1 //===--- SemaOpenMP.cpp - Semantic Analysis for OpenMP constructs ---------===//
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 /// \file
10 /// \brief This file implements semantic analysis for OpenMP directives and
11 /// clauses.
12 ///
13 //===----------------------------------------------------------------------===//
14 
15 #include "clang/AST/ASTContext.h"
16 #include "clang/AST/ASTMutationListener.h"
17 #include "clang/AST/Decl.h"
18 #include "clang/AST/DeclCXX.h"
19 #include "clang/AST/DeclOpenMP.h"
20 #include "clang/AST/StmtCXX.h"
21 #include "clang/AST/StmtOpenMP.h"
22 #include "clang/AST/StmtVisitor.h"
23 #include "clang/Basic/OpenMPKinds.h"
24 #include "clang/Lex/Preprocessor.h"
25 #include "clang/Sema/Initialization.h"
26 #include "clang/Sema/Lookup.h"
27 #include "clang/Sema/Scope.h"
28 #include "clang/Sema/ScopeInfo.h"
29 #include "clang/Sema/SemaInternal.h"
30 using namespace clang;
31 
32 //===----------------------------------------------------------------------===//
33 // Stack of data-sharing attributes for variables
34 //===----------------------------------------------------------------------===//
35 
36 namespace {
37 /// \brief Default data sharing attributes, which can be applied to directive.
38 enum DefaultDataSharingAttributes {
39   DSA_unspecified = 0, /// \brief Data sharing attribute not specified.
40   DSA_none = 1 << 0,   /// \brief Default data sharing attribute 'none'.
41   DSA_shared = 1 << 1  /// \brief Default data sharing attribute 'shared'.
42 };
43 
44 template <class T> struct MatchesAny {
45   explicit MatchesAny(ArrayRef<T> Arr) : Arr(std::move(Arr)) {}
46   bool operator()(T Kind) {
47     for (auto KindEl : Arr)
48       if (KindEl == Kind)
49         return true;
50     return false;
51   }
52 
53 private:
54   ArrayRef<T> Arr;
55 };
56 struct MatchesAlways {
57   MatchesAlways() {}
58   template <class T> bool operator()(T) { return true; }
59 };
60 
61 typedef MatchesAny<OpenMPClauseKind> MatchesAnyClause;
62 typedef MatchesAny<OpenMPDirectiveKind> MatchesAnyDirective;
63 
64 /// \brief Stack for tracking declarations used in OpenMP directives and
65 /// clauses and their data-sharing attributes.
66 class DSAStackTy {
67 public:
68   struct DSAVarData {
69     OpenMPDirectiveKind DKind;
70     OpenMPClauseKind CKind;
71     DeclRefExpr *RefExpr;
72     SourceLocation ImplicitDSALoc;
73     DSAVarData()
74         : DKind(OMPD_unknown), CKind(OMPC_unknown), RefExpr(nullptr),
75           ImplicitDSALoc() {}
76   };
77 
78 private:
79   struct DSAInfo {
80     OpenMPClauseKind Attributes;
81     DeclRefExpr *RefExpr;
82   };
83   typedef llvm::SmallDenseMap<VarDecl *, DSAInfo, 64> DeclSAMapTy;
84   typedef llvm::SmallDenseMap<VarDecl *, DeclRefExpr *, 64> AlignedMapTy;
85 
86   struct SharingMapTy {
87     DeclSAMapTy SharingMap;
88     AlignedMapTy AlignedMap;
89     DefaultDataSharingAttributes DefaultAttr;
90     SourceLocation DefaultAttrLoc;
91     OpenMPDirectiveKind Directive;
92     DeclarationNameInfo DirectiveName;
93     Scope *CurScope;
94     SourceLocation ConstructLoc;
95     bool OrderedRegion;
96     SourceLocation InnerTeamsRegionLoc;
97     SharingMapTy(OpenMPDirectiveKind DKind, DeclarationNameInfo Name,
98                  Scope *CurScope, SourceLocation Loc)
99         : SharingMap(), AlignedMap(), DefaultAttr(DSA_unspecified),
100           Directive(DKind), DirectiveName(std::move(Name)), CurScope(CurScope),
101           ConstructLoc(Loc), OrderedRegion(false), InnerTeamsRegionLoc() {}
102     SharingMapTy()
103         : SharingMap(), AlignedMap(), DefaultAttr(DSA_unspecified),
104           Directive(OMPD_unknown), DirectiveName(), CurScope(nullptr),
105           ConstructLoc(), OrderedRegion(false), InnerTeamsRegionLoc() {}
106   };
107 
108   typedef SmallVector<SharingMapTy, 64> StackTy;
109 
110   /// \brief Stack of used declaration and their data-sharing attributes.
111   StackTy Stack;
112   Sema &SemaRef;
113 
114   typedef SmallVector<SharingMapTy, 8>::reverse_iterator reverse_iterator;
115 
116   DSAVarData getDSA(StackTy::reverse_iterator Iter, VarDecl *D);
117 
118   /// \brief Checks if the variable is a local for OpenMP region.
119   bool isOpenMPLocal(VarDecl *D, StackTy::reverse_iterator Iter);
120 
121 public:
122   explicit DSAStackTy(Sema &S) : Stack(1), SemaRef(S) {}
123 
124   void push(OpenMPDirectiveKind DKind, const DeclarationNameInfo &DirName,
125             Scope *CurScope, SourceLocation Loc) {
126     Stack.push_back(SharingMapTy(DKind, DirName, CurScope, Loc));
127     Stack.back().DefaultAttrLoc = Loc;
128   }
129 
130   void pop() {
131     assert(Stack.size() > 1 && "Data-sharing attributes stack is empty!");
132     Stack.pop_back();
133   }
134 
135   /// \brief If 'aligned' declaration for given variable \a D was not seen yet,
136   /// add it and return NULL; otherwise return previous occurrence's expression
137   /// for diagnostics.
138   DeclRefExpr *addUniqueAligned(VarDecl *D, DeclRefExpr *NewDE);
139 
140   /// \brief Adds explicit data sharing attribute to the specified declaration.
141   void addDSA(VarDecl *D, DeclRefExpr *E, OpenMPClauseKind A);
142 
143   /// \brief Returns data sharing attributes from top of the stack for the
144   /// specified declaration.
145   DSAVarData getTopDSA(VarDecl *D, bool FromParent);
146   /// \brief Returns data-sharing attributes for the specified declaration.
147   DSAVarData getImplicitDSA(VarDecl *D, bool FromParent);
148   /// \brief Checks if the specified variables has data-sharing attributes which
149   /// match specified \a CPred predicate in any directive which matches \a DPred
150   /// predicate.
151   template <class ClausesPredicate, class DirectivesPredicate>
152   DSAVarData hasDSA(VarDecl *D, ClausesPredicate CPred,
153                     DirectivesPredicate DPred, bool FromParent);
154   /// \brief Checks if the specified variables has data-sharing attributes which
155   /// match specified \a CPred predicate in any innermost directive which
156   /// matches \a DPred predicate.
157   template <class ClausesPredicate, class DirectivesPredicate>
158   DSAVarData hasInnermostDSA(VarDecl *D, ClausesPredicate CPred,
159                              DirectivesPredicate DPred,
160                              bool FromParent);
161   /// \brief Finds a directive which matches specified \a DPred predicate.
162   template <class NamedDirectivesPredicate>
163   bool hasDirective(NamedDirectivesPredicate DPred, bool FromParent);
164 
165   /// \brief Returns currently analyzed directive.
166   OpenMPDirectiveKind getCurrentDirective() const {
167     return Stack.back().Directive;
168   }
169   /// \brief Returns parent directive.
170   OpenMPDirectiveKind getParentDirective() const {
171     if (Stack.size() > 2)
172       return Stack[Stack.size() - 2].Directive;
173     return OMPD_unknown;
174   }
175 
176   /// \brief Set default data sharing attribute to none.
177   void setDefaultDSANone(SourceLocation Loc) {
178     Stack.back().DefaultAttr = DSA_none;
179     Stack.back().DefaultAttrLoc = Loc;
180   }
181   /// \brief Set default data sharing attribute to shared.
182   void setDefaultDSAShared(SourceLocation Loc) {
183     Stack.back().DefaultAttr = DSA_shared;
184     Stack.back().DefaultAttrLoc = Loc;
185   }
186 
187   DefaultDataSharingAttributes getDefaultDSA() const {
188     return Stack.back().DefaultAttr;
189   }
190   SourceLocation getDefaultDSALocation() const {
191     return Stack.back().DefaultAttrLoc;
192   }
193 
194   /// \brief Checks if the specified variable is a threadprivate.
195   bool isThreadPrivate(VarDecl *D) {
196     DSAVarData DVar = getTopDSA(D, false);
197     return isOpenMPThreadPrivate(DVar.CKind);
198   }
199 
200   /// \brief Marks current region as ordered (it has an 'ordered' clause).
201   void setOrderedRegion(bool IsOrdered = true) {
202     Stack.back().OrderedRegion = IsOrdered;
203   }
204   /// \brief Returns true, if parent region is ordered (has associated
205   /// 'ordered' clause), false - otherwise.
206   bool isParentOrderedRegion() const {
207     if (Stack.size() > 2)
208       return Stack[Stack.size() - 2].OrderedRegion;
209     return false;
210   }
211 
212   /// \brief Marks current target region as one with closely nested teams
213   /// region.
214   void setParentTeamsRegionLoc(SourceLocation TeamsRegionLoc) {
215     if (Stack.size() > 2)
216       Stack[Stack.size() - 2].InnerTeamsRegionLoc = TeamsRegionLoc;
217   }
218   /// \brief Returns true, if current region has closely nested teams region.
219   bool hasInnerTeamsRegion() const {
220     return getInnerTeamsRegionLoc().isValid();
221   }
222   /// \brief Returns location of the nested teams region (if any).
223   SourceLocation getInnerTeamsRegionLoc() const {
224     if (Stack.size() > 1)
225       return Stack.back().InnerTeamsRegionLoc;
226     return SourceLocation();
227   }
228 
229   Scope *getCurScope() const { return Stack.back().CurScope; }
230   Scope *getCurScope() { return Stack.back().CurScope; }
231   SourceLocation getConstructLoc() { return Stack.back().ConstructLoc; }
232 };
233 bool isParallelOrTaskRegion(OpenMPDirectiveKind DKind) {
234   return isOpenMPParallelDirective(DKind) || DKind == OMPD_task ||
235          isOpenMPTeamsDirective(DKind) || DKind == OMPD_unknown;
236 }
237 } // namespace
238 
239 DSAStackTy::DSAVarData DSAStackTy::getDSA(StackTy::reverse_iterator Iter,
240                                           VarDecl *D) {
241   DSAVarData DVar;
242   if (Iter == std::prev(Stack.rend())) {
243     // OpenMP [2.9.1.1, Data-sharing Attribute Rules for Variables Referenced
244     // in a region but not in construct]
245     //  File-scope or namespace-scope variables referenced in called routines
246     //  in the region are shared unless they appear in a threadprivate
247     //  directive.
248     if (!D->isFunctionOrMethodVarDecl() && !isa<ParmVarDecl>(D))
249       DVar.CKind = OMPC_shared;
250 
251     // OpenMP [2.9.1.2, Data-sharing Attribute Rules for Variables Referenced
252     // in a region but not in construct]
253     //  Variables with static storage duration that are declared in called
254     //  routines in the region are shared.
255     if (D->hasGlobalStorage())
256       DVar.CKind = OMPC_shared;
257 
258     return DVar;
259   }
260 
261   DVar.DKind = Iter->Directive;
262   // OpenMP [2.9.1.1, Data-sharing Attribute Rules for Variables Referenced
263   // in a Construct, C/C++, predetermined, p.1]
264   // Variables with automatic storage duration that are declared in a scope
265   // inside the construct are private.
266   if (isOpenMPLocal(D, Iter) && D->isLocalVarDecl() &&
267       (D->getStorageClass() == SC_Auto || D->getStorageClass() == SC_None)) {
268     DVar.CKind = OMPC_private;
269     return DVar;
270   }
271 
272   // Explicitly specified attributes and local variables with predetermined
273   // attributes.
274   if (Iter->SharingMap.count(D)) {
275     DVar.RefExpr = Iter->SharingMap[D].RefExpr;
276     DVar.CKind = Iter->SharingMap[D].Attributes;
277     DVar.ImplicitDSALoc = Iter->DefaultAttrLoc;
278     return DVar;
279   }
280 
281   // OpenMP [2.9.1.1, Data-sharing Attribute Rules for Variables Referenced
282   // in a Construct, C/C++, implicitly determined, p.1]
283   //  In a parallel or task construct, the data-sharing attributes of these
284   //  variables are determined by the default clause, if present.
285   switch (Iter->DefaultAttr) {
286   case DSA_shared:
287     DVar.CKind = OMPC_shared;
288     DVar.ImplicitDSALoc = Iter->DefaultAttrLoc;
289     return DVar;
290   case DSA_none:
291     return DVar;
292   case DSA_unspecified:
293     // OpenMP [2.9.1.1, Data-sharing Attribute Rules for Variables Referenced
294     // in a Construct, implicitly determined, p.2]
295     //  In a parallel construct, if no default clause is present, these
296     //  variables are shared.
297     DVar.ImplicitDSALoc = Iter->DefaultAttrLoc;
298     if (isOpenMPParallelDirective(DVar.DKind) ||
299         isOpenMPTeamsDirective(DVar.DKind)) {
300       DVar.CKind = OMPC_shared;
301       return DVar;
302     }
303 
304     // OpenMP [2.9.1.1, Data-sharing Attribute Rules for Variables Referenced
305     // in a Construct, implicitly determined, p.4]
306     //  In a task construct, if no default clause is present, a variable that in
307     //  the enclosing context is determined to be shared by all implicit tasks
308     //  bound to the current team is shared.
309     if (DVar.DKind == OMPD_task) {
310       DSAVarData DVarTemp;
311       for (StackTy::reverse_iterator I = std::next(Iter), EE = Stack.rend();
312            I != EE; ++I) {
313         // OpenMP [2.9.1.1, Data-sharing Attribute Rules for Variables
314         // Referenced
315         // in a Construct, implicitly determined, p.6]
316         //  In a task construct, if no default clause is present, a variable
317         //  whose data-sharing attribute is not determined by the rules above is
318         //  firstprivate.
319         DVarTemp = getDSA(I, D);
320         if (DVarTemp.CKind != OMPC_shared) {
321           DVar.RefExpr = nullptr;
322           DVar.DKind = OMPD_task;
323           DVar.CKind = OMPC_firstprivate;
324           return DVar;
325         }
326         if (isParallelOrTaskRegion(I->Directive))
327           break;
328       }
329       DVar.DKind = OMPD_task;
330       DVar.CKind =
331           (DVarTemp.CKind == OMPC_unknown) ? OMPC_firstprivate : OMPC_shared;
332       return DVar;
333     }
334   }
335   // OpenMP [2.9.1.1, Data-sharing Attribute Rules for Variables Referenced
336   // in a Construct, implicitly determined, p.3]
337   //  For constructs other than task, if no default clause is present, these
338   //  variables inherit their data-sharing attributes from the enclosing
339   //  context.
340   return getDSA(std::next(Iter), D);
341 }
342 
343 DeclRefExpr *DSAStackTy::addUniqueAligned(VarDecl *D, DeclRefExpr *NewDE) {
344   assert(Stack.size() > 1 && "Data sharing attributes stack is empty");
345   auto It = Stack.back().AlignedMap.find(D);
346   if (It == Stack.back().AlignedMap.end()) {
347     assert(NewDE && "Unexpected nullptr expr to be added into aligned map");
348     Stack.back().AlignedMap[D] = NewDE;
349     return nullptr;
350   } else {
351     assert(It->second && "Unexpected nullptr expr in the aligned map");
352     return It->second;
353   }
354   return nullptr;
355 }
356 
357 void DSAStackTy::addDSA(VarDecl *D, DeclRefExpr *E, OpenMPClauseKind A) {
358   if (A == OMPC_threadprivate) {
359     Stack[0].SharingMap[D].Attributes = A;
360     Stack[0].SharingMap[D].RefExpr = E;
361   } else {
362     assert(Stack.size() > 1 && "Data-sharing attributes stack is empty");
363     Stack.back().SharingMap[D].Attributes = A;
364     Stack.back().SharingMap[D].RefExpr = E;
365   }
366 }
367 
368 bool DSAStackTy::isOpenMPLocal(VarDecl *D, StackTy::reverse_iterator Iter) {
369   if (Stack.size() > 2) {
370     reverse_iterator I = Iter, E = std::prev(Stack.rend());
371     Scope *TopScope = nullptr;
372     while (I != E && !isParallelOrTaskRegion(I->Directive)) {
373       ++I;
374     }
375     if (I == E)
376       return false;
377     TopScope = I->CurScope ? I->CurScope->getParent() : nullptr;
378     Scope *CurScope = getCurScope();
379     while (CurScope != TopScope && !CurScope->isDeclScope(D)) {
380       CurScope = CurScope->getParent();
381     }
382     return CurScope != TopScope;
383   }
384   return false;
385 }
386 
387 DSAStackTy::DSAVarData DSAStackTy::getTopDSA(VarDecl *D, bool FromParent) {
388   DSAVarData DVar;
389 
390   // OpenMP [2.9.1.1, Data-sharing Attribute Rules for Variables Referenced
391   // in a Construct, C/C++, predetermined, p.1]
392   //  Variables appearing in threadprivate directives are threadprivate.
393   if (D->getTLSKind() != VarDecl::TLS_None ||
394       D->getStorageClass() == SC_Register) {
395     DVar.CKind = OMPC_threadprivate;
396     return DVar;
397   }
398   if (Stack[0].SharingMap.count(D)) {
399     DVar.RefExpr = Stack[0].SharingMap[D].RefExpr;
400     DVar.CKind = OMPC_threadprivate;
401     return DVar;
402   }
403 
404   // OpenMP [2.9.1.1, Data-sharing Attribute Rules for Variables Referenced
405   // in a Construct, C/C++, predetermined, p.1]
406   // Variables with automatic storage duration that are declared in a scope
407   // inside the construct are private.
408   OpenMPDirectiveKind Kind =
409       FromParent ? getParentDirective() : getCurrentDirective();
410   auto StartI = std::next(Stack.rbegin());
411   auto EndI = std::prev(Stack.rend());
412   if (FromParent && StartI != EndI) {
413     StartI = std::next(StartI);
414   }
415   if (!isParallelOrTaskRegion(Kind)) {
416     if (isOpenMPLocal(D, StartI) &&
417         ((D->isLocalVarDecl() && (D->getStorageClass() == SC_Auto ||
418                                   D->getStorageClass() == SC_None)) ||
419          isa<ParmVarDecl>(D))) {
420       DVar.CKind = OMPC_private;
421       return DVar;
422     }
423 
424     // OpenMP [2.9.1.1, Data-sharing Attribute Rules for Variables Referenced
425     // in a Construct, C/C++, predetermined, p.4]
426     //  Static data members are shared.
427     // OpenMP [2.9.1.1, Data-sharing Attribute Rules for Variables Referenced
428     // in a Construct, C/C++, predetermined, p.7]
429     //  Variables with static storage duration that are declared in a scope
430     //  inside the construct are shared.
431     if (D->isStaticDataMember() || D->isStaticLocal()) {
432       DSAVarData DVarTemp =
433           hasDSA(D, isOpenMPPrivate, MatchesAlways(), FromParent);
434       if (DVarTemp.CKind != OMPC_unknown && DVarTemp.RefExpr)
435         return DVar;
436 
437       DVar.CKind = OMPC_shared;
438       return DVar;
439     }
440   }
441 
442   QualType Type = D->getType().getNonReferenceType().getCanonicalType();
443   bool IsConstant = Type.isConstant(SemaRef.getASTContext());
444   while (Type->isArrayType()) {
445     QualType ElemType = cast<ArrayType>(Type.getTypePtr())->getElementType();
446     Type = ElemType.getNonReferenceType().getCanonicalType();
447   }
448   // OpenMP [2.9.1.1, Data-sharing Attribute Rules for Variables Referenced
449   // in a Construct, C/C++, predetermined, p.6]
450   //  Variables with const qualified type having no mutable member are
451   //  shared.
452   CXXRecordDecl *RD =
453       SemaRef.getLangOpts().CPlusPlus ? Type->getAsCXXRecordDecl() : nullptr;
454   if (IsConstant &&
455       !(SemaRef.getLangOpts().CPlusPlus && RD && RD->hasMutableFields())) {
456     // Variables with const-qualified type having no mutable member may be
457     // listed in a firstprivate clause, even if they are static data members.
458     DSAVarData DVarTemp = hasDSA(D, MatchesAnyClause(OMPC_firstprivate),
459                                  MatchesAlways(), FromParent);
460     if (DVarTemp.CKind == OMPC_firstprivate && DVarTemp.RefExpr)
461       return DVar;
462 
463     DVar.CKind = OMPC_shared;
464     return DVar;
465   }
466 
467   // Explicitly specified attributes and local variables with predetermined
468   // attributes.
469   auto I = std::prev(StartI);
470   if (I->SharingMap.count(D)) {
471     DVar.RefExpr = I->SharingMap[D].RefExpr;
472     DVar.CKind = I->SharingMap[D].Attributes;
473     DVar.ImplicitDSALoc = I->DefaultAttrLoc;
474   }
475 
476   return DVar;
477 }
478 
479 DSAStackTy::DSAVarData DSAStackTy::getImplicitDSA(VarDecl *D, bool FromParent) {
480   auto StartI = Stack.rbegin();
481   auto EndI = std::prev(Stack.rend());
482   if (FromParent && StartI != EndI) {
483     StartI = std::next(StartI);
484   }
485   return getDSA(StartI, D);
486 }
487 
488 template <class ClausesPredicate, class DirectivesPredicate>
489 DSAStackTy::DSAVarData DSAStackTy::hasDSA(VarDecl *D, ClausesPredicate CPred,
490                                           DirectivesPredicate DPred,
491                                           bool FromParent) {
492   auto StartI = std::next(Stack.rbegin());
493   auto EndI = std::prev(Stack.rend());
494   if (FromParent && StartI != EndI) {
495     StartI = std::next(StartI);
496   }
497   for (auto I = StartI, EE = EndI; I != EE; ++I) {
498     if (!DPred(I->Directive) && !isParallelOrTaskRegion(I->Directive))
499       continue;
500     DSAVarData DVar = getDSA(I, D);
501     if (CPred(DVar.CKind))
502       return DVar;
503   }
504   return DSAVarData();
505 }
506 
507 template <class ClausesPredicate, class DirectivesPredicate>
508 DSAStackTy::DSAVarData
509 DSAStackTy::hasInnermostDSA(VarDecl *D, ClausesPredicate CPred,
510                             DirectivesPredicate DPred, bool FromParent) {
511   auto StartI = std::next(Stack.rbegin());
512   auto EndI = std::prev(Stack.rend());
513   if (FromParent && StartI != EndI) {
514     StartI = std::next(StartI);
515   }
516   for (auto I = StartI, EE = EndI; I != EE; ++I) {
517     if (!DPred(I->Directive))
518       break;
519     DSAVarData DVar = getDSA(I, D);
520     if (CPred(DVar.CKind))
521       return DVar;
522     return DSAVarData();
523   }
524   return DSAVarData();
525 }
526 
527 template <class NamedDirectivesPredicate>
528 bool DSAStackTy::hasDirective(NamedDirectivesPredicate DPred, bool FromParent) {
529   auto StartI = std::next(Stack.rbegin());
530   auto EndI = std::prev(Stack.rend());
531   if (FromParent && StartI != EndI) {
532     StartI = std::next(StartI);
533   }
534   for (auto I = StartI, EE = EndI; I != EE; ++I) {
535     if (DPred(I->Directive, I->DirectiveName, I->ConstructLoc))
536       return true;
537   }
538   return false;
539 }
540 
541 void Sema::InitDataSharingAttributesStack() {
542   VarDataSharingAttributesStack = new DSAStackTy(*this);
543 }
544 
545 #define DSAStack static_cast<DSAStackTy *>(VarDataSharingAttributesStack)
546 
547 bool Sema::IsOpenMPCapturedVar(VarDecl *VD) {
548   assert(LangOpts.OpenMP && "OpenMP is not allowed");
549   if (DSAStack->getCurrentDirective() != OMPD_unknown) {
550     auto DVarPrivate = DSAStack->getTopDSA(VD, /*FromParent=*/false);
551     if (DVarPrivate.CKind != OMPC_unknown && isOpenMPPrivate(DVarPrivate.CKind))
552       return true;
553     DVarPrivate = DSAStack->hasDSA(VD, isOpenMPPrivate, MatchesAlways(),
554                                    /*FromParent=*/false);
555     return DVarPrivate.CKind != OMPC_unknown;
556   }
557   return false;
558 }
559 
560 void Sema::DestroyDataSharingAttributesStack() { delete DSAStack; }
561 
562 void Sema::StartOpenMPDSABlock(OpenMPDirectiveKind DKind,
563                                const DeclarationNameInfo &DirName,
564                                Scope *CurScope, SourceLocation Loc) {
565   DSAStack->push(DKind, DirName, CurScope, Loc);
566   PushExpressionEvaluationContext(PotentiallyEvaluated);
567 }
568 
569 void Sema::EndOpenMPDSABlock(Stmt *CurDirective) {
570   // OpenMP [2.14.3.5, Restrictions, C/C++, p.1]
571   //  A variable of class type (or array thereof) that appears in a lastprivate
572   //  clause requires an accessible, unambiguous default constructor for the
573   //  class type, unless the list item is also specified in a firstprivate
574   //  clause.
575   if (auto D = dyn_cast_or_null<OMPExecutableDirective>(CurDirective)) {
576     for (auto C : D->clauses()) {
577       if (auto Clause = dyn_cast<OMPLastprivateClause>(C)) {
578         for (auto VarRef : Clause->varlists()) {
579           if (VarRef->isValueDependent() || VarRef->isTypeDependent())
580             continue;
581           auto VD = cast<VarDecl>(cast<DeclRefExpr>(VarRef)->getDecl());
582           auto DVar = DSAStack->getTopDSA(VD, false);
583           if (DVar.CKind == OMPC_lastprivate) {
584             SourceLocation ELoc = VarRef->getExprLoc();
585             auto Type = VarRef->getType();
586             if (Type->isArrayType())
587               Type = QualType(Type->getArrayElementTypeNoTypeQual(), 0);
588             CXXRecordDecl *RD =
589                 getLangOpts().CPlusPlus ? Type->getAsCXXRecordDecl() : nullptr;
590             // FIXME This code must be replaced by actual constructing of the
591             // lastprivate variable.
592             if (RD) {
593               CXXConstructorDecl *CD = LookupDefaultConstructor(RD);
594               PartialDiagnostic PD =
595                   PartialDiagnostic(PartialDiagnostic::NullDiagnostic());
596               if (!CD ||
597                   CheckConstructorAccess(
598                       ELoc, CD, InitializedEntity::InitializeTemporary(Type),
599                       CD->getAccess(), PD) == AR_inaccessible ||
600                   CD->isDeleted()) {
601                 Diag(ELoc, diag::err_omp_required_method)
602                     << getOpenMPClauseName(OMPC_lastprivate) << 0;
603                 bool IsDecl = VD->isThisDeclarationADefinition(Context) ==
604                               VarDecl::DeclarationOnly;
605                 Diag(VD->getLocation(), IsDecl ? diag::note_previous_decl
606                                                : diag::note_defined_here)
607                     << VD;
608                 Diag(RD->getLocation(), diag::note_previous_decl) << RD;
609                 continue;
610               }
611               MarkFunctionReferenced(ELoc, CD);
612               DiagnoseUseOfDecl(CD, ELoc);
613             }
614           }
615         }
616       }
617     }
618   }
619 
620   DSAStack->pop();
621   DiscardCleanupsInEvaluationContext();
622   PopExpressionEvaluationContext();
623 }
624 
625 namespace {
626 
627 class VarDeclFilterCCC : public CorrectionCandidateCallback {
628 private:
629   Sema &SemaRef;
630 
631 public:
632   explicit VarDeclFilterCCC(Sema &S) : SemaRef(S) {}
633   bool ValidateCandidate(const TypoCorrection &Candidate) override {
634     NamedDecl *ND = Candidate.getCorrectionDecl();
635     if (VarDecl *VD = dyn_cast_or_null<VarDecl>(ND)) {
636       return VD->hasGlobalStorage() &&
637              SemaRef.isDeclInScope(ND, SemaRef.getCurLexicalContext(),
638                                    SemaRef.getCurScope());
639     }
640     return false;
641   }
642 };
643 } // namespace
644 
645 ExprResult Sema::ActOnOpenMPIdExpression(Scope *CurScope,
646                                          CXXScopeSpec &ScopeSpec,
647                                          const DeclarationNameInfo &Id) {
648   LookupResult Lookup(*this, Id, LookupOrdinaryName);
649   LookupParsedName(Lookup, CurScope, &ScopeSpec, true);
650 
651   if (Lookup.isAmbiguous())
652     return ExprError();
653 
654   VarDecl *VD;
655   if (!Lookup.isSingleResult()) {
656     if (TypoCorrection Corrected = CorrectTypo(
657             Id, LookupOrdinaryName, CurScope, nullptr,
658             llvm::make_unique<VarDeclFilterCCC>(*this), CTK_ErrorRecovery)) {
659       diagnoseTypo(Corrected,
660                    PDiag(Lookup.empty()
661                              ? diag::err_undeclared_var_use_suggest
662                              : diag::err_omp_expected_var_arg_suggest)
663                        << Id.getName());
664       VD = Corrected.getCorrectionDeclAs<VarDecl>();
665     } else {
666       Diag(Id.getLoc(), Lookup.empty() ? diag::err_undeclared_var_use
667                                        : diag::err_omp_expected_var_arg)
668           << Id.getName();
669       return ExprError();
670     }
671   } else {
672     if (!(VD = Lookup.getAsSingle<VarDecl>())) {
673       Diag(Id.getLoc(), diag::err_omp_expected_var_arg) << Id.getName();
674       Diag(Lookup.getFoundDecl()->getLocation(), diag::note_declared_at);
675       return ExprError();
676     }
677   }
678   Lookup.suppressDiagnostics();
679 
680   // OpenMP [2.9.2, Syntax, C/C++]
681   //   Variables must be file-scope, namespace-scope, or static block-scope.
682   if (!VD->hasGlobalStorage()) {
683     Diag(Id.getLoc(), diag::err_omp_global_var_arg)
684         << getOpenMPDirectiveName(OMPD_threadprivate) << !VD->isStaticLocal();
685     bool IsDecl =
686         VD->isThisDeclarationADefinition(Context) == VarDecl::DeclarationOnly;
687     Diag(VD->getLocation(),
688          IsDecl ? diag::note_previous_decl : diag::note_defined_here)
689         << VD;
690     return ExprError();
691   }
692 
693   VarDecl *CanonicalVD = VD->getCanonicalDecl();
694   NamedDecl *ND = cast<NamedDecl>(CanonicalVD);
695   // OpenMP [2.9.2, Restrictions, C/C++, p.2]
696   //   A threadprivate directive for file-scope variables must appear outside
697   //   any definition or declaration.
698   if (CanonicalVD->getDeclContext()->isTranslationUnit() &&
699       !getCurLexicalContext()->isTranslationUnit()) {
700     Diag(Id.getLoc(), diag::err_omp_var_scope)
701         << getOpenMPDirectiveName(OMPD_threadprivate) << VD;
702     bool IsDecl =
703         VD->isThisDeclarationADefinition(Context) == VarDecl::DeclarationOnly;
704     Diag(VD->getLocation(),
705          IsDecl ? diag::note_previous_decl : diag::note_defined_here)
706         << VD;
707     return ExprError();
708   }
709   // OpenMP [2.9.2, Restrictions, C/C++, p.3]
710   //   A threadprivate directive for static class member variables must appear
711   //   in the class definition, in the same scope in which the member
712   //   variables are declared.
713   if (CanonicalVD->isStaticDataMember() &&
714       !CanonicalVD->getDeclContext()->Equals(getCurLexicalContext())) {
715     Diag(Id.getLoc(), diag::err_omp_var_scope)
716         << getOpenMPDirectiveName(OMPD_threadprivate) << VD;
717     bool IsDecl =
718         VD->isThisDeclarationADefinition(Context) == VarDecl::DeclarationOnly;
719     Diag(VD->getLocation(),
720          IsDecl ? diag::note_previous_decl : diag::note_defined_here)
721         << VD;
722     return ExprError();
723   }
724   // OpenMP [2.9.2, Restrictions, C/C++, p.4]
725   //   A threadprivate directive for namespace-scope variables must appear
726   //   outside any definition or declaration other than the namespace
727   //   definition itself.
728   if (CanonicalVD->getDeclContext()->isNamespace() &&
729       (!getCurLexicalContext()->isFileContext() ||
730        !getCurLexicalContext()->Encloses(CanonicalVD->getDeclContext()))) {
731     Diag(Id.getLoc(), diag::err_omp_var_scope)
732         << getOpenMPDirectiveName(OMPD_threadprivate) << VD;
733     bool IsDecl =
734         VD->isThisDeclarationADefinition(Context) == VarDecl::DeclarationOnly;
735     Diag(VD->getLocation(),
736          IsDecl ? diag::note_previous_decl : diag::note_defined_here)
737         << VD;
738     return ExprError();
739   }
740   // OpenMP [2.9.2, Restrictions, C/C++, p.6]
741   //   A threadprivate directive for static block-scope variables must appear
742   //   in the scope of the variable and not in a nested scope.
743   if (CanonicalVD->isStaticLocal() && CurScope &&
744       !isDeclInScope(ND, getCurLexicalContext(), CurScope)) {
745     Diag(Id.getLoc(), diag::err_omp_var_scope)
746         << getOpenMPDirectiveName(OMPD_threadprivate) << VD;
747     bool IsDecl =
748         VD->isThisDeclarationADefinition(Context) == VarDecl::DeclarationOnly;
749     Diag(VD->getLocation(),
750          IsDecl ? diag::note_previous_decl : diag::note_defined_here)
751         << VD;
752     return ExprError();
753   }
754 
755   // OpenMP [2.9.2, Restrictions, C/C++, p.2-6]
756   //   A threadprivate directive must lexically precede all references to any
757   //   of the variables in its list.
758   if (VD->isUsed()) {
759     Diag(Id.getLoc(), diag::err_omp_var_used)
760         << getOpenMPDirectiveName(OMPD_threadprivate) << VD;
761     return ExprError();
762   }
763 
764   QualType ExprType = VD->getType().getNonReferenceType();
765   ExprResult DE = BuildDeclRefExpr(VD, ExprType, VK_LValue, Id.getLoc());
766   return DE;
767 }
768 
769 Sema::DeclGroupPtrTy
770 Sema::ActOnOpenMPThreadprivateDirective(SourceLocation Loc,
771                                         ArrayRef<Expr *> VarList) {
772   if (OMPThreadPrivateDecl *D = CheckOMPThreadPrivateDecl(Loc, VarList)) {
773     CurContext->addDecl(D);
774     return DeclGroupPtrTy::make(DeclGroupRef(D));
775   }
776   return DeclGroupPtrTy();
777 }
778 
779 namespace {
780 class LocalVarRefChecker : public ConstStmtVisitor<LocalVarRefChecker, bool> {
781   Sema &SemaRef;
782 
783 public:
784   bool VisitDeclRefExpr(const DeclRefExpr *E) {
785     if (auto VD = dyn_cast<VarDecl>(E->getDecl())) {
786       if (VD->hasLocalStorage()) {
787         SemaRef.Diag(E->getLocStart(),
788                      diag::err_omp_local_var_in_threadprivate_init)
789             << E->getSourceRange();
790         SemaRef.Diag(VD->getLocation(), diag::note_defined_here)
791             << VD << VD->getSourceRange();
792         return true;
793       }
794     }
795     return false;
796   }
797   bool VisitStmt(const Stmt *S) {
798     for (auto Child : S->children()) {
799       if (Child && Visit(Child))
800         return true;
801     }
802     return false;
803   }
804   explicit LocalVarRefChecker(Sema &SemaRef) : SemaRef(SemaRef) {}
805 };
806 } // namespace
807 
808 OMPThreadPrivateDecl *
809 Sema::CheckOMPThreadPrivateDecl(SourceLocation Loc, ArrayRef<Expr *> VarList) {
810   SmallVector<Expr *, 8> Vars;
811   for (auto &RefExpr : VarList) {
812     DeclRefExpr *DE = cast<DeclRefExpr>(RefExpr);
813     VarDecl *VD = cast<VarDecl>(DE->getDecl());
814     SourceLocation ILoc = DE->getExprLoc();
815 
816     // OpenMP [2.9.2, Restrictions, C/C++, p.10]
817     //   A threadprivate variable must not have an incomplete type.
818     if (RequireCompleteType(ILoc, VD->getType(),
819                             diag::err_omp_threadprivate_incomplete_type)) {
820       continue;
821     }
822 
823     // OpenMP [2.9.2, Restrictions, C/C++, p.10]
824     //   A threadprivate variable must not have a reference type.
825     if (VD->getType()->isReferenceType()) {
826       Diag(ILoc, diag::err_omp_ref_type_arg)
827           << getOpenMPDirectiveName(OMPD_threadprivate) << VD->getType();
828       bool IsDecl =
829           VD->isThisDeclarationADefinition(Context) == VarDecl::DeclarationOnly;
830       Diag(VD->getLocation(),
831            IsDecl ? diag::note_previous_decl : diag::note_defined_here)
832           << VD;
833       continue;
834     }
835 
836     // Check if this is a TLS variable.
837     if (VD->getTLSKind() != VarDecl::TLS_None ||
838         VD->getStorageClass() == SC_Register) {
839       Diag(ILoc, diag::err_omp_var_thread_local)
840           << VD << ((VD->getTLSKind() != VarDecl::TLS_None) ? 0 : 1);
841       bool IsDecl =
842           VD->isThisDeclarationADefinition(Context) == VarDecl::DeclarationOnly;
843       Diag(VD->getLocation(),
844            IsDecl ? diag::note_previous_decl : diag::note_defined_here)
845           << VD;
846       continue;
847     }
848 
849     // Check if initial value of threadprivate variable reference variable with
850     // local storage (it is not supported by runtime).
851     if (auto Init = VD->getAnyInitializer()) {
852       LocalVarRefChecker Checker(*this);
853       if (Checker.Visit(Init))
854         continue;
855     }
856 
857     Vars.push_back(RefExpr);
858     DSAStack->addDSA(VD, DE, OMPC_threadprivate);
859     VD->addAttr(OMPThreadPrivateDeclAttr::CreateImplicit(
860         Context, SourceRange(Loc, Loc)));
861     if (auto *ML = Context.getASTMutationListener())
862       ML->DeclarationMarkedOpenMPThreadPrivate(VD);
863   }
864   OMPThreadPrivateDecl *D = nullptr;
865   if (!Vars.empty()) {
866     D = OMPThreadPrivateDecl::Create(Context, getCurLexicalContext(), Loc,
867                                      Vars);
868     D->setAccess(AS_public);
869   }
870   return D;
871 }
872 
873 static void ReportOriginalDSA(Sema &SemaRef, DSAStackTy *Stack,
874                               const VarDecl *VD, DSAStackTy::DSAVarData DVar,
875                               bool IsLoopIterVar = false) {
876   if (DVar.RefExpr) {
877     SemaRef.Diag(DVar.RefExpr->getExprLoc(), diag::note_omp_explicit_dsa)
878         << getOpenMPClauseName(DVar.CKind);
879     return;
880   }
881   enum {
882     PDSA_StaticMemberShared,
883     PDSA_StaticLocalVarShared,
884     PDSA_LoopIterVarPrivate,
885     PDSA_LoopIterVarLinear,
886     PDSA_LoopIterVarLastprivate,
887     PDSA_ConstVarShared,
888     PDSA_GlobalVarShared,
889     PDSA_TaskVarFirstprivate,
890     PDSA_LocalVarPrivate,
891     PDSA_Implicit
892   } Reason = PDSA_Implicit;
893   bool ReportHint = false;
894   auto ReportLoc = VD->getLocation();
895   if (IsLoopIterVar) {
896     if (DVar.CKind == OMPC_private)
897       Reason = PDSA_LoopIterVarPrivate;
898     else if (DVar.CKind == OMPC_lastprivate)
899       Reason = PDSA_LoopIterVarLastprivate;
900     else
901       Reason = PDSA_LoopIterVarLinear;
902   } else if (DVar.DKind == OMPD_task && DVar.CKind == OMPC_firstprivate) {
903     Reason = PDSA_TaskVarFirstprivate;
904     ReportLoc = DVar.ImplicitDSALoc;
905   } else if (VD->isStaticLocal())
906     Reason = PDSA_StaticLocalVarShared;
907   else if (VD->isStaticDataMember())
908     Reason = PDSA_StaticMemberShared;
909   else if (VD->isFileVarDecl())
910     Reason = PDSA_GlobalVarShared;
911   else if (VD->getType().isConstant(SemaRef.getASTContext()))
912     Reason = PDSA_ConstVarShared;
913   else if (VD->isLocalVarDecl() && DVar.CKind == OMPC_private) {
914     ReportHint = true;
915     Reason = PDSA_LocalVarPrivate;
916   }
917   if (Reason != PDSA_Implicit) {
918     SemaRef.Diag(ReportLoc, diag::note_omp_predetermined_dsa)
919         << Reason << ReportHint
920         << getOpenMPDirectiveName(Stack->getCurrentDirective());
921   } else if (DVar.ImplicitDSALoc.isValid()) {
922     SemaRef.Diag(DVar.ImplicitDSALoc, diag::note_omp_implicit_dsa)
923         << getOpenMPClauseName(DVar.CKind);
924   }
925 }
926 
927 namespace {
928 class DSAAttrChecker : public StmtVisitor<DSAAttrChecker, void> {
929   DSAStackTy *Stack;
930   Sema &SemaRef;
931   bool ErrorFound;
932   CapturedStmt *CS;
933   llvm::SmallVector<Expr *, 8> ImplicitFirstprivate;
934   llvm::DenseMap<VarDecl *, Expr *> VarsWithInheritedDSA;
935 
936 public:
937   void VisitDeclRefExpr(DeclRefExpr *E) {
938     if (auto *VD = dyn_cast<VarDecl>(E->getDecl())) {
939       // Skip internally declared variables.
940       if (VD->isLocalVarDecl() && !CS->capturesVariable(VD))
941         return;
942 
943       auto DVar = Stack->getTopDSA(VD, false);
944       // Check if the variable has explicit DSA set and stop analysis if it so.
945       if (DVar.RefExpr) return;
946 
947       auto ELoc = E->getExprLoc();
948       auto DKind = Stack->getCurrentDirective();
949       // The default(none) clause requires that each variable that is referenced
950       // in the construct, and does not have a predetermined data-sharing
951       // attribute, must have its data-sharing attribute explicitly determined
952       // by being listed in a data-sharing attribute clause.
953       if (DVar.CKind == OMPC_unknown && Stack->getDefaultDSA() == DSA_none &&
954           isParallelOrTaskRegion(DKind) &&
955           VarsWithInheritedDSA.count(VD) == 0) {
956         VarsWithInheritedDSA[VD] = E;
957         return;
958       }
959 
960       // OpenMP [2.9.3.6, Restrictions, p.2]
961       //  A list item that appears in a reduction clause of the innermost
962       //  enclosing worksharing or parallel construct may not be accessed in an
963       //  explicit task.
964       DVar = Stack->hasInnermostDSA(VD, MatchesAnyClause(OMPC_reduction),
965                                     [](OpenMPDirectiveKind K) -> bool {
966                                       return isOpenMPParallelDirective(K) ||
967                                              isOpenMPWorksharingDirective(K) ||
968                                              isOpenMPTeamsDirective(K);
969                                     },
970                                     false);
971       if (DKind == OMPD_task && DVar.CKind == OMPC_reduction) {
972         ErrorFound = true;
973         SemaRef.Diag(ELoc, diag::err_omp_reduction_in_task);
974         ReportOriginalDSA(SemaRef, Stack, VD, DVar);
975         return;
976       }
977 
978       // Define implicit data-sharing attributes for task.
979       DVar = Stack->getImplicitDSA(VD, false);
980       if (DKind == OMPD_task && DVar.CKind != OMPC_shared)
981         ImplicitFirstprivate.push_back(E);
982     }
983   }
984   void VisitOMPExecutableDirective(OMPExecutableDirective *S) {
985     for (auto *C : S->clauses()) {
986       // Skip analysis of arguments of implicitly defined firstprivate clause
987       // for task directives.
988       if (C && (!isa<OMPFirstprivateClause>(C) || C->getLocStart().isValid()))
989         for (auto *CC : C->children()) {
990           if (CC)
991             Visit(CC);
992         }
993     }
994   }
995   void VisitStmt(Stmt *S) {
996     for (auto *C : S->children()) {
997       if (C && !isa<OMPExecutableDirective>(C))
998         Visit(C);
999     }
1000   }
1001 
1002   bool isErrorFound() { return ErrorFound; }
1003   ArrayRef<Expr *> getImplicitFirstprivate() { return ImplicitFirstprivate; }
1004   llvm::DenseMap<VarDecl *, Expr *> &getVarsWithInheritedDSA() {
1005     return VarsWithInheritedDSA;
1006   }
1007 
1008   DSAAttrChecker(DSAStackTy *S, Sema &SemaRef, CapturedStmt *CS)
1009       : Stack(S), SemaRef(SemaRef), ErrorFound(false), CS(CS) {}
1010 };
1011 } // namespace
1012 
1013 void Sema::ActOnOpenMPRegionStart(OpenMPDirectiveKind DKind, Scope *CurScope) {
1014   switch (DKind) {
1015   case OMPD_parallel: {
1016     QualType KmpInt32Ty = Context.getIntTypeForBitwidth(32, 1);
1017     QualType KmpInt32PtrTy = Context.getPointerType(KmpInt32Ty);
1018     Sema::CapturedParamNameType Params[] = {
1019         std::make_pair(".global_tid.", KmpInt32PtrTy),
1020         std::make_pair(".bound_tid.", KmpInt32PtrTy),
1021         std::make_pair(StringRef(), QualType()) // __context with shared vars
1022     };
1023     ActOnCapturedRegionStart(DSAStack->getConstructLoc(), CurScope, CR_OpenMP,
1024                              Params);
1025     break;
1026   }
1027   case OMPD_simd: {
1028     Sema::CapturedParamNameType Params[] = {
1029         std::make_pair(StringRef(), QualType()) // __context with shared vars
1030     };
1031     ActOnCapturedRegionStart(DSAStack->getConstructLoc(), CurScope, CR_OpenMP,
1032                              Params);
1033     break;
1034   }
1035   case OMPD_for: {
1036     Sema::CapturedParamNameType Params[] = {
1037         std::make_pair(StringRef(), QualType()) // __context with shared vars
1038     };
1039     ActOnCapturedRegionStart(DSAStack->getConstructLoc(), CurScope, CR_OpenMP,
1040                              Params);
1041     break;
1042   }
1043   case OMPD_for_simd: {
1044     Sema::CapturedParamNameType Params[] = {
1045         std::make_pair(StringRef(), QualType()) // __context with shared vars
1046     };
1047     ActOnCapturedRegionStart(DSAStack->getConstructLoc(), CurScope, CR_OpenMP,
1048                              Params);
1049     break;
1050   }
1051   case OMPD_sections: {
1052     Sema::CapturedParamNameType Params[] = {
1053         std::make_pair(StringRef(), QualType()) // __context with shared vars
1054     };
1055     ActOnCapturedRegionStart(DSAStack->getConstructLoc(), CurScope, CR_OpenMP,
1056                              Params);
1057     break;
1058   }
1059   case OMPD_section: {
1060     Sema::CapturedParamNameType Params[] = {
1061         std::make_pair(StringRef(), QualType()) // __context with shared vars
1062     };
1063     ActOnCapturedRegionStart(DSAStack->getConstructLoc(), CurScope, CR_OpenMP,
1064                              Params);
1065     break;
1066   }
1067   case OMPD_single: {
1068     Sema::CapturedParamNameType Params[] = {
1069         std::make_pair(StringRef(), QualType()) // __context with shared vars
1070     };
1071     ActOnCapturedRegionStart(DSAStack->getConstructLoc(), CurScope, CR_OpenMP,
1072                              Params);
1073     break;
1074   }
1075   case OMPD_master: {
1076     Sema::CapturedParamNameType Params[] = {
1077         std::make_pair(StringRef(), QualType()) // __context with shared vars
1078     };
1079     ActOnCapturedRegionStart(DSAStack->getConstructLoc(), CurScope, CR_OpenMP,
1080                              Params);
1081     break;
1082   }
1083   case OMPD_critical: {
1084     Sema::CapturedParamNameType Params[] = {
1085         std::make_pair(StringRef(), QualType()) // __context with shared vars
1086     };
1087     ActOnCapturedRegionStart(DSAStack->getConstructLoc(), CurScope, CR_OpenMP,
1088                              Params);
1089     break;
1090   }
1091   case OMPD_parallel_for: {
1092     QualType KmpInt32Ty = Context.getIntTypeForBitwidth(32, 1);
1093     QualType KmpInt32PtrTy = Context.getPointerType(KmpInt32Ty);
1094     Sema::CapturedParamNameType Params[] = {
1095         std::make_pair(".global_tid.", KmpInt32PtrTy),
1096         std::make_pair(".bound_tid.", KmpInt32PtrTy),
1097         std::make_pair(StringRef(), QualType()) // __context with shared vars
1098     };
1099     ActOnCapturedRegionStart(DSAStack->getConstructLoc(), CurScope, CR_OpenMP,
1100                              Params);
1101     break;
1102   }
1103   case OMPD_parallel_for_simd: {
1104     QualType KmpInt32Ty = Context.getIntTypeForBitwidth(32, 1);
1105     QualType KmpInt32PtrTy = Context.getPointerType(KmpInt32Ty);
1106     Sema::CapturedParamNameType Params[] = {
1107         std::make_pair(".global_tid.", KmpInt32PtrTy),
1108         std::make_pair(".bound_tid.", KmpInt32PtrTy),
1109         std::make_pair(StringRef(), QualType()) // __context with shared vars
1110     };
1111     ActOnCapturedRegionStart(DSAStack->getConstructLoc(), CurScope, CR_OpenMP,
1112                              Params);
1113     break;
1114   }
1115   case OMPD_parallel_sections: {
1116     Sema::CapturedParamNameType Params[] = {
1117         std::make_pair(StringRef(), QualType()) // __context with shared vars
1118     };
1119     ActOnCapturedRegionStart(DSAStack->getConstructLoc(), CurScope, CR_OpenMP,
1120                              Params);
1121     break;
1122   }
1123   case OMPD_task: {
1124     QualType KmpInt32Ty = Context.getIntTypeForBitwidth(32, 1);
1125     Sema::CapturedParamNameType Params[] = {
1126         std::make_pair(".global_tid.", KmpInt32Ty),
1127         std::make_pair(".part_id.", KmpInt32Ty),
1128         std::make_pair(StringRef(), QualType()) // __context with shared vars
1129     };
1130     ActOnCapturedRegionStart(DSAStack->getConstructLoc(), CurScope, CR_OpenMP,
1131                              Params);
1132     // Mark this captured region as inlined, because we don't use outlined
1133     // function directly.
1134     getCurCapturedRegion()->TheCapturedDecl->addAttr(
1135         AlwaysInlineAttr::CreateImplicit(
1136             Context, AlwaysInlineAttr::Keyword_forceinline, SourceRange()));
1137     break;
1138   }
1139   case OMPD_ordered: {
1140     Sema::CapturedParamNameType Params[] = {
1141         std::make_pair(StringRef(), QualType()) // __context with shared vars
1142     };
1143     ActOnCapturedRegionStart(DSAStack->getConstructLoc(), CurScope, CR_OpenMP,
1144                              Params);
1145     break;
1146   }
1147   case OMPD_atomic: {
1148     Sema::CapturedParamNameType Params[] = {
1149         std::make_pair(StringRef(), QualType()) // __context with shared vars
1150     };
1151     ActOnCapturedRegionStart(DSAStack->getConstructLoc(), CurScope, CR_OpenMP,
1152                              Params);
1153     break;
1154   }
1155   case OMPD_target: {
1156     Sema::CapturedParamNameType Params[] = {
1157         std::make_pair(StringRef(), QualType()) // __context with shared vars
1158     };
1159     ActOnCapturedRegionStart(DSAStack->getConstructLoc(), CurScope, CR_OpenMP,
1160                              Params);
1161     break;
1162   }
1163   case OMPD_teams: {
1164     QualType KmpInt32Ty = Context.getIntTypeForBitwidth(32, 1);
1165     QualType KmpInt32PtrTy = Context.getPointerType(KmpInt32Ty);
1166     Sema::CapturedParamNameType Params[] = {
1167         std::make_pair(".global_tid.", KmpInt32PtrTy),
1168         std::make_pair(".bound_tid.", KmpInt32PtrTy),
1169         std::make_pair(StringRef(), QualType()) // __context with shared vars
1170     };
1171     ActOnCapturedRegionStart(DSAStack->getConstructLoc(), CurScope, CR_OpenMP,
1172                              Params);
1173     break;
1174   }
1175   case OMPD_threadprivate:
1176   case OMPD_taskyield:
1177   case OMPD_barrier:
1178   case OMPD_taskwait:
1179   case OMPD_flush:
1180     llvm_unreachable("OpenMP Directive is not allowed");
1181   case OMPD_unknown:
1182     llvm_unreachable("Unknown OpenMP directive");
1183   }
1184 }
1185 
1186 static bool CheckNestingOfRegions(Sema &SemaRef, DSAStackTy *Stack,
1187                                   OpenMPDirectiveKind CurrentRegion,
1188                                   const DeclarationNameInfo &CurrentName,
1189                                   SourceLocation StartLoc) {
1190   // Allowed nesting of constructs
1191   // +------------------+-----------------+------------------------------------+
1192   // | Parent directive | Child directive | Closely (!), No-Closely(+), Both(*)|
1193   // +------------------+-----------------+------------------------------------+
1194   // | parallel         | parallel        | *                                  |
1195   // | parallel         | for             | *                                  |
1196   // | parallel         | for simd        | *                                  |
1197   // | parallel         | master          | *                                  |
1198   // | parallel         | critical        | *                                  |
1199   // | parallel         | simd            | *                                  |
1200   // | parallel         | sections        | *                                  |
1201   // | parallel         | section         | +                                  |
1202   // | parallel         | single          | *                                  |
1203   // | parallel         | parallel for    | *                                  |
1204   // | parallel         |parallel for simd| *                                  |
1205   // | parallel         |parallel sections| *                                  |
1206   // | parallel         | task            | *                                  |
1207   // | parallel         | taskyield       | *                                  |
1208   // | parallel         | barrier         | *                                  |
1209   // | parallel         | taskwait        | *                                  |
1210   // | parallel         | flush           | *                                  |
1211   // | parallel         | ordered         | +                                  |
1212   // | parallel         | atomic          | *                                  |
1213   // | parallel         | target          | *                                  |
1214   // | parallel         | teams           | +                                  |
1215   // +------------------+-----------------+------------------------------------+
1216   // | for              | parallel        | *                                  |
1217   // | for              | for             | +                                  |
1218   // | for              | for simd        | +                                  |
1219   // | for              | master          | +                                  |
1220   // | for              | critical        | *                                  |
1221   // | for              | simd            | *                                  |
1222   // | for              | sections        | +                                  |
1223   // | for              | section         | +                                  |
1224   // | for              | single          | +                                  |
1225   // | for              | parallel for    | *                                  |
1226   // | for              |parallel for simd| *                                  |
1227   // | for              |parallel sections| *                                  |
1228   // | for              | task            | *                                  |
1229   // | for              | taskyield       | *                                  |
1230   // | for              | barrier         | +                                  |
1231   // | for              | taskwait        | *                                  |
1232   // | for              | flush           | *                                  |
1233   // | for              | ordered         | * (if construct is ordered)        |
1234   // | for              | atomic          | *                                  |
1235   // | for              | target          | *                                  |
1236   // | for              | teams           | +                                  |
1237   // +------------------+-----------------+------------------------------------+
1238   // | master           | parallel        | *                                  |
1239   // | master           | for             | +                                  |
1240   // | master           | for simd        | +                                  |
1241   // | master           | master          | *                                  |
1242   // | master           | critical        | *                                  |
1243   // | master           | simd            | *                                  |
1244   // | master           | sections        | +                                  |
1245   // | master           | section         | +                                  |
1246   // | master           | single          | +                                  |
1247   // | master           | parallel for    | *                                  |
1248   // | master           |parallel for simd| *                                  |
1249   // | master           |parallel sections| *                                  |
1250   // | master           | task            | *                                  |
1251   // | master           | taskyield       | *                                  |
1252   // | master           | barrier         | +                                  |
1253   // | master           | taskwait        | *                                  |
1254   // | master           | flush           | *                                  |
1255   // | master           | ordered         | +                                  |
1256   // | master           | atomic          | *                                  |
1257   // | master           | target          | *                                  |
1258   // | master           | teams           | +                                  |
1259   // +------------------+-----------------+------------------------------------+
1260   // | critical         | parallel        | *                                  |
1261   // | critical         | for             | +                                  |
1262   // | critical         | for simd        | +                                  |
1263   // | critical         | master          | *                                  |
1264   // | critical         | critical        | * (should have different names)    |
1265   // | critical         | simd            | *                                  |
1266   // | critical         | sections        | +                                  |
1267   // | critical         | section         | +                                  |
1268   // | critical         | single          | +                                  |
1269   // | critical         | parallel for    | *                                  |
1270   // | critical         |parallel for simd| *                                  |
1271   // | critical         |parallel sections| *                                  |
1272   // | critical         | task            | *                                  |
1273   // | critical         | taskyield       | *                                  |
1274   // | critical         | barrier         | +                                  |
1275   // | critical         | taskwait        | *                                  |
1276   // | critical         | ordered         | +                                  |
1277   // | critical         | atomic          | *                                  |
1278   // | critical         | target          | *                                  |
1279   // | critical         | teams           | +                                  |
1280   // +------------------+-----------------+------------------------------------+
1281   // | simd             | parallel        |                                    |
1282   // | simd             | for             |                                    |
1283   // | simd             | for simd        |                                    |
1284   // | simd             | master          |                                    |
1285   // | simd             | critical        |                                    |
1286   // | simd             | simd            |                                    |
1287   // | simd             | sections        |                                    |
1288   // | simd             | section         |                                    |
1289   // | simd             | single          |                                    |
1290   // | simd             | parallel for    |                                    |
1291   // | simd             |parallel for simd|                                    |
1292   // | simd             |parallel sections|                                    |
1293   // | simd             | task            |                                    |
1294   // | simd             | taskyield       |                                    |
1295   // | simd             | barrier         |                                    |
1296   // | simd             | taskwait        |                                    |
1297   // | simd             | flush           |                                    |
1298   // | simd             | ordered         |                                    |
1299   // | simd             | atomic          |                                    |
1300   // | simd             | target          |                                    |
1301   // | simd             | teams           |                                    |
1302   // +------------------+-----------------+------------------------------------+
1303   // | for simd         | parallel        |                                    |
1304   // | for simd         | for             |                                    |
1305   // | for simd         | for simd        |                                    |
1306   // | for simd         | master          |                                    |
1307   // | for simd         | critical        |                                    |
1308   // | for simd         | simd            |                                    |
1309   // | for simd         | sections        |                                    |
1310   // | for simd         | section         |                                    |
1311   // | for simd         | single          |                                    |
1312   // | for simd         | parallel for    |                                    |
1313   // | for simd         |parallel for simd|                                    |
1314   // | for simd         |parallel sections|                                    |
1315   // | for simd         | task            |                                    |
1316   // | for simd         | taskyield       |                                    |
1317   // | for simd         | barrier         |                                    |
1318   // | for simd         | taskwait        |                                    |
1319   // | for simd         | flush           |                                    |
1320   // | for simd         | ordered         |                                    |
1321   // | for simd         | atomic          |                                    |
1322   // | for simd         | target          |                                    |
1323   // | for simd         | teams           |                                    |
1324   // +------------------+-----------------+------------------------------------+
1325   // | parallel for simd| parallel        |                                    |
1326   // | parallel for simd| for             |                                    |
1327   // | parallel for simd| for simd        |                                    |
1328   // | parallel for simd| master          |                                    |
1329   // | parallel for simd| critical        |                                    |
1330   // | parallel for simd| simd            |                                    |
1331   // | parallel for simd| sections        |                                    |
1332   // | parallel for simd| section         |                                    |
1333   // | parallel for simd| single          |                                    |
1334   // | parallel for simd| parallel for    |                                    |
1335   // | parallel for simd|parallel for simd|                                    |
1336   // | parallel for simd|parallel sections|                                    |
1337   // | parallel for simd| task            |                                    |
1338   // | parallel for simd| taskyield       |                                    |
1339   // | parallel for simd| barrier         |                                    |
1340   // | parallel for simd| taskwait        |                                    |
1341   // | parallel for simd| flush           |                                    |
1342   // | parallel for simd| ordered         |                                    |
1343   // | parallel for simd| atomic          |                                    |
1344   // | parallel for simd| target          |                                    |
1345   // | parallel for simd| teams           |                                    |
1346   // +------------------+-----------------+------------------------------------+
1347   // | sections         | parallel        | *                                  |
1348   // | sections         | for             | +                                  |
1349   // | sections         | for simd        | +                                  |
1350   // | sections         | master          | +                                  |
1351   // | sections         | critical        | *                                  |
1352   // | sections         | simd            | *                                  |
1353   // | sections         | sections        | +                                  |
1354   // | sections         | section         | *                                  |
1355   // | sections         | single          | +                                  |
1356   // | sections         | parallel for    | *                                  |
1357   // | sections         |parallel for simd| *                                  |
1358   // | sections         |parallel sections| *                                  |
1359   // | sections         | task            | *                                  |
1360   // | sections         | taskyield       | *                                  |
1361   // | sections         | barrier         | +                                  |
1362   // | sections         | taskwait        | *                                  |
1363   // | sections         | flush           | *                                  |
1364   // | sections         | ordered         | +                                  |
1365   // | sections         | atomic          | *                                  |
1366   // | sections         | target          | *                                  |
1367   // | sections         | teams           | +                                  |
1368   // +------------------+-----------------+------------------------------------+
1369   // | section          | parallel        | *                                  |
1370   // | section          | for             | +                                  |
1371   // | section          | for simd        | +                                  |
1372   // | section          | master          | +                                  |
1373   // | section          | critical        | *                                  |
1374   // | section          | simd            | *                                  |
1375   // | section          | sections        | +                                  |
1376   // | section          | section         | +                                  |
1377   // | section          | single          | +                                  |
1378   // | section          | parallel for    | *                                  |
1379   // | section          |parallel for simd| *                                  |
1380   // | section          |parallel sections| *                                  |
1381   // | section          | task            | *                                  |
1382   // | section          | taskyield       | *                                  |
1383   // | section          | barrier         | +                                  |
1384   // | section          | taskwait        | *                                  |
1385   // | section          | flush           | *                                  |
1386   // | section          | ordered         | +                                  |
1387   // | section          | atomic          | *                                  |
1388   // | section          | target          | *                                  |
1389   // | section          | teams           | +                                  |
1390   // +------------------+-----------------+------------------------------------+
1391   // | single           | parallel        | *                                  |
1392   // | single           | for             | +                                  |
1393   // | single           | for simd        | +                                  |
1394   // | single           | master          | +                                  |
1395   // | single           | critical        | *                                  |
1396   // | single           | simd            | *                                  |
1397   // | single           | sections        | +                                  |
1398   // | single           | section         | +                                  |
1399   // | single           | single          | +                                  |
1400   // | single           | parallel for    | *                                  |
1401   // | single           |parallel for simd| *                                  |
1402   // | single           |parallel sections| *                                  |
1403   // | single           | task            | *                                  |
1404   // | single           | taskyield       | *                                  |
1405   // | single           | barrier         | +                                  |
1406   // | single           | taskwait        | *                                  |
1407   // | single           | flush           | *                                  |
1408   // | single           | ordered         | +                                  |
1409   // | single           | atomic          | *                                  |
1410   // | single           | target          | *                                  |
1411   // | single           | teams           | +                                  |
1412   // +------------------+-----------------+------------------------------------+
1413   // | parallel for     | parallel        | *                                  |
1414   // | parallel for     | for             | +                                  |
1415   // | parallel for     | for simd        | +                                  |
1416   // | parallel for     | master          | +                                  |
1417   // | parallel for     | critical        | *                                  |
1418   // | parallel for     | simd            | *                                  |
1419   // | parallel for     | sections        | +                                  |
1420   // | parallel for     | section         | +                                  |
1421   // | parallel for     | single          | +                                  |
1422   // | parallel for     | parallel for    | *                                  |
1423   // | parallel for     |parallel for simd| *                                  |
1424   // | parallel for     |parallel sections| *                                  |
1425   // | parallel for     | task            | *                                  |
1426   // | parallel for     | taskyield       | *                                  |
1427   // | parallel for     | barrier         | +                                  |
1428   // | parallel for     | taskwait        | *                                  |
1429   // | parallel for     | flush           | *                                  |
1430   // | parallel for     | ordered         | * (if construct is ordered)        |
1431   // | parallel for     | atomic          | *                                  |
1432   // | parallel for     | target          | *                                  |
1433   // | parallel for     | teams           | +                                  |
1434   // +------------------+-----------------+------------------------------------+
1435   // | parallel sections| parallel        | *                                  |
1436   // | parallel sections| for             | +                                  |
1437   // | parallel sections| for simd        | +                                  |
1438   // | parallel sections| master          | +                                  |
1439   // | parallel sections| critical        | +                                  |
1440   // | parallel sections| simd            | *                                  |
1441   // | parallel sections| sections        | +                                  |
1442   // | parallel sections| section         | *                                  |
1443   // | parallel sections| single          | +                                  |
1444   // | parallel sections| parallel for    | *                                  |
1445   // | parallel sections|parallel for simd| *                                  |
1446   // | parallel sections|parallel sections| *                                  |
1447   // | parallel sections| task            | *                                  |
1448   // | parallel sections| taskyield       | *                                  |
1449   // | parallel sections| barrier         | +                                  |
1450   // | parallel sections| taskwait        | *                                  |
1451   // | parallel sections| flush           | *                                  |
1452   // | parallel sections| ordered         | +                                  |
1453   // | parallel sections| atomic          | *                                  |
1454   // | parallel sections| target          | *                                  |
1455   // | parallel sections| teams           | +                                  |
1456   // +------------------+-----------------+------------------------------------+
1457   // | task             | parallel        | *                                  |
1458   // | task             | for             | +                                  |
1459   // | task             | for simd        | +                                  |
1460   // | task             | master          | +                                  |
1461   // | task             | critical        | *                                  |
1462   // | task             | simd            | *                                  |
1463   // | task             | sections        | +                                  |
1464   // | task             | section         | +                                  |
1465   // | task             | single          | +                                  |
1466   // | task             | parallel for    | *                                  |
1467   // | task             |parallel for simd| *                                  |
1468   // | task             |parallel sections| *                                  |
1469   // | task             | task            | *                                  |
1470   // | task             | taskyield       | *                                  |
1471   // | task             | barrier         | +                                  |
1472   // | task             | taskwait        | *                                  |
1473   // | task             | flush           | *                                  |
1474   // | task             | ordered         | +                                  |
1475   // | task             | atomic          | *                                  |
1476   // | task             | target          | *                                  |
1477   // | task             | teams           | +                                  |
1478   // +------------------+-----------------+------------------------------------+
1479   // | ordered          | parallel        | *                                  |
1480   // | ordered          | for             | +                                  |
1481   // | ordered          | for simd        | +                                  |
1482   // | ordered          | master          | *                                  |
1483   // | ordered          | critical        | *                                  |
1484   // | ordered          | simd            | *                                  |
1485   // | ordered          | sections        | +                                  |
1486   // | ordered          | section         | +                                  |
1487   // | ordered          | single          | +                                  |
1488   // | ordered          | parallel for    | *                                  |
1489   // | ordered          |parallel for simd| *                                  |
1490   // | ordered          |parallel sections| *                                  |
1491   // | ordered          | task            | *                                  |
1492   // | ordered          | taskyield       | *                                  |
1493   // | ordered          | barrier         | +                                  |
1494   // | ordered          | taskwait        | *                                  |
1495   // | ordered          | flush           | *                                  |
1496   // | ordered          | ordered         | +                                  |
1497   // | ordered          | atomic          | *                                  |
1498   // | ordered          | target          | *                                  |
1499   // | ordered          | teams           | +                                  |
1500   // +------------------+-----------------+------------------------------------+
1501   // | atomic           | parallel        |                                    |
1502   // | atomic           | for             |                                    |
1503   // | atomic           | for simd        |                                    |
1504   // | atomic           | master          |                                    |
1505   // | atomic           | critical        |                                    |
1506   // | atomic           | simd            |                                    |
1507   // | atomic           | sections        |                                    |
1508   // | atomic           | section         |                                    |
1509   // | atomic           | single          |                                    |
1510   // | atomic           | parallel for    |                                    |
1511   // | atomic           |parallel for simd|                                    |
1512   // | atomic           |parallel sections|                                    |
1513   // | atomic           | task            |                                    |
1514   // | atomic           | taskyield       |                                    |
1515   // | atomic           | barrier         |                                    |
1516   // | atomic           | taskwait        |                                    |
1517   // | atomic           | flush           |                                    |
1518   // | atomic           | ordered         |                                    |
1519   // | atomic           | atomic          |                                    |
1520   // | atomic           | target          |                                    |
1521   // | atomic           | teams           |                                    |
1522   // +------------------+-----------------+------------------------------------+
1523   // | target           | parallel        | *                                  |
1524   // | target           | for             | *                                  |
1525   // | target           | for simd        | *                                  |
1526   // | target           | master          | *                                  |
1527   // | target           | critical        | *                                  |
1528   // | target           | simd            | *                                  |
1529   // | target           | sections        | *                                  |
1530   // | target           | section         | *                                  |
1531   // | target           | single          | *                                  |
1532   // | target           | parallel for    | *                                  |
1533   // | target           |parallel for simd| *                                  |
1534   // | target           |parallel sections| *                                  |
1535   // | target           | task            | *                                  |
1536   // | target           | taskyield       | *                                  |
1537   // | target           | barrier         | *                                  |
1538   // | target           | taskwait        | *                                  |
1539   // | target           | flush           | *                                  |
1540   // | target           | ordered         | *                                  |
1541   // | target           | atomic          | *                                  |
1542   // | target           | target          | *                                  |
1543   // | target           | teams           | *                                  |
1544   // +------------------+-----------------+------------------------------------+
1545   // | teams            | parallel        | *                                  |
1546   // | teams            | for             | +                                  |
1547   // | teams            | for simd        | +                                  |
1548   // | teams            | master          | +                                  |
1549   // | teams            | critical        | +                                  |
1550   // | teams            | simd            | +                                  |
1551   // | teams            | sections        | +                                  |
1552   // | teams            | section         | +                                  |
1553   // | teams            | single          | +                                  |
1554   // | teams            | parallel for    | *                                  |
1555   // | teams            |parallel for simd| *                                  |
1556   // | teams            |parallel sections| *                                  |
1557   // | teams            | task            | +                                  |
1558   // | teams            | taskyield       | +                                  |
1559   // | teams            | barrier         | +                                  |
1560   // | teams            | taskwait        | +                                  |
1561   // | teams            | flush           | +                                  |
1562   // | teams            | ordered         | +                                  |
1563   // | teams            | atomic          | +                                  |
1564   // | teams            | target          | +                                  |
1565   // | teams            | teams           | +                                  |
1566   // +------------------+-----------------+------------------------------------+
1567   if (Stack->getCurScope()) {
1568     auto ParentRegion = Stack->getParentDirective();
1569     bool NestingProhibited = false;
1570     bool CloseNesting = true;
1571     enum {
1572       NoRecommend,
1573       ShouldBeInParallelRegion,
1574       ShouldBeInOrderedRegion,
1575       ShouldBeInTargetRegion
1576     } Recommend = NoRecommend;
1577     if (isOpenMPSimdDirective(ParentRegion)) {
1578       // OpenMP [2.16, Nesting of Regions]
1579       // OpenMP constructs may not be nested inside a simd region.
1580       SemaRef.Diag(StartLoc, diag::err_omp_prohibited_region_simd);
1581       return true;
1582     }
1583     if (ParentRegion == OMPD_atomic) {
1584       // OpenMP [2.16, Nesting of Regions]
1585       // OpenMP constructs may not be nested inside an atomic region.
1586       SemaRef.Diag(StartLoc, diag::err_omp_prohibited_region_atomic);
1587       return true;
1588     }
1589     if (CurrentRegion == OMPD_section) {
1590       // OpenMP [2.7.2, sections Construct, Restrictions]
1591       // Orphaned section directives are prohibited. That is, the section
1592       // directives must appear within the sections construct and must not be
1593       // encountered elsewhere in the sections region.
1594       if (ParentRegion != OMPD_sections &&
1595           ParentRegion != OMPD_parallel_sections) {
1596         SemaRef.Diag(StartLoc, diag::err_omp_orphaned_section_directive)
1597             << (ParentRegion != OMPD_unknown)
1598             << getOpenMPDirectiveName(ParentRegion);
1599         return true;
1600       }
1601       return false;
1602     }
1603     // Allow some constructs to be orphaned (they could be used in functions,
1604     // called from OpenMP regions with the required preconditions).
1605     if (ParentRegion == OMPD_unknown)
1606       return false;
1607     if (CurrentRegion == OMPD_master) {
1608       // OpenMP [2.16, Nesting of Regions]
1609       // A master region may not be closely nested inside a worksharing,
1610       // atomic, or explicit task region.
1611       NestingProhibited = isOpenMPWorksharingDirective(ParentRegion) ||
1612                           ParentRegion == OMPD_task;
1613     } else if (CurrentRegion == OMPD_critical && CurrentName.getName()) {
1614       // OpenMP [2.16, Nesting of Regions]
1615       // A critical region may not be nested (closely or otherwise) inside a
1616       // critical region with the same name. Note that this restriction is not
1617       // sufficient to prevent deadlock.
1618       SourceLocation PreviousCriticalLoc;
1619       bool DeadLock =
1620           Stack->hasDirective([CurrentName, &PreviousCriticalLoc](
1621                                   OpenMPDirectiveKind K,
1622                                   const DeclarationNameInfo &DNI,
1623                                   SourceLocation Loc)
1624                                   ->bool {
1625                                 if (K == OMPD_critical &&
1626                                     DNI.getName() == CurrentName.getName()) {
1627                                   PreviousCriticalLoc = Loc;
1628                                   return true;
1629                                 } else
1630                                   return false;
1631                               },
1632                               false /* skip top directive */);
1633       if (DeadLock) {
1634         SemaRef.Diag(StartLoc,
1635                      diag::err_omp_prohibited_region_critical_same_name)
1636             << CurrentName.getName();
1637         if (PreviousCriticalLoc.isValid())
1638           SemaRef.Diag(PreviousCriticalLoc,
1639                        diag::note_omp_previous_critical_region);
1640         return true;
1641       }
1642     } else if (CurrentRegion == OMPD_barrier) {
1643       // OpenMP [2.16, Nesting of Regions]
1644       // A barrier region may not be closely nested inside a worksharing,
1645       // explicit task, critical, ordered, atomic, or master region.
1646       NestingProhibited =
1647           isOpenMPWorksharingDirective(ParentRegion) ||
1648           ParentRegion == OMPD_task || ParentRegion == OMPD_master ||
1649           ParentRegion == OMPD_critical || ParentRegion == OMPD_ordered;
1650     } else if (isOpenMPWorksharingDirective(CurrentRegion) &&
1651                !isOpenMPParallelDirective(CurrentRegion)) {
1652       // OpenMP [2.16, Nesting of Regions]
1653       // A worksharing region may not be closely nested inside a worksharing,
1654       // explicit task, critical, ordered, atomic, or master region.
1655       NestingProhibited =
1656           isOpenMPWorksharingDirective(ParentRegion) ||
1657           ParentRegion == OMPD_task || ParentRegion == OMPD_master ||
1658           ParentRegion == OMPD_critical || ParentRegion == OMPD_ordered;
1659       Recommend = ShouldBeInParallelRegion;
1660     } else if (CurrentRegion == OMPD_ordered) {
1661       // OpenMP [2.16, Nesting of Regions]
1662       // An ordered region may not be closely nested inside a critical,
1663       // atomic, or explicit task region.
1664       // An ordered region must be closely nested inside a loop region (or
1665       // parallel loop region) with an ordered clause.
1666       NestingProhibited = ParentRegion == OMPD_critical ||
1667                           ParentRegion == OMPD_task ||
1668                           !Stack->isParentOrderedRegion();
1669       Recommend = ShouldBeInOrderedRegion;
1670     } else if (isOpenMPTeamsDirective(CurrentRegion)) {
1671       // OpenMP [2.16, Nesting of Regions]
1672       // If specified, a teams construct must be contained within a target
1673       // construct.
1674       NestingProhibited = ParentRegion != OMPD_target;
1675       Recommend = ShouldBeInTargetRegion;
1676       Stack->setParentTeamsRegionLoc(Stack->getConstructLoc());
1677     }
1678     if (!NestingProhibited && isOpenMPTeamsDirective(ParentRegion)) {
1679       // OpenMP [2.16, Nesting of Regions]
1680       // distribute, parallel, parallel sections, parallel workshare, and the
1681       // parallel loop and parallel loop SIMD constructs are the only OpenMP
1682       // constructs that can be closely nested in the teams region.
1683       // TODO: add distribute directive.
1684       NestingProhibited = !isOpenMPParallelDirective(CurrentRegion);
1685       Recommend = ShouldBeInParallelRegion;
1686     }
1687     if (NestingProhibited) {
1688       SemaRef.Diag(StartLoc, diag::err_omp_prohibited_region)
1689           << CloseNesting << getOpenMPDirectiveName(ParentRegion) << Recommend
1690           << getOpenMPDirectiveName(CurrentRegion);
1691       return true;
1692     }
1693   }
1694   return false;
1695 }
1696 
1697 StmtResult Sema::ActOnOpenMPExecutableDirective(OpenMPDirectiveKind Kind,
1698                                                 const DeclarationNameInfo &DirName,
1699                                                 ArrayRef<OMPClause *> Clauses,
1700                                                 Stmt *AStmt,
1701                                                 SourceLocation StartLoc,
1702                                                 SourceLocation EndLoc) {
1703   StmtResult Res = StmtError();
1704   if (CheckNestingOfRegions(*this, DSAStack, Kind, DirName, StartLoc))
1705     return StmtError();
1706 
1707   llvm::SmallVector<OMPClause *, 8> ClausesWithImplicit;
1708   llvm::DenseMap<VarDecl *, Expr *> VarsWithInheritedDSA;
1709   bool ErrorFound = false;
1710   ClausesWithImplicit.append(Clauses.begin(), Clauses.end());
1711   if (AStmt) {
1712     assert(isa<CapturedStmt>(AStmt) && "Captured statement expected");
1713 
1714     // Check default data sharing attributes for referenced variables.
1715     DSAAttrChecker DSAChecker(DSAStack, *this, cast<CapturedStmt>(AStmt));
1716     DSAChecker.Visit(cast<CapturedStmt>(AStmt)->getCapturedStmt());
1717     if (DSAChecker.isErrorFound())
1718       return StmtError();
1719     // Generate list of implicitly defined firstprivate variables.
1720     VarsWithInheritedDSA = DSAChecker.getVarsWithInheritedDSA();
1721 
1722     if (!DSAChecker.getImplicitFirstprivate().empty()) {
1723       if (OMPClause *Implicit = ActOnOpenMPFirstprivateClause(
1724               DSAChecker.getImplicitFirstprivate(), SourceLocation(),
1725               SourceLocation(), SourceLocation())) {
1726         ClausesWithImplicit.push_back(Implicit);
1727         ErrorFound = cast<OMPFirstprivateClause>(Implicit)->varlist_size() !=
1728                      DSAChecker.getImplicitFirstprivate().size();
1729       } else
1730         ErrorFound = true;
1731     }
1732   }
1733 
1734   switch (Kind) {
1735   case OMPD_parallel:
1736     Res = ActOnOpenMPParallelDirective(ClausesWithImplicit, AStmt, StartLoc,
1737                                        EndLoc);
1738     break;
1739   case OMPD_simd:
1740     Res = ActOnOpenMPSimdDirective(ClausesWithImplicit, AStmt, StartLoc, EndLoc,
1741                                    VarsWithInheritedDSA);
1742     break;
1743   case OMPD_for:
1744     Res = ActOnOpenMPForDirective(ClausesWithImplicit, AStmt, StartLoc, EndLoc,
1745                                   VarsWithInheritedDSA);
1746     break;
1747   case OMPD_for_simd:
1748     Res = ActOnOpenMPForSimdDirective(ClausesWithImplicit, AStmt, StartLoc,
1749                                       EndLoc, VarsWithInheritedDSA);
1750     break;
1751   case OMPD_sections:
1752     Res = ActOnOpenMPSectionsDirective(ClausesWithImplicit, AStmt, StartLoc,
1753                                        EndLoc);
1754     break;
1755   case OMPD_section:
1756     assert(ClausesWithImplicit.empty() &&
1757            "No clauses are allowed for 'omp section' directive");
1758     Res = ActOnOpenMPSectionDirective(AStmt, StartLoc, EndLoc);
1759     break;
1760   case OMPD_single:
1761     Res = ActOnOpenMPSingleDirective(ClausesWithImplicit, AStmt, StartLoc,
1762                                      EndLoc);
1763     break;
1764   case OMPD_master:
1765     assert(ClausesWithImplicit.empty() &&
1766            "No clauses are allowed for 'omp master' directive");
1767     Res = ActOnOpenMPMasterDirective(AStmt, StartLoc, EndLoc);
1768     break;
1769   case OMPD_critical:
1770     assert(ClausesWithImplicit.empty() &&
1771            "No clauses are allowed for 'omp critical' directive");
1772     Res = ActOnOpenMPCriticalDirective(DirName, AStmt, StartLoc, EndLoc);
1773     break;
1774   case OMPD_parallel_for:
1775     Res = ActOnOpenMPParallelForDirective(ClausesWithImplicit, AStmt, StartLoc,
1776                                           EndLoc, VarsWithInheritedDSA);
1777     break;
1778   case OMPD_parallel_for_simd:
1779     Res = ActOnOpenMPParallelForSimdDirective(
1780         ClausesWithImplicit, AStmt, StartLoc, EndLoc, VarsWithInheritedDSA);
1781     break;
1782   case OMPD_parallel_sections:
1783     Res = ActOnOpenMPParallelSectionsDirective(ClausesWithImplicit, AStmt,
1784                                                StartLoc, EndLoc);
1785     break;
1786   case OMPD_task:
1787     Res =
1788         ActOnOpenMPTaskDirective(ClausesWithImplicit, AStmt, StartLoc, EndLoc);
1789     break;
1790   case OMPD_taskyield:
1791     assert(ClausesWithImplicit.empty() &&
1792            "No clauses are allowed for 'omp taskyield' directive");
1793     assert(AStmt == nullptr &&
1794            "No associated statement allowed for 'omp taskyield' directive");
1795     Res = ActOnOpenMPTaskyieldDirective(StartLoc, EndLoc);
1796     break;
1797   case OMPD_barrier:
1798     assert(ClausesWithImplicit.empty() &&
1799            "No clauses are allowed for 'omp barrier' directive");
1800     assert(AStmt == nullptr &&
1801            "No associated statement allowed for 'omp barrier' directive");
1802     Res = ActOnOpenMPBarrierDirective(StartLoc, EndLoc);
1803     break;
1804   case OMPD_taskwait:
1805     assert(ClausesWithImplicit.empty() &&
1806            "No clauses are allowed for 'omp taskwait' directive");
1807     assert(AStmt == nullptr &&
1808            "No associated statement allowed for 'omp taskwait' directive");
1809     Res = ActOnOpenMPTaskwaitDirective(StartLoc, EndLoc);
1810     break;
1811   case OMPD_flush:
1812     assert(AStmt == nullptr &&
1813            "No associated statement allowed for 'omp flush' directive");
1814     Res = ActOnOpenMPFlushDirective(ClausesWithImplicit, StartLoc, EndLoc);
1815     break;
1816   case OMPD_ordered:
1817     assert(ClausesWithImplicit.empty() &&
1818            "No clauses are allowed for 'omp ordered' directive");
1819     Res = ActOnOpenMPOrderedDirective(AStmt, StartLoc, EndLoc);
1820     break;
1821   case OMPD_atomic:
1822     Res = ActOnOpenMPAtomicDirective(ClausesWithImplicit, AStmt, StartLoc,
1823                                      EndLoc);
1824     break;
1825   case OMPD_teams:
1826     Res =
1827         ActOnOpenMPTeamsDirective(ClausesWithImplicit, AStmt, StartLoc, EndLoc);
1828     break;
1829   case OMPD_target:
1830     Res = ActOnOpenMPTargetDirective(ClausesWithImplicit, AStmt, StartLoc,
1831                                      EndLoc);
1832     break;
1833   case OMPD_threadprivate:
1834     llvm_unreachable("OpenMP Directive is not allowed");
1835   case OMPD_unknown:
1836     llvm_unreachable("Unknown OpenMP directive");
1837   }
1838 
1839   for (auto P : VarsWithInheritedDSA) {
1840     Diag(P.second->getExprLoc(), diag::err_omp_no_dsa_for_variable)
1841         << P.first << P.second->getSourceRange();
1842   }
1843   if (!VarsWithInheritedDSA.empty())
1844     return StmtError();
1845 
1846   if (ErrorFound)
1847     return StmtError();
1848   return Res;
1849 }
1850 
1851 StmtResult Sema::ActOnOpenMPParallelDirective(ArrayRef<OMPClause *> Clauses,
1852                                               Stmt *AStmt,
1853                                               SourceLocation StartLoc,
1854                                               SourceLocation EndLoc) {
1855   assert(AStmt && isa<CapturedStmt>(AStmt) && "Captured statement expected");
1856   CapturedStmt *CS = cast<CapturedStmt>(AStmt);
1857   // 1.2.2 OpenMP Language Terminology
1858   // Structured block - An executable statement with a single entry at the
1859   // top and a single exit at the bottom.
1860   // The point of exit cannot be a branch out of the structured block.
1861   // longjmp() and throw() must not violate the entry/exit criteria.
1862   CS->getCapturedDecl()->setNothrow();
1863 
1864   getCurFunction()->setHasBranchProtectedScope();
1865 
1866   return OMPParallelDirective::Create(Context, StartLoc, EndLoc, Clauses,
1867                                       AStmt);
1868 }
1869 
1870 namespace {
1871 /// \brief Helper class for checking canonical form of the OpenMP loops and
1872 /// extracting iteration space of each loop in the loop nest, that will be used
1873 /// for IR generation.
1874 class OpenMPIterationSpaceChecker {
1875   /// \brief Reference to Sema.
1876   Sema &SemaRef;
1877   /// \brief A location for diagnostics (when there is no some better location).
1878   SourceLocation DefaultLoc;
1879   /// \brief A location for diagnostics (when increment is not compatible).
1880   SourceLocation ConditionLoc;
1881   /// \brief A source location for referring to loop init later.
1882   SourceRange InitSrcRange;
1883   /// \brief A source location for referring to condition later.
1884   SourceRange ConditionSrcRange;
1885   /// \brief A source location for referring to increment later.
1886   SourceRange IncrementSrcRange;
1887   /// \brief Loop variable.
1888   VarDecl *Var;
1889   /// \brief Reference to loop variable.
1890   DeclRefExpr *VarRef;
1891   /// \brief Lower bound (initializer for the var).
1892   Expr *LB;
1893   /// \brief Upper bound.
1894   Expr *UB;
1895   /// \brief Loop step (increment).
1896   Expr *Step;
1897   /// \brief This flag is true when condition is one of:
1898   ///   Var <  UB
1899   ///   Var <= UB
1900   ///   UB  >  Var
1901   ///   UB  >= Var
1902   bool TestIsLessOp;
1903   /// \brief This flag is true when condition is strict ( < or > ).
1904   bool TestIsStrictOp;
1905   /// \brief This flag is true when step is subtracted on each iteration.
1906   bool SubtractStep;
1907 
1908 public:
1909   OpenMPIterationSpaceChecker(Sema &SemaRef, SourceLocation DefaultLoc)
1910       : SemaRef(SemaRef), DefaultLoc(DefaultLoc), ConditionLoc(DefaultLoc),
1911         InitSrcRange(SourceRange()), ConditionSrcRange(SourceRange()),
1912         IncrementSrcRange(SourceRange()), Var(nullptr), VarRef(nullptr),
1913         LB(nullptr), UB(nullptr), Step(nullptr), TestIsLessOp(false),
1914         TestIsStrictOp(false), SubtractStep(false) {}
1915   /// \brief Check init-expr for canonical loop form and save loop counter
1916   /// variable - #Var and its initialization value - #LB.
1917   bool CheckInit(Stmt *S);
1918   /// \brief Check test-expr for canonical form, save upper-bound (#UB), flags
1919   /// for less/greater and for strict/non-strict comparison.
1920   bool CheckCond(Expr *S);
1921   /// \brief Check incr-expr for canonical loop form and return true if it
1922   /// does not conform, otherwise save loop step (#Step).
1923   bool CheckInc(Expr *S);
1924   /// \brief Return the loop counter variable.
1925   VarDecl *GetLoopVar() const { return Var; }
1926   /// \brief Return the reference expression to loop counter variable.
1927   DeclRefExpr *GetLoopVarRefExpr() const { return VarRef; }
1928   /// \brief Source range of the loop init.
1929   SourceRange GetInitSrcRange() const { return InitSrcRange; }
1930   /// \brief Source range of the loop condition.
1931   SourceRange GetConditionSrcRange() const { return ConditionSrcRange; }
1932   /// \brief Source range of the loop increment.
1933   SourceRange GetIncrementSrcRange() const { return IncrementSrcRange; }
1934   /// \brief True if the step should be subtracted.
1935   bool ShouldSubtractStep() const { return SubtractStep; }
1936   /// \brief Build the expression to calculate the number of iterations.
1937   Expr *BuildNumIterations(Scope *S, const bool LimitedType) const;
1938   /// \brief Build reference expression to the counter be used for codegen.
1939   Expr *BuildCounterVar() const;
1940   /// \brief Build initization of the counter be used for codegen.
1941   Expr *BuildCounterInit() const;
1942   /// \brief Build step of the counter be used for codegen.
1943   Expr *BuildCounterStep() const;
1944   /// \brief Return true if any expression is dependent.
1945   bool Dependent() const;
1946 
1947 private:
1948   /// \brief Check the right-hand side of an assignment in the increment
1949   /// expression.
1950   bool CheckIncRHS(Expr *RHS);
1951   /// \brief Helper to set loop counter variable and its initializer.
1952   bool SetVarAndLB(VarDecl *NewVar, DeclRefExpr *NewVarRefExpr, Expr *NewLB);
1953   /// \brief Helper to set upper bound.
1954   bool SetUB(Expr *NewUB, bool LessOp, bool StrictOp, const SourceRange &SR,
1955              const SourceLocation &SL);
1956   /// \brief Helper to set loop increment.
1957   bool SetStep(Expr *NewStep, bool Subtract);
1958 };
1959 
1960 bool OpenMPIterationSpaceChecker::Dependent() const {
1961   if (!Var) {
1962     assert(!LB && !UB && !Step);
1963     return false;
1964   }
1965   return Var->getType()->isDependentType() || (LB && LB->isValueDependent()) ||
1966          (UB && UB->isValueDependent()) || (Step && Step->isValueDependent());
1967 }
1968 
1969 bool OpenMPIterationSpaceChecker::SetVarAndLB(VarDecl *NewVar,
1970                                               DeclRefExpr *NewVarRefExpr,
1971                                               Expr *NewLB) {
1972   // State consistency checking to ensure correct usage.
1973   assert(Var == nullptr && LB == nullptr && VarRef == nullptr &&
1974          UB == nullptr && Step == nullptr && !TestIsLessOp && !TestIsStrictOp);
1975   if (!NewVar || !NewLB)
1976     return true;
1977   Var = NewVar;
1978   VarRef = NewVarRefExpr;
1979   LB = NewLB;
1980   return false;
1981 }
1982 
1983 bool OpenMPIterationSpaceChecker::SetUB(Expr *NewUB, bool LessOp, bool StrictOp,
1984                                         const SourceRange &SR,
1985                                         const SourceLocation &SL) {
1986   // State consistency checking to ensure correct usage.
1987   assert(Var != nullptr && LB != nullptr && UB == nullptr && Step == nullptr &&
1988          !TestIsLessOp && !TestIsStrictOp);
1989   if (!NewUB)
1990     return true;
1991   UB = NewUB;
1992   TestIsLessOp = LessOp;
1993   TestIsStrictOp = StrictOp;
1994   ConditionSrcRange = SR;
1995   ConditionLoc = SL;
1996   return false;
1997 }
1998 
1999 bool OpenMPIterationSpaceChecker::SetStep(Expr *NewStep, bool Subtract) {
2000   // State consistency checking to ensure correct usage.
2001   assert(Var != nullptr && LB != nullptr && Step == nullptr);
2002   if (!NewStep)
2003     return true;
2004   if (!NewStep->isValueDependent()) {
2005     // Check that the step is integer expression.
2006     SourceLocation StepLoc = NewStep->getLocStart();
2007     ExprResult Val =
2008         SemaRef.PerformOpenMPImplicitIntegerConversion(StepLoc, NewStep);
2009     if (Val.isInvalid())
2010       return true;
2011     NewStep = Val.get();
2012 
2013     // OpenMP [2.6, Canonical Loop Form, Restrictions]
2014     //  If test-expr is of form var relational-op b and relational-op is < or
2015     //  <= then incr-expr must cause var to increase on each iteration of the
2016     //  loop. If test-expr is of form var relational-op b and relational-op is
2017     //  > or >= then incr-expr must cause var to decrease on each iteration of
2018     //  the loop.
2019     //  If test-expr is of form b relational-op var and relational-op is < or
2020     //  <= then incr-expr must cause var to decrease on each iteration of the
2021     //  loop. If test-expr is of form b relational-op var and relational-op is
2022     //  > or >= then incr-expr must cause var to increase on each iteration of
2023     //  the loop.
2024     llvm::APSInt Result;
2025     bool IsConstant = NewStep->isIntegerConstantExpr(Result, SemaRef.Context);
2026     bool IsUnsigned = !NewStep->getType()->hasSignedIntegerRepresentation();
2027     bool IsConstNeg =
2028         IsConstant && Result.isSigned() && (Subtract != Result.isNegative());
2029     bool IsConstPos =
2030         IsConstant && Result.isSigned() && (Subtract == Result.isNegative());
2031     bool IsConstZero = IsConstant && !Result.getBoolValue();
2032     if (UB && (IsConstZero ||
2033                (TestIsLessOp ? (IsConstNeg || (IsUnsigned && Subtract))
2034                              : (IsConstPos || (IsUnsigned && !Subtract))))) {
2035       SemaRef.Diag(NewStep->getExprLoc(),
2036                    diag::err_omp_loop_incr_not_compatible)
2037           << Var << TestIsLessOp << NewStep->getSourceRange();
2038       SemaRef.Diag(ConditionLoc,
2039                    diag::note_omp_loop_cond_requres_compatible_incr)
2040           << TestIsLessOp << ConditionSrcRange;
2041       return true;
2042     }
2043     if (TestIsLessOp == Subtract) {
2044       NewStep = SemaRef.CreateBuiltinUnaryOp(NewStep->getExprLoc(), UO_Minus,
2045                                              NewStep).get();
2046       Subtract = !Subtract;
2047     }
2048   }
2049 
2050   Step = NewStep;
2051   SubtractStep = Subtract;
2052   return false;
2053 }
2054 
2055 bool OpenMPIterationSpaceChecker::CheckInit(Stmt *S) {
2056   // Check init-expr for canonical loop form and save loop counter
2057   // variable - #Var and its initialization value - #LB.
2058   // OpenMP [2.6] Canonical loop form. init-expr may be one of the following:
2059   //   var = lb
2060   //   integer-type var = lb
2061   //   random-access-iterator-type var = lb
2062   //   pointer-type var = lb
2063   //
2064   if (!S) {
2065     SemaRef.Diag(DefaultLoc, diag::err_omp_loop_not_canonical_init);
2066     return true;
2067   }
2068   InitSrcRange = S->getSourceRange();
2069   if (Expr *E = dyn_cast<Expr>(S))
2070     S = E->IgnoreParens();
2071   if (auto BO = dyn_cast<BinaryOperator>(S)) {
2072     if (BO->getOpcode() == BO_Assign)
2073       if (auto DRE = dyn_cast<DeclRefExpr>(BO->getLHS()->IgnoreParens()))
2074         return SetVarAndLB(dyn_cast<VarDecl>(DRE->getDecl()), DRE,
2075                            BO->getRHS());
2076   } else if (auto DS = dyn_cast<DeclStmt>(S)) {
2077     if (DS->isSingleDecl()) {
2078       if (auto Var = dyn_cast_or_null<VarDecl>(DS->getSingleDecl())) {
2079         if (Var->hasInit()) {
2080           // Accept non-canonical init form here but emit ext. warning.
2081           if (Var->getInitStyle() != VarDecl::CInit)
2082             SemaRef.Diag(S->getLocStart(),
2083                          diag::ext_omp_loop_not_canonical_init)
2084                 << S->getSourceRange();
2085           return SetVarAndLB(Var, nullptr, Var->getInit());
2086         }
2087       }
2088     }
2089   } else if (auto CE = dyn_cast<CXXOperatorCallExpr>(S))
2090     if (CE->getOperator() == OO_Equal)
2091       if (auto DRE = dyn_cast<DeclRefExpr>(CE->getArg(0)))
2092         return SetVarAndLB(dyn_cast<VarDecl>(DRE->getDecl()), DRE,
2093                            CE->getArg(1));
2094 
2095   SemaRef.Diag(S->getLocStart(), diag::err_omp_loop_not_canonical_init)
2096       << S->getSourceRange();
2097   return true;
2098 }
2099 
2100 /// \brief Ignore parenthesizes, implicit casts, copy constructor and return the
2101 /// variable (which may be the loop variable) if possible.
2102 static const VarDecl *GetInitVarDecl(const Expr *E) {
2103   if (!E)
2104     return nullptr;
2105   E = E->IgnoreParenImpCasts();
2106   if (auto *CE = dyn_cast_or_null<CXXConstructExpr>(E))
2107     if (const CXXConstructorDecl *Ctor = CE->getConstructor())
2108       if (Ctor->isCopyConstructor() && CE->getNumArgs() == 1 &&
2109           CE->getArg(0) != nullptr)
2110         E = CE->getArg(0)->IgnoreParenImpCasts();
2111   auto DRE = dyn_cast_or_null<DeclRefExpr>(E);
2112   if (!DRE)
2113     return nullptr;
2114   return dyn_cast<VarDecl>(DRE->getDecl());
2115 }
2116 
2117 bool OpenMPIterationSpaceChecker::CheckCond(Expr *S) {
2118   // Check test-expr for canonical form, save upper-bound UB, flags for
2119   // less/greater and for strict/non-strict comparison.
2120   // OpenMP [2.6] Canonical loop form. Test-expr may be one of the following:
2121   //   var relational-op b
2122   //   b relational-op var
2123   //
2124   if (!S) {
2125     SemaRef.Diag(DefaultLoc, diag::err_omp_loop_not_canonical_cond) << Var;
2126     return true;
2127   }
2128   S = S->IgnoreParenImpCasts();
2129   SourceLocation CondLoc = S->getLocStart();
2130   if (auto BO = dyn_cast<BinaryOperator>(S)) {
2131     if (BO->isRelationalOp()) {
2132       if (GetInitVarDecl(BO->getLHS()) == Var)
2133         return SetUB(BO->getRHS(),
2134                      (BO->getOpcode() == BO_LT || BO->getOpcode() == BO_LE),
2135                      (BO->getOpcode() == BO_LT || BO->getOpcode() == BO_GT),
2136                      BO->getSourceRange(), BO->getOperatorLoc());
2137       if (GetInitVarDecl(BO->getRHS()) == Var)
2138         return SetUB(BO->getLHS(),
2139                      (BO->getOpcode() == BO_GT || BO->getOpcode() == BO_GE),
2140                      (BO->getOpcode() == BO_LT || BO->getOpcode() == BO_GT),
2141                      BO->getSourceRange(), BO->getOperatorLoc());
2142     }
2143   } else if (auto CE = dyn_cast<CXXOperatorCallExpr>(S)) {
2144     if (CE->getNumArgs() == 2) {
2145       auto Op = CE->getOperator();
2146       switch (Op) {
2147       case OO_Greater:
2148       case OO_GreaterEqual:
2149       case OO_Less:
2150       case OO_LessEqual:
2151         if (GetInitVarDecl(CE->getArg(0)) == Var)
2152           return SetUB(CE->getArg(1), Op == OO_Less || Op == OO_LessEqual,
2153                        Op == OO_Less || Op == OO_Greater, CE->getSourceRange(),
2154                        CE->getOperatorLoc());
2155         if (GetInitVarDecl(CE->getArg(1)) == Var)
2156           return SetUB(CE->getArg(0), Op == OO_Greater || Op == OO_GreaterEqual,
2157                        Op == OO_Less || Op == OO_Greater, CE->getSourceRange(),
2158                        CE->getOperatorLoc());
2159         break;
2160       default:
2161         break;
2162       }
2163     }
2164   }
2165   SemaRef.Diag(CondLoc, diag::err_omp_loop_not_canonical_cond)
2166       << S->getSourceRange() << Var;
2167   return true;
2168 }
2169 
2170 bool OpenMPIterationSpaceChecker::CheckIncRHS(Expr *RHS) {
2171   // RHS of canonical loop form increment can be:
2172   //   var + incr
2173   //   incr + var
2174   //   var - incr
2175   //
2176   RHS = RHS->IgnoreParenImpCasts();
2177   if (auto BO = dyn_cast<BinaryOperator>(RHS)) {
2178     if (BO->isAdditiveOp()) {
2179       bool IsAdd = BO->getOpcode() == BO_Add;
2180       if (GetInitVarDecl(BO->getLHS()) == Var)
2181         return SetStep(BO->getRHS(), !IsAdd);
2182       if (IsAdd && GetInitVarDecl(BO->getRHS()) == Var)
2183         return SetStep(BO->getLHS(), false);
2184     }
2185   } else if (auto CE = dyn_cast<CXXOperatorCallExpr>(RHS)) {
2186     bool IsAdd = CE->getOperator() == OO_Plus;
2187     if ((IsAdd || CE->getOperator() == OO_Minus) && CE->getNumArgs() == 2) {
2188       if (GetInitVarDecl(CE->getArg(0)) == Var)
2189         return SetStep(CE->getArg(1), !IsAdd);
2190       if (IsAdd && GetInitVarDecl(CE->getArg(1)) == Var)
2191         return SetStep(CE->getArg(0), false);
2192     }
2193   }
2194   SemaRef.Diag(RHS->getLocStart(), diag::err_omp_loop_not_canonical_incr)
2195       << RHS->getSourceRange() << Var;
2196   return true;
2197 }
2198 
2199 bool OpenMPIterationSpaceChecker::CheckInc(Expr *S) {
2200   // Check incr-expr for canonical loop form and return true if it
2201   // does not conform.
2202   // OpenMP [2.6] Canonical loop form. Test-expr may be one of the following:
2203   //   ++var
2204   //   var++
2205   //   --var
2206   //   var--
2207   //   var += incr
2208   //   var -= incr
2209   //   var = var + incr
2210   //   var = incr + var
2211   //   var = var - incr
2212   //
2213   if (!S) {
2214     SemaRef.Diag(DefaultLoc, diag::err_omp_loop_not_canonical_incr) << Var;
2215     return true;
2216   }
2217   IncrementSrcRange = S->getSourceRange();
2218   S = S->IgnoreParens();
2219   if (auto UO = dyn_cast<UnaryOperator>(S)) {
2220     if (UO->isIncrementDecrementOp() && GetInitVarDecl(UO->getSubExpr()) == Var)
2221       return SetStep(
2222           SemaRef.ActOnIntegerConstant(UO->getLocStart(),
2223                                        (UO->isDecrementOp() ? -1 : 1)).get(),
2224           false);
2225   } else if (auto BO = dyn_cast<BinaryOperator>(S)) {
2226     switch (BO->getOpcode()) {
2227     case BO_AddAssign:
2228     case BO_SubAssign:
2229       if (GetInitVarDecl(BO->getLHS()) == Var)
2230         return SetStep(BO->getRHS(), BO->getOpcode() == BO_SubAssign);
2231       break;
2232     case BO_Assign:
2233       if (GetInitVarDecl(BO->getLHS()) == Var)
2234         return CheckIncRHS(BO->getRHS());
2235       break;
2236     default:
2237       break;
2238     }
2239   } else if (auto CE = dyn_cast<CXXOperatorCallExpr>(S)) {
2240     switch (CE->getOperator()) {
2241     case OO_PlusPlus:
2242     case OO_MinusMinus:
2243       if (GetInitVarDecl(CE->getArg(0)) == Var)
2244         return SetStep(
2245             SemaRef.ActOnIntegerConstant(
2246                         CE->getLocStart(),
2247                         ((CE->getOperator() == OO_MinusMinus) ? -1 : 1)).get(),
2248             false);
2249       break;
2250     case OO_PlusEqual:
2251     case OO_MinusEqual:
2252       if (GetInitVarDecl(CE->getArg(0)) == Var)
2253         return SetStep(CE->getArg(1), CE->getOperator() == OO_MinusEqual);
2254       break;
2255     case OO_Equal:
2256       if (GetInitVarDecl(CE->getArg(0)) == Var)
2257         return CheckIncRHS(CE->getArg(1));
2258       break;
2259     default:
2260       break;
2261     }
2262   }
2263   SemaRef.Diag(S->getLocStart(), diag::err_omp_loop_not_canonical_incr)
2264       << S->getSourceRange() << Var;
2265   return true;
2266 }
2267 
2268 /// \brief Build the expression to calculate the number of iterations.
2269 Expr *
2270 OpenMPIterationSpaceChecker::BuildNumIterations(Scope *S,
2271                                                 const bool LimitedType) const {
2272   ExprResult Diff;
2273   if (Var->getType()->isIntegerType() || Var->getType()->isPointerType() ||
2274       SemaRef.getLangOpts().CPlusPlus) {
2275     // Upper - Lower
2276     Expr *Upper = TestIsLessOp ? UB : LB;
2277     Expr *Lower = TestIsLessOp ? LB : UB;
2278 
2279     Diff = SemaRef.BuildBinOp(S, DefaultLoc, BO_Sub, Upper, Lower);
2280 
2281     if (!Diff.isUsable() && Var->getType()->getAsCXXRecordDecl()) {
2282       // BuildBinOp already emitted error, this one is to point user to upper
2283       // and lower bound, and to tell what is passed to 'operator-'.
2284       SemaRef.Diag(Upper->getLocStart(), diag::err_omp_loop_diff_cxx)
2285           << Upper->getSourceRange() << Lower->getSourceRange();
2286       return nullptr;
2287     }
2288   }
2289 
2290   if (!Diff.isUsable())
2291     return nullptr;
2292 
2293   // Upper - Lower [- 1]
2294   if (TestIsStrictOp)
2295     Diff = SemaRef.BuildBinOp(
2296         S, DefaultLoc, BO_Sub, Diff.get(),
2297         SemaRef.ActOnIntegerConstant(SourceLocation(), 1).get());
2298   if (!Diff.isUsable())
2299     return nullptr;
2300 
2301   // Upper - Lower [- 1] + Step
2302   Diff = SemaRef.BuildBinOp(S, DefaultLoc, BO_Add, Diff.get(),
2303                             Step->IgnoreImplicit());
2304   if (!Diff.isUsable())
2305     return nullptr;
2306 
2307   // Parentheses (for dumping/debugging purposes only).
2308   Diff = SemaRef.ActOnParenExpr(DefaultLoc, DefaultLoc, Diff.get());
2309   if (!Diff.isUsable())
2310     return nullptr;
2311 
2312   // (Upper - Lower [- 1] + Step) / Step
2313   Diff = SemaRef.BuildBinOp(S, DefaultLoc, BO_Div, Diff.get(),
2314                             Step->IgnoreImplicit());
2315   if (!Diff.isUsable())
2316     return nullptr;
2317 
2318   // OpenMP runtime requires 32-bit or 64-bit loop variables.
2319   if (LimitedType) {
2320     auto &C = SemaRef.Context;
2321     QualType Type = Diff.get()->getType();
2322     unsigned NewSize = (C.getTypeSize(Type) > 32) ? 64 : 32;
2323     if (NewSize != C.getTypeSize(Type)) {
2324       if (NewSize < C.getTypeSize(Type)) {
2325         assert(NewSize == 64 && "incorrect loop var size");
2326         SemaRef.Diag(DefaultLoc, diag::warn_omp_loop_64_bit_var)
2327             << InitSrcRange << ConditionSrcRange;
2328       }
2329       QualType NewType = C.getIntTypeForBitwidth(
2330           NewSize, Type->hasSignedIntegerRepresentation());
2331       Diff = SemaRef.PerformImplicitConversion(Diff.get(), NewType,
2332                                                Sema::AA_Converting, true);
2333       if (!Diff.isUsable())
2334         return nullptr;
2335     }
2336   }
2337 
2338   return Diff.get();
2339 }
2340 
2341 /// \brief Build reference expression to the counter be used for codegen.
2342 Expr *OpenMPIterationSpaceChecker::BuildCounterVar() const {
2343   return DeclRefExpr::Create(SemaRef.Context, NestedNameSpecifierLoc(),
2344                              GetIncrementSrcRange().getBegin(), Var, false,
2345                              DefaultLoc, Var->getType(), VK_LValue);
2346 }
2347 
2348 /// \brief Build initization of the counter be used for codegen.
2349 Expr *OpenMPIterationSpaceChecker::BuildCounterInit() const { return LB; }
2350 
2351 /// \brief Build step of the counter be used for codegen.
2352 Expr *OpenMPIterationSpaceChecker::BuildCounterStep() const { return Step; }
2353 
2354 /// \brief Iteration space of a single for loop.
2355 struct LoopIterationSpace {
2356   /// \brief This expression calculates the number of iterations in the loop.
2357   /// It is always possible to calculate it before starting the loop.
2358   Expr *NumIterations;
2359   /// \brief The loop counter variable.
2360   Expr *CounterVar;
2361   /// \brief This is initializer for the initial value of #CounterVar.
2362   Expr *CounterInit;
2363   /// \brief This is step for the #CounterVar used to generate its update:
2364   /// #CounterVar = #CounterInit + #CounterStep * CurrentIteration.
2365   Expr *CounterStep;
2366   /// \brief Should step be subtracted?
2367   bool Subtract;
2368   /// \brief Source range of the loop init.
2369   SourceRange InitSrcRange;
2370   /// \brief Source range of the loop condition.
2371   SourceRange CondSrcRange;
2372   /// \brief Source range of the loop increment.
2373   SourceRange IncSrcRange;
2374 };
2375 
2376 } // namespace
2377 
2378 /// \brief Called on a for stmt to check and extract its iteration space
2379 /// for further processing (such as collapsing).
2380 static bool CheckOpenMPIterationSpace(
2381     OpenMPDirectiveKind DKind, Stmt *S, Sema &SemaRef, DSAStackTy &DSA,
2382     unsigned CurrentNestedLoopCount, unsigned NestedLoopCount,
2383     Expr *NestedLoopCountExpr,
2384     llvm::DenseMap<VarDecl *, Expr *> &VarsWithImplicitDSA,
2385     LoopIterationSpace &ResultIterSpace) {
2386   // OpenMP [2.6, Canonical Loop Form]
2387   //   for (init-expr; test-expr; incr-expr) structured-block
2388   auto For = dyn_cast_or_null<ForStmt>(S);
2389   if (!For) {
2390     SemaRef.Diag(S->getLocStart(), diag::err_omp_not_for)
2391         << (NestedLoopCountExpr != nullptr) << getOpenMPDirectiveName(DKind)
2392         << NestedLoopCount << (CurrentNestedLoopCount > 0)
2393         << CurrentNestedLoopCount;
2394     if (NestedLoopCount > 1)
2395       SemaRef.Diag(NestedLoopCountExpr->getExprLoc(),
2396                    diag::note_omp_collapse_expr)
2397           << NestedLoopCountExpr->getSourceRange();
2398     return true;
2399   }
2400   assert(For->getBody());
2401 
2402   OpenMPIterationSpaceChecker ISC(SemaRef, For->getForLoc());
2403 
2404   // Check init.
2405   auto Init = For->getInit();
2406   if (ISC.CheckInit(Init)) {
2407     return true;
2408   }
2409 
2410   bool HasErrors = false;
2411 
2412   // Check loop variable's type.
2413   auto Var = ISC.GetLoopVar();
2414 
2415   // OpenMP [2.6, Canonical Loop Form]
2416   // Var is one of the following:
2417   //   A variable of signed or unsigned integer type.
2418   //   For C++, a variable of a random access iterator type.
2419   //   For C, a variable of a pointer type.
2420   auto VarType = Var->getType();
2421   if (!VarType->isDependentType() && !VarType->isIntegerType() &&
2422       !VarType->isPointerType() &&
2423       !(SemaRef.getLangOpts().CPlusPlus && VarType->isOverloadableType())) {
2424     SemaRef.Diag(Init->getLocStart(), diag::err_omp_loop_variable_type)
2425         << SemaRef.getLangOpts().CPlusPlus;
2426     HasErrors = true;
2427   }
2428 
2429   // OpenMP, 2.14.1.1 Data-sharing Attribute Rules for Variables Referenced in a
2430   // Construct
2431   // The loop iteration variable(s) in the associated for-loop(s) of a for or
2432   // parallel for construct is (are) private.
2433   // The loop iteration variable in the associated for-loop of a simd construct
2434   // with just one associated for-loop is linear with a constant-linear-step
2435   // that is the increment of the associated for-loop.
2436   // Exclude loop var from the list of variables with implicitly defined data
2437   // sharing attributes.
2438   VarsWithImplicitDSA.erase(Var);
2439 
2440   // OpenMP [2.14.1.1, Data-sharing Attribute Rules for Variables Referenced in
2441   // a Construct, C/C++].
2442   // The loop iteration variable in the associated for-loop of a simd construct
2443   // with just one associated for-loop may be listed in a linear clause with a
2444   // constant-linear-step that is the increment of the associated for-loop.
2445   // The loop iteration variable(s) in the associated for-loop(s) of a for or
2446   // parallel for construct may be listed in a private or lastprivate clause.
2447   DSAStackTy::DSAVarData DVar = DSA.getTopDSA(Var, false);
2448   auto LoopVarRefExpr = ISC.GetLoopVarRefExpr();
2449   // If LoopVarRefExpr is nullptr it means the corresponding loop variable is
2450   // declared in the loop and it is predetermined as a private.
2451   auto PredeterminedCKind =
2452       isOpenMPSimdDirective(DKind)
2453           ? ((NestedLoopCount == 1) ? OMPC_linear : OMPC_lastprivate)
2454           : OMPC_private;
2455   if (((isOpenMPSimdDirective(DKind) && DVar.CKind != OMPC_unknown &&
2456         DVar.CKind != PredeterminedCKind) ||
2457        (isOpenMPWorksharingDirective(DKind) && !isOpenMPSimdDirective(DKind) &&
2458         DVar.CKind != OMPC_unknown && DVar.CKind != OMPC_private &&
2459         DVar.CKind != OMPC_lastprivate)) &&
2460       (DVar.CKind != OMPC_private || DVar.RefExpr != nullptr)) {
2461     SemaRef.Diag(Init->getLocStart(), diag::err_omp_loop_var_dsa)
2462         << getOpenMPClauseName(DVar.CKind) << getOpenMPDirectiveName(DKind)
2463         << getOpenMPClauseName(PredeterminedCKind);
2464     ReportOriginalDSA(SemaRef, &DSA, Var, DVar, true);
2465     HasErrors = true;
2466   } else if (LoopVarRefExpr != nullptr) {
2467     // Make the loop iteration variable private (for worksharing constructs),
2468     // linear (for simd directives with the only one associated loop) or
2469     // lastprivate (for simd directives with several collapsed loops).
2470     // FIXME: the next check and error message must be removed once the
2471     // capturing of global variables in loops is fixed.
2472     if (DVar.CKind == OMPC_unknown)
2473       DVar = DSA.hasDSA(Var, isOpenMPPrivate, MatchesAlways(),
2474                         /*FromParent=*/false);
2475     if (!Var->hasLocalStorage() && DVar.CKind == OMPC_unknown) {
2476       SemaRef.Diag(Init->getLocStart(), diag::err_omp_global_loop_var_dsa)
2477           << getOpenMPClauseName(PredeterminedCKind)
2478           << getOpenMPDirectiveName(DKind);
2479       HasErrors = true;
2480     } else
2481       DSA.addDSA(Var, LoopVarRefExpr, PredeterminedCKind);
2482   }
2483 
2484   assert(isOpenMPLoopDirective(DKind) && "DSA for non-loop vars");
2485 
2486   // Check test-expr.
2487   HasErrors |= ISC.CheckCond(For->getCond());
2488 
2489   // Check incr-expr.
2490   HasErrors |= ISC.CheckInc(For->getInc());
2491 
2492   if (ISC.Dependent() || SemaRef.CurContext->isDependentContext() || HasErrors)
2493     return HasErrors;
2494 
2495   // Build the loop's iteration space representation.
2496   ResultIterSpace.NumIterations = ISC.BuildNumIterations(
2497       DSA.getCurScope(), /* LimitedType */ isOpenMPWorksharingDirective(DKind));
2498   ResultIterSpace.CounterVar = ISC.BuildCounterVar();
2499   ResultIterSpace.CounterInit = ISC.BuildCounterInit();
2500   ResultIterSpace.CounterStep = ISC.BuildCounterStep();
2501   ResultIterSpace.InitSrcRange = ISC.GetInitSrcRange();
2502   ResultIterSpace.CondSrcRange = ISC.GetConditionSrcRange();
2503   ResultIterSpace.IncSrcRange = ISC.GetIncrementSrcRange();
2504   ResultIterSpace.Subtract = ISC.ShouldSubtractStep();
2505 
2506   HasErrors |= (ResultIterSpace.NumIterations == nullptr ||
2507                 ResultIterSpace.CounterVar == nullptr ||
2508                 ResultIterSpace.CounterInit == nullptr ||
2509                 ResultIterSpace.CounterStep == nullptr);
2510 
2511   return HasErrors;
2512 }
2513 
2514 /// \brief Build a variable declaration for OpenMP loop iteration variable.
2515 static VarDecl *BuildVarDecl(Sema &SemaRef, SourceLocation Loc, QualType Type,
2516                              StringRef Name) {
2517   DeclContext *DC = SemaRef.CurContext;
2518   IdentifierInfo *II = &SemaRef.PP.getIdentifierTable().get(Name);
2519   TypeSourceInfo *TInfo = SemaRef.Context.getTrivialTypeSourceInfo(Type, Loc);
2520   VarDecl *Decl =
2521       VarDecl::Create(SemaRef.Context, DC, Loc, Loc, II, Type, TInfo, SC_None);
2522   Decl->setImplicit();
2523   return Decl;
2524 }
2525 
2526 /// \brief Build 'VarRef = Start + Iter * Step'.
2527 static ExprResult BuildCounterUpdate(Sema &SemaRef, Scope *S,
2528                                      SourceLocation Loc, ExprResult VarRef,
2529                                      ExprResult Start, ExprResult Iter,
2530                                      ExprResult Step, bool Subtract) {
2531   // Add parentheses (for debugging purposes only).
2532   Iter = SemaRef.ActOnParenExpr(Loc, Loc, Iter.get());
2533   if (!VarRef.isUsable() || !Start.isUsable() || !Iter.isUsable() ||
2534       !Step.isUsable())
2535     return ExprError();
2536 
2537   ExprResult Update = SemaRef.BuildBinOp(S, Loc, BO_Mul, Iter.get(),
2538                                          Step.get()->IgnoreImplicit());
2539   if (!Update.isUsable())
2540     return ExprError();
2541 
2542   // Build 'VarRef = Start + Iter * Step'.
2543   Update = SemaRef.BuildBinOp(S, Loc, (Subtract ? BO_Sub : BO_Add),
2544                               Start.get()->IgnoreImplicit(), Update.get());
2545   if (!Update.isUsable())
2546     return ExprError();
2547 
2548   Update = SemaRef.PerformImplicitConversion(
2549       Update.get(), VarRef.get()->getType(), Sema::AA_Converting, true);
2550   if (!Update.isUsable())
2551     return ExprError();
2552 
2553   Update = SemaRef.BuildBinOp(S, Loc, BO_Assign, VarRef.get(), Update.get());
2554   return Update;
2555 }
2556 
2557 /// \brief Convert integer expression \a E to make it have at least \a Bits
2558 /// bits.
2559 static ExprResult WidenIterationCount(unsigned Bits, Expr *E,
2560                                       Sema &SemaRef) {
2561   if (E == nullptr)
2562     return ExprError();
2563   auto &C = SemaRef.Context;
2564   QualType OldType = E->getType();
2565   unsigned HasBits = C.getTypeSize(OldType);
2566   if (HasBits >= Bits)
2567     return ExprResult(E);
2568   // OK to convert to signed, because new type has more bits than old.
2569   QualType NewType = C.getIntTypeForBitwidth(Bits, /* Signed */ true);
2570   return SemaRef.PerformImplicitConversion(E, NewType, Sema::AA_Converting,
2571                                            true);
2572 }
2573 
2574 /// \brief Check if the given expression \a E is a constant integer that fits
2575 /// into \a Bits bits.
2576 static bool FitsInto(unsigned Bits, bool Signed, Expr *E, Sema &SemaRef) {
2577   if (E == nullptr)
2578     return false;
2579   llvm::APSInt Result;
2580   if (E->isIntegerConstantExpr(Result, SemaRef.Context))
2581     return Signed ? Result.isSignedIntN(Bits) : Result.isIntN(Bits);
2582   return false;
2583 }
2584 
2585 /// \brief Called on a for stmt to check itself and nested loops (if any).
2586 /// \return Returns 0 if one of the collapsed stmts is not canonical for loop,
2587 /// number of collapsed loops otherwise.
2588 static unsigned
2589 CheckOpenMPLoop(OpenMPDirectiveKind DKind, Expr *NestedLoopCountExpr,
2590                 Stmt *AStmt, Sema &SemaRef, DSAStackTy &DSA,
2591                 llvm::DenseMap<VarDecl *, Expr *> &VarsWithImplicitDSA,
2592                 OMPLoopDirective::HelperExprs &Built) {
2593   unsigned NestedLoopCount = 1;
2594   if (NestedLoopCountExpr) {
2595     // Found 'collapse' clause - calculate collapse number.
2596     llvm::APSInt Result;
2597     if (NestedLoopCountExpr->EvaluateAsInt(Result, SemaRef.getASTContext()))
2598       NestedLoopCount = Result.getLimitedValue();
2599   }
2600   // This is helper routine for loop directives (e.g., 'for', 'simd',
2601   // 'for simd', etc.).
2602   SmallVector<LoopIterationSpace, 4> IterSpaces;
2603   IterSpaces.resize(NestedLoopCount);
2604   Stmt *CurStmt = AStmt->IgnoreContainers(/* IgnoreCaptured */ true);
2605   for (unsigned Cnt = 0; Cnt < NestedLoopCount; ++Cnt) {
2606     if (CheckOpenMPIterationSpace(DKind, CurStmt, SemaRef, DSA, Cnt,
2607                                   NestedLoopCount, NestedLoopCountExpr,
2608                                   VarsWithImplicitDSA, IterSpaces[Cnt]))
2609       return 0;
2610     // Move on to the next nested for loop, or to the loop body.
2611     // OpenMP [2.8.1, simd construct, Restrictions]
2612     // All loops associated with the construct must be perfectly nested; that
2613     // is, there must be no intervening code nor any OpenMP directive between
2614     // any two loops.
2615     CurStmt = cast<ForStmt>(CurStmt)->getBody()->IgnoreContainers();
2616   }
2617 
2618   Built.clear(/* size */ NestedLoopCount);
2619 
2620   if (SemaRef.CurContext->isDependentContext())
2621     return NestedLoopCount;
2622 
2623   // An example of what is generated for the following code:
2624   //
2625   //   #pragma omp simd collapse(2)
2626   //   for (i = 0; i < NI; ++i)
2627   //     for (j = J0; j < NJ; j+=2) {
2628   //     <loop body>
2629   //   }
2630   //
2631   // We generate the code below.
2632   // Note: the loop body may be outlined in CodeGen.
2633   // Note: some counters may be C++ classes, operator- is used to find number of
2634   // iterations and operator+= to calculate counter value.
2635   // Note: decltype(NumIterations) must be integer type (in 'omp for', only i32
2636   // or i64 is currently supported).
2637   //
2638   //   #define NumIterations (NI * ((NJ - J0 - 1 + 2) / 2))
2639   //   for (int[32|64]_t IV = 0; IV < NumIterations; ++IV ) {
2640   //     .local.i = IV / ((NJ - J0 - 1 + 2) / 2);
2641   //     .local.j = J0 + (IV % ((NJ - J0 - 1 + 2) / 2)) * 2;
2642   //     // similar updates for vars in clauses (e.g. 'linear')
2643   //     <loop body (using local i and j)>
2644   //   }
2645   //   i = NI; // assign final values of counters
2646   //   j = NJ;
2647   //
2648 
2649   // Last iteration number is (I1 * I2 * ... In) - 1, where I1, I2 ... In are
2650   // the iteration counts of the collapsed for loops.
2651   auto N0 = IterSpaces[0].NumIterations;
2652   ExprResult LastIteration32 = WidenIterationCount(32 /* Bits */, N0, SemaRef);
2653   ExprResult LastIteration64 = WidenIterationCount(64 /* Bits */, N0, SemaRef);
2654 
2655   if (!LastIteration32.isUsable() || !LastIteration64.isUsable())
2656     return NestedLoopCount;
2657 
2658   auto &C = SemaRef.Context;
2659   bool AllCountsNeedLessThan32Bits = C.getTypeSize(N0->getType()) < 32;
2660 
2661   Scope *CurScope = DSA.getCurScope();
2662   for (unsigned Cnt = 1; Cnt < NestedLoopCount; ++Cnt) {
2663     auto N = IterSpaces[Cnt].NumIterations;
2664     AllCountsNeedLessThan32Bits &= C.getTypeSize(N->getType()) < 32;
2665     if (LastIteration32.isUsable())
2666       LastIteration32 = SemaRef.BuildBinOp(CurScope, SourceLocation(), BO_Mul,
2667                                            LastIteration32.get(), N);
2668     if (LastIteration64.isUsable())
2669       LastIteration64 = SemaRef.BuildBinOp(CurScope, SourceLocation(), BO_Mul,
2670                                            LastIteration64.get(), N);
2671   }
2672 
2673   // Choose either the 32-bit or 64-bit version.
2674   ExprResult LastIteration = LastIteration64;
2675   if (LastIteration32.isUsable() &&
2676       C.getTypeSize(LastIteration32.get()->getType()) == 32 &&
2677       (AllCountsNeedLessThan32Bits || NestedLoopCount == 1 ||
2678        FitsInto(
2679            32 /* Bits */,
2680            LastIteration32.get()->getType()->hasSignedIntegerRepresentation(),
2681            LastIteration64.get(), SemaRef)))
2682     LastIteration = LastIteration32;
2683 
2684   if (!LastIteration.isUsable())
2685     return 0;
2686 
2687   // Save the number of iterations.
2688   ExprResult NumIterations = LastIteration;
2689   {
2690     LastIteration = SemaRef.BuildBinOp(
2691         CurScope, SourceLocation(), BO_Sub, LastIteration.get(),
2692         SemaRef.ActOnIntegerConstant(SourceLocation(), 1).get());
2693     if (!LastIteration.isUsable())
2694       return 0;
2695   }
2696 
2697   // Calculate the last iteration number beforehand instead of doing this on
2698   // each iteration. Do not do this if the number of iterations may be kfold-ed.
2699   llvm::APSInt Result;
2700   bool IsConstant =
2701       LastIteration.get()->isIntegerConstantExpr(Result, SemaRef.Context);
2702   ExprResult CalcLastIteration;
2703   if (!IsConstant) {
2704     SourceLocation SaveLoc;
2705     VarDecl *SaveVar =
2706         BuildVarDecl(SemaRef, SaveLoc, LastIteration.get()->getType(),
2707                      ".omp.last.iteration");
2708     ExprResult SaveRef = SemaRef.BuildDeclRefExpr(
2709         SaveVar, LastIteration.get()->getType(), VK_LValue, SaveLoc);
2710     CalcLastIteration = SemaRef.BuildBinOp(CurScope, SaveLoc, BO_Assign,
2711                                            SaveRef.get(), LastIteration.get());
2712     LastIteration = SaveRef;
2713 
2714     // Prepare SaveRef + 1.
2715     NumIterations = SemaRef.BuildBinOp(
2716         CurScope, SaveLoc, BO_Add, SaveRef.get(),
2717         SemaRef.ActOnIntegerConstant(SourceLocation(), 1).get());
2718     if (!NumIterations.isUsable())
2719       return 0;
2720   }
2721 
2722   SourceLocation InitLoc = IterSpaces[0].InitSrcRange.getBegin();
2723 
2724   // Precondition tests if there is at least one iteration (LastIteration > 0).
2725   ExprResult PreCond = SemaRef.BuildBinOp(
2726       CurScope, InitLoc, BO_GT, LastIteration.get(),
2727       SemaRef.ActOnIntegerConstant(SourceLocation(), 0).get());
2728 
2729   QualType VType = LastIteration.get()->getType();
2730   // Build variables passed into runtime, nesessary for worksharing directives.
2731   ExprResult LB, UB, IL, ST, EUB;
2732   if (isOpenMPWorksharingDirective(DKind)) {
2733     // Lower bound variable, initialized with zero.
2734     VarDecl *LBDecl = BuildVarDecl(SemaRef, InitLoc, VType, ".omp.lb");
2735     LB = SemaRef.BuildDeclRefExpr(LBDecl, VType, VK_LValue, InitLoc);
2736     SemaRef.AddInitializerToDecl(
2737         LBDecl, SemaRef.ActOnIntegerConstant(InitLoc, 0).get(),
2738         /*DirectInit*/ false, /*TypeMayContainAuto*/ false);
2739 
2740     // Upper bound variable, initialized with last iteration number.
2741     VarDecl *UBDecl = BuildVarDecl(SemaRef, InitLoc, VType, ".omp.ub");
2742     UB = SemaRef.BuildDeclRefExpr(UBDecl, VType, VK_LValue, InitLoc);
2743     SemaRef.AddInitializerToDecl(UBDecl, LastIteration.get(),
2744                                  /*DirectInit*/ false,
2745                                  /*TypeMayContainAuto*/ false);
2746 
2747     // A 32-bit variable-flag where runtime returns 1 for the last iteration.
2748     // This will be used to implement clause 'lastprivate'.
2749     QualType Int32Ty = SemaRef.Context.getIntTypeForBitwidth(32, true);
2750     VarDecl *ILDecl = BuildVarDecl(SemaRef, InitLoc, Int32Ty, ".omp.is_last");
2751     IL = SemaRef.BuildDeclRefExpr(ILDecl, Int32Ty, VK_LValue, InitLoc);
2752     SemaRef.AddInitializerToDecl(
2753         ILDecl, SemaRef.ActOnIntegerConstant(InitLoc, 0).get(),
2754         /*DirectInit*/ false, /*TypeMayContainAuto*/ false);
2755 
2756     // Stride variable returned by runtime (we initialize it to 1 by default).
2757     VarDecl *STDecl = BuildVarDecl(SemaRef, InitLoc, VType, ".omp.stride");
2758     ST = SemaRef.BuildDeclRefExpr(STDecl, VType, VK_LValue, InitLoc);
2759     SemaRef.AddInitializerToDecl(
2760         STDecl, SemaRef.ActOnIntegerConstant(InitLoc, 1).get(),
2761         /*DirectInit*/ false, /*TypeMayContainAuto*/ false);
2762 
2763     // Build expression: UB = min(UB, LastIteration)
2764     // It is nesessary for CodeGen of directives with static scheduling.
2765     ExprResult IsUBGreater = SemaRef.BuildBinOp(CurScope, InitLoc, BO_GT,
2766                                                 UB.get(), LastIteration.get());
2767     ExprResult CondOp = SemaRef.ActOnConditionalOp(
2768         InitLoc, InitLoc, IsUBGreater.get(), LastIteration.get(), UB.get());
2769     EUB = SemaRef.BuildBinOp(CurScope, InitLoc, BO_Assign, UB.get(),
2770                              CondOp.get());
2771     EUB = SemaRef.ActOnFinishFullExpr(EUB.get());
2772   }
2773 
2774   // Build the iteration variable and its initialization before loop.
2775   ExprResult IV;
2776   ExprResult Init;
2777   {
2778     VarDecl *IVDecl = BuildVarDecl(SemaRef, InitLoc, VType, ".omp.iv");
2779     IV = SemaRef.BuildDeclRefExpr(IVDecl, VType, VK_LValue, InitLoc);
2780     Expr *RHS = isOpenMPWorksharingDirective(DKind)
2781                     ? LB.get()
2782                     : SemaRef.ActOnIntegerConstant(SourceLocation(), 0).get();
2783     Init = SemaRef.BuildBinOp(CurScope, InitLoc, BO_Assign, IV.get(), RHS);
2784     Init = SemaRef.ActOnFinishFullExpr(Init.get());
2785   }
2786 
2787   // Loop condition (IV < NumIterations) or (IV <= UB) for worksharing loops.
2788   SourceLocation CondLoc;
2789   ExprResult Cond =
2790       isOpenMPWorksharingDirective(DKind)
2791           ? SemaRef.BuildBinOp(CurScope, CondLoc, BO_LE, IV.get(), UB.get())
2792           : SemaRef.BuildBinOp(CurScope, CondLoc, BO_LT, IV.get(),
2793                                NumIterations.get());
2794   // Loop condition with 1 iteration separated (IV < LastIteration)
2795   ExprResult SeparatedCond = SemaRef.BuildBinOp(CurScope, CondLoc, BO_LT,
2796                                                 IV.get(), LastIteration.get());
2797 
2798   // Loop increment (IV = IV + 1)
2799   SourceLocation IncLoc;
2800   ExprResult Inc =
2801       SemaRef.BuildBinOp(CurScope, IncLoc, BO_Add, IV.get(),
2802                          SemaRef.ActOnIntegerConstant(IncLoc, 1).get());
2803   if (!Inc.isUsable())
2804     return 0;
2805   Inc = SemaRef.BuildBinOp(CurScope, IncLoc, BO_Assign, IV.get(), Inc.get());
2806   Inc = SemaRef.ActOnFinishFullExpr(Inc.get());
2807   if (!Inc.isUsable())
2808     return 0;
2809 
2810   // Increments for worksharing loops (LB = LB + ST; UB = UB + ST).
2811   // Used for directives with static scheduling.
2812   ExprResult NextLB, NextUB;
2813   if (isOpenMPWorksharingDirective(DKind)) {
2814     // LB + ST
2815     NextLB = SemaRef.BuildBinOp(CurScope, IncLoc, BO_Add, LB.get(), ST.get());
2816     if (!NextLB.isUsable())
2817       return 0;
2818     // LB = LB + ST
2819     NextLB =
2820         SemaRef.BuildBinOp(CurScope, IncLoc, BO_Assign, LB.get(), NextLB.get());
2821     NextLB = SemaRef.ActOnFinishFullExpr(NextLB.get());
2822     if (!NextLB.isUsable())
2823       return 0;
2824     // UB + ST
2825     NextUB = SemaRef.BuildBinOp(CurScope, IncLoc, BO_Add, UB.get(), ST.get());
2826     if (!NextUB.isUsable())
2827       return 0;
2828     // UB = UB + ST
2829     NextUB =
2830         SemaRef.BuildBinOp(CurScope, IncLoc, BO_Assign, UB.get(), NextUB.get());
2831     NextUB = SemaRef.ActOnFinishFullExpr(NextUB.get());
2832     if (!NextUB.isUsable())
2833       return 0;
2834   }
2835 
2836   // Build updates and final values of the loop counters.
2837   bool HasErrors = false;
2838   Built.Counters.resize(NestedLoopCount);
2839   Built.Updates.resize(NestedLoopCount);
2840   Built.Finals.resize(NestedLoopCount);
2841   {
2842     ExprResult Div;
2843     // Go from inner nested loop to outer.
2844     for (int Cnt = NestedLoopCount - 1; Cnt >= 0; --Cnt) {
2845       LoopIterationSpace &IS = IterSpaces[Cnt];
2846       SourceLocation UpdLoc = IS.IncSrcRange.getBegin();
2847       // Build: Iter = (IV / Div) % IS.NumIters
2848       // where Div is product of previous iterations' IS.NumIters.
2849       ExprResult Iter;
2850       if (Div.isUsable()) {
2851         Iter =
2852             SemaRef.BuildBinOp(CurScope, UpdLoc, BO_Div, IV.get(), Div.get());
2853       } else {
2854         Iter = IV;
2855         assert((Cnt == (int)NestedLoopCount - 1) &&
2856                "unusable div expected on first iteration only");
2857       }
2858 
2859       if (Cnt != 0 && Iter.isUsable())
2860         Iter = SemaRef.BuildBinOp(CurScope, UpdLoc, BO_Rem, Iter.get(),
2861                                   IS.NumIterations);
2862       if (!Iter.isUsable()) {
2863         HasErrors = true;
2864         break;
2865       }
2866 
2867       // Build update: IS.CounterVar = IS.Start + Iter * IS.Step
2868       ExprResult Update =
2869           BuildCounterUpdate(SemaRef, CurScope, UpdLoc, IS.CounterVar,
2870                              IS.CounterInit, Iter, IS.CounterStep, IS.Subtract);
2871       if (!Update.isUsable()) {
2872         HasErrors = true;
2873         break;
2874       }
2875 
2876       // Build final: IS.CounterVar = IS.Start + IS.NumIters * IS.Step
2877       ExprResult Final = BuildCounterUpdate(
2878           SemaRef, CurScope, UpdLoc, IS.CounterVar, IS.CounterInit,
2879           IS.NumIterations, IS.CounterStep, IS.Subtract);
2880       if (!Final.isUsable()) {
2881         HasErrors = true;
2882         break;
2883       }
2884 
2885       // Build Div for the next iteration: Div <- Div * IS.NumIters
2886       if (Cnt != 0) {
2887         if (Div.isUnset())
2888           Div = IS.NumIterations;
2889         else
2890           Div = SemaRef.BuildBinOp(CurScope, UpdLoc, BO_Mul, Div.get(),
2891                                    IS.NumIterations);
2892 
2893         // Add parentheses (for debugging purposes only).
2894         if (Div.isUsable())
2895           Div = SemaRef.ActOnParenExpr(UpdLoc, UpdLoc, Div.get());
2896         if (!Div.isUsable()) {
2897           HasErrors = true;
2898           break;
2899         }
2900       }
2901       if (!Update.isUsable() || !Final.isUsable()) {
2902         HasErrors = true;
2903         break;
2904       }
2905       // Save results
2906       Built.Counters[Cnt] = IS.CounterVar;
2907       Built.Updates[Cnt] = Update.get();
2908       Built.Finals[Cnt] = Final.get();
2909     }
2910   }
2911 
2912   if (HasErrors)
2913     return 0;
2914 
2915   // Save results
2916   Built.IterationVarRef = IV.get();
2917   Built.LastIteration = LastIteration.get();
2918   Built.CalcLastIteration = CalcLastIteration.get();
2919   Built.PreCond = PreCond.get();
2920   Built.Cond = Cond.get();
2921   Built.SeparatedCond = SeparatedCond.get();
2922   Built.Init = Init.get();
2923   Built.Inc = Inc.get();
2924   Built.LB = LB.get();
2925   Built.UB = UB.get();
2926   Built.IL = IL.get();
2927   Built.ST = ST.get();
2928   Built.EUB = EUB.get();
2929   Built.NLB = NextLB.get();
2930   Built.NUB = NextUB.get();
2931 
2932   return NestedLoopCount;
2933 }
2934 
2935 static Expr *GetCollapseNumberExpr(ArrayRef<OMPClause *> Clauses) {
2936   auto CollapseFilter = [](const OMPClause *C) -> bool {
2937     return C->getClauseKind() == OMPC_collapse;
2938   };
2939   OMPExecutableDirective::filtered_clause_iterator<decltype(CollapseFilter)> I(
2940       Clauses, CollapseFilter);
2941   if (I)
2942     return cast<OMPCollapseClause>(*I)->getNumForLoops();
2943   return nullptr;
2944 }
2945 
2946 StmtResult Sema::ActOnOpenMPSimdDirective(
2947     ArrayRef<OMPClause *> Clauses, Stmt *AStmt, SourceLocation StartLoc,
2948     SourceLocation EndLoc,
2949     llvm::DenseMap<VarDecl *, Expr *> &VarsWithImplicitDSA) {
2950   OMPLoopDirective::HelperExprs B;
2951   // In presence of clause 'collapse', it will define the nested loops number.
2952   unsigned NestedLoopCount =
2953       CheckOpenMPLoop(OMPD_simd, GetCollapseNumberExpr(Clauses), AStmt, *this,
2954                       *DSAStack, VarsWithImplicitDSA, B);
2955   if (NestedLoopCount == 0)
2956     return StmtError();
2957 
2958   assert((CurContext->isDependentContext() || B.builtAll()) &&
2959          "omp simd loop exprs were not built");
2960 
2961   getCurFunction()->setHasBranchProtectedScope();
2962   return OMPSimdDirective::Create(Context, StartLoc, EndLoc, NestedLoopCount,
2963                                   Clauses, AStmt, B);
2964 }
2965 
2966 StmtResult Sema::ActOnOpenMPForDirective(
2967     ArrayRef<OMPClause *> Clauses, Stmt *AStmt, SourceLocation StartLoc,
2968     SourceLocation EndLoc,
2969     llvm::DenseMap<VarDecl *, Expr *> &VarsWithImplicitDSA) {
2970   OMPLoopDirective::HelperExprs B;
2971   // In presence of clause 'collapse', it will define the nested loops number.
2972   unsigned NestedLoopCount =
2973       CheckOpenMPLoop(OMPD_for, GetCollapseNumberExpr(Clauses), AStmt, *this,
2974                       *DSAStack, VarsWithImplicitDSA, B);
2975   if (NestedLoopCount == 0)
2976     return StmtError();
2977 
2978   assert((CurContext->isDependentContext() || B.builtAll()) &&
2979          "omp for loop exprs were not built");
2980 
2981   getCurFunction()->setHasBranchProtectedScope();
2982   return OMPForDirective::Create(Context, StartLoc, EndLoc, NestedLoopCount,
2983                                  Clauses, AStmt, B);
2984 }
2985 
2986 StmtResult Sema::ActOnOpenMPForSimdDirective(
2987     ArrayRef<OMPClause *> Clauses, Stmt *AStmt, SourceLocation StartLoc,
2988     SourceLocation EndLoc,
2989     llvm::DenseMap<VarDecl *, Expr *> &VarsWithImplicitDSA) {
2990   OMPLoopDirective::HelperExprs B;
2991   // In presence of clause 'collapse', it will define the nested loops number.
2992   unsigned NestedLoopCount =
2993       CheckOpenMPLoop(OMPD_for_simd, GetCollapseNumberExpr(Clauses), AStmt,
2994                       *this, *DSAStack, VarsWithImplicitDSA, B);
2995   if (NestedLoopCount == 0)
2996     return StmtError();
2997 
2998   assert((CurContext->isDependentContext() || B.builtAll()) &&
2999          "omp for simd loop exprs were not built");
3000 
3001   getCurFunction()->setHasBranchProtectedScope();
3002   return OMPForSimdDirective::Create(Context, StartLoc, EndLoc, NestedLoopCount,
3003                                      Clauses, AStmt, B);
3004 }
3005 
3006 StmtResult Sema::ActOnOpenMPSectionsDirective(ArrayRef<OMPClause *> Clauses,
3007                                               Stmt *AStmt,
3008                                               SourceLocation StartLoc,
3009                                               SourceLocation EndLoc) {
3010   assert(AStmt && isa<CapturedStmt>(AStmt) && "Captured statement expected");
3011   auto BaseStmt = AStmt;
3012   while (CapturedStmt *CS = dyn_cast_or_null<CapturedStmt>(BaseStmt))
3013     BaseStmt = CS->getCapturedStmt();
3014   if (auto C = dyn_cast_or_null<CompoundStmt>(BaseStmt)) {
3015     auto S = C->children();
3016     if (!S)
3017       return StmtError();
3018     // All associated statements must be '#pragma omp section' except for
3019     // the first one.
3020     for (++S; S; ++S) {
3021       auto SectionStmt = *S;
3022       if (!SectionStmt || !isa<OMPSectionDirective>(SectionStmt)) {
3023         if (SectionStmt)
3024           Diag(SectionStmt->getLocStart(),
3025                diag::err_omp_sections_substmt_not_section);
3026         return StmtError();
3027       }
3028     }
3029   } else {
3030     Diag(AStmt->getLocStart(), diag::err_omp_sections_not_compound_stmt);
3031     return StmtError();
3032   }
3033 
3034   getCurFunction()->setHasBranchProtectedScope();
3035 
3036   return OMPSectionsDirective::Create(Context, StartLoc, EndLoc, Clauses,
3037                                       AStmt);
3038 }
3039 
3040 StmtResult Sema::ActOnOpenMPSectionDirective(Stmt *AStmt,
3041                                              SourceLocation StartLoc,
3042                                              SourceLocation EndLoc) {
3043   assert(AStmt && isa<CapturedStmt>(AStmt) && "Captured statement expected");
3044 
3045   getCurFunction()->setHasBranchProtectedScope();
3046 
3047   return OMPSectionDirective::Create(Context, StartLoc, EndLoc, AStmt);
3048 }
3049 
3050 StmtResult Sema::ActOnOpenMPSingleDirective(ArrayRef<OMPClause *> Clauses,
3051                                             Stmt *AStmt,
3052                                             SourceLocation StartLoc,
3053                                             SourceLocation EndLoc) {
3054   assert(AStmt && isa<CapturedStmt>(AStmt) && "Captured statement expected");
3055 
3056   getCurFunction()->setHasBranchProtectedScope();
3057 
3058   // OpenMP [2.7.3, single Construct, Restrictions]
3059   // The copyprivate clause must not be used with the nowait clause.
3060   OMPClause *Nowait = nullptr;
3061   OMPClause *Copyprivate = nullptr;
3062   for (auto *Clause : Clauses) {
3063     if (Clause->getClauseKind() == OMPC_nowait)
3064       Nowait = Clause;
3065     else if (Clause->getClauseKind() == OMPC_copyprivate)
3066       Copyprivate = Clause;
3067     if (Copyprivate && Nowait) {
3068       Diag(Copyprivate->getLocStart(),
3069            diag::err_omp_single_copyprivate_with_nowait);
3070       Diag(Nowait->getLocStart(), diag::note_omp_nowait_clause_here);
3071       return StmtError();
3072     }
3073   }
3074 
3075   return OMPSingleDirective::Create(Context, StartLoc, EndLoc, Clauses, AStmt);
3076 }
3077 
3078 StmtResult Sema::ActOnOpenMPMasterDirective(Stmt *AStmt,
3079                                             SourceLocation StartLoc,
3080                                             SourceLocation EndLoc) {
3081   assert(AStmt && isa<CapturedStmt>(AStmt) && "Captured statement expected");
3082 
3083   getCurFunction()->setHasBranchProtectedScope();
3084 
3085   return OMPMasterDirective::Create(Context, StartLoc, EndLoc, AStmt);
3086 }
3087 
3088 StmtResult
3089 Sema::ActOnOpenMPCriticalDirective(const DeclarationNameInfo &DirName,
3090                                    Stmt *AStmt, SourceLocation StartLoc,
3091                                    SourceLocation EndLoc) {
3092   assert(AStmt && isa<CapturedStmt>(AStmt) && "Captured statement expected");
3093 
3094   getCurFunction()->setHasBranchProtectedScope();
3095 
3096   return OMPCriticalDirective::Create(Context, DirName, StartLoc, EndLoc,
3097                                       AStmt);
3098 }
3099 
3100 StmtResult Sema::ActOnOpenMPParallelForDirective(
3101     ArrayRef<OMPClause *> Clauses, Stmt *AStmt, SourceLocation StartLoc,
3102     SourceLocation EndLoc,
3103     llvm::DenseMap<VarDecl *, Expr *> &VarsWithImplicitDSA) {
3104   assert(AStmt && isa<CapturedStmt>(AStmt) && "Captured statement expected");
3105   CapturedStmt *CS = cast<CapturedStmt>(AStmt);
3106   // 1.2.2 OpenMP Language Terminology
3107   // Structured block - An executable statement with a single entry at the
3108   // top and a single exit at the bottom.
3109   // The point of exit cannot be a branch out of the structured block.
3110   // longjmp() and throw() must not violate the entry/exit criteria.
3111   CS->getCapturedDecl()->setNothrow();
3112 
3113   OMPLoopDirective::HelperExprs B;
3114   // In presence of clause 'collapse', it will define the nested loops number.
3115   unsigned NestedLoopCount =
3116       CheckOpenMPLoop(OMPD_parallel_for, GetCollapseNumberExpr(Clauses), AStmt,
3117                       *this, *DSAStack, VarsWithImplicitDSA, B);
3118   if (NestedLoopCount == 0)
3119     return StmtError();
3120 
3121   assert((CurContext->isDependentContext() || B.builtAll()) &&
3122          "omp parallel for loop exprs were not built");
3123 
3124   getCurFunction()->setHasBranchProtectedScope();
3125   return OMPParallelForDirective::Create(Context, StartLoc, EndLoc,
3126                                          NestedLoopCount, Clauses, AStmt, B);
3127 }
3128 
3129 StmtResult Sema::ActOnOpenMPParallelForSimdDirective(
3130     ArrayRef<OMPClause *> Clauses, Stmt *AStmt, SourceLocation StartLoc,
3131     SourceLocation EndLoc,
3132     llvm::DenseMap<VarDecl *, Expr *> &VarsWithImplicitDSA) {
3133   assert(AStmt && isa<CapturedStmt>(AStmt) && "Captured statement expected");
3134   CapturedStmt *CS = cast<CapturedStmt>(AStmt);
3135   // 1.2.2 OpenMP Language Terminology
3136   // Structured block - An executable statement with a single entry at the
3137   // top and a single exit at the bottom.
3138   // The point of exit cannot be a branch out of the structured block.
3139   // longjmp() and throw() must not violate the entry/exit criteria.
3140   CS->getCapturedDecl()->setNothrow();
3141 
3142   OMPLoopDirective::HelperExprs B;
3143   // In presence of clause 'collapse', it will define the nested loops number.
3144   unsigned NestedLoopCount =
3145       CheckOpenMPLoop(OMPD_parallel_for_simd, GetCollapseNumberExpr(Clauses),
3146                       AStmt, *this, *DSAStack, VarsWithImplicitDSA, B);
3147   if (NestedLoopCount == 0)
3148     return StmtError();
3149 
3150   getCurFunction()->setHasBranchProtectedScope();
3151   return OMPParallelForSimdDirective::Create(
3152       Context, StartLoc, EndLoc, NestedLoopCount, Clauses, AStmt, B);
3153 }
3154 
3155 StmtResult
3156 Sema::ActOnOpenMPParallelSectionsDirective(ArrayRef<OMPClause *> Clauses,
3157                                            Stmt *AStmt, SourceLocation StartLoc,
3158                                            SourceLocation EndLoc) {
3159   assert(AStmt && isa<CapturedStmt>(AStmt) && "Captured statement expected");
3160   auto BaseStmt = AStmt;
3161   while (CapturedStmt *CS = dyn_cast_or_null<CapturedStmt>(BaseStmt))
3162     BaseStmt = CS->getCapturedStmt();
3163   if (auto C = dyn_cast_or_null<CompoundStmt>(BaseStmt)) {
3164     auto S = C->children();
3165     if (!S)
3166       return StmtError();
3167     // All associated statements must be '#pragma omp section' except for
3168     // the first one.
3169     for (++S; S; ++S) {
3170       auto SectionStmt = *S;
3171       if (!SectionStmt || !isa<OMPSectionDirective>(SectionStmt)) {
3172         if (SectionStmt)
3173           Diag(SectionStmt->getLocStart(),
3174                diag::err_omp_parallel_sections_substmt_not_section);
3175         return StmtError();
3176       }
3177     }
3178   } else {
3179     Diag(AStmt->getLocStart(),
3180          diag::err_omp_parallel_sections_not_compound_stmt);
3181     return StmtError();
3182   }
3183 
3184   getCurFunction()->setHasBranchProtectedScope();
3185 
3186   return OMPParallelSectionsDirective::Create(Context, StartLoc, EndLoc,
3187                                               Clauses, AStmt);
3188 }
3189 
3190 StmtResult Sema::ActOnOpenMPTaskDirective(ArrayRef<OMPClause *> Clauses,
3191                                           Stmt *AStmt, SourceLocation StartLoc,
3192                                           SourceLocation EndLoc) {
3193   assert(AStmt && isa<CapturedStmt>(AStmt) && "Captured statement expected");
3194   CapturedStmt *CS = cast<CapturedStmt>(AStmt);
3195   // 1.2.2 OpenMP Language Terminology
3196   // Structured block - An executable statement with a single entry at the
3197   // top and a single exit at the bottom.
3198   // The point of exit cannot be a branch out of the structured block.
3199   // longjmp() and throw() must not violate the entry/exit criteria.
3200   CS->getCapturedDecl()->setNothrow();
3201 
3202   getCurFunction()->setHasBranchProtectedScope();
3203 
3204   return OMPTaskDirective::Create(Context, StartLoc, EndLoc, Clauses, AStmt);
3205 }
3206 
3207 StmtResult Sema::ActOnOpenMPTaskyieldDirective(SourceLocation StartLoc,
3208                                                SourceLocation EndLoc) {
3209   return OMPTaskyieldDirective::Create(Context, StartLoc, EndLoc);
3210 }
3211 
3212 StmtResult Sema::ActOnOpenMPBarrierDirective(SourceLocation StartLoc,
3213                                              SourceLocation EndLoc) {
3214   return OMPBarrierDirective::Create(Context, StartLoc, EndLoc);
3215 }
3216 
3217 StmtResult Sema::ActOnOpenMPTaskwaitDirective(SourceLocation StartLoc,
3218                                               SourceLocation EndLoc) {
3219   return OMPTaskwaitDirective::Create(Context, StartLoc, EndLoc);
3220 }
3221 
3222 StmtResult Sema::ActOnOpenMPFlushDirective(ArrayRef<OMPClause *> Clauses,
3223                                            SourceLocation StartLoc,
3224                                            SourceLocation EndLoc) {
3225   assert(Clauses.size() <= 1 && "Extra clauses in flush directive");
3226   return OMPFlushDirective::Create(Context, StartLoc, EndLoc, Clauses);
3227 }
3228 
3229 StmtResult Sema::ActOnOpenMPOrderedDirective(Stmt *AStmt,
3230                                              SourceLocation StartLoc,
3231                                              SourceLocation EndLoc) {
3232   assert(AStmt && isa<CapturedStmt>(AStmt) && "Captured statement expected");
3233 
3234   getCurFunction()->setHasBranchProtectedScope();
3235 
3236   return OMPOrderedDirective::Create(Context, StartLoc, EndLoc, AStmt);
3237 }
3238 
3239 StmtResult Sema::ActOnOpenMPAtomicDirective(ArrayRef<OMPClause *> Clauses,
3240                                             Stmt *AStmt,
3241                                             SourceLocation StartLoc,
3242                                             SourceLocation EndLoc) {
3243   assert(AStmt && isa<CapturedStmt>(AStmt) && "Captured statement expected");
3244   auto CS = cast<CapturedStmt>(AStmt);
3245   // 1.2.2 OpenMP Language Terminology
3246   // Structured block - An executable statement with a single entry at the
3247   // top and a single exit at the bottom.
3248   // The point of exit cannot be a branch out of the structured block.
3249   // longjmp() and throw() must not violate the entry/exit criteria.
3250   // TODO further analysis of associated statements and clauses.
3251   OpenMPClauseKind AtomicKind = OMPC_unknown;
3252   SourceLocation AtomicKindLoc;
3253   for (auto *C : Clauses) {
3254     if (C->getClauseKind() == OMPC_read || C->getClauseKind() == OMPC_write ||
3255         C->getClauseKind() == OMPC_update ||
3256         C->getClauseKind() == OMPC_capture) {
3257       if (AtomicKind != OMPC_unknown) {
3258         Diag(C->getLocStart(), diag::err_omp_atomic_several_clauses)
3259             << SourceRange(C->getLocStart(), C->getLocEnd());
3260         Diag(AtomicKindLoc, diag::note_omp_atomic_previous_clause)
3261             << getOpenMPClauseName(AtomicKind);
3262       } else {
3263         AtomicKind = C->getClauseKind();
3264         AtomicKindLoc = C->getLocStart();
3265       }
3266     }
3267   }
3268 
3269   auto Body = CS->getCapturedStmt();
3270   Expr *X = nullptr;
3271   Expr *V = nullptr;
3272   Expr *E = nullptr;
3273   // OpenMP [2.12.6, atomic Construct]
3274   // In the next expressions:
3275   // * x and v (as applicable) are both l-value expressions with scalar type.
3276   // * During the execution of an atomic region, multiple syntactic
3277   // occurrences of x must designate the same storage location.
3278   // * Neither of v and expr (as applicable) may access the storage location
3279   // designated by x.
3280   // * Neither of x and expr (as applicable) may access the storage location
3281   // designated by v.
3282   // * expr is an expression with scalar type.
3283   // * binop is one of +, *, -, /, &, ^, |, <<, or >>.
3284   // * binop, binop=, ++, and -- are not overloaded operators.
3285   // * The expression x binop expr must be numerically equivalent to x binop
3286   // (expr). This requirement is satisfied if the operators in expr have
3287   // precedence greater than binop, or by using parentheses around expr or
3288   // subexpressions of expr.
3289   // * The expression expr binop x must be numerically equivalent to (expr)
3290   // binop x. This requirement is satisfied if the operators in expr have
3291   // precedence equal to or greater than binop, or by using parentheses around
3292   // expr or subexpressions of expr.
3293   // * For forms that allow multiple occurrences of x, the number of times
3294   // that x is evaluated is unspecified.
3295   enum {
3296     NotAnExpression,
3297     NotAnAssignmentOp,
3298     NotAScalarType,
3299     NotAnLValue,
3300     NoError
3301   } ErrorFound = NoError;
3302   if (AtomicKind == OMPC_read) {
3303     SourceLocation ErrorLoc, NoteLoc;
3304     SourceRange ErrorRange, NoteRange;
3305     // If clause is read:
3306     //  v = x;
3307     if (auto AtomicBody = dyn_cast<Expr>(Body)) {
3308       auto AtomicBinOp =
3309           dyn_cast<BinaryOperator>(AtomicBody->IgnoreParenImpCasts());
3310       if (AtomicBinOp && AtomicBinOp->getOpcode() == BO_Assign) {
3311         X = AtomicBinOp->getRHS()->IgnoreParenImpCasts();
3312         V = AtomicBinOp->getLHS()->IgnoreParenImpCasts();
3313         if ((X->isInstantiationDependent() || X->getType()->isScalarType()) &&
3314             (V->isInstantiationDependent() || V->getType()->isScalarType())) {
3315           if (!X->isLValue() || !V->isLValue()) {
3316             auto NotLValueExpr = X->isLValue() ? V : X;
3317             ErrorFound = NotAnLValue;
3318             ErrorLoc = AtomicBinOp->getExprLoc();
3319             ErrorRange = AtomicBinOp->getSourceRange();
3320             NoteLoc = NotLValueExpr->getExprLoc();
3321             NoteRange = NotLValueExpr->getSourceRange();
3322           }
3323         } else if (!X->isInstantiationDependent() ||
3324                    !V->isInstantiationDependent()) {
3325           auto NotScalarExpr =
3326               (X->isInstantiationDependent() || X->getType()->isScalarType())
3327                   ? V
3328                   : X;
3329           ErrorFound = NotAScalarType;
3330           ErrorLoc = AtomicBinOp->getExprLoc();
3331           ErrorRange = AtomicBinOp->getSourceRange();
3332           NoteLoc = NotScalarExpr->getExprLoc();
3333           NoteRange = NotScalarExpr->getSourceRange();
3334         }
3335       } else {
3336         ErrorFound = NotAnAssignmentOp;
3337         ErrorLoc = AtomicBody->getExprLoc();
3338         ErrorRange = AtomicBody->getSourceRange();
3339         NoteLoc = AtomicBinOp ? AtomicBinOp->getOperatorLoc()
3340                               : AtomicBody->getExprLoc();
3341         NoteRange = AtomicBinOp ? AtomicBinOp->getSourceRange()
3342                                 : AtomicBody->getSourceRange();
3343       }
3344     } else {
3345       ErrorFound = NotAnExpression;
3346       NoteLoc = ErrorLoc = Body->getLocStart();
3347       NoteRange = ErrorRange = SourceRange(NoteLoc, NoteLoc);
3348     }
3349     if (ErrorFound != NoError) {
3350       Diag(ErrorLoc, diag::err_omp_atomic_read_not_expression_statement)
3351           << ErrorRange;
3352       Diag(NoteLoc, diag::note_omp_atomic_read_write) << ErrorFound
3353                                                       << NoteRange;
3354       return StmtError();
3355     } else if (CurContext->isDependentContext())
3356       V = X = nullptr;
3357   } else if (AtomicKind == OMPC_write) {
3358     SourceLocation ErrorLoc, NoteLoc;
3359     SourceRange ErrorRange, NoteRange;
3360     // If clause is write:
3361     //  x = expr;
3362     if (auto AtomicBody = dyn_cast<Expr>(Body)) {
3363       auto AtomicBinOp =
3364           dyn_cast<BinaryOperator>(AtomicBody->IgnoreParenImpCasts());
3365       if (AtomicBinOp && AtomicBinOp->getOpcode() == BO_Assign) {
3366         X = AtomicBinOp->getLHS();
3367         E = AtomicBinOp->getRHS();
3368         if ((X->isInstantiationDependent() || X->getType()->isScalarType()) &&
3369             (E->isInstantiationDependent() || E->getType()->isScalarType())) {
3370           if (!X->isLValue()) {
3371             ErrorFound = NotAnLValue;
3372             ErrorLoc = AtomicBinOp->getExprLoc();
3373             ErrorRange = AtomicBinOp->getSourceRange();
3374             NoteLoc = X->getExprLoc();
3375             NoteRange = X->getSourceRange();
3376           }
3377         } else if (!X->isInstantiationDependent() ||
3378                    !E->isInstantiationDependent()) {
3379           auto NotScalarExpr =
3380               (X->isInstantiationDependent() || X->getType()->isScalarType())
3381                   ? E
3382                   : X;
3383           ErrorFound = NotAScalarType;
3384           ErrorLoc = AtomicBinOp->getExprLoc();
3385           ErrorRange = AtomicBinOp->getSourceRange();
3386           NoteLoc = NotScalarExpr->getExprLoc();
3387           NoteRange = NotScalarExpr->getSourceRange();
3388         }
3389       } else {
3390         ErrorFound = NotAnAssignmentOp;
3391         ErrorLoc = AtomicBody->getExprLoc();
3392         ErrorRange = AtomicBody->getSourceRange();
3393         NoteLoc = AtomicBinOp ? AtomicBinOp->getOperatorLoc()
3394                               : AtomicBody->getExprLoc();
3395         NoteRange = AtomicBinOp ? AtomicBinOp->getSourceRange()
3396                                 : AtomicBody->getSourceRange();
3397       }
3398     } else {
3399       ErrorFound = NotAnExpression;
3400       NoteLoc = ErrorLoc = Body->getLocStart();
3401       NoteRange = ErrorRange = SourceRange(NoteLoc, NoteLoc);
3402     }
3403     if (ErrorFound != NoError) {
3404       Diag(ErrorLoc, diag::err_omp_atomic_write_not_expression_statement)
3405           << ErrorRange;
3406       Diag(NoteLoc, diag::note_omp_atomic_read_write) << ErrorFound
3407                                                       << NoteRange;
3408       return StmtError();
3409     } else if (CurContext->isDependentContext())
3410       E = X = nullptr;
3411   } else if (AtomicKind == OMPC_update || AtomicKind == OMPC_unknown) {
3412     if (!isa<Expr>(Body)) {
3413       Diag(Body->getLocStart(),
3414            diag::err_omp_atomic_update_not_expression_statement)
3415           << (AtomicKind == OMPC_update);
3416       return StmtError();
3417     }
3418   } else if (AtomicKind == OMPC_capture) {
3419     if (isa<Expr>(Body) && !isa<BinaryOperator>(Body)) {
3420       Diag(Body->getLocStart(),
3421            diag::err_omp_atomic_capture_not_expression_statement);
3422       return StmtError();
3423     } else if (!isa<Expr>(Body) && !isa<CompoundStmt>(Body)) {
3424       Diag(Body->getLocStart(),
3425            diag::err_omp_atomic_capture_not_compound_statement);
3426       return StmtError();
3427     }
3428   }
3429 
3430   getCurFunction()->setHasBranchProtectedScope();
3431 
3432   return OMPAtomicDirective::Create(Context, StartLoc, EndLoc, Clauses, AStmt,
3433                                     X, V, E);
3434 }
3435 
3436 StmtResult Sema::ActOnOpenMPTargetDirective(ArrayRef<OMPClause *> Clauses,
3437                                             Stmt *AStmt,
3438                                             SourceLocation StartLoc,
3439                                             SourceLocation EndLoc) {
3440   assert(AStmt && isa<CapturedStmt>(AStmt) && "Captured statement expected");
3441 
3442   // OpenMP [2.16, Nesting of Regions]
3443   // If specified, a teams construct must be contained within a target
3444   // construct. That target construct must contain no statements or directives
3445   // outside of the teams construct.
3446   if (DSAStack->hasInnerTeamsRegion()) {
3447     auto S = AStmt->IgnoreContainers(/*IgnoreCaptured*/ true);
3448     bool OMPTeamsFound = true;
3449     if (auto *CS = dyn_cast<CompoundStmt>(S)) {
3450       auto I = CS->body_begin();
3451       while (I != CS->body_end()) {
3452         auto OED = dyn_cast<OMPExecutableDirective>(*I);
3453         if (!OED || !isOpenMPTeamsDirective(OED->getDirectiveKind())) {
3454           OMPTeamsFound = false;
3455           break;
3456         }
3457         ++I;
3458       }
3459       assert(I != CS->body_end() && "Not found statement");
3460       S = *I;
3461     }
3462     if (!OMPTeamsFound) {
3463       Diag(StartLoc, diag::err_omp_target_contains_not_only_teams);
3464       Diag(DSAStack->getInnerTeamsRegionLoc(),
3465            diag::note_omp_nested_teams_construct_here);
3466       Diag(S->getLocStart(), diag::note_omp_nested_statement_here)
3467           << isa<OMPExecutableDirective>(S);
3468       return StmtError();
3469     }
3470   }
3471 
3472   getCurFunction()->setHasBranchProtectedScope();
3473 
3474   return OMPTargetDirective::Create(Context, StartLoc, EndLoc, Clauses, AStmt);
3475 }
3476 
3477 StmtResult Sema::ActOnOpenMPTeamsDirective(ArrayRef<OMPClause *> Clauses,
3478                                            Stmt *AStmt, SourceLocation StartLoc,
3479                                            SourceLocation EndLoc) {
3480   assert(AStmt && isa<CapturedStmt>(AStmt) && "Captured statement expected");
3481   CapturedStmt *CS = cast<CapturedStmt>(AStmt);
3482   // 1.2.2 OpenMP Language Terminology
3483   // Structured block - An executable statement with a single entry at the
3484   // top and a single exit at the bottom.
3485   // The point of exit cannot be a branch out of the structured block.
3486   // longjmp() and throw() must not violate the entry/exit criteria.
3487   CS->getCapturedDecl()->setNothrow();
3488 
3489   getCurFunction()->setHasBranchProtectedScope();
3490 
3491   return OMPTeamsDirective::Create(Context, StartLoc, EndLoc, Clauses, AStmt);
3492 }
3493 
3494 OMPClause *Sema::ActOnOpenMPSingleExprClause(OpenMPClauseKind Kind, Expr *Expr,
3495                                              SourceLocation StartLoc,
3496                                              SourceLocation LParenLoc,
3497                                              SourceLocation EndLoc) {
3498   OMPClause *Res = nullptr;
3499   switch (Kind) {
3500   case OMPC_if:
3501     Res = ActOnOpenMPIfClause(Expr, StartLoc, LParenLoc, EndLoc);
3502     break;
3503   case OMPC_final:
3504     Res = ActOnOpenMPFinalClause(Expr, StartLoc, LParenLoc, EndLoc);
3505     break;
3506   case OMPC_num_threads:
3507     Res = ActOnOpenMPNumThreadsClause(Expr, StartLoc, LParenLoc, EndLoc);
3508     break;
3509   case OMPC_safelen:
3510     Res = ActOnOpenMPSafelenClause(Expr, StartLoc, LParenLoc, EndLoc);
3511     break;
3512   case OMPC_collapse:
3513     Res = ActOnOpenMPCollapseClause(Expr, StartLoc, LParenLoc, EndLoc);
3514     break;
3515   case OMPC_default:
3516   case OMPC_proc_bind:
3517   case OMPC_schedule:
3518   case OMPC_private:
3519   case OMPC_firstprivate:
3520   case OMPC_lastprivate:
3521   case OMPC_shared:
3522   case OMPC_reduction:
3523   case OMPC_linear:
3524   case OMPC_aligned:
3525   case OMPC_copyin:
3526   case OMPC_copyprivate:
3527   case OMPC_ordered:
3528   case OMPC_nowait:
3529   case OMPC_untied:
3530   case OMPC_mergeable:
3531   case OMPC_threadprivate:
3532   case OMPC_flush:
3533   case OMPC_read:
3534   case OMPC_write:
3535   case OMPC_update:
3536   case OMPC_capture:
3537   case OMPC_seq_cst:
3538   case OMPC_unknown:
3539     llvm_unreachable("Clause is not allowed.");
3540   }
3541   return Res;
3542 }
3543 
3544 OMPClause *Sema::ActOnOpenMPIfClause(Expr *Condition, SourceLocation StartLoc,
3545                                      SourceLocation LParenLoc,
3546                                      SourceLocation EndLoc) {
3547   Expr *ValExpr = Condition;
3548   if (!Condition->isValueDependent() && !Condition->isTypeDependent() &&
3549       !Condition->isInstantiationDependent() &&
3550       !Condition->containsUnexpandedParameterPack()) {
3551     ExprResult Val = ActOnBooleanCondition(DSAStack->getCurScope(),
3552                                            Condition->getExprLoc(), Condition);
3553     if (Val.isInvalid())
3554       return nullptr;
3555 
3556     ValExpr = Val.get();
3557   }
3558 
3559   return new (Context) OMPIfClause(ValExpr, StartLoc, LParenLoc, EndLoc);
3560 }
3561 
3562 OMPClause *Sema::ActOnOpenMPFinalClause(Expr *Condition,
3563                                         SourceLocation StartLoc,
3564                                         SourceLocation LParenLoc,
3565                                         SourceLocation EndLoc) {
3566   Expr *ValExpr = Condition;
3567   if (!Condition->isValueDependent() && !Condition->isTypeDependent() &&
3568       !Condition->isInstantiationDependent() &&
3569       !Condition->containsUnexpandedParameterPack()) {
3570     ExprResult Val = ActOnBooleanCondition(DSAStack->getCurScope(),
3571                                            Condition->getExprLoc(), Condition);
3572     if (Val.isInvalid())
3573       return nullptr;
3574 
3575     ValExpr = Val.get();
3576   }
3577 
3578   return new (Context) OMPFinalClause(ValExpr, StartLoc, LParenLoc, EndLoc);
3579 }
3580 ExprResult Sema::PerformOpenMPImplicitIntegerConversion(SourceLocation Loc,
3581                                                         Expr *Op) {
3582   if (!Op)
3583     return ExprError();
3584 
3585   class IntConvertDiagnoser : public ICEConvertDiagnoser {
3586   public:
3587     IntConvertDiagnoser()
3588         : ICEConvertDiagnoser(/*AllowScopedEnumerations*/ false, false, true) {}
3589     SemaDiagnosticBuilder diagnoseNotInt(Sema &S, SourceLocation Loc,
3590                                          QualType T) override {
3591       return S.Diag(Loc, diag::err_omp_not_integral) << T;
3592     }
3593     SemaDiagnosticBuilder diagnoseIncomplete(Sema &S, SourceLocation Loc,
3594                                              QualType T) override {
3595       return S.Diag(Loc, diag::err_omp_incomplete_type) << T;
3596     }
3597     SemaDiagnosticBuilder diagnoseExplicitConv(Sema &S, SourceLocation Loc,
3598                                                QualType T,
3599                                                QualType ConvTy) override {
3600       return S.Diag(Loc, diag::err_omp_explicit_conversion) << T << ConvTy;
3601     }
3602     SemaDiagnosticBuilder noteExplicitConv(Sema &S, CXXConversionDecl *Conv,
3603                                            QualType ConvTy) override {
3604       return S.Diag(Conv->getLocation(), diag::note_omp_conversion_here)
3605              << ConvTy->isEnumeralType() << ConvTy;
3606     }
3607     SemaDiagnosticBuilder diagnoseAmbiguous(Sema &S, SourceLocation Loc,
3608                                             QualType T) override {
3609       return S.Diag(Loc, diag::err_omp_ambiguous_conversion) << T;
3610     }
3611     SemaDiagnosticBuilder noteAmbiguous(Sema &S, CXXConversionDecl *Conv,
3612                                         QualType ConvTy) override {
3613       return S.Diag(Conv->getLocation(), diag::note_omp_conversion_here)
3614              << ConvTy->isEnumeralType() << ConvTy;
3615     }
3616     SemaDiagnosticBuilder diagnoseConversion(Sema &, SourceLocation, QualType,
3617                                              QualType) override {
3618       llvm_unreachable("conversion functions are permitted");
3619     }
3620   } ConvertDiagnoser;
3621   return PerformContextualImplicitConversion(Loc, Op, ConvertDiagnoser);
3622 }
3623 
3624 OMPClause *Sema::ActOnOpenMPNumThreadsClause(Expr *NumThreads,
3625                                              SourceLocation StartLoc,
3626                                              SourceLocation LParenLoc,
3627                                              SourceLocation EndLoc) {
3628   Expr *ValExpr = NumThreads;
3629   if (!NumThreads->isValueDependent() && !NumThreads->isTypeDependent() &&
3630       !NumThreads->containsUnexpandedParameterPack()) {
3631     SourceLocation NumThreadsLoc = NumThreads->getLocStart();
3632     ExprResult Val =
3633         PerformOpenMPImplicitIntegerConversion(NumThreadsLoc, NumThreads);
3634     if (Val.isInvalid())
3635       return nullptr;
3636 
3637     ValExpr = Val.get();
3638 
3639     // OpenMP [2.5, Restrictions]
3640     //  The num_threads expression must evaluate to a positive integer value.
3641     llvm::APSInt Result;
3642     if (ValExpr->isIntegerConstantExpr(Result, Context) && Result.isSigned() &&
3643         !Result.isStrictlyPositive()) {
3644       Diag(NumThreadsLoc, diag::err_omp_negative_expression_in_clause)
3645           << "num_threads" << NumThreads->getSourceRange();
3646       return nullptr;
3647     }
3648   }
3649 
3650   return new (Context)
3651       OMPNumThreadsClause(ValExpr, StartLoc, LParenLoc, EndLoc);
3652 }
3653 
3654 ExprResult Sema::VerifyPositiveIntegerConstantInClause(Expr *E,
3655                                                        OpenMPClauseKind CKind) {
3656   if (!E)
3657     return ExprError();
3658   if (E->isValueDependent() || E->isTypeDependent() ||
3659       E->isInstantiationDependent() || E->containsUnexpandedParameterPack())
3660     return E;
3661   llvm::APSInt Result;
3662   ExprResult ICE = VerifyIntegerConstantExpression(E, &Result);
3663   if (ICE.isInvalid())
3664     return ExprError();
3665   if (!Result.isStrictlyPositive()) {
3666     Diag(E->getExprLoc(), diag::err_omp_negative_expression_in_clause)
3667         << getOpenMPClauseName(CKind) << E->getSourceRange();
3668     return ExprError();
3669   }
3670   if (CKind == OMPC_aligned && !Result.isPowerOf2()) {
3671     Diag(E->getExprLoc(), diag::warn_omp_alignment_not_power_of_two)
3672         << E->getSourceRange();
3673     return ExprError();
3674   }
3675   return ICE;
3676 }
3677 
3678 OMPClause *Sema::ActOnOpenMPSafelenClause(Expr *Len, SourceLocation StartLoc,
3679                                           SourceLocation LParenLoc,
3680                                           SourceLocation EndLoc) {
3681   // OpenMP [2.8.1, simd construct, Description]
3682   // The parameter of the safelen clause must be a constant
3683   // positive integer expression.
3684   ExprResult Safelen = VerifyPositiveIntegerConstantInClause(Len, OMPC_safelen);
3685   if (Safelen.isInvalid())
3686     return nullptr;
3687   return new (Context)
3688       OMPSafelenClause(Safelen.get(), StartLoc, LParenLoc, EndLoc);
3689 }
3690 
3691 OMPClause *Sema::ActOnOpenMPCollapseClause(Expr *NumForLoops,
3692                                            SourceLocation StartLoc,
3693                                            SourceLocation LParenLoc,
3694                                            SourceLocation EndLoc) {
3695   // OpenMP [2.7.1, loop construct, Description]
3696   // OpenMP [2.8.1, simd construct, Description]
3697   // OpenMP [2.9.6, distribute construct, Description]
3698   // The parameter of the collapse clause must be a constant
3699   // positive integer expression.
3700   ExprResult NumForLoopsResult =
3701       VerifyPositiveIntegerConstantInClause(NumForLoops, OMPC_collapse);
3702   if (NumForLoopsResult.isInvalid())
3703     return nullptr;
3704   return new (Context)
3705       OMPCollapseClause(NumForLoopsResult.get(), StartLoc, LParenLoc, EndLoc);
3706 }
3707 
3708 OMPClause *Sema::ActOnOpenMPSimpleClause(
3709     OpenMPClauseKind Kind, unsigned Argument, SourceLocation ArgumentLoc,
3710     SourceLocation StartLoc, SourceLocation LParenLoc, SourceLocation EndLoc) {
3711   OMPClause *Res = nullptr;
3712   switch (Kind) {
3713   case OMPC_default:
3714     Res =
3715         ActOnOpenMPDefaultClause(static_cast<OpenMPDefaultClauseKind>(Argument),
3716                                  ArgumentLoc, StartLoc, LParenLoc, EndLoc);
3717     break;
3718   case OMPC_proc_bind:
3719     Res = ActOnOpenMPProcBindClause(
3720         static_cast<OpenMPProcBindClauseKind>(Argument), ArgumentLoc, StartLoc,
3721         LParenLoc, EndLoc);
3722     break;
3723   case OMPC_if:
3724   case OMPC_final:
3725   case OMPC_num_threads:
3726   case OMPC_safelen:
3727   case OMPC_collapse:
3728   case OMPC_schedule:
3729   case OMPC_private:
3730   case OMPC_firstprivate:
3731   case OMPC_lastprivate:
3732   case OMPC_shared:
3733   case OMPC_reduction:
3734   case OMPC_linear:
3735   case OMPC_aligned:
3736   case OMPC_copyin:
3737   case OMPC_copyprivate:
3738   case OMPC_ordered:
3739   case OMPC_nowait:
3740   case OMPC_untied:
3741   case OMPC_mergeable:
3742   case OMPC_threadprivate:
3743   case OMPC_flush:
3744   case OMPC_read:
3745   case OMPC_write:
3746   case OMPC_update:
3747   case OMPC_capture:
3748   case OMPC_seq_cst:
3749   case OMPC_unknown:
3750     llvm_unreachable("Clause is not allowed.");
3751   }
3752   return Res;
3753 }
3754 
3755 OMPClause *Sema::ActOnOpenMPDefaultClause(OpenMPDefaultClauseKind Kind,
3756                                           SourceLocation KindKwLoc,
3757                                           SourceLocation StartLoc,
3758                                           SourceLocation LParenLoc,
3759                                           SourceLocation EndLoc) {
3760   if (Kind == OMPC_DEFAULT_unknown) {
3761     std::string Values;
3762     static_assert(OMPC_DEFAULT_unknown > 0,
3763                   "OMPC_DEFAULT_unknown not greater than 0");
3764     std::string Sep(", ");
3765     for (unsigned i = 0; i < OMPC_DEFAULT_unknown; ++i) {
3766       Values += "'";
3767       Values += getOpenMPSimpleClauseTypeName(OMPC_default, i);
3768       Values += "'";
3769       switch (i) {
3770       case OMPC_DEFAULT_unknown - 2:
3771         Values += " or ";
3772         break;
3773       case OMPC_DEFAULT_unknown - 1:
3774         break;
3775       default:
3776         Values += Sep;
3777         break;
3778       }
3779     }
3780     Diag(KindKwLoc, diag::err_omp_unexpected_clause_value)
3781         << Values << getOpenMPClauseName(OMPC_default);
3782     return nullptr;
3783   }
3784   switch (Kind) {
3785   case OMPC_DEFAULT_none:
3786     DSAStack->setDefaultDSANone(KindKwLoc);
3787     break;
3788   case OMPC_DEFAULT_shared:
3789     DSAStack->setDefaultDSAShared(KindKwLoc);
3790     break;
3791   case OMPC_DEFAULT_unknown:
3792     llvm_unreachable("Clause kind is not allowed.");
3793     break;
3794   }
3795   return new (Context)
3796       OMPDefaultClause(Kind, KindKwLoc, StartLoc, LParenLoc, EndLoc);
3797 }
3798 
3799 OMPClause *Sema::ActOnOpenMPProcBindClause(OpenMPProcBindClauseKind Kind,
3800                                            SourceLocation KindKwLoc,
3801                                            SourceLocation StartLoc,
3802                                            SourceLocation LParenLoc,
3803                                            SourceLocation EndLoc) {
3804   if (Kind == OMPC_PROC_BIND_unknown) {
3805     std::string Values;
3806     std::string Sep(", ");
3807     for (unsigned i = 0; i < OMPC_PROC_BIND_unknown; ++i) {
3808       Values += "'";
3809       Values += getOpenMPSimpleClauseTypeName(OMPC_proc_bind, i);
3810       Values += "'";
3811       switch (i) {
3812       case OMPC_PROC_BIND_unknown - 2:
3813         Values += " or ";
3814         break;
3815       case OMPC_PROC_BIND_unknown - 1:
3816         break;
3817       default:
3818         Values += Sep;
3819         break;
3820       }
3821     }
3822     Diag(KindKwLoc, diag::err_omp_unexpected_clause_value)
3823         << Values << getOpenMPClauseName(OMPC_proc_bind);
3824     return nullptr;
3825   }
3826   return new (Context)
3827       OMPProcBindClause(Kind, KindKwLoc, StartLoc, LParenLoc, EndLoc);
3828 }
3829 
3830 OMPClause *Sema::ActOnOpenMPSingleExprWithArgClause(
3831     OpenMPClauseKind Kind, unsigned Argument, Expr *Expr,
3832     SourceLocation StartLoc, SourceLocation LParenLoc,
3833     SourceLocation ArgumentLoc, SourceLocation CommaLoc,
3834     SourceLocation EndLoc) {
3835   OMPClause *Res = nullptr;
3836   switch (Kind) {
3837   case OMPC_schedule:
3838     Res = ActOnOpenMPScheduleClause(
3839         static_cast<OpenMPScheduleClauseKind>(Argument), Expr, StartLoc,
3840         LParenLoc, ArgumentLoc, CommaLoc, EndLoc);
3841     break;
3842   case OMPC_if:
3843   case OMPC_final:
3844   case OMPC_num_threads:
3845   case OMPC_safelen:
3846   case OMPC_collapse:
3847   case OMPC_default:
3848   case OMPC_proc_bind:
3849   case OMPC_private:
3850   case OMPC_firstprivate:
3851   case OMPC_lastprivate:
3852   case OMPC_shared:
3853   case OMPC_reduction:
3854   case OMPC_linear:
3855   case OMPC_aligned:
3856   case OMPC_copyin:
3857   case OMPC_copyprivate:
3858   case OMPC_ordered:
3859   case OMPC_nowait:
3860   case OMPC_untied:
3861   case OMPC_mergeable:
3862   case OMPC_threadprivate:
3863   case OMPC_flush:
3864   case OMPC_read:
3865   case OMPC_write:
3866   case OMPC_update:
3867   case OMPC_capture:
3868   case OMPC_seq_cst:
3869   case OMPC_unknown:
3870     llvm_unreachable("Clause is not allowed.");
3871   }
3872   return Res;
3873 }
3874 
3875 OMPClause *Sema::ActOnOpenMPScheduleClause(
3876     OpenMPScheduleClauseKind Kind, Expr *ChunkSize, SourceLocation StartLoc,
3877     SourceLocation LParenLoc, SourceLocation KindLoc, SourceLocation CommaLoc,
3878     SourceLocation EndLoc) {
3879   if (Kind == OMPC_SCHEDULE_unknown) {
3880     std::string Values;
3881     std::string Sep(", ");
3882     for (unsigned i = 0; i < OMPC_SCHEDULE_unknown; ++i) {
3883       Values += "'";
3884       Values += getOpenMPSimpleClauseTypeName(OMPC_schedule, i);
3885       Values += "'";
3886       switch (i) {
3887       case OMPC_SCHEDULE_unknown - 2:
3888         Values += " or ";
3889         break;
3890       case OMPC_SCHEDULE_unknown - 1:
3891         break;
3892       default:
3893         Values += Sep;
3894         break;
3895       }
3896     }
3897     Diag(KindLoc, diag::err_omp_unexpected_clause_value)
3898         << Values << getOpenMPClauseName(OMPC_schedule);
3899     return nullptr;
3900   }
3901   Expr *ValExpr = ChunkSize;
3902   if (ChunkSize) {
3903     if (!ChunkSize->isValueDependent() && !ChunkSize->isTypeDependent() &&
3904         !ChunkSize->isInstantiationDependent() &&
3905         !ChunkSize->containsUnexpandedParameterPack()) {
3906       SourceLocation ChunkSizeLoc = ChunkSize->getLocStart();
3907       ExprResult Val =
3908           PerformOpenMPImplicitIntegerConversion(ChunkSizeLoc, ChunkSize);
3909       if (Val.isInvalid())
3910         return nullptr;
3911 
3912       ValExpr = Val.get();
3913 
3914       // OpenMP [2.7.1, Restrictions]
3915       //  chunk_size must be a loop invariant integer expression with a positive
3916       //  value.
3917       llvm::APSInt Result;
3918       if (ValExpr->isIntegerConstantExpr(Result, Context) &&
3919           Result.isSigned() && !Result.isStrictlyPositive()) {
3920         Diag(ChunkSizeLoc, diag::err_omp_negative_expression_in_clause)
3921             << "schedule" << ChunkSize->getSourceRange();
3922         return nullptr;
3923       }
3924     }
3925   }
3926 
3927   return new (Context) OMPScheduleClause(StartLoc, LParenLoc, KindLoc, CommaLoc,
3928                                          EndLoc, Kind, ValExpr);
3929 }
3930 
3931 OMPClause *Sema::ActOnOpenMPClause(OpenMPClauseKind Kind,
3932                                    SourceLocation StartLoc,
3933                                    SourceLocation EndLoc) {
3934   OMPClause *Res = nullptr;
3935   switch (Kind) {
3936   case OMPC_ordered:
3937     Res = ActOnOpenMPOrderedClause(StartLoc, EndLoc);
3938     break;
3939   case OMPC_nowait:
3940     Res = ActOnOpenMPNowaitClause(StartLoc, EndLoc);
3941     break;
3942   case OMPC_untied:
3943     Res = ActOnOpenMPUntiedClause(StartLoc, EndLoc);
3944     break;
3945   case OMPC_mergeable:
3946     Res = ActOnOpenMPMergeableClause(StartLoc, EndLoc);
3947     break;
3948   case OMPC_read:
3949     Res = ActOnOpenMPReadClause(StartLoc, EndLoc);
3950     break;
3951   case OMPC_write:
3952     Res = ActOnOpenMPWriteClause(StartLoc, EndLoc);
3953     break;
3954   case OMPC_update:
3955     Res = ActOnOpenMPUpdateClause(StartLoc, EndLoc);
3956     break;
3957   case OMPC_capture:
3958     Res = ActOnOpenMPCaptureClause(StartLoc, EndLoc);
3959     break;
3960   case OMPC_seq_cst:
3961     Res = ActOnOpenMPSeqCstClause(StartLoc, EndLoc);
3962     break;
3963   case OMPC_if:
3964   case OMPC_final:
3965   case OMPC_num_threads:
3966   case OMPC_safelen:
3967   case OMPC_collapse:
3968   case OMPC_schedule:
3969   case OMPC_private:
3970   case OMPC_firstprivate:
3971   case OMPC_lastprivate:
3972   case OMPC_shared:
3973   case OMPC_reduction:
3974   case OMPC_linear:
3975   case OMPC_aligned:
3976   case OMPC_copyin:
3977   case OMPC_copyprivate:
3978   case OMPC_default:
3979   case OMPC_proc_bind:
3980   case OMPC_threadprivate:
3981   case OMPC_flush:
3982   case OMPC_unknown:
3983     llvm_unreachable("Clause is not allowed.");
3984   }
3985   return Res;
3986 }
3987 
3988 OMPClause *Sema::ActOnOpenMPOrderedClause(SourceLocation StartLoc,
3989                                           SourceLocation EndLoc) {
3990   DSAStack->setOrderedRegion();
3991   return new (Context) OMPOrderedClause(StartLoc, EndLoc);
3992 }
3993 
3994 OMPClause *Sema::ActOnOpenMPNowaitClause(SourceLocation StartLoc,
3995                                          SourceLocation EndLoc) {
3996   return new (Context) OMPNowaitClause(StartLoc, EndLoc);
3997 }
3998 
3999 OMPClause *Sema::ActOnOpenMPUntiedClause(SourceLocation StartLoc,
4000                                          SourceLocation EndLoc) {
4001   return new (Context) OMPUntiedClause(StartLoc, EndLoc);
4002 }
4003 
4004 OMPClause *Sema::ActOnOpenMPMergeableClause(SourceLocation StartLoc,
4005                                             SourceLocation EndLoc) {
4006   return new (Context) OMPMergeableClause(StartLoc, EndLoc);
4007 }
4008 
4009 OMPClause *Sema::ActOnOpenMPReadClause(SourceLocation StartLoc,
4010                                        SourceLocation EndLoc) {
4011   return new (Context) OMPReadClause(StartLoc, EndLoc);
4012 }
4013 
4014 OMPClause *Sema::ActOnOpenMPWriteClause(SourceLocation StartLoc,
4015                                         SourceLocation EndLoc) {
4016   return new (Context) OMPWriteClause(StartLoc, EndLoc);
4017 }
4018 
4019 OMPClause *Sema::ActOnOpenMPUpdateClause(SourceLocation StartLoc,
4020                                          SourceLocation EndLoc) {
4021   return new (Context) OMPUpdateClause(StartLoc, EndLoc);
4022 }
4023 
4024 OMPClause *Sema::ActOnOpenMPCaptureClause(SourceLocation StartLoc,
4025                                           SourceLocation EndLoc) {
4026   return new (Context) OMPCaptureClause(StartLoc, EndLoc);
4027 }
4028 
4029 OMPClause *Sema::ActOnOpenMPSeqCstClause(SourceLocation StartLoc,
4030                                          SourceLocation EndLoc) {
4031   return new (Context) OMPSeqCstClause(StartLoc, EndLoc);
4032 }
4033 
4034 OMPClause *Sema::ActOnOpenMPVarListClause(
4035     OpenMPClauseKind Kind, ArrayRef<Expr *> VarList, Expr *TailExpr,
4036     SourceLocation StartLoc, SourceLocation LParenLoc, SourceLocation ColonLoc,
4037     SourceLocation EndLoc, CXXScopeSpec &ReductionIdScopeSpec,
4038     const DeclarationNameInfo &ReductionId) {
4039   OMPClause *Res = nullptr;
4040   switch (Kind) {
4041   case OMPC_private:
4042     Res = ActOnOpenMPPrivateClause(VarList, StartLoc, LParenLoc, EndLoc);
4043     break;
4044   case OMPC_firstprivate:
4045     Res = ActOnOpenMPFirstprivateClause(VarList, StartLoc, LParenLoc, EndLoc);
4046     break;
4047   case OMPC_lastprivate:
4048     Res = ActOnOpenMPLastprivateClause(VarList, StartLoc, LParenLoc, EndLoc);
4049     break;
4050   case OMPC_shared:
4051     Res = ActOnOpenMPSharedClause(VarList, StartLoc, LParenLoc, EndLoc);
4052     break;
4053   case OMPC_reduction:
4054     Res = ActOnOpenMPReductionClause(VarList, StartLoc, LParenLoc, ColonLoc,
4055                                      EndLoc, ReductionIdScopeSpec, ReductionId);
4056     break;
4057   case OMPC_linear:
4058     Res = ActOnOpenMPLinearClause(VarList, TailExpr, StartLoc, LParenLoc,
4059                                   ColonLoc, EndLoc);
4060     break;
4061   case OMPC_aligned:
4062     Res = ActOnOpenMPAlignedClause(VarList, TailExpr, StartLoc, LParenLoc,
4063                                    ColonLoc, EndLoc);
4064     break;
4065   case OMPC_copyin:
4066     Res = ActOnOpenMPCopyinClause(VarList, StartLoc, LParenLoc, EndLoc);
4067     break;
4068   case OMPC_copyprivate:
4069     Res = ActOnOpenMPCopyprivateClause(VarList, StartLoc, LParenLoc, EndLoc);
4070     break;
4071   case OMPC_flush:
4072     Res = ActOnOpenMPFlushClause(VarList, StartLoc, LParenLoc, EndLoc);
4073     break;
4074   case OMPC_if:
4075   case OMPC_final:
4076   case OMPC_num_threads:
4077   case OMPC_safelen:
4078   case OMPC_collapse:
4079   case OMPC_default:
4080   case OMPC_proc_bind:
4081   case OMPC_schedule:
4082   case OMPC_ordered:
4083   case OMPC_nowait:
4084   case OMPC_untied:
4085   case OMPC_mergeable:
4086   case OMPC_threadprivate:
4087   case OMPC_read:
4088   case OMPC_write:
4089   case OMPC_update:
4090   case OMPC_capture:
4091   case OMPC_seq_cst:
4092   case OMPC_unknown:
4093     llvm_unreachable("Clause is not allowed.");
4094   }
4095   return Res;
4096 }
4097 
4098 OMPClause *Sema::ActOnOpenMPPrivateClause(ArrayRef<Expr *> VarList,
4099                                           SourceLocation StartLoc,
4100                                           SourceLocation LParenLoc,
4101                                           SourceLocation EndLoc) {
4102   SmallVector<Expr *, 8> Vars;
4103   SmallVector<Expr *, 8> PrivateCopies;
4104   for (auto &RefExpr : VarList) {
4105     assert(RefExpr && "NULL expr in OpenMP private clause.");
4106     if (isa<DependentScopeDeclRefExpr>(RefExpr)) {
4107       // It will be analyzed later.
4108       Vars.push_back(RefExpr);
4109       PrivateCopies.push_back(nullptr);
4110       continue;
4111     }
4112 
4113     SourceLocation ELoc = RefExpr->getExprLoc();
4114     // OpenMP [2.1, C/C++]
4115     //  A list item is a variable name.
4116     // OpenMP  [2.9.3.3, Restrictions, p.1]
4117     //  A variable that is part of another variable (as an array or
4118     //  structure element) cannot appear in a private clause.
4119     DeclRefExpr *DE = dyn_cast_or_null<DeclRefExpr>(RefExpr);
4120     if (!DE || !isa<VarDecl>(DE->getDecl())) {
4121       Diag(ELoc, diag::err_omp_expected_var_name) << RefExpr->getSourceRange();
4122       continue;
4123     }
4124     Decl *D = DE->getDecl();
4125     VarDecl *VD = cast<VarDecl>(D);
4126 
4127     QualType Type = VD->getType();
4128     if (Type->isDependentType() || Type->isInstantiationDependentType()) {
4129       // It will be analyzed later.
4130       Vars.push_back(DE);
4131       PrivateCopies.push_back(nullptr);
4132       continue;
4133     }
4134 
4135     // OpenMP [2.9.3.3, Restrictions, C/C++, p.3]
4136     //  A variable that appears in a private clause must not have an incomplete
4137     //  type or a reference type.
4138     if (RequireCompleteType(ELoc, Type,
4139                             diag::err_omp_private_incomplete_type)) {
4140       continue;
4141     }
4142     if (Type->isReferenceType()) {
4143       Diag(ELoc, diag::err_omp_clause_ref_type_arg)
4144           << getOpenMPClauseName(OMPC_private) << Type;
4145       bool IsDecl =
4146           VD->isThisDeclarationADefinition(Context) == VarDecl::DeclarationOnly;
4147       Diag(VD->getLocation(),
4148            IsDecl ? diag::note_previous_decl : diag::note_defined_here)
4149           << VD;
4150       continue;
4151     }
4152 
4153     // OpenMP [2.9.3.3, Restrictions, C/C++, p.1]
4154     //  A variable of class type (or array thereof) that appears in a private
4155     //  clause requires an accessible, unambiguous default constructor for the
4156     //  class type.
4157     while (Type->isArrayType()) {
4158       Type = cast<ArrayType>(Type.getTypePtr())->getElementType();
4159     }
4160 
4161     // OpenMP [2.9.1.1, Data-sharing Attribute Rules for Variables Referenced
4162     // in a Construct]
4163     //  Variables with the predetermined data-sharing attributes may not be
4164     //  listed in data-sharing attributes clauses, except for the cases
4165     //  listed below. For these exceptions only, listing a predetermined
4166     //  variable in a data-sharing attribute clause is allowed and overrides
4167     //  the variable's predetermined data-sharing attributes.
4168     DSAStackTy::DSAVarData DVar = DSAStack->getTopDSA(VD, false);
4169     if (DVar.CKind != OMPC_unknown && DVar.CKind != OMPC_private) {
4170       Diag(ELoc, diag::err_omp_wrong_dsa) << getOpenMPClauseName(DVar.CKind)
4171                                           << getOpenMPClauseName(OMPC_private);
4172       ReportOriginalDSA(*this, DSAStack, VD, DVar);
4173       continue;
4174     }
4175 
4176     // Generate helper private variable and initialize it with the default
4177     // value. The address of the original variable is replaced by the address of
4178     // the new private variable in CodeGen. This new variable is not added to
4179     // IdResolver, so the code in the OpenMP region uses original variable for
4180     // proper diagnostics.
4181     auto VDPrivate =
4182         VarDecl::Create(Context, CurContext, DE->getLocStart(),
4183                         DE->getExprLoc(), VD->getIdentifier(), VD->getType(),
4184                         VD->getTypeSourceInfo(), /*S*/ SC_Auto);
4185     ActOnUninitializedDecl(VDPrivate, /*TypeMayContainAuto*/ false);
4186     if (VDPrivate->isInvalidDecl())
4187       continue;
4188     CurContext->addDecl(VDPrivate);
4189     auto VDPrivateRefExpr =
4190         DeclRefExpr::Create(Context, /*QualifierLoc*/ NestedNameSpecifierLoc(),
4191                             /*TemplateKWLoc*/ SourceLocation(), VDPrivate,
4192                             /*RefersToEnclosingVariableOrCapture*/ false,
4193                             /*NameLoc*/ SourceLocation(), DE->getType(),
4194                             /*VK*/ VK_LValue);
4195 
4196     DSAStack->addDSA(VD, DE, OMPC_private);
4197     Vars.push_back(DE);
4198     PrivateCopies.push_back(VDPrivateRefExpr);
4199   }
4200 
4201   if (Vars.empty())
4202     return nullptr;
4203 
4204   return OMPPrivateClause::Create(Context, StartLoc, LParenLoc, EndLoc, Vars,
4205                                   PrivateCopies);
4206 }
4207 
4208 namespace {
4209 class DiagsUninitializedSeveretyRAII {
4210 private:
4211   DiagnosticsEngine &Diags;
4212   SourceLocation SavedLoc;
4213   bool IsIgnored;
4214 
4215 public:
4216   DiagsUninitializedSeveretyRAII(DiagnosticsEngine &Diags, SourceLocation Loc,
4217                                  bool IsIgnored)
4218       : Diags(Diags), SavedLoc(Loc), IsIgnored(IsIgnored) {
4219     if (!IsIgnored) {
4220       Diags.setSeverity(/*Diag*/ diag::warn_uninit_self_reference_in_init,
4221                         /*Map*/ diag::Severity::Ignored, Loc);
4222     }
4223   }
4224   ~DiagsUninitializedSeveretyRAII() {
4225     if (!IsIgnored)
4226       Diags.popMappings(SavedLoc);
4227   }
4228 };
4229 }
4230 
4231 OMPClause *Sema::ActOnOpenMPFirstprivateClause(ArrayRef<Expr *> VarList,
4232                                                SourceLocation StartLoc,
4233                                                SourceLocation LParenLoc,
4234                                                SourceLocation EndLoc) {
4235   SmallVector<Expr *, 8> Vars;
4236   SmallVector<Expr *, 8> PrivateCopies;
4237   SmallVector<Expr *, 8> Inits;
4238   bool IsImplicitClause =
4239       StartLoc.isInvalid() && LParenLoc.isInvalid() && EndLoc.isInvalid();
4240   auto ImplicitClauseLoc = DSAStack->getConstructLoc();
4241 
4242   for (auto &RefExpr : VarList) {
4243     assert(RefExpr && "NULL expr in OpenMP firstprivate clause.");
4244     if (isa<DependentScopeDeclRefExpr>(RefExpr)) {
4245       // It will be analyzed later.
4246       Vars.push_back(RefExpr);
4247       PrivateCopies.push_back(nullptr);
4248       Inits.push_back(nullptr);
4249       continue;
4250     }
4251 
4252     SourceLocation ELoc =
4253         IsImplicitClause ? ImplicitClauseLoc : RefExpr->getExprLoc();
4254     // OpenMP [2.1, C/C++]
4255     //  A list item is a variable name.
4256     // OpenMP  [2.9.3.3, Restrictions, p.1]
4257     //  A variable that is part of another variable (as an array or
4258     //  structure element) cannot appear in a private clause.
4259     DeclRefExpr *DE = dyn_cast_or_null<DeclRefExpr>(RefExpr);
4260     if (!DE || !isa<VarDecl>(DE->getDecl())) {
4261       Diag(ELoc, diag::err_omp_expected_var_name) << RefExpr->getSourceRange();
4262       continue;
4263     }
4264     Decl *D = DE->getDecl();
4265     VarDecl *VD = cast<VarDecl>(D);
4266 
4267     QualType Type = VD->getType();
4268     if (Type->isDependentType() || Type->isInstantiationDependentType()) {
4269       // It will be analyzed later.
4270       Vars.push_back(DE);
4271       PrivateCopies.push_back(nullptr);
4272       Inits.push_back(nullptr);
4273       continue;
4274     }
4275 
4276     // OpenMP [2.9.3.3, Restrictions, C/C++, p.3]
4277     //  A variable that appears in a private clause must not have an incomplete
4278     //  type or a reference type.
4279     if (RequireCompleteType(ELoc, Type,
4280                             diag::err_omp_firstprivate_incomplete_type)) {
4281       continue;
4282     }
4283     if (Type->isReferenceType()) {
4284       if (IsImplicitClause) {
4285         Diag(ImplicitClauseLoc,
4286              diag::err_omp_task_predetermined_firstprivate_ref_type_arg)
4287             << Type;
4288         Diag(RefExpr->getExprLoc(), diag::note_used_here);
4289       } else {
4290         Diag(ELoc, diag::err_omp_clause_ref_type_arg)
4291             << getOpenMPClauseName(OMPC_firstprivate) << Type;
4292       }
4293       bool IsDecl =
4294           VD->isThisDeclarationADefinition(Context) == VarDecl::DeclarationOnly;
4295       Diag(VD->getLocation(),
4296            IsDecl ? diag::note_previous_decl : diag::note_defined_here)
4297           << VD;
4298       continue;
4299     }
4300 
4301     // OpenMP [2.9.3.4, Restrictions, C/C++, p.1]
4302     //  A variable of class type (or array thereof) that appears in a private
4303     //  clause requires an accessible, unambiguous copy constructor for the
4304     //  class type.
4305     Type = Context.getBaseElementType(Type);
4306 
4307     // If an implicit firstprivate variable found it was checked already.
4308     if (!IsImplicitClause) {
4309       DSAStackTy::DSAVarData DVar = DSAStack->getTopDSA(VD, false);
4310       Type = Type.getNonReferenceType().getCanonicalType();
4311       bool IsConstant = Type.isConstant(Context);
4312       Type = Context.getBaseElementType(Type);
4313       // OpenMP [2.4.13, Data-sharing Attribute Clauses]
4314       //  A list item that specifies a given variable may not appear in more
4315       // than one clause on the same directive, except that a variable may be
4316       //  specified in both firstprivate and lastprivate clauses.
4317       if (DVar.CKind != OMPC_unknown && DVar.CKind != OMPC_firstprivate &&
4318           DVar.CKind != OMPC_lastprivate && DVar.RefExpr) {
4319         Diag(ELoc, diag::err_omp_wrong_dsa)
4320             << getOpenMPClauseName(DVar.CKind)
4321             << getOpenMPClauseName(OMPC_firstprivate);
4322         ReportOriginalDSA(*this, DSAStack, VD, DVar);
4323         continue;
4324       }
4325 
4326       // OpenMP [2.9.1.1, Data-sharing Attribute Rules for Variables Referenced
4327       // in a Construct]
4328       //  Variables with the predetermined data-sharing attributes may not be
4329       //  listed in data-sharing attributes clauses, except for the cases
4330       //  listed below. For these exceptions only, listing a predetermined
4331       //  variable in a data-sharing attribute clause is allowed and overrides
4332       //  the variable's predetermined data-sharing attributes.
4333       // OpenMP [2.9.1.1, Data-sharing Attribute Rules for Variables Referenced
4334       // in a Construct, C/C++, p.2]
4335       //  Variables with const-qualified type having no mutable member may be
4336       //  listed in a firstprivate clause, even if they are static data members.
4337       if (!(IsConstant || VD->isStaticDataMember()) && !DVar.RefExpr &&
4338           DVar.CKind != OMPC_unknown && DVar.CKind != OMPC_shared) {
4339         Diag(ELoc, diag::err_omp_wrong_dsa)
4340             << getOpenMPClauseName(DVar.CKind)
4341             << getOpenMPClauseName(OMPC_firstprivate);
4342         ReportOriginalDSA(*this, DSAStack, VD, DVar);
4343         continue;
4344       }
4345 
4346       OpenMPDirectiveKind CurrDir = DSAStack->getCurrentDirective();
4347       // OpenMP [2.9.3.4, Restrictions, p.2]
4348       //  A list item that is private within a parallel region must not appear
4349       //  in a firstprivate clause on a worksharing construct if any of the
4350       //  worksharing regions arising from the worksharing construct ever bind
4351       //  to any of the parallel regions arising from the parallel construct.
4352       if (isOpenMPWorksharingDirective(CurrDir) &&
4353           !isOpenMPParallelDirective(CurrDir)) {
4354         DVar = DSAStack->getImplicitDSA(VD, true);
4355         if (DVar.CKind != OMPC_shared &&
4356             (isOpenMPParallelDirective(DVar.DKind) ||
4357              DVar.DKind == OMPD_unknown)) {
4358           Diag(ELoc, diag::err_omp_required_access)
4359               << getOpenMPClauseName(OMPC_firstprivate)
4360               << getOpenMPClauseName(OMPC_shared);
4361           ReportOriginalDSA(*this, DSAStack, VD, DVar);
4362           continue;
4363         }
4364       }
4365       // OpenMP [2.9.3.4, Restrictions, p.3]
4366       //  A list item that appears in a reduction clause of a parallel construct
4367       //  must not appear in a firstprivate clause on a worksharing or task
4368       //  construct if any of the worksharing or task regions arising from the
4369       //  worksharing or task construct ever bind to any of the parallel regions
4370       //  arising from the parallel construct.
4371       // OpenMP [2.9.3.4, Restrictions, p.4]
4372       //  A list item that appears in a reduction clause in worksharing
4373       //  construct must not appear in a firstprivate clause in a task construct
4374       //  encountered during execution of any of the worksharing regions arising
4375       //  from the worksharing construct.
4376       if (CurrDir == OMPD_task) {
4377         DVar =
4378             DSAStack->hasInnermostDSA(VD, MatchesAnyClause(OMPC_reduction),
4379                                       [](OpenMPDirectiveKind K) -> bool {
4380                                         return isOpenMPParallelDirective(K) ||
4381                                                isOpenMPWorksharingDirective(K);
4382                                       },
4383                                       false);
4384         if (DVar.CKind == OMPC_reduction &&
4385             (isOpenMPParallelDirective(DVar.DKind) ||
4386              isOpenMPWorksharingDirective(DVar.DKind))) {
4387           Diag(ELoc, diag::err_omp_parallel_reduction_in_task_firstprivate)
4388               << getOpenMPDirectiveName(DVar.DKind);
4389           ReportOriginalDSA(*this, DSAStack, VD, DVar);
4390           continue;
4391         }
4392       }
4393     }
4394 
4395     Type = Type.getUnqualifiedType();
4396     auto VDPrivate = VarDecl::Create(Context, CurContext, DE->getLocStart(),
4397                                      ELoc, VD->getIdentifier(), VD->getType(),
4398                                      VD->getTypeSourceInfo(), /*S*/ SC_Auto);
4399     // Generate helper private variable and initialize it with the value of the
4400     // original variable. The address of the original variable is replaced by
4401     // the address of the new private variable in the CodeGen. This new variable
4402     // is not added to IdResolver, so the code in the OpenMP region uses
4403     // original variable for proper diagnostics and variable capturing.
4404     Expr *VDInitRefExpr = nullptr;
4405     // For arrays generate initializer for single element and replace it by the
4406     // original array element in CodeGen.
4407     if (DE->getType()->isArrayType()) {
4408       auto VDInit = VarDecl::Create(Context, CurContext, DE->getLocStart(),
4409                                     ELoc, VD->getIdentifier(), Type,
4410                                     VD->getTypeSourceInfo(), /*S*/ SC_Auto);
4411       CurContext->addHiddenDecl(VDInit);
4412       VDInitRefExpr = DeclRefExpr::Create(
4413           Context, /*QualifierLoc*/ NestedNameSpecifierLoc(),
4414           /*TemplateKWLoc*/ SourceLocation(), VDInit,
4415           /*RefersToEnclosingVariableOrCapture*/ true, ELoc, Type,
4416           /*VK*/ VK_LValue);
4417       VDInit->setIsUsed();
4418       auto Init = DefaultLvalueConversion(VDInitRefExpr).get();
4419       InitializedEntity Entity = InitializedEntity::InitializeVariable(VDInit);
4420       InitializationKind Kind = InitializationKind::CreateCopy(ELoc, ELoc);
4421 
4422       InitializationSequence InitSeq(*this, Entity, Kind, Init);
4423       ExprResult Result = InitSeq.Perform(*this, Entity, Kind, Init);
4424       if (Result.isInvalid())
4425         VDPrivate->setInvalidDecl();
4426       else
4427         VDPrivate->setInit(Result.getAs<Expr>());
4428     } else {
4429       AddInitializerToDecl(
4430           VDPrivate,
4431           DefaultLvalueConversion(
4432               DeclRefExpr::Create(Context, NestedNameSpecifierLoc(),
4433                                   SourceLocation(), DE->getDecl(),
4434                                   /*RefersToEnclosingVariableOrCapture=*/true,
4435                                   DE->getExprLoc(), DE->getType(),
4436                                   /*VK=*/VK_LValue)).get(),
4437           /*DirectInit=*/false, /*TypeMayContainAuto=*/false);
4438     }
4439     if (VDPrivate->isInvalidDecl()) {
4440       if (IsImplicitClause) {
4441         Diag(DE->getExprLoc(),
4442              diag::note_omp_task_predetermined_firstprivate_here);
4443       }
4444       continue;
4445     }
4446     CurContext->addDecl(VDPrivate);
4447     auto VDPrivateRefExpr =
4448         DeclRefExpr::Create(Context, /*QualifierLoc*/ NestedNameSpecifierLoc(),
4449                             /*TemplateKWLoc*/ SourceLocation(), VDPrivate,
4450                             /*RefersToEnclosingVariableOrCapture*/ false,
4451                             DE->getLocStart(), DE->getType(),
4452                             /*VK*/ VK_LValue);
4453     DSAStack->addDSA(VD, DE, OMPC_firstprivate);
4454     Vars.push_back(DE);
4455     PrivateCopies.push_back(VDPrivateRefExpr);
4456     Inits.push_back(VDInitRefExpr);
4457   }
4458 
4459   if (Vars.empty())
4460     return nullptr;
4461 
4462   return OMPFirstprivateClause::Create(Context, StartLoc, LParenLoc, EndLoc,
4463                                        Vars, PrivateCopies, Inits);
4464 }
4465 
4466 OMPClause *Sema::ActOnOpenMPLastprivateClause(ArrayRef<Expr *> VarList,
4467                                               SourceLocation StartLoc,
4468                                               SourceLocation LParenLoc,
4469                                               SourceLocation EndLoc) {
4470   SmallVector<Expr *, 8> Vars;
4471   for (auto &RefExpr : VarList) {
4472     assert(RefExpr && "NULL expr in OpenMP lastprivate clause.");
4473     if (isa<DependentScopeDeclRefExpr>(RefExpr)) {
4474       // It will be analyzed later.
4475       Vars.push_back(RefExpr);
4476       continue;
4477     }
4478 
4479     SourceLocation ELoc = RefExpr->getExprLoc();
4480     // OpenMP [2.1, C/C++]
4481     //  A list item is a variable name.
4482     // OpenMP  [2.14.3.5, Restrictions, p.1]
4483     //  A variable that is part of another variable (as an array or structure
4484     //  element) cannot appear in a lastprivate clause.
4485     DeclRefExpr *DE = dyn_cast_or_null<DeclRefExpr>(RefExpr);
4486     if (!DE || !isa<VarDecl>(DE->getDecl())) {
4487       Diag(ELoc, diag::err_omp_expected_var_name) << RefExpr->getSourceRange();
4488       continue;
4489     }
4490     Decl *D = DE->getDecl();
4491     VarDecl *VD = cast<VarDecl>(D);
4492 
4493     QualType Type = VD->getType();
4494     if (Type->isDependentType() || Type->isInstantiationDependentType()) {
4495       // It will be analyzed later.
4496       Vars.push_back(DE);
4497       continue;
4498     }
4499 
4500     // OpenMP [2.14.3.5, Restrictions, C/C++, p.2]
4501     //  A variable that appears in a lastprivate clause must not have an
4502     //  incomplete type or a reference type.
4503     if (RequireCompleteType(ELoc, Type,
4504                             diag::err_omp_lastprivate_incomplete_type)) {
4505       continue;
4506     }
4507     if (Type->isReferenceType()) {
4508       Diag(ELoc, diag::err_omp_clause_ref_type_arg)
4509           << getOpenMPClauseName(OMPC_lastprivate) << Type;
4510       bool IsDecl =
4511           VD->isThisDeclarationADefinition(Context) == VarDecl::DeclarationOnly;
4512       Diag(VD->getLocation(),
4513            IsDecl ? diag::note_previous_decl : diag::note_defined_here)
4514           << VD;
4515       continue;
4516     }
4517 
4518     // OpenMP [2.14.1.1, Data-sharing Attribute Rules for Variables Referenced
4519     // in a Construct]
4520     //  Variables with the predetermined data-sharing attributes may not be
4521     //  listed in data-sharing attributes clauses, except for the cases
4522     //  listed below.
4523     DSAStackTy::DSAVarData DVar = DSAStack->getTopDSA(VD, false);
4524     if (DVar.CKind != OMPC_unknown && DVar.CKind != OMPC_lastprivate &&
4525         DVar.CKind != OMPC_firstprivate &&
4526         (DVar.CKind != OMPC_private || DVar.RefExpr != nullptr)) {
4527       Diag(ELoc, diag::err_omp_wrong_dsa)
4528           << getOpenMPClauseName(DVar.CKind)
4529           << getOpenMPClauseName(OMPC_lastprivate);
4530       ReportOriginalDSA(*this, DSAStack, VD, DVar);
4531       continue;
4532     }
4533 
4534     OpenMPDirectiveKind CurrDir = DSAStack->getCurrentDirective();
4535     // OpenMP [2.14.3.5, Restrictions, p.2]
4536     // A list item that is private within a parallel region, or that appears in
4537     // the reduction clause of a parallel construct, must not appear in a
4538     // lastprivate clause on a worksharing construct if any of the corresponding
4539     // worksharing regions ever binds to any of the corresponding parallel
4540     // regions.
4541     if (isOpenMPWorksharingDirective(CurrDir) &&
4542         !isOpenMPParallelDirective(CurrDir)) {
4543       DVar = DSAStack->getImplicitDSA(VD, true);
4544       if (DVar.CKind != OMPC_shared) {
4545         Diag(ELoc, diag::err_omp_required_access)
4546             << getOpenMPClauseName(OMPC_lastprivate)
4547             << getOpenMPClauseName(OMPC_shared);
4548         ReportOriginalDSA(*this, DSAStack, VD, DVar);
4549         continue;
4550       }
4551     }
4552     // OpenMP [2.14.3.5, Restrictions, C++, p.1,2]
4553     //  A variable of class type (or array thereof) that appears in a
4554     //  lastprivate clause requires an accessible, unambiguous default
4555     //  constructor for the class type, unless the list item is also specified
4556     //  in a firstprivate clause.
4557     //  A variable of class type (or array thereof) that appears in a
4558     //  lastprivate clause requires an accessible, unambiguous copy assignment
4559     //  operator for the class type.
4560     while (Type.getNonReferenceType()->isArrayType())
4561       Type = cast<ArrayType>(Type.getNonReferenceType().getTypePtr())
4562                  ->getElementType();
4563     CXXRecordDecl *RD = getLangOpts().CPlusPlus
4564                             ? Type.getNonReferenceType()->getAsCXXRecordDecl()
4565                             : nullptr;
4566     // FIXME This code must be replaced by actual copying and destructing of the
4567     // lastprivate variable.
4568     if (RD) {
4569       CXXMethodDecl *MD = LookupCopyingAssignment(RD, 0, false, 0);
4570       DeclAccessPair FoundDecl = DeclAccessPair::make(MD, MD->getAccess());
4571       if (MD) {
4572         if (CheckMemberAccess(ELoc, RD, FoundDecl) == AR_inaccessible ||
4573             MD->isDeleted()) {
4574           Diag(ELoc, diag::err_omp_required_method)
4575               << getOpenMPClauseName(OMPC_lastprivate) << 2;
4576           bool IsDecl = VD->isThisDeclarationADefinition(Context) ==
4577                         VarDecl::DeclarationOnly;
4578           Diag(VD->getLocation(),
4579                IsDecl ? diag::note_previous_decl : diag::note_defined_here)
4580               << VD;
4581           Diag(RD->getLocation(), diag::note_previous_decl) << RD;
4582           continue;
4583         }
4584         MarkFunctionReferenced(ELoc, MD);
4585         DiagnoseUseOfDecl(MD, ELoc);
4586       }
4587 
4588       CXXDestructorDecl *DD = RD->getDestructor();
4589       if (DD) {
4590         PartialDiagnostic PD =
4591             PartialDiagnostic(PartialDiagnostic::NullDiagnostic());
4592         if (CheckDestructorAccess(ELoc, DD, PD) == AR_inaccessible ||
4593             DD->isDeleted()) {
4594           Diag(ELoc, diag::err_omp_required_method)
4595               << getOpenMPClauseName(OMPC_lastprivate) << 4;
4596           bool IsDecl = VD->isThisDeclarationADefinition(Context) ==
4597                         VarDecl::DeclarationOnly;
4598           Diag(VD->getLocation(),
4599                IsDecl ? diag::note_previous_decl : diag::note_defined_here)
4600               << VD;
4601           Diag(RD->getLocation(), diag::note_previous_decl) << RD;
4602           continue;
4603         }
4604         MarkFunctionReferenced(ELoc, DD);
4605         DiagnoseUseOfDecl(DD, ELoc);
4606       }
4607     }
4608 
4609     if (DVar.CKind != OMPC_firstprivate)
4610       DSAStack->addDSA(VD, DE, OMPC_lastprivate);
4611     Vars.push_back(DE);
4612   }
4613 
4614   if (Vars.empty())
4615     return nullptr;
4616 
4617   return OMPLastprivateClause::Create(Context, StartLoc, LParenLoc, EndLoc,
4618                                       Vars);
4619 }
4620 
4621 OMPClause *Sema::ActOnOpenMPSharedClause(ArrayRef<Expr *> VarList,
4622                                          SourceLocation StartLoc,
4623                                          SourceLocation LParenLoc,
4624                                          SourceLocation EndLoc) {
4625   SmallVector<Expr *, 8> Vars;
4626   for (auto &RefExpr : VarList) {
4627     assert(RefExpr && "NULL expr in OpenMP shared clause.");
4628     if (isa<DependentScopeDeclRefExpr>(RefExpr)) {
4629       // It will be analyzed later.
4630       Vars.push_back(RefExpr);
4631       continue;
4632     }
4633 
4634     SourceLocation ELoc = RefExpr->getExprLoc();
4635     // OpenMP [2.1, C/C++]
4636     //  A list item is a variable name.
4637     // OpenMP  [2.14.3.2, Restrictions, p.1]
4638     //  A variable that is part of another variable (as an array or structure
4639     //  element) cannot appear in a shared unless it is a static data member
4640     //  of a C++ class.
4641     DeclRefExpr *DE = dyn_cast<DeclRefExpr>(RefExpr);
4642     if (!DE || !isa<VarDecl>(DE->getDecl())) {
4643       Diag(ELoc, diag::err_omp_expected_var_name) << RefExpr->getSourceRange();
4644       continue;
4645     }
4646     Decl *D = DE->getDecl();
4647     VarDecl *VD = cast<VarDecl>(D);
4648 
4649     QualType Type = VD->getType();
4650     if (Type->isDependentType() || Type->isInstantiationDependentType()) {
4651       // It will be analyzed later.
4652       Vars.push_back(DE);
4653       continue;
4654     }
4655 
4656     // OpenMP [2.9.1.1, Data-sharing Attribute Rules for Variables Referenced
4657     // in a Construct]
4658     //  Variables with the predetermined data-sharing attributes may not be
4659     //  listed in data-sharing attributes clauses, except for the cases
4660     //  listed below. For these exceptions only, listing a predetermined
4661     //  variable in a data-sharing attribute clause is allowed and overrides
4662     //  the variable's predetermined data-sharing attributes.
4663     DSAStackTy::DSAVarData DVar = DSAStack->getTopDSA(VD, false);
4664     if (DVar.CKind != OMPC_unknown && DVar.CKind != OMPC_shared &&
4665         DVar.RefExpr) {
4666       Diag(ELoc, diag::err_omp_wrong_dsa) << getOpenMPClauseName(DVar.CKind)
4667                                           << getOpenMPClauseName(OMPC_shared);
4668       ReportOriginalDSA(*this, DSAStack, VD, DVar);
4669       continue;
4670     }
4671 
4672     DSAStack->addDSA(VD, DE, OMPC_shared);
4673     Vars.push_back(DE);
4674   }
4675 
4676   if (Vars.empty())
4677     return nullptr;
4678 
4679   return OMPSharedClause::Create(Context, StartLoc, LParenLoc, EndLoc, Vars);
4680 }
4681 
4682 namespace {
4683 class DSARefChecker : public StmtVisitor<DSARefChecker, bool> {
4684   DSAStackTy *Stack;
4685 
4686 public:
4687   bool VisitDeclRefExpr(DeclRefExpr *E) {
4688     if (VarDecl *VD = dyn_cast<VarDecl>(E->getDecl())) {
4689       DSAStackTy::DSAVarData DVar = Stack->getTopDSA(VD, false);
4690       if (DVar.CKind == OMPC_shared && !DVar.RefExpr)
4691         return false;
4692       if (DVar.CKind != OMPC_unknown)
4693         return true;
4694       DSAStackTy::DSAVarData DVarPrivate =
4695           Stack->hasDSA(VD, isOpenMPPrivate, MatchesAlways(), false);
4696       if (DVarPrivate.CKind != OMPC_unknown)
4697         return true;
4698       return false;
4699     }
4700     return false;
4701   }
4702   bool VisitStmt(Stmt *S) {
4703     for (auto Child : S->children()) {
4704       if (Child && Visit(Child))
4705         return true;
4706     }
4707     return false;
4708   }
4709   explicit DSARefChecker(DSAStackTy *S) : Stack(S) {}
4710 };
4711 } // namespace
4712 
4713 OMPClause *Sema::ActOnOpenMPReductionClause(
4714     ArrayRef<Expr *> VarList, SourceLocation StartLoc, SourceLocation LParenLoc,
4715     SourceLocation ColonLoc, SourceLocation EndLoc,
4716     CXXScopeSpec &ReductionIdScopeSpec,
4717     const DeclarationNameInfo &ReductionId) {
4718   // TODO: Allow scope specification search when 'declare reduction' is
4719   // supported.
4720   assert(ReductionIdScopeSpec.isEmpty() &&
4721          "No support for scoped reduction identifiers yet.");
4722 
4723   auto DN = ReductionId.getName();
4724   auto OOK = DN.getCXXOverloadedOperator();
4725   BinaryOperatorKind BOK = BO_Comma;
4726 
4727   // OpenMP [2.14.3.6, reduction clause]
4728   // C
4729   // reduction-identifier is either an identifier or one of the following
4730   // operators: +, -, *,  &, |, ^, && and ||
4731   // C++
4732   // reduction-identifier is either an id-expression or one of the following
4733   // operators: +, -, *, &, |, ^, && and ||
4734   // FIXME: Only 'min' and 'max' identifiers are supported for now.
4735   switch (OOK) {
4736   case OO_Plus:
4737   case OO_Minus:
4738     BOK = BO_AddAssign;
4739     break;
4740   case OO_Star:
4741     BOK = BO_MulAssign;
4742     break;
4743   case OO_Amp:
4744     BOK = BO_AndAssign;
4745     break;
4746   case OO_Pipe:
4747     BOK = BO_OrAssign;
4748     break;
4749   case OO_Caret:
4750     BOK = BO_XorAssign;
4751     break;
4752   case OO_AmpAmp:
4753     BOK = BO_LAnd;
4754     break;
4755   case OO_PipePipe:
4756     BOK = BO_LOr;
4757     break;
4758   default:
4759     if (auto II = DN.getAsIdentifierInfo()) {
4760       if (II->isStr("max"))
4761         BOK = BO_GT;
4762       else if (II->isStr("min"))
4763         BOK = BO_LT;
4764     }
4765     break;
4766   }
4767   SourceRange ReductionIdRange;
4768   if (ReductionIdScopeSpec.isValid()) {
4769     ReductionIdRange.setBegin(ReductionIdScopeSpec.getBeginLoc());
4770   }
4771   ReductionIdRange.setEnd(ReductionId.getEndLoc());
4772   if (BOK == BO_Comma) {
4773     // Not allowed reduction identifier is found.
4774     Diag(ReductionId.getLocStart(), diag::err_omp_unknown_reduction_identifier)
4775         << ReductionIdRange;
4776     return nullptr;
4777   }
4778 
4779   SmallVector<Expr *, 8> Vars;
4780   for (auto RefExpr : VarList) {
4781     assert(RefExpr && "nullptr expr in OpenMP reduction clause.");
4782     if (isa<DependentScopeDeclRefExpr>(RefExpr)) {
4783       // It will be analyzed later.
4784       Vars.push_back(RefExpr);
4785       continue;
4786     }
4787 
4788     if (RefExpr->isTypeDependent() || RefExpr->isValueDependent() ||
4789         RefExpr->isInstantiationDependent() ||
4790         RefExpr->containsUnexpandedParameterPack()) {
4791       // It will be analyzed later.
4792       Vars.push_back(RefExpr);
4793       continue;
4794     }
4795 
4796     auto ELoc = RefExpr->getExprLoc();
4797     auto ERange = RefExpr->getSourceRange();
4798     // OpenMP [2.1, C/C++]
4799     //  A list item is a variable or array section, subject to the restrictions
4800     //  specified in Section 2.4 on page 42 and in each of the sections
4801     // describing clauses and directives for which a list appears.
4802     // OpenMP  [2.14.3.3, Restrictions, p.1]
4803     //  A variable that is part of another variable (as an array or
4804     //  structure element) cannot appear in a private clause.
4805     auto DE = dyn_cast<DeclRefExpr>(RefExpr);
4806     if (!DE || !isa<VarDecl>(DE->getDecl())) {
4807       Diag(ELoc, diag::err_omp_expected_var_name) << ERange;
4808       continue;
4809     }
4810     auto D = DE->getDecl();
4811     auto VD = cast<VarDecl>(D);
4812     auto Type = VD->getType();
4813     // OpenMP [2.9.3.3, Restrictions, C/C++, p.3]
4814     //  A variable that appears in a private clause must not have an incomplete
4815     //  type or a reference type.
4816     if (RequireCompleteType(ELoc, Type,
4817                             diag::err_omp_reduction_incomplete_type))
4818       continue;
4819     // OpenMP [2.14.3.6, reduction clause, Restrictions]
4820     // Arrays may not appear in a reduction clause.
4821     if (Type.getNonReferenceType()->isArrayType()) {
4822       Diag(ELoc, diag::err_omp_reduction_type_array) << Type << ERange;
4823       bool IsDecl =
4824           VD->isThisDeclarationADefinition(Context) == VarDecl::DeclarationOnly;
4825       Diag(VD->getLocation(),
4826            IsDecl ? diag::note_previous_decl : diag::note_defined_here)
4827           << VD;
4828       continue;
4829     }
4830     // OpenMP [2.14.3.6, reduction clause, Restrictions]
4831     // A list item that appears in a reduction clause must not be
4832     // const-qualified.
4833     if (Type.getNonReferenceType().isConstant(Context)) {
4834       Diag(ELoc, diag::err_omp_const_variable)
4835           << getOpenMPClauseName(OMPC_reduction) << Type << ERange;
4836       bool IsDecl =
4837           VD->isThisDeclarationADefinition(Context) == VarDecl::DeclarationOnly;
4838       Diag(VD->getLocation(),
4839            IsDecl ? diag::note_previous_decl : diag::note_defined_here)
4840           << VD;
4841       continue;
4842     }
4843     // OpenMP [2.9.3.6, Restrictions, C/C++, p.4]
4844     //  If a list-item is a reference type then it must bind to the same object
4845     //  for all threads of the team.
4846     VarDecl *VDDef = VD->getDefinition();
4847     if (Type->isReferenceType() && VDDef) {
4848       DSARefChecker Check(DSAStack);
4849       if (Check.Visit(VDDef->getInit())) {
4850         Diag(ELoc, diag::err_omp_reduction_ref_type_arg) << ERange;
4851         Diag(VDDef->getLocation(), diag::note_defined_here) << VDDef;
4852         continue;
4853       }
4854     }
4855     // OpenMP [2.14.3.6, reduction clause, Restrictions]
4856     // The type of a list item that appears in a reduction clause must be valid
4857     // for the reduction-identifier. For a max or min reduction in C, the type
4858     // of the list item must be an allowed arithmetic data type: char, int,
4859     // float, double, or _Bool, possibly modified with long, short, signed, or
4860     // unsigned. For a max or min reduction in C++, the type of the list item
4861     // must be an allowed arithmetic data type: char, wchar_t, int, float,
4862     // double, or bool, possibly modified with long, short, signed, or unsigned.
4863     if ((BOK == BO_GT || BOK == BO_LT) &&
4864         !(Type->isScalarType() ||
4865           (getLangOpts().CPlusPlus && Type->isArithmeticType()))) {
4866       Diag(ELoc, diag::err_omp_clause_not_arithmetic_type_arg)
4867           << getLangOpts().CPlusPlus;
4868       bool IsDecl =
4869           VD->isThisDeclarationADefinition(Context) == VarDecl::DeclarationOnly;
4870       Diag(VD->getLocation(),
4871            IsDecl ? diag::note_previous_decl : diag::note_defined_here)
4872           << VD;
4873       continue;
4874     }
4875     if ((BOK == BO_OrAssign || BOK == BO_AndAssign || BOK == BO_XorAssign) &&
4876         !getLangOpts().CPlusPlus && Type->isFloatingType()) {
4877       Diag(ELoc, diag::err_omp_clause_floating_type_arg);
4878       bool IsDecl =
4879           VD->isThisDeclarationADefinition(Context) == VarDecl::DeclarationOnly;
4880       Diag(VD->getLocation(),
4881            IsDecl ? diag::note_previous_decl : diag::note_defined_here)
4882           << VD;
4883       continue;
4884     }
4885     bool Suppress = getDiagnostics().getSuppressAllDiagnostics();
4886     getDiagnostics().setSuppressAllDiagnostics(true);
4887     ExprResult ReductionOp =
4888         BuildBinOp(DSAStack->getCurScope(), ReductionId.getLocStart(), BOK,
4889                    RefExpr, RefExpr);
4890     getDiagnostics().setSuppressAllDiagnostics(Suppress);
4891     if (ReductionOp.isInvalid()) {
4892       Diag(ELoc, diag::err_omp_reduction_id_not_compatible) << Type
4893                                                             << ReductionIdRange;
4894       bool IsDecl =
4895           VD->isThisDeclarationADefinition(Context) == VarDecl::DeclarationOnly;
4896       Diag(VD->getLocation(),
4897            IsDecl ? diag::note_previous_decl : diag::note_defined_here)
4898           << VD;
4899       continue;
4900     }
4901 
4902     // OpenMP [2.14.1.1, Data-sharing Attribute Rules for Variables Referenced
4903     // in a Construct]
4904     //  Variables with the predetermined data-sharing attributes may not be
4905     //  listed in data-sharing attributes clauses, except for the cases
4906     //  listed below. For these exceptions only, listing a predetermined
4907     //  variable in a data-sharing attribute clause is allowed and overrides
4908     //  the variable's predetermined data-sharing attributes.
4909     // OpenMP [2.14.3.6, Restrictions, p.3]
4910     //  Any number of reduction clauses can be specified on the directive,
4911     //  but a list item can appear only once in the reduction clauses for that
4912     //  directive.
4913     DSAStackTy::DSAVarData DVar = DSAStack->getTopDSA(VD, false);
4914     if (DVar.CKind == OMPC_reduction) {
4915       Diag(ELoc, diag::err_omp_once_referenced)
4916           << getOpenMPClauseName(OMPC_reduction);
4917       if (DVar.RefExpr) {
4918         Diag(DVar.RefExpr->getExprLoc(), diag::note_omp_referenced);
4919       }
4920     } else if (DVar.CKind != OMPC_unknown) {
4921       Diag(ELoc, diag::err_omp_wrong_dsa)
4922           << getOpenMPClauseName(DVar.CKind)
4923           << getOpenMPClauseName(OMPC_reduction);
4924       ReportOriginalDSA(*this, DSAStack, VD, DVar);
4925       continue;
4926     }
4927 
4928     // OpenMP [2.14.3.6, Restrictions, p.1]
4929     //  A list item that appears in a reduction clause of a worksharing
4930     //  construct must be shared in the parallel regions to which any of the
4931     //  worksharing regions arising from the worksharing construct bind.
4932     OpenMPDirectiveKind CurrDir = DSAStack->getCurrentDirective();
4933     if (isOpenMPWorksharingDirective(CurrDir) &&
4934         !isOpenMPParallelDirective(CurrDir)) {
4935       DVar = DSAStack->getImplicitDSA(VD, true);
4936       if (DVar.CKind != OMPC_shared) {
4937         Diag(ELoc, diag::err_omp_required_access)
4938             << getOpenMPClauseName(OMPC_reduction)
4939             << getOpenMPClauseName(OMPC_shared);
4940         ReportOriginalDSA(*this, DSAStack, VD, DVar);
4941         continue;
4942       }
4943     }
4944 
4945     CXXRecordDecl *RD = getLangOpts().CPlusPlus
4946                             ? Type.getNonReferenceType()->getAsCXXRecordDecl()
4947                             : nullptr;
4948     // FIXME This code must be replaced by actual constructing/destructing of
4949     // the reduction variable.
4950     if (RD) {
4951       CXXConstructorDecl *CD = LookupDefaultConstructor(RD);
4952       PartialDiagnostic PD =
4953           PartialDiagnostic(PartialDiagnostic::NullDiagnostic());
4954       if (!CD ||
4955           CheckConstructorAccess(ELoc, CD,
4956                                  InitializedEntity::InitializeTemporary(Type),
4957                                  CD->getAccess(), PD) == AR_inaccessible ||
4958           CD->isDeleted()) {
4959         Diag(ELoc, diag::err_omp_required_method)
4960             << getOpenMPClauseName(OMPC_reduction) << 0;
4961         bool IsDecl = VD->isThisDeclarationADefinition(Context) ==
4962                       VarDecl::DeclarationOnly;
4963         Diag(VD->getLocation(),
4964              IsDecl ? diag::note_previous_decl : diag::note_defined_here)
4965             << VD;
4966         Diag(RD->getLocation(), diag::note_previous_decl) << RD;
4967         continue;
4968       }
4969       MarkFunctionReferenced(ELoc, CD);
4970       DiagnoseUseOfDecl(CD, ELoc);
4971 
4972       CXXDestructorDecl *DD = RD->getDestructor();
4973       if (DD) {
4974         if (CheckDestructorAccess(ELoc, DD, PD) == AR_inaccessible ||
4975             DD->isDeleted()) {
4976           Diag(ELoc, diag::err_omp_required_method)
4977               << getOpenMPClauseName(OMPC_reduction) << 4;
4978           bool IsDecl = VD->isThisDeclarationADefinition(Context) ==
4979                         VarDecl::DeclarationOnly;
4980           Diag(VD->getLocation(),
4981                IsDecl ? diag::note_previous_decl : diag::note_defined_here)
4982               << VD;
4983           Diag(RD->getLocation(), diag::note_previous_decl) << RD;
4984           continue;
4985         }
4986         MarkFunctionReferenced(ELoc, DD);
4987         DiagnoseUseOfDecl(DD, ELoc);
4988       }
4989     }
4990 
4991     DSAStack->addDSA(VD, DE, OMPC_reduction);
4992     Vars.push_back(DE);
4993   }
4994 
4995   if (Vars.empty())
4996     return nullptr;
4997 
4998   return OMPReductionClause::Create(
4999       Context, StartLoc, LParenLoc, ColonLoc, EndLoc, Vars,
5000       ReductionIdScopeSpec.getWithLocInContext(Context), ReductionId);
5001 }
5002 
5003 OMPClause *Sema::ActOnOpenMPLinearClause(ArrayRef<Expr *> VarList, Expr *Step,
5004                                          SourceLocation StartLoc,
5005                                          SourceLocation LParenLoc,
5006                                          SourceLocation ColonLoc,
5007                                          SourceLocation EndLoc) {
5008   SmallVector<Expr *, 8> Vars;
5009   for (auto &RefExpr : VarList) {
5010     assert(RefExpr && "NULL expr in OpenMP linear clause.");
5011     if (isa<DependentScopeDeclRefExpr>(RefExpr)) {
5012       // It will be analyzed later.
5013       Vars.push_back(RefExpr);
5014       continue;
5015     }
5016 
5017     // OpenMP [2.14.3.7, linear clause]
5018     // A list item that appears in a linear clause is subject to the private
5019     // clause semantics described in Section 2.14.3.3 on page 159 except as
5020     // noted. In addition, the value of the new list item on each iteration
5021     // of the associated loop(s) corresponds to the value of the original
5022     // list item before entering the construct plus the logical number of
5023     // the iteration times linear-step.
5024 
5025     SourceLocation ELoc = RefExpr->getExprLoc();
5026     // OpenMP [2.1, C/C++]
5027     //  A list item is a variable name.
5028     // OpenMP  [2.14.3.3, Restrictions, p.1]
5029     //  A variable that is part of another variable (as an array or
5030     //  structure element) cannot appear in a private clause.
5031     DeclRefExpr *DE = dyn_cast<DeclRefExpr>(RefExpr);
5032     if (!DE || !isa<VarDecl>(DE->getDecl())) {
5033       Diag(ELoc, diag::err_omp_expected_var_name) << RefExpr->getSourceRange();
5034       continue;
5035     }
5036 
5037     VarDecl *VD = cast<VarDecl>(DE->getDecl());
5038 
5039     // OpenMP [2.14.3.7, linear clause]
5040     //  A list-item cannot appear in more than one linear clause.
5041     //  A list-item that appears in a linear clause cannot appear in any
5042     //  other data-sharing attribute clause.
5043     DSAStackTy::DSAVarData DVar = DSAStack->getTopDSA(VD, false);
5044     if (DVar.RefExpr) {
5045       Diag(ELoc, diag::err_omp_wrong_dsa) << getOpenMPClauseName(DVar.CKind)
5046                                           << getOpenMPClauseName(OMPC_linear);
5047       ReportOriginalDSA(*this, DSAStack, VD, DVar);
5048       continue;
5049     }
5050 
5051     QualType QType = VD->getType();
5052     if (QType->isDependentType() || QType->isInstantiationDependentType()) {
5053       // It will be analyzed later.
5054       Vars.push_back(DE);
5055       continue;
5056     }
5057 
5058     // A variable must not have an incomplete type or a reference type.
5059     if (RequireCompleteType(ELoc, QType,
5060                             diag::err_omp_linear_incomplete_type)) {
5061       continue;
5062     }
5063     if (QType->isReferenceType()) {
5064       Diag(ELoc, diag::err_omp_clause_ref_type_arg)
5065           << getOpenMPClauseName(OMPC_linear) << QType;
5066       bool IsDecl =
5067           VD->isThisDeclarationADefinition(Context) == VarDecl::DeclarationOnly;
5068       Diag(VD->getLocation(),
5069            IsDecl ? diag::note_previous_decl : diag::note_defined_here)
5070           << VD;
5071       continue;
5072     }
5073 
5074     // A list item must not be const-qualified.
5075     if (QType.isConstant(Context)) {
5076       Diag(ELoc, diag::err_omp_const_variable)
5077           << getOpenMPClauseName(OMPC_linear);
5078       bool IsDecl =
5079           VD->isThisDeclarationADefinition(Context) == VarDecl::DeclarationOnly;
5080       Diag(VD->getLocation(),
5081            IsDecl ? diag::note_previous_decl : diag::note_defined_here)
5082           << VD;
5083       continue;
5084     }
5085 
5086     // A list item must be of integral or pointer type.
5087     QType = QType.getUnqualifiedType().getCanonicalType();
5088     const Type *Ty = QType.getTypePtrOrNull();
5089     if (!Ty || (!Ty->isDependentType() && !Ty->isIntegralType(Context) &&
5090                 !Ty->isPointerType())) {
5091       Diag(ELoc, diag::err_omp_linear_expected_int_or_ptr) << QType;
5092       bool IsDecl =
5093           VD->isThisDeclarationADefinition(Context) == VarDecl::DeclarationOnly;
5094       Diag(VD->getLocation(),
5095            IsDecl ? diag::note_previous_decl : diag::note_defined_here)
5096           << VD;
5097       continue;
5098     }
5099 
5100     DSAStack->addDSA(VD, DE, OMPC_linear);
5101     Vars.push_back(DE);
5102   }
5103 
5104   if (Vars.empty())
5105     return nullptr;
5106 
5107   Expr *StepExpr = Step;
5108   if (Step && !Step->isValueDependent() && !Step->isTypeDependent() &&
5109       !Step->isInstantiationDependent() &&
5110       !Step->containsUnexpandedParameterPack()) {
5111     SourceLocation StepLoc = Step->getLocStart();
5112     ExprResult Val = PerformOpenMPImplicitIntegerConversion(StepLoc, Step);
5113     if (Val.isInvalid())
5114       return nullptr;
5115     StepExpr = Val.get();
5116 
5117     // Warn about zero linear step (it would be probably better specified as
5118     // making corresponding variables 'const').
5119     llvm::APSInt Result;
5120     if (StepExpr->isIntegerConstantExpr(Result, Context) &&
5121         !Result.isNegative() && !Result.isStrictlyPositive())
5122       Diag(StepLoc, diag::warn_omp_linear_step_zero) << Vars[0]
5123                                                      << (Vars.size() > 1);
5124   }
5125 
5126   return OMPLinearClause::Create(Context, StartLoc, LParenLoc, ColonLoc, EndLoc,
5127                                  Vars, StepExpr);
5128 }
5129 
5130 OMPClause *Sema::ActOnOpenMPAlignedClause(
5131     ArrayRef<Expr *> VarList, Expr *Alignment, SourceLocation StartLoc,
5132     SourceLocation LParenLoc, SourceLocation ColonLoc, SourceLocation EndLoc) {
5133 
5134   SmallVector<Expr *, 8> Vars;
5135   for (auto &RefExpr : VarList) {
5136     assert(RefExpr && "NULL expr in OpenMP aligned clause.");
5137     if (isa<DependentScopeDeclRefExpr>(RefExpr)) {
5138       // It will be analyzed later.
5139       Vars.push_back(RefExpr);
5140       continue;
5141     }
5142 
5143     SourceLocation ELoc = RefExpr->getExprLoc();
5144     // OpenMP [2.1, C/C++]
5145     //  A list item is a variable name.
5146     DeclRefExpr *DE = dyn_cast<DeclRefExpr>(RefExpr);
5147     if (!DE || !isa<VarDecl>(DE->getDecl())) {
5148       Diag(ELoc, diag::err_omp_expected_var_name) << RefExpr->getSourceRange();
5149       continue;
5150     }
5151 
5152     VarDecl *VD = cast<VarDecl>(DE->getDecl());
5153 
5154     // OpenMP  [2.8.1, simd construct, Restrictions]
5155     // The type of list items appearing in the aligned clause must be
5156     // array, pointer, reference to array, or reference to pointer.
5157     QualType QType = DE->getType()
5158                          .getNonReferenceType()
5159                          .getUnqualifiedType()
5160                          .getCanonicalType();
5161     const Type *Ty = QType.getTypePtrOrNull();
5162     if (!Ty || (!Ty->isDependentType() && !Ty->isArrayType() &&
5163                 !Ty->isPointerType())) {
5164       Diag(ELoc, diag::err_omp_aligned_expected_array_or_ptr)
5165           << QType << getLangOpts().CPlusPlus << RefExpr->getSourceRange();
5166       bool IsDecl =
5167           VD->isThisDeclarationADefinition(Context) == VarDecl::DeclarationOnly;
5168       Diag(VD->getLocation(),
5169            IsDecl ? diag::note_previous_decl : diag::note_defined_here)
5170           << VD;
5171       continue;
5172     }
5173 
5174     // OpenMP  [2.8.1, simd construct, Restrictions]
5175     // A list-item cannot appear in more than one aligned clause.
5176     if (DeclRefExpr *PrevRef = DSAStack->addUniqueAligned(VD, DE)) {
5177       Diag(ELoc, diag::err_omp_aligned_twice) << RefExpr->getSourceRange();
5178       Diag(PrevRef->getExprLoc(), diag::note_omp_explicit_dsa)
5179           << getOpenMPClauseName(OMPC_aligned);
5180       continue;
5181     }
5182 
5183     Vars.push_back(DE);
5184   }
5185 
5186   // OpenMP [2.8.1, simd construct, Description]
5187   // The parameter of the aligned clause, alignment, must be a constant
5188   // positive integer expression.
5189   // If no optional parameter is specified, implementation-defined default
5190   // alignments for SIMD instructions on the target platforms are assumed.
5191   if (Alignment != nullptr) {
5192     ExprResult AlignResult =
5193         VerifyPositiveIntegerConstantInClause(Alignment, OMPC_aligned);
5194     if (AlignResult.isInvalid())
5195       return nullptr;
5196     Alignment = AlignResult.get();
5197   }
5198   if (Vars.empty())
5199     return nullptr;
5200 
5201   return OMPAlignedClause::Create(Context, StartLoc, LParenLoc, ColonLoc,
5202                                   EndLoc, Vars, Alignment);
5203 }
5204 
5205 OMPClause *Sema::ActOnOpenMPCopyinClause(ArrayRef<Expr *> VarList,
5206                                          SourceLocation StartLoc,
5207                                          SourceLocation LParenLoc,
5208                                          SourceLocation EndLoc) {
5209   SmallVector<Expr *, 8> Vars;
5210   for (auto &RefExpr : VarList) {
5211     assert(RefExpr && "NULL expr in OpenMP copyin clause.");
5212     if (isa<DependentScopeDeclRefExpr>(RefExpr)) {
5213       // It will be analyzed later.
5214       Vars.push_back(RefExpr);
5215       continue;
5216     }
5217 
5218     SourceLocation ELoc = RefExpr->getExprLoc();
5219     // OpenMP [2.1, C/C++]
5220     //  A list item is a variable name.
5221     // OpenMP  [2.14.4.1, Restrictions, p.1]
5222     //  A list item that appears in a copyin clause must be threadprivate.
5223     DeclRefExpr *DE = dyn_cast<DeclRefExpr>(RefExpr);
5224     if (!DE || !isa<VarDecl>(DE->getDecl())) {
5225       Diag(ELoc, diag::err_omp_expected_var_name) << RefExpr->getSourceRange();
5226       continue;
5227     }
5228 
5229     Decl *D = DE->getDecl();
5230     VarDecl *VD = cast<VarDecl>(D);
5231 
5232     QualType Type = VD->getType();
5233     if (Type->isDependentType() || Type->isInstantiationDependentType()) {
5234       // It will be analyzed later.
5235       Vars.push_back(DE);
5236       continue;
5237     }
5238 
5239     // OpenMP [2.14.4.1, Restrictions, C/C++, p.1]
5240     //  A list item that appears in a copyin clause must be threadprivate.
5241     if (!DSAStack->isThreadPrivate(VD)) {
5242       Diag(ELoc, diag::err_omp_required_access)
5243           << getOpenMPClauseName(OMPC_copyin)
5244           << getOpenMPDirectiveName(OMPD_threadprivate);
5245       continue;
5246     }
5247 
5248     // OpenMP [2.14.4.1, Restrictions, C/C++, p.2]
5249     //  A variable of class type (or array thereof) that appears in a
5250     //  copyin clause requires an accessible, unambiguous copy assignment
5251     //  operator for the class type.
5252     Type = Context.getBaseElementType(Type);
5253     CXXRecordDecl *RD =
5254         getLangOpts().CPlusPlus ? Type->getAsCXXRecordDecl() : nullptr;
5255     // FIXME This code must be replaced by actual assignment of the
5256     // threadprivate variable.
5257     if (RD) {
5258       CXXMethodDecl *MD = LookupCopyingAssignment(RD, 0, false, 0);
5259       DeclAccessPair FoundDecl = DeclAccessPair::make(MD, MD->getAccess());
5260       if (MD) {
5261         if (CheckMemberAccess(ELoc, RD, FoundDecl) == AR_inaccessible ||
5262             MD->isDeleted()) {
5263           Diag(ELoc, diag::err_omp_required_method)
5264               << getOpenMPClauseName(OMPC_copyin) << 2;
5265           bool IsDecl = VD->isThisDeclarationADefinition(Context) ==
5266                         VarDecl::DeclarationOnly;
5267           Diag(VD->getLocation(),
5268                IsDecl ? diag::note_previous_decl : diag::note_defined_here)
5269               << VD;
5270           Diag(RD->getLocation(), diag::note_previous_decl) << RD;
5271           continue;
5272         }
5273         MarkFunctionReferenced(ELoc, MD);
5274         DiagnoseUseOfDecl(MD, ELoc);
5275       }
5276     }
5277 
5278     DSAStack->addDSA(VD, DE, OMPC_copyin);
5279     Vars.push_back(DE);
5280   }
5281 
5282   if (Vars.empty())
5283     return nullptr;
5284 
5285   return OMPCopyinClause::Create(Context, StartLoc, LParenLoc, EndLoc, Vars);
5286 }
5287 
5288 OMPClause *Sema::ActOnOpenMPCopyprivateClause(ArrayRef<Expr *> VarList,
5289                                               SourceLocation StartLoc,
5290                                               SourceLocation LParenLoc,
5291                                               SourceLocation EndLoc) {
5292   SmallVector<Expr *, 8> Vars;
5293   for (auto &RefExpr : VarList) {
5294     assert(RefExpr && "NULL expr in OpenMP copyprivate clause.");
5295     if (isa<DependentScopeDeclRefExpr>(RefExpr)) {
5296       // It will be analyzed later.
5297       Vars.push_back(RefExpr);
5298       continue;
5299     }
5300 
5301     SourceLocation ELoc = RefExpr->getExprLoc();
5302     // OpenMP [2.1, C/C++]
5303     //  A list item is a variable name.
5304     // OpenMP  [2.14.4.1, Restrictions, p.1]
5305     //  A list item that appears in a copyin clause must be threadprivate.
5306     DeclRefExpr *DE = dyn_cast<DeclRefExpr>(RefExpr);
5307     if (!DE || !isa<VarDecl>(DE->getDecl())) {
5308       Diag(ELoc, diag::err_omp_expected_var_name) << RefExpr->getSourceRange();
5309       continue;
5310     }
5311 
5312     Decl *D = DE->getDecl();
5313     VarDecl *VD = cast<VarDecl>(D);
5314 
5315     QualType Type = VD->getType();
5316     if (Type->isDependentType() || Type->isInstantiationDependentType()) {
5317       // It will be analyzed later.
5318       Vars.push_back(DE);
5319       continue;
5320     }
5321 
5322     // OpenMP [2.14.4.2, Restrictions, p.2]
5323     //  A list item that appears in a copyprivate clause may not appear in a
5324     //  private or firstprivate clause on the single construct.
5325     if (!DSAStack->isThreadPrivate(VD)) {
5326       auto DVar = DSAStack->getTopDSA(VD, false);
5327       if (DVar.CKind != OMPC_copyprivate && DVar.CKind != OMPC_unknown &&
5328           !(DVar.CKind == OMPC_private && !DVar.RefExpr)) {
5329         Diag(ELoc, diag::err_omp_wrong_dsa)
5330             << getOpenMPClauseName(DVar.CKind)
5331             << getOpenMPClauseName(OMPC_copyprivate);
5332         ReportOriginalDSA(*this, DSAStack, VD, DVar);
5333         continue;
5334       }
5335 
5336       // OpenMP [2.11.4.2, Restrictions, p.1]
5337       //  All list items that appear in a copyprivate clause must be either
5338       //  threadprivate or private in the enclosing context.
5339       if (DVar.CKind == OMPC_unknown) {
5340         DVar = DSAStack->getImplicitDSA(VD, false);
5341         if (DVar.CKind == OMPC_shared) {
5342           Diag(ELoc, diag::err_omp_required_access)
5343               << getOpenMPClauseName(OMPC_copyprivate)
5344               << "threadprivate or private in the enclosing context";
5345           ReportOriginalDSA(*this, DSAStack, VD, DVar);
5346           continue;
5347         }
5348       }
5349     }
5350 
5351     // OpenMP [2.14.4.1, Restrictions, C/C++, p.2]
5352     //  A variable of class type (or array thereof) that appears in a
5353     //  copyin clause requires an accessible, unambiguous copy assignment
5354     //  operator for the class type.
5355     Type = Context.getBaseElementType(Type);
5356     CXXRecordDecl *RD =
5357         getLangOpts().CPlusPlus ? Type->getAsCXXRecordDecl() : nullptr;
5358     // FIXME This code must be replaced by actual assignment of the
5359     // threadprivate variable.
5360     if (RD) {
5361       CXXMethodDecl *MD = LookupCopyingAssignment(RD, 0, false, 0);
5362       DeclAccessPair FoundDecl = DeclAccessPair::make(MD, MD->getAccess());
5363       if (MD) {
5364         if (CheckMemberAccess(ELoc, RD, FoundDecl) == AR_inaccessible ||
5365             MD->isDeleted()) {
5366           Diag(ELoc, diag::err_omp_required_method)
5367               << getOpenMPClauseName(OMPC_copyprivate) << 2;
5368           bool IsDecl = VD->isThisDeclarationADefinition(Context) ==
5369                         VarDecl::DeclarationOnly;
5370           Diag(VD->getLocation(),
5371                IsDecl ? diag::note_previous_decl : diag::note_defined_here)
5372               << VD;
5373           Diag(RD->getLocation(), diag::note_previous_decl) << RD;
5374           continue;
5375         }
5376         MarkFunctionReferenced(ELoc, MD);
5377         DiagnoseUseOfDecl(MD, ELoc);
5378       }
5379     }
5380 
5381     // No need to mark vars as copyprivate, they are already threadprivate or
5382     // implicitly private.
5383     Vars.push_back(DE);
5384   }
5385 
5386   if (Vars.empty())
5387     return nullptr;
5388 
5389   return OMPCopyprivateClause::Create(Context, StartLoc, LParenLoc, EndLoc, Vars);
5390 }
5391 
5392 OMPClause *Sema::ActOnOpenMPFlushClause(ArrayRef<Expr *> VarList,
5393                                         SourceLocation StartLoc,
5394                                         SourceLocation LParenLoc,
5395                                         SourceLocation EndLoc) {
5396   if (VarList.empty())
5397     return nullptr;
5398 
5399   return OMPFlushClause::Create(Context, StartLoc, LParenLoc, EndLoc, VarList);
5400 }
5401 
5402