100db7afdSDavid E. O'Brien // Set implementation -*- C++ -*-
200db7afdSDavid E. O'Brien
3f8a1b7d9SAlexander Kabaev // Copyright (C) 2001, 2002, 2004, 2005, 2006 Free Software Foundation, Inc.
400db7afdSDavid E. O'Brien //
500db7afdSDavid E. O'Brien // This file is part of the GNU ISO C++ Library. This library is free
600db7afdSDavid E. O'Brien // software; you can redistribute it and/or modify it under the
700db7afdSDavid E. O'Brien // terms of the GNU General Public License as published by the
800db7afdSDavid E. O'Brien // Free Software Foundation; either version 2, or (at your option)
900db7afdSDavid E. O'Brien // any later version.
1000db7afdSDavid E. O'Brien
1100db7afdSDavid E. O'Brien // This library is distributed in the hope that it will be useful,
1200db7afdSDavid E. O'Brien // but WITHOUT ANY WARRANTY; without even the implied warranty of
1300db7afdSDavid E. O'Brien // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
1400db7afdSDavid E. O'Brien // GNU General Public License for more details.
1500db7afdSDavid E. O'Brien
1600db7afdSDavid E. O'Brien // You should have received a copy of the GNU General Public License along
1700db7afdSDavid E. O'Brien // with this library; see the file COPYING. If not, write to the Free
18f8a1b7d9SAlexander Kabaev // Software Foundation, 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301,
1900db7afdSDavid E. O'Brien // USA.
2000db7afdSDavid E. O'Brien
2100db7afdSDavid E. O'Brien // As a special exception, you may use this file as part of a free software
2200db7afdSDavid E. O'Brien // library without restriction. Specifically, if other files instantiate
2300db7afdSDavid E. O'Brien // templates or use macros or inline functions from this file, or you compile
2400db7afdSDavid E. O'Brien // this file and link it with other files to produce an executable, this
2500db7afdSDavid E. O'Brien // file does not by itself cause the resulting executable to be covered by
2600db7afdSDavid E. O'Brien // the GNU General Public License. This exception does not however
2700db7afdSDavid E. O'Brien // invalidate any other reasons why the executable file might be covered by
2800db7afdSDavid E. O'Brien // the GNU General Public License.
2900db7afdSDavid E. O'Brien
3000db7afdSDavid E. O'Brien /*
3100db7afdSDavid E. O'Brien *
3200db7afdSDavid E. O'Brien * Copyright (c) 1994
3300db7afdSDavid E. O'Brien * Hewlett-Packard Company
3400db7afdSDavid E. O'Brien *
3500db7afdSDavid E. O'Brien * Permission to use, copy, modify, distribute and sell this software
3600db7afdSDavid E. O'Brien * and its documentation for any purpose is hereby granted without fee,
3700db7afdSDavid E. O'Brien * provided that the above copyright notice appear in all copies and
3800db7afdSDavid E. O'Brien * that both that copyright notice and this permission notice appear
3900db7afdSDavid E. O'Brien * in supporting documentation. Hewlett-Packard Company makes no
4000db7afdSDavid E. O'Brien * representations about the suitability of this software for any
4100db7afdSDavid E. O'Brien * purpose. It is provided "as is" without express or implied warranty.
4200db7afdSDavid E. O'Brien *
4300db7afdSDavid E. O'Brien *
4400db7afdSDavid E. O'Brien * Copyright (c) 1996,1997
4500db7afdSDavid E. O'Brien * Silicon Graphics Computer Systems, Inc.
4600db7afdSDavid E. O'Brien *
4700db7afdSDavid E. O'Brien * Permission to use, copy, modify, distribute and sell this software
4800db7afdSDavid E. O'Brien * and its documentation for any purpose is hereby granted without fee,
4900db7afdSDavid E. O'Brien * provided that the above copyright notice appear in all copies and
5000db7afdSDavid E. O'Brien * that both that copyright notice and this permission notice appear
5100db7afdSDavid E. O'Brien * in supporting documentation. Silicon Graphics makes no
5200db7afdSDavid E. O'Brien * representations about the suitability of this software for any
5300db7afdSDavid E. O'Brien * purpose. It is provided "as is" without express or implied warranty.
5400db7afdSDavid E. O'Brien */
5500db7afdSDavid E. O'Brien
5600db7afdSDavid E. O'Brien /** @file stl_set.h
5700db7afdSDavid E. O'Brien * This is an internal header file, included by other library headers.
5800db7afdSDavid E. O'Brien * You should not attempt to use it directly.
5900db7afdSDavid E. O'Brien */
6000db7afdSDavid E. O'Brien
61ffeaf689SAlexander Kabaev #ifndef _SET_H
62ffeaf689SAlexander Kabaev #define _SET_H 1
6300db7afdSDavid E. O'Brien
6400db7afdSDavid E. O'Brien #include <bits/concept_check.h>
6500db7afdSDavid E. O'Brien
_GLIBCXX_BEGIN_NESTED_NAMESPACE(std,_GLIBCXX_STD)66f8a1b7d9SAlexander Kabaev _GLIBCXX_BEGIN_NESTED_NAMESPACE(std, _GLIBCXX_STD)
6700db7afdSDavid E. O'Brien
68ffeaf689SAlexander Kabaev /**
69ffeaf689SAlexander Kabaev * @brief A standard container made up of unique keys, which can be
70ffeaf689SAlexander Kabaev * retrieved in logarithmic time.
71ffeaf689SAlexander Kabaev *
72ffeaf689SAlexander Kabaev * @ingroup Containers
73ffeaf689SAlexander Kabaev * @ingroup Assoc_containers
74ffeaf689SAlexander Kabaev *
75ffeaf689SAlexander Kabaev * Meets the requirements of a <a href="tables.html#65">container</a>, a
76ffeaf689SAlexander Kabaev * <a href="tables.html#66">reversible container</a>, and an
77ffeaf689SAlexander Kabaev * <a href="tables.html#69">associative container</a> (using unique keys).
78ffeaf689SAlexander Kabaev *
79ffeaf689SAlexander Kabaev * Sets support bidirectional iterators.
80ffeaf689SAlexander Kabaev *
81ffeaf689SAlexander Kabaev * @param Key Type of key objects.
82ffeaf689SAlexander Kabaev * @param Compare Comparison function object type, defaults to less<Key>.
83ffeaf689SAlexander Kabaev * @param Alloc Allocator type, defaults to allocator<Key>.
84ffeaf689SAlexander Kabaev *
85ffeaf689SAlexander Kabaev * @if maint
86ffeaf689SAlexander Kabaev * The private tree data is declared exactly the same way for set and
87ffeaf689SAlexander Kabaev * multiset; the distinction is made entirely in how the tree functions are
88ffeaf689SAlexander Kabaev * called (*_unique versus *_equal, same as the standard).
89ffeaf689SAlexander Kabaev * @endif
90ffeaf689SAlexander Kabaev */
91f8a1b7d9SAlexander Kabaev template<class _Key, class _Compare = std::less<_Key>,
92f8a1b7d9SAlexander Kabaev class _Alloc = std::allocator<_Key> >
9300db7afdSDavid E. O'Brien class set
9400db7afdSDavid E. O'Brien {
9500db7afdSDavid E. O'Brien // concept requirements
96f8a1b7d9SAlexander Kabaev typedef typename _Alloc::value_type _Alloc_value_type;
97ffeaf689SAlexander Kabaev __glibcxx_class_requires(_Key, _SGIAssignableConcept)
98ffeaf689SAlexander Kabaev __glibcxx_class_requires4(_Compare, bool, _Key, _Key,
99ffeaf689SAlexander Kabaev _BinaryFunctionConcept)
100f8a1b7d9SAlexander Kabaev __glibcxx_class_requires2(_Key, _Alloc_value_type, _SameTypeConcept)
10100db7afdSDavid E. O'Brien
10200db7afdSDavid E. O'Brien public:
10300db7afdSDavid E. O'Brien // typedefs:
104ffeaf689SAlexander Kabaev //@{
105ffeaf689SAlexander Kabaev /// Public typedefs.
10600db7afdSDavid E. O'Brien typedef _Key key_type;
10700db7afdSDavid E. O'Brien typedef _Key value_type;
10800db7afdSDavid E. O'Brien typedef _Compare key_compare;
10900db7afdSDavid E. O'Brien typedef _Compare value_compare;
110f8a1b7d9SAlexander Kabaev typedef _Alloc allocator_type;
111ffeaf689SAlexander Kabaev //@}
112ffeaf689SAlexander Kabaev
11300db7afdSDavid E. O'Brien private:
114f8a1b7d9SAlexander Kabaev typedef typename _Alloc::template rebind<_Key>::other _Key_alloc_type;
115f8a1b7d9SAlexander Kabaev
116f8a1b7d9SAlexander Kabaev typedef _Rb_tree<key_type, value_type, _Identity<value_type>,
117f8a1b7d9SAlexander Kabaev key_compare, _Key_alloc_type> _Rep_type;
11800db7afdSDavid E. O'Brien _Rep_type _M_t; // red-black tree representing set
119f8a1b7d9SAlexander Kabaev
12000db7afdSDavid E. O'Brien public:
121ffeaf689SAlexander Kabaev //@{
122ffeaf689SAlexander Kabaev /// Iterator-related typedefs.
123f8a1b7d9SAlexander Kabaev typedef typename _Key_alloc_type::pointer pointer;
124f8a1b7d9SAlexander Kabaev typedef typename _Key_alloc_type::const_pointer const_pointer;
125f8a1b7d9SAlexander Kabaev typedef typename _Key_alloc_type::reference reference;
126f8a1b7d9SAlexander Kabaev typedef typename _Key_alloc_type::const_reference const_reference;
127ffeaf689SAlexander Kabaev // _GLIBCXX_RESOLVE_LIB_DEFECTS
128ffeaf689SAlexander Kabaev // DR 103. set::iterator is required to be modifiable,
129ffeaf689SAlexander Kabaev // but this allows modification of keys.
13000db7afdSDavid E. O'Brien typedef typename _Rep_type::const_iterator iterator;
13100db7afdSDavid E. O'Brien typedef typename _Rep_type::const_iterator const_iterator;
13200db7afdSDavid E. O'Brien typedef typename _Rep_type::const_reverse_iterator reverse_iterator;
13300db7afdSDavid E. O'Brien typedef typename _Rep_type::const_reverse_iterator const_reverse_iterator;
13400db7afdSDavid E. O'Brien typedef typename _Rep_type::size_type size_type;
13500db7afdSDavid E. O'Brien typedef typename _Rep_type::difference_type difference_type;
136ffeaf689SAlexander Kabaev //@}
13700db7afdSDavid E. O'Brien
13800db7afdSDavid E. O'Brien // allocation/deallocation
139ffeaf689SAlexander Kabaev /// Default constructor creates no elements.
140ffeaf689SAlexander Kabaev set()
141*dc3fe0ffSPedro F. Giffuni : _M_t() { }
14200db7afdSDavid E. O'Brien
143ffeaf689SAlexander Kabaev /**
144ffeaf689SAlexander Kabaev * @brief Default constructor creates no elements.
145ffeaf689SAlexander Kabaev *
146ffeaf689SAlexander Kabaev * @param comp Comparator to use.
147ffeaf689SAlexander Kabaev * @param a Allocator to use.
148ffeaf689SAlexander Kabaev */
149f8a1b7d9SAlexander Kabaev explicit
150f8a1b7d9SAlexander Kabaev set(const _Compare& __comp,
15100db7afdSDavid E. O'Brien const allocator_type& __a = allocator_type())
15200db7afdSDavid E. O'Brien : _M_t(__comp, __a) {}
15300db7afdSDavid E. O'Brien
154ffeaf689SAlexander Kabaev /**
155ffeaf689SAlexander Kabaev * @brief Builds a %set from a range.
156ffeaf689SAlexander Kabaev * @param first An input iterator.
157ffeaf689SAlexander Kabaev * @param last An input iterator.
158ffeaf689SAlexander Kabaev *
159ffeaf689SAlexander Kabaev * Create a %set consisting of copies of the elements from [first,last).
160ffeaf689SAlexander Kabaev * This is linear in N if the range is already sorted, and NlogN
161ffeaf689SAlexander Kabaev * otherwise (where N is distance(first,last)).
162ffeaf689SAlexander Kabaev */
16300db7afdSDavid E. O'Brien template<class _InputIterator>
16400db7afdSDavid E. O'Brien set(_InputIterator __first, _InputIterator __last)
165*dc3fe0ffSPedro F. Giffuni : _M_t()
166f8a1b7d9SAlexander Kabaev { _M_t._M_insert_unique(__first, __last); }
16700db7afdSDavid E. O'Brien
168ffeaf689SAlexander Kabaev /**
169ffeaf689SAlexander Kabaev * @brief Builds a %set from a range.
170ffeaf689SAlexander Kabaev * @param first An input iterator.
171ffeaf689SAlexander Kabaev * @param last An input iterator.
172ffeaf689SAlexander Kabaev * @param comp A comparison functor.
173ffeaf689SAlexander Kabaev * @param a An allocator object.
174ffeaf689SAlexander Kabaev *
175ffeaf689SAlexander Kabaev * Create a %set consisting of copies of the elements from [first,last).
176ffeaf689SAlexander Kabaev * This is linear in N if the range is already sorted, and NlogN
177ffeaf689SAlexander Kabaev * otherwise (where N is distance(first,last)).
178ffeaf689SAlexander Kabaev */
17900db7afdSDavid E. O'Brien template<class _InputIterator>
180ffeaf689SAlexander Kabaev set(_InputIterator __first, _InputIterator __last,
181ffeaf689SAlexander Kabaev const _Compare& __comp,
18200db7afdSDavid E. O'Brien const allocator_type& __a = allocator_type())
183ffeaf689SAlexander Kabaev : _M_t(__comp, __a)
184f8a1b7d9SAlexander Kabaev { _M_t._M_insert_unique(__first, __last); }
18500db7afdSDavid E. O'Brien
186ffeaf689SAlexander Kabaev /**
187ffeaf689SAlexander Kabaev * @brief Set copy constructor.
188ffeaf689SAlexander Kabaev * @param x A %set of identical element and allocator types.
189ffeaf689SAlexander Kabaev *
190ffeaf689SAlexander Kabaev * The newly-created %set uses a copy of the allocation object used
191ffeaf689SAlexander Kabaev * by @a x.
192ffeaf689SAlexander Kabaev */
193*dc3fe0ffSPedro F. Giffuni set(const set& __x)
194ffeaf689SAlexander Kabaev : _M_t(__x._M_t) { }
195ffeaf689SAlexander Kabaev
196ffeaf689SAlexander Kabaev /**
197ffeaf689SAlexander Kabaev * @brief Set assignment operator.
198ffeaf689SAlexander Kabaev * @param x A %set of identical element and allocator types.
199ffeaf689SAlexander Kabaev *
200ffeaf689SAlexander Kabaev * All the elements of @a x are copied, but unlike the copy constructor,
201ffeaf689SAlexander Kabaev * the allocator object is not copied.
202ffeaf689SAlexander Kabaev */
203*dc3fe0ffSPedro F. Giffuni set&
204*dc3fe0ffSPedro F. Giffuni operator=(const set& __x)
20500db7afdSDavid E. O'Brien {
20600db7afdSDavid E. O'Brien _M_t = __x._M_t;
20700db7afdSDavid E. O'Brien return *this;
20800db7afdSDavid E. O'Brien }
20900db7afdSDavid E. O'Brien
21000db7afdSDavid E. O'Brien // accessors:
21100db7afdSDavid E. O'Brien
212ffeaf689SAlexander Kabaev /// Returns the comparison object with which the %set was constructed.
213ffeaf689SAlexander Kabaev key_compare
214ffeaf689SAlexander Kabaev key_comp() const
215ffeaf689SAlexander Kabaev { return _M_t.key_comp(); }
216ffeaf689SAlexander Kabaev /// Returns the comparison object with which the %set was constructed.
217ffeaf689SAlexander Kabaev value_compare
218ffeaf689SAlexander Kabaev value_comp() const
219ffeaf689SAlexander Kabaev { return _M_t.key_comp(); }
220ffeaf689SAlexander Kabaev /// Returns the allocator object with which the %set was constructed.
221ffeaf689SAlexander Kabaev allocator_type
222ffeaf689SAlexander Kabaev get_allocator() const
223ffeaf689SAlexander Kabaev { return _M_t.get_allocator(); }
22400db7afdSDavid E. O'Brien
225ffeaf689SAlexander Kabaev /**
226ffeaf689SAlexander Kabaev * Returns a read/write iterator that points to the first element in the
227ffeaf689SAlexander Kabaev * %set. Iteration is done in ascending order according to the keys.
228ffeaf689SAlexander Kabaev */
229ffeaf689SAlexander Kabaev iterator
230ffeaf689SAlexander Kabaev begin() const
231ffeaf689SAlexander Kabaev { return _M_t.begin(); }
232ffeaf689SAlexander Kabaev
233ffeaf689SAlexander Kabaev /**
234ffeaf689SAlexander Kabaev * Returns a read/write iterator that points one past the last element in
235ffeaf689SAlexander Kabaev * the %set. Iteration is done in ascending order according to the keys.
236ffeaf689SAlexander Kabaev */
237ffeaf689SAlexander Kabaev iterator
238ffeaf689SAlexander Kabaev end() const
239ffeaf689SAlexander Kabaev { return _M_t.end(); }
240ffeaf689SAlexander Kabaev
241ffeaf689SAlexander Kabaev /**
242ffeaf689SAlexander Kabaev * Returns a read/write reverse iterator that points to the last element
243ffeaf689SAlexander Kabaev * in the %set. Iteration is done in descending order according to the
244ffeaf689SAlexander Kabaev * keys.
245ffeaf689SAlexander Kabaev */
246ffeaf689SAlexander Kabaev reverse_iterator
247ffeaf689SAlexander Kabaev rbegin() const
248ffeaf689SAlexander Kabaev { return _M_t.rbegin(); }
249ffeaf689SAlexander Kabaev
250ffeaf689SAlexander Kabaev /**
251ffeaf689SAlexander Kabaev * Returns a read-only (constant) reverse iterator that points to the
252ffeaf689SAlexander Kabaev * last pair in the %map. Iteration is done in descending order
253ffeaf689SAlexander Kabaev * according to the keys.
254ffeaf689SAlexander Kabaev */
255ffeaf689SAlexander Kabaev reverse_iterator
256ffeaf689SAlexander Kabaev rend() const
257ffeaf689SAlexander Kabaev { return _M_t.rend(); }
258ffeaf689SAlexander Kabaev
259ffeaf689SAlexander Kabaev /// Returns true if the %set is empty.
260ffeaf689SAlexander Kabaev bool
261ffeaf689SAlexander Kabaev empty() const
262ffeaf689SAlexander Kabaev { return _M_t.empty(); }
263ffeaf689SAlexander Kabaev
264ffeaf689SAlexander Kabaev /// Returns the size of the %set.
265ffeaf689SAlexander Kabaev size_type
266ffeaf689SAlexander Kabaev size() const
267ffeaf689SAlexander Kabaev { return _M_t.size(); }
268ffeaf689SAlexander Kabaev
269ffeaf689SAlexander Kabaev /// Returns the maximum size of the %set.
270ffeaf689SAlexander Kabaev size_type
271ffeaf689SAlexander Kabaev max_size() const
272ffeaf689SAlexander Kabaev { return _M_t.max_size(); }
273ffeaf689SAlexander Kabaev
274ffeaf689SAlexander Kabaev /**
275ffeaf689SAlexander Kabaev * @brief Swaps data with another %set.
276ffeaf689SAlexander Kabaev * @param x A %set of the same element and allocator types.
277ffeaf689SAlexander Kabaev *
278ffeaf689SAlexander Kabaev * This exchanges the elements between two sets in constant time.
279ffeaf689SAlexander Kabaev * (It is only swapping a pointer, an integer, and an instance of
280ffeaf689SAlexander Kabaev * the @c Compare type (which itself is often stateless and empty), so it
281ffeaf689SAlexander Kabaev * should be quite fast.)
282ffeaf689SAlexander Kabaev * Note that the global std::swap() function is specialized such that
283ffeaf689SAlexander Kabaev * std::swap(s1,s2) will feed to this function.
284ffeaf689SAlexander Kabaev */
285ffeaf689SAlexander Kabaev void
286*dc3fe0ffSPedro F. Giffuni swap(set& __x)
287ffeaf689SAlexander Kabaev { _M_t.swap(__x._M_t); }
28800db7afdSDavid E. O'Brien
28900db7afdSDavid E. O'Brien // insert/erase
290ffeaf689SAlexander Kabaev /**
291ffeaf689SAlexander Kabaev * @brief Attempts to insert an element into the %set.
292ffeaf689SAlexander Kabaev * @param x Element to be inserted.
293ffeaf689SAlexander Kabaev * @return A pair, of which the first element is an iterator that points
294ffeaf689SAlexander Kabaev * to the possibly inserted element, and the second is a bool
295ffeaf689SAlexander Kabaev * that is true if the element was actually inserted.
296ffeaf689SAlexander Kabaev *
297ffeaf689SAlexander Kabaev * This function attempts to insert an element into the %set. A %set
298ffeaf689SAlexander Kabaev * relies on unique keys and thus an element is only inserted if it is
299ffeaf689SAlexander Kabaev * not already present in the %set.
300ffeaf689SAlexander Kabaev *
301ffeaf689SAlexander Kabaev * Insertion requires logarithmic time.
302ffeaf689SAlexander Kabaev */
303f8a1b7d9SAlexander Kabaev std::pair<iterator,bool>
304ffeaf689SAlexander Kabaev insert(const value_type& __x)
305ffeaf689SAlexander Kabaev {
306f8a1b7d9SAlexander Kabaev std::pair<typename _Rep_type::iterator, bool> __p =
307f8a1b7d9SAlexander Kabaev _M_t._M_insert_unique(__x);
308f8a1b7d9SAlexander Kabaev return std::pair<iterator, bool>(__p.first, __p.second);
30900db7afdSDavid E. O'Brien }
310ffeaf689SAlexander Kabaev
311ffeaf689SAlexander Kabaev /**
312ffeaf689SAlexander Kabaev * @brief Attempts to insert an element into the %set.
313ffeaf689SAlexander Kabaev * @param position An iterator that serves as a hint as to where the
314ffeaf689SAlexander Kabaev * element should be inserted.
315ffeaf689SAlexander Kabaev * @param x Element to be inserted.
316ffeaf689SAlexander Kabaev * @return An iterator that points to the element with key of @a x (may
317ffeaf689SAlexander Kabaev * or may not be the element passed in).
318ffeaf689SAlexander Kabaev *
319ffeaf689SAlexander Kabaev * This function is not concerned about whether the insertion took place,
320ffeaf689SAlexander Kabaev * and thus does not return a boolean like the single-argument insert()
321ffeaf689SAlexander Kabaev * does. Note that the first parameter is only a hint and can
322ffeaf689SAlexander Kabaev * potentially improve the performance of the insertion process. A bad
323ffeaf689SAlexander Kabaev * hint would cause no gains in efficiency.
324ffeaf689SAlexander Kabaev *
325ffeaf689SAlexander Kabaev * See http://gcc.gnu.org/onlinedocs/libstdc++/23_containers/howto.html#4
326ffeaf689SAlexander Kabaev * for more on "hinting".
327ffeaf689SAlexander Kabaev *
328ffeaf689SAlexander Kabaev * Insertion requires logarithmic time (if the hint is not taken).
329ffeaf689SAlexander Kabaev */
330ffeaf689SAlexander Kabaev iterator
331ffeaf689SAlexander Kabaev insert(iterator __position, const value_type& __x)
332f8a1b7d9SAlexander Kabaev { return _M_t._M_insert_unique(__position, __x); }
333ffeaf689SAlexander Kabaev
334ffeaf689SAlexander Kabaev /**
335ffeaf689SAlexander Kabaev * @brief A template function that attemps to insert a range of elements.
336ffeaf689SAlexander Kabaev * @param first Iterator pointing to the start of the range to be
337ffeaf689SAlexander Kabaev * inserted.
338ffeaf689SAlexander Kabaev * @param last Iterator pointing to the end of the range.
339ffeaf689SAlexander Kabaev *
340ffeaf689SAlexander Kabaev * Complexity similar to that of the range constructor.
341ffeaf689SAlexander Kabaev */
34200db7afdSDavid E. O'Brien template<class _InputIterator>
343ffeaf689SAlexander Kabaev void
344ffeaf689SAlexander Kabaev insert(_InputIterator __first, _InputIterator __last)
345f8a1b7d9SAlexander Kabaev { _M_t._M_insert_unique(__first, __last); }
346ffeaf689SAlexander Kabaev
347ffeaf689SAlexander Kabaev /**
348ffeaf689SAlexander Kabaev * @brief Erases an element from a %set.
349ffeaf689SAlexander Kabaev * @param position An iterator pointing to the element to be erased.
350ffeaf689SAlexander Kabaev *
351ffeaf689SAlexander Kabaev * This function erases an element, pointed to by the given iterator,
352ffeaf689SAlexander Kabaev * from a %set. Note that this function only erases the element, and
353ffeaf689SAlexander Kabaev * that if the element is itself a pointer, the pointed-to memory is not
354ffeaf689SAlexander Kabaev * touched in any way. Managing the pointer is the user's responsibilty.
355ffeaf689SAlexander Kabaev */
356ffeaf689SAlexander Kabaev void
357ffeaf689SAlexander Kabaev erase(iterator __position)
358f8a1b7d9SAlexander Kabaev { _M_t.erase(__position); }
359ffeaf689SAlexander Kabaev
360ffeaf689SAlexander Kabaev /**
361ffeaf689SAlexander Kabaev * @brief Erases elements according to the provided key.
362ffeaf689SAlexander Kabaev * @param x Key of element to be erased.
363ffeaf689SAlexander Kabaev * @return The number of elements erased.
364ffeaf689SAlexander Kabaev *
365ffeaf689SAlexander Kabaev * This function erases all the elements located by the given key from
366ffeaf689SAlexander Kabaev * a %set.
367ffeaf689SAlexander Kabaev * Note that this function only erases the element, and that if
368ffeaf689SAlexander Kabaev * the element is itself a pointer, the pointed-to memory is not touched
369ffeaf689SAlexander Kabaev * in any way. Managing the pointer is the user's responsibilty.
370ffeaf689SAlexander Kabaev */
371ffeaf689SAlexander Kabaev size_type
372f8a1b7d9SAlexander Kabaev erase(const key_type& __x)
373f8a1b7d9SAlexander Kabaev { return _M_t.erase(__x); }
374ffeaf689SAlexander Kabaev
375ffeaf689SAlexander Kabaev /**
376ffeaf689SAlexander Kabaev * @brief Erases a [first,last) range of elements from a %set.
377ffeaf689SAlexander Kabaev * @param first Iterator pointing to the start of the range to be
378ffeaf689SAlexander Kabaev * erased.
379ffeaf689SAlexander Kabaev * @param last Iterator pointing to the end of the range to be erased.
380ffeaf689SAlexander Kabaev *
381ffeaf689SAlexander Kabaev * This function erases a sequence of elements from a %set.
382ffeaf689SAlexander Kabaev * Note that this function only erases the element, and that if
383ffeaf689SAlexander Kabaev * the element is itself a pointer, the pointed-to memory is not touched
384ffeaf689SAlexander Kabaev * in any way. Managing the pointer is the user's responsibilty.
385ffeaf689SAlexander Kabaev */
386ffeaf689SAlexander Kabaev void
387ffeaf689SAlexander Kabaev erase(iterator __first, iterator __last)
388f8a1b7d9SAlexander Kabaev { _M_t.erase(__first, __last); }
389ffeaf689SAlexander Kabaev
390ffeaf689SAlexander Kabaev /**
391ffeaf689SAlexander Kabaev * Erases all elements in a %set. Note that this function only erases
392ffeaf689SAlexander Kabaev * the elements, and that if the elements themselves are pointers, the
393ffeaf689SAlexander Kabaev * pointed-to memory is not touched in any way. Managing the pointer is
394ffeaf689SAlexander Kabaev * the user's responsibilty.
395ffeaf689SAlexander Kabaev */
396ffeaf689SAlexander Kabaev void
397ffeaf689SAlexander Kabaev clear()
398ffeaf689SAlexander Kabaev { _M_t.clear(); }
39900db7afdSDavid E. O'Brien
40000db7afdSDavid E. O'Brien // set operations:
40100db7afdSDavid E. O'Brien
402ffeaf689SAlexander Kabaev /**
403ffeaf689SAlexander Kabaev * @brief Finds the number of elements.
404ffeaf689SAlexander Kabaev * @param x Element to located.
405ffeaf689SAlexander Kabaev * @return Number of elements with specified key.
406ffeaf689SAlexander Kabaev *
407ffeaf689SAlexander Kabaev * This function only makes sense for multisets; for set the result will
408ffeaf689SAlexander Kabaev * either be 0 (not present) or 1 (present).
409ffeaf689SAlexander Kabaev */
410ffeaf689SAlexander Kabaev size_type
411ffeaf689SAlexander Kabaev count(const key_type& __x) const
412ffeaf689SAlexander Kabaev { return _M_t.find(__x) == _M_t.end() ? 0 : 1; }
41300db7afdSDavid E. O'Brien
414ffeaf689SAlexander Kabaev // _GLIBCXX_RESOLVE_LIB_DEFECTS
41500db7afdSDavid E. O'Brien // 214. set::find() missing const overload
416ffeaf689SAlexander Kabaev //@{
417ffeaf689SAlexander Kabaev /**
418ffeaf689SAlexander Kabaev * @brief Tries to locate an element in a %set.
419ffeaf689SAlexander Kabaev * @param x Element to be located.
420ffeaf689SAlexander Kabaev * @return Iterator pointing to sought-after element, or end() if not
421ffeaf689SAlexander Kabaev * found.
422ffeaf689SAlexander Kabaev *
423ffeaf689SAlexander Kabaev * This function takes a key and tries to locate the element with which
424ffeaf689SAlexander Kabaev * the key matches. If successful the function returns an iterator
425ffeaf689SAlexander Kabaev * pointing to the sought after element. If unsuccessful it returns the
426ffeaf689SAlexander Kabaev * past-the-end ( @c end() ) iterator.
427ffeaf689SAlexander Kabaev */
428ffeaf689SAlexander Kabaev iterator
429ffeaf689SAlexander Kabaev find(const key_type& __x)
430ffeaf689SAlexander Kabaev { return _M_t.find(__x); }
431ffeaf689SAlexander Kabaev
432ffeaf689SAlexander Kabaev const_iterator
433ffeaf689SAlexander Kabaev find(const key_type& __x) const
434ffeaf689SAlexander Kabaev { return _M_t.find(__x); }
435ffeaf689SAlexander Kabaev //@}
436ffeaf689SAlexander Kabaev
437ffeaf689SAlexander Kabaev //@{
438ffeaf689SAlexander Kabaev /**
439ffeaf689SAlexander Kabaev * @brief Finds the beginning of a subsequence matching given key.
440ffeaf689SAlexander Kabaev * @param x Key to be located.
441ffeaf689SAlexander Kabaev * @return Iterator pointing to first element equal to or greater
442ffeaf689SAlexander Kabaev * than key, or end().
443ffeaf689SAlexander Kabaev *
444ffeaf689SAlexander Kabaev * This function returns the first element of a subsequence of elements
445ffeaf689SAlexander Kabaev * that matches the given key. If unsuccessful it returns an iterator
446ffeaf689SAlexander Kabaev * pointing to the first element that has a greater value than given key
447ffeaf689SAlexander Kabaev * or end() if no such element exists.
448ffeaf689SAlexander Kabaev */
449ffeaf689SAlexander Kabaev iterator
450ffeaf689SAlexander Kabaev lower_bound(const key_type& __x)
451ffeaf689SAlexander Kabaev { return _M_t.lower_bound(__x); }
452ffeaf689SAlexander Kabaev
453ffeaf689SAlexander Kabaev const_iterator
454ffeaf689SAlexander Kabaev lower_bound(const key_type& __x) const
455ffeaf689SAlexander Kabaev { return _M_t.lower_bound(__x); }
456ffeaf689SAlexander Kabaev //@}
457ffeaf689SAlexander Kabaev
458ffeaf689SAlexander Kabaev //@{
459ffeaf689SAlexander Kabaev /**
460ffeaf689SAlexander Kabaev * @brief Finds the end of a subsequence matching given key.
461ffeaf689SAlexander Kabaev * @param x Key to be located.
462ffeaf689SAlexander Kabaev * @return Iterator pointing to the first element
463ffeaf689SAlexander Kabaev * greater than key, or end().
464ffeaf689SAlexander Kabaev */
465ffeaf689SAlexander Kabaev iterator
466ffeaf689SAlexander Kabaev upper_bound(const key_type& __x)
467ffeaf689SAlexander Kabaev { return _M_t.upper_bound(__x); }
468ffeaf689SAlexander Kabaev
469ffeaf689SAlexander Kabaev const_iterator
470ffeaf689SAlexander Kabaev upper_bound(const key_type& __x) const
471ffeaf689SAlexander Kabaev { return _M_t.upper_bound(__x); }
472ffeaf689SAlexander Kabaev //@}
473ffeaf689SAlexander Kabaev
474ffeaf689SAlexander Kabaev //@{
475ffeaf689SAlexander Kabaev /**
476ffeaf689SAlexander Kabaev * @brief Finds a subsequence matching given key.
477ffeaf689SAlexander Kabaev * @param x Key to be located.
478ffeaf689SAlexander Kabaev * @return Pair of iterators that possibly points to the subsequence
479ffeaf689SAlexander Kabaev * matching given key.
480ffeaf689SAlexander Kabaev *
481ffeaf689SAlexander Kabaev * This function is equivalent to
482ffeaf689SAlexander Kabaev * @code
483ffeaf689SAlexander Kabaev * std::make_pair(c.lower_bound(val),
484ffeaf689SAlexander Kabaev * c.upper_bound(val))
485ffeaf689SAlexander Kabaev * @endcode
486ffeaf689SAlexander Kabaev * (but is faster than making the calls separately).
487ffeaf689SAlexander Kabaev *
488ffeaf689SAlexander Kabaev * This function probably only makes sense for multisets.
489ffeaf689SAlexander Kabaev */
490f8a1b7d9SAlexander Kabaev std::pair<iterator, iterator>
491ffeaf689SAlexander Kabaev equal_range(const key_type& __x)
492ffeaf689SAlexander Kabaev { return _M_t.equal_range(__x); }
493ffeaf689SAlexander Kabaev
494f8a1b7d9SAlexander Kabaev std::pair<const_iterator, const_iterator>
495ffeaf689SAlexander Kabaev equal_range(const key_type& __x) const
496ffeaf689SAlexander Kabaev { return _M_t.equal_range(__x); }
497ffeaf689SAlexander Kabaev //@}
49800db7afdSDavid E. O'Brien
49900db7afdSDavid E. O'Brien template<class _K1, class _C1, class _A1>
500ffeaf689SAlexander Kabaev friend bool
501ffeaf689SAlexander Kabaev operator== (const set<_K1, _C1, _A1>&, const set<_K1, _C1, _A1>&);
502ffeaf689SAlexander Kabaev
50300db7afdSDavid E. O'Brien template<class _K1, class _C1, class _A1>
504ffeaf689SAlexander Kabaev friend bool
505ffeaf689SAlexander Kabaev operator< (const set<_K1, _C1, _A1>&, const set<_K1, _C1, _A1>&);
50600db7afdSDavid E. O'Brien };
50700db7afdSDavid E. O'Brien
50800db7afdSDavid E. O'Brien
509ffeaf689SAlexander Kabaev /**
510ffeaf689SAlexander Kabaev * @brief Set equality comparison.
511ffeaf689SAlexander Kabaev * @param x A %set.
512ffeaf689SAlexander Kabaev * @param y A %set of the same type as @a x.
513ffeaf689SAlexander Kabaev * @return True iff the size and elements of the sets are equal.
514ffeaf689SAlexander Kabaev *
515ffeaf689SAlexander Kabaev * This is an equivalence relation. It is linear in the size of the sets.
516ffeaf689SAlexander Kabaev * Sets are considered equivalent if their sizes are equal, and if
517ffeaf689SAlexander Kabaev * corresponding elements compare equal.
518ffeaf689SAlexander Kabaev */
51900db7afdSDavid E. O'Brien template<class _Key, class _Compare, class _Alloc>
520ffeaf689SAlexander Kabaev inline bool
521ffeaf689SAlexander Kabaev operator==(const set<_Key, _Compare, _Alloc>& __x,
522ffeaf689SAlexander Kabaev const set<_Key, _Compare, _Alloc>& __y)
523ffeaf689SAlexander Kabaev { return __x._M_t == __y._M_t; }
52400db7afdSDavid E. O'Brien
525ffeaf689SAlexander Kabaev /**
526ffeaf689SAlexander Kabaev * @brief Set ordering relation.
527ffeaf689SAlexander Kabaev * @param x A %set.
528ffeaf689SAlexander Kabaev * @param y A %set of the same type as @a x.
529ffeaf689SAlexander Kabaev * @return True iff @a x is lexicographically less than @a y.
530ffeaf689SAlexander Kabaev *
531ffeaf689SAlexander Kabaev * This is a total ordering relation. It is linear in the size of the
532ffeaf689SAlexander Kabaev * maps. The elements must be comparable with @c <.
533ffeaf689SAlexander Kabaev *
534ffeaf689SAlexander Kabaev * See std::lexicographical_compare() for how the determination is made.
535ffeaf689SAlexander Kabaev */
53600db7afdSDavid E. O'Brien template<class _Key, class _Compare, class _Alloc>
537ffeaf689SAlexander Kabaev inline bool
538ffeaf689SAlexander Kabaev operator<(const set<_Key, _Compare, _Alloc>& __x,
539ffeaf689SAlexander Kabaev const set<_Key, _Compare, _Alloc>& __y)
540ffeaf689SAlexander Kabaev { return __x._M_t < __y._M_t; }
54100db7afdSDavid E. O'Brien
542ffeaf689SAlexander Kabaev /// Returns !(x == y).
54300db7afdSDavid E. O'Brien template<class _Key, class _Compare, class _Alloc>
544ffeaf689SAlexander Kabaev inline bool
545ffeaf689SAlexander Kabaev operator!=(const set<_Key, _Compare, _Alloc>& __x,
546ffeaf689SAlexander Kabaev const set<_Key, _Compare, _Alloc>& __y)
547ffeaf689SAlexander Kabaev { return !(__x == __y); }
54800db7afdSDavid E. O'Brien
549ffeaf689SAlexander Kabaev /// Returns y < x.
55000db7afdSDavid E. O'Brien template<class _Key, class _Compare, class _Alloc>
551ffeaf689SAlexander Kabaev inline bool
552ffeaf689SAlexander Kabaev operator>(const set<_Key, _Compare, _Alloc>& __x,
553ffeaf689SAlexander Kabaev const set<_Key, _Compare, _Alloc>& __y)
554ffeaf689SAlexander Kabaev { return __y < __x; }
55500db7afdSDavid E. O'Brien
556ffeaf689SAlexander Kabaev /// Returns !(y < x)
55700db7afdSDavid E. O'Brien template<class _Key, class _Compare, class _Alloc>
558ffeaf689SAlexander Kabaev inline bool
559ffeaf689SAlexander Kabaev operator<=(const set<_Key, _Compare, _Alloc>& __x,
560ffeaf689SAlexander Kabaev const set<_Key, _Compare, _Alloc>& __y)
561ffeaf689SAlexander Kabaev { return !(__y < __x); }
56200db7afdSDavid E. O'Brien
563ffeaf689SAlexander Kabaev /// Returns !(x < y)
56400db7afdSDavid E. O'Brien template<class _Key, class _Compare, class _Alloc>
565ffeaf689SAlexander Kabaev inline bool
566ffeaf689SAlexander Kabaev operator>=(const set<_Key, _Compare, _Alloc>& __x,
567ffeaf689SAlexander Kabaev const set<_Key, _Compare, _Alloc>& __y)
568ffeaf689SAlexander Kabaev { return !(__x < __y); }
569ffeaf689SAlexander Kabaev
570ffeaf689SAlexander Kabaev /// See std::set::swap().
571ffeaf689SAlexander Kabaev template<class _Key, class _Compare, class _Alloc>
572ffeaf689SAlexander Kabaev inline void
swap(set<_Key,_Compare,_Alloc> & __x,set<_Key,_Compare,_Alloc> & __y)573ffeaf689SAlexander Kabaev swap(set<_Key, _Compare, _Alloc>& __x, set<_Key, _Compare, _Alloc>& __y)
574ffeaf689SAlexander Kabaev { __x.swap(__y); }
57500db7afdSDavid E. O'Brien
576f8a1b7d9SAlexander Kabaev _GLIBCXX_END_NESTED_NAMESPACE
57700db7afdSDavid E. O'Brien
578ffeaf689SAlexander Kabaev #endif /* _SET_H */
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