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1 | Kernel driver it87 |
2 | ================== | |
3 | ||
4 | Supported chips: | |
5 | * IT8705F | |
6 | Prefix: 'it87' | |
91749996 | 7 | Addresses scanned: from Super I/O config space (8 I/O ports) |
7f15b664 | 8 | Datasheet: Publicly available at the ITE website |
816d8c6a | 9 | http://www.ite.com.tw/product_info/file/pc/IT8705F_V.0.4.1.pdf |
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10 | * IT8712F |
11 | Prefix: 'it8712' | |
8e9afcbb | 12 | Addresses scanned: from Super I/O config space (8 I/O ports) |
7f15b664 | 13 | Datasheet: Publicly available at the ITE website |
0475169c AP |
14 | http://www.ite.com.tw/product_info/file/pc/IT8712F_V0.9.1.pdf |
15 | http://www.ite.com.tw/product_info/file/pc/Errata%20V0.1%20for%20IT8712F%20V0.9.1.pdf | |
16 | http://www.ite.com.tw/product_info/file/pc/IT8712F_V0.9.3.pdf | |
08a8f6e9 | 17 | * IT8716F/IT8726F |
17d648bf JD |
18 | Prefix: 'it8716' |
19 | Addresses scanned: from Super I/O config space (8 I/O ports) | |
20 | Datasheet: Publicly available at the ITE website | |
21 | http://www.ite.com.tw/product_info/file/pc/IT8716F_V0.3.ZIP | |
08a8f6e9 | 22 | http://www.ite.com.tw/product_info/file/pc/IT8726F_V0.3.pdf |
87673dd7 JD |
23 | * IT8718F |
24 | Prefix: 'it8718' | |
25 | Addresses scanned: from Super I/O config space (8 I/O ports) | |
26 | Datasheet: Publicly available at the ITE website | |
27 | http://www.ite.com.tw/product_info/file/pc/IT8718F_V0.2.zip | |
28 | http://www.ite.com.tw/product_info/file/pc/IT8718F_V0%203_(for%20C%20version).zip | |
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29 | * IT8720F |
30 | Prefix: 'it8720' | |
31 | Addresses scanned: from Super I/O config space (8 I/O ports) | |
32 | Datasheet: Not yet publicly available. | |
7f15b664 | 33 | * SiS950 [clone of IT8705F] |
91749996 JD |
34 | Prefix: 'it87' |
35 | Addresses scanned: from Super I/O config space (8 I/O ports) | |
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36 | Datasheet: No longer be available |
37 | ||
b19367c6 | 38 | Authors: |
f1d8e332 | 39 | Christophe Gauthron |
b19367c6 | 40 | Jean Delvare <khali@linux-fr.org> |
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41 | |
42 | ||
43 | Module Parameters | |
44 | ----------------- | |
45 | ||
46 | * update_vbat: int | |
47 | ||
48 | 0 if vbat should report power on value, 1 if vbat should be updated after | |
49 | each read. Default is 0. On some boards the battery voltage is provided | |
50 | by either the battery or the onboard power supply. Only the first reading | |
51 | at power on will be the actual battery voltage (which the chip does | |
52 | automatically). On other boards the battery voltage is always fed to | |
53 | the chip so can be read at any time. Excessive reading may decrease | |
54 | battery life but no information is given in the datasheet. | |
55 | ||
56 | * fix_pwm_polarity int | |
57 | ||
58 | Force PWM polarity to active high (DANGEROUS). Some chips are | |
59 | misconfigured by BIOS - PWM values would be inverted. This option tries | |
60 | to fix this. Please contact your BIOS manufacturer and ask him for fix. | |
61 | ||
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62 | |
63 | Hardware Interfaces | |
64 | ------------------- | |
65 | ||
66 | All the chips suported by this driver are LPC Super-I/O chips, accessed | |
67 | through the LPC bus (ISA-like I/O ports). The IT8712F additionally has an | |
68 | SMBus interface to the hardware monitoring functions. This driver no | |
69 | longer supports this interface though, as it is slower and less reliable | |
70 | than the ISA access, and was only available on a small number of | |
71 | motherboard models. | |
72 | ||
73 | ||
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74 | Description |
75 | ----------- | |
76 | ||
87673dd7 | 77 | This driver implements support for the IT8705F, IT8712F, IT8716F, |
b4da93e4 | 78 | IT8718F, IT8720F, IT8726F and SiS950 chips. |
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79 | |
80 | These chips are 'Super I/O chips', supporting floppy disks, infrared ports, | |
81 | joysticks and other miscellaneous stuff. For hardware monitoring, they | |
82 | include an 'environment controller' with 3 temperature sensors, 3 fan | |
83 | rotation speed sensors, 8 voltage sensors, and associated alarms. | |
84 | ||
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85 | The IT8712F and IT8716F additionally feature VID inputs, used to report |
86 | the Vcore voltage of the processor. The early IT8712F have 5 VID pins, | |
87 | the IT8716F and late IT8712F have 6. They are shared with other functions | |
88 | though, so the functionality may not be available on a given system. | |
17d648bf | 89 | |
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90 | The IT8718F and IT8720F also features VID inputs (up to 8 pins) but the value |
91 | is stored in the Super-I/O configuration space. Due to technical limitations, | |
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92 | this value can currently only be read once at initialization time, so |
93 | the driver won't notice and report changes in the VID value. The two | |
94 | upper VID bits share their pins with voltage inputs (in5 and in6) so you | |
95 | can't have both on a given board. | |
96 | ||
b4da93e4 | 97 | The IT8716F, IT8718F, IT8720F and later IT8712F revisions have support for |
0475169c | 98 | 2 additional fans. The additional fans are supported by the driver. |
17d648bf | 99 | |
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100 | The IT8716F, IT8718F and IT8720F, and late IT8712F and IT8705F also have |
101 | optional 16-bit tachometer counters for fans 1 to 3. This is better (no more | |
102 | fan clock divider mess) but not compatible with the older chips and | |
816d8c6a AP |
103 | revisions. The 16-bit tachometer mode is enabled by the driver when one |
104 | of the above chips is detected. | |
17d648bf | 105 | |
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106 | The IT8726F is just bit enhanced IT8716F with additional hardware |
107 | for AMD power sequencing. Therefore the chip will appear as IT8716F | |
108 | to userspace applications. | |
109 | ||
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110 | Temperatures are measured in degrees Celsius. An alarm is triggered once |
111 | when the Overtemperature Shutdown limit is crossed. | |
112 | ||
113 | Fan rotation speeds are reported in RPM (rotations per minute). An alarm is | |
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114 | triggered if the rotation speed has dropped below a programmable limit. When |
115 | 16-bit tachometer counters aren't used, fan readings can be divided by | |
116 | a programmable divider (1, 2, 4 or 8) to give the readings more range or | |
117 | accuracy. With a divider of 2, the lowest representable value is around | |
118 | 2600 RPM. Not all RPM values can accurately be represented, so some rounding | |
119 | is done. | |
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120 | |
121 | Voltage sensors (also known as IN sensors) report their values in volts. An | |
122 | alarm is triggered if the voltage has crossed a programmable minimum or | |
123 | maximum limit. Note that minimum in this case always means 'closest to | |
124 | zero'; this is important for negative voltage measurements. All voltage | |
125 | inputs can measure voltages between 0 and 4.08 volts, with a resolution of | |
126 | 0.016 volt. The battery voltage in8 does not have limit registers. | |
127 | ||
b4da93e4 | 128 | The VID lines (IT8712F/IT8716F/IT8718F/IT8720F) encode the core voltage value: |
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129 | the voltage level your processor should work with. This is hardcoded by |
130 | the mainboard and/or processor itself. It is a value in volts. | |
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131 | |
132 | If an alarm triggers, it will remain triggered until the hardware register | |
133 | is read at least once. This means that the cause for the alarm may already | |
134 | have disappeared! Note that in the current implementation, all hardware | |
135 | registers are read whenever any data is read (unless it is less than 1.5 | |
136 | seconds since the last update). This means that you can easily miss | |
137 | once-only alarms. | |
138 | ||
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139 | Out-of-limit readings can also result in beeping, if the chip is properly |
140 | wired and configured. Beeping can be enabled or disabled per sensor type | |
141 | (temperatures, voltages and fans.) | |
142 | ||
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143 | The IT87xx only updates its values each 1.5 seconds; reading it more often |
144 | will do no harm, but will return 'old' values. | |
145 | ||
4ed10779 | 146 | To change sensor N to a thermistor, 'echo 4 > tempN_type' where N is 1, 2, |
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147 | or 3. To change sensor N to a thermal diode, 'echo 3 > tempN_type'. |
148 | Give 0 for unused sensor. Any other value is invalid. To configure this at | |
4ed10779 | 149 | startup, consult lm_sensors's /etc/sensors.conf. (4 = thermistor; |
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150 | 3 = thermal diode) |
151 | ||
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152 | |
153 | Fan speed control | |
154 | ----------------- | |
155 | ||
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156 | The fan speed control features are limited to manual PWM mode. Automatic |
157 | "Smart Guardian" mode control handling is not implemented. However | |
158 | if you want to go for "manual mode" just write 1 to pwmN_enable. | |
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159 | |
160 | If you are only able to control the fan speed with very small PWM values, | |
161 | try lowering the PWM base frequency (pwm1_freq). Depending on the fan, | |
162 | it may give you a somewhat greater control range. The same frequency is | |
163 | used to drive all fan outputs, which is why pwm2_freq and pwm3_freq are | |
164 | read-only. |