Drop support for .NET Framework 4.8
This commit is contained in:
@@ -2,7 +2,7 @@
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<PropertyGroup>
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<OutputType>Exe</OutputType>
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<TargetFrameworks>net48;net6.0;net7.0</TargetFrameworks>
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<TargetFramework>net6.0</TargetFramework>
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<RuntimeIdentifiers>win-x86;win-x64;linux-x64;osx-x64</RuntimeIdentifiers>
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<Version>0.1</Version>
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</PropertyGroup>
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+44
-62
@@ -145,30 +145,23 @@ namespace LibIRD
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throw new ArgumentException("Disc Key must be a byte array of length 16", nameof(key));
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// AES decryption
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using (Aes aes = Aes.Create())
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{
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// Validate aes is available
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if (aes == null)
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throw new InvalidOperationException("AES not available. Change your system settings");
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using Aes aes = Aes.Create() ?? throw new InvalidOperationException("AES not available. Change your system settings");
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// Set AES settings
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aes.Key = D1AesKey;
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aes.IV = D1AesIV;
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aes.Padding = PaddingMode.None;
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aes.Mode = CipherMode.CBC;
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// Set AES settings
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aes.Key = D1AesKey;
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aes.IV = D1AesIV;
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aes.Padding = PaddingMode.None;
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aes.Mode = CipherMode.CBC;
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// Perform AES decryption
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using (ICryptoTransform decryptor = aes.CreateDecryptor())
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{
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MemoryStream ms = new MemoryStream();
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CryptoStream cs = new CryptoStream(ms, decryptor, CryptoStreamMode.Write);
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cs.Write(key, 0, 16);
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cs.FlushFinalBlock();
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Data1Key = ms.ToArray();
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ms.Close();
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cs.Close();
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}
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}
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// Perform AES decryption
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using ICryptoTransform decryptor = aes.CreateDecryptor();
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MemoryStream ms = new();
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CryptoStream cs = new(ms, decryptor, CryptoStreamMode.Write);
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cs.Write(key, 0, 16);
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cs.FlushFinalBlock();
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Data1Key = ms.ToArray();
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ms.Close();
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cs.Close();
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}
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/// <summary>
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@@ -186,30 +179,23 @@ namespace LibIRD
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throw new ArgumentException("Disc ID must be a byte array of length 16", nameof(id));
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// AES encryption
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using (Aes aes = Aes.Create())
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{
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// Validate aes is available
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if (aes == null)
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throw new InvalidOperationException("AES not available. Change your system settings");
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using Aes aes = Aes.Create() ?? throw new InvalidOperationException("AES not available. Change your system settings");
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// Set AES settings
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aes.Key = D2AesKey;
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aes.IV = D2AesIV;
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aes.Padding = PaddingMode.None;
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aes.Mode = CipherMode.CBC;
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// Set AES settings
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aes.Key = D2AesKey;
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aes.IV = D2AesIV;
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aes.Padding = PaddingMode.None;
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aes.Mode = CipherMode.CBC;
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// Perform AES encryption
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using (ICryptoTransform encryptor = aes.CreateEncryptor())
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{
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MemoryStream ms = new MemoryStream();
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CryptoStream cs = new CryptoStream(ms, encryptor, CryptoStreamMode.Write);
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cs.Write(id, 0, 16);
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cs.FlushFinalBlock();
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Data2Key = ms.ToArray();
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ms.Close();
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cs.Close();
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}
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}
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// Perform AES encryption
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using ICryptoTransform encryptor = aes.CreateEncryptor();
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MemoryStream ms = new();
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CryptoStream cs = new(ms, encryptor, CryptoStreamMode.Write);
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cs.Write(id, 0, 16);
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cs.FlushFinalBlock();
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Data2Key = ms.ToArray();
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ms.Close();
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cs.Close();
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}
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#endregion
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@@ -270,7 +256,7 @@ namespace LibIRD
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if (line == null)
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throw new InvalidDataException("Could not find Disc Key in .getkey.log");
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// Get Disc Key from log
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string discKeyStr = line.Substring("disc_key = ".Length);
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string discKeyStr = line["disc_key = ".Length..];
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// Validate Disc Key from log
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if (discKeyStr.Length != 32)
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throw new InvalidDataException("Unexpected Disc Key in .getkey.log");
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@@ -282,12 +268,12 @@ namespace LibIRD
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if (line == null)
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throw new InvalidDataException("Could not find Disc ID in .getkey.log");
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// Get Disc ID from log
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string discIDStr = line.Substring("disc_id = ".Length);
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string discIDStr = line["disc_id = ".Length..];
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// Validate Disc ID from log
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if (discIDStr.Length != 32)
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throw new InvalidDataException("Unexpected Disc ID in .getkey.log");
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// Replace X's in Disc ID with 00000001
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discIDStr = discIDStr.Substring(0, 24) + "00000001";
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discIDStr = discIDStr[..24] + "00000001";
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// Convert Disc ID to byte array
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discID = Utilities.HexToBytes(discIDStr);
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@@ -303,7 +289,7 @@ namespace LibIRD
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if (discPICStr.Length != 256)
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throw new InvalidDataException("Unexpected PIC in .getkey.log");
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// Convert PIC to byte array
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discPIC = Utilities.HexToBytes(discPICStr.Substring(0, 230));
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discPIC = Utilities.HexToBytes(discPICStr[..230]);
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// Check for warnings in .getkey.log
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while ((line = sr.ReadLine()) != null && line.Trim().StartsWith("WARNING") == false && line.Trim().StartsWith("SUCCESS") == false)
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@@ -337,10 +323,10 @@ namespace LibIRD
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throw new ArgumentNullException(nameof(irdPath));
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// Create new stream to write to
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Stream stream = new MemoryStream();
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MemoryStream stream = new();
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// Write IRD data to stream in order
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using (BinaryWriter bw = new BinaryWriter(stream, Encoding.UTF8, true))
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using (BinaryWriter bw = new(stream, Encoding.UTF8, true))
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{
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// IRD File Signature
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bw.Write(Magic);
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@@ -426,7 +412,7 @@ namespace LibIRD
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// Calculate the little-endian 32-bit "IEEE 802.3" CRC value of the entire stream
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stream.Position = 0;
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Crc32 crc32 = new Crc32();
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Crc32 crc32 = new();
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crc32.Append(stream);
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byte[] crc = crc32.GetCurrentHash();
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@@ -434,17 +420,13 @@ namespace LibIRD
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stream.Write(crc, 0, 4);
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// Create the IRD file stream
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using (FileStream fs = new FileStream(irdPath, FileMode.Create, FileAccess.Write))
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{
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// Create a GZipped IRD file stream
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using (GZipStream gzStream = new GZipStream(fs, CompressionLevel.Optimal))
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{
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// Write entire gzipped IRD stream to file
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stream.Position = 0;
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stream.CopyTo(gzStream);
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stream.Close();
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}
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}
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using FileStream fs = new(irdPath, FileMode.Create, FileAccess.Write);
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// Create a GZipped IRD file stream
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using GZipStream gzStream = new(fs, CompressionLevel.SmallestSize);
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// Write entire gzipped IRD stream to file
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stream.Position = 0;
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stream.CopyTo(gzStream);
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stream.Close();
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}
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#endregion
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@@ -1,7 +1,7 @@
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<Project Sdk="Microsoft.NET.Sdk">
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<PropertyGroup>
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<TargetFrameworks>net48;net6.0;net7.0</TargetFrameworks>
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<TargetFramework>net6.0</TargetFramework>
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<RuntimeIdentifiers>win-x86;win-x64;linux-x64;osx-x64</RuntimeIdentifiers>
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<Version>0.1</Version>
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</PropertyGroup>
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+81
-87
@@ -3,7 +3,6 @@ using DiscUtils.Iso9660;
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using System;
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using System.IO;
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using System.IO.Compression;
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using System.Linq;
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using System.Text;
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namespace LibIRD
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@@ -138,7 +137,7 @@ namespace LibIRD
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/// </summary>
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/// <param name="fs"></param>
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/// <param name="reader"></param>
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private void GetSystemVersion(Stream fs, CDReader reader)
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private void GetSystemVersion(FileStream fs, CDReader reader)
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{
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//DiscUtils.Streams.StreamExtent[] a = reader.PathToExtents("\\PS3_UPDATE\\PS3UPDAT.PUP");
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@@ -205,94 +204,89 @@ namespace LibIRD
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FileHashes[i] = NullMD5;
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// Process ISO file
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using (Stream fs = new FileStream(isoPath, FileMode.Open, FileAccess.Read))
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using FileStream fs = new FileStream(isoPath, FileMode.Open, FileAccess.Read) ?? throw new FileNotFoundException(isoPath);
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// Validate ISO file
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if (!CDReader.Detect(fs))
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throw new InvalidDataException("Not a valid ISO file");
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// New ISO Reader from DiscUtils
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CDReader reader = new(fs, true, true);
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// Read PS3 Metadata from PARAM.SFO
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using (DiscUtils.Streams.SparseStream s = reader.OpenFile("PS3_GAME\\PARAM.SFO", FileMode.Open, FileAccess.Read))
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{
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// Validate ISO filestream
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if (fs == null)
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throw new ArgumentNullException("Failed to open ISO");
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if (!CDReader.Detect(fs))
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throw new InvalidDataException("Not a valid ISO file");
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// New ISO Reader from DiscUtils
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CDReader reader = new CDReader(fs, true, true);
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// Read PS3 Metadata from PARAM.SFO
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using (Stream s = reader.OpenFile("PS3_GAME\\PARAM.SFO", FileMode.Open, FileAccess.Read))
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{
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// Parse PARAM.SFO file
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ParamSFO paramSFO = new ParamSFO(s);
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// Store required values for IRD
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TitleID = paramSFO["TITLE_ID"];
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Title = paramSFO["TITLE"];
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GameVersion = paramSFO["VERSION"];
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AppVersion = paramSFO["APP_VER"];
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}
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// Determine system update version
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GetSystemVersion(fs, reader);
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// Determine the extent of the Header (Sector 0 to first data sector)
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//DiscUtils.Streams.Range<long, long> clusters = reader.PathToClusters("\\").First();
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//long firstSector = clusters.Offset;
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//long totalSectors = (long) Math.Ceiling(clusters.Count / 2048.0);
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// Compress the header and store
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DiscUtils.Streams.Range<long, long>[] sfbClusters = reader.PathToClusters("\\PS3_DISC.SFB");
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long firstSector = sfbClusters[0] != null ? sfbClusters[0].Offset : 0;
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using (MemoryStream headerStream = new MemoryStream())
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{
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using (GZipStream gzs = new GZipStream(headerStream, CompressionLevel.Optimal))
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{
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fs.Seek(0, SeekOrigin.Begin);
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byte[] buf = new byte[2048];
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// Read all sectors before the first data sector
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for (int i = 0; i < firstSector; i++)
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{
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int numBytes = fs.Read(buf, 0, buf.Length);
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gzs.Write(buf, 0, numBytes);
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}
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}
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Header = headerStream.ToArray();
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HeaderLength = (uint) Header.Length;
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}
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// Compress the footer and store
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DiscUtils.Streams.StreamExtent[] updateBytes = reader.PathToExtents("\\PS3_UPDATE\\PS3UPDAT.PUP");
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// TODO: check if updateBytes array is not empty?
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long lastByte = updateBytes[updateBytes.Length - 1].Start + updateBytes[updateBytes.Length - 1].Length;
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using (MemoryStream footerStream = new MemoryStream())
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{
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using (GZipStream gzs = new GZipStream(footerStream, CompressionLevel.Optimal))
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{
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// Start saving data from after last file
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fs.Seek(lastByte, SeekOrigin.Begin);
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byte[] buf = new byte[2048];
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int numBytes = 2048;
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// Keep reading data until there is none left to read
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while (numBytes != 0)
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{
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numBytes = fs.Read(buf, 0, buf.Length);
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gzs.Write(buf, 0, numBytes);
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}
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}
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Footer = footerStream.ToArray();
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FooterLength = (uint) Footer.Length;
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}
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// Get info on root directory
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//DiscDirectoryInfo rootDir = reader.GetDirectoryInfo("\\");
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// Recursively process all subdirectories
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ParseDir(reader, "\\");
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// Calculate last sector
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//DiscDirectoryInfo lastFile = reader.
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//lastSector = lastFile.StartSector + lastFile.TotalSectors;
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// Parse PARAM.SFO file
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ParamSFO paramSFO = new(s);
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// Store required values for IRD
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TitleID = paramSFO["TITLE_ID"];
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Title = paramSFO["TITLE"];
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GameVersion = paramSFO["VERSION"];
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AppVersion = paramSFO["APP_VER"];
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}
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// Determine system update version
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GetSystemVersion(fs, reader);
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// Determine the extent of the Header (Sector 0 to first data sector)
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//DiscUtils.Streams.Range<long, long> clusters = reader.PathToClusters("\\").First();
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//long firstSector = clusters.Offset;
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//long totalSectors = (long) Math.Ceiling(clusters.Count / 2048.0);
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// Compress the header and store
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DiscUtils.Streams.Range<long, long>[] sfbClusters = reader.PathToClusters("\\PS3_DISC.SFB");
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long firstSector = sfbClusters[0] != null ? sfbClusters[0].Offset : 0;
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using (MemoryStream headerStream = new())
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{
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using (GZipStream gzs = new(headerStream, CompressionLevel.SmallestSize))
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{
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fs.Seek(0, SeekOrigin.Begin);
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byte[] buf = new byte[2048];
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// Read all sectors before the first data sector
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for (int i = 0; i < firstSector; i++)
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{
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int numBytes = fs.Read(buf, 0, buf.Length);
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gzs.Write(buf, 0, numBytes);
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}
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}
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Header = headerStream.ToArray();
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HeaderLength = (uint)Header.Length;
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}
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// Compress the footer and store
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DiscUtils.Streams.StreamExtent[] updateBytes = reader.PathToExtents("\\PS3_UPDATE\\PS3UPDAT.PUP");
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long lastByte = updateBytes[^1].Start + updateBytes[^1].Length;
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using (MemoryStream footerStream = new())
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{
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using (GZipStream gzs = new(footerStream, CompressionLevel.SmallestSize))
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{
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// Start saving data from after last file
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fs.Seek(lastByte, SeekOrigin.Begin);
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byte[] buf = new byte[2048];
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int numBytes = 2048;
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// Keep reading data until there is none left to read
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while (numBytes != 0)
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{
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numBytes = fs.Read(buf, 0, buf.Length);
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gzs.Write(buf, 0, numBytes);
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}
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}
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Footer = footerStream.ToArray();
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FooterLength = (uint)Footer.Length;
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}
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// Get info on root directory
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//DiscDirectoryInfo rootDir = reader.GetDirectoryInfo("\\");
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// Recursively process all subdirectories
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ParseDir(reader, "\\");
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// Calculate last sector
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//DiscDirectoryInfo lastFile = reader.
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//lastSector = lastFile.StartSector + lastFile.TotalSectors;
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}
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}
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}
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@@ -1,8 +1,8 @@
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<Project Sdk="Microsoft.NET.Sdk">
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<Project Sdk="Microsoft.NET.Sdk">
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<PropertyGroup>
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<OutputType>Exe</OutputType>
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<TargetFrameworks>net48;net6.0;net7.0</TargetFrameworks>
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<TargetFramework>net6.0</TargetFramework>
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<RuntimeIdentifiers>win-x86;win-x64;linux-x64;osx-x64</RuntimeIdentifiers>
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<Version>0.1</Version>
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</PropertyGroup>
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Reference in New Issue
Block a user