PNGWriter.cpp 8.8 KB

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  1. /*
  2. * Copyright (c) 2021, Pierre Hoffmeister
  3. * Copyright (c) 2021, Andreas Kling <kling@serenityos.org>
  4. * Copyright (c) 2021, Aziz Berkay Yesilyurt <abyesilyurt@gmail.com>
  5. *
  6. * SPDX-License-Identifier: BSD-2-Clause
  7. */
  8. #include <AK/Concepts.h>
  9. #include <AK/FixedArray.h>
  10. #include <AK/SIMDExtras.h>
  11. #include <AK/String.h>
  12. #include <LibCompress/Zlib.h>
  13. #include <LibCrypto/Checksum/CRC32.h>
  14. #include <LibGfx/Bitmap.h>
  15. #include <LibGfx/ImageFormats/PNGWriter.h>
  16. #pragma GCC diagnostic ignored "-Wpsabi"
  17. namespace Gfx {
  18. class PNGChunk {
  19. using data_length_type = u32;
  20. public:
  21. explicit PNGChunk(String);
  22. auto const& data() const { return m_data; }
  23. String const& type() const { return m_type; }
  24. ErrorOr<void> reserve(size_t bytes) { return m_data.try_ensure_capacity(bytes); }
  25. template<typename T>
  26. ErrorOr<void> add_as_big_endian(T);
  27. ErrorOr<void> add_u8(u8);
  28. ErrorOr<void> compress_and_add(ReadonlyBytes);
  29. ErrorOr<void> add(ReadonlyBytes);
  30. ErrorOr<void> store_type();
  31. void store_data_length();
  32. u32 crc();
  33. private:
  34. ByteBuffer m_data;
  35. String m_type;
  36. };
  37. PNGChunk::PNGChunk(String type)
  38. : m_type(move(type))
  39. {
  40. VERIFY(m_type.bytes().size() == 4);
  41. // NOTE: These are MUST() because they should always be able to fit in m_data's inline capacity.
  42. MUST(add_as_big_endian<data_length_type>(0));
  43. MUST(store_type());
  44. }
  45. ErrorOr<void> PNGChunk::store_type()
  46. {
  47. TRY(add(type().bytes()));
  48. return {};
  49. }
  50. void PNGChunk::store_data_length()
  51. {
  52. auto data_length = BigEndian<u32>(m_data.size() - sizeof(data_length_type) - m_type.bytes().size());
  53. __builtin_memcpy(m_data.offset_pointer(0), &data_length, sizeof(u32));
  54. }
  55. u32 PNGChunk::crc()
  56. {
  57. u32 crc = Crypto::Checksum::CRC32({ m_data.offset_pointer(sizeof(data_length_type)), m_data.size() - sizeof(data_length_type) }).digest();
  58. return crc;
  59. }
  60. ErrorOr<void> PNGChunk::compress_and_add(ReadonlyBytes uncompressed_bytes)
  61. {
  62. return add(TRY(Compress::ZlibCompressor::compress_all(uncompressed_bytes, Compress::ZlibCompressionLevel::Best)));
  63. }
  64. ErrorOr<void> PNGChunk::add(ReadonlyBytes bytes)
  65. {
  66. TRY(m_data.try_append(bytes));
  67. return {};
  68. }
  69. template<typename T>
  70. ErrorOr<void> PNGChunk::add_as_big_endian(T data)
  71. {
  72. auto data_out = AK::convert_between_host_and_big_endian(data);
  73. TRY(m_data.try_append(&data_out, sizeof(T)));
  74. return {};
  75. }
  76. ErrorOr<void> PNGChunk::add_u8(u8 data)
  77. {
  78. TRY(m_data.try_append(data));
  79. return {};
  80. }
  81. ErrorOr<void> PNGWriter::add_chunk(PNGChunk& png_chunk)
  82. {
  83. png_chunk.store_data_length();
  84. u32 crc = png_chunk.crc();
  85. TRY(png_chunk.add_as_big_endian(crc));
  86. TRY(m_data.try_append(png_chunk.data().data(), png_chunk.data().size()));
  87. return {};
  88. }
  89. ErrorOr<void> PNGWriter::add_png_header()
  90. {
  91. TRY(m_data.try_append(PNG::header.data(), PNG::header.size()));
  92. return {};
  93. }
  94. ErrorOr<void> PNGWriter::add_IHDR_chunk(u32 width, u32 height, u8 bit_depth, PNG::ColorType color_type, u8 compression_method, u8 filter_method, u8 interlace_method)
  95. {
  96. PNGChunk png_chunk { "IHDR"_string };
  97. TRY(png_chunk.add_as_big_endian(width));
  98. TRY(png_chunk.add_as_big_endian(height));
  99. TRY(png_chunk.add_u8(bit_depth));
  100. TRY(png_chunk.add_u8(to_underlying(color_type)));
  101. TRY(png_chunk.add_u8(compression_method));
  102. TRY(png_chunk.add_u8(filter_method));
  103. TRY(png_chunk.add_u8(interlace_method));
  104. TRY(add_chunk(png_chunk));
  105. return {};
  106. }
  107. ErrorOr<void> PNGWriter::add_iCCP_chunk(ReadonlyBytes icc_data)
  108. {
  109. // https://www.w3.org/TR/png/#11iCCP
  110. PNGChunk chunk { "iCCP"_string };
  111. TRY(chunk.add("embedded profile"sv.bytes()));
  112. TRY(chunk.add_u8(0)); // \0-terminate profile name
  113. TRY(chunk.add_u8(0)); // compression method deflate
  114. TRY(chunk.compress_and_add(icc_data));
  115. TRY(add_chunk(chunk));
  116. return {};
  117. }
  118. ErrorOr<void> PNGWriter::add_IEND_chunk()
  119. {
  120. PNGChunk png_chunk { "IEND"_string };
  121. TRY(add_chunk(png_chunk));
  122. return {};
  123. }
  124. union [[gnu::packed]] Pixel {
  125. ARGB32 rgba { 0 };
  126. struct {
  127. u8 red;
  128. u8 green;
  129. u8 blue;
  130. u8 alpha;
  131. };
  132. AK::SIMD::u8x4 simd;
  133. ALWAYS_INLINE static AK::SIMD::u8x4 gfx_to_png(Pixel pixel)
  134. {
  135. swap(pixel.red, pixel.blue);
  136. return pixel.simd;
  137. }
  138. };
  139. static_assert(AssertSize<Pixel, 4>());
  140. ErrorOr<void> PNGWriter::add_IDAT_chunk(Gfx::Bitmap const& bitmap)
  141. {
  142. PNGChunk png_chunk { "IDAT"_string };
  143. TRY(png_chunk.reserve(bitmap.size_in_bytes()));
  144. ByteBuffer uncompressed_block_data;
  145. TRY(uncompressed_block_data.try_ensure_capacity(bitmap.size_in_bytes() + bitmap.height()));
  146. auto dummy_scanline = TRY(FixedArray<Pixel>::create(bitmap.width()));
  147. auto const* scanline_minus_1 = dummy_scanline.data();
  148. for (int y = 0; y < bitmap.height(); ++y) {
  149. auto* scanline = reinterpret_cast<Pixel const*>(bitmap.scanline(y));
  150. struct Filter {
  151. PNG::FilterType type;
  152. ByteBuffer buffer {};
  153. int sum = 0;
  154. ErrorOr<void> append(u8 byte)
  155. {
  156. TRY(buffer.try_append(byte));
  157. sum += static_cast<i8>(byte);
  158. return {};
  159. }
  160. ErrorOr<void> append(AK::SIMD::u8x4 simd)
  161. {
  162. TRY(append(simd[0]));
  163. TRY(append(simd[1]));
  164. TRY(append(simd[2]));
  165. TRY(append(simd[3]));
  166. return {};
  167. }
  168. };
  169. Filter none_filter { .type = PNG::FilterType::None };
  170. TRY(none_filter.buffer.try_ensure_capacity(sizeof(Pixel) * bitmap.width()));
  171. Filter sub_filter { .type = PNG::FilterType::Sub };
  172. TRY(sub_filter.buffer.try_ensure_capacity(sizeof(Pixel) * bitmap.width()));
  173. Filter up_filter { .type = PNG::FilterType::Up };
  174. TRY(up_filter.buffer.try_ensure_capacity(sizeof(Pixel) * bitmap.width()));
  175. Filter average_filter { .type = PNG::FilterType::Average };
  176. TRY(average_filter.buffer.try_ensure_capacity(sizeof(ARGB32) * bitmap.width()));
  177. Filter paeth_filter { .type = PNG::FilterType::Paeth };
  178. TRY(paeth_filter.buffer.try_ensure_capacity(sizeof(ARGB32) * bitmap.width()));
  179. auto pixel_x_minus_1 = Pixel::gfx_to_png(dummy_scanline[0]);
  180. auto pixel_xy_minus_1 = Pixel::gfx_to_png(dummy_scanline[0]);
  181. for (int x = 0; x < bitmap.width(); ++x) {
  182. auto pixel = Pixel::gfx_to_png(scanline[x]);
  183. auto pixel_y_minus_1 = Pixel::gfx_to_png(scanline_minus_1[x]);
  184. TRY(none_filter.append(pixel));
  185. TRY(sub_filter.append(pixel - pixel_x_minus_1));
  186. TRY(up_filter.append(pixel - pixel_y_minus_1));
  187. // The sum Orig(a) + Orig(b) shall be performed without overflow (using at least nine-bit arithmetic).
  188. auto sum = AK::SIMD::to_u16x4(pixel_x_minus_1) + AK::SIMD::to_u16x4(pixel_y_minus_1);
  189. auto average = AK::SIMD::to_u8x4(sum / 2);
  190. TRY(average_filter.append(pixel - average));
  191. TRY(paeth_filter.append(pixel - PNG::paeth_predictor(pixel_x_minus_1, pixel_y_minus_1, pixel_xy_minus_1)));
  192. pixel_x_minus_1 = pixel;
  193. pixel_xy_minus_1 = pixel_y_minus_1;
  194. }
  195. scanline_minus_1 = scanline;
  196. // 12.8 Filter selection: https://www.w3.org/TR/PNG/#12Filter-selection
  197. // For best compression of truecolour and greyscale images, the recommended approach
  198. // is adaptive filtering in which a filter is chosen for each scanline.
  199. // The following simple heuristic has performed well in early tests:
  200. // compute the output scanline using all five filters, and select the filter that gives the smallest sum of absolute values of outputs.
  201. // (Consider the output bytes as signed differences for this test.)
  202. Filter& best_filter = none_filter;
  203. if (abs(best_filter.sum) > abs(sub_filter.sum))
  204. best_filter = sub_filter;
  205. if (abs(best_filter.sum) > abs(up_filter.sum))
  206. best_filter = up_filter;
  207. if (abs(best_filter.sum) > abs(average_filter.sum))
  208. best_filter = average_filter;
  209. if (abs(best_filter.sum) > abs(paeth_filter.sum))
  210. best_filter = paeth_filter;
  211. TRY(uncompressed_block_data.try_append(to_underlying(best_filter.type)));
  212. TRY(uncompressed_block_data.try_append(best_filter.buffer));
  213. }
  214. TRY(png_chunk.compress_and_add(uncompressed_block_data));
  215. TRY(add_chunk(png_chunk));
  216. return {};
  217. }
  218. ErrorOr<ByteBuffer> PNGWriter::encode(Gfx::Bitmap const& bitmap, Options options)
  219. {
  220. PNGWriter writer;
  221. TRY(writer.add_png_header());
  222. TRY(writer.add_IHDR_chunk(bitmap.width(), bitmap.height(), 8, PNG::ColorType::TruecolorWithAlpha, 0, 0, 0));
  223. if (options.icc_data.has_value())
  224. TRY(writer.add_iCCP_chunk(options.icc_data.value()));
  225. TRY(writer.add_IDAT_chunk(bitmap));
  226. TRY(writer.add_IEND_chunk());
  227. return ByteBuffer::copy(writer.m_data);
  228. }
  229. }