LibHac/libhac/Nca.cs

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using System;
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using System.Collections.Generic;
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using System.IO;
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using libhac.XTSSharp;
namespace libhac
{
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public class Nca : IDisposable
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{
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public NcaHeader Header { get; private set; }
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public string Name { get; set; }
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public bool HasRightsId { get; private set; }
public int CryptoType { get; private set; }
public byte[][] DecryptedKeys { get; } = Util.CreateJaggedArray<byte[][]>(4, 0x10);
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public Stream Stream { get; private set; }
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private bool KeepOpen { get; }
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public List<NcaSection> Sections = new List<NcaSection>();
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public Nca(Keyset keyset, Stream stream, bool keepOpen)
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{
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stream.Position = 0;
KeepOpen = keepOpen;
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Stream = stream;
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DecryptHeader(keyset, stream);
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CryptoType = Math.Max(Header.CryptoType, Header.CryptoType2);
if (CryptoType > 0) CryptoType--;
HasRightsId = !Header.RightsId.IsEmpty();
if (!HasRightsId)
{
DecryptKeyArea(keyset);
}
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for (int i = 0; i < 4; i++)
{
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var section = ParseSection(i);
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if (section != null) Sections.Add(section);
}
}
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public Stream OpenSection(int index)
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{
if (index >= Sections.Count) throw new ArgumentOutOfRangeException(nameof(index));
var sect = Sections[index];
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long offset = sect.Offset;
long size = sect.Size;
switch (sect.Header.FsType)
{
case SectionFsType.Pfs0:
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offset = sect.Offset + sect.Pfs0.Pfs0Offset;
size = sect.Pfs0.Pfs0Size;
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break;
case SectionFsType.Romfs:
break;
default:
throw new ArgumentOutOfRangeException();
}
Stream.Position = offset;
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switch (sect.Header.CryptType)
{
case SectionCryptType.None:
break;
case SectionCryptType.XTS:
break;
case SectionCryptType.CTR:
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return new RandomAccessSectorStream(new AesCtrStream(Stream, DecryptedKeys[2], offset, size, offset), false);
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case SectionCryptType.BKTR:
break;
default:
throw new ArgumentOutOfRangeException();
}
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return Stream;
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}
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private void DecryptHeader(Keyset keyset, Stream stream)
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{
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byte[] headerBytes = new byte[0xC00];
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var xts = XtsAes128.Create(keyset.header_key);
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using (var headerDec = new RandomAccessSectorStream(new XtsSectorStream(stream, xts, 0x200)))
{
headerDec.Read(headerBytes, 0, headerBytes.Length);
}
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var reader = new BinaryReader(new MemoryStream(headerBytes));
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Header = NcaHeader.Read(reader);
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}
private void DecryptKeyArea(Keyset keyset)
{
for (int i = 0; i < 4; i++)
{
Crypto.DecryptEcb(keyset.key_area_keys[CryptoType][Header.KaekInd], Header.EncryptedKeys[i],
DecryptedKeys[i], 0x10);
}
}
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private NcaSection ParseSection(int index)
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{
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var entry = Header.SectionEntries[index];
var header = Header.FsHeaders[index];
if (entry.MediaStartOffset == 0) return null;
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var sect = new NcaSection();
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sect.SectionNum = index;
sect.Offset = Util.MediaToReal(entry.MediaStartOffset);
sect.Size = Util.MediaToReal(entry.MediaEndOffset) - sect.Offset;
sect.Header = header;
sect.Type = header.Type;
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if (sect.Type == SectionType.Pfs0)
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{
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sect.Pfs0 = header.Pfs0;
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}
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return sect;
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}
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public void Dispose()
{
if (!KeepOpen)
{
Stream?.Dispose();
}
}
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}
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public class NcaSection
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{
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public Stream Stream { get; set; }
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public NcaFsHeader Header { get; set; }
public SectionType Type { get; set; }
public int SectionNum { get; set; }
public long Offset { get; set; }
public long Size { get; set; }
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public Pfs0Superblock Pfs0 { get; set; }
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}
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}