1 //===--- ParseTemplate.cpp - Template Parsing -----------------------------===//
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
7 //===----------------------------------------------------------------------===//
9 // This file implements parsing of C++ templates.
11 //===----------------------------------------------------------------------===//
13 #include "clang/AST/ASTContext.h"
14 #include "clang/AST/DeclTemplate.h"
15 #include "clang/AST/ExprCXX.h"
16 #include "clang/Parse/ParseDiagnostic.h"
17 #include "clang/Parse/Parser.h"
18 #include "clang/Parse/RAIIObjectsForParser.h"
19 #include "clang/Sema/DeclSpec.h"
20 #include "clang/Sema/EnterExpressionEvaluationContext.h"
21 #include "clang/Sema/ParsedTemplate.h"
22 #include "clang/Sema/Scope.h"
23 #include "clang/Sema/SemaDiagnostic.h"
24 #include "llvm/Support/TimeProfiler.h"
25 using namespace clang
;
27 /// Re-enter a possible template scope, creating as many template parameter
28 /// scopes as necessary.
29 /// \return The number of template parameter scopes entered.
30 unsigned Parser::ReenterTemplateScopes(MultiParseScope
&S
, Decl
*D
) {
31 return Actions
.ActOnReenterTemplateScope(D
, [&] {
32 S
.Enter(Scope::TemplateParamScope
);
33 return Actions
.getCurScope();
37 /// Parse a template declaration, explicit instantiation, or
38 /// explicit specialization.
39 Decl
*Parser::ParseDeclarationStartingWithTemplate(
40 DeclaratorContext Context
, SourceLocation
&DeclEnd
,
41 ParsedAttributes
&AccessAttrs
, AccessSpecifier AS
) {
42 ObjCDeclContextSwitch
ObjCDC(*this);
44 if (Tok
.is(tok::kw_template
) && NextToken().isNot(tok::less
)) {
45 return ParseExplicitInstantiation(Context
, SourceLocation(), ConsumeToken(),
46 DeclEnd
, AccessAttrs
, AS
);
48 return ParseTemplateDeclarationOrSpecialization(Context
, DeclEnd
, AccessAttrs
,
52 /// Parse a template declaration or an explicit specialization.
54 /// Template declarations include one or more template parameter lists
55 /// and either the function or class template declaration. Explicit
56 /// specializations contain one or more 'template < >' prefixes
57 /// followed by a (possibly templated) declaration. Since the
58 /// syntactic form of both features is nearly identical, we parse all
59 /// of the template headers together and let semantic analysis sort
60 /// the declarations from the explicit specializations.
62 /// template-declaration: [C++ temp]
63 /// 'export'[opt] 'template' '<' template-parameter-list '>' declaration
65 /// template-declaration: [C++2a]
66 /// template-head declaration
67 /// template-head concept-definition
69 /// TODO: requires-clause
70 /// template-head: [C++2a]
71 /// 'template' '<' template-parameter-list '>'
72 /// requires-clause[opt]
74 /// explicit-specialization: [ C++ temp.expl.spec]
75 /// 'template' '<' '>' declaration
76 Decl
*Parser::ParseTemplateDeclarationOrSpecialization(
77 DeclaratorContext Context
, SourceLocation
&DeclEnd
,
78 ParsedAttributes
&AccessAttrs
, AccessSpecifier AS
) {
79 assert(Tok
.isOneOf(tok::kw_export
, tok::kw_template
) &&
80 "Token does not start a template declaration.");
82 MultiParseScope
TemplateParamScopes(*this);
84 // Tell the action that names should be checked in the context of
85 // the declaration to come.
87 ParsingTemplateParams(*this, ParsingDeclRAIIObject::NoParent
);
89 // Parse multiple levels of template headers within this template
90 // parameter scope, e.g.,
92 // template<typename T>
93 // template<typename U>
94 // class A<T>::B { ... };
96 // We parse multiple levels non-recursively so that we can build a
97 // single data structure containing all of the template parameter
98 // lists to easily differentiate between the case above and:
100 // template<typename T>
102 // template<typename U> class B;
105 // In the first case, the action for declaring A<T>::B receives
106 // both template parameter lists. In the second case, the action for
107 // defining A<T>::B receives just the inner template parameter list
108 // (and retrieves the outer template parameter list from its
110 bool isSpecialization
= true;
111 bool LastParamListWasEmpty
= false;
112 TemplateParameterLists ParamLists
;
113 TemplateParameterDepthRAII
CurTemplateDepthTracker(TemplateParameterDepth
);
116 // Consume the 'export', if any.
117 SourceLocation ExportLoc
;
118 TryConsumeToken(tok::kw_export
, ExportLoc
);
120 // Consume the 'template', which should be here.
121 SourceLocation TemplateLoc
;
122 if (!TryConsumeToken(tok::kw_template
, TemplateLoc
)) {
123 Diag(Tok
.getLocation(), diag::err_expected_template
);
127 // Parse the '<' template-parameter-list '>'
128 SourceLocation LAngleLoc
, RAngleLoc
;
129 SmallVector
<NamedDecl
*, 4> TemplateParams
;
130 if (ParseTemplateParameters(TemplateParamScopes
,
131 CurTemplateDepthTracker
.getDepth(),
132 TemplateParams
, LAngleLoc
, RAngleLoc
)) {
133 // Skip until the semi-colon or a '}'.
134 SkipUntil(tok::r_brace
, StopAtSemi
| StopBeforeMatch
);
135 TryConsumeToken(tok::semi
);
139 ExprResult OptionalRequiresClauseConstraintER
;
140 if (!TemplateParams
.empty()) {
141 isSpecialization
= false;
142 ++CurTemplateDepthTracker
;
144 if (TryConsumeToken(tok::kw_requires
)) {
145 OptionalRequiresClauseConstraintER
=
146 Actions
.ActOnRequiresClause(ParseConstraintLogicalOrExpression(
147 /*IsTrailingRequiresClause=*/false));
148 if (!OptionalRequiresClauseConstraintER
.isUsable()) {
149 // Skip until the semi-colon or a '}'.
150 SkipUntil(tok::r_brace
, StopAtSemi
| StopBeforeMatch
);
151 TryConsumeToken(tok::semi
);
156 LastParamListWasEmpty
= true;
159 ParamLists
.push_back(Actions
.ActOnTemplateParameterList(
160 CurTemplateDepthTracker
.getDepth(), ExportLoc
, TemplateLoc
, LAngleLoc
,
161 TemplateParams
, RAngleLoc
, OptionalRequiresClauseConstraintER
.get()));
162 } while (Tok
.isOneOf(tok::kw_export
, tok::kw_template
));
164 // Parse the actual template declaration.
165 if (Tok
.is(tok::kw_concept
))
166 return ParseConceptDefinition(
167 ParsedTemplateInfo(&ParamLists
, isSpecialization
,
168 LastParamListWasEmpty
),
171 return ParseSingleDeclarationAfterTemplate(
173 ParsedTemplateInfo(&ParamLists
, isSpecialization
, LastParamListWasEmpty
),
174 ParsingTemplateParams
, DeclEnd
, AccessAttrs
, AS
);
177 /// Parse a single declaration that declares a template,
178 /// template specialization, or explicit instantiation of a template.
180 /// \param DeclEnd will receive the source location of the last token
181 /// within this declaration.
183 /// \param AS the access specifier associated with this
184 /// declaration. Will be AS_none for namespace-scope declarations.
186 /// \returns the new declaration.
187 Decl
*Parser::ParseSingleDeclarationAfterTemplate(
188 DeclaratorContext Context
, const ParsedTemplateInfo
&TemplateInfo
,
189 ParsingDeclRAIIObject
&DiagsFromTParams
, SourceLocation
&DeclEnd
,
190 ParsedAttributes
&AccessAttrs
, AccessSpecifier AS
) {
191 assert(TemplateInfo
.Kind
!= ParsedTemplateInfo::NonTemplate
&&
192 "Template information required");
194 if (Tok
.is(tok::kw_static_assert
)) {
195 // A static_assert declaration may not be templated.
196 Diag(Tok
.getLocation(), diag::err_templated_invalid_declaration
)
197 << TemplateInfo
.getSourceRange();
198 // Parse the static_assert declaration to improve error recovery.
199 return ParseStaticAssertDeclaration(DeclEnd
);
202 if (Context
== DeclaratorContext::Member
) {
203 // We are parsing a member template.
204 DeclGroupPtrTy D
= ParseCXXClassMemberDeclaration(
205 AS
, AccessAttrs
, TemplateInfo
, &DiagsFromTParams
);
207 if (!D
|| !D
.get().isSingleDecl())
209 return D
.get().getSingleDecl();
212 ParsedAttributes
prefixAttrs(AttrFactory
);
213 ParsedAttributes
DeclSpecAttrs(AttrFactory
);
215 // GNU attributes are applied to the declaration specification while the
216 // standard attributes are applied to the declaration. We parse the two
217 // attribute sets into different containters so we can apply them during
218 // the regular parsing process.
219 while (MaybeParseCXX11Attributes(prefixAttrs
) ||
220 MaybeParseGNUAttributes(DeclSpecAttrs
))
223 if (Tok
.is(tok::kw_using
)) {
224 auto usingDeclPtr
= ParseUsingDirectiveOrDeclaration(Context
, TemplateInfo
, DeclEnd
,
226 if (!usingDeclPtr
|| !usingDeclPtr
.get().isSingleDecl())
228 return usingDeclPtr
.get().getSingleDecl();
231 // Parse the declaration specifiers, stealing any diagnostics from
232 // the template parameters.
233 ParsingDeclSpec
DS(*this, &DiagsFromTParams
);
234 DS
.SetRangeStart(DeclSpecAttrs
.Range
.getBegin());
235 DS
.SetRangeEnd(DeclSpecAttrs
.Range
.getEnd());
236 DS
.takeAttributesFrom(DeclSpecAttrs
);
238 ParseDeclarationSpecifiers(DS
, TemplateInfo
, AS
,
239 getDeclSpecContextFromDeclaratorContext(Context
));
241 if (Tok
.is(tok::semi
)) {
242 ProhibitAttributes(prefixAttrs
);
243 DeclEnd
= ConsumeToken();
244 RecordDecl
*AnonRecord
= nullptr;
245 Decl
*Decl
= Actions
.ParsedFreeStandingDeclSpec(
246 getCurScope(), AS
, DS
, ParsedAttributesView::none(),
247 TemplateInfo
.TemplateParams
? *TemplateInfo
.TemplateParams
248 : MultiTemplateParamsArg(),
249 TemplateInfo
.Kind
== ParsedTemplateInfo::ExplicitInstantiation
,
251 Actions
.ActOnDefinedDeclarationSpecifier(Decl
);
252 assert(!AnonRecord
&&
253 "Anonymous unions/structs should not be valid with template");
258 if (DS
.hasTagDefinition())
259 Actions
.ActOnDefinedDeclarationSpecifier(DS
.getRepAsDecl());
261 // Move the attributes from the prefix into the DS.
262 if (TemplateInfo
.Kind
== ParsedTemplateInfo::ExplicitInstantiation
)
263 ProhibitAttributes(prefixAttrs
);
265 // Parse the declarator.
266 ParsingDeclarator
DeclaratorInfo(*this, DS
, prefixAttrs
,
267 (DeclaratorContext
)Context
);
268 if (TemplateInfo
.TemplateParams
)
269 DeclaratorInfo
.setTemplateParameterLists(*TemplateInfo
.TemplateParams
);
271 // Turn off usual access checking for template specializations and
273 // C++20 [temp.spec] 13.9/6.
274 // This disables the access checking rules for function template explicit
275 // instantiation and explicit specialization:
277 // - template-argument-list;
278 // - noexcept-specifier;
279 // - dynamic-exception-specifications (deprecated in C++11, removed since
281 bool IsTemplateSpecOrInst
=
282 (TemplateInfo
.Kind
== ParsedTemplateInfo::ExplicitInstantiation
||
283 TemplateInfo
.Kind
== ParsedTemplateInfo::ExplicitSpecialization
);
284 SuppressAccessChecks
SAC(*this, IsTemplateSpecOrInst
);
286 ParseDeclarator(DeclaratorInfo
);
288 if (IsTemplateSpecOrInst
)
291 // Error parsing the declarator?
292 if (!DeclaratorInfo
.hasName()) {
297 LateParsedAttrList
LateParsedAttrs(true);
298 if (DeclaratorInfo
.isFunctionDeclarator()) {
299 if (Tok
.is(tok::kw_requires
)) {
300 CXXScopeSpec
&ScopeSpec
= DeclaratorInfo
.getCXXScopeSpec();
301 DeclaratorScopeObj
DeclScopeObj(*this, ScopeSpec
);
302 if (ScopeSpec
.isValid() &&
303 Actions
.ShouldEnterDeclaratorScope(getCurScope(), ScopeSpec
))
304 DeclScopeObj
.EnterDeclaratorScope();
305 ParseTrailingRequiresClause(DeclaratorInfo
);
308 MaybeParseGNUAttributes(DeclaratorInfo
, &LateParsedAttrs
);
311 if (DeclaratorInfo
.isFunctionDeclarator() &&
312 isStartOfFunctionDefinition(DeclaratorInfo
)) {
314 // Function definitions are only allowed at file scope and in C++ classes.
315 // The C++ inline method definition case is handled elsewhere, so we only
316 // need to handle the file scope definition case.
317 if (Context
!= DeclaratorContext::File
) {
318 Diag(Tok
, diag::err_function_definition_not_allowed
);
323 if (DS
.getStorageClassSpec() == DeclSpec::SCS_typedef
) {
324 // Recover by ignoring the 'typedef'. This was probably supposed to be
325 // the 'typename' keyword, which we should have already suggested adding
326 // if it's appropriate.
327 Diag(DS
.getStorageClassSpecLoc(), diag::err_function_declared_typedef
)
328 << FixItHint::CreateRemoval(DS
.getStorageClassSpecLoc());
329 DS
.ClearStorageClassSpecs();
332 if (TemplateInfo
.Kind
== ParsedTemplateInfo::ExplicitInstantiation
) {
333 if (DeclaratorInfo
.getName().getKind() !=
334 UnqualifiedIdKind::IK_TemplateId
) {
335 // If the declarator-id is not a template-id, issue a diagnostic and
336 // recover by ignoring the 'template' keyword.
337 Diag(Tok
, diag::err_template_defn_explicit_instantiation
) << 0;
338 return ParseFunctionDefinition(DeclaratorInfo
, ParsedTemplateInfo(),
341 SourceLocation LAngleLoc
342 = PP
.getLocForEndOfToken(TemplateInfo
.TemplateLoc
);
343 Diag(DeclaratorInfo
.getIdentifierLoc(),
344 diag::err_explicit_instantiation_with_definition
)
345 << SourceRange(TemplateInfo
.TemplateLoc
)
346 << FixItHint::CreateInsertion(LAngleLoc
, "<>");
348 // Recover as if it were an explicit specialization.
349 TemplateParameterLists FakedParamLists
;
350 FakedParamLists
.push_back(Actions
.ActOnTemplateParameterList(
351 0, SourceLocation(), TemplateInfo
.TemplateLoc
, LAngleLoc
,
352 std::nullopt
, LAngleLoc
, nullptr));
354 return ParseFunctionDefinition(
355 DeclaratorInfo
, ParsedTemplateInfo(&FakedParamLists
,
356 /*isSpecialization=*/true,
357 /*lastParameterListWasEmpty=*/true),
361 return ParseFunctionDefinition(DeclaratorInfo
, TemplateInfo
,
365 // Parse this declaration.
366 Decl
*ThisDecl
= ParseDeclarationAfterDeclarator(DeclaratorInfo
,
369 if (Tok
.is(tok::comma
)) {
370 Diag(Tok
, diag::err_multiple_template_declarators
)
371 << (int)TemplateInfo
.Kind
;
372 SkipUntil(tok::semi
);
376 // Eat the semi colon after the declaration.
377 ExpectAndConsumeSemi(diag::err_expected_semi_declaration
);
378 if (LateParsedAttrs
.size() > 0)
379 ParseLexedAttributeList(LateParsedAttrs
, ThisDecl
, true, false);
380 DeclaratorInfo
.complete(ThisDecl
);
384 /// \brief Parse a single declaration that declares a concept.
386 /// \param DeclEnd will receive the source location of the last token
387 /// within this declaration.
389 /// \returns the new declaration.
391 Parser::ParseConceptDefinition(const ParsedTemplateInfo
&TemplateInfo
,
392 SourceLocation
&DeclEnd
) {
393 assert(TemplateInfo
.Kind
!= ParsedTemplateInfo::NonTemplate
&&
394 "Template information required");
395 assert(Tok
.is(tok::kw_concept
) &&
396 "ParseConceptDefinition must be called when at a 'concept' keyword");
398 ConsumeToken(); // Consume 'concept'
400 SourceLocation BoolKWLoc
;
401 if (TryConsumeToken(tok::kw_bool
, BoolKWLoc
))
402 Diag(Tok
.getLocation(), diag::err_concept_legacy_bool_keyword
) <<
403 FixItHint::CreateRemoval(SourceLocation(BoolKWLoc
));
405 DiagnoseAndSkipCXX11Attributes();
408 if (ParseOptionalCXXScopeSpecifier(
409 SS
, /*ObjectType=*/nullptr,
410 /*ObjectHasErrors=*/false, /*EnteringContext=*/false,
411 /*MayBePseudoDestructor=*/nullptr,
412 /*IsTypename=*/false, /*LastII=*/nullptr, /*OnlyNamespace=*/true) ||
414 SkipUntil(tok::semi
);
419 Diag(SS
.getBeginLoc(),
420 diag::err_concept_definition_not_identifier
);
422 UnqualifiedId Result
;
423 if (ParseUnqualifiedId(SS
, /*ObjectType=*/nullptr,
424 /*ObjectHadErrors=*/false, /*EnteringContext=*/false,
425 /*AllowDestructorName=*/false,
426 /*AllowConstructorName=*/false,
427 /*AllowDeductionGuide=*/false,
428 /*TemplateKWLoc=*/nullptr, Result
)) {
429 SkipUntil(tok::semi
);
433 if (Result
.getKind() != UnqualifiedIdKind::IK_Identifier
) {
434 Diag(Result
.getBeginLoc(), diag::err_concept_definition_not_identifier
);
435 SkipUntil(tok::semi
);
439 IdentifierInfo
*Id
= Result
.Identifier
;
440 SourceLocation IdLoc
= Result
.getBeginLoc();
442 DiagnoseAndSkipCXX11Attributes();
444 if (!TryConsumeToken(tok::equal
)) {
445 Diag(Tok
.getLocation(), diag::err_expected
) << tok::equal
;
446 SkipUntil(tok::semi
);
450 ExprResult ConstraintExprResult
=
451 Actions
.CorrectDelayedTyposInExpr(ParseConstraintExpression());
452 if (ConstraintExprResult
.isInvalid()) {
453 SkipUntil(tok::semi
);
457 DeclEnd
= Tok
.getLocation();
458 ExpectAndConsumeSemi(diag::err_expected_semi_declaration
);
459 Expr
*ConstraintExpr
= ConstraintExprResult
.get();
460 return Actions
.ActOnConceptDefinition(getCurScope(),
461 *TemplateInfo
.TemplateParams
,
462 Id
, IdLoc
, ConstraintExpr
);
465 /// ParseTemplateParameters - Parses a template-parameter-list enclosed in
466 /// angle brackets. Depth is the depth of this template-parameter-list, which
467 /// is the number of template headers directly enclosing this template header.
468 /// TemplateParams is the current list of template parameters we're building.
469 /// The template parameter we parse will be added to this list. LAngleLoc and
470 /// RAngleLoc will receive the positions of the '<' and '>', respectively,
471 /// that enclose this template parameter list.
473 /// \returns true if an error occurred, false otherwise.
474 bool Parser::ParseTemplateParameters(
475 MultiParseScope
&TemplateScopes
, unsigned Depth
,
476 SmallVectorImpl
<NamedDecl
*> &TemplateParams
, SourceLocation
&LAngleLoc
,
477 SourceLocation
&RAngleLoc
) {
478 // Get the template parameter list.
479 if (!TryConsumeToken(tok::less
, LAngleLoc
)) {
480 Diag(Tok
.getLocation(), diag::err_expected_less_after
) << "template";
484 // Try to parse the template parameter list.
486 // FIXME: Missing greatergreatergreater support.
487 if (!Tok
.is(tok::greater
) && !Tok
.is(tok::greatergreater
)) {
488 TemplateScopes
.Enter(Scope::TemplateParamScope
);
489 Failed
= ParseTemplateParameterList(Depth
, TemplateParams
);
492 if (Tok
.is(tok::greatergreater
)) {
493 // No diagnostic required here: a template-parameter-list can only be
494 // followed by a declaration or, for a template template parameter, the
495 // 'class' keyword. Therefore, the second '>' will be diagnosed later.
496 // This matters for elegant diagnosis of:
497 // template<template<typename>> struct S;
498 Tok
.setKind(tok::greater
);
499 RAngleLoc
= Tok
.getLocation();
500 Tok
.setLocation(Tok
.getLocation().getLocWithOffset(1));
501 } else if (!TryConsumeToken(tok::greater
, RAngleLoc
) && Failed
) {
502 Diag(Tok
.getLocation(), diag::err_expected
) << tok::greater
;
508 /// ParseTemplateParameterList - Parse a template parameter list. If
509 /// the parsing fails badly (i.e., closing bracket was left out), this
510 /// will try to put the token stream in a reasonable position (closing
511 /// a statement, etc.) and return false.
513 /// template-parameter-list: [C++ temp]
514 /// template-parameter
515 /// template-parameter-list ',' template-parameter
517 Parser::ParseTemplateParameterList(const unsigned Depth
,
518 SmallVectorImpl
<NamedDecl
*> &TemplateParams
) {
521 if (NamedDecl
*TmpParam
522 = ParseTemplateParameter(Depth
, TemplateParams
.size())) {
523 TemplateParams
.push_back(TmpParam
);
525 // If we failed to parse a template parameter, skip until we find
526 // a comma or closing brace.
527 SkipUntil(tok::comma
, tok::greater
, tok::greatergreater
,
528 StopAtSemi
| StopBeforeMatch
);
531 // Did we find a comma or the end of the template parameter list?
532 if (Tok
.is(tok::comma
)) {
534 } else if (Tok
.isOneOf(tok::greater
, tok::greatergreater
)) {
535 // Don't consume this... that's done by template parser.
538 // Somebody probably forgot to close the template. Skip ahead and
539 // try to get out of the expression. This error is currently
540 // subsumed by whatever goes on in ParseTemplateParameter.
541 Diag(Tok
.getLocation(), diag::err_expected_comma_greater
);
542 SkipUntil(tok::comma
, tok::greater
, tok::greatergreater
,
543 StopAtSemi
| StopBeforeMatch
);
550 /// Determine whether the parser is at the start of a template
552 Parser::TPResult
Parser::isStartOfTemplateTypeParameter() {
553 if (Tok
.is(tok::kw_class
)) {
554 // "class" may be the start of an elaborated-type-specifier or a
555 // type-parameter. Per C++ [temp.param]p3, we prefer the type-parameter.
556 switch (NextToken().getKind()) {
560 case tok::greatergreater
:
562 return TPResult::True
;
564 case tok::identifier
:
565 // This may be either a type-parameter or an elaborated-type-specifier.
566 // We have to look further.
570 return TPResult::False
;
573 switch (GetLookAheadToken(2).getKind()) {
577 case tok::greatergreater
:
578 return TPResult::True
;
581 return TPResult::False
;
585 if (TryAnnotateTypeConstraint())
586 return TPResult::Error
;
588 if (isTypeConstraintAnnotation() &&
589 // Next token might be 'auto' or 'decltype', indicating that this
590 // type-constraint is in fact part of a placeholder-type-specifier of a
591 // non-type template parameter.
592 !GetLookAheadToken(Tok
.is(tok::annot_cxxscope
) ? 2 : 1)
593 .isOneOf(tok::kw_auto
, tok::kw_decltype
))
594 return TPResult::True
;
596 // 'typedef' is a reasonably-common typo/thinko for 'typename', and is
597 // ill-formed otherwise.
598 if (Tok
.isNot(tok::kw_typename
) && Tok
.isNot(tok::kw_typedef
))
599 return TPResult::False
;
601 // C++ [temp.param]p2:
602 // There is no semantic difference between class and typename in a
603 // template-parameter. typename followed by an unqualified-id
604 // names a template type parameter. typename followed by a
605 // qualified-id denotes the type in a non-type
606 // parameter-declaration.
607 Token Next
= NextToken();
609 // If we have an identifier, skip over it.
610 if (Next
.getKind() == tok::identifier
)
611 Next
= GetLookAheadToken(2);
613 switch (Next
.getKind()) {
617 case tok::greatergreater
:
619 return TPResult::True
;
621 case tok::kw_typename
:
622 case tok::kw_typedef
:
624 // These indicate that a comma was missed after a type parameter, not that
625 // we have found a non-type parameter.
626 return TPResult::True
;
629 return TPResult::False
;
633 /// ParseTemplateParameter - Parse a template-parameter (C++ [temp.param]).
635 /// template-parameter: [C++ temp.param]
637 /// parameter-declaration
639 /// type-parameter: (See below)
640 /// type-parameter-key ...[opt] identifier[opt]
641 /// type-parameter-key identifier[opt] = type-id
642 /// (C++2a) type-constraint ...[opt] identifier[opt]
643 /// (C++2a) type-constraint identifier[opt] = type-id
644 /// 'template' '<' template-parameter-list '>' type-parameter-key
645 /// ...[opt] identifier[opt]
646 /// 'template' '<' template-parameter-list '>' type-parameter-key
647 /// identifier[opt] '=' id-expression
649 /// type-parameter-key:
653 NamedDecl
*Parser::ParseTemplateParameter(unsigned Depth
, unsigned Position
) {
655 switch (isStartOfTemplateTypeParameter()) {
657 // Is there just a typo in the input code? ('typedef' instead of
659 if (Tok
.is(tok::kw_typedef
)) {
660 Diag(Tok
.getLocation(), diag::err_expected_template_parameter
);
662 Diag(Tok
.getLocation(), diag::note_meant_to_use_typename
)
663 << FixItHint::CreateReplacement(CharSourceRange::getCharRange(
668 Tok
.setKind(tok::kw_typename
);
671 return ParseTypeParameter(Depth
, Position
);
672 case TPResult::False
:
675 case TPResult::Error
: {
676 // We return an invalid parameter as opposed to null to avoid having bogus
677 // diagnostics about an empty template parameter list.
678 // FIXME: Fix ParseTemplateParameterList to better handle nullptr results
680 // Return a NTTP as if there was an error in a scope specifier, the user
681 // probably meant to write the type of a NTTP.
682 DeclSpec
DS(getAttrFactory());
683 DS
.SetTypeSpecError();
684 Declarator
D(DS
, ParsedAttributesView::none(),
685 DeclaratorContext::TemplateParam
);
686 D
.SetIdentifier(nullptr, Tok
.getLocation());
687 D
.setInvalidType(true);
688 NamedDecl
*ErrorParam
= Actions
.ActOnNonTypeTemplateParameter(
689 getCurScope(), D
, Depth
, Position
, /*EqualLoc=*/SourceLocation(),
690 /*DefaultArg=*/nullptr);
691 ErrorParam
->setInvalidDecl(true);
692 SkipUntil(tok::comma
, tok::greater
, tok::greatergreater
,
693 StopAtSemi
| StopBeforeMatch
);
697 case TPResult::Ambiguous
:
698 llvm_unreachable("template param classification can't be ambiguous");
701 if (Tok
.is(tok::kw_template
))
702 return ParseTemplateTemplateParameter(Depth
, Position
);
704 // If it's none of the above, then it must be a parameter declaration.
705 // NOTE: This will pick up errors in the closure of the template parameter
706 // list (e.g., template < ; Check here to implement >> style closures.
707 return ParseNonTypeTemplateParameter(Depth
, Position
);
710 /// Check whether the current token is a template-id annotation denoting a
712 bool Parser::isTypeConstraintAnnotation() {
713 const Token
&T
= Tok
.is(tok::annot_cxxscope
) ? NextToken() : Tok
;
714 if (T
.isNot(tok::annot_template_id
))
716 const auto *ExistingAnnot
=
717 static_cast<TemplateIdAnnotation
*>(T
.getAnnotationValue());
718 return ExistingAnnot
->Kind
== TNK_Concept_template
;
721 /// Try parsing a type-constraint at the current location.
724 /// nested-name-specifier[opt] concept-name
725 /// nested-name-specifier[opt] concept-name
726 /// '<' template-argument-list[opt] '>'[opt]
728 /// \returns true if an error occurred, and false otherwise.
729 bool Parser::TryAnnotateTypeConstraint() {
730 if (!getLangOpts().CPlusPlus20
)
733 bool WasScopeAnnotation
= Tok
.is(tok::annot_cxxscope
);
734 if (ParseOptionalCXXScopeSpecifier(SS
, /*ObjectType=*/nullptr,
735 /*ObjectHasErrors=*/false,
736 /*EnteringContext=*/false,
737 /*MayBePseudoDestructor=*/nullptr,
738 // If this is not a type-constraint, then
739 // this scope-spec is part of the typename
740 // of a non-type template parameter
741 /*IsTypename=*/true, /*LastII=*/nullptr,
742 // We won't find concepts in
743 // non-namespaces anyway, so might as well
744 // parse this correctly for possible type
746 /*OnlyNamespace=*/false))
749 if (Tok
.is(tok::identifier
)) {
750 UnqualifiedId PossibleConceptName
;
751 PossibleConceptName
.setIdentifier(Tok
.getIdentifierInfo(),
754 TemplateTy PossibleConcept
;
755 bool MemberOfUnknownSpecialization
= false;
756 auto TNK
= Actions
.isTemplateName(getCurScope(), SS
,
757 /*hasTemplateKeyword=*/false,
759 /*ObjectType=*/ParsedType(),
760 /*EnteringContext=*/false,
762 MemberOfUnknownSpecialization
,
763 /*Disambiguation=*/true);
764 if (MemberOfUnknownSpecialization
|| !PossibleConcept
||
765 TNK
!= TNK_Concept_template
) {
767 AnnotateScopeToken(SS
, !WasScopeAnnotation
);
771 // At this point we're sure we're dealing with a constrained parameter. It
772 // may or may not have a template parameter list following the concept
774 if (AnnotateTemplateIdToken(PossibleConcept
, TNK
, SS
,
775 /*TemplateKWLoc=*/SourceLocation(),
777 /*AllowTypeAnnotation=*/false,
778 /*TypeConstraint=*/true))
783 AnnotateScopeToken(SS
, !WasScopeAnnotation
);
787 /// ParseTypeParameter - Parse a template type parameter (C++ [temp.param]).
788 /// Other kinds of template parameters are parsed in
789 /// ParseTemplateTemplateParameter and ParseNonTypeTemplateParameter.
791 /// type-parameter: [C++ temp.param]
792 /// 'class' ...[opt][C++0x] identifier[opt]
793 /// 'class' identifier[opt] '=' type-id
794 /// 'typename' ...[opt][C++0x] identifier[opt]
795 /// 'typename' identifier[opt] '=' type-id
796 NamedDecl
*Parser::ParseTypeParameter(unsigned Depth
, unsigned Position
) {
797 assert((Tok
.isOneOf(tok::kw_class
, tok::kw_typename
) ||
798 isTypeConstraintAnnotation()) &&
799 "A type-parameter starts with 'class', 'typename' or a "
802 CXXScopeSpec TypeConstraintSS
;
803 TemplateIdAnnotation
*TypeConstraint
= nullptr;
804 bool TypenameKeyword
= false;
805 SourceLocation KeyLoc
;
806 ParseOptionalCXXScopeSpecifier(TypeConstraintSS
, /*ObjectType=*/nullptr,
807 /*ObjectHasErrors=*/false,
808 /*EnteringContext*/ false);
809 if (Tok
.is(tok::annot_template_id
)) {
810 // Consume the 'type-constraint'.
812 static_cast<TemplateIdAnnotation
*>(Tok
.getAnnotationValue());
813 assert(TypeConstraint
->Kind
== TNK_Concept_template
&&
814 "stray non-concept template-id annotation");
815 KeyLoc
= ConsumeAnnotationToken();
817 assert(TypeConstraintSS
.isEmpty() &&
818 "expected type constraint after scope specifier");
820 // Consume the 'class' or 'typename' keyword.
821 TypenameKeyword
= Tok
.is(tok::kw_typename
);
822 KeyLoc
= ConsumeToken();
825 // Grab the ellipsis (if given).
826 SourceLocation EllipsisLoc
;
827 if (TryConsumeToken(tok::ellipsis
, EllipsisLoc
)) {
829 getLangOpts().CPlusPlus11
830 ? diag::warn_cxx98_compat_variadic_templates
831 : diag::ext_variadic_templates
);
834 // Grab the template parameter name (if given)
835 SourceLocation NameLoc
= Tok
.getLocation();
836 IdentifierInfo
*ParamName
= nullptr;
837 if (Tok
.is(tok::identifier
)) {
838 ParamName
= Tok
.getIdentifierInfo();
840 } else if (Tok
.isOneOf(tok::equal
, tok::comma
, tok::greater
,
841 tok::greatergreater
)) {
842 // Unnamed template parameter. Don't have to do anything here, just
843 // don't consume this token.
845 Diag(Tok
.getLocation(), diag::err_expected
) << tok::identifier
;
849 // Recover from misplaced ellipsis.
850 bool AlreadyHasEllipsis
= EllipsisLoc
.isValid();
851 if (TryConsumeToken(tok::ellipsis
, EllipsisLoc
))
852 DiagnoseMisplacedEllipsis(EllipsisLoc
, NameLoc
, AlreadyHasEllipsis
, true);
854 // Grab a default argument (if available).
855 // Per C++0x [basic.scope.pdecl]p9, we parse the default argument before
856 // we introduce the type parameter into the local scope.
857 SourceLocation EqualLoc
;
858 ParsedType DefaultArg
;
859 if (TryConsumeToken(tok::equal
, EqualLoc
)) {
860 // The default argument may declare template parameters, notably
861 // if it contains a generic lambda, so we need to increase
862 // the template depth as these parameters would not be instantiated
863 // at the current level.
864 TemplateParameterDepthRAII
CurTemplateDepthTracker(TemplateParameterDepth
);
865 ++CurTemplateDepthTracker
;
867 ParseTypeName(/*Range=*/nullptr, DeclaratorContext::TemplateTypeArg
)
871 NamedDecl
*NewDecl
= Actions
.ActOnTypeParameter(getCurScope(),
872 TypenameKeyword
, EllipsisLoc
,
873 KeyLoc
, ParamName
, NameLoc
,
874 Depth
, Position
, EqualLoc
,
876 TypeConstraint
!= nullptr);
878 if (TypeConstraint
) {
879 Actions
.ActOnTypeConstraint(TypeConstraintSS
, TypeConstraint
,
880 cast
<TemplateTypeParmDecl
>(NewDecl
),
887 /// ParseTemplateTemplateParameter - Handle the parsing of template
888 /// template parameters.
890 /// type-parameter: [C++ temp.param]
891 /// template-head type-parameter-key ...[opt] identifier[opt]
892 /// template-head type-parameter-key identifier[opt] = id-expression
893 /// type-parameter-key:
895 /// 'typename' [C++1z]
896 /// template-head: [C++2a]
897 /// 'template' '<' template-parameter-list '>'
898 /// requires-clause[opt]
899 NamedDecl
*Parser::ParseTemplateTemplateParameter(unsigned Depth
,
901 assert(Tok
.is(tok::kw_template
) && "Expected 'template' keyword");
903 // Handle the template <...> part.
904 SourceLocation TemplateLoc
= ConsumeToken();
905 SmallVector
<NamedDecl
*,8> TemplateParams
;
906 SourceLocation LAngleLoc
, RAngleLoc
;
907 ExprResult OptionalRequiresClauseConstraintER
;
909 MultiParseScope
TemplateParmScope(*this);
910 if (ParseTemplateParameters(TemplateParmScope
, Depth
+ 1, TemplateParams
,
911 LAngleLoc
, RAngleLoc
)) {
914 if (TryConsumeToken(tok::kw_requires
)) {
915 OptionalRequiresClauseConstraintER
=
916 Actions
.ActOnRequiresClause(ParseConstraintLogicalOrExpression(
917 /*IsTrailingRequiresClause=*/false));
918 if (!OptionalRequiresClauseConstraintER
.isUsable()) {
919 SkipUntil(tok::comma
, tok::greater
, tok::greatergreater
,
920 StopAtSemi
| StopBeforeMatch
);
926 // Provide an ExtWarn if the C++1z feature of using 'typename' here is used.
927 // Generate a meaningful error if the user forgot to put class before the
928 // identifier, comma, or greater. Provide a fixit if the identifier, comma,
929 // or greater appear immediately or after 'struct'. In the latter case,
930 // replace the keyword with 'class'.
931 if (!TryConsumeToken(tok::kw_class
)) {
932 bool Replace
= Tok
.isOneOf(tok::kw_typename
, tok::kw_struct
);
933 const Token
&Next
= Tok
.is(tok::kw_struct
) ? NextToken() : Tok
;
934 if (Tok
.is(tok::kw_typename
)) {
935 Diag(Tok
.getLocation(),
936 getLangOpts().CPlusPlus17
937 ? diag::warn_cxx14_compat_template_template_param_typename
938 : diag::ext_template_template_param_typename
)
939 << (!getLangOpts().CPlusPlus17
940 ? FixItHint::CreateReplacement(Tok
.getLocation(), "class")
942 } else if (Next
.isOneOf(tok::identifier
, tok::comma
, tok::greater
,
943 tok::greatergreater
, tok::ellipsis
)) {
944 Diag(Tok
.getLocation(), diag::err_class_on_template_template_param
)
945 << getLangOpts().CPlusPlus17
947 ? FixItHint::CreateReplacement(Tok
.getLocation(), "class")
948 : FixItHint::CreateInsertion(Tok
.getLocation(), "class "));
950 Diag(Tok
.getLocation(), diag::err_class_on_template_template_param
)
951 << getLangOpts().CPlusPlus17
;
957 // Parse the ellipsis, if given.
958 SourceLocation EllipsisLoc
;
959 if (TryConsumeToken(tok::ellipsis
, EllipsisLoc
))
961 getLangOpts().CPlusPlus11
962 ? diag::warn_cxx98_compat_variadic_templates
963 : diag::ext_variadic_templates
);
965 // Get the identifier, if given.
966 SourceLocation NameLoc
= Tok
.getLocation();
967 IdentifierInfo
*ParamName
= nullptr;
968 if (Tok
.is(tok::identifier
)) {
969 ParamName
= Tok
.getIdentifierInfo();
971 } else if (Tok
.isOneOf(tok::equal
, tok::comma
, tok::greater
,
972 tok::greatergreater
)) {
973 // Unnamed template parameter. Don't have to do anything here, just
974 // don't consume this token.
976 Diag(Tok
.getLocation(), diag::err_expected
) << tok::identifier
;
980 // Recover from misplaced ellipsis.
981 bool AlreadyHasEllipsis
= EllipsisLoc
.isValid();
982 if (TryConsumeToken(tok::ellipsis
, EllipsisLoc
))
983 DiagnoseMisplacedEllipsis(EllipsisLoc
, NameLoc
, AlreadyHasEllipsis
, true);
985 TemplateParameterList
*ParamList
= Actions
.ActOnTemplateParameterList(
986 Depth
, SourceLocation(), TemplateLoc
, LAngleLoc
, TemplateParams
,
987 RAngleLoc
, OptionalRequiresClauseConstraintER
.get());
989 // Grab a default argument (if available).
990 // Per C++0x [basic.scope.pdecl]p9, we parse the default argument before
991 // we introduce the template parameter into the local scope.
992 SourceLocation EqualLoc
;
993 ParsedTemplateArgument DefaultArg
;
994 if (TryConsumeToken(tok::equal
, EqualLoc
)) {
995 DefaultArg
= ParseTemplateTemplateArgument();
996 if (DefaultArg
.isInvalid()) {
997 Diag(Tok
.getLocation(),
998 diag::err_default_template_template_parameter_not_template
);
999 SkipUntil(tok::comma
, tok::greater
, tok::greatergreater
,
1000 StopAtSemi
| StopBeforeMatch
);
1004 return Actions
.ActOnTemplateTemplateParameter(getCurScope(), TemplateLoc
,
1005 ParamList
, EllipsisLoc
,
1006 ParamName
, NameLoc
, Depth
,
1007 Position
, EqualLoc
, DefaultArg
);
1010 /// ParseNonTypeTemplateParameter - Handle the parsing of non-type
1011 /// template parameters (e.g., in "template<int Size> class array;").
1013 /// template-parameter:
1015 /// parameter-declaration
1017 Parser::ParseNonTypeTemplateParameter(unsigned Depth
, unsigned Position
) {
1018 // Parse the declaration-specifiers (i.e., the type).
1019 // FIXME: The type should probably be restricted in some way... Not all
1020 // declarators (parts of declarators?) are accepted for parameters.
1021 DeclSpec
DS(AttrFactory
);
1022 ParseDeclarationSpecifiers(DS
, ParsedTemplateInfo(), AS_none
,
1023 DeclSpecContext::DSC_template_param
);
1025 // Parse this as a typename.
1026 Declarator
ParamDecl(DS
, ParsedAttributesView::none(),
1027 DeclaratorContext::TemplateParam
);
1028 ParseDeclarator(ParamDecl
);
1029 if (DS
.getTypeSpecType() == DeclSpec::TST_unspecified
) {
1030 Diag(Tok
.getLocation(), diag::err_expected_template_parameter
);
1034 // Recover from misplaced ellipsis.
1035 SourceLocation EllipsisLoc
;
1036 if (TryConsumeToken(tok::ellipsis
, EllipsisLoc
))
1037 DiagnoseMisplacedEllipsisInDeclarator(EllipsisLoc
, ParamDecl
);
1039 // If there is a default value, parse it.
1040 // Per C++0x [basic.scope.pdecl]p9, we parse the default argument before
1041 // we introduce the template parameter into the local scope.
1042 SourceLocation EqualLoc
;
1043 ExprResult DefaultArg
;
1044 if (TryConsumeToken(tok::equal
, EqualLoc
)) {
1045 if (Tok
.is(tok::l_paren
) && NextToken().is(tok::l_brace
)) {
1046 Diag(Tok
.getLocation(), diag::err_stmt_expr_in_default_arg
) << 1;
1047 SkipUntil(tok::comma
, tok::greater
, StopAtSemi
| StopBeforeMatch
);
1049 // C++ [temp.param]p15:
1050 // When parsing a default template-argument for a non-type
1051 // template-parameter, the first non-nested > is taken as the
1052 // end of the template-parameter-list rather than a greater-than
1054 GreaterThanIsOperatorScope
G(GreaterThanIsOperator
, false);
1056 // The default argument may declare template parameters, notably
1057 // if it contains a generic lambda, so we need to increase
1058 // the template depth as these parameters would not be instantiated
1059 // at the current level.
1060 TemplateParameterDepthRAII
CurTemplateDepthTracker(
1061 TemplateParameterDepth
);
1062 ++CurTemplateDepthTracker
;
1063 EnterExpressionEvaluationContext
ConstantEvaluated(
1064 Actions
, Sema::ExpressionEvaluationContext::ConstantEvaluated
);
1066 Actions
.CorrectDelayedTyposInExpr(ParseAssignmentExpression());
1067 if (DefaultArg
.isInvalid())
1068 SkipUntil(tok::comma
, tok::greater
, StopAtSemi
| StopBeforeMatch
);
1072 // Create the parameter.
1073 return Actions
.ActOnNonTypeTemplateParameter(getCurScope(), ParamDecl
,
1074 Depth
, Position
, EqualLoc
,
1078 void Parser::DiagnoseMisplacedEllipsis(SourceLocation EllipsisLoc
,
1079 SourceLocation CorrectLoc
,
1080 bool AlreadyHasEllipsis
,
1081 bool IdentifierHasName
) {
1082 FixItHint Insertion
;
1083 if (!AlreadyHasEllipsis
)
1084 Insertion
= FixItHint::CreateInsertion(CorrectLoc
, "...");
1085 Diag(EllipsisLoc
, diag::err_misplaced_ellipsis_in_declaration
)
1086 << FixItHint::CreateRemoval(EllipsisLoc
) << Insertion
1087 << !IdentifierHasName
;
1090 void Parser::DiagnoseMisplacedEllipsisInDeclarator(SourceLocation EllipsisLoc
,
1092 assert(EllipsisLoc
.isValid());
1093 bool AlreadyHasEllipsis
= D
.getEllipsisLoc().isValid();
1094 if (!AlreadyHasEllipsis
)
1095 D
.setEllipsisLoc(EllipsisLoc
);
1096 DiagnoseMisplacedEllipsis(EllipsisLoc
, D
.getIdentifierLoc(),
1097 AlreadyHasEllipsis
, D
.hasName());
1100 /// Parses a '>' at the end of a template list.
1102 /// If this function encounters '>>', '>>>', '>=', or '>>=', it tries
1103 /// to determine if these tokens were supposed to be a '>' followed by
1104 /// '>', '>>', '>=', or '>='. It emits an appropriate diagnostic if necessary.
1106 /// \param RAngleLoc the location of the consumed '>'.
1108 /// \param ConsumeLastToken if true, the '>' is consumed.
1110 /// \param ObjCGenericList if true, this is the '>' closing an Objective-C
1111 /// type parameter or type argument list, rather than a C++ template parameter
1112 /// or argument list.
1114 /// \returns true, if current token does not start with '>', false otherwise.
1115 bool Parser::ParseGreaterThanInTemplateList(SourceLocation LAngleLoc
,
1116 SourceLocation
&RAngleLoc
,
1117 bool ConsumeLastToken
,
1118 bool ObjCGenericList
) {
1119 // What will be left once we've consumed the '>'.
1120 tok::TokenKind RemainingToken
;
1121 const char *ReplacementStr
= "> >";
1122 bool MergeWithNextToken
= false;
1124 switch (Tok
.getKind()) {
1126 Diag(getEndOfPreviousToken(), diag::err_expected
) << tok::greater
;
1127 Diag(LAngleLoc
, diag::note_matching
) << tok::less
;
1131 // Determine the location of the '>' token. Only consume this token
1132 // if the caller asked us to.
1133 RAngleLoc
= Tok
.getLocation();
1134 if (ConsumeLastToken
)
1138 case tok::greatergreater
:
1139 RemainingToken
= tok::greater
;
1142 case tok::greatergreatergreater
:
1143 RemainingToken
= tok::greatergreater
;
1146 case tok::greaterequal
:
1147 RemainingToken
= tok::equal
;
1148 ReplacementStr
= "> =";
1150 // Join two adjacent '=' tokens into one, for cases like:
1151 // void (*p)() = f<int>;
1152 // return f<int>==p;
1153 if (NextToken().is(tok::equal
) &&
1154 areTokensAdjacent(Tok
, NextToken())) {
1155 RemainingToken
= tok::equalequal
;
1156 MergeWithNextToken
= true;
1160 case tok::greatergreaterequal
:
1161 RemainingToken
= tok::greaterequal
;
1165 // This template-id is terminated by a token that starts with a '>'.
1166 // Outside C++11 and Objective-C, this is now error recovery.
1168 // C++11 allows this when the token is '>>', and in CUDA + C++11 mode, we
1169 // extend that treatment to also apply to the '>>>' token.
1171 // Objective-C allows this in its type parameter / argument lists.
1173 SourceLocation TokBeforeGreaterLoc
= PrevTokLocation
;
1174 SourceLocation TokLoc
= Tok
.getLocation();
1175 Token Next
= NextToken();
1177 // Whether splitting the current token after the '>' would undesirably result
1178 // in the remaining token pasting with the token after it. This excludes the
1179 // MergeWithNextToken cases, which we've already handled.
1180 bool PreventMergeWithNextToken
=
1181 (RemainingToken
== tok::greater
||
1182 RemainingToken
== tok::greatergreater
) &&
1183 (Next
.isOneOf(tok::greater
, tok::greatergreater
,
1184 tok::greatergreatergreater
, tok::equal
, tok::greaterequal
,
1185 tok::greatergreaterequal
, tok::equalequal
)) &&
1186 areTokensAdjacent(Tok
, Next
);
1188 // Diagnose this situation as appropriate.
1189 if (!ObjCGenericList
) {
1190 // The source range of the replaced token(s).
1191 CharSourceRange ReplacementRange
= CharSourceRange::getCharRange(
1192 TokLoc
, Lexer::AdvanceToTokenCharacter(TokLoc
, 2, PP
.getSourceManager(),
1195 // A hint to put a space between the '>>'s. In order to make the hint as
1196 // clear as possible, we include the characters either side of the space in
1197 // the replacement, rather than just inserting a space at SecondCharLoc.
1198 FixItHint Hint1
= FixItHint::CreateReplacement(ReplacementRange
,
1201 // A hint to put another space after the token, if it would otherwise be
1202 // lexed differently.
1204 if (PreventMergeWithNextToken
)
1205 Hint2
= FixItHint::CreateInsertion(Next
.getLocation(), " ");
1207 unsigned DiagId
= diag::err_two_right_angle_brackets_need_space
;
1208 if (getLangOpts().CPlusPlus11
&&
1209 (Tok
.is(tok::greatergreater
) || Tok
.is(tok::greatergreatergreater
)))
1210 DiagId
= diag::warn_cxx98_compat_two_right_angle_brackets
;
1211 else if (Tok
.is(tok::greaterequal
))
1212 DiagId
= diag::err_right_angle_bracket_equal_needs_space
;
1213 Diag(TokLoc
, DiagId
) << Hint1
<< Hint2
;
1216 // Find the "length" of the resulting '>' token. This is not always 1, as it
1217 // can contain escaped newlines.
1218 unsigned GreaterLength
= Lexer::getTokenPrefixLength(
1219 TokLoc
, 1, PP
.getSourceManager(), getLangOpts());
1221 // Annotate the source buffer to indicate that we split the token after the
1222 // '>'. This allows us to properly find the end of, and extract the spelling
1223 // of, the '>' token later.
1224 RAngleLoc
= PP
.SplitToken(TokLoc
, GreaterLength
);
1226 // Strip the initial '>' from the token.
1227 bool CachingTokens
= PP
.IsPreviousCachedToken(Tok
);
1229 Token Greater
= Tok
;
1230 Greater
.setLocation(RAngleLoc
);
1231 Greater
.setKind(tok::greater
);
1232 Greater
.setLength(GreaterLength
);
1234 unsigned OldLength
= Tok
.getLength();
1235 if (MergeWithNextToken
) {
1237 OldLength
+= Tok
.getLength();
1240 Tok
.setKind(RemainingToken
);
1241 Tok
.setLength(OldLength
- GreaterLength
);
1243 // Split the second token if lexing it normally would lex a different token
1244 // (eg, the fifth token in 'A<B>>>' should re-lex as '>', not '>>').
1245 SourceLocation AfterGreaterLoc
= TokLoc
.getLocWithOffset(GreaterLength
);
1246 if (PreventMergeWithNextToken
)
1247 AfterGreaterLoc
= PP
.SplitToken(AfterGreaterLoc
, Tok
.getLength());
1248 Tok
.setLocation(AfterGreaterLoc
);
1250 // Update the token cache to match what we just did if necessary.
1251 if (CachingTokens
) {
1252 // If the previous cached token is being merged, delete it.
1253 if (MergeWithNextToken
)
1254 PP
.ReplacePreviousCachedToken({});
1256 if (ConsumeLastToken
)
1257 PP
.ReplacePreviousCachedToken({Greater
, Tok
});
1259 PP
.ReplacePreviousCachedToken({Greater
});
1262 if (ConsumeLastToken
) {
1263 PrevTokLocation
= RAngleLoc
;
1265 PrevTokLocation
= TokBeforeGreaterLoc
;
1266 PP
.EnterToken(Tok
, /*IsReinject=*/true);
1273 /// Parses a template-id that after the template name has
1274 /// already been parsed.
1276 /// This routine takes care of parsing the enclosed template argument
1277 /// list ('<' template-parameter-list [opt] '>') and placing the
1278 /// results into a form that can be transferred to semantic analysis.
1280 /// \param ConsumeLastToken if true, then we will consume the last
1281 /// token that forms the template-id. Otherwise, we will leave the
1282 /// last token in the stream (e.g., so that it can be replaced with an
1283 /// annotation token).
1284 bool Parser::ParseTemplateIdAfterTemplateName(bool ConsumeLastToken
,
1285 SourceLocation
&LAngleLoc
,
1286 TemplateArgList
&TemplateArgs
,
1287 SourceLocation
&RAngleLoc
,
1288 TemplateTy Template
) {
1289 assert(Tok
.is(tok::less
) && "Must have already parsed the template-name");
1292 LAngleLoc
= ConsumeToken();
1294 // Parse the optional template-argument-list.
1295 bool Invalid
= false;
1297 GreaterThanIsOperatorScope
G(GreaterThanIsOperator
, false);
1298 if (!Tok
.isOneOf(tok::greater
, tok::greatergreater
,
1299 tok::greatergreatergreater
, tok::greaterequal
,
1300 tok::greatergreaterequal
))
1301 Invalid
= ParseTemplateArgumentList(TemplateArgs
, Template
, LAngleLoc
);
1304 // Try to find the closing '>'.
1305 if (getLangOpts().CPlusPlus11
)
1306 SkipUntil(tok::greater
, tok::greatergreater
,
1307 tok::greatergreatergreater
, StopAtSemi
| StopBeforeMatch
);
1309 SkipUntil(tok::greater
, StopAtSemi
| StopBeforeMatch
);
1313 return ParseGreaterThanInTemplateList(LAngleLoc
, RAngleLoc
, ConsumeLastToken
,
1314 /*ObjCGenericList=*/false) ||
1318 /// Replace the tokens that form a simple-template-id with an
1319 /// annotation token containing the complete template-id.
1321 /// The first token in the stream must be the name of a template that
1322 /// is followed by a '<'. This routine will parse the complete
1323 /// simple-template-id and replace the tokens with a single annotation
1324 /// token with one of two different kinds: if the template-id names a
1325 /// type (and \p AllowTypeAnnotation is true), the annotation token is
1326 /// a type annotation that includes the optional nested-name-specifier
1327 /// (\p SS). Otherwise, the annotation token is a template-id
1328 /// annotation that does not include the optional
1329 /// nested-name-specifier.
1331 /// \param Template the declaration of the template named by the first
1332 /// token (an identifier), as returned from \c Action::isTemplateName().
1334 /// \param TNK the kind of template that \p Template
1335 /// refers to, as returned from \c Action::isTemplateName().
1337 /// \param SS if non-NULL, the nested-name-specifier that precedes
1338 /// this template name.
1340 /// \param TemplateKWLoc if valid, specifies that this template-id
1341 /// annotation was preceded by the 'template' keyword and gives the
1342 /// location of that keyword. If invalid (the default), then this
1343 /// template-id was not preceded by a 'template' keyword.
1345 /// \param AllowTypeAnnotation if true (the default), then a
1346 /// simple-template-id that refers to a class template, template
1347 /// template parameter, or other template that produces a type will be
1348 /// replaced with a type annotation token. Otherwise, the
1349 /// simple-template-id is always replaced with a template-id
1350 /// annotation token.
1352 /// \param TypeConstraint if true, then this is actually a type-constraint,
1353 /// meaning that the template argument list can be omitted (and the template in
1354 /// question must be a concept).
1356 /// If an unrecoverable parse error occurs and no annotation token can be
1357 /// formed, this function returns true.
1359 bool Parser::AnnotateTemplateIdToken(TemplateTy Template
, TemplateNameKind TNK
,
1361 SourceLocation TemplateKWLoc
,
1362 UnqualifiedId
&TemplateName
,
1363 bool AllowTypeAnnotation
,
1364 bool TypeConstraint
) {
1365 assert(getLangOpts().CPlusPlus
&& "Can only annotate template-ids in C++");
1366 assert((Tok
.is(tok::less
) || TypeConstraint
) &&
1367 "Parser isn't at the beginning of a template-id");
1368 assert(!(TypeConstraint
&& AllowTypeAnnotation
) && "type-constraint can't be "
1369 "a type annotation");
1370 assert((!TypeConstraint
|| TNK
== TNK_Concept_template
) && "type-constraint "
1371 "must accompany a concept name");
1372 assert((Template
|| TNK
== TNK_Non_template
) && "missing template name");
1374 // Consume the template-name.
1375 SourceLocation TemplateNameLoc
= TemplateName
.getSourceRange().getBegin();
1377 // Parse the enclosed template argument list.
1378 SourceLocation LAngleLoc
, RAngleLoc
;
1379 TemplateArgList TemplateArgs
;
1380 bool ArgsInvalid
= false;
1381 if (!TypeConstraint
|| Tok
.is(tok::less
)) {
1382 ArgsInvalid
= ParseTemplateIdAfterTemplateName(
1383 false, LAngleLoc
, TemplateArgs
, RAngleLoc
, Template
);
1384 // If we couldn't recover from invalid arguments, don't form an annotation
1385 // token -- we don't know how much to annotate.
1386 // FIXME: This can lead to duplicate diagnostics if we retry parsing this
1387 // template-id in another context. Try to annotate anyway?
1388 if (RAngleLoc
.isInvalid())
1392 ASTTemplateArgsPtr
TemplateArgsPtr(TemplateArgs
);
1394 // Build the annotation token.
1395 if (TNK
== TNK_Type_template
&& AllowTypeAnnotation
) {
1396 TypeResult Type
= ArgsInvalid
1398 : Actions
.ActOnTemplateIdType(
1399 getCurScope(), SS
, TemplateKWLoc
, Template
,
1400 TemplateName
.Identifier
, TemplateNameLoc
,
1401 LAngleLoc
, TemplateArgsPtr
, RAngleLoc
);
1403 Tok
.setKind(tok::annot_typename
);
1404 setTypeAnnotation(Tok
, Type
);
1405 if (SS
.isNotEmpty())
1406 Tok
.setLocation(SS
.getBeginLoc());
1407 else if (TemplateKWLoc
.isValid())
1408 Tok
.setLocation(TemplateKWLoc
);
1410 Tok
.setLocation(TemplateNameLoc
);
1412 // Build a template-id annotation token that can be processed
1414 Tok
.setKind(tok::annot_template_id
);
1416 IdentifierInfo
*TemplateII
=
1417 TemplateName
.getKind() == UnqualifiedIdKind::IK_Identifier
1418 ? TemplateName
.Identifier
1421 OverloadedOperatorKind OpKind
=
1422 TemplateName
.getKind() == UnqualifiedIdKind::IK_Identifier
1424 : TemplateName
.OperatorFunctionId
.Operator
;
1426 TemplateIdAnnotation
*TemplateId
= TemplateIdAnnotation::Create(
1427 TemplateKWLoc
, TemplateNameLoc
, TemplateII
, OpKind
, Template
, TNK
,
1428 LAngleLoc
, RAngleLoc
, TemplateArgs
, ArgsInvalid
, TemplateIds
);
1430 Tok
.setAnnotationValue(TemplateId
);
1431 if (TemplateKWLoc
.isValid())
1432 Tok
.setLocation(TemplateKWLoc
);
1434 Tok
.setLocation(TemplateNameLoc
);
1437 // Common fields for the annotation token
1438 Tok
.setAnnotationEndLoc(RAngleLoc
);
1440 // In case the tokens were cached, have Preprocessor replace them with the
1441 // annotation token.
1442 PP
.AnnotateCachedTokens(Tok
);
1446 /// Replaces a template-id annotation token with a type
1447 /// annotation token.
1449 /// If there was a failure when forming the type from the template-id,
1450 /// a type annotation token will still be created, but will have a
1451 /// NULL type pointer to signify an error.
1453 /// \param SS The scope specifier appearing before the template-id, if any.
1455 /// \param AllowImplicitTypename whether this is a context where T::type
1456 /// denotes a dependent type.
1457 /// \param IsClassName Is this template-id appearing in a context where we
1458 /// know it names a class, such as in an elaborated-type-specifier or
1459 /// base-specifier? ('typename' and 'template' are unneeded and disallowed
1460 /// in those contexts.)
1461 void Parser::AnnotateTemplateIdTokenAsType(
1462 CXXScopeSpec
&SS
, ImplicitTypenameContext AllowImplicitTypename
,
1464 assert(Tok
.is(tok::annot_template_id
) && "Requires template-id tokens");
1466 TemplateIdAnnotation
*TemplateId
= takeTemplateIdAnnotation(Tok
);
1467 assert(TemplateId
->mightBeType() &&
1468 "Only works for type and dependent templates");
1470 ASTTemplateArgsPtr
TemplateArgsPtr(TemplateId
->getTemplateArgs(),
1471 TemplateId
->NumArgs
);
1474 TemplateId
->isInvalid()
1476 : Actions
.ActOnTemplateIdType(
1477 getCurScope(), SS
, TemplateId
->TemplateKWLoc
,
1478 TemplateId
->Template
, TemplateId
->Name
,
1479 TemplateId
->TemplateNameLoc
, TemplateId
->LAngleLoc
,
1480 TemplateArgsPtr
, TemplateId
->RAngleLoc
,
1481 /*IsCtorOrDtorName=*/false, IsClassName
, AllowImplicitTypename
);
1482 // Create the new "type" annotation token.
1483 Tok
.setKind(tok::annot_typename
);
1484 setTypeAnnotation(Tok
, Type
);
1485 if (SS
.isNotEmpty()) // it was a C++ qualified type name.
1486 Tok
.setLocation(SS
.getBeginLoc());
1487 // End location stays the same
1489 // Replace the template-id annotation token, and possible the scope-specifier
1490 // that precedes it, with the typename annotation token.
1491 PP
.AnnotateCachedTokens(Tok
);
1494 /// Determine whether the given token can end a template argument.
1495 static bool isEndOfTemplateArgument(Token Tok
) {
1496 // FIXME: Handle '>>>'.
1497 return Tok
.isOneOf(tok::comma
, tok::greater
, tok::greatergreater
,
1498 tok::greatergreatergreater
);
1501 /// Parse a C++ template template argument.
1502 ParsedTemplateArgument
Parser::ParseTemplateTemplateArgument() {
1503 if (!Tok
.is(tok::identifier
) && !Tok
.is(tok::coloncolon
) &&
1504 !Tok
.is(tok::annot_cxxscope
))
1505 return ParsedTemplateArgument();
1507 // C++0x [temp.arg.template]p1:
1508 // A template-argument for a template template-parameter shall be the name
1509 // of a class template or an alias template, expressed as id-expression.
1511 // We parse an id-expression that refers to a class template or alias
1512 // template. The grammar we parse is:
1514 // nested-name-specifier[opt] template[opt] identifier ...[opt]
1516 // followed by a token that terminates a template argument, such as ',',
1517 // '>', or (in some cases) '>>'.
1518 CXXScopeSpec SS
; // nested-name-specifier, if present
1519 ParseOptionalCXXScopeSpecifier(SS
, /*ObjectType=*/nullptr,
1520 /*ObjectHasErrors=*/false,
1521 /*EnteringContext=*/false);
1523 ParsedTemplateArgument Result
;
1524 SourceLocation EllipsisLoc
;
1525 if (SS
.isSet() && Tok
.is(tok::kw_template
)) {
1526 // Parse the optional 'template' keyword following the
1527 // nested-name-specifier.
1528 SourceLocation TemplateKWLoc
= ConsumeToken();
1530 if (Tok
.is(tok::identifier
)) {
1531 // We appear to have a dependent template name.
1533 Name
.setIdentifier(Tok
.getIdentifierInfo(), Tok
.getLocation());
1534 ConsumeToken(); // the identifier
1536 TryConsumeToken(tok::ellipsis
, EllipsisLoc
);
1538 // If the next token signals the end of a template argument, then we have
1539 // a (possibly-dependent) template name that could be a template template
1541 TemplateTy Template
;
1542 if (isEndOfTemplateArgument(Tok
) &&
1543 Actions
.ActOnTemplateName(getCurScope(), SS
, TemplateKWLoc
, Name
,
1544 /*ObjectType=*/nullptr,
1545 /*EnteringContext=*/false, Template
))
1546 Result
= ParsedTemplateArgument(SS
, Template
, Name
.StartLocation
);
1548 } else if (Tok
.is(tok::identifier
)) {
1549 // We may have a (non-dependent) template name.
1550 TemplateTy Template
;
1552 Name
.setIdentifier(Tok
.getIdentifierInfo(), Tok
.getLocation());
1553 ConsumeToken(); // the identifier
1555 TryConsumeToken(tok::ellipsis
, EllipsisLoc
);
1557 if (isEndOfTemplateArgument(Tok
)) {
1558 bool MemberOfUnknownSpecialization
;
1559 TemplateNameKind TNK
= Actions
.isTemplateName(
1561 /*hasTemplateKeyword=*/false, Name
,
1562 /*ObjectType=*/nullptr,
1563 /*EnteringContext=*/false, Template
, MemberOfUnknownSpecialization
);
1564 if (TNK
== TNK_Dependent_template_name
|| TNK
== TNK_Type_template
) {
1565 // We have an id-expression that refers to a class template or
1566 // (C++0x) alias template.
1567 Result
= ParsedTemplateArgument(SS
, Template
, Name
.StartLocation
);
1572 // If this is a pack expansion, build it as such.
1573 if (EllipsisLoc
.isValid() && !Result
.isInvalid())
1574 Result
= Actions
.ActOnPackExpansion(Result
, EllipsisLoc
);
1579 /// ParseTemplateArgument - Parse a C++ template argument (C++ [temp.names]).
1581 /// template-argument: [C++ 14.2]
1582 /// constant-expression
1585 ParsedTemplateArgument
Parser::ParseTemplateArgument() {
1586 // C++ [temp.arg]p2:
1587 // In a template-argument, an ambiguity between a type-id and an
1588 // expression is resolved to a type-id, regardless of the form of
1589 // the corresponding template-parameter.
1591 // Therefore, we initially try to parse a type-id - and isCXXTypeId might look
1592 // up and annotate an identifier as an id-expression during disambiguation,
1593 // so enter the appropriate context for a constant expression template
1594 // argument before trying to disambiguate.
1596 EnterExpressionEvaluationContext
EnterConstantEvaluated(
1597 Actions
, Sema::ExpressionEvaluationContext::ConstantEvaluated
,
1598 /*LambdaContextDecl=*/nullptr,
1599 /*ExprContext=*/Sema::ExpressionEvaluationContextRecord::EK_TemplateArgument
);
1600 if (isCXXTypeId(TypeIdAsTemplateArgument
)) {
1601 TypeResult TypeArg
= ParseTypeName(
1602 /*Range=*/nullptr, DeclaratorContext::TemplateArg
);
1603 return Actions
.ActOnTemplateTypeArgument(TypeArg
);
1606 // Try to parse a template template argument.
1608 TentativeParsingAction
TPA(*this);
1610 ParsedTemplateArgument TemplateTemplateArgument
1611 = ParseTemplateTemplateArgument();
1612 if (!TemplateTemplateArgument
.isInvalid()) {
1614 return TemplateTemplateArgument
;
1617 // Revert this tentative parse to parse a non-type template argument.
1621 // Parse a non-type template argument.
1622 SourceLocation Loc
= Tok
.getLocation();
1623 ExprResult ExprArg
= ParseConstantExpressionInExprEvalContext(MaybeTypeCast
);
1624 if (ExprArg
.isInvalid() || !ExprArg
.get()) {
1625 return ParsedTemplateArgument();
1628 return ParsedTemplateArgument(ParsedTemplateArgument::NonType
,
1629 ExprArg
.get(), Loc
);
1632 /// ParseTemplateArgumentList - Parse a C++ template-argument-list
1633 /// (C++ [temp.names]). Returns true if there was an error.
1635 /// template-argument-list: [C++ 14.2]
1636 /// template-argument
1637 /// template-argument-list ',' template-argument
1639 /// \param Template is only used for code completion, and may be null.
1640 bool Parser::ParseTemplateArgumentList(TemplateArgList
&TemplateArgs
,
1641 TemplateTy Template
,
1642 SourceLocation OpenLoc
) {
1644 ColonProtectionRAIIObject
ColonProtection(*this, false);
1646 auto RunSignatureHelp
= [&] {
1649 CalledSignatureHelp
= true;
1650 return Actions
.ProduceTemplateArgumentSignatureHelp(Template
, TemplateArgs
,
1655 PreferredType
.enterFunctionArgument(Tok
.getLocation(), RunSignatureHelp
);
1656 ParsedTemplateArgument Arg
= ParseTemplateArgument();
1657 SourceLocation EllipsisLoc
;
1658 if (TryConsumeToken(tok::ellipsis
, EllipsisLoc
))
1659 Arg
= Actions
.ActOnPackExpansion(Arg
, EllipsisLoc
);
1661 if (Arg
.isInvalid()) {
1662 if (PP
.isCodeCompletionReached() && !CalledSignatureHelp
)
1667 // Save this template argument.
1668 TemplateArgs
.push_back(Arg
);
1670 // If the next token is a comma, consume it and keep reading
1672 } while (TryConsumeToken(tok::comma
));
1677 /// Parse a C++ explicit template instantiation
1678 /// (C++ [temp.explicit]).
1680 /// explicit-instantiation:
1681 /// 'extern' [opt] 'template' declaration
1683 /// Note that the 'extern' is a GNU extension and C++11 feature.
1684 Decl
*Parser::ParseExplicitInstantiation(DeclaratorContext Context
,
1685 SourceLocation ExternLoc
,
1686 SourceLocation TemplateLoc
,
1687 SourceLocation
&DeclEnd
,
1688 ParsedAttributes
&AccessAttrs
,
1689 AccessSpecifier AS
) {
1690 // This isn't really required here.
1691 ParsingDeclRAIIObject
1692 ParsingTemplateParams(*this, ParsingDeclRAIIObject::NoParent
);
1694 return ParseSingleDeclarationAfterTemplate(
1695 Context
, ParsedTemplateInfo(ExternLoc
, TemplateLoc
),
1696 ParsingTemplateParams
, DeclEnd
, AccessAttrs
, AS
);
1699 SourceRange
Parser::ParsedTemplateInfo::getSourceRange() const {
1701 return getTemplateParamsRange(TemplateParams
->data(),
1702 TemplateParams
->size());
1704 SourceRange
R(TemplateLoc
);
1705 if (ExternLoc
.isValid())
1706 R
.setBegin(ExternLoc
);
1710 void Parser::LateTemplateParserCallback(void *P
, LateParsedTemplate
&LPT
) {
1711 ((Parser
*)P
)->ParseLateTemplatedFuncDef(LPT
);
1714 /// Late parse a C++ function template in Microsoft mode.
1715 void Parser::ParseLateTemplatedFuncDef(LateParsedTemplate
&LPT
) {
1719 // Destroy TemplateIdAnnotations when we're done, if possible.
1720 DestroyTemplateIdAnnotationsRAIIObj
CleanupRAII(*this);
1722 // Get the FunctionDecl.
1723 FunctionDecl
*FunD
= LPT
.D
->getAsFunction();
1724 // Track template parameter depth.
1725 TemplateParameterDepthRAII
CurTemplateDepthTracker(TemplateParameterDepth
);
1727 // To restore the context after late parsing.
1728 Sema::ContextRAII
GlobalSavedContext(
1729 Actions
, Actions
.Context
.getTranslationUnitDecl());
1731 MultiParseScope
Scopes(*this);
1733 // Get the list of DeclContexts to reenter.
1734 SmallVector
<DeclContext
*, 4> DeclContextsToReenter
;
1735 for (DeclContext
*DC
= FunD
; DC
&& !DC
->isTranslationUnit();
1736 DC
= DC
->getLexicalParent())
1737 DeclContextsToReenter
.push_back(DC
);
1739 // Reenter scopes from outermost to innermost.
1740 for (DeclContext
*DC
: reverse(DeclContextsToReenter
)) {
1741 CurTemplateDepthTracker
.addDepth(
1742 ReenterTemplateScopes(Scopes
, cast
<Decl
>(DC
)));
1743 Scopes
.Enter(Scope::DeclScope
);
1744 // We'll reenter the function context itself below.
1746 Actions
.PushDeclContext(Actions
.getCurScope(), DC
);
1749 // Parsing should occur with empty FP pragma stack and FP options used in the
1750 // point of the template definition.
1751 Sema::FpPragmaStackSaveRAII
SavedStack(Actions
);
1752 Actions
.resetFPOptions(LPT
.FPO
);
1754 assert(!LPT
.Toks
.empty() && "Empty body!");
1756 // Append the current token at the end of the new token stream so that it
1757 // doesn't get lost.
1758 LPT
.Toks
.push_back(Tok
);
1759 PP
.EnterTokenStream(LPT
.Toks
, true, /*IsReinject*/true);
1761 // Consume the previously pushed token.
1762 ConsumeAnyToken(/*ConsumeCodeCompletionTok=*/true);
1763 assert(Tok
.isOneOf(tok::l_brace
, tok::colon
, tok::kw_try
) &&
1764 "Inline method not starting with '{', ':' or 'try'");
1766 // Parse the method body. Function body parsing code is similar enough
1767 // to be re-used for method bodies as well.
1768 ParseScope
FnScope(this, Scope::FnScope
| Scope::DeclScope
|
1769 Scope::CompoundStmtScope
);
1771 // Recreate the containing function DeclContext.
1772 Sema::ContextRAII
FunctionSavedContext(Actions
, FunD
->getLexicalParent());
1774 Actions
.ActOnStartOfFunctionDef(getCurScope(), FunD
);
1776 if (Tok
.is(tok::kw_try
)) {
1777 ParseFunctionTryBlock(LPT
.D
, FnScope
);
1779 if (Tok
.is(tok::colon
))
1780 ParseConstructorInitializer(LPT
.D
);
1782 Actions
.ActOnDefaultCtorInitializers(LPT
.D
);
1784 if (Tok
.is(tok::l_brace
)) {
1785 assert((!isa
<FunctionTemplateDecl
>(LPT
.D
) ||
1786 cast
<FunctionTemplateDecl
>(LPT
.D
)
1787 ->getTemplateParameters()
1788 ->getDepth() == TemplateParameterDepth
- 1) &&
1789 "TemplateParameterDepth should be greater than the depth of "
1790 "current template being instantiated!");
1791 ParseFunctionStatementBody(LPT
.D
, FnScope
);
1792 Actions
.UnmarkAsLateParsedTemplate(FunD
);
1794 Actions
.ActOnFinishFunctionBody(LPT
.D
, nullptr);
1798 /// Lex a delayed template function for late parsing.
1799 void Parser::LexTemplateFunctionForLateParsing(CachedTokens
&Toks
) {
1800 tok::TokenKind kind
= Tok
.getKind();
1801 if (!ConsumeAndStoreFunctionPrologue(Toks
)) {
1802 // Consume everything up to (and including) the matching right brace.
1803 ConsumeAndStoreUntil(tok::r_brace
, Toks
, /*StopAtSemi=*/false);
1806 // If we're in a function-try-block, we need to store all the catch blocks.
1807 if (kind
== tok::kw_try
) {
1808 while (Tok
.is(tok::kw_catch
)) {
1809 ConsumeAndStoreUntil(tok::l_brace
, Toks
, /*StopAtSemi=*/false);
1810 ConsumeAndStoreUntil(tok::r_brace
, Toks
, /*StopAtSemi=*/false);
1815 /// We've parsed something that could plausibly be intended to be a template
1816 /// name (\p LHS) followed by a '<' token, and the following code can't possibly
1817 /// be an expression. Determine if this is likely to be a template-id and if so,
1819 bool Parser::diagnoseUnknownTemplateId(ExprResult LHS
, SourceLocation Less
) {
1820 TentativeParsingAction
TPA(*this);
1821 // FIXME: We could look at the token sequence in a lot more detail here.
1822 if (SkipUntil(tok::greater
, tok::greatergreater
, tok::greatergreatergreater
,
1823 StopAtSemi
| StopBeforeMatch
)) {
1826 SourceLocation Greater
;
1827 ParseGreaterThanInTemplateList(Less
, Greater
, true, false);
1828 Actions
.diagnoseExprIntendedAsTemplateName(getCurScope(), LHS
,
1833 // There's no matching '>' token, this probably isn't supposed to be
1834 // interpreted as a template-id. Parse it as an (ill-formed) comparison.
1839 void Parser::checkPotentialAngleBracket(ExprResult
&PotentialTemplateName
) {
1840 assert(Tok
.is(tok::less
) && "not at a potential angle bracket");
1842 bool DependentTemplateName
= false;
1843 if (!Actions
.mightBeIntendedToBeTemplateName(PotentialTemplateName
,
1844 DependentTemplateName
))
1847 // OK, this might be a name that the user intended to be parsed as a
1848 // template-name, followed by a '<' token. Check for some easy cases.
1850 // If we have potential_template<>, then it's supposed to be a template-name.
1851 if (NextToken().is(tok::greater
) ||
1852 (getLangOpts().CPlusPlus11
&&
1853 NextToken().isOneOf(tok::greatergreater
, tok::greatergreatergreater
))) {
1854 SourceLocation Less
= ConsumeToken();
1855 SourceLocation Greater
;
1856 ParseGreaterThanInTemplateList(Less
, Greater
, true, false);
1857 Actions
.diagnoseExprIntendedAsTemplateName(
1858 getCurScope(), PotentialTemplateName
, Less
, Greater
);
1859 // FIXME: Perform error recovery.
1860 PotentialTemplateName
= ExprError();
1864 // If we have 'potential_template<type-id', assume it's supposed to be a
1865 // template-name if there's a matching '>' later on.
1867 // FIXME: Avoid the tentative parse when NextToken() can't begin a type.
1868 TentativeParsingAction
TPA(*this);
1869 SourceLocation Less
= ConsumeToken();
1870 if (isTypeIdUnambiguously() &&
1871 diagnoseUnknownTemplateId(PotentialTemplateName
, Less
)) {
1873 // FIXME: Perform error recovery.
1874 PotentialTemplateName
= ExprError();
1880 // Otherwise, remember that we saw this in case we see a potentially-matching
1881 // '>' token later on.
1882 AngleBracketTracker::Priority Priority
=
1883 (DependentTemplateName
? AngleBracketTracker::DependentName
1884 : AngleBracketTracker::PotentialTypo
) |
1885 (Tok
.hasLeadingSpace() ? AngleBracketTracker::SpaceBeforeLess
1886 : AngleBracketTracker::NoSpaceBeforeLess
);
1887 AngleBrackets
.add(*this, PotentialTemplateName
.get(), Tok
.getLocation(),
1891 bool Parser::checkPotentialAngleBracketDelimiter(
1892 const AngleBracketTracker::Loc
&LAngle
, const Token
&OpToken
) {
1893 // If a comma in an expression context is followed by a type that can be a
1894 // template argument and cannot be an expression, then this is ill-formed,
1895 // but might be intended to be part of a template-id.
1896 if (OpToken
.is(tok::comma
) && isTypeIdUnambiguously() &&
1897 diagnoseUnknownTemplateId(LAngle
.TemplateName
, LAngle
.LessLoc
)) {
1898 AngleBrackets
.clear(*this);
1902 // If a context that looks like a template-id is followed by '()', then
1903 // this is ill-formed, but might be intended to be a template-id
1904 // followed by '()'.
1905 if (OpToken
.is(tok::greater
) && Tok
.is(tok::l_paren
) &&
1906 NextToken().is(tok::r_paren
)) {
1907 Actions
.diagnoseExprIntendedAsTemplateName(
1908 getCurScope(), LAngle
.TemplateName
, LAngle
.LessLoc
,
1909 OpToken
.getLocation());
1910 AngleBrackets
.clear(*this);
1914 // After a '>' (etc), we're no longer potentially in a construct that's
1915 // intended to be treated as a template-id.
1916 if (OpToken
.is(tok::greater
) ||
1917 (getLangOpts().CPlusPlus11
&&
1918 OpToken
.isOneOf(tok::greatergreater
, tok::greatergreatergreater
)))
1919 AngleBrackets
.clear(*this);