4684ddb6aa
- import libcxx - reduce targets to the one when compiled as a tools Change-Id: Iabb8427f80ff8e89463559a28bcb8b4f2bdbc496
768 lines
24 KiB
C++
768 lines
24 KiB
C++
// -*- C++ -*-
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//===-------------------------- utility -----------------------------------===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is dual licensed under the MIT and the University of Illinois Open
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// Source Licenses. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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#ifndef _LIBCPP_UTILITY
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#define _LIBCPP_UTILITY
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/*
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utility synopsis
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namespace std
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{
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template <class T>
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void
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swap(T& a, T& b);
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namespace rel_ops
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{
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template<class T> bool operator!=(const T&, const T&);
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template<class T> bool operator> (const T&, const T&);
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template<class T> bool operator<=(const T&, const T&);
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template<class T> bool operator>=(const T&, const T&);
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}
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template<class T>
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void
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swap(T& a, T& b) noexcept(is_nothrow_move_constructible<T>::value &&
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is_nothrow_move_assignable<T>::value);
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template <class T, size_t N>
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void
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swap(T (&a)[N], T (&b)[N]) noexcept(noexcept(swap(*a, *b)));
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template <class T> T&& forward(typename remove_reference<T>::type& t) noexcept; // constexpr in C++14
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template <class T> T&& forward(typename remove_reference<T>::type&& t) noexcept; // constexpr in C++14
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template <class T> typename remove_reference<T>::type&& move(T&&) noexcept; // constexpr in C++14
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template <class T>
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typename conditional
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<
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!is_nothrow_move_constructible<T>::value && is_copy_constructible<T>::value,
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const T&,
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T&&
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>::type
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move_if_noexcept(T& x) noexcept; // constexpr in C++14
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template <class T> typename add_rvalue_reference<T>::type declval() noexcept;
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template <class T1, class T2>
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struct pair
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{
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typedef T1 first_type;
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typedef T2 second_type;
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T1 first;
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T2 second;
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pair(const pair&) = default;
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pair(pair&&) = default;
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constexpr pair();
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pair(const T1& x, const T2& y); // constexpr in C++14
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template <class U, class V> pair(U&& x, V&& y); // constexpr in C++14
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template <class U, class V> pair(const pair<U, V>& p); // constexpr in C++14
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template <class U, class V> pair(pair<U, V>&& p); // constexpr in C++14
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template <class... Args1, class... Args2>
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pair(piecewise_construct_t, tuple<Args1...> first_args,
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tuple<Args2...> second_args);
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template <class U, class V> pair& operator=(const pair<U, V>& p);
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pair& operator=(pair&& p) noexcept(is_nothrow_move_assignable<T1>::value &&
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is_nothrow_move_assignable<T2>::value);
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template <class U, class V> pair& operator=(pair<U, V>&& p);
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void swap(pair& p) noexcept(noexcept(swap(first, p.first)) &&
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noexcept(swap(second, p.second)));
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};
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template <class T1, class T2> bool operator==(const pair<T1,T2>&, const pair<T1,T2>&); // constexpr in C++14
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template <class T1, class T2> bool operator!=(const pair<T1,T2>&, const pair<T1,T2>&); // constexpr in C++14
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template <class T1, class T2> bool operator< (const pair<T1,T2>&, const pair<T1,T2>&); // constexpr in C++14
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template <class T1, class T2> bool operator> (const pair<T1,T2>&, const pair<T1,T2>&); // constexpr in C++14
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template <class T1, class T2> bool operator>=(const pair<T1,T2>&, const pair<T1,T2>&); // constexpr in C++14
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template <class T1, class T2> bool operator<=(const pair<T1,T2>&, const pair<T1,T2>&); // constexpr in C++14
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template <class T1, class T2> pair<V1, V2> make_pair(T1&&, T2&&); // constexpr in C++14
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template <class T1, class T2>
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void
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swap(pair<T1, T2>& x, pair<T1, T2>& y) noexcept(noexcept(x.swap(y)));
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struct piecewise_construct_t { };
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constexpr piecewise_construct_t piecewise_construct = piecewise_construct_t();
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template <class T> class tuple_size;
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template <size_t I, class T> class tuple_element;
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template <class T1, class T2> struct tuple_size<std::pair<T1, T2> >;
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template <class T1, class T2> struct tuple_element<0, std::pair<T1, T2> >;
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template <class T1, class T2> struct tuple_element<1, std::pair<T1, T2> >;
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template<size_t I, class T1, class T2>
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typename tuple_element<I, std::pair<T1, T2> >::type&
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get(std::pair<T1, T2>&) noexcept; // constexpr in C++14
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template<size_t I, class T1, class T2>
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const typename const tuple_element<I, std::pair<T1, T2> >::type&
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get(const std::pair<T1, T2>&) noexcept; // constexpr in C++14
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template<size_t I, class T1, class T2>
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typename tuple_element<I, std::pair<T1, T2> >::type&&
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get(std::pair<T1, T2>&&) noexcept; // constexpr in C++14
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template<class T1, class T2>
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constexpr T1& get(std::pair<T1, T2>&) noexcept; // C++14
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template<size_t I, class T1, class T2>
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constexpr T1 const& get(std::pair<T1, T2> const &) noexcept; // C++14
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template<size_t I, class T1, class T2>
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constexpr T1&& get(std::pair<T1, T2>&&) noexcept; // C++14
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// C++14
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template<class T, T... I>
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struct integer_sequence
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{
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typedef T value_type;
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static constexpr size_t size() noexcept;
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};
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template<size_t... I>
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using index_sequence = integer_sequence<size_t, I...>;
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template<class T, T N>
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using make_integer_sequence = integer_sequence<T, 0, 1, ..., N-1>;
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template<size_t N>
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using make_index_sequence = make_integer_sequence<size_t, N>;
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template<class... T>
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using index_sequence_for = make_index_sequence<sizeof...(T)>;
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template<class T, class U=T>
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T exchange(T& obj, U&& new_value);
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} // std
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*/
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#include <__config>
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#include <__tuple>
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#include <type_traits>
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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_BEGIN_NAMESPACE_STD
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namespace rel_ops
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{
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template<class _Tp>
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inline _LIBCPP_INLINE_VISIBILITY
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bool
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operator!=(const _Tp& __x, const _Tp& __y)
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{
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return !(__x == __y);
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}
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template<class _Tp>
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inline _LIBCPP_INLINE_VISIBILITY
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bool
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operator> (const _Tp& __x, const _Tp& __y)
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{
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return __y < __x;
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}
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template<class _Tp>
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inline _LIBCPP_INLINE_VISIBILITY
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bool
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operator<=(const _Tp& __x, const _Tp& __y)
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{
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return !(__y < __x);
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}
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template<class _Tp>
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inline _LIBCPP_INLINE_VISIBILITY
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bool
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operator>=(const _Tp& __x, const _Tp& __y)
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{
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return !(__x < __y);
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}
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} // rel_ops
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// swap_ranges
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template <class _ForwardIterator1, class _ForwardIterator2>
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inline _LIBCPP_INLINE_VISIBILITY
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_ForwardIterator2
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swap_ranges(_ForwardIterator1 __first1, _ForwardIterator1 __last1, _ForwardIterator2 __first2)
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{
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for(; __first1 != __last1; ++__first1, ++__first2)
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swap(*__first1, *__first2);
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return __first2;
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}
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template<class _Tp, size_t _Np>
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inline _LIBCPP_INLINE_VISIBILITY
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void
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swap(_Tp (&__a)[_Np], _Tp (&__b)[_Np]) _NOEXCEPT_(__is_nothrow_swappable<_Tp>::value)
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{
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_VSTD::swap_ranges(__a, __a + _Np, __b);
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}
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template <class _Tp>
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inline _LIBCPP_INLINE_VISIBILITY _LIBCPP_CONSTEXPR_AFTER_CXX11
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#ifndef _LIBCPP_HAS_NO_RVALUE_REFERENCES
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typename conditional
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<
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!is_nothrow_move_constructible<_Tp>::value && is_copy_constructible<_Tp>::value,
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const _Tp&,
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_Tp&&
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>::type
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#else // _LIBCPP_HAS_NO_RVALUE_REFERENCES
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const _Tp&
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#endif
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move_if_noexcept(_Tp& __x) _NOEXCEPT
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{
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return _VSTD::move(__x);
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}
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struct _LIBCPP_TYPE_VIS_ONLY piecewise_construct_t { };
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#if defined(_LIBCPP_HAS_NO_CONSTEXPR) || defined(_LIBCPP_BUILDING_UTILITY)
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extern const piecewise_construct_t piecewise_construct;// = piecewise_construct_t();
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#else
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constexpr piecewise_construct_t piecewise_construct = piecewise_construct_t();
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#endif
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template <class _T1, class _T2>
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struct _LIBCPP_TYPE_VIS_ONLY pair
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{
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typedef _T1 first_type;
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typedef _T2 second_type;
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_T1 first;
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_T2 second;
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// pair(const pair&) = default;
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// pair(pair&&) = default;
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_LIBCPP_INLINE_VISIBILITY _LIBCPP_CONSTEXPR pair() : first(), second() {}
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_LIBCPP_INLINE_VISIBILITY _LIBCPP_CONSTEXPR_AFTER_CXX11
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pair(const _T1& __x, const _T2& __y)
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: first(__x), second(__y) {}
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template<class _U1, class _U2>
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_LIBCPP_INLINE_VISIBILITY _LIBCPP_CONSTEXPR_AFTER_CXX11
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pair(const pair<_U1, _U2>& __p
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#ifndef _LIBCPP_HAS_NO_ADVANCED_SFINAE
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,typename enable_if<is_convertible<const _U1&, _T1>::value &&
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is_convertible<const _U2&, _T2>::value>::type* = 0
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#endif
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)
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: first(__p.first), second(__p.second) {}
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#if !defined(_LIBCPP_HAS_NO_DEFAULTED_FUNCTIONS) && _LIBCPP_TRIVIAL_PAIR_COPY_CTOR
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_LIBCPP_INLINE_VISIBILITY
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pair(const pair& __p) = default;
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#elif !defined(_LIBCPP_HAS_NO_RVALUE_REFERENCES) || !_LIBCPP_TRIVIAL_PAIR_COPY_CTOR
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_LIBCPP_INLINE_VISIBILITY
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pair(const pair& __p)
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_NOEXCEPT_(is_nothrow_copy_constructible<first_type>::value &&
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is_nothrow_copy_constructible<second_type>::value)
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: first(__p.first),
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second(__p.second)
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{
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}
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#endif
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_LIBCPP_INLINE_VISIBILITY
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pair& operator=(const pair& __p)
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_NOEXCEPT_(is_nothrow_copy_assignable<first_type>::value &&
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is_nothrow_copy_assignable<second_type>::value)
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{
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first = __p.first;
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second = __p.second;
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return *this;
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}
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#ifndef _LIBCPP_HAS_NO_RVALUE_REFERENCES
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template <class _U1, class _U2,
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class = typename enable_if<is_convertible<_U1, first_type>::value &&
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is_convertible<_U2, second_type>::value>::type>
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_LIBCPP_INLINE_VISIBILITY _LIBCPP_CONSTEXPR_AFTER_CXX11
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pair(_U1&& __u1, _U2&& __u2)
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: first(_VSTD::forward<_U1>(__u1)),
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second(_VSTD::forward<_U2>(__u2))
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{}
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template<class _U1, class _U2>
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_LIBCPP_INLINE_VISIBILITY _LIBCPP_CONSTEXPR_AFTER_CXX11
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pair(pair<_U1, _U2>&& __p,
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typename enable_if<is_convertible<_U1, _T1>::value &&
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is_convertible<_U2, _T2>::value>::type* = 0)
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: first(_VSTD::forward<_U1>(__p.first)),
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second(_VSTD::forward<_U2>(__p.second)) {}
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#ifndef _LIBCPP_HAS_NO_DEFAULTED_FUNCTIONS
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_LIBCPP_INLINE_VISIBILITY
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pair(pair&& __p) = default;
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#else
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_LIBCPP_INLINE_VISIBILITY
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pair(pair&& __p) _NOEXCEPT_(is_nothrow_move_constructible<first_type>::value &&
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is_nothrow_move_constructible<second_type>::value)
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: first(_VSTD::forward<first_type>(__p.first)),
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second(_VSTD::forward<second_type>(__p.second))
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{
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}
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#endif
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_LIBCPP_INLINE_VISIBILITY
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pair&
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operator=(pair&& __p) _NOEXCEPT_(is_nothrow_move_assignable<first_type>::value &&
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is_nothrow_move_assignable<second_type>::value)
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{
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first = _VSTD::forward<first_type>(__p.first);
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second = _VSTD::forward<second_type>(__p.second);
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return *this;
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}
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#ifndef _LIBCPP_HAS_NO_VARIADICS
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template<class _Tuple,
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class = typename enable_if<__tuple_convertible<_Tuple, pair>::value>::type>
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_LIBCPP_INLINE_VISIBILITY _LIBCPP_CONSTEXPR_AFTER_CXX11
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pair(_Tuple&& __p)
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: first(_VSTD::forward<typename tuple_element<0,
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typename __make_tuple_types<_Tuple>::type>::type>(get<0>(__p))),
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second(_VSTD::forward<typename tuple_element<1,
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typename __make_tuple_types<_Tuple>::type>::type>(get<1>(__p)))
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{}
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template <class... _Args1, class... _Args2>
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_LIBCPP_INLINE_VISIBILITY
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pair(piecewise_construct_t __pc, tuple<_Args1...> __first_args,
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tuple<_Args2...> __second_args)
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: pair(__pc, __first_args, __second_args,
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typename __make_tuple_indices<sizeof...(_Args1)>::type(),
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typename __make_tuple_indices<sizeof...(_Args2) >::type())
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{}
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template <class _Tuple,
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class = typename enable_if<__tuple_assignable<_Tuple, pair>::value>::type>
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_LIBCPP_INLINE_VISIBILITY
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pair&
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operator=(_Tuple&& __p)
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{
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typedef typename __make_tuple_types<_Tuple>::type _TupleRef;
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typedef typename tuple_element<0, _TupleRef>::type _U0;
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typedef typename tuple_element<1, _TupleRef>::type _U1;
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first = _VSTD::forward<_U0>(_VSTD::get<0>(__p));
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second = _VSTD::forward<_U1>(_VSTD::get<1>(__p));
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return *this;
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}
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#endif // _LIBCPP_HAS_NO_VARIADICS
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#endif // _LIBCPP_HAS_NO_RVALUE_REFERENCES
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_LIBCPP_INLINE_VISIBILITY
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void
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swap(pair& __p) _NOEXCEPT_(__is_nothrow_swappable<first_type>::value &&
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__is_nothrow_swappable<second_type>::value)
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{
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_VSTD::iter_swap(&first, &__p.first);
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_VSTD::iter_swap(&second, &__p.second);
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}
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private:
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#ifndef _LIBCPP_HAS_NO_VARIADICS
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template <class... _Args1, class... _Args2, size_t... _I1, size_t... _I2>
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_LIBCPP_INLINE_VISIBILITY
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pair(piecewise_construct_t,
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tuple<_Args1...>& __first_args, tuple<_Args2...>& __second_args,
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__tuple_indices<_I1...>, __tuple_indices<_I2...>);
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#endif // _LIBCPP_HAS_NO_VARIADICS
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};
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template <class _T1, class _T2>
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inline _LIBCPP_INLINE_VISIBILITY _LIBCPP_CONSTEXPR_AFTER_CXX11
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bool
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operator==(const pair<_T1,_T2>& __x, const pair<_T1,_T2>& __y)
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{
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return __x.first == __y.first && __x.second == __y.second;
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}
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template <class _T1, class _T2>
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inline _LIBCPP_INLINE_VISIBILITY _LIBCPP_CONSTEXPR_AFTER_CXX11
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bool
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operator!=(const pair<_T1,_T2>& __x, const pair<_T1,_T2>& __y)
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{
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return !(__x == __y);
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}
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template <class _T1, class _T2>
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inline _LIBCPP_INLINE_VISIBILITY _LIBCPP_CONSTEXPR_AFTER_CXX11
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bool
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operator< (const pair<_T1,_T2>& __x, const pair<_T1,_T2>& __y)
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{
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return __x.first < __y.first || (!(__y.first < __x.first) && __x.second < __y.second);
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}
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template <class _T1, class _T2>
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inline _LIBCPP_INLINE_VISIBILITY _LIBCPP_CONSTEXPR_AFTER_CXX11
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bool
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operator> (const pair<_T1,_T2>& __x, const pair<_T1,_T2>& __y)
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{
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return __y < __x;
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}
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template <class _T1, class _T2>
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inline _LIBCPP_INLINE_VISIBILITY _LIBCPP_CONSTEXPR_AFTER_CXX11
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bool
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operator>=(const pair<_T1,_T2>& __x, const pair<_T1,_T2>& __y)
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{
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return !(__x < __y);
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}
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template <class _T1, class _T2>
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inline _LIBCPP_INLINE_VISIBILITY _LIBCPP_CONSTEXPR_AFTER_CXX11
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bool
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operator<=(const pair<_T1,_T2>& __x, const pair<_T1,_T2>& __y)
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{
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return !(__y < __x);
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}
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template <class _T1, class _T2>
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inline _LIBCPP_INLINE_VISIBILITY
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typename enable_if
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<
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__is_swappable<_T1>::value &&
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__is_swappable<_T2>::value,
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void
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>::type
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swap(pair<_T1, _T2>& __x, pair<_T1, _T2>& __y)
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_NOEXCEPT_((__is_nothrow_swappable<_T1>::value &&
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__is_nothrow_swappable<_T2>::value))
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{
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__x.swap(__y);
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}
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#ifndef _LIBCPP_HAS_NO_RVALUE_REFERENCES
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template <class _Tp> class _LIBCPP_TYPE_VIS_ONLY reference_wrapper;
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template <class _Tp>
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struct ___make_pair_return
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{
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typedef _Tp type;
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};
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template <class _Tp>
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struct ___make_pair_return<reference_wrapper<_Tp>>
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{
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typedef _Tp& type;
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};
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template <class _Tp>
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struct __make_pair_return
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{
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typedef typename ___make_pair_return<typename decay<_Tp>::type>::type type;
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};
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template <class _T1, class _T2>
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inline _LIBCPP_INLINE_VISIBILITY _LIBCPP_CONSTEXPR_AFTER_CXX11
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pair<typename __make_pair_return<_T1>::type, typename __make_pair_return<_T2>::type>
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make_pair(_T1&& __t1, _T2&& __t2)
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{
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return pair<typename __make_pair_return<_T1>::type, typename __make_pair_return<_T2>::type>
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(_VSTD::forward<_T1>(__t1), _VSTD::forward<_T2>(__t2));
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}
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#else // _LIBCPP_HAS_NO_RVALUE_REFERENCES
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template <class _T1, class _T2>
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inline _LIBCPP_INLINE_VISIBILITY
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pair<_T1,_T2>
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make_pair(_T1 __x, _T2 __y)
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{
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return pair<_T1, _T2>(__x, __y);
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}
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#endif // _LIBCPP_HAS_NO_RVALUE_REFERENCES
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template <class _T1, class _T2>
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class _LIBCPP_TYPE_VIS_ONLY tuple_size<pair<_T1, _T2> >
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: public integral_constant<size_t, 2> {};
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template <class _T1, class _T2>
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class _LIBCPP_TYPE_VIS_ONLY tuple_size<const pair<_T1, _T2> >
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: public integral_constant<size_t, 2> {};
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template <class _T1, class _T2>
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class _LIBCPP_TYPE_VIS_ONLY tuple_element<0, pair<_T1, _T2> >
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{
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public:
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typedef _T1 type;
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};
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template <class _T1, class _T2>
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class _LIBCPP_TYPE_VIS_ONLY tuple_element<1, pair<_T1, _T2> >
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{
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public:
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typedef _T2 type;
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};
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template <class _T1, class _T2>
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class _LIBCPP_TYPE_VIS_ONLY tuple_element<0, const pair<_T1, _T2> >
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{
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public:
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typedef const _T1 type;
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};
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template <class _T1, class _T2>
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class _LIBCPP_TYPE_VIS_ONLY tuple_element<1, const pair<_T1, _T2> >
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{
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public:
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typedef const _T2 type;
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};
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template <size_t _Ip> struct __get_pair;
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template <>
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struct __get_pair<0>
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{
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template <class _T1, class _T2>
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static
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_LIBCPP_INLINE_VISIBILITY _LIBCPP_CONSTEXPR_AFTER_CXX11
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_T1&
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get(pair<_T1, _T2>& __p) _NOEXCEPT {return __p.first;}
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template <class _T1, class _T2>
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static
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_LIBCPP_INLINE_VISIBILITY _LIBCPP_CONSTEXPR_AFTER_CXX11
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const _T1&
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get(const pair<_T1, _T2>& __p) _NOEXCEPT {return __p.first;}
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#ifndef _LIBCPP_HAS_NO_RVALUE_REFERENCES
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template <class _T1, class _T2>
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static
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_LIBCPP_INLINE_VISIBILITY _LIBCPP_CONSTEXPR_AFTER_CXX11
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_T1&&
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get(pair<_T1, _T2>&& __p) _NOEXCEPT {return _VSTD::forward<_T1>(__p.first);}
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#endif // _LIBCPP_HAS_NO_RVALUE_REFERENCES
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};
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template <>
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struct __get_pair<1>
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{
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template <class _T1, class _T2>
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static
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_LIBCPP_INLINE_VISIBILITY _LIBCPP_CONSTEXPR_AFTER_CXX11
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_T2&
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get(pair<_T1, _T2>& __p) _NOEXCEPT {return __p.second;}
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template <class _T1, class _T2>
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static
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_LIBCPP_INLINE_VISIBILITY _LIBCPP_CONSTEXPR_AFTER_CXX11
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const _T2&
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get(const pair<_T1, _T2>& __p) _NOEXCEPT {return __p.second;}
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#ifndef _LIBCPP_HAS_NO_RVALUE_REFERENCES
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template <class _T1, class _T2>
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static
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_LIBCPP_INLINE_VISIBILITY _LIBCPP_CONSTEXPR_AFTER_CXX11
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_T2&&
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get(pair<_T1, _T2>&& __p) _NOEXCEPT {return _VSTD::forward<_T2>(__p.second);}
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#endif // _LIBCPP_HAS_NO_RVALUE_REFERENCES
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};
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template <size_t _Ip, class _T1, class _T2>
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inline _LIBCPP_INLINE_VISIBILITY _LIBCPP_CONSTEXPR_AFTER_CXX11
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typename tuple_element<_Ip, pair<_T1, _T2> >::type&
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get(pair<_T1, _T2>& __p) _NOEXCEPT
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{
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return __get_pair<_Ip>::get(__p);
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}
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template <size_t _Ip, class _T1, class _T2>
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inline _LIBCPP_INLINE_VISIBILITY _LIBCPP_CONSTEXPR_AFTER_CXX11
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const typename tuple_element<_Ip, pair<_T1, _T2> >::type&
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get(const pair<_T1, _T2>& __p) _NOEXCEPT
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{
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return __get_pair<_Ip>::get(__p);
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}
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#ifndef _LIBCPP_HAS_NO_RVALUE_REFERENCES
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template <size_t _Ip, class _T1, class _T2>
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inline _LIBCPP_INLINE_VISIBILITY _LIBCPP_CONSTEXPR_AFTER_CXX11
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typename tuple_element<_Ip, pair<_T1, _T2> >::type&&
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get(pair<_T1, _T2>&& __p) _NOEXCEPT
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{
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return __get_pair<_Ip>::get(_VSTD::move(__p));
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}
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#endif // _LIBCPP_HAS_NO_RVALUE_REFERENCES
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#if _LIBCPP_STD_VER > 11
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template <class _T1, class _T2>
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inline _LIBCPP_INLINE_VISIBILITY
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constexpr _T1 & get(pair<_T1, _T2>& __p) _NOEXCEPT
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{
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return __get_pair<0>::get(__p);
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}
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template <class _T1, class _T2>
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inline _LIBCPP_INLINE_VISIBILITY
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constexpr _T1 const & get(pair<_T1, _T2> const& __p) _NOEXCEPT
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{
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return __get_pair<0>::get(__p);
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}
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template <class _T1, class _T2>
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inline _LIBCPP_INLINE_VISIBILITY
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constexpr _T1 && get(pair<_T1, _T2>&& __p) _NOEXCEPT
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{
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return __get_pair<0>::get(_VSTD::move(__p));
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}
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template <class _T1, class _T2>
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inline _LIBCPP_INLINE_VISIBILITY
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constexpr _T1 & get(pair<_T2, _T1>& __p) _NOEXCEPT
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{
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return __get_pair<1>::get(__p);
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}
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template <class _T1, class _T2>
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inline _LIBCPP_INLINE_VISIBILITY
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constexpr _T1 const & get(pair<_T2, _T1> const& __p) _NOEXCEPT
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{
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return __get_pair<1>::get(__p);
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}
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template <class _T1, class _T2>
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inline _LIBCPP_INLINE_VISIBILITY
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constexpr _T1 && get(pair<_T2, _T1>&& __p) _NOEXCEPT
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{
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return __get_pair<1>::get(_VSTD::move(__p));
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}
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#endif
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#if _LIBCPP_STD_VER > 11
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template<class _Tp, _Tp... _Ip>
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struct _LIBCPP_TYPE_VIS_ONLY integer_sequence
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{
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typedef _Tp value_type;
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static_assert( is_integral<_Tp>::value,
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"std::integer_sequence can only be instantiated with an integral type" );
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static
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_LIBCPP_INLINE_VISIBILITY
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constexpr
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size_t
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size() noexcept { return sizeof...(_Ip); }
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};
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template<size_t... _Ip>
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using index_sequence = integer_sequence<size_t, _Ip...>;
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namespace __detail {
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template<typename _Tp, size_t ..._Extra> struct __repeat;
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template<typename _Tp, _Tp ..._Np, size_t ..._Extra> struct __repeat<integer_sequence<_Tp, _Np...>, _Extra...> {
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typedef integer_sequence<_Tp,
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_Np...,
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sizeof...(_Np) + _Np...,
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2 * sizeof...(_Np) + _Np...,
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3 * sizeof...(_Np) + _Np...,
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4 * sizeof...(_Np) + _Np...,
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5 * sizeof...(_Np) + _Np...,
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6 * sizeof...(_Np) + _Np...,
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7 * sizeof...(_Np) + _Np...,
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_Extra...> type;
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};
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template<size_t _Np> struct __parity;
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template<size_t _Np> struct __make : __parity<_Np % 8>::template __pmake<_Np> {};
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template<> struct __make<0> { typedef integer_sequence<size_t> type; };
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template<> struct __make<1> { typedef integer_sequence<size_t, 0> type; };
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template<> struct __make<2> { typedef integer_sequence<size_t, 0, 1> type; };
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template<> struct __make<3> { typedef integer_sequence<size_t, 0, 1, 2> type; };
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template<> struct __make<4> { typedef integer_sequence<size_t, 0, 1, 2, 3> type; };
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template<> struct __make<5> { typedef integer_sequence<size_t, 0, 1, 2, 3, 4> type; };
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template<> struct __make<6> { typedef integer_sequence<size_t, 0, 1, 2, 3, 4, 5> type; };
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template<> struct __make<7> { typedef integer_sequence<size_t, 0, 1, 2, 3, 4, 5, 6> type; };
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template<> struct __parity<0> { template<size_t _Np> struct __pmake : __repeat<typename __make<_Np / 8>::type> {}; };
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template<> struct __parity<1> { template<size_t _Np> struct __pmake : __repeat<typename __make<_Np / 8>::type, _Np - 1> {}; };
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template<> struct __parity<2> { template<size_t _Np> struct __pmake : __repeat<typename __make<_Np / 8>::type, _Np - 2, _Np - 1> {}; };
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template<> struct __parity<3> { template<size_t _Np> struct __pmake : __repeat<typename __make<_Np / 8>::type, _Np - 3, _Np - 2, _Np - 1> {}; };
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template<> struct __parity<4> { template<size_t _Np> struct __pmake : __repeat<typename __make<_Np / 8>::type, _Np - 4, _Np - 3, _Np - 2, _Np - 1> {}; };
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template<> struct __parity<5> { template<size_t _Np> struct __pmake : __repeat<typename __make<_Np / 8>::type, _Np - 5, _Np - 4, _Np - 3, _Np - 2, _Np - 1> {}; };
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template<> struct __parity<6> { template<size_t _Np> struct __pmake : __repeat<typename __make<_Np / 8>::type, _Np - 6, _Np - 5, _Np - 4, _Np - 3, _Np - 2, _Np - 1> {}; };
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template<> struct __parity<7> { template<size_t _Np> struct __pmake : __repeat<typename __make<_Np / 8>::type, _Np - 7, _Np - 6, _Np - 5, _Np - 4, _Np - 3, _Np - 2, _Np - 1> {}; };
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template<typename _Tp, typename _Up> struct __convert {
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template<typename> struct __result;
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template<_Tp ..._Np> struct __result<integer_sequence<_Tp, _Np...> > { typedef integer_sequence<_Up, _Np...> type; };
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};
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template<typename _Tp> struct __convert<_Tp, _Tp> { template<typename _Up> struct __result { typedef _Up type; }; };
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}
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template<typename _Tp, _Tp _Np> using __make_integer_sequence_unchecked =
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typename __detail::__convert<size_t, _Tp>::template __result<typename __detail::__make<_Np>::type>::type;
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template <class _Tp, _Tp _Ep>
|
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struct __make_integer_sequence
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{
|
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static_assert(is_integral<_Tp>::value,
|
|
"std::make_integer_sequence can only be instantiated with an integral type" );
|
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static_assert(0 <= _Ep, "std::make_integer_sequence input shall not be negative");
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typedef __make_integer_sequence_unchecked<_Tp, _Ep> type;
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};
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template<class _Tp, _Tp _Np>
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using make_integer_sequence = typename __make_integer_sequence<_Tp, _Np>::type;
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template<size_t _Np>
|
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using make_index_sequence = make_integer_sequence<size_t, _Np>;
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template<class... _Tp>
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using index_sequence_for = make_index_sequence<sizeof...(_Tp)>;
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#endif // _LIBCPP_STD_VER > 11
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#if _LIBCPP_STD_VER > 11
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template<class _T1, class _T2 = _T1>
|
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inline _LIBCPP_INLINE_VISIBILITY
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_T1 exchange(_T1& __obj, _T2 && __new_value)
|
|
{
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_T1 __old_value = _VSTD::move(__obj);
|
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__obj = _VSTD::forward<_T2>(__new_value);
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return __old_value;
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}
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#endif // _LIBCPP_STD_VER > 11
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_LIBCPP_END_NAMESPACE_STD
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#endif // _LIBCPP_UTILITY
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