mirror of
https://github.com/aelurum/AssetStudio.git
synced 2025-05-26 13:50:21 -04:00
465 lines
19 KiB
C#
465 lines
19 KiB
C#
using K4os.Compression.LZ4;
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using ZstdSharp;
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using System;
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using System.IO;
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using System.Linq;
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namespace AssetStudio
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{
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[Flags]
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public enum ArchiveFlags
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{
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CompressionTypeMask = 0x3f,
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BlocksAndDirectoryInfoCombined = 0x40,
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BlocksInfoAtTheEnd = 0x80,
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OldWebPluginCompatibility = 0x100,
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BlockInfoNeedPaddingAtStart = 0x200
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}
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[Flags]
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public enum CnEncryptionFlags
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{
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OldFlag = 0x200,
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NewFlag = 0x400
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}
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[Flags]
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public enum StorageBlockFlags
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{
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CompressionTypeMask = 0x3f,
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Streamed = 0x40
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}
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public enum CompressionType
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{
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None,
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Lzma,
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Lz4,
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Lz4HC,
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Lzham,
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Custom,
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}
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public class BundleFile
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{
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public readonly bool IsMultiBundle;
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public class Header
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{
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public string signature;
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public uint version;
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public string unityVersion;
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public UnityVersion unityRevision;
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public long size;
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public uint compressedBlocksInfoSize;
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public uint uncompressedBlocksInfoSize;
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public ArchiveFlags flags;
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}
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public class StorageBlock
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{
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public uint compressedSize;
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public uint uncompressedSize;
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public StorageBlockFlags flags;
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}
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public class Node
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{
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public long offset;
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public long size;
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public uint flags;
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public string path;
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}
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public Header m_Header;
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private StorageBlock[] m_BlocksInfo;
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private Node[] m_DirectoryInfo;
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public StreamFile[] fileList;
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public BundleFile(FileReader reader, bool useZstd, UnityVersion specUnityVer = null)
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{
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m_Header = new Header();
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m_Header.signature = reader.ReadStringToNull();
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m_Header.version = reader.ReadUInt32();
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m_Header.unityVersion = reader.ReadStringToNull();
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m_Header.unityRevision = new UnityVersion(reader.ReadStringToNull());
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switch (m_Header.signature)
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{
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case "UnityArchive":
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break; //TODO
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case "UnityWeb":
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case "UnityRaw":
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if (m_Header.version == 6)
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{
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goto case "UnityFS";
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}
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ReadHeaderAndBlocksInfo(reader);
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using (var blocksStream = CreateBlocksStream(reader.FullPath))
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{
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ReadBlocksAndDirectory(reader, blocksStream);
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ReadFiles(blocksStream, reader.FullPath);
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}
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break;
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case "UnityFS":
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ReadHeader(reader);
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var bundleSize = m_Header.size;
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var streamSize = reader.BaseStream.Length;
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if (bundleSize > streamSize)
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{
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Logger.Warning("Bundle size is incorrect.");
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}
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else if (streamSize - bundleSize > 200)
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{
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IsMultiBundle = true;
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}
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var isUnityCnEnc = false;
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var unityVer = m_Header.unityRevision;
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if (specUnityVer != null)
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{
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if (!unityVer.IsStripped && specUnityVer != unityVer)
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{
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Logger.Warning($"Detected Unity version is different from the specified one ({specUnityVer.FullVersion.Color(ColorConsole.BrightCyan)}).\n" +
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$"Assets may load with errors.\n" +
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$"It is recommended to specify the detected Unity version: {unityVer.FullVersion.Color(ColorConsole.BrightCyan)}");
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}
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unityVer = specUnityVer;
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}
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if (!unityVer.IsStripped)
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{
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// https://issuetracker.unity3d.com/issues/files-within-assetbundles-do-not-start-on-aligned-boundaries-breaking-patching-on-nintendo-switch
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if (unityVer < 2020
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|| unityVer.IsInRange(2020, (2020, 3, 34))
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|| unityVer.IsInRange(2021, (2021, 3, 2))
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|| unityVer.IsInRange(2022, (2022, 1, 1)))
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{
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isUnityCnEnc = ((CnEncryptionFlags)m_Header.flags & CnEncryptionFlags.OldFlag) != 0;
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}
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else
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{
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isUnityCnEnc = ((CnEncryptionFlags)m_Header.flags & CnEncryptionFlags.NewFlag) != 0;
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}
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}
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if (isUnityCnEnc)
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{
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var msg = "Unsupported bundle file. ";
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msg += specUnityVer != null
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? "UnityCN encryption was detected or the specified Unity version is incorrect."
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: "UnityCN encryption was detected.";
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throw new NotSupportedException(msg);
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}
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ReadBlocksInfoAndDirectory(reader, unityVer);
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using (var blocksStream = CreateBlocksStream(reader.FullPath))
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{
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ReadBlocks(reader, blocksStream, useZstd);
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ReadFiles(blocksStream, reader.FullPath);
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}
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break;
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}
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}
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private void ReadHeaderAndBlocksInfo(FileReader reader)
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{
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if (m_Header.version >= 4)
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{
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var hash = reader.ReadBytes(16);
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var crc = reader.ReadUInt32();
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}
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var minimumStreamedBytes = reader.ReadUInt32();
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m_Header.size = reader.ReadUInt32();
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var numberOfLevelsToDownloadBeforeStreaming = reader.ReadUInt32();
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var levelCount = reader.ReadInt32();
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m_BlocksInfo = new StorageBlock[1];
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for (int i = 0; i < levelCount; i++)
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{
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var storageBlock = new StorageBlock()
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{
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compressedSize = reader.ReadUInt32(),
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uncompressedSize = reader.ReadUInt32(),
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};
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if (i == levelCount - 1)
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{
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m_BlocksInfo[0] = storageBlock;
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}
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}
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if (m_Header.version >= 2)
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{
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var completeFileSize = reader.ReadUInt32();
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}
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if (m_Header.version >= 3)
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{
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var fileInfoHeaderSize = reader.ReadUInt32();
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}
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reader.Position = m_Header.size;
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}
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private Stream CreateBlocksStream(string path)
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{
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Stream blocksStream;
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var uncompressedSizeSum = m_BlocksInfo.Sum(x => x.uncompressedSize);
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if (uncompressedSizeSum >= int.MaxValue)
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{
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/*var memoryMappedFile = MemoryMappedFile.CreateNew(null, uncompressedSizeSum);
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assetsDataStream = memoryMappedFile.CreateViewStream();*/
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blocksStream = new FileStream(path + ".temp", FileMode.Create, FileAccess.ReadWrite, FileShare.None, 4096, FileOptions.DeleteOnClose);
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}
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else
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{
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blocksStream = new MemoryStream((int)uncompressedSizeSum);
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}
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return blocksStream;
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}
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private void ReadBlocksAndDirectory(FileReader reader, Stream blocksStream)
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{
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var isCompressed = m_Header.signature == "UnityWeb";
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foreach (var blockInfo in m_BlocksInfo)
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{
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var uncompressedBytes = reader.ReadBytes((int)blockInfo.compressedSize);
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if (isCompressed)
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{
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using (var memoryStream = new MemoryStream(uncompressedBytes))
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{
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using (var decompressStream = SevenZipHelper.StreamDecompress(memoryStream))
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{
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uncompressedBytes = decompressStream.ToArray();
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}
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}
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}
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blocksStream.Write(uncompressedBytes, 0, uncompressedBytes.Length);
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}
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blocksStream.Position = 0;
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var blocksReader = new EndianBinaryReader(blocksStream);
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var nodesCount = blocksReader.ReadInt32();
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m_DirectoryInfo = new Node[nodesCount];
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for (int i = 0; i < nodesCount; i++)
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{
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m_DirectoryInfo[i] = new Node
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{
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path = blocksReader.ReadStringToNull(),
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offset = blocksReader.ReadUInt32(),
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size = blocksReader.ReadUInt32()
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};
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}
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}
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public void ReadFiles(Stream blocksStream, string path)
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{
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fileList = new StreamFile[m_DirectoryInfo.Length];
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for (int i = 0; i < m_DirectoryInfo.Length; i++)
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{
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var node = m_DirectoryInfo[i];
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var file = new StreamFile();
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fileList[i] = file;
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file.path = node.path;
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file.fileName = Path.GetFileName(node.path);
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if (node.size >= int.MaxValue)
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{
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/*var memoryMappedFile = MemoryMappedFile.CreateNew(null, entryinfo_size);
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file.stream = memoryMappedFile.CreateViewStream();*/
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var extractPath = path + "_unpacked" + Path.DirectorySeparatorChar;
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Directory.CreateDirectory(extractPath);
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file.stream = new FileStream(extractPath + file.fileName, FileMode.Create, FileAccess.ReadWrite, FileShare.ReadWrite);
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}
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else
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{
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file.stream = new MemoryStream((int)node.size);
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}
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blocksStream.Position = node.offset;
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blocksStream.CopyTo(file.stream, node.size);
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file.stream.Position = 0;
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}
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}
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private void ReadHeader(FileReader reader)
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{
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m_Header.size = reader.ReadInt64();
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m_Header.compressedBlocksInfoSize = reader.ReadUInt32();
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m_Header.uncompressedBlocksInfoSize = reader.ReadUInt32();
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m_Header.flags = (ArchiveFlags)reader.ReadUInt32();
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if (m_Header.signature != "UnityFS")
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{
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reader.ReadByte();
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}
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}
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private void ReadBlocksInfoAndDirectory(FileReader reader, UnityVersion unityVer)
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{
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byte[] blocksInfoBytes;
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if (m_Header.version >= 7)
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{
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reader.AlignStream(16);
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}
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else if (unityVer >= (2019, 4) && m_Header.flags != ArchiveFlags.BlocksAndDirectoryInfoCombined)
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{
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//check if we need to align the reader
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//- align to 16 bytes and check if all are 0
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//- if not, reset the reader to the previous position
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var preAlign = reader.Position;
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var alignData = reader.ReadBytes((16 - (int)(preAlign % 16)) % 16);
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if (alignData.Any(x => x != 0))
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{
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reader.Position = preAlign;
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}
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}
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if ((m_Header.flags & ArchiveFlags.BlocksInfoAtTheEnd) != 0)
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{
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var position = reader.Position;
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reader.Position = m_Header.size - m_Header.compressedBlocksInfoSize;
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blocksInfoBytes = reader.ReadBytes((int)m_Header.compressedBlocksInfoSize);
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reader.Position = position;
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}
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else //0x40 BlocksAndDirectoryInfoCombined
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{
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blocksInfoBytes = reader.ReadBytes((int)m_Header.compressedBlocksInfoSize);
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}
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MemoryStream blocksInfoUncompressedStream;
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var uncompressedSize = m_Header.uncompressedBlocksInfoSize;
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var compressionType = (CompressionType)(m_Header.flags & ArchiveFlags.CompressionTypeMask);
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switch (compressionType)
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{
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case CompressionType.None:
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{
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blocksInfoUncompressedStream = new MemoryStream(blocksInfoBytes);
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break;
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}
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case CompressionType.Lzma:
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{
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blocksInfoUncompressedStream = new MemoryStream((int) (uncompressedSize));
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using (var blocksInfoCompressedStream = new MemoryStream(blocksInfoBytes))
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{
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SevenZipHelper.StreamDecompress(blocksInfoCompressedStream, blocksInfoUncompressedStream,
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m_Header.compressedBlocksInfoSize, m_Header.uncompressedBlocksInfoSize);
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}
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blocksInfoUncompressedStream.Position = 0;
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break;
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}
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case CompressionType.Lz4:
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case CompressionType.Lz4HC:
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{
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var uncompressedBytes = new byte[uncompressedSize];
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var numWrite = LZ4Codec.Decode(blocksInfoBytes, uncompressedBytes);
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if (numWrite != uncompressedSize)
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{
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throw new IOException($"Lz4 decompression error, write {numWrite} bytes but expected {uncompressedSize} bytes");
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}
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blocksInfoUncompressedStream = new MemoryStream(uncompressedBytes);
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break;
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}
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default:
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throw new IOException($"Unsupported block info compression type {compressionType}");
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}
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using (var blocksInfoReader = new EndianBinaryReader(blocksInfoUncompressedStream))
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{
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var uncompressedDataHash = blocksInfoReader.ReadBytes(16);
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var blocksInfoCount = blocksInfoReader.ReadInt32();
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m_BlocksInfo = new StorageBlock[blocksInfoCount];
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for (int i = 0; i < blocksInfoCount; i++)
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{
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m_BlocksInfo[i] = new StorageBlock
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{
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uncompressedSize = blocksInfoReader.ReadUInt32(),
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compressedSize = blocksInfoReader.ReadUInt32(),
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flags = (StorageBlockFlags)blocksInfoReader.ReadUInt16()
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};
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}
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var nodesCount = blocksInfoReader.ReadInt32();
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m_DirectoryInfo = new Node[nodesCount];
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for (int i = 0; i < nodesCount; i++)
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{
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m_DirectoryInfo[i] = new Node
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{
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offset = blocksInfoReader.ReadInt64(),
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size = blocksInfoReader.ReadInt64(),
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flags = blocksInfoReader.ReadUInt32(),
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path = blocksInfoReader.ReadStringToNull(),
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};
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}
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}
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if ((m_Header.flags & ArchiveFlags.BlockInfoNeedPaddingAtStart) != 0)
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{
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reader.AlignStream(16);
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}
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}
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private void ReadBlocks(FileReader reader, Stream blocksStream, bool useZstd)
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{
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var zstdCodec = new Decompressor();
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var i = 0;
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foreach (var blockInfo in m_BlocksInfo)
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{
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var compressionType = (CompressionType)(blockInfo.flags & StorageBlockFlags.CompressionTypeMask);
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switch (compressionType)
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{
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case CompressionType.None:
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{
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reader.BaseStream.CopyTo(blocksStream, blockInfo.compressedSize);
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break;
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}
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case CompressionType.Lzma:
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{
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SevenZipHelper.StreamDecompress(reader.BaseStream, blocksStream, blockInfo.compressedSize, blockInfo.uncompressedSize);
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break;
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}
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case CompressionType.Lz4:
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case CompressionType.Lz4HC:
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case CompressionType.Custom:
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{
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var compressedSize = (int)blockInfo.compressedSize;
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var compressedBytes = BigArrayPool<byte>.Shared.Rent(compressedSize);
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_ = reader.Read(compressedBytes, 0, compressedSize);
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var uncompressedSize = (int)blockInfo.uncompressedSize;
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var uncompressedBytes = BigArrayPool<byte>.Shared.Rent(uncompressedSize);
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try
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{
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var compTypeStr = compressionType.ToString();
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if (compressionType == CompressionType.Custom)
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{
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compTypeStr = useZstd ? "Zstd" : "Lz4";
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if (i == 0)
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{
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Logger.Debug($"Custom block compression type was detected. Trying to decompress as {compTypeStr} archive..");
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i++;
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}
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}
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int numWrite;
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if (compressionType == CompressionType.Custom && useZstd)
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{
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numWrite = zstdCodec.Unwrap(compressedBytes, 0, compressedSize, uncompressedBytes, 0, uncompressedSize);
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}
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else
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{
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numWrite = LZ4Codec.Decode(compressedBytes, 0, compressedSize, uncompressedBytes, 0, uncompressedSize);
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}
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if (numWrite != uncompressedSize)
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{
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throw new IOException($"{compTypeStr} block decompression error, write {numWrite} bytes but expected {uncompressedSize} bytes");
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}
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blocksStream.Write(uncompressedBytes, 0, uncompressedSize);
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}
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finally
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{
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BigArrayPool<byte>.Shared.Return(compressedBytes, clearArray: true);
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BigArrayPool<byte>.Shared.Return(uncompressedBytes, clearArray: true);
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}
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break;
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}
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default:
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throw new IOException($"Unsupported block compression type {compressionType}");
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}
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}
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blocksStream.Position = 0;
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}
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}
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}
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