mirror of
https://github.com/RGBCube/serenity
synced 2025-05-14 19:14:58 +00:00
333 lines
9.5 KiB
C++
333 lines
9.5 KiB
C++
/*
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* Copyright (c) 2023, Nicolas Ramz <nicolas.ramz@gmail.com>
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#include <AK/Debug.h>
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#include <AK/Endian.h>
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#include <AK/FixedArray.h>
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#include <LibGfx/ImageFormats/ILBMLoader.h>
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namespace Gfx {
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struct IFFHeader {
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FourCC form;
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BigEndian<u32> file_size;
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FourCC format;
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};
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static_assert(AssertSize<IFFHeader, 12>());
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struct Chunk {
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FourCC type;
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ReadonlyBytes data;
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};
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enum class CompressionType : u8 {
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None = 0,
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ByteRun = 1
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};
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enum class MaskType : u8 {
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None = 0,
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HasMask = 1,
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HasTransparentColor = 2,
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HasLasso = 3
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};
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struct ChunkHeader {
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FourCC chunk_type;
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BigEndian<u32> chunk_size;
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};
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struct BMHDHeader {
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BigEndian<u16> width;
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BigEndian<u16> height;
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BigEndian<i16> x;
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BigEndian<i16> y;
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u8 planes;
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MaskType mask;
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CompressionType compression;
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u8 pad;
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BigEndian<u16> transparent_color;
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u8 x_aspect;
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u8 y_aspect;
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BigEndian<u16> page_width;
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BigEndian<u16> page_height;
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};
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static_assert(sizeof(BMHDHeader) == 20);
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struct ILBMLoadingContext {
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enum class State {
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NotDecoded = 0,
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HeaderDecoded,
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BitmapDecoded
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};
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State state { State::NotDecoded };
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ReadonlyBytes data;
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// points to current chunk
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ReadonlyBytes chunks_cursor;
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// max number of bytes per plane row
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u16 pitch;
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FixedArray<Color> color_table;
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RefPtr<Gfx::Bitmap> bitmap;
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BMHDHeader bm_header;
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};
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static ErrorOr<void> decode_iff_ilbm_header(ILBMLoadingContext& context)
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{
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if (context.state >= ILBMLoadingContext::State::HeaderDecoded)
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return {};
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if (context.data.size() < sizeof(IFFHeader))
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return Error::from_string_literal("Missing IFF header");
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auto& header = *bit_cast<IFFHeader const*>(context.data.data());
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if (header.form != FourCC("FORM") || header.format != FourCC("ILBM"))
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return Error::from_string_literal("Invalid IFF-ILBM header");
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return {};
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}
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static ErrorOr<FixedArray<Color>> decode_cmap_chunk(Chunk cmap_chunk)
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{
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size_t const size = cmap_chunk.data.size() / 3;
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FixedArray<Color> color_table = TRY(FixedArray<Color>::create(size));
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for (size_t i = 0; i < size; ++i) {
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color_table[i] = Color(cmap_chunk.data[i * 3], cmap_chunk.data[(i * 3) + 1], cmap_chunk.data[(i * 3) + 2]);
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}
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return color_table;
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}
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static ErrorOr<RefPtr<Gfx::Bitmap>> chunky_to_bitmap(ILBMLoadingContext& context, ByteBuffer const& chunky)
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{
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auto const width = context.bm_header.width;
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auto const height = context.bm_header.height;
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RefPtr<Gfx::Bitmap> bitmap = TRY(Bitmap::create(BitmapFormat::BGRA8888, { width, height }));
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dbgln_if(ILBM_DEBUG, "created Bitmap {}x{}", width, height);
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for (int row = 0; row < height; ++row) {
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for (int col = 0; col < width; ++col) {
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u8 index = chunky[(width * row) + col];
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bitmap->set_pixel(col, row, context.color_table[index]);
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}
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}
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dbgln_if(ILBM_DEBUG, "filled Bitmap");
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return bitmap;
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}
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static ErrorOr<ByteBuffer> planar_to_chunky(ReadonlyBytes bitplanes, ILBMLoadingContext& context)
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{
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dbgln_if(ILBM_DEBUG, "planar_to_chunky");
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u16 pitch = context.pitch;
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u16 width = context.bm_header.width;
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u16 height = context.bm_header.height;
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u8 planes = context.bm_header.planes;
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auto chunky = TRY(ByteBuffer::create_zeroed(width * height));
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for (u16 y = 0; y < height; y++) {
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for (u8 p = 0; p < planes; p++) {
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u8 const plane_mask = 1 << p;
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for (u16 i = 0; i < pitch; i++) {
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u16 offset = (pitch * planes * y) + (p * pitch) + i;
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u8 bit = bitplanes[offset];
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for (u8 b = 0; b < 8; b++) {
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u8 mask = 1 << (7 - b);
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// get current plane
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if (bit & mask) {
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u16 x = (i * 8) + b;
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chunky[(y * width) + x] |= plane_mask;
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}
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}
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}
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}
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}
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return chunky;
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}
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static ErrorOr<ByteBuffer> uncompress_byte_run(ReadonlyBytes data, ILBMLoadingContext& context)
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{
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auto length = data.size();
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dbgln_if(ILBM_DEBUG, "uncompress_byte_run pitch={} size={}", context.pitch, data.size());
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auto plane_data = TRY(ByteBuffer::create_uninitialized(context.pitch * context.bm_header.height * context.bm_header.planes));
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u32 index = 0;
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u32 read_bytes = 0;
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while (read_bytes < length) {
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auto const byte = static_cast<i8>(data[read_bytes++]);
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if (byte >= -127 && byte <= -1) {
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// read next byte
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u8 next_byte = data[read_bytes++];
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for (u16 i = 0; i < -byte + 1; ++i) {
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plane_data[index++] = next_byte;
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}
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} else if (byte >= 0) {
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for (u16 i = 0; i < byte + 1; ++i) {
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plane_data[index] = data[read_bytes];
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read_bytes++;
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index++;
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}
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}
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}
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return plane_data;
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}
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static ErrorOr<void> decode_body_chunk(Chunk body_chunk, ILBMLoadingContext& context)
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{
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dbgln_if(ILBM_DEBUG, "decode_body_chunk {}", body_chunk.data.size());
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ByteBuffer pixel_data;
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if (context.bm_header.compression == CompressionType::ByteRun) {
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auto plane_data = TRY(uncompress_byte_run(body_chunk.data, context));
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pixel_data = TRY(planar_to_chunky(plane_data, context));
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} else {
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pixel_data = TRY(planar_to_chunky(body_chunk.data, context));
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}
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context.bitmap = TRY(chunky_to_bitmap(context, pixel_data));
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return {};
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}
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static ErrorOr<Chunk> decode_iff_chunk_header(ReadonlyBytes chunks)
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{
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if (chunks.size() < sizeof(ChunkHeader))
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return Error::from_string_literal("Not enough data for IFF chunk header");
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auto const& header = *bit_cast<ChunkHeader const*>(chunks.data());
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if (chunks.size() < sizeof(ChunkHeader) + header.chunk_size)
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return Error::from_string_literal("Not enough data for IFF chunk");
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return Chunk { header.chunk_type, { chunks.data() + sizeof(ChunkHeader), header.chunk_size } };
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}
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static ErrorOr<Chunk> decode_iff_advance_chunk(ReadonlyBytes& chunks)
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{
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auto chunk = TRY(decode_iff_chunk_header(chunks));
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chunks = chunks.slice(sizeof(ChunkHeader) + chunk.data.size());
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// add padding if needed
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if (chunk.data.size() % 2 != 0) {
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if (chunks.is_empty())
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return Error::from_string_literal("Missing data for padding byte");
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if (*chunks.data() != 0)
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return Error::from_string_literal("Padding byte is not 0");
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chunks = chunks.slice(1);
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}
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return chunk;
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}
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static ErrorOr<void> decode_iff_chunks(ILBMLoadingContext& context)
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{
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auto& chunks = context.chunks_cursor;
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dbgln_if(ILBM_DEBUG, "decode_iff_chunks");
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while (!chunks.is_empty()) {
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auto chunk = TRY(decode_iff_advance_chunk(chunks));
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if (chunk.type == FourCC("CMAP")) {
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context.color_table = TRY(decode_cmap_chunk(chunk));
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} else if (chunk.type == FourCC("BODY")) {
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TRY(decode_body_chunk(chunk, context));
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context.state = ILBMLoadingContext::State::BitmapDecoded;
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} else if (chunk.type == FourCC("CRNG")) {
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dbgln_if(ILBM_DEBUG, "Chunk:CRNG");
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}
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}
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return {};
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}
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static ErrorOr<void> decode_bmhd_chunk(ILBMLoadingContext& context)
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{
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context.chunks_cursor = context.data.slice(sizeof(IFFHeader));
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auto first_chunk = TRY(decode_iff_advance_chunk(context.chunks_cursor));
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if (first_chunk.type != FourCC("BMHD"))
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return Error::from_string_literal("IFFImageDecoderPlugin: Invalid chunk type, expected BMHD");
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context.bm_header = *bit_cast<BMHDHeader const*>(first_chunk.data.data());
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context.pitch = ceil_div((u16)context.bm_header.width, (u16)16) * 2;
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context.state = ILBMLoadingContext::State::HeaderDecoded;
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dbgln_if(ILBM_DEBUG, "IFFImageDecoderPlugin: BMHD: {}x{} ({},{}), p={}, m={}, c={}",
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context.bm_header.width,
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context.bm_header.height,
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context.bm_header.x,
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context.bm_header.y,
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context.bm_header.planes,
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to_underlying(context.bm_header.mask),
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to_underlying(context.bm_header.compression));
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return {};
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}
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ILBMImageDecoderPlugin::ILBMImageDecoderPlugin(ReadonlyBytes data, NonnullOwnPtr<ILBMLoadingContext> context)
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: m_context(move(context))
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{
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m_context->data = data;
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}
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ILBMImageDecoderPlugin::~ILBMImageDecoderPlugin() = default;
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IntSize ILBMImageDecoderPlugin::size()
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{
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return IntSize { m_context->bm_header.width, m_context->bm_header.height };
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}
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bool ILBMImageDecoderPlugin::sniff(ReadonlyBytes data)
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{
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ILBMLoadingContext context;
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context.data = data;
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return !decode_iff_ilbm_header(context).is_error();
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}
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ErrorOr<NonnullOwnPtr<ImageDecoderPlugin>> ILBMImageDecoderPlugin::create(ReadonlyBytes data)
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{
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auto context = TRY(try_make<ILBMLoadingContext>());
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auto plugin = TRY(adopt_nonnull_own_or_enomem(new (nothrow) ILBMImageDecoderPlugin(data, move(context))));
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TRY(decode_iff_ilbm_header(*plugin->m_context));
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TRY(decode_bmhd_chunk(*plugin->m_context));
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return plugin;
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}
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ErrorOr<ImageFrameDescriptor> ILBMImageDecoderPlugin::frame(size_t index, Optional<IntSize>)
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{
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if (index > 0)
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return Error::from_string_literal("ILBMImageDecoderPlugin: frame index must be 0");
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if (m_context->state < ILBMLoadingContext::State::BitmapDecoded)
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TRY(decode_iff_chunks(*m_context));
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VERIFY(m_context->bitmap);
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return ImageFrameDescriptor { m_context->bitmap, 0 };
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}
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ErrorOr<Optional<ReadonlyBytes>> ILBMImageDecoderPlugin::icc_data()
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{
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return OptionalNone {};
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}
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}
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