created, and
1789 // a constructor is called to copy the entire rvalue
1790 // object into the temporary. The reference is bound to
1791 // the temporary or to a sub-object within the
1792 // temporary.
1793 //
1794 //
1795 // The constructor that would be used to make the copy
1796 // shall be callable whether or not the copy is actually
1797 // done.
1798 //
1799 // Note that C++0x [dcl.ref.init]p5 takes away this implementation
1800 // freedom, so we will always take the first option and never build
1801 // a temporary in this case. FIXME: We will, however, have to check
1802 // for the presence of a copy constructor in C++98/03 mode.
1803 if (InitLvalue != Expr::LV_Valid && T2->isRecordType() &&
Douglas Gregor15da57e2008-10-29 02:00:59 +00001804 RefRelationship >= Ref_Compatible_With_Added_Qualification) {
1805 if (ICS) {
1806 ICS->ConversionKind = ImplicitConversionSequence::StandardConversion;
1807 ICS->Standard.First = ICK_Identity;
1808 ICS->Standard.Second = DerivedToBase? ICK_Derived_To_Base : ICK_Identity;
1809 ICS->Standard.Third = ICK_Identity;
1810 ICS->Standard.FromTypePtr = T2.getAsOpaquePtr();
1811 ICS->Standard.ToTypePtr = T1.getAsOpaquePtr();
Douglas Gregorf70bdb92008-10-29 14:50:44 +00001812 ICS->Standard.ReferenceBinding = true;
1813 ICS->Standard.DirectBinding = false;
Douglas Gregor15da57e2008-10-29 02:00:59 +00001814 } else {
Douglas Gregor27c8dc02008-10-29 00:13:59 +00001815 // FIXME: Binding to a subobject of the rvalue is going to require
1816 // more AST annotation than this.
Douglas Gregoreb8f3062008-11-12 17:17:38 +00001817 ImpCastExprToType(Init, T1, /*isLvalue=*/true);
Douglas Gregor27c8dc02008-10-29 00:13:59 +00001818 }
1819 return false;
1820 }
1821
1822 // -- Otherwise, a temporary of type “cv1 T1” is created and
1823 // initialized from the initializer expression using the
1824 // rules for a non-reference copy initialization (8.5). The
1825 // reference is then bound to the temporary. If T1 is
1826 // reference-related to T2, cv1 must be the same
1827 // cv-qualification as, or greater cv-qualification than,
1828 // cv2; otherwise, the program is ill-formed.
1829 if (RefRelationship == Ref_Related) {
1830 // If cv1 == cv2 or cv1 is a greater cv-qualified than cv2, then
1831 // we would be reference-compatible or reference-compatible with
1832 // added qualification. But that wasn't the case, so the reference
1833 // initialization fails.
Douglas Gregor15da57e2008-10-29 02:00:59 +00001834 if (!ICS)
Douglas Gregor27c8dc02008-10-29 00:13:59 +00001835 Diag(Init->getSourceRange().getBegin(),
Chris Lattnerc9c7c4e2008-11-18 22:52:51 +00001836 diag::err_reference_init_drops_quals)
Chris Lattnerd1625842008-11-24 06:25:27 +00001837 << T1 << (InitLvalue != Expr::LV_Valid? "temporary" : "value")
1838 << T2 << Init->getSourceRange();
Douglas Gregor27c8dc02008-10-29 00:13:59 +00001839 return true;
1840 }
1841
1842 // Actually try to convert the initializer to T1.
Douglas Gregor15da57e2008-10-29 02:00:59 +00001843 if (ICS) {
1844 /// C++ [over.ics.ref]p2:
1845 ///
1846 /// When a parameter of reference type is not bound directly to
1847 /// an argument expression, the conversion sequence is the one
1848 /// required to convert the argument expression to the
1849 /// underlying type of the reference according to
1850 /// 13.3.3.1. Conceptually, this conversion sequence corresponds
1851 /// to copy-initializing a temporary of the underlying type with
1852 /// the argument expression. Any difference in top-level
1853 /// cv-qualification is subsumed by the initialization itself
1854 /// and does not constitute a conversion.
Douglas Gregor225c41e2008-11-03 19:09:14 +00001855 *ICS = TryImplicitConversion(Init, T1, SuppressUserConversions);
Douglas Gregor15da57e2008-10-29 02:00:59 +00001856 return ICS->ConversionKind == ImplicitConversionSequence::BadConversion;
1857 } else {
Douglas Gregor45920e82008-12-19 17:40:08 +00001858 return PerformImplicitConversion(Init, T1, "initializing");
Douglas Gregor15da57e2008-10-29 02:00:59 +00001859 }
Douglas Gregor27c8dc02008-10-29 00:13:59 +00001860}
Douglas Gregor1cd1b1e2008-11-06 22:13:31 +00001861
1862/// CheckOverloadedOperatorDeclaration - Check whether the declaration
1863/// of this overloaded operator is well-formed. If so, returns false;
1864/// otherwise, emits appropriate diagnostics and returns true.
1865bool Sema::CheckOverloadedOperatorDeclaration(FunctionDecl *FnDecl) {
Douglas Gregor43c7bad2008-11-17 16:14:12 +00001866 assert(FnDecl && FnDecl->isOverloadedOperator() &&
Douglas Gregor1cd1b1e2008-11-06 22:13:31 +00001867 "Expected an overloaded operator declaration");
1868
Douglas Gregor1cd1b1e2008-11-06 22:13:31 +00001869 OverloadedOperatorKind Op = FnDecl->getOverloadedOperator();
1870
1871 // C++ [over.oper]p5:
1872 // The allocation and deallocation functions, operator new,
1873 // operator new[], operator delete and operator delete[], are
1874 // described completely in 3.7.3. The attributes and restrictions
1875 // found in the rest of this subclause do not apply to them unless
1876 // explicitly stated in 3.7.3.
1877 // FIXME: Write a separate routine for checking this. For now, just
1878 // allow it.
1879 if (Op == OO_New || Op == OO_Array_New ||
1880 Op == OO_Delete || Op == OO_Array_Delete)
1881 return false;
1882
1883 // C++ [over.oper]p6:
1884 // An operator function shall either be a non-static member
1885 // function or be a non-member function and have at least one
1886 // parameter whose type is a class, a reference to a class, an
1887 // enumeration, or a reference to an enumeration.
Douglas Gregor43c7bad2008-11-17 16:14:12 +00001888 if (CXXMethodDecl *MethodDecl = dyn_cast<CXXMethodDecl>(FnDecl)) {
1889 if (MethodDecl->isStatic())
1890 return Diag(FnDecl->getLocation(),
Chris Lattnerd9d22dd2008-11-24 05:29:24 +00001891 diag::err_operator_overload_static) << FnDecl->getDeclName();
Douglas Gregor1cd1b1e2008-11-06 22:13:31 +00001892 } else {
1893 bool ClassOrEnumParam = false;
Douglas Gregor43c7bad2008-11-17 16:14:12 +00001894 for (FunctionDecl::param_iterator Param = FnDecl->param_begin(),
1895 ParamEnd = FnDecl->param_end();
1896 Param != ParamEnd; ++Param) {
1897 QualType ParamType = (*Param)->getType().getNonReferenceType();
Douglas Gregor1cd1b1e2008-11-06 22:13:31 +00001898 if (ParamType->isRecordType() || ParamType->isEnumeralType()) {
1899 ClassOrEnumParam = true;
1900 break;
1901 }
1902 }
1903
Douglas Gregor43c7bad2008-11-17 16:14:12 +00001904 if (!ClassOrEnumParam)
1905 return Diag(FnDecl->getLocation(),
Chris Lattnerf3a41af2008-11-20 06:38:18 +00001906 diag::err_operator_overload_needs_class_or_enum)
Chris Lattnerd9d22dd2008-11-24 05:29:24 +00001907 << FnDecl->getDeclName();
Douglas Gregor1cd1b1e2008-11-06 22:13:31 +00001908 }
1909
1910 // C++ [over.oper]p8:
1911 // An operator function cannot have default arguments (8.3.6),
1912 // except where explicitly stated below.
1913 //
1914 // Only the function-call operator allows default arguments
1915 // (C++ [over.call]p1).
1916 if (Op != OO_Call) {
1917 for (FunctionDecl::param_iterator Param = FnDecl->param_begin();
1918 Param != FnDecl->param_end(); ++Param) {
Douglas Gregor61366e92008-12-24 00:01:03 +00001919 if ((*Param)->hasUnparsedDefaultArg())
1920 return Diag((*Param)->getLocation(),
1921 diag::err_operator_overload_default_arg)
1922 << FnDecl->getDeclName();
1923 else if (Expr *DefArg = (*Param)->getDefaultArg())
Douglas Gregor43c7bad2008-11-17 16:14:12 +00001924 return Diag((*Param)->getLocation(),
Chris Lattnerd3a94e22008-11-20 06:06:08 +00001925 diag::err_operator_overload_default_arg)
Chris Lattnerd9d22dd2008-11-24 05:29:24 +00001926 << FnDecl->getDeclName() << DefArg->getSourceRange();
Douglas Gregor1cd1b1e2008-11-06 22:13:31 +00001927 }
1928 }
1929
Douglas Gregor02bcd4c2008-11-10 13:38:07 +00001930 static const bool OperatorUses[NUM_OVERLOADED_OPERATORS][3] = {
1931 { false, false, false }
1932#define OVERLOADED_OPERATOR(Name,Spelling,Token,Unary,Binary,MemberOnly) \
1933 , { Unary, Binary, MemberOnly }
1934#include "clang/Basic/OperatorKinds.def"
1935 };
Douglas Gregor1cd1b1e2008-11-06 22:13:31 +00001936
Douglas Gregor02bcd4c2008-11-10 13:38:07 +00001937 bool CanBeUnaryOperator = OperatorUses[Op][0];
1938 bool CanBeBinaryOperator = OperatorUses[Op][1];
1939 bool MustBeMemberOperator = OperatorUses[Op][2];
Douglas Gregor1cd1b1e2008-11-06 22:13:31 +00001940
1941 // C++ [over.oper]p8:
1942 // [...] Operator functions cannot have more or fewer parameters
1943 // than the number required for the corresponding operator, as
1944 // described in the rest of this subclause.
Douglas Gregor43c7bad2008-11-17 16:14:12 +00001945 unsigned NumParams = FnDecl->getNumParams()
1946 + (isa<CXXMethodDecl>(FnDecl)? 1 : 0);
Douglas Gregor1cd1b1e2008-11-06 22:13:31 +00001947 if (Op != OO_Call &&
1948 ((NumParams == 1 && !CanBeUnaryOperator) ||
1949 (NumParams == 2 && !CanBeBinaryOperator) ||
1950 (NumParams < 1) || (NumParams > 2))) {
1951 // We have the wrong number of parameters.
Chris Lattner416e46f2008-11-21 07:57:12 +00001952 unsigned ErrorKind;
Douglas Gregor02bcd4c2008-11-10 13:38:07 +00001953 if (CanBeUnaryOperator && CanBeBinaryOperator) {
Chris Lattner416e46f2008-11-21 07:57:12 +00001954 ErrorKind = 2; // 2 -> unary or binary.
Douglas Gregor02bcd4c2008-11-10 13:38:07 +00001955 } else if (CanBeUnaryOperator) {
Chris Lattner416e46f2008-11-21 07:57:12 +00001956 ErrorKind = 0; // 0 -> unary
Douglas Gregor02bcd4c2008-11-10 13:38:07 +00001957 } else {
Chris Lattneraf7ae4e2008-11-21 07:50:02 +00001958 assert(CanBeBinaryOperator &&
1959 "All non-call overloaded operators are unary or binary!");
Chris Lattner416e46f2008-11-21 07:57:12 +00001960 ErrorKind = 1; // 1 -> binary
Douglas Gregor02bcd4c2008-11-10 13:38:07 +00001961 }
Douglas Gregor1cd1b1e2008-11-06 22:13:31 +00001962
Chris Lattner416e46f2008-11-21 07:57:12 +00001963 return Diag(FnDecl->getLocation(), diag::err_operator_overload_must_be)
Chris Lattnerd9d22dd2008-11-24 05:29:24 +00001964 << FnDecl->getDeclName() << NumParams << ErrorKind;
Douglas Gregor1cd1b1e2008-11-06 22:13:31 +00001965 }
1966
Douglas Gregor43c7bad2008-11-17 16:14:12 +00001967 // Overloaded operators other than operator() cannot be variadic.
1968 if (Op != OO_Call &&
1969 FnDecl->getType()->getAsFunctionTypeProto()->isVariadic()) {
Chris Lattnerf3a41af2008-11-20 06:38:18 +00001970 return Diag(FnDecl->getLocation(), diag::err_operator_overload_variadic)
Chris Lattnerd9d22dd2008-11-24 05:29:24 +00001971 << FnDecl->getDeclName();
Douglas Gregor1cd1b1e2008-11-06 22:13:31 +00001972 }
1973
1974 // Some operators must be non-static member functions.
Douglas Gregor43c7bad2008-11-17 16:14:12 +00001975 if (MustBeMemberOperator && !isa<CXXMethodDecl>(FnDecl)) {
1976 return Diag(FnDecl->getLocation(),
Chris Lattnerf3a41af2008-11-20 06:38:18 +00001977 diag::err_operator_overload_must_be_member)
Chris Lattnerd9d22dd2008-11-24 05:29:24 +00001978 << FnDecl->getDeclName();
Douglas Gregor1cd1b1e2008-11-06 22:13:31 +00001979 }
1980
1981 // C++ [over.inc]p1:
1982 // The user-defined function called operator++ implements the
1983 // prefix and postfix ++ operator. If this function is a member
1984 // function with no parameters, or a non-member function with one
1985 // parameter of class or enumeration type, it defines the prefix
1986 // increment operator ++ for objects of that type. If the function
1987 // is a member function with one parameter (which shall be of type
1988 // int) or a non-member function with two parameters (the second
1989 // of which shall be of type int), it defines the postfix
1990 // increment operator ++ for objects of that type.
1991 if ((Op == OO_PlusPlus || Op == OO_MinusMinus) && NumParams == 2) {
1992 ParmVarDecl *LastParam = FnDecl->getParamDecl(FnDecl->getNumParams() - 1);
1993 bool ParamIsInt = false;
1994 if (const BuiltinType *BT = LastParam->getType()->getAsBuiltinType())
1995 ParamIsInt = BT->getKind() == BuiltinType::Int;
1996
Chris Lattneraf7ae4e2008-11-21 07:50:02 +00001997 if (!ParamIsInt)
1998 return Diag(LastParam->getLocation(),
1999 diag::err_operator_overload_post_incdec_must_be_int)
Chris Lattnerd1625842008-11-24 06:25:27 +00002000 << LastParam->getType() << (Op == OO_MinusMinus);
Douglas Gregor1cd1b1e2008-11-06 22:13:31 +00002001 }
2002
Douglas Gregor43c7bad2008-11-17 16:14:12 +00002003 return false;
Douglas Gregor1cd1b1e2008-11-06 22:13:31 +00002004}
Chris Lattner5a003a42008-12-17 07:09:26 +00002005
Chris Lattnercc98eac2008-12-17 07:13:27 +00002006/// ActOnLinkageSpec - Parsed a C++ linkage-specification that
2007/// contained braces. Lang/StrSize contains the language string that
2008/// was parsed at location Loc. Decls/NumDecls provides the
2009/// declarations parsed inside the linkage specification.
2010Sema::DeclTy *Sema::ActOnLinkageSpec(SourceLocation Loc,
2011 SourceLocation LBrace,
2012 SourceLocation RBrace,
2013 const char *Lang,
2014 unsigned StrSize,
2015 DeclTy **Decls, unsigned NumDecls) {
2016 LinkageSpecDecl::LanguageIDs Language;
2017 if (strncmp(Lang, "\"C\"", StrSize) == 0)
2018 Language = LinkageSpecDecl::lang_c;
2019 else if (strncmp(Lang, "\"C++\"", StrSize) == 0)
2020 Language = LinkageSpecDecl::lang_cxx;
2021 else {
2022 Diag(Loc, diag::err_bad_language);
2023 return 0;
2024 }
2025
2026 // FIXME: Add all the various semantics of linkage specifications
2027
2028 return LinkageSpecDecl::Create(Context, Loc, Language,
2029 (Decl **)Decls, NumDecls);
2030}
2031
Chris Lattner5a003a42008-12-17 07:09:26 +00002032Sema::DeclTy *Sema::ActOnLinkageSpec(SourceLocation Loc,
2033 const char *Lang, unsigned StrSize,
2034 DeclTy *D) {
2035 LinkageSpecDecl::LanguageIDs Language;
2036 Decl *dcl = static_cast<Decl *>(D);
2037 if (strncmp(Lang, "\"C\"", StrSize) == 0)
2038 Language = LinkageSpecDecl::lang_c;
2039 else if (strncmp(Lang, "\"C++\"", StrSize) == 0)
2040 Language = LinkageSpecDecl::lang_cxx;
2041 else {
2042 Diag(Loc, diag::err_bad_language);
2043 return 0;
2044 }
2045
2046 // FIXME: Add all the various semantics of linkage specifications
2047 return LinkageSpecDecl::Create(Context, Loc, Language, dcl);
2048}
2049
Sebastian Redl4b07b292008-12-22 19:15:10 +00002050/// ActOnExceptionDeclarator - Parsed the exception-declarator in a C++ catch
2051/// handler.
2052Sema::DeclTy *Sema::ActOnExceptionDeclarator(Scope *S, Declarator &D)
2053{
2054 QualType ExDeclType = GetTypeForDeclarator(D, S);
2055 SourceLocation Begin = D.getDeclSpec().getSourceRange().getBegin();
2056
2057 bool Invalid = false;
2058
2059 // Arrays and functions decay.
2060 if (ExDeclType->isArrayType())
2061 ExDeclType = Context.getArrayDecayedType(ExDeclType);
2062 else if (ExDeclType->isFunctionType())
2063 ExDeclType = Context.getPointerType(ExDeclType);
2064
2065 // C++ 15.3p1: The exception-declaration shall not denote an incomplete type.
2066 // The exception-declaration shall not denote a pointer or reference to an
2067 // incomplete type, other than [cv] void*.
2068 QualType BaseType = ExDeclType;
2069 int Mode = 0; // 0 for direct type, 1 for pointer, 2 for reference
2070 if (const PointerType *Ptr = BaseType->getAsPointerType()) {
2071 BaseType = Ptr->getPointeeType();
2072 Mode = 1;
2073 } else if(const ReferenceType *Ref = BaseType->getAsReferenceType()) {
2074 BaseType = Ref->getPointeeType();
2075 Mode = 2;
2076 }
2077 if ((Mode == 0 || !BaseType->isVoidType()) && BaseType->isIncompleteType()) {
2078 Invalid = true;
2079 Diag(Begin, diag::err_catch_incomplete) << BaseType << Mode;
2080 }
2081
Sebastian Redl8351da02008-12-22 21:35:02 +00002082 // FIXME: Need to test for ability to copy-construct and destroy the
2083 // exception variable.
2084 // FIXME: Need to check for abstract classes.
2085
Sebastian Redl4b07b292008-12-22 19:15:10 +00002086 IdentifierInfo *II = D.getIdentifier();
2087 if (Decl *PrevDecl = LookupDecl(II, Decl::IDNS_Ordinary, S)) {
2088 // The scope should be freshly made just for us. There is just no way
2089 // it contains any previous declaration.
2090 assert(!S->isDeclScope(PrevDecl));
2091 if (PrevDecl->isTemplateParameter()) {
2092 // Maybe we will complain about the shadowed template parameter.
2093 DiagnoseTemplateParameterShadow(D.getIdentifierLoc(), PrevDecl);
2094
2095 }
2096 }
2097
2098 VarDecl *ExDecl = VarDecl::Create(Context, CurContext, D.getIdentifierLoc(),
2099 II, ExDeclType, VarDecl::None, 0, Begin);
2100 if (D.getInvalidType() || Invalid)
2101 ExDecl->setInvalidDecl();
2102
2103 if (D.getCXXScopeSpec().isSet()) {
2104 Diag(D.getIdentifierLoc(), diag::err_qualified_catch_declarator)
2105 << D.getCXXScopeSpec().getRange();
2106 ExDecl->setInvalidDecl();
2107 }
2108
2109 // Add the exception declaration into this scope.
2110 S->AddDecl(ExDecl);
2111 if (II)
2112 IdResolver.AddDecl(ExDecl);
2113
2114 ProcessDeclAttributes(ExDecl, D);
2115 return ExDecl;
2116}