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Hans de Goede3b02d332009-01-07 16:37:31 +01001Kernel driver f71882fg
2======================
3
4Supported chips:
Hans de Goede09475d32009-06-15 18:39:52 +02005 * Fintek F71858FG
6 Prefix: 'f71858fg'
Hans de Goede3b02d332009-01-07 16:37:31 +01007 Addresses scanned: none, address read from Super I/O config space
8 Datasheet: Available from the Fintek website
9 * Fintek F71862FG and F71863FG
10 Prefix: 'f71862fg'
11 Addresses scanned: none, address read from Super I/O config space
12 Datasheet: Available from the Fintek website
Hans de Goedec11bb992011-03-09 20:57:15 +010013 * Fintek F71869F and F71869E
14 Prefix: 'f71869'
15 Addresses scanned: none, address read from Super I/O config space
16 Datasheet: Available from the Fintek website
Hans de Goede09475d32009-06-15 18:39:52 +020017 * Fintek F71882FG and F71883FG
18 Prefix: 'f71882fg'
19 Addresses scanned: none, address read from Super I/O config space
20 Datasheet: Available from the Fintek website
Hans de Goede76698962009-12-09 20:36:01 +010021 * Fintek F71889FG
22 Prefix: 'f71889fg'
23 Addresses scanned: none, address read from Super I/O config space
Hans de Goede3cad4022011-03-09 20:57:14 +010024 Datasheet: Available from the Fintek website
25 * Fintek F71889ED
26 Prefix: 'f71889ed'
27 Addresses scanned: none, address read from Super I/O config space
Hans de Goede76698962009-12-09 20:36:01 +010028 Datasheet: Should become available on the Fintek website soon
Hans de Goede3b02d332009-01-07 16:37:31 +010029 * Fintek F8000
30 Prefix: 'f8000'
31 Addresses scanned: none, address read from Super I/O config space
32 Datasheet: Not public
33
34Author: Hans de Goede <hdegoede@redhat.com>
35
36
37Description
38-----------
39
Hans de Goede3cad4022011-03-09 20:57:14 +010040Fintek F718xx/F8000 Super I/O chips include complete hardware monitoring
41capabilities. They can monitor up to 9 voltages, 4 fans and 3 temperature
42sensors.
Hans de Goede3b02d332009-01-07 16:37:31 +010043
44These chips also have fan controlling features, using either DC or PWM, in
45three different modes (one manual, two automatic).
46
47The driver assumes that no more than one chip is present, which seems
48reasonable.
49
50
51Monitoring
52----------
53
54The Voltage, Fan and Temperature Monitoring uses the standard sysfs
55interface as documented in sysfs-interface, without any exceptions.
56
57
58Fan Control
59-----------
60
61Both PWM (pulse-width modulation) and DC fan speed control methods are
62supported. The right one to use depends on external circuitry on the
63motherboard, so the driver assumes that the BIOS set the method
64properly.
65
Hans de Goede76698962009-12-09 20:36:01 +010066Note that the lowest numbered temperature zone trip point corresponds to
67to the border between the highest and one but highest temperature zones, and
68vica versa. So the temperature zone trip points 1-4 (or 1-2) go from high temp
69to low temp! This is how things are implemented in the IC, and the driver
70mimicks this.
71
Hans de Goede3b02d332009-01-07 16:37:31 +010072There are 2 modes to specify the speed of the fan, PWM duty cycle (or DC
73voltage) mode, where 0-100% duty cycle (0-100% of 12V) is specified. And RPM
74mode where the actual RPM of the fan (as measured) is controlled and the speed
75gets specified as 0-100% of the fan#_full_speed file.
76
77Since both modes work in a 0-100% (mapped to 0-255) scale, there isn't a
78whole lot of a difference when modifying fan control settings. The only
79important difference is that in RPM mode the 0-100% controls the fan speed
80between 0-100% of fan#_full_speed. It is assumed that if the BIOS programs
81RPM mode, it will also set fan#_full_speed properly, if it does not then
82fan control will not work properly, unless you set a sane fan#_full_speed
83value yourself.
84
85Switching between these modes requires re-initializing a whole bunch of
86registers, so the mode which the BIOS has set is kept. The mode is
87printed when loading the driver.
88
89Three different fan control modes are supported; the mode number is written
90to the pwm#_enable file. Note that not all modes are supported on all
Hans de Goede09475d32009-06-15 18:39:52 +020091chips, and some modes may only be available in RPM / PWM mode.
Hans de Goede3b02d332009-01-07 16:37:31 +010092Writing an unsupported mode will result in an invalid parameter error.
93
94* 1: Manual mode
95 You ask for a specific PWM duty cycle / DC voltage or a specific % of
96 fan#_full_speed by writing to the pwm# file. This mode is only
Hans de Goede09475d32009-06-15 18:39:52 +020097 available on the F71858FG / F8000 if the fan channel is in RPM mode.
Hans de Goede3b02d332009-01-07 16:37:31 +010098
99* 2: Normal auto mode
100 You can define a number of temperature/fan speed trip points, which % the
101 fan should run at at this temp and which temp a fan should follow using the
102 standard sysfs interface. The number and type of trip points is chip
103 depended, see which files are available in sysfs.
104 Fan/PWM channel 3 of the F8000 is always in this mode!
105
106* 3: Thermostat mode (Only available on the F8000 when in duty cycle mode)
107 The fan speed is regulated to keep the temp the fan is mapped to between
108 temp#_auto_point2_temp and temp#_auto_point3_temp.
109
Hans de Goede3cad4022011-03-09 20:57:14 +0100110All of the automatic modes require that pwm1 corresponds to fan1, pwm2 to
Hans de Goede3b02d332009-01-07 16:37:31 +0100111fan2 and pwm3 to fan3.