mirror of
https://github.com/claunia/cuetools.net.git
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340 lines
14 KiB
C#
340 lines
14 KiB
C#
// ****************************************************************************
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//
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// CUERipper
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// Copyright (C) 2008 Gregory S. Chudov (gchudov@gmail.com)
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//
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// This program is free software; you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation; either version 2 of the License, or
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// (at your option) any later version.
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//
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// This program is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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//
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// You should have received a copy of the GNU General Public License
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// along with this program; if not, write to the Free Software
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// Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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//
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// ****************************************************************************
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using System;
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using System.IO;
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using System.Net;
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using System.Text;
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using System.Collections.Generic;
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using CUETools.Ripper;
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using CUETools.Ripper.SCSI;
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using CUETools.Codecs;
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using CUETools.CDImage;
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using CUETools.AccurateRip;
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using MusicBrainz;
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namespace CUETools.ConsoleRipper
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{
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class ProgressMeter
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{
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public DateTime realStart;
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public ProgressMeter()
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{
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realStart = DateTime.Now;
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//TimeSpan lastPrint = TimeSpan.FromMilliseconds(0);
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}
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public void ReadProgress(object sender, ReadProgressArgs e)
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{
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CDDriveReader audioSource = (CDDriveReader)sender;
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int processed = e.Position - e.PassStart;
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TimeSpan elapsed = DateTime.Now - e.PassTime;
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double speed = elapsed.TotalSeconds > 0 ? processed / elapsed.TotalSeconds / 75 : 1.0;
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TimeSpan totalElapsed = DateTime.Now - realStart;
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TimeSpan totalEstimated = TimeSpan.FromMilliseconds(totalElapsed.TotalMilliseconds / Math.Max(1, (e.PassStart + (processed + e.Pass * (e.PassEnd - e.PassStart)) / (audioSource.CorrectionQuality + 1))) * audioSource.TOC.AudioLength);
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// if ((elapsed - lastPrint).TotalMilliseconds > 60) ;
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Console.Write("\r{9} : {0:00}%; {1:00.00}x; {2} ({10:0.00}%) errors; {3:d2}:{4:d2}:{5:d2}/{6:d2}:{7:d2}:{8:d2} ",
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100.0 * e.Position / audioSource.TOC.AudioLength,
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speed,
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e.ErrorsCount,
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totalElapsed.Hours, totalElapsed.Minutes, totalElapsed.Seconds,
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totalEstimated.Hours, totalEstimated.Minutes, totalEstimated.Seconds,
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e.Pass < 1 ? "Progress " : string.Format("Retry {0:00} ", e.Pass),
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processed > 0 ? 100.0 * e.ErrorsCount / processed / (4 * 588) : 0
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);
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//lastPrint = elapsed;
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}
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}
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class Program
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{
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static void Usage()
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{
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string drives = "";
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char[] drivesAvailable = CDDrivesList.DrivesAvailable();
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for (int i = 0; i < drivesAvailable.Length; i++)
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drives += string.Format("{0}: ", drivesAvailable[i]);
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Console.WriteLine("Usage : CUERipper.exe <options>");
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Console.WriteLine();
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Console.WriteLine("-S, --secure secure mode, read each block twice (default);");
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Console.WriteLine("-B, --burst burst (1 pass) mode;");
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Console.WriteLine("-P, --paranoid maximum level of error correction;");
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Console.WriteLine("-D, --drive <letter> use a specific CD drive, e.g. {0};", drives);
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Console.WriteLine("-O, --offset <samples> use specific drive read offset;");
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Console.WriteLine("-T, --test detect read command;");
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Console.WriteLine("--d8 force D8h read command;");
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Console.WriteLine("--be force BEh read command;");
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}
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static void Main(string[] args)
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{
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Console.SetOut(Console.Error);
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Console.WriteLine("CUERipper v2.1.1 Copyright (C) 2008-10 Gregory S. Chudov");
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Console.WriteLine("This is free software under the GNU GPLv3+ license; There is NO WARRANTY, to");
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Console.WriteLine("the extent permitted by law. <http://www.gnu.org/licenses/> for details.");
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int correctionQuality = 1;
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string driveLetter = null;
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int driveOffset = 0;
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bool test = false;
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bool forceD8 = false, forceBE = false, quiet = false;
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for (int arg = 0; arg < args.Length; arg++)
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{
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bool ok = true;
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if (args[arg] == "-P" || args[arg] == "--paranoid")
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correctionQuality = 2;
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else if (args[arg] == "-S" || args[arg] == "--secure")
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correctionQuality = 1;
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else if (args[arg] == "-B" || args[arg] == "--burst")
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correctionQuality = 0;
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else if (args[arg] == "-T" || args[arg] == "--test")
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test = true;
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else if (args[arg] == "--d8")
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forceD8 = true;
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else if (args[arg] == "--be")
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forceBE = true;
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else if (args[arg] == "-Q" || args[arg] == "--quiet")
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quiet = true;
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else if ((args[arg] == "-D" || args[arg] == "--drive") && ++arg < args.Length)
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driveLetter = args[arg];
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else if ((args[arg] == "-O" || args[arg] == "--offset") && ++arg < args.Length)
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ok = int.TryParse(args[arg], out driveOffset);
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else
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ok = false;
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if (!ok)
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{
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Usage();
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return;
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}
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}
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char[] drives;
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if (driveLetter == null || driveLetter.Length < 1)
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{
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drives = CDDrivesList.DrivesAvailable();
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if (drives.Length < 1)
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{
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Console.WriteLine("No CD drives found.");
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return;
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}
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}
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else
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{
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drives = new char[1];
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drives[0] = driveLetter[0];
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}
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#if !DEBUG
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try
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#endif
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{
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CDDriveReader audioSource = new CDDriveReader();
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audioSource.Open(drives[0]);
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if (audioSource.TOC.AudioTracks < 1)
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{
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Console.WriteLine("{0}: CD does not contain any audio tracks.", audioSource.Path);
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audioSource.Close();
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return;
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}
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if (driveOffset == 0)
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if (!AccurateRipVerify.FindDriveReadOffset(audioSource.ARName, out driveOffset))
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Console.WriteLine("Unknown read offset for drive {0}!!!", audioSource.Path);
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//throw new Exception("Failed to find drive read offset for drive" + audioSource.ARName);
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audioSource.DriveOffset = driveOffset;
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audioSource.CorrectionQuality = correctionQuality;
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audioSource.DebugMessages = !quiet;
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if (forceD8) audioSource.ForceD8 = true;
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if (forceBE) audioSource.ForceBE = true;
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string readCmd = audioSource.AutoDetectReadCommand;
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if (test)
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{
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Console.Write(readCmd);
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return;
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}
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AccurateRipVerify arVerify = new AccurateRipVerify(audioSource.TOC, WebRequest.GetSystemWebProxy());
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AudioBuffer buff = new AudioBuffer(audioSource, 0x10000);
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string CDDBId = AccurateRipVerify.CalculateCDDBId(audioSource.TOC);
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string ArId = AccurateRipVerify.CalculateAccurateRipId(audioSource.TOC);
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Release release;
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ReleaseQueryParameters p = new ReleaseQueryParameters();
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p.DiscId = audioSource.TOC.MusicBrainzId;
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Query<Release> results = Release.Query(p);
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arVerify.ContactAccurateRip(ArId);
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try
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{
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release = results.First();
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}
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catch
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{
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release = null;
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}
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//string destFile = (release == null) ? "cdimage.flac" : release.GetArtist() + " - " + release.GetTitle() + ".flac";
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string destFile = (release == null) ? "cdimage.wav" : release.GetArtist() + " - " + release.GetTitle() + ".wav";
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Console.WriteLine("Drive : {0}", audioSource.Path);
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Console.WriteLine("Read offset : {0}", audioSource.DriveOffset);
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Console.WriteLine("Read cmd : {0}", audioSource.CurrentReadCommand);
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Console.WriteLine("Secure mode : {0}", audioSource.CorrectionQuality);
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Console.WriteLine("Filename : {0}", destFile);
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Console.WriteLine("Disk length : {0}", CDImageLayout.TimeToString(audioSource.TOC.AudioLength));
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Console.WriteLine("AccurateRip : {0}", arVerify.ARStatus == null ? "ok" : arVerify.ARStatus);
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Console.WriteLine("MusicBrainz : {0}", release == null ? "not found" : release.GetArtist() + " - " + release.GetTitle());
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ProgressMeter meter = new ProgressMeter();
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audioSource.ReadProgress += new EventHandler<ReadProgressArgs>(meter.ReadProgress);
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audioSource.DetectGaps();
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StringWriter cueWriter = new StringWriter();
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cueWriter.WriteLine("REM DISCID {0}", CDDBId);
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cueWriter.WriteLine("REM ACCURATERIPID {0}", ArId);
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cueWriter.WriteLine("REM COMMENT \"{0}\"", audioSource.RipperVersion);
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if (release != null && release.GetEvents().Count > 0)
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cueWriter.WriteLine("REM DATE {0}", release.GetEvents()[0].Date.Substring(0, 4));
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if (audioSource.TOC.Catalog != null)
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cueWriter.WriteLine("CATALOG {0}", audioSource.TOC.Catalog);
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if (release != null)
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{
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cueWriter.WriteLine("PERFORMER \"{0}\"", release.GetArtist());
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cueWriter.WriteLine("TITLE \"{0}\"", release.GetTitle());
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}
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cueWriter.WriteLine("FILE \"{0}\" WAVE", destFile);
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for (int track = 1; track <= audioSource.TOC.TrackCount; track++)
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if (audioSource.TOC[track].IsAudio)
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{
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cueWriter.WriteLine(" TRACK {0:00} AUDIO", audioSource.TOC[track].Number);
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if (release != null && release.GetTracks().Count >= audioSource.TOC[track].Number)
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{
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cueWriter.WriteLine(" TITLE \"{0}\"", release.GetTracks()[(int)audioSource.TOC[track].Number - 1].GetTitle());
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cueWriter.WriteLine(" PERFORMER \"{0}\"", release.GetTracks()[(int)audioSource.TOC[track].Number - 1].GetArtist());
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}
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if (audioSource.TOC[track].ISRC != null)
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cueWriter.WriteLine(" ISRC {0}", audioSource.TOC[track].ISRC);
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if (audioSource.TOC[track].DCP || audioSource.TOC[track].PreEmphasis)
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cueWriter.WriteLine(" FLAGS{0}{1}", audioSource.TOC[track].PreEmphasis ? " PRE" : "", audioSource.TOC[track].DCP ? " DCP" : "");
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for (int index = audioSource.TOC[track].Pregap > 0 ? 0 : 1; index <= audioSource.TOC[track].LastIndex; index++)
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cueWriter.WriteLine(" INDEX {0:00} {1}", index, audioSource.TOC[track][index].MSF);
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}
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cueWriter.Close();
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StreamWriter cueFile = new StreamWriter(Path.ChangeExtension(destFile, ".cue"));
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cueFile.Write(cueWriter.ToString());
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cueFile.Close();
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//IAudioDest audioDest = new FLACWriter(destFile, audioSource.BitsPerSample, audioSource.ChannelCount, audioSource.SampleRate);
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IAudioDest audioDest = new WAVWriter(destFile, null, audioSource.PCM);
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audioDest.FinalSampleCount = audioSource.Length;
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while (audioSource.Read(buff, -1) != 0)
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{
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arVerify.Write(buff);
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audioDest.Write(buff);
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}
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TimeSpan totalElapsed = DateTime.Now - meter.realStart;
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Console.Write("\r \r");
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Console.WriteLine("Results : {0:0.00}x; {1:d5} errors; {2:d2}:{3:d2}:{4:d2}",
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audioSource.Length / totalElapsed.TotalSeconds / audioSource.PCM.SampleRate,
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audioSource.ErrorsCount,
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totalElapsed.Hours, totalElapsed.Minutes, totalElapsed.Seconds
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);
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audioDest.Close();
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StringWriter logWriter = new StringWriter();
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logWriter.WriteLine("{0}", audioSource.RipperVersion);
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logWriter.WriteLine("Extraction logfile from {0}", DateTime.Now);
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logWriter.WriteLine("Used drive : {0}", audioSource.Path);
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logWriter.WriteLine("Read offset correction : {0}", audioSource.DriveOffset);
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bool wereErrors = false;
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for (int iTrack = 1; iTrack <= audioSource.TOC.AudioTracks; iTrack++)
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for (uint iSector = audioSource.TOC[iTrack].Start; iSector <= audioSource.TOC[iTrack].End; iSector ++)
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if (audioSource.Errors[(int)iSector])
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{
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if (!wereErrors)
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{
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logWriter.WriteLine();
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logWriter.WriteLine("Errors detected");
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logWriter.WriteLine();
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}
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wereErrors = true;
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logWriter.WriteLine("Track {0} contains errors", iTrack);
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break;
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}
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logWriter.WriteLine();
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logWriter.WriteLine("TOC of the extracted CD");
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logWriter.WriteLine();
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logWriter.WriteLine(" Track | Start | Length | Start sector | End sector");
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logWriter.WriteLine(" ---------------------------------------------------------");
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for (int track = 1; track <= audioSource.TOC.TrackCount; track++)
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logWriter.WriteLine("{0,9} | {1,8} | {2,8} | {3,9} | {4,9}",
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audioSource.TOC[track].Number,
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audioSource.TOC[track].StartMSF,
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audioSource.TOC[track].LengthMSF,
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audioSource.TOC[track].Start,
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audioSource.TOC[track].End);
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logWriter.WriteLine();
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logWriter.WriteLine("AccurateRip summary");
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logWriter.WriteLine();
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arVerify.GenerateFullLog(logWriter, true, ArId);
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logWriter.WriteLine();
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logWriter.WriteLine("End of status report");
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logWriter.Close();
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StreamWriter logFile = new StreamWriter(Path.ChangeExtension(destFile, ".log"));
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logFile.Write(logWriter.ToString());
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logFile.Close();
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audioSource.Close();
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//FLACReader tagger = new FLACReader(destFile, null);
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//tagger.Tags.Add("CUESHEET", cueWriter.ToString());
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//tagger.Tags.Add("LOG", logWriter.ToString());
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//tagger.UpdateTags(false);
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}
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#if !DEBUG
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catch (Exception ex)
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{
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Console.WriteLine();
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Console.WriteLine("Error: {0}", ex.Message);
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Console.WriteLine("{0}", ex.StackTrace);
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}
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#endif
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}
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//private void MusicBrainz_LookupProgress(object sender, XmlRequestEventArgs e)
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//{
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// if (this.CUEToolsProgress == null)
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// return;
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// _progress.percentDisk = (1.0 + _progress.percentDisk) / 2;
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// _progress.percentTrack = 0;
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// _progress.input = e.Uri.ToString();
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// _progress.output = null;
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// _progress.status = "Looking up album via MusicBrainz";
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// this.CUEToolsProgress(this, _progress);
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//}
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}
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}
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