171 lines
7.0 KiB
C#
171 lines
7.0 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 HidSharp;
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namespace LibreHardwareMonitor.Hardware.Controller.AquaComputer;
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internal sealed class Quadro : Hardware
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{
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private readonly byte[] _rawData = new byte[210];
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private readonly HidStream _stream;
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private readonly Sensor[] _rpmSensors = new Sensor[4];
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private readonly Sensor[] _temperatures = new Sensor[4];
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private readonly Sensor[] _voltages = new Sensor[5];
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private readonly Sensor[] _currents = new Sensor[4];
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private readonly Sensor[] _powers = new Sensor[4];
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private readonly Sensor[] _flows = new Sensor[1];
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public Quadro(HidDevice dev, ISettings settings) : base("Quadro", new Identifier(dev), settings)
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{
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if (dev.TryOpen(out _stream))
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{
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//Reading output report instead of feature report, as the measurements are in the output report
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_stream.Read(_rawData);
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Name = "QUADRO";
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FirmwareVersion = GetConvertedValue(QuadroDataIndexes.FIRMWARE_VERSION).GetValueOrDefault(0);
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// Initialize the 4 temperature sensors
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for (int i = 0; i < 4; i++)
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{
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_temperatures[i] = new Sensor($"Temperature {i + 1}", i, SensorType.Temperature, this, Array.Empty<ParameterDescription>(), settings);
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ActivateSensor(_temperatures[i]);
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}
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// Initialize the input voltage sensor
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_voltages[0] = new Sensor("Input", 0, SensorType.Voltage, this, Array.Empty<ParameterDescription>(), settings);
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ActivateSensor(_voltages[0]);
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// Initialize the flow sensor
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_flows[0] = new Sensor("Flow", 0, SensorType.Flow, this, Array.Empty<ParameterDescription>(), settings);
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ActivateSensor(_flows[0]);
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// Initialize the 4 fan voltage sensors
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for (int i = 1; i < 5; i++)
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{
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_voltages[i] = new Sensor($"Fan {i}", i, SensorType.Voltage, this, Array.Empty<ParameterDescription>(), settings);
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ActivateSensor(_voltages[i]);
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}
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// Initialize the 4 fan current sensors
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for (int i = 0; i < 4; i++)
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{
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_currents[i] = new Sensor($"Fan {i + 1}", i, SensorType.Current, this, Array.Empty<ParameterDescription>(), settings);
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ActivateSensor(_currents[i]);
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}
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// Initialize the 4 fan power sensors
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for (int i = 0; i < 4; i++)
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{
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_powers[i] = new Sensor($"Fan {i + 1}", i, SensorType.Power, this, Array.Empty<ParameterDescription>(), settings);
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ActivateSensor(_powers[i]);
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}
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// Initialize the 4 fan speed sensors
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for (int i = 0; i < 4; i++)
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{
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_rpmSensors[i] = new Sensor($"Fan {i + 1}", i, SensorType.Fan, this, Array.Empty<ParameterDescription>(), settings);
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ActivateSensor(_rpmSensors[i]);
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}
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}
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}
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public ushort FirmwareVersion { get; }
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public override HardwareType HardwareType
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{
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get { return HardwareType.Cooler; }
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}
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public override void Close()
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{
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_stream.Close();
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base.Close();
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}
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public override void Update()
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{
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//Reading output report instead of feature report, as the measurements are in the output report
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_stream.Read(_rawData);
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_temperatures[0].Value = GetConvertedValue(QuadroDataIndexes.TEMP_1) / 100f; // Temp 1
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_temperatures[1].Value = GetConvertedValue(QuadroDataIndexes.TEMP_2) / 100f; // Temp 2
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_temperatures[2].Value = GetConvertedValue(QuadroDataIndexes.TEMP_3) / 100f; // Temp 3
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_temperatures[3].Value = GetConvertedValue(QuadroDataIndexes.TEMP_4) / 100f; // Temp 4
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_voltages[0].Value = GetConvertedValue(QuadroDataIndexes.VOLTAGE) / 100f; // Input voltage
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_flows[0].Value = GetConvertedValue(QuadroDataIndexes.FLOW) / 10f; // Flow
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_voltages[1].Value = GetConvertedValue(QuadroDataIndexes.FAN_VOLTAGE_1) / 100f; // Fan 1 voltage
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_voltages[2].Value = GetConvertedValue(QuadroDataIndexes.FAN_VOLTAGE_2) / 100f; // Fan 2 voltage
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_voltages[3].Value = GetConvertedValue(QuadroDataIndexes.FAN_VOLTAGE_3) / 100f; // Fan 3 voltage
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_voltages[4].Value = GetConvertedValue(QuadroDataIndexes.FAN_VOLTAGE_4) / 100f; // Fan 4 voltage
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_currents[0].Value = GetConvertedValue(QuadroDataIndexes.FAN_CURRENT_1) / 1000f; // Fan 1 current
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_currents[1].Value = GetConvertedValue(QuadroDataIndexes.FAN_CURRENT_2) / 1000f; // Fan 2 current
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_currents[2].Value = GetConvertedValue(QuadroDataIndexes.FAN_CURRENT_3) / 1000f; // Fan 3 current
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_currents[3].Value = GetConvertedValue(QuadroDataIndexes.FAN_CURRENT_4) / 1000f; // Fan 4 current
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_powers[0].Value = GetConvertedValue(QuadroDataIndexes.FAN_POWER_1) / 100f; // Fan 1 power
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_powers[1].Value = GetConvertedValue(QuadroDataIndexes.FAN_POWER_2) / 100f; // Fan 2 power
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_powers[2].Value = GetConvertedValue(QuadroDataIndexes.FAN_POWER_3) / 100f; // Fan 3 power
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_powers[3].Value = GetConvertedValue(QuadroDataIndexes.FAN_POWER_4) / 100f; // Fan 4 power
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_rpmSensors[0].Value = GetConvertedValue(QuadroDataIndexes.FAN_SPEED_1); // Fan 1 speed
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_rpmSensors[1].Value = GetConvertedValue(QuadroDataIndexes.FAN_SPEED_2); // Fan 2 speed
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_rpmSensors[2].Value = GetConvertedValue(QuadroDataIndexes.FAN_SPEED_3); // Fan 3 speed
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_rpmSensors[3].Value = GetConvertedValue(QuadroDataIndexes.FAN_SPEED_4); // Fan 4 speed
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}
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private sealed class QuadroDataIndexes
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{
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public const int FIRMWARE_VERSION = 13;
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public const int TEMP_1 = 52;
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public const int TEMP_2 = 54;
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public const int TEMP_3 = 56;
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public const int TEMP_4 = 58;
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public const int VOLTAGE = 108;
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public const int FLOW = 110;
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public const int FAN_VOLTAGE_1 = 114;
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public const int FAN_VOLTAGE_2 = 127;
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public const int FAN_VOLTAGE_3 = 140;
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public const int FAN_VOLTAGE_4 = 153;
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public const int FAN_CURRENT_1 = 116;
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public const int FAN_CURRENT_2 = 129;
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public const int FAN_CURRENT_3 = 142;
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public const int FAN_CURRENT_4 = 155;
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public const int FAN_POWER_1 = 118;
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public const int FAN_POWER_2 = 131;
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public const int FAN_POWER_3 = 144;
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public const int FAN_POWER_4 = 157;
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public const int FAN_SPEED_1 = 120;
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public const int FAN_SPEED_2 = 133;
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public const int FAN_SPEED_3 = 146;
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public const int FAN_SPEED_4 = 159;
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}
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private ushort? GetConvertedValue(int index)
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{
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if (_rawData[index] == sbyte.MaxValue)
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return null;
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return Convert.ToUInt16(_rawData[index + 1] | (_rawData[index] << 8));
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}
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}
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