1 | // This file is part of Eigen, a lightweight C++ template library |
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2 | // for linear algebra. |
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3 | // |
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4 | // Copyright (C) 2009 Hauke Heibel <hauke.heibel@googlemail.com> |
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5 | // |
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6 | // This Source Code Form is subject to the terms of the Mozilla |
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7 | // Public License v. 2.0. If a copy of the MPL was not distributed |
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8 | // with this file, You can obtain one at http://mozilla.org/MPL/2.0/. |
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9 | |
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10 | #ifndef EIGEN_STDLIST_H |
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11 | #define EIGEN_STDLIST_H |
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12 | |
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13 | #include "Eigen/src/StlSupport/details.h" |
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14 | |
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15 | // Define the explicit instantiation (e.g. necessary for the Intel compiler) |
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16 | #if defined(__INTEL_COMPILER) || defined(__GNUC__) |
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17 | #define EIGEN_EXPLICIT_STL_LIST_INSTANTIATION(...) template class std::list<__VA_ARGS__, EIGEN_ALIGNED_ALLOCATOR<__VA_ARGS__> >; |
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18 | #else |
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19 | #define EIGEN_EXPLICIT_STL_LIST_INSTANTIATION(...) |
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20 | #endif |
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21 | |
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22 | /** |
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23 | * This section contains a convenience MACRO which allows an easy specialization of |
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24 | * std::list such that for data types with alignment issues the correct allocator |
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25 | * is used automatically. |
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26 | */ |
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27 | #define EIGEN_DEFINE_STL_LIST_SPECIALIZATION(...) \ |
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28 | EIGEN_EXPLICIT_STL_LIST_INSTANTIATION(__VA_ARGS__) \ |
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29 | namespace std \ |
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30 | { \ |
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31 | template<typename _Ay> \ |
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32 | class list<__VA_ARGS__, _Ay> \ |
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33 | : public list<__VA_ARGS__, EIGEN_ALIGNED_ALLOCATOR<__VA_ARGS__> > \ |
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34 | { \ |
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35 | typedef list<__VA_ARGS__, EIGEN_ALIGNED_ALLOCATOR<__VA_ARGS__> > list_base; \ |
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36 | public: \ |
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37 | typedef __VA_ARGS__ value_type; \ |
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38 | typedef typename list_base::allocator_type allocator_type; \ |
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39 | typedef typename list_base::size_type size_type; \ |
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40 | typedef typename list_base::iterator iterator; \ |
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41 | explicit list(const allocator_type& a = allocator_type()) : list_base(a) {} \ |
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42 | template<typename InputIterator> \ |
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43 | list(InputIterator first, InputIterator last, const allocator_type& a = allocator_type()) : list_base(first, last, a) {} \ |
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44 | list(const list& c) : list_base(c) {} \ |
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45 | explicit list(size_type num, const value_type& val = value_type()) : list_base(num, val) {} \ |
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46 | list(iterator start, iterator end) : list_base(start, end) {} \ |
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47 | list& operator=(const list& x) { \ |
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48 | list_base::operator=(x); \ |
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49 | return *this; \ |
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50 | } \ |
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51 | }; \ |
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52 | } |
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53 | |
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54 | // check whether we really need the std::vector specialization |
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55 | #if !(defined(_GLIBCXX_VECTOR) && (!EIGEN_GNUC_AT_LEAST(4,1))) /* Note that before gcc-4.1 we already have: std::list::resize(size_type,const T&). */ |
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56 | |
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57 | namespace std |
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58 | { |
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59 | |
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60 | #define EIGEN_STD_LIST_SPECIALIZATION_BODY \ |
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61 | public: \ |
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62 | typedef T value_type; \ |
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63 | typedef typename list_base::allocator_type allocator_type; \ |
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64 | typedef typename list_base::size_type size_type; \ |
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65 | typedef typename list_base::iterator iterator; \ |
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66 | typedef typename list_base::const_iterator const_iterator; \ |
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67 | explicit list(const allocator_type& a = allocator_type()) : list_base(a) {} \ |
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68 | template<typename InputIterator> \ |
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69 | list(InputIterator first, InputIterator last, const allocator_type& a = allocator_type()) \ |
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70 | : list_base(first, last, a) {} \ |
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71 | list(const list& c) : list_base(c) {} \ |
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72 | explicit list(size_type num, const value_type& val = value_type()) : list_base(num, val) {} \ |
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73 | list(iterator start, iterator end) : list_base(start, end) {} \ |
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74 | list& operator=(const list& x) { \ |
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75 | list_base::operator=(x); \ |
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76 | return *this; \ |
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77 | } |
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78 | |
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79 | template<typename T> |
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80 | class list<T,EIGEN_ALIGNED_ALLOCATOR<T> > |
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81 | : public list<EIGEN_WORKAROUND_MSVC_STL_SUPPORT(T), |
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82 | Eigen::aligned_allocator_indirection<EIGEN_WORKAROUND_MSVC_STL_SUPPORT(T)> > |
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83 | { |
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84 | typedef list<EIGEN_WORKAROUND_MSVC_STL_SUPPORT(T), |
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85 | Eigen::aligned_allocator_indirection<EIGEN_WORKAROUND_MSVC_STL_SUPPORT(T)> > list_base; |
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86 | EIGEN_STD_LIST_SPECIALIZATION_BODY |
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87 | |
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88 | void resize(size_type new_size) |
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89 | { resize(new_size, T()); } |
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90 | |
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91 | void resize(size_type new_size, const value_type& x) |
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92 | { |
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93 | if (list_base::size() < new_size) |
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94 | list_base::insert(list_base::end(), new_size - list_base::size(), x); |
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95 | else |
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96 | while (new_size < list_base::size()) list_base::pop_back(); |
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97 | } |
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98 | |
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99 | #if defined(_LIST_) |
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100 | // workaround MSVC std::list implementation |
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101 | void push_back(const value_type& x) |
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102 | { list_base::push_back(x); } |
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103 | using list_base::insert; |
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104 | iterator insert(const_iterator position, const value_type& x) |
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105 | { return list_base::insert(position,x); } |
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106 | void insert(const_iterator position, size_type new_size, const value_type& x) |
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107 | { list_base::insert(position, new_size, x); } |
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108 | #endif |
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109 | }; |
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110 | } |
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111 | |
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112 | #endif // check whether specialization is actually required |
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113 | |
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114 | #endif // EIGEN_STDLIST_H |
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