1 //===--- ParseOpenMP.cpp - OpenMP directives parsing ----------------------===//
2 //
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6 //
7 //===----------------------------------------------------------------------===//
8 /// \file
9 /// This file implements parsing of all OpenMP directives and clauses.
10 ///
11 //===----------------------------------------------------------------------===//
12 
13 #include "clang/AST/ASTContext.h"
14 #include "clang/AST/OpenMPClause.h"
15 #include "clang/AST/StmtOpenMP.h"
16 #include "clang/Basic/OpenMPKinds.h"
17 #include "clang/Basic/TargetInfo.h"
18 #include "clang/Basic/TokenKinds.h"
19 #include "clang/Parse/ParseDiagnostic.h"
20 #include "clang/Parse/Parser.h"
21 #include "clang/Parse/RAIIObjectsForParser.h"
22 #include "clang/Sema/Scope.h"
23 #include "llvm/ADT/PointerIntPair.h"
24 #include "llvm/ADT/StringSwitch.h"
25 #include "llvm/ADT/UniqueVector.h"
26 #include "llvm/Frontend/OpenMP/OMPContext.h"
27 
28 using namespace clang;
29 using namespace llvm::omp;
30 
31 //===----------------------------------------------------------------------===//
32 // OpenMP declarative directives.
33 //===----------------------------------------------------------------------===//
34 
35 namespace {
36 enum OpenMPDirectiveKindEx {
37   OMPD_cancellation = llvm::omp::Directive_enumSize + 1,
38   OMPD_data,
39   OMPD_declare,
40   OMPD_end,
41   OMPD_end_declare,
42   OMPD_enter,
43   OMPD_exit,
44   OMPD_point,
45   OMPD_reduction,
46   OMPD_target_enter,
47   OMPD_target_exit,
48   OMPD_update,
49   OMPD_distribute_parallel,
50   OMPD_teams_distribute_parallel,
51   OMPD_target_teams_distribute_parallel,
52   OMPD_mapper,
53   OMPD_variant,
54   OMPD_begin,
55   OMPD_begin_declare,
56 };
57 
58 // Helper to unify the enum class OpenMPDirectiveKind with its extension
59 // the OpenMPDirectiveKindEx enum which allows to use them together as if they
60 // are unsigned values.
61 struct OpenMPDirectiveKindExWrapper {
62   OpenMPDirectiveKindExWrapper(unsigned Value) : Value(Value) {}
63   OpenMPDirectiveKindExWrapper(OpenMPDirectiveKind DK) : Value(unsigned(DK)) {}
64   bool operator==(OpenMPDirectiveKindExWrapper V) const {
65     return Value == V.Value;
66   }
67   bool operator!=(OpenMPDirectiveKindExWrapper V) const {
68     return Value != V.Value;
69   }
70   bool operator==(OpenMPDirectiveKind V) const { return Value == unsigned(V); }
71   bool operator!=(OpenMPDirectiveKind V) const { return Value != unsigned(V); }
72   bool operator<(OpenMPDirectiveKind V) const { return Value < unsigned(V); }
73   operator unsigned() const { return Value; }
74   operator OpenMPDirectiveKind() const { return OpenMPDirectiveKind(Value); }
75   unsigned Value;
76 };
77 
78 class DeclDirectiveListParserHelper final {
79   SmallVector<Expr *, 4> Identifiers;
80   Parser *P;
81   OpenMPDirectiveKind Kind;
82 
83 public:
84   DeclDirectiveListParserHelper(Parser *P, OpenMPDirectiveKind Kind)
85       : P(P), Kind(Kind) {}
86   void operator()(CXXScopeSpec &SS, DeclarationNameInfo NameInfo) {
87     ExprResult Res = P->getActions().ActOnOpenMPIdExpression(
88         P->getCurScope(), SS, NameInfo, Kind);
89     if (Res.isUsable())
90       Identifiers.push_back(Res.get());
91   }
92   llvm::ArrayRef<Expr *> getIdentifiers() const { return Identifiers; }
93 };
94 } // namespace
95 
96 // Map token string to extended OMP token kind that are
97 // OpenMPDirectiveKind + OpenMPDirectiveKindEx.
98 static unsigned getOpenMPDirectiveKindEx(StringRef S) {
99   OpenMPDirectiveKindExWrapper DKind = getOpenMPDirectiveKind(S);
100   if (DKind != OMPD_unknown)
101     return DKind;
102 
103   return llvm::StringSwitch<OpenMPDirectiveKindExWrapper>(S)
104       .Case("cancellation", OMPD_cancellation)
105       .Case("data", OMPD_data)
106       .Case("declare", OMPD_declare)
107       .Case("end", OMPD_end)
108       .Case("enter", OMPD_enter)
109       .Case("exit", OMPD_exit)
110       .Case("point", OMPD_point)
111       .Case("reduction", OMPD_reduction)
112       .Case("update", OMPD_update)
113       .Case("mapper", OMPD_mapper)
114       .Case("variant", OMPD_variant)
115       .Case("begin", OMPD_begin)
116       .Default(OMPD_unknown);
117 }
118 
119 static OpenMPDirectiveKindExWrapper parseOpenMPDirectiveKind(Parser &P) {
120   // Array of foldings: F[i][0] F[i][1] ===> F[i][2].
121   // E.g.: OMPD_for OMPD_simd ===> OMPD_for_simd
122   // TODO: add other combined directives in topological order.
123   static const OpenMPDirectiveKindExWrapper F[][3] = {
124       {OMPD_begin, OMPD_declare, OMPD_begin_declare},
125       {OMPD_begin, OMPD_assumes, OMPD_begin_assumes},
126       {OMPD_end, OMPD_declare, OMPD_end_declare},
127       {OMPD_end, OMPD_assumes, OMPD_end_assumes},
128       {OMPD_cancellation, OMPD_point, OMPD_cancellation_point},
129       {OMPD_declare, OMPD_reduction, OMPD_declare_reduction},
130       {OMPD_declare, OMPD_mapper, OMPD_declare_mapper},
131       {OMPD_declare, OMPD_simd, OMPD_declare_simd},
132       {OMPD_declare, OMPD_target, OMPD_declare_target},
133       {OMPD_declare, OMPD_variant, OMPD_declare_variant},
134       {OMPD_begin_declare, OMPD_variant, OMPD_begin_declare_variant},
135       {OMPD_end_declare, OMPD_variant, OMPD_end_declare_variant},
136       {OMPD_distribute, OMPD_parallel, OMPD_distribute_parallel},
137       {OMPD_distribute_parallel, OMPD_for, OMPD_distribute_parallel_for},
138       {OMPD_distribute_parallel_for, OMPD_simd,
139        OMPD_distribute_parallel_for_simd},
140       {OMPD_distribute, OMPD_simd, OMPD_distribute_simd},
141       {OMPD_end_declare, OMPD_target, OMPD_end_declare_target},
142       {OMPD_target, OMPD_data, OMPD_target_data},
143       {OMPD_target, OMPD_enter, OMPD_target_enter},
144       {OMPD_target, OMPD_exit, OMPD_target_exit},
145       {OMPD_target, OMPD_update, OMPD_target_update},
146       {OMPD_target_enter, OMPD_data, OMPD_target_enter_data},
147       {OMPD_target_exit, OMPD_data, OMPD_target_exit_data},
148       {OMPD_for, OMPD_simd, OMPD_for_simd},
149       {OMPD_parallel, OMPD_for, OMPD_parallel_for},
150       {OMPD_parallel_for, OMPD_simd, OMPD_parallel_for_simd},
151       {OMPD_parallel, OMPD_sections, OMPD_parallel_sections},
152       {OMPD_taskloop, OMPD_simd, OMPD_taskloop_simd},
153       {OMPD_target, OMPD_parallel, OMPD_target_parallel},
154       {OMPD_target, OMPD_simd, OMPD_target_simd},
155       {OMPD_target_parallel, OMPD_for, OMPD_target_parallel_for},
156       {OMPD_target_parallel_for, OMPD_simd, OMPD_target_parallel_for_simd},
157       {OMPD_teams, OMPD_distribute, OMPD_teams_distribute},
158       {OMPD_teams_distribute, OMPD_simd, OMPD_teams_distribute_simd},
159       {OMPD_teams_distribute, OMPD_parallel, OMPD_teams_distribute_parallel},
160       {OMPD_teams_distribute_parallel, OMPD_for,
161        OMPD_teams_distribute_parallel_for},
162       {OMPD_teams_distribute_parallel_for, OMPD_simd,
163        OMPD_teams_distribute_parallel_for_simd},
164       {OMPD_target, OMPD_teams, OMPD_target_teams},
165       {OMPD_target_teams, OMPD_distribute, OMPD_target_teams_distribute},
166       {OMPD_target_teams_distribute, OMPD_parallel,
167        OMPD_target_teams_distribute_parallel},
168       {OMPD_target_teams_distribute, OMPD_simd,
169        OMPD_target_teams_distribute_simd},
170       {OMPD_target_teams_distribute_parallel, OMPD_for,
171        OMPD_target_teams_distribute_parallel_for},
172       {OMPD_target_teams_distribute_parallel_for, OMPD_simd,
173        OMPD_target_teams_distribute_parallel_for_simd},
174       {OMPD_master, OMPD_taskloop, OMPD_master_taskloop},
175       {OMPD_master_taskloop, OMPD_simd, OMPD_master_taskloop_simd},
176       {OMPD_parallel, OMPD_master, OMPD_parallel_master},
177       {OMPD_parallel_master, OMPD_taskloop, OMPD_parallel_master_taskloop},
178       {OMPD_parallel_master_taskloop, OMPD_simd,
179        OMPD_parallel_master_taskloop_simd}};
180   enum { CancellationPoint = 0, DeclareReduction = 1, TargetData = 2 };
181   Token Tok = P.getCurToken();
182   OpenMPDirectiveKindExWrapper DKind =
183       Tok.isAnnotation()
184           ? static_cast<unsigned>(OMPD_unknown)
185           : getOpenMPDirectiveKindEx(P.getPreprocessor().getSpelling(Tok));
186   if (DKind == OMPD_unknown)
187     return OMPD_unknown;
188 
189   for (unsigned I = 0; I < llvm::array_lengthof(F); ++I) {
190     if (DKind != F[I][0])
191       continue;
192 
193     Tok = P.getPreprocessor().LookAhead(0);
194     OpenMPDirectiveKindExWrapper SDKind =
195         Tok.isAnnotation()
196             ? static_cast<unsigned>(OMPD_unknown)
197             : getOpenMPDirectiveKindEx(P.getPreprocessor().getSpelling(Tok));
198     if (SDKind == OMPD_unknown)
199       continue;
200 
201     if (SDKind == F[I][1]) {
202       P.ConsumeToken();
203       DKind = F[I][2];
204     }
205   }
206   return unsigned(DKind) < llvm::omp::Directive_enumSize
207              ? static_cast<OpenMPDirectiveKind>(DKind)
208              : OMPD_unknown;
209 }
210 
211 static DeclarationName parseOpenMPReductionId(Parser &P) {
212   Token Tok = P.getCurToken();
213   Sema &Actions = P.getActions();
214   OverloadedOperatorKind OOK = OO_None;
215   // Allow to use 'operator' keyword for C++ operators
216   bool WithOperator = false;
217   if (Tok.is(tok::kw_operator)) {
218     P.ConsumeToken();
219     Tok = P.getCurToken();
220     WithOperator = true;
221   }
222   switch (Tok.getKind()) {
223   case tok::plus: // '+'
224     OOK = OO_Plus;
225     break;
226   case tok::minus: // '-'
227     OOK = OO_Minus;
228     break;
229   case tok::star: // '*'
230     OOK = OO_Star;
231     break;
232   case tok::amp: // '&'
233     OOK = OO_Amp;
234     break;
235   case tok::pipe: // '|'
236     OOK = OO_Pipe;
237     break;
238   case tok::caret: // '^'
239     OOK = OO_Caret;
240     break;
241   case tok::ampamp: // '&&'
242     OOK = OO_AmpAmp;
243     break;
244   case tok::pipepipe: // '||'
245     OOK = OO_PipePipe;
246     break;
247   case tok::identifier: // identifier
248     if (!WithOperator)
249       break;
250     LLVM_FALLTHROUGH;
251   default:
252     P.Diag(Tok.getLocation(), diag::err_omp_expected_reduction_identifier);
253     P.SkipUntil(tok::colon, tok::r_paren, tok::annot_pragma_openmp_end,
254                 Parser::StopBeforeMatch);
255     return DeclarationName();
256   }
257   P.ConsumeToken();
258   auto &DeclNames = Actions.getASTContext().DeclarationNames;
259   return OOK == OO_None ? DeclNames.getIdentifier(Tok.getIdentifierInfo())
260                         : DeclNames.getCXXOperatorName(OOK);
261 }
262 
263 /// Parse 'omp declare reduction' construct.
264 ///
265 ///       declare-reduction-directive:
266 ///        annot_pragma_openmp 'declare' 'reduction'
267 ///        '(' <reduction_id> ':' <type> {',' <type>} ':' <expression> ')'
268 ///        ['initializer' '(' ('omp_priv' '=' <expression>)|<function_call> ')']
269 ///        annot_pragma_openmp_end
270 /// <reduction_id> is either a base language identifier or one of the following
271 /// operators: '+', '-', '*', '&', '|', '^', '&&' and '||'.
272 ///
273 Parser::DeclGroupPtrTy
274 Parser::ParseOpenMPDeclareReductionDirective(AccessSpecifier AS) {
275   // Parse '('.
276   BalancedDelimiterTracker T(*this, tok::l_paren, tok::annot_pragma_openmp_end);
277   if (T.expectAndConsume(
278           diag::err_expected_lparen_after,
279           getOpenMPDirectiveName(OMPD_declare_reduction).data())) {
280     SkipUntil(tok::annot_pragma_openmp_end, StopBeforeMatch);
281     return DeclGroupPtrTy();
282   }
283 
284   DeclarationName Name = parseOpenMPReductionId(*this);
285   if (Name.isEmpty() && Tok.is(tok::annot_pragma_openmp_end))
286     return DeclGroupPtrTy();
287 
288   // Consume ':'.
289   bool IsCorrect = !ExpectAndConsume(tok::colon);
290 
291   if (!IsCorrect && Tok.is(tok::annot_pragma_openmp_end))
292     return DeclGroupPtrTy();
293 
294   IsCorrect = IsCorrect && !Name.isEmpty();
295 
296   if (Tok.is(tok::colon) || Tok.is(tok::annot_pragma_openmp_end)) {
297     Diag(Tok.getLocation(), diag::err_expected_type);
298     IsCorrect = false;
299   }
300 
301   if (!IsCorrect && Tok.is(tok::annot_pragma_openmp_end))
302     return DeclGroupPtrTy();
303 
304   SmallVector<std::pair<QualType, SourceLocation>, 8> ReductionTypes;
305   // Parse list of types until ':' token.
306   do {
307     ColonProtectionRAIIObject ColonRAII(*this);
308     SourceRange Range;
309     TypeResult TR = ParseTypeName(&Range, DeclaratorContext::Prototype, AS);
310     if (TR.isUsable()) {
311       QualType ReductionType =
312           Actions.ActOnOpenMPDeclareReductionType(Range.getBegin(), TR);
313       if (!ReductionType.isNull()) {
314         ReductionTypes.push_back(
315             std::make_pair(ReductionType, Range.getBegin()));
316       }
317     } else {
318       SkipUntil(tok::comma, tok::colon, tok::annot_pragma_openmp_end,
319                 StopBeforeMatch);
320     }
321 
322     if (Tok.is(tok::colon) || Tok.is(tok::annot_pragma_openmp_end))
323       break;
324 
325     // Consume ','.
326     if (ExpectAndConsume(tok::comma)) {
327       IsCorrect = false;
328       if (Tok.is(tok::annot_pragma_openmp_end)) {
329         Diag(Tok.getLocation(), diag::err_expected_type);
330         return DeclGroupPtrTy();
331       }
332     }
333   } while (Tok.isNot(tok::annot_pragma_openmp_end));
334 
335   if (ReductionTypes.empty()) {
336     SkipUntil(tok::annot_pragma_openmp_end, StopBeforeMatch);
337     return DeclGroupPtrTy();
338   }
339 
340   if (!IsCorrect && Tok.is(tok::annot_pragma_openmp_end))
341     return DeclGroupPtrTy();
342 
343   // Consume ':'.
344   if (ExpectAndConsume(tok::colon))
345     IsCorrect = false;
346 
347   if (Tok.is(tok::annot_pragma_openmp_end)) {
348     Diag(Tok.getLocation(), diag::err_expected_expression);
349     return DeclGroupPtrTy();
350   }
351 
352   DeclGroupPtrTy DRD = Actions.ActOnOpenMPDeclareReductionDirectiveStart(
353       getCurScope(), Actions.getCurLexicalContext(), Name, ReductionTypes, AS);
354 
355   // Parse <combiner> expression and then parse initializer if any for each
356   // correct type.
357   unsigned I = 0, E = ReductionTypes.size();
358   for (Decl *D : DRD.get()) {
359     TentativeParsingAction TPA(*this);
360     ParseScope OMPDRScope(this, Scope::FnScope | Scope::DeclScope |
361                                     Scope::CompoundStmtScope |
362                                     Scope::OpenMPDirectiveScope);
363     // Parse <combiner> expression.
364     Actions.ActOnOpenMPDeclareReductionCombinerStart(getCurScope(), D);
365     ExprResult CombinerResult = Actions.ActOnFinishFullExpr(
366         ParseExpression().get(), D->getLocation(), /*DiscardedValue*/ false);
367     Actions.ActOnOpenMPDeclareReductionCombinerEnd(D, CombinerResult.get());
368 
369     if (CombinerResult.isInvalid() && Tok.isNot(tok::r_paren) &&
370         Tok.isNot(tok::annot_pragma_openmp_end)) {
371       TPA.Commit();
372       IsCorrect = false;
373       break;
374     }
375     IsCorrect = !T.consumeClose() && IsCorrect && CombinerResult.isUsable();
376     ExprResult InitializerResult;
377     if (Tok.isNot(tok::annot_pragma_openmp_end)) {
378       // Parse <initializer> expression.
379       if (Tok.is(tok::identifier) &&
380           Tok.getIdentifierInfo()->isStr("initializer")) {
381         ConsumeToken();
382       } else {
383         Diag(Tok.getLocation(), diag::err_expected) << "'initializer'";
384         TPA.Commit();
385         IsCorrect = false;
386         break;
387       }
388       // Parse '('.
389       BalancedDelimiterTracker T(*this, tok::l_paren,
390                                  tok::annot_pragma_openmp_end);
391       IsCorrect =
392           !T.expectAndConsume(diag::err_expected_lparen_after, "initializer") &&
393           IsCorrect;
394       if (Tok.isNot(tok::annot_pragma_openmp_end)) {
395         ParseScope OMPDRScope(this, Scope::FnScope | Scope::DeclScope |
396                                         Scope::CompoundStmtScope |
397                                         Scope::OpenMPDirectiveScope);
398         // Parse expression.
399         VarDecl *OmpPrivParm =
400             Actions.ActOnOpenMPDeclareReductionInitializerStart(getCurScope(),
401                                                                 D);
402         // Check if initializer is omp_priv <init_expr> or something else.
403         if (Tok.is(tok::identifier) &&
404             Tok.getIdentifierInfo()->isStr("omp_priv")) {
405           ConsumeToken();
406           ParseOpenMPReductionInitializerForDecl(OmpPrivParm);
407         } else {
408           InitializerResult = Actions.ActOnFinishFullExpr(
409               ParseAssignmentExpression().get(), D->getLocation(),
410               /*DiscardedValue*/ false);
411         }
412         Actions.ActOnOpenMPDeclareReductionInitializerEnd(
413             D, InitializerResult.get(), OmpPrivParm);
414         if (InitializerResult.isInvalid() && Tok.isNot(tok::r_paren) &&
415             Tok.isNot(tok::annot_pragma_openmp_end)) {
416           TPA.Commit();
417           IsCorrect = false;
418           break;
419         }
420         IsCorrect =
421             !T.consumeClose() && IsCorrect && !InitializerResult.isInvalid();
422       }
423     }
424 
425     ++I;
426     // Revert parsing if not the last type, otherwise accept it, we're done with
427     // parsing.
428     if (I != E)
429       TPA.Revert();
430     else
431       TPA.Commit();
432   }
433   return Actions.ActOnOpenMPDeclareReductionDirectiveEnd(getCurScope(), DRD,
434                                                          IsCorrect);
435 }
436 
437 void Parser::ParseOpenMPReductionInitializerForDecl(VarDecl *OmpPrivParm) {
438   // Parse declarator '=' initializer.
439   // If a '==' or '+=' is found, suggest a fixit to '='.
440   if (isTokenEqualOrEqualTypo()) {
441     ConsumeToken();
442 
443     if (Tok.is(tok::code_completion)) {
444       Actions.CodeCompleteInitializer(getCurScope(), OmpPrivParm);
445       Actions.FinalizeDeclaration(OmpPrivParm);
446       cutOffParsing();
447       return;
448     }
449 
450     PreferredType.enterVariableInit(Tok.getLocation(), OmpPrivParm);
451     ExprResult Init = ParseInitializer();
452 
453     if (Init.isInvalid()) {
454       SkipUntil(tok::r_paren, tok::annot_pragma_openmp_end, StopBeforeMatch);
455       Actions.ActOnInitializerError(OmpPrivParm);
456     } else {
457       Actions.AddInitializerToDecl(OmpPrivParm, Init.get(),
458                                    /*DirectInit=*/false);
459     }
460   } else if (Tok.is(tok::l_paren)) {
461     // Parse C++ direct initializer: '(' expression-list ')'
462     BalancedDelimiterTracker T(*this, tok::l_paren);
463     T.consumeOpen();
464 
465     ExprVector Exprs;
466     CommaLocsTy CommaLocs;
467 
468     SourceLocation LParLoc = T.getOpenLocation();
469     auto RunSignatureHelp = [this, OmpPrivParm, LParLoc, &Exprs]() {
470       QualType PreferredType = Actions.ProduceConstructorSignatureHelp(
471           getCurScope(), OmpPrivParm->getType()->getCanonicalTypeInternal(),
472           OmpPrivParm->getLocation(), Exprs, LParLoc);
473       CalledSignatureHelp = true;
474       return PreferredType;
475     };
476     if (ParseExpressionList(Exprs, CommaLocs, [&] {
477           PreferredType.enterFunctionArgument(Tok.getLocation(),
478                                               RunSignatureHelp);
479         })) {
480       if (PP.isCodeCompletionReached() && !CalledSignatureHelp)
481         RunSignatureHelp();
482       Actions.ActOnInitializerError(OmpPrivParm);
483       SkipUntil(tok::r_paren, tok::annot_pragma_openmp_end, StopBeforeMatch);
484     } else {
485       // Match the ')'.
486       SourceLocation RLoc = Tok.getLocation();
487       if (!T.consumeClose())
488         RLoc = T.getCloseLocation();
489 
490       assert(!Exprs.empty() && Exprs.size() - 1 == CommaLocs.size() &&
491              "Unexpected number of commas!");
492 
493       ExprResult Initializer =
494           Actions.ActOnParenListExpr(T.getOpenLocation(), RLoc, Exprs);
495       Actions.AddInitializerToDecl(OmpPrivParm, Initializer.get(),
496                                    /*DirectInit=*/true);
497     }
498   } else if (getLangOpts().CPlusPlus11 && Tok.is(tok::l_brace)) {
499     // Parse C++0x braced-init-list.
500     Diag(Tok, diag::warn_cxx98_compat_generalized_initializer_lists);
501 
502     ExprResult Init(ParseBraceInitializer());
503 
504     if (Init.isInvalid()) {
505       Actions.ActOnInitializerError(OmpPrivParm);
506     } else {
507       Actions.AddInitializerToDecl(OmpPrivParm, Init.get(),
508                                    /*DirectInit=*/true);
509     }
510   } else {
511     Actions.ActOnUninitializedDecl(OmpPrivParm);
512   }
513 }
514 
515 /// Parses 'omp declare mapper' directive.
516 ///
517 ///       declare-mapper-directive:
518 ///         annot_pragma_openmp 'declare' 'mapper' '(' [<mapper-identifier> ':']
519 ///         <type> <var> ')' [<clause>[[,] <clause>] ... ]
520 ///         annot_pragma_openmp_end
521 /// <mapper-identifier> and <var> are base language identifiers.
522 ///
523 Parser::DeclGroupPtrTy
524 Parser::ParseOpenMPDeclareMapperDirective(AccessSpecifier AS) {
525   bool IsCorrect = true;
526   // Parse '('
527   BalancedDelimiterTracker T(*this, tok::l_paren, tok::annot_pragma_openmp_end);
528   if (T.expectAndConsume(diag::err_expected_lparen_after,
529                          getOpenMPDirectiveName(OMPD_declare_mapper).data())) {
530     SkipUntil(tok::annot_pragma_openmp_end, StopBeforeMatch);
531     return DeclGroupPtrTy();
532   }
533 
534   // Parse <mapper-identifier>
535   auto &DeclNames = Actions.getASTContext().DeclarationNames;
536   DeclarationName MapperId;
537   if (PP.LookAhead(0).is(tok::colon)) {
538     if (Tok.isNot(tok::identifier) && Tok.isNot(tok::kw_default)) {
539       Diag(Tok.getLocation(), diag::err_omp_mapper_illegal_identifier);
540       IsCorrect = false;
541     } else {
542       MapperId = DeclNames.getIdentifier(Tok.getIdentifierInfo());
543     }
544     ConsumeToken();
545     // Consume ':'.
546     ExpectAndConsume(tok::colon);
547   } else {
548     // If no mapper identifier is provided, its name is "default" by default
549     MapperId =
550         DeclNames.getIdentifier(&Actions.getASTContext().Idents.get("default"));
551   }
552 
553   if (!IsCorrect && Tok.is(tok::annot_pragma_openmp_end))
554     return DeclGroupPtrTy();
555 
556   // Parse <type> <var>
557   DeclarationName VName;
558   QualType MapperType;
559   SourceRange Range;
560   TypeResult ParsedType = parseOpenMPDeclareMapperVarDecl(Range, VName, AS);
561   if (ParsedType.isUsable())
562     MapperType =
563         Actions.ActOnOpenMPDeclareMapperType(Range.getBegin(), ParsedType);
564   if (MapperType.isNull())
565     IsCorrect = false;
566   if (!IsCorrect) {
567     SkipUntil(tok::annot_pragma_openmp_end, Parser::StopBeforeMatch);
568     return DeclGroupPtrTy();
569   }
570 
571   // Consume ')'.
572   IsCorrect &= !T.consumeClose();
573   if (!IsCorrect) {
574     SkipUntil(tok::annot_pragma_openmp_end, Parser::StopBeforeMatch);
575     return DeclGroupPtrTy();
576   }
577 
578   // Enter scope.
579   DeclarationNameInfo DirName;
580   SourceLocation Loc = Tok.getLocation();
581   unsigned ScopeFlags = Scope::FnScope | Scope::DeclScope |
582                         Scope::CompoundStmtScope | Scope::OpenMPDirectiveScope;
583   ParseScope OMPDirectiveScope(this, ScopeFlags);
584   Actions.StartOpenMPDSABlock(OMPD_declare_mapper, DirName, getCurScope(), Loc);
585 
586   // Add the mapper variable declaration.
587   ExprResult MapperVarRef = Actions.ActOnOpenMPDeclareMapperDirectiveVarDecl(
588       getCurScope(), MapperType, Range.getBegin(), VName);
589 
590   // Parse map clauses.
591   SmallVector<OMPClause *, 6> Clauses;
592   while (Tok.isNot(tok::annot_pragma_openmp_end)) {
593     OpenMPClauseKind CKind = Tok.isAnnotation()
594                                  ? OMPC_unknown
595                                  : getOpenMPClauseKind(PP.getSpelling(Tok));
596     Actions.StartOpenMPClause(CKind);
597     OMPClause *Clause =
598         ParseOpenMPClause(OMPD_declare_mapper, CKind, Clauses.empty());
599     if (Clause)
600       Clauses.push_back(Clause);
601     else
602       IsCorrect = false;
603     // Skip ',' if any.
604     if (Tok.is(tok::comma))
605       ConsumeToken();
606     Actions.EndOpenMPClause();
607   }
608   if (Clauses.empty()) {
609     Diag(Tok, diag::err_omp_expected_clause)
610         << getOpenMPDirectiveName(OMPD_declare_mapper);
611     IsCorrect = false;
612   }
613 
614   // Exit scope.
615   Actions.EndOpenMPDSABlock(nullptr);
616   OMPDirectiveScope.Exit();
617   DeclGroupPtrTy DG = Actions.ActOnOpenMPDeclareMapperDirective(
618       getCurScope(), Actions.getCurLexicalContext(), MapperId, MapperType,
619       Range.getBegin(), VName, AS, MapperVarRef.get(), Clauses);
620   if (!IsCorrect)
621     return DeclGroupPtrTy();
622 
623   return DG;
624 }
625 
626 TypeResult Parser::parseOpenMPDeclareMapperVarDecl(SourceRange &Range,
627                                                    DeclarationName &Name,
628                                                    AccessSpecifier AS) {
629   // Parse the common declaration-specifiers piece.
630   Parser::DeclSpecContext DSC = Parser::DeclSpecContext::DSC_type_specifier;
631   DeclSpec DS(AttrFactory);
632   ParseSpecifierQualifierList(DS, AS, DSC);
633 
634   // Parse the declarator.
635   DeclaratorContext Context = DeclaratorContext::Prototype;
636   Declarator DeclaratorInfo(DS, Context);
637   ParseDeclarator(DeclaratorInfo);
638   Range = DeclaratorInfo.getSourceRange();
639   if (DeclaratorInfo.getIdentifier() == nullptr) {
640     Diag(Tok.getLocation(), diag::err_omp_mapper_expected_declarator);
641     return true;
642   }
643   Name = Actions.GetNameForDeclarator(DeclaratorInfo).getName();
644 
645   return Actions.ActOnOpenMPDeclareMapperVarDecl(getCurScope(), DeclaratorInfo);
646 }
647 
648 namespace {
649 /// RAII that recreates function context for correct parsing of clauses of
650 /// 'declare simd' construct.
651 /// OpenMP, 2.8.2 declare simd Construct
652 /// The expressions appearing in the clauses of this directive are evaluated in
653 /// the scope of the arguments of the function declaration or definition.
654 class FNContextRAII final {
655   Parser &P;
656   Sema::CXXThisScopeRAII *ThisScope;
657   Parser::MultiParseScope Scopes;
658   bool HasFunScope = false;
659   FNContextRAII() = delete;
660   FNContextRAII(const FNContextRAII &) = delete;
661   FNContextRAII &operator=(const FNContextRAII &) = delete;
662 
663 public:
664   FNContextRAII(Parser &P, Parser::DeclGroupPtrTy Ptr) : P(P), Scopes(P) {
665     Decl *D = *Ptr.get().begin();
666     NamedDecl *ND = dyn_cast<NamedDecl>(D);
667     RecordDecl *RD = dyn_cast_or_null<RecordDecl>(D->getDeclContext());
668     Sema &Actions = P.getActions();
669 
670     // Allow 'this' within late-parsed attributes.
671     ThisScope = new Sema::CXXThisScopeRAII(Actions, RD, Qualifiers(),
672                                            ND && ND->isCXXInstanceMember());
673 
674     // If the Decl is templatized, add template parameters to scope.
675     // FIXME: Track CurTemplateDepth?
676     P.ReenterTemplateScopes(Scopes, D);
677 
678     // If the Decl is on a function, add function parameters to the scope.
679     if (D->isFunctionOrFunctionTemplate()) {
680       HasFunScope = true;
681       Scopes.Enter(Scope::FnScope | Scope::DeclScope |
682                    Scope::CompoundStmtScope);
683       Actions.ActOnReenterFunctionContext(Actions.getCurScope(), D);
684     }
685   }
686   ~FNContextRAII() {
687     if (HasFunScope)
688       P.getActions().ActOnExitFunctionContext();
689     delete ThisScope;
690   }
691 };
692 } // namespace
693 
694 /// Parses clauses for 'declare simd' directive.
695 ///    clause:
696 ///      'inbranch' | 'notinbranch'
697 ///      'simdlen' '(' <expr> ')'
698 ///      { 'uniform' '(' <argument_list> ')' }
699 ///      { 'aligned '(' <argument_list> [ ':' <alignment> ] ')' }
700 ///      { 'linear '(' <argument_list> [ ':' <step> ] ')' }
701 static bool parseDeclareSimdClauses(
702     Parser &P, OMPDeclareSimdDeclAttr::BranchStateTy &BS, ExprResult &SimdLen,
703     SmallVectorImpl<Expr *> &Uniforms, SmallVectorImpl<Expr *> &Aligneds,
704     SmallVectorImpl<Expr *> &Alignments, SmallVectorImpl<Expr *> &Linears,
705     SmallVectorImpl<unsigned> &LinModifiers, SmallVectorImpl<Expr *> &Steps) {
706   SourceRange BSRange;
707   const Token &Tok = P.getCurToken();
708   bool IsError = false;
709   while (Tok.isNot(tok::annot_pragma_openmp_end)) {
710     if (Tok.isNot(tok::identifier))
711       break;
712     OMPDeclareSimdDeclAttr::BranchStateTy Out;
713     IdentifierInfo *II = Tok.getIdentifierInfo();
714     StringRef ClauseName = II->getName();
715     // Parse 'inranch|notinbranch' clauses.
716     if (OMPDeclareSimdDeclAttr::ConvertStrToBranchStateTy(ClauseName, Out)) {
717       if (BS != OMPDeclareSimdDeclAttr::BS_Undefined && BS != Out) {
718         P.Diag(Tok, diag::err_omp_declare_simd_inbranch_notinbranch)
719             << ClauseName
720             << OMPDeclareSimdDeclAttr::ConvertBranchStateTyToStr(BS) << BSRange;
721         IsError = true;
722       }
723       BS = Out;
724       BSRange = SourceRange(Tok.getLocation(), Tok.getEndLoc());
725       P.ConsumeToken();
726     } else if (ClauseName.equals("simdlen")) {
727       if (SimdLen.isUsable()) {
728         P.Diag(Tok, diag::err_omp_more_one_clause)
729             << getOpenMPDirectiveName(OMPD_declare_simd) << ClauseName << 0;
730         IsError = true;
731       }
732       P.ConsumeToken();
733       SourceLocation RLoc;
734       SimdLen = P.ParseOpenMPParensExpr(ClauseName, RLoc);
735       if (SimdLen.isInvalid())
736         IsError = true;
737     } else {
738       OpenMPClauseKind CKind = getOpenMPClauseKind(ClauseName);
739       if (CKind == OMPC_uniform || CKind == OMPC_aligned ||
740           CKind == OMPC_linear) {
741         Parser::OpenMPVarListDataTy Data;
742         SmallVectorImpl<Expr *> *Vars = &Uniforms;
743         if (CKind == OMPC_aligned) {
744           Vars = &Aligneds;
745         } else if (CKind == OMPC_linear) {
746           Data.ExtraModifier = OMPC_LINEAR_val;
747           Vars = &Linears;
748         }
749 
750         P.ConsumeToken();
751         if (P.ParseOpenMPVarList(OMPD_declare_simd,
752                                  getOpenMPClauseKind(ClauseName), *Vars, Data))
753           IsError = true;
754         if (CKind == OMPC_aligned) {
755           Alignments.append(Aligneds.size() - Alignments.size(),
756                             Data.DepModOrTailExpr);
757         } else if (CKind == OMPC_linear) {
758           assert(0 <= Data.ExtraModifier &&
759                  Data.ExtraModifier <= OMPC_LINEAR_unknown &&
760                  "Unexpected linear modifier.");
761           if (P.getActions().CheckOpenMPLinearModifier(
762                   static_cast<OpenMPLinearClauseKind>(Data.ExtraModifier),
763                   Data.ExtraModifierLoc))
764             Data.ExtraModifier = OMPC_LINEAR_val;
765           LinModifiers.append(Linears.size() - LinModifiers.size(),
766                               Data.ExtraModifier);
767           Steps.append(Linears.size() - Steps.size(), Data.DepModOrTailExpr);
768         }
769       } else
770         // TODO: add parsing of other clauses.
771         break;
772     }
773     // Skip ',' if any.
774     if (Tok.is(tok::comma))
775       P.ConsumeToken();
776   }
777   return IsError;
778 }
779 
780 /// Parse clauses for '#pragma omp declare simd'.
781 Parser::DeclGroupPtrTy
782 Parser::ParseOMPDeclareSimdClauses(Parser::DeclGroupPtrTy Ptr,
783                                    CachedTokens &Toks, SourceLocation Loc) {
784   PP.EnterToken(Tok, /*IsReinject*/ true);
785   PP.EnterTokenStream(Toks, /*DisableMacroExpansion=*/true,
786                       /*IsReinject*/ true);
787   // Consume the previously pushed token.
788   ConsumeAnyToken(/*ConsumeCodeCompletionTok=*/true);
789   ConsumeAnyToken(/*ConsumeCodeCompletionTok=*/true);
790 
791   FNContextRAII FnContext(*this, Ptr);
792   OMPDeclareSimdDeclAttr::BranchStateTy BS =
793       OMPDeclareSimdDeclAttr::BS_Undefined;
794   ExprResult Simdlen;
795   SmallVector<Expr *, 4> Uniforms;
796   SmallVector<Expr *, 4> Aligneds;
797   SmallVector<Expr *, 4> Alignments;
798   SmallVector<Expr *, 4> Linears;
799   SmallVector<unsigned, 4> LinModifiers;
800   SmallVector<Expr *, 4> Steps;
801   bool IsError =
802       parseDeclareSimdClauses(*this, BS, Simdlen, Uniforms, Aligneds,
803                               Alignments, Linears, LinModifiers, Steps);
804   skipUntilPragmaOpenMPEnd(OMPD_declare_simd);
805   // Skip the last annot_pragma_openmp_end.
806   SourceLocation EndLoc = ConsumeAnnotationToken();
807   if (IsError)
808     return Ptr;
809   return Actions.ActOnOpenMPDeclareSimdDirective(
810       Ptr, BS, Simdlen.get(), Uniforms, Aligneds, Alignments, Linears,
811       LinModifiers, Steps, SourceRange(Loc, EndLoc));
812 }
813 
814 namespace {
815 /// Constant used in the diagnostics to distinguish the levels in an OpenMP
816 /// contexts: selector-set={selector(trait, ...), ...}, ....
817 enum OMPContextLvl {
818   CONTEXT_SELECTOR_SET_LVL = 0,
819   CONTEXT_SELECTOR_LVL = 1,
820   CONTEXT_TRAIT_LVL = 2,
821 };
822 
823 static StringRef stringLiteralParser(Parser &P) {
824   ExprResult Res = P.ParseStringLiteralExpression(true);
825   return Res.isUsable() ? Res.getAs<StringLiteral>()->getString() : "";
826 }
827 
828 static StringRef getNameFromIdOrString(Parser &P, Token &Tok,
829                                        OMPContextLvl Lvl) {
830   if (Tok.is(tok::identifier)) {
831     llvm::SmallString<16> Buffer;
832     StringRef Name = P.getPreprocessor().getSpelling(Tok, Buffer);
833     (void)P.ConsumeToken();
834     return Name;
835   }
836 
837   if (tok::isStringLiteral(Tok.getKind()))
838     return stringLiteralParser(P);
839 
840   P.Diag(Tok.getLocation(),
841          diag::warn_omp_declare_variant_string_literal_or_identifier)
842       << Lvl;
843   return "";
844 }
845 
846 static bool checkForDuplicates(Parser &P, StringRef Name,
847                                SourceLocation NameLoc,
848                                llvm::StringMap<SourceLocation> &Seen,
849                                OMPContextLvl Lvl) {
850   auto Res = Seen.try_emplace(Name, NameLoc);
851   if (Res.second)
852     return false;
853 
854   // Each trait-set-selector-name, trait-selector-name and trait-name can
855   // only be specified once.
856   P.Diag(NameLoc, diag::warn_omp_declare_variant_ctx_mutiple_use)
857       << Lvl << Name;
858   P.Diag(Res.first->getValue(), diag::note_omp_declare_variant_ctx_used_here)
859       << Lvl << Name;
860   return true;
861 }
862 } // namespace
863 
864 void Parser::parseOMPTraitPropertyKind(OMPTraitProperty &TIProperty,
865                                        llvm::omp::TraitSet Set,
866                                        llvm::omp::TraitSelector Selector,
867                                        llvm::StringMap<SourceLocation> &Seen) {
868   TIProperty.Kind = TraitProperty::invalid;
869 
870   SourceLocation NameLoc = Tok.getLocation();
871   StringRef Name = getNameFromIdOrString(*this, Tok, CONTEXT_TRAIT_LVL);
872   if (Name.empty()) {
873     Diag(Tok.getLocation(), diag::note_omp_declare_variant_ctx_options)
874         << CONTEXT_TRAIT_LVL << listOpenMPContextTraitProperties(Set, Selector);
875     return;
876   }
877 
878   TIProperty.RawString = Name;
879   TIProperty.Kind = getOpenMPContextTraitPropertyKind(Set, Selector, Name);
880   if (TIProperty.Kind != TraitProperty::invalid) {
881     if (checkForDuplicates(*this, Name, NameLoc, Seen, CONTEXT_TRAIT_LVL))
882       TIProperty.Kind = TraitProperty::invalid;
883     return;
884   }
885 
886   // It follows diagnosis and helping notes.
887   // FIXME: We should move the diagnosis string generation into libFrontend.
888   Diag(NameLoc, diag::warn_omp_declare_variant_ctx_not_a_property)
889       << Name << getOpenMPContextTraitSelectorName(Selector)
890       << getOpenMPContextTraitSetName(Set);
891 
892   TraitSet SetForName = getOpenMPContextTraitSetKind(Name);
893   if (SetForName != TraitSet::invalid) {
894     Diag(NameLoc, diag::note_omp_declare_variant_ctx_is_a)
895         << Name << CONTEXT_SELECTOR_SET_LVL << CONTEXT_TRAIT_LVL;
896     Diag(NameLoc, diag::note_omp_declare_variant_ctx_try)
897         << Name << "<selector-name>"
898         << "(<property-name>)";
899     return;
900   }
901   TraitSelector SelectorForName = getOpenMPContextTraitSelectorKind(Name);
902   if (SelectorForName != TraitSelector::invalid) {
903     Diag(NameLoc, diag::note_omp_declare_variant_ctx_is_a)
904         << Name << CONTEXT_SELECTOR_LVL << CONTEXT_TRAIT_LVL;
905     bool AllowsTraitScore = false;
906     bool RequiresProperty = false;
907     isValidTraitSelectorForTraitSet(
908         SelectorForName, getOpenMPContextTraitSetForSelector(SelectorForName),
909         AllowsTraitScore, RequiresProperty);
910     Diag(NameLoc, diag::note_omp_declare_variant_ctx_try)
911         << getOpenMPContextTraitSetName(
912                getOpenMPContextTraitSetForSelector(SelectorForName))
913         << Name << (RequiresProperty ? "(<property-name>)" : "");
914     return;
915   }
916   for (const auto &PotentialSet :
917        {TraitSet::construct, TraitSet::user, TraitSet::implementation,
918         TraitSet::device}) {
919     TraitProperty PropertyForName =
920         getOpenMPContextTraitPropertyKind(PotentialSet, Selector, Name);
921     if (PropertyForName == TraitProperty::invalid)
922       continue;
923     Diag(NameLoc, diag::note_omp_declare_variant_ctx_try)
924         << getOpenMPContextTraitSetName(
925                getOpenMPContextTraitSetForProperty(PropertyForName))
926         << getOpenMPContextTraitSelectorName(
927                getOpenMPContextTraitSelectorForProperty(PropertyForName))
928         << ("(" + Name + ")").str();
929     return;
930   }
931   Diag(NameLoc, diag::note_omp_declare_variant_ctx_options)
932       << CONTEXT_TRAIT_LVL << listOpenMPContextTraitProperties(Set, Selector);
933 }
934 
935 static bool checkExtensionProperty(Parser &P, SourceLocation Loc,
936                                    OMPTraitProperty &TIProperty,
937                                    OMPTraitSelector &TISelector,
938                                    llvm::StringMap<SourceLocation> &Seen) {
939   assert(TISelector.Kind ==
940              llvm::omp::TraitSelector::implementation_extension &&
941          "Only for extension properties, e.g., "
942          "`implementation={extension(PROPERTY)}`");
943   if (TIProperty.Kind == TraitProperty::invalid)
944     return false;
945 
946   if (TIProperty.Kind ==
947       TraitProperty::implementation_extension_disable_implicit_base)
948     return true;
949 
950   if (TIProperty.Kind ==
951       TraitProperty::implementation_extension_allow_templates)
952     return true;
953 
954   auto IsMatchExtension = [](OMPTraitProperty &TP) {
955     return (TP.Kind ==
956                 llvm::omp::TraitProperty::implementation_extension_match_all ||
957             TP.Kind ==
958                 llvm::omp::TraitProperty::implementation_extension_match_any ||
959             TP.Kind ==
960                 llvm::omp::TraitProperty::implementation_extension_match_none);
961   };
962 
963   if (IsMatchExtension(TIProperty)) {
964     for (OMPTraitProperty &SeenProp : TISelector.Properties)
965       if (IsMatchExtension(SeenProp)) {
966         P.Diag(Loc, diag::err_omp_variant_ctx_second_match_extension);
967         StringRef SeenName = llvm::omp::getOpenMPContextTraitPropertyName(
968             SeenProp.Kind, SeenProp.RawString);
969         SourceLocation SeenLoc = Seen[SeenName];
970         P.Diag(SeenLoc, diag::note_omp_declare_variant_ctx_used_here)
971             << CONTEXT_TRAIT_LVL << SeenName;
972         return false;
973       }
974     return true;
975   }
976 
977   llvm_unreachable("Unknown extension property!");
978 }
979 
980 void Parser::parseOMPContextProperty(OMPTraitSelector &TISelector,
981                                      llvm::omp::TraitSet Set,
982                                      llvm::StringMap<SourceLocation> &Seen) {
983   assert(TISelector.Kind != TraitSelector::user_condition &&
984          "User conditions are special properties not handled here!");
985 
986   SourceLocation PropertyLoc = Tok.getLocation();
987   OMPTraitProperty TIProperty;
988   parseOMPTraitPropertyKind(TIProperty, Set, TISelector.Kind, Seen);
989 
990   if (TISelector.Kind == llvm::omp::TraitSelector::implementation_extension)
991     if (!checkExtensionProperty(*this, Tok.getLocation(), TIProperty,
992                                 TISelector, Seen))
993       TIProperty.Kind = TraitProperty::invalid;
994 
995   // If we have an invalid property here we already issued a warning.
996   if (TIProperty.Kind == TraitProperty::invalid) {
997     if (PropertyLoc != Tok.getLocation())
998       Diag(Tok.getLocation(), diag::note_omp_declare_variant_ctx_continue_here)
999           << CONTEXT_TRAIT_LVL;
1000     return;
1001   }
1002 
1003   if (isValidTraitPropertyForTraitSetAndSelector(TIProperty.Kind,
1004                                                  TISelector.Kind, Set)) {
1005 
1006     // If we make it here the property, selector, set, score, condition, ... are
1007     // all valid (or have been corrected). Thus we can record the property.
1008     TISelector.Properties.push_back(TIProperty);
1009     return;
1010   }
1011 
1012   Diag(PropertyLoc, diag::warn_omp_ctx_incompatible_property_for_selector)
1013       << getOpenMPContextTraitPropertyName(TIProperty.Kind,
1014                                            TIProperty.RawString)
1015       << getOpenMPContextTraitSelectorName(TISelector.Kind)
1016       << getOpenMPContextTraitSetName(Set);
1017   Diag(PropertyLoc, diag::note_omp_ctx_compatible_set_and_selector_for_property)
1018       << getOpenMPContextTraitPropertyName(TIProperty.Kind,
1019                                            TIProperty.RawString)
1020       << getOpenMPContextTraitSelectorName(
1021              getOpenMPContextTraitSelectorForProperty(TIProperty.Kind))
1022       << getOpenMPContextTraitSetName(
1023              getOpenMPContextTraitSetForProperty(TIProperty.Kind));
1024   Diag(Tok.getLocation(), diag::note_omp_declare_variant_ctx_continue_here)
1025       << CONTEXT_TRAIT_LVL;
1026 }
1027 
1028 void Parser::parseOMPTraitSelectorKind(OMPTraitSelector &TISelector,
1029                                        llvm::omp::TraitSet Set,
1030                                        llvm::StringMap<SourceLocation> &Seen) {
1031   TISelector.Kind = TraitSelector::invalid;
1032 
1033   SourceLocation NameLoc = Tok.getLocation();
1034   StringRef Name = getNameFromIdOrString(*this, Tok, CONTEXT_SELECTOR_LVL);
1035   if (Name.empty()) {
1036     Diag(Tok.getLocation(), diag::note_omp_declare_variant_ctx_options)
1037         << CONTEXT_SELECTOR_LVL << listOpenMPContextTraitSelectors(Set);
1038     return;
1039   }
1040 
1041   TISelector.Kind = getOpenMPContextTraitSelectorKind(Name);
1042   if (TISelector.Kind != TraitSelector::invalid) {
1043     if (checkForDuplicates(*this, Name, NameLoc, Seen, CONTEXT_SELECTOR_LVL))
1044       TISelector.Kind = TraitSelector::invalid;
1045     return;
1046   }
1047 
1048   // It follows diagnosis and helping notes.
1049   Diag(NameLoc, diag::warn_omp_declare_variant_ctx_not_a_selector)
1050       << Name << getOpenMPContextTraitSetName(Set);
1051 
1052   TraitSet SetForName = getOpenMPContextTraitSetKind(Name);
1053   if (SetForName != TraitSet::invalid) {
1054     Diag(NameLoc, diag::note_omp_declare_variant_ctx_is_a)
1055         << Name << CONTEXT_SELECTOR_SET_LVL << CONTEXT_SELECTOR_LVL;
1056     Diag(NameLoc, diag::note_omp_declare_variant_ctx_try)
1057         << Name << "<selector-name>"
1058         << "<property-name>";
1059     return;
1060   }
1061   for (const auto &PotentialSet :
1062        {TraitSet::construct, TraitSet::user, TraitSet::implementation,
1063         TraitSet::device}) {
1064     TraitProperty PropertyForName = getOpenMPContextTraitPropertyKind(
1065         PotentialSet, TraitSelector::invalid, Name);
1066     if (PropertyForName == TraitProperty::invalid)
1067       continue;
1068     Diag(NameLoc, diag::note_omp_declare_variant_ctx_is_a)
1069         << Name << CONTEXT_TRAIT_LVL << CONTEXT_SELECTOR_LVL;
1070     Diag(NameLoc, diag::note_omp_declare_variant_ctx_try)
1071         << getOpenMPContextTraitSetName(
1072                getOpenMPContextTraitSetForProperty(PropertyForName))
1073         << getOpenMPContextTraitSelectorName(
1074                getOpenMPContextTraitSelectorForProperty(PropertyForName))
1075         << ("(" + Name + ")").str();
1076     return;
1077   }
1078   Diag(NameLoc, diag::note_omp_declare_variant_ctx_options)
1079       << CONTEXT_SELECTOR_LVL << listOpenMPContextTraitSelectors(Set);
1080 }
1081 
1082 /// Parse optional 'score' '(' <expr> ')' ':'.
1083 static ExprResult parseContextScore(Parser &P) {
1084   ExprResult ScoreExpr;
1085   llvm::SmallString<16> Buffer;
1086   StringRef SelectorName =
1087       P.getPreprocessor().getSpelling(P.getCurToken(), Buffer);
1088   if (!SelectorName.equals("score"))
1089     return ScoreExpr;
1090   (void)P.ConsumeToken();
1091   SourceLocation RLoc;
1092   ScoreExpr = P.ParseOpenMPParensExpr(SelectorName, RLoc);
1093   // Parse ':'
1094   if (P.getCurToken().is(tok::colon))
1095     (void)P.ConsumeAnyToken();
1096   else
1097     P.Diag(P.getCurToken(), diag::warn_omp_declare_variant_expected)
1098         << "':'"
1099         << "score expression";
1100   return ScoreExpr;
1101 }
1102 
1103 /// Parses an OpenMP context selector.
1104 ///
1105 /// <trait-selector-name> ['('[<trait-score>] <trait-property> [, <t-p>]* ')']
1106 void Parser::parseOMPContextSelector(
1107     OMPTraitSelector &TISelector, llvm::omp::TraitSet Set,
1108     llvm::StringMap<SourceLocation> &SeenSelectors) {
1109   unsigned short OuterPC = ParenCount;
1110 
1111   // If anything went wrong we issue an error or warning and then skip the rest
1112   // of the selector. However, commas are ambiguous so we look for the nesting
1113   // of parentheses here as well.
1114   auto FinishSelector = [OuterPC, this]() -> void {
1115     bool Done = false;
1116     while (!Done) {
1117       while (!SkipUntil({tok::r_brace, tok::r_paren, tok::comma,
1118                          tok::annot_pragma_openmp_end},
1119                         StopBeforeMatch))
1120         ;
1121       if (Tok.is(tok::r_paren) && OuterPC > ParenCount)
1122         (void)ConsumeParen();
1123       if (OuterPC <= ParenCount) {
1124         Done = true;
1125         break;
1126       }
1127       if (!Tok.is(tok::comma) && !Tok.is(tok::r_paren)) {
1128         Done = true;
1129         break;
1130       }
1131       (void)ConsumeAnyToken();
1132     }
1133     Diag(Tok.getLocation(), diag::note_omp_declare_variant_ctx_continue_here)
1134         << CONTEXT_SELECTOR_LVL;
1135   };
1136 
1137   SourceLocation SelectorLoc = Tok.getLocation();
1138   parseOMPTraitSelectorKind(TISelector, Set, SeenSelectors);
1139   if (TISelector.Kind == TraitSelector::invalid)
1140     return FinishSelector();
1141 
1142   bool AllowsTraitScore = false;
1143   bool RequiresProperty = false;
1144   if (!isValidTraitSelectorForTraitSet(TISelector.Kind, Set, AllowsTraitScore,
1145                                        RequiresProperty)) {
1146     Diag(SelectorLoc, diag::warn_omp_ctx_incompatible_selector_for_set)
1147         << getOpenMPContextTraitSelectorName(TISelector.Kind)
1148         << getOpenMPContextTraitSetName(Set);
1149     Diag(SelectorLoc, diag::note_omp_ctx_compatible_set_for_selector)
1150         << getOpenMPContextTraitSelectorName(TISelector.Kind)
1151         << getOpenMPContextTraitSetName(
1152                getOpenMPContextTraitSetForSelector(TISelector.Kind))
1153         << RequiresProperty;
1154     return FinishSelector();
1155   }
1156 
1157   if (!RequiresProperty) {
1158     TISelector.Properties.push_back(
1159         {getOpenMPContextTraitPropertyForSelector(TISelector.Kind),
1160          getOpenMPContextTraitSelectorName(TISelector.Kind)});
1161     return;
1162   }
1163 
1164   if (!Tok.is(tok::l_paren)) {
1165     Diag(SelectorLoc, diag::warn_omp_ctx_selector_without_properties)
1166         << getOpenMPContextTraitSelectorName(TISelector.Kind)
1167         << getOpenMPContextTraitSetName(Set);
1168     return FinishSelector();
1169   }
1170 
1171   if (TISelector.Kind == TraitSelector::user_condition) {
1172     SourceLocation RLoc;
1173     ExprResult Condition = ParseOpenMPParensExpr("user condition", RLoc);
1174     if (!Condition.isUsable())
1175       return FinishSelector();
1176     TISelector.ScoreOrCondition = Condition.get();
1177     TISelector.Properties.push_back(
1178         {TraitProperty::user_condition_unknown, "<condition>"});
1179     return;
1180   }
1181 
1182   BalancedDelimiterTracker BDT(*this, tok::l_paren,
1183                                tok::annot_pragma_openmp_end);
1184   // Parse '('.
1185   (void)BDT.consumeOpen();
1186 
1187   SourceLocation ScoreLoc = Tok.getLocation();
1188   ExprResult Score = parseContextScore(*this);
1189 
1190   if (!AllowsTraitScore && !Score.isUnset()) {
1191     if (Score.isUsable()) {
1192       Diag(ScoreLoc, diag::warn_omp_ctx_incompatible_score_for_property)
1193           << getOpenMPContextTraitSelectorName(TISelector.Kind)
1194           << getOpenMPContextTraitSetName(Set) << Score.get();
1195     } else {
1196       Diag(ScoreLoc, diag::warn_omp_ctx_incompatible_score_for_property)
1197           << getOpenMPContextTraitSelectorName(TISelector.Kind)
1198           << getOpenMPContextTraitSetName(Set) << "<invalid>";
1199     }
1200     Score = ExprResult();
1201   }
1202 
1203   if (Score.isUsable())
1204     TISelector.ScoreOrCondition = Score.get();
1205 
1206   llvm::StringMap<SourceLocation> SeenProperties;
1207   do {
1208     parseOMPContextProperty(TISelector, Set, SeenProperties);
1209   } while (TryConsumeToken(tok::comma));
1210 
1211   // Parse ')'.
1212   BDT.consumeClose();
1213 }
1214 
1215 void Parser::parseOMPTraitSetKind(OMPTraitSet &TISet,
1216                                   llvm::StringMap<SourceLocation> &Seen) {
1217   TISet.Kind = TraitSet::invalid;
1218 
1219   SourceLocation NameLoc = Tok.getLocation();
1220   StringRef Name = getNameFromIdOrString(*this, Tok, CONTEXT_SELECTOR_SET_LVL);
1221   if (Name.empty()) {
1222     Diag(Tok.getLocation(), diag::note_omp_declare_variant_ctx_options)
1223         << CONTEXT_SELECTOR_SET_LVL << listOpenMPContextTraitSets();
1224     return;
1225   }
1226 
1227   TISet.Kind = getOpenMPContextTraitSetKind(Name);
1228   if (TISet.Kind != TraitSet::invalid) {
1229     if (checkForDuplicates(*this, Name, NameLoc, Seen,
1230                            CONTEXT_SELECTOR_SET_LVL))
1231       TISet.Kind = TraitSet::invalid;
1232     return;
1233   }
1234 
1235   // It follows diagnosis and helping notes.
1236   Diag(NameLoc, diag::warn_omp_declare_variant_ctx_not_a_set) << Name;
1237 
1238   TraitSelector SelectorForName = getOpenMPContextTraitSelectorKind(Name);
1239   if (SelectorForName != TraitSelector::invalid) {
1240     Diag(NameLoc, diag::note_omp_declare_variant_ctx_is_a)
1241         << Name << CONTEXT_SELECTOR_LVL << CONTEXT_SELECTOR_SET_LVL;
1242     bool AllowsTraitScore = false;
1243     bool RequiresProperty = false;
1244     isValidTraitSelectorForTraitSet(
1245         SelectorForName, getOpenMPContextTraitSetForSelector(SelectorForName),
1246         AllowsTraitScore, RequiresProperty);
1247     Diag(NameLoc, diag::note_omp_declare_variant_ctx_try)
1248         << getOpenMPContextTraitSetName(
1249                getOpenMPContextTraitSetForSelector(SelectorForName))
1250         << Name << (RequiresProperty ? "(<property-name>)" : "");
1251     return;
1252   }
1253   for (const auto &PotentialSet :
1254        {TraitSet::construct, TraitSet::user, TraitSet::implementation,
1255         TraitSet::device}) {
1256     TraitProperty PropertyForName = getOpenMPContextTraitPropertyKind(
1257         PotentialSet, TraitSelector::invalid, Name);
1258     if (PropertyForName == TraitProperty::invalid)
1259       continue;
1260     Diag(NameLoc, diag::note_omp_declare_variant_ctx_is_a)
1261         << Name << CONTEXT_TRAIT_LVL << CONTEXT_SELECTOR_SET_LVL;
1262     Diag(NameLoc, diag::note_omp_declare_variant_ctx_try)
1263         << getOpenMPContextTraitSetName(
1264                getOpenMPContextTraitSetForProperty(PropertyForName))
1265         << getOpenMPContextTraitSelectorName(
1266                getOpenMPContextTraitSelectorForProperty(PropertyForName))
1267         << ("(" + Name + ")").str();
1268     return;
1269   }
1270   Diag(NameLoc, diag::note_omp_declare_variant_ctx_options)
1271       << CONTEXT_SELECTOR_SET_LVL << listOpenMPContextTraitSets();
1272 }
1273 
1274 /// Parses an OpenMP context selector set.
1275 ///
1276 /// <trait-set-selector-name> '=' '{' <trait-selector> [, <trait-selector>]* '}'
1277 void Parser::parseOMPContextSelectorSet(
1278     OMPTraitSet &TISet, llvm::StringMap<SourceLocation> &SeenSets) {
1279   auto OuterBC = BraceCount;
1280 
1281   // If anything went wrong we issue an error or warning and then skip the rest
1282   // of the set. However, commas are ambiguous so we look for the nesting
1283   // of braces here as well.
1284   auto FinishSelectorSet = [this, OuterBC]() -> void {
1285     bool Done = false;
1286     while (!Done) {
1287       while (!SkipUntil({tok::comma, tok::r_brace, tok::r_paren,
1288                          tok::annot_pragma_openmp_end},
1289                         StopBeforeMatch))
1290         ;
1291       if (Tok.is(tok::r_brace) && OuterBC > BraceCount)
1292         (void)ConsumeBrace();
1293       if (OuterBC <= BraceCount) {
1294         Done = true;
1295         break;
1296       }
1297       if (!Tok.is(tok::comma) && !Tok.is(tok::r_brace)) {
1298         Done = true;
1299         break;
1300       }
1301       (void)ConsumeAnyToken();
1302     }
1303     Diag(Tok.getLocation(), diag::note_omp_declare_variant_ctx_continue_here)
1304         << CONTEXT_SELECTOR_SET_LVL;
1305   };
1306 
1307   parseOMPTraitSetKind(TISet, SeenSets);
1308   if (TISet.Kind == TraitSet::invalid)
1309     return FinishSelectorSet();
1310 
1311   // Parse '='.
1312   if (!TryConsumeToken(tok::equal))
1313     Diag(Tok.getLocation(), diag::warn_omp_declare_variant_expected)
1314         << "="
1315         << ("context set name \"" + getOpenMPContextTraitSetName(TISet.Kind) +
1316             "\"")
1317                .str();
1318 
1319   // Parse '{'.
1320   if (Tok.is(tok::l_brace)) {
1321     (void)ConsumeBrace();
1322   } else {
1323     Diag(Tok.getLocation(), diag::warn_omp_declare_variant_expected)
1324         << "{"
1325         << ("'=' that follows the context set name \"" +
1326             getOpenMPContextTraitSetName(TISet.Kind) + "\"")
1327                .str();
1328   }
1329 
1330   llvm::StringMap<SourceLocation> SeenSelectors;
1331   do {
1332     OMPTraitSelector TISelector;
1333     parseOMPContextSelector(TISelector, TISet.Kind, SeenSelectors);
1334     if (TISelector.Kind != TraitSelector::invalid &&
1335         !TISelector.Properties.empty())
1336       TISet.Selectors.push_back(TISelector);
1337   } while (TryConsumeToken(tok::comma));
1338 
1339   // Parse '}'.
1340   if (Tok.is(tok::r_brace)) {
1341     (void)ConsumeBrace();
1342   } else {
1343     Diag(Tok.getLocation(), diag::warn_omp_declare_variant_expected)
1344         << "}"
1345         << ("context selectors for the context set \"" +
1346             getOpenMPContextTraitSetName(TISet.Kind) + "\"")
1347                .str();
1348   }
1349 }
1350 
1351 /// Parse OpenMP context selectors:
1352 ///
1353 /// <trait-set-selector> [, <trait-set-selector>]*
1354 bool Parser::parseOMPContextSelectors(SourceLocation Loc, OMPTraitInfo &TI) {
1355   llvm::StringMap<SourceLocation> SeenSets;
1356   do {
1357     OMPTraitSet TISet;
1358     parseOMPContextSelectorSet(TISet, SeenSets);
1359     if (TISet.Kind != TraitSet::invalid && !TISet.Selectors.empty())
1360       TI.Sets.push_back(TISet);
1361   } while (TryConsumeToken(tok::comma));
1362 
1363   return false;
1364 }
1365 
1366 /// Parse clauses for '#pragma omp declare variant ( variant-func-id ) clause'.
1367 void Parser::ParseOMPDeclareVariantClauses(Parser::DeclGroupPtrTy Ptr,
1368                                            CachedTokens &Toks,
1369                                            SourceLocation Loc) {
1370   PP.EnterToken(Tok, /*IsReinject*/ true);
1371   PP.EnterTokenStream(Toks, /*DisableMacroExpansion=*/true,
1372                       /*IsReinject*/ true);
1373   // Consume the previously pushed token.
1374   ConsumeAnyToken(/*ConsumeCodeCompletionTok=*/true);
1375   ConsumeAnyToken(/*ConsumeCodeCompletionTok=*/true);
1376 
1377   FNContextRAII FnContext(*this, Ptr);
1378   // Parse function declaration id.
1379   SourceLocation RLoc;
1380   // Parse with IsAddressOfOperand set to true to parse methods as DeclRefExprs
1381   // instead of MemberExprs.
1382   ExprResult AssociatedFunction;
1383   {
1384     // Do not mark function as is used to prevent its emission if this is the
1385     // only place where it is used.
1386     EnterExpressionEvaluationContext Unevaluated(
1387         Actions, Sema::ExpressionEvaluationContext::Unevaluated);
1388     AssociatedFunction = ParseOpenMPParensExpr(
1389         getOpenMPDirectiveName(OMPD_declare_variant), RLoc,
1390         /*IsAddressOfOperand=*/true);
1391   }
1392   if (!AssociatedFunction.isUsable()) {
1393     if (!Tok.is(tok::annot_pragma_openmp_end))
1394       while (!SkipUntil(tok::annot_pragma_openmp_end, StopBeforeMatch))
1395         ;
1396     // Skip the last annot_pragma_openmp_end.
1397     (void)ConsumeAnnotationToken();
1398     return;
1399   }
1400 
1401   OMPTraitInfo *ParentTI = Actions.getOMPTraitInfoForSurroundingScope();
1402   ASTContext &ASTCtx = Actions.getASTContext();
1403   OMPTraitInfo &TI = ASTCtx.getNewOMPTraitInfo();
1404   if (parseOMPDeclareVariantMatchClause(Loc, TI, ParentTI))
1405     return;
1406 
1407   Optional<std::pair<FunctionDecl *, Expr *>> DeclVarData =
1408       Actions.checkOpenMPDeclareVariantFunction(
1409           Ptr, AssociatedFunction.get(), TI,
1410           SourceRange(Loc, Tok.getLocation()));
1411 
1412   // Skip last tokens.
1413   while (Tok.isNot(tok::annot_pragma_openmp_end))
1414     ConsumeAnyToken();
1415   if (DeclVarData && !TI.Sets.empty())
1416     Actions.ActOnOpenMPDeclareVariantDirective(
1417         DeclVarData->first, DeclVarData->second, TI,
1418         SourceRange(Loc, Tok.getLocation()));
1419 
1420   // Skip the last annot_pragma_openmp_end.
1421   (void)ConsumeAnnotationToken();
1422 }
1423 
1424 bool Parser::parseOMPDeclareVariantMatchClause(SourceLocation Loc,
1425                                                OMPTraitInfo &TI,
1426                                                OMPTraitInfo *ParentTI) {
1427   // Parse 'match'.
1428   OpenMPClauseKind CKind = Tok.isAnnotation()
1429                                ? OMPC_unknown
1430                                : getOpenMPClauseKind(PP.getSpelling(Tok));
1431   if (CKind != OMPC_match) {
1432     Diag(Tok.getLocation(), diag::err_omp_declare_variant_wrong_clause)
1433         << getOpenMPClauseName(OMPC_match);
1434     while (!SkipUntil(tok::annot_pragma_openmp_end, Parser::StopBeforeMatch))
1435       ;
1436     // Skip the last annot_pragma_openmp_end.
1437     (void)ConsumeAnnotationToken();
1438     return true;
1439   }
1440   (void)ConsumeToken();
1441   // Parse '('.
1442   BalancedDelimiterTracker T(*this, tok::l_paren, tok::annot_pragma_openmp_end);
1443   if (T.expectAndConsume(diag::err_expected_lparen_after,
1444                          getOpenMPClauseName(OMPC_match).data())) {
1445     while (!SkipUntil(tok::annot_pragma_openmp_end, StopBeforeMatch))
1446       ;
1447     // Skip the last annot_pragma_openmp_end.
1448     (void)ConsumeAnnotationToken();
1449     return true;
1450   }
1451 
1452   // Parse inner context selectors.
1453   parseOMPContextSelectors(Loc, TI);
1454 
1455   // Parse ')'
1456   (void)T.consumeClose();
1457 
1458   if (!ParentTI)
1459     return false;
1460 
1461   // Merge the parent/outer trait info into the one we just parsed and diagnose
1462   // problems.
1463   // TODO: Keep some source location in the TI to provide better diagnostics.
1464   // TODO: Perform some kind of equivalence check on the condition and score
1465   //       expressions.
1466   for (const OMPTraitSet &ParentSet : ParentTI->Sets) {
1467     bool MergedSet = false;
1468     for (OMPTraitSet &Set : TI.Sets) {
1469       if (Set.Kind != ParentSet.Kind)
1470         continue;
1471       MergedSet = true;
1472       for (const OMPTraitSelector &ParentSelector : ParentSet.Selectors) {
1473         bool MergedSelector = false;
1474         for (OMPTraitSelector &Selector : Set.Selectors) {
1475           if (Selector.Kind != ParentSelector.Kind)
1476             continue;
1477           MergedSelector = true;
1478           for (const OMPTraitProperty &ParentProperty :
1479                ParentSelector.Properties) {
1480             bool MergedProperty = false;
1481             for (OMPTraitProperty &Property : Selector.Properties) {
1482               // Ignore "equivalent" properties.
1483               if (Property.Kind != ParentProperty.Kind)
1484                 continue;
1485 
1486               // If the kind is the same but the raw string not, we don't want
1487               // to skip out on the property.
1488               MergedProperty |= Property.RawString == ParentProperty.RawString;
1489 
1490               if (Property.RawString == ParentProperty.RawString &&
1491                   Selector.ScoreOrCondition == ParentSelector.ScoreOrCondition)
1492                 continue;
1493 
1494               if (Selector.Kind == llvm::omp::TraitSelector::user_condition) {
1495                 Diag(Loc, diag::err_omp_declare_variant_nested_user_condition);
1496               } else if (Selector.ScoreOrCondition !=
1497                          ParentSelector.ScoreOrCondition) {
1498                 Diag(Loc, diag::err_omp_declare_variant_duplicate_nested_trait)
1499                     << getOpenMPContextTraitPropertyName(
1500                            ParentProperty.Kind, ParentProperty.RawString)
1501                     << getOpenMPContextTraitSelectorName(ParentSelector.Kind)
1502                     << getOpenMPContextTraitSetName(ParentSet.Kind);
1503               }
1504             }
1505             if (!MergedProperty)
1506               Selector.Properties.push_back(ParentProperty);
1507           }
1508         }
1509         if (!MergedSelector)
1510           Set.Selectors.push_back(ParentSelector);
1511       }
1512     }
1513     if (!MergedSet)
1514       TI.Sets.push_back(ParentSet);
1515   }
1516 
1517   return false;
1518 }
1519 
1520 /// `omp assumes` or `omp begin/end assumes` <clause> [[,]<clause>]...
1521 /// where
1522 ///
1523 ///   clause:
1524 ///     'ext_IMPL_DEFINED'
1525 ///     'absent' '(' directive-name [, directive-name]* ')'
1526 ///     'contains' '(' directive-name [, directive-name]* ')'
1527 ///     'holds' '(' scalar-expression ')'
1528 ///     'no_openmp'
1529 ///     'no_openmp_routines'
1530 ///     'no_parallelism'
1531 ///
1532 void Parser::ParseOpenMPAssumesDirective(OpenMPDirectiveKind DKind,
1533                                          SourceLocation Loc) {
1534   SmallVector<StringRef, 4> Assumptions;
1535   bool SkippedClauses = false;
1536 
1537   auto SkipBraces = [&](llvm::StringRef Spelling, bool IssueNote) {
1538     BalancedDelimiterTracker T(*this, tok::l_paren,
1539                                tok::annot_pragma_openmp_end);
1540     if (T.expectAndConsume(diag::err_expected_lparen_after, Spelling.data()))
1541       return;
1542     T.skipToEnd();
1543     if (IssueNote && T.getCloseLocation().isValid())
1544       Diag(T.getCloseLocation(),
1545            diag::note_omp_assumption_clause_continue_here);
1546   };
1547 
1548   /// Helper to determine which AssumptionClauseMapping (ACM) in the
1549   /// AssumptionClauseMappings table matches \p RawString. The return value is
1550   /// the index of the matching ACM into the table or -1 if there was no match.
1551   auto MatchACMClause = [&](StringRef RawString) {
1552     llvm::StringSwitch<int> SS(RawString);
1553     unsigned ACMIdx = 0;
1554     for (const AssumptionClauseMappingInfo &ACMI : AssumptionClauseMappings) {
1555       if (ACMI.StartsWith)
1556         SS.StartsWith(ACMI.Identifier, ACMIdx++);
1557       else
1558         SS.Case(ACMI.Identifier, ACMIdx++);
1559     }
1560     return SS.Default(-1);
1561   };
1562 
1563   while (Tok.isNot(tok::annot_pragma_openmp_end)) {
1564     IdentifierInfo *II = nullptr;
1565     SourceLocation StartLoc = Tok.getLocation();
1566     int Idx = -1;
1567     if (Tok.isAnyIdentifier()) {
1568       II = Tok.getIdentifierInfo();
1569       Idx = MatchACMClause(II->getName());
1570     }
1571     ConsumeAnyToken();
1572 
1573     bool NextIsLPar = Tok.is(tok::l_paren);
1574     // Handle unknown clauses by skipping them.
1575     if (Idx == -1) {
1576       Diag(StartLoc, diag::warn_omp_unknown_assumption_clause_missing_id)
1577           << llvm::omp::getOpenMPDirectiveName(DKind)
1578           << llvm::omp::getAllAssumeClauseOptions() << NextIsLPar;
1579       if (NextIsLPar)
1580         SkipBraces(II ? II->getName() : "", /* IssueNote */ true);
1581       SkippedClauses = true;
1582       continue;
1583     }
1584     const AssumptionClauseMappingInfo &ACMI = AssumptionClauseMappings[Idx];
1585     if (ACMI.HasDirectiveList || ACMI.HasExpression) {
1586       // TODO: We ignore absent, contains, and holds assumptions for now. We
1587       //       also do not verify the content in the parenthesis at all.
1588       SkippedClauses = true;
1589       SkipBraces(II->getName(), /* IssueNote */ false);
1590       continue;
1591     }
1592 
1593     if (NextIsLPar) {
1594       Diag(Tok.getLocation(),
1595            diag::warn_omp_unknown_assumption_clause_without_args)
1596           << II;
1597       SkipBraces(II->getName(), /* IssueNote */ true);
1598     }
1599 
1600     assert(II && "Expected an identifier clause!");
1601     StringRef Assumption = II->getName();
1602     if (ACMI.StartsWith)
1603       Assumption = Assumption.substr(ACMI.Identifier.size());
1604     Assumptions.push_back(Assumption);
1605   }
1606 
1607   Actions.ActOnOpenMPAssumesDirective(Loc, DKind, Assumptions, SkippedClauses);
1608 }
1609 
1610 void Parser::ParseOpenMPEndAssumesDirective(SourceLocation Loc) {
1611   if (Actions.isInOpenMPAssumeScope())
1612     Actions.ActOnOpenMPEndAssumesDirective();
1613   else
1614     Diag(Loc, diag::err_expected_begin_assumes);
1615 }
1616 
1617 /// Parsing of simple OpenMP clauses like 'default' or 'proc_bind'.
1618 ///
1619 ///    default-clause:
1620 ///         'default' '(' 'none' | 'shared'  | 'firstprivate' ')
1621 ///
1622 ///    proc_bind-clause:
1623 ///         'proc_bind' '(' 'master' | 'close' | 'spread' ')
1624 ///
1625 ///    device_type-clause:
1626 ///         'device_type' '(' 'host' | 'nohost' | 'any' )'
1627 namespace {
1628 struct SimpleClauseData {
1629   unsigned Type;
1630   SourceLocation Loc;
1631   SourceLocation LOpen;
1632   SourceLocation TypeLoc;
1633   SourceLocation RLoc;
1634   SimpleClauseData(unsigned Type, SourceLocation Loc, SourceLocation LOpen,
1635                    SourceLocation TypeLoc, SourceLocation RLoc)
1636       : Type(Type), Loc(Loc), LOpen(LOpen), TypeLoc(TypeLoc), RLoc(RLoc) {}
1637 };
1638 } // anonymous namespace
1639 
1640 static Optional<SimpleClauseData>
1641 parseOpenMPSimpleClause(Parser &P, OpenMPClauseKind Kind) {
1642   const Token &Tok = P.getCurToken();
1643   SourceLocation Loc = Tok.getLocation();
1644   SourceLocation LOpen = P.ConsumeToken();
1645   // Parse '('.
1646   BalancedDelimiterTracker T(P, tok::l_paren, tok::annot_pragma_openmp_end);
1647   if (T.expectAndConsume(diag::err_expected_lparen_after,
1648                          getOpenMPClauseName(Kind).data()))
1649     return llvm::None;
1650 
1651   unsigned Type = getOpenMPSimpleClauseType(
1652       Kind, Tok.isAnnotation() ? "" : P.getPreprocessor().getSpelling(Tok),
1653       P.getLangOpts().OpenMP);
1654   SourceLocation TypeLoc = Tok.getLocation();
1655   if (Tok.isNot(tok::r_paren) && Tok.isNot(tok::comma) &&
1656       Tok.isNot(tok::annot_pragma_openmp_end))
1657     P.ConsumeAnyToken();
1658 
1659   // Parse ')'.
1660   SourceLocation RLoc = Tok.getLocation();
1661   if (!T.consumeClose())
1662     RLoc = T.getCloseLocation();
1663 
1664   return SimpleClauseData(Type, Loc, LOpen, TypeLoc, RLoc);
1665 }
1666 
1667 Parser::DeclGroupPtrTy Parser::ParseOMPDeclareTargetClauses() {
1668   // OpenMP 4.5 syntax with list of entities.
1669   Sema::NamedDeclSetType SameDirectiveDecls;
1670   SmallVector<std::tuple<OMPDeclareTargetDeclAttr::MapTypeTy, SourceLocation,
1671                          NamedDecl *>,
1672               4>
1673       DeclareTargetDecls;
1674   OMPDeclareTargetDeclAttr::DevTypeTy DT = OMPDeclareTargetDeclAttr::DT_Any;
1675   SourceLocation DeviceTypeLoc;
1676   while (Tok.isNot(tok::annot_pragma_openmp_end)) {
1677     OMPDeclareTargetDeclAttr::MapTypeTy MT = OMPDeclareTargetDeclAttr::MT_To;
1678     if (Tok.is(tok::identifier)) {
1679       IdentifierInfo *II = Tok.getIdentifierInfo();
1680       StringRef ClauseName = II->getName();
1681       bool IsDeviceTypeClause =
1682           getLangOpts().OpenMP >= 50 &&
1683           getOpenMPClauseKind(ClauseName) == OMPC_device_type;
1684       // Parse 'to|link|device_type' clauses.
1685       if (!OMPDeclareTargetDeclAttr::ConvertStrToMapTypeTy(ClauseName, MT) &&
1686           !IsDeviceTypeClause) {
1687         Diag(Tok, diag::err_omp_declare_target_unexpected_clause)
1688             << ClauseName << (getLangOpts().OpenMP >= 50 ? 1 : 0);
1689         break;
1690       }
1691       // Parse 'device_type' clause and go to next clause if any.
1692       if (IsDeviceTypeClause) {
1693         Optional<SimpleClauseData> DevTypeData =
1694             parseOpenMPSimpleClause(*this, OMPC_device_type);
1695         if (DevTypeData.hasValue()) {
1696           if (DeviceTypeLoc.isValid()) {
1697             // We already saw another device_type clause, diagnose it.
1698             Diag(DevTypeData.getValue().Loc,
1699                  diag::warn_omp_more_one_device_type_clause);
1700           }
1701           switch (static_cast<OpenMPDeviceType>(DevTypeData.getValue().Type)) {
1702           case OMPC_DEVICE_TYPE_any:
1703             DT = OMPDeclareTargetDeclAttr::DT_Any;
1704             break;
1705           case OMPC_DEVICE_TYPE_host:
1706             DT = OMPDeclareTargetDeclAttr::DT_Host;
1707             break;
1708           case OMPC_DEVICE_TYPE_nohost:
1709             DT = OMPDeclareTargetDeclAttr::DT_NoHost;
1710             break;
1711           case OMPC_DEVICE_TYPE_unknown:
1712             llvm_unreachable("Unexpected device_type");
1713           }
1714           DeviceTypeLoc = DevTypeData.getValue().Loc;
1715         }
1716         continue;
1717       }
1718       ConsumeToken();
1719     }
1720     auto &&Callback = [this, MT, &DeclareTargetDecls, &SameDirectiveDecls](
1721                           CXXScopeSpec &SS, DeclarationNameInfo NameInfo) {
1722       NamedDecl *ND = Actions.lookupOpenMPDeclareTargetName(
1723           getCurScope(), SS, NameInfo, SameDirectiveDecls);
1724       if (ND)
1725         DeclareTargetDecls.emplace_back(MT, NameInfo.getLoc(), ND);
1726     };
1727     if (ParseOpenMPSimpleVarList(OMPD_declare_target, Callback,
1728                                  /*AllowScopeSpecifier=*/true))
1729       break;
1730 
1731     // Consume optional ','.
1732     if (Tok.is(tok::comma))
1733       ConsumeToken();
1734   }
1735   SkipUntil(tok::annot_pragma_openmp_end, StopBeforeMatch);
1736   ConsumeAnyToken();
1737   for (auto &MTLocDecl : DeclareTargetDecls) {
1738     OMPDeclareTargetDeclAttr::MapTypeTy MT;
1739     SourceLocation Loc;
1740     NamedDecl *ND;
1741     std::tie(MT, Loc, ND) = MTLocDecl;
1742     // device_type clause is applied only to functions.
1743     Actions.ActOnOpenMPDeclareTargetName(
1744         ND, Loc, MT, isa<VarDecl>(ND) ? OMPDeclareTargetDeclAttr::DT_Any : DT);
1745   }
1746   SmallVector<Decl *, 4> Decls(SameDirectiveDecls.begin(),
1747                                SameDirectiveDecls.end());
1748   if (Decls.empty())
1749     return DeclGroupPtrTy();
1750   return Actions.BuildDeclaratorGroup(Decls);
1751 }
1752 
1753 void Parser::skipUntilPragmaOpenMPEnd(OpenMPDirectiveKind DKind) {
1754   // The last seen token is annot_pragma_openmp_end - need to check for
1755   // extra tokens.
1756   if (Tok.is(tok::annot_pragma_openmp_end))
1757     return;
1758 
1759   Diag(Tok, diag::warn_omp_extra_tokens_at_eol)
1760       << getOpenMPDirectiveName(DKind);
1761   while (Tok.isNot(tok::annot_pragma_openmp_end))
1762     ConsumeAnyToken();
1763 }
1764 
1765 void Parser::parseOMPEndDirective(OpenMPDirectiveKind BeginKind,
1766                                   OpenMPDirectiveKind ExpectedKind,
1767                                   OpenMPDirectiveKind FoundKind,
1768                                   SourceLocation BeginLoc,
1769                                   SourceLocation FoundLoc,
1770                                   bool SkipUntilOpenMPEnd) {
1771   int DiagSelection = ExpectedKind == OMPD_end_declare_target ? 0 : 1;
1772 
1773   if (FoundKind == ExpectedKind) {
1774     ConsumeAnyToken();
1775     skipUntilPragmaOpenMPEnd(ExpectedKind);
1776     return;
1777   }
1778 
1779   Diag(FoundLoc, diag::err_expected_end_declare_target_or_variant)
1780       << DiagSelection;
1781   Diag(BeginLoc, diag::note_matching)
1782       << ("'#pragma omp " + getOpenMPDirectiveName(BeginKind) + "'").str();
1783   if (SkipUntilOpenMPEnd)
1784     SkipUntil(tok::annot_pragma_openmp_end, StopBeforeMatch);
1785 }
1786 
1787 void Parser::ParseOMPEndDeclareTargetDirective(OpenMPDirectiveKind DKind,
1788                                                SourceLocation DKLoc) {
1789   parseOMPEndDirective(OMPD_declare_target, OMPD_end_declare_target, DKind,
1790                        DKLoc, Tok.getLocation(),
1791                        /* SkipUntilOpenMPEnd */ false);
1792   // Skip the last annot_pragma_openmp_end.
1793   if (Tok.is(tok::annot_pragma_openmp_end))
1794     ConsumeAnnotationToken();
1795 }
1796 
1797 /// Parsing of declarative OpenMP directives.
1798 ///
1799 ///       threadprivate-directive:
1800 ///         annot_pragma_openmp 'threadprivate' simple-variable-list
1801 ///         annot_pragma_openmp_end
1802 ///
1803 ///       allocate-directive:
1804 ///         annot_pragma_openmp 'allocate' simple-variable-list [<clause>]
1805 ///         annot_pragma_openmp_end
1806 ///
1807 ///       declare-reduction-directive:
1808 ///        annot_pragma_openmp 'declare' 'reduction' [...]
1809 ///        annot_pragma_openmp_end
1810 ///
1811 ///       declare-mapper-directive:
1812 ///         annot_pragma_openmp 'declare' 'mapper' '(' [<mapper-identifer> ':']
1813 ///         <type> <var> ')' [<clause>[[,] <clause>] ... ]
1814 ///         annot_pragma_openmp_end
1815 ///
1816 ///       declare-simd-directive:
1817 ///         annot_pragma_openmp 'declare simd' {<clause> [,]}
1818 ///         annot_pragma_openmp_end
1819 ///         <function declaration/definition>
1820 ///
1821 ///       requires directive:
1822 ///         annot_pragma_openmp 'requires' <clause> [[[,] <clause>] ... ]
1823 ///         annot_pragma_openmp_end
1824 ///
1825 ///       assumes directive:
1826 ///         annot_pragma_openmp 'assumes' <clause> [[[,] <clause>] ... ]
1827 ///         annot_pragma_openmp_end
1828 ///       or
1829 ///         annot_pragma_openmp 'begin assumes' <clause> [[[,] <clause>] ... ]
1830 ///         annot_pragma_openmp 'end assumes'
1831 ///         annot_pragma_openmp_end
1832 ///
1833 Parser::DeclGroupPtrTy Parser::ParseOpenMPDeclarativeDirectiveWithExtDecl(
1834     AccessSpecifier &AS, ParsedAttributesWithRange &Attrs, bool Delayed,
1835     DeclSpec::TST TagType, Decl *Tag) {
1836   assert(Tok.is(tok::annot_pragma_openmp) && "Not an OpenMP directive!");
1837   ParsingOpenMPDirectiveRAII DirScope(*this);
1838   ParenBraceBracketBalancer BalancerRAIIObj(*this);
1839 
1840   SourceLocation Loc;
1841   OpenMPDirectiveKind DKind;
1842   if (Delayed) {
1843     TentativeParsingAction TPA(*this);
1844     Loc = ConsumeAnnotationToken();
1845     DKind = parseOpenMPDirectiveKind(*this);
1846     if (DKind == OMPD_declare_reduction || DKind == OMPD_declare_mapper) {
1847       // Need to delay parsing until completion of the parent class.
1848       TPA.Revert();
1849       CachedTokens Toks;
1850       unsigned Cnt = 1;
1851       Toks.push_back(Tok);
1852       while (Cnt && Tok.isNot(tok::eof)) {
1853         (void)ConsumeAnyToken();
1854         if (Tok.is(tok::annot_pragma_openmp))
1855           ++Cnt;
1856         else if (Tok.is(tok::annot_pragma_openmp_end))
1857           --Cnt;
1858         Toks.push_back(Tok);
1859       }
1860       // Skip last annot_pragma_openmp_end.
1861       if (Cnt == 0)
1862         (void)ConsumeAnyToken();
1863       auto *LP = new LateParsedPragma(this, AS);
1864       LP->takeToks(Toks);
1865       getCurrentClass().LateParsedDeclarations.push_back(LP);
1866       return nullptr;
1867     }
1868     TPA.Commit();
1869   } else {
1870     Loc = ConsumeAnnotationToken();
1871     DKind = parseOpenMPDirectiveKind(*this);
1872   }
1873 
1874   switch (DKind) {
1875   case OMPD_threadprivate: {
1876     ConsumeToken();
1877     DeclDirectiveListParserHelper Helper(this, DKind);
1878     if (!ParseOpenMPSimpleVarList(DKind, Helper,
1879                                   /*AllowScopeSpecifier=*/true)) {
1880       skipUntilPragmaOpenMPEnd(DKind);
1881       // Skip the last annot_pragma_openmp_end.
1882       ConsumeAnnotationToken();
1883       return Actions.ActOnOpenMPThreadprivateDirective(Loc,
1884                                                        Helper.getIdentifiers());
1885     }
1886     break;
1887   }
1888   case OMPD_allocate: {
1889     ConsumeToken();
1890     DeclDirectiveListParserHelper Helper(this, DKind);
1891     if (!ParseOpenMPSimpleVarList(DKind, Helper,
1892                                   /*AllowScopeSpecifier=*/true)) {
1893       SmallVector<OMPClause *, 1> Clauses;
1894       if (Tok.isNot(tok::annot_pragma_openmp_end)) {
1895         SmallVector<llvm::PointerIntPair<OMPClause *, 1, bool>,
1896                     llvm::omp::Clause_enumSize + 1>
1897             FirstClauses(llvm::omp::Clause_enumSize + 1);
1898         while (Tok.isNot(tok::annot_pragma_openmp_end)) {
1899           OpenMPClauseKind CKind =
1900               Tok.isAnnotation() ? OMPC_unknown
1901                                  : getOpenMPClauseKind(PP.getSpelling(Tok));
1902           Actions.StartOpenMPClause(CKind);
1903           OMPClause *Clause = ParseOpenMPClause(
1904               OMPD_allocate, CKind, !FirstClauses[unsigned(CKind)].getInt());
1905           SkipUntil(tok::comma, tok::identifier, tok::annot_pragma_openmp_end,
1906                     StopBeforeMatch);
1907           FirstClauses[unsigned(CKind)].setInt(true);
1908           if (Clause != nullptr)
1909             Clauses.push_back(Clause);
1910           if (Tok.is(tok::annot_pragma_openmp_end)) {
1911             Actions.EndOpenMPClause();
1912             break;
1913           }
1914           // Skip ',' if any.
1915           if (Tok.is(tok::comma))
1916             ConsumeToken();
1917           Actions.EndOpenMPClause();
1918         }
1919         skipUntilPragmaOpenMPEnd(DKind);
1920       }
1921       // Skip the last annot_pragma_openmp_end.
1922       ConsumeAnnotationToken();
1923       return Actions.ActOnOpenMPAllocateDirective(Loc, Helper.getIdentifiers(),
1924                                                   Clauses);
1925     }
1926     break;
1927   }
1928   case OMPD_requires: {
1929     SourceLocation StartLoc = ConsumeToken();
1930     SmallVector<OMPClause *, 5> Clauses;
1931     SmallVector<llvm::PointerIntPair<OMPClause *, 1, bool>,
1932                 llvm::omp::Clause_enumSize + 1>
1933         FirstClauses(llvm::omp::Clause_enumSize + 1);
1934     if (Tok.is(tok::annot_pragma_openmp_end)) {
1935       Diag(Tok, diag::err_omp_expected_clause)
1936           << getOpenMPDirectiveName(OMPD_requires);
1937       break;
1938     }
1939     while (Tok.isNot(tok::annot_pragma_openmp_end)) {
1940       OpenMPClauseKind CKind = Tok.isAnnotation()
1941                                    ? OMPC_unknown
1942                                    : getOpenMPClauseKind(PP.getSpelling(Tok));
1943       Actions.StartOpenMPClause(CKind);
1944       OMPClause *Clause = ParseOpenMPClause(
1945           OMPD_requires, CKind, !FirstClauses[unsigned(CKind)].getInt());
1946       SkipUntil(tok::comma, tok::identifier, tok::annot_pragma_openmp_end,
1947                 StopBeforeMatch);
1948       FirstClauses[unsigned(CKind)].setInt(true);
1949       if (Clause != nullptr)
1950         Clauses.push_back(Clause);
1951       if (Tok.is(tok::annot_pragma_openmp_end)) {
1952         Actions.EndOpenMPClause();
1953         break;
1954       }
1955       // Skip ',' if any.
1956       if (Tok.is(tok::comma))
1957         ConsumeToken();
1958       Actions.EndOpenMPClause();
1959     }
1960     // Consume final annot_pragma_openmp_end
1961     if (Clauses.empty()) {
1962       Diag(Tok, diag::err_omp_expected_clause)
1963           << getOpenMPDirectiveName(OMPD_requires);
1964       ConsumeAnnotationToken();
1965       return nullptr;
1966     }
1967     ConsumeAnnotationToken();
1968     return Actions.ActOnOpenMPRequiresDirective(StartLoc, Clauses);
1969   }
1970   case OMPD_assumes:
1971   case OMPD_begin_assumes:
1972     ParseOpenMPAssumesDirective(DKind, ConsumeToken());
1973     break;
1974   case OMPD_end_assumes:
1975     ParseOpenMPEndAssumesDirective(ConsumeToken());
1976     break;
1977   case OMPD_declare_reduction:
1978     ConsumeToken();
1979     if (DeclGroupPtrTy Res = ParseOpenMPDeclareReductionDirective(AS)) {
1980       skipUntilPragmaOpenMPEnd(OMPD_declare_reduction);
1981       // Skip the last annot_pragma_openmp_end.
1982       ConsumeAnnotationToken();
1983       return Res;
1984     }
1985     break;
1986   case OMPD_declare_mapper: {
1987     ConsumeToken();
1988     if (DeclGroupPtrTy Res = ParseOpenMPDeclareMapperDirective(AS)) {
1989       // Skip the last annot_pragma_openmp_end.
1990       ConsumeAnnotationToken();
1991       return Res;
1992     }
1993     break;
1994   }
1995   case OMPD_begin_declare_variant: {
1996     // The syntax is:
1997     // { #pragma omp begin declare variant clause }
1998     // <function-declaration-or-definition-sequence>
1999     // { #pragma omp end declare variant }
2000     //
2001     ConsumeToken();
2002     OMPTraitInfo *ParentTI = Actions.getOMPTraitInfoForSurroundingScope();
2003     ASTContext &ASTCtx = Actions.getASTContext();
2004     OMPTraitInfo &TI = ASTCtx.getNewOMPTraitInfo();
2005     if (parseOMPDeclareVariantMatchClause(Loc, TI, ParentTI))
2006       break;
2007 
2008     // Skip last tokens.
2009     skipUntilPragmaOpenMPEnd(OMPD_begin_declare_variant);
2010 
2011     ParsingOpenMPDirectiveRAII NormalScope(*this, /*Value=*/false);
2012 
2013     VariantMatchInfo VMI;
2014     TI.getAsVariantMatchInfo(ASTCtx, VMI);
2015 
2016     std::function<void(StringRef)> DiagUnknownTrait = [this, Loc](
2017                                                           StringRef ISATrait) {
2018       // TODO Track the selector locations in a way that is accessible here to
2019       // improve the diagnostic location.
2020       Diag(Loc, diag::warn_unknown_begin_declare_variant_isa_trait) << ISATrait;
2021     };
2022     TargetOMPContext OMPCtx(ASTCtx, std::move(DiagUnknownTrait),
2023                             /* CurrentFunctionDecl */ nullptr);
2024 
2025     if (isVariantApplicableInContext(VMI, OMPCtx, /* DeviceSetOnly */ true)) {
2026       Actions.ActOnOpenMPBeginDeclareVariant(Loc, TI);
2027       break;
2028     }
2029 
2030     // Elide all the code till the matching end declare variant was found.
2031     unsigned Nesting = 1;
2032     SourceLocation DKLoc;
2033     OpenMPDirectiveKind DK = OMPD_unknown;
2034     do {
2035       DKLoc = Tok.getLocation();
2036       DK = parseOpenMPDirectiveKind(*this);
2037       if (DK == OMPD_end_declare_variant)
2038         --Nesting;
2039       else if (DK == OMPD_begin_declare_variant)
2040         ++Nesting;
2041       if (!Nesting || isEofOrEom())
2042         break;
2043       ConsumeAnyToken();
2044     } while (true);
2045 
2046     parseOMPEndDirective(OMPD_begin_declare_variant, OMPD_end_declare_variant,
2047                          DK, Loc, DKLoc, /* SkipUntilOpenMPEnd */ true);
2048     if (isEofOrEom())
2049       return nullptr;
2050     break;
2051   }
2052   case OMPD_end_declare_variant: {
2053     if (Actions.isInOpenMPDeclareVariantScope())
2054       Actions.ActOnOpenMPEndDeclareVariant();
2055     else
2056       Diag(Loc, diag::err_expected_begin_declare_variant);
2057     ConsumeToken();
2058     break;
2059   }
2060   case OMPD_declare_variant:
2061   case OMPD_declare_simd: {
2062     // The syntax is:
2063     // { #pragma omp declare {simd|variant} }
2064     // <function-declaration-or-definition>
2065     //
2066     CachedTokens Toks;
2067     Toks.push_back(Tok);
2068     ConsumeToken();
2069     while (Tok.isNot(tok::annot_pragma_openmp_end)) {
2070       Toks.push_back(Tok);
2071       ConsumeAnyToken();
2072     }
2073     Toks.push_back(Tok);
2074     ConsumeAnyToken();
2075 
2076     DeclGroupPtrTy Ptr;
2077     if (Tok.is(tok::annot_pragma_openmp)) {
2078       Ptr = ParseOpenMPDeclarativeDirectiveWithExtDecl(AS, Attrs, Delayed,
2079                                                        TagType, Tag);
2080     } else if (Tok.isNot(tok::r_brace) && !isEofOrEom()) {
2081       // Here we expect to see some function declaration.
2082       if (AS == AS_none) {
2083         assert(TagType == DeclSpec::TST_unspecified);
2084         MaybeParseCXX11Attributes(Attrs);
2085         ParsingDeclSpec PDS(*this);
2086         Ptr = ParseExternalDeclaration(Attrs, &PDS);
2087       } else {
2088         Ptr =
2089             ParseCXXClassMemberDeclarationWithPragmas(AS, Attrs, TagType, Tag);
2090       }
2091     }
2092     if (!Ptr) {
2093       Diag(Loc, diag::err_omp_decl_in_declare_simd_variant)
2094           << (DKind == OMPD_declare_simd ? 0 : 1);
2095       return DeclGroupPtrTy();
2096     }
2097     if (DKind == OMPD_declare_simd)
2098       return ParseOMPDeclareSimdClauses(Ptr, Toks, Loc);
2099     assert(DKind == OMPD_declare_variant &&
2100            "Expected declare variant directive only");
2101     ParseOMPDeclareVariantClauses(Ptr, Toks, Loc);
2102     return Ptr;
2103   }
2104   case OMPD_declare_target: {
2105     SourceLocation DTLoc = ConsumeAnyToken();
2106     if (Tok.isNot(tok::annot_pragma_openmp_end)) {
2107       return ParseOMPDeclareTargetClauses();
2108     }
2109 
2110     // Skip the last annot_pragma_openmp_end.
2111     ConsumeAnyToken();
2112 
2113     if (!Actions.ActOnStartOpenMPDeclareTargetDirective(DTLoc))
2114       return DeclGroupPtrTy();
2115 
2116     ParsingOpenMPDirectiveRAII NormalScope(*this, /*Value=*/false);
2117     llvm::SmallVector<Decl *, 4> Decls;
2118     DKind = parseOpenMPDirectiveKind(*this);
2119     while (DKind != OMPD_end_declare_target && Tok.isNot(tok::eof) &&
2120            Tok.isNot(tok::r_brace)) {
2121       DeclGroupPtrTy Ptr;
2122       // Here we expect to see some function declaration.
2123       if (AS == AS_none) {
2124         assert(TagType == DeclSpec::TST_unspecified);
2125         MaybeParseCXX11Attributes(Attrs);
2126         ParsingDeclSpec PDS(*this);
2127         Ptr = ParseExternalDeclaration(Attrs, &PDS);
2128       } else {
2129         Ptr =
2130             ParseCXXClassMemberDeclarationWithPragmas(AS, Attrs, TagType, Tag);
2131       }
2132       if (Ptr) {
2133         DeclGroupRef Ref = Ptr.get();
2134         Decls.append(Ref.begin(), Ref.end());
2135       }
2136       if (Tok.isAnnotation() && Tok.is(tok::annot_pragma_openmp)) {
2137         TentativeParsingAction TPA(*this);
2138         ConsumeAnnotationToken();
2139         DKind = parseOpenMPDirectiveKind(*this);
2140         if (DKind != OMPD_end_declare_target)
2141           TPA.Revert();
2142         else
2143           TPA.Commit();
2144       }
2145     }
2146 
2147     ParseOMPEndDeclareTargetDirective(DKind, DTLoc);
2148     Actions.ActOnFinishOpenMPDeclareTargetDirective();
2149     return Actions.BuildDeclaratorGroup(Decls);
2150   }
2151   case OMPD_unknown:
2152     Diag(Tok, diag::err_omp_unknown_directive);
2153     break;
2154   case OMPD_parallel:
2155   case OMPD_simd:
2156   case OMPD_tile:
2157   case OMPD_task:
2158   case OMPD_taskyield:
2159   case OMPD_barrier:
2160   case OMPD_taskwait:
2161   case OMPD_taskgroup:
2162   case OMPD_flush:
2163   case OMPD_depobj:
2164   case OMPD_scan:
2165   case OMPD_for:
2166   case OMPD_for_simd:
2167   case OMPD_sections:
2168   case OMPD_section:
2169   case OMPD_single:
2170   case OMPD_master:
2171   case OMPD_ordered:
2172   case OMPD_critical:
2173   case OMPD_parallel_for:
2174   case OMPD_parallel_for_simd:
2175   case OMPD_parallel_sections:
2176   case OMPD_parallel_master:
2177   case OMPD_atomic:
2178   case OMPD_target:
2179   case OMPD_teams:
2180   case OMPD_cancellation_point:
2181   case OMPD_cancel:
2182   case OMPD_target_data:
2183   case OMPD_target_enter_data:
2184   case OMPD_target_exit_data:
2185   case OMPD_target_parallel:
2186   case OMPD_target_parallel_for:
2187   case OMPD_taskloop:
2188   case OMPD_taskloop_simd:
2189   case OMPD_master_taskloop:
2190   case OMPD_master_taskloop_simd:
2191   case OMPD_parallel_master_taskloop:
2192   case OMPD_parallel_master_taskloop_simd:
2193   case OMPD_distribute:
2194   case OMPD_end_declare_target:
2195   case OMPD_target_update:
2196   case OMPD_distribute_parallel_for:
2197   case OMPD_distribute_parallel_for_simd:
2198   case OMPD_distribute_simd:
2199   case OMPD_target_parallel_for_simd:
2200   case OMPD_target_simd:
2201   case OMPD_teams_distribute:
2202   case OMPD_teams_distribute_simd:
2203   case OMPD_teams_distribute_parallel_for_simd:
2204   case OMPD_teams_distribute_parallel_for:
2205   case OMPD_target_teams:
2206   case OMPD_target_teams_distribute:
2207   case OMPD_target_teams_distribute_parallel_for:
2208   case OMPD_target_teams_distribute_parallel_for_simd:
2209   case OMPD_target_teams_distribute_simd:
2210     Diag(Tok, diag::err_omp_unexpected_directive)
2211         << 1 << getOpenMPDirectiveName(DKind);
2212     break;
2213   default:
2214     break;
2215   }
2216   while (Tok.isNot(tok::annot_pragma_openmp_end))
2217     ConsumeAnyToken();
2218   ConsumeAnyToken();
2219   return nullptr;
2220 }
2221 
2222 /// Parsing of declarative or executable OpenMP directives.
2223 ///
2224 ///       threadprivate-directive:
2225 ///         annot_pragma_openmp 'threadprivate' simple-variable-list
2226 ///         annot_pragma_openmp_end
2227 ///
2228 ///       allocate-directive:
2229 ///         annot_pragma_openmp 'allocate' simple-variable-list
2230 ///         annot_pragma_openmp_end
2231 ///
2232 ///       declare-reduction-directive:
2233 ///         annot_pragma_openmp 'declare' 'reduction' '(' <reduction_id> ':'
2234 ///         <type> {',' <type>} ':' <expression> ')' ['initializer' '('
2235 ///         ('omp_priv' '=' <expression>|<function_call>) ')']
2236 ///         annot_pragma_openmp_end
2237 ///
2238 ///       declare-mapper-directive:
2239 ///         annot_pragma_openmp 'declare' 'mapper' '(' [<mapper-identifer> ':']
2240 ///         <type> <var> ')' [<clause>[[,] <clause>] ... ]
2241 ///         annot_pragma_openmp_end
2242 ///
2243 ///       executable-directive:
2244 ///         annot_pragma_openmp 'parallel' | 'simd' | 'for' | 'sections' |
2245 ///         'section' | 'single' | 'master' | 'critical' [ '(' <name> ')' ] |
2246 ///         'parallel for' | 'parallel sections' | 'parallel master' | 'task' |
2247 ///         'taskyield' | 'barrier' | 'taskwait' | 'flush' | 'ordered' |
2248 ///         'atomic' | 'for simd' | 'parallel for simd' | 'target' | 'target
2249 ///         data' | 'taskgroup' | 'teams' | 'taskloop' | 'taskloop simd' |
2250 ///         'master taskloop' | 'master taskloop simd' | 'parallel master
2251 ///         taskloop' | 'parallel master taskloop simd' | 'distribute' | 'target
2252 ///         enter data' | 'target exit data' | 'target parallel' | 'target
2253 ///         parallel for' | 'target update' | 'distribute parallel for' |
2254 ///         'distribute paralle for simd' | 'distribute simd' | 'target parallel
2255 ///         for simd' | 'target simd' | 'teams distribute' | 'teams distribute
2256 ///         simd' | 'teams distribute parallel for simd' | 'teams distribute
2257 ///         parallel for' | 'target teams' | 'target teams distribute' | 'target
2258 ///         teams distribute parallel for' | 'target teams distribute parallel
2259 ///         for simd' | 'target teams distribute simd' {clause}
2260 ///         annot_pragma_openmp_end
2261 ///
2262 StmtResult
2263 Parser::ParseOpenMPDeclarativeOrExecutableDirective(ParsedStmtContext StmtCtx) {
2264   assert(Tok.is(tok::annot_pragma_openmp) && "Not an OpenMP directive!");
2265   ParsingOpenMPDirectiveRAII DirScope(*this);
2266   ParenBraceBracketBalancer BalancerRAIIObj(*this);
2267   SmallVector<OMPClause *, 5> Clauses;
2268   SmallVector<llvm::PointerIntPair<OMPClause *, 1, bool>,
2269               llvm::omp::Clause_enumSize + 1>
2270       FirstClauses(llvm::omp::Clause_enumSize + 1);
2271   unsigned ScopeFlags = Scope::FnScope | Scope::DeclScope |
2272                         Scope::CompoundStmtScope | Scope::OpenMPDirectiveScope;
2273   SourceLocation Loc = ConsumeAnnotationToken(), EndLoc;
2274   OpenMPDirectiveKind DKind = parseOpenMPDirectiveKind(*this);
2275   OpenMPDirectiveKind CancelRegion = OMPD_unknown;
2276   // Name of critical directive.
2277   DeclarationNameInfo DirName;
2278   StmtResult Directive = StmtError();
2279   bool HasAssociatedStatement = true;
2280 
2281   switch (DKind) {
2282   case OMPD_threadprivate: {
2283     // FIXME: Should this be permitted in C++?
2284     if ((StmtCtx & ParsedStmtContext::AllowDeclarationsInC) ==
2285         ParsedStmtContext()) {
2286       Diag(Tok, diag::err_omp_immediate_directive)
2287           << getOpenMPDirectiveName(DKind) << 0;
2288     }
2289     ConsumeToken();
2290     DeclDirectiveListParserHelper Helper(this, DKind);
2291     if (!ParseOpenMPSimpleVarList(DKind, Helper,
2292                                   /*AllowScopeSpecifier=*/false)) {
2293       skipUntilPragmaOpenMPEnd(DKind);
2294       DeclGroupPtrTy Res = Actions.ActOnOpenMPThreadprivateDirective(
2295           Loc, Helper.getIdentifiers());
2296       Directive = Actions.ActOnDeclStmt(Res, Loc, Tok.getLocation());
2297     }
2298     SkipUntil(tok::annot_pragma_openmp_end);
2299     break;
2300   }
2301   case OMPD_allocate: {
2302     // FIXME: Should this be permitted in C++?
2303     if ((StmtCtx & ParsedStmtContext::AllowDeclarationsInC) ==
2304         ParsedStmtContext()) {
2305       Diag(Tok, diag::err_omp_immediate_directive)
2306           << getOpenMPDirectiveName(DKind) << 0;
2307     }
2308     ConsumeToken();
2309     DeclDirectiveListParserHelper Helper(this, DKind);
2310     if (!ParseOpenMPSimpleVarList(DKind, Helper,
2311                                   /*AllowScopeSpecifier=*/false)) {
2312       SmallVector<OMPClause *, 1> Clauses;
2313       if (Tok.isNot(tok::annot_pragma_openmp_end)) {
2314         SmallVector<llvm::PointerIntPair<OMPClause *, 1, bool>,
2315                     llvm::omp::Clause_enumSize + 1>
2316             FirstClauses(llvm::omp::Clause_enumSize + 1);
2317         while (Tok.isNot(tok::annot_pragma_openmp_end)) {
2318           OpenMPClauseKind CKind =
2319               Tok.isAnnotation() ? OMPC_unknown
2320                                  : getOpenMPClauseKind(PP.getSpelling(Tok));
2321           Actions.StartOpenMPClause(CKind);
2322           OMPClause *Clause = ParseOpenMPClause(
2323               OMPD_allocate, CKind, !FirstClauses[unsigned(CKind)].getInt());
2324           SkipUntil(tok::comma, tok::identifier, tok::annot_pragma_openmp_end,
2325                     StopBeforeMatch);
2326           FirstClauses[unsigned(CKind)].setInt(true);
2327           if (Clause != nullptr)
2328             Clauses.push_back(Clause);
2329           if (Tok.is(tok::annot_pragma_openmp_end)) {
2330             Actions.EndOpenMPClause();
2331             break;
2332           }
2333           // Skip ',' if any.
2334           if (Tok.is(tok::comma))
2335             ConsumeToken();
2336           Actions.EndOpenMPClause();
2337         }
2338         skipUntilPragmaOpenMPEnd(DKind);
2339       }
2340       DeclGroupPtrTy Res = Actions.ActOnOpenMPAllocateDirective(
2341           Loc, Helper.getIdentifiers(), Clauses);
2342       Directive = Actions.ActOnDeclStmt(Res, Loc, Tok.getLocation());
2343     }
2344     SkipUntil(tok::annot_pragma_openmp_end);
2345     break;
2346   }
2347   case OMPD_declare_reduction:
2348     ConsumeToken();
2349     if (DeclGroupPtrTy Res =
2350             ParseOpenMPDeclareReductionDirective(/*AS=*/AS_none)) {
2351       skipUntilPragmaOpenMPEnd(OMPD_declare_reduction);
2352       ConsumeAnyToken();
2353       Directive = Actions.ActOnDeclStmt(Res, Loc, Tok.getLocation());
2354     } else {
2355       SkipUntil(tok::annot_pragma_openmp_end);
2356     }
2357     break;
2358   case OMPD_declare_mapper: {
2359     ConsumeToken();
2360     if (DeclGroupPtrTy Res =
2361             ParseOpenMPDeclareMapperDirective(/*AS=*/AS_none)) {
2362       // Skip the last annot_pragma_openmp_end.
2363       ConsumeAnnotationToken();
2364       Directive = Actions.ActOnDeclStmt(Res, Loc, Tok.getLocation());
2365     } else {
2366       SkipUntil(tok::annot_pragma_openmp_end);
2367     }
2368     break;
2369   }
2370   case OMPD_flush:
2371   case OMPD_depobj:
2372   case OMPD_scan:
2373   case OMPD_taskyield:
2374   case OMPD_barrier:
2375   case OMPD_taskwait:
2376   case OMPD_cancellation_point:
2377   case OMPD_cancel:
2378   case OMPD_target_enter_data:
2379   case OMPD_target_exit_data:
2380   case OMPD_target_update:
2381     if ((StmtCtx & ParsedStmtContext::AllowStandaloneOpenMPDirectives) ==
2382         ParsedStmtContext()) {
2383       Diag(Tok, diag::err_omp_immediate_directive)
2384           << getOpenMPDirectiveName(DKind) << 0;
2385     }
2386     HasAssociatedStatement = false;
2387     // Fall through for further analysis.
2388     LLVM_FALLTHROUGH;
2389   case OMPD_parallel:
2390   case OMPD_simd:
2391   case OMPD_tile:
2392   case OMPD_for:
2393   case OMPD_for_simd:
2394   case OMPD_sections:
2395   case OMPD_single:
2396   case OMPD_section:
2397   case OMPD_master:
2398   case OMPD_critical:
2399   case OMPD_parallel_for:
2400   case OMPD_parallel_for_simd:
2401   case OMPD_parallel_sections:
2402   case OMPD_parallel_master:
2403   case OMPD_task:
2404   case OMPD_ordered:
2405   case OMPD_atomic:
2406   case OMPD_target:
2407   case OMPD_teams:
2408   case OMPD_taskgroup:
2409   case OMPD_target_data:
2410   case OMPD_target_parallel:
2411   case OMPD_target_parallel_for:
2412   case OMPD_taskloop:
2413   case OMPD_taskloop_simd:
2414   case OMPD_master_taskloop:
2415   case OMPD_master_taskloop_simd:
2416   case OMPD_parallel_master_taskloop:
2417   case OMPD_parallel_master_taskloop_simd:
2418   case OMPD_distribute:
2419   case OMPD_distribute_parallel_for:
2420   case OMPD_distribute_parallel_for_simd:
2421   case OMPD_distribute_simd:
2422   case OMPD_target_parallel_for_simd:
2423   case OMPD_target_simd:
2424   case OMPD_teams_distribute:
2425   case OMPD_teams_distribute_simd:
2426   case OMPD_teams_distribute_parallel_for_simd:
2427   case OMPD_teams_distribute_parallel_for:
2428   case OMPD_target_teams:
2429   case OMPD_target_teams_distribute:
2430   case OMPD_target_teams_distribute_parallel_for:
2431   case OMPD_target_teams_distribute_parallel_for_simd:
2432   case OMPD_target_teams_distribute_simd: {
2433     // Special processing for flush and depobj clauses.
2434     Token ImplicitTok;
2435     bool ImplicitClauseAllowed = false;
2436     if (DKind == OMPD_flush || DKind == OMPD_depobj) {
2437       ImplicitTok = Tok;
2438       ImplicitClauseAllowed = true;
2439     }
2440     ConsumeToken();
2441     // Parse directive name of the 'critical' directive if any.
2442     if (DKind == OMPD_critical) {
2443       BalancedDelimiterTracker T(*this, tok::l_paren,
2444                                  tok::annot_pragma_openmp_end);
2445       if (!T.consumeOpen()) {
2446         if (Tok.isAnyIdentifier()) {
2447           DirName =
2448               DeclarationNameInfo(Tok.getIdentifierInfo(), Tok.getLocation());
2449           ConsumeAnyToken();
2450         } else {
2451           Diag(Tok, diag::err_omp_expected_identifier_for_critical);
2452         }
2453         T.consumeClose();
2454       }
2455     } else if (DKind == OMPD_cancellation_point || DKind == OMPD_cancel) {
2456       CancelRegion = parseOpenMPDirectiveKind(*this);
2457       if (Tok.isNot(tok::annot_pragma_openmp_end))
2458         ConsumeToken();
2459     }
2460 
2461     if (isOpenMPLoopDirective(DKind))
2462       ScopeFlags |= Scope::OpenMPLoopDirectiveScope;
2463     if (isOpenMPSimdDirective(DKind))
2464       ScopeFlags |= Scope::OpenMPSimdDirectiveScope;
2465     ParseScope OMPDirectiveScope(this, ScopeFlags);
2466     Actions.StartOpenMPDSABlock(DKind, DirName, Actions.getCurScope(), Loc);
2467 
2468     while (Tok.isNot(tok::annot_pragma_openmp_end)) {
2469       bool HasImplicitClause = false;
2470       if (ImplicitClauseAllowed && Tok.is(tok::l_paren)) {
2471         HasImplicitClause = true;
2472         // Push copy of the current token back to stream to properly parse
2473         // pseudo-clause OMPFlushClause or OMPDepobjClause.
2474         PP.EnterToken(Tok, /*IsReinject*/ true);
2475         PP.EnterToken(ImplicitTok, /*IsReinject*/ true);
2476         ConsumeAnyToken();
2477       }
2478       OpenMPClauseKind CKind = Tok.isAnnotation()
2479                                    ? OMPC_unknown
2480                                    : getOpenMPClauseKind(PP.getSpelling(Tok));
2481       if (HasImplicitClause) {
2482         assert(CKind == OMPC_unknown && "Must be unknown implicit clause.");
2483         if (DKind == OMPD_flush) {
2484           CKind = OMPC_flush;
2485         } else {
2486           assert(DKind == OMPD_depobj &&
2487                  "Expected flush or depobj directives.");
2488           CKind = OMPC_depobj;
2489         }
2490       }
2491       // No more implicit clauses allowed.
2492       ImplicitClauseAllowed = false;
2493       Actions.StartOpenMPClause(CKind);
2494       HasImplicitClause = false;
2495       OMPClause *Clause = ParseOpenMPClause(
2496           DKind, CKind, !FirstClauses[unsigned(CKind)].getInt());
2497       FirstClauses[unsigned(CKind)].setInt(true);
2498       if (Clause) {
2499         FirstClauses[unsigned(CKind)].setPointer(Clause);
2500         Clauses.push_back(Clause);
2501       }
2502 
2503       // Skip ',' if any.
2504       if (Tok.is(tok::comma))
2505         ConsumeToken();
2506       Actions.EndOpenMPClause();
2507     }
2508     // End location of the directive.
2509     EndLoc = Tok.getLocation();
2510     // Consume final annot_pragma_openmp_end.
2511     ConsumeAnnotationToken();
2512 
2513     // OpenMP [2.13.8, ordered Construct, Syntax]
2514     // If the depend clause is specified, the ordered construct is a stand-alone
2515     // directive.
2516     if (DKind == OMPD_ordered && FirstClauses[unsigned(OMPC_depend)].getInt()) {
2517       if ((StmtCtx & ParsedStmtContext::AllowStandaloneOpenMPDirectives) ==
2518           ParsedStmtContext()) {
2519         Diag(Loc, diag::err_omp_immediate_directive)
2520             << getOpenMPDirectiveName(DKind) << 1
2521             << getOpenMPClauseName(OMPC_depend);
2522       }
2523       HasAssociatedStatement = false;
2524     }
2525 
2526     if (DKind == OMPD_tile && !FirstClauses[unsigned(OMPC_sizes)].getInt()) {
2527       Diag(Loc, diag::err_omp_required_clause)
2528           << getOpenMPDirectiveName(OMPD_tile) << "sizes";
2529     }
2530 
2531     StmtResult AssociatedStmt;
2532     if (HasAssociatedStatement) {
2533       // The body is a block scope like in Lambdas and Blocks.
2534       Actions.ActOnOpenMPRegionStart(DKind, getCurScope());
2535       // FIXME: We create a bogus CompoundStmt scope to hold the contents of
2536       // the captured region. Code elsewhere assumes that any FunctionScopeInfo
2537       // should have at least one compound statement scope within it.
2538       ParsingOpenMPDirectiveRAII NormalScope(*this, /*Value=*/false);
2539       AssociatedStmt = (Sema::CompoundScopeRAII(Actions), ParseStatement());
2540       AssociatedStmt = Actions.ActOnOpenMPRegionEnd(AssociatedStmt, Clauses);
2541     } else if (DKind == OMPD_target_update || DKind == OMPD_target_enter_data ||
2542                DKind == OMPD_target_exit_data) {
2543       Actions.ActOnOpenMPRegionStart(DKind, getCurScope());
2544       AssociatedStmt = (Sema::CompoundScopeRAII(Actions),
2545                         Actions.ActOnCompoundStmt(Loc, Loc, llvm::None,
2546                                                   /*isStmtExpr=*/false));
2547       AssociatedStmt = Actions.ActOnOpenMPRegionEnd(AssociatedStmt, Clauses);
2548     }
2549     Directive = Actions.ActOnOpenMPExecutableDirective(
2550         DKind, DirName, CancelRegion, Clauses, AssociatedStmt.get(), Loc,
2551         EndLoc);
2552 
2553     // Exit scope.
2554     Actions.EndOpenMPDSABlock(Directive.get());
2555     OMPDirectiveScope.Exit();
2556     break;
2557   }
2558   case OMPD_declare_simd:
2559   case OMPD_declare_target:
2560   case OMPD_end_declare_target:
2561   case OMPD_requires:
2562   case OMPD_begin_declare_variant:
2563   case OMPD_end_declare_variant:
2564   case OMPD_declare_variant:
2565     Diag(Tok, diag::err_omp_unexpected_directive)
2566         << 1 << getOpenMPDirectiveName(DKind);
2567     SkipUntil(tok::annot_pragma_openmp_end);
2568     break;
2569   case OMPD_unknown:
2570   default:
2571     Diag(Tok, diag::err_omp_unknown_directive);
2572     SkipUntil(tok::annot_pragma_openmp_end);
2573     break;
2574   }
2575   return Directive;
2576 }
2577 
2578 // Parses simple list:
2579 //   simple-variable-list:
2580 //         '(' id-expression {, id-expression} ')'
2581 //
2582 bool Parser::ParseOpenMPSimpleVarList(
2583     OpenMPDirectiveKind Kind,
2584     const llvm::function_ref<void(CXXScopeSpec &, DeclarationNameInfo)>
2585         &Callback,
2586     bool AllowScopeSpecifier) {
2587   // Parse '('.
2588   BalancedDelimiterTracker T(*this, tok::l_paren, tok::annot_pragma_openmp_end);
2589   if (T.expectAndConsume(diag::err_expected_lparen_after,
2590                          getOpenMPDirectiveName(Kind).data()))
2591     return true;
2592   bool IsCorrect = true;
2593   bool NoIdentIsFound = true;
2594 
2595   // Read tokens while ')' or annot_pragma_openmp_end is not found.
2596   while (Tok.isNot(tok::r_paren) && Tok.isNot(tok::annot_pragma_openmp_end)) {
2597     CXXScopeSpec SS;
2598     UnqualifiedId Name;
2599     // Read var name.
2600     Token PrevTok = Tok;
2601     NoIdentIsFound = false;
2602 
2603     if (AllowScopeSpecifier && getLangOpts().CPlusPlus &&
2604         ParseOptionalCXXScopeSpecifier(SS, /*ObjectType=*/nullptr,
2605                                        /*ObjectHadErrors=*/false, false)) {
2606       IsCorrect = false;
2607       SkipUntil(tok::comma, tok::r_paren, tok::annot_pragma_openmp_end,
2608                 StopBeforeMatch);
2609     } else if (ParseUnqualifiedId(SS, /*ObjectType=*/nullptr,
2610                                   /*ObjectHadErrors=*/false, false, false,
2611                                   false, false, nullptr, Name)) {
2612       IsCorrect = false;
2613       SkipUntil(tok::comma, tok::r_paren, tok::annot_pragma_openmp_end,
2614                 StopBeforeMatch);
2615     } else if (Tok.isNot(tok::comma) && Tok.isNot(tok::r_paren) &&
2616                Tok.isNot(tok::annot_pragma_openmp_end)) {
2617       IsCorrect = false;
2618       SkipUntil(tok::comma, tok::r_paren, tok::annot_pragma_openmp_end,
2619                 StopBeforeMatch);
2620       Diag(PrevTok.getLocation(), diag::err_expected)
2621           << tok::identifier
2622           << SourceRange(PrevTok.getLocation(), PrevTokLocation);
2623     } else {
2624       Callback(SS, Actions.GetNameFromUnqualifiedId(Name));
2625     }
2626     // Consume ','.
2627     if (Tok.is(tok::comma)) {
2628       ConsumeToken();
2629     }
2630   }
2631 
2632   if (NoIdentIsFound) {
2633     Diag(Tok, diag::err_expected) << tok::identifier;
2634     IsCorrect = false;
2635   }
2636 
2637   // Parse ')'.
2638   IsCorrect = !T.consumeClose() && IsCorrect;
2639 
2640   return !IsCorrect;
2641 }
2642 
2643 OMPClause *Parser::ParseOpenMPSizesClause() {
2644   SourceLocation ClauseNameLoc = ConsumeToken();
2645   SmallVector<Expr *, 4> ValExprs;
2646 
2647   BalancedDelimiterTracker T(*this, tok::l_paren, tok::annot_pragma_openmp_end);
2648   if (T.consumeOpen()) {
2649     Diag(Tok, diag::err_expected) << tok::l_paren;
2650     return nullptr;
2651   }
2652 
2653   while (true) {
2654     ExprResult Val = ParseConstantExpression();
2655     if (!Val.isUsable()) {
2656       T.skipToEnd();
2657       return nullptr;
2658     }
2659 
2660     ValExprs.push_back(Val.get());
2661 
2662     if (Tok.is(tok::r_paren) || Tok.is(tok::annot_pragma_openmp_end))
2663       break;
2664 
2665     ExpectAndConsume(tok::comma);
2666   }
2667 
2668   T.consumeClose();
2669 
2670   return Actions.ActOnOpenMPSizesClause(
2671       ValExprs, ClauseNameLoc, T.getOpenLocation(), T.getCloseLocation());
2672 }
2673 
2674 OMPClause *Parser::ParseOpenMPUsesAllocatorClause(OpenMPDirectiveKind DKind) {
2675   SourceLocation Loc = Tok.getLocation();
2676   ConsumeAnyToken();
2677 
2678   // Parse '('.
2679   BalancedDelimiterTracker T(*this, tok::l_paren, tok::annot_pragma_openmp_end);
2680   if (T.expectAndConsume(diag::err_expected_lparen_after, "uses_allocator"))
2681     return nullptr;
2682   SmallVector<Sema::UsesAllocatorsData, 4> Data;
2683   do {
2684     ExprResult Allocator = ParseCXXIdExpression();
2685     if (Allocator.isInvalid()) {
2686       SkipUntil(tok::comma, tok::r_paren, tok::annot_pragma_openmp_end,
2687                 StopBeforeMatch);
2688       break;
2689     }
2690     Sema::UsesAllocatorsData &D = Data.emplace_back();
2691     D.Allocator = Allocator.get();
2692     if (Tok.is(tok::l_paren)) {
2693       BalancedDelimiterTracker T(*this, tok::l_paren,
2694                                  tok::annot_pragma_openmp_end);
2695       T.consumeOpen();
2696       ExprResult AllocatorTraits = ParseCXXIdExpression();
2697       T.consumeClose();
2698       if (AllocatorTraits.isInvalid()) {
2699         SkipUntil(tok::comma, tok::r_paren, tok::annot_pragma_openmp_end,
2700                   StopBeforeMatch);
2701         break;
2702       }
2703       D.AllocatorTraits = AllocatorTraits.get();
2704       D.LParenLoc = T.getOpenLocation();
2705       D.RParenLoc = T.getCloseLocation();
2706     }
2707     if (Tok.isNot(tok::comma) && Tok.isNot(tok::r_paren))
2708       Diag(Tok, diag::err_omp_expected_punc) << "uses_allocators" << 0;
2709     // Parse ','
2710     if (Tok.is(tok::comma))
2711       ConsumeAnyToken();
2712   } while (Tok.isNot(tok::r_paren) && Tok.isNot(tok::annot_pragma_openmp_end));
2713   T.consumeClose();
2714   return Actions.ActOnOpenMPUsesAllocatorClause(Loc, T.getOpenLocation(),
2715                                                 T.getCloseLocation(), Data);
2716 }
2717 
2718 /// Parsing of OpenMP clauses.
2719 ///
2720 ///    clause:
2721 ///       if-clause | final-clause | num_threads-clause | safelen-clause |
2722 ///       default-clause | private-clause | firstprivate-clause | shared-clause
2723 ///       | linear-clause | aligned-clause | collapse-clause |
2724 ///       lastprivate-clause | reduction-clause | proc_bind-clause |
2725 ///       schedule-clause | copyin-clause | copyprivate-clause | untied-clause |
2726 ///       mergeable-clause | flush-clause | read-clause | write-clause |
2727 ///       update-clause | capture-clause | seq_cst-clause | device-clause |
2728 ///       simdlen-clause | threads-clause | simd-clause | num_teams-clause |
2729 ///       thread_limit-clause | priority-clause | grainsize-clause |
2730 ///       nogroup-clause | num_tasks-clause | hint-clause | to-clause |
2731 ///       from-clause | is_device_ptr-clause | task_reduction-clause |
2732 ///       in_reduction-clause | allocator-clause | allocate-clause |
2733 ///       acq_rel-clause | acquire-clause | release-clause | relaxed-clause |
2734 ///       depobj-clause | destroy-clause | detach-clause | inclusive-clause |
2735 ///       exclusive-clause | uses_allocators-clause | use_device_addr-clause
2736 ///
2737 OMPClause *Parser::ParseOpenMPClause(OpenMPDirectiveKind DKind,
2738                                      OpenMPClauseKind CKind, bool FirstClause) {
2739   OMPClauseKind = CKind;
2740   OMPClause *Clause = nullptr;
2741   bool ErrorFound = false;
2742   bool WrongDirective = false;
2743   // Check if clause is allowed for the given directive.
2744   if (CKind != OMPC_unknown &&
2745       !isAllowedClauseForDirective(DKind, CKind, getLangOpts().OpenMP)) {
2746     Diag(Tok, diag::err_omp_unexpected_clause)
2747         << getOpenMPClauseName(CKind) << getOpenMPDirectiveName(DKind);
2748     ErrorFound = true;
2749     WrongDirective = true;
2750   }
2751 
2752   switch (CKind) {
2753   case OMPC_final:
2754   case OMPC_num_threads:
2755   case OMPC_safelen:
2756   case OMPC_simdlen:
2757   case OMPC_collapse:
2758   case OMPC_ordered:
2759   case OMPC_num_teams:
2760   case OMPC_thread_limit:
2761   case OMPC_priority:
2762   case OMPC_grainsize:
2763   case OMPC_num_tasks:
2764   case OMPC_hint:
2765   case OMPC_allocator:
2766   case OMPC_depobj:
2767   case OMPC_detach:
2768     // OpenMP [2.5, Restrictions]
2769     //  At most one num_threads clause can appear on the directive.
2770     // OpenMP [2.8.1, simd construct, Restrictions]
2771     //  Only one safelen  clause can appear on a simd directive.
2772     //  Only one simdlen  clause can appear on a simd directive.
2773     //  Only one collapse clause can appear on a simd directive.
2774     // OpenMP [2.11.1, task Construct, Restrictions]
2775     //  At most one if clause can appear on the directive.
2776     //  At most one final clause can appear on the directive.
2777     // OpenMP [teams Construct, Restrictions]
2778     //  At most one num_teams clause can appear on the directive.
2779     //  At most one thread_limit clause can appear on the directive.
2780     // OpenMP [2.9.1, task Construct, Restrictions]
2781     // At most one priority clause can appear on the directive.
2782     // OpenMP [2.9.2, taskloop Construct, Restrictions]
2783     // At most one grainsize clause can appear on the directive.
2784     // OpenMP [2.9.2, taskloop Construct, Restrictions]
2785     // At most one num_tasks clause can appear on the directive.
2786     // OpenMP [2.11.3, allocate Directive, Restrictions]
2787     // At most one allocator clause can appear on the directive.
2788     // OpenMP 5.0, 2.10.1 task Construct, Restrictions.
2789     // At most one detach clause can appear on the directive.
2790     if (!FirstClause) {
2791       Diag(Tok, diag::err_omp_more_one_clause)
2792           << getOpenMPDirectiveName(DKind) << getOpenMPClauseName(CKind) << 0;
2793       ErrorFound = true;
2794     }
2795 
2796     if (CKind == OMPC_ordered && PP.LookAhead(/*N=*/0).isNot(tok::l_paren))
2797       Clause = ParseOpenMPClause(CKind, WrongDirective);
2798     else
2799       Clause = ParseOpenMPSingleExprClause(CKind, WrongDirective);
2800     break;
2801   case OMPC_default:
2802   case OMPC_proc_bind:
2803   case OMPC_atomic_default_mem_order:
2804   case OMPC_order:
2805     // OpenMP [2.14.3.1, Restrictions]
2806     //  Only a single default clause may be specified on a parallel, task or
2807     //  teams directive.
2808     // OpenMP [2.5, parallel Construct, Restrictions]
2809     //  At most one proc_bind clause can appear on the directive.
2810     // OpenMP [5.0, Requires directive, Restrictions]
2811     //  At most one atomic_default_mem_order clause can appear
2812     //  on the directive
2813     if (!FirstClause && CKind != OMPC_order) {
2814       Diag(Tok, diag::err_omp_more_one_clause)
2815           << getOpenMPDirectiveName(DKind) << getOpenMPClauseName(CKind) << 0;
2816       ErrorFound = true;
2817     }
2818 
2819     Clause = ParseOpenMPSimpleClause(CKind, WrongDirective);
2820     break;
2821   case OMPC_device:
2822   case OMPC_schedule:
2823   case OMPC_dist_schedule:
2824   case OMPC_defaultmap:
2825     // OpenMP [2.7.1, Restrictions, p. 3]
2826     //  Only one schedule clause can appear on a loop directive.
2827     // OpenMP 4.5 [2.10.4, Restrictions, p. 106]
2828     //  At most one defaultmap clause can appear on the directive.
2829     // OpenMP 5.0 [2.12.5, target construct, Restrictions]
2830     //  At most one device clause can appear on the directive.
2831     if ((getLangOpts().OpenMP < 50 || CKind != OMPC_defaultmap) &&
2832         !FirstClause) {
2833       Diag(Tok, diag::err_omp_more_one_clause)
2834           << getOpenMPDirectiveName(DKind) << getOpenMPClauseName(CKind) << 0;
2835       ErrorFound = true;
2836     }
2837     LLVM_FALLTHROUGH;
2838   case OMPC_if:
2839     Clause = ParseOpenMPSingleExprWithArgClause(DKind, CKind, WrongDirective);
2840     break;
2841   case OMPC_nowait:
2842   case OMPC_untied:
2843   case OMPC_mergeable:
2844   case OMPC_read:
2845   case OMPC_write:
2846   case OMPC_capture:
2847   case OMPC_seq_cst:
2848   case OMPC_acq_rel:
2849   case OMPC_acquire:
2850   case OMPC_release:
2851   case OMPC_relaxed:
2852   case OMPC_threads:
2853   case OMPC_simd:
2854   case OMPC_nogroup:
2855   case OMPC_unified_address:
2856   case OMPC_unified_shared_memory:
2857   case OMPC_reverse_offload:
2858   case OMPC_dynamic_allocators:
2859   case OMPC_destroy:
2860     // OpenMP [2.7.1, Restrictions, p. 9]
2861     //  Only one ordered clause can appear on a loop directive.
2862     // OpenMP [2.7.1, Restrictions, C/C++, p. 4]
2863     //  Only one nowait clause can appear on a for directive.
2864     // OpenMP [5.0, Requires directive, Restrictions]
2865     //   Each of the requires clauses can appear at most once on the directive.
2866     if (!FirstClause) {
2867       Diag(Tok, diag::err_omp_more_one_clause)
2868           << getOpenMPDirectiveName(DKind) << getOpenMPClauseName(CKind) << 0;
2869       ErrorFound = true;
2870     }
2871 
2872     Clause = ParseOpenMPClause(CKind, WrongDirective);
2873     break;
2874   case OMPC_update:
2875     if (!FirstClause) {
2876       Diag(Tok, diag::err_omp_more_one_clause)
2877           << getOpenMPDirectiveName(DKind) << getOpenMPClauseName(CKind) << 0;
2878       ErrorFound = true;
2879     }
2880 
2881     Clause = (DKind == OMPD_depobj)
2882                  ? ParseOpenMPSimpleClause(CKind, WrongDirective)
2883                  : ParseOpenMPClause(CKind, WrongDirective);
2884     break;
2885   case OMPC_private:
2886   case OMPC_firstprivate:
2887   case OMPC_lastprivate:
2888   case OMPC_shared:
2889   case OMPC_reduction:
2890   case OMPC_task_reduction:
2891   case OMPC_in_reduction:
2892   case OMPC_linear:
2893   case OMPC_aligned:
2894   case OMPC_copyin:
2895   case OMPC_copyprivate:
2896   case OMPC_flush:
2897   case OMPC_depend:
2898   case OMPC_map:
2899   case OMPC_to:
2900   case OMPC_from:
2901   case OMPC_use_device_ptr:
2902   case OMPC_use_device_addr:
2903   case OMPC_is_device_ptr:
2904   case OMPC_allocate:
2905   case OMPC_nontemporal:
2906   case OMPC_inclusive:
2907   case OMPC_exclusive:
2908   case OMPC_affinity:
2909     Clause = ParseOpenMPVarListClause(DKind, CKind, WrongDirective);
2910     break;
2911   case OMPC_sizes:
2912     if (!FirstClause) {
2913       Diag(Tok, diag::err_omp_more_one_clause)
2914           << getOpenMPDirectiveName(DKind) << getOpenMPClauseName(CKind) << 0;
2915       ErrorFound = true;
2916     }
2917 
2918     Clause = ParseOpenMPSizesClause();
2919     break;
2920   case OMPC_uses_allocators:
2921     Clause = ParseOpenMPUsesAllocatorClause(DKind);
2922     break;
2923   case OMPC_device_type:
2924   case OMPC_unknown:
2925     skipUntilPragmaOpenMPEnd(DKind);
2926     break;
2927   case OMPC_threadprivate:
2928   case OMPC_uniform:
2929   case OMPC_match:
2930     if (!WrongDirective)
2931       Diag(Tok, diag::err_omp_unexpected_clause)
2932           << getOpenMPClauseName(CKind) << getOpenMPDirectiveName(DKind);
2933     SkipUntil(tok::comma, tok::annot_pragma_openmp_end, StopBeforeMatch);
2934     break;
2935   default:
2936     break;
2937   }
2938   return ErrorFound ? nullptr : Clause;
2939 }
2940 
2941 /// Parses simple expression in parens for single-expression clauses of OpenMP
2942 /// constructs.
2943 /// \param RLoc Returned location of right paren.
2944 ExprResult Parser::ParseOpenMPParensExpr(StringRef ClauseName,
2945                                          SourceLocation &RLoc,
2946                                          bool IsAddressOfOperand) {
2947   BalancedDelimiterTracker T(*this, tok::l_paren, tok::annot_pragma_openmp_end);
2948   if (T.expectAndConsume(diag::err_expected_lparen_after, ClauseName.data()))
2949     return ExprError();
2950 
2951   SourceLocation ELoc = Tok.getLocation();
2952   ExprResult LHS(
2953       ParseCastExpression(AnyCastExpr, IsAddressOfOperand, NotTypeCast));
2954   ExprResult Val(ParseRHSOfBinaryExpression(LHS, prec::Conditional));
2955   Val = Actions.ActOnFinishFullExpr(Val.get(), ELoc, /*DiscardedValue*/ false);
2956 
2957   // Parse ')'.
2958   RLoc = Tok.getLocation();
2959   if (!T.consumeClose())
2960     RLoc = T.getCloseLocation();
2961 
2962   return Val;
2963 }
2964 
2965 /// Parsing of OpenMP clauses with single expressions like 'final',
2966 /// 'collapse', 'safelen', 'num_threads', 'simdlen', 'num_teams',
2967 /// 'thread_limit', 'simdlen', 'priority', 'grainsize', 'num_tasks', 'hint' or
2968 /// 'detach'.
2969 ///
2970 ///    final-clause:
2971 ///      'final' '(' expression ')'
2972 ///
2973 ///    num_threads-clause:
2974 ///      'num_threads' '(' expression ')'
2975 ///
2976 ///    safelen-clause:
2977 ///      'safelen' '(' expression ')'
2978 ///
2979 ///    simdlen-clause:
2980 ///      'simdlen' '(' expression ')'
2981 ///
2982 ///    collapse-clause:
2983 ///      'collapse' '(' expression ')'
2984 ///
2985 ///    priority-clause:
2986 ///      'priority' '(' expression ')'
2987 ///
2988 ///    grainsize-clause:
2989 ///      'grainsize' '(' expression ')'
2990 ///
2991 ///    num_tasks-clause:
2992 ///      'num_tasks' '(' expression ')'
2993 ///
2994 ///    hint-clause:
2995 ///      'hint' '(' expression ')'
2996 ///
2997 ///    allocator-clause:
2998 ///      'allocator' '(' expression ')'
2999 ///
3000 ///    detach-clause:
3001 ///      'detach' '(' event-handler-expression ')'
3002 ///
3003 OMPClause *Parser::ParseOpenMPSingleExprClause(OpenMPClauseKind Kind,
3004                                                bool ParseOnly) {
3005   SourceLocation Loc = ConsumeToken();
3006   SourceLocation LLoc = Tok.getLocation();
3007   SourceLocation RLoc;
3008 
3009   ExprResult Val = ParseOpenMPParensExpr(getOpenMPClauseName(Kind), RLoc);
3010 
3011   if (Val.isInvalid())
3012     return nullptr;
3013 
3014   if (ParseOnly)
3015     return nullptr;
3016   return Actions.ActOnOpenMPSingleExprClause(Kind, Val.get(), Loc, LLoc, RLoc);
3017 }
3018 
3019 /// Parsing of simple OpenMP clauses like 'default' or 'proc_bind'.
3020 ///
3021 ///    default-clause:
3022 ///         'default' '(' 'none' | 'shared' | 'firstprivate' ')'
3023 ///
3024 ///    proc_bind-clause:
3025 ///         'proc_bind' '(' 'master' | 'close' | 'spread' ')'
3026 ///
3027 ///    update-clause:
3028 ///         'update' '(' 'in' | 'out' | 'inout' | 'mutexinoutset' ')'
3029 ///
3030 OMPClause *Parser::ParseOpenMPSimpleClause(OpenMPClauseKind Kind,
3031                                            bool ParseOnly) {
3032   llvm::Optional<SimpleClauseData> Val = parseOpenMPSimpleClause(*this, Kind);
3033   if (!Val || ParseOnly)
3034     return nullptr;
3035   if (getLangOpts().OpenMP < 51 && Kind == OMPC_default &&
3036       static_cast<DefaultKind>(Val.getValue().Type) ==
3037           OMP_DEFAULT_firstprivate) {
3038     Diag(Val.getValue().LOpen, diag::err_omp_invalid_dsa)
3039         << getOpenMPClauseName(OMPC_firstprivate)
3040         << getOpenMPClauseName(OMPC_default) << "5.1";
3041     return nullptr;
3042   }
3043   return Actions.ActOnOpenMPSimpleClause(
3044       Kind, Val.getValue().Type, Val.getValue().TypeLoc, Val.getValue().LOpen,
3045       Val.getValue().Loc, Val.getValue().RLoc);
3046 }
3047 
3048 /// Parsing of OpenMP clauses like 'ordered'.
3049 ///
3050 ///    ordered-clause:
3051 ///         'ordered'
3052 ///
3053 ///    nowait-clause:
3054 ///         'nowait'
3055 ///
3056 ///    untied-clause:
3057 ///         'untied'
3058 ///
3059 ///    mergeable-clause:
3060 ///         'mergeable'
3061 ///
3062 ///    read-clause:
3063 ///         'read'
3064 ///
3065 ///    threads-clause:
3066 ///         'threads'
3067 ///
3068 ///    simd-clause:
3069 ///         'simd'
3070 ///
3071 ///    nogroup-clause:
3072 ///         'nogroup'
3073 ///
3074 OMPClause *Parser::ParseOpenMPClause(OpenMPClauseKind Kind, bool ParseOnly) {
3075   SourceLocation Loc = Tok.getLocation();
3076   ConsumeAnyToken();
3077 
3078   if (ParseOnly)
3079     return nullptr;
3080   return Actions.ActOnOpenMPClause(Kind, Loc, Tok.getLocation());
3081 }
3082 
3083 /// Parsing of OpenMP clauses with single expressions and some additional
3084 /// argument like 'schedule' or 'dist_schedule'.
3085 ///
3086 ///    schedule-clause:
3087 ///      'schedule' '(' [ modifier [ ',' modifier ] ':' ] kind [',' expression ]
3088 ///      ')'
3089 ///
3090 ///    if-clause:
3091 ///      'if' '(' [ directive-name-modifier ':' ] expression ')'
3092 ///
3093 ///    defaultmap:
3094 ///      'defaultmap' '(' modifier [ ':' kind ] ')'
3095 ///
3096 ///    device-clause:
3097 ///      'device' '(' [ device-modifier ':' ] expression ')'
3098 ///
3099 OMPClause *Parser::ParseOpenMPSingleExprWithArgClause(OpenMPDirectiveKind DKind,
3100                                                       OpenMPClauseKind Kind,
3101                                                       bool ParseOnly) {
3102   SourceLocation Loc = ConsumeToken();
3103   SourceLocation DelimLoc;
3104   // Parse '('.
3105   BalancedDelimiterTracker T(*this, tok::l_paren, tok::annot_pragma_openmp_end);
3106   if (T.expectAndConsume(diag::err_expected_lparen_after,
3107                          getOpenMPClauseName(Kind).data()))
3108     return nullptr;
3109 
3110   ExprResult Val;
3111   SmallVector<unsigned, 4> Arg;
3112   SmallVector<SourceLocation, 4> KLoc;
3113   if (Kind == OMPC_schedule) {
3114     enum { Modifier1, Modifier2, ScheduleKind, NumberOfElements };
3115     Arg.resize(NumberOfElements);
3116     KLoc.resize(NumberOfElements);
3117     Arg[Modifier1] = OMPC_SCHEDULE_MODIFIER_unknown;
3118     Arg[Modifier2] = OMPC_SCHEDULE_MODIFIER_unknown;
3119     Arg[ScheduleKind] = OMPC_SCHEDULE_unknown;
3120     unsigned KindModifier = getOpenMPSimpleClauseType(
3121         Kind, Tok.isAnnotation() ? "" : PP.getSpelling(Tok),
3122         getLangOpts().OpenMP);
3123     if (KindModifier > OMPC_SCHEDULE_unknown) {
3124       // Parse 'modifier'
3125       Arg[Modifier1] = KindModifier;
3126       KLoc[Modifier1] = Tok.getLocation();
3127       if (Tok.isNot(tok::r_paren) && Tok.isNot(tok::comma) &&
3128           Tok.isNot(tok::annot_pragma_openmp_end))
3129         ConsumeAnyToken();
3130       if (Tok.is(tok::comma)) {
3131         // Parse ',' 'modifier'
3132         ConsumeAnyToken();
3133         KindModifier = getOpenMPSimpleClauseType(
3134             Kind, Tok.isAnnotation() ? "" : PP.getSpelling(Tok),
3135             getLangOpts().OpenMP);
3136         Arg[Modifier2] = KindModifier > OMPC_SCHEDULE_unknown
3137                              ? KindModifier
3138                              : (unsigned)OMPC_SCHEDULE_unknown;
3139         KLoc[Modifier2] = Tok.getLocation();
3140         if (Tok.isNot(tok::r_paren) && Tok.isNot(tok::comma) &&
3141             Tok.isNot(tok::annot_pragma_openmp_end))
3142           ConsumeAnyToken();
3143       }
3144       // Parse ':'
3145       if (Tok.is(tok::colon))
3146         ConsumeAnyToken();
3147       else
3148         Diag(Tok, diag::warn_pragma_expected_colon) << "schedule modifier";
3149       KindModifier = getOpenMPSimpleClauseType(
3150           Kind, Tok.isAnnotation() ? "" : PP.getSpelling(Tok),
3151           getLangOpts().OpenMP);
3152     }
3153     Arg[ScheduleKind] = KindModifier;
3154     KLoc[ScheduleKind] = Tok.getLocation();
3155     if (Tok.isNot(tok::r_paren) && Tok.isNot(tok::comma) &&
3156         Tok.isNot(tok::annot_pragma_openmp_end))
3157       ConsumeAnyToken();
3158     if ((Arg[ScheduleKind] == OMPC_SCHEDULE_static ||
3159          Arg[ScheduleKind] == OMPC_SCHEDULE_dynamic ||
3160          Arg[ScheduleKind] == OMPC_SCHEDULE_guided) &&
3161         Tok.is(tok::comma))
3162       DelimLoc = ConsumeAnyToken();
3163   } else if (Kind == OMPC_dist_schedule) {
3164     Arg.push_back(getOpenMPSimpleClauseType(
3165         Kind, Tok.isAnnotation() ? "" : PP.getSpelling(Tok),
3166         getLangOpts().OpenMP));
3167     KLoc.push_back(Tok.getLocation());
3168     if (Tok.isNot(tok::r_paren) && Tok.isNot(tok::comma) &&
3169         Tok.isNot(tok::annot_pragma_openmp_end))
3170       ConsumeAnyToken();
3171     if (Arg.back() == OMPC_DIST_SCHEDULE_static && Tok.is(tok::comma))
3172       DelimLoc = ConsumeAnyToken();
3173   } else if (Kind == OMPC_defaultmap) {
3174     // Get a defaultmap modifier
3175     unsigned Modifier = getOpenMPSimpleClauseType(
3176         Kind, Tok.isAnnotation() ? "" : PP.getSpelling(Tok),
3177         getLangOpts().OpenMP);
3178     // Set defaultmap modifier to unknown if it is either scalar, aggregate, or
3179     // pointer
3180     if (Modifier < OMPC_DEFAULTMAP_MODIFIER_unknown)
3181       Modifier = OMPC_DEFAULTMAP_MODIFIER_unknown;
3182     Arg.push_back(Modifier);
3183     KLoc.push_back(Tok.getLocation());
3184     if (Tok.isNot(tok::r_paren) && Tok.isNot(tok::comma) &&
3185         Tok.isNot(tok::annot_pragma_openmp_end))
3186       ConsumeAnyToken();
3187     // Parse ':'
3188     if (Tok.is(tok::colon) || getLangOpts().OpenMP < 50) {
3189       if (Tok.is(tok::colon))
3190         ConsumeAnyToken();
3191       else if (Arg.back() != OMPC_DEFAULTMAP_MODIFIER_unknown)
3192         Diag(Tok, diag::warn_pragma_expected_colon) << "defaultmap modifier";
3193       // Get a defaultmap kind
3194       Arg.push_back(getOpenMPSimpleClauseType(
3195           Kind, Tok.isAnnotation() ? "" : PP.getSpelling(Tok),
3196           getLangOpts().OpenMP));
3197       KLoc.push_back(Tok.getLocation());
3198       if (Tok.isNot(tok::r_paren) && Tok.isNot(tok::comma) &&
3199           Tok.isNot(tok::annot_pragma_openmp_end))
3200         ConsumeAnyToken();
3201     } else {
3202       Arg.push_back(OMPC_DEFAULTMAP_unknown);
3203       KLoc.push_back(SourceLocation());
3204     }
3205   } else if (Kind == OMPC_device) {
3206     // Only target executable directives support extended device construct.
3207     if (isOpenMPTargetExecutionDirective(DKind) && getLangOpts().OpenMP >= 50 &&
3208         NextToken().is(tok::colon)) {
3209       // Parse optional <device modifier> ':'
3210       Arg.push_back(getOpenMPSimpleClauseType(
3211           Kind, Tok.isAnnotation() ? "" : PP.getSpelling(Tok),
3212           getLangOpts().OpenMP));
3213       KLoc.push_back(Tok.getLocation());
3214       ConsumeAnyToken();
3215       // Parse ':'
3216       ConsumeAnyToken();
3217     } else {
3218       Arg.push_back(OMPC_DEVICE_unknown);
3219       KLoc.emplace_back();
3220     }
3221   } else {
3222     assert(Kind == OMPC_if);
3223     KLoc.push_back(Tok.getLocation());
3224     TentativeParsingAction TPA(*this);
3225     auto DK = parseOpenMPDirectiveKind(*this);
3226     Arg.push_back(DK);
3227     if (DK != OMPD_unknown) {
3228       ConsumeToken();
3229       if (Tok.is(tok::colon) && getLangOpts().OpenMP > 40) {
3230         TPA.Commit();
3231         DelimLoc = ConsumeToken();
3232       } else {
3233         TPA.Revert();
3234         Arg.back() = unsigned(OMPD_unknown);
3235       }
3236     } else {
3237       TPA.Revert();
3238     }
3239   }
3240 
3241   bool NeedAnExpression = (Kind == OMPC_schedule && DelimLoc.isValid()) ||
3242                           (Kind == OMPC_dist_schedule && DelimLoc.isValid()) ||
3243                           Kind == OMPC_if || Kind == OMPC_device;
3244   if (NeedAnExpression) {
3245     SourceLocation ELoc = Tok.getLocation();
3246     ExprResult LHS(ParseCastExpression(AnyCastExpr, false, NotTypeCast));
3247     Val = ParseRHSOfBinaryExpression(LHS, prec::Conditional);
3248     Val =
3249         Actions.ActOnFinishFullExpr(Val.get(), ELoc, /*DiscardedValue*/ false);
3250   }
3251 
3252   // Parse ')'.
3253   SourceLocation RLoc = Tok.getLocation();
3254   if (!T.consumeClose())
3255     RLoc = T.getCloseLocation();
3256 
3257   if (NeedAnExpression && Val.isInvalid())
3258     return nullptr;
3259 
3260   if (ParseOnly)
3261     return nullptr;
3262   return Actions.ActOnOpenMPSingleExprWithArgClause(
3263       Kind, Arg, Val.get(), Loc, T.getOpenLocation(), KLoc, DelimLoc, RLoc);
3264 }
3265 
3266 static bool ParseReductionId(Parser &P, CXXScopeSpec &ReductionIdScopeSpec,
3267                              UnqualifiedId &ReductionId) {
3268   if (ReductionIdScopeSpec.isEmpty()) {
3269     auto OOK = OO_None;
3270     switch (P.getCurToken().getKind()) {
3271     case tok::plus:
3272       OOK = OO_Plus;
3273       break;
3274     case tok::minus:
3275       OOK = OO_Minus;
3276       break;
3277     case tok::star:
3278       OOK = OO_Star;
3279       break;
3280     case tok::amp:
3281       OOK = OO_Amp;
3282       break;
3283     case tok::pipe:
3284       OOK = OO_Pipe;
3285       break;
3286     case tok::caret:
3287       OOK = OO_Caret;
3288       break;
3289     case tok::ampamp:
3290       OOK = OO_AmpAmp;
3291       break;
3292     case tok::pipepipe:
3293       OOK = OO_PipePipe;
3294       break;
3295     default:
3296       break;
3297     }
3298     if (OOK != OO_None) {
3299       SourceLocation OpLoc = P.ConsumeToken();
3300       SourceLocation SymbolLocations[] = {OpLoc, OpLoc, SourceLocation()};
3301       ReductionId.setOperatorFunctionId(OpLoc, OOK, SymbolLocations);
3302       return false;
3303     }
3304   }
3305   return P.ParseUnqualifiedId(
3306       ReductionIdScopeSpec, /*ObjectType=*/nullptr,
3307       /*ObjectHadErrors=*/false, /*EnteringContext*/ false,
3308       /*AllowDestructorName*/ false,
3309       /*AllowConstructorName*/ false,
3310       /*AllowDeductionGuide*/ false, nullptr, ReductionId);
3311 }
3312 
3313 /// Checks if the token is a valid map-type-modifier.
3314 /// FIXME: It will return an OpenMPMapClauseKind if that's what it parses.
3315 static OpenMPMapModifierKind isMapModifier(Parser &P) {
3316   Token Tok = P.getCurToken();
3317   if (!Tok.is(tok::identifier))
3318     return OMPC_MAP_MODIFIER_unknown;
3319 
3320   Preprocessor &PP = P.getPreprocessor();
3321   OpenMPMapModifierKind TypeModifier =
3322       static_cast<OpenMPMapModifierKind>(getOpenMPSimpleClauseType(
3323           OMPC_map, PP.getSpelling(Tok), P.getLangOpts().OpenMP));
3324   return TypeModifier;
3325 }
3326 
3327 /// Parse the mapper modifier in map, to, and from clauses.
3328 bool Parser::parseMapperModifier(OpenMPVarListDataTy &Data) {
3329   // Parse '('.
3330   BalancedDelimiterTracker T(*this, tok::l_paren, tok::colon);
3331   if (T.expectAndConsume(diag::err_expected_lparen_after, "mapper")) {
3332     SkipUntil(tok::colon, tok::r_paren, tok::annot_pragma_openmp_end,
3333               StopBeforeMatch);
3334     return true;
3335   }
3336   // Parse mapper-identifier
3337   if (getLangOpts().CPlusPlus)
3338     ParseOptionalCXXScopeSpecifier(Data.ReductionOrMapperIdScopeSpec,
3339                                    /*ObjectType=*/nullptr,
3340                                    /*ObjectHadErrors=*/false,
3341                                    /*EnteringContext=*/false);
3342   if (Tok.isNot(tok::identifier) && Tok.isNot(tok::kw_default)) {
3343     Diag(Tok.getLocation(), diag::err_omp_mapper_illegal_identifier);
3344     SkipUntil(tok::colon, tok::r_paren, tok::annot_pragma_openmp_end,
3345               StopBeforeMatch);
3346     return true;
3347   }
3348   auto &DeclNames = Actions.getASTContext().DeclarationNames;
3349   Data.ReductionOrMapperId = DeclarationNameInfo(
3350       DeclNames.getIdentifier(Tok.getIdentifierInfo()), Tok.getLocation());
3351   ConsumeToken();
3352   // Parse ')'.
3353   return T.consumeClose();
3354 }
3355 
3356 /// Parse map-type-modifiers in map clause.
3357 /// map([ [map-type-modifier[,] [map-type-modifier[,] ...] map-type : ] list)
3358 /// where, map-type-modifier ::= always | close | mapper(mapper-identifier) |
3359 /// present
3360 bool Parser::parseMapTypeModifiers(OpenMPVarListDataTy &Data) {
3361   while (getCurToken().isNot(tok::colon)) {
3362     OpenMPMapModifierKind TypeModifier = isMapModifier(*this);
3363     if (TypeModifier == OMPC_MAP_MODIFIER_always ||
3364         TypeModifier == OMPC_MAP_MODIFIER_close ||
3365         TypeModifier == OMPC_MAP_MODIFIER_present) {
3366       Data.MapTypeModifiers.push_back(TypeModifier);
3367       Data.MapTypeModifiersLoc.push_back(Tok.getLocation());
3368       ConsumeToken();
3369     } else if (TypeModifier == OMPC_MAP_MODIFIER_mapper) {
3370       Data.MapTypeModifiers.push_back(TypeModifier);
3371       Data.MapTypeModifiersLoc.push_back(Tok.getLocation());
3372       ConsumeToken();
3373       if (parseMapperModifier(Data))
3374         return true;
3375     } else {
3376       // For the case of unknown map-type-modifier or a map-type.
3377       // Map-type is followed by a colon; the function returns when it
3378       // encounters a token followed by a colon.
3379       if (Tok.is(tok::comma)) {
3380         Diag(Tok, diag::err_omp_map_type_modifier_missing);
3381         ConsumeToken();
3382         continue;
3383       }
3384       // Potential map-type token as it is followed by a colon.
3385       if (PP.LookAhead(0).is(tok::colon))
3386         return false;
3387       Diag(Tok, diag::err_omp_unknown_map_type_modifier)
3388           << (getLangOpts().OpenMP >= 51 ? 1 : 0);
3389       ConsumeToken();
3390     }
3391     if (getCurToken().is(tok::comma))
3392       ConsumeToken();
3393   }
3394   return false;
3395 }
3396 
3397 /// Checks if the token is a valid map-type.
3398 /// FIXME: It will return an OpenMPMapModifierKind if that's what it parses.
3399 static OpenMPMapClauseKind isMapType(Parser &P) {
3400   Token Tok = P.getCurToken();
3401   // The map-type token can be either an identifier or the C++ delete keyword.
3402   if (!Tok.isOneOf(tok::identifier, tok::kw_delete))
3403     return OMPC_MAP_unknown;
3404   Preprocessor &PP = P.getPreprocessor();
3405   OpenMPMapClauseKind MapType =
3406       static_cast<OpenMPMapClauseKind>(getOpenMPSimpleClauseType(
3407           OMPC_map, PP.getSpelling(Tok), P.getLangOpts().OpenMP));
3408   return MapType;
3409 }
3410 
3411 /// Parse map-type in map clause.
3412 /// map([ [map-type-modifier[,] [map-type-modifier[,] ...] map-type : ] list)
3413 /// where, map-type ::= to | from | tofrom | alloc | release | delete
3414 static void parseMapType(Parser &P, Parser::OpenMPVarListDataTy &Data) {
3415   Token Tok = P.getCurToken();
3416   if (Tok.is(tok::colon)) {
3417     P.Diag(Tok, diag::err_omp_map_type_missing);
3418     return;
3419   }
3420   Data.ExtraModifier = isMapType(P);
3421   if (Data.ExtraModifier == OMPC_MAP_unknown)
3422     P.Diag(Tok, diag::err_omp_unknown_map_type);
3423   P.ConsumeToken();
3424 }
3425 
3426 /// Parses simple expression in parens for single-expression clauses of OpenMP
3427 /// constructs.
3428 ExprResult Parser::ParseOpenMPIteratorsExpr() {
3429   assert(Tok.is(tok::identifier) && PP.getSpelling(Tok) == "iterator" &&
3430          "Expected 'iterator' token.");
3431   SourceLocation IteratorKwLoc = ConsumeToken();
3432 
3433   BalancedDelimiterTracker T(*this, tok::l_paren, tok::annot_pragma_openmp_end);
3434   if (T.expectAndConsume(diag::err_expected_lparen_after, "iterator"))
3435     return ExprError();
3436 
3437   SourceLocation LLoc = T.getOpenLocation();
3438   SmallVector<Sema::OMPIteratorData, 4> Data;
3439   while (Tok.isNot(tok::r_paren) && Tok.isNot(tok::annot_pragma_openmp_end)) {
3440     // Check if the type parsing is required.
3441     ParsedType IteratorType;
3442     if (Tok.isNot(tok::identifier) || NextToken().isNot(tok::equal)) {
3443       // identifier '=' is not found - parse type.
3444       TypeResult TR = ParseTypeName();
3445       if (TR.isInvalid()) {
3446         T.skipToEnd();
3447         return ExprError();
3448       }
3449       IteratorType = TR.get();
3450     }
3451 
3452     // Parse identifier.
3453     IdentifierInfo *II = nullptr;
3454     SourceLocation IdLoc;
3455     if (Tok.is(tok::identifier)) {
3456       II = Tok.getIdentifierInfo();
3457       IdLoc = ConsumeToken();
3458     } else {
3459       Diag(Tok, diag::err_expected_unqualified_id) << 0;
3460     }
3461 
3462     // Parse '='.
3463     SourceLocation AssignLoc;
3464     if (Tok.is(tok::equal))
3465       AssignLoc = ConsumeToken();
3466     else
3467       Diag(Tok, diag::err_omp_expected_equal_in_iterator);
3468 
3469     // Parse range-specification - <begin> ':' <end> [ ':' <step> ]
3470     ColonProtectionRAIIObject ColonRAII(*this);
3471     // Parse <begin>
3472     SourceLocation Loc = Tok.getLocation();
3473     ExprResult LHS = ParseCastExpression(AnyCastExpr);
3474     ExprResult Begin = Actions.CorrectDelayedTyposInExpr(
3475         ParseRHSOfBinaryExpression(LHS, prec::Conditional));
3476     Begin = Actions.ActOnFinishFullExpr(Begin.get(), Loc,
3477                                         /*DiscardedValue=*/false);
3478     // Parse ':'.
3479     SourceLocation ColonLoc;
3480     if (Tok.is(tok::colon))
3481       ColonLoc = ConsumeToken();
3482 
3483     // Parse <end>
3484     Loc = Tok.getLocation();
3485     LHS = ParseCastExpression(AnyCastExpr);
3486     ExprResult End = Actions.CorrectDelayedTyposInExpr(
3487         ParseRHSOfBinaryExpression(LHS, prec::Conditional));
3488     End = Actions.ActOnFinishFullExpr(End.get(), Loc,
3489                                       /*DiscardedValue=*/false);
3490 
3491     SourceLocation SecColonLoc;
3492     ExprResult Step;
3493     // Parse optional step.
3494     if (Tok.is(tok::colon)) {
3495       // Parse ':'
3496       SecColonLoc = ConsumeToken();
3497       // Parse <step>
3498       Loc = Tok.getLocation();
3499       LHS = ParseCastExpression(AnyCastExpr);
3500       Step = Actions.CorrectDelayedTyposInExpr(
3501           ParseRHSOfBinaryExpression(LHS, prec::Conditional));
3502       Step = Actions.ActOnFinishFullExpr(Step.get(), Loc,
3503                                          /*DiscardedValue=*/false);
3504     }
3505 
3506     // Parse ',' or ')'
3507     if (Tok.isNot(tok::comma) && Tok.isNot(tok::r_paren))
3508       Diag(Tok, diag::err_omp_expected_punc_after_iterator);
3509     if (Tok.is(tok::comma))
3510       ConsumeToken();
3511 
3512     Sema::OMPIteratorData &D = Data.emplace_back();
3513     D.DeclIdent = II;
3514     D.DeclIdentLoc = IdLoc;
3515     D.Type = IteratorType;
3516     D.AssignLoc = AssignLoc;
3517     D.ColonLoc = ColonLoc;
3518     D.SecColonLoc = SecColonLoc;
3519     D.Range.Begin = Begin.get();
3520     D.Range.End = End.get();
3521     D.Range.Step = Step.get();
3522   }
3523 
3524   // Parse ')'.
3525   SourceLocation RLoc = Tok.getLocation();
3526   if (!T.consumeClose())
3527     RLoc = T.getCloseLocation();
3528 
3529   return Actions.ActOnOMPIteratorExpr(getCurScope(), IteratorKwLoc, LLoc, RLoc,
3530                                       Data);
3531 }
3532 
3533 /// Parses clauses with list.
3534 bool Parser::ParseOpenMPVarList(OpenMPDirectiveKind DKind,
3535                                 OpenMPClauseKind Kind,
3536                                 SmallVectorImpl<Expr *> &Vars,
3537                                 OpenMPVarListDataTy &Data) {
3538   UnqualifiedId UnqualifiedReductionId;
3539   bool InvalidReductionId = false;
3540   bool IsInvalidMapperModifier = false;
3541 
3542   // Parse '('.
3543   BalancedDelimiterTracker T(*this, tok::l_paren, tok::annot_pragma_openmp_end);
3544   if (T.expectAndConsume(diag::err_expected_lparen_after,
3545                          getOpenMPClauseName(Kind).data()))
3546     return true;
3547 
3548   bool HasIterator = false;
3549   bool NeedRParenForLinear = false;
3550   BalancedDelimiterTracker LinearT(*this, tok::l_paren,
3551                                    tok::annot_pragma_openmp_end);
3552   // Handle reduction-identifier for reduction clause.
3553   if (Kind == OMPC_reduction || Kind == OMPC_task_reduction ||
3554       Kind == OMPC_in_reduction) {
3555     Data.ExtraModifier = OMPC_REDUCTION_unknown;
3556     if (Kind == OMPC_reduction && getLangOpts().OpenMP >= 50 &&
3557         (Tok.is(tok::identifier) || Tok.is(tok::kw_default)) &&
3558         NextToken().is(tok::comma)) {
3559       // Parse optional reduction modifier.
3560       Data.ExtraModifier = getOpenMPSimpleClauseType(Kind, PP.getSpelling(Tok),
3561                                                      getLangOpts().OpenMP);
3562       Data.ExtraModifierLoc = Tok.getLocation();
3563       ConsumeToken();
3564       assert(Tok.is(tok::comma) && "Expected comma.");
3565       (void)ConsumeToken();
3566     }
3567     ColonProtectionRAIIObject ColonRAII(*this);
3568     if (getLangOpts().CPlusPlus)
3569       ParseOptionalCXXScopeSpecifier(Data.ReductionOrMapperIdScopeSpec,
3570                                      /*ObjectType=*/nullptr,
3571                                      /*ObjectHadErrors=*/false,
3572                                      /*EnteringContext=*/false);
3573     InvalidReductionId = ParseReductionId(
3574         *this, Data.ReductionOrMapperIdScopeSpec, UnqualifiedReductionId);
3575     if (InvalidReductionId) {
3576       SkipUntil(tok::colon, tok::r_paren, tok::annot_pragma_openmp_end,
3577                 StopBeforeMatch);
3578     }
3579     if (Tok.is(tok::colon))
3580       Data.ColonLoc = ConsumeToken();
3581     else
3582       Diag(Tok, diag::warn_pragma_expected_colon) << "reduction identifier";
3583     if (!InvalidReductionId)
3584       Data.ReductionOrMapperId =
3585           Actions.GetNameFromUnqualifiedId(UnqualifiedReductionId);
3586   } else if (Kind == OMPC_depend) {
3587     if (getLangOpts().OpenMP >= 50) {
3588       if (Tok.is(tok::identifier) && PP.getSpelling(Tok) == "iterator") {
3589         // Handle optional dependence modifier.
3590         // iterator(iterators-definition)
3591         // where iterators-definition is iterator-specifier [,
3592         // iterators-definition ]
3593         // where iterator-specifier is [ iterator-type ] identifier =
3594         // range-specification
3595         HasIterator = true;
3596         EnterScope(Scope::OpenMPDirectiveScope | Scope::DeclScope);
3597         ExprResult IteratorRes = ParseOpenMPIteratorsExpr();
3598         Data.DepModOrTailExpr = IteratorRes.get();
3599         // Parse ','
3600         ExpectAndConsume(tok::comma);
3601       }
3602     }
3603     // Handle dependency type for depend clause.
3604     ColonProtectionRAIIObject ColonRAII(*this);
3605     Data.ExtraModifier = getOpenMPSimpleClauseType(
3606         Kind, Tok.is(tok::identifier) ? PP.getSpelling(Tok) : "",
3607         getLangOpts().OpenMP);
3608     Data.ExtraModifierLoc = Tok.getLocation();
3609     if (Data.ExtraModifier == OMPC_DEPEND_unknown) {
3610       SkipUntil(tok::colon, tok::r_paren, tok::annot_pragma_openmp_end,
3611                 StopBeforeMatch);
3612     } else {
3613       ConsumeToken();
3614       // Special processing for depend(source) clause.
3615       if (DKind == OMPD_ordered && Data.ExtraModifier == OMPC_DEPEND_source) {
3616         // Parse ')'.
3617         T.consumeClose();
3618         return false;
3619       }
3620     }
3621     if (Tok.is(tok::colon)) {
3622       Data.ColonLoc = ConsumeToken();
3623     } else {
3624       Diag(Tok, DKind == OMPD_ordered ? diag::warn_pragma_expected_colon_r_paren
3625                                       : diag::warn_pragma_expected_colon)
3626           << "dependency type";
3627     }
3628   } else if (Kind == OMPC_linear) {
3629     // Try to parse modifier if any.
3630     Data.ExtraModifier = OMPC_LINEAR_val;
3631     if (Tok.is(tok::identifier) && PP.LookAhead(0).is(tok::l_paren)) {
3632       Data.ExtraModifier = getOpenMPSimpleClauseType(Kind, PP.getSpelling(Tok),
3633                                                      getLangOpts().OpenMP);
3634       Data.ExtraModifierLoc = ConsumeToken();
3635       LinearT.consumeOpen();
3636       NeedRParenForLinear = true;
3637     }
3638   } else if (Kind == OMPC_lastprivate) {
3639     // Try to parse modifier if any.
3640     Data.ExtraModifier = OMPC_LASTPRIVATE_unknown;
3641     // Conditional modifier allowed only in OpenMP 5.0 and not supported in
3642     // distribute and taskloop based directives.
3643     if ((getLangOpts().OpenMP >= 50 && !isOpenMPDistributeDirective(DKind) &&
3644          !isOpenMPTaskLoopDirective(DKind)) &&
3645         Tok.is(tok::identifier) && PP.LookAhead(0).is(tok::colon)) {
3646       Data.ExtraModifier = getOpenMPSimpleClauseType(Kind, PP.getSpelling(Tok),
3647                                                      getLangOpts().OpenMP);
3648       Data.ExtraModifierLoc = Tok.getLocation();
3649       ConsumeToken();
3650       assert(Tok.is(tok::colon) && "Expected colon.");
3651       Data.ColonLoc = ConsumeToken();
3652     }
3653   } else if (Kind == OMPC_map) {
3654     // Handle map type for map clause.
3655     ColonProtectionRAIIObject ColonRAII(*this);
3656 
3657     // The first identifier may be a list item, a map-type or a
3658     // map-type-modifier. The map-type can also be delete which has the same
3659     // spelling of the C++ delete keyword.
3660     Data.ExtraModifier = OMPC_MAP_unknown;
3661     Data.ExtraModifierLoc = Tok.getLocation();
3662 
3663     // Check for presence of a colon in the map clause.
3664     TentativeParsingAction TPA(*this);
3665     bool ColonPresent = false;
3666     if (SkipUntil(tok::colon, tok::r_paren, tok::annot_pragma_openmp_end,
3667                   StopBeforeMatch)) {
3668       if (Tok.is(tok::colon))
3669         ColonPresent = true;
3670     }
3671     TPA.Revert();
3672     // Only parse map-type-modifier[s] and map-type if a colon is present in
3673     // the map clause.
3674     if (ColonPresent) {
3675       IsInvalidMapperModifier = parseMapTypeModifiers(Data);
3676       if (!IsInvalidMapperModifier)
3677         parseMapType(*this, Data);
3678       else
3679         SkipUntil(tok::colon, tok::annot_pragma_openmp_end, StopBeforeMatch);
3680     }
3681     if (Data.ExtraModifier == OMPC_MAP_unknown) {
3682       Data.ExtraModifier = OMPC_MAP_tofrom;
3683       Data.IsMapTypeImplicit = true;
3684     }
3685 
3686     if (Tok.is(tok::colon))
3687       Data.ColonLoc = ConsumeToken();
3688   } else if (Kind == OMPC_to || Kind == OMPC_from) {
3689     while (Tok.is(tok::identifier)) {
3690       auto Modifier =
3691           static_cast<OpenMPMotionModifierKind>(getOpenMPSimpleClauseType(
3692               Kind, PP.getSpelling(Tok), getLangOpts().OpenMP));
3693       if (Modifier == OMPC_MOTION_MODIFIER_unknown)
3694         break;
3695       Data.MotionModifiers.push_back(Modifier);
3696       Data.MotionModifiersLoc.push_back(Tok.getLocation());
3697       ConsumeToken();
3698       if (Modifier == OMPC_MOTION_MODIFIER_mapper) {
3699         IsInvalidMapperModifier = parseMapperModifier(Data);
3700         if (IsInvalidMapperModifier)
3701           break;
3702       }
3703       // OpenMP < 5.1 doesn't permit a ',' or additional modifiers.
3704       if (getLangOpts().OpenMP < 51)
3705         break;
3706       // OpenMP 5.1 accepts an optional ',' even if the next character is ':'.
3707       // TODO: Is that intentional?
3708       if (Tok.is(tok::comma))
3709         ConsumeToken();
3710     }
3711     if (!Data.MotionModifiers.empty() && Tok.isNot(tok::colon)) {
3712       if (!IsInvalidMapperModifier) {
3713         if (getLangOpts().OpenMP < 51)
3714           Diag(Tok, diag::warn_pragma_expected_colon) << ")";
3715         else
3716           Diag(Tok, diag::warn_pragma_expected_colon) << "motion modifier";
3717       }
3718       SkipUntil(tok::colon, tok::r_paren, tok::annot_pragma_openmp_end,
3719                 StopBeforeMatch);
3720     }
3721     // OpenMP 5.1 permits a ':' even without a preceding modifier.  TODO: Is
3722     // that intentional?
3723     if ((!Data.MotionModifiers.empty() || getLangOpts().OpenMP >= 51) &&
3724         Tok.is(tok::colon))
3725       Data.ColonLoc = ConsumeToken();
3726   } else if (Kind == OMPC_allocate ||
3727              (Kind == OMPC_affinity && Tok.is(tok::identifier) &&
3728               PP.getSpelling(Tok) == "iterator")) {
3729     // Handle optional allocator expression followed by colon delimiter.
3730     ColonProtectionRAIIObject ColonRAII(*this);
3731     TentativeParsingAction TPA(*this);
3732     // OpenMP 5.0, 2.10.1, task Construct.
3733     // where aff-modifier is one of the following:
3734     // iterator(iterators-definition)
3735     ExprResult Tail;
3736     if (Kind == OMPC_allocate) {
3737       Tail = ParseAssignmentExpression();
3738     } else {
3739       HasIterator = true;
3740       EnterScope(Scope::OpenMPDirectiveScope | Scope::DeclScope);
3741       Tail = ParseOpenMPIteratorsExpr();
3742     }
3743     Tail = Actions.CorrectDelayedTyposInExpr(Tail);
3744     Tail = Actions.ActOnFinishFullExpr(Tail.get(), T.getOpenLocation(),
3745                                        /*DiscardedValue=*/false);
3746     if (Tail.isUsable()) {
3747       if (Tok.is(tok::colon)) {
3748         Data.DepModOrTailExpr = Tail.get();
3749         Data.ColonLoc = ConsumeToken();
3750         TPA.Commit();
3751       } else {
3752         // Colon not found, parse only list of variables.
3753         TPA.Revert();
3754       }
3755     } else {
3756       // Parsing was unsuccessfull, revert and skip to the end of clause or
3757       // directive.
3758       TPA.Revert();
3759       SkipUntil(tok::comma, tok::r_paren, tok::annot_pragma_openmp_end,
3760                 StopBeforeMatch);
3761     }
3762   }
3763 
3764   bool IsComma =
3765       (Kind != OMPC_reduction && Kind != OMPC_task_reduction &&
3766        Kind != OMPC_in_reduction && Kind != OMPC_depend && Kind != OMPC_map) ||
3767       (Kind == OMPC_reduction && !InvalidReductionId) ||
3768       (Kind == OMPC_map && Data.ExtraModifier != OMPC_MAP_unknown) ||
3769       (Kind == OMPC_depend && Data.ExtraModifier != OMPC_DEPEND_unknown);
3770   const bool MayHaveTail = (Kind == OMPC_linear || Kind == OMPC_aligned);
3771   while (IsComma || (Tok.isNot(tok::r_paren) && Tok.isNot(tok::colon) &&
3772                      Tok.isNot(tok::annot_pragma_openmp_end))) {
3773     ParseScope OMPListScope(this, Scope::OpenMPDirectiveScope);
3774     ColonProtectionRAIIObject ColonRAII(*this, MayHaveTail);
3775     // Parse variable
3776     ExprResult VarExpr =
3777         Actions.CorrectDelayedTyposInExpr(ParseAssignmentExpression());
3778     if (VarExpr.isUsable()) {
3779       Vars.push_back(VarExpr.get());
3780     } else {
3781       SkipUntil(tok::comma, tok::r_paren, tok::annot_pragma_openmp_end,
3782                 StopBeforeMatch);
3783     }
3784     // Skip ',' if any
3785     IsComma = Tok.is(tok::comma);
3786     if (IsComma)
3787       ConsumeToken();
3788     else if (Tok.isNot(tok::r_paren) &&
3789              Tok.isNot(tok::annot_pragma_openmp_end) &&
3790              (!MayHaveTail || Tok.isNot(tok::colon)))
3791       Diag(Tok, diag::err_omp_expected_punc)
3792           << ((Kind == OMPC_flush) ? getOpenMPDirectiveName(OMPD_flush)
3793                                    : getOpenMPClauseName(Kind))
3794           << (Kind == OMPC_flush);
3795   }
3796 
3797   // Parse ')' for linear clause with modifier.
3798   if (NeedRParenForLinear)
3799     LinearT.consumeClose();
3800 
3801   // Parse ':' linear-step (or ':' alignment).
3802   const bool MustHaveTail = MayHaveTail && Tok.is(tok::colon);
3803   if (MustHaveTail) {
3804     Data.ColonLoc = Tok.getLocation();
3805     SourceLocation ELoc = ConsumeToken();
3806     ExprResult Tail = ParseAssignmentExpression();
3807     Tail =
3808         Actions.ActOnFinishFullExpr(Tail.get(), ELoc, /*DiscardedValue*/ false);
3809     if (Tail.isUsable())
3810       Data.DepModOrTailExpr = Tail.get();
3811     else
3812       SkipUntil(tok::comma, tok::r_paren, tok::annot_pragma_openmp_end,
3813                 StopBeforeMatch);
3814   }
3815 
3816   // Parse ')'.
3817   Data.RLoc = Tok.getLocation();
3818   if (!T.consumeClose())
3819     Data.RLoc = T.getCloseLocation();
3820   // Exit from scope when the iterator is used in depend clause.
3821   if (HasIterator)
3822     ExitScope();
3823   return (Kind != OMPC_depend && Kind != OMPC_map && Vars.empty()) ||
3824          (MustHaveTail && !Data.DepModOrTailExpr) || InvalidReductionId ||
3825          IsInvalidMapperModifier;
3826 }
3827 
3828 /// Parsing of OpenMP clause 'private', 'firstprivate', 'lastprivate',
3829 /// 'shared', 'copyin', 'copyprivate', 'flush', 'reduction', 'task_reduction',
3830 /// 'in_reduction', 'nontemporal', 'exclusive' or 'inclusive'.
3831 ///
3832 ///    private-clause:
3833 ///       'private' '(' list ')'
3834 ///    firstprivate-clause:
3835 ///       'firstprivate' '(' list ')'
3836 ///    lastprivate-clause:
3837 ///       'lastprivate' '(' list ')'
3838 ///    shared-clause:
3839 ///       'shared' '(' list ')'
3840 ///    linear-clause:
3841 ///       'linear' '(' linear-list [ ':' linear-step ] ')'
3842 ///    aligned-clause:
3843 ///       'aligned' '(' list [ ':' alignment ] ')'
3844 ///    reduction-clause:
3845 ///       'reduction' '(' [ modifier ',' ] reduction-identifier ':' list ')'
3846 ///    task_reduction-clause:
3847 ///       'task_reduction' '(' reduction-identifier ':' list ')'
3848 ///    in_reduction-clause:
3849 ///       'in_reduction' '(' reduction-identifier ':' list ')'
3850 ///    copyprivate-clause:
3851 ///       'copyprivate' '(' list ')'
3852 ///    flush-clause:
3853 ///       'flush' '(' list ')'
3854 ///    depend-clause:
3855 ///       'depend' '(' in | out | inout : list | source ')'
3856 ///    map-clause:
3857 ///       'map' '(' [ [ always [,] ] [ close [,] ]
3858 ///          [ mapper '(' mapper-identifier ')' [,] ]
3859 ///          to | from | tofrom | alloc | release | delete ':' ] list ')';
3860 ///    to-clause:
3861 ///       'to' '(' [ mapper '(' mapper-identifier ')' ':' ] list ')'
3862 ///    from-clause:
3863 ///       'from' '(' [ mapper '(' mapper-identifier ')' ':' ] list ')'
3864 ///    use_device_ptr-clause:
3865 ///       'use_device_ptr' '(' list ')'
3866 ///    use_device_addr-clause:
3867 ///       'use_device_addr' '(' list ')'
3868 ///    is_device_ptr-clause:
3869 ///       'is_device_ptr' '(' list ')'
3870 ///    allocate-clause:
3871 ///       'allocate' '(' [ allocator ':' ] list ')'
3872 ///    nontemporal-clause:
3873 ///       'nontemporal' '(' list ')'
3874 ///    inclusive-clause:
3875 ///       'inclusive' '(' list ')'
3876 ///    exclusive-clause:
3877 ///       'exclusive' '(' list ')'
3878 ///
3879 /// For 'linear' clause linear-list may have the following forms:
3880 ///  list
3881 ///  modifier(list)
3882 /// where modifier is 'val' (C) or 'ref', 'val' or 'uval'(C++).
3883 OMPClause *Parser::ParseOpenMPVarListClause(OpenMPDirectiveKind DKind,
3884                                             OpenMPClauseKind Kind,
3885                                             bool ParseOnly) {
3886   SourceLocation Loc = Tok.getLocation();
3887   SourceLocation LOpen = ConsumeToken();
3888   SmallVector<Expr *, 4> Vars;
3889   OpenMPVarListDataTy Data;
3890 
3891   if (ParseOpenMPVarList(DKind, Kind, Vars, Data))
3892     return nullptr;
3893 
3894   if (ParseOnly)
3895     return nullptr;
3896   OMPVarListLocTy Locs(Loc, LOpen, Data.RLoc);
3897   return Actions.ActOnOpenMPVarListClause(
3898       Kind, Vars, Data.DepModOrTailExpr, Locs, Data.ColonLoc,
3899       Data.ReductionOrMapperIdScopeSpec, Data.ReductionOrMapperId,
3900       Data.ExtraModifier, Data.MapTypeModifiers, Data.MapTypeModifiersLoc,
3901       Data.IsMapTypeImplicit, Data.ExtraModifierLoc, Data.MotionModifiers,
3902       Data.MotionModifiersLoc);
3903 }
3904