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// -*- c++ -*- |
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/* |
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* MICO --- a free CORBA implementation |
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* Copyright (C) 1997-98 Kay Roemer & Arno Puder |
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* |
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* This library is free software; you can redistribute it and/or |
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* modify it under the terms of the GNU Library General Public |
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* License as published by the Free Software Foundation; either |
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* version 2 of the License, or (at your option) any later version. |
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* |
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* This library is distributed in the hope that it will be useful, |
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* but WITHOUT ANY WARRANTY; without even the implied warranty of |
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU |
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* Library General Public License for more details. |
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* |
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* You should have received a copy of the GNU Library General Public |
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* License along with this library; if not, write to the Free |
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* Software Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA. |
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* |
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* Send comments and/or bug reports to: |
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* mico@informatik.uni-frankfurt.de |
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*/ |
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#ifndef __ministl_simplevec_h__ |
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#define __ministl_simplevec_h__ |
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#include <cstring> |
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template<class T> |
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class simplevec { |
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public: |
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typedef T* iterator; |
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typedef const T* const_iterator; |
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typedef unsigned long size_type; |
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private: |
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size_type _last, _size; |
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T *_buf; |
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public: |
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const_iterator begin () const |
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{ |
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return &_buf[0]; |
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} |
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iterator begin () |
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{ |
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return &_buf[0]; |
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} |
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const_iterator end () const |
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{ |
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return &_buf[_last]; |
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} |
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iterator end () |
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{ |
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return &_buf[_last]; |
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} |
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size_type capacity () const |
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{ |
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return _size; |
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} |
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size_type size () const |
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{ |
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return _last; |
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} |
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private: |
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static T *alloc (size_type n) |
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{ |
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return (T *)::operator new ((size_t)(n * sizeof (T))); |
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} |
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static void dealloc (T *buf) |
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{ |
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if (buf) |
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::operator delete (buf); |
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} |
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void reserve (iterator where, size_type n) |
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{ |
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if (_last + n <= _size) { |
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memmove (where+n, where, (end()-where)*sizeof(T)); |
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} else { |
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pcg |
1.3 |
size_type sz = _last+n; |
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pcg |
1.1 |
sz = (_size == 0) ? max(sz, 5) : max(sz, 2*_size); |
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T *nbuf = alloc (sz); |
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if (_buf) { |
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memcpy (nbuf, begin(), (where-begin())*sizeof(T)); |
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memcpy (nbuf + (where-begin()) + n, where, |
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(end()-where)*sizeof(T)); |
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dealloc (_buf); |
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} |
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_buf = nbuf; |
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_size = sz; |
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} |
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} |
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public: |
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void reserve (size_type sz) |
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{ |
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if (_size < sz) { |
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sz = (_size == 0) ? max(sz, 5) : max(sz, 2*_size); |
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T *nbuf = alloc (sz); |
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if (_buf) { |
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memcpy (nbuf, begin(), size()*sizeof(T)); |
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dealloc (_buf); |
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} |
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_buf = nbuf; |
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_size = sz; |
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} |
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} |
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simplevec () |
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: _last (0), _size (0), _buf (0) |
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{ |
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} |
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simplevec (size_type n, const T& t = T()) |
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: _last (0), _size (0), _buf (0) |
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{ |
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insert (begin(), n, t); |
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} |
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simplevec (const_iterator first, const_iterator last) |
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: _last (0), _size (0), _buf (0) |
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{ |
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insert (begin(), first, last); |
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} |
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simplevec (const simplevec<T> &v) |
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: _last (0), _size (0), _buf (0) |
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{ |
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reserve (v._last); |
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memcpy (_buf, v.begin(), v.size()*sizeof(T)); |
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_last = v._last; |
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} |
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simplevec<T> &operator= (const simplevec<T> &v) |
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{ |
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if (this != &v) { |
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_last = 0; |
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reserve (v._last); |
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memcpy (_buf, v.begin(), v.size()*sizeof(T)); |
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_last = v._last; |
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} |
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return *this; |
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} |
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~simplevec () |
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{ |
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dealloc (_buf); |
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} |
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const T &front () const |
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{ |
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//ministl_assert (size() > 0); |
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return _buf[0]; |
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} |
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T &front () |
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{ |
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//ministl_assert (size() > 0); |
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return _buf[0]; |
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} |
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const T &back () const |
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{ |
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//ministl_assert (size() > 0); |
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return _buf[_last-1]; |
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} |
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T &back () |
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{ |
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//ministl_assert (size() > 0); |
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return _buf[_last-1]; |
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} |
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bool empty () const |
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{ |
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return _last == 0; |
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} |
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void clear () |
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{ |
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_last = 0; |
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} |
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void push_back (const T &t) |
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{ |
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reserve (_last+1); |
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*end() = t; |
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++_last; |
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} |
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pcg |
1.2 |
void push_back (T &t) |
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{ |
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reserve (_last+1); |
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*end() = t; |
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++_last; |
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} |
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pcg |
1.1 |
void pop_back () |
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{ |
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//ministl_assert (size() > 0); |
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--_last; |
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} |
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const T &operator[] (size_type idx) const |
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{ |
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//ministl_assert (idx < size()); |
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return _buf[idx]; |
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} |
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T &operator[] (size_type idx) |
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{ |
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//ministl_assert (idx < size()); |
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return _buf[idx]; |
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} |
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iterator insert (iterator pos, const T &t) |
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{ |
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//ministl_assert (pos <= end()); |
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long at = pos - begin(); |
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reserve (pos, 1); |
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pos = begin()+at; |
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*pos = t; |
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++_last; |
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return pos; |
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} |
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iterator insert (iterator pos, const_iterator first, const_iterator last) |
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{ |
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//ministl_assert (pos <= end()); |
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long n = last - first; |
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long at = pos - begin(); |
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if (n > 0) { |
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reserve (pos, n); |
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pos = begin()+at; |
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memcpy (pos, first, (last-first)*sizeof(T)); |
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_last += n; |
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} |
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return pos; |
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} |
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iterator insert (iterator pos, size_type n, const T &t) |
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{ |
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//ministl_assert (pos <= end()); |
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long at = pos - begin(); |
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if (n > 0) { |
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reserve (pos, n); |
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pos = begin()+at; |
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for (int i = 0; i < n; ++i) |
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pos[i] = t; |
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_last += n; |
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} |
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return pos; |
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} |
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void erase (iterator first, iterator last) |
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{ |
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if (last != first) { |
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memmove (first, last, (end()-last)*sizeof(T)); |
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_last -= last - first; |
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} |
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} |
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void erase (iterator pos) |
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{ |
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if (pos != end()) { |
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memmove (pos, pos+1, (end()-(pos+1))*sizeof(T)); |
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--_last; |
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} |
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} |
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}; |
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template<class T> |
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bool operator== (const simplevec<T> &v1, const simplevec<T> &v2) |
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{ |
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if (v1.size() != v2.size()) |
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return false; |
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return !v1.size() || !memcmp (&v1[0], &v2[0], v1.size()*sizeof(T)); |
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} |
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template<class T> |
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bool operator< (const simplevec<T> &v1, const simplevec<T> &v2) |
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{ |
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unsigned long minlast = min (v1.size(), v2.size()); |
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for (unsigned long i = 0; i < minlast; ++i) { |
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if (v1[i] < v2[i]) |
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return true; |
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if (v2[i] < v1[i]) |
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return false; |
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} |
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return v1.size() < v2.size(); |
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} |
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#endif |