clang 22.0.0git
Overload.h
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1//===- Overload.h - C++ Overloading -----------------------------*- C++ -*-===//
2//
3// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4// See https://llvm.org/LICENSE.txt for license information.
5// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6//
7//===----------------------------------------------------------------------===//
8//
9// This file defines the data structures and types used in C++
10// overload resolution.
11//
12//===----------------------------------------------------------------------===//
13
14#ifndef LLVM_CLANG_SEMA_OVERLOAD_H
15#define LLVM_CLANG_SEMA_OVERLOAD_H
16
17#include "clang/AST/Decl.h"
19#include "clang/AST/DeclBase.h"
20#include "clang/AST/DeclCXX.h"
22#include "clang/AST/Expr.h"
23#include "clang/AST/Type.h"
24#include "clang/Basic/LLVM.h"
28#include "llvm/ADT/ArrayRef.h"
29#include "llvm/ADT/STLExtras.h"
30#include "llvm/ADT/SmallPtrSet.h"
31#include "llvm/ADT/SmallVector.h"
32#include "llvm/ADT/StringRef.h"
33#include "llvm/Support/AlignOf.h"
34#include "llvm/Support/Allocator.h"
35#include "llvm/Support/Casting.h"
36#include "llvm/Support/ErrorHandling.h"
37#include <cassert>
38#include <cstddef>
39#include <cstdint>
40#include <utility>
41
42namespace clang {
43
44class APValue;
45class ASTContext;
46class Sema;
47
48 /// OverloadingResult - Capture the result of performing overload
49 /// resolution.
51 /// Overload resolution succeeded.
53
54 /// No viable function found.
56
57 /// Ambiguous candidates found.
59
60 /// Succeeded, but refers to a deleted function.
62 };
63
65 /// Requests that all candidates be shown. Viable candidates will
66 /// be printed first.
68
69 /// Requests that only viable candidates be shown.
71
72 /// Requests that only tied-for-best candidates be shown.
74 };
75
76 /// The parameter ordering that will be used for the candidate. This is
77 /// used to represent C++20 binary operator rewrites that reverse the order
78 /// of the arguments. If the parameter ordering is Reversed, the Args list is
79 /// reversed (but obviously the ParamDecls for the function are not).
80 ///
81 /// After forming an OverloadCandidate with reversed parameters, the list
82 /// of conversions will (as always) be indexed by argument, so will be
83 /// in reverse parameter order.
85
86 /// The kinds of rewrite we perform on overload candidates. Note that the
87 /// values here are chosen to serve as both bitflags and as a rank (lower
88 /// values are preferred by overload resolution).
90 /// Candidate is not a rewritten candidate.
91 CRK_None = 0x0,
92
93 /// Candidate is a rewritten candidate with a different operator name.
95
96 /// Candidate is a rewritten candidate with a reversed order of parameters.
98 };
99
100 /// ImplicitConversionKind - The kind of implicit conversion used to
101 /// convert an argument to a parameter's type. The enumerator values
102 /// match with the table titled 'Conversions' in [over.ics.scs] and are listed
103 /// such that better conversion kinds have smaller values.
105 /// Identity conversion (no conversion)
107
108 /// Lvalue-to-rvalue conversion (C++ [conv.lval])
110
111 /// Array-to-pointer conversion (C++ [conv.array])
113
114 /// Function-to-pointer (C++ [conv.array])
116
117 /// Function pointer conversion (C++17 [conv.fctptr])
119
120 /// Qualification conversions (C++ [conv.qual])
122
123 /// Integral promotions (C++ [conv.prom])
125
126 /// Floating point promotions (C++ [conv.fpprom])
128
129 /// Complex promotions (Clang extension)
131
132 /// Integral conversions (C++ [conv.integral])
134
135 /// Floating point conversions (C++ [conv.double]
137
138 /// Complex conversions (C99 6.3.1.6)
140
141 /// Floating-integral conversions (C++ [conv.fpint])
143
144 /// Pointer conversions (C++ [conv.ptr])
146
147 /// Pointer-to-member conversions (C++ [conv.mem])
149
150 /// Boolean conversions (C++ [conv.bool])
152
153 /// Conversions between compatible types in C99
155
156 /// Derived-to-base (C++ [over.best.ics])
158
159 /// Vector conversions
161
162 /// Arm SVE Vector conversions
164
165 /// RISC-V RVV Vector conversions
167
168 /// A vector splat from an arithmetic type
170
171 /// Complex-real conversions (C99 6.3.1.7)
173
174 /// Block Pointer conversions
176
177 /// Transparent Union Conversions
179
180 /// Objective-C ARC writeback conversion
182
183 /// Zero constant to event (OpenCL1.2 6.12.10)
185
186 /// Zero constant to queue
188
189 /// Conversions allowed in C, but not C++
191
192 /// C-only conversion between pointers with incompatible types
194
195 /// Fixed point type conversions according to N1169.
197
198 /// HLSL vector truncation.
200
201 /// HLSL non-decaying array rvalue cast.
203
204 // HLSL vector splat from scalar or boolean type.
206
207 /// The number of conversion kinds
209 };
210
211 /// ImplicitConversionRank - The rank of an implicit conversion
212 /// kind. The enumerator values match with Table 9 of (C++
213 /// 13.3.3.1.1) and are listed such that better conversion ranks
214 /// have smaller values.
216 /// Exact Match
218
219 /// HLSL Scalar Widening
221
222 /// Promotion
224
225 /// HLSL Scalar Widening with promotion
227
228 /// Conversion
230
231 /// OpenCL Scalar Widening
233
234 /// HLSL Scalar Widening with conversion
236
237 /// Complex <-> Real conversion
239
240 /// ObjC ARC writeback conversion
242
243 /// Conversion only allowed in the C standard (e.g. void* to char*).
245
246 /// Conversion not allowed by the C standard, but that we accept as an
247 /// extension anyway.
249
250 /// HLSL Matching Dimension Reduction
252
253 /// HLSL Dimension reduction with promotion
255
256 /// HLSL Dimension reduction with conversion
258 };
259
261
264 ImplicitConversionKind Dimension);
265
266 /// NarrowingKind - The kind of narrowing conversion being performed by a
267 /// standard conversion sequence according to C++11 [dcl.init.list]p7.
269 /// Not a narrowing conversion.
271
272 /// A narrowing conversion by virtue of the source and destination types.
274
275 /// A narrowing conversion, because a constant expression got narrowed.
277
278 /// A narrowing conversion, because a non-constant-expression variable might
279 /// have got narrowed.
281
282 /// Cannot tell whether this is a narrowing conversion because the
283 /// expression is value-dependent.
285 };
286
287 /// StandardConversionSequence - represents a standard conversion
288 /// sequence (C++ 13.3.3.1.1). A standard conversion sequence
289 /// contains between zero and three conversions. If a particular
290 /// conversion is not needed, it will be set to the identity conversion
291 /// (ICK_Identity).
293 public:
294 /// First -- The first conversion can be an lvalue-to-rvalue
295 /// conversion, array-to-pointer conversion, or
296 /// function-to-pointer conversion.
298
299 /// Second - The second conversion can be an integral promotion,
300 /// floating point promotion, integral conversion, floating point
301 /// conversion, floating-integral conversion, pointer conversion,
302 /// pointer-to-member conversion, or boolean conversion.
304
305 /// Dimension - Between the second and third conversion a vector or matrix
306 /// dimension conversion may occur. If this is not ICK_Identity this
307 /// conversion truncates the vector or matrix, or extends a scalar.
309
310 /// Third - The third conversion can be a qualification conversion
311 /// or a function conversion.
313
314 /// Whether this is the deprecated conversion of a
315 /// string literal to a pointer to non-const character data
316 /// (C++ 4.2p2).
317 LLVM_PREFERRED_TYPE(bool)
319
320 /// Whether the qualification conversion involves a change in the
321 /// Objective-C lifetime (for automatic reference counting).
322 LLVM_PREFERRED_TYPE(bool)
324
325 /// IncompatibleObjC - Whether this is an Objective-C conversion
326 /// that we should warn about (if we actually use it).
327 LLVM_PREFERRED_TYPE(bool)
328 unsigned IncompatibleObjC : 1;
329
330 /// ReferenceBinding - True when this is a reference binding
331 /// (C++ [over.ics.ref]).
332 LLVM_PREFERRED_TYPE(bool)
333 unsigned ReferenceBinding : 1;
334
335 /// DirectBinding - True when this is a reference binding that is a
336 /// direct binding (C++ [dcl.init.ref]).
337 LLVM_PREFERRED_TYPE(bool)
338 unsigned DirectBinding : 1;
339
340 /// Whether this is an lvalue reference binding (otherwise, it's
341 /// an rvalue reference binding).
342 LLVM_PREFERRED_TYPE(bool)
343 unsigned IsLvalueReference : 1;
344
345 /// Whether we're binding to a function lvalue.
346 LLVM_PREFERRED_TYPE(bool)
348
349 /// Whether we're binding to an rvalue.
350 LLVM_PREFERRED_TYPE(bool)
351 unsigned BindsToRvalue : 1;
352
353 /// Whether this binds an implicit object argument to a
354 /// non-static member function without a ref-qualifier.
355 LLVM_PREFERRED_TYPE(bool)
357
358 /// Whether this binds a reference to an object with a different
359 /// Objective-C lifetime qualifier.
360 LLVM_PREFERRED_TYPE(bool)
362
363 /// Whether the source expression was originally a single element
364 /// braced-init-list. Such a conversion is not a perfect match,
365 /// as we prefer a std::initializer_list constructor over an exact match
366 /// constructor.
367 LLVM_PREFERRED_TYPE(bool)
368 unsigned FromBracedInitList : 1;
369
370 /// FromType - The type that this conversion is converting
371 /// from. This is an opaque pointer that can be translated into a
372 /// QualType.
374
375 /// ToType - The types that this conversion is converting to in
376 /// each step. This is an opaque pointer that can be translated
377 /// into a QualType.
378 void *ToTypePtrs[3];
379
380 /// CopyConstructor - The copy constructor that is used to perform
381 /// this conversion, when the conversion is actually just the
382 /// initialization of an object via copy constructor. Such
383 /// conversions are either identity conversions or derived-to-base
384 /// conversions.
387
388 void setFromType(QualType T) { FromTypePtr = T.getAsOpaquePtr(); }
389
390 void setToType(unsigned Idx, QualType T) {
391 assert(Idx < 3 && "To type index is out of range");
392 ToTypePtrs[Idx] = T.getAsOpaquePtr();
393 }
394
396 ToTypePtrs[0] = T.getAsOpaquePtr();
397 ToTypePtrs[1] = ToTypePtrs[0];
398 ToTypePtrs[2] = ToTypePtrs[0];
399 }
400
403 }
404
405 QualType getToType(unsigned Idx) const {
406 assert(Idx < 3 && "To type index is out of range");
408 }
409
411
412 bool isIdentityConversion() const {
413 return Second == ICK_Identity && Dimension == ICK_Identity &&
415 }
416
417 /// A conversion sequence is perfect if it is an identity conversion and
418 /// the type of the source is the same as the type of the target.
419 bool isPerfect(const ASTContext &C) const {
421 return false;
422
423 // We might prefer a std::initializer_list constructor,
424 // so this sequence cannot be perfect
426 return false;
427
428 // If we are not performing a reference binding, we can skip comparing
429 // the types, which has a noticeable performance impact.
430 if (!ReferenceBinding) {
431#ifndef NDEBUG
432 auto Decay = [&](QualType T) {
433 if (T->isArrayType() || T->isFunctionType())
434 T = C.getDecayedType(T);
435
436 // A function pointer type can be resolved to a member function type,
437 // which is still an identity conversion.
438 if (auto *N = T->getAs<MemberPointerType>();
439 N && N->isMemberFunctionPointer())
440 T = C.getDecayedType(N->getPointeeType());
441 return T;
442 };
443 // The types might differ if there is an array-to-pointer conversion
444 // an function-to-pointer conversion, or lvalue-to-rvalue conversion.
445 // In some cases, this may happen even if First is not set.
446 assert(C.hasSameUnqualifiedType(Decay(getFromType()),
447 Decay(getToType(2))));
448#endif
449 return true;
450 }
451 if (!C.hasSameType(getFromType(), getToType(2)))
452 return false;
454 return false;
455 return true;
456 }
457
460 getNarrowingKind(ASTContext &Context, const Expr *Converted,
461 APValue &ConstantValue, QualType &ConstantType,
462 bool IgnoreFloatToIntegralConversion = false) const;
463 bool isPointerConversionToBool() const;
464 bool isPointerConversionToVoidPointer(ASTContext& Context) const;
465 void dump() const;
466 };
467
468 /// UserDefinedConversionSequence - Represents a user-defined
469 /// conversion sequence (C++ 13.3.3.1.2).
471 /// Represents the standard conversion that occurs before
472 /// the actual user-defined conversion.
473 ///
474 /// C++11 13.3.3.1.2p1:
475 /// If the user-defined conversion is specified by a constructor
476 /// (12.3.1), the initial standard conversion sequence converts
477 /// the source type to the type required by the argument of the
478 /// constructor. If the user-defined conversion is specified by
479 /// a conversion function (12.3.2), the initial standard
480 /// conversion sequence converts the source type to the implicit
481 /// object parameter of the conversion function.
483
484 /// EllipsisConversion - When this is true, it means user-defined
485 /// conversion sequence starts with a ... (ellipsis) conversion, instead of
486 /// a standard conversion. In this case, 'Before' field must be ignored.
487 // FIXME. I much rather put this as the first field. But there seems to be
488 // a gcc code gen. bug which causes a crash in a test. Putting it here seems
489 // to work around the crash.
491
492 /// HadMultipleCandidates - When this is true, it means that the
493 /// conversion function was resolved from an overloaded set having
494 /// size greater than 1.
496
497 /// After - Represents the standard conversion that occurs after
498 /// the actual user-defined conversion.
500
501 /// ConversionFunction - The function that will perform the
502 /// user-defined conversion. Null if the conversion is an
503 /// aggregate initialization from an initializer list.
505
506 /// The declaration that we found via name lookup, which might be
507 /// the same as \c ConversionFunction or it might be a using declaration
508 /// that refers to \c ConversionFunction.
510
511 void dump() const;
512 };
513
514 /// Represents an ambiguous user-defined conversion sequence.
518
521 char Buffer[sizeof(ConversionSet)];
522
525 }
526
529 }
530
531 void setFromType(QualType T) { FromTypePtr = T.getAsOpaquePtr(); }
532 void setToType(QualType T) { ToTypePtr = T.getAsOpaquePtr(); }
533
535 return *reinterpret_cast<ConversionSet*>(Buffer);
536 }
537
538 const ConversionSet &conversions() const {
539 return *reinterpret_cast<const ConversionSet*>(Buffer);
540 }
541
543 conversions().push_back(std::make_pair(Found, D));
544 }
545
546 using iterator = ConversionSet::iterator;
547
548 iterator begin() { return conversions().begin(); }
549 iterator end() { return conversions().end(); }
550
551 using const_iterator = ConversionSet::const_iterator;
552
553 const_iterator begin() const { return conversions().begin(); }
554 const_iterator end() const { return conversions().end(); }
555
556 void construct();
557 void destruct();
559 };
560
561 /// BadConversionSequence - Records information about an invalid
562 /// conversion sequence.
572 };
573
574 // This can be null, e.g. for implicit object arguments.
576
578
579 private:
580 // The type we're converting from (an opaque QualType).
581 void *FromTy;
582
583 // The type we're converting to (an opaque QualType).
584 void *ToTy;
585
586 public:
587 void init(FailureKind K, Expr *From, QualType To) {
588 init(K, From->getType(), To);
589 FromExpr = From;
590 }
591
592 void init(FailureKind K, QualType From, QualType To) {
593 Kind = K;
594 FromExpr = nullptr;
595 setFromType(From);
596 setToType(To);
597 }
598
601
603 FromExpr = E;
604 setFromType(E->getType());
605 }
606
607 void setFromType(QualType T) { FromTy = T.getAsOpaquePtr(); }
608 void setToType(QualType T) { ToTy = T.getAsOpaquePtr(); }
609 };
610
611 /// ImplicitConversionSequence - Represents an implicit conversion
612 /// sequence, which may be a standard conversion sequence
613 /// (C++ 13.3.3.1.1), user-defined conversion sequence (C++ 13.3.3.1.2),
614 /// or an ellipsis conversion sequence (C++ 13.3.3.1.3).
616 public:
617 /// Kind - The kind of implicit conversion sequence. BadConversion
618 /// specifies that there is no conversion from the source type to
619 /// the target type. AmbiguousConversion represents the unique
620 /// ambiguous conversion (C++0x [over.best.ics]p10).
621 /// StaticObjectArgumentConversion represents the conversion rules for
622 /// the synthesized first argument of calls to static member functions
623 /// ([over.best.ics.general]p8).
624 enum Kind {
631 };
632
633 private:
634 enum {
635 Uninitialized = BadConversion + 1
636 };
637
638 /// ConversionKind - The kind of implicit conversion sequence.
639 LLVM_PREFERRED_TYPE(Kind)
640 unsigned ConversionKind : 31;
641
642 // Whether the initializer list was of an incomplete array.
643 LLVM_PREFERRED_TYPE(bool)
644 unsigned InitializerListOfIncompleteArray : 1;
645
646 /// When initializing an array or std::initializer_list from an
647 /// initializer-list, this is the array or std::initializer_list type being
648 /// initialized. The remainder of the conversion sequence, including ToType,
649 /// describe the worst conversion of an initializer to an element of the
650 /// array or std::initializer_list. (Note, 'worst' is not well defined.)
651 QualType InitializerListContainerType;
652
653 void setKind(Kind K) {
654 destruct();
655 ConversionKind = K;
656 }
657
658 void destruct() {
659 if (ConversionKind == AmbiguousConversion) Ambiguous.destruct();
660 }
661
662 public:
663 union {
664 /// When ConversionKind == StandardConversion, provides the
665 /// details of the standard conversion sequence.
667
668 /// When ConversionKind == UserDefinedConversion, provides the
669 /// details of the user-defined conversion sequence.
671
672 /// When ConversionKind == AmbiguousConversion, provides the
673 /// details of the ambiguous conversion.
675
676 /// When ConversionKind == BadConversion, provides the details
677 /// of the bad conversion.
679 };
680
682 : ConversionKind(Uninitialized),
683 InitializerListOfIncompleteArray(false) {
685 }
686
688 : ConversionKind(Other.ConversionKind),
689 InitializerListOfIncompleteArray(
690 Other.InitializerListOfIncompleteArray),
691 InitializerListContainerType(Other.InitializerListContainerType) {
692 switch (ConversionKind) {
693 case Uninitialized: break;
694 case StandardConversion: Standard = Other.Standard; break;
696 break;
697 case UserDefinedConversion: UserDefined = Other.UserDefined; break;
698 case AmbiguousConversion: Ambiguous.copyFrom(Other.Ambiguous); break;
699 case EllipsisConversion: break;
700 case BadConversion: Bad = Other.Bad; break;
701 }
702 }
703
706 destruct();
708 return *this;
709 }
710
712 destruct();
713 }
714
715 Kind getKind() const {
716 assert(isInitialized() && "querying uninitialized conversion");
717 return Kind(ConversionKind);
718 }
719
720 /// Return a ranking of the implicit conversion sequence
721 /// kind, where smaller ranks represent better conversion
722 /// sequences.
723 ///
724 /// In particular, this routine gives user-defined conversion
725 /// sequences and ambiguous conversion sequences the same rank,
726 /// per C++ [over.best.ics]p10.
727 unsigned getKindRank() const {
728 switch (getKind()) {
731 return 0;
732
735 return 1;
736
738 return 2;
739
740 case BadConversion:
741 return 3;
742 }
743
744 llvm_unreachable("Invalid ImplicitConversionSequence::Kind!");
745 }
746
747 bool isBad() const { return getKind() == BadConversion; }
748 bool isStandard() const { return getKind() == StandardConversion; }
751 }
752 bool isEllipsis() const { return getKind() == EllipsisConversion; }
753 bool isAmbiguous() const { return getKind() == AmbiguousConversion; }
754 bool isUserDefined() const { return getKind() == UserDefinedConversion; }
755 bool isFailure() const { return isBad() || isAmbiguous(); }
756
757 /// Determines whether this conversion sequence has been
758 /// initialized. Most operations should never need to query
759 /// uninitialized conversions and should assert as above.
760 bool isInitialized() const { return ConversionKind != Uninitialized; }
761
762 /// Sets this sequence as a bad conversion for an explicit argument.
764 Expr *FromExpr, QualType ToType) {
765 setKind(BadConversion);
766 Bad.init(Failure, FromExpr, ToType);
767 }
768
769 /// Sets this sequence as a bad conversion for an implicit argument.
771 QualType FromType, QualType ToType) {
772 setKind(BadConversion);
773 Bad.init(Failure, FromType, ToType);
774 }
775
776 void setStandard() { setKind(StandardConversion); }
778 void setEllipsis() { setKind(EllipsisConversion); }
780
782 if (ConversionKind == AmbiguousConversion) return;
783 ConversionKind = AmbiguousConversion;
785 }
786
788 setStandard();
792 }
793
794 /// A conversion sequence is perfect if it is an identity conversion and
795 /// the type of the source is the same as the type of the target.
796 bool isPerfect(const ASTContext &C) const {
797 return isStandard() && Standard.isPerfect(C);
798 }
799
800 // True iff this is a conversion sequence from an initializer list to an
801 // array or std::initializer.
803 return !InitializerListContainerType.isNull();
804 }
806 InitializerListContainerType = T;
807 InitializerListOfIncompleteArray = IA;
808 }
810 return InitializerListOfIncompleteArray;
811 }
814 "not initializer list container");
815 return InitializerListContainerType;
816 }
817
818 /// Form an "implicit" conversion sequence from nullptr_t to bool, for a
819 /// direct-initialization of a bool object from nullptr_t.
821 QualType DestType,
822 bool NeedLValToRVal) {
824 ICS.setStandard();
826 ICS.Standard.setFromType(SourceType);
827 if (NeedLValToRVal)
829 ICS.Standard.setToType(0, SourceType);
831 ICS.Standard.setToType(1, DestType);
832 ICS.Standard.setToType(2, DestType);
833 return ICS;
834 }
835
836 // The result of a comparison between implicit conversion
837 // sequences. Use Sema::CompareImplicitConversionSequences to
838 // actually perform the comparison.
840 Better = -1,
842 Worse = 1
843 };
844
846 SourceLocation CaretLoc,
847 const PartialDiagnostic &PDiag) const;
848
849 void dump() const;
850 };
851
857
858 /// This conversion candidate was not considered because it
859 /// duplicates the work of a trivial or derived-to-base
860 /// conversion.
862
863 /// This conversion candidate was not considered because it is
864 /// an illegal instantiation of a constructor temploid: it is
865 /// callable with one argument, we only have one argument, and
866 /// its first parameter type is exactly the type of the class.
867 ///
868 /// Defining such a constructor directly is illegal, and
869 /// template-argument deduction is supposed to ignore such
870 /// instantiations, but we can still get one with the right
871 /// kind of implicit instantiation.
873
874 /// This conversion candidate is not viable because its result
875 /// type is not implicitly convertible to the desired type.
877
878 /// This conversion function template specialization candidate is not
879 /// viable because the final conversion was not an exact match.
881
882 /// (CUDA) This candidate was not viable because the callee
883 /// was not accessible from the caller's target (i.e. host->device,
884 /// global->host, device->host).
886
887 /// This candidate function was not viable because an enable_if
888 /// attribute disabled it.
890
891 /// This candidate constructor or conversion function is explicit but
892 /// the context doesn't permit explicit functions.
894
895 /// This candidate was not viable because its address could not be taken.
897
898 /// This inherited constructor is not viable because it would slice the
899 /// argument.
901
902 /// This candidate was not viable because it is a non-default multiversioned
903 /// function.
905
906 /// This constructor/conversion candidate fail due to an address space
907 /// mismatch between the object being constructed and the overload
908 /// candidate.
910
911 /// This candidate was not viable because its associated constraints were
912 /// not satisfied.
914
915 /// This candidate was not viable because it has internal linkage and is
916 /// from a different module unit than the use.
918 };
919
920 /// A list of implicit conversion sequences for the arguments of an
921 /// OverloadCandidate.
924
925 /// OverloadCandidate - A single candidate in an overload set (C++ 13.3).
927 /// Function - The actual function that this candidate
928 /// represents. When NULL, this is a built-in candidate
929 /// (C++ [over.oper]) or a surrogate for a conversion to a
930 /// function pointer or reference (C++ [over.call.object]).
932
933 /// FoundDecl - The original declaration that was looked up /
934 /// invented / otherwise found, together with its access.
935 /// Might be a UsingShadowDecl or a FunctionTemplateDecl.
937
938 /// BuiltinParamTypes - Provides the parameter types of a built-in overload
939 /// candidate. Only valid when Function is NULL.
941
942 /// Surrogate - The conversion function for which this candidate
943 /// is a surrogate, but only if IsSurrogate is true.
945
946 /// The conversion sequences used to convert the function arguments
947 /// to the function parameters. Note that these are indexed by argument,
948 /// so may not match the parameter order of Function.
950
951 /// The FixIt hints which can be used to fix the Bad candidate.
953
954 /// Viable - True to indicate that this overload candidate is viable.
955 LLVM_PREFERRED_TYPE(bool)
957
958 /// Whether this candidate is the best viable function, or tied for being
959 /// the best viable function.
960 ///
961 /// For an ambiguous overload resolution, indicates whether this candidate
962 /// was part of the ambiguity kernel: the minimal non-empty set of viable
963 /// candidates such that all elements of the ambiguity kernel are better
964 /// than all viable candidates not in the ambiguity kernel.
965 LLVM_PREFERRED_TYPE(bool)
966 unsigned Best : 1;
967
968 /// IsSurrogate - True to indicate that this candidate is a
969 /// surrogate for a conversion to a function pointer or reference
970 /// (C++ [over.call.object]).
971 LLVM_PREFERRED_TYPE(bool)
972 unsigned IsSurrogate : 1;
973
974 /// IgnoreObjectArgument - True to indicate that the first
975 /// argument's conversion, which for this function represents the
976 /// implicit object argument, should be ignored. This will be true
977 /// when the candidate is a static member function (where the
978 /// implicit object argument is just a placeholder) or a
979 /// non-static member function when the call doesn't have an
980 /// object argument.
981 LLVM_PREFERRED_TYPE(bool)
983
984 LLVM_PREFERRED_TYPE(bool)
986
987 /// Have we matched any packs on the parameter side, versus any non-packs on
988 /// the argument side, in a context where the opposite matching is also
989 /// allowed?
990 LLVM_PREFERRED_TYPE(bool)
991 unsigned StrictPackMatch : 1;
992
993 /// True if the candidate was found using ADL.
994 LLVM_PREFERRED_TYPE(CallExpr::ADLCallKind)
995 unsigned IsADLCandidate : 1;
996
997 /// Whether FinalConversion has been set.
998 LLVM_PREFERRED_TYPE(bool)
999 unsigned HasFinalConversion : 1;
1000
1001 /// Whether this is a rewritten candidate, and if so, of what kind?
1002 LLVM_PREFERRED_TYPE(OverloadCandidateRewriteKind)
1003 unsigned RewriteKind : 2;
1004
1005 /// FailureKind - The reason why this candidate is not viable.
1006 /// Actually an OverloadFailureKind.
1007 LLVM_PREFERRED_TYPE(OverloadFailureKind)
1008 unsigned FailureKind : 8;
1009
1010 /// The number of call arguments that were explicitly provided,
1011 /// to be used while performing partial ordering of function templates.
1013
1014 union {
1016
1017 /// FinalConversion - For a conversion function (where Function is
1018 /// a CXXConversionDecl), the standard conversion that occurs
1019 /// after the call to the overload candidate to convert the result
1020 /// of calling the conversion function to the required type.
1022 };
1023
1024 /// Get RewriteKind value in OverloadCandidateRewriteKind type (This
1025 /// function is to workaround the spurious GCC bitfield enum warning)
1027 return static_cast<OverloadCandidateRewriteKind>(RewriteKind);
1028 }
1029
1030 bool isReversed() const { return getRewriteKind() & CRK_Reversed; }
1031
1032 /// hasAmbiguousConversion - Returns whether this overload
1033 /// candidate requires an ambiguous conversion or not.
1035 for (auto &C : Conversions) {
1036 if (!C.isInitialized()) return false;
1037 if (C.isAmbiguous()) return true;
1038 }
1039 return false;
1040 }
1041
1042 // An overload is a perfect match if the conversion
1043 // sequences for each argument are perfect.
1044 bool isPerfectMatch(const ASTContext &Ctx) const {
1045 if (!Viable)
1046 return false;
1047 for (const auto &C : Conversions) {
1048 if (!C.isInitialized() || !C.isPerfect(Ctx))
1049 return false;
1050 }
1052 return FinalConversion.isPerfect(Ctx);
1053 return true;
1054 }
1055
1056 bool TryToFixBadConversion(unsigned Idx, Sema &S) {
1057 bool CanFix = Fix.tryToFixConversion(
1058 Conversions[Idx].Bad.FromExpr,
1059 Conversions[Idx].Bad.getFromType(),
1060 Conversions[Idx].Bad.getToType(), S);
1061
1062 // If at least one conversion fails, the candidate cannot be fixed.
1063 if (!CanFix)
1064 Fix.clear();
1065
1066 return CanFix;
1067 }
1068
1069 unsigned getNumParams() const {
1070 if (IsSurrogate) {
1072 while (STy->isPointerOrReferenceType())
1073 STy = STy->getPointeeType();
1074 return STy->castAs<FunctionProtoType>()->getNumParams();
1075 }
1076 if (Function)
1077 return Function->getNumParams();
1078 return ExplicitCallArguments;
1079 }
1080
1082
1083 private:
1088 IsADLCandidate(llvm::to_underlying(CallExpr::NotADL)),
1090 };
1091
1093
1094 // intrusive linked list support for allocateDeferredCandidate
1096
1098
1099 LLVM_PREFERRED_TYPE(Kind)
1101 LLVM_PREFERRED_TYPE(bool)
1103 LLVM_PREFERRED_TYPE(bool)
1105 LLVM_PREFERRED_TYPE(bool)
1106 unsigned AllowExplicit : 1;
1107 LLVM_PREFERRED_TYPE(bool)
1109 LLVM_PREFERRED_TYPE(bool)
1111 LLVM_PREFERRED_TYPE(bool)
1113 };
1114
1122 };
1123 static_assert(std::is_trivially_destructible_v<
1125
1135 };
1136 static_assert(std::is_trivially_destructible_v<
1138
1146 };
1147
1148 static_assert(std::is_trivially_destructible_v<
1150
1151 /// OverloadCandidateSet - A set of overload candidates, used in C++
1152 /// overload resolution (C++ 13.3).
1154 public:
1156 /// Normal lookup.
1158
1159 /// C++ [over.match.oper]:
1160 /// Lookup of operator function candidates in a call using operator
1161 /// syntax. Candidates that have no parameters of class type will be
1162 /// skipped unless there is a parameter of (reference to) enum type and
1163 /// the corresponding argument is of the same enum type.
1165
1166 /// C++ [over.match.copy]:
1167 /// Copy-initialization of an object of class type by user-defined
1168 /// conversion.
1170
1171 /// C++ [over.match.ctor], [over.match.list]
1172 /// Initialization of an object of class type by constructor,
1173 /// using either a parenthesized or braced list of arguments.
1175
1176 /// C++ [over.match.call.general]
1177 /// Resolve a call through the address of an overload set.
1179
1180 /// When doing overload resolution during code completion,
1181 /// we want to show all viable candidates, including otherwise
1182 /// deferred template candidates.
1184 };
1185
1186 /// Information about operator rewrites to consider when adding operator
1187 /// functions to a candidate set.
1190 : OriginalOperator(OO_None), OpLoc(), AllowRewrittenCandidates(false) {}
1192 bool AllowRewritten)
1193 : OriginalOperator(Op), OpLoc(OpLoc),
1194 AllowRewrittenCandidates(AllowRewritten) {}
1195
1196 /// The original operator as written in the source.
1198 /// The source location of the operator.
1200 /// Whether we should include rewritten candidates in the overload set.
1202
1203 /// Would use of this function result in a rewrite using a different
1204 /// operator?
1206 return OriginalOperator &&
1207 FD->getDeclName().getCXXOverloadedOperator() != OriginalOperator;
1208 }
1209
1211 if (!OriginalOperator)
1212 return true;
1213
1214 // For an overloaded operator, we can have candidates with a different
1215 // name in our unqualified lookup set. Make sure we only consider the
1216 // ones we're supposed to.
1219 return OO && (OO == OriginalOperator ||
1220 (AllowRewrittenCandidates &&
1221 OO == getRewrittenOverloadedOperator(OriginalOperator)));
1222 }
1223
1224 /// Determine the kind of rewrite that should be performed for this
1225 /// candidate.
1229 if (isRewrittenOperator(FD))
1231 if (PO == OverloadCandidateParamOrder::Reversed)
1233 return CRK;
1234 }
1235 /// Determines whether this operator could be implemented by a function
1236 /// with reversed parameter order.
1238 return AllowRewrittenCandidates && OriginalOperator &&
1239 (getRewrittenOverloadedOperator(OriginalOperator) != OO_None ||
1240 allowsReversed(OriginalOperator));
1241 }
1242
1243 /// Determine whether reversing parameter order is allowed for operator
1244 /// Op.
1245 bool allowsReversed(OverloadedOperatorKind Op);
1246
1247 /// Determine whether we should add a rewritten candidate for \p FD with
1248 /// reversed parameter order.
1249 /// \param OriginalArgs are the original non reversed arguments.
1250 bool shouldAddReversed(Sema &S, ArrayRef<Expr *> OriginalArgs,
1251 FunctionDecl *FD);
1252 };
1253
1254 private:
1257
1258 DeferredTemplateOverloadCandidate *FirstDeferredCandidate = nullptr;
1259 unsigned DeferredCandidatesCount : 8 * sizeof(unsigned) - 2;
1260 LLVM_PREFERRED_TYPE(bool)
1261 unsigned HasDeferredTemplateConstructors : 1;
1262 LLVM_PREFERRED_TYPE(bool)
1263 unsigned ResolutionByPerfectCandidateIsDisabled : 1;
1264
1265 // Allocator for ConversionSequenceLists and deferred candidate args.
1266 // We store the first few of these
1267 // inline to avoid allocation for small sets.
1268 llvm::BumpPtrAllocator SlabAllocator;
1269
1271 CandidateSetKind Kind;
1272 OperatorRewriteInfo RewriteInfo;
1273
1274 /// Small storage size for ImplicitConversionSequences
1275 /// and the persisted arguments of deferred candidates.
1276 constexpr static unsigned NumInlineBytes =
1277 32 * sizeof(ImplicitConversionSequence);
1278
1279 unsigned NumInlineBytesUsed = 0;
1280 alignas(void *) char InlineSpace[NumInlineBytes];
1281
1282 // Address space of the object being constructed.
1283 LangAS DestAS = LangAS::Default;
1284
1285 /// If we have space, allocates from inline storage. Otherwise, allocates
1286 /// from the slab allocator.
1287 /// FIXME: It would probably be nice to have a SmallBumpPtrAllocator
1288 /// instead.
1289 template <typename T>
1290 T *slabAllocate(unsigned N) {
1291 // It's simpler if this doesn't need to consider alignment.
1292 static_assert(alignof(T) == alignof(void *),
1293 "Only works for pointer-aligned types.");
1294 static_assert(std::is_trivially_destructible_v<T> ||
1295 (std::is_same_v<ImplicitConversionSequence, T>),
1296 "Add destruction logic to OverloadCandidateSet::clear().");
1297
1298 unsigned NBytes = sizeof(T) * N;
1299 if (NBytes > NumInlineBytes - NumInlineBytesUsed)
1300 return SlabAllocator.Allocate<T>(N);
1301 char *FreeSpaceStart = InlineSpace + NumInlineBytesUsed;
1302 assert(uintptr_t(FreeSpaceStart) % alignof(void *) == 0 &&
1303 "Misaligned storage!");
1304
1305 NumInlineBytesUsed += NBytes;
1306 return reinterpret_cast<T *>(FreeSpaceStart);
1307 }
1308
1309 // Because the size of OverloadCandidateSet has a noticeable impact on
1310 // performance, we store each deferred template candidate in the slab
1311 // allocator such that deferred candidates are ultimately a singly-linked
1312 // intrusive linked list. This ends up being much more efficient than a
1313 // SmallVector that is empty in the common case.
1314 template <typename T> T *allocateDeferredCandidate() {
1315 T *C = slabAllocate<T>(1);
1316 if (!FirstDeferredCandidate)
1317 FirstDeferredCandidate = C;
1318 else {
1319 auto *F = FirstDeferredCandidate;
1320 while (F->Next)
1321 F = F->Next;
1322 F->Next = C;
1323 }
1324 DeferredCandidatesCount++;
1325 return C;
1326 }
1327
1328 void destroyCandidates();
1329
1330 public:
1332 OperatorRewriteInfo RewriteInfo = {})
1333 : FirstDeferredCandidate(nullptr), DeferredCandidatesCount(0),
1334 HasDeferredTemplateConstructors(false),
1335 ResolutionByPerfectCandidateIsDisabled(false), Loc(Loc), Kind(CSK),
1336 RewriteInfo(RewriteInfo) {}
1339 ~OverloadCandidateSet() { destroyCandidates(); }
1340
1341 SourceLocation getLocation() const { return Loc; }
1342 CandidateSetKind getKind() const { return Kind; }
1343 OperatorRewriteInfo getRewriteInfo() const { return RewriteInfo; }
1344
1345 /// Whether diagnostics should be deferred.
1346 bool shouldDeferDiags(Sema &S, ArrayRef<Expr *> Args, SourceLocation OpLoc);
1347
1348 // Whether the resolution of template candidates should be deferred
1349 bool shouldDeferTemplateArgumentDeduction(const LangOptions &Opts) const;
1350
1351 /// Determine when this overload candidate will be new to the
1352 /// overload set.
1354 OverloadCandidateParamOrder::Normal) {
1355 uintptr_t Key = reinterpret_cast<uintptr_t>(F->getCanonicalDecl());
1356 Key |= static_cast<uintptr_t>(PO);
1357 return Functions.insert(Key).second;
1358 }
1359
1360 /// Exclude a function from being considered by overload resolution.
1361 void exclude(Decl *F) {
1362 isNewCandidate(F, OverloadCandidateParamOrder::Normal);
1363 isNewCandidate(F, OverloadCandidateParamOrder::Reversed);
1364 }
1365
1366 /// Clear out all of the candidates.
1367 void clear(CandidateSetKind CSK);
1368
1370
1371 iterator begin() { return Candidates.begin(); }
1372 iterator end() { return Candidates.end(); }
1373
1374 size_t size() const { return Candidates.size() + DeferredCandidatesCount; }
1375
1376 size_t nonDeferredCandidatesCount() const { return Candidates.size(); }
1377
1378 bool empty() const {
1379 return Candidates.empty() && DeferredCandidatesCount == 0;
1380 }
1381
1382 /// Allocate storage for conversion sequences for NumConversions
1383 /// conversions.
1385 allocateConversionSequences(unsigned NumConversions) {
1386 ImplicitConversionSequence *Conversions =
1387 slabAllocate<ImplicitConversionSequence>(NumConversions);
1388
1389 // Construct the new objects.
1390 for (unsigned I = 0; I != NumConversions; ++I)
1391 new (&Conversions[I]) ImplicitConversionSequence();
1392
1393 return ConversionSequenceList(Conversions, NumConversions);
1394 }
1395
1396 /// Provide storage for any Expr* arg that must be preserved
1397 /// until deferred template candidates are deduced.
1398 /// Typically this should be used for reversed operator arguments
1399 /// and any time the argument array is transformed while adding
1400 /// a template candidate.
1402 Expr **Exprs = slabAllocate<Expr *>(N);
1403 return llvm::MutableArrayRef<Expr *>(Exprs, N);
1404 }
1405
1406 template <typename... T>
1409 getPersistentArgsArray(sizeof...(Exprs));
1410 llvm::copy(std::initializer_list<Expr *>{Exprs...}, Arr.data());
1411 return Arr;
1412 }
1413
1414 /// Add a new candidate with NumConversions conversion sequence slots
1415 /// to the overload set.
1416 OverloadCandidate &addCandidate(unsigned NumConversions = 0,
1417 ConversionSequenceList Conversions = {}) {
1418 assert((Conversions.empty() || Conversions.size() == NumConversions) &&
1419 "preallocated conversion sequence has wrong length");
1420
1421 Candidates.push_back(OverloadCandidate());
1422 OverloadCandidate &C = Candidates.back();
1423 C.Conversions = Conversions.empty()
1424 ? allocateConversionSequences(NumConversions)
1425 : Conversions;
1426 return C;
1427 }
1428
1429 void AddDeferredTemplateCandidate(
1430 FunctionTemplateDecl *FunctionTemplate, DeclAccessPair FoundDecl,
1431 ArrayRef<Expr *> Args, bool SuppressUserConversions,
1432 bool PartialOverloading, bool AllowExplicit,
1433 CallExpr::ADLCallKind IsADLCandidate, OverloadCandidateParamOrder PO,
1434 bool AggregateCandidateDeduction);
1435
1436 void AddDeferredMethodTemplateCandidate(
1437 FunctionTemplateDecl *MethodTmpl, DeclAccessPair FoundDecl,
1438 CXXRecordDecl *ActingContext, QualType ObjectType,
1439 Expr::Classification ObjectClassification, ArrayRef<Expr *> Args,
1440 bool SuppressUserConversions, bool PartialOverloading,
1441 OverloadCandidateParamOrder PO);
1442
1443 void AddDeferredConversionTemplateCandidate(
1444 FunctionTemplateDecl *FunctionTemplate, DeclAccessPair FoundDecl,
1445 CXXRecordDecl *ActingContext, Expr *From, QualType ToType,
1446 bool AllowObjCConversionOnExplicit, bool AllowExplicit,
1447 bool AllowResultConversion);
1448
1449 void InjectNonDeducedTemplateCandidates(Sema &S);
1450
1452 ResolutionByPerfectCandidateIsDisabled = true;
1453 }
1454
1455 /// Find the best viable function on this overload set, if it exists.
1456 OverloadingResult BestViableFunction(Sema &S, SourceLocation Loc,
1458
1459 SmallVector<OverloadCandidate *, 32> CompleteCandidates(
1462 llvm::function_ref<bool(OverloadCandidate &)> Filter =
1463 [](OverloadCandidate &) { return true; });
1464
1465 void NoteCandidates(
1466 PartialDiagnosticAt PA, Sema &S, OverloadCandidateDisplayKind OCD,
1467 ArrayRef<Expr *> Args, StringRef Opc = "",
1468 SourceLocation Loc = SourceLocation(),
1469 llvm::function_ref<bool(OverloadCandidate &)> Filter =
1470 [](OverloadCandidate &) { return true; });
1471
1472 void NoteCandidates(Sema &S, ArrayRef<Expr *> Args,
1473 ArrayRef<OverloadCandidate *> Cands,
1474 StringRef Opc = "",
1475 SourceLocation OpLoc = SourceLocation());
1476
1477 LangAS getDestAS() { return DestAS; }
1478
1480 assert((Kind == CSK_InitByConstructor ||
1481 Kind == CSK_InitByUserDefinedConversion) &&
1482 "can't set the destination address space when not constructing an "
1483 "object");
1484 DestAS = AS;
1485 }
1486
1487 private:
1488 OverloadingResult ResultForBestCandidate(const iterator &Best);
1489 void CudaExcludeWrongSideCandidates(
1492 BestViableFunctionImpl(Sema &S, SourceLocation Loc,
1494 };
1495
1496 bool isBetterOverloadCandidate(Sema &S, const OverloadCandidate &Cand1,
1497 const OverloadCandidate &Cand2,
1498 SourceLocation Loc,
1500 bool PartialOverloading = false);
1501
1506
1507 explicit operator bool() const { return Constructor; }
1508 };
1509
1510 // FIXME: Add an AddOverloadCandidate / AddTemplateOverloadCandidate overload
1511 // that takes one of these.
1513 if (isa<UsingDecl>(ND))
1514 return ConstructorInfo{};
1515
1516 // For constructors, the access check is performed against the underlying
1517 // declaration, not the found declaration.
1518 auto *D = ND->getUnderlyingDecl();
1519 ConstructorInfo Info = {DeclAccessPair::make(ND, D->getAccess()), nullptr,
1520 nullptr};
1521 Info.ConstructorTmpl = dyn_cast<FunctionTemplateDecl>(D);
1522 if (Info.ConstructorTmpl)
1524 Info.Constructor = dyn_cast<CXXConstructorDecl>(D);
1525 return Info;
1526 }
1527
1528 // Returns false if signature help is relevant despite number of arguments
1529 // exceeding parameters. Specifically, it returns false when
1530 // PartialOverloading is true and one of the following:
1531 // * Function is variadic
1532 // * Function is template variadic
1533 // * Function is an instantiation of template variadic function
1534 // The last case may seem strange. The idea is that if we added one more
1535 // argument, we'd end up with a function similar to Function. Since, in the
1536 // context of signature help and/or code completion, we do not know what the
1537 // type of the next argument (that the user is typing) will be, this is as
1538 // good candidate as we can get, despite the fact that it takes one less
1539 // parameter.
1540 bool shouldEnforceArgLimit(bool PartialOverloading, FunctionDecl *Function);
1541
1543 const LangOptions &Opts) const {
1544 return
1545 // For user defined conversion we need to check against different
1546 // combination of CV qualifiers and look at any explicit specifier, so
1547 // always deduce template candidates.
1548 Kind != CSK_InitByUserDefinedConversion
1549 // When doing code completion, we want to see all the
1550 // viable candidates.
1551 && Kind != CSK_CodeCompletion
1552 // CUDA may prefer template candidates even when a non-candidate
1553 // is a perfect match
1554 && !Opts.CUDA;
1555 }
1556
1557} // namespace clang
1558
1559#endif // LLVM_CLANG_SEMA_OVERLOAD_H
const Decl * D
enum clang::sema::@1840::IndirectLocalPathEntry::EntryKind Kind
Expr * E
Defines the C++ Decl subclasses, other than those for templates (found in DeclTemplate....
Defines the C++ template declaration subclasses.
Forward-declares and imports various common LLVM datatypes that clang wants to use unqualified.
SourceLocation Loc
Definition: SemaObjC.cpp:754
Defines the clang::SourceLocation class and associated facilities.
C Language Family Type Representation.
APValue - This class implements a discriminated union of [uninitialized] [APSInt] [APFloat],...
Definition: APValue.h:122
Holds long-lived AST nodes (such as types and decls) that can be referred to throughout the semantic ...
Definition: ASTContext.h:188
Represents a C++ constructor within a class.
Definition: DeclCXX.h:2604
Represents a C++ conversion function within a class.
Definition: DeclCXX.h:2937
QualType getConversionType() const
Returns the type that this conversion function is converting to.
Definition: DeclCXX.h:2977
Represents a C++ struct/union/class.
Definition: DeclCXX.h:258
CallExpr - Represents a function call (C99 6.5.2.2, C++ [expr.call]).
Definition: Expr.h:2879
A POD class for pairing a NamedDecl* with an access specifier.
static DeclAccessPair make(NamedDecl *D, AccessSpecifier AS)
Decl - This represents one declaration (or definition), e.g.
Definition: DeclBase.h:86
virtual Decl * getCanonicalDecl()
Retrieves the "canonical" declaration of the given declaration.
Definition: DeclBase.h:978
OverloadedOperatorKind getCXXOverloadedOperator() const
If this name is the name of an overloadable operator in C++ (e.g., operator+), retrieve the kind of o...
The return type of classify().
Definition: Expr.h:337
This represents one expression.
Definition: Expr.h:112
QualType getType() const
Definition: Expr.h:144
Represents a function declaration or definition.
Definition: Decl.h:1999
unsigned getNumParams() const
Return the number of parameters this function must have based on its FunctionType.
Definition: Decl.cpp:3767
Represents a prototype with parameter type info, e.g.
Definition: TypeBase.h:5282
Declaration of a template function.
Definition: DeclTemplate.h:952
FunctionDecl * getTemplatedDecl() const
Get the underlying function declaration of the template.
Definition: DeclTemplate.h:998
ImplicitConversionSequence - Represents an implicit conversion sequence, which may be a standard conv...
Definition: Overload.h:615
void dump() const
dump - Print this implicit conversion sequence to standard error.
ImplicitConversionSequence & operator=(const ImplicitConversionSequence &Other)
Definition: Overload.h:705
Kind
Kind - The kind of implicit conversion sequence.
Definition: Overload.h:624
bool isPerfect(const ASTContext &C) const
A conversion sequence is perfect if it is an identity conversion and the type of the source is the sa...
Definition: Overload.h:796
StandardConversionSequence Standard
When ConversionKind == StandardConversion, provides the details of the standard conversion sequence.
Definition: Overload.h:666
void setBad(BadConversionSequence::FailureKind Failure, Expr *FromExpr, QualType ToType)
Sets this sequence as a bad conversion for an explicit argument.
Definition: Overload.h:763
UserDefinedConversionSequence UserDefined
When ConversionKind == UserDefinedConversion, provides the details of the user-defined conversion seq...
Definition: Overload.h:670
ImplicitConversionSequence(const ImplicitConversionSequence &Other)
Definition: Overload.h:687
bool isInitialized() const
Determines whether this conversion sequence has been initialized.
Definition: Overload.h:760
static ImplicitConversionSequence getNullptrToBool(QualType SourceType, QualType DestType, bool NeedLValToRVal)
Form an "implicit" conversion sequence from nullptr_t to bool, for a direct-initialization of a bool ...
Definition: Overload.h:820
AmbiguousConversionSequence Ambiguous
When ConversionKind == AmbiguousConversion, provides the details of the ambiguous conversion.
Definition: Overload.h:674
void setInitializerListContainerType(QualType T, bool IA)
Definition: Overload.h:805
bool hasInitializerListContainerType() const
Definition: Overload.h:802
unsigned getKindRank() const
Return a ranking of the implicit conversion sequence kind, where smaller ranks represent better conve...
Definition: Overload.h:727
bool isInitializerListOfIncompleteArray() const
Definition: Overload.h:809
BadConversionSequence Bad
When ConversionKind == BadConversion, provides the details of the bad conversion.
Definition: Overload.h:678
QualType getInitializerListContainerType() const
Definition: Overload.h:812
void setAsIdentityConversion(QualType T)
Definition: Overload.h:787
void DiagnoseAmbiguousConversion(Sema &S, SourceLocation CaretLoc, const PartialDiagnostic &PDiag) const
Diagnoses an ambiguous conversion.
void setBad(BadConversionSequence::FailureKind Failure, QualType FromType, QualType ToType)
Sets this sequence as a bad conversion for an implicit argument.
Definition: Overload.h:770
Keeps track of the various options that can be enabled, which controls the dialect of C or C++ that i...
Definition: LangOptions.h:434
A pointer to member type per C++ 8.3.3 - Pointers to members.
Definition: TypeBase.h:3669
bool isMemberFunctionPointer() const
Returns true if the member type (i.e.
Definition: TypeBase.h:3691
This represents a decl that may have a name.
Definition: Decl.h:273
NamedDecl * getUnderlyingDecl()
Looks through UsingDecls and ObjCCompatibleAliasDecls for the underlying named decl.
Definition: Decl.h:486
DeclarationName getDeclName() const
Get the actual, stored name of the declaration, which may be a special name.
Definition: Decl.h:339
OverloadCandidateSet - A set of overload candidates, used in C++ overload resolution (C++ 13....
Definition: Overload.h:1153
llvm::MutableArrayRef< Expr * > getPersistentArgsArray(T *...Exprs)
Definition: Overload.h:1407
OverloadCandidateSet & operator=(const OverloadCandidateSet &)=delete
bool isNewCandidate(Decl *F, OverloadCandidateParamOrder PO=OverloadCandidateParamOrder::Normal)
Determine when this overload candidate will be new to the overload set.
Definition: Overload.h:1353
void DisableResolutionByPerfectCandidate()
Definition: Overload.h:1451
void setDestAS(LangAS AS)
Definition: Overload.h:1479
ConversionSequenceList allocateConversionSequences(unsigned NumConversions)
Allocate storage for conversion sequences for NumConversions conversions.
Definition: Overload.h:1385
OverloadCandidateSet(SourceLocation Loc, CandidateSetKind CSK, OperatorRewriteInfo RewriteInfo={})
Definition: Overload.h:1331
llvm::MutableArrayRef< Expr * > getPersistentArgsArray(unsigned N)
Provide storage for any Expr* arg that must be preserved until deferred template candidates are deduc...
Definition: Overload.h:1401
OperatorRewriteInfo getRewriteInfo() const
Definition: Overload.h:1343
bool shouldDeferTemplateArgumentDeduction(const LangOptions &Opts) const
Definition: Overload.h:1542
@ CSK_AddressOfOverloadSet
C++ [over.match.call.general] Resolve a call through the address of an overload set.
Definition: Overload.h:1178
@ CSK_InitByConstructor
C++ [over.match.ctor], [over.match.list] Initialization of an object of class type by constructor,...
Definition: Overload.h:1174
@ CSK_InitByUserDefinedConversion
C++ [over.match.copy]: Copy-initialization of an object of class type by user-defined conversion.
Definition: Overload.h:1169
@ CSK_Normal
Normal lookup.
Definition: Overload.h:1157
@ CSK_Operator
C++ [over.match.oper]: Lookup of operator function candidates in a call using operator syntax.
Definition: Overload.h:1164
@ CSK_CodeCompletion
When doing overload resolution during code completion, we want to show all viable candidates,...
Definition: Overload.h:1183
SmallVectorImpl< OverloadCandidate >::iterator iterator
Definition: Overload.h:1369
OverloadCandidateSet(const OverloadCandidateSet &)=delete
void exclude(Decl *F)
Exclude a function from being considered by overload resolution.
Definition: Overload.h:1361
SourceLocation getLocation() const
Definition: Overload.h:1341
OverloadCandidate & addCandidate(unsigned NumConversions=0, ConversionSequenceList Conversions={})
Add a new candidate with NumConversions conversion sequence slots to the overload set.
Definition: Overload.h:1416
CandidateSetKind getKind() const
Definition: Overload.h:1342
size_t nonDeferredCandidatesCount() const
Definition: Overload.h:1376
A (possibly-)qualified type.
Definition: TypeBase.h:937
static QualType getFromOpaquePtr(const void *Ptr)
Definition: TypeBase.h:986
Sema - This implements semantic analysis and AST building for C.
Definition: Sema.h:850
Encodes a location in the source.
StandardConversionSequence - represents a standard conversion sequence (C++ 13.3.3....
Definition: Overload.h:292
void dump() const
dump - Print this standard conversion sequence to standard error.
void setFromType(QualType T)
Definition: Overload.h:388
DeclAccessPair FoundCopyConstructor
Definition: Overload.h:386
void * FromTypePtr
FromType - The type that this conversion is converting from.
Definition: Overload.h:373
unsigned BindsToRvalue
Whether we're binding to an rvalue.
Definition: Overload.h:351
ImplicitConversionKind Second
Second - The second conversion can be an integral promotion, floating point promotion,...
Definition: Overload.h:303
bool isPerfect(const ASTContext &C) const
A conversion sequence is perfect if it is an identity conversion and the type of the source is the sa...
Definition: Overload.h:419
QualType getFromType() const
Definition: Overload.h:401
ImplicitConversionKind First
First – The first conversion can be an lvalue-to-rvalue conversion, array-to-pointer conversion,...
Definition: Overload.h:297
unsigned BindsImplicitObjectArgumentWithoutRefQualifier
Whether this binds an implicit object argument to a non-static member function without a ref-qualifie...
Definition: Overload.h:356
unsigned ReferenceBinding
ReferenceBinding - True when this is a reference binding (C++ [over.ics.ref]).
Definition: Overload.h:333
void setAsIdentityConversion()
StandardConversionSequence - Set the standard conversion sequence to the identity conversion.
unsigned DeprecatedStringLiteralToCharPtr
Whether this is the deprecated conversion of a string literal to a pointer to non-const character dat...
Definition: Overload.h:318
CXXConstructorDecl * CopyConstructor
CopyConstructor - The copy constructor that is used to perform this conversion, when the conversion i...
Definition: Overload.h:385
unsigned IncompatibleObjC
IncompatibleObjC - Whether this is an Objective-C conversion that we should warn about (if we actuall...
Definition: Overload.h:328
unsigned ObjCLifetimeConversionBinding
Whether this binds a reference to an object with a different Objective-C lifetime qualifier.
Definition: Overload.h:361
ImplicitConversionKind Third
Third - The third conversion can be a qualification conversion or a function conversion.
Definition: Overload.h:312
unsigned QualificationIncludesObjCLifetime
Whether the qualification conversion involves a change in the Objective-C lifetime (for automatic ref...
Definition: Overload.h:323
void setToType(unsigned Idx, QualType T)
Definition: Overload.h:390
bool isPointerConversionToBool() const
isPointerConversionToBool - Determines whether this conversion is a conversion of a pointer or pointe...
void * ToTypePtrs[3]
ToType - The types that this conversion is converting to in each step.
Definition: Overload.h:378
NarrowingKind getNarrowingKind(ASTContext &Context, const Expr *Converted, APValue &ConstantValue, QualType &ConstantType, bool IgnoreFloatToIntegralConversion=false) const
Check if this standard conversion sequence represents a narrowing conversion, according to C++11 [dcl...
unsigned IsLvalueReference
Whether this is an lvalue reference binding (otherwise, it's an rvalue reference binding).
Definition: Overload.h:343
ImplicitConversionKind Dimension
Dimension - Between the second and third conversion a vector or matrix dimension conversion may occur...
Definition: Overload.h:308
unsigned BindsToFunctionLvalue
Whether we're binding to a function lvalue.
Definition: Overload.h:347
unsigned DirectBinding
DirectBinding - True when this is a reference binding that is a direct binding (C++ [dcl....
Definition: Overload.h:338
ImplicitConversionRank getRank() const
getRank - Retrieve the rank of this standard conversion sequence (C++ 13.3.3.1.1p3).
bool isPointerConversionToVoidPointer(ASTContext &Context) const
isPointerConversionToVoidPointer - Determines whether this conversion is a conversion of a pointer to...
void setAllToTypes(QualType T)
Definition: Overload.h:395
unsigned FromBracedInitList
Whether the source expression was originally a single element braced-init-list.
Definition: Overload.h:368
QualType getToType(unsigned Idx) const
Definition: Overload.h:405
bool isArrayType() const
Definition: TypeBase.h:8679
const T * castAs() const
Member-template castAs<specific type>.
Definition: TypeBase.h:9226
QualType getPointeeType() const
If this is a pointer, ObjC object pointer, or block pointer, this returns the respective pointee.
Definition: Type.cpp:752
bool isPointerOrReferenceType() const
Definition: TypeBase.h:8584
bool isFunctionType() const
Definition: TypeBase.h:8576
const T * getAs() const
Member-template getAs<specific type>'.
Definition: TypeBase.h:9159
#define bool
Definition: gpuintrin.h:32
The JSON file list parser is used to communicate input to InstallAPI.
ImplicitConversionRank GetDimensionConversionRank(ImplicitConversionRank Base, ImplicitConversionKind Dimension)
OverloadedOperatorKind
Enumeration specifying the different kinds of C++ overloaded operators.
Definition: OperatorKinds.h:21
@ OO_None
Not an overloaded operator.
Definition: OperatorKinds.h:22
OverloadingResult
OverloadingResult - Capture the result of performing overload resolution.
Definition: Overload.h:50
@ OR_Deleted
Succeeded, but refers to a deleted function.
Definition: Overload.h:61
@ OR_Success
Overload resolution succeeded.
Definition: Overload.h:52
@ OR_Ambiguous
Ambiguous candidates found.
Definition: Overload.h:58
@ OR_No_Viable_Function
No viable function found.
Definition: Overload.h:55
bool isBetterOverloadCandidate(Sema &S, const OverloadCandidate &Cand1, const OverloadCandidate &Cand2, SourceLocation Loc, OverloadCandidateSet::CandidateSetKind Kind, bool PartialOverloading=false)
isBetterOverloadCandidate - Determines whether the first overload candidate is a better candidate tha...
OverloadFailureKind
Definition: Overload.h:852
@ ovl_fail_final_conversion_not_exact
This conversion function template specialization candidate is not viable because the final conversion...
Definition: Overload.h:880
@ ovl_fail_enable_if
This candidate function was not viable because an enable_if attribute disabled it.
Definition: Overload.h:889
@ ovl_fail_illegal_constructor
This conversion candidate was not considered because it is an illegal instantiation of a constructor ...
Definition: Overload.h:872
@ ovl_fail_bad_final_conversion
This conversion candidate is not viable because its result type is not implicitly convertible to the ...
Definition: Overload.h:876
@ ovl_fail_module_mismatched
This candidate was not viable because it has internal linkage and is from a different module unit tha...
Definition: Overload.h:917
@ ovl_fail_too_few_arguments
Definition: Overload.h:854
@ ovl_fail_addr_not_available
This candidate was not viable because its address could not be taken.
Definition: Overload.h:896
@ ovl_fail_too_many_arguments
Definition: Overload.h:853
@ ovl_non_default_multiversion_function
This candidate was not viable because it is a non-default multiversioned function.
Definition: Overload.h:904
@ ovl_fail_constraints_not_satisfied
This candidate was not viable because its associated constraints were not satisfied.
Definition: Overload.h:913
@ ovl_fail_bad_conversion
Definition: Overload.h:855
@ ovl_fail_bad_target
(CUDA) This candidate was not viable because the callee was not accessible from the caller's target (...
Definition: Overload.h:885
@ ovl_fail_bad_deduction
Definition: Overload.h:856
@ ovl_fail_inhctor_slice
This inherited constructor is not viable because it would slice the argument.
Definition: Overload.h:900
@ ovl_fail_object_addrspace_mismatch
This constructor/conversion candidate fail due to an address space mismatch between the object being ...
Definition: Overload.h:909
@ ovl_fail_explicit
This candidate constructor or conversion function is explicit but the context doesn't permit explicit...
Definition: Overload.h:893
@ ovl_fail_trivial_conversion
This conversion candidate was not considered because it duplicates the work of a trivial or derived-t...
Definition: Overload.h:861
ImplicitConversionRank
ImplicitConversionRank - The rank of an implicit conversion kind.
Definition: Overload.h:215
@ ICR_Conversion
Conversion.
Definition: Overload.h:229
@ ICR_Writeback_Conversion
ObjC ARC writeback conversion.
Definition: Overload.h:241
@ ICR_HLSL_Dimension_Reduction
HLSL Matching Dimension Reduction.
Definition: Overload.h:251
@ ICR_HLSL_Dimension_Reduction_Conversion
HLSL Dimension reduction with conversion.
Definition: Overload.h:257
@ ICR_HLSL_Scalar_Widening
HLSL Scalar Widening.
Definition: Overload.h:220
@ ICR_C_Conversion
Conversion only allowed in the C standard (e.g. void* to char*).
Definition: Overload.h:244
@ ICR_OCL_Scalar_Widening
OpenCL Scalar Widening.
Definition: Overload.h:232
@ ICR_Complex_Real_Conversion
Complex <-> Real conversion.
Definition: Overload.h:238
@ ICR_HLSL_Scalar_Widening_Conversion
HLSL Scalar Widening with conversion.
Definition: Overload.h:235
@ ICR_HLSL_Dimension_Reduction_Promotion
HLSL Dimension reduction with promotion.
Definition: Overload.h:254
@ ICR_Promotion
Promotion.
Definition: Overload.h:223
@ ICR_Exact_Match
Exact Match.
Definition: Overload.h:217
@ ICR_C_Conversion_Extension
Conversion not allowed by the C standard, but that we accept as an extension anyway.
Definition: Overload.h:248
@ ICR_HLSL_Scalar_Widening_Promotion
HLSL Scalar Widening with promotion.
Definition: Overload.h:226
OverloadCandidateDisplayKind
Definition: Overload.h:64
@ OCD_AmbiguousCandidates
Requests that only tied-for-best candidates be shown.
Definition: Overload.h:73
@ OCD_ViableCandidates
Requests that only viable candidates be shown.
Definition: Overload.h:70
@ OCD_AllCandidates
Requests that all candidates be shown.
Definition: Overload.h:67
OverloadCandidateParamOrder
The parameter ordering that will be used for the candidate.
Definition: Overload.h:84
OverloadCandidateRewriteKind
The kinds of rewrite we perform on overload candidates.
Definition: Overload.h:89
@ CRK_Reversed
Candidate is a rewritten candidate with a reversed order of parameters.
Definition: Overload.h:97
@ CRK_None
Candidate is not a rewritten candidate.
Definition: Overload.h:91
@ CRK_DifferentOperator
Candidate is a rewritten candidate with a different operator name.
Definition: Overload.h:94
ImplicitConversionKind
ImplicitConversionKind - The kind of implicit conversion used to convert an argument to a parameter's...
Definition: Overload.h:104
@ ICK_Complex_Conversion
Complex conversions (C99 6.3.1.6)
Definition: Overload.h:139
@ ICK_Floating_Promotion
Floating point promotions (C++ [conv.fpprom])
Definition: Overload.h:127
@ ICK_Boolean_Conversion
Boolean conversions (C++ [conv.bool])
Definition: Overload.h:151
@ ICK_Integral_Conversion
Integral conversions (C++ [conv.integral])
Definition: Overload.h:133
@ ICK_HLSL_Vector_Splat
Definition: Overload.h:205
@ ICK_Fixed_Point_Conversion
Fixed point type conversions according to N1169.
Definition: Overload.h:196
@ ICK_Vector_Conversion
Vector conversions.
Definition: Overload.h:160
@ ICK_Block_Pointer_Conversion
Block Pointer conversions.
Definition: Overload.h:175
@ ICK_Pointer_Member
Pointer-to-member conversions (C++ [conv.mem])
Definition: Overload.h:148
@ ICK_Floating_Integral
Floating-integral conversions (C++ [conv.fpint])
Definition: Overload.h:142
@ ICK_HLSL_Array_RValue
HLSL non-decaying array rvalue cast.
Definition: Overload.h:202
@ ICK_SVE_Vector_Conversion
Arm SVE Vector conversions.
Definition: Overload.h:163
@ ICK_HLSL_Vector_Truncation
HLSL vector truncation.
Definition: Overload.h:199
@ ICK_Incompatible_Pointer_Conversion
C-only conversion between pointers with incompatible types.
Definition: Overload.h:193
@ ICK_Array_To_Pointer
Array-to-pointer conversion (C++ [conv.array])
Definition: Overload.h:112
@ ICK_RVV_Vector_Conversion
RISC-V RVV Vector conversions.
Definition: Overload.h:166
@ ICK_Complex_Promotion
Complex promotions (Clang extension)
Definition: Overload.h:130
@ ICK_Num_Conversion_Kinds
The number of conversion kinds.
Definition: Overload.h:208
@ ICK_Function_Conversion
Function pointer conversion (C++17 [conv.fctptr])
Definition: Overload.h:118
@ ICK_Vector_Splat
A vector splat from an arithmetic type.
Definition: Overload.h:169
@ ICK_Zero_Queue_Conversion
Zero constant to queue.
Definition: Overload.h:187
@ ICK_Identity
Identity conversion (no conversion)
Definition: Overload.h:106
@ ICK_Derived_To_Base
Derived-to-base (C++ [over.best.ics])
Definition: Overload.h:157
@ ICK_Lvalue_To_Rvalue
Lvalue-to-rvalue conversion (C++ [conv.lval])
Definition: Overload.h:109
@ ICK_Qualification
Qualification conversions (C++ [conv.qual])
Definition: Overload.h:121
@ ICK_Pointer_Conversion
Pointer conversions (C++ [conv.ptr])
Definition: Overload.h:145
@ ICK_TransparentUnionConversion
Transparent Union Conversions.
Definition: Overload.h:178
@ ICK_Integral_Promotion
Integral promotions (C++ [conv.prom])
Definition: Overload.h:124
@ ICK_Floating_Conversion
Floating point conversions (C++ [conv.double].
Definition: Overload.h:136
@ ICK_Compatible_Conversion
Conversions between compatible types in C99.
Definition: Overload.h:154
@ ICK_C_Only_Conversion
Conversions allowed in C, but not C++.
Definition: Overload.h:190
@ ICK_Writeback_Conversion
Objective-C ARC writeback conversion.
Definition: Overload.h:181
@ ICK_Zero_Event_Conversion
Zero constant to event (OpenCL1.2 6.12.10)
Definition: Overload.h:184
@ ICK_Complex_Real
Complex-real conversions (C99 6.3.1.7)
Definition: Overload.h:172
@ ICK_Function_To_Pointer
Function-to-pointer (C++ [conv.array])
Definition: Overload.h:115
LangAS
Defines the address space values used by the address space qualifier of QualType.
Definition: AddressSpaces.h:25
OverloadedOperatorKind getRewrittenOverloadedOperator(OverloadedOperatorKind Kind)
Get the other overloaded operator that the given operator can be rewritten into, if any such operator...
Definition: OperatorKinds.h:36
const FunctionProtoType * T
bool shouldEnforceArgLimit(bool PartialOverloading, FunctionDecl *Function)
NarrowingKind
NarrowingKind - The kind of narrowing conversion being performed by a standard conversion sequence ac...
Definition: Overload.h:268
@ NK_Not_Narrowing
Not a narrowing conversion.
Definition: Overload.h:270
@ NK_Constant_Narrowing
A narrowing conversion, because a constant expression got narrowed.
Definition: Overload.h:276
@ NK_Dependent_Narrowing
Cannot tell whether this is a narrowing conversion because the expression is value-dependent.
Definition: Overload.h:284
@ NK_Type_Narrowing
A narrowing conversion by virtue of the source and destination types.
Definition: Overload.h:273
@ NK_Variable_Narrowing
A narrowing conversion, because a non-constant-expression variable might have got narrowed.
Definition: Overload.h:280
ConstructorInfo getConstructorInfo(NamedDecl *ND)
Definition: Overload.h:1512
ImplicitConversionRank GetConversionRank(ImplicitConversionKind Kind)
GetConversionRank - Retrieve the implicit conversion rank corresponding to the given implicit convers...
@ Other
Other implicit parameter.
Diagnostic wrappers for TextAPI types for error reporting.
Definition: Dominators.h:30
__UINTPTR_TYPE__ uintptr_t
An unsigned integer type with the property that any valid pointer to void can be converted to this ty...
#define false
Definition: stdbool.h:26
Represents an ambiguous user-defined conversion sequence.
Definition: Overload.h:515
ConversionSet::const_iterator const_iterator
Definition: Overload.h:551
const ConversionSet & conversions() const
Definition: Overload.h:538
ConversionSet & conversions()
Definition: Overload.h:534
const_iterator end() const
Definition: Overload.h:554
void addConversion(NamedDecl *Found, FunctionDecl *D)
Definition: Overload.h:542
SmallVector< std::pair< NamedDecl *, FunctionDecl * >, 4 > ConversionSet
Definition: Overload.h:517
char Buffer[sizeof(ConversionSet)]
Definition: Overload.h:521
void copyFrom(const AmbiguousConversionSequence &)
ConversionSet::iterator iterator
Definition: Overload.h:546
const_iterator begin() const
Definition: Overload.h:553
BadConversionSequence - Records information about an invalid conversion sequence.
Definition: Overload.h:563
void setToType(QualType T)
Definition: Overload.h:608
void setFromType(QualType T)
Definition: Overload.h:607
void init(FailureKind K, Expr *From, QualType To)
Definition: Overload.h:587
void init(FailureKind K, QualType From, QualType To)
Definition: Overload.h:592
QualType getToType() const
Definition: Overload.h:600
void setFromExpr(Expr *E)
Definition: Overload.h:602
QualType getFromType() const
Definition: Overload.h:599
FunctionTemplateDecl * ConstructorTmpl
Definition: Overload.h:1505
CXXConstructorDecl * Constructor
Definition: Overload.h:1504
DeclAccessPair FoundDecl
Definition: Overload.h:1503
The class facilities generation and storage of conversion FixIts.
bool tryToFixConversion(const Expr *FromExpr, const QualType FromQTy, const QualType ToQTy, Sema &S)
If possible, generates and stores a fix for the given conversion.
A structure used to record information about a failed template argument deduction,...
DeferredTemplateOverloadCandidate * Next
Definition: Overload.h:1095
Information about operator rewrites to consider when adding operator functions to a candidate set.
Definition: Overload.h:1188
OperatorRewriteInfo(OverloadedOperatorKind Op, SourceLocation OpLoc, bool AllowRewritten)
Definition: Overload.h:1191
bool isRewrittenOperator(const FunctionDecl *FD)
Would use of this function result in a rewrite using a different operator?
Definition: Overload.h:1205
SourceLocation OpLoc
The source location of the operator.
Definition: Overload.h:1199
bool AllowRewrittenCandidates
Whether we should include rewritten candidates in the overload set.
Definition: Overload.h:1201
bool isReversible()
Determines whether this operator could be implemented by a function with reversed parameter order.
Definition: Overload.h:1237
OverloadedOperatorKind OriginalOperator
The original operator as written in the source.
Definition: Overload.h:1197
bool isAcceptableCandidate(const FunctionDecl *FD)
Definition: Overload.h:1210
OverloadCandidateRewriteKind getRewriteKind(const FunctionDecl *FD, OverloadCandidateParamOrder PO)
Determine the kind of rewrite that should be performed for this candidate.
Definition: Overload.h:1227
OverloadCandidate - A single candidate in an overload set (C++ 13.3).
Definition: Overload.h:926
unsigned StrictPackMatch
Have we matched any packs on the parameter side, versus any non-packs on the argument side,...
Definition: Overload.h:991
unsigned IgnoreObjectArgument
IgnoreObjectArgument - True to indicate that the first argument's conversion, which for this function...
Definition: Overload.h:982
bool TryToFixBadConversion(unsigned Idx, Sema &S)
Definition: Overload.h:1056
bool NotValidBecauseConstraintExprHasError() const
bool isReversed() const
Definition: Overload.h:1030
unsigned IsADLCandidate
True if the candidate was found using ADL.
Definition: Overload.h:995
unsigned IsSurrogate
IsSurrogate - True to indicate that this candidate is a surrogate for a conversion to a function poin...
Definition: Overload.h:972
QualType BuiltinParamTypes[3]
BuiltinParamTypes - Provides the parameter types of a built-in overload candidate.
Definition: Overload.h:940
bool hasAmbiguousConversion() const
hasAmbiguousConversion - Returns whether this overload candidate requires an ambiguous conversion or ...
Definition: Overload.h:1034
DeclAccessPair FoundDecl
FoundDecl - The original declaration that was looked up / invented / otherwise found,...
Definition: Overload.h:936
FunctionDecl * Function
Function - The actual function that this candidate represents.
Definition: Overload.h:931
unsigned RewriteKind
Whether this is a rewritten candidate, and if so, of what kind?
Definition: Overload.h:1003
ConversionFixItGenerator Fix
The FixIt hints which can be used to fix the Bad candidate.
Definition: Overload.h:952
unsigned Best
Whether this candidate is the best viable function, or tied for being the best viable function.
Definition: Overload.h:966
StandardConversionSequence FinalConversion
FinalConversion - For a conversion function (where Function is a CXXConversionDecl),...
Definition: Overload.h:1021
unsigned getNumParams() const
Definition: Overload.h:1069
unsigned HasFinalConversion
Whether FinalConversion has been set.
Definition: Overload.h:999
unsigned TookAddressOfOverload
Definition: Overload.h:985
unsigned FailureKind
FailureKind - The reason why this candidate is not viable.
Definition: Overload.h:1008
unsigned ExplicitCallArguments
The number of call arguments that were explicitly provided, to be used while performing partial order...
Definition: Overload.h:1012
ConversionSequenceList Conversions
The conversion sequences used to convert the function arguments to the function parameters.
Definition: Overload.h:949
DeductionFailureInfo DeductionFailure
Definition: Overload.h:1015
unsigned Viable
Viable - True to indicate that this overload candidate is viable.
Definition: Overload.h:956
bool isPerfectMatch(const ASTContext &Ctx) const
Definition: Overload.h:1044
CXXConversionDecl * Surrogate
Surrogate - The conversion function for which this candidate is a surrogate, but only if IsSurrogate ...
Definition: Overload.h:944
OverloadCandidateRewriteKind getRewriteKind() const
Get RewriteKind value in OverloadCandidateRewriteKind type (This function is to workaround the spurio...
Definition: Overload.h:1026
UserDefinedConversionSequence - Represents a user-defined conversion sequence (C++ 13....
Definition: Overload.h:470
StandardConversionSequence Before
Represents the standard conversion that occurs before the actual user-defined conversion.
Definition: Overload.h:482
FunctionDecl * ConversionFunction
ConversionFunction - The function that will perform the user-defined conversion.
Definition: Overload.h:504
bool HadMultipleCandidates
HadMultipleCandidates - When this is true, it means that the conversion function was resolved from an...
Definition: Overload.h:495
StandardConversionSequence After
After - Represents the standard conversion that occurs after the actual user-defined conversion.
Definition: Overload.h:499
bool EllipsisConversion
EllipsisConversion - When this is true, it means user-defined conversion sequence starts with a ....
Definition: Overload.h:490
DeclAccessPair FoundConversionFunction
The declaration that we found via name lookup, which might be the same as ConversionFunction or it mi...
Definition: Overload.h:509
void dump() const
dump - Print this user-defined conversion sequence to standard error.