1 // <optional> -*- C++ -*-
3 // Copyright (C) 2013-2016 Free Software Foundation, Inc.
5 // This file is part of the GNU ISO C++ Library. This library is free
6 // software; you can redistribute it and/or modify it under the
7 // terms of the GNU General Public License as published by the
8 // Free Software Foundation; either version 3, or (at your option)
11 // This library is distributed in the hope that it will be useful,
12 // but WITHOUT ANY WARRANTY; without even the implied warranty of
13 // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 // GNU General Public License for more details.
16 // Under Section 7 of GPL version 3, you are granted additional
17 // permissions described in the GCC Runtime Library Exception, version
18 // 3.1, as published by the Free Software Foundation.
20 // You should have received a copy of the GNU General Public License and
21 // a copy of the GCC Runtime Library Exception along with this program;
22 // see the files COPYING3 and COPYING.RUNTIME respectively. If not, see
23 // <http://www.gnu.org/licenses/>.
25 /** @file experimental/optional
26 * This is a TS C++ Library header.
29 #ifndef _GLIBCXX_EXPERIMENTAL_OPTIONAL
30 #define _GLIBCXX_EXPERIMENTAL_OPTIONAL 1
33 * @defgroup experimental Experimental
35 * Components specified by various Technical Specifications.
37 * As indicated by the std::experimental namespace and the header paths,
38 * the contents of these Technical Specifications are experimental and not
39 * part of the C++ standard. As such the interfaces and implementations may
40 * change in the future, and there is <STRONG> no guarantee of compatibility
41 * between different GCC releases </STRONG> for these features.
44 #if __cplusplus <= 201103L
45 # include <bits/c++14_warning.h>
49 #include <type_traits>
52 #include <initializer_list>
53 #include <bits/functexcept.h>
54 #include <bits/functional_hash.h>
55 #include <bits/enable_special_members.h>
57 namespace std _GLIBCXX_VISIBILITY(default)
59 namespace experimental
61 inline namespace fundamentals_v1
63 _GLIBCXX_BEGIN_NAMESPACE_VERSION
66 * @defgroup optional Optional values
67 * @ingroup experimental
69 * Class template for optional values and surrounding facilities, as
70 * described in n3793 "A proposal to add a utility class to represent
71 * optional objects (Revision 5)".
76 #define __cpp_lib_experimental_optional 201411
78 // All subsequent [X.Y.n] references are against n3793.
81 template<typename _Tp>
85 /// Tag type for in-place construction.
86 struct in_place_t { };
88 /// Tag for in-place construction.
89 constexpr in_place_t in_place { };
92 /// Tag type to disengage optional objects.
95 // Do not user-declare default constructor at all for
96 // optional_value = {} syntax to work.
97 // nullopt_t() = delete;
99 // Used for constructing nullopt.
100 enum class _Construct { _Token };
102 // Must be constexpr for nullopt_t to be literal.
103 explicit constexpr nullopt_t(_Construct) { }
107 /// Tag to disengage optional objects.
108 constexpr nullopt_t nullopt { nullopt_t::_Construct::_Token };
112 * @brief Exception class thrown when a disengaged optional object is
114 * @ingroup exceptions
116 class bad_optional_access : public logic_error
119 bad_optional_access() : logic_error("bad optional access") { }
121 // XXX This constructor is non-standard. Should not be inline
122 explicit bad_optional_access(const char* __arg) : logic_error(__arg) { }
124 virtual ~bad_optional_access() noexcept = default;
128 __throw_bad_optional_access(const char*)
129 __attribute__((__noreturn__));
131 // XXX Does not belong here.
133 __throw_bad_optional_access(const char* __s)
134 { _GLIBCXX_THROW_OR_ABORT(bad_optional_access(__s)); }
136 template<typename _Tp, typename = void>
137 struct _Has_addressof_mem : std::false_type { };
139 template<typename _Tp>
140 struct _Has_addressof_mem<_Tp,
141 __void_t<decltype( std::declval<const _Tp&>().operator&() )>
143 : std::true_type { };
145 template<typename _Tp, typename = void>
146 struct _Has_addressof_free : std::false_type { };
148 template<typename _Tp>
149 struct _Has_addressof_free<_Tp,
150 __void_t<decltype( operator&(std::declval<const _Tp&>()) )>
152 : std::true_type { };
155 * @brief Trait that detects the presence of an overloaded unary operator&.
157 * Practically speaking this detects the presence of such an operator when
158 * called on a const-qualified lvalue (i.e.
159 * declval<_Tp * const&>().operator&()).
161 template<typename _Tp>
162 struct _Has_addressof
163 : std::__or_<_Has_addressof_mem<_Tp>, _Has_addressof_free<_Tp>>::type
167 * @brief An overload that attempts to take the address of an lvalue as a
168 * constant expression. Falls back to __addressof in the presence of an
169 * overloaded addressof operator (unary operator&), in which case the call
170 * will not be a constant expression.
172 template<typename _Tp, enable_if_t<!_Has_addressof<_Tp>::value, int>...>
173 constexpr _Tp* __constexpr_addressof(_Tp& __t)
177 * @brief Fallback overload that defers to __addressof.
179 template<typename _Tp, enable_if_t<_Has_addressof<_Tp>::value, int>...>
180 inline _Tp* __constexpr_addressof(_Tp& __t)
181 { return std::__addressof(__t); }
184 * @brief Class template that holds the necessary state for @ref optional
185 * and that has the responsibility for construction and the special members.
187 * Such a separate base class template is necessary in order to
188 * conditionally enable the special members (e.g. copy/move constructors).
189 * Note that this means that @ref _Optional_base implements the
190 * functionality for copy and move assignment, but not for converting
193 * @see optional, _Enable_special_members
195 template<typename _Tp, bool _ShouldProvideDestructor =
196 !is_trivially_destructible<_Tp>::value>
200 // Remove const to avoid prohibition of reusing object storage for
201 // const-qualified types in [3.8/9]. This is strictly internal
202 // and even optional itself is oblivious to it.
203 using _Stored_type = remove_const_t<_Tp>;
206 // [X.Y.4.1] Constructors.
208 // Constructors for disengaged optionals.
209 constexpr _Optional_base() noexcept
212 constexpr _Optional_base(nullopt_t) noexcept
213 : _Optional_base{} { }
215 // Constructors for engaged optionals.
216 constexpr _Optional_base(const _Tp& __t)
217 : _M_payload(__t), _M_engaged(true) { }
219 constexpr _Optional_base(_Tp&& __t)
220 : _M_payload(std::move(__t)), _M_engaged(true) { }
222 template<typename... _Args>
223 constexpr explicit _Optional_base(in_place_t, _Args&&... __args)
224 : _M_payload(std::forward<_Args>(__args)...), _M_engaged(true) { }
226 template<typename _Up, typename... _Args,
227 enable_if_t<is_constructible<_Tp,
228 initializer_list<_Up>&,
231 constexpr explicit _Optional_base(in_place_t,
232 initializer_list<_Up> __il,
234 : _M_payload(__il, std::forward<_Args>(__args)...),
237 // Copy and move constructors.
238 _Optional_base(const _Optional_base& __other)
240 if (__other._M_engaged)
241 this->_M_construct(__other._M_get());
244 _Optional_base(_Optional_base&& __other)
245 noexcept(is_nothrow_move_constructible<_Tp>())
247 if (__other._M_engaged)
248 this->_M_construct(std::move(__other._M_get()));
251 // [X.Y.4.3] (partly) Assignment.
253 operator=(const _Optional_base& __other)
255 if (this->_M_engaged && __other._M_engaged)
256 this->_M_get() = __other._M_get();
259 if (__other._M_engaged)
260 this->_M_construct(__other._M_get());
269 operator=(_Optional_base&& __other)
270 noexcept(__and_<is_nothrow_move_constructible<_Tp>,
271 is_nothrow_move_assignable<_Tp>>())
273 if (this->_M_engaged && __other._M_engaged)
274 this->_M_get() = std::move(__other._M_get());
277 if (__other._M_engaged)
278 this->_M_construct(std::move(__other._M_get()));
285 // [X.Y.4.2] Destructor.
288 if (this->_M_engaged)
289 this->_M_payload.~_Stored_type();
292 // The following functionality is also needed by optional, hence the
293 // protected accessibility.
295 constexpr bool _M_is_engaged() const noexcept
296 { return this->_M_engaged; }
298 // The _M_get operations have _M_engaged as a precondition.
301 { return _M_payload; }
304 _M_get() const noexcept
305 { return _M_payload; }
307 // The _M_construct operation has !_M_engaged as a precondition
308 // while _M_destruct has _M_engaged as a precondition.
309 template<typename... _Args>
311 _M_construct(_Args&&... __args)
312 noexcept(is_nothrow_constructible<_Stored_type, _Args...>())
314 ::new (std::__addressof(this->_M_payload))
315 _Stored_type(std::forward<_Args>(__args)...);
316 this->_M_engaged = true;
322 this->_M_engaged = false;
323 this->_M_payload.~_Stored_type();
326 // _M_reset is a 'safe' operation with no precondition.
330 if (this->_M_engaged)
335 struct _Empty_byte { };
337 _Empty_byte _M_empty;
338 _Stored_type _M_payload;
340 bool _M_engaged = false;
343 /// Partial specialization that is exactly identical to the primary template
344 /// save for not providing a destructor, to fulfill triviality requirements.
345 template<typename _Tp>
346 class _Optional_base<_Tp, false>
349 using _Stored_type = remove_const_t<_Tp>;
352 constexpr _Optional_base() noexcept
355 constexpr _Optional_base(nullopt_t) noexcept
356 : _Optional_base{} { }
358 constexpr _Optional_base(const _Tp& __t)
359 : _M_payload(__t), _M_engaged(true) { }
361 constexpr _Optional_base(_Tp&& __t)
362 : _M_payload(std::move(__t)), _M_engaged(true) { }
364 template<typename... _Args>
365 constexpr explicit _Optional_base(in_place_t, _Args&&... __args)
366 : _M_payload(std::forward<_Args>(__args)...), _M_engaged(true) { }
368 template<typename _Up, typename... _Args,
369 enable_if_t<is_constructible<_Tp,
370 initializer_list<_Up>&,
373 constexpr explicit _Optional_base(in_place_t,
374 initializer_list<_Up> __il,
376 : _M_payload(__il, std::forward<_Args>(__args)...),
379 _Optional_base(const _Optional_base& __other)
381 if (__other._M_engaged)
382 this->_M_construct(__other._M_get());
385 _Optional_base(_Optional_base&& __other)
386 noexcept(is_nothrow_move_constructible<_Tp>())
388 if (__other._M_engaged)
389 this->_M_construct(std::move(__other._M_get()));
393 operator=(const _Optional_base& __other)
395 if (this->_M_engaged && __other._M_engaged)
396 this->_M_get() = __other._M_get();
399 if (__other._M_engaged)
400 this->_M_construct(__other._M_get());
408 operator=(_Optional_base&& __other)
409 noexcept(__and_<is_nothrow_move_constructible<_Tp>,
410 is_nothrow_move_assignable<_Tp>>())
412 if (this->_M_engaged && __other._M_engaged)
413 this->_M_get() = std::move(__other._M_get());
416 if (__other._M_engaged)
417 this->_M_construct(std::move(__other._M_get()));
425 // ~_Optional_base() noexcept = default;
428 constexpr bool _M_is_engaged() const noexcept
429 { return this->_M_engaged; }
433 { return _M_payload; }
436 _M_get() const noexcept
437 { return _M_payload; }
439 template<typename... _Args>
441 _M_construct(_Args&&... __args)
442 noexcept(is_nothrow_constructible<_Stored_type, _Args...>())
444 ::new (std::__addressof(this->_M_payload))
445 _Stored_type(std::forward<_Args>(__args)...);
446 this->_M_engaged = true;
452 this->_M_engaged = false;
453 this->_M_payload.~_Stored_type();
459 if (this->_M_engaged)
464 struct _Empty_byte { };
467 _Empty_byte _M_empty;
468 _Stored_type _M_payload;
470 bool _M_engaged = false;
473 template<typename _Tp>
477 struct __is_optional_impl : false_type
480 template<typename _Tp>
481 struct __is_optional_impl<optional<_Tp>> : true_type
484 template<typename _Tp>
486 : public __is_optional_impl<std::remove_cv_t<std::remove_reference_t<_Tp>>>
491 * @brief Class template for optional values.
493 template<typename _Tp>
495 : private _Optional_base<_Tp>,
496 private _Enable_copy_move<
498 is_copy_constructible<_Tp>::value,
500 __and_<is_copy_constructible<_Tp>, is_copy_assignable<_Tp>>::value,
502 is_move_constructible<_Tp>::value,
504 __and_<is_move_constructible<_Tp>, is_move_assignable<_Tp>>::value,
508 static_assert(__and_<__not_<is_same<remove_cv_t<_Tp>, nullopt_t>>,
509 __not_<is_same<remove_cv_t<_Tp>, in_place_t>>,
510 __not_<is_reference<_Tp>>>(),
511 "Invalid instantiation of optional<T>");
514 using _Base = _Optional_base<_Tp>;
517 using value_type = _Tp;
519 // _Optional_base has the responsibility for construction.
522 constexpr optional() = default;
523 // Converting constructors for engaged optionals.
524 template <typename _Up,
526 __not_<is_same<_Tp, _Up>>,
527 is_constructible<_Tp, _Up&&>,
528 is_convertible<_Up&&, _Tp>
529 >::value, bool> = true>
530 constexpr optional(_Up&& __t)
531 : _Base(_Tp(std::forward<_Up>(__t))) { }
533 template <typename _Up,
535 __not_<is_same<_Tp, _Up>>,
536 is_constructible<_Tp, _Up&&>,
537 __not_<is_convertible<_Up&&, _Tp>>
538 >::value, bool> = false>
539 explicit constexpr optional(_Up&& __t)
540 : _Base(_Tp(std::forward<_Up>(__t))) { }
542 template <typename _Up,
544 __not_<is_same<_Tp, _Up>>,
545 __not_<is_constructible<
546 _Tp, const optional<_Up>&>>,
547 __not_<is_convertible<
548 const optional<_Up>&, _Tp>>,
549 is_constructible<_Tp, const _Up&>,
550 is_convertible<const _Up&, _Tp>
551 >::value, bool> = true>
552 constexpr optional(const optional<_Up>& __t)
553 : _Base(__t ? optional<_Tp>(*__t) : optional<_Tp>()) { }
555 template <typename _Up,
557 __not_<is_same<_Tp, _Up>>,
558 __not_<is_constructible<
559 _Tp, const optional<_Up>&>>,
560 __not_<is_convertible<
561 const optional<_Up>&, _Tp>>,
562 is_constructible<_Tp, const _Up&>,
563 __not_<is_convertible<const _Up&, _Tp>>
564 >::value, bool> = false>
565 explicit constexpr optional(const optional<_Up>& __t)
566 : _Base(__t ? optional<_Tp>(*__t) : optional<_Tp>()) { }
568 template <typename _Up,
570 __not_<is_same<_Tp, _Up>>,
571 __not_<is_constructible<
572 _Tp, optional<_Up>&&>>,
573 __not_<is_convertible<
574 optional<_Up>&&, _Tp>>,
575 is_constructible<_Tp, _Up&&>,
576 is_convertible<_Up&&, _Tp>
577 >::value, bool> = true>
578 constexpr optional(optional<_Up>&& __t)
579 : _Base(__t ? optional<_Tp>(std::move(*__t)) : optional<_Tp>()) { }
581 template <typename _Up,
583 __not_<is_same<_Tp, _Up>>,
584 __not_<is_constructible<
585 _Tp, optional<_Up>&&>>,
586 __not_<is_convertible<
587 optional<_Up>&&, _Tp>>,
588 is_constructible<_Tp, _Up&&>,
589 __not_<is_convertible<_Up&&, _Tp>>
590 >::value, bool> = false>
591 explicit constexpr optional(optional<_Up>&& __t)
592 : _Base(__t ? optional<_Tp>(std::move(*__t)) : optional<_Tp>()) { }
594 // [X.Y.4.3] (partly) Assignment.
596 operator=(nullopt_t) noexcept
602 template<typename _Up,
604 __not_<is_same<_Up, nullopt_t>>,
605 __not_<__is_optional<_Up>>>::value,
610 static_assert(__and_<is_constructible<_Tp, _Up>,
611 is_assignable<_Tp&, _Up>>(),
612 "Cannot assign to value type from argument");
614 if (this->_M_is_engaged())
615 this->_M_get() = std::forward<_Up>(__u);
617 this->_M_construct(std::forward<_Up>(__u));
622 template<typename _Up,
624 __not_<is_same<_Tp, _Up>>>::value,
627 operator=(const optional<_Up>& __u)
629 static_assert(__and_<is_constructible<_Tp, _Up>,
630 is_assignable<_Tp&, _Up>>(),
631 "Cannot assign to value type from argument");
635 if (this->_M_is_engaged())
636 this->_M_get() = *__u;
638 this->_M_construct(*__u);
647 template<typename _Up,
649 __not_<is_same<_Tp, _Up>>>::value,
652 operator=(optional<_Up>&& __u)
654 static_assert(__and_<is_constructible<_Tp, _Up>,
655 is_assignable<_Tp&, _Up>>(),
656 "Cannot assign to value type from argument");
660 if (this->_M_is_engaged())
661 this->_M_get() = std::move(*__u);
663 this->_M_construct(std::move(*__u));
673 template<typename... _Args>
675 emplace(_Args&&... __args)
677 static_assert(is_constructible<_Tp, _Args&&...>(),
678 "Cannot emplace value type from arguments");
681 this->_M_construct(std::forward<_Args>(__args)...);
684 template<typename _Up, typename... _Args>
685 enable_if_t<is_constructible<_Tp, initializer_list<_Up>&,
687 emplace(initializer_list<_Up> __il, _Args&&... __args)
690 this->_M_construct(__il, std::forward<_Args>(__args)...);
693 // [X.Y.4.2] Destructor is implicit, implemented in _Optional_base.
697 swap(optional& __other)
698 noexcept(is_nothrow_move_constructible<_Tp>()
699 && noexcept(swap(declval<_Tp&>(), declval<_Tp&>())))
703 if (this->_M_is_engaged() && __other._M_is_engaged())
704 swap(this->_M_get(), __other._M_get());
705 else if (this->_M_is_engaged())
707 __other._M_construct(std::move(this->_M_get()));
710 else if (__other._M_is_engaged())
712 this->_M_construct(std::move(__other._M_get()));
713 __other._M_destruct();
717 // [X.Y.4.5] Observers.
720 { return __constexpr_addressof(this->_M_get()); }
724 { return std::__addressof(this->_M_get()); }
728 { return this->_M_get(); }
732 { return this->_M_get(); }
736 { return std::move(this->_M_get()); }
738 constexpr const _Tp&&
740 { return std::move(this->_M_get()); }
742 constexpr explicit operator bool() const noexcept
743 { return this->_M_is_engaged(); }
748 return this->_M_is_engaged()
750 : (__throw_bad_optional_access("Attempt to access value of a "
751 "disengaged optional object"),
758 return this->_M_is_engaged()
760 : (__throw_bad_optional_access("Attempt to access value of a "
761 "disengaged optional object"),
768 return this->_M_is_engaged()
769 ? std::move(this->_M_get())
770 : (__throw_bad_optional_access("Attempt to access value of a "
771 "disengaged optional object"),
772 std::move(this->_M_get()));
775 constexpr const _Tp&&
778 return this->_M_is_engaged()
779 ? std::move(this->_M_get())
780 : (__throw_bad_optional_access("Attempt to access value of a "
781 "disengaged optional object"),
782 std::move(this->_M_get()));
785 template<typename _Up>
787 value_or(_Up&& __u) const&
789 static_assert(__and_<is_copy_constructible<_Tp>,
790 is_convertible<_Up&&, _Tp>>(),
791 "Cannot return value");
793 return this->_M_is_engaged()
795 : static_cast<_Tp>(std::forward<_Up>(__u));
798 template<typename _Up>
800 value_or(_Up&& __u) &&
802 static_assert(__and_<is_move_constructible<_Tp>,
803 is_convertible<_Up&&, _Tp>>(),
804 "Cannot return value" );
806 return this->_M_is_engaged()
807 ? std::move(this->_M_get())
808 : static_cast<_Tp>(std::forward<_Up>(__u));
812 // [X.Y.8] Comparisons between optional values.
813 template<typename _Tp>
815 operator==(const optional<_Tp>& __lhs, const optional<_Tp>& __rhs)
817 return static_cast<bool>(__lhs) == static_cast<bool>(__rhs)
818 && (!__lhs || *__lhs == *__rhs);
821 template<typename _Tp>
823 operator!=(const optional<_Tp>& __lhs, const optional<_Tp>& __rhs)
824 { return !(__lhs == __rhs); }
826 template<typename _Tp>
828 operator<(const optional<_Tp>& __lhs, const optional<_Tp>& __rhs)
830 return static_cast<bool>(__rhs) && (!__lhs || *__lhs < *__rhs);
833 template<typename _Tp>
835 operator>(const optional<_Tp>& __lhs, const optional<_Tp>& __rhs)
836 { return __rhs < __lhs; }
838 template<typename _Tp>
840 operator<=(const optional<_Tp>& __lhs, const optional<_Tp>& __rhs)
841 { return !(__rhs < __lhs); }
843 template<typename _Tp>
845 operator>=(const optional<_Tp>& __lhs, const optional<_Tp>& __rhs)
846 { return !(__lhs < __rhs); }
848 // [X.Y.9] Comparisons with nullopt.
849 template<typename _Tp>
851 operator==(const optional<_Tp>& __lhs, nullopt_t) noexcept
854 template<typename _Tp>
856 operator==(nullopt_t, const optional<_Tp>& __rhs) noexcept
859 template<typename _Tp>
861 operator!=(const optional<_Tp>& __lhs, nullopt_t) noexcept
862 { return static_cast<bool>(__lhs); }
864 template<typename _Tp>
866 operator!=(nullopt_t, const optional<_Tp>& __rhs) noexcept
867 { return static_cast<bool>(__rhs); }
869 template<typename _Tp>
871 operator<(const optional<_Tp>& /* __lhs */, nullopt_t) noexcept
874 template<typename _Tp>
876 operator<(nullopt_t, const optional<_Tp>& __rhs) noexcept
877 { return static_cast<bool>(__rhs); }
879 template<typename _Tp>
881 operator>(const optional<_Tp>& __lhs, nullopt_t) noexcept
882 { return static_cast<bool>(__lhs); }
884 template<typename _Tp>
886 operator>(nullopt_t, const optional<_Tp>& /* __rhs */) noexcept
889 template<typename _Tp>
891 operator<=(const optional<_Tp>& __lhs, nullopt_t) noexcept
894 template<typename _Tp>
896 operator<=(nullopt_t, const optional<_Tp>& /* __rhs */) noexcept
899 template<typename _Tp>
901 operator>=(const optional<_Tp>& /* __lhs */, nullopt_t) noexcept
904 template<typename _Tp>
906 operator>=(nullopt_t, const optional<_Tp>& __rhs) noexcept
909 // [X.Y.10] Comparisons with value type.
910 template<typename _Tp>
912 operator==(const optional<_Tp>& __lhs, const _Tp& __rhs)
913 { return __lhs && *__lhs == __rhs; }
915 template<typename _Tp>
917 operator==(const _Tp& __lhs, const optional<_Tp>& __rhs)
918 { return __rhs && __lhs == *__rhs; }
920 template<typename _Tp>
922 operator!=(const optional<_Tp>& __lhs, _Tp const& __rhs)
923 { return !__lhs || !(*__lhs == __rhs); }
925 template<typename _Tp>
927 operator!=(const _Tp& __lhs, const optional<_Tp>& __rhs)
928 { return !__rhs || !(__lhs == *__rhs); }
930 template<typename _Tp>
932 operator<(const optional<_Tp>& __lhs, const _Tp& __rhs)
933 { return !__lhs || *__lhs < __rhs; }
935 template<typename _Tp>
937 operator<(const _Tp& __lhs, const optional<_Tp>& __rhs)
938 { return __rhs && __lhs < *__rhs; }
940 template<typename _Tp>
942 operator>(const optional<_Tp>& __lhs, const _Tp& __rhs)
943 { return __lhs && __rhs < *__lhs; }
945 template<typename _Tp>
947 operator>(const _Tp& __lhs, const optional<_Tp>& __rhs)
948 { return !__rhs || *__rhs < __lhs; }
950 template<typename _Tp>
952 operator<=(const optional<_Tp>& __lhs, const _Tp& __rhs)
953 { return !__lhs || !(__rhs < *__lhs); }
955 template<typename _Tp>
957 operator<=(const _Tp& __lhs, const optional<_Tp>& __rhs)
958 { return __rhs && !(*__rhs < __lhs); }
960 template<typename _Tp>
962 operator>=(const optional<_Tp>& __lhs, const _Tp& __rhs)
963 { return __lhs && !(*__lhs < __rhs); }
965 template<typename _Tp>
967 operator>=(const _Tp& __lhs, const optional<_Tp>& __rhs)
968 { return !__rhs || !(__lhs < *__rhs); }
971 template<typename _Tp>
973 swap(optional<_Tp>& __lhs, optional<_Tp>& __rhs)
974 noexcept(noexcept(__lhs.swap(__rhs)))
975 { __lhs.swap(__rhs); }
977 template<typename _Tp>
978 constexpr optional<decay_t<_Tp>>
979 make_optional(_Tp&& __t)
980 { return optional<decay_t<_Tp>> { std::forward<_Tp>(__t) }; }
983 _GLIBCXX_END_NAMESPACE_VERSION
984 } // namespace fundamentals_v1
988 template<typename _Tp>
989 struct hash<experimental::optional<_Tp>>
991 using result_type = size_t;
992 using argument_type = experimental::optional<_Tp>;
995 operator()(const experimental::optional<_Tp>& __t) const
996 noexcept(noexcept(hash<_Tp> {}(*__t)))
998 // We pick an arbitrary hash for disengaged optionals which hopefully
999 // usual values of _Tp won't typically hash to.
1000 constexpr size_t __magic_disengaged_hash = static_cast<size_t>(-3333);
1001 return __t ? hash<_Tp> {}(*__t) : __magic_disengaged_hash;
1008 #endif // _GLIBCXX_EXPERIMENTAL_OPTIONAL