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https://github.com/claunia/cuetools.net.git
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AudioWriterSettings passed to IAdioDest constructors now AudioWriterSettings now includes AudioPCMConfig
301 lines
11 KiB
C#
301 lines
11 KiB
C#
using System;
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using System.Runtime.InteropServices;
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using CUETools.Codecs;
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using System.IO;
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namespace CUETools.Codecs.LAME
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{
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[AudioEncoderClass("CBR (libmp3lame)", "mp3", false, 1, typeof(LameWriterCBRSettings))]
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[AudioEncoderClass("VBR (libmp3lame)", "mp3", false, 2, typeof(LameWriterVBRSettings))]
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public class LameWriter : IAudioDest
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{
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#region Unmanaged Functions
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private const string LameDll = "libmp3lame";
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private const CallingConvention LameCallingConvention = CallingConvention.Cdecl;
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[DllImport(LameDll, CallingConvention = LameCallingConvention)]
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internal static extern IntPtr lame_init();
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[DllImport(LameDll, CallingConvention = LameCallingConvention)]
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internal static extern int lame_close(IntPtr handle);
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[DllImport(LameDll, CallingConvention = LameCallingConvention)]
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internal static extern int lame_set_num_channels(IntPtr handle, int channels);
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[DllImport(LameDll, CallingConvention = LameCallingConvention)]
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internal static extern int lame_set_in_samplerate(IntPtr handle, int sampleRate);
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[DllImport(LameDll, CallingConvention = LameCallingConvention)]
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internal static extern int lame_set_quality(IntPtr handle, int quality);
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[DllImport(LameDll, CallingConvention = LameCallingConvention)]
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internal static extern int lame_set_VBR(IntPtr handle, int vbrMode);
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[DllImport(LameDll, CallingConvention = LameCallingConvention)]
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internal static extern int lame_set_VBR_mean_bitrate_kbps(IntPtr handle, int meanBitrate);
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[DllImport(LameDll, CallingConvention = LameCallingConvention)]
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internal static extern int lame_init_params(IntPtr handle);
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[DllImport(LameDll, CallingConvention = LameCallingConvention)]
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internal static extern int lame_set_num_samples(IntPtr handle, uint numSamples);
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[DllImport(LameDll, CallingConvention = LameCallingConvention)]
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internal static extern int lame_encode_buffer_interleaved(IntPtr handle, IntPtr pcm, int num_samples, IntPtr mp3buf, int mp3buf_size);
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[DllImport(LameDll, CallingConvention = LameCallingConvention)]
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internal static extern int lame_encode_flush(IntPtr handle, IntPtr mp3buf, int size);
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[DllImport(LameDll, CallingConvention = LameCallingConvention)]
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internal static extern uint lame_get_lametag_frame(IntPtr handle, IntPtr buffer, uint size);
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[DllImport(LameDll, CallingConvention = LameCallingConvention)]
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internal static extern int lame_set_VBR_quality(IntPtr handle, float vbrQuality);
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[DllImport(LameDll, CallingConvention = LameCallingConvention)]
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internal static extern int lame_set_brate(IntPtr handle, int bitrate);
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[DllImport(LameDll, CallingConvention = LameCallingConvention)]
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internal static extern int lame_set_bWriteVbrTag(IntPtr handle, int writeVbrTag);
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[DllImport(LameDll, CallingConvention = LameCallingConvention)]
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internal static extern int lame_set_write_id3tag_automatic(IntPtr handle, int automaticWriteId3Tag);
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#endregion
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private string m_outputPath;
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private Stream m_outputStream;
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private bool m_closed = false, m_initialized = false;
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private IntPtr m_handle;
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private uint m_finalSampleCount;
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private byte[] m_outputBuffer;
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public long FinalSampleCount
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{
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set
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{
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if (value > uint.MaxValue)
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{
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throw new ArgumentException("Input file too big.");
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}
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this.m_finalSampleCount = (uint)value;
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}
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}
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public string Path
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{
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get { return this.m_outputPath; }
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}
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private LameWriterSettings m_settings;
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public virtual AudioEncoderSettings Settings
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{
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get
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{
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return m_settings;
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}
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}
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public LameWriter(string path, Stream output, LameWriterSettings settings)
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{
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this.CheckPCMConfig(settings.PCM);
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this.m_settings = settings;
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this.m_outputPath = path;
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this.m_outputStream = output != null ? output : File.Create(path);
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}
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public LameWriter(string path, LameWriterSettings settings)
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: this(path, null, settings)
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{
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}
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private void CheckPCMConfig(AudioPCMConfig pcm)
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{
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if (pcm.BitsPerSample != 16)
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{
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throw new ArgumentException("LAME only supports 16 bits/sample.");
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}
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}
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private void FinalizeEncoding()
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{
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this.EnsureOutputBufferSize(7200);
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int flushResult;
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unsafe
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{
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fixed (byte* outputBufferPtr = m_outputBuffer)
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{
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flushResult = lame_encode_flush(m_handle, (IntPtr)outputBufferPtr, m_outputBuffer.Length);
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}
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}
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if (flushResult < 0)
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{
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throw new LameException("Unknown flush error");
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}
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if (flushResult > 0)
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{
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this.m_outputStream.Write(this.m_outputBuffer, 0, flushResult);
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}
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int lametagFrameSize = this.GetLametagFrame();
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this.m_outputStream.Seek(0, SeekOrigin.Begin);
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this.m_outputStream.Write(this.m_outputBuffer, 0, lametagFrameSize);
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}
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public void Close()
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{
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if (!this.m_closed)
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{
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if (this.m_initialized)
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{
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try
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{
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try
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{
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this.FinalizeEncoding();
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}
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finally
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{
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lame_close(m_handle);
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}
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}
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finally
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{
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m_handle = IntPtr.Zero;
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if (this.m_outputPath != null)
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{
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this.m_outputStream.Close();
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}
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}
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}
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this.m_closed = true;
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}
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}
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private int GetLametagFrame()
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{
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while (true)
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{
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uint lametagFrameResult;
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unsafe
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{
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fixed (byte* outputBufferPtr = m_outputBuffer)
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{
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lametagFrameResult = lame_get_lametag_frame(this.m_handle, (IntPtr)outputBufferPtr, (uint)m_outputBuffer.Length);
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}
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}
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if (lametagFrameResult < 0)
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{
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throw new LameException("Error getting lametag frame.");
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}
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if (lametagFrameResult <= m_outputBuffer.Length)
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{
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return (int)lametagFrameResult;
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}
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this.EnsureOutputBufferSize((int)lametagFrameResult);
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}
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}
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public uint GetLametagFrame(byte[] outputBuffer)
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{
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unsafe
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{
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fixed (byte* outputBufferPtr = outputBuffer)
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{
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return lame_get_lametag_frame(m_handle, (IntPtr)outputBufferPtr, (uint)outputBuffer.Length);
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}
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}
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}
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private void EnsureInitialized()
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{
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if (!this.m_initialized)
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{
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m_handle = lame_init();
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lame_set_bWriteVbrTag(m_handle, 1);
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lame_set_write_id3tag_automatic(m_handle, 0);
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lame_set_num_channels(m_handle, this.Settings.PCM.ChannelCount);
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lame_set_in_samplerate(m_handle, this.Settings.PCM.SampleRate);
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if (this.m_finalSampleCount != 0)
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{
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lame_set_num_samples(m_handle, this.m_finalSampleCount);
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}
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m_settings.Apply(m_handle);
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if (lame_init_params(m_handle) != 0)
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{
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throw new LameException("lame_init_params failed");
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}
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this.m_initialized = true;
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}
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}
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public void Delete()
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{
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if (this.m_outputPath == null)
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{
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throw new InvalidOperationException("This writer was not created from file.");
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}
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if (!m_closed)
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{
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this.Close();
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File.Delete(this.m_outputPath);
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}
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}
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private void EnsureOutputBufferSize(int requiredSize)
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{
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if (this.m_outputBuffer == null || this.m_outputBuffer.Length < requiredSize)
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{
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this.m_outputBuffer = new byte[requiredSize];
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}
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}
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public void Write(AudioBuffer buffer)
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{
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if (this.m_closed)
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{
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throw new InvalidOperationException("Writer already closed.");
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}
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buffer.Prepare(this);
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this.EnsureInitialized();
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this.EnsureOutputBufferSize(buffer.Length * 5 / 4 + 7200);
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byte[] bytes = buffer.Bytes;
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int result;
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unsafe
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{
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fixed (byte* bytesPtr = bytes)
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{
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fixed (byte* outputBufferPtr = this.m_outputBuffer)
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{
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result = lame_encode_buffer_interleaved(m_handle, (IntPtr)bytesPtr, buffer.Length, (IntPtr)outputBufferPtr, m_outputBuffer.Length);
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}
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}
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}
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if (result < 0)
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{
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switch (result)
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{
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case -1:
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throw new LameException("Output buffer is too small");
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case -2:
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throw new LameException("malloc problem");
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case -3:
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throw new LameException("lame_init_params was not called");
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case -4:
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throw new LameException("Psycho acoustic problems");
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default:
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throw new LameException("Unknown error");
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}
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}
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if (result > 0)
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{
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this.m_outputStream.Write(this.m_outputBuffer, 0, result);
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}
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}
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}
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}
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