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1 /*
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2 Copyright 2005-2007 Adobe Systems Incorporated
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3
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4 Use, modification and distribution are subject to the Boost Software License,
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5 Version 1.0. (See accompanying file LICENSE_1_0.txt or copy at
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6 http://www.boost.org/LICENSE_1_0.txt).
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7
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8 See http://opensource.adobe.com/gil for most recent version including documentation.
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9 */
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10
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11 /*************************************************************************************************/
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12
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13 #ifndef GIL_PLANAR_PTR_H
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14 #define GIL_PLANAR_PTR_H
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15
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16 ////////////////////////////////////////////////////////////////////////////////////////
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17 /// \file
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18 /// \brief planar pixel pointer class
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19 /// \author Lubomir Bourdev and Hailin Jin \n
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20 /// Adobe Systems Incorporated
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21 /// \date 2005-2007 \n Last updated on February 12, 2007
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22 ///
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23 ////////////////////////////////////////////////////////////////////////////////////////
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24
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25 #include <cassert>
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26 #include <iterator>
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27 #include <boost/iterator/iterator_facade.hpp>
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28 #include "gil_config.hpp"
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29 #include "pixel.hpp"
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30 #include "step_iterator.hpp"
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31
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32 namespace boost { namespace gil {
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33
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34 //forward declaration (as this file is included in planar_pixel_reference.hpp)
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35 template <typename ChannelReference, typename ColorSpace>
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36 struct planar_pixel_reference;
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37
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38 /// \defgroup ColorBaseModelPlanarPtr planar_pixel_iterator
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39 /// \ingroup ColorBaseModel
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40 /// \brief A homogeneous color base whose element is a channel iterator. Models HomogeneousColorBaseValueConcept
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41 /// This class is used as an iterator to a planar pixel.
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42
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43 /// \defgroup PixelIteratorModelPlanarPtr planar_pixel_iterator
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44 /// \ingroup PixelIteratorModel
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45 /// \brief An iterator over planar pixels. Models PixelIteratorConcept, HomogeneousPixelBasedConcept, MemoryBasedIteratorConcept, HasDynamicXStepTypeConcept
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46
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47 ////////////////////////////////////////////////////////////////////////////////////////
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48 /// \brief An iterator over planar pixels. Models HomogeneousColorBaseConcept, PixelIteratorConcept, HomogeneousPixelBasedConcept, MemoryBasedIteratorConcept, HasDynamicXStepTypeConcept
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49 ///
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50 /// Planar pixels have channel data that is not consecutive in memory.
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51 /// To abstract this we use classes to represent references and pointers to planar pixels.
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52 ///
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53 /// \ingroup PixelIteratorModelPlanarPtr ColorBaseModelPlanarPtr PixelBasedModel
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54 template <typename ChannelPtr, typename ColorSpace>
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55 struct planar_pixel_iterator : public iterator_facade<planar_pixel_iterator<ChannelPtr,ColorSpace>,
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56 pixel<typename std::iterator_traits<ChannelPtr>::value_type,layout<ColorSpace> >,
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57 std::random_access_iterator_tag,
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58 const planar_pixel_reference<typename std::iterator_traits<ChannelPtr>::reference,ColorSpace> >,
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59 public detail::homogeneous_color_base<ChannelPtr,layout<ColorSpace>,mpl::size<ColorSpace>::value > {
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60 private:
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61 typedef iterator_facade<planar_pixel_iterator<ChannelPtr,ColorSpace>,
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62 pixel<typename std::iterator_traits<ChannelPtr>::value_type,layout<ColorSpace> >,
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63 std::random_access_iterator_tag,
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64 const planar_pixel_reference<typename std::iterator_traits<ChannelPtr>::reference,ColorSpace> > parent_t;
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65 typedef detail::homogeneous_color_base<ChannelPtr,layout<ColorSpace>,mpl::size<ColorSpace>::value> color_base_parent_t;
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66 typedef typename std::iterator_traits<ChannelPtr>::value_type channel_t;
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67 public:
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68 typedef typename parent_t::value_type value_type;
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69 typedef typename parent_t::reference reference;
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70 typedef typename parent_t::difference_type difference_type;
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71
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72 planar_pixel_iterator() : color_base_parent_t(0) {}
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73 planar_pixel_iterator(bool) {} // constructor that does not fill with zero (for performance)
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74
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75 planar_pixel_iterator(const ChannelPtr& v0, const ChannelPtr& v1) : color_base_parent_t(v0,v1) {}
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76 planar_pixel_iterator(const ChannelPtr& v0, const ChannelPtr& v1, const ChannelPtr& v2) : color_base_parent_t(v0,v1,v2) {}
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77 planar_pixel_iterator(const ChannelPtr& v0, const ChannelPtr& v1, const ChannelPtr& v2, const ChannelPtr& v3) : color_base_parent_t(v0,v1,v2,v3) {}
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78 planar_pixel_iterator(const ChannelPtr& v0, const ChannelPtr& v1, const ChannelPtr& v2, const ChannelPtr& v3, const ChannelPtr& v4) : color_base_parent_t(v0,v1,v2,v3,v4) {}
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79
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80 template <typename IC1,typename C1>
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81 planar_pixel_iterator(const planar_pixel_iterator<IC1,C1>& ptr) : color_base_parent_t(ptr) {}
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82
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83
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84 /// Copy constructor and operator= from pointers to compatible planar pixels or planar pixel references.
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85 /// That allow constructs like pointer = &value or pointer = &reference
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86 /// Since we should not override operator& that's the best we can do.
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87 template <typename P>
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88 planar_pixel_iterator(P* pix) : color_base_parent_t(pix, true) {
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89 function_requires<PixelsCompatibleConcept<P,value_type> >();
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90 }
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91
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92 struct address_of { template <typename T> T* operator()(T& t) { return &t; } };
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93 template <typename P>
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94 planar_pixel_iterator& operator=(P* pix) {
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95 function_requires<PixelsCompatibleConcept<P,value_type> >();
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96 static_transform(*pix,*this, address_of());
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97
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98 // PERFORMANCE_CHECK: Compare to this:
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99 //this->template semantic_at_c<0>()=&pix->template semantic_at_c<0>();
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100 //this->template semantic_at_c<1>()=&pix->template semantic_at_c<1>();
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101 //this->template semantic_at_c<2>()=&pix->template semantic_at_c<2>();
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102 return *this;
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103 }
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104
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105 /// For some reason operator[] provided by iterator_facade returns a custom class that is convertible to reference
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106 /// We require our own reference because it is registered in iterator_traits
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107 reference operator[](difference_type d) const { return memunit_advanced_ref(*this,d*sizeof(channel_t));}
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108
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109 reference operator->() const { return **this; }
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110
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111 // PERFORMANCE_CHECK: Remove?
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112 bool operator< (const planar_pixel_iterator& ptr) const { return gil::at_c<0>(*this)< gil::at_c<0>(ptr); }
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113 bool operator!=(const planar_pixel_iterator& ptr) const { return gil::at_c<0>(*this)!=gil::at_c<0>(ptr); }
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114 private:
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115 friend class boost::iterator_core_access;
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116
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117 void increment() { static_transform(*this,*this,detail::inc<ChannelPtr>()); }
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118 void decrement() { static_transform(*this,*this,detail::dec<ChannelPtr>()); }
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119 void advance(ptrdiff_t d) { static_transform(*this,*this,std::bind2nd(detail::plus_asymmetric<ChannelPtr,ptrdiff_t>(),d)); }
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120 reference dereference() const { return this->template deref<reference>(); }
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121
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122 ptrdiff_t distance_to(const planar_pixel_iterator& it) const { return gil::at_c<0>(it)-gil::at_c<0>(*this); }
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123 bool equal(const planar_pixel_iterator& it) const { return gil::at_c<0>(*this)==gil::at_c<0>(it); }
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124 };
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125
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126 namespace detail {
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127 template <typename IC> struct channel_iterator_is_mutable : public mpl::true_ {};
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128 template <typename T> struct channel_iterator_is_mutable<const T*> : public mpl::false_ {};
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129 }
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130
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131 template <typename IC, typename C>
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132 struct const_iterator_type<planar_pixel_iterator<IC,C> > {
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133 private:
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134 typedef typename std::iterator_traits<IC>::value_type channel_t;
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135 public:
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136 typedef planar_pixel_iterator<typename channel_traits<channel_t>::const_pointer,C> type;
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137 };
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138
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139 // The default implementation when the iterator is a C pointer is to use the standard constness semantics
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140 template <typename IC, typename C>
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141 struct iterator_is_mutable<planar_pixel_iterator<IC,C> > : public detail::channel_iterator_is_mutable<IC> {};
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142
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143 /////////////////////////////
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144 // ColorBasedConcept
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145 /////////////////////////////
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146
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147 template <typename IC, typename C, int K>
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148 struct kth_element_type<planar_pixel_iterator<IC,C>, K> {
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149 typedef IC type;
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150 };
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151
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152 template <typename IC, typename C, int K>
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153 struct kth_element_reference_type<planar_pixel_iterator<IC,C>, K> : public add_reference<IC> {};
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154
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155 template <typename IC, typename C, int K>
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156 struct kth_element_const_reference_type<planar_pixel_iterator<IC,C>, K> : public add_reference<typename add_const<IC>::type> {};
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157
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158 /////////////////////////////
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159 // HomogeneousPixelBasedConcept
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160 /////////////////////////////
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161
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162 template <typename IC, typename C>
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163 struct color_space_type<planar_pixel_iterator<IC,C> > {
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164 typedef C type;
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165 };
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166
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167 template <typename IC, typename C>
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168 struct channel_mapping_type<planar_pixel_iterator<IC,C> > : public channel_mapping_type<typename planar_pixel_iterator<IC,C>::value_type> {};
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169
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170 template <typename IC, typename C>
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171 struct is_planar<planar_pixel_iterator<IC,C> > : public mpl::true_ {};
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172
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173 template <typename IC, typename C>
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174 struct channel_type<planar_pixel_iterator<IC,C> > {
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175 typedef typename std::iterator_traits<IC>::value_type type;
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176 };
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177
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178 /////////////////////////////
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179 // MemoryBasedIteratorConcept
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180 /////////////////////////////
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181
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182 template <typename IC, typename C>
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183 inline std::ptrdiff_t memunit_step(const planar_pixel_iterator<IC,C>&) { return sizeof(typename std::iterator_traits<IC>::value_type); }
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184
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185 template <typename IC, typename C>
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186 inline std::ptrdiff_t memunit_distance(const planar_pixel_iterator<IC,C>& p1, const planar_pixel_iterator<IC,C>& p2) {
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187 return memunit_distance(gil::at_c<0>(p1),gil::at_c<0>(p2));
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188 }
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189
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190 template <typename IC>
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191 struct memunit_advance_fn {
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192 memunit_advance_fn(std::ptrdiff_t diff) : _diff(diff) {}
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193 IC operator()(const IC& p) const { return memunit_advanced(p,_diff); }
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194
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195 std::ptrdiff_t _diff;
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196 };
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197
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198 template <typename IC, typename C>
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199 inline void memunit_advance(planar_pixel_iterator<IC,C>& p, std::ptrdiff_t diff) {
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200 static_transform(p, p, memunit_advance_fn<IC>(diff));
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201 }
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202
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203 template <typename IC, typename C>
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204 inline planar_pixel_iterator<IC,C> memunit_advanced(const planar_pixel_iterator<IC,C>& p, std::ptrdiff_t diff) {
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205 planar_pixel_iterator<IC,C> ret=p;
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206 memunit_advance(ret, diff);
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207 return ret;
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208 }
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209
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210 template <typename ChannelPtr, typename ColorSpace>
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211 inline planar_pixel_reference<typename std::iterator_traits<ChannelPtr>::reference,ColorSpace>
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212 memunit_advanced_ref(const planar_pixel_iterator<ChannelPtr,ColorSpace>& ptr, std::ptrdiff_t diff) {
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213 return planar_pixel_reference<typename std::iterator_traits<ChannelPtr>::reference,ColorSpace>(ptr, diff);
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214 }
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215
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216 /////////////////////////////
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217 // HasDynamicXStepTypeConcept
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218 /////////////////////////////
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219
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220 template <typename IC, typename C>
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221 struct dynamic_x_step_type<planar_pixel_iterator<IC,C> > {
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222 typedef memory_based_step_iterator<planar_pixel_iterator<IC,C> > type;
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223 };
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224
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225 } } // namespace boost::gil
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226
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227 #endif
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