mirror of
https://mirror.ghproxy.com/https://github.com/dexyfex/CodeWalker
synced 2024-11-29 18:32:55 +08:00
741 lines
24 KiB
C#
741 lines
24 KiB
C#
using System;
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using System.Collections.Generic;
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using System.IO;
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using System.Linq;
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using System.Text;
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using System.Threading.Tasks;
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using TC = System.ComponentModel.TypeConverterAttribute;
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using EXP = System.ComponentModel.ExpandableObjectConverter;
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namespace CodeWalker.GameFiles
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{
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[TC(typeof(EXP))]public class AwcFile : PackedFile
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{
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public string Name { get; set; }
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public RpfFileEntry FileEntry { get; set; }
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public byte[] Data { get; set; }
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public string ErrorMessage { get; set; }
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public uint Magic { get; set; }
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public ushort Version { get; set; }
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public ushort Flags { get; set; }
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public int StreamCount { get; set; }
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public int InfoOffset { get; set; }
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public bool MultiChannel { get; set; }
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public byte[] MultiChannelData { get; set; }
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public AwcStreamInfo[] StreamInfos { get; set; }
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public uint[] AudioIds { get; set; }
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public AwcAudio[] Audios { get; set; }
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public void Load(byte[] data, RpfFileEntry entry)
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{
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//adapted from libertyV code
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//MemoryStream ms = new MemoryStream(data);
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Name = entry.Name;
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FileEntry = entry;
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Data = data;
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if ((data == null) || (data.Length < 8))
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{
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ErrorMessage = "Data null or too short!";
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return; //nothing to do, not enough data...
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}
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Magic = BitConverter.ToUInt32(data, 0);
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Endianess endianess = Endianess.LittleEndian;
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switch (Magic)
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{
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default:
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ErrorMessage = "Unexpected Magic 0x" + Magic.ToString("X");
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return;
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case 0x54414441:
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endianess = Endianess.LittleEndian;
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break;
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case 0x41444154:
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endianess = Endianess.BigEndian;
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break;
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}
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/* francium - Today at 6:11 PM
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IDA decompiler code from a function that seems to be called around audio loading if not ADAT:
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if ( a3 )
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{
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v3 = *a1;
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v4 = -a2;
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v5 = (unsigned int)(-a2 - 1);
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v6 = 0x9E3779B9 * (52 / -a2 + 6);
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do
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{
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LODWORD(v7) = -a2 - 1;
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v8 = (v6 >> 2) & 3;
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if ( -a2 != 1 )
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{
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v9 = (unsigned int)v5;
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v10 = &a1[v5];
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do
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{
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v7 = (unsigned int)(v7 - 1);
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v11 = v9--;
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*v10 -= ((v6 ^ v3) + (a1[v7] ^ *(_DWORD *)(a3 + 4 * (v8 ^ (unsigned __int64)(v11 & 3))) ^ 0x7B3A207F)) ^ ((4 * v3 ^ (a1[v7] >> 5)) + ((v3 >> 3) ^ 16 * a1[v7]));
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v3 = *v10;
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--v10;
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}
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while ( (_DWORD)v7 );
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}
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result = (v6 ^ v3) + (a1[v4 - 1] ^ *(_DWORD *)(a3 + 4 * (v8 ^ (unsigned __int64)(v7 & 3))) ^ 0x7B3A207F);
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*a1 -= result ^ ((4 * v3 ^ (a1[v4 - 1] >> 5)) + ((v3 >> 3) ^ 16 * a1[v4 - 1]));
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v3 = *a1;
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v6 += 0x61C88647;
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}
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while ( v6 );
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}
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*/
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using (MemoryStream ms = new MemoryStream(data))
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{
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DataReader r = new DataReader(ms, endianess);
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Magic = r.ReadUInt32();
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Version = r.ReadUInt16();
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Flags = r.ReadUInt16();
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StreamCount = r.ReadInt32();
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InfoOffset = r.ReadInt32();
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//notes from libertyV:
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// first bit - means that there are unknown word for each stream after this header
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// second bit - I think that it means that not all the tags are in the start of the file, but all the tags of a stream are near the data tag
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// third bit - Multi channel audio
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if ((Flags >> 8) != 0xFF)
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{
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ErrorMessage = "Flags 0 not supported!";
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return;
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}
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if ((Flags & 0xF8) != 0)
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{
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//ErrorMessage = "Flags 1 not supported!";
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//return;
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}
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MultiChannel = ((Flags & 4) == 4);
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var flag0 = ((Flags & 1) == 1);
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var infoStart = 16 + (flag0 ? (StreamCount * 2) : 0);
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ms.Position = infoStart;
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List<AwcStreamInfo> infos = new List<AwcStreamInfo>();
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Dictionary<uint, AwcStreamInfo> infoDict = new Dictionary<uint, AwcStreamInfo>();
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List<uint> audioIds = new List<uint>();
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List<AwcAudio> audios = new List<AwcAudio>();
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for (int i = 0; i < StreamCount; i++)
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{
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var info = new AwcStreamInfo(r);
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infos.Add(info);
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infoDict[info.Id] = info;
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}
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for (int i = 0; i < StreamCount; i++)
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{
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var info = infos[i];
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for (int j = 0; j < info.TagCount; j++)
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{
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var chunk = new AwcChunkInfo(r);
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info.Chunks[chunk.Tag] = chunk;
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}
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}
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StreamInfos = infos.ToArray();
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byte hformat = 0xFA;// 250 0x6061D4FA & 0xFF; //JenkHash.GenHash("format");
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byte hdata = 0x55;// 85 0x5EB5E655 & 0xFF; //JenkHash.GenHash("data");
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byte hycd = 0x5C;// 92 YCD resource chunk... lip sync anims?
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byte hunk = 0x36;// 54 unk chunk? small number of bytes (2+)
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if (MultiChannel)
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{
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AwcStreamInfo stream0 = null;
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if (!infoDict.TryGetValue(0, out stream0))
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{
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ErrorMessage = "Couldn't find MultiChannel stream0";
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return;
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}
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AwcChunkInfo chunk72 = null;
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if (!stream0.Chunks.TryGetValue(72, out chunk72))
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{
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ErrorMessage = "Couldn't find MultiChannel chunk72";
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return;
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}
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ms.Position = chunk72.Offset;
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AwcChannelChunkInfo chanInfo = new AwcChannelChunkInfo(r);
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if (chanInfo.ChannelCount != StreamCount - 1)
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{
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ErrorMessage = "Channel Count did not match Stream Count";
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return;
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}
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List<AwcChannelChunkItemInfo> chunkItems = new List<AwcChannelChunkItemInfo>();
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for (int i = 0; i < chanInfo.ChannelCount; i++)
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{
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var itemInfo = new AwcChannelChunkItemInfo(r);
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chunkItems.Add(itemInfo);
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audioIds.Add(infos[i + 1].Id);
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}
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//AudioStreams.Add(new MultiChannelAudio(new ChunkStream(this.Stream, streamsChunks[0][Tag("data")]), channelsInfoHeader, streamsInfo, header.BigEndian));
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AwcChunkInfo cdata = null;
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if (!stream0.Chunks.TryGetValue(hdata, out cdata))
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{
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ErrorMessage = "Couldn't find Stream 0 data chunk";
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return;
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}
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ms.Position = cdata.Offset;
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var lastPos = cdata.Offset + cdata.Size;
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//int chunkSize = 0x800;
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uint bigChunkSize = chanInfo.ChunkSize;
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var chanCount = chanInfo.ChannelCount;
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MultiChannelData = r.ReadBytes(cdata.Size);
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ms.Position = cdata.Offset;
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//var d = data;//temporary
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////this doesn't seem to work :(
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//while (ms.Position < lastPos)
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//{
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// uint totalChunks = 0;
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// var startPos = ms.Position;
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// var curPos = startPos;
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// //byte[] chunkdata = r.ReadBytes(chunkSize);
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// //ms.Position = startPos;
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// AwcChannelChunkHeader[] chanHeaders = new AwcChannelChunkHeader[chanCount];
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// for (int i = 0; i < chanCount; i++)
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// {
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// var chanHeader = new AwcChannelChunkHeader(r);
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// chanHeaders[i] = chanHeader;
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// totalChunks += chanHeader.ChunkCount;
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// }
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// int headerSize = (int)(totalChunks * 4 + chanInfo.ChannelCount * AwcChannelChunkHeader.Size);
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// headerSize += (((-headerSize) % chunkSize) + chunkSize) % chunkSize; //todo: simplify this!
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// curPos += headerSize;
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// AwcChannelChunk[] chanChunks = new AwcChannelChunk[chanCount];
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// for (int i = 0; i < chanCount; i++)
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// {
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// var chanChunk = new AwcChannelChunk(r, chanHeaders[i], chunkItems[i]);
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// chanChunks[i] = chanChunk;
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// curPos += chanChunk.TotalDataSize;
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// }
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// if (curPos - startPos > chanInfo.ChunkSize)
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// {
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// ErrorMessage = "Chunk was bigger than the chunk size";
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// break;
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// }
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// if ((totalChunks == 0) || ((startPos + chanInfo.ChunkSize) > lastPos))
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// {
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// ErrorMessage = "Unable to read chunk";
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// break;
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// }
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// var newPos = startPos + bigChunkSize;
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// if (newPos >= lastPos) break;
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// ms.Position = newPos;
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//}
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}
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else
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{
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for (int i = 0; i < StreamCount; i++)
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{
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var info = infos[i];
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AwcChunkInfo cformat = null;
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if (!info.Chunks.TryGetValue(hformat, out cformat))
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{
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ErrorMessage = "Couldn't find Stream " + i.ToString() + " format chunk";
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continue;
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}
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AwcChunkInfo cdata = null;
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if (!info.Chunks.TryGetValue(hdata, out cdata))
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{
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ErrorMessage = "Couldn't find Stream " + i.ToString() + " data chunk";
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continue;
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}
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AwcChunkInfo cycd = null;
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AwcAudioAnimClipDict oycd = null;
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if (info.Chunks.TryGetValue(hycd, out cycd))
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{
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ms.Position = cycd.Offset;
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oycd = new AwcAudioAnimClipDict(r, cycd);
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}
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AwcChunkInfo cunk = null;
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AwcAudioUnk ounk = null;
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if (info.Chunks.TryGetValue(hunk, out cunk))
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{
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ms.Position = cunk.Offset;
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ounk = new AwcAudioUnk(r, cunk);
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}
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ms.Position = cformat.Offset;
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AwcFormatChunk formatChunk = new AwcFormatChunk(r);
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ms.Position = cdata.Offset;
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AwcAudio audio = new AwcAudio(r, info, formatChunk, cdata);
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audio.ClipDict = oycd;
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audio.UnkData = ounk;
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audios.Add(audio);
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audioIds.Add(info.Id);
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}
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}
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Audios = audios.ToArray();
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AudioIds = audioIds.ToArray();
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}
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}
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}
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[TC(typeof(EXP))] public class AwcStreamInfo
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{
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public uint RawVal { get; set; }
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public uint TagCount { get; set; }
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public uint Id { get; set; }
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public Dictionary<byte, AwcChunkInfo> Chunks { get; set; } = new Dictionary<byte, AwcChunkInfo>();
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public AwcStreamInfo(DataReader r)
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{
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RawVal = r.ReadUInt32();
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TagCount = (RawVal >> 29);
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Id = (RawVal & 0x1FFFFFFF);
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}
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public override string ToString()
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{
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return Id.ToString("X") + ": " + TagCount.ToString() + " tags";
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}
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}
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[TC(typeof(EXP))] public class AwcChunkInfo
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{
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public ulong RawVal { get; set; }
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public byte Tag { get; set; }
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public int Size { get; set; }
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public int Offset { get; set; }
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public AwcChunkInfo(DataReader r)
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{
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RawVal = r.ReadUInt64();
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Tag = (byte)(RawVal >> 56);
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Size = (int)((RawVal >> 28) & 0x0FFFFFFF);
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Offset = (int)(RawVal & 0x0FFFFFFF);
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}
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public override string ToString()
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{
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return Tag.ToString() + ": " + Size.ToString() + ", " + Offset.ToString();
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}
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}
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[TC(typeof(EXP))] public class AwcChannelChunkInfo
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{
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public uint Unk0 { get; set; }
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public uint ChunkSize { get; set; }
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public uint ChannelCount { get; set; }
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public AwcChannelChunkInfo(DataReader r)
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{
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Unk0 = r.ReadUInt32();
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ChunkSize = r.ReadUInt32();
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ChannelCount = r.ReadUInt32();
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}
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public override string ToString()
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{
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return Unk0.ToString() + ": " + ChunkSize.ToString() + ", " + ChannelCount.ToString() + " channels";
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}
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}
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[TC(typeof(EXP))] public class AwcChannelChunkItemInfo
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{
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public uint Id { get; set; }
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public uint Samples { get; set; }
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public ushort Unk0 { get; set; }
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public ushort SamplesPerSecond { get; set; }
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public byte Unk1 { get; set; }
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public byte RoundSize { get; set; }
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public ushort Unk2 { get; set; }
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public AwcChannelChunkItemInfo(DataReader r)
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{
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Id = r.ReadUInt32();
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Samples = r.ReadUInt32();
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Unk0 = r.ReadUInt16();
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SamplesPerSecond = r.ReadUInt16();
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Unk1 = r.ReadByte();
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RoundSize = r.ReadByte();
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Unk2 = r.ReadUInt16();
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}
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public override string ToString()
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{
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return Id.ToString() + ": " + Samples.ToString() + " samples, " + SamplesPerSecond.ToString() + " samples/sec, size: " + RoundSize.ToString();
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}
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}
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[TC(typeof(EXP))] public class AwcFormatChunk
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{
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public uint Samples { get; set; }
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public int UnkMinusOne { get; set; }
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public ushort SamplesPerSecond { get; set; }
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public ushort Unk1 { get; set; }
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public ushort Unk2 { get; set; }
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public ushort Unk3 { get; set; }
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public ushort Unk4 { get; set; }
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public byte Unk5 { get; set; }
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public byte Unk6 { get; set; }
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public AwcFormatChunk(DataReader r)
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{
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Samples = r.ReadUInt32();
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UnkMinusOne = r.ReadInt32();
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SamplesPerSecond = r.ReadUInt16();
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Unk1 = r.ReadUInt16();
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Unk2 = r.ReadUInt16();
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Unk3 = r.ReadUInt16();
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Unk4 = r.ReadUInt16();
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Unk5 = r.ReadByte();
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Unk6 = r.ReadByte();
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//Apparently sometimes this struct is longer? TODO: fix??
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//r.ReadUInt16();
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//r.ReadUInt16();
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}
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public override string ToString()
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{
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return Unk1.ToString() + ", " + Unk6.ToString() + ": " + Samples.ToString() + " samples, " + SamplesPerSecond.ToString() + " samples/sec";
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}
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}
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[TC(typeof(EXP))] public class AwcAudio
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{
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public AwcStreamInfo StreamInfo { get; set; }
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public AwcFormatChunk Format { get; set; }
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public AwcChunkInfo DataInfo { get; set; }
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public byte[] Data { get; set; }
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public AwcAudioAnimClipDict ClipDict { get; set; }
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public AwcAudioUnk UnkData { get; set; }
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public short Channels = 1;
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public short BitsPerSample = 4;//16;
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public int SamplesPerSecond
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{
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get
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{
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return Format?.SamplesPerSecond ?? 0;
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}
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}
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public int SampleCount
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{
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get
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{
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return (int)(Format?.Samples ?? 0);
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}
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}
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public string Name
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{
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get
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{
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return "0x" + StreamInfo?.Id.ToString("X").PadLeft(8, '0') ?? "0";
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}
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}
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public string Type
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{
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get
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{
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if (Format == null) return "Unknown";
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string fmt = "ADPCM";
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switch (Format.Unk6)
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{
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case 4:
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break;
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default:
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break;
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}
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var hz = Format?.SamplesPerSecond ?? 0;
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return fmt + ((hz > 0) ? (", " + hz.ToString() + " Hz") : "");
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}
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}
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public string LengthStr
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{
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get
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{
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if (Format == null) return "0:00";
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float sec = (float)Format.Samples / Format.SamplesPerSecond;
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TimeSpan ts = TimeSpan.FromSeconds(sec);
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return ts.ToString("m\\:ss");
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}
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}
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public AwcAudio(DataReader r, AwcStreamInfo s, AwcFormatChunk f, AwcChunkInfo d)
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{
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StreamInfo = s;
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Format = f;
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DataInfo = d;
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Data = r.ReadBytes(d.Size);
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}
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|
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public override string ToString()
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{
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var hash = (StreamInfo?.Id.ToString("X") ?? "0").PadLeft(8, '0');
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return "0x" + hash + ": " + Format?.ToString() ?? "AwcAudio";
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}
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public Stream GetWavStream()
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{
|
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MemoryStream ms = new MemoryStream();
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BinaryWriter w = new BinaryWriter(ms);
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|
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|
//see http://icculus.org/SDL_sound/downloads/external_documentation/wavecomp.htm
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//see https://github.com/naudio/NAudio/blob/master/NAudio/Wave/WaveFormats/AdpcmWaveFormat.cs
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//see https://msdn.microsoft.com/en-us/library/windows/desktop/ff538799(v=vs.85).aspx
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int sampleCount = SampleCount;
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int samplesPerSec = SamplesPerSecond;
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//short sampleSize = (short)((BitsPerSample / 8) * Channels);//2
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//int avgBytesPerSec = sampleSize * samplesPerSec;
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short blockAlign = 512;
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short samplesPerBlock = (short)((((blockAlign - (7 * Channels)) * 8) / (BitsPerSample * Channels)) + 2);
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int avgBytesPerSec = ((samplesPerSec / samplesPerBlock) * blockAlign);
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w.Write("RIFF".ToCharArray());
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w.Write(0); //file size written later...
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w.Write("WAVE".ToCharArray());
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w.Write("fmt ".ToCharArray());
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w.Write(50); //(PCM:16) //header size
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w.Write((short)2); //pcm format tag 1=PCM, 2=ADPCM
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w.Write(Channels);
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w.Write(samplesPerSec);
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w.Write(avgBytesPerSec);
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w.Write(blockAlign);// sampleSize);
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w.Write(BitsPerSample);
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w.Write((short)32);//extra byte count for WAVEFORMATEX
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w.Write(samplesPerBlock);
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w.Write((short)7);//num coefficients
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w.Write((short)256); //coeff 0
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w.Write((short)0);
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w.Write((short)512); //coeff 1
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w.Write((short)-256);
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w.Write((short)0); //coeff 2
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w.Write((short)0);
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w.Write((short)192); //coeff 3
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w.Write((short)64);
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w.Write((short)240); //coeff 4
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w.Write((short)0);
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w.Write((short)460); //coeff 5
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w.Write((short)-208);
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w.Write((short)392); //coeff 6
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w.Write((short)-232);
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w.Write("data".ToCharArray());
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w.Write(0); //data size written later...
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if (sampleCount != 0)
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{
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//var sc = sampleCount * sampleSize;
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var datalen = Data.Length;
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w.Write(Data);
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}
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else
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{
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w.Write(Data);
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}
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ms.Position = 4;
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w.Write((int)ms.Length - 8);
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ms.Position = 74;// 40;
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w.Write((int)ms.Length - 78);// 44);
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w.Flush();
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ms.Position = 0;
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return ms;
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}
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}
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[TC(typeof(EXP))] public class AwcAudioAnimClipDict
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{
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public byte[] Data { get; set; }
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public ClipDictionary ClipDict { get; set; }
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public AwcAudioAnimClipDict(DataReader r, AwcChunkInfo info)
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{
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Data = r.ReadBytes(info.Size);
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if ((Data == null) || (Data.Length < 16)) return;
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var data = Data;
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RpfResourceFileEntry resentry = new RpfResourceFileEntry();
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uint rsc7 = BitConverter.ToUInt32(data, 0);
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int version = BitConverter.ToInt32(data, 4);
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resentry.SystemFlags = BitConverter.ToUInt32(data, 8);
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resentry.GraphicsFlags = BitConverter.ToUInt32(data, 12);
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if (rsc7 != 0x37435352)
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{ } //testing..
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if (version != 46) //46 is Clip Dictionary...
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{ }
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int newlen = data.Length - 16; //trim the header from the data passed to the next step.
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int arrlen = Math.Max(newlen, resentry.SystemSize + resentry.GraphicsSize);//expand it as necessary for the reader.
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byte[] newdata = new byte[arrlen];
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Buffer.BlockCopy(data, 16, newdata, 0, newlen);
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data = newdata;
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ResourceDataReader rd = new ResourceDataReader(resentry, data);
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ClipDict = rd.ReadBlock<ClipDictionary>();
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}
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public override string ToString()
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{
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return (ClipDict?.ClipsMapEntries ?? 0).ToString() + " entries";
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}
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}
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[TC(typeof(EXP))] public class AwcAudioUnk
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{
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public byte[] Data { get; set; }
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public AwcAudioUnk(DataReader r, AwcChunkInfo info)
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{
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Data = r.ReadBytes(info.Size);
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}
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public override string ToString()
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{
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if (Data == null) return "";
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StringBuilder sb = new StringBuilder();
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for (int i = 0; i < Data.Length; i++)
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{
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if (sb.Length > 0) sb.Append(' ');
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sb.Append(Data[i].ToString());
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}
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return sb.ToString();
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}
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}
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[TC(typeof(EXP))] public class AwcChannelChunkHeader
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{
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public static uint Size = 16; //24 for ps3...
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public uint StartChunk { get; set; }
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public uint ChunkCount { get; set; }
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public uint SamplesToSkip { get; set; } //mostly 0
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public uint SamplesPerChunk { get; set; }
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public uint DataSize { get; set; }
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public AwcChannelChunkHeader(DataReader r)
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{
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StartChunk = r.ReadUInt32();
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ChunkCount = r.ReadUInt32();
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SamplesToSkip = r.ReadUInt32();
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SamplesPerChunk = r.ReadUInt32();
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DataSize = ChunkCount * 0x800;
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//for ps3, two extra ints:
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//uint unk0 = r.ReadUint32();
|
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//DataSize = r.ReadUint32();
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}
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}
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[TC(typeof(EXP))] public class AwcChannelChunk
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{
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public AwcChannelChunkHeader Header { get; set; }
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public AwcChannelChunkItemInfo Info { get; set; }
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public byte[] Data { get; set; }
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public uint TotalDataSize { get; set; }
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public AwcChannelChunk(DataReader r, AwcChannelChunkHeader h, AwcChannelChunkItemInfo i)
|
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{
|
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Header = h;
|
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Info = i;
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|
|
TotalDataSize = h.DataSize;
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|
|
var rs = i?.RoundSize ?? 0;
|
|
int ds = (int)h.DataSize;
|
|
if (rs != 0)
|
|
{
|
|
TotalDataSize = (uint)(TotalDataSize + (((-ds) % rs) + rs) % rs);
|
|
}
|
|
}
|
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|
|
}
|
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|
|
}
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