This PR has a large blast radius because it takes the final step and bumps up the Controller to be fully async. We have historically done a piece-by-piece update, so all operations were already async but the controller interface was kept synchronous. With this update, the controller is now fully async and all tests are updated. Most places where the new C# compiler warns about function names not ending in `Async` were also adressed, giving a massive refactor change. Functionally, no changes are done.
236 lines
11 KiB
C#
236 lines
11 KiB
C#
using System;
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using System.Threading;
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using System.Threading.Tasks;
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using NUnit.Framework;
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using Assert = NUnit.Framework.Legacy.ClassicAssert;
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namespace Duplicati.UnitTest.DiskImage.UnitTests;
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public partial class DiskImageUnitTests : BasicSetupHelper
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{
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[Test]
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public async Task Test_RawDisk_WriteUnalignedOffset_DataMatches_Async()
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{
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var sectorSize = _writableRawDisk.SectorSize;
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// First, write known patterns to two consecutive sectors
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var sector1Data = new byte[sectorSize];
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var sector2Data = new byte[sectorSize];
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for (int i = 0; i < sectorSize; i++)
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{
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sector1Data[i] = (byte)(i | 0xA0);
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sector2Data[i] = (byte)(i | 0xB0);
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}
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await _writableRawDisk.WriteSectorsAsync(1, sector1Data, CancellationToken.None);
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await _writableRawDisk.WriteSectorsAsync(2, sector2Data, CancellationToken.None);
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// Now write at unaligned offset (sector_size + 5)
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var unalignedOffset = sectorSize + 5;
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var writeData = new byte[] { 0x01, 0x02, 0x03, 0x04, 0x05 };
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var bytesWritten = await _writableRawDisk.WriteBytesAsync(unalignedOffset, writeData, CancellationToken.None);
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Assert.AreEqual(writeData.Length, bytesWritten, "Should have written all bytes.");
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// Read back both sectors and verify only the intended bytes were changed
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using var readStream = await _writableRawDisk.ReadSectorsAsync(1, 2, CancellationToken.None);
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var readBuffer = new byte[sectorSize * 2];
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var bytesRead = await readStream.ReadAsync(readBuffer.AsMemory(), CancellationToken.None);
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Assert.AreEqual(sectorSize * 2, bytesRead, "Should have read two sectors.");
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// Verify sector 1 data
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for (int i = 0; i < 5; i++)
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Assert.AreEqual((byte)(i | 0xA0), readBuffer[i], $"Byte at position {i} in sector 1 should be unchanged.");
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for (int i = 0; i < writeData.Length; i++)
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Assert.AreEqual(writeData[i], readBuffer[5 + i], $"Written byte at position {5 + i} should match.");
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for (int i = 5 + writeData.Length; i < sectorSize; i++)
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Assert.AreEqual((byte)(i | 0xA0), readBuffer[i], $"Byte at position {i} in sector 1 should be unchanged.");
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// Verify sector 2 data (should be completely unchanged)
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for (int i = 0; i < sectorSize; i++)
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Assert.AreEqual((byte)(i | 0xB0), readBuffer[sectorSize + i], $"Byte at position {i} in sector 2 should be unchanged.");
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}
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[Test]
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public async Task Test_RawDisk_WriteUnalignedLength_DataMatches_Async()
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{
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var sectorSize = _writableRawDisk.SectorSize;
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// Write known pattern to sector 3
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var sectorData = new byte[sectorSize];
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for (int i = 0; i < sectorSize; i++)
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sectorData[i] = (byte)(i | 0xC0);
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await _writableRawDisk.WriteSectorsAsync(3, sectorData, CancellationToken.None);
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// Write unaligned length (sectorSize - 10)
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var writeLength = sectorSize - 10;
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var writeData = new byte[writeLength];
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for (int i = 0; i < writeLength; i++)
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writeData[i] = (byte)((i + 50) & 0xFF);
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var bytesWritten = await _writableRawDisk.WriteBytesAsync(3 * sectorSize, writeData, CancellationToken.None);
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Assert.AreEqual(writeData.Length, bytesWritten, "Should have written all bytes.");
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// Read back and verify
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using var readStream = await _writableRawDisk.ReadSectorsAsync(3, 1, CancellationToken.None);
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var readBuffer = new byte[sectorSize];
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var bytesRead = await readStream.ReadAsync(readBuffer.AsMemory(), CancellationToken.None);
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Assert.AreEqual(sectorSize, bytesRead, "Should have read one sector.");
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// First part should be our written data
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for (int i = 0; i < writeLength; i++)
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Assert.AreEqual((byte)((i + 50) & 0xFF), readBuffer[i], $"Byte at position {i} should match written data.");
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// Remaining bytes should be unchanged
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for (int i = writeLength; i < sectorSize; i++)
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Assert.AreEqual((byte)(i | 0xC0), readBuffer[i], $"Byte at position {i} should be unchanged.");
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}
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[Test]
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public async Task Test_RawDisk_WriteSingleByte_VerifySingleByteChanged_Async()
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{
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var sectorSize = _writableRawDisk.SectorSize;
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// Write known pattern to sector 5
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var sectorData = new byte[sectorSize];
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for (int i = 0; i < sectorSize; i++)
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sectorData[i] = (byte)(i & 0xFF);
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await _writableRawDisk.WriteSectorsAsync(5, sectorData, CancellationToken.None);
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// Write a single byte at offset 5 * sectorSize + 100
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var byteOffset = 5 * sectorSize + 100;
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var singleByte = new byte[] { 0xAB };
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var bytesWritten = await _writableRawDisk.WriteBytesAsync(byteOffset, singleByte, CancellationToken.None);
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Assert.AreEqual(1, bytesWritten, "Should have written 1 byte.");
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// Read back the full sector
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using var readStream = await _writableRawDisk.ReadSectorsAsync(5, 1, CancellationToken.None);
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var readBuffer = new byte[sectorSize];
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var bytesRead = await readStream.ReadAsync(readBuffer.AsMemory(), CancellationToken.None);
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Assert.AreEqual(sectorSize, bytesRead, "Should have read one sector.");
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// Verify all bytes except position 100 are unchanged
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for (int i = 0; i < sectorSize; i++)
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if (i == 100)
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Assert.AreEqual(0xAB, readBuffer[i], "Byte at position 100 should be the written value.");
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else
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Assert.AreEqual((byte)(i & 0xFF), readBuffer[i], $"Byte at position {i} should be unchanged.");
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}
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[Test]
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public async Task Test_RawDisk_WriteSpanningSectorBoundary_DataMatches_Async()
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{
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var sectorSize = _writableRawDisk.SectorSize;
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// Write known patterns to sectors 6 and 7
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var sector6Data = new byte[sectorSize];
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var sector7Data = new byte[sectorSize];
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for (int i = 0; i < sectorSize; i++)
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{
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sector6Data[i] = (byte)(i | 0xD0);
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sector7Data[i] = (byte)(i | 0xE0);
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}
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await _writableRawDisk.WriteSectorsAsync(6, sector6Data, CancellationToken.None);
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await _writableRawDisk.WriteSectorsAsync(7, sector7Data, CancellationToken.None);
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// Write spanning sector boundary: offset = sector_size - 4, length = 8
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var spanOffset = 6 * sectorSize + sectorSize - 4;
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var spanData = new byte[] { 0x11, 0x22, 0x33, 0x44, 0x55, 0x66, 0x77, 0x88 };
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var bytesWritten = await _writableRawDisk.WriteBytesAsync(spanOffset, spanData, CancellationToken.None);
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Assert.AreEqual(spanData.Length, bytesWritten, "Should have written all bytes.");
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// Read back both sectors
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using var readStream = await _writableRawDisk.ReadSectorsAsync(6, 2, CancellationToken.None);
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var readBuffer = new byte[sectorSize * 2];
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var bytesRead = await readStream.ReadAsync(readBuffer.AsMemory(), CancellationToken.None);
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Assert.AreEqual(sectorSize * 2, bytesRead, "Should have read two sectors.");
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// Verify sector 6: last 4 bytes should be the first 4 of our written data
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for (int i = 0; i < sectorSize - 4; i++)
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Assert.AreEqual((byte)(i | 0xD0), readBuffer[i], $"Byte at position {i} in sector 6 should be unchanged.");
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for (int i = 0; i < 4; i++)
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Assert.AreEqual(spanData[i], readBuffer[sectorSize - 4 + i], $"Span byte at position {i} in sector 6 should match.");
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// Verify sector 7: first 4 bytes should be the last 4 of our written data
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for (int i = 0; i < 4; i++)
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Assert.AreEqual(spanData[4 + i], readBuffer[sectorSize + i], $"Span byte at position {4 + i} in sector 7 should match.");
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for (int i = 4; i < sectorSize; i++)
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Assert.AreEqual((byte)(i | 0xE0), readBuffer[sectorSize + i], $"Byte at position {i} in sector 7 should be unchanged.");
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}
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[Test]
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public async Task Test_RawDisk_WriteAtLastSector_NoOverflow_Async()
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{
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var sectorSize = _writableRawDisk.SectorSize;
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var diskSize = _writableRawDisk.Size;
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// Calculate the last sector
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var lastSector = (diskSize / sectorSize) - 1;
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// Write a full sector at the last valid sector
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var writeData = new byte[sectorSize];
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new Random(42).NextBytes(writeData);
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var bytesWritten = await _writableRawDisk.WriteSectorsAsync(lastSector, writeData, CancellationToken.None);
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Assert.AreEqual(sectorSize, bytesWritten, "Should have written a full sector.");
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// Read it back and verify
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using var readStream = await _writableRawDisk.ReadSectorsAsync(lastSector, 1, CancellationToken.None);
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var readBuffer = new byte[sectorSize];
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var bytesRead = await readStream.ReadAsync(readBuffer.AsMemory(), CancellationToken.None);
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Assert.AreEqual(sectorSize, bytesRead, "Should have read one sector.");
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Assert.AreEqual(writeData, readBuffer, "Data should match.");
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}
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[Test]
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public async Task Test_RawDisk_WriteUnalignedWithMemory_DataMatches_Async()
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{
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var sectorSize = _writableRawDisk.SectorSize;
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// Write known pattern to sector 8
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var sectorData = new byte[sectorSize];
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for (int i = 0; i < sectorSize; i++)
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sectorData[i] = (byte)(i | 0xF0);
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await _writableRawDisk.WriteSectorsAsync(8, sectorData, CancellationToken.None);
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// Write at unaligned offset using Memory<byte>
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var unalignedOffset = 8 * sectorSize + 10;
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var writeData = new byte[] { 0xAA, 0xBB, 0xCC, 0xDD, 0xEE };
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var bytesWritten = await _writableRawDisk.WriteBytesAsync(unalignedOffset, writeData.AsMemory(), CancellationToken.None);
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Assert.AreEqual(writeData.Length, bytesWritten, "Should have written all bytes.");
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// Read back and verify
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using var readStream = await _writableRawDisk.ReadSectorsAsync(8, 1, CancellationToken.None);
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var readBuffer = new byte[sectorSize];
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var bytesRead = await readStream.ReadAsync(readBuffer.AsMemory(), CancellationToken.None);
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Assert.AreEqual(sectorSize, bytesRead, "Should have read one sector.");
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// Verify data before written region
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for (int i = 0; i < 10; i++)
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Assert.AreEqual((byte)(i | 0xF0), readBuffer[i], $"Byte at position {i} should be unchanged.");
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// Verify written data
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for (int i = 0; i < writeData.Length; i++)
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Assert.AreEqual(writeData[i], readBuffer[10 + i], $"Written byte at position {10 + i} should match.");
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// Verify data after written region
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for (int i = 10 + writeData.Length; i < sectorSize; i++)
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Assert.AreEqual((byte)(i | 0xF0), readBuffer[i], $"Byte at position {i} should be unchanged.");
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}
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} |