38 Commits
Author SHA1 Message Date
Deterous 82d53db68f Bump version 2024-04-11 18:18:45 +09:00
Deterous f8a9c8515d Relax ISO requirements 2024-04-11 18:18:17 +09:00
Deterous 0ef06c36e9 Fix rename functionality, mention in reademe 2024-03-25 13:27:56 +09:00
Deterous c1c25b5f5e Fix issue from moving to ST.Hashing 2024-03-13 12:45:20 +09:00
Deterous c175fedbdb Fix bug for small encrypted regions 2024-03-12 19:42:23 +09:00
Deterous f7879bf9e8 Finalise old dotnet support 2024-03-12 19:08:42 +09:00
Deterous fed9d6ea57 Trim DiscUtils further 2024-03-06 14:14:37 +09:00
Deterous 41946b6bc5 Use trimmed DiscUtils 2024-03-06 12:09:30 +09:00
Deterous d585c4b534 Update ST.Hashing version 2024-03-06 12:09:15 +09:00
Deterous 1886e14a9b Use a trimmed DiscUtils 2024-03-05 23:34:38 +09:00
Deterous e8f4d88711 Use ST.Hashing for SHA1 2024-03-05 15:15:40 +09:00
Deterous 0dbc483a91 Use ST.Hashing for MD5 2024-03-05 15:02:27 +09:00
Deterous b6bb5f0582 Attempt to support net40 with ST.Hashing 2024-03-05 14:52:30 +09:00
Deterous ea3f6d3f96 Support .NET Framework using Newtonsoft 2024-03-05 13:02:25 +09:00
Deterous 4aa6aca25e Support building LibIRD with older .NET Core 2024-03-05 12:33:18 +09:00
Deterous a93c727ba2 Fix spacing 2024-03-05 12:11:34 +09:00
Deterous 55cab8202d Subsume used DiscUtils libraries 2024-03-05 12:01:25 +09:00
Deterous 1fa7380f06 Move DiscUtils to within LibIRD subfolder 2024-03-05 11:01:54 +09:00
DeterousandGitHub a0acd91a55 Update README.md 2024-03-01 12:35:06 +09:00
Deterous 6edb959e49 Bump IRDKit to v0.6.1 2024-02-27 13:24:08 +09:00
Deterous 96b36fcabe Add rename functionality 2024-02-27 12:49:14 +09:00
Deterous 9d03dbb7b1 Perform hashing in one read pass 2024-02-20 16:37:15 +09:00
Deterous c7b49d0c80 Initial work towards one-pass hashing 2024-02-19 21:38:06 +09:00
Deterous 5ce81f9663 Bump version 2024-02-18 17:28:21 +09:00
Deterous f74220efea Read ISO in larger chunks 2024-02-18 16:59:04 +09:00
Deterous 6e529f0050 Reuse ISO hash if searching redump 2024-02-16 11:11:51 +09:00
Deterous b862057123 Only print warning for non-contiguous files 2024-02-11 12:39:13 +09:00
Deterous cf19596ea7 Alphabetical order, key file path 2024-02-08 09:38:46 +09:00
Deterous 6af41a9bb3 Include dependencies in nupkg 2024-02-07 15:43:23 +09:00
Deterous 89c23622bd Remove DiscUtils as a public dependency 2024-02-07 14:41:14 +09:00
Deterous 8ab6a9d694 Fix file hash for split files with irregular filesize 2024-02-07 09:32:56 +09:00
Deterous bc3df52e75 Cleanup 2024-02-05 09:20:59 +09:00
Deterous 23f8dce272 Bump version, provide build script 2024-02-04 12:09:11 +09:00
Deterous 8e45432aab Throw error for BD-Video hybrid discs without layerbreak 2024-02-03 23:15:13 +09:00
Deterous e9bb0ae00a Allow for output folder argument, bump version 2024-02-01 10:55:23 +09:00
Deterous 4116c56b7d Add verbose flag to IRDKit, improve printing 2024-02-01 10:31:07 +09:00
Deterous e30ac0961a Finalise diff function, bump version 2024-02-01 00:52:35 +09:00
Deterous 1ef9f06e35 Improve diff 2024-01-31 23:41:46 +09:00
14 changed files with 1276 additions and 662 deletions
+1 -1
View File
@@ -1,3 +1,3 @@
[submodule "DiscUtils"] [submodule "DiscUtils"]
path = DiscUtils path = LibIRD/DiscUtils
url = https://github.com/Deterous/DiscUtils url = https://github.com/Deterous/DiscUtils
Submodule DiscUtils deleted from f53a1dab61
+12 -9
View File
@@ -3,19 +3,20 @@
<PropertyGroup> <PropertyGroup>
<!-- Assembly Properties --> <!-- Assembly Properties -->
<OutputType>Exe</OutputType> <OutputType>Exe</OutputType>
<PackAsTool>true</PackAsTool> <TargetName>irdkit</TargetName>
<ToolCommandName>irdkit</ToolCommandName> <AssemblyName>irdkit</AssemblyName>
<PackageOutputPath>./nupkg</PackageOutputPath>
<TargetFrameworks>net6.0;net7.0;net8.0</TargetFrameworks> <TargetFrameworks>net6.0;net7.0;net8.0</TargetFrameworks>
<RuntimeIdentifiers>win-x86;win-x64;win-arm64;linux-x64;linux-arm64;osx-x64;osx-arm64</RuntimeIdentifiers> <RuntimeIdentifiers>win-x86;win-x64;win-arm64;linux-x64;linux-arm64;osx-x64;osx-arm64</RuntimeIdentifiers>
<CheckEolTargetFramework>false</CheckEolTargetFramework>
<LangVersion>latest</LangVersion> <LangVersion>latest</LangVersion>
<SuppressTfmSupportBuildWarnings>true</SuppressTfmSupportBuildWarnings>
<TreatWarningsAsErrors>true</TreatWarningsAsErrors> <TreatWarningsAsErrors>true</TreatWarningsAsErrors>
<Version>0.3.0</Version> <Version>0.9.2</Version>
<!-- Package Properties --> <!-- Package Properties -->
<Authors>Deterous</Authors> <Authors>Deterous</Authors>
<Description>Library for ISO Rebuild Data</Description> <Description>Library for ISO Rebuild Data</Description>
<Copyright>Copyright (c) Deterous 2023</Copyright> <Copyright>Copyright (c) Deterous 2023-2024</Copyright>
<PackageReadmeFile>README.md</PackageReadmeFile> <PackageReadmeFile>README.md</PackageReadmeFile>
<RepositoryUrl>https://github.com/Deterous/LibIRD</RepositoryUrl> <RepositoryUrl>https://github.com/Deterous/LibIRD</RepositoryUrl>
<RepositoryType>git</RepositoryType> <RepositoryType>git</RepositoryType>
@@ -28,11 +29,13 @@
</ItemGroup> </ItemGroup>
<ItemGroup> <ItemGroup>
<ProjectReference Include="..\LibIRD\LibIRD.csproj" />
<ProjectReference Include="..\DiscUtils\Library\DiscUtils.Core\DiscUtils.Core.csproj" />
<ProjectReference Include="..\DiscUtils\Library\DiscUtils.Iso9660\DiscUtils.Iso9660.csproj" />
<PackageReference Include="CommandLineParser" Version="2.9.1" /> <PackageReference Include="CommandLineParser" Version="2.9.1" />
<PackageReference Include="SabreTools.RedumpLib" Version="1.3.2" /> <PackageReference Include="SabreTools.Hashing" Version="1.1.4" />
<PackageReference Include="SabreTools.RedumpLib" Version="1.3.4" />
</ItemGroup>
<ItemGroup>
<ProjectReference Include="..\LibIRD\LibIRD.csproj" />
</ItemGroup> </ItemGroup>
</Project> </Project>
+435 -146
View File
@@ -1,16 +1,14 @@
using CommandLine; using System;
using DiscUtils;
using DiscUtils.Iso9660;
using LibIRD;
using SabreTools.RedumpLib.Web;
using System;
using System.Collections.Generic; using System.Collections.Generic;
using System.IO; using System.IO;
using System.IO.Compression; using System.IO.Compression;
using System.IO.Hashing;
using System.Linq; using System.Linq;
using System.Security.Cryptography;
using System.Text; using System.Text;
using System.Xml.Linq;
using CommandLine;
using LibIRD;
using SabreTools.Hashing;
using SabreTools.RedumpLib.Web;
namespace IRDKit namespace IRDKit
{ {
@@ -24,7 +22,7 @@ namespace IRDKit
[Verb("create", HelpText = "Create an IRD from an ISO")] [Verb("create", HelpText = "Create an IRD from an ISO")]
public class CreateOptions public class CreateOptions
{ {
[Value(0, Required = true, HelpText = "Path to an ISO file, or directory of ISO files")] [Value(0, Required = true, HelpText = "Path to ISO file(s), or directory of ISO files")]
public IEnumerable<string> ISOPath { get; set; } public IEnumerable<string> ISOPath { get; set; }
[Option('o', "output", HelpText = "Path to the IRD file to be created (will overwrite)")] [Option('o', "output", HelpText = "Path to the IRD file to be created (will overwrite)")]
@@ -44,6 +42,9 @@ namespace IRDKit
[Option('r', "recurse", HelpText = "Recurse through all subdirectories and generate IRDs for all ISOs")] [Option('r', "recurse", HelpText = "Recurse through all subdirectories and generate IRDs for all ISOs")]
public bool Recurse { get; set; } public bool Recurse { get; set; }
[Option('v', "verbose", HelpText = "Print more information during IRD creation")]
public bool Verbose { get; set; }
} }
/// <summary> /// <summary>
@@ -52,7 +53,7 @@ namespace IRDKit
[Verb("info", HelpText = "Print information from an IRD or ISO")] [Verb("info", HelpText = "Print information from an IRD or ISO")]
public class InfoOptions public class InfoOptions
{ {
[Value(0, Required = true, HelpText = "Path to an IRD or ISO file, or directory of IRD and/or ISO files")] [Value(0, Required = true, HelpText = "Path to IRD/ISO file(s), or directory of IRD/ISO files")]
public IEnumerable<string> InPath { get; set; } public IEnumerable<string> InPath { get; set; }
[Option('o', "output", HelpText = "Path to the text or json file to be created (will overwrite)")] [Option('o', "output", HelpText = "Path to the text or json file to be created (will overwrite)")]
@@ -81,6 +82,34 @@ namespace IRDKit
public string OutPath { get; set; } public string OutPath { get; set; }
} }
/// <summary>
/// IRD rename command
/// </summary>
[Verb("rename", HelpText = "Rename one or more IRD files according to the redump PS3 DAT")]
public class RenameOptions
{
[Value(0, Required = true, HelpText = "Path to IRD file(s), or directory of IRD files")]
public IEnumerable<string> IRDPath { get; set; }
[Option('d', "datfile", Required = true, HelpText = "Path to the redump PS3 Datfile")]
public string DATPath { get; set; }
[Option('s', "serial", HelpText = "Appends disc serial to new IRD filename")]
public bool Serial { get; set; }
[Option('e', "version", HelpText = "Appends disc version to new IRD filename")]
public bool Ver { get; set; }
[Option('c', "crc", HelpText = "Appends ISO CRC to new IRD filename")]
public bool CRC { get; set; }
[Option('r', "recurse", HelpText = "Recurse through all subdirectories and rename all IRDs")]
public bool Recurse { get; set; }
[Option('v', "verbose", HelpText = "Print more information about the renaming")]
public bool Verbose { get; set; }
}
#endregion #endregion
#region Program #region Program
@@ -95,7 +124,7 @@ namespace IRDKit
Console.OutputEncoding = Encoding.UTF8; Console.OutputEncoding = Encoding.UTF8;
// Parse arguments // Parse arguments
var result = Parser.Default.ParseArguments<CreateOptions, InfoOptions, DiffOptions>(args).WithParsed(Run); var result = Parser.Default.ParseArguments<CreateOptions, InfoOptions, DiffOptions, RenameOptions>(args).WithParsed(Run);
} }
/// <summary> /// <summary>
@@ -111,12 +140,17 @@ namespace IRDKit
case CreateOptions opt: case CreateOptions opt:
// Validate ISO paths // Validate ISO paths
ArgumentNullException.ThrowIfNull(opt.ISOPath); if (opt.ISOPath == null || !opt.ISOPath.Any())
{
Console.Error.WriteLine("Provide a valid ISO path to create an IRD");
return;
}
foreach (string isoPath in opt.ISOPath) foreach (string isoPath in opt.ISOPath)
{ {
// Validate ISO path // Validate ISO path
ArgumentNullException.ThrowIfNull(isoPath); if (string.IsNullOrEmpty(isoPath))
continue;
// If directory, search for all ISOs in current directory // If directory, search for all ISOs in current directory
if (Directory.Exists(isoPath)) if (Directory.Exists(isoPath))
@@ -125,49 +159,61 @@ namespace IRDKit
IEnumerable<string> isoFiles; IEnumerable<string> isoFiles;
if (opt.Recurse) if (opt.Recurse)
{ {
if (isoPath == ".") if (opt.Verbose && isoPath == ".")
Console.WriteLine($"Recursively searching for ISOs in current directory"); Console.WriteLine($"Recursively searching for ISOs in current directory");
else else if (opt.Verbose)
Console.WriteLine($"Recursively searching for ISOs in {isoPath}"); Console.WriteLine($"Recursively searching for ISOs in {isoPath}");
isoFiles = Directory.EnumerateFiles(isoPath, "*.iso", SearchOption.AllDirectories); isoFiles = Directory.EnumerateFiles(isoPath, "*.iso", SearchOption.AllDirectories);
} }
else else
{ {
if (isoPath == ".") if (opt.Verbose && isoPath == ".")
Console.WriteLine($"Searching for ISOs in current directory"); Console.WriteLine($"Searching for ISOs in current directory");
else else if (opt.Verbose)
Console.WriteLine($"Searching for ISOs in {isoPath}"); Console.WriteLine($"Searching for ISOs in {isoPath}");
isoFiles = Directory.EnumerateFiles(isoPath, "*.iso", SearchOption.TopDirectoryOnly); isoFiles = Directory.EnumerateFiles(isoPath, "*.iso", SearchOption.TopDirectoryOnly);
} }
// Warn if no files are found // Warn if no files are found
if (!isoFiles.Any()) if (!isoFiles.Any())
Console.WriteLine("No ISOs found (ensure .iso extension)"); {
if (opt.Recurse)
Console.Error.WriteLine($"No ISOs found in {isoPath} (ensure .iso extension)");
else
Console.Error.WriteLine($"No ISOs found in {isoPath} (ensure .iso extension, or try use -r)");
continue;
}
// Determine output IRD folder
string outputPath = opt.IRDPath;
if (File.Exists(opt.IRDPath))
outputPath = Path.GetDirectoryName(opt.IRDPath);
// Create an IRD file for all ISO files found // Create an IRD file for all ISO files found
foreach (string file in isoFiles) foreach (string file in isoFiles.OrderBy(x => x))
ISO2IRD(file); ISO2IRD(file, irdPath: outputPath, keyPath: opt.KeyFile, verbose: opt.Verbose);
} }
else else
{ {
// Check that given file exists // Check that given file exists
if (!File.Exists(isoPath)) throw new ArgumentException("Not a valid file or directory"); if (!File.Exists(isoPath))
{
Console.Error.WriteLine($"ISO not found: {isoPath}");
continue;
}
// Save to given output path, if only 1 IRD is being created string irdPath;
if (opt.ISOPath.Count() == 1 && opt.IRDPath != null && opt.IRDPath != "") // Save to given output path and filename, if only 1 IRD is being created
{ if (opt.ISOPath.Count() == 1)
string irdPath = ISO2IRD(isoPath, opt.IRDPath, opt.Key, opt.KeyFile, opt.GetKeyLog, opt.Layerbreak); irdPath = ISO2IRD(isoPath, irdPath: opt.IRDPath, hexKey: opt.Key, keyPath: opt.KeyFile, getKeyLog: opt.GetKeyLog, layerbreak: opt.Layerbreak, verbose: opt.Verbose);
if (irdPath != null) // Save to given output path, if more than 1 IRD is being created
Console.WriteLine($"IRD saved to {irdPath}");
}
else else
{ irdPath = ISO2IRD(isoPath, irdPath: Path.GetDirectoryName(opt.IRDPath), verbose: opt.Verbose);
string irdPath = ISO2IRD(isoPath, null, opt.Key, opt.KeyFile, opt.GetKeyLog, opt.Layerbreak);
if (irdPath != null) if (irdPath != null)
Console.WriteLine($"IRD saved to {irdPath}"); Console.WriteLine($"IRD saved to {irdPath}");
} }
} }
}
break; break;
@@ -175,7 +221,11 @@ namespace IRDKit
case InfoOptions opt: case InfoOptions opt:
// Validate required parameter // Validate required parameter
ArgumentNullException.ThrowIfNull(opt.InPath); if (opt.InPath == null || !opt.InPath.Any())
{
Console.Error.WriteLine("Provide a valid ISO or IRD path to print info about");
return;
}
// Clear the output file path if it exists // Clear the output file path if it exists
if (opt.OutPath != null && opt.OutPath != "") if (opt.OutPath != null && opt.OutPath != "")
@@ -184,7 +234,8 @@ namespace IRDKit
foreach (string filePath in opt.InPath) foreach (string filePath in opt.InPath)
{ {
// Validate path // Validate path
ArgumentNullException.ThrowIfNull(filePath); if (string.IsNullOrEmpty(filePath))
continue;
// If directory, search for all ISOs in current directory // If directory, search for all ISOs in current directory
if (Directory.Exists(filePath)) if (Directory.Exists(filePath))
@@ -213,7 +264,10 @@ namespace IRDKit
// Warn if no files are found // Warn if no files are found
if (!isoFiles.Any() && !irdFiles.Any()) if (!isoFiles.Any() && !irdFiles.Any())
Console.WriteLine("No IRDs or ISOs found (ensure .ird and .iso extensions)"); {
Console.Error.WriteLine("No IRDs or ISOs found (ensure .ird and .iso extensions)");
return;
}
// Open JSON object // Open JSON object
if (opt.Json) if (opt.Json)
@@ -241,11 +295,11 @@ namespace IRDKit
{ {
PrintISO(file, opt.Json, file.Equals(lastISO), opt.OutPath); PrintISO(file, opt.Json, file.Equals(lastISO), opt.OutPath);
} }
catch (InvalidFileSystemException) catch (IOException)
{ {
// Not a valid ISO file despite extension, assume file is an IRD // Not a valid ISO file despite extension, assume file is an IRD
if (!opt.Json) if (!opt.Json)
Console.WriteLine($"{file} is not a valid ISO file\n"); Console.Error.WriteLine($"{file} is not a valid ISO file\n");
} }
} }
@@ -264,7 +318,11 @@ namespace IRDKit
else else
{ {
// Check that given file exists // Check that given file exists
if (!File.Exists(filePath)) throw new ArgumentException($"{filePath} is not a valid file or directory"); if (!File.Exists(filePath))
{
Console.Error.WriteLine($"{filePath} is not a valid file");
continue;
}
// Print info from given file // Print info from given file
PrintInfo(filePath, opt.Json, true, opt.OutPath); PrintInfo(filePath, opt.Json, true, opt.OutPath);
@@ -279,11 +337,12 @@ namespace IRDKit
// Process options from a `diff` command // Process options from a `diff` command
case DiffOptions opt: case DiffOptions opt:
// Validate required parameter // Validate required parameters
ArgumentNullException.ThrowIfNull(opt.InPath1); if (opt.InPath1 == null || opt.InPath2 == null || !File.Exists(opt.InPath1) || !File.Exists(opt.InPath2))
ArgumentNullException.ThrowIfNull(opt.InPath2); {
if (!File.Exists(opt.InPath1)) throw new ArgumentException($"{opt.InPath1} is not a valid file or directory"); Console.Error.WriteLine("Provide two paths to IRDs to compare");
if (!File.Exists(opt.InPath2)) throw new ArgumentException($"{opt.InPath2} is not a valid file or directory"); return;
}
// Clear the output file path if it exists // Clear the output file path if it exists
if (opt.OutPath != null && opt.OutPath != "") if (opt.OutPath != null && opt.OutPath != "")
@@ -297,6 +356,99 @@ namespace IRDKit
break; break;
// Process options from a 'rename' command
case RenameOptions opt:
// Validate required parameters
if (opt.IRDPath == null || !opt.IRDPath.Any())
{
Console.Error.WriteLine("Provide a valid IRD path to rename");
return;
}
// Read DAT file
XDocument datfile = DatParser(opt.DATPath);
if (datfile == null)
{
Console.Error.WriteLine("Unable to parse DAT file");
return;
}
foreach (string irdPath in opt.IRDPath)
{
// Validate IRD path
if (string.IsNullOrEmpty(irdPath))
continue;
// If directory, search for all ISOs in current directory
if (Directory.Exists(irdPath))
{
// If recurse option enabled, search recursively
IEnumerable<string> irdFiles;
if (opt.Recurse)
{
if (opt.Verbose && irdPath == ".")
Console.WriteLine($"Recursively renaming IRDs in current directory");
else if (opt.Verbose)
Console.WriteLine($"Recursively renaming IRDs in {irdPath}");
irdFiles = Directory.EnumerateFiles(irdPath, "*.ird", SearchOption.AllDirectories);
}
else
{
if (opt.Verbose && irdPath == ".")
Console.WriteLine($"Renaming IRDs in current directory");
else if (opt.Verbose)
Console.WriteLine($"Renaming IRDs in {irdPath}");
irdFiles = Directory.EnumerateFiles(irdPath, "*.ird", SearchOption.TopDirectoryOnly);
}
// Warn if no files are found
if (!irdFiles.Any())
{
if (opt.Recurse)
Console.Error.WriteLine($"No IRDs found in {irdPath} (ensure .ird extension)");
else
Console.Error.WriteLine($"No IRDs found in {irdPath} (ensure .ird extension, or try use -r)");
continue;
}
// Rename all IRD files found
foreach (string file in irdFiles.OrderBy(x => x))
{
try
{
RenameIRD(file, datfile, serial: opt.Serial, ver: opt.Ver, crc: opt.CRC, verbose: opt.Verbose);
}
catch (Exception e)
{
Console.Error.WriteLine(e);
}
}
}
else
{
// Check that given file exists
if (!File.Exists(irdPath))
{
Console.Error.WriteLine($"IRD not found: {irdPath}");
continue;
}
// Rename provided IRD path
try
{
RenameIRD(irdPath, datfile, serial: opt.Serial, ver: opt.Ver, crc: opt.CRC, verbose: opt.Verbose);
}
catch (Exception e)
{
Console.Error.WriteLine(e);
}
}
}
break;
// Unknown command // Unknown command
default: default:
break; break;
@@ -324,7 +476,7 @@ namespace IRDKit
PrintISO(inPath, json, single, outPath); PrintISO(inPath, json, single, outPath);
return; return;
} }
catch (InvalidFileSystemException) catch (IOException)
{ {
// Not a valid ISO file despite extension, try open as IRD // Not a valid ISO file despite extension, try open as IRD
} }
@@ -355,9 +507,9 @@ namespace IRDKit
if (json) if (json)
return; return;
if (isISO) if (isISO)
Console.WriteLine($"{inPath} is not a valid ISO file\n"); Console.Error.WriteLine($"{inPath} is not a valid ISO file\n");
else else
Console.WriteLine($"{inPath} is not a valid IRD file\n"); Console.Error.WriteLine($"{inPath} is not a valid IRD file\n");
} }
} }
@@ -372,17 +524,20 @@ namespace IRDKit
public static void PrintISO(string isoPath, bool json, bool single = true, string outPath = null) public static void PrintISO(string isoPath, bool json, bool single = true, string outPath = null)
{ {
// Open ISO file for reading // Open ISO file for reading
using FileStream fs = new FileStream(isoPath, FileMode.Open, FileAccess.Read) ?? throw new FileNotFoundException(isoPath); using FileStream fs = new(isoPath, FileMode.Open, FileAccess.Read);
// Validate ISO file stream // Validate ISO file stream
if (!CDReader.Detect(fs)) if (fs == null || !LibIRD.DiscUtils.Iso9660.CDReader.Detect(fs))
throw new InvalidFileSystemException($"{isoPath} is not a valid ISO file"); {
Console.Error.WriteLine($"{isoPath} is not a valid ISO file");
return;
}
// Create new ISO reader // Create new ISO reader
using CDReader reader = new(fs, true, true); using LibIRD.DiscUtils.Iso9660.CDReader reader = new(fs);
// Write PS3_DISC.SFB info // Write PS3_DISC.SFB info
try try
{ {
using DiscUtils.Streams.SparseStream s = reader.OpenFile("\\PS3_DISC.SFB", FileMode.Open, FileAccess.Read); using LibIRD.DiscUtils.Streams.SparseStream s = reader.OpenFile("\\PS3_DISC.SFB", FileMode.Open, FileAccess.Read);
PS3_DiscSFB ps3_DiscSFB = new(s); PS3_DiscSFB ps3_DiscSFB = new(s);
if (json) if (json)
{ {
@@ -412,14 +567,14 @@ namespace IRDKit
catch (FileNotFoundException) catch (FileNotFoundException)
{ {
if (!json) if (!json)
Console.WriteLine($"{isoPath} is not a valid PS3 ISO file\n"); Console.Error.WriteLine($"{isoPath} is not a valid PS3 ISO file\n");
return; return;
} }
// Write PARAM.SFO info // Write PARAM.SFO info
try try
{ {
using DiscUtils.Streams.SparseStream s = reader.OpenFile("\\PS3_GAME\\PARAM.SFO", FileMode.Open, FileAccess.Read); using LibIRD.DiscUtils.Streams.SparseStream s = reader.OpenFile("\\PS3_GAME\\PARAM.SFO", FileMode.Open, FileAccess.Read);
ParamSFO paramSFO = new(s); ParamSFO paramSFO = new(s);
if (json) if (json)
{ {
@@ -435,7 +590,7 @@ namespace IRDKit
catch (FileNotFoundException) catch (FileNotFoundException)
{ {
if (!json) if (!json)
Console.WriteLine($"\\PS3_GAME\\PARAM.SFO not found in {isoPath}\n"); Console.Error.WriteLine($"\\PS3_GAME\\PARAM.SFO not found in {isoPath}\n");
} }
// End JSON object // End JSON object
@@ -469,7 +624,7 @@ namespace IRDKit
// Check they are different IRDs // Check they are different IRDs
if (Path.GetFullPath(irdPath1) == Path.GetFullPath(irdPath2)) if (Path.GetFullPath(irdPath1) == Path.GetFullPath(irdPath2))
{ {
Console.WriteLine("Provide two different IRDs for a diff"); Console.Error.WriteLine("Provide two different IRDs for a diff");
return; return;
} }
@@ -480,45 +635,69 @@ namespace IRDKit
// Build a formatted diff // Build a formatted diff
StringBuilder printText = new(); StringBuilder printText = new();
// Print any version difference
if (IRD1.Version != IRD2.Version) if (IRD1.Version != IRD2.Version)
printText.AppendLine($"Version: {IRD1.Version} vs {IRD2.Version}"); printText.AppendLine($"Version: {IRD1.Version} vs {IRD2.Version}");
// Print any title ID difference
if (IRD1.TitleID != IRD2.TitleID) if (IRD1.TitleID != IRD2.TitleID)
printText.AppendLine($"TitleID: {IRD1.TitleID} vs {IRD2.TitleID}"); printText.AppendLine($"TitleID: {IRD1.TitleID} vs {IRD2.TitleID}");
// Print any title difference
if (IRD1.Title != IRD2.Title) if (IRD1.Title != IRD2.Title)
printText.AppendLine($"Title: {IRD1.Title} vs {IRD2.Title}"); printText.AppendLine($"Title: \"{IRD1.Title}\" vs \"{IRD2.Title}\"");
// Print any system version difference
if (IRD1.SystemVersion != IRD2.SystemVersion) if (IRD1.SystemVersion != IRD2.SystemVersion)
printText.AppendLine($"PUP Version: {IRD1.SystemVersion} vs {IRD2.SystemVersion}"); printText.AppendLine($"PUP Version: {IRD1.SystemVersion} vs {IRD2.SystemVersion}");
// Print any disc version difference
if (IRD1.DiscVersion != IRD2.DiscVersion) if (IRD1.DiscVersion != IRD2.DiscVersion)
printText.AppendLine($"Disc Version: {IRD1.DiscVersion} vs {IRD2.DiscVersion}"); printText.AppendLine($"Disc Version: {IRD1.DiscVersion} vs {IRD2.DiscVersion}");
// Print any app version difference
if (IRD1.AppVersion != IRD2.AppVersion) if (IRD1.AppVersion != IRD2.AppVersion)
printText.AppendLine($"App Version: {IRD1.AppVersion} vs {IRD2.AppVersion}"); printText.AppendLine($"App Version: {IRD1.AppVersion} vs {IRD2.AppVersion}");
// Un-gzip the headers to compare them
byte[] header1 = Decompress(IRD1.Header); byte[] header1 = Decompress(IRD1.Header);
byte[] header2 = Decompress(IRD2.Header); byte[] header2 = Decompress(IRD2.Header);
// Print the difference in header length, if not 0
if (header1.Length != header2.Length) if (header1.Length != header2.Length)
printText.AppendLine($"Header Length: {header1.Length} vs {header2.Length}"); printText.AppendLine($"Header Length: {header1.Length} vs {header2.Length}");
if (!header1.SequenceEqual(header2)) // Print number of bytes that the headers differ by, if not 0
printText.AppendLine($"Header: Differs"); int headerDiff;
if (header1.Length < header2.Length)
headerDiff = header2.Length - header1.Length + header1.Where((x, i) => x != header2[i]).Count();
else
headerDiff = header1.Length - header2.Length + header2.Where((x, i) => x != header1[i]).Count();
if (headerDiff != 0)
printText.AppendLine($"Header: Differs by {headerDiff} bytes");
// Un-gzip the footers to compare them
byte[] footer1 = Decompress(IRD1.Footer); byte[] footer1 = Decompress(IRD1.Footer);
byte[] footer2 = Decompress(IRD2.Footer); byte[] footer2 = Decompress(IRD2.Footer);
// Print the difference in footer length, if not 0
if (footer1.Length != footer2.Length) if (footer1.Length != footer2.Length)
printText.AppendLine($"Footer Length: {footer1.Length} vs {footer2.Length}"); printText.AppendLine($"Footer Length: {footer1.Length} vs {footer2.Length}");
if (!footer1.SequenceEqual(footer2)) // Print number of bytes that the footers differ by, if not 0
printText.AppendLine($"Footer: Differs"); int footerDiff;
if (footer1.Length < footer2.Length)
footerDiff = footer2.Length - footer1.Length + footer1.Where((x, i) => x != footer2[i]).Count();
else
footerDiff = footer1.Length - footer2.Length + footer2.Where((x, i) => x != footer1[i]).Count();
if (footerDiff != 0)
printText.AppendLine($"Footer: Differs by {footerDiff} bytes");
// Print the difference in number of regions, if not 0
if (IRD1.RegionCount != IRD2.RegionCount) if (IRD1.RegionCount != IRD2.RegionCount)
printText.AppendLine($"Region Count: {IRD1.RegionCount} vs {IRD2.RegionCount}"); printText.AppendLine($"Region Count: {IRD1.RegionCount} vs {IRD2.RegionCount}");
// Print any differences in region hashes
int regionCount = IRD2.RegionCount < IRD1.RegionCount ? IRD2.RegionCount : IRD1.RegionCount; int regionCount = IRD2.RegionCount < IRD1.RegionCount ? IRD2.RegionCount : IRD1.RegionCount;
if (regionCount > IRD1.RegionHashes.Length) if (regionCount > IRD1.RegionHashes.Length)
regionCount = IRD1.RegionHashes.Length; regionCount = IRD1.RegionHashes.Length;
@@ -527,47 +706,61 @@ namespace IRDKit
for (int i = 0; i < regionCount; i++) for (int i = 0; i < regionCount; i++)
{ {
if (!IRD1.RegionHashes[i].SequenceEqual(IRD2.RegionHashes[i])) if (!IRD1.RegionHashes[i].SequenceEqual(IRD2.RegionHashes[i]))
printText.AppendLine($"Region {i} Hash: {Convert.ToHexString(IRD1.RegionHashes[i])} vs {Convert.ToHexString(IRD2.RegionHashes[i])}"); printText.AppendLine($"Region {i} Hash: {LibIRD.IRD.ByteArrayToHexString(IRD1.RegionHashes[i])} vs {LibIRD.IRD.ByteArrayToHexString(IRD2.RegionHashes[i])}");
} }
// Print the difference in number of files, if not 0
if (IRD1.FileCount != IRD2.FileCount) if (IRD1.FileCount != IRD2.FileCount)
printText.AppendLine($"File Count: {IRD1.FileCount} vs {IRD2.FileCount}"); printText.AppendLine($"File Count: {IRD1.FileCount} vs {IRD2.FileCount}");
int fileCount = IRD2.FileCount < IRD1.FileCount ? (int)IRD2.FileCount : (int)IRD1.FileCount; // Print the mismatch file hashes, for each file offset at which they differ
if (fileCount > IRD1.FileKeys.Length) List<long> missingOffsets1 = [];
fileCount = IRD1.FileKeys.Length; List<long> missingOffsets2 = [];
if (fileCount > IRD2.FileKeys.Length) for (int i = 0; i < IRD1.FileKeys.Length; i++)
fileCount = IRD2.FileKeys.Length;
if (fileCount > IRD1.FileHashes.Length)
fileCount = IRD1.FileHashes.Length;
if (fileCount > IRD2.FileHashes.Length)
fileCount = IRD2.FileHashes.Length;
for (int i = 0; i < fileCount; i++)
{ {
if (IRD1.FileKeys[i] != IRD2.FileKeys[i]) int j = Array.FindIndex(IRD2.FileKeys, element => element == IRD1.FileKeys[i]);
printText.AppendLine($"File {i} Offset: {IRD1.FileKeys[i]} vs {IRD2.FileKeys[i]}"); if (j == -1)
if (!IRD1.FileHashes[i].SequenceEqual(IRD2.FileHashes[i])) missingOffsets2.Add(IRD1.FileKeys[i]);
printText.AppendLine($"File {i} Hash: {Convert.ToHexString(IRD1.FileHashes[i])} vs {Convert.ToHexString(IRD2.FileHashes[i])}"); if (j != -1 && !IRD1.FileHashes[i].SequenceEqual(IRD2.FileHashes[j]))
printText.AppendLine($"File Hash at Offset {IRD1.FileKeys[i]}: {LibIRD.IRD.ByteArrayToHexString(IRD1.FileHashes[i])} vs {LibIRD.IRD.ByteArrayToHexString(IRD2.FileHashes[j])}");
} }
for (int i = 0; i < IRD2.FileKeys.Length; i++)
{
int j = Array.FindIndex(IRD1.FileKeys, element => element == IRD2.FileKeys[i]);
if (j == -1)
missingOffsets1.Add(IRD2.FileKeys[i]);
}
// Print the file offsets that differ
if (missingOffsets1.Count > 0)
printText.AppendLine($"File Offsets not Present in {irdPath1}: {string.Join(", ", missingOffsets1)}");
if (missingOffsets2.Count > 0)
printText.AppendLine($"File Offsets not Present in {irdPath2}: {string.Join(", ", missingOffsets2)}");
// Print any extra config data difference
if (IRD1.ExtraConfig != IRD2.ExtraConfig) if (IRD1.ExtraConfig != IRD2.ExtraConfig)
printText.AppendLine($"Extra Config: {IRD1.ExtraConfig:X4} vs {IRD2.ExtraConfig:X4}"); printText.AppendLine($"Extra Config: {IRD1.ExtraConfig:X4} vs {IRD2.ExtraConfig:X4}");
// Print any attachments data difference
if (IRD1.Attachments != IRD2.Attachments) if (IRD1.Attachments != IRD2.Attachments)
printText.AppendLine($"Attachments: {IRD1.Attachments:X4} vs {IRD2.Attachments:X4}"); printText.AppendLine($"Attachments: {IRD1.Attachments:X4} vs {IRD2.Attachments:X4}");
// Print any unique ID difference
if (IRD1.UID != IRD2.UID) if (IRD1.UID != IRD2.UID)
printText.AppendLine($"Unique ID: {IRD1.UID:X8} vs {IRD2.UID:X8}"); printText.AppendLine($"Unique ID: {IRD1.UID:X8} vs {IRD2.UID:X8}");
// Print any data 1 key difference
if (!IRD1.Data1Key.SequenceEqual(IRD2.Data1Key)) if (!IRD1.Data1Key.SequenceEqual(IRD2.Data1Key))
printText.AppendLine($"Data 1 Key: {Convert.ToHexString(IRD1.Data1Key)} vs {Convert.ToHexString(IRD2.Data1Key)}"); printText.AppendLine($"Data 1 Key: {LibIRD.IRD.ByteArrayToHexString(IRD1.Data1Key)} vs {LibIRD.IRD.ByteArrayToHexString(IRD2.Data1Key)}");
// Print any data 2 key difference
if (!IRD1.Data2Key.SequenceEqual(IRD2.Data2Key)) if (!IRD1.Data2Key.SequenceEqual(IRD2.Data2Key))
printText.AppendLine($"Data 2 Key: {Convert.ToHexString(IRD1.Data2Key)} vs {Convert.ToHexString(IRD2.Data2Key)}"); printText.AppendLine($"Data 2 Key: {LibIRD.IRD.ByteArrayToHexString(IRD1.Data2Key)} vs {LibIRD.IRD.ByteArrayToHexString(IRD2.Data2Key)}");
// Print any PIC difference
if (!IRD1.PIC.SequenceEqual(IRD2.PIC)) if (!IRD1.PIC.SequenceEqual(IRD2.PIC))
printText.AppendLine($"PIC: {Convert.ToHexString(IRD1.PIC)} vs {Convert.ToHexString(IRD2.PIC)}"); printText.AppendLine($"PIC: {LibIRD.IRD.ByteArrayToHexString(IRD1.PIC)} vs {LibIRD.IRD.ByteArrayToHexString(IRD2.PIC)}");
// Write formatted string to file if output path provided, otherwise to console
if (outPath != null) if (outPath != null)
File.AppendAllText(outPath, printText.ToString()); File.AppendAllText(outPath, printText.ToString());
else else
@@ -583,17 +776,32 @@ namespace IRDKit
/// <param name="keyPath">Disc key file (overridden by hex string if present)</param> /// <param name="keyPath">Disc key file (overridden by hex string if present)</param>
/// <param name="getKeyLog">GetKey log file (overridden by disc key or key file if present)</param> /// <param name="getKeyLog">GetKey log file (overridden by disc key or key file if present)</param>
/// <param name="layerbreak">Layerbreak value of disc</param> /// <param name="layerbreak">Layerbreak value of disc</param>
public static string ISO2IRD(string isoPath, string irdPath = null, string hexKey = null, string keyPath = null, string getKeyLog = null, long? layerbreak = null) public static string ISO2IRD(string isoPath, string irdPath = null, string hexKey = null, string keyPath = null, string getKeyLog = null, long? layerbreak = null, bool verbose = false)
{ {
// Check file exists // Check file exists
FileInfo iso = new(isoPath); FileInfo iso;
try
{
iso = new(isoPath);
}
catch (Exception e)
{
Console.Error.WriteLine(e.Message + ", failed to create IRD");
return null;
}
if (!iso.Exists) if (!iso.Exists)
{ {
Console.WriteLine($"{nameof(isoPath)} is not a valid file or directory"); Console.Error.WriteLine($"{nameof(isoPath)} is not a valid file or directory");
return null; return null;
} }
// Determine IRD path if only folder given
if (Directory.Exists(irdPath))
irdPath = Path.Combine(irdPath, Path.GetFileName(Path.ChangeExtension(isoPath, ".ird")));
// Determine IRD path if none given // Determine IRD path if none given
if (irdPath == string.Empty)
irdPath = Path.GetFileName(Path.ChangeExtension(isoPath, ".ird"));
irdPath ??= Path.ChangeExtension(isoPath, ".ird"); irdPath ??= Path.ChangeExtension(isoPath, ".ird");
// Create new reproducible redump-style IRD with a given hex key // Create new reproducible redump-style IRD with a given hex key
@@ -602,23 +810,22 @@ namespace IRDKit
try try
{ {
// Get disc key from hex string // Get disc key from hex string
byte[] discKey = Convert.FromHexString(hexKey); byte[] discKey = LibIRD.IRD.HexStringToByteArray(hexKey);
if (discKey == null || discKey.Length != 16) if (discKey == null || discKey.Length != 16)
throw new ArgumentException(hexKey); Console.Error.WriteLine($"{hexKey} is not a valid key, detecting key automatically...");
else
{
Console.WriteLine($"Creating {irdPath} with Key: {hexKey}"); Console.WriteLine($"Creating {irdPath} with Key: {hexKey}");
IRD ird1 = new ReIRD(isoPath, discKey, layerbreak); IRD ird1 = new ReIRD(isoPath, discKey, layerbreak);
ird1.Write(irdPath); ird1.Write(irdPath);
if (verbose)
ird1.Print(); ird1.Print();
return irdPath; return irdPath;
} }
catch (ArgumentException)
{
Console.Error.WriteLine($"{hexKey} is not a valid key, detecting key automatically...");
} }
catch (FileNotFoundException) catch (Exception e)
{ {
Console.Error.WriteLine("File not found, failed to create IRD"); Console.Error.WriteLine(e.Message + ", failed to create IRD");
return null; return null;
} }
} }
@@ -626,23 +833,30 @@ namespace IRDKit
// Create new reproducible redump-style IRD with a given key file // Create new reproducible redump-style IRD with a given key file
if (keyPath != null) if (keyPath != null)
{ {
// Read key from .key file
byte[] discKey = File.ReadAllBytes(keyPath);
try try
{ {
IRD ird2 = new ReIRD(isoPath, discKey, layerbreak); // If key directory was given, append filename and .key
Console.WriteLine($"Creating {irdPath} with Key: {Convert.ToHexString(discKey)}"); if (Directory.Exists(keyPath))
ird2.Write(irdPath); {
ird2.Print(); keyPath = Path.Combine(keyPath, Path.ChangeExtension(Path.GetFileName(isoPath), ".key"));
}
// Read key from .key file
byte[] discKey = File.ReadAllBytes(keyPath);
if (discKey == null || discKey.Length != 16)
Console.Error.WriteLine($"{hexKey} is not a valid key, detecting key automatically...");
else
{
Console.WriteLine($"Creating {irdPath} with Key: {LibIRD.IRD.ByteArrayToHexString(discKey)}");
IRD ird1 = new ReIRD(isoPath, discKey, layerbreak);
ird1.Write(irdPath);
if (verbose)
ird1.Print();
return irdPath; return irdPath;
} }
catch (ArgumentException)
{
Console.Error.WriteLine($"{Convert.ToHexString(discKey)} is not a valid key, detecting key automatically...");
} }
catch (FileNotFoundException) catch (Exception e)
{ {
Console.Error.WriteLine("File not found, failed to create IRD"); Console.Error.WriteLine(e.Message + ", failed to create IRD");
return null; return null;
} }
} }
@@ -653,14 +867,15 @@ namespace IRDKit
try try
{ {
Console.WriteLine($"Creating {irdPath} with key from: {getKeyLog}"); Console.WriteLine($"Creating {irdPath} with key from: {getKeyLog}");
IRD ird3 = new ReIRD(isoPath, getKeyLog); IRD ird1 = new ReIRD(isoPath, getKeyLog);
ird3.Write(irdPath); ird1.Write(irdPath);
ird3.Print(); if (verbose)
ird1.Print();
return irdPath; return irdPath;
} }
catch (FileNotFoundException) catch (Exception e)
{ {
Console.Error.WriteLine("File not found, failed to create IRD"); Console.Error.WriteLine(e.Message + ", failed to create IRD");
return null; return null;
} }
} }
@@ -676,21 +891,20 @@ namespace IRDKit
// Read key from .key file // Read key from .key file
byte[] discKey = File.ReadAllBytes(keyfilePath); byte[] discKey = File.ReadAllBytes(keyfilePath);
if (discKey == null || discKey.Length != 16) if (discKey == null || discKey.Length != 16)
throw new ArgumentException(keyfilePath); Console.Error.WriteLine($"{hexKey} is not a valid key, detecting key automatically...");
else
Console.WriteLine($"Creating {irdPath} with Key: {Convert.ToHexString(discKey)}"); {
IRD ird2 = new ReIRD(isoPath, discKey, layerbreak); Console.WriteLine($"Creating {irdPath} with Key: {LibIRD.IRD.ByteArrayToHexString(discKey)}");
ird2.Write(irdPath); IRD ird1 = new ReIRD(isoPath, discKey, layerbreak);
ird2.Print(); ird1.Write(irdPath);
if (verbose)
ird1.Print();
return irdPath; return irdPath;
} }
catch (ArgumentException)
{
Console.Error.WriteLine("Given key file not valid, detecting key automatically...");
} }
catch (FileNotFoundException) catch (Exception e)
{ {
Console.Error.WriteLine("File not found, failed to create IRD"); Console.Error.WriteLine(e.Message + ", failed to create IRD");
return null; return null;
} }
} }
@@ -704,88 +918,163 @@ namespace IRDKit
try try
{ {
Console.WriteLine($"Creating {irdPath} with key from: {logfilePath}"); Console.WriteLine($"Creating {irdPath} with key from: {logfilePath}");
IRD ird3 = new ReIRD(isoPath, logfilePath); IRD ird1 = new ReIRD(isoPath, logfilePath);
ird3.Write(irdPath); ird1.Write(irdPath);
ird3.Print(); if (verbose)
ird1.Print();
return irdPath; return irdPath;
} }
catch (FileNotFoundException) catch (Exception e)
{ {
Console.Error.WriteLine("File not found, failed to create IRD"); Console.Error.WriteLine(e.Message + ", failed to create IRD");
return null; return null;
} }
} }
// No key provided, try get key from redump.org // No key provided, try get key from redump.org
if (verbose)
Console.WriteLine("No key provided... Searching for key on redump.org"); Console.WriteLine("No key provided... Searching for key on redump.org");
// Compute CRC32 hash // Compute CRC32 hash
byte[] crc32; byte[] crc32 = HashTool.GetFileHashArray(isoPath, HashType.CRC32);
using (FileStream fs = File.OpenRead(isoPath)) string crc32String = LibIRD.IRD.ByteArrayToHexString(crc32).ToLowerInvariant();
{
Crc32 hasher = new(); // Convert to UInt for use as UID in IRD
hasher.Append(fs);
crc32 = hasher.GetCurrentHash();
// Change endianness
Array.Reverse(crc32); Array.Reverse(crc32);
} uint crc32UInt = BitConverter.ToUInt32(crc32, 0);
string crc32_hash = Convert.ToHexString(crc32).ToLower();
// Search for ISO on redump.org // Search for ISO on redump.org
#if !NETFRAMEWORK
RedumpHttpClient redump = new(); RedumpHttpClient redump = new();
List<int> ids = redump.CheckSingleSitePage("http://redump.org/discs/system/ps3/quicksearch/" + crc32_hash).ConfigureAwait(false).GetAwaiter().GetResult(); List<int> ids = redump.CheckSingleSitePage("http://redump.org/discs/system/ps3/quicksearch/" + crc32String).ConfigureAwait(false).GetAwaiter().GetResult();
#else
RedumpWebClient redump = new();
List<int> ids = redump.CheckSingleSitePage("http://redump.org/discs/system/ps3/quicksearch/" + crc32String);
#endif
int id; int id;
if (ids.Count == 0) if (ids.Count == 0)
{ {
Console.WriteLine("ISO not found in redump, cannot automatically retreive key"); Console.Error.WriteLine("ISO not found in redump and no valid key provided, cannot create IRD");
return null; return null;
} }
else if (ids.Count > 1) else if (ids.Count > 1)
{ {
// Compute SHA1 hash // More than one result for the CRC32 hash, compute SHA1 hash instead
byte[] sha1; string sha1String = HashTool.GetFileHash(isoPath, HashType.SHA1);
using (FileStream fs = File.OpenRead(isoPath))
{
SHA1 hasher = SHA1.Create();
sha1 = hasher.ComputeHash(fs);
}
string sha1_hash = Convert.ToHexString(sha1).ToLower();
// Search redump.org for SHA1 hash // Search redump.org for SHA1 hash
List<int> ids2 = redump.CheckSingleSitePage("http://redump.org/discs/system/ps3/quicksearch/" + sha1_hash).ConfigureAwait(false).GetAwaiter().GetResult(); #if !NETFRAMEWORK
List<int> ids2 = redump.CheckSingleSitePage("http://redump.org/discs/system/ps3/quicksearch/" + sha1String).ConfigureAwait(false).GetAwaiter().GetResult();
#else
List<int> ids2 = redump.CheckSingleSitePage("http://redump.org/discs/system/ps3/quicksearch/" + sha1String);
#endif
if (ids2.Count == 0) if (ids2.Count == 0)
{ {
Console.WriteLine("ISO not found in redump, cannot automatically retreive key"); Console.Error.WriteLine("ISO not found in redump and no valid key provided, cannot create IRD");
return null; return null;
} }
else if (ids2.Count > 1) else if (ids2.Count > 1)
{ {
Console.WriteLine("Cannot automatically get key from redump. Please search redump.org and run again with -k"); Console.Error.WriteLine("Cannot automatically get key from redump. Please search redump.org and run again with -k");
return null; return null;
} }
id = ids2[0]; id = ids2[0];
} }
else else
{ {
// One result found, assume it is the PS3 ISO
id = ids[0]; id = ids[0];
} }
// Download key file from redump.org // Download key file from redump.org
#if !NETFRAMEWORK
byte[] key = redump.GetByteArrayAsync($"http://redump.org/disc/{id}/key").ConfigureAwait(false).GetAwaiter().GetResult(); byte[] key = redump.GetByteArrayAsync($"http://redump.org/disc/{id}/key").ConfigureAwait(false).GetAwaiter().GetResult();
#else
byte[] key = redump.DownloadData($"http://redump.org/disc/{id}/key");
#endif
if (key.Length != 16) if (key.Length != 16)
{ {
Console.WriteLine("Invalid key obtained from redump"); Console.Error.WriteLine("Invalid key obtained from redump and no valid key provided, cannot create IRD");
return null;
} }
// Create IRD with key from redump // Create IRD with key from redump
Console.WriteLine($"Creating {irdPath} with Key: {Convert.ToHexString(key)}"); Console.WriteLine($"Creating {irdPath} with Key from redump.org: {LibIRD.IRD.ByteArrayToHexString(key)}");
IRD ird = new ReIRD(isoPath, key, layerbreak); try
{
IRD ird = new ReIRD(isoPath, key, layerbreak, crc32UInt);
ird.Write(irdPath); ird.Write(irdPath);
if (verbose)
ird.Print(); ird.Print();
return irdPath; return irdPath;
} }
catch (Exception e)
{
Console.Error.WriteLine(e.Message + ", failed to create IRD");
return null;
}
}
#endregion public static XDocument DatParser(string datpath = null)
{
try
{
if (!File.Exists(datpath))
return null;
return XDocument.Load(datpath);
}
catch
{
return null;
}
}
public static string GetDatFilename(IRD ird, XDocument datfile)
{
string crc32 = ird.UID.ToString("X8").ToLower();
XElement node = datfile.Root.Elements("game").Where(e => e.Element("rom").Attribute("crc").Value == crc32).FirstOrDefault() ?? throw new ArgumentException("Cannot find ISO in redump DAT");
return node.Attribute("name").Value;
}
public static void RenameIRD(string irdPath, XDocument datfile, bool serial = false, bool ver = false, bool crc = false, bool verbose = false)
{
IRD ird = IRD.Read(irdPath);
if (ird.ExtraConfig != 0x0001)
throw new ArgumentException($"{irdPath} is not a redump-style IRD");
string filename = GetDatFilename(ird, datfile) ?? throw new ArgumentException($"Cannot determine DAT filename for {irdPath}");
if (serial)
filename += $" [{ird.TitleID.Substring(0, 4).Replace('\0', ' ')}-{ird.TitleID.Substring(4, 5).Replace('\0', ' ')}]";
if (ver)
filename += $" [{ird.DiscVersion.Replace('\0', ' ')}]";
if (crc)
filename += $" [{ird.UID:X8}]";
// Rename irdPath to filename
string directory = Path.GetDirectoryName(Path.GetFullPath(filename));
string filepath;
if (!string.IsNullOrEmpty(directory))
filepath = Path.Combine(Path.GetDirectoryName(irdPath), filename + ".ird");
else
filepath = filename + ".ird";
// Rename IRD to new name
if (irdPath != filepath)
{
if (verbose)
Console.WriteLine($"Renaming {Path.GetFileName(irdPath)} to {Path.GetFileName(filepath)}");
File.Move(irdPath, filepath);
}
else
{
if (verbose)
Console.WriteLine($"Skipping {Path.GetFileName(irdPath)}, already named correctly");
}
}
#endregion
#region Helper Functions #region Helper Functions
+46 -6
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@@ -1,7 +1,47 @@
## How to use IRDKit # How to use IRDKit
IRDKit is a tool that allows direct use of LibIRD functionality from the command line interface. The basic usage is: IRDKit is a tool that allows direct use of LibIRD functionality from the command line interface.
``` For full help instructions, run `irdkit help`
irdkit game.iso game.ird
``` ## Creating ISOs
For detailed usage, run `irdkit --help`
For all options, run `irdkit help create`
To create an IRD from an ISO, run `irdkit create game.iso`
Multiple ISOs can be processed at once with `irdkit create game1.iso game2.iso`
Or a whole directory of ISOs can be processed with `irdkit create ./ISO`, or recursively with `irdkit create -r ./ISO`
The IRD will be created in the same folder as the ISO, with the same filename.
A different IRD path and/or filename can be defined with `-o` or `--output=`
### Key
By default, IRDs will be created by pulling keys from redump.org
A key can be manually provided with `-k` or `--key=`
A key file can be provided with `-f game.key` or `--key-file=`
A key from GetKey log file can be used with `-l game.getkey.log` or `--getkey-log=`
### PIC
By default, a PIC will be generated assuming a default layerbreak
A layerbreak value can be provided with `-b` or `--layerbreak=`
A PIC from a GetKey log file can be used with `-l game.getkey.log` or `--getkey-log=`
## Printing info
For all options, run `irdkit help info`
To print info about an ISO or IRD file, run `irdkit info game.iso` or `irdkit info game.ird`
The info can be printed to a file, e.g. `-o out.txt` or `--output=`
The info can be formatted as a JSON with `-j` or `--json`
## Comparing IRDs
For all options, run `irdkit help diff`
To compare two IRDs, run `irdkit diff game1.ird game2.ird`
The comparison can be printed to a file, e.g. `-o out.txt` or `--output=`
## Renaming IRDs
For all options, run `irdkit help rename`
To rename an IRD (or folder of IRDs) according to a redump DAT, run `irdkit rename -d redump.dat game.ird`
+2 -18
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@@ -11,16 +11,12 @@ Project("{2150E333-8FDC-42A3-9474-1A3956D46DE8}") = "Solution Items", "Solution
ProjectSection(SolutionItems) = preProject ProjectSection(SolutionItems) = preProject
.gitattributes = .gitattributes .gitattributes = .gitattributes
.gitignore = .gitignore .gitignore = .gitignore
.gitmodules = .gitmodules
LICENSE.txt = LICENSE.txt LICENSE.txt = LICENSE.txt
publish-irdkit.ps1 = publish-irdkit.ps1
README.md = README.md README.md = README.md
EndProjectSection EndProjectSection
EndProject EndProject
Project("{9A19103F-16F7-4668-BE54-9A1E7A4F7556}") = "DiscUtils.Core", "DiscUtils\Library\DiscUtils.Core\DiscUtils.Core.csproj", "{9E71F5CD-887D-4A61-8460-9F7E8F110B46}"
EndProject
Project("{9A19103F-16F7-4668-BE54-9A1E7A4F7556}") = "DiscUtils.Iso9660", "DiscUtils\Library\DiscUtils.Iso9660\DiscUtils.Iso9660.csproj", "{9E1EF05F-388B-42C6-A4E7-98BE20C7C8EC}"
EndProject
Project("{9A19103F-16F7-4668-BE54-9A1E7A4F7556}") = "DiscUtils.Streams", "DiscUtils\Library\DiscUtils.Streams\DiscUtils.Streams.csproj", "{E8D0B8B0-F165-4FA1-AC7B-194F5F48A5F9}"
EndProject
Global Global
GlobalSection(SolutionConfigurationPlatforms) = preSolution GlobalSection(SolutionConfigurationPlatforms) = preSolution
Debug|Any CPU = Debug|Any CPU Debug|Any CPU = Debug|Any CPU
@@ -35,18 +31,6 @@ Global
{9060E3AF-E4FB-436F-93A1-5C47389CB88E}.Debug|Any CPU.Build.0 = Debug|Any CPU {9060E3AF-E4FB-436F-93A1-5C47389CB88E}.Debug|Any CPU.Build.0 = Debug|Any CPU
{9060E3AF-E4FB-436F-93A1-5C47389CB88E}.Release|Any CPU.ActiveCfg = Release|Any CPU {9060E3AF-E4FB-436F-93A1-5C47389CB88E}.Release|Any CPU.ActiveCfg = Release|Any CPU
{9060E3AF-E4FB-436F-93A1-5C47389CB88E}.Release|Any CPU.Build.0 = Release|Any CPU {9060E3AF-E4FB-436F-93A1-5C47389CB88E}.Release|Any CPU.Build.0 = Release|Any CPU
{9E71F5CD-887D-4A61-8460-9F7E8F110B46}.Debug|Any CPU.ActiveCfg = Debug|Any CPU
{9E71F5CD-887D-4A61-8460-9F7E8F110B46}.Debug|Any CPU.Build.0 = Debug|Any CPU
{9E71F5CD-887D-4A61-8460-9F7E8F110B46}.Release|Any CPU.ActiveCfg = Release|Any CPU
{9E71F5CD-887D-4A61-8460-9F7E8F110B46}.Release|Any CPU.Build.0 = Release|Any CPU
{9E1EF05F-388B-42C6-A4E7-98BE20C7C8EC}.Debug|Any CPU.ActiveCfg = Debug|Any CPU
{9E1EF05F-388B-42C6-A4E7-98BE20C7C8EC}.Debug|Any CPU.Build.0 = Debug|Any CPU
{9E1EF05F-388B-42C6-A4E7-98BE20C7C8EC}.Release|Any CPU.ActiveCfg = Release|Any CPU
{9E1EF05F-388B-42C6-A4E7-98BE20C7C8EC}.Release|Any CPU.Build.0 = Release|Any CPU
{E8D0B8B0-F165-4FA1-AC7B-194F5F48A5F9}.Debug|Any CPU.ActiveCfg = Debug|Any CPU
{E8D0B8B0-F165-4FA1-AC7B-194F5F48A5F9}.Debug|Any CPU.Build.0 = Debug|Any CPU
{E8D0B8B0-F165-4FA1-AC7B-194F5F48A5F9}.Release|Any CPU.ActiveCfg = Release|Any CPU
{E8D0B8B0-F165-4FA1-AC7B-194F5F48A5F9}.Release|Any CPU.Build.0 = Release|Any CPU
EndGlobalSection EndGlobalSection
GlobalSection(SolutionProperties) = preSolution GlobalSection(SolutionProperties) = preSolution
HideSolutionNode = FALSE HideSolutionNode = FALSE
+1
Submodule LibIRD/DiscUtils added at 445a572137
+544 -219
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File diff suppressed because it is too large Load Diff
+15 -7
View File
@@ -2,16 +2,18 @@
<PropertyGroup> <PropertyGroup>
<!-- Assembly Properties --> <!-- Assembly Properties -->
<TargetFrameworks>net6.0;net7.0;net8.0</TargetFrameworks>
<RuntimeIdentifiers>win-x86;win-x64;win-arm64;linux-x64;linux-arm64;osx-x64;osx-arm64</RuntimeIdentifiers> <RuntimeIdentifiers>win-x86;win-x64;win-arm64;linux-x64;linux-arm64;osx-x64;osx-arm64</RuntimeIdentifiers>
<CheckEolTargetFramework>false</CheckEolTargetFramework>
<LangVersion>latest</LangVersion> <LangVersion>latest</LangVersion>
<SuppressTfmSupportBuildWarnings>true</SuppressTfmSupportBuildWarnings>
<TreatWarningsAsErrors>true</TreatWarningsAsErrors> <TreatWarningsAsErrors>true</TreatWarningsAsErrors>
<Version>0.3.0</Version> <Version>0.9.1</Version>
<PackageOutputPath>../nupkg</PackageOutputPath>
<!-- Package Properties --> <!-- Package Properties -->
<Authors>Deterous</Authors> <Authors>Deterous</Authors>
<Description>Library for ISO Rebuild Data</Description> <Description>Library for ISO Rebuild Data</Description>
<Copyright>Copyright (c) Deterous 2024</Copyright> <Copyright>Copyright (c) Deterous 2023-2024</Copyright>
<PackageReadmeFile>README.md</PackageReadmeFile> <PackageReadmeFile>README.md</PackageReadmeFile>
<RepositoryUrl>https://github.com/Deterous/LibIRD/</RepositoryUrl> <RepositoryUrl>https://github.com/Deterous/LibIRD/</RepositoryUrl>
<RepositoryType>git</RepositoryType> <RepositoryType>git</RepositoryType>
@@ -20,15 +22,21 @@
<GeneratePackageOnBuild>True</GeneratePackageOnBuild> <GeneratePackageOnBuild>True</GeneratePackageOnBuild>
</PropertyGroup> </PropertyGroup>
<PropertyGroup Condition="$(RuntimeIdentifier.StartsWith(`osx-arm`))">
<TargetFrameworks>net6.0;net7.0;net8.0</TargetFrameworks>
</PropertyGroup>
<PropertyGroup Condition="!$(RuntimeIdentifier.StartsWith(`osx-arm`))">
<TargetFrameworks>net20;net35;net40;net452;net462;net472;net48;netcoreapp3.1;net5.0;net6.0;net7.0;net8.0</TargetFrameworks>
</PropertyGroup>
<ItemGroup> <ItemGroup>
<None Include="./README.md" Pack="true" PackagePath="" /> <None Include="./README.md" Pack="true" PackagePath="" />
</ItemGroup> </ItemGroup>
<ItemGroup> <ItemGroup>
<ProjectReference Include="..\DiscUtils\Library\DiscUtils.Core\DiscUtils.Core.csproj" /> <PackageReference Include="Newtonsoft.Json" Version="13.0.3" />
<ProjectReference Include="..\DiscUtils\Library\DiscUtils.Iso9660\DiscUtils.Iso9660.csproj" /> <PackageReference Include="SabreTools.Hashing" Version="1.1.4" />
<ProjectReference Include="..\DiscUtils\Library\DiscUtils.Streams\DiscUtils.Streams.csproj" />
<PackageReference Include="System.IO.Hashing" Version="8.0.0" />
</ItemGroup> </ItemGroup>
</Project> </Project>
+3 -7
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@@ -2,7 +2,7 @@
using System.Collections.Generic; using System.Collections.Generic;
using System.IO; using System.IO;
using System.Text; using System.Text;
using System.Text.Json; using Newtonsoft.Json;
namespace LibIRD namespace LibIRD
{ {
@@ -33,12 +33,8 @@ namespace LibIRD
/// Constructor using a PARAM.SFO file path /// Constructor using a PARAM.SFO file path
/// </summary> /// </summary>
/// <param name="sfbPath">Full file path to the PS3_DISC.SFB file</param> /// <param name="sfbPath">Full file path to the PS3_DISC.SFB file</param>
/// <exception cref="ArgumentNullException"></exception>
public PS3_DiscSFB(string sfbPath) public PS3_DiscSFB(string sfbPath)
{ {
// Validate file path
ArgumentNullException.ThrowIfNull(sfbPath, nameof(sfbPath));
// Read file as a stream, and parse file // Read file as a stream, and parse file
using FileStream fs = new(sfbPath, FileMode.Open, FileAccess.Read); using FileStream fs = new(sfbPath, FileMode.Open, FileAccess.Read);
Parse(fs); Parse(fs);
@@ -72,7 +68,7 @@ namespace LibIRD
// Read SFB file version // Read SFB file version
byte[] buf = br.ReadBytes(2); byte[] buf = br.ReadBytes(2);
Array.Reverse(buf); Array.Reverse(buf);
Version = BitConverter.ToUInt16(buf); Version = BitConverter.ToUInt16(buf, 0);
// Process all field headers // Process all field headers
sfbStream.Seek(0x20, SeekOrigin.Begin); sfbStream.Seek(0x20, SeekOrigin.Begin);
@@ -142,7 +138,7 @@ namespace LibIRD
public void PrintJson(string jsonPath = null) public void PrintJson(string jsonPath = null)
{ {
// Serialise PS3_Disc.SFB data to a JSON object // Serialise PS3_Disc.SFB data to a JSON object
string json = JsonSerializer.Serialize(Field, new JsonSerializerOptions { WriteIndented = true }); string json = JsonConvert.SerializeObject(Field, Formatting.Indented);
// If no path given, output to console // If no path given, output to console
if (jsonPath == null) if (jsonPath == null)
+6 -11
View File
@@ -2,7 +2,7 @@
using System.Collections.Generic; using System.Collections.Generic;
using System.IO; using System.IO;
using System.Text; using System.Text;
using System.Text.Json; using Newtonsoft.Json;
namespace LibIRD namespace LibIRD
{ {
@@ -43,13 +43,8 @@ namespace LibIRD
/// Constructor using a PARAM.SFO file path /// Constructor using a PARAM.SFO file path
/// </summary> /// </summary>
/// <param name="sfoPath">Full file path to the PARAM.SFO file</param> /// <param name="sfoPath">Full file path to the PARAM.SFO file</param>
/// <exception cref="ArgumentNullException"></exception>
public ParamSFO(string sfoPath) public ParamSFO(string sfoPath)
{ {
// Validate file path
if (sfoPath == null || sfoPath.Length <= 0)
throw new ArgumentNullException(nameof(sfoPath));
// Read file as a stream, and parse file // Read file as a stream, and parse file
using FileStream fs = new(sfoPath, FileMode.Open, FileAccess.Read); using FileStream fs = new(sfoPath, FileMode.Open, FileAccess.Read);
Parse(fs); Parse(fs);
@@ -103,7 +98,7 @@ namespace LibIRD
- keyOffset[i]; - keyOffset[i];
// Read ith key name // Read ith key name
string key = Encoding.ASCII.GetString(br.ReadBytes((int) keyLen)).TrimEnd('\0'); string key = Encoding.ASCII.GetString(br.ReadBytes((int)keyLen)).TrimEnd('\0');
// Move stream to ith data // Move stream to ith data
sfoStream.Position = dataTableStart + dataOffset[i]; sfoStream.Position = dataTableStart + dataOffset[i];
@@ -112,13 +107,13 @@ namespace LibIRD
Field[key] = dataFormat[i] switch Field[key] = dataFormat[i] switch
{ {
// Non-null-terminated UTF-8 String // Non-null-terminated UTF-8 String
0x0004 => Encoding.UTF8.GetString(br.ReadBytes((int) dataLength[i])), 0x0004 => Encoding.UTF8.GetString(br.ReadBytes((int)dataLength[i])),
// Null-terminated UTF-8 String // Null-terminated UTF-8 String
0x0204 => Encoding.UTF8.GetString(br.ReadBytes((int) dataLength[i])).TrimEnd('\0'), 0x0204 => Encoding.UTF8.GetString(br.ReadBytes((int)dataLength[i])).TrimEnd('\0'),
// Integer // Integer
0x0404 => br.ReadInt32().ToString(), 0x0404 => br.ReadInt32().ToString(),
// Unknown data format, assume null-terminated string // Unknown data format, assume null-terminated string
_ => Encoding.UTF8.GetString(br.ReadBytes((int) dataLength[i])).TrimEnd('\0'), _ => Encoding.UTF8.GetString(br.ReadBytes((int)dataLength[i])).TrimEnd('\0'),
}; };
} }
} }
@@ -166,7 +161,7 @@ namespace LibIRD
public void PrintJson(string jsonPath = null) public void PrintJson(string jsonPath = null)
{ {
// Serialise PS3_Disc.SFB data to a JSON object // Serialise PS3_Disc.SFB data to a JSON object
string json = JsonSerializer.Serialize(Field, new JsonSerializerOptions { WriteIndented = true }); string json = JsonConvert.SerializeObject(Field, Formatting.Indented);
// If no path given, output to console // If no path given, output to console
if (jsonPath == null) if (jsonPath == null)
+34 -77
View File
@@ -1,6 +1,5 @@
using System; using System;
using System.IO; using System.IO;
using System.IO.Hashing;
namespace LibIRD namespace LibIRD
{ {
@@ -51,15 +50,6 @@ namespace LibIRD
/// </summary> /// </summary>
public class ReIRD : IRD public class ReIRD : IRD
{ {
#region Properties
/// <summary>
/// ISO file size
/// </summary>
private long Size { get; set; }
#endregion
#region Constructors #region Constructors
/// <summary> /// <summary>
@@ -67,26 +57,7 @@ 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>
/// <param name="layerbreak">Layerbreak value, in sectors</param> public ReIRD(string isoPath, string getKeyLog) : base(isoPath, getKeyLog, true) { }
/// <exception cref="InvalidDataException"></exception>
public ReIRD(string isoPath, string getKeyLog, long? layerbreak = null) : base(isoPath, getKeyLog, true)
{
// Generate Unique Identifier using ISO CRC32
UID = GenerateUID(isoPath);
// Determine ISO file size
Size = CalculateSize(isoPath);
// Generate Data 2 using Disc ID
DiscID = GenerateID(Size);
// Generate Disc PIC
byte[] pic = GeneratePIC(Size, layerbreak * SectorSize);
// Check that GetKey log matches expected PIC
if (!((ReadOnlySpan<byte>)PIC).SequenceEqual(pic))
throw new InvalidDataException("Unexpected PIC in .getkey.log");
}
/// <summary> /// <summary>
/// Constructor with optional additional region to generate a specific Disc ID /// Constructor with optional additional region to generate a specific Disc ID
@@ -94,23 +65,24 @@ namespace LibIRD
/// <param name="isoPath">Path to the ISO</param> /// <param name="isoPath">Path to the ISO</param>
/// <param name="key">Disc Key, redump-style (AES encrypted Data 1)</param> /// <param name="key">Disc Key, redump-style (AES encrypted Data 1)</param>
/// <param name="layerbreak">Layerbreak value, in sectors</param> /// <param name="layerbreak">Layerbreak value, in sectors</param>
/// <param name="uid">Unique ID, crc32 hash of ISO</param>
/// <param name="region">Disc Region</param> /// <param name="region">Disc Region</param>
public ReIRD(string isoPath, byte[] key, long? layerbreak = 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 = GenerateUID(isoPath); UID = uid == null ? 0x00000000 : (uint)uid;
// Determine ISO file size // Determine ISO file size
Size = CalculateSize(isoPath); long size = CalculateSize(isoPath);
// Set Disc Key // Set Disc Key
DiscKey = key; DiscKey = key;
// Generate Data 2 using Disc ID // Generate Data 2 using Disc ID
DiscID = GenerateID(Size, region); DiscID = GenerateID(size, region);
// Generate Disc PIC // Generate Disc PIC
PIC = GeneratePIC(Size, layerbreak * SectorSize); PIC = GeneratePIC(isoPath, size, layerbreak * SectorSize);
// Generate IRD fields // Generate IRD fields
GenerateIRD(isoPath, true); GenerateIRD(isoPath, true);
@@ -143,12 +115,13 @@ namespace LibIRD
/// <param name="layerbreak">Layer break value, byte at which disc layers are split across</param> /// <param name="layerbreak">Layer break value, byte at which disc layers are split across</param>
/// <param name="exactIRD">True to generate a PIC in 3k3y style (0x03 at 115th byte for BD-50 discs)</param> /// <param name="exactIRD">True to generate a PIC in 3k3y style (0x03 at 115th byte for BD-50 discs)</param>
/// <exception cref="ArgumentException"></exception> /// <exception cref="ArgumentException"></exception>
private static byte[] GeneratePIC(long size, long? layerbreak = null, bool exactIRD = false) private static byte[] GeneratePIC(string isoPath, long size, long? layerbreak = null, bool exactIRD = false)
{ {
// Validate size // Validate size
if (size <= 0 || (size % SectorSize) != 0) if (size <= 0 || (size % SectorSize) != 0)
throw new ArgumentException("ISO Size in bytes must be a positive integer multiple of 2048", nameof(size)); throw new ArgumentException("ISO Size in bytes must be a positive integer multiple of 2048", nameof(size));
// Validate layerbreak
// Validate provided layerbreak
if (layerbreak != null) if (layerbreak != null)
{ {
if (layerbreak <= 0 || (layerbreak >= size)) if (layerbreak <= 0 || (layerbreak >= size))
@@ -156,8 +129,16 @@ namespace LibIRD
if (layerbreak >= 2 * BDLayerSize || layerbreak % SectorSize != 0) if (layerbreak >= 2 * BDLayerSize || layerbreak % SectorSize != 0)
throw new ArgumentException("Unexpected layerbreak value", nameof(size)); throw new ArgumentException("Unexpected layerbreak value", nameof(size));
} }
// If layerbreak value was not set, assume it is a non-hybrid disc with default layerbreak else if (size > BDLayerSize)
long layer_break = layerbreak ?? BDLayerSize; {
// If no layerbreak provided, ensure ISO is not BD-Video hybrid
using FileStream fs = new FileStream(isoPath, FileMode.Open, FileAccess.Read) ?? throw new FileNotFoundException(isoPath);
DiscUtils.Iso9660.CDReader reader = new(fs);
if (reader.DirectoryExists("\\BDMV"))
throw new ArgumentException("Layerbreak must be provided for BD-Video hybrid discs");
// Assume disc has default layerbreak
layerbreak = BDLayerSize;
}
// Generate the PIC based on the size and layerbreak of the ISO // Generate the PIC based on the size and layerbreak of the ISO
byte[] pic; byte[] pic;
@@ -167,7 +148,7 @@ namespace LibIRD
long l0_start_sector = 1048576; long l0_start_sector = 1048576;
// Layer 0 end sector = start sector + layerbreak - 2 // Layer 0 end sector = start sector + layerbreak - 2
long l0_end_sector = (layer_break / SectorSize) + l0_start_sector - 2; long l0_end_sector = ((long)layerbreak / SectorSize) + l0_start_sector - 2;
// Convert end sector location to hex values for PIC // Convert end sector location to hex values for PIC
byte[] l0es = [(byte)((l0_end_sector >> 24) & 0xFF), byte[] l0es = [(byte)((l0_end_sector >> 24) & 0xFF),
(byte)((l0_end_sector >> 16) & 0xFF), (byte)((l0_end_sector >> 16) & 0xFF),
@@ -175,7 +156,7 @@ namespace LibIRD
(byte)((l0_end_sector >> 0) & 0xFF)]; (byte)((l0_end_sector >> 0) & 0xFF)];
// Layer 1 start sector = end of disc (0x01EFFFFE) - layerbreak + 2 // Layer 1 start sector = end of disc (0x01EFFFFE) - layerbreak + 2
long l1_start_sector = 32505854 - (layer_break / SectorSize) + 2; long l1_start_sector = 32505854 - ((long)layerbreak! / SectorSize) + 2;
// Convert start of start sector location to hex values for PIC // Convert start of start sector location to hex values for PIC
byte[] l1ss = [(byte)((l1_start_sector >> 24) & 0xFF), byte[] l1ss = [(byte)((l1_start_sector >> 24) & 0xFF),
(byte)((l1_start_sector >> 16) & 0xFF), (byte)((l1_start_sector >> 16) & 0xFF),
@@ -184,7 +165,7 @@ namespace LibIRD
// Total sectors used = num_sectors + Layer 0 start + sectors_between_layers (usually 0x01358C00 - 0x00CA73FE - 3) // Total sectors used = num_sectors + Layer 0 start + sectors_between_layers (usually 0x01358C00 - 0x00CA73FE - 3)
long total_sectors = (size / SectorSize) + l0_start_sector + (l1_start_sector - l0_end_sector - 3); long total_sectors = (size / SectorSize) + l0_start_sector + (l1_start_sector - l0_end_sector - 3);
byte[] ts = BitConverter.GetBytes((uint) total_sectors); byte[] ts = BitConverter.GetBytes((uint)total_sectors);
// Define the PIC // Define the PIC
pic = [ pic = [
@@ -249,48 +230,24 @@ namespace LibIRD
return pic; return pic;
} }
/// <summary>
/// Generates the UID field by computing the CRC32 hash of the ISO
/// </summary>
/// <param name="isoPath">Path to the ISO</param>
/// <exception cref="ArgumentNullException"></exception>
/// <exception cref="FileNotFoundException"></exception>
private static uint GenerateUID(string isoPath)
{
// Validate ISO path
ArgumentNullException.ThrowIfNull(isoPath, nameof(isoPath));
// Check file exists
var iso = new FileInfo(isoPath);
if (!iso.Exists)
throw new FileNotFoundException(nameof(isoPath));
// Compute CRC32 hash
byte[] crc32;
using (FileStream fs = File.OpenRead(isoPath))
{
Crc32 hasher = new();
hasher.Append(fs);
crc32 = hasher.GetCurrentHash();
}
// Redump ISO CRC32 hash is used as the Unique ID in the reproducible IRD
return BitConverter.ToUInt32(crc32, 0);
}
/// <summary> /// <summary>
/// Calculates ISO file size /// Calculates ISO file size
/// </summary> /// </summary>
/// <param name="isoPath">Path to the ISO</param> /// <param name="isoPath">Path to the ISO</param>
/// <exception cref="ArgumentNullException"></exception> /// <exception cref="ArgumentException"></exception>
/// <exception cref="FileNotFoundException"></exception> /// <exception cref="FileNotFoundException"></exception>
private static long CalculateSize(string isoPath) private static long CalculateSize(string isoPath)
{ {
// Validate ISO path
ArgumentNullException.ThrowIfNull(isoPath, nameof(isoPath));
// Check file exists // Check file exists
var iso = new FileInfo(isoPath); FileInfo iso;
try
{
iso = new FileInfo(isoPath);
}
catch (Exception e)
{
throw new ArgumentException("Invalid ISO Path: " + e.Message);
}
if (!iso.Exists) if (!iso.Exists)
throw new FileNotFoundException(nameof(isoPath)); throw new FileNotFoundException(nameof(isoPath));
+2
View File
@@ -13,6 +13,8 @@ IRDKit is a tool that allows direct use of LibIRD functionality from a command l
- Printing info about all ISOs and IRDs in a folder: `irdkit info .` - Printing info about all ISOs and IRDs in a folder: `irdkit info .`
- Creating an IRD from an ISO: `irdkit create game.iso` - Creating an IRD from an ISO: `irdkit create game.iso`
- Finding differences between two IRDs: `irdkit diff game1.ird game2.ird` - Finding differences between two IRDs: `irdkit diff game1.ird game2.ird`
- Renaming an IRD or folder of IRDs using a redump DAT: `irdkit rename -d redump.dat game.ird`
For detailed usage, read more [here](IRDKit). For detailed usage, read more [here](IRDKit).
## Using the LibIRD library ## Using the LibIRD library
+15
View File
@@ -0,0 +1,15 @@
dotnet publish -c Release -f net8.0 -r win-x86 --self-contained=false -p:PublishSingleFile=true -p:DebugType=None IRDKit\IRDKit.csproj
dotnet publish -c Release -f net8.0 -r win-x64 --self-contained=false -p:PublishSingleFile=true -p:DebugType=None IRDKit\IRDKit.csproj
dotnet publish -c Release -f net8.0 -r win-arm64 --self-contained=false -p:PublishSingleFile=true -p:DebugType=None IRDKit\IRDKit.csproj
dotnet publish -c Release -f net8.0 -r linux-x64 --self-contained=false -p:PublishSingleFile=true -p:DebugType=None IRDKit\IRDKit.csproj
dotnet publish -c Release -f net8.0 -r linux-arm64 --self-contained=false -p:PublishSingleFile=true -p:DebugType=None IRDKit\IRDKit.csproj
dotnet publish -c Release -f net8.0 -r osx-x64 --self-contained=false -p:PublishSingleFile=true -p:DebugType=None IRDKit\IRDKit.csproj
dotnet publish -c Release -f net8.0 -r osx-arm64 --self-contained=false -p:PublishSingleFile=true -p:DebugType=None IRDKit\IRDKit.csproj
Compress-Archive -Path "./IRDKit/bin/Release/net8.0/win-x86/publish/irdkit.exe" -Destination "./irdkit-win-x86.zip" -CompressionLevel "Optimal"
Compress-Archive -Path "./IRDKit/bin/Release/net8.0/win-x64/publish/irdkit.exe" -Destination "./irdkit-win-x64.zip" -CompressionLevel "Optimal"
Compress-Archive -Path "./IRDKit/bin/Release/net8.0/win-arm64/publish/irdkit.exe" -Destination "./irdkit-win-arm64.zip" -CompressionLevel "Optimal"
Compress-Archive -Path "./IRDKit/bin/Release/net8.0/linux-x64/publish/irdkit" -Destination "./irdkit-linux-x64.zip" -CompressionLevel "Optimal"
Compress-Archive -Path "./IRDKit/bin/Release/net8.0/linux-arm64/publish/irdkit" -Destination "./irdkit-linux-arm64.zip" -CompressionLevel "Optimal"
Compress-Archive -Path "./IRDKit/bin/Release/net8.0/osx-x64/publish/irdkit" -Destination "./irdkit-osx-x64.zip" -CompressionLevel "Optimal"
Compress-Archive -Path "./IRDKit/bin/Release/net8.0/osx-arm64/publish/irdkit" -Destination "./irdkit-osx-arm64.zip" -CompressionLevel "Optimal"