Files
ReLibreHardwareMonitor/LibreHardwareMonitorLib/Hardware/Motherboard/SuperIOHardware.cs
T

2798 lines
133 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.Threading;
using LibreHardwareMonitor.Hardware.Motherboard.Lpc;
namespace LibreHardwareMonitor.Hardware.Motherboard
{
internal sealed class SuperIOHardware : Hardware
{
private readonly List<Sensor> _controls = new List<Sensor>();
private readonly List<Sensor> _fans = new List<Sensor>();
private readonly Motherboard _motherboard;
private readonly UpdateDelegate _postUpdate;
private readonly ReadValueDelegate _readControl;
private readonly ReadValueDelegate _readFan;
private readonly ReadValueDelegate _readTemperature;
private readonly ReadValueDelegate _readVoltage;
private readonly ISuperIO _superIO;
private readonly List<Sensor> _temperatures = new List<Sensor>();
private readonly List<Sensor> _voltages = new List<Sensor>();
public SuperIOHardware(Motherboard motherboard, ISuperIO superIO, Manufacturer manufacturer, Model model, ISettings settings)
: base(ChipName.GetName(superIO.Chip), new Identifier("lpc", superIO.Chip.ToString().ToLowerInvariant()), settings)
{
_motherboard = motherboard;
_superIO = superIO;
GetBoardSpecificConfiguration(superIO,
manufacturer,
model,
out IList<Voltage> v,
out IList<Temperature> t,
out IList<Fan> f,
out IList<Ctrl> c,
out _readVoltage,
out _readTemperature,
out _readFan,
out _readControl,
out _postUpdate,
out _);
CreateVoltageSensors(superIO, settings, v);
CreateTemperatureSensors(superIO, settings, t);
CreateFanSensors(superIO, settings, f);
CreateControlSensors(superIO, settings, c);
}
public override HardwareType HardwareType
{
get { return HardwareType.SuperIO; }
}
public override IHardware Parent
{
get { return _motherboard; }
}
private void CreateControlSensors(ISuperIO superIO, ISettings settings, IList<Ctrl> c)
{
foreach (Ctrl ctrl in c)
{
int index = ctrl.Index;
if (index < superIO.Controls.Length)
{
Sensor sensor = new Sensor(ctrl.Name, index, SensorType.Control, this, settings);
Control control = new Control(sensor, settings, 0, 100);
control.ControlModeChanged += cc =>
{
switch (cc.ControlMode)
{
case ControlMode.Undefined:
{
return;
}
case ControlMode.Default:
{
superIO.SetControl(index, null);
break;
}
case ControlMode.Software:
{
superIO.SetControl(index, (byte)(cc.SoftwareValue * 2.55));
break;
}
default:
{
return;
}
}
};
control.SoftwareControlValueChanged += cc =>
{
if (cc.ControlMode == ControlMode.Software)
superIO.SetControl(index, (byte)(cc.SoftwareValue * 2.55));
};
switch (control.ControlMode)
{
case ControlMode.Undefined:
{
break;
}
case ControlMode.Default:
{
superIO.SetControl(index, null);
break;
}
case ControlMode.Software:
{
superIO.SetControl(index, (byte)(control.SoftwareValue * 2.55));
break;
}
}
sensor.Control = control;
_controls.Add(sensor);
ActivateSensor(sensor);
}
}
}
private void CreateFanSensors(ISuperIO superIO, ISettings settings, IList<Fan> f)
{
foreach (Fan fan in f)
{
if (fan.Index < superIO.Fans.Length)
{
Sensor sensor = new Sensor(fan.Name, fan.Index, SensorType.Fan, this, settings);
_fans.Add(sensor);
}
}
}
private void CreateTemperatureSensors(ISuperIO superIO, ISettings settings, IList<Temperature> t)
{
foreach (Temperature temperature in t)
{
if (temperature.Index < superIO.Temperatures.Length)
{
Sensor sensor = new Sensor(temperature.Name,
temperature.Index,
SensorType.Temperature,
this,
new[] { new ParameterDescription("Offset [°C]", "Temperature offset.", 0) },
settings);
_temperatures.Add(sensor);
}
}
}
private void CreateVoltageSensors(ISuperIO superIO, ISettings settings, IList<Voltage> v)
{
const string formula = "Voltage = value + (value - Vf) * Ri / Rf.";
foreach (Voltage voltage in v)
{
if (voltage.Index < superIO.Voltages.Length)
{
Sensor sensor = new Sensor(voltage.Name,
voltage.Index,
voltage.Hidden,
SensorType.Voltage,
this,
new[]
{
new ParameterDescription("Ri [kΩ]", "Input resistance.\n" + formula, voltage.Ri),
new ParameterDescription("Rf [kΩ]", "Reference resistance.\n" + formula, voltage.Rf),
new ParameterDescription("Vf [V]", "Reference voltage.\n" + formula, voltage.Vf)
},
settings);
_voltages.Add(sensor);
}
}
}
private static void GetBoardSpecificConfiguration
(
ISuperIO superIO,
Manufacturer manufacturer,
Model model,
out IList<Voltage> v,
out IList<Temperature> t,
out IList<Fan> f,
out IList<Ctrl> c,
out ReadValueDelegate readVoltage,
out ReadValueDelegate readTemperature,
out ReadValueDelegate readFan,
out ReadValueDelegate readControl,
out UpdateDelegate postUpdate,
out Mutex mutex)
{
readVoltage = index => superIO.Voltages[index];
readTemperature = index => superIO.Temperatures[index];
readFan = index => superIO.Fans[index];
readControl = index => superIO.Controls[index];
postUpdate = () => { };
mutex = null;
v = new List<Voltage>();
t = new List<Temperature>();
f = new List<Fan>();
c = new List<Ctrl>();
switch (superIO.Chip)
{
case Chip.IT8705F:
case Chip.IT8712F:
case Chip.IT8716F:
case Chip.IT8718F:
case Chip.IT8720F:
case Chip.IT8726F:
{
GetIteConfigurationsA(superIO, manufacturer, model, v, t, f, c, ref readFan, ref postUpdate, ref mutex);
break;
}
case Chip.IT8620E:
{
GetIteConfigurationsB(superIO, manufacturer, model, v, t, f, c);
break;
}
case Chip.IT8628E:
case Chip.IT8655E:
case Chip.IT8665E:
case Chip.IT8686E:
case Chip.IT8688E:
case Chip.IT8721F:
case Chip.IT8728F:
case Chip.IT8771E:
case Chip.IT8772E:
{
GetIteConfigurationsB(superIO, manufacturer, model, v, t, f, c);
break;
}
case Chip.IT879XE:
{
GetIteConfigurationsC(superIO, manufacturer, model, v, t, f, c);
break;
}
case Chip.F71858:
{
v.Add(new Voltage("VCC3V", 0, 150, 150));
v.Add(new Voltage("VSB3V", 1, 150, 150));
v.Add(new Voltage("Battery", 2, 150, 150));
for (int i = 0; i < superIO.Temperatures.Length; i++)
t.Add(new Temperature("Temperature #" + (i + 1), i));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
break;
}
case Chip.F71808E:
case Chip.F71862:
case Chip.F71869:
case Chip.F71869A:
case Chip.F71882:
case Chip.F71889AD:
case Chip.F71889ED:
case Chip.F71889F:
{
GetFintekConfiguration(superIO, manufacturer, model, v, t, f, c);
break;
}
case Chip.W83627EHF:
{
GetWinbondConfigurationEhf(manufacturer, model, v, t, f);
break;
}
case Chip.W83627DHG:
case Chip.W83627DHGP:
case Chip.W83667HG:
case Chip.W83667HGB:
{
GetWinbondConfigurationHg(manufacturer, model, v, t, f);
break;
}
case Chip.W83627HF:
case Chip.W83627THF:
case Chip.W83687THF:
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("Voltage #2", 1, true));
v.Add(new Voltage("Voltage #3", 2, true));
v.Add(new Voltage("AVCC", 3, 34, 51));
v.Add(new Voltage("Voltage #5", 4, true));
v.Add(new Voltage("+5VSB", 5, 34, 51));
v.Add(new Voltage("VBat", 6));
t.Add(new Temperature("CPU", 0));
t.Add(new Temperature("Auxiliary", 1));
t.Add(new Temperature("System", 2));
f.Add(new Fan("System Fan", 0));
f.Add(new Fan("CPU Fan", 1));
f.Add(new Fan("Auxiliary Fan", 2));
break;
}
case Chip.NCT6771F:
case Chip.NCT6776F:
{
GetNuvotonConfigurationF(superIO, manufacturer, model, v, t, f, c);
break;
}
case Chip.NCT610XD:
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("Voltage #0", 1, true));
v.Add(new Voltage("AVCC", 2, 34, 34));
v.Add(new Voltage("+3.3V", 3, 34, 34));
v.Add(new Voltage("Voltage #1", 4, true));
v.Add(new Voltage("Voltage #2", 5, true));
v.Add(new Voltage("Reserved", 6, true));
v.Add(new Voltage("3VSB", 7, 34, 34));
v.Add(new Voltage("VBat", 8, 34, 34));
v.Add(new Voltage("Voltage #10", 9, true));
t.Add(new Temperature("System", 1));
t.Add(new Temperature("CPU Core", 2));
t.Add(new Temperature("Auxiliary", 3));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
for (int i = 0; i < superIO.Controls.Length; i++)
c.Add(new Ctrl("Fan Control #" + (i + 1), i));
break;
}
case Chip.NCT6779D:
case Chip.NCT6791D:
case Chip.NCT6792D:
case Chip.NCT6792DA:
case Chip.NCT6793D:
case Chip.NCT6795D:
case Chip.NCT6796D:
case Chip.NCT6796DR:
case Chip.NCT6797D:
case Chip.NCT6798D:
{
GetNuvotonConfigurationD(superIO, manufacturer, model, v, t, f, c);
break;
}
case Chip.NCT6687D:
{
v.Add(new Voltage("+12V", 0));
v.Add(new Voltage("+5V", 1));
v.Add(new Voltage("Vcore", 2));
v.Add(new Voltage("Voltage #1", 3));
v.Add(new Voltage("DIMM", 4));
v.Add(new Voltage("CPU I/O", 5));
v.Add(new Voltage("CPU SA", 6));
v.Add(new Voltage("Voltage #2", 7));
v.Add(new Voltage("AVCC3", 8));
v.Add(new Voltage("VTT", 9));
v.Add(new Voltage("VRef", 10));
v.Add(new Voltage("VSB", 11));
v.Add(new Voltage("AVSB", 12));
v.Add(new Voltage("VBat", 13));
t.Add(new Temperature("CPU", 0));
t.Add(new Temperature("System", 1));
t.Add(new Temperature("VRM MOS", 2));
t.Add(new Temperature("PCH", 3));
t.Add(new Temperature("CPU Socket", 4));
t.Add(new Temperature("PCIe x1", 5));
t.Add(new Temperature("M2_1", 6));
f.Add(new Fan("CPU Fan", 0));
f.Add(new Fan("Pump Fan", 1));
f.Add(new Fan("System Fan #1", 2));
f.Add(new Fan("System Fan #2", 3));
f.Add(new Fan("System Fan #3", 4));
f.Add(new Fan("System Fan #4", 5));
f.Add(new Fan("System Fan #5", 6));
f.Add(new Fan("System Fan #6", 7));
c.Add(new Ctrl("CPU Fan", 0));
c.Add(new Ctrl("Pump Fan", 1));
c.Add(new Ctrl("System Fan #1", 2));
c.Add(new Ctrl("System Fan #2", 3));
c.Add(new Ctrl("System Fan #3", 4));
c.Add(new Ctrl("System Fan #4", 5));
c.Add(new Ctrl("System Fan #5", 6));
c.Add(new Ctrl("System Fan #6", 7));
break;
}
default:
{
GetDefaultConfiguration(superIO, v, t, f, c);
break;
}
}
}
private static void GetDefaultConfiguration(ISuperIO superIO, ICollection<Voltage> v, ICollection<Temperature> t, ICollection<Fan> f, ICollection<Ctrl> c)
{
for (int i = 0; i < superIO.Voltages.Length; i++)
v.Add(new Voltage("Voltage #" + (i + 1), i, true));
for (int i = 0; i < superIO.Temperatures.Length; i++)
t.Add(new Temperature("Temperature #" + (i + 1), i));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
for (int i = 0; i < superIO.Controls.Length; i++)
c.Add(new Ctrl("Fan Control #" + (i + 1), i));
}
private static void GetIteConfigurationsA
(
ISuperIO superIO,
Manufacturer manufacturer,
Model model,
IList<Voltage> v,
IList<Temperature> t,
IList<Fan> f,
ICollection<Ctrl> c,
ref ReadValueDelegate readFan,
ref UpdateDelegate postUpdate,
ref Mutex mutex)
{
switch (manufacturer)
{
case Manufacturer.ASUS:
{
switch (model)
{
case Model.CROSSHAIR_III_FORMULA: // IT8720F
{
v.Add(new Voltage("VBat", 8));
t.Add(new Temperature("CPU", 0));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
break;
}
case Model.M2N_SLI_Deluxe:
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("+3.3V", 1));
v.Add(new Voltage("+5V", 3, 6.8f, 10));
v.Add(new Voltage("+12V", 4, 30, 10));
v.Add(new Voltage("+5VSB", 7, 6.8f, 10));
v.Add(new Voltage("VBat", 8));
t.Add(new Temperature("CPU", 0));
t.Add(new Temperature("Motherboard", 1));
f.Add(new Fan("CPU Fan", 0));
f.Add(new Fan("Chassis Fan #1", 1));
f.Add(new Fan("Power Fan", 2));
break;
}
case Model.M4A79XTD_EVO: // IT8720F
{
v.Add(new Voltage("+5V", 3, 6.8f, 10));
v.Add(new Voltage("VBat", 8));
t.Add(new Temperature("CPU", 0));
t.Add(new Temperature("Motherboard", 1));
f.Add(new Fan("CPU Fan", 0));
f.Add(new Fan("Chassis Fan #1", 1));
f.Add(new Fan("Chassis Fan #2", 2));
break;
}
case Model.PRIME_X370_PRO: // IT8665E
case Model.TUF_X470_PLUS_GAMING:
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("SB 2.5V", 1));
v.Add(new Voltage("+12V", 2, 5, 1));
v.Add(new Voltage("+5V", 3, 1.5f, 1));
v.Add(new Voltage("Voltage #4", 4, true));
v.Add(new Voltage("Voltage #6", 5, true));
v.Add(new Voltage("Voltage #7", 6, true));
v.Add(new Voltage("+3.3V", 7, 10, 10));
v.Add(new Voltage("VBat", 8, 10, 10));
v.Add(new Voltage("Voltage #10", 9, true));
t.Add(new Temperature("CPU", 0));
t.Add(new Temperature("Motherboard", 1));
t.Add(new Temperature("PCH", 2));
for (int i = 3; i < superIO.Temperatures.Length; i++)
t.Add(new Temperature("Temperature #" + (i + 1), i));
f.Add(new Fan("CPU Fan", 0));
for (int i = 1; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
break;
}
case Model.ROG_ZENITH_EXTREME: // IT8665E
{
v.Add(new Voltage("Vcore", 0, 10, 10));
v.Add(new Voltage("DIMM AB", 1, 10, 10));
v.Add(new Voltage("+12V", 2, 5, 1));
v.Add(new Voltage("+5V", 3, 1.5f, 1));
v.Add(new Voltage("SB 1.05V", 4, 10, 10));
v.Add(new Voltage("DIMM CD", 5, 10, 10));
v.Add(new Voltage("1.8V PLL", 6, 10, 10));
v.Add(new Voltage("+3.3V", 7, 10, 10));
v.Add(new Voltage("VBat", 8, 10, 10));
t.Add(new Temperature("CPU", 0));
t.Add(new Temperature("Motherboard", 1));
t.Add(new Temperature("CPU Socket", 2));
t.Add(new Temperature("Temperature #4", 3));
t.Add(new Temperature("Temperature #5", 4));
t.Add(new Temperature("VRM", 5));
f.Add(new Fan("CPU Fan", 0));
f.Add(new Fan("Chassis Fan #1", 1));
f.Add(new Fan("Chassis Fan #2", 2));
f.Add(new Fan("High Amp Fan", 3));
f.Add(new Fan("Fan 5", 4));
f.Add(new Fan("Fan 6", 5));
for (int i = 0; i < superIO.Controls.Length; i++)
c.Add(new Ctrl("Fan Control #" + (i + 1), i));
break;
}
default:
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("Voltage #2", 1, true));
v.Add(new Voltage("Voltage #3", 2, true));
v.Add(new Voltage("Voltage #4", 3, true));
v.Add(new Voltage("Voltage #5", 4, true));
v.Add(new Voltage("Voltage #6", 5, true));
v.Add(new Voltage("Voltage #7", 6, true));
v.Add(new Voltage("Voltage #8", 7, true));
v.Add(new Voltage("VBat", 8));
for (int i = 0; i < superIO.Temperatures.Length; i++)
t.Add(new Temperature("Temperature #" + (i + 1), i));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
for (int i = 0; i < superIO.Controls.Length; i++)
c.Add(new Ctrl("Fan Control #" + (i + 1), i));
break;
}
}
break;
}
case Manufacturer.ASRock:
{
switch (model)
{
case Model.P55_Deluxe: // IT8720F
{
GetASRockConfiguration(superIO,
v,
t,
f,
ref readFan,
ref postUpdate,
out mutex);
break;
}
default:
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("Voltage #2", 1, true));
v.Add(new Voltage("Voltage #3", 2, true));
v.Add(new Voltage("Voltage #4", 3, true));
v.Add(new Voltage("Voltage #5", 4, true));
v.Add(new Voltage("Voltage #6", 5, true));
v.Add(new Voltage("Voltage #7", 6, true));
v.Add(new Voltage("Voltage #8", 7, true));
v.Add(new Voltage("VBat", 8));
for (int i = 0; i < superIO.Temperatures.Length; i++)
t.Add(new Temperature("Temperature #" + (i + 1), i));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
break;
}
}
break;
}
case Manufacturer.DFI:
{
switch (model)
{
case Model.LP_BI_P45_T2RS_Elite: // IT8718F
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("VTT", 1));
v.Add(new Voltage("+3.3V", 2));
v.Add(new Voltage("+5V", 3, 6.8f, 10));
v.Add(new Voltage("+12V", 4, 30, 10));
v.Add(new Voltage("NB Core", 5));
v.Add(new Voltage("DIMM", 6));
v.Add(new Voltage("+5VSB", 7, 6.8f, 10));
v.Add(new Voltage("VBat", 8));
t.Add(new Temperature("CPU", 0));
t.Add(new Temperature("System", 1));
t.Add(new Temperature("Chipset", 2));
f.Add(new Fan("Fan #1", 0));
f.Add(new Fan("Fan #2", 1));
f.Add(new Fan("Fan #3", 2));
break;
}
case Model.LP_DK_P55_T3EH9: // IT8720F
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("VTT", 1));
v.Add(new Voltage("+3.3V", 2));
v.Add(new Voltage("+5V", 3, 6.8f, 10));
v.Add(new Voltage("+12V", 4, 30, 10));
v.Add(new Voltage("CPU PLL", 5));
v.Add(new Voltage("DIMM", 6));
v.Add(new Voltage("+5VSB", 7, 6.8f, 10));
v.Add(new Voltage("VBat", 8));
t.Add(new Temperature("Chipset", 0));
t.Add(new Temperature("CPU PWM", 1));
t.Add(new Temperature("CPU", 2));
f.Add(new Fan("Fan #1", 0));
f.Add(new Fan("Fan #2", 1));
f.Add(new Fan("Fan #3", 2));
break;
}
default:
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("VTT", 1, true));
v.Add(new Voltage("+3.3V", 2, true));
v.Add(new Voltage("+5V", 3, 6.8f, 10, 0, true));
v.Add(new Voltage("+12V", 4, 30, 10, 0, true));
v.Add(new Voltage("Voltage #6", 5, true));
v.Add(new Voltage("DIMM", 6, true));
v.Add(new Voltage("+5VSB", 7, 6.8f, 10, 0, true));
v.Add(new Voltage("VBat", 8));
for (int i = 0; i < superIO.Temperatures.Length; i++)
t.Add(new Temperature("Temperature #" + (i + 1), i));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
for (int i = 0; i < superIO.Controls.Length; i++)
c.Add(new Ctrl("Fan Control #" + (i + 1), i));
break;
}
}
break;
}
case Manufacturer.Gigabyte:
{
switch (model)
{
case Model._965P_S3: // IT8718F
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("DIMM", 1));
v.Add(new Voltage("+3.3V", 2));
v.Add(new Voltage("+5V", 3, 6.8f, 10));
v.Add(new Voltage("+12V", 7, 24.3f, 8.2f));
v.Add(new Voltage("VBat", 8));
t.Add(new Temperature("System", 0));
t.Add(new Temperature("CPU", 1));
f.Add(new Fan("CPU Fan", 0));
f.Add(new Fan("System Fan", 1));
break;
}
case Model.EP45_DS3R: // IT8718F
case Model.EP45_UD3R:
case Model.X38_DS5:
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("DIMM", 1));
v.Add(new Voltage("+3.3V", 2));
v.Add(new Voltage("+5V", 3, 6.8f, 10));
v.Add(new Voltage("+12V", 7, 24.3f, 8.2f));
v.Add(new Voltage("VBat", 8));
t.Add(new Temperature("System", 0));
t.Add(new Temperature("CPU", 1));
f.Add(new Fan("CPU Fan", 0));
f.Add(new Fan("System Fan #2", 1));
f.Add(new Fan("Power Fan", 2));
f.Add(new Fan("System Fan #1", 3));
break;
}
case Model.EX58_EXTREME: // IT8720F
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("DIMM", 1));
v.Add(new Voltage("+5V", 3, 6.8f, 10));
v.Add(new Voltage("VBat", 8));
t.Add(new Temperature("System", 0));
t.Add(new Temperature("CPU", 1));
t.Add(new Temperature("Northbridge", 2));
f.Add(new Fan("CPU Fan", 0));
f.Add(new Fan("System Fan #2", 1));
f.Add(new Fan("Power Fan", 2));
f.Add(new Fan("System Fan #1", 3));
break;
}
case Model.P35_DS3: // IT8718F
case Model.P35_DS3L: // IT8718F
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("DIMM", 1));
v.Add(new Voltage("+3.3V", 2));
v.Add(new Voltage("+5V", 3, 6.8f, 10));
v.Add(new Voltage("+12V", 7, 24.3f, 8.2f));
v.Add(new Voltage("VBat", 8));
t.Add(new Temperature("System", 0));
t.Add(new Temperature("CPU", 1));
f.Add(new Fan("CPU Fan", 0));
f.Add(new Fan("System Fan #1", 1));
f.Add(new Fan("System Fan #2", 2));
f.Add(new Fan("Power Fan", 3));
break;
}
case Model.P55_UD4: // IT8720F
case Model.P55A_UD3: // IT8720F
case Model.P55M_UD4: // IT8720F
case Model.H55_USB3: // IT8720F
case Model.EX58_UD3R: // IT8720F
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("DIMM", 1));
v.Add(new Voltage("+3.3V", 2));
v.Add(new Voltage("+5V", 3, 6.8f, 10));
v.Add(new Voltage("+12V", 5, 24.3f, 8.2f));
v.Add(new Voltage("VBat", 8));
t.Add(new Temperature("System", 0));
t.Add(new Temperature("CPU", 2));
f.Add(new Fan("CPU Fan", 0));
f.Add(new Fan("System Fan #2", 1));
f.Add(new Fan("Power Fan", 2));
f.Add(new Fan("System Fan #1", 3));
break;
}
case Model.H55N_USB3: // IT8720F
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("DIMM", 1));
v.Add(new Voltage("+3.3V", 2));
v.Add(new Voltage("+5V", 3, 6.8f, 10));
v.Add(new Voltage("+12V", 5, 24.3f, 8.2f));
v.Add(new Voltage("VBat", 8));
t.Add(new Temperature("System", 0));
t.Add(new Temperature("CPU", 2));
f.Add(new Fan("CPU Fan", 0));
f.Add(new Fan("System Fan", 1));
break;
}
case Model.G41M_COMBO: // IT8718F
case Model.G41MT_S2: // IT8718F
case Model.G41MT_S2P: // IT8718F
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("DIMM", 1));
v.Add(new Voltage("+3.3V", 2));
v.Add(new Voltage("+5V", 3, 6.8f, 10));
v.Add(new Voltage("+12V", 7, 24.3f, 8.2f));
v.Add(new Voltage("VBat", 8));
t.Add(new Temperature("CPU", 2));
f.Add(new Fan("CPU Fan", 0));
f.Add(new Fan("System Fan", 1));
break;
}
case Model._970A_UD3: // IT8720F
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("DIMM", 1));
v.Add(new Voltage("+3.3V", 2));
v.Add(new Voltage("+5V", 3, 6.8f, 10));
v.Add(new Voltage("+12V", 4, 24.3f, 8.2f));
v.Add(new Voltage("VBat", 8));
t.Add(new Temperature("System", 0));
t.Add(new Temperature("CPU", 1));
f.Add(new Fan("CPU Fan", 0));
f.Add(new Fan("System Fan #1", 1));
f.Add(new Fan("System Fan #2", 2));
f.Add(new Fan("Power Fan", 4));
c.Add(new Ctrl("PWM #1", 0));
c.Add(new Ctrl("PWM #2", 1));
c.Add(new Ctrl("PWM #3", 2));
break;
}
case Model.MA770T_UD3: // IT8720F
case Model.MA770T_UD3P: // IT8720F
case Model.MA790X_UD3P: // IT8720F
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("DIMM", 1));
v.Add(new Voltage("+3.3V", 2));
v.Add(new Voltage("+5V", 3, 6.8f, 10));
v.Add(new Voltage("+12V", 4, 24.3f, 8.2f));
v.Add(new Voltage("VBat", 8));
t.Add(new Temperature("System", 0));
t.Add(new Temperature("CPU", 1));
f.Add(new Fan("CPU Fan", 0));
f.Add(new Fan("System Fan #1", 1));
f.Add(new Fan("System Fan #2", 2));
f.Add(new Fan("Power Fan", 3));
break;
}
case Model.MA78LM_S2H: // IT8718F
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("DIMM", 1));
v.Add(new Voltage("+3.3V", 2));
v.Add(new Voltage("+5V", 3, 6.8f, 10));
v.Add(new Voltage("+12V", 4, 24.3f, 8.2f));
v.Add(new Voltage("VBat", 8));
t.Add(new Temperature("System", 0));
t.Add(new Temperature("CPU", 1));
t.Add(new Temperature("VRM", 2));
f.Add(new Fan("CPU Fan", 0));
f.Add(new Fan("System Fan #1", 1));
f.Add(new Fan("System Fan #2", 2));
f.Add(new Fan("Power Fan", 3));
break;
}
case Model.MA785GM_US2H: // IT8718F
case Model.MA785GMT_UD2H: // IT8718F
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("DIMM", 1));
v.Add(new Voltage("+3.3V", 2));
v.Add(new Voltage("+5V", 3, 6.8f, 10));
v.Add(new Voltage("+12V", 4, 24.3f, 8.2f));
v.Add(new Voltage("VBat", 8));
t.Add(new Temperature("System", 0));
t.Add(new Temperature("CPU", 1));
f.Add(new Fan("CPU Fan", 0));
f.Add(new Fan("System Fan", 1));
f.Add(new Fan("NB Fan", 2));
break;
}
case Model.X58A_UD3R: // IT8720F
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("DIMM", 1));
v.Add(new Voltage("+3.3V", 2));
v.Add(new Voltage("+5V", 3, 6.8f, 10));
v.Add(new Voltage("+12V", 5, 24.3f, 8.2f));
v.Add(new Voltage("VBat", 8));
t.Add(new Temperature("System", 0));
t.Add(new Temperature("CPU", 1));
t.Add(new Temperature("Northbridge", 2));
f.Add(new Fan("CPU Fan", 0));
f.Add(new Fan("System Fan #2", 1));
f.Add(new Fan("Power Fan", 2));
f.Add(new Fan("System Fan #1", 3));
break;
}
default:
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("DIMM", 1, true));
v.Add(new Voltage("+3.3V", 2, true));
v.Add(new Voltage("+5V", 3, 6.8f, 10, 0, true));
v.Add(new Voltage("Voltage #5", 4, true));
v.Add(new Voltage("Voltage #6", 5, true));
v.Add(new Voltage("Voltage #7", 6, true));
v.Add(new Voltage("Voltage #8", 7, true));
v.Add(new Voltage("VBat", 8));
for (int i = 0; i < superIO.Temperatures.Length; i++)
t.Add(new Temperature("Temperature #" + (i + 1), i));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
for (int i = 0; i < superIO.Controls.Length; i++)
c.Add(new Ctrl("Fan Control #" + (i + 1), i));
break;
}
}
break;
}
default:
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("Voltage #2", 1, true));
v.Add(new Voltage("Voltage #3", 2, true));
v.Add(new Voltage("Voltage #4", 3, true));
v.Add(new Voltage("Voltage #5", 4, true));
v.Add(new Voltage("Voltage #6", 5, true));
v.Add(new Voltage("Voltage #7", 6, true));
v.Add(new Voltage("Voltage #8", 7, true));
v.Add(new Voltage("VBat", 8));
for (int i = 0; i < superIO.Temperatures.Length; i++)
t.Add(new Temperature("Temperature #" + (i + 1), i));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
for (int i = 0; i < superIO.Controls.Length; i++)
c.Add(new Ctrl("Fan Control #" + (i + 1), i));
break;
}
}
}
private static void GetASRockConfiguration
(
ISuperIO superIO,
IList<Voltage> v,
IList<Temperature> t,
IList<Fan> f,
ref ReadValueDelegate readFan,
ref UpdateDelegate postUpdate,
out Mutex mutex)
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("+3.3V", 2));
v.Add(new Voltage("+12V", 4, 30, 10));
v.Add(new Voltage("+5V", 5, 6.8f, 10));
v.Add(new Voltage("VBat", 8));
t.Add(new Temperature("CPU", 0));
t.Add(new Temperature("Motherboard", 1));
f.Add(new Fan("CPU Fan", 0));
f.Add(new Fan("Chassis Fan #1", 1));
// this mutex is also used by the official ASRock tool
mutex = new Mutex(false, "ASRockOCMark");
bool exclusiveAccess = false;
try
{
exclusiveAccess = mutex.WaitOne(10, false);
}
catch (AbandonedMutexException)
{ }
catch (InvalidOperationException)
{ }
// only read additional fans if we get exclusive access
if (exclusiveAccess)
{
f.Add(new Fan("Chassis Fan #2", 2));
f.Add(new Fan("Chassis Fan #3", 3));
f.Add(new Fan("Power Fan", 4));
readFan = index =>
{
if (index < 2)
{
return superIO.Fans[index];
}
// get GPIO 80-87
byte? gpio = superIO.ReadGpio(7);
if (!gpio.HasValue)
return null;
// read the last 3 fans based on GPIO 83-85
int[] masks = { 0x05, 0x03, 0x06 };
return ((gpio.Value >> 3) & 0x07) == masks[index - 2] ? superIO.Fans[2] : null;
};
int fanIndex = 0;
postUpdate = () =>
{
// get GPIO 80-87
byte? gpio = superIO.ReadGpio(7);
if (!gpio.HasValue)
return;
// prepare the GPIO 83-85 for the next update
int[] masks = { 0x05, 0x03, 0x06 };
superIO.WriteGpio(7, (byte)((gpio.Value & 0xC7) | (masks[fanIndex] << 3)));
fanIndex = (fanIndex + 1) % 3;
};
}
}
private static void GetIteConfigurationsB(ISuperIO superIO, Manufacturer manufacturer, Model model, IList<Voltage> v, IList<Temperature> t, IList<Fan> f, IList<Ctrl> c)
{
switch (manufacturer)
{
case Manufacturer.ASUS:
{
switch (model)
{
case Model.ROG_STRIX_X470_I: // IT8665E
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("SB 2.5V", 1));
v.Add(new Voltage("+12V", 2, 5, 1));
v.Add(new Voltage("+5V", 3, 1.5f, 1));
v.Add(new Voltage("+3.3V", 7, 10, 10));
v.Add(new Voltage("VBat", 8, 10, 10));
t.Add(new Temperature("CPU", 0));
t.Add(new Temperature("Motherboard", 1));
t.Add(new Temperature("T_Sensor", 2));
t.Add(new Temperature("PCIe x16", 3));
t.Add(new Temperature("VRM", 4));
t.Add(new Temperature("Temperature #6", 5));
f.Add(new Fan("CPU Fan", 0));
//Does not work when in AIO pump mode (shows 0). I don't know how to fix it.
f.Add(new Fan("Chassis Fan #1", 1));
f.Add(new Fan("Chassis Fan #2", 2));
//offset: 2, because the first two always show zero
for (int i = 2; i < superIO.Controls.Length; i++)
c.Add(new Ctrl("Fan Control #" + (i - 1), i));
break;
}
default:
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("Voltage #2", 1, true));
v.Add(new Voltage("Voltage #3", 2, true));
v.Add(new Voltage("Voltage #4", 3, true));
v.Add(new Voltage("Voltage #5", 4, true));
v.Add(new Voltage("Voltage #6", 5, true));
v.Add(new Voltage("Voltage #7", 6, true));
v.Add(new Voltage("Voltage #8", 7, true));
v.Add(new Voltage("VBat", 8));
for (int i = 0; i < superIO.Temperatures.Length; i++)
t.Add(new Temperature("Temperature #" + (i + 1), i));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
for (int i = 0; i < superIO.Controls.Length; i++)
c.Add(new Ctrl("Fan Control #" + (i + 1), i));
break;
}
}
break;
}
case Manufacturer.ECS:
{
switch (model)
{
case Model.A890GXM_A: // IT8721F
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("DIMM", 1));
v.Add(new Voltage("NB Voltage", 2));
v.Add(new Voltage("AVCC", 3, 10, 10));
// v.Add(new Voltage("DIMM", 6, true));
v.Add(new Voltage("3VSB", 7, 10, 10));
v.Add(new Voltage("VBat", 8, 10, 10));
t.Add(new Temperature("CPU", 0));
t.Add(new Temperature("System", 1));
t.Add(new Temperature("Northbridge", 2));
f.Add(new Fan("CPU Fan", 0));
f.Add(new Fan("System Fan", 1));
f.Add(new Fan("Power Fan", 2));
break;
}
default:
{
v.Add(new Voltage("Voltage #1", 0, true));
v.Add(new Voltage("Voltage #2", 1, true));
v.Add(new Voltage("Voltage #3", 2, true));
v.Add(new Voltage("AVCC", 3, 10, 10, 0, true));
v.Add(new Voltage("Voltage #5", 4, true));
v.Add(new Voltage("Voltage #6", 5, true));
v.Add(new Voltage("Voltage #7", 6, true));
v.Add(new Voltage("3VSB", 7, 10, 10, 0, true));
v.Add(new Voltage("VBat", 8, 10, 10));
for (int i = 0; i < superIO.Temperatures.Length; i++)
t.Add(new Temperature("Temperature #" + (i + 1), i));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
for (int i = 0; i < superIO.Controls.Length; i++)
c.Add(new Ctrl("Fan Control #" + (i + 1), i));
break;
}
}
break;
}
case Manufacturer.Gigabyte:
{
switch (model)
{
case Model.H61M_DS2_REV_1_2: // IT8728F
case Model.H61M_USB3_B3_REV_2_0: // IT8728F
{
v.Add(new Voltage("VTT", 0));
v.Add(new Voltage("+12V", 2, 30.9f, 10));
v.Add(new Voltage("Vcore", 5));
v.Add(new Voltage("DIMM", 6));
v.Add(new Voltage("3VSB", 7, 10, 10));
v.Add(new Voltage("VBat", 8, 10, 10));
t.Add(new Temperature("System", 0));
t.Add(new Temperature("CPU", 2));
f.Add(new Fan("CPU Fan", 0));
f.Add(new Fan("System Fan", 1));
break;
}
case Model.H67A_UD3H_B3: // IT8728F
case Model.H67A_USB3_B3: // IT8728F
{
v.Add(new Voltage("VTT", 0));
v.Add(new Voltage("+5V", 1, 15, 10));
v.Add(new Voltage("+12V", 2, 30.9f, 10));
v.Add(new Voltage("Vcore", 5));
v.Add(new Voltage("DIMM", 6));
v.Add(new Voltage("3VSB", 7, 10, 10));
v.Add(new Voltage("VBat", 8, 10, 10));
t.Add(new Temperature("System", 0));
t.Add(new Temperature("CPU", 2));
f.Add(new Fan("CPU Fan", 0));
f.Add(new Fan("System Fan #1", 1));
f.Add(new Fan("Power Fan", 2));
f.Add(new Fan("System Fan #2", 3));
break;
}
case Model.H81M_HD3: //IT8620E
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("Voltage #2", 1, true));
v.Add(new Voltage("Voltage #3", 2, true));
v.Add(new Voltage("Voltage #4", 3, true));
v.Add(new Voltage("iGPU", 4));
v.Add(new Voltage("CPU VRIN", 5));
v.Add(new Voltage("DIMM", 6));
v.Add(new Voltage("3VSB", 7, 10, 10));
v.Add(new Voltage("VBat", 8, 10, 10));
t.Add(new Temperature("CPU", 2));
t.Add(new Temperature("System", 0));
f.Add(new Fan("CPU Fan", 0));
f.Add(new Fan("System Fan", 1));
c.Add(new Ctrl("CPU Fan", 0));
c.Add(new Ctrl("System Fan", 1));
break;
}
case Model.AX370_Gaming_K7: // IT8686E
case Model.AX370_Gaming_5:
case Model.AB350_Gaming_3: // IT8686E
{
// Note: v3.3, v12, v5, and AVCC3 might be slightly off.
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("+3.3V", 1, 0.65f, 1));
v.Add(new Voltage("+12V", 2, 5, 1));
v.Add(new Voltage("+5V", 3, 1.5f, 1));
v.Add(new Voltage("VSOC", 4));
v.Add(new Voltage("VDDP", 5));
v.Add(new Voltage("DIMM", 6));
v.Add(new Voltage("3VSB", 7, 10, 10));
v.Add(new Voltage("VBat", 8, 10, 10));
v.Add(new Voltage("AVCC3", 9, 7.53f, 1));
t.Add(new Temperature("System", 0));
t.Add(new Temperature("Chipset", 1));
t.Add(new Temperature("CPU", 2));
t.Add(new Temperature("PCIe x16", 3));
t.Add(new Temperature("VRM MOS", 4));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
break;
}
case Model.X399_AORUS_Gaming_7: // ITE IT8686E
{
v.Add(new Voltage("Vcore", 0, 0, 1));
v.Add(new Voltage("+3.3V", 1, 6.5F, 10));
v.Add(new Voltage("+12V", 2, 5, 1));
v.Add(new Voltage("+5V", 3, 1.5F, 1));
v.Add(new Voltage("DIMM CD", 4, 0, 1));
v.Add(new Voltage("Vcore SoC", 5, 0, 1));
v.Add(new Voltage("DIMM AB", 6, 0, 1));
v.Add(new Voltage("3VSB", 7, 10, 10));
v.Add(new Voltage("VBat", 8, 10, 10));
v.Add(new Voltage("AVCC3", 9, 54, 10));
t.Add(new Temperature("System #1", 0));
t.Add(new Temperature("Chipset", 1));
t.Add(new Temperature("CPU", 2));
t.Add(new Temperature("PCIe x16", 3));
t.Add(new Temperature("VRM", 4));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
for (int i = 0; i < superIO.Controls.Length; i++)
c.Add(new Ctrl("Fan Control #" + (i + 1), i));
break;
}
case Model.X470_AORUS_GAMING_7_WIFI: // ITE IT8686E
{
v.Add(new Voltage("Vcore", 0, 0, 1));
v.Add(new Voltage("+3.3V", 1, 6.5F, 10));
v.Add(new Voltage("+12V", 2, 5, 1));
v.Add(new Voltage("+5V", 3, 1.5F, 1));
v.Add(new Voltage("Vcore SoC", 4, 0, 1));
v.Add(new Voltage("VDDP", 5, 0, 1));
v.Add(new Voltage("DIMM AB", 6, 0, 1));
v.Add(new Voltage("3VSB", 7, 10, 10));
v.Add(new Voltage("VBat", 8, 10, 10));
v.Add(new Voltage("AVCC3", 9, 54, 10));
t.Add(new Temperature("System #1", 0));
t.Add(new Temperature("Chipset", 1));
t.Add(new Temperature("CPU", 2));
t.Add(new Temperature("PCIe x16", 3));
t.Add(new Temperature("VRM", 4));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
for (int i = 0; i < superIO.Controls.Length; i++)
c.Add(new Ctrl("Fan Control #" + (i + 1), i));
break;
}
case Model.X570_AORUS_MASTER: // IT8688E
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("+3.3V", 1, 29.4f, 45.3f));
v.Add(new Voltage("+12V", 2, 10f, 2f));
v.Add(new Voltage("+5V", 3, 15f, 10f));
v.Add(new Voltage("Vcore SoC", 4));
v.Add(new Voltage("VDDP", 5));
v.Add(new Voltage("DIMM AB", 6));
v.Add(new Voltage("3VSB", 7, 1f, 10f));
v.Add(new Voltage("VBat", 8, 1f, 10f));
t.Add(new Temperature("System #1", 0));
t.Add(new Temperature("EC_TEMP1", 1));
t.Add(new Temperature("CPU", 2));
t.Add(new Temperature("PCIe x16", 3));
t.Add(new Temperature("VRM MOS", 4));
t.Add(new Temperature("PCH", 5));
f.Add(new Fan("CPU Fan", 0));
f.Add(new Fan("System Fan #1", 1));
f.Add(new Fan("System Fan #2", 2));
f.Add(new Fan("PCH Fan", 3));
f.Add(new Fan("CPU OPT Fan", 4));
c.Add(new Ctrl("CPU Fan", 0));
c.Add(new Ctrl("System Fan #1", 1));
c.Add(new Ctrl("System Fan #2", 2));
c.Add(new Ctrl("PCH Fan", 3));
c.Add(new Ctrl("CPU OPT Fan", 4));
break;
}
case Model.Z390_M_GAMING: // IT8688E
case Model.Z390_AORUS_ULTRA:
case Model.Z390_UD:
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("+3.3V", 1, 6.49f, 10));
v.Add(new Voltage("+12V", 2, 5f, 1));
v.Add(new Voltage("+5V", 3, 1.5f, 1));
v.Add(new Voltage("CPU VCCGT", 4));
v.Add(new Voltage("CPU VCCSA", 5));
v.Add(new Voltage("VDDQ", 6));
v.Add(new Voltage("DDRVTT", 7));
v.Add(new Voltage("PCHCore", 8));
v.Add(new Voltage("CPU VCCIO", 9));
v.Add(new Voltage("DDRVPP", 10));
t.Add(new Temperature("System #1", 0));
t.Add(new Temperature("PCH", 1));
t.Add(new Temperature("CPU", 2));
t.Add(new Temperature("PCIe x16", 3));
t.Add(new Temperature("VRM MOS", 4));
t.Add(new Temperature("System #2", 5));
f.Add(new Fan("CPU Fan", 0));
f.Add(new Fan("System Fan #1", 1));
f.Add(new Fan("System Fan #2", 2));
f.Add(new Fan("System Fan #3", 3));
break;
}
case Model.Z68A_D3H_B3: // IT8728F
{
v.Add(new Voltage("VTT", 0));
v.Add(new Voltage("+3.3V", 1, 6.49f, 10));
v.Add(new Voltage("+12V", 2, 30.9f, 10));
v.Add(new Voltage("+5V", 3, 7.15f, 10));
v.Add(new Voltage("Vcore", 5));
v.Add(new Voltage("DIMM", 6));
v.Add(new Voltage("3VSB", 7, 10, 10));
v.Add(new Voltage("VBat", 8, 10, 10));
t.Add(new Temperature("System", 0));
t.Add(new Temperature("CPU", 2));
f.Add(new Fan("CPU Fan", 0));
f.Add(new Fan("System Fan #1", 1));
f.Add(new Fan("Power Fan", 2));
f.Add(new Fan("System Fan #2", 3));
break;
}
case Model.P67A_UD3_B3: // IT8728F
case Model.P67A_UD3R_B3: // IT8728F
case Model.P67A_UD4_B3: // IT8728F
case Model.Z68AP_D3: // IT8728F
case Model.Z68X_UD3H_B3: // IT8728F
case Model.Z68XP_UD3R: // IT8728F
{
v.Add(new Voltage("VTT", 0));
v.Add(new Voltage("+3.3V", 1, 6.49f, 10));
v.Add(new Voltage("+12V", 2, 30.9f, 10));
v.Add(new Voltage("+5V", 3, 7.15f, 10));
v.Add(new Voltage("Vcore", 5));
v.Add(new Voltage("DIMM", 6));
v.Add(new Voltage("3VSB", 7, 10, 10));
v.Add(new Voltage("VBat", 8, 10, 10));
t.Add(new Temperature("System", 0));
t.Add(new Temperature("CPU", 2));
f.Add(new Fan("CPU Fan", 0));
f.Add(new Fan("System Fan #2", 1));
f.Add(new Fan("Power Fan", 2));
f.Add(new Fan("System Fan #1", 3));
break;
}
case Model.Z68X_UD7_B3: // IT8728F
{
v.Add(new Voltage("VTT", 0));
v.Add(new Voltage("+3.3V", 1, 6.49f, 10));
v.Add(new Voltage("+12V", 2, 30.9f, 10));
v.Add(new Voltage("+5V", 3, 7.15f, 10));
v.Add(new Voltage("Vcore", 5));
v.Add(new Voltage("DIMM", 6));
v.Add(new Voltage("3VSB", 7, 10, 10));
v.Add(new Voltage("VBat", 8, 10, 10));
t.Add(new Temperature("System", 0));
t.Add(new Temperature("CPU", 1));
t.Add(new Temperature("System #3", 2));
f.Add(new Fan("CPU Fan", 0));
f.Add(new Fan("Power Fan", 1));
f.Add(new Fan("System Fan #1", 2));
f.Add(new Fan("System Fan #2", 3));
f.Add(new Fan("System Fan #3", 4));
break;
}
case Model.X79_UD3: // IT8728F
{
v.Add(new Voltage("VTT", 0));
v.Add(new Voltage("DIMM AB", 1));
v.Add(new Voltage("+12V", 2, 10, 2));
v.Add(new Voltage("+5V", 3, 15, 10));
v.Add(new Voltage("VIN4", 4));
v.Add(new Voltage("VCore", 5));
v.Add(new Voltage("DIMM CD", 6));
v.Add(new Voltage("+3V Standby", 7, 1, 1));
v.Add(new Voltage("VBat", 8, 1, 1));
t.Add(new Temperature("System", 0));
t.Add(new Temperature("CPU", 1));
t.Add(new Temperature("Northbridge", 2));
f.Add(new Fan("CPU Fan", 0));
f.Add(new Fan("System Fan #1", 1));
f.Add(new Fan("System Fan #2", 2));
f.Add(new Fan("System Fan #3", 3));
break;
}
default:
{
v.Add(new Voltage("Voltage #1", 0, true));
v.Add(new Voltage("Voltage #2", 1, true));
v.Add(new Voltage("Voltage #3", 2, true));
v.Add(new Voltage("Voltage #4", 3, true));
v.Add(new Voltage("Voltage #5", 4, true));
v.Add(new Voltage("Voltage #6", 5, true));
v.Add(new Voltage("Voltage #7", 6, true));
v.Add(new Voltage("3VSB", 7, 10, 10, 0, true));
v.Add(new Voltage("VBat", 8, 10, 10));
for (int i = 0; i < superIO.Temperatures.Length; i++)
t.Add(new Temperature("Temperature #" + (i + 1), i));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
for (int i = 0; i < superIO.Controls.Length; i++)
c.Add(new Ctrl("Fan Control #" + (i + 1), i));
break;
}
}
break;
}
case Manufacturer.Shuttle:
{
switch (model)
{
case Model.FH67: // IT8772E
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("DIMM", 1));
v.Add(new Voltage("PCH VCCIO", 2));
v.Add(new Voltage("CPU VCCIO", 3));
v.Add(new Voltage("Graphic Voltage", 4));
v.Add(new Voltage("3VSB", 7, 10, 10));
v.Add(new Voltage("VBat", 8, 10, 10));
t.Add(new Temperature("System", 0));
t.Add(new Temperature("CPU", 1));
f.Add(new Fan("Fan #1", 0));
f.Add(new Fan("CPU Fan", 1));
break;
}
default:
{
v.Add(new Voltage("Voltage #1", 0, true));
v.Add(new Voltage("Voltage #2", 1, true));
v.Add(new Voltage("Voltage #3", 2, true));
v.Add(new Voltage("Voltage #4", 3, true));
v.Add(new Voltage("Voltage #5", 4, true));
v.Add(new Voltage("Voltage #6", 5, true));
v.Add(new Voltage("Voltage #7", 6, true));
v.Add(new Voltage("3VSB", 7, 10, 10, 0, true));
v.Add(new Voltage("VBat", 8, 10, 10));
for (int i = 0; i < superIO.Temperatures.Length; i++)
t.Add(new Temperature("Temperature #" + (i + 1), i));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
for (int i = 0; i < superIO.Controls.Length; i++)
c.Add(new Ctrl("Fan Control #" + (i + 1), i));
break;
}
}
break;
}
default:
{
v.Add(new Voltage("Voltage #1", 0, true));
v.Add(new Voltage("Voltage #2", 1, true));
v.Add(new Voltage("Voltage #3", 2, true));
v.Add(new Voltage("Voltage #4", 3, true));
v.Add(new Voltage("Voltage #5", 4, true));
v.Add(new Voltage("Voltage #6", 5, true));
v.Add(new Voltage("Voltage #7", 6, true));
v.Add(new Voltage("3VSB", 7, 10, 10, 0, true));
v.Add(new Voltage("VBat", 8, 10, 10));
for (int i = 0; i < superIO.Temperatures.Length; i++)
t.Add(new Temperature("Temperature #" + (i + 1), i));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
for (int i = 0; i < superIO.Controls.Length; i++)
c.Add(new Ctrl("Fan Control #" + (i + 1), i));
break;
}
}
}
private static void GetIteConfigurationsC(ISuperIO superIO, Manufacturer manufacturer, Model model, IList<Voltage> v, IList<Temperature> t, IList<Fan> f, IList<Ctrl> c)
{
switch (manufacturer)
{
case Manufacturer.Gigabyte:
{
switch (model)
{
case Model.X570_AORUS_MASTER: // IT879XE
{
v.Add(new Voltage("CPU VDD18", 0));
v.Add(new Voltage("DDRVTT AB", 1));
v.Add(new Voltage("Chipset Core", 2));
v.Add(new Voltage("Voltage #4", 3, true));
v.Add(new Voltage("CPU VDD18", 4));
v.Add(new Voltage("PM_CLDO12", 5));
v.Add(new Voltage("Voltage #7", 6, true));
v.Add(new Voltage("3VSB", 7, 1f, 1f));
v.Add(new Voltage("VBat", 8, 1f, 1f));
t.Add(new Temperature("PCIe x8", 0));
t.Add(new Temperature("EC_TEMP2", 1));
t.Add(new Temperature("System #2", 2));
f.Add(new Fan("System Fan #5 Pump", 0));
f.Add(new Fan("System Fan #6 Pump", 1));
f.Add(new Fan("System Fan #4", 2));
break;
}
case Model.X470_AORUS_GAMING_7_WIFI: // ITE IT8792
{
v.Add(new Voltage("VIN0", 0, 0, 1));
v.Add(new Voltage("DDR VTT", 1, 0, 1));
v.Add(new Voltage("Chipset Core", 2, 0, 1));
v.Add(new Voltage("VIN3", 3, 0, 1));
v.Add(new Voltage("CPU VDD18", 4, 0, 1));
v.Add(new Voltage("Chipset Core +2.5V", 5, 0.5F, 1));
v.Add(new Voltage("3VSB", 6, 1, 10));
v.Add(new Voltage("VBat", 7, 0.7F, 1));
t.Add(new Temperature("PCIe x8", 0));
t.Add(new Temperature("System #2", 2));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
for (int i = 0; i < superIO.Controls.Length; i++)
c.Add(new Ctrl("Fan Control #" + (i + 1), i));
break;
}
default:
{
v.Add(new Voltage("Voltage #1", 0, true));
v.Add(new Voltage("Voltage #2", 1, true));
v.Add(new Voltage("Voltage #3", 2, true));
v.Add(new Voltage("Voltage #4", 3, true));
v.Add(new Voltage("Voltage #5", 4, true));
v.Add(new Voltage("Voltage #6", 5, true));
v.Add(new Voltage("Voltage #7", 6, true));
v.Add(new Voltage("3VSB", 7, 10, 10, 0, true));
v.Add(new Voltage("VBat", 8, 10, 10));
for (int i = 0; i < superIO.Temperatures.Length; i++)
t.Add(new Temperature("Temperature #" + (i + 1), i));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
for (int i = 0; i < superIO.Controls.Length; i++)
c.Add(new Ctrl("Fan Control #" + (i + 1), i));
break;
}
}
break;
}
default:
{
v.Add(new Voltage("Voltage #1", 0, true));
v.Add(new Voltage("Voltage #2", 1, true));
v.Add(new Voltage("Voltage #3", 2, true));
v.Add(new Voltage("Voltage #4", 3, true));
v.Add(new Voltage("Voltage #5", 4, true));
v.Add(new Voltage("Voltage #6", 5, true));
v.Add(new Voltage("Voltage #7", 6, true));
v.Add(new Voltage("3VSB", 7, 10, 10, 0, true));
v.Add(new Voltage("VBat", 8, 10, 10));
for (int i = 0; i < superIO.Temperatures.Length; i++)
t.Add(new Temperature("Temperature #" + (i + 1), i));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
for (int i = 0; i < superIO.Controls.Length; i++)
c.Add(new Ctrl("Fan Control #" + (i + 1), i));
break;
}
}
}
private static void GetFintekConfiguration(ISuperIO superIO, Manufacturer manufacturer, Model model, IList<Voltage> v, IList<Temperature> t, IList<Fan> f, IList<Ctrl> c)
{
switch (manufacturer)
{
case Manufacturer.EVGA:
{
switch (model)
{
case Model.X58_SLI_Classified: // F71882
{
v.Add(new Voltage("VCC3V", 0, 150, 150));
v.Add(new Voltage("Vcore", 1, 47, 100));
v.Add(new Voltage("DIMM", 2, 47, 100));
v.Add(new Voltage("CPU VTT", 3, 24, 100));
v.Add(new Voltage("IOH Vcore", 4, 24, 100));
v.Add(new Voltage("+5V", 5, 51, 12));
v.Add(new Voltage("+12V", 6, 56, 6.8f));
v.Add(new Voltage("3VSB", 7, 150, 150));
v.Add(new Voltage("VBat", 8, 150, 150));
t.Add(new Temperature("CPU", 0));
t.Add(new Temperature("VREG", 1));
t.Add(new Temperature("System", 2));
f.Add(new Fan("CPU Fan", 0));
f.Add(new Fan("Power Fan", 1));
f.Add(new Fan("Chassis Fan", 2));
break;
}
default:
{
v.Add(new Voltage("VCC3V", 0, 150, 150));
v.Add(new Voltage("Vcore", 1));
v.Add(new Voltage("Voltage #3", 2, true));
v.Add(new Voltage("Voltage #4", 3, true));
v.Add(new Voltage("Voltage #5", 4, true));
v.Add(new Voltage("Voltage #6", 5, true));
v.Add(new Voltage("Voltage #7", 6, true));
v.Add(new Voltage("VSB3V", 7, 150, 150));
v.Add(new Voltage("VBat", 8, 150, 150));
for (int i = 0; i < superIO.Temperatures.Length; i++)
t.Add(new Temperature("Temperature #" + (i + 1), i));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
break;
}
}
break;
}
default:
{
v.Add(new Voltage("VCC3V", 0, 150, 150));
v.Add(new Voltage("Vcore", 1));
v.Add(new Voltage("Voltage #3", 2, true));
v.Add(new Voltage("Voltage #4", 3, true));
v.Add(new Voltage("Voltage #5", 4, true));
v.Add(new Voltage("Voltage #6", 5, true));
if (superIO.Chip != Chip.F71808E)
v.Add(new Voltage("Voltage #7", 6, true));
v.Add(new Voltage("VSB3V", 7, 150, 150));
v.Add(new Voltage("VBat", 8, 150, 150));
for (int i = 0; i < superIO.Temperatures.Length; i++)
t.Add(new Temperature("Temperature #" + (i + 1), i));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
for (int i = 0; i < superIO.Controls.Length; i++)
c.Add(new Ctrl("Fan Control #" + (i + 1), i));
break;
}
}
}
private static void GetNuvotonConfigurationF(ISuperIO superIO, Manufacturer manufacturer, Model model, IList<Voltage> v, IList<Temperature> t, IList<Fan> f, IList<Ctrl> c)
{
switch (manufacturer)
{
case Manufacturer.ASUS:
{
switch (model)
{
case Model.P8P67: // NCT6776F
case Model.P8P67_EVO: // NCT6776F
case Model.P8P67_PRO: // NCT6776F
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("+12V", 1, 11, 1));
v.Add(new Voltage("AVCC", 2, 34, 34));
v.Add(new Voltage("+3.3V", 3, 34, 34));
v.Add(new Voltage("+5V", 4, 12, 3));
v.Add(new Voltage("3VSB", 7, 34, 34));
v.Add(new Voltage("VBat", 8, 34, 34));
t.Add(new Temperature("CPU", 0));
t.Add(new Temperature("Auxiliary", 2));
t.Add(new Temperature("Motherboard", 3));
f.Add(new Fan("Chassis Fan #1", 0));
f.Add(new Fan("CPU Fan", 1));
f.Add(new Fan("Power Fan", 2));
f.Add(new Fan("Chassis Fan #2", 3));
c.Add(new Ctrl("Chassis Fan #2", 0));
c.Add(new Ctrl("CPU Fan", 1));
c.Add(new Ctrl("Chassis Fan #1", 2));
break;
}
case Model.P8P67_M_PRO: // NCT6776F
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("+12V", 1, 11, 1));
v.Add(new Voltage("AVCC", 2, 34, 34));
v.Add(new Voltage("+3.3V", 3, 34, 34));
v.Add(new Voltage("+5V", 4, 12, 3));
v.Add(new Voltage("Voltage #6", 5, true));
v.Add(new Voltage("Voltage #7", 6, true));
v.Add(new Voltage("3VSB", 7, 34, 34));
v.Add(new Voltage("VBat", 8, 34, 34));
t.Add(new Temperature("CPU", 0));
t.Add(new Temperature("Motherboard", 3));
f.Add(new Fan("Chassis Fan #1", 0));
f.Add(new Fan("CPU Fan", 1));
f.Add(new Fan("Chassis Fan #2", 2));
f.Add(new Fan("Power Fan", 3));
f.Add(new Fan("Auxiliary Fan", 4));
break;
}
case Model.P8Z68_V_PRO: // NCT6776F
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("+12V", 1, 11, 1));
v.Add(new Voltage("AVCC", 2, 34, 34));
v.Add(new Voltage("+3.3V", 3, 34, 34));
v.Add(new Voltage("+5V", 4, 12, 3));
v.Add(new Voltage("3VSB", 7, 34, 34));
v.Add(new Voltage("VBat", 8, 34, 34));
t.Add(new Temperature("CPU", 0));
t.Add(new Temperature("Auxiliary", 2));
t.Add(new Temperature("Motherboard", 3));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
for (int i = 0; i < superIO.Controls.Length; i++)
c.Add(new Ctrl("Fan #" + (i + 1), i));
break;
}
case Model.P9X79: // NCT6776F
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("+12V", 1, 11, 1));
v.Add(new Voltage("AVCC", 2, 34, 34));
v.Add(new Voltage("+3.3V", 3, 34, 34));
v.Add(new Voltage("+5V", 4, 12, 3));
v.Add(new Voltage("3VSB", 7, 34, 34));
v.Add(new Voltage("VBat", 8, 34, 34));
t.Add(new Temperature("CPU", 0));
t.Add(new Temperature("Motherboard", 3));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
for (int i = 0; i < superIO.Controls.Length; i++)
c.Add(new Ctrl("Fan Control #" + (i + 1), i));
break;
}
default:
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("Voltage #2", 1, true));
v.Add(new Voltage("AVCC", 2, 34, 34));
v.Add(new Voltage("+3.3V", 3, 34, 34));
v.Add(new Voltage("Voltage #5", 4, true));
v.Add(new Voltage("Voltage #6", 5, true));
v.Add(new Voltage("Voltage #7", 6, true));
v.Add(new Voltage("3VSB", 7, 34, 34));
v.Add(new Voltage("VBat", 8, 34, 34));
t.Add(new Temperature("CPU Core", 0));
t.Add(new Temperature("Temperature #1", 1));
t.Add(new Temperature("Temperature #2", 2));
t.Add(new Temperature("Temperature #3", 3));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
for (int i = 0; i < superIO.Controls.Length; i++)
c.Add(new Ctrl("Fan Control #" + (i + 1), i));
break;
}
}
break;
}
case Manufacturer.ASRock:
{
switch (model)
{
case Model.B85M_DGS:
{
v.Add(new Voltage("Vcore", 0, 1, 1));
v.Add(new Voltage("+12V", 1, 56, 10));
v.Add(new Voltage("AVCC", 2, 34, 34));
v.Add(new Voltage("+3.3V", 3, 34, 34));
v.Add(new Voltage("VIN1", 4, true));
v.Add(new Voltage("+5V", 5, 12, 3));
v.Add(new Voltage("VIN3", 6, true));
v.Add(new Voltage("3VSB", 7, 34, 34));
t.Add(new Temperature("CPU", 0));
t.Add(new Temperature("Auxiliary", 2));
t.Add(new Temperature("Motherboard", 3));
f.Add(new Fan("Chassis Fan #1", 0));
f.Add(new Fan("CPU Fan", 1));
f.Add(new Fan("Power Fan", 2));
f.Add(new Fan("Chassis Fan #2", 3));
c.Add(new Ctrl("Chassis Fan #2", 0));
c.Add(new Ctrl("CPU Fan", 1));
c.Add(new Ctrl("Chassis Fan #1", 2));
}
break;
case Model.Z77Pro4M: //NCT6776F
{
v.Add(new Voltage("Vcore", 0, 0, 1));
v.Add(new Voltage("+12V", 1, 56, 10));
v.Add(new Voltage("AVCC", 2, 10, 10));
v.Add(new Voltage("+3.3V", 3, 10, 10));
//v.Add(new Voltage("#Unused #4", 4, 0, 1, 0, true));
v.Add(new Voltage("+5V", 5, 20, 10));
//v.Add(new Voltage("#Unused #6", 6, 0, 1, 0, true));
v.Add(new Voltage("3VSB", 7, 10, 10));
v.Add(new Voltage("VBat", 8, 10, 10));
t.Add(new Temperature("CPU Core", 0));
t.Add(new Temperature("CPU", 1));
t.Add(new Temperature("Auxiliary", 2));
t.Add(new Temperature("Motherboard", 3));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
for (int i = 0; i < superIO.Controls.Length; i++)
c.Add(new Ctrl("Fan Control #" + (i + 1), i));
break;
}
default:
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("Voltage #2", 1, true));
v.Add(new Voltage("AVCC", 2, 34, 34));
v.Add(new Voltage("+3.3V", 3, 34, 34));
v.Add(new Voltage("Voltage #5", 4, true));
v.Add(new Voltage("Voltage #6", 5, true));
v.Add(new Voltage("Voltage #7", 6, true));
v.Add(new Voltage("3VSB", 7, 34, 34));
v.Add(new Voltage("VBat", 8, 34, 34));
t.Add(new Temperature("CPU Core", 0));
t.Add(new Temperature("Temperature #1", 1));
t.Add(new Temperature("Temperature #2", 2));
t.Add(new Temperature("Temperature #3", 3));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
for (int i = 0; i < superIO.Controls.Length; i++)
c.Add(new Ctrl("Fan Control #" + (i + 1), i));
break;
}
}
break;
}
default:
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("Voltage #2", 1, true));
v.Add(new Voltage("AVCC", 2, 34, 34));
v.Add(new Voltage("+3.3V", 3, 34, 34));
v.Add(new Voltage("Voltage #5", 4, true));
v.Add(new Voltage("Voltage #6", 5, true));
v.Add(new Voltage("Voltage #7", 6, true));
v.Add(new Voltage("3VSB", 7, 34, 34));
v.Add(new Voltage("VBat", 8, 34, 34));
t.Add(new Temperature("CPU Core", 0));
t.Add(new Temperature("Temperature #1", 1));
t.Add(new Temperature("Temperature #2", 2));
t.Add(new Temperature("Temperature #3", 3));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
for (int i = 0; i < superIO.Controls.Length; i++)
c.Add(new Ctrl("Fan Control #" + (i + 1), i));
break;
}
}
}
private static void GetNuvotonConfigurationD(ISuperIO superIO, Manufacturer manufacturer, Model model, IList<Voltage> v, IList<Temperature> t, IList<Fan> f, IList<Ctrl> c)
{
switch (manufacturer)
{
case Manufacturer.ASRock:
{
switch (model)
{
case Model.A320M_HDV: //NCT6779D
{
v.Add(new Voltage("Vcore", 0, 10, 10));
v.Add(new Voltage("Chipset 1.05V", 1, 0, 1));
v.Add(new Voltage("AVCC", 2, 10, 10));
v.Add(new Voltage("+3.3V", 3, 10, 10));
v.Add(new Voltage("+12V", 4, 56, 10));
v.Add(new Voltage("VcoreRef", 5, 0, 1));
v.Add(new Voltage("DIMM", 6, 0, 1));
v.Add(new Voltage("3VSB", 7, 10, 10));
v.Add(new Voltage("VBat", 8, 10, 10));
//v.Add(new Voltage("#Unused #9", 9, 0, 1, 0, true));
//v.Add(new Voltage("#Unused #10", 10, 0, 1, 0, true));
//v.Add(new Voltage("#Unused #11", 11, 34, 34, 0, true));
v.Add(new Voltage("+5V", 12, 20, 10));
//v.Add(new Voltage("#Unused #13", 13, 10, 10, 0, true));
//v.Add(new Voltage("#Unused #14", 14, 0, 1, 0, true));
//t.Add(new Temperature("#Unused #0", 0));
//t.Add(new Temperature("#Unused #1", 1));
t.Add(new Temperature("Motherboard", 2));
//t.Add(new Temperature("#Unused #3", 3));
//t.Add(new Temperature("#Unused #4", 4));
t.Add(new Temperature("Auxiliary", 5));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
for (int i = 0; i < superIO.Controls.Length; i++)
c.Add(new Ctrl("Fan Control #" + (i + 1), i));
break;
}
case Model.AB350_Pro4: //NCT6779D
case Model.AB350M_Pro4:
case Model.AB350M:
case Model.Fatal1ty_AB350_Gaming_K4:
case Model.AB350M_HDV:
case Model.B450_Steel_Legend:
case Model.B450M_Steel_Legend:
case Model.B450_Pro4:
case Model.B450M_Pro4:
{
v.Add(new Voltage("Vcore", 0, 10, 10));
//v.Add(new Voltage("#Unused", 1, 0, 1, 0, true));
v.Add(new Voltage("AVCC", 2, 10, 10));
v.Add(new Voltage("+3.3V", 3, 10, 10));
v.Add(new Voltage("+12V", 4, 28, 5));
v.Add(new Voltage("Vcore Refin", 5, 0, 1));
//v.Add(new Voltage("#Unused #6", 6, 0, 1, 0, true));
v.Add(new Voltage("3VSB", 7, 10, 10));
v.Add(new Voltage("VBat", 8, 34, 34));
//v.Add(new Voltage("#Unused #9", 9, 0, 1, 0, true));
//v.Add(new Voltage("#Unused #10", 10, 0, 1, 0, true));
v.Add(new Voltage("Chipset 1.05V", 11, 0, 1));
v.Add(new Voltage("+5V", 12, 20, 10));
//v.Add(new Voltage("#Unused #13", 13, 0, 1, 0, true));
v.Add(new Voltage("+1.8V", 14, 0, 1));
t.Add(new Temperature("CPU Core", 0));
t.Add(new Temperature("CPU", 1));
t.Add(new Temperature("Motherboard", 2));
t.Add(new Temperature("Auxiliary", 3));
t.Add(new Temperature("VRM", 4));
t.Add(new Temperature("AUXTIN2", 5));
//t.Add(new Temperature("Temperature #6", 6));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
for (int i = 0; i < superIO.Controls.Length; i++)
c.Add(new Ctrl("Fan Control #" + (i + 1), i));
break;
}
case Model.X399_Phantom_Gaming_6: //NCT6779D
{
v.Add(new Voltage("Vcore", 0, 10, 10));
v.Add(new Voltage("Chipset 1.05V", 1, 0, 1));
v.Add(new Voltage("AVCC", 2, 10, 10));
v.Add(new Voltage("+3.3V", 3, 10, 10));
v.Add(new Voltage("+12V", 4, 56, 10));
v.Add(new Voltage("VDDCR_SOC", 5, 0, 1));
v.Add(new Voltage("DIMM", 6, 0, 1));
v.Add(new Voltage("3VSB", 7, 10, 10));
v.Add(new Voltage("VBat", 8, 10, 10));
//v.Add(new Voltage("#Unused", 9, 0, 1, 0, true));
//v.Add(new Voltage("#Unused", 10, 0, 1, 0, true));
//v.Add(new Voltage("#Unused", 11, 0, 1, 0, true));
v.Add(new Voltage("+5V", 12, 20, 10));
v.Add(new Voltage("+1.8V", 13, 10, 10));
//v.Add(new Voltage("unused", 14, 34, 34, 0, true));
t.Add(new Temperature("CPU Core", 0));
t.Add(new Temperature("Motherboard", 1));
t.Add(new Temperature("Auxiliary", 2));
t.Add(new Temperature("Chipset", 3));
t.Add(new Temperature("Core VRM", 4));
t.Add(new Temperature("Core SoC", 5));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
for (int i = 0; i < superIO.Controls.Length; i++)
c.Add(new Ctrl("Fan Control #" + (i + 1), i));
break;
}
default:
{
v.Add(new Voltage("Vcore", 0, 10, 10));
v.Add(new Voltage("Voltage #2", 1, true));
v.Add(new Voltage("AVCC", 2, 34, 34));
v.Add(new Voltage("+3.3V", 3, 34, 34));
v.Add(new Voltage("Voltage #5", 4, true));
v.Add(new Voltage("Voltage #6", 5, true));
v.Add(new Voltage("Voltage #7", 6, true));
v.Add(new Voltage("3VSB", 7, 34, 34));
v.Add(new Voltage("VBat", 8, 34, 34));
v.Add(new Voltage("VTT", 9));
v.Add(new Voltage("Voltage #11", 10, true));
v.Add(new Voltage("Voltage #12", 11, true));
v.Add(new Voltage("Voltage #13", 12, true));
v.Add(new Voltage("Voltage #14", 13, true));
v.Add(new Voltage("Voltage #15", 14, true));
t.Add(new Temperature("CPU Core", 0));
t.Add(new Temperature("Temperature #1", 1));
t.Add(new Temperature("Temperature #2", 2));
t.Add(new Temperature("Temperature #3", 3));
t.Add(new Temperature("Temperature #4", 4));
t.Add(new Temperature("Temperature #5", 5));
t.Add(new Temperature("Temperature #6", 6));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
for (int i = 0; i < superIO.Controls.Length; i++)
c.Add(new Ctrl("Fan Control #" + (i + 1), i));
break;
}
}
break;
}
case Manufacturer.ASUS:
{
switch (model)
{
case Model.P8Z77_V: // NCT6779D
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("Voltage #2", 1, true));
v.Add(new Voltage("AVCC", 2, 34, 34));
v.Add(new Voltage("+3.3V", 3, 34, 34));
v.Add(new Voltage("Voltage #5", 4, true));
v.Add(new Voltage("Voltage #6", 5, true));
v.Add(new Voltage("Voltage #7", 6, true));
v.Add(new Voltage("3VSB", 7, 34, 34));
v.Add(new Voltage("VBat", 8, 34, 34));
v.Add(new Voltage("VTT", 9));
v.Add(new Voltage("Voltage #11", 10, true));
v.Add(new Voltage("Voltage #12", 11, true));
v.Add(new Voltage("Voltage #13", 12, true));
v.Add(new Voltage("Voltage #14", 13, true));
v.Add(new Voltage("Voltage #15", 14, true));
t.Add(new Temperature("CPU Core", 0));
t.Add(new Temperature("Auxiliary", 1));
t.Add(new Temperature("Motherboard", 2));
f.Add(new Fan("Chassis Fan #1", 0));
f.Add(new Fan("CPU Fan", 1));
f.Add(new Fan("Chassis Fan #2", 2));
f.Add(new Fan("Chassis Fan #3", 3));
c.Add(new Ctrl("Chassis Fan #1", 0));
c.Add(new Ctrl("CPU Fan", 1));
c.Add(new Ctrl("Chassis Fan #2", 2));
c.Add(new Ctrl("Chassis Fan #3", 3));
break;
}
case Model.ROG_MAXIMUS_X_APEX: // NCT6793D
{
v.Add(new Voltage("Vcore", 0, 2, 2));
v.Add(new Voltage("+5V", 1, 4, 1));
v.Add(new Voltage("AVSB", 2, 34, 34));
v.Add(new Voltage("+3.3V", 3, 34, 34));
v.Add(new Voltage("+12V", 4, 11, 1));
v.Add(new Voltage("Voltage #6", 5, true));
v.Add(new Voltage("CPU GFX", 6, 2, 2));
v.Add(new Voltage("3VSB", 7, 34, 34));
v.Add(new Voltage("VBat", 8, 34, 34));
v.Add(new Voltage("VTT", 9));
v.Add(new Voltage("DIMM", 10, 1, 1));
v.Add(new Voltage("VCCSA", 11));
v.Add(new Voltage("PCH Core", 12));
v.Add(new Voltage("CPU PLLs", 13));
v.Add(new Voltage("CPU VCCIO/IMC", 14));
t.Add(new Temperature("CPU (PECI)", 0));
t.Add(new Temperature("T2", 1));
t.Add(new Temperature("T1", 2));
t.Add(new Temperature("CPU", 3));
t.Add(new Temperature("PCH", 4));
t.Add(new Temperature("Temperature #4", 5));
t.Add(new Temperature("Temperature #5", 6));
f.Add(new Fan("Chassis Fan #1", 0));
f.Add(new Fan("CPU Fan", 1));
f.Add(new Fan("Chassis Fan #2", 2));
f.Add(new Fan("Chassis Fan #3", 3));
f.Add(new Fan("AIO Pump", 4));
c.Add(new Ctrl("Chassis Fan #1", 0));
c.Add(new Ctrl("CPU Fan", 1));
c.Add(new Ctrl("Chassis Fan #2", 2));
c.Add(new Ctrl("Chassis Fan #3", 3));
c.Add(new Ctrl("AIO Pump", 4));
break;
}
case Model.Z170_A: //NCT6793D
{
v.Add(new Voltage("Vcore", 0, 2, 2));
v.Add(new Voltage("+5V", 1, 4, 1));
v.Add(new Voltage("AVSB", 2, 34, 34));
v.Add(new Voltage("+3.3V", 3, 34, 34));
v.Add(new Voltage("+12V", 4, 11, 1));
v.Add(new Voltage("Voltage #6", 5, 0, 1, 0, true));
v.Add(new Voltage("CPU GFX", 6, 2, 2));
v.Add(new Voltage("3VSB_ATX", 7, 34, 34));
v.Add(new Voltage("VBat", 8, 34, 34));
v.Add(new Voltage("VTT", 9));
v.Add(new Voltage("DIMM", 10, 1, 1));
v.Add(new Voltage("VCCSA", 11));
v.Add(new Voltage("PCH Core", 12));
v.Add(new Voltage("CPU PLLs", 13));
v.Add(new Voltage("CPU VCCIO/IMC", 14));
t.Add(new Temperature("CPU (PECI)", 0));
t.Add(new Temperature("CPU", 1));
t.Add(new Temperature("Motherboard", 2));
t.Add(new Temperature("CPU", 3));
t.Add(new Temperature("PCH", 4));
t.Add(new Temperature("Temperature #4", 5));
t.Add(new Temperature("Temperature #5", 6));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
for (int i = 0; i < superIO.Controls.Length; i++)
c.Add(new Ctrl("Fan Control #" + (i + 1), i));
break;
}
case Model.TUF_GAMING_B550M_PLUS_WIFI: //NCT6798D
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("Voltage #2", 1, true));
v.Add(new Voltage("AVCC", 2, 34, 34));
v.Add(new Voltage("+3.3V", 3, 34, 34));
v.Add(new Voltage("Voltage #5", 4, true));
v.Add(new Voltage("Voltage #6", 5, true));
v.Add(new Voltage("Voltage #7", 6, true));
v.Add(new Voltage("3VSB", 7, 34, 34));
v.Add(new Voltage("VBat", 8, 34, 34));
v.Add(new Voltage("VTT", 9));
v.Add(new Voltage("Voltage #11", 10, true));
v.Add(new Voltage("Voltage #12", 11, true));
v.Add(new Voltage("Voltage #13", 12, true));
v.Add(new Voltage("Voltage #14", 13, true));
v.Add(new Voltage("Voltage #15", 14, true));
t.Add(new Temperature("PECI 0", 0));
t.Add(new Temperature("CPU", 1));
t.Add(new Temperature("System", 2));
t.Add(new Temperature("AUX 0", 3));
t.Add(new Temperature("AUX 1", 4));
t.Add(new Temperature("AUX 2", 5));
t.Add(new Temperature("AUX 3", 6));
t.Add(new Temperature("AUX 4", 7));
t.Add(new Temperature("SMBus 0", 8));
t.Add(new Temperature("SMBus 1", 9));
t.Add(new Temperature("PECI 1", 10));
t.Add(new Temperature("PCH Chip CPU Max", 11));
t.Add(new Temperature("PCH Chip", 12));
t.Add(new Temperature("PCH CPU", 13));
t.Add(new Temperature("PCH MCH", 14));
t.Add(new Temperature("Agent 0 DIMM 0", 15));
t.Add(new Temperature("Agent 0 DIMM 1", 16));
t.Add(new Temperature("Agent 1 DIMM 0", 17));
t.Add(new Temperature("Agent 1 DIMM 1", 18));
t.Add(new Temperature("Device 0", 19));
t.Add(new Temperature("Device 1", 20));
t.Add(new Temperature("PECI 0 Calibrated", 21));
t.Add(new Temperature("PECI 1 Calibrated", 22));
t.Add(new Temperature("Virtual", 23));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
for (int i = 0; i < superIO.Controls.Length; i++)
c.Add(new Ctrl("Fan Control #" + (i + 1), i));
break;
}
default:
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("Voltage #2", 1, true));
v.Add(new Voltage("AVCC", 2, 34, 34));
v.Add(new Voltage("+3.3V", 3, 34, 34));
v.Add(new Voltage("Voltage #5", 4, true));
v.Add(new Voltage("Voltage #6", 5, true));
v.Add(new Voltage("Voltage #7", 6, true));
v.Add(new Voltage("3VSB", 7, 34, 34));
v.Add(new Voltage("VBat", 8, 34, 34));
v.Add(new Voltage("VTT", 9));
v.Add(new Voltage("Voltage #11", 10, true));
v.Add(new Voltage("Voltage #12", 11, true));
v.Add(new Voltage("Voltage #13", 12, true));
v.Add(new Voltage("Voltage #14", 13, true));
v.Add(new Voltage("Voltage #15", 14, true));
t.Add(new Temperature("CPU Core", 0));
t.Add(new Temperature("Temperature #1", 1));
t.Add(new Temperature("Temperature #2", 2));
t.Add(new Temperature("Temperature #3", 3));
t.Add(new Temperature("Temperature #4", 4));
t.Add(new Temperature("Temperature #5", 5));
t.Add(new Temperature("Temperature #6", 6));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
for (int i = 0; i < superIO.Controls.Length; i++)
c.Add(new Ctrl("Fan Control #" + (i + 1), i));
break;
}
}
break;
}
case Manufacturer.MSI:
{
switch (model)
{
case Model.B360M_PRO_VDH: // NCT6797D
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("+5V", 1, 4, 1));
v.Add(new Voltage("AVCC", 2, 34, 34));
v.Add(new Voltage("+3.3V", 3, 34, 34));
v.Add(new Voltage("+12V", 4, 11, 1));
//v.Add(new Voltage("Voltage #6", 5, true));
v.Add(new Voltage("CPU I/O", 6));
v.Add(new Voltage("3VSB", 7, 34, 34));
v.Add(new Voltage("VTT", 9));
v.Add(new Voltage("CPU SA", 10));
//v.Add(new Voltage("Voltage #12", 11, true));
v.Add(new Voltage("NB/SoC", 12));
v.Add(new Voltage("DIMM", 13, 1, 1));
//v.Add(new Voltage("Voltage #15", 14, true));
t.Add(new Temperature("CPU", 0));
t.Add(new Temperature("Auxiliary", 1));
t.Add(new Temperature("Motherboard", 2));
t.Add(new Temperature("Temperature #1", 5));
f.Add(new Fan("CPU Fan", 1));
f.Add(new Fan("System Fan #1", 2));
f.Add(new Fan("System Fan #2", 3));
c.Add(new Ctrl("CPU Fan", 1));
c.Add(new Ctrl("System Fan #1", 2));
c.Add(new Ctrl("System Fan #2", 3));
break;
}
case Model.B450A_PRO: // NCT6797D
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("+5V", 1, 4, 1));
v.Add(new Voltage("AVCC", 2, 34, 34));
v.Add(new Voltage("+3.3V", 3, 34, 34));
v.Add(new Voltage("+12V", 4, 11, 1));
//v.Add(new Voltage("Voltage #6", 5, false));
//v.Add(new Voltage("CPU I/O", 6));
v.Add(new Voltage("3VSB", 7, 34, 34));
v.Add(new Voltage("VTT", 9));
v.Add(new Voltage("CPU SA", 10));
//v.Add(new Voltage("Voltage #12", 11, false));
v.Add(new Voltage("NB/SoC", 12));
v.Add(new Voltage("DIMM", 13, 1, 1));
//v.Add(new Voltage("Voltage #15", 14, false));
//t.Add(new Temperature("CPU", 0));
t.Add(new Temperature("CPU", 1));
t.Add(new Temperature("System", 2));
t.Add(new Temperature("VRM MOS", 3));
t.Add(new Temperature("PCH", 5));
t.Add(new Temperature("SMBus 0", 8));
f.Add(new Fan("Pump Fan", 0));
f.Add(new Fan("CPU Fan", 1));
f.Add(new Fan("System Fan #1", 2));
f.Add(new Fan("System Fan #2", 3));
f.Add(new Fan("System Fan #3", 4));
f.Add(new Fan("System Fan #4", 5));
c.Add(new Ctrl("Pump Fan", 0));
c.Add(new Ctrl("CPU Fan", 1));
c.Add(new Ctrl("System Fan #1", 2));
c.Add(new Ctrl("System Fan #2", 3));
c.Add(new Ctrl("System Fan #3", 4));
c.Add(new Ctrl("System Fan #4", 5));
break;
}
case Model.Z270_PC_MATE: // NCT6795D
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("+5V", 1, 4, 1));
v.Add(new Voltage("AVCC", 2, 34, 34));
v.Add(new Voltage("+3.3V", 3, 34, 34));
v.Add(new Voltage("+12V", 4, 11, 1));
v.Add(new Voltage("Voltage #6", 5, true));
v.Add(new Voltage("CPU I/O", 6));
v.Add(new Voltage("3VSB", 7, 34, 34));
v.Add(new Voltage("VTT", 9));
v.Add(new Voltage("CPU SA", 10));
v.Add(new Voltage("Voltage #12", 11, true));
v.Add(new Voltage("PCH", 12));
v.Add(new Voltage("DIMM", 13, 1, 1));
v.Add(new Voltage("Voltage #15", 14, true));
t.Add(new Temperature("CPU", 0));
t.Add(new Temperature("Auxiliary", 1));
t.Add(new Temperature("Motherboard", 2));
f.Add(new Fan("Pump Fan", 0));
f.Add(new Fan("CPU Fan", 1));
f.Add(new Fan("System Fan #1", 2));
f.Add(new Fan("System Fan #2", 3));
f.Add(new Fan("System Fan #3", 4));
f.Add(new Fan("System Fan #4", 5));
c.Add(new Ctrl("Pump Fan", 0));
c.Add(new Ctrl("CPU Fan", 1));
c.Add(new Ctrl("System Fan #1", 2));
c.Add(new Ctrl("System Fan #2", 3));
c.Add(new Ctrl("System Fan #3", 4));
c.Add(new Ctrl("System Fan #4", 5));
break;
}
default:
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("Voltage #2", 1, true));
v.Add(new Voltage("AVCC", 2, 34, 34));
v.Add(new Voltage("+3.3V", 3, 34, 34));
v.Add(new Voltage("Voltage #5", 4, true));
v.Add(new Voltage("Voltage #6", 5, true));
v.Add(new Voltage("Voltage #7", 6, true));
v.Add(new Voltage("3VSB", 7, 34, 34));
v.Add(new Voltage("VBat", 8, 34, 34));
v.Add(new Voltage("VTT", 9));
v.Add(new Voltage("Voltage #11", 10, true));
v.Add(new Voltage("Voltage #12", 11, true));
v.Add(new Voltage("Voltage #13", 12, true));
v.Add(new Voltage("Voltage #14", 13, true));
v.Add(new Voltage("Voltage #15", 14, true));
t.Add(new Temperature("CPU Core", 0));
t.Add(new Temperature("Temperature #1", 1));
t.Add(new Temperature("Temperature #2", 2));
t.Add(new Temperature("Temperature #3", 3));
t.Add(new Temperature("Temperature #4", 4));
t.Add(new Temperature("Temperature #5", 5));
t.Add(new Temperature("Temperature #6", 6));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
for (int i = 0; i < superIO.Controls.Length; i++)
c.Add(new Ctrl("Fan Control #" + (i + 1), i));
break;
}
}
break;
}
default:
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("Voltage #2", 1, true));
v.Add(new Voltage("AVCC", 2, 34, 34));
v.Add(new Voltage("+3.3V", 3, 34, 34));
v.Add(new Voltage("Voltage #5", 4, true));
v.Add(new Voltage("Voltage #6", 5, true));
v.Add(new Voltage("Voltage #7", 6, true));
v.Add(new Voltage("3VSB", 7, 34, 34));
v.Add(new Voltage("VBat", 8, 34, 34));
v.Add(new Voltage("VTT", 9));
v.Add(new Voltage("Voltage #11", 10, true));
v.Add(new Voltage("Voltage #12", 11, true));
v.Add(new Voltage("Voltage #13", 12, true));
v.Add(new Voltage("Voltage #14", 13, true));
v.Add(new Voltage("Voltage #15", 14, true));
t.Add(new Temperature("CPU Core", 0));
t.Add(new Temperature("Temperature #1", 1));
t.Add(new Temperature("Temperature #2", 2));
t.Add(new Temperature("Temperature #3", 3));
t.Add(new Temperature("Temperature #4", 4));
t.Add(new Temperature("Temperature #5", 5));
t.Add(new Temperature("Temperature #6", 6));
for (int i = 0; i < superIO.Fans.Length; i++)
f.Add(new Fan("Fan #" + (i + 1), i));
for (int i = 0; i < superIO.Controls.Length; i++)
c.Add(new Ctrl("Fan Control #" + (i + 1), i));
break;
}
}
}
private static void GetWinbondConfigurationEhf(Manufacturer manufacturer, Model model, IList<Voltage> v, IList<Temperature> t, IList<Fan> f)
{
switch (manufacturer)
{
case Manufacturer.ASRock:
{
switch (model)
{
case Model.AOD790GX_128M: // W83627EHF
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("AVCC", 2, 34, 34));
v.Add(new Voltage("+3.3V", 4, 10, 10));
v.Add(new Voltage("+5V", 5, 20, 10));
v.Add(new Voltage("+12V", 6, 28, 5));
v.Add(new Voltage("3VSB", 7, 34, 34));
v.Add(new Voltage("VBat", 8, 34, 34));
t.Add(new Temperature("CPU", 0));
t.Add(new Temperature("Motherboard", 2));
f.Add(new Fan("CPU Fan", 0));
f.Add(new Fan("Chassis Fan", 1));
break;
}
default:
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("Voltage #2", 1, true));
v.Add(new Voltage("AVCC", 2, 34, 34));
v.Add(new Voltage("+3.3V", 3, 34, 34));
v.Add(new Voltage("Voltage #5", 4, true));
v.Add(new Voltage("Voltage #6", 5, true));
v.Add(new Voltage("Voltage #7", 6, true));
v.Add(new Voltage("3VSB", 7, 34, 34));
v.Add(new Voltage("VBat", 8, 34, 34));
v.Add(new Voltage("Voltage #10", 9, true));
t.Add(new Temperature("CPU", 0));
t.Add(new Temperature("Auxiliary", 1));
t.Add(new Temperature("System", 2));
f.Add(new Fan("System Fan", 0));
f.Add(new Fan("CPU Fan", 1));
f.Add(new Fan("Auxiliary Fan", 2));
f.Add(new Fan("CPU Fan #2", 3));
f.Add(new Fan("Auxiliary Fan #2", 4));
break;
}
}
break;
}
default:
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("Voltage #2", 1, true));
v.Add(new Voltage("AVCC", 2, 34, 34));
v.Add(new Voltage("+3.3V", 3, 34, 34));
v.Add(new Voltage("Voltage #5", 4, true));
v.Add(new Voltage("Voltage #6", 5, true));
v.Add(new Voltage("Voltage #7", 6, true));
v.Add(new Voltage("3VSB", 7, 34, 34));
v.Add(new Voltage("VBat", 8, 34, 34));
v.Add(new Voltage("Voltage #10", 9, true));
t.Add(new Temperature("CPU", 0));
t.Add(new Temperature("Auxiliary", 1));
t.Add(new Temperature("System", 2));
f.Add(new Fan("System Fan", 0));
f.Add(new Fan("CPU Fan", 1));
f.Add(new Fan("Auxiliary Fan", 2));
f.Add(new Fan("CPU Fan #2", 3));
f.Add(new Fan("Auxiliary Fan #2", 4));
break;
}
}
}
private static void GetWinbondConfigurationHg(Manufacturer manufacturer, Model model, IList<Voltage> v, IList<Temperature> t, IList<Fan> f)
{
switch (manufacturer)
{
case Manufacturer.ASRock:
{
switch (model)
{
case Model._880GMH_USB3: // W83627DHG-P
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("+3.3V", 3, 34, 34));
v.Add(new Voltage("+5V", 5, 15, 7.5f));
v.Add(new Voltage("+12V", 6, 56, 10));
v.Add(new Voltage("3VSB", 7, 34, 34));
v.Add(new Voltage("VBat", 8, 34, 34));
t.Add(new Temperature("CPU", 0));
t.Add(new Temperature("Motherboard", 2));
f.Add(new Fan("Chassis Fan", 0));
f.Add(new Fan("CPU Fan", 1));
f.Add(new Fan("Power Fan", 2));
break;
}
default:
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("Voltage #2", 1, true));
v.Add(new Voltage("AVCC", 2, 34, 34));
v.Add(new Voltage("+3.3V", 3, 34, 34));
v.Add(new Voltage("Voltage #5", 4, true));
v.Add(new Voltage("Voltage #6", 5, true));
v.Add(new Voltage("Voltage #7", 6, true));
v.Add(new Voltage("3VSB", 7, 34, 34));
v.Add(new Voltage("VBat", 8, 34, 34));
t.Add(new Temperature("CPU", 0));
t.Add(new Temperature("Auxiliary", 1));
t.Add(new Temperature("System", 2));
f.Add(new Fan("System Fan", 0));
f.Add(new Fan("CPU Fan", 1));
f.Add(new Fan("Auxiliary Fan", 2));
f.Add(new Fan("CPU Fan #2", 3));
f.Add(new Fan("Auxiliary Fan #2", 4));
break;
}
}
break;
}
case Manufacturer.ASUS:
{
switch (model)
{
case Model.P6T: // W83667HG
case Model.P6X58D_E: // W83667HG
case Model.RAMPAGE_II_GENE: // W83667HG
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("+12V", 1, 11.5f, 1.91f));
v.Add(new Voltage("AVCC", 2, 34, 34));
v.Add(new Voltage("+3.3V", 3, 34, 34));
v.Add(new Voltage("+5V", 4, 15, 7.5f));
v.Add(new Voltage("3VSB", 7, 34, 34));
v.Add(new Voltage("VBat", 8, 34, 34));
t.Add(new Temperature("CPU", 0));
t.Add(new Temperature("Motherboard", 2));
f.Add(new Fan("Chassis Fan #1", 0));
f.Add(new Fan("CPU Fan", 1));
f.Add(new Fan("Power Fan", 2));
f.Add(new Fan("Chassis Fan #2", 3));
f.Add(new Fan("Chassis Fan #3", 4));
break;
}
case Model.RAMPAGE_EXTREME: // W83667HG
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("+12V", 1, 12, 2));
v.Add(new Voltage("AVCC", 2, 34, 34));
v.Add(new Voltage("+3.3V", 3, 34, 34));
v.Add(new Voltage("+5V", 4, 15, 7.5f));
v.Add(new Voltage("3VSB", 7, 34, 34));
v.Add(new Voltage("VBat", 8, 34, 34));
t.Add(new Temperature("CPU", 0));
t.Add(new Temperature("Motherboard", 2));
f.Add(new Fan("Chassis Fan #1", 0));
f.Add(new Fan("CPU Fan", 1));
f.Add(new Fan("Power Fan", 2));
f.Add(new Fan("Chassis Fan #2", 3));
f.Add(new Fan("Chassis Fan #3", 4));
break;
}
default:
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("Voltage #2", 1, true));
v.Add(new Voltage("AVCC", 2, 34, 34));
v.Add(new Voltage("+3.3V", 3, 34, 34));
v.Add(new Voltage("Voltage #5", 4, true));
v.Add(new Voltage("Voltage #6", 5, true));
v.Add(new Voltage("Voltage #7", 6, true));
v.Add(new Voltage("3VSB", 7, 34, 34));
v.Add(new Voltage("VBat", 8, 34, 34));
t.Add(new Temperature("CPU", 0));
t.Add(new Temperature("Auxiliary", 1));
t.Add(new Temperature("System", 2));
f.Add(new Fan("System Fan", 0));
f.Add(new Fan("CPU Fan", 1));
f.Add(new Fan("Auxiliary Fan", 2));
f.Add(new Fan("CPU Fan #2", 3));
f.Add(new Fan("Auxiliary Fan #2", 4));
break;
}
}
break;
}
default:
{
v.Add(new Voltage("Vcore", 0));
v.Add(new Voltage("Voltage #2", 1, true));
v.Add(new Voltage("AVCC", 2, 34, 34));
v.Add(new Voltage("+3.3V", 3, 34, 34));
v.Add(new Voltage("Voltage #5", 4, true));
v.Add(new Voltage("Voltage #6", 5, true));
v.Add(new Voltage("Voltage #7", 6, true));
v.Add(new Voltage("3VSB", 7, 34, 34));
v.Add(new Voltage("VBat", 8, 34, 34));
t.Add(new Temperature("CPU", 0));
t.Add(new Temperature("Auxiliary", 1));
t.Add(new Temperature("System", 2));
f.Add(new Fan("System Fan", 0));
f.Add(new Fan("CPU Fan", 1));
f.Add(new Fan("Auxiliary Fan", 2));
f.Add(new Fan("CPU Fan #2", 3));
f.Add(new Fan("Auxiliary Fan #2", 4));
break;
}
}
}
public override string GetReport()
{
return _superIO.GetReport();
}
public override void Update()
{
_superIO.Update();
foreach (Sensor sensor in _voltages)
{
float? value = _readVoltage(sensor.Index);
if (value.HasValue)
{
sensor.Value = value + (value - sensor.Parameters[2].Value) * sensor.Parameters[0].Value / sensor.Parameters[1].Value;
ActivateSensor(sensor);
}
}
foreach (Sensor sensor in _temperatures)
{
float? value = _readTemperature(sensor.Index);
if (value.HasValue)
{
sensor.Value = value + sensor.Parameters[0].Value;
ActivateSensor(sensor);
}
}
foreach (Sensor sensor in _fans)
{
float? value = _readFan(sensor.Index);
if (value.HasValue)
{
sensor.Value = value;
ActivateSensor(sensor);
}
}
foreach (Sensor sensor in _controls)
{
float? value = _readControl(sensor.Index);
sensor.Value = value;
}
_postUpdate();
}
public override void Close()
{
foreach (Sensor sensor in _controls)
{
// restore all controls back to default
_superIO.SetControl(sensor.Index, null);
}
base.Close();
}
private delegate float? ReadValueDelegate(int index);
private delegate void UpdateDelegate();
private class Voltage
{
public readonly bool Hidden;
public readonly int Index;
public readonly string Name;
public readonly float Rf;
public readonly float Ri;
public readonly float Vf;
public Voltage(string name, int index, bool hidden = false) : this(name, index, 0, 1, 0, hidden)
{ }
public Voltage(string name, int index, float ri, float rf, float vf = 0, bool hidden = false)
{
Name = name;
Index = index;
Ri = ri;
Rf = rf;
Vf = vf;
Hidden = hidden;
}
}
private class Temperature
{
public readonly int Index;
public readonly string Name;
public Temperature(string name, int index)
{
Name = name;
Index = index;
}
}
private class Fan
{
public readonly int Index;
public readonly string Name;
public Fan(string name, int index)
{
Name = name;
Index = index;
}
}
private class Ctrl
{
public readonly int Index;
public readonly string Name;
public Ctrl(string name, int index)
{
Name = name;
Index = index;
}
}
}
}