Refactored the hardware monitoring code into a library (Issue 101).
3 Version: MPL 1.1/GPL 2.0/LGPL 2.1
5 The contents of this file are subject to the Mozilla Public License Version
6 1.1 (the "License"); you may not use this file except in compliance with
7 the License. You may obtain a copy of the License at
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11 Software distributed under the License is distributed on an "AS IS" basis,
12 WITHOUT WARRANTY OF ANY KIND, either express or implied. See the License
13 for the specific language governing rights and limitations under the License.
15 The Original Code is the Open Hardware Monitor code.
17 The Initial Developer of the Original Code is
18 Michael Möller <m.moeller@gmx.ch>.
19 Portions created by the Initial Developer are Copyright (C) 2009-2010
20 the Initial Developer. All Rights Reserved.
24 Alternatively, the contents of this file may be used under the terms of
25 either the GNU General Public License Version 2 or later (the "GPL"), or
26 the GNU Lesser General Public License Version 2.1 or later (the "LGPL"),
27 in which case the provisions of the GPL or the LGPL are applicable instead
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33 the provisions above, a recipient may use your version of this file under
34 the terms of any one of the MPL, the GPL or the LGPL.
39 using System.Collections.Generic;
42 namespace OpenHardwareMonitor.Hardware.CPU {
43 internal class AMD0FCPU : Hardware, IHardware {
47 private int processorIndex;
48 private uint pciAddress;
50 private Sensor[] coreTemperatures;
52 private Sensor totalLoad;
53 private Sensor[] coreLoads;
55 private CPULoad cpuLoad;
57 private const ushort PCI_AMD_VENDOR_ID = 0x1022;
58 private const ushort PCI_AMD_0FH_MISCELLANEOUS_DEVICE_ID = 0x1103;
59 private const uint THERMTRIP_STATUS_REGISTER = 0xE4;
60 private const byte THERM_SENSE_CORE_SEL_CPU0 = 0x4;
61 private const byte THERM_SENSE_CORE_SEL_CPU1 = 0x0;
63 public AMD0FCPU(int processorIndex, CPUID[][] cpuid, ISettings settings) {
65 this.processorIndex = processorIndex;
66 this.name = cpuid[0][0].Name;
68 int coreCount = cpuid.Length;
70 totalLoad = new Sensor("CPU Total", 0, SensorType.Load, this, settings);
72 float offset = -49.0f;
74 // AM2+ 65nm +21 offset
75 uint model = cpuid[0][0].Model;
76 if (model >= 0x69 && model != 0xc1 && model != 0x6c && model != 0x7c)
79 // check if processor supports a digital thermal sensor
80 if (cpuid[0][0].ExtData.GetLength(0) > 7 &&
81 (cpuid[0][0].ExtData[7, 3] & 1) != 0)
83 coreTemperatures = new Sensor[coreCount];
84 for (int i = 0; i < coreCount; i++) {
86 new Sensor("Core #" + (i + 1), i, SensorType.Temperature,
87 this, new ParameterDescription[] {
88 new ParameterDescription("Offset [°C]",
89 "Temperature offset of the thermal sensor.\n" +
90 "Temperature = Value + Offset.", offset)
94 coreTemperatures = new Sensor[0];
97 coreLoads = new Sensor[coreCount];
98 for (int i = 0; i < coreCount; i++)
99 coreLoads[i] = new Sensor("Core #" + (i + 1), i + 1,
100 SensorType.Load, this, settings);
102 cpuLoad = new CPULoad(cpuid);
103 if (cpuLoad.IsAvailable) {
104 foreach (Sensor sensor in coreLoads)
105 ActivateSensor(sensor);
106 ActivateSensor(totalLoad);
109 pciAddress = WinRing0.FindPciDeviceById(PCI_AMD_VENDOR_ID,
110 PCI_AMD_0FH_MISCELLANEOUS_DEVICE_ID, (byte)processorIndex);
115 public override string Name {
119 public override Identifier Identifier {
120 get { return new Identifier("amdcpu", processorIndex.ToString()); }
123 public override HardwareType HardwareType {
124 get { return HardwareType.CPU; }
127 public override void Update() {
128 if (pciAddress != 0xFFFFFFFF) {
129 for (uint i = 0; i < coreTemperatures.Length; i++) {
130 if (WinRing0.WritePciConfigDwordEx(
131 pciAddress, THERMTRIP_STATUS_REGISTER,
132 i > 0 ? THERM_SENSE_CORE_SEL_CPU1 : THERM_SENSE_CORE_SEL_CPU0)) {
134 if (WinRing0.ReadPciConfigDwordEx(
135 pciAddress, THERMTRIP_STATUS_REGISTER, out value)) {
136 coreTemperatures[i].Value = ((value >> 16) & 0xFF) +
137 coreTemperatures[i].Parameters[0].Value;
138 ActivateSensor(coreTemperatures[i]);
140 DeactivateSensor(coreTemperatures[i]);
146 if (cpuLoad.IsAvailable) {
148 for (int i = 0; i < coreLoads.Length; i++)
149 coreLoads[i].Value = cpuLoad.GetCoreLoad(i);
150 totalLoad.Value = cpuLoad.GetTotalLoad();