mirror of
https://github.com/crskycode/GARbro.git
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403 lines
14 KiB
C#
403 lines
14 KiB
C#
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//! \file AudioFSB5.cs
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//! \date Thu Apr 06 01:12:27 2017
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//! \brief FMOD Sample Bank audio file.
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//
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// Based on [python-fsb5](https://github.com/HearthSim/python-fsb5)
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//
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// Copyright (c) 2016 Simon Pinfold
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//
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// C# implementation Copyright (C) 2017 by morkt
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//
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// Permission is hereby granted, free of charge, to any person obtaining a copy
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// of this software and associated documentation files (the "Software"), to
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// deal in the Software without restriction, including without limitation the
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// rights to use, copy, modify, merge, publish, distribute, sublicense, and/or
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// sell copies of the Software, and to permit persons to whom the Software is
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// furnished to do so, subject to the following conditions:
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//
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// The above copyright notice and this permission notice shall be included in
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// all copies or substantial portions of the Software.
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//
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// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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// IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
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// FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
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// IN THE SOFTWARE.
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//
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using System;
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using System.Collections.Generic;
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using System.ComponentModel.Composition;
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using System.IO;
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using GameRes.Formats.Vorbis;
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namespace GameRes.Formats.Fmod
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{
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[Export(typeof(AudioFormat))]
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public class Fsb5Audio : AudioFormat
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{
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public override string Tag { get { return "FSB5"; } }
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public override string Description { get { return "FMOD Sample Bank audio format"; } }
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public override uint Signature { get { return 0x35425346; } } // 'FSB5'
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public override bool CanWrite { get { return false; } }
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public override SoundInput TryOpen (IBinaryStream file)
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{
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var fsb = new Fsb5Decoder (file);
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var sound = fsb.Convert();
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file.Dispose();
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return sound;
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}
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public override ResourceScheme Scheme
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{
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get { return new FmodScheme { VorbisHeaders = Fsb5Decoder.VorbisHeaders }; }
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set { Fsb5Decoder.VorbisHeaders = ((FmodScheme)value).VorbisHeaders; }
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}
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}
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enum SoundFormat
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{
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// Order is crucial.
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None,
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Pcm8,
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Pcm16,
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Pcm24,
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Pcm32,
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PcmFloat,
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GcAdpcm,
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ImaAdpcm,
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Vag,
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Hevag,
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Xma,
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Mpeg,
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Celt,
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At9,
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Xwma,
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Vorbis,
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}
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enum ChunkType
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{
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Channels = 1,
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SampleRate = 2,
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Loop = 3,
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VorbisData = 11,
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}
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internal class Sample
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{
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public int SampleRate;
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public ushort Channels;
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public long DataOffset;
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public int SampleCount;
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public byte[] Data;
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public Dictionary<ChunkType, object> MetaData;
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}
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internal class Fsb5Decoder
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{
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IBinaryStream m_input;
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int m_sample_header_size;
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int m_name_table_size;
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int m_header_size;
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int m_data_size;
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SoundFormat m_format;
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static readonly HashSet<SoundFormat> Supported = new HashSet<SoundFormat> {
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SoundFormat.Pcm8,
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SoundFormat.Pcm16,
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SoundFormat.Pcm32,
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SoundFormat.PcmFloat,
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SoundFormat.Vorbis,
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};
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public Fsb5Decoder (IBinaryStream input)
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{
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m_input = input;
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}
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List<Sample> ReadSamples ()
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{
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var header = m_input.ReadHeader (0x3C);
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int version = header.ToInt32 (4);
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int sample_count = header.ToInt32 (8);
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m_sample_header_size = header.ToInt32 (0xC);
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m_name_table_size = header.ToInt32 (0x10);
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m_data_size = header.ToInt32 (0x14);
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m_format = (SoundFormat)header.ToInt32 (0x18);
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if (!Supported.Contains (m_format))
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throw new NotSupportedException();
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if (0 == version)
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m_input.ReadInt32();
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var samples = new List<Sample> (sample_count);
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m_header_size = (int)m_input.Position;
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for (int i = 0; i < sample_count; ++i)
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{
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long raw = m_input.ReadInt64();
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bool next_chunk = 0 != (raw & 1);
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int sample_rate = (int)((raw >> 1) & 0xF);
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ushort channels = (ushort)(((raw >> 5) & 1) + 1);
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long data_offset = ((raw >> 6) & 0xFFFFFFF) * 0x10;
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int count = (int)((raw >> 34) & 0x3FFFFFFF);
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var chunks = new Dictionary<ChunkType, object>();
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while (next_chunk)
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{
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int d = m_input.ReadInt32();
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next_chunk = 0 != (d & 1);
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int chunk_size = (d >> 1) & 0xFFFFFF;
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var chunk_type = (ChunkType)((d >> 25) & 0x7F);
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object chunk;
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switch (chunk_type)
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{
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case ChunkType.Channels:
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chunk = m_input.ReadUInt8();
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break;
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case ChunkType.SampleRate:
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chunk = m_input.ReadInt32();
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break;
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case ChunkType.Loop:
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int v1 = m_input.ReadInt32();
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int v2 = m_input.ReadInt32();
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chunk = Tuple.Create (v1, v2);
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break;
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case ChunkType.VorbisData:
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chunk = new VorbisData {
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Crc32 = m_input.ReadUInt32(),
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Data = m_input.ReadBytes (chunk_size-4) // XXX unused
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};
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break;
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default:
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chunk = m_input.ReadBytes (chunk_size);
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break;
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}
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chunks[chunk_type] = chunk;
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}
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if (chunks.ContainsKey (ChunkType.SampleRate))
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sample_rate = (int)chunks[ChunkType.SampleRate];
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else if (SampleRates.ContainsKey (sample_rate))
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sample_rate = SampleRates[sample_rate];
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else
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throw new InvalidFormatException ("Invalid FSB5 sample rate.");
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var sample = new Sample {
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SampleRate = sample_rate,
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Channels = channels,
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DataOffset = data_offset,
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SampleCount = count,
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MetaData = chunks,
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Data = null
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};
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samples.Add (sample);
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}
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return samples;
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}
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public SoundInput Convert ()
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{
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var samples = ReadSamples();
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var sample = samples[0];
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int data_length;
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if (samples.Count > 1)
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data_length = (int)(samples[1].DataOffset - sample.DataOffset);
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else
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data_length = m_data_size;
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m_input.Position = m_header_size + m_sample_header_size + m_name_table_size;
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sample.Data = m_input.ReadBytes (data_length);
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if (SoundFormat.Vorbis == m_format)
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return RebuildVorbis (sample);
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else
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return RebuildPcm (sample);
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}
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SoundInput RebuildPcm (Sample sample)
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{
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var format = new WaveFormat
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{
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FormatTag = (ushort)(SoundFormat.PcmFloat == m_format ? 3 : 1),
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Channels = sample.Channels,
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SamplesPerSecond = (uint)sample.SampleRate,
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};
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switch (m_format)
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{
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case SoundFormat.Pcm8: format.BitsPerSample = 8; break;
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case SoundFormat.Pcm16: format.BitsPerSample = 16; break;
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case SoundFormat.PcmFloat:
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case SoundFormat.Pcm32: format.BitsPerSample = 32; break;
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default: throw new InvalidFormatException();
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}
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format.BlockAlign = (ushort)(format.Channels * format.BitsPerSample / 8);
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format.SetBPS();
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var pcm = new MemoryStream (sample.Data);
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return new RawPcmInput (pcm, format);
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}
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SoundInput RebuildVorbis (Sample sample)
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{
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if (!sample.MetaData.ContainsKey (ChunkType.VorbisData))
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throw new InvalidFormatException ("No VORBISDATA chunk in FSB5 Vorbis stream.");
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var vorbis_data = sample.MetaData[ChunkType.VorbisData] as VorbisData;
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var setup_data = GetVorbisHeader (vorbis_data.Crc32);
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var state = new OggStreamState (1);
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var id_packet = RebuildIdPacket (sample, 0x100, 0x800);
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var comment_packet = RebuildCommentPacket();
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var setup_packet = RebuildSetupPacket (setup_data);
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var info = CreateVorbisInfo (sample, setup_packet);
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var output = new MemoryStream();
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state.PacketIn (id_packet);
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state.Write (output);
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state.PacketIn (comment_packet);
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state.Write (output);
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state.PacketIn (setup_packet);
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state.Write (output);
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state.Flush (output);
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long packet_no = setup_packet.PacketNo + 1;
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long granule_pos = 0;
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int prev_block_size = 0;
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using (var input = new BinMemoryStream (sample.Data))
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{
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var packet = new OggPacket();
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int packet_size = ReadPacketSize (input);
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while (packet_size > 0)
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{
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packet.SetPacket (packet_no++, input.ReadBytes (packet_size));
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packet_size = ReadPacketSize (input);
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packet.EoS = 0 == packet_size;
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int block_size = info.PacketBlockSize (packet);
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if (prev_block_size != 0)
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granule_pos += (block_size + prev_block_size) / 4;
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else
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granule_pos = 0;
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packet.GranulePos = granule_pos;
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prev_block_size = block_size;
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state.PacketIn (packet);
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state.Write (output);
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}
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}
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output.Position = 0;
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return new OggInput (output);
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}
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VorbisInfo CreateVorbisInfo (Sample sample, OggPacket setup_packet)
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{
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var info = new VorbisInfo {
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Channels = sample.Channels,
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Rate = sample.SampleRate,
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};
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info.CodecSetup.BlockSizes[0] = 0x100;
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info.CodecSetup.BlockSizes[1] = 0x800;
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var comment = new VorbisComment { Vendor = VorbisComment.EncodeVendorString };
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info.SynthesisHeaderin (comment, setup_packet);
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return info;
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}
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int ReadPacketSize (IBinaryStream input)
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{
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int lo = input.ReadByte();
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if (-1 == lo)
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return 0;
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int hi = input.ReadByte();
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if (-1 == hi)
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return 0;
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return hi << 8 | lo;
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}
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OggPacket RebuildIdPacket (Sample sample, uint blocksize_short, uint blocksize_long)
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{
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using (var buf = new MemoryStream())
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using (var output = new BinaryWriter (buf))
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{
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output.Write ((byte)1);
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output.Write ("vorbis".ToCharArray());
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output.Write (0);
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output.Write ((byte)sample.Channels);
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output.Write (sample.SampleRate);
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output.Write (0);
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output.Write (0);
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output.Write (0);
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int lo = VorbisInfo.CountBits (blocksize_short);
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int hi = VorbisInfo.CountBits (blocksize_long);
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int bits = hi << 4 | lo;
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output.Write ((byte)bits);
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output.Write ((byte)1);
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output.Flush();
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var packet = new OggPacket();
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packet.SetPacket (0, buf.ToArray());
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packet.BoS = true;
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return packet;
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}
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}
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OggPacket RebuildCommentPacket ()
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{
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var comment = new VorbisComment();
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var packet = new OggPacket();
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comment.HeaderOut (packet);
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return packet;
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}
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OggPacket RebuildSetupPacket (byte[] setup_packet)
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{
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var packet = new OggPacket();
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packet.SetPacket (2, setup_packet);
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return packet;
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}
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static readonly Dictionary<int, int> SampleRates = new Dictionary<int,int> {
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{ 1, 8000 },
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{ 2, 11000 },
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{ 3, 11025 },
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{ 4, 16000 },
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{ 5, 22050 },
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{ 6, 24000 },
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{ 7, 32000 },
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{ 8, 44100 },
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{ 9, 48000 },
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};
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public static byte[] GetVorbisHeader (uint id)
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{
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FmodVorbisSetup setup;
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if (!VorbisHeaders.TryGetValue (id, out setup))
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throw new InvalidFormatException (string.Format ("Unknown FSB5 Vorbis encoding 0x{0:X8}.", id));
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if (null == setup.PatchData || 0 == setup.PatchData.Length)
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return setup.VorbisData;
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var data = setup.VorbisData.Clone() as byte[];
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Buffer.BlockCopy (setup.PatchData, 0, data, setup.PatchOffset, setup.PatchData.Length);
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return data;
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}
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internal static Dictionary<uint, FmodVorbisSetup> VorbisHeaders = new Dictionary<uint, FmodVorbisSetup>();
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}
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internal class VorbisData
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{
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public uint Crc32;
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public byte[] Data; // ignored
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}
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[Serializable]
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public class FmodVorbisSetup
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{
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public byte[] VorbisData;
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public int PatchOffset;
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public byte[] PatchData;
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}
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[Serializable]
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public class FmodScheme : ResourceScheme
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{
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public Dictionary<uint, FmodVorbisSetup> VorbisHeaders;
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}
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}
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