TIFFLoader.cpp 15 KB

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  1. /*
  2. * Copyright (c) 2023, Lucas Chollet <lucas.chollet@serenityos.org>
  3. *
  4. * SPDX-License-Identifier: BSD-2-Clause
  5. */
  6. #include "TIFFLoader.h"
  7. #include <AK/Debug.h>
  8. #include <AK/Endian.h>
  9. #include <AK/String.h>
  10. #include <LibCompress/LZWDecoder.h>
  11. #include <LibGfx/ImageFormats/TIFFMetadata.h>
  12. namespace Gfx {
  13. namespace TIFF {
  14. class TIFFLoadingContext {
  15. public:
  16. enum class State {
  17. NotDecoded = 0,
  18. Error,
  19. HeaderDecoded,
  20. FrameDecoded,
  21. };
  22. TIFFLoadingContext(NonnullOwnPtr<FixedMemoryStream> stream)
  23. : m_stream(move(stream))
  24. {
  25. }
  26. ErrorOr<void> decode_image_header()
  27. {
  28. TRY(read_image_file_header());
  29. TRY(read_next_image_file_directory());
  30. m_state = State::HeaderDecoded;
  31. return {};
  32. }
  33. ErrorOr<void> decode_frame()
  34. {
  35. auto maybe_error = decode_frame_impl();
  36. if (maybe_error.is_error()) {
  37. m_state = State::Error;
  38. return maybe_error.release_error();
  39. }
  40. return {};
  41. }
  42. IntSize size() const
  43. {
  44. return { *m_metadata.image_width(), *m_metadata.image_height() };
  45. }
  46. State state() const
  47. {
  48. return m_state;
  49. }
  50. RefPtr<Bitmap> bitmap() const
  51. {
  52. return m_bitmap;
  53. }
  54. private:
  55. enum class ByteOrder {
  56. LittleEndian,
  57. BigEndian,
  58. };
  59. template<typename ByteReader>
  60. ErrorOr<void> loop_over_pixels(ByteReader&& byte_reader, Function<ErrorOr<void>(u32)> initializer = {})
  61. {
  62. auto const strips_offset = *m_metadata.strip_offsets();
  63. auto const strip_byte_counts = *m_metadata.strip_byte_counts();
  64. for (u32 strip_index = 0; strip_index < strips_offset.size(); ++strip_index) {
  65. TRY(m_stream->seek(strips_offset[strip_index]));
  66. if (initializer)
  67. TRY(initializer(strip_byte_counts[strip_index]));
  68. for (u32 row = 0; row < *m_metadata.rows_per_strip(); row++) {
  69. auto const scanline = row + *m_metadata.rows_per_strip() * strip_index;
  70. if (scanline >= *m_metadata.image_height())
  71. break;
  72. Optional<Color> last_color {};
  73. for (u32 column = 0; column < *m_metadata.image_width(); ++column) {
  74. auto color = Color { TRY(byte_reader()), TRY(byte_reader()), TRY(byte_reader()) };
  75. if (m_metadata.predictor() == Predictor::HorizontalDifferencing && last_color.has_value()) {
  76. color.set_red(last_color->red() + color.red());
  77. color.set_green(last_color->green() + color.green());
  78. color.set_blue(last_color->blue() + color.blue());
  79. }
  80. last_color = color;
  81. m_bitmap->set_pixel(column, scanline, color);
  82. }
  83. }
  84. }
  85. return {};
  86. }
  87. ErrorOr<void> decode_frame_impl()
  88. {
  89. m_bitmap = TRY(Bitmap::create(BitmapFormat::BGRA8888, size()));
  90. switch (*m_metadata.compression()) {
  91. case Compression::NoCompression:
  92. TRY(loop_over_pixels([this]() { return read_value<u8>(); }));
  93. break;
  94. case Compression::LZW: {
  95. ByteBuffer decoded_bytes {};
  96. u32 read_head {};
  97. auto initializer = [&](u32 bytes) -> ErrorOr<void> {
  98. decoded_bytes = TRY(Compress::LZWDecoder<BigEndianInputBitStream>::decode_all(TRY(m_stream->read_in_place<u8 const>(bytes)), 8, -1));
  99. read_head = 0;
  100. return {};
  101. };
  102. auto read_lzw_byte = [&]() -> ErrorOr<u8> {
  103. if (read_head < decoded_bytes.size())
  104. return decoded_bytes[read_head++];
  105. return Error::from_string_literal("TIFFImageDecoderPlugin: Reached end of LZW stream");
  106. };
  107. TRY(loop_over_pixels([read_lzw_byte = move(read_lzw_byte)]() { return read_lzw_byte(); }, move(initializer)));
  108. break;
  109. }
  110. case Compression::PackBits: {
  111. // Section 9: PackBits Compression
  112. Optional<i8> n;
  113. Optional<u8> saved_byte;
  114. auto read_packed_byte = [&]() -> ErrorOr<u8> {
  115. while (true) {
  116. if (!n.has_value())
  117. n = TRY(read_value<i8>());
  118. if (n.value() >= 0 && !saved_byte.has_value()) {
  119. n.value() = n.value() - 1;
  120. if (n.value() == -1)
  121. n.clear();
  122. return read_value<u8>();
  123. }
  124. if (n.value() == -128) {
  125. n.clear();
  126. continue;
  127. }
  128. if (!saved_byte.has_value())
  129. saved_byte = TRY(read_value<u8>());
  130. n.value() = n.value() + 1;
  131. auto const byte_backup = *saved_byte;
  132. if (n == 1) {
  133. saved_byte.clear();
  134. n.clear();
  135. }
  136. return byte_backup;
  137. }
  138. };
  139. TRY(loop_over_pixels(move(read_packed_byte)));
  140. break;
  141. }
  142. default:
  143. return Error::from_string_literal("This compression type is not supported yet :^)");
  144. }
  145. return {};
  146. }
  147. template<typename T>
  148. ErrorOr<T> read_value()
  149. {
  150. if (m_byte_order == ByteOrder::LittleEndian)
  151. return TRY(m_stream->read_value<LittleEndian<T>>());
  152. if (m_byte_order == ByteOrder::BigEndian)
  153. return TRY(m_stream->read_value<BigEndian<T>>());
  154. VERIFY_NOT_REACHED();
  155. }
  156. ErrorOr<void> read_next_idf_offset()
  157. {
  158. auto const next_block_position = TRY(read_value<u32>());
  159. if (next_block_position != 0)
  160. m_next_ifd = Optional<u32> { next_block_position };
  161. else
  162. m_next_ifd = OptionalNone {};
  163. dbgln_if(TIFF_DEBUG, "Setting image file directory pointer to {}", m_next_ifd);
  164. return {};
  165. }
  166. ErrorOr<void> read_image_file_header()
  167. {
  168. // Section 2: TIFF Structure - Image File Header
  169. auto const byte_order = TRY(m_stream->read_value<u16>());
  170. switch (byte_order) {
  171. case 0x4949:
  172. m_byte_order = ByteOrder::LittleEndian;
  173. break;
  174. case 0x4D4D:
  175. m_byte_order = ByteOrder::BigEndian;
  176. break;
  177. default:
  178. return Error::from_string_literal("TIFFImageDecoderPlugin: Invalid byte order");
  179. }
  180. auto const magic_number = TRY(read_value<u16>());
  181. if (magic_number != 42)
  182. return Error::from_string_literal("TIFFImageDecoderPlugin: Invalid magic number");
  183. TRY(read_next_idf_offset());
  184. return {};
  185. }
  186. ErrorOr<void> read_next_image_file_directory()
  187. {
  188. // Section 2: TIFF Structure - Image File Directory
  189. if (!m_next_ifd.has_value())
  190. return Error::from_string_literal("TIFFImageDecoderPlugin: Missing an Image File Directory");
  191. TRY(m_stream->seek(m_next_ifd.value()));
  192. auto const number_of_field = TRY(read_value<u16>());
  193. for (u16 i = 0; i < number_of_field; ++i)
  194. TRY(read_tag());
  195. TRY(read_next_idf_offset());
  196. return {};
  197. }
  198. ErrorOr<Type> read_type()
  199. {
  200. switch (TRY(read_value<u16>())) {
  201. case to_underlying(Type::Byte):
  202. return Type::Byte;
  203. case to_underlying(Type::ASCII):
  204. return Type::ASCII;
  205. case to_underlying(Type::UnsignedShort):
  206. return Type::UnsignedShort;
  207. case to_underlying(Type::UnsignedLong):
  208. return Type::UnsignedLong;
  209. case to_underlying(Type::UnsignedRational):
  210. return Type::UnsignedRational;
  211. case to_underlying(Type::Undefined):
  212. return Type::Undefined;
  213. case to_underlying(Type::SignedLong):
  214. return Type::SignedLong;
  215. case to_underlying(Type::SignedRational):
  216. return Type::SignedRational;
  217. case to_underlying(Type::UTF8):
  218. return Type::UTF8;
  219. default:
  220. return Error::from_string_literal("TIFFImageDecoderPlugin: Unknown type");
  221. }
  222. }
  223. static constexpr u8 size_of_type(Type type)
  224. {
  225. switch (type) {
  226. case Type::Byte:
  227. return 1;
  228. case Type::ASCII:
  229. return 1;
  230. case Type::UnsignedShort:
  231. return 2;
  232. case Type::UnsignedLong:
  233. return 4;
  234. case Type::UnsignedRational:
  235. return 8;
  236. case Type::Undefined:
  237. return 1;
  238. case Type::SignedLong:
  239. return 4;
  240. case Type::SignedRational:
  241. return 8;
  242. case Type::Float:
  243. return 4;
  244. case Type::Double:
  245. return 8;
  246. case Type::UTF8:
  247. return 1;
  248. default:
  249. VERIFY_NOT_REACHED();
  250. }
  251. }
  252. ErrorOr<Vector<Value, 1>> read_tiff_value(Type type, u32 count, u32 offset)
  253. {
  254. auto const old_offset = TRY(m_stream->tell());
  255. ScopeGuard reset_offset { [this, old_offset]() { MUST(m_stream->seek(old_offset)); } };
  256. TRY(m_stream->seek(offset));
  257. if (size_of_type(type) * count > m_stream->remaining())
  258. return Error::from_string_literal("TIFFImageDecoderPlugin: Tag size claims to be bigger that remaining bytes");
  259. auto const read_every_values = [this, count]<typename T>() -> ErrorOr<Vector<Value>> {
  260. Vector<Value, 1> result {};
  261. TRY(result.try_ensure_capacity(count));
  262. if constexpr (IsSpecializationOf<T, Rational>) {
  263. for (u32 i = 0; i < count; ++i)
  264. result.empend(T { TRY(read_value<typename T::Type>()), TRY(read_value<typename T::Type>()) });
  265. } else {
  266. for (u32 i = 0; i < count; ++i)
  267. result.empend(typename TypePromoter<T>::Type(TRY(read_value<T>())));
  268. }
  269. return result;
  270. };
  271. switch (type) {
  272. case Type::Byte:
  273. case Type::Undefined:
  274. return read_every_values.template operator()<u8>();
  275. case Type::ASCII:
  276. case Type::UTF8: {
  277. Vector<Value, 1> result;
  278. auto string_data = TRY(ByteBuffer::create_uninitialized(count));
  279. TRY(m_stream->read_until_filled(string_data));
  280. result.empend(TRY(String::from_utf8(StringView { string_data.bytes() })));
  281. return result;
  282. }
  283. case Type::UnsignedShort:
  284. return read_every_values.template operator()<u16>();
  285. case Type::UnsignedLong:
  286. return read_every_values.template operator()<u32>();
  287. case Type::UnsignedRational:
  288. return read_every_values.template operator()<Rational<u32>>();
  289. case Type::SignedLong:
  290. return read_every_values.template operator()<i32>();
  291. ;
  292. case Type::SignedRational:
  293. return read_every_values.template operator()<Rational<i32>>();
  294. default:
  295. VERIFY_NOT_REACHED();
  296. }
  297. }
  298. ErrorOr<void> read_tag()
  299. {
  300. auto const tag = TRY(read_value<u16>());
  301. auto const type = TRY(read_type());
  302. auto const count = TRY(read_value<u32>());
  303. Checked<u32> checked_size = size_of_type(type);
  304. checked_size *= count;
  305. if (checked_size.has_overflow())
  306. return Error::from_string_literal("TIFFImageDecoderPlugin: Invalid tag with too large data");
  307. auto tiff_value = TRY(([=, this]() -> ErrorOr<Vector<Value>> {
  308. if (checked_size.value() <= 4) {
  309. auto value = TRY(read_tiff_value(type, count, TRY(m_stream->tell())));
  310. TRY(m_stream->discard(4));
  311. return value;
  312. }
  313. auto const offset = TRY(read_value<u32>());
  314. return read_tiff_value(type, count, offset);
  315. }()));
  316. if constexpr (TIFF_DEBUG) {
  317. if (tiff_value.size() == 1) {
  318. tiff_value[0].visit(
  319. [&](auto const& value) {
  320. dbgln("Read tag({}), type({}): {}", tag, to_underlying(type), value);
  321. });
  322. } else {
  323. dbg("Read tag({}), type({}): [", tag, to_underlying(type));
  324. for (u32 i = 0; i < tiff_value.size(); ++i) {
  325. tiff_value[i].visit(
  326. [&](auto const& value) {
  327. dbg("{}", value);
  328. });
  329. if (i != tiff_value.size() - 1)
  330. dbg(", ");
  331. }
  332. dbgln("]");
  333. }
  334. }
  335. TRY(handle_tag(m_metadata, tag, type, count, move(tiff_value)));
  336. return {};
  337. }
  338. NonnullOwnPtr<FixedMemoryStream> m_stream;
  339. State m_state {};
  340. RefPtr<Bitmap> m_bitmap {};
  341. ByteOrder m_byte_order {};
  342. Optional<u32> m_next_ifd {};
  343. Metadata m_metadata {};
  344. };
  345. }
  346. TIFFImageDecoderPlugin::TIFFImageDecoderPlugin(NonnullOwnPtr<FixedMemoryStream> stream)
  347. {
  348. m_context = make<TIFF::TIFFLoadingContext>(move(stream));
  349. }
  350. bool TIFFImageDecoderPlugin::sniff(ReadonlyBytes bytes)
  351. {
  352. if (bytes.size() < 4)
  353. return false;
  354. bool const valid_little_endian = bytes[0] == 0x49 && bytes[1] == 0x49 && bytes[2] == 0x2A && bytes[3] == 0x00;
  355. bool const valid_big_endian = bytes[0] == 0x4D && bytes[1] == 0x4D && bytes[2] == 0x00 && bytes[3] == 0x2A;
  356. return valid_little_endian || valid_big_endian;
  357. }
  358. IntSize TIFFImageDecoderPlugin::size()
  359. {
  360. return m_context->size();
  361. }
  362. ErrorOr<NonnullOwnPtr<ImageDecoderPlugin>> TIFFImageDecoderPlugin::create(ReadonlyBytes data)
  363. {
  364. auto stream = TRY(try_make<FixedMemoryStream>(data));
  365. auto plugin = TRY(adopt_nonnull_own_or_enomem(new (nothrow) TIFFImageDecoderPlugin(move(stream))));
  366. TRY(plugin->m_context->decode_image_header());
  367. return plugin;
  368. }
  369. ErrorOr<ImageFrameDescriptor> TIFFImageDecoderPlugin::frame(size_t index, Optional<IntSize>)
  370. {
  371. if (index > 0)
  372. return Error::from_string_literal("TIFFImageDecoderPlugin: Invalid frame index");
  373. if (m_context->state() == TIFF::TIFFLoadingContext::State::Error)
  374. return Error::from_string_literal("TIFFImageDecoderPlugin: Decoding failed");
  375. if (m_context->state() < TIFF::TIFFLoadingContext::State::FrameDecoded)
  376. TRY(m_context->decode_frame());
  377. return ImageFrameDescriptor { m_context->bitmap(), 0 };
  378. }
  379. }
  380. template<typename T>
  381. struct AK::Formatter<Gfx::TIFF::Rational<T>> : Formatter<FormatString> {
  382. ErrorOr<void> format(FormatBuilder& builder, Gfx::TIFF::Rational<T> value)
  383. {
  384. return Formatter<FormatString>::format(builder, "{} ({}/{})"sv, static_cast<double>(value.numerator) / value.denominator, value.numerator, value.denominator);
  385. }
  386. };