661 lines
20 KiB
JavaScript
661 lines
20 KiB
JavaScript
/*jshint node:true*/
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'use strict';
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var spawn = require('child_process').spawn;
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var async = require('../async');
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var utils = require('./utils');
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/*
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*! Processor methods
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*/
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/**
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* Run ffprobe asynchronously and store data in command
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*
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* @param {FfmpegCommand} command
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* @private
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*/
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function runFfprobe(command) {
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const inputProbeIndex = 0;
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if (command._inputs[inputProbeIndex].isStream) {
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// Don't probe input streams as this will consume them
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return;
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}
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command.ffprobe(inputProbeIndex, function (err, data) {
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command._ffprobeData = data;
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});
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}
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module.exports = function (proto) {
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/**
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* Emitted just after ffmpeg has been spawned.
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*
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* @event FfmpegCommand#start
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* @param {String} command ffmpeg command line
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*/
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/**
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* Emitted when ffmpeg reports progress information
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*
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* @event FfmpegCommand#progress
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* @param {Object} progress progress object
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* @param {Number} progress.frames number of frames transcoded
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* @param {Number} progress.currentFps current processing speed in frames per second
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* @param {Number} progress.currentKbps current output generation speed in kilobytes per second
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* @param {Number} progress.targetSize current output file size
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* @param {String} progress.timemark current video timemark
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* @param {Number} [progress.percent] processing progress (may not be available depending on input)
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*/
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/**
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* Emitted when ffmpeg outputs to stderr
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*
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* @event FfmpegCommand#stderr
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* @param {String} line stderr output line
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*/
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/**
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* Emitted when ffmpeg reports input codec data
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*
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* @event FfmpegCommand#codecData
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* @param {Object} codecData codec data object
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* @param {String} codecData.format input format name
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* @param {String} codecData.audio input audio codec name
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* @param {String} codecData.audio_details input audio codec parameters
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* @param {String} codecData.video input video codec name
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* @param {String} codecData.video_details input video codec parameters
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*/
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/**
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* Emitted when an error happens when preparing or running a command
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*
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* @event FfmpegCommand#error
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* @param {Error} error error object, with optional properties 'inputStreamError' / 'outputStreamError' for errors on their respective streams
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* @param {String|null} stdout ffmpeg stdout, unless outputting to a stream
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* @param {String|null} stderr ffmpeg stderr
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*/
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/**
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* Emitted when a command finishes processing
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*
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* @event FfmpegCommand#end
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* @param {Array|String|null} [filenames|stdout] generated filenames when taking screenshots, ffmpeg stdout when not outputting to a stream, null otherwise
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* @param {String|null} stderr ffmpeg stderr
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*/
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/**
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* Spawn an ffmpeg process
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*
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* The 'options' argument may contain the following keys:
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* - 'niceness': specify process niceness, ignored on Windows (default: 0)
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* - `cwd`: change working directory
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* - 'captureStdout': capture stdout and pass it to 'endCB' as its 2nd argument (default: false)
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* - 'stdoutLines': override command limit (default: use command limit)
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*
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* The 'processCB' callback, if present, is called as soon as the process is created and
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* receives a nodejs ChildProcess object. It may not be called at all if an error happens
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* before spawning the process.
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*
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* The 'endCB' callback is called either when an error occurs or when the ffmpeg process finishes.
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*
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* @method FfmpegCommand#_spawnFfmpeg
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* @param {Array} args ffmpeg command line argument list
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* @param {Object} [options] spawn options (see above)
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* @param {Function} [processCB] callback called with process object and stdout/stderr ring buffers when process has been created
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* @param {Function} endCB callback called with error (if applicable) and stdout/stderr ring buffers when process finished
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* @private
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*/
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proto._spawnFfmpeg = function (args, options, processCB, endCB) {
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// Enable omitting options
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if (typeof options === 'function') {
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endCB = processCB;
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processCB = options;
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options = {};
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}
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// Enable omitting processCB
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if (typeof endCB === 'undefined') {
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endCB = processCB;
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processCB = function () { };
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}
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var maxLines = 'stdoutLines' in options ? options.stdoutLines : this.options.stdoutLines;
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// Find ffmpeg
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this._getFfmpegPath(function (err, command) {
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if (err) {
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return endCB(err);
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} else if (!command || command.length === 0) {
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return endCB(new Error('Cannot find ffmpeg'));
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}
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// Apply niceness
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if (options.niceness && options.niceness !== 0 && !utils.isWindows) {
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args.unshift('-n', options.niceness, command);
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command = 'nice';
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}
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var stdoutRing = utils.linesRing(maxLines);
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var stdoutClosed = false;
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var stderrRing = utils.linesRing(maxLines);
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var stderrClosed = false;
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// Spawn process
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var ffmpegProc = spawn(command, args, options);
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if (ffmpegProc.stderr) {
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ffmpegProc.stderr.setEncoding('utf8');
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}
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ffmpegProc.on('error', function (err) {
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endCB(err);
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});
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// Ensure we wait for captured streams to end before calling endCB
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var exitError = null;
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function handleExit(err) {
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if (err) {
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exitError = err;
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}
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if (processExited && (stdoutClosed || !options.captureStdout) && stderrClosed) {
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endCB(exitError, stdoutRing, stderrRing);
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}
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}
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// Handle process exit
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var processExited = false;
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ffmpegProc.on('exit', function (code, signal) {
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processExited = true;
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if (signal) {
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handleExit(new Error('ffmpeg was killed with signal ' + signal));
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} else if (code) {
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handleExit(new Error('ffmpeg exited with code ' + code));
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} else {
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handleExit();
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}
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});
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// Capture stdout if specified
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if (options.captureStdout) {
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ffmpegProc.stdout.on('data', function (data) {
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stdoutRing.append(data);
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});
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ffmpegProc.stdout.on('close', function () {
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stdoutRing.close();
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stdoutClosed = true;
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handleExit();
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});
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}
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// Capture stderr if specified
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ffmpegProc.stderr.on('data', function (data) {
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stderrRing.append(data);
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});
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ffmpegProc.stderr.on('close', function () {
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stderrRing.close();
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stderrClosed = true;
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handleExit();
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});
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// Call process callback
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processCB(ffmpegProc, stdoutRing, stderrRing);
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});
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};
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/**
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* Build the argument list for an ffmpeg command
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*
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* @method FfmpegCommand#_getArguments
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* @return argument list
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* @private
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*/
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proto._getArguments = function () {
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var complexFilters = this._complexFilters.get();
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var fileOutput = this._outputs.some(function (output) {
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return output.isFile;
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});
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return [].concat(
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// Inputs and input options
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this._inputs.reduce(function (args, input) {
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var source = (typeof input.source === 'string') ? input.source : 'pipe:0';
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// For each input, add input options, then '-i <source>'
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return args.concat(
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input.options.get(),
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['-i', source]
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);
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}, []),
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// Global options
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this._global.get(),
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// Overwrite if we have file outputs
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fileOutput ? ['-y'] : [],
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// Complex filters
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complexFilters,
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// Outputs, filters and output options
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this._outputs.reduce(function (args, output) {
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var sizeFilters = utils.makeFilterStrings(output.sizeFilters.get());
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var audioFilters = output.audioFilters.get();
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var videoFilters = output.videoFilters.get().concat(sizeFilters);
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var outputArg;
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if (!output.target) {
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outputArg = [];
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} else if (typeof output.target === 'string') {
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outputArg = [output.target];
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} else {
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outputArg = ['pipe:1'];
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}
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return args.concat(
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output.audio.get(),
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audioFilters.length ? ['-filter:a', audioFilters.join(',')] : [],
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output.video.get(),
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videoFilters.length ? ['-filter:v', videoFilters.join(',')] : [],
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output.options.get(),
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outputArg
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);
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}, [])
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);
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};
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/**
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* Prepare execution of an ffmpeg command
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*
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* Checks prerequisites for the execution of the command (codec/format availability, flvtool...),
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* then builds the argument list for ffmpeg and pass them to 'callback'.
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*
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* @method FfmpegCommand#_prepare
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* @param {Function} callback callback with signature (err, args)
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* @param {Boolean} [readMetadata=false] read metadata before processing
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* @private
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*/
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proto._prepare = function (callback, readMetadata) {
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var self = this;
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async.waterfall([
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// Check codecs and formats
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function (cb) {
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self._checkCapabilities(cb);
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},
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// Read metadata if required
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function (cb) {
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if (!readMetadata) {
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return cb();
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}
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self.ffprobe(0, function (err, data) {
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if (!err) {
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self._ffprobeData = data;
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}
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cb();
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});
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},
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// Check for flvtool2/flvmeta if necessary
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function (cb) {
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var flvmeta = self._outputs.some(function (output) {
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// Remove flvmeta flag on non-file output
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if (output.flags.flvmeta && !output.isFile) {
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self.logger.warn('Updating flv metadata is only supported for files');
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output.flags.flvmeta = false;
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}
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return output.flags.flvmeta;
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});
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if (flvmeta) {
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self._getFlvtoolPath(function (err) {
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cb(err);
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});
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} else {
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cb();
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}
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},
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// Build argument list
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function (cb) {
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var args;
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try {
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args = self._getArguments();
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} catch (e) {
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return cb(e);
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}
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cb(null, args);
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},
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// Add "-strict experimental" option where needed
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function (args, cb) {
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self.availableEncoders(function (err, encoders) {
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for (var i = 0; i < args.length; i++) {
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if (args[i] === '-acodec' || args[i] === '-vcodec') {
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i++;
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if ((args[i] in encoders) && encoders[args[i]].experimental) {
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args.splice(i + 1, 0, '-strict', 'experimental');
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i += 2;
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}
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}
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}
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cb(null, args);
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});
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}
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], callback);
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if (!readMetadata) {
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// Read metadata as soon as 'progress' listeners are added
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if (this.listeners('progress').length > 0) {
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// Read metadata in parallel
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runFfprobe(this);
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} else {
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// Read metadata as soon as the first 'progress' listener is added
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this.once('newListener', function (event) {
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if (event === 'progress') {
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runFfprobe(this);
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}
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});
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}
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}
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};
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/**
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* Run ffmpeg command
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*
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* @method FfmpegCommand#run
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* @category Processing
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* @aliases exec,execute
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*/
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proto.exec =
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proto.execute =
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proto.run = function () {
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var self = this;
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// Check if at least one output is present
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var outputPresent = this._outputs.some(function (output) {
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return 'target' in output;
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});
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if (!outputPresent) {
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throw new Error('No output specified');
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}
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// Get output stream if any
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var outputStream = this._outputs.filter(function (output) {
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return typeof output.target !== 'string';
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})[0];
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// Get input stream if any
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var inputStream = this._inputs.filter(function (input) {
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return typeof input.source !== 'string';
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})[0];
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// Ensure we send 'end' or 'error' only once
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var ended = false;
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function emitEnd(err, stdout, stderr) {
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if (!ended) {
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ended = true;
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if (err) {
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self.emit('error', err, stdout, stderr);
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} else {
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self.emit('end', stdout, stderr);
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}
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}
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}
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self._prepare(function (err, args) {
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if (err) {
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return emitEnd(err);
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}
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// Run ffmpeg
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self._spawnFfmpeg(
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args,
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{
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captureStdout: !outputStream,
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niceness: self.options.niceness,
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cwd: self.options.cwd,
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windowsHide: true
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},
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function processCB(ffmpegProc, stdoutRing, stderrRing) {
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self.ffmpegProc = ffmpegProc;
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self.emit('start', 'ffmpeg ' + args.join(' '));
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// Pipe input stream if any
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if (inputStream) {
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inputStream.source.on('error', function (err) {
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var reportingErr = new Error('Input stream error: ' + err.message);
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reportingErr.inputStreamError = err;
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emitEnd(reportingErr);
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ffmpegProc.kill();
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});
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inputStream.source.resume();
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inputStream.source.pipe(ffmpegProc.stdin);
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// Set stdin error handler on ffmpeg (prevents nodejs catching the error, but
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// ffmpeg will fail anyway, so no need to actually handle anything)
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ffmpegProc.stdin.on('error', function () { });
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}
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// Setup timeout if requested
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if (self.options.timeout) {
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self.processTimer = setTimeout(function () {
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var msg = 'process ran into a timeout (' + self.options.timeout + 's)';
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emitEnd(new Error(msg), stdoutRing.get(), stderrRing.get());
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ffmpegProc.kill();
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}, self.options.timeout * 1000);
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}
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if (outputStream) {
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// Pipe ffmpeg stdout to output stream
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ffmpegProc.stdout.pipe(outputStream.target, outputStream.pipeopts);
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// Handle output stream events
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outputStream.target.on('close', function () {
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self.logger.debug('Output stream closed, scheduling kill for ffmpeg process');
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// Don't kill process yet, to give a chance to ffmpeg to
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// terminate successfully first This is necessary because
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// under load, the process 'exit' event sometimes happens
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// after the output stream 'close' event.
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setTimeout(function () {
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emitEnd(new Error('Output stream closed'));
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ffmpegProc.kill();
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}, 20);
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});
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outputStream.target.on('error', function (err) {
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self.logger.debug('Output stream error, killing ffmpeg process');
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var reportingErr = new Error('Output stream error: ' + err.message);
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reportingErr.outputStreamError = err;
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emitEnd(reportingErr, stdoutRing.get(), stderrRing.get());
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ffmpegProc.kill('SIGKILL');
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});
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}
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// Setup stderr handling
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if (stderrRing) {
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// 'stderr' event
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if (self.listeners('stderr').length) {
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stderrRing.callback(function (line) {
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self.emit('stderr', line);
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});
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}
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// 'codecData' event
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if (self.listeners('codecData').length) {
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var codecDataSent = false;
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var codecObject = {};
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stderrRing.callback(function (line) {
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if (!codecDataSent)
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codecDataSent = utils.extractCodecData(self, line, codecObject);
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});
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}
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// 'progress' event
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if (self.listeners('progress').length) {
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stderrRing.callback(function (line) {
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utils.extractProgress(self, line);
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});
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}
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}
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},
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function endCB(err, stdoutRing, stderrRing) {
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clearTimeout(self.processTimer);
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delete self.ffmpegProc;
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if (err) {
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if (err.message.match(/ffmpeg exited with code/)) {
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// Add ffmpeg error message
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err.message += ': ' + utils.extractError(stderrRing.get());
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}
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emitEnd(err, stdoutRing.get(), stderrRing.get());
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} else {
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// Find out which outputs need flv metadata
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var flvmeta = self._outputs.filter(function (output) {
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return output.flags.flvmeta;
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});
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if (flvmeta.length) {
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self._getFlvtoolPath(function (err, flvtool) {
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if (err) {
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return emitEnd(err);
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}
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async.each(
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flvmeta,
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function (output, cb) {
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spawn(flvtool, ['-U', output.target], { windowsHide: true })
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.on('error', function (err) {
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cb(new Error('Error running ' + flvtool + ' on ' + output.target + ': ' + err.message));
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})
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.on('exit', function (code, signal) {
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if (code !== 0 || signal) {
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cb(
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new Error(flvtool + ' ' +
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(signal ? 'received signal ' + signal
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: 'exited with code ' + code)) +
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' when running on ' + output.target
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);
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} else {
|
|
cb();
|
|
}
|
|
});
|
|
},
|
|
function (err) {
|
|
if (err) {
|
|
emitEnd(err);
|
|
} else {
|
|
emitEnd(null, stdoutRing.get(), stderrRing.get());
|
|
}
|
|
}
|
|
);
|
|
});
|
|
} else {
|
|
emitEnd(null, stdoutRing.get(), stderrRing.get());
|
|
}
|
|
}
|
|
}
|
|
);
|
|
});
|
|
|
|
return this;
|
|
};
|
|
|
|
|
|
/**
|
|
* Renice current and/or future ffmpeg processes
|
|
*
|
|
* Ignored on Windows platforms.
|
|
*
|
|
* @method FfmpegCommand#renice
|
|
* @category Processing
|
|
*
|
|
* @param {Number} [niceness=0] niceness value between -20 (highest priority) and 20 (lowest priority)
|
|
* @return FfmpegCommand
|
|
*/
|
|
proto.renice = function (niceness) {
|
|
if (!utils.isWindows) {
|
|
niceness = niceness || 0;
|
|
|
|
if (niceness < -20 || niceness > 20) {
|
|
this.logger.warn('Invalid niceness value: ' + niceness + ', must be between -20 and 20');
|
|
}
|
|
|
|
niceness = Math.min(20, Math.max(-20, niceness));
|
|
this.options.niceness = niceness;
|
|
|
|
if (this.ffmpegProc) {
|
|
var logger = this.logger;
|
|
var pid = this.ffmpegProc.pid;
|
|
var renice = spawn('renice', [niceness, '-p', pid], { windowsHide: true });
|
|
|
|
renice.on('error', function (err) {
|
|
logger.warn('could not renice process ' + pid + ': ' + err.message);
|
|
});
|
|
|
|
renice.on('exit', function (code, signal) {
|
|
if (signal) {
|
|
logger.warn('could not renice process ' + pid + ': renice was killed by signal ' + signal);
|
|
} else if (code) {
|
|
logger.warn('could not renice process ' + pid + ': renice exited with ' + code);
|
|
} else {
|
|
logger.info('successfully reniced process ' + pid + ' to ' + niceness + ' niceness');
|
|
}
|
|
});
|
|
}
|
|
}
|
|
|
|
return this;
|
|
};
|
|
|
|
|
|
/**
|
|
* Kill current ffmpeg process, if any
|
|
*
|
|
* @method FfmpegCommand#kill
|
|
* @category Processing
|
|
*
|
|
* @param {String} [signal=SIGKILL] signal name
|
|
* @return FfmpegCommand
|
|
*/
|
|
proto.kill = function (signal) {
|
|
if (!this.ffmpegProc) {
|
|
this.logger.warn('No running ffmpeg process, cannot send signal');
|
|
} else {
|
|
this.ffmpegProc.kill(signal || 'SIGKILL');
|
|
}
|
|
|
|
return this;
|
|
};
|
|
};
|