bit_aligned_pixel_reference.hpp 14 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302
  1. /*
  2. Copyright 2005-2007 Adobe Systems Incorporated
  3. Use, modification and distribution are subject to the Boost Software License,
  4. Version 1.0. (See accompanying file LICENSE_1_0.txt or copy at
  5. http://www.boost.org/LICENSE_1_0.txt).
  6. See http://stlab.adobe.com/gil for most recent version including documentation.
  7. */
  8. /*************************************************************************************************/
  9. #ifndef GIL_BIT_ALIGNED_PIXEL_REFERENCE_HPP
  10. #define GIL_BIT_ALIGNED_PIXEL_REFERENCE_HPP
  11. ////////////////////////////////////////////////////////////////////////////////////////
  12. /// \file
  13. /// \brief A model of a heterogeneous pixel that is not byte aligned. Examples are bitmap (1-bit pixels) or 6-bit RGB (222)
  14. /// \author Lubomir Bourdev and Hailin Jin \n
  15. /// Adobe Systems Incorporated
  16. /// \date 2005-2007 \n Last updated on September 28, 2006
  17. ///
  18. ////////////////////////////////////////////////////////////////////////////////////////
  19. #include <functional>
  20. #include <boost/mpl/accumulate.hpp>
  21. #include <boost/mpl/at.hpp>
  22. #include <boost/mpl/bool.hpp>
  23. #include <boost/mpl/if.hpp>
  24. #include <boost/mpl/plus.hpp>
  25. #include <boost/mpl/push_back.hpp>
  26. #include <boost/mpl/vector.hpp>
  27. #include "gil_config.hpp"
  28. #include "pixel.hpp"
  29. #include "channel.hpp"
  30. namespace boost { namespace gil {
  31. /////////////////////////////
  32. // bit_range
  33. //
  34. // Represents a range of bits that can span multiple consecutive bytes. The range has a size fixed at compile time, but the offset is specified at run time.
  35. /////////////////////////////
  36. template <int RangeSize, bool Mutable>
  37. class bit_range {
  38. public:
  39. typedef typename mpl::if_c<Mutable,unsigned char,const unsigned char>::type byte_t;
  40. typedef std::ptrdiff_t difference_type;
  41. template <int RS, bool M> friend class bit_range;
  42. private:
  43. byte_t* _current_byte; // the starting byte of the bit range
  44. int _bit_offset; // offset from the beginning of the current byte. 0<=_bit_offset<=7
  45. public:
  46. bit_range() : _current_byte(NULL), _bit_offset(0) {}
  47. bit_range(byte_t* current_byte, int bit_offset) : _current_byte(current_byte), _bit_offset(bit_offset) { assert(bit_offset>=0 && bit_offset<8); }
  48. bit_range(const bit_range& br) : _current_byte(br._current_byte), _bit_offset(br._bit_offset) {}
  49. template <bool M> bit_range(const bit_range<RangeSize,M>& br) : _current_byte(br._current_byte), _bit_offset(br._bit_offset) {}
  50. bit_range& operator=(const bit_range& br) { _current_byte = br._current_byte; _bit_offset=br._bit_offset; return *this; }
  51. bool operator==(const bit_range& br) const { return _current_byte==br._current_byte && _bit_offset==br._bit_offset; }
  52. bit_range& operator++() {
  53. _current_byte += (_bit_offset+RangeSize) / 8;
  54. _bit_offset = (_bit_offset+RangeSize) % 8;
  55. return *this;
  56. }
  57. bit_range& operator--() { bit_advance(-RangeSize); return *this; }
  58. void bit_advance(difference_type num_bits) {
  59. int new_offset = int(_bit_offset+num_bits);
  60. _current_byte += new_offset / 8;
  61. _bit_offset = new_offset % 8;
  62. if (_bit_offset<0) {
  63. _bit_offset+=8;
  64. --_current_byte;
  65. }
  66. }
  67. difference_type bit_distance_to(const bit_range& b) const {
  68. return (b.current_byte() - current_byte())*8 + b.bit_offset()-bit_offset();
  69. }
  70. byte_t* current_byte() const { return _current_byte; }
  71. int bit_offset() const { return _bit_offset; }
  72. };
  73. /// \defgroup ColorBaseModelNonAlignedPixel bit_aligned_pixel_reference
  74. /// \ingroup ColorBaseModel
  75. /// \brief A heterogeneous color base representing pixel that may not be byte aligned, i.e. it may correspond to a bit range that does not start/end at a byte boundary. Models ColorBaseConcept.
  76. /**
  77. \defgroup PixelModelNonAlignedPixel bit_aligned_pixel_reference
  78. \ingroup PixelModel
  79. \brief A heterogeneous pixel reference used to represent non-byte-aligned pixels. Models PixelConcept
  80. Example:
  81. \code
  82. unsigned char data=0;
  83. // A mutable reference to a 6-bit BGR pixel in "123" format (1 bit for red, 2 bits for green, 3 bits for blue)
  84. typedef const bit_aligned_pixel_reference<unsigned char, mpl::vector3_c<int,1,2,3>, rgb_layout_t, true> rgb123_ref_t;
  85. // create the pixel reference at bit offset 2
  86. // (i.e. red = [2], green = [3,4], blue = [5,6,7] bits)
  87. rgb123_ref_t ref(&data, 2);
  88. get_color(ref, red_t()) = 1;
  89. assert(data == 0x04);
  90. get_color(ref, green_t()) = 3;
  91. assert(data == 0x1C);
  92. get_color(ref, blue_t()) = 7;
  93. assert(data == 0xFC);
  94. \endcode
  95. */
  96. /// \ingroup ColorBaseModelNonAlignedPixel PixelModelNonAlignedPixel PixelBasedModel
  97. /// \brief Heterogeneous pixel reference corresponding to non-byte-aligned bit range. Models ColorBaseConcept, PixelConcept, PixelBasedConcept
  98. template <typename BitField,
  99. typename ChannelBitSizes, // MPL integral vector defining the number of bits for each channel. For example, for 565RGB, vector_c<int,5,6,5>
  100. typename Layout,
  101. bool IsMutable>
  102. struct bit_aligned_pixel_reference {
  103. BOOST_STATIC_CONSTANT(int, bit_size = (mpl::accumulate<ChannelBitSizes, mpl::int_<0>, mpl::plus<mpl::_1, mpl::_2> >::type::value));
  104. typedef boost::gil::bit_range<bit_size,IsMutable> bit_range_t;
  105. typedef BitField bitfield_t;
  106. typedef typename mpl::if_c<IsMutable,unsigned char*,const unsigned char*>::type data_ptr_t;
  107. typedef Layout layout_t;
  108. typedef typename packed_pixel_type<bitfield_t,ChannelBitSizes,Layout>::type value_type;
  109. typedef const bit_aligned_pixel_reference reference;
  110. typedef const bit_aligned_pixel_reference<BitField,ChannelBitSizes,Layout,false> const_reference;
  111. BOOST_STATIC_CONSTANT(bool, is_mutable = IsMutable);
  112. bit_aligned_pixel_reference(){}
  113. bit_aligned_pixel_reference(data_ptr_t data_ptr, int bit_offset) : _bit_range(data_ptr, bit_offset) {}
  114. explicit bit_aligned_pixel_reference(const bit_range_t& bit_range) : _bit_range(bit_range) {}
  115. template <bool IsMutable2> bit_aligned_pixel_reference(const bit_aligned_pixel_reference<BitField,ChannelBitSizes,Layout,IsMutable2>& p) : _bit_range(p._bit_range) {}
  116. // Grayscale references can be constructed from the channel reference
  117. explicit bit_aligned_pixel_reference(const typename kth_element_type<bit_aligned_pixel_reference,0>::type channel0) : _bit_range(static_cast<data_ptr_t>(&channel0), channel0.first_bit()) {
  118. BOOST_STATIC_ASSERT((num_channels<bit_aligned_pixel_reference>::value==1));
  119. }
  120. // Construct from another compatible pixel type
  121. bit_aligned_pixel_reference(const bit_aligned_pixel_reference& p) : _bit_range(p._bit_range) {}
  122. template <typename BF, typename CR> bit_aligned_pixel_reference(packed_pixel<BF,CR,Layout>& p) : _bit_range(static_cast<data_ptr_t>(&gil::at_c<0>(p)), gil::at_c<0>(p).first_bit()) {
  123. check_compatible<packed_pixel<BF,CR,Layout> >();
  124. }
  125. const bit_aligned_pixel_reference& operator=(const bit_aligned_pixel_reference& p) const { static_copy(p,*this); return *this; }
  126. template <typename P> const bit_aligned_pixel_reference& operator=(const P& p) const { assign(p, mpl::bool_<is_pixel<P>::value>()); return *this; }
  127. template <typename P> bool operator==(const P& p) const { return equal(p, mpl::bool_<is_pixel<P>::value>()); }
  128. template <typename P> bool operator!=(const P& p) const { return !(*this==p); }
  129. const bit_aligned_pixel_reference* operator->() const { return this; }
  130. const bit_range_t& bit_range() const { return _bit_range; }
  131. private:
  132. mutable bit_range_t _bit_range;
  133. template <typename B, typename C, typename L, bool M> friend struct bit_aligned_pixel_reference;
  134. template <typename Pixel> static void check_compatible() { gil_function_requires<PixelsCompatibleConcept<Pixel,bit_aligned_pixel_reference> >(); }
  135. template <typename Pixel> void assign(const Pixel& p, mpl::true_) const { check_compatible<Pixel>(); static_copy(p,*this); }
  136. template <typename Pixel> bool equal(const Pixel& p, mpl::true_) const { check_compatible<Pixel>(); return static_equal(*this,p); }
  137. private:
  138. static void check_gray() { BOOST_STATIC_ASSERT((is_same<typename Layout::color_space_t, gray_t>::value)); }
  139. template <typename Channel> void assign(const Channel& chan, mpl::false_) const { check_gray(); gil::at_c<0>(*this)=chan; }
  140. template <typename Channel> bool equal (const Channel& chan, mpl::false_) const { check_gray(); return gil::at_c<0>(*this)==chan; }
  141. };
  142. /////////////////////////////
  143. // ColorBasedConcept
  144. /////////////////////////////
  145. template <typename BitField, typename ChannelBitSizes, typename L, bool IsMutable, int K>
  146. struct kth_element_type<bit_aligned_pixel_reference<BitField,ChannelBitSizes,L,IsMutable>, K> {
  147. public:
  148. typedef const packed_dynamic_channel_reference<BitField, mpl::at_c<ChannelBitSizes,K>::type::value, IsMutable> type;
  149. };
  150. template <typename B, typename C, typename L, bool M, int K>
  151. struct kth_element_reference_type<bit_aligned_pixel_reference<B,C,L,M>, K>
  152. : public kth_element_type<bit_aligned_pixel_reference<B,C,L,M>, K> {};
  153. template <typename B, typename C, typename L, bool M, int K>
  154. struct kth_element_const_reference_type<bit_aligned_pixel_reference<B,C,L,M>, K>
  155. : public kth_element_type<bit_aligned_pixel_reference<B,C,L,M>, K> {};
  156. namespace detail {
  157. // returns sum of IntegralVector[0] ... IntegralVector[K-1]
  158. template <typename IntegralVector, int K>
  159. struct sum_k : public mpl::plus<sum_k<IntegralVector,K-1>, typename mpl::at_c<IntegralVector,K-1>::type > {};
  160. template <typename IntegralVector> struct sum_k<IntegralVector,0> : public mpl::int_<0> {};
  161. }
  162. // at_c required by MutableColorBaseConcept
  163. template <int K, typename BitField, typename ChannelBitSizes, typename L, bool Mutable> inline
  164. typename kth_element_reference_type<bit_aligned_pixel_reference<BitField,ChannelBitSizes,L,Mutable>,K>::type
  165. at_c(const bit_aligned_pixel_reference<BitField,ChannelBitSizes,L,Mutable>& p) {
  166. typedef bit_aligned_pixel_reference<BitField,ChannelBitSizes,L,Mutable> pixel_t;
  167. typedef typename kth_element_reference_type<pixel_t,K>::type channel_t;
  168. typedef typename pixel_t::bit_range_t bit_range_t;
  169. bit_range_t bit_range(p.bit_range());
  170. bit_range.bit_advance(detail::sum_k<ChannelBitSizes,K>::value);
  171. return channel_t(bit_range.current_byte(), bit_range.bit_offset());
  172. }
  173. /////////////////////////////
  174. // PixelConcept
  175. /////////////////////////////
  176. /// Metafunction predicate that flags bit_aligned_pixel_reference as a model of PixelConcept. Required by PixelConcept
  177. template <typename B, typename C, typename L, bool M>
  178. struct is_pixel<bit_aligned_pixel_reference<B,C,L,M> > : public mpl::true_{};
  179. /////////////////////////////
  180. // PixelBasedConcept
  181. /////////////////////////////
  182. template <typename B, typename C, typename L, bool M>
  183. struct color_space_type<bit_aligned_pixel_reference<B,C,L,M> > {
  184. typedef typename L::color_space_t type;
  185. };
  186. template <typename B, typename C, typename L, bool M>
  187. struct channel_mapping_type<bit_aligned_pixel_reference<B,C,L,M> > {
  188. typedef typename L::channel_mapping_t type;
  189. };
  190. template <typename B, typename C, typename L, bool M>
  191. struct is_planar<bit_aligned_pixel_reference<B,C,L,M> > : mpl::false_ {};
  192. /////////////////////////////
  193. // pixel_reference_type
  194. /////////////////////////////
  195. namespace detail {
  196. // returns a vector containing K copies of the type T
  197. template <unsigned K, typename T> struct k_copies;
  198. template <typename T> struct k_copies<0,T> {
  199. typedef mpl::vector0<> type;
  200. };
  201. template <unsigned K, typename T> struct k_copies : public mpl::push_back<typename k_copies<K-1,T>::type, T> {};
  202. }
  203. // Constructs a homogeneous bit_aligned_pixel_reference given a channel reference
  204. template <typename BitField, int NumBits, typename Layout>
  205. struct pixel_reference_type<const packed_dynamic_channel_reference<BitField,NumBits,false>, Layout, false, false> {
  206. private:
  207. typedef typename mpl::size<typename Layout::color_space_t>::type size_t;
  208. typedef typename detail::k_copies<size_t::value,mpl::integral_c<unsigned,NumBits> >::type channel_bit_sizes_t;
  209. public:
  210. typedef bit_aligned_pixel_reference<BitField, channel_bit_sizes_t, Layout, false> type;
  211. };
  212. // Same but for the mutable case. We cannot combine the mutable and read-only cases because this triggers ambiguity
  213. template <typename BitField, int NumBits, typename Layout>
  214. struct pixel_reference_type<const packed_dynamic_channel_reference<BitField,NumBits,true>, Layout, false, true> {
  215. private:
  216. typedef typename mpl::size<typename Layout::color_space_t>::type size_t;
  217. typedef typename detail::k_copies<size_t::value,mpl::integral_c<unsigned,NumBits> >::type channel_bit_sizes_t;
  218. public:
  219. typedef bit_aligned_pixel_reference<BitField, channel_bit_sizes_t, Layout, true> type;
  220. };
  221. } } // namespace boost::gil
  222. namespace std {
  223. // We are forced to define swap inside std namespace because on some platforms (Visual Studio 8) STL calls swap qualified.
  224. // swap with 'left bias':
  225. // - swap between proxy and anything
  226. // - swap between value type and proxy
  227. // - swap between proxy and proxy
  228. // Having three overloads allows us to swap between different (but compatible) models of PixelConcept
  229. template <typename B, typename C, typename L, typename R> inline
  230. void swap(const boost::gil::bit_aligned_pixel_reference<B,C,L,true> x, R& y) {
  231. boost::gil::swap_proxy<typename boost::gil::bit_aligned_pixel_reference<B,C,L,true>::value_type>(x,y);
  232. }
  233. template <typename B, typename C, typename L> inline
  234. void swap(typename boost::gil::bit_aligned_pixel_reference<B,C,L,true>::value_type& x, const boost::gil::bit_aligned_pixel_reference<B,C,L,true> y) {
  235. boost::gil::swap_proxy<typename boost::gil::bit_aligned_pixel_reference<B,C,L,true>::value_type>(x,y);
  236. }
  237. template <typename B, typename C, typename L> inline
  238. void swap(const boost::gil::bit_aligned_pixel_reference<B,C,L,true> x, const boost::gil::bit_aligned_pixel_reference<B,C,L,true> y) {
  239. boost::gil::swap_proxy<typename boost::gil::bit_aligned_pixel_reference<B,C,L,true>::value_type>(x,y);
  240. }
  241. } // namespace std
  242. #endif