Files
Wand-Enhancer-k1tbyte/AsarSharp/AsarFileSystem/Disk.cs
T

249 lines
10 KiB
C#

using System;
using System.Collections.Concurrent;
using System.Collections.Generic;
using System.IO;
using AsarSharp.Integrity;
using AsarSharp.PickleTools;
using AsarSharp.Utils;
using Newtonsoft.Json;
namespace AsarSharp.AsarFileSystem
{
public static class Disk
{
private const int StreamBufferSize = 1024 * 1024;
public class ArchiveHeader
{
public FilesystemEntry Header { get; set; }
public string HeaderString { get; set; }
public int HeaderSize { get; set; }
}
public class FilesystemFilesAndLinks
{
public List<BasicFileInfo> Files { get; set; } = new List<BasicFileInfo>();
}
public class BasicFileInfo
{
public string Filename { get; set; }
public bool Unpack { get; set; }
}
#region Reading
public static ArchiveHeader ReadArchiveHeaderSync(string archivePath)
{
using (var fs = new FileStream(archivePath, FileMode.Open, FileAccess.Read, FileShare.Read,
65536, FileOptions.SequentialScan))
{
byte[] sizeBuf = new byte[8];
if (fs.ReadFull(sizeBuf, 0, 8) != 8)
throw new Exception("Unable to read header size");
var sizePickle = Pickle.CreateFromBuffer(sizeBuf);
var size = sizePickle.CreateIterator().ReadUInt32();
var headerBuf = new byte[size];
if (fs.ReadFull(headerBuf, 0, (int)size) != size)
throw new Exception("Unable to read header");
var headerPickle = Pickle.CreateFromBuffer(headerBuf);
var header = headerPickle.CreateIterator().ReadString();
var headerObj = JsonConvert.DeserializeObject<FilesystemEntry>(header);
return new ArchiveHeader
{
Header = headerObj,
HeaderString = header,
HeaderSize = (int)size
};
}
}
/// <summary>
/// Reads the header fresh every time: an archive is repacked in place during a patch run,
/// so a cached header would hand out stale offsets on the next read of the same path.
/// </summary>
public static Filesystem ReadFilesystemSync(string archivePath)
{
var header = ReadArchiveHeaderSync(archivePath);
var filesystem = new Filesystem(archivePath);
filesystem.SetHeader(header.Header, header.HeaderSize);
return filesystem;
}
#endregion
public static void CopyFile(string dest, string rootPath, string filename)
{
if (dest == null)
throw new ArgumentNullException(nameof(dest));
if (rootPath == null)
throw new ArgumentNullException(nameof(rootPath));
if (filename == null)
throw new ArgumentNullException(nameof(filename));
string normalizedDestRoot = Path.GetFullPath(dest)
.TrimEnd(Path.DirectorySeparatorChar, Path.AltDirectorySeparatorChar);
string normalizedRootPath = Path.GetFullPath(rootPath)
.TrimEnd(Path.DirectorySeparatorChar, Path.AltDirectorySeparatorChar);
if (string.Equals(normalizedDestRoot, normalizedRootPath, StringComparison.OrdinalIgnoreCase))
return;
string sourcePath = Path.GetFullPath(Path.Combine(rootPath, filename));
string destPath = Path.GetFullPath(Path.Combine(dest, filename));
if (string.Equals(sourcePath, destPath, StringComparison.OrdinalIgnoreCase))
return;
Directory.CreateDirectory(Path.GetDirectoryName(destPath) ?? throw new InvalidOperationException());
using (var src = new FileStream(sourcePath, FileMode.Open, FileAccess.Read, FileShare.Read, StreamBufferSize, FileOptions.SequentialScan))
using (var dst = new FileStream(destPath, FileMode.Create, FileAccess.Write, FileShare.None, StreamBufferSize, FileOptions.SequentialScan))
{
src.CopyTo(dst, StreamBufferSize);
}
}
public static void WriteFileSystem(string dest, Filesystem fileSystem,
FilesystemFilesAndLinks lists, Dictionary<string, CrawledFileType> metadata)
{
var serializerSettings = new JsonSerializerSettings
{
NullValueHandling = NullValueHandling.Ignore,
DefaultValueHandling = DefaultValueHandling.Ignore
};
// --- Phase 1: write placeholder header ---
string headerJson = JsonConvert.SerializeObject(fileSystem.GetHeader(), serializerSettings);
var headerPickle = Pickle.CreateEmpty();
headerPickle.WriteString(headerJson);
var sizePickle = Pickle.CreateEmpty();
sizePickle.WriteUInt32((uint)headerPickle.GetTotalSize());
int sizePickleSize = sizePickle.GetTotalSize();
var buf = new byte[StreamBufferSize];
var blockBuf = new byte[4 * 1024 * 1024]; // shared across all files — avoids 4MB alloc per file
// Build beside the target and swap at the end. Writing straight into dest truncates
// it on open, so any failure mid-write left the caller with a destroyed archive.
string tempPath = dest + ".building";
try
{
WriteArchive(tempPath, dest, fileSystem, lists, serializerSettings,
headerPickle, sizePickle, sizePickleSize, buf, blockBuf);
ReplaceFile(tempPath, dest);
}
catch
{
TryDelete(tempPath);
throw;
}
}
private static void ReplaceFile(string tempPath, string dest)
{
if (!File.Exists(dest))
{
File.Move(tempPath, dest);
return;
}
// A read-only or hidden archive would fail the swap the same way an overwrite does.
Extensions.ClearAttributes(dest);
// File.Replace swaps in one step, so dest is never observed missing or half-written.
File.Replace(tempPath, dest, null, true);
}
private static void TryDelete(string path)
{
try
{
if (File.Exists(path))
{
File.Delete(path);
}
}
catch (Exception e) when (e is IOException || e is UnauthorizedAccessException)
{
// Leftover build file only wastes space; the real failure is already propagating.
}
}
private static void WriteArchive(string archivePath, string dest, Filesystem fileSystem,
FilesystemFilesAndLinks lists, JsonSerializerSettings serializerSettings,
Pickle headerPickle, Pickle sizePickle, int sizePickleSize, byte[] buf, byte[] blockBuf)
{
using (var fs = new FileStream(archivePath, FileMode.Create, FileAccess.Write, FileShare.None, StreamBufferSize, FileOptions.SequentialScan))
{
sizePickle.WriteTo(fs);
headerPickle.WriteTo(fs);
// --- Phase 2: stream files, hash in one pass, patch nodes in-memory ---
foreach (var file in lists.Files)
{
if (file.Unpack)
{
var relName = Extensions.GetRelativePath(fileSystem.GetRootPath(), file.Filename);
CopyFile($"{dest}.unpacked", fileSystem.GetRootPath(), relName);
CopyAndHash(file.Filename, null, buf, blockBuf, fileSystem);
continue;
}
CopyAndHash(file.Filename, fs, buf, blockBuf, fileSystem);
}
// --- Phase 3: re-serialize header with real hashes, seek back, overwrite ---
string patchedJson = JsonConvert.SerializeObject(fileSystem.GetHeader(), serializerSettings);
var patchedPickle = Pickle.CreateEmpty();
patchedPickle.WriteString(patchedJson);
var patchedSizePickle = Pickle.CreateEmpty();
patchedSizePickle.WriteUInt32((uint)patchedPickle.GetTotalSize());
// The rewrite lands on top of the placeholder header, so it must be exactly as
// long. Placeholder hashes are the same width as real ones, so this holds unless
// a file changed size between crawl and write - which would silently shred the
// payload that follows.
if (patchedPickle.GetTotalSize() != headerPickle.GetTotalSize() ||
patchedSizePickle.GetTotalSize() != sizePickleSize)
{
throw new InvalidOperationException(
"ASAR header changed size while packing (a source file was modified mid-build). " +
"Aborting rather than writing a corrupt archive.");
}
fs.Position = 0;
patchedSizePickle.WriteTo(fs);
patchedPickle.WriteTo(fs);
}
}
private static void CopyAndHash(string srcPath, Stream dest, byte[] buf, byte[] blockBuf, Filesystem fs)
{
string relPath = Extensions.GetRelativePath(fs.GetRootPath(), srcPath);
var node = fs.GetNode(relPath, followLinks: false);
long fileSize = node?.Size ?? 0;
int estimatedBlocks = fileSize > 0 ? (int)((fileSize + 4 * 1024 * 1024 - 1) / (4 * 1024 * 1024)) : 0;
using (var hasher = new IntegrityHelper.StreamingHasher(estimatedBlocks, blockBuf))
using (var src = new FileStream(srcPath, FileMode.Open, FileAccess.Read, FileShare.Read, StreamBufferSize, FileOptions.SequentialScan))
{
int read;
while ((read = src.Read(buf, 0, buf.Length)) > 0)
{
hasher.Append(buf, 0, read);
dest?.Write(buf, 0, read);
}
if (node != null)
node.Integrity = hasher.Finalise();
}
}
}
}