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using System;
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using System.Collections.Generic;
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using System.Linq;
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using MediaBrowser.Model.Entities;
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using System.IO;
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namespace MediaBrowser.Api.HttpHandlers
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{
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/// <summary>
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/// Supported output formats: mkv,m4v,mp4,asf,wmv,mov,webm,ogv,3gp,avi,ts,flv
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/// </summary>
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class VideoHandler : BaseMediaHandler<Video>
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{
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/// <summary>
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/// We can output these files directly, but we can't encode them
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/// </summary>
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protected override IEnumerable<string> UnsupportedOutputEncodingFormats
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{
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get
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{
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return new string[] { "mp4", "wmv", "3gp", "avi", "ogv", "mov", "m4v", "mkv" };
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}
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}
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protected override bool RequiresConversion()
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{
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string currentFormat = Path.GetExtension(LibraryItem.Path).Replace(".", string.Empty);
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// For now we won't allow these to pass through.
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// Later we'll add some intelligence to allow it when possible
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if (currentFormat.Equals("mp4", StringComparison.OrdinalIgnoreCase) || currentFormat.Equals("mkv", StringComparison.OrdinalIgnoreCase) || currentFormat.Equals("m4v", StringComparison.OrdinalIgnoreCase))
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{
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return true;
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}
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if (base.RequiresConversion())
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{
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return true;
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}
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AudioStream audio = LibraryItem.AudioStreams.FirstOrDefault();
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if (audio != null)
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{
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// If the number of channels is greater than our desired channels, we need to transcode
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if (AudioChannels.HasValue && AudioChannels.Value < audio.Channels)
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{
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return true;
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}
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}
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// Yay
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return false;
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}
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/// <summary>
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/// Translates the file extension to the format param that follows "-f" on the ffmpeg command line
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/// </summary>
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private string GetFFMpegOutputFormat(string outputFormat)
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{
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if (outputFormat.Equals("mkv", StringComparison.OrdinalIgnoreCase))
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{
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return "matroska";
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}
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else if (outputFormat.Equals("ts", StringComparison.OrdinalIgnoreCase))
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{
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return "mpegts";
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}
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else if (outputFormat.Equals("ogv", StringComparison.OrdinalIgnoreCase))
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{
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return "ogg";
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}
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return outputFormat;
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}
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/// <summary>
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/// Creates arguments to pass to ffmpeg
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/// </summary>
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protected override string GetCommandLineArguments()
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{
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List<string> audioTranscodeParams = new List<string>();
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string outputFormat = GetConversionOutputFormat();
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return string.Format("-i \"{0}\" -threads 0 {1} {2} -f {3} -",
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LibraryItem.Path,
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GetVideoArguments(outputFormat),
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GetAudioArguments(outputFormat),
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GetFFMpegOutputFormat(outputFormat)
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);
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}
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private string GetVideoArguments(string outputFormat)
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{
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string codec = GetVideoCodec(outputFormat);
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string args = "-vcodec " + codec;
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return args;
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}
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private string GetAudioArguments(string outputFormat)
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{
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string codec = GetAudioCodec(outputFormat);
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string args = "-acodec " + codec;
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if (!codec.Equals("copy", StringComparison.OrdinalIgnoreCase))
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{
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int? channels = GetNumAudioChannels(codec);
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if (channels.HasValue)
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{
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args += " -ac " + channels.Value;
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}
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if (AudioSampleRate.HasValue)
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{
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args += " -ar " + AudioSampleRate.Value;
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}
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}
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return args;
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}
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private string GetVideoCodec(string outputFormat)
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{
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if (outputFormat.Equals("webm"))
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{
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// Per webm specification, it must be vpx
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return "libvpx";
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}
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else if (outputFormat.Equals("flv"))
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{
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return "libx264";
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}
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else if (outputFormat.Equals("ts"))
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{
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return "libx264";
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}
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else if (outputFormat.Equals("asf"))
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{
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return "wmv2";
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}
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return "copy";
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}
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private string GetAudioCodec(string outputFormat)
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{
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if (outputFormat.Equals("webm"))
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{
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// Per webm specification, it must be vorbis
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return "libvorbis";
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}
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else if (outputFormat.Equals("flv"))
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{
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return "libvo_aacenc";
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}
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else if (outputFormat.Equals("ts"))
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{
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return "libvo_aacenc";
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}
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else if (outputFormat.Equals("asf"))
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{
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return "libvo_aacenc";
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}
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return "copy";
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}
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private int? GetNumAudioChannels(string audioCodec)
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{
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if (audioCodec.Equals("libvo_aacenc"))
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{
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// libvo_aacenc currently only supports two channel output
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return 2;
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}
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return AudioChannels;
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}
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}
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}
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