// Copyright (C) 2015, The Duplicati Team
// http://www.duplicati.com, info@duplicati.com
//
// 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, write to the Free Software
// Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
using System;
using CoCoL;
using System.Threading.Tasks;
using System.IO;
using System.Collections.Generic;
using System.Security.Principal;
using System.Threading;
using Duplicati.Library.Interface;
using Duplicati.Library.Main.Operation.Common;
using Duplicati.Library.Snapshots;
namespace Duplicati.Library.Main.Operation.Backup
{
///
/// This class processes paths for metadata and emits the metadata blocks for storage.
/// Folders and symlinks in the database, and paths are forwarded to be scanned for changes
///
internal static class MetadataPreProcess
{
private static readonly string FILELOGTAG = Logging.Log.LogTagFromType(typeof(MetadataPreProcess)) + ".FileEntry";
public class FileEntry
{
// From input
public string Path;
// Split
public long PathPrefixID;
public string Filename;
// From database
public long OldId;
public DateTime OldModified;
public long LastFileSize;
public string OldMetaHash;
public long OldMetaSize;
// From filedata
public DateTime LastWrite;
public FileAttributes Attributes;
// After processing metadata
public IMetahash MetaHashAndSize;
public bool MetadataChanged;
}
public static Task Run(Snapshots.ISnapshotService snapshot, Options options, BackupDatabase database, long lastfilesetid, CancellationToken token)
{
return AutomationExtensions.RunTask(new
{
Input = Backup.Channels.SourcePaths.ForRead,
StreamBlockChannel = Channels.StreamBlock.ForWrite,
Output = Backup.Channels.ProcessedFiles.ForWrite,
},
async self =>
{
var emptymetadata = Utility.WrapMetadata(new Dictionary(), options);
var prevprefix = new KeyValuePair(null, -1);
var CHECKFILETIMEONLY = options.CheckFiletimeOnly;
var DISABLEFILETIMECHECK = options.DisableFiletimeCheck;
while (true)
{
var path = await self.Input.ReadAsync();
var lastwrite = new DateTime(0, DateTimeKind.Utc);
var attributes = default(FileAttributes);
try
{
lastwrite = snapshot.GetLastWriteTimeUtc(path);
}
catch (Exception ex)
{
Logging.Log.WriteWarningMessage(FILELOGTAG, "TimestampReadFailed", ex, "Failed to read timestamp on \"{0}\"", path);
}
try
{
attributes = snapshot.GetAttributes(path);
}
catch (Exception ex)
{
Logging.Log.WriteVerboseMessage(FILELOGTAG, "FailedAttributeRead", "Failed to read attributes from {0}: {1}", path, ex.Message);
}
// If we only have metadata, stop here
if (await ProcessMetadata(path, attributes, lastwrite, options, snapshot, emptymetadata, database, self.StreamBlockChannel).ConfigureAwait(false))
{
try
{
var split = Database.LocalDatabase.SplitIntoPrefixAndName(path);
long prefixid;
if (string.Equals(prevprefix.Key, split.Key, StringComparison.Ordinal))
prefixid = prevprefix.Value;
else
{
prefixid = await database.GetOrCreatePathPrefix(split.Key);
prevprefix = new KeyValuePair(split.Key, prefixid);
}
if (CHECKFILETIMEONLY || DISABLEFILETIMECHECK)
{
var tmp = await database.GetFileLastModifiedAsync(prefixid, split.Value, lastfilesetid, false);
await self.Output.WriteAsync(new FileEntry
{
OldId = tmp.Item1,
Path = path,
PathPrefixID = prefixid,
Filename = split.Value,
Attributes = attributes,
LastWrite = lastwrite,
OldModified = tmp.Item2,
LastFileSize = tmp.Item3,
OldMetaHash = null,
OldMetaSize = -1
});
}
else
{
var res = await database.GetFileEntryAsync(prefixid, split.Value, lastfilesetid);
await self.Output.WriteAsync(new FileEntry
{
OldId = res == null ? -1 : res.id,
Path = path,
PathPrefixID = prefixid,
Filename = split.Value,
Attributes = attributes,
LastWrite = lastwrite,
OldModified = res == null ? new DateTime(0) : res.modified,
LastFileSize = res == null ? -1 : res.filesize,
OldMetaHash = res == null ? null : res.metahash,
OldMetaSize = res == null ? -1 : res.metasize
});
}
}
catch (Exception ex)
{
if (ex.IsRetiredException() || token.IsCancellationRequested)
{
continue;
}
Logging.Log.WriteWarningMessage(FILELOGTAG, "ProcessingMetadataFailed", ex,
"Failed to process entry, path: {0}", path);
}
}
}
});
}
///
/// Processes the metadata for the given path.
///
/// True if the path should be submitted to more analysis, false if there is nothing else to do
private static async Task ProcessMetadata(string path, FileAttributes attributes, DateTime lastwrite, Options options, Snapshots.ISnapshotService snapshot, IMetahash emptymetadata, BackupDatabase database, IWriteChannel streamblockchannel)
{
if (snapshot.IsSymlink(path, attributes))
{
// Not all reparse points are symlinks.
// For example, on Windows 10 Fall Creator's Update, the OneDrive folder (and all subfolders)
// are reparse points, which allows the folder to hook into the OneDrive service and download things on-demand.
// If we can't find a symlink target for the current path, we won't treat it as a symlink.
string symlinkTarget = null;
try
{
symlinkTarget = snapshot.GetSymlinkTarget(path);
}
catch (Exception ex)
{
Logging.Log.WriteExplicitMessage(FILELOGTAG, "SymlinkTargetReadFailure", ex, "Failed to read symlink target for path: {0}", path);
}
if (!string.IsNullOrWhiteSpace(symlinkTarget))
{
if (options.SymlinkPolicy == Options.SymlinkStrategy.Ignore)
{
Logging.Log.WriteVerboseMessage(FILELOGTAG, "IgnoreSymlink", "Ignoring symlink {0}", path);
return false;
}
if (options.SymlinkPolicy == Options.SymlinkStrategy.Store)
{
var metadata = MetadataGenerator.GenerateMetadata(path, attributes, options, snapshot);
if (!metadata.ContainsKey("CoreSymlinkTarget"))
metadata["CoreSymlinkTarget"] = symlinkTarget;
var metahash = Utility.WrapMetadata(metadata, options);
await AddSymlinkToOutputAsync(path, DateTime.UtcNow, metahash, database, streamblockchannel).ConfigureAwait(false);
Logging.Log.WriteVerboseMessage(FILELOGTAG, "StoreSymlink", "Stored symlink {0}", path);
// Don't process further
return false;
}
}
else
{
Logging.Log.WriteVerboseMessage(FILELOGTAG, "FollowingEmptySymlink", "Treating empty symlink as regular path {0}", path);
}
}
if ((attributes & FileAttributes.Directory) == FileAttributes.Directory)
{
IMetahash metahash;
if (!options.SkipMetadata)
{
metahash = Utility.WrapMetadata(MetadataGenerator.GenerateMetadata(path, attributes, options, snapshot), options);
}
else
{
metahash = emptymetadata;
}
Logging.Log.WriteVerboseMessage(FILELOGTAG, "AddDirectory", "Adding directory {0}", path);
await AddFolderToOutputAsync(path, lastwrite, metahash, database, streamblockchannel).ConfigureAwait(false);
return false;
}
// Regular file, keep going
return true;
}
///
/// Adds metadata to output, and returns the metadataset ID
///
/// The metadataset ID.
/// The path for which metadata is processed.
/// The metadata entry.
/// The database connection.
/// The channel to write streams to.
internal static async Task> AddMetadataToOutputAsync(string path, IMetahash meta, BackupDatabase database, IWriteChannel streamblockchannel)
{
StreamProcessResult res;
using (var ms = new MemoryStream(meta.Blob))
res = await StreamBlock.ProcessStream(streamblockchannel, path, ms, true, CompressionHint.Default);
return await database.AddMetadatasetAsync(res.Streamhash, res.Streamlength, res.Blocksetid);
}
///
/// Adds a file to the output,
///
/// The name of the file to record
/// The value of the lastModified timestamp
private static async Task AddFolderToOutputAsync(string filename, DateTime lastModified, IMetahash meta, BackupDatabase database, IWriteChannel streamblockchannel)
{
var metadataid = await AddMetadataToOutputAsync(filename, meta, database, streamblockchannel).ConfigureAwait(false);
await database.AddDirectoryEntryAsync(filename, metadataid.Item2, lastModified);
}
///
/// Adds a file to the output,
///
/// The name of the file to record
/// The value of the lastModified timestamp
/// The database to use
/// The channel to write blocks to
/// The metadata ti record
private static async Task AddSymlinkToOutputAsync(string filename, DateTime lastModified, IMetahash meta, BackupDatabase database, IWriteChannel streamblockchannel)
{
var metadataid = await AddMetadataToOutputAsync(filename, meta, database, streamblockchannel).ConfigureAwait(false);
await database.AddSymlinkEntryAsync(filename, metadataid.Item2, lastModified);
}
}
}