41#include "llvm/ADT/SmallBitVector.h"
42#include "llvm/ADT/StringExtras.h"
43#include "llvm/Support/Casting.h"
44#include "llvm/Support/SaveAndRestore.h"
55 return SourceRange(Ps[0]->getTemplateLoc(), Ps[N-1]->getRAngleLoc());
69 auto ParamsAtDepth = [&](
unsigned D) { Depth = std::max(Depth, D + 1); };
74 if (
auto *LSI = dyn_cast<LambdaScopeInfo>(FSI)) {
75 if (!LSI->TemplateParams.empty()) {
76 ParamsAtDepth(LSI->AutoTemplateParameterDepth);
79 if (LSI->GLTemplateParameterList) {
80 ParamsAtDepth(LSI->GLTemplateParameterList->getDepth());
90 if (!Info.TemplateParams.empty()) {
91 ParamsAtDepth(Info.AutoTemplateParameterDepth);
106 bool AllowFunctionTemplates,
107 bool AllowDependent) {
117 if (
const auto *
Record = dyn_cast<CXXRecordDecl>(D)) {
129 if (
Record->isInjectedClassName()) {
131 if (
Record->getDescribedClassTemplate())
132 return Record->getDescribedClassTemplate();
134 if (
const auto *Spec = dyn_cast<ClassTemplateSpecializationDecl>(
Record))
135 return Spec->getSpecializedTemplate();
151 bool AllowFunctionTemplates,
152 bool AllowDependent) {
163 bool AllowFunctionTemplates,
165 bool AllowNonTemplateFunctions) {
169 if (AllowNonTemplateFunctions &&
179 bool hasTemplateKeyword,
182 bool EnteringContext,
184 bool &MemberOfUnknownSpecialization,
185 bool Disambiguation) {
189 MemberOfUnknownSpecialization =
false;
197 TName =
Context.DeclarationNames.getCXXOperatorName(
238 bool AnyFunctionTemplates =
false;
242 AnyFunctionTemplates =
true;
245 FoundUsingShadow = dyn_cast<UsingShadowDecl>(FoundD);
253 if (!D && !AnyFunctionTemplates) {
254 R.suppressDiagnostics();
271 unsigned ResultCount = R.
end() - R.
begin();
272 if (!D && ResultCount > 1) {
283 assert(D &&
"unambiguous result is not a template name");
288 MemberOfUnknownSpecialization =
true;
295 assert(!FoundUsingShadow || FoundUsingShadow->
getTargetDecl() == TD);
298 Template =
Context.getQualifiedTemplateName(Qualifier, hasTemplateKeyword,
313 ? dyn_cast<TemplateTemplateParmDecl>(TD)->templateParameterKind()
322 Diag(Name.
getBeginLoc(), diag::err_builtin_pack_outside_template) << TName;
341 if (R.
empty())
return false;
378 {SS->getScopeRep(), &II, false}));
379 Diag(IILoc, diag::err_template_kw_missing)
380 << SuggestedTemplate.
get()
387 QualType ObjectType,
bool EnteringContext,
390 bool AllowTypoCorrection) {
397 Found.setTemplateNameLookup(
true);
401 bool IsDependent =
false;
402 if (!ObjectType.
isNull()) {
405 assert(SS.
isEmpty() &&
"ObjectType and scope specifier cannot coexist");
409 !ObjectType->
getAs<TagType>() ||
410 ObjectType->
castAs<TagType>()
412 ->isEntityBeingDefined()) &&
413 "Caller should have completed object type");
445 bool ObjectTypeSearchedInScope =
false;
446 bool AllowFunctionTemplatesInLookup =
true;
462 IsDependent |=
Found.wasNotFoundInCurrentInstantiation();
478 if (!ObjectType.
isNull()) {
482 AllowFunctionTemplatesInLookup =
false;
483 ObjectTypeSearchedInScope =
true;
486 IsDependent |=
Found.wasNotFoundInCurrentInstantiation();
489 if (
Found.isAmbiguous())
506 if (AllFunctions || (
Found.empty() && !IsDependent)) {
510 *ATK = (
Found.empty() &&
Found.getLookupName().isIdentifier())
518 if (
Found.empty() && !IsDependent && AllowTypoCorrection) {
530 Found.getLookupNameInfo(),
Found.getLookupKind(), S, &SS, FilterCCC,
532 if (
auto *ND = Corrected.getFoundDecl())
535 if (
Found.isAmbiguous()) {
537 }
else if (!
Found.empty()) {
540 AllowFunctionTemplatesInLookup =
true;
541 Found.setLookupName(Corrected.getCorrection());
543 std::string CorrectedStr(Corrected.getAsString(
getLangOpts()));
544 bool DroppedSpecifier = Corrected.WillReplaceSpecifier() &&
547 << Name << LookupCtx << DroppedSpecifier
561 Found.setNotFoundInCurrentInstantiation();
567 if (ExampleLookupResult && RequiredTemplate) {
568 Diag(
Found.getNameLoc(), diag::err_template_kw_refers_to_non_template)
573 diag::note_template_kw_refers_to_non_template)
574 <<
Found.getLookupName();
581 if (S && !ObjectType.
isNull() && !ObjectTypeSearchedInScope &&
598 if (FoundOuter.
empty()) {
608 }
else if (!
Found.isSuppressingAmbiguousDiagnostics()) {
612 if (!
Found.isSingleResult() ||
616 diag::ext_nested_name_member_ref_lookup_ambiguous)
617 <<
Found.getLookupName()
619 Diag(
Found.getRepresentativeDecl()->getLocation(),
620 diag::note_ambig_member_ref_object_type)
623 diag::note_ambig_member_ref_scope);
646 bool MissingTemplateKeyword =
false;
649 if (
auto *DRE = dyn_cast<DeclRefExpr>(
TemplateName.get())) {
650 NameInfo = DRE->getNameInfo();
651 SS.
Adopt(DRE->getQualifierLoc());
653 Found = DRE->getFoundDecl();
654 }
else if (
auto *ME = dyn_cast<MemberExpr>(
TemplateName.get())) {
655 NameInfo = ME->getMemberNameInfo();
656 SS.
Adopt(ME->getQualifierLoc());
658 LookupCtx = ME->getBase()->getType()->getAsCXXRecordDecl();
659 Found = ME->getMemberDecl();
660 }
else if (
auto *DSDRE =
661 dyn_cast<DependentScopeDeclRefExpr>(
TemplateName.get())) {
662 NameInfo = DSDRE->getNameInfo();
663 SS.
Adopt(DSDRE->getQualifierLoc());
664 MissingTemplateKeyword =
true;
665 }
else if (
auto *DSME =
666 dyn_cast<CXXDependentScopeMemberExpr>(
TemplateName.get())) {
667 NameInfo = DSME->getMemberNameInfo();
668 SS.
Adopt(DSME->getQualifierLoc());
669 MissingTemplateKeyword =
true;
671 llvm_unreachable(
"unexpected kind of potential template name");
676 if (MissingTemplateKeyword) {
685 TemplateCandidateFilter(
Sema &S) : S(S) {
686 WantTypeSpecifiers =
false;
687 WantExpressionKeywords =
false;
688 WantRemainingKeywords =
false;
689 WantCXXNamedCasts =
true;
691 bool ValidateCandidate(
const TypoCorrection &Candidate)
override {
697 std::unique_ptr<CorrectionCandidateCallback> clone()
override {
698 return std::make_unique<TemplateCandidateFilter>(*
this);
703 TemplateCandidateFilter CCC(*
this);
707 auto *ND = Corrected.getFoundDecl();
710 if (ND || Corrected.isKeyword()) {
712 std::string CorrectedStr(Corrected.getAsString(
getLangOpts()));
713 bool DroppedSpecifier = Corrected.WillReplaceSpecifier() &&
716 PDiag(diag::err_non_template_in_member_template_id_suggest)
717 << Name << LookupCtx << DroppedSpecifier
721 PDiag(diag::err_non_template_in_template_id_suggest)
726 diag::note_non_template_in_template_id_found);
731 Diag(NameInfo.
getLoc(), diag::err_non_template_in_template_id)
734 Diag(
Found->getLocation(), diag::note_non_template_in_template_id_found);
741 bool isAddressOfOperand,
757 nullptr, NameInfo, TemplateArgs);
780 bool InstantiatedFromMember,
784 bool Complain,
bool *Unreachable) {
788 bool IsEntityBeingDefined =
false;
789 if (
const TagDecl *TD = dyn_cast_or_null<TagDecl>(PatternDef))
790 IsEntityBeingDefined = TD->isBeingDefined();
792 if (PatternDef && !IsEntityBeingDefined) {
809 if (!Complain || (PatternDef && PatternDef->
isInvalidDecl()))
813 if (
TagDecl *TD = dyn_cast<TagDecl>(Instantiation))
814 InstantiationTy =
Context.getCanonicalTagType(TD);
816 Diag(PointOfInstantiation,
817 diag::err_template_instantiate_within_definition)
823 }
else if (InstantiatedFromMember) {
825 Diag(PointOfInstantiation,
826 diag::err_explicit_instantiation_undefined_member)
831 assert(
isa<TagDecl>(Instantiation) &&
"Must be a TagDecl!");
832 Diag(PointOfInstantiation,
833 diag::err_implicit_instantiate_member_undefined)
839 Diag(PointOfInstantiation,
840 diag::err_explicit_instantiation_undefined_func_template)
844 Diag(PointOfInstantiation, diag::err_template_instantiate_undefined)
849 assert(
isa<VarDecl>(Instantiation) &&
"Must be a VarDecl!");
851 Diag(PointOfInstantiation,
852 diag::err_explicit_instantiation_undefined_var_template)
856 Diag(PointOfInstantiation,
857 diag::err_explicit_instantiation_undefined_member)
874 bool SupportedForCompatibility) {
887 ? diag::ext_template_param_shadow
888 : (SupportedForCompatibility ? diag::ext_compat_template_param_shadow
889 : diag::err_template_param_shadow);
891 Diag(Loc, DiagId) << ND->getDeclName();
896 if (
TemplateDecl *Temp = dyn_cast_or_null<TemplateDecl>(D)) {
897 D = Temp->getTemplatedDecl();
906 "Only template template arguments can be pack expansions here");
907 assert(
getAsTemplate().get().containsUnexpandedParameterPack() &&
908 "Template template argument pack expansion without packs");
910 Result.EllipsisLoc = EllipsisLoc;
945 llvm_unreachable(
"Unhandled parsed template argument");
950 for (
unsigned I = 0,
Last = TemplateArgsIn.size(); I !=
Last; ++I)
970 assert(TInfo &&
"template argument with no location");
978 EllipsisLoc = PET.getEllipsisLoc();
979 TL = PET.getPatternLoc();
983 TemplateName Name = DTST.getTypePtr()->getTemplateName();
985 SS.
Adopt(DTST.getQualifierLoc());
988 DTST.getTemplateNameLoc());
1009 unsigned Depth,
unsigned Position,
1012 bool HasTypeConstraint) {
1014 "Template type parameter not in template parameter scope!");
1016 bool IsParameterPack = EllipsisLoc.
isValid();
1019 KeyLoc, ParamNameLoc, Depth, Position,
1020 ParamName,
Typename, IsParameterPack,
1024 if (Param->isParameterPack())
1026 CSI->LocalPacks.push_back(Param);
1039 if (DefaultArg && IsParameterPack) {
1040 Diag(EqualLoc, diag::err_template_param_pack_default_arg);
1041 DefaultArg =
nullptr;
1049 assert(DefaultTInfo &&
"expected source information for type");
1058 Param->setInvalidDecl();
1062 Param->setDefaultArgument(
1077 return TemplateArgs;
1084 bool IsTypeConcept =
false;
1085 bool RequiresArguments =
false;
1087 IsTypeConcept = TTP->isTypeConceptTemplateParam();
1089 TTP->getTemplateParameters()->getMinRequiredArguments() > 1;
1095 ->getTemplateParameters()
1096 ->getMinRequiredArguments() > 1;
1102 if (!IsTypeConcept) {
1104 diag::err_type_constraint_non_type_concept);
1113 if (!WereArgsSpecified && RequiresArguments) {
1115 diag::err_type_constraint_missing_arguments)
1134 bool AllowUnexpandedPack) {
1151 if (EllipsisLoc.
isInvalid() && !AllowUnexpandedPack) {
1162 ConstrainedParameter, EllipsisLoc);
1165template <
typename ArgumentLocAppender>
1180 Appender(ConstraintArgs);
1188 if (
auto *CD = dyn_cast<ConceptDecl>(NamedConcept)) {
1191 FoundDecl ? FoundDecl : NamedConcept, CD,
1196 auto *CDT = dyn_cast<TemplateTemplateParmDecl>(NamedConcept);
1201 return ImmediatelyDeclaredConstraint;
1217 ImmediatelyDeclaredConstraint.
get(), BO_LAnd,
1218 EllipsisLoc,
nullptr,
1235 *TemplateArgs) :
nullptr;
1240 *
this,
NS, NameInfo, NamedConcept, FoundDecl,
1243 ParamAsArgument, ConstrainedParameter->
getLocation(),
1246 for (const auto &ArgLoc : TemplateArgs->arguments())
1247 ConstraintArgs.addArgument(ArgLoc);
1250 if (ImmediatelyDeclaredConstraint.
isInvalid())
1260 CL, ImmediatelyDeclaredConstraint.
get(), std::nullopt);
1271 diag::err_unsupported_placeholder_constraint)
1290 for (unsigned I = 0, C = TL.getNumArgs(); I != C; ++I)
1291 ConstraintArgs.addArgument(TL.getArgLoc(I));
1294 if (ImmediatelyDeclaredConstraint.
isInvalid() ||
1295 !ImmediatelyDeclaredConstraint.
isUsable())
1299 ImmediatelyDeclaredConstraint.
get());
1318 if (
T->isDependentType())
1324 if (
T->isStructuralType())
1328 if (
T->isRValueReferenceType()) {
1329 Diag(Loc, diag::err_template_nontype_parm_rvalue_ref) <<
T;
1338 (!
T->isScalarType() && !
T->isRecordType())) {
1339 Diag(Loc, diag::err_template_nontype_parm_bad_type) <<
T;
1347 Diag(Loc, diag::err_template_nontype_parm_not_structural) <<
T;
1354 for (
const FieldDecl *FD : RD->fields()) {
1356 Diag(FD->getLocation(), diag::note_not_structural_non_public) <<
T << 0;
1359 if (FD->isMutable()) {
1360 Diag(FD->getLocation(), diag::note_not_structural_mutable_field) <<
T;
1363 if (FD->getType()->isRValueReferenceType()) {
1364 Diag(FD->getLocation(), diag::note_not_structural_rvalue_ref_field)
1371 for (
const auto &BaseSpec : RD->bases()) {
1372 if (BaseSpec.getAccessSpecifier() !=
AS_public) {
1373 Diag(BaseSpec.getBaseTypeLoc(), diag::note_not_structural_non_public)
1384 for (
const FieldDecl *FD : RD->fields()) {
1386 if (!
T->isStructuralType()) {
1387 SubLoc = FD->getLocation();
1395 for (
const auto &BaseSpec : RD->bases()) {
1397 if (!
T->isStructuralType()) {
1398 SubLoc = BaseSpec.getBaseTypeLoc();
1406 assert(Kind != -1 &&
"couldn't find reason why type is not structural");
1407 Diag(SubLoc, diag::note_not_structural_subobject)
1408 <<
T << Kind << SubType;
1410 RD =
T->getAsCXXRecordDecl();
1420 if (
T->isVariablyModifiedType()) {
1421 Diag(Loc, diag::err_variably_modified_nontype_template_param)
1432 if (
T->isIntegralOrEnumerationType() ||
1434 T->isPointerType() ||
1436 T->isLValueReferenceType() ||
1438 T->isMemberPointerType() ||
1440 T->isNullPtrType() ||
1442 T->isUndeducedType()) {
1445 return T.getUnqualifiedType();
1453 if (
T->isArrayType() ||
T->isFunctionType())
1462 if (
T->isDependentType())
1463 return T.getUnqualifiedType();
1474 Diag(Loc, diag::err_template_nontype_parm_bad_structural_type) <<
T;
1478 Diag(Loc, diag::warn_cxx17_compat_template_nontype_parm_type) <<
T;
1479 return T.getUnqualifiedType();
1490 auto CheckValidDeclSpecifiers = [
this, &D] {
1504 Diag(Loc, diag::err_invalid_decl_specifier_in_nontype_parm)
1541 CheckValidDeclSpecifiers();
1546 diag::warn_cxx14_compat_template_nontype_parm_auto_type)
1550 "Non-type template parameter not in template parameter scope!");
1570 if (TL.isConstrained()) {
1572 T->containsUnexpandedParameterPack()) {
1573 assert(TL.getConceptReference()->getTemplateArgsAsWritten());
1575 TL.getConceptReference()->getTemplateArgsAsWritten()->arguments())
1585 Param->setInvalidDecl();
1587 if (Param->isParameterPack())
1589 CSI->LocalPacks.push_back(Param);
1603 if (
Default && IsParameterPack) {
1604 Diag(EqualLoc, diag::err_template_param_pack_default_arg);
1614 Param->setDefaultArgument(
1633 "Template template parameter not in template parameter scope!");
1635 bool IsParameterPack = EllipsisLoc.
isValid();
1647 NameLoc.
isInvalid() ? TmpLoc : NameLoc, Depth, Position, IsParameterPack,
1651 if (Param->isParameterPack())
1653 LSI->LocalPacks.push_back(Param);
1664 if (Params->
size() == 0) {
1665 Diag(Param->getLocation(), diag::err_template_template_parm_no_parms)
1671 Param->setInvalidDecl();
1676 if (IsParameterPack && !
Default.isInvalid()) {
1677 Diag(EqualLoc, diag::err_template_param_pack_default_arg);
1692 Diag(DefaultArg.
getLocation(), diag::err_template_arg_not_valid_template)
1711 Param->setDefaultArgument(
Context, DefaultArg);
1718class ConstraintRefersToContainingTemplateChecker
1723 unsigned TemplateDepth = 0;
1727 bool CheckIfContainingRecord(
const CXXRecordDecl *CheckingRD) {
1733 DC && !DC->isFileContext(); DC = DC->getParent())
1734 if (
const auto *RD = dyn_cast<CXXRecordDecl>(DC))
1735 if (CheckingRD == RD->getMostRecentDecl()) {
1743 bool CheckNonTypeTemplateParmDecl(
const NonTypeTemplateParmDecl *D) {
1749 return TraverseType(D->
getType());
1753 ConstraintRefersToContainingTemplateChecker(
const FunctionDecl *
Friend,
1754 unsigned TemplateDepth)
1757 bool getResult()
const {
return Result; }
1763 bool VisitTemplateTypeParmType(
const TemplateTypeParmType *
Type)
override {
1764 if (
Type->getDecl()->getDepth() < TemplateDepth) {
1771 bool TraverseDeclRefExpr(
const DeclRefExpr *E)
override {
1772 return TraverseDecl(E->
getDecl());
1775 bool TraverseTypedefType(
const TypedefType *TT,
1777 return TraverseType(TT->
desugar());
1780 bool TraverseTypeLoc(TypeLoc TL,
bool TraverseQualifier)
override {
1782 return TraverseType(TL.
getType(), TraverseQualifier);
1785 bool VisitTagType(
const TagType *
T)
override {
1786 return TraverseDecl(
T->getOriginalDecl());
1789 bool TraverseDecl(
const Decl *D)
override {
1795 if (
auto *TD = dyn_cast<TypedefNameDecl>(D))
1796 return TraverseType(TD->getUnderlyingType());
1797 if (
auto *NTTPD = dyn_cast<NonTypeTemplateParmDecl>(D))
1798 return CheckNonTypeTemplateParmDecl(NTTPD);
1799 if (
auto *VD = dyn_cast<ValueDecl>(D))
1800 return TraverseType(VD->getType());
1803 if (
auto *RD = dyn_cast<CXXRecordDecl>(D))
1804 return CheckIfContainingRecord(RD);
1809 llvm_unreachable(
"Don't know how to handle this declaration type yet");
1817 const Expr *Constraint) {
1818 assert(
Friend->getFriendObjectKind() &&
"Only works on a friend");
1819 ConstraintRefersToContainingTemplateChecker Checker(
Friend, TemplateDepth);
1820 Checker.TraverseStmt(Constraint);
1821 return Checker.getResult();
1831 Expr *RequiresClause) {
1833 Diag(ExportLoc, diag::warn_template_export_unsupported);
1885 assert(TemplateParams && TemplateParams->
size() > 0 &&
1886 "No template parameters");
1888 "Can only declare or define class templates");
1897 "can't build template of enumerated type");
1901 Diag(KWLoc, diag::err_template_unnamed_class);
1916 if (!SemanticContext) {
1921 ? diag::warn_template_qualified_friend_ignored
1922 : diag::err_template_qualified_declarator_no_match)
1998 dyn_cast_or_null<ClassTemplateDecl>(PrevDecl);
2003 if (!PrevClassTemplate && isa_and_nonnull<CXXRecordDecl>(PrevDecl) &&
2011 ->getSpecializedTemplate();
2034 PrevDecl = PrevClassTemplate =
nullptr;
2035 SemanticContext = OutermostContext;
2053 SemanticContext, S, SS.
isValid()))
2054 PrevDecl = PrevClassTemplate =
nullptr;
2056 if (
auto *Shadow = dyn_cast_or_null<UsingShadowDecl>(
2057 PrevDecl ?
Previous.getRepresentativeDecl() :
nullptr)) {
2059 !(PrevClassTemplate &&
2062 Diag(KWLoc, diag::err_using_decl_conflict_reverse);
2063 Diag(Shadow->getTargetDecl()->getLocation(),
2064 diag::note_using_decl_target);
2065 Diag(Shadow->getIntroducer()->getLocation(), diag::note_using_decl) << 0;
2067 PrevDecl = PrevClassTemplate =
nullptr;
2071 if (PrevClassTemplate) {
2080 TemplateParams, PrevClassTemplate,
2093 Diag(KWLoc, diag::err_use_with_wrong_tag)
2106 bool HiddenDefVisible =
false;
2111 if (!HiddenDefVisible && Hidden) {
2114 assert(Tmpl &&
"original definition of a class template is not a "
2120 Diag(NameLoc, diag::err_redefinition) << Name;
2121 Diag(Def->getLocation(), diag::note_previous_definition);
2128 }
else if (PrevDecl) {
2134 Diag(NameLoc, diag::err_redefinition_different_kind) << Name;
2148 (SS.
isSet() && SemanticContext && SemanticContext->
isRecord() &&
2161 ? diag::err_friend_decl_does_not_match
2162 : diag::err_member_decl_does_not_match)
2163 << Name << SemanticContext <<
true << SS.
getRange();
2173 bool ShouldAddRedecl =
2177 Context, Kind, SemanticContext, KWLoc, NameLoc, Name,
2178 PrevClassTemplate && ShouldAddRedecl
2182 if (NumOuterTemplateParamLists > 0)
2185 llvm::ArrayRef(OuterTemplateParamLists, NumOuterTemplateParamLists));
2201 if (ShouldAddRedecl)
2206 if (ModulePrivateLoc.
isValid())
2211 if (PrevClassTemplate &&
2229 if (PrevClassTemplate)
2265 if (PrevClassTemplate)
2304 S.
DiagCompat(ParamLoc, diag_compat::templ_default_in_function_templ)
2313 S.
Diag(ParamLoc, diag::err_template_parameter_default_template_member)
2322 S.
Diag(ParamLoc, diag::err_template_parameter_default_friend_template)
2331 llvm_unreachable(
"Invalid TemplateParamListContext!");
2344 for (
unsigned I = 0, N = Params->
size(); I != N; ++I) {
2349 if (TC->hasExplicitTemplateArgs())
2350 for (
auto &ArgLoc : TC->getTemplateArgsAsWritten()->arguments())
2358 if (!NTTP->isParameterPack() &&
2360 NTTP->getTypeSourceInfo(),
2368 = dyn_cast<TemplateTemplateParmDecl>(P))
2388 bool SawDefaultArgument =
false;
2394 OldParam = OldParams->
begin();
2396 bool RemoveDefaultArguments =
false;
2398 NewParamEnd = NewParams->
end();
2399 NewParam != NewParamEnd; ++NewParam) {
2402 bool RedundantDefaultArg =
false;
2405 bool InconsistentDefaultArg =
false;
2407 std::string PrevModuleName;
2413 bool MissingDefaultArg =
false;
2416 bool SawParameterPack =
false;
2419 = dyn_cast<TemplateTypeParmDecl>(*NewParam)) {
2421 if (NewTypeParm->hasDefaultArgument() &&
2423 *
this, TPC, NewTypeParm->getLocation(),
2424 NewTypeParm->getDefaultArgument().getSourceRange()))
2425 NewTypeParm->removeDefaultArgument();
2430 if (NewTypeParm->isParameterPack()) {
2431 assert(!NewTypeParm->hasDefaultArgument() &&
2432 "Parameter packs can't have a default argument!");
2433 SawParameterPack =
true;
2435 NewTypeParm->hasDefaultArgument() &&
2438 NewDefaultLoc = NewTypeParm->getDefaultArgumentLoc();
2439 SawDefaultArgument =
true;
2442 RedundantDefaultArg =
true;
2443 else if (!
getASTContext().isSameDefaultTemplateArgument(OldTypeParm,
2445 InconsistentDefaultArg =
true;
2449 PreviousDefaultArgLoc = NewDefaultLoc;
2453 NewTypeParm->setInheritedDefaultArgument(
Context, OldTypeParm);
2455 }
else if (NewTypeParm->hasDefaultArgument()) {
2456 SawDefaultArgument =
true;
2457 PreviousDefaultArgLoc = NewTypeParm->getDefaultArgumentLoc();
2458 }
else if (SawDefaultArgument)
2459 MissingDefaultArg =
true;
2461 = dyn_cast<NonTypeTemplateParmDecl>(*NewParam)) {
2466 !NewNonTypeParm->isParameterPack() &&
2468 NewNonTypeParm->getTypeSourceInfo(),
2475 if (NewNonTypeParm->hasDefaultArgument() &&
2477 *
this, TPC, NewNonTypeParm->getLocation(),
2478 NewNonTypeParm->getDefaultArgument().getSourceRange())) {
2479 NewNonTypeParm->removeDefaultArgument();
2485 if (NewNonTypeParm->isParameterPack()) {
2486 assert(!NewNonTypeParm->hasDefaultArgument() &&
2487 "Parameter packs can't have a default argument!");
2488 if (!NewNonTypeParm->isPackExpansion())
2489 SawParameterPack =
true;
2491 NewNonTypeParm->hasDefaultArgument() &&
2494 NewDefaultLoc = NewNonTypeParm->getDefaultArgumentLoc();
2495 SawDefaultArgument =
true;
2497 RedundantDefaultArg =
true;
2499 OldNonTypeParm, NewNonTypeParm)) {
2500 InconsistentDefaultArg =
true;
2504 PreviousDefaultArgLoc = NewDefaultLoc;
2508 NewNonTypeParm->setInheritedDefaultArgument(
Context, OldNonTypeParm);
2510 }
else if (NewNonTypeParm->hasDefaultArgument()) {
2511 SawDefaultArgument =
true;
2512 PreviousDefaultArgLoc = NewNonTypeParm->getDefaultArgumentLoc();
2513 }
else if (SawDefaultArgument)
2514 MissingDefaultArg =
true;
2537 "Parameter packs can't have a default argument!");
2539 SawParameterPack =
true;
2540 }
else if (OldTemplateParm &&
2546 SawDefaultArgument =
true;
2548 RedundantDefaultArg =
true;
2550 OldTemplateParm, NewTemplateParm)) {
2551 InconsistentDefaultArg =
true;
2555 PreviousDefaultArgLoc = NewDefaultLoc;
2560 PreviousDefaultArgLoc
2563 SawDefaultArgument =
true;
2564 PreviousDefaultArgLoc
2566 }
else if (SawDefaultArgument)
2567 MissingDefaultArg =
true;
2573 if (SawParameterPack && (NewParam + 1) != NewParamEnd &&
2575 Diag((*NewParam)->getLocation(),
2576 diag::err_template_param_pack_must_be_last_template_parameter);
2593 if (RedundantDefaultArg) {
2594 Diag(NewDefaultLoc, diag::err_template_param_default_arg_redefinition);
2595 Diag(OldDefaultLoc, diag::note_template_param_prev_default_arg);
2597 }
else if (InconsistentDefaultArg) {
2601 diag::err_template_param_default_arg_inconsistent_redefinition);
2603 diag::note_template_param_prev_default_arg_in_other_module)
2606 }
else if (MissingDefaultArg &&
2614 Diag((*NewParam)->getLocation(),
2615 diag::err_template_param_default_arg_missing);
2616 Diag(PreviousDefaultArgLoc, diag::note_template_param_prev_default_arg);
2618 RemoveDefaultArguments =
true;
2629 if (RemoveDefaultArguments) {
2631 NewParamEnd = NewParams->
end();
2632 NewParam != NewParamEnd; ++NewParam) {
2634 TTP->removeDefaultArgument();
2636 = dyn_cast<NonTypeTemplateParmDecl>(*NewParam))
2637 NTTP->removeDefaultArgument();
2657 bool IgnoreNonTypeDependent;
2662 DependencyChecker(
unsigned Depth,
bool IgnoreNonTypeDependent)
2663 : Depth(Depth), IgnoreNonTypeDependent(IgnoreNonTypeDependent),
2667 : IgnoreNonTypeDependent(IgnoreNonTypeDependent),
Match(
false) {
2670 Depth = PD->getDepth();
2671 }
else if (NonTypeTemplateParmDecl *PD =
2672 dyn_cast<NonTypeTemplateParmDecl>(ND)) {
2673 Depth = PD->getDepth();
2679 bool Matches(
unsigned ParmDepth, SourceLocation Loc = SourceLocation()) {
2680 if (ParmDepth >= Depth) {
2688 bool TraverseStmt(Stmt *S)
override {
2693 if (
auto *E = dyn_cast_or_null<Expr>(S))
2694 if (IgnoreNonTypeDependent && !E->isTypeDependent())
2699 bool TraverseTypeLoc(TypeLoc TL,
bool TraverseQualifier =
true)
override {
2700 if (IgnoreNonTypeDependent && !TL.
isNull() &&
2706 bool VisitTemplateTypeParmTypeLoc(TemplateTypeParmTypeLoc TL)
override {
2710 bool VisitTemplateTypeParmType(TemplateTypeParmType *
T)
override {
2712 return IgnoreNonTypeDependent || !Matches(
T->getDepth());
2716 if (TemplateTemplateParmDecl *PD =
2718 if (Matches(PD->getDepth()))
2723 bool VisitDeclRefExpr(DeclRefExpr *E)
override {
2724 if (NonTypeTemplateParmDecl *PD =
2725 dyn_cast<NonTypeTemplateParmDecl>(E->
getDecl()))
2726 if (Matches(PD->getDepth(), E->
getExprLoc()))
2728 return DynamicRecursiveASTVisitor::VisitDeclRefExpr(E);
2731 bool VisitUnresolvedLookupExpr(UnresolvedLookupExpr *ULE)
override {
2734 if (Matches(TTP->getDepth(), ULE->
getExprLoc()))
2740 return DynamicRecursiveASTVisitor::VisitUnresolvedLookupExpr(ULE);
2743 bool VisitSubstTemplateTypeParmType(SubstTemplateTypeParmType *
T)
override {
2744 return TraverseType(
T->getReplacementType());
2747 bool VisitSubstTemplateTypeParmPackType(
2748 SubstTemplateTypeParmPackType *
T)
override {
2749 return TraverseTemplateArgument(
T->getArgumentPack());
2752 bool TraverseInjectedClassNameType(InjectedClassNameType *
T,
2753 bool TraverseQualifier)
override {
2756 return TraverseTemplateArguments(
2757 T->getTemplateArgs(
T->getOriginalDecl()->getASTContext()));
2766 if (!Params->
size())
2769 DependencyChecker Checker(Params,
false);
2770 Checker.TraverseType(
T);
2771 return Checker.Match;
2797 bool &IsMemberSpecialization,
bool &
Invalid,
bool SuppressDiagnostic) {
2798 IsMemberSpecialization =
false;
2820 while (!
T.isNull()) {
2821 NestedTypes.push_back(
T);
2827 = dyn_cast<ClassTemplateSpecializationDecl>(
Record)) {
2830 ExplicitSpecLoc = Spec->getLocation();
2833 }
else if (
Record->getTemplateSpecializationKind()
2835 ExplicitSpecLoc =
Record->getLocation();
2840 T =
Context.getTypeDeclType(Parent);
2846 if (
const TemplateSpecializationType *TST
2847 =
T->getAs<TemplateSpecializationType>()) {
2850 T =
Context.getTypeDeclType(Parent);
2858 if (
const DependentTemplateSpecializationType *DependentTST
2859 =
T->getAs<DependentTemplateSpecializationType>()) {
2861 DependentTST->getDependentTemplateName().getQualifier();
2870 if (
const DependentNameType *DependentName =
T->getAs<DependentNameType>()){
2880 if (
const EnumType *EnumT =
T->getAsCanonical<EnumType>()) {
2886 if (
TypeDecl *Parent = dyn_cast<TypeDecl>(
Enum->getParent()))
2887 T =
Context.getCanonicalTypeDeclType(Parent);
2897 std::reverse(NestedTypes.begin(), NestedTypes.end());
2905 bool SawNonEmptyTemplateParameterList =
false;
2907 auto CheckExplicitSpecialization = [&](
SourceRange Range,
bool Recovery) {
2908 if (SawNonEmptyTemplateParameterList) {
2909 if (!SuppressDiagnostic)
2910 Diag(DeclLoc, diag::err_specialize_member_of_template)
2911 << !Recovery << Range;
2913 IsMemberSpecialization =
false;
2920 auto DiagnoseMissingExplicitSpecialization = [&] (
SourceRange Range) {
2922 if (CheckExplicitSpecialization(Range,
true))
2927 if (!ParamLists.empty())
2928 ExpectedTemplateLoc = ParamLists[0]->getTemplateLoc();
2930 ExpectedTemplateLoc = DeclStartLoc;
2932 if (!SuppressDiagnostic)
2933 Diag(DeclLoc, diag::err_template_spec_needs_header)
2940 for (
unsigned TypeIdx = 0, NumTypes = NestedTypes.size(); TypeIdx != NumTypes;
2942 T = NestedTypes[TypeIdx];
2945 bool NeedEmptyTemplateHeader =
false;
2948 bool NeedNonemptyTemplateHeader =
false;
2961 = dyn_cast<ClassTemplatePartialSpecializationDecl>(
Record)) {
2962 ExpectedTemplateParams = Partial->getTemplateParameters();
2963 NeedNonemptyTemplateHeader =
true;
2964 }
else if (
Record->isDependentType()) {
2965 if (
Record->getDescribedClassTemplate()) {
2966 ExpectedTemplateParams =
Record->getDescribedClassTemplate()
2967 ->getTemplateParameters();
2968 NeedNonemptyTemplateHeader =
true;
2971 = dyn_cast<ClassTemplateSpecializationDecl>(
Record)) {
2977 NeedEmptyTemplateHeader =
true;
2980 }
else if (
Record->getTemplateSpecializationKind()) {
2981 if (
Record->getTemplateSpecializationKind()
2983 TypeIdx == NumTypes - 1)
2984 IsMemberSpecialization =
true;
2988 }
else if (
const TemplateSpecializationType *TST
2989 =
T->getAs<TemplateSpecializationType>()) {
2991 ExpectedTemplateParams =
Template->getTemplateParameters();
2992 NeedNonemptyTemplateHeader =
true;
2994 }
else if (
T->getAs<DependentTemplateSpecializationType>()) {
2997 NeedNonemptyTemplateHeader =
false;
3007 if (
ParamIdx < ParamLists.size()) {
3008 if (ParamLists[
ParamIdx]->size() == 0) {
3009 if (CheckExplicitSpecialization(ParamLists[
ParamIdx]->getSourceRange(),
3013 SawNonEmptyTemplateParameterList =
true;
3016 if (NeedEmptyTemplateHeader) {
3019 if (TypeIdx == NumTypes - 1)
3020 IsMemberSpecialization =
true;
3022 if (
ParamIdx < ParamLists.size()) {
3023 if (ParamLists[
ParamIdx]->size() > 0) {
3025 if (!SuppressDiagnostic)
3027 diag::err_template_param_list_matches_nontemplate)
3030 ParamLists[
ParamIdx]->getRAngleLoc())
3042 if (DiagnoseMissingExplicitSpecialization(
3049 if (NeedNonemptyTemplateHeader) {
3054 if (IsFriend &&
T->isDependentType()) {
3055 if (
ParamIdx < ParamLists.size() &&
3057 ExpectedTemplateParams =
nullptr;
3062 if (
ParamIdx < ParamLists.size()) {
3064 if (ExpectedTemplateParams &&
3066 ExpectedTemplateParams,
3079 if (!SuppressDiagnostic)
3080 Diag(DeclLoc, diag::err_template_spec_needs_template_parameters)
3091 if (
ParamIdx >= ParamLists.size()) {
3092 if (TemplateId && !IsFriend) {
3108 if (
ParamIdx < ParamLists.size() - 1) {
3109 bool HasAnyExplicitSpecHeader =
false;
3110 bool AllExplicitSpecHeaders =
true;
3111 for (
unsigned I =
ParamIdx, E = ParamLists.size() - 1; I != E; ++I) {
3112 if (ParamLists[I]->size() == 0)
3113 HasAnyExplicitSpecHeader =
true;
3115 AllExplicitSpecHeaders =
false;
3118 if (!SuppressDiagnostic)
3120 AllExplicitSpecHeaders ? diag::ext_template_spec_extra_headers
3121 : diag::err_template_spec_extra_headers)
3123 ParamLists[ParamLists.size() - 2]->getRAngleLoc());
3128 if (ExplicitSpecLoc.
isValid() && HasAnyExplicitSpecHeader &&
3129 !SuppressDiagnostic)
3130 Diag(ExplicitSpecLoc,
3131 diag::note_explicit_template_spec_does_not_need_header)
3132 << NestedTypes.back();
3137 if (!AllExplicitSpecHeaders)
3148 if (ParamLists.back()->size() == 0 &&
3149 CheckExplicitSpecialization(ParamLists[
ParamIdx]->getSourceRange(),
3155 return ParamLists.back();
3160 Diag(
Template->getLocation(), diag::note_template_declared_here)
3176 Diag((*I)->getLocation(), diag::note_template_declared_here)
3177 << 0 << (*I)->getDeclName();
3212 return BaseTemplateInst;
3217 switch (Ts.size()) {
3227 return lookUpCommonType(Ts[0], Ts[0]);
3241 return lookUpCommonType(D1, D2);
3246 auto CheckConditionalOperands = [&](
bool ConstRefQual) ->
QualType {
3285 if (
auto Res = CheckConditionalOperands(
false); !Res.isNull())
3298 return CheckConditionalOperands(
true);
3308 QualType Result = Ts.front().getAsType();
3309 for (
auto T : llvm::drop_begin(Ts)) {
3310 Result = lookUpCommonType(Result,
T.getAsType());
3311 if (Result.isNull())
3320 DeclContext *DC = RT->getOriginalDecl()->getDeclContext();
3335 bool Literal =
false;
3337 if (
isInVkNamespace(RT) && RT->getOriginalDecl()->getName() ==
"Literal") {
3339 dyn_cast<ClassTemplateSpecializationDecl>(RT->getOriginalDecl());
3343 QualType ConstantType = LiteralArgs[0].getAsType();
3346 LiteralLoc = SpecDecl->getSourceRange().getBegin();
3350 RT->getOriginalDecl()->getName() ==
"integral_constant") {
3352 dyn_cast<ClassTemplateSpecializationDecl>(RT->getOriginalDecl());
3357 QualType ConstantType = ConstantArgs[0].getAsType();
3358 llvm::APInt
Value = ConstantArgs[1].getAsIntegral();
3361 return SpirvOperand::createLiteral(
Value);
3362 return SpirvOperand::createConstant(ConstantType,
Value);
3363 }
else if (Literal) {
3364 SemaRef.
Diag(LiteralLoc, diag::err_hlsl_vk_literal_must_contain_constant);
3365 return SpirvOperand();
3369 diag::err_call_incomplete_argument))
3370 return SpirvOperand();
3371 return SpirvOperand::createType(OperandArg);
3381 case BTK__make_integer_seq: {
3385 QualType OrigType = Converted[1].getAsType();
3389 SemaRef.
Diag(TemplateArgs[1].getLocation(),
3390 diag::err_integer_sequence_integral_element_type);
3404 OrigType, TemplateArgs[1].getLocation())));
3406 if (llvm::APSInt NumArgs = NumArgsArg.
getAsIntegral(); NumArgs >= 0) {
3408 for (llvm::APSInt I(NumArgs.getBitWidth(), NumArgs.isUnsigned());
3412 TA, OrigType, TemplateArgs[2].getLocation()));
3417 SemaRef.
Diag(TemplateArgs[2].getLocation(),
3418 diag::err_integer_sequence_negative_length);
3425 TemplateLoc, SyntheticTemplateArgs);
3428 case BTK__type_pack_element: {
3432 assert(Converted.size() == 2 &&
3433 "__type_pack_element should be given an index and a parameter pack");
3440 assert(Index >= 0 &&
"the index used with __type_pack_element should be of "
3441 "type std::size_t, and hence be non-negative");
3443 if (Index >= Ts.pack_size()) {
3444 SemaRef.
Diag(TemplateArgs[0].getLocation(),
3445 diag::err_type_pack_element_out_of_bounds);
3450 int64_t N = Index.getExtValue();
3451 return Ts.getPackAsArray()[N].getAsType();
3454 case BTK__builtin_common_type: {
3455 assert(Converted.size() == 4);
3456 if (llvm::any_of(Converted, [](
auto &
C) {
return C.isDependent(); }))
3459 TemplateName BaseTemplate = Converted[0].getAsTemplate();
3467 CT, TemplateArgs[1].getLocation())));
3468 TemplateName HasTypeMember = Converted[1].getAsTemplate();
3472 QualType HasNoTypeMember = Converted[2].getAsType();
3473 return HasNoTypeMember;
3476 case BTK__hlsl_spirv_type: {
3477 assert(Converted.size() == 4);
3479 if (!Context.getTargetInfo().getTriple().isSPIRV()) {
3480 SemaRef.
Diag(TemplateLoc, diag::err_hlsl_spirv_only) << BTD;
3483 if (llvm::any_of(Converted, [](
auto &
C) {
return C.isDependent(); }))
3486 uint64_t Opcode = Converted[0].getAsIntegral().getZExtValue();
3487 uint64_t Size = Converted[1].getAsIntegral().getZExtValue();
3488 uint64_t Alignment = Converted[2].getAsIntegral().getZExtValue();
3494 for (
auto &OperandTA : OperandArgs) {
3495 QualType OperandArg = OperandTA.getAsType();
3497 TemplateArgs[3].getLocation());
3498 if (!Operand.isValid())
3500 Operands.push_back(Operand);
3503 return Context.getHLSLInlineSpirvType(Opcode, Size, Alignment, Operands);
3505 case BTK__builtin_dedup_pack: {
3506 assert(Converted.size() == 1 &&
"__builtin_dedup_pack should be given "
3507 "a parameter pack");
3516 llvm::SmallDenseSet<QualType> Seen;
3520 if (!Seen.insert(
T.getAsType().getCanonicalType()).second)
3522 OutArgs.push_back(
T);
3524 return Context.getSubstBuiltinTemplatePack(
3528 llvm_unreachable(
"unexpected BuiltinTemplateDecl!");
3546 if (
auto BinOp = dyn_cast<BinaryOperator>(Clause->IgnoreParenImpCasts())) {
3547 if (BinOp->getOpcode() == BO_LAnd) {
3554 Terms.push_back(Clause);
3562 auto *BinOp = dyn_cast<BinaryOperator>(
Cond->IgnoreParenImpCasts());
3563 if (!BinOp)
return Cond;
3565 if (BinOp->getOpcode() != BO_LOr)
return Cond;
3568 Expr *LHS = BinOp->getLHS();
3570 if (!InnerBinOp)
return Cond;
3572 if (InnerBinOp->getOpcode() != BO_EQ ||
3583 if (MacroName ==
"CONCEPT_REQUIRES" || MacroName ==
"CONCEPT_REQUIRES_")
3584 return BinOp->getRHS();
3594class FailedBooleanConditionPrinterHelper :
public PrinterHelper {
3596 explicit FailedBooleanConditionPrinterHelper(
const PrintingPolicy &P)
3599 bool handledStmt(Stmt *E, raw_ostream &OS)
override {
3600 const auto *DR = dyn_cast<DeclRefExpr>(E);
3601 if (DR && DR->getQualifier()) {
3604 DR->getQualifier().print(OS, Policy,
true);
3606 const ValueDecl *VD = DR->getDecl();
3608 if (
const auto *IV = dyn_cast<VarTemplateSpecializationDecl>(VD)) {
3610 printTemplateArgumentList(
3611 OS, IV->getTemplateArgs().asArray(), Policy,
3612 IV->getSpecializedTemplate()->getTemplateParameters());
3620 const PrintingPolicy Policy;
3625std::pair<Expr *, std::string>
3634 Expr *FailedCond =
nullptr;
3635 for (
Expr *Term : Terms) {
3649 if (Term->EvaluateAsBooleanCondition(Succeeded,
Context) &&
3651 FailedCond = TermAsWritten;
3656 FailedCond =
Cond->IgnoreParenImpCasts();
3658 std::string Description;
3660 llvm::raw_string_ostream Out(Description);
3663 FailedBooleanConditionPrinterHelper Helper(Policy);
3664 FailedCond->
printPretty(Out, &Helper, Policy, 0,
"\n",
nullptr);
3666 return { FailedCond, Description };
3682 return Context.getDependentTemplateSpecializationType(
3698 Diag(TemplateLoc, diag::err_template_id_not_a_type) << Name;
3719 dyn_cast<TypeAliasTemplateDecl>(
Template)) {
3727 SemaRef.Diag(TemplateLoc, diag::err_tag_reference_non_tag)
3757 std::optional<ContextRAII> SavedContext;
3759 SavedContext.emplace(*
this,
AliasTemplate->getDeclContext());
3764 if (CanonType.
isNull()) {
3770 if (*DeductionInfo &&
3771 (*DeductionInfo)->hasSFINAEDiagnostic() &&
3772 (*DeductionInfo)->peekSFINAEDiagnostic().second.getDiagID() ==
3773 diag::err_typename_nested_not_found_enable_if &&
3774 TemplateArgs[0].getArgument().getKind()
3777 std::string FailedDescription;
3778 std::tie(FailedCond, FailedDescription) =
3784 (*DeductionInfo)->takeSFINAEDiagnostic(OldDiag);
3788 (*DeductionInfo)->addSFINAEDiagnostic(
3790 PDiag(diag::err_typename_nested_not_found_requirement)
3791 << FailedDescription
3799 }
else if (
auto *BTD = dyn_cast<BuiltinTemplateDecl>(
Template)) {
3803 TemplateSpecializationType::anyDependentTemplateArguments(
3812 CanonType =
Context.getCanonicalTemplateSpecializationType(
3813 Context.getCanonicalTemplateName(Name,
true),
3826 if (Ctx->isFileContext())
break;
3835 !
Record->getDescribedClassTemplate())
3844 if (CanonType != Injected)
3854 dyn_cast<ClassTemplateDecl>(
Template)) {
3857 void *InsertPos =
nullptr;
3892 "type of non-dependent specialization is not a RecordType");
3894 llvm_unreachable(
"Unhandled template kind");
3900 return Context.getTemplateSpecializationType(
3913 assert(ATN &&
"not an assumed template name");
3914 II = ATN->getDeclName().getAsIdentifierInfo();
3930 assert(ATN &&
"not an assumed template name");
3938 std::unique_ptr<CorrectionCandidateCallback> clone()
override {
3939 return std::make_unique<CandidateCallback>(*
this);
3949 Name =
Context.getQualifiedTemplateName(
3950 std::nullopt,
false,
3966 SourceLocation RAngleLoc,
bool IsCtorOrDtorName,
bool IsClassName,
3971 if (!IsCtorOrDtorName && !IsClassName && SS.
isSet()) {
3997 TemplateD, TemplateII, TemplateIILoc, LAngleLoc,
3998 TemplateArgsIn, RAngleLoc);
4005 auto *LookupRD = dyn_cast_or_null<CXXRecordDecl>(LookupCtx);
4006 if (LookupRD && LookupRD->getIdentifier() == TemplateII) {
4009 ? diag::err_out_of_line_qualified_id_type_names_constructor
4010 : diag::ext_out_of_line_qualified_id_type_names_constructor)
4017 if (
Template.getAsAssumedTemplateName() &&
4028 ElaboratedKeyword, *DTN, TemplateArgs.
arguments());
4039 for (
unsigned I = 0, N = SpecTL.
getNumArgs(); I != N; ++I)
4045 TemplateIILoc, TemplateArgs);
4053 TemplateIILoc, TemplateArgs);
4096 for (
unsigned I = 0, N = SpecTL.
getNumArgs(); I != N; ++I)
4107 if (
const RecordType *RT =
Result->getAs<RecordType>()) {
4111 assert(Id &&
"templated class must have an identifier");
4115 Diag(TagLoc, diag::err_use_with_wrong_tag)
4152 const TemplateTypeParmType *TPT =
4154 return TPT && !
Type.hasQualifiers() &&
4155 TPT->getDepth() == Depth && TPT->getIndex() == Index;
4163 dyn_cast<NonTypeTemplateParmDecl>(DRE->
getDecl());
4169 dyn_cast_or_null<TemplateTemplateParmDecl>(
4173 llvm_unreachable(
"unexpected kind of template argument");
4179 if (Params->
size() != Args.size() || Params->
size() != SpecParams->
size())
4182 unsigned Depth = Params->
getDepth();
4184 for (
unsigned I = 0, N = Args.size(); I != N; ++I) {
4202 if (
auto *SpecNTTP =
4203 dyn_cast<NonTypeTemplateParmDecl>(SpecParams->
getParam(I))) {
4204 auto *NTTP = dyn_cast<NonTypeTemplateParmDecl>(Params->
getParam(I));
4205 if (!NTTP || NTTP->getType().getCanonicalType() !=
4206 SpecNTTP->getType().getCanonicalType())
4214template<
typename PartialSpecDecl>
4216 if (Partial->getDeclContext()->isDependentContext())
4225 auto *
Template = Partial->getSpecializedTemplate();
4226 S.
Diag(Partial->getLocation(),
4227 diag::ext_partial_spec_not_more_specialized_than_primary)
4237 diag::note_partial_spec_not_more_specialized_than_primary)
4243 Template->getAssociatedConstraints(TemplateAC);
4244 Partial->getAssociatedConstraints(PartialAC);
4251 const llvm::SmallBitVector &DeducibleParams) {
4252 for (
unsigned I = 0, N = DeducibleParams.size(); I != N; ++I) {
4253 if (!DeducibleParams[I]) {
4255 if (Param->getDeclName())
4256 S.
Diag(Param->getLocation(), diag::note_non_deducible_parameter)
4257 << Param->getDeclName();
4259 S.
Diag(Param->getLocation(), diag::note_non_deducible_parameter)
4266template<
typename PartialSpecDecl>
4268 PartialSpecDecl *Partial) {
4281 auto *TemplateParams = Partial->getTemplateParameters();
4282 llvm::SmallBitVector DeducibleParams(TemplateParams->size());
4284 TemplateParams->getDepth(), DeducibleParams);
4286 if (!DeducibleParams.all()) {
4287 unsigned NumNonDeducible = DeducibleParams.size() - DeducibleParams.count();
4288 S.
Diag(Partial->getLocation(), diag::ext_partial_specs_not_deducible)
4290 << (NumNonDeducible > 1)
4292 Partial->getTemplateArgsAsWritten()->RAngleLoc);
4313 llvm::SmallBitVector DeducibleParams(TemplateParams->size());
4315 for (
unsigned I = 0; I != TemplateParams->size(); ++I) {
4317 auto *Param = TemplateParams->getParam(I);
4319 DeducibleParams[I] =
true;
4322 if (!DeducibleParams.all()) {
4323 unsigned NumNonDeducible = DeducibleParams.size() - DeducibleParams.count();
4324 Diag(TD->
getLocation(), diag::err_deduction_guide_template_not_deducible)
4325 << (NumNonDeducible > 1);
4336 "Variable template specialization is declared with a template id.");
4353 FnTemplate = *OTS->begin();
4363 if (
const auto *DSA =
VarTemplate->getAttr<NoSpecializationsAttr>()) {
4364 auto Message = DSA->getMessage();
4365 Diag(TemplateNameLoc, diag::warn_invalid_specialization)
4367 Diag(DSA->getLoc(), diag::note_marked_here) << DSA;
4371 for (
unsigned I = 0, N = TemplateArgs.
size(); I != N; ++I)
4391 TemplateArgs.
size(),
4398 !TemplateSpecializationType::anyDependentTemplateArguments(
4400 Diag(TemplateNameLoc, diag::err_partial_spec_fully_specialized)
4407 (!
Context.getLangOpts().CPlusPlus20 ||
4413 Diag(TemplateNameLoc, diag::err_partial_spec_args_match_primary_template)
4423 void *InsertPos =
nullptr;
4427 PrevDecl =
VarTemplate->findPartialSpecialization(
4453 cast_or_null<VarTemplatePartialSpecializationDecl>(PrevDecl);
4462 VarTemplate->AddPartialSpecialization(Partial, InsertPos);
4501 Diag(TemplateNameLoc, diag::err_specialization_after_instantiation)
4505 diag::note_instantiation_required_here)
4535struct PartialSpecMatchResult {
4543 if (Var->
getName() !=
"format_kind" ||
4564 bool SetWrittenArgs) {
4565 assert(
Template &&
"A variable template id without template?");
4577 if (
Template->getDeclContext()->isDependentContext() ||
4578 TemplateSpecializationType::anyDependentTemplateArguments(
4585 return Context.isSameTemplateArgument(Arg1, Arg2);
4591 !IsLibstdcxxStdFormatKind(
PP, Var) &&
4595 IsSameTemplateArg)) {
4596 Diag(TemplateNameLoc,
4597 diag::err_auto_variable_cannot_appear_in_own_initializer)
4598 << diag::ParsingInitFor::VarTemplate << Var << Var->
getType();
4603 Template->getPartialSpecializations(PartialSpecs);
4607 Partial->getTemplateArgs().asArray(),
4608 IsSameTemplateArg)) {
4609 Diag(TemplateNameLoc,
4610 diag::err_auto_variable_cannot_appear_in_own_initializer)
4611 << diag::ParsingInitFor::VarTemplatePartialSpec << Partial
4612 << Partial->getType();
4621 void *InsertPos =
nullptr;
4625 if (Spec->getType()->isUndeducedType()) {
4627 Diag(TemplateNameLoc,
4628 diag::err_auto_variable_cannot_appear_in_own_initializer)
4629 << diag::ParsingInitFor::VarTemplateExplicitSpec << Spec
4634 Diag(TemplateNameLoc, diag::err_var_template_spec_type_depends_on_self)
4635 << Spec << Spec->getType();
4649 bool AmbiguousPartialSpec =
false;
4650 typedef PartialSpecMatchResult MatchResult;
4662 Template->getPartialSpecializations(PartialSpecs);
4674 if (
Template->getMostRecentDecl()->isMemberSpecialization() &&
4675 !Partial->getMostRecentDecl()->isMemberSpecialization())
4690 Matched.push_back(PartialSpecMatchResult());
4691 Matched.back().Partial = Partial;
4696 if (Matched.size() >= 1) {
4698 if (Matched.size() == 1) {
4711 PEnd = Matched.end();
4714 PointOfInstantiation) ==
4722 PEnd = Matched.end();
4725 P->Partial, Best->Partial,
4726 PointOfInstantiation) != Best->Partial) {
4727 AmbiguousPartialSpec =
true;
4734 InstantiationPattern = Best->Partial;
4735 PartialSpecArgs = Best->Args;
4752 Decl->setTemplateArgsAsWritten(TemplateArgs);
4754 if (AmbiguousPartialSpec) {
4757 Diag(PointOfInstantiation, diag::err_partial_spec_ordering_ambiguous)
4761 for (MatchResult P : Matched)
4762 Diag(P.Partial->getLocation(), diag::note_partial_spec_match)
4769 dyn_cast<VarTemplatePartialSpecializationDecl>(InstantiationPattern))
4770 Decl->setInstantiationOf(D, PartialSpecArgs);
4774 assert(
Decl &&
"No variable template specialization?");
4784 *TemplateArgs,
false);
4785 if (
Decl.isInvalid())
4804 assert(
Template &&
"A variable template id without template?");
4807 Template->templateParameterKind() !=
4839 Diag(Loc, diag::err_template_missing_args)
4847 bool TemplateKeyword,
4862 assert(NamedConcept &&
"A concept template id without a template?");
4869 NamedConcept, ConceptNameInfo.
getLoc(),
4882 bool AreArgsDependent =
4883 TemplateSpecializationType::anyDependentTemplateArguments(
4892 if (!AreArgsDependent &&
4903 TemplateKWLoc, ConceptNameInfo, FoundDecl, NamedConcept,
4906 Context,
CL, CSD, AreArgsDependent ?
nullptr : &Satisfaction);
4925 assert(!R.
isAmbiguous() &&
"ambiguous lookup when building templateid");
4935 bool KnownDependent =
false;
4944 KnownDependent =
true;
4962 TemplateKWLoc, TemplateArgs);
4968 R.
begin(), R.
end(), KnownDependent,
4984 assert(TemplateArgs || TemplateKWLoc.
isValid());
4988 false, TemplateKWLoc))
5017 bool EnteringContext,
5019 bool AllowInjectedClassName) {
5023 diag::warn_cxx98_compat_template_outside_of_template :
5024 diag::ext_template_outside_of_template)
5034 else if (ObjectType)
5053 bool MemberOfUnknownSpecialization;
5055 ObjectType, EnteringContext,
Result,
5056 MemberOfUnknownSpecialization);
5059 auto *LookupRD = dyn_cast_or_null<CXXRecordDecl>(LookupCtx);
5060 if (!AllowInjectedClassName && SS.
isNotEmpty() && LookupRD &&
5073 diag::ext_out_of_line_qualified_id_type_names_constructor)
5081 if (!MemberOfUnknownSpecialization) {
5112 {Qualifier, Name.Identifier, TemplateKWLoc.isValid()}));
5117 {Qualifier, Name.OperatorFunctionId.Operator,
5118 TemplateKWLoc.isValid()}));
5133 diag::err_template_kw_refers_to_dependent_non_template)
5135 << TemplateKWLoc.
isValid() << TemplateKWLoc;
5172 dyn_cast<DependentScopeDeclRefExpr>(Arg.
getAsExpr())) {
5173 SS.
Adopt(ArgExpr->getQualifierLoc());
5174 NameInfo = ArgExpr->getNameInfo();
5176 dyn_cast<CXXDependentScopeMemberExpr>(Arg.
getAsExpr())) {
5177 if (ArgExpr->isImplicitAccess()) {
5178 SS.
Adopt(ArgExpr->getQualifierLoc());
5179 NameInfo = ArgExpr->getMemberNameInfo();
5188 Result.wasNotFoundInCurrentInstantiation()) {
5189 assert(SS.
getScopeRep() &&
"dependent scope expr must has a scope!");
5193 ? diag::ext_ms_template_type_arg_missing_typename
5194 : diag::err_template_arg_must_be_type_suggest)
5226 SugaredConverted.push_back(Arg);
5227 CanonicalConverted.push_back(Arg);
5233 Diag(SR.
getBegin(), diag::err_template_arg_must_be_type) << SR;
5247 ArgType->isObjCLifetimeType() &&
5255 CanonicalConverted.push_back(
5290 Output = Param->getDefaultArgument();
5304 for (
unsigned i = 0, e = Param->getDepth(); i != e; ++i)
5307 bool ForLambdaCallOperator =
false;
5308 if (
const auto *Rec = dyn_cast<CXXRecordDecl>(
Template->getDeclContext()))
5309 ForLambdaCallOperator = Rec->isLambda();
5311 !ForLambdaCallOperator);
5314 Param->getDefaultArgumentLoc(),
5315 Param->getDeclName()))
5359 for (
unsigned i = 0, e = Param->getDepth(); i != e; ++i)
5366 TemplateArgLists, Output);
5403 SugaredConverted,
SourceRange(TemplateLoc, RAngleLoc));
5410 for (
unsigned i = 0, e = Param->getDepth(); i != e; ++i)
5427 HasDefaultArg =
false;
5433 HasDefaultArg =
true;
5436 RAngleLoc, TypeParm, SugaredConverted,
5437 CanonicalConverted, Output))
5443 = dyn_cast<NonTypeTemplateParmDecl>(Param)) {
5447 HasDefaultArg =
true;
5450 RAngleLoc, NonTypeParm, SugaredConverted,
5451 CanonicalConverted, Output))
5461 HasDefaultArg =
true;
5465 *
this,
Template, TemplateKWLoc, TemplateNameLoc, RAngleLoc, TempTempParm,
5466 SugaredConverted, CanonicalConverted, QualifierLoc);
5490 TemplateName Name = TagLoc.getTypePtr()->getTemplateName(Context);
5496 TagLoc.getQualifierLoc(), TagLoc.getNameLoc());
5503 unsigned ArgumentPackIndex,
5517 QualType NTTPType = NTTP->getType();
5518 if (NTTP->isParameterPack() && NTTP->isExpandedParameterPack())
5519 NTTPType = NTTP->getExpansionType(ArgumentPackIndex);
5523 !
Template->getDeclContext()->isDependentContext()) {
5534 if (
auto *PET = NTTPType->
getAs<PackExpansionType>()) {
5536 NTTPType =
SubstType(PET->getPattern(), MLTAL, NTTP->getLocation(),
5537 NTTP->getDeclName());
5539 NTTPType =
SubstType(NTTPType, MLTAL, NTTP->getLocation(),
5540 NTTP->getDeclName());
5547 NTTP->getLocation());
5552 auto checkExpr = [&](
Expr *E) ->
Expr * {
5556 NTTP, NTTPType, E, SugaredResult, CanonicalResult,
5568 llvm_unreachable(
"Should never see a NULL template argument here");
5572 Expr *R = checkExpr(E);
5598 if (!checkExpr(R.
get()))
5637 NTTP, NTTPType, E.
get(), SugaredResult, CanonicalResult,
5669 if (
T->isFunctionType())
5670 Diag(SR.
getBegin(), diag::err_template_arg_nontype_ambig) << SR <<
T;
5672 Diag(SR.
getBegin(), diag::err_template_arg_must_be_expr) << SR;
5678 llvm_unreachable(
"Caller must expand template argument packs");
5723 ArgLoc = ConvertedArg;
5728 llvm_unreachable(
"Should never see a NULL template argument here");
5739 Context.getCanonicalTemplateArgument(Arg));
5767 llvm_unreachable(
"non-type argument with template template parameter");
5770 llvm_unreachable(
"Caller must expand template argument packs");
5777template<
typename TemplateParmDecl>
5780 const TemplateParmDecl *D,
5785 ->getTemplateParameters()
5786 ->getParam(D->getIndex()));
5793 D->getDefaultArgumentLoc(), Modules,
5804 S.
Diag(Loc, diag::err_template_arg_list_different_arity)
5840 unsigned ArgIdx = 0, NumArgs = NewArgs.
size();
5843 ParamEnd = Params->
end(),
5847 if (
size_t ParamIdx = Param - ParamBegin;
5850 assert(ArgIdx == NumArgs &&
"bad default argument deduction");
5852 assert(Param + DefaultArgs.
Args.size() <= ParamEnd);
5857 Context.getCanonicalTemplateArgument(DefArg));
5867 if (*Expansions == SugaredArgumentPack.size()) {
5872 SugaredArgumentPack.clear();
5876 CanonicalArgumentPack.clear();
5881 }
else if (ArgIdx == NumArgs && !PartialTemplateArgs) {
5883 Diag(TemplateLoc, diag::err_template_arg_list_different_arity)
5895 dyn_cast<NonTypeTemplateParmDecl>(*Param);
5897 auto TL = NTTP->getTypeSourceInfo()
5902 for (
const auto &UPP : Unexpanded) {
5903 auto *TST = UPP.first.dyn_cast<
const TemplateSpecializationType *>();
5908 Diag(TL.getEllipsisLoc(),
5909 diag::err_unsupported_builtin_template_pack_expansion)
5910 << TST->getTemplateName();
5915 if (ArgIdx < NumArgs) {
5917 bool NonPackParameter =
5927 if (!(*Param)->isTemplateParameterPack() ||
5934 RAngleLoc, SugaredArgumentPack.size(), CTAI,
5939 clang::isSubstitutedDefaultArgument(
Context, Arg, *Param,
5949 RAngleLoc, SugaredArgumentPack.size(), CTAI,
5956 if (ArgIsExpansion && NonPackParameter) {
5962 diag::err_template_expansion_into_fixed_list)
5974 if (ArgIsExpansion && (CTAI.
MatchingTTP || NonPackParameter)) {
5978 if (!SugaredArgumentPack.empty()) {
5982 SugaredArgumentPack.begin(),
5983 SugaredArgumentPack.end());
5984 SugaredArgumentPack.clear();
5987 CanonicalArgumentPack.begin(),
5988 CanonicalArgumentPack.end());
5989 CanonicalArgumentPack.clear();
5992 while (ArgIdx < NumArgs) {
5996 Context.getCanonicalTemplateArgument(Arg));
6003 if ((*Param)->isTemplateParameterPack()) {
6018 if (PartialTemplateArgs) {
6019 if ((*Param)->isTemplateParameterPack() && !SugaredArgumentPack.empty()) {
6030 if ((*Param)->isTemplateParameterPack()) {
6032 "Should have dealt with this already");
6037 if (Param + 1 != ParamEnd) {
6039 (
Template->getMostRecentDecl()->getKind() != Decl::Kind::Concept) &&
6040 "Concept templates must have parameter packs at the end.");
6046 SugaredArgumentPack.clear();
6050 CanonicalArgumentPack.clear();
6069 if (!HasDefaultArg) {
6074 dyn_cast<NonTypeTemplateParmDecl>(*Param))
6108 if (isTemplateTemplateParameter)
6123 while (ArgIdx < NumArgs &&
6124 NewArgs[ArgIdx].
getArgument().isPackExpansion()) {
6128 Context.getCanonicalTemplateArgument(Arg));
6134 if (ArgIdx < NumArgs) {
6135 Diag(TemplateLoc, diag::err_template_arg_list_different_arity)
6146 if (UpdateArgsWithConversions)
6147 TemplateArgs = std::move(NewArgs);
6149 if (!PartialTemplateArgs) {
6156 if (
auto *TD = dyn_cast<TemplateDecl>(NewContext))
6158 auto *RD = dyn_cast<CXXRecordDecl>(NewContext);
6162 dyn_cast_or_null<CXXMethodDecl>(
Template->getTemplatedDecl()))
6163 ThisQuals =
Method->getMethodQualifiers();
6186 class UnnamedLocalNoLinkageFinder
6187 :
public TypeVisitor<UnnamedLocalNoLinkageFinder, bool>
6195 UnnamedLocalNoLinkageFinder(
Sema &S,
SourceRange SR) : S(S), SR(SR) { }
6198 return T.isNull() ?
false : inherited::Visit(
T.getTypePtr());
6201#define TYPE(Class, Parent) \
6202 bool Visit##Class##Type(const Class##Type *);
6203#define ABSTRACT_TYPE(Class, Parent) \
6204 bool Visit##Class##Type(const Class##Type *) { return false; }
6205#define NON_CANONICAL_TYPE(Class, Parent) \
6206 bool Visit##Class##Type(const Class##Type *) { return false; }
6207#include "clang/AST/TypeNodes.inc"
6209 bool VisitTagDecl(
const TagDecl *Tag);
6214bool UnnamedLocalNoLinkageFinder::VisitBuiltinType(
const BuiltinType*) {
6218bool UnnamedLocalNoLinkageFinder::VisitComplexType(
const ComplexType*
T) {
6219 return Visit(
T->getElementType());
6222bool UnnamedLocalNoLinkageFinder::VisitPointerType(
const PointerType*
T) {
6223 return Visit(
T->getPointeeType());
6226bool UnnamedLocalNoLinkageFinder::VisitBlockPointerType(
6228 return Visit(
T->getPointeeType());
6231bool UnnamedLocalNoLinkageFinder::VisitLValueReferenceType(
6233 return Visit(
T->getPointeeType());
6236bool UnnamedLocalNoLinkageFinder::VisitRValueReferenceType(
6238 return Visit(
T->getPointeeType());
6241bool UnnamedLocalNoLinkageFinder::VisitMemberPointerType(
6243 if (Visit(
T->getPointeeType()))
6245 if (
auto *RD =
T->getMostRecentCXXRecordDecl())
6246 return VisitTagDecl(RD);
6247 return VisitNestedNameSpecifier(
T->getQualifier());
6250bool UnnamedLocalNoLinkageFinder::VisitConstantArrayType(
6252 return Visit(
T->getElementType());
6255bool UnnamedLocalNoLinkageFinder::VisitIncompleteArrayType(
6257 return Visit(
T->getElementType());
6260bool UnnamedLocalNoLinkageFinder::VisitVariableArrayType(
6262 return Visit(
T->getElementType());
6265bool UnnamedLocalNoLinkageFinder::VisitDependentSizedArrayType(
6267 return Visit(
T->getElementType());
6270bool UnnamedLocalNoLinkageFinder::VisitDependentSizedExtVectorType(
6272 return Visit(
T->getElementType());
6275bool UnnamedLocalNoLinkageFinder::VisitDependentSizedMatrixType(
6277 return Visit(
T->getElementType());
6280bool UnnamedLocalNoLinkageFinder::VisitDependentAddressSpaceType(
6282 return Visit(
T->getPointeeType());
6285bool UnnamedLocalNoLinkageFinder::VisitVectorType(
const VectorType*
T) {
6286 return Visit(
T->getElementType());
6289bool UnnamedLocalNoLinkageFinder::VisitDependentVectorType(
6291 return Visit(
T->getElementType());
6294bool UnnamedLocalNoLinkageFinder::VisitExtVectorType(
const ExtVectorType*
T) {
6295 return Visit(
T->getElementType());
6298bool UnnamedLocalNoLinkageFinder::VisitConstantMatrixType(
6300 return Visit(
T->getElementType());
6303bool UnnamedLocalNoLinkageFinder::VisitFunctionProtoType(
6305 for (
const auto &A :
T->param_types()) {
6310 return Visit(
T->getReturnType());
6313bool UnnamedLocalNoLinkageFinder::VisitFunctionNoProtoType(
6315 return Visit(
T->getReturnType());
6318bool UnnamedLocalNoLinkageFinder::VisitUnresolvedUsingType(
6323bool UnnamedLocalNoLinkageFinder::VisitTypeOfExprType(
const TypeOfExprType*) {
6327bool UnnamedLocalNoLinkageFinder::VisitTypeOfType(
const TypeOfType*
T) {
6328 return Visit(
T->getUnmodifiedType());
6331bool UnnamedLocalNoLinkageFinder::VisitDecltypeType(
const DecltypeType*) {
6335bool UnnamedLocalNoLinkageFinder::VisitPackIndexingType(
6336 const PackIndexingType *) {
6340bool UnnamedLocalNoLinkageFinder::VisitUnaryTransformType(
6341 const UnaryTransformType*) {
6345bool UnnamedLocalNoLinkageFinder::VisitAutoType(
const AutoType *
T) {
6346 return Visit(
T->getDeducedType());
6349bool UnnamedLocalNoLinkageFinder::VisitDeducedTemplateSpecializationType(
6350 const DeducedTemplateSpecializationType *
T) {
6351 return Visit(
T->getDeducedType());
6354bool UnnamedLocalNoLinkageFinder::VisitRecordType(
const RecordType*
T) {
6355 return VisitTagDecl(
T->getOriginalDecl()->getDefinitionOrSelf());
6358bool UnnamedLocalNoLinkageFinder::VisitEnumType(
const EnumType*
T) {
6359 return VisitTagDecl(
T->getOriginalDecl()->getDefinitionOrSelf());
6362bool UnnamedLocalNoLinkageFinder::VisitTemplateTypeParmType(
6363 const TemplateTypeParmType*) {
6367bool UnnamedLocalNoLinkageFinder::VisitSubstTemplateTypeParmPackType(
6368 const SubstTemplateTypeParmPackType *) {
6372bool UnnamedLocalNoLinkageFinder::VisitSubstBuiltinTemplatePackType(
6373 const SubstBuiltinTemplatePackType *) {
6377bool UnnamedLocalNoLinkageFinder::VisitTemplateSpecializationType(
6378 const TemplateSpecializationType*) {
6382bool UnnamedLocalNoLinkageFinder::VisitInjectedClassNameType(
6383 const InjectedClassNameType*
T) {
6384 return VisitTagDecl(
T->getOriginalDecl()->getDefinitionOrSelf());
6387bool UnnamedLocalNoLinkageFinder::VisitDependentNameType(
6388 const DependentNameType*
T) {
6389 return VisitNestedNameSpecifier(
T->getQualifier());
6392bool UnnamedLocalNoLinkageFinder::VisitDependentTemplateSpecializationType(
6393 const DependentTemplateSpecializationType*
T) {
6394 return VisitNestedNameSpecifier(
T->getDependentTemplateName().getQualifier());
6397bool UnnamedLocalNoLinkageFinder::VisitPackExpansionType(
6398 const PackExpansionType*
T) {
6399 return Visit(
T->getPattern());
6402bool UnnamedLocalNoLinkageFinder::VisitObjCObjectType(
const ObjCObjectType *) {
6406bool UnnamedLocalNoLinkageFinder::VisitObjCInterfaceType(
6411bool UnnamedLocalNoLinkageFinder::VisitObjCObjectPointerType(
6416bool UnnamedLocalNoLinkageFinder::VisitAtomicType(
const AtomicType*
T) {
6417 return Visit(
T->getValueType());
6420bool UnnamedLocalNoLinkageFinder::VisitPipeType(
const PipeType*
T) {
6424bool UnnamedLocalNoLinkageFinder::VisitBitIntType(
const BitIntType *
T) {
6428bool UnnamedLocalNoLinkageFinder::VisitArrayParameterType(
6430 return VisitConstantArrayType(
T);
6433bool UnnamedLocalNoLinkageFinder::VisitDependentBitIntType(
6438bool UnnamedLocalNoLinkageFinder::VisitTagDecl(
const TagDecl *Tag) {
6439 if (
Tag->getDeclContext()->isFunctionOrMethod()) {
6440 S.Diag(SR.getBegin(), S.getLangOpts().CPlusPlus11
6441 ? diag::warn_cxx98_compat_template_arg_local_type
6442 : diag::ext_template_arg_local_type)
6443 << S.Context.getCanonicalTagType(Tag) << SR;
6447 if (!
Tag->hasNameForLinkage()) {
6448 S.Diag(SR.getBegin(),
6449 S.getLangOpts().CPlusPlus11 ?
6450 diag::warn_cxx98_compat_template_arg_unnamed_type :
6451 diag::ext_template_arg_unnamed_type) << SR;
6452 S.Diag(
Tag->getLocation(), diag::note_template_unnamed_type_here);
6459bool UnnamedLocalNoLinkageFinder::VisitNestedNameSpecifier(
6470 llvm_unreachable(
"Invalid NestedNameSpecifier::Kind!");
6473bool UnnamedLocalNoLinkageFinder::VisitHLSLAttributedResourceType(
6474 const HLSLAttributedResourceType *
T) {
6475 if (
T->hasContainedType() && Visit(
T->getContainedType()))
6477 return Visit(
T->getWrappedType());
6480bool UnnamedLocalNoLinkageFinder::VisitHLSLInlineSpirvType(
6481 const HLSLInlineSpirvType *
T) {
6482 for (
auto &Operand :
T->getOperands())
6484 if (Visit(
Operand.getResultType()))
6490 assert(ArgInfo &&
"invalid TypeSourceInfo");
6496 return Diag(SR.
getBegin(), diag::err_variably_modified_template_arg) << Arg;
6497 }
else if (
Context.hasSameUnqualifiedType(Arg,
Context.OverloadTy)) {
6498 return Diag(SR.
getBegin(), diag::err_template_arg_overload_type) << SR;
6509 UnnamedLocalNoLinkageFinder Finder(*
this, SR);
6510 (void)Finder.Visit(CanonArg);
6527 Decl *Entity =
nullptr) {
6533 if (Entity && Entity->hasAttr<DLLImportAttr>())
6538 "Incomplete parameter type in isNullPointerValueTemplateArgument!");
6551 EvalResult.
Diag = &Notes;
6559 if (Notes.size() == 1 && Notes[0].second.getDiagID() ==
6560 diag::note_invalid_subexpr_in_const_expr) {
6561 DiagLoc = Notes[0].first;
6565 S.
Diag(DiagLoc, diag::err_template_arg_not_address_constant)
6567 for (
unsigned I = 0, N = Notes.size(); I != N; ++I)
6568 S.
Diag(Notes[I].first, Notes[I].second);
6586 bool ObjCLifetimeConversion;
6589 ObjCLifetimeConversion))
6594 S.
Diag(Arg->
getExprLoc(), diag::err_template_arg_wrongtype_null_constant)
6613 std::string Code =
"static_cast<" + ParamType.
getAsString() +
">(";
6614 S.
Diag(Arg->
getExprLoc(), diag::err_template_arg_untyped_null_constant)
6634 bool ObjCLifetimeConversion;
6638 ObjCLifetimeConversion)) {
6643 if (!ParamRef->getPointeeType()->isFunctionType()) {
6653 unsigned ParamQuals = ParamRef->getPointeeType().getCVRQualifiers();
6654 unsigned ArgQuals = ArgType.getCVRQualifiers();
6656 if ((ParamQuals | ArgQuals) != ParamQuals) {
6658 diag::err_template_arg_ref_bind_ignores_quals)
6695 bool AddressTaken =
false;
6702 bool ExtWarnMSTemplateArg =
false;
6705 while (
UnaryOperator *UnOp = dyn_cast<UnaryOperator>(Arg)) {
6707 if (UnOpKind == UO_Deref)
6708 ExtWarnMSTemplateArg =
true;
6709 if (UnOpKind == UO_AddrOf || UnOpKind == UO_Deref) {
6712 FirstOpKind = UnOpKind;
6713 FirstOpLoc = UnOp->getOperatorLoc();
6719 if (ExtWarnMSTemplateArg)
6723 if (FirstOpKind == UO_AddrOf)
6724 AddressTaken =
true;
6728 assert(FirstOpKind == UO_Deref);
6751 bool ExtraParens =
false;
6753 if (!
Invalid && !ExtraParens) {
6759 Arg =
Parens->getSubExpr();
6763 dyn_cast<SubstNonTypeTemplateParmExpr>(Arg))
6767 if (UnOp->getOpcode() == UO_AddrOf) {
6768 Arg = UnOp->getSubExpr();
6769 AddressTaken =
true;
6770 AddrOpLoc = UnOp->getOperatorLoc();
6775 dyn_cast<SubstNonTypeTemplateParmExpr>(Arg))
6780 if (
DeclRefExpr *DRE = dyn_cast<DeclRefExpr>(Arg))
6781 Entity = DRE->getDecl();
6783 Entity = CUE->getGuidDecl();
6790 S.
Diag(Arg->
getExprLoc(), diag::warn_cxx98_compat_template_arg_null);
6793 CanonicalConverted =
6810 CanonicalConverted =
6831 if (
CXXMethodDecl *Method = dyn_cast<CXXMethodDecl>(Entity)) {
6832 if (!Method->isStatic()) {
6841 VarDecl *Var = dyn_cast<VarDecl>(Entity);
6842 MSGuidDecl *Guid = dyn_cast<MSGuidDecl>(Entity);
6845 if (!
Func && !Var && !Guid) {
6857 ? diag::warn_cxx98_compat_template_arg_object_internal
6858 : diag::ext_template_arg_object_internal)
6860 S.
Diag(Entity->
getLocation(), diag::note_template_arg_internal_object)
6865 S.
Diag(Entity->
getLocation(), diag::note_template_arg_internal_object)
6894 S.
Diag(AddrOpLoc, diag::err_template_arg_address_of_non_pointer)
6900 S.
Diag(AddrOpLoc, diag::err_template_arg_address_of_non_pointer)
6942 CanonicalConverted =
6956 Expr *Arg = ResultArg;
6957 bool ObjCLifetimeConversion;
6969 bool ExtraParens =
false;
6971 if (!
Invalid && !ExtraParens) {
6977 Arg =
Parens->getSubExpr();
6981 dyn_cast<SubstNonTypeTemplateParmExpr>(Arg))
6986 if (UnOp->getOpcode() == UO_AddrOf) {
6987 DRE = dyn_cast<DeclRefExpr>(UnOp->getSubExpr());
6993 else if ((DRE = dyn_cast<DeclRefExpr>(Arg))) {
6999 CanonicalConverted =
7003 CanonicalConverted =
7022 S.
Diag(ResultArg->
getExprLoc(), diag::warn_cxx98_compat_template_arg_null);
7034 ObjCLifetimeConversion)) {
7041 S.
Diag(ResultArg->
getBeginLoc(), diag::err_template_arg_not_convertible)
7049 diag::err_template_arg_not_pointer_to_member_form)
7058 ->isImplicitObjectMemberFunction()) &&
7059 "Only non-static member pointers can make it here");
7065 CanonicalConverted =
7070 CanonicalConverted =
7078 S.
Diag(Arg->
getBeginLoc(), diag::err_template_arg_not_pointer_to_member_form)
7098 auto *ArgPE = dyn_cast<PackExpansionExpr>(Arg);
7099 Expr *DeductionArg = ArgPE ? ArgPE->getPattern() : Arg;
7100 auto setDeductionArg = [&](
Expr *NewDeductionArg) {
7101 DeductionArg = NewDeductionArg;
7105 DeductionArg, ArgPE->getEllipsisLoc(), ArgPE->getNumExpansions());
7120 auto *AT = dyn_cast<AutoType>(DeducedT);
7121 if (AT && AT->isDecltypeAuto()) {
7124 Context.getCanonicalTemplateArgument(SugaredConverted));
7133 Context.getTrivialTypeSourceInfo(ParamType, Param->getLocation());
7138 DeductionArg->
getBeginLoc(),
false, DeductionArg);
7139 Expr *Inits[1] = {DeductionArg};
7146 Param->getTemplateDepth() + 1);
7160 if (
const auto *NTTP = dyn_cast<NonTypeTemplateParmDecl>(Param)) {
7162 diag::err_non_type_template_parm_type_deduction_failure)
7163 << Param->getDeclName() << NTTP->getType() << Arg->
getType()
7175 if (ParamType.
isNull()) {
7183 "non-type template parameter type cannot be qualified");
7196 setDeductionArg(E.
get());
7199 Context.getCanonicalTemplateArgument(SugaredConverted));
7208 : !
Context.hasSameUnqualifiedType(ParamType,
7214 Diag(StartLoc, diag::err_deduced_non_type_template_arg_type_mismatch)
7227 if (ArgPE && !StrictCheck) {
7230 Context.getCanonicalTemplateArgument(SugaredConverted));
7244 Context.hasSameUnqualifiedType(ParamType, InnerArg->
getType())) {
7246 if (
auto *TPO = dyn_cast<TemplateParamObjectDecl>(ND)) {
7255 CanonicalConverted =
7256 Context.getCanonicalTemplateArgument(SugaredConverted);
7266 bool IsConvertedConstantExpression =
true;
7269 StartLoc,
false, DeductionArg);
7270 Expr *Inits[1] = {DeductionArg};
7285 IsConvertedConstantExpression =
false;
7294 if (IsConvertedConstantExpression) {
7296 DeductionArg, ParamType,
7304 ArgResult = DeductionArg;
7310 setDeductionArg(ArgResult.
get());
7312 CanonicalConverted =
7313 Context.getCanonicalTemplateArgument(SugaredConverted);
7320 false, PreNarrowingValue);
7323 setDeductionArg(ArgResult.
get());
7325 if (
Value.isLValue()) {
7344 if (
Value.hasLValuePath() &&
Value.getLValuePath().size() == 1 && VD &&
7346 Value.getLValuePath()[0].getAsArrayIndex() == 0 &&
7350 CanonicalConverted =
7351 Context.getCanonicalTemplateArgument(SugaredConverted);
7354 CanonicalConverted =
7363 if (!
Value.hasLValuePath() ||
Value.getLValuePath().size() ||
7364 Value.isLValueOnePastTheEnd()) {
7365 Diag(StartLoc, diag::err_non_type_template_arg_subobject)
7370 "null reference should not be a constant expression");
7372 "non-null value of type nullptr_t?");
7376 if (
Value.isAddrLabelDiff())
7377 return Diag(StartLoc, diag::err_non_type_template_arg_addr_label_diff);
7381 CanonicalConverted =
7382 Context.getCanonicalTemplateArgument(SugaredConverted);
7385 CanonicalConverted =
7421 setDeductionArg(ArgResult.
get());
7426 CanonicalConverted =
7427 Context.getCanonicalTemplateArgument(SugaredConverted);
7436 IntegerType = ED->getIntegerType();
7438 ?
Context.getIntWidth(IntegerType)
7439 :
Context.getTypeSize(IntegerType));
7443 CanonicalConverted =
7444 Context.getCanonicalTemplateArgument(SugaredConverted);
7456 DeductionArg = ArgResult.
get();
7468 if (!
ArgType->isIntegralOrEnumerationType()) {
7469 Diag(StartLoc, diag::err_template_arg_not_integral_or_enumeral)
7482 return S.
Diag(Loc, diag::err_template_arg_not_ice) <<
T;
7512 Diag(StartLoc, diag::err_template_arg_not_convertible)
7513 << DeductionArg->
getType() << ParamType
7518 setDeductionArg(DeductionArg);
7527 CanonicalConverted =
7528 Context.getCanonicalTemplateArgument(SugaredConverted);
7534 IntegerType = ED->getIntegerType();
7540 unsigned AllowedBits =
Context.getTypeSize(IntegerType);
7541 if (
Value.getBitWidth() != AllowedBits)
7545 llvm::APSInt OldValue =
Value;
7550 ?
Context.getIntWidth(IntegerType)
7551 :
Context.getTypeSize(IntegerType);
7552 if (
Value.getBitWidth() != AllowedBits)
7558 (OldValue.isSigned() && OldValue.isNegative())) {
7566 unsigned RequiredBits;
7568 RequiredBits = OldValue.getActiveBits();
7569 else if (OldValue.isUnsigned())
7570 RequiredBits = OldValue.getActiveBits() + 1;
7572 RequiredBits = OldValue.getSignificantBits();
7573 if (RequiredBits > AllowedBits) {
7583 CanonicalConverted =
7584 Context.getCanonicalTemplateArgument(SugaredConverted);
7588 CanonicalConverted =
7631 DeductionArg = Res.
get();
7636 setDeductionArg(DeductionArg);
7640 *
this, Param, ParamType, Arg, SugaredConverted,
7641 CanonicalConverted))
7647 *
this, Param, ParamType, Arg, SugaredConverted, CanonicalConverted))
7652 setDeductionArg(DeductionArg);
7660 "Only object pointers allowed here");
7664 *
this, Param, ParamType, Arg, SugaredConverted, CanonicalConverted))
7676 assert(ParamRefType->getPointeeType()->isIncompleteOrObjectType() &&
7677 "Only object references allowed here");
7682 ParamRefType->getPointeeType(),
7697 *
this, Param, ParamType, Arg, SugaredConverted, CanonicalConverted))
7706 CanonicalConverted =
7707 Context.getCanonicalTemplateArgument(SugaredConverted);
7715 << DeductionArg->
getType() << ParamType;
7723 Diag(Arg->
getExprLoc(), diag::warn_cxx98_compat_template_arg_null);
7726 CanonicalConverted =
7727 Context.getCanonicalTemplateArgument(SugaredConverted);
7731 CanonicalConverted =
7745 *
this, Param, ParamType, Arg, SugaredConverted, CanonicalConverted))
7768 unsigned DiagFoundKind = 0;
7770 if (
auto *TTP = llvm::dyn_cast<TemplateTemplateParmDecl>(
Template)) {
7771 switch (TTP->templateParameterKind()) {
7782 Kind = TTP->templateParameterKind();
7798 assert(
false &&
"Unexpected Decl");
7801 if (Kind == Param->templateParameterKind()) {
7805 unsigned DiagKind = 0;
7806 switch (Param->templateParameterKind()) {
7819 Diag(
Template->getLocation(), diag::note_template_arg_refers_to_template_here)
7833 bool *StrictPackMatch) {
7838 assert(Name.
isDependent() &&
"Non-dependent template isn't a declaration?");
7865 if (ParamsAC.empty())
7868 Template->getAssociatedConstraints(TemplateAC);
7870 bool IsParamAtLeastAsConstrained;
7872 IsParamAtLeastAsConstrained))
7874 if (!IsParamAtLeastAsConstrained) {
7876 diag::err_template_template_parameter_not_at_least_as_constrained)
7878 Diag(Param->getLocation(), diag::note_entity_declared_at) << Param;
7888 unsigned HereDiagID,
7889 unsigned ExternalDiagID) {
7894 llvm::raw_svector_ostream Out(Str);
7902 std::optional<SourceRange> ParamRange) {
7905 diag::note_template_decl_external);
7906 if (ParamRange && ParamRange->isValid()) {
7908 "Parameter range has location when Decl does not");
7915 diag::note_template_param_external);
7931 ParamType =
Context.getArrayDecayedType(ParamType);
7933 ParamType =
Context.getPointerType(ParamType);
7942 ? CK_NullToMemberPointer
7943 : CK_NullToPointer);
7946 "Only declaration template arguments permitted here");
7983 "arg for class template param not a template parameter object");
7988 "unexpected type for decl template argument");
7990 dyn_cast_if_present<NonTypeTemplateParmDecl>(
TemplateParam)) {
7991 QualType TemplateParamType = NTTP->getType();
7992 const AutoType *AT = TemplateParamType->
getAs<AutoType>();
7993 if (AT && AT->isDecltypeAuto()) {
8005 "value kind mismatch for non-type template argument");
8024 "unexpected conversion required for non-type template argument");
8051 T = ED->getIntegerType();
8054 if (
T->isAnyCharacterType()) {
8056 if (
T->isWideCharType())
8060 else if (
T->isChar16Type())
8062 else if (
T->isChar32Type())
8068 }
else if (
T->isBooleanType()) {
8102 llvm_unreachable(
"unexpected template argument value");
8127 return MakeInitList(
8140 return MakeInitList(Elts);
8145 llvm_unreachable(
"Unexpected APValue kind.");
8154 if (
T->isReferenceType()) {
8155 T =
T->getPointeeType();
8161 llvm_unreachable(
"Unhandled APValue::ValueKind enum");
8173 llvm_unreachable(
"not a non-type template argument");
8191 llvm_unreachable(
"Unhandled TemplateArgument::ArgKind enum");
8198 const NamedDecl *OldInstFrom,
bool Complain,
8203 unsigned NextDiag = diag::err_template_param_different_kind;
8204 if (TemplateArgLoc.
isValid()) {
8205 S.
Diag(TemplateArgLoc, diag::err_template_arg_template_params_mismatch);
8206 NextDiag = diag::note_template_param_different_kind;
8208 S.
Diag(
New->getLocation(), NextDiag)
8223 unsigned NextDiag = diag::err_template_parameter_pack_non_pack;
8224 if (TemplateArgLoc.
isValid()) {
8225 S.
Diag(TemplateArgLoc,
8226 diag::err_template_arg_template_params_mismatch);
8227 NextDiag = diag::note_template_parameter_pack_non_pack;
8233 S.
Diag(
New->getLocation(), NextDiag)
8234 << ParamKind <<
New->isParameterPack();
8243 dyn_cast<NonTypeTemplateParmDecl>(Old)) {
8251 (!OldNTTP->getType()->isDependentType() &&
8261 unsigned NextDiag = diag::err_template_nontype_parm_different_type;
8262 if (TemplateArgLoc.
isValid()) {
8263 S.
Diag(TemplateArgLoc,
8264 diag::err_template_arg_template_params_mismatch);
8265 NextDiag = diag::note_template_nontype_parm_different_type;
8269 S.
Diag(OldNTTP->getLocation(),
8270 diag::note_template_nontype_parm_prev_declaration)
8271 << OldNTTP->getType();
8281 dyn_cast<TemplateTemplateParmDecl>(Old)) {
8287 OldTTP->getTemplateParameters(), Complain,
8298 const Expr *NewC =
nullptr, *OldC =
nullptr;
8302 NewC = TC->getImmediatelyDeclaredConstraint();
8304 OldC = TC->getImmediatelyDeclaredConstraint();
8307 ->getPlaceholderTypeConstraint())
8310 ->getPlaceholderTypeConstraint())
8313 llvm_unreachable(
"unexpected template parameter type");
8315 auto Diagnose = [&] {
8317 diag::err_template_different_type_constraint);
8319 diag::note_template_prev_declaration) << 0;
8322 if (!NewC != !OldC) {
8349 unsigned NextDiag = diag::err_template_param_list_different_arity;
8350 if (TemplateArgLoc.
isValid()) {
8351 S.
Diag(TemplateArgLoc, diag::err_template_arg_template_params_mismatch);
8352 NextDiag = diag::note_template_param_list_different_arity;
8354 S.
Diag(
New->getTemplateLoc(), NextDiag)
8355 << (
New->size() > Old->
size())
8367 if (Old->
size() !=
New->size()) {
8384 OldParmEnd = Old->
end();
8385 OldParm != OldParmEnd; ++OldParm, ++NewParm) {
8386 if (NewParm == NewParmEnd) {
8393 OldInstFrom, Complain, Kind,
8399 if (NewParm != NewParmEnd) {
8408 const Expr *NewRC =
New->getRequiresClause();
8413 diag::err_template_different_requires_clause);
8415 diag::note_template_prev_declaration) << 0;
8418 if (!NewRC != !OldRC) {
8454 Diag(Range.getBegin(), diag::err_template_linkage) << Range;
8456 Diag(LSD->getExternLoc(), diag::note_extern_c_begins_here);
8476 if (RD->isLocalClass())
8478 diag::err_template_inside_local_class)
8486 diag::err_template_outside_namespace_or_class_scope)
8497 return Record->getTemplateSpecializationKind();
8498 if (
FunctionDecl *Function = dyn_cast<FunctionDecl>(D))
8499 return Function->getTemplateSpecializationKind();
8500 if (
VarDecl *Var = dyn_cast<VarDecl>(D))
8553 S.
Diag(Loc, diag::err_template_spec_unknown_kind)
8563 S.
Diag(Loc, diag::err_template_spec_decl_function_scope)
8578 : DC->
Equals(SpecializedContext))) {
8580 S.
Diag(Loc, diag::err_template_spec_redecl_global_scope)
8581 << EntityKind << Specialized;
8584 int Diag = diag::err_template_spec_redecl_out_of_scope;
8586 Diag = diag::ext_ms_template_spec_redecl_out_of_scope;
8587 S.
Diag(Loc,
Diag) << EntityKind << Specialized
8588 << ND << isa<CXXRecordDecl>(ND);
8591 S.
Diag(Specialized->getLocation(), diag::note_specialized_entity);
8605 DependencyChecker Checker(Depth,
true);
8606 Checker.TraverseStmt(E);
8609 return Checker.MatchLoc;
8615 DependencyChecker Checker(Depth,
true);
8616 Checker.TraverseTypeLoc(TL);
8619 return Checker.MatchLoc;
8627 for (
unsigned I = 0; I != NumArgs; ++I) {
8630 S, TemplateNameLoc, Param, Args[I].pack_begin(),
8631 Args[I].pack_size(), IsDefaultArgument))
8644 ArgExpr = Expansion->getPattern();
8648 ArgExpr = ICE->getSubExpr();
8658 if (
DeclRefExpr *DRE = dyn_cast<DeclRefExpr>(ArgExpr))
8662 if (
auto *ULE = dyn_cast<UnresolvedLookupExpr>(ArgExpr);
8684 if (ParamUseRange.
isValid()) {
8685 if (IsDefaultArgument) {
8686 S.
Diag(TemplateNameLoc,
8687 diag::err_dependent_non_type_arg_in_partial_spec);
8689 diag::note_dependent_non_type_default_arg_in_partial_spec)
8693 diag::err_dependent_non_type_arg_in_partial_spec)
8700 Param->getDepth(), Param->getTypeSourceInfo()->getTypeLoc());
8701 if (ParamUseRange.
isValid()) {
8703 diag::err_dependent_typed_non_type_arg_in_partial_spec)
8704 << Param->getType();
8723 for (
unsigned I = 0, N = TemplateParams->
size(); I != N; ++I) {
8725 = dyn_cast<NonTypeTemplateParmDecl>(TemplateParams->
getParam(I));
8730 Param, &TemplateArgs[I],
8731 1, I >= NumExplicit))
8755 Diag(TemplateNameLoc, diag::err_not_class_template_specialization)
8761 if (
const auto *DSA =
ClassTemplate->getAttr<NoSpecializationsAttr>()) {
8762 auto Message = DSA->getMessage();
8763 Diag(TemplateNameLoc, diag::warn_invalid_specialization)
8765 Diag(DSA->getLoc(), diag::note_marked_here) << DSA;
8773 bool isMemberSpecialization =
false;
8774 bool isPartialSpecialization =
false;
8779 TemplateNameLoc, &TemplateId,
8791 KWLoc, TemplateNameLoc, SS, &TemplateId, TemplateParameterLists,
8806 if (TemplateParams && TemplateParams->
size() > 0) {
8807 isPartialSpecialization =
true;
8810 Diag(KWLoc, diag::err_partial_specialization_friend)
8818 for (
unsigned I = 0, N = TemplateParams->
size(); I != N; ++I) {
8821 if (TTP->hasDefaultArgument()) {
8822 Diag(TTP->getDefaultArgumentLoc(),
8823 diag::err_default_arg_in_partial_spec);
8824 TTP->removeDefaultArgument();
8827 = dyn_cast<NonTypeTemplateParmDecl>(Param)) {
8828 if (NTTP->hasDefaultArgument()) {
8829 Diag(NTTP->getDefaultArgumentLoc(),
8830 diag::err_default_arg_in_partial_spec)
8831 << NTTP->getDefaultArgument().getSourceRange();
8832 NTTP->removeDefaultArgument();
8838 diag::err_default_arg_in_partial_spec)
8844 }
else if (TemplateParams) {
8846 Diag(KWLoc, diag::err_template_spec_friend)
8853 "should have a 'template<>' for this decl");
8860 "Invalid enum tag in class template spec!");
8864 Diag(KWLoc, diag::err_use_with_wrong_tag)
8869 diag::note_previous_use);
8878 for (
unsigned I = 0, N = TemplateArgs.
size(); I != N; ++I)
8880 isPartialSpecialization
8896 if (isPartialSpecialization) {
8898 TemplateArgs.
size(),
8905 !TemplateSpecializationType::anyDependentTemplateArguments(
8907 Diag(TemplateNameLoc, diag::err_partial_spec_fully_specialized)
8909 isPartialSpecialization =
false;
8914 void *InsertPos =
nullptr;
8917 if (isPartialSpecialization)
8931 isPartialSpecialization))
8934 if (!isPartialSpecialization) {
8942 if (TemplateParameterLists.size() > 0) {
8944 TemplateParameterLists);
8951 Context.getCanonicalTemplateSpecializationType(
8957 (!
Context.getLangOpts().CPlusPlus20 ||
8966 Diag(TemplateNameLoc, diag::err_partial_spec_args_match_primary_template)
8974 TemplateParameterLists.data());
8979 cast_or_null<ClassTemplatePartialSpecializationDecl>(PrevDecl);
8982 Context, Kind, DC, KWLoc, TemplateNameLoc, TemplateParams,
8986 if (TemplateParameterLists.size() > 1 && SS.
isSet()) {
8988 Context, TemplateParameterLists.drop_back(1));
8992 ClassTemplate->AddPartialSpecialization(Partial, InsertPos);
9021 Diag(TemplateNameLoc, diag::err_specialization_after_instantiation)
9025 diag::note_instantiation_required_here)
9040 bool HiddenDefVisible =
false;
9041 if (Def && SkipBody &&
9045 if (!HiddenDefVisible && Hidden)
9068 if (ModulePrivateLoc.
isValid())
9070 << (isPartialSpecialization? 1 : 0)
9138 diag::err_concept_decls_may_only_appear_in_global_namespace_scope);
9142 if (TemplateParameterLists.size() > 1) {
9143 Diag(NameLoc, diag::err_concept_extra_headers);
9149 if (Params->
size() == 0) {
9150 Diag(NameLoc, diag::err_concept_no_parameters);
9157 ParamEnd = Params->
end();
9158 ParamIt != ParamEnd; ++ParamIt) {
9159 Decl const *Param = *ParamIt;
9160 if (Param->isParameterPack()) {
9161 if (++ParamIt == ParamEnd)
9163 Diag(Param->getLocation(),
9164 diag::err_template_param_pack_must_be_last_template_parameter);
9175 Diag(NameLoc, diag::err_concept_no_associated_constraints);
9212 Expr *ConstraintExpr,
9214 assert(!
C->hasDefinition() &&
"Concept already defined");
9216 C->setInvalidDecl();
9219 C->setDefinition(ConstraintExpr);
9230 bool AddToScope =
true;
9234 if (!WasAlreadyAdded && AddToScope)
9247 auto *OldConcept = dyn_cast<ConceptDecl>(
Previous.getRepresentativeDecl()->getUnderlyingDecl());
9249 auto *Old =
Previous.getRepresentativeDecl();
9257 bool IsSame =
Context.isSameEntity(NewDecl, OldConcept);
9259 Diag(NewDecl->
getLocation(), diag::err_redefinition_different_concept)
9283 if (
auto *CE = llvm::dyn_cast<ConceptDecl>(
Concept);
9284 CE && !CE->isInvalidDecl() && !CE->hasDefinition()) {
9285 Diag(Loc, diag::err_recursive_concept) << CE;
9286 Diag(CE->getLocation(), diag::note_declared_at);
9299 D->
dropAttrs<DLLImportAttr, DLLExportAttr>();
9302 FD->setInlineSpecified(
false);
9313 for (
Decl *Prev = D; Prev && !PrevDiagLoc.
isValid();
9314 Prev = Prev->getPreviousDecl()) {
9315 PrevDiagLoc = Prev->getLocation();
9317 assert(PrevDiagLoc.
isValid() &&
9318 "Explicit instantiation without point of instantiation?");
9328 bool &HasNoEffect) {
9329 HasNoEffect =
false;
9336 "previous declaration must be implicit!");
9349 if (PrevPointOfInstantiation.
isInvalid()) {
9353 PrevDecl,
Context.getTargetInfo().getTriple().isOSCygMing());
9362 PrevPointOfInstantiation.
isValid()) &&
9363 "Explicit instantiation without point of instantiation?");
9377 Diag(NewLoc, diag::err_specialization_after_instantiation)
9379 Diag(PrevPointOfInstantiation, diag::note_instantiation_required_here)
9384 llvm_unreachable(
"The switch over PrevTSK must be exhaustive.");
9414 diag::err_explicit_instantiation_declaration_after_definition);
9420 diag::note_explicit_instantiation_definition_here);
9424 llvm_unreachable(
"Unexpected TemplateSpecializationKind!");
9440 Diag(NewLoc, diag::warn_explicit_instantiation_after_specialization)
9443 diag::note_previous_template_specialization);
9474 ? diag::ext_explicit_instantiation_duplicate
9475 : diag::err_explicit_instantiation_duplicate)
9478 diag::note_previous_explicit_instantiation);
9484 llvm_unreachable(
"Missing specialization/instantiation case?");
9494 enum DiscardReason { NotAFunctionTemplate, NotAMemberOfEnclosing };
9500 DiscardedCandidates.push_back(std::make_pair(NotAFunctionTemplate, D));
9507 DiscardedCandidates.push_back(std::make_pair(NotAMemberOfEnclosing, D));
9515 Diag(FD->
getLocation(), diag::err_dependent_function_template_spec_no_match)
9517 for (
auto &P : DiscardedCandidates)
9518 Diag(P.second->getLocation(),
9519 diag::note_dependent_function_template_spec_discard_reason)
9520 << P.first << IsFriend;
9525 ExplicitTemplateArgs);
9538 llvm::SmallDenseMap<FunctionDecl *, TemplateArgumentListInfo, 8>
9539 ConvertedTemplateArgs;
9562 if (
auto *NewMD = dyn_cast<CXXMethodDecl>(FD);
9563 !
getLangOpts().CPlusPlus14 && NewMD && NewMD->isConstexpr() &&
9565 auto *OldMD = dyn_cast<CXXMethodDecl>(FunTmpl->getTemplatedDecl());
9566 if (OldMD && OldMD->isConst()) {
9576 if (ExplicitTemplateArgs)
9577 Args = *ExplicitTemplateArgs;
9590 ExplicitTemplateArgs ? &Args :
nullptr, FT,
Specialization, Info);
9595 I.getPair(), FunTmpl->getTemplatedDecl(),
9609 CUDA().IdentifyTarget(FD,
true)) {
9611 I.getPair(), FunTmpl->getTemplatedDecl(),
9618 if (ExplicitTemplateArgs)
9627 if (QualifiedFriend && Candidates.
empty()) {
9633 if (
auto *OldFD = dyn_cast<FunctionDecl>(OldND->getUnderlyingDecl()))
9644 PDiag(diag::err_function_template_spec_ambiguous)
9645 << FD->
getDeclName() << (ExplicitTemplateArgs !=
nullptr),
9646 PDiag(diag::note_function_template_spec_matched));
9655 const auto *DSA = PT->getAttr<NoSpecializationsAttr>()) {
9656 auto Message = DSA->getMessage();
9658 << PT << !Message.empty() << Message;
9659 Diag(DSA->getLoc(), diag::note_marked_here) << DSA;
9687 auto *SpecializationFPT =
9698 assert(SpecInfo &&
"Function template specialization info missing?");
9736 bool HasNoEffect =
false;
9751 !isFriend || (InstFrom && InstFrom->getDependentSpecializationInfo())) {
9765 "This must be the only existing declaration of this specialization");
9780 FD->setFunctionTemplateSpecialization(
9783 ExplicitTemplateArgs ? &ConvertedTemplateArgs[
Specialization] :
nullptr);
9802 assert(!
Member->isTemplateDecl() && !
Member->getDescribedTemplate() &&
9803 "Only for non-template members");
9806 NamedDecl *FoundInstantiation =
nullptr;
9816 auto *
Method = dyn_cast<CXXMethodDecl>(Candidate->getUnderlyingDecl());
9834 Method->getTrailingRequiresClause() &&
9838 !Satisfaction.IsSatisfied))
9841 Candidates.
addDecl(Candidate);
9845 if (Candidates.
empty())
9862 FoundInstantiation = *Best;
9863 Instantiation = BestMethod;
9880 Diag(
Member->getLocation(), diag::err_function_member_spec_ambiguous)
9881 <<
Member << (InstantiatedFrom ? InstantiatedFrom : Instantiation);
9882 for (
NamedDecl *Candidate : Candidates) {
9883 Candidate = Candidate->getUnderlyingDecl();
9884 Diag(Candidate->getLocation(), diag::note_function_member_spec_matched)
9892 (PrevVar = dyn_cast<VarDecl>(
Previous.getFoundDecl())))
9894 FoundInstantiation =
Previous.getRepresentativeDecl();
9895 Instantiation = PrevVar;
9902 (PrevRecord = dyn_cast<CXXRecordDecl>(
Previous.getFoundDecl()))) {
9903 FoundInstantiation =
Previous.getRepresentativeDecl();
9904 Instantiation = PrevRecord;
9911 (PrevEnum = dyn_cast<EnumDecl>(
Previous.getFoundDecl()))) {
9912 FoundInstantiation =
Previous.getRepresentativeDecl();
9913 Instantiation = PrevEnum;
9919 if (!Instantiation) {
9944 Previous.addDecl(FoundInstantiation);
9949 if (!InstantiatedFrom) {
9950 Diag(
Member->getLocation(), diag::err_spec_member_not_instantiated)
9962 assert(MSInfo &&
"Member specialization info missing?");
9964 bool HasNoEffect =
false;
9976 Instantiation,
Member->getLocation(),
9982 if (
auto *MemberFunction = dyn_cast<FunctionDecl>(
Member)) {
9988 if (InstantiationFunction->
isDeleted()) {
9991 InstantiationFunction);
9997 MemberFunction->setInstantiationOfMemberFunction(
9999 }
else if (
auto *MemberVar = dyn_cast<VarDecl>(
Member)) {
10000 MemberVar->setInstantiationOfStaticDataMember(
10002 }
else if (
auto *MemberClass = dyn_cast<CXXRecordDecl>(
Member)) {
10003 MemberClass->setInstantiationOfMemberClass(
10005 }
else if (
auto *MemberEnum = dyn_cast<EnumDecl>(
Member)) {
10006 MemberEnum->setInstantiationOfMemberEnum(
10009 llvm_unreachable(
"unknown member specialization kind");
10015 Previous.addDecl(FoundInstantiation);
10024template<
typename DeclT>
10035 OrigD->setLocation(Loc);
10041 if (Instantiation ==
Member)
10044 if (
auto *
Function = dyn_cast<CXXMethodDecl>(Instantiation))
10046 else if (
auto *Var = dyn_cast<VarDecl>(Instantiation))
10048 else if (
auto *
Record = dyn_cast<CXXRecordDecl>(Instantiation))
10050 else if (
auto *
Enum = dyn_cast<EnumDecl>(Instantiation))
10053 llvm_unreachable(
"unknown member specialization kind");
10061 bool WasQualifiedName) {
10066 S.
Diag(InstLoc, diag::err_explicit_instantiation_in_class)
10079 if (WasQualifiedName) {
10080 if (CurContext->
Encloses(OrigContext))
10087 if (
NamespaceDecl *NS = dyn_cast<NamespaceDecl>(OrigContext)) {
10088 if (WasQualifiedName)
10091 diag::err_explicit_instantiation_out_of_scope :
10092 diag::warn_explicit_instantiation_out_of_scope_0x)
10097 diag::err_explicit_instantiation_unqualified_wrong_namespace :
10098 diag::warn_explicit_instantiation_unqualified_wrong_namespace_0x)
10103 diag::err_explicit_instantiation_must_be_global :
10104 diag::warn_explicit_instantiation_must_be_global_0x)
10113 bool WasQualifiedName,
10120 S.
Diag(InstLoc, diag::err_explicit_instantiation_internal_linkage) << D;
10148 NNS =
T->getPrefix();
10157 auto *A = cast_or_null<InheritableAttr>(
getDLLAttr(Def));
10158 assert(A &&
"dllExportImportClassTemplateSpecialization called "
10159 "on Def without dllexport or dllimport");
10164 "delayed exports present at explicit instantiation");
10168 for (
auto &B : Def->
bases()) {
10169 if (
auto *BT = dyn_cast_or_null<ClassTemplateSpecializationDecl>(
10170 B.getType()->getAsCXXRecordDecl()))
10190 "Invalid enum tag in class template explicit instantiation!");
10196 Diag(TemplateNameLoc, diag::err_tag_reference_non_tag) << TD << NTK << Kind;
10202 Kind,
false, KWLoc,
10204 Diag(KWLoc, diag::err_use_with_wrong_tag)
10209 diag::note_previous_use);
10222 !
Context.getTargetInfo().getTriple().isOSCygMing()) {
10226 if (AL.getKind() == ParsedAttr::AT_DLLExport) {
10228 diag::warn_attribute_dllexport_explicit_instantiation_decl);
10229 Diag(AL.getLoc(), diag::note_attribute);
10234 if (
auto *A =
ClassTemplate->getTemplatedDecl()->getAttr<DLLExportAttr>()) {
10236 diag::warn_attribute_dllexport_explicit_instantiation_decl);
10237 Diag(A->getLocation(), diag::note_attribute);
10243 bool DLLImportExplicitInstantiationDef =
false;
10245 Context.getTargetInfo().getCXXABI().isMicrosoft()) {
10248 ClassTemplate->getTemplatedDecl()->getAttr<DLLImportAttr>();
10250 if (AL.getKind() == ParsedAttr::AT_DLLImport)
10252 if (AL.getKind() == ParsedAttr::AT_DLLExport) {
10260 DLLImportExplicitInstantiationDef =
true;
10279 void *InsertPos =
nullptr;
10287 Context.getTargetInfo().getTriple().isOSCygMing()) {
10291 if (AL.getKind() == ParsedAttr::AT_DLLExport) {
10293 diag::warn_attribute_dllexport_explicit_instantiation_def);
10305 bool HasNoEffect =
false;
10308 PrevDecl, PrevDecl_TSK,
10325 PrevDecl =
nullptr;
10329 DLLImportExplicitInstantiationDef) {
10331 HasNoEffect =
false;
10346 if (
const auto *A = PrevDecl->
getAttr<MSInheritanceAttr>()) {
10348 Clone->setInherited(
true);
10354 if (!HasNoEffect && !PrevDecl) {
10367 bool PreviouslyDLLExported =
Specialization->hasAttr<DLLExportAttr>();
10392 = cast_or_null<ClassTemplateSpecializationDecl>(
10404 Def = cast_or_null<ClassTemplateSpecializationDecl>(
10412 DLLImportExplicitInstantiationDef)) {
10417 Context.getTargetInfo().shouldDLLImportComdatSymbols()) {
10423 A->setInherited(
true);
10431 bool NewlyDLLExported =
10432 !PreviouslyDLLExported &&
Specialization->hasAttr<DLLExportAttr>();
10434 Context.getTargetInfo().shouldDLLImportComdatSymbols()) {
10448 "Def and Specialization should match for implicit instantiation");
10455 Context.getTargetInfo().getTriple().isOSCygMing() &&
10456 PrevDecl->
hasAttr<DLLExportAttr>()) {
10480 bool Owned =
false;
10481 bool IsDependent =
false;
10489 assert(!IsDependent &&
"explicit instantiation of dependent name not yet handled");
10495 assert(!Tag->isEnum() &&
"shouldn't see enumerations here");
10497 if (Tag->isInvalidDecl())
10503 Diag(TemplateLoc, diag::err_explicit_instantiation_nontemplate_type)
10505 Diag(
Record->getLocation(), diag::note_nontemplate_decl_here);
10516 Diag(TemplateLoc, diag::ext_explicit_instantiation_without_qualified_id)
10531 = cast_or_null<CXXRecordDecl>(
Record->getPreviousDecl());
10532 if (!PrevDecl &&
Record->getDefinition())
10536 bool HasNoEffect =
false;
10537 assert(MSInfo &&
"No member specialization information?");
10549 = cast_or_null<CXXRecordDecl>(
Record->getDefinition());
10557 Diag(TemplateLoc, diag::err_explicit_instantiation_undefined_member)
10558 << 0 <<
Record->getDeclName() <<
Record->getDeclContext();
10568 RecordDef = cast_or_null<CXXRecordDecl>(
Record->getDefinition());
10599 diag::err_explicit_instantiation_requires_name)
10638 diag::err_explicit_instantiation_inline :
10639 diag::warn_explicit_instantiation_inline_0x)
10645 diag::err_explicit_instantiation_constexpr);
10681 if (!PrevTemplate) {
10688 Diag((*P)->getLocation(), diag::note_explicit_instantiation_here);
10695 diag::err_explicit_instantiation_data_member_not_instantiated)
10710 Diag(
T->getTypeLoc().getBeginLoc(),
10711 diag::err_auto_not_allowed_var_inst);
10720 diag::err_explicit_instantiation_without_template_id)
10722 Diag(PrevTemplate->getLocation(),
10723 diag::note_explicit_instantiation_here);
10733 TemplateArgs,
true);
10762 diag::ext_explicit_instantiation_without_qualified_id)
10770 bool HasNoEffect =
false;
10772 PrevTSK, POI, HasNoEffect))
10775 if (!HasNoEffect) {
10778 if (
auto *VTSD = dyn_cast<VarTemplatePartialSpecializationDecl>(Prev)) {
10779 VTSD->setExternKeywordLoc(ExternLoc);
10780 VTSD->setTemplateKeywordLoc(TemplateLoc);
10794 Diag(
T->getTypeLoc().getBeginLoc(),
10795 diag::err_invalid_var_template_spec_type)
10796 << 0 << PrevTemplate << R << Prev->
getType();
10797 Diag(PrevTemplate->getLocation(), diag::note_template_declared_here)
10798 << 2 << PrevTemplate->getDeclName();
10803 return (
Decl*)
nullptr;
10808 bool HasExplicitTemplateArgs =
false;
10812 HasExplicitTemplateArgs =
true;
10827 if (!HasExplicitTemplateArgs) {
10831 if (
Context.hasSameUnqualifiedType(
Method->getType(), Adjusted)) {
10832 if (
Method->getPrimaryTemplate()) {
10836 C.FoundDecl = P.getPair();
10840 if (
Method->getTrailingRequiresClause() &&
10859 FunTmpl, (HasExplicitTemplateArgs ? &TemplateArgs :
nullptr), R,
10890 if (!NonTemplateMatches.
empty()) {
10901 Msg = diag::err_explicit_instantiation_ambiguous;
10905 Msg = diag::err_explicit_instantiation_no_candidate;
10921 TemplateMatches.
begin(), TemplateMatches.
end(),
10923 PDiag(diag::err_explicit_instantiation_not_known) << Name,
10924 PDiag(diag::err_explicit_instantiation_ambiguous) << Name,
10925 PDiag(diag::note_explicit_instantiation_candidate));
10941 if (FPT->hasExceptionSpec()) {
10943 diag::err_mismatched_exception_spec_explicit_instantiation;
10945 DiagID = diag::ext_mismatched_exception_spec_explicit_instantiation;
10948 PDiag(diag::note_explicit_instantiation_here),
10959 diag::err_explicit_instantiation_member_function_not_instantiated)
10968 if (!PrevDecl &&
Specialization->isThisDeclarationADefinition())
10972 bool HasNoEffect =
false;
10983 return (
Decl*)
nullptr;
10994 if (
auto *RD = dyn_cast<CXXRecordDecl>(
Specialization->getDeclContext()))
10995 if (RD->getIdentifier() && RD->getIdentifier()->isStr(
"valarray") &&
10996 RD->isInStdNamespace())
10997 return (
Decl*)
nullptr;
11007 Context.getTargetInfo().getCXXABI().isMicrosoft())
11031 diag::ext_explicit_instantiation_without_qualified_id)
11041 return (
Decl*)
nullptr;
11050 assert(Name &&
"Expected a name in a dependent tag");
11059 Diag(NameLoc, diag::err_dependent_tag_decl)
11086 DiagCompat(TypenameLoc, diag_compat::typename_outside_of_template)
11094 TypenameLoc, QualifierLoc, II, IdLoc, &TSI,
11110 ? diag::compat_cxx11_typename_outside_of_template
11111 : diag::compat_pre_cxx11_typename_outside_of_template)
11119 if (LookupRD && LookupRD->getIdentifier() == TemplateII) {
11120 Diag(TemplateIILoc,
11121 diag::ext_out_of_line_qualified_id_type_names_constructor)
11123 << (TemplateKWLoc.
isValid() ? 1 : 0 );
11137 assert(DTN &&
"dependent template has non-dependent name?");
11140 if (!DTN->getName().getIdentifier()) {
11141 Diag(TemplateIILoc, diag::err_template_id_not_a_type) <<
Template;
11159 for (
unsigned I = 0, N = TemplateArgs.
size(); I != N; ++I)
11167 Template, TemplateIILoc, TemplateArgs);
11176 TemplateIILoc, TemplateArgs);
11186 if (!II.
isStr(
"type"))
11194 auto EnableIfTSTLoc =
11196 if (!EnableIfTSTLoc || EnableIfTSTLoc.getNumArgs() == 0)
11198 const TemplateSpecializationType *EnableIfTST = EnableIfTSTLoc.
getTypePtr();
11202 EnableIfTST->getTemplateName().getAsTemplateDecl();
11203 if (!EnableIfDecl || EnableIfTST->isIncompleteType())
11209 if (!EnableIfII || !EnableIfII->
isStr(
"enable_if"))
11213 CondRange = EnableIfTSTLoc.getArgLoc(0).getSourceRange();
11217 if (EnableIfTSTLoc.getArgLoc(0).getArgument().getKind()
11221 Cond = EnableIfTSTLoc.getArgLoc(0).getSourceExpression();
11237 bool DeducedTSTContext) {
11239 DeducedTSTContext);
11246 TL.setElaboratedKeywordLoc(KeywordLoc);
11247 TL.setQualifierLoc(QualifierLoc);
11248 TL.setNameLoc(IILoc);
11251 TL.setElaboratedKeywordLoc(KeywordLoc);
11252 TL.setQualifierLoc(QualifierLoc);
11253 TL.setNameLoc(IILoc);
11257 assert(!QualifierLoc);
11261 TL.setElaboratedKeywordLoc(KeywordLoc);
11262 TL.setQualifierLoc(QualifierLoc);
11263 TL.setNameLoc(IILoc);
11284 SS.
Adopt(QualifierLoc);
11287 if (QualifierLoc) {
11314 unsigned DiagID = 0;
11315 Decl *Referenced =
nullptr;
11316 switch (
Result.getResultKind()) {
11327 std::string FailedDescription;
11328 std::tie(FailedCond, FailedDescription) =
11332 diag::err_typename_nested_not_found_requirement)
11333 << FailedDescription
11339 diag::err_typename_nested_not_found_enable_if)
11340 << Ctx << CondRange;
11344 DiagID = Ctx ? diag::err_typename_nested_not_found
11345 : diag::err_unknown_typename;
11354 Diag(IILoc, diag::err_typename_refers_to_using_value_decl)
11355 << Name << Ctx << FullRange;
11357 = dyn_cast<UnresolvedUsingValueDecl>(
Result.getRepresentativeDecl())){
11359 Diag(Loc, diag::note_using_value_decl_missing_typename)
11399 assert(!QualifierLoc);
11402 return Context.getTypeDeclType(
11412 if (!DeducedTSTContext) {
11415 Diag(IILoc, diag::err_dependent_deduced_tst)
11417 <<
QualType(Qualifier.getAsType(), 0);
11419 Diag(IILoc, diag::err_deduced_tst)
11427 return Context.getDeducedTemplateSpecializationType(
11432 DiagID = Ctx ? diag::err_typename_nested_not_type
11433 : diag::err_typename_not_type;
11434 Referenced =
Result.getFoundDecl();
11438 DiagID = Ctx ? diag::err_typename_nested_not_type
11439 : diag::err_typename_not_type;
11440 Referenced = *
Result.begin();
11452 Diag(IILoc, DiagID) << FullRange << Name << Ctx;
11454 Diag(IILoc, DiagID) << FullRange << Name;
11457 Ctx ? diag::note_typename_member_refers_here
11458 : diag::note_typename_refers_here)
11465 class CurrentInstantiationRebuilder
11473 CurrentInstantiationRebuilder(
Sema &SemaRef,
11477 Loc(Loc), Entity(Entity) { }
11485 return T.isNull() || !
T->isInstantiationDependentType();
11490 SourceLocation getBaseLocation() {
return Loc; }
11493 DeclarationName getBaseEntity() {
return Entity; }
11497 void setBase(SourceLocation Loc, DeclarationName Entity) {
11499 this->Entity = Entity;
11512 if (!
T || !
T->getType()->isInstantiationDependentType())
11515 CurrentInstantiationRebuilder Rebuilder(*
this, Loc, Name);
11516 return Rebuilder.TransformType(
T);
11520 CurrentInstantiationRebuilder Rebuilder(*
this, E->
getExprLoc(),
11522 return Rebuilder.TransformExpr(E);
11533 = Rebuilder.TransformNestedNameSpecifierLoc(QualifierLoc);
11543 for (
unsigned I = 0, N = Params->
size(); I != N; ++I) {
11552 = dyn_cast<TemplateTemplateParmDecl>(Param)) {
11554 TTP->getTemplateParameters()))
11596 unsigned NumArgs) {
11598 llvm::raw_svector_ostream Out(Str);
11600 if (!Params || Params->
size() == 0 || NumArgs == 0)
11601 return std::string();
11603 for (
unsigned I = 0, N = Params->
size(); I != N; ++I) {
11613 Out << Id->getName();
11625 return std::string(Out.str());
11633 auto LPT = std::make_unique<LateParsedTemplate>();
11636 LPT->Toks.swap(Toks);
11683class ExplicitSpecializationVisibilityChecker {
11692 : S(S), Loc(Loc), Kind(Kind) {}
11695 if (
auto *FD = dyn_cast<FunctionDecl>(ND))
11696 return checkImpl(FD);
11697 if (
auto *RD = dyn_cast<CXXRecordDecl>(ND))
11698 return checkImpl(RD);
11699 if (
auto *VD = dyn_cast<VarDecl>(ND))
11700 return checkImpl(VD);
11701 if (
auto *ED = dyn_cast<EnumDecl>(ND))
11702 return checkImpl(ED);
11706 void diagnose(NamedDecl *D,
bool IsPartialSpec) {
11707 auto Kind = IsPartialSpec ? Sema::MissingImportKind::PartialSpecialization
11708 : Sema::MissingImportKind::ExplicitSpecialization;
11709 const bool Recover =
true;
11714 if (Modules.empty())
11720 bool CheckMemberSpecialization(
const NamedDecl *D) {
11721 return Kind == Sema::AcceptableKind::Visible
11726 bool CheckExplicitSpecialization(
const NamedDecl *D) {
11727 return Kind == Sema::AcceptableKind::Visible
11732 bool CheckDeclaration(
const NamedDecl *D) {
11749 template<
typename SpecDecl>
11750 void checkImpl(SpecDecl *Spec) {
11751 bool IsHiddenExplicitSpecialization =
false;
11755 if constexpr (std::is_same_v<SpecDecl, FunctionDecl>)
11756 SpecKind = Spec->getTemplateSpecializationKindForInstantiation();
11758 IsHiddenExplicitSpecialization = Spec->getMemberSpecializationInfo()
11759 ? !CheckMemberSpecialization(Spec)
11760 : !CheckExplicitSpecialization(Spec);
11762 checkInstantiated(Spec);
11765 if (IsHiddenExplicitSpecialization)
11766 diagnose(Spec->getMostRecentDecl(),
false);
11769 void checkInstantiated(FunctionDecl *FD) {
11774 void checkInstantiated(CXXRecordDecl *RD) {
11775 auto *SD = dyn_cast<ClassTemplateSpecializationDecl>(RD);
11779 auto From = SD->getSpecializedTemplateOrPartial();
11780 if (
auto *TD = From.dyn_cast<ClassTemplateDecl *>())
11782 else if (
auto *TD =
11783 From.dyn_cast<ClassTemplatePartialSpecializationDecl *>()) {
11784 if (!CheckDeclaration(TD))
11785 diagnose(TD,
true);
11790 void checkInstantiated(VarDecl *RD) {
11791 auto *SD = dyn_cast<VarTemplateSpecializationDecl>(RD);
11795 auto From = SD->getSpecializedTemplateOrPartial();
11796 if (
auto *TD = From.dyn_cast<VarTemplateDecl *>())
11798 else if (
auto *TD =
11799 From.dyn_cast<VarTemplatePartialSpecializationDecl *>()) {
11800 if (!CheckDeclaration(TD))
11801 diagnose(TD,
true);
11806 void checkInstantiated(EnumDecl *FD) {}
11808 template<
typename TemplDecl>
11809 void checkTemplate(TemplDecl *TD) {
11810 if (TD->isMemberSpecialization()) {
11811 if (!CheckMemberSpecialization(TD))
11812 diagnose(TD->getMostRecentDecl(),
false);
11822 ExplicitSpecializationVisibilityChecker(*
this, Loc,
11832 ExplicitSpecializationVisibilityChecker(*
this, Loc,
11840 if (
const auto *FD = dyn_cast<FunctionDecl>(N)) {
11848 if (!CSC.isInstantiationRecord() || CSC.PointOfInstantiation.isInvalid())
11850 return CSC.PointOfInstantiation;
Defines the clang::ASTContext interface.
Defines enum values for all the target-independent builtin functions.
static Decl::Kind getKind(const Decl *D)
This file defines the classes used to store parsed information about declaration-specifiers and decla...
Defines the C++ template declaration subclasses.
Defines the clang::Expr interface and subclasses for C++ expressions.
Defines the clang::LangOptions interface.
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.
llvm::MachO::Record Record
Implements a partial diagnostic that can be emitted anwyhere in a DiagnosticBuilder stream.
@ ForVisibleRedeclaration
The lookup results will be used for redeclaration of a name, if an entity by that name already exists...
static std::string toString(const clang::SanitizerSet &Sanitizers)
Produce a string containing comma-separated names of sanitizers in Sanitizers set.
This file declares semantic analysis for CUDA constructs.
static void SetNestedNameSpecifier(Sema &S, DeclaratorDecl *DD, Declarator &D)
static bool DependsOnTemplateParameters(QualType T, TemplateParameterList *Params)
Determines whether a given type depends on the given parameter list.
static TemplateSpecializationKind getTemplateSpecializationKind(Decl *D)
Determine what kind of template specialization the given declaration is.
static Expr * BuildExpressionFromNonTypeTemplateArgumentValue(Sema &S, QualType T, const APValue &Val, SourceLocation Loc)
static void maybeDiagnoseTemplateParameterShadow(Sema &SemaRef, Scope *S, SourceLocation Loc, const IdentifierInfo *Name)
static TemplateArgumentLoc convertTypeTemplateArgumentToTemplate(ASTContext &Context, TypeLoc TLoc)
Convert a template-argument that we parsed as a type into a template, if possible.
static bool CheckTemplateSpecializationScope(Sema &S, NamedDecl *Specialized, NamedDecl *PrevDecl, SourceLocation Loc, bool IsPartialSpecialization)
Check whether a specialization is well-formed in the current context.
static bool ScopeSpecifierHasTemplateId(const CXXScopeSpec &SS)
Determine whether the given scope specifier has a template-id in it.
static SourceRange findTemplateParameterInType(unsigned Depth, Expr *E)
static Sema::SemaDiagnosticBuilder noteLocation(Sema &S, const NamedDecl &Decl, unsigned HereDiagID, unsigned ExternalDiagID)
static SourceRange getRangeOfTypeInNestedNameSpecifier(ASTContext &Context, QualType T, const CXXScopeSpec &SS)
static Expr * BuildExpressionFromIntegralTemplateArgumentValue(Sema &S, QualType OrigT, const llvm::APSInt &Int, SourceLocation Loc)
Construct a new expression that refers to the given integral template argument with the given source-...
static SourceRange findTemplateParameter(unsigned Depth, TypeLoc TL)
static QualType builtinCommonTypeImpl(Sema &S, ElaboratedTypeKeyword Keyword, TemplateName BaseTemplate, SourceLocation TemplateLoc, ArrayRef< TemplateArgument > Ts)
static bool isSameAsPrimaryTemplate(TemplateParameterList *Params, TemplateParameterList *SpecParams, ArrayRef< TemplateArgument > Args)
static bool SubstDefaultTemplateArgument(Sema &SemaRef, TemplateDecl *Template, SourceLocation TemplateLoc, SourceLocation RAngleLoc, TemplateTypeParmDecl *Param, ArrayRef< TemplateArgument > SugaredConverted, ArrayRef< TemplateArgument > CanonicalConverted, TemplateArgumentLoc &Output)
Substitute template arguments into the default template argument for the given template type paramete...
static bool CheckNonTypeTemplatePartialSpecializationArgs(Sema &S, SourceLocation TemplateNameLoc, NonTypeTemplateParmDecl *Param, const TemplateArgument *Args, unsigned NumArgs, bool IsDefaultArgument)
Subroutine of Sema::CheckTemplatePartialSpecializationArgs that checks non-type template partial spec...
static QualType checkBuiltinTemplateIdType(Sema &SemaRef, ElaboratedTypeKeyword Keyword, BuiltinTemplateDecl *BTD, ArrayRef< TemplateArgument > Converted, SourceLocation TemplateLoc, TemplateArgumentListInfo &TemplateArgs)
static void StripImplicitInstantiation(NamedDecl *D, bool MinGW)
Strips various properties off an implicit instantiation that has just been explicitly specialized.
static bool isEnableIf(NestedNameSpecifierLoc NNS, const IdentifierInfo &II, SourceRange &CondRange, Expr *&Cond)
Determine whether this failed name lookup should be treated as being disabled by a usage of std::enab...
static void DiagnoseTemplateParameterListArityMismatch(Sema &S, TemplateParameterList *New, TemplateParameterList *Old, Sema::TemplateParameterListEqualKind Kind, SourceLocation TemplateArgLoc)
Diagnose a known arity mismatch when comparing template argument lists.
static bool isTemplateArgumentTemplateParameter(const TemplateArgument &Arg, unsigned Depth, unsigned Index)
static bool CheckTemplateArgumentIsCompatibleWithParameter(Sema &S, NamedDecl *Param, QualType ParamType, Expr *ArgIn, Expr *Arg, QualType ArgType)
Checks whether the given template argument is compatible with its template parameter.
static bool isInVkNamespace(const RecordType *RT)
static ExprResult formImmediatelyDeclaredConstraint(Sema &S, NestedNameSpecifierLoc NS, DeclarationNameInfo NameInfo, NamedDecl *NamedConcept, NamedDecl *FoundDecl, SourceLocation LAngleLoc, SourceLocation RAngleLoc, QualType ConstrainedType, SourceLocation ParamNameLoc, ArgumentLocAppender Appender, SourceLocation EllipsisLoc)
static TemplateArgumentListInfo makeTemplateArgumentListInfo(Sema &S, TemplateIdAnnotation &TemplateId)
Convert the parser's template argument list representation into our form.
static void collectConjunctionTerms(Expr *Clause, SmallVectorImpl< Expr * > &Terms)
Collect all of the separable terms in the given condition, which might be a conjunction.
static void checkMoreSpecializedThanPrimary(Sema &S, PartialSpecDecl *Partial)
static SpirvOperand checkHLSLSpirvTypeOperand(Sema &SemaRef, QualType OperandArg, SourceLocation Loc)
static SourceLocation DiagLocForExplicitInstantiation(NamedDecl *D, SourceLocation PointOfInstantiation)
Compute the diagnostic location for an explicit instantiation.
static bool RemoveLookupResult(LookupResult &R, NamedDecl *C)
static bool CheckTemplateArgumentAddressOfObjectOrFunction(Sema &S, NamedDecl *Param, QualType ParamType, Expr *ArgIn, TemplateArgument &SugaredConverted, TemplateArgument &CanonicalConverted)
Checks whether the given template argument is the address of an object or function according to C++ [...
static bool isEnableIfAliasTemplate(TypeAliasTemplateDecl *AliasTemplate)
Determine whether this alias template is "enable_if_t".
static bool DiagnoseUnexpandedParameterPacks(Sema &S, TemplateTemplateParmDecl *TTP)
Check for unexpanded parameter packs within the template parameters of a template template parameter,...
static bool CheckExplicitInstantiationScope(Sema &S, NamedDecl *D, SourceLocation InstLoc, bool WasQualifiedName)
Check the scope of an explicit instantiation.
static TemplateArgumentLoc translateTemplateArgument(Sema &SemaRef, const ParsedTemplateArgument &Arg)
static NullPointerValueKind isNullPointerValueTemplateArgument(Sema &S, NamedDecl *Param, QualType ParamType, Expr *Arg, Decl *Entity=nullptr)
Determine whether the given template argument is a null pointer value of the appropriate type.
static void checkTemplatePartialSpecialization(Sema &S, PartialSpecDecl *Partial)
static bool CheckExplicitInstantiation(Sema &S, NamedDecl *D, SourceLocation InstLoc, bool WasQualifiedName, TemplateSpecializationKind TSK)
Common checks for whether an explicit instantiation of D is valid.
static Expr * lookThroughRangesV3Condition(Preprocessor &PP, Expr *Cond)
static bool DiagnoseDefaultTemplateArgument(Sema &S, Sema::TemplateParamListContext TPC, SourceLocation ParamLoc, SourceRange DefArgRange)
Diagnose the presence of a default template argument on a template parameter, which is ill-formed in ...
static void noteNonDeducibleParameters(Sema &S, TemplateParameterList *TemplateParams, const llvm::SmallBitVector &DeducibleParams)
static void completeMemberSpecializationImpl(Sema &S, DeclT *OrigD, SourceLocation Loc)
Complete the explicit specialization of a member of a class template by updating the instantiated mem...
static bool diagnoseMissingArgument(Sema &S, SourceLocation Loc, TemplateDecl *TD, const TemplateParmDecl *D, TemplateArgumentListInfo &Args)
Diagnose a missing template argument.
static bool CheckTemplateArgumentPointerToMember(Sema &S, NamedDecl *Param, QualType ParamType, Expr *&ResultArg, TemplateArgument &SugaredConverted, TemplateArgument &CanonicalConverted)
Checks whether the given template argument is a pointer to member constant according to C++ [temp....
static bool MatchTemplateParameterKind(Sema &S, NamedDecl *New, const Sema::TemplateCompareNewDeclInfo &NewInstFrom, NamedDecl *Old, const NamedDecl *OldInstFrom, bool Complain, Sema::TemplateParameterListEqualKind Kind, SourceLocation TemplateArgLoc)
Match two template parameters within template parameter lists.
static void dllExportImportClassTemplateSpecialization(Sema &S, ClassTemplateSpecializationDecl *Def)
Make a dllexport or dllimport attr on a class template specialization take effect.
Defines the clang::SourceLocation class and associated facilities.
Allows QualTypes to be sorted and hence used in maps and sets.
static const TemplateArgument & getArgument(const TemplateArgument &A)
C Language Family Type Representation.
APValue - This class implements a discriminated union of [uninitialized] [APSInt] [APFloat],...
const LValueBase getLValueBase() const
APSInt & getComplexIntImag()
ValueKind getKind() const
APFixedPoint & getFixedPoint()
const ValueDecl * getMemberPointerDecl() const
APValue & getVectorElt(unsigned I)
unsigned getVectorLength() const
bool isMemberPointer() const
std::string getAsString(const ASTContext &Ctx, QualType Ty) const
@ Indeterminate
This object has an indeterminate value (C++ [basic.indet]).
@ None
There is no such object (it's outside its lifetime).
bool isNullPointer() const
APSInt & getComplexIntReal()
APFloat & getComplexFloatImag()
APFloat & getComplexFloatReal()
Holds long-lived AST nodes (such as types and decls) that can be referred to throughout the semantic ...
TranslationUnitDecl * getTranslationUnitDecl() const
TemplateArgument getCanonicalTemplateArgument(const TemplateArgument &Arg) const
Retrieve the "canonical" template argument.
CanQualType getCanonicalType(QualType T) const
Return the canonical (structural) type corresponding to the specified potentially non-canonical type ...
bool hasSameType(QualType T1, QualType T2) const
Determine whether the given types T1 and T2 are equivalent.
QualType getPointerType(QualType T) const
Return the uniqued reference to the type for a pointer to the specified type.
const LangOptions & getLangOpts() const
TypeSourceInfo * getTrivialTypeSourceInfo(QualType T, SourceLocation Loc=SourceLocation()) const
Allocate a TypeSourceInfo where all locations have been initialized to a given location,...
bool hasSameUnqualifiedType(QualType T1, QualType T2) const
Determine whether the given types are equivalent after cvr-qualifiers have been removed.
QualType getArrayDecayedType(QualType T) const
Return the properly qualified result of decaying the specified array type to a pointer.
QualType getUnconstrainedType(QualType T) const
Remove any type constraints from a template parameter type, for equivalence comparison of template pa...
Represents a constant array type that does not decay to a pointer when used as a function parameter.
A structure for storing the information associated with a name that has been assumed to be a template...
DeclarationName getDeclName() const
Get the name of the template.
Attr - This represents one attribute.
AutoTypeKeyword getAutoKeyword() const
const NestedNameSpecifierLoc getNestedNameSpecifierLoc() const
SourceLocation getRAngleLoc() const
SourceLocation getLAngleLoc() const
NamedDecl * getFoundDecl() const
TemplateDecl * getNamedConcept() const
DeclarationNameInfo getConceptNameInfo() const
A fixed int type of a specified bitwidth.
Represents the builtin template declaration which is used to implement __make_integer_seq and other b...
BuiltinTemplateKind getBuiltinTemplateKind() const
This class is used for builtin types like 'int'.
static CStyleCastExpr * Create(const ASTContext &Context, QualType T, ExprValueKind VK, CastKind K, Expr *Op, const CXXCastPath *BasePath, FPOptionsOverride FPO, TypeSourceInfo *WrittenTy, SourceLocation L, SourceLocation R)
static CXXBoolLiteralExpr * Create(const ASTContext &C, bool Val, QualType Ty, SourceLocation Loc)
Represents a C++ member access expression where the actual member referenced could not be resolved be...
static CXXDependentScopeMemberExpr * Create(const ASTContext &Ctx, Expr *Base, QualType BaseType, bool IsArrow, SourceLocation OperatorLoc, NestedNameSpecifierLoc QualifierLoc, SourceLocation TemplateKWLoc, NamedDecl *FirstQualifierFoundInScope, DeclarationNameInfo MemberNameInfo, const TemplateArgumentListInfo *TemplateArgs)
Represents a static or instance method of a struct/union/class.
The null pointer literal (C++11 [lex.nullptr])
Represents a C++ struct/union/class.
static CXXRecordDecl * Create(const ASTContext &C, TagKind TK, DeclContext *DC, SourceLocation StartLoc, SourceLocation IdLoc, IdentifierInfo *Id, CXXRecordDecl *PrevDecl=nullptr)
CXXRecordDecl * getMostRecentDecl()
CXXRecordDecl * getInstantiatedFromMemberClass() const
If this record is an instantiation of a member class, retrieves the member class from which it was in...
CXXRecordDecl * getDefinition() const
TemplateSpecializationKind getTemplateSpecializationKind() const
Determine whether this particular class is a specialization or instantiation of a class template or m...
void setDescribedClassTemplate(ClassTemplateDecl *Template)
MemberSpecializationInfo * getMemberSpecializationInfo() const
If this class is an instantiation of a member class of a class template specialization,...
void setTemplateSpecializationKind(TemplateSpecializationKind TSK)
Set the kind of specialization or template instantiation this is.
CXXRecordDecl * getPreviousDecl()
Represents a C++ nested-name-specifier or a global scope specifier.
bool isNotEmpty() const
A scope specifier is present, but may be valid or invalid.
char * location_data() const
Retrieve the data associated with the source-location information.
bool isValid() const
A scope specifier is present, and it refers to a real scope.
void MakeTrivial(ASTContext &Context, NestedNameSpecifier Qualifier, SourceRange R)
Make a new nested-name-specifier from incomplete source-location information.
SourceRange getRange() const
SourceLocation getBeginLoc() const
bool isSet() const
Deprecated.
NestedNameSpecifier getScopeRep() const
Retrieve the representation of the nested-name-specifier.
NestedNameSpecifierLoc getWithLocInContext(ASTContext &Context) const
Retrieve a nested-name-specifier with location information, copied into the given AST context.
bool isInvalid() const
An error occurred during parsing of the scope specifier.
bool isEmpty() const
No scope specifier.
void Adopt(NestedNameSpecifierLoc Other)
Adopt an existing nested-name-specifier (with source-range information).
A Microsoft C++ __uuidof expression, which gets the _GUID that corresponds to the supplied type or ex...
static CanQual< Type > CreateUnsafe(QualType Other)
const T * getTypePtr() const
Retrieve the underlying type pointer, which refers to a canonical type.
Declaration of a class template.
CXXRecordDecl * getTemplatedDecl() const
Get the underlying class declarations of the template.
static ClassTemplateDecl * Create(ASTContext &C, DeclContext *DC, SourceLocation L, DeclarationName Name, TemplateParameterList *Params, NamedDecl *Decl)
Create a class template node.
ClassTemplateDecl * getInstantiatedFromMemberTemplate() const
ClassTemplatePartialSpecializationDecl * getInstantiatedFromMember() const
Retrieve the member class template partial specialization from which this particular class template p...
static ClassTemplatePartialSpecializationDecl * Create(ASTContext &Context, TagKind TK, DeclContext *DC, SourceLocation StartLoc, SourceLocation IdLoc, TemplateParameterList *Params, ClassTemplateDecl *SpecializedTemplate, ArrayRef< TemplateArgument > Args, CanQualType CanonInjectedTST, ClassTemplatePartialSpecializationDecl *PrevDecl)
void setMemberSpecialization()
Note that this member template is a specialization.
Represents a class template specialization, which refers to a class template with a given set of temp...
static ClassTemplateSpecializationDecl * Create(ASTContext &Context, TagKind TK, DeclContext *DC, SourceLocation StartLoc, SourceLocation IdLoc, ClassTemplateDecl *SpecializedTemplate, ArrayRef< TemplateArgument > Args, bool StrictPackMatch, ClassTemplateSpecializationDecl *PrevDecl)
SourceLocation getPointOfInstantiation() const
Get the point of instantiation (if any), or null if none.
void setTemplateArgsAsWritten(const ASTTemplateArgumentListInfo *ArgsWritten)
Set the template argument list as written in the sources.
Complex values, per C99 6.2.5p11.
Declaration of a C++20 concept.
Expr * getConstraintExpr() const
ConceptDecl * getCanonicalDecl() override
Retrieves the "canonical" declaration of the given declaration.
static ConceptDecl * Create(ASTContext &C, DeclContext *DC, SourceLocation L, DeclarationName Name, TemplateParameterList *Params, Expr *ConstraintExpr=nullptr)
static ConceptReference * Create(const ASTContext &C, NestedNameSpecifierLoc NNS, SourceLocation TemplateKWLoc, DeclarationNameInfo ConceptNameInfo, NamedDecl *FoundDecl, TemplateDecl *NamedConcept, const ASTTemplateArgumentListInfo *ArgsAsWritten)
static ConceptSpecializationExpr * Create(const ASTContext &C, ConceptReference *ConceptRef, ImplicitConceptSpecializationDecl *SpecDecl, const ConstraintSatisfaction *Satisfaction)
const TypeClass * getTypePtr() const
Represents the canonical version of C arrays with a specified constant size.
static ConstantExpr * Create(const ASTContext &Context, Expr *E, const APValue &Result)
Represents a concrete matrix type with constant number of rows and columns.
The result of a constraint satisfaction check, containing the necessary information to diagnose an un...
Base class for callback objects used by Sema::CorrectTypo to check the validity of a potential typo c...
bool WantExpressionKeywords
bool WantRemainingKeywords
A POD class for pairing a NamedDecl* with an access specifier.
static DeclAccessPair make(NamedDecl *D, AccessSpecifier AS)
DeclContext - This is used only as base class of specific decl types that can act as declaration cont...
DeclContext * getParent()
getParent - Returns the containing DeclContext.
bool Equals(const DeclContext *DC) const
Determine whether this declaration context is equivalent to the declaration context DC.
bool isFileContext() const
void makeDeclVisibleInContext(NamedDecl *D)
Makes a declaration visible within this context.
bool isTransparentContext() const
isTransparentContext - Determines whether this context is a "transparent" context,...
bool isDependentContext() const
Determines whether this context is dependent on a template parameter.
bool InEnclosingNamespaceSetOf(const DeclContext *NS) const
Test if this context is part of the enclosing namespace set of the context NS, as defined in C++0x [n...
bool isTranslationUnit() const
DeclContext * getRedeclContext()
getRedeclContext - Retrieve the context in which an entity conflicts with other entities of the same ...
bool isStdNamespace() const
DeclContext * getEnclosingNamespaceContext()
Retrieve the nearest enclosing namespace context.
bool isFunctionOrMethod() const
DeclContext * getLookupParent()
Find the parent context of this context that will be used for unqualified name lookup.
bool isExternCContext() const
Determines whether this context or some of its ancestors is a linkage specification context that spec...
const LinkageSpecDecl * getExternCContext() const
Retrieve the nearest enclosing C linkage specification context.
bool Encloses(const DeclContext *DC) const
Determine whether this declaration context semantically encloses the declaration context DC.
A reference to a declared variable, function, enum, etc.
NestedNameSpecifier getQualifier() const
If the name was qualified, retrieves the nested-name-specifier that precedes the name.
Captures information about "declaration specifiers".
bool isVirtualSpecified() const
void ClearStorageClassSpecs()
bool isNoreturnSpecified() const
SourceLocation getStorageClassSpecLoc() const
SCS getStorageClassSpec() const
SourceLocation getBeginLoc() const LLVM_READONLY
SourceRange getSourceRange() const LLVM_READONLY
SourceLocation getNoreturnSpecLoc() const
SourceLocation getExplicitSpecLoc() const
TSCS getThreadStorageClassSpec() const
ParsedAttributes & getAttributes()
bool isInlineSpecified() const
SourceLocation getThreadStorageClassSpecLoc() const
SourceLocation getVirtualSpecLoc() const
SourceLocation getConstexprSpecLoc() const
SourceLocation getInlineSpecLoc() const
bool hasExplicitSpecifier() const
bool hasConstexprSpecifier() const
Decl - This represents one declaration (or definition), e.g.
Decl * getPreviousDecl()
Retrieve the previous declaration that declares the same entity as this declaration,...
FriendObjectKind getFriendObjectKind() const
Determines whether this declaration is the object of a friend declaration and, if so,...
bool isParameterPack() const
Whether this declaration is a parameter pack.
void setInvalidDecl(bool Invalid=true)
setInvalidDecl - Indicates the Decl had a semantic error.
@ FOK_None
Not a friend object.
bool isTemplated() const
Determine whether this declaration is a templated entity (whether it is.
Module * getOwningModule() const
Get the module that owns this declaration (for visibility purposes).
FunctionDecl * getAsFunction() LLVM_READONLY
Returns the function itself, or the templated function if this is a function template.
Module * getImportedOwningModule() const
Get the imported owning module, if this decl is from an imported (non-local) module.
static DeclContext * castToDeclContext(const Decl *)
void setObjectOfFriendDecl(bool PerformFriendInjection=false)
Changes the namespace of this declaration to reflect that it's the object of a friend declaration.
bool isTemplateParameter() const
isTemplateParameter - Determines whether this declaration is a template parameter.
bool isInvalidDecl() const
void setAccess(AccessSpecifier AS)
SourceLocation getLocation() const
bool isTemplateParameterPack() const
isTemplateParameter - Determines whether this declaration is a template parameter pack.
DeclContext * getDeclContext()
AccessSpecifier getAccess() const
SourceLocation getBeginLoc() const LLVM_READONLY
void print(raw_ostream &Out, unsigned Indentation=0, bool PrintInstantiation=false) const
DeclContext * getLexicalDeclContext()
getLexicalDeclContext - The declaration context where this Decl was lexically declared (LexicalDC).
void setLexicalDeclContext(DeclContext *DC)
virtual Decl * getCanonicalDecl()
Retrieves the "canonical" declaration of the given declaration.
virtual SourceRange getSourceRange() const LLVM_READONLY
Source range that this declaration covers.
The name of a declaration.
IdentifierInfo * getAsIdentifierInfo() const
Retrieve the IdentifierInfo * stored in this declaration name, or null if this declaration name isn't...
std::string getAsString() const
Retrieve the human-readable string for this name.
NameKind getNameKind() const
Determine what kind of name this is.
void setTypeSourceInfo(TypeSourceInfo *TI)
TypeSourceInfo * getTypeSourceInfo() const
Information about one declarator, including the parsed type information and the identifier.
const DeclSpec & getDeclSpec() const
getDeclSpec - Return the declaration-specifier that this declarator was declared with.
SourceLocation getIdentifierLoc() const
SourceLocation getEllipsisLoc() const
SourceLocation getBeginLoc() const LLVM_READONLY
UnqualifiedId & getName()
Retrieve the name specified by this declarator.
const CXXScopeSpec & getCXXScopeSpec() const
getCXXScopeSpec - Return the C++ scope specifier (global scope or nested-name-specifier) that is part...
bool isInvalidType() const
SourceRange getSourceRange() const LLVM_READONLY
Get the source range that spans this declarator.
DeclSpec & getMutableDeclSpec()
getMutableDeclSpec - Return a non-const version of the DeclSpec.
const IdentifierInfo * getIdentifier() const
Represents an extended address space qualifier where the input address space value is dependent.
void setNameLoc(SourceLocation Loc)
void setElaboratedKeywordLoc(SourceLocation Loc)
void setQualifierLoc(NestedNameSpecifierLoc QualifierLoc)
A qualified reference to a name whose declaration cannot yet be resolved.
static DependentScopeDeclRefExpr * Create(const ASTContext &Context, NestedNameSpecifierLoc QualifierLoc, SourceLocation TemplateKWLoc, const DeclarationNameInfo &NameInfo, const TemplateArgumentListInfo *TemplateArgs)
Represents an array type in C++ whose size is a value-dependent expression.
Represents an extended vector type where either the type or size is dependent.
Represents a matrix type where the type and the number of rows and columns is dependent on a template...
void setQualifierLoc(NestedNameSpecifierLoc QualifierLoc)
unsigned getNumArgs() const
void setTemplateKeywordLoc(SourceLocation Loc)
void setElaboratedKeywordLoc(SourceLocation Loc)
void setRAngleLoc(SourceLocation Loc)
void setLAngleLoc(SourceLocation Loc)
void setArgLocInfo(unsigned i, TemplateArgumentLocInfo AI)
void setTemplateNameLoc(SourceLocation Loc)
IdentifierOrOverloadedOperator getName() const
Represents a vector type where either the type or size is dependent.
virtual bool TraverseTemplateArgumentLoc(const TemplateArgumentLoc &ArgLoc)
virtual bool TraverseTypeLoc(TypeLoc TL, bool TraverseQualifier=true)
virtual bool TraverseStmt(MaybeConst< Stmt > *S)
virtual bool TraverseTemplateName(TemplateName Template)
RAII object that enters a new expression evaluation context.
MemberSpecializationInfo * getMemberSpecializationInfo() const
If this enumeration is an instantiation of a member enumeration of a class template specialization,...
EnumDecl * getInstantiatedFromMemberEnum() const
Returns the enumeration (declared within the template) from which this enumeration type was instantia...
This represents one expression.
Expr * IgnoreParenCasts() LLVM_READONLY
Skip past any parentheses and casts which might surround this expression until reaching a fixed point...
bool isValueDependent() const
Determines whether the value of this expression depends on.
ExprValueKind getValueKind() const
getValueKind - The value kind that this expression produces.
bool isTypeDependent() const
Determines whether the type of this expression depends on.
Expr * IgnoreParenImpCasts() LLVM_READONLY
Skip past any parentheses and implicit casts which might surround this expression until reaching a fi...
bool isLValue() const
isLValue - True if this expression is an "l-value" according to the rules of the current language.
@ NPC_NeverValueDependent
Specifies that the expression should never be value-dependent.
bool EvaluateAsRValue(EvalResult &Result, const ASTContext &Ctx, bool InConstantContext=false) const
EvaluateAsRValue - Return true if this is a constant which we can fold to an rvalue using any crazy t...
Expr * IgnoreImpCasts() LLVM_READONLY
Skip past any implicit casts which might surround this expression until reaching a fixed point.
NullPointerConstantKind isNullPointerConstant(ASTContext &Ctx, NullPointerConstantValueDependence NPC) const
isNullPointerConstant - C99 6.3.2.3p3 - Test if this reduces down to a Null pointer constant.
SourceLocation getExprLoc() const LLVM_READONLY
getExprLoc - Return the preferred location for the arrow when diagnosing a problem with a generic exp...
ExtVectorType - Extended vector type.
Represents a member of a struct/union/class.
static FixItHint CreateReplacement(CharSourceRange RemoveRange, StringRef Code)
Create a code modification hint that replaces the given source range with the given code string.
static FixItHint CreateRemoval(CharSourceRange RemoveRange)
Create a code modification hint that removes the given source range.
static FixItHint CreateInsertion(SourceLocation InsertionLoc, StringRef Code, bool BeforePreviousInsertions=false)
Create a code modification hint that inserts the given code string at a specific location.
static FixedPointLiteral * CreateFromRawInt(const ASTContext &C, const llvm::APInt &V, QualType type, SourceLocation l, unsigned Scale)
static FloatingLiteral * Create(const ASTContext &C, const llvm::APFloat &V, bool isexact, QualType Type, SourceLocation L)
FriendDecl - Represents the declaration of a friend entity, which can be a function,...
static FriendDecl * Create(ASTContext &C, DeclContext *DC, SourceLocation L, FriendUnion Friend_, SourceLocation FriendL, SourceLocation EllipsisLoc={}, ArrayRef< TemplateParameterList * > FriendTypeTPLists={})
Represents a function declaration or definition.
ConstexprSpecKind getConstexprKind() const
bool isFunctionTemplateSpecialization() const
Determine whether this function is a function template specialization.
SourceLocation getPointOfInstantiation() const
Retrieve the (first) point of instantiation of a function template specialization or a member of a cl...
FunctionTemplateDecl * getPrimaryTemplate() const
Retrieve the primary template that this function template specialization either specializes or was in...
MemberSpecializationInfo * getMemberSpecializationInfo() const
If this function is an instantiation of a member function of a class template specialization,...
FunctionDecl * getCanonicalDecl() override
Retrieves the "canonical" declaration of the given declaration.
bool isDeleted() const
Whether this function has been deleted.
TemplatedKind getTemplatedKind() const
What kind of templated function this is.
void setDependentTemplateSpecialization(ASTContext &Context, const UnresolvedSetImpl &Templates, const TemplateArgumentListInfo *TemplateArgs)
Specifies that this function declaration is actually a dependent function template specialization.
void setLateTemplateParsed(bool ILT=true)
State that this templated function will be late parsed.
TemplateSpecializationKind getTemplateSpecializationKind() const
Determine what kind of template instantiation this function represents.
void setDeletedAsWritten(bool D=true, StringLiteral *Message=nullptr)
FunctionDecl * getInstantiatedFromMemberFunction() const
If this function is an instantiation of a member function of a class template specialization,...
Represents a K&R-style 'int foo()' function, which has no information available about its arguments.
Represents a prototype with parameter type info, e.g.
ExtProtoInfo getExtProtoInfo() const
ArrayRef< QualType > getParamTypes() const
Declaration of a template function.
FunctionDecl * getTemplatedDecl() const
Get the underlying function declaration of the template.
Provides information about a function template specialization, which is a FunctionDecl that has been ...
bool isExplicitSpecialization() const
void setTemplateSpecializationKind(TemplateSpecializationKind TSK)
Set the template specialization kind.
SourceLocation getPointOfInstantiation() const
Retrieve the first point of instantiation of this function template specialization.
TemplateSpecializationKind getTemplateSpecializationKind() const
Determine what kind of template specialization this is.
QualType getReturnType() const
One of these records is kept for each identifier that is lexed.
bool isStr(const char(&Str)[StrLen]) const
Return true if this is the identifier for the specified string.
ImplicitCastExpr - Allows us to explicitly represent implicit type conversions, which have no direct ...
static ImplicitConceptSpecializationDecl * Create(const ASTContext &C, DeclContext *DC, SourceLocation SL, ArrayRef< TemplateArgument > ConvertedArgs)
Represents a C array with an unspecified size.
const TypeClass * getTypePtr() const
Describes an C or C++ initializer list.
Describes the kind of initialization being performed, along with location information for tokens rela...
static InitializationKind CreateForInit(SourceLocation Loc, bool DirectInit, Expr *Init)
Create an initialization from an initializer (which, for direct initialization from a parenthesized l...
ExprResult Perform(Sema &S, const InitializedEntity &Entity, const InitializationKind &Kind, MultiExprArg Args, QualType *ResultType=nullptr)
Perform the actual initialization of the given entity based on the computed initialization sequence.
Describes an entity that is being initialized.
static InitializedEntity InitializeTemplateParameter(QualType T, NamedDecl *Param)
Create the initialization entity for a template parameter.
static IntegerLiteral * Create(const ASTContext &C, const llvm::APInt &V, QualType type, SourceLocation l)
Returns a new integer literal with value 'V' and type 'type'.
An lvalue reference type, per C++11 [dcl.ref].
Represents a linkage specification.
A stack-allocated class that identifies which local variable declaration instantiations are present i...
A class for iterating through a result set and possibly filtering out results.
void erase()
Erase the last element returned from this iterator.
Represents the results of name lookup.
bool wasNotFoundInCurrentInstantiation() const
Determine whether no result was found because we could not search into dependent base classes of the ...
LLVM_ATTRIBUTE_REINITIALIZES void clear()
Clears out any current state.
void setTemplateNameLookup(bool TemplateName)
Sets whether this is a template-name lookup.
DeclClass * getAsSingle() const
bool empty() const
Return true if no decls were found.
SourceLocation getNameLoc() const
Gets the location of the identifier.
Filter makeFilter()
Create a filter for this result set.
NamedDecl * getFoundDecl() const
Fetch the unique decl found by this lookup.
bool isSingleResult() const
Determines if this names a single result which is not an unresolved value using decl.
CXXRecordDecl * getNamingClass() const
Returns the 'naming class' for this lookup, i.e.
Sema::LookupNameKind getLookupKind() const
Gets the kind of lookup to perform.
UnresolvedSetImpl::iterator iterator
NamedDecl * getRepresentativeDecl() const
Fetches a representative decl. Useful for lazy diagnostics.
void suppressDiagnostics()
Suppress the diagnostics that would normally fire because of this lookup.
DeclarationName getLookupName() const
Gets the name to look up.
const DeclarationNameInfo & getLookupNameInfo() const
Gets the name info to look up.
A pointer to member type per C++ 8.3.3 - Pointers to members.
QualType getPointeeType() const
Provides information a specialization of a member of a class template, which may be a member function...
TemplateSpecializationKind getTemplateSpecializationKind() const
Determine what kind of template specialization this is.
SourceLocation getPointOfInstantiation() const
Retrieve the first point of instantiation of this member.
std::string getFullModuleName(bool AllowStringLiterals=false) const
Retrieve the full name of this module, including the path from its top-level module.
Data structure that captures multiple levels of template argument lists for use in template instantia...
const ArgList & getInnermost() const
Retrieve the innermost template argument list.
void addOuterTemplateArguments(Decl *AssociatedDecl, ArgList Args, bool Final)
Add a new outmost level to the multi-level template argument list.
void addOuterRetainedLevels(unsigned Num)
This represents a decl that may have a name.
NamedDecl * getUnderlyingDecl()
Looks through UsingDecls and ObjCCompatibleAliasDecls for the underlying named decl.
IdentifierInfo * getIdentifier() const
Get the identifier that names this declaration, if there is one.
StringRef getName() const
Get the name of identifier for this declaration as a StringRef.
DeclarationName getDeclName() const
Get the actual, stored name of the declaration, which may be a special name.
std::string getQualifiedNameAsString() const
NamedDecl * getMostRecentDecl()
Linkage getFormalLinkage() const
Get the linkage from a semantic point of view.
void setModulePrivate()
Specify that this declaration was marked as being private to the module in which it was defined.
bool hasLinkage() const
Determine whether this declaration has linkage.
Represent a C++ namespace.
A C++ nested-name-specifier augmented with source location information.
NamespaceAndPrefixLoc getAsNamespaceAndPrefix() const
NestedNameSpecifier getNestedNameSpecifier() const
Retrieve the nested-name-specifier to which this instance refers.
TypeLoc castAsTypeLoc() const
For a nested-name-specifier that refers to a type, retrieve the type with source-location information...
Represents a C++ nested name specifier, such as "\::std::vector<int>::".
bool isDependent() const
Whether this nested name specifier refers to a dependent type or not.
const Type * getAsType() const
@ MicrosoftSuper
Microsoft's '__super' specifier, stored as a CXXRecordDecl* of the class it appeared in.
@ Global
The global specifier '::'. There is no stored value.
@ Type
A type, stored as a Type*.
@ Namespace
A namespace-like entity, stored as a NamespaceBaseDecl*.
NonTypeTemplateParmDecl - Declares a non-type template parameter, e.g., "Size" in.
SourceLocation getDefaultArgumentLoc() const
Retrieve the location of the default argument, if any.
bool isPackExpansion() const
Whether this parameter pack is a pack expansion.
bool hasDefaultArgument() const
Determine whether this template parameter has a default argument.
static NonTypeTemplateParmDecl * Create(const ASTContext &C, DeclContext *DC, SourceLocation StartLoc, SourceLocation IdLoc, unsigned D, unsigned P, const IdentifierInfo *Id, QualType T, bool ParameterPack, TypeSourceInfo *TInfo)
unsigned getIndex() const
Get the index of the template parameter within its parameter list.
unsigned getDepth() const
Get the nesting depth of the template parameter.
void setPlaceholderTypeConstraint(Expr *E)
Represents typeof(type), a C23 feature and GCC extension, or `typeof_unqual(type),...
Represents a pointer to an Objective C object.
static OpaquePtr make(TemplateName P)
OpaqueValueExpr - An expression referring to an opaque object of a fixed type and value class.
OverloadCandidateSet - A set of overload candidates, used in C++ overload resolution (C++ 13....
@ CSK_Normal
Normal lookup.
SmallVectorImpl< OverloadCandidate >::iterator iterator
void NoteCandidates(PartialDiagnosticAt PA, Sema &S, OverloadCandidateDisplayKind OCD, ArrayRef< Expr * > Args, StringRef Opc="", SourceLocation Loc=SourceLocation(), llvm::function_ref< bool(OverloadCandidate &)> Filter=[](OverloadCandidate &) { return true;})
When overload resolution fails, prints diagnostic messages containing the candidates in the candidate...
OverloadingResult BestViableFunction(Sema &S, SourceLocation Loc, OverloadCandidateSet::iterator &Best)
Find the best viable function on this overload set, if it exists.
OverloadCandidate & addCandidate(unsigned NumConversions=0, ConversionSequenceList Conversions={})
Add a new candidate with NumConversions conversion sequence slots to the overload set.
bool isVarDeclReference() const
TemplateTemplateParmDecl * getTemplateTemplateDecl() const
bool isConceptReference() const
ArrayRef< TemplateArgumentLoc > template_arguments() const
A structure for storing the information associated with an overloaded template name.
NamedDecl *const * iterator
Represents a C++11 pack expansion that produces a sequence of expressions.
A single parameter index whose accessors require each use to make explicit the parameter index encodi...
ParenExpr - This represents a parenthesized expression, e.g.
ParsedAttr - Represents a syntactic attribute.
Represents the parsed form of a C++ template argument.
ParsedTemplateArgument()
Build an empty template argument.
KindType getKind() const
Determine what kind of template argument we have.
ParsedTemplateTy getAsTemplate() const
Retrieve the template template argument's template name.
ParsedTemplateArgument getTemplatePackExpansion(SourceLocation EllipsisLoc) const
Retrieve a pack expansion of the given template template argument.
ParsedType getAsType() const
Retrieve the template type argument's type.
@ Type
A template type parameter, stored as a type.
@ Template
A template template argument, stored as a template name.
@ NonType
A non-type template parameter, stored as an expression.
SourceLocation getEllipsisLoc() const
Retrieve the location of the ellipsis that makes a template template argument into a pack expansion.
SourceLocation getTemplateKwLoc() const
Retrieve the location of the template argument.
Expr * getAsExpr() const
Retrieve the non-type template argument's expression.
SourceLocation getNameLoc() const
Retrieve the location of the template argument.
const CXXScopeSpec & getScopeSpec() const
Retrieve the nested-name-specifier that precedes the template name in a template template argument.
PointerType - C99 6.7.5.1 - Pointer Declarators.
QualType getPointeeType() const
Engages in a tight little dance with the lexer to efficiently preprocess tokens.
StringRef getImmediateMacroName(SourceLocation Loc)
Retrieve the name of the immediate macro expansion.
bool NeedsStdLibCxxWorkaroundBefore(std::uint64_t FixedVersion)
A (possibly-)qualified type.
bool hasQualifiers() const
Determine whether this type has any qualifiers.
QualType getNonLValueExprType(const ASTContext &Context) const
Determine the type of a (typically non-lvalue) expression with the specified result type.
void addConst()
Add the const type qualifier to this QualType.
bool isNull() const
Return true if this QualType doesn't point to a type yet.
const Type * getTypePtr() const
Retrieves a pointer to the underlying (unqualified) 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
QualType getUnqualifiedType() const
Retrieve the unqualified variant of the given type, removing as little sugar as possible.
QualType getNonPackExpansionType() const
Remove an outer pack expansion type (if any) from this type.
static std::string getAsString(SplitQualType split, const PrintingPolicy &Policy)
The collection of all-type qualifiers we support.
@ OCL_Strong
Assigning into this object requires the old value to be released and the new value to be retained.
void setObjCLifetime(ObjCLifetime type)
An rvalue reference type, per C++11 [dcl.ref].
Represents a struct/union/class.
RecordDecl * getDefinition() const
Returns the RecordDecl that actually defines this struct/union/class.
void setMemberSpecialization()
Note that this member template is a specialization.
void setPreviousDecl(decl_type *PrevDecl)
Set the previous declaration.
Base for LValueReferenceType and RValueReferenceType.
QualType getPointeeType() const
Scope - A scope is a transient data structure that is used while parsing the program.
unsigned getFlags() const
getFlags - Return the flags for this scope.
DeclContext * getEntity() const
Get the entity corresponding to this scope.
bool isTemplateParamScope() const
isTemplateParamScope - Return true if this scope is a C++ template parameter scope.
const Scope * getParent() const
getParent - Return the scope that this is nested in.
Scope * getTemplateParamParent()
@ TemplateParamScope
This is a scope that corresponds to the template parameters of a C++ template.
A generic diagnostic builder for errors which may or may not be deferred.
SemaDiagnosticBuilder DiagCompat(SourceLocation Loc, unsigned CompatDiagId, bool DeferHint=false)
Emit a compatibility diagnostic.
SemaDiagnosticBuilder Diag(SourceLocation Loc, unsigned DiagID, bool DeferHint=false)
Emit a diagnostic.
PartialDiagnostic PDiag(unsigned DiagID=0)
Build a partial diagnostic.
void inheritTargetAttrs(FunctionDecl *FD, const FunctionTemplateDecl &TD)
Copies target attributes from the template TD to the function FD.
RAII object used to change the argument pack substitution index within a Sema object.
RAII object used to temporarily allow the C++ 'this' expression to be used, with the given qualifiers...
Whether and why a template name is required in this lookup.
SourceLocation getTemplateKeywordLoc() const
bool hasTemplateKeyword() const
RAII class used to determine whether SFINAE has trapped any errors that occur during template argumen...
bool hasErrorOccurred() const
Determine whether any SFINAE errors have been trapped.
Abstract base class used for diagnosing integer constant expression violations.
Sema - This implements semantic analysis and AST building for C.
bool hasReachableDefinition(NamedDecl *D, NamedDecl **Suggested, bool OnlyNeedComplete=false)
Determine if D has a reachable definition.
ParsedType CreateParsedType(QualType T, TypeSourceInfo *TInfo)
Package the given type and TSI into a ParsedType.
QualType getCurrentThisType()
Try to retrieve the type of the 'this' pointer.
DeclResult ActOnClassTemplateSpecialization(Scope *S, unsigned TagSpec, TagUseKind TUK, SourceLocation KWLoc, SourceLocation ModulePrivateLoc, CXXScopeSpec &SS, TemplateIdAnnotation &TemplateId, const ParsedAttributesView &Attr, MultiTemplateParamsArg TemplateParameterLists, SkipBodyInfo *SkipBody=nullptr)
ConceptDecl * ActOnStartConceptDefinition(Scope *S, MultiTemplateParamsArg TemplateParameterLists, const IdentifierInfo *Name, SourceLocation NameLoc)
SmallVector< CodeSynthesisContext, 16 > CodeSynthesisContexts
List of active code synthesis contexts.
LocalInstantiationScope * CurrentInstantiationScope
The current instantiation scope used to store local variables.
sema::CapturingScopeInfo * getEnclosingLambdaOrBlock() const
Get the innermost lambda or block enclosing the current location, if any.
TemplateArgumentLoc getTrivialTemplateArgumentLoc(const TemplateArgument &Arg, QualType NTTPType, SourceLocation Loc, NamedDecl *TemplateParam=nullptr)
Allocate a TemplateArgumentLoc where all locations have been initialized to the given location.
bool isDeclInScope(NamedDecl *D, DeclContext *Ctx, Scope *S=nullptr, bool AllowInlineNamespace=false) const
isDeclInScope - If 'Ctx' is a function/method, isDeclInScope returns true if 'D' is in Scope 'S',...
ExprResult CreateBuiltinUnaryOp(SourceLocation OpLoc, UnaryOperatorKind Opc, Expr *InputExpr, bool IsAfterAmp=false)
LookupNameKind
Describes the kind of name lookup to perform.
@ LookupOrdinaryName
Ordinary name lookup, which finds ordinary names (functions, variables, typedefs, etc....
@ LookupMemberName
Member name lookup, which finds the names of class/struct/union members.
@ LookupTagName
Tag name lookup, which finds the names of enums, classes, structs, and unions.
ExprResult ActOnConstantExpression(ExprResult Res)
bool LookupTemplateName(LookupResult &R, Scope *S, CXXScopeSpec &SS, QualType ObjectType, bool EnteringContext, RequiredTemplateKind RequiredTemplate=SourceLocation(), AssumedTemplateKind *ATK=nullptr, bool AllowTypoCorrection=true)
bool SetMemberAccessSpecifier(NamedDecl *MemberDecl, NamedDecl *PrevMemberDecl, AccessSpecifier LexicalAS)
SetMemberAccessSpecifier - Set the access specifier of a member.
bool BuildTypeConstraint(const CXXScopeSpec &SS, TemplateIdAnnotation *TypeConstraint, TemplateTypeParmDecl *ConstrainedParameter, SourceLocation EllipsisLoc, bool AllowUnexpandedPack)
NonTagKind getNonTagTypeDeclKind(const Decl *D, TagTypeKind TTK)
Given a non-tag type declaration, returns an enum useful for indicating what kind of non-tag type thi...
bool diagnoseQualifiedDeclaration(CXXScopeSpec &SS, DeclContext *DC, DeclarationName Name, SourceLocation Loc, TemplateIdAnnotation *TemplateId, bool IsMemberSpecialization)
Diagnose a declaration whose declarator-id has the given nested-name-specifier.
TemplateParameterList * ActOnTemplateParameterList(unsigned Depth, SourceLocation ExportLoc, SourceLocation TemplateLoc, SourceLocation LAngleLoc, ArrayRef< NamedDecl * > Params, SourceLocation RAngleLoc, Expr *RequiresClause)
ActOnTemplateParameterList - Builds a TemplateParameterList, optionally constrained by RequiresClause...
bool ActOnTypeConstraint(const CXXScopeSpec &SS, TemplateIdAnnotation *TypeConstraint, TemplateTypeParmDecl *ConstrainedParameter, SourceLocation EllipsisLoc)
bool hasVisibleDeclaration(const NamedDecl *D, llvm::SmallVectorImpl< Module * > *Modules=nullptr)
Determine whether any declaration of an entity is visible.
bool DiagnoseClassNameShadow(DeclContext *DC, DeclarationNameInfo Info)
DiagnoseClassNameShadow - Implement C++ [class.mem]p13: If T is the name of a class,...
void NoteAllFoundTemplates(TemplateName Name)
TemplateName SubstTemplateName(SourceLocation TemplateKWLoc, NestedNameSpecifierLoc &QualifierLoc, TemplateName Name, SourceLocation NameLoc, const MultiLevelTemplateArgumentList &TemplateArgs)
TypeResult ActOnDependentTag(Scope *S, unsigned TagSpec, TagUseKind TUK, const CXXScopeSpec &SS, const IdentifierInfo *Name, SourceLocation TagLoc, SourceLocation NameLoc)
TemplateDecl * AdjustDeclIfTemplate(Decl *&Decl)
AdjustDeclIfTemplate - If the given decl happens to be a template, reset the parameter D to reference...
void InstantiateClassTemplateSpecializationMembers(SourceLocation PointOfInstantiation, ClassTemplateSpecializationDecl *ClassTemplateSpec, TemplateSpecializationKind TSK)
Instantiate the definitions of all of the members of the given class template specialization,...
bool RequireCompleteDeclContext(CXXScopeSpec &SS, DeclContext *DC)
Require that the context specified by SS be complete.
bool TemplateParameterListsAreEqual(const TemplateCompareNewDeclInfo &NewInstFrom, TemplateParameterList *New, const NamedDecl *OldInstFrom, TemplateParameterList *Old, bool Complain, TemplateParameterListEqualKind Kind, SourceLocation TemplateArgLoc=SourceLocation())
Determine whether the given template parameter lists are equivalent.
ExprResult RebuildExprInCurrentInstantiation(Expr *E)
DeclResult ActOnVarTemplateSpecialization(Scope *S, Declarator &D, TypeSourceInfo *DI, LookupResult &Previous, SourceLocation TemplateKWLoc, TemplateParameterList *TemplateParams, StorageClass SC, bool IsPartialSpecialization)
ClassTemplatePartialSpecializationDecl * getMoreSpecializedPartialSpecialization(ClassTemplatePartialSpecializationDecl *PS1, ClassTemplatePartialSpecializationDecl *PS2, SourceLocation Loc)
Returns the more specialized class template partial specialization according to the rules of partial ...
FunctionDecl * getMoreConstrainedFunction(FunctionDecl *FD1, FunctionDecl *FD2)
Returns the more constrained function according to the rules of partial ordering by constraints (C++ ...
void referenceDLLExportedClassMethods()
static NamedDecl * getAsTemplateNameDecl(NamedDecl *D, bool AllowFunctionTemplates=true, bool AllowDependent=true)
Try to interpret the lookup result D as a template-name.
NamedDecl * HandleDeclarator(Scope *S, Declarator &D, MultiTemplateParamsArg TemplateParameterLists)
TemplateParameterList * MatchTemplateParametersToScopeSpecifier(SourceLocation DeclStartLoc, SourceLocation DeclLoc, const CXXScopeSpec &SS, TemplateIdAnnotation *TemplateId, ArrayRef< TemplateParameterList * > ParamLists, bool IsFriend, bool &IsMemberSpecialization, bool &Invalid, bool SuppressDiagnostic=false)
Match the given template parameter lists to the given scope specifier, returning the template paramet...
void AddAlignmentAttributesForRecord(RecordDecl *RD)
AddAlignmentAttributesForRecord - Adds any needed alignment attributes to a the record decl,...
bool RequireStructuralType(QualType T, SourceLocation Loc)
Require the given type to be a structural type, and diagnose if it is not.
VarTemplateSpecializationDecl * BuildVarTemplateInstantiation(VarTemplateDecl *VarTemplate, VarDecl *FromVar, const TemplateArgumentList *PartialSpecArgs, SmallVectorImpl< TemplateArgument > &Converted, SourceLocation PointOfInstantiation, LateInstantiatedAttrVec *LateAttrs=nullptr, LocalInstantiationScope *StartingScope=nullptr)
ExprResult EvaluateConvertedConstantExpression(Expr *E, QualType T, APValue &Value, CCEKind CCE, bool RequireInt, const APValue &PreNarrowingValue)
EvaluateConvertedConstantExpression - Evaluate an Expression That is a converted constant expression ...
ConceptDecl * ActOnFinishConceptDefinition(Scope *S, ConceptDecl *C, Expr *ConstraintExpr, const ParsedAttributesView &Attrs)
FPOptionsOverride CurFPFeatureOverrides()
ExprResult ActOnDependentIdExpression(const CXXScopeSpec &SS, SourceLocation TemplateKWLoc, const DeclarationNameInfo &NameInfo, bool isAddressOfOperand, const TemplateArgumentListInfo *TemplateArgs)
ActOnDependentIdExpression - Handle a dependent id-expression that was just parsed.
bool hasVisibleExplicitSpecialization(const NamedDecl *D, llvm::SmallVectorImpl< Module * > *Modules=nullptr)
Determine if there is a visible declaration of D that is an explicit specialization declaration for a...
bool IsInsideALocalClassWithinATemplateFunction()
Decl * ActOnTemplateDeclarator(Scope *S, MultiTemplateParamsArg TemplateParameterLists, Declarator &D)
NamedDecl * LookupSingleName(Scope *S, DeclarationName Name, SourceLocation Loc, LookupNameKind NameKind, RedeclarationKind Redecl=RedeclarationKind::NotForRedeclaration)
Look up a name, looking for a single declaration.
bool CheckConceptUseInDefinition(NamedDecl *Concept, SourceLocation Loc)
LateParsedTemplateMapT LateParsedTemplateMap
void UnmarkAsLateParsedTemplate(FunctionDecl *FD)
CheckTemplateArgumentKind
Specifies the context in which a particular template argument is being checked.
@ CTAK_Specified
The template argument was specified in the code or was instantiated with some deduced template argume...
@ CTAK_Deduced
The template argument was deduced via template argument deduction.
void CheckTemplatePartialSpecialization(ClassTemplatePartialSpecializationDecl *Partial)
TemplateNameKind isTemplateName(Scope *S, CXXScopeSpec &SS, bool hasTemplateKeyword, const UnqualifiedId &Name, ParsedType ObjectType, bool EnteringContext, TemplateTy &Template, bool &MemberOfUnknownSpecialization, bool Disambiguation=false)
QualType CheckTemplateIdType(ElaboratedTypeKeyword Keyword, TemplateName Template, SourceLocation TemplateLoc, TemplateArgumentListInfo &TemplateArgs)
ParsedTemplateArgument ActOnTemplateTypeArgument(TypeResult ParsedType)
Convert a parsed type into a parsed template argument.
bool DiagnoseUnknownTemplateName(const IdentifierInfo &II, SourceLocation IILoc, Scope *S, const CXXScopeSpec *SS, TemplateTy &SuggestedTemplate, TemplateNameKind &SuggestedKind)
bool InstantiateClassTemplateSpecialization(SourceLocation PointOfInstantiation, ClassTemplateSpecializationDecl *ClassTemplateSpec, TemplateSpecializationKind TSK, bool Complain, bool PrimaryStrictPackMatch)
bool IsQualificationConversion(QualType FromType, QualType ToType, bool CStyle, bool &ObjCLifetimeConversion)
IsQualificationConversion - Determines whether the conversion from an rvalue of type FromType to ToTy...
bool ConstraintExpressionDependsOnEnclosingTemplate(const FunctionDecl *Friend, unsigned TemplateDepth, const Expr *Constraint)
bool CheckTemplatePartialSpecializationArgs(SourceLocation Loc, TemplateDecl *PrimaryTemplate, unsigned NumExplicitArgs, ArrayRef< TemplateArgument > Args)
Check the non-type template arguments of a class template partial specialization according to C++ [te...
DeclarationNameInfo GetNameForDeclarator(Declarator &D)
GetNameForDeclarator - Determine the full declaration name for the given Declarator.
DiagnosticsEngine & getDiagnostics() const
ExprResult BuildExpressionFromNonTypeTemplateArgument(const TemplateArgument &Arg, SourceLocation Loc)
void propagateDLLAttrToBaseClassTemplate(CXXRecordDecl *Class, Attr *ClassAttr, ClassTemplateSpecializationDecl *BaseTemplateSpec, SourceLocation BaseLoc)
Perform propagation of DLL attributes from a derived class to a templated base class for MS compatibi...
bool isRedefinitionAllowedFor(NamedDecl *D, NamedDecl **Suggested, bool &Visible)
Determine if D has a definition which allows we redefine it in current TU.
FunctionDecl * ResolveAddressOfOverloadedFunction(Expr *AddressOfExpr, QualType TargetType, bool Complain, DeclAccessPair &Found, bool *pHadMultipleCandidates=nullptr)
ResolveAddressOfOverloadedFunction - Try to resolve the address of an overloaded function (C++ [over....
void PushOnScopeChains(NamedDecl *D, Scope *S, bool AddToContext=true)
Add this decl to the scope shadowed decl chains.
void checkSpecializationReachability(SourceLocation Loc, NamedDecl *Spec)
bool hasVisibleDefaultArgument(const NamedDecl *D, llvm::SmallVectorImpl< Module * > *Modules=nullptr)
Determine if the template parameter D has a visible default argument.
ASTContext & getASTContext() const
void translateTemplateArguments(const ASTTemplateArgsPtr &In, TemplateArgumentListInfo &Out)
Translates template arguments as provided by the parser into template arguments used by semantic anal...
UnresolvedSetIterator getMostSpecialized(UnresolvedSetIterator SBegin, UnresolvedSetIterator SEnd, TemplateSpecCandidateSet &FailedCandidates, SourceLocation Loc, const PartialDiagnostic &NoneDiag, const PartialDiagnostic &AmbigDiag, const PartialDiagnostic &CandidateDiag, bool Complain=true, QualType TargetType=QualType())
Retrieve the most specialized of the given function template specializations.
bool IsIntegralPromotion(Expr *From, QualType FromType, QualType ToType)
IsIntegralPromotion - Determines whether the conversion from the expression From (whose potentially-a...
TypeSourceInfo * SubstType(TypeSourceInfo *T, const MultiLevelTemplateArgumentList &TemplateArgs, SourceLocation Loc, DeclarationName Entity, bool AllowDeducedTST=false)
Perform substitution on the type T with a given set of template arguments.
bool IsRedefinitionInModule(const NamedDecl *New, const NamedDecl *Old) const
Check the redefinition in C++20 Modules.
ExprResult BuildTemplateIdExpr(const CXXScopeSpec &SS, SourceLocation TemplateKWLoc, LookupResult &R, bool RequiresADL, const TemplateArgumentListInfo *TemplateArgs)
ExprResult ImpCastExprToType(Expr *E, QualType Type, CastKind CK, ExprValueKind VK=VK_PRValue, const CXXCastPath *BasePath=nullptr, CheckedConversionKind CCK=CheckedConversionKind::Implicit)
ImpCastExprToType - If Expr is not of type 'Type', insert an implicit cast.
TemplateParameterList * GetTemplateParameterList(TemplateDecl *TD)
Returns the template parameter list with all default template argument information.
void InstantiateVariableDefinition(SourceLocation PointOfInstantiation, VarDecl *Var, bool Recursive=false, bool DefinitionRequired=false, bool AtEndOfTU=false)
Instantiate the definition of the given variable from its template.
void MarkAsLateParsedTemplate(FunctionDecl *FD, Decl *FnD, CachedTokens &Toks)
bool isTemplateTemplateParameterAtLeastAsSpecializedAs(TemplateParameterList *PParam, TemplateDecl *PArg, TemplateDecl *AArg, const DefaultArguments &DefaultArgs, SourceLocation ArgLoc, bool PartialOrdering, bool *StrictPackMatch)
bool RequireLiteralType(SourceLocation Loc, QualType T, TypeDiagnoser &Diagnoser)
Ensure that the type T is a literal type.
PrintingPolicy getPrintingPolicy() const
Retrieve a suitable printing policy for diagnostics.
bool CheckDeclCompatibleWithTemplateTemplate(TemplateDecl *Template, TemplateTemplateParmDecl *Param, const TemplateArgumentLoc &Arg)
bool isAcceptableTagRedeclaration(const TagDecl *Previous, TagTypeKind NewTag, bool isDefinition, SourceLocation NewTagLoc, const IdentifierInfo *Name)
Determine whether a tag with a given kind is acceptable as a redeclaration of the given tag declarati...
DeclRefExpr * BuildDeclRefExpr(ValueDecl *D, QualType Ty, ExprValueKind VK, SourceLocation Loc, const CXXScopeSpec *SS=nullptr)
ExprResult CheckConvertedConstantExpression(Expr *From, QualType T, llvm::APSInt &Value, CCEKind CCE)
ExprResult BuildCXXFoldExpr(UnresolvedLookupExpr *Callee, SourceLocation LParenLoc, Expr *LHS, BinaryOperatorKind Operator, SourceLocation EllipsisLoc, Expr *RHS, SourceLocation RParenLoc, UnsignedOrNone NumExpansions)
unsigned NumSFINAEErrors
The number of SFINAE diagnostics that have been trapped.
TemplateParameterListEqualKind
Enumeration describing how template parameter lists are compared for equality.
@ TPL_TemplateTemplateParmMatch
We are matching the template parameter lists of two template template parameters as part of matching ...
@ TPL_TemplateMatch
We are matching the template parameter lists of two templates that might be redeclarations.
@ TPL_TemplateParamsEquivalent
We are determining whether the template-parameters are equivalent according to C++ [temp....
NamedDecl * ActOnTypeParameter(Scope *S, bool Typename, SourceLocation EllipsisLoc, SourceLocation KeyLoc, IdentifierInfo *ParamName, SourceLocation ParamNameLoc, unsigned Depth, unsigned Position, SourceLocation EqualLoc, ParsedType DefaultArg, bool HasTypeConstraint)
ActOnTypeParameter - Called when a C++ template type parameter (e.g., "typename T") has been parsed.
bool CheckFunctionTemplateSpecialization(FunctionDecl *FD, TemplateArgumentListInfo *ExplicitTemplateArgs, LookupResult &Previous, bool QualifiedFriend=false)
Perform semantic analysis for the given function template specialization.
@ FoundFunctions
This is assumed to be a template name because lookup found one or more functions (but no function tem...
@ None
This is not assumed to be a template name.
@ FoundNothing
This is assumed to be a template name because lookup found nothing.
bool CheckTemplateArgument(NamedDecl *Param, TemplateArgumentLoc &Arg, NamedDecl *Template, SourceLocation TemplateLoc, SourceLocation RAngleLoc, unsigned ArgumentPackIndex, CheckTemplateArgumentInfo &CTAI, CheckTemplateArgumentKind CTAK)
Check that the given template argument corresponds to the given template parameter.
bool RebuildNestedNameSpecifierInCurrentInstantiation(CXXScopeSpec &SS)
ArrayRef< InventedTemplateParameterInfo > getInventedParameterInfos() const
void inferGslOwnerPointerAttribute(CXXRecordDecl *Record)
Add [[gsl::Owner]] and [[gsl::Pointer]] attributes for std:: types.
NamedDecl * ActOnTemplateTemplateParameter(Scope *S, SourceLocation TmpLoc, TemplateNameKind Kind, bool TypenameKeyword, TemplateParameterList *Params, SourceLocation EllipsisLoc, IdentifierInfo *ParamName, SourceLocation ParamNameLoc, unsigned Depth, unsigned Position, SourceLocation EqualLoc, ParsedTemplateArgument DefaultArg)
ActOnTemplateTemplateParameter - Called when a C++ template template parameter (e....
FPOptions & getCurFPFeatures()
Sema(Preprocessor &pp, ASTContext &ctxt, ASTConsumer &consumer, TranslationUnitKind TUKind=TU_Complete, CodeCompleteConsumer *CompletionConsumer=nullptr)
SourceLocation getLocForEndOfToken(SourceLocation Loc, unsigned Offset=0)
Calls Lexer::getLocForEndOfToken()
bool EnsureTemplateArgumentListConstraints(TemplateDecl *Template, const MultiLevelTemplateArgumentList &TemplateArgs, SourceRange TemplateIDRange)
Ensure that the given template arguments satisfy the constraints associated with the given template,...
@ UPPC_PartialSpecialization
Partial specialization.
@ UPPC_DefaultArgument
A default argument.
@ UPPC_ExplicitSpecialization
Explicit specialization.
@ UPPC_NonTypeTemplateParameterType
The type of a non-type template parameter.
@ UPPC_TypeConstraint
A type constraint.
const LangOptions & getLangOpts() const
void DiagnoseTemplateParameterShadow(SourceLocation Loc, Decl *PrevDecl, bool SupportedForCompatibility=false)
DiagnoseTemplateParameterShadow - Produce a diagnostic complaining that the template parameter 'PrevD...
TypoCorrection CorrectTypo(const DeclarationNameInfo &Typo, Sema::LookupNameKind LookupKind, Scope *S, CXXScopeSpec *SS, CorrectionCandidateCallback &CCC, CorrectTypoKind Mode, DeclContext *MemberContext=nullptr, bool EnteringContext=false, const ObjCObjectPointerType *OPT=nullptr, bool RecordFailure=true)
Try to "correct" a typo in the source code by finding visible declarations whose names are similar to...
bool RebuildTemplateParamsInCurrentInstantiation(TemplateParameterList *Params)
Rebuild the template parameters now that we know we're in a current instantiation.
bool CheckConstraintSatisfaction(const NamedDecl *Template, ArrayRef< AssociatedConstraint > AssociatedConstraints, const MultiLevelTemplateArgumentList &TemplateArgLists, SourceRange TemplateIDRange, ConstraintSatisfaction &Satisfaction)
Check whether the given list of constraint expressions are satisfied (as if in a 'conjunction') given...
void EnterTemplatedContext(Scope *S, DeclContext *DC)
Enter a template parameter scope, after it's been associated with a particular DeclContext.
const FunctionProtoType * ResolveExceptionSpec(SourceLocation Loc, const FunctionProtoType *FPT)
void NoteTemplateLocation(const NamedDecl &Decl, std::optional< SourceRange > ParamRange={})
bool LookupParsedName(LookupResult &R, Scope *S, CXXScopeSpec *SS, QualType ObjectType, bool AllowBuiltinCreation=false, bool EnteringContext=false)
Performs name lookup for a name that was parsed in the source code, and may contain a C++ scope speci...
bool isPotentialImplicitMemberAccess(const CXXScopeSpec &SS, LookupResult &R, bool IsAddressOfOperand)
Check whether an expression might be an implicit class member access.
void collectUnexpandedParameterPacks(TemplateArgument Arg, SmallVectorImpl< UnexpandedParameterPack > &Unexpanded)
Collect the set of unexpanded parameter packs within the given template argument.
bool DiagnoseUnexpandedParameterPack(SourceLocation Loc, TypeSourceInfo *T, UnexpandedParameterPackContext UPPC)
If the given type contains an unexpanded parameter pack, diagnose the error.
bool hasVisibleMemberSpecialization(const NamedDecl *D, llvm::SmallVectorImpl< Module * > *Modules=nullptr)
Determine if there is a visible declaration of D that is a member specialization declaration (as oppo...
void checkClassLevelDLLAttribute(CXXRecordDecl *Class)
Check class-level dllimport/dllexport attribute.
const LangOptions & LangOpts
void InstantiateClassMembers(SourceLocation PointOfInstantiation, CXXRecordDecl *Instantiation, const MultiLevelTemplateArgumentList &TemplateArgs, TemplateSpecializationKind TSK)
Instantiates the definitions of all of the member of the given class, which is an instantiation of a ...
std::pair< Expr *, std::string > findFailedBooleanCondition(Expr *Cond)
Find the failed Boolean condition within a given Boolean constant expression, and describe it with a ...
QualType CheckTypenameType(ElaboratedTypeKeyword Keyword, SourceLocation KeywordLoc, NestedNameSpecifierLoc QualifierLoc, const IdentifierInfo &II, SourceLocation IILoc, TypeSourceInfo **TSI, bool DeducedTSTContext)
void MarkAnyDeclReferenced(SourceLocation Loc, Decl *D, bool MightBeOdrUse)
Perform marking for a reference to an arbitrary declaration.
void ProcessDeclAttributeList(Scope *S, Decl *D, const ParsedAttributesView &AttrList, const ProcessDeclAttributeOptions &Options=ProcessDeclAttributeOptions())
ProcessDeclAttributeList - Apply all the decl attributes in the specified attribute list to the speci...
void MarkVTableUsed(SourceLocation Loc, CXXRecordDecl *Class, bool DefinitionRequired=false)
Note that the vtable for the given class was used at the given location.
bool hasAnyAcceptableTemplateNames(LookupResult &R, bool AllowFunctionTemplates=true, bool AllowDependent=true, bool AllowNonTemplateFunctions=false)
ExprResult BuildConvertedConstantExpression(Expr *From, QualType T, CCEKind CCE, NamedDecl *Dest=nullptr)
bool CheckDependentFunctionTemplateSpecialization(FunctionDecl *FD, const TemplateArgumentListInfo *ExplicitTemplateArgs, LookupResult &Previous)
Perform semantic analysis for the given dependent function template specialization.
bool hasExplicitCallingConv(QualType T)
bool CheckTemplateTypeArgument(TemplateTypeParmDecl *Param, TemplateArgumentLoc &Arg, SmallVectorImpl< TemplateArgument > &SugaredConverted, SmallVectorImpl< TemplateArgument > &CanonicalConverted)
bool AreConstraintExpressionsEqual(const NamedDecl *Old, const Expr *OldConstr, const TemplateCompareNewDeclInfo &New, const Expr *NewConstr)
void AddPushedVisibilityAttribute(Decl *RD)
AddPushedVisibilityAttribute - If '#pragma GCC visibility' was used, add an appropriate visibility at...
std::optional< sema::TemplateDeductionInfo * > isSFINAEContext() const
Determines whether we are currently in a context where template argument substitution failures are no...
DeclResult CheckClassTemplate(Scope *S, unsigned TagSpec, TagUseKind TUK, SourceLocation KWLoc, CXXScopeSpec &SS, IdentifierInfo *Name, SourceLocation NameLoc, const ParsedAttributesView &Attr, TemplateParameterList *TemplateParams, AccessSpecifier AS, SourceLocation ModulePrivateLoc, SourceLocation FriendLoc, unsigned NumOuterTemplateParamLists, TemplateParameterList **OuterTemplateParamLists, SkipBodyInfo *SkipBody=nullptr)
QualType DeduceTemplateSpecializationFromInitializer(TypeSourceInfo *TInfo, const InitializedEntity &Entity, const InitializationKind &Kind, MultiExprArg Init)
ExprResult DefaultLvalueConversion(Expr *E)
ExprResult BuildDeclarationNameExpr(const CXXScopeSpec &SS, LookupResult &R, bool NeedsADL, bool AcceptInvalidDecl=false)
void NoteOverloadCandidate(const NamedDecl *Found, const FunctionDecl *Fn, OverloadCandidateRewriteKind RewriteKind=OverloadCandidateRewriteKind(), QualType DestType=QualType(), bool TakingAddress=false)
bool hasReachableDefaultArgument(const NamedDecl *D, llvm::SmallVectorImpl< Module * > *Modules=nullptr)
Determine if the template parameter D has a reachable default argument.
DeclContext * CurContext
CurContext - This is the current declaration context of parsing.
MultiLevelTemplateArgumentList getTemplateInstantiationArgs(const NamedDecl *D, const DeclContext *DC=nullptr, bool Final=false, std::optional< ArrayRef< TemplateArgument > > Innermost=std::nullopt, bool RelativeToPrimary=false, const FunctionDecl *Pattern=nullptr, bool ForConstraintInstantiation=false, bool SkipForSpecialization=false, bool ForDefaultArgumentSubstitution=false)
Retrieve the template argument list(s) that should be used to instantiate the definition of the given...
void ActOnDocumentableDecl(Decl *D)
Should be called on all declarations that might have attached documentation comments.
DeclarationNameInfo GetNameFromUnqualifiedId(const UnqualifiedId &Name)
Retrieves the declaration name from a parsed unqualified-id.
TypeSourceInfo * RebuildTypeInCurrentInstantiation(TypeSourceInfo *T, SourceLocation Loc, DeclarationName Name)
Rebuilds a type within the context of the current instantiation.
QualType BuiltinDecay(QualType BaseType, SourceLocation Loc)
void CompleteMemberSpecialization(NamedDecl *Member, LookupResult &Previous)
bool CheckFunctionConstraints(const FunctionDecl *FD, ConstraintSatisfaction &Satisfaction, SourceLocation UsageLoc=SourceLocation(), bool ForOverloadResolution=false)
Check whether the given function decl's trailing requires clause is satisfied, if any.
TemplateNameKindForDiagnostics getTemplateNameKindForDiagnostics(TemplateName Name)
void notePreviousDefinition(const NamedDecl *Old, SourceLocation New)
bool CheckSpecializationInstantiationRedecl(SourceLocation NewLoc, TemplateSpecializationKind ActOnExplicitInstantiationNewTSK, NamedDecl *PrevDecl, TemplateSpecializationKind PrevTSK, SourceLocation PrevPtOfInstantiation, bool &SuppressNew)
Diagnose cases where we have an explicit template specialization before/after an explicit template in...
bool CheckTypeConstraint(TemplateIdAnnotation *TypeConstraint)
TemplateNameKind ActOnTemplateName(Scope *S, CXXScopeSpec &SS, SourceLocation TemplateKWLoc, const UnqualifiedId &Name, ParsedType ObjectType, bool EnteringContext, TemplateTy &Template, bool AllowInjectedClassName=false)
Form a template name from a name that is syntactically required to name a template,...
void diagnoseExprIntendedAsTemplateName(Scope *S, ExprResult TemplateName, SourceLocation Less, SourceLocation Greater)
ExprResult FixOverloadedFunctionReference(Expr *E, DeclAccessPair FoundDecl, FunctionDecl *Fn)
FixOverloadedFunctionReference - E is an expression that refers to a C++ overloaded function (possibl...
bool IsFunctionConversion(QualType FromType, QualType ToType, bool *DiscardingCFIUncheckedCallee=nullptr, bool *AddingCFIUncheckedCallee=nullptr) const
Determine whether the conversion from FromType to ToType is a valid conversion that strips "noexcept"...
ExprResult BuildPossibleImplicitMemberExpr(const CXXScopeSpec &SS, SourceLocation TemplateKWLoc, LookupResult &R, const TemplateArgumentListInfo *TemplateArgs, const Scope *S)
Builds an expression which might be an implicit member expression.
DeclContext * computeDeclContext(QualType T)
Compute the DeclContext that is associated with the given type.
QualType CheckNonTypeTemplateParameterType(TypeSourceInfo *&TSI, SourceLocation Loc)
Check that the type of a non-type template parameter is well-formed.
void diagnoseMissingImport(SourceLocation Loc, const NamedDecl *Decl, MissingImportKind MIK, bool Recover=true)
Diagnose that the specified declaration needs to be visible but isn't, and suggest a module import th...
bool AttachTypeConstraint(NestedNameSpecifierLoc NS, DeclarationNameInfo NameInfo, TemplateDecl *NamedConcept, NamedDecl *FoundDecl, const TemplateArgumentListInfo *TemplateArgs, TemplateTypeParmDecl *ConstrainedParameter, SourceLocation EllipsisLoc)
Attach a type-constraint to a template parameter.
TemplateArgumentLoc SubstDefaultTemplateArgumentIfAvailable(TemplateDecl *Template, SourceLocation TemplateKWLoc, SourceLocation TemplateNameLoc, SourceLocation RAngleLoc, Decl *Param, ArrayRef< TemplateArgument > SugaredConverted, ArrayRef< TemplateArgument > CanonicalConverted, bool &HasDefaultArg)
If the given template parameter has a default template argument, substitute into that default templat...
void FilterAcceptableTemplateNames(LookupResult &R, bool AllowFunctionTemplates=true, bool AllowDependent=true)
TypeSourceInfo * SubstAutoTypeSourceInfoDependent(TypeSourceInfo *TypeWithAuto)
bool CheckTemplateDeclScope(Scope *S, TemplateParameterList *TemplateParams)
Check whether a template can be declared within this scope.
void AddMsStructLayoutForRecord(RecordDecl *RD)
AddMsStructLayoutForRecord - Adds ms_struct layout attribute to record.
TemplateParameterList * SubstTemplateParams(TemplateParameterList *Params, DeclContext *Owner, const MultiLevelTemplateArgumentList &TemplateArgs, bool EvaluateConstraints=true)
SourceLocation getTopMostPointOfInstantiation(const NamedDecl *) const
Returns the top most location responsible for the definition of N.
bool DiagnoseUseOfDecl(NamedDecl *D, ArrayRef< SourceLocation > Locs, const ObjCInterfaceDecl *UnknownObjCClass=nullptr, bool ObjCPropertyAccess=false, bool AvoidPartialAvailabilityChecks=false, ObjCInterfaceDecl *ClassReciever=nullptr, bool SkipTrailingRequiresClause=false)
Determine whether the use of this declaration is valid, and emit any corresponding diagnostics.
ParsedTemplateArgument ActOnPackExpansion(const ParsedTemplateArgument &Arg, SourceLocation EllipsisLoc)
Invoked when parsing a template argument followed by an ellipsis, which creates a pack expansion.
void ActOnUndeclaredTypeTemplateName(Scope *S, TemplateTy &Name, TemplateNameKind &TNK, SourceLocation NameLoc, IdentifierInfo *&II)
Try to resolve an undeclared template name as a type template.
bool CheckMemberSpecialization(NamedDecl *Member, LookupResult &Previous)
Perform semantic analysis for the given non-template member specialization.
TypeResult ActOnTypenameType(Scope *S, SourceLocation TypenameLoc, const CXXScopeSpec &SS, const IdentifierInfo &II, SourceLocation IdLoc, ImplicitTypenameContext IsImplicitTypename=ImplicitTypenameContext::No)
Called when the parser has parsed a C++ typename specifier, e.g., "typename T::type".
bool isCompleteType(SourceLocation Loc, QualType T, CompleteTypeKind Kind=CompleteTypeKind::Default)
bool InstantiateClass(SourceLocation PointOfInstantiation, CXXRecordDecl *Instantiation, CXXRecordDecl *Pattern, const MultiLevelTemplateArgumentList &TemplateArgs, TemplateSpecializationKind TSK, bool Complain=true)
Instantiate the definition of a class from a given pattern.
bool hasReachableMemberSpecialization(const NamedDecl *D, llvm::SmallVectorImpl< Module * > *Modules=nullptr)
Determine if there is a reachable declaration of D that is a member specialization declaration (as op...
RedeclarationKind forRedeclarationInCurContext() const
bool SubstTemplateArgument(const TemplateArgumentLoc &Input, const MultiLevelTemplateArgumentList &TemplateArgs, TemplateArgumentLoc &Output, SourceLocation Loc={}, const DeclarationName &Entity={})
void InstantiateFunctionDefinition(SourceLocation PointOfInstantiation, FunctionDecl *Function, bool Recursive=false, bool DefinitionRequired=false, bool AtEndOfTU=false)
Instantiate the definition of the given function from its template.
void InstantiateAttrsForDecl(const MultiLevelTemplateArgumentList &TemplateArgs, const Decl *Pattern, Decl *Inst, LateInstantiatedAttrVec *LateAttrs=nullptr, LocalInstantiationScope *OuterMostScope=nullptr)
void MarkUnusedFileScopedDecl(const DeclaratorDecl *D)
If it's a file scoped decl that must warn if not used, keep track of it.
ExprResult VerifyIntegerConstantExpression(Expr *E, llvm::APSInt *Result, VerifyICEDiagnoser &Diagnoser, AllowFoldKind CanFold=AllowFoldKind::No)
VerifyIntegerConstantExpression - Verifies that an expression is an ICE, and reports the appropriate ...
ExprResult BuildQualifiedTemplateIdExpr(CXXScopeSpec &SS, SourceLocation TemplateKWLoc, const DeclarationNameInfo &NameInfo, const TemplateArgumentListInfo *TemplateArgs, bool IsAddressOfOperand)
llvm::SmallPtrSet< const Decl *, 4 > ParsingInitForAutoVars
ParsingInitForAutoVars - a set of declarations with auto types for which we are currently parsing the...
bool CheckTemplateTemplateArgument(TemplateTemplateParmDecl *Param, TemplateParameterList *Params, TemplateArgumentLoc &Arg, bool PartialOrdering, bool *StrictPackMatch)
Check a template argument against its corresponding template template parameter.
void MarkUsedTemplateParameters(const Expr *E, bool OnlyDeduced, unsigned Depth, llvm::SmallBitVector &Used)
Mark which template parameters are used in a given expression.
DeclResult ActOnExplicitInstantiation(Scope *S, SourceLocation ExternLoc, SourceLocation TemplateLoc, unsigned TagSpec, SourceLocation KWLoc, const CXXScopeSpec &SS, TemplateTy Template, SourceLocation TemplateNameLoc, SourceLocation LAngleLoc, ASTTemplateArgsPtr TemplateArgs, SourceLocation RAngleLoc, const ParsedAttributesView &Attr)
QualType CheckConditionalOperands(ExprResult &Cond, ExprResult &LHS, ExprResult &RHS, ExprValueKind &VK, ExprObjectKind &OK, SourceLocation QuestionLoc)
Note that LHS is not null here, even if this is the gnu "x ?: y" extension.
@ ConstantEvaluated
The current context is "potentially evaluated" in C++11 terms, but the expression is evaluated at com...
@ Unevaluated
The current expression and its subexpressions occur within an unevaluated operand (C++11 [expr]p7),...
QualType BuildDecltypeType(Expr *E, bool AsUnevaluated=true)
If AsUnevaluated is false, E is treated as though it were an evaluated context, such as when building...
ExprResult BuildDependentDeclRefExpr(const CXXScopeSpec &SS, SourceLocation TemplateKWLoc, const DeclarationNameInfo &NameInfo, const TemplateArgumentListInfo *TemplateArgs)
TypeSourceInfo * GetTypeForDeclarator(Declarator &D)
GetTypeForDeclarator - Convert the type for the specified declarator to Type instances.
void diagnoseTypo(const TypoCorrection &Correction, const PartialDiagnostic &TypoDiag, bool ErrorRecovery=true)
DeclResult ActOnTag(Scope *S, unsigned TagSpec, TagUseKind TUK, SourceLocation KWLoc, CXXScopeSpec &SS, IdentifierInfo *Name, SourceLocation NameLoc, const ParsedAttributesView &Attr, AccessSpecifier AS, SourceLocation ModulePrivateLoc, MultiTemplateParamsArg TemplateParameterLists, bool &OwnedDecl, bool &IsDependent, SourceLocation ScopedEnumKWLoc, bool ScopedEnumUsesClassTag, TypeResult UnderlyingType, bool IsTypeSpecifier, bool IsTemplateParamOrArg, OffsetOfKind OOK, SkipBodyInfo *SkipBody=nullptr)
This is invoked when we see 'struct foo' or 'struct {'.
bool RequireCompleteType(SourceLocation Loc, QualType T, CompleteTypeKind Kind, TypeDiagnoser &Diagnoser)
Ensure that the type T is a complete type.
bool LookupQualifiedName(LookupResult &R, DeclContext *LookupCtx, bool InUnqualifiedLookup=false)
Perform qualified name lookup into a given context.
bool CheckEquivalentExceptionSpec(FunctionDecl *Old, FunctionDecl *New)
void makeMergedDefinitionVisible(NamedDecl *ND)
Make a merged definition of an existing hidden definition ND visible at the specified location.
void mergeDeclAttributes(NamedDecl *New, Decl *Old, AvailabilityMergeKind AMK=AvailabilityMergeKind::Redeclaration)
mergeDeclAttributes - Copy attributes from the Old decl to the New one.
bool DiagnoseUninstantiableTemplate(SourceLocation PointOfInstantiation, NamedDecl *Instantiation, bool InstantiatedFromMember, const NamedDecl *Pattern, const NamedDecl *PatternDef, TemplateSpecializationKind TSK, bool Complain=true, bool *Unreachable=nullptr)
Determine whether we would be unable to instantiate this template (because it either has no definitio...
bool isDependentScopeSpecifier(const CXXScopeSpec &SS)
DeclResult CheckVarTemplateId(VarTemplateDecl *Template, SourceLocation TemplateLoc, SourceLocation TemplateNameLoc, const TemplateArgumentListInfo &TemplateArgs, bool SetWrittenArgs)
Get the specialization of the given variable template corresponding to the specified argument list,...
bool hasReachableExplicitSpecialization(const NamedDecl *D, llvm::SmallVectorImpl< Module * > *Modules=nullptr)
Determine if there is a reachable declaration of D that is an explicit specialization declaration for...
bool isDeductionGuideName(Scope *S, const IdentifierInfo &Name, SourceLocation NameLoc, CXXScopeSpec &SS, ParsedTemplateTy *Template=nullptr)
Determine whether a particular identifier might be the name in a C++1z deduction-guide declaration.
bool IsAtLeastAsConstrained(const NamedDecl *D1, MutableArrayRef< AssociatedConstraint > AC1, const NamedDecl *D2, MutableArrayRef< AssociatedConstraint > AC2, bool &Result)
Check whether the given declaration's associated constraints are at least as constrained than another...
ExprResult DefaultFunctionArrayConversion(Expr *E, bool Diagnose=true)
DefaultFunctionArrayConversion (C99 6.3.2.1p3, C99 6.3.2.1p4).
NamedDecl * ActOnNonTypeTemplateParameter(Scope *S, Declarator &D, unsigned Depth, unsigned Position, SourceLocation EqualLoc, Expr *DefaultArg)
void diagnoseMissingTemplateArguments(TemplateName Name, SourceLocation Loc)
void CheckFunctionOrTemplateParamDeclarator(Scope *S, Declarator &D)
Common checks for a parameter-declaration that should apply to both function parameters and non-type ...
TemplateParamListContext
The context in which we are checking a template parameter list.
@ TPC_TemplateTemplateParameterPack
@ TPC_FriendFunctionTemplate
@ TPC_ClassTemplateMember
@ TPC_FriendClassTemplate
@ TPC_FriendFunctionTemplateDefinition
friend class InitializationSequence
void checkSpecializationVisibility(SourceLocation Loc, NamedDecl *Spec)
We've found a use of a templated declaration that would trigger an implicit instantiation.
void FilterLookupForScope(LookupResult &R, DeclContext *Ctx, Scope *S, bool ConsiderLinkage, bool AllowInlineNamespace)
Filters out lookup results that don't fall within the given scope as determined by isDeclInScope.
TemplateDeductionResult DeduceTemplateArguments(ClassTemplatePartialSpecializationDecl *Partial, ArrayRef< TemplateArgument > TemplateArgs, sema::TemplateDeductionInfo &Info)
bool resolveAssumedTemplateNameAsType(Scope *S, TemplateName &Name, SourceLocation NameLoc, bool Diagnose=true)
static Scope * getScopeForDeclContext(Scope *S, DeclContext *DC)
Finds the scope corresponding to the given decl context, if it happens to be an enclosing scope.
ExprResult CheckConceptTemplateId(const CXXScopeSpec &SS, SourceLocation TemplateKWLoc, const DeclarationNameInfo &ConceptNameInfo, NamedDecl *FoundDecl, ConceptDecl *NamedConcept, const TemplateArgumentListInfo *TemplateArgs)
void CheckConceptRedefinition(ConceptDecl *NewDecl, LookupResult &Previous, bool &AddToScope)
TypeResult ActOnTemplateIdType(Scope *S, ElaboratedTypeKeyword ElaboratedKeyword, SourceLocation ElaboratedKeywordLoc, CXXScopeSpec &SS, SourceLocation TemplateKWLoc, TemplateTy Template, const IdentifierInfo *TemplateII, SourceLocation TemplateIILoc, SourceLocation LAngleLoc, ASTTemplateArgsPtr TemplateArgs, SourceLocation RAngleLoc, bool IsCtorOrDtorName=false, bool IsClassName=false, ImplicitTypenameContext AllowImplicitTypename=ImplicitTypenameContext::No)
SmallVector< CXXRecordDecl *, 4 > DelayedDllExportClasses
bool CheckTemplateParameterList(TemplateParameterList *NewParams, TemplateParameterList *OldParams, TemplateParamListContext TPC, SkipBodyInfo *SkipBody=nullptr)
Checks the validity of a template parameter list, possibly considering the template parameter list fr...
bool isMoreSpecializedThanPrimary(ClassTemplatePartialSpecializationDecl *T, sema::TemplateDeductionInfo &Info)
ExprResult CreateRecoveryExpr(SourceLocation Begin, SourceLocation End, ArrayRef< Expr * > SubExprs, QualType T=QualType())
Attempts to produce a RecoveryExpr after some AST node cannot be created.
ExprResult CheckVarOrConceptTemplateTemplateId(const CXXScopeSpec &SS, const DeclarationNameInfo &NameInfo, TemplateTemplateParmDecl *Template, SourceLocation TemplateLoc, const TemplateArgumentListInfo *TemplateArgs)
void ProcessAPINotes(Decl *D)
Map any API notes provided for this declaration to attributes on the declaration.
std::string getTemplateArgumentBindingsText(const TemplateParameterList *Params, const TemplateArgumentList &Args)
Produces a formatted string that describes the binding of template parameters to template arguments.
bool CheckRedeclarationInModule(NamedDecl *New, NamedDecl *Old)
A wrapper function for checking the semantic restrictions of a redeclaration within a module.
bool MaybeEmitAmbiguousAtomicConstraintsDiagnostic(const NamedDecl *D1, ArrayRef< AssociatedConstraint > AC1, const NamedDecl *D2, ArrayRef< AssociatedConstraint > AC2)
If D1 was not at least as constrained as D2, but would've been if a pair of atomic constraints involv...
bool CheckTemplateArgumentList(TemplateDecl *Template, SourceLocation TemplateLoc, TemplateArgumentListInfo &TemplateArgs, const DefaultArguments &DefaultArgs, bool PartialTemplateArgs, CheckTemplateArgumentInfo &CTAI, bool UpdateArgsWithConversions=true, bool *ConstraintsNotSatisfied=nullptr)
Check that the given template arguments can be provided to the given template, converting the argumen...
@ Diagnose
Diagnose issues that are non-constant or that are extensions.
OpaquePtr< TemplateName > TemplateTy
unsigned getTemplateDepth(Scope *S) const
Determine the number of levels of enclosing template parameters.
ExprResult BuildExpressionFromDeclTemplateArgument(const TemplateArgument &Arg, QualType ParamType, SourceLocation Loc, NamedDecl *TemplateParam=nullptr)
Given a non-type template argument that refers to a declaration and the type of its corresponding non...
TemplateDeductionResult DeduceAutoType(TypeLoc AutoTypeLoc, Expr *Initializer, QualType &Result, sema::TemplateDeductionInfo &Info, bool DependentDeduction=false, bool IgnoreConstraints=false, TemplateSpecCandidateSet *FailedTSC=nullptr)
Deduce the type for an auto type-specifier (C++11 [dcl.spec.auto]p6)
bool LookupName(LookupResult &R, Scope *S, bool AllowBuiltinCreation=false, bool ForceNoCPlusPlus=false)
Perform unqualified name lookup starting from a given scope.
static QualType GetTypeFromParser(ParsedType Ty, TypeSourceInfo **TInfo=nullptr)
QualType adjustCCAndNoReturn(QualType ArgFunctionType, QualType FunctionType, bool AdjustExceptionSpec=false)
Adjust the type ArgFunctionType to match the calling convention, noreturn, and optionally the excepti...
void NoteTemplateParameterLocation(const NamedDecl &Decl)
IdentifierResolver IdResolver
ArrayRef< sema::FunctionScopeInfo * > getFunctionScopes() const
void checkTypeDeclType(DeclContext *LookupCtx, DiagCtorKind DCK, TypeDecl *TD, SourceLocation NameLoc)
Returns the TypeDeclType for the given type declaration, as ASTContext::getTypeDeclType would,...
void CheckDeductionGuideTemplate(FunctionTemplateDecl *TD)
TypeResult ActOnTagTemplateIdType(TagUseKind TUK, TypeSpecifierType TagSpec, SourceLocation TagLoc, CXXScopeSpec &SS, SourceLocation TemplateKWLoc, TemplateTy TemplateD, SourceLocation TemplateLoc, SourceLocation LAngleLoc, ASTTemplateArgsPtr TemplateArgsIn, SourceLocation RAngleLoc)
Parsed an elaborated-type-specifier that refers to a template-id, such as class T::template apply.
bool hasReachableDeclaration(const NamedDecl *D, llvm::SmallVectorImpl< Module * > *Modules=nullptr)
Determine whether any declaration of an entity is reachable.
void MarkDeducedTemplateParameters(const FunctionTemplateDecl *FunctionTemplate, llvm::SmallBitVector &Deduced)
bool DiagnoseUnexpandedParameterPacks(SourceLocation Loc, UnexpandedParameterPackContext UPPC, ArrayRef< UnexpandedParameterPack > Unexpanded)
Diagnose unexpanded parameter packs.
void warnOnReservedIdentifier(const NamedDecl *D)
void inferNullableClassAttribute(CXXRecordDecl *CRD)
Add _Nullable attributes for std:: types.
ExprResult ActOnFinishFullExpr(Expr *Expr, bool DiscardedValue)
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.
SourceLocation getEnd() const
SourceLocation getBegin() const
SourceLocation getEndLoc() const LLVM_READONLY
void printPretty(raw_ostream &OS, PrinterHelper *Helper, const PrintingPolicy &Policy, unsigned Indentation=0, StringRef NewlineSymbol="\n", const ASTContext *Context=nullptr) const
SourceRange getSourceRange() const LLVM_READONLY
SourceLocation tokens are not useful in isolation - they are low level value objects created/interpre...
SourceLocation getBeginLoc() const LLVM_READONLY
Represents a reference to a non-type template parameter that has been substituted with a template arg...
A structure for storing an already-substituted template template parameter pack.
Represents the declaration of a struct/union/class/enum.
StringRef getKindName() const
void startDefinition()
Starts the definition of this tag declaration.
void setTemplateParameterListsInfo(ASTContext &Context, ArrayRef< TemplateParameterList * > TPLists)
TagKind getTagKind() const
A convenient class for passing around template argument information.
SourceLocation getRAngleLoc() const
void setLAngleLoc(SourceLocation Loc)
void setRAngleLoc(SourceLocation Loc)
void addArgument(const TemplateArgumentLoc &Loc)
ArrayRef< TemplateArgumentLoc > arguments() const
SourceLocation getLAngleLoc() const
A template argument list.
const TemplateArgument * data() const
Retrieve a pointer to the template argument list.
static TemplateArgumentList * CreateCopy(ASTContext &Context, ArrayRef< TemplateArgument > Args)
Create a new template argument list that copies the given set of template arguments.
unsigned size() const
Retrieve the number of template arguments in this template argument list.
Location wrapper for a TemplateArgument.
SourceLocation getLocation() const
SourceLocation getTemplateEllipsisLoc() const
TemplateArgumentLocInfo getLocInfo() const
const TemplateArgument & getArgument() const
SourceLocation getTemplateNameLoc() const
TypeSourceInfo * getTypeSourceInfo() const
SourceRange getSourceRange() const LLVM_READONLY
NestedNameSpecifierLoc getTemplateQualifierLoc() const
Represents a template argument.
ArrayRef< TemplateArgument > getPackAsArray() const
Return the array of arguments in this template argument pack.
QualType getStructuralValueType() const
Get the type of a StructuralValue.
Expr * getAsExpr() const
Retrieve the template argument as an expression.
bool isDependent() const
Whether this template argument is dependent on a template parameter such that its result can change f...
bool isInstantiationDependent() const
Whether this template argument is dependent on a template parameter.
pack_iterator pack_begin() const
Iterator referencing the first argument of a template argument pack.
QualType getNonTypeTemplateArgumentType() const
If this is a non-type template argument, get its type.
QualType getAsType() const
Retrieve the type for a type template argument.
llvm::APSInt getAsIntegral() const
Retrieve the template argument as an integral value.
static TemplateArgument CreatePackCopy(ASTContext &Context, ArrayRef< TemplateArgument > Args)
Create a new template argument pack by copying the given set of template arguments.
TemplateName getAsTemplate() const
Retrieve the template name for a template name argument.
TemplateArgument getPackExpansionPattern() const
When the template argument is a pack expansion, returns the pattern of the pack expansion.
bool isNull() const
Determine whether this template argument has no value.
unsigned pack_size() const
The number of template arguments in the given template argument pack.
void print(const PrintingPolicy &Policy, raw_ostream &Out, bool IncludeType) const
Print this template argument to the given output stream.
QualType getIntegralType() const
Retrieve the type of the integral value.
ValueDecl * getAsDecl() const
Retrieve the declaration for a declaration non-type template argument.
@ Declaration
The template argument is a declaration that was provided for a pointer, reference,...
@ Template
The template argument is a template name that was provided for a template template parameter.
@ StructuralValue
The template argument is a non-type template argument that can't be represented by the special-case D...
@ Pack
The template argument is actually a parameter pack.
@ TemplateExpansion
The template argument is a pack expansion of a template name that was provided for a template templat...
@ NullPtr
The template argument is a null pointer or null pointer to member that was provided for a non-type te...
@ Type
The template argument is a type.
@ Null
Represents an empty template argument, e.g., one that has not been deduced.
@ Integral
The template argument is an integral value stored in an llvm::APSInt that was provided for an integra...
@ Expression
The template argument is an expression, and we've not resolved it to one of the other forms yet,...
ArgKind getKind() const
Return the kind of stored template argument.
bool isPackExpansion() const
Determine whether this template argument is a pack expansion.
TemplateName getAsTemplateOrTemplatePattern() const
Retrieve the template argument as a template name; if the argument is a pack expansion,...
const APValue & getAsStructuralValue() const
Get the value of a StructuralValue.
The base class of all kinds of template declarations (e.g., class, function, etc.).
bool hasAssociatedConstraints() const
TemplateParameterList * getTemplateParameters() const
Get the list of template parameters.
Represents a C++ template name within the type system.
TemplateDecl * getAsTemplateDecl(bool IgnoreDeduced=false) const
Retrieve the underlying template declaration that this template name refers to, if known.
bool isNull() const
Determine whether this template name is NULL.
DependentTemplateName * getAsDependentTemplateName() const
Retrieve the underlying dependent template name structure, if any.
OverloadedTemplateStorage * getAsOverloadedTemplate() const
Retrieve the underlying, overloaded function template declarations that this template name refers to,...
AssumedTemplateStorage * getAsAssumedTemplateName() const
Retrieve information on a name that has been assumed to be a template-name in order to permit a call ...
UsingShadowDecl * getAsUsingShadowDecl() const
Retrieve the using shadow declaration through which the underlying template declaration is introduced...
SubstTemplateTemplateParmPackStorage * getAsSubstTemplateTemplateParmPack() const
Retrieve the substituted template template parameter pack, if known.
TemplateName getUnderlying() const
bool isDependent() const
Determines whether this is a dependent template name.
std::pair< TemplateDecl *, DefaultArguments > getTemplateDeclAndDefaultArgs() const
Retrieves the underlying template declaration that this template name refers to, along with the deduc...
Stores a list of template parameters for a TemplateDecl and its derived classes.
NamedDecl * getParam(unsigned Idx)
SourceRange getSourceRange() const LLVM_READONLY
unsigned getDepth() const
Get the depth of this template parameter list in the set of template parameter lists.
NamedDecl ** iterator
Iterates through the template parameters in this list.
bool hasAssociatedConstraints() const
static TemplateParameterList * Create(const ASTContext &C, SourceLocation TemplateLoc, SourceLocation LAngleLoc, ArrayRef< NamedDecl * > Params, SourceLocation RAngleLoc, Expr *RequiresClause)
NamedDecl *const * const_iterator
Iterates through the template parameters in this list.
Expr * getRequiresClause()
The constraint-expression of the associated requires-clause.
SourceLocation getRAngleLoc() const
SourceLocation getLAngleLoc() const
void getAssociatedConstraints(llvm::SmallVectorImpl< AssociatedConstraint > &AC) const
All associated constraints derived from this template parameter list, including the requires clause a...
static bool shouldIncludeTypeForArgument(const PrintingPolicy &Policy, const TemplateParameterList *TPL, unsigned Idx)
SourceLocation getTemplateLoc() const
TemplateSpecCandidateSet - A set of generalized overload candidates, used in template specializations...
void NoteCandidates(Sema &S, SourceLocation Loc)
NoteCandidates - When no template specialization match is found, prints diagnostic messages containin...
SourceLocation getLocation() const
TemplateSpecCandidate & addCandidate()
Add a new candidate with NumConversions conversion sequence slots to the overload set.
void set(SourceLocation ElaboratedKeywordLoc, NestedNameSpecifierLoc QualifierLoc, SourceLocation TemplateKeywordLoc, SourceLocation NameLoc, SourceLocation LAngleLoc, SourceLocation RAngleLoc)
TemplateTemplateParmDecl - Declares a template template parameter, e.g., "T" in.
TemplateParameterList * getExpansionTemplateParameters(unsigned I) const
Retrieve a particular expansion type within an expanded parameter pack.
bool isPackExpansion() const
Whether this parameter pack is a pack expansion.
TemplateNameKind templateParameterKind() const
const TemplateArgumentLoc & getDefaultArgument() const
Retrieve the default argument, if any.
void setInheritedDefaultArgument(const ASTContext &C, TemplateTemplateParmDecl *Prev)
static TemplateTemplateParmDecl * Create(const ASTContext &C, DeclContext *DC, SourceLocation L, unsigned D, unsigned P, bool ParameterPack, IdentifierInfo *Id, TemplateNameKind ParameterKind, bool Typename, TemplateParameterList *Params)
bool isParameterPack() const
Whether this template template parameter is a template parameter pack.
unsigned getIndex() const
Get the index of the template parameter within its parameter list.
unsigned getDepth() const
Get the nesting depth of the template parameter.
bool isExpandedParameterPack() const
Whether this parameter is a template template parameter pack that has a known list of different templ...
void removeDefaultArgument()
Removes the default argument of this template parameter.
bool hasDefaultArgument() const
Determine whether this template parameter has a default argument.
Declaration of a template type parameter.
SourceLocation getDefaultArgumentLoc() const
Retrieves the location of the default argument declaration.
void setTypeConstraint(ConceptReference *CR, Expr *ImmediatelyDeclaredConstraint, UnsignedOrNone ArgPackSubstIndex)
bool hasDefaultArgument() const
Determine whether this template parameter has a default argument.
static TemplateTypeParmDecl * Create(const ASTContext &C, DeclContext *DC, SourceLocation KeyLoc, SourceLocation NameLoc, unsigned D, unsigned P, IdentifierInfo *Id, bool Typename, bool ParameterPack, bool HasTypeConstraint=false, UnsignedOrNone NumExpanded=std::nullopt)
Represents the declaration of a typedef-name via a C++11 alias-declaration.
Declaration of an alias template.
Models the abbreviated syntax to constrain a template type parameter: template <convertible_to<string...
Represents a declaration of a type.
const Type * getTypeForDecl() const
SourceLocation getBeginLoc() const LLVM_READONLY
TyLocType push(QualType T)
Pushes space for a new TypeLoc of the given type.
TypeSpecTypeLoc pushTypeSpec(QualType T)
Pushes space for a typespec TypeLoc.
TypeSourceInfo * getTypeSourceInfo(ASTContext &Context, QualType T)
Creates a TypeSourceInfo for the given type.
Base wrapper for a particular "section" of type source info.
QualType getType() const
Get the type for which this source info wrapper provides information.
T getAs() const
Convert to the specified TypeLoc type, returning a null TypeLoc if this TypeLoc is not of the desired...
T castAs() const
Convert to the specified TypeLoc type, asserting that this TypeLoc is of the desired type.
SourceRange getSourceRange() const LLVM_READONLY
Get the full source range.
AutoTypeLoc getContainedAutoTypeLoc() const
Get the typeloc of an AutoType whose type will be deduced for a variable with an initializer of this ...
SourceLocation getBeginLoc() const
Get the begin source location.
Represents a typeof (or typeof) expression (a C23 feature and GCC extension) or a typeof_unqual expre...
A container of type source information.
TypeLoc getTypeLoc() const
Return the TypeLoc wrapper for the type source info.
QualType getType() const
Return the type wrapped by this type source info.
SourceLocation getNameLoc() const
void setNameLoc(SourceLocation Loc)
The base class of the type hierarchy.
bool isIncompleteOrObjectType() const
Return true if this is an incomplete or object type, in other words, not a function type.
bool isBooleanType() const
bool isSignedIntegerOrEnumerationType() const
Determines whether this is an integer type that is signed or an enumeration types whose underlying ty...
bool isUnsignedIntegerOrEnumerationType() const
Determines whether this is an integer type that is unsigned or an enumeration types whose underlying ...
bool isRValueReferenceType() const
bool isVoidPointerType() const
bool isPointerType() const
const T * castAs() const
Member-template castAs<specific type>.
bool isReferenceType() const
bool isEnumeralType() const
bool isIntegralType(const ASTContext &Ctx) const
Determine whether this type is an integral type.
const Type * getArrayElementTypeNoTypeQual() const
If this is an array type, return the element type of the array, potentially with type qualifiers miss...
QualType getPointeeType() const
If this is a pointer, ObjC object pointer, or block pointer, this returns the respective pointee.
bool isIntegralOrEnumerationType() const
Determine whether this type is an integral or enumeration type.
bool isObjCObjectOrInterfaceType() const
AutoType * getContainedAutoType() const
Get the AutoType whose type will be deduced for a variable with an initializer of this type.
bool isInstantiationDependentType() const
Determine whether this type is an instantiation-dependent type, meaning that the type involves a temp...
bool isLValueReferenceType() const
bool isBitIntType() const
bool isBuiltinType() const
Helper methods to distinguish type categories.
bool isDependentType() const
Whether this type is a dependent type, meaning that its definition somehow depends on a template para...
DeducedType * getContainedDeducedType() const
Get the DeducedType whose type will be deduced for a variable with an initializer of this type.
bool isMemberPointerType() const
bool isVariablyModifiedType() const
Whether this type is a variably-modified type (C99 6.7.5).
bool isUndeducedType() const
Determine whether this type is an undeduced type, meaning that it somehow involves a C++11 'auto' typ...
EnumDecl * getAsEnumDecl() const
Retrieves the EnumDecl this type refers to.
bool hasUnnamedOrLocalType() const
Whether this type is or contains a local or unnamed type.
bool isPointerOrReferenceType() const
bool isIncompleteType(NamedDecl **Def=nullptr) const
Types are partitioned into 3 broad categories (C99 6.2.5p1): object types, function types,...
bool isFunctionType() const
bool isVectorType() const
const T * getAsCanonical() const
If this type is canonically the specified type, return its canonical type cast to that specified type...
bool isCanonicalUnqualified() const
Determines if this type would be canonical if it had no further qualification.
const T * getAs() const
Member-template getAs<specific type>'.
bool isNullPtrType() const
bool isRecordType() const
QualType getUnderlyingType() const
Wrapper for source info for typedefs.
Simple class containing the result of Sema::CorrectTypo.
NamedDecl * getCorrectionDecl() const
Gets the pointer to the declaration of the typo correction.
DeclClass * getCorrectionDeclAs() const
NamedDecl * getFoundDecl() const
Get the correction declaration found by name lookup (before we looked through using shadow declaratio...
UnaryOperator - This represents the unary-expression's (except sizeof and alignof),...
Represents a C++ unqualified-id that has been parsed.
struct OFI OperatorFunctionId
When Kind == IK_OperatorFunctionId, the overloaded operator that we parsed.
SourceLocation getBeginLoc() const LLVM_READONLY
SourceRange getSourceRange() const LLVM_READONLY
Return the source range that covers this unqualified-id.
const IdentifierInfo * Identifier
When Kind == IK_Identifier, the parsed identifier, or when Kind == IK_UserLiteralId,...
UnqualifiedIdKind getKind() const
Determine what kind of name we have.
TemplateIdAnnotation * TemplateId
When Kind == IK_TemplateId or IK_ConstructorTemplateId, the template-id annotation that contains the ...
A reference to a name which we were able to look up during parsing but could not resolve to a specifi...
static UnresolvedLookupExpr * Create(const ASTContext &Context, CXXRecordDecl *NamingClass, NestedNameSpecifierLoc QualifierLoc, const DeclarationNameInfo &NameInfo, bool RequiresADL, UnresolvedSetIterator Begin, UnresolvedSetIterator End, bool KnownDependent, bool KnownInstantiationDependent)
void addDecl(NamedDecl *D)
The iterator over UnresolvedSets.
A set of unresolved declarations.
Wrapper for source info for unresolved typename using decls.
Represents the dependent type named by a dependently-scoped typename using declaration,...
Represents a dependent using declaration which was not marked with typename.
Represents a shadow declaration implicitly introduced into a scope by a (resolved) using-declaration ...
NamedDecl * getTargetDecl() const
Gets the underlying declaration which has been brought into the local scope.
Represent the declaration of a variable (in which case it is an lvalue) a function (in which case it ...
void setType(QualType newType)
Represents a variable declaration or definition.
TLSKind getTLSKind() const
bool isStaticDataMember() const
Determines whether this is a static data member.
VarDecl * getInstantiatedFromStaticDataMember() const
If this variable is an instantiated static data member of a class template specialization,...
void setTemplateSpecializationKind(TemplateSpecializationKind TSK, SourceLocation PointOfInstantiation=SourceLocation())
For a static data member that was instantiated from a static data member of a class template,...
VarDecl * getPreviousDecl()
Return the previous declaration of this declaration or NULL if this is the first declaration.
SourceLocation getPointOfInstantiation() const
If this variable is an instantiation of a variable template or a static data member of a class templa...
TemplateSpecializationKind getTemplateSpecializationKind() const
If this variable is an instantiation of a variable template or a static data member of a class templa...
MemberSpecializationInfo * getMemberSpecializationInfo() const
If this variable is an instantiation of a static data member of a class template specialization,...
Declaration of a variable template.
static VarTemplatePartialSpecializationDecl * Create(ASTContext &Context, DeclContext *DC, SourceLocation StartLoc, SourceLocation IdLoc, TemplateParameterList *Params, VarTemplateDecl *SpecializedTemplate, QualType T, TypeSourceInfo *TInfo, StorageClass S, ArrayRef< TemplateArgument > Args)
void setMemberSpecialization()
Note that this member template is a specialization.
VarTemplatePartialSpecializationDecl * getInstantiatedFromMember() const
Retrieve the member variable template partial specialization from which this particular variable temp...
Represents a variable template specialization, which refers to a variable template with a given set o...
SourceLocation getPointOfInstantiation() const
Get the point of instantiation (if any), or null if none.
void setTemplateArgsAsWritten(const ASTTemplateArgumentListInfo *ArgsWritten)
Set the template argument list as written in the sources.
static VarTemplateSpecializationDecl * Create(ASTContext &Context, DeclContext *DC, SourceLocation StartLoc, SourceLocation IdLoc, VarTemplateDecl *SpecializedTemplate, QualType T, TypeSourceInfo *TInfo, StorageClass S, ArrayRef< TemplateArgument > Args)
TemplateSpecializationKind getSpecializationKind() const
Determine the kind of specialization that this declaration represents.
Represents a C array with a specified size that is not an integer-constant-expression.
Represents a GCC generic vector type.
Retains information about a function, method, or block that is currently being parsed.
Provides information about an attempted template argument deduction, whose success or failure was des...
TemplateArgumentList * takeSugared()
Take ownership of the deduced template argument lists.
bool hasSFINAEDiagnostic() const
Is a SFINAE diagnostic available?
void takeSFINAEDiagnostic(PartialDiagnosticAt &PD)
Take ownership of the SFINAE diagnostic.
Defines the clang::TargetInfo interface.
__inline void unsigned int _2
@ OS
Indicates that the tracking object is a descendant of a referenced-counted OSObject,...
The JSON file list parser is used to communicate input to InstallAPI.
CanQual< Type > CanQualType
Represents a canonical, potentially-qualified type.
TypeSpecifierType
Specifies the kind of type.
@ Match
This is not an overload because the signature exactly matches an existing declaration.
bool isa(CodeGen::Address addr)
OpaquePtr< TemplateName > ParsedTemplateTy
MutableArrayRef< TemplateParameterList * > MultiTemplateParamsArg
@ OR_Deleted
Succeeded, but refers to a deleted function.
@ OR_Success
Overload resolution succeeded.
@ OR_Ambiguous
Ambiguous candidates found.
@ OR_No_Viable_Function
No viable function found.
@ Specialization
We are substituting template parameters for template arguments in order to form a template specializa...
bool isUnresolvedExceptionSpec(ExceptionSpecificationType ESpecType)
@ Ambiguous
Name lookup results in an ambiguity; use getAmbiguityKind to figure out what kind of ambiguity we hav...
@ NotFound
No entity found met the criteria.
@ FoundOverloaded
Name lookup found a set of overloaded functions that met the criteria.
@ Found
Name lookup found a single declaration that met the criteria.
@ FoundUnresolvedValue
Name lookup found an unresolvable value declaration and cannot yet complete.
@ NotFoundInCurrentInstantiation
No entity found met the criteria within the current instantiation,, but there were dependent base cla...
@ ovl_fail_constraints_not_satisfied
This candidate was not viable because its associated constraints were not satisfied.
@ TemplateName
The identifier is a template name. FIXME: Add an annotation for that.
OverloadCandidateDisplayKind
@ OCD_AmbiguousCandidates
Requests that only tied-for-best candidates be shown.
@ OCD_AllCandidates
Requests that all candidates be shown.
ExprObjectKind
A further classification of the kind of object referenced by an l-value or x-value.
@ OK_Ordinary
An ordinary object is located at an address in memory.
NonTagKind
Common ways to introduce type names without a tag for use in diagnostics.
bool isPackProducingBuiltinTemplateName(TemplateName N)
@ IK_TemplateId
A template-id, e.g., f<int>.
@ IK_LiteralOperatorId
A user-defined literal name, e.g., operator "" _i.
@ IK_Identifier
An identifier.
@ IK_OperatorFunctionId
An overloaded operator name, e.g., operator+.
AccessSpecifier
A C++ access specifier (public, private, protected), plus the special value "none" which means differ...
ActionResult< Decl * > DeclResult
nullptr
This class represents a compute construct, representing a 'Kind' of ‘parallel’, 'serial',...
DynamicRecursiveASTVisitorBase< true > ConstDynamicRecursiveASTVisitor
StorageClass
Storage classes.
UnsignedOrNone getExpandedPackSize(const NamedDecl *Param)
Check whether the template parameter is a pack expansion, and if so, determine the number of paramete...
@ CRK_None
Candidate is not a rewritten candidate.
@ Internal
Internal linkage, which indicates that the entity can be referred to from within the translation unit...
TemplateDecl * getAsTypeTemplateDecl(Decl *D)
@ Result
The result type of a method or function.
ActionResult< ParsedType > TypeResult
InheritableAttr * getDLLAttr(Decl *D)
Return a DLL attribute from the declaration.
@ Template
We are parsing a template declaration.
TagTypeKind
The kind of a tag type.
@ Enum
The "enum" keyword.
DeductionFailureInfo MakeDeductionFailureInfo(ASTContext &Context, TemplateDeductionResult TDK, sema::TemplateDeductionInfo &Info)
Convert from Sema's representation of template deduction information to the form used in overload-can...
@ Keyword
The name has been typo-corrected to a keyword.
@ Type
The name was classified as a type.
CastKind
CastKind - The kind of operation required for a conversion.
SourceRange getTemplateParamsRange(TemplateParameterList const *const *Params, unsigned NumParams)
Retrieves the range of the given template parameter lists.
MutableArrayRef< ParsedTemplateArgument > ASTTemplateArgsPtr
TemplateNameKind
Specifies the kind of template name that an identifier refers to.
@ TNK_Var_template
The name refers to a variable template whose specialization produces a variable.
@ TNK_Type_template
The name refers to a template whose specialization produces a type.
@ TNK_Dependent_template_name
The name refers to a dependent template name:
@ TNK_Function_template
The name refers to a function template or a set of overloaded functions that includes at least one fu...
@ TNK_Concept_template
The name refers to a concept.
@ TNK_Non_template
The name does not refer to a template.
@ TNK_Undeclared_template
Lookup for the name failed, but we're assuming it was a template name anyway.
std::pair< SourceLocation, PartialDiagnostic > PartialDiagnosticAt
A partial diagnostic along with the source location where this diagnostic occurs.
ExprValueKind
The categorization of expression values, currently following the C++11 scheme.
@ VK_PRValue
A pr-value expression (in the C++11 taxonomy) produces a temporary value.
@ VK_XValue
An x-value expression is a reference to an object with independent storage but which can be "moved",...
@ VK_LValue
An l-value expression is a reference to an object with independent storage.
const FunctionProtoType * T
llvm::PointerUnion< TemplateTypeParmDecl *, NonTypeTemplateParmDecl *, TemplateTemplateParmDecl * > TemplateParameter
Stores a template parameter of any kind.
DynamicRecursiveASTVisitorBase< false > DynamicRecursiveASTVisitor
TemplateDeductionResult
Describes the result of template argument deduction.
@ ConstraintsNotSatisfied
The deduced arguments did not satisfy the constraints associated with the template.
@ CUDATargetMismatch
CUDA Target attributes do not match.
@ Success
Template argument deduction was successful.
@ AlreadyDiagnosed
Some error which was already diagnosed.
TemplateSpecializationKind
Describes the kind of template specialization that a particular template specialization declaration r...
@ TSK_ExplicitInstantiationDefinition
This template specialization was instantiated from a template due to an explicit instantiation defini...
@ TSK_ExplicitInstantiationDeclaration
This template specialization was instantiated from a template due to an explicit instantiation declar...
@ TSK_ExplicitSpecialization
This template specialization was declared or defined by an explicit specialization (C++ [temp....
@ TSK_ImplicitInstantiation
This template specialization was implicitly instantiated from a template.
@ TSK_Undeclared
This template specialization was formed from a template-id but has not yet been declared,...
U cast(CodeGen::Address addr)
SmallVector< Token, 4 > CachedTokens
A set of tokens that has been cached for later parsing.
@ TemplateArg
Value of a non-type template parameter.
@ TempArgStrict
As above, but applies strict template checking rules.
OpaquePtr< QualType > ParsedType
An opaque type for threading parsed type information through the parser.
ElaboratedTypeKeyword
The elaboration keyword that precedes a qualified type name or introduces an elaborated-type-specifie...
@ None
No keyword precedes the qualified type name.
@ Enum
The "enum" keyword introduces the elaborated-type-specifier.
@ Typename
The "typename" keyword precedes the qualified type name, e.g., typename T::type.
ActionResult< Expr * > ExprResult
@ Parens
New-expression has a C++98 paren-delimited initializer.
Represents an explicit template argument list in C++, e.g., the "<int>" in "sort<int>".
static const ASTTemplateArgumentListInfo * Create(const ASTContext &C, const TemplateArgumentListInfo &List)
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.
SourceLocation getBeginLoc() const
getBeginLoc - Retrieve the location of the first token.
SourceLocation getEndLoc() const LLVM_READONLY
ArrayRef< TemplateArgument > Args
EvalResult is a struct with detailed info about an evaluated expression.
APValue Val
Val - This is the value the expression can be folded to.
SmallVectorImpl< PartialDiagnosticAt > * Diag
Diag - If this is non-null, it will be filled in with a stack of notes indicating why evaluation fail...
bool HasSideEffects
Whether the evaluated expression has side effects.
Extra information about a function prototype.
const IdentifierInfo * getIdentifier() const
Returns the identifier to which this template name refers.
static ElaboratedTypeKeyword getKeywordForTagTypeKind(TagTypeKind Tag)
Converts a TagTypeKind into an elaborated type keyword.
static TagTypeKind getTagTypeKindForKeyword(ElaboratedTypeKeyword Keyword)
Converts an elaborated type keyword into a TagTypeKind.
static TagTypeKind getTagTypeKindForTypeSpec(unsigned TypeSpec)
Converts a type specifier (DeclSpec::TST) into a tag type kind.
NestedNameSpecifierLoc Prefix
OverloadCandidate - A single candidate in an overload set (C++ 13.3).
Describes how types, statements, expressions, and declarations should be printed.
unsigned TerseOutput
Provide a 'terse' output.
unsigned PrintAsCanonical
Whether to print entities as written or canonically.
bool StrictPackMatch
Is set to true when, in the context of TTP matching, a pack parameter matches non-pack arguments.
bool MatchingTTP
If true, assume these template arguments are the injected template arguments for a template template ...
bool PartialOrdering
The check is being performed in the context of partial ordering.
SmallVector< TemplateArgument, 4 > SugaredConverted
The checked, converted argument will be added to the end of these vectors.
SmallVector< TemplateArgument, 4 > CanonicalConverted
A context in which code is being synthesized (where a source location alone is not sufficient to iden...
@ BuildingDeductionGuides
We are building deduction guides for a class.
A stack object to be created when performing template instantiation.
bool isInvalid() const
Determines whether we have exceeded the maximum recursive template instantiations.
Location information for a TemplateArgument.
Information about a template-id annotation token.
const IdentifierInfo * Name
FIXME: Temporarily stores the name of a specialization.
unsigned NumArgs
NumArgs - The number of template arguments.
SourceLocation TemplateNameLoc
TemplateNameLoc - The location of the template name within the source.
ParsedTemplateArgument * getTemplateArgs()
Retrieves a pointer to the template arguments.
SourceLocation RAngleLoc
The location of the '>' after the template argument list.
SourceLocation LAngleLoc
The location of the '<' before the template argument list.
ParsedTemplateTy Template
The declaration of the template corresponding to the template-name.
void set(DeclAccessPair Found, Decl *Spec, DeductionFailureInfo Info)
OverloadedOperatorKind Operator
The kind of overloaded operator.