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116 lines
4.6 KiB
116 lines
4.6 KiB
// This file is part of Eigen, a lightweight C++ template library |
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// for linear algebra. |
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// |
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// Copyright (C) 2009 Gael Guennebaud <gael.guennebaud@inria.fr> |
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// Copyright (C) 2009 Hauke Heibel <hauke.heibel@googlemail.com> |
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// |
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// This Source Code Form is subject to the terms of the Mozilla |
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// Public License v. 2.0. If a copy of the MPL was not distributed |
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// with this file, You can obtain one at the mozilla.org home page |
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#ifndef EIGEN_STDDEQUE_H |
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#define EIGEN_STDDEQUE_H |
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#include "details.h" |
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/** |
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* This section contains a convenience MACRO which allows an easy specialization of |
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* std::deque such that for data types with alignment issues the correct allocator |
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* is used automatically. |
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*/ |
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#define EIGEN_DEFINE_STL_DEQUE_SPECIALIZATION(...) \ |
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namespace std \ |
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{ \ |
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template<> \ |
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class deque<__VA_ARGS__, std::allocator<__VA_ARGS__> > \ |
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: public deque<__VA_ARGS__, EIGEN_ALIGNED_ALLOCATOR<__VA_ARGS__> > \ |
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{ \ |
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typedef deque<__VA_ARGS__, EIGEN_ALIGNED_ALLOCATOR<__VA_ARGS__> > deque_base; \ |
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public: \ |
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typedef __VA_ARGS__ value_type; \ |
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typedef deque_base::allocator_type allocator_type; \ |
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typedef deque_base::size_type size_type; \ |
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typedef deque_base::iterator iterator; \ |
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explicit deque(const allocator_type& a = allocator_type()) : deque_base(a) {} \ |
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template<typename InputIterator> \ |
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deque(InputIterator first, InputIterator last, const allocator_type& a = allocator_type()) : deque_base(first, last, a) {} \ |
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deque(const deque& c) : deque_base(c) {} \ |
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explicit deque(size_type num, const value_type& val = value_type()) : deque_base(num, val) {} \ |
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deque(iterator start_, iterator end_) : deque_base(start_, end_) {} \ |
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deque& operator=(const deque& x) { \ |
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deque_base::operator=(x); \ |
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return *this; \ |
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} \ |
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}; \ |
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} |
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// check whether we really need the std::deque specialization |
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#if !EIGEN_HAS_CXX11_CONTAINERS && !(defined(_GLIBCXX_DEQUE) && (!EIGEN_GNUC_AT_LEAST(4,1))) /* Note that before gcc-4.1 we already have: std::deque::resize(size_type,const T&). */ |
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namespace std { |
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#define EIGEN_STD_DEQUE_SPECIALIZATION_BODY \ |
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public: \ |
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typedef T value_type; \ |
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typedef typename deque_base::allocator_type allocator_type; \ |
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typedef typename deque_base::size_type size_type; \ |
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typedef typename deque_base::iterator iterator; \ |
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typedef typename deque_base::const_iterator const_iterator; \ |
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explicit deque(const allocator_type& a = allocator_type()) : deque_base(a) {} \ |
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template<typename InputIterator> \ |
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deque(InputIterator first, InputIterator last, const allocator_type& a = allocator_type()) \ |
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: deque_base(first, last, a) {} \ |
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deque(const deque& c) : deque_base(c) {} \ |
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explicit deque(size_type num, const value_type& val = value_type()) : deque_base(num, val) {} \ |
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deque(iterator start_, iterator end_) : deque_base(start_, end_) {} \ |
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deque& operator=(const deque& x) { \ |
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deque_base::operator=(x); \ |
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return *this; \ |
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} |
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template<typename T> |
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class deque<T,EIGEN_ALIGNED_ALLOCATOR<T> > |
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: public deque<EIGEN_WORKAROUND_MSVC_STL_SUPPORT(T), |
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Eigen::aligned_allocator_indirection<EIGEN_WORKAROUND_MSVC_STL_SUPPORT(T)> > |
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{ |
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typedef deque<EIGEN_WORKAROUND_MSVC_STL_SUPPORT(T), |
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Eigen::aligned_allocator_indirection<EIGEN_WORKAROUND_MSVC_STL_SUPPORT(T)> > deque_base; |
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EIGEN_STD_DEQUE_SPECIALIZATION_BODY |
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void resize(size_type new_size) |
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{ resize(new_size, T()); } |
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#if defined(_DEQUE_) |
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// workaround MSVC std::deque implementation |
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void resize(size_type new_size, const value_type& x) |
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{ |
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if (deque_base::size() < new_size) |
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deque_base::_Insert_n(deque_base::end(), new_size - deque_base::size(), x); |
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else if (new_size < deque_base::size()) |
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deque_base::erase(deque_base::begin() + new_size, deque_base::end()); |
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} |
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void push_back(const value_type& x) |
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{ deque_base::push_back(x); } |
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void push_front(const value_type& x) |
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{ deque_base::push_front(x); } |
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using deque_base::insert; |
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iterator insert(const_iterator position, const value_type& x) |
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{ return deque_base::insert(position,x); } |
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void insert(const_iterator position, size_type new_size, const value_type& x) |
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{ deque_base::insert(position, new_size, x); } |
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#else |
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// default implementation which should always work. |
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void resize(size_type new_size, const value_type& x) |
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{ |
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if (new_size < deque_base::size()) |
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deque_base::erase(deque_base::begin() + new_size, deque_base::end()); |
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else if (new_size > deque_base::size()) |
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deque_base::insert(deque_base::end(), new_size - deque_base::size(), x); |
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} |
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#endif |
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}; |
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} |
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#endif // check whether specialization is actually required |
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#endif // EIGEN_STDDEQUE_H
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