forked from OSchip/llvm-project
456 lines
14 KiB
C++
456 lines
14 KiB
C++
// -*- C++ -*-
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//===-------------------------- concepts ----------------------------------===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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#ifndef _LIBCPP_CONCEPTS
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#define _LIBCPP_CONCEPTS
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/*
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concepts synopsis
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namespace std {
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// [concepts.lang], language-related concepts
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// [concept.same], concept same_as
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template<class T, class U>
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concept same_as = see below;
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// [concept.derived], concept derived_from
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template<class Derived, class Base>
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concept derived_from = see below;
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// [concept.convertible], concept convertible_to
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template<class From, class To>
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concept convertible_to = see below;
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// [concept.commonref], concept common_reference_with
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template<class T, class U>
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concept common_reference_with = see below;
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// [concept.common], concept common_with
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template<class T, class U>
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concept common_with = see below;
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// [concepts.arithmetic], arithmetic concepts
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template<class T>
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concept integral = see below;
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template<class T>
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concept signed_integral = see below;
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template<class T>
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concept unsigned_integral = see below;
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template<class T>
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concept floating_point = see below;
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// [concept.assignable], concept assignable_from
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template<class LHS, class RHS>
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concept assignable_from = see below;
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// [concept.swappable], concept swappable
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namespace ranges {
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inline namespace unspecified {
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inline constexpr unspecified swap = unspecified;
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}
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}
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template<class T>
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concept swappable = see below;
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template<class T, class U>
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concept swappable_with = see below;
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// [concept.destructible], concept destructible
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template<class T>
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concept destructible = see below;
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// [concept.constructible], concept constructible_from
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template<class T, class... Args>
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concept constructible_from = see below;
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// [concept.default.init], concept default_initializable
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template<class T>
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concept default_initializable = see below;
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// [concept.moveconstructible], concept move_constructible
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template<class T>
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concept move_constructible = see below;
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// [concept.copyconstructible], concept copy_constructible
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template<class T>
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concept copy_constructible = see below;
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// [concept.equalitycomparable], concept equality_comparable
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template<class T>
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concept equality_comparable = see below;
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template<class T, class U>
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concept equality_comparable_with = see below;
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// [concept.totallyordered], concept totally_ordered
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template<class T>
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concept totally_ordered = see below;
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template<class T, class U>
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concept totally_ordered_with = see below;
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// [concepts.object], object concepts
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template<class T>
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concept movable = see below;
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template<class T>
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concept copyable = see below;
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template<class T>
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concept semiregular = see below;
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template<class T>
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concept regular = see below;
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// [concepts.callable], callable concepts
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// [concept.invocable], concept invocable
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template<class F, class... Args>
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concept invocable = see below;
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// [concept.regularinvocable], concept regular_invocable
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template<class F, class... Args>
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concept regular_invocable = see below;
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// [concept.predicate], concept predicate
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template<class F, class... Args>
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concept predicate = see below;
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// [concept.relation], concept relation
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template<class R, class T, class U>
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concept relation = see below;
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// [concept.equiv], concept equivalence_relation
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template<class R, class T, class U>
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concept equivalence_relation = see below;
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// [concept.strictweakorder], concept strict_weak_order
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template<class R, class T, class U>
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concept strict_weak_order = see below;
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}
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*/
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#include <__config>
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#include <__functional/invoke.h>
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#include <__functional_base>
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#include <type_traits>
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#include <utility>
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#include <version>
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#if !defined(_LIBCPP_HAS_NO_PRAGMA_SYSTEM_HEADER)
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#pragma GCC system_header
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#endif
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_LIBCPP_PUSH_MACROS
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#include <__undef_macros>
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_LIBCPP_BEGIN_NAMESPACE_STD
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#if _LIBCPP_STD_VER > 17 && !defined(_LIBCPP_HAS_NO_CONCEPTS)
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// [concept.same]
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template<class _Tp, class _Up>
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concept __same_as_impl = _VSTD::_IsSame<_Tp, _Up>::value;
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template<class _Tp, class _Up>
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concept same_as = __same_as_impl<_Tp, _Up> && __same_as_impl<_Up, _Tp>;
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// [concept.derived]
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template<class _Dp, class _Bp>
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concept derived_from =
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is_base_of_v<_Bp, _Dp> &&
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is_convertible_v<const volatile _Dp*, const volatile _Bp*>;
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// [concept.convertible]
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template<class _From, class _To>
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concept convertible_to =
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is_convertible_v<_From, _To> &&
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requires(add_rvalue_reference_t<_From> (&__f)()) {
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static_cast<_To>(__f());
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};
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// [concept.commonref]
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template<class _Tp, class _Up>
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concept common_reference_with =
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same_as<common_reference_t<_Tp, _Up>, common_reference_t<_Up, _Tp>> &&
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convertible_to<_Tp, common_reference_t<_Tp, _Up>> &&
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convertible_to<_Up, common_reference_t<_Tp, _Up>>;
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// [concept.common]
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template<class _Tp, class _Up>
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concept common_with =
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same_as<common_type_t<_Tp, _Up>, common_type_t<_Up, _Tp>> &&
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requires {
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static_cast<common_type_t<_Tp, _Up>>(declval<_Tp>());
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static_cast<common_type_t<_Tp, _Up>>(declval<_Up>());
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} &&
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common_reference_with<
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add_lvalue_reference_t<const _Tp>,
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add_lvalue_reference_t<const _Up>> &&
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common_reference_with<
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add_lvalue_reference_t<common_type_t<_Tp, _Up>>,
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common_reference_t<
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add_lvalue_reference_t<const _Tp>,
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add_lvalue_reference_t<const _Up>>>;
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// [concepts.arithmetic], arithmetic concepts
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template<class _Tp>
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concept integral = is_integral_v<_Tp>;
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template<class _Tp>
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concept signed_integral = integral<_Tp> && is_signed_v<_Tp>;
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template<class _Tp>
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concept unsigned_integral = integral<_Tp> && !signed_integral<_Tp>;
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template<class _Tp>
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concept floating_point = is_floating_point_v<_Tp>;
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// [concept.assignable]
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template<class _Lhs, class _Rhs>
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concept assignable_from =
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is_lvalue_reference_v<_Lhs> &&
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common_reference_with<__make_const_lvalue_ref<_Lhs>, __make_const_lvalue_ref<_Rhs>> &&
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requires (_Lhs __lhs, _Rhs&& __rhs) {
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{ __lhs = _VSTD::forward<_Rhs>(__rhs) } -> same_as<_Lhs>;
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};
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// [concept.destructible]
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template<class _Tp>
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concept destructible = is_nothrow_destructible_v<_Tp>;
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// [concept.constructible]
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template<class _Tp, class... _Args>
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concept constructible_from =
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destructible<_Tp> && is_constructible_v<_Tp, _Args...>;
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// [concept.default.init]
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template<class _Tp>
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concept __default_initializable = requires { ::new _Tp; };
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template<class _Tp>
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concept default_initializable = constructible_from<_Tp> &&
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requires { _Tp{}; } && __default_initializable<_Tp>;
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// [concept.moveconstructible]
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template<class _Tp>
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concept move_constructible =
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constructible_from<_Tp, _Tp> && convertible_to<_Tp, _Tp>;
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// [concept.copyconstructible]
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template<class _Tp>
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concept copy_constructible =
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move_constructible<_Tp> &&
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constructible_from<_Tp, _Tp&> && convertible_to<_Tp&, _Tp> &&
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constructible_from<_Tp, const _Tp&> && convertible_to<const _Tp&, _Tp> &&
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constructible_from<_Tp, const _Tp> && convertible_to<const _Tp, _Tp>;
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// Whether a type is a class type or enumeration type according to the Core wording.
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template<class _Tp>
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concept __class_or_enum = is_class_v<_Tp> || is_union_v<_Tp> || is_enum_v<_Tp>;
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// [concept.swappable]
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namespace ranges::__swap {
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// Deleted to inhibit ADL
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template<class _Tp>
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void swap(_Tp&, _Tp&) = delete;
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// [1]
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template<class _Tp, class _Up>
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concept __unqualified_swappable_with =
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(__class_or_enum<remove_cvref_t<_Tp>> || __class_or_enum<remove_cvref_t<_Up>>) &&
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requires(_Tp&& __t, _Up&& __u) {
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swap(_VSTD::forward<_Tp>(__t), _VSTD::forward<_Up>(__u));
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};
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struct __fn;
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template<class _Tp, class _Up, size_t _Size>
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concept __swappable_arrays =
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!__unqualified_swappable_with<_Tp(&)[_Size], _Up(&)[_Size]> &&
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extent_v<_Tp> == extent_v<_Up> &&
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requires(_Tp(& __t)[_Size], _Up(& __u)[_Size], const __fn& __swap) {
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__swap(__t[0], __u[0]);
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};
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template<class _Tp>
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concept __exchangeable =
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!__unqualified_swappable_with<_Tp&, _Tp&> &&
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move_constructible<_Tp> &&
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assignable_from<_Tp&, _Tp>;
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struct __fn {
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// 2.1 `S` is `(void)swap(E1, E2)`* if `E1` or `E2` has class or enumeration type and...
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// *The name `swap` is used here unqualified.
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template<class _Tp, class _Up>
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requires __unqualified_swappable_with<_Tp, _Up>
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constexpr void operator()(_Tp&& __t, _Up&& __u) const
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noexcept(noexcept(swap(_VSTD::forward<_Tp>(__t), _VSTD::forward<_Up>(__u))))
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{
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swap(_VSTD::forward<_Tp>(__t), _VSTD::forward<_Up>(__u));
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}
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// 2.2 Otherwise, if `E1` and `E2` are lvalues of array types with equal extent and...
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template<class _Tp, class _Up, size_t _Size>
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requires __swappable_arrays<_Tp, _Up, _Size>
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constexpr void operator()(_Tp(& __t)[_Size], _Up(& __u)[_Size]) const
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noexcept(noexcept((*this)(*__t, *__u)))
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{
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// TODO(cjdb): replace with `ranges::swap_ranges`.
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for (size_t __i = 0; __i < _Size; ++__i) {
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(*this)(__t[__i], __u[__i]);
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}
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}
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// 2.3 Otherwise, if `E1` and `E2` are lvalues of the same type `T` that models...
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template<__exchangeable _Tp>
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constexpr void operator()(_Tp& __x, _Tp& __y) const
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noexcept(is_nothrow_move_constructible_v<_Tp> && is_nothrow_move_assignable_v<_Tp>)
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{
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__y = _VSTD::exchange(__x, _VSTD::move(__y));
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}
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};
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} // namespace ranges::__swap
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namespace ranges::inline __cpo {
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inline constexpr auto swap = __swap::__fn{};
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} // namespace ranges::__cpo
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template<class _Tp>
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concept swappable = requires(_Tp& __a, _Tp& __b) { ranges::swap(__a, __b); };
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template<class _Tp, class _Up>
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concept swappable_with =
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common_reference_with<_Tp, _Up> &&
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requires(_Tp&& __t, _Up&& __u) {
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ranges::swap(_VSTD::forward<_Tp>(__t), _VSTD::forward<_Tp>(__t));
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ranges::swap(_VSTD::forward<_Up>(__u), _VSTD::forward<_Up>(__u));
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ranges::swap(_VSTD::forward<_Tp>(__t), _VSTD::forward<_Up>(__u));
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ranges::swap(_VSTD::forward<_Up>(__u), _VSTD::forward<_Tp>(__t));
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};
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// [concept.booleantestable]
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template<class _Tp>
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concept __boolean_testable_impl = convertible_to<_Tp, bool>;
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template<class _Tp>
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concept __boolean_testable = __boolean_testable_impl<_Tp> && requires(_Tp&& __t) {
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{ !std::forward<_Tp>(__t) } -> __boolean_testable_impl;
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};
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// [concept.equalitycomparable]
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template<class _Tp, class _Up>
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concept __weakly_equality_comparable_with =
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requires(__make_const_lvalue_ref<_Tp> __t, __make_const_lvalue_ref<_Up> __u) {
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{ __t == __u } -> __boolean_testable;
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{ __t != __u } -> __boolean_testable;
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{ __u == __t } -> __boolean_testable;
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{ __u != __t } -> __boolean_testable;
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};
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template<class _Tp>
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concept equality_comparable = __weakly_equality_comparable_with<_Tp, _Tp>;
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template<class _Tp, class _Up>
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concept equality_comparable_with =
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equality_comparable<_Tp> && equality_comparable<_Up> &&
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common_reference_with<__make_const_lvalue_ref<_Tp>, __make_const_lvalue_ref<_Up>> &&
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equality_comparable<
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common_reference_t<
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__make_const_lvalue_ref<_Tp>,
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__make_const_lvalue_ref<_Up>>> &&
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__weakly_equality_comparable_with<_Tp, _Up>;
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// [concept.totallyordered]
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template<class _Tp, class _Up>
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concept __partially_ordered_with =
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requires(__make_const_lvalue_ref<_Tp> __t, __make_const_lvalue_ref<_Up> __u) {
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{ __t < __u } -> __boolean_testable;
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{ __t > __u } -> __boolean_testable;
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{ __t <= __u } -> __boolean_testable;
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{ __t >= __u } -> __boolean_testable;
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{ __u < __t } -> __boolean_testable;
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{ __u > __t } -> __boolean_testable;
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{ __u <= __t } -> __boolean_testable;
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{ __u >= __t } -> __boolean_testable;
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};
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template<class _Tp>
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concept totally_ordered = equality_comparable<_Tp> && __partially_ordered_with<_Tp, _Tp>;
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template<class _Tp, class _Up>
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concept totally_ordered_with =
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totally_ordered<_Tp> && totally_ordered<_Up> &&
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equality_comparable_with<_Tp, _Up> &&
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totally_ordered<
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common_reference_t<
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__make_const_lvalue_ref<_Tp>,
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__make_const_lvalue_ref<_Up>>> &&
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__partially_ordered_with<_Tp, _Up>;
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// [concepts.object]
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template<class _Tp>
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concept movable =
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is_object_v<_Tp> &&
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move_constructible<_Tp> &&
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assignable_from<_Tp&, _Tp> &&
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swappable<_Tp>;
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template<class _Tp>
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concept copyable =
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copy_constructible<_Tp> &&
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movable<_Tp> &&
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assignable_from<_Tp&, _Tp&> &&
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assignable_from<_Tp&, const _Tp&> &&
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assignable_from<_Tp&, const _Tp>;
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template<class _Tp>
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concept semiregular = copyable<_Tp> && default_initializable<_Tp>;
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template<class _Tp>
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concept regular = semiregular<_Tp> && equality_comparable<_Tp>;
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// [concept.invocable]
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template<class _Fn, class... _Args>
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concept invocable = requires(_Fn&& __fn, _Args&&... __args) {
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_VSTD::invoke(_VSTD::forward<_Fn>(__fn), _VSTD::forward<_Args>(__args)...); // not required to be equality preserving
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};
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// [concept.regular.invocable]
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template<class _Fn, class... _Args>
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concept regular_invocable = invocable<_Fn, _Args...>;
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// [concept.predicate]
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template<class _Fn, class... _Args>
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concept predicate =
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regular_invocable<_Fn, _Args...> && __boolean_testable<invoke_result_t<_Fn, _Args...>>;
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// [concept.relation]
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template<class _Rp, class _Tp, class _Up>
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concept relation =
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predicate<_Rp, _Tp, _Tp> && predicate<_Rp, _Up, _Up> &&
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predicate<_Rp, _Tp, _Up> && predicate<_Rp, _Up, _Tp>;
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// [concept.equiv]
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template<class _Rp, class _Tp, class _Up>
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concept equivalence_relation = relation<_Rp, _Tp, _Up>;
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// [concept.strictweakorder]
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template<class _Rp, class _Tp, class _Up>
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concept strict_weak_order = relation<_Rp, _Tp, _Up>;
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template<class _Tp, class _Up>
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concept __different_from = !same_as<remove_cvref_t<_Tp>, remove_cvref_t<_Up>>;
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#endif // _LIBCPP_STD_VER > 17 && !defined(_LIBCPP_HAS_NO_CONCEPTS)
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_LIBCPP_END_NAMESPACE_STD
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_LIBCPP_POP_MACROS
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#endif // _LIBCPP_CONCEPTS
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