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Douglas Gregor03dd13c2012-02-08 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"
Chandler Carruth5553d0d2014-01-07 11:51:46 +000014#include "TypeLocBuilder.h"
Faisal Vali2b391ab2013-09-26 19:54:12 +000015#include "clang/AST/ASTLambda.h"
Chandler Carruth3a022472012-12-04 09:13:33 +000016#include "clang/AST/ExprCXX.h"
Reid Klecknerd8110b62013-09-10 20:14:30 +000017#include "clang/Basic/TargetInfo.h"
Douglas Gregor03dd13c2012-02-08 21:18:48 +000018#include "clang/Sema/Initialization.h"
19#include "clang/Sema/Lookup.h"
Douglas Gregor6f88e5e2012-02-21 04:17:39 +000020#include "clang/Sema/Scope.h"
Douglas Gregor03dd13c2012-02-08 21:18:48 +000021#include "clang/Sema/ScopeInfo.h"
22#include "clang/Sema/SemaInternal.h"
Faisal Valia17d19f2013-11-07 05:17:06 +000023#include "clang/Sema/SemaLambda.h"
Douglas Gregor03dd13c2012-02-08 21:18:48 +000024using namespace clang;
25using namespace sema;
26
Faisal Valiab3d6462013-12-07 20:22:44 +000027/// \brief Examines the FunctionScopeInfo stack to determine the nearest
28/// enclosing lambda (to the current lambda) that is 'capture-ready' for
29/// the variable referenced in the current lambda (i.e. \p VarToCapture).
30/// If successful, returns the index into Sema's FunctionScopeInfo stack
31/// of the capture-ready lambda's LambdaScopeInfo.
32///
33/// Climbs down the stack of lambdas (deepest nested lambda - i.e. current
34/// lambda - is on top) to determine the index of the nearest enclosing/outer
35/// lambda that is ready to capture the \p VarToCapture being referenced in
36/// the current lambda.
37/// As we climb down the stack, we want the index of the first such lambda -
38/// that is the lambda with the highest index that is 'capture-ready'.
39///
40/// A lambda 'L' is capture-ready for 'V' (var or this) if:
41/// - its enclosing context is non-dependent
42/// - and if the chain of lambdas between L and the lambda in which
43/// V is potentially used (i.e. the lambda at the top of the scope info
44/// stack), can all capture or have already captured V.
45/// If \p VarToCapture is 'null' then we are trying to capture 'this'.
46///
47/// Note that a lambda that is deemed 'capture-ready' still needs to be checked
48/// for whether it is 'capture-capable' (see
49/// getStackIndexOfNearestEnclosingCaptureCapableLambda), before it can truly
50/// capture.
51///
52/// \param FunctionScopes - Sema's stack of nested FunctionScopeInfo's (which a
53/// LambdaScopeInfo inherits from). The current/deepest/innermost lambda
54/// is at the top of the stack and has the highest index.
55/// \param VarToCapture - the variable to capture. If NULL, capture 'this'.
56///
57/// \returns An Optional<unsigned> Index that if evaluates to 'true' contains
58/// the index (into Sema's FunctionScopeInfo stack) of the innermost lambda
59/// which is capture-ready. If the return value evaluates to 'false' then
60/// no lambda is capture-ready for \p VarToCapture.
61
62static inline Optional<unsigned>
63getStackIndexOfNearestEnclosingCaptureReadyLambda(
64 ArrayRef<const clang::sema::FunctionScopeInfo *> FunctionScopes,
65 VarDecl *VarToCapture) {
66 // Label failure to capture.
67 const Optional<unsigned> NoLambdaIsCaptureReady;
68
69 assert(
70 isa<clang::sema::LambdaScopeInfo>(
71 FunctionScopes[FunctionScopes.size() - 1]) &&
72 "The function on the top of sema's function-info stack must be a lambda");
Faisal Valia17d19f2013-11-07 05:17:06 +000073
Faisal Valiab3d6462013-12-07 20:22:44 +000074 // If VarToCapture is null, we are attempting to capture 'this'.
75 const bool IsCapturingThis = !VarToCapture;
Faisal Valia17d19f2013-11-07 05:17:06 +000076 const bool IsCapturingVariable = !IsCapturingThis;
Faisal Valiab3d6462013-12-07 20:22:44 +000077
78 // Start with the current lambda at the top of the stack (highest index).
Faisal Valia17d19f2013-11-07 05:17:06 +000079 unsigned CurScopeIndex = FunctionScopes.size() - 1;
Faisal Valiab3d6462013-12-07 20:22:44 +000080 DeclContext *EnclosingDC =
81 cast<sema::LambdaScopeInfo>(FunctionScopes[CurScopeIndex])->CallOperator;
82
83 do {
84 const clang::sema::LambdaScopeInfo *LSI =
85 cast<sema::LambdaScopeInfo>(FunctionScopes[CurScopeIndex]);
86 // IF we have climbed down to an intervening enclosing lambda that contains
87 // the variable declaration - it obviously can/must not capture the
Faisal Valia17d19f2013-11-07 05:17:06 +000088 // variable.
Faisal Valiab3d6462013-12-07 20:22:44 +000089 // Since its enclosing DC is dependent, all the lambdas between it and the
90 // innermost nested lambda are dependent (otherwise we wouldn't have
91 // arrived here) - so we don't yet have a lambda that can capture the
92 // variable.
93 if (IsCapturingVariable &&
94 VarToCapture->getDeclContext()->Equals(EnclosingDC))
95 return NoLambdaIsCaptureReady;
96
97 // For an enclosing lambda to be capture ready for an entity, all
98 // intervening lambda's have to be able to capture that entity. If even
99 // one of the intervening lambda's is not capable of capturing the entity
100 // then no enclosing lambda can ever capture that entity.
101 // For e.g.
102 // const int x = 10;
103 // [=](auto a) { #1
104 // [](auto b) { #2 <-- an intervening lambda that can never capture 'x'
105 // [=](auto c) { #3
106 // f(x, c); <-- can not lead to x's speculative capture by #1 or #2
107 // }; }; };
Faisal Valia17d19f2013-11-07 05:17:06 +0000108 // If they do not have a default implicit capture, check to see
109 // if the entity has already been explicitly captured.
Faisal Valiab3d6462013-12-07 20:22:44 +0000110 // If even a single dependent enclosing lambda lacks the capability
111 // to ever capture this variable, there is no further enclosing
Faisal Valia17d19f2013-11-07 05:17:06 +0000112 // non-dependent lambda that can capture this variable.
113 if (LSI->ImpCaptureStyle == sema::LambdaScopeInfo::ImpCap_None) {
Faisal Valiab3d6462013-12-07 20:22:44 +0000114 if (IsCapturingVariable && !LSI->isCaptured(VarToCapture))
115 return NoLambdaIsCaptureReady;
Faisal Valia17d19f2013-11-07 05:17:06 +0000116 if (IsCapturingThis && !LSI->isCXXThisCaptured())
Faisal Valiab3d6462013-12-07 20:22:44 +0000117 return NoLambdaIsCaptureReady;
Faisal Valia17d19f2013-11-07 05:17:06 +0000118 }
119 EnclosingDC = getLambdaAwareParentOfDeclContext(EnclosingDC);
Faisal Valiab3d6462013-12-07 20:22:44 +0000120
121 assert(CurScopeIndex);
Faisal Valia17d19f2013-11-07 05:17:06 +0000122 --CurScopeIndex;
Faisal Valiab3d6462013-12-07 20:22:44 +0000123 } while (!EnclosingDC->isTranslationUnit() &&
124 EnclosingDC->isDependentContext() &&
125 isLambdaCallOperator(EnclosingDC));
Faisal Valia17d19f2013-11-07 05:17:06 +0000126
Faisal Valiab3d6462013-12-07 20:22:44 +0000127 assert(CurScopeIndex < (FunctionScopes.size() - 1));
128 // If the enclosingDC is not dependent, then the immediately nested lambda
129 // (one index above) is capture-ready.
130 if (!EnclosingDC->isDependentContext())
131 return CurScopeIndex + 1;
132 return NoLambdaIsCaptureReady;
133}
134
135/// \brief Examines the FunctionScopeInfo stack to determine the nearest
136/// enclosing lambda (to the current lambda) that is 'capture-capable' for
137/// the variable referenced in the current lambda (i.e. \p VarToCapture).
138/// If successful, returns the index into Sema's FunctionScopeInfo stack
139/// of the capture-capable lambda's LambdaScopeInfo.
140///
141/// Given the current stack of lambdas being processed by Sema and
142/// the variable of interest, to identify the nearest enclosing lambda (to the
143/// current lambda at the top of the stack) that can truly capture
144/// a variable, it has to have the following two properties:
145/// a) 'capture-ready' - be the innermost lambda that is 'capture-ready':
146/// - climb down the stack (i.e. starting from the innermost and examining
147/// each outer lambda step by step) checking if each enclosing
148/// lambda can either implicitly or explicitly capture the variable.
149/// Record the first such lambda that is enclosed in a non-dependent
150/// context. If no such lambda currently exists return failure.
151/// b) 'capture-capable' - make sure the 'capture-ready' lambda can truly
152/// capture the variable by checking all its enclosing lambdas:
153/// - check if all outer lambdas enclosing the 'capture-ready' lambda
154/// identified above in 'a' can also capture the variable (this is done
155/// via tryCaptureVariable for variables and CheckCXXThisCapture for
156/// 'this' by passing in the index of the Lambda identified in step 'a')
157///
158/// \param FunctionScopes - Sema's stack of nested FunctionScopeInfo's (which a
159/// LambdaScopeInfo inherits from). The current/deepest/innermost lambda
160/// is at the top of the stack.
161///
162/// \param VarToCapture - the variable to capture. If NULL, capture 'this'.
163///
164///
165/// \returns An Optional<unsigned> Index that if evaluates to 'true' contains
166/// the index (into Sema's FunctionScopeInfo stack) of the innermost lambda
167/// which is capture-capable. If the return value evaluates to 'false' then
168/// no lambda is capture-capable for \p VarToCapture.
169
170Optional<unsigned> clang::getStackIndexOfNearestEnclosingCaptureCapableLambda(
171 ArrayRef<const sema::FunctionScopeInfo *> FunctionScopes,
172 VarDecl *VarToCapture, Sema &S) {
173
Faisal Vali5035a8c2013-12-09 00:15:23 +0000174 const Optional<unsigned> NoLambdaIsCaptureCapable;
Faisal Valiab3d6462013-12-07 20:22:44 +0000175
176 const Optional<unsigned> OptionalStackIndex =
177 getStackIndexOfNearestEnclosingCaptureReadyLambda(FunctionScopes,
178 VarToCapture);
179 if (!OptionalStackIndex)
Faisal Vali5035a8c2013-12-09 00:15:23 +0000180 return NoLambdaIsCaptureCapable;
Faisal Valiab3d6462013-12-07 20:22:44 +0000181
182 const unsigned IndexOfCaptureReadyLambda = OptionalStackIndex.getValue();
Faisal Vali5ab61b02013-12-08 15:00:29 +0000183 assert(((IndexOfCaptureReadyLambda != (FunctionScopes.size() - 1)) ||
184 S.getCurGenericLambda()) &&
185 "The capture ready lambda for a potential capture can only be the "
Faisal Vali40e84582013-12-08 15:04:03 +0000186 "current lambda if it is a generic lambda");
Faisal Valiab3d6462013-12-07 20:22:44 +0000187
188 const sema::LambdaScopeInfo *const CaptureReadyLambdaLSI =
189 cast<sema::LambdaScopeInfo>(FunctionScopes[IndexOfCaptureReadyLambda]);
190
191 // If VarToCapture is null, we are attempting to capture 'this'
192 const bool IsCapturingThis = !VarToCapture;
Faisal Valia17d19f2013-11-07 05:17:06 +0000193 const bool IsCapturingVariable = !IsCapturingThis;
194
195 if (IsCapturingVariable) {
Faisal Valiab3d6462013-12-07 20:22:44 +0000196 // Check if the capture-ready lambda can truly capture the variable, by
197 // checking whether all enclosing lambdas of the capture-ready lambda allow
198 // the capture - i.e. make sure it is capture-capable.
Faisal Valia17d19f2013-11-07 05:17:06 +0000199 QualType CaptureType, DeclRefType;
Faisal Valiab3d6462013-12-07 20:22:44 +0000200 const bool CanCaptureVariable =
201 !S.tryCaptureVariable(VarToCapture,
202 /*ExprVarIsUsedInLoc*/ SourceLocation(),
203 clang::Sema::TryCapture_Implicit,
204 /*EllipsisLoc*/ SourceLocation(),
205 /*BuildAndDiagnose*/ false, CaptureType,
206 DeclRefType, &IndexOfCaptureReadyLambda);
207 if (!CanCaptureVariable)
Faisal Vali5035a8c2013-12-09 00:15:23 +0000208 return NoLambdaIsCaptureCapable;
Faisal Valiab3d6462013-12-07 20:22:44 +0000209 } else {
210 // Check if the capture-ready lambda can truly capture 'this' by checking
211 // whether all enclosing lambdas of the capture-ready lambda can capture
212 // 'this'.
213 const bool CanCaptureThis =
214 !S.CheckCXXThisCapture(
215 CaptureReadyLambdaLSI->PotentialThisCaptureLocation,
216 /*Explicit*/ false, /*BuildAndDiagnose*/ false,
217 &IndexOfCaptureReadyLambda);
218 if (!CanCaptureThis)
Faisal Vali5035a8c2013-12-09 00:15:23 +0000219 return NoLambdaIsCaptureCapable;
Faisal Valiab3d6462013-12-07 20:22:44 +0000220 }
221 return IndexOfCaptureReadyLambda;
Faisal Valia17d19f2013-11-07 05:17:06 +0000222}
Faisal Valic1a6dc42013-10-23 16:10:50 +0000223
224static inline TemplateParameterList *
225getGenericLambdaTemplateParameterList(LambdaScopeInfo *LSI, Sema &SemaRef) {
226 if (LSI->GLTemplateParameterList)
227 return LSI->GLTemplateParameterList;
228
David Majnemer902f8c62015-12-27 07:16:27 +0000229 if (!LSI->AutoTemplateParams.empty()) {
Faisal Valic1a6dc42013-10-23 16:10:50 +0000230 SourceRange IntroRange = LSI->IntroducerRange;
231 SourceLocation LAngleLoc = IntroRange.getBegin();
232 SourceLocation RAngleLoc = IntroRange.getEnd();
233 LSI->GLTemplateParameterList = TemplateParameterList::Create(
Faisal Valiab3d6462013-12-07 20:22:44 +0000234 SemaRef.Context,
235 /*Template kw loc*/ SourceLocation(), LAngleLoc,
David Majnemer902f8c62015-12-27 07:16:27 +0000236 llvm::makeArrayRef((NamedDecl *const *)LSI->AutoTemplateParams.data(),
237 LSI->AutoTemplateParams.size()),
238 RAngleLoc);
Faisal Valic1a6dc42013-10-23 16:10:50 +0000239 }
240 return LSI->GLTemplateParameterList;
241}
242
Douglas Gregor680e9e02012-02-21 19:11:17 +0000243CXXRecordDecl *Sema::createLambdaClosureType(SourceRange IntroducerRange,
Eli Friedmand564afb2012-09-19 01:18:11 +0000244 TypeSourceInfo *Info,
Faisal Valic1a6dc42013-10-23 16:10:50 +0000245 bool KnownDependent,
246 LambdaCaptureDefault CaptureDefault) {
Douglas Gregor03dd13c2012-02-08 21:18:48 +0000247 DeclContext *DC = CurContext;
248 while (!(DC->isFunctionOrMethod() || DC->isRecord() || DC->isFileContext()))
249 DC = DC->getParent();
Faisal Valic1a6dc42013-10-23 16:10:50 +0000250 bool IsGenericLambda = getGenericLambdaTemplateParameterList(getCurLambda(),
251 *this);
Douglas Gregor03dd13c2012-02-08 21:18:48 +0000252 // Start constructing the lambda class.
Eli Friedmand564afb2012-09-19 01:18:11 +0000253 CXXRecordDecl *Class = CXXRecordDecl::CreateLambda(Context, DC, Info,
Douglas Gregor680e9e02012-02-21 19:11:17 +0000254 IntroducerRange.getBegin(),
Faisal Valic1a6dc42013-10-23 16:10:50 +0000255 KnownDependent,
256 IsGenericLambda,
257 CaptureDefault);
Douglas Gregor43c3f282012-02-20 20:47:06 +0000258 DC->addDecl(Class);
Richard Smith3d584b02014-02-06 21:49:08 +0000259
Douglas Gregor0c46b2b2012-02-13 22:00:16 +0000260 return Class;
261}
Douglas Gregor03dd13c2012-02-08 21:18:48 +0000262
Douglas Gregorb61e8092012-04-04 17:40:10 +0000263/// \brief Determine whether the given context is or is enclosed in an inline
264/// function.
265static bool isInInlineFunction(const DeclContext *DC) {
266 while (!DC->isFileContext()) {
267 if (const FunctionDecl *FD = dyn_cast<FunctionDecl>(DC))
268 if (FD->isInlined())
269 return true;
270
271 DC = DC->getLexicalParent();
272 }
273
274 return false;
275}
276
Eli Friedman7e346a82013-07-01 20:22:57 +0000277MangleNumberingContext *
Eli Friedman3b7d46c2013-07-10 00:30:46 +0000278Sema::getCurrentMangleNumberContext(const DeclContext *DC,
Eli Friedman7e346a82013-07-01 20:22:57 +0000279 Decl *&ManglingContextDecl) {
280 // Compute the context for allocating mangling numbers in the current
281 // expression, if the ABI requires them.
282 ManglingContextDecl = ExprEvalContexts.back().ManglingContextDecl;
283
284 enum ContextKind {
285 Normal,
286 DefaultArgument,
287 DataMember,
288 StaticDataMember
289 } Kind = Normal;
290
291 // Default arguments of member function parameters that appear in a class
292 // definition, as well as the initializers of data members, receive special
293 // treatment. Identify them.
294 if (ManglingContextDecl) {
295 if (ParmVarDecl *Param = dyn_cast<ParmVarDecl>(ManglingContextDecl)) {
296 if (const DeclContext *LexicalDC
297 = Param->getDeclContext()->getLexicalParent())
298 if (LexicalDC->isRecord())
299 Kind = DefaultArgument;
300 } else if (VarDecl *Var = dyn_cast<VarDecl>(ManglingContextDecl)) {
301 if (Var->getDeclContext()->isRecord())
302 Kind = StaticDataMember;
303 } else if (isa<FieldDecl>(ManglingContextDecl)) {
304 Kind = DataMember;
305 }
306 }
307
308 // Itanium ABI [5.1.7]:
309 // In the following contexts [...] the one-definition rule requires closure
310 // types in different translation units to "correspond":
311 bool IsInNonspecializedTemplate =
312 !ActiveTemplateInstantiations.empty() || CurContext->isDependentContext();
313 switch (Kind) {
314 case Normal:
315 // -- the bodies of non-exported nonspecialized template functions
316 // -- the bodies of inline functions
317 if ((IsInNonspecializedTemplate &&
318 !(ManglingContextDecl && isa<ParmVarDecl>(ManglingContextDecl))) ||
319 isInInlineFunction(CurContext)) {
Craig Topperc3ec1492014-05-26 06:22:03 +0000320 ManglingContextDecl = nullptr;
Eli Friedman7e346a82013-07-01 20:22:57 +0000321 return &Context.getManglingNumberContext(DC);
322 }
323
Craig Topperc3ec1492014-05-26 06:22:03 +0000324 ManglingContextDecl = nullptr;
325 return nullptr;
Eli Friedman7e346a82013-07-01 20:22:57 +0000326
327 case StaticDataMember:
328 // -- the initializers of nonspecialized static members of template classes
329 if (!IsInNonspecializedTemplate) {
Craig Topperc3ec1492014-05-26 06:22:03 +0000330 ManglingContextDecl = nullptr;
331 return nullptr;
Eli Friedman7e346a82013-07-01 20:22:57 +0000332 }
333 // Fall through to get the current context.
334
335 case DataMember:
336 // -- the in-class initializers of class members
337 case DefaultArgument:
338 // -- default arguments appearing in class definitions
Reid Klecknerd8110b62013-09-10 20:14:30 +0000339 return &ExprEvalContexts.back().getMangleNumberingContext(Context);
Eli Friedman7e346a82013-07-01 20:22:57 +0000340 }
Andy Gibbs456198d2013-07-02 16:01:56 +0000341
342 llvm_unreachable("unexpected context");
Eli Friedman7e346a82013-07-01 20:22:57 +0000343}
344
Reid Klecknerd8110b62013-09-10 20:14:30 +0000345MangleNumberingContext &
346Sema::ExpressionEvaluationContextRecord::getMangleNumberingContext(
347 ASTContext &Ctx) {
348 assert(ManglingContextDecl && "Need to have a context declaration");
349 if (!MangleNumbering)
350 MangleNumbering = Ctx.createMangleNumberingContext();
351 return *MangleNumbering;
352}
353
Douglas Gregor0c46b2b2012-02-13 22:00:16 +0000354CXXMethodDecl *Sema::startLambdaDefinition(CXXRecordDecl *Class,
Richard Smith4db51c22013-09-25 05:02:54 +0000355 SourceRange IntroducerRange,
356 TypeSourceInfo *MethodTypeInfo,
357 SourceLocation EndLoc,
Faisal Valia734ab92016-03-26 16:11:37 +0000358 ArrayRef<ParmVarDecl *> Params,
359 const bool IsConstexprSpecified) {
Richard Smith4db51c22013-09-25 05:02:54 +0000360 QualType MethodType = MethodTypeInfo->getType();
Faisal Vali2b391ab2013-09-26 19:54:12 +0000361 TemplateParameterList *TemplateParams =
362 getGenericLambdaTemplateParameterList(getCurLambda(), *this);
363 // If a lambda appears in a dependent context or is a generic lambda (has
364 // template parameters) and has an 'auto' return type, deduce it to a
365 // dependent type.
366 if (Class->isDependentContext() || TemplateParams) {
Richard Smith4db51c22013-09-25 05:02:54 +0000367 const FunctionProtoType *FPT = MethodType->castAs<FunctionProtoType>();
Alp Toker314cc812014-01-25 16:55:45 +0000368 QualType Result = FPT->getReturnType();
Richard Smith4db51c22013-09-25 05:02:54 +0000369 if (Result->isUndeducedType()) {
370 Result = SubstAutoType(Result, Context.DependentTy);
Alp Toker9cacbab2014-01-20 20:26:09 +0000371 MethodType = Context.getFunctionType(Result, FPT->getParamTypes(),
Richard Smith4db51c22013-09-25 05:02:54 +0000372 FPT->getExtProtoInfo());
373 }
374 }
375
Douglas Gregor0c46b2b2012-02-13 22:00:16 +0000376 // C++11 [expr.prim.lambda]p5:
377 // The closure type for a lambda-expression has a public inline function
378 // call operator (13.5.4) whose parameters and return type are described by
379 // the lambda-expression's parameter-declaration-clause and
380 // trailing-return-type respectively.
381 DeclarationName MethodName
382 = Context.DeclarationNames.getCXXOperatorName(OO_Call);
383 DeclarationNameLoc MethodNameLoc;
384 MethodNameLoc.CXXOperatorName.BeginOpNameLoc
385 = IntroducerRange.getBegin().getRawEncoding();
386 MethodNameLoc.CXXOperatorName.EndOpNameLoc
387 = IntroducerRange.getEnd().getRawEncoding();
388 CXXMethodDecl *Method
389 = CXXMethodDecl::Create(Context, Class, EndLoc,
390 DeclarationNameInfo(MethodName,
391 IntroducerRange.getBegin(),
392 MethodNameLoc),
Richard Smith4db51c22013-09-25 05:02:54 +0000393 MethodType, MethodTypeInfo,
Douglas Gregor0c46b2b2012-02-13 22:00:16 +0000394 SC_None,
395 /*isInline=*/true,
Faisal Valia734ab92016-03-26 16:11:37 +0000396 IsConstexprSpecified,
Douglas Gregor0c46b2b2012-02-13 22:00:16 +0000397 EndLoc);
398 Method->setAccess(AS_public);
399
400 // Temporarily set the lexical declaration context to the current
401 // context, so that the Scope stack matches the lexical nesting.
Douglas Gregor43c3f282012-02-20 20:47:06 +0000402 Method->setLexicalDeclContext(CurContext);
Faisal Vali2b391ab2013-09-26 19:54:12 +0000403 // Create a function template if we have a template parameter list
404 FunctionTemplateDecl *const TemplateMethod = TemplateParams ?
405 FunctionTemplateDecl::Create(Context, Class,
406 Method->getLocation(), MethodName,
407 TemplateParams,
Craig Topperc3ec1492014-05-26 06:22:03 +0000408 Method) : nullptr;
Faisal Vali2b391ab2013-09-26 19:54:12 +0000409 if (TemplateMethod) {
410 TemplateMethod->setLexicalDeclContext(CurContext);
411 TemplateMethod->setAccess(AS_public);
412 Method->setDescribedFunctionTemplate(TemplateMethod);
413 }
Douglas Gregor0c46b2b2012-02-13 22:00:16 +0000414
Douglas Gregoradb376e2012-02-14 22:28:59 +0000415 // Add parameters.
416 if (!Params.empty()) {
417 Method->setParams(Params);
418 CheckParmsForFunctionDef(const_cast<ParmVarDecl **>(Params.begin()),
419 const_cast<ParmVarDecl **>(Params.end()),
420 /*CheckParameterNames=*/false);
421
Aaron Ballman43b68be2014-03-07 17:50:17 +0000422 for (auto P : Method->params())
423 P->setOwningFunction(Method);
Douglas Gregoradb376e2012-02-14 22:28:59 +0000424 }
Richard Smith505df232012-07-22 23:45:10 +0000425
Eli Friedman7e346a82013-07-01 20:22:57 +0000426 Decl *ManglingContextDecl;
427 if (MangleNumberingContext *MCtx =
428 getCurrentMangleNumberContext(Class->getDeclContext(),
429 ManglingContextDecl)) {
430 unsigned ManglingNumber = MCtx->getManglingNumber(Method);
431 Class->setLambdaMangling(ManglingNumber, ManglingContextDecl);
Douglas Gregorb61e8092012-04-04 17:40:10 +0000432 }
433
Douglas Gregor0c46b2b2012-02-13 22:00:16 +0000434 return Method;
435}
436
Faisal Vali2b391ab2013-09-26 19:54:12 +0000437void Sema::buildLambdaScope(LambdaScopeInfo *LSI,
438 CXXMethodDecl *CallOperator,
Douglas Gregor0c46b2b2012-02-13 22:00:16 +0000439 SourceRange IntroducerRange,
440 LambdaCaptureDefault CaptureDefault,
James Dennettddd36ff2013-08-09 23:08:25 +0000441 SourceLocation CaptureDefaultLoc,
Douglas Gregor0c46b2b2012-02-13 22:00:16 +0000442 bool ExplicitParams,
443 bool ExplicitResultType,
444 bool Mutable) {
Faisal Vali2b391ab2013-09-26 19:54:12 +0000445 LSI->CallOperator = CallOperator;
Faisal Valic1a6dc42013-10-23 16:10:50 +0000446 CXXRecordDecl *LambdaClass = CallOperator->getParent();
447 LSI->Lambda = LambdaClass;
Douglas Gregor0c46b2b2012-02-13 22:00:16 +0000448 if (CaptureDefault == LCD_ByCopy)
449 LSI->ImpCaptureStyle = LambdaScopeInfo::ImpCap_LambdaByval;
450 else if (CaptureDefault == LCD_ByRef)
451 LSI->ImpCaptureStyle = LambdaScopeInfo::ImpCap_LambdaByref;
James Dennettddd36ff2013-08-09 23:08:25 +0000452 LSI->CaptureDefaultLoc = CaptureDefaultLoc;
Douglas Gregor0c46b2b2012-02-13 22:00:16 +0000453 LSI->IntroducerRange = IntroducerRange;
454 LSI->ExplicitParams = ExplicitParams;
455 LSI->Mutable = Mutable;
456
457 if (ExplicitResultType) {
Alp Toker314cc812014-01-25 16:55:45 +0000458 LSI->ReturnType = CallOperator->getReturnType();
459
Douglas Gregor621003e2012-02-14 21:20:44 +0000460 if (!LSI->ReturnType->isDependentType() &&
461 !LSI->ReturnType->isVoidType()) {
462 if (RequireCompleteType(CallOperator->getLocStart(), LSI->ReturnType,
463 diag::err_lambda_incomplete_result)) {
464 // Do nothing.
Douglas Gregor621003e2012-02-14 21:20:44 +0000465 }
466 }
Douglas Gregor0c46b2b2012-02-13 22:00:16 +0000467 } else {
468 LSI->HasImplicitReturnType = true;
469 }
Douglas Gregor0c46b2b2012-02-13 22:00:16 +0000470}
471
472void Sema::finishLambdaExplicitCaptures(LambdaScopeInfo *LSI) {
473 LSI->finishedExplicitCaptures();
474}
475
Douglas Gregoradb376e2012-02-14 22:28:59 +0000476void Sema::addLambdaParameters(CXXMethodDecl *CallOperator, Scope *CurScope) {
Douglas Gregor0c46b2b2012-02-13 22:00:16 +0000477 // Introduce our parameters into the function scope
478 for (unsigned p = 0, NumParams = CallOperator->getNumParams();
479 p < NumParams; ++p) {
480 ParmVarDecl *Param = CallOperator->getParamDecl(p);
Douglas Gregor0c46b2b2012-02-13 22:00:16 +0000481
482 // If this has an identifier, add it to the scope stack.
483 if (CurScope && Param->getIdentifier()) {
484 CheckShadow(CurScope, Param);
485
486 PushOnScopeChains(Param, CurScope);
487 }
488 }
489}
490
John McCalle4c11cc2013-03-09 00:54:31 +0000491/// If this expression is an enumerator-like expression of some type
492/// T, return the type T; otherwise, return null.
493///
494/// Pointer comparisons on the result here should always work because
495/// it's derived from either the parent of an EnumConstantDecl
496/// (i.e. the definition) or the declaration returned by
497/// EnumType::getDecl() (i.e. the definition).
498static EnumDecl *findEnumForBlockReturn(Expr *E) {
499 // An expression is an enumerator-like expression of type T if,
500 // ignoring parens and parens-like expressions:
501 E = E->IgnoreParens();
Jordan Rosed39e5f12012-07-02 21:19:23 +0000502
John McCalle4c11cc2013-03-09 00:54:31 +0000503 // - it is an enumerator whose enum type is T or
504 if (DeclRefExpr *DRE = dyn_cast<DeclRefExpr>(E)) {
505 if (EnumConstantDecl *D
506 = dyn_cast<EnumConstantDecl>(DRE->getDecl())) {
507 return cast<EnumDecl>(D->getDeclContext());
508 }
Craig Topperc3ec1492014-05-26 06:22:03 +0000509 return nullptr;
Jordan Rosed39e5f12012-07-02 21:19:23 +0000510 }
511
John McCalle4c11cc2013-03-09 00:54:31 +0000512 // - it is a comma expression whose RHS is an enumerator-like
513 // expression of type T or
514 if (BinaryOperator *BO = dyn_cast<BinaryOperator>(E)) {
515 if (BO->getOpcode() == BO_Comma)
516 return findEnumForBlockReturn(BO->getRHS());
Craig Topperc3ec1492014-05-26 06:22:03 +0000517 return nullptr;
John McCalle4c11cc2013-03-09 00:54:31 +0000518 }
Jordan Rosed39e5f12012-07-02 21:19:23 +0000519
John McCalle4c11cc2013-03-09 00:54:31 +0000520 // - it is a statement-expression whose value expression is an
521 // enumerator-like expression of type T or
522 if (StmtExpr *SE = dyn_cast<StmtExpr>(E)) {
523 if (Expr *last = dyn_cast_or_null<Expr>(SE->getSubStmt()->body_back()))
524 return findEnumForBlockReturn(last);
Craig Topperc3ec1492014-05-26 06:22:03 +0000525 return nullptr;
John McCalle4c11cc2013-03-09 00:54:31 +0000526 }
527
528 // - it is a ternary conditional operator (not the GNU ?:
529 // extension) whose second and third operands are
530 // enumerator-like expressions of type T or
531 if (ConditionalOperator *CO = dyn_cast<ConditionalOperator>(E)) {
532 if (EnumDecl *ED = findEnumForBlockReturn(CO->getTrueExpr()))
533 if (ED == findEnumForBlockReturn(CO->getFalseExpr()))
534 return ED;
Craig Topperc3ec1492014-05-26 06:22:03 +0000535 return nullptr;
John McCalle4c11cc2013-03-09 00:54:31 +0000536 }
537
538 // (implicitly:)
539 // - it is an implicit integral conversion applied to an
540 // enumerator-like expression of type T or
541 if (ImplicitCastExpr *ICE = dyn_cast<ImplicitCastExpr>(E)) {
John McCall1b4259b2013-05-08 03:34:22 +0000542 // We can sometimes see integral conversions in valid
543 // enumerator-like expressions.
John McCalle4c11cc2013-03-09 00:54:31 +0000544 if (ICE->getCastKind() == CK_IntegralCast)
545 return findEnumForBlockReturn(ICE->getSubExpr());
John McCall1b4259b2013-05-08 03:34:22 +0000546
547 // Otherwise, just rely on the type.
John McCalle4c11cc2013-03-09 00:54:31 +0000548 }
549
550 // - it is an expression of that formal enum type.
551 if (const EnumType *ET = E->getType()->getAs<EnumType>()) {
552 return ET->getDecl();
553 }
554
555 // Otherwise, nope.
Craig Topperc3ec1492014-05-26 06:22:03 +0000556 return nullptr;
John McCalle4c11cc2013-03-09 00:54:31 +0000557}
558
559/// Attempt to find a type T for which the returned expression of the
560/// given statement is an enumerator-like expression of that type.
561static EnumDecl *findEnumForBlockReturn(ReturnStmt *ret) {
562 if (Expr *retValue = ret->getRetValue())
563 return findEnumForBlockReturn(retValue);
Craig Topperc3ec1492014-05-26 06:22:03 +0000564 return nullptr;
John McCalle4c11cc2013-03-09 00:54:31 +0000565}
566
567/// Attempt to find a common type T for which all of the returned
568/// expressions in a block are enumerator-like expressions of that
569/// type.
570static EnumDecl *findCommonEnumForBlockReturns(ArrayRef<ReturnStmt*> returns) {
571 ArrayRef<ReturnStmt*>::iterator i = returns.begin(), e = returns.end();
572
573 // Try to find one for the first return.
574 EnumDecl *ED = findEnumForBlockReturn(*i);
Craig Topperc3ec1492014-05-26 06:22:03 +0000575 if (!ED) return nullptr;
John McCalle4c11cc2013-03-09 00:54:31 +0000576
577 // Check that the rest of the returns have the same enum.
578 for (++i; i != e; ++i) {
579 if (findEnumForBlockReturn(*i) != ED)
Craig Topperc3ec1492014-05-26 06:22:03 +0000580 return nullptr;
John McCalle4c11cc2013-03-09 00:54:31 +0000581 }
582
583 // Never infer an anonymous enum type.
Craig Topperc3ec1492014-05-26 06:22:03 +0000584 if (!ED->hasNameForLinkage()) return nullptr;
John McCalle4c11cc2013-03-09 00:54:31 +0000585
586 return ED;
587}
588
589/// Adjust the given return statements so that they formally return
590/// the given type. It should require, at most, an IntegralCast.
591static void adjustBlockReturnsToEnum(Sema &S, ArrayRef<ReturnStmt*> returns,
592 QualType returnType) {
593 for (ArrayRef<ReturnStmt*>::iterator
594 i = returns.begin(), e = returns.end(); i != e; ++i) {
595 ReturnStmt *ret = *i;
596 Expr *retValue = ret->getRetValue();
597 if (S.Context.hasSameType(retValue->getType(), returnType))
598 continue;
599
600 // Right now we only support integral fixup casts.
601 assert(returnType->isIntegralOrUnscopedEnumerationType());
602 assert(retValue->getType()->isIntegralOrUnscopedEnumerationType());
603
604 ExprWithCleanups *cleanups = dyn_cast<ExprWithCleanups>(retValue);
605
606 Expr *E = (cleanups ? cleanups->getSubExpr() : retValue);
607 E = ImplicitCastExpr::Create(S.Context, returnType, CK_IntegralCast,
Craig Topperc3ec1492014-05-26 06:22:03 +0000608 E, /*base path*/ nullptr, VK_RValue);
John McCalle4c11cc2013-03-09 00:54:31 +0000609 if (cleanups) {
610 cleanups->setSubExpr(E);
611 } else {
612 ret->setRetValue(E);
Jordan Rosed39e5f12012-07-02 21:19:23 +0000613 }
614 }
Jordan Rosed39e5f12012-07-02 21:19:23 +0000615}
616
617void Sema::deduceClosureReturnType(CapturingScopeInfo &CSI) {
Manuel Klimek2fdbea22013-08-22 12:12:24 +0000618 assert(CSI.HasImplicitReturnType);
Faisal Vali2b391ab2013-09-26 19:54:12 +0000619 // If it was ever a placeholder, it had to been deduced to DependentTy.
620 assert(CSI.ReturnType.isNull() || !CSI.ReturnType->isUndeducedType());
Richard Smith59b982e2016-02-02 23:58:56 +0000621 assert((!isa<LambdaScopeInfo>(CSI) || !getLangOpts().CPlusPlus14) &&
622 "lambda expressions use auto deduction in C++14 onwards");
Jordan Rosed39e5f12012-07-02 21:19:23 +0000623
Richard Smith5a0e50c2014-12-19 22:10:51 +0000624 // C++ core issue 975:
John McCalle4c11cc2013-03-09 00:54:31 +0000625 // If a lambda-expression does not include a trailing-return-type,
626 // it is as if the trailing-return-type denotes the following type:
627 // - if there are no return statements in the compound-statement,
628 // or all return statements return either an expression of type
629 // void or no expression or braced-init-list, the type void;
630 // - otherwise, if all return statements return an expression
631 // and the types of the returned expressions after
632 // lvalue-to-rvalue conversion (4.1 [conv.lval]),
633 // array-to-pointer conversion (4.2 [conv.array]), and
634 // function-to-pointer conversion (4.3 [conv.func]) are the
635 // same, that common type;
636 // - otherwise, the program is ill-formed.
637 //
Richard Smith5a0e50c2014-12-19 22:10:51 +0000638 // C++ core issue 1048 additionally removes top-level cv-qualifiers
639 // from the types of returned expressions to match the C++14 auto
640 // deduction rules.
641 //
John McCalle4c11cc2013-03-09 00:54:31 +0000642 // In addition, in blocks in non-C++ modes, if all of the return
643 // statements are enumerator-like expressions of some type T, where
644 // T has a name for linkage, then we infer the return type of the
645 // block to be that type.
646
Jordan Rosed39e5f12012-07-02 21:19:23 +0000647 // First case: no return statements, implicit void return type.
648 ASTContext &Ctx = getASTContext();
649 if (CSI.Returns.empty()) {
650 // It's possible there were simply no /valid/ return statements.
651 // In this case, the first one we found may have at least given us a type.
652 if (CSI.ReturnType.isNull())
653 CSI.ReturnType = Ctx.VoidTy;
654 return;
655 }
656
657 // Second case: at least one return statement has dependent type.
658 // Delay type checking until instantiation.
659 assert(!CSI.ReturnType.isNull() && "We should have a tentative return type.");
Manuel Klimek2fdbea22013-08-22 12:12:24 +0000660 if (CSI.ReturnType->isDependentType())
Jordan Rosed39e5f12012-07-02 21:19:23 +0000661 return;
662
John McCalle4c11cc2013-03-09 00:54:31 +0000663 // Try to apply the enum-fuzz rule.
664 if (!getLangOpts().CPlusPlus) {
665 assert(isa<BlockScopeInfo>(CSI));
666 const EnumDecl *ED = findCommonEnumForBlockReturns(CSI.Returns);
667 if (ED) {
668 CSI.ReturnType = Context.getTypeDeclType(ED);
669 adjustBlockReturnsToEnum(*this, CSI.Returns, CSI.ReturnType);
670 return;
671 }
672 }
673
Jordan Rosed39e5f12012-07-02 21:19:23 +0000674 // Third case: only one return statement. Don't bother doing extra work!
675 SmallVectorImpl<ReturnStmt*>::iterator I = CSI.Returns.begin(),
676 E = CSI.Returns.end();
677 if (I+1 == E)
678 return;
679
680 // General case: many return statements.
681 // Check that they all have compatible return types.
Jordan Rosed39e5f12012-07-02 21:19:23 +0000682
683 // We require the return types to strictly match here.
John McCalle4c11cc2013-03-09 00:54:31 +0000684 // Note that we've already done the required promotions as part of
685 // processing the return statement.
Jordan Rosed39e5f12012-07-02 21:19:23 +0000686 for (; I != E; ++I) {
687 const ReturnStmt *RS = *I;
688 const Expr *RetE = RS->getRetValue();
Jordan Rosed39e5f12012-07-02 21:19:23 +0000689
Richard Smith5a0e50c2014-12-19 22:10:51 +0000690 QualType ReturnType =
691 (RetE ? RetE->getType() : Context.VoidTy).getUnqualifiedType();
Douglas Gregora602a152015-10-01 20:20:47 +0000692 if (Context.getCanonicalFunctionResultType(ReturnType) ==
693 Context.getCanonicalFunctionResultType(CSI.ReturnType))
John McCalle4c11cc2013-03-09 00:54:31 +0000694 continue;
Jordan Rosed39e5f12012-07-02 21:19:23 +0000695
John McCalle4c11cc2013-03-09 00:54:31 +0000696 // FIXME: This is a poor diagnostic for ReturnStmts without expressions.
697 // TODO: It's possible that the *first* return is the divergent one.
698 Diag(RS->getLocStart(),
699 diag::err_typecheck_missing_return_type_incompatible)
700 << ReturnType << CSI.ReturnType
701 << isa<LambdaScopeInfo>(CSI);
702 // Continue iterating so that we keep emitting diagnostics.
Jordan Rosed39e5f12012-07-02 21:19:23 +0000703 }
704}
705
Richard Smith42b10572015-11-11 01:36:17 +0000706QualType Sema::buildLambdaInitCaptureInitialization(SourceLocation Loc,
707 bool ByRef,
708 IdentifierInfo *Id,
709 bool IsDirectInit,
710 Expr *&Init) {
Faisal Vali5fb7c3c2013-12-05 01:40:41 +0000711 // Create an 'auto' or 'auto&' TypeSourceInfo that we can use to
712 // deduce against.
Richard Smithba71c082013-05-16 06:20:58 +0000713 QualType DeductType = Context.getAutoDeductType();
714 TypeLocBuilder TLB;
715 TLB.pushTypeSpec(DeductType).setNameLoc(Loc);
716 if (ByRef) {
717 DeductType = BuildReferenceType(DeductType, true, Loc, Id);
718 assert(!DeductType.isNull() && "can't build reference to auto");
719 TLB.push<ReferenceTypeLoc>(DeductType).setSigilLoc(Loc);
720 }
Eli Friedman7152fbe2013-06-07 20:31:48 +0000721 TypeSourceInfo *TSI = TLB.getTypeSourceInfo(Context, DeductType);
Richard Smithba71c082013-05-16 06:20:58 +0000722
Richard Smith42b10572015-11-11 01:36:17 +0000723 // Deduce the type of the init capture.
724 QualType DeducedType = deduceVarTypeFromInitializer(
725 /*VarDecl*/nullptr, DeclarationName(Id), DeductType, TSI,
726 SourceRange(Loc, Loc), IsDirectInit, Init);
Faisal Vali5fb7c3c2013-12-05 01:40:41 +0000727 if (DeducedType.isNull())
728 return QualType();
729
Richard Smith42b10572015-11-11 01:36:17 +0000730 // Are we a non-list direct initialization?
731 ParenListExpr *CXXDirectInit = dyn_cast<ParenListExpr>(Init);
732
Faisal Vali5fb7c3c2013-12-05 01:40:41 +0000733 // Perform initialization analysis and ensure any implicit conversions
734 // (such as lvalue-to-rvalue) are enforced.
735 InitializedEntity Entity =
736 InitializedEntity::InitializeLambdaCapture(Id, DeducedType, Loc);
737 InitializationKind Kind =
738 IsDirectInit
739 ? (CXXDirectInit ? InitializationKind::CreateDirect(
740 Loc, Init->getLocStart(), Init->getLocEnd())
741 : InitializationKind::CreateDirectList(Loc))
742 : InitializationKind::CreateCopy(Loc, Init->getLocStart());
743
744 MultiExprArg Args = Init;
745 if (CXXDirectInit)
746 Args =
747 MultiExprArg(CXXDirectInit->getExprs(), CXXDirectInit->getNumExprs());
748 QualType DclT;
749 InitializationSequence InitSeq(*this, Entity, Kind, Args);
750 ExprResult Result = InitSeq.Perform(*this, Entity, Kind, Args, &DclT);
751
752 if (Result.isInvalid())
753 return QualType();
Nikola Smiljanic01a75982014-05-29 10:55:11 +0000754 Init = Result.getAs<Expr>();
Faisal Vali5fb7c3c2013-12-05 01:40:41 +0000755
756 // The init-capture initialization is a full-expression that must be
757 // processed as one before we enter the declcontext of the lambda's
758 // call-operator.
759 Result = ActOnFinishFullExpr(Init, Loc, /*DiscardedValue*/ false,
760 /*IsConstexpr*/ false,
761 /*IsLambdaInitCaptureInitalizer*/ true);
762 if (Result.isInvalid())
763 return QualType();
764
Nikola Smiljanic01a75982014-05-29 10:55:11 +0000765 Init = Result.getAs<Expr>();
Faisal Vali5fb7c3c2013-12-05 01:40:41 +0000766 return DeducedType;
767}
768
Richard Smith42b10572015-11-11 01:36:17 +0000769VarDecl *Sema::createLambdaInitCaptureVarDecl(SourceLocation Loc,
770 QualType InitCaptureType,
771 IdentifierInfo *Id,
772 unsigned InitStyle, Expr *Init) {
Faisal Vali5fb7c3c2013-12-05 01:40:41 +0000773 TypeSourceInfo *TSI = Context.getTrivialTypeSourceInfo(InitCaptureType,
774 Loc);
Richard Smithbb13c9a2013-09-28 04:02:39 +0000775 // Create a dummy variable representing the init-capture. This is not actually
776 // used as a variable, and only exists as a way to name and refer to the
777 // init-capture.
778 // FIXME: Pass in separate source locations for '&' and identifier.
Richard Smith75e3f692013-09-28 04:31:26 +0000779 VarDecl *NewVD = VarDecl::Create(Context, CurContext, Loc,
Faisal Vali5fb7c3c2013-12-05 01:40:41 +0000780 Loc, Id, InitCaptureType, TSI, SC_Auto);
Richard Smithbb13c9a2013-09-28 04:02:39 +0000781 NewVD->setInitCapture(true);
782 NewVD->setReferenced(true);
Richard Smith42b10572015-11-11 01:36:17 +0000783 // FIXME: Pass in a VarDecl::InitializationStyle.
784 NewVD->setInitStyle(static_cast<VarDecl::InitializationStyle>(InitStyle));
Richard Smithbb13c9a2013-09-28 04:02:39 +0000785 NewVD->markUsed(Context);
Faisal Vali5fb7c3c2013-12-05 01:40:41 +0000786 NewVD->setInit(Init);
Richard Smithbb13c9a2013-09-28 04:02:39 +0000787 return NewVD;
788}
Richard Smithba71c082013-05-16 06:20:58 +0000789
Richard Smithbb13c9a2013-09-28 04:02:39 +0000790FieldDecl *Sema::buildInitCaptureField(LambdaScopeInfo *LSI, VarDecl *Var) {
791 FieldDecl *Field = FieldDecl::Create(
792 Context, LSI->Lambda, Var->getLocation(), Var->getLocation(),
Craig Topperc3ec1492014-05-26 06:22:03 +0000793 nullptr, Var->getType(), Var->getTypeSourceInfo(), nullptr, false,
794 ICIS_NoInit);
Richard Smithbb13c9a2013-09-28 04:02:39 +0000795 Field->setImplicit(true);
796 Field->setAccess(AS_private);
797 LSI->Lambda->addDecl(Field);
Richard Smithba71c082013-05-16 06:20:58 +0000798
Richard Smithbb13c9a2013-09-28 04:02:39 +0000799 LSI->addCapture(Var, /*isBlock*/false, Var->getType()->isReferenceType(),
800 /*isNested*/false, Var->getLocation(), SourceLocation(),
801 Var->getType(), Var->getInit());
802 return Field;
Richard Smithba71c082013-05-16 06:20:58 +0000803}
804
Douglas Gregor0c46b2b2012-02-13 22:00:16 +0000805void Sema::ActOnStartOfLambdaDefinition(LambdaIntroducer &Intro,
Richard Smithc38498f2015-04-27 21:27:54 +0000806 Declarator &ParamInfo,
807 Scope *CurScope) {
Douglas Gregor680e9e02012-02-21 19:11:17 +0000808 // Determine if we're within a context where we know that the lambda will
809 // be dependent, because there are template parameters in scope.
810 bool KnownDependent = false;
Faisal Vali2b391ab2013-09-26 19:54:12 +0000811 LambdaScopeInfo *const LSI = getCurLambda();
812 assert(LSI && "LambdaScopeInfo should be on stack!");
Faisal Vali2b391ab2013-09-26 19:54:12 +0000813
Richard Smithc7649dc2016-03-23 20:07:07 +0000814 // The lambda-expression's closure type might be dependent even if its
815 // semantic context isn't, if it appears within a default argument of a
816 // function template.
817 if (Scope *TmplScope = CurScope->getTemplateParamParent())
818 if (!TmplScope->decl_empty())
Douglas Gregor680e9e02012-02-21 19:11:17 +0000819 KnownDependent = true;
Richard Smithc7649dc2016-03-23 20:07:07 +0000820
Douglas Gregor0c46b2b2012-02-13 22:00:16 +0000821 // Determine the signature of the call operator.
Douglas Gregor03dd13c2012-02-08 21:18:48 +0000822 TypeSourceInfo *MethodTyInfo;
823 bool ExplicitParams = true;
Douglas Gregor0c46b2b2012-02-13 22:00:16 +0000824 bool ExplicitResultType = true;
Richard Smith2589b9802012-07-25 03:56:55 +0000825 bool ContainsUnexpandedParameterPack = false;
Douglas Gregor03dd13c2012-02-08 21:18:48 +0000826 SourceLocation EndLoc;
Dmitri Gribenkof8579502013-01-12 19:30:44 +0000827 SmallVector<ParmVarDecl *, 8> Params;
Douglas Gregor03dd13c2012-02-08 21:18:48 +0000828 if (ParamInfo.getNumTypeObjects() == 0) {
829 // C++11 [expr.prim.lambda]p4:
830 // If a lambda-expression does not include a lambda-declarator, it is as
831 // if the lambda-declarator were ().
Reid Kleckner78af0702013-08-27 23:08:25 +0000832 FunctionProtoType::ExtProtoInfo EPI(Context.getDefaultCallingConvention(
833 /*IsVariadic=*/false, /*IsCXXMethod=*/true));
Richard Smith5e580292012-02-10 09:58:53 +0000834 EPI.HasTrailingReturn = true;
Douglas Gregor03dd13c2012-02-08 21:18:48 +0000835 EPI.TypeQuals |= DeclSpec::TQ_const;
Richard Smith4db51c22013-09-25 05:02:54 +0000836 // C++1y [expr.prim.lambda]:
837 // The lambda return type is 'auto', which is replaced by the
838 // trailing-return type if provided and/or deduced from 'return'
839 // statements
840 // We don't do this before C++1y, because we don't support deduced return
841 // types there.
842 QualType DefaultTypeForNoTrailingReturn =
Aaron Ballmandd69ef32014-08-19 15:55:55 +0000843 getLangOpts().CPlusPlus14 ? Context.getAutoDeductType()
Richard Smith4db51c22013-09-25 05:02:54 +0000844 : Context.DependentTy;
845 QualType MethodTy =
846 Context.getFunctionType(DefaultTypeForNoTrailingReturn, None, EPI);
Douglas Gregor03dd13c2012-02-08 21:18:48 +0000847 MethodTyInfo = Context.getTrivialTypeSourceInfo(MethodTy);
848 ExplicitParams = false;
Douglas Gregor0c46b2b2012-02-13 22:00:16 +0000849 ExplicitResultType = false;
Douglas Gregor03dd13c2012-02-08 21:18:48 +0000850 EndLoc = Intro.Range.getEnd();
851 } else {
852 assert(ParamInfo.isFunctionDeclarator() &&
853 "lambda-declarator is a function");
854 DeclaratorChunk::FunctionTypeInfo &FTI = ParamInfo.getFunctionTypeInfo();
Richard Smith4db51c22013-09-25 05:02:54 +0000855
Douglas Gregor03dd13c2012-02-08 21:18:48 +0000856 // C++11 [expr.prim.lambda]p5:
857 // This function call operator is declared const (9.3.1) if and only if
858 // the lambda-expression's parameter-declaration-clause is not followed
859 // by mutable. It is neither virtual nor declared volatile. [...]
860 if (!FTI.hasMutableQualifier())
861 FTI.TypeQuals |= DeclSpec::TQ_const;
Richard Smith4db51c22013-09-25 05:02:54 +0000862
Douglas Gregor03dd13c2012-02-08 21:18:48 +0000863 MethodTyInfo = GetTypeForDeclarator(ParamInfo, CurScope);
Douglas Gregor03dd13c2012-02-08 21:18:48 +0000864 assert(MethodTyInfo && "no type from lambda-declarator");
Douglas Gregor03dd13c2012-02-08 21:18:48 +0000865 EndLoc = ParamInfo.getSourceRange().getEnd();
Richard Smith4db51c22013-09-25 05:02:54 +0000866
867 ExplicitResultType = FTI.hasTrailingReturnType();
Manuel Klimek2fdbea22013-08-22 12:12:24 +0000868
Alp Toker4284c6e2014-05-11 16:05:55 +0000869 if (FTIHasNonVoidParameters(FTI)) {
Alp Tokerc5350722014-02-26 22:27:52 +0000870 Params.reserve(FTI.NumParams);
871 for (unsigned i = 0, e = FTI.NumParams; i != e; ++i)
872 Params.push_back(cast<ParmVarDecl>(FTI.Params[i].Param));
Eli Friedman8f5e9832012-09-20 01:40:23 +0000873 }
Douglas Gregor7efd007c2012-06-15 16:59:29 +0000874
875 // Check for unexpanded parameter packs in the method type.
Richard Smith2589b9802012-07-25 03:56:55 +0000876 if (MethodTyInfo->getType()->containsUnexpandedParameterPack())
877 ContainsUnexpandedParameterPack = true;
Douglas Gregor03dd13c2012-02-08 21:18:48 +0000878 }
Eli Friedmand564afb2012-09-19 01:18:11 +0000879
880 CXXRecordDecl *Class = createLambdaClosureType(Intro.Range, MethodTyInfo,
Faisal Valic1a6dc42013-10-23 16:10:50 +0000881 KnownDependent, Intro.Default);
Eli Friedmand564afb2012-09-19 01:18:11 +0000882
Faisal Valia734ab92016-03-26 16:11:37 +0000883 CXXMethodDecl *Method =
884 startLambdaDefinition(Class, Intro.Range, MethodTyInfo, EndLoc, Params,
885 ParamInfo.getDeclSpec().isConstexprSpecified());
Douglas Gregoradb376e2012-02-14 22:28:59 +0000886 if (ExplicitParams)
887 CheckCXXDefaultArguments(Method);
Douglas Gregor0c46b2b2012-02-13 22:00:16 +0000888
Bill Wendling44426052012-12-20 19:22:21 +0000889 // Attributes on the lambda apply to the method.
Douglas Gregor03dd13c2012-02-08 21:18:48 +0000890 ProcessDeclAttributes(CurScope, Method, ParamInfo);
891
Douglas Gregor8c50e7c2012-02-09 00:47:04 +0000892 // Introduce the function call operator as the current declaration context.
Douglas Gregor03dd13c2012-02-08 21:18:48 +0000893 PushDeclContext(CurScope, Method);
894
Faisal Vali2b391ab2013-09-26 19:54:12 +0000895 // Build the lambda scope.
Richard Smithc38498f2015-04-27 21:27:54 +0000896 buildLambdaScope(LSI, Method, Intro.Range, Intro.Default, Intro.DefaultLoc,
897 ExplicitParams, ExplicitResultType, !Method->isConst());
Richard Smithba71c082013-05-16 06:20:58 +0000898
Richard Smith3d584b02014-02-06 21:49:08 +0000899 // C++11 [expr.prim.lambda]p9:
900 // A lambda-expression whose smallest enclosing scope is a block scope is a
901 // local lambda expression; any other lambda expression shall not have a
902 // capture-default or simple-capture in its lambda-introducer.
903 //
904 // For simple-captures, this is covered by the check below that any named
905 // entity is a variable that can be captured.
906 //
907 // For DR1632, we also allow a capture-default in any context where we can
908 // odr-use 'this' (in particular, in a default initializer for a non-static
909 // data member).
910 if (Intro.Default != LCD_None && !Class->getParent()->isFunctionOrMethod() &&
911 (getCurrentThisType().isNull() ||
912 CheckCXXThisCapture(SourceLocation(), /*Explicit*/true,
913 /*BuildAndDiagnose*/false)))
914 Diag(Intro.DefaultLoc, diag::err_capture_default_non_local);
915
Richard Smithba71c082013-05-16 06:20:58 +0000916 // Distinct capture names, for diagnostics.
917 llvm::SmallSet<IdentifierInfo*, 8> CaptureNames;
918
Douglas Gregor03dd13c2012-02-08 21:18:48 +0000919 // Handle explicit captures.
Douglas Gregora1bffa22012-02-10 17:46:20 +0000920 SourceLocation PrevCaptureLoc
921 = Intro.Default == LCD_None? Intro.Range.getBegin() : Intro.DefaultLoc;
Benjamin Kramerf3ca26982014-05-10 16:31:55 +0000922 for (auto C = Intro.Captures.begin(), E = Intro.Captures.end(); C != E;
Douglas Gregora1bffa22012-02-10 17:46:20 +0000923 PrevCaptureLoc = C->Loc, ++C) {
Faisal Validc6b5962016-03-21 09:25:37 +0000924 if (C->Kind == LCK_This || C->Kind == LCK_StarThis) {
925 if (C->Kind == LCK_StarThis)
926 Diag(C->Loc, !getLangOpts().CPlusPlus1z
927 ? diag::ext_star_this_lambda_capture_cxx1z
928 : diag::warn_cxx14_compat_star_this_lambda_capture);
929
Douglas Gregor03dd13c2012-02-08 21:18:48 +0000930 // C++11 [expr.prim.lambda]p8:
931 // An identifier or this shall not appear more than once in a
932 // lambda-capture.
933 if (LSI->isCXXThisCaptured()) {
Alp Tokerb6cc5922014-05-03 03:45:55 +0000934 Diag(C->Loc, diag::err_capture_more_than_once)
935 << "'this'" << SourceRange(LSI->getCXXThisCapture().getLocation())
936 << FixItHint::CreateRemoval(
937 SourceRange(getLocForEndOfToken(PrevCaptureLoc), C->Loc));
Douglas Gregor03dd13c2012-02-08 21:18:48 +0000938 continue;
939 }
940
Faisal Validc6b5962016-03-21 09:25:37 +0000941 // C++1z [expr.prim.lambda]p8:
942 // If a lambda-capture includes a capture-default that is =, each
943 // simple-capture of that lambda-capture shall be of the form "&
944 // identifier" or "* this". [ Note: The form [&,this] is redundant but
945 // accepted for compatibility with ISO C++14. --end note ]
946 if (Intro.Default == LCD_ByCopy && C->Kind != LCK_StarThis) {
Douglas Gregora1bffa22012-02-10 17:46:20 +0000947 Diag(C->Loc, diag::err_this_capture_with_copy_default)
Alp Tokerb6cc5922014-05-03 03:45:55 +0000948 << FixItHint::CreateRemoval(
949 SourceRange(getLocForEndOfToken(PrevCaptureLoc), C->Loc));
Douglas Gregor03dd13c2012-02-08 21:18:48 +0000950 continue;
951 }
952
953 // C++11 [expr.prim.lambda]p12:
954 // If this is captured by a local lambda expression, its nearest
955 // enclosing function shall be a non-static member function.
956 QualType ThisCaptureType = getCurrentThisType();
957 if (ThisCaptureType.isNull()) {
958 Diag(C->Loc, diag::err_this_capture) << true;
959 continue;
960 }
961
Faisal Validc6b5962016-03-21 09:25:37 +0000962 CheckCXXThisCapture(C->Loc, /*Explicit=*/true, /*BuildAndDiagnose*/ true,
963 /*FunctionScopeIndexToStopAtPtr*/ nullptr,
964 C->Kind == LCK_StarThis);
Douglas Gregor03dd13c2012-02-08 21:18:48 +0000965 continue;
966 }
967
Richard Smithba71c082013-05-16 06:20:58 +0000968 assert(C->Id && "missing identifier for capture");
969
Richard Smith21b3ab42013-05-09 21:36:41 +0000970 if (C->Init.isInvalid())
971 continue;
Richard Smithba71c082013-05-16 06:20:58 +0000972
Craig Topperc3ec1492014-05-26 06:22:03 +0000973 VarDecl *Var = nullptr;
Richard Smithbb13c9a2013-09-28 04:02:39 +0000974 if (C->Init.isUsable()) {
Aaron Ballmandd69ef32014-08-19 15:55:55 +0000975 Diag(C->Loc, getLangOpts().CPlusPlus14
Richard Smith5b013f52013-09-28 05:38:27 +0000976 ? diag::warn_cxx11_compat_init_capture
977 : diag::ext_init_capture);
978
Richard Smithba71c082013-05-16 06:20:58 +0000979 if (C->Init.get()->containsUnexpandedParameterPack())
980 ContainsUnexpandedParameterPack = true;
Faisal Vali5fb7c3c2013-12-05 01:40:41 +0000981 // If the initializer expression is usable, but the InitCaptureType
982 // is not, then an error has occurred - so ignore the capture for now.
983 // for e.g., [n{0}] { }; <-- if no <initializer_list> is included.
984 // FIXME: we should create the init capture variable and mark it invalid
985 // in this case.
986 if (C->InitCaptureType.get().isNull())
987 continue;
Richard Smith42b10572015-11-11 01:36:17 +0000988
989 unsigned InitStyle;
990 switch (C->InitKind) {
991 case LambdaCaptureInitKind::NoInit:
992 llvm_unreachable("not an init-capture?");
993 case LambdaCaptureInitKind::CopyInit:
994 InitStyle = VarDecl::CInit;
995 break;
996 case LambdaCaptureInitKind::DirectInit:
997 InitStyle = VarDecl::CallInit;
998 break;
999 case LambdaCaptureInitKind::ListInit:
1000 InitStyle = VarDecl::ListInit;
1001 break;
1002 }
1003 Var = createLambdaInitCaptureVarDecl(C->Loc, C->InitCaptureType.get(),
1004 C->Id, InitStyle, C->Init.get());
Richard Smithba71c082013-05-16 06:20:58 +00001005 // C++1y [expr.prim.lambda]p11:
Richard Smithbb13c9a2013-09-28 04:02:39 +00001006 // An init-capture behaves as if it declares and explicitly
1007 // captures a variable [...] whose declarative region is the
1008 // lambda-expression's compound-statement
1009 if (Var)
1010 PushOnScopeChains(Var, CurScope, false);
1011 } else {
Richard Smith42b10572015-11-11 01:36:17 +00001012 assert(C->InitKind == LambdaCaptureInitKind::NoInit &&
1013 "init capture has valid but null init?");
1014
Richard Smithbb13c9a2013-09-28 04:02:39 +00001015 // C++11 [expr.prim.lambda]p8:
1016 // If a lambda-capture includes a capture-default that is &, the
1017 // identifiers in the lambda-capture shall not be preceded by &.
1018 // If a lambda-capture includes a capture-default that is =, [...]
1019 // each identifier it contains shall be preceded by &.
1020 if (C->Kind == LCK_ByRef && Intro.Default == LCD_ByRef) {
1021 Diag(C->Loc, diag::err_reference_capture_with_reference_default)
Alp Tokerb6cc5922014-05-03 03:45:55 +00001022 << FixItHint::CreateRemoval(
1023 SourceRange(getLocForEndOfToken(PrevCaptureLoc), C->Loc));
Douglas Gregor03dd13c2012-02-08 21:18:48 +00001024 continue;
Richard Smithbb13c9a2013-09-28 04:02:39 +00001025 } else if (C->Kind == LCK_ByCopy && Intro.Default == LCD_ByCopy) {
1026 Diag(C->Loc, diag::err_copy_capture_with_copy_default)
Alp Tokerb6cc5922014-05-03 03:45:55 +00001027 << FixItHint::CreateRemoval(
1028 SourceRange(getLocForEndOfToken(PrevCaptureLoc), C->Loc));
Richard Smithbb13c9a2013-09-28 04:02:39 +00001029 continue;
1030 }
Douglas Gregor03dd13c2012-02-08 21:18:48 +00001031
Richard Smithbb13c9a2013-09-28 04:02:39 +00001032 // C++11 [expr.prim.lambda]p10:
1033 // The identifiers in a capture-list are looked up using the usual
1034 // rules for unqualified name lookup (3.4.1)
1035 DeclarationNameInfo Name(C->Id, C->Loc);
1036 LookupResult R(*this, Name, LookupOrdinaryName);
1037 LookupName(R, CurScope);
1038 if (R.isAmbiguous())
1039 continue;
1040 if (R.empty()) {
1041 // FIXME: Disable corrections that would add qualification?
1042 CXXScopeSpec ScopeSpec;
Kaelyn Takata89c881b2014-10-27 18:07:29 +00001043 if (DiagnoseEmptyLookup(CurScope, ScopeSpec, R,
1044 llvm::make_unique<DeclFilterCCC<VarDecl>>()))
Richard Smithbb13c9a2013-09-28 04:02:39 +00001045 continue;
1046 }
1047
1048 Var = R.getAsSingle<VarDecl>();
Richard Smithd7b2a9e2014-03-25 21:11:32 +00001049 if (Var && DiagnoseUseOfDecl(Var, C->Loc))
1050 continue;
Richard Smithbb13c9a2013-09-28 04:02:39 +00001051 }
Richard Smithba71c082013-05-16 06:20:58 +00001052
1053 // C++11 [expr.prim.lambda]p8:
1054 // An identifier or this shall not appear more than once in a
1055 // lambda-capture.
David Blaikie82e95a32014-11-19 07:49:47 +00001056 if (!CaptureNames.insert(C->Id).second) {
Richard Smithba71c082013-05-16 06:20:58 +00001057 if (Var && LSI->isCaptured(Var)) {
1058 Diag(C->Loc, diag::err_capture_more_than_once)
Alp Tokerb6cc5922014-05-03 03:45:55 +00001059 << C->Id << SourceRange(LSI->getCapture(Var).getLocation())
1060 << FixItHint::CreateRemoval(
1061 SourceRange(getLocForEndOfToken(PrevCaptureLoc), C->Loc));
Richard Smithba71c082013-05-16 06:20:58 +00001062 } else
Richard Smithbb13c9a2013-09-28 04:02:39 +00001063 // Previous capture captured something different (one or both was
1064 // an init-cpature): no fixit.
Richard Smithba71c082013-05-16 06:20:58 +00001065 Diag(C->Loc, diag::err_capture_more_than_once) << C->Id;
1066 continue;
1067 }
1068
1069 // C++11 [expr.prim.lambda]p10:
1070 // [...] each such lookup shall find a variable with automatic storage
1071 // duration declared in the reaching scope of the local lambda expression.
1072 // Note that the 'reaching scope' check happens in tryCaptureVariable().
Douglas Gregor03dd13c2012-02-08 21:18:48 +00001073 if (!Var) {
1074 Diag(C->Loc, diag::err_capture_does_not_name_variable) << C->Id;
1075 continue;
1076 }
1077
Eli Friedmane979db12012-09-18 21:11:30 +00001078 // Ignore invalid decls; they'll just confuse the code later.
1079 if (Var->isInvalidDecl())
1080 continue;
1081
Douglas Gregor03dd13c2012-02-08 21:18:48 +00001082 if (!Var->hasLocalStorage()) {
1083 Diag(C->Loc, diag::err_capture_non_automatic_variable) << C->Id;
1084 Diag(Var->getLocation(), diag::note_previous_decl) << C->Id;
1085 continue;
1086 }
1087
Douglas Gregor3e308b12012-02-14 19:27:52 +00001088 // C++11 [expr.prim.lambda]p23:
1089 // A capture followed by an ellipsis is a pack expansion (14.5.3).
1090 SourceLocation EllipsisLoc;
1091 if (C->EllipsisLoc.isValid()) {
1092 if (Var->isParameterPack()) {
1093 EllipsisLoc = C->EllipsisLoc;
1094 } else {
1095 Diag(C->EllipsisLoc, diag::err_pack_expansion_without_parameter_packs)
1096 << SourceRange(C->Loc);
1097
1098 // Just ignore the ellipsis.
1099 }
1100 } else if (Var->isParameterPack()) {
Richard Smith2589b9802012-07-25 03:56:55 +00001101 ContainsUnexpandedParameterPack = true;
Douglas Gregor3e308b12012-02-14 19:27:52 +00001102 }
Richard Smithbb13c9a2013-09-28 04:02:39 +00001103
1104 if (C->Init.isUsable()) {
1105 buildInitCaptureField(LSI, Var);
1106 } else {
1107 TryCaptureKind Kind = C->Kind == LCK_ByRef ? TryCapture_ExplicitByRef :
1108 TryCapture_ExplicitByVal;
1109 tryCaptureVariable(Var, C->Loc, Kind, EllipsisLoc);
1110 }
Douglas Gregor03dd13c2012-02-08 21:18:48 +00001111 }
Douglas Gregor0c46b2b2012-02-13 22:00:16 +00001112 finishLambdaExplicitCaptures(LSI);
Douglas Gregor03dd13c2012-02-08 21:18:48 +00001113
Richard Smith2589b9802012-07-25 03:56:55 +00001114 LSI->ContainsUnexpandedParameterPack = ContainsUnexpandedParameterPack;
1115
Douglas Gregoradb376e2012-02-14 22:28:59 +00001116 // Add lambda parameters into scope.
1117 addLambdaParameters(Method, CurScope);
Douglas Gregor03dd13c2012-02-08 21:18:48 +00001118
Douglas Gregor0c46b2b2012-02-13 22:00:16 +00001119 // Enter a new evaluation context to insulate the lambda from any
Douglas Gregor8c50e7c2012-02-09 00:47:04 +00001120 // cleanups from the enclosing full-expression.
1121 PushExpressionEvaluationContext(PotentiallyEvaluated);
Douglas Gregor03dd13c2012-02-08 21:18:48 +00001122}
1123
Douglas Gregor0c46b2b2012-02-13 22:00:16 +00001124void Sema::ActOnLambdaError(SourceLocation StartLoc, Scope *CurScope,
1125 bool IsInstantiation) {
Richard Smithc38498f2015-04-27 21:27:54 +00001126 LambdaScopeInfo *LSI = cast<LambdaScopeInfo>(FunctionScopes.back());
Argyrios Kyrtzidisea75aad2014-04-26 18:29:13 +00001127
Douglas Gregor03dd13c2012-02-08 21:18:48 +00001128 // Leave the expression-evaluation context.
1129 DiscardCleanupsInEvaluationContext();
1130 PopExpressionEvaluationContext();
1131
1132 // Leave the context of the lambda.
Douglas Gregor0c46b2b2012-02-13 22:00:16 +00001133 if (!IsInstantiation)
1134 PopDeclContext();
Douglas Gregorab23d9a2012-02-09 01:28:42 +00001135
1136 // Finalize the lambda.
Douglas Gregorab23d9a2012-02-09 01:28:42 +00001137 CXXRecordDecl *Class = LSI->Lambda;
1138 Class->setInvalidDecl();
Aaron Ballman62e47c42014-03-10 13:43:55 +00001139 SmallVector<Decl*, 4> Fields(Class->fields());
Craig Topperc3ec1492014-05-26 06:22:03 +00001140 ActOnFields(nullptr, Class->getLocation(), Class, Fields, SourceLocation(),
1141 SourceLocation(), nullptr);
Douglas Gregorab23d9a2012-02-09 01:28:42 +00001142 CheckCompletedCXXClass(Class);
1143
Douglas Gregor03dd13c2012-02-08 21:18:48 +00001144 PopFunctionScopeInfo();
1145}
1146
Douglas Gregor13f09b42012-02-15 22:00:51 +00001147/// \brief Add a lambda's conversion to function pointer, as described in
1148/// C++11 [expr.prim.lambda]p6.
1149static void addFunctionPointerConversion(Sema &S,
1150 SourceRange IntroducerRange,
1151 CXXRecordDecl *Class,
1152 CXXMethodDecl *CallOperator) {
George Burgess IV3e3bb95b2015-12-02 21:58:08 +00001153 // This conversion is explicitly disabled if the lambda's function has
1154 // pass_object_size attributes on any of its parameters.
1155 if (std::any_of(CallOperator->param_begin(), CallOperator->param_end(),
1156 std::mem_fn(&ParmVarDecl::hasAttr<PassObjectSizeAttr>)))
1157 return;
1158
Douglas Gregor355efbb2012-02-17 03:02:34 +00001159 // Add the conversion to function pointer.
Faisal Vali66605d42013-10-24 01:05:22 +00001160 const FunctionProtoType *CallOpProto =
1161 CallOperator->getType()->getAs<FunctionProtoType>();
1162 const FunctionProtoType::ExtProtoInfo CallOpExtInfo =
1163 CallOpProto->getExtProtoInfo();
1164 QualType PtrToFunctionTy;
1165 QualType InvokerFunctionTy;
Douglas Gregor13f09b42012-02-15 22:00:51 +00001166 {
Faisal Vali66605d42013-10-24 01:05:22 +00001167 FunctionProtoType::ExtProtoInfo InvokerExtInfo = CallOpExtInfo;
Reid Kleckner78af0702013-08-27 23:08:25 +00001168 CallingConv CC = S.Context.getDefaultCallingConvention(
Faisal Vali66605d42013-10-24 01:05:22 +00001169 CallOpProto->isVariadic(), /*IsCXXMethod=*/false);
1170 InvokerExtInfo.ExtInfo = InvokerExtInfo.ExtInfo.withCallingConv(CC);
1171 InvokerExtInfo.TypeQuals = 0;
1172 assert(InvokerExtInfo.RefQualifier == RQ_None &&
1173 "Lambda's call operator should not have a reference qualifier");
Alp Toker9cacbab2014-01-20 20:26:09 +00001174 InvokerFunctionTy =
Alp Toker314cc812014-01-25 16:55:45 +00001175 S.Context.getFunctionType(CallOpProto->getReturnType(),
Alp Toker9cacbab2014-01-20 20:26:09 +00001176 CallOpProto->getParamTypes(), InvokerExtInfo);
Faisal Vali66605d42013-10-24 01:05:22 +00001177 PtrToFunctionTy = S.Context.getPointerType(InvokerFunctionTy);
Douglas Gregor13f09b42012-02-15 22:00:51 +00001178 }
Reid Kleckner78af0702013-08-27 23:08:25 +00001179
Faisal Vali66605d42013-10-24 01:05:22 +00001180 // Create the type of the conversion function.
1181 FunctionProtoType::ExtProtoInfo ConvExtInfo(
1182 S.Context.getDefaultCallingConvention(
Reid Kleckner78af0702013-08-27 23:08:25 +00001183 /*IsVariadic=*/false, /*IsCXXMethod=*/true));
Faisal Vali66605d42013-10-24 01:05:22 +00001184 // The conversion function is always const.
1185 ConvExtInfo.TypeQuals = Qualifiers::Const;
1186 QualType ConvTy =
1187 S.Context.getFunctionType(PtrToFunctionTy, None, ConvExtInfo);
Reid Kleckner78af0702013-08-27 23:08:25 +00001188
Douglas Gregor13f09b42012-02-15 22:00:51 +00001189 SourceLocation Loc = IntroducerRange.getBegin();
Faisal Vali66605d42013-10-24 01:05:22 +00001190 DeclarationName ConversionName
Douglas Gregor13f09b42012-02-15 22:00:51 +00001191 = S.Context.DeclarationNames.getCXXConversionFunctionName(
Faisal Vali66605d42013-10-24 01:05:22 +00001192 S.Context.getCanonicalType(PtrToFunctionTy));
1193 DeclarationNameLoc ConvNameLoc;
1194 // Construct a TypeSourceInfo for the conversion function, and wire
1195 // all the parameters appropriately for the FunctionProtoTypeLoc
1196 // so that everything works during transformation/instantiation of
1197 // generic lambdas.
1198 // The main reason for wiring up the parameters of the conversion
1199 // function with that of the call operator is so that constructs
1200 // like the following work:
1201 // auto L = [](auto b) { <-- 1
1202 // return [](auto a) -> decltype(a) { <-- 2
1203 // return a;
1204 // };
1205 // };
1206 // int (*fp)(int) = L(5);
1207 // Because the trailing return type can contain DeclRefExprs that refer
1208 // to the original call operator's variables, we hijack the call
1209 // operators ParmVarDecls below.
1210 TypeSourceInfo *ConvNamePtrToFunctionTSI =
1211 S.Context.getTrivialTypeSourceInfo(PtrToFunctionTy, Loc);
1212 ConvNameLoc.NamedType.TInfo = ConvNamePtrToFunctionTSI;
1213
1214 // The conversion function is a conversion to a pointer-to-function.
1215 TypeSourceInfo *ConvTSI = S.Context.getTrivialTypeSourceInfo(ConvTy, Loc);
1216 FunctionProtoTypeLoc ConvTL =
1217 ConvTSI->getTypeLoc().getAs<FunctionProtoTypeLoc>();
1218 // Get the result of the conversion function which is a pointer-to-function.
1219 PointerTypeLoc PtrToFunctionTL =
Alp Toker42a16a62014-01-25 23:51:36 +00001220 ConvTL.getReturnLoc().getAs<PointerTypeLoc>();
Faisal Vali66605d42013-10-24 01:05:22 +00001221 // Do the same for the TypeSourceInfo that is used to name the conversion
1222 // operator.
1223 PointerTypeLoc ConvNamePtrToFunctionTL =
1224 ConvNamePtrToFunctionTSI->getTypeLoc().getAs<PointerTypeLoc>();
1225
1226 // Get the underlying function types that the conversion function will
1227 // be converting to (should match the type of the call operator).
1228 FunctionProtoTypeLoc CallOpConvTL =
1229 PtrToFunctionTL.getPointeeLoc().getAs<FunctionProtoTypeLoc>();
1230 FunctionProtoTypeLoc CallOpConvNameTL =
1231 ConvNamePtrToFunctionTL.getPointeeLoc().getAs<FunctionProtoTypeLoc>();
1232
1233 // Wire up the FunctionProtoTypeLocs with the call operator's parameters.
1234 // These parameter's are essentially used to transform the name and
1235 // the type of the conversion operator. By using the same parameters
1236 // as the call operator's we don't have to fix any back references that
1237 // the trailing return type of the call operator's uses (such as
1238 // decltype(some_type<decltype(a)>::type{} + decltype(a){}) etc.)
1239 // - we can simply use the return type of the call operator, and
1240 // everything should work.
1241 SmallVector<ParmVarDecl *, 4> InvokerParams;
1242 for (unsigned I = 0, N = CallOperator->getNumParams(); I != N; ++I) {
1243 ParmVarDecl *From = CallOperator->getParamDecl(I);
1244
1245 InvokerParams.push_back(ParmVarDecl::Create(S.Context,
1246 // Temporarily add to the TU. This is set to the invoker below.
1247 S.Context.getTranslationUnitDecl(),
1248 From->getLocStart(),
1249 From->getLocation(),
1250 From->getIdentifier(),
1251 From->getType(),
1252 From->getTypeSourceInfo(),
1253 From->getStorageClass(),
Craig Topperc3ec1492014-05-26 06:22:03 +00001254 /*DefaultArg=*/nullptr));
Alp Tokerb3fd5cf2014-01-21 00:32:38 +00001255 CallOpConvTL.setParam(I, From);
1256 CallOpConvNameTL.setParam(I, From);
Faisal Vali66605d42013-10-24 01:05:22 +00001257 }
1258
Douglas Gregor13f09b42012-02-15 22:00:51 +00001259 CXXConversionDecl *Conversion
1260 = CXXConversionDecl::Create(S.Context, Class, Loc,
Faisal Vali66605d42013-10-24 01:05:22 +00001261 DeclarationNameInfo(ConversionName,
1262 Loc, ConvNameLoc),
Douglas Gregor13f09b42012-02-15 22:00:51 +00001263 ConvTy,
Faisal Vali66605d42013-10-24 01:05:22 +00001264 ConvTSI,
Eli Friedman8f54e132013-06-13 19:39:48 +00001265 /*isInline=*/true, /*isExplicit=*/false,
Douglas Gregor13f09b42012-02-15 22:00:51 +00001266 /*isConstexpr=*/false,
1267 CallOperator->getBody()->getLocEnd());
1268 Conversion->setAccess(AS_public);
1269 Conversion->setImplicit(true);
Faisal Vali571df122013-09-29 08:45:24 +00001270
1271 if (Class->isGenericLambda()) {
1272 // Create a template version of the conversion operator, using the template
1273 // parameter list of the function call operator.
1274 FunctionTemplateDecl *TemplateCallOperator =
1275 CallOperator->getDescribedFunctionTemplate();
1276 FunctionTemplateDecl *ConversionTemplate =
1277 FunctionTemplateDecl::Create(S.Context, Class,
Faisal Vali66605d42013-10-24 01:05:22 +00001278 Loc, ConversionName,
Faisal Vali571df122013-09-29 08:45:24 +00001279 TemplateCallOperator->getTemplateParameters(),
1280 Conversion);
1281 ConversionTemplate->setAccess(AS_public);
1282 ConversionTemplate->setImplicit(true);
1283 Conversion->setDescribedFunctionTemplate(ConversionTemplate);
1284 Class->addDecl(ConversionTemplate);
1285 } else
1286 Class->addDecl(Conversion);
Faisal Vali2b391ab2013-09-26 19:54:12 +00001287 // Add a non-static member function that will be the result of
1288 // the conversion with a certain unique ID.
Faisal Vali66605d42013-10-24 01:05:22 +00001289 DeclarationName InvokerName = &S.Context.Idents.get(
1290 getLambdaStaticInvokerName());
Faisal Vali571df122013-09-29 08:45:24 +00001291 // FIXME: Instead of passing in the CallOperator->getTypeSourceInfo()
1292 // we should get a prebuilt TrivialTypeSourceInfo from Context
1293 // using FunctionTy & Loc and get its TypeLoc as a FunctionProtoTypeLoc
1294 // then rewire the parameters accordingly, by hoisting up the InvokeParams
1295 // loop below and then use its Params to set Invoke->setParams(...) below.
1296 // This would avoid the 'const' qualifier of the calloperator from
1297 // contaminating the type of the invoker, which is currently adjusted
Faisal Vali66605d42013-10-24 01:05:22 +00001298 // in SemaTemplateDeduction.cpp:DeduceTemplateArguments. Fixing the
1299 // trailing return type of the invoker would require a visitor to rebuild
1300 // the trailing return type and adjusting all back DeclRefExpr's to refer
1301 // to the new static invoker parameters - not the call operator's.
Douglas Gregor355efbb2012-02-17 03:02:34 +00001302 CXXMethodDecl *Invoke
1303 = CXXMethodDecl::Create(S.Context, Class, Loc,
Faisal Vali66605d42013-10-24 01:05:22 +00001304 DeclarationNameInfo(InvokerName, Loc),
1305 InvokerFunctionTy,
1306 CallOperator->getTypeSourceInfo(),
Rafael Espindola6ae7e502013-04-03 19:27:57 +00001307 SC_Static, /*IsInline=*/true,
Douglas Gregor355efbb2012-02-17 03:02:34 +00001308 /*IsConstexpr=*/false,
1309 CallOperator->getBody()->getLocEnd());
Faisal Vali66605d42013-10-24 01:05:22 +00001310 for (unsigned I = 0, N = CallOperator->getNumParams(); I != N; ++I)
1311 InvokerParams[I]->setOwningFunction(Invoke);
1312 Invoke->setParams(InvokerParams);
Douglas Gregor355efbb2012-02-17 03:02:34 +00001313 Invoke->setAccess(AS_private);
1314 Invoke->setImplicit(true);
Faisal Vali571df122013-09-29 08:45:24 +00001315 if (Class->isGenericLambda()) {
1316 FunctionTemplateDecl *TemplateCallOperator =
1317 CallOperator->getDescribedFunctionTemplate();
1318 FunctionTemplateDecl *StaticInvokerTemplate = FunctionTemplateDecl::Create(
Faisal Vali66605d42013-10-24 01:05:22 +00001319 S.Context, Class, Loc, InvokerName,
Faisal Vali571df122013-09-29 08:45:24 +00001320 TemplateCallOperator->getTemplateParameters(),
1321 Invoke);
1322 StaticInvokerTemplate->setAccess(AS_private);
1323 StaticInvokerTemplate->setImplicit(true);
1324 Invoke->setDescribedFunctionTemplate(StaticInvokerTemplate);
1325 Class->addDecl(StaticInvokerTemplate);
1326 } else
1327 Class->addDecl(Invoke);
Douglas Gregor13f09b42012-02-15 22:00:51 +00001328}
1329
Douglas Gregor33e863c2012-02-15 22:08:38 +00001330/// \brief Add a lambda's conversion to block pointer.
1331static void addBlockPointerConversion(Sema &S,
1332 SourceRange IntroducerRange,
1333 CXXRecordDecl *Class,
1334 CXXMethodDecl *CallOperator) {
Reid Klecknerd2f6c722015-04-01 20:22:13 +00001335 const FunctionProtoType *Proto =
1336 CallOperator->getType()->getAs<FunctionProtoType>();
Reid Kleckner78af0702013-08-27 23:08:25 +00001337
Reid Klecknerd2f6c722015-04-01 20:22:13 +00001338 // The function type inside the block pointer type is the same as the call
1339 // operator with some tweaks. The calling convention is the default free
1340 // function convention, and the type qualifications are lost.
1341 FunctionProtoType::ExtProtoInfo BlockEPI = Proto->getExtProtoInfo();
1342 BlockEPI.ExtInfo =
1343 BlockEPI.ExtInfo.withCallingConv(S.Context.getDefaultCallingConvention(
1344 Proto->isVariadic(), /*IsCXXMethod=*/false));
1345 BlockEPI.TypeQuals = 0;
1346 QualType FunctionTy = S.Context.getFunctionType(
1347 Proto->getReturnType(), Proto->getParamTypes(), BlockEPI);
1348 QualType BlockPtrTy = S.Context.getBlockPointerType(FunctionTy);
1349
1350 FunctionProtoType::ExtProtoInfo ConversionEPI(
1351 S.Context.getDefaultCallingConvention(
1352 /*IsVariadic=*/false, /*IsCXXMethod=*/true));
1353 ConversionEPI.TypeQuals = Qualifiers::Const;
1354 QualType ConvTy = S.Context.getFunctionType(BlockPtrTy, None, ConversionEPI);
1355
Douglas Gregor33e863c2012-02-15 22:08:38 +00001356 SourceLocation Loc = IntroducerRange.getBegin();
1357 DeclarationName Name
1358 = S.Context.DeclarationNames.getCXXConversionFunctionName(
1359 S.Context.getCanonicalType(BlockPtrTy));
1360 DeclarationNameLoc NameLoc;
1361 NameLoc.NamedType.TInfo = S.Context.getTrivialTypeSourceInfo(BlockPtrTy, Loc);
1362 CXXConversionDecl *Conversion
1363 = CXXConversionDecl::Create(S.Context, Class, Loc,
1364 DeclarationNameInfo(Name, Loc, NameLoc),
1365 ConvTy,
1366 S.Context.getTrivialTypeSourceInfo(ConvTy, Loc),
Eli Friedmanef102822013-06-13 20:56:27 +00001367 /*isInline=*/true, /*isExplicit=*/false,
Douglas Gregor33e863c2012-02-15 22:08:38 +00001368 /*isConstexpr=*/false,
1369 CallOperator->getBody()->getLocEnd());
1370 Conversion->setAccess(AS_public);
1371 Conversion->setImplicit(true);
1372 Class->addDecl(Conversion);
1373}
Richard Smithc38498f2015-04-27 21:27:54 +00001374
1375static ExprResult performLambdaVarCaptureInitialization(
1376 Sema &S, LambdaScopeInfo::Capture &Capture,
1377 FieldDecl *Field,
1378 SmallVectorImpl<VarDecl *> &ArrayIndexVars,
1379 SmallVectorImpl<unsigned> &ArrayIndexStarts) {
1380 assert(Capture.isVariableCapture() && "not a variable capture");
1381
1382 auto *Var = Capture.getVariable();
1383 SourceLocation Loc = Capture.getLocation();
1384
1385 // C++11 [expr.prim.lambda]p21:
1386 // When the lambda-expression is evaluated, the entities that
1387 // are captured by copy are used to direct-initialize each
1388 // corresponding non-static data member of the resulting closure
1389 // object. (For array members, the array elements are
1390 // direct-initialized in increasing subscript order.) These
1391 // initializations are performed in the (unspecified) order in
1392 // which the non-static data members are declared.
1393
1394 // C++ [expr.prim.lambda]p12:
1395 // An entity captured by a lambda-expression is odr-used (3.2) in
1396 // the scope containing the lambda-expression.
1397 ExprResult RefResult = S.BuildDeclarationNameExpr(
1398 CXXScopeSpec(), DeclarationNameInfo(Var->getDeclName(), Loc), Var);
1399 if (RefResult.isInvalid())
1400 return ExprError();
1401 Expr *Ref = RefResult.get();
1402
1403 QualType FieldType = Field->getType();
1404
1405 // When the variable has array type, create index variables for each
1406 // dimension of the array. We use these index variables to subscript
1407 // the source array, and other clients (e.g., CodeGen) will perform
1408 // the necessary iteration with these index variables.
1409 //
1410 // FIXME: This is dumb. Add a proper AST representation for array
1411 // copy-construction and use it here.
1412 SmallVector<VarDecl *, 4> IndexVariables;
1413 QualType BaseType = FieldType;
1414 QualType SizeType = S.Context.getSizeType();
1415 ArrayIndexStarts.push_back(ArrayIndexVars.size());
1416 while (const ConstantArrayType *Array
1417 = S.Context.getAsConstantArrayType(BaseType)) {
1418 // Create the iteration variable for this array index.
1419 IdentifierInfo *IterationVarName = nullptr;
1420 {
1421 SmallString<8> Str;
1422 llvm::raw_svector_ostream OS(Str);
1423 OS << "__i" << IndexVariables.size();
1424 IterationVarName = &S.Context.Idents.get(OS.str());
1425 }
1426 VarDecl *IterationVar = VarDecl::Create(
1427 S.Context, S.CurContext, Loc, Loc, IterationVarName, SizeType,
1428 S.Context.getTrivialTypeSourceInfo(SizeType, Loc), SC_None);
1429 IterationVar->setImplicit();
1430 IndexVariables.push_back(IterationVar);
1431 ArrayIndexVars.push_back(IterationVar);
1432
1433 // Create a reference to the iteration variable.
1434 ExprResult IterationVarRef =
1435 S.BuildDeclRefExpr(IterationVar, SizeType, VK_LValue, Loc);
1436 assert(!IterationVarRef.isInvalid() &&
1437 "Reference to invented variable cannot fail!");
1438 IterationVarRef = S.DefaultLvalueConversion(IterationVarRef.get());
1439 assert(!IterationVarRef.isInvalid() &&
1440 "Conversion of invented variable cannot fail!");
1441
1442 // Subscript the array with this iteration variable.
1443 ExprResult Subscript =
1444 S.CreateBuiltinArraySubscriptExpr(Ref, Loc, IterationVarRef.get(), Loc);
1445 if (Subscript.isInvalid())
1446 return ExprError();
1447
1448 Ref = Subscript.get();
1449 BaseType = Array->getElementType();
1450 }
1451
1452 // Construct the entity that we will be initializing. For an array, this
1453 // will be first element in the array, which may require several levels
1454 // of array-subscript entities.
1455 SmallVector<InitializedEntity, 4> Entities;
1456 Entities.reserve(1 + IndexVariables.size());
1457 Entities.push_back(InitializedEntity::InitializeLambdaCapture(
1458 Var->getIdentifier(), FieldType, Loc));
1459 for (unsigned I = 0, N = IndexVariables.size(); I != N; ++I)
1460 Entities.push_back(
1461 InitializedEntity::InitializeElement(S.Context, 0, Entities.back()));
1462
1463 InitializationKind InitKind = InitializationKind::CreateDirect(Loc, Loc, Loc);
1464 InitializationSequence Init(S, Entities.back(), InitKind, Ref);
1465 return Init.Perform(S, Entities.back(), InitKind, Ref);
1466}
Douglas Gregor6f88e5e2012-02-21 04:17:39 +00001467
Douglas Gregor0c46b2b2012-02-13 22:00:16 +00001468ExprResult Sema::ActOnLambdaExpr(SourceLocation StartLoc, Stmt *Body,
Richard Smithc38498f2015-04-27 21:27:54 +00001469 Scope *CurScope) {
1470 LambdaScopeInfo LSI = *cast<LambdaScopeInfo>(FunctionScopes.back());
1471 ActOnFinishFunctionBody(LSI.CallOperator, Body);
1472 return BuildLambdaExpr(StartLoc, Body->getLocEnd(), &LSI);
1473}
1474
Aaron Ballmane918faa2015-04-28 17:34:38 +00001475static LambdaCaptureDefault
1476mapImplicitCaptureStyle(CapturingScopeInfo::ImplicitCaptureStyle ICS) {
1477 switch (ICS) {
1478 case CapturingScopeInfo::ImpCap_None:
1479 return LCD_None;
1480 case CapturingScopeInfo::ImpCap_LambdaByval:
1481 return LCD_ByCopy;
1482 case CapturingScopeInfo::ImpCap_CapturedRegion:
1483 case CapturingScopeInfo::ImpCap_LambdaByref:
1484 return LCD_ByRef;
1485 case CapturingScopeInfo::ImpCap_Block:
1486 llvm_unreachable("block capture in lambda");
1487 }
1488 llvm_unreachable("Unknown implicit capture style");
1489}
1490
Richard Smithc38498f2015-04-27 21:27:54 +00001491ExprResult Sema::BuildLambdaExpr(SourceLocation StartLoc, SourceLocation EndLoc,
1492 LambdaScopeInfo *LSI) {
Douglas Gregor03dd13c2012-02-08 21:18:48 +00001493 // Collect information from the lambda scope.
Benjamin Kramerf3ca26982014-05-10 16:31:55 +00001494 SmallVector<LambdaCapture, 4> Captures;
Dmitri Gribenkof8579502013-01-12 19:30:44 +00001495 SmallVector<Expr *, 4> CaptureInits;
Aaron Ballmane918faa2015-04-28 17:34:38 +00001496 SourceLocation CaptureDefaultLoc = LSI->CaptureDefaultLoc;
1497 LambdaCaptureDefault CaptureDefault =
1498 mapImplicitCaptureStyle(LSI->ImpCaptureStyle);
Douglas Gregor03dd13c2012-02-08 21:18:48 +00001499 CXXRecordDecl *Class;
Douglas Gregor12695102012-02-10 08:36:38 +00001500 CXXMethodDecl *CallOperator;
Douglas Gregor03dd13c2012-02-08 21:18:48 +00001501 SourceRange IntroducerRange;
1502 bool ExplicitParams;
Douglas Gregor0c46b2b2012-02-13 22:00:16 +00001503 bool ExplicitResultType;
Douglas Gregor8c50e7c2012-02-09 00:47:04 +00001504 bool LambdaExprNeedsCleanups;
Richard Smith2589b9802012-07-25 03:56:55 +00001505 bool ContainsUnexpandedParameterPack;
Dmitri Gribenkof8579502013-01-12 19:30:44 +00001506 SmallVector<VarDecl *, 4> ArrayIndexVars;
1507 SmallVector<unsigned, 4> ArrayIndexStarts;
Douglas Gregor03dd13c2012-02-08 21:18:48 +00001508 {
Douglas Gregor12695102012-02-10 08:36:38 +00001509 CallOperator = LSI->CallOperator;
Douglas Gregor03dd13c2012-02-08 21:18:48 +00001510 Class = LSI->Lambda;
1511 IntroducerRange = LSI->IntroducerRange;
1512 ExplicitParams = LSI->ExplicitParams;
Douglas Gregor0c46b2b2012-02-13 22:00:16 +00001513 ExplicitResultType = !LSI->HasImplicitReturnType;
Douglas Gregor8c50e7c2012-02-09 00:47:04 +00001514 LambdaExprNeedsCleanups = LSI->ExprNeedsCleanups;
Richard Smith2589b9802012-07-25 03:56:55 +00001515 ContainsUnexpandedParameterPack = LSI->ContainsUnexpandedParameterPack;
Douglas Gregor54fcea62012-02-13 16:35:30 +00001516
Richard Smithc38498f2015-04-27 21:27:54 +00001517 CallOperator->setLexicalDeclContext(Class);
1518 Decl *TemplateOrNonTemplateCallOperatorDecl =
1519 CallOperator->getDescribedFunctionTemplate()
1520 ? CallOperator->getDescribedFunctionTemplate()
1521 : cast<Decl>(CallOperator);
1522
1523 TemplateOrNonTemplateCallOperatorDecl->setLexicalDeclContext(Class);
1524 Class->addDecl(TemplateOrNonTemplateCallOperatorDecl);
1525
1526 PopExpressionEvaluationContext();
1527
Douglas Gregor03dd13c2012-02-08 21:18:48 +00001528 // Translate captures.
Richard Smithc38498f2015-04-27 21:27:54 +00001529 auto CurField = Class->field_begin();
1530 for (unsigned I = 0, N = LSI->Captures.size(); I != N; ++I, ++CurField) {
Douglas Gregor03dd13c2012-02-08 21:18:48 +00001531 LambdaScopeInfo::Capture From = LSI->Captures[I];
1532 assert(!From.isBlockCapture() && "Cannot capture __block variables");
1533 bool IsImplicit = I >= LSI->NumExplicitCaptures;
1534
1535 // Handle 'this' capture.
1536 if (From.isThisCapture()) {
Benjamin Kramerf3ca26982014-05-10 16:31:55 +00001537 Captures.push_back(
Faisal Validc6b5962016-03-21 09:25:37 +00001538 LambdaCapture(From.getLocation(), IsImplicit,
1539 From.isCopyCapture() ? LCK_StarThis : LCK_This));
1540 CaptureInits.push_back(From.getInitExpr());
Richard Smith6d69e8c2015-04-28 21:41:14 +00001541 ArrayIndexStarts.push_back(ArrayIndexVars.size());
Douglas Gregor03dd13c2012-02-08 21:18:48 +00001542 continue;
1543 }
Alexey Bataev39c81e22014-08-28 04:28:19 +00001544 if (From.isVLATypeCapture()) {
1545 Captures.push_back(
1546 LambdaCapture(From.getLocation(), IsImplicit, LCK_VLAType));
1547 CaptureInits.push_back(nullptr);
Richard Smith6d69e8c2015-04-28 21:41:14 +00001548 ArrayIndexStarts.push_back(ArrayIndexVars.size());
Alexey Bataev39c81e22014-08-28 04:28:19 +00001549 continue;
1550 }
Douglas Gregor03dd13c2012-02-08 21:18:48 +00001551
1552 VarDecl *Var = From.getVariable();
Richard Smithc38498f2015-04-27 21:27:54 +00001553 LambdaCaptureKind Kind = From.isCopyCapture() ? LCK_ByCopy : LCK_ByRef;
Benjamin Kramerf3ca26982014-05-10 16:31:55 +00001554 Captures.push_back(LambdaCapture(From.getLocation(), IsImplicit, Kind,
1555 Var, From.getEllipsisLoc()));
Richard Smithc38498f2015-04-27 21:27:54 +00001556 Expr *Init = From.getInitExpr();
1557 if (!Init) {
1558 auto InitResult = performLambdaVarCaptureInitialization(
1559 *this, From, *CurField, ArrayIndexVars, ArrayIndexStarts);
1560 if (InitResult.isInvalid())
1561 return ExprError();
1562 Init = InitResult.get();
Richard Smith6d69e8c2015-04-28 21:41:14 +00001563 } else {
1564 ArrayIndexStarts.push_back(ArrayIndexVars.size());
Richard Smithc38498f2015-04-27 21:27:54 +00001565 }
1566 CaptureInits.push_back(Init);
Douglas Gregor03dd13c2012-02-08 21:18:48 +00001567 }
1568
Douglas Gregor04bbab52012-02-10 16:13:20 +00001569 // C++11 [expr.prim.lambda]p6:
1570 // The closure type for a lambda-expression with no lambda-capture
1571 // has a public non-virtual non-explicit const conversion function
1572 // to pointer to function having the same parameter and return
1573 // types as the closure type's function call operator.
Douglas Gregor13f09b42012-02-15 22:00:51 +00001574 if (Captures.empty() && CaptureDefault == LCD_None)
1575 addFunctionPointerConversion(*this, IntroducerRange, Class,
1576 CallOperator);
Douglas Gregor8c50e7c2012-02-09 00:47:04 +00001577
Douglas Gregor33e863c2012-02-15 22:08:38 +00001578 // Objective-C++:
1579 // The closure type for a lambda-expression has a public non-virtual
1580 // non-explicit const conversion function to a block pointer having the
1581 // same parameter and return types as the closure type's function call
1582 // operator.
Faisal Vali571df122013-09-29 08:45:24 +00001583 // FIXME: Fix generic lambda to block conversions.
1584 if (getLangOpts().Blocks && getLangOpts().ObjC1 &&
1585 !Class->isGenericLambda())
Douglas Gregor33e863c2012-02-15 22:08:38 +00001586 addBlockPointerConversion(*this, IntroducerRange, Class, CallOperator);
1587
Douglas Gregor04bbab52012-02-10 16:13:20 +00001588 // Finalize the lambda class.
Aaron Ballman62e47c42014-03-10 13:43:55 +00001589 SmallVector<Decl*, 4> Fields(Class->fields());
Craig Topperc3ec1492014-05-26 06:22:03 +00001590 ActOnFields(nullptr, Class->getLocation(), Class, Fields, SourceLocation(),
1591 SourceLocation(), nullptr);
Douglas Gregor04bbab52012-02-10 16:13:20 +00001592 CheckCompletedCXXClass(Class);
Douglas Gregor03dd13c2012-02-08 21:18:48 +00001593 }
1594
Douglas Gregor8c50e7c2012-02-09 00:47:04 +00001595 if (LambdaExprNeedsCleanups)
1596 ExprNeedsCleanups = true;
Douglas Gregor63798542012-02-20 19:44:39 +00001597
Douglas Gregor89625492012-02-09 08:14:43 +00001598 LambdaExpr *Lambda = LambdaExpr::Create(Context, Class, IntroducerRange,
James Dennettddd36ff2013-08-09 23:08:25 +00001599 CaptureDefault, CaptureDefaultLoc,
1600 Captures,
Douglas Gregor0c46b2b2012-02-13 22:00:16 +00001601 ExplicitParams, ExplicitResultType,
1602 CaptureInits, ArrayIndexVars,
Richard Smithc38498f2015-04-27 21:27:54 +00001603 ArrayIndexStarts, EndLoc,
Richard Smith2589b9802012-07-25 03:56:55 +00001604 ContainsUnexpandedParameterPack);
Faisal Valia734ab92016-03-26 16:11:37 +00001605 // If the lambda expression's call operator is not explicitly marked constexpr
1606 // and we are not in a dependent context, analyze the call operator to infer
1607 // its constexpr-ness, supressing diagnostics while doing so.
1608 if (getLangOpts().CPlusPlus1z && !CallOperator->isInvalidDecl() &&
1609 !CallOperator->isConstexpr() &&
1610 !Class->getDeclContext()->isDependentContext()) {
1611 TentativeAnalysisScope DiagnosticScopeGuard(*this);
1612 CallOperator->setConstexpr(
1613 CheckConstexprFunctionDecl(CallOperator) &&
1614 CheckConstexprFunctionBody(CallOperator, CallOperator->getBody()));
1615 }
David Majnemer9adc3612013-10-25 09:12:52 +00001616
Douglas Gregorb4328232012-02-14 00:00:48 +00001617 if (!CurContext->isDependentContext()) {
1618 switch (ExprEvalContexts.back().Context) {
David Majnemer9adc3612013-10-25 09:12:52 +00001619 // C++11 [expr.prim.lambda]p2:
1620 // A lambda-expression shall not appear in an unevaluated operand
1621 // (Clause 5).
Douglas Gregorb4328232012-02-14 00:00:48 +00001622 case Unevaluated:
John McCallf413f5e2013-05-03 00:10:13 +00001623 case UnevaluatedAbstract:
David Majnemer9adc3612013-10-25 09:12:52 +00001624 // C++1y [expr.const]p2:
1625 // A conditional-expression e is a core constant expression unless the
1626 // evaluation of e, following the rules of the abstract machine, would
1627 // evaluate [...] a lambda-expression.
David Majnemer2748da92013-11-05 08:01:18 +00001628 //
1629 // This is technically incorrect, there are some constant evaluated contexts
1630 // where this should be allowed. We should probably fix this when DR1607 is
1631 // ratified, it lays out the exact set of conditions where we shouldn't
1632 // allow a lambda-expression.
David Majnemer9adc3612013-10-25 09:12:52 +00001633 case ConstantEvaluated:
Douglas Gregorb4328232012-02-14 00:00:48 +00001634 // We don't actually diagnose this case immediately, because we
1635 // could be within a context where we might find out later that
1636 // the expression is potentially evaluated (e.g., for typeid).
1637 ExprEvalContexts.back().Lambdas.push_back(Lambda);
1638 break;
Douglas Gregor89625492012-02-09 08:14:43 +00001639
Douglas Gregorb4328232012-02-14 00:00:48 +00001640 case PotentiallyEvaluated:
1641 case PotentiallyEvaluatedIfUsed:
1642 break;
1643 }
Douglas Gregor89625492012-02-09 08:14:43 +00001644 }
Faisal Valia17d19f2013-11-07 05:17:06 +00001645
Douglas Gregor8c50e7c2012-02-09 00:47:04 +00001646 return MaybeBindToTemporary(Lambda);
Douglas Gregor03dd13c2012-02-08 21:18:48 +00001647}
Eli Friedman98b01ed2012-03-01 04:01:32 +00001648
1649ExprResult Sema::BuildBlockForLambdaConversion(SourceLocation CurrentLocation,
1650 SourceLocation ConvLocation,
1651 CXXConversionDecl *Conv,
1652 Expr *Src) {
1653 // Make sure that the lambda call operator is marked used.
1654 CXXRecordDecl *Lambda = Conv->getParent();
1655 CXXMethodDecl *CallOperator
1656 = cast<CXXMethodDecl>(
David Blaikieff7d47a2012-12-19 00:45:41 +00001657 Lambda->lookup(
1658 Context.DeclarationNames.getCXXOperatorName(OO_Call)).front());
Eli Friedman98b01ed2012-03-01 04:01:32 +00001659 CallOperator->setReferenced();
Eli Friedman276dd182013-09-05 00:02:25 +00001660 CallOperator->markUsed(Context);
Eli Friedman98b01ed2012-03-01 04:01:32 +00001661
1662 ExprResult Init = PerformCopyInitialization(
1663 InitializedEntity::InitializeBlock(ConvLocation,
1664 Src->getType(),
1665 /*NRVO=*/false),
1666 CurrentLocation, Src);
1667 if (!Init.isInvalid())
Nikola Smiljanic01a75982014-05-29 10:55:11 +00001668 Init = ActOnFinishFullExpr(Init.get());
Eli Friedman98b01ed2012-03-01 04:01:32 +00001669
1670 if (Init.isInvalid())
1671 return ExprError();
1672
1673 // Create the new block to be returned.
1674 BlockDecl *Block = BlockDecl::Create(Context, CurContext, ConvLocation);
1675
1676 // Set the type information.
1677 Block->setSignatureAsWritten(CallOperator->getTypeSourceInfo());
1678 Block->setIsVariadic(CallOperator->isVariadic());
1679 Block->setBlockMissingReturnType(false);
1680
1681 // Add parameters.
1682 SmallVector<ParmVarDecl *, 4> BlockParams;
1683 for (unsigned I = 0, N = CallOperator->getNumParams(); I != N; ++I) {
1684 ParmVarDecl *From = CallOperator->getParamDecl(I);
1685 BlockParams.push_back(ParmVarDecl::Create(Context, Block,
1686 From->getLocStart(),
1687 From->getLocation(),
1688 From->getIdentifier(),
1689 From->getType(),
1690 From->getTypeSourceInfo(),
1691 From->getStorageClass(),
Craig Topperc3ec1492014-05-26 06:22:03 +00001692 /*DefaultArg=*/nullptr));
Eli Friedman98b01ed2012-03-01 04:01:32 +00001693 }
1694 Block->setParams(BlockParams);
1695
1696 Block->setIsConversionFromLambda(true);
1697
1698 // Add capture. The capture uses a fake variable, which doesn't correspond
1699 // to any actual memory location. However, the initializer copy-initializes
1700 // the lambda object.
1701 TypeSourceInfo *CapVarTSI =
1702 Context.getTrivialTypeSourceInfo(Src->getType());
1703 VarDecl *CapVar = VarDecl::Create(Context, Block, ConvLocation,
Craig Topperc3ec1492014-05-26 06:22:03 +00001704 ConvLocation, nullptr,
Eli Friedman98b01ed2012-03-01 04:01:32 +00001705 Src->getType(), CapVarTSI,
Rafael Espindola6ae7e502013-04-03 19:27:57 +00001706 SC_None);
Eli Friedman98b01ed2012-03-01 04:01:32 +00001707 BlockDecl::Capture Capture(/*Variable=*/CapVar, /*ByRef=*/false,
Nikola Smiljanic01a75982014-05-29 10:55:11 +00001708 /*Nested=*/false, /*Copy=*/Init.get());
Benjamin Kramerb40e4af2015-08-05 09:40:35 +00001709 Block->setCaptures(Context, Capture, /*CapturesCXXThis=*/false);
Eli Friedman98b01ed2012-03-01 04:01:32 +00001710
1711 // Add a fake function body to the block. IR generation is responsible
1712 // for filling in the actual body, which cannot be expressed as an AST.
Benjamin Kramere2a929d2012-07-04 17:03:41 +00001713 Block->setBody(new (Context) CompoundStmt(ConvLocation));
Eli Friedman98b01ed2012-03-01 04:01:32 +00001714
1715 // Create the block literal expression.
1716 Expr *BuildBlock = new (Context) BlockExpr(Block, Conv->getConversionType());
1717 ExprCleanupObjects.push_back(Block);
1718 ExprNeedsCleanups = true;
1719
1720 return BuildBlock;
1721}