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537 lines
25 KiB
537 lines
25 KiB
/* |
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Copyright 2005-2007 Adobe Systems Incorporated |
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Use, modification and distribution are subject to the Boost Software License, |
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Version 1.0. (See accompanying file LICENSE_1_0.txt or copy at |
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http://www.boost.org/LICENSE_1_0.txt). |
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See http://opensource.adobe.com/gil for most recent version including documentation. |
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*/ |
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/*************************************************************************************************/ |
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#ifndef GIL_IMAGE_VIEW_FACTORY_HPP |
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#define GIL_IMAGE_VIEW_FACTORY_HPP |
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/*! |
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/// \file |
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/// \brief Methods for constructing image views from raw data or other image views |
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/// \author Lubomir Bourdev and Hailin Jin \n |
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/// Adobe Systems Incorporated |
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/// \date 2005-2007 \n Last updated on March 9, 2007 |
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/// Methods for creating shallow image views from raw pixel data or from other image views - |
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/// flipping horizontally or vertically, axis-aligned rotation, a subimage, subsampled |
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/// or n-th channel image view. Derived image views are shallow copies and are fast to construct. |
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*/ |
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#include <cassert> |
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#include <cstddef> |
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#include "gil_config.hpp" |
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#include "metafunctions.hpp" |
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#include "gray.hpp" |
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#include "color_convert.hpp" |
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/// \defgroup ImageViewConstructors Image View From Raw Data |
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/// \ingroup ImageViewAlgorithm |
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/// \brief Methods for constructing image views from raw data and for getting raw data from views |
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/// \defgroup ImageViewTransformations Image View Transformations |
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/// \ingroup ImageViewAlgorithm |
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/// \brief Methods for constructing one image view from another |
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namespace boost { namespace gil { |
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struct default_color_converter; |
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template <typename T> struct dynamic_x_step_type; |
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template <typename T> struct dynamic_y_step_type; |
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template <typename T> struct transposed_type; |
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/// \brief Returns the type of a view that has a dynamic step along both X and Y |
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/// \ingroup ImageViewTransformations |
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template <typename View> |
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struct dynamic_xy_step_type : public dynamic_y_step_type<typename dynamic_x_step_type<View>::type> {}; |
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/// \brief Returns the type of a transposed view that has a dynamic step along both X and Y |
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/// \ingroup ImageViewTransformations |
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template <typename View> |
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struct dynamic_xy_step_transposed_type : public dynamic_xy_step_type<typename transposed_type<View>::type> {}; |
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/// \ingroup ImageViewConstructors |
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/// \brief Constructing image views from raw interleaved pixel data |
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template <typename Iterator> |
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typename type_from_x_iterator<Iterator>::view_t |
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interleaved_view(std::size_t width, std::size_t height, |
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Iterator pixels, std::ptrdiff_t rowsize_in_bytes) { |
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typedef typename type_from_x_iterator<Iterator>::view_t RView; |
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return RView(width, height, typename RView::locator(pixels, rowsize_in_bytes)); |
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} |
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/// \ingroup ImageViewConstructors |
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/// \brief Constructing image views from raw interleaved pixel data |
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template <typename Iterator> |
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typename type_from_x_iterator<Iterator>::view_t |
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interleaved_view(point2<std::size_t> dim, |
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Iterator pixels, std::ptrdiff_t rowsize_in_bytes) { |
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typedef typename type_from_x_iterator<Iterator>::view_t RView; |
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return RView(dim, typename RView::locator(pixels, rowsize_in_bytes)); |
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} |
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///////////////////////////// |
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// interleaved_view_get_raw_data, planar_view_get_raw_data - return pointers to the raw data (the channels) of a basic homogeneous view. |
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///////////////////////////// |
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namespace detail { |
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template <typename View, bool IsMutable> struct channel_pointer_type_impl; |
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template <typename View> struct channel_pointer_type_impl<View, true> { |
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typedef typename channel_type<View>::type* type; |
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}; |
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template <typename View> struct channel_pointer_type_impl<View, false> { |
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typedef const typename channel_type<View>::type* type; |
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}; |
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template <typename View> struct channel_pointer_type |
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: public channel_pointer_type_impl<View, view_is_mutable<View>::value> {}; |
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} // namespace detail |
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/// \ingroup ImageViewConstructors |
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/// \brief Returns C pointer to the the channels of an interleaved homogeneous view. |
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template <typename HomogeneousView> |
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typename detail::channel_pointer_type<HomogeneousView>::type interleaved_view_get_raw_data(const HomogeneousView& view) { |
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BOOST_STATIC_ASSERT((!is_planar<HomogeneousView>::value && view_is_basic<HomogeneousView>::value)); |
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BOOST_STATIC_ASSERT((boost::is_pointer<typename HomogeneousView::x_iterator>::value)); |
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return &gil::at_c<0>(view(0,0)); |
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} |
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/// \ingroup ImageViewConstructors |
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/// \brief Returns C pointer to the the channels of a given color plane of a planar homogeneous view. |
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template <typename HomogeneousView> |
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typename detail::channel_pointer_type<HomogeneousView>::type planar_view_get_raw_data(const HomogeneousView& view, int plane_index) { |
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BOOST_STATIC_ASSERT((is_planar<HomogeneousView>::value && view_is_basic<HomogeneousView>::value)); |
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return dynamic_at_c(view.row_begin(0),plane_index); |
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} |
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/// \defgroup ImageViewTransformationsColorConvert color_converted_view |
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/// \ingroup ImageViewTransformations |
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/// \brief Color converted view of another view |
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/// \ingroup ImageViewTransformationsColorConvert PixelDereferenceAdaptorModel |
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/// \brief Function object that given a source pixel, returns it converted to a given color space and channel depth. Models: PixelDereferenceAdaptorConcept |
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/// |
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/// Useful in constructing a color converted view over a given image view |
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template <typename SrcConstRefP, typename DstP, typename CC=default_color_converter > // const_reference to the source pixel and destination pixel value |
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class color_convert_deref_fn : public deref_base<color_convert_deref_fn<SrcConstRefP,DstP,CC>, DstP, DstP, const DstP&, SrcConstRefP, DstP, false> { |
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private: |
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CC _cc; // color-converter |
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public: |
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color_convert_deref_fn() {} |
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color_convert_deref_fn(CC cc_in) : _cc(cc_in) {} |
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DstP operator()(SrcConstRefP srcP) const { |
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DstP dstP; |
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_cc(srcP,dstP); |
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return dstP; |
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} |
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}; |
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namespace detail { |
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// Add color converter upon dereferencing |
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template <typename SrcView, typename CC, typename DstP, typename SrcP> |
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struct _color_converted_view_type { |
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private: |
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typedef color_convert_deref_fn<typename SrcView::const_t::reference,DstP,CC> deref_t; |
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typedef typename SrcView::template add_deref<deref_t> add_ref_t; |
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public: |
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typedef typename add_ref_t::type type; |
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static type make(const SrcView& sv,CC cc) {return add_ref_t::make(sv,deref_t(cc));} |
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}; |
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// If the Src view has the same pixel type as the target, there is no need for color conversion |
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template <typename SrcView, typename CC, typename DstP> |
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struct _color_converted_view_type<SrcView,CC,DstP,DstP> { |
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typedef SrcView type; |
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static type make(const SrcView& sv,CC) {return sv;} |
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}; |
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} // namespace detail |
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/// \brief Returns the type of a view that does color conversion upon dereferencing its pixels |
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/// \ingroup ImageViewTransformationsColorConvert |
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template <typename SrcView, typename DstP, typename CC=default_color_converter> |
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struct color_converted_view_type : public detail::_color_converted_view_type<SrcView, |
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CC, |
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DstP, |
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typename SrcView::value_type> { |
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GIL_CLASS_REQUIRE(DstP, boost::gil, MutablePixelConcept)//why does it have to be mutable??? |
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}; |
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/// \ingroup ImageViewTransformationsColorConvert |
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/// \brief view of a different color space with a user defined color-converter |
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template <typename DstP, typename View, typename CC> |
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inline typename color_converted_view_type<View,DstP,CC>::type color_converted_view(const View& src,CC cc) { |
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return color_converted_view_type<View,DstP,CC>::make(src,cc); |
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} |
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/// \ingroup ImageViewTransformationsColorConvert |
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/// \brief overload of generic color_converted_view with the default color-converter |
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template <typename DstP, typename View> |
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inline typename color_converted_view_type<View,DstP>::type |
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color_converted_view(const View& src) { |
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return color_converted_view<DstP>(src,default_color_converter()); |
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} |
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/// \defgroup ImageViewTransformationsFlipUD flipped_up_down_view |
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/// \ingroup ImageViewTransformations |
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/// \brief view of a view flipped up-to-down |
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/// \ingroup ImageViewTransformationsFlipUD |
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template <typename View> |
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inline typename dynamic_y_step_type<View>::type flipped_up_down_view(const View& src) { |
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typedef typename dynamic_y_step_type<View>::type RView; |
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return RView(src.dimensions(),typename RView::xy_locator(src.xy_at(0,src.height()-1),-1)); |
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} |
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/// \defgroup ImageViewTransformationsFlipLR flipped_left_right_view |
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/// \ingroup ImageViewTransformations |
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/// \brief view of a view flipped left-to-right |
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/// \ingroup ImageViewTransformationsFlipLR |
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template <typename View> |
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inline typename dynamic_x_step_type<View>::type flipped_left_right_view(const View& src) { |
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typedef typename dynamic_x_step_type<View>::type RView; |
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return RView(src.dimensions(),typename RView::xy_locator(src.xy_at(src.width()-1,0),-1,1)); |
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} |
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/// \defgroup ImageViewTransformationsTransposed transposed_view |
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/// \ingroup ImageViewTransformations |
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/// \brief view of a view transposed |
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/// \ingroup ImageViewTransformationsTransposed |
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template <typename View> |
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inline typename dynamic_xy_step_transposed_type<View>::type transposed_view(const View& src) { |
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typedef typename dynamic_xy_step_transposed_type<View>::type RView; |
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return RView(src.height(),src.width(),typename RView::xy_locator(src.xy_at(0,0),1,1,true)); |
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} |
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/// \defgroup ImageViewTransformations90CW rotated90cw_view |
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/// \ingroup ImageViewTransformations |
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/// \brief view of a view rotated 90 degrees clockwise |
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/// \ingroup ImageViewTransformations90CW |
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template <typename View> |
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inline typename dynamic_xy_step_transposed_type<View>::type rotated90cw_view(const View& src) { |
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typedef typename dynamic_xy_step_transposed_type<View>::type RView; |
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return RView(src.height(),src.width(),typename RView::xy_locator(src.xy_at(0,src.height()-1),-1,1,true)); |
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} |
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/// \defgroup ImageViewTransformations90CCW rotated90ccw_view |
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/// \ingroup ImageViewTransformations |
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/// \brief view of a view rotated 90 degrees counter-clockwise |
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/// \ingroup ImageViewTransformations90CCW |
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template <typename View> |
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inline typename dynamic_xy_step_transposed_type<View>::type rotated90ccw_view(const View& src) { |
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typedef typename dynamic_xy_step_transposed_type<View>::type RView; |
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return RView(src.height(),src.width(),typename RView::xy_locator(src.xy_at(src.width()-1,0),1,-1,true)); |
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} |
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/// \defgroup ImageViewTransformations180 rotated180_view |
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/// \ingroup ImageViewTransformations |
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/// \brief view of a view rotated 180 degrees |
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/// \ingroup ImageViewTransformations180 |
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template <typename View> |
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inline typename dynamic_xy_step_type<View>::type rotated180_view(const View& src) { |
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typedef typename dynamic_xy_step_type<View>::type RView; |
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return RView(src.dimensions(),typename RView::xy_locator(src.xy_at(src.width()-1,src.height()-1),-1,-1)); |
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} |
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/// \defgroup ImageViewTransformationsSubimage subimage_view |
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/// \ingroup ImageViewTransformations |
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/// \brief view of an axis-aligned rectangular area within an image_view |
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/// \ingroup ImageViewTransformationsSubimage |
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template <typename View> |
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inline View subimage_view(const View& src, const typename View::point_t& topleft, const typename View::point_t& dimensions) { |
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return View(dimensions,src.xy_at(topleft)); |
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} |
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/// \ingroup ImageViewTransformationsSubimage |
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template <typename View> |
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inline View subimage_view(const View& src, int xMin, int yMin, int width, int height) { |
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return View(width,height,src.xy_at(xMin,yMin)); |
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} |
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/// \defgroup ImageViewTransformationsSubsampled subsampled_view |
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/// \ingroup ImageViewTransformations |
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/// \brief view of a subsampled version of an image_view, stepping over a number of channels in X and number of rows in Y |
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/// \ingroup ImageViewTransformationsSubsampled |
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template <typename View> |
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inline typename dynamic_xy_step_type<View>::type subsampled_view(const View& src, typename View::coord_t xStep, typename View::coord_t yStep) { |
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assert(xStep>0 && yStep>0); |
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typedef typename dynamic_xy_step_type<View>::type RView; |
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return RView((src.width()+(xStep-1))/xStep,(src.height()+(yStep-1))/yStep, |
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typename RView::xy_locator(src.xy_at(0,0),xStep,yStep)); |
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} |
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/// \ingroup ImageViewTransformationsSubsampled |
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template <typename View> |
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inline typename dynamic_xy_step_type<View>::type subsampled_view(const View& src, const typename View::point_t& step) { |
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return subsampled_view(src,step.x,step.y); |
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} |
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/// \defgroup ImageViewTransformationsNthChannel nth_channel_view |
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/// \ingroup ImageViewTransformations |
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/// \brief single-channel (grayscale) view of the N-th channel of a given image_view |
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namespace detail { |
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template <typename View, bool AreChannelsTogether> struct __nth_channel_view_basic; |
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// nth_channel_view when the channels are not adjacent in memory. This can happen for multi-channel interleaved images |
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// or images with a step |
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template <typename View> |
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struct __nth_channel_view_basic<View,false> { |
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typedef typename view_type<typename channel_type<View>::type, gray_layout_t, false, true, view_is_mutable<View>::value>::type type; |
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static type make(const View& src, int n) { |
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typedef typename type::xy_locator locator_t; |
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typedef typename type::x_iterator x_iterator_t; |
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typedef typename iterator_adaptor_get_base<x_iterator_t>::type x_iterator_base_t; |
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x_iterator_t sit(x_iterator_base_t(&(src(0,0)[n])),src.pixels().pixel_size()); |
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return type(src.dimensions(),locator_t(sit, src.pixels().row_size())); |
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} |
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}; |
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// nth_channel_view when the channels are together in memory (true for simple grayscale or planar images) |
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template <typename View> |
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struct __nth_channel_view_basic<View,true> { |
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typedef typename view_type<typename channel_type<View>::type, gray_layout_t, false, false, view_is_mutable<View>::value>::type type; |
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static type make(const View& src, int n) { |
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typedef typename type::x_iterator x_iterator_t; |
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return interleaved_view(src.width(),src.height(),(x_iterator_t)&(src(0,0)[n]), src.pixels().row_size()); |
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} |
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}; |
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template <typename View, bool IsBasic> struct __nth_channel_view; |
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// For basic (memory-based) views dispatch to __nth_channel_view_basic |
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template <typename View> struct __nth_channel_view<View,true> { |
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private: |
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typedef typename View::x_iterator src_x_iterator; |
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// Determines whether the channels of a given pixel iterator are adjacent in memory. |
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// Planar and grayscale iterators have channels adjacent in memory, whereas multi-channel interleaved and iterators with non-fundamental step do not. |
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BOOST_STATIC_CONSTANT(bool, adjacent= |
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!iterator_is_step<src_x_iterator>::value && |
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(is_planar<src_x_iterator>::value || |
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num_channels<View>::value==1)); |
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public: |
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typedef typename __nth_channel_view_basic<View,adjacent>::type type; |
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static type make(const View& src, int n) { |
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return __nth_channel_view_basic<View,adjacent>::make(src,n); |
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} |
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}; |
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/// \brief Function object that returns a grayscale reference of the N-th channel of a given reference. Models: PixelDereferenceAdaptorConcept. |
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/// \ingroup PixelDereferenceAdaptorModel |
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/// |
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/// If the input is a pixel value or constant reference, the function object is immutable. Otherwise it is mutable (and returns non-const reference to the n-th channel) |
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template <typename SrcP> // SrcP is a reference to PixelConcept (could be pixel value or const/non-const reference) |
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// Examples: pixel<T,L>, pixel<T,L>&, const pixel<T,L>&, planar_pixel_reference<T&,L>, planar_pixel_reference<const T&,L> |
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struct nth_channel_deref_fn { |
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BOOST_STATIC_CONSTANT(bool, is_mutable=pixel_is_reference<SrcP>::value && pixel_reference_is_mutable<SrcP>::value); |
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private: |
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typedef typename remove_reference<SrcP>::type src_pixel_t; |
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typedef typename channel_type<src_pixel_t>::type channel_t; |
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typedef typename src_pixel_t::const_reference const_ref_t; |
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typedef typename pixel_reference_type<channel_t,gray_layout_t,false,is_mutable>::type ref_t; |
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public: |
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typedef nth_channel_deref_fn<const_ref_t> const_t; |
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typedef typename pixel_value_type<channel_t,gray_layout_t>::type value_type; |
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typedef typename pixel_reference_type<channel_t,gray_layout_t,false,false>::type const_reference; |
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typedef SrcP argument_type; |
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typedef typename mpl::if_c<is_mutable, ref_t, value_type>::type reference; |
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typedef reference result_type; |
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nth_channel_deref_fn(int n=0) : _n(n) {} |
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template <typename P> nth_channel_deref_fn(const nth_channel_deref_fn<P>& d) : _n(d._n) {} |
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int _n; // the channel to use |
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result_type operator()(argument_type srcP) const { |
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return result_type(srcP[_n]); |
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} |
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}; |
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template <typename View> struct __nth_channel_view<View,false> { |
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private: |
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typedef nth_channel_deref_fn<typename View::reference> deref_t; |
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typedef typename View::template add_deref<deref_t> AD; |
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public: |
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typedef typename AD::type type; |
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static type make(const View& src, int n) { |
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return AD::make(src, deref_t(n)); |
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} |
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}; |
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} // namespace detail |
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/// \brief Given a source image view type View, returns the type of an image view over a single channel of View |
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/// \ingroup ImageViewTransformationsNthChannel |
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/// |
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/// If the channels in the source view are adjacent in memory (such as planar non-step view or single-channel view) then the |
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/// return view is a single-channel non-step view. |
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/// If the channels are non-adjacent (interleaved and/or step view) then the return view is a single-channel step view. |
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template <typename View> |
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struct nth_channel_view_type { |
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private: |
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GIL_CLASS_REQUIRE(View, boost::gil, ImageViewConcept) |
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typedef detail::__nth_channel_view<View,view_is_basic<View>::value> VB; |
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public: |
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typedef typename VB::type type; |
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static type make(const View& src, int n) { return VB::make(src,n); } |
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}; |
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/// \ingroup ImageViewTransformationsNthChannel |
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template <typename View> |
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typename nth_channel_view_type<View>::type nth_channel_view(const View& src, int n) { |
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return nth_channel_view_type<View>::make(src,n); |
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} |
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/// \defgroup ImageViewTransformationsKthChannel kth_channel_view |
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/// \ingroup ImageViewTransformations |
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/// \brief single-channel (grayscale) view of the K-th channel of a given image_view. The channel index is a template parameter |
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namespace detail { |
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template <int K, typename View, bool AreChannelsTogether> struct __kth_channel_view_basic; |
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// kth_channel_view when the channels are not adjacent in memory. This can happen for multi-channel interleaved images |
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// or images with a step |
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template <int K, typename View> |
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struct __kth_channel_view_basic<K,View,false> { |
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private: |
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typedef typename kth_element_type<typename View::value_type,K>::type channel_t; |
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public: |
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typedef typename view_type<channel_t, gray_layout_t, false, true, view_is_mutable<View>::value>::type type; |
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static type make(const View& src) { |
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typedef typename type::xy_locator locator_t; |
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typedef typename type::x_iterator x_iterator_t; |
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typedef typename iterator_adaptor_get_base<x_iterator_t>::type x_iterator_base_t; |
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x_iterator_t sit(x_iterator_base_t(&gil::at_c<K>(src(0,0))),src.pixels().pixel_size()); |
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return type(src.dimensions(),locator_t(sit, src.pixels().row_size())); |
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} |
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}; |
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// kth_channel_view when the channels are together in memory (true for simple grayscale or planar images) |
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template <int K, typename View> |
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struct __kth_channel_view_basic<K,View,true> { |
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private: |
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typedef typename kth_element_type<typename View::value_type, K>::type channel_t; |
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public: |
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typedef typename view_type<channel_t, gray_layout_t, false, false, view_is_mutable<View>::value>::type type; |
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static type make(const View& src) { |
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typedef typename type::x_iterator x_iterator_t; |
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return interleaved_view(src.width(),src.height(),(x_iterator_t)&gil::at_c<K>(src(0,0)), src.pixels().row_size()); |
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} |
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}; |
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template <int K, typename View, bool IsBasic> struct __kth_channel_view; |
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// For basic (memory-based) views dispatch to __kth_channel_view_basic |
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template <int K, typename View> struct __kth_channel_view<K,View,true> { |
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private: |
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typedef typename View::x_iterator src_x_iterator; |
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|
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// Determines whether the channels of a given pixel iterator are adjacent in memory. |
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// Planar and grayscale iterators have channels adjacent in memory, whereas multi-channel interleaved and iterators with non-fundamental step do not. |
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BOOST_STATIC_CONSTANT(bool, adjacent= |
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!iterator_is_step<src_x_iterator>::value && |
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(is_planar<src_x_iterator>::value || |
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num_channels<View>::value==1)); |
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public: |
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typedef typename __kth_channel_view_basic<K,View,adjacent>::type type; |
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|
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static type make(const View& src) { |
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return __kth_channel_view_basic<K,View,adjacent>::make(src); |
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} |
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}; |
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|
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/// \brief Function object that returns a grayscale reference of the K-th channel (specified as a template parameter) of a given reference. Models: PixelDereferenceAdaptorConcept. |
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/// \ingroup PixelDereferenceAdaptorModel |
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/// |
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/// If the input is a pixel value or constant reference, the function object is immutable. Otherwise it is mutable (and returns non-const reference to the k-th channel) |
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template <int K, typename SrcP> // SrcP is a reference to PixelConcept (could be pixel value or const/non-const reference) |
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// Examples: pixel<T,L>, pixel<T,L>&, const pixel<T,L>&, planar_pixel_reference<T&,L>, planar_pixel_reference<const T&,L> |
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struct kth_channel_deref_fn { |
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BOOST_STATIC_CONSTANT(bool, is_mutable=pixel_is_reference<SrcP>::value && pixel_reference_is_mutable<SrcP>::value); |
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private: |
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typedef typename remove_reference<SrcP>::type src_pixel_t; |
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typedef typename kth_element_type<src_pixel_t, K>::type channel_t; |
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typedef typename src_pixel_t::const_reference const_ref_t; |
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typedef typename pixel_reference_type<channel_t,gray_layout_t,false,is_mutable>::type ref_t; |
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public: |
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typedef kth_channel_deref_fn<K,const_ref_t> const_t; |
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typedef typename pixel_value_type<channel_t,gray_layout_t>::type value_type; |
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typedef typename pixel_reference_type<channel_t,gray_layout_t,false,false>::type const_reference; |
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typedef SrcP argument_type; |
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typedef typename mpl::if_c<is_mutable, ref_t, value_type>::type reference; |
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typedef reference result_type; |
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|
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kth_channel_deref_fn() {} |
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template <typename P> kth_channel_deref_fn(const kth_channel_deref_fn<K,P>&) {} |
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|
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result_type operator()(argument_type srcP) const { |
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return result_type(gil::at_c<K>(srcP)); |
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} |
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}; |
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|
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template <int K, typename View> struct __kth_channel_view<K,View,false> { |
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private: |
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typedef kth_channel_deref_fn<K,typename View::reference> deref_t; |
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typedef typename View::template add_deref<deref_t> AD; |
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public: |
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typedef typename AD::type type; |
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static type make(const View& src) { |
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return AD::make(src, deref_t()); |
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} |
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}; |
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} // namespace detail |
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|
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/// \brief Given a source image view type View, returns the type of an image view over a given channel of View. |
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/// \ingroup ImageViewTransformationsKthChannel |
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/// |
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/// If the channels in the source view are adjacent in memory (such as planar non-step view or single-channel view) then the |
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/// return view is a single-channel non-step view. |
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/// If the channels are non-adjacent (interleaved and/or step view) then the return view is a single-channel step view. |
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template <int K, typename View> |
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struct kth_channel_view_type { |
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private: |
|
GIL_CLASS_REQUIRE(View, boost::gil, ImageViewConcept) |
|
typedef detail::__kth_channel_view<K,View,view_is_basic<View>::value> VB; |
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public: |
|
typedef typename VB::type type; |
|
static type make(const View& src) { return VB::make(src); } |
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}; |
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|
|
/// \ingroup ImageViewTransformationsKthChannel |
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template <int K, typename View> |
|
typename kth_channel_view_type<K,View>::type kth_channel_view(const View& src) { |
|
return kth_channel_view_type<K,View>::make(src); |
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} |
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|
|
} } // namespace boost::gil |
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|
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#endif
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