Files
ReLibreHardwareMonitor/LibreHardwareMonitorLib/Hardware/Storage/StorageDevice.cs
T
Blacktempel 9fce235e15 Update for DIT 2.0.1. (#2304)
Move force wakeup to proper place.
Check power state of disk and update depending on that.
2026-04-14 16:23:46 +02:00

461 lines
16 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.
// Partial Copyright (C) Michael Möller <mmoeller@openhardwaremonitor.org> and Contributors.
// All Rights Reserved.
using System;
using System.Collections.Generic;
using System.Diagnostics;
using System.Globalization;
using System.IO;
using System.Linq;
using System.Text;
using BlackSharp.Core.Converters;
using BlackSharp.Core.Converters.Enums;
using DiskInfoToolkit.Smart;
using Windows.Win32;
using Windows.Win32.Foundation;
using Windows.Win32.Storage.FileSystem;
using Windows.Win32.System.Ioctl;
using StorageDeviceDIT = DiskInfoToolkit.StorageDevice;
using StorageDIT = DiskInfoToolkit.Storage;
namespace LibreHardwareMonitor.Hardware.Storage;
public sealed class StorageDevice : Hardware, ISmart
{
private readonly PerformanceValue _perfRead = new();
private readonly PerformanceValue _perfTotal = new();
private readonly PerformanceValue _perfWrite = new();
private readonly StorageDeviceDIT _storage;
private bool _initialized;
private long _lastReadCount;
private long _lastTime;
private long _lastWriteCount;
private DateTime _lastUpdate = DateTime.MinValue;
private readonly List<StorageDeviceSensor> _sensors = new();
private readonly List<SmartAttribute> _attributes = new();
private Sensor _sensorDiskReadActivity;
private Sensor _sensorDiskReadRate;
private Sensor _sensorDiskTotalActivity;
private Sensor _sensorDiskWriteActivity;
private Sensor _sensorDiskWriteRate;
private Sensor _usageSensor;
private Sensor _freeSpaceSensor;
public StorageDevice(StorageDeviceDIT storage, string id, ISettings settings)
: base(storage.ProductName, new Identifier(id, storage.StorageDeviceNumber.GetValueOrDefault().ToString(CultureInfo.InvariantCulture)), settings)
{
_storage = storage;
CreateAttributes();
CreateSensors();
}
public override HardwareType HardwareType => HardwareType.Storage;
public StorageDeviceDIT Storage => _storage;
public IReadOnlyList<SmartAttribute> Attributes => _attributes;
/// <summary>
/// Forces disk to wake up, if disk is asleep.
/// </summary>
/// <remarks>See <see cref="StorageDIT.TryWakeUp"/> for more information.</remarks>
public bool ForceWakeup { get; set; }
public static TimeSpan ThrottleInterval { get; set; }
public override void Update()
{
if (DateTime.UtcNow - _lastUpdate < ThrottleInterval)
{
return;
}
bool isDevicePoweredOn = _storage.IsDevicePowerOn.GetValueOrDefault(true);
// Try waking up storage device if it is asleep and ForceWakeup is enabled
if (ForceWakeup && !isDevicePoweredOn)
{
StorageDIT.TryWakeUp(_storage);
isDevicePoweredOn = _storage.IsDevicePowerOn.GetValueOrDefault(true);
}
bool hasChanges = false;
//No updates for sleeping devices if we should not wake it up
if (isDevicePoweredOn)
{
hasChanges = StorageDIT.Refresh(_storage);
}
if (!hasChanges)
{
if (!_initialized)
{
_initialized = true;
}
else
{
// If storage device has no changes, still update performance sensors to avoid stale throughput data
UpdatePerformanceSensors();
_lastUpdate = DateTime.UtcNow;
return;
}
}
_lastUpdate = DateTime.UtcNow;
ToggleSpaceSensors();
UpdatePerformanceSensors();
UpdateSpaceSensors();
// Update attributes
foreach (var attribute in _storage.SmartAttributes)
{
// Try to find attribute
var found = _attributes.Find(sa => sa.Id == attribute.ID);
// Found attribute, update it
if (found != null)
{
found.Attribute = attribute;
}
}
// Update general sensors
_sensors.ForEach(s => s.Update(_storage));
}
public override string GetReport()
{
var r = new StringBuilder();
r.AppendLine("Storage");
r.AppendLine();
r.AppendLine($"Drive Name: {_storage.ProductName}");
if (_storage.HealthStatus.HasValue)
{
r.AppendLine($"Health Status: {_storage.HealthStatus}");
}
if (_storage.HealthStatusReason != null)
{
r.AppendLine($"Health Status Reason:");
r.AppendLine(_storage.HealthStatusReason);
}
r.AppendLine($"Revision: {_storage.ProductRevision}");
r.AppendLine($"Bus type: {_storage.BusType}");
r.AppendLine($"Controller information:");
r.AppendLine($" Service: {_storage.Controller.Service}"); // Important
r.AppendLine($" Vendor: 0x{_storage.Controller.VendorID:X4} ('{_storage.Controller.VendorName}')");
r.AppendLine($" Device: 0x{_storage.Controller.DeviceID:X4} ('{_storage.Controller.DeviceName}')");
r.AppendLine($" Family: {_storage.Controller.Family}");
r.AppendLine($"Smart Attributes (Profile: '{_storage.SmartAttributeProfile}'):");
r.AppendLine(" ID, Description, Value, Threshold");
foreach (var attribute in _attributes)
{
r.AppendLine($" {attribute.Id,3}, {attribute.Name,60}, {attribute.Value,18}, {attribute.Threshold,3}");
}
r.AppendLine();
if (!_storage.IsDynamicDisk)
{
r.AppendLine("Partitions:");
foreach (var partition in _storage.Partitions)
{
r.AppendLine($" Partition #{partition.PartitionNumber}");
if (partition.DriveLetter != null)
{
r.AppendLine($" Drive Letter: {partition.DriveLetter}");
}
if (partition.AvailableFreeSpaceBytes != null)
{
r.AppendLine($" Available Free Space: {partition.AvailableFreeSpaceBytes}");
}
r.AppendLine($" Contains other OS: {partition.IsOtherOperatingSystemPartition}");
}
r.AppendLine();
if (_storage.TotalPartitionFreeSpaceBytes != null)
{
r.AppendLine($"Total Free Size: {_storage.TotalPartitionFreeSpaceBytes}");
}
}
r.AppendLine($"Total Size: {_storage.DiskSizeBytes}");
return r.ToString();
}
public override void Traverse(IVisitor visitor)
{
foreach (ISensor sensor in Sensors)
sensor.Accept(visitor);
}
private void CreateAttributes()
{
_attributes.Clear();
var attributes = _storage.SmartAttributes.Select(a => new SmartAttribute(a, null, 0, null));
_attributes.AddRange(attributes.Where(a => a != null));
}
private void CreateSensors()
{
if (_storage.Temperature.HasValue)
{
AddSensor("Temperature", 0, false, SensorType.Temperature, s => s.Temperature.GetValueOrDefault());
}
// NVMe specific temperature sensors, if available
TryAddTemperatureSensor(_storage, 1, false, 1, SmartTextKeys.TemperatureSensor1);
TryAddTemperatureSensor(_storage, 2, false, 2, SmartTextKeys.TemperatureSensor2);
TryAddTemperatureSensor(_storage, 3, false, 3, SmartTextKeys.TemperatureSensor3);
TryAddTemperatureSensor(_storage, 4, false, 4, SmartTextKeys.TemperatureSensor4);
TryAddTemperatureSensor(_storage, 5, false, 5, SmartTextKeys.TemperatureSensor5);
TryAddTemperatureSensor(_storage, 6, false, 6, SmartTextKeys.TemperatureSensor6);
TryAddTemperatureSensor(_storage, 7, false, 7, SmartTextKeys.TemperatureSensor7);
TryAddTemperatureSensor(_storage, 8, false, 8, SmartTextKeys.TemperatureSensor8);
if (_storage.TemperatureWarning.HasValue)
{
AddSensor("Warning Temperature", 10, false, SensorType.Temperature, s => s.TemperatureWarning.GetValueOrDefault());
}
if (_storage.TemperatureCritical.HasValue)
{
AddSensor("Critical Temperature", 11, false, SensorType.Temperature, s => s.TemperatureCritical.GetValueOrDefault());
}
if (_storage.Health.HasValue)
{
AddSensor("Life", 20, false, SensorType.Level, s => s.Health.GetValueOrDefault());
}
if (_storage.HostReads.HasValue)
{
AddSensor("Data Read", 21, false, SensorType.Data, s => s.HostReads.GetValueOrDefault());
}
if (_storage.HostWrites.HasValue)
{
AddSensor("Data Written", 22, false, SensorType.Data, s => s.HostWrites.GetValueOrDefault());
}
if (_storage.PowerOnCount.HasValue)
{
AddSensor("Power On Count", 23, false, SensorType.Factor, s => s.PowerOnCount.GetValueOrDefault());
}
if (_storage.PowerOnHours.HasValue)
{
AddSensor("Power On Hours", 24, false, SensorType.Factor, s => s.PowerOnHours.GetValueOrDefault());
}
_usageSensor = new Sensor("Used Space", 30, SensorType.Load, this, _settings);
_freeSpaceSensor = new Sensor("Free Space", 31, SensorType.Data, this, _settings);
ToggleSpaceSensors();
var totalSpaceSensor = new Sensor("Total Space", 32, SensorType.Data, this, _settings)
{
Value = (float)DataUnitConverter.ToGigaByte(_storage.DiskSizeBytes.GetValueOrDefault(), DataUnit.Byte)
};
ActivateSensor(totalSpaceSensor);
_sensorDiskReadActivity = new Sensor("Read Activity", 51, SensorType.Load, this, _settings);
ActivateSensor(_sensorDiskReadActivity);
_sensorDiskWriteActivity = new Sensor("Write Activity", 52, SensorType.Load, this, _settings);
ActivateSensor(_sensorDiskWriteActivity);
_sensorDiskTotalActivity = new Sensor("Total Activity", 53, SensorType.Load, this, _settings);
ActivateSensor(_sensorDiskTotalActivity);
_sensorDiskReadRate = new Sensor("Read Rate", 54, SensorType.Throughput, this, _settings);
ActivateSensor(_sensorDiskReadRate);
_sensorDiskWriteRate = new Sensor("Write Rate", 55, SensorType.Throughput, this, _settings);
ActivateSensor(_sensorDiskWriteRate);
AddSmartAttributeSensors();
}
private void TryAddTemperatureSensor(StorageDeviceDIT storage, int index, bool defaultHidden, int thermalSensorIndex, string smartTextKey)
{
var attr = storage.SmartAttributes.FirstOrDefault(a => a.TextKey == smartTextKey);
if (attr != null && attr.RawValue > 0)
{
AddSensor($"Temperature #{thermalSensorIndex}", index, defaultHidden, SensorType.Temperature, s =>
{
var a = s.SmartAttributes.FirstOrDefault(a => a.TextKey == smartTextKey);
if (a != null)
{
return TemperatureConverter.KelvinToCelsius(a.RawValue);
}
return 0;
});
}
}
private void AddSensor(string name, int index, bool defaultHidden, SensorType sensorType, GetStorageDeviceSensorValue getValue)
{
var sensor = new StorageDeviceSensor(name, index, defaultHidden, sensorType, this, _settings, getValue)
{
Value = 0
};
ActivateSensor(sensor);
_sensors.Add(sensor);
}
private unsafe void UpdatePerformanceSensors()
{
DISK_PERFORMANCE diskPerformance = new();
using var handle = PInvoke.CreateFile(_storage.DevicePath,
(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);
uint bytesReturned;
if (!PInvoke.DeviceIoControl((HANDLE)handle.DangerousGetHandle(), PInvoke.IOCTL_DISK_PERFORMANCE, null, 0, &diskPerformance, (uint)sizeof(DISK_PERFORMANCE), &bytesReturned, null))
{
return;
}
_perfRead.Update(diskPerformance.ReadTime, diskPerformance.QueryTime);
_sensorDiskReadActivity.Value = (float)_perfRead.Result;
_perfWrite.Update(diskPerformance.WriteTime, diskPerformance.QueryTime);
_sensorDiskWriteActivity.Value = (float)_perfWrite.Result;
_perfTotal.Update(diskPerformance.IdleTime, diskPerformance.QueryTime);
_sensorDiskTotalActivity.Value = (float)(100 - _perfTotal.Result);
long readCount = diskPerformance.BytesRead;
long readDiff = readCount - _lastReadCount;
_lastReadCount = readCount;
long writeCount = diskPerformance.BytesWritten;
long writeDiff = writeCount - _lastWriteCount;
_lastWriteCount = writeCount;
long currentTime = Stopwatch.GetTimestamp();
if (_lastTime != 0)
{
double timeDeltaSeconds = (double)(currentTime - _lastTime) / Stopwatch.Frequency;
if (timeDeltaSeconds > 0)
{
double writeSpeed = writeDiff / timeDeltaSeconds;
_sensorDiskWriteRate.Value = (float)writeSpeed;
double readSpeed = readDiff / timeDeltaSeconds;
_sensorDiskReadRate.Value = (float)readSpeed;
}
}
_lastTime = currentTime;
}
private void ToggleSpaceSensors()
{
if (!_storage.IsDynamicDisk && !_storage.Partitions.Any(p => p.IsOtherOperatingSystemPartition))
{
ActivateSensor(_usageSensor);
ActivateSensor(_freeSpaceSensor);
}
else
{
DeactivateSensor(_usageSensor);
DeactivateSensor(_freeSpaceSensor);
}
}
private void UpdateSpaceSensors()
{
if (_storage.DiskSizeBytes > 0)
{
// Set sensor value
_usageSensor.Value = 100.0f - (100.0f * _storage.TotalPartitionFreeSpaceBytes / _storage.DiskSizeBytes);
_freeSpaceSensor.Value = (float)DataUnitConverter.ToGigaByte(_storage.TotalPartitionFreeSpaceBytes.GetValueOrDefault(), DataUnit.Byte);
}
else
{
_usageSensor.Value = null;
_freeSpaceSensor.Value = null;
}
}
private void AddSmartAttributeSensors()
{
// Unique attributes by sensor- type and channel
var attributes = Attributes.Where(sa => sa.SensorType.HasValue)
.GroupBy(sa => new { sa.SensorType.Value, sa.SensorChannel })
.Select(sa => sa.First());
foreach (var attr in attributes)
{
AddSensor(attr.SensorName,
attr.SensorChannel,
attr.IsHiddenByDefault,
attr.SensorType.Value,
s => attr.Value);
}
}
/// <summary>
/// Helper to calculate the disk performance with base timestamps
/// https://docs.microsoft.com/en-us/windows/win32/cimwin32prov/win32-perfrawdata
/// </summary>
private class PerformanceValue
{
public double Result { get; private set; }
private long Time { get; set; }
private long Value { get; set; }
public void Update(long val, long valBase)
{
long diffValue = val - Value;
long diffTime = valBase - Time;
Value = val;
Time = valBase;
Result = 100.0 / diffTime * diffValue;
// sometimes it is possible that diff_value > diff_timebase
// limit result to 100%, this is because timing issues during read from pcie controller an latency between IO operation
if (Result > 100)
Result = 100;
}
}
}