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SPDX License Identifiers are a more compact / standardized way of representing file license information. See: https://spdx.dev/resources/use/#identifiers This was done with the `ambr` search and replace tool. ambr --no-parent-ignore --key-from-file --rep-from-file key.txt rep.txt *
209 lines
5.2 KiB
C++
209 lines
5.2 KiB
C++
/*
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* Copyright (c) 2021, Pierre Hoffmeister
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* Copyright (c) 2021, Andreas Kling <kling@serenityos.org>
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#include <AK/String.h>
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#include <LibCrypto/Checksum/CRC32.h>
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#include <LibGfx/Bitmap.h>
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#include <LibGfx/PNGWriter.h>
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namespace Gfx {
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class PNGChunk {
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public:
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explicit PNGChunk(String);
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Vector<u8> const& data() const { return m_data; };
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String const& type() const { return m_type; };
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void add_u8(u8);
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void add_u16_big(u16);
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void add_u32_big(u32);
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void add_u16_little(u16);
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void add_u32_little(u32);
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private:
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Vector<u8> m_data;
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String m_type;
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};
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class NonCompressibleBlock {
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public:
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void finalize(PNGChunk&);
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void add_byte_to_block(u8 data, PNGChunk&);
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u32 adler_s1() const { return m_adler_s1; }
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u32 adler_s2() const { return m_adler_s2; }
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private:
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void add_block_to_chunk(PNGChunk&, bool);
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void update_adler(u8);
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bool full() { return m_non_compressible_data.size() == 65535; }
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Vector<u8> m_non_compressible_data;
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u32 m_adler_s1 { 1 };
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u32 m_adler_s2 { 0 };
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};
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PNGChunk::PNGChunk(String type)
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: m_type(move(type))
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{
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}
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void PNGChunk::add_u8(u8 data)
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{
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m_data.append(data);
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}
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void PNGChunk::add_u16_little(u16 data)
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{
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m_data.append(data & 0xff);
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m_data.append((data >> 8) & 0xff);
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}
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void PNGChunk::add_u32_little(u32 data)
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{
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m_data.append(data & 0xff);
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m_data.append((data >> 8) & 0xff);
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m_data.append((data >> 16) & 0xff);
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m_data.append((data >> 24) & 0xff);
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}
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void PNGChunk::add_u32_big(u32 data)
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{
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m_data.append((data >> 24) & 0xff);
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m_data.append((data >> 16) & 0xff);
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m_data.append((data >> 8) & 0xff);
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m_data.append(data & 0xff);
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}
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void PNGChunk::add_u16_big(u16 data)
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{
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m_data.append((data >> 8) & 0xff);
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m_data.append(data & 0xff);
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}
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void NonCompressibleBlock::add_byte_to_block(u8 data, PNGChunk& chunk)
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{
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m_non_compressible_data.append(data);
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update_adler(data);
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if (full()) {
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add_block_to_chunk(chunk, false);
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m_non_compressible_data.clear();
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}
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}
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void NonCompressibleBlock::add_block_to_chunk(PNGChunk& png_chunk, bool last)
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{
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if (last) {
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png_chunk.add_u8(1);
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} else {
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png_chunk.add_u8(0);
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}
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auto len = m_non_compressible_data.size();
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auto nlen = ~len;
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png_chunk.add_u16_little(len);
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png_chunk.add_u16_little(nlen);
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for (auto non_compressed_byte : m_non_compressible_data) {
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png_chunk.add_u8(non_compressed_byte);
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}
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}
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void NonCompressibleBlock::finalize(PNGChunk& chunk)
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{
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add_block_to_chunk(chunk, true);
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}
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void NonCompressibleBlock::update_adler(u8 data)
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{
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m_adler_s1 = (m_adler_s1 + data) % 65521;
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m_adler_s2 = (m_adler_s2 + m_adler_s1) % 65521;
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}
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void PNGWriter::add_chunk(PNGChunk const& png_chunk)
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{
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Vector<u8> combined;
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for (auto character : png_chunk.type()) {
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combined.append(character);
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}
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combined.append(png_chunk.data());
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auto crc = BigEndian(Crypto::Checksum::CRC32({ (const u8*)combined.data(), combined.size() }).digest());
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auto data_len = BigEndian(png_chunk.data().size());
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ByteBuffer buf;
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buf.append(&data_len, sizeof(u32));
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buf.append(combined.data(), combined.size());
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buf.append(&crc, sizeof(u32));
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m_data.append(buf.data(), buf.size());
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}
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void PNGWriter::add_png_header()
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{
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const u8 png_header[8] = { 0x89, 'P', 'N', 'G', 13, 10, 26, 10 };
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m_data.append(png_header, sizeof(png_header));
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}
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void PNGWriter::add_IHDR_chunk(u32 width, u32 height, u8 bit_depth, u8 color_type, u8 compression_method, u8 filter_method, u8 interlace_method)
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{
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PNGChunk png_chunk { "IHDR" };
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png_chunk.add_u32_big(width);
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png_chunk.add_u32_big(height);
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png_chunk.add_u8(bit_depth);
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png_chunk.add_u8(color_type);
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png_chunk.add_u8(compression_method);
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png_chunk.add_u8(filter_method);
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png_chunk.add_u8(interlace_method);
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add_chunk(png_chunk);
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}
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void PNGWriter::add_IEND_chunk()
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{
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PNGChunk png_chunk { "IEND" };
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add_chunk(png_chunk);
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}
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void PNGWriter::add_IDAT_chunk(Gfx::Bitmap const& bitmap)
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{
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PNGChunk png_chunk { "IDAT" };
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u16 CMF_FLG = 0x81d;
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png_chunk.add_u16_big(CMF_FLG);
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NonCompressibleBlock non_compressible_block;
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for (int y = 0; y < bitmap.height(); ++y) {
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non_compressible_block.add_byte_to_block(0, png_chunk);
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for (int x = 0; x < bitmap.width(); ++x) {
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auto pixel = bitmap.get_pixel(x, y);
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non_compressible_block.add_byte_to_block(pixel.red(), png_chunk);
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non_compressible_block.add_byte_to_block(pixel.green(), png_chunk);
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non_compressible_block.add_byte_to_block(pixel.blue(), png_chunk);
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non_compressible_block.add_byte_to_block(pixel.alpha(), png_chunk);
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}
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}
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non_compressible_block.finalize(png_chunk);
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png_chunk.add_u16_big(non_compressible_block.adler_s2());
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png_chunk.add_u16_big(non_compressible_block.adler_s1());
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add_chunk(png_chunk);
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}
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ByteBuffer PNGWriter::encode(Gfx::Bitmap const& bitmap)
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{
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PNGWriter writer;
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writer.add_png_header();
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writer.add_IHDR_chunk(bitmap.width(), bitmap.height(), 8, 6, 0, 0, 0);
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writer.add_IDAT_chunk(bitmap);
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writer.add_IEND_chunk();
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return ByteBuffer::copy(writer.m_data);
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}
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}
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