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1 #
2 # Generic thermal sysfs drivers configuration
3 #
4
5 menuconfig THERMAL
6 tristate "Generic Thermal sysfs driver"
7 help
8 Generic Thermal Sysfs driver offers a generic mechanism for
9 thermal management. Usually it's made up of one or more thermal
10 zone and cooling device.
11 Each thermal zone contains its own temperature, trip points,
12 cooling devices.
13 All platforms with ACPI thermal support can use this driver.
14 If you want this support, you should say Y or M here.
15
16 if THERMAL
17
18 config THERMAL_HWMON
19 bool
20 prompt "Expose thermal sensors as hwmon device"
21 depends on HWMON=y || HWMON=THERMAL
22 default y
23 help
24 In case a sensor is registered with the thermal
25 framework, this option will also register it
26 as a hwmon. The sensor will then have the common
27 hwmon sysfs interface.
28
29 Say 'Y' here if you want all thermal sensors to
30 have hwmon sysfs interface too.
31
32 config THERMAL_OF
33 bool
34 prompt "APIs to parse thermal data out of device tree"
35 depends on OF
36 default y
37 help
38 This options provides helpers to add the support to
39 read and parse thermal data definitions out of the
40 device tree blob.
41
42 Say 'Y' here if you need to build thermal infrastructure
43 based on device tree.
44
45 config THERMAL_WRITABLE_TRIPS
46 bool "Enable writable trip points"
47 help
48 This option allows the system integrator to choose whether
49 trip temperatures can be changed from userspace. The
50 writable trips need to be specified when setting up the
51 thermal zone but the choice here takes precedence.
52
53 Say 'Y' here if you would like to allow userspace tools to
54 change trip temperatures.
55
56 choice
57 prompt "Default Thermal governor"
58 default THERMAL_DEFAULT_GOV_STEP_WISE
59 help
60 This option sets which thermal governor shall be loaded at
61 startup. If in doubt, select 'step_wise'.
62
63 config THERMAL_DEFAULT_GOV_STEP_WISE
64 bool "step_wise"
65 select THERMAL_GOV_STEP_WISE
66 help
67 Use the step_wise governor as default. This throttles the
68 devices one step at a time.
69
70 config THERMAL_DEFAULT_GOV_FAIR_SHARE
71 bool "fair_share"
72 select THERMAL_GOV_FAIR_SHARE
73 help
74 Use the fair_share governor as default. This throttles the
75 devices based on their 'contribution' to a zone. The
76 contribution should be provided through platform data.
77
78 config THERMAL_DEFAULT_GOV_USER_SPACE
79 bool "user_space"
80 select THERMAL_GOV_USER_SPACE
81 help
82 Select this if you want to let the user space manage the
83 platform thermals.
84
85 config THERMAL_DEFAULT_GOV_POWER_ALLOCATOR
86 bool "power_allocator"
87 select THERMAL_GOV_POWER_ALLOCATOR
88 help
89 Select this if you want to control temperature based on
90 system and device power allocation. This governor can only
91 operate on cooling devices that implement the power API.
92
93 endchoice
94
95 config THERMAL_GOV_FAIR_SHARE
96 bool "Fair-share thermal governor"
97 help
98 Enable this to manage platform thermals using fair-share governor.
99
100 config THERMAL_GOV_STEP_WISE
101 bool "Step_wise thermal governor"
102 help
103 Enable this to manage platform thermals using a simple linear
104 governor.
105
106 config THERMAL_GOV_BANG_BANG
107 bool "Bang Bang thermal governor"
108 default n
109 help
110 Enable this to manage platform thermals using bang bang governor.
111
112 Say 'Y' here if you want to use two point temperature regulation
113 used for fans without throttling. Some fan drivers depend on this
114 governor to be enabled (e.g. acerhdf).
115
116 config THERMAL_GOV_USER_SPACE
117 bool "User_space thermal governor"
118 help
119 Enable this to let the user space manage the platform thermals.
120
121 config THERMAL_GOV_POWER_ALLOCATOR
122 bool "Power allocator thermal governor"
123 help
124 Enable this to manage platform thermals by dynamically
125 allocating and limiting power to devices.
126
127 config CPU_THERMAL
128 bool "generic cpu cooling support"
129 depends on CPU_FREQ
130 depends on THERMAL_OF
131 help
132 This implements the generic cpu cooling mechanism through frequency
133 reduction. An ACPI version of this already exists
134 (drivers/acpi/processor_thermal.c).
135 This will be useful for platforms using the generic thermal interface
136 and not the ACPI interface.
137
138 If you want this support, you should say Y here.
139
140 config CLOCK_THERMAL
141 bool "Generic clock cooling support"
142 depends on COMMON_CLK
143 depends on PM_OPP
144 help
145 This entry implements the generic clock cooling mechanism through
146 frequency clipping. Typically used to cool off co-processors. The
147 device that is configured to use this cooling mechanism will be
148 controlled to reduce clock frequency whenever temperature is high.
149
150 config DEVFREQ_THERMAL
151 bool "Generic device cooling support"
152 depends on PM_DEVFREQ
153 depends on PM_OPP
154 help
155 This implements the generic devfreq cooling mechanism through
156 frequency reduction for devices using devfreq.
157
158 This will throttle the device by limiting the maximum allowed DVFS
159 frequency corresponding to the cooling level.
160
161 In order to use the power extensions of the cooling device,
162 devfreq should use the simple_ondemand governor.
163
164 If you want this support, you should say Y here.
165
166 config THERMAL_EMULATION
167 bool "Thermal emulation mode support"
168 help
169 Enable this option to make a emul_temp sysfs node in thermal zone
170 directory to support temperature emulation. With emulation sysfs node,
171 user can manually input temperature and test the different trip
172 threshold behaviour for simulation purpose.
173
174 WARNING: Be careful while enabling this option on production systems,
175 because userland can easily disable the thermal policy by simply
176 flooding this sysfs node with low temperature values.
177
178 config HISI_THERMAL
179 tristate "Hisilicon thermal driver"
180 depends on ARCH_HISI || COMPILE_TEST
181 depends on HAS_IOMEM
182 depends on OF
183 default y
184 help
185 Enable this to plug hisilicon's thermal sensor driver into the Linux
186 thermal framework. cpufreq is used as the cooling device to throttle
187 CPUs when the passive trip is crossed.
188
189 config IMX_THERMAL
190 tristate "Temperature sensor driver for Freescale i.MX SoCs"
191 depends on (ARCH_MXC && CPU_THERMAL) || COMPILE_TEST
192 depends on MFD_SYSCON
193 depends on OF
194 help
195 Support for Temperature Monitor (TEMPMON) found on Freescale i.MX SoCs.
196 It supports one critical trip point and one passive trip point. The
197 cpufreq is used as the cooling device to throttle CPUs when the
198 passive trip is crossed.
199
200 config MAX77620_THERMAL
201 tristate "Temperature sensor driver for Maxim MAX77620 PMIC"
202 depends on MFD_MAX77620
203 depends on OF
204 help
205 Support for die junction temperature warning alarm for Maxim
206 Semiconductor PMIC MAX77620 device. Device generates two alarm
207 interrupts when PMIC die temperature cross the threshold of
208 120 degC and 140 degC.
209
210 config QORIQ_THERMAL
211 tristate "QorIQ Thermal Monitoring Unit"
212 depends on THERMAL_OF
213 depends on HAS_IOMEM
214 help
215 Support for Thermal Monitoring Unit (TMU) found on QorIQ platforms.
216 It supports one critical trip point and one passive trip point. The
217 cpufreq is used as the cooling device to throttle CPUs when the
218 passive trip is crossed.
219
220 config SPEAR_THERMAL
221 tristate "SPEAr thermal sensor driver"
222 depends on PLAT_SPEAR || COMPILE_TEST
223 depends on HAS_IOMEM
224 depends on OF
225 help
226 Enable this to plug the SPEAr thermal sensor driver into the Linux
227 thermal framework.
228
229 config ROCKCHIP_THERMAL
230 tristate "Rockchip thermal driver"
231 depends on ARCH_ROCKCHIP || COMPILE_TEST
232 depends on RESET_CONTROLLER
233 depends on HAS_IOMEM
234 help
235 Rockchip thermal driver provides support for Temperature sensor
236 ADC (TS-ADC) found on Rockchip SoCs. It supports one critical
237 trip point. Cpufreq is used as the cooling device and will throttle
238 CPUs when the Temperature crosses the passive trip point.
239
240 config RCAR_THERMAL
241 tristate "Renesas R-Car thermal driver"
242 depends on ARCH_RENESAS || COMPILE_TEST
243 depends on HAS_IOMEM
244 help
245 Enable this to plug the R-Car thermal sensor driver into the Linux
246 thermal framework.
247
248 config KIRKWOOD_THERMAL
249 tristate "Temperature sensor on Marvell Kirkwood SoCs"
250 depends on MACH_KIRKWOOD || COMPILE_TEST
251 depends on HAS_IOMEM
252 depends on OF
253 help
254 Support for the Kirkwood thermal sensor driver into the Linux thermal
255 framework. Only kirkwood 88F6282 and 88F6283 have this sensor.
256
257 config DOVE_THERMAL
258 tristate "Temperature sensor on Marvell Dove SoCs"
259 depends on ARCH_DOVE || MACH_DOVE || COMPILE_TEST
260 depends on HAS_IOMEM
261 depends on OF
262 help
263 Support for the Dove thermal sensor driver in the Linux thermal
264 framework.
265
266 config DB8500_THERMAL
267 tristate "DB8500 thermal management"
268 depends on MFD_DB8500_PRCMU
269 default y
270 help
271 Adds DB8500 thermal management implementation according to the thermal
272 management framework. A thermal zone with several trip points will be
273 created. Cooling devices can be bound to the trip points to cool this
274 thermal zone if trip points reached.
275
276 config ARMADA_THERMAL
277 tristate "Armada 370/XP thermal management"
278 depends on ARCH_MVEBU || COMPILE_TEST
279 depends on HAS_IOMEM
280 depends on OF
281 help
282 Enable this option if you want to have support for thermal management
283 controller present in Armada 370 and Armada XP SoC.
284
285 config DB8500_CPUFREQ_COOLING
286 tristate "DB8500 cpufreq cooling"
287 depends on ARCH_U8500 || COMPILE_TEST
288 depends on HAS_IOMEM
289 depends on CPU_THERMAL
290 default y
291 help
292 Adds DB8500 cpufreq cooling devices, and these cooling devices can be
293 bound to thermal zone trip points. When a trip point reached, the
294 bound cpufreq cooling device turns active to set CPU frequency low to
295 cool down the CPU.
296
297 config INTEL_POWERCLAMP
298 tristate "Intel PowerClamp idle injection driver"
299 depends on THERMAL
300 depends on X86
301 depends on CPU_SUP_INTEL
302 help
303 Enable this to enable Intel PowerClamp idle injection driver. This
304 enforce idle time which results in more package C-state residency. The
305 user interface is exposed via generic thermal framework.
306
307 config X86_PKG_TEMP_THERMAL
308 tristate "X86 package temperature thermal driver"
309 depends on X86_THERMAL_VECTOR
310 select THERMAL_GOV_USER_SPACE
311 select THERMAL_WRITABLE_TRIPS
312 default m
313 help
314 Enable this to register CPU digital sensor for package temperature as
315 thermal zone. Each package will have its own thermal zone. There are
316 two trip points which can be set by user to get notifications via thermal
317 notification methods.
318
319 config INTEL_SOC_DTS_IOSF_CORE
320 tristate
321 depends on X86
322 select IOSF_MBI
323 help
324 This is becoming a common feature for Intel SoCs to expose the additional
325 digital temperature sensors (DTSs) using side band interface (IOSF). This
326 implements the common set of helper functions to register, get temperature
327 and get/set thresholds on DTSs.
328
329 config INTEL_SOC_DTS_THERMAL
330 tristate "Intel SoCs DTS thermal driver"
331 depends on X86
332 select INTEL_SOC_DTS_IOSF_CORE
333 select THERMAL_WRITABLE_TRIPS
334 help
335 Enable this to register Intel SoCs (e.g. Bay Trail) platform digital
336 temperature sensor (DTS). These SoCs have two additional DTSs in
337 addition to DTSs on CPU cores. Each DTS will be registered as a
338 thermal zone. There are two trip points. One of the trip point can
339 be set by user mode programs to get notifications via Linux thermal
340 notification methods.The other trip is a critical trip point, which
341 was set by the driver based on the TJ MAX temperature.
342
343 config INTEL_QUARK_DTS_THERMAL
344 tristate "Intel Quark DTS thermal driver"
345 depends on X86_INTEL_QUARK
346 help
347 Enable this to register Intel Quark SoC (e.g. X1000) platform digital
348 temperature sensor (DTS). For X1000 SoC, it has one on-die DTS.
349 The DTS will be registered as a thermal zone. There are two trip points:
350 hot & critical. The critical trip point default value is set by
351 underlying BIOS/Firmware.
352
353 menu "ACPI INT340X thermal drivers"
354 source drivers/thermal/int340x_thermal/Kconfig
355 endmenu
356
357 config INTEL_BXT_PMIC_THERMAL
358 tristate "Intel Broxton PMIC thermal driver"
359 depends on X86 && INTEL_SOC_PMIC && REGMAP
360 help
361 Select this driver for Intel Broxton PMIC with ADC channels monitoring
362 system temperature measurements and alerts.
363 This driver is used for monitoring the ADC channels of PMIC and handles
364 the alert trip point interrupts and notifies the thermal framework with
365 the trip point and temperature details of the zone.
366
367 config INTEL_PCH_THERMAL
368 tristate "Intel PCH Thermal Reporting Driver"
369 depends on X86 && PCI
370 help
371 Enable this to support thermal reporting on certain intel PCHs.
372 Thermal reporting device will provide temperature reading,
373 programmable trip points and other information.
374
375 config MTK_THERMAL
376 tristate "Temperature sensor driver for mediatek SoCs"
377 depends on ARCH_MEDIATEK || COMPILE_TEST
378 depends on HAS_IOMEM
379 depends on NVMEM || NVMEM=n
380 depends on RESET_CONTROLLER
381 default y
382 help
383 Enable this option if you want to have support for thermal management
384 controller present in Mediatek SoCs
385
386 menu "Texas Instruments thermal drivers"
387 depends on ARCH_HAS_BANDGAP || COMPILE_TEST
388 depends on HAS_IOMEM
389 source "drivers/thermal/ti-soc-thermal/Kconfig"
390 endmenu
391
392 menu "Samsung thermal drivers"
393 depends on ARCH_EXYNOS || COMPILE_TEST
394 source "drivers/thermal/samsung/Kconfig"
395 endmenu
396
397 menu "STMicroelectronics thermal drivers"
398 depends on ARCH_STI && OF
399 source "drivers/thermal/st/Kconfig"
400 endmenu
401
402 config TANGO_THERMAL
403 tristate "Tango thermal management"
404 depends on ARCH_TANGO || COMPILE_TEST
405 help
406 Enable the Tango thermal driver, which supports the primitive
407 temperature sensor embedded in Tango chips since the SMP8758.
408 This sensor only generates a 1-bit signal to indicate whether
409 the die temperature exceeds a programmable threshold.
410
411 source "drivers/thermal/tegra/Kconfig"
412
413 config QCOM_SPMI_TEMP_ALARM
414 tristate "Qualcomm SPMI PMIC Temperature Alarm"
415 depends on OF && SPMI && IIO
416 select REGMAP_SPMI
417 help
418 This enables a thermal sysfs driver for Qualcomm plug-and-play (QPNP)
419 PMIC devices. It shows up in sysfs as a thermal sensor with multiple
420 trip points. The temperature reported by the thermal sensor reflects the
421 real time die temperature if an ADC is present or an estimate of the
422 temperature based upon the over temperature stage value.
423
424 config GENERIC_ADC_THERMAL
425 tristate "Generic ADC based thermal sensor"
426 depends on IIO
427 help
428 This enabled a thermal sysfs driver for the temperature sensor
429 which is connected to the General Purpose ADC. The ADC channel
430 is read via IIO framework and the channel information is provided
431 to this driver. This driver reports the temperature by reading ADC
432 channel and converts it to temperature based on lookup table.
433
434 menu "Qualcomm thermal drivers"
435 depends on (ARCH_QCOM && OF) || COMPILE_TEST
436 source "drivers/thermal/qcom/Kconfig"
437 endmenu
438
439 endif