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ReLibreHardwareMonitor/LibreHardwareMonitorLib/Hardware/Storage/NVMeIntel.cs
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174 lines
7.1 KiB
C#

// This Source Code Form is subject to the terms of the Mozilla Public License, v. 2.0.
// If a copy of the MPL was not distributed with this file, You can obtain one at http://mozilla.org/MPL/2.0/.
// Copyright (C) LibreHardwareMonitor and Contributors.
// All Rights Reserved.
using System;
using System.IO;
using System.Runtime.InteropServices;
using Windows.Win32;
using Windows.Win32.Storage.FileSystem;
using Windows.Win32.Storage.IscsiDisc;
using Windows.Win32.Storage.Nvme;
using Windows.Win32.System.Ioctl;
using LibreHardwareMonitor.Interop;
using Microsoft.Win32.SafeHandles;
namespace LibreHardwareMonitor.Hardware.Storage;
internal class NVMeIntel : INVMeDrive
{
//intel nvme access
public SafeHandle Identify(StorageInfo storageInfo)
{
return NVMeWindows.IdentifyDevice(storageInfo);
}
public unsafe bool IdentifyController(SafeHandle hDevice, out NVME_IDENTIFY_CONTROLLER_DATA data)
{
data = new NVME_IDENTIFY_CONTROLLER_DATA();
if (hDevice?.IsInvalid != false)
return false;
bool result = false;
AtaSmart.NVME_PASS_THROUGH_IOCTL passThrough = new();
passThrough.SrbIoCtrl.HeaderLength = (uint)sizeof(SRB_IO_CONTROL);
ReadOnlySpan<byte> signature = "NvmeMini"u8;
for (int i = 0; i < signature.Length; i++)
passThrough.SrbIoCtrl.Signature[i] = signature[i];
passThrough.SrbIoCtrl.Timeout = 10;
passThrough.SrbIoCtrl.ControlCode = AtaSmart.NVME_PASS_THROUGH_SRB_IO_CODE;
passThrough.SrbIoCtrl.ReturnCode = 0;
passThrough.SrbIoCtrl.Length = (uint)sizeof(AtaSmart.NVME_PASS_THROUGH_IOCTL) - (uint)sizeof(SRB_IO_CONTROL);
passThrough.NVMeCmd[0] = 6; //identify
passThrough.NVMeCmd[10] = 1; //return to host
passThrough.Direction = AtaSmart.NVME_DATA_IN;
passThrough.QueueId = 0;
passThrough.DataBufferLen = AtaSmart.IOCTL_BUFFER_SIZE;
passThrough.MetaDataLen = 0;
passThrough.ReturnBufferLen = (uint)sizeof(AtaSmart.NVME_PASS_THROUGH_IOCTL);
int length = sizeof(AtaSmart.NVME_PASS_THROUGH_IOCTL);
IntPtr buffer = Marshal.AllocHGlobal(length);
Marshal.StructureToPtr(passThrough, buffer, false);
bool validTransfer = PInvoke.DeviceIoControl(hDevice, PInvoke.IOCTL_SCSI_MINIPORT, (void*)buffer, (uint)length, (void*)buffer, (uint)length, null, null);
if (validTransfer)
{
IntPtr offset = Marshal.OffsetOf<AtaSmart.NVME_PASS_THROUGH_IOCTL>(nameof(AtaSmart.NVME_PASS_THROUGH_IOCTL.DataBuffer));
var newPtr = IntPtr.Add(buffer, offset.ToInt32());
data = *(NVME_IDENTIFY_CONTROLLER_DATA*)newPtr;
Marshal.FreeHGlobal(buffer);
result = true;
}
else
{
Marshal.FreeHGlobal(buffer);
}
return result;
}
public unsafe bool HealthInfoLog(SafeHandle hDevice, out NVME_HEALTH_INFO_LOG data)
{
data = new NVME_HEALTH_INFO_LOG();
if (hDevice?.IsInvalid != false)
return false;
bool result = false;
AtaSmart.NVME_PASS_THROUGH_IOCTL passThrough = new();
passThrough.SrbIoCtrl.HeaderLength = (uint)sizeof(SRB_IO_CONTROL);
ReadOnlySpan<byte> signature = "NvmeMini"u8;
for (int i = 0; i < signature.Length; i++)
passThrough.SrbIoCtrl.Signature[i] = signature[i];
passThrough.SrbIoCtrl.Timeout = 10;
passThrough.SrbIoCtrl.ControlCode = AtaSmart.NVME_PASS_THROUGH_SRB_IO_CODE;
passThrough.SrbIoCtrl.ReturnCode = 0;
passThrough.SrbIoCtrl.Length = (uint)sizeof(AtaSmart.NVME_PASS_THROUGH_IOCTL) - (uint)sizeof(SRB_IO_CONTROL);
passThrough.NVMeCmd[0] = (uint)STORAGE_PROTOCOL_NVME_DATA_TYPE.NVMeDataTypeLogPage; // GetLogPage
passThrough.NVMeCmd[1] = 0xFFFFFFFF; // address
passThrough.NVMeCmd[10] = 0x007f0002; // uint cdw10 = 0x000000002 | (((size / 4) - 1) << 16);
passThrough.Direction = AtaSmart.NVME_DATA_IN;
passThrough.QueueId = 0;
passThrough.DataBufferLen = AtaSmart.IOCTL_BUFFER_SIZE;
passThrough.MetaDataLen = 0;
passThrough.ReturnBufferLen = (uint)sizeof(AtaSmart.NVME_PASS_THROUGH_IOCTL);
int length = sizeof(AtaSmart.NVME_PASS_THROUGH_IOCTL);
IntPtr buffer = Marshal.AllocHGlobal(length);
Marshal.StructureToPtr(passThrough, buffer, false);
bool validTransfer = PInvoke.DeviceIoControl(hDevice, PInvoke.IOCTL_SCSI_MINIPORT, (void*)buffer, (uint)length, (void*)buffer, (uint)length, null, null);
if (validTransfer)
{
IntPtr offset = Marshal.OffsetOf<AtaSmart.NVME_PASS_THROUGH_IOCTL>(nameof(AtaSmart.NVME_PASS_THROUGH_IOCTL.DataBuffer));
var newPtr = IntPtr.Add(buffer, offset.ToInt32());
data = *(NVME_HEALTH_INFO_LOG*)newPtr;
Marshal.FreeHGlobal(buffer);
result = true;
}
else
{
Marshal.FreeHGlobal(buffer);
}
return result;
}
public static unsafe SafeHandle IdentifyDevice(StorageInfo storageInfo)
{
SafeFileHandle handle = PInvoke.CreateFile(storageInfo.Scsi,
(uint)FileAccess.ReadWrite,
FILE_SHARE_MODE.FILE_SHARE_READ | FILE_SHARE_MODE.FILE_SHARE_WRITE,
null,
FILE_CREATION_DISPOSITION.OPEN_EXISTING,
FILE_FLAGS_AND_ATTRIBUTES.FILE_ATTRIBUTE_NORMAL,
null);
if (handle?.IsInvalid != false)
return null;
AtaSmart.NVME_PASS_THROUGH_IOCTL passThrough = new();
passThrough.SrbIoCtrl.HeaderLength = (uint)sizeof(SRB_IO_CONTROL);
ReadOnlySpan<byte> signature = "NvmeMini"u8;
for (int i = 0; i < signature.Length; i++)
passThrough.SrbIoCtrl.Signature[i] = signature[i];
passThrough.SrbIoCtrl.Timeout = 10;
passThrough.SrbIoCtrl.ControlCode = AtaSmart.NVME_PASS_THROUGH_SRB_IO_CODE;
passThrough.SrbIoCtrl.ReturnCode = 0;
passThrough.SrbIoCtrl.Length = (uint)sizeof(AtaSmart.NVME_PASS_THROUGH_IOCTL) - (uint)sizeof(SRB_IO_CONTROL);
passThrough.NVMeCmd[0] = 6; //identify
passThrough.NVMeCmd[10] = 1; //return to host
passThrough.Direction = AtaSmart.NVME_DATA_IN;
passThrough.QueueId = 0;
passThrough.DataBufferLen = AtaSmart.IOCTL_BUFFER_SIZE;
passThrough.MetaDataLen = 0;
passThrough.ReturnBufferLen = (uint)sizeof(AtaSmart.NVME_PASS_THROUGH_IOCTL);
int length = sizeof(AtaSmart.NVME_PASS_THROUGH_IOCTL);
IntPtr buffer = Marshal.AllocHGlobal(length);
Marshal.StructureToPtr(passThrough, buffer, false);
bool validTransfer = PInvoke.DeviceIoControl(handle, PInvoke.IOCTL_SCSI_MINIPORT, (void*)buffer, (uint)length, (void*)buffer, (uint)length, null, null);
Marshal.FreeHGlobal(buffer);
if (validTransfer)
{ }
else
{
handle.Close();
handle = null;
}
return handle;
}
}