193 lines
5.6 KiB
TypeScript
193 lines
5.6 KiB
TypeScript
import { FfprobeData } from 'fluent-ffmpeg'
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import { getMaxBitrate } from '@shared/core-utils'
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import { VideoResolution, VideoTranscodingFPS } from '../../shared/models/videos'
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import { CONFIG } from '../initializers/config'
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import { VIDEO_TRANSCODING_FPS } from '../initializers/constants'
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import { logger } from './logger'
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import {
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canDoQuickAudioTranscode,
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ffprobePromise,
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getDurationFromVideoFile,
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getAudioStream,
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getMaxAudioBitrate,
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getMetadataFromFile,
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getVideoFileBitrate,
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getVideoFileFPS,
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getVideoFileResolution,
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getVideoStreamFromFile,
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getVideoStreamSize
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} from '@shared/extra-utils/ffprobe'
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/**
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*
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* Helpers to run ffprobe and extract data from the JSON output
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*
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*/
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async function getVideoStreamCodec (path: string) {
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const videoStream = await getVideoStreamFromFile(path)
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if (!videoStream) return ''
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const videoCodec = videoStream.codec_tag_string
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if (videoCodec === 'vp09') return 'vp09.00.50.08'
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if (videoCodec === 'hev1') return 'hev1.1.6.L93.B0'
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const baseProfileMatrix = {
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avc1: {
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High: '6400',
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Main: '4D40',
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Baseline: '42E0'
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},
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av01: {
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High: '1',
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Main: '0',
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Professional: '2'
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}
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}
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let baseProfile = baseProfileMatrix[videoCodec][videoStream.profile]
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if (!baseProfile) {
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logger.warn('Cannot get video profile codec of %s.', path, { videoStream })
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baseProfile = baseProfileMatrix[videoCodec]['High'] // Fallback
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}
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if (videoCodec === 'av01') {
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const level = videoStream.level
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// Guess the tier indicator and bit depth
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return `${videoCodec}.${baseProfile}.${level}M.08`
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}
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// Default, h264 codec
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let level = videoStream.level.toString(16)
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if (level.length === 1) level = `0${level}`
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return `${videoCodec}.${baseProfile}${level}`
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}
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async function getAudioStreamCodec (path: string, existingProbe?: FfprobeData) {
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const { audioStream } = await getAudioStream(path, existingProbe)
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if (!audioStream) return ''
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const audioCodecName = audioStream.codec_name
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if (audioCodecName === 'opus') return 'opus'
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if (audioCodecName === 'vorbis') return 'vorbis'
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if (audioCodecName === 'aac') return 'mp4a.40.2'
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logger.warn('Cannot get audio codec of %s.', path, { audioStream })
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return 'mp4a.40.2' // Fallback
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}
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function computeLowerResolutionsToTranscode (videoFileResolution: number, type: 'vod' | 'live') {
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const configResolutions = type === 'vod'
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? CONFIG.TRANSCODING.RESOLUTIONS
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: CONFIG.LIVE.TRANSCODING.RESOLUTIONS
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const resolutionsEnabled: number[] = []
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// Put in the order we want to proceed jobs
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const resolutions: VideoResolution[] = [
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VideoResolution.H_NOVIDEO,
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VideoResolution.H_480P,
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VideoResolution.H_360P,
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VideoResolution.H_720P,
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VideoResolution.H_240P,
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VideoResolution.H_144P,
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VideoResolution.H_1080P,
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VideoResolution.H_1440P,
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VideoResolution.H_4K
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]
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for (const resolution of resolutions) {
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if (configResolutions[resolution + 'p'] === true && videoFileResolution > resolution) {
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resolutionsEnabled.push(resolution)
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}
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}
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return resolutionsEnabled
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}
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async function canDoQuickTranscode (path: string): Promise<boolean> {
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if (CONFIG.TRANSCODING.PROFILE !== 'default') return false
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const probe = await ffprobePromise(path)
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return await canDoQuickVideoTranscode(path, probe) &&
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await canDoQuickAudioTranscode(path, probe)
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}
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async function canDoQuickVideoTranscode (path: string, probe?: FfprobeData): Promise<boolean> {
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const videoStream = await getVideoStreamFromFile(path, probe)
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const fps = await getVideoFileFPS(path, probe)
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const bitRate = await getVideoFileBitrate(path, probe)
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const resolutionData = await getVideoFileResolution(path, probe)
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// If ffprobe did not manage to guess the bitrate
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if (!bitRate) return false
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// check video params
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if (videoStream == null) return false
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if (videoStream['codec_name'] !== 'h264') return false
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if (videoStream['pix_fmt'] !== 'yuv420p') return false
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if (fps < VIDEO_TRANSCODING_FPS.MIN || fps > VIDEO_TRANSCODING_FPS.MAX) return false
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if (bitRate > getMaxBitrate({ ...resolutionData, fps })) return false
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return true
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}
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function getClosestFramerateStandard <K extends keyof Pick<VideoTranscodingFPS, 'HD_STANDARD' | 'STANDARD'>> (fps: number, type: K) {
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return VIDEO_TRANSCODING_FPS[type].slice(0)
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.sort((a, b) => fps % a - fps % b)[0]
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}
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function computeFPS (fpsArg: number, resolution: VideoResolution) {
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let fps = fpsArg
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if (
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// On small/medium resolutions, limit FPS
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resolution !== undefined &&
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resolution < VIDEO_TRANSCODING_FPS.KEEP_ORIGIN_FPS_RESOLUTION_MIN &&
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fps > VIDEO_TRANSCODING_FPS.AVERAGE
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) {
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// Get closest standard framerate by modulo: downsampling has to be done to a divisor of the nominal fps value
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fps = getClosestFramerateStandard(fps, 'STANDARD')
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}
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// Hard FPS limits
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if (fps > VIDEO_TRANSCODING_FPS.MAX) fps = getClosestFramerateStandard(fps, 'HD_STANDARD')
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if (fps < VIDEO_TRANSCODING_FPS.MIN) {
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throw new Error(`Cannot compute FPS because ${fps} is lower than our minimum value ${VIDEO_TRANSCODING_FPS.MIN}`)
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}
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return fps
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}
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// ---------------------------------------------------------------------------
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export {
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getVideoStreamCodec,
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getAudioStreamCodec,
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getVideoStreamSize,
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getVideoFileResolution,
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getMetadataFromFile,
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getMaxAudioBitrate,
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getVideoStreamFromFile,
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getDurationFromVideoFile,
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getAudioStream,
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computeFPS,
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getVideoFileFPS,
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ffprobePromise,
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getClosestFramerateStandard,
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computeLowerResolutionsToTranscode,
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getVideoFileBitrate,
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canDoQuickTranscode,
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canDoQuickVideoTranscode,
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canDoQuickAudioTranscode
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}
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