Release version 0.1.11. Added support for load percentage sensor type. Added load sensors for CPUs and ATI GPUs.
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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34 the terms of any one of the MPL, the GPL or the LGPL.
39 using System.Collections.Generic;
41 using System.Diagnostics;
42 using System.Reflection;
45 namespace OpenHardwareMonitor.Hardware.CPU {
46 public class IntelCPU : IHardware {
51 private Sensor[] coreTemperatures;
52 private Sensor totalLoad;
53 private Sensor[] coreLoads;
55 private List<ISensor> active = new List<ISensor>();
57 private float tjMax = 0;
58 private uint logicalProcessors;
59 private uint logicalProcessorsPerCore;
60 private uint coreCount;
62 private PerformanceCounter totalLoadCounter;
63 private PerformanceCounter[] coreLoadCounters;
65 private const uint IA32_THERM_STATUS_MSR = 0x019C;
66 private const uint IA32_TEMPERATURE_TARGET = 0x01A2;
68 public IntelCPU(string name, uint family, uint model, uint stepping,
69 uint[,] cpuidData, uint[,] cpuidExtData) {
72 this.icon = Utilities.EmbeddedResources.GetImage("cpu.png");
74 logicalProcessors = 0;
75 if (cpuidData.GetLength(0) > 0x0B) {
76 uint eax, ebx, ecx, edx;
77 WinRing0.CpuidEx(0x0B, 0, out eax, out ebx, out ecx, out edx);
78 logicalProcessorsPerCore = ebx & 0xFF;
79 if (logicalProcessorsPerCore > 0) {
80 WinRing0.CpuidEx(0x0B, 1, out eax, out ebx, out ecx, out edx);
81 logicalProcessors = ebx & 0xFF;
84 if (logicalProcessors <= 0 && cpuidData.GetLength(0) > 0x04) {
85 logicalProcessors = ((cpuidData[4, 0] >> 26) & 0x3F) + 1;
86 logicalProcessorsPerCore = 1;
88 if (logicalProcessors <= 0) {
89 logicalProcessors = 1;
90 logicalProcessorsPerCore = 1;
93 coreCount = logicalProcessors / logicalProcessorsPerCore;
98 case 0x0F: // Intel Core 65nm
117 case 0x17: // Intel Core 45nm
119 case 0x1C: // Intel Atom
122 uint eax = 0, edx = 0;
123 if (WinRing0.RdmsrPx(
124 IA32_TEMPERATURE_TARGET, ref eax, ref edx, (UIntPtr)1)) {
125 tjMax = (eax >> 16) & 0xFF;
133 default: tjMax = 100; break;
136 totalLoadCounter = new PerformanceCounter();
137 totalLoadCounter.CategoryName = "Processor";
138 totalLoadCounter.CounterName = "% Processor Time";
139 totalLoadCounter.InstanceName = "_Total";
140 totalLoad = new Sensor("CPU Total", 0, SensorType.Load, this);
142 coreLoadCounters = new PerformanceCounter[
143 coreCount * logicalProcessorsPerCore];
144 for (int i = 0; i < coreLoadCounters.Length; i++) {
145 coreLoadCounters[i] = new PerformanceCounter();
146 coreLoadCounters[i].CategoryName = "Processor";
147 coreLoadCounters[i].CounterName = "% Processor Time";
148 coreLoadCounters[i].InstanceName = i.ToString();
151 coreTemperatures = new Sensor[coreCount];
152 coreLoads = new Sensor[coreCount];
153 for (int i = 0; i < coreTemperatures.Length; i++) {
154 coreTemperatures[i] = new Sensor("Core #" + (i + 1), i, tjMax,
155 SensorType.Temperature, this);
156 coreLoads[i] = new Sensor("Core #" + (i + 1), i + 1,
157 SensorType.Load, this);
167 public string Identifier {
168 get { return "/intelcpu/0"; }
175 public ISensor[] Sensors {
176 get { return active.ToArray(); }
179 public string GetReport() {
180 StringBuilder r = new StringBuilder();
182 r.AppendLine("Intel CPU");
184 r.AppendFormat("Name: {0}{1}", name, Environment.NewLine);
185 r.AppendFormat("Number of cores: {0}{1}", coreCount,
186 Environment.NewLine);
187 r.AppendFormat("Threads per core: {0}{1}", logicalProcessorsPerCore,
188 Environment.NewLine);
189 r.AppendFormat("TjMax: {0}{1}", tjMax, Environment.NewLine);
195 public void Update() {
197 uint eax = 0, edx = 0;
198 for (int i = 0; i < coreTemperatures.Length; i++) {
199 if (WinRing0.RdmsrPx(
200 IA32_THERM_STATUS_MSR, ref eax, ref edx,
201 (UIntPtr)(1 << (int)(logicalProcessorsPerCore * i))))
203 // if reading is valid
204 if ((eax & 0x80000000) != 0) {
205 // get the dist from tjMax from bits 22:16
206 coreTemperatures[i].Value = tjMax - ((eax & 0x007F0000) >> 16);
207 ActivateSensor(coreTemperatures[i]);
209 DeactivateSensor(coreTemperatures[i]);
214 totalLoad.Value = totalLoadCounter.NextValue();
215 ActivateSensor(totalLoad);
217 for (int i = 0; i < coreLoads.Length; i++) {
219 for (int j = 0; j < logicalProcessorsPerCore; j++)
220 value += coreLoadCounters[
221 logicalProcessorsPerCore * i + j].NextValue();
222 value /= logicalProcessorsPerCore;
223 coreLoads[i].Value = value;
224 ActivateSensor(coreLoads[i]);
228 private void ActivateSensor(Sensor sensor) {
229 if (!active.Contains(sensor)) {
231 if (SensorAdded != null)
236 private void DeactivateSensor(Sensor sensor) {
237 if (active.Contains(sensor)) {
238 active.Remove(sensor);
239 if (SensorRemoved != null)
240 SensorRemoved(sensor);
244 public event SensorEventHandler SensorAdded;
245 public event SensorEventHandler SensorRemoved;