1 // C++11 <type_traits> -*- C++ -*-
3 // Copyright (C) 2007-2020 Free Software Foundation, Inc.
5 // This file is part of the GNU ISO C++ Library. This library is free
6 // software; you can redistribute it and/or modify it under the
7 // terms of the GNU General Public License as published by the
8 // Free Software Foundation; either version 3, or (at your option)
11 // This library is distributed in the hope that it will be useful,
12 // but WITHOUT ANY WARRANTY; without even the implied warranty of
13 // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 // GNU General Public License for more details.
16 // Under Section 7 of GPL version 3, you are granted additional
17 // permissions described in the GCC Runtime Library Exception, version
18 // 3.1, as published by the Free Software Foundation.
20 // You should have received a copy of the GNU General Public License and
21 // a copy of the GCC Runtime Library Exception along with this program;
22 // see the files COPYING3 and COPYING.RUNTIME respectively. If not, see
23 // <http://www.gnu.org/licenses/>.
25 /** @file include/type_traits
26 * This is a Standard C++ Library header.
29 #ifndef _GLIBCXX_TYPE_TRAITS
30 #define _GLIBCXX_TYPE_TRAITS 1
32 #pragma GCC system_header
34 #if __cplusplus < 201103L
35 # include <bits/c++0x_warning.h>
38 #include <bits/c++config.h>
40 namespace std _GLIBCXX_VISIBILITY(default)
42 _GLIBCXX_BEGIN_NAMESPACE_VERSION
45 * @defgroup metaprogramming Metaprogramming
48 * Template utilities for compile-time introspection and modification,
49 * including type classification traits, type property inspection traits
50 * and type transformation traits.
56 template<typename _Tp, _Tp __v>
57 struct integral_constant
59 static constexpr _Tp value = __v;
60 typedef _Tp value_type;
61 typedef integral_constant<_Tp, __v> type;
62 constexpr operator value_type() const noexcept { return value; }
63 #if __cplusplus > 201103L
65 #define __cpp_lib_integral_constant_callable 201304
67 constexpr value_type operator()() const noexcept { return value; }
71 template<typename _Tp, _Tp __v>
72 constexpr _Tp integral_constant<_Tp, __v>::value;
74 /// The type used as a compile-time boolean with true value.
75 typedef integral_constant<bool, true> true_type;
77 /// The type used as a compile-time boolean with false value.
78 typedef integral_constant<bool, false> false_type;
81 using __bool_constant = integral_constant<bool, __v>;
83 #if __cplusplus > 201402L
84 # define __cpp_lib_bool_constant 201505
86 using bool_constant = integral_constant<bool, __v>;
89 // Meta programming helper types.
91 template<bool, typename, typename>
94 template <typename _Type>
95 struct __type_identity
96 { using type = _Type; };
98 template<typename _Tp>
99 using __type_identity_t = typename __type_identity<_Tp>::type;
101 template<typename...>
109 template<typename _B1>
114 template<typename _B1, typename _B2>
115 struct __or_<_B1, _B2>
116 : public conditional<_B1::value, _B1, _B2>::type
119 template<typename _B1, typename _B2, typename _B3, typename... _Bn>
120 struct __or_<_B1, _B2, _B3, _Bn...>
121 : public conditional<_B1::value, _B1, __or_<_B2, _B3, _Bn...>>::type
124 template<typename...>
132 template<typename _B1>
137 template<typename _B1, typename _B2>
138 struct __and_<_B1, _B2>
139 : public conditional<_B1::value, _B2, _B1>::type
142 template<typename _B1, typename _B2, typename _B3, typename... _Bn>
143 struct __and_<_B1, _B2, _B3, _Bn...>
144 : public conditional<_B1::value, __and_<_B2, _B3, _Bn...>, _B1>::type
147 template<typename _Pp>
149 : public __bool_constant<!bool(_Pp::value)>
152 #if __cplusplus >= 201703L
154 template<typename... _Bn>
155 inline constexpr bool __or_v = __or_<_Bn...>::value;
156 template<typename... _Bn>
157 inline constexpr bool __and_v = __and_<_Bn...>::value;
159 #define __cpp_lib_logical_traits 201510
161 template<typename... _Bn>
166 template<typename... _Bn>
171 template<typename _Pp>
176 template<typename... _Bn>
177 inline constexpr bool conjunction_v = conjunction<_Bn...>::value;
179 template<typename... _Bn>
180 inline constexpr bool disjunction_v = disjunction<_Bn...>::value;
182 template<typename _Pp>
183 inline constexpr bool negation_v = negation<_Pp>::value;
187 // Forward declarations
195 struct __is_array_unknown_bounds;
197 // Helper functions that return false_type for incomplete classes,
198 // incomplete unions and arrays of known bound from those.
200 template <typename _T, size_t = sizeof(_T)>
201 constexpr true_type __is_complete_or_unbounded(__type_identity<_T>)
204 template <typename _TypeIdentity,
205 typename _NestedType = typename _TypeIdentity::type>
206 constexpr typename __or_<
207 is_reference<_NestedType>,
208 is_function<_NestedType>,
209 is_void<_NestedType>,
210 __is_array_unknown_bounds<_NestedType>
211 >::type __is_complete_or_unbounded(_TypeIdentity)
214 // For several sfinae-friendly trait implementations we transport both the
215 // result information (as the member type) and the failure information (no
216 // member type). This is very similar to std::enable_if, but we cannot use
217 // them, because we need to derive from them as an implementation detail.
219 template<typename _Tp>
220 struct __success_type
221 { typedef _Tp type; };
223 struct __failure_type
229 // __remove_cv_t (std::remove_cv_t for C++11).
230 template<typename _Tp>
231 using __remove_cv_t = typename remove_cv<_Tp>::type;
236 // Primary type categories.
239 struct __is_void_helper
240 : public false_type { };
243 struct __is_void_helper<void>
244 : public true_type { };
247 template<typename _Tp>
249 : public __is_void_helper<__remove_cv_t<_Tp>>::type
253 struct __is_integral_helper
254 : public false_type { };
257 struct __is_integral_helper<bool>
258 : public true_type { };
261 struct __is_integral_helper<char>
262 : public true_type { };
265 struct __is_integral_helper<signed char>
266 : public true_type { };
269 struct __is_integral_helper<unsigned char>
270 : public true_type { };
272 #ifdef _GLIBCXX_USE_WCHAR_T
274 struct __is_integral_helper<wchar_t>
275 : public true_type { };
278 #ifdef _GLIBCXX_USE_CHAR8_T
280 struct __is_integral_helper<char8_t>
281 : public true_type { };
285 struct __is_integral_helper<char16_t>
286 : public true_type { };
289 struct __is_integral_helper<char32_t>
290 : public true_type { };
293 struct __is_integral_helper<short>
294 : public true_type { };
297 struct __is_integral_helper<unsigned short>
298 : public true_type { };
301 struct __is_integral_helper<int>
302 : public true_type { };
305 struct __is_integral_helper<unsigned int>
306 : public true_type { };
309 struct __is_integral_helper<long>
310 : public true_type { };
313 struct __is_integral_helper<unsigned long>
314 : public true_type { };
317 struct __is_integral_helper<long long>
318 : public true_type { };
321 struct __is_integral_helper<unsigned long long>
322 : public true_type { };
324 // Conditionalizing on __STRICT_ANSI__ here will break any port that
325 // uses one of these types for size_t.
326 #if defined(__GLIBCXX_TYPE_INT_N_0)
328 struct __is_integral_helper<__GLIBCXX_TYPE_INT_N_0>
329 : public true_type { };
332 struct __is_integral_helper<unsigned __GLIBCXX_TYPE_INT_N_0>
333 : public true_type { };
335 #if defined(__GLIBCXX_TYPE_INT_N_1)
337 struct __is_integral_helper<__GLIBCXX_TYPE_INT_N_1>
338 : public true_type { };
341 struct __is_integral_helper<unsigned __GLIBCXX_TYPE_INT_N_1>
342 : public true_type { };
344 #if defined(__GLIBCXX_TYPE_INT_N_2)
346 struct __is_integral_helper<__GLIBCXX_TYPE_INT_N_2>
347 : public true_type { };
350 struct __is_integral_helper<unsigned __GLIBCXX_TYPE_INT_N_2>
351 : public true_type { };
353 #if defined(__GLIBCXX_TYPE_INT_N_3)
355 struct __is_integral_helper<__GLIBCXX_TYPE_INT_N_3>
356 : public true_type { };
359 struct __is_integral_helper<unsigned __GLIBCXX_TYPE_INT_N_3>
360 : public true_type { };
364 template<typename _Tp>
366 : public __is_integral_helper<__remove_cv_t<_Tp>>::type
370 struct __is_floating_point_helper
371 : public false_type { };
374 struct __is_floating_point_helper<float>
375 : public true_type { };
378 struct __is_floating_point_helper<double>
379 : public true_type { };
382 struct __is_floating_point_helper<long double>
383 : public true_type { };
385 #if !defined(__STRICT_ANSI__) && defined(_GLIBCXX_USE_FLOAT128)
387 struct __is_floating_point_helper<__float128>
388 : public true_type { };
391 /// is_floating_point
392 template<typename _Tp>
393 struct is_floating_point
394 : public __is_floating_point_helper<__remove_cv_t<_Tp>>::type
400 : public false_type { };
402 template<typename _Tp, std::size_t _Size>
403 struct is_array<_Tp[_Size]>
404 : public true_type { };
406 template<typename _Tp>
407 struct is_array<_Tp[]>
408 : public true_type { };
411 struct __is_pointer_helper
412 : public false_type { };
414 template<typename _Tp>
415 struct __is_pointer_helper<_Tp*>
416 : public true_type { };
419 template<typename _Tp>
421 : public __is_pointer_helper<__remove_cv_t<_Tp>>::type
424 /// is_lvalue_reference
426 struct is_lvalue_reference
427 : public false_type { };
429 template<typename _Tp>
430 struct is_lvalue_reference<_Tp&>
431 : public true_type { };
433 /// is_rvalue_reference
435 struct is_rvalue_reference
436 : public false_type { };
438 template<typename _Tp>
439 struct is_rvalue_reference<_Tp&&>
440 : public true_type { };
443 struct __is_member_object_pointer_helper
444 : public false_type { };
446 template<typename _Tp, typename _Cp>
447 struct __is_member_object_pointer_helper<_Tp _Cp::*>
448 : public __not_<is_function<_Tp>>::type { };
450 /// is_member_object_pointer
451 template<typename _Tp>
452 struct is_member_object_pointer
453 : public __is_member_object_pointer_helper<__remove_cv_t<_Tp>>::type
457 struct __is_member_function_pointer_helper
458 : public false_type { };
460 template<typename _Tp, typename _Cp>
461 struct __is_member_function_pointer_helper<_Tp _Cp::*>
462 : public is_function<_Tp>::type { };
464 /// is_member_function_pointer
465 template<typename _Tp>
466 struct is_member_function_pointer
467 : public __is_member_function_pointer_helper<__remove_cv_t<_Tp>>::type
471 template<typename _Tp>
473 : public integral_constant<bool, __is_enum(_Tp)>
477 template<typename _Tp>
479 : public integral_constant<bool, __is_union(_Tp)>
483 template<typename _Tp>
485 : public integral_constant<bool, __is_class(_Tp)>
489 template<typename _Tp>
491 : public __bool_constant<!is_const<const _Tp>::value> { };
493 template<typename _Tp>
494 struct is_function<_Tp&>
495 : public false_type { };
497 template<typename _Tp>
498 struct is_function<_Tp&&>
499 : public false_type { };
501 #define __cpp_lib_is_null_pointer 201309
504 struct __is_null_pointer_helper
505 : public false_type { };
508 struct __is_null_pointer_helper<std::nullptr_t>
509 : public true_type { };
511 /// is_null_pointer (LWG 2247).
512 template<typename _Tp>
513 struct is_null_pointer
514 : public __is_null_pointer_helper<__remove_cv_t<_Tp>>::type
517 /// __is_nullptr_t (deprecated extension).
518 template<typename _Tp>
519 struct __is_nullptr_t
520 : public is_null_pointer<_Tp>
521 { } _GLIBCXX_DEPRECATED;
523 // Composite type categories.
526 template<typename _Tp>
528 : public __or_<is_lvalue_reference<_Tp>,
529 is_rvalue_reference<_Tp>>::type
533 template<typename _Tp>
535 : public __or_<is_integral<_Tp>, is_floating_point<_Tp>>::type
539 template<typename _Tp>
540 struct is_fundamental
541 : public __or_<is_arithmetic<_Tp>, is_void<_Tp>,
542 is_null_pointer<_Tp>>::type
546 template<typename _Tp>
548 : public __not_<__or_<is_function<_Tp>, is_reference<_Tp>,
553 struct is_member_pointer;
556 template<typename _Tp>
558 : public __or_<is_arithmetic<_Tp>, is_enum<_Tp>, is_pointer<_Tp>,
559 is_member_pointer<_Tp>, is_null_pointer<_Tp>>::type
563 template<typename _Tp>
565 : public __not_<is_fundamental<_Tp>>::type { };
567 template<typename _Tp>
568 struct __is_member_pointer_helper
569 : public false_type { };
571 template<typename _Tp, typename _Cp>
572 struct __is_member_pointer_helper<_Tp _Cp::*>
573 : public true_type { };
575 /// is_member_pointer
576 template<typename _Tp>
577 struct is_member_pointer
578 : public __is_member_pointer_helper<__remove_cv_t<_Tp>>::type
581 template<typename, typename>
584 template<typename _Tp, typename... _Types>
585 using __is_one_of = __or_<is_same<_Tp, _Types>...>;
587 // Check if a type is one of the signed integer types.
588 template<typename _Tp>
589 using __is_signed_integer = __is_one_of<__remove_cv_t<_Tp>,
590 signed char, signed short, signed int, signed long,
592 #if defined(__GLIBCXX_TYPE_INT_N_0)
593 , signed __GLIBCXX_TYPE_INT_N_0
595 #if defined(__GLIBCXX_TYPE_INT_N_1)
596 , signed __GLIBCXX_TYPE_INT_N_1
598 #if defined(__GLIBCXX_TYPE_INT_N_2)
599 , signed __GLIBCXX_TYPE_INT_N_2
601 #if defined(__GLIBCXX_TYPE_INT_N_3)
602 , signed __GLIBCXX_TYPE_INT_N_3
606 // Check if a type is one of the unsigned integer types.
607 template<typename _Tp>
608 using __is_unsigned_integer = __is_one_of<__remove_cv_t<_Tp>,
609 unsigned char, unsigned short, unsigned int, unsigned long,
611 #if defined(__GLIBCXX_TYPE_INT_N_0)
612 , unsigned __GLIBCXX_TYPE_INT_N_0
614 #if defined(__GLIBCXX_TYPE_INT_N_1)
615 , unsigned __GLIBCXX_TYPE_INT_N_1
617 #if defined(__GLIBCXX_TYPE_INT_N_2)
618 , unsigned __GLIBCXX_TYPE_INT_N_2
620 #if defined(__GLIBCXX_TYPE_INT_N_3)
621 , unsigned __GLIBCXX_TYPE_INT_N_3
625 // Check if a type is one of the signed or unsigned integer types.
626 template<typename _Tp>
627 using __is_standard_integer
628 = __or_<__is_signed_integer<_Tp>, __is_unsigned_integer<_Tp>>;
630 // __void_t (std::void_t for C++11)
631 template<typename...> using __void_t = void;
633 // Utility to detect referenceable types ([defns.referenceable]).
635 template<typename _Tp, typename = void>
636 struct __is_referenceable
640 template<typename _Tp>
641 struct __is_referenceable<_Tp, __void_t<_Tp&>>
650 : public false_type { };
652 template<typename _Tp>
653 struct is_const<_Tp const>
654 : public true_type { };
659 : public false_type { };
661 template<typename _Tp>
662 struct is_volatile<_Tp volatile>
663 : public true_type { };
666 template<typename _Tp>
668 : public integral_constant<bool, __is_trivial(_Tp)>
670 static_assert(std::__is_complete_or_unbounded(__type_identity<_Tp>{}),
671 "template argument must be a complete class or an unbounded array");
674 // is_trivially_copyable
675 template<typename _Tp>
676 struct is_trivially_copyable
677 : public integral_constant<bool, __is_trivially_copyable(_Tp)>
679 static_assert(std::__is_complete_or_unbounded(__type_identity<_Tp>{}),
680 "template argument must be a complete class or an unbounded array");
683 /// is_standard_layout
684 template<typename _Tp>
685 struct is_standard_layout
686 : public integral_constant<bool, __is_standard_layout(_Tp)>
688 static_assert(std::__is_complete_or_unbounded(__type_identity<_Tp>{}),
689 "template argument must be a complete class or an unbounded array");
692 /// is_pod (deprecated in C++20)
693 // Could use is_standard_layout && is_trivial instead of the builtin.
694 template<typename _Tp>
696 _GLIBCXX20_DEPRECATED("use is_standard_layout && is_trivial instead")
698 : public integral_constant<bool, __is_pod(_Tp)>
700 static_assert(std::__is_complete_or_unbounded(__type_identity<_Tp>{}),
701 "template argument must be a complete class or an unbounded array");
705 template<typename _Tp>
706 struct is_literal_type
707 : public integral_constant<bool, __is_literal_type(_Tp)>
709 static_assert(std::__is_complete_or_unbounded(__type_identity<_Tp>{}),
710 "template argument must be a complete class or an unbounded array");
714 template<typename _Tp>
716 : public integral_constant<bool, __is_empty(_Tp)>
720 template<typename _Tp>
721 struct is_polymorphic
722 : public integral_constant<bool, __is_polymorphic(_Tp)>
725 #if __cplusplus >= 201402L
726 #define __cpp_lib_is_final 201402L
728 template<typename _Tp>
730 : public integral_constant<bool, __is_final(_Tp)>
735 template<typename _Tp>
737 : public integral_constant<bool, __is_abstract(_Tp)>
740 template<typename _Tp,
741 bool = is_arithmetic<_Tp>::value>
742 struct __is_signed_helper
743 : public false_type { };
745 template<typename _Tp>
746 struct __is_signed_helper<_Tp, true>
747 : public integral_constant<bool, _Tp(-1) < _Tp(0)>
751 template<typename _Tp>
753 : public __is_signed_helper<_Tp>::type
757 template<typename _Tp>
759 : public __and_<is_arithmetic<_Tp>, __not_<is_signed<_Tp>>>
763 // Destructible and constructible type properties.
766 * @brief Utility to simplify expressions used in unevaluated operands
770 template<typename _Tp, typename _Up = _Tp&&>
774 template<typename _Tp>
778 template<typename _Tp>
779 auto declval() noexcept -> decltype(__declval<_Tp>(0));
781 template<typename, unsigned = 0>
785 struct remove_all_extents;
787 template<typename _Tp>
788 struct __is_array_known_bounds
789 : public integral_constant<bool, (extent<_Tp>::value > 0)>
792 template<typename _Tp>
793 struct __is_array_unknown_bounds
794 : public __and_<is_array<_Tp>, __not_<extent<_Tp>>>
797 // In N3290 is_destructible does not say anything about function
798 // types and abstract types, see LWG 2049. This implementation
799 // describes function types as non-destructible and all complete
800 // object types as destructible, iff the explicit destructor
801 // call expression is wellformed.
802 struct __do_is_destructible_impl
804 template<typename _Tp, typename = decltype(declval<_Tp&>().~_Tp())>
805 static true_type __test(int);
808 static false_type __test(...);
811 template<typename _Tp>
812 struct __is_destructible_impl
813 : public __do_is_destructible_impl
815 typedef decltype(__test<_Tp>(0)) type;
818 template<typename _Tp,
819 bool = __or_<is_void<_Tp>,
820 __is_array_unknown_bounds<_Tp>,
821 is_function<_Tp>>::value,
822 bool = __or_<is_reference<_Tp>, is_scalar<_Tp>>::value>
823 struct __is_destructible_safe;
825 template<typename _Tp>
826 struct __is_destructible_safe<_Tp, false, false>
827 : public __is_destructible_impl<typename
828 remove_all_extents<_Tp>::type>::type
831 template<typename _Tp>
832 struct __is_destructible_safe<_Tp, true, false>
833 : public false_type { };
835 template<typename _Tp>
836 struct __is_destructible_safe<_Tp, false, true>
837 : public true_type { };
840 template<typename _Tp>
841 struct is_destructible
842 : public __is_destructible_safe<_Tp>::type
844 static_assert(std::__is_complete_or_unbounded(__type_identity<_Tp>{}),
845 "template argument must be a complete class or an unbounded array");
848 // is_nothrow_destructible requires that is_destructible is
849 // satisfied as well. We realize that by mimicing the
850 // implementation of is_destructible but refer to noexcept(expr)
851 // instead of decltype(expr).
852 struct __do_is_nt_destructible_impl
854 template<typename _Tp>
855 static __bool_constant<noexcept(declval<_Tp&>().~_Tp())>
859 static false_type __test(...);
862 template<typename _Tp>
863 struct __is_nt_destructible_impl
864 : public __do_is_nt_destructible_impl
866 typedef decltype(__test<_Tp>(0)) type;
869 template<typename _Tp,
870 bool = __or_<is_void<_Tp>,
871 __is_array_unknown_bounds<_Tp>,
872 is_function<_Tp>>::value,
873 bool = __or_<is_reference<_Tp>, is_scalar<_Tp>>::value>
874 struct __is_nt_destructible_safe;
876 template<typename _Tp>
877 struct __is_nt_destructible_safe<_Tp, false, false>
878 : public __is_nt_destructible_impl<typename
879 remove_all_extents<_Tp>::type>::type
882 template<typename _Tp>
883 struct __is_nt_destructible_safe<_Tp, true, false>
884 : public false_type { };
886 template<typename _Tp>
887 struct __is_nt_destructible_safe<_Tp, false, true>
888 : public true_type { };
890 /// is_nothrow_destructible
891 template<typename _Tp>
892 struct is_nothrow_destructible
893 : public __is_nt_destructible_safe<_Tp>::type
895 static_assert(std::__is_complete_or_unbounded(__type_identity<_Tp>{}),
896 "template argument must be a complete class or an unbounded array");
899 template<typename _Tp, typename... _Args>
900 struct __is_constructible_impl
901 : public __bool_constant<__is_constructible(_Tp, _Args...)>
905 template<typename _Tp, typename... _Args>
906 struct is_constructible
907 : public __is_constructible_impl<_Tp, _Args...>
909 static_assert(std::__is_complete_or_unbounded(__type_identity<_Tp>{}),
910 "template argument must be a complete class or an unbounded array");
913 /// is_default_constructible
914 template<typename _Tp>
915 struct is_default_constructible
916 : public __is_constructible_impl<_Tp>::type
918 static_assert(std::__is_complete_or_unbounded(__type_identity<_Tp>{}),
919 "template argument must be a complete class or an unbounded array");
922 template<typename _Tp, bool = __is_referenceable<_Tp>::value>
923 struct __is_copy_constructible_impl;
925 template<typename _Tp>
926 struct __is_copy_constructible_impl<_Tp, false>
927 : public false_type { };
929 template<typename _Tp>
930 struct __is_copy_constructible_impl<_Tp, true>
931 : public __is_constructible_impl<_Tp, const _Tp&>
934 /// is_copy_constructible
935 template<typename _Tp>
936 struct is_copy_constructible
937 : public __is_copy_constructible_impl<_Tp>
939 static_assert(std::__is_complete_or_unbounded(__type_identity<_Tp>{}),
940 "template argument must be a complete class or an unbounded array");
943 template<typename _Tp, bool = __is_referenceable<_Tp>::value>
944 struct __is_move_constructible_impl;
946 template<typename _Tp>
947 struct __is_move_constructible_impl<_Tp, false>
948 : public false_type { };
950 template<typename _Tp>
951 struct __is_move_constructible_impl<_Tp, true>
952 : public __is_constructible_impl<_Tp, _Tp&&>
955 /// is_move_constructible
956 template<typename _Tp>
957 struct is_move_constructible
958 : public __is_move_constructible_impl<_Tp>
960 static_assert(std::__is_complete_or_unbounded(__type_identity<_Tp>{}),
961 "template argument must be a complete class or an unbounded array");
964 template<typename _Tp>
965 struct __is_nt_default_constructible_atom
966 : public integral_constant<bool, noexcept(_Tp())>
969 template<typename _Tp, bool = is_array<_Tp>::value>
970 struct __is_nt_default_constructible_impl;
972 template<typename _Tp>
973 struct __is_nt_default_constructible_impl<_Tp, true>
974 : public __and_<__is_array_known_bounds<_Tp>,
975 __is_nt_default_constructible_atom<typename
976 remove_all_extents<_Tp>::type>>
979 template<typename _Tp>
980 struct __is_nt_default_constructible_impl<_Tp, false>
981 : public __is_nt_default_constructible_atom<_Tp>
984 template<typename _Tp>
985 using __is_nothrow_default_constructible_impl
986 = __and_<__is_constructible_impl<_Tp>,
987 __is_nt_default_constructible_impl<_Tp>>;
989 /// is_nothrow_default_constructible
990 template<typename _Tp>
991 struct is_nothrow_default_constructible
992 : public __is_nothrow_default_constructible_impl<_Tp>::type
994 static_assert(std::__is_complete_or_unbounded(__type_identity<_Tp>{}),
995 "template argument must be a complete class or an unbounded array");
998 template<typename _Tp, typename... _Args>
999 struct __is_nt_constructible_impl
1000 : public integral_constant<bool, noexcept(_Tp(declval<_Args>()...))>
1003 template<typename _Tp, typename _Arg>
1004 struct __is_nt_constructible_impl<_Tp, _Arg>
1005 : public integral_constant<bool,
1006 noexcept(static_cast<_Tp>(declval<_Arg>()))>
1009 template<typename _Tp>
1010 struct __is_nt_constructible_impl<_Tp>
1011 : public __is_nothrow_default_constructible_impl<_Tp>
1014 template<typename _Tp, typename... _Args>
1015 struct __is_nothrow_constructible_impl
1016 : public __and_<__is_constructible_impl<_Tp, _Args...>,
1017 __is_nt_constructible_impl<_Tp, _Args...>>
1020 /// is_nothrow_constructible
1021 template<typename _Tp, typename... _Args>
1022 struct is_nothrow_constructible
1023 : public __is_nothrow_constructible_impl<_Tp, _Args...>::type
1025 static_assert(std::__is_complete_or_unbounded(__type_identity<_Tp>{}),
1026 "template argument must be a complete class or an unbounded array");
1029 template<typename _Tp, bool = __is_referenceable<_Tp>::value>
1030 struct __is_nothrow_copy_constructible_impl;
1032 template<typename _Tp>
1033 struct __is_nothrow_copy_constructible_impl<_Tp, false>
1034 : public false_type { };
1036 template<typename _Tp>
1037 struct __is_nothrow_copy_constructible_impl<_Tp, true>
1038 : public __is_nothrow_constructible_impl<_Tp, const _Tp&>
1041 /// is_nothrow_copy_constructible
1042 template<typename _Tp>
1043 struct is_nothrow_copy_constructible
1044 : public __is_nothrow_copy_constructible_impl<_Tp>::type
1046 static_assert(std::__is_complete_or_unbounded(__type_identity<_Tp>{}),
1047 "template argument must be a complete class or an unbounded array");
1050 template<typename _Tp, bool = __is_referenceable<_Tp>::value>
1051 struct __is_nothrow_move_constructible_impl;
1053 template<typename _Tp>
1054 struct __is_nothrow_move_constructible_impl<_Tp, false>
1055 : public false_type { };
1057 template<typename _Tp>
1058 struct __is_nothrow_move_constructible_impl<_Tp, true>
1059 : public __is_nothrow_constructible_impl<_Tp, _Tp&&>
1062 /// is_nothrow_move_constructible
1063 template<typename _Tp>
1064 struct is_nothrow_move_constructible
1065 : public __is_nothrow_move_constructible_impl<_Tp>::type
1067 static_assert(std::__is_complete_or_unbounded(__type_identity<_Tp>{}),
1068 "template argument must be a complete class or an unbounded array");
1072 template<typename _Tp, typename _Up>
1073 struct is_assignable
1074 : public __bool_constant<__is_assignable(_Tp, _Up)>
1076 static_assert(std::__is_complete_or_unbounded(__type_identity<_Tp>{}),
1077 "template argument must be a complete class or an unbounded array");
1080 template<typename _Tp, bool = __is_referenceable<_Tp>::value>
1081 struct __is_copy_assignable_impl;
1083 template<typename _Tp>
1084 struct __is_copy_assignable_impl<_Tp, false>
1085 : public false_type { };
1087 template<typename _Tp>
1088 struct __is_copy_assignable_impl<_Tp, true>
1089 : public __bool_constant<__is_assignable(_Tp&, const _Tp&)>
1092 /// is_copy_assignable
1093 template<typename _Tp>
1094 struct is_copy_assignable
1095 : public __is_copy_assignable_impl<_Tp>::type
1097 static_assert(std::__is_complete_or_unbounded(__type_identity<_Tp>{}),
1098 "template argument must be a complete class or an unbounded array");
1101 template<typename _Tp, bool = __is_referenceable<_Tp>::value>
1102 struct __is_move_assignable_impl;
1104 template<typename _Tp>
1105 struct __is_move_assignable_impl<_Tp, false>
1106 : public false_type { };
1108 template<typename _Tp>
1109 struct __is_move_assignable_impl<_Tp, true>
1110 : public __bool_constant<__is_assignable(_Tp&, _Tp&&)>
1113 /// is_move_assignable
1114 template<typename _Tp>
1115 struct is_move_assignable
1116 : public __is_move_assignable_impl<_Tp>::type
1118 static_assert(std::__is_complete_or_unbounded(__type_identity<_Tp>{}),
1119 "template argument must be a complete class or an unbounded array");
1122 template<typename _Tp, typename _Up>
1123 struct __is_nt_assignable_impl
1124 : public integral_constant<bool, noexcept(declval<_Tp>() = declval<_Up>())>
1127 template<typename _Tp, typename _Up>
1128 struct __is_nothrow_assignable_impl
1129 : public __and_<__bool_constant<__is_assignable(_Tp, _Up)>,
1130 __is_nt_assignable_impl<_Tp, _Up>>
1133 /// is_nothrow_assignable
1134 template<typename _Tp, typename _Up>
1135 struct is_nothrow_assignable
1136 : public __is_nothrow_assignable_impl<_Tp, _Up>
1138 static_assert(std::__is_complete_or_unbounded(__type_identity<_Tp>{}),
1139 "template argument must be a complete class or an unbounded array");
1142 template<typename _Tp, bool = __is_referenceable<_Tp>::value>
1143 struct __is_nt_copy_assignable_impl;
1145 template<typename _Tp>
1146 struct __is_nt_copy_assignable_impl<_Tp, false>
1147 : public false_type { };
1149 template<typename _Tp>
1150 struct __is_nt_copy_assignable_impl<_Tp, true>
1151 : public __is_nothrow_assignable_impl<_Tp&, const _Tp&>
1154 /// is_nothrow_copy_assignable
1155 template<typename _Tp>
1156 struct is_nothrow_copy_assignable
1157 : public __is_nt_copy_assignable_impl<_Tp>
1159 static_assert(std::__is_complete_or_unbounded(__type_identity<_Tp>{}),
1160 "template argument must be a complete class or an unbounded array");
1163 template<typename _Tp, bool = __is_referenceable<_Tp>::value>
1164 struct __is_nt_move_assignable_impl;
1166 template<typename _Tp>
1167 struct __is_nt_move_assignable_impl<_Tp, false>
1168 : public false_type { };
1170 template<typename _Tp>
1171 struct __is_nt_move_assignable_impl<_Tp, true>
1172 : public __is_nothrow_assignable_impl<_Tp&, _Tp&&>
1175 /// is_nothrow_move_assignable
1176 template<typename _Tp>
1177 struct is_nothrow_move_assignable
1178 : public __is_nt_move_assignable_impl<_Tp>
1180 static_assert(std::__is_complete_or_unbounded(__type_identity<_Tp>{}),
1181 "template argument must be a complete class or an unbounded array");
1184 /// is_trivially_constructible
1185 template<typename _Tp, typename... _Args>
1186 struct is_trivially_constructible
1187 : public __bool_constant<__is_trivially_constructible(_Tp, _Args...)>
1189 static_assert(std::__is_complete_or_unbounded(__type_identity<_Tp>{}),
1190 "template argument must be a complete class or an unbounded array");
1193 /// is_trivially_default_constructible
1194 template<typename _Tp>
1195 struct is_trivially_default_constructible
1196 : public __bool_constant<__is_trivially_constructible(_Tp)>
1198 static_assert(std::__is_complete_or_unbounded(__type_identity<_Tp>{}),
1199 "template argument must be a complete class or an unbounded array");
1202 struct __do_is_implicitly_default_constructible_impl
1204 template <typename _Tp>
1205 static void __helper(const _Tp&);
1207 template <typename _Tp>
1208 static true_type __test(const _Tp&,
1209 decltype(__helper<const _Tp&>({}))* = 0);
1211 static false_type __test(...);
1214 template<typename _Tp>
1215 struct __is_implicitly_default_constructible_impl
1216 : public __do_is_implicitly_default_constructible_impl
1218 typedef decltype(__test(declval<_Tp>())) type;
1221 template<typename _Tp>
1222 struct __is_implicitly_default_constructible_safe
1223 : public __is_implicitly_default_constructible_impl<_Tp>::type
1226 template <typename _Tp>
1227 struct __is_implicitly_default_constructible
1228 : public __and_<__is_constructible_impl<_Tp>,
1229 __is_implicitly_default_constructible_safe<_Tp>>
1232 template<typename _Tp, bool = __is_referenceable<_Tp>::value>
1233 struct __is_trivially_copy_constructible_impl;
1235 template<typename _Tp>
1236 struct __is_trivially_copy_constructible_impl<_Tp, false>
1237 : public false_type { };
1239 template<typename _Tp>
1240 struct __is_trivially_copy_constructible_impl<_Tp, true>
1241 : public __and_<__is_copy_constructible_impl<_Tp>,
1242 integral_constant<bool,
1243 __is_trivially_constructible(_Tp, const _Tp&)>>
1246 /// is_trivially_copy_constructible
1247 template<typename _Tp>
1248 struct is_trivially_copy_constructible
1249 : public __is_trivially_copy_constructible_impl<_Tp>
1251 static_assert(std::__is_complete_or_unbounded(__type_identity<_Tp>{}),
1252 "template argument must be a complete class or an unbounded array");
1255 template<typename _Tp, bool = __is_referenceable<_Tp>::value>
1256 struct __is_trivially_move_constructible_impl;
1258 template<typename _Tp>
1259 struct __is_trivially_move_constructible_impl<_Tp, false>
1260 : public false_type { };
1262 template<typename _Tp>
1263 struct __is_trivially_move_constructible_impl<_Tp, true>
1264 : public __and_<__is_move_constructible_impl<_Tp>,
1265 integral_constant<bool,
1266 __is_trivially_constructible(_Tp, _Tp&&)>>
1269 /// is_trivially_move_constructible
1270 template<typename _Tp>
1271 struct is_trivially_move_constructible
1272 : public __is_trivially_move_constructible_impl<_Tp>
1274 static_assert(std::__is_complete_or_unbounded(__type_identity<_Tp>{}),
1275 "template argument must be a complete class or an unbounded array");
1278 /// is_trivially_assignable
1279 template<typename _Tp, typename _Up>
1280 struct is_trivially_assignable
1281 : public __bool_constant<__is_trivially_assignable(_Tp, _Up)>
1283 static_assert(std::__is_complete_or_unbounded(__type_identity<_Tp>{}),
1284 "template argument must be a complete class or an unbounded array");
1287 template<typename _Tp, bool = __is_referenceable<_Tp>::value>
1288 struct __is_trivially_copy_assignable_impl;
1290 template<typename _Tp>
1291 struct __is_trivially_copy_assignable_impl<_Tp, false>
1292 : public false_type { };
1294 template<typename _Tp>
1295 struct __is_trivially_copy_assignable_impl<_Tp, true>
1296 : public __bool_constant<__is_trivially_assignable(_Tp&, const _Tp&)>
1299 /// is_trivially_copy_assignable
1300 template<typename _Tp>
1301 struct is_trivially_copy_assignable
1302 : public __is_trivially_copy_assignable_impl<_Tp>
1304 static_assert(std::__is_complete_or_unbounded(__type_identity<_Tp>{}),
1305 "template argument must be a complete class or an unbounded array");
1308 template<typename _Tp, bool = __is_referenceable<_Tp>::value>
1309 struct __is_trivially_move_assignable_impl;
1311 template<typename _Tp>
1312 struct __is_trivially_move_assignable_impl<_Tp, false>
1313 : public false_type { };
1315 template<typename _Tp>
1316 struct __is_trivially_move_assignable_impl<_Tp, true>
1317 : public __bool_constant<__is_trivially_assignable(_Tp&, _Tp&&)>
1320 /// is_trivially_move_assignable
1321 template<typename _Tp>
1322 struct is_trivially_move_assignable
1323 : public __is_trivially_move_assignable_impl<_Tp>
1325 static_assert(std::__is_complete_or_unbounded(__type_identity<_Tp>{}),
1326 "template argument must be a complete class or an unbounded array");
1329 /// is_trivially_destructible
1330 template<typename _Tp>
1331 struct is_trivially_destructible
1332 : public __and_<__is_destructible_safe<_Tp>,
1333 __bool_constant<__has_trivial_destructor(_Tp)>>
1335 static_assert(std::__is_complete_or_unbounded(__type_identity<_Tp>{}),
1336 "template argument must be a complete class or an unbounded array");
1340 /// has_virtual_destructor
1341 template<typename _Tp>
1342 struct has_virtual_destructor
1343 : public integral_constant<bool, __has_virtual_destructor(_Tp)>
1345 static_assert(std::__is_complete_or_unbounded(__type_identity<_Tp>{}),
1346 "template argument must be a complete class or an unbounded array");
1350 // type property queries.
1353 template<typename _Tp>
1355 : public integral_constant<std::size_t, alignof(_Tp)>
1357 static_assert(std::__is_complete_or_unbounded(__type_identity<_Tp>{}),
1358 "template argument must be a complete class or an unbounded array");
1364 : public integral_constant<std::size_t, 0> { };
1366 template<typename _Tp, std::size_t _Size>
1367 struct rank<_Tp[_Size]>
1368 : public integral_constant<std::size_t, 1 + rank<_Tp>::value> { };
1370 template<typename _Tp>
1372 : public integral_constant<std::size_t, 1 + rank<_Tp>::value> { };
1375 template<typename, unsigned _Uint>
1377 : public integral_constant<std::size_t, 0> { };
1379 template<typename _Tp, unsigned _Uint, std::size_t _Size>
1380 struct extent<_Tp[_Size], _Uint>
1381 : public integral_constant<std::size_t,
1382 _Uint == 0 ? _Size : extent<_Tp,
1386 template<typename _Tp, unsigned _Uint>
1387 struct extent<_Tp[], _Uint>
1388 : public integral_constant<std::size_t,
1389 _Uint == 0 ? 0 : extent<_Tp,
1397 template<typename _Tp, typename _Up>
1399 #ifdef _GLIBCXX_BUILTIN_IS_SAME_AS
1400 : public integral_constant<bool, _GLIBCXX_BUILTIN_IS_SAME_AS(_Tp, _Up)>
1406 #ifndef _GLIBCXX_BUILTIN_IS_SAME_AS
1407 template<typename _Tp>
1408 struct is_same<_Tp, _Tp>
1414 template<typename _Base, typename _Derived>
1416 : public integral_constant<bool, __is_base_of(_Base, _Derived)>
1419 template<typename _From, typename _To,
1420 bool = __or_<is_void<_From>, is_function<_To>,
1421 is_array<_To>>::value>
1422 struct __is_convertible_helper
1424 typedef typename is_void<_To>::type type;
1427 #pragma GCC diagnostic push
1428 #pragma GCC diagnostic ignored "-Wctor-dtor-privacy"
1429 template<typename _From, typename _To>
1430 class __is_convertible_helper<_From, _To, false>
1432 template<typename _To1>
1433 static void __test_aux(_To1) noexcept;
1435 template<typename _From1, typename _To1,
1436 typename = decltype(__test_aux<_To1>(std::declval<_From1>()))>
1440 template<typename, typename>
1445 typedef decltype(__test<_From, _To>(0)) type;
1447 #pragma GCC diagnostic pop
1450 template<typename _From, typename _To>
1451 struct is_convertible
1452 : public __is_convertible_helper<_From, _To>::type
1455 template<typename _From, typename _To,
1456 bool = __or_<is_void<_From>, is_function<_To>,
1457 is_array<_To>>::value>
1458 struct __is_nt_convertible_helper
1462 #pragma GCC diagnostic push
1463 #pragma GCC diagnostic ignored "-Wctor-dtor-privacy"
1464 template<typename _From, typename _To>
1465 class __is_nt_convertible_helper<_From, _To, false>
1467 template<typename _To1>
1468 static void __test_aux(_To1) noexcept;
1470 template<typename _From1, typename _To1>
1472 __bool_constant<noexcept(__test_aux<_To1>(std::declval<_From1>()))>
1475 template<typename, typename>
1480 using type = decltype(__test<_From, _To>(0));
1482 #pragma GCC diagnostic pop
1484 // helper trait for unique_ptr<T[]>, shared_ptr<T[]>, and span<T, N>
1485 template<typename _ToElementType, typename _FromElementType>
1486 using __is_array_convertible
1487 = is_convertible<_FromElementType(*)[], _ToElementType(*)[]>;
1489 // is_nothrow_convertible for C++11
1490 template<typename _From, typename _To>
1491 struct __is_nothrow_convertible
1492 : public __is_nt_convertible_helper<_From, _To>::type
1495 #if __cplusplus > 201703L
1496 /// is_nothrow_convertible
1497 template<typename _From, typename _To>
1498 struct is_nothrow_convertible
1499 : public __is_nt_convertible_helper<_From, _To>::type
1502 /// is_nothrow_convertible_v
1503 template<typename _From, typename _To>
1504 inline constexpr bool is_nothrow_convertible_v
1505 = is_nothrow_convertible<_From, _To>::value;
1508 // Const-volatile modifications.
1511 template<typename _Tp>
1513 { typedef _Tp type; };
1515 template<typename _Tp>
1516 struct remove_const<_Tp const>
1517 { typedef _Tp type; };
1520 template<typename _Tp>
1521 struct remove_volatile
1522 { typedef _Tp type; };
1524 template<typename _Tp>
1525 struct remove_volatile<_Tp volatile>
1526 { typedef _Tp type; };
1529 template<typename _Tp>
1531 { using type = _Tp; };
1533 template<typename _Tp>
1534 struct remove_cv<const _Tp>
1535 { using type = _Tp; };
1537 template<typename _Tp>
1538 struct remove_cv<volatile _Tp>
1539 { using type = _Tp; };
1541 template<typename _Tp>
1542 struct remove_cv<const volatile _Tp>
1543 { using type = _Tp; };
1546 template<typename _Tp>
1548 { typedef _Tp const type; };
1551 template<typename _Tp>
1553 { typedef _Tp volatile type; };
1556 template<typename _Tp>
1560 add_const<typename add_volatile<_Tp>::type>::type type;
1563 #if __cplusplus > 201103L
1565 #define __cpp_lib_transformation_trait_aliases 201304
1567 /// Alias template for remove_const
1568 template<typename _Tp>
1569 using remove_const_t = typename remove_const<_Tp>::type;
1571 /// Alias template for remove_volatile
1572 template<typename _Tp>
1573 using remove_volatile_t = typename remove_volatile<_Tp>::type;
1575 /// Alias template for remove_cv
1576 template<typename _Tp>
1577 using remove_cv_t = typename remove_cv<_Tp>::type;
1579 /// Alias template for add_const
1580 template<typename _Tp>
1581 using add_const_t = typename add_const<_Tp>::type;
1583 /// Alias template for add_volatile
1584 template<typename _Tp>
1585 using add_volatile_t = typename add_volatile<_Tp>::type;
1587 /// Alias template for add_cv
1588 template<typename _Tp>
1589 using add_cv_t = typename add_cv<_Tp>::type;
1592 // Reference transformations.
1594 /// remove_reference
1595 template<typename _Tp>
1596 struct remove_reference
1597 { typedef _Tp type; };
1599 template<typename _Tp>
1600 struct remove_reference<_Tp&>
1601 { typedef _Tp type; };
1603 template<typename _Tp>
1604 struct remove_reference<_Tp&&>
1605 { typedef _Tp type; };
1607 template<typename _Tp, bool = __is_referenceable<_Tp>::value>
1608 struct __add_lvalue_reference_helper
1609 { typedef _Tp type; };
1611 template<typename _Tp>
1612 struct __add_lvalue_reference_helper<_Tp, true>
1613 { typedef _Tp& type; };
1615 /// add_lvalue_reference
1616 template<typename _Tp>
1617 struct add_lvalue_reference
1618 : public __add_lvalue_reference_helper<_Tp>
1621 template<typename _Tp, bool = __is_referenceable<_Tp>::value>
1622 struct __add_rvalue_reference_helper
1623 { typedef _Tp type; };
1625 template<typename _Tp>
1626 struct __add_rvalue_reference_helper<_Tp, true>
1627 { typedef _Tp&& type; };
1629 /// add_rvalue_reference
1630 template<typename _Tp>
1631 struct add_rvalue_reference
1632 : public __add_rvalue_reference_helper<_Tp>
1635 #if __cplusplus > 201103L
1636 /// Alias template for remove_reference
1637 template<typename _Tp>
1638 using remove_reference_t = typename remove_reference<_Tp>::type;
1640 /// Alias template for add_lvalue_reference
1641 template<typename _Tp>
1642 using add_lvalue_reference_t = typename add_lvalue_reference<_Tp>::type;
1644 /// Alias template for add_rvalue_reference
1645 template<typename _Tp>
1646 using add_rvalue_reference_t = typename add_rvalue_reference<_Tp>::type;
1649 // Sign modifications.
1651 // Utility for constructing identically cv-qualified types.
1652 template<typename _Unqualified, bool _IsConst, bool _IsVol>
1653 struct __cv_selector;
1655 template<typename _Unqualified>
1656 struct __cv_selector<_Unqualified, false, false>
1657 { typedef _Unqualified __type; };
1659 template<typename _Unqualified>
1660 struct __cv_selector<_Unqualified, false, true>
1661 { typedef volatile _Unqualified __type; };
1663 template<typename _Unqualified>
1664 struct __cv_selector<_Unqualified, true, false>
1665 { typedef const _Unqualified __type; };
1667 template<typename _Unqualified>
1668 struct __cv_selector<_Unqualified, true, true>
1669 { typedef const volatile _Unqualified __type; };
1671 template<typename _Qualified, typename _Unqualified,
1672 bool _IsConst = is_const<_Qualified>::value,
1673 bool _IsVol = is_volatile<_Qualified>::value>
1674 class __match_cv_qualifiers
1676 typedef __cv_selector<_Unqualified, _IsConst, _IsVol> __match;
1679 typedef typename __match::__type __type;
1682 // Utility for finding the unsigned versions of signed integral types.
1683 template<typename _Tp>
1684 struct __make_unsigned
1685 { typedef _Tp __type; };
1688 struct __make_unsigned<char>
1689 { typedef unsigned char __type; };
1692 struct __make_unsigned<signed char>
1693 { typedef unsigned char __type; };
1696 struct __make_unsigned<short>
1697 { typedef unsigned short __type; };
1700 struct __make_unsigned<int>
1701 { typedef unsigned int __type; };
1704 struct __make_unsigned<long>
1705 { typedef unsigned long __type; };
1708 struct __make_unsigned<long long>
1709 { typedef unsigned long long __type; };
1711 #if defined(__GLIBCXX_TYPE_INT_N_0)
1713 struct __make_unsigned<__GLIBCXX_TYPE_INT_N_0>
1714 { typedef unsigned __GLIBCXX_TYPE_INT_N_0 __type; };
1716 #if defined(__GLIBCXX_TYPE_INT_N_1)
1718 struct __make_unsigned<__GLIBCXX_TYPE_INT_N_1>
1719 { typedef unsigned __GLIBCXX_TYPE_INT_N_1 __type; };
1721 #if defined(__GLIBCXX_TYPE_INT_N_2)
1723 struct __make_unsigned<__GLIBCXX_TYPE_INT_N_2>
1724 { typedef unsigned __GLIBCXX_TYPE_INT_N_2 __type; };
1726 #if defined(__GLIBCXX_TYPE_INT_N_3)
1728 struct __make_unsigned<__GLIBCXX_TYPE_INT_N_3>
1729 { typedef unsigned __GLIBCXX_TYPE_INT_N_3 __type; };
1732 // Select between integral and enum: not possible to be both.
1733 template<typename _Tp,
1734 bool _IsInt = is_integral<_Tp>::value,
1735 bool _IsEnum = is_enum<_Tp>::value>
1736 class __make_unsigned_selector;
1738 template<typename _Tp>
1739 class __make_unsigned_selector<_Tp, true, false>
1741 using __unsigned_type
1742 = typename __make_unsigned<__remove_cv_t<_Tp>>::__type;
1746 = typename __match_cv_qualifiers<_Tp, __unsigned_type>::__type;
1749 class __make_unsigned_selector_base
1752 template<typename...> struct _List { };
1754 template<typename _Tp, typename... _Up>
1755 struct _List<_Tp, _Up...> : _List<_Up...>
1756 { static constexpr size_t __size = sizeof(_Tp); };
1758 template<size_t _Sz, typename _Tp, bool = (_Sz <= _Tp::__size)>
1761 template<size_t _Sz, typename _Uint, typename... _UInts>
1762 struct __select<_Sz, _List<_Uint, _UInts...>, true>
1763 { using __type = _Uint; };
1765 template<size_t _Sz, typename _Uint, typename... _UInts>
1766 struct __select<_Sz, _List<_Uint, _UInts...>, false>
1767 : __select<_Sz, _List<_UInts...>>
1771 // Choose unsigned integer type with the smallest rank and same size as _Tp
1772 template<typename _Tp>
1773 class __make_unsigned_selector<_Tp, false, true>
1774 : __make_unsigned_selector_base
1776 // With -fshort-enums, an enum may be as small as a char.
1777 using _UInts = _List<unsigned char, unsigned short, unsigned int,
1778 unsigned long, unsigned long long>;
1780 using __unsigned_type = typename __select<sizeof(_Tp), _UInts>::__type;
1784 = typename __match_cv_qualifiers<_Tp, __unsigned_type>::__type;
1787 // wchar_t, char8_t, char16_t and char32_t are integral types but are
1788 // neither signed integer types nor unsigned integer types, so must be
1789 // transformed to the unsigned integer type with the smallest rank.
1790 // Use the partial specialization for enumeration types to do that.
1791 #if defined(_GLIBCXX_USE_WCHAR_T)
1793 struct __make_unsigned<wchar_t>
1796 = typename __make_unsigned_selector<wchar_t, false, true>::__type;
1800 #ifdef _GLIBCXX_USE_CHAR8_T
1802 struct __make_unsigned<char8_t>
1805 = typename __make_unsigned_selector<char8_t, false, true>::__type;
1810 struct __make_unsigned<char16_t>
1813 = typename __make_unsigned_selector<char16_t, false, true>::__type;
1817 struct __make_unsigned<char32_t>
1820 = typename __make_unsigned_selector<char32_t, false, true>::__type;
1823 // Given an integral/enum type, return the corresponding unsigned
1825 // Primary template.
1827 template<typename _Tp>
1828 struct make_unsigned
1829 { typedef typename __make_unsigned_selector<_Tp>::__type type; };
1831 // Integral, but don't define.
1833 struct make_unsigned<bool>;
1836 // Utility for finding the signed versions of unsigned integral types.
1837 template<typename _Tp>
1838 struct __make_signed
1839 { typedef _Tp __type; };
1842 struct __make_signed<char>
1843 { typedef signed char __type; };
1846 struct __make_signed<unsigned char>
1847 { typedef signed char __type; };
1850 struct __make_signed<unsigned short>
1851 { typedef signed short __type; };
1854 struct __make_signed<unsigned int>
1855 { typedef signed int __type; };
1858 struct __make_signed<unsigned long>
1859 { typedef signed long __type; };
1862 struct __make_signed<unsigned long long>
1863 { typedef signed long long __type; };
1865 #if defined(__GLIBCXX_TYPE_INT_N_0)
1867 struct __make_signed<unsigned __GLIBCXX_TYPE_INT_N_0>
1868 { typedef __GLIBCXX_TYPE_INT_N_0 __type; };
1870 #if defined(__GLIBCXX_TYPE_INT_N_1)
1872 struct __make_signed<unsigned __GLIBCXX_TYPE_INT_N_1>
1873 { typedef __GLIBCXX_TYPE_INT_N_1 __type; };
1875 #if defined(__GLIBCXX_TYPE_INT_N_2)
1877 struct __make_signed<unsigned __GLIBCXX_TYPE_INT_N_2>
1878 { typedef __GLIBCXX_TYPE_INT_N_2 __type; };
1880 #if defined(__GLIBCXX_TYPE_INT_N_3)
1882 struct __make_signed<unsigned __GLIBCXX_TYPE_INT_N_3>
1883 { typedef __GLIBCXX_TYPE_INT_N_3 __type; };
1886 // Select between integral and enum: not possible to be both.
1887 template<typename _Tp,
1888 bool _IsInt = is_integral<_Tp>::value,
1889 bool _IsEnum = is_enum<_Tp>::value>
1890 class __make_signed_selector;
1892 template<typename _Tp>
1893 class __make_signed_selector<_Tp, true, false>
1896 = typename __make_signed<__remove_cv_t<_Tp>>::__type;
1900 = typename __match_cv_qualifiers<_Tp, __signed_type>::__type;
1903 // Choose signed integer type with the smallest rank and same size as _Tp
1904 template<typename _Tp>
1905 class __make_signed_selector<_Tp, false, true>
1907 typedef typename __make_unsigned_selector<_Tp>::__type __unsigned_type;
1910 typedef typename __make_signed_selector<__unsigned_type>::__type __type;
1913 // wchar_t, char16_t and char32_t are integral types but are neither
1914 // signed integer types nor unsigned integer types, so must be
1915 // transformed to the signed integer type with the smallest rank.
1916 // Use the partial specialization for enumeration types to do that.
1917 #if defined(_GLIBCXX_USE_WCHAR_T)
1919 struct __make_signed<wchar_t>
1922 = typename __make_signed_selector<wchar_t, false, true>::__type;
1926 #if defined(_GLIBCXX_USE_CHAR8_T)
1928 struct __make_signed<char8_t>
1931 = typename __make_signed_selector<char8_t, false, true>::__type;
1936 struct __make_signed<char16_t>
1939 = typename __make_signed_selector<char16_t, false, true>::__type;
1943 struct __make_signed<char32_t>
1946 = typename __make_signed_selector<char32_t, false, true>::__type;
1949 // Given an integral/enum type, return the corresponding signed
1951 // Primary template.
1953 template<typename _Tp>
1955 { typedef typename __make_signed_selector<_Tp>::__type type; };
1957 // Integral, but don't define.
1959 struct make_signed<bool>;
1961 #if __cplusplus > 201103L
1962 /// Alias template for make_signed
1963 template<typename _Tp>
1964 using make_signed_t = typename make_signed<_Tp>::type;
1966 /// Alias template for make_unsigned
1967 template<typename _Tp>
1968 using make_unsigned_t = typename make_unsigned<_Tp>::type;
1971 // Array modifications.
1974 template<typename _Tp>
1975 struct remove_extent
1976 { typedef _Tp type; };
1978 template<typename _Tp, std::size_t _Size>
1979 struct remove_extent<_Tp[_Size]>
1980 { typedef _Tp type; };
1982 template<typename _Tp>
1983 struct remove_extent<_Tp[]>
1984 { typedef _Tp type; };
1986 /// remove_all_extents
1987 template<typename _Tp>
1988 struct remove_all_extents
1989 { typedef _Tp type; };
1991 template<typename _Tp, std::size_t _Size>
1992 struct remove_all_extents<_Tp[_Size]>
1993 { typedef typename remove_all_extents<_Tp>::type type; };
1995 template<typename _Tp>
1996 struct remove_all_extents<_Tp[]>
1997 { typedef typename remove_all_extents<_Tp>::type type; };
1999 #if __cplusplus > 201103L
2000 /// Alias template for remove_extent
2001 template<typename _Tp>
2002 using remove_extent_t = typename remove_extent<_Tp>::type;
2004 /// Alias template for remove_all_extents
2005 template<typename _Tp>
2006 using remove_all_extents_t = typename remove_all_extents<_Tp>::type;
2009 // Pointer modifications.
2011 template<typename _Tp, typename>
2012 struct __remove_pointer_helper
2013 { typedef _Tp type; };
2015 template<typename _Tp, typename _Up>
2016 struct __remove_pointer_helper<_Tp, _Up*>
2017 { typedef _Up type; };
2020 template<typename _Tp>
2021 struct remove_pointer
2022 : public __remove_pointer_helper<_Tp, __remove_cv_t<_Tp>>
2026 template<typename _Tp, bool = __or_<__is_referenceable<_Tp>,
2027 is_void<_Tp>>::value>
2028 struct __add_pointer_helper
2029 { typedef _Tp type; };
2031 template<typename _Tp>
2032 struct __add_pointer_helper<_Tp, true>
2033 { typedef typename remove_reference<_Tp>::type* type; };
2035 template<typename _Tp>
2037 : public __add_pointer_helper<_Tp>
2040 #if __cplusplus > 201103L
2041 /// Alias template for remove_pointer
2042 template<typename _Tp>
2043 using remove_pointer_t = typename remove_pointer<_Tp>::type;
2045 /// Alias template for add_pointer
2046 template<typename _Tp>
2047 using add_pointer_t = typename add_pointer<_Tp>::type;
2050 template<std::size_t _Len>
2051 struct __aligned_storage_msa
2055 unsigned char __data[_Len];
2056 struct __attribute__((__aligned__)) { } __align;
2061 * @brief Alignment type.
2063 * The value of _Align is a default-alignment which shall be the
2064 * most stringent alignment requirement for any C++ object type
2065 * whose size is no greater than _Len (3.9). The member typedef
2066 * type shall be a POD type suitable for use as uninitialized
2067 * storage for any object whose size is at most _Len and whose
2068 * alignment is a divisor of _Align.
2070 template<std::size_t _Len, std::size_t _Align =
2071 __alignof__(typename __aligned_storage_msa<_Len>::__type)>
2072 struct aligned_storage
2076 unsigned char __data[_Len];
2077 struct __attribute__((__aligned__((_Align)))) { } __align;
2081 template <typename... _Types>
2082 struct __strictest_alignment
2084 static const size_t _S_alignment = 0;
2085 static const size_t _S_size = 0;
2088 template <typename _Tp, typename... _Types>
2089 struct __strictest_alignment<_Tp, _Types...>
2091 static const size_t _S_alignment =
2092 alignof(_Tp) > __strictest_alignment<_Types...>::_S_alignment
2093 ? alignof(_Tp) : __strictest_alignment<_Types...>::_S_alignment;
2094 static const size_t _S_size =
2095 sizeof(_Tp) > __strictest_alignment<_Types...>::_S_size
2096 ? sizeof(_Tp) : __strictest_alignment<_Types...>::_S_size;
2100 * @brief Provide aligned storage for types.
2102 * [meta.trans.other]
2104 * Provides aligned storage for any of the provided types of at
2107 * @see aligned_storage
2109 template <size_t _Len, typename... _Types>
2110 struct aligned_union
2113 static_assert(sizeof...(_Types) != 0, "At least one type is required");
2115 using __strictest = __strictest_alignment<_Types...>;
2116 static const size_t _S_len = _Len > __strictest::_S_size
2117 ? _Len : __strictest::_S_size;
2119 /// The value of the strictest alignment of _Types.
2120 static const size_t alignment_value = __strictest::_S_alignment;
2122 typedef typename aligned_storage<_S_len, alignment_value>::type type;
2125 template <size_t _Len, typename... _Types>
2126 const size_t aligned_union<_Len, _Types...>::alignment_value;
2128 // Decay trait for arrays and functions, used for perfect forwarding
2129 // in make_pair, make_tuple, etc.
2130 template<typename _Up,
2131 bool _IsArray = is_array<_Up>::value,
2132 bool _IsFunction = is_function<_Up>::value>
2133 struct __decay_selector;
2136 template<typename _Up>
2137 struct __decay_selector<_Up, false, false>
2138 { typedef __remove_cv_t<_Up> __type; };
2140 template<typename _Up>
2141 struct __decay_selector<_Up, true, false>
2142 { typedef typename remove_extent<_Up>::type* __type; };
2144 template<typename _Up>
2145 struct __decay_selector<_Up, false, true>
2146 { typedef typename add_pointer<_Up>::type __type; };
2149 template<typename _Tp>
2152 typedef typename remove_reference<_Tp>::type __remove_type;
2155 typedef typename __decay_selector<__remove_type>::__type type;
2158 // __decay_t (std::decay_t for C++11).
2159 template<typename _Tp>
2160 using __decay_t = typename decay<_Tp>::type;
2162 template<typename _Tp>
2163 class reference_wrapper;
2165 // Helper which adds a reference to a type when given a reference_wrapper
2166 template<typename _Tp>
2167 struct __strip_reference_wrapper
2172 template<typename _Tp>
2173 struct __strip_reference_wrapper<reference_wrapper<_Tp> >
2175 typedef _Tp& __type;
2178 template<typename _Tp>
2179 using __decay_and_strip = __strip_reference_wrapper<__decay_t<_Tp>>;
2182 // Primary template.
2183 /// Define a member typedef @c type only if a boolean constant is true.
2184 template<bool, typename _Tp = void>
2188 // Partial specialization for true.
2189 template<typename _Tp>
2190 struct enable_if<true, _Tp>
2191 { typedef _Tp type; };
2193 // __enable_if_t (std::enable_if_t for C++11)
2194 template<bool _Cond, typename _Tp = void>
2195 using __enable_if_t = typename enable_if<_Cond, _Tp>::type;
2197 template<typename... _Cond>
2198 using _Require = __enable_if_t<__and_<_Cond...>::value>;
2200 // Primary template.
2201 /// Define a member typedef @c type to one of two argument types.
2202 template<bool _Cond, typename _Iftrue, typename _Iffalse>
2204 { typedef _Iftrue type; };
2206 // Partial specialization for false.
2207 template<typename _Iftrue, typename _Iffalse>
2208 struct conditional<false, _Iftrue, _Iffalse>
2209 { typedef _Iffalse type; };
2211 // __remove_cvref_t (std::remove_cvref_t for C++11).
2212 template<typename _Tp>
2213 using __remove_cvref_t
2214 = typename remove_cv<typename remove_reference<_Tp>::type>::type;
2217 template<typename... _Tp>
2220 // Sfinae-friendly common_type implementation:
2222 struct __do_common_type_impl
2224 template<typename _Tp, typename _Up>
2226 = decltype(true ? std::declval<_Tp>() : std::declval<_Up>());
2228 // if decay_t<decltype(false ? declval<D1>() : declval<D2>())>
2229 // denotes a valid type, let C denote that type.
2230 template<typename _Tp, typename _Up>
2231 static __success_type<__decay_t<__cond_t<_Tp, _Up>>>
2234 #if __cplusplus > 201703L
2235 // Otherwise, if COND-RES(CREF(D1), CREF(D2)) denotes a type,
2236 // let C denote the type decay_t<COND-RES(CREF(D1), CREF(D2))>.
2237 template<typename _Tp, typename _Up>
2238 static __success_type<__remove_cvref_t<__cond_t<const _Tp&, const _Up&>>>
2242 template<typename, typename>
2243 static __failure_type
2246 template<typename _Tp, typename _Up>
2247 static decltype(_S_test_2<_Tp, _Up>(0))
2251 // If sizeof...(T) is zero, there shall be no member type.
2253 struct common_type<>
2256 // If sizeof...(T) is one, the same type, if any, as common_type_t<T0, T0>.
2257 template<typename _Tp0>
2258 struct common_type<_Tp0>
2259 : public common_type<_Tp0, _Tp0>
2262 // If sizeof...(T) is two, ...
2263 template<typename _Tp1, typename _Tp2,
2264 typename _Dp1 = __decay_t<_Tp1>, typename _Dp2 = __decay_t<_Tp2>>
2265 struct __common_type_impl
2267 // If is_same_v<T1, D1> is false or is_same_v<T2, D2> is false,
2268 // let C denote the same type, if any, as common_type_t<D1, D2>.
2269 using type = common_type<_Dp1, _Dp2>;
2272 template<typename _Tp1, typename _Tp2>
2273 struct __common_type_impl<_Tp1, _Tp2, _Tp1, _Tp2>
2274 : private __do_common_type_impl
2276 // Otherwise, if decay_t<decltype(false ? declval<D1>() : declval<D2>())>
2277 // denotes a valid type, let C denote that type.
2278 using type = decltype(_S_test<_Tp1, _Tp2>(0));
2281 // If sizeof...(T) is two, ...
2282 template<typename _Tp1, typename _Tp2>
2283 struct common_type<_Tp1, _Tp2>
2284 : public __common_type_impl<_Tp1, _Tp2>::type
2287 template<typename...>
2288 struct __common_type_pack
2291 template<typename, typename, typename = void>
2292 struct __common_type_fold;
2294 // If sizeof...(T) is greater than two, ...
2295 template<typename _Tp1, typename _Tp2, typename... _Rp>
2296 struct common_type<_Tp1, _Tp2, _Rp...>
2297 : public __common_type_fold<common_type<_Tp1, _Tp2>,
2298 __common_type_pack<_Rp...>>
2301 // Let C denote the same type, if any, as common_type_t<T1, T2>.
2302 // If there is such a type C, type shall denote the same type, if any,
2303 // as common_type_t<C, R...>.
2304 template<typename _CTp, typename... _Rp>
2305 struct __common_type_fold<_CTp, __common_type_pack<_Rp...>,
2306 __void_t<typename _CTp::type>>
2307 : public common_type<typename _CTp::type, _Rp...>
2310 // Otherwise, there shall be no member type.
2311 template<typename _CTp, typename _Rp>
2312 struct __common_type_fold<_CTp, _Rp, void>
2315 template<typename _Tp, bool = is_enum<_Tp>::value>
2316 struct __underlying_type_impl
2318 using type = __underlying_type(_Tp);
2321 template<typename _Tp>
2322 struct __underlying_type_impl<_Tp, false>
2325 /// The underlying type of an enum.
2326 template<typename _Tp>
2327 struct underlying_type
2328 : public __underlying_type_impl<_Tp>
2331 template<typename _Tp>
2332 struct __declval_protector
2334 static const bool __stop = false;
2337 template<typename _Tp>
2338 auto declval() noexcept -> decltype(__declval<_Tp>(0))
2340 static_assert(__declval_protector<_Tp>::__stop,
2341 "declval() must not be used!");
2342 return __declval<_Tp>(0);
2346 template<typename _Signature>
2349 // Sfinae-friendly result_of implementation:
2351 #define __cpp_lib_result_of_sfinae 201210
2353 struct __invoke_memfun_ref { };
2354 struct __invoke_memfun_deref { };
2355 struct __invoke_memobj_ref { };
2356 struct __invoke_memobj_deref { };
2357 struct __invoke_other { };
2359 // Associate a tag type with a specialization of __success_type.
2360 template<typename _Tp, typename _Tag>
2361 struct __result_of_success : __success_type<_Tp>
2362 { using __invoke_type = _Tag; };
2364 // [func.require] paragraph 1 bullet 1:
2365 struct __result_of_memfun_ref_impl
2367 template<typename _Fp, typename _Tp1, typename... _Args>
2368 static __result_of_success<decltype(
2369 (std::declval<_Tp1>().*std::declval<_Fp>())(std::declval<_Args>()...)
2370 ), __invoke_memfun_ref> _S_test(int);
2372 template<typename...>
2373 static __failure_type _S_test(...);
2376 template<typename _MemPtr, typename _Arg, typename... _Args>
2377 struct __result_of_memfun_ref
2378 : private __result_of_memfun_ref_impl
2380 typedef decltype(_S_test<_MemPtr, _Arg, _Args...>(0)) type;
2383 // [func.require] paragraph 1 bullet 2:
2384 struct __result_of_memfun_deref_impl
2386 template<typename _Fp, typename _Tp1, typename... _Args>
2387 static __result_of_success<decltype(
2388 ((*std::declval<_Tp1>()).*std::declval<_Fp>())(std::declval<_Args>()...)
2389 ), __invoke_memfun_deref> _S_test(int);
2391 template<typename...>
2392 static __failure_type _S_test(...);
2395 template<typename _MemPtr, typename _Arg, typename... _Args>
2396 struct __result_of_memfun_deref
2397 : private __result_of_memfun_deref_impl
2399 typedef decltype(_S_test<_MemPtr, _Arg, _Args...>(0)) type;
2402 // [func.require] paragraph 1 bullet 3:
2403 struct __result_of_memobj_ref_impl
2405 template<typename _Fp, typename _Tp1>
2406 static __result_of_success<decltype(
2407 std::declval<_Tp1>().*std::declval<_Fp>()
2408 ), __invoke_memobj_ref> _S_test(int);
2410 template<typename, typename>
2411 static __failure_type _S_test(...);
2414 template<typename _MemPtr, typename _Arg>
2415 struct __result_of_memobj_ref
2416 : private __result_of_memobj_ref_impl
2418 typedef decltype(_S_test<_MemPtr, _Arg>(0)) type;
2421 // [func.require] paragraph 1 bullet 4:
2422 struct __result_of_memobj_deref_impl
2424 template<typename _Fp, typename _Tp1>
2425 static __result_of_success<decltype(
2426 (*std::declval<_Tp1>()).*std::declval<_Fp>()
2427 ), __invoke_memobj_deref> _S_test(int);
2429 template<typename, typename>
2430 static __failure_type _S_test(...);
2433 template<typename _MemPtr, typename _Arg>
2434 struct __result_of_memobj_deref
2435 : private __result_of_memobj_deref_impl
2437 typedef decltype(_S_test<_MemPtr, _Arg>(0)) type;
2440 template<typename _MemPtr, typename _Arg>
2441 struct __result_of_memobj;
2443 template<typename _Res, typename _Class, typename _Arg>
2444 struct __result_of_memobj<_Res _Class::*, _Arg>
2446 typedef __remove_cvref_t<_Arg> _Argval;
2447 typedef _Res _Class::* _MemPtr;
2448 typedef typename conditional<__or_<is_same<_Argval, _Class>,
2449 is_base_of<_Class, _Argval>>::value,
2450 __result_of_memobj_ref<_MemPtr, _Arg>,
2451 __result_of_memobj_deref<_MemPtr, _Arg>
2455 template<typename _MemPtr, typename _Arg, typename... _Args>
2456 struct __result_of_memfun;
2458 template<typename _Res, typename _Class, typename _Arg, typename... _Args>
2459 struct __result_of_memfun<_Res _Class::*, _Arg, _Args...>
2461 typedef typename remove_reference<_Arg>::type _Argval;
2462 typedef _Res _Class::* _MemPtr;
2463 typedef typename conditional<is_base_of<_Class, _Argval>::value,
2464 __result_of_memfun_ref<_MemPtr, _Arg, _Args...>,
2465 __result_of_memfun_deref<_MemPtr, _Arg, _Args...>
2469 // _GLIBCXX_RESOLVE_LIB_DEFECTS
2470 // 2219. INVOKE-ing a pointer to member with a reference_wrapper
2471 // as the object expression
2473 // Used by result_of, invoke etc. to unwrap a reference_wrapper.
2474 template<typename _Tp, typename _Up = __remove_cvref_t<_Tp>>
2480 template<typename _Tp, typename _Up>
2481 struct __inv_unwrap<_Tp, reference_wrapper<_Up>>
2486 template<bool, bool, typename _Functor, typename... _ArgTypes>
2487 struct __result_of_impl
2489 typedef __failure_type type;
2492 template<typename _MemPtr, typename _Arg>
2493 struct __result_of_impl<true, false, _MemPtr, _Arg>
2494 : public __result_of_memobj<__decay_t<_MemPtr>,
2495 typename __inv_unwrap<_Arg>::type>
2498 template<typename _MemPtr, typename _Arg, typename... _Args>
2499 struct __result_of_impl<false, true, _MemPtr, _Arg, _Args...>
2500 : public __result_of_memfun<__decay_t<_MemPtr>,
2501 typename __inv_unwrap<_Arg>::type, _Args...>
2504 // [func.require] paragraph 1 bullet 5:
2505 struct __result_of_other_impl
2507 template<typename _Fn, typename... _Args>
2508 static __result_of_success<decltype(
2509 std::declval<_Fn>()(std::declval<_Args>()...)
2510 ), __invoke_other> _S_test(int);
2512 template<typename...>
2513 static __failure_type _S_test(...);
2516 template<typename _Functor, typename... _ArgTypes>
2517 struct __result_of_impl<false, false, _Functor, _ArgTypes...>
2518 : private __result_of_other_impl
2520 typedef decltype(_S_test<_Functor, _ArgTypes...>(0)) type;
2523 // __invoke_result (std::invoke_result for C++11)
2524 template<typename _Functor, typename... _ArgTypes>
2525 struct __invoke_result
2526 : public __result_of_impl<
2527 is_member_object_pointer<
2528 typename remove_reference<_Functor>::type
2530 is_member_function_pointer<
2531 typename remove_reference<_Functor>::type
2533 _Functor, _ArgTypes...
2537 template<typename _Functor, typename... _ArgTypes>
2538 struct result_of<_Functor(_ArgTypes...)>
2539 : public __invoke_result<_Functor, _ArgTypes...>
2542 #if __cplusplus >= 201402L
2543 /// Alias template for aligned_storage
2544 template<size_t _Len, size_t _Align =
2545 __alignof__(typename __aligned_storage_msa<_Len>::__type)>
2546 using aligned_storage_t = typename aligned_storage<_Len, _Align>::type;
2548 template <size_t _Len, typename... _Types>
2549 using aligned_union_t = typename aligned_union<_Len, _Types...>::type;
2551 /// Alias template for decay
2552 template<typename _Tp>
2553 using decay_t = typename decay<_Tp>::type;
2555 /// Alias template for enable_if
2556 template<bool _Cond, typename _Tp = void>
2557 using enable_if_t = typename enable_if<_Cond, _Tp>::type;
2559 /// Alias template for conditional
2560 template<bool _Cond, typename _Iftrue, typename _Iffalse>
2561 using conditional_t = typename conditional<_Cond, _Iftrue, _Iffalse>::type;
2563 /// Alias template for common_type
2564 template<typename... _Tp>
2565 using common_type_t = typename common_type<_Tp...>::type;
2567 /// Alias template for underlying_type
2568 template<typename _Tp>
2569 using underlying_type_t = typename underlying_type<_Tp>::type;
2571 /// Alias template for result_of
2572 template<typename _Tp>
2573 using result_of_t = typename result_of<_Tp>::type;
2576 #if __cplusplus >= 201703L || !defined(__STRICT_ANSI__) // c++17 or gnu++11
2577 #define __cpp_lib_void_t 201411
2578 /// A metafunction that always yields void, used for detecting valid types.
2579 template<typename...> using void_t = void;
2582 /// Implementation of the detection idiom (negative case).
2583 template<typename _Default, typename _AlwaysVoid,
2584 template<typename...> class _Op, typename... _Args>
2587 using value_t = false_type;
2588 using type = _Default;
2591 /// Implementation of the detection idiom (positive case).
2592 template<typename _Default, template<typename...> class _Op,
2594 struct __detector<_Default, __void_t<_Op<_Args...>>, _Op, _Args...>
2596 using value_t = true_type;
2597 using type = _Op<_Args...>;
2600 // Detect whether _Op<_Args...> is a valid type, use _Default if not.
2601 template<typename _Default, template<typename...> class _Op,
2603 using __detected_or = __detector<_Default, void, _Op, _Args...>;
2605 // _Op<_Args...> if that is a valid type, otherwise _Default.
2606 template<typename _Default, template<typename...> class _Op,
2608 using __detected_or_t
2609 = typename __detected_or<_Default, _Op, _Args...>::type;
2611 /// @} group metaprogramming
2614 * Use SFINAE to determine if the type _Tp has a publicly-accessible
2615 * member type _NTYPE.
2617 #define _GLIBCXX_HAS_NESTED_TYPE(_NTYPE) \
2618 template<typename _Tp, typename = __void_t<>> \
2619 struct __has_##_NTYPE \
2622 template<typename _Tp> \
2623 struct __has_##_NTYPE<_Tp, __void_t<typename _Tp::_NTYPE>> \
2627 template <typename _Tp>
2628 struct __is_swappable;
2630 template <typename _Tp>
2631 struct __is_nothrow_swappable;
2633 template<typename... _Elements>
2637 struct __is_tuple_like_impl : false_type
2640 template<typename... _Tps>
2641 struct __is_tuple_like_impl<tuple<_Tps...>> : true_type
2644 // Internal type trait that allows us to sfinae-protect tuple_cat.
2645 template<typename _Tp>
2646 struct __is_tuple_like
2647 : public __is_tuple_like_impl<__remove_cvref_t<_Tp>>::type
2650 template<typename _Tp>
2651 _GLIBCXX20_CONSTEXPR
2653 _Require<__not_<__is_tuple_like<_Tp>>,
2654 is_move_constructible<_Tp>,
2655 is_move_assignable<_Tp>>
2657 noexcept(__and_<is_nothrow_move_constructible<_Tp>,
2658 is_nothrow_move_assignable<_Tp>>::value);
2660 template<typename _Tp, size_t _Nm>
2661 _GLIBCXX20_CONSTEXPR
2663 __enable_if_t<__is_swappable<_Tp>::value>
2664 swap(_Tp (&__a)[_Nm], _Tp (&__b)[_Nm])
2665 noexcept(__is_nothrow_swappable<_Tp>::value);
2667 namespace __swappable_details {
2670 struct __do_is_swappable_impl
2672 template<typename _Tp, typename
2673 = decltype(swap(std::declval<_Tp&>(), std::declval<_Tp&>()))>
2674 static true_type __test(int);
2677 static false_type __test(...);
2680 struct __do_is_nothrow_swappable_impl
2682 template<typename _Tp>
2683 static __bool_constant<
2684 noexcept(swap(std::declval<_Tp&>(), std::declval<_Tp&>()))
2688 static false_type __test(...);
2691 } // namespace __swappable_details
2693 template<typename _Tp>
2694 struct __is_swappable_impl
2695 : public __swappable_details::__do_is_swappable_impl
2697 typedef decltype(__test<_Tp>(0)) type;
2700 template<typename _Tp>
2701 struct __is_nothrow_swappable_impl
2702 : public __swappable_details::__do_is_nothrow_swappable_impl
2704 typedef decltype(__test<_Tp>(0)) type;
2707 template<typename _Tp>
2708 struct __is_swappable
2709 : public __is_swappable_impl<_Tp>::type
2712 template<typename _Tp>
2713 struct __is_nothrow_swappable
2714 : public __is_nothrow_swappable_impl<_Tp>::type
2717 #if __cplusplus > 201402L || !defined(__STRICT_ANSI__) // c++1z or gnu++11
2718 #define __cpp_lib_is_swappable 201603
2719 /// Metafunctions used for detecting swappable types: p0185r1
2722 template<typename _Tp>
2724 : public __is_swappable_impl<_Tp>::type
2726 static_assert(std::__is_complete_or_unbounded(__type_identity<_Tp>{}),
2727 "template argument must be a complete class or an unbounded array");
2730 /// is_nothrow_swappable
2731 template<typename _Tp>
2732 struct is_nothrow_swappable
2733 : public __is_nothrow_swappable_impl<_Tp>::type
2735 static_assert(std::__is_complete_or_unbounded(__type_identity<_Tp>{}),
2736 "template argument must be a complete class or an unbounded array");
2739 #if __cplusplus >= 201402L
2741 template<typename _Tp>
2742 _GLIBCXX17_INLINE constexpr bool is_swappable_v =
2743 is_swappable<_Tp>::value;
2745 /// is_nothrow_swappable_v
2746 template<typename _Tp>
2747 _GLIBCXX17_INLINE constexpr bool is_nothrow_swappable_v =
2748 is_nothrow_swappable<_Tp>::value;
2749 #endif // __cplusplus >= 201402L
2751 namespace __swappable_with_details {
2754 struct __do_is_swappable_with_impl
2756 template<typename _Tp, typename _Up, typename
2757 = decltype(swap(std::declval<_Tp>(), std::declval<_Up>())),
2759 = decltype(swap(std::declval<_Up>(), std::declval<_Tp>()))>
2760 static true_type __test(int);
2762 template<typename, typename>
2763 static false_type __test(...);
2766 struct __do_is_nothrow_swappable_with_impl
2768 template<typename _Tp, typename _Up>
2769 static __bool_constant<
2770 noexcept(swap(std::declval<_Tp>(), std::declval<_Up>()))
2772 noexcept(swap(std::declval<_Up>(), std::declval<_Tp>()))
2775 template<typename, typename>
2776 static false_type __test(...);
2779 } // namespace __swappable_with_details
2781 template<typename _Tp, typename _Up>
2782 struct __is_swappable_with_impl
2783 : public __swappable_with_details::__do_is_swappable_with_impl
2785 typedef decltype(__test<_Tp, _Up>(0)) type;
2788 // Optimization for the homogenous lvalue case, not required:
2789 template<typename _Tp>
2790 struct __is_swappable_with_impl<_Tp&, _Tp&>
2791 : public __swappable_details::__do_is_swappable_impl
2793 typedef decltype(__test<_Tp&>(0)) type;
2796 template<typename _Tp, typename _Up>
2797 struct __is_nothrow_swappable_with_impl
2798 : public __swappable_with_details::__do_is_nothrow_swappable_with_impl
2800 typedef decltype(__test<_Tp, _Up>(0)) type;
2803 // Optimization for the homogenous lvalue case, not required:
2804 template<typename _Tp>
2805 struct __is_nothrow_swappable_with_impl<_Tp&, _Tp&>
2806 : public __swappable_details::__do_is_nothrow_swappable_impl
2808 typedef decltype(__test<_Tp&>(0)) type;
2811 /// is_swappable_with
2812 template<typename _Tp, typename _Up>
2813 struct is_swappable_with
2814 : public __is_swappable_with_impl<_Tp, _Up>::type
2817 /// is_nothrow_swappable_with
2818 template<typename _Tp, typename _Up>
2819 struct is_nothrow_swappable_with
2820 : public __is_nothrow_swappable_with_impl<_Tp, _Up>::type
2823 #if __cplusplus >= 201402L
2824 /// is_swappable_with_v
2825 template<typename _Tp, typename _Up>
2826 _GLIBCXX17_INLINE constexpr bool is_swappable_with_v =
2827 is_swappable_with<_Tp, _Up>::value;
2829 /// is_nothrow_swappable_with_v
2830 template<typename _Tp, typename _Up>
2831 _GLIBCXX17_INLINE constexpr bool is_nothrow_swappable_with_v =
2832 is_nothrow_swappable_with<_Tp, _Up>::value;
2833 #endif // __cplusplus >= 201402L
2835 #endif// c++1z or gnu++11
2837 // __is_invocable (std::is_invocable for C++11)
2839 // The primary template is used for invalid INVOKE expressions.
2840 template<typename _Result, typename _Ret,
2841 bool = is_void<_Ret>::value, typename = void>
2842 struct __is_invocable_impl : false_type { };
2844 // Used for valid INVOKE and INVOKE<void> expressions.
2845 template<typename _Result, typename _Ret>
2846 struct __is_invocable_impl<_Result, _Ret,
2847 /* is_void<_Ret> = */ true,
2848 __void_t<typename _Result::type>>
2852 #pragma GCC diagnostic push
2853 #pragma GCC diagnostic ignored "-Wctor-dtor-privacy"
2854 // Used for INVOKE<R> expressions to check the implicit conversion to R.
2855 template<typename _Result, typename _Ret>
2856 struct __is_invocable_impl<_Result, _Ret,
2857 /* is_void<_Ret> = */ false,
2858 __void_t<typename _Result::type>>
2861 // The type of the INVOKE expression.
2862 // Unlike declval, this doesn't add_rvalue_reference.
2863 static typename _Result::type _S_get();
2865 template<typename _Tp>
2866 static void _S_conv(_Tp);
2868 // This overload is viable if INVOKE(f, args...) can convert to _Tp.
2869 template<typename _Tp, typename = decltype(_S_conv<_Tp>(_S_get()))>
2873 template<typename _Tp>
2878 using type = decltype(_S_test<_Ret>(1));
2880 #pragma GCC diagnostic pop
2882 template<typename _Fn, typename... _ArgTypes>
2883 struct __is_invocable
2884 : __is_invocable_impl<__invoke_result<_Fn, _ArgTypes...>, void>::type
2887 template<typename _Fn, typename _Tp, typename... _Args>
2888 constexpr bool __call_is_nt(__invoke_memfun_ref)
2890 using _Up = typename __inv_unwrap<_Tp>::type;
2891 return noexcept((std::declval<_Up>().*std::declval<_Fn>())(
2892 std::declval<_Args>()...));
2895 template<typename _Fn, typename _Tp, typename... _Args>
2896 constexpr bool __call_is_nt(__invoke_memfun_deref)
2898 return noexcept(((*std::declval<_Tp>()).*std::declval<_Fn>())(
2899 std::declval<_Args>()...));
2902 template<typename _Fn, typename _Tp>
2903 constexpr bool __call_is_nt(__invoke_memobj_ref)
2905 using _Up = typename __inv_unwrap<_Tp>::type;
2906 return noexcept(std::declval<_Up>().*std::declval<_Fn>());
2909 template<typename _Fn, typename _Tp>
2910 constexpr bool __call_is_nt(__invoke_memobj_deref)
2912 return noexcept((*std::declval<_Tp>()).*std::declval<_Fn>());
2915 template<typename _Fn, typename... _Args>
2916 constexpr bool __call_is_nt(__invoke_other)
2918 return noexcept(std::declval<_Fn>()(std::declval<_Args>()...));
2921 template<typename _Result, typename _Fn, typename... _Args>
2922 struct __call_is_nothrow
2924 std::__call_is_nt<_Fn, _Args...>(typename _Result::__invoke_type{})
2928 template<typename _Fn, typename... _Args>
2929 using __call_is_nothrow_
2930 = __call_is_nothrow<__invoke_result<_Fn, _Args...>, _Fn, _Args...>;
2932 // __is_nothrow_invocable (std::is_nothrow_invocable for C++11)
2933 template<typename _Fn, typename... _Args>
2934 struct __is_nothrow_invocable
2935 : __and_<__is_invocable<_Fn, _Args...>,
2936 __call_is_nothrow_<_Fn, _Args...>>::type
2939 #pragma GCC diagnostic push
2940 #pragma GCC diagnostic ignored "-Wctor-dtor-privacy"
2941 struct __nonesuchbase {};
2942 struct __nonesuch : private __nonesuchbase {
2943 ~__nonesuch() = delete;
2944 __nonesuch(__nonesuch const&) = delete;
2945 void operator=(__nonesuch const&) = delete;
2947 #pragma GCC diagnostic pop
2949 #if __cplusplus >= 201703L
2950 # define __cpp_lib_is_invocable 201703
2952 /// std::invoke_result
2953 template<typename _Functor, typename... _ArgTypes>
2954 struct invoke_result
2955 : public __invoke_result<_Functor, _ArgTypes...>
2958 /// std::invoke_result_t
2959 template<typename _Fn, typename... _Args>
2960 using invoke_result_t = typename invoke_result<_Fn, _Args...>::type;
2962 /// std::is_invocable
2963 template<typename _Fn, typename... _ArgTypes>
2965 : __is_invocable_impl<__invoke_result<_Fn, _ArgTypes...>, void>::type
2967 static_assert(std::__is_complete_or_unbounded(__type_identity<_Fn>{}),
2968 "_Fn must be a complete class or an unbounded array");
2971 /// std::is_invocable_r
2972 template<typename _Ret, typename _Fn, typename... _ArgTypes>
2973 struct is_invocable_r
2974 : __is_invocable_impl<__invoke_result<_Fn, _ArgTypes...>, _Ret>::type
2976 static_assert(std::__is_complete_or_unbounded(__type_identity<_Fn>{}),
2977 "_Fn must be a complete class or an unbounded array");
2980 /// std::is_nothrow_invocable
2981 template<typename _Fn, typename... _ArgTypes>
2982 struct is_nothrow_invocable
2983 : __and_<__is_invocable_impl<__invoke_result<_Fn, _ArgTypes...>, void>,
2984 __call_is_nothrow_<_Fn, _ArgTypes...>>::type
2986 static_assert(std::__is_complete_or_unbounded(__type_identity<_Fn>{}),
2987 "_Fn must be a complete class or an unbounded array");
2990 template<typename _Result, typename _Ret, typename = void>
2991 struct __is_nt_invocable_impl : false_type { };
2993 template<typename _Result, typename _Ret>
2994 struct __is_nt_invocable_impl<_Result, _Ret,
2995 __void_t<typename _Result::type>>
2996 : __or_<is_void<_Ret>,
2997 __is_nothrow_convertible<typename _Result::type, _Ret>>
3000 /// std::is_nothrow_invocable_r
3001 template<typename _Ret, typename _Fn, typename... _ArgTypes>
3002 struct is_nothrow_invocable_r
3003 : __and_<__is_nt_invocable_impl<__invoke_result<_Fn, _ArgTypes...>, _Ret>,
3004 __call_is_nothrow_<_Fn, _ArgTypes...>>::type
3007 /// std::is_invocable_v
3008 template<typename _Fn, typename... _Args>
3009 inline constexpr bool is_invocable_v = is_invocable<_Fn, _Args...>::value;
3011 /// std::is_nothrow_invocable_v
3012 template<typename _Fn, typename... _Args>
3013 inline constexpr bool is_nothrow_invocable_v
3014 = is_nothrow_invocable<_Fn, _Args...>::value;
3016 /// std::is_invocable_r_v
3017 template<typename _Ret, typename _Fn, typename... _Args>
3018 inline constexpr bool is_invocable_r_v
3019 = is_invocable_r<_Ret, _Fn, _Args...>::value;
3021 /// std::is_nothrow_invocable_r_v
3022 template<typename _Ret, typename _Fn, typename... _Args>
3023 inline constexpr bool is_nothrow_invocable_r_v
3024 = is_nothrow_invocable_r<_Ret, _Fn, _Args...>::value;
3027 #if __cplusplus >= 201703L
3028 # define __cpp_lib_type_trait_variable_templates 201510L
3029 template <typename _Tp>
3030 inline constexpr bool is_void_v = is_void<_Tp>::value;
3031 template <typename _Tp>
3032 inline constexpr bool is_null_pointer_v = is_null_pointer<_Tp>::value;
3033 template <typename _Tp>
3034 inline constexpr bool is_integral_v = is_integral<_Tp>::value;
3035 template <typename _Tp>
3036 inline constexpr bool is_floating_point_v = is_floating_point<_Tp>::value;
3037 template <typename _Tp>
3038 inline constexpr bool is_array_v = is_array<_Tp>::value;
3039 template <typename _Tp>
3040 inline constexpr bool is_pointer_v = is_pointer<_Tp>::value;
3041 template <typename _Tp>
3042 inline constexpr bool is_lvalue_reference_v =
3043 is_lvalue_reference<_Tp>::value;
3044 template <typename _Tp>
3045 inline constexpr bool is_rvalue_reference_v =
3046 is_rvalue_reference<_Tp>::value;
3047 template <typename _Tp>
3048 inline constexpr bool is_member_object_pointer_v =
3049 is_member_object_pointer<_Tp>::value;
3050 template <typename _Tp>
3051 inline constexpr bool is_member_function_pointer_v =
3052 is_member_function_pointer<_Tp>::value;
3053 template <typename _Tp>
3054 inline constexpr bool is_enum_v = is_enum<_Tp>::value;
3055 template <typename _Tp>
3056 inline constexpr bool is_union_v = is_union<_Tp>::value;
3057 template <typename _Tp>
3058 inline constexpr bool is_class_v = is_class<_Tp>::value;
3059 template <typename _Tp>
3060 inline constexpr bool is_function_v = is_function<_Tp>::value;
3061 template <typename _Tp>
3062 inline constexpr bool is_reference_v = is_reference<_Tp>::value;
3063 template <typename _Tp>
3064 inline constexpr bool is_arithmetic_v = is_arithmetic<_Tp>::value;
3065 template <typename _Tp>
3066 inline constexpr bool is_fundamental_v = is_fundamental<_Tp>::value;
3067 template <typename _Tp>
3068 inline constexpr bool is_object_v = is_object<_Tp>::value;
3069 template <typename _Tp>
3070 inline constexpr bool is_scalar_v = is_scalar<_Tp>::value;
3071 template <typename _Tp>
3072 inline constexpr bool is_compound_v = is_compound<_Tp>::value;
3073 template <typename _Tp>
3074 inline constexpr bool is_member_pointer_v = is_member_pointer<_Tp>::value;
3075 template <typename _Tp>
3076 inline constexpr bool is_const_v = is_const<_Tp>::value;
3077 template <typename _Tp>
3078 inline constexpr bool is_volatile_v = is_volatile<_Tp>::value;
3079 template <typename _Tp>
3080 inline constexpr bool is_trivial_v = is_trivial<_Tp>::value;
3081 template <typename _Tp>
3082 inline constexpr bool is_trivially_copyable_v =
3083 is_trivially_copyable<_Tp>::value;
3084 template <typename _Tp>
3085 inline constexpr bool is_standard_layout_v = is_standard_layout<_Tp>::value;
3086 #pragma GCC diagnostic push
3087 #pragma GCC diagnostic ignored "-Wdeprecated-declarations"
3088 template <typename _Tp>
3089 _GLIBCXX20_DEPRECATED("use is_standard_layout_v && is_trivial_v instead")
3090 inline constexpr bool is_pod_v = is_pod<_Tp>::value;
3091 #pragma GCC diagnostic pop
3092 template <typename _Tp>
3093 inline constexpr bool is_literal_type_v = is_literal_type<_Tp>::value;
3094 template <typename _Tp>
3095 inline constexpr bool is_empty_v = is_empty<_Tp>::value;
3096 template <typename _Tp>
3097 inline constexpr bool is_polymorphic_v = is_polymorphic<_Tp>::value;
3098 template <typename _Tp>
3099 inline constexpr bool is_abstract_v = is_abstract<_Tp>::value;
3100 template <typename _Tp>
3101 inline constexpr bool is_final_v = is_final<_Tp>::value;
3102 template <typename _Tp>
3103 inline constexpr bool is_signed_v = is_signed<_Tp>::value;
3104 template <typename _Tp>
3105 inline constexpr bool is_unsigned_v = is_unsigned<_Tp>::value;
3106 template <typename _Tp, typename... _Args>
3107 inline constexpr bool is_constructible_v =
3108 is_constructible<_Tp, _Args...>::value;
3109 template <typename _Tp>
3110 inline constexpr bool is_default_constructible_v =
3111 is_default_constructible<_Tp>::value;
3112 template <typename _Tp>
3113 inline constexpr bool is_copy_constructible_v =
3114 is_copy_constructible<_Tp>::value;
3115 template <typename _Tp>
3116 inline constexpr bool is_move_constructible_v =
3117 is_move_constructible<_Tp>::value;
3118 template <typename _Tp, typename _Up>
3119 inline constexpr bool is_assignable_v = is_assignable<_Tp, _Up>::value;
3120 template <typename _Tp>
3121 inline constexpr bool is_copy_assignable_v = is_copy_assignable<_Tp>::value;
3122 template <typename _Tp>
3123 inline constexpr bool is_move_assignable_v = is_move_assignable<_Tp>::value;
3124 template <typename _Tp>
3125 inline constexpr bool is_destructible_v = is_destructible<_Tp>::value;
3126 template <typename _Tp, typename... _Args>
3127 inline constexpr bool is_trivially_constructible_v =
3128 is_trivially_constructible<_Tp, _Args...>::value;
3129 template <typename _Tp>
3130 inline constexpr bool is_trivially_default_constructible_v =
3131 is_trivially_default_constructible<_Tp>::value;
3132 template <typename _Tp>
3133 inline constexpr bool is_trivially_copy_constructible_v =
3134 is_trivially_copy_constructible<_Tp>::value;
3135 template <typename _Tp>
3136 inline constexpr bool is_trivially_move_constructible_v =
3137 is_trivially_move_constructible<_Tp>::value;
3138 template <typename _Tp, typename _Up>
3139 inline constexpr bool is_trivially_assignable_v =
3140 is_trivially_assignable<_Tp, _Up>::value;
3141 template <typename _Tp>
3142 inline constexpr bool is_trivially_copy_assignable_v =
3143 is_trivially_copy_assignable<_Tp>::value;
3144 template <typename _Tp>
3145 inline constexpr bool is_trivially_move_assignable_v =
3146 is_trivially_move_assignable<_Tp>::value;
3147 template <typename _Tp>
3148 inline constexpr bool is_trivially_destructible_v =
3149 is_trivially_destructible<_Tp>::value;
3150 template <typename _Tp, typename... _Args>
3151 inline constexpr bool is_nothrow_constructible_v =
3152 is_nothrow_constructible<_Tp, _Args...>::value;
3153 template <typename _Tp>
3154 inline constexpr bool is_nothrow_default_constructible_v =
3155 is_nothrow_default_constructible<_Tp>::value;
3156 template <typename _Tp>
3157 inline constexpr bool is_nothrow_copy_constructible_v =
3158 is_nothrow_copy_constructible<_Tp>::value;
3159 template <typename _Tp>
3160 inline constexpr bool is_nothrow_move_constructible_v =
3161 is_nothrow_move_constructible<_Tp>::value;
3162 template <typename _Tp, typename _Up>
3163 inline constexpr bool is_nothrow_assignable_v =
3164 is_nothrow_assignable<_Tp, _Up>::value;
3165 template <typename _Tp>
3166 inline constexpr bool is_nothrow_copy_assignable_v =
3167 is_nothrow_copy_assignable<_Tp>::value;
3168 template <typename _Tp>
3169 inline constexpr bool is_nothrow_move_assignable_v =
3170 is_nothrow_move_assignable<_Tp>::value;
3171 template <typename _Tp>
3172 inline constexpr bool is_nothrow_destructible_v =
3173 is_nothrow_destructible<_Tp>::value;
3174 template <typename _Tp>
3175 inline constexpr bool has_virtual_destructor_v =
3176 has_virtual_destructor<_Tp>::value;
3177 template <typename _Tp>
3178 inline constexpr size_t alignment_of_v = alignment_of<_Tp>::value;
3179 template <typename _Tp>
3180 inline constexpr size_t rank_v = rank<_Tp>::value;
3181 template <typename _Tp, unsigned _Idx = 0>
3182 inline constexpr size_t extent_v = extent<_Tp, _Idx>::value;
3183 #ifdef _GLIBCXX_BUILTIN_IS_SAME_AS
3184 template <typename _Tp, typename _Up>
3185 inline constexpr bool is_same_v = _GLIBCXX_BUILTIN_IS_SAME_AS(_Tp, _Up);
3187 template <typename _Tp, typename _Up>
3188 inline constexpr bool is_same_v = std::is_same<_Tp, _Up>::value;
3190 template <typename _Base, typename _Derived>
3191 inline constexpr bool is_base_of_v = is_base_of<_Base, _Derived>::value;
3192 template <typename _From, typename _To>
3193 inline constexpr bool is_convertible_v = is_convertible<_From, _To>::value;
3195 #ifdef _GLIBCXX_HAVE_BUILTIN_HAS_UNIQ_OBJ_REP
3196 # define __cpp_lib_has_unique_object_representations 201606
3197 /// has_unique_object_representations
3198 template<typename _Tp>
3199 struct has_unique_object_representations
3200 : bool_constant<__has_unique_object_representations(
3201 remove_cv_t<remove_all_extents_t<_Tp>>
3204 static_assert(std::__is_complete_or_unbounded(__type_identity<_Tp>{}),
3205 "template argument must be a complete class or an unbounded array");
3208 template<typename _Tp>
3209 inline constexpr bool has_unique_object_representations_v
3210 = has_unique_object_representations<_Tp>::value;
3213 #ifdef _GLIBCXX_HAVE_BUILTIN_IS_AGGREGATE
3214 # define __cpp_lib_is_aggregate 201703
3216 template<typename _Tp>
3218 : bool_constant<__is_aggregate(remove_cv_t<_Tp>)>
3222 template<typename _Tp>
3223 inline constexpr bool is_aggregate_v = is_aggregate<_Tp>::value;
3227 #if __cplusplus > 201703L
3228 /// Remove references and cv-qualifiers.
3229 template<typename _Tp>
3232 using type = __remove_cvref_t<_Tp>;
3235 template<typename _Tp>
3236 using remove_cvref_t = __remove_cvref_t<_Tp>;
3238 /// Identity metafunction.
3239 template<typename _Tp>
3240 struct type_identity { using type = _Tp; };
3242 template<typename _Tp>
3243 using type_identity_t = typename type_identity<_Tp>::type;
3245 #define __cpp_lib_unwrap_ref 201811L
3247 /// Unwrap a reference_wrapper
3248 template<typename _Tp>
3249 struct unwrap_reference { using type = _Tp; };
3251 template<typename _Tp>
3252 struct unwrap_reference<reference_wrapper<_Tp>> { using type = _Tp&; };
3254 template<typename _Tp>
3255 using unwrap_reference_t = typename unwrap_reference<_Tp>::type;
3257 /// Decay type and if it's a reference_wrapper, unwrap it
3258 template<typename _Tp>
3259 struct unwrap_ref_decay { using type = unwrap_reference_t<decay_t<_Tp>>; };
3261 template<typename _Tp>
3262 using unwrap_ref_decay_t = typename unwrap_ref_decay<_Tp>::type;
3264 #define __cpp_lib_bounded_array_traits 201902L
3266 /// True for a type that is an array of known bound.
3267 template<typename _Tp>
3268 struct is_bounded_array
3269 : public __is_array_known_bounds<_Tp>
3272 /// True for a type that is an array of unknown bound.
3273 template<typename _Tp>
3274 struct is_unbounded_array
3275 : public __is_array_unknown_bounds<_Tp>
3278 template<typename _Tp>
3279 inline constexpr bool is_bounded_array_v
3280 = is_bounded_array<_Tp>::value;
3282 template<typename _Tp>
3283 inline constexpr bool is_unbounded_array_v
3284 = is_unbounded_array<_Tp>::value;
3286 #ifdef _GLIBCXX_HAVE_BUILTIN_IS_CONSTANT_EVALUATED
3288 #define __cpp_lib_is_constant_evaluated 201811L
3290 constexpr inline bool
3291 is_constant_evaluated() noexcept
3292 { return __builtin_is_constant_evaluated(); }
3295 template<typename _From, typename _To>
3296 using __copy_cv = typename __match_cv_qualifiers<_From, _To>::__type;
3298 template<typename _Xp, typename _Yp>
3300 = decltype(false ? declval<_Xp(&)()>()() : declval<_Yp(&)()>()());
3302 template<typename _Ap, typename _Bp, typename = void>
3303 struct __common_ref_impl
3306 // [meta.trans.other], COMMON-REF(A, B)
3307 template<typename _Ap, typename _Bp>
3308 using __common_ref = typename __common_ref_impl<_Ap, _Bp>::type;
3310 // If A and B are both lvalue reference types, ...
3311 template<typename _Xp, typename _Yp>
3312 struct __common_ref_impl<_Xp&, _Yp&,
3313 __void_t<__cond_res<__copy_cv<_Xp, _Yp>&, __copy_cv<_Yp, _Xp>&>>>
3314 { using type = __cond_res<__copy_cv<_Xp, _Yp>&, __copy_cv<_Yp, _Xp>&>; };
3316 // let C be remove_reference_t<COMMON-REF(X&, Y&)>&&
3317 template<typename _Xp, typename _Yp>
3318 using __common_ref_C = remove_reference_t<__common_ref<_Xp&, _Yp&>>&&;
3320 // If A and B are both rvalue reference types, ...
3321 template<typename _Xp, typename _Yp>
3322 struct __common_ref_impl<_Xp&&, _Yp&&,
3323 _Require<is_convertible<_Xp&&, __common_ref_C<_Xp, _Yp>>,
3324 is_convertible<_Yp&&, __common_ref_C<_Xp, _Yp>>>>
3325 { using type = __common_ref_C<_Xp, _Yp>; };
3327 // let D be COMMON-REF(const X&, Y&)
3328 template<typename _Xp, typename _Yp>
3329 using __common_ref_D = __common_ref<const _Xp&, _Yp&>;
3331 // If A is an rvalue reference and B is an lvalue reference, ...
3332 template<typename _Xp, typename _Yp>
3333 struct __common_ref_impl<_Xp&&, _Yp&,
3334 _Require<is_convertible<_Xp&&, __common_ref_D<_Xp, _Yp>>>>
3335 { using type = __common_ref_D<_Xp, _Yp>; };
3337 // If A is an lvalue reference and B is an rvalue reference, ...
3338 template<typename _Xp, typename _Yp>
3339 struct __common_ref_impl<_Xp&, _Yp&&>
3340 : __common_ref_impl<_Yp&&, _Xp&>
3343 template<typename _Tp, typename _Up,
3344 template<typename> class _TQual, template<typename> class _UQual>
3345 struct basic_common_reference
3348 template<typename _Tp>
3350 { template<typename _Up> using __type = __copy_cv<_Tp, _Up>; };
3352 template<typename _Tp>
3354 { template<typename _Up> using __type = __copy_cv<_Tp, _Up>&; };
3356 template<typename _Tp>
3357 struct __xref<_Tp&&>
3358 { template<typename _Up> using __type = __copy_cv<_Tp, _Up>&&; };
3360 template<typename _Tp1, typename _Tp2>
3361 using __basic_common_ref
3362 = typename basic_common_reference<remove_cvref_t<_Tp1>,
3363 remove_cvref_t<_Tp2>,
3364 __xref<_Tp1>::template __type,
3365 __xref<_Tp2>::template __type>::type;
3367 template<typename... _Tp>
3368 struct common_reference;
3370 template<typename... _Tp>
3371 using common_reference_t = typename common_reference<_Tp...>::type;
3373 // If sizeof...(T) is zero, there shall be no member type.
3375 struct common_reference<>
3378 // If sizeof...(T) is one ...
3379 template<typename _Tp0>
3380 struct common_reference<_Tp0>
3381 { using type = _Tp0; };
3383 template<typename _Tp1, typename _Tp2, int _Bullet = 1, typename = void>
3384 struct __common_reference_impl
3385 : __common_reference_impl<_Tp1, _Tp2, _Bullet + 1>
3388 // If sizeof...(T) is two ...
3389 template<typename _Tp1, typename _Tp2>
3390 struct common_reference<_Tp1, _Tp2>
3391 : __common_reference_impl<_Tp1, _Tp2>
3394 // If T1 and T2 are reference types and COMMON-REF(T1, T2) is well-formed, ...
3395 template<typename _Tp1, typename _Tp2>
3396 struct __common_reference_impl<_Tp1&, _Tp2&, 1,
3397 void_t<__common_ref<_Tp1&, _Tp2&>>>
3398 { using type = __common_ref<_Tp1&, _Tp2&>; };
3400 template<typename _Tp1, typename _Tp2>
3401 struct __common_reference_impl<_Tp1&&, _Tp2&&, 1,
3402 void_t<__common_ref<_Tp1&&, _Tp2&&>>>
3403 { using type = __common_ref<_Tp1&&, _Tp2&&>; };
3405 template<typename _Tp1, typename _Tp2>
3406 struct __common_reference_impl<_Tp1&, _Tp2&&, 1,
3407 void_t<__common_ref<_Tp1&, _Tp2&&>>>
3408 { using type = __common_ref<_Tp1&, _Tp2&&>; };
3410 template<typename _Tp1, typename _Tp2>
3411 struct __common_reference_impl<_Tp1&&, _Tp2&, 1,
3412 void_t<__common_ref<_Tp1&&, _Tp2&>>>
3413 { using type = __common_ref<_Tp1&&, _Tp2&>; };
3415 // Otherwise, if basic_common_reference<...>::type is well-formed, ...
3416 template<typename _Tp1, typename _Tp2>
3417 struct __common_reference_impl<_Tp1, _Tp2, 2,
3418 void_t<__basic_common_ref<_Tp1, _Tp2>>>
3419 { using type = __basic_common_ref<_Tp1, _Tp2>; };
3421 // Otherwise, if COND-RES(T1, T2) is well-formed, ...
3422 template<typename _Tp1, typename _Tp2>
3423 struct __common_reference_impl<_Tp1, _Tp2, 3,
3424 void_t<__cond_res<_Tp1, _Tp2>>>
3425 { using type = __cond_res<_Tp1, _Tp2>; };
3427 // Otherwise, if common_type_t<T1, T2> is well-formed, ...
3428 template<typename _Tp1, typename _Tp2>
3429 struct __common_reference_impl<_Tp1, _Tp2, 4,
3430 void_t<common_type_t<_Tp1, _Tp2>>>
3431 { using type = common_type_t<_Tp1, _Tp2>; };
3433 // Otherwise, there shall be no member type.
3434 template<typename _Tp1, typename _Tp2>
3435 struct __common_reference_impl<_Tp1, _Tp2, 5, void>
3438 // Otherwise, if sizeof...(T) is greater than two, ...
3439 template<typename _Tp1, typename _Tp2, typename... _Rest>
3440 struct common_reference<_Tp1, _Tp2, _Rest...>
3441 : __common_type_fold<common_reference<_Tp1, _Tp2>,
3442 __common_type_pack<_Rest...>>
3445 // Reuse __common_type_fold for common_reference<T1, T2, Rest...>
3446 template<typename _Tp1, typename _Tp2, typename... _Rest>
3447 struct __common_type_fold<common_reference<_Tp1, _Tp2>,
3448 __common_type_pack<_Rest...>,
3449 void_t<common_reference_t<_Tp1, _Tp2>>>
3450 : public common_reference<common_reference_t<_Tp1, _Tp2>, _Rest...>
3455 _GLIBCXX_END_NAMESPACE_VERSION
3460 #endif // _GLIBCXX_TYPE_TRAITS