using Duplicati.Library.Interface; using Duplicati.Library.Utility; using System; using System.IO; namespace Duplicati.Library.Main.Volumes { public abstract class VolumeWriterBase : VolumeBase, IDisposable { protected ICompression m_compression; protected Library.Utility.TempFile m_localfile; protected Stream m_localFileStream; protected string m_volumename; public string LocalFilename { get { return m_localfile; } } public string RemoteFilename { get { return m_volumename; } } public Library.Utility.TempFile TempFile { get { return m_localfile; } } public abstract RemoteVolumeType FileType { get; } public long VolumeID { get; set; } public void SetRemoteFilename(string name) { m_volumename = name; } protected VolumeWriterBase(Options options) : this(options, DateTime.UtcNow) { } public static string GenerateGuid(Options options) { var s = Guid.NewGuid().ToString("N"); //We can choose shorter GUIDs here return s; } public void ResetRemoteFilename(Options options, DateTime timestamp) { m_volumename = GenerateFilename(this.FileType, options.Prefix, GenerateGuid(options), timestamp, options.CompressionModule, options.NoEncryption ? null : options.EncryptionModule); } protected VolumeWriterBase(Options options, DateTime timestamp) : base(options) { if (!string.IsNullOrWhiteSpace(options.AsynchronousUploadFolder)) m_localfile = Library.Utility.TempFile.CreateInFolder(options.AsynchronousUploadFolder, true); else m_localfile = new Library.Utility.TempFile(); // TODO(danstahr): This is a hack! Figure out why the file is being disposed of prematurely. m_localfile.Protected = true; ResetRemoteFilename(options, timestamp); m_localFileStream = new System.IO.FileStream(m_localfile, FileMode.Create, FileAccess.Write, FileShare.Read); m_compression = DynamicLoader.CompressionLoader.GetModule(options.CompressionModule, m_localFileStream, ArchiveMode.Write, options.RawOptions); if (m_compression == null) throw new UserInformationException(string.Format("Unsupported compression module: {0}", options.CompressionModule), "UnsupportedCompressionModule"); if ((this is IndexVolumeWriter || this is FilesetVolumeWriter) && m_compression is Library.Interface.ICompressionHinting) ((Library.Interface.ICompressionHinting)m_compression).LowOverheadMode = true; AddManifestfile(); } protected void AddManifestfile() { using (var sr = new StreamWriter(m_compression.CreateFile(MANIFEST_FILENAME, CompressionHint.Compressible, DateTime.UtcNow), ENCODING)) sr.Write(ManifestData.GetManifestInstance(m_blocksize, m_blockhash, m_filehash)); } public virtual void Dispose() { if (m_compression != null) try { m_compression.Dispose(); } finally { m_compression = null; } m_localfile.Protected = false; if (m_localFileStream != null) try { m_localFileStream.Dispose(); } finally { m_localFileStream = null; } if (m_localfile != null) try { m_localfile.Dispose(); } finally { m_localfile = null; } m_volumename = null; } public virtual void Close() { if (m_compression != null) try { m_compression.Dispose(); } finally { m_compression = null; } if (m_localFileStream != null) try { m_localFileStream.Dispose(); } finally { m_localFileStream = null; } } public long Filesize { get { return m_compression.Size + m_compression.FlushBufferSize; } } } }