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duplicati/Duplicati/UnitTest/DiskImage/DiskImageTests.cs
T

941 lines
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C#

// 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.Threading;
using System.Threading.Tasks;
using Duplicati.Library.Interface;
using Duplicati.Library.Main;
using Duplicati.Proprietary.DiskImage;
using NUnit.Framework;
using Assert = NUnit.Framework.Legacy.ClassicAssert;
#nullable enable
namespace Duplicati.UnitTest
{
/// <summary>
/// Unit tests for the DiskImage backup and restore functionality.
/// These tests use VHD files managed via diskpart to test the full backup and restore flow.
/// </summary>
[TestFixture]
[Category("DiskImage")]
[Platform("Win")]
public class DiskImageTests : BasicSetupHelper
{
private string _sourceVhdPath = null!;
private string _restoreVhdPath = null!;
private int _sourceDiskNumber = -1;
private int _restoreDiskNumber = -1;
private char _sourceDriveLetter;
private DiskImage.IDiskImageHelper _diskHelper = null!;
/// <summary>
/// Sets up the test environment before each test.
/// Creates the disk helper and temporary VHD paths.
/// </summary>
[SetUp]
public void DiskImageSetUp()
{
// Create the appropriate disk image helper for the current platform
_diskHelper = DiskImage.DiskImageHelperFactory.Create();
// Check for admin privileges
if (!_diskHelper.HasRequiredPrivileges())
{
Assert.Ignore("DiskImage tests require administrator privileges");
}
// Create temp VHD paths
var tempPath = Path.GetTempPath();
_sourceVhdPath = Path.Combine(tempPath, $"duplicati_test_source_{Guid.NewGuid()}.vhdx");
_restoreVhdPath = Path.Combine(tempPath, $"duplicati_test_restore_{Guid.NewGuid()}.vhdx");
}
/// <summary>
/// Cleans up the test environment after each test.
/// Detaches and deletes VHD files.
/// </summary>
[TearDown]
public void DiskImageTearDown()
{
// Cleanup VHDs
try
{
_diskHelper.CleanupDisk(_sourceVhdPath);
}
catch (Exception ex)
{
TestContext.Progress.WriteLine($"Warning: Failed to cleanup source VHD: {ex.Message}");
}
try
{
_diskHelper.CleanupDisk(_restoreVhdPath);
}
catch (Exception ex)
{
TestContext.Progress.WriteLine($"Warning: Failed to cleanup restore VHD: {ex.Message}");
}
try
{
_diskHelper.Dispose();
}
catch (Exception ex)
{
TestContext.Progress.WriteLine($"Warning: Failed to dispose disk helper: {ex.Message}");
}
}
/// <summary>
/// Test Scenario 1: GPT + NTFS - Single Partition Backup and Restore
/// </summary>
[Test]
[Category("DiskImage")]
public void Test_GptNtfs_SinglePartition_BackupAndRestore()
{
TestContext.Progress.WriteLine("Test: GPT + NTFS Single Partition Backup and Restore");
// Setup: Create 100MB VHD, GPT, single NTFS partition with test data
var physicalDrivePath = SetupSourceVhd(100, PartitionTableType.GPT, FileSystemType.NTFS);
TestContext.Progress.WriteLine($"Source VHD created at: {_sourceVhdPath}");
TestContext.Progress.WriteLine($"Physical drive path: {physicalDrivePath}");
// Backup via Controller
var backupResults = RunBackup(physicalDrivePath);
TestContext.Progress.WriteLine($"Backup completed. Files examined: {backupResults.ExaminedFiles}, Size: {backupResults.SizeOfExaminedFiles}");
// Assert backup completed with no errors/warnings
TestUtils.AssertResults(backupResults);
// Verify backup created expected files
var remoteFiles = Directory.GetFiles(TARGETFOLDER);
Assert.That(remoteFiles.Length, Is.GreaterThan(0), "Backup should create remote files");
TestContext.Progress.WriteLine($"Remote files created: {remoteFiles.Length}");
// Setup restore target VHD
var restoreDrivePath = SetupRestoreVhd(100, PartitionTableType.GPT, FileSystemType.NTFS);
TestContext.Progress.WriteLine($"Restore VHD created at: {_restoreVhdPath}");
// Restore to target VHD
var restoreResults = RunRestore(restoreDrivePath);
TestContext.Progress.WriteLine($"Restore completed. Files restored: {restoreResults.RestoredFiles}, Size: {restoreResults.SizeOfRestoredFiles}");
// Assert restore completed with no errors/warnings
TestUtils.AssertResults(restoreResults);
// Verify restored data matches original
VerifyRestoredData(_sourceDriveLetter);
}
/// <summary>
/// Test Scenario 2: MBR + FAT32 - Single Partition Backup and Restore
/// </summary>
[Test]
[Category("DiskImage")]
public void Test_MbrFat32_SinglePartition_BackupAndRestore()
{
TestContext.Progress.WriteLine("Test: MBR + FAT32 Single Partition Backup and Restore");
// Setup: Create 50MB VHD, MBR, single FAT32 partition with test data
var physicalDrivePath = SetupSourceVhd(50, PartitionTableType.MBR, FileSystemType.FAT32);
TestContext.Progress.WriteLine($"Source VHD created at: {_sourceVhdPath}");
TestContext.Progress.WriteLine($"Physical drive path: {physicalDrivePath}");
// Backup via Controller
var backupResults = RunBackup(physicalDrivePath);
TestContext.Progress.WriteLine($"Backup completed. Files examined: {backupResults.ExaminedFiles}");
// Assert backup completed with no errors/warnings
TestUtils.AssertResults(backupResults);
// Setup restore target VHD
var restoreDrivePath = SetupRestoreVhd(50, PartitionTableType.MBR, FileSystemType.FAT32);
TestContext.Progress.WriteLine($"Restore VHD created at: {_restoreVhdPath}");
// Restore to target VHD
var restoreResults = RunRestore(restoreDrivePath);
TestContext.Progress.WriteLine($"Restore completed. Files restored: {restoreResults.RestoredFiles}");
// Assert restore completed with no errors/warnings
TestUtils.AssertResults(restoreResults);
// Verify restored data matches original
VerifyRestoredData(_sourceDriveLetter);
}
/// <summary>
/// Test Scenario 3: GPT + Multiple Partitions - NTFS + FAT32
/// </summary>
[Test]
[Category("DiskImage")]
public void Test_Gpt_MultiplePartitions_Backup()
{
TestContext.Progress.WriteLine("Test: GPT + Multiple Partitions (NTFS + FAT32) Backup");
// Setup: Create 200MB VHD, GPT, two partitions
var physicalDrivePath = SetupSourceVhdMultiplePartitions(200, PartitionTableType.GPT,
new[] { (FileSystemType.NTFS, 100), (FileSystemType.FAT32, 50) });
TestContext.Progress.WriteLine($"Source VHD created at: {_sourceVhdPath}");
TestContext.Progress.WriteLine($"Physical drive path: {physicalDrivePath}");
// Backup via Controller
var backupResults = RunBackup(physicalDrivePath);
TestContext.Progress.WriteLine($"Backup completed. Files examined: {backupResults.ExaminedFiles}");
// Assert backup completed with no errors/warnings
TestUtils.AssertResults(backupResults);
// Verify geometry metadata contains both partitions
VerifyGeometryMetadata();
}
/// <summary>
/// Test Scenario 4: Full Round-Trip - Backup + Restore to Second VHD
/// </summary>
[Test]
[Category("DiskImage")]
public void Test_FullRoundTrip_BackupAndRestore()
{
TestContext.Progress.WriteLine("Test: Full Round-Trip Backup + Restore");
// Setup source VHD: 100MB, GPT, single NTFS partition
var sourceDrivePath = SetupSourceVhd(100, PartitionTableType.GPT, FileSystemType.NTFS);
TestContext.Progress.WriteLine($"Source VHD created at: {_sourceVhdPath}");
// Backup
var backupResults = RunBackup(sourceDrivePath);
TestUtils.AssertResults(backupResults);
TestContext.Progress.WriteLine($"Backup completed successfully");
// Setup restore target VHD with same geometry
var restoreDrivePath = SetupRestoreVhd(100, PartitionTableType.GPT, FileSystemType.NTFS);
TestContext.Progress.WriteLine($"Restore VHD created at: {_restoreVhdPath}");
// Restore
var restoreResults = RunRestore(restoreDrivePath);
TestUtils.AssertResults(restoreResults);
TestContext.Progress.WriteLine($"Restore completed successfully");
// Verify partition table matches
VerifyPartitionTableMatches();
// Verify data matches byte-for-byte
VerifyRestoredData(_sourceDriveLetter);
}
/// <summary>
/// Test Scenario 5: Geometry Metadata Verification
/// </summary>
[Test]
[Category("DiskImage")]
public void Test_GeometryMetadata_Verification()
{
TestContext.Progress.WriteLine("Test: Geometry Metadata Verification");
// Setup: Create GPT disk with 2 NTFS partitions
var physicalDrivePath = SetupSourceVhdMultiplePartitions(200, PartitionTableType.GPT,
new[] { (FileSystemType.NTFS, 80), (FileSystemType.NTFS, 60) });
TestContext.Progress.WriteLine($"Source VHD created at: {_sourceVhdPath}");
// Backup
var backupResults = RunBackup(physicalDrivePath);
TestUtils.AssertResults(backupResults);
// List backup contents and verify geometry.json is present
using (var c = new Controller("file://" + TARGETFOLDER, TestOptions, null))
{
var listResults = c.List("*");
TestUtils.AssertResults(listResults);
// Check that geometry.json is in the backup
var files = listResults.Files;
Assert.That(files, Is.Not.Null);
var geometryFile = files.FirstOrDefault(f => f.Path.EndsWith("geometry.json"));
Assert.That(geometryFile, Is.Not.Null, "geometry.json should be present in the backup");
}
// Verify geometry metadata contains correct information
VerifyGeometryMetadata();
}
/// <summary>
/// Test Scenario 6: SourceProvider Enumeration
/// </summary>
[Test]
[Category("DiskImage")]
public async Task Test_SourceProvider_Enumeration()
{
TestContext.Progress.WriteLine("Test: SourceProvider Enumeration");
// Setup: Create GPT disk with one NTFS partition
var physicalDrivePath = SetupSourceVhd(100, PartitionTableType.GPT, FileSystemType.NTFS);
TestContext.Progress.WriteLine($"Source VHD created at: {_sourceVhdPath}");
// Directly instantiate SourceProvider
// Note: When directly instantiating SourceProvider, we don't use the @ prefix
// The @ prefix is only for Controller to recognize it as a remote source
var sourceUrl = $"diskimage://{physicalDrivePath}";
using var provider = new SourceProvider(sourceUrl, "", new Dictionary<string, string?>());
// Initialize the provider
await provider.Initialize(CancellationToken.None);
// Enumerate entries
var diskEntries = new List<ISourceProviderEntry>();
await foreach (var entry in provider.Enumerate(CancellationToken.None))
{
diskEntries.Add(entry);
TestContext.Progress.WriteLine($"Found entry: {entry.Path} (IsFolder: {entry.IsFolder}, Size: {entry.Size})");
}
// Verify hierarchy: disk → partition → filesystem → files
Assert.That(diskEntries.Count, Is.GreaterThan(0), "Should have at least one entry (the disk)");
// Fetch the rest of the enumaration.
// Check for disk entry
var diskEntry = diskEntries.FirstOrDefault(e => e.IsRootEntry);
Assert.That(diskEntry, Is.Not.Null, "Should have a root disk entry");
var entries = new List<ISourceProviderEntry>();
await foreach (var entry in diskEntry!.Enumerate(CancellationToken.None))
entries.Add(entry);
TestContext.Progress.WriteLine($"Total entries found: {entries.Count}");
// Check for geometry.json
var geometryEntry = entries.FirstOrDefault(e => e.Path.EndsWith("geometry.json"));
Assert.That(geometryEntry, Is.Not.Null, "Should have geometry.json entry");
// Check for partition entries
var partitionEntries = entries.Where(e => e.Path.Contains("part_")).ToList();
Assert.That(partitionEntries.Count, Is.GreaterThan(0), "Should have at least one partition entry");
// Add all of the filesystems.
var fsEntries = new List<ISourceProviderEntry>();
foreach (var partitionEntry in partitionEntries)
await foreach (var entry in partitionEntry.Enumerate(CancellationToken.None))
fsEntries.Add(entry);
// Check for filesystem entries
Assert.That(fsEntries.All(x => x.Path.Contains("fs_")));
Assert.That(fsEntries.Count, Is.GreaterThan(0), "Should have at least one filesystem entry");
}
/// <summary>
/// Test Scenario 7: MBR + Multiple Partitions
/// </summary>
[Test]
[Category("DiskImage")]
public void Test_Mbr_MultiplePartitions_Backup()
{
TestContext.Progress.WriteLine("Test: MBR + Multiple Partitions Backup");
// Setup: Create 150MB VHD, MBR, two partitions (NTFS + FAT32)
var physicalDrivePath = SetupSourceVhdMultiplePartitions(150, PartitionTableType.MBR,
new[] { (FileSystemType.NTFS, 70), (FileSystemType.FAT32, 40) });
TestContext.Progress.WriteLine($"Source VHD created at: {_sourceVhdPath}");
// Backup
var backupResults = RunBackup(physicalDrivePath);
TestUtils.AssertResults(backupResults);
TestContext.Progress.WriteLine($"Backup completed. Files examined: {backupResults.ExaminedFiles}");
// Verify both partitions are captured
VerifyGeometryMetadata();
// Verify partition table type is MBR in geometry metadata
VerifyPartitionTableType(PartitionTableType.MBR);
}
/// <summary>
/// Test Scenario 8: Auto Unmount Option - Verify that restore fails when disk is online
/// and succeeds when auto-unmount option is enabled.
/// </summary>
[Test]
[Category("DiskImage")]
public void Test_AutoUnmountOption_RestoreWhileOnline()
{
TestContext.Progress.WriteLine("Test: Auto Unmount Option - Restore While Disk Online");
// Setup source VHD: 100MB, GPT, single NTFS partition
var sourceDrivePath = SetupSourceVhd(100, PartitionTableType.GPT, FileSystemType.NTFS);
TestContext.Progress.WriteLine($"Source VHD created at: {_sourceVhdPath}");
// Backup
var backupResults = RunBackup(sourceDrivePath);
TestUtils.AssertResults(backupResults);
TestContext.Progress.WriteLine($"Backup completed successfully");
// Create and attach VHD
var restoreDrivePath = _diskHelper.CreateAndAttachDisk(_restoreVhdPath, 100);
_restoreDiskNumber = _diskHelper.GetDiskNumber(_restoreVhdPath);
// Initialize disk (the restore will overwrite this, but we need it formatted)
_diskHelper.InitializeDisk(_restoreDiskNumber, PartitionTableType.GPT);
_diskHelper.CreateAndFormatPartition(_restoreDiskNumber, FileSystemType.NTFS);
TestContext.Progress.WriteLine($"Restore VHD created and kept online at: {_restoreVhdPath}");
// First attempt: Restore without auto-unmount option should fail
// because the disk is online and in use
TestContext.Progress.WriteLine("Attempting restore without auto-unmount (should fail)...");
var options = new Dictionary<string, string>(TestOptions)
{
["restore-path"] = $"@diskimage://{restoreDrivePath}",
["overwrite"] = "true",
["restore-file-processors"] = "1",
// Explicitly disable auto-unmount (though it's disabled by default)
["diskimage-restore-auto-unmount"] = "false"
};
using (var c = new Controller("file://" + TARGETFOLDER, options, null))
{
try
{
var results = c.Restore(["*"]);
// Verify that the restore failed (has errors)
Assert.That(results.Errors.Any(), Is.True,
"Restore should fail when target disk is online and auto-unmount is not enabled");
TestContext.Progress.WriteLine($"Restore failed as expected with errors: {string.Join(", ", results.Errors)}");
}
catch (IOException)
{
// Assumed to fail
}
}
// Second attempt: Restore with auto-unmount option should succeed
TestContext.Progress.WriteLine("Attempting restore with auto-unmount enabled (should succeed)...");
options["diskimage-restore-auto-unmount"] = "true";
using (var c = new Controller("file://" + TARGETFOLDER, options, null))
{
var results = c.Restore(["*"]);
Assert.That(!results.Errors.Any() && results.Warnings.Count() <= 1);
}
TestContext.Progress.WriteLine($"Restore completed successfully with auto-unmount option");
// Verify partition table matches
VerifyPartitionTableMatches();
// Verify data matches byte-for-byte
VerifyRestoredData(_sourceDriveLetter);
}
#region Helper Methods
/// <summary>
/// Sets up a source VHD with a single partition.
/// </summary>
/// <param name="sizeMB">The size of the VHD in megabytes.</param>
/// <param name="tableType">The partition table type (GPT or MBR).</param>
/// <param name="fsType">The filesystem type (NTFS, FAT32, EXT4, etc.).</param>
/// <returns>The physical drive path.</returns>
private string SetupSourceVhd(int sizeMB, PartitionTableType tableType, FileSystemType fsType)
{
// Create and attach VHD
var physicalDrivePath = _diskHelper.CreateAndAttachDisk(_sourceVhdPath, sizeMB);
_sourceDiskNumber = _diskHelper.GetDiskNumber(_sourceVhdPath);
// Initialize disk
_diskHelper.InitializeDisk(_sourceDiskNumber, tableType);
// Create and format partition
_sourceDriveLetter = _diskHelper.CreateAndFormatPartition(_sourceDiskNumber, fsType);
// Populate with test data
_diskHelper.PopulateTestData(_sourceDriveLetter);
_diskHelper.FlushVolume(_sourceDriveLetter);
return physicalDrivePath;
}
/// <summary>
/// Sets up a source VHD with multiple partitions.
/// </summary>
/// <param name="sizeMB">The size of the VHD in megabytes.</param>
/// <param name="tableType">The partition table type (GPT or MBR).</param>
/// <param name="partitions">Array of tuples containing filesystem type and size for each partition.</param>
/// <returns>The physical drive path.</returns>
private string SetupSourceVhdMultiplePartitions(int sizeMB, PartitionTableType tableType, (FileSystemType fsType, int sizeMB)[] partitions)
{
// Create and attach VHD
var physicalDrivePath = _diskHelper.CreateAndAttachDisk(_sourceVhdPath, sizeMB);
_sourceDiskNumber = _diskHelper.GetDiskNumber(_sourceVhdPath);
// Initialize disk
_diskHelper.InitializeDisk(_sourceDiskNumber, tableType);
// Create and format partitions
for (int i = 0; i < partitions.Length; i++)
{
var (fsType, partSize) = partitions[i];
var driveLetter = _diskHelper.CreateAndFormatPartition(_sourceDiskNumber, fsType, partSize);
_diskHelper.PopulateTestData(driveLetter, 5, 5); // Smaller data set for multiple partitions
_diskHelper.FlushVolume(driveLetter);
if (i == 0)
{
_sourceDriveLetter = driveLetter;
}
}
return physicalDrivePath;
}
/// <summary>
/// Sets up a restore target VHD with the specified geometry.
/// </summary>
/// <param name="sizeMB">The size of the VHD in megabytes.</param>
/// <param name="tableType">The partition table type (GPT or MBR).</param>
/// <param name="fsType">The filesystem type (NTFS, FAT32, EXT4, etc.).</param>
/// <returns>The physical drive path.</returns>
private string SetupRestoreVhd(int sizeMB, PartitionTableType tableType, FileSystemType fsType)
{
// Create and attach VHD
var physicalDrivePath = _diskHelper.CreateAndAttachDisk(_restoreVhdPath, sizeMB);
_restoreDiskNumber = _diskHelper.GetDiskNumber(_restoreVhdPath);
// Initialize disk (the restore will overwrite this, but we need it formatted)
_diskHelper.InitializeDisk(_restoreDiskNumber, tableType);
var restoreDriveLetter = _diskHelper.CreateAndFormatPartition(_restoreDiskNumber, fsType);
_diskHelper.UnmountForWriting(_restoreVhdPath, restoreDriveLetter);
return physicalDrivePath;
}
/// <summary>
/// Runs a backup operation using the Controller.
/// </summary>
/// <param name="physicalDrivePath">The physical drive path to backup.</param>
/// <returns>The backup results.</returns>
private IBackupResults RunBackup(string physicalDrivePath)
{
var options = new Dictionary<string, string>(TestOptions);
options["enable-module"] = "diskimage";
options["concurrency-fileprocessors"] = "1";
using var c = new Controller("file://" + TARGETFOLDER, options, null);
var sourceUrl = $"@/testdisk|diskimage://{physicalDrivePath}";
return c.Backup(new[] { sourceUrl });
}
/// <summary>
/// Runs a restore operation using the Controller.
/// </summary>
/// <param name="restoreDrivePath">The physical drive path to restore to.</param>
/// <returns>The restore results.</returns>
private IRestoreResults RunRestore(string restoreDrivePath)
{
_diskHelper.UnmountForWriting(_restoreVhdPath);
var options = new Dictionary<string, string>(TestOptions);
options["restore-path"] = $"@diskimage://{restoreDrivePath}";
options["overwrite"] = "true";
options["restore-file-processors"] = "1";
using var c = new Controller("file://" + TARGETFOLDER, options, null);
var results = c.Restore(new[] { "*" });
_diskHelper.BringOnline(_restoreVhdPath);
return results;
}
/// <summary>
/// Verifies that the restored data matches the original data.
/// </summary>
/// <param name="originalDriveLetter">The drive letter of the original source drive.</param>
private void VerifyRestoredData(char originalDriveLetter)
{
TestContext.Progress.WriteLine("Verifying restored data...");
// Attach the restored VHD to get its drive letter
var restoreDiskNumber = _diskHelper.GetDiskNumber(_restoreVhdPath);
if (restoreDiskNumber < 0)
{
// Re-attach the VHD if needed - for Windows, we need to use the static method
// since this is a special case for re-attaching
if (_diskHelper is DiskImage.WindowsDiskImageHelper)
{
DiskImage.WindowsDiskImageHelper.RunPowerShell($"Mount-DiskImage -ImagePath '{_restoreVhdPath}'");
}
restoreDiskNumber = _diskHelper.GetDiskNumber(_restoreVhdPath);
}
// Get the drive letter for the restored partition
var restoreDriveLetter = GetDriveLetterForDisk(restoreDiskNumber);
if (restoreDriveLetter == '\0')
{
TestContext.Progress.WriteLine("Restored VHD not mounted, attempting to mount...");
restoreDriveLetter = _diskHelper.MountForReading(_restoreVhdPath);
// Give Windows some time to mount the volume and assign the drive letter
Thread.Sleep(2000);
}
if (restoreDriveLetter == '\0')
{
// Second attempt to get drive letter after mounting failed
Assert.Fail("Could not find drive letter for restored VHD");
return;
}
TestContext.Progress.WriteLine($"Comparing source drive {originalDriveLetter}: with restored drive {restoreDriveLetter}:");
try
{
// Compare directory structures and file contents
var sourcePath = $"{originalDriveLetter}:\\";
var restorePath = $"{restoreDriveLetter}:\\";
// Wait for the restore path to become available
for (int i = 0; i < 10; i++)
{
if (Directory.Exists(restorePath))
break;
Thread.Sleep(1000);
}
CompareDirectories(sourcePath, restorePath);
}
finally
{
// Detach the restored VHD
try
{
_diskHelper.DetachDisk(_restoreVhdPath);
}
catch (Exception ex)
{
TestContext.Progress.WriteLine($"Warning: Failed to detach restored VHD: {ex.Message}");
}
}
}
/// <summary>
/// Recursively compares two directories for structural and content equality.
/// </summary>
/// <param name="sourcePath">The source directory path.</param>
/// <param name="restorePath">The restored directory path.</param>
private void CompareDirectories(string sourcePath, string restorePath)
{
var options = new EnumerationOptions
{
RecurseSubdirectories = true,
IgnoreInaccessible = true,
AttributesToSkip = FileAttributes.System | FileAttributes.ReparsePoint
};
// Get all files in source, except for system files, which cannot be read directly
var sourceFiles = Directory.EnumerateFiles(sourcePath, "*", options).Select(f => Path.GetRelativePath(sourcePath, f)).OrderBy(f => f).ToList();
var restoreFiles = Directory.EnumerateFiles(restorePath, "*", options).Select(f => Path.GetRelativePath(restorePath, f)).OrderBy(f => f).ToList();
// Check that all source files exist in restore
foreach (var relativePath in sourceFiles)
{
Assert.That(restoreFiles, Does.Contain(relativePath),
$"Restored drive should contain file: {relativePath}");
}
// Compare file contents byte-by-byte
foreach (var sourceFile in sourceFiles)
{
var relativePath = sourceFile.Substring(3);
var restoreFile = Path.Combine(restorePath, relativePath);
if (File.Exists(restoreFile))
{
var sourceBytes = File.ReadAllBytes(sourceFile);
var restoreBytes = File.ReadAllBytes(restoreFile);
Assert.That(restoreBytes.Length, Is.EqualTo(sourceBytes.Length),
$"File size mismatch for {relativePath}");
Assert.That(restoreBytes, Is.EqualTo(sourceBytes),
$"File content mismatch for {relativePath}");
}
}
TestContext.Progress.WriteLine($"Verified {sourceFiles.Count} files match between source and restored drives");
}
/// <summary>
/// Gets the drive letter for a disk number by querying PowerShell.
/// </summary>
/// <param name="diskNumber">The disk number.</param>
/// <returns>The drive letter, or '\0' if not found.</returns>
private char GetDriveLetterForDisk(int diskNumber)
{
// Use PowerShell to find the drive letter for this disk
var script = $@"Get-Partition -DiskNumber {diskNumber} | Get-Volume | Where-Object {{ $_.DriveLetter -ne $null }} | Select-Object -ExpandProperty DriveLetter";
var output = DiskImage.WindowsDiskImageHelper.RunPowerShell(script)?.Trim();
if (!string.IsNullOrEmpty(output) && output.Length >= 1 && char.IsLetter(output[0]))
{
var driveLetter = char.ToUpperInvariant(output[0]);
if (Directory.Exists($"{driveLetter}:\\"))
{
return driveLetter;
}
}
return '\0';
}
/// <summary>
/// Verifies that the geometry metadata is present and valid.
/// </summary>
private void VerifyGeometryMetadata()
{
TestContext.Progress.WriteLine("Verifying geometry metadata...");
using (var c = new Controller("file://" + TARGETFOLDER, TestOptions, null))
{
var listResults = c.List("*");
Assert.That(listResults.Files, Is.Not.Null);
var geometryFile = listResults.Files.FirstOrDefault(f => f.Path.EndsWith("geometry.json"));
Assert.That(geometryFile, Is.Not.Null, "geometry.json should be present in the backup");
// Restore and parse the geometry.json file
var tempGeometryPath = Path.Combine(Path.GetTempPath(), $"geometry_{Guid.NewGuid()}.json");
try
{
var restoreOptions = new Dictionary<string, string>(TestOptions)
{
["restore-path"] = Path.GetDirectoryName(tempGeometryPath)!,
["overwrite"] = "true"
};
using (var restoreController = new Controller("file://" + TARGETFOLDER, restoreOptions, null))
{
var restoreResults = restoreController.Restore(new[] { geometryFile!.Path });
TestUtils.AssertResults(restoreResults);
}
// Read and parse the geometry.json
if (File.Exists(tempGeometryPath))
{
var json = File.ReadAllText(tempGeometryPath);
var geometry = GeometryMetadata.FromJson(json);
Assert.That(geometry, Is.Not.Null, "geometry.json should deserialize successfully");
Assert.That(geometry!.Version, Is.GreaterThan(0), "Geometry version should be set");
Assert.That(geometry.Disk, Is.Not.Null, "Disk geometry should be present");
Assert.That(geometry.Disk!.Size, Is.GreaterThan(0), "Disk size should be greater than 0");
Assert.That(geometry.Disk.SectorSize, Is.GreaterThan(0), "Sector size should be greater than 0");
Assert.That(geometry.PartitionTable, Is.Not.Null, "Partition table should be present");
Assert.That(geometry.Partitions, Is.Not.Null, "Partitions list should be present");
Assert.That(geometry.Partitions!.Count, Is.GreaterThan(0), "Should have at least one partition");
TestContext.Progress.WriteLine($"Geometry metadata verified: Disk size={geometry.Disk.Size}, " +
$"Sector size={geometry.Disk.SectorSize}, Partitions={geometry.Partitions.Count}, " +
$"Table type={geometry.PartitionTable!.Type}");
}
}
finally
{
try
{
if (File.Exists(tempGeometryPath))
{
File.Delete(tempGeometryPath);
}
}
catch
{
// Ignore cleanup errors
}
}
}
}
/// <summary>
/// Verifies that the partition table type matches the expected type.
/// </summary>
/// <param name="expectedType">The expected partition table type.</param>
private void VerifyPartitionTableType(PartitionTableType expectedType)
{
TestContext.Progress.WriteLine($"Verifying partition table type is {expectedType}...");
using (var c = new Controller("file://" + TARGETFOLDER, TestOptions, null))
{
var listResults = c.List("*");
Assert.That(listResults.Files, Is.Not.Null);
var geometryFile = listResults.Files.FirstOrDefault(f => f.Path.EndsWith("geometry.json"));
Assert.That(geometryFile, Is.Not.Null, "geometry.json should be present in the backup");
// Restore and parse the geometry.json file
var tempGeometryPath = Path.Combine(Path.GetTempPath(), $"geometry_{Guid.NewGuid()}.json");
try
{
var restoreOptions = new Dictionary<string, string>(TestOptions)
{
["restore-path"] = Path.GetDirectoryName(tempGeometryPath)!,
["overwrite"] = "true"
};
using (var restoreController = new Controller("file://" + TARGETFOLDER, restoreOptions, null))
{
var restoreResults = restoreController.Restore(new[] { geometryFile!.Path });
// Ignore NoFilesRestored warning as geometry.json is a special metadata file
var hasRelevantWarnings = restoreResults.Warnings.Any(w => !w.Contains("NoFilesRestored"));
if (restoreResults.Errors.Any() || hasRelevantWarnings)
{
TestUtils.AssertResults(restoreResults);
}
}
if (File.Exists(tempGeometryPath))
{
var json = File.ReadAllText(tempGeometryPath);
var geometry = GeometryMetadata.FromJson(json);
Assert.That(geometry, Is.Not.Null, "geometry.json should deserialize successfully");
Assert.That(geometry!.PartitionTable, Is.Not.Null, "Partition table should be present");
Assert.That(geometry.PartitionTable!.Type, Is.EqualTo(expectedType),
$"Partition table type should be {expectedType}");
TestContext.Progress.WriteLine($"Partition table type verified: {geometry.PartitionTable.Type}");
}
}
finally
{
try
{
if (File.Exists(tempGeometryPath))
{
File.Delete(tempGeometryPath);
}
}
catch
{
// Ignore cleanup errors
}
}
}
}
/// <summary>
/// Verifies that the restored partition table matches the source.
/// </summary>
private void VerifyPartitionTableMatches()
{
TestContext.Progress.WriteLine("Verifying partition table matches...");
// Get source disk details
var sourceDetails = _diskHelper.GetDiskDetails(_sourceDiskNumber);
TestContext.Progress.WriteLine("Source disk details:\n" + sourceDetails);
// Get restore disk details
var restoreDiskNumber = _diskHelper.GetDiskNumber(_restoreVhdPath);
var restoreDetails = _diskHelper.GetDiskDetails(restoreDiskNumber);
TestContext.Progress.WriteLine("Restore disk details:\n" + restoreDetails);
// Parse partition information from diskpart output
var sourcePartitions = ParsePartitionsFromDiskpartOutput(sourceDetails);
var restorePartitions = ParsePartitionsFromDiskpartOutput(restoreDetails);
// Verify partition counts match
Assert.That(restorePartitions.Count, Is.EqualTo(sourcePartitions.Count),
"Restored disk should have same number of partitions as source");
// Verify partition sizes match
for (int i = 0; i < sourcePartitions.Count; i++)
{
Assert.That(restorePartitions[i].Size, Is.EqualTo(sourcePartitions[i].Size),
$"Partition {i + 1} size should match");
Assert.That(restorePartitions[i].Type, Is.EqualTo(sourcePartitions[i].Type),
$"Partition {i + 1} type should match");
}
TestContext.Progress.WriteLine($"Partition table verified: {sourcePartitions.Count} partitions match");
}
/// <summary>
/// Parses partition information from diskpart detail disk output.
/// </summary>
/// <param name="output">The diskpart output text.</param>
/// <returns>A list of tuples containing partition size and type.</returns>
private List<(long Size, string Type)> ParsePartitionsFromDiskpartOutput(string output)
{
var partitions = new List<(long Size, string Type)>();
var lines = output.Split(new[] { '\r', '\n' }, StringSplitOptions.RemoveEmptyEntries);
bool inPartitionSection = false;
foreach (var line in lines)
{
// Look for partition section header
if (line.Contains("Partition", StringComparison.OrdinalIgnoreCase) &&
line.Contains("Type", StringComparison.OrdinalIgnoreCase))
{
inPartitionSection = true;
continue;
}
if (inPartitionSection && line.Trim().StartsWith("Partition"))
{
// Parse partition line
var parts = line.Split(new[] { ' ', '\t' }, StringSplitOptions.RemoveEmptyEntries);
if (parts.Length >= 3)
{
// Try to extract size information
long size = 0;
string type = "Unknown";
for (int i = 0; i < parts.Length; i++)
{
if (parts[i].EndsWith("MB", StringComparison.OrdinalIgnoreCase) &&
long.TryParse(parts[i].Replace("MB", ""), out var mb))
{
size = mb * 1024 * 1024;
}
else if (parts[i].EndsWith("GB", StringComparison.OrdinalIgnoreCase) &&
long.TryParse(parts[i].Replace("GB", ""), out var gb))
{
size = gb * 1024 * 1024 * 1024;
}
else if (parts[i].Equals("Primary", StringComparison.OrdinalIgnoreCase) ||
parts[i].Equals("Extended", StringComparison.OrdinalIgnoreCase))
{
type = parts[i];
}
}
partitions.Add((size, type));
}
}
}
return partitions;
}
#endregion
}
}