Files
ReLibreHardwareMonitor/LibreHardwareMonitorLib/Hardware/Memory/DimmMemory.cs
T
Blacktempel a673f60d0b RAM: (#2124)
- add temperature sensors for high/low/critical limits
- change thermal sensor index to 0
- adjust sensor indices accordingly

Storage:
- add Free Space sensor
- add Total Space sensor
- change temperature sensors indices to start from 0
- remove temperature sensor 1 as the non numbered sensor is the same
2026-01-06 23:23:59 +01:00

148 lines
9.0 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 LibreHardwareMonitor.Hardware.Memory.Sensors;
using RAMSPDToolkit.SPD;
using RAMSPDToolkit.SPD.Interfaces;
using RAMSPDToolkit.SPD.Interop.Shared;
namespace LibreHardwareMonitor.Hardware.Memory;
internal sealed class DimmMemory : Hardware
{
private readonly SpdThermalSensor _thermalSensor;
public DimmMemory(SPDAccessor accessor, string name, Identifier identifier, ISettings settings)
: base(name, identifier, settings)
{
//Only add thermal sensor if present
if (accessor is IThermalSensor ts && ts.HasThermalSensor)
{
//Check which kind of RAM we have
switch (accessor.MemoryType())
{
case SPDMemoryType.SPD_DDR4_SDRAM:
case SPDMemoryType.SPD_DDR4E_SDRAM:
case SPDMemoryType.SPD_LPDDR4_SDRAM:
case SPDMemoryType.SPD_LPDDR4X_SDRAM:
case SPDMemoryType.SPD_DDR5_SDRAM:
case SPDMemoryType.SPD_LPDDR5_SDRAM:
_thermalSensor = new SpdThermalSensor($"DIMM #{accessor.Index}",
0,
SensorType.Temperature,
this,
settings,
accessor as IThermalSensor);
break;
}
}
bool hasThermalSensor = _thermalSensor != null;
//Add thermal sensor
if (hasThermalSensor)
ActivateSensor(_thermalSensor);
//Add other sensors
CreateSensors(accessor, hasThermalSensor);
}
public override HardwareType HardwareType => HardwareType.Memory;
public override void Update()
{
_thermalSensor?.UpdateSensor();
}
private void CreateSensors(SPDAccessor accessor, bool hasThermalSensor)
{
if (accessor is DDR4Accessor ddr4)
{
CreateSensorsDDR4(ddr4, hasThermalSensor);
}
else if (accessor is DDR5Accessor ddr5)
{
CreateSensorsDDR5(ddr5, hasThermalSensor);
}
}
private void CreateSensorsDDR4(DDR4Accessor accessor, bool hasThermalSensor)
{
if (hasThermalSensor)
{
//Temperature Resolution (fixed value)
AddSensor("Temperature Sensor Resolution", 1, false, SensorType.Temperature, accessor.TemperatureResolution);
AddSensor("Thermal Sensor Low Limit", 2, false, SensorType.Temperature, accessor.ThermalSensorLowLimit);
AddSensor("Thermal Sensor High Limit", 3, false, SensorType.Temperature, accessor.ThermalSensorHighLimit);
AddSensor("Thermal Sensor Critical Limit", 4, false, SensorType.Temperature, accessor.ThermalSensorCriticalLimit);
}
//Timings
AddSensor("tCKAVGmin (Minimum Cycle Time)", 20, false, SensorType.Timing, (float)accessor.SDRAMTimings.MinimumCycleTime);
AddSensor("tCKAVGmax (Maximum Cycle Time)", 21, false, SensorType.Timing, (float)accessor.SDRAMTimings.MaximumCycleTime);
AddSensor("tAA (CAS Latency Time)", 22, false, SensorType.Timing, (float)accessor.SDRAMTimings.MinimumCASLatencyTime);
AddSensor("tRCD (RAS to CAS Delay Time)", 23, false, SensorType.Timing, (float)accessor.SDRAMTimings.MinimumRASToCASDelayTime);
AddSensor("tRP (Row Precharge Delay Time)", 24, false, SensorType.Timing, (float)accessor.SDRAMTimings.MinimumRowPrechargeDelayTime);
AddSensor("tRAS (Active to Precharge Delay Time)", 25, false, SensorType.Timing, (float)accessor.SDRAMTimings.MinimumActiveToPrechargeDelayTime);
AddSensor("tRC (Active to Active/Refresh Delay Time)", 26, false, SensorType.Timing, (float)accessor.SDRAMTimings.MinimumActiveToActiveRefreshDelayTime);
AddSensor("tRFC1 (Refresh Recovery Delay Time)", 27, false, SensorType.Timing, (float)accessor.SDRAMTimings.MinimumRefreshRecoveryDelayTime1);
AddSensor("tRFC2 (Refresh Recovery Delay Time)", 28, false, SensorType.Timing, (float)accessor.SDRAMTimings.MinimumRefreshRecoveryDelayTime2);
AddSensor("tRFC4 (Refresh Recovery Delay Time)", 29, false, SensorType.Timing, (float)accessor.SDRAMTimings.MinimumRefreshRecoveryDelayTime4);
AddSensor("tFAW (Four Activate Window Time)", 30, false, SensorType.Timing, (float)accessor.SDRAMTimings.MinimumFourActivateWindowTime);
AddSensor("tRRD_S (Activate to Activate Delay Time)", 31, false, SensorType.Timing, (float)accessor.SDRAMTimings.MinimumActivateToActivateDelay_DiffGroup);
AddSensor("tRRD_L (Activate to Activate Delay Time)", 32, false, SensorType.Timing, (float)accessor.SDRAMTimings.MinimumActivateToActivateDelay_SameGroup);
AddSensor("tCCD_L (CAS to CAS Delay Time)", 33, false, SensorType.Timing, (float)accessor.SDRAMTimings.MinimumCASToCASDelay_SameGroup);
AddSensor("tWR (Write Recovery Time)", 34, false, SensorType.Timing, (float)accessor.SDRAMTimings.MinimumWriteRecoveryTime);
AddSensor("tWTR_S (Write to Read Time)", 35, false, SensorType.Timing, (float)accessor.SDRAMTimings.MinimumWriteToReadTime_DiffGroup);
AddSensor("tWTR_L (Write to Read Time)", 36, false, SensorType.Timing, (float)accessor.SDRAMTimings.MinimumWriteToReadTime_SameGroup);
//Data
AddSensor("Capacity", 50, false, SensorType.Data, accessor.GetCapacity());
}
private void CreateSensorsDDR5(DDR5Accessor accessor, bool hasThermalSensor)
{
if (hasThermalSensor)
{
//Temperature Resolution (fixed value)
AddSensor("Temperature Sensor Resolution", 1, false, SensorType.Temperature, accessor.TemperatureResolution);
AddSensor("Thermal Sensor Low Limit", 2, false, SensorType.Temperature, accessor.ThermalSensorLowLimit);
AddSensor("Thermal Sensor High Limit", 3, false, SensorType.Temperature, accessor.ThermalSensorHighLimit);
AddSensor("Thermal Sensor Critical Low Limit", 4, false, SensorType.Temperature, accessor.ThermalSensorCriticalLowLimit);
AddSensor("Thermal Sensor Critical High Limit", 5, false, SensorType.Temperature, accessor.ThermalSensorCriticalHighLimit);
}
//Timings
AddSensor("tCKAVGmin (Minimum Cycle Time)", 20, false, SensorType.Timing, (float)accessor.SDRAMTimings.MinimumCycleTime);
AddSensor("tCKAVGmax (Maximum Cycle Time)", 21, false, SensorType.Timing, (float)accessor.SDRAMTimings.MaximumCycleTime);
AddSensor("tAA (CAS Latency Time)", 22, false, SensorType.Timing, (float)accessor.SDRAMTimings.MinimumCASLatencyTime);
AddSensor("tRCD (RAS to CAS Delay Time)", 23, false, SensorType.Timing, (float)accessor.SDRAMTimings.MinimumRASToCASDelayTime);
AddSensor("tRP (Row Precharge Delay Time)", 24, false, SensorType.Timing, (float)accessor.SDRAMTimings.MinimumRowPrechargeDelayTime);
AddSensor("tRAS (Active to Precharge Delay Time)", 25, false, SensorType.Timing, (float)accessor.SDRAMTimings.MinimumActiveToPrechargeDelayTime);
AddSensor("tRC (Active to Active/Refresh Delay Time)", 26, false, SensorType.Timing, (float)accessor.SDRAMTimings.MinimumActiveToActiveRefreshDelayTime);
AddSensor("tWR (Write Recovery Time)", 27, false, SensorType.Timing, (float)accessor.SDRAMTimings.MinimumWriteRecoveryTime);
AddSensor("tRFC1 (Normal Refresh Recovery Time)", 28, false, SensorType.Timing, (float)accessor.SDRAMTimings.NormalRefreshRecoveryTime);
AddSensor("tRFC2 (Fine Granularity Refresh Recovery Time)", 29, false, SensorType.Timing, (float)accessor.SDRAMTimings.FineGranularityRefreshRecoveryTime);
AddSensor("tRFCsb (Same Bank Refresh Recovery Time)", 30, false, SensorType.Timing, (float)accessor.SDRAMTimings.SameBankRefreshRecoveryTime);
AddSensor("tRFC1_dlr (Normal Refresh Recovery Time 3DS)", 31, false, SensorType.Timing, (float)accessor.SDRAMTimings.NormalRefreshRecoveryTime_3DSDifferentLogicalRank);
AddSensor("tRFC2_dlr (Fine Granularity Refresh Recovery Time 3DS)", 32, false, SensorType.Timing, (float)accessor.SDRAMTimings.FineGranularityRefreshRecoveryTime_3DSDifferentLogicalRank);
AddSensor("tRFCsb_dlr (Same Bank Refresh Recovery Time 3DS)", 33, false, SensorType.Timing, (float)accessor.SDRAMTimings.SameBankRefreshRecoveryTime_3DSDifferentLogicalRank);
//Data
AddSensor("Capacity", 50, false, SensorType.Data, accessor.GetCapacity());
}
private void AddSensor(string name, int index, bool defaultHidden, SensorType sensorType, float value)
{
var sensor = new Sensor(name, index, defaultHidden, sensorType, this, null, _settings)
{
Value = value,
};
ActivateSensor(sensor);
}
}