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Aaru/DiscImageChef.DiscImages/DiscFerret.cs

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// /***************************************************************************
// The Disc Image Chef
// ----------------------------------------------------------------------------
//
// Filename : DiscFerret.cs
// Author(s) : Natalia Portillo <claunia@claunia.com>
//
// Component : Disk image plugins.
//
// --[ Description ] ----------------------------------------------------------
//
// Manages DiscFerret flux images.
//
// --[ License ] --------------------------------------------------------------
//
// This library is free software; you can redistribute it and/or modify
// it under the terms of the GNU Lesser General Public License as
// published by the Free Software Foundation; either version 2.1 of the
// License, or (at your option) any later version.
//
// This library is distributed in the hope that it will be useful, but
// WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
// Lesser General Public License for more details.
//
// You should have received a copy of the GNU Lesser General Public
// License along with this library; if not, see <http://www.gnu.org/licenses/>.
//
// ----------------------------------------------------------------------------
// Copyright © 2011-2018 Natalia Portillo
// ****************************************************************************/
using System;
using System.Collections.Generic;
using System.IO;
using System.Runtime.InteropServices;
using DiscImageChef.CommonTypes;
using DiscImageChef.Console;
using DiscImageChef.Filters;
namespace DiscImageChef.ImagePlugins
{
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public class DiscFerret : ImagePlugin
{
#region Internal Structures
[StructLayout(LayoutKind.Sequential, Pack = 1)]
public struct DfiBlockHeader
{
public ushort cylinder;
public ushort head;
public ushort sector;
public uint length;
}
#endregion Internal Structures
#region Internal Constants
/// <summary>
/// "DFER"
/// </summary>
const uint DfiMagic = 0x52454644;
/// <summary>
/// "DFE2"
/// </summary>
const uint DfiMagic2 = 0x32454644;
#endregion Internal Constants
#region Internal variables
// TODO: These variables have been made public so create-sidecar can access to this information until I define an API >4.0
public SortedDictionary<int, long> trackOffsets;
public SortedDictionary<int, long> trackLengths;
#endregion Internal variables
public DiscFerret()
{
Name = "DiscFerret";
PluginUUID = new Guid("70EA7B9B-5323-42EB-9B40-8DDA37C5EB4D");
ImageInfo = new ImageInfo()
{
readableSectorTags = new List<SectorTagType>(),
readableMediaTags = new List<MediaTagType>(),
imageHasPartitions = false,
imageHasSessions = false,
imageVersion = null,
imageApplication = null,
imageApplicationVersion = null,
imageCreator = null,
imageComments = null,
mediaManufacturer = null,
mediaModel = null,
mediaSerialNumber = null,
mediaBarcode = null,
mediaPartNumber = null,
mediaSequence = 0,
lastMediaSequence = 0,
driveManufacturer = null,
driveModel = null,
driveSerialNumber = null,
driveFirmwareRevision = null
};
}
#region Public methods
public override bool IdentifyImage(Filter imageFilter)
{
byte[] magic_b = new byte[4];
Stream stream = imageFilter.GetDataForkStream();
stream.Read(magic_b, 0, 4);
uint magic = BitConverter.ToUInt32(magic_b, 0);
return magic == DfiMagic || magic == DfiMagic2;
}
public override bool OpenImage(Filter imageFilter)
{
byte[] magic_b = new byte[4];
Stream stream = imageFilter.GetDataForkStream();
stream.Read(magic_b, 0, 4);
uint magic = BitConverter.ToUInt32(magic_b, 0);
if(magic != DfiMagic && magic != DfiMagic2) return false;
trackOffsets = new SortedDictionary<int, long>();
trackLengths = new SortedDictionary<int, long>();
int t = -1;
ushort lastCylinder = 0, lastHead = 0;
bool endOfTrack = false;
long offset = 0;
while(stream.Position < stream.Length)
{
long thisOffset = stream.Position;
DfiBlockHeader blockHeader = new DfiBlockHeader();
byte[] blk = new byte[Marshal.SizeOf(blockHeader)];
stream.Read(blk, 0, Marshal.SizeOf(blockHeader));
blockHeader = BigEndianMarshal.ByteArrayToStructureBigEndian<DfiBlockHeader>(blk);
DicConsole.DebugWriteLine("DiscFerret plugin", "block@{0}.cylinder = {1}", thisOffset,
blockHeader.cylinder);
DicConsole.DebugWriteLine("DiscFerret plugin", "block@{0}.head = {1}", thisOffset, blockHeader.head);
DicConsole.DebugWriteLine("DiscFerret plugin", "block@{0}.sector = {1}", thisOffset,
blockHeader.sector);
DicConsole.DebugWriteLine("DiscFerret plugin", "block@{0}.length = {1}", thisOffset,
blockHeader.length);
if(stream.Position + blockHeader.length > stream.Length)
{
DicConsole.DebugWriteLine("DiscFerret plugin", "Invalid track block found at {0}", thisOffset);
break;
}
stream.Position += blockHeader.length;
if(blockHeader.cylinder > 0 && blockHeader.cylinder > lastCylinder)
{
lastCylinder = blockHeader.cylinder;
lastHead = 0;
trackOffsets.Add(t, offset);
trackLengths.Add(t, thisOffset - offset + 1);
offset = thisOffset;
t++;
}
else if(blockHeader.head > 0 && blockHeader.head > lastHead)
{
lastHead = blockHeader.head;
trackOffsets.Add(t, offset);
trackLengths.Add(t, thisOffset - offset + 1);
offset = thisOffset;
t++;
}
if(blockHeader.cylinder > ImageInfo.cylinders)
ImageInfo.cylinders = blockHeader.cylinder;
if(blockHeader.head> ImageInfo.heads)
ImageInfo.heads= blockHeader.head;
}
ImageInfo.heads++;
ImageInfo.cylinders++;
ImageInfo.imageApplication = "DiscFerret";
if(magic == DfiMagic2)
ImageInfo.imageApplicationVersion = "2.0";
else
ImageInfo.imageApplicationVersion = "1.0";
throw new NotImplementedException("Flux decoding is not yet implemented.");
}
public override bool ImageHasPartitions()
{
return ImageInfo.imageHasPartitions;
}
public override ulong GetImageSize()
{
return ImageInfo.imageSize;
}
public override ulong GetSectors()
{
return ImageInfo.sectors;
}
public override uint GetSectorSize()
{
return ImageInfo.sectorSize;
}
public override byte[] ReadDiskTag(MediaTagType tag)
{
throw new NotImplementedException("Flux decoding is not yet implemented.");
}
public override byte[] ReadSector(ulong sectorAddress)
{
return ReadSectors(sectorAddress, 1);
}
public override byte[] ReadSectorTag(ulong sectorAddress, SectorTagType tag)
{
throw new NotImplementedException("Flux decoding is not yet implemented.");
}
public override byte[] ReadSectors(ulong sectorAddress, uint length)
{
throw new NotImplementedException("Flux decoding is not yet implemented.");
}
public override byte[] ReadSectorsTag(ulong sectorAddress, uint length, SectorTagType tag)
{
throw new NotImplementedException("Flux decoding is not yet implemented.");
}
public override byte[] ReadSectorLong(ulong sectorAddress)
{
throw new NotImplementedException("Flux decoding is not yet implemented.");
}
public override byte[] ReadSectorLong(ulong sectorAddress, uint track)
{
throw new FeatureUnsupportedImageException("Feature not supported by image format");
}
public override byte[] ReadSectorsLong(ulong sectorAddress, uint length)
{
throw new NotImplementedException("Flux decoding is not yet implemented.");
}
public override string GetImageFormat()
{
return "DiscFerret";
}
public override string GetImageVersion()
{
return ImageInfo.imageVersion;
}
public override string GetImageApplication()
{
return ImageInfo.imageApplication;
}
public override string GetImageApplicationVersion()
{
return ImageInfo.imageApplicationVersion;
}
public override string GetImageCreator()
{
return ImageInfo.imageCreator;
}
public override DateTime GetImageCreationTime()
{
return ImageInfo.imageCreationTime;
}
public override DateTime GetImageLastModificationTime()
{
return ImageInfo.imageLastModificationTime;
}
public override string GetImageName()
{
return ImageInfo.imageName;
}
public override string GetImageComments()
{
return ImageInfo.imageComments;
}
public override string GetMediaManufacturer()
{
return ImageInfo.mediaManufacturer;
}
public override string GetMediaModel()
{
return ImageInfo.mediaModel;
}
public override string GetMediaSerialNumber()
{
return ImageInfo.mediaSerialNumber;
}
public override string GetMediaBarcode()
{
return ImageInfo.mediaBarcode;
}
public override string GetMediaPartNumber()
{
return ImageInfo.mediaPartNumber;
}
public override MediaType GetMediaType()
{
return ImageInfo.mediaType;
}
public override int GetMediaSequence()
{
return ImageInfo.mediaSequence;
}
public override int GetLastDiskSequence()
{
return ImageInfo.lastMediaSequence;
}
public override string GetDriveManufacturer()
{
return ImageInfo.driveManufacturer;
}
public override string GetDriveModel()
{
return ImageInfo.driveModel;
}
public override string GetDriveSerialNumber()
{
return ImageInfo.driveSerialNumber;
}
public override bool? VerifySector(ulong sectorAddress)
{
throw new NotImplementedException("Flux decoding is not yet implemented.");
}
public override bool? VerifySectors(ulong sectorAddress, uint length, out List<ulong> FailingLBAs, out List<ulong> UnknownLBAs)
{
throw new NotImplementedException("Flux decoding is not yet implemented.");
}
#endregion Public methods
#region Unsupported features
public override byte[] ReadSector(ulong sectorAddress, uint track)
{
throw new FeatureUnsupportedImageException("Feature not supported by image format");
}
public override byte[] ReadSectorTag(ulong sectorAddress, uint track, SectorTagType tag)
{
throw new FeatureUnsupportedImageException("Feature not supported by image format");
}
public override byte[] ReadSectors(ulong sectorAddress, uint length, uint track)
{
throw new FeatureUnsupportedImageException("Feature not supported by image format");
}
public override byte[] ReadSectorsTag(ulong sectorAddress, uint length, uint track, SectorTagType tag)
{
throw new FeatureUnsupportedImageException("Feature not supported by image format");
}
public override byte[] ReadSectorsLong(ulong sectorAddress, uint length, uint track)
{
throw new FeatureUnsupportedImageException("Feature not supported by image format");
}
public override List<Partition> GetPartitions()
{
throw new FeatureUnsupportedImageException("Feature not supported by image format");
}
public override List<Track> GetTracks()
{
throw new FeatureUnsupportedImageException("Feature not supported by image format");
}
public override List<Track> GetSessionTracks(Session session)
{
throw new FeatureUnsupportedImageException("Feature not supported by image format");
}
public override List<Track> GetSessionTracks(ushort session)
{
throw new FeatureUnsupportedImageException("Feature not supported by image format");
}
public override List<Session> GetSessions()
{
throw new FeatureUnsupportedImageException("Feature not supported by image format");
}
public override bool? VerifySector(ulong sectorAddress, uint track)
{
throw new FeatureUnsupportedImageException("Feature not supported by image format");
}
public override bool? VerifySectors(ulong sectorAddress, uint length, uint track, out List<ulong> FailingLBAs, out List<ulong> UnknownLBAs)
{
throw new FeatureUnsupportedImageException("Feature not supported by image format");
}
public override bool? VerifyMediaImage()
{
throw new FeatureUnsupportedImageException("Feature not supported by image format");
}
#endregion Unsupported features
}
}