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) 2008 Gael Guennebaud <gael.guennebaud@inria.fr> |
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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_ALIGNEDBOX_H |
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11 | #define EIGEN_ALIGNEDBOX_H |
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12 | |
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13 | namespace Eigen { |
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14 | |
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15 | /** \geometry_module \ingroup Geometry_Module |
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16 | * |
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17 | * |
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18 | * \class AlignedBox |
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19 | * |
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20 | * \brief An axis aligned box |
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21 | * |
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22 | * \param _Scalar the type of the scalar coefficients |
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23 | * \param _AmbientDim the dimension of the ambient space, can be a compile time value or Dynamic. |
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24 | * |
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25 | * This class represents an axis aligned box as a pair of the minimal and maximal corners. |
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26 | */ |
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27 | template <typename _Scalar, int _AmbientDim> |
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28 | class AlignedBox |
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29 | { |
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30 | public: |
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31 | EIGEN_MAKE_ALIGNED_OPERATOR_NEW_IF_VECTORIZABLE_FIXED_SIZE(_Scalar,_AmbientDim) |
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32 | enum { AmbientDimAtCompileTime = _AmbientDim }; |
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33 | typedef _Scalar Scalar; |
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34 | typedef NumTraits<Scalar> ScalarTraits; |
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35 | typedef DenseIndex Index; |
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36 | typedef typename ScalarTraits::Real RealScalar; |
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37 | typedef typename ScalarTraits::NonInteger NonInteger; |
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38 | typedef Matrix<Scalar,AmbientDimAtCompileTime,1> VectorType; |
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39 | |
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40 | /** Define constants to name the corners of a 1D, 2D or 3D axis aligned bounding box */ |
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41 | enum CornerType |
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42 | { |
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43 | /** 1D names */ |
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44 | Min=0, Max=1, |
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45 | |
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46 | /** Added names for 2D */ |
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47 | BottomLeft=0, BottomRight=1, |
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48 | TopLeft=2, TopRight=3, |
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49 | |
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50 | /** Added names for 3D */ |
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51 | BottomLeftFloor=0, BottomRightFloor=1, |
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52 | TopLeftFloor=2, TopRightFloor=3, |
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53 | BottomLeftCeil=4, BottomRightCeil=5, |
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54 | TopLeftCeil=6, TopRightCeil=7 |
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55 | }; |
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56 | |
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57 | |
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58 | /** Default constructor initializing a null box. */ |
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59 | inline explicit AlignedBox() |
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60 | { if (AmbientDimAtCompileTime!=Dynamic) setEmpty(); } |
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61 | |
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62 | /** Constructs a null box with \a _dim the dimension of the ambient space. */ |
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63 | inline explicit AlignedBox(Index _dim) : m_min(_dim), m_max(_dim) |
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64 | { setEmpty(); } |
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65 | |
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66 | /** Constructs a box with extremities \a _min and \a _max. */ |
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67 | template<typename OtherVectorType1, typename OtherVectorType2> |
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68 | inline AlignedBox(const OtherVectorType1& _min, const OtherVectorType2& _max) : m_min(_min), m_max(_max) {} |
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69 | |
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70 | /** Constructs a box containing a single point \a p. */ |
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71 | template<typename Derived> |
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72 | inline explicit AlignedBox(const MatrixBase<Derived>& a_p) |
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73 | { |
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74 | const typename internal::nested<Derived,2>::type p(a_p.derived()); |
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75 | m_min = p; |
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76 | m_max = p; |
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77 | } |
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78 | |
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79 | ~AlignedBox() {} |
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80 | |
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81 | /** \returns the dimension in which the box holds */ |
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82 | inline Index dim() const { return AmbientDimAtCompileTime==Dynamic ? m_min.size() : Index(AmbientDimAtCompileTime); } |
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83 | |
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84 | /** \deprecated use isEmpty */ |
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85 | inline bool isNull() const { return isEmpty(); } |
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86 | |
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87 | /** \deprecated use setEmpty */ |
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88 | inline void setNull() { setEmpty(); } |
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89 | |
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90 | /** \returns true if the box is empty. */ |
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91 | inline bool isEmpty() const { return (m_min.array() > m_max.array()).any(); } |
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92 | |
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93 | /** Makes \c *this an empty box. */ |
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94 | inline void setEmpty() |
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95 | { |
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96 | m_min.setConstant( ScalarTraits::highest() ); |
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97 | m_max.setConstant( ScalarTraits::lowest() ); |
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98 | } |
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99 | |
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100 | /** \returns the minimal corner */ |
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101 | inline const VectorType& (min)() const { return m_min; } |
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102 | /** \returns a non const reference to the minimal corner */ |
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103 | inline VectorType& (min)() { return m_min; } |
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104 | /** \returns the maximal corner */ |
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105 | inline const VectorType& (max)() const { return m_max; } |
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106 | /** \returns a non const reference to the maximal corner */ |
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107 | inline VectorType& (max)() { return m_max; } |
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108 | |
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109 | /** \returns the center of the box */ |
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110 | inline const CwiseUnaryOp<internal::scalar_quotient1_op<Scalar>, |
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111 | const CwiseBinaryOp<internal::scalar_sum_op<Scalar>, const VectorType, const VectorType> > |
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112 | center() const |
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113 | { return (m_min+m_max)/2; } |
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114 | |
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115 | /** \returns the lengths of the sides of the bounding box. |
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116 | * Note that this function does not get the same |
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117 | * result for integral or floating scalar types: see |
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118 | */ |
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119 | inline const CwiseBinaryOp< internal::scalar_difference_op<Scalar>, const VectorType, const VectorType> sizes() const |
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120 | { return m_max - m_min; } |
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121 | |
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122 | /** \returns the volume of the bounding box */ |
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123 | inline Scalar volume() const |
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124 | { return sizes().prod(); } |
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125 | |
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126 | /** \returns an expression for the bounding box diagonal vector |
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127 | * if the length of the diagonal is needed: diagonal().norm() |
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128 | * will provide it. |
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129 | */ |
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130 | inline CwiseBinaryOp< internal::scalar_difference_op<Scalar>, const VectorType, const VectorType> diagonal() const |
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131 | { return sizes(); } |
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132 | |
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133 | /** \returns the vertex of the bounding box at the corner defined by |
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134 | * the corner-id corner. It works only for a 1D, 2D or 3D bounding box. |
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135 | * For 1D bounding boxes corners are named by 2 enum constants: |
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136 | * BottomLeft and BottomRight. |
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137 | * For 2D bounding boxes, corners are named by 4 enum constants: |
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138 | * BottomLeft, BottomRight, TopLeft, TopRight. |
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139 | * For 3D bounding boxes, the following names are added: |
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140 | * BottomLeftCeil, BottomRightCeil, TopLeftCeil, TopRightCeil. |
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141 | */ |
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142 | inline VectorType corner(CornerType corner) const |
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143 | { |
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144 | EIGEN_STATIC_ASSERT(_AmbientDim <= 3, THIS_METHOD_IS_ONLY_FOR_VECTORS_OF_A_SPECIFIC_SIZE); |
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145 | |
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146 | VectorType res; |
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147 | |
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148 | Index mult = 1; |
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149 | for(Index d=0; d<dim(); ++d) |
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150 | { |
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151 | if( mult & corner ) res[d] = m_max[d]; |
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152 | else res[d] = m_min[d]; |
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153 | mult *= 2; |
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154 | } |
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155 | return res; |
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156 | } |
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157 | |
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158 | /** \returns a random point inside the bounding box sampled with |
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159 | * a uniform distribution */ |
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160 | inline VectorType sample() const |
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161 | { |
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162 | VectorType r; |
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163 | for(Index d=0; d<dim(); ++d) |
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164 | { |
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165 | if(!ScalarTraits::IsInteger) |
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166 | { |
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167 | r[d] = m_min[d] + (m_max[d]-m_min[d]) |
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168 | * internal::random<Scalar>(Scalar(0), Scalar(1)); |
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169 | } |
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170 | else |
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171 | r[d] = internal::random(m_min[d], m_max[d]); |
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172 | } |
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173 | return r; |
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174 | } |
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175 | |
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176 | /** \returns true if the point \a p is inside the box \c *this. */ |
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177 | template<typename Derived> |
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178 | inline bool contains(const MatrixBase<Derived>& a_p) const |
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179 | { |
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180 | typename internal::nested<Derived,2>::type p(a_p.derived()); |
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181 | return (m_min.array()<=p.array()).all() && (p.array()<=m_max.array()).all(); |
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182 | } |
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183 | |
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184 | /** \returns true if the box \a b is entirely inside the box \c *this. */ |
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185 | inline bool contains(const AlignedBox& b) const |
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186 | { return (m_min.array()<=(b.min)().array()).all() && ((b.max)().array()<=m_max.array()).all(); } |
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187 | |
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188 | /** Extends \c *this such that it contains the point \a p and returns a reference to \c *this. */ |
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189 | template<typename Derived> |
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190 | inline AlignedBox& extend(const MatrixBase<Derived>& a_p) |
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191 | { |
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192 | typename internal::nested<Derived,2>::type p(a_p.derived()); |
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193 | m_min = m_min.cwiseMin(p); |
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194 | m_max = m_max.cwiseMax(p); |
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195 | return *this; |
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196 | } |
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197 | |
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198 | /** Extends \c *this such that it contains the box \a b and returns a reference to \c *this. */ |
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199 | inline AlignedBox& extend(const AlignedBox& b) |
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200 | { |
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201 | m_min = m_min.cwiseMin(b.m_min); |
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202 | m_max = m_max.cwiseMax(b.m_max); |
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203 | return *this; |
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204 | } |
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205 | |
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206 | /** Clamps \c *this by the box \a b and returns a reference to \c *this. */ |
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207 | inline AlignedBox& clamp(const AlignedBox& b) |
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208 | { |
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209 | m_min = m_min.cwiseMax(b.m_min); |
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210 | m_max = m_max.cwiseMin(b.m_max); |
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211 | return *this; |
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212 | } |
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213 | |
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214 | /** Returns an AlignedBox that is the intersection of \a b and \c *this */ |
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215 | inline AlignedBox intersection(const AlignedBox& b) const |
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216 | {return AlignedBox(m_min.cwiseMax(b.m_min), m_max.cwiseMin(b.m_max)); } |
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217 | |
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218 | /** Returns an AlignedBox that is the union of \a b and \c *this */ |
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219 | inline AlignedBox merged(const AlignedBox& b) const |
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220 | { return AlignedBox(m_min.cwiseMin(b.m_min), m_max.cwiseMax(b.m_max)); } |
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221 | |
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222 | /** Translate \c *this by the vector \a t and returns a reference to \c *this. */ |
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223 | template<typename Derived> |
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224 | inline AlignedBox& translate(const MatrixBase<Derived>& a_t) |
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225 | { |
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226 | const typename internal::nested<Derived,2>::type t(a_t.derived()); |
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227 | m_min += t; |
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228 | m_max += t; |
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229 | return *this; |
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230 | } |
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231 | |
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232 | /** \returns the squared distance between the point \a p and the box \c *this, |
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233 | * and zero if \a p is inside the box. |
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234 | * \sa exteriorDistance() |
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235 | */ |
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236 | template<typename Derived> |
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237 | inline Scalar squaredExteriorDistance(const MatrixBase<Derived>& a_p) const; |
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238 | |
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239 | /** \returns the squared distance between the boxes \a b and \c *this, |
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240 | * and zero if the boxes intersect. |
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241 | * \sa exteriorDistance() |
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242 | */ |
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243 | inline Scalar squaredExteriorDistance(const AlignedBox& b) const; |
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244 | |
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245 | /** \returns the distance between the point \a p and the box \c *this, |
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246 | * and zero if \a p is inside the box. |
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247 | * \sa squaredExteriorDistance() |
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248 | */ |
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249 | template<typename Derived> |
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250 | inline NonInteger exteriorDistance(const MatrixBase<Derived>& p) const |
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251 | { return internal::sqrt(NonInteger(squaredExteriorDistance(p))); } |
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252 | |
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253 | /** \returns the distance between the boxes \a b and \c *this, |
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254 | * and zero if the boxes intersect. |
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255 | * \sa squaredExteriorDistance() |
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256 | */ |
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257 | inline NonInteger exteriorDistance(const AlignedBox& b) const |
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258 | { return internal::sqrt(NonInteger(squaredExteriorDistance(b))); } |
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259 | |
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260 | /** \returns \c *this with scalar type casted to \a NewScalarType |
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261 | * |
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262 | * Note that if \a NewScalarType is equal to the current scalar type of \c *this |
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263 | * then this function smartly returns a const reference to \c *this. |
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264 | */ |
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265 | template<typename NewScalarType> |
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266 | inline typename internal::cast_return_type<AlignedBox, |
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267 | AlignedBox<NewScalarType,AmbientDimAtCompileTime> >::type cast() const |
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268 | { |
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269 | return typename internal::cast_return_type<AlignedBox, |
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270 | AlignedBox<NewScalarType,AmbientDimAtCompileTime> >::type(*this); |
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271 | } |
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272 | |
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273 | /** Copy constructor with scalar type conversion */ |
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274 | template<typename OtherScalarType> |
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275 | inline explicit AlignedBox(const AlignedBox<OtherScalarType,AmbientDimAtCompileTime>& other) |
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276 | { |
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277 | m_min = (other.min)().template cast<Scalar>(); |
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278 | m_max = (other.max)().template cast<Scalar>(); |
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279 | } |
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280 | |
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281 | /** \returns \c true if \c *this is approximately equal to \a other, within the precision |
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282 | * determined by \a prec. |
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283 | * |
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284 | * \sa MatrixBase::isApprox() */ |
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285 | bool isApprox(const AlignedBox& other, RealScalar prec = ScalarTraits::dummy_precision()) const |
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286 | { return m_min.isApprox(other.m_min, prec) && m_max.isApprox(other.m_max, prec); } |
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287 | |
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288 | protected: |
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289 | |
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290 | VectorType m_min, m_max; |
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291 | }; |
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292 | |
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293 | |
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294 | |
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295 | template<typename Scalar,int AmbientDim> |
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296 | template<typename Derived> |
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297 | inline Scalar AlignedBox<Scalar,AmbientDim>::squaredExteriorDistance(const MatrixBase<Derived>& a_p) const |
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298 | { |
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299 | const typename internal::nested<Derived,2*AmbientDim>::type p(a_p.derived()); |
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300 | Scalar dist2(0); |
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301 | Scalar aux; |
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302 | for (Index k=0; k<dim(); ++k) |
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303 | { |
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304 | if( m_min[k] > p[k] ) |
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305 | { |
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306 | aux = m_min[k] - p[k]; |
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307 | dist2 += aux*aux; |
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308 | } |
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309 | else if( p[k] > m_max[k] ) |
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310 | { |
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311 | aux = p[k] - m_max[k]; |
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312 | dist2 += aux*aux; |
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313 | } |
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314 | } |
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315 | return dist2; |
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316 | } |
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317 | |
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318 | template<typename Scalar,int AmbientDim> |
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319 | inline Scalar AlignedBox<Scalar,AmbientDim>::squaredExteriorDistance(const AlignedBox& b) const |
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320 | { |
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321 | Scalar dist2(0); |
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322 | Scalar aux; |
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323 | for (Index k=0; k<dim(); ++k) |
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324 | { |
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325 | if( m_min[k] > b.m_max[k] ) |
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326 | { |
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327 | aux = m_min[k] - b.m_max[k]; |
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328 | dist2 += aux*aux; |
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329 | } |
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330 | else if( b.m_min[k] > m_max[k] ) |
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331 | { |
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332 | aux = b.m_min[k] - m_max[k]; |
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333 | dist2 += aux*aux; |
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334 | } |
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335 | } |
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336 | return dist2; |
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337 | } |
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338 | |
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339 | /** \defgroup alignedboxtypedefs Global aligned box typedefs |
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340 | * |
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341 | * \ingroup Geometry_Module |
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342 | * |
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343 | * Eigen defines several typedef shortcuts for most common aligned box types. |
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344 | * |
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345 | * The general patterns are the following: |
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346 | * |
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347 | * \c AlignedBoxSizeType where \c Size can be \c 1, \c 2,\c 3,\c 4 for fixed size boxes or \c X for dynamic size, |
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348 | * and where \c Type can be \c i for integer, \c f for float, \c d for double. |
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349 | * |
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350 | * For example, \c AlignedBox3d is a fixed-size 3x3 aligned box type of doubles, and \c AlignedBoxXf is a dynamic-size aligned box of floats. |
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351 | * |
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352 | * \sa class AlignedBox |
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353 | */ |
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354 | |
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355 | #define EIGEN_MAKE_TYPEDEFS(Type, TypeSuffix, Size, SizeSuffix) \ |
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356 | /** \ingroup alignedboxtypedefs */ \ |
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357 | typedef AlignedBox<Type, Size> AlignedBox##SizeSuffix##TypeSuffix; |
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358 | |
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359 | #define EIGEN_MAKE_TYPEDEFS_ALL_SIZES(Type, TypeSuffix) \ |
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360 | EIGEN_MAKE_TYPEDEFS(Type, TypeSuffix, 1, 1) \ |
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361 | EIGEN_MAKE_TYPEDEFS(Type, TypeSuffix, 2, 2) \ |
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362 | EIGEN_MAKE_TYPEDEFS(Type, TypeSuffix, 3, 3) \ |
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363 | EIGEN_MAKE_TYPEDEFS(Type, TypeSuffix, 4, 4) \ |
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364 | EIGEN_MAKE_TYPEDEFS(Type, TypeSuffix, Dynamic, X) |
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365 | |
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366 | EIGEN_MAKE_TYPEDEFS_ALL_SIZES(int, i) |
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367 | EIGEN_MAKE_TYPEDEFS_ALL_SIZES(float, f) |
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368 | EIGEN_MAKE_TYPEDEFS_ALL_SIZES(double, d) |
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369 | |
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370 | #undef EIGEN_MAKE_TYPEDEFS_ALL_SIZES |
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371 | #undef EIGEN_MAKE_TYPEDEFS |
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372 | |
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373 | } // end namespace Eigen |
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374 | |
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375 | #endif // EIGEN_ALIGNEDBOX_H |
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