1ffeaf689SAlexander Kabaev // Debugging multimap implementation -*- C++ -*-
2ffeaf689SAlexander Kabaev 
3*f8a1b7d9SAlexander Kabaev // Copyright (C) 2003, 2004, 2005
4ffeaf689SAlexander Kabaev // Free Software Foundation, Inc.
5ffeaf689SAlexander Kabaev //
6ffeaf689SAlexander Kabaev // This file is part of the GNU ISO C++ Library.  This library is free
7ffeaf689SAlexander Kabaev // software; you can redistribute it and/or modify it under the
8ffeaf689SAlexander Kabaev // terms of the GNU General Public License as published by the
9ffeaf689SAlexander Kabaev // Free Software Foundation; either version 2, or (at your option)
10ffeaf689SAlexander Kabaev // any later version.
11ffeaf689SAlexander Kabaev 
12ffeaf689SAlexander Kabaev // This library is distributed in the hope that it will be useful,
13ffeaf689SAlexander Kabaev // but WITHOUT ANY WARRANTY; without even the implied warranty of
14ffeaf689SAlexander Kabaev // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
15ffeaf689SAlexander Kabaev // GNU General Public License for more details.
16ffeaf689SAlexander Kabaev 
17ffeaf689SAlexander Kabaev // You should have received a copy of the GNU General Public License along
18ffeaf689SAlexander Kabaev // with this library; see the file COPYING.  If not, write to the Free
19*f8a1b7d9SAlexander Kabaev // Software Foundation, 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301,
20ffeaf689SAlexander Kabaev // USA.
21ffeaf689SAlexander Kabaev 
22ffeaf689SAlexander Kabaev // As a special exception, you may use this file as part of a free software
23ffeaf689SAlexander Kabaev // library without restriction.  Specifically, if other files instantiate
24ffeaf689SAlexander Kabaev // templates or use macros or inline functions from this file, or you compile
25ffeaf689SAlexander Kabaev // this file and link it with other files to produce an executable, this
26ffeaf689SAlexander Kabaev // file does not by itself cause the resulting executable to be covered by
27ffeaf689SAlexander Kabaev // the GNU General Public License.  This exception does not however
28ffeaf689SAlexander Kabaev // invalidate any other reasons why the executable file might be covered by
29ffeaf689SAlexander Kabaev // the GNU General Public License.
30ffeaf689SAlexander Kabaev 
31*f8a1b7d9SAlexander Kabaev /** @file debug/multimap.h
32*f8a1b7d9SAlexander Kabaev  *  This file is a GNU debug extension to the Standard C++ Library.
33*f8a1b7d9SAlexander Kabaev  */
34*f8a1b7d9SAlexander Kabaev 
35ffeaf689SAlexander Kabaev #ifndef _GLIBCXX_DEBUG_MULTIMAP_H
36ffeaf689SAlexander Kabaev #define _GLIBCXX_DEBUG_MULTIMAP_H 1
37ffeaf689SAlexander Kabaev 
38ffeaf689SAlexander Kabaev #include <debug/safe_sequence.h>
39ffeaf689SAlexander Kabaev #include <debug/safe_iterator.h>
40ffeaf689SAlexander Kabaev #include <utility>
41ffeaf689SAlexander Kabaev 
42*f8a1b7d9SAlexander Kabaev namespace std
43*f8a1b7d9SAlexander Kabaev {
44*f8a1b7d9SAlexander Kabaev namespace __debug
45ffeaf689SAlexander Kabaev {
46ffeaf689SAlexander Kabaev   template<typename _Key, typename _Tp, typename _Compare = std::less<_Key>,
47ffeaf689SAlexander Kabaev 	   typename _Allocator = std::allocator<std::pair<const _Key, _Tp> > >
48ffeaf689SAlexander Kabaev     class multimap
49ffeaf689SAlexander Kabaev     : public _GLIBCXX_STD::multimap<_Key, _Tp, _Compare, _Allocator>,
50ffeaf689SAlexander Kabaev     public __gnu_debug::_Safe_sequence<multimap<_Key,_Tp,_Compare,_Allocator> >
51ffeaf689SAlexander Kabaev     {
52ffeaf689SAlexander Kabaev       typedef _GLIBCXX_STD::multimap<_Key, _Tp, _Compare, _Allocator> _Base;
53ffeaf689SAlexander Kabaev       typedef __gnu_debug::_Safe_sequence<multimap> _Safe_base;
54ffeaf689SAlexander Kabaev 
55ffeaf689SAlexander Kabaev     public:
56ffeaf689SAlexander Kabaev       // types:
57ffeaf689SAlexander Kabaev       typedef _Key				     key_type;
58ffeaf689SAlexander Kabaev       typedef _Tp				     mapped_type;
59ffeaf689SAlexander Kabaev       typedef std::pair<const _Key, _Tp>             value_type;
60ffeaf689SAlexander Kabaev       typedef _Compare                               key_compare;
61ffeaf689SAlexander Kabaev       typedef _Allocator                             allocator_type;
62*f8a1b7d9SAlexander Kabaev       typedef typename _Base::reference              reference;
63*f8a1b7d9SAlexander Kabaev       typedef typename _Base::const_reference        const_reference;
64ffeaf689SAlexander Kabaev 
65ffeaf689SAlexander Kabaev       typedef __gnu_debug::_Safe_iterator<typename _Base::iterator, multimap>
66ffeaf689SAlexander Kabaev                                                      iterator;
67ffeaf689SAlexander Kabaev       typedef __gnu_debug::_Safe_iterator<typename _Base::const_iterator,
68ffeaf689SAlexander Kabaev                                            multimap> const_iterator;
69ffeaf689SAlexander Kabaev 
70ffeaf689SAlexander Kabaev       typedef typename _Base::size_type              size_type;
71ffeaf689SAlexander Kabaev       typedef typename _Base::difference_type        difference_type;
72*f8a1b7d9SAlexander Kabaev       typedef typename _Base::pointer                pointer;
73*f8a1b7d9SAlexander Kabaev       typedef typename _Base::const_pointer          const_pointer;
74ffeaf689SAlexander Kabaev       typedef std::reverse_iterator<iterator>        reverse_iterator;
75ffeaf689SAlexander Kabaev       typedef std::reverse_iterator<const_iterator>  const_reverse_iterator;
76ffeaf689SAlexander Kabaev 
77ffeaf689SAlexander Kabaev       // 23.3.1.1 construct/copy/destroy:
78ffeaf689SAlexander Kabaev       explicit multimap(const _Compare& __comp = _Compare(),
79ffeaf689SAlexander Kabaev 			const _Allocator& __a = _Allocator())
_Base(__comp,__a)80ffeaf689SAlexander Kabaev       : _Base(__comp, __a) { }
81ffeaf689SAlexander Kabaev 
82ffeaf689SAlexander Kabaev       template<typename _InputIterator>
83ffeaf689SAlexander Kabaev       multimap(_InputIterator __first, _InputIterator __last,
84ffeaf689SAlexander Kabaev 	       const _Compare& __comp = _Compare(),
85ffeaf689SAlexander Kabaev 	       const _Allocator& __a = _Allocator())
_Base(__gnu_debug::__check_valid_range (__first,__last),__last,__comp,__a)86ffeaf689SAlexander Kabaev       : _Base(__gnu_debug::__check_valid_range(__first, __last), __last,
87ffeaf689SAlexander Kabaev 	      __comp, __a) { }
88ffeaf689SAlexander Kabaev 
multimap(const multimap<_Key,_Tp,_Compare,_Allocator> & __x)89ffeaf689SAlexander Kabaev       multimap(const multimap<_Key,_Tp,_Compare,_Allocator>& __x)
90ffeaf689SAlexander Kabaev       : _Base(__x), _Safe_base() { }
91ffeaf689SAlexander Kabaev 
multimap(const _Base & __x)92ffeaf689SAlexander Kabaev       multimap(const _Base& __x) : _Base(__x), _Safe_base() { }
93ffeaf689SAlexander Kabaev 
~multimap()94ffeaf689SAlexander Kabaev       ~multimap() { }
95ffeaf689SAlexander Kabaev 
96ffeaf689SAlexander Kabaev       multimap<_Key,_Tp,_Compare,_Allocator>&
97ffeaf689SAlexander Kabaev       operator=(const multimap<_Key,_Tp,_Compare,_Allocator>& __x)
98ffeaf689SAlexander Kabaev       {
99ffeaf689SAlexander Kabaev 	*static_cast<_Base*>(this) = __x;
100ffeaf689SAlexander Kabaev 	this->_M_invalidate_all();
101ffeaf689SAlexander Kabaev 	return *this;
102ffeaf689SAlexander Kabaev       }
103ffeaf689SAlexander Kabaev 
104ffeaf689SAlexander Kabaev       using _Base::get_allocator;
105ffeaf689SAlexander Kabaev 
106ffeaf689SAlexander Kabaev       // iterators:
107ffeaf689SAlexander Kabaev       iterator
begin()108ffeaf689SAlexander Kabaev       begin()
109ffeaf689SAlexander Kabaev       { return iterator(_Base::begin(), this); }
110ffeaf689SAlexander Kabaev 
111ffeaf689SAlexander Kabaev       const_iterator
begin()112ffeaf689SAlexander Kabaev       begin() const
113ffeaf689SAlexander Kabaev       { return const_iterator(_Base::begin(), this); }
114ffeaf689SAlexander Kabaev 
115ffeaf689SAlexander Kabaev       iterator
end()116ffeaf689SAlexander Kabaev       end()
117ffeaf689SAlexander Kabaev       { return iterator(_Base::end(), this); }
118ffeaf689SAlexander Kabaev 
119ffeaf689SAlexander Kabaev       const_iterator
end()120ffeaf689SAlexander Kabaev       end() const
121ffeaf689SAlexander Kabaev       { return const_iterator(_Base::end(), this); }
122ffeaf689SAlexander Kabaev 
123ffeaf689SAlexander Kabaev       reverse_iterator
rbegin()124ffeaf689SAlexander Kabaev       rbegin()
125ffeaf689SAlexander Kabaev       { return reverse_iterator(end()); }
126ffeaf689SAlexander Kabaev 
127ffeaf689SAlexander Kabaev       const_reverse_iterator
rbegin()128ffeaf689SAlexander Kabaev       rbegin() const
129ffeaf689SAlexander Kabaev       { return const_reverse_iterator(end()); }
130ffeaf689SAlexander Kabaev 
131ffeaf689SAlexander Kabaev       reverse_iterator
rend()132ffeaf689SAlexander Kabaev       rend()
133ffeaf689SAlexander Kabaev       { return reverse_iterator(begin()); }
134ffeaf689SAlexander Kabaev 
135ffeaf689SAlexander Kabaev       const_reverse_iterator
rend()136ffeaf689SAlexander Kabaev       rend() const
137ffeaf689SAlexander Kabaev       { return const_reverse_iterator(begin()); }
138ffeaf689SAlexander Kabaev 
139ffeaf689SAlexander Kabaev       // capacity:
140ffeaf689SAlexander Kabaev       using _Base::empty;
141ffeaf689SAlexander Kabaev       using _Base::size;
142ffeaf689SAlexander Kabaev       using _Base::max_size;
143ffeaf689SAlexander Kabaev 
144ffeaf689SAlexander Kabaev       // modifiers:
145ffeaf689SAlexander Kabaev       iterator
insert(const value_type & __x)146ffeaf689SAlexander Kabaev       insert(const value_type& __x)
147ffeaf689SAlexander Kabaev       { return iterator(_Base::insert(__x), this); }
148ffeaf689SAlexander Kabaev 
149ffeaf689SAlexander Kabaev       iterator
insert(iterator __position,const value_type & __x)150ffeaf689SAlexander Kabaev       insert(iterator __position, const value_type& __x)
151ffeaf689SAlexander Kabaev       {
152ffeaf689SAlexander Kabaev 	__glibcxx_check_insert(__position);
153ffeaf689SAlexander Kabaev 	return iterator(_Base::insert(__position.base(), __x), this);
154ffeaf689SAlexander Kabaev       }
155ffeaf689SAlexander Kabaev 
156ffeaf689SAlexander Kabaev       template<typename _InputIterator>
157ffeaf689SAlexander Kabaev         void
insert(_InputIterator __first,_InputIterator __last)158ffeaf689SAlexander Kabaev         insert(_InputIterator __first, _InputIterator __last)
159ffeaf689SAlexander Kabaev         {
160ffeaf689SAlexander Kabaev 	  __glibcxx_check_valid_range(__first, __last);
161ffeaf689SAlexander Kabaev 	  _Base::insert(__first, __last);
162ffeaf689SAlexander Kabaev 	}
163ffeaf689SAlexander Kabaev 
164ffeaf689SAlexander Kabaev       void
erase(iterator __position)165ffeaf689SAlexander Kabaev       erase(iterator __position)
166ffeaf689SAlexander Kabaev       {
167ffeaf689SAlexander Kabaev 	__glibcxx_check_erase(__position);
168ffeaf689SAlexander Kabaev 	__position._M_invalidate();
169ffeaf689SAlexander Kabaev 	_Base::erase(__position.base());
170ffeaf689SAlexander Kabaev       }
171ffeaf689SAlexander Kabaev 
172ffeaf689SAlexander Kabaev       size_type
erase(const key_type & __x)173ffeaf689SAlexander Kabaev       erase(const key_type& __x)
174ffeaf689SAlexander Kabaev       {
175ffeaf689SAlexander Kabaev 	std::pair<iterator, iterator> __victims = this->equal_range(__x);
176ffeaf689SAlexander Kabaev 	size_type __count = 0;
177ffeaf689SAlexander Kabaev 	while (__victims.first != __victims.second)
178ffeaf689SAlexander Kabaev 	{
179ffeaf689SAlexander Kabaev 	  iterator __victim = __victims.first++;
180ffeaf689SAlexander Kabaev 	  __victim._M_invalidate();
181ffeaf689SAlexander Kabaev 	  _Base::erase(__victim.base());
182ffeaf689SAlexander Kabaev 	  ++__count;
183ffeaf689SAlexander Kabaev 	}
184ffeaf689SAlexander Kabaev 	return __count;
185ffeaf689SAlexander Kabaev       }
186ffeaf689SAlexander Kabaev 
187ffeaf689SAlexander Kabaev       void
erase(iterator __first,iterator __last)188ffeaf689SAlexander Kabaev       erase(iterator __first, iterator __last)
189ffeaf689SAlexander Kabaev       {
190ffeaf689SAlexander Kabaev 	// _GLIBCXX_RESOLVE_LIB_DEFECTS
191ffeaf689SAlexander Kabaev 	// 151. can't currently clear() empty container
192ffeaf689SAlexander Kabaev 	__glibcxx_check_erase_range(__first, __last);
193ffeaf689SAlexander Kabaev 	while (__first != __last)
194ffeaf689SAlexander Kabaev 	this->erase(__first++);
195ffeaf689SAlexander Kabaev       }
196ffeaf689SAlexander Kabaev 
197ffeaf689SAlexander Kabaev       void
swap(multimap<_Key,_Tp,_Compare,_Allocator> & __x)198ffeaf689SAlexander Kabaev       swap(multimap<_Key,_Tp,_Compare,_Allocator>& __x)
199ffeaf689SAlexander Kabaev       {
200ffeaf689SAlexander Kabaev 	_Base::swap(__x);
201ffeaf689SAlexander Kabaev 	this->_M_swap(__x);
202ffeaf689SAlexander Kabaev       }
203ffeaf689SAlexander Kabaev 
204ffeaf689SAlexander Kabaev       void
clear()205ffeaf689SAlexander Kabaev       clear()
206ffeaf689SAlexander Kabaev       { this->erase(begin(), end()); }
207ffeaf689SAlexander Kabaev 
208ffeaf689SAlexander Kabaev       // observers:
209ffeaf689SAlexander Kabaev       using _Base::key_comp;
210ffeaf689SAlexander Kabaev       using _Base::value_comp;
211ffeaf689SAlexander Kabaev 
212ffeaf689SAlexander Kabaev       // 23.3.1.3 multimap operations:
213ffeaf689SAlexander Kabaev       iterator
find(const key_type & __x)214ffeaf689SAlexander Kabaev       find(const key_type& __x)
215ffeaf689SAlexander Kabaev       { return iterator(_Base::find(__x), this); }
216ffeaf689SAlexander Kabaev 
217ffeaf689SAlexander Kabaev       const_iterator
find(const key_type & __x)218ffeaf689SAlexander Kabaev       find(const key_type& __x) const
219ffeaf689SAlexander Kabaev       { return const_iterator(_Base::find(__x), this); }
220ffeaf689SAlexander Kabaev 
221ffeaf689SAlexander Kabaev       using _Base::count;
222ffeaf689SAlexander Kabaev 
223ffeaf689SAlexander Kabaev       iterator
lower_bound(const key_type & __x)224ffeaf689SAlexander Kabaev       lower_bound(const key_type& __x)
225ffeaf689SAlexander Kabaev       { return iterator(_Base::lower_bound(__x), this); }
226ffeaf689SAlexander Kabaev 
227ffeaf689SAlexander Kabaev       const_iterator
lower_bound(const key_type & __x)228ffeaf689SAlexander Kabaev       lower_bound(const key_type& __x) const
229ffeaf689SAlexander Kabaev       { return const_iterator(_Base::lower_bound(__x), this); }
230ffeaf689SAlexander Kabaev 
231ffeaf689SAlexander Kabaev       iterator
upper_bound(const key_type & __x)232ffeaf689SAlexander Kabaev       upper_bound(const key_type& __x)
233ffeaf689SAlexander Kabaev       { return iterator(_Base::upper_bound(__x), this); }
234ffeaf689SAlexander Kabaev 
235ffeaf689SAlexander Kabaev       const_iterator
upper_bound(const key_type & __x)236ffeaf689SAlexander Kabaev       upper_bound(const key_type& __x) const
237ffeaf689SAlexander Kabaev       { return const_iterator(_Base::upper_bound(__x), this); }
238ffeaf689SAlexander Kabaev 
239ffeaf689SAlexander Kabaev       std::pair<iterator,iterator>
equal_range(const key_type & __x)240ffeaf689SAlexander Kabaev       equal_range(const key_type& __x)
241ffeaf689SAlexander Kabaev       {
242ffeaf689SAlexander Kabaev 	typedef typename _Base::iterator _Base_iterator;
243ffeaf689SAlexander Kabaev 	std::pair<_Base_iterator, _Base_iterator> __res =
244ffeaf689SAlexander Kabaev 	_Base::equal_range(__x);
245ffeaf689SAlexander Kabaev 	return std::make_pair(iterator(__res.first, this),
246ffeaf689SAlexander Kabaev 			      iterator(__res.second, this));
247ffeaf689SAlexander Kabaev       }
248ffeaf689SAlexander Kabaev 
249ffeaf689SAlexander Kabaev       std::pair<const_iterator,const_iterator>
equal_range(const key_type & __x)250ffeaf689SAlexander Kabaev       equal_range(const key_type& __x) const
251ffeaf689SAlexander Kabaev       {
252ffeaf689SAlexander Kabaev 	typedef typename _Base::const_iterator _Base_const_iterator;
253ffeaf689SAlexander Kabaev 	std::pair<_Base_const_iterator, _Base_const_iterator> __res =
254ffeaf689SAlexander Kabaev 	_Base::equal_range(__x);
255ffeaf689SAlexander Kabaev 	return std::make_pair(const_iterator(__res.first, this),
256ffeaf689SAlexander Kabaev 			      const_iterator(__res.second, this));
257ffeaf689SAlexander Kabaev       }
258ffeaf689SAlexander Kabaev 
259ffeaf689SAlexander Kabaev       _Base&
_M_base()260ffeaf689SAlexander Kabaev       _M_base() { return *this; }
261ffeaf689SAlexander Kabaev 
262ffeaf689SAlexander Kabaev       const _Base&
_M_base()263ffeaf689SAlexander Kabaev       _M_base() const { return *this; }
264ffeaf689SAlexander Kabaev 
265ffeaf689SAlexander Kabaev     private:
266ffeaf689SAlexander Kabaev       void
_M_invalidate_all()267ffeaf689SAlexander Kabaev       _M_invalidate_all()
268ffeaf689SAlexander Kabaev       {
269ffeaf689SAlexander Kabaev 	typedef typename _Base::const_iterator _Base_const_iterator;
270ffeaf689SAlexander Kabaev 	typedef __gnu_debug::_Not_equal_to<_Base_const_iterator> _Not_equal;
271ffeaf689SAlexander Kabaev 	this->_M_invalidate_if(_Not_equal(_M_base().end()));
272ffeaf689SAlexander Kabaev       }
273ffeaf689SAlexander Kabaev     };
274ffeaf689SAlexander Kabaev 
275ffeaf689SAlexander Kabaev   template<typename _Key,typename _Tp,typename _Compare,typename _Allocator>
276ffeaf689SAlexander Kabaev     inline bool
277ffeaf689SAlexander Kabaev     operator==(const multimap<_Key,_Tp,_Compare,_Allocator>& __lhs,
278ffeaf689SAlexander Kabaev 	       const multimap<_Key,_Tp,_Compare,_Allocator>& __rhs)
279ffeaf689SAlexander Kabaev     { return __lhs._M_base() == __rhs._M_base(); }
280ffeaf689SAlexander Kabaev 
281ffeaf689SAlexander Kabaev   template<typename _Key,typename _Tp,typename _Compare,typename _Allocator>
282ffeaf689SAlexander Kabaev     inline bool
283ffeaf689SAlexander Kabaev     operator!=(const multimap<_Key,_Tp,_Compare,_Allocator>& __lhs,
284ffeaf689SAlexander Kabaev 	       const multimap<_Key,_Tp,_Compare,_Allocator>& __rhs)
285ffeaf689SAlexander Kabaev     { return __lhs._M_base() != __rhs._M_base(); }
286ffeaf689SAlexander Kabaev 
287ffeaf689SAlexander Kabaev   template<typename _Key,typename _Tp,typename _Compare,typename _Allocator>
288ffeaf689SAlexander Kabaev     inline bool
289ffeaf689SAlexander Kabaev     operator<(const multimap<_Key,_Tp,_Compare,_Allocator>& __lhs,
290ffeaf689SAlexander Kabaev 	      const multimap<_Key,_Tp,_Compare,_Allocator>& __rhs)
291ffeaf689SAlexander Kabaev     { return __lhs._M_base() < __rhs._M_base(); }
292ffeaf689SAlexander Kabaev 
293ffeaf689SAlexander Kabaev   template<typename _Key,typename _Tp,typename _Compare,typename _Allocator>
294ffeaf689SAlexander Kabaev     inline bool
295ffeaf689SAlexander Kabaev     operator<=(const multimap<_Key,_Tp,_Compare,_Allocator>& __lhs,
296ffeaf689SAlexander Kabaev 	       const multimap<_Key,_Tp,_Compare,_Allocator>& __rhs)
297ffeaf689SAlexander Kabaev     { return __lhs._M_base() <= __rhs._M_base(); }
298ffeaf689SAlexander Kabaev 
299ffeaf689SAlexander Kabaev   template<typename _Key,typename _Tp,typename _Compare,typename _Allocator>
300ffeaf689SAlexander Kabaev     inline bool
301ffeaf689SAlexander Kabaev     operator>=(const multimap<_Key,_Tp,_Compare,_Allocator>& __lhs,
302ffeaf689SAlexander Kabaev 	       const multimap<_Key,_Tp,_Compare,_Allocator>& __rhs)
303ffeaf689SAlexander Kabaev     { return __lhs._M_base() >= __rhs._M_base(); }
304ffeaf689SAlexander Kabaev 
305ffeaf689SAlexander Kabaev   template<typename _Key,typename _Tp,typename _Compare,typename _Allocator>
306ffeaf689SAlexander Kabaev     inline bool
307ffeaf689SAlexander Kabaev     operator>(const multimap<_Key,_Tp,_Compare,_Allocator>& __lhs,
308ffeaf689SAlexander Kabaev 	      const multimap<_Key,_Tp,_Compare,_Allocator>& __rhs)
309ffeaf689SAlexander Kabaev     { return __lhs._M_base() > __rhs._M_base(); }
310ffeaf689SAlexander Kabaev 
311ffeaf689SAlexander Kabaev   template<typename _Key,typename _Tp,typename _Compare,typename _Allocator>
312ffeaf689SAlexander Kabaev     inline void
swap(multimap<_Key,_Tp,_Compare,_Allocator> & __lhs,multimap<_Key,_Tp,_Compare,_Allocator> & __rhs)313ffeaf689SAlexander Kabaev     swap(multimap<_Key,_Tp,_Compare,_Allocator>& __lhs,
314ffeaf689SAlexander Kabaev 	 multimap<_Key,_Tp,_Compare,_Allocator>& __rhs)
315ffeaf689SAlexander Kabaev     { __lhs.swap(__rhs); }
316*f8a1b7d9SAlexander Kabaev } // namespace __debug
317*f8a1b7d9SAlexander Kabaev } // namespace std
318ffeaf689SAlexander Kabaev 
319ffeaf689SAlexander Kabaev #endif
320