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Douglas Gregore2a7ad02012-02-08 21:18:48 +00001//===--- SemaLambda.cpp - Semantic Analysis for C++11 Lambdas -------------===//
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++ lambda expressions.
11//
12//===----------------------------------------------------------------------===//
13#include "clang/Sema/DeclSpec.h"
14#include "clang/Sema/Initialization.h"
15#include "clang/Sema/Lookup.h"
Douglas Gregor5878cbc2012-02-21 04:17:39 +000016#include "clang/Sema/Scope.h"
Douglas Gregore2a7ad02012-02-08 21:18:48 +000017#include "clang/Sema/ScopeInfo.h"
18#include "clang/Sema/SemaInternal.h"
Douglas Gregor3ac109c2012-02-10 17:46:20 +000019#include "clang/Lex/Preprocessor.h"
Douglas Gregore2a7ad02012-02-08 21:18:48 +000020#include "clang/AST/ExprCXX.h"
21using namespace clang;
22using namespace sema;
23
Douglas Gregorf4b7de12012-02-21 19:11:17 +000024CXXRecordDecl *Sema::createLambdaClosureType(SourceRange IntroducerRange,
25 bool KnownDependent) {
Douglas Gregore2a7ad02012-02-08 21:18:48 +000026 DeclContext *DC = CurContext;
27 while (!(DC->isFunctionOrMethod() || DC->isRecord() || DC->isFileContext()))
28 DC = DC->getParent();
Douglas Gregordfca6f52012-02-13 22:00:16 +000029
Douglas Gregore2a7ad02012-02-08 21:18:48 +000030 // Start constructing the lambda class.
Douglas Gregorda8962a2012-02-13 15:44:47 +000031 CXXRecordDecl *Class = CXXRecordDecl::CreateLambda(Context, DC,
Douglas Gregorf4b7de12012-02-21 19:11:17 +000032 IntroducerRange.getBegin(),
33 KnownDependent);
Douglas Gregorfa07ab52012-02-20 20:47:06 +000034 DC->addDecl(Class);
Douglas Gregordfca6f52012-02-13 22:00:16 +000035
36 return Class;
37}
Douglas Gregore2a7ad02012-02-08 21:18:48 +000038
Douglas Gregorf54486a2012-04-04 17:40:10 +000039/// \brief Determine whether the given context is or is enclosed in an inline
40/// function.
41static bool isInInlineFunction(const DeclContext *DC) {
42 while (!DC->isFileContext()) {
43 if (const FunctionDecl *FD = dyn_cast<FunctionDecl>(DC))
44 if (FD->isInlined())
45 return true;
46
47 DC = DC->getLexicalParent();
48 }
49
50 return false;
51}
52
Douglas Gregordfca6f52012-02-13 22:00:16 +000053CXXMethodDecl *Sema::startLambdaDefinition(CXXRecordDecl *Class,
Douglas Gregorf54486a2012-04-04 17:40:10 +000054 SourceRange IntroducerRange,
55 TypeSourceInfo *MethodType,
56 SourceLocation EndLoc,
Richard Smithadb1d4c2012-07-22 23:45:10 +000057 llvm::ArrayRef<ParmVarDecl *> Params) {
Douglas Gregordfca6f52012-02-13 22:00:16 +000058 // C++11 [expr.prim.lambda]p5:
59 // The closure type for a lambda-expression has a public inline function
60 // call operator (13.5.4) whose parameters and return type are described by
61 // the lambda-expression's parameter-declaration-clause and
62 // trailing-return-type respectively.
63 DeclarationName MethodName
64 = Context.DeclarationNames.getCXXOperatorName(OO_Call);
65 DeclarationNameLoc MethodNameLoc;
66 MethodNameLoc.CXXOperatorName.BeginOpNameLoc
67 = IntroducerRange.getBegin().getRawEncoding();
68 MethodNameLoc.CXXOperatorName.EndOpNameLoc
69 = IntroducerRange.getEnd().getRawEncoding();
70 CXXMethodDecl *Method
71 = CXXMethodDecl::Create(Context, Class, EndLoc,
72 DeclarationNameInfo(MethodName,
73 IntroducerRange.getBegin(),
74 MethodNameLoc),
75 MethodType->getType(), MethodType,
76 /*isStatic=*/false,
77 SC_None,
78 /*isInline=*/true,
79 /*isConstExpr=*/false,
80 EndLoc);
81 Method->setAccess(AS_public);
82
83 // Temporarily set the lexical declaration context to the current
84 // context, so that the Scope stack matches the lexical nesting.
Douglas Gregorfa07ab52012-02-20 20:47:06 +000085 Method->setLexicalDeclContext(CurContext);
Douglas Gregordfca6f52012-02-13 22:00:16 +000086
Douglas Gregorc6889e72012-02-14 22:28:59 +000087 // Add parameters.
88 if (!Params.empty()) {
89 Method->setParams(Params);
90 CheckParmsForFunctionDef(const_cast<ParmVarDecl **>(Params.begin()),
91 const_cast<ParmVarDecl **>(Params.end()),
92 /*CheckParameterNames=*/false);
93
94 for (CXXMethodDecl::param_iterator P = Method->param_begin(),
95 PEnd = Method->param_end();
96 P != PEnd; ++P)
97 (*P)->setOwningFunction(Method);
98 }
Richard Smithadb1d4c2012-07-22 23:45:10 +000099
100 // Allocate a mangling number for this lambda expression, if the ABI
101 // requires one.
102 Decl *ContextDecl = ExprEvalContexts.back().LambdaContextDecl;
103
104 enum ContextKind {
105 Normal,
106 DefaultArgument,
107 DataMember,
108 StaticDataMember
109 } Kind = Normal;
110
111 // Default arguments of member function parameters that appear in a class
112 // definition, as well as the initializers of data members, receive special
113 // treatment. Identify them.
114 if (ContextDecl) {
115 if (ParmVarDecl *Param = dyn_cast<ParmVarDecl>(ContextDecl)) {
116 if (const DeclContext *LexicalDC
117 = Param->getDeclContext()->getLexicalParent())
118 if (LexicalDC->isRecord())
119 Kind = DefaultArgument;
120 } else if (VarDecl *Var = dyn_cast<VarDecl>(ContextDecl)) {
121 if (Var->getDeclContext()->isRecord())
122 Kind = StaticDataMember;
123 } else if (isa<FieldDecl>(ContextDecl)) {
124 Kind = DataMember;
Douglas Gregorf54486a2012-04-04 17:40:10 +0000125 }
126 }
127
Richard Smithadb1d4c2012-07-22 23:45:10 +0000128 // Itanium ABI [5.1.7]:
129 // In the following contexts [...] the one-definition rule requires closure
130 // types in different translation units to "correspond":
131 bool IsInNonspecializedTemplate =
132 !ActiveTemplateInstantiations.empty() || CurContext->isDependentContext();
133 unsigned ManglingNumber;
134 switch (Kind) {
135 case Normal:
136 // -- the bodies of non-exported nonspecialized template functions
137 // -- the bodies of inline functions
138 if ((IsInNonspecializedTemplate &&
139 !(ContextDecl && isa<ParmVarDecl>(ContextDecl))) ||
140 isInInlineFunction(CurContext))
141 ManglingNumber = Context.getLambdaManglingNumber(Method);
142 else
143 ManglingNumber = 0;
144
145 // There is no special context for this lambda.
146 ContextDecl = 0;
147 break;
148
149 case StaticDataMember:
150 // -- the initializers of nonspecialized static members of template classes
151 if (!IsInNonspecializedTemplate) {
152 ManglingNumber = 0;
153 ContextDecl = 0;
154 break;
155 }
156 // Fall through to assign a mangling number.
157
158 case DataMember:
159 // -- the in-class initializers of class members
160 case DefaultArgument:
161 // -- default arguments appearing in class definitions
162 ManglingNumber = ExprEvalContexts.back().getLambdaMangleContext()
163 .getManglingNumber(Method);
164 break;
165 }
166
167 Class->setLambdaMangling(ManglingNumber, ContextDecl);
168
Douglas Gregordfca6f52012-02-13 22:00:16 +0000169 return Method;
170}
171
172LambdaScopeInfo *Sema::enterLambdaScope(CXXMethodDecl *CallOperator,
173 SourceRange IntroducerRange,
174 LambdaCaptureDefault CaptureDefault,
175 bool ExplicitParams,
176 bool ExplicitResultType,
177 bool Mutable) {
178 PushLambdaScope(CallOperator->getParent(), CallOperator);
179 LambdaScopeInfo *LSI = getCurLambda();
180 if (CaptureDefault == LCD_ByCopy)
181 LSI->ImpCaptureStyle = LambdaScopeInfo::ImpCap_LambdaByval;
182 else if (CaptureDefault == LCD_ByRef)
183 LSI->ImpCaptureStyle = LambdaScopeInfo::ImpCap_LambdaByref;
184 LSI->IntroducerRange = IntroducerRange;
185 LSI->ExplicitParams = ExplicitParams;
186 LSI->Mutable = Mutable;
187
188 if (ExplicitResultType) {
189 LSI->ReturnType = CallOperator->getResultType();
Douglas Gregor53393f22012-02-14 21:20:44 +0000190
191 if (!LSI->ReturnType->isDependentType() &&
192 !LSI->ReturnType->isVoidType()) {
193 if (RequireCompleteType(CallOperator->getLocStart(), LSI->ReturnType,
194 diag::err_lambda_incomplete_result)) {
195 // Do nothing.
196 } else if (LSI->ReturnType->isObjCObjectOrInterfaceType()) {
197 Diag(CallOperator->getLocStart(), diag::err_lambda_objc_object_result)
198 << LSI->ReturnType;
199 }
200 }
Douglas Gregordfca6f52012-02-13 22:00:16 +0000201 } else {
202 LSI->HasImplicitReturnType = true;
203 }
204
205 return LSI;
206}
207
208void Sema::finishLambdaExplicitCaptures(LambdaScopeInfo *LSI) {
209 LSI->finishedExplicitCaptures();
210}
211
Douglas Gregorc6889e72012-02-14 22:28:59 +0000212void Sema::addLambdaParameters(CXXMethodDecl *CallOperator, Scope *CurScope) {
Douglas Gregordfca6f52012-02-13 22:00:16 +0000213 // Introduce our parameters into the function scope
214 for (unsigned p = 0, NumParams = CallOperator->getNumParams();
215 p < NumParams; ++p) {
216 ParmVarDecl *Param = CallOperator->getParamDecl(p);
Douglas Gregordfca6f52012-02-13 22:00:16 +0000217
218 // If this has an identifier, add it to the scope stack.
219 if (CurScope && Param->getIdentifier()) {
220 CheckShadow(CurScope, Param);
221
222 PushOnScopeChains(Param, CurScope);
223 }
224 }
225}
226
Jordan Rose7dd900e2012-07-02 21:19:23 +0000227static bool checkReturnValueType(const ASTContext &Ctx, const Expr *E,
228 QualType &DeducedType,
229 QualType &AlternateType) {
230 // Handle ReturnStmts with no expressions.
231 if (!E) {
232 if (AlternateType.isNull())
233 AlternateType = Ctx.VoidTy;
234
235 return Ctx.hasSameType(DeducedType, Ctx.VoidTy);
236 }
237
238 QualType StrictType = E->getType();
239 QualType LooseType = StrictType;
240
241 // In C, enum constants have the type of their underlying integer type,
242 // not the enum. When inferring block return types, we should allow
243 // the enum type if an enum constant is used, unless the enum is
244 // anonymous (in which case there can be no variables of its type).
245 if (!Ctx.getLangOpts().CPlusPlus) {
246 const DeclRefExpr *DRE = dyn_cast<DeclRefExpr>(E->IgnoreParenImpCasts());
247 if (DRE) {
248 const Decl *D = DRE->getDecl();
249 if (const EnumConstantDecl *ECD = dyn_cast<EnumConstantDecl>(D)) {
250 const EnumDecl *Enum = cast<EnumDecl>(ECD->getDeclContext());
251 if (Enum->getDeclName() || Enum->getTypedefNameForAnonDecl())
252 LooseType = Ctx.getTypeDeclType(Enum);
253 }
254 }
255 }
256
257 // Special case for the first return statement we find.
258 // The return type has already been tentatively set, but we might still
259 // have an alternate type we should prefer.
260 if (AlternateType.isNull())
261 AlternateType = LooseType;
262
263 if (Ctx.hasSameType(DeducedType, StrictType)) {
264 // FIXME: The loose type is different when there are constants from two
265 // different enums. We could consider warning here.
266 if (AlternateType != Ctx.DependentTy)
267 if (!Ctx.hasSameType(AlternateType, LooseType))
268 AlternateType = Ctx.VoidTy;
269 return true;
270 }
271
272 if (Ctx.hasSameType(DeducedType, LooseType)) {
273 // Use DependentTy to signal that we're using an alternate type and may
274 // need to add casts somewhere.
275 AlternateType = Ctx.DependentTy;
276 return true;
277 }
278
279 if (Ctx.hasSameType(AlternateType, StrictType) ||
280 Ctx.hasSameType(AlternateType, LooseType)) {
281 DeducedType = AlternateType;
282 // Use DependentTy to signal that we're using an alternate type and may
283 // need to add casts somewhere.
284 AlternateType = Ctx.DependentTy;
285 return true;
286 }
287
288 return false;
289}
290
291void Sema::deduceClosureReturnType(CapturingScopeInfo &CSI) {
292 assert(CSI.HasImplicitReturnType);
293
294 // First case: no return statements, implicit void return type.
295 ASTContext &Ctx = getASTContext();
296 if (CSI.Returns.empty()) {
297 // It's possible there were simply no /valid/ return statements.
298 // In this case, the first one we found may have at least given us a type.
299 if (CSI.ReturnType.isNull())
300 CSI.ReturnType = Ctx.VoidTy;
301 return;
302 }
303
304 // Second case: at least one return statement has dependent type.
305 // Delay type checking until instantiation.
306 assert(!CSI.ReturnType.isNull() && "We should have a tentative return type.");
307 if (CSI.ReturnType->isDependentType())
308 return;
309
310 // Third case: only one return statement. Don't bother doing extra work!
311 SmallVectorImpl<ReturnStmt*>::iterator I = CSI.Returns.begin(),
312 E = CSI.Returns.end();
313 if (I+1 == E)
314 return;
315
316 // General case: many return statements.
317 // Check that they all have compatible return types.
318 // For now, that means "identical", with an exception for enum constants.
319 // (In C, enum constants have the type of their underlying integer type,
320 // not the type of the enum. C++ uses the type of the enum.)
321 QualType AlternateType;
322
323 // We require the return types to strictly match here.
324 for (; I != E; ++I) {
325 const ReturnStmt *RS = *I;
326 const Expr *RetE = RS->getRetValue();
327 if (!checkReturnValueType(Ctx, RetE, CSI.ReturnType, AlternateType)) {
328 // FIXME: This is a poor diagnostic for ReturnStmts without expressions.
329 Diag(RS->getLocStart(),
330 diag::err_typecheck_missing_return_type_incompatible)
331 << (RetE ? RetE->getType() : Ctx.VoidTy) << CSI.ReturnType
332 << isa<LambdaScopeInfo>(CSI);
333 // Don't bother fixing up the return statements in the block if some of
334 // them are unfixable anyway.
335 AlternateType = Ctx.VoidTy;
336 // Continue iterating so that we keep emitting diagnostics.
337 }
338 }
339
340 // If our return statements turned out to be compatible, but we needed to
341 // pick a different return type, go through and fix the ones that need it.
342 if (AlternateType == Ctx.DependentTy) {
343 for (SmallVectorImpl<ReturnStmt*>::iterator I = CSI.Returns.begin(),
344 E = CSI.Returns.end();
345 I != E; ++I) {
346 ReturnStmt *RS = *I;
347 Expr *RetE = RS->getRetValue();
348 if (RetE->getType() == CSI.ReturnType)
349 continue;
350
351 // Right now we only support integral fixup casts.
352 assert(CSI.ReturnType->isIntegralOrUnscopedEnumerationType());
353 assert(RetE->getType()->isIntegralOrUnscopedEnumerationType());
354 ExprResult Casted = ImpCastExprToType(RetE, CSI.ReturnType,
355 CK_IntegralCast);
356 assert(Casted.isUsable());
357 RS->setRetValue(Casted.take());
358 }
359 }
360}
361
Douglas Gregordfca6f52012-02-13 22:00:16 +0000362void Sema::ActOnStartOfLambdaDefinition(LambdaIntroducer &Intro,
363 Declarator &ParamInfo,
364 Scope *CurScope) {
Douglas Gregorf4b7de12012-02-21 19:11:17 +0000365 // Determine if we're within a context where we know that the lambda will
366 // be dependent, because there are template parameters in scope.
367 bool KnownDependent = false;
368 if (Scope *TmplScope = CurScope->getTemplateParamParent())
369 if (!TmplScope->decl_empty())
370 KnownDependent = true;
371
372 CXXRecordDecl *Class = createLambdaClosureType(Intro.Range, KnownDependent);
Douglas Gregordfca6f52012-02-13 22:00:16 +0000373
374 // Determine the signature of the call operator.
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000375 TypeSourceInfo *MethodTyInfo;
376 bool ExplicitParams = true;
Douglas Gregordfca6f52012-02-13 22:00:16 +0000377 bool ExplicitResultType = true;
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000378 SourceLocation EndLoc;
Douglas Gregorc6889e72012-02-14 22:28:59 +0000379 llvm::ArrayRef<ParmVarDecl *> Params;
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000380 if (ParamInfo.getNumTypeObjects() == 0) {
381 // C++11 [expr.prim.lambda]p4:
382 // If a lambda-expression does not include a lambda-declarator, it is as
383 // if the lambda-declarator were ().
384 FunctionProtoType::ExtProtoInfo EPI;
Richard Smitheefb3d52012-02-10 09:58:53 +0000385 EPI.HasTrailingReturn = true;
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000386 EPI.TypeQuals |= DeclSpec::TQ_const;
Douglas Gregordfca6f52012-02-13 22:00:16 +0000387 QualType MethodTy = Context.getFunctionType(Context.DependentTy,
388 /*Args=*/0, /*NumArgs=*/0, EPI);
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000389 MethodTyInfo = Context.getTrivialTypeSourceInfo(MethodTy);
390 ExplicitParams = false;
Douglas Gregordfca6f52012-02-13 22:00:16 +0000391 ExplicitResultType = false;
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000392 EndLoc = Intro.Range.getEnd();
393 } else {
394 assert(ParamInfo.isFunctionDeclarator() &&
395 "lambda-declarator is a function");
396 DeclaratorChunk::FunctionTypeInfo &FTI = ParamInfo.getFunctionTypeInfo();
397
398 // C++11 [expr.prim.lambda]p5:
399 // This function call operator is declared const (9.3.1) if and only if
400 // the lambda-expression's parameter-declaration-clause is not followed
401 // by mutable. It is neither virtual nor declared volatile. [...]
402 if (!FTI.hasMutableQualifier())
403 FTI.TypeQuals |= DeclSpec::TQ_const;
404
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000405 MethodTyInfo = GetTypeForDeclarator(ParamInfo, CurScope);
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000406 assert(MethodTyInfo && "no type from lambda-declarator");
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000407 EndLoc = ParamInfo.getSourceRange().getEnd();
Douglas Gregordfca6f52012-02-13 22:00:16 +0000408
409 ExplicitResultType
410 = MethodTyInfo->getType()->getAs<FunctionType>()->getResultType()
411 != Context.DependentTy;
Douglas Gregorc6889e72012-02-14 22:28:59 +0000412
413 TypeLoc TL = MethodTyInfo->getTypeLoc();
414 FunctionProtoTypeLoc Proto = cast<FunctionProtoTypeLoc>(TL);
415 Params = llvm::ArrayRef<ParmVarDecl *>(Proto.getParmArray(),
416 Proto.getNumArgs());
Douglas Gregor03f1eb02012-06-15 16:59:29 +0000417
418 // Check for unexpanded parameter packs in the method type.
419 // FIXME: We should allow unexpanded parameter packs here, but that would,
420 // in turn, make the lambda expression contain unexpanded parameter packs.
421 if (DiagnoseUnexpandedParameterPack(Intro.Range.getBegin(), MethodTyInfo,
422 UPPC_Lambda)) {
423 // Drop the parameters.
424 Params = llvm::ArrayRef<ParmVarDecl *>();
425 FunctionProtoType::ExtProtoInfo EPI;
426 EPI.HasTrailingReturn = false;
427 EPI.TypeQuals |= DeclSpec::TQ_const;
428 QualType MethodTy = Context.getFunctionType(Context.DependentTy,
429 /*Args=*/0, /*NumArgs=*/0, EPI);
430 MethodTyInfo = Context.getTrivialTypeSourceInfo(MethodTy);
431 ExplicitParams = false;
432 ExplicitResultType = false;
433 }
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000434 }
435
Douglas Gregor03f1eb02012-06-15 16:59:29 +0000436 CXXMethodDecl *Method = startLambdaDefinition(Class, Intro.Range,
Douglas Gregorc6889e72012-02-14 22:28:59 +0000437 MethodTyInfo, EndLoc, Params);
438
439 if (ExplicitParams)
440 CheckCXXDefaultArguments(Method);
Douglas Gregordfca6f52012-02-13 22:00:16 +0000441
Douglas Gregor503384f2012-02-09 00:47:04 +0000442 // Attributes on the lambda apply to the method.
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000443 ProcessDeclAttributes(CurScope, Method, ParamInfo);
444
Douglas Gregor503384f2012-02-09 00:47:04 +0000445 // Introduce the function call operator as the current declaration context.
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000446 PushDeclContext(CurScope, Method);
447
448 // Introduce the lambda scope.
Douglas Gregordfca6f52012-02-13 22:00:16 +0000449 LambdaScopeInfo *LSI
450 = enterLambdaScope(Method, Intro.Range, Intro.Default, ExplicitParams,
451 ExplicitResultType,
452 (Method->getTypeQualifiers() & Qualifiers::Const) == 0);
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000453
454 // Handle explicit captures.
Douglas Gregor3ac109c2012-02-10 17:46:20 +0000455 SourceLocation PrevCaptureLoc
456 = Intro.Default == LCD_None? Intro.Range.getBegin() : Intro.DefaultLoc;
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000457 for (llvm::SmallVector<LambdaCapture, 4>::const_iterator
458 C = Intro.Captures.begin(),
459 E = Intro.Captures.end();
Douglas Gregor3ac109c2012-02-10 17:46:20 +0000460 C != E;
461 PrevCaptureLoc = C->Loc, ++C) {
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000462 if (C->Kind == LCK_This) {
463 // C++11 [expr.prim.lambda]p8:
464 // An identifier or this shall not appear more than once in a
465 // lambda-capture.
466 if (LSI->isCXXThisCaptured()) {
467 Diag(C->Loc, diag::err_capture_more_than_once)
468 << "'this'"
Douglas Gregor3ac109c2012-02-10 17:46:20 +0000469 << SourceRange(LSI->getCXXThisCapture().getLocation())
470 << FixItHint::CreateRemoval(
471 SourceRange(PP.getLocForEndOfToken(PrevCaptureLoc), C->Loc));
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000472 continue;
473 }
474
475 // C++11 [expr.prim.lambda]p8:
476 // If a lambda-capture includes a capture-default that is =, the
477 // lambda-capture shall not contain this [...].
478 if (Intro.Default == LCD_ByCopy) {
Douglas Gregor3ac109c2012-02-10 17:46:20 +0000479 Diag(C->Loc, diag::err_this_capture_with_copy_default)
480 << FixItHint::CreateRemoval(
481 SourceRange(PP.getLocForEndOfToken(PrevCaptureLoc), C->Loc));
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000482 continue;
483 }
484
485 // C++11 [expr.prim.lambda]p12:
486 // If this is captured by a local lambda expression, its nearest
487 // enclosing function shall be a non-static member function.
488 QualType ThisCaptureType = getCurrentThisType();
489 if (ThisCaptureType.isNull()) {
490 Diag(C->Loc, diag::err_this_capture) << true;
491 continue;
492 }
493
494 CheckCXXThisCapture(C->Loc, /*Explicit=*/true);
495 continue;
496 }
497
498 assert(C->Id && "missing identifier for capture");
499
500 // C++11 [expr.prim.lambda]p8:
501 // If a lambda-capture includes a capture-default that is &, the
502 // identifiers in the lambda-capture shall not be preceded by &.
503 // If a lambda-capture includes a capture-default that is =, [...]
504 // each identifier it contains shall be preceded by &.
505 if (C->Kind == LCK_ByRef && Intro.Default == LCD_ByRef) {
Douglas Gregor3ac109c2012-02-10 17:46:20 +0000506 Diag(C->Loc, diag::err_reference_capture_with_reference_default)
507 << FixItHint::CreateRemoval(
508 SourceRange(PP.getLocForEndOfToken(PrevCaptureLoc), C->Loc));
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000509 continue;
510 } else if (C->Kind == LCK_ByCopy && Intro.Default == LCD_ByCopy) {
Douglas Gregor3ac109c2012-02-10 17:46:20 +0000511 Diag(C->Loc, diag::err_copy_capture_with_copy_default)
512 << FixItHint::CreateRemoval(
513 SourceRange(PP.getLocForEndOfToken(PrevCaptureLoc), C->Loc));
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000514 continue;
515 }
516
517 DeclarationNameInfo Name(C->Id, C->Loc);
518 LookupResult R(*this, Name, LookupOrdinaryName);
519 LookupName(R, CurScope);
520 if (R.isAmbiguous())
521 continue;
522 if (R.empty()) {
523 // FIXME: Disable corrections that would add qualification?
524 CXXScopeSpec ScopeSpec;
525 DeclFilterCCC<VarDecl> Validator;
526 if (DiagnoseEmptyLookup(CurScope, ScopeSpec, R, Validator))
527 continue;
528 }
529
530 // C++11 [expr.prim.lambda]p10:
531 // The identifiers in a capture-list are looked up using the usual rules
532 // for unqualified name lookup (3.4.1); each such lookup shall find a
533 // variable with automatic storage duration declared in the reaching
534 // scope of the local lambda expression.
Douglas Gregor53393f22012-02-14 21:20:44 +0000535 //
Douglas Gregor999713e2012-02-18 09:37:24 +0000536 // Note that the 'reaching scope' check happens in tryCaptureVariable().
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000537 VarDecl *Var = R.getAsSingle<VarDecl>();
538 if (!Var) {
539 Diag(C->Loc, diag::err_capture_does_not_name_variable) << C->Id;
540 continue;
541 }
542
543 if (!Var->hasLocalStorage()) {
544 Diag(C->Loc, diag::err_capture_non_automatic_variable) << C->Id;
545 Diag(Var->getLocation(), diag::note_previous_decl) << C->Id;
546 continue;
547 }
548
549 // C++11 [expr.prim.lambda]p8:
550 // An identifier or this shall not appear more than once in a
551 // lambda-capture.
552 if (LSI->isCaptured(Var)) {
553 Diag(C->Loc, diag::err_capture_more_than_once)
554 << C->Id
Douglas Gregor3ac109c2012-02-10 17:46:20 +0000555 << SourceRange(LSI->getCapture(Var).getLocation())
556 << FixItHint::CreateRemoval(
557 SourceRange(PP.getLocForEndOfToken(PrevCaptureLoc), C->Loc));
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000558 continue;
559 }
560
Douglas Gregora7365242012-02-14 19:27:52 +0000561 // C++11 [expr.prim.lambda]p23:
562 // A capture followed by an ellipsis is a pack expansion (14.5.3).
563 SourceLocation EllipsisLoc;
564 if (C->EllipsisLoc.isValid()) {
565 if (Var->isParameterPack()) {
566 EllipsisLoc = C->EllipsisLoc;
567 } else {
568 Diag(C->EllipsisLoc, diag::err_pack_expansion_without_parameter_packs)
569 << SourceRange(C->Loc);
570
571 // Just ignore the ellipsis.
572 }
573 } else if (Var->isParameterPack()) {
574 Diag(C->Loc, diag::err_lambda_unexpanded_pack);
575 continue;
576 }
577
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000578 TryCaptureKind Kind = C->Kind == LCK_ByRef ? TryCapture_ExplicitByRef :
579 TryCapture_ExplicitByVal;
Douglas Gregor999713e2012-02-18 09:37:24 +0000580 tryCaptureVariable(Var, C->Loc, Kind, EllipsisLoc);
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000581 }
Douglas Gregordfca6f52012-02-13 22:00:16 +0000582 finishLambdaExplicitCaptures(LSI);
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000583
Douglas Gregorc6889e72012-02-14 22:28:59 +0000584 // Add lambda parameters into scope.
585 addLambdaParameters(Method, CurScope);
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000586
Douglas Gregordfca6f52012-02-13 22:00:16 +0000587 // Enter a new evaluation context to insulate the lambda from any
Douglas Gregor503384f2012-02-09 00:47:04 +0000588 // cleanups from the enclosing full-expression.
589 PushExpressionEvaluationContext(PotentiallyEvaluated);
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000590}
591
Douglas Gregordfca6f52012-02-13 22:00:16 +0000592void Sema::ActOnLambdaError(SourceLocation StartLoc, Scope *CurScope,
593 bool IsInstantiation) {
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000594 // Leave the expression-evaluation context.
595 DiscardCleanupsInEvaluationContext();
596 PopExpressionEvaluationContext();
597
598 // Leave the context of the lambda.
Douglas Gregordfca6f52012-02-13 22:00:16 +0000599 if (!IsInstantiation)
600 PopDeclContext();
Douglas Gregor630d5ff2012-02-09 01:28:42 +0000601
602 // Finalize the lambda.
603 LambdaScopeInfo *LSI = getCurLambda();
604 CXXRecordDecl *Class = LSI->Lambda;
605 Class->setInvalidDecl();
David Blaikie262bc182012-04-30 02:36:29 +0000606 SmallVector<Decl*, 4> Fields;
607 for (RecordDecl::field_iterator i = Class->field_begin(),
608 e = Class->field_end(); i != e; ++i)
David Blaikie581deb32012-06-06 20:45:41 +0000609 Fields.push_back(*i);
Douglas Gregor630d5ff2012-02-09 01:28:42 +0000610 ActOnFields(0, Class->getLocation(), Class, Fields,
611 SourceLocation(), SourceLocation(), 0);
612 CheckCompletedCXXClass(Class);
613
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000614 PopFunctionScopeInfo();
615}
616
Douglas Gregorc25d1c92012-02-15 22:00:51 +0000617/// \brief Add a lambda's conversion to function pointer, as described in
618/// C++11 [expr.prim.lambda]p6.
619static void addFunctionPointerConversion(Sema &S,
620 SourceRange IntroducerRange,
621 CXXRecordDecl *Class,
622 CXXMethodDecl *CallOperator) {
Douglas Gregor27dd7d92012-02-17 03:02:34 +0000623 // Add the conversion to function pointer.
Douglas Gregorc25d1c92012-02-15 22:00:51 +0000624 const FunctionProtoType *Proto
625 = CallOperator->getType()->getAs<FunctionProtoType>();
626 QualType FunctionPtrTy;
Douglas Gregor27dd7d92012-02-17 03:02:34 +0000627 QualType FunctionTy;
Douglas Gregorc25d1c92012-02-15 22:00:51 +0000628 {
629 FunctionProtoType::ExtProtoInfo ExtInfo = Proto->getExtProtoInfo();
630 ExtInfo.TypeQuals = 0;
Douglas Gregor27dd7d92012-02-17 03:02:34 +0000631 FunctionTy = S.Context.getFunctionType(Proto->getResultType(),
632 Proto->arg_type_begin(),
633 Proto->getNumArgs(),
634 ExtInfo);
Douglas Gregorc25d1c92012-02-15 22:00:51 +0000635 FunctionPtrTy = S.Context.getPointerType(FunctionTy);
636 }
637
638 FunctionProtoType::ExtProtoInfo ExtInfo;
639 ExtInfo.TypeQuals = Qualifiers::Const;
640 QualType ConvTy = S.Context.getFunctionType(FunctionPtrTy, 0, 0, ExtInfo);
641
642 SourceLocation Loc = IntroducerRange.getBegin();
643 DeclarationName Name
644 = S.Context.DeclarationNames.getCXXConversionFunctionName(
645 S.Context.getCanonicalType(FunctionPtrTy));
646 DeclarationNameLoc NameLoc;
647 NameLoc.NamedType.TInfo = S.Context.getTrivialTypeSourceInfo(FunctionPtrTy,
648 Loc);
649 CXXConversionDecl *Conversion
650 = CXXConversionDecl::Create(S.Context, Class, Loc,
651 DeclarationNameInfo(Name, Loc, NameLoc),
652 ConvTy,
653 S.Context.getTrivialTypeSourceInfo(ConvTy,
654 Loc),
655 /*isInline=*/false, /*isExplicit=*/false,
656 /*isConstexpr=*/false,
657 CallOperator->getBody()->getLocEnd());
658 Conversion->setAccess(AS_public);
659 Conversion->setImplicit(true);
660 Class->addDecl(Conversion);
Douglas Gregor27dd7d92012-02-17 03:02:34 +0000661
662 // Add a non-static member function "__invoke" that will be the result of
663 // the conversion.
664 Name = &S.Context.Idents.get("__invoke");
665 CXXMethodDecl *Invoke
666 = CXXMethodDecl::Create(S.Context, Class, Loc,
667 DeclarationNameInfo(Name, Loc), FunctionTy,
668 CallOperator->getTypeSourceInfo(),
669 /*IsStatic=*/true, SC_Static, /*IsInline=*/true,
670 /*IsConstexpr=*/false,
671 CallOperator->getBody()->getLocEnd());
672 SmallVector<ParmVarDecl *, 4> InvokeParams;
673 for (unsigned I = 0, N = CallOperator->getNumParams(); I != N; ++I) {
674 ParmVarDecl *From = CallOperator->getParamDecl(I);
675 InvokeParams.push_back(ParmVarDecl::Create(S.Context, Invoke,
676 From->getLocStart(),
677 From->getLocation(),
678 From->getIdentifier(),
679 From->getType(),
680 From->getTypeSourceInfo(),
681 From->getStorageClass(),
682 From->getStorageClassAsWritten(),
683 /*DefaultArg=*/0));
684 }
685 Invoke->setParams(InvokeParams);
686 Invoke->setAccess(AS_private);
687 Invoke->setImplicit(true);
688 Class->addDecl(Invoke);
Douglas Gregorc25d1c92012-02-15 22:00:51 +0000689}
690
Douglas Gregorc2956e52012-02-15 22:08:38 +0000691/// \brief Add a lambda's conversion to block pointer.
692static void addBlockPointerConversion(Sema &S,
693 SourceRange IntroducerRange,
694 CXXRecordDecl *Class,
695 CXXMethodDecl *CallOperator) {
696 const FunctionProtoType *Proto
697 = CallOperator->getType()->getAs<FunctionProtoType>();
698 QualType BlockPtrTy;
699 {
700 FunctionProtoType::ExtProtoInfo ExtInfo = Proto->getExtProtoInfo();
701 ExtInfo.TypeQuals = 0;
702 QualType FunctionTy
703 = S.Context.getFunctionType(Proto->getResultType(),
704 Proto->arg_type_begin(),
705 Proto->getNumArgs(),
706 ExtInfo);
707 BlockPtrTy = S.Context.getBlockPointerType(FunctionTy);
708 }
709
710 FunctionProtoType::ExtProtoInfo ExtInfo;
711 ExtInfo.TypeQuals = Qualifiers::Const;
712 QualType ConvTy = S.Context.getFunctionType(BlockPtrTy, 0, 0, ExtInfo);
713
714 SourceLocation Loc = IntroducerRange.getBegin();
715 DeclarationName Name
716 = S.Context.DeclarationNames.getCXXConversionFunctionName(
717 S.Context.getCanonicalType(BlockPtrTy));
718 DeclarationNameLoc NameLoc;
719 NameLoc.NamedType.TInfo = S.Context.getTrivialTypeSourceInfo(BlockPtrTy, Loc);
720 CXXConversionDecl *Conversion
721 = CXXConversionDecl::Create(S.Context, Class, Loc,
722 DeclarationNameInfo(Name, Loc, NameLoc),
723 ConvTy,
724 S.Context.getTrivialTypeSourceInfo(ConvTy, Loc),
725 /*isInline=*/false, /*isExplicit=*/false,
726 /*isConstexpr=*/false,
727 CallOperator->getBody()->getLocEnd());
728 Conversion->setAccess(AS_public);
729 Conversion->setImplicit(true);
730 Class->addDecl(Conversion);
731}
Douglas Gregor5878cbc2012-02-21 04:17:39 +0000732
Douglas Gregordfca6f52012-02-13 22:00:16 +0000733ExprResult Sema::ActOnLambdaExpr(SourceLocation StartLoc, Stmt *Body,
Douglas Gregor9e8c92a2012-02-20 19:44:39 +0000734 Scope *CurScope,
Douglas Gregor9e8c92a2012-02-20 19:44:39 +0000735 bool IsInstantiation) {
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000736 // Collect information from the lambda scope.
737 llvm::SmallVector<LambdaExpr::Capture, 4> Captures;
738 llvm::SmallVector<Expr *, 4> CaptureInits;
739 LambdaCaptureDefault CaptureDefault;
740 CXXRecordDecl *Class;
Douglas Gregoref7d78b2012-02-10 08:36:38 +0000741 CXXMethodDecl *CallOperator;
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000742 SourceRange IntroducerRange;
743 bool ExplicitParams;
Douglas Gregordfca6f52012-02-13 22:00:16 +0000744 bool ExplicitResultType;
Douglas Gregor503384f2012-02-09 00:47:04 +0000745 bool LambdaExprNeedsCleanups;
Douglas Gregor9daa7bf2012-02-13 16:35:30 +0000746 llvm::SmallVector<VarDecl *, 4> ArrayIndexVars;
747 llvm::SmallVector<unsigned, 4> ArrayIndexStarts;
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000748 {
749 LambdaScopeInfo *LSI = getCurLambda();
Douglas Gregoref7d78b2012-02-10 08:36:38 +0000750 CallOperator = LSI->CallOperator;
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000751 Class = LSI->Lambda;
752 IntroducerRange = LSI->IntroducerRange;
753 ExplicitParams = LSI->ExplicitParams;
Douglas Gregordfca6f52012-02-13 22:00:16 +0000754 ExplicitResultType = !LSI->HasImplicitReturnType;
Douglas Gregor503384f2012-02-09 00:47:04 +0000755 LambdaExprNeedsCleanups = LSI->ExprNeedsCleanups;
Douglas Gregor9daa7bf2012-02-13 16:35:30 +0000756 ArrayIndexVars.swap(LSI->ArrayIndexVars);
757 ArrayIndexStarts.swap(LSI->ArrayIndexStarts);
758
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000759 // Translate captures.
760 for (unsigned I = 0, N = LSI->Captures.size(); I != N; ++I) {
761 LambdaScopeInfo::Capture From = LSI->Captures[I];
762 assert(!From.isBlockCapture() && "Cannot capture __block variables");
763 bool IsImplicit = I >= LSI->NumExplicitCaptures;
764
765 // Handle 'this' capture.
766 if (From.isThisCapture()) {
767 Captures.push_back(LambdaExpr::Capture(From.getLocation(),
768 IsImplicit,
769 LCK_This));
770 CaptureInits.push_back(new (Context) CXXThisExpr(From.getLocation(),
771 getCurrentThisType(),
772 /*isImplicit=*/true));
773 continue;
774 }
775
776 VarDecl *Var = From.getVariable();
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000777 LambdaCaptureKind Kind = From.isCopyCapture()? LCK_ByCopy : LCK_ByRef;
778 Captures.push_back(LambdaExpr::Capture(From.getLocation(), IsImplicit,
Douglas Gregora7365242012-02-14 19:27:52 +0000779 Kind, Var, From.getEllipsisLoc()));
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000780 CaptureInits.push_back(From.getCopyExpr());
781 }
782
783 switch (LSI->ImpCaptureStyle) {
784 case CapturingScopeInfo::ImpCap_None:
785 CaptureDefault = LCD_None;
786 break;
787
788 case CapturingScopeInfo::ImpCap_LambdaByval:
789 CaptureDefault = LCD_ByCopy;
790 break;
791
792 case CapturingScopeInfo::ImpCap_LambdaByref:
793 CaptureDefault = LCD_ByRef;
794 break;
795
796 case CapturingScopeInfo::ImpCap_Block:
797 llvm_unreachable("block capture in lambda");
798 break;
799 }
800
Douglas Gregor54042f12012-02-09 10:18:50 +0000801 // C++11 [expr.prim.lambda]p4:
802 // If a lambda-expression does not include a
803 // trailing-return-type, it is as if the trailing-return-type
804 // denotes the following type:
805 // FIXME: Assumes current resolution to core issue 975.
806 if (LSI->HasImplicitReturnType) {
Jordan Rose7dd900e2012-07-02 21:19:23 +0000807 deduceClosureReturnType(*LSI);
808
Douglas Gregor54042f12012-02-09 10:18:50 +0000809 // - if there are no return statements in the
810 // compound-statement, or all return statements return
811 // either an expression of type void or no expression or
812 // braced-init-list, the type void;
813 if (LSI->ReturnType.isNull()) {
814 LSI->ReturnType = Context.VoidTy;
Douglas Gregor54042f12012-02-09 10:18:50 +0000815 }
816
817 // Create a function type with the inferred return type.
818 const FunctionProtoType *Proto
819 = CallOperator->getType()->getAs<FunctionProtoType>();
820 QualType FunctionTy
821 = Context.getFunctionType(LSI->ReturnType,
822 Proto->arg_type_begin(),
823 Proto->getNumArgs(),
824 Proto->getExtProtoInfo());
825 CallOperator->setType(FunctionTy);
826 }
827
Douglas Gregor215e4e12012-02-12 17:34:23 +0000828 // C++ [expr.prim.lambda]p7:
829 // The lambda-expression's compound-statement yields the
830 // function-body (8.4) of the function call operator [...].
Douglas Gregordfca6f52012-02-13 22:00:16 +0000831 ActOnFinishFunctionBody(CallOperator, Body, IsInstantiation);
Douglas Gregor215e4e12012-02-12 17:34:23 +0000832 CallOperator->setLexicalDeclContext(Class);
833 Class->addDecl(CallOperator);
Douglas Gregorb09ab8c2012-02-21 20:05:31 +0000834 PopExpressionEvaluationContext();
Douglas Gregor215e4e12012-02-12 17:34:23 +0000835
Douglas Gregorb5559712012-02-10 16:13:20 +0000836 // C++11 [expr.prim.lambda]p6:
837 // The closure type for a lambda-expression with no lambda-capture
838 // has a public non-virtual non-explicit const conversion function
839 // to pointer to function having the same parameter and return
840 // types as the closure type's function call operator.
Douglas Gregorc25d1c92012-02-15 22:00:51 +0000841 if (Captures.empty() && CaptureDefault == LCD_None)
842 addFunctionPointerConversion(*this, IntroducerRange, Class,
843 CallOperator);
Douglas Gregor503384f2012-02-09 00:47:04 +0000844
Douglas Gregorc2956e52012-02-15 22:08:38 +0000845 // Objective-C++:
846 // The closure type for a lambda-expression has a public non-virtual
847 // non-explicit const conversion function to a block pointer having the
848 // same parameter and return types as the closure type's function call
849 // operator.
David Blaikie4e4d0842012-03-11 07:00:24 +0000850 if (getLangOpts().Blocks && getLangOpts().ObjC1)
Douglas Gregorc2956e52012-02-15 22:08:38 +0000851 addBlockPointerConversion(*this, IntroducerRange, Class, CallOperator);
852
Douglas Gregorb5559712012-02-10 16:13:20 +0000853 // Finalize the lambda class.
David Blaikie262bc182012-04-30 02:36:29 +0000854 SmallVector<Decl*, 4> Fields;
855 for (RecordDecl::field_iterator i = Class->field_begin(),
856 e = Class->field_end(); i != e; ++i)
David Blaikie581deb32012-06-06 20:45:41 +0000857 Fields.push_back(*i);
Douglas Gregorb5559712012-02-10 16:13:20 +0000858 ActOnFields(0, Class->getLocation(), Class, Fields,
859 SourceLocation(), SourceLocation(), 0);
860 CheckCompletedCXXClass(Class);
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000861 }
862
Douglas Gregor503384f2012-02-09 00:47:04 +0000863 if (LambdaExprNeedsCleanups)
864 ExprNeedsCleanups = true;
Douglas Gregor9e8c92a2012-02-20 19:44:39 +0000865
Douglas Gregore2c59132012-02-09 08:14:43 +0000866 LambdaExpr *Lambda = LambdaExpr::Create(Context, Class, IntroducerRange,
867 CaptureDefault, Captures,
Douglas Gregordfca6f52012-02-13 22:00:16 +0000868 ExplicitParams, ExplicitResultType,
869 CaptureInits, ArrayIndexVars,
Douglas Gregorf54486a2012-04-04 17:40:10 +0000870 ArrayIndexStarts, Body->getLocEnd());
Douglas Gregore2c59132012-02-09 08:14:43 +0000871
872 // C++11 [expr.prim.lambda]p2:
873 // A lambda-expression shall not appear in an unevaluated operand
874 // (Clause 5).
Douglas Gregord5387e82012-02-14 00:00:48 +0000875 if (!CurContext->isDependentContext()) {
876 switch (ExprEvalContexts.back().Context) {
877 case Unevaluated:
878 // We don't actually diagnose this case immediately, because we
879 // could be within a context where we might find out later that
880 // the expression is potentially evaluated (e.g., for typeid).
881 ExprEvalContexts.back().Lambdas.push_back(Lambda);
882 break;
Douglas Gregore2c59132012-02-09 08:14:43 +0000883
Douglas Gregord5387e82012-02-14 00:00:48 +0000884 case ConstantEvaluated:
885 case PotentiallyEvaluated:
886 case PotentiallyEvaluatedIfUsed:
887 break;
888 }
Douglas Gregore2c59132012-02-09 08:14:43 +0000889 }
Douglas Gregord5387e82012-02-14 00:00:48 +0000890
Douglas Gregor503384f2012-02-09 00:47:04 +0000891 return MaybeBindToTemporary(Lambda);
Douglas Gregore2a7ad02012-02-08 21:18:48 +0000892}
Eli Friedman23f02672012-03-01 04:01:32 +0000893
894ExprResult Sema::BuildBlockForLambdaConversion(SourceLocation CurrentLocation,
895 SourceLocation ConvLocation,
896 CXXConversionDecl *Conv,
897 Expr *Src) {
898 // Make sure that the lambda call operator is marked used.
899 CXXRecordDecl *Lambda = Conv->getParent();
900 CXXMethodDecl *CallOperator
901 = cast<CXXMethodDecl>(
902 *Lambda->lookup(
903 Context.DeclarationNames.getCXXOperatorName(OO_Call)).first);
904 CallOperator->setReferenced();
905 CallOperator->setUsed();
906
907 ExprResult Init = PerformCopyInitialization(
908 InitializedEntity::InitializeBlock(ConvLocation,
909 Src->getType(),
910 /*NRVO=*/false),
911 CurrentLocation, Src);
912 if (!Init.isInvalid())
913 Init = ActOnFinishFullExpr(Init.take());
914
915 if (Init.isInvalid())
916 return ExprError();
917
918 // Create the new block to be returned.
919 BlockDecl *Block = BlockDecl::Create(Context, CurContext, ConvLocation);
920
921 // Set the type information.
922 Block->setSignatureAsWritten(CallOperator->getTypeSourceInfo());
923 Block->setIsVariadic(CallOperator->isVariadic());
924 Block->setBlockMissingReturnType(false);
925
926 // Add parameters.
927 SmallVector<ParmVarDecl *, 4> BlockParams;
928 for (unsigned I = 0, N = CallOperator->getNumParams(); I != N; ++I) {
929 ParmVarDecl *From = CallOperator->getParamDecl(I);
930 BlockParams.push_back(ParmVarDecl::Create(Context, Block,
931 From->getLocStart(),
932 From->getLocation(),
933 From->getIdentifier(),
934 From->getType(),
935 From->getTypeSourceInfo(),
936 From->getStorageClass(),
937 From->getStorageClassAsWritten(),
938 /*DefaultArg=*/0));
939 }
940 Block->setParams(BlockParams);
941
942 Block->setIsConversionFromLambda(true);
943
944 // Add capture. The capture uses a fake variable, which doesn't correspond
945 // to any actual memory location. However, the initializer copy-initializes
946 // the lambda object.
947 TypeSourceInfo *CapVarTSI =
948 Context.getTrivialTypeSourceInfo(Src->getType());
949 VarDecl *CapVar = VarDecl::Create(Context, Block, ConvLocation,
950 ConvLocation, 0,
951 Src->getType(), CapVarTSI,
952 SC_None, SC_None);
953 BlockDecl::Capture Capture(/*Variable=*/CapVar, /*ByRef=*/false,
954 /*Nested=*/false, /*Copy=*/Init.take());
955 Block->setCaptures(Context, &Capture, &Capture + 1,
956 /*CapturesCXXThis=*/false);
957
958 // Add a fake function body to the block. IR generation is responsible
959 // for filling in the actual body, which cannot be expressed as an AST.
Benjamin Kramer3a2d0fb2012-07-04 17:03:41 +0000960 Block->setBody(new (Context) CompoundStmt(ConvLocation));
Eli Friedman23f02672012-03-01 04:01:32 +0000961
962 // Create the block literal expression.
963 Expr *BuildBlock = new (Context) BlockExpr(Block, Conv->getConversionType());
964 ExprCleanupObjects.push_back(Block);
965 ExprNeedsCleanups = true;
966
967 return BuildBlock;
968}