1*e4b17023SJohn Marino // Pair implementation -*- C++ -*- 2*e4b17023SJohn Marino 3*e4b17023SJohn Marino // Copyright (C) 2001, 2002, 2003, 2004, 2005, 2006, 2007, 2008, 2009, 4*e4b17023SJohn Marino // 2010, 2011, 2012 5*e4b17023SJohn Marino // Free Software Foundation, Inc. 6*e4b17023SJohn Marino // 7*e4b17023SJohn Marino // This file is part of the GNU ISO C++ Library. This library is free 8*e4b17023SJohn Marino // software; you can redistribute it and/or modify it under the 9*e4b17023SJohn Marino // terms of the GNU General Public License as published by the 10*e4b17023SJohn Marino // Free Software Foundation; either version 3, or (at your option) 11*e4b17023SJohn Marino // any later version. 12*e4b17023SJohn Marino 13*e4b17023SJohn Marino // This library is distributed in the hope that it will be useful, 14*e4b17023SJohn Marino // but WITHOUT ANY WARRANTY; without even the implied warranty of 15*e4b17023SJohn Marino // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the 16*e4b17023SJohn Marino // GNU General Public License for more details. 17*e4b17023SJohn Marino 18*e4b17023SJohn Marino // Under Section 7 of GPL version 3, you are granted additional 19*e4b17023SJohn Marino // permissions described in the GCC Runtime Library Exception, version 20*e4b17023SJohn Marino // 3.1, as published by the Free Software Foundation. 21*e4b17023SJohn Marino 22*e4b17023SJohn Marino // You should have received a copy of the GNU General Public License and 23*e4b17023SJohn Marino // a copy of the GCC Runtime Library Exception along with this program; 24*e4b17023SJohn Marino // see the files COPYING3 and COPYING.RUNTIME respectively. If not, see 25*e4b17023SJohn Marino // <http://www.gnu.org/licenses/>. 26*e4b17023SJohn Marino 27*e4b17023SJohn Marino /* 28*e4b17023SJohn Marino * 29*e4b17023SJohn Marino * Copyright (c) 1994 30*e4b17023SJohn Marino * Hewlett-Packard Company 31*e4b17023SJohn Marino * 32*e4b17023SJohn Marino * Permission to use, copy, modify, distribute and sell this software 33*e4b17023SJohn Marino * and its documentation for any purpose is hereby granted without fee, 34*e4b17023SJohn Marino * provided that the above copyright notice appear in all copies and 35*e4b17023SJohn Marino * that both that copyright notice and this permission notice appear 36*e4b17023SJohn Marino * in supporting documentation. Hewlett-Packard Company makes no 37*e4b17023SJohn Marino * representations about the suitability of this software for any 38*e4b17023SJohn Marino * purpose. It is provided "as is" without express or implied warranty. 39*e4b17023SJohn Marino * 40*e4b17023SJohn Marino * 41*e4b17023SJohn Marino * Copyright (c) 1996,1997 42*e4b17023SJohn Marino * Silicon Graphics Computer Systems, Inc. 43*e4b17023SJohn Marino * 44*e4b17023SJohn Marino * Permission to use, copy, modify, distribute and sell this software 45*e4b17023SJohn Marino * and its documentation for any purpose is hereby granted without fee, 46*e4b17023SJohn Marino * provided that the above copyright notice appear in all copies and 47*e4b17023SJohn Marino * that both that copyright notice and this permission notice appear 48*e4b17023SJohn Marino * in supporting documentation. Silicon Graphics makes no 49*e4b17023SJohn Marino * representations about the suitability of this software for any 50*e4b17023SJohn Marino * purpose. It is provided "as is" without express or implied warranty. 51*e4b17023SJohn Marino */ 52*e4b17023SJohn Marino 53*e4b17023SJohn Marino /** @file bits/stl_pair.h 54*e4b17023SJohn Marino * This is an internal header file, included by other library headers. 55*e4b17023SJohn Marino * Do not attempt to use it directly. @headername{utility} 56*e4b17023SJohn Marino */ 57*e4b17023SJohn Marino 58*e4b17023SJohn Marino #ifndef _STL_PAIR_H 59*e4b17023SJohn Marino #define _STL_PAIR_H 1 60*e4b17023SJohn Marino 61*e4b17023SJohn Marino #include <bits/move.h> // for std::move / std::forward, and std::swap 62*e4b17023SJohn Marino 63*e4b17023SJohn Marino #ifdef __GXX_EXPERIMENTAL_CXX0X__ 64*e4b17023SJohn Marino #include <type_traits> // for std::__decay_and_strip too 65*e4b17023SJohn Marino #endif 66*e4b17023SJohn Marino 67*e4b17023SJohn Marino namespace std _GLIBCXX_VISIBILITY(default) 68*e4b17023SJohn Marino { 69*e4b17023SJohn Marino _GLIBCXX_BEGIN_NAMESPACE_VERSION 70*e4b17023SJohn Marino 71*e4b17023SJohn Marino #ifdef __GXX_EXPERIMENTAL_CXX0X__ 72*e4b17023SJohn Marino /// piecewise_construct_t 73*e4b17023SJohn Marino struct piecewise_construct_t { }; 74*e4b17023SJohn Marino 75*e4b17023SJohn Marino /// piecewise_construct 76*e4b17023SJohn Marino constexpr piecewise_construct_t piecewise_construct = piecewise_construct_t(); 77*e4b17023SJohn Marino 78*e4b17023SJohn Marino // Forward declarations. 79*e4b17023SJohn Marino template<typename...> 80*e4b17023SJohn Marino class tuple; 81*e4b17023SJohn Marino 82*e4b17023SJohn Marino template<std::size_t...> 83*e4b17023SJohn Marino struct _Index_tuple; 84*e4b17023SJohn Marino #endif 85*e4b17023SJohn Marino 86*e4b17023SJohn Marino /// Struct holding two objects of arbitrary type. 87*e4b17023SJohn Marino template<class _T1, class _T2> 88*e4b17023SJohn Marino struct pair 89*e4b17023SJohn Marino { 90*e4b17023SJohn Marino typedef _T1 first_type; /// @c first_type is the first bound type 91*e4b17023SJohn Marino typedef _T2 second_type; /// @c second_type is the second bound type 92*e4b17023SJohn Marino 93*e4b17023SJohn Marino _T1 first; /// @c first is a copy of the first object 94*e4b17023SJohn Marino _T2 second; /// @c second is a copy of the second object 95*e4b17023SJohn Marino 96*e4b17023SJohn Marino // _GLIBCXX_RESOLVE_LIB_DEFECTS 97*e4b17023SJohn Marino // 265. std::pair::pair() effects overly restrictive 98*e4b17023SJohn Marino /** The default constructor creates @c first and @c second using their 99*e4b17023SJohn Marino * respective default constructors. */ 100*e4b17023SJohn Marino _GLIBCXX_CONSTEXPR pair() 101*e4b17023SJohn Marino : first(), second() { } 102*e4b17023SJohn Marino 103*e4b17023SJohn Marino /** Two objects may be passed to a @c pair constructor to be copied. */ 104*e4b17023SJohn Marino _GLIBCXX_CONSTEXPR pair(const _T1& __a, const _T2& __b) 105*e4b17023SJohn Marino : first(__a), second(__b) { } 106*e4b17023SJohn Marino 107*e4b17023SJohn Marino /** There is also a templated copy ctor for the @c pair class itself. */ 108*e4b17023SJohn Marino #ifndef __GXX_EXPERIMENTAL_CXX0X__ 109*e4b17023SJohn Marino template<class _U1, class _U2> 110*e4b17023SJohn Marino pair(const pair<_U1, _U2>& __p) 111*e4b17023SJohn Marino : first(__p.first), second(__p.second) { } 112*e4b17023SJohn Marino #else 113*e4b17023SJohn Marino template<class _U1, class _U2, class = typename 114*e4b17023SJohn Marino enable_if<__and_<is_convertible<const _U1&, _T1>, 115*e4b17023SJohn Marino is_convertible<const _U2&, _T2>>::value>::type> 116*e4b17023SJohn Marino constexpr pair(const pair<_U1, _U2>& __p) 117*e4b17023SJohn Marino : first(__p.first), second(__p.second) { } 118*e4b17023SJohn Marino 119*e4b17023SJohn Marino constexpr pair(const pair&) = default; 120*e4b17023SJohn Marino constexpr pair(pair&&) = default; 121*e4b17023SJohn Marino 122*e4b17023SJohn Marino // DR 811. 123*e4b17023SJohn Marino template<class _U1, class = typename 124*e4b17023SJohn Marino enable_if<is_convertible<_U1, _T1>::value>::type> 125*e4b17023SJohn Marino constexpr pair(_U1&& __x, const _T2& __y) 126*e4b17023SJohn Marino : first(std::forward<_U1>(__x)), second(__y) { } 127*e4b17023SJohn Marino 128*e4b17023SJohn Marino template<class _U2, class = typename 129*e4b17023SJohn Marino enable_if<is_convertible<_U2, _T2>::value>::type> 130*e4b17023SJohn Marino constexpr pair(const _T1& __x, _U2&& __y) 131*e4b17023SJohn Marino : first(__x), second(std::forward<_U2>(__y)) { } 132*e4b17023SJohn Marino 133*e4b17023SJohn Marino template<class _U1, class _U2, class = typename 134*e4b17023SJohn Marino enable_if<__and_<is_convertible<_U1, _T1>, 135*e4b17023SJohn Marino is_convertible<_U2, _T2>>::value>::type> 136*e4b17023SJohn Marino constexpr pair(_U1&& __x, _U2&& __y) 137*e4b17023SJohn Marino : first(std::forward<_U1>(__x)), second(std::forward<_U2>(__y)) { } 138*e4b17023SJohn Marino 139*e4b17023SJohn Marino template<class _U1, class _U2, class = typename 140*e4b17023SJohn Marino enable_if<__and_<is_convertible<_U1, _T1>, 141*e4b17023SJohn Marino is_convertible<_U2, _T2>>::value>::type> 142*e4b17023SJohn Marino constexpr pair(pair<_U1, _U2>&& __p) 143*e4b17023SJohn Marino : first(std::forward<_U1>(__p.first)), 144*e4b17023SJohn Marino second(std::forward<_U2>(__p.second)) { } 145*e4b17023SJohn Marino 146*e4b17023SJohn Marino template<typename... _Args1, typename... _Args2> 147*e4b17023SJohn Marino pair(piecewise_construct_t, tuple<_Args1...>, tuple<_Args2...>); 148*e4b17023SJohn Marino 149*e4b17023SJohn Marino pair& 150*e4b17023SJohn Marino operator=(const pair& __p) 151*e4b17023SJohn Marino { 152*e4b17023SJohn Marino first = __p.first; 153*e4b17023SJohn Marino second = __p.second; 154*e4b17023SJohn Marino return *this; 155*e4b17023SJohn Marino } 156*e4b17023SJohn Marino 157*e4b17023SJohn Marino pair& 158*e4b17023SJohn Marino operator=(pair&& __p) 159*e4b17023SJohn Marino noexcept(__and_<is_nothrow_move_assignable<_T1>, 160*e4b17023SJohn Marino is_nothrow_move_assignable<_T2>>::value) 161*e4b17023SJohn Marino { 162*e4b17023SJohn Marino first = std::forward<first_type>(__p.first); 163*e4b17023SJohn Marino second = std::forward<second_type>(__p.second); 164*e4b17023SJohn Marino return *this; 165*e4b17023SJohn Marino } 166*e4b17023SJohn Marino 167*e4b17023SJohn Marino template<class _U1, class _U2> 168*e4b17023SJohn Marino pair& 169*e4b17023SJohn Marino operator=(const pair<_U1, _U2>& __p) 170*e4b17023SJohn Marino { 171*e4b17023SJohn Marino first = __p.first; 172*e4b17023SJohn Marino second = __p.second; 173*e4b17023SJohn Marino return *this; 174*e4b17023SJohn Marino } 175*e4b17023SJohn Marino 176*e4b17023SJohn Marino template<class _U1, class _U2> 177*e4b17023SJohn Marino pair& 178*e4b17023SJohn Marino operator=(pair<_U1, _U2>&& __p) 179*e4b17023SJohn Marino { 180*e4b17023SJohn Marino first = std::forward<_U1>(__p.first); 181*e4b17023SJohn Marino second = std::forward<_U2>(__p.second); 182*e4b17023SJohn Marino return *this; 183*e4b17023SJohn Marino } 184*e4b17023SJohn Marino 185*e4b17023SJohn Marino void 186*e4b17023SJohn Marino swap(pair& __p) 187*e4b17023SJohn Marino noexcept(noexcept(swap(first, __p.first)) 188*e4b17023SJohn Marino && noexcept(swap(second, __p.second))) 189*e4b17023SJohn Marino { 190*e4b17023SJohn Marino using std::swap; 191*e4b17023SJohn Marino swap(first, __p.first); 192*e4b17023SJohn Marino swap(second, __p.second); 193*e4b17023SJohn Marino } 194*e4b17023SJohn Marino 195*e4b17023SJohn Marino private: 196*e4b17023SJohn Marino template<typename... _Args1, std::size_t... _Indexes1, 197*e4b17023SJohn Marino typename... _Args2, std::size_t... _Indexes2> 198*e4b17023SJohn Marino pair(tuple<_Args1...>&, tuple<_Args2...>&, 199*e4b17023SJohn Marino _Index_tuple<_Indexes1...>, _Index_tuple<_Indexes2...>); 200*e4b17023SJohn Marino #endif 201*e4b17023SJohn Marino }; 202*e4b17023SJohn Marino 203*e4b17023SJohn Marino /// Two pairs of the same type are equal iff their members are equal. 204*e4b17023SJohn Marino template<class _T1, class _T2> 205*e4b17023SJohn Marino inline _GLIBCXX_CONSTEXPR bool 206*e4b17023SJohn Marino operator==(const pair<_T1, _T2>& __x, const pair<_T1, _T2>& __y) 207*e4b17023SJohn Marino { return __x.first == __y.first && __x.second == __y.second; } 208*e4b17023SJohn Marino 209*e4b17023SJohn Marino /// <http://gcc.gnu.org/onlinedocs/libstdc++/manual/utilities.html> 210*e4b17023SJohn Marino template<class _T1, class _T2> 211*e4b17023SJohn Marino inline _GLIBCXX_CONSTEXPR bool 212*e4b17023SJohn Marino operator<(const pair<_T1, _T2>& __x, const pair<_T1, _T2>& __y) 213*e4b17023SJohn Marino { return __x.first < __y.first 214*e4b17023SJohn Marino || (!(__y.first < __x.first) && __x.second < __y.second); } 215*e4b17023SJohn Marino 216*e4b17023SJohn Marino /// Uses @c operator== to find the result. 217*e4b17023SJohn Marino template<class _T1, class _T2> 218*e4b17023SJohn Marino inline _GLIBCXX_CONSTEXPR bool 219*e4b17023SJohn Marino operator!=(const pair<_T1, _T2>& __x, const pair<_T1, _T2>& __y) 220*e4b17023SJohn Marino { return !(__x == __y); } 221*e4b17023SJohn Marino 222*e4b17023SJohn Marino /// Uses @c operator< to find the result. 223*e4b17023SJohn Marino template<class _T1, class _T2> 224*e4b17023SJohn Marino inline _GLIBCXX_CONSTEXPR bool 225*e4b17023SJohn Marino operator>(const pair<_T1, _T2>& __x, const pair<_T1, _T2>& __y) 226*e4b17023SJohn Marino { return __y < __x; } 227*e4b17023SJohn Marino 228*e4b17023SJohn Marino /// Uses @c operator< to find the result. 229*e4b17023SJohn Marino template<class _T1, class _T2> 230*e4b17023SJohn Marino inline _GLIBCXX_CONSTEXPR bool 231*e4b17023SJohn Marino operator<=(const pair<_T1, _T2>& __x, const pair<_T1, _T2>& __y) 232*e4b17023SJohn Marino { return !(__y < __x); } 233*e4b17023SJohn Marino 234*e4b17023SJohn Marino /// Uses @c operator< to find the result. 235*e4b17023SJohn Marino template<class _T1, class _T2> 236*e4b17023SJohn Marino inline _GLIBCXX_CONSTEXPR bool 237*e4b17023SJohn Marino operator>=(const pair<_T1, _T2>& __x, const pair<_T1, _T2>& __y) 238*e4b17023SJohn Marino { return !(__x < __y); } 239*e4b17023SJohn Marino 240*e4b17023SJohn Marino #ifdef __GXX_EXPERIMENTAL_CXX0X__ 241*e4b17023SJohn Marino /// See std::pair::swap(). 242*e4b17023SJohn Marino // Note: no std::swap overloads in C++03 mode, this has performance 243*e4b17023SJohn Marino // implications, see, eg, libstdc++/38466. 244*e4b17023SJohn Marino template<class _T1, class _T2> 245*e4b17023SJohn Marino inline void 246*e4b17023SJohn Marino swap(pair<_T1, _T2>& __x, pair<_T1, _T2>& __y) 247*e4b17023SJohn Marino noexcept(noexcept(__x.swap(__y))) 248*e4b17023SJohn Marino { __x.swap(__y); } 249*e4b17023SJohn Marino #endif 250*e4b17023SJohn Marino 251*e4b17023SJohn Marino /** 252*e4b17023SJohn Marino * @brief A convenience wrapper for creating a pair from two objects. 253*e4b17023SJohn Marino * @param __x The first object. 254*e4b17023SJohn Marino * @param __y The second object. 255*e4b17023SJohn Marino * @return A newly-constructed pair<> object of the appropriate type. 256*e4b17023SJohn Marino * 257*e4b17023SJohn Marino * The standard requires that the objects be passed by reference-to-const, 258*e4b17023SJohn Marino * but LWG issue #181 says they should be passed by const value. We follow 259*e4b17023SJohn Marino * the LWG by default. 260*e4b17023SJohn Marino */ 261*e4b17023SJohn Marino // _GLIBCXX_RESOLVE_LIB_DEFECTS 262*e4b17023SJohn Marino // 181. make_pair() unintended behavior 263*e4b17023SJohn Marino #ifdef __GXX_EXPERIMENTAL_CXX0X__ 264*e4b17023SJohn Marino // NB: DR 706. 265*e4b17023SJohn Marino template<class _T1, class _T2> 266*e4b17023SJohn Marino constexpr pair<typename __decay_and_strip<_T1>::__type, 267*e4b17023SJohn Marino typename __decay_and_strip<_T2>::__type> 268*e4b17023SJohn Marino make_pair(_T1&& __x, _T2&& __y) 269*e4b17023SJohn Marino { 270*e4b17023SJohn Marino typedef typename __decay_and_strip<_T1>::__type __ds_type1; 271*e4b17023SJohn Marino typedef typename __decay_and_strip<_T2>::__type __ds_type2; 272*e4b17023SJohn Marino typedef pair<__ds_type1, __ds_type2> __pair_type; 273*e4b17023SJohn Marino return __pair_type(std::forward<_T1>(__x), std::forward<_T2>(__y)); 274*e4b17023SJohn Marino } 275*e4b17023SJohn Marino #else 276*e4b17023SJohn Marino template<class _T1, class _T2> 277*e4b17023SJohn Marino inline pair<_T1, _T2> 278*e4b17023SJohn Marino make_pair(_T1 __x, _T2 __y) 279*e4b17023SJohn Marino { return pair<_T1, _T2>(__x, __y); } 280*e4b17023SJohn Marino #endif 281*e4b17023SJohn Marino 282*e4b17023SJohn Marino _GLIBCXX_END_NAMESPACE_VERSION 283*e4b17023SJohn Marino } // namespace 284*e4b17023SJohn Marino 285*e4b17023SJohn Marino #endif /* _STL_PAIR_H */ 286