mirror of
https://github.com/LadybirdBrowser/ladybird.git
synced 2024-11-22 23:50:19 +00:00
239 lines
7.6 KiB
C++
239 lines
7.6 KiB
C++
/*
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* Copyright (c) 2021, Hunter Salyer <thefalsehonesty@gmail.com>
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#pragma once
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#include <AK/ByteBuffer.h>
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#include <AK/FlyString.h>
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#include <AK/HashMap.h>
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#include <AK/NonnullOwnPtrVector.h>
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#include <AK/OwnPtr.h>
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#include <AK/String.h>
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#include <AK/Utf8View.h>
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#include <LibVideo/Color/CodingIndependentCodePoints.h>
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namespace Video {
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struct EBMLHeader {
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String doc_type;
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u32 doc_type_version;
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};
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class SegmentInformation {
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public:
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u64 timestamp_scale() const { return m_timestamp_scale; }
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void set_timestamp_scale(u64 timestamp_scale) { m_timestamp_scale = timestamp_scale; }
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Utf8View muxing_app() const { return Utf8View(m_muxing_app); }
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void set_muxing_app(String muxing_app) { m_muxing_app = move(muxing_app); }
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Utf8View writing_app() const { return Utf8View(m_writing_app); }
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void set_writing_app(String writing_app) { m_writing_app = move(writing_app); }
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Optional<double> duration() const { return m_duration; }
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void set_duration(double duration) { m_duration.emplace(duration); }
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private:
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u64 m_timestamp_scale { 1'000'000 };
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String m_muxing_app;
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String m_writing_app;
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Optional<double> m_duration;
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};
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class TrackEntry {
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public:
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enum TrackType : u8 {
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Invalid = 0,
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Video = 1,
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Audio = 2,
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Complex = 3,
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Logo = 16,
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Subtitle = 17,
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Buttons = 18,
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Control = 32,
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Metadata = 33,
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};
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enum class ColorRange : u8 {
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Unspecified = 0,
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Broadcast = 1,
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Full = 2,
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UseCICP = 3, // defined by MatrixCoefficients / TransferCharacteristics
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};
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struct ColorFormat {
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ColorPrimaries color_primaries = ColorPrimaries::Unspecified;
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TransferCharacteristics transfer_characteristics = TransferCharacteristics::Unspecified;
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MatrixCoefficients matrix_coefficients = MatrixCoefficients::Unspecified;
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u64 bits_per_channel = 0;
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ColorRange range = ColorRange::Unspecified;
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CodingIndependentCodePoints to_cicp() const
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{
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Video::ColorRange color_range;
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switch (range) {
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case ColorRange::Full:
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color_range = Video::ColorRange::Full;
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break;
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case ColorRange::Broadcast:
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color_range = Video::ColorRange::Studio;
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break;
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case ColorRange::Unspecified:
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case ColorRange::UseCICP:
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// FIXME: Figure out what UseCICP should do here. Matroska specification did not
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// seem to explain in the 'colour' section. When this is fixed, change
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// replace_code_points_if_specified to match.
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color_range = Video::ColorRange::Unspecified;
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break;
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}
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return { color_primaries, transfer_characteristics, matrix_coefficients, color_range };
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}
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};
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struct VideoTrack {
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u64 pixel_width;
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u64 pixel_height;
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ColorFormat color_format;
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};
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struct AudioTrack {
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u64 channels;
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u64 bit_depth;
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};
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u64 track_number() const { return m_track_number; }
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void set_track_number(u64 track_number) { m_track_number = track_number; }
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u64 track_uid() const { return m_track_uid; }
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void set_track_uid(u64 track_uid) { m_track_uid = track_uid; }
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TrackType track_type() const { return m_track_type; }
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void set_track_type(TrackType track_type) { m_track_type = track_type; }
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FlyString language() const { return m_language; }
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void set_language(FlyString const& language) { m_language = language; }
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FlyString codec_id() const { return m_codec_id; }
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void set_codec_id(FlyString const& codec_id) { m_codec_id = codec_id; }
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Optional<VideoTrack> video_track() const
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{
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if (track_type() != Video)
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return {};
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return m_video_track;
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}
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void set_video_track(VideoTrack video_track) { m_video_track = video_track; }
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Optional<AudioTrack> audio_track() const
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{
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if (track_type() != Audio)
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return {};
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return m_audio_track;
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}
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void set_audio_track(AudioTrack audio_track) { m_audio_track = audio_track; }
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private:
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u64 m_track_number { 0 };
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u64 m_track_uid { 0 };
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TrackType m_track_type { Invalid };
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FlyString m_language = "eng";
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FlyString m_codec_id;
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union {
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VideoTrack m_video_track {};
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AudioTrack m_audio_track;
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};
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};
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class Block {
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public:
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enum Lacing : u8 {
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None = 0b00,
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XIPH = 0b01,
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FixedSize = 0b10,
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EBML = 0b11,
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};
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Block() = default;
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u64 track_number() const { return m_track_number; }
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void set_track_number(u64 track_number) { m_track_number = track_number; }
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i16 timestamp() const { return m_timestamp; }
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void set_timestamp(i16 timestamp) { m_timestamp = timestamp; }
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bool only_keyframes() const { return m_only_keyframes; }
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void set_only_keyframes(bool only_keyframes) { m_only_keyframes = only_keyframes; }
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bool invisible() const { return m_invisible; }
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void set_invisible(bool invisible) { m_invisible = invisible; }
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Lacing lacing() const { return m_lacing; }
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void set_lacing(Lacing lacing) { m_lacing = lacing; }
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bool discardable() const { return m_discardable; }
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void set_discardable(bool discardable) { m_discardable = discardable; }
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u64 frame_count() const { return m_frames.size(); }
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Vector<ByteBuffer> const& frames() const { return m_frames; }
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ByteBuffer const& frame(size_t index) const { return frames()[index]; }
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void add_frame(ByteBuffer frame) { m_frames.append(move(frame)); }
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private:
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u64 m_track_number { 0 };
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i16 m_timestamp { 0 };
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bool m_only_keyframes { false };
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bool m_invisible { false };
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Lacing m_lacing { None };
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bool m_discardable { true };
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Vector<ByteBuffer> m_frames;
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};
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class Cluster {
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public:
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u64 timestamp() const { return m_timestamp; }
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void set_timestamp(u64 timestamp) { m_timestamp = timestamp; }
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NonnullOwnPtrVector<Block>& blocks() { return m_blocks; }
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NonnullOwnPtrVector<Block> const& blocks() const { return m_blocks; }
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private:
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u64 m_timestamp { 0 };
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NonnullOwnPtrVector<Block> m_blocks;
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};
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class MatroskaDocument {
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public:
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explicit MatroskaDocument(EBMLHeader m_header)
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: m_header(move(m_header))
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{
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}
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EBMLHeader const& header() const { return m_header; }
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Optional<SegmentInformation> segment_information() const
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{
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if (!m_segment_information)
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return {};
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return *m_segment_information;
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}
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void set_segment_information(OwnPtr<SegmentInformation> segment_information) { m_segment_information = move(segment_information); }
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HashMap<u64, NonnullOwnPtr<TrackEntry>> const& tracks() const { return m_tracks; }
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Optional<TrackEntry> track_for_track_number(u64 track_number) const
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{
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auto track = m_tracks.get(track_number);
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if (!track.has_value())
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return {};
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return *track.value();
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}
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Optional<TrackEntry> track_for_track_type(TrackEntry::TrackType type) const
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{
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for (auto& track_entry : m_tracks) {
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if (track_entry.value->track_type() == type)
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return *track_entry.value;
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}
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return {};
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}
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void add_track(u64 track_number, NonnullOwnPtr<TrackEntry> track)
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{
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m_tracks.set(track_number, move(track));
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}
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NonnullOwnPtrVector<Cluster>& clusters() { return m_clusters; }
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private:
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EBMLHeader m_header;
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OwnPtr<SegmentInformation> m_segment_information;
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HashMap<u64, NonnullOwnPtr<TrackEntry>> m_tracks;
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NonnullOwnPtrVector<Cluster> m_clusters;
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};
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}
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