libstdc++
type_traits
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1 // C++11 <type_traits> -*- C++ -*-
2 
3 // Copyright (C) 2007-2019 Free Software Foundation, Inc.
4 //
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)
9 // any later version.
10 
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.
15 
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.
19 
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/>.
24 
25 /** @file include/type_traits
26  * This is a Standard C++ Library header.
27  */
28 
29 #ifndef _GLIBCXX_TYPE_TRAITS
30 #define _GLIBCXX_TYPE_TRAITS 1
31 
32 #pragma GCC system_header
33 
34 #if __cplusplus < 201103L
35 # include <bits/c++0x_warning.h>
36 #else
37 
38 #include <bits/c++config.h>
39 
40 namespace std _GLIBCXX_VISIBILITY(default)
41 {
42 _GLIBCXX_BEGIN_NAMESPACE_VERSION
43 
44  /**
45  * @defgroup metaprogramming Metaprogramming
46  * @ingroup utilities
47  *
48  * Template utilities for compile-time introspection and modification,
49  * including type classification traits, type property inspection traits
50  * and type transformation traits.
51  *
52  * @{
53  */
54 
55  /// integral_constant
56  template<typename _Tp, _Tp __v>
57  struct integral_constant
58  {
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
64 
65 #define __cpp_lib_integral_constant_callable 201304
66 
67  constexpr value_type operator()() const noexcept { return value; }
68 #endif
69  };
70 
71  template<typename _Tp, _Tp __v>
72  constexpr _Tp integral_constant<_Tp, __v>::value;
73 
74  /// The type used as a compile-time boolean with true value.
75  typedef integral_constant<bool, true> true_type;
76 
77  /// The type used as a compile-time boolean with false value.
78  typedef integral_constant<bool, false> false_type;
79 
80  template<bool __v>
81  using __bool_constant = integral_constant<bool, __v>;
82 
83 #if __cplusplus > 201402L
84 # define __cpp_lib_bool_constant 201505
85  template<bool __v>
86  using bool_constant = integral_constant<bool, __v>;
87 #endif
88 
89  // Meta programming helper types.
90 
91  template<bool, typename, typename>
92  struct conditional;
93 
94  template<typename...>
95  struct __or_;
96 
97  template<>
98  struct __or_<>
99  : public false_type
100  { };
101 
102  template<typename _B1>
103  struct __or_<_B1>
104  : public _B1
105  { };
106 
107  template<typename _B1, typename _B2>
108  struct __or_<_B1, _B2>
109  : public conditional<_B1::value, _B1, _B2>::type
110  { };
111 
112  template<typename _B1, typename _B2, typename _B3, typename... _Bn>
113  struct __or_<_B1, _B2, _B3, _Bn...>
114  : public conditional<_B1::value, _B1, __or_<_B2, _B3, _Bn...>>::type
115  { };
116 
117  template<typename...>
118  struct __and_;
119 
120  template<>
121  struct __and_<>
122  : public true_type
123  { };
124 
125  template<typename _B1>
126  struct __and_<_B1>
127  : public _B1
128  { };
129 
130  template<typename _B1, typename _B2>
131  struct __and_<_B1, _B2>
132  : public conditional<_B1::value, _B2, _B1>::type
133  { };
134 
135  template<typename _B1, typename _B2, typename _B3, typename... _Bn>
136  struct __and_<_B1, _B2, _B3, _Bn...>
137  : public conditional<_B1::value, __and_<_B2, _B3, _Bn...>, _B1>::type
138  { };
139 
140  template<typename _Pp>
141  struct __not_
142  : public __bool_constant<!bool(_Pp::value)>
143  { };
144 
145 #if __cplusplus >= 201703L
146 
147  template<typename... _Bn>
148  inline constexpr bool __or_v = __or_<_Bn...>::value;
149  template<typename... _Bn>
150  inline constexpr bool __and_v = __and_<_Bn...>::value;
151 
152 #define __cpp_lib_logical_traits 201510
153 
154  template<typename... _Bn>
155  struct conjunction
156  : __and_<_Bn...>
157  { };
158 
159  template<typename... _Bn>
160  struct disjunction
161  : __or_<_Bn...>
162  { };
163 
164  template<typename _Pp>
165  struct negation
166  : __not_<_Pp>
167  { };
168 
169  template<typename... _Bn>
170  inline constexpr bool conjunction_v = conjunction<_Bn...>::value;
171 
172  template<typename... _Bn>
173  inline constexpr bool disjunction_v = disjunction<_Bn...>::value;
174 
175  template<typename _Pp>
176  inline constexpr bool negation_v = negation<_Pp>::value;
177 
178 #endif // C++17
179 
180  // For several sfinae-friendly trait implementations we transport both the
181  // result information (as the member type) and the failure information (no
182  // member type). This is very similar to std::enable_if, but we cannot use
183  // them, because we need to derive from them as an implementation detail.
184 
185  template<typename _Tp>
186  struct __success_type
187  { typedef _Tp type; };
188 
189  struct __failure_type
190  { };
191 
192  // Primary type categories.
193 
194  template<typename>
195  struct remove_cv;
196 
197  template<typename>
198  struct __is_void_helper
199  : public false_type { };
200 
201  template<>
202  struct __is_void_helper<void>
203  : public true_type { };
204 
205  /// is_void
206  template<typename _Tp>
207  struct is_void
208  : public __is_void_helper<typename remove_cv<_Tp>::type>::type
209  { };
210 
211  template<typename>
212  struct __is_integral_helper
213  : public false_type { };
214 
215  template<>
216  struct __is_integral_helper<bool>
217  : public true_type { };
218 
219  template<>
220  struct __is_integral_helper<char>
221  : public true_type { };
222 
223  template<>
224  struct __is_integral_helper<signed char>
225  : public true_type { };
226 
227  template<>
228  struct __is_integral_helper<unsigned char>
229  : public true_type { };
230 
231 #ifdef _GLIBCXX_USE_WCHAR_T
232  template<>
233  struct __is_integral_helper<wchar_t>
234  : public true_type { };
235 #endif
236 
237  template<>
238  struct __is_integral_helper<char16_t>
239  : public true_type { };
240 
241  template<>
242  struct __is_integral_helper<char32_t>
243  : public true_type { };
244 
245  template<>
246  struct __is_integral_helper<short>
247  : public true_type { };
248 
249  template<>
250  struct __is_integral_helper<unsigned short>
251  : public true_type { };
252 
253  template<>
254  struct __is_integral_helper<int>
255  : public true_type { };
256 
257  template<>
258  struct __is_integral_helper<unsigned int>
259  : public true_type { };
260 
261  template<>
262  struct __is_integral_helper<long>
263  : public true_type { };
264 
265  template<>
266  struct __is_integral_helper<unsigned long>
267  : public true_type { };
268 
269  template<>
270  struct __is_integral_helper<long long>
271  : public true_type { };
272 
273  template<>
274  struct __is_integral_helper<unsigned long long>
275  : public true_type { };
276 
277  // Conditionalizing on __STRICT_ANSI__ here will break any port that
278  // uses one of these types for size_t.
279 #if defined(__GLIBCXX_TYPE_INT_N_0)
280  template<>
281  struct __is_integral_helper<__GLIBCXX_TYPE_INT_N_0>
282  : public true_type { };
283 
284  template<>
285  struct __is_integral_helper<unsigned __GLIBCXX_TYPE_INT_N_0>
286  : public true_type { };
287 #endif
288 #if defined(__GLIBCXX_TYPE_INT_N_1)
289  template<>
290  struct __is_integral_helper<__GLIBCXX_TYPE_INT_N_1>
291  : public true_type { };
292 
293  template<>
294  struct __is_integral_helper<unsigned __GLIBCXX_TYPE_INT_N_1>
295  : public true_type { };
296 #endif
297 #if defined(__GLIBCXX_TYPE_INT_N_2)
298  template<>
299  struct __is_integral_helper<__GLIBCXX_TYPE_INT_N_2>
300  : public true_type { };
301 
302  template<>
303  struct __is_integral_helper<unsigned __GLIBCXX_TYPE_INT_N_2>
304  : public true_type { };
305 #endif
306 #if defined(__GLIBCXX_TYPE_INT_N_3)
307  template<>
308  struct __is_integral_helper<__GLIBCXX_TYPE_INT_N_3>
309  : public true_type { };
310 
311  template<>
312  struct __is_integral_helper<unsigned __GLIBCXX_TYPE_INT_N_3>
313  : public true_type { };
314 #endif
315 
316  /// is_integral
317  template<typename _Tp>
318  struct is_integral
319  : public __is_integral_helper<typename remove_cv<_Tp>::type>::type
320  { };
321 
322  template<typename>
323  struct __is_floating_point_helper
324  : public false_type { };
325 
326  template<>
327  struct __is_floating_point_helper<float>
328  : public true_type { };
329 
330  template<>
331  struct __is_floating_point_helper<double>
332  : public true_type { };
333 
334  template<>
335  struct __is_floating_point_helper<long double>
336  : public true_type { };
337 
338 #if !defined(__STRICT_ANSI__) && defined(_GLIBCXX_USE_FLOAT128)
339  template<>
340  struct __is_floating_point_helper<__float128>
341  : public true_type { };
342 #endif
343 
344  /// is_floating_point
345  template<typename _Tp>
346  struct is_floating_point
347  : public __is_floating_point_helper<typename remove_cv<_Tp>::type>::type
348  { };
349 
350  /// is_array
351  template<typename>
352  struct is_array
353  : public false_type { };
354 
355  template<typename _Tp, std::size_t _Size>
356  struct is_array<_Tp[_Size]>
357  : public true_type { };
358 
359  template<typename _Tp>
360  struct is_array<_Tp[]>
361  : public true_type { };
362 
363  template<typename>
364  struct __is_pointer_helper
365  : public false_type { };
366 
367  template<typename _Tp>
368  struct __is_pointer_helper<_Tp*>
369  : public true_type { };
370 
371  /// is_pointer
372  template<typename _Tp>
373  struct is_pointer
374  : public __is_pointer_helper<typename remove_cv<_Tp>::type>::type
375  { };
376 
377  /// is_lvalue_reference
378  template<typename>
379  struct is_lvalue_reference
380  : public false_type { };
381 
382  template<typename _Tp>
383  struct is_lvalue_reference<_Tp&>
384  : public true_type { };
385 
386  /// is_rvalue_reference
387  template<typename>
388  struct is_rvalue_reference
389  : public false_type { };
390 
391  template<typename _Tp>
392  struct is_rvalue_reference<_Tp&&>
393  : public true_type { };
394 
395  template<typename>
396  struct is_function;
397 
398  template<typename>
399  struct __is_member_object_pointer_helper
400  : public false_type { };
401 
402  template<typename _Tp, typename _Cp>
403  struct __is_member_object_pointer_helper<_Tp _Cp::*>
404  : public __not_<is_function<_Tp>>::type { };
405 
406  /// is_member_object_pointer
407  template<typename _Tp>
408  struct is_member_object_pointer
409  : public __is_member_object_pointer_helper<
410  typename remove_cv<_Tp>::type>::type
411  { };
412 
413  template<typename>
414  struct __is_member_function_pointer_helper
415  : public false_type { };
416 
417  template<typename _Tp, typename _Cp>
418  struct __is_member_function_pointer_helper<_Tp _Cp::*>
419  : public is_function<_Tp>::type { };
420 
421  /// is_member_function_pointer
422  template<typename _Tp>
423  struct is_member_function_pointer
424  : public __is_member_function_pointer_helper<
425  typename remove_cv<_Tp>::type>::type
426  { };
427 
428  /// is_enum
429  template<typename _Tp>
430  struct is_enum
431  : public integral_constant<bool, __is_enum(_Tp)>
432  { };
433 
434  /// is_union
435  template<typename _Tp>
436  struct is_union
437  : public integral_constant<bool, __is_union(_Tp)>
438  { };
439 
440  /// is_class
441  template<typename _Tp>
442  struct is_class
443  : public integral_constant<bool, __is_class(_Tp)>
444  { };
445 
446  /// is_function
447  template<typename>
448  struct is_function
449  : public false_type { };
450 
451  template<typename _Res, typename... _ArgTypes _GLIBCXX_NOEXCEPT_PARM>
452  struct is_function<_Res(_ArgTypes...) _GLIBCXX_NOEXCEPT_QUAL>
453  : public true_type { };
454 
455  template<typename _Res, typename... _ArgTypes _GLIBCXX_NOEXCEPT_PARM>
456  struct is_function<_Res(_ArgTypes...) & _GLIBCXX_NOEXCEPT_QUAL>
457  : public true_type { };
458 
459  template<typename _Res, typename... _ArgTypes _GLIBCXX_NOEXCEPT_PARM>
460  struct is_function<_Res(_ArgTypes...) && _GLIBCXX_NOEXCEPT_QUAL>
461  : public true_type { };
462 
463  template<typename _Res, typename... _ArgTypes _GLIBCXX_NOEXCEPT_PARM>
464  struct is_function<_Res(_ArgTypes......) _GLIBCXX_NOEXCEPT_QUAL>
465  : public true_type { };
466 
467  template<typename _Res, typename... _ArgTypes _GLIBCXX_NOEXCEPT_PARM>
468  struct is_function<_Res(_ArgTypes......) & _GLIBCXX_NOEXCEPT_QUAL>
469  : public true_type { };
470 
471  template<typename _Res, typename... _ArgTypes _GLIBCXX_NOEXCEPT_PARM>
472  struct is_function<_Res(_ArgTypes......) && _GLIBCXX_NOEXCEPT_QUAL>
473  : public true_type { };
474 
475  template<typename _Res, typename... _ArgTypes _GLIBCXX_NOEXCEPT_PARM>
476  struct is_function<_Res(_ArgTypes...) const _GLIBCXX_NOEXCEPT_QUAL>
477  : public true_type { };
478 
479  template<typename _Res, typename... _ArgTypes _GLIBCXX_NOEXCEPT_PARM>
480  struct is_function<_Res(_ArgTypes...) const & _GLIBCXX_NOEXCEPT_QUAL>
481  : public true_type { };
482 
483  template<typename _Res, typename... _ArgTypes _GLIBCXX_NOEXCEPT_PARM>
484  struct is_function<_Res(_ArgTypes...) const && _GLIBCXX_NOEXCEPT_QUAL>
485  : public true_type { };
486 
487  template<typename _Res, typename... _ArgTypes _GLIBCXX_NOEXCEPT_PARM>
488  struct is_function<_Res(_ArgTypes......) const _GLIBCXX_NOEXCEPT_QUAL>
489  : public true_type { };
490 
491  template<typename _Res, typename... _ArgTypes _GLIBCXX_NOEXCEPT_PARM>
492  struct is_function<_Res(_ArgTypes......) const & _GLIBCXX_NOEXCEPT_QUAL>
493  : public true_type { };
494 
495  template<typename _Res, typename... _ArgTypes _GLIBCXX_NOEXCEPT_PARM>
496  struct is_function<_Res(_ArgTypes......) const && _GLIBCXX_NOEXCEPT_QUAL>
497  : public true_type { };
498 
499  template<typename _Res, typename... _ArgTypes _GLIBCXX_NOEXCEPT_PARM>
500  struct is_function<_Res(_ArgTypes...) volatile _GLIBCXX_NOEXCEPT_QUAL>
501  : public true_type { };
502 
503  template<typename _Res, typename... _ArgTypes _GLIBCXX_NOEXCEPT_PARM>
504  struct is_function<_Res(_ArgTypes...) volatile & _GLIBCXX_NOEXCEPT_QUAL>
505  : public true_type { };
506 
507  template<typename _Res, typename... _ArgTypes _GLIBCXX_NOEXCEPT_PARM>
508  struct is_function<_Res(_ArgTypes...) volatile && _GLIBCXX_NOEXCEPT_QUAL>
509  : public true_type { };
510 
511  template<typename _Res, typename... _ArgTypes _GLIBCXX_NOEXCEPT_PARM>
512  struct is_function<_Res(_ArgTypes......) volatile _GLIBCXX_NOEXCEPT_QUAL>
513  : public true_type { };
514 
515  template<typename _Res, typename... _ArgTypes _GLIBCXX_NOEXCEPT_PARM>
516  struct is_function<_Res(_ArgTypes......) volatile & _GLIBCXX_NOEXCEPT_QUAL>
517  : public true_type { };
518 
519  template<typename _Res, typename... _ArgTypes _GLIBCXX_NOEXCEPT_PARM>
520  struct is_function<_Res(_ArgTypes......) volatile && _GLIBCXX_NOEXCEPT_QUAL>
521  : public true_type { };
522 
523  template<typename _Res, typename... _ArgTypes _GLIBCXX_NOEXCEPT_PARM>
524  struct is_function<_Res(_ArgTypes...) const volatile _GLIBCXX_NOEXCEPT_QUAL>
525  : public true_type { };
526 
527  template<typename _Res, typename... _ArgTypes _GLIBCXX_NOEXCEPT_PARM>
528  struct is_function<_Res(_ArgTypes...) const volatile & _GLIBCXX_NOEXCEPT_QUAL>
529  : public true_type { };
530 
531  template<typename _Res, typename... _ArgTypes _GLIBCXX_NOEXCEPT_PARM>
532  struct is_function<_Res(_ArgTypes...) const volatile && _GLIBCXX_NOEXCEPT_QUAL>
533  : public true_type { };
534 
535  template<typename _Res, typename... _ArgTypes _GLIBCXX_NOEXCEPT_PARM>
536  struct is_function<_Res(_ArgTypes......) const volatile _GLIBCXX_NOEXCEPT_QUAL>
537  : public true_type { };
538 
539  template<typename _Res, typename... _ArgTypes _GLIBCXX_NOEXCEPT_PARM>
540  struct is_function<_Res(_ArgTypes......) const volatile & _GLIBCXX_NOEXCEPT_QUAL>
541  : public true_type { };
542 
543  template<typename _Res, typename... _ArgTypes _GLIBCXX_NOEXCEPT_PARM>
544  struct is_function<_Res(_ArgTypes......) const volatile && _GLIBCXX_NOEXCEPT_QUAL>
545  : public true_type { };
546 
547 #define __cpp_lib_is_null_pointer 201309
548 
549  template<typename>
550  struct __is_null_pointer_helper
551  : public false_type { };
552 
553  template<>
554  struct __is_null_pointer_helper<std::nullptr_t>
555  : public true_type { };
556 
557  /// is_null_pointer (LWG 2247).
558  template<typename _Tp>
559  struct is_null_pointer
560  : public __is_null_pointer_helper<typename remove_cv<_Tp>::type>::type
561  { };
562 
563  /// __is_nullptr_t (extension).
564  template<typename _Tp>
565  struct __is_nullptr_t
566  : public is_null_pointer<_Tp>
567  { };
568 
569  // Composite type categories.
570 
571  /// is_reference
572  template<typename _Tp>
573  struct is_reference
574  : public __or_<is_lvalue_reference<_Tp>,
575  is_rvalue_reference<_Tp>>::type
576  { };
577 
578  /// is_arithmetic
579  template<typename _Tp>
580  struct is_arithmetic
581  : public __or_<is_integral<_Tp>, is_floating_point<_Tp>>::type
582  { };
583 
584  /// is_fundamental
585  template<typename _Tp>
586  struct is_fundamental
587  : public __or_<is_arithmetic<_Tp>, is_void<_Tp>,
588  is_null_pointer<_Tp>>::type
589  { };
590 
591  /// is_object
592  template<typename _Tp>
593  struct is_object
594  : public __not_<__or_<is_function<_Tp>, is_reference<_Tp>,
595  is_void<_Tp>>>::type
596  { };
597 
598  template<typename>
599  struct is_member_pointer;
600 
601  /// is_scalar
602  template<typename _Tp>
603  struct is_scalar
604  : public __or_<is_arithmetic<_Tp>, is_enum<_Tp>, is_pointer<_Tp>,
605  is_member_pointer<_Tp>, is_null_pointer<_Tp>>::type
606  { };
607 
608  /// is_compound
609  template<typename _Tp>
610  struct is_compound
611  : public __not_<is_fundamental<_Tp>>::type { };
612 
613  template<typename _Tp>
614  struct __is_member_pointer_helper
615  : public false_type { };
616 
617  template<typename _Tp, typename _Cp>
618  struct __is_member_pointer_helper<_Tp _Cp::*>
619  : public true_type { };
620 
621  /// is_member_pointer
622  template<typename _Tp>
623  struct is_member_pointer
624  : public __is_member_pointer_helper<typename remove_cv<_Tp>::type>::type
625  { };
626 
627  // Utility to detect referenceable types ([defns.referenceable]).
628 
629  template<typename _Tp>
630  struct __is_referenceable
631  : public __or_<is_object<_Tp>, is_reference<_Tp>>::type
632  { };
633 
634  template<typename _Res, typename... _Args _GLIBCXX_NOEXCEPT_PARM>
635  struct __is_referenceable<_Res(_Args...) _GLIBCXX_NOEXCEPT_QUAL>
636  : public true_type
637  { };
638 
639  template<typename _Res, typename... _Args _GLIBCXX_NOEXCEPT_PARM>
640  struct __is_referenceable<_Res(_Args......) _GLIBCXX_NOEXCEPT_QUAL>
641  : public true_type
642  { };
643 
644  // Type properties.
645 
646  /// is_const
647  template<typename>
648  struct is_const
649  : public false_type { };
650 
651  template<typename _Tp>
652  struct is_const<_Tp const>
653  : public true_type { };
654 
655  /// is_volatile
656  template<typename>
657  struct is_volatile
658  : public false_type { };
659 
660  template<typename _Tp>
661  struct is_volatile<_Tp volatile>
662  : public true_type { };
663 
664  /// is_trivial
665  template<typename _Tp>
666  struct is_trivial
667  : public integral_constant<bool, __is_trivial(_Tp)>
668  { };
669 
670  // is_trivially_copyable
671  template<typename _Tp>
672  struct is_trivially_copyable
673  : public integral_constant<bool, __is_trivially_copyable(_Tp)>
674  { };
675 
676  /// is_standard_layout
677  template<typename _Tp>
678  struct is_standard_layout
679  : public integral_constant<bool, __is_standard_layout(_Tp)>
680  { };
681 
682  /// is_pod
683  // Could use is_standard_layout && is_trivial instead of the builtin.
684  template<typename _Tp>
685  struct is_pod
686  : public integral_constant<bool, __is_pod(_Tp)>
687  { };
688 
689  /// is_literal_type
690  template<typename _Tp>
691  struct is_literal_type
692  : public integral_constant<bool, __is_literal_type(_Tp)>
693  { };
694 
695  /// is_empty
696  template<typename _Tp>
697  struct is_empty
698  : public integral_constant<bool, __is_empty(_Tp)>
699  { };
700 
701  /// is_polymorphic
702  template<typename _Tp>
703  struct is_polymorphic
704  : public integral_constant<bool, __is_polymorphic(_Tp)>
705  { };
706 
707 #if __cplusplus >= 201402L
708 #define __cpp_lib_is_final 201402L
709  /// is_final
710  template<typename _Tp>
711  struct is_final
712  : public integral_constant<bool, __is_final(_Tp)>
713  { };
714 #endif
715 
716  /// is_abstract
717  template<typename _Tp>
718  struct is_abstract
719  : public integral_constant<bool, __is_abstract(_Tp)>
720  { };
721 
722  template<typename _Tp,
723  bool = is_arithmetic<_Tp>::value>
724  struct __is_signed_helper
725  : public false_type { };
726 
727  template<typename _Tp>
728  struct __is_signed_helper<_Tp, true>
729  : public integral_constant<bool, _Tp(-1) < _Tp(0)>
730  { };
731 
732  /// is_signed
733  template<typename _Tp>
734  struct is_signed
735  : public __is_signed_helper<_Tp>::type
736  { };
737 
738  /// is_unsigned
739  template<typename _Tp>
740  struct is_unsigned
741  : public __and_<is_arithmetic<_Tp>, __not_<is_signed<_Tp>>>
742  { };
743 
744 
745  // Destructible and constructible type properties.
746 
747  /**
748  * @brief Utility to simplify expressions used in unevaluated operands
749  * @ingroup utilities
750  */
751 
752  template<typename _Tp, typename _Up = _Tp&&>
753  _Up
754  __declval(int);
755 
756  template<typename _Tp>
757  _Tp
758  __declval(long);
759 
760  template<typename _Tp>
761  auto declval() noexcept -> decltype(__declval<_Tp>(0));
762 
763  template<typename, unsigned = 0>
764  struct extent;
765 
766  template<typename>
767  struct remove_all_extents;
768 
769  template<typename _Tp>
770  struct __is_array_known_bounds
771  : public integral_constant<bool, (extent<_Tp>::value > 0)>
772  { };
773 
774  template<typename _Tp>
775  struct __is_array_unknown_bounds
776  : public __and_<is_array<_Tp>, __not_<extent<_Tp>>>
777  { };
778 
779  // In N3290 is_destructible does not say anything about function
780  // types and abstract types, see LWG 2049. This implementation
781  // describes function types as non-destructible and all complete
782  // object types as destructible, iff the explicit destructor
783  // call expression is wellformed.
784  struct __do_is_destructible_impl
785  {
786  template<typename _Tp, typename = decltype(declval<_Tp&>().~_Tp())>
787  static true_type __test(int);
788 
789  template<typename>
790  static false_type __test(...);
791  };
792 
793  template<typename _Tp>
794  struct __is_destructible_impl
795  : public __do_is_destructible_impl
796  {
797  typedef decltype(__test<_Tp>(0)) type;
798  };
799 
800  template<typename _Tp,
801  bool = __or_<is_void<_Tp>,
802  __is_array_unknown_bounds<_Tp>,
803  is_function<_Tp>>::value,
804  bool = __or_<is_reference<_Tp>, is_scalar<_Tp>>::value>
805  struct __is_destructible_safe;
806 
807  template<typename _Tp>
808  struct __is_destructible_safe<_Tp, false, false>
809  : public __is_destructible_impl<typename
810  remove_all_extents<_Tp>::type>::type
811  { };
812 
813  template<typename _Tp>
814  struct __is_destructible_safe<_Tp, true, false>
815  : public false_type { };
816 
817  template<typename _Tp>
818  struct __is_destructible_safe<_Tp, false, true>
819  : public true_type { };
820 
821  /// is_destructible
822  template<typename _Tp>
823  struct is_destructible
824  : public __is_destructible_safe<_Tp>::type
825  { };
826 
827  // is_nothrow_destructible requires that is_destructible is
828  // satisfied as well. We realize that by mimicing the
829  // implementation of is_destructible but refer to noexcept(expr)
830  // instead of decltype(expr).
831  struct __do_is_nt_destructible_impl
832  {
833  template<typename _Tp>
834  static __bool_constant<noexcept(declval<_Tp&>().~_Tp())>
835  __test(int);
836 
837  template<typename>
838  static false_type __test(...);
839  };
840 
841  template<typename _Tp>
842  struct __is_nt_destructible_impl
843  : public __do_is_nt_destructible_impl
844  {
845  typedef decltype(__test<_Tp>(0)) type;
846  };
847 
848  template<typename _Tp,
849  bool = __or_<is_void<_Tp>,
850  __is_array_unknown_bounds<_Tp>,
851  is_function<_Tp>>::value,
852  bool = __or_<is_reference<_Tp>, is_scalar<_Tp>>::value>
853  struct __is_nt_destructible_safe;
854 
855  template<typename _Tp>
856  struct __is_nt_destructible_safe<_Tp, false, false>
857  : public __is_nt_destructible_impl<typename
858  remove_all_extents<_Tp>::type>::type
859  { };
860 
861  template<typename _Tp>
862  struct __is_nt_destructible_safe<_Tp, true, false>
863  : public false_type { };
864 
865  template<typename _Tp>
866  struct __is_nt_destructible_safe<_Tp, false, true>
867  : public true_type { };
868 
869  /// is_nothrow_destructible
870  template<typename _Tp>
871  struct is_nothrow_destructible
872  : public __is_nt_destructible_safe<_Tp>::type
873  { };
874 
875  struct __do_is_default_constructible_impl
876  {
877  template<typename _Tp, typename = decltype(_Tp())>
878  static true_type __test(int);
879 
880  template<typename>
881  static false_type __test(...);
882  };
883 
884  template<typename _Tp>
885  struct __is_default_constructible_impl
886  : public __do_is_default_constructible_impl
887  {
888  typedef decltype(__test<_Tp>(0)) type;
889  };
890 
891  template<typename _Tp>
892  struct __is_default_constructible_atom
893  : public __and_<__not_<is_void<_Tp>>,
894  __is_default_constructible_impl<_Tp>>
895  { };
896 
897  template<typename _Tp, bool = is_array<_Tp>::value>
898  struct __is_default_constructible_safe;
899 
900  // The following technique is a workaround for a current core language
901  // restriction, which does not allow for array types to occur in
902  // functional casts of the form T(). Complete arrays can be default-
903  // constructed, if the element type is default-constructible, but
904  // arrays with unknown bounds are not.
905  template<typename _Tp>
906  struct __is_default_constructible_safe<_Tp, true>
907  : public __and_<__is_array_known_bounds<_Tp>,
908  __is_default_constructible_atom<typename
909  remove_all_extents<_Tp>::type>>
910  { };
911 
912  template<typename _Tp>
913  struct __is_default_constructible_safe<_Tp, false>
914  : public __is_default_constructible_atom<_Tp>::type
915  { };
916 
917  /// is_default_constructible
918  template<typename _Tp>
919  struct is_default_constructible
920  : public __is_default_constructible_safe<_Tp>::type
921  { };
922 
923  /// is_constructible
924  template<typename _Tp, typename... _Args>
925  struct is_constructible
926  : public __bool_constant<__is_constructible(_Tp, _Args...)>
927  { };
928 
929  template<typename _Tp, bool = __is_referenceable<_Tp>::value>
930  struct __is_copy_constructible_impl;
931 
932  template<typename _Tp>
933  struct __is_copy_constructible_impl<_Tp, false>
934  : public false_type { };
935 
936  template<typename _Tp>
937  struct __is_copy_constructible_impl<_Tp, true>
938  : public is_constructible<_Tp, const _Tp&>
939  { };
940 
941  /// is_copy_constructible
942  template<typename _Tp>
943  struct is_copy_constructible
944  : public __is_copy_constructible_impl<_Tp>
945  { };
946 
947  template<typename _Tp, bool = __is_referenceable<_Tp>::value>
948  struct __is_move_constructible_impl;
949 
950  template<typename _Tp>
951  struct __is_move_constructible_impl<_Tp, false>
952  : public false_type { };
953 
954  template<typename _Tp>
955  struct __is_move_constructible_impl<_Tp, true>
956  : public is_constructible<_Tp, _Tp&&>
957  { };
958 
959  /// is_move_constructible
960  template<typename _Tp>
961  struct is_move_constructible
962  : public __is_move_constructible_impl<_Tp>
963  { };
964 
965  template<typename _Tp>
966  struct __is_nt_default_constructible_atom
967  : public integral_constant<bool, noexcept(_Tp())>
968  { };
969 
970  template<typename _Tp, bool = is_array<_Tp>::value>
971  struct __is_nt_default_constructible_impl;
972 
973  template<typename _Tp>
974  struct __is_nt_default_constructible_impl<_Tp, true>
975  : public __and_<__is_array_known_bounds<_Tp>,
976  __is_nt_default_constructible_atom<typename
977  remove_all_extents<_Tp>::type>>
978  { };
979 
980  template<typename _Tp>
981  struct __is_nt_default_constructible_impl<_Tp, false>
982  : public __is_nt_default_constructible_atom<_Tp>
983  { };
984 
985  /// is_nothrow_default_constructible
986  template<typename _Tp>
987  struct is_nothrow_default_constructible
988  : public __and_<is_default_constructible<_Tp>,
989  __is_nt_default_constructible_impl<_Tp>>
990  { };
991 
992  template<typename _Tp, typename... _Args>
993  struct __is_nt_constructible_impl
994  : public integral_constant<bool, noexcept(_Tp(declval<_Args>()...))>
995  { };
996 
997  template<typename _Tp, typename _Arg>
998  struct __is_nt_constructible_impl<_Tp, _Arg>
999  : public integral_constant<bool,
1000  noexcept(static_cast<_Tp>(declval<_Arg>()))>
1001  { };
1002 
1003  template<typename _Tp>
1004  struct __is_nt_constructible_impl<_Tp>
1005  : public is_nothrow_default_constructible<_Tp>
1006  { };
1007 
1008  /// is_nothrow_constructible
1009  template<typename _Tp, typename... _Args>
1010  struct is_nothrow_constructible
1011  : public __and_<is_constructible<_Tp, _Args...>,
1012  __is_nt_constructible_impl<_Tp, _Args...>>
1013  { };
1014 
1015  template<typename _Tp, bool = __is_referenceable<_Tp>::value>
1016  struct __is_nothrow_copy_constructible_impl;
1017 
1018  template<typename _Tp>
1019  struct __is_nothrow_copy_constructible_impl<_Tp, false>
1020  : public false_type { };
1021 
1022  template<typename _Tp>
1023  struct __is_nothrow_copy_constructible_impl<_Tp, true>
1024  : public is_nothrow_constructible<_Tp, const _Tp&>
1025  { };
1026 
1027  /// is_nothrow_copy_constructible
1028  template<typename _Tp>
1029  struct is_nothrow_copy_constructible
1030  : public __is_nothrow_copy_constructible_impl<_Tp>
1031  { };
1032 
1033  template<typename _Tp, bool = __is_referenceable<_Tp>::value>
1034  struct __is_nothrow_move_constructible_impl;
1035 
1036  template<typename _Tp>
1037  struct __is_nothrow_move_constructible_impl<_Tp, false>
1038  : public false_type { };
1039 
1040  template<typename _Tp>
1041  struct __is_nothrow_move_constructible_impl<_Tp, true>
1042  : public is_nothrow_constructible<_Tp, _Tp&&>
1043  { };
1044 
1045  /// is_nothrow_move_constructible
1046  template<typename _Tp>
1047  struct is_nothrow_move_constructible
1048  : public __is_nothrow_move_constructible_impl<_Tp>
1049  { };
1050 
1051  /// is_assignable
1052  template<typename _Tp, typename _Up>
1053  struct is_assignable
1054  : public __bool_constant<__is_assignable(_Tp, _Up)>
1055  { };
1056 
1057  template<typename _Tp, bool = __is_referenceable<_Tp>::value>
1058  struct __is_copy_assignable_impl;
1059 
1060  template<typename _Tp>
1061  struct __is_copy_assignable_impl<_Tp, false>
1062  : public false_type { };
1063 
1064  template<typename _Tp>
1065  struct __is_copy_assignable_impl<_Tp, true>
1066  : public is_assignable<_Tp&, const _Tp&>
1067  { };
1068 
1069  /// is_copy_assignable
1070  template<typename _Tp>
1071  struct is_copy_assignable
1072  : public __is_copy_assignable_impl<_Tp>
1073  { };
1074 
1075  template<typename _Tp, bool = __is_referenceable<_Tp>::value>
1076  struct __is_move_assignable_impl;
1077 
1078  template<typename _Tp>
1079  struct __is_move_assignable_impl<_Tp, false>
1080  : public false_type { };
1081 
1082  template<typename _Tp>
1083  struct __is_move_assignable_impl<_Tp, true>
1084  : public is_assignable<_Tp&, _Tp&&>
1085  { };
1086 
1087  /// is_move_assignable
1088  template<typename _Tp>
1089  struct is_move_assignable
1090  : public __is_move_assignable_impl<_Tp>
1091  { };
1092 
1093  template<typename _Tp, typename _Up>
1094  struct __is_nt_assignable_impl
1095  : public integral_constant<bool, noexcept(declval<_Tp>() = declval<_Up>())>
1096  { };
1097 
1098  /// is_nothrow_assignable
1099  template<typename _Tp, typename _Up>
1100  struct is_nothrow_assignable
1101  : public __and_<is_assignable<_Tp, _Up>,
1102  __is_nt_assignable_impl<_Tp, _Up>>
1103  { };
1104 
1105  template<typename _Tp, bool = __is_referenceable<_Tp>::value>
1106  struct __is_nt_copy_assignable_impl;
1107 
1108  template<typename _Tp>
1109  struct __is_nt_copy_assignable_impl<_Tp, false>
1110  : public false_type { };
1111 
1112  template<typename _Tp>
1113  struct __is_nt_copy_assignable_impl<_Tp, true>
1114  : public is_nothrow_assignable<_Tp&, const _Tp&>
1115  { };
1116 
1117  /// is_nothrow_copy_assignable
1118  template<typename _Tp>
1119  struct is_nothrow_copy_assignable
1120  : public __is_nt_copy_assignable_impl<_Tp>
1121  { };
1122 
1123  template<typename _Tp, bool = __is_referenceable<_Tp>::value>
1124  struct __is_nt_move_assignable_impl;
1125 
1126  template<typename _Tp>
1127  struct __is_nt_move_assignable_impl<_Tp, false>
1128  : public false_type { };
1129 
1130  template<typename _Tp>
1131  struct __is_nt_move_assignable_impl<_Tp, true>
1132  : public is_nothrow_assignable<_Tp&, _Tp&&>
1133  { };
1134 
1135  /// is_nothrow_move_assignable
1136  template<typename _Tp>
1137  struct is_nothrow_move_assignable
1138  : public __is_nt_move_assignable_impl<_Tp>
1139  { };
1140 
1141  /// is_trivially_constructible
1142  template<typename _Tp, typename... _Args>
1143  struct is_trivially_constructible
1144  : public __bool_constant<__is_trivially_constructible(_Tp, _Args...)>
1145  { };
1146 
1147  /// is_trivially_default_constructible
1148  template<typename _Tp>
1149  struct is_trivially_default_constructible
1150  : public is_trivially_constructible<_Tp>::type
1151  { };
1152 
1153  struct __do_is_implicitly_default_constructible_impl
1154  {
1155  template <typename _Tp>
1156  static void __helper(const _Tp&);
1157 
1158  template <typename _Tp>
1159  static true_type __test(const _Tp&,
1160  decltype(__helper<const _Tp&>({}))* = 0);
1161 
1162  static false_type __test(...);
1163  };
1164 
1165  template<typename _Tp>
1166  struct __is_implicitly_default_constructible_impl
1167  : public __do_is_implicitly_default_constructible_impl
1168  {
1169  typedef decltype(__test(declval<_Tp>())) type;
1170  };
1171 
1172  template<typename _Tp>
1173  struct __is_implicitly_default_constructible_safe
1174  : public __is_implicitly_default_constructible_impl<_Tp>::type
1175  { };
1176 
1177  template <typename _Tp>
1178  struct __is_implicitly_default_constructible
1179  : public __and_<is_default_constructible<_Tp>,
1180  __is_implicitly_default_constructible_safe<_Tp>>
1181  { };
1182 
1183  /// is_trivially_copy_constructible
1184 
1185  template<typename _Tp, bool = __is_referenceable<_Tp>::value>
1186  struct __is_trivially_copy_constructible_impl;
1187 
1188  template<typename _Tp>
1189  struct __is_trivially_copy_constructible_impl<_Tp, false>
1190  : public false_type { };
1191 
1192  template<typename _Tp>
1193  struct __is_trivially_copy_constructible_impl<_Tp, true>
1194  : public __and_<is_copy_constructible<_Tp>,
1195  integral_constant<bool,
1196  __is_trivially_constructible(_Tp, const _Tp&)>>
1197  { };
1198 
1199  template<typename _Tp>
1200  struct is_trivially_copy_constructible
1201  : public __is_trivially_copy_constructible_impl<_Tp>
1202  { };
1203 
1204  /// is_trivially_move_constructible
1205 
1206  template<typename _Tp, bool = __is_referenceable<_Tp>::value>
1207  struct __is_trivially_move_constructible_impl;
1208 
1209  template<typename _Tp>
1210  struct __is_trivially_move_constructible_impl<_Tp, false>
1211  : public false_type { };
1212 
1213  template<typename _Tp>
1214  struct __is_trivially_move_constructible_impl<_Tp, true>
1215  : public __and_<is_move_constructible<_Tp>,
1216  integral_constant<bool,
1217  __is_trivially_constructible(_Tp, _Tp&&)>>
1218  { };
1219 
1220  template<typename _Tp>
1221  struct is_trivially_move_constructible
1222  : public __is_trivially_move_constructible_impl<_Tp>
1223  { };
1224 
1225  /// is_trivially_assignable
1226  template<typename _Tp, typename _Up>
1227  struct is_trivially_assignable
1228  : public __bool_constant<__is_trivially_assignable(_Tp, _Up)>
1229  { };
1230 
1231  /// is_trivially_copy_assignable
1232 
1233  template<typename _Tp, bool = __is_referenceable<_Tp>::value>
1234  struct __is_trivially_copy_assignable_impl;
1235 
1236  template<typename _Tp>
1237  struct __is_trivially_copy_assignable_impl<_Tp, false>
1238  : public false_type { };
1239 
1240  template<typename _Tp>
1241  struct __is_trivially_copy_assignable_impl<_Tp, true>
1242  : public __bool_constant<__is_trivially_assignable(_Tp&, const _Tp&)>
1243  { };
1244 
1245  template<typename _Tp>
1246  struct is_trivially_copy_assignable
1247  : public __is_trivially_copy_assignable_impl<_Tp>
1248  { };
1249 
1250  /// is_trivially_move_assignable
1251 
1252  template<typename _Tp, bool = __is_referenceable<_Tp>::value>
1253  struct __is_trivially_move_assignable_impl;
1254 
1255  template<typename _Tp>
1256  struct __is_trivially_move_assignable_impl<_Tp, false>
1257  : public false_type { };
1258 
1259  template<typename _Tp>
1260  struct __is_trivially_move_assignable_impl<_Tp, true>
1261  : public __bool_constant<__is_trivially_assignable(_Tp&, _Tp&&)>
1262  { };
1263 
1264  template<typename _Tp>
1265  struct is_trivially_move_assignable
1266  : public __is_trivially_move_assignable_impl<_Tp>
1267  { };
1268 
1269  /// is_trivially_destructible
1270  template<typename _Tp>
1271  struct is_trivially_destructible
1272  : public __and_<is_destructible<_Tp>,
1273  __bool_constant<__has_trivial_destructor(_Tp)>>
1274  { };
1275 
1276 
1277  /// has_virtual_destructor
1278  template<typename _Tp>
1279  struct has_virtual_destructor
1280  : public integral_constant<bool, __has_virtual_destructor(_Tp)>
1281  { };
1282 
1283 
1284  // type property queries.
1285 
1286  /// alignment_of
1287  template<typename _Tp>
1288  struct alignment_of
1289  : public integral_constant<std::size_t, alignof(_Tp)> { };
1290 
1291  /// rank
1292  template<typename>
1293  struct rank
1294  : public integral_constant<std::size_t, 0> { };
1295 
1296  template<typename _Tp, std::size_t _Size>
1297  struct rank<_Tp[_Size]>
1298  : public integral_constant<std::size_t, 1 + rank<_Tp>::value> { };
1299 
1300  template<typename _Tp>
1301  struct rank<_Tp[]>
1302  : public integral_constant<std::size_t, 1 + rank<_Tp>::value> { };
1303 
1304  /// extent
1305  template<typename, unsigned _Uint>
1306  struct extent
1307  : public integral_constant<std::size_t, 0> { };
1308 
1309  template<typename _Tp, unsigned _Uint, std::size_t _Size>
1310  struct extent<_Tp[_Size], _Uint>
1311  : public integral_constant<std::size_t,
1312  _Uint == 0 ? _Size : extent<_Tp,
1313  _Uint - 1>::value>
1314  { };
1315 
1316  template<typename _Tp, unsigned _Uint>
1317  struct extent<_Tp[], _Uint>
1318  : public integral_constant<std::size_t,
1319  _Uint == 0 ? 0 : extent<_Tp,
1320  _Uint - 1>::value>
1321  { };
1322 
1323 
1324  // Type relations.
1325 
1326  /// is_same
1327  template<typename, typename>
1328  struct is_same
1329  : public false_type { };
1330 
1331  template<typename _Tp>
1332  struct is_same<_Tp, _Tp>
1333  : public true_type { };
1334 
1335  /// is_base_of
1336  template<typename _Base, typename _Derived>
1337  struct is_base_of
1338  : public integral_constant<bool, __is_base_of(_Base, _Derived)>
1339  { };
1340 
1341  template<typename _From, typename _To,
1342  bool = __or_<is_void<_From>, is_function<_To>,
1343  is_array<_To>>::value>
1344  struct __is_convertible_helper
1345  {
1346  typedef typename is_void<_To>::type type;
1347 #if __cplusplus > 201703L
1348  typedef type __is_nothrow_type;
1349 #endif
1350  };
1351 
1352  template<typename _From, typename _To>
1353  class __is_convertible_helper<_From, _To, false>
1354  {
1355  template<typename _To1>
1356  static void __test_aux(_To1) noexcept;
1357 
1358  template<typename _From1, typename _To1,
1359  typename = decltype(__test_aux<_To1>(std::declval<_From1>()))>
1360  static true_type
1361  __test(int);
1362 
1363  template<typename, typename>
1364  static false_type
1365  __test(...);
1366 
1367 #if __cplusplus > 201703L
1368  template<typename _From1, typename _To1,
1369  bool _NoEx = noexcept(__test_aux<_To1>(std::declval<_From1>()))>
1370  static __bool_constant<_NoEx>
1371  __test_nothrow(int);
1372 
1373  template<typename, typename>
1374  static false_type
1375  __test_nothrow(...);
1376 #endif
1377 
1378  public:
1379  typedef decltype(__test<_From, _To>(0)) type;
1380 
1381 #if __cplusplus > 201703L
1382  typedef decltype(__test_nothrow<_From, _To>(0)) __is_nothrow_type;
1383 #endif
1384  };
1385 
1386 
1387  /// is_convertible
1388  template<typename _From, typename _To>
1389  struct is_convertible
1390  : public __is_convertible_helper<_From, _To>::type
1391  { };
1392 
1393 #if __cplusplus > 201703L
1394  /// is_nothrow_convertible
1395  template<typename _From, typename _To>
1396  struct is_nothrow_convertible
1397  : public __is_convertible_helper<_From, _To>::__is_nothrow_type
1398  { };
1399 
1400  /// is_nothrow_convertible_v
1401  template<typename _From, typename _To>
1402  inline constexpr bool is_nothrow_convertible_v
1403  = is_nothrow_convertible<_From, _To>::value;
1404 #endif // C++2a
1405 
1406  // Const-volatile modifications.
1407 
1408  /// remove_const
1409  template<typename _Tp>
1410  struct remove_const
1411  { typedef _Tp type; };
1412 
1413  template<typename _Tp>
1414  struct remove_const<_Tp const>
1415  { typedef _Tp type; };
1416 
1417  /// remove_volatile
1418  template<typename _Tp>
1419  struct remove_volatile
1420  { typedef _Tp type; };
1421 
1422  template<typename _Tp>
1423  struct remove_volatile<_Tp volatile>
1424  { typedef _Tp type; };
1425 
1426  /// remove_cv
1427  template<typename _Tp>
1428  struct remove_cv
1429  {
1430  typedef typename
1431  remove_const<typename remove_volatile<_Tp>::type>::type type;
1432  };
1433 
1434  /// add_const
1435  template<typename _Tp>
1436  struct add_const
1437  { typedef _Tp const type; };
1438 
1439  /// add_volatile
1440  template<typename _Tp>
1441  struct add_volatile
1442  { typedef _Tp volatile type; };
1443 
1444  /// add_cv
1445  template<typename _Tp>
1446  struct add_cv
1447  {
1448  typedef typename
1449  add_const<typename add_volatile<_Tp>::type>::type type;
1450  };
1451 
1452 #if __cplusplus > 201103L
1453 
1454 #define __cpp_lib_transformation_trait_aliases 201304
1455 
1456  /// Alias template for remove_const
1457  template<typename _Tp>
1458  using remove_const_t = typename remove_const<_Tp>::type;
1459 
1460  /// Alias template for remove_volatile
1461  template<typename _Tp>
1462  using remove_volatile_t = typename remove_volatile<_Tp>::type;
1463 
1464  /// Alias template for remove_cv
1465  template<typename _Tp>
1466  using remove_cv_t = typename remove_cv<_Tp>::type;
1467 
1468  /// Alias template for add_const
1469  template<typename _Tp>
1470  using add_const_t = typename add_const<_Tp>::type;
1471 
1472  /// Alias template for add_volatile
1473  template<typename _Tp>
1474  using add_volatile_t = typename add_volatile<_Tp>::type;
1475 
1476  /// Alias template for add_cv
1477  template<typename _Tp>
1478  using add_cv_t = typename add_cv<_Tp>::type;
1479 #endif
1480 
1481  // Reference transformations.
1482 
1483  /// remove_reference
1484  template<typename _Tp>
1485  struct remove_reference
1486  { typedef _Tp type; };
1487 
1488  template<typename _Tp>
1489  struct remove_reference<_Tp&>
1490  { typedef _Tp type; };
1491 
1492  template<typename _Tp>
1493  struct remove_reference<_Tp&&>
1494  { typedef _Tp type; };
1495 
1496  template<typename _Tp, bool = __is_referenceable<_Tp>::value>
1497  struct __add_lvalue_reference_helper
1498  { typedef _Tp type; };
1499 
1500  template<typename _Tp>
1501  struct __add_lvalue_reference_helper<_Tp, true>
1502  { typedef _Tp& type; };
1503 
1504  /// add_lvalue_reference
1505  template<typename _Tp>
1506  struct add_lvalue_reference
1507  : public __add_lvalue_reference_helper<_Tp>
1508  { };
1509 
1510  template<typename _Tp, bool = __is_referenceable<_Tp>::value>
1511  struct __add_rvalue_reference_helper
1512  { typedef _Tp type; };
1513 
1514  template<typename _Tp>
1515  struct __add_rvalue_reference_helper<_Tp, true>
1516  { typedef _Tp&& type; };
1517 
1518  /// add_rvalue_reference
1519  template<typename _Tp>
1520  struct add_rvalue_reference
1521  : public __add_rvalue_reference_helper<_Tp>
1522  { };
1523 
1524 #if __cplusplus > 201103L
1525  /// Alias template for remove_reference
1526  template<typename _Tp>
1527  using remove_reference_t = typename remove_reference<_Tp>::type;
1528 
1529  /// Alias template for add_lvalue_reference
1530  template<typename _Tp>
1531  using add_lvalue_reference_t = typename add_lvalue_reference<_Tp>::type;
1532 
1533  /// Alias template for add_rvalue_reference
1534  template<typename _Tp>
1535  using add_rvalue_reference_t = typename add_rvalue_reference<_Tp>::type;
1536 #endif
1537 
1538  // Sign modifications.
1539 
1540  // Utility for constructing identically cv-qualified types.
1541  template<typename _Unqualified, bool _IsConst, bool _IsVol>
1542  struct __cv_selector;
1543 
1544  template<typename _Unqualified>
1545  struct __cv_selector<_Unqualified, false, false>
1546  { typedef _Unqualified __type; };
1547 
1548  template<typename _Unqualified>
1549  struct __cv_selector<_Unqualified, false, true>
1550  { typedef volatile _Unqualified __type; };
1551 
1552  template<typename _Unqualified>
1553  struct __cv_selector<_Unqualified, true, false>
1554  { typedef const _Unqualified __type; };
1555 
1556  template<typename _Unqualified>
1557  struct __cv_selector<_Unqualified, true, true>
1558  { typedef const volatile _Unqualified __type; };
1559 
1560  template<typename _Qualified, typename _Unqualified,
1561  bool _IsConst = is_const<_Qualified>::value,
1562  bool _IsVol = is_volatile<_Qualified>::value>
1563  class __match_cv_qualifiers
1564  {
1565  typedef __cv_selector<_Unqualified, _IsConst, _IsVol> __match;
1566 
1567  public:
1568  typedef typename __match::__type __type;
1569  };
1570 
1571  // Utility for finding the unsigned versions of signed integral types.
1572  template<typename _Tp>
1573  struct __make_unsigned
1574  { typedef _Tp __type; };
1575 
1576  template<>
1577  struct __make_unsigned<char>
1578  { typedef unsigned char __type; };
1579 
1580  template<>
1581  struct __make_unsigned<signed char>
1582  { typedef unsigned char __type; };
1583 
1584  template<>
1585  struct __make_unsigned<short>
1586  { typedef unsigned short __type; };
1587 
1588  template<>
1589  struct __make_unsigned<int>
1590  { typedef unsigned int __type; };
1591 
1592  template<>
1593  struct __make_unsigned<long>
1594  { typedef unsigned long __type; };
1595 
1596  template<>
1597  struct __make_unsigned<long long>
1598  { typedef unsigned long long __type; };
1599 
1600 #if defined(__GLIBCXX_TYPE_INT_N_0)
1601  template<>
1602  struct __make_unsigned<__GLIBCXX_TYPE_INT_N_0>
1603  { typedef unsigned __GLIBCXX_TYPE_INT_N_0 __type; };
1604 #endif
1605 #if defined(__GLIBCXX_TYPE_INT_N_1)
1606  template<>
1607  struct __make_unsigned<__GLIBCXX_TYPE_INT_N_1>
1608  { typedef unsigned __GLIBCXX_TYPE_INT_N_1 __type; };
1609 #endif
1610 #if defined(__GLIBCXX_TYPE_INT_N_2)
1611  template<>
1612  struct __make_unsigned<__GLIBCXX_TYPE_INT_N_2>
1613  { typedef unsigned __GLIBCXX_TYPE_INT_N_2 __type; };
1614 #endif
1615 #if defined(__GLIBCXX_TYPE_INT_N_3)
1616  template<>
1617  struct __make_unsigned<__GLIBCXX_TYPE_INT_N_3>
1618  { typedef unsigned __GLIBCXX_TYPE_INT_N_3 __type; };
1619 #endif
1620 
1621  // Select between integral and enum: not possible to be both.
1622  template<typename _Tp,
1623  bool _IsInt = is_integral<_Tp>::value,
1624  bool _IsEnum = is_enum<_Tp>::value>
1625  class __make_unsigned_selector;
1626 
1627  template<typename _Tp>
1628  class __make_unsigned_selector<_Tp, true, false>
1629  {
1630  using __unsigned_type
1631  = typename __make_unsigned<typename remove_cv<_Tp>::type>::__type;
1632 
1633  public:
1634  using __type
1635  = typename __match_cv_qualifiers<_Tp, __unsigned_type>::__type;
1636  };
1637 
1638  class __make_unsigned_selector_base
1639  {
1640  protected:
1641  template<typename...> struct _List { };
1642 
1643  template<typename _Tp, typename... _Up>
1644  struct _List<_Tp, _Up...> : _List<_Up...>
1645  { static constexpr size_t __size = sizeof(_Tp); };
1646 
1647  template<size_t _Sz, typename _Tp, bool = (_Sz <= _Tp::__size)>
1648  struct __select;
1649 
1650  template<size_t _Sz, typename _Uint, typename... _UInts>
1651  struct __select<_Sz, _List<_Uint, _UInts...>, true>
1652  { using __type = _Uint; };
1653 
1654  template<size_t _Sz, typename _Uint, typename... _UInts>
1655  struct __select<_Sz, _List<_Uint, _UInts...>, false>
1656  : __select<_Sz, _List<_UInts...>>
1657  { };
1658  };
1659 
1660  // Choose unsigned integer type with the smallest rank and same size as _Tp
1661  template<typename _Tp>
1662  class __make_unsigned_selector<_Tp, false, true>
1663  : __make_unsigned_selector_base
1664  {
1665  // With -fshort-enums, an enum may be as small as a char.
1666  using _UInts = _List<unsigned char, unsigned short, unsigned int,
1667  unsigned long, unsigned long long>;
1668 
1669  using __unsigned_type = typename __select<sizeof(_Tp), _UInts>::__type;
1670 
1671  public:
1672  using __type
1673  = typename __match_cv_qualifiers<_Tp, __unsigned_type>::__type;
1674  };
1675 
1676  // wchar_t, char16_t and char32_t are integral types but are neither
1677  // signed integer types nor unsigned integer types, so must be
1678  // transformed to the unsigned integer type with the smallest rank.
1679  // Use the partial specialization for enumeration types to do that.
1680 #if defined(_GLIBCXX_USE_WCHAR_T)
1681  template<>
1682  struct __make_unsigned<wchar_t>
1683  {
1684  using __type
1685  = typename __make_unsigned_selector<wchar_t, false, true>::__type;
1686  };
1687 #endif
1688 
1689  template<>
1690  struct __make_unsigned<char16_t>
1691  {
1692  using __type
1693  = typename __make_unsigned_selector<char16_t, false, true>::__type;
1694  };
1695 
1696  template<>
1697  struct __make_unsigned<char32_t>
1698  {
1699  using __type
1700  = typename __make_unsigned_selector<char32_t, false, true>::__type;
1701  };
1702 
1703  // Given an integral/enum type, return the corresponding unsigned
1704  // integer type.
1705  // Primary template.
1706  /// make_unsigned
1707  template<typename _Tp>
1708  struct make_unsigned
1709  { typedef typename __make_unsigned_selector<_Tp>::__type type; };
1710 
1711  // Integral, but don't define.
1712  template<>
1713  struct make_unsigned<bool>;
1714 
1715 
1716  // Utility for finding the signed versions of unsigned integral types.
1717  template<typename _Tp>
1718  struct __make_signed
1719  { typedef _Tp __type; };
1720 
1721  template<>
1722  struct __make_signed<char>
1723  { typedef signed char __type; };
1724 
1725  template<>
1726  struct __make_signed<unsigned char>
1727  { typedef signed char __type; };
1728 
1729  template<>
1730  struct __make_signed<unsigned short>
1731  { typedef signed short __type; };
1732 
1733  template<>
1734  struct __make_signed<unsigned int>
1735  { typedef signed int __type; };
1736 
1737  template<>
1738  struct __make_signed<unsigned long>
1739  { typedef signed long __type; };
1740 
1741  template<>
1742  struct __make_signed<unsigned long long>
1743  { typedef signed long long __type; };
1744 
1745 #if defined(__GLIBCXX_TYPE_INT_N_0)
1746  template<>
1747  struct __make_signed<unsigned __GLIBCXX_TYPE_INT_N_0>
1748  { typedef __GLIBCXX_TYPE_INT_N_0 __type; };
1749 #endif
1750 #if defined(__GLIBCXX_TYPE_INT_N_1)
1751  template<>
1752  struct __make_signed<unsigned __GLIBCXX_TYPE_INT_N_1>
1753  { typedef __GLIBCXX_TYPE_INT_N_1 __type; };
1754 #endif
1755 #if defined(__GLIBCXX_TYPE_INT_N_2)
1756  template<>
1757  struct __make_signed<unsigned __GLIBCXX_TYPE_INT_N_2>
1758  { typedef __GLIBCXX_TYPE_INT_N_2 __type; };
1759 #endif
1760 #if defined(__GLIBCXX_TYPE_INT_N_3)
1761  template<>
1762  struct __make_signed<unsigned __GLIBCXX_TYPE_INT_N_3>
1763  { typedef __GLIBCXX_TYPE_INT_N_3 __type; };
1764 #endif
1765 
1766  // Select between integral and enum: not possible to be both.
1767  template<typename _Tp,
1768  bool _IsInt = is_integral<_Tp>::value,
1769  bool _IsEnum = is_enum<_Tp>::value>
1770  class __make_signed_selector;
1771 
1772  template<typename _Tp>
1773  class __make_signed_selector<_Tp, true, false>
1774  {
1775  using __signed_type
1776  = typename __make_signed<typename remove_cv<_Tp>::type>::__type;
1777 
1778  public:
1779  using __type
1780  = typename __match_cv_qualifiers<_Tp, __signed_type>::__type;
1781  };
1782 
1783  // Choose signed integer type with the smallest rank and same size as _Tp
1784  template<typename _Tp>
1785  class __make_signed_selector<_Tp, false, true>
1786  {
1787  typedef typename __make_unsigned_selector<_Tp>::__type __unsigned_type;
1788 
1789  public:
1790  typedef typename __make_signed_selector<__unsigned_type>::__type __type;
1791  };
1792 
1793  // wchar_t, char16_t and char32_t are integral types but are neither
1794  // signed integer types nor unsigned integer types, so must be
1795  // transformed to the signed integer type with the smallest rank.
1796  // Use the partial specialization for enumeration types to do that.
1797 #if defined(_GLIBCXX_USE_WCHAR_T)
1798  template<>
1799  struct __make_signed<wchar_t>
1800  {
1801  using __type
1802  = typename __make_signed_selector<wchar_t, false, true>::__type;
1803  };
1804 #endif
1805 
1806  template<>
1807  struct __make_signed<char16_t>
1808  {
1809  using __type
1810  = typename __make_signed_selector<char16_t, false, true>::__type;
1811  };
1812 
1813  template<>
1814  struct __make_signed<char32_t>
1815  {
1816  using __type
1817  = typename __make_signed_selector<char32_t, false, true>::__type;
1818  };
1819 
1820  // Given an integral/enum type, return the corresponding signed
1821  // integer type.
1822  // Primary template.
1823  /// make_signed
1824  template<typename _Tp>
1825  struct make_signed
1826  { typedef typename __make_signed_selector<_Tp>::__type type; };
1827 
1828  // Integral, but don't define.
1829  template<>
1830  struct make_signed<bool>;
1831 
1832 #if __cplusplus > 201103L
1833  /// Alias template for make_signed
1834  template<typename _Tp>
1835  using make_signed_t = typename make_signed<_Tp>::type;
1836 
1837  /// Alias template for make_unsigned
1838  template<typename _Tp>
1839  using make_unsigned_t = typename make_unsigned<_Tp>::type;
1840 #endif
1841 
1842  // Array modifications.
1843 
1844  /// remove_extent
1845  template<typename _Tp>
1846  struct remove_extent
1847  { typedef _Tp type; };
1848 
1849  template<typename _Tp, std::size_t _Size>
1850  struct remove_extent<_Tp[_Size]>
1851  { typedef _Tp type; };
1852 
1853  template<typename _Tp>
1854  struct remove_extent<_Tp[]>
1855  { typedef _Tp type; };
1856 
1857  /// remove_all_extents
1858  template<typename _Tp>
1859  struct remove_all_extents
1860  { typedef _Tp type; };
1861 
1862  template<typename _Tp, std::size_t _Size>
1863  struct remove_all_extents<_Tp[_Size]>
1864  { typedef typename remove_all_extents<_Tp>::type type; };
1865 
1866  template<typename _Tp>
1867  struct remove_all_extents<_Tp[]>
1868  { typedef typename remove_all_extents<_Tp>::type type; };
1869 
1870 #if __cplusplus > 201103L
1871  /// Alias template for remove_extent
1872  template<typename _Tp>
1873  using remove_extent_t = typename remove_extent<_Tp>::type;
1874 
1875  /// Alias template for remove_all_extents
1876  template<typename _Tp>
1877  using remove_all_extents_t = typename remove_all_extents<_Tp>::type;
1878 #endif
1879 
1880  // Pointer modifications.
1881 
1882  template<typename _Tp, typename>
1883  struct __remove_pointer_helper
1884  { typedef _Tp type; };
1885 
1886  template<typename _Tp, typename _Up>
1887  struct __remove_pointer_helper<_Tp, _Up*>
1888  { typedef _Up type; };
1889 
1890  /// remove_pointer
1891  template<typename _Tp>
1892  struct remove_pointer
1893  : public __remove_pointer_helper<_Tp, typename remove_cv<_Tp>::type>
1894  { };
1895 
1896  /// add_pointer
1897  template<typename _Tp, bool = __or_<__is_referenceable<_Tp>,
1898  is_void<_Tp>>::value>
1899  struct __add_pointer_helper
1900  { typedef _Tp type; };
1901 
1902  template<typename _Tp>
1903  struct __add_pointer_helper<_Tp, true>
1904  { typedef typename remove_reference<_Tp>::type* type; };
1905 
1906  template<typename _Tp>
1907  struct add_pointer
1908  : public __add_pointer_helper<_Tp>
1909  { };
1910 
1911 #if __cplusplus > 201103L
1912  /// Alias template for remove_pointer
1913  template<typename _Tp>
1914  using remove_pointer_t = typename remove_pointer<_Tp>::type;
1915 
1916  /// Alias template for add_pointer
1917  template<typename _Tp>
1918  using add_pointer_t = typename add_pointer<_Tp>::type;
1919 #endif
1920 
1921  template<std::size_t _Len>
1922  struct __aligned_storage_msa
1923  {
1924  union __type
1925  {
1926  unsigned char __data[_Len];
1927  struct __attribute__((__aligned__)) { } __align;
1928  };
1929  };
1930 
1931  /**
1932  * @brief Alignment type.
1933  *
1934  * The value of _Align is a default-alignment which shall be the
1935  * most stringent alignment requirement for any C++ object type
1936  * whose size is no greater than _Len (3.9). The member typedef
1937  * type shall be a POD type suitable for use as uninitialized
1938  * storage for any object whose size is at most _Len and whose
1939  * alignment is a divisor of _Align.
1940  */
1941  template<std::size_t _Len, std::size_t _Align =
1942  __alignof__(typename __aligned_storage_msa<_Len>::__type)>
1943  struct aligned_storage
1944  {
1945  union type
1946  {
1947  unsigned char __data[_Len];
1948  struct __attribute__((__aligned__((_Align)))) { } __align;
1949  };
1950  };
1951 
1952  template <typename... _Types>
1953  struct __strictest_alignment
1954  {
1955  static const size_t _S_alignment = 0;
1956  static const size_t _S_size = 0;
1957  };
1958 
1959  template <typename _Tp, typename... _Types>
1960  struct __strictest_alignment<_Tp, _Types...>
1961  {
1962  static const size_t _S_alignment =
1963  alignof(_Tp) > __strictest_alignment<_Types...>::_S_alignment
1964  ? alignof(_Tp) : __strictest_alignment<_Types...>::_S_alignment;
1965  static const size_t _S_size =
1966  sizeof(_Tp) > __strictest_alignment<_Types...>::_S_size
1967  ? sizeof(_Tp) : __strictest_alignment<_Types...>::_S_size;
1968  };
1969 
1970  /**
1971  * @brief Provide aligned storage for types.
1972  *
1973  * [meta.trans.other]
1974  *
1975  * Provides aligned storage for any of the provided types of at
1976  * least size _Len.
1977  *
1978  * @see aligned_storage
1979  */
1980  template <size_t _Len, typename... _Types>
1981  struct aligned_union
1982  {
1983  private:
1984  static_assert(sizeof...(_Types) != 0, "At least one type is required");
1985 
1986  using __strictest = __strictest_alignment<_Types...>;
1987  static const size_t _S_len = _Len > __strictest::_S_size
1988  ? _Len : __strictest::_S_size;
1989  public:
1990  /// The value of the strictest alignment of _Types.
1991  static const size_t alignment_value = __strictest::_S_alignment;
1992  /// The storage.
1993  typedef typename aligned_storage<_S_len, alignment_value>::type type;
1994  };
1995 
1996  template <size_t _Len, typename... _Types>
1997  const size_t aligned_union<_Len, _Types...>::alignment_value;
1998 
1999  // Decay trait for arrays and functions, used for perfect forwarding
2000  // in make_pair, make_tuple, etc.
2001  template<typename _Up,
2002  bool _IsArray = is_array<_Up>::value,
2003  bool _IsFunction = is_function<_Up>::value>
2004  struct __decay_selector;
2005 
2006  // NB: DR 705.
2007  template<typename _Up>
2008  struct __decay_selector<_Up, false, false>
2009  { typedef typename remove_cv<_Up>::type __type; };
2010 
2011  template<typename _Up>
2012  struct __decay_selector<_Up, true, false>
2013  { typedef typename remove_extent<_Up>::type* __type; };
2014 
2015  template<typename _Up>
2016  struct __decay_selector<_Up, false, true>
2017  { typedef typename add_pointer<_Up>::type __type; };
2018 
2019  /// decay
2020  template<typename _Tp>
2021  class decay
2022  {
2023  typedef typename remove_reference<_Tp>::type __remove_type;
2024 
2025  public:
2026  typedef typename __decay_selector<__remove_type>::__type type;
2027  };
2028 
2029  template<typename _Tp>
2030  class reference_wrapper;
2031 
2032  // Helper which adds a reference to a type when given a reference_wrapper
2033  template<typename _Tp>
2034  struct __strip_reference_wrapper
2035  {
2036  typedef _Tp __type;
2037  };
2038 
2039  template<typename _Tp>
2040  struct __strip_reference_wrapper<reference_wrapper<_Tp> >
2041  {
2042  typedef _Tp& __type;
2043  };
2044 
2045  template<typename _Tp>
2046  struct __decay_and_strip
2047  {
2048  typedef typename __strip_reference_wrapper<
2049  typename decay<_Tp>::type>::__type __type;
2050  };
2051 
2052 
2053  // Primary template.
2054  /// Define a member typedef @c type only if a boolean constant is true.
2055  template<bool, typename _Tp = void>
2056  struct enable_if
2057  { };
2058 
2059  // Partial specialization for true.
2060  template<typename _Tp>
2061  struct enable_if<true, _Tp>
2062  { typedef _Tp type; };
2063 
2064  template<typename... _Cond>
2065  using _Require = typename enable_if<__and_<_Cond...>::value>::type;
2066 
2067  // Primary template.
2068  /// Define a member typedef @c type to one of two argument types.
2069  template<bool _Cond, typename _Iftrue, typename _Iffalse>
2070  struct conditional
2071  { typedef _Iftrue type; };
2072 
2073  // Partial specialization for false.
2074  template<typename _Iftrue, typename _Iffalse>
2075  struct conditional<false, _Iftrue, _Iffalse>
2076  { typedef _Iffalse type; };
2077 
2078  /// common_type
2079  template<typename... _Tp>
2080  struct common_type;
2081 
2082  // Sfinae-friendly common_type implementation:
2083 
2084  struct __do_common_type_impl
2085  {
2086  template<typename _Tp, typename _Up>
2087  static __success_type<typename decay<decltype
2088  (true ? std::declval<_Tp>()
2089  : std::declval<_Up>())>::type> _S_test(int);
2090 
2091  template<typename, typename>
2092  static __failure_type _S_test(...);
2093  };
2094 
2095  template<typename _Tp, typename _Up>
2096  struct __common_type_impl
2097  : private __do_common_type_impl
2098  {
2099  typedef decltype(_S_test<_Tp, _Up>(0)) type;
2100  };
2101 
2102  struct __do_member_type_wrapper
2103  {
2104  template<typename _Tp>
2105  static __success_type<typename _Tp::type> _S_test(int);
2106 
2107  template<typename>
2108  static __failure_type _S_test(...);
2109  };
2110 
2111  template<typename _Tp>
2112  struct __member_type_wrapper
2113  : private __do_member_type_wrapper
2114  {
2115  typedef decltype(_S_test<_Tp>(0)) type;
2116  };
2117 
2118  template<typename _CTp, typename... _Args>
2119  struct __expanded_common_type_wrapper
2120  {
2121  typedef common_type<typename _CTp::type, _Args...> type;
2122  };
2123 
2124  template<typename... _Args>
2125  struct __expanded_common_type_wrapper<__failure_type, _Args...>
2126  { typedef __failure_type type; };
2127 
2128  template<typename _Tp>
2129  struct common_type<_Tp>
2130  { typedef typename decay<_Tp>::type type; };
2131 
2132  template<typename _Tp, typename _Up>
2133  struct common_type<_Tp, _Up>
2134  : public __common_type_impl<_Tp, _Up>::type
2135  { };
2136 
2137  template<typename _Tp, typename _Up, typename... _Vp>
2138  struct common_type<_Tp, _Up, _Vp...>
2139  : public __expanded_common_type_wrapper<typename __member_type_wrapper<
2140  common_type<_Tp, _Up>>::type, _Vp...>::type
2141  { };
2142 
2143  /// The underlying type of an enum.
2144  template<typename _Tp>
2145  struct underlying_type
2146  {
2147  typedef __underlying_type(_Tp) type;
2148  };
2149 
2150  template<typename _Tp>
2151  struct __declval_protector
2152  {
2153  static const bool __stop = false;
2154  };
2155 
2156  template<typename _Tp>
2157  auto declval() noexcept -> decltype(__declval<_Tp>(0))
2158  {
2159  static_assert(__declval_protector<_Tp>::__stop,
2160  "declval() must not be used!");
2161  return __declval<_Tp>(0);
2162  }
2163 
2164  // __remove_cvref_t (std::remove_cvref_t for C++11).
2165  template<typename _Tp>
2166  using __remove_cvref_t
2167  = typename remove_cv<typename remove_reference<_Tp>::type>::type;
2168 
2169  /// result_of
2170  template<typename _Signature>
2171  class result_of;
2172 
2173  // Sfinae-friendly result_of implementation:
2174 
2175 #define __cpp_lib_result_of_sfinae 201210
2176 
2177  struct __invoke_memfun_ref { };
2178  struct __invoke_memfun_deref { };
2179  struct __invoke_memobj_ref { };
2180  struct __invoke_memobj_deref { };
2181  struct __invoke_other { };
2182 
2183  // Associate a tag type with a specialization of __success_type.
2184  template<typename _Tp, typename _Tag>
2185  struct __result_of_success : __success_type<_Tp>
2186  { using __invoke_type = _Tag; };
2187 
2188  // [func.require] paragraph 1 bullet 1:
2189  struct __result_of_memfun_ref_impl
2190  {
2191  template<typename _Fp, typename _Tp1, typename... _Args>
2192  static __result_of_success<decltype(
2193  (std::declval<_Tp1>().*std::declval<_Fp>())(std::declval<_Args>()...)
2194  ), __invoke_memfun_ref> _S_test(int);
2195 
2196  template<typename...>
2197  static __failure_type _S_test(...);
2198  };
2199 
2200  template<typename _MemPtr, typename _Arg, typename... _Args>
2201  struct __result_of_memfun_ref
2202  : private __result_of_memfun_ref_impl
2203  {
2204  typedef decltype(_S_test<_MemPtr, _Arg, _Args...>(0)) type;
2205  };
2206 
2207  // [func.require] paragraph 1 bullet 2:
2208  struct __result_of_memfun_deref_impl
2209  {
2210  template<typename _Fp, typename _Tp1, typename... _Args>
2211  static __result_of_success<decltype(
2212  ((*std::declval<_Tp1>()).*std::declval<_Fp>())(std::declval<_Args>()...)
2213  ), __invoke_memfun_deref> _S_test(int);
2214 
2215  template<typename...>
2216  static __failure_type _S_test(...);
2217  };
2218 
2219  template<typename _MemPtr, typename _Arg, typename... _Args>
2220  struct __result_of_memfun_deref
2221  : private __result_of_memfun_deref_impl
2222  {
2223  typedef decltype(_S_test<_MemPtr, _Arg, _Args...>(0)) type;
2224  };
2225 
2226  // [func.require] paragraph 1 bullet 3:
2227  struct __result_of_memobj_ref_impl
2228  {
2229  template<typename _Fp, typename _Tp1>
2230  static __result_of_success<decltype(
2231  std::declval<_Tp1>().*std::declval<_Fp>()
2232  ), __invoke_memobj_ref> _S_test(int);
2233 
2234  template<typename, typename>
2235  static __failure_type _S_test(...);
2236  };
2237 
2238  template<typename _MemPtr, typename _Arg>
2239  struct __result_of_memobj_ref
2240  : private __result_of_memobj_ref_impl
2241  {
2242  typedef decltype(_S_test<_MemPtr, _Arg>(0)) type;
2243  };
2244 
2245  // [func.require] paragraph 1 bullet 4:
2246  struct __result_of_memobj_deref_impl
2247  {
2248  template<typename _Fp, typename _Tp1>
2249  static __result_of_success<decltype(
2250  (*std::declval<_Tp1>()).*std::declval<_Fp>()
2251  ), __invoke_memobj_deref> _S_test(int);
2252 
2253  template<typename, typename>
2254  static __failure_type _S_test(...);
2255  };
2256 
2257  template<typename _MemPtr, typename _Arg>
2258  struct __result_of_memobj_deref
2259  : private __result_of_memobj_deref_impl
2260  {
2261  typedef decltype(_S_test<_MemPtr, _Arg>(0)) type;
2262  };
2263 
2264  template<typename _MemPtr, typename _Arg>
2265  struct __result_of_memobj;
2266 
2267  template<typename _Res, typename _Class, typename _Arg>
2268  struct __result_of_memobj<_Res _Class::*, _Arg>
2269  {
2270  typedef __remove_cvref_t<_Arg> _Argval;
2271  typedef _Res _Class::* _MemPtr;
2272  typedef typename conditional<__or_<is_same<_Argval, _Class>,
2273  is_base_of<_Class, _Argval>>::value,
2274  __result_of_memobj_ref<_MemPtr, _Arg>,
2275  __result_of_memobj_deref<_MemPtr, _Arg>
2276  >::type::type type;
2277  };
2278 
2279  template<typename _MemPtr, typename _Arg, typename... _Args>
2280  struct __result_of_memfun;
2281 
2282  template<typename _Res, typename _Class, typename _Arg, typename... _Args>
2283  struct __result_of_memfun<_Res _Class::*, _Arg, _Args...>
2284  {
2285  typedef __remove_cvref_t<_Arg> _Argval;
2286  typedef _Res _Class::* _MemPtr;
2287  typedef typename conditional<__or_<is_same<_Argval, _Class>,
2288  is_base_of<_Class, _Argval>>::value,
2289  __result_of_memfun_ref<_MemPtr, _Arg, _Args...>,
2290  __result_of_memfun_deref<_MemPtr, _Arg, _Args...>
2291  >::type::type type;
2292  };
2293 
2294  // _GLIBCXX_RESOLVE_LIB_DEFECTS
2295  // 2219. INVOKE-ing a pointer to member with a reference_wrapper
2296  // as the object expression
2297 
2298  // Used by result_of, invoke etc. to unwrap a reference_wrapper.
2299  template<typename _Tp, typename _Up = typename decay<_Tp>::type>
2300  struct __inv_unwrap
2301  {
2302  using type = _Tp;
2303  };
2304 
2305  template<typename _Tp, typename _Up>
2306  struct __inv_unwrap<_Tp, reference_wrapper<_Up>>
2307  {
2308  using type = _Up&;
2309  };
2310 
2311  template<bool, bool, typename _Functor, typename... _ArgTypes>
2312  struct __result_of_impl
2313  {
2314  typedef __failure_type type;
2315  };
2316 
2317  template<typename _MemPtr, typename _Arg>
2318  struct __result_of_impl<true, false, _MemPtr, _Arg>
2319  : public __result_of_memobj<typename decay<_MemPtr>::type,
2320  typename __inv_unwrap<_Arg>::type>
2321  { };
2322 
2323  template<typename _MemPtr, typename _Arg, typename... _Args>
2324  struct __result_of_impl<false, true, _MemPtr, _Arg, _Args...>
2325  : public __result_of_memfun<typename decay<_MemPtr>::type,
2326  typename __inv_unwrap<_Arg>::type, _Args...>
2327  { };
2328 
2329  // [func.require] paragraph 1 bullet 5:
2330  struct __result_of_other_impl
2331  {
2332  template<typename _Fn, typename... _Args>
2333  static __result_of_success<decltype(
2334  std::declval<_Fn>()(std::declval<_Args>()...)
2335  ), __invoke_other> _S_test(int);
2336 
2337  template<typename...>
2338  static __failure_type _S_test(...);
2339  };
2340 
2341  template<typename _Functor, typename... _ArgTypes>
2342  struct __result_of_impl<false, false, _Functor, _ArgTypes...>
2343  : private __result_of_other_impl
2344  {
2345  typedef decltype(_S_test<_Functor, _ArgTypes...>(0)) type;
2346  };
2347 
2348  // __invoke_result (std::invoke_result for C++11)
2349  template<typename _Functor, typename... _ArgTypes>
2350  struct __invoke_result
2351  : public __result_of_impl<
2352  is_member_object_pointer<
2353  typename remove_reference<_Functor>::type
2354  >::value,
2355  is_member_function_pointer<
2356  typename remove_reference<_Functor>::type
2357  >::value,
2358  _Functor, _ArgTypes...
2359  >::type
2360  { };
2361 
2362  template<typename _Functor, typename... _ArgTypes>
2363  struct result_of<_Functor(_ArgTypes...)>
2364  : public __invoke_result<_Functor, _ArgTypes...>
2365  { };
2366 
2367 #if __cplusplus >= 201402L
2368  /// Alias template for aligned_storage
2369  template<size_t _Len, size_t _Align =
2370  __alignof__(typename __aligned_storage_msa<_Len>::__type)>
2371  using aligned_storage_t = typename aligned_storage<_Len, _Align>::type;
2372 
2373  template <size_t _Len, typename... _Types>
2374  using aligned_union_t = typename aligned_union<_Len, _Types...>::type;
2375 
2376  /// Alias template for decay
2377  template<typename _Tp>
2378  using decay_t = typename decay<_Tp>::type;
2379 
2380  /// Alias template for enable_if
2381  template<bool _Cond, typename _Tp = void>
2382  using enable_if_t = typename enable_if<_Cond, _Tp>::type;
2383 
2384  /// Alias template for conditional
2385  template<bool _Cond, typename _Iftrue, typename _Iffalse>
2386  using conditional_t = typename conditional<_Cond, _Iftrue, _Iffalse>::type;
2387 
2388  /// Alias template for common_type
2389  template<typename... _Tp>
2390  using common_type_t = typename common_type<_Tp...>::type;
2391 
2392  /// Alias template for underlying_type
2393  template<typename _Tp>
2394  using underlying_type_t = typename underlying_type<_Tp>::type;
2395 
2396  /// Alias template for result_of
2397  template<typename _Tp>
2398  using result_of_t = typename result_of<_Tp>::type;
2399 #endif // C++14
2400 
2401  // __enable_if_t (std::enable_if_t for C++11)
2402  template<bool _Cond, typename _Tp = void>
2403  using __enable_if_t = typename enable_if<_Cond, _Tp>::type;
2404 
2405  // __void_t (std::void_t for C++11)
2406  template<typename...> using __void_t = void;
2407 
2408 #if __cplusplus >= 201703L || !defined(__STRICT_ANSI__) // c++17 or gnu++11
2409 #define __cpp_lib_void_t 201411
2410  /// A metafunction that always yields void, used for detecting valid types.
2411  template<typename...> using void_t = void;
2412 #endif
2413 
2414  /// Implementation of the detection idiom (negative case).
2415  template<typename _Default, typename _AlwaysVoid,
2416  template<typename...> class _Op, typename... _Args>
2417  struct __detector
2418  {
2419  using value_t = false_type;
2420  using type = _Default;
2421  };
2422 
2423  /// Implementation of the detection idiom (positive case).
2424  template<typename _Default, template<typename...> class _Op,
2425  typename... _Args>
2426  struct __detector<_Default, __void_t<_Op<_Args...>>, _Op, _Args...>
2427  {
2428  using value_t = true_type;
2429  using type = _Op<_Args...>;
2430  };
2431 
2432  // Detect whether _Op<_Args...> is a valid type, use _Default if not.
2433  template<typename _Default, template<typename...> class _Op,
2434  typename... _Args>
2435  using __detected_or = __detector<_Default, void, _Op, _Args...>;
2436 
2437  // _Op<_Args...> if that is a valid type, otherwise _Default.
2438  template<typename _Default, template<typename...> class _Op,
2439  typename... _Args>
2440  using __detected_or_t
2441  = typename __detected_or<_Default, _Op, _Args...>::type;
2442 
2443  /// @} group metaprogramming
2444 
2445  /**
2446  * Use SFINAE to determine if the type _Tp has a publicly-accessible
2447  * member type _NTYPE.
2448  */
2449 #define _GLIBCXX_HAS_NESTED_TYPE(_NTYPE) \
2450  template<typename _Tp, typename = __void_t<>> \
2451  struct __has_##_NTYPE \
2452  : false_type \
2453  { }; \
2454  template<typename _Tp> \
2455  struct __has_##_NTYPE<_Tp, __void_t<typename _Tp::_NTYPE>> \
2456  : true_type \
2457  { };
2458 
2459  template <typename _Tp>
2460  struct __is_swappable;
2461 
2462  template <typename _Tp>
2463  struct __is_nothrow_swappable;
2464 
2465  template<typename... _Elements>
2466  class tuple;
2467 
2468  template<typename>
2469  struct __is_tuple_like_impl : false_type
2470  { };
2471 
2472  template<typename... _Tps>
2473  struct __is_tuple_like_impl<tuple<_Tps...>> : true_type
2474  { };
2475 
2476  // Internal type trait that allows us to sfinae-protect tuple_cat.
2477  template<typename _Tp>
2478  struct __is_tuple_like
2479  : public __is_tuple_like_impl<__remove_cvref_t<_Tp>>::type
2480  { };
2481 
2482  template<typename _Tp>
2483  inline
2484  typename enable_if<__and_<__not_<__is_tuple_like<_Tp>>,
2485  is_move_constructible<_Tp>,
2486  is_move_assignable<_Tp>>::value>::type
2487  swap(_Tp&, _Tp&)
2488  noexcept(__and_<is_nothrow_move_constructible<_Tp>,
2489  is_nothrow_move_assignable<_Tp>>::value);
2490 
2491  template<typename _Tp, size_t _Nm>
2492  inline
2493  typename enable_if<__is_swappable<_Tp>::value>::type
2494  swap(_Tp (&__a)[_Nm], _Tp (&__b)[_Nm])
2495  noexcept(__is_nothrow_swappable<_Tp>::value);
2496 
2497  namespace __swappable_details {
2498  using std::swap;
2499 
2500  struct __do_is_swappable_impl
2501  {
2502  template<typename _Tp, typename
2503  = decltype(swap(std::declval<_Tp&>(), std::declval<_Tp&>()))>
2504  static true_type __test(int);
2505 
2506  template<typename>
2507  static false_type __test(...);
2508  };
2509 
2510  struct __do_is_nothrow_swappable_impl
2511  {
2512  template<typename _Tp>
2513  static __bool_constant<
2514  noexcept(swap(std::declval<_Tp&>(), std::declval<_Tp&>()))
2515  > __test(int);
2516 
2517  template<typename>
2518  static false_type __test(...);
2519  };
2520 
2521  } // namespace __swappable_details
2522 
2523  template<typename _Tp>
2524  struct __is_swappable_impl
2525  : public __swappable_details::__do_is_swappable_impl
2526  {
2527  typedef decltype(__test<_Tp>(0)) type;
2528  };
2529 
2530  template<typename _Tp>
2531  struct __is_nothrow_swappable_impl
2532  : public __swappable_details::__do_is_nothrow_swappable_impl
2533  {
2534  typedef decltype(__test<_Tp>(0)) type;
2535  };
2536 
2537  template<typename _Tp>
2538  struct __is_swappable
2539  : public __is_swappable_impl<_Tp>::type
2540  { };
2541 
2542  template<typename _Tp>
2543  struct __is_nothrow_swappable
2544  : public __is_nothrow_swappable_impl<_Tp>::type
2545  { };
2546 
2547 #if __cplusplus > 201402L || !defined(__STRICT_ANSI__) // c++1z or gnu++11
2548 #define __cpp_lib_is_swappable 201603
2549  /// Metafunctions used for detecting swappable types: p0185r1
2550 
2551  /// is_swappable
2552  template<typename _Tp>
2553  struct is_swappable
2554  : public __is_swappable_impl<_Tp>::type
2555  { };
2556 
2557  /// is_nothrow_swappable
2558  template<typename _Tp>
2559  struct is_nothrow_swappable
2560  : public __is_nothrow_swappable_impl<_Tp>::type
2561  { };
2562 
2563 #if __cplusplus >= 201402L
2564  /// is_swappable_v
2565  template<typename _Tp>
2566  _GLIBCXX17_INLINE constexpr bool is_swappable_v =
2567  is_swappable<_Tp>::value;
2568 
2569  /// is_nothrow_swappable_v
2570  template<typename _Tp>
2571  _GLIBCXX17_INLINE constexpr bool is_nothrow_swappable_v =
2572  is_nothrow_swappable<_Tp>::value;
2573 #endif // __cplusplus >= 201402L
2574 
2575  namespace __swappable_with_details {
2576  using std::swap;
2577 
2578  struct __do_is_swappable_with_impl
2579  {
2580  template<typename _Tp, typename _Up, typename
2581  = decltype(swap(std::declval<_Tp>(), std::declval<_Up>())),
2582  typename
2583  = decltype(swap(std::declval<_Up>(), std::declval<_Tp>()))>
2584  static true_type __test(int);
2585 
2586  template<typename, typename>
2587  static false_type __test(...);
2588  };
2589 
2590  struct __do_is_nothrow_swappable_with_impl
2591  {
2592  template<typename _Tp, typename _Up>
2593  static __bool_constant<
2594  noexcept(swap(std::declval<_Tp>(), std::declval<_Up>()))
2595  &&
2596  noexcept(swap(std::declval<_Up>(), std::declval<_Tp>()))
2597  > __test(int);
2598 
2599  template<typename, typename>
2600  static false_type __test(...);
2601  };
2602 
2603  } // namespace __swappable_with_details
2604 
2605  template<typename _Tp, typename _Up>
2606  struct __is_swappable_with_impl
2607  : public __swappable_with_details::__do_is_swappable_with_impl
2608  {
2609  typedef decltype(__test<_Tp, _Up>(0)) type;
2610  };
2611 
2612  // Optimization for the homogenous lvalue case, not required:
2613  template<typename _Tp>
2614  struct __is_swappable_with_impl<_Tp&, _Tp&>
2615  : public __swappable_details::__do_is_swappable_impl
2616  {
2617  typedef decltype(__test<_Tp&>(0)) type;
2618  };
2619 
2620  template<typename _Tp, typename _Up>
2621  struct __is_nothrow_swappable_with_impl
2622  : public __swappable_with_details::__do_is_nothrow_swappable_with_impl
2623  {
2624  typedef decltype(__test<_Tp, _Up>(0)) type;
2625  };
2626 
2627  // Optimization for the homogenous lvalue case, not required:
2628  template<typename _Tp>
2629  struct __is_nothrow_swappable_with_impl<_Tp&, _Tp&>
2630  : public __swappable_details::__do_is_nothrow_swappable_impl
2631  {
2632  typedef decltype(__test<_Tp&>(0)) type;
2633  };
2634 
2635  /// is_swappable_with
2636  template<typename _Tp, typename _Up>
2637  struct is_swappable_with
2638  : public __is_swappable_with_impl<_Tp, _Up>::type
2639  { };
2640 
2641  /// is_nothrow_swappable_with
2642  template<typename _Tp, typename _Up>
2643  struct is_nothrow_swappable_with
2644  : public __is_nothrow_swappable_with_impl<_Tp, _Up>::type
2645  { };
2646 
2647 #if __cplusplus >= 201402L
2648  /// is_swappable_with_v
2649  template<typename _Tp, typename _Up>
2650  _GLIBCXX17_INLINE constexpr bool is_swappable_with_v =
2651  is_swappable_with<_Tp, _Up>::value;
2652 
2653  /// is_nothrow_swappable_with_v
2654  template<typename _Tp, typename _Up>
2655  _GLIBCXX17_INLINE constexpr bool is_nothrow_swappable_with_v =
2656  is_nothrow_swappable_with<_Tp, _Up>::value;
2657 #endif // __cplusplus >= 201402L
2658 
2659 #endif// c++1z or gnu++11
2660 
2661  // __is_invocable (std::is_invocable for C++11)
2662 
2663  template<typename _Result, typename _Ret, typename = void>
2664  struct __is_invocable_impl : false_type { };
2665 
2666  template<typename _Result, typename _Ret>
2667  struct __is_invocable_impl<_Result, _Ret, __void_t<typename _Result::type>>
2668  : __or_<is_void<_Ret>, is_convertible<typename _Result::type, _Ret>>::type
2669  { };
2670 
2671  template<typename _Fn, typename... _ArgTypes>
2672  struct __is_invocable
2673  : __is_invocable_impl<__invoke_result<_Fn, _ArgTypes...>, void>::type
2674  { };
2675 
2676  template<typename _Fn, typename _Tp, typename... _Args>
2677  constexpr bool __call_is_nt(__invoke_memfun_ref)
2678  {
2679  using _Up = typename __inv_unwrap<_Tp>::type;
2680  return noexcept((std::declval<_Up>().*std::declval<_Fn>())(
2681  std::declval<_Args>()...));
2682  }
2683 
2684  template<typename _Fn, typename _Tp, typename... _Args>
2685  constexpr bool __call_is_nt(__invoke_memfun_deref)
2686  {
2687  return noexcept(((*std::declval<_Tp>()).*std::declval<_Fn>())(
2688  std::declval<_Args>()...));
2689  }
2690 
2691  template<typename _Fn, typename _Tp>
2692  constexpr bool __call_is_nt(__invoke_memobj_ref)
2693  {
2694  using _Up = typename __inv_unwrap<_Tp>::type;
2695  return noexcept(std::declval<_Up>().*std::declval<_Fn>());
2696  }
2697 
2698  template<typename _Fn, typename _Tp>
2699  constexpr bool __call_is_nt(__invoke_memobj_deref)
2700  {
2701  return noexcept((*std::declval<_Tp>()).*std::declval<_Fn>());
2702  }
2703 
2704  template<typename _Fn, typename... _Args>
2705  constexpr bool __call_is_nt(__invoke_other)
2706  {
2707  return noexcept(std::declval<_Fn>()(std::declval<_Args>()...));
2708  }
2709 
2710  template<typename _Result, typename _Fn, typename... _Args>
2711  struct __call_is_nothrow
2712  : __bool_constant<
2713  std::__call_is_nt<_Fn, _Args...>(typename _Result::__invoke_type{})
2714  >
2715  { };
2716 
2717  template<typename _Fn, typename... _Args>
2718  using __call_is_nothrow_
2719  = __call_is_nothrow<__invoke_result<_Fn, _Args...>, _Fn, _Args...>;
2720 
2721  // __is_nothrow_invocable (std::is_nothrow_invocable for C++11)
2722  template<typename _Fn, typename... _Args>
2723  struct __is_nothrow_invocable
2724  : __and_<__is_invocable<_Fn, _Args...>,
2725  __call_is_nothrow_<_Fn, _Args...>>::type
2726  { };
2727 
2728  struct __nonesuch {
2729  __nonesuch() = delete;
2730  ~__nonesuch() = delete;
2731  __nonesuch(__nonesuch const&) = delete;
2732  void operator=(__nonesuch const&) = delete;
2733  };
2734 
2735 #if __cplusplus >= 201703L
2736 # define __cpp_lib_is_invocable 201703
2737 
2738  /// std::invoke_result
2739  template<typename _Functor, typename... _ArgTypes>
2740  struct invoke_result
2741  : public __invoke_result<_Functor, _ArgTypes...>
2742  { };
2743 
2744  /// std::invoke_result_t
2745  template<typename _Fn, typename... _Args>
2746  using invoke_result_t = typename invoke_result<_Fn, _Args...>::type;
2747 
2748  /// std::is_invocable
2749  template<typename _Fn, typename... _ArgTypes>
2750  struct is_invocable
2751  : __is_invocable_impl<__invoke_result<_Fn, _ArgTypes...>, void>::type
2752  { };
2753 
2754  /// std::is_invocable_r
2755  template<typename _Ret, typename _Fn, typename... _ArgTypes>
2756  struct is_invocable_r
2757  : __is_invocable_impl<__invoke_result<_Fn, _ArgTypes...>, _Ret>::type
2758  { };
2759 
2760  /// std::is_nothrow_invocable
2761  template<typename _Fn, typename... _ArgTypes>
2762  struct is_nothrow_invocable
2763  : __and_<__is_invocable_impl<__invoke_result<_Fn, _ArgTypes...>, void>,
2764  __call_is_nothrow_<_Fn, _ArgTypes...>>::type
2765  { };
2766 
2767  template<typename _Result, typename _Ret, typename = void>
2768  struct __is_nt_invocable_impl : false_type { };
2769 
2770  template<typename _Result, typename _Ret>
2771  struct __is_nt_invocable_impl<_Result, _Ret,
2772  __void_t<typename _Result::type>>
2773  : __or_<is_void<_Ret>,
2774  __and_<is_convertible<typename _Result::type, _Ret>,
2775  is_nothrow_constructible<_Ret, typename _Result::type>>>
2776  { };
2777 
2778  /// std::is_nothrow_invocable_r
2779  template<typename _Ret, typename _Fn, typename... _ArgTypes>
2780  struct is_nothrow_invocable_r
2781  : __and_<__is_nt_invocable_impl<__invoke_result<_Fn, _ArgTypes...>, _Ret>,
2782  __call_is_nothrow_<_Fn, _ArgTypes...>>::type
2783  { };
2784 
2785  /// std::is_invocable_v
2786  template<typename _Fn, typename... _Args>
2787  inline constexpr bool is_invocable_v = is_invocable<_Fn, _Args...>::value;
2788 
2789  /// std::is_nothrow_invocable_v
2790  template<typename _Fn, typename... _Args>
2791  inline constexpr bool is_nothrow_invocable_v
2792  = is_nothrow_invocable<_Fn, _Args...>::value;
2793 
2794  /// std::is_invocable_r_v
2795  template<typename _Fn, typename... _Args>
2796  inline constexpr bool is_invocable_r_v
2797  = is_invocable_r<_Fn, _Args...>::value;
2798 
2799  /// std::is_nothrow_invocable_r_v
2800  template<typename _Fn, typename... _Args>
2801  inline constexpr bool is_nothrow_invocable_r_v
2802  = is_nothrow_invocable_r<_Fn, _Args...>::value;
2803 #endif // C++17
2804 
2805 #if __cplusplus >= 201703L
2806 # define __cpp_lib_type_trait_variable_templates 201510L
2807 template <typename _Tp>
2808  inline constexpr bool is_void_v = is_void<_Tp>::value;
2809 template <typename _Tp>
2810  inline constexpr bool is_null_pointer_v = is_null_pointer<_Tp>::value;
2811 template <typename _Tp>
2812  inline constexpr bool is_integral_v = is_integral<_Tp>::value;
2813 template <typename _Tp>
2814  inline constexpr bool is_floating_point_v = is_floating_point<_Tp>::value;
2815 template <typename _Tp>
2816  inline constexpr bool is_array_v = is_array<_Tp>::value;
2817 template <typename _Tp>
2818  inline constexpr bool is_pointer_v = is_pointer<_Tp>::value;
2819 template <typename _Tp>
2820  inline constexpr bool is_lvalue_reference_v =
2821  is_lvalue_reference<_Tp>::value;
2822 template <typename _Tp>
2823  inline constexpr bool is_rvalue_reference_v =
2824  is_rvalue_reference<_Tp>::value;
2825 template <typename _Tp>
2826  inline constexpr bool is_member_object_pointer_v =
2827  is_member_object_pointer<_Tp>::value;
2828 template <typename _Tp>
2829  inline constexpr bool is_member_function_pointer_v =
2830  is_member_function_pointer<_Tp>::value;
2831 template <typename _Tp>
2832  inline constexpr bool is_enum_v = is_enum<_Tp>::value;
2833 template <typename _Tp>
2834  inline constexpr bool is_union_v = is_union<_Tp>::value;
2835 template <typename _Tp>
2836  inline constexpr bool is_class_v = is_class<_Tp>::value;
2837 template <typename _Tp>
2838  inline constexpr bool is_function_v = is_function<_Tp>::value;
2839 template <typename _Tp>
2840  inline constexpr bool is_reference_v = is_reference<_Tp>::value;
2841 template <typename _Tp>
2842  inline constexpr bool is_arithmetic_v = is_arithmetic<_Tp>::value;
2843 template <typename _Tp>
2844  inline constexpr bool is_fundamental_v = is_fundamental<_Tp>::value;
2845 template <typename _Tp>
2846  inline constexpr bool is_object_v = is_object<_Tp>::value;
2847 template <typename _Tp>
2848  inline constexpr bool is_scalar_v = is_scalar<_Tp>::value;
2849 template <typename _Tp>
2850  inline constexpr bool is_compound_v = is_compound<_Tp>::value;
2851 template <typename _Tp>
2852  inline constexpr bool is_member_pointer_v = is_member_pointer<_Tp>::value;
2853 template <typename _Tp>
2854  inline constexpr bool is_const_v = is_const<_Tp>::value;
2855 template <typename _Tp>
2856  inline constexpr bool is_volatile_v = is_volatile<_Tp>::value;
2857 template <typename _Tp>
2858  inline constexpr bool is_trivial_v = is_trivial<_Tp>::value;
2859 template <typename _Tp>
2860  inline constexpr bool is_trivially_copyable_v =
2861  is_trivially_copyable<_Tp>::value;
2862 template <typename _Tp>
2863  inline constexpr bool is_standard_layout_v = is_standard_layout<_Tp>::value;
2864 template <typename _Tp>
2865  inline constexpr bool is_pod_v = is_pod<_Tp>::value;
2866 template <typename _Tp>
2867  inline constexpr bool is_literal_type_v = is_literal_type<_Tp>::value;
2868 template <typename _Tp>
2869  inline constexpr bool is_empty_v = is_empty<_Tp>::value;
2870 template <typename _Tp>
2871  inline constexpr bool is_polymorphic_v = is_polymorphic<_Tp>::value;
2872 template <typename _Tp>
2873  inline constexpr bool is_abstract_v = is_abstract<_Tp>::value;
2874 template <typename _Tp>
2875  inline constexpr bool is_final_v = is_final<_Tp>::value;
2876 template <typename _Tp>
2877  inline constexpr bool is_signed_v = is_signed<_Tp>::value;
2878 template <typename _Tp>
2879  inline constexpr bool is_unsigned_v = is_unsigned<_Tp>::value;
2880 template <typename _Tp, typename... _Args>
2881  inline constexpr bool is_constructible_v =
2882  is_constructible<_Tp, _Args...>::value;
2883 template <typename _Tp>
2884  inline constexpr bool is_default_constructible_v =
2885  is_default_constructible<_Tp>::value;
2886 template <typename _Tp>
2887  inline constexpr bool is_copy_constructible_v =
2888  is_copy_constructible<_Tp>::value;
2889 template <typename _Tp>
2890  inline constexpr bool is_move_constructible_v =
2891  is_move_constructible<_Tp>::value;
2892 template <typename _Tp, typename _Up>
2893  inline constexpr bool is_assignable_v = is_assignable<_Tp, _Up>::value;
2894 template <typename _Tp>
2895  inline constexpr bool is_copy_assignable_v = is_copy_assignable<_Tp>::value;
2896 template <typename _Tp>
2897  inline constexpr bool is_move_assignable_v = is_move_assignable<_Tp>::value;
2898 template <typename _Tp>
2899  inline constexpr bool is_destructible_v = is_destructible<_Tp>::value;
2900 template <typename _Tp, typename... _Args>
2901  inline constexpr bool is_trivially_constructible_v =
2902  is_trivially_constructible<_Tp, _Args...>::value;
2903 template <typename _Tp>
2904  inline constexpr bool is_trivially_default_constructible_v =
2905  is_trivially_default_constructible<_Tp>::value;
2906 template <typename _Tp>
2907  inline constexpr bool is_trivially_copy_constructible_v =
2908  is_trivially_copy_constructible<_Tp>::value;
2909 template <typename _Tp>
2910  inline constexpr bool is_trivially_move_constructible_v =
2911  is_trivially_move_constructible<_Tp>::value;
2912 template <typename _Tp, typename _Up>
2913  inline constexpr bool is_trivially_assignable_v =
2914  is_trivially_assignable<_Tp, _Up>::value;
2915 template <typename _Tp>
2916  inline constexpr bool is_trivially_copy_assignable_v =
2917  is_trivially_copy_assignable<_Tp>::value;
2918 template <typename _Tp>
2919  inline constexpr bool is_trivially_move_assignable_v =
2920  is_trivially_move_assignable<_Tp>::value;
2921 template <typename _Tp>
2922  inline constexpr bool is_trivially_destructible_v =
2923  is_trivially_destructible<_Tp>::value;
2924 template <typename _Tp, typename... _Args>
2925  inline constexpr bool is_nothrow_constructible_v =
2926  is_nothrow_constructible<_Tp, _Args...>::value;
2927 template <typename _Tp>
2928  inline constexpr bool is_nothrow_default_constructible_v =
2929  is_nothrow_default_constructible<_Tp>::value;
2930 template <typename _Tp>
2931  inline constexpr bool is_nothrow_copy_constructible_v =
2932  is_nothrow_copy_constructible<_Tp>::value;
2933 template <typename _Tp>
2934  inline constexpr bool is_nothrow_move_constructible_v =
2935  is_nothrow_move_constructible<_Tp>::value;
2936 template <typename _Tp, typename _Up>
2937  inline constexpr bool is_nothrow_assignable_v =
2938  is_nothrow_assignable<_Tp, _Up>::value;
2939 template <typename _Tp>
2940  inline constexpr bool is_nothrow_copy_assignable_v =
2941  is_nothrow_copy_assignable<_Tp>::value;
2942 template <typename _Tp>
2943  inline constexpr bool is_nothrow_move_assignable_v =
2944  is_nothrow_move_assignable<_Tp>::value;
2945 template <typename _Tp>
2946  inline constexpr bool is_nothrow_destructible_v =
2947  is_nothrow_destructible<_Tp>::value;
2948 template <typename _Tp>
2949  inline constexpr bool has_virtual_destructor_v =
2950  has_virtual_destructor<_Tp>::value;
2951 template <typename _Tp>
2952  inline constexpr size_t alignment_of_v = alignment_of<_Tp>::value;
2953 template <typename _Tp>
2954  inline constexpr size_t rank_v = rank<_Tp>::value;
2955 template <typename _Tp, unsigned _Idx = 0>
2956  inline constexpr size_t extent_v = extent<_Tp, _Idx>::value;
2957 template <typename _Tp, typename _Up>
2958  inline constexpr bool is_same_v = is_same<_Tp, _Up>::value;
2959 template <typename _Base, typename _Derived>
2960  inline constexpr bool is_base_of_v = is_base_of<_Base, _Derived>::value;
2961 template <typename _From, typename _To>
2962  inline constexpr bool is_convertible_v = is_convertible<_From, _To>::value;
2963 
2964 #ifdef _GLIBCXX_HAVE_BUILTIN_HAS_UNIQ_OBJ_REP
2965 # define __cpp_lib_has_unique_object_representations 201606
2966  /// has_unique_object_representations
2967  template<typename _Tp>
2968  struct has_unique_object_representations
2969  : bool_constant<__has_unique_object_representations(
2970  remove_cv_t<remove_all_extents_t<_Tp>>
2971  )>
2972  { };
2973 
2974  template<typename _Tp>
2975  inline constexpr bool has_unique_object_representations_v
2976  = has_unique_object_representations<_Tp>::value;
2977 #endif
2978 
2979 #ifdef _GLIBCXX_HAVE_BUILTIN_IS_AGGREGATE
2980 # define __cpp_lib_is_aggregate 201703
2981  /// is_aggregate
2982  template<typename _Tp>
2983  struct is_aggregate
2984  : bool_constant<__is_aggregate(remove_cv_t<_Tp>)> { };
2985 
2986  /// is_aggregate_v
2987  template<typename _Tp>
2988  inline constexpr bool is_aggregate_v = is_aggregate<_Tp>::value;
2989 #endif
2990 #endif // C++17
2991 
2992 #if __cplusplus > 201703L
2993  /// Byte order
2994  enum class endian
2995  {
2996  little = __ORDER_LITTLE_ENDIAN__,
2997  big = __ORDER_BIG_ENDIAN__,
2998  native = __BYTE_ORDER__
2999  };
3000 
3001  /// Remove references and cv-qualifiers.
3002  template<typename _Tp>
3003  struct remove_cvref
3004  {
3005  using type = __remove_cvref_t<_Tp>;
3006  };
3007 
3008  template<typename _Tp>
3009  using remove_cvref_t = __remove_cvref_t<_Tp>;
3010 
3011  /// Identity metafunction.
3012  template<typename _Tp>
3013  struct type_identity { using type = _Tp; };
3014 
3015  template<typename _Tp>
3016  using type_identity_t = typename type_identity<_Tp>::type;
3017 
3018  /// Unwrap a reference_wrapper
3019  template<typename _Tp>
3020  struct unwrap_reference { using type = _Tp; };
3021 
3022  template<typename _Tp>
3023  struct unwrap_reference<reference_wrapper<_Tp>> { using type = _Tp&; };
3024 
3025  /// Decay type and if it's a reference_wrapper, unwrap it
3026  template<typename _Tp>
3027  struct unwrap_ref_decay : unwrap_reference<decay_t<_Tp>> { };
3028 
3029  template<typename _Tp>
3030  using unwrap_ref_decay_t = typename unwrap_ref_decay<_Tp>::type;
3031 
3032 #ifdef _GLIBCXX_HAVE_BUILTIN_IS_CONSTANT_EVALUATED
3033 
3034 #define __cpp_lib_is_constant_evaluated 201811L
3035 
3036  constexpr inline bool
3037  is_constant_evaluated() noexcept
3038  { return __builtin_is_constant_evaluated(); }
3039 #endif
3040 
3041 #endif // C++2a
3042 
3043 _GLIBCXX_END_NAMESPACE_VERSION
3044 } // namespace std
3045 
3046 #endif // C++11
3047 
3048 #endif // _GLIBCXX_TYPE_TRAITS