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6cbf623adc
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85cbf0e335
3 changed files with 21 additions and 187 deletions
15
README.md
15
README.md
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@ -1,15 +0,0 @@
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# hls-player.js
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Extremely basic hls player using MediaSource extensions.
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Meant to be a custom replacement for hls.js for the stream-server repo
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**Not a drop-in replacement nor intended for actual use**. Meant to just be used with the way stream-server handles the http serving.
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Currently only works with a single playlist file (not the manifest playlist)
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Only works with fragmented mp4, not mpegts. Requires h264 video and mp4a audio. Should be able to parse the codec profile automatically given the above.
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Use requires an html5 `<video>` tag. If attributes `autoplay muted` are set, can be used by adding this script: `<script>var x = new VideoLoader('video_tag_id')</script>`. Otherwise add extra code to handle playing, etc.
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Simplest export is `cat *.js > /path/to/output.js`. Minify, rename, do whatever extra bits you want.
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@ -1,45 +1,29 @@
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// handles loading the playlist file
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class PlaylistLoader {
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constructor() {
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// to work with the stream-server impl
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this.playlist_src = '/list/' + window.location.pathname.slice(6);
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this.last_segment = null;
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this.refresh_interval = null;
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this.new_segments = [];
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this.init_segment_uri = null;
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this.fetch_playlist();
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}
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async fetch_playlist() {
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const response = await fetch(this.playlist_src);
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// if returns a 404, means stream ended and playlist was deleted by cleanup
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// if success, parse the file and fetch playlist again after n ms
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if (response.status == 200) {
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this.parse_playlist(await response.text());
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setTimeout(this.fetch_playlist.bind(this), this.refresh_interval * 1000);
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}
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this.parse_playlist(await response.text());
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setTimeout(this.fetch_playlist.bind(this), this.refresh_interval * 1000);
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}
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// degraded m3u8 parsing
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// impl only cares about segment uris, the target duration length
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// assumes this is not the main manifest file so no switching
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// assumes init fragment is init.mp4
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parse_playlist(playlist_content) {
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let lines = playlist_content.split('\n');
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let segments = [];
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let segment_block_flag = this.last_segment === null ? false : true; // for first passthrough
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let segment_block_flag = this.last_segment === null ? false : true;
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for (let i = 0; i < lines.length; i++) {
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// sets segment fetch frequency
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if (lines[i].startsWith("#")) {
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if (lines[i].startsWith("EXT-X-TARGETDURATION", 1)) {
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this.refresh_interval = parseFloat(lines[i].split(':')[1]);
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} else if (lines[i].startsWith("EXT-X-MAP:URI", 1)) {
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this.init_segment_uri = lines[i].split('=')[1].slice(1, -1);
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}
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} else {
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if (segment_block_flag || lines[i] == '') {
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// if the current segment line contains the last "acked" segment
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// "ack" any following segments
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if (lines[i] == this.last_segment) {
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segment_block_flag = false;
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}
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@ -48,24 +32,16 @@ class PlaylistLoader {
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}
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}
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}
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// add any segments acked to the segment fetch queue
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this.new_segments = this.new_segments.concat(segments);
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if (segments.length != 0) {
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// update last acked segment to last newly acked segment if any
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this.last_segment = segments.at(-1);
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}
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}
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}
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// handles the video fetching and source buffering
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class VideoLoader {
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// entry point, should just be able to use this by adding this script:
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// <script>let x = new VideoLoader('video_tag_id');</script>
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constructor(vid_tag_id) {
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// only relevant to uri construction
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// jank to match the stream-server impl
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this.stream_key = window.location.pathname.slice(6);
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// init playlist loading as a check to see if playlist is even live
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this.playlist_loader = new PlaylistLoader();
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this.player = document.getElementById(vid_tag_id);
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this.media_source = new MediaSource();
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@ -74,12 +50,7 @@ class VideoLoader {
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}
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async prepare_buffer(_) {
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// fetch init.mp4 fragment and parse its mimetype
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// codec info is needed for MediaSource compat
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while (this.playlist_loader.init_segment_uri === null) {
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await new Promise(r => setTimeout(r, 250));
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}
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let init_frag = await this.fetch_video(this.playlist_loader.init_segment_uri);
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let init_frag = await this.fetch_video('/vid/' + this.stream_key + '/init.mp4');
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let mime = (new MP4Tree(init_frag)).get_mime();
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if (!MediaSource.isTypeSupported(mime)) {
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return;
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@ -87,45 +58,14 @@ class VideoLoader {
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this.media_buffer = this.media_source.addSourceBuffer(mime);
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this.media_buffer.mode = 'segments';
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this.media_buffer.appendBuffer(init_frag);
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await this.fetch_new_segments(); // next functions rely on some data being bufferred already
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this.resync_video();
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this.cleanup_old();
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}
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async cleanup_old() {
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// remove old segments every 1 min
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let timeout = 60000;
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// if removal cannot happen since buffer is busy, try again in a bit
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if (!this.media_buffer.updating && this.media_buffer.buffered.end(0) - 60 > this.media_buffer.buffered.start(0)) {
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// remove segments that are older than 1min behind the current end of buffer
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this.media_buffer.remove(0, this.media_buffer.buffered.end(0) - 60);
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} else {
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timeout = 250;
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}
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setTimeout(this.cleanup_old.bind(this), timeout);
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}
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async resync_video() {
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if (!this.media_buffer.updating) {
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let buffer_end = this.media_buffer.buffered.end(0);
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// if video is over 15s behind, seek to 5s behind current end.
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// not called on loop, only once on start
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if (buffer_end - this.player.currentTime > 15) {
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this.player.currentTime = buffer_end - 5;
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}
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}
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this.fetch_new_segments();
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}
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async fetch_new_segments() {
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// for each video in the new segments queue, fetch and append it
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while (this.playlist_loader.new_segments.length > 0) {
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if (!this.media_buffer.updating) {
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let segment_uri = this.playlist_loader.new_segments.shift();
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let segment_stream = await this.fetch_video(segment_uri);
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this.media_buffer.appendBuffer(segment_stream);
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}
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// wait between each append try to let processing finish
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await new Promise(r => setTimeout(r, 250));
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let segment_uri = this.playlist_loader.new_segments.shift();
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let segment_stream = await this.fetch_video(segment_uri);
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this.media_buffer.appendBuffer(segment_stream);
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}
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setTimeout(this.fetch_new_segments.bind(this), this.playlist_loader.refresh_interval * 1000);
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}
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117
mp4-tree.js
117
mp4-tree.js
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@ -1,4 +1,3 @@
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// add a getString to make reading box headers easier
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DataView.prototype.getString = function(offset, length) {
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text = '';
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let end = offset + length;
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@ -8,137 +7,52 @@ DataView.prototype.getString = function(offset, length) {
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return text;
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}
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// mp4 tree traverser, as is only good for getting avc1 + mp4a codec info.
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// relevant tree parts:
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// root
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// |-moov
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// |-trak
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// |-mdia
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// |-minf
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// |-vmhd
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// |-stbl
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// |-stsd
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// |-avc1
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// |-avcC // has video codec profile
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// |-trak
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// |-mdia
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// |-minf
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// |-smhd
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// |-stbl
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// |-stsd
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// |-mp4a
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// |-esds // has audio codec profile
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//
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// headers are 4byte len + 4byte name string
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// most details taken from https://web.archive.org/web/20180219054429/http://l.web.umkc.edu/lizhu/teaching/2016sp.video-communication/ref/mp4.pdf
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// avc1 and mp4a specific header offsets from https://xhelmboyx.tripod.com/formats/mp4-layout.txt
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class MP4Tree {
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constructor(data) {
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this.data = new DataView(data);
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this.codecs = [];
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this.idx = 0; // current byte index in data
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this.idx = 0;
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this.parse_codecs();
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}
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parse_codecs() {
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this.parse_into('moov', 8);
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// loop over all traks (can handle pure audio, pure video, both, multiple)
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// only doing h264 video since thats all I can check currently doing
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// transcoding and running obs together with cpu usage
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while (this.idx < this.data.byteLength) {
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if (!this.parse_until('trak')) { // if no more tracks in file
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if (!this.parse_until('trak')) {
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break;
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}
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let curr_track_end = this.idx + this.read_next_head().len;
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const curr_track_end = this.idx + this.read_next_head().len;
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this.idx += 8
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this.parse_into('mdia', 8);
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this.parse_into('minf', 8);
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let track_type_head = this.read_next_head().name;
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const track_type_head = this.read_next_head().name;
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if (track_type_head == 'smhd' || track_type_head == 'vmhd') {
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this.parse_into('stbl', 8);
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this.parse_into('stsd', 16);
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let media_sample = this.read_next_head().name;
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const media_sample = this.read_next_head().name;
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if (media_sample == 'avc1') {
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this.parse_avc1();
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} else if (media_sample == 'vp09') {
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this.parse_vp09();
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} else if (media_sample == 'av01') {
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this.parse_av01();
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} else if (media_sample == 'mp4a') {
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this.parse_mp4a();
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} else if (media_sample == 'Opus') {
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this.codecs.push('opus');
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} else {
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this.codecs.push('unsup codec');
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}
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}
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this.idx = curr_track_end; // always skip to end of current processed track
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this.idx = curr_track_end;
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}
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}
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parse_avc1() {
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this.parse_into('avc1', 86); // avc1 has 78 bytes of frame metadata to skip
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this.parse_into('avc1', 86);
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this.parse_into('avcC', 8);
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// ex, 01 64 00 1f
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// 01 is avc version (always 1, bit-and it off)
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// rest is video codec profile, rep as hex
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let avc_profile = (this.data.getUint32(this.idx) & 0xffffff).toString(16);
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const avc_profile = (this.data.getUint32(this.idx) & 0xffffff).toString(16);
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this.codecs.push('avc1.' + avc_profile);
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}
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parse_vp09() {
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this.parse_into('vp09', 86);
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this.parse_into('vpcC', 12);
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let profile = this.data.getUint8(this.idx).toString().padStart(2, "0");
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let level = this.data.getUint8(this.idx + 1).toString();
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let depth = (this.data.getUint8(this.idx + 2) >> 4).toString().padStart(2, "0");
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this.codecs.push(["vp09", profile, level, depth].join('.'));
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}
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parse_av01() {
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this.parse_into('av01', 86);
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this.parse_into('av1C', 8);
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let tmp = this.data.getUint8(this.idx + 1);
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let profile = tmp >> 5;
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let level = tmp & 0x1f;
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let level_profile, bit_depth;
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tmp = this.data.getUint8(this.idx + 2);
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switch (tmp >> 7) {
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case 0:
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level_profile = "M";
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break;
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case 1:
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level_profile = "H";
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break;
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default:
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level_profile = "";
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}
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let depth_bits = (tmp >> 5) & 0x3;
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switch (depth_bits) {
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case 0:
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bit_depth = "08";
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break;
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case 1:
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bit_depth = "12";
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break;
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case 2:
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bit_depth = "10";
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break;
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default:
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bit_depth = "0";
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break;
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}
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this.codecs.push(["av01", profile, level.toString().padStart(2, "0") + level_profile, bit_depth].join('.'))
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}
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parse_mp4a() {
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this.parse_into('mp4a', 36); // 28 bytes of subboxes with unclear offsets
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this.parse_into('mp4a', 36);
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this.parse_into('esds', 12);
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// mp4a is as mp4a.40.2
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// oti has defined position, rep as hex
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// aot as a subtype is defined as 5 bits of the fetched byte, rep as dec
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let oti = this.data.getUint8(this.idx + 13).toString(16);
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let aot = (this.data.getUint8(this.idx + 31) >> 3).toString(10);
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const oti = this.data.getUint8(this.idx + 13).toString(16);
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const aot = (this.data.getUint8(this.idx + 31) >> 3).toString(10);
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this.codecs.push(["mp4a", oti, aot].join('.'));
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}
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@ -149,16 +63,12 @@ class MP4Tree {
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get_codec_string() {
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return this.codecs.join(', ');
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}
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// find the given box, also descend into its child box depth
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// offset is almost always 8, sometimes 12 or 16, defined in spec not file
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parse_into(name, header_offset) {
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this.parse_until(name);
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this.idx += header_offset;
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}
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// find the box with the given name at the current box depth
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// acts as though the current box extends to EOF.
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parse_until(name) {
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let curr_head = null;
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while (this.idx + 8 < this.data.byteLength) {
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return false;
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}
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// read the mp4 box header as if the idx is positioned there
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read_next_head() {
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return {"len": this.data.getUint32(this.idx), "name": this.data.getString(this.idx + 4, 4)};
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}
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