2018-03-25 17:24:27 -04:00
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using Newtonsoft.Json;
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using System;
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using System.Collections.Generic;
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using System.ComponentModel;
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using System.Runtime.InteropServices;
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using System.Text;
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using WindowsMediaLib;
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using WindowsMediaLib.Defs;
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namespace CUETools.Codecs.WMA
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{
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[JsonObject(MemberSerialization.OptIn)]
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public abstract class EncoderSettings : IAudioEncoderSettings
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{
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#region IAudioEncoderSettings implementation
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[Browsable(false)]
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public string Extension => "wma";
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[Browsable(false)]
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public abstract string Name { get; }
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[Browsable(false)]
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public Type EncoderType => typeof(AudioEncoder);
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[Browsable(false)]
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public abstract bool Lossless { get; }
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[Browsable(false)]
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public int Priority => 1;
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[Browsable(false)]
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public string SupportedModes =>
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string.Join(" ", GetFormats(null).ConvertAll(s => s.modeName).ToArray());
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[Browsable(false)]
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public string DefaultMode =>
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GetFormats(null).ConvertAll(s => s.modeName).FindLast(x => true) ?? "";
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[Browsable(false)]
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[DefaultValue("")]
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[JsonProperty]
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public string EncoderMode { get; set; }
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[Browsable(false)]
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public AudioPCMConfig PCM { get; set; }
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[Browsable(false)]
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public int BlockSize { get; set; }
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[Browsable(false)]
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[DefaultValue(4096)]
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public int Padding { get; set; }
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public IAudioEncoderSettings Clone()
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{
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return MemberwiseClone() as IAudioEncoderSettings;
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}
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#endregion
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public EncoderSettings()
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{
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this.Init();
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}
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protected Guid m_subType;
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protected bool m_vbr = true;
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public IWMWriter GetWriter()
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{
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IWMProfileManager pProfileManager = null;
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try
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{
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WMUtils.WMCreateProfileManager(out pProfileManager);
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var pCodecInfo3 = pProfileManager as IWMCodecInfo3;
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// We have to use the same pProfileManager for enumeration,
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// because it calls SetCodecEnumerationSetting, so chosenFormat.format
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// would not point to the same format for a pProfileManager
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// with different (default) settings, and GetCodecFormat
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// would return the wrong stream config.
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var formats = GetFormats(pProfileManager);
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if (this.EncoderMode != "")
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formats.RemoveAll(fmt => fmt.modeName != this.EncoderMode);
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if (formats.Count < 1)
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throw new NotSupportedException("codec/format not found");
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if (formats.Count > 1)
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throw new NotSupportedException("codec/format ambiguous");
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var chosenFormat = formats[0];
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IWMStreamConfig pStreamConfig1;
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pCodecInfo3.GetCodecFormat(MediaType.Audio, chosenFormat.codec, chosenFormat.format, out pStreamConfig1);
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try
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{
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pStreamConfig1.SetStreamNumber(1);
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IWMProfile pProfile;
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pProfileManager.CreateEmptyProfile(WMVersion.V9_0, out pProfile);
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try
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{
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pProfile.AddStream(pStreamConfig1);
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IWMWriter pWriter;
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WMUtils.WMCreateWriter(IntPtr.Zero, out pWriter);
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try
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{
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pWriter.SetProfile(pProfile);
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}
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catch (Exception ex)
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{
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Marshal.ReleaseComObject(pWriter);
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throw ex;
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}
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return pWriter;
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}
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finally
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{
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Marshal.ReleaseComObject(pProfile);
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}
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}
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finally
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{
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Marshal.ReleaseComObject(pStreamConfig1);
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}
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}
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finally
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{
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Marshal.ReleaseComObject(pProfileManager);
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}
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}
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internal IEnumerable<WMAFormatInfo> EnumerateFormatInfo(IWMProfileManager pProfileManager2)
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{
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IWMProfileManager pProfileManager = null;
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try
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{
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if (pProfileManager2 == null)
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WMUtils.WMCreateProfileManager(out pProfileManager);
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var pCodecInfo3 = (pProfileManager2 ?? pProfileManager) as IWMCodecInfo3;
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int cCodecs;
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pCodecInfo3.GetCodecInfoCount(MediaType.Audio, out cCodecs);
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for (int iCodec = 0; iCodec < cCodecs; iCodec++)
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{
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int szCodecName = 0;
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pCodecInfo3.GetCodecName(MediaType.Audio, iCodec, null, ref szCodecName);
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var codecName = new StringBuilder(szCodecName);
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pCodecInfo3.GetCodecName(MediaType.Audio, iCodec, codecName, ref szCodecName);
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var attrDataType = new AttrDataType();
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int dwAttrSize = 0;
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byte[] pAttrValue = new byte[4];
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pCodecInfo3.GetCodecProp(MediaType.Audio, iCodec, Constants.g_wszIsVBRSupported, out attrDataType, pAttrValue, ref dwAttrSize);
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if (pAttrValue[0] != 1)
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continue;
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if (m_vbr)
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{
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pCodecInfo3.SetCodecEnumerationSetting(MediaType.Audio, iCodec, Constants.g_wszVBREnabled, AttrDataType.BOOL, new byte[] { 1, 0, 0, 0 }, 4);
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pCodecInfo3.SetCodecEnumerationSetting(MediaType.Audio, iCodec, Constants.g_wszNumPasses, AttrDataType.DWORD, new byte[] { 1, 0, 0, 0 }, 4);
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}
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else
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{
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pCodecInfo3.SetCodecEnumerationSetting(MediaType.Audio, iCodec, Constants.g_wszVBREnabled, AttrDataType.BOOL, new byte[] { 0, 0, 0, 0 }, 4);
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}
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int cFormat;
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pCodecInfo3.GetCodecFormatCount(MediaType.Audio, iCodec, out cFormat);
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for (int iFormat = 0; iFormat < cFormat; iFormat++)
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{
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IWMStreamConfig pStreamConfig;
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int cchDesc = 1024;
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StringBuilder szDesc = new StringBuilder(cchDesc);
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pCodecInfo3.GetCodecFormatDesc(MediaType.Audio, iCodec, iFormat, out pStreamConfig, szDesc, ref cchDesc);
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if (szDesc.ToString().Contains("(A/V)"))
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continue;
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try
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{
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var pProps = pStreamConfig as IWMMediaProps;
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int cbType = 0;
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AMMediaType pMediaType = null;
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pProps.GetMediaType(pMediaType, ref cbType);
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pMediaType = new AMMediaType();
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pMediaType.formatSize = cbType - Marshal.SizeOf(typeof(AMMediaType));
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pProps.GetMediaType(pMediaType, ref cbType);
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try
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{
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if (pMediaType.majorType == MediaType.Audio && pMediaType.formatType == FormatType.WaveEx && pMediaType.subType == m_subType)
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{
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var pcm = WaveFormatExtensible.FromMediaType(pMediaType).GetConfig();
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if (PCM == null || (pcm.ChannelCount == PCM.ChannelCount && pcm.SampleRate == PCM.SampleRate && pcm.BitsPerSample >= PCM.BitsPerSample))
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yield return new WMAFormatInfo()
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{
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codec = iCodec,
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codecName = codecName.ToString(),
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format = iFormat,
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formatName = szDesc.ToString(),
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subType = pMediaType.subType,
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pcm = pcm
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};
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}
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}
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finally
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{
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WMUtils.FreeWMMediaType(pMediaType);
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}
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}
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finally
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{
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Marshal.ReleaseComObject(pStreamConfig);
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}
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}
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}
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}
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finally
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{
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if (pProfileManager != null)
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Marshal.ReleaseComObject(pProfileManager);
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}
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}
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internal List<WMAFormatInfo> GetFormats(IWMProfileManager pProfileManager)
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{
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var formats = new List<WMAFormatInfo>(this.EnumerateFormatInfo(pProfileManager));
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formats.RemoveAll(fmt => formats.Exists(fmt2 => fmt2.pcm.BitsPerSample < fmt.pcm.BitsPerSample && fmt2.pcm.ChannelCount == fmt.pcm.ChannelCount && fmt2.pcm.SampleRate == fmt.pcm.SampleRate));
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if (formats.Count < 2) return formats;
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int prefixLen = 0, suffixLen = 0;
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while (formats.TrueForAll(s => s.formatName.Length > prefixLen &&
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s.formatName.Substring(0, prefixLen + 1) ==
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formats[0].formatName.Substring(0, prefixLen + 1)))
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prefixLen++;
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while (formats.TrueForAll(s => s.formatName.Length > suffixLen &&
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s.formatName.Substring(s.formatName.Length - suffixLen - 1) ==
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formats[0].formatName.Substring(formats[0].formatName.Length - suffixLen - 1)))
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suffixLen++;
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formats.ForEach(s => s.modeName = s.formatName.Substring(prefixLen, s.formatName.Length - suffixLen - prefixLen).Trim().Replace(' ', '_'));
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int ix, iy;
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formats.Sort((Comparison<WMAFormatInfo>)((x, y) => int.TryParse(x.modeName, out ix) && int.TryParse(y.modeName, out iy) ? ix - iy : x.modeName.CompareTo(y.modeName)));
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return formats;
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}
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}
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internal class WMAFormatInfo
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{
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public int codec;
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public string codecName;
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public int format;
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public string formatName;
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public string modeName;
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public Guid subType;
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public AudioPCMConfig pcm;
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}
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public class LosslessEncoderSettings : EncoderSettings
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{
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public override string Name => "wma lossless";
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public override bool Lossless => true;
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public LosslessEncoderSettings()
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: base()
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{
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this.m_subType = MediaSubType.WMAudio_Lossless;
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}
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}
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public class LossyEncoderSettings : EncoderSettings
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{
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public override string Name => "wma lossy";
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public override bool Lossless => false;
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public LossyEncoderSettings()
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: base()
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{
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this.m_subType = MediaSubType.WMAudioV9;
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}
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public enum Codec
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{
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WMA9,
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WMA10Pro
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}
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[DefaultValue(Codec.WMA10Pro)]
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[JsonProperty]
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public Codec Version
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{
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get
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{
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return this.m_subType == MediaSubType.WMAudioV9 ? Codec.WMA10Pro : Codec.WMA9;
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}
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set
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{
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this.m_subType = value == Codec.WMA10Pro ? MediaSubType.WMAudioV9 : MediaSubType.WMAudioV8;
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}
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}
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[DefaultValue(true)]
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[JsonProperty]
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public bool VBR
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|
{
|
|
|
|
|
|
get
|
|
|
|
|
|
{
|
|
|
|
|
|
return this.m_vbr;
|
|
|
|
|
|
}
|
|
|
|
|
|
set
|
|
|
|
|
|
{
|
|
|
|
|
|
this.m_vbr = value;
|
|
|
|
|
|
}
|
|
|
|
|
|
}
|
|
|
|
|
|
}
|
|
|
|
|
|
}
|