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ParseOpenMP.cpp
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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
19#include "clang/Parse/Parser.h"
22#include "clang/Sema/Scope.h"
26#include "llvm/ADT/SmallBitVector.h"
27#include "llvm/ADT/StringSwitch.h"
28#include "llvm/Frontend/OpenMP/DirectiveNameParser.h"
29#include "llvm/Frontend/OpenMP/OMPAssume.h"
30#include "llvm/Frontend/OpenMP/OMPContext.h"
31#include <optional>
32
33using namespace clang;
34using namespace llvm::omp;
35
36//===----------------------------------------------------------------------===//
37// OpenMP declarative directives.
38//===----------------------------------------------------------------------===//
39
40namespace {
41class DeclDirectiveListParserHelper final {
42 SmallVector<Expr *, 4> Identifiers;
43 Parser *P;
45
46public:
47 DeclDirectiveListParserHelper(Parser *P, OpenMPDirectiveKind Kind)
48 : P(P), Kind(Kind) {}
49 void operator()(CXXScopeSpec &SS, DeclarationNameInfo NameInfo) {
50 ExprResult Res = P->getActions().OpenMP().ActOnOpenMPIdExpression(
51 P->getCurScope(), SS, NameInfo, Kind);
52 if (Res.isUsable())
53 Identifiers.push_back(Res.get());
54 }
55 llvm::ArrayRef<Expr *> getIdentifiers() const { return Identifiers; }
56};
57} // namespace
58
62 StringRef Name) {
63 unsigned Version = P.getLangOpts().OpenMP;
64 auto [D, VR] = getOpenMPDirectiveKindAndVersions(Name);
65 assert(D == Kind && "Directive kind mismatch");
66 // Ignore the case Version > VR.Max: In OpenMP 6.0 all prior spellings
67 // are explicitly allowed.
68 if (static_cast<int>(Version) < VR.Min)
69 P.Diag(Loc, diag::warn_omp_future_directive_spelling) << Name;
70
71 return Kind;
72}
73
75 static const DirectiveNameParser DirParser;
76
77 const DirectiveNameParser::State *S = DirParser.initial();
78
79 Token Tok = P.getCurToken();
80 if (Tok.isAnnotation())
81 return OMPD_unknown;
82
83 std::string Concat = P.getPreprocessor().getSpelling(Tok);
84 SourceLocation Loc = Tok.getLocation();
85
86 S = DirParser.consume(S, Concat);
87 if (S == nullptr)
88 return OMPD_unknown;
89
90 while (!Tok.isAnnotation()) {
91 OpenMPDirectiveKind DKind = S->Value;
93 if (!Tok.isAnnotation()) {
94 std::string TS = P.getPreprocessor().getSpelling(Tok);
95 S = DirParser.consume(S, TS);
96 if (S == nullptr)
97 return checkOpenMPDirectiveName(P, Loc, DKind, Concat);
98 Concat += ' ' + TS;
99 P.ConsumeToken();
100 }
101 }
102
103 assert(S && "Should have exited early");
104 return checkOpenMPDirectiveName(P, Loc, S->Value, Concat);
105}
106
108 Token Tok = P.getCurToken();
109 Sema &Actions = P.getActions();
111 // Allow to use 'operator' keyword for C++ operators
112 bool WithOperator = false;
113 if (Tok.is(tok::kw_operator)) {
114 P.ConsumeToken();
115 Tok = P.getCurToken();
116 WithOperator = true;
117 }
118 switch (Tok.getKind()) {
119 case tok::plus: // '+'
120 OOK = OO_Plus;
121 break;
122 case tok::minus: // '-'
123 OOK = OO_Minus;
124 break;
125 case tok::star: // '*'
126 OOK = OO_Star;
127 break;
128 case tok::amp: // '&'
129 OOK = OO_Amp;
130 break;
131 case tok::pipe: // '|'
132 OOK = OO_Pipe;
133 break;
134 case tok::caret: // '^'
135 OOK = OO_Caret;
136 break;
137 case tok::ampamp: // '&&'
138 OOK = OO_AmpAmp;
139 break;
140 case tok::pipepipe: // '||'
141 OOK = OO_PipePipe;
142 break;
143 case tok::identifier: // identifier
144 if (!WithOperator)
145 break;
146 [[fallthrough]];
147 default:
148 P.Diag(Tok.getLocation(), diag::err_omp_expected_reduction_identifier);
149 P.SkipUntil(tok::colon, tok::r_paren, tok::annot_pragma_openmp_end,
151 return DeclarationName();
152 }
153 P.ConsumeToken();
154 auto &DeclNames = Actions.getASTContext().DeclarationNames;
155 return OOK == OO_None ? DeclNames.getIdentifier(Tok.getIdentifierInfo())
156 : DeclNames.getCXXOperatorName(OOK);
157}
158
160Parser::ParseOpenMPDeclareReductionDirective(AccessSpecifier AS) {
161 unsigned OMPVersion = Actions.getLangOpts().OpenMP;
162 // Parse '('.
163 BalancedDelimiterTracker T(*this, tok::l_paren, tok::annot_pragma_openmp_end);
164 if (T.expectAndConsume(
165 diag::err_expected_lparen_after,
166 getOpenMPDirectiveName(OMPD_declare_reduction, OMPVersion).data())) {
167 SkipUntil(tok::annot_pragma_openmp_end, StopBeforeMatch);
168 return DeclGroupPtrTy();
169 }
170
171 DeclarationName Name = parseOpenMPReductionId(*this);
172 if (Name.isEmpty() && Tok.is(tok::annot_pragma_openmp_end))
173 return DeclGroupPtrTy();
174
175 // Consume ':'.
176 bool IsCorrect = !ExpectAndConsume(tok::colon);
177
178 if (!IsCorrect && Tok.is(tok::annot_pragma_openmp_end))
179 return DeclGroupPtrTy();
180
181 IsCorrect = IsCorrect && !Name.isEmpty();
182
183 if (Tok.is(tok::colon) || Tok.is(tok::annot_pragma_openmp_end)) {
184 Diag(Tok.getLocation(), diag::err_expected_type);
185 IsCorrect = false;
186 }
187
188 if (!IsCorrect && Tok.is(tok::annot_pragma_openmp_end))
189 return DeclGroupPtrTy();
190
191 SmallVector<std::pair<QualType, SourceLocation>, 8> ReductionTypes;
192 // Parse list of types until ':' token.
193 do {
194 ColonProtectionRAIIObject ColonRAII(*this);
195 SourceRange Range;
197 if (TR.isUsable()) {
198 QualType ReductionType = Actions.OpenMP().ActOnOpenMPDeclareReductionType(
199 Range.getBegin(), TR);
200 if (!ReductionType.isNull()) {
201 ReductionTypes.push_back(
202 std::make_pair(ReductionType, Range.getBegin()));
203 }
204 } else {
205 SkipUntil(tok::comma, tok::colon, tok::annot_pragma_openmp_end,
207 }
208
209 if (Tok.is(tok::colon) || Tok.is(tok::annot_pragma_openmp_end))
210 break;
211
212 // Consume ','.
213 if (ExpectAndConsume(tok::comma)) {
214 IsCorrect = false;
215 if (Tok.is(tok::annot_pragma_openmp_end)) {
216 Diag(Tok.getLocation(), diag::err_expected_type);
217 return DeclGroupPtrTy();
218 }
219 }
220 } while (Tok.isNot(tok::annot_pragma_openmp_end));
221
222 if (ReductionTypes.empty()) {
223 SkipUntil(tok::annot_pragma_openmp_end, StopBeforeMatch);
224 return DeclGroupPtrTy();
225 }
226
227 if (!IsCorrect && Tok.is(tok::annot_pragma_openmp_end))
228 return DeclGroupPtrTy();
229
230 // Consume ':'.
231 if (ExpectAndConsume(tok::colon))
232 IsCorrect = false;
233
234 if (Tok.is(tok::annot_pragma_openmp_end)) {
235 Diag(Tok.getLocation(), diag::err_expected_expression);
236 return DeclGroupPtrTy();
237 }
238
239 DeclGroupPtrTy DRD =
240 Actions.OpenMP().ActOnOpenMPDeclareReductionDirectiveStart(
241 getCurScope(), Actions.getCurLexicalContext(), Name, ReductionTypes,
242 AS);
243
244 // Parse <combiner> expression and then parse initializer if any for each
245 // correct type.
246 unsigned I = 0, E = ReductionTypes.size();
247 for (Decl *D : DRD.get()) {
248 TentativeParsingAction TPA(*this);
249 ParseScope OMPDRScope(this, Scope::FnScope | Scope::DeclScope |
252 // Parse <combiner> expression.
253 Actions.OpenMP().ActOnOpenMPDeclareReductionCombinerStart(getCurScope(), D);
254 ExprResult CombinerResult = Actions.ActOnFinishFullExpr(
255 ParseExpression().get(), D->getLocation(), /*DiscardedValue*/ false);
256 Actions.OpenMP().ActOnOpenMPDeclareReductionCombinerEnd(
257 D, CombinerResult.get());
258
259 if (CombinerResult.isInvalid() && Tok.isNot(tok::r_paren) &&
260 Tok.isNot(tok::annot_pragma_openmp_end)) {
261 TPA.Commit();
262 IsCorrect = false;
263 break;
264 }
265 IsCorrect = !T.consumeClose() && IsCorrect && CombinerResult.isUsable();
266 ExprResult InitializerResult;
267 if (Tok.isNot(tok::annot_pragma_openmp_end)) {
268 // Parse <initializer> expression.
269 if (Tok.is(tok::identifier) &&
270 Tok.getIdentifierInfo()->isStr("initializer")) {
271 ConsumeToken();
272 } else {
273 Diag(Tok.getLocation(), diag::err_expected) << "'initializer'";
274 TPA.Commit();
275 IsCorrect = false;
276 break;
277 }
278 // Parse '('.
279 BalancedDelimiterTracker T(*this, tok::l_paren,
280 tok::annot_pragma_openmp_end);
281 IsCorrect =
282 !T.expectAndConsume(diag::err_expected_lparen_after, "initializer") &&
283 IsCorrect;
284 if (Tok.isNot(tok::annot_pragma_openmp_end)) {
285 ParseScope OMPDRScope(this, Scope::FnScope | Scope::DeclScope |
288 // Parse expression.
289 VarDecl *OmpPrivParm =
290 Actions.OpenMP().ActOnOpenMPDeclareReductionInitializerStart(
291 getCurScope(), D);
292 // Check if initializer is omp_priv <init_expr> or something else.
293 if (Tok.is(tok::identifier) &&
294 Tok.getIdentifierInfo()->isStr("omp_priv")) {
295 ConsumeToken();
296 ParseOpenMPReductionInitializerForDecl(OmpPrivParm);
297 } else {
298 InitializerResult = Actions.ActOnFinishFullExpr(
299 ParseAssignmentExpression().get(), D->getLocation(),
300 /*DiscardedValue*/ false);
301 }
302 Actions.OpenMP().ActOnOpenMPDeclareReductionInitializerEnd(
303 D, InitializerResult.get(), OmpPrivParm);
304 if (InitializerResult.isInvalid() && Tok.isNot(tok::r_paren) &&
305 Tok.isNot(tok::annot_pragma_openmp_end)) {
306 TPA.Commit();
307 IsCorrect = false;
308 break;
309 }
310 IsCorrect =
311 !T.consumeClose() && IsCorrect && !InitializerResult.isInvalid();
312 }
313 }
314
315 ++I;
316 // Revert parsing if not the last type, otherwise accept it, we're done with
317 // parsing.
318 if (I != E)
319 TPA.Revert();
320 else
321 TPA.Commit();
322 }
323 return Actions.OpenMP().ActOnOpenMPDeclareReductionDirectiveEnd(
324 getCurScope(), DRD, IsCorrect);
325}
326
327void Parser::ParseOpenMPReductionInitializerForDecl(VarDecl *OmpPrivParm) {
328 // Parse declarator '=' initializer.
329 // If a '==' or '+=' is found, suggest a fixit to '='.
330 if (isTokenEqualOrEqualTypo()) {
331 ConsumeToken();
332
333 if (Tok.is(tok::code_completion)) {
334 cutOffParsing();
335 Actions.CodeCompletion().CodeCompleteInitializer(getCurScope(),
336 OmpPrivParm);
337 Actions.FinalizeDeclaration(OmpPrivParm);
338 return;
339 }
340
341 PreferredType.enterVariableInit(Tok.getLocation(), OmpPrivParm);
342 ExprResult Init = ParseInitializer();
343
344 if (Init.isInvalid()) {
345 SkipUntil(tok::r_paren, tok::annot_pragma_openmp_end, StopBeforeMatch);
346 Actions.ActOnInitializerError(OmpPrivParm);
347 } else {
348 Actions.AddInitializerToDecl(OmpPrivParm, Init.get(),
349 /*DirectInit=*/false);
350 }
351 } else if (Tok.is(tok::l_paren)) {
352 // Parse C++ direct initializer: '(' expression-list ')'
353 BalancedDelimiterTracker T(*this, tok::l_paren);
354 T.consumeOpen();
355
356 ExprVector Exprs;
357
358 SourceLocation LParLoc = T.getOpenLocation();
359 auto RunSignatureHelp = [this, OmpPrivParm, LParLoc, &Exprs]() {
360 QualType PreferredType =
361 Actions.CodeCompletion().ProduceConstructorSignatureHelp(
362 OmpPrivParm->getType()->getCanonicalTypeInternal(),
363 OmpPrivParm->getLocation(), Exprs, LParLoc, /*Braced=*/false);
364 CalledSignatureHelp = true;
365 return PreferredType;
366 };
367 if (ParseExpressionList(Exprs, [&] {
368 PreferredType.enterFunctionArgument(Tok.getLocation(),
369 RunSignatureHelp);
370 })) {
371 if (PP.isCodeCompletionReached() && !CalledSignatureHelp)
372 RunSignatureHelp();
373 Actions.ActOnInitializerError(OmpPrivParm);
374 SkipUntil(tok::r_paren, tok::annot_pragma_openmp_end, StopBeforeMatch);
375 } else {
376 // Match the ')'.
377 SourceLocation RLoc = Tok.getLocation();
378 if (!T.consumeClose())
379 RLoc = T.getCloseLocation();
380
382 Actions.ActOnParenListExpr(T.getOpenLocation(), RLoc, Exprs);
383 Actions.AddInitializerToDecl(OmpPrivParm, Initializer.get(),
384 /*DirectInit=*/true);
385 }
386 } else if (getLangOpts().CPlusPlus11 && Tok.is(tok::l_brace)) {
387 // Parse C++0x braced-init-list.
388 Diag(Tok, diag::warn_cxx98_compat_generalized_initializer_lists);
389
390 ExprResult Init(ParseBraceInitializer());
391
392 if (Init.isInvalid()) {
393 Actions.ActOnInitializerError(OmpPrivParm);
394 } else {
395 Actions.AddInitializerToDecl(OmpPrivParm, Init.get(),
396 /*DirectInit=*/true);
397 }
398 } else {
399 Actions.ActOnUninitializedDecl(OmpPrivParm);
400 }
401}
402
404Parser::ParseOpenMPDeclareMapperDirective(AccessSpecifier AS) {
405 bool IsCorrect = true;
406 unsigned OMPVersion = Actions.getLangOpts().OpenMP;
407 // Parse '('
408 BalancedDelimiterTracker T(*this, tok::l_paren, tok::annot_pragma_openmp_end);
409 if (T.expectAndConsume(
410 diag::err_expected_lparen_after,
411 getOpenMPDirectiveName(OMPD_declare_mapper, OMPVersion).data())) {
412 SkipUntil(tok::annot_pragma_openmp_end, StopBeforeMatch);
413 return DeclGroupPtrTy();
414 }
415
416 // Parse <mapper-identifier>
417 auto &DeclNames = Actions.getASTContext().DeclarationNames;
418 DeclarationName MapperId;
419 if (PP.LookAhead(0).is(tok::colon)) {
420 if (Tok.isNot(tok::identifier) && Tok.isNot(tok::kw_default)) {
421 Diag(Tok.getLocation(), diag::err_omp_mapper_illegal_identifier);
422 IsCorrect = false;
423 } else {
424 MapperId = DeclNames.getIdentifier(Tok.getIdentifierInfo());
425 }
426 ConsumeToken();
427 // Consume ':'.
428 ExpectAndConsume(tok::colon);
429 } else {
430 // If no mapper identifier is provided, its name is "default" by default
431 MapperId =
432 DeclNames.getIdentifier(&Actions.getASTContext().Idents.get("default"));
433 }
434
435 if (!IsCorrect && Tok.is(tok::annot_pragma_openmp_end))
436 return DeclGroupPtrTy();
437
438 // Parse <type> <var>
439 DeclarationName VName;
440 QualType MapperType;
441 SourceRange Range;
442 TypeResult ParsedType = parseOpenMPDeclareMapperVarDecl(Range, VName, AS);
443 if (ParsedType.isUsable())
444 MapperType = Actions.OpenMP().ActOnOpenMPDeclareMapperType(Range.getBegin(),
445 ParsedType);
446 if (MapperType.isNull())
447 IsCorrect = false;
448 if (!IsCorrect) {
449 SkipUntil(tok::annot_pragma_openmp_end, Parser::StopBeforeMatch);
450 return DeclGroupPtrTy();
451 }
452
453 // Consume ')'.
454 IsCorrect &= !T.consumeClose();
455 if (!IsCorrect) {
456 SkipUntil(tok::annot_pragma_openmp_end, Parser::StopBeforeMatch);
457 return DeclGroupPtrTy();
458 }
459
460 Scope *OuterScope = getCurScope();
461 // Enter scope.
462 DeclarationNameInfo DirName;
463 SourceLocation Loc = Tok.getLocation();
464 unsigned ScopeFlags = Scope::FnScope | Scope::DeclScope |
466 ParseScope OMPDirectiveScope(this, ScopeFlags);
467 Actions.OpenMP().StartOpenMPDSABlock(OMPD_declare_mapper, DirName,
468 getCurScope(), Loc);
469
470 // Add the mapper variable declaration.
471 ExprResult MapperVarRef =
472 Actions.OpenMP().ActOnOpenMPDeclareMapperDirectiveVarDecl(
473 getCurScope(), MapperType, Range.getBegin(), VName);
474
475 // Parse map clauses.
476 SmallVector<OMPClause *, 6> Clauses;
477 while (Tok.isNot(tok::annot_pragma_openmp_end)) {
478 OpenMPClauseKind CKind = Tok.isAnnotation()
479 ? OMPC_unknown
480 : getOpenMPClauseKind(PP.getSpelling(Tok));
481 Actions.OpenMP().StartOpenMPClause(CKind);
482 OMPClause *Clause =
483 ParseOpenMPClause(OMPD_declare_mapper, CKind, Clauses.empty());
484 if (Clause)
485 Clauses.push_back(Clause);
486 else
487 IsCorrect = false;
488 // Skip ',' if any.
489 if (Tok.is(tok::comma))
490 ConsumeToken();
491 Actions.OpenMP().EndOpenMPClause();
492 }
493 if (Clauses.empty()) {
494 Diag(Tok, diag::err_omp_expected_clause)
495 << getOpenMPDirectiveName(OMPD_declare_mapper, OMPVersion);
496 IsCorrect = false;
497 }
498
499 // This needs to be called within the scope because
500 // processImplicitMapsWithDefaultMappers may add clauses when analyzing nested
501 // types. The scope used for calling ActOnOpenMPDeclareMapperDirective,
502 // however, needs to be the outer one, otherwise declared mappers don't become
503 // visible.
504 DeclGroupPtrTy DG = Actions.OpenMP().ActOnOpenMPDeclareMapperDirective(
505 OuterScope, Actions.getCurLexicalContext(), MapperId, MapperType,
506 Range.getBegin(), VName, AS, MapperVarRef.get(), Clauses);
507 // Exit scope.
508 Actions.OpenMP().EndOpenMPDSABlock(nullptr);
509 OMPDirectiveScope.Exit();
510 if (!IsCorrect)
511 return DeclGroupPtrTy();
512
513 return DG;
514}
515
516TypeResult Parser::parseOpenMPDeclareMapperVarDecl(SourceRange &Range,
517 DeclarationName &Name,
518 AccessSpecifier AS) {
519 // Parse the common declaration-specifiers piece.
520 Parser::DeclSpecContext DSC = Parser::DeclSpecContext::DSC_type_specifier;
521 DeclSpec DS(AttrFactory);
522 ParseSpecifierQualifierList(DS, AS, DSC);
523
524 // Parse the declarator.
526 Declarator DeclaratorInfo(DS, ParsedAttributesView::none(), Context);
527 ParseDeclarator(DeclaratorInfo);
528 Range = DeclaratorInfo.getSourceRange();
529 if (DeclaratorInfo.getIdentifier() == nullptr) {
530 Diag(Tok.getLocation(), diag::err_omp_mapper_expected_declarator);
531 return true;
532 }
533 Name = Actions.GetNameForDeclarator(DeclaratorInfo).getName();
534
535 return Actions.OpenMP().ActOnOpenMPDeclareMapperVarDecl(getCurScope(),
536 DeclaratorInfo);
537}
538
539/// Parses 'omp begin declare variant' directive.
540// The syntax is:
541// { #pragma omp begin declare variant clause }
542// <function-declaration-or-definition-sequence>
543// { #pragma omp end declare variant }
544//
546 OMPTraitInfo *ParentTI =
547 Actions.OpenMP().getOMPTraitInfoForSurroundingScope();
548 ASTContext &ASTCtx = Actions.getASTContext();
549 OMPTraitInfo &TI = ASTCtx.getNewOMPTraitInfo();
550 if (parseOMPDeclareVariantMatchClause(Loc, TI, ParentTI)) {
551 while (!SkipUntil(tok::annot_pragma_openmp_end, Parser::StopBeforeMatch))
552 ;
553 // Skip the last annot_pragma_openmp_end.
554 (void)ConsumeAnnotationToken();
555 return true;
556 }
557
558 // Skip last tokens.
559 skipUntilPragmaOpenMPEnd(OMPD_begin_declare_variant);
560
561 ParsingOpenMPDirectiveRAII NormalScope(*this, /*Value=*/false);
562
563 VariantMatchInfo VMI;
564 TI.getAsVariantMatchInfo(ASTCtx, VMI);
565
566 std::function<void(StringRef)> DiagUnknownTrait = [this,
567 Loc](StringRef ISATrait) {
568 // TODO Track the selector locations in a way that is accessible here
569 // to improve the diagnostic location.
570 Diag(Loc, diag::warn_unknown_declare_variant_isa_trait) << ISATrait;
571 };
572 TargetOMPContext OMPCtx(
573 ASTCtx, std::move(DiagUnknownTrait),
574 /* CurrentFunctionDecl */ nullptr,
575 /* ConstructTraits */ ArrayRef<llvm::omp::TraitProperty>(),
576 Actions.OpenMP().getOpenMPDeviceNum());
577
578 if (isVariantApplicableInContext(VMI, OMPCtx,
579 /*DeviceOrImplementationSetOnly=*/true)) {
580 Actions.OpenMP().ActOnOpenMPBeginDeclareVariant(Loc, TI);
581 return false;
582 }
583
584 // Elide all the code till the matching end declare variant was found.
585 unsigned Nesting = 1;
586 SourceLocation DKLoc;
587 OpenMPDirectiveKind DK = OMPD_unknown;
588 do {
589 DKLoc = Tok.getLocation();
590 DK = parseOpenMPDirectiveKind(*this);
591 if (DK == OMPD_end_declare_variant)
592 --Nesting;
593 else if (DK == OMPD_begin_declare_variant)
594 ++Nesting;
595 if (!Nesting || isEofOrEom())
596 break;
598 } while (true);
599
600 parseOMPEndDirective(OMPD_begin_declare_variant, OMPD_end_declare_variant, DK,
601 Loc, DKLoc, /* SkipUntilOpenMPEnd */ true);
602 return false;
603}
604
605namespace {
606/// RAII that recreates function context for correct parsing of clauses of
607/// 'declare simd' construct.
608/// OpenMP, 2.8.2 declare simd Construct
609/// The expressions appearing in the clauses of this directive are evaluated in
610/// the scope of the arguments of the function declaration or definition.
611class FNContextRAII final {
612 Parser &P;
613 Sema::CXXThisScopeRAII *ThisScope;
615 bool HasFunScope = false;
616 FNContextRAII() = delete;
617 FNContextRAII(const FNContextRAII &) = delete;
618 FNContextRAII &operator=(const FNContextRAII &) = delete;
619
620public:
621 FNContextRAII(Parser &P, Parser::DeclGroupPtrTy Ptr) : P(P), Scopes(P) {
622 Decl *D = *Ptr.get().begin();
623 NamedDecl *ND = dyn_cast<NamedDecl>(D);
624 RecordDecl *RD = dyn_cast_or_null<RecordDecl>(D->getDeclContext());
625 Sema &Actions = P.getActions();
626
627 // Allow 'this' within late-parsed attributes.
628 ThisScope = new Sema::CXXThisScopeRAII(Actions, RD, Qualifiers(),
629 ND && ND->isCXXInstanceMember());
630
631 // If the Decl is templatized, add template parameters to scope.
632 // FIXME: Track CurTemplateDepth?
633 P.ReenterTemplateScopes(Scopes, D);
634
635 // If the Decl is on a function, add function parameters to the scope.
637 HasFunScope = true;
640 Actions.ActOnReenterFunctionContext(Actions.getCurScope(), D);
641 }
642 }
643 ~FNContextRAII() {
644 if (HasFunScope)
646 delete ThisScope;
647 }
648};
649} // namespace
650
651/// Parses clauses for 'declare simd' directive.
652/// clause:
653/// 'inbranch' | 'notinbranch'
654/// 'simdlen' '(' <expr> ')'
655/// { 'uniform' '(' <argument_list> ')' }
656/// { 'aligned '(' <argument_list> [ ':' <alignment> ] ')' }
657/// { 'linear '(' <argument_list> [ ':' <step> ] ')' }
659 Parser &P, OMPDeclareSimdDeclAttr::BranchStateTy &BS, ExprResult &SimdLen,
663 SourceRange BSRange;
664 const Token &Tok = P.getCurToken();
665 bool IsError = false;
666 while (Tok.isNot(tok::annot_pragma_openmp_end)) {
667 if (Tok.isNot(tok::identifier))
668 break;
669 OMPDeclareSimdDeclAttr::BranchStateTy Out;
670 IdentifierInfo *II = Tok.getIdentifierInfo();
671 StringRef ClauseName = II->getName();
672 // Parse 'inranch|notinbranch' clauses.
673 if (OMPDeclareSimdDeclAttr::ConvertStrToBranchStateTy(ClauseName, Out)) {
674 if (BS != OMPDeclareSimdDeclAttr::BS_Undefined && BS != Out) {
675 P.Diag(Tok, diag::err_omp_declare_simd_inbranch_notinbranch)
676 << ClauseName
677 << OMPDeclareSimdDeclAttr::ConvertBranchStateTyToStr(BS) << BSRange;
678 IsError = true;
679 }
680 BS = Out;
681 BSRange = SourceRange(Tok.getLocation(), Tok.getEndLoc());
682 P.ConsumeToken();
683 } else if (ClauseName == "simdlen") {
684 if (SimdLen.isUsable()) {
685 unsigned OMPVersion = P.getActions().getLangOpts().OpenMP;
686 P.Diag(Tok, diag::err_omp_more_one_clause)
687 << getOpenMPDirectiveName(OMPD_declare_simd, OMPVersion)
688 << ClauseName << 0;
689 IsError = true;
690 }
691 P.ConsumeToken();
692 SourceLocation RLoc;
693 SimdLen = P.ParseOpenMPParensExpr(ClauseName, RLoc);
694 if (SimdLen.isInvalid())
695 IsError = true;
696 } else {
697 OpenMPClauseKind CKind = getOpenMPClauseKind(ClauseName);
698 if (CKind == OMPC_uniform || CKind == OMPC_aligned ||
699 CKind == OMPC_linear) {
701 SmallVectorImpl<Expr *> *Vars = &Uniforms;
702 if (CKind == OMPC_aligned) {
703 Vars = &Aligneds;
704 } else if (CKind == OMPC_linear) {
705 Data.ExtraModifier = OMPC_LINEAR_val;
706 Vars = &Linears;
707 }
708
709 P.ConsumeToken();
710 if (P.ParseOpenMPVarList(OMPD_declare_simd,
711 getOpenMPClauseKind(ClauseName), *Vars, Data))
712 IsError = true;
713 if (CKind == OMPC_aligned) {
714 Alignments.append(Aligneds.size() - Alignments.size(),
715 Data.DepModOrTailExpr);
716 } else if (CKind == OMPC_linear) {
717 assert(0 <= Data.ExtraModifier &&
718 Data.ExtraModifier <= OMPC_LINEAR_unknown &&
719 "Unexpected linear modifier.");
721 static_cast<OpenMPLinearClauseKind>(Data.ExtraModifier),
722 Data.ExtraModifierLoc))
723 Data.ExtraModifier = OMPC_LINEAR_val;
724 LinModifiers.append(Linears.size() - LinModifiers.size(),
725 Data.ExtraModifier);
726 Steps.append(Linears.size() - Steps.size(), Data.DepModOrTailExpr);
727 }
728 } else
729 // TODO: add parsing of other clauses.
730 break;
731 }
732 // Skip ',' if any.
733 if (Tok.is(tok::comma))
734 P.ConsumeToken();
735 }
736 return IsError;
737}
738
740Parser::ParseOMPDeclareSimdClauses(Parser::DeclGroupPtrTy Ptr,
741 CachedTokens &Toks, SourceLocation Loc) {
742 PP.EnterToken(Tok, /*IsReinject*/ true);
743 PP.EnterTokenStream(Toks, /*DisableMacroExpansion=*/true,
744 /*IsReinject*/ true);
745 // Consume the previously pushed token.
746 ConsumeAnyToken(/*ConsumeCodeCompletionTok=*/true);
747 ConsumeAnyToken(/*ConsumeCodeCompletionTok=*/true);
748
749 FNContextRAII FnContext(*this, Ptr);
750 OMPDeclareSimdDeclAttr::BranchStateTy BS =
751 OMPDeclareSimdDeclAttr::BS_Undefined;
752 ExprResult Simdlen;
753 SmallVector<Expr *, 4> Uniforms;
754 SmallVector<Expr *, 4> Aligneds;
755 SmallVector<Expr *, 4> Alignments;
756 SmallVector<Expr *, 4> Linears;
757 SmallVector<unsigned, 4> LinModifiers;
758 SmallVector<Expr *, 4> Steps;
759 bool IsError =
760 parseDeclareSimdClauses(*this, BS, Simdlen, Uniforms, Aligneds,
761 Alignments, Linears, LinModifiers, Steps);
762 skipUntilPragmaOpenMPEnd(OMPD_declare_simd);
763 // Skip the last annot_pragma_openmp_end.
764 SourceLocation EndLoc = ConsumeAnnotationToken();
765 if (IsError)
766 return Ptr;
767 return Actions.OpenMP().ActOnOpenMPDeclareSimdDirective(
768 Ptr, BS, Simdlen.get(), Uniforms, Aligneds, Alignments, Linears,
769 LinModifiers, Steps, SourceRange(Loc, EndLoc));
770}
771
772namespace {
773/// Constant used in the diagnostics to distinguish the levels in an OpenMP
774/// contexts: selector-set={selector(trait, ...), ...}, ....
775enum OMPContextLvl {
776 CONTEXT_SELECTOR_SET_LVL = 0,
777 CONTEXT_SELECTOR_LVL = 1,
778 CONTEXT_TRAIT_LVL = 2,
779};
780
781static StringRef stringLiteralParser(Parser &P) {
783 return Res.isUsable() ? Res.getAs<StringLiteral>()->getString() : "";
784}
785
786static StringRef getNameFromIdOrString(Parser &P, Token &Tok,
787 OMPContextLvl Lvl) {
788 if (Tok.is(tok::identifier) || Tok.is(tok::kw_for)) {
790 StringRef Name = P.getPreprocessor().getSpelling(Tok, Buffer);
791 (void)P.ConsumeToken();
792 return Name;
793 }
794
796 return stringLiteralParser(P);
797
798 P.Diag(Tok.getLocation(),
799 diag::warn_omp_declare_variant_string_literal_or_identifier)
800 << Lvl;
801 return "";
802}
803
804static bool checkForDuplicates(Parser &P, StringRef Name,
805 SourceLocation NameLoc,
806 llvm::StringMap<SourceLocation> &Seen,
807 OMPContextLvl Lvl) {
808 auto Res = Seen.try_emplace(Name, NameLoc);
809 if (Res.second)
810 return false;
811
812 // Each trait-set-selector-name, trait-selector-name and trait-name can
813 // only be specified once.
814 P.Diag(NameLoc, diag::warn_omp_declare_variant_ctx_mutiple_use)
815 << Lvl << Name;
816 P.Diag(Res.first->getValue(), diag::note_omp_declare_variant_ctx_used_here)
817 << Lvl << Name;
818 return true;
819}
820} // namespace
821
822void Parser::parseOMPTraitPropertyKind(OMPTraitProperty &TIProperty,
823 llvm::omp::TraitSet Set,
824 llvm::omp::TraitSelector Selector,
825 llvm::StringMap<SourceLocation> &Seen) {
826 TIProperty.Kind = TraitProperty::invalid;
827
828 SourceLocation NameLoc = Tok.getLocation();
829 StringRef Name;
830 if (Selector == llvm::omp::TraitSelector::target_device_device_num) {
831 Name = "number";
832 TIProperty.Kind = getOpenMPContextTraitPropertyKind(Set, Selector, Name);
833 ExprResult DeviceNumExprResult = ParseExpression();
834 if (DeviceNumExprResult.isUsable()) {
835 Expr *DeviceNumExpr = DeviceNumExprResult.get();
836 Actions.OpenMP().ActOnOpenMPDeviceNum(DeviceNumExpr);
837 }
838 return;
839 }
840 Name = getNameFromIdOrString(*this, Tok, CONTEXT_TRAIT_LVL);
841 if (Name.empty()) {
842 Diag(Tok.getLocation(), diag::note_omp_declare_variant_ctx_options)
843 << CONTEXT_TRAIT_LVL << listOpenMPContextTraitProperties(Set, Selector);
844 return;
845 }
846
847 TIProperty.RawString = Name;
848 TIProperty.Kind = getOpenMPContextTraitPropertyKind(Set, Selector, Name);
849 if (TIProperty.Kind != TraitProperty::invalid) {
850 if (checkForDuplicates(*this, Name, NameLoc, Seen, CONTEXT_TRAIT_LVL))
851 TIProperty.Kind = TraitProperty::invalid;
852 return;
853 }
854
855 // It follows diagnosis and helping notes.
856 // FIXME: We should move the diagnosis string generation into libFrontend.
857 Diag(NameLoc, diag::warn_omp_declare_variant_ctx_not_a_property)
858 << Name << getOpenMPContextTraitSelectorName(Selector)
859 << getOpenMPContextTraitSetName(Set);
860
861 TraitSet SetForName = getOpenMPContextTraitSetKind(Name);
862 if (SetForName != TraitSet::invalid) {
863 Diag(NameLoc, diag::note_omp_declare_variant_ctx_is_a)
864 << Name << CONTEXT_SELECTOR_SET_LVL << CONTEXT_TRAIT_LVL;
865 Diag(NameLoc, diag::note_omp_declare_variant_ctx_try)
866 << Name << "<selector-name>"
867 << "(<property-name>)";
868 return;
869 }
870 TraitSelector SelectorForName =
871 getOpenMPContextTraitSelectorKind(Name, SetForName);
872 if (SelectorForName != TraitSelector::invalid) {
873 Diag(NameLoc, diag::note_omp_declare_variant_ctx_is_a)
874 << Name << CONTEXT_SELECTOR_LVL << CONTEXT_TRAIT_LVL;
875 bool AllowsTraitScore = false;
876 bool RequiresProperty = false;
877 isValidTraitSelectorForTraitSet(
878 SelectorForName, getOpenMPContextTraitSetForSelector(SelectorForName),
879 AllowsTraitScore, RequiresProperty);
880 Diag(NameLoc, diag::note_omp_declare_variant_ctx_try)
881 << getOpenMPContextTraitSetName(
882 getOpenMPContextTraitSetForSelector(SelectorForName))
883 << Name << (RequiresProperty ? "(<property-name>)" : "");
884 return;
885 }
886 for (const auto &PotentialSet :
887 {TraitSet::construct, TraitSet::user, TraitSet::implementation,
888 TraitSet::device, TraitSet::target_device}) {
889 TraitProperty PropertyForName =
890 getOpenMPContextTraitPropertyKind(PotentialSet, Selector, Name);
891 if (PropertyForName == TraitProperty::invalid)
892 continue;
893 Diag(NameLoc, diag::note_omp_declare_variant_ctx_try)
894 << getOpenMPContextTraitSetName(
895 getOpenMPContextTraitSetForProperty(PropertyForName))
896 << getOpenMPContextTraitSelectorName(
897 getOpenMPContextTraitSelectorForProperty(PropertyForName))
898 << ("(" + Name + ")").str();
899 return;
900 }
901 Diag(NameLoc, diag::note_omp_declare_variant_ctx_options)
902 << CONTEXT_TRAIT_LVL << listOpenMPContextTraitProperties(Set, Selector);
903}
904
906 OMPTraitProperty &TIProperty,
907 OMPTraitSelector &TISelector,
908 llvm::StringMap<SourceLocation> &Seen) {
909 assert(TISelector.Kind ==
910 llvm::omp::TraitSelector::implementation_extension &&
911 "Only for extension properties, e.g., "
912 "`implementation={extension(PROPERTY)}`");
913 if (TIProperty.Kind == TraitProperty::invalid)
914 return false;
915
916 if (TIProperty.Kind ==
917 TraitProperty::implementation_extension_disable_implicit_base)
918 return true;
919
920 if (TIProperty.Kind ==
921 TraitProperty::implementation_extension_allow_templates)
922 return true;
923
924 if (TIProperty.Kind ==
925 TraitProperty::implementation_extension_bind_to_declaration)
926 return true;
927
928 auto IsMatchExtension = [](OMPTraitProperty &TP) {
929 return (TP.Kind ==
930 llvm::omp::TraitProperty::implementation_extension_match_all ||
931 TP.Kind ==
932 llvm::omp::TraitProperty::implementation_extension_match_any ||
933 TP.Kind ==
934 llvm::omp::TraitProperty::implementation_extension_match_none);
935 };
936
937 if (IsMatchExtension(TIProperty)) {
938 for (OMPTraitProperty &SeenProp : TISelector.Properties)
939 if (IsMatchExtension(SeenProp)) {
940 P.Diag(Loc, diag::err_omp_variant_ctx_second_match_extension);
941 StringRef SeenName = llvm::omp::getOpenMPContextTraitPropertyName(
942 SeenProp.Kind, SeenProp.RawString);
943 SourceLocation SeenLoc = Seen[SeenName];
944 P.Diag(SeenLoc, diag::note_omp_declare_variant_ctx_used_here)
945 << CONTEXT_TRAIT_LVL << SeenName;
946 return false;
947 }
948 return true;
949 }
950
951 llvm_unreachable("Unknown extension property!");
952}
953
954void Parser::parseOMPContextProperty(OMPTraitSelector &TISelector,
955 llvm::omp::TraitSet Set,
956 llvm::StringMap<SourceLocation> &Seen) {
957 assert(TISelector.Kind != TraitSelector::user_condition &&
958 "User conditions are special properties not handled here!");
959
960 SourceLocation PropertyLoc = Tok.getLocation();
961 OMPTraitProperty TIProperty;
962 parseOMPTraitPropertyKind(TIProperty, Set, TISelector.Kind, Seen);
963
964 if (TISelector.Kind == llvm::omp::TraitSelector::implementation_extension)
965 if (!checkExtensionProperty(*this, Tok.getLocation(), TIProperty,
966 TISelector, Seen))
967 TIProperty.Kind = TraitProperty::invalid;
968
969 // If we have an invalid property here we already issued a warning.
970 if (TIProperty.Kind == TraitProperty::invalid) {
971 if (PropertyLoc != Tok.getLocation())
972 Diag(Tok.getLocation(), diag::note_omp_declare_variant_ctx_continue_here)
973 << CONTEXT_TRAIT_LVL;
974 return;
975 }
976
977 if (isValidTraitPropertyForTraitSetAndSelector(TIProperty.Kind,
978 TISelector.Kind, Set)) {
979
980 // If we make it here the property, selector, set, score, condition, ... are
981 // all valid (or have been corrected). Thus we can record the property.
982 TISelector.Properties.push_back(TIProperty);
983 return;
984 }
985
986 Diag(PropertyLoc, diag::warn_omp_ctx_incompatible_property_for_selector)
987 << getOpenMPContextTraitPropertyName(TIProperty.Kind,
988 TIProperty.RawString)
989 << getOpenMPContextTraitSelectorName(TISelector.Kind)
990 << getOpenMPContextTraitSetName(Set);
991 Diag(PropertyLoc, diag::note_omp_ctx_compatible_set_and_selector_for_property)
992 << getOpenMPContextTraitPropertyName(TIProperty.Kind,
993 TIProperty.RawString)
994 << getOpenMPContextTraitSelectorName(
995 getOpenMPContextTraitSelectorForProperty(TIProperty.Kind))
996 << getOpenMPContextTraitSetName(
997 getOpenMPContextTraitSetForProperty(TIProperty.Kind));
998 Diag(Tok.getLocation(), diag::note_omp_declare_variant_ctx_continue_here)
999 << CONTEXT_TRAIT_LVL;
1000}
1001
1002void Parser::parseOMPTraitSelectorKind(OMPTraitSelector &TISelector,
1003 llvm::omp::TraitSet Set,
1004 llvm::StringMap<SourceLocation> &Seen) {
1005 TISelector.Kind = TraitSelector::invalid;
1006
1007 SourceLocation NameLoc = Tok.getLocation();
1008 StringRef Name = getNameFromIdOrString(*this, Tok, CONTEXT_SELECTOR_LVL);
1009 if (Name.empty()) {
1010 Diag(Tok.getLocation(), diag::note_omp_declare_variant_ctx_options)
1011 << CONTEXT_SELECTOR_LVL << listOpenMPContextTraitSelectors(Set);
1012 return;
1013 }
1014
1015 TISelector.Kind = getOpenMPContextTraitSelectorKind(Name, Set);
1016 if (TISelector.Kind != TraitSelector::invalid) {
1017 if (checkForDuplicates(*this, Name, NameLoc, Seen, CONTEXT_SELECTOR_LVL))
1018 TISelector.Kind = TraitSelector::invalid;
1019 return;
1020 }
1021
1022 // It follows diagnosis and helping notes.
1023 Diag(NameLoc, diag::warn_omp_declare_variant_ctx_not_a_selector)
1024 << Name << getOpenMPContextTraitSetName(Set);
1025
1026 TraitSet SetForName = getOpenMPContextTraitSetKind(Name);
1027 if (SetForName != TraitSet::invalid) {
1028 Diag(NameLoc, diag::note_omp_declare_variant_ctx_is_a)
1029 << Name << CONTEXT_SELECTOR_SET_LVL << CONTEXT_SELECTOR_LVL;
1030 Diag(NameLoc, diag::note_omp_declare_variant_ctx_try)
1031 << Name << "<selector-name>"
1032 << "<property-name>";
1033 return;
1034 }
1035 for (const auto &PotentialSet :
1036 {TraitSet::construct, TraitSet::user, TraitSet::implementation,
1037 TraitSet::device, TraitSet::target_device}) {
1038 TraitProperty PropertyForName = getOpenMPContextTraitPropertyKind(
1039 PotentialSet, TraitSelector::invalid, Name);
1040 if (PropertyForName == TraitProperty::invalid)
1041 continue;
1042 Diag(NameLoc, diag::note_omp_declare_variant_ctx_is_a)
1043 << Name << CONTEXT_TRAIT_LVL << CONTEXT_SELECTOR_LVL;
1044 Diag(NameLoc, diag::note_omp_declare_variant_ctx_try)
1045 << getOpenMPContextTraitSetName(
1046 getOpenMPContextTraitSetForProperty(PropertyForName))
1047 << getOpenMPContextTraitSelectorName(
1048 getOpenMPContextTraitSelectorForProperty(PropertyForName))
1049 << ("(" + Name + ")").str();
1050 return;
1051 }
1052 Diag(NameLoc, diag::note_omp_declare_variant_ctx_options)
1053 << CONTEXT_SELECTOR_LVL << listOpenMPContextTraitSelectors(Set);
1054}
1055
1056/// Parse optional 'score' '(' <expr> ')' ':'.
1058 ExprResult ScoreExpr;
1059 llvm::SmallString<16> Buffer;
1060 StringRef SelectorName =
1061 P.getPreprocessor().getSpelling(P.getCurToken(), Buffer);
1062 if (SelectorName != "score")
1063 return ScoreExpr;
1064 (void)P.ConsumeToken();
1065 SourceLocation RLoc;
1066 ScoreExpr = P.ParseOpenMPParensExpr(SelectorName, RLoc);
1067 // Parse ':'
1068 if (P.getCurToken().is(tok::colon))
1069 (void)P.ConsumeAnyToken();
1070 else
1071 P.Diag(P.getCurToken(), diag::warn_omp_declare_variant_expected)
1072 << "':'"
1073 << "score expression";
1074 return ScoreExpr;
1075}
1076
1077void Parser::parseOMPContextSelector(
1078 OMPTraitSelector &TISelector, llvm::omp::TraitSet Set,
1079 llvm::StringMap<SourceLocation> &SeenSelectors) {
1080 unsigned short OuterPC = ParenCount;
1081
1082 // If anything went wrong we issue an error or warning and then skip the rest
1083 // of the selector. However, commas are ambiguous so we look for the nesting
1084 // of parentheses here as well.
1085 auto FinishSelector = [OuterPC, this]() -> void {
1086 bool Done = false;
1087 while (!Done) {
1088 while (!SkipUntil({tok::r_brace, tok::r_paren, tok::comma,
1089 tok::annot_pragma_openmp_end},
1091 ;
1092 if (Tok.is(tok::r_paren) && OuterPC > ParenCount)
1093 (void)ConsumeParen();
1094 if (OuterPC <= ParenCount) {
1095 Done = true;
1096 break;
1097 }
1098 if (!Tok.is(tok::comma) && !Tok.is(tok::r_paren)) {
1099 Done = true;
1100 break;
1101 }
1102 (void)ConsumeAnyToken();
1103 }
1104 Diag(Tok.getLocation(), diag::note_omp_declare_variant_ctx_continue_here)
1105 << CONTEXT_SELECTOR_LVL;
1106 };
1107
1108 SourceLocation SelectorLoc = Tok.getLocation();
1109 parseOMPTraitSelectorKind(TISelector, Set, SeenSelectors);
1110 if (TISelector.Kind == TraitSelector::invalid)
1111 return FinishSelector();
1112
1113 bool AllowsTraitScore = false;
1114 bool RequiresProperty = false;
1115 if (!isValidTraitSelectorForTraitSet(TISelector.Kind, Set, AllowsTraitScore,
1116 RequiresProperty)) {
1117 Diag(SelectorLoc, diag::warn_omp_ctx_incompatible_selector_for_set)
1118 << getOpenMPContextTraitSelectorName(TISelector.Kind)
1119 << getOpenMPContextTraitSetName(Set);
1120 Diag(SelectorLoc, diag::note_omp_ctx_compatible_set_for_selector)
1121 << getOpenMPContextTraitSelectorName(TISelector.Kind)
1122 << getOpenMPContextTraitSetName(
1123 getOpenMPContextTraitSetForSelector(TISelector.Kind))
1124 << RequiresProperty;
1125 return FinishSelector();
1126 }
1127
1128 if (!RequiresProperty) {
1129 TISelector.Properties.push_back(
1130 {getOpenMPContextTraitPropertyForSelector(TISelector.Kind),
1131 getOpenMPContextTraitSelectorName(TISelector.Kind)});
1132 return;
1133 }
1134
1135 if (!Tok.is(tok::l_paren)) {
1136 Diag(SelectorLoc, diag::warn_omp_ctx_selector_without_properties)
1137 << getOpenMPContextTraitSelectorName(TISelector.Kind)
1138 << getOpenMPContextTraitSetName(Set);
1139 return FinishSelector();
1140 }
1141
1142 if (TISelector.Kind == TraitSelector::user_condition) {
1143 SourceLocation RLoc;
1144 ExprResult Condition = ParseOpenMPParensExpr("user condition", RLoc);
1145 if (!Condition.isUsable())
1146 return FinishSelector();
1147 TISelector.ScoreOrCondition = Condition.get();
1148 TISelector.Properties.push_back(
1149 {TraitProperty::user_condition_unknown, "<condition>"});
1150 return;
1151 }
1152
1153 BalancedDelimiterTracker BDT(*this, tok::l_paren,
1154 tok::annot_pragma_openmp_end);
1155 // Parse '('.
1156 (void)BDT.consumeOpen();
1157
1158 SourceLocation ScoreLoc = Tok.getLocation();
1159 ExprResult Score = parseContextScore(*this);
1160
1161 if (!AllowsTraitScore && !Score.isUnset()) {
1162 if (Score.isUsable()) {
1163 Diag(ScoreLoc, diag::warn_omp_ctx_incompatible_score_for_property)
1164 << getOpenMPContextTraitSelectorName(TISelector.Kind)
1165 << getOpenMPContextTraitSetName(Set) << Score.get();
1166 } else {
1167 Diag(ScoreLoc, diag::warn_omp_ctx_incompatible_score_for_property)
1168 << getOpenMPContextTraitSelectorName(TISelector.Kind)
1169 << getOpenMPContextTraitSetName(Set) << "<invalid>";
1170 }
1171 Score = ExprResult();
1172 }
1173
1174 if (Score.isUsable())
1175 TISelector.ScoreOrCondition = Score.get();
1176
1177 llvm::StringMap<SourceLocation> SeenProperties;
1178 do {
1179 parseOMPContextProperty(TISelector, Set, SeenProperties);
1180 } while (TryConsumeToken(tok::comma));
1181
1182 // Parse ')'.
1183 BDT.consumeClose();
1184}
1185
1186void Parser::parseOMPTraitSetKind(OMPTraitSet &TISet,
1187 llvm::StringMap<SourceLocation> &Seen) {
1188 TISet.Kind = TraitSet::invalid;
1189
1190 SourceLocation NameLoc = Tok.getLocation();
1191 StringRef Name = getNameFromIdOrString(*this, Tok, CONTEXT_SELECTOR_SET_LVL);
1192 if (Name.empty()) {
1193 Diag(Tok.getLocation(), diag::note_omp_declare_variant_ctx_options)
1194 << CONTEXT_SELECTOR_SET_LVL << listOpenMPContextTraitSets();
1195 return;
1196 }
1197
1198 TISet.Kind = getOpenMPContextTraitSetKind(Name);
1199 if (TISet.Kind != TraitSet::invalid) {
1200 if (checkForDuplicates(*this, Name, NameLoc, Seen,
1201 CONTEXT_SELECTOR_SET_LVL))
1202 TISet.Kind = TraitSet::invalid;
1203 return;
1204 }
1205
1206 // It follows diagnosis and helping notes.
1207 Diag(NameLoc, diag::warn_omp_declare_variant_ctx_not_a_set) << Name;
1208
1209 TraitSelector SelectorForName =
1210 getOpenMPContextTraitSelectorKind(Name, TISet.Kind);
1211 if (SelectorForName != TraitSelector::invalid) {
1212 Diag(NameLoc, diag::note_omp_declare_variant_ctx_is_a)
1213 << Name << CONTEXT_SELECTOR_LVL << CONTEXT_SELECTOR_SET_LVL;
1214 bool AllowsTraitScore = false;
1215 bool RequiresProperty = false;
1216 isValidTraitSelectorForTraitSet(
1217 SelectorForName, getOpenMPContextTraitSetForSelector(SelectorForName),
1218 AllowsTraitScore, RequiresProperty);
1219 Diag(NameLoc, diag::note_omp_declare_variant_ctx_try)
1220 << getOpenMPContextTraitSetName(
1221 getOpenMPContextTraitSetForSelector(SelectorForName))
1222 << Name << (RequiresProperty ? "(<property-name>)" : "");
1223 return;
1224 }
1225 for (const auto &PotentialSet :
1226 {TraitSet::construct, TraitSet::user, TraitSet::implementation,
1227 TraitSet::device, TraitSet::target_device}) {
1228 TraitProperty PropertyForName = getOpenMPContextTraitPropertyKind(
1229 PotentialSet, TraitSelector::invalid, Name);
1230 if (PropertyForName == TraitProperty::invalid)
1231 continue;
1232 Diag(NameLoc, diag::note_omp_declare_variant_ctx_is_a)
1233 << Name << CONTEXT_TRAIT_LVL << CONTEXT_SELECTOR_SET_LVL;
1234 Diag(NameLoc, diag::note_omp_declare_variant_ctx_try)
1235 << getOpenMPContextTraitSetName(
1236 getOpenMPContextTraitSetForProperty(PropertyForName))
1237 << getOpenMPContextTraitSelectorName(
1238 getOpenMPContextTraitSelectorForProperty(PropertyForName))
1239 << ("(" + Name + ")").str();
1240 return;
1241 }
1242 Diag(NameLoc, diag::note_omp_declare_variant_ctx_options)
1243 << CONTEXT_SELECTOR_SET_LVL << listOpenMPContextTraitSets();
1244}
1245
1246void Parser::parseOMPContextSelectorSet(
1247 OMPTraitSet &TISet, llvm::StringMap<SourceLocation> &SeenSets) {
1248 auto OuterBC = BraceCount;
1249
1250 // If anything went wrong we issue an error or warning and then skip the rest
1251 // of the set. However, commas are ambiguous so we look for the nesting
1252 // of braces here as well.
1253 auto FinishSelectorSet = [this, OuterBC]() -> void {
1254 bool Done = false;
1255 while (!Done) {
1256 while (!SkipUntil({tok::comma, tok::r_brace, tok::r_paren,
1257 tok::annot_pragma_openmp_end},
1259 ;
1260 if (Tok.is(tok::r_brace) && OuterBC > BraceCount)
1261 (void)ConsumeBrace();
1262 if (OuterBC <= BraceCount) {
1263 Done = true;
1264 break;
1265 }
1266 if (!Tok.is(tok::comma) && !Tok.is(tok::r_brace)) {
1267 Done = true;
1268 break;
1269 }
1270 (void)ConsumeAnyToken();
1271 }
1272 Diag(Tok.getLocation(), diag::note_omp_declare_variant_ctx_continue_here)
1273 << CONTEXT_SELECTOR_SET_LVL;
1274 };
1275
1276 parseOMPTraitSetKind(TISet, SeenSets);
1277 if (TISet.Kind == TraitSet::invalid)
1278 return FinishSelectorSet();
1279
1280 // Parse '='.
1281 if (!TryConsumeToken(tok::equal))
1282 Diag(Tok.getLocation(), diag::warn_omp_declare_variant_expected)
1283 << "="
1284 << ("context set name \"" + getOpenMPContextTraitSetName(TISet.Kind) +
1285 "\"")
1286 .str();
1287
1288 // Parse '{'.
1289 if (Tok.is(tok::l_brace)) {
1290 (void)ConsumeBrace();
1291 } else {
1292 Diag(Tok.getLocation(), diag::warn_omp_declare_variant_expected)
1293 << "{"
1294 << ("'=' that follows the context set name \"" +
1295 getOpenMPContextTraitSetName(TISet.Kind) + "\"")
1296 .str();
1297 }
1298
1299 llvm::StringMap<SourceLocation> SeenSelectors;
1300 do {
1301 OMPTraitSelector TISelector;
1302 parseOMPContextSelector(TISelector, TISet.Kind, SeenSelectors);
1303 if (TISelector.Kind != TraitSelector::invalid &&
1304 !TISelector.Properties.empty())
1305 TISet.Selectors.push_back(TISelector);
1306 } while (TryConsumeToken(tok::comma));
1307
1308 // Parse '}'.
1309 if (Tok.is(tok::r_brace)) {
1310 (void)ConsumeBrace();
1311 } else {
1312 Diag(Tok.getLocation(), diag::warn_omp_declare_variant_expected)
1313 << "}"
1314 << ("context selectors for the context set \"" +
1315 getOpenMPContextTraitSetName(TISet.Kind) + "\"")
1316 .str();
1317 }
1318}
1319
1320bool Parser::parseOMPContextSelectors(SourceLocation Loc, OMPTraitInfo &TI) {
1321 llvm::StringMap<SourceLocation> SeenSets;
1322 do {
1323 OMPTraitSet TISet;
1324 parseOMPContextSelectorSet(TISet, SeenSets);
1325 if (TISet.Kind != TraitSet::invalid && !TISet.Selectors.empty())
1326 TI.Sets.push_back(TISet);
1327 } while (TryConsumeToken(tok::comma));
1328
1329 return false;
1330}
1331
1332void Parser::ParseOMPDeclareVariantClauses(Parser::DeclGroupPtrTy Ptr,
1333 CachedTokens &Toks,
1334 SourceLocation Loc) {
1335 unsigned OMPVersion = Actions.getLangOpts().OpenMP;
1336 PP.EnterToken(Tok, /*IsReinject*/ true);
1337 PP.EnterTokenStream(Toks, /*DisableMacroExpansion=*/true,
1338 /*IsReinject*/ true);
1339 // Consume the previously pushed token.
1340 ConsumeAnyToken(/*ConsumeCodeCompletionTok=*/true);
1341 ConsumeAnyToken(/*ConsumeCodeCompletionTok=*/true);
1342
1343 FNContextRAII FnContext(*this, Ptr);
1344 // Parse function declaration id.
1345 SourceLocation RLoc;
1346 // Parse with IsAddressOfOperand set to true to parse methods as DeclRefExprs
1347 // instead of MemberExprs.
1348 ExprResult AssociatedFunction;
1349 {
1350 // Do not mark function as is used to prevent its emission if this is the
1351 // only place where it is used.
1352 EnterExpressionEvaluationContext Unevaluated(
1354 AssociatedFunction = ParseOpenMPParensExpr(
1355 getOpenMPDirectiveName(OMPD_declare_variant, OMPVersion), RLoc,
1356 /*IsAddressOfOperand=*/true);
1357 }
1358 if (!AssociatedFunction.isUsable()) {
1359 if (!Tok.is(tok::annot_pragma_openmp_end))
1360 while (!SkipUntil(tok::annot_pragma_openmp_end, StopBeforeMatch))
1361 ;
1362 // Skip the last annot_pragma_openmp_end.
1363 (void)ConsumeAnnotationToken();
1364 return;
1365 }
1366
1367 OMPTraitInfo *ParentTI =
1368 Actions.OpenMP().getOMPTraitInfoForSurroundingScope();
1369 ASTContext &ASTCtx = Actions.getASTContext();
1370 OMPTraitInfo &TI = ASTCtx.getNewOMPTraitInfo();
1371 SmallVector<Expr *, 6> AdjustNothing;
1372 SmallVector<Expr *, 6> AdjustNeedDevicePtr;
1373 SmallVector<Expr *, 6> AdjustNeedDeviceAddr;
1374 SmallVector<OMPInteropInfo, 3> AppendArgs;
1375 SourceLocation AdjustArgsLoc, AppendArgsLoc;
1376
1377 // At least one clause is required.
1378 if (Tok.is(tok::annot_pragma_openmp_end)) {
1379 Diag(Tok.getLocation(), diag::err_omp_declare_variant_wrong_clause)
1380 << (getLangOpts().OpenMP < 51 ? 0 : 1);
1381 }
1382
1383 bool IsError = false;
1384 while (Tok.isNot(tok::annot_pragma_openmp_end)) {
1385 OpenMPClauseKind CKind = Tok.isAnnotation()
1386 ? OMPC_unknown
1387 : getOpenMPClauseKind(PP.getSpelling(Tok));
1388 if (!isAllowedClauseForDirective(OMPD_declare_variant, CKind,
1389 getLangOpts().OpenMP)) {
1390 Diag(Tok.getLocation(), diag::err_omp_declare_variant_wrong_clause)
1391 << (getLangOpts().OpenMP < 51 ? 0 : 1);
1392 IsError = true;
1393 }
1394 if (!IsError) {
1395 switch (CKind) {
1396 case OMPC_match:
1397 IsError = parseOMPDeclareVariantMatchClause(Loc, TI, ParentTI);
1398 break;
1399 case OMPC_adjust_args: {
1400 AdjustArgsLoc = Tok.getLocation();
1401 ConsumeToken();
1402 SemaOpenMP::OpenMPVarListDataTy Data;
1403 SmallVector<Expr *> Vars;
1404 IsError = ParseOpenMPVarList(OMPD_declare_variant, OMPC_adjust_args,
1405 Vars, Data);
1406 if (!IsError) {
1407 switch (Data.ExtraModifier) {
1408 case OMPC_ADJUST_ARGS_nothing:
1409 llvm::append_range(AdjustNothing, Vars);
1410 break;
1411 case OMPC_ADJUST_ARGS_need_device_ptr:
1412 llvm::append_range(AdjustNeedDevicePtr, Vars);
1413 break;
1414 case OMPC_ADJUST_ARGS_need_device_addr:
1415 llvm::append_range(AdjustNeedDeviceAddr, Vars);
1416 break;
1417 default:
1418 llvm_unreachable("Unexpected 'adjust_args' clause modifier.");
1419 }
1420 }
1421 break;
1422 }
1423 case OMPC_append_args:
1424 if (!AppendArgs.empty()) {
1425 Diag(AppendArgsLoc, diag::err_omp_more_one_clause)
1426 << getOpenMPDirectiveName(OMPD_declare_variant, OMPVersion)
1427 << getOpenMPClauseName(CKind) << 0;
1428 IsError = true;
1429 }
1430 if (!IsError) {
1431 AppendArgsLoc = Tok.getLocation();
1432 ConsumeToken();
1433 IsError = parseOpenMPAppendArgs(AppendArgs);
1434 }
1435 break;
1436 default:
1437 llvm_unreachable("Unexpected clause for declare variant.");
1438 }
1439 }
1440 if (IsError) {
1441 while (!SkipUntil(tok::annot_pragma_openmp_end, StopBeforeMatch))
1442 ;
1443 // Skip the last annot_pragma_openmp_end.
1444 (void)ConsumeAnnotationToken();
1445 return;
1446 }
1447 // Skip ',' if any.
1448 if (Tok.is(tok::comma))
1449 ConsumeToken();
1450 }
1451
1452 std::optional<std::pair<FunctionDecl *, Expr *>> DeclVarData =
1453 Actions.OpenMP().checkOpenMPDeclareVariantFunction(
1454 Ptr, AssociatedFunction.get(), TI, AppendArgs.size(),
1455 SourceRange(Loc, Tok.getLocation()));
1456
1457 if (DeclVarData && !TI.Sets.empty())
1458 Actions.OpenMP().ActOnOpenMPDeclareVariantDirective(
1459 DeclVarData->first, DeclVarData->second, TI, AdjustNothing,
1460 AdjustNeedDevicePtr, AdjustNeedDeviceAddr, AppendArgs, AdjustArgsLoc,
1461 AppendArgsLoc, SourceRange(Loc, Tok.getLocation()));
1462
1463 // Skip the last annot_pragma_openmp_end.
1464 (void)ConsumeAnnotationToken();
1465}
1466
1467bool Parser::parseOpenMPAppendArgs(
1468 SmallVectorImpl<OMPInteropInfo> &InteropInfos) {
1469 bool HasError = false;
1470 // Parse '('.
1471 BalancedDelimiterTracker T(*this, tok::l_paren, tok::annot_pragma_openmp_end);
1472 if (T.expectAndConsume(diag::err_expected_lparen_after,
1473 getOpenMPClauseName(OMPC_append_args).data()))
1474 return true;
1475
1476 // Parse the list of append-ops, each is;
1477 // interop(interop-type[,interop-type]...)
1478 while (Tok.is(tok::identifier) && Tok.getIdentifierInfo()->isStr("interop")) {
1479 ConsumeToken();
1480 BalancedDelimiterTracker IT(*this, tok::l_paren,
1481 tok::annot_pragma_openmp_end);
1482 if (IT.expectAndConsume(diag::err_expected_lparen_after, "interop"))
1483 return true;
1484
1485 OMPInteropInfo InteropInfo;
1486 if (ParseOMPInteropInfo(InteropInfo, OMPC_append_args))
1487 HasError = true;
1488 else
1489 InteropInfos.push_back(InteropInfo);
1490
1491 IT.consumeClose();
1492 if (Tok.is(tok::comma))
1493 ConsumeToken();
1494 }
1495 if (!HasError && InteropInfos.empty()) {
1496 HasError = true;
1497 Diag(Tok.getLocation(), diag::err_omp_unexpected_append_op);
1498 SkipUntil(tok::comma, tok::r_paren, tok::annot_pragma_openmp_end,
1500 }
1501 HasError = T.consumeClose() || HasError;
1502 return HasError;
1503}
1504
1505bool Parser::parseOMPDeclareVariantMatchClause(SourceLocation Loc,
1506 OMPTraitInfo &TI,
1507 OMPTraitInfo *ParentTI) {
1508 // Parse 'match'.
1509 OpenMPClauseKind CKind = Tok.isAnnotation()
1510 ? OMPC_unknown
1511 : getOpenMPClauseKind(PP.getSpelling(Tok));
1512 if (CKind != OMPC_match) {
1513 Diag(Tok.getLocation(), diag::err_omp_declare_variant_wrong_clause)
1514 << (getLangOpts().OpenMP < 51 ? 0 : 1);
1515 return true;
1516 }
1517 (void)ConsumeToken();
1518 // Parse '('.
1519 BalancedDelimiterTracker T(*this, tok::l_paren, tok::annot_pragma_openmp_end);
1520 if (T.expectAndConsume(diag::err_expected_lparen_after,
1521 getOpenMPClauseName(OMPC_match).data()))
1522 return true;
1523
1524 // Parse inner context selectors.
1525 parseOMPContextSelectors(Loc, TI);
1526
1527 // Parse ')'
1528 (void)T.consumeClose();
1529
1530 if (!ParentTI)
1531 return false;
1532
1533 // Merge the parent/outer trait info into the one we just parsed and diagnose
1534 // problems.
1535 // TODO: Keep some source location in the TI to provide better diagnostics.
1536 // TODO: Perform some kind of equivalence check on the condition and score
1537 // expressions.
1538 for (const OMPTraitSet &ParentSet : ParentTI->Sets) {
1539 bool MergedSet = false;
1540 for (OMPTraitSet &Set : TI.Sets) {
1541 if (Set.Kind != ParentSet.Kind)
1542 continue;
1543 MergedSet = true;
1544 for (const OMPTraitSelector &ParentSelector : ParentSet.Selectors) {
1545 bool MergedSelector = false;
1546 for (OMPTraitSelector &Selector : Set.Selectors) {
1547 if (Selector.Kind != ParentSelector.Kind)
1548 continue;
1549 MergedSelector = true;
1550 for (const OMPTraitProperty &ParentProperty :
1551 ParentSelector.Properties) {
1552 bool MergedProperty = false;
1553 for (OMPTraitProperty &Property : Selector.Properties) {
1554 // Ignore "equivalent" properties.
1555 if (Property.Kind != ParentProperty.Kind)
1556 continue;
1557
1558 // If the kind is the same but the raw string not, we don't want
1559 // to skip out on the property.
1560 MergedProperty |= Property.RawString == ParentProperty.RawString;
1561
1562 if (Property.RawString == ParentProperty.RawString &&
1563 Selector.ScoreOrCondition == ParentSelector.ScoreOrCondition)
1564 continue;
1565
1566 if (Selector.Kind == llvm::omp::TraitSelector::user_condition) {
1567 Diag(Loc, diag::err_omp_declare_variant_nested_user_condition);
1568 } else if (Selector.ScoreOrCondition !=
1569 ParentSelector.ScoreOrCondition) {
1570 Diag(Loc, diag::err_omp_declare_variant_duplicate_nested_trait)
1571 << getOpenMPContextTraitPropertyName(
1572 ParentProperty.Kind, ParentProperty.RawString)
1573 << getOpenMPContextTraitSelectorName(ParentSelector.Kind)
1574 << getOpenMPContextTraitSetName(ParentSet.Kind);
1575 }
1576 }
1577 if (!MergedProperty)
1578 Selector.Properties.push_back(ParentProperty);
1579 }
1580 }
1581 if (!MergedSelector)
1582 Set.Selectors.push_back(ParentSelector);
1583 }
1584 }
1585 if (!MergedSet)
1586 TI.Sets.push_back(ParentSet);
1587 }
1588
1589 return false;
1590}
1591
1592void Parser::ParseOpenMPClauses(OpenMPDirectiveKind DKind,
1594 SourceLocation Loc) {
1595 std::bitset<llvm::omp::Clause_enumSize + 1> SeenClauses;
1596 while (Tok.isNot(tok::annot_pragma_openmp_end)) {
1597 OpenMPClauseKind CKind = Tok.isAnnotation()
1598 ? OMPC_unknown
1599 : getOpenMPClauseKind(PP.getSpelling(Tok));
1600 Actions.OpenMP().StartOpenMPClause(CKind);
1601 OMPClause *Clause =
1602 ParseOpenMPClause(DKind, CKind, !SeenClauses[unsigned(CKind)]);
1603 SkipUntil(tok::comma, tok::identifier, tok::annot_pragma_openmp_end,
1605 SeenClauses[unsigned(CKind)] = true;
1606 if (Clause != nullptr)
1607 Clauses.push_back(Clause);
1608 if (Tok.is(tok::annot_pragma_openmp_end)) {
1609 Actions.OpenMP().EndOpenMPClause();
1610 break;
1611 }
1612 // Skip ',' if any.
1613 if (Tok.is(tok::comma))
1614 ConsumeToken();
1615 Actions.OpenMP().EndOpenMPClause();
1616 }
1617}
1618
1619void Parser::ParseOpenMPAssumesDirective(OpenMPDirectiveKind DKind,
1620 SourceLocation Loc) {
1621 SmallVector<std::string, 4> Assumptions;
1622 bool SkippedClauses = false;
1623
1624 auto SkipBraces = [&](llvm::StringRef Spelling, bool IssueNote) {
1625 BalancedDelimiterTracker T(*this, tok::l_paren,
1626 tok::annot_pragma_openmp_end);
1627 if (T.expectAndConsume(diag::err_expected_lparen_after, Spelling.data()))
1628 return;
1629 T.skipToEnd();
1630 if (IssueNote && T.getCloseLocation().isValid())
1631 Diag(T.getCloseLocation(),
1632 diag::note_omp_assumption_clause_continue_here);
1633 };
1634
1635 /// Helper to determine which AssumptionClauseMapping (ACM) in the
1636 /// AssumptionClauseMappings table matches \p RawString. The return value is
1637 /// the index of the matching ACM into the table or -1 if there was no match.
1638 auto MatchACMClause = [&](StringRef RawString) {
1639 llvm::StringSwitch<int> SS(RawString);
1640 unsigned ACMIdx = 0;
1641 for (const AssumptionClauseMappingInfo &ACMI : AssumptionClauseMappings) {
1642 if (ACMI.StartsWith)
1643 SS.StartsWith(ACMI.Identifier, ACMIdx++);
1644 else
1645 SS.Case(ACMI.Identifier, ACMIdx++);
1646 }
1647 return SS.Default(-1);
1648 };
1649
1650 while (Tok.isNot(tok::annot_pragma_openmp_end)) {
1651 IdentifierInfo *II = nullptr;
1652 SourceLocation StartLoc = Tok.getLocation();
1653 int Idx = -1;
1654 if (Tok.isAnyIdentifier()) {
1655 II = Tok.getIdentifierInfo();
1656 Idx = MatchACMClause(II->getName());
1657 }
1659
1660 bool NextIsLPar = Tok.is(tok::l_paren);
1661 // Handle unknown clauses by skipping them.
1662 if (Idx == -1) {
1663 unsigned OMPVersion = Actions.getLangOpts().OpenMP;
1664 Diag(StartLoc, diag::warn_omp_unknown_assumption_clause_missing_id)
1665 << llvm::omp::getOpenMPDirectiveName(DKind, OMPVersion)
1666 << llvm::omp::getAllAssumeClauseOptions() << NextIsLPar;
1667 if (NextIsLPar)
1668 SkipBraces(II ? II->getName() : "", /* IssueNote */ true);
1669 SkippedClauses = true;
1670 continue;
1671 }
1672 const AssumptionClauseMappingInfo &ACMI = AssumptionClauseMappings[Idx];
1673 if (ACMI.HasDirectiveList || ACMI.HasExpression) {
1674 // TODO: We ignore absent, contains, and holds assumptions for now. We
1675 // also do not verify the content in the parenthesis at all.
1676 SkippedClauses = true;
1677 SkipBraces(II->getName(), /* IssueNote */ false);
1678 continue;
1679 }
1680
1681 if (NextIsLPar) {
1682 Diag(Tok.getLocation(),
1683 diag::warn_omp_unknown_assumption_clause_without_args)
1684 << II;
1685 SkipBraces(II->getName(), /* IssueNote */ true);
1686 }
1687
1688 assert(II && "Expected an identifier clause!");
1689 std::string Assumption = II->getName().str();
1690 if (ACMI.StartsWith)
1691 Assumption = "ompx_" + Assumption.substr(ACMI.Identifier.size());
1692 else
1693 Assumption = "omp_" + Assumption;
1694 Assumptions.push_back(Assumption);
1695 }
1696
1697 Actions.OpenMP().ActOnOpenMPAssumesDirective(Loc, DKind, Assumptions,
1698 SkippedClauses);
1699}
1700
1701void Parser::ParseOpenMPEndAssumesDirective(SourceLocation Loc) {
1702 if (Actions.OpenMP().isInOpenMPAssumeScope())
1703 Actions.OpenMP().ActOnOpenMPEndAssumesDirective();
1704 else
1705 Diag(Loc, diag::err_expected_begin_assumes);
1706}
1707
1708/// Parsing of simple OpenMP clauses like 'default' or 'proc_bind'.
1709///
1710/// default-clause:
1711/// 'default' '(' 'none' | 'shared' | 'private' | 'firstprivate' ')
1712///
1713/// proc_bind-clause:
1714/// 'proc_bind' '(' 'master' | 'close' | 'spread' ')
1715///
1716/// device_type-clause:
1717/// 'device_type' '(' 'host' | 'nohost' | 'any' )'
1718namespace {
1719struct SimpleClauseData {
1720 unsigned Type;
1721 SourceLocation Loc;
1722 SourceLocation LOpen;
1723 SourceLocation TypeLoc;
1724 SourceLocation RLoc;
1725 SimpleClauseData(unsigned Type, SourceLocation Loc, SourceLocation LOpen,
1726 SourceLocation TypeLoc, SourceLocation RLoc)
1727 : Type(Type), Loc(Loc), LOpen(LOpen), TypeLoc(TypeLoc), RLoc(RLoc) {}
1728};
1729} // anonymous namespace
1730
1731static std::optional<SimpleClauseData>
1733 const Token &Tok = P.getCurToken();
1734 SourceLocation Loc = Tok.getLocation();
1735 SourceLocation LOpen = P.ConsumeToken();
1736 // Parse '('.
1737 BalancedDelimiterTracker T(P, tok::l_paren, tok::annot_pragma_openmp_end);
1738 if (T.expectAndConsume(diag::err_expected_lparen_after,
1739 getOpenMPClauseName(Kind).data()))
1740 return std::nullopt;
1741
1743 Kind, Tok.isAnnotation() ? "" : P.getPreprocessor().getSpelling(Tok),
1744 P.getLangOpts());
1745 SourceLocation TypeLoc = Tok.getLocation();
1746 if (Tok.isNot(tok::r_paren) && Tok.isNot(tok::comma) &&
1747 Tok.isNot(tok::annot_pragma_openmp_end))
1748 P.ConsumeAnyToken();
1749
1750 // Parse ')'.
1751 SourceLocation RLoc = Tok.getLocation();
1752 if (!T.consumeClose())
1753 RLoc = T.getCloseLocation();
1754
1755 return SimpleClauseData(Type, Loc, LOpen, TypeLoc, RLoc);
1756}
1757
1758void Parser::ParseOMPDeclareTargetClauses(
1760 SourceLocation DeviceTypeLoc;
1761 bool RequiresToOrLinkOrIndirectClause = false;
1762 bool HasToOrLinkOrIndirectClause = false;
1763 while (Tok.isNot(tok::annot_pragma_openmp_end)) {
1764 OMPDeclareTargetDeclAttr::MapTypeTy MT = OMPDeclareTargetDeclAttr::MT_To;
1765 bool HasIdentifier = Tok.is(tok::identifier);
1766 if (HasIdentifier) {
1767 // If we see any clause we need a to or link clause.
1768 RequiresToOrLinkOrIndirectClause = true;
1769 IdentifierInfo *II = Tok.getIdentifierInfo();
1770 StringRef ClauseName = II->getName();
1771 bool IsDeviceTypeClause =
1772 getLangOpts().OpenMP >= 50 &&
1773 getOpenMPClauseKind(ClauseName) == OMPC_device_type;
1774
1775 bool IsIndirectClause = getLangOpts().OpenMP >= 51 &&
1776 getOpenMPClauseKind(ClauseName) == OMPC_indirect;
1777 if (DTCI.Indirect && IsIndirectClause) {
1778 unsigned OMPVersion = Actions.getLangOpts().OpenMP;
1779 Diag(Tok, diag::err_omp_more_one_clause)
1780 << getOpenMPDirectiveName(OMPD_declare_target, OMPVersion)
1781 << getOpenMPClauseName(OMPC_indirect) << 0;
1782 break;
1783 }
1784 bool IsToEnterOrLinkClause =
1785 OMPDeclareTargetDeclAttr::ConvertStrToMapTypeTy(ClauseName, MT);
1786 assert((!IsDeviceTypeClause || !IsToEnterOrLinkClause) &&
1787 "Cannot be both!");
1788
1789 // Starting with OpenMP 5.2 the `to` clause has been replaced by the
1790 // `enter` clause.
1791 if (getLangOpts().OpenMP >= 52 && ClauseName == "to") {
1792 Diag(Tok, diag::err_omp_declare_target_unexpected_to_clause);
1793 break;
1794 }
1795 if (getLangOpts().OpenMP <= 51 && ClauseName == "enter") {
1796 Diag(Tok, diag::err_omp_declare_target_unexpected_enter_clause);
1797 break;
1798 }
1799
1800 if (!IsDeviceTypeClause && !IsIndirectClause &&
1801 DTCI.Kind == OMPD_begin_declare_target) {
1802 Diag(Tok, diag::err_omp_declare_target_unexpected_clause)
1803 << ClauseName << (getLangOpts().OpenMP >= 51 ? 3 : 0);
1804 break;
1805 }
1806 if (!IsDeviceTypeClause && !IsToEnterOrLinkClause && !IsIndirectClause) {
1807 Diag(Tok, getLangOpts().OpenMP >= 52
1808 ? diag::err_omp_declare_target_unexpected_clause_52
1809 : diag::err_omp_declare_target_unexpected_clause)
1810 << ClauseName
1811 << (getLangOpts().OpenMP >= 51
1812 ? 4
1813 : getLangOpts().OpenMP >= 50 ? 2 : 1);
1814 break;
1815 }
1816
1817 if (IsToEnterOrLinkClause || IsIndirectClause)
1818 HasToOrLinkOrIndirectClause = true;
1819
1820 if (IsIndirectClause) {
1821 if (!ParseOpenMPIndirectClause(DTCI, /*ParseOnly*/ false))
1822 break;
1823 continue;
1824 }
1825 // Parse 'device_type' clause and go to next clause if any.
1826 if (IsDeviceTypeClause) {
1827 std::optional<SimpleClauseData> DevTypeData =
1828 parseOpenMPSimpleClause(*this, OMPC_device_type);
1829 if (DevTypeData) {
1830 if (DeviceTypeLoc.isValid()) {
1831 // We already saw another device_type clause, diagnose it.
1832 Diag(DevTypeData->Loc,
1833 diag::warn_omp_more_one_device_type_clause);
1834 break;
1835 }
1836 switch (static_cast<OpenMPDeviceType>(DevTypeData->Type)) {
1837 case OMPC_DEVICE_TYPE_any:
1838 DTCI.DT = OMPDeclareTargetDeclAttr::DT_Any;
1839 break;
1840 case OMPC_DEVICE_TYPE_host:
1841 DTCI.DT = OMPDeclareTargetDeclAttr::DT_Host;
1842 break;
1843 case OMPC_DEVICE_TYPE_nohost:
1844 DTCI.DT = OMPDeclareTargetDeclAttr::DT_NoHost;
1845 break;
1847 llvm_unreachable("Unexpected device_type");
1848 }
1849 DeviceTypeLoc = DevTypeData->Loc;
1850 }
1851 continue;
1852 }
1853 ConsumeToken();
1854 }
1855
1856 if (DTCI.Kind == OMPD_declare_target || HasIdentifier) {
1857 auto &&Callback = [this, MT, &DTCI](CXXScopeSpec &SS,
1858 DeclarationNameInfo NameInfo) {
1859 NamedDecl *ND = Actions.OpenMP().lookupOpenMPDeclareTargetName(
1860 getCurScope(), SS, NameInfo);
1861 if (!ND)
1862 return;
1863 SemaOpenMP::DeclareTargetContextInfo::MapInfo MI{MT, NameInfo.getLoc()};
1864 bool FirstMapping = DTCI.ExplicitlyMapped.try_emplace(ND, MI).second;
1865 if (!FirstMapping)
1866 Diag(NameInfo.getLoc(), diag::err_omp_declare_target_multiple)
1867 << NameInfo.getName();
1868 };
1869 if (ParseOpenMPSimpleVarList(OMPD_declare_target, Callback,
1870 /*AllowScopeSpecifier=*/true))
1871 break;
1872 }
1873
1874 if (Tok.is(tok::l_paren)) {
1875 Diag(Tok,
1876 diag::err_omp_begin_declare_target_unexpected_implicit_to_clause);
1877 break;
1878 }
1879 if (!HasIdentifier && Tok.isNot(tok::annot_pragma_openmp_end)) {
1880 Diag(Tok,
1881 getLangOpts().OpenMP >= 52
1882 ? diag::err_omp_declare_target_wrong_clause_after_implicit_enter
1883 : diag::err_omp_declare_target_wrong_clause_after_implicit_to);
1884 break;
1885 }
1886
1887 // Consume optional ','.
1888 if (Tok.is(tok::comma))
1889 ConsumeToken();
1890 }
1891
1892 if (DTCI.Indirect && DTCI.DT != OMPDeclareTargetDeclAttr::DT_Any)
1893 Diag(DeviceTypeLoc, diag::err_omp_declare_target_indirect_device_type);
1894
1895 // For declare target require at least 'to' or 'link' to be present.
1896 if (DTCI.Kind == OMPD_declare_target && RequiresToOrLinkOrIndirectClause &&
1897 !HasToOrLinkOrIndirectClause)
1898 Diag(DTCI.Loc,
1899 getLangOpts().OpenMP >= 52
1900 ? diag::err_omp_declare_target_missing_enter_or_link_clause
1901 : diag::err_omp_declare_target_missing_to_or_link_clause)
1902 << (getLangOpts().OpenMP >= 51 ? 1 : 0);
1903
1904 SkipUntil(tok::annot_pragma_openmp_end, StopBeforeMatch);
1905}
1906
1907void Parser::skipUntilPragmaOpenMPEnd(OpenMPDirectiveKind DKind) {
1908 // The last seen token is annot_pragma_openmp_end - need to check for
1909 // extra tokens.
1910 if (Tok.is(tok::annot_pragma_openmp_end))
1911 return;
1912
1913 unsigned OMPVersion = Actions.getLangOpts().OpenMP;
1914 Diag(Tok, diag::warn_omp_extra_tokens_at_eol)
1915 << getOpenMPDirectiveName(DKind, OMPVersion);
1916 while (Tok.isNot(tok::annot_pragma_openmp_end))
1918}
1919
1920void Parser::parseOMPEndDirective(OpenMPDirectiveKind BeginKind,
1921 OpenMPDirectiveKind ExpectedKind,
1922 OpenMPDirectiveKind FoundKind,
1923 SourceLocation BeginLoc,
1924 SourceLocation FoundLoc,
1925 bool SkipUntilOpenMPEnd) {
1926 int DiagSelection = ExpectedKind == OMPD_end_declare_target ? 0 : 1;
1927
1928 if (FoundKind == ExpectedKind) {
1930 skipUntilPragmaOpenMPEnd(ExpectedKind);
1931 return;
1932 }
1933
1934 unsigned OMPVersion = Actions.getLangOpts().OpenMP;
1935 Diag(FoundLoc, diag::err_expected_end_declare_target_or_variant)
1936 << DiagSelection;
1937 Diag(BeginLoc, diag::note_matching)
1938 << ("'#pragma omp " + getOpenMPDirectiveName(BeginKind, OMPVersion) + "'")
1939 .str();
1940 if (SkipUntilOpenMPEnd)
1941 SkipUntil(tok::annot_pragma_openmp_end, StopBeforeMatch);
1942}
1943
1944void Parser::ParseOMPEndDeclareTargetDirective(OpenMPDirectiveKind BeginDKind,
1945 OpenMPDirectiveKind EndDKind,
1946 SourceLocation DKLoc) {
1947 parseOMPEndDirective(BeginDKind, OMPD_end_declare_target, EndDKind, DKLoc,
1948 Tok.getLocation(),
1949 /* SkipUntilOpenMPEnd */ false);
1950 // Skip the last annot_pragma_openmp_end.
1951 if (Tok.is(tok::annot_pragma_openmp_end))
1952 ConsumeAnnotationToken();
1953}
1954
1955Parser::DeclGroupPtrTy Parser::ParseOpenMPDeclarativeDirectiveWithExtDecl(
1956 AccessSpecifier &AS, ParsedAttributes &Attrs, bool Delayed,
1957 DeclSpec::TST TagType, Decl *Tag) {
1958 assert(Tok.isOneOf(tok::annot_pragma_openmp, tok::annot_attr_openmp) &&
1959 "Not an OpenMP directive!");
1960 ParsingOpenMPDirectiveRAII DirScope(*this);
1961 ParenBraceBracketBalancer BalancerRAIIObj(*this);
1962 unsigned OMPVersion = Actions.getLangOpts().OpenMP;
1963
1964 SourceLocation Loc;
1965 OpenMPDirectiveKind DKind;
1966 if (Delayed) {
1967 TentativeParsingAction TPA(*this);
1968 Loc = ConsumeAnnotationToken();
1969 DKind = parseOpenMPDirectiveKind(*this);
1970 if (DKind == OMPD_declare_reduction || DKind == OMPD_declare_mapper) {
1971 // Need to delay parsing until completion of the parent class.
1972 TPA.Revert();
1973 CachedTokens Toks;
1974 unsigned Cnt = 1;
1975 Toks.push_back(Tok);
1976 while (Cnt && Tok.isNot(tok::eof)) {
1977 (void)ConsumeAnyToken();
1978 if (Tok.isOneOf(tok::annot_pragma_openmp, tok::annot_attr_openmp))
1979 ++Cnt;
1980 else if (Tok.is(tok::annot_pragma_openmp_end))
1981 --Cnt;
1982 Toks.push_back(Tok);
1983 }
1984 // Skip last annot_pragma_openmp_end.
1985 if (Cnt == 0)
1986 (void)ConsumeAnyToken();
1987 auto *LP = new LateParsedPragma(this, AS);
1988 LP->takeToks(Toks);
1989 getCurrentClass().LateParsedDeclarations.push_back(LP);
1990 return nullptr;
1991 }
1992 TPA.Commit();
1993 } else {
1994 Loc = ConsumeAnnotationToken();
1995 DKind = parseOpenMPDirectiveKind(*this);
1996 }
1997
1998 switch (DKind) {
1999 case OMPD_threadprivate: {
2000 ConsumeToken();
2001 DeclDirectiveListParserHelper Helper(this, DKind);
2002 if (!ParseOpenMPSimpleVarList(DKind, Helper,
2003 /*AllowScopeSpecifier=*/true)) {
2004 skipUntilPragmaOpenMPEnd(DKind);
2005 // Skip the last annot_pragma_openmp_end.
2006 ConsumeAnnotationToken();
2007 return Actions.OpenMP().ActOnOpenMPThreadprivateDirective(
2008 Loc, Helper.getIdentifiers());
2009 }
2010 break;
2011 }
2012 case OMPD_groupprivate: {
2013 ConsumeToken();
2014 DeclDirectiveListParserHelper Helper(this, DKind);
2015 if (!ParseOpenMPSimpleVarList(DKind, Helper,
2016 /*AllowScopeSpecifier=*/true)) {
2017 skipUntilPragmaOpenMPEnd(DKind);
2018 // Skip the last annot_pragma_openmp_end.
2019 ConsumeAnnotationToken();
2020 return Actions.OpenMP().ActOnOpenMPGroupPrivateDirective(
2021 Loc, Helper.getIdentifiers());
2022 }
2023 break;
2024 }
2025 case OMPD_allocate: {
2026 ConsumeToken();
2027 DeclDirectiveListParserHelper Helper(this, DKind);
2028 if (!ParseOpenMPSimpleVarList(DKind, Helper,
2029 /*AllowScopeSpecifier=*/true)) {
2030 SmallVector<OMPClause *, 1> Clauses;
2031 if (Tok.isNot(tok::annot_pragma_openmp_end)) {
2032 std::bitset<llvm::omp::Clause_enumSize + 1> SeenClauses;
2033 while (Tok.isNot(tok::annot_pragma_openmp_end)) {
2034 OpenMPClauseKind CKind =
2035 Tok.isAnnotation() ? OMPC_unknown
2036 : getOpenMPClauseKind(PP.getSpelling(Tok));
2037 Actions.OpenMP().StartOpenMPClause(CKind);
2038 OMPClause *Clause = ParseOpenMPClause(OMPD_allocate, CKind,
2039 !SeenClauses[unsigned(CKind)]);
2040 SkipUntil(tok::comma, tok::identifier, tok::annot_pragma_openmp_end,
2042 SeenClauses[unsigned(CKind)] = true;
2043 if (Clause != nullptr)
2044 Clauses.push_back(Clause);
2045 if (Tok.is(tok::annot_pragma_openmp_end)) {
2046 Actions.OpenMP().EndOpenMPClause();
2047 break;
2048 }
2049 // Skip ',' if any.
2050 if (Tok.is(tok::comma))
2051 ConsumeToken();
2052 Actions.OpenMP().EndOpenMPClause();
2053 }
2054 skipUntilPragmaOpenMPEnd(DKind);
2055 }
2056 // Skip the last annot_pragma_openmp_end.
2057 ConsumeAnnotationToken();
2058 return Actions.OpenMP().ActOnOpenMPAllocateDirective(
2059 Loc, Helper.getIdentifiers(), Clauses);
2060 }
2061 break;
2062 }
2063 case OMPD_requires: {
2064 SourceLocation StartLoc = ConsumeToken();
2065 SmallVector<OMPClause *, 5> Clauses;
2066 llvm::SmallBitVector SeenClauses(llvm::omp::Clause_enumSize + 1);
2067 if (Tok.is(tok::annot_pragma_openmp_end)) {
2068 Diag(Tok, diag::err_omp_expected_clause)
2069 << getOpenMPDirectiveName(OMPD_requires, OMPVersion);
2070 break;
2071 }
2072 while (Tok.isNot(tok::annot_pragma_openmp_end)) {
2073 OpenMPClauseKind CKind = Tok.isAnnotation()
2074 ? OMPC_unknown
2075 : getOpenMPClauseKind(PP.getSpelling(Tok));
2076 Actions.OpenMP().StartOpenMPClause(CKind);
2077 OMPClause *Clause = ParseOpenMPClause(OMPD_requires, CKind,
2078 !SeenClauses[unsigned(CKind)]);
2079 SkipUntil(tok::comma, tok::identifier, tok::annot_pragma_openmp_end,
2081 SeenClauses[unsigned(CKind)] = true;
2082 if (Clause != nullptr)
2083 Clauses.push_back(Clause);
2084 if (Tok.is(tok::annot_pragma_openmp_end)) {
2085 Actions.OpenMP().EndOpenMPClause();
2086 break;
2087 }
2088 // Skip ',' if any.
2089 if (Tok.is(tok::comma))
2090 ConsumeToken();
2091 Actions.OpenMP().EndOpenMPClause();
2092 }
2093 // Consume final annot_pragma_openmp_end
2094 if (Clauses.empty()) {
2095 Diag(Tok, diag::err_omp_expected_clause)
2096 << getOpenMPDirectiveName(OMPD_requires, OMPVersion);
2097 ConsumeAnnotationToken();
2098 return nullptr;
2099 }
2100 ConsumeAnnotationToken();
2101 return Actions.OpenMP().ActOnOpenMPRequiresDirective(StartLoc, Clauses);
2102 }
2103 case OMPD_error: {
2104 SmallVector<OMPClause *, 1> Clauses;
2105 SourceLocation StartLoc = ConsumeToken();
2106 ParseOpenMPClauses(DKind, Clauses, StartLoc);
2107 Actions.OpenMP().ActOnOpenMPErrorDirective(Clauses, StartLoc,
2108 SourceLocation(),
2109 /*InExContext = */ false);
2110 break;
2111 }
2112 case OMPD_assumes:
2113 case OMPD_begin_assumes:
2114 ParseOpenMPAssumesDirective(DKind, ConsumeToken());
2115 break;
2116 case OMPD_end_assumes:
2117 ParseOpenMPEndAssumesDirective(ConsumeToken());
2118 break;
2119 case OMPD_declare_reduction:
2120 ConsumeToken();
2121 if (DeclGroupPtrTy Res = ParseOpenMPDeclareReductionDirective(AS)) {
2122 skipUntilPragmaOpenMPEnd(OMPD_declare_reduction);
2123 // Skip the last annot_pragma_openmp_end.
2124 ConsumeAnnotationToken();
2125 return Res;
2126 }
2127 break;
2128 case OMPD_declare_mapper: {
2129 ConsumeToken();
2130 if (DeclGroupPtrTy Res = ParseOpenMPDeclareMapperDirective(AS)) {
2131 // Skip the last annot_pragma_openmp_end.
2132 ConsumeAnnotationToken();
2133 return Res;
2134 }
2135 break;
2136 }
2137 case OMPD_begin_declare_variant: {
2138 ConsumeToken();
2140 // Skip the last annot_pragma_openmp_end.
2141 if (!isEofOrEom())
2142 ConsumeAnnotationToken();
2143 }
2144 return nullptr;
2145 }
2146 case OMPD_end_declare_variant: {
2147 ConsumeToken();
2148 if (Actions.OpenMP().isInOpenMPDeclareVariantScope())
2149 Actions.OpenMP().ActOnOpenMPEndDeclareVariant();
2150 else
2151 Diag(Loc, diag::err_expected_begin_declare_variant);
2152 // Skip the last annot_pragma_openmp_end.
2153 ConsumeAnnotationToken();
2154 return nullptr;
2155 }
2156 case OMPD_declare_variant:
2157 case OMPD_declare_simd: {
2158 // The syntax is:
2159 // { #pragma omp declare {simd|variant} }
2160 // <function-declaration-or-definition>
2161 //
2162 CachedTokens Toks;
2163 Toks.push_back(Tok);
2164 ConsumeToken();
2165 while (Tok.isNot(tok::annot_pragma_openmp_end)) {
2166 Toks.push_back(Tok);
2168 }
2169 Toks.push_back(Tok);
2171
2172 DeclGroupPtrTy Ptr;
2173 if (Tok.isOneOf(tok::annot_pragma_openmp, tok::annot_attr_openmp)) {
2174 Ptr = ParseOpenMPDeclarativeDirectiveWithExtDecl(AS, Attrs, Delayed,
2175 TagType, Tag);
2176 } else if (Tok.isNot(tok::r_brace) && !isEofOrEom()) {
2177 // Here we expect to see some function declaration.
2178 if (AS == AS_none) {
2179 assert(TagType == DeclSpec::TST_unspecified);
2180 ParsedAttributes EmptyDeclSpecAttrs(AttrFactory);
2181 MaybeParseCXX11Attributes(Attrs);
2182 ParsingDeclSpec PDS(*this);
2183 Ptr = ParseExternalDeclaration(Attrs, EmptyDeclSpecAttrs, &PDS);
2184 } else {
2185 Ptr =
2186 ParseCXXClassMemberDeclarationWithPragmas(AS, Attrs, TagType, Tag);
2187 }
2188 }
2189 if (!Ptr) {
2190 Diag(Loc, diag::err_omp_decl_in_declare_simd_variant)
2191 << (DKind == OMPD_declare_simd ? 0 : 1);
2192 return DeclGroupPtrTy();
2193 }
2194 if (DKind == OMPD_declare_simd)
2195 return ParseOMPDeclareSimdClauses(Ptr, Toks, Loc);
2196 assert(DKind == OMPD_declare_variant &&
2197 "Expected declare variant directive only");
2198 ParseOMPDeclareVariantClauses(Ptr, Toks, Loc);
2199 return Ptr;
2200 }
2201 case OMPD_begin_declare_target:
2202 case OMPD_declare_target: {
2203 SourceLocation DTLoc = ConsumeAnyToken();
2204 bool HasClauses = Tok.isNot(tok::annot_pragma_openmp_end);
2205 SemaOpenMP::DeclareTargetContextInfo DTCI(DKind, DTLoc);
2206 if (DKind == OMPD_declare_target && !HasClauses &&
2207 getLangOpts().OpenMP >= 52)
2208 Diag(DTLoc, diag::warn_omp_deprecated_declare_target_delimited_form);
2209 if (HasClauses)
2210 ParseOMPDeclareTargetClauses(DTCI);
2211 bool HasImplicitMappings = DKind == OMPD_begin_declare_target ||
2212 !HasClauses ||
2213 (DTCI.ExplicitlyMapped.empty() && DTCI.Indirect);
2214
2215 // Skip the last annot_pragma_openmp_end.
2217
2218 if (HasImplicitMappings) {
2219 Actions.OpenMP().ActOnStartOpenMPDeclareTargetContext(DTCI);
2220 return nullptr;
2221 }
2222
2223 Actions.OpenMP().ActOnFinishedOpenMPDeclareTargetContext(DTCI);
2224 llvm::SmallVector<Decl *, 4> Decls;
2225 for (auto &It : DTCI.ExplicitlyMapped)
2226 Decls.push_back(It.first);
2227 return Actions.BuildDeclaratorGroup(Decls);
2228 }
2229 case OMPD_end_declare_target: {
2230 if (!Actions.OpenMP().isInOpenMPDeclareTargetContext()) {
2231 Diag(Tok, diag::err_omp_unexpected_directive)
2232 << 1 << getOpenMPDirectiveName(DKind, OMPVersion);
2233 break;
2234 }
2235 const SemaOpenMP::DeclareTargetContextInfo &DTCI =
2236 Actions.OpenMP().ActOnOpenMPEndDeclareTargetDirective();
2237 ParseOMPEndDeclareTargetDirective(DTCI.Kind, DKind, DTCI.Loc);
2238 return nullptr;
2239 }
2240 case OMPD_assume: {
2241 Diag(Tok, diag::err_omp_unexpected_directive)
2242 << 1 << getOpenMPDirectiveName(DKind, OMPVersion);
2243 break;
2244 }
2245 case OMPD_unknown:
2246 Diag(Tok, diag::err_omp_unknown_directive);
2247 break;
2248 default:
2249 switch (getDirectiveCategory(DKind)) {
2250 case Category::Executable:
2251 case Category::Meta:
2252 case Category::Subsidiary:
2253 case Category::Utility:
2254 Diag(Tok, diag::err_omp_unexpected_directive)
2255 << 1 << getOpenMPDirectiveName(DKind, OMPVersion);
2256 break;
2257 case Category::Declarative:
2258 case Category::Informational:
2259 break;
2260 }
2261 }
2262 while (Tok.isNot(tok::annot_pragma_openmp_end))
2265 return nullptr;
2266}
2267
2268StmtResult Parser::ParseOpenMPExecutableDirective(
2269 ParsedStmtContext StmtCtx, OpenMPDirectiveKind DKind, SourceLocation Loc,
2270 bool ReadDirectiveWithinMetadirective) {
2271 assert(isOpenMPExecutableDirective(DKind) && "Unexpected directive category");
2272 unsigned OMPVersion = Actions.getLangOpts().OpenMP;
2273
2274 bool HasAssociatedStatement = true;
2275 Association Assoc = getDirectiveAssociation(DKind);
2276
2277 // OMPD_ordered has None as association, but it comes in two variants,
2278 // the second of which is associated with a block.
2279 // OMPD_scan and OMPD_section are both "separating", but section is treated
2280 // as if it was associated with a statement, while scan is not.
2281 if (DKind != OMPD_ordered && DKind != OMPD_section &&
2282 (Assoc == Association::None || Assoc == Association::Separating)) {
2283 if ((StmtCtx & ParsedStmtContext::AllowStandaloneOpenMPDirectives) ==
2284 ParsedStmtContext()) {
2285 Diag(Tok, diag::err_omp_immediate_directive)
2286 << getOpenMPDirectiveName(DKind, OMPVersion) << 0;
2287 if (DKind == OMPD_error) {
2288 SkipUntil(tok::annot_pragma_openmp_end);
2289 return StmtError();
2290 }
2291 }
2292 HasAssociatedStatement = false;
2293 }
2294
2295 SourceLocation EndLoc;
2296 SmallVector<OMPClause *, 5> Clauses;
2297 llvm::SmallBitVector SeenClauses(llvm::omp::Clause_enumSize + 1);
2298 DeclarationNameInfo DirName;
2299 OpenMPDirectiveKind CancelRegion = OMPD_unknown;
2300 unsigned ScopeFlags = Scope::FnScope | Scope::DeclScope |
2302
2303 // Special processing for flush and depobj clauses.
2304 Token ImplicitTok;
2305 bool ImplicitClauseAllowed = false;
2306 if (DKind == OMPD_flush || DKind == OMPD_depobj) {
2307 ImplicitTok = Tok;
2308 ImplicitClauseAllowed = true;
2309 }
2310 ConsumeToken();
2311 // Parse directive name of the 'critical' directive if any.
2312 if (DKind == OMPD_critical) {
2313 BalancedDelimiterTracker T(*this, tok::l_paren,
2314 tok::annot_pragma_openmp_end);
2315 if (!T.consumeOpen()) {
2316 if (Tok.isAnyIdentifier()) {
2317 DirName =
2318 DeclarationNameInfo(Tok.getIdentifierInfo(), Tok.getLocation());
2320 } else {
2321 Diag(Tok, diag::err_omp_expected_identifier_for_critical);
2322 }
2323 T.consumeClose();
2324 }
2325 } else if (DKind == OMPD_cancellation_point || DKind == OMPD_cancel) {
2326 CancelRegion = parseOpenMPDirectiveKind(*this);
2327 if (Tok.isNot(tok::annot_pragma_openmp_end))
2329 }
2330
2331 if (isOpenMPLoopDirective(DKind))
2332 ScopeFlags |= Scope::OpenMPLoopDirectiveScope;
2333 if (isOpenMPSimdDirective(DKind))
2334 ScopeFlags |= Scope::OpenMPSimdDirectiveScope;
2335 ParseScope OMPDirectiveScope(this, ScopeFlags);
2336 Actions.OpenMP().StartOpenMPDSABlock(DKind, DirName, Actions.getCurScope(),
2337 Loc);
2338
2339 while (Tok.isNot(tok::annot_pragma_openmp_end)) {
2340 // If we are parsing for a directive within a metadirective, the directive
2341 // ends with a ')'.
2342 if (ReadDirectiveWithinMetadirective && Tok.is(tok::r_paren)) {
2343 while (Tok.isNot(tok::annot_pragma_openmp_end))
2345 break;
2346 }
2347 bool HasImplicitClause = false;
2348 if (ImplicitClauseAllowed && Tok.is(tok::l_paren)) {
2349 HasImplicitClause = true;
2350 // Push copy of the current token back to stream to properly parse
2351 // pseudo-clause OMPFlushClause or OMPDepobjClause.
2352 PP.EnterToken(Tok, /*IsReinject*/ true);
2353 PP.EnterToken(ImplicitTok, /*IsReinject*/ true);
2355 }
2356 OpenMPClauseKind CKind = Tok.isAnnotation()
2357 ? OMPC_unknown
2358 : getOpenMPClauseKind(PP.getSpelling(Tok));
2359 if (HasImplicitClause) {
2360 assert(CKind == OMPC_unknown && "Must be unknown implicit clause.");
2361 if (DKind == OMPD_flush) {
2362 CKind = OMPC_flush;
2363 } else {
2364 assert(DKind == OMPD_depobj && "Expected flush or depobj directives.");
2365 CKind = OMPC_depobj;
2366 }
2367 }
2368 // No more implicit clauses allowed.
2369 ImplicitClauseAllowed = false;
2370 Actions.OpenMP().StartOpenMPClause(CKind);
2371 HasImplicitClause = false;
2372 OMPClause *Clause =
2373 ParseOpenMPClause(DKind, CKind, !SeenClauses[unsigned(CKind)]);
2374 SeenClauses[unsigned(CKind)] = true;
2375 if (Clause)
2376 Clauses.push_back(Clause);
2377
2378 // Skip ',' if any.
2379 if (Tok.is(tok::comma))
2380 ConsumeToken();
2381 Actions.OpenMP().EndOpenMPClause();
2382 }
2383 // End location of the directive.
2384 EndLoc = Tok.getLocation();
2385 // Consume final annot_pragma_openmp_end.
2386 ConsumeAnnotationToken();
2387
2388 if (DKind == OMPD_ordered) {
2389 // If the depend or doacross clause is specified, the ordered construct
2390 // is a stand-alone directive.
2391 for (auto CK : {OMPC_depend, OMPC_doacross}) {
2392 if (SeenClauses[unsigned(CK)]) {
2393 if ((StmtCtx & ParsedStmtContext::AllowStandaloneOpenMPDirectives) ==
2394 ParsedStmtContext()) {
2395 Diag(Loc, diag::err_omp_immediate_directive)
2396 << getOpenMPDirectiveName(DKind, OMPVersion) << 1
2397 << getOpenMPClauseName(CK);
2398 }
2399 HasAssociatedStatement = false;
2400 }
2401 }
2402 }
2403
2404 if ((DKind == OMPD_tile || DKind == OMPD_stripe) &&
2405 !SeenClauses[unsigned(OMPC_sizes)]) {
2406 Diag(Loc, diag::err_omp_required_clause)
2407 << getOpenMPDirectiveName(DKind, OMPVersion) << "sizes";
2408 }
2409
2410 StmtResult AssociatedStmt;
2411 if (HasAssociatedStatement) {
2412 // The body is a block scope like in Lambdas and Blocks.
2413 Actions.OpenMP().ActOnOpenMPRegionStart(DKind, getCurScope());
2414 // FIXME: We create a bogus CompoundStmt scope to hold the contents of
2415 // the captured region. Code elsewhere assumes that any FunctionScopeInfo
2416 // should have at least one compound statement scope within it.
2417 ParsingOpenMPDirectiveRAII NormalScope(*this, /*Value=*/false);
2418 {
2419 Sema::CompoundScopeRAII Scope(Actions);
2420 AssociatedStmt = ParseStatement();
2421
2422 if (AssociatedStmt.isUsable() && isOpenMPLoopDirective(DKind) &&
2423 getLangOpts().OpenMPIRBuilder)
2424 AssociatedStmt =
2425 Actions.OpenMP().ActOnOpenMPLoopnest(AssociatedStmt.get());
2426 }
2427 AssociatedStmt =
2428 Actions.OpenMP().ActOnOpenMPRegionEnd(AssociatedStmt, Clauses);
2429 } else if (DKind == OMPD_target_update || DKind == OMPD_target_enter_data ||
2430 DKind == OMPD_target_exit_data) {
2431 Actions.OpenMP().ActOnOpenMPRegionStart(DKind, getCurScope());
2432 AssociatedStmt = (Sema::CompoundScopeRAII(Actions),
2433 Actions.ActOnCompoundStmt(Loc, Loc, {},
2434 /*isStmtExpr=*/false));
2435 AssociatedStmt =
2436 Actions.OpenMP().ActOnOpenMPRegionEnd(AssociatedStmt, Clauses);
2437 }
2438
2439 StmtResult Directive = Actions.OpenMP().ActOnOpenMPExecutableDirective(
2440 DKind, DirName, CancelRegion, Clauses, AssociatedStmt.get(), Loc, EndLoc);
2441
2442 // Exit scope.
2443 Actions.OpenMP().EndOpenMPDSABlock(Directive.get());
2444 OMPDirectiveScope.Exit();
2445
2446 return Directive;
2447}
2448
2449StmtResult Parser::ParseOpenMPInformationalDirective(
2450 ParsedStmtContext StmtCtx, OpenMPDirectiveKind DKind, SourceLocation Loc,
2451 bool ReadDirectiveWithinMetadirective) {
2452 assert(isOpenMPInformationalDirective(DKind) &&
2453 "Unexpected directive category");
2454
2455 bool HasAssociatedStatement = true;
2456
2457 SmallVector<OMPClause *, 5> Clauses;
2458 llvm::SmallBitVector SeenClauses(llvm::omp::Clause_enumSize + 1);
2459 DeclarationNameInfo DirName;
2460 unsigned ScopeFlags = Scope::FnScope | Scope::DeclScope |
2462 ParseScope OMPDirectiveScope(this, ScopeFlags);
2463
2464 Actions.OpenMP().StartOpenMPDSABlock(DKind, DirName, Actions.getCurScope(),
2465 Loc);
2466
2467 while (Tok.isNot(tok::annot_pragma_openmp_end)) {
2468 if (ReadDirectiveWithinMetadirective && Tok.is(tok::r_paren)) {
2469 while (Tok.isNot(tok::annot_pragma_openmp_end))
2471 break;
2472 }
2473
2474 OpenMPClauseKind CKind = Tok.isAnnotation()
2475 ? OMPC_unknown
2476 : getOpenMPClauseKind(PP.getSpelling(Tok));
2477 Actions.OpenMP().StartOpenMPClause(CKind);
2478 OMPClause *Clause =
2479 ParseOpenMPClause(DKind, CKind, !SeenClauses[unsigned(CKind)]);
2480 SeenClauses[unsigned(CKind)] = true;
2481 if (Clause)
2482 Clauses.push_back(Clause);
2483
2484 if (Tok.is(tok::comma))
2485 ConsumeToken();
2486 Actions.OpenMP().EndOpenMPClause();
2487 }
2488
2489 SourceLocation EndLoc = Tok.getLocation();
2490 ConsumeAnnotationToken();
2491
2492 StmtResult AssociatedStmt;
2493 if (HasAssociatedStatement) {
2494 Actions.OpenMP().ActOnOpenMPRegionStart(DKind, getCurScope());
2495 ParsingOpenMPDirectiveRAII NormalScope(*this, /*Value=*/false);
2496 {
2497 Sema::CompoundScopeRAII Scope(Actions);
2498 AssociatedStmt = ParseStatement();
2499 }
2500 AssociatedStmt =
2501 Actions.OpenMP().ActOnOpenMPRegionEnd(AssociatedStmt, Clauses);
2502 }
2503
2504 StmtResult Directive = Actions.OpenMP().ActOnOpenMPInformationalDirective(
2505 DKind, DirName, Clauses, AssociatedStmt.get(), Loc, EndLoc);
2506
2507 Actions.OpenMP().EndOpenMPDSABlock(Directive.get());
2508 OMPDirectiveScope.Exit();
2509
2510 return Directive;
2511}
2512
2513StmtResult Parser::ParseOpenMPDeclarativeOrExecutableDirective(
2514 ParsedStmtContext StmtCtx, bool ReadDirectiveWithinMetadirective) {
2515 if (!ReadDirectiveWithinMetadirective)
2516 assert(Tok.isOneOf(tok::annot_pragma_openmp, tok::annot_attr_openmp) &&
2517 "Not an OpenMP directive!");
2518 ParsingOpenMPDirectiveRAII DirScope(*this);
2519 ParenBraceBracketBalancer BalancerRAIIObj(*this);
2520 SourceLocation Loc = ReadDirectiveWithinMetadirective
2521 ? Tok.getLocation()
2522 : ConsumeAnnotationToken();
2523 unsigned OMPVersion = Actions.getLangOpts().OpenMP;
2525 if (ReadDirectiveWithinMetadirective && DKind == OMPD_unknown) {
2526 Diag(Tok, diag::err_omp_unknown_directive);
2527 return StmtError();
2528 }
2529
2531
2532 bool IsExecutable = [&]() {
2533 if (DKind == OMPD_error) // OMPD_error is handled as executable
2534 return true;
2535 auto Res = getDirectiveCategory(DKind);
2536 return Res == Category::Executable || Res == Category::Subsidiary;
2537 }();
2538
2539 if (IsExecutable) {
2540 Directive = ParseOpenMPExecutableDirective(
2541 StmtCtx, DKind, Loc, ReadDirectiveWithinMetadirective);
2542 assert(!Directive.isUnset() && "Executable directive remained unprocessed");
2543 return Directive;
2544 }
2545
2546 switch (DKind) {
2547 case OMPD_nothing:
2548 ConsumeToken();
2549 // If we are parsing the directive within a metadirective, the directive
2550 // ends with a ')'.
2551 if (ReadDirectiveWithinMetadirective && Tok.is(tok::r_paren))
2552 while (Tok.isNot(tok::annot_pragma_openmp_end))
2554 else
2555 skipUntilPragmaOpenMPEnd(DKind);
2556 if (Tok.is(tok::annot_pragma_openmp_end))
2557 ConsumeAnnotationToken();
2558 // return an empty statement
2559 return StmtEmpty();
2560 case OMPD_metadirective: {
2561 ConsumeToken();
2562 SmallVector<VariantMatchInfo, 4> VMIs;
2563
2564 // First iteration of parsing all clauses of metadirective.
2565 // This iteration only parses and collects all context selector ignoring the
2566 // associated directives.
2567 TentativeParsingAction TPA(*this);
2568 ASTContext &ASTContext = Actions.getASTContext();
2569
2570 BalancedDelimiterTracker T(*this, tok::l_paren,
2571 tok::annot_pragma_openmp_end);
2572 while (Tok.isNot(tok::annot_pragma_openmp_end)) {
2573 OpenMPClauseKind CKind = Tok.isAnnotation()
2574 ? OMPC_unknown
2575 : getOpenMPClauseKind(PP.getSpelling(Tok));
2576 // Check if the clause is unrecognized.
2577 if (CKind == OMPC_unknown) {
2578 Diag(Tok, diag::err_omp_expected_clause) << "metadirective";
2579 TPA.Revert();
2580 SkipUntil(tok::annot_pragma_openmp_end);
2581 return Directive;
2582 }
2583 if (getLangOpts().OpenMP < 52 && CKind == OMPC_otherwise)
2584 Diag(Tok, diag::err_omp_unexpected_clause)
2585 << getOpenMPClauseName(CKind) << "metadirective";
2586 if (CKind == OMPC_default && getLangOpts().OpenMP >= 52)
2587 Diag(Tok, diag::warn_omp_default_deprecated);
2588
2589 SourceLocation Loc = ConsumeToken();
2590
2591 // Parse '('.
2592 if (T.expectAndConsume(diag::err_expected_lparen_after,
2593 getOpenMPClauseName(CKind).data())) {
2594 TPA.Revert();
2595 SkipUntil(tok::annot_pragma_openmp_end);
2596 return Directive;
2597 }
2598
2599 OMPTraitInfo &TI = Actions.getASTContext().getNewOMPTraitInfo();
2600 if (CKind == OMPC_when) {
2601 // parse and get OMPTraitInfo to pass to the When clause
2602 parseOMPContextSelectors(Loc, TI);
2603 if (TI.Sets.size() == 0) {
2604 Diag(Tok, diag::err_omp_expected_context_selector) << "when clause";
2605 TPA.Commit();
2606 return Directive;
2607 }
2608
2609 // Parse ':'
2610 if (Tok.is(tok::colon))
2612 else {
2613 Diag(Tok, diag::err_omp_expected_colon) << "when clause";
2614 TPA.Commit();
2615 return Directive;
2616 }
2617 }
2618
2619 // Skip Directive for now. We will parse directive in the second iteration
2620 int paren = 0;
2621 while (Tok.isNot(tok::r_paren) || paren != 0) {
2622 if (Tok.is(tok::l_paren))
2623 paren++;
2624 if (Tok.is(tok::r_paren))
2625 paren--;
2626 if (Tok.is(tok::annot_pragma_openmp_end)) {
2627 Diag(Tok, diag::err_omp_expected_punc)
2628 << getOpenMPClauseName(CKind) << 0;
2629 TPA.Commit();
2630 return Directive;
2631 }
2633 }
2634 // Parse ')'
2635 if (Tok.is(tok::r_paren))
2636 T.consumeClose();
2637
2638 VariantMatchInfo VMI;
2639 TI.getAsVariantMatchInfo(ASTContext, VMI);
2640
2641 VMIs.push_back(VMI);
2642 }
2643
2644 TPA.Revert();
2645 // End of the first iteration. Parser is reset to the start of metadirective
2646
2647 std::function<void(StringRef)> DiagUnknownTrait =
2648 [this, Loc](StringRef ISATrait) {
2649 // TODO Track the selector locations in a way that is accessible here
2650 // to improve the diagnostic location.
2651 Diag(Loc, diag::warn_unknown_declare_variant_isa_trait) << ISATrait;
2652 };
2653 TargetOMPContext OMPCtx(ASTContext, std::move(DiagUnknownTrait),
2654 /* CurrentFunctionDecl */ nullptr,
2655 ArrayRef<llvm::omp::TraitProperty>(),
2656 Actions.OpenMP().getOpenMPDeviceNum());
2657
2658 // A single match is returned for OpenMP 5.0
2659 int BestIdx = getBestVariantMatchForContext(VMIs, OMPCtx);
2660
2661 int Idx = 0;
2662 // In OpenMP 5.0 metadirective is either replaced by another directive or
2663 // ignored.
2664 // TODO: In OpenMP 5.1 generate multiple directives based upon the matches
2665 // found by getBestWhenMatchForContext.
2666 while (Tok.isNot(tok::annot_pragma_openmp_end)) {
2667 // OpenMP 5.0 implementation - Skip to the best index found.
2668 if (Idx++ != BestIdx) {
2669 ConsumeToken(); // Consume clause name
2670 T.consumeOpen(); // Consume '('
2671 int paren = 0;
2672 // Skip everything inside the clause
2673 while (Tok.isNot(tok::r_paren) || paren != 0) {
2674 if (Tok.is(tok::l_paren))
2675 paren++;
2676 if (Tok.is(tok::r_paren))
2677 paren--;
2679 }
2680 // Parse ')'
2681 if (Tok.is(tok::r_paren))
2682 T.consumeClose();
2683 continue;
2684 }
2685
2686 OpenMPClauseKind CKind = Tok.isAnnotation()
2687 ? OMPC_unknown
2688 : getOpenMPClauseKind(PP.getSpelling(Tok));
2689 SourceLocation Loc = ConsumeToken();
2690
2691 // Parse '('.
2692 T.consumeOpen();
2693
2694 // Skip ContextSelectors for when clause
2695 if (CKind == OMPC_when) {
2696 OMPTraitInfo &TI = Actions.getASTContext().getNewOMPTraitInfo();
2697 // parse and skip the ContextSelectors
2698 parseOMPContextSelectors(Loc, TI);
2699
2700 // Parse ':'
2702 }
2703
2704 // If no directive is passed, skip in OpenMP 5.0.
2705 // TODO: Generate nothing directive from OpenMP 5.1.
2706 if (Tok.is(tok::r_paren)) {
2707 SkipUntil(tok::annot_pragma_openmp_end);
2708 break;
2709 }
2710
2711 // Parse Directive
2712 Directive = ParseOpenMPDeclarativeOrExecutableDirective(
2713 StmtCtx,
2714 /*ReadDirectiveWithinMetadirective=*/true);
2715 break;
2716 }
2717 // If no match is found and no otherwise clause is present, skip
2718 // OMP5.2 Chapter 7.4: If no otherwise clause is specified the effect is as
2719 // if one was specified without an associated directive variant.
2720 if (BestIdx == -1 && Idx > 0) {
2721 assert(Tok.is(tok::annot_pragma_openmp_end) &&
2722 "Expecting the end of the pragma here");
2723 ConsumeAnnotationToken();
2724 return StmtEmpty();
2725 }
2726 break;
2727 }
2728 case OMPD_threadprivate: {
2729 // FIXME: Should this be permitted in C++?
2730 if ((StmtCtx & ParsedStmtContext::AllowStandaloneOpenMPDirectives) ==
2731 ParsedStmtContext()) {
2732 Diag(Tok, diag::err_omp_immediate_directive)
2733 << getOpenMPDirectiveName(DKind, OMPVersion) << 0;
2734 }
2735 ConsumeToken();
2736 DeclDirectiveListParserHelper Helper(this, DKind);
2737 if (!ParseOpenMPSimpleVarList(DKind, Helper,
2738 /*AllowScopeSpecifier=*/false)) {
2739 skipUntilPragmaOpenMPEnd(DKind);
2740 DeclGroupPtrTy Res = Actions.OpenMP().ActOnOpenMPThreadprivateDirective(
2741 Loc, Helper.getIdentifiers());
2742 Directive = Actions.ActOnDeclStmt(Res, Loc, Tok.getLocation());
2743 }
2744 SkipUntil(tok::annot_pragma_openmp_end);
2745 break;
2746 }
2747 case OMPD_groupprivate: {
2748 if ((StmtCtx & ParsedStmtContext::AllowStandaloneOpenMPDirectives) ==
2749 ParsedStmtContext()) {
2750 Diag(Tok, diag::err_omp_immediate_directive)
2751 << getOpenMPDirectiveName(DKind, OMPVersion) << 0;
2752 }
2753 ConsumeToken();
2754 DeclDirectiveListParserHelper Helper(this, DKind);
2755 if (!ParseOpenMPSimpleVarList(DKind, Helper,
2756 /*AllowScopeSpecifier=*/false)) {
2757 skipUntilPragmaOpenMPEnd(DKind);
2758 DeclGroupPtrTy Res = Actions.OpenMP().ActOnOpenMPGroupPrivateDirective(
2759 Loc, Helper.getIdentifiers());
2760 Directive = Actions.ActOnDeclStmt(Res, Loc, Tok.getLocation());
2761 }
2762 SkipUntil(tok::annot_pragma_openmp_end);
2763 break;
2764 }
2765 case OMPD_allocate: {
2766 // FIXME: Should this be permitted in C++?
2767 if ((StmtCtx & ParsedStmtContext::AllowStandaloneOpenMPDirectives) ==
2768 ParsedStmtContext()) {
2769 Diag(Tok, diag::err_omp_immediate_directive)
2770 << getOpenMPDirectiveName(DKind, OMPVersion) << 0;
2771 }
2772 ConsumeToken();
2773 DeclDirectiveListParserHelper Helper(this, DKind);
2774 if (!ParseOpenMPSimpleVarList(DKind, Helper,
2775 /*AllowScopeSpecifier=*/false)) {
2776 SmallVector<OMPClause *, 1> Clauses;
2777 if (Tok.isNot(tok::annot_pragma_openmp_end)) {
2778 llvm::SmallBitVector SeenClauses(llvm::omp::Clause_enumSize + 1);
2779 while (Tok.isNot(tok::annot_pragma_openmp_end)) {
2780 OpenMPClauseKind CKind =
2781 Tok.isAnnotation() ? OMPC_unknown
2782 : getOpenMPClauseKind(PP.getSpelling(Tok));
2783 Actions.OpenMP().StartOpenMPClause(CKind);
2784 OMPClause *Clause = ParseOpenMPClause(OMPD_allocate, CKind,
2785 !SeenClauses[unsigned(CKind)]);
2786 SkipUntil(tok::comma, tok::identifier, tok::annot_pragma_openmp_end,
2788 SeenClauses[unsigned(CKind)] = true;
2789 if (Clause != nullptr)
2790 Clauses.push_back(Clause);
2791 if (Tok.is(tok::annot_pragma_openmp_end)) {
2792 Actions.OpenMP().EndOpenMPClause();
2793 break;
2794 }
2795 // Skip ',' if any.
2796 if (Tok.is(tok::comma))
2797 ConsumeToken();
2798 Actions.OpenMP().EndOpenMPClause();
2799 }
2800 skipUntilPragmaOpenMPEnd(DKind);
2801 }
2802 DeclGroupPtrTy Res = Actions.OpenMP().ActOnOpenMPAllocateDirective(
2803 Loc, Helper.getIdentifiers(), Clauses);
2804 Directive = Actions.ActOnDeclStmt(Res, Loc, Tok.getLocation());
2805 }
2806 SkipUntil(tok::annot_pragma_openmp_end);
2807 break;
2808 }
2809 case OMPD_declare_reduction:
2810 ConsumeToken();
2811 if (DeclGroupPtrTy Res =
2812 ParseOpenMPDeclareReductionDirective(/*AS=*/AS_none)) {
2813 skipUntilPragmaOpenMPEnd(OMPD_declare_reduction);
2815 Directive = Actions.ActOnDeclStmt(Res, Loc, Tok.getLocation());
2816 } else {
2817 SkipUntil(tok::annot_pragma_openmp_end);
2818 }
2819 break;
2820 case OMPD_declare_mapper: {
2821 ConsumeToken();
2822 if (DeclGroupPtrTy Res =
2823 ParseOpenMPDeclareMapperDirective(/*AS=*/AS_none)) {
2824 // Skip the last annot_pragma_openmp_end.
2825 ConsumeAnnotationToken();
2826 Directive = Actions.ActOnDeclStmt(Res, Loc, Tok.getLocation());
2827 } else {
2828 SkipUntil(tok::annot_pragma_openmp_end);
2829 }
2830 break;
2831 }
2832 case OMPD_declare_target: {
2833 SourceLocation DTLoc = ConsumeAnyToken();
2834 bool HasClauses = Tok.isNot(tok::annot_pragma_openmp_end);
2835 SemaOpenMP::DeclareTargetContextInfo DTCI(DKind, DTLoc);
2836 if (HasClauses)
2837 ParseOMPDeclareTargetClauses(DTCI);
2838 bool HasImplicitMappings =
2839 !HasClauses || (DTCI.ExplicitlyMapped.empty() && DTCI.Indirect);
2840
2841 if (HasImplicitMappings) {
2842 Diag(Tok, diag::err_omp_unexpected_directive)
2843 << 1 << getOpenMPDirectiveName(DKind, OMPVersion);
2844 SkipUntil(tok::annot_pragma_openmp_end);
2845 break;
2846 }
2847
2848 // Skip the last annot_pragma_openmp_end.
2850
2851 Actions.OpenMP().ActOnFinishedOpenMPDeclareTargetContext(DTCI);
2852 break;
2853 }
2854 case OMPD_begin_declare_variant: {
2855 ConsumeToken();
2857 // Skip the last annot_pragma_openmp_end.
2858 if (!isEofOrEom())
2859 ConsumeAnnotationToken();
2860 }
2861 return Directive;
2862 }
2863 case OMPD_end_declare_variant: {
2864 ConsumeToken();
2865 if (Actions.OpenMP().isInOpenMPDeclareVariantScope())
2866 Actions.OpenMP().ActOnOpenMPEndDeclareVariant();
2867 else
2868 Diag(Loc, diag::err_expected_begin_declare_variant);
2869 ConsumeAnnotationToken();
2870 break;
2871 }
2872 case OMPD_declare_simd:
2873 case OMPD_begin_declare_target:
2874 case OMPD_end_declare_target:
2875 case OMPD_requires:
2876 case OMPD_declare_variant:
2877 Diag(Tok, diag::err_omp_unexpected_directive)
2878 << 1 << getOpenMPDirectiveName(DKind, OMPVersion);
2879 SkipUntil(tok::annot_pragma_openmp_end);
2880 break;
2881 case OMPD_assume: {
2882 ConsumeToken();
2883 Directive = ParseOpenMPInformationalDirective(
2884 StmtCtx, DKind, Loc, ReadDirectiveWithinMetadirective);
2885 assert(!Directive.isUnset() &&
2886 "Informational directive remains unprocessed");
2887 return Directive;
2888 }
2889 case OMPD_unknown:
2890 default:
2891 Diag(Tok, diag::err_omp_unknown_directive);
2892 SkipUntil(tok::annot_pragma_openmp_end);
2893 break;
2894 }
2895 return Directive;
2896}
2897
2898bool Parser::ParseOpenMPSimpleVarList(
2900 const llvm::function_ref<void(CXXScopeSpec &, DeclarationNameInfo)>
2901 &Callback,
2902 bool AllowScopeSpecifier) {
2903 unsigned OMPVersion = Actions.getLangOpts().OpenMP;
2904 // Parse '('.
2905 BalancedDelimiterTracker T(*this, tok::l_paren, tok::annot_pragma_openmp_end);
2906 if (T.expectAndConsume(diag::err_expected_lparen_after,
2907 getOpenMPDirectiveName(Kind, OMPVersion).data()))
2908 return true;
2909 bool IsCorrect = true;
2910 bool NoIdentIsFound = true;
2911
2912 // Read tokens while ')' or annot_pragma_openmp_end is not found.
2913 while (Tok.isNot(tok::r_paren) && Tok.isNot(tok::annot_pragma_openmp_end)) {
2914 CXXScopeSpec SS;
2915 UnqualifiedId Name;
2916 // Read var name.
2917 Token PrevTok = Tok;
2918 NoIdentIsFound = false;
2919
2920 if (AllowScopeSpecifier && getLangOpts().CPlusPlus &&
2921 ParseOptionalCXXScopeSpecifier(SS, /*ObjectType=*/nullptr,
2922 /*ObjectHasErrors=*/false, false)) {
2923 IsCorrect = false;
2924 SkipUntil(tok::comma, tok::r_paren, tok::annot_pragma_openmp_end,
2926 } else if (ParseUnqualifiedId(SS, /*ObjectType=*/nullptr,
2927 /*ObjectHadErrors=*/false, false, false,
2928 false, false, nullptr, Name)) {
2929 IsCorrect = false;
2930 SkipUntil(tok::comma, tok::r_paren, tok::annot_pragma_openmp_end,
2932 } else if (Tok.isNot(tok::comma) && Tok.isNot(tok::r_paren) &&
2933 Tok.isNot(tok::annot_pragma_openmp_end)) {
2934 IsCorrect = false;
2935 SkipUntil(tok::comma, tok::r_paren, tok::annot_pragma_openmp_end,
2937 Diag(PrevTok.getLocation(), diag::err_expected)
2938 << tok::identifier
2939 << SourceRange(PrevTok.getLocation(), PrevTokLocation);
2940 } else {
2941 Callback(SS, Actions.GetNameFromUnqualifiedId(Name));
2942 }
2943 // Consume ','.
2944 if (Tok.is(tok::comma)) {
2945 ConsumeToken();
2946 }
2947 }
2948
2949 if (NoIdentIsFound) {
2950 Diag(Tok, diag::err_expected) << tok::identifier;
2951 IsCorrect = false;
2952 }
2953
2954 // Parse ')'.
2955 IsCorrect = !T.consumeClose() && IsCorrect;
2956
2957 return !IsCorrect;
2958}
2959
2960OMPClause *Parser::ParseOpenMPSizesClause() {
2961 SourceLocation ClauseNameLoc, OpenLoc, CloseLoc;
2962 SmallVector<Expr *, 4> ValExprs;
2963 if (ParseOpenMPExprListClause(OMPC_sizes, ClauseNameLoc, OpenLoc, CloseLoc,
2964 ValExprs))
2965 return nullptr;
2966
2967 return Actions.OpenMP().ActOnOpenMPSizesClause(ValExprs, ClauseNameLoc,
2968 OpenLoc, CloseLoc);
2969}
2970
2971OMPClause *Parser::ParseOpenMPPermutationClause() {
2972 SourceLocation ClauseNameLoc, OpenLoc, CloseLoc;
2973 SmallVector<Expr *> ArgExprs;
2974 if (ParseOpenMPExprListClause(OMPC_permutation, ClauseNameLoc, OpenLoc,
2975 CloseLoc, ArgExprs,
2976 /*ReqIntConst=*/true))
2977 return nullptr;
2978
2979 return Actions.OpenMP().ActOnOpenMPPermutationClause(ArgExprs, ClauseNameLoc,
2980 OpenLoc, CloseLoc);
2981}
2982
2983OMPClause *Parser::ParseOpenMPUsesAllocatorClause(OpenMPDirectiveKind DKind) {
2984 SourceLocation Loc = Tok.getLocation();
2986
2987 // Parse '('.
2988 BalancedDelimiterTracker T(*this, tok::l_paren, tok::annot_pragma_openmp_end);
2989 if (T.expectAndConsume(diag::err_expected_lparen_after, "uses_allocator"))
2990 return nullptr;
2991 SmallVector<SemaOpenMP::UsesAllocatorsData, 4> Data;
2992 do {
2993 // Parse 'traits(expr) : Allocator' for >=5.2
2994 if (getLangOpts().OpenMP >= 52 && Tok.is(tok::identifier) &&
2995 Tok.getIdentifierInfo()->getName() == "traits") {
2996
2997 SemaOpenMP::UsesAllocatorsData &D = Data.emplace_back();
2998
2999 ConsumeToken();
3000
3001 // Parse '(' <expr> ')'
3002 BalancedDelimiterTracker TraitParens(*this, tok::l_paren,
3003 tok::annot_pragma_openmp_end);
3004 TraitParens.consumeOpen();
3005 ExprResult AllocatorTraits =
3006 getLangOpts().CPlusPlus ? ParseCXXIdExpression() : ParseExpression();
3007 TraitParens.consumeClose();
3008
3009 if (AllocatorTraits.isInvalid()) {
3010 SkipUntil(
3011 {tok::comma, tok::semi, tok::r_paren, tok::annot_pragma_openmp_end},
3013 break;
3014 }
3015
3016 // Expect ':'
3017 if (Tok.isNot(tok::colon)) {
3018 Diag(Tok, diag::err_expected) << tok::colon;
3019 SkipUntil(
3020 {tok::comma, tok::semi, tok::r_paren, tok::annot_pragma_openmp_end},
3022 continue;
3023 }
3024 ConsumeToken();
3025
3026 CXXScopeSpec SS;
3027 Token Replacement;
3028 ExprResult AllocatorExpr =
3029 getLangOpts().CPlusPlus
3030 ? ParseCXXIdExpression()
3031 : tryParseCXXIdExpression(SS, /*isAddressOfOperand=*/false,
3032 Replacement);
3033
3034 if (AllocatorExpr.isInvalid()) {
3035 SkipUntil(
3036 {tok::comma, tok::semi, tok::r_paren, tok::annot_pragma_openmp_end},
3038 break;
3039 }
3040
3041 D.Allocator = AllocatorExpr.get();
3042 D.AllocatorTraits = AllocatorTraits.get();
3043 D.LParenLoc = TraitParens.getOpenLocation();
3044 D.RParenLoc = TraitParens.getCloseLocation();
3045
3046 // Separator handling(;)
3047 if (Tok.is(tok::comma)) {
3048 // In 5.2, comma is invalid
3049 Diag(Tok.getLocation(), diag::err_omp_allocator_comma_separator)
3050 << FixItHint::CreateReplacement(Tok.getLocation(), ";");
3052 } else if (Tok.is(tok::semi)) {
3053 ConsumeAnyToken(); // valid separator
3054 }
3055
3056 continue;
3057 }
3058
3059 // Parse 'Allocator(expr)' for <5.2
3060 CXXScopeSpec SS;
3061 Token Replacement;
3062 ExprResult Allocator =
3063 getLangOpts().CPlusPlus
3064 ? ParseCXXIdExpression()
3065 : tryParseCXXIdExpression(SS, /*isAddressOfOperand=*/false,
3066 Replacement);
3067 if (Allocator.isInvalid()) {
3068 SkipUntil(tok::comma, tok::r_paren, tok::annot_pragma_openmp_end,
3069 StopBeforeMatch);
3070 break;
3071 }
3072 SemaOpenMP::UsesAllocatorsData &D = Data.emplace_back();
3073 D.Allocator = Allocator.get();
3074 if (Tok.is(tok::l_paren)) {
3075 BalancedDelimiterTracker T(*this, tok::l_paren,
3076 tok::annot_pragma_openmp_end);
3077 T.consumeOpen();
3078 ExprResult AllocatorTraits =
3079 getLangOpts().CPlusPlus ? ParseCXXIdExpression() : ParseExpression();
3080 T.consumeClose();
3081 if (AllocatorTraits.isInvalid()) {
3082 SkipUntil(tok::comma, tok::r_paren, tok::annot_pragma_openmp_end,
3083 StopBeforeMatch);
3084 break;
3085 }
3086 D.AllocatorTraits = AllocatorTraits.get();
3087 D.LParenLoc = T.getOpenLocation();
3088 D.RParenLoc = T.getCloseLocation();
3089
3090 // Deprecation diagnostic in >= 5.2
3091 if (getLangOpts().OpenMP >= 52) {
3092 Diag(Loc, diag::err_omp_deprecate_old_syntax)
3093 << "allocator(expr)" // %0: old form
3094 << "uses_allocators" // %1: clause name
3095 << "traits(expr): alloc"; // %2: suggested new form
3096 }
3097 }
3098 if (Tok.isNot(tok::comma) && Tok.isNot(tok::r_paren))
3099 Diag(Tok, diag::err_omp_expected_punc) << "uses_allocators" << 0;
3100 // Parse ','
3101 if (Tok.is(tok::comma))
3102 ConsumeAnyToken();
3103 } while (Tok.isNot(tok::r_paren) && Tok.isNot(tok::annot_pragma_openmp_end));
3104 T.consumeClose();
3105 return Actions.OpenMP().ActOnOpenMPUsesAllocatorClause(
3106 Loc, T.getOpenLocation(), T.getCloseLocation(), Data);
3107}
3108
3109OMPClause *Parser::ParseOpenMPClause(OpenMPDirectiveKind DKind,
3110 OpenMPClauseKind CKind, bool FirstClause) {
3111 OMPClauseKind = CKind;
3112 OMPClause *Clause = nullptr;
3113 bool ErrorFound = false;
3114 bool WrongDirective = false;
3115 unsigned OMPVersion = Actions.getLangOpts().OpenMP;
3116
3117 // Check if clause is allowed for the given directive.
3118 if (CKind != OMPC_unknown &&
3119 !isAllowedClauseForDirective(DKind, CKind, getLangOpts().OpenMP)) {
3120 Diag(Tok, diag::err_omp_unexpected_clause)
3121 << getOpenMPClauseName(CKind)
3122 << getOpenMPDirectiveName(DKind, OMPVersion);
3123 ErrorFound = true;
3124 WrongDirective = true;
3125 }
3126
3127 switch (CKind) {
3128 case OMPC_final:
3129 case OMPC_num_threads:
3130 case OMPC_safelen:
3131 case OMPC_simdlen:
3132 case OMPC_collapse:
3133 case OMPC_ordered:
3134 case OMPC_priority:
3135 case OMPC_grainsize:
3136 case OMPC_num_tasks:
3137 case OMPC_hint:
3138 case OMPC_allocator:
3139 case OMPC_depobj:
3140 case OMPC_detach:
3141 case OMPC_novariants:
3142 case OMPC_nocontext:
3143 case OMPC_filter:
3144 case OMPC_partial:
3145 case OMPC_align:
3146 case OMPC_message:
3147 case OMPC_ompx_dyn_cgroup_mem:
3148 // OpenMP [2.5, Restrictions]
3149 // At most one num_threads clause can appear on the directive.
3150 // OpenMP [2.8.1, simd construct, Restrictions]
3151 // Only one safelen clause can appear on a simd directive.
3152 // Only one simdlen clause can appear on a simd directive.
3153 // Only one collapse clause can appear on a simd directive.
3154 // OpenMP [2.11.1, task Construct, Restrictions]
3155 // At most one if clause can appear on the directive.
3156 // At most one final clause can appear on the directive.
3157 // OpenMP [teams Construct, Restrictions]
3158 // At most one num_teams clause can appear on the directive.
3159 // At most one thread_limit clause can appear on the directive.
3160 // OpenMP [2.9.1, task Construct, Restrictions]
3161 // At most one priority clause can appear on the directive.
3162 // OpenMP [2.9.2, taskloop Construct, Restrictions]
3163 // At most one grainsize clause can appear on the directive.
3164 // OpenMP [2.9.2, taskloop Construct, Restrictions]
3165 // At most one num_tasks clause can appear on the directive.
3166 // OpenMP [2.11.3, allocate Directive, Restrictions]
3167 // At most one allocator clause can appear on the directive.
3168 // OpenMP 5.0, 2.10.1 task Construct, Restrictions.
3169 // At most one detach clause can appear on the directive.
3170 // OpenMP 5.1, 2.3.6 dispatch Construct, Restrictions.
3171 // At most one novariants clause can appear on a dispatch directive.
3172 // At most one nocontext clause can appear on a dispatch directive.
3173 // OpenMP [5.1, error directive, Restrictions]
3174 // At most one message clause can appear on the directive
3175 if (!FirstClause) {
3176 Diag(Tok, diag::err_omp_more_one_clause)
3177 << getOpenMPDirectiveName(DKind, OMPVersion)
3178 << getOpenMPClauseName(CKind) << 0;
3179 ErrorFound = true;
3180 }
3181
3182 if ((CKind == OMPC_ordered || CKind == OMPC_partial) &&
3183 PP.LookAhead(/*N=*/0).isNot(tok::l_paren))
3184 Clause = ParseOpenMPClause(CKind, WrongDirective);
3185 else if (CKind == OMPC_grainsize || CKind == OMPC_num_tasks ||
3186 CKind == OMPC_num_threads)
3187 Clause = ParseOpenMPSingleExprWithArgClause(DKind, CKind, WrongDirective);
3188 else
3189 Clause = ParseOpenMPSingleExprClause(CKind, WrongDirective);
3190 break;
3191 case OMPC_fail:
3192 case OMPC_proc_bind:
3193 case OMPC_atomic_default_mem_order:
3194 case OMPC_at:
3195 case OMPC_severity:
3196 case OMPC_bind:
3197 // OpenMP [2.14.3.1, Restrictions]
3198 // Only a single default clause may be specified on a parallel, task or
3199 // teams directive.
3200 // OpenMP [2.5, parallel Construct, Restrictions]
3201 // At most one proc_bind clause can appear on the directive.
3202 // OpenMP [5.0, Requires directive, Restrictions]
3203 // At most one atomic_default_mem_order clause can appear
3204 // on the directive
3205 // OpenMP [5.1, error directive, Restrictions]
3206 // At most one at clause can appear on the directive
3207 // At most one severity clause can appear on the directive
3208 // OpenMP 5.1, 2.11.7 loop Construct, Restrictions.
3209 // At most one bind clause can appear on a loop directive.
3210 if (!FirstClause) {
3211 Diag(Tok, diag::err_omp_more_one_clause)
3212 << getOpenMPDirectiveName(DKind, OMPVersion)
3213 << getOpenMPClauseName(CKind) << 0;
3214 ErrorFound = true;
3215 }
3216
3217 Clause = ParseOpenMPSimpleClause(CKind, WrongDirective);
3218 break;
3219 case OMPC_device:
3220 case OMPC_schedule:
3221 case OMPC_dist_schedule:
3222 case OMPC_defaultmap:
3223 case OMPC_default:
3224 case OMPC_order:
3225 // OpenMP [2.7.1, Restrictions, p. 3]
3226 // Only one schedule clause can appear on a loop directive.
3227 // OpenMP 4.5 [2.10.4, Restrictions, p. 106]
3228 // At most one defaultmap clause can appear on the directive.
3229 // OpenMP 5.0 [2.12.5, target construct, Restrictions]
3230 // At most one device clause can appear on the directive.
3231 // OpenMP 5.1 [2.11.3, order clause, Restrictions]
3232 // At most one order clause may appear on a construct.
3233 if ((getLangOpts().OpenMP < 50 || CKind != OMPC_defaultmap) &&
3234 (CKind != OMPC_order || getLangOpts().OpenMP >= 51) && !FirstClause) {
3235 Diag(Tok, diag::err_omp_more_one_clause)
3236 << getOpenMPDirectiveName(DKind, OMPVersion)
3237 << getOpenMPClauseName(CKind) << 0;
3238 ErrorFound = true;
3239 }
3240 [[fallthrough]];
3241 case OMPC_if:
3242 Clause = ParseOpenMPSingleExprWithArgClause(DKind, CKind, WrongDirective);
3243 break;
3244 case OMPC_holds:
3245 Clause = ParseOpenMPSingleExprClause(CKind, WrongDirective);
3246 break;
3247 case OMPC_nowait:
3248 case OMPC_untied:
3249 case OMPC_mergeable:
3250 case OMPC_read:
3251 case OMPC_write:
3252 case OMPC_capture:
3253 case OMPC_compare:
3254 case OMPC_seq_cst:
3255 case OMPC_acq_rel:
3256 case OMPC_acquire:
3257 case OMPC_release:
3258 case OMPC_relaxed:
3259 case OMPC_weak:
3260 case OMPC_threads:
3261 case OMPC_simd:
3262 case OMPC_nogroup:
3263 case OMPC_unified_address:
3264 case OMPC_unified_shared_memory:
3265 case OMPC_reverse_offload:
3266 case OMPC_dynamic_allocators:
3267 case OMPC_full:
3268 // OpenMP [2.7.1, Restrictions, p. 9]
3269 // Only one ordered clause can appear on a loop directive.
3270 // OpenMP [2.7.1, Restrictions, C/C++, p. 4]
3271 // Only one nowait clause can appear on a for directive.
3272 // OpenMP [5.0, Requires directive, Restrictions]
3273 // Each of the requires clauses can appear at most once on the directive.
3274 if (!FirstClause) {
3275 Diag(Tok, diag::err_omp_more_one_clause)
3276 << getOpenMPDirectiveName(DKind, OMPVersion)
3277 << getOpenMPClauseName(CKind) << 0;
3278 ErrorFound = true;
3279 }
3280
3281 Clause = ParseOpenMPClause(CKind, WrongDirective);
3282 break;
3283 case OMPC_self_maps:
3284 // OpenMP [6.0, self_maps clause]
3285 if (getLangOpts().OpenMP < 60) {
3286 Diag(Tok, diag::err_omp_expected_clause)
3287 << getOpenMPDirectiveName(OMPD_requires, OMPVersion);
3288 ErrorFound = true;
3289 }
3290 if (!FirstClause) {
3291 Diag(Tok, diag::err_omp_more_one_clause)
3292 << getOpenMPDirectiveName(DKind, OMPVersion)
3293 << getOpenMPClauseName(CKind) << 0;
3294 ErrorFound = true;
3295 }
3296 Clause = ParseOpenMPClause(CKind, WrongDirective);
3297 break;
3298 case OMPC_update:
3299 if (!FirstClause) {
3300 Diag(Tok, diag::err_omp_more_one_clause)
3301 << getOpenMPDirectiveName(DKind, OMPVersion)
3302 << getOpenMPClauseName(CKind) << 0;
3303 ErrorFound = true;
3304 }
3305
3306 Clause = (DKind == OMPD_depobj)
3307 ? ParseOpenMPSimpleClause(CKind, WrongDirective)
3308 : ParseOpenMPClause(CKind, WrongDirective);
3309 break;
3310 case OMPC_num_teams:
3311 case OMPC_thread_limit:
3312 if (!FirstClause) {
3313 Diag(Tok, diag::err_omp_more_one_clause)
3314 << getOpenMPDirectiveName(DKind, OMPVersion)
3315 << getOpenMPClauseName(CKind) << 0;
3316 ErrorFound = true;
3317 }
3318 [[fallthrough]];
3319 case OMPC_private:
3320 case OMPC_firstprivate:
3321 case OMPC_lastprivate:
3322 case OMPC_shared:
3323 case OMPC_reduction:
3324 case OMPC_task_reduction:
3325 case OMPC_in_reduction:
3326 case OMPC_linear:
3327 case OMPC_aligned:
3328 case OMPC_copyin:
3329 case OMPC_copyprivate:
3330 case OMPC_flush:
3331 case OMPC_depend:
3332 case OMPC_map:
3333 case OMPC_to:
3334 case OMPC_from:
3335 case OMPC_use_device_ptr:
3336 case OMPC_use_device_addr:
3337 case OMPC_is_device_ptr:
3338 case OMPC_has_device_addr:
3339 case OMPC_allocate:
3340 case OMPC_nontemporal:
3341 case OMPC_inclusive:
3342 case OMPC_exclusive:
3343 case OMPC_affinity:
3344 case OMPC_doacross:
3345 case OMPC_enter:
3346 if (getLangOpts().OpenMP >= 52 && DKind == OMPD_ordered &&
3347 CKind == OMPC_depend)
3348 Diag(Tok, diag::warn_omp_depend_in_ordered_deprecated);
3349 Clause = ParseOpenMPVarListClause(DKind, CKind, WrongDirective);
3350 break;
3351 case OMPC_sizes:
3352 if (!FirstClause) {
3353 Diag(Tok, diag::err_omp_more_one_clause)
3354 << getOpenMPDirectiveName(DKind, OMPVersion)
3355 << getOpenMPClauseName(CKind) << 0;
3356 ErrorFound = true;
3357 }
3358
3359 Clause = ParseOpenMPSizesClause();
3360 break;
3361 case OMPC_permutation:
3362 if (!FirstClause) {
3363 Diag(Tok, diag::err_omp_more_one_clause)
3364 << getOpenMPDirectiveName(DKind, OMPVersion)
3365 << getOpenMPClauseName(CKind) << 0;
3366 ErrorFound = true;
3367 }
3368 Clause = ParseOpenMPPermutationClause();
3369 break;
3370 case OMPC_uses_allocators:
3371 Clause = ParseOpenMPUsesAllocatorClause(DKind);
3372 break;
3373 case OMPC_destroy:
3374 if (DKind != OMPD_interop) {
3375 if (!FirstClause) {
3376 Diag(Tok, diag::err_omp_more_one_clause)
3377 << getOpenMPDirectiveName(DKind, OMPVersion)
3378 << getOpenMPClauseName(CKind) << 0;
3379 ErrorFound = true;
3380 }
3381 Clause = ParseOpenMPClause(CKind, WrongDirective);
3382 break;
3383 }
3384 [[fallthrough]];
3385 case OMPC_init:
3386 case OMPC_use:
3387 Clause = ParseOpenMPInteropClause(CKind, WrongDirective);
3388 break;
3389 case OMPC_device_type:
3390 case OMPC_unknown:
3391 skipUntilPragmaOpenMPEnd(DKind);
3392 break;
3393 case OMPC_threadprivate:
3394 case OMPC_groupprivate:
3395 case OMPC_uniform:
3396 case OMPC_match:
3397 if (!WrongDirective)
3398 Diag(Tok, diag::err_omp_unexpected_clause)
3399 << getOpenMPClauseName(CKind)
3400 << getOpenMPDirectiveName(DKind, OMPVersion);
3401 SkipUntil(tok::comma, tok::annot_pragma_openmp_end, StopBeforeMatch);
3402 break;
3403 case OMPC_absent:
3404 case OMPC_contains: {
3405 SourceLocation Loc = ConsumeToken();
3406 SourceLocation LLoc = Tok.getLocation();
3407 SourceLocation RLoc;
3408 llvm::SmallVector<OpenMPDirectiveKind, 4> DKVec;
3409 BalancedDelimiterTracker T(*this, tok::l_paren);
3410 T.consumeOpen();
3411 do {
3412 OpenMPDirectiveKind DK = getOpenMPDirectiveKind(PP.getSpelling(Tok));
3413 if (DK == OMPD_unknown) {
3414 skipUntilPragmaOpenMPEnd(OMPD_assume);
3415 Diag(Tok, diag::err_omp_unexpected_clause)
3416 << getOpenMPClauseName(CKind)
3417 << getOpenMPDirectiveName(DKind, OMPVersion);
3418 break;
3419 }
3421 DKVec.push_back(DK);
3422 ConsumeToken();
3423 } else {
3424 Diag(Tok, diag::err_omp_unexpected_clause)
3425 << getOpenMPClauseName(CKind)
3426 << getOpenMPDirectiveName(DKind, OMPVersion);
3427 }
3428 } while (TryConsumeToken(tok::comma));
3429 RLoc = Tok.getLocation();
3430 T.consumeClose();
3431 Clause = Actions.OpenMP().ActOnOpenMPDirectivePresenceClause(
3432 CKind, DKVec, Loc, LLoc, RLoc);
3433 break;
3434 }
3435 case OMPC_no_openmp:
3436 case OMPC_no_openmp_routines:
3437 case OMPC_no_openmp_constructs:
3438 case OMPC_no_parallelism: {
3439 if (!FirstClause) {
3440 Diag(Tok, diag::err_omp_more_one_clause)
3441 << getOpenMPDirectiveName(DKind, OMPVersion)
3442 << getOpenMPClauseName(CKind) << 0;
3443 ErrorFound = true;
3444 }
3445 SourceLocation Loc = ConsumeToken();
3446 Clause = Actions.OpenMP().ActOnOpenMPNullaryAssumptionClause(
3447 CKind, Loc, Tok.getLocation());
3448 break;
3449 }
3450 case OMPC_ompx_attribute:
3451 Clause = ParseOpenMPOMPXAttributesClause(WrongDirective);
3452 break;
3453 case OMPC_ompx_bare:
3454 if (DKind == llvm::omp::Directive::OMPD_target) {
3455 // Flang splits the combined directives which requires OMPD_target to be
3456 // marked as accepting the `ompx_bare` clause in `OMP.td`. Thus, we need
3457 // to explicitly check whether this clause is applied to an `omp target`
3458 // without `teams` and emit an error.
3459 Diag(Tok, diag::err_omp_unexpected_clause)
3460 << getOpenMPClauseName(CKind)
3461 << getOpenMPDirectiveName(DKind, OMPVersion);
3462 ErrorFound = true;
3463 WrongDirective = true;
3464 }
3465 if (WrongDirective)
3466 Diag(Tok, diag::note_ompx_bare_clause)
3467 << getOpenMPClauseName(CKind) << "target teams";
3468 if (!ErrorFound && !getLangOpts().OpenMPExtensions) {
3469 Diag(Tok, diag::err_omp_unexpected_clause_extension_only)
3470 << getOpenMPClauseName(CKind)
3471 << getOpenMPDirectiveName(DKind, OMPVersion);
3472 ErrorFound = true;
3473 }
3474 Clause = ParseOpenMPClause(CKind, WrongDirective);
3475 break;
3476 default:
3477 break;
3478 }
3479 return ErrorFound ? nullptr : Clause;
3480}
3481
3482/// Parses simple expression in parens for single-expression clauses of OpenMP
3483/// constructs.
3484/// \param RLoc Returned location of right paren.
3486 SourceLocation &RLoc,
3487 bool IsAddressOfOperand) {
3488 BalancedDelimiterTracker T(*this, tok::l_paren, tok::annot_pragma_openmp_end);
3489 if (T.expectAndConsume(diag::err_expected_lparen_after, ClauseName.data()))
3490 return ExprError();
3491
3492 SourceLocation ELoc = Tok.getLocation();
3493 ExprResult LHS(
3494 ParseCastExpression(CastParseKind::AnyCastExpr, IsAddressOfOperand,
3496 ExprResult Val(ParseRHSOfBinaryExpression(LHS, prec::Conditional));
3497 Val = Actions.ActOnFinishFullExpr(Val.get(), ELoc, /*DiscardedValue*/ false);
3498
3499 // Parse ')'.
3500 RLoc = Tok.getLocation();
3501 if (!T.consumeClose())
3502 RLoc = T.getCloseLocation();
3503
3504 return Val;
3505}
3506
3507OMPClause *Parser::ParseOpenMPSingleExprClause(OpenMPClauseKind Kind,
3508 bool ParseOnly) {
3510 SourceLocation LLoc = Tok.getLocation();
3511 SourceLocation RLoc;
3512
3513 ExprResult Val = ParseOpenMPParensExpr(getOpenMPClauseName(Kind), RLoc);
3514
3515 if (Val.isInvalid())
3516 return nullptr;
3517
3518 if (ParseOnly)
3519 return nullptr;
3520 return Actions.OpenMP().ActOnOpenMPSingleExprClause(Kind, Val.get(), Loc,
3521 LLoc, RLoc);
3522}
3523
3524bool Parser::ParseOpenMPIndirectClause(
3525 SemaOpenMP::DeclareTargetContextInfo &DTCI, bool ParseOnly) {
3527 SourceLocation RLoc;
3528
3529 if (Tok.isNot(tok::l_paren)) {
3530 if (ParseOnly)
3531 return false;
3532 DTCI.Indirect = nullptr;
3533 return true;
3534 }
3535
3536 ExprResult Val =
3537 ParseOpenMPParensExpr(getOpenMPClauseName(OMPC_indirect), RLoc);
3538 if (Val.isInvalid())
3539 return false;
3540
3541 if (ParseOnly)
3542 return false;
3543
3544 if (!Val.get()->isValueDependent() && !Val.get()->isTypeDependent() &&
3545 !Val.get()->isInstantiationDependent() &&
3547 ExprResult Ret = Actions.CheckBooleanCondition(Loc, Val.get());
3548 if (Ret.isInvalid())
3549 return false;
3550 llvm::APSInt Result;
3551 Ret = Actions.VerifyIntegerConstantExpression(Val.get(), &Result,
3553 if (Ret.isInvalid())
3554 return false;
3555 DTCI.Indirect = Val.get();
3556 return true;
3557 }
3558 return false;
3559}
3560
3561bool Parser::ParseOMPInteropInfo(OMPInteropInfo &InteropInfo,
3562 OpenMPClauseKind Kind) {
3563 const Token &Tok = getCurToken();
3564 bool HasError = false;
3565 bool IsTarget = false;
3566 bool IsTargetSync = false;
3567
3568 while (Tok.is(tok::identifier)) {
3569 // Currently prefer_type is only allowed with 'init' and it must be first.
3570 bool PreferTypeAllowed = Kind == OMPC_init &&
3571 InteropInfo.PreferTypes.empty() && !IsTarget &&
3572 !IsTargetSync;
3573 if (Tok.getIdentifierInfo()->isStr("target")) {
3574 // OpenMP 5.1 [2.15.1, interop Construct, Restrictions]
3575 // Each interop-type may be specified on an action-clause at most
3576 // once.
3577 if (IsTarget)
3578 Diag(Tok, diag::warn_omp_more_one_interop_type) << "target";
3579 IsTarget = true;
3580 ConsumeToken();
3581 } else if (Tok.getIdentifierInfo()->isStr("targetsync")) {
3582 if (IsTargetSync)
3583 Diag(Tok, diag::warn_omp_more_one_interop_type) << "targetsync";
3584 IsTargetSync = true;
3585 ConsumeToken();
3586 } else if (Tok.getIdentifierInfo()->isStr("prefer_type") &&
3587 PreferTypeAllowed) {
3588 ConsumeToken();
3589 BalancedDelimiterTracker PT(*this, tok::l_paren,
3590 tok::annot_pragma_openmp_end);
3591 if (PT.expectAndConsume(diag::err_expected_lparen_after, "prefer_type"))
3592 HasError = true;
3593
3594 while (Tok.isNot(tok::r_paren)) {
3595 SourceLocation Loc = Tok.getLocation();
3596 ExprResult LHS = ParseCastExpression(CastParseKind::AnyCastExpr);
3597 ExprResult PTExpr = ParseRHSOfBinaryExpression(LHS, prec::Conditional);
3598 PTExpr = Actions.ActOnFinishFullExpr(PTExpr.get(), Loc,
3599 /*DiscardedValue=*/false);
3600 if (PTExpr.isUsable()) {
3601 InteropInfo.PreferTypes.push_back(PTExpr.get());
3602 } else {
3603 HasError = true;
3604 SkipUntil(tok::comma, tok::r_paren, tok::annot_pragma_openmp_end,
3606 }
3607
3608 if (Tok.is(tok::comma))
3609 ConsumeToken();
3610 }
3611 PT.consumeClose();
3612 } else {
3613 HasError = true;
3614 Diag(Tok, diag::err_omp_expected_interop_type);
3615 ConsumeToken();
3616 }
3617 if (!Tok.is(tok::comma))
3618 break;
3619 ConsumeToken();
3620 }
3621
3622 if (!HasError && !IsTarget && !IsTargetSync) {
3623 Diag(Tok, diag::err_omp_expected_interop_type);
3624 HasError = true;
3625 }
3626
3627 if (Kind == OMPC_init) {
3628 if (Tok.isNot(tok::colon) && (IsTarget || IsTargetSync))
3629 Diag(Tok, diag::warn_pragma_expected_colon) << "interop types";
3630 if (Tok.is(tok::colon))
3631 ConsumeToken();
3632 }
3633
3634 // As of OpenMP 5.1,there are two interop-types, "target" and
3635 // "targetsync". Either or both are allowed for a single interop.
3636 InteropInfo.IsTarget = IsTarget;
3637 InteropInfo.IsTargetSync = IsTargetSync;
3638
3639 return HasError;
3640}
3641
3642OMPClause *Parser::ParseOpenMPInteropClause(OpenMPClauseKind Kind,
3643 bool ParseOnly) {
3644 SourceLocation Loc = ConsumeToken();
3645 // Parse '('.
3646 BalancedDelimiterTracker T(*this, tok::l_paren, tok::annot_pragma_openmp_end);
3647 if (T.expectAndConsume(diag::err_expected_lparen_after,
3648 getOpenMPClauseName(Kind).data()))
3649 return nullptr;
3650
3651 bool InteropError = false;
3652 OMPInteropInfo InteropInfo;
3653 if (Kind == OMPC_init)
3654 InteropError = ParseOMPInteropInfo(InteropInfo, OMPC_init);
3655
3656 // Parse the variable.
3657 SourceLocation VarLoc = Tok.getLocation();
3658 ExprResult InteropVarExpr = ParseAssignmentExpression();
3659 if (!InteropVarExpr.isUsable()) {
3660 SkipUntil(tok::comma, tok::r_paren, tok::annot_pragma_openmp_end,
3662 }
3663
3664 // Parse ')'.
3665 SourceLocation RLoc = Tok.getLocation();
3666 if (!T.consumeClose())
3667 RLoc = T.getCloseLocation();
3668
3669 if (ParseOnly || !InteropVarExpr.isUsable() || InteropError)
3670 return nullptr;
3671
3672 if (Kind == OMPC_init)
3673 return Actions.OpenMP().ActOnOpenMPInitClause(
3674 InteropVarExpr.get(), InteropInfo, Loc, T.getOpenLocation(), VarLoc,
3675 RLoc);
3676 if (Kind == OMPC_use)
3677 return Actions.OpenMP().ActOnOpenMPUseClause(
3678 InteropVarExpr.get(), Loc, T.getOpenLocation(), VarLoc, RLoc);
3679
3680 if (Kind == OMPC_destroy)
3681 return Actions.OpenMP().ActOnOpenMPDestroyClause(
3682 InteropVarExpr.get(), Loc, T.getOpenLocation(), VarLoc, RLoc);
3683
3684 llvm_unreachable("Unexpected interop variable clause.");
3685}
3686
3687OMPClause *Parser::ParseOpenMPOMPXAttributesClause(bool ParseOnly) {
3688 SourceLocation Loc = ConsumeToken();
3689 // Parse '('.
3690 BalancedDelimiterTracker T(*this, tok::l_paren, tok::annot_pragma_openmp_end);
3691 if (T.expectAndConsume(diag::err_expected_lparen_after,
3692 getOpenMPClauseName(OMPC_ompx_attribute).data()))
3693 return nullptr;
3694
3695 ParsedAttributes ParsedAttrs(AttrFactory);
3696 ParseAttributes(PAKM_GNU | PAKM_CXX11, ParsedAttrs);
3697
3698 // Parse ')'.
3699 if (T.consumeClose())
3700 return nullptr;
3701
3702 if (ParseOnly)
3703 return nullptr;
3704
3705 SmallVector<Attr *> Attrs;
3706 for (const ParsedAttr &PA : ParsedAttrs) {
3707 switch (PA.getKind()) {
3708 case ParsedAttr::AT_AMDGPUFlatWorkGroupSize:
3709 if (!PA.checkExactlyNumArgs(Actions, 2))
3710 continue;
3711 if (auto *A = Actions.AMDGPU().CreateAMDGPUFlatWorkGroupSizeAttr(
3712 PA, PA.getArgAsExpr(0), PA.getArgAsExpr(1)))
3713 Attrs.push_back(A);
3714 continue;
3715 case ParsedAttr::AT_AMDGPUWavesPerEU:
3716 if (!PA.checkAtLeastNumArgs(Actions, 1) ||
3717 !PA.checkAtMostNumArgs(Actions, 2))
3718 continue;
3719 if (auto *A = Actions.AMDGPU().CreateAMDGPUWavesPerEUAttr(
3720 PA, PA.getArgAsExpr(0),
3721 PA.getNumArgs() > 1 ? PA.getArgAsExpr(1) : nullptr))
3722 Attrs.push_back(A);
3723 continue;
3724 case ParsedAttr::AT_CUDALaunchBounds:
3725 if (!PA.checkAtLeastNumArgs(Actions, 1) ||
3726 !PA.checkAtMostNumArgs(Actions, 2))
3727 continue;
3728 if (auto *A = Actions.CreateLaunchBoundsAttr(
3729 PA, PA.getArgAsExpr(0),
3730 PA.getNumArgs() > 1 ? PA.getArgAsExpr(1) : nullptr,
3731 PA.getNumArgs() > 2 ? PA.getArgAsExpr(2) : nullptr))
3732 Attrs.push_back(A);
3733 continue;
3734 default:
3735 Diag(Loc, diag::warn_omp_invalid_attribute_for_ompx_attributes) << PA;
3736 continue;
3737 };
3738 }
3739
3740 return Actions.OpenMP().ActOnOpenMPXAttributeClause(
3741 Attrs, Loc, T.getOpenLocation(), T.getCloseLocation());
3742}
3743
3744OMPClause *Parser::ParseOpenMPSimpleClause(OpenMPClauseKind Kind,
3745 bool ParseOnly) {
3746 std::optional<SimpleClauseData> Val = parseOpenMPSimpleClause(*this, Kind);
3747 if (!Val || ParseOnly)
3748 return nullptr;
3749 if (getLangOpts().OpenMP < 51 && Kind == OMPC_default &&
3750 (static_cast<DefaultKind>(Val->Type) == OMP_DEFAULT_private ||
3751 static_cast<DefaultKind>(Val->Type) ==
3752 OMP_DEFAULT_firstprivate)) {
3753 Diag(Val->LOpen, diag::err_omp_invalid_dsa)
3754 << getOpenMPClauseName(static_cast<DefaultKind>(Val->Type) ==
3755 OMP_DEFAULT_private
3756 ? OMPC_private
3757 : OMPC_firstprivate)
3758 << getOpenMPClauseName(OMPC_default) << "5.1";
3759 return nullptr;
3760 }
3761 return Actions.OpenMP().ActOnOpenMPSimpleClause(
3762 Kind, Val->Type, Val->TypeLoc, Val->LOpen, Val->Loc, Val->RLoc);
3763}
3764
3765OMPClause *Parser::ParseOpenMPClause(OpenMPClauseKind Kind, bool ParseOnly) {
3766 SourceLocation Loc = Tok.getLocation();
3768
3769 if (ParseOnly)
3770 return nullptr;
3771 return Actions.OpenMP().ActOnOpenMPClause(Kind, Loc, Tok.getLocation());
3772}
3773
3774OMPClause *Parser::ParseOpenMPSingleExprWithArgClause(OpenMPDirectiveKind DKind,
3775 OpenMPClauseKind Kind,
3776 bool ParseOnly) {
3777 SourceLocation Loc = ConsumeToken();
3778 SourceLocation DelimLoc;
3779 // Parse '('.
3780 BalancedDelimiterTracker T(*this, tok::l_paren, tok::annot_pragma_openmp_end);
3781 if (T.expectAndConsume(diag::err_expected_lparen_after,
3782 getOpenMPClauseName(Kind).data()))
3783 return nullptr;
3784
3785 ExprResult Val;
3786 SmallVector<unsigned, 4> Arg;
3787 SmallVector<SourceLocation, 4> KLoc;
3788 if (Kind == OMPC_schedule) {
3789 enum { Modifier1, Modifier2, ScheduleKind, NumberOfElements };
3790 Arg.resize(NumberOfElements);
3791 KLoc.resize(NumberOfElements);
3792 Arg[Modifier1] = OMPC_SCHEDULE_MODIFIER_unknown;
3793 Arg[Modifier2] = OMPC_SCHEDULE_MODIFIER_unknown;
3794 Arg[ScheduleKind] = OMPC_SCHEDULE_unknown;
3795 unsigned KindModifier = getOpenMPSimpleClauseType(
3796 Kind, Tok.isAnnotation() ? "" : PP.getSpelling(Tok), getLangOpts());
3797 if (KindModifier > OMPC_SCHEDULE_unknown) {
3798 // Parse 'modifier'
3799 Arg[Modifier1] = KindModifier;
3800 KLoc[Modifier1] = Tok.getLocation();
3801 if (Tok.isNot(tok::r_paren) && Tok.isNot(tok::comma) &&
3802 Tok.isNot(tok::annot_pragma_openmp_end))
3804 if (Tok.is(tok::comma)) {
3805 // Parse ',' 'modifier'
3807 KindModifier = getOpenMPSimpleClauseType(
3808 Kind, Tok.isAnnotation() ? "" : PP.getSpelling(Tok), getLangOpts());
3809 Arg[Modifier2] = KindModifier > OMPC_SCHEDULE_unknown
3810 ? KindModifier
3811 : (unsigned)OMPC_SCHEDULE_unknown;
3812 KLoc[Modifier2] = Tok.getLocation();
3813 if (Tok.isNot(tok::r_paren) && Tok.isNot(tok::comma) &&
3814 Tok.isNot(tok::annot_pragma_openmp_end))
3816 }
3817 // Parse ':'
3818 if (Tok.is(tok::colon))
3820 else
3821 Diag(Tok, diag::warn_pragma_expected_colon) << "schedule modifier";
3822 KindModifier = getOpenMPSimpleClauseType(
3823 Kind, Tok.isAnnotation() ? "" : PP.getSpelling(Tok), getLangOpts());
3824 }
3825 Arg[ScheduleKind] = KindModifier;
3826 KLoc[ScheduleKind] = Tok.getLocation();
3827 if (Tok.isNot(tok::r_paren) && Tok.isNot(tok::comma) &&
3828 Tok.isNot(tok::annot_pragma_openmp_end))
3830 if ((Arg[ScheduleKind] == OMPC_SCHEDULE_static ||
3831 Arg[ScheduleKind] == OMPC_SCHEDULE_dynamic ||
3832 Arg[ScheduleKind] == OMPC_SCHEDULE_guided) &&
3833 Tok.is(tok::comma))
3834 DelimLoc = ConsumeAnyToken();
3835 } else if (Kind == OMPC_dist_schedule) {
3836 Arg.push_back(getOpenMPSimpleClauseType(
3837 Kind, Tok.isAnnotation() ? "" : PP.getSpelling(Tok), getLangOpts()));
3838 KLoc.push_back(Tok.getLocation());
3839 if (Tok.isNot(tok::r_paren) && Tok.isNot(tok::comma) &&
3840 Tok.isNot(tok::annot_pragma_openmp_end))
3842 if (Arg.back() == OMPC_DIST_SCHEDULE_static && Tok.is(tok::comma))
3843 DelimLoc = ConsumeAnyToken();
3844 } else if (Kind == OMPC_default) {
3845 // Get a default modifier
3846 unsigned Modifier = getOpenMPSimpleClauseType(
3847 Kind, Tok.isAnnotation() ? "" : PP.getSpelling(Tok), getLangOpts());
3848
3849 Arg.push_back(Modifier);
3850 KLoc.push_back(Tok.getLocation());
3851 if (Tok.isNot(tok::r_paren) && Tok.isNot(tok::comma) &&
3852 Tok.isNot(tok::annot_pragma_openmp_end))
3854 // Parse ':'
3855 if (Tok.is(tok::colon) && getLangOpts().OpenMP >= 60) {
3857 // Get a variable-category attribute for default clause modifier
3858 OpenMPDefaultClauseVariableCategory VariableCategory =
3860 Tok.isAnnotation() ? "" : PP.getSpelling(Tok), getLangOpts());
3861 Arg.push_back(VariableCategory);
3862 KLoc.push_back(Tok.getLocation());
3863 if (Tok.isNot(tok::r_paren) && Tok.isNot(tok::comma) &&
3864 Tok.isNot(tok::annot_pragma_openmp_end))
3866 } else {
3867 Arg.push_back(OMPC_DEFAULT_VC_all);
3868 KLoc.push_back(SourceLocation());
3869 }
3870 } else if (Kind == OMPC_defaultmap) {
3871 // Get a defaultmap modifier
3872 unsigned Modifier = getOpenMPSimpleClauseType(
3873 Kind, Tok.isAnnotation() ? "" : PP.getSpelling(Tok), getLangOpts());
3874
3875 // Set defaultmap modifier to unknown if it is either scalar, aggregate, or
3876 // pointer
3877 if (Modifier < OMPC_DEFAULTMAP_MODIFIER_unknown)
3879 Arg.push_back(Modifier);
3880 KLoc.push_back(Tok.getLocation());
3881 if (Tok.isNot(tok::r_paren) && Tok.isNot(tok::comma) &&
3882 Tok.isNot(tok::annot_pragma_openmp_end))
3884 // Parse ':'
3885 if (Tok.is(tok::colon) || getLangOpts().OpenMP < 50) {
3886 if (Tok.is(tok::colon))
3888 else if (Arg.back() != OMPC_DEFAULTMAP_MODIFIER_unknown)
3889 Diag(Tok, diag::warn_pragma_expected_colon) << "defaultmap modifier";
3890 // Get a defaultmap kind
3891 Arg.push_back(getOpenMPSimpleClauseType(
3892 Kind, Tok.isAnnotation() ? "" : PP.getSpelling(Tok), getLangOpts()));
3893 KLoc.push_back(Tok.getLocation());
3894 if (Tok.isNot(tok::r_paren) && Tok.isNot(tok::comma) &&
3895 Tok.isNot(tok::annot_pragma_openmp_end))
3897 } else {
3898 Arg.push_back(OMPC_DEFAULTMAP_unknown);
3899 KLoc.push_back(SourceLocation());
3900 }
3901 } else if (Kind == OMPC_order) {
3902 enum { Modifier, OrderKind, NumberOfElements };
3903 Arg.resize(NumberOfElements);
3904 KLoc.resize(NumberOfElements);
3905 Arg[Modifier] = OMPC_ORDER_MODIFIER_unknown;
3906 Arg[OrderKind] = OMPC_ORDER_unknown;
3907 unsigned KindModifier = getOpenMPSimpleClauseType(
3908 Kind, Tok.isAnnotation() ? "" : PP.getSpelling(Tok), getLangOpts());
3909 if (KindModifier > OMPC_ORDER_unknown) {
3910 // Parse 'modifier'
3911 Arg[Modifier] = KindModifier;
3912 KLoc[Modifier] = Tok.getLocation();
3913 if (Tok.isNot(tok::r_paren) && Tok.isNot(tok::comma) &&
3914 Tok.isNot(tok::annot_pragma_openmp_end))
3916 // Parse ':'
3917 if (Tok.is(tok::colon))
3919 else
3920 Diag(Tok, diag::warn_pragma_expected_colon) << "order modifier";
3921 KindModifier = getOpenMPSimpleClauseType(
3922 Kind, Tok.isAnnotation() ? "" : PP.getSpelling(Tok), getLangOpts());
3923 }
3924 Arg[OrderKind] = KindModifier;
3925 KLoc[OrderKind] = Tok.getLocation();
3926 if (Tok.isNot(tok::r_paren) && Tok.isNot(tok::comma) &&
3927 Tok.isNot(tok::annot_pragma_openmp_end))
3929 } else if (Kind == OMPC_device) {
3930 // Only target executable directives support extended device construct.
3931 if (isOpenMPTargetExecutionDirective(DKind) && getLangOpts().OpenMP >= 50 &&
3932 NextToken().is(tok::colon)) {
3933 // Parse optional <device modifier> ':'
3934 Arg.push_back(getOpenMPSimpleClauseType(
3935 Kind, Tok.isAnnotation() ? "" : PP.getSpelling(Tok), getLangOpts()));
3936 KLoc.push_back(Tok.getLocation());
3938 // Parse ':'
3940 } else {
3941 Arg.push_back(OMPC_DEVICE_unknown);
3942 KLoc.emplace_back();
3943 }
3944 } else if (Kind == OMPC_grainsize) {
3945 // Parse optional <grainsize modifier> ':'
3948 Kind, Tok.isAnnotation() ? "" : PP.getSpelling(Tok),
3949 getLangOpts()));
3950 if (getLangOpts().OpenMP >= 51) {
3951 if (NextToken().is(tok::colon)) {
3952 Arg.push_back(Modifier);
3953 KLoc.push_back(Tok.getLocation());
3954 // Parse modifier
3956 // Parse ':'
3958 } else {
3959 if (Modifier == OMPC_GRAINSIZE_strict) {
3960 Diag(Tok, diag::err_modifier_expected_colon) << "strict";
3961 // Parse modifier
3963 }
3964 Arg.push_back(OMPC_GRAINSIZE_unknown);
3965 KLoc.emplace_back();
3966 }
3967 } else {
3968 Arg.push_back(OMPC_GRAINSIZE_unknown);
3969 KLoc.emplace_back();
3970 }
3971 } else if (Kind == OMPC_num_tasks) {
3972 // Parse optional <num_tasks modifier> ':'
3975 Kind, Tok.isAnnotation() ? "" : PP.getSpelling(Tok),
3976 getLangOpts()));
3977 if (getLangOpts().OpenMP >= 51) {
3978 if (NextToken().is(tok::colon)) {
3979 Arg.push_back(Modifier);
3980 KLoc.push_back(Tok.getLocation());
3981 // Parse modifier
3983 // Parse ':'
3985 } else {
3986 if (Modifier == OMPC_NUMTASKS_strict) {
3987 Diag(Tok, diag::err_modifier_expected_colon) << "strict";
3988 // Parse modifier
3990 }
3991 Arg.push_back(OMPC_NUMTASKS_unknown);
3992 KLoc.emplace_back();
3993 }
3994 } else {
3995 Arg.push_back(OMPC_NUMTASKS_unknown);
3996 KLoc.emplace_back();
3997 }
3998 } else if (Kind == OMPC_num_threads) {
3999 // Parse optional <num_threads modifier> ':'
4002 Kind, Tok.isAnnotation() ? "" : PP.getSpelling(Tok),
4003 getLangOpts()));
4004 if (getLangOpts().OpenMP >= 60) {
4005 if (NextToken().is(tok::colon)) {
4006 Arg.push_back(Modifier);
4007 KLoc.push_back(Tok.getLocation());
4008 // Parse modifier
4010 // Parse ':'
4012 } else {
4013 if (Modifier == OMPC_NUMTHREADS_strict) {
4014 Diag(Tok, diag::err_modifier_expected_colon) << "strict";
4015 // Parse modifier
4017 }
4018 Arg.push_back(OMPC_NUMTHREADS_unknown);
4019 KLoc.emplace_back();
4020 }
4021 } else {
4022 Arg.push_back(OMPC_NUMTHREADS_unknown);
4023 KLoc.emplace_back();
4024 }
4025 } else {
4026 assert(Kind == OMPC_if);
4027 KLoc.push_back(Tok.getLocation());
4028 TentativeParsingAction TPA(*this);
4029 auto DK = parseOpenMPDirectiveKind(*this);
4030 Arg.push_back(static_cast<unsigned>(DK));
4031 if (DK != OMPD_unknown) {
4032 ConsumeToken();
4033 if (Tok.is(tok::colon) && getLangOpts().OpenMP > 40) {
4034 TPA.Commit();
4035 DelimLoc = ConsumeToken();
4036 } else {
4037 TPA.Revert();
4038 Arg.back() = unsigned(OMPD_unknown);
4039 }
4040 } else {
4041 TPA.Revert();
4042 }
4043 }
4044
4045 bool NeedAnExpression = (Kind == OMPC_schedule && DelimLoc.isValid()) ||
4046 (Kind == OMPC_dist_schedule && DelimLoc.isValid()) ||
4047 Kind == OMPC_if || Kind == OMPC_device ||
4048 Kind == OMPC_grainsize || Kind == OMPC_num_tasks ||
4049 Kind == OMPC_num_threads;
4050 if (NeedAnExpression) {
4051 SourceLocation ELoc = Tok.getLocation();
4052 ExprResult LHS(
4053 ParseCastExpression(CastParseKind::AnyCastExpr, false,
4055 Val = ParseRHSOfBinaryExpression(LHS, prec::Conditional);
4056 Val =
4057 Actions.ActOnFinishFullExpr(Val.get(), ELoc, /*DiscardedValue*/ false);
4058 }
4059
4060 // Parse ')'.
4061 SourceLocation RLoc = Tok.getLocation();
4062 if (!T.consumeClose())
4063 RLoc = T.getCloseLocation();
4064
4065 if (NeedAnExpression && Val.isInvalid())
4066 return nullptr;
4067
4068 if (Kind == OMPC_default && getLangOpts().OpenMP < 51 && Arg[0] &&
4069 (static_cast<DefaultKind>(Arg[0]) == OMP_DEFAULT_private ||
4070 static_cast<DefaultKind>(Arg[0]) == OMP_DEFAULT_firstprivate)) {
4071 Diag(KLoc[0], diag::err_omp_invalid_dsa)
4072 << getOpenMPClauseName(static_cast<DefaultKind>(Arg[0]) ==
4073 OMP_DEFAULT_private
4074 ? OMPC_private
4075 : OMPC_firstprivate)
4076 << getOpenMPClauseName(OMPC_default) << "5.1";
4077 return nullptr;
4078 }
4079
4080 if (ParseOnly)
4081 return nullptr;
4082 return Actions.OpenMP().ActOnOpenMPSingleExprWithArgClause(
4083 Kind, Arg, Val.get(), Loc, T.getOpenLocation(), KLoc, DelimLoc, RLoc);
4084}
4085
4086static bool ParseReductionId(Parser &P, CXXScopeSpec &ReductionIdScopeSpec,
4087 UnqualifiedId &ReductionId) {
4088 if (ReductionIdScopeSpec.isEmpty()) {
4089 auto OOK = OO_None;
4090 switch (P.getCurToken().getKind()) {
4091 case tok::plus:
4092 OOK = OO_Plus;
4093 break;
4094 case tok::minus:
4095 OOK = OO_Minus;
4096 break;
4097 case tok::star:
4098 OOK = OO_Star;
4099 break;
4100 case tok::amp:
4101 OOK = OO_Amp;
4102 break;
4103 case tok::pipe:
4104 OOK = OO_Pipe;
4105 break;
4106 case tok::caret:
4107 OOK = OO_Caret;
4108 break;
4109 case tok::ampamp:
4110 OOK = OO_AmpAmp;
4111 break;
4112 case tok::pipepipe:
4113 OOK = OO_PipePipe;
4114 break;
4115 default:
4116 break;
4117 }
4118 if (OOK != OO_None) {
4119 SourceLocation OpLoc = P.ConsumeToken();
4120 SourceLocation SymbolLocations[] = {OpLoc, OpLoc, SourceLocation()};
4121 ReductionId.setOperatorFunctionId(OpLoc, OOK, SymbolLocations);
4122 return false;
4123 }
4124 }
4125 return P.ParseUnqualifiedId(
4126 ReductionIdScopeSpec, /*ObjectType=*/nullptr,
4127 /*ObjectHadErrors=*/false, /*EnteringContext*/ false,
4128 /*AllowDestructorName*/ false,
4129 /*AllowConstructorName*/ false,
4130 /*AllowDeductionGuide*/ false, nullptr, ReductionId);
4131}
4132
4133/// Checks if the token is a valid map-type-modifier.
4134/// FIXME: It will return an OpenMPMapClauseKind if that's what it parses.
4136 Token Tok = P.getCurToken();
4137 if (!Tok.is(tok::identifier))
4139
4140 Preprocessor &PP = P.getPreprocessor();
4141 OpenMPMapModifierKind TypeModifier =
4143 OMPC_map, PP.getSpelling(Tok), P.getLangOpts()));
4144 return TypeModifier;
4145}
4146
4148 // Parse '('.
4149 BalancedDelimiterTracker T(*this, tok::l_paren, tok::colon);
4150 if (T.expectAndConsume(diag::err_expected_lparen_after, "mapper")) {
4151 SkipUntil(tok::colon, tok::r_paren, tok::annot_pragma_openmp_end,
4153 return true;
4154 }
4155 // Parse mapper-identifier
4156 if (getLangOpts().CPlusPlus)
4157 ParseOptionalCXXScopeSpecifier(Data.ReductionOrMapperIdScopeSpec,
4158 /*ObjectType=*/nullptr,
4159 /*ObjectHasErrors=*/false,
4160 /*EnteringContext=*/false);
4161 if (Tok.isNot(tok::identifier) && Tok.isNot(tok::kw_default)) {
4162 Diag(Tok.getLocation(), diag::err_omp_mapper_illegal_identifier);
4163 SkipUntil(tok::colon, tok::r_paren, tok::annot_pragma_openmp_end,
4165 return true;
4166 }
4167 auto &DeclNames = Actions.getASTContext().DeclarationNames;
4168 Data.ReductionOrMapperId = DeclarationNameInfo(
4169 DeclNames.getIdentifier(Tok.getIdentifierInfo()), Tok.getLocation());
4170 ConsumeToken();
4171 // Parse ')'.
4172 return T.consumeClose();
4173}
4174
4176
4178 bool HasMapType = false;
4179 SourceLocation PreMapLoc = Tok.getLocation();
4180 StringRef PreMapName = "";
4181 while (getCurToken().isNot(tok::colon)) {
4182 OpenMPMapModifierKind TypeModifier = isMapModifier(*this);
4183 OpenMPMapClauseKind MapKind = isMapType(*this);
4184 if (TypeModifier == OMPC_MAP_MODIFIER_always ||
4185 TypeModifier == OMPC_MAP_MODIFIER_close ||
4186 TypeModifier == OMPC_MAP_MODIFIER_present ||
4187 TypeModifier == OMPC_MAP_MODIFIER_ompx_hold) {
4188 Data.MapTypeModifiers.push_back(TypeModifier);
4189 Data.MapTypeModifiersLoc.push_back(Tok.getLocation());
4190 if (PP.LookAhead(0).isNot(tok::comma) &&
4191 PP.LookAhead(0).isNot(tok::colon) && getLangOpts().OpenMP >= 52)
4192 Diag(Tok.getLocation(), diag::err_omp_missing_comma)
4193 << "map type modifier";
4194 ConsumeToken();
4195 } else if (TypeModifier == OMPC_MAP_MODIFIER_mapper) {
4196 Data.MapTypeModifiers.push_back(TypeModifier);
4197 Data.MapTypeModifiersLoc.push_back(Tok.getLocation());
4198 ConsumeToken();
4200 return true;
4201 if (Tok.isNot(tok::comma) && Tok.isNot(tok::colon) &&
4202 getLangOpts().OpenMP >= 52)
4203 Diag(Data.MapTypeModifiersLoc.back(), diag::err_omp_missing_comma)
4204 << "map type modifier";
4205
4206 } else if (getLangOpts().OpenMP >= 60 && MapKind != OMPC_MAP_unknown) {
4207 if (!HasMapType) {
4208 HasMapType = true;
4209 Data.ExtraModifier = MapKind;
4210 MapKind = OMPC_MAP_unknown;
4211 PreMapLoc = Tok.getLocation();
4212 PreMapName = Tok.getIdentifierInfo()->getName();
4213 } else {
4214 Diag(Tok, diag::err_omp_more_one_map_type);
4215 Diag(PreMapLoc, diag::note_previous_map_type_specified_here)
4216 << PreMapName;
4217 }
4218 ConsumeToken();
4219 } else if (TypeModifier == OMPC_MAP_MODIFIER_self) {
4220 Data.MapTypeModifiers.push_back(TypeModifier);
4221 Data.MapTypeModifiersLoc.push_back(Tok.getLocation());
4222 if (PP.LookAhead(0).isNot(tok::comma) &&
4223 PP.LookAhead(0).isNot(tok::colon))
4224 Diag(Tok.getLocation(), diag::err_omp_missing_comma)
4225 << "map type modifier";
4226 if (getLangOpts().OpenMP < 60)
4227 Diag(Tok, diag::err_omp_unknown_map_type_modifier)
4228 << (getLangOpts().OpenMP >= 51
4229 ? (getLangOpts().OpenMP >= 52 ? 2 : 1)
4230 : 0)
4231 << getLangOpts().OpenMPExtensions << 0;
4232 ConsumeToken();
4233 } else {
4234 // For the case of unknown map-type-modifier or a map-type.
4235 // Map-type is followed by a colon; the function returns when it
4236 // encounters a token followed by a colon.
4237 if (Tok.is(tok::comma)) {
4238 Diag(Tok, diag::err_omp_map_type_modifier_missing);
4239 ConsumeToken();
4240 continue;
4241 }
4242 // Potential map-type token as it is followed by a colon.
4243 if (PP.LookAhead(0).is(tok::colon)) {
4244 if (getLangOpts().OpenMP >= 60) {
4245 break;
4246 } else {
4247 return false;
4248 }
4249 }
4250
4251 Diag(Tok, diag::err_omp_unknown_map_type_modifier)
4252 << (getLangOpts().OpenMP >= 51 ? (getLangOpts().OpenMP >= 52 ? 2 : 1)
4253 : 0)
4254 << getLangOpts().OpenMPExtensions
4255 << (getLangOpts().OpenMP >= 60 ? 1 : 0);
4256 ConsumeToken();
4257 }
4258 if (getCurToken().is(tok::comma))
4259 ConsumeToken();
4260 }
4261 if (getLangOpts().OpenMP >= 60 && !HasMapType) {
4262 if (!Tok.is(tok::colon)) {
4263 Diag(Tok, diag::err_omp_unknown_map_type);
4264 ConsumeToken();
4265 } else {
4266 Data.ExtraModifier = OMPC_MAP_unknown;
4267 }
4268 }
4269 return false;
4270}
4271
4272/// Checks if the token is a valid map-type.
4273/// If it is not MapType kind, OMPC_MAP_unknown is returned.
4275 Token Tok = P.getCurToken();
4276 // The map-type token can be either an identifier or the C++ delete keyword.
4277 if (!Tok.isOneOf(tok::identifier, tok::kw_delete))
4278 return OMPC_MAP_unknown;
4279 Preprocessor &PP = P.getPreprocessor();
4280 unsigned MapType =
4282 if (MapType == OMPC_MAP_to || MapType == OMPC_MAP_from ||
4283 MapType == OMPC_MAP_tofrom || MapType == OMPC_MAP_alloc ||
4284 MapType == OMPC_MAP_delete || MapType == OMPC_MAP_release)
4285 return static_cast<OpenMPMapClauseKind>(MapType);
4286 return OMPC_MAP_unknown;
4287}
4288
4289/// Parse map-type in map clause.
4290/// map([ [map-type-modifier[,] [map-type-modifier[,] ...] map-type : ] list)
4291/// where, map-type ::= to | from | tofrom | alloc | release | delete
4293 Token Tok = P.getCurToken();
4294 if (Tok.is(tok::colon)) {
4295 P.Diag(Tok, diag::err_omp_map_type_missing);
4296 return;
4297 }
4298 Data.ExtraModifier = isMapType(P);
4299 if (Data.ExtraModifier == OMPC_MAP_unknown)
4300 P.Diag(Tok, diag::err_omp_unknown_map_type);
4301 P.ConsumeToken();
4302}
4303
4304ExprResult Parser::ParseOpenMPIteratorsExpr() {
4305 assert(Tok.is(tok::identifier) && PP.getSpelling(Tok) == "iterator" &&
4306 "Expected 'iterator' token.");
4307 SourceLocation IteratorKwLoc = ConsumeToken();
4308
4309 BalancedDelimiterTracker T(*this, tok::l_paren, tok::annot_pragma_openmp_end);
4310 if (T.expectAndConsume(diag::err_expected_lparen_after, "iterator"))
4311 return ExprError();
4312
4313 SourceLocation LLoc = T.getOpenLocation();
4314 SmallVector<SemaOpenMP::OMPIteratorData, 4> Data;
4315 while (Tok.isNot(tok::r_paren) && Tok.isNot(tok::annot_pragma_openmp_end)) {
4316 // Check if the type parsing is required.
4317 ParsedType IteratorType;
4318 if (Tok.isNot(tok::identifier) || NextToken().isNot(tok::equal)) {
4319 // identifier '=' is not found - parse type.
4321 if (TR.isInvalid()) {
4322 T.skipToEnd();
4323 return ExprError();
4324 }
4325 IteratorType = TR.get();
4326 }
4327
4328 // Parse identifier.
4329 IdentifierInfo *II = nullptr;
4330 SourceLocation IdLoc;
4331 if (Tok.is(tok::identifier)) {
4332 II = Tok.getIdentifierInfo();
4333 IdLoc = ConsumeToken();
4334 } else {
4335 Diag(Tok, diag::err_expected_unqualified_id) << 0;
4336 }
4337
4338 // Parse '='.
4339 SourceLocation AssignLoc;
4340 if (Tok.is(tok::equal))
4341 AssignLoc = ConsumeToken();
4342 else
4343 Diag(Tok, diag::err_omp_expected_equal_in_iterator);
4344
4345 // Parse range-specification - <begin> ':' <end> [ ':' <step> ]
4346 ColonProtectionRAIIObject ColonRAII(*this);
4347 // Parse <begin>
4348 SourceLocation Loc = Tok.getLocation();
4349 ExprResult LHS = ParseCastExpression(CastParseKind::AnyCastExpr);
4350 ExprResult Begin = ParseRHSOfBinaryExpression(LHS, prec::Conditional);
4351 Begin = Actions.ActOnFinishFullExpr(Begin.get(), Loc,
4352 /*DiscardedValue=*/false);
4353 // Parse ':'.
4354 SourceLocation ColonLoc;
4355 if (Tok.is(tok::colon))
4356 ColonLoc = ConsumeToken();
4357
4358 // Parse <end>
4359 Loc = Tok.getLocation();
4360 LHS = ParseCastExpression(CastParseKind::AnyCastExpr);
4361 ExprResult End = ParseRHSOfBinaryExpression(LHS, prec::Conditional);
4362 End = Actions.ActOnFinishFullExpr(End.get(), Loc,
4363 /*DiscardedValue=*/false);
4364
4365 SourceLocation SecColonLoc;
4366 ExprResult Step;
4367 // Parse optional step.
4368 if (Tok.is(tok::colon)) {
4369 // Parse ':'
4370 SecColonLoc = ConsumeToken();
4371 // Parse <step>
4372 Loc = Tok.getLocation();
4373 LHS = ParseCastExpression(CastParseKind::AnyCastExpr);
4374 Step = ParseRHSOfBinaryExpression(LHS, prec::Conditional);
4375 Step = Actions.ActOnFinishFullExpr(Step.get(), Loc,
4376 /*DiscardedValue=*/false);
4377 }
4378
4379 // Parse ',' or ')'
4380 if (Tok.isNot(tok::comma) && Tok.isNot(tok::r_paren))
4381 Diag(Tok, diag::err_omp_expected_punc_after_iterator);
4382 if (Tok.is(tok::comma))
4383 ConsumeToken();
4384
4385 SemaOpenMP::OMPIteratorData &D = Data.emplace_back();
4386 D.DeclIdent = II;
4387 D.DeclIdentLoc = IdLoc;
4388 D.Type = IteratorType;
4389 D.AssignLoc = AssignLoc;
4390 D.ColonLoc = ColonLoc;
4391 D.SecColonLoc = SecColonLoc;
4392 D.Range.Begin = Begin.get();
4393 D.Range.End = End.get();
4394 D.Range.Step = Step.get();
4395 }
4396
4397 // Parse ')'.
4398 SourceLocation RLoc = Tok.getLocation();
4399 if (!T.consumeClose())
4400 RLoc = T.getCloseLocation();
4401
4402 return Actions.OpenMP().ActOnOMPIteratorExpr(getCurScope(), IteratorKwLoc,
4403 LLoc, RLoc, Data);
4404}
4405
4408 const LangOptions &LangOpts) {
4409 // Currently the only reserved locator is 'omp_all_memory' which is only
4410 // allowed on a depend clause.
4411 if (Kind != OMPC_depend || LangOpts.OpenMP < 51)
4412 return false;
4413
4414 if (Tok.is(tok::identifier) &&
4415 Tok.getIdentifierInfo()->isStr("omp_all_memory")) {
4416
4417 if (Data.ExtraModifier == OMPC_DEPEND_outallmemory ||
4418 Data.ExtraModifier == OMPC_DEPEND_inoutallmemory)
4419 Diag(Tok, diag::warn_omp_more_one_omp_all_memory);
4420 else if (Data.ExtraModifier != OMPC_DEPEND_out &&
4421 Data.ExtraModifier != OMPC_DEPEND_inout)
4422 Diag(Tok, diag::err_omp_requires_out_inout_depend_type);
4423 else
4424 Data.ExtraModifier = Data.ExtraModifier == OMPC_DEPEND_out
4425 ? OMPC_DEPEND_outallmemory
4426 : OMPC_DEPEND_inoutallmemory;
4427 ConsumeToken();
4428 return true;
4429 }
4430 return false;
4431}
4432
4433/// Parse step size expression. Returns true if parsing is successfull,
4434/// otherwise returns false.
4436 OpenMPClauseKind CKind, SourceLocation ELoc) {
4438 Sema &Actions = P.getActions();
4439 Tail = Actions.ActOnFinishFullExpr(Tail.get(), ELoc,
4440 /*DiscardedValue*/ false);
4441 if (Tail.isUsable()) {
4442 Data.DepModOrTailExpr = Tail.get();
4443 Token CurTok = P.getCurToken();
4444 if (CurTok.isNot(tok::r_paren) && CurTok.isNot(tok::comma)) {
4445 P.Diag(CurTok, diag::err_expected_punc) << "step expression";
4446 }
4447 return true;
4448 }
4449 return false;
4450}
4451
4452/// Parse 'allocate' clause modifiers.
4453/// If allocator-modifier exists, return an expression for it. For both
4454/// allocator and align modifiers, set Data fields as appropriate.
4455static ExprResult
4458 const Token &Tok = P.getCurToken();
4459 Preprocessor &PP = P.getPreprocessor();
4460 ExprResult Tail;
4461 ExprResult Val;
4462 SourceLocation RLoc;
4463 bool AllocatorSeen = false;
4464 bool AlignSeen = false;
4465 SourceLocation CurrentModifierLoc = Tok.getLocation();
4466 auto CurrentModifier = static_cast<OpenMPAllocateClauseModifier>(
4468
4469 // Modifiers did not exist before 5.1
4470 if (P.getLangOpts().OpenMP < 51)
4471 return P.ParseAssignmentExpression();
4472
4473 // An allocator-simple-modifier is exclusive and must appear alone. See
4474 // OpenMP6.0 spec, pg. 313, L1 on Modifiers, as well as Table 5.1, pg. 50,
4475 // description of "exclusive" property. If we don't recognized an explicit
4476 // simple-/complex- modifier, assume we're looking at expression
4477 // representing allocator and consider ourselves done.
4478 if (CurrentModifier == OMPC_ALLOCATE_unknown)
4479 return P.ParseAssignmentExpression();
4480
4481 do {
4482 P.ConsumeToken();
4483 if (Tok.is(tok::l_paren)) {
4484 switch (CurrentModifier) {
4485 case OMPC_ALLOCATE_allocator: {
4486 if (AllocatorSeen) {
4487 P.Diag(Tok, diag::err_omp_duplicate_modifier)
4488 << getOpenMPSimpleClauseTypeName(OMPC_allocate, CurrentModifier)
4489 << getOpenMPClauseName(Kind);
4490 } else {
4491 Data.AllocClauseModifiers.push_back(CurrentModifier);
4492 Data.AllocClauseModifiersLoc.push_back(CurrentModifierLoc);
4493 }
4494 BalancedDelimiterTracker AllocateT(P, tok::l_paren,
4495 tok::annot_pragma_openmp_end);
4496 AllocateT.consumeOpen();
4497 Tail = P.ParseAssignmentExpression();
4498 AllocateT.consumeClose();
4499 AllocatorSeen = true;
4500 break;
4501 }
4502 case OMPC_ALLOCATE_align: {
4503 if (AlignSeen) {
4504 P.Diag(Tok, diag::err_omp_duplicate_modifier)
4505 << getOpenMPSimpleClauseTypeName(OMPC_allocate, CurrentModifier)
4506 << getOpenMPClauseName(Kind);
4507 } else {
4508 Data.AllocClauseModifiers.push_back(CurrentModifier);
4509 Data.AllocClauseModifiersLoc.push_back(CurrentModifierLoc);
4510 }
4511 Val = P.ParseOpenMPParensExpr(getOpenMPClauseName(Kind), RLoc);
4512 if (Val.isUsable())
4513 Data.AllocateAlignment = Val.get();
4514 AlignSeen = true;
4515 break;
4516 }
4517 default:
4518 llvm_unreachable("Unexpected allocate modifier");
4519 }
4520 } else {
4521 P.Diag(Tok, diag::err_expected) << tok::l_paren;
4522 }
4523 if (Tok.isNot(tok::comma))
4524 break;
4525 P.ConsumeToken();
4526 CurrentModifierLoc = Tok.getLocation();
4527 CurrentModifier = static_cast<OpenMPAllocateClauseModifier>(
4529 // A modifier followed by a comma implies another modifier.
4530 if (CurrentModifier == OMPC_ALLOCATE_unknown) {
4531 P.Diag(Tok, diag::err_omp_expected_modifier) << getOpenMPClauseName(Kind);
4532 break;
4533 }
4534 } while (!AllocatorSeen || !AlignSeen);
4535 return Tail;
4536}
4537
4539 OpenMPClauseKind Kind,
4542 UnqualifiedId UnqualifiedReductionId;
4543 bool InvalidReductionId = false;
4544 bool IsInvalidMapperModifier = false;
4545
4546 // Parse '('.
4547 BalancedDelimiterTracker T(*this, tok::l_paren, tok::annot_pragma_openmp_end);
4548 if (T.expectAndConsume(diag::err_expected_lparen_after,
4549 getOpenMPClauseName(Kind).data()))
4550 return true;
4551
4552 bool HasIterator = false;
4553 bool InvalidIterator = false;
4554 bool NeedRParenForLinear = false;
4555 BalancedDelimiterTracker LinearT(*this, tok::l_paren,
4556 tok::annot_pragma_openmp_end);
4557 // Handle reduction-identifier for reduction clause.
4558 if (Kind == OMPC_reduction || Kind == OMPC_task_reduction ||
4559 Kind == OMPC_in_reduction) {
4560 Data.ExtraModifier = OMPC_REDUCTION_unknown;
4561 if (Kind == OMPC_reduction && getLangOpts().OpenMP >= 50 &&
4562 (Tok.is(tok::identifier) || Tok.is(tok::kw_default)) &&
4563 NextToken().is(tok::comma)) {
4564 // Parse optional reduction modifier.
4565 Data.ExtraModifier =
4566 getOpenMPSimpleClauseType(Kind, PP.getSpelling(Tok), getLangOpts());
4567 Data.ExtraModifierLoc = Tok.getLocation();
4568 ConsumeToken();
4569 assert(Tok.is(tok::comma) && "Expected comma.");
4570 (void)ConsumeToken();
4571 }
4572 // Handle original(private / shared) Modifier
4573 if (Kind == OMPC_reduction && getLangOpts().OpenMP >= 60 &&
4574 Tok.is(tok::identifier) && PP.getSpelling(Tok) == "original" &&
4575 NextToken().is(tok::l_paren)) {
4576 // Parse original(private) modifier.
4577 ConsumeToken();
4578 BalancedDelimiterTracker ParenT(*this, tok::l_paren, tok::r_paren);
4579 ParenT.consumeOpen();
4580 if (Tok.is(tok::kw_private)) {
4581 Data.OriginalSharingModifier = OMPC_ORIGINAL_SHARING_private;
4582 Data.OriginalSharingModifierLoc = Tok.getLocation();
4583 ConsumeToken();
4584 } else if (Tok.is(tok::identifier) &&
4585 (PP.getSpelling(Tok) == "shared" ||
4586 PP.getSpelling(Tok) == "default")) {
4587 Data.OriginalSharingModifier = OMPC_ORIGINAL_SHARING_shared;
4588 Data.OriginalSharingModifierLoc = Tok.getLocation();
4589 ConsumeToken();
4590 } else {
4591 Diag(Tok.getLocation(), diag::err_expected)
4592 << "'private or shared or default'";
4593 SkipUntil(tok::r_paren);
4594 return false;
4595 }
4596 ParenT.consumeClose();
4597 if (!Tok.is(tok::comma)) {
4598 Diag(Tok.getLocation(), diag::err_expected) << "',' (comma)";
4599 return false;
4600 }
4601 (void)ConsumeToken();
4602 }
4603 ColonProtectionRAIIObject ColonRAII(*this);
4604 if (getLangOpts().CPlusPlus)
4605 ParseOptionalCXXScopeSpecifier(Data.ReductionOrMapperIdScopeSpec,
4606 /*ObjectType=*/nullptr,
4607 /*ObjectHasErrors=*/false,
4608 /*EnteringContext=*/false);
4609 InvalidReductionId = ParseReductionId(
4610 *this, Data.ReductionOrMapperIdScopeSpec, UnqualifiedReductionId);
4611 if (InvalidReductionId) {
4612 SkipUntil(tok::colon, tok::r_paren, tok::annot_pragma_openmp_end,
4614 }
4615 if (Tok.is(tok::colon))
4616 Data.ColonLoc = ConsumeToken();
4617 else
4618 Diag(Tok, diag::warn_pragma_expected_colon) << "reduction identifier";
4619 if (!InvalidReductionId)
4620 Data.ReductionOrMapperId =
4621 Actions.GetNameFromUnqualifiedId(UnqualifiedReductionId);
4622 } else if (Kind == OMPC_depend || Kind == OMPC_doacross) {
4623 if (getLangOpts().OpenMP >= 50) {
4624 if (Tok.is(tok::identifier) && PP.getSpelling(Tok) == "iterator") {
4625 // Handle optional dependence modifier.
4626 // iterator(iterators-definition)
4627 // where iterators-definition is iterator-specifier [,
4628 // iterators-definition ]
4629 // where iterator-specifier is [ iterator-type ] identifier =
4630 // range-specification
4631 HasIterator = true;
4633 ExprResult IteratorRes = ParseOpenMPIteratorsExpr();
4634 Data.DepModOrTailExpr = IteratorRes.get();
4635 // Parse ','
4636 ExpectAndConsume(tok::comma);
4637 }
4638 }
4639 // Handle dependency type for depend clause.
4640 ColonProtectionRAIIObject ColonRAII(*this);
4641 Data.ExtraModifier = getOpenMPSimpleClauseType(
4642 Kind, Tok.is(tok::identifier) ? PP.getSpelling(Tok) : "",
4643 getLangOpts());
4644 Data.ExtraModifierLoc = Tok.getLocation();
4645 if ((Kind == OMPC_depend && Data.ExtraModifier == OMPC_DEPEND_unknown) ||
4646 (Kind == OMPC_doacross &&
4647 Data.ExtraModifier == OMPC_DOACROSS_unknown)) {
4648 SkipUntil(tok::colon, tok::r_paren, tok::annot_pragma_openmp_end,
4650 } else {
4651 ConsumeToken();
4652 // Special processing for depend(source) clause.
4653 if (DKind == OMPD_ordered && Kind == OMPC_depend &&
4654 Data.ExtraModifier == OMPC_DEPEND_source) {
4655 // Parse ')'.
4656 T.consumeClose();
4657 return false;
4658 }
4659 }
4660 if (Tok.is(tok::colon)) {
4661 Data.ColonLoc = ConsumeToken();
4662 } else if (Kind != OMPC_doacross || Tok.isNot(tok::r_paren)) {
4663 Diag(Tok, DKind == OMPD_ordered ? diag::warn_pragma_expected_colon_r_paren
4664 : diag::warn_pragma_expected_colon)
4665 << (Kind == OMPC_depend ? "dependency type" : "dependence-type");
4666 }
4667 if (Kind == OMPC_doacross) {
4668 if (Tok.is(tok::identifier) &&
4669 Tok.getIdentifierInfo()->isStr("omp_cur_iteration")) {
4670 Data.ExtraModifier = Data.ExtraModifier == OMPC_DOACROSS_source
4671 ? OMPC_DOACROSS_source_omp_cur_iteration
4672 : OMPC_DOACROSS_sink_omp_cur_iteration;
4673 ConsumeToken();
4674 }
4675 if (Data.ExtraModifier == OMPC_DOACROSS_sink_omp_cur_iteration) {
4676 if (Tok.isNot(tok::minus)) {
4677 Diag(Tok, diag::err_omp_sink_and_source_iteration_not_allowd)
4678 << getOpenMPClauseName(Kind) << 0 << 0;
4679 SkipUntil(tok::r_paren);
4680 return false;
4681 } else {
4682 ConsumeToken();
4683 SourceLocation Loc = Tok.getLocation();
4684 uint64_t Value = 0;
4685 if (Tok.isNot(tok::numeric_constant) ||
4686 (PP.parseSimpleIntegerLiteral(Tok, Value) && Value != 1)) {
4687 Diag(Loc, diag::err_omp_sink_and_source_iteration_not_allowd)
4688 << getOpenMPClauseName(Kind) << 0 << 0;
4689 SkipUntil(tok::r_paren);
4690 return false;
4691 }
4692 }
4693 }
4694 if (Data.ExtraModifier == OMPC_DOACROSS_source_omp_cur_iteration) {
4695 if (Tok.isNot(tok::r_paren)) {
4696 Diag(Tok, diag::err_omp_sink_and_source_iteration_not_allowd)
4697 << getOpenMPClauseName(Kind) << 1 << 1;
4698 SkipUntil(tok::r_paren);
4699 return false;
4700 }
4701 }
4702 // Only the 'sink' case has the expression list.
4703 if (Kind == OMPC_doacross &&
4704 (Data.ExtraModifier == OMPC_DOACROSS_source ||
4705 Data.ExtraModifier == OMPC_DOACROSS_source_omp_cur_iteration ||
4706 Data.ExtraModifier == OMPC_DOACROSS_sink_omp_cur_iteration)) {
4707 // Parse ')'.
4708 T.consumeClose();
4709 return false;
4710 }
4711 }
4712 } else if (Kind == OMPC_linear) {
4713 // Try to parse modifier if any.
4714 Data.ExtraModifier = OMPC_LINEAR_val;
4715 if (Tok.is(tok::identifier) && PP.LookAhead(0).is(tok::l_paren)) {
4716 Data.ExtraModifier =
4717 getOpenMPSimpleClauseType(Kind, PP.getSpelling(Tok), getLangOpts());
4718 Data.ExtraModifierLoc = ConsumeToken();
4719 LinearT.consumeOpen();
4720 NeedRParenForLinear = true;
4721 if (getLangOpts().OpenMP >= 52)
4722 Diag(Data.ExtraModifierLoc, diag::err_omp_deprecate_old_syntax)
4723 << "linear-modifier(list)" << getOpenMPClauseName(Kind)
4724 << "linear(list: [linear-modifier,] step(step-size))";
4725 }
4726 } else if (Kind == OMPC_lastprivate) {
4727 // Try to parse modifier if any.
4728 Data.ExtraModifier = OMPC_LASTPRIVATE_unknown;
4729 // Conditional modifier allowed only in OpenMP 5.0 and not supported in
4730 // distribute and taskloop based directives.
4731 if ((getLangOpts().OpenMP >= 50 && !isOpenMPDistributeDirective(DKind) &&
4732 !isOpenMPTaskLoopDirective(DKind)) &&
4733 Tok.is(tok::identifier) && PP.LookAhead(0).is(tok::colon)) {
4734 Data.ExtraModifier =
4735 getOpenMPSimpleClauseType(Kind, PP.getSpelling(Tok), getLangOpts());
4736 Data.ExtraModifierLoc = Tok.getLocation();
4737 ConsumeToken();
4738 assert(Tok.is(tok::colon) && "Expected colon.");
4739 Data.ColonLoc = ConsumeToken();
4740 }
4741 } else if (Kind == OMPC_map) {
4742 // Handle optional iterator map modifier.
4743 if (Tok.is(tok::identifier) && PP.getSpelling(Tok) == "iterator") {
4744 HasIterator = true;
4746 Data.MapTypeModifiers.push_back(OMPC_MAP_MODIFIER_iterator);
4747 Data.MapTypeModifiersLoc.push_back(Tok.getLocation());
4748 ExprResult IteratorRes = ParseOpenMPIteratorsExpr();
4749 Data.IteratorExpr = IteratorRes.get();
4750 // Parse ','
4751 ExpectAndConsume(tok::comma);
4752 if (getLangOpts().OpenMP < 52) {
4753 Diag(Tok, diag::err_omp_unknown_map_type_modifier)
4754 << (getLangOpts().OpenMP >= 51 ? 1 : 0)
4755 << getLangOpts().OpenMPExtensions << 0;
4756 InvalidIterator = true;
4757 }
4758 }
4759 // Handle map type for map clause.
4760 ColonProtectionRAIIObject ColonRAII(*this);
4761
4762 // The first identifier may be a list item, a map-type or a
4763 // map-type-modifier. The map-type can also be delete which has the same
4764 // spelling of the C++ delete keyword.
4765 Data.ExtraModifier = OMPC_MAP_unknown;
4766 Data.ExtraModifierLoc = Tok.getLocation();
4767
4768 // Check for presence of a colon in the map clause.
4769 TentativeParsingAction TPA(*this);
4770 bool ColonPresent = false;
4771 if (SkipUntil(tok::colon, tok::r_paren, tok::annot_pragma_openmp_end,
4772 StopBeforeMatch)) {
4773 if (Tok.is(tok::colon))
4774 ColonPresent = true;
4775 }
4776 TPA.Revert();
4777 // Only parse map-type-modifier[s] and map-type if a colon is present in
4778 // the map clause.
4779 if (ColonPresent) {
4780 if (getLangOpts().OpenMP >= 60 && getCurToken().is(tok::colon))
4781 Diag(Tok, diag::err_omp_map_modifier_specification_list);
4782 IsInvalidMapperModifier = parseMapTypeModifiers(Data);
4783 if (getLangOpts().OpenMP < 60 && !IsInvalidMapperModifier)
4784 parseMapType(*this, Data);
4785 else
4786 SkipUntil(tok::colon, tok::annot_pragma_openmp_end, StopBeforeMatch);
4787 }
4788 if (Data.ExtraModifier == OMPC_MAP_unknown) {
4789 Data.ExtraModifier = OMPC_MAP_tofrom;
4790 if (getLangOpts().OpenMP >= 52) {
4791 if (DKind == OMPD_target_enter_data)
4792 Data.ExtraModifier = OMPC_MAP_to;
4793 else if (DKind == OMPD_target_exit_data)
4794 Data.ExtraModifier = OMPC_MAP_from;
4795 }
4796 Data.IsMapTypeImplicit = true;
4797 }
4798
4799 if (Tok.is(tok::colon))
4800 Data.ColonLoc = ConsumeToken();
4801 } else if (Kind == OMPC_to || Kind == OMPC_from) {
4802 while (Tok.is(tok::identifier)) {
4803 auto Modifier = static_cast<OpenMPMotionModifierKind>(
4804 getOpenMPSimpleClauseType(Kind, PP.getSpelling(Tok), getLangOpts()));
4805 if (Modifier == OMPC_MOTION_MODIFIER_unknown)
4806 break;
4807 Data.MotionModifiers.push_back(Modifier);
4808 Data.MotionModifiersLoc.push_back(Tok.getLocation());
4809 ConsumeToken();
4810 if (Modifier == OMPC_MOTION_MODIFIER_mapper) {
4811 IsInvalidMapperModifier = parseMapperModifier(Data);
4812 if (IsInvalidMapperModifier)
4813 break;
4814 }
4815 // OpenMP < 5.1 doesn't permit a ',' or additional modifiers.
4816 if (getLangOpts().OpenMP < 51)
4817 break;
4818 // OpenMP 5.1 accepts an optional ',' even if the next character is ':'.
4819 // TODO: Is that intentional?
4820 if (Tok.is(tok::comma))
4821 ConsumeToken();
4822 }
4823 if (!Data.MotionModifiers.empty() && Tok.isNot(tok::colon)) {
4824 if (!IsInvalidMapperModifier) {
4825 if (getLangOpts().OpenMP < 51)
4826 Diag(Tok, diag::warn_pragma_expected_colon) << ")";
4827 else
4828 Diag(Tok, diag::warn_pragma_expected_colon) << "motion modifier";
4829 }
4830 SkipUntil(tok::colon, tok::r_paren, tok::annot_pragma_openmp_end,
4832 }
4833 // OpenMP 5.1 permits a ':' even without a preceding modifier. TODO: Is
4834 // that intentional?
4835 if ((!Data.MotionModifiers.empty() || getLangOpts().OpenMP >= 51) &&
4836 Tok.is(tok::colon))
4837 Data.ColonLoc = ConsumeToken();
4838 } else if (Kind == OMPC_allocate ||
4839 (Kind == OMPC_affinity && Tok.is(tok::identifier) &&
4840 PP.getSpelling(Tok) == "iterator")) {
4841 // Handle optional allocator and align modifiers followed by colon
4842 // delimiter.
4843 ColonProtectionRAIIObject ColonRAII(*this);
4844 TentativeParsingAction TPA(*this);
4845 // OpenMP 5.0, 2.10.1, task Construct.
4846 // where aff-modifier is one of the following:
4847 // iterator(iterators-definition)
4848 ExprResult Tail;
4849 if (Kind == OMPC_allocate) {
4850 Tail = parseOpenMPAllocateClauseModifiers(*this, Kind, Data);
4851 } else {
4852 HasIterator = true;
4854 Tail = ParseOpenMPIteratorsExpr();
4855 }
4856 Tail = Actions.ActOnFinishFullExpr(Tail.get(), T.getOpenLocation(),
4857 /*DiscardedValue=*/false);
4858 if (Tail.isUsable() || Data.AllocateAlignment) {
4859 if (Tok.is(tok::colon)) {
4860 Data.DepModOrTailExpr = Tail.isUsable() ? Tail.get() : nullptr;
4861 Data.ColonLoc = ConsumeToken();
4862 TPA.Commit();
4863 } else {
4864 // Colon not found, parse only list of variables.
4865 TPA.Revert();
4866 if (Kind == OMPC_allocate && Data.AllocClauseModifiers.size()) {
4867 SkipUntil(tok::r_paren, tok::annot_pragma_openmp_end,
4869 Diag(Tok, diag::err_modifier_expected_colon) << "allocate clause";
4870 }
4871 }
4872 } else {
4873 // Parsing was unsuccessfull, revert and skip to the end of clause or
4874 // directive.
4875 TPA.Revert();
4876 SkipUntil(tok::comma, tok::r_paren, tok::annot_pragma_openmp_end,
4878 }
4879 } else if (Kind == OMPC_adjust_args) {
4880 // Handle adjust-op for adjust_args clause.
4881 ColonProtectionRAIIObject ColonRAII(*this);
4882 Data.ExtraModifier = getOpenMPSimpleClauseType(
4883 Kind, Tok.is(tok::identifier) ? PP.getSpelling(Tok) : "",
4884 getLangOpts());
4885 Data.ExtraModifierLoc = Tok.getLocation();
4886 if (Data.ExtraModifier == OMPC_ADJUST_ARGS_unknown) {
4887 Diag(Tok, diag::err_omp_unknown_adjust_args_op)
4888 << (getLangOpts().OpenMP >= 60 ? 1 : 0);
4889 SkipUntil(tok::r_paren, tok::annot_pragma_openmp_end, StopBeforeMatch);
4890 } else {
4891 ConsumeToken();
4892 if (Tok.is(tok::colon))
4893 Data.ColonLoc = Tok.getLocation();
4894 ExpectAndConsume(tok::colon, diag::warn_pragma_expected_colon,
4895 "adjust-op");
4896 }
4897 }
4898
4899 bool IsComma =
4900 (Kind != OMPC_reduction && Kind != OMPC_task_reduction &&
4901 Kind != OMPC_in_reduction && Kind != OMPC_depend &&
4902 Kind != OMPC_doacross && Kind != OMPC_map && Kind != OMPC_adjust_args) ||
4903 (Kind == OMPC_reduction && !InvalidReductionId) ||
4904 (Kind == OMPC_map && Data.ExtraModifier != OMPC_MAP_unknown) ||
4905 (Kind == OMPC_depend && Data.ExtraModifier != OMPC_DEPEND_unknown) ||
4906 (Kind == OMPC_doacross && Data.ExtraModifier != OMPC_DOACROSS_unknown) ||
4907 (Kind == OMPC_adjust_args &&
4908 Data.ExtraModifier != OMPC_ADJUST_ARGS_unknown);
4909 const bool MayHaveTail = (Kind == OMPC_linear || Kind == OMPC_aligned);
4910 while (IsComma || (Tok.isNot(tok::r_paren) && Tok.isNot(tok::colon) &&
4911 Tok.isNot(tok::annot_pragma_openmp_end))) {
4912 ParseScope OMPListScope(this, Scope::OpenMPDirectiveScope);
4913 ColonProtectionRAIIObject ColonRAII(*this, MayHaveTail);
4915 // Parse variable
4917 if (VarExpr.isUsable()) {
4918 Vars.push_back(VarExpr.get());
4919 } else {
4920 SkipUntil(tok::comma, tok::r_paren, tok::annot_pragma_openmp_end,
4922 }
4923 }
4924 // Skip ',' if any
4925 IsComma = Tok.is(tok::comma);
4926 if (IsComma)
4927 ConsumeToken();
4928 else if (Tok.isNot(tok::r_paren) &&
4929 Tok.isNot(tok::annot_pragma_openmp_end) &&
4930 (!MayHaveTail || Tok.isNot(tok::colon))) {
4931 unsigned OMPVersion = Actions.getLangOpts().OpenMP;
4932 Diag(Tok, diag::err_omp_expected_punc)
4933 << ((Kind == OMPC_flush)
4934 ? getOpenMPDirectiveName(OMPD_flush, OMPVersion)
4935 : getOpenMPClauseName(Kind))
4936 << (Kind == OMPC_flush);
4937 }
4938 }
4939
4940 // Parse ')' for linear clause with modifier.
4941 if (NeedRParenForLinear)
4942 LinearT.consumeClose();
4943 // Parse ':' linear modifiers (val, uval, ref or step(step-size))
4944 // or parse ':' alignment.
4945 const bool MustHaveTail = MayHaveTail && Tok.is(tok::colon);
4946 bool StepFound = false;
4947 bool ModifierFound = false;
4948 if (MustHaveTail) {
4949 Data.ColonLoc = Tok.getLocation();
4951
4952 if (getLangOpts().OpenMP >= 52 && Kind == OMPC_linear) {
4953 bool Malformed = false;
4954 while (Tok.isNot(tok::r_paren)) {
4955 if (Tok.is(tok::identifier)) {
4956 // identifier could be a linear kind (val, uval, ref) or step
4957 // modifier or step size
4958 OpenMPLinearClauseKind LinKind =
4960 Kind, Tok.isAnnotation() ? "" : PP.getSpelling(Tok),
4961 getLangOpts()));
4962
4963 if (LinKind == OMPC_LINEAR_step) {
4964 if (StepFound)
4965 Diag(Tok, diag::err_omp_multiple_step_or_linear_modifier) << 0;
4966
4967 BalancedDelimiterTracker StepT(*this, tok::l_paren,
4968 tok::annot_pragma_openmp_end);
4969 SourceLocation StepModifierLoc = ConsumeToken();
4970 // parse '('
4971 if (StepT.consumeOpen())
4972 Diag(StepModifierLoc, diag::err_expected_lparen_after) << "step";
4973
4974 // parse step size expression
4975 StepFound = parseStepSize(*this, Data, Kind, Tok.getLocation());
4976 if (StepFound)
4977 Data.StepModifierLoc = StepModifierLoc;
4978
4979 // parse ')'
4980 StepT.consumeClose();
4981 } else if (LinKind >= 0 && LinKind < OMPC_LINEAR_step) {
4982 if (ModifierFound)
4983 Diag(Tok, diag::err_omp_multiple_step_or_linear_modifier) << 1;
4984
4985 Data.ExtraModifier = LinKind;
4986 Data.ExtraModifierLoc = ConsumeToken();
4987 ModifierFound = true;
4988 } else {
4989 StepFound = parseStepSize(*this, Data, Kind, Tok.getLocation());
4990 if (!StepFound) {
4991 Malformed = true;
4992 SkipUntil(tok::comma, tok::r_paren, tok::annot_pragma_openmp_end,
4994 }
4995 }
4996 } else {
4997 // parse an integer expression as step size
4998 StepFound = parseStepSize(*this, Data, Kind, Tok.getLocation());
4999 }
5000
5001 if (Tok.is(tok::comma))
5002 ConsumeToken();
5003 if (Tok.is(tok::r_paren) || Tok.is(tok::annot_pragma_openmp_end))
5004 break;
5005 }
5006 if (!Malformed && !StepFound && !ModifierFound)
5007 Diag(ELoc, diag::err_expected_expression);
5008 } else {
5009 // for OMPC_aligned and OMPC_linear (with OpenMP <= 5.1)
5011 Tail = Actions.ActOnFinishFullExpr(Tail.get(), ELoc,
5012 /*DiscardedValue*/ false);
5013 if (Tail.isUsable())
5014 Data.DepModOrTailExpr = Tail.get();
5015 else
5016 SkipUntil(tok::comma, tok::r_paren, tok::annot_pragma_openmp_end,
5018 }
5019 }
5020
5021 // Parse ')'.
5022 Data.RLoc = Tok.getLocation();
5023 if (!T.consumeClose())
5024 Data.RLoc = T.getCloseLocation();
5025 // Exit from scope when the iterator is used in depend clause.
5026 if (HasIterator)
5027 ExitScope();
5028 return (Kind != OMPC_depend && Kind != OMPC_doacross && Kind != OMPC_map &&
5029 Vars.empty()) ||
5030 (MustHaveTail && !Data.DepModOrTailExpr && StepFound) ||
5031 InvalidReductionId || IsInvalidMapperModifier || InvalidIterator;
5032}
5033
5034OMPClause *Parser::ParseOpenMPVarListClause(OpenMPDirectiveKind DKind,
5035 OpenMPClauseKind Kind,
5036 bool ParseOnly) {
5037 SourceLocation Loc = Tok.getLocation();
5038 SourceLocation LOpen = ConsumeToken();
5041
5042 if (ParseOpenMPVarList(DKind, Kind, Vars, Data))
5043 return nullptr;
5044
5045 if (ParseOnly)
5046 return nullptr;
5047 OMPVarListLocTy Locs(Loc, LOpen, Data.RLoc);
5048 return Actions.OpenMP().ActOnOpenMPVarListClause(Kind, Vars, Locs, Data);
5049}
5050
5051bool Parser::ParseOpenMPExprListClause(OpenMPClauseKind Kind,
5052 SourceLocation &ClauseNameLoc,
5053 SourceLocation &OpenLoc,
5054 SourceLocation &CloseLoc,
5056 bool ReqIntConst) {
5057 assert(getOpenMPClauseName(Kind) == PP.getSpelling(Tok) &&
5058 "Expected parsing to start at clause name");
5059 ClauseNameLoc = ConsumeToken();
5060
5061 // Parse inside of '(' and ')'.
5062 BalancedDelimiterTracker T(*this, tok::l_paren, tok::annot_pragma_openmp_end);
5063 if (T.consumeOpen()) {
5064 Diag(Tok, diag::err_expected) << tok::l_paren;
5065 return true;
5066 }
5067
5068 // Parse the list with interleaved commas.
5069 do {
5070 ExprResult Val =
5072 if (!Val.isUsable()) {
5073 // Encountered something other than an expression; abort to ')'.
5074 T.skipToEnd();
5075 return true;
5076 }
5077 Exprs.push_back(Val.get());
5078 } while (TryConsumeToken(tok::comma));
5079
5080 bool Result = T.consumeClose();
5081 OpenLoc = T.getOpenLocation();
5082 CloseLoc = T.getCloseLocation();
5083 return Result;
5084}
Defines the clang::ASTContext interface.
bool isNot(T Kind) const
Token Tok
The Token.
bool is(tok::TokenKind Kind) const
static DiagnosticBuilder Diag(DiagnosticsEngine *Diags, const LangOptions &Features, FullSourceLoc TokLoc, const char *TokBegin, const char *TokRangeBegin, const char *TokRangeEnd, unsigned DiagID)
Produce a diagnostic highlighting some portion of a literal.
This file defines OpenMP AST classes for clauses.
Defines some OpenMP-specific enums and functions.
static OpenMPDirectiveKind checkOpenMPDirectiveName(Parser &P, SourceLocation Loc, OpenMPDirectiveKind Kind, StringRef Name)
static OpenMPDirectiveKind parseOpenMPDirectiveKind(Parser &P)
static OpenMPMapModifierKind isMapModifier(Parser &P)
Checks if the token is a valid map-type-modifier.
static std::optional< SimpleClauseData > parseOpenMPSimpleClause(Parser &P, OpenMPClauseKind Kind)
static bool checkExtensionProperty(Parser &P, SourceLocation Loc, OMPTraitProperty &TIProperty, OMPTraitSelector &TISelector, llvm::StringMap< SourceLocation > &Seen)
static ExprResult parseOpenMPAllocateClauseModifiers(Parser &P, OpenMPClauseKind Kind, SemaOpenMP::OpenMPVarListDataTy &Data)
Parse 'allocate' clause modifiers.
static DeclarationName parseOpenMPReductionId(Parser &P)
static ExprResult parseContextScore(Parser &P)
Parse optional 'score' '(' <expr> ')' ':'.
static bool ParseReductionId(Parser &P, CXXScopeSpec &ReductionIdScopeSpec, UnqualifiedId &ReductionId)
static bool parseStepSize(Parser &P, SemaOpenMP::OpenMPVarListDataTy &Data, OpenMPClauseKind CKind, SourceLocation ELoc)
Parse step size expression.
static void parseMapType(Parser &P, SemaOpenMP::OpenMPVarListDataTy &Data)
Parse map-type in map clause.
static bool parseDeclareSimdClauses(Parser &P, OMPDeclareSimdDeclAttr::BranchStateTy &BS, ExprResult &SimdLen, SmallVectorImpl< Expr * > &Uniforms, SmallVectorImpl< Expr * > &Aligneds, SmallVectorImpl< Expr * > &Alignments, SmallVectorImpl< Expr * > &Linears, SmallVectorImpl< unsigned > &LinModifiers, SmallVectorImpl< Expr * > &Steps)
Parses clauses for 'declare simd' directive.
static OpenMPMapClauseKind isMapType(Parser &P)
Checks if the token is a valid map-type.
This file declares semantic analysis functions specific to AMDGPU.
This file declares facilities that support code completion.
This file declares semantic analysis for OpenMP constructs and clauses.
Defines the clang::TokenKind enum and support functions.
VerifyDiagnosticConsumer::Directive Directive
Holds long-lived AST nodes (such as types and decls) that can be referred to throughout the semantic ...
Definition ASTContext.h:188
DeclarationNameTable DeclarationNames
Definition ASTContext.h:741
OMPTraitInfo & getNewOMPTraitInfo()
Return a new OMPTraitInfo object owned by this context.
bool isUnset() const
Definition Ownership.h:168
PtrTy get() const
Definition Ownership.h:171
bool isInvalid() const
Definition Ownership.h:167
bool isUsable() const
Definition Ownership.h:169
RAII class that helps handle the parsing of an open/close delimiter pair, such as braces { ....
Represents a C++ nested-name-specifier or a global scope specifier.
Definition DeclSpec.h:73
bool isEmpty() const
No scope specifier.
Definition DeclSpec.h:178
TypeSpecifierType TST
Definition DeclSpec.h:247
static const TST TST_unspecified
Definition DeclSpec.h:248
Decl - This represents one declaration (or definition), e.g.
Definition DeclBase.h:86
bool isFunctionOrFunctionTemplate() const
Whether this declaration is a function or function template.
Definition DeclBase.h:1119
SourceLocation getLocation() const
Definition DeclBase.h:439
DeclContext * getDeclContext()
Definition DeclBase.h:448
The name of a declaration.
bool isEmpty() const
Evaluates true when this declaration name is empty.
bool isValueDependent() const
Determines whether the value of this expression depends on.
Definition Expr.h:177
bool isTypeDependent() const
Determines whether the type of this expression depends on.
Definition Expr.h:194
bool containsUnexpandedParameterPack() const
Whether this expression contains an unexpanded parameter pack (for C++11 variadic templates).
Definition Expr.h:241
bool isInstantiationDependent() const
Whether this expression is instantiation-dependent, meaning that it depends in some way on.
Definition Expr.h:223
static FixItHint CreateReplacement(CharSourceRange RemoveRange, StringRef Code)
Create a code modification hint that replaces the given source range with the given code string.
Definition Diagnostic.h:139
One of these records is kept for each identifier that is lexed.
StringRef getName() const
Return the actual identifier string.
Keeps track of the various options that can be enabled, which controls the dialect of C or C++ that i...
This represents a decl that may have a name.
Definition Decl.h:273
bool isCXXInstanceMember() const
Determine whether the given declaration is an instance member of a C++ class.
Definition Decl.cpp:1962
This is a basic class for representing single OpenMP clause.
Helper data structure representing the traits in a match clause of an declare variant or metadirectiv...
void getAsVariantMatchInfo(ASTContext &ASTCtx, llvm::omp::VariantMatchInfo &VMI) const
Create a variant match info object from this trait info object.
llvm::SmallVector< OMPTraitSet, 2 > Sets
The outermost level of selector sets.
PtrTy get() const
Definition Ownership.h:81
static const ParsedAttributesView & none()
Definition ParsedAttr.h:817
ParsedAttributes - A collection of parsed attributes.
Definition ParsedAttr.h:937
Introduces zero or more scopes for parsing.
Definition Parser.h:432
void Enter(unsigned ScopeFlags)
Definition Parser.h:440
ParseScope - Introduces a new scope for parsing.
Definition Parser.h:396
Parser - This implements a parser for the C family of languages.
Definition Parser.h:171
bool ParseOpenMPVarList(OpenMPDirectiveKind DKind, OpenMPClauseKind Kind, SmallVectorImpl< Expr * > &Vars, SemaOpenMP::OpenMPVarListDataTy &Data)
Parses clauses with list.
TypeResult ParseTypeName(SourceRange *Range=nullptr, DeclaratorContext Context=DeclaratorContext::TypeName, AccessSpecifier AS=AS_none, Decl **OwnedType=nullptr, ParsedAttributes *Attrs=nullptr)
ParseTypeName.
Definition ParseDecl.cpp:44
DiagnosticBuilder Diag(SourceLocation Loc, unsigned DiagID)
Definition Parser.cpp:85
Preprocessor & getPreprocessor() const
Definition Parser.h:206
bool parseMapTypeModifiers(SemaOpenMP::OpenMPVarListDataTy &Data)
Parse map-type-modifiers in map clause.
ExprResult ParseStringLiteralExpression(bool AllowUserDefinedLiteral=false)
ParseStringLiteralExpression - This handles the various token types that form string literals,...
SourceLocation ConsumeToken()
ConsumeToken - Consume the current 'peek token' and lex the next one.
Definition Parser.h:262
Sema & getActions() const
Definition Parser.h:207
void EnterScope(unsigned ScopeFlags)
EnterScope - Start a new scope.
Definition Parser.cpp:420
bool parseMapperModifier(SemaOpenMP::OpenMPVarListDataTy &Data)
Parses the mapper modifier in map, to, and from clauses.
friend class ParsingOpenMPDirectiveRAII
Definition Parser.h:6311
bool ParseUnqualifiedId(CXXScopeSpec &SS, ParsedType ObjectType, bool ObjectHadErrors, bool EnteringContext, bool AllowDestructorName, bool AllowConstructorName, bool AllowDeductionGuide, SourceLocation *TemplateKWLoc, UnqualifiedId &Result)
Parse a C++ unqualified-id (or a C identifier), which describes the name of an entity.
friend class ColonProtectionRAIIObject
Definition Parser.h:196
SourceLocation ConsumeAnyToken(bool ConsumeCodeCompletionTok=false)
ConsumeAnyToken - Dispatch to the right Consume* method based on the current token type.
Definition Parser.h:290
ExprResult ParseConstantExpression()
bool TryConsumeToken(tok::TokenKind Expected)
Definition Parser.h:270
OpaquePtr< DeclGroupRef > DeclGroupPtrTy
Definition Parser.h:219
Scope * getCurScope() const
Definition Parser.h:211
bool SkipUntil(tok::TokenKind T, SkipUntilFlags Flags=static_cast< SkipUntilFlags >(0))
SkipUntil - Read tokens until we get to the specified token, then consume it (unless StopBeforeMatch ...
Definition Parser.h:495
const Token & getCurToken() const
Definition Parser.h:210
void ExitScope()
ExitScope - Pop a scope off the scope stack.
Definition Parser.cpp:430
ExprResult ParseOpenMPParensExpr(StringRef ClauseName, SourceLocation &RLoc, bool IsAddressOfOperand=false)
Parses simple expression in parens for single-expression clauses of OpenMP constructs.
const LangOptions & getLangOpts() const
Definition Parser.h:204
friend class ParenBraceBracketBalancer
Definition Parser.h:198
ExprResult ParseExpression(TypoCorrectionTypeBehavior CorrectionBehavior=TypoCorrectionTypeBehavior::AllowNonTypes)
Simple precedence-based parser for binary/ternary operators.
Definition ParseExpr.cpp:47
@ StopBeforeMatch
Stop skipping at specified token, but don't skip the token itself.
Definition Parser.h:476
bool ParseOpenMPReservedLocator(OpenMPClauseKind Kind, SemaOpenMP::OpenMPVarListDataTy &Data, const LangOptions &LangOpts)
Parses a reserved locator like 'omp_all_memory'.
const Token & NextToken()
NextToken - This peeks ahead one token and returns it without consuming it.
Definition Parser.h:324
ExprResult ParseAssignmentExpression(TypoCorrectionTypeBehavior CorrectionBehavior=TypoCorrectionTypeBehavior::AllowNonTypes)
Parse an expr that doesn't include (top-level) commas.
Definition ParseExpr.cpp:75
friend class BalancedDelimiterTracker
Definition Parser.h:199
unsigned ReenterTemplateScopes(MultiParseScope &S, Decl *D)
Re-enter a possible template scope, creating as many template parameter scopes as necessary.
bool ParseOpenMPDeclareBeginVariantDirective(SourceLocation Loc)
Parses 'omp begin declare variant' directive.
Engages in a tight little dance with the lexer to efficiently preprocess tokens.
const Token & LookAhead(unsigned N)
Peeks ahead N tokens and returns that token without consuming any tokens.
StringRef getSpelling(SourceLocation loc, SmallVectorImpl< char > &buffer, bool *invalid=nullptr) const
Return the 'spelling' of the token at the given location; does not go up to the spelling location or ...
bool isNull() const
Return true if this QualType doesn't point to a type yet.
Definition TypeBase.h:1004
The collection of all-type qualifiers we support.
Definition TypeBase.h:331
Represents a struct/union/class.
Definition Decl.h:4309
@ OpenMPDirectiveScope
This is the scope of OpenMP executable directive.
Definition Scope.h:111
@ CompoundStmtScope
This is a compound statement scope.
Definition Scope.h:134
@ OpenMPSimdDirectiveScope
This is the scope of some OpenMP simd directive.
Definition Scope.h:119
@ FnScope
This indicates that the scope corresponds to a function, which means that labels are set here.
Definition Scope.h:51
@ OpenMPLoopDirectiveScope
This is the scope of some OpenMP loop directive.
Definition Scope.h:114
@ DeclScope
This is a scope that can contain a declaration.
Definition Scope.h:63
Smart pointer class that efficiently represents Objective-C method names.
bool CheckOpenMPLinearModifier(OpenMPLinearClauseKind LinKind, SourceLocation LinLoc)
Checks correctness of linear modifiers.
OMPClause * ActOnOpenMPUsesAllocatorClause(SourceLocation StartLoc, SourceLocation LParenLoc, SourceLocation EndLoc, ArrayRef< UsesAllocatorsData > Data)
Called on well-formed 'uses_allocators' clause.
OMPClause * ActOnOpenMPSingleExprClause(OpenMPClauseKind Kind, Expr *Expr, SourceLocation StartLoc, SourceLocation LParenLoc, SourceLocation EndLoc)
OMPClause * ActOnOpenMPVarListClause(OpenMPClauseKind Kind, ArrayRef< Expr * > Vars, const OMPVarListLocTy &Locs, OpenMPVarListDataTy &Data)
RAII object used to temporarily allow the C++ 'this' expression to be used, with the given qualifiers...
Definition Sema.h:8401
Sema - This implements semantic analysis and AST building for C.
Definition Sema.h:854
Scope * getCurScope() const
Retrieve the parser's current scope.
Definition Sema.h:1120
SemaOpenMP & OpenMP()
Definition Sema.h:1505
void ActOnExitFunctionContext()
void ActOnReenterFunctionContext(Scope *S, Decl *D)
Push the parameters of D, which must be a function, into scope.
ASTContext & getASTContext() const
Definition Sema.h:925
const LangOptions & getLangOpts() const
Definition Sema.h:918
@ Unevaluated
The current expression and its subexpressions occur within an unevaluated operand (C++11 [expr]p7),...
Definition Sema.h:6675
ExprResult ActOnFinishFullExpr(Expr *Expr, bool DiscardedValue)
Definition Sema.h:8609
Encodes a location in the source.
bool isValid() const
Return true if this is a valid SourceLocation object.
A trivial tuple used to represent a source range.
StringLiteral - This represents a string literal expression, e.g.
Definition Expr.h:1799
Token - This structure provides full information about a lexed token.
Definition Token.h:36
SourceLocation getLocation() const
Return a source location identifier for the specified offset in the current file.
Definition Token.h:134
bool is(tok::TokenKind K) const
is/isNot - Predicates to check if this token is a specific kind, as in "if (Tok.is(tok::l_brace)) {....
Definition Token.h:102
tok::TokenKind getKind() const
Definition Token.h:97
bool isNot(tok::TokenKind K) const
Definition Token.h:103
Base wrapper for a particular "section" of type source info.
Definition TypeLoc.h:59
The base class of the type hierarchy.
Definition TypeBase.h:1833
QualType getCanonicalTypeInternal() const
Definition TypeBase.h:3119
Represents a C++ unqualified-id that has been parsed.
Definition DeclSpec.h:998
void setOperatorFunctionId(SourceLocation OperatorLoc, OverloadedOperatorKind Op, SourceLocation SymbolLocations[3])
Specify that this unqualified-id was parsed as an operator-function-id.
QualType getType() const
Definition Decl.h:722
Represents a variable declaration or definition.
Definition Decl.h:925
Defines the clang::TargetInfo interface.
bool Ret(InterpState &S, CodePtr &PC)
Definition Interp.h:312
bool isStringLiteral(TokenKind K)
Return true if this is a C or C++ string-literal (or C++11 user-defined-string-literal) token.
Definition TokenKinds.h:89
The JSON file list parser is used to communicate input to InstallAPI.
OverloadedOperatorKind
Enumeration specifying the different kinds of C++ overloaded operators.
@ OO_None
Not an overloaded operator.
@ CPlusPlus
@ CPlusPlus11
if(T->getSizeExpr()) TRY_TO(TraverseStmt(const_cast< Expr * >(T -> getSizeExpr())))
OpenMPDefaultClauseVariableCategory
OpenMP variable-category for 'default' clause.
@ OMPC_DEFAULTMAP_MODIFIER_unknown
@ OMPC_ORDER_MODIFIER_unknown
@ OMPC_ADJUST_ARGS_unknown
bool isOpenMPDistributeDirective(OpenMPDirectiveKind DKind)
Checks if the specified directive is a distribute directive.
@ OMPC_REDUCTION_unknown
OpenMPDeviceType
OpenMP device type for 'device_type' clause.
@ OMPC_DEVICE_TYPE_unknown
@ OMPC_SCHEDULE_MODIFIER_unknown
Definition OpenMPKinds.h:40
AccessSpecifier
A C++ access specifier (public, private, protected), plus the special value "none" which means differ...
Definition Specifiers.h:123
@ AS_none
Definition Specifiers.h:127
const char * getOpenMPSimpleClauseTypeName(OpenMPClauseKind Kind, unsigned Type)
nullptr
This class represents a compute construct, representing a 'Kind' of ‘parallel’, 'serial',...
@ OMPC_DOACROSS_unknown
bool isOpenMPTargetExecutionDirective(OpenMPDirectiveKind DKind)
Checks if the specified directive is a target code offload directive.
StmtResult StmtError()
Definition Ownership.h:266
DeclaratorContext
Definition DeclSpec.h:1824
@ Property
The type of a property.
Definition TypeBase.h:911
@ Result
The result type of a method or function.
Definition TypeBase.h:905
ActionResult< ParsedType > TypeResult
Definition Ownership.h:251
const FunctionProtoType * T
@ OMPC_LASTPRIVATE_unknown
@ OMPC_DEPEND_unknown
Definition OpenMPKinds.h:59
OpenMPGrainsizeClauseModifier
@ OMPC_GRAINSIZE_unknown
unsigned getOpenMPSimpleClauseType(OpenMPClauseKind Kind, llvm::StringRef Str, const LangOptions &LangOpts)
OpenMPNumTasksClauseModifier
@ OMPC_NUMTASKS_unknown
ExprResult ExprError()
Definition Ownership.h:265
@ Type
The name was classified as a type.
Definition Sema.h:562
bool isOpenMPLoopDirective(OpenMPDirectiveKind DKind)
Checks if the specified directive is a directive with an associated loop construct.
OpenMPMotionModifierKind
OpenMP modifier kind for 'to' or 'from' clause.
Definition OpenMPKinds.h:92
@ OMPC_MOTION_MODIFIER_unknown
Definition OpenMPKinds.h:96
@ OMPC_DEFAULTMAP_unknown
OpenMPAllocateClauseModifier
OpenMP modifiers for 'allocate' clause.
@ OMPC_ALLOCATE_unknown
OpenMPLinearClauseKind
OpenMP attributes for 'linear' clause.
Definition OpenMPKinds.h:63
@ OMPC_LINEAR_unknown
Definition OpenMPKinds.h:67
bool isOpenMPExecutableDirective(OpenMPDirectiveKind DKind)
Checks if the specified directive is considered as "executable".
llvm::omp::Directive OpenMPDirectiveKind
OpenMP directives.
Definition OpenMPKinds.h:25
bool isOpenMPInformationalDirective(OpenMPDirectiveKind DKind)
Checks if the specified directive is considered as "informational".
bool isOpenMPSimdDirective(OpenMPDirectiveKind DKind)
Checks if the specified directive is a simd directive.
OpenMPNumThreadsClauseModifier
@ OMPC_NUMTHREADS_unknown
StmtResult StmtEmpty()
Definition Ownership.h:273
SmallVector< Token, 4 > CachedTokens
A set of tokens that has been cached for later parsing.
Definition DeclSpec.h:1215
@ OMPC_DEVICE_unknown
Definition OpenMPKinds.h:51
OpaquePtr< QualType > ParsedType
An opaque type for threading parsed type information through the parser.
Definition Ownership.h:230
OpenMPMapModifierKind
OpenMP modifier kind for 'map' clause.
Definition OpenMPKinds.h:79
@ OMPC_MAP_MODIFIER_unknown
Definition OpenMPKinds.h:80
llvm::omp::Clause OpenMPClauseKind
OpenMP clauses.
Definition OpenMPKinds.h:28
ActionResult< Expr * > ExprResult
Definition Ownership.h:249
@ OMPC_ORDER_unknown
@ OMPC_SCHEDULE_unknown
Definition OpenMPKinds.h:35
bool isOpenMPTaskLoopDirective(OpenMPDirectiveKind DKind)
Checks if the specified directive is a taskloop directive.
ActionResult< Stmt * > StmtResult
Definition Ownership.h:250
OpenMPDefaultClauseVariableCategory getOpenMPDefaultVariableCategory(StringRef Str, const LangOptions &LangOpts)
OpenMPMapClauseKind
OpenMP mapping kind for 'map' clause.
Definition OpenMPKinds.h:71
@ OMPC_MAP_unknown
Definition OpenMPKinds.h:75
int const char * function
Definition c++config.h:31
#define false
Definition stdbool.h:26
DeclarationNameInfo - A collector data type for bundling together a DeclarationName and the correspon...
SourceLocation getLoc() const
getLoc - Returns the main location of the declaration name.
DeclarationName getName() const
getName - Returns the embedded declaration name.
llvm::SmallVector< Expr *, 4 > PreferTypes
llvm::omp::TraitProperty Kind
StringRef RawString
The raw string as we parsed it.
llvm::omp::TraitSelector Kind
SmallVector< OMPTraitProperty, 1 > Properties
SmallVector< OMPTraitSelector, 2 > Selectors
llvm::omp::TraitSet Kind
This structure contains most locations needed for by an OMPVarListClause.
std::optional< Expr * > Indirect
The directive with indirect clause.
Definition SemaOpenMP.h:322
OpenMPDirectiveKind Kind
The directive kind, begin declare target or declare target.
Definition SemaOpenMP.h:319
OMPDeclareTargetDeclAttr::DevTypeTy DT
The 'device_type' as parsed from the clause.
Definition SemaOpenMP.h:316
SourceLocation Loc
The directive location.
Definition SemaOpenMP.h:325
llvm::DenseMap< NamedDecl *, MapInfo > ExplicitlyMapped
Explicitly listed variables and functions in a 'to' or 'link' clause.
Definition SemaOpenMP.h:313
OMPIteratorExpr::IteratorRange Range
Data used for processing a list of variables in OpenMP clauses.
Data for list of allocators.
Expr * AllocatorTraits
Allocator traits.
SourceLocation LParenLoc
Locations of '(' and ')' symbols.
Clang specific specialization of the OMPContext to lookup target features.