Initial work towards one-pass hashing
This commit is contained in:
+150
-49
@@ -300,6 +300,11 @@ namespace LibIRD
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/// </summary>
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/// </summary>
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private long[] RegionEnd { get; set; }
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private long[] RegionEnd { get; set; }
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/// <summary>
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/// File extents to hash
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/// </summary>
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private Range<long, long>[][] FileExtents { get; set; }
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#endregion
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#endregion
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#region Constructors
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#region Constructors
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@@ -351,11 +356,9 @@ namespace LibIRD
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/// <summary>
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/// <summary>
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/// Default constructor for internal derived classes only: resulting object not in usable state
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/// Default constructor for internal derived classes only: resulting object not in usable state
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/// Assumes that internally derived class will set fields in its own constructor
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/// </summary>
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/// </summary>
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private protected IRD()
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private protected IRD() { }
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{
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// Assumes that internally derived class will set fields in its own constructor
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}
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/// <summary>
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/// <summary>
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/// Constructor with given required fields
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/// Constructor with given required fields
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@@ -697,29 +700,43 @@ namespace LibIRD
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// Read and compress the ISO footer
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// Read and compress the ISO footer
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GetFooter(fs);
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GetFooter(fs);
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// Process all regions on ISO
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// Get info region info from ISO
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HashRegions(fs);
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GetRegions(fs);
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// TODO: Speed up program by hashing regions and files at the same time (read from filesystem only once)
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// Recursively count all files in ISO to allocate file arrays
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// Recursively count all files in ISO to allocate file arrays
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DiscDirectoryInfo rootDir = reader.GetDirectoryInfo("\\");
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DiscDirectoryInfo rootDir = reader.GetDirectoryInfo("\\");
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FileCount = 0;
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FileCount = 0;
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CountFiles(rootDir);
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CountFiles(rootDir);
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// Pre-allocate arrays and reset file count
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FileKeys = new long[FileCount];
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FileKeys = new long[FileCount];
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FileHashes = new byte[FileCount][];
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FileExtents = new Range<long, long>[FileCount][];
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// Determine file offsets and hashes
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uint fileCount = FileCount;
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uint fileCount = FileCount;
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FileCount = 0;
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FileCount = 0;
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HashFiles(fs, reader, rootDir);
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// Determine file offsets
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GetFiles(fs, reader, rootDir);
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FileHashes = new byte[FileCount][];
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// Resize arrays if non-contiguous files were detected
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if (FileCount != fileCount)
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if (FileCount != fileCount)
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{
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{
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long[] tempFileKeys = FileKeys;
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long[] tempFileKeys = FileKeys;
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Array.Resize(ref tempFileKeys, (int)FileCount);
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Array.Resize(ref tempFileKeys, (int)FileCount);
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FileKeys = tempFileKeys;
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FileKeys = tempFileKeys;
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Range<long, long>[][] tempFileExtents = FileExtents;
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Array.Resize(ref tempFileExtents, (int)FileCount);
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FileExtents = tempFileExtents;
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}
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}
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Array.Sort(FileKeys, FileHashes);
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// Sort files by offset
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Array.Sort(FileKeys, FileExtents);
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// Calculate CRC32 hash of ISO only if generating a redump IRD and the UID is not already set
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HashISO(fs, redump && UID == 0x00000000);
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// Determine region hashes
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HashRegions(fs);
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// Determine file hashes
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HashFiles(fs);
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}
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}
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#endregion
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#endregion
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@@ -731,7 +748,7 @@ namespace LibIRD
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/// </summary>
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/// </summary>
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/// <remarks>PS3UPDAT.PUP update file version number</remarks>
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/// <remarks>PS3UPDAT.PUP update file version number</remarks>
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/// <param name="fs">ISO filestream</param>
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/// <param name="fs">ISO filestream</param>
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/// <param name="reader"></param>
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/// <param name="reader">CDReader</param>
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/// <exception cref="InvalidFileSystemException"></exception>
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/// <exception cref="InvalidFileSystemException"></exception>
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private void GetSystemVersion(FileStream fs, CDReader reader)
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private void GetSystemVersion(FileStream fs, CDReader reader)
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{
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{
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@@ -774,7 +791,7 @@ namespace LibIRD
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/// Retreives and stores the header
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/// Retreives and stores the header
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/// </summary>
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/// </summary>
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/// <param name="fs">ISO filestream</param>
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/// <param name="fs">ISO filestream</param>
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/// <param name="reader"></param>
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/// <param name="reader">CDReader</param>
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/// <exception cref="InvalidFileSystemException"></exception>
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/// <exception cref="InvalidFileSystemException"></exception>
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private void GetHeader(FileStream fs, CDReader reader)
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private void GetHeader(FileStream fs, CDReader reader)
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{
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{
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@@ -844,11 +861,11 @@ namespace LibIRD
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}
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}
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/// <summary>
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/// <summary>
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/// Determines and stores the hashes for each disc region
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/// Retreives and stores the Region extents
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/// </summary>
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/// </summary>
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/// <param name="fs"></param>
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/// <param name="fs">ISO filestream</param>
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/// <exception cref="InvalidFileSystemException"></exception>
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/// <exception cref="InvalidFileSystemException"></exception>
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private void HashRegions(FileStream fs)
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private void GetRegions(FileStream fs)
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{
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{
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// Determine the number of unencryted regions
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// Determine the number of unencryted regions
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fs.Seek(0, SeekOrigin.Begin);
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fs.Seek(0, SeekOrigin.Begin);
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@@ -888,7 +905,15 @@ namespace LibIRD
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RegionStart[0] = FirstDataSector;
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RegionStart[0] = FirstDataSector;
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// Remove footer from last region
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// Remove footer from last region
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RegionEnd[^1] = (UpdateEnd / SectorSize) - 1;
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RegionEnd[^1] = (UpdateEnd / SectorSize) - 1;
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}
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/// <summary>
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/// Determines and stores the hashes for each disc region
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/// </summary>
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/// <param name="fs">ISO filestream</param>
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/// <exception cref="InvalidFileSystemException"></exception>
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private void HashRegions(FileStream fs)
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{
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// Determine MD5 hashes for each region
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// Determine MD5 hashes for each region
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int bufSectors = 1024;
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int bufSectors = 1024;
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byte[] buf = new byte[bufSectors * SectorSize];
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byte[] buf = new byte[bufSectors * SectorSize];
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@@ -930,11 +955,12 @@ namespace LibIRD
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}
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}
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/// <summary>
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/// <summary>
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/// Determine and store hashes for all files and files within subdirectories recursively
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/// Determine and store file extents for all files and files within subdirectories recursively
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/// </summary>
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/// </summary>
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/// <param name="reader"></param>
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/// <param name="fs">ISO filestream</param>
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/// <param name="path"></param>
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/// <param name="reader">CDReader</param>
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private void HashFiles(FileStream fs, CDReader reader, DiscDirectoryInfo dir)
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/// <param name="dir">Folder to search for files within</param>
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private void GetFiles(FileStream fs, CDReader reader, DiscDirectoryInfo dir)
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{
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{
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// Process all files in current directory
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// Process all files in current directory
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foreach (DiscFileInfo fileInfo in dir.GetFiles())
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foreach (DiscFileInfo fileInfo in dir.GetFiles())
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@@ -942,25 +968,25 @@ namespace LibIRD
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string filePath = fileInfo.FullName;
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string filePath = fileInfo.FullName;
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// Determine the extents of the file via clusters
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// Determine the extents of the file via clusters
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Range<long, long>[] fileClusters = reader.PathToClusters(filePath);
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Range<long, long>[] fileExtent = reader.PathToClusters(filePath);
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// If invalid clusters were returned, we can't hash this file
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// If invalid clusters were returned, we can't hash this file
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if (fileClusters == null && fileClusters.Length == 0)
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if (fileExtent == null && fileExtent.Length == 0)
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throw new InvalidFileSystemException($"Unexpected file extents for {filePath}");
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throw new InvalidFileSystemException($"Unexpected file extents for {filePath}");
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// Determine smallest file offset as first sector
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// Determine smallest file offset as first sector
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long smallestOffset = fileClusters[0].Offset;
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long smallestOffset = fileExtent[0].Offset;
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bool nonContiguous = false;
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bool nonContiguous = false;
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for (int i = 1; i < fileClusters.Length; i++)
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for (int i = 1; i < fileExtent.Length; i++)
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{
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{
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if (fileClusters[i] == null)
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if (fileExtent[i] == null)
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throw new InvalidFileSystemException($"Unexpected file extents for {filePath}");
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throw new InvalidFileSystemException($"Unexpected file extents for {filePath}");
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if (fileClusters[i].Offset * SectorSize != fileClusters[i - 1].Offset * SectorSize + fileClusters[i - 1].Count)
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if (fileExtent[i].Offset * SectorSize != fileExtent[i - 1].Offset * SectorSize + fileExtent[i - 1].Count)
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nonContiguous = true;
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nonContiguous = true;
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if (fileClusters[i].Offset < smallestOffset)
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if (fileExtent[i].Offset < smallestOffset)
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smallestOffset = fileClusters[i].Offset;
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smallestOffset = fileExtent[i].Offset;
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}
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}
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// If already encountered file offset, skip this file
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// If already encountered file offset, skip this file
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@@ -969,14 +995,35 @@ namespace LibIRD
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else if (nonContiguous)
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else if (nonContiguous)
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Console.WriteLine($"Non-contiguous file found: {filePath}");
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Console.WriteLine($"Non-contiguous file found: {filePath}");
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// Add file offset to keys
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// Add file offset to keys and extents to extents
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FileKeys[FileCount] = smallestOffset;
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FileKeys[FileCount] = smallestOffset;
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FileExtents[FileCount] = fileExtent;
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FileCount++;
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}
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// Recursively process all subfolders of current directory
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foreach (DiscDirectoryInfo dirInfo in dir.GetDirectories())
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{
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GetFiles(fs, reader, dirInfo);
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}
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}
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/// <summary>
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/// Calculate hashes for all file extents
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/// </summary>
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/// <param name="fs">ISO filestream</param>
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private void HashFiles(FileStream fs)
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{
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// Process all files in current directory
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int bufSectors = 1024;
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byte[] buf = new byte[bufSectors * SectorSize];
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for (int file = 0; file < FileCount; file++)
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{
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// Determine whether file is in encrypted or decrypted region
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// Determine whether file is in encrypted or decrypted region
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bool encrypted = false;
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bool encrypted = false;
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for (int i = RegionCount - 1; i > 0; i--)
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for (int i = RegionCount - 1; i > 0; i--)
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{
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{
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if (RegionStart[i] <= smallestOffset)
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if (RegionStart[i] <= FileKeys[file])
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{
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{
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encrypted = i % 2 == 1;
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encrypted = i % 2 == 1;
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break;
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break;
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@@ -984,18 +1031,18 @@ namespace LibIRD
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}
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}
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// Read one sector at a time for small files
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// Read one sector at a time for small files
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int bufSectors = (fileClusters[0].Count < 1024 * SectorSize) ? 1 : 1024;
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//int bufSectors = FileExtents[file][0].Count > 1024 * SectorSize ? 1024 : 32;
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byte[] buf = new byte[bufSectors * SectorSize];
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//byte[] buf = new byte[bufSectors * SectorSize];
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// Hash each non-contiguous portion of the file
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// Hash each non-contiguous portion of the file
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using MD5 md5 = MD5.Create();
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using MD5 md5 = MD5.Create();
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for (int i = 0; i < fileClusters.Length; i++)
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for (int i = 0; i < FileExtents[file].Length; i++)
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{
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{
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// Start reading data from the beginning of the current extent
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// Start reading data from the beginning of the current extent
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fs.Seek(fileClusters[i].Offset * SectorSize, SeekOrigin.Begin);
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fs.Seek(FileExtents[file][i].Offset * SectorSize, SeekOrigin.Begin);
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int numBytes;
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int numBytes;
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// Read file in buffers
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// Read file in buffers
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long fileSectors = fileClusters[i].Count / SectorSize;
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long fileSectors = FileExtents[file][i].Count / SectorSize;
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for (int j = 0; j <= fileSectors - bufSectors; j += bufSectors)
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for (int j = 0; j <= fileSectors - bufSectors; j += bufSectors)
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{
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{
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numBytes = fs.Read(buf, 0, buf.Length);
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numBytes = fs.Read(buf, 0, buf.Length);
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@@ -1005,13 +1052,13 @@ namespace LibIRD
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// Decrypt buffer if necessary
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// Decrypt buffer if necessary
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if (encrypted)
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if (encrypted)
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DecryptSectors(ref buf, (int)fileClusters[i].Offset + j);
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DecryptSectors(ref buf, (int)FileExtents[file][i].Offset + j);
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// Hash sector
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// Hash sector
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md5.TransformBlock(buf, 0, buf.Length, null, 0);
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md5.TransformBlock(buf, 0, buf.Length, null, 0);
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}
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}
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// Read remaining partial buffer
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// Read remaining partial buffer
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if ((fileClusters[i].Count % buf.Length) > 0)
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if ((FileExtents[file][i].Count % buf.Length) > 0)
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{
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{
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numBytes = fs.Read(buf, 0, buf.Length);
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numBytes = fs.Read(buf, 0, buf.Length);
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// TODO: Process partial buffer if non-zero is returned
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// TODO: Process partial buffer if non-zero is returned
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@@ -1020,23 +1067,16 @@ namespace LibIRD
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// Decrypt buffer if necessary
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// Decrypt buffer if necessary
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if (encrypted)
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if (encrypted)
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DecryptSectors(ref buf, (int)fileClusters[i].Offset + bufSectors * (int)(fileClusters[i].Count / buf.Length));
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DecryptSectors(ref buf, (int)FileExtents[file][i].Offset + bufSectors * (int)(FileExtents[file][i].Count / buf.Length));
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// Hash partial buffer
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// Hash partial buffer
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md5.TransformBlock(buf, 0, (int)(fileClusters[i].Count % buf.Length), null, 0);
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md5.TransformBlock(buf, 0, (int)(FileExtents[file][i].Count % buf.Length), null, 0);
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}
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}
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}
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}
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// Finalise and store MD5 hash
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// Finalise and store MD5 hash
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md5.TransformFinalBlock(buf, 0, 0);
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md5.TransformFinalBlock(buf, 0, 0);
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FileHashes[FileCount] = md5.Hash;
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FileHashes[file] = md5.Hash;
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FileCount++;
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}
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// Recursively process all subfolders of current directory
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foreach (DiscDirectoryInfo dirInfo in dir.GetDirectories())
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{
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HashFiles(fs, reader, dirInfo);
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}
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}
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}
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}
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@@ -1097,6 +1137,67 @@ namespace LibIRD
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CountFiles(dirInfo);
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CountFiles(dirInfo);
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}
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}
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/// <summary>
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/// Calculate hashes for all region and file extents
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/// </summary>
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/// <param name="fs">ISO filestream</param>
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/// <param name="redump">True if also calculating CRC32 of entire ISO</param>
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private void HashISO(FileStream fs, bool redump)
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{
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// Initialise CRC32 ISO hasher, only used if making redump-style IRD
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byte[] crc32;
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Crc32 isoHasher = new();
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// Initialise MD5 region hashes
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int currentRegion = 0;
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MD5[] regionHashers = new MD5[RegionCount];
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for (int i = 0; i < RegionCount; i++)
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regionHashers[i] = MD5.Create();
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// Initialise MD5 file hashes
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int currentFile = 0;
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MD5[] fileHashers = new MD5[FileCount];
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for (int i = 0; i < FileCount; i++)
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fileHashers[i] = MD5.Create();
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// Start hashing from beginning of ISO
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fs.Seek(0, SeekOrigin.Begin);
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// Read from ISO 1024 sectors at a time
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int bufSectors = 1024;
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byte[] buf = new byte[bufSectors * SectorSize];
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while (true)
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{
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// Attempt to read a full buffer
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int numBytes = fs.Read(buf, 0, buf.Length);
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// If end of ISO reached, stop reading
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if (numBytes == 0)
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break;
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// Partial buffer read, process partial read
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else if (numBytes == buf.Length)
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{
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if (redump)
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isoHasher.Append(buf);
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}
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// Process full buffer
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else
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{
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if (redump)
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isoHasher.Append(buf[..numBytes]);
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}
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}
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currentRegion = currentFile;
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currentFile = currentRegion;
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// Save CRC32 hash to UID field, if making redump-style IRD
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if (redump)
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{
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crc32 = isoHasher.GetCurrentHash();
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UID = BitConverter.ToUInt32(crc32, 0);
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}
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}
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#endregion
|
#endregion
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||||||
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|
||||||
#region IRD File
|
#region IRD File
|
||||||
|
|||||||
+3
-7
@@ -59,11 +59,7 @@ namespace LibIRD
|
|||||||
/// </summary>
|
/// </summary>
|
||||||
/// <param name="isoPath">Path to the ISO</param>
|
/// <param name="isoPath">Path to the ISO</param>
|
||||||
/// <param name="getKeyLog">Path to the GetKey log file</param>
|
/// <param name="getKeyLog">Path to the GetKey log file</param>
|
||||||
public ReIRD(string isoPath, string getKeyLog) : base(isoPath, getKeyLog, true)
|
public ReIRD(string isoPath, string getKeyLog) : base(isoPath, getKeyLog, true) { }
|
||||||
{
|
|
||||||
// Generate Unique Identifier using ISO CRC32
|
|
||||||
UID = GenerateUID(isoPath);
|
|
||||||
}
|
|
||||||
|
|
||||||
/// <summary>
|
/// <summary>
|
||||||
/// Constructor with optional additional region to generate a specific Disc ID
|
/// Constructor with optional additional region to generate a specific Disc ID
|
||||||
@@ -75,8 +71,8 @@ namespace LibIRD
|
|||||||
/// <param name="region">Disc Region</param>
|
/// <param name="region">Disc Region</param>
|
||||||
public ReIRD(string isoPath, byte[] key, long? layerbreak = null, uint? uid = null, Region region = Region.NONE) : base()
|
public ReIRD(string isoPath, byte[] key, long? layerbreak = null, uint? uid = null, Region region = Region.NONE) : base()
|
||||||
{
|
{
|
||||||
// Generate Unique Identifier using ISO CRC32
|
// If the ISO CRC32 is provided, use it as the Unique ID
|
||||||
UID = uid == null ? GenerateUID(isoPath) : (uint)uid;
|
UID = uid == null ? 0x00000000 : (uint)uid;
|
||||||
|
|
||||||
// Determine ISO file size
|
// Determine ISO file size
|
||||||
long size = CalculateSize(isoPath);
|
long size = CalculateSize(isoPath);
|
||||||
|
|||||||
Reference in New Issue
Block a user