170 lines
8.4 KiB
C#
170 lines
8.4 KiB
C#
using System;
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using System.Collections.Generic;
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using System.Linq;
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using System.Text;
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using Duplicati.Library.Main.ForestHash.Database;
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using Duplicati.Library.Main.ForestHash.Volumes;
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namespace Duplicati.Library.Main.ForestHash.Operation
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{
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public class RecreateDatabaseHandler : IDisposable
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{
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private string m_backendurl;
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private FhOptions m_options;
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private CommunicationStatistics m_stat;
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public delegate IEnumerable<IParsedVolume> FilterFilelistDelegate(IEnumerable<IParsedVolume> filelist);
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public delegate IEnumerable<IFileEntry> FilenameFilterDelegate(IEnumerable<IFileEntry> filenamelist);
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public delegate void BlockVolumePostProcessor(string volumename, BlockVolumeReader reader);
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public RecreateDatabaseHandler(string backendurl, FhOptions options, string destination, CommunicationStatistics stat)
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{
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m_options = options;
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m_backendurl = backendurl;
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m_stat = stat;
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}
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public void Run(string path, FilterFilelistDelegate filelistfilter = null, FilenameFilterDelegate filenamefilter = null, BlockVolumePostProcessor blockprocessor = null)
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{
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var hashsize = System.Security.Cryptography.SHA256.Create().HashSize / 8;
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//We build a local database in steps.
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using (var restoredb = new LocalBlocklistUpdateDatabase(path, m_options.Fhblocksize))
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using (var backend = new FhBackend(m_backendurl, m_options, restoredb, m_stat))
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{
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//First step is to examine the remote storage to see what
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// kind of data we can find
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var remotefiles =
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(from n in
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(from x in backend.List()
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select VolumeBase.ParseFilename(x))
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where
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n != null
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&&
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n.EncryptionModule == (m_options.NoEncryption ? null : m_options.EncryptionModule)
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&&
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n.Prefix == m_options.BackupPrefix
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select n).ToArray(); //ToArray() ensures that we do not remote-request it multiple times
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//Then we select the filelist we should work with,
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// and create the filelist table to fit
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IEnumerable<IParsedVolume> filelists =
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from n in remotefiles
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where n.FileType == RemoteVolumeType.Files
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orderby n.Time descending
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select n;
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if (filelistfilter != null)
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filelists = filelistfilter(filelists);
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using (var backupdb = new LocalBackupDatabase(restoredb, m_options))
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{
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foreach (var fl in remotefiles)
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backupdb.RegisterRemoteVolume(fl.File.Name, fl.FileType, RemoteVolumeState.Uploaded);
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var shadowfiles =
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from n in remotefiles
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where n.FileType == RemoteVolumeType.Shadow
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select new RemoteVolume(n.File) as IRemoteVolume;
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//We grab all shadow files, and update the block table
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using (var tr = restoredb.BeginTransaction())
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{
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foreach (var sf in new AsyncDownloader(shadowfiles.ToList(), backend))
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{
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if (sf.Key.Hash != null && sf.Key.Size > 0)
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backupdb.UpdateRemoteVolume(sf.Key.Name, RemoteVolumeState.Verified, sf.Key.Size, sf.Key.Hash, tr);
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using (var svr = new ShadowVolumeReader(RestoreHandler.GetCompressionModule(sf.Key.Name), sf.Value, m_options, hashsize))
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{
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//If there are blocklists in the shadow file, update the blocklists
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foreach (var b in svr.BlockLists)
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restoredb.UpdateBlocklist(b.Hash, b.Blocklist, hashsize, tr);
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foreach (var a in svr.Volumes)
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{
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var volumeID = restoredb.GetRemoteVolumeID(a.Filename);
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//Add all block/volume mappings
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foreach (var b in a.Blocks)
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backupdb.AddBlock(b.Key, b.Value, volumeID, tr);
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backupdb.UpdateRemoteVolume(a.Filename, RemoteVolumeState.Verified, a.Length, a.Hash, tr);
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}
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}
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}
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tr.Commit();
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}
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//We need this to prepare for the block-lists
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var dummylist = new string[0];
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// Default filter is no filter (pass-through)
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if (filenamefilter == null)
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filenamefilter = lst => lst;
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//Now record all blocksets and files needed
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using (var tr = backupdb.BeginTransaction())
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{
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foreach (var entry in filelists)
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using (var filelist = backend.Get(entry.File.Name, entry.File.Size, null))
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using (var filelistreader = new FilesetVolumeReader(RestoreHandler.GetCompressionModule(entry.File.Name), filelist, m_options))
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foreach (var fe in filenamefilter(filelistreader.Files))
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{
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if (fe.Type == FilelistEntryType.Folder)
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{
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long metaid = -1;
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if (fe.Metahash != null)
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backupdb.AddMetadataset(fe.Metahash, fe.Metasize, out metaid, tr);
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backupdb.AddDirectoryEntry(fe.Path, metaid, fe.Time, tr);
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}
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else if (fe.Type == FilelistEntryType.File)
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{
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long metaid = -1;
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long blocksetid;
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if (fe.Metahash != null)
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backupdb.AddMetadataset(fe.Metahash, fe.Metasize, out metaid, tr);
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backupdb.AddBlockset(fe.Hash, fe.Size, m_options.Fhblocksize, dummylist, fe.BlocklistHashes, out blocksetid, tr);
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backupdb.AddFile(fe.Path, fe.Time, blocksetid, metaid, tr);
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}
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}
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tr.Commit();
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}
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}
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//We now need some blocklists, so we start by grabbing a
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// volume with one of the blocklists
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//For each volume we then update the blocklist table
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// and then restore the blocks we know
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restoredb.FindMissingBlocklistHashes();
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foreach (var sf in new AsyncDownloader(restoredb.GetMissingBlockListVolumes(), backend))
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using (var rd = new BlockVolumeReader(RestoreHandler.GetCompressionModule(sf.Key.Name), sf.Value, m_options))
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using (var tr = restoredb.BeginTransaction())
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{
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var volumeid = restoredb.GetRemoteVolumeID(sf.Key.Name);
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foreach (var blocklisthash in restoredb.GetBlockLists(volumeid))
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restoredb.UpdateBlocklist(blocklisthash, rd.ReadBlocklist(blocklisthash, hashsize), hashsize, tr);
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tr.Commit();
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//At this point we can patch files with data from the block volume
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if (blockprocessor != null)
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blockprocessor(sf.Key.Name, rd);
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}
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//All done, we must verify that we have all blocklist fully intact
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restoredb.VerifyDatabaseIntegrity();
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}
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}
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public void Dispose()
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{
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m_stat.EndTime = DateTime.Now;
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}
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}
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}
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