297 lines
10 KiB
C#
297 lines
10 KiB
C#
// This Source Code Form is subject to the terms of the Mozilla Public License, v. 2.0.
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// If a copy of the MPL was not distributed with this file, You can obtain one at http://mozilla.org/MPL/2.0/.
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// Copyright (C) LibreHardwareMonitor and Contributors.
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// All Rights Reserved.
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using System;
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using System.Collections.Generic;
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using System.Globalization;
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using System.IO;
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using System.Linq;
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using System.Management;
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using System.Text;
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using LibreHardwareMonitor.Interop;
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namespace LibreHardwareMonitor.Hardware.Storage;
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public abstract class AbstractStorage : Hardware
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{
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private readonly PerformanceValue _perfTotal = new();
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private readonly PerformanceValue _perfWrite = new();
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private readonly StorageInfo _storageInfo;
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private readonly TimeSpan _updateInterval = TimeSpan.FromSeconds(60);
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private ulong _lastReadRateCounter;
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private double _lastTime;
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private DateTime _lastUpdate = DateTime.MinValue;
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private ulong _lastWriteRateCounter;
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private Sensor _sensorDiskReadRate;
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private Sensor _sensorDiskTotalActivity;
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private Sensor _sensorDiskWriteActivity;
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private Sensor _sensorDiskWriteRate;
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private Sensor _usageSensor;
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private int _wmiFailureCount;
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internal AbstractStorage(StorageInfo storageInfo, string name, string firmwareRevision, string id, int index, ISettings settings)
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: base(name, new Identifier(id, index.ToString(CultureInfo.InvariantCulture)), settings)
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{
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_storageInfo = storageInfo;
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FirmwareRevision = firmwareRevision;
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Index = index;
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string[] logicalDrives = WindowsStorage.GetLogicalDrives(index);
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var driveInfoList = new List<DriveInfo>(logicalDrives.Length);
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foreach (string logicalDrive in logicalDrives)
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{
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try
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{
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var di = new DriveInfo(logicalDrive);
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if (di.TotalSize > 0)
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driveInfoList.Add(new DriveInfo(logicalDrive));
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}
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catch (ArgumentException)
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{ }
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catch (IOException)
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{ }
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catch (UnauthorizedAccessException)
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{ }
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}
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DriveInfos = driveInfoList.ToArray();
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}
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public DriveInfo[] DriveInfos { get; }
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public string FirmwareRevision { get; }
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public override HardwareType HardwareType => HardwareType.Storage;
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public int Index { get; }
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public static AbstractStorage CreateInstance(string deviceId, uint driveNumber, ulong diskSize, int scsiPort, ISettings settings)
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{
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StorageInfo info = WindowsStorage.GetStorageInfo(deviceId, driveNumber);
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if (info == null)
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return null;
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info.DiskSize = diskSize;
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info.DeviceId = deviceId;
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info.Scsi = $@"\\.\SCSI{scsiPort}:";
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if (info.Removable || info.BusType is Kernel32.STORAGE_BUS_TYPE.BusTypeVirtual or Kernel32.STORAGE_BUS_TYPE.BusTypeFileBackedVirtual)
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return null;
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//fallback, when it is not possible to read out with the nvme implementation,
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//try it with the sata smart implementation
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if (info.BusType == Kernel32.STORAGE_BUS_TYPE.BusTypeNvme)
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{
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AbstractStorage x = NVMeGeneric.CreateInstance(info, settings);
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if (x != null)
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return x;
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}
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return info.BusType is Kernel32.STORAGE_BUS_TYPE.BusTypeAta or Kernel32.STORAGE_BUS_TYPE.BusTypeSata or Kernel32.STORAGE_BUS_TYPE.BusTypeNvme
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? AtaStorage.CreateInstance(info, settings)
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: StorageGeneric.CreateInstance(info, settings);
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}
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protected virtual void CreateSensors()
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{
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if (DriveInfos.Length > 0)
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{
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_usageSensor = new Sensor("Used Space", 0, SensorType.Load, this, _settings);
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ActivateSensor(_usageSensor);
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}
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_sensorDiskWriteActivity = new Sensor("Write Activity", 32, SensorType.Load, this, _settings);
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ActivateSensor(_sensorDiskWriteActivity);
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_sensorDiskTotalActivity = new Sensor("Total Activity", 33, SensorType.Load, this, _settings);
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ActivateSensor(_sensorDiskTotalActivity);
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_sensorDiskReadRate = new Sensor("Read Rate", 34, SensorType.Throughput, this, _settings);
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ActivateSensor(_sensorDiskReadRate);
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_sensorDiskWriteRate = new Sensor("Write Rate", 35, SensorType.Throughput, this, _settings);
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ActivateSensor(_sensorDiskWriteRate);
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}
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protected abstract void UpdateSensors();
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private void UpdateStatisticsFromWmi(int driveIndex)
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{
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string query = $"SELECT * FROM Win32_PerfRawData_PerfDisk_PhysicalDisk Where Name LIKE \"{driveIndex}%\"";
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using var perfData = new ManagementObjectSearcher(query) { Options = { Timeout = TimeSpan.FromSeconds(7.5) } };
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using ManagementObjectCollection collection = perfData.Get();
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using ManagementObject data = collection.OfType<ManagementObject>().FirstOrDefault();
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if (data == null)
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return;
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ulong value = (ulong)data.Properties["PercentDiskWriteTime"].Value;
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ulong valueBase = (ulong)data.Properties["PercentDiskWriteTime_Base"].Value;
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_perfWrite.Update(value, valueBase);
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_sensorDiskWriteActivity.Value = (float)_perfWrite.Result;
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value = (ulong)data.Properties["PercentIdleTime"].Value;
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valueBase = (ulong)data.Properties["PercentIdleTime_Base"].Value;
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_perfTotal.Update(value, valueBase);
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_sensorDiskTotalActivity.Value = (float)(100.0 - _perfTotal.Result);
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ulong readRateCounter = (ulong)data.Properties["DiskReadBytesPerSec"].Value;
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ulong readRate = readRateCounter - _lastReadRateCounter;
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_lastReadRateCounter = readRateCounter;
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ulong writeRateCounter = (ulong)data.Properties["DiskWriteBytesPerSec"].Value;
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ulong writeRate = writeRateCounter - _lastWriteRateCounter;
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_lastWriteRateCounter = writeRateCounter;
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ulong timestampPerfTime = (ulong)data.Properties["Timestamp_PerfTime"].Value;
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ulong frequencyPerfTime = (ulong)data.Properties["Frequency_Perftime"].Value;
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double currentTime = (double)timestampPerfTime / frequencyPerfTime;
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double timeDeltaSeconds = currentTime - _lastTime;
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if (_lastTime == 0 || timeDeltaSeconds > 0.2)
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{
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double writeSpeed = writeRate * (1 / timeDeltaSeconds);
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_sensorDiskWriteRate.Value = (float)writeSpeed;
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double readSpeed = readRate * (1 / timeDeltaSeconds);
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_sensorDiskReadRate.Value = (float)readSpeed;
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}
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if (_lastTime == 0 || timeDeltaSeconds > 0.2)
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_lastTime = currentTime;
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}
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public override void Update()
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{
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const int wmiRetries = 10;
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//update statistics from WMI on every update
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if (_storageInfo != null && _wmiFailureCount <= wmiRetries)
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{
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try
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{
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UpdateStatisticsFromWmi(_storageInfo.Index);
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_wmiFailureCount = 0;
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}
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catch
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{
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if (++_wmiFailureCount == wmiRetries)
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{
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DeactivateSensor(_sensorDiskTotalActivity);
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DeactivateSensor(_sensorDiskWriteActivity);
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DeactivateSensor(_sensorDiskReadRate);
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DeactivateSensor(_sensorDiskWriteRate);
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}
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}
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}
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//read out with updateInterval
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TimeSpan tDiff = DateTime.UtcNow - _lastUpdate;
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if (tDiff > _updateInterval)
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{
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_lastUpdate = DateTime.UtcNow;
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UpdateSensors();
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if (_usageSensor != null)
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{
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long totalSize = 0;
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long totalFreeSpace = 0;
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for (int i = 0; i < DriveInfos.Length; i++)
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{
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if (!DriveInfos[i].IsReady)
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continue;
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try
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{
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totalSize += DriveInfos[i].TotalSize;
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totalFreeSpace += DriveInfos[i].TotalFreeSpace;
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}
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catch (IOException)
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{ }
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catch (UnauthorizedAccessException)
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{ }
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}
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if (totalSize > 0)
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_usageSensor.Value = 100.0f - ((100.0f * totalFreeSpace) / totalSize);
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else
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_usageSensor.Value = null;
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}
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}
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}
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protected abstract void GetReport(StringBuilder r);
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public override string GetReport()
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{
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var r = new StringBuilder();
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r.AppendLine("Storage");
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r.AppendLine();
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r.AppendLine("Drive Name: " + _name);
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r.AppendLine("Firmware Version: " + FirmwareRevision);
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r.AppendLine();
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GetReport(r);
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foreach (DriveInfo di in DriveInfos)
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{
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if (!di.IsReady)
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continue;
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try
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{
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r.AppendLine("Logical Drive Name: " + di.Name);
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r.AppendLine("Format: " + di.DriveFormat);
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r.AppendLine("Total Size: " + di.TotalSize);
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r.AppendLine("Total Free Space: " + di.TotalFreeSpace);
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r.AppendLine();
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}
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catch (IOException)
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{ }
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catch (UnauthorizedAccessException)
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{ }
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}
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return r.ToString();
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}
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public override void Traverse(IVisitor visitor)
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{
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foreach (ISensor sensor in Sensors)
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sensor.Accept(visitor);
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}
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/// <summary>
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/// Helper to calculate the disk performance with base timestamps
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/// https://docs.microsoft.com/en-us/windows/win32/cimwin32prov/win32-perfrawdata
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/// </summary>
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private class PerformanceValue
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{
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public double Result { get; private set; }
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private ulong Time { get; set; }
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private ulong Value { get; set; }
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public void Update(ulong val, ulong valBase)
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{
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ulong diffValue = val - Value;
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ulong diffTime = valBase - Time;
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Value = val;
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Time = valBase;
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Result = 100.0 / diffTime * diffValue;
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//sometimes it is possible that diff_value > diff_timebase
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//limit result to 100%, this is because timing issues during read from pcie controller an latency between IO operation
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if (Result > 100)
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Result = 100;
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}
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}
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} |