22#include "llvm/ADT/SmallPtrSet.h"
23#include "llvm/Support/ErrorHandling.h"
36#define GEN_CLANG_CLAUSE_CLASS
37#define CLAUSE_CLASS(Enum, Str, Class) \
39 return static_cast<Class *>(this)->children();
40#include "llvm/Frontend/OpenMP/OMP.inc"
42 llvm_unreachable(
"unknown OMPClause");
47#define GEN_CLANG_CLAUSE_CLASS
48#define CLAUSE_CLASS(Enum, Str, Class) \
50 return static_cast<Class *>(this)->used_children();
51#define CLAUSE_NO_CLASS(Enum, Str) \
54#include "llvm/Frontend/OpenMP/OMP.inc"
56 llvm_unreachable(
"unknown OMPClause");
65 switch (
C->getClauseKind()) {
68 case OMPC_dist_schedule:
70 case OMPC_firstprivate:
72 case OMPC_lastprivate:
76 case OMPC_task_reduction:
78 case OMPC_in_reduction:
84 case OMPC_num_threads:
88 case OMPC_thread_limit:
100 case OMPC_novariants:
106 case OMPC_ompx_dyn_cgroup_mem:
122 case OMPC_copyprivate:
127 case OMPC_threadprivate:
128 case OMPC_groupprivate:
148 case OMPC_defaultmap:
153 case OMPC_use_device_ptr:
154 case OMPC_use_device_addr:
155 case OMPC_is_device_ptr:
156 case OMPC_has_device_addr:
157 case OMPC_unified_address:
158 case OMPC_unified_shared_memory:
159 case OMPC_reverse_offload:
160 case OMPC_dynamic_allocators:
161 case OMPC_atomic_default_mem_order:
165 case OMPC_device_type:
167 case OMPC_nontemporal:
173 case OMPC_uses_allocators:
192 switch (
C->getClauseKind()) {
193 case OMPC_lastprivate:
197 case OMPC_task_reduction:
199 case OMPC_in_reduction:
204 case OMPC_dist_schedule:
205 case OMPC_firstprivate:
210 case OMPC_num_threads:
221 case OMPC_copyprivate:
226 case OMPC_threadprivate:
227 case OMPC_groupprivate:
247 case OMPC_thread_limit:
253 case OMPC_defaultmap:
258 case OMPC_use_device_ptr:
259 case OMPC_use_device_addr:
260 case OMPC_is_device_ptr:
261 case OMPC_has_device_addr:
262 case OMPC_unified_address:
263 case OMPC_unified_shared_memory:
264 case OMPC_reverse_offload:
265 case OMPC_dynamic_allocators:
266 case OMPC_atomic_default_mem_order:
271 case OMPC_device_type:
273 case OMPC_nontemporal:
276 case OMPC_novariants:
281 case OMPC_uses_allocators:
298 if (
auto *DS = dyn_cast<DeclStmt>(S)) {
299 assert(DS->isSingleDecl() &&
"Only single expression must be captured.");
300 if (
auto *OED = dyn_cast<OMPCapturedExprDecl>(DS->getSingleDecl()))
301 return OED->getInitAddress();
353 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(2 * NumLoops));
355 new (Mem) OMPOrderedClause(
Num, NumLoops, StartLoc, LParenLoc, EndLoc);
356 for (
unsigned I = 0; I < NumLoops; ++I) {
357 Clause->setLoopNumIterations(I,
nullptr);
358 Clause->setLoopCounter(I,
nullptr);
365 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(2 * NumLoops));
366 auto *Clause =
new (Mem) OMPOrderedClause(NumLoops);
367 for (
unsigned I = 0; I < NumLoops; ++I) {
368 Clause->setLoopNumIterations(I,
nullptr);
369 Clause->setLoopCounter(I,
nullptr);
375 Expr *NumIterations) {
376 assert(NumLoop < NumberOfLoops &&
"out of loops number.");
377 getTrailingObjects()[NumLoop] = NumIterations;
381 return getTrailingObjects(NumberOfLoops);
385 assert(NumLoop < NumberOfLoops &&
"out of loops number.");
386 getTrailingObjects()[NumberOfLoops + NumLoop] = Counter;
390 assert(NumLoop < NumberOfLoops &&
"out of loops number.");
391 return getTrailingObjects()[NumberOfLoops + NumLoop];
395 assert(NumLoop < NumberOfLoops &&
"out of loops number.");
396 return getTrailingObjects()[NumberOfLoops + NumLoop];
402 return new (
C) OMPUpdateClause(StartLoc, EndLoc,
false);
410 C.Allocate(totalSizeToAlloc<SourceLocation, OpenMPDependClauseKind>(2, 1),
411 alignof(OMPUpdateClause));
413 new (Mem) OMPUpdateClause(StartLoc, EndLoc,
true);
414 Clause->setLParenLoc(LParenLoc);
415 Clause->setArgumentLoc(ArgumentLoc);
416 Clause->setDependencyKind(DK);
423 return new (
C) OMPUpdateClause(
false);
425 C.Allocate(totalSizeToAlloc<SourceLocation, OpenMPDependClauseKind>(2, 1),
426 alignof(OMPUpdateClause));
427 auto *Clause =
new (Mem) OMPUpdateClause(
true);
428 Clause->IsExtended =
true;
434 "Number of private copies is not the same as the preallocated buffer");
443 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(2 * VL.size()));
444 OMPPrivateClause *Clause =
445 new (Mem) OMPPrivateClause(StartLoc, LParenLoc, EndLoc, VL.size());
446 Clause->setVarRefs(VL);
447 Clause->setPrivateCopies(PrivateVL);
453 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(2 * N));
454 return new (Mem) OMPPrivateClause(N);
459 "Number of private copies is not the same as the preallocated buffer");
465 "Number of inits is not the same as the preallocated buffer");
466 llvm::copy(VL, getPrivateCopies().end());
474 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(3 * VL.size()));
475 OMPFirstprivateClause *Clause =
476 new (Mem) OMPFirstprivateClause(StartLoc, LParenLoc, EndLoc, VL.size());
477 Clause->setVarRefs(VL);
478 Clause->setPrivateCopies(PrivateVL);
479 Clause->setInits(InitVL);
480 Clause->setPreInitStmt(PreInit);
486 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(3 * N));
487 return new (Mem) OMPFirstprivateClause(N);
492 "Number of private copies is not the same as the preallocated buffer");
497 assert(SrcExprs.size() ==
varlist_size() &&
"Number of source expressions is "
498 "not the same as the "
499 "preallocated buffer");
500 llvm::copy(SrcExprs, getPrivateCopies().end());
504 assert(DstExprs.size() ==
varlist_size() &&
"Number of destination "
505 "expressions is not the same as "
506 "the preallocated buffer");
507 llvm::copy(DstExprs, getSourceExprs().end());
510void OMPLastprivateClause::setAssignmentOps(
ArrayRef<Expr *> AssignmentOps) {
512 "Number of assignment expressions is not the same as the preallocated "
514 llvm::copy(AssignmentOps, getDestinationExprs().end());
523 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(5 * VL.size()));
524 OMPLastprivateClause *Clause =
new (Mem) OMPLastprivateClause(
525 StartLoc, LParenLoc, EndLoc, LPKind, LPKindLoc, ColonLoc, VL.size());
526 Clause->setVarRefs(VL);
527 Clause->setSourceExprs(SrcExprs);
528 Clause->setDestinationExprs(DstExprs);
529 Clause->setAssignmentOps(AssignmentOps);
530 Clause->setPreInitStmt(PreInit);
531 Clause->setPostUpdateExpr(PostUpdate);
537 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(5 * N));
538 return new (Mem) OMPLastprivateClause(N);
546 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(VL.size()));
547 OMPSharedClause *Clause =
548 new (Mem) OMPSharedClause(StartLoc, LParenLoc, EndLoc, VL.size());
549 Clause->setVarRefs(VL);
554 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(N));
555 return new (Mem) OMPSharedClause(N);
560 "Number of privates is not the same as the preallocated buffer");
566 "Number of inits is not the same as the preallocated buffer");
567 llvm::copy(IL, getPrivates().end());
572 "Number of updates is not the same as the preallocated buffer");
573 llvm::copy(UL, getInits().end());
578 "Number of final updates is not the same as the preallocated buffer");
579 llvm::copy(FL, getUpdates().end());
585 "Number of used expressions is not the same as the preallocated buffer");
586 llvm::copy(UE, getFinals().end() + 2);
599 C.Allocate(totalSizeToAlloc<Expr *>(5 * VL.size() + 2 + VL.size() + 1));
600 OMPLinearClause *Clause =
601 new (Mem) OMPLinearClause(StartLoc, LParenLoc, Modifier, ModifierLoc,
602 ColonLoc, StepModifierLoc, EndLoc, VL.size());
603 Clause->setVarRefs(VL);
604 Clause->setPrivates(PL);
605 Clause->setInits(IL);
608 std::fill(Clause->getInits().end(), Clause->getInits().end() + VL.size(),
610 std::fill(Clause->getUpdates().end(), Clause->getUpdates().end() + VL.size(),
612 std::fill(Clause->getUsedExprs().begin(), Clause->getUsedExprs().end(),
614 Clause->setStep(Step);
615 Clause->setCalcStep(CalcStep);
616 Clause->setPreInitStmt(PreInit);
617 Clause->setPostUpdateExpr(PostUpdate);
625 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(5 * NumVars + 2 + NumVars +1));
626 return new (Mem) OMPLinearClause(NumVars);
632 reinterpret_cast<Stmt **
>(getUsedExprs().begin()),
633 reinterpret_cast<Stmt **
>(llvm::find(getUsedExprs(),
nullptr)));
640 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(VL.size() + 1));
641 OMPAlignedClause *Clause =
new (Mem)
642 OMPAlignedClause(StartLoc, LParenLoc, ColonLoc, EndLoc, VL.size());
643 Clause->setVarRefs(VL);
644 Clause->setAlignment(A);
650 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(NumVars + 1));
651 return new (Mem) OMPAlignedClause(NumVars);
658 return new (
C) OMPAlignClause(A, StartLoc, LParenLoc, EndLoc);
662 assert(SrcExprs.size() ==
varlist_size() &&
"Number of source expressions is "
663 "not the same as the "
664 "preallocated buffer");
669 assert(DstExprs.size() ==
varlist_size() &&
"Number of destination "
670 "expressions is not the same as "
671 "the preallocated buffer");
672 llvm::copy(DstExprs, getSourceExprs().end());
677 "Number of assignment expressions is not the same as the preallocated "
679 llvm::copy(AssignmentOps, getDestinationExprs().end());
686 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(4 * VL.size()));
687 OMPCopyinClause *Clause =
688 new (Mem) OMPCopyinClause(StartLoc, LParenLoc, EndLoc, VL.size());
689 Clause->setVarRefs(VL);
690 Clause->setSourceExprs(SrcExprs);
691 Clause->setDestinationExprs(DstExprs);
692 Clause->setAssignmentOps(AssignmentOps);
697 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(4 * N));
698 return new (Mem) OMPCopyinClause(N);
702 assert(SrcExprs.size() ==
varlist_size() &&
"Number of source expressions is "
703 "not the same as the "
704 "preallocated buffer");
709 assert(DstExprs.size() ==
varlist_size() &&
"Number of destination "
710 "expressions is not the same as "
711 "the preallocated buffer");
712 llvm::copy(DstExprs, getSourceExprs().end());
715void OMPCopyprivateClause::setAssignmentOps(
ArrayRef<Expr *> AssignmentOps) {
717 "Number of assignment expressions is not the same as the preallocated "
719 llvm::copy(AssignmentOps, getDestinationExprs().end());
726 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(4 * VL.size()));
727 OMPCopyprivateClause *Clause =
728 new (Mem) OMPCopyprivateClause(StartLoc, LParenLoc, EndLoc, VL.size());
729 Clause->setVarRefs(VL);
730 Clause->setSourceExprs(SrcExprs);
731 Clause->setDestinationExprs(DstExprs);
732 Clause->setAssignmentOps(AssignmentOps);
738 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(4 * N));
739 return new (Mem) OMPCopyprivateClause(N);
744 "Number of private copies is not the same as the preallocated buffer");
751 "Number of LHS expressions is not the same as the preallocated buffer");
752 llvm::copy(LHSExprs, getPrivates().end());
758 "Number of RHS expressions is not the same as the preallocated buffer");
759 llvm::copy(RHSExprs, getLHSExprs().end());
763 assert(ReductionOps.size() ==
varlist_size() &&
"Number of reduction "
764 "expressions is not the same "
765 "as the preallocated buffer");
766 llvm::copy(ReductionOps, getRHSExprs().end());
770 assert(Modifier == OMPC_REDUCTION_inscan &&
"Expected inscan reduction.");
771 assert(Ops.size() ==
varlist_size() &&
"Number of copy "
772 "expressions is not the same "
773 "as the preallocated buffer");
774 llvm::copy(Ops, getReductionOps().end());
777void OMPReductionClause::setInscanCopyArrayTemps(
779 assert(Modifier == OMPC_REDUCTION_inscan &&
"Expected inscan reduction.");
781 "Number of copy temp expressions is not the same as the preallocated "
783 llvm::copy(CopyArrayTemps, getInscanCopyOps().end());
786void OMPReductionClause::setInscanCopyArrayElems(
788 assert(Modifier == OMPC_REDUCTION_inscan &&
"Expected inscan reduction.");
790 "Number of copy temp expressions is not the same as the preallocated "
792 llvm::copy(CopyArrayElems, getInscanCopyArrayTemps().end());
806 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *, bool>(
807 (Modifier == OMPC_REDUCTION_inscan ? 8 : 5) * VL.size(), VL.size()));
808 auto *Clause =
new (Mem) OMPReductionClause(
809 StartLoc, LParenLoc, ModifierLoc, EndLoc, ColonLoc, Modifier,
810 OrignalSharingModifier, VL.size(), QualifierLoc, NameInfo);
811 Clause->setVarRefs(VL);
812 Clause->setPrivates(Privates);
813 Clause->setLHSExprs(LHSExprs);
814 Clause->setRHSExprs(RHSExprs);
815 Clause->setReductionOps(ReductionOps);
816 Clause->setPreInitStmt(PreInit);
817 Clause->setPostUpdateExpr(PostUpdate);
818 Clause->setPrivateVariableReductionFlags(IsPrivateVarReduction);
819 if (Modifier == OMPC_REDUCTION_inscan) {
820 Clause->setInscanCopyOps(CopyOps);
821 Clause->setInscanCopyArrayTemps(CopyArrayTemps);
822 Clause->setInscanCopyArrayElems(CopyArrayElems);
824 assert(CopyOps.empty() &&
825 "copy operations are expected in inscan reductions only.");
826 assert(CopyArrayTemps.empty() &&
827 "copy array temps are expected in inscan reductions only.");
828 assert(CopyArrayElems.empty() &&
829 "copy array temps are expected in inscan reductions only.");
837 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *, bool>(
838 (Modifier == OMPC_REDUCTION_inscan ? 8 : 5) * N, N));
839 auto *Clause =
new (Mem) OMPReductionClause(N);
840 Clause->setModifier(Modifier);
846 "Number of private copies is not the same as the preallocated buffer");
853 "Number of LHS expressions is not the same as the preallocated buffer");
854 llvm::copy(LHSExprs, getPrivates().end());
860 "Number of RHS expressions is not the same as the preallocated buffer");
861 llvm::copy(RHSExprs, getLHSExprs().end());
864void OMPTaskReductionClause::setReductionOps(
ArrayRef<Expr *> ReductionOps) {
865 assert(ReductionOps.size() ==
varlist_size() &&
"Number of task reduction "
866 "expressions is not the same "
867 "as the preallocated buffer");
868 llvm::copy(ReductionOps, getRHSExprs().end());
878 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(5 * VL.size()));
879 OMPTaskReductionClause *Clause =
new (Mem) OMPTaskReductionClause(
880 StartLoc, LParenLoc, EndLoc, ColonLoc, VL.size(), QualifierLoc, NameInfo);
881 Clause->setVarRefs(VL);
882 Clause->setPrivates(Privates);
883 Clause->setLHSExprs(LHSExprs);
884 Clause->setRHSExprs(RHSExprs);
885 Clause->setReductionOps(ReductionOps);
886 Clause->setPreInitStmt(PreInit);
887 Clause->setPostUpdateExpr(PostUpdate);
893 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(5 * N));
894 return new (Mem) OMPTaskReductionClause(N);
899 "Number of private copies is not the same as the preallocated buffer");
906 "Number of LHS expressions is not the same as the preallocated buffer");
907 llvm::copy(LHSExprs, getPrivates().end());
913 "Number of RHS expressions is not the same as the preallocated buffer");
914 llvm::copy(RHSExprs, getLHSExprs().end());
918 assert(ReductionOps.size() ==
varlist_size() &&
"Number of in reduction "
919 "expressions is not the same "
920 "as the preallocated buffer");
921 llvm::copy(ReductionOps, getRHSExprs().end());
924void OMPInReductionClause::setTaskgroupDescriptors(
927 "Number of in reduction descriptors is not the same as the "
928 "preallocated buffer");
929 llvm::copy(TaskgroupDescriptors, getReductionOps().end());
939 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(6 * VL.size()));
940 OMPInReductionClause *Clause =
new (Mem) OMPInReductionClause(
941 StartLoc, LParenLoc, EndLoc, ColonLoc, VL.size(), QualifierLoc, NameInfo);
942 Clause->setVarRefs(VL);
943 Clause->setPrivates(Privates);
944 Clause->setLHSExprs(LHSExprs);
945 Clause->setRHSExprs(RHSExprs);
946 Clause->setReductionOps(ReductionOps);
947 Clause->setTaskgroupDescriptors(TaskgroupDescriptors);
948 Clause->setPreInitStmt(PreInit);
949 Clause->setPostUpdateExpr(PostUpdate);
955 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(6 * N));
956 return new (Mem) OMPInReductionClause(N);
965 Clause->setLocStart(StartLoc);
966 Clause->setLParenLoc(LParenLoc);
967 Clause->setLocEnd(EndLoc);
968 Clause->setSizesRefs(Sizes);
974 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(NumSizes));
975 return new (Mem) OMPSizesClause(NumSizes);
983 OMPPermutationClause *Clause =
CreateEmpty(
C, Args.size());
984 Clause->setLocStart(StartLoc);
985 Clause->setLParenLoc(LParenLoc);
986 Clause->setLocEnd(EndLoc);
987 Clause->setArgRefs(Args);
993 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(NumLoops));
994 return new (Mem) OMPPermutationClause(NumLoops);
1001 Clause->setLocStart(StartLoc);
1002 Clause->setLocEnd(EndLoc);
1007 return new (
C) OMPFullClause();
1016 Clause->setLocStart(StartLoc);
1017 Clause->setLParenLoc(LParenLoc);
1018 Clause->setLocEnd(EndLoc);
1019 Clause->setFactor(Factor);
1024 return new (
C) OMPPartialClause();
1035 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(VL.size()));
1036 auto *Clause =
new (Mem) OMPAllocateClause(
1037 StartLoc, LParenLoc, Allocator, Alignment, ColonLoc, Modifier1,
1038 Modifier1Loc, Modifier2, Modifier2Loc, EndLoc, VL.size());
1040 Clause->setVarRefs(VL);
1046 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(N));
1047 return new (Mem) OMPAllocateClause(N);
1055 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(VL.size() + 1));
1056 OMPFlushClause *Clause =
1057 new (Mem) OMPFlushClause(StartLoc, LParenLoc, EndLoc, VL.size());
1058 Clause->setVarRefs(VL);
1063 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(N));
1064 return new (Mem) OMPFlushClause(N);
1072 auto *Clause =
new (
C) OMPDepobjClause(StartLoc, LParenLoc, RParenLoc);
1073 Clause->setDepobj(Depobj);
1078 return new (
C) OMPDepobjClause();
1086 void *Mem =
C.Allocate(
1087 totalSizeToAlloc<Expr *>(VL.size() + 1 + NumLoops),
1088 alignof(OMPDependClause));
1089 OMPDependClause *Clause =
new (Mem)
1090 OMPDependClause(StartLoc, LParenLoc, EndLoc, VL.size(), NumLoops);
1091 Clause->setDependencyKind(Data.DepKind);
1092 Clause->setDependencyLoc(Data.DepLoc);
1093 Clause->setColonLoc(Data.ColonLoc);
1094 Clause->setOmpAllMemoryLoc(Data.OmpAllMemoryLoc);
1095 Clause->setModifier(DepModifier);
1096 Clause->setVarRefs(VL);
1097 for (
unsigned I = 0 ; I < NumLoops; ++I)
1098 Clause->setLoopData(I,
nullptr);
1103 unsigned NumLoops) {
1105 C.Allocate(totalSizeToAlloc<Expr *>(N + 1 + NumLoops),
1106 alignof(OMPDependClause));
1107 return new (Mem) OMPDependClause(N, NumLoops);
1113 NumLoop < NumLoops &&
1114 "Expected sink or source depend + loop index must be less number of "
1116 auto *It = std::next(
getVarRefs().end(), NumLoop + 1);
1123 NumLoop < NumLoops &&
1124 "Expected sink or source depend + loop index must be less number of "
1126 auto *It = std::next(
getVarRefs().end(), NumLoop + 1);
1133 NumLoop < NumLoops &&
1134 "Expected sink or source depend + loop index must be less number of "
1136 const auto *It = std::next(
getVarRefs().end(), NumLoop + 1);
1140void OMPDependClause::setModifier(
Expr *DepModifier) {
1147 unsigned TotalNum = 0u;
1148 for (
auto &
C : ComponentLists)
1149 TotalNum +=
C.size();
1156 for (
const ValueDecl *D : Declarations) {
1158 UniqueDecls.insert(VD);
1160 return UniqueDecls.size();
1166 "Cannot get element-type from array-shaping expr.");
1180 if (
const auto *ATy = BaseType->getAsArrayTypeUnsafe())
1181 ElemTy = ATy->getElementType();
1189std::pair<const Expr *, std::optional<size_t>>
1195 if (Components.size() < 2)
1196 return {
nullptr, std::nullopt};
1201 if (Components.back().isNonContiguous() && CurDirKind == OMPD_target_update)
1202 return {
nullptr, std::nullopt};
1208 for (
auto [I, Component] : llvm::enumerate(Components)) {
1213 const Expr *CurExpr = Component.getAssociatedExpression();
1228 return {CurExpr, Components.size() - I};
1231 return {
nullptr, std::nullopt};
1258 void *Mem =
C.Allocate(
1264 OMPMapClause *Clause =
new (Mem)
1265 OMPMapClause(MapModifiers, MapModifiersLoc, UDMQualifierLoc, MapperId,
1268 Clause->setVarRefs(Vars);
1269 Clause->setUDMapperRefs(UDMapperRefs);
1270 Clause->setIteratorModifier(IteratorModifier);
1271 Clause->setClauseInfo(Declarations, ComponentLists);
1272 Clause->setMapType(
Type);
1280 void *Mem =
C.Allocate(
1286 OMPMapClause *Clause =
new (Mem) OMPMapClause(Sizes);
1287 Clause->setIteratorModifier(
nullptr);
1314 void *Mem =
C.Allocate(
1321 auto *Clause =
new (Mem) OMPToClause(MotionModifiers, MotionModifiersLoc,
1322 UDMQualifierLoc, MapperId, Locs, Sizes);
1324 Clause->setVarRefs(Vars);
1325 Clause->setUDMapperRefs(UDMapperRefs);
1326 Clause->setClauseInfo(Declarations, ComponentLists);
1332 void *Mem =
C.Allocate(
1338 return new (Mem) OMPToClause(Sizes);
1364 void *Mem =
C.Allocate(
1372 new (Mem) OMPFromClause(MotionModifiers, MotionModifiersLoc,
1373 UDMQualifierLoc, MapperId, Locs, Sizes);
1375 Clause->setVarRefs(Vars);
1376 Clause->setUDMapperRefs(UDMapperRefs);
1377 Clause->setClauseInfo(Declarations, ComponentLists);
1384 void *Mem =
C.Allocate(
1390 return new (Mem) OMPFromClause(Sizes);
1395 "Number of private copies is not the same as the preallocated buffer");
1401 "Number of inits is not the same as the preallocated buffer");
1402 llvm::copy(VL, getPrivateCopies().end());
1426 void *Mem =
C.Allocate(
1433 OMPUseDevicePtrClause *Clause =
new (Mem) OMPUseDevicePtrClause(Locs, Sizes);
1435 Clause->setVarRefs(Vars);
1436 Clause->setPrivateCopies(PrivateVars);
1437 Clause->setInits(Inits);
1438 Clause->setClauseInfo(Declarations, ComponentLists);
1445 void *Mem =
C.Allocate(
1451 return new (Mem) OMPUseDevicePtrClause(Sizes);
1475 void *Mem =
C.Allocate(
1482 auto *Clause =
new (Mem) OMPUseDeviceAddrClause(Locs, Sizes);
1484 Clause->setVarRefs(Vars);
1485 Clause->setClauseInfo(Declarations, ComponentLists);
1492 void *Mem =
C.Allocate(
1498 return new (Mem) OMPUseDeviceAddrClause(Sizes);
1522 void *Mem =
C.Allocate(
1529 OMPIsDevicePtrClause *Clause =
new (Mem) OMPIsDevicePtrClause(Locs, Sizes);
1531 Clause->setVarRefs(Vars);
1532 Clause->setClauseInfo(Declarations, ComponentLists);
1539 void *Mem =
C.Allocate(
1545 return new (Mem) OMPIsDevicePtrClause(Sizes);
1569 void *Mem =
C.Allocate(
1576 auto *Clause =
new (Mem) OMPHasDeviceAddrClause(Locs, Sizes);
1578 Clause->setVarRefs(Vars);
1579 Clause->setClauseInfo(Declarations, ComponentLists);
1586 void *Mem =
C.Allocate(
1592 return new (Mem) OMPHasDeviceAddrClause(Sizes);
1601 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(2 * VL.size()));
1603 new (Mem) OMPNontemporalClause(StartLoc, LParenLoc, EndLoc, VL.size());
1604 Clause->setVarRefs(VL);
1610 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(2 * N));
1611 return new (Mem) OMPNontemporalClause(N);
1615 assert(VL.size() ==
varlist_size() &&
"Number of private references is not "
1616 "the same as the preallocated buffer");
1625 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(VL.size()));
1627 new (Mem) OMPInclusiveClause(StartLoc, LParenLoc, EndLoc, VL.size());
1628 Clause->setVarRefs(VL);
1634 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(N));
1635 return new (Mem) OMPInclusiveClause(N);
1643 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(VL.size()));
1645 new (Mem) OMPExclusiveClause(StartLoc, LParenLoc, EndLoc, VL.size());
1646 Clause->setVarRefs(VL);
1652 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(N));
1653 return new (Mem) OMPExclusiveClause(N);
1656void OMPUsesAllocatorsClause::setAllocatorsData(
1658 assert(
Data.size() == NumOfAllocators &&
1659 "Size of allocators data is not the same as the preallocated buffer.");
1660 for (
unsigned I = 0, E =
Data.size(); I < E; ++I) {
1662 getTrailingObjects<Expr *>()[I *
static_cast<int>(ExprOffsets::Total) +
1663 static_cast<int>(ExprOffsets::Allocator)] =
1665 getTrailingObjects<Expr *>()[I *
static_cast<int>(ExprOffsets::Total) +
1667 ExprOffsets::AllocatorTraits)] =
1670 SourceLocation>()[I *
static_cast<int>(ParenLocsOffsets::Total) +
1671 static_cast<int>(ParenLocsOffsets::LParen)] =
1674 SourceLocation>()[I *
static_cast<int>(ParenLocsOffsets::Total) +
1675 static_cast<int>(ParenLocsOffsets::RParen)] =
1684 getTrailingObjects<Expr *>()[I *
static_cast<int>(ExprOffsets::Total) +
1685 static_cast<int>(ExprOffsets::Allocator)];
1687 getTrailingObjects<Expr *>()[I *
static_cast<int>(ExprOffsets::Total) +
1689 ExprOffsets::AllocatorTraits)];
1691 SourceLocation>()[I *
static_cast<int>(ParenLocsOffsets::Total) +
1692 static_cast<int>(ParenLocsOffsets::LParen)];
1694 SourceLocation>()[I *
static_cast<int>(ParenLocsOffsets::Total) +
1695 static_cast<int>(ParenLocsOffsets::RParen)];
1703 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *, SourceLocation>(
1704 static_cast<int>(ExprOffsets::Total) *
Data.size(),
1705 static_cast<int>(ParenLocsOffsets::Total) *
Data.size()));
1706 auto *Clause =
new (Mem)
1707 OMPUsesAllocatorsClause(StartLoc, LParenLoc, EndLoc,
Data.size());
1708 Clause->setAllocatorsData(
Data);
1714 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *, SourceLocation>(
1715 static_cast<int>(ExprOffsets::Total) * N,
1716 static_cast<int>(ParenLocsOffsets::Total) * N));
1717 return new (Mem) OMPUsesAllocatorsClause(N);
1725 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(Locators.size() + 1));
1726 auto *Clause =
new (Mem)
1727 OMPAffinityClause(StartLoc, LParenLoc, ColonLoc, EndLoc, Locators.size());
1728 Clause->setModifier(Modifier);
1729 Clause->setVarRefs(Locators);
1735 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(N + 1));
1736 return new (Mem) OMPAffinityClause(N);
1747 C.Allocate(totalSizeToAlloc<Expr *>(InteropInfo.
PreferTypes.size() + 1));
1748 auto *Clause =
new (Mem) OMPInitClause(
1750 VarLoc, EndLoc, InteropInfo.
PreferTypes.size() + 1);
1751 Clause->setInteropVar(InteropVar);
1752 llvm::copy(InteropInfo.
PreferTypes, Clause->getTrailingObjects() + 1);
1757 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(N));
1758 return new (Mem) OMPInitClause(N);
1765 return new (
C) OMPBindClause(K, KLoc, StartLoc, LParenLoc, EndLoc);
1769 return new (
C) OMPBindClause();
1778 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(VL.size() + NumLoops),
1779 alignof(OMPDoacrossClause));
1780 OMPDoacrossClause *Clause =
new (Mem)
1781 OMPDoacrossClause(StartLoc, LParenLoc, EndLoc, VL.size(), NumLoops);
1782 Clause->setDependenceType(DepType);
1783 Clause->setDependenceLoc(DepLoc);
1784 Clause->setColonLoc(ColonLoc);
1785 Clause->setVarRefs(VL);
1786 for (
unsigned I = 0; I < NumLoops; ++I)
1787 Clause->setLoopData(I,
nullptr);
1793 unsigned NumLoops) {
1794 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(N + NumLoops),
1795 alignof(OMPDoacrossClause));
1796 return new (Mem) OMPDoacrossClause(N, NumLoops);
1800 assert(NumLoop < NumLoops &&
"Loop index must be less number of loops.");
1801 auto *It = std::next(
getVarRefs().end(), NumLoop);
1806 assert(NumLoop < NumLoops &&
"Loop index must be less number of loops.");
1807 auto *It = std::next(
getVarRefs().end(), NumLoop);
1812 assert(NumLoop < NumLoops &&
"Loop index must be less number of loops.");
1813 const auto *It = std::next(
getVarRefs().end(), NumLoop);
1822 void *Mem =
C.Allocate(totalSizeToAlloc<OpenMPDirectiveKind>(DKVec.size()),
1823 alignof(OMPAbsentClause));
1824 auto *AC =
new (Mem) OMPAbsentClause(Loc, LLoc, RLoc, DKVec.size());
1825 AC->setDirectiveKinds(DKVec);
1830 void *Mem =
C.Allocate(totalSizeToAlloc<OpenMPDirectiveKind>(K),
1831 alignof(OMPAbsentClause));
1832 return new (Mem) OMPAbsentClause(K);
1838 void *Mem =
C.Allocate(totalSizeToAlloc<OpenMPDirectiveKind>(DKVec.size()),
1839 alignof(OMPContainsClause));
1840 auto *CC =
new (Mem) OMPContainsClause(Loc, LLoc, RLoc, DKVec.size());
1841 CC->setDirectiveKinds(DKVec);
1847 void *Mem =
C.Allocate(totalSizeToAlloc<OpenMPDirectiveKind>(K),
1848 alignof(OMPContainsClause));
1849 return new (Mem) OMPContainsClause(K);
1856 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(VL.size()));
1857 OMPNumTeamsClause *Clause =
1858 new (Mem) OMPNumTeamsClause(
C, StartLoc, LParenLoc, EndLoc, VL.size());
1859 Clause->setVarRefs(VL);
1860 Clause->setPreInitStmt(PreInit, CaptureRegion);
1866 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(N));
1867 return new (Mem) OMPNumTeamsClause(N);
1874 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(VL.size()));
1875 OMPThreadLimitClause *Clause =
1876 new (Mem) OMPThreadLimitClause(
C, StartLoc, LParenLoc, EndLoc, VL.size());
1877 Clause->setVarRefs(VL);
1878 Clause->setPreInitStmt(PreInit, CaptureRegion);
1884 void *Mem =
C.Allocate(totalSizeToAlloc<Expr *>(N));
1885 return new (Mem) OMPThreadLimitClause(N);
1892void OMPClausePrinter::VisitOMPIfClause(
OMPIfClause *Node) {
1895 OS << getOpenMPDirectiveName(Node->
getNameModifier(), Version) <<
": ";
1900void OMPClausePrinter::VisitOMPFinalClause(
OMPFinalClause *Node) {
1907 OS <<
"num_threads(";
1917void OMPClausePrinter::VisitOMPAlignClause(
OMPAlignClause *Node) {
1935void OMPClausePrinter::VisitOMPSizesClause(
OMPSizesClause *Node) {
1941 Size->printPretty(OS,
nullptr, Policy, 0);
1948 OS <<
"permutation(";
1949 llvm::interleaveComma(Node->
getArgsRefs(), OS, [&](
const Expr *E) {
1950 E->printPretty(OS, nullptr, Policy, 0);
1955void OMPClausePrinter::VisitOMPFullClause(
OMPFullClause *Node) { OS <<
"full"; }
1962 Factor->printPretty(OS,
nullptr, Policy, 0);
1989 if (Version >= 60 && Node->
getDefaultVC() != OMPC_DEFAULT_VC_all) {
2005 OS <<
"unified_address";
2008void OMPClausePrinter::VisitOMPUnifiedSharedMemoryClause(
2010 OS <<
"unified_shared_memory";
2014 OS <<
"reverse_offload";
2017void OMPClausePrinter::VisitOMPDynamicAllocatorsClause(
2019 OS <<
"dynamic_allocators";
2022void OMPClausePrinter::VisitOMPAtomicDefaultMemOrderClause(
2024 OS <<
"atomic_default_mem_order("
2034void OMPClausePrinter::VisitOMPAtClause(
OMPAtClause *Node) {
2048 E->printPretty(OS,
nullptr, Policy);
2067 E->printPretty(OS,
nullptr, Policy);
2076 Num->printPretty(OS,
nullptr, Policy, 0);
2097void OMPClausePrinter::VisitOMPReadClause(
OMPReadClause *) { OS <<
"read"; }
2099void OMPClausePrinter::VisitOMPWriteClause(
OMPWriteClause *) { OS <<
"write"; }
2119void OMPClausePrinter::VisitOMPFailClause(
OMPFailClause *Node) {
2135 OS << getOpenMPDirectiveName(D, Version);
2141void OMPClausePrinter::VisitOMPHoldsClause(
OMPHoldsClause *Node) {
2153 OS << getOpenMPDirectiveName(D, Version);
2163void OMPClausePrinter::VisitOMPNoOpenMPRoutinesClause(
2165 OS <<
"no_openmp_routines";
2168void OMPClausePrinter::VisitOMPNoOpenMPConstructsClause(
2170 OS <<
"no_openmp_constructs";
2174 OS <<
"no_parallelism";
2197void OMPClausePrinter::VisitOMPWeakClause(
OMPWeakClause *) { OS <<
"weak"; }
2203void OMPClausePrinter::VisitOMPSIMDClause(
OMPSIMDClause *) { OS <<
"simd"; }
2219 VisitOMPClauseList(Node,
'(');
2226 OS <<
"thread_limit";
2227 VisitOMPClauseList(Node,
'(');
2260void OMPClausePrinter::VisitOMPHintClause(
OMPHintClause *Node) {
2266void OMPClausePrinter::VisitOMPInitClause(
OMPInitClause *Node) {
2269 for (
const Expr *E : Node->
prefs()) {
2271 OS <<
"prefer_type(";
2274 E->printPretty(OS,
nullptr, Policy);
2291void OMPClausePrinter::VisitOMPUseClause(
OMPUseClause *Node) {
2301 E->printPretty(OS,
nullptr, Policy);
2310 E->printPretty(OS,
nullptr, Policy, 0);
2319 E->printPretty(OS,
nullptr, Policy, 0);
2325void OMPClausePrinter::VisitOMPClauseList(
T *Node,
char StartSym) {
2326 for (
typename T::varlist_iterator I = Node->varlist_begin(),
2327 E = Node->varlist_end();
2329 assert(*I &&
"Expected non-null Stmt");
2330 OS << (I == Node->varlist_begin() ? StartSym :
',');
2331 if (
auto *DRE = dyn_cast<DeclRefExpr>(*I)) {
2333 DRE->printPretty(OS,
nullptr, Policy, 0);
2335 DRE->getDecl()->printQualifiedName(OS);
2337 (*I)->printPretty(OS,
nullptr, Policy, 0);
2345 Expr *FirstModifier =
nullptr;
2346 Expr *SecondModifier =
nullptr;
2351 if (FirstAllocMod == OMPC_ALLOCATE_allocator ||
2362 if (FirstModifier) {
2364 if (!FirstUnknown) {
2368 FirstModifier->
printPretty(OS,
nullptr, Policy, 0);
2371 if (SecondModifier) {
2373 if (!SecondUnknown) {
2378 SecondModifier->
printPretty(OS,
nullptr, Policy, 0);
2383 VisitOMPClauseList(Node,
' ');
2386 VisitOMPClauseList(Node,
'(');
2394 VisitOMPClauseList(Node,
'(');
2401 OS <<
"firstprivate";
2402 VisitOMPClauseList(Node,
'(');
2409 OS <<
"lastprivate";
2424 VisitOMPClauseList(Node,
'(');
2439 if (!Qualifier && OOK !=
OO_None) {
2448 VisitOMPClauseList(Node,
' ');
2453void OMPClausePrinter::VisitOMPTaskReductionClause(
2456 OS <<
"task_reduction(";
2461 if (!Qualifier && OOK !=
OO_None) {
2470 VisitOMPClauseList(Node,
' ');
2477 OS <<
"in_reduction(";
2482 if (!Qualifier && OOK !=
OO_None) {
2491 VisitOMPClauseList(Node,
' ');
2499 VisitOMPClauseList(Node,
'(');
2506 if (Node->
getStep() !=
nullptr) {
2521 VisitOMPClauseList(Node,
'(');
2533 VisitOMPClauseList(Node,
'(');
2540 OS <<
"copyprivate";
2541 VisitOMPClauseList(Node,
'(');
2546void OMPClausePrinter::VisitOMPFlushClause(
OMPFlushClause *Node) {
2548 VisitOMPClauseList(Node,
'(');
2567 bool IsOmpAllMemory =
false;
2568 if (PrintKind == OMPC_DEPEND_outallmemory) {
2569 PrintKind = OMPC_DEPEND_out;
2570 IsOmpAllMemory =
true;
2571 }
else if (PrintKind == OMPC_DEPEND_inoutallmemory) {
2572 PrintKind = OMPC_DEPEND_inout;
2573 IsOmpAllMemory =
true;
2578 VisitOMPClauseList(Node,
' ');
2579 if (IsOmpAllMemory) {
2581 OS <<
"omp_all_memory";
2586template <
typename T>
2591 Node->getMapperQualifierLoc().getNestedNameSpecifier();
2592 MapperNNS.
print(OS, Policy);
2593 OS << Node->getMapperIdInfo() <<
')';
2596template <
typename T>
2599 if (
Expr *IteratorModifier = Node->getIteratorModifier())
2600 IteratorModifier->printPretty(OS,
nullptr, Policy);
2603void OMPClausePrinter::VisitOMPMapClause(
OMPMapClause *Node) {
2623 VisitOMPClauseList(Node,
' ');
2628template <
typename T>
void OMPClausePrinter::VisitOMPMotionClause(
T *Node) {
2629 if (Node->varlist_empty())
2631 OS << getOpenMPClauseName(Node->getClauseKind());
2632 unsigned ModifierCount = 0;
2637 if (ModifierCount) {
2642 Node->getMotionModifier(I));
2643 if (Node->getMotionModifier(I) == OMPC_MOTION_MODIFIER_mapper)
2645 if (I < ModifierCount - 1)
2650 VisitOMPClauseList(Node,
' ');
2652 VisitOMPClauseList(Node,
'(');
2657void OMPClausePrinter::VisitOMPToClause(
OMPToClause *Node) {
2658 VisitOMPMotionClause(Node);
2661void OMPClausePrinter::VisitOMPFromClause(
OMPFromClause *Node) {
2662 VisitOMPMotionClause(Node);
2670 E->printPretty(OS,
nullptr, Policy);
2676 OS <<
"defaultmap(";
2689 OS <<
"use_device_ptr";
2690 VisitOMPClauseList(Node,
'(');
2695void OMPClausePrinter::VisitOMPUseDeviceAddrClause(
2698 OS <<
"use_device_addr";
2699 VisitOMPClauseList(Node,
'(');
2706 OS <<
"is_device_ptr";
2707 VisitOMPClauseList(Node,
'(');
2714 OS <<
"has_device_addr";
2715 VisitOMPClauseList(Node,
'(');
2722 OS <<
"nontemporal";
2723 VisitOMPClauseList(Node,
'(');
2728void OMPClausePrinter::VisitOMPOrderClause(
OMPOrderClause *Node) {
2740 VisitOMPClauseList(Node,
'(');
2748 VisitOMPClauseList(Node,
'(');
2753void OMPClausePrinter::VisitOMPUsesAllocatorsClause(
2757 OS <<
"uses_allocators(";
2761 if (
Data.AllocatorTraits) {
2763 Data.AllocatorTraits->printPretty(OS,
nullptr, Policy);
2776 char StartSym =
'(';
2779 Modifier->printPretty(OS,
nullptr, Policy);
2783 VisitOMPClauseList(Node, StartSym);
2793void OMPClausePrinter::VisitOMPBindClause(
OMPBindClause *Node) {
2799void OMPClausePrinter::VisitOMPXDynCGroupMemClause(
2801 OS <<
"ompx_dyn_cgroup_mem(";
2811 case OMPC_DOACROSS_source:
2814 case OMPC_DOACROSS_sink:
2817 case OMPC_DOACROSS_source_omp_cur_iteration:
2818 OS <<
"source: omp_cur_iteration";
2820 case OMPC_DOACROSS_sink_omp_cur_iteration:
2821 OS <<
"sink: omp_cur_iteration - 1";
2824 llvm_unreachable(
"unknown docaross modifier");
2826 VisitOMPClauseList(Node,
' ');
2831 OS <<
"ompx_attribute(";
2833 for (
auto &Attr : Node->
getAttrs()) {
2836 Attr->printPretty(OS, Policy);
2842void OMPClausePrinter::VisitOMPXBareClause(
OMPXBareClause *Node) {
2847 VariantMatchInfo &VMI)
const {
2852 if (
Selector.Kind == TraitSelector::user_condition) {
2853 assert(
Selector.ScoreOrCondition &&
2854 "Ill-formed user condition, expected condition expression!");
2855 assert(
Selector.Properties.size() == 1 &&
2856 Selector.Properties.front().Kind ==
2857 TraitProperty::user_condition_unknown &&
2858 "Ill-formed user condition, expected unknown trait property!");
2860 if (std::optional<APSInt> CondVal =
2861 Selector.ScoreOrCondition->getIntegerConstantExpr(ASTCtx))
2862 VMI.addTrait(CondVal->isZero() ? TraitProperty::user_condition_false
2863 : TraitProperty::user_condition_true,
2866 VMI.addTrait(TraitProperty::user_condition_false,
"<condition>");
2870 std::optional<llvm::APSInt> Score;
2871 llvm::APInt *ScorePtr =
nullptr;
2873 if ((Score =
Selector.ScoreOrCondition->getIntegerConstantExpr(ASTCtx)))
2876 VMI.addTrait(TraitProperty::user_condition_false,
2877 "<non-constant-score>");
2883 if (
Set.Kind != TraitSet::construct)
2887 assert(
Selector.Properties.size() == 1 &&
2888 Selector.Properties.front().Kind ==
2889 getOpenMPContextTraitPropertyForSelector(
2891 "Ill-formed construct selector!");
2898 bool FirstSet =
true;
2903 OS << getOpenMPContextTraitSetName(
Set.Kind) <<
"={";
2905 bool FirstSelector =
true;
2909 FirstSelector =
false;
2910 OS << getOpenMPContextTraitSelectorName(
Selector.Kind);
2912 bool AllowsTraitScore =
false;
2913 bool RequiresProperty =
false;
2914 isValidTraitSelectorForTraitSet(
2915 Selector.Kind,
Set.Kind, AllowsTraitScore, RequiresProperty);
2917 if (!RequiresProperty)
2921 if (
Selector.Kind == TraitSelector::user_condition) {
2923 Selector.ScoreOrCondition->printPretty(OS,
nullptr, Policy);
2930 Selector.ScoreOrCondition->printPretty(OS,
nullptr, Policy);
2934 bool FirstProperty =
true;
2938 FirstProperty =
false;
2939 OS << getOpenMPContextTraitPropertyName(
Property.Kind,
2950 std::string MangledName;
2951 llvm::raw_string_ostream OS(MangledName);
2956 bool AllowsTraitScore =
false;
2957 bool RequiresProperty =
false;
2958 isValidTraitSelectorForTraitSet(
2959 Selector.Kind,
Set.Kind, AllowsTraitScore, RequiresProperty);
2962 if (!RequiresProperty ||
2963 Selector.Kind == TraitSelector::user_condition)
2968 << getOpenMPContextTraitPropertyName(
Property.Kind,
2975OMPTraitInfo::OMPTraitInfo(StringRef MangledName) {
2978 if (!MangledName.consume_front(
"$S"))
2980 if (MangledName.consumeInteger(10,
U))
2984 Set.Kind = TraitSet(
U);
2986 if (!MangledName.consume_front(
"$s"))
2988 if (MangledName.consumeInteger(10,
U))
2994 if (!MangledName.consume_front(
"$P"))
2998 std::pair<StringRef, StringRef> PropRestPair = MangledName.split(
'$');
2999 Property.RawString = PropRestPair.first;
3000 Property.Kind = getOpenMPContextTraitPropertyKind(
3002 MangledName = MangledName.drop_front(PropRestPair.first.size());
3012 TI.
print(OS, Policy);
3017 return TI ? OS << *TI : OS;
3024 : OMPContext(ASTCtx.getLangOpts().OpenMPIsTargetDevice,
3025 ASTCtx.getTargetInfo().getTriple(),
3026 ASTCtx.getLangOpts().OMPTargetTriples.empty()
3028 : ASTCtx.getLangOpts().OMPTargetTriples[0],
3030 FeatureValidityCheck([&](StringRef FeatureName) {
3031 return ASTCtx.
getTargetInfo().isValidFeatureName(FeatureName);
3033 DiagUnknownTrait(std::move(DiagUnknownTrait)) {
3036 for (llvm::omp::TraitProperty
Property : ConstructTraits)
3041 auto It = FeatureMap.find(RawString);
3042 if (It != FeatureMap.end())
3044 if (!FeatureValidityCheck(RawString))
3045 DiagUnknownTrait(RawString);
Defines the clang::ASTContext interface.
This file defines OpenMP nodes for declarative directives.
Forward-declares and imports various common LLVM datatypes that clang wants to use unqualified.
static Stmt ** getAddrOfExprAsWritten(Stmt *S)
Gets the address of the original, non-captured, expression used in the clause as the preinitializer.
static void PrintIterator(raw_ostream &OS, T *Node, const PrintingPolicy &Policy)
static void PrintMapper(raw_ostream &OS, T *Node, const PrintingPolicy &Policy)
This file defines OpenMP AST classes for clauses.
Defines some OpenMP-specific enums and functions.
Holds long-lived AST nodes (such as types and decls) that can be referred to throughout the semantic ...
const TargetInfo & getTargetInfo() const
void getFunctionFeatureMap(llvm::StringMap< bool > &FeatureMap, const FunctionDecl *) const
static QualType getBaseOriginalType(const Expr *Base)
Return original type of the base expression for array section.
OverloadedOperatorKind getCXXOverloadedOperator() const
If this name is the name of an overloadable operator in C++ (e.g., operator+), retrieve the kind of o...
This represents one expression.
Represents a function declaration or definition.
Keeps track of the various options that can be enabled, which controls the dialect of C or C++ that i...
A C++ nested-name-specifier augmented with source location information.
NestedNameSpecifier getNestedNameSpecifier() const
Retrieve the nested-name-specifier to which this instance refers.
Represents a C++ nested name specifier, such as "\::std::vector<int>::".
void print(raw_ostream &OS, const PrintingPolicy &Policy, bool ResolveTemplateArguments=false, bool PrintFinalScopeResOp=true) const
Print this nested name specifier to the given output stream.
This represents the 'absent' clause in the 'pragma omp assume' directive.
static OMPAbsentClause * CreateEmpty(const ASTContext &C, unsigned NumKinds)
static OMPAbsentClause * Create(const ASTContext &C, ArrayRef< OpenMPDirectiveKind > DKVec, SourceLocation Loc, SourceLocation LLoc, SourceLocation RLoc)
This represents 'acq_rel' clause in the 'pragma omp atomic|flush' directives.
This represents 'acquire' clause in the 'pragma omp atomic|flush' directives.
This represents clause 'affinity' in the 'pragma omp task'-based directives.
static OMPAffinityClause * Create(const ASTContext &C, SourceLocation StartLoc, SourceLocation LParenLoc, SourceLocation ColonLoc, SourceLocation EndLoc, Expr *Modifier, ArrayRef< Expr * > Locators)
Creates clause with a modifier a list of locator items.
Expr * getModifier()
Gets affinity modifier.
static OMPAffinityClause * CreateEmpty(const ASTContext &C, unsigned N)
Creates an empty clause with the place for N locator items.
This represents the 'align' clause in the 'pragma omp allocate' directive.
Expr * getAlignment() const
Returns alignment.
static OMPAlignClause * Create(const ASTContext &C, Expr *A, SourceLocation StartLoc, SourceLocation LParenLoc, SourceLocation EndLoc)
Build 'align' clause with the given alignment.
This represents clause 'aligned' in the 'pragma omp ...' directives.
Expr * getAlignment()
Returns alignment.
static OMPAlignedClause * Create(const ASTContext &C, SourceLocation StartLoc, SourceLocation LParenLoc, SourceLocation ColonLoc, SourceLocation EndLoc, ArrayRef< Expr * > VL, Expr *A)
Creates clause with a list of variables VL and alignment A.
static OMPAlignedClause * CreateEmpty(const ASTContext &C, unsigned NumVars)
Creates an empty clause with the place for NumVars variables.
This represents clause 'allocate' in the 'pragma omp ...' directives.
static OMPAllocateClause * Create(const ASTContext &C, SourceLocation StartLoc, SourceLocation LParenLoc, Expr *Allocator, Expr *Alignment, SourceLocation ColonLoc, OpenMPAllocateClauseModifier Modifier1, SourceLocation Modifier1Loc, OpenMPAllocateClauseModifier Modifier2, SourceLocation Modifier2Loc, SourceLocation EndLoc, ArrayRef< Expr * > VL)
Creates clause with a list of variables VL.
OpenMPAllocateClauseModifier getSecondAllocateModifier() const
Get the second modifier of the clause.
Expr * getAlignment() const
Returns the alignment expression or nullptr, if no alignment specified.
OpenMPAllocateClauseModifier getFirstAllocateModifier() const
Get the first modifier of the clause.
Expr * getAllocator() const
Returns the allocator expression or nullptr, if no allocator is specified.
static OMPAllocateClause * CreateEmpty(const ASTContext &C, unsigned N)
Creates an empty clause with the place for N variables.
This represents 'allocator' clause in the 'pragma omp ...' directive.
Expr * getAllocator() const
Returns allocator.
This represents 'at' clause in the 'pragma omp error' directive.
OpenMPAtClauseKind getAtKind() const
Returns kind of the clause.
This represents 'atomic_default_mem_order' clause in the 'pragma omp requires' directive.
OpenMPAtomicDefaultMemOrderClauseKind getAtomicDefaultMemOrderKind() const
Returns kind of the clause.
This represents 'bind' clause in the 'pragma omp ...' directives.
OpenMPBindClauseKind getBindKind() const
Returns kind of the clause.
static OMPBindClause * Create(const ASTContext &C, OpenMPBindClauseKind K, SourceLocation KLoc, SourceLocation StartLoc, SourceLocation LParenLoc, SourceLocation EndLoc)
Build 'bind' clause with kind K ('teams', 'parallel', or 'thread').
static OMPBindClause * CreateEmpty(const ASTContext &C)
Build an empty 'bind' clause.
This represents 'capture' clause in the 'pragma omp atomic' directive.
Class that represents a component of a mappable expression.
ArrayRef< MappableExprComponentList > MappableExprComponentListsRef
static unsigned getUniqueDeclarationsTotalNumber(ArrayRef< const ValueDecl * > Declarations)
static unsigned getComponentsTotalNumber(MappableExprComponentListsRef ComponentLists)
ArrayRef< MappableComponent > MappableExprComponentListRef
static std::pair< const Expr *, std::optional< size_t > > findAttachPtrExpr(MappableExprComponentListRef Components, OpenMPDirectiveKind CurDirKind)
Find the attach pointer expression from a list of mappable expression components.
static QualType getComponentExprElementType(const Expr *Exp)
Get the type of an element of a ComponentList Expr Exp.
static OMPClauseWithPostUpdate * get(OMPClause *C)
OMPClauseWithPostUpdate(const OMPClause *This)
const Stmt * getPreInitStmt() const
Get pre-initialization statement for the clause.
OMPClauseWithPreInit(const OMPClause *This)
static OMPClauseWithPreInit * get(OMPClause *C)
This is a basic class for representing single OpenMP clause.
child_range used_children()
Get the iterator range for the expressions used in the clauses.
llvm::iterator_range< child_iterator > child_range
OpenMPClauseKind getClauseKind() const
Returns kind of OpenMP clause (private, shared, reduction, etc.).
This represents 'collapse' clause in the 'pragma omp ...' directive.
Expr * getNumForLoops() const
Return the number of associated for-loops.
This represents 'compare' clause in the 'pragma omp atomic' directive.
This represents the 'contains' clause in the 'pragma omp assume' directive.
static OMPContainsClause * CreateEmpty(const ASTContext &C, unsigned NumKinds)
static OMPContainsClause * Create(const ASTContext &C, ArrayRef< OpenMPDirectiveKind > DKVec, SourceLocation Loc, SourceLocation LLoc, SourceLocation RLoc)
This represents clause 'copyin' in the 'pragma omp ...' directives.
static OMPCopyinClause * Create(const ASTContext &C, SourceLocation StartLoc, SourceLocation LParenLoc, SourceLocation EndLoc, ArrayRef< Expr * > VL, ArrayRef< Expr * > SrcExprs, ArrayRef< Expr * > DstExprs, ArrayRef< Expr * > AssignmentOps)
Creates clause with a list of variables VL.
static OMPCopyinClause * CreateEmpty(const ASTContext &C, unsigned N)
Creates an empty clause with N variables.
This represents clause 'copyprivate' in the 'pragma omp ...' directives.
static OMPCopyprivateClause * Create(const ASTContext &C, SourceLocation StartLoc, SourceLocation LParenLoc, SourceLocation EndLoc, ArrayRef< Expr * > VL, ArrayRef< Expr * > SrcExprs, ArrayRef< Expr * > DstExprs, ArrayRef< Expr * > AssignmentOps)
Creates clause with a list of variables VL.
static OMPCopyprivateClause * CreateEmpty(const ASTContext &C, unsigned N)
Creates an empty clause with N variables.
This represents 'default' clause in the 'pragma omp ...' directive.
llvm::omp::DefaultKind getDefaultKind() const
Returns kind of the clause.
OpenMPDefaultClauseVariableCategory getDefaultVC() const
This represents 'defaultmap' clause in the 'pragma omp ...' directive.
OpenMPDefaultmapClauseModifier getDefaultmapModifier() const
Get the modifier of the clause.
OpenMPDefaultmapClauseKind getDefaultmapKind() const
Get kind of the clause.
This represents implicit clause 'depend' for the 'pragma omp task' directive.
static OMPDependClause * Create(const ASTContext &C, SourceLocation StartLoc, SourceLocation LParenLoc, SourceLocation EndLoc, DependDataTy Data, Expr *DepModifier, ArrayRef< Expr * > VL, unsigned NumLoops)
Creates clause with a list of variables VL.
Expr * getModifier()
Return optional depend modifier.
Expr * getLoopData(unsigned NumLoop)
Get the loop data.
void setLoopData(unsigned NumLoop, Expr *Cnt)
Set the loop data for the depend clauses with 'sink|source' kind of dependency.
static OMPDependClause * CreateEmpty(const ASTContext &C, unsigned N, unsigned NumLoops)
Creates an empty clause with N variables.
OpenMPDependClauseKind getDependencyKind() const
Get dependency type.
This represents implicit clause 'depobj' for the 'pragma omp depobj' directive.
static OMPDepobjClause * Create(const ASTContext &C, SourceLocation StartLoc, SourceLocation LParenLoc, SourceLocation EndLoc, Expr *Depobj)
Creates clause.
static OMPDepobjClause * CreateEmpty(const ASTContext &C)
Creates an empty clause.
Expr * getDepobj()
Returns depobj expression associated with the clause.
This represents 'destroy' clause in the 'pragma omp depobj' directive or the 'pragma omp interop' dir...
Expr * getInteropVar() const
Returns the interop variable.
This represents 'detach' clause in the 'pragma omp task' directive.
Expr * getEventHandler() const
Returns event-handler expression.
This represents 'device' clause in the 'pragma omp ...' directive.
OpenMPDeviceClauseModifier getModifier() const
Gets modifier.
Expr * getDevice()
Return device number.
MutableArrayRef< OpenMPDirectiveKind > getDirectiveKinds()
This represents 'dist_schedule' clause in the 'pragma omp ...' directive.
OpenMPDistScheduleClauseKind getDistScheduleKind() const
Get kind of the clause.
Expr * getChunkSize()
Get chunk size.
This represents the 'doacross' clause for the 'pragma omp ordered' directive.
void setLoopData(unsigned NumLoop, Expr *Cnt)
Set the loop data.
Expr * getLoopData(unsigned NumLoop)
Get the loop data.
static OMPDoacrossClause * Create(const ASTContext &C, SourceLocation StartLoc, SourceLocation LParenLoc, SourceLocation EndLoc, OpenMPDoacrossClauseModifier DepType, SourceLocation DepLoc, SourceLocation ColonLoc, ArrayRef< Expr * > VL, unsigned NumLoops)
Creates clause with a list of expressions VL.
static OMPDoacrossClause * CreateEmpty(const ASTContext &C, unsigned N, unsigned NumLoops)
Creates an empty clause with N expressions.
OpenMPDoacrossClauseModifier getDependenceType() const
Get dependence type.
This represents 'dynamic_allocators' clause in the 'pragma omp requires' directive.
This represents clause 'exclusive' in the 'pragma omp scan' directive.
static OMPExclusiveClause * CreateEmpty(const ASTContext &C, unsigned N)
Creates an empty clause with the place for N variables.
static OMPExclusiveClause * Create(const ASTContext &C, SourceLocation StartLoc, SourceLocation LParenLoc, SourceLocation EndLoc, ArrayRef< Expr * > VL)
Creates clause with a list of variables VL.
This represents 'fail' clause in the 'pragma omp atomic' directive.
OpenMPClauseKind getFailParameter() const
Gets the parameter (type memory-order-clause) in Fail clause.
This represents 'filter' clause in the 'pragma omp ...' directive.
Expr * getThreadID() const
Return thread identifier.
This represents 'final' clause in the 'pragma omp ...' directive.
child_range used_children()
Expr * getCondition() const
Returns condition.
This represents clause 'firstprivate' in the 'pragma omp ...' directives.
static OMPFirstprivateClause * Create(const ASTContext &C, SourceLocation StartLoc, SourceLocation LParenLoc, SourceLocation EndLoc, ArrayRef< Expr * > VL, ArrayRef< Expr * > PrivateVL, ArrayRef< Expr * > InitVL, Stmt *PreInit)
Creates clause with a list of variables VL.
static OMPFirstprivateClause * CreateEmpty(const ASTContext &C, unsigned N)
Creates an empty clause with the place for N variables.
This represents implicit clause 'flush' for the 'pragma omp flush' directive.
static OMPFlushClause * CreateEmpty(const ASTContext &C, unsigned N)
Creates an empty clause with N variables.
static OMPFlushClause * Create(const ASTContext &C, SourceLocation StartLoc, SourceLocation LParenLoc, SourceLocation EndLoc, ArrayRef< Expr * > VL)
Creates clause with a list of variables VL.
This represents clause 'from' in the 'pragma omp ...' directives.
static OMPFromClause * CreateEmpty(const ASTContext &C, const OMPMappableExprListSizeTy &Sizes)
Creates an empty clause with the place for NumVars variables.
static OMPFromClause * Create(const ASTContext &C, const OMPVarListLocTy &Locs, ArrayRef< Expr * > Vars, ArrayRef< ValueDecl * > Declarations, MappableExprComponentListsRef ComponentLists, ArrayRef< Expr * > UDMapperRefs, ArrayRef< OpenMPMotionModifierKind > MotionModifiers, ArrayRef< SourceLocation > MotionModifiersLoc, NestedNameSpecifierLoc UDMQualifierLoc, DeclarationNameInfo MapperId)
Creates clause with a list of variables Vars.
Representation of the 'full' clause of the 'pragma omp unroll' directive.
static OMPFullClause * Create(const ASTContext &C, SourceLocation StartLoc, SourceLocation EndLoc)
Build an AST node for a 'full' clause.
static OMPFullClause * CreateEmpty(const ASTContext &C)
Build an empty 'full' AST node for deserialization.
This represents 'grainsize' clause in the 'pragma omp ...' directive.
Expr * getGrainsize() const
Return safe iteration space distance.
child_range used_children()
OpenMPGrainsizeClauseModifier getModifier() const
Gets modifier.
This represents clause 'has_device_ptr' in the 'pragma omp ...' directives.
static OMPHasDeviceAddrClause * Create(const ASTContext &C, const OMPVarListLocTy &Locs, ArrayRef< Expr * > Vars, ArrayRef< ValueDecl * > Declarations, MappableExprComponentListsRef ComponentLists)
Creates clause with a list of variables Vars.
static OMPHasDeviceAddrClause * CreateEmpty(const ASTContext &C, const OMPMappableExprListSizeTy &Sizes)
Creates an empty clause with the place for NumVars variables.
This represents 'hint' clause in the 'pragma omp ...' directive.
Expr * getHint() const
Returns number of threads.
This represents the 'holds' clause in the 'pragma omp assume' directive.
This represents 'if' clause in the 'pragma omp ...' directive.
child_range used_children()
Expr * getCondition() const
Returns condition.
OpenMPDirectiveKind getNameModifier() const
Return directive name modifier associated with the clause.
This represents clause 'in_reduction' in the 'pragma omp task' directives.
static OMPInReductionClause * CreateEmpty(const ASTContext &C, unsigned N)
Creates an empty clause with the place for N variables.
NestedNameSpecifierLoc getQualifierLoc() const
Gets the nested name specifier.
const DeclarationNameInfo & getNameInfo() const
Gets the name info for specified reduction identifier.
static OMPInReductionClause * Create(const ASTContext &C, SourceLocation StartLoc, SourceLocation LParenLoc, SourceLocation ColonLoc, SourceLocation EndLoc, ArrayRef< Expr * > VL, NestedNameSpecifierLoc QualifierLoc, const DeclarationNameInfo &NameInfo, ArrayRef< Expr * > Privates, ArrayRef< Expr * > LHSExprs, ArrayRef< Expr * > RHSExprs, ArrayRef< Expr * > ReductionOps, ArrayRef< Expr * > TaskgroupDescriptors, Stmt *PreInit, Expr *PostUpdate)
Creates clause with a list of variables VL.
This represents clause 'inclusive' in the 'pragma omp scan' directive.
static OMPInclusiveClause * Create(const ASTContext &C, SourceLocation StartLoc, SourceLocation LParenLoc, SourceLocation EndLoc, ArrayRef< Expr * > VL)
Creates clause with a list of variables VL.
static OMPInclusiveClause * CreateEmpty(const ASTContext &C, unsigned N)
Creates an empty clause with the place for N variables.
This represents the 'init' clause in 'pragma omp ...' directives.
bool getIsTarget() const
Returns true is interop-type 'target' is used.
bool getIsTargetSync() const
Returns true is interop-type 'targetsync' is used.
static OMPInitClause * Create(const ASTContext &C, Expr *InteropVar, OMPInteropInfo &InteropInfo, SourceLocation StartLoc, SourceLocation LParenLoc, SourceLocation VarLoc, SourceLocation EndLoc)
Creates a fully specified clause.
static OMPInitClause * CreateEmpty(const ASTContext &C, unsigned N)
Creates an empty clause with N expressions.
Expr * getInteropVar()
Returns the interop variable.
This represents clause 'is_device_ptr' in the 'pragma omp ...' directives.
static OMPIsDevicePtrClause * Create(const ASTContext &C, const OMPVarListLocTy &Locs, ArrayRef< Expr * > Vars, ArrayRef< ValueDecl * > Declarations, MappableExprComponentListsRef ComponentLists)
Creates clause with a list of variables Vars.
static OMPIsDevicePtrClause * CreateEmpty(const ASTContext &C, const OMPMappableExprListSizeTy &Sizes)
Creates an empty clause with the place for NumVars variables.
This represents clause 'lastprivate' in the 'pragma omp ...' directives.
static OMPLastprivateClause * CreateEmpty(const ASTContext &C, unsigned N)
Creates an empty clause with the place for N variables.
void setPrivateCopies(ArrayRef< Expr * > PrivateCopies)
Set list of helper expressions, required for generation of private copies of original lastprivate var...
static OMPLastprivateClause * Create(const ASTContext &C, SourceLocation StartLoc, SourceLocation LParenLoc, SourceLocation EndLoc, ArrayRef< Expr * > VL, ArrayRef< Expr * > SrcExprs, ArrayRef< Expr * > DstExprs, ArrayRef< Expr * > AssignmentOps, OpenMPLastprivateModifier LPKind, SourceLocation LPKindLoc, SourceLocation ColonLoc, Stmt *PreInit, Expr *PostUpdate)
Creates clause with a list of variables VL.
OpenMPLastprivateModifier getKind() const
Lastprivate kind.
This represents clause 'linear' in the 'pragma omp ...' directives.
child_range used_children()
SourceLocation getModifierLoc() const
Return modifier location.
static OMPLinearClause * CreateEmpty(const ASTContext &C, unsigned NumVars)
Creates an empty clause with the place for NumVars variables.
Expr * getStep()
Returns linear step.
void setUpdates(ArrayRef< Expr * > UL)
Sets the list of update expressions for linear variables.
void setFinals(ArrayRef< Expr * > FL)
Sets the list of final update expressions for linear variables.
void setUsedExprs(ArrayRef< Expr * > UE)
Sets the list of used expressions for the linear clause.
static OMPLinearClause * Create(const ASTContext &C, SourceLocation StartLoc, SourceLocation LParenLoc, OpenMPLinearClauseKind Modifier, SourceLocation ModifierLoc, SourceLocation ColonLoc, SourceLocation StepModifierLoc, SourceLocation EndLoc, ArrayRef< Expr * > VL, ArrayRef< Expr * > PL, ArrayRef< Expr * > IL, Expr *Step, Expr *CalcStep, Stmt *PreInit, Expr *PostUpdate)
Creates clause with a list of variables VL and a linear step Step.
OpenMPLinearClauseKind getModifier() const
Return modifier.
This represents clause 'map' in the 'pragma omp ...' directives.
OpenMPMapClauseKind getMapType() const LLVM_READONLY
Fetches mapping kind for the clause.
static OMPMapClause * Create(const ASTContext &C, const OMPVarListLocTy &Locs, ArrayRef< Expr * > Vars, ArrayRef< ValueDecl * > Declarations, MappableExprComponentListsRef ComponentLists, ArrayRef< Expr * > UDMapperRefs, Expr *IteratorModifier, ArrayRef< OpenMPMapModifierKind > MapModifiers, ArrayRef< SourceLocation > MapModifiersLoc, NestedNameSpecifierLoc UDMQualifierLoc, DeclarationNameInfo MapperId, OpenMPMapClauseKind Type, bool TypeIsImplicit, SourceLocation TypeLoc)
Creates clause with a list of variables VL.
static OMPMapClause * CreateEmpty(const ASTContext &C, const OMPMappableExprListSizeTy &Sizes)
Creates an empty clause with the place for NumVars original expressions, NumUniqueDeclarations declar...
OpenMPMapModifierKind getMapTypeModifier(unsigned Cnt) const LLVM_READONLY
Fetches the map-type-modifier at 'Cnt' index of array of modifiers.
This represents 'mergeable' clause in the 'pragma omp ...' directive.
This represents the 'message' clause in the 'pragma omp error' and the 'pragma omp parallel' directiv...
Expr * getMessageString() const
Returns message string of the clause.
This represents the 'no_openmp' clause in the 'pragma omp assume' directive.
This represents the 'no_openmp_constructs' clause in the.
This represents the 'no_openmp_routines' clause in the 'pragma omp assume' directive.
This represents the 'no_parallelism' clause in the 'pragma omp assume' directive.
This represents 'nocontext' clause in the 'pragma omp ...' directive.
Expr * getCondition() const
Returns condition.
child_range used_children()
This represents 'nogroup' clause in the 'pragma omp ...' directive.
This represents clause 'nontemporal' in the 'pragma omp ...' directives.
static OMPNontemporalClause * CreateEmpty(const ASTContext &C, unsigned N)
Creates an empty clause with the place for N variables.
static OMPNontemporalClause * Create(const ASTContext &C, SourceLocation StartLoc, SourceLocation LParenLoc, SourceLocation EndLoc, ArrayRef< Expr * > VL)
Creates clause with a list of variables VL.
void setPrivateRefs(ArrayRef< Expr * > VL)
Sets the list of references to private copies created in private clauses.
This represents 'novariants' clause in the 'pragma omp ...' directive.
child_range used_children()
Expr * getCondition() const
Returns condition.
This represents 'nowait' clause in the 'pragma omp ...' directive.
This represents 'num_tasks' clause in the 'pragma omp ...' directive.
Expr * getNumTasks() const
Return safe iteration space distance.
child_range used_children()
OpenMPNumTasksClauseModifier getModifier() const
Gets modifier.
This represents 'num_teams' clause in the 'pragma omp ...' directive.
static OMPNumTeamsClause * Create(const ASTContext &C, OpenMPDirectiveKind CaptureRegion, SourceLocation StartLoc, SourceLocation LParenLoc, SourceLocation EndLoc, ArrayRef< Expr * > VL, Stmt *PreInit)
Creates clause with a list of variables VL.
static OMPNumTeamsClause * CreateEmpty(const ASTContext &C, unsigned N)
Creates an empty clause with N variables.
This represents 'num_threads' clause in the 'pragma omp ...' directive.
OpenMPNumThreadsClauseModifier getModifier() const
Gets modifier.
Expr * getNumThreads() const
Returns number of threads.
llvm::iterator_range< child_iterator > child_range
This represents 'order' clause in the 'pragma omp ...' directive.
OpenMPOrderClauseKind getKind() const
Returns kind of the clause.
OpenMPOrderClauseModifier getModifier() const
Returns Modifier of the clause.
This represents 'ordered' clause in the 'pragma omp ...' directive.
void setLoopCounter(unsigned NumLoop, Expr *Counter)
Set loop counter for the specified loop.
Expr * getNumForLoops() const
Return the number of associated for-loops.
void setLoopNumIterations(unsigned NumLoop, Expr *NumIterations)
Set number of iterations for the specified loop.
ArrayRef< Expr * > getLoopNumIterations() const
Get number of iterations for all the loops.
static OMPOrderedClause * Create(const ASTContext &C, Expr *Num, unsigned NumLoops, SourceLocation StartLoc, SourceLocation LParenLoc, SourceLocation EndLoc)
Build 'ordered' clause.
static OMPOrderedClause * CreateEmpty(const ASTContext &C, unsigned NumLoops)
Build an empty clause.
Expr * getLoopCounter(unsigned NumLoop)
Get loops counter for the specified loop.
Representation of the 'partial' clause of the 'pragma omp unroll' directive.
static OMPPartialClause * CreateEmpty(const ASTContext &C)
Build an empty 'partial' AST node for deserialization.
static OMPPartialClause * Create(const ASTContext &C, SourceLocation StartLoc, SourceLocation LParenLoc, SourceLocation EndLoc, Expr *Factor)
Build an AST node for a 'partial' clause.
Expr * getFactor() const
Returns the argument of the clause or nullptr if not set.
This class represents the 'permutation' clause in the 'pragma omp interchange' directive.
MutableArrayRef< Expr * > getArgsRefs()
Returns the permutation index expressions.
static OMPPermutationClause * CreateEmpty(const ASTContext &C, unsigned NumLoops)
Build an empty 'permutation' AST node for deserialization.
static OMPPermutationClause * Create(const ASTContext &C, SourceLocation StartLoc, SourceLocation LParenLoc, SourceLocation EndLoc, ArrayRef< Expr * > Args)
Build a 'permutation' clause AST node.
This represents 'priority' clause in the 'pragma omp ...' directive.
child_range used_children()
Expr * getPriority()
Return Priority number.
This represents clause 'private' in the 'pragma omp ...' directives.
static OMPPrivateClause * Create(const ASTContext &C, SourceLocation StartLoc, SourceLocation LParenLoc, SourceLocation EndLoc, ArrayRef< Expr * > VL, ArrayRef< Expr * > PrivateVL)
Creates clause with a list of variables VL.
static OMPPrivateClause * CreateEmpty(const ASTContext &C, unsigned N)
Creates an empty clause with the place for N variables.
This represents 'proc_bind' clause in the 'pragma omp ...' directive.
llvm::omp::ProcBindKind getProcBindKind() const
Returns kind of the clause.
This represents 'read' clause in the 'pragma omp atomic' directive.
This represents clause 'reduction' in the 'pragma omp ...' directives.
const DeclarationNameInfo & getNameInfo() const
Gets the name info for specified reduction identifier.
static OMPReductionClause * CreateEmpty(const ASTContext &C, unsigned N, OpenMPReductionClauseModifier Modifier)
Creates an empty clause with the place for N variables.
static OMPReductionClause * Create(const ASTContext &C, SourceLocation StartLoc, SourceLocation LParenLoc, SourceLocation ModifierLoc, SourceLocation ColonLoc, SourceLocation EndLoc, OpenMPReductionClauseModifier Modifier, ArrayRef< Expr * > VL, NestedNameSpecifierLoc QualifierLoc, const DeclarationNameInfo &NameInfo, ArrayRef< Expr * > Privates, ArrayRef< Expr * > LHSExprs, ArrayRef< Expr * > RHSExprs, ArrayRef< Expr * > ReductionOps, ArrayRef< Expr * > CopyOps, ArrayRef< Expr * > CopyArrayTemps, ArrayRef< Expr * > CopyArrayElems, Stmt *PreInit, Expr *PostUpdate, ArrayRef< bool > IsPrivateVarReduction, OpenMPOriginalSharingModifier OriginalSharingModifier)
Creates clause with a list of variables VL.
NestedNameSpecifierLoc getQualifierLoc() const
Gets the nested name specifier.
OpenMPReductionClauseModifier getModifier() const
Returns modifier.
SourceLocation getModifierLoc() const
Returns modifier location.
This represents 'relaxed' clause in the 'pragma omp atomic' directives.
This represents 'release' clause in the 'pragma omp atomic|flush' directives.
This represents 'reverse_offload' clause in the 'pragma omp requires' directive.
This represents 'simd' clause in the 'pragma omp ...' directive.
This represents 'safelen' clause in the 'pragma omp ...' directive.
Expr * getSafelen() const
Return safe iteration space distance.
This represents 'schedule' clause in the 'pragma omp ...' directive.
OpenMPScheduleClauseKind getScheduleKind() const
Get kind of the clause.
OpenMPScheduleClauseModifier getSecondScheduleModifier() const
Get the second modifier of the clause.
OpenMPScheduleClauseModifier getFirstScheduleModifier() const
Get the first modifier of the clause.
Expr * getChunkSize()
Get chunk size.
This represents 'self_maps' clause in the 'pragma omp requires' directive.
This represents 'seq_cst' clause in the 'pragma omp atomic|flush' directives.
This represents the 'severity' clause in the 'pragma omp error' and the 'pragma omp parallel' directi...
OpenMPSeverityClauseKind getSeverityKind() const
Returns kind of the clause.
This represents clause 'shared' in the 'pragma omp ...' directives.
static OMPSharedClause * Create(const ASTContext &C, SourceLocation StartLoc, SourceLocation LParenLoc, SourceLocation EndLoc, ArrayRef< Expr * > VL)
Creates clause with a list of variables VL.
static OMPSharedClause * CreateEmpty(const ASTContext &C, unsigned N)
Creates an empty clause with N variables.
This represents 'simdlen' clause in the 'pragma omp ...' directive.
Expr * getSimdlen() const
Return safe iteration space distance.
This represents the 'sizes' clause in the 'pragma omp tile' directive.
static OMPSizesClause * Create(const ASTContext &C, SourceLocation StartLoc, SourceLocation LParenLoc, SourceLocation EndLoc, ArrayRef< Expr * > Sizes)
Build a 'sizes' AST node.
MutableArrayRef< Expr * > getSizesRefs()
Returns the tile size expressions.
static OMPSizesClause * CreateEmpty(const ASTContext &C, unsigned NumSizes)
Build an empty 'sizes' AST node for deserialization.
This represents clause 'task_reduction' in the 'pragma omp taskgroup' directives.
NestedNameSpecifierLoc getQualifierLoc() const
Gets the nested name specifier.
const DeclarationNameInfo & getNameInfo() const
Gets the name info for specified reduction identifier.
static OMPTaskReductionClause * Create(const ASTContext &C, SourceLocation StartLoc, SourceLocation LParenLoc, SourceLocation ColonLoc, SourceLocation EndLoc, ArrayRef< Expr * > VL, NestedNameSpecifierLoc QualifierLoc, const DeclarationNameInfo &NameInfo, ArrayRef< Expr * > Privates, ArrayRef< Expr * > LHSExprs, ArrayRef< Expr * > RHSExprs, ArrayRef< Expr * > ReductionOps, Stmt *PreInit, Expr *PostUpdate)
Creates clause with a list of variables VL.
static OMPTaskReductionClause * CreateEmpty(const ASTContext &C, unsigned N)
Creates an empty clause with the place for N variables.
This represents 'thread_limit' clause in the 'pragma omp ...' directive.
static OMPThreadLimitClause * Create(const ASTContext &C, OpenMPDirectiveKind CaptureRegion, SourceLocation StartLoc, SourceLocation LParenLoc, SourceLocation EndLoc, ArrayRef< Expr * > VL, Stmt *PreInit)
Creates clause with a list of variables VL.
static OMPThreadLimitClause * CreateEmpty(const ASTContext &C, unsigned N)
Creates an empty clause with N variables.
This represents 'threads' clause in the 'pragma omp ...' directive.
This represents clause 'to' in the 'pragma omp ...' directives.
static OMPToClause * CreateEmpty(const ASTContext &C, const OMPMappableExprListSizeTy &Sizes)
Creates an empty clause with the place for NumVars variables.
static OMPToClause * Create(const ASTContext &C, const OMPVarListLocTy &Locs, ArrayRef< Expr * > Vars, ArrayRef< ValueDecl * > Declarations, MappableExprComponentListsRef ComponentLists, ArrayRef< Expr * > UDMapperRefs, ArrayRef< OpenMPMotionModifierKind > MotionModifiers, ArrayRef< SourceLocation > MotionModifiersLoc, NestedNameSpecifierLoc UDMQualifierLoc, DeclarationNameInfo MapperId)
Creates clause with a list of variables Vars.
Helper data structure representing the traits in a match clause of an declare variant or metadirectiv...
std::string getMangledName() const
Return a string representation identifying this context selector.
void print(llvm::raw_ostream &OS, const PrintingPolicy &Policy) const
Print a human readable representation into OS.
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.
This represents 'unified_address' clause in the 'pragma omp requires' directive.
This represents 'unified_shared_memory' clause in the 'pragma omp requires' directive.
This represents 'untied' clause in the 'pragma omp ...' directive.
This represents 'update' clause in the 'pragma omp atomic' directive.
OpenMPDependClauseKind getDependencyKind() const
Gets the dependence kind in clause for 'depobj' directive.
static OMPUpdateClause * CreateEmpty(const ASTContext &C, bool IsExtended)
Creates an empty clause with the place for N variables.
static OMPUpdateClause * Create(const ASTContext &C, SourceLocation StartLoc, SourceLocation EndLoc)
Creates clause for 'atomic' directive.
bool isExtended() const
Checks if the clause is the extended clauses for 'depobj' directive.
This represents the 'use' clause in 'pragma omp ...' directives.
Expr * getInteropVar() const
Returns the interop variable.
This represents clause 'use_device_addr' in the 'pragma omp ...' directives.
static OMPUseDeviceAddrClause * Create(const ASTContext &C, const OMPVarListLocTy &Locs, ArrayRef< Expr * > Vars, ArrayRef< ValueDecl * > Declarations, MappableExprComponentListsRef ComponentLists)
Creates clause with a list of variables Vars.
static OMPUseDeviceAddrClause * CreateEmpty(const ASTContext &C, const OMPMappableExprListSizeTy &Sizes)
Creates an empty clause with the place for NumVars variables.
This represents clause 'use_device_ptr' in the 'pragma omp ...' directives.
static OMPUseDevicePtrClause * Create(const ASTContext &C, const OMPVarListLocTy &Locs, ArrayRef< Expr * > Vars, ArrayRef< Expr * > PrivateVars, ArrayRef< Expr * > Inits, ArrayRef< ValueDecl * > Declarations, MappableExprComponentListsRef ComponentLists)
Creates clause with a list of variables Vars.
static OMPUseDevicePtrClause * CreateEmpty(const ASTContext &C, const OMPMappableExprListSizeTy &Sizes)
Creates an empty clause with the place for NumVars variables.
This represents clause 'uses_allocators' in the 'pragma omp target'-based directives.
OMPUsesAllocatorsClause::Data getAllocatorData(unsigned I) const
Returns data for the specified allocator.
static OMPUsesAllocatorsClause * CreateEmpty(const ASTContext &C, unsigned N)
Creates an empty clause with the place for N allocators.
unsigned getNumberOfAllocators() const
Returns number of allocators associated with the clause.
static OMPUsesAllocatorsClause * Create(const ASTContext &C, SourceLocation StartLoc, SourceLocation LParenLoc, SourceLocation EndLoc, ArrayRef< OMPUsesAllocatorsClause::Data > Data)
Creates clause with a list of allocators Data.
MutableArrayRef< Expr * > getVarRefs()
varlist_iterator varlist_end()
bool varlist_empty() const
unsigned varlist_size() const
This represents 'weak' clause in the 'pragma omp atomic' directives.
This represents 'write' clause in the 'pragma omp atomic' directive.
This represents 'ompx_attribute' clause in a directive that might generate an outlined function.
ArrayRef< const Attr * > getAttrs() const
Returned the attributes parsed from this clause.
This represents 'ompx_bare' clause in the 'pragma omp target teams ...' directive.
This represents 'ompx_dyn_cgroup_mem' clause in the 'pragma omp target ...' directive.
Expr * getSize()
Return the size expression.
A (possibly-)qualified type.
QualType getNonReferenceType() const
If Type is a reference type (e.g., const int&), returns the type that the reference refers to ("const...
QualType getCanonicalType() const
Smart pointer class that efficiently represents Objective-C method names.
Encodes a location in the source.
bool isValid() const
Return true if this is a valid SourceLocation object.
Stmt - This represents one statement.
void printPretty(raw_ostream &OS, PrinterHelper *Helper, const PrintingPolicy &Policy, unsigned Indentation=0, StringRef NewlineSymbol="\n", const ASTContext *Context=nullptr) const
Base wrapper for a particular "section" of type source info.
The base class of the type hierarchy.
bool isPointerType() const
QualType getPointeeType() const
If this is a pointer, ObjC object pointer, or block pointer, this returns the respective pointee.
Represent the declaration of a variable (in which case it is an lvalue) a function (in which case it ...
Defines the clang::TargetInfo interface.
The JSON file list parser is used to communicate input to InstallAPI.
OpenMPOriginalSharingModifier
OpenMP 6.0 original sharing modifiers.
OverloadedOperatorKind
Enumeration specifying the different kinds of C++ overloaded operators.
@ OO_None
Not an overloaded operator.
bool isa(CodeGen::Address addr)
@ OMPC_ORDER_MODIFIER_unknown
OpenMPReductionClauseModifier
OpenMP modifiers for 'reduction' clause.
@ DeviceNum
'device_num' clause, allowed on 'init', 'shutdown', and 'set' constructs.
@ OMPC_SCHEDULE_MODIFIER_unknown
const char * getOpenMPSimpleClauseTypeName(OpenMPClauseKind Kind, unsigned Type)
OpenMPDoacrossClauseModifier
OpenMP dependence types for 'doacross' clause.
const StreamingDiagnostic & operator<<(const StreamingDiagnostic &DB, const ASTContext::SectionInfo &Section)
Insertion operator for diagnostics.
static constexpr unsigned NumberOfOMPMapClauseModifiers
Number of allowed map-type-modifiers.
@ Property
The type of a property.
OpenMPBindClauseKind
OpenMP bindings for the 'bind' clause.
const FunctionProtoType * T
OpenMPLastprivateModifier
OpenMP 'lastprivate' clause modifier.
@ OMPC_LASTPRIVATE_unknown
OpenMPDependClauseKind
OpenMP attributes for 'depend' clause.
OpenMPGrainsizeClauseModifier
OpenMPNumTasksClauseModifier
static constexpr unsigned NumberOfOMPMotionModifiers
Number of allowed motion-modifiers.
@ OMPC_MOTION_MODIFIER_unknown
@ OMPC_DEFAULTMAP_unknown
OpenMPAllocateClauseModifier
OpenMP modifiers for 'allocate' clause.
OpenMPLinearClauseKind
OpenMP attributes for 'linear' clause.
llvm::omp::Directive OpenMPDirectiveKind
OpenMP directives.
OpenMPNumThreadsClauseModifier
@ OMPC_NUMTHREADS_unknown
const char * getOperatorSpelling(OverloadedOperatorKind Operator)
Retrieve the spelling of the given overloaded operator, without the preceding "operator" keyword.
U cast(CodeGen::Address addr)
const char * getOpenMPDefaultVariableCategoryName(unsigned VC)
OpenMPDeviceClauseModifier
OpenMP modifiers for 'device' clause.
@ OMPC_MAP_MODIFIER_unknown
OpenMPMapClauseKind
OpenMP mapping kind for 'map' clause.
Diagnostic wrappers for TextAPI types for error reporting.
int const char * function
DeclarationNameInfo - A collector data type for bundling together a DeclarationName and the correspon...
DeclarationName getName() const
getName - Returns the embedded declaration name.
llvm::SmallVector< Expr *, 4 > PreferTypes
This structure contains all sizes needed for by an OMPMappableExprListClause.
unsigned NumComponentLists
Number of component lists.
unsigned NumVars
Number of expressions listed.
unsigned NumUniqueDeclarations
Number of unique base declarations.
unsigned NumComponents
Total number of expression components.
Data for list of allocators.
SourceLocation LParenLoc
Locations of '(' and ')' symbols.
Expr * AllocatorTraits
Allocator traits.
Expr * Allocator
Allocator.
This structure contains most locations needed for by an OMPVarListClause.
Describes how types, statements, expressions, and declarations should be printed.
TargetOMPContext(ASTContext &ASTCtx, std::function< void(StringRef)> &&DiagUnknownTrait, const FunctionDecl *CurrentFunctionDecl, ArrayRef< llvm::omp::TraitProperty > ConstructTraits, int DeviceNum)
bool matchesISATrait(StringRef RawString) const override
See llvm::omp::OMPContext::matchesISATrait.