dme1737 12 KB

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  1. Kernel driver dme1737
  2. =====================
  3. Supported chips:
  4. * SMSC DME1737 and compatibles (like Asus A8000)
  5. Prefix: 'dme1737'
  6. Addresses scanned: I2C 0x2c, 0x2d, 0x2e
  7. Datasheet: Provided by SMSC upon request and under NDA
  8. * SMSC SCH3112, SCH3114, SCH3116
  9. Prefix: 'sch311x'
  10. Addresses scanned: none, address read from Super-I/O config space
  11. Datasheet: Available on the Internet
  12. * SMSC SCH5027
  13. Prefix: 'sch5027'
  14. Addresses scanned: I2C 0x2c, 0x2d, 0x2e
  15. Datasheet: Provided by SMSC upon request and under NDA
  16. * SMSC SCH5127
  17. Prefix: 'sch5127'
  18. Addresses scanned: none, address read from Super-I/O config space
  19. Datasheet: Provided by SMSC upon request and under NDA
  20. Authors:
  21. Juerg Haefliger <juergh@gmail.com>
  22. Module Parameters
  23. -----------------
  24. * force_start: bool Enables the monitoring of voltage, fan and temp inputs
  25. and PWM output control functions. Using this parameter
  26. shouldn't be required since the BIOS usually takes care
  27. of this.
  28. * probe_all_addr: bool Include non-standard LPC addresses 0x162e and 0x164e
  29. when probing for ISA devices. This is required for the
  30. following boards:
  31. - VIA EPIA SN18000
  32. Description
  33. -----------
  34. This driver implements support for the hardware monitoring capabilities of the
  35. SMSC DME1737 and Asus A8000 (which are the same), SMSC SCH5027, SCH311x,
  36. and SCH5127 Super-I/O chips. These chips feature monitoring of 3 temp sensors
  37. temp[1-3] (2 remote diodes and 1 internal), 7 voltages in[0-6] (6 external and
  38. 1 internal) and up to 6 fan speeds fan[1-6]. Additionally, the chips implement
  39. up to 5 PWM outputs pwm[1-3,5-6] for controlling fan speeds both manually and
  40. automatically.
  41. For the DME1737, A8000 and SCH5027, fan[1-2] and pwm[1-2] are always present.
  42. Fan[3-6] and pwm[3,5-6] are optional features and their availability depends on
  43. the configuration of the chip. The driver will detect which features are
  44. present during initialization and create the sysfs attributes accordingly.
  45. For the SCH311x and SCH5127, fan[1-3] and pwm[1-3] are always present and
  46. fan[4-6] and pwm[5-6] don't exist.
  47. The hardware monitoring features of the DME1737, A8000, and SCH5027 are only
  48. accessible via SMBus, while the SCH311x and SCH5127 only provide access via
  49. the ISA bus. The driver will therefore register itself as an I2C client driver
  50. if it detects a DME1737, A8000, or SCH5027 and as a platform driver if it
  51. detects a SCH311x or SCH5127 chip.
  52. Voltage Monitoring
  53. ------------------
  54. The voltage inputs are sampled with 12-bit resolution and have internal
  55. scaling resistors. The values returned by the driver therefore reflect true
  56. millivolts and don't need scaling. The voltage inputs are mapped as follows
  57. (the last column indicates the input ranges):
  58. DME1737, A8000:
  59. in0: +5VTR (+5V standby) 0V - 6.64V
  60. in1: Vccp (processor core) 0V - 3V
  61. in2: VCC (internal +3.3V) 0V - 4.38V
  62. in3: +5V 0V - 6.64V
  63. in4: +12V 0V - 16V
  64. in5: VTR (+3.3V standby) 0V - 4.38V
  65. in6: Vbat (+3.0V) 0V - 4.38V
  66. SCH311x:
  67. in0: +2.5V 0V - 3.32V
  68. in1: Vccp (processor core) 0V - 2V
  69. in2: VCC (internal +3.3V) 0V - 4.38V
  70. in3: +5V 0V - 6.64V
  71. in4: +12V 0V - 16V
  72. in5: VTR (+3.3V standby) 0V - 4.38V
  73. in6: Vbat (+3.0V) 0V - 4.38V
  74. SCH5027:
  75. in0: +5VTR (+5V standby) 0V - 6.64V
  76. in1: Vccp (processor core) 0V - 3V
  77. in2: VCC (internal +3.3V) 0V - 4.38V
  78. in3: V2_IN 0V - 1.5V
  79. in4: V1_IN 0V - 1.5V
  80. in5: VTR (+3.3V standby) 0V - 4.38V
  81. in6: Vbat (+3.0V) 0V - 4.38V
  82. SCH5127:
  83. in0: +2.5 0V - 3.32V
  84. in1: Vccp (processor core) 0V - 3V
  85. in2: VCC (internal +3.3V) 0V - 4.38V
  86. in3: V2_IN 0V - 1.5V
  87. in4: V1_IN 0V - 1.5V
  88. in5: VTR (+3.3V standby) 0V - 4.38V
  89. in6: Vbat (+3.0V) 0V - 4.38V
  90. Each voltage input has associated min and max limits which trigger an alarm
  91. when crossed.
  92. Temperature Monitoring
  93. ----------------------
  94. Temperatures are measured with 12-bit resolution and reported in millidegree
  95. Celsius. The chip also features offsets for all 3 temperature inputs which -
  96. when programmed - get added to the input readings. The chip does all the
  97. scaling by itself and the driver therefore reports true temperatures that don't
  98. need any user-space adjustments. The temperature inputs are mapped as follows
  99. (the last column indicates the input ranges):
  100. temp1: Remote diode 1 (3904 type) temperature -127C - +127C
  101. temp2: DME1737 internal temperature -127C - +127C
  102. temp3: Remote diode 2 (3904 type) temperature -127C - +127C
  103. Each temperature input has associated min and max limits which trigger an alarm
  104. when crossed. Additionally, each temperature input has a fault attribute that
  105. returns 1 when a faulty diode or an unconnected input is detected and 0
  106. otherwise.
  107. Fan Monitoring
  108. --------------
  109. Fan RPMs are measured with 16-bit resolution. The chip provides inputs for 6
  110. fan tachometers. All 6 inputs have an associated min limit which triggers an
  111. alarm when crossed. Fan inputs 1-4 provide type attributes that need to be set
  112. to the number of pulses per fan revolution that the connected tachometer
  113. generates. Supported values are 1, 2, and 4. Fan inputs 5-6 only support fans
  114. that generate 2 pulses per revolution. Fan inputs 5-6 also provide a max
  115. attribute that needs to be set to the maximum attainable RPM (fan at 100% duty-
  116. cycle) of the input. The chip adjusts the sampling rate based on this value.
  117. PWM Output Control
  118. ------------------
  119. This chip features 5 PWM outputs. PWM outputs 1-3 are associated with fan
  120. inputs 1-3 and PWM outputs 5-6 are associated with fan inputs 5-6. PWM outputs
  121. 1-3 can be configured to operate either in manual or automatic mode by setting
  122. the appropriate enable attribute accordingly. PWM outputs 5-6 can only operate
  123. in manual mode, their enable attributes are therefore read-only. When set to
  124. manual mode, the fan speed is set by writing the duty-cycle value to the
  125. appropriate PWM attribute. In automatic mode, the PWM attribute returns the
  126. current duty-cycle as set by the fan controller in the chip. All PWM outputs
  127. support the setting of the output frequency via the freq attribute.
  128. In automatic mode, the chip supports the setting of the PWM ramp rate which
  129. defines how fast the PWM output is adjusting to changes of the associated
  130. temperature input. Associating PWM outputs to temperature inputs is done via
  131. temperature zones. The chip features 3 zones whose assignments to temperature
  132. inputs is static and determined during initialization. These assignments can
  133. be retrieved via the zone[1-3]_auto_channels_temp attributes. Each PWM output
  134. is assigned to one (or hottest of multiple) temperature zone(s) through the
  135. pwm[1-3]_auto_channels_zone attributes. Each PWM output has 3 distinct output
  136. duty-cycles: full, low, and min. Full is internally hard-wired to 255 (100%)
  137. and low and min can be programmed via pwm[1-3]_auto_point1_pwm and
  138. pwm[1-3]_auto_pwm_min, respectively. The thermal thresholds of the zones are
  139. programmed via zone[1-3]_auto_point[1-3]_temp and
  140. zone[1-3]_auto_point1_temp_hyst:
  141. pwm[1-3]_auto_point2_pwm full-speed duty-cycle (255, i.e., 100%)
  142. pwm[1-3]_auto_point1_pwm low-speed duty-cycle
  143. pwm[1-3]_auto_pwm_min min-speed duty-cycle
  144. zone[1-3]_auto_point3_temp full-speed temp (all outputs)
  145. zone[1-3]_auto_point2_temp full-speed temp
  146. zone[1-3]_auto_point1_temp low-speed temp
  147. zone[1-3]_auto_point1_temp_hyst min-speed temp
  148. The chip adjusts the output duty-cycle linearly in the range of auto_point1_pwm
  149. to auto_point2_pwm if the temperature of the associated zone is between
  150. auto_point1_temp and auto_point2_temp. If the temperature drops below the
  151. auto_point1_temp_hyst value, the output duty-cycle is set to the auto_pwm_min
  152. value which only supports two values: 0 or auto_point1_pwm. That means that the
  153. fan either turns completely off or keeps spinning with the low-speed
  154. duty-cycle. If any of the temperatures rise above the auto_point3_temp value,
  155. all PWM outputs are set to 100% duty-cycle.
  156. Following is another representation of how the chip sets the output duty-cycle
  157. based on the temperature of the associated thermal zone:
  158. Duty-Cycle Duty-Cycle
  159. Temperature Rising Temp Falling Temp
  160. ----------- ----------- ------------
  161. full-speed full-speed full-speed
  162. < linearly adjusted duty-cycle >
  163. low-speed low-speed low-speed
  164. min-speed low-speed
  165. min-speed min-speed min-speed
  166. min-speed min-speed
  167. Sysfs Attributes
  168. ----------------
  169. Following is a list of all sysfs attributes that the driver provides, their
  170. permissions and a short description:
  171. Name Perm Description
  172. ---- ---- -----------
  173. cpu0_vid RO CPU core reference voltage in
  174. millivolts.
  175. vrm RW Voltage regulator module version
  176. number.
  177. in[0-6]_input RO Measured voltage in millivolts.
  178. in[0-6]_min RW Low limit for voltage input.
  179. in[0-6]_max RW High limit for voltage input.
  180. in[0-6]_alarm RO Voltage input alarm. Returns 1 if
  181. voltage input is or went outside the
  182. associated min-max range, 0 otherwise.
  183. temp[1-3]_input RO Measured temperature in millidegree
  184. Celsius.
  185. temp[1-3]_min RW Low limit for temp input.
  186. temp[1-3]_max RW High limit for temp input.
  187. temp[1-3]_offset RW Offset for temp input. This value will
  188. be added by the chip to the measured
  189. temperature.
  190. temp[1-3]_alarm RO Alarm for temp input. Returns 1 if temp
  191. input is or went outside the associated
  192. min-max range, 0 otherwise.
  193. temp[1-3]_fault RO Temp input fault. Returns 1 if the chip
  194. detects a faulty thermal diode or an
  195. unconnected temp input, 0 otherwise.
  196. zone[1-3]_auto_channels_temp RO Temperature zone to temperature input
  197. mapping. This attribute is a bitfield
  198. and supports the following values:
  199. 1: temp1
  200. 2: temp2
  201. 4: temp3
  202. zone[1-3]_auto_point1_temp_hyst RW Auto PWM temp point1 hysteresis. The
  203. output of the corresponding PWM is set
  204. to the pwm_auto_min value if the temp
  205. falls below the auto_point1_temp_hyst
  206. value.
  207. zone[1-3]_auto_point[1-3]_temp RW Auto PWM temp points. Auto_point1 is
  208. the low-speed temp, auto_point2 is the
  209. full-speed temp, and auto_point3 is the
  210. temp at which all PWM outputs are set
  211. to full-speed (100% duty-cycle).
  212. fan[1-6]_input RO Measured fan speed in RPM.
  213. fan[1-6]_min RW Low limit for fan input.
  214. fan[1-6]_alarm RO Alarm for fan input. Returns 1 if fan
  215. input is or went below the associated
  216. min value, 0 otherwise.
  217. fan[1-4]_type RW Type of attached fan. Expressed in
  218. number of pulses per revolution that
  219. the fan generates. Supported values are
  220. 1, 2, and 4.
  221. fan[5-6]_max RW Max attainable RPM at 100% duty-cycle.
  222. Required for chip to adjust the
  223. sampling rate accordingly.
  224. pmw[1-3,5-6] RO/RW Duty-cycle of PWM output. Supported
  225. values are 0-255 (0%-100%). Only
  226. writeable if the associated PWM is in
  227. manual mode.
  228. pwm[1-3]_enable RW Enable of PWM outputs 1-3. Supported
  229. values are:
  230. 0: turned off (output @ 100%)
  231. 1: manual mode
  232. 2: automatic mode
  233. pwm[5-6]_enable RO Enable of PWM outputs 5-6. Always
  234. returns 1 since these 2 outputs are
  235. hard-wired to manual mode.
  236. pmw[1-3,5-6]_freq RW Frequency of PWM output. Supported
  237. values are in the range 11Hz-30000Hz
  238. (default is 25000Hz).
  239. pmw[1-3]_ramp_rate RW Ramp rate of PWM output. Determines how
  240. fast the PWM duty-cycle will change
  241. when the PWM is in automatic mode.
  242. Expressed in ms per PWM step. Supported
  243. values are in the range 0ms-206ms
  244. (default is 0, which means the duty-
  245. cycle changes instantly).
  246. pwm[1-3]_auto_channels_zone RW PWM output to temperature zone mapping.
  247. This attribute is a bitfield and
  248. supports the following values:
  249. 1: zone1
  250. 2: zone2
  251. 4: zone3
  252. 6: highest of zone[2-3]
  253. 7: highest of zone[1-3]
  254. pwm[1-3]_auto_pwm_min RW Auto PWM min pwm. Minimum PWM duty-
  255. cycle. Supported values are 0 or
  256. auto_point1_pwm.
  257. pwm[1-3]_auto_point1_pwm RW Auto PWM pwm point. Auto_point1 is the
  258. low-speed duty-cycle.
  259. pwm[1-3]_auto_point2_pwm RO Auto PWM pwm point. Auto_point2 is the
  260. full-speed duty-cycle which is hard-
  261. wired to 255 (100% duty-cycle).
  262. Chip Differences
  263. ----------------
  264. Feature dme1737 sch311x sch5027 sch5127
  265. -------------------------------------------------------
  266. temp[1-3]_offset yes yes
  267. vid yes
  268. zone3 yes yes yes
  269. zone[1-3]_hyst yes yes
  270. pwm min/off yes yes
  271. fan3 opt yes opt yes
  272. pwm3 opt yes opt yes
  273. fan4 opt opt
  274. fan5 opt opt
  275. pwm5 opt opt
  276. fan6 opt opt
  277. pwm6 opt opt