// Copyright (C) 2025, The Duplicati Team // https://duplicati.com, hello@duplicati.com // // Permission is hereby granted, free of charge, to any person obtaining a // copy of this software and associated documentation files (the "Software"), // to deal in the Software without restriction, including without limitation // the rights to use, copy, modify, merge, publish, distribute, sublicense, // and/or sell copies of the Software, and to permit persons to whom the // Software is furnished to do so, subject to the following conditions: // // The above copyright notice and this permission notice shall be included in // all copies or substantial portions of the Software. // // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS // OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, // FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE // AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER // LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING // FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER // DEALINGS IN THE SOFTWARE. using System; using System.Collections.Generic; using System.IO; using System.Linq; using System.Runtime.Versioning; using Duplicati.Library.Common.IO; using Duplicati.Library.Interface; using Duplicati.Library.Snapshots.Windows; namespace Duplicati.Library.Snapshots { /// /// This class encapsulates all access to the Windows Volume Shadow copy Services, /// implementing the disposable patterns to ensure correct release of resources. /// /// The class presents all files and folders with their regular filenames to the caller, /// and internally handles the conversion to the shadow path. /// [SupportedOSPlatform("windows")] public sealed class WindowsSnapshot : SnapshotBase { /// /// The tag used for logging messages /// public static readonly string LOGTAG = Logging.Log.LogTagFromType(); /// /// The system IO for the current platform /// private static readonly ISystemIO IO_WIN = SystemIO.IO_OS; /// /// The main reference to the backup controller /// private readonly SnapshotManager _snapshotManager; /// /// The source folders included in the snapshot /// private readonly IReadOnlyList _sourceEntries; /// /// Constructs a new backup snapshot, using all the required disks /// /// Sources to determine which volumes to include in snapshot /// A set of commandline options /// A flag indicating if symlinks should be followed public WindowsSnapshot(IEnumerable sources, IDictionary options, bool followSymlinks) : base(followSymlinks) { // For Windows, ensure we don't store paths with extended device path prefixes (i.e., @"\\?\" or @"\\?\UNC\") _sourceEntries = sources.Select(SystemIOWindows.RemoveExtendedDevicePathPrefix).ToList(); try { var provider = Utility.Utility.ParseEnumOption(options.AsReadOnly(), "snapshot-provider", SnapshotProvider.AlphaVSS); _snapshotManager = new SnapshotManager(provider); // Default to exclude the System State writer var excludedWriters = new Guid[] { new Guid("{e8132975-6f93-4464-a53e-1050253ae220}") }; if (options.ContainsKey("vss-exclude-writers")) { excludedWriters = options["vss-exclude-writers"] .Split(';') .Where(x => !string.IsNullOrWhiteSpace(x) && x.Trim().Length > 0) .Select(x => new Guid(x)) .ToArray(); } _snapshotManager.SetupWriters(null, excludedWriters); _snapshotManager.InitShadowVolumes(_sourceEntries); _snapshotManager.MapVolumesToSnapShots(); //If we should map the drives, we do that now and update the volumeMap if (Utility.Utility.ParseBoolOption(options.AsReadOnly(), "vss-use-mapping")) { _snapshotManager.MapDrives(); } } catch (Exception ex1) { Logging.Log.WriteVerboseMessage(LOGTAG, "WindowsSnapshotCreation", ex1, "Failed to initialize windows snapshot instance"); //In case we fail in the constructor, we do not want a snapshot to be active try { Dispose(); } catch (Exception ex2) { Logging.Log.WriteVerboseMessage(LOGTAG, "VSSCleanupOnError", ex2, "Failed during VSS error cleanup"); } throw; } } /// /// Gets the source folders /// public override IEnumerable SourceEntries => _sourceEntries; /// /// Enumerates the root source files and folders /// /// The source files and folders public override IEnumerable EnumerateFilesystemEntries() { foreach (var folder in _sourceEntries) { if (folder.EndsWith(Path.DirectorySeparatorChar) || DirectoryExists(folder)) yield return new SnapshotSourceFileEntry(this, Util.AppendDirSeparator(folder), true, true); else yield return new SnapshotSourceFileEntry(this, folder, false, true); } } #region Private functions /// /// A callback function that takes a non-shadow path to a folder, /// and returns all folders found in a non-shadow path format. /// /// The non-shadow path of the folder to list /// A list of non-shadow paths protected override string[] ListFolders(string localFolderPath) { string[] tmp = null; var spath = ConvertToSnapshotPath(localFolderPath); tmp = IO_WIN.GetDirectories(spath); var root = Util.AppendDirSeparator(IO_WIN.GetPathRoot(localFolderPath)); var volumePath = Util.AppendDirSeparator(ConvertToSnapshotPath(root)); volumePath = SystemIOWindows.AddExtendedDevicePathPrefix(volumePath); for (var i = 0; i < tmp.Length; i++) { tmp[i] = root + SystemIOWindows.AddExtendedDevicePathPrefix(tmp[i]).Substring(volumePath.Length); } return tmp; } /// /// A callback function that takes a non-shadow path to a folder, /// and returns all files found in a non-shadow path format. /// /// The non-shadow path of the folder to list /// A list of non-shadow paths protected override string[] ListFiles(string localFolderPath) { string[] files = null; var spath = ConvertToSnapshotPath(localFolderPath); files = IO_WIN.GetFiles(spath); // convert back to non-shadow, i.e., non-vss version var root = Util.AppendDirSeparator(IO_WIN.GetPathRoot(localFolderPath)); var volumePath = Util.AppendDirSeparator(ConvertToSnapshotPath(root)); volumePath = SystemIOWindows.AddExtendedDevicePathPrefix(volumePath); for (var i = 0; i < files.Length; i++) { files[i] = root + SystemIOWindows.AddExtendedDevicePathPrefix(files[i]).Substring(volumePath.Length); } return files; } #endregion #region ISnapshotService Members /// /// Gets the last write time of a given file in UTC /// /// The full path to the file in non-shadow format /// The last write time of the file public override DateTime GetLastWriteTimeUtc(string localPath) { var spath = ConvertToSnapshotPath(localPath); return IO_WIN.GetLastWriteTimeUtc(SystemIOWindows.AddExtendedDevicePathPrefix(spath)); } /// /// Gets the creation of a given file in UTC /// /// The full path to the file in non-shadow format /// The last write time of the file public override DateTime GetCreationTimeUtc(string localPath) { var spath = ConvertToSnapshotPath(localPath); return IO_WIN.GetCreationTimeUtc(SystemIOWindows.AddExtendedDevicePathPrefix(spath)); } /// /// Opens a file for reading /// /// The full path to the file in non-shadow format /// An open filestream that can be read public override Stream OpenRead(string localPath) { return IO_WIN.FileOpenRead(ConvertToSnapshotPath(localPath)); } /// /// Returns the size of a file /// /// The full path to the file in non-snapshot format /// The length of the file public override long GetFileSize(string localPath) { return IO_WIN.FileLength(ConvertToSnapshotPath(localPath)); } /// /// Gets the attributes for the given file or folder /// /// The file attributes /// The file or folder to examine public override FileAttributes GetAttributes(string localPath) { return IO_WIN.GetFileAttributes(ConvertToSnapshotPath(localPath)); } /// /// Returns the symlink target if the entry is a symlink, and null otherwise /// /// The file or folder to examine /// The symlink target public override string GetSymlinkTarget(string localPath) { var spath = ConvertToSnapshotPath(localPath); return IO_WIN.GetSymlinkTarget(spath); } /// /// Gets the metadata for the given file or folder /// /// The metadata for the given file or folder /// The file or folder to examine /// A flag indicating if the target is a symlink public override Dictionary GetMetadata(string localPath, bool isSymlink) { return SystemIO.IO_OS.GetMetadata(ConvertToSnapshotPath(localPath), isSymlink, FollowSymlinks); } /// public override bool IsBlockDevice(string localPath) => false; /// public override string HardlinkTargetID(string localPath) => null; /// public override string ConvertToLocalPath(string snapshotPath) { if (!Path.IsPathRooted(snapshotPath)) throw new InvalidOperationException(); foreach (var kvp in _snapshotManager.SnapshotDeviceAndVolumes) { if (snapshotPath.StartsWith(kvp.Key, Utility.Utility.ClientFilenameStringComparison)) return IO_WIN.PathCombine(kvp.Value, snapshotPath.Substring(kvp.Key.Length)); } throw new InvalidOperationException(); } /// public override string ConvertToSnapshotPath(string localPath) { // For Windows, ensure we don't store paths with extended device path prefixes (i.e., @"\\?\" or @"\\?\UNC\") localPath = SystemIOWindows.RemoveExtendedDevicePathPrefix(localPath); if (!Path.IsPathRooted(localPath)) throw new InvalidOperationException(); var root = IO_WIN.GetPathRoot(localPath); var volumePath = _snapshotManager.GetVolumeFromCache(root); // Note that using a simple Path.Combine() for the following code // can result in invalid snapshot paths; e.g., if localPath is // @"C:\", mappedPath would not have the required trailing // directory separator. var subPath = localPath.Substring(root.Length); if (!subPath.StartsWith(Util.DirectorySeparatorString, StringComparison.Ordinal)) { volumePath = Util.AppendDirSeparator(volumePath, Util.DirectorySeparatorString); } var mappedPath = volumePath + subPath; return mappedPath; } /// public override bool FileExists(string localFilePath) { return IO_WIN.FileExists(ConvertToSnapshotPath(localFilePath)); } /// public override bool DirectoryExists(string localFolderPath) { return IO_WIN.DirectoryExists(ConvertToSnapshotPath(localFolderPath)); } #endregion /// protected override void Dispose(bool disposing) { if (disposing) { _snapshotManager?.Dispose(); } base.Dispose(disposing); } } }