LibHac/libhac/Ticket.cs

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4.8 KiB
C#
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using System;
using System.Collections.Generic;
using System.IO;
using System.Linq;
using System.Text;
namespace libhac
{
public class Ticket
{
public TicketSigType SignatureType { get; }
public byte[] Signature { get; }
public string Issuer { get; }
public byte[] TitleKeyBlock { get; }
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public TitleKeyType TitleKeyType { get; }
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public byte CryptoType { get; }
public ulong TicketId { get; }
public ulong DeviceId { get; }
public byte[] RightsId { get; }
public uint AccountId { get; }
public int Length { get; } // Not completely sure about this one
public byte[] File { get; }
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internal static readonly byte[] LabelHash =
{
0xE3, 0xB0, 0xC4, 0x42, 0x98, 0xFC, 0x1C, 0x14, 0x9A, 0xFB, 0xF4, 0xC8, 0x99, 0x6F, 0xB9, 0x24,
0x27, 0xAE, 0x41, 0xE4, 0x64, 0x9B, 0x93, 0x4C, 0xA4, 0x95, 0x99, 0x1B, 0x78, 0x52, 0xB8, 0x55
};
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public Ticket(BinaryReader reader)
{
var fileStart = reader.BaseStream.Position;
SignatureType = (TicketSigType)reader.ReadUInt32();
switch (SignatureType)
{
case TicketSigType.Rsa4096Sha1:
case TicketSigType.Rsa4096Sha256:
Signature = reader.ReadBytes(0x200);
reader.BaseStream.Position += 0x3c;
break;
case TicketSigType.Rsa2048Sha1:
case TicketSigType.Rsa2048Sha256:
Signature = reader.ReadBytes(0x100);
reader.BaseStream.Position += 0x3c;
break;
case TicketSigType.EcdsaSha1:
case TicketSigType.EcdsaSha256:
Signature = reader.ReadBytes(0x3c);
reader.BaseStream.Position += 0x40;
break;
default:
throw new ArgumentOutOfRangeException();
}
var dataStart = reader.BaseStream.Position;
Issuer = reader.ReadUtf8Z();
reader.BaseStream.Position = dataStart + 0x40;
TitleKeyBlock = reader.ReadBytes(0x100);
reader.BaseStream.Position = dataStart + 0x141;
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TitleKeyType = (TitleKeyType)reader.ReadByte();
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reader.BaseStream.Position = dataStart + 0x145;
CryptoType = reader.ReadByte();
reader.BaseStream.Position = dataStart + 0x150;
TicketId = reader.ReadUInt64();
DeviceId = reader.ReadUInt64();
RightsId = reader.ReadBytes(0x10);
AccountId = reader.ReadUInt32();
reader.BaseStream.Position = dataStart + 0x178;
Length = reader.ReadInt32();
reader.BaseStream.Position = fileStart;
File = reader.ReadBytes(Length);
}
public static Ticket[] SearchTickets(Stream file, IProgressReport logger = null)
{
var reader = new BinaryReader(file, Encoding.Default, true);
file.Position += 0x140;
var tickets = new Dictionary<string, Ticket>();
logger?.SetTotal(file.Length);
// Ticket starts occur at multiples of 0x400
while (file.Position + 0x800 < file.Length)
{
var position = file.Position;
logger?.Report(position);
if (reader.ReadUInt32() != 0x746f6f52) // Root
{
file.Position = position + 0x400;
continue;
}
file.Position -= 0x144;
var sigType = (TicketSigType)reader.ReadUInt32();
if (sigType < TicketSigType.Rsa4096Sha1 || sigType > TicketSigType.EcdsaSha256)
{
file.Position = position + 0x400;
continue;
}
file.Position -= 4;
var ticket = new Ticket(reader);
tickets[ticket.RightsId.ToHexString()] = ticket;
file.Position = position + 0x400;
}
logger?.SetTotal(0);
return tickets.Values.ToArray();
}
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public byte[] GetTitleKey(Keyset keyset)
{
if (TitleKeyType == TitleKeyType.Common)
{
var commonKey = new byte[0x10];
Array.Copy(TitleKeyBlock, commonKey, commonKey.Length);
return commonKey;
}
return Crypto.DecryptTitleKey(TitleKeyBlock, keyset.eticket_ext_key_rsa);
}
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}
public enum TicketSigType
{
Rsa4096Sha1 = 0x10000,
Rsa2048Sha1,
EcdsaSha1,
Rsa4096Sha256,
Rsa2048Sha256,
EcdsaSha256
}
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public enum TitleKeyType
{
Common,
Personalized
}
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}