mirror of
https://github.com/SabreTools/BinaryObjectScanner.git
synced 2026-02-07 21:30:13 +00:00
462 lines
20 KiB
C#
462 lines
20 KiB
C#
using System;
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using System.Collections.Concurrent;
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using System.Collections.Generic;
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using System.IO;
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using System.Linq;
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using System.Threading.Tasks;
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using BurnOutSharp.FileType;
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using BurnOutSharp.Tools;
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namespace BurnOutSharp
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{
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public class Scanner
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{
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#region Options
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/// <summary>
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/// Determines whether archives are decompressed and scanned
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/// </summary>
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public bool ScanArchives { get; private set; }
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/// <summary>
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/// Determines if packers are counted as detected protections or not
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/// </summary>
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public bool ScanPackers { get; private set; }
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/// <summary>
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/// Determines if debug information is output or not
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/// </summary>
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public bool IncludeDebug { get; private set; }
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#endregion
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/// <summary>
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/// Optional progress callback during scanning
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/// </summary>
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private readonly IProgress<ProtectionProgress> fileProgress;
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/// <summary>
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/// Constructor
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/// </summary>
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/// <param name="scanArchives">Enable scanning archive contents</param>
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/// <param name="scanPackers">Enable including packers in output</param>
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/// <param name="includeDebug">Enable including debug information</param>
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/// <param name="fileProgress">Optional progress callback</param>
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public Scanner(bool scanArchives, bool scanPackers, bool includeDebug, IProgress<ProtectionProgress> fileProgress = null)
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{
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ScanArchives = scanArchives;
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ScanPackers = scanPackers;
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IncludeDebug = includeDebug;
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this.fileProgress = fileProgress;
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}
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#region Scanning
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/// <summary>
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/// Scan a single path and get all found protections
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/// </summary>
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/// <param name="path">Path to scan</param>
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/// <returns>Dictionary of list of strings representing the found protections</returns>
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public ConcurrentDictionary<string, ConcurrentQueue<string>> GetProtections(string path)
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{
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return GetProtections(new List<string> { path });
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}
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/// <summary>
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/// Scan the list of paths and get all found protections
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/// </summary>
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/// <returns>Dictionary of list of strings representing the found protections</returns>
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public ConcurrentDictionary<string, ConcurrentQueue<string>> GetProtections(List<string> paths)
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{
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// If we have no paths, we can't scan
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if (paths == null || !paths.Any())
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return null;
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// Set a starting starting time for debug output
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DateTime startTime = DateTime.UtcNow;
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// Checkpoint
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this.fileProgress?.Report(new ProtectionProgress(null, 0, null));
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// Temp variables for reporting
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string tempFilePath = Path.GetTempPath();
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string tempFilePathWithGuid = Path.Combine(tempFilePath, Guid.NewGuid().ToString());
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// Loop through each path and get the returned values
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var protections = new ConcurrentDictionary<string, ConcurrentQueue<string>>();
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foreach (string path in paths)
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{
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// Directories scan each internal file individually
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if (Directory.Exists(path))
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{
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// Enumerate all files at first for easier access
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var files = Directory.EnumerateFiles(path, "*", SearchOption.AllDirectories).ToList();
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// Scan for path-detectable protections
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var directoryPathProtections = GetDirectoryPathProtections(path, files);
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Utilities.AppendToDictionary(protections, directoryPathProtections);
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// Scan each file in directory separately
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for (int i = 0; i < files.Count; i++)
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{
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// Get the current file
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string file = files.ElementAt(i);
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// Get the reportable file name
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string reportableFileName = file;
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if (reportableFileName.StartsWith(tempFilePath))
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reportableFileName = reportableFileName.Substring(tempFilePathWithGuid.Length);
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// Checkpoint
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this.fileProgress?.Report(new ProtectionProgress(reportableFileName, i / (float)files.Count, "Checking file" + (file != reportableFileName ? " from archive" : string.Empty)));
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// Scan for path-detectable protections
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var filePathProtections = GetFilePathProtections(file);
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Utilities.AppendToDictionary(protections, filePathProtections);
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// Scan for content-detectable protections
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var fileProtections = GetInternalProtections(file);
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if (fileProtections != null && fileProtections.Any())
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{
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foreach (string key in fileProtections.Keys)
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{
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if (!protections.ContainsKey(key))
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protections[key] = new ConcurrentQueue<string>();
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protections[key].AddRange(fileProtections[key]);
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}
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}
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// Checkpoint
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protections.TryGetValue(file, out ConcurrentQueue<string> fullProtectionList);
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string fullProtection = (fullProtectionList != null && fullProtectionList.Any() ? string.Join(", ", fullProtectionList) : null);
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this.fileProgress?.Report(new ProtectionProgress(reportableFileName, (i + 1) / (float)files.Count, fullProtection ?? string.Empty));
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}
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}
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// Scan a single file by itself
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else if (File.Exists(path))
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{
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// Get the reportable file name
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string reportableFileName = path;
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if (reportableFileName.StartsWith(tempFilePath))
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reportableFileName = reportableFileName.Substring(tempFilePathWithGuid.Length);
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// Checkpoint
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this.fileProgress?.Report(new ProtectionProgress(reportableFileName, 0, "Checking file" + (path != reportableFileName ? " from archive" : string.Empty)));
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// Scan for path-detectable protections
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var filePathProtections = GetFilePathProtections(path);
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Utilities.AppendToDictionary(protections, filePathProtections);
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// Scan for content-detectable protections
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var fileProtections = GetInternalProtections(path);
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if (fileProtections != null && fileProtections.Any())
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{
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foreach (string key in fileProtections.Keys)
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{
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if (!protections.ContainsKey(key))
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protections[key] = new ConcurrentQueue<string>();
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protections[key].AddRange(fileProtections[key]);
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}
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}
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// Checkpoint
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protections.TryGetValue(path, out ConcurrentQueue<string> fullProtectionList);
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string fullProtection = (fullProtectionList != null && fullProtectionList.Any() ? string.Join(", ", fullProtectionList) : null);
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this.fileProgress?.Report(new ProtectionProgress(reportableFileName, 1, fullProtection ?? string.Empty));
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}
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// Throw on an invalid path
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else
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{
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Console.WriteLine($"{path} is not a directory or file, skipping...");
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//throw new FileNotFoundException($"{path} is not a directory or file, skipping...");
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}
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}
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// Clear out any empty keys
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Utilities.ClearEmptyKeys(protections);
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// If we're in debug, output the elasped time to console
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if (IncludeDebug)
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Console.WriteLine($"Time elapsed: {DateTime.UtcNow.Subtract(startTime)}");
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return protections;
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}
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/// <summary>
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/// Get the path-detectable protections associated with a single path
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/// </summary>
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/// <param name="path">Path of the directory to scan</param>
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/// <param name="files">Files contained within</param>
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/// <returns>Dictionary of list of strings representing the found protections</returns>
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private ConcurrentDictionary<string, ConcurrentQueue<string>> GetDirectoryPathProtections(string path, List<string> files)
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{
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// Create an empty queue for protections
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var protections = new ConcurrentQueue<string>();
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// Preprocess the list of files
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files = files.Select(f => f.Replace('\\', '/')).ToList();
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// Iterate through all path checks
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Parallel.ForEach(ScanningClasses.PathCheckClasses, pathCheckClass =>
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{
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ConcurrentQueue<string> protection = pathCheckClass.CheckDirectoryPath(path, files);
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if (protection != null)
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protections.AddRange(protection);
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});
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// Create and return the dictionary
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return new ConcurrentDictionary<string, ConcurrentQueue<string>>
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{
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[path] = protections
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};
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}
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/// <summary>
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/// Get the path-detectable protections associated with a single path
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/// </summary>
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/// <param name="path">Path of the file to scan</param>
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/// <returns>Dictionary of list of strings representing the found protections</returns>
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private ConcurrentDictionary<string, ConcurrentQueue<string>> GetFilePathProtections(string path)
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{
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// Create an empty queue for protections
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var protections = new ConcurrentQueue<string>();
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// Iterate through all path checks
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Parallel.ForEach(ScanningClasses.PathCheckClasses, pathCheckClass =>
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{
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string protection = pathCheckClass.CheckFilePath(path.Replace("\\", "/"));
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if (!string.IsNullOrWhiteSpace(protection))
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protections.Enqueue(protection);
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});
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// Create and return the dictionary
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return new ConcurrentDictionary<string, ConcurrentQueue<string>>
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{
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[path] = protections
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};
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}
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/// <summary>
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/// Get the content-detectable protections associated with a single path
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/// </summary>
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/// <param name="file">Path to the file to scan</param>
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/// <returns>Dictionary of list of strings representing the found protections</returns>
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private ConcurrentDictionary<string, ConcurrentQueue<string>> GetInternalProtections(string file)
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{
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// Quick sanity check before continuing
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if (!File.Exists(file))
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return null;
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// Open the file and begin scanning
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try
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{
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using (FileStream fs = File.OpenRead(file))
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{
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return GetInternalProtections(file, fs);
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}
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}
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catch (Exception ex)
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{
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if (IncludeDebug) Console.WriteLine(ex);
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var protections = new ConcurrentDictionary<string, ConcurrentQueue<string>>();
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Utilities.AppendToDictionary(protections, file, "[Exception opening file, please try again]");
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Utilities.ClearEmptyKeys(protections);
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return protections;
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}
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}
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/// <summary>
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/// Get the content-detectable protections associated with a single path
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/// </summary>
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/// <param name="fileName">Name of the source file of the stream, for tracking</param>
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/// <param name="stream">Stream to scan the contents of</param>
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/// <returns>Dictionary of list of strings representing the found protections</returns>
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private ConcurrentDictionary<string, ConcurrentQueue<string>> GetInternalProtections(string fileName, Stream stream)
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{
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// Quick sanity check before continuing
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if (stream == null || !stream.CanRead || !stream.CanSeek)
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return null;
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// Initialize the protections found
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var protections = new ConcurrentDictionary<string, ConcurrentQueue<string>>();
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// Get the extension for certain checks
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string extension = Path.GetExtension(fileName).ToLower().TrimStart('.');
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// Open the file and begin scanning
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try
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{
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// Get the first 16 bytes for matching
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byte[] magic = new byte[16];
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try
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{
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stream.Read(magic, 0, 16);
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stream.Seek(0, SeekOrigin.Begin);
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}
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catch (Exception ex)
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{
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if (IncludeDebug) Console.WriteLine(ex);
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return null;
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}
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#region Non-Archive File Types
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// Executable
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if (new Executable().ShouldScan(magic))
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{
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var subProtections = new Executable().Scan(this, stream, fileName);
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Utilities.AppendToDictionary(protections, subProtections);
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}
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// Text-based files
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if (new Textfile().ShouldScan(magic, extension))
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{
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var subProtections = new Textfile().Scan(this, stream, fileName);
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Utilities.AppendToDictionary(protections, subProtections);
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}
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#endregion
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#region Archive File Types
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// If we're scanning archives, we have a few to try out
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if (ScanArchives)
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{
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// 7-Zip archive
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if (new SevenZip().ShouldScan(magic))
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{
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var subProtections = new SevenZip().Scan(this, stream, fileName);
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Utilities.PrependToKeys(subProtections, fileName);
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Utilities.AppendToDictionary(protections, subProtections);
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}
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// BFPK archive
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if (new BFPK().ShouldScan(magic))
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{
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var subProtections = new BFPK().Scan(this, stream, fileName);
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Utilities.PrependToKeys(subProtections, fileName);
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Utilities.AppendToDictionary(protections, subProtections);
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}
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// BZip2
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if (new BZip2().ShouldScan(magic))
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{
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var subProtections = new BZip2().Scan(this, stream, fileName);
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Utilities.PrependToKeys(subProtections, fileName);
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Utilities.AppendToDictionary(protections, subProtections);
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}
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// GZIP
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if (new GZIP().ShouldScan(magic))
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{
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var subProtections = new GZIP().Scan(this, stream, fileName);
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Utilities.PrependToKeys(subProtections, fileName);
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Utilities.AppendToDictionary(protections, subProtections);
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}
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// InstallShield Archive V3 (Z)
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if (fileName != null && new InstallShieldArchiveV3().ShouldScan(magic))
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{
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var subProtections = new InstallShieldArchiveV3().Scan(this, fileName);
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Utilities.PrependToKeys(subProtections, fileName);
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Utilities.AppendToDictionary(protections, subProtections);
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}
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// InstallShield Cabinet
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if (fileName != null && new InstallShieldCAB().ShouldScan(magic))
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{
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var subProtections = new InstallShieldCAB().Scan(this, fileName);
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Utilities.PrependToKeys(subProtections, fileName);
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Utilities.AppendToDictionary(protections, subProtections);
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}
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// Microsoft Cabinet
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if (fileName != null && new MicrosoftCAB().ShouldScan(magic))
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{
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var subProtections = new MicrosoftCAB().Scan(this, fileName);
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Utilities.PrependToKeys(subProtections, fileName);
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Utilities.AppendToDictionary(protections, subProtections);
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}
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// MSI
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if (fileName != null && new MSI().ShouldScan(magic))
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{
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var subProtections = new MSI().Scan(this, fileName);
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Utilities.PrependToKeys(subProtections, fileName);
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Utilities.AppendToDictionary(protections, subProtections);
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}
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// MPQ archive
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if (fileName != null && new MPQ().ShouldScan(magic))
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{
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var subProtections = new MPQ().Scan(this, fileName);
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Utilities.PrependToKeys(subProtections, fileName);
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Utilities.AppendToDictionary(protections, subProtections);
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}
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// PKZIP archive (and derivatives)
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if (new PKZIP().ShouldScan(magic))
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{
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var subProtections = new PKZIP().Scan(this, stream, fileName);
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Utilities.PrependToKeys(subProtections, fileName);
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Utilities.AppendToDictionary(protections, subProtections);
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}
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// RAR archive
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if (new RAR().ShouldScan(magic))
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{
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var subProtections = new RAR().Scan(this, stream, fileName);
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Utilities.PrependToKeys(subProtections, fileName);
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Utilities.AppendToDictionary(protections, subProtections);
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}
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// Tape Archive
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if (new TapeArchive().ShouldScan(magic))
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{
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var subProtections = new TapeArchive().Scan(this, stream, fileName);
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Utilities.PrependToKeys(subProtections, fileName);
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Utilities.AppendToDictionary(protections, subProtections);
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}
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// Valve archive formats
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if (fileName != null && new Valve().ShouldScan(magic))
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{
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var subProtections = new Valve().Scan(this, fileName);
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Utilities.PrependToKeys(subProtections, fileName);
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Utilities.AppendToDictionary(protections, subProtections);
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}
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// XZ
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if (new XZ().ShouldScan(magic))
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{
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var subProtections = new XZ().Scan(this, stream, fileName);
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Utilities.PrependToKeys(subProtections, fileName);
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Utilities.AppendToDictionary(protections, subProtections);
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}
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}
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#endregion
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}
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catch (Exception ex)
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{
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if (IncludeDebug) Console.WriteLine(ex);
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Utilities.AppendToDictionary(protections, fileName, "[Exception opening file, please try again]");
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}
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// Clear out any empty keys
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Utilities.ClearEmptyKeys(protections);
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return protections;
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}
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#endregion
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}
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}
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