xref: /linux-6.15/drivers/mfd/Kconfig (revision 98cf2d50)
1# SPDX-License-Identifier: GPL-2.0-only
2#
3# Multifunction miscellaneous devices
4#
5
6if HAS_IOMEM
7menu "Multifunction device drivers"
8
9config MFD_CORE
10	tristate
11	select IRQ_DOMAIN
12	default n
13
14config MFD_CS5535
15	tristate "AMD CS5535 and CS5536 southbridge core functions"
16	select MFD_CORE
17	depends on PCI && (X86_32 || (X86 && COMPILE_TEST))
18	depends on !UML
19	help
20	  This is the core driver for CS5535/CS5536 MFD functions.  This is
21	  necessary for using the board's GPIO and MFGPT functionality.
22
23config MFD_ADP5585
24	tristate "Analog Devices ADP5585 keypad decoder and I/O expander driver"
25	select MFD_CORE
26	select REGMAP_I2C
27	depends on I2C
28	depends on OF
29	help
30	  Say yes here to add support for the Analog Devices ADP5585 GPIO
31	  expander, PWM and keypad controller. This includes the I2C driver and
32	  the core APIs _only_, you have to select individual components like
33	  the GPIO and PWM functions under the corresponding menus.
34
35config MFD_ALTERA_A10SR
36	bool "Altera Arria10 DevKit System Resource chip"
37	depends on ARCH_INTEL_SOCFPGA && SPI_MASTER=y && OF
38	select REGMAP_SPI
39	select MFD_CORE
40	help
41	  Support for the Altera Arria10 DevKit MAX5 System Resource chip
42	  using the SPI interface. This driver provides common support for
43	  accessing the external gpio extender (LEDs & buttons) and
44	  power supply alarms (hwmon).
45
46config MFD_ALTERA_SYSMGR
47	bool "Altera SOCFPGA System Manager"
48	depends on ARCH_INTEL_SOCFPGA && OF
49	select MFD_SYSCON
50	help
51	  Select this to get System Manager support for all Altera branded
52	  SOCFPGAs. The SOCFPGA System Manager handles all SOCFPGAs by
53	  using regmap_mmio accesses for ARM32 parts and SMC calls to
54	  EL3 for ARM64 parts.
55
56config MFD_ACT8945A
57	tristate "Active-semi ACT8945A"
58	select MFD_CORE
59	select REGMAP_I2C
60	depends on I2C && OF
61	help
62	  Support for the ACT8945A PMIC from Active-semi. This device
63	  features three step-down DC/DC converters and four low-dropout
64	  linear regulators, along with a complete ActivePath battery
65	  charger.
66
67config MFD_SUN4I_GPADC
68	tristate "Allwinner sunxi platforms' GPADC MFD driver"
69	select MFD_CORE
70	select REGMAP_MMIO
71	select REGMAP_IRQ
72	depends on ARCH_SUNXI || COMPILE_TEST
73	depends on !TOUCHSCREEN_SUN4I
74	help
75	  Select this to get support for Allwinner SoCs (A10, A13 and A31) ADC.
76	  This driver will only map the hardware interrupt and registers, you
77	  have to select individual drivers based on this MFD to be able to use
78	  the ADC or the thermal sensor. This will try to probe the ADC driver
79	  sun4i-gpadc-iio and the hwmon driver iio_hwmon.
80
81	  To compile this driver as a module, choose M here: the module will be
82	  called sun4i-gpadc.
83
84config MFD_AS3711
85	bool "AMS AS3711"
86	select MFD_CORE
87	select REGMAP_I2C
88	select REGMAP_IRQ
89	depends on I2C=y
90	help
91	  Support for the AS3711 PMIC from AMS
92
93config MFD_SMPRO
94	tristate "Ampere Computing SMpro core driver"
95	depends on I2C
96	select MFD_CORE
97	select REGMAP_I2C
98	help
99	  Say yes here to enable SMpro driver support for Ampere's Altra
100	  processor family.
101
102	  Ampere's Altra SMpro exposes an I2C regmap interface that can
103	  be accessed by child devices.
104
105config MFD_AS3722
106	tristate "ams AS3722 Power Management IC"
107	select MFD_CORE
108	select REGMAP_I2C
109	select REGMAP_IRQ
110	depends on I2C=y && OF
111	help
112	  The ams AS3722 is a compact system PMU suitable for mobile phones,
113	  tablets etc. It has 4 DC/DC step-down regulators, 3 DC/DC step-down
114	  controllers, 11 LDOs, RTC, automatic battery, temperature and
115	  over current monitoring, GPIOs, ADC and a watchdog.
116
117config PMIC_ADP5520
118	bool "Analog Devices ADP5520/01 MFD PMIC Core Support"
119	depends on I2C=y
120	help
121	  Say yes here to add support for Analog Devices ADP5520 and ADP5501,
122	  Multifunction Power Management IC. This includes
123	  the I2C driver and the core APIs _only_, you have to select
124	  individual components like LCD backlight, LEDs, GPIOs and Kepad
125	  under the corresponding menus.
126
127config MFD_AAT2870_CORE
128	bool "AnalogicTech AAT2870"
129	select MFD_CORE
130	depends on I2C=y
131	depends on GPIOLIB || COMPILE_TEST
132	help
133	  If you say yes here you get support for the AAT2870.
134	  This driver provides common support for accessing the device,
135	  additional drivers must be enabled in order to use the
136	  functionality of the device.
137
138config MFD_AT91_USART
139	tristate "AT91 USART Driver"
140	select MFD_CORE
141	depends on ARCH_AT91 || ARCH_LAN969X || COMPILE_TEST
142	help
143	  Select this to get support for AT91 USART IP. This is a wrapper
144	  over at91-usart-serial driver and usart-spi-driver. Only one function
145	  can be used at a time. The choice is done at boot time by the probe
146	  function of this MFD driver according to a device tree property.
147
148config MFD_ATMEL_FLEXCOM
149	tristate "Atmel Flexcom (Flexible Serial Communication Unit)"
150	select MFD_CORE
151	depends on OF
152	help
153	  Select this to get support for Atmel Flexcom. This is a wrapper
154	  which embeds a SPI controller, a I2C controller and a USART. Only
155	  one function can be used at a time. The choice is done at boot time
156	  by the probe function of this MFD driver according to a device tree
157	  property.
158
159config MFD_ATMEL_HLCDC
160	tristate "Atmel HLCDC (High-end LCD Controller)"
161	select MFD_CORE
162	select REGMAP_MMIO
163	depends on OF
164	help
165	  If you say yes here you get support for the HLCDC block.
166	  This driver provides common support for accessing the device,
167	  additional drivers must be enabled in order to use the
168	  functionality of the device.
169
170config MFD_ATMEL_SMC
171	bool
172	select MFD_SYSCON
173
174config MFD_BCM590XX
175	tristate "Broadcom BCM590xx PMUs"
176	select MFD_CORE
177	select REGMAP_I2C
178	depends on I2C
179	help
180	  Support for the BCM590xx PMUs from Broadcom
181
182config MFD_BD9571MWV
183	tristate "ROHM BD9571MWV PMIC"
184	select MFD_CORE
185	select REGMAP_I2C
186	select REGMAP_IRQ
187	depends on I2C
188	help
189	  Support for the ROHM BD9571MWV PMIC, which contains single
190	  voltage regulator, voltage sampling units, GPIO block and
191	  watchdog block.
192
193	  This driver can also be built as a module. If so, the module
194	  will be called bd9571mwv.
195
196config MFD_AC100
197	tristate "X-Powers AC100"
198	select MFD_CORE
199	depends on SUNXI_RSB
200	help
201	  If you say Y here you get support for the X-Powers AC100 audio codec
202	  IC.
203	  This driver include only the core APIs. You have to select individual
204	  components like codecs or RTC under the corresponding menus.
205
206config MFD_AXP20X
207	tristate
208	select MFD_CORE
209	select REGMAP_IRQ
210
211config MFD_AXP20X_I2C
212	tristate "X-Powers AXP series PMICs with I2C"
213	select MFD_AXP20X
214	select REGMAP_I2C
215	depends on I2C
216	help
217	  If you say Y here you get support for the X-Powers AXP series power
218	  management ICs (PMICs) controlled with I2C.
219	  This driver include only the core APIs. You have to select individual
220	  components like regulators or the PEK (Power Enable Key) under the
221	  corresponding menus.
222
223	  Note on x86 this provides an ACPI OpRegion, so this must be 'y'
224	  (builtin) and not a module, as the OpRegion must be available as
225	  soon as possible. For the same reason the I2C bus driver options
226	  I2C_DESIGNWARE_PLATFORM and I2C_DESIGNWARE_BAYTRAIL must be 'y' too.
227
228config MFD_AXP20X_RSB
229	tristate "X-Powers AXP series PMICs with RSB"
230	select MFD_AXP20X
231	depends on SUNXI_RSB
232	help
233	  If you say Y here you get support for the X-Powers AXP series power
234	  management ICs (PMICs) controlled with RSB.
235	  This driver include only the core APIs. You have to select individual
236	  components like regulators or the PEK (Power Enable Key) under the
237	  corresponding menus.
238
239config MFD_CGBC
240	tristate "Congatec Board Controller"
241	select MFD_CORE
242	depends on X86
243	help
244	  This is the core driver of the Board Controller found on some Congatec
245	  SMARC modules. The Board Controller provides functions like watchdog,
246	  I2C busses, and GPIO controller.
247
248	  To compile this driver as a module, choose M here: the module will be
249	  called cgbc-core.
250
251config MFD_CROS_EC_DEV
252	tristate "ChromeOS Embedded Controller multifunction device"
253	select MFD_CORE
254	depends on CROS_EC
255	default CROS_EC
256	help
257	  Select this to get support for ChromeOS Embedded Controller
258	  sub-devices. This driver will instantiate additional drivers such
259	  as RTC, USBPD, etc. but you have to select the individual drivers.
260
261	  To compile this driver as a module, choose M here: the module will be
262	  called cros-ec-dev.
263
264config MFD_CS42L43
265	tristate
266	select MFD_CORE
267	select REGMAP
268	select REGMAP_IRQ
269
270config MFD_CS42L43_I2C
271	tristate "Cirrus Logic CS42L43 (I2C)"
272	depends on I2C
273	select REGMAP_I2C
274	select MFD_CS42L43
275	help
276	  Select this to support the Cirrus Logic CS42L43 PC CODEC with
277	  headphone and class D speaker drivers over I2C.
278
279config MFD_CS42L43_SDW
280	tristate "Cirrus Logic CS42L43 (SoundWire)"
281	depends on SOUNDWIRE
282	select REGMAP_SOUNDWIRE
283	select MFD_CS42L43
284	help
285	  Select this to support the Cirrus Logic CS42L43 PC CODEC with
286	  headphone and class D speaker drivers over SoundWire.
287
288config MFD_MADERA
289	tristate "Cirrus Logic Madera codecs"
290	select MFD_CORE
291	select REGMAP
292	select REGMAP_IRQ
293	select MADERA_IRQ
294	select PINCTRL
295	select PINCTRL_MADERA
296	help
297	  Support for the Cirrus Logic Madera platform audio codecs
298
299config MFD_MADERA_I2C
300	tristate "Cirrus Logic Madera codecs with I2C"
301	depends on MFD_MADERA
302	depends on I2C
303	select REGMAP_I2C
304	help
305	  Support for the Cirrus Logic Madera platform audio SoC
306	  core functionality controlled via I2C.
307
308config MFD_MADERA_SPI
309	tristate "Cirrus Logic Madera codecs with SPI"
310	depends on MFD_MADERA
311	depends on SPI_MASTER
312	select REGMAP_SPI
313	help
314	  Support for the Cirrus Logic Madera platform audio SoC
315	  core functionality controlled via SPI.
316
317config MFD_MAX5970
318	tristate "Maxim 5970/5978 power switch and monitor"
319	depends on I2C && OF
320	select MFD_SIMPLE_MFD_I2C
321	help
322	  This driver controls a Maxim 5970/5978 switch via I2C bus.
323	  The MAX5970/5978 is a smart switch with no output regulation, but
324	  fault protection and voltage and current monitoring capabilities.
325	  Also it supports upto 4 indication leds.
326
327config MFD_CS47L15
328	bool "Cirrus Logic CS47L15"
329	select PINCTRL_CS47L15
330	depends on MFD_MADERA
331	help
332	  Support for Cirrus Logic CS47L15 Smart Codec
333
334config MFD_CS47L35
335	bool "Cirrus Logic CS47L35"
336	select PINCTRL_CS47L35
337	depends on MFD_MADERA
338	help
339	  Support for Cirrus Logic CS47L35 Smart Codec
340
341config MFD_CS47L85
342	bool "Cirrus Logic CS47L85"
343	select PINCTRL_CS47L85
344	depends on MFD_MADERA
345	help
346	  Support for Cirrus Logic CS47L85 Smart Codec
347
348config MFD_CS47L90
349	bool "Cirrus Logic CS47L90/91"
350	select PINCTRL_CS47L90
351	depends on MFD_MADERA
352	help
353	  Support for Cirrus Logic CS47L90 and CS47L91 Smart Codecs
354
355config MFD_CS47L92
356	bool "Cirrus Logic CS47L92/93"
357	select PINCTRL_CS47L92
358	depends on MFD_MADERA
359	help
360	  Support for Cirrus Logic CS42L92, CS47L92 and CS47L93 Smart Codecs
361
362config PMIC_DA903X
363	bool "Dialog Semiconductor DA9030/DA9034 PMIC Support"
364	depends on I2C=y
365	help
366	  Say yes here to add support for Dialog Semiconductor DA9030 (a.k.a
367	  ARAVA) and DA9034 (a.k.a MICCO), these are Power Management IC
368	  usually found on PXA processors-based platforms. This includes
369	  the I2C driver and the core APIs _only_, you have to select
370	  individual components like LCD backlight, voltage regulators,
371	  LEDs and battery-charger under the corresponding menus.
372
373config PMIC_DA9052
374	bool
375	select MFD_CORE
376
377config MFD_DA9052_SPI
378	bool "Dialog Semiconductor DA9052/53 PMIC variants with SPI"
379	select REGMAP_SPI
380	select REGMAP_IRQ
381	select PMIC_DA9052
382	depends on SPI_MASTER=y
383	help
384	  Support for the Dialog Semiconductor DA9052 PMIC
385	  when controlled using SPI. This driver provides common support
386	  for accessing the device, additional drivers must be enabled in
387	  order to use the functionality of the device.
388
389config MFD_DA9052_I2C
390	bool "Dialog Semiconductor DA9052/53 PMIC variants with I2C"
391	select REGMAP_I2C
392	select REGMAP_IRQ
393	select PMIC_DA9052
394	depends on I2C=y
395	help
396	  Support for the Dialog Semiconductor DA9052 PMIC
397	  when controlled using I2C. This driver provides common support
398	  for accessing the device, additional drivers must be enabled in
399	  order to use the functionality of the device.
400
401config MFD_DA9055
402	bool "Dialog Semiconductor DA9055 PMIC Support"
403	select REGMAP_I2C
404	select REGMAP_IRQ
405	select MFD_CORE
406	depends on I2C=y
407	help
408	  Say yes here for support of Dialog Semiconductor DA9055. This is
409	  a Power Management IC. This driver provides common support for
410	  accessing the device as well as the I2C interface to the chip itself.
411	  Additional drivers must be enabled in order to use the functionality
412	  of the device.
413
414config MFD_DA9062
415	tristate "Dialog Semiconductor DA9062/61 PMIC Support"
416	select MFD_CORE
417	select REGMAP_I2C
418	select REGMAP_IRQ
419	depends on I2C
420	help
421	  Say yes here for support for the Dialog Semiconductor DA9061 and
422	  DA9062 PMICs.
423	  This includes the I2C driver and core APIs.
424	  Additional drivers must be enabled in order to use the functionality
425	  of the device.
426
427config MFD_DA9063
428	tristate "Dialog Semiconductor DA9063 PMIC Support"
429	select MFD_CORE
430	select REGMAP_I2C
431	select REGMAP_IRQ
432	depends on I2C
433	help
434	  Say yes here for support for the Dialog Semiconductor DA9063 PMIC.
435	  This includes the I2C driver and core APIs.
436	  Additional drivers must be enabled in order to use the functionality
437	  of the device.
438
439config MFD_DA9150
440	tristate "Dialog Semiconductor DA9150 Charger Fuel-Gauge chip"
441	depends on I2C
442	select MFD_CORE
443	select REGMAP_I2C
444	select REGMAP_IRQ
445	help
446	  This adds support for the DA9150 integrated charger and fuel-gauge
447	  chip. This driver provides common support for accessing the device.
448	  Additional drivers must be enabled in order to use the specific
449	  features of the device.
450
451config MFD_DLN2
452	tristate "Diolan DLN2 support"
453	select MFD_CORE
454	depends on USB
455	help
456	  This adds support for Diolan USB-I2C/SPI/GPIO Master Adapter
457	  DLN-2. Additional drivers such as I2C_DLN2, GPIO_DLN2,
458	  etc. must be enabled in order to use the functionality of
459	  the device.
460
461config MFD_ENE_KB3930
462	tristate "ENE KB3930 Embedded Controller support"
463	depends on I2C
464	depends on MACH_MMP3_DT || COMPILE_TEST
465	select MFD_CORE
466	help
467	  This adds support for the power-off functionality and access to
468	  the registers that control LEDS and USB port power on ENE KB3930
469	  Embedded Controller. To use the LED functionality LEDS_ARIEL must
470	  be enabled.
471
472config MFD_EXYNOS_LPASS
473	tristate "Samsung Exynos SoC Low Power Audio Subsystem"
474	depends on ARCH_EXYNOS || COMPILE_TEST
475	select MFD_CORE
476	select REGMAP_MMIO
477	help
478	  Select this option to enable support for Samsung Exynos Low Power
479	  Audio Subsystem present on some of Samsung Exynos
480	  SoCs (e.g. Exynos5433).
481	  Choose Y here only if you build for such Samsung SoC.
482
483config MFD_GATEWORKS_GSC
484	tristate "Gateworks System Controller"
485	depends on I2C && OF
486	select MFD_CORE
487	select REGMAP_I2C
488	select REGMAP_IRQ
489	help
490	  Enable support for the Gateworks System Controller (GSC) found
491	  on Gateworks Single Board Computers supporting system functions
492	  such as push-button monitor, multiple ADC's for voltage and
493	  temperature monitoring, fan controller and watchdog monitor.
494	  This driver provides common support for accessing the device.
495	  Additional drivers must be enabled in order to use the
496	  functionality of the device.
497
498config MFD_MC13XXX
499	tristate
500	depends on SPI_MASTER || I2C
501	select MFD_CORE
502	select REGMAP_IRQ
503	help
504	  Enable support for the Freescale MC13783 and MC13892 PMICs.
505	  This driver provides common support for accessing the device,
506	  additional drivers must be enabled in order to use the
507	  functionality of the device.
508
509config MFD_MC13XXX_SPI
510	tristate "Freescale MC13783 and MC13892 SPI interface"
511	depends on SPI_MASTER
512	select REGMAP_SPI
513	select MFD_MC13XXX
514	help
515	  Select this if your MC13xxx is connected via an SPI bus.
516
517config MFD_MC13XXX_I2C
518	tristate "Freescale MC13892 I2C interface"
519	depends on I2C
520	select REGMAP_I2C
521	select MFD_MC13XXX
522	help
523	  Select this if your MC13xxx is connected via an I2C bus.
524
525config MFD_MP2629
526	tristate "Monolithic Power Systems MP2629 ADC and Battery charger"
527	depends on I2C
528	select REGMAP_I2C
529	select MFD_CORE
530	help
531	  Select this option to enable support for Monolithic Power Systems
532	  battery charger. This provides ADC, thermal and battery charger power
533	  management functions.
534
535config MFD_MXS_LRADC
536	tristate "Freescale i.MX23/i.MX28 LRADC"
537	depends on ARCH_MXS || COMPILE_TEST
538	select MFD_CORE
539	select STMP_DEVICE
540	help
541	  Say yes here to build support for the Low Resolution
542	  Analog-to-Digital Converter (LRADC) found on the i.MX23 and i.MX28
543	  processors. This driver provides common support for accessing the
544	  device, additional drivers must be enabled in order to use the
545	  functionality of the device:
546		mxs-lradc-adc for ADC readings
547		mxs-lradc-ts  for touchscreen support
548
549	  This driver can also be built as a module. If so, the module will be
550	  called mxs-lradc.
551
552config MFD_MX25_TSADC
553	tristate "Freescale i.MX25 integrated Touchscreen and ADC unit"
554	select REGMAP_MMIO
555	depends on (SOC_IMX25 && OF) || COMPILE_TEST
556	help
557	  Enable support for the integrated Touchscreen and ADC unit of the
558	  i.MX25 processors. They consist of a conversion queue for general
559	  purpose ADC and a queue for Touchscreens.
560
561config MFD_HI6421_PMIC
562	tristate "HiSilicon Hi6421 PMU/Codec IC"
563	depends on OF
564	select MFD_CORE
565	select REGMAP_MMIO
566	help
567	  Add support for HiSilicon Hi6421 PMIC. Hi6421 includes multi-
568	  functions, such as regulators, RTC, codec, Coulomb counter, etc.
569	  This driver includes core APIs _only_. You have to select
570	  individual components like voltage regulators under corresponding
571	  menus in order to enable them.
572	  We communicate with the Hi6421 via memory-mapped I/O.
573
574config MFD_HI6421_SPMI
575	tristate "HiSilicon Hi6421v600 SPMI PMU/Codec IC"
576	depends on OF
577	depends on SPMI
578	select MFD_CORE
579	select REGMAP_SPMI
580	help
581	  Add support for HiSilicon Hi6421v600 SPMI PMIC. Hi6421 includes
582	  multi-functions, such as regulators, RTC, codec, Coulomb counter,
583	  etc.
584
585	  This driver includes core APIs _only_. You have to select
586	  individual components like voltage regulators under corresponding
587	  menus in order to enable them.
588	  We communicate with the Hi6421v600 via a SPMI bus.
589
590config MFD_HI655X_PMIC
591	tristate "HiSilicon Hi655X series PMU/Codec IC"
592	depends on ARCH_HISI || COMPILE_TEST
593	depends on OF
594	select MFD_CORE
595	select REGMAP_MMIO
596	select REGMAP_IRQ
597	help
598	  Select this option to enable Hisilicon hi655x series pmic driver.
599
600config MFD_INTEL_QUARK_I2C_GPIO
601	tristate "Intel Quark MFD I2C GPIO"
602	depends on PCI
603	depends on X86
604	depends on COMMON_CLK
605	select MFD_CORE
606	help
607	  This MFD provides support for I2C and GPIO that exist only
608	  in a single PCI device. It splits the 2 IO devices to
609	  their respective IO driver.
610	  The GPIO exports a total amount of 8 interrupt-capable GPIOs.
611
612config LPC_ICH
613	tristate "Intel ICH LPC"
614	depends on PCI
615	select MFD_CORE
616	select P2SB if X86
617	help
618	  The LPC bridge function of the Intel ICH provides support for
619	  many functional units. This driver provides needed support for
620	  other drivers to control these functions, currently GPIO and
621	  watchdog.
622
623config LPC_SCH
624	tristate "Intel SCH LPC"
625	depends on PCI
626	select MFD_CORE
627	help
628	  LPC bridge function of the Intel SCH provides support for
629	  System Management Bus and General Purpose I/O.
630
631config INTEL_SOC_PMIC
632	bool "Support for Crystal Cove PMIC"
633	depends on HAS_IOMEM && I2C=y && GPIOLIB && COMMON_CLK
634	depends on (X86 && ACPI) || COMPILE_TEST
635	depends on I2C_DESIGNWARE_PLATFORM=y || COMPILE_TEST
636	select MFD_CORE
637	select REGMAP_I2C
638	select REGMAP_IRQ
639	help
640	  Select this option to enable support for Crystal Cove PMIC
641	  on some Intel SoC systems. The PMIC provides ADC, GPIO,
642	  thermal, charger and related power management functions
643	  on these systems.
644
645	  This option is a bool as it provides an ACPI OpRegion which must be
646	  available before any devices using it are probed. This option also
647	  causes the designware-i2c driver to be builtin for the same reason.
648
649config INTEL_SOC_PMIC_BXTWC
650	tristate "Support for Intel Broxton Whiskey Cove PMIC"
651	depends on MFD_INTEL_PMC_BXT
652	select MFD_CORE
653	select REGMAP_IRQ
654	help
655	  Select this option to enable support for Whiskey Cove PMIC
656	  on Intel Broxton systems. The PMIC provides ADC, GPIO,
657	  thermal, charger and related power management functions
658	  on these systems.
659
660config INTEL_SOC_PMIC_CHTWC
661	bool "Support for Intel Cherry Trail Whiskey Cove PMIC"
662	depends on ACPI && HAS_IOMEM && I2C=y && COMMON_CLK
663	depends on X86 || COMPILE_TEST
664	depends on I2C_DESIGNWARE_PLATFORM=y
665	select MFD_CORE
666	select REGMAP_I2C
667	select REGMAP_IRQ
668	help
669	  Select this option to enable support for the Intel Cherry Trail
670	  Whiskey Cove PMIC found on some Intel Cherry Trail systems.
671
672	  This option is a bool as it provides an ACPI OpRegion which must be
673	  available before any devices using it are probed. This option also
674	  causes the designware-i2c driver to be builtin for the same reason.
675
676config INTEL_SOC_PMIC_CHTDC_TI
677	tristate "Support for Intel Cherry Trail Dollar Cove TI PMIC"
678	depends on GPIOLIB
679	depends on I2C=y && I2C_DESIGNWARE_PLATFORM=y
680	depends on ACPI
681	depends on X86
682	select MFD_CORE
683	select REGMAP_I2C
684	select REGMAP_IRQ
685	help
686	  Select this option for supporting Dollar Cove (TI version) PMIC
687	  device that is found on some Intel Cherry Trail systems.
688
689	  This option is a bool as it provides an ACPI OpRegion which must be
690	  available before any devices using it are probed. This option also
691	  needs the designware-i2c driver to be builtin for the same reason.
692
693config INTEL_SOC_PMIC_MRFLD
694	tristate "Support for Intel Merrifield Basin Cove PMIC"
695	depends on GPIOLIB
696	depends on ACPI
697	depends on INTEL_SCU
698	select MFD_CORE
699	select REGMAP_IRQ
700	help
701	  Select this option for supporting Basin Cove PMIC device
702	  that is found on Intel Merrifield systems.
703
704config MFD_INTEL_LPSS
705	tristate
706	select COMMON_CLK
707	select MFD_CORE
708
709config MFD_INTEL_LPSS_ACPI
710	tristate "Intel Low Power Subsystem support in ACPI mode"
711	select MFD_INTEL_LPSS
712	depends on X86 && ACPI
713	help
714	  This driver supports Intel Low Power Subsystem (LPSS) devices such as
715	  I2C, SPI and HS-UART starting from Intel Sunrisepoint (Intel Skylake
716	  PCH) in ACPI mode.
717
718config MFD_INTEL_LPSS_PCI
719	tristate "Intel Low Power Subsystem support in PCI mode"
720	select MFD_INTEL_LPSS
721	depends on X86 && PCI
722	help
723	  This driver supports Intel Low Power Subsystem (LPSS) devices such as
724	  I2C, SPI and HS-UART starting from Intel Sunrisepoint (Intel Skylake
725	  PCH) in PCI mode.
726
727config MFD_INTEL_PMC_BXT
728	tristate "Intel PMC Driver for Broxton"
729	depends on X86
730	depends on X86_PLATFORM_DEVICES
731	depends on ACPI
732	select INTEL_SCU_IPC
733	select MFD_CORE
734	help
735	  This driver provides support for the PMC (Power Management
736	  Controller) on Intel Broxton and Apollo Lake. The PMC is a
737	  multi-function device that exposes IPC, General Control
738	  Register and P-unit access. In addition this creates devices
739	  for iTCO watchdog and telemetry that are part of the PMC.
740
741config MFD_IPAQ_MICRO
742	bool "Atmel Micro ASIC (iPAQ h3100/h3600/h3700) Support"
743	depends on SA1100_H3600
744	select MFD_CORE
745	help
746	  Select this to get support for the Microcontroller found in
747	  the Compaq iPAQ handheld computers. This is an Atmel
748	  AT90LS8535 microcontroller flashed with a special iPAQ
749	  firmware using the custom protocol implemented in this driver.
750
751config MFD_IQS62X
752	tristate "Azoteq IQS620A/621/622/624/625 core support"
753	depends on I2C
754	select MFD_CORE
755	select REGMAP_I2C
756	help
757	  Say Y here if you want to build core support for the Azoteq IQS620A,
758	  IQS621, IQS622, IQS624 and IQS625 multi-function sensors. Additional
759	  options must be selected to enable device-specific functions.
760
761	  To compile this driver as a module, choose M here: the module will
762	  be called iqs62x.
763
764config MFD_JANZ_CMODIO
765	tristate "Janz CMOD-IO PCI MODULbus Carrier Board"
766	select MFD_CORE
767	depends on PCI
768	help
769	  This is the core driver for the Janz CMOD-IO PCI MODULbus
770	  carrier board. This device is a PCI to MODULbus bridge which may
771	  host many different types of MODULbus daughterboards, including
772	  CAN and GPIO controllers.
773
774config MFD_KEMPLD
775	tristate "Kontron module PLD device"
776	select MFD_CORE
777	help
778	  This is the core driver for the PLD (Programmable Logic Device) found
779	  on some Kontron ETX and nearly all COMexpress (ETXexpress) modules as
780	  well as on some other Kontron products. The PLD device may provide
781	  functions like watchdog, GPIO, UART and I2C bus.
782
783	  This driver can also be built as a module. If so, the module
784	  will be called kempld-core.
785
786config MFD_88PM800
787	tristate "Marvell 88PM800"
788	depends on I2C
789	select REGMAP_I2C
790	select REGMAP_IRQ
791	select MFD_CORE
792	help
793	  This supports for Marvell 88PM800 Power Management IC.
794	  This includes the I2C driver and the core APIs _only_, you have to
795	  select individual components like voltage regulators, RTC and
796	  battery-charger under the corresponding menus.
797
798config MFD_88PM805
799	tristate "Marvell 88PM805"
800	depends on I2C
801	select REGMAP_I2C
802	select REGMAP_IRQ
803	select MFD_CORE
804	help
805	  This supports for Marvell 88PM805 Power Management IC. This includes
806	  the I2C driver and the core APIs _only_, you have to select individual
807	  components like codec device, headset/Mic device under the
808	  corresponding menus.
809
810config MFD_88PM860X
811	bool "Marvell 88PM8606/88PM8607"
812	depends on I2C=y
813	select REGMAP_I2C
814	select MFD_CORE
815	help
816	  This supports for Marvell 88PM8606/88PM8607 Power Management IC.
817	  This includes the I2C driver and the core APIs _only_, you have to
818	  select individual components like voltage regulators, RTC and
819	  battery-charger under the corresponding menus.
820
821config MFD_88PM886_PMIC
822	bool "Marvell 88PM886 PMIC"
823	depends on I2C=y
824	depends on OF
825	select REGMAP_I2C
826	select REGMAP_IRQ
827	select MFD_CORE
828	help
829	  This enables support for Marvell 88PM886 Power Management IC.
830	  This includes the I2C driver and the core APIs _only_, you have to
831	  select individual components like onkey under the corresponding menus.
832
833config MFD_MAX14577
834	tristate "Maxim Semiconductor MAX14577/77836 MUIC + Charger Support"
835	depends on I2C
836	select MFD_CORE
837	select REGMAP_I2C
838	select REGMAP_IRQ
839	select IRQ_DOMAIN
840	help
841	  Say yes here to add support for Maxim Semiconductor MAX14577 and
842	  MAX77836 Micro-USB ICs with battery charger.
843	  This driver provides common support for accessing the device;
844	  additional drivers must be enabled in order to use the functionality
845	  of the device.
846
847config MFD_MAX77541
848	tristate "Analog Devices MAX77541/77540 PMIC Support"
849	depends on I2C=y
850	select MFD_CORE
851	select REGMAP_I2C
852	select REGMAP_IRQ
853	help
854	  Say yes here to add support for Analog Devices MAX77541 and
855	  MAX77540 Power Management ICs. This driver provides
856	  common support for accessing the device; additional drivers
857	  must be enabled in order to use the functionality of the device.
858	  There are regulators and adc.
859
860config MFD_MAX77620
861	tristate "Maxim Semiconductor MAX77620 and MAX20024 PMIC Support"
862	depends on I2C=y
863	depends on OF
864	select MFD_CORE
865	select REGMAP_I2C
866	select REGMAP_IRQ
867	select IRQ_DOMAIN
868	help
869	  Say yes here to add support for Maxim Semiconductor MAX77620 and
870	  MAX20024 which are Power Management IC with General purpose pins,
871	  RTC, regulators, clock generator, watchdog etc. This driver
872	  provides common support for accessing the device; additional drivers
873	  must be enabled in order to use the functionality of the device.
874
875config MFD_MAX77650
876	tristate "Maxim MAX77650/77651 PMIC Support"
877	depends on I2C
878	depends on OF
879	select MFD_CORE
880	select REGMAP_I2C
881	select REGMAP_IRQ
882	help
883	  Say Y here to add support for Maxim Semiconductor MAX77650 and
884	  MAX77651 Power Management ICs. This is the core multifunction
885	  driver for interacting with the device. The module name is
886	  'max77650'. Additional drivers can be enabled in order to use
887	  the following functionalities of the device: GPIO, regulator,
888	  charger, LED, onkey.
889
890config MFD_MAX77686
891	tristate "Maxim Semiconductor MAX77686/802 PMIC Support"
892	depends on I2C
893	depends on OF
894	select MFD_CORE
895	select REGMAP_I2C
896	select REGMAP_IRQ
897	select IRQ_DOMAIN
898	help
899	  Say yes here to add support for Maxim Semiconductor MAX77686 and
900	  MAX77802 which are Power Management IC with an RTC on chip.
901	  This driver provides common support for accessing the device;
902	  additional drivers must be enabled in order to use the functionality
903	  of the device.
904
905config MFD_MAX77693
906	tristate "Maxim Semiconductor MAX77693 PMIC Support"
907	depends on I2C
908	select MFD_CORE
909	select REGMAP_I2C
910	select REGMAP_IRQ
911	help
912	  Say yes here to add support for Maxim Semiconductor MAX77693.
913	  This is a companion Power Management IC with Flash, Haptic, Charger,
914	  and MUIC(Micro USB Interface Controller) controls on chip.
915	  This driver provides common support for accessing the device;
916	  additional drivers must be enabled in order to use the functionality
917	  of the device.
918
919config MFD_MAX77705
920	tristate "Maxim MAX77705 PMIC Support"
921	depends on I2C
922	select MFD_CORE
923	select MFD_SIMPLE_MFD_I2C
924	help
925	  Say yes here to add support for Maxim Integrated MAX77705 PMIC.
926	  This is a Power Management IC with Charger, safe LDOs, Flash, Haptic
927	  and MUIC controls on chip.
928	  This driver provides common support for accessing the device;
929	  additional drivers must be enabled in order to use the functionality
930	  of the device.
931
932config MFD_MAX77714
933	tristate "Maxim Semiconductor MAX77714 PMIC Support"
934	depends on I2C
935	depends on OF
936	select MFD_CORE
937	select REGMAP_I2C
938	help
939	  Say yes here to add support for Maxim Semiconductor MAX77714.
940	  This is a Power Management IC with 4 buck regulators, 9
941	  low-dropout regulators, 8 GPIOs, RTC, watchdog etc. This driver
942	  provides common support for accessing the device; additional
943	  drivers must be enabled in order to use each functionality of the
944	  device.
945
946config MFD_MAX77843
947	bool "Maxim Semiconductor MAX77843 PMIC Support"
948	depends on I2C=y
949	select MFD_CORE
950	select REGMAP_I2C
951	select REGMAP_IRQ
952	help
953	  Say yes here to add support for Maxim Semiconductor MAX77843.
954	  This is companion Power Management IC with LEDs, Haptic, Charger,
955	  Fuel Gauge, MUIC(Micro USB Interface Controller) controls on chip.
956	  This driver provides common support for accessing the device;
957	  additional drivers must be enabled in order to use the functionality
958	  of the device.
959
960config MFD_MAX8907
961	tristate "Maxim Semiconductor MAX8907 PMIC Support"
962	select MFD_CORE
963	depends on I2C
964	select REGMAP_I2C
965	select REGMAP_IRQ
966	help
967	  Say yes here to add support for Maxim Semiconductor MAX8907. This is
968	  a Power Management IC. This driver provides common support for
969	  accessing the device; additional drivers must be enabled in order
970	  to use the functionality of the device.
971
972config MFD_MAX8925
973	bool "Maxim Semiconductor MAX8925 PMIC Support"
974	depends on I2C=y
975	select MFD_CORE
976	help
977	  Say yes here to add support for Maxim Semiconductor MAX8925. This is
978	  a Power Management IC. This driver provides common support for
979	  accessing the device, additional drivers must be enabled in order
980	  to use the functionality of the device.
981
982config MFD_MAX8997
983	bool "Maxim Semiconductor MAX8997/8966 PMIC Support"
984	depends on I2C=y
985	select MFD_CORE
986	select IRQ_DOMAIN
987	help
988	  Say yes here to add support for Maxim Semiconductor MAX8997/8966.
989	  This is a Power Management IC with RTC, Flash, Fuel Gauge, Haptic,
990	  MUIC controls on chip.
991	  This driver provides common support for accessing the device;
992	  additional drivers must be enabled in order to use the functionality
993	  of the device.
994
995config MFD_MAX8998
996	bool "Maxim Semiconductor MAX8998/National LP3974 PMIC Support"
997	depends on I2C=y
998	select MFD_CORE
999	select IRQ_DOMAIN
1000	help
1001	  Say yes here to add support for Maxim Semiconductor MAX8998 and
1002	  National Semiconductor LP3974. This is a Power Management IC.
1003	  This driver provides common support for accessing the device,
1004	  additional drivers must be enabled in order to use the functionality
1005	  of the device.
1006
1007config MFD_MT6360
1008	tristate "Mediatek MT6360 SubPMIC"
1009	select MFD_CORE
1010	select REGMAP_I2C
1011	select REGMAP_IRQ
1012	select CRC8
1013	depends on I2C
1014	help
1015	  Say Y here to enable MT6360 PMU/PMIC/LDO functional support.
1016	  PMU part includes Charger, Flashlight, RGB LED
1017	  PMIC part includes 2-channel BUCKs and 2-channel LDOs
1018	  LDO part includes 4-channel LDOs
1019
1020config MFD_MT6370
1021	tristate "MediaTek MT6370 SubPMIC"
1022	select MFD_CORE
1023	select REGMAP_I2C
1024	select REGMAP_IRQ
1025	depends on I2C
1026	help
1027	  Say Y here to enable MT6370 SubPMIC functional support.
1028	  It consists of a single cell battery charger with ADC monitoring, RGB
1029	  LEDs, dual channel flashlight, WLED backlight driver, display bias
1030	  voltage supply, one general purpose LDO, and the USB Type-C & PD
1031	  controller complies with the latest USB Type-C and PD standards.
1032
1033	  This driver can also be built as a module. If so, the module
1034	  will be called "mt6370".
1035
1036config MFD_MT6397
1037	tristate "MediaTek MT6397 PMIC Support"
1038	select MFD_CORE
1039	select IRQ_DOMAIN
1040	help
1041	  Say yes here to add support for MediaTek MT6397 PMIC. This is
1042	  a Power Management IC. This driver provides common support for
1043	  accessing the device; additional drivers must be enabled in order
1044	  to use the functionality of the device.
1045
1046config MFD_MENF21BMC
1047	tristate "MEN 14F021P00 Board Management Controller Support"
1048	depends on I2C
1049	select MFD_CORE
1050	help
1051	  Say yes here to add support for the MEN 14F021P00 BMC
1052	  which is a Board Management Controller connected to the I2C bus.
1053	  The device supports multiple sub-devices like LED, HWMON and WDT.
1054	  This driver provides common support for accessing the devices;
1055	  additional drivers must be enabled in order to use the
1056	  functionality of the BMC device.
1057
1058	  This driver can also be built as a module. If so the module
1059	  will be called menf21bmc.
1060
1061config MFD_OCELOT
1062	tristate "Microsemi Ocelot External Control Support"
1063	depends on SPI_MASTER
1064	select MFD_CORE
1065	select REGMAP_SPI
1066	help
1067	  Ocelot is a family of networking chips that support multiple ethernet
1068	  and fibre interfaces. In addition to networking, they contain several
1069	  other functions, including pinctrl, MDIO, and communication with
1070	  external chips. While some chips have an internal processor capable of
1071	  running an OS, others don't. All chips can be controlled externally
1072	  through different interfaces, including SPI, I2C, and PCIe.
1073
1074	  Say yes here to add support for Ocelot chips (VSC7511, VSC7512,
1075	  VSC7513, VSC7514) controlled externally.
1076
1077	  To compile this driver as a module, choose M here: the module will be
1078	  called ocelot-soc.
1079
1080	  If unsure, say N.
1081
1082config EZX_PCAP
1083	bool "Motorola EZXPCAP Support"
1084	depends on SPI_MASTER
1085	help
1086	  This enables the PCAP ASIC present on EZX Phones. This is
1087	  needed for MMC, TouchScreen, Sound, USB, etc..
1088
1089config MFD_CPCAP
1090	tristate "Support for Motorola CPCAP"
1091	depends on SPI
1092	depends on OF
1093	select MFD_CORE
1094	select REGMAP_SPI
1095	select REGMAP_IRQ
1096	help
1097	  Say yes here if you want to include driver for CPCAP.
1098	  It is used on many Motorola phones and tablets as a PMIC.
1099	  At least Motorola Droid 4 is known to use CPCAP.
1100
1101config MFD_VIPERBOARD
1102	tristate "Nano River Technologies Viperboard"
1103	select MFD_CORE
1104	depends on USB
1105	default n
1106	help
1107	  Say yes here if you want support for Nano River Technologies
1108	  Viperboard.
1109	  There are mfd cell drivers available for i2c master, adc and
1110	  both gpios found on the board. The spi part does not yet
1111	  have a driver.
1112	  You need to select the mfd cell drivers separately.
1113	  The drivers do not support all features the board exposes.
1114
1115config MFD_NTXEC
1116	tristate "Netronix embedded controller (EC)"
1117	depends on OF
1118	depends on I2C
1119	select REGMAP_I2C
1120	select MFD_CORE
1121	help
1122	  Say yes here if you want to support the embedded controller found in
1123	  certain e-book readers designed by the original design manufacturer
1124	  Netronix.
1125
1126config MFD_RETU
1127	tristate "Nokia Retu and Tahvo multi-function device"
1128	select MFD_CORE
1129	depends on I2C
1130	select REGMAP_IRQ
1131	help
1132	  Retu and Tahvo are a multi-function devices found on Nokia
1133	  Internet Tablets (770, N800 and N810).
1134
1135config MFD_PCF50633
1136	tristate "NXP PCF50633"
1137	depends on I2C
1138	select REGMAP_I2C
1139	help
1140	  Say yes here if you have NXP PCF50633 chip on your board.
1141	  This core driver provides register access and IRQ handling
1142	  facilities, and registers devices for the various functions
1143	  so that function-specific drivers can bind to them.
1144
1145config PCF50633_ADC
1146	tristate "NXP PCF50633 ADC"
1147	depends on MFD_PCF50633
1148	help
1149	  Say yes here if you want to include support for ADC in the
1150	  NXP PCF50633 chip.
1151
1152config PCF50633_GPIO
1153	tristate "NXP PCF50633 GPIO"
1154	depends on MFD_PCF50633
1155	help
1156	  Say yes here if you want to include support GPIO for pins on
1157	  the PCF50633 chip.
1158
1159config MFD_PM8XXX
1160	tristate "Qualcomm PM8xxx PMIC chips driver"
1161	depends on ARM || HEXAGON || COMPILE_TEST
1162	select IRQ_DOMAIN_HIERARCHY
1163	select MFD_CORE
1164	select REGMAP
1165	help
1166	  If you say yes to this option, support will be included for the
1167	  built-in PM8xxx PMIC chips.
1168
1169	  This is required if your board has a PM8xxx and uses its features,
1170	  such as: MPPs, GPIOs, regulators, interrupts, and PWM.
1171
1172	  Say M here if you want to include support for PM8xxx chips as a
1173	  module. This will build a module called "pm8xxx-core".
1174
1175config MFD_QCOM_RPM
1176	tristate "Qualcomm Resource Power Manager (RPM)"
1177	depends on ARCH_QCOM && OF
1178	help
1179	  If you say yes to this option, support will be included for the
1180	  Resource Power Manager system found in the Qualcomm 8660, 8960 and
1181	  8064 based devices.
1182
1183	  This is required to access many regulators, clocks and bus
1184	  frequencies controlled by the RPM on these devices.
1185
1186	  Say M here if you want to include support for the Qualcomm RPM as a
1187	  module. This will build a module called "qcom_rpm".
1188
1189config MFD_SPMI_PMIC
1190	tristate "Qualcomm SPMI PMICs"
1191	depends on ARCH_QCOM || COMPILE_TEST
1192	depends on OF
1193	depends on SPMI
1194	select REGMAP_SPMI
1195	help
1196	  This enables support for the Qualcomm SPMI PMICs.
1197	  These PMICs are currently used with the Snapdragon 800 series of
1198	  SoCs.  Note, that this will only be useful paired with descriptions
1199	  of the independent functions as children nodes in the device tree.
1200
1201	  Say M here if you want to include support for the SPMI PMIC
1202	  series as a module.  The module will be called "qcom-spmi-pmic".
1203
1204config MFD_SY7636A
1205	tristate "Silergy SY7636A voltage regulator"
1206	depends on I2C
1207	select MFD_SIMPLE_MFD_I2C
1208	help
1209	  Enable support for Silergy SY7636A voltage regulator.
1210
1211	  To enable support for building sub-devices as modules,
1212	  choose M here.
1213
1214config MFD_RDC321X
1215	tristate "RDC R-321x southbridge"
1216	select MFD_CORE
1217	depends on PCI
1218	help
1219	  Say yes here if you want to have support for the RDC R-321x SoC
1220	  southbridge which provides access to GPIOs and Watchdog using the
1221	  southbridge PCI device configuration space.
1222
1223config MFD_RT4831
1224	tristate "Richtek RT4831 four channel WLED and Display Bias Voltage"
1225	depends on I2C
1226	select MFD_CORE
1227	select REGMAP_I2C
1228	help
1229	  This enables support for the Richtek RT4831 that includes 4 channel
1230	  WLED driving and Display Bias Voltage. It's commonly used to provide
1231	  power to the LCD display and LCD backlight.
1232
1233config MFD_RT5033
1234	tristate "Richtek RT5033 Power Management IC"
1235	depends on I2C
1236	select MFD_CORE
1237	select REGMAP_I2C
1238	select REGMAP_IRQ
1239	help
1240	  This driver provides for the Richtek RT5033 Power Management IC,
1241	  which includes the I2C driver and the Core APIs. This driver provides
1242	  common support for accessing the device. The device supports multiple
1243	  sub-devices like charger, fuel gauge, flash LED, current source,
1244	  LDO and Buck.
1245
1246config MFD_RT5120
1247	tristate "Richtek RT5120 Power Management IC"
1248	depends on I2C
1249	select MFD_CORE
1250	select REGMAP_I2C
1251	select REGMAP_IRQ
1252	help
1253	  The enables support for Richtek RT5120 PMIC. It includes four high
1254	  efficiency buck converters and one LDO voltage regulator. The device
1255	  is targeted at providing the CPU voltage, memory, I/O and peripheral
1256	  power rails in home entertainment devices.
1257
1258config MFD_RC5T583
1259	bool "Ricoh RC5T583 Power Management system device"
1260	depends on I2C=y
1261	select MFD_CORE
1262	select REGMAP_I2C
1263	help
1264	  Select this option to get support for the RICOH583 Power
1265	  Management system device.
1266	  This driver provides common support for accessing the device
1267	  through i2c interface. The device supports multiple sub-devices
1268	  like GPIO, interrupts, RTC, LDO and DCDC regulators, onkey.
1269	  Additional drivers must be enabled in order to use the
1270	  different functionality of the device.
1271
1272config MFD_RK8XX
1273	tristate
1274	select MFD_CORE
1275
1276config MFD_RK8XX_I2C
1277	tristate "Rockchip RK805/RK808/RK809/RK816/RK817/RK818 Power Management Chip"
1278	depends on I2C && OF
1279	select MFD_CORE
1280	select REGMAP_I2C
1281	select REGMAP_IRQ
1282	select MFD_RK8XX
1283	help
1284	  If you say yes here you get support for the RK805, RK808, RK809,
1285	  RK816, RK817 and RK818 Power Management chips.
1286	  This driver provides common support for accessing the device
1287	  through I2C interface. The device supports multiple sub-devices
1288	  including interrupts, RTC, LDO & DCDC regulators, and onkey.
1289
1290config MFD_RK8XX_SPI
1291	tristate "Rockchip RK806 Power Management Chip"
1292	depends on SPI && OF
1293	select MFD_CORE
1294	select REGMAP_SPI
1295	select REGMAP_IRQ
1296	select MFD_RK8XX
1297	help
1298	  If you say yes here you get support for the RK806 Power Management
1299	  chip.
1300	  This driver provides common support for accessing the device
1301	  through an SPI interface. The device supports multiple sub-devices
1302	  including interrupts, LDO & DCDC regulators, and power on-key.
1303
1304config MFD_RN5T618
1305	tristate "Ricoh RN5T567/618 PMIC"
1306	depends on I2C
1307	depends on OF
1308	select MFD_CORE
1309	select REGMAP_I2C
1310	select REGMAP_IRQ
1311	help
1312	  Say yes here to add support for the Ricoh RN5T567,
1313	  RN5T618, RC5T619 PMIC.
1314	  This driver provides common support for accessing the device,
1315	  additional drivers must be enabled in order to use the
1316	  functionality of the device.
1317
1318config MFD_SEC_CORE
1319	tristate "Samsung Electronics PMIC Series Support"
1320	depends on I2C=y
1321	depends on OF
1322	select MFD_CORE
1323	select REGMAP_I2C
1324	select REGMAP_IRQ
1325	help
1326	  Support for the Samsung Electronics PMIC devices coming
1327	  usually along with Samsung Exynos SoC chipset.
1328	  This driver provides common support for accessing the device,
1329	  additional drivers must be enabled in order to use the functionality
1330	  of the device
1331
1332	  To compile this driver as a module, choose M here: the
1333	  module will be called sec-core.
1334	  Have in mind that important core drivers (like regulators) depend
1335	  on this driver so building this as a module might require proper
1336	  initial ramdisk or might not boot up as well in certain scenarios.
1337
1338config MFD_SI476X_CORE
1339	tristate "Silicon Laboratories 4761/64/68 AM/FM radio."
1340	depends on I2C
1341	select MFD_CORE
1342	select REGMAP_I2C
1343	help
1344	  This is the core driver for the SI476x series of AM/FM
1345	  radio. This MFD driver connects the radio-si476x V4L2 module
1346	  and the si476x audio codec.
1347
1348	  To compile this driver as a module, choose M here: the
1349	  module will be called si476x-core.
1350
1351config MFD_SIMPLE_MFD_I2C
1352	tristate
1353	depends on I2C
1354	select MFD_CORE
1355	select REGMAP_I2C
1356	help
1357	  This driver creates a single register map with the intention for it
1358	  to be shared by all sub-devices.
1359
1360	  Once the register map has been successfully initialised, any
1361	  sub-devices represented by child nodes in Device Tree will be
1362	  subsequently registered.
1363
1364config MFD_SL28CPLD
1365	tristate "Kontron sl28cpld Board Management Controller"
1366	depends on I2C
1367	depends on ARCH_LAYERSCAPE || COMPILE_TEST
1368	select MFD_SIMPLE_MFD_I2C
1369	help
1370	  Say yes here to enable support for the Kontron sl28cpld board
1371	  management controller.
1372
1373	  It can be found on the following boards:
1374		* SMARC-sAL28
1375
1376config MFD_SM501
1377	tristate "Silicon Motion SM501"
1378	depends on HAS_DMA
1379	help
1380	  This is the core driver for the Silicon Motion SM501 multimedia
1381	  companion chip. This device is a multifunction device which may
1382	  provide numerous interfaces including USB host controller, USB gadget,
1383	  asynchronous serial ports, audio functions, and a dual display video
1384	  interface. The device may be connected by PCI or local bus with
1385	  varying functions enabled.
1386
1387config MFD_SM501_GPIO
1388	bool "Export GPIO via GPIO layer"
1389	depends on MFD_SM501 && GPIOLIB
1390	help
1391	  This option uses the gpio library layer to export the 64 GPIO
1392	  lines on the SM501. The platform data is used to supply the
1393	  base number for the first GPIO line to register.
1394
1395config MFD_SKY81452
1396	tristate "Skyworks Solutions SKY81452"
1397	select MFD_CORE
1398	select REGMAP_I2C
1399	depends on I2C
1400	help
1401	  This is the core driver for the Skyworks SKY81452 backlight and
1402	  voltage regulator device.
1403
1404	  This driver can also be built as a module.  If so, the module
1405	  will be called sky81452.
1406
1407config MFD_SC27XX_PMIC
1408	tristate "Spreadtrum SC27xx PMICs"
1409	depends on ARCH_SPRD || COMPILE_TEST
1410	depends on SPI_MASTER
1411	select MFD_CORE
1412	select REGMAP_SPI
1413	select REGMAP_IRQ
1414	help
1415	  This enables support for the Spreadtrum SC27xx PMICs with SPI
1416	  interface. The SC27xx series PMICs integrate power management,
1417	  audio codec, battery management and user interface support
1418	  function (such as RTC, Typec, indicator and so on) in a single chip.
1419
1420	  This driver provides common support for accessing the SC27xx PMICs,
1421	  and it also adds the irq_chip parts for handling the PMIC chip events.
1422
1423config RZ_MTU3
1424	tristate "Renesas RZ/G2L MTU3a core driver"
1425	depends on (ARCH_RZG2L && OF) || COMPILE_TEST
1426	select MFD_CORE
1427	help
1428	  Select this option to enable Renesas RZ/G2L MTU3a core driver for
1429	  the Multi-Function Timer Pulse Unit 3 (MTU3a) hardware available
1430	  on SoCs from Renesas. The core driver shares the clk and channel
1431	  register access for the other child devices like Counter, PWM,
1432	  Clock Source, and Clock event.
1433
1434config ABX500_CORE
1435	bool "ST-Ericsson ABX500 Mixed Signal Circuit register functions"
1436	depends on ARCH_U8500 || COMPILE_TEST
1437	default y if ARCH_U8500
1438	help
1439	  Say yes here if you have the ABX500 Mixed Signal IC family
1440	  chips. This core driver expose register access functions.
1441	  Functionality specific drivers using these functions can
1442	  remain unchanged when IC changes. Binding of the functions to
1443	  actual register access is done by the IC core driver.
1444
1445config AB8500_CORE
1446	bool "ST-Ericsson AB8500 Mixed Signal Power Management chip"
1447	depends on ABX500_CORE && MFD_DB8500_PRCMU
1448	select POWER_SUPPLY
1449	select MFD_CORE
1450	select IRQ_DOMAIN
1451	help
1452	  Select this option to enable access to AB8500 power management
1453	  chip. This connects to U8500 either on the SSP/SPI bus (deprecated
1454	  since hardware version v1.0) or the I2C bus via PRCMU. It also adds
1455	  the irq_chip parts for handling the Mixed Signal chip events.
1456	  This chip embeds various other multimedia functionalities as well.
1457
1458config MFD_DB8500_PRCMU
1459	bool "ST-Ericsson DB8500 Power Reset Control Management Unit"
1460	depends on UX500_SOC_DB8500
1461	select MFD_CORE
1462	help
1463	  Select this option to enable support for the DB8500 Power Reset
1464	  and Control Management Unit. This is basically an autonomous
1465	  system controller running an XP70 microprocessor, which is accessed
1466	  through a register map.
1467
1468config MFD_STMPE
1469	bool "STMicroelectronics STMPE"
1470	depends on I2C=y || SPI_MASTER=y
1471	depends on OF
1472	select MFD_CORE
1473	help
1474	  Support for the STMPE family of I/O Expanders from
1475	  STMicroelectronics.
1476
1477	  Currently supported devices are:
1478
1479		STMPE811: GPIO, Touchscreen, ADC
1480		STMPE1601: GPIO, Keypad
1481		STMPE1801: GPIO, Keypad
1482		STMPE2401: GPIO, Keypad
1483		STMPE2403: GPIO, Keypad
1484
1485	  This driver provides common support for accessing the device,
1486	  additional drivers must be enabled in order to use the functionality
1487	  of the device.  Currently available sub drivers are:
1488
1489		GPIO: stmpe-gpio
1490		Keypad: stmpe-keypad
1491		Touchscreen: stmpe-ts
1492		ADC: stmpe-adc
1493
1494menu "STMicroelectronics STMPE Interface Drivers"
1495depends on MFD_STMPE
1496
1497config STMPE_I2C
1498	bool "STMicroelectronics STMPE I2C Interface"
1499	depends on I2C=y
1500	default y
1501	help
1502	  This is used to enable I2C interface of STMPE
1503
1504config STMPE_SPI
1505	bool "STMicroelectronics STMPE SPI Interface"
1506	depends on SPI_MASTER
1507	help
1508	  This is used to enable SPI interface of STMPE
1509endmenu
1510
1511config MFD_SUN6I_PRCM
1512	bool "Allwinner A31/A23/A33 PRCM controller"
1513	depends on ARCH_SUNXI || COMPILE_TEST
1514	select MFD_CORE
1515	help
1516	  Support for the PRCM (Power/Reset/Clock Management) unit available
1517	  in the A31, A23, and A33 SoCs. Other Allwinner SoCs contain similar
1518	  hardware, but they do not use this driver.
1519
1520config MFD_SYSCON
1521	bool "System Controller Register R/W Based on Regmap"
1522	select REGMAP_MMIO
1523	help
1524	  Select this option to enable accessing system control registers
1525	  via regmap.
1526
1527config MFD_TI_AM335X_TSCADC
1528	tristate "TI ADC / Touch Screen chip support"
1529	depends on ARCH_OMAP2PLUS || ARCH_K3 || COMPILE_TEST
1530	select MFD_CORE
1531	select REGMAP
1532	select REGMAP_MMIO
1533	help
1534	  If you say yes here you get support for Texas Instruments series
1535	  of Touch Screen /ADC chips.
1536	  To compile this driver as a module, choose M here: the
1537	  module will be called ti_am335x_tscadc.
1538
1539config MFD_LP3943
1540	tristate "TI/National Semiconductor LP3943 MFD Driver"
1541	depends on I2C
1542	select MFD_CORE
1543	select REGMAP_I2C
1544	help
1545	  Support for the TI/National Semiconductor LP3943.
1546	  This driver consists of GPIO and PWM drivers.
1547	  With these functionalities, it can be used for LED string control or
1548	  general usage such like a GPIO controller and a PWM controller.
1549
1550config MFD_LP8788
1551	bool "TI LP8788 Power Management Unit Driver"
1552	depends on I2C=y
1553	select MFD_CORE
1554	select REGMAP_I2C
1555	select IRQ_DOMAIN
1556	help
1557	  TI LP8788 PMU supports regulators, battery charger, RTC,
1558	  ADC, backlight driver and current sinks.
1559
1560config MFD_TI_LMU
1561	tristate "TI Lighting Management Unit driver"
1562	depends on I2C
1563	select MFD_CORE
1564	select REGMAP_I2C
1565	help
1566	  Say yes here to enable support for TI LMU chips.
1567	  TI LMU MFD supports LM3532, LM3631, LM3632, LM3633, LM3695 and
1568	  LM36274.  It consists of backlight, LED and regulator driver.
1569	  It provides consistent device controls for lighting functions.
1570
1571config MFD_OMAP_USB_HOST
1572	bool "TI OMAP USBHS core and TLL driver"
1573	depends on USB_EHCI_HCD_OMAP || USB_OHCI_HCD_OMAP3
1574	depends on COMMON_CLK
1575	default y
1576	help
1577	  This is the core driver for the OAMP EHCI and OHCI drivers.
1578	  This MFD driver does the required setup functionalities for
1579	  OMAP USB Host drivers.
1580
1581config MFD_PALMAS
1582	tristate "TI Palmas series chips"
1583	select MFD_CORE
1584	select REGMAP_I2C
1585	select REGMAP_IRQ
1586	depends on I2C=y
1587	help
1588	  If you say yes here you get support for the Palmas
1589	  series of PMIC chips from Texas Instruments.
1590
1591config TPS6105X
1592	tristate "TI TPS61050/61052 Boost Converters"
1593	depends on I2C
1594	select REGMAP_I2C
1595	select REGULATOR
1596	select MFD_CORE
1597	select REGULATOR_FIXED_VOLTAGE
1598	help
1599	  This option enables a driver for the TP61050/TPS61052
1600	  high-power "white LED driver". This boost converter is
1601	  sometimes used for other things than white LEDs, and
1602	  also contains a GPIO pin.
1603
1604config TPS65010
1605	tristate "TI TPS6501x Power Management chips"
1606	depends on I2C && GPIOLIB
1607	default MACH_OMAP_OSK
1608	help
1609	  If you say yes here you get support for the TPS6501x series of
1610	  Power Management chips.  These include voltage regulators,
1611	  lithium ion/polymer battery charging, and other features that
1612	  are often used in portable devices like cell phones and cameras.
1613
1614	  This driver can also be built as a module.  If so, the module
1615	  will be called tps65010.
1616
1617config TPS6507X
1618	tristate "TI TPS6507x Power Management / Touch Screen chips"
1619	select MFD_CORE
1620	depends on I2C
1621	help
1622	  If you say yes here you get support for the TPS6507x series of
1623	  Power Management / Touch Screen chips.  These include voltage
1624	  regulators, lithium ion/polymer battery charging, touch screen
1625	  and other features that are often used in portable devices.
1626	  This driver can also be built as a module.  If so, the module
1627	  will be called tps6507x.
1628
1629config MFD_TPS65086
1630	tristate "TI TPS65086 Power Management Integrated Chips (PMICs)"
1631	select MFD_CORE
1632	select REGMAP
1633	select REGMAP_IRQ
1634	select REGMAP_I2C
1635	depends on I2C
1636	help
1637	  If you say yes here you get support for the TPS65086 series of
1638	  Power Management chips.
1639	  This driver provides common support for accessing the device,
1640	  additional drivers must be enabled in order to use the
1641	  functionality of the device.
1642
1643config TPS65911_COMPARATOR
1644	tristate
1645
1646config MFD_TPS65090
1647	bool "TI TPS65090 Power Management chips"
1648	depends on I2C=y
1649	select MFD_CORE
1650	select REGMAP_I2C
1651	select REGMAP_IRQ
1652	help
1653	  If you say yes here you get support for the TPS65090 series of
1654	  Power Management chips.
1655	  This driver provides common support for accessing the device,
1656	  additional drivers must be enabled in order to use the
1657	  functionality of the device.
1658
1659config MFD_TPS65217
1660	tristate "TI TPS65217 Power Management / White LED chips"
1661	depends on I2C && OF
1662	select MFD_CORE
1663	select REGMAP_I2C
1664	select IRQ_DOMAIN
1665	help
1666	  If you say yes here you get support for the TPS65217 series of
1667	  Power Management / White LED chips.
1668	  These include voltage regulators, lithium ion/polymer battery
1669	  charger, wled and other features that are often used in portable
1670	  devices.
1671
1672	  This driver can also be built as a module.  If so, the module
1673	  will be called tps65217.
1674
1675config MFD_TI_LP873X
1676	tristate "TI LP873X Power Management IC"
1677	depends on I2C
1678	select MFD_CORE
1679	select REGMAP_I2C
1680	help
1681	  If you say yes here then you get support for the LP873X series of
1682	  Power Management Integrated Circuits (PMIC).
1683	  These include voltage regulators, thermal protection, configurable
1684	  General Purpose Outputs (GPO) that are used in portable devices.
1685
1686	  This driver can also be built as a module. If so, the module
1687	  will be called lp873x.
1688
1689config MFD_TI_LP87565
1690	tristate "TI LP87565 Power Management IC"
1691	depends on I2C && OF
1692	select MFD_CORE
1693	select REGMAP_I2C
1694	help
1695	  If you say yes here then you get support for the LP87565 series of
1696	  Power Management Integrated Circuits (PMIC).
1697	  These include voltage regulators, thermal protection, configurable
1698	  General Purpose Outputs (GPO) that are used in portable devices.
1699
1700	  This driver can also be built as a module. If so, the module
1701	  will be called lp87565.
1702
1703config MFD_TPS65218
1704	tristate "TI TPS65218 Power Management chips"
1705	depends on I2C && OF
1706	select MFD_CORE
1707	select REGMAP_I2C
1708	select REGMAP_IRQ
1709	help
1710	  If you say yes here you get support for the TPS65218 series of
1711	  Power Management chips.
1712	  These include voltage regulators, gpio and other features
1713	  that are often used in portable devices.
1714
1715	  This driver can also be built as a module.  If so, the module
1716	  will be called tps65218.
1717
1718config MFD_TPS65219
1719	tristate "TI TPS65219 Power Management IC"
1720	depends on I2C && OF
1721	select MFD_CORE
1722	select REGMAP_I2C
1723	select REGMAP_IRQ
1724	help
1725	  If you say yes here you get support for the TPS65219 series of Power
1726	  Management ICs. These include voltage regulators, GPIOs and
1727	  push/power button that is often used in portable devices.
1728
1729	  This driver can also be built as a module. If so, the module
1730	  will be called tps65219.
1731
1732config MFD_TPS6586X
1733	bool "TI TPS6586x Power Management chips"
1734	depends on I2C=y
1735	select MFD_CORE
1736	select REGMAP_I2C
1737	help
1738	  If you say yes here you get support for the TPS6586X series of
1739	  Power Management chips.
1740	  This driver provides common support for accessing the device,
1741	  additional drivers must be enabled in order to use the
1742	  functionality of the device.
1743
1744	  This driver can also be built as a module.  If so, the module
1745	  will be called tps6586x.
1746
1747config MFD_TPS65910
1748	bool "TI TPS65910 Power Management chip"
1749	depends on I2C=y
1750	depends on GPIOLIB || COMPILE_TEST
1751	select MFD_CORE
1752	select REGMAP_I2C
1753	select REGMAP_IRQ
1754	select IRQ_DOMAIN
1755	help
1756	  if you say yes here you get support for the TPS65910 series of
1757	  Power Management chips.
1758
1759config MFD_TPS65912
1760	tristate
1761	select MFD_CORE
1762	select REGMAP
1763	select REGMAP_IRQ
1764
1765config MFD_TPS65912_I2C
1766	tristate "TI TPS65912 Power Management chip with I2C"
1767	select MFD_TPS65912
1768	select REGMAP_I2C
1769	depends on I2C
1770	help
1771	  If you say yes here you get support for the TPS65912 series of
1772	  PM chips with I2C interface.
1773
1774config MFD_TPS65912_SPI
1775	tristate "TI TPS65912 Power Management chip with SPI"
1776	select MFD_TPS65912
1777	select REGMAP_SPI
1778	depends on SPI_MASTER
1779	help
1780	  If you say yes here you get support for the TPS65912 series of
1781	  PM chips with SPI interface.
1782
1783config MFD_TPS6594
1784	tristate
1785	select MFD_CORE
1786	select REGMAP
1787	select REGMAP_IRQ
1788
1789config MFD_TPS6594_I2C
1790	tristate "TI TPS6594 Power Management chip with I2C"
1791	select MFD_TPS6594
1792	select REGMAP_I2C
1793	select CRC8
1794	depends on I2C
1795	help
1796	  If you say yes here you get support for the TPS6594 series of
1797	  PM chips with I2C interface.
1798
1799	  This driver can also be built as a module.  If so, the module
1800	  will be called tps6594-i2c.
1801
1802config MFD_TPS6594_SPI
1803	tristate "TI TPS6594 Power Management chip with SPI"
1804	select MFD_TPS6594
1805	select REGMAP_SPI
1806	select CRC8
1807	depends on SPI_MASTER
1808	help
1809	  If you say yes here you get support for the TPS6594 series of
1810	  PM chips with SPI interface.
1811
1812	  This driver can also be built as a module.  If so, the module
1813	  will be called tps6594-spi.
1814
1815config TWL4030_CORE
1816	bool "TI TWL4030/TWL5030/TWL6030/TPS659x0 Support"
1817	depends on I2C=y
1818	select IRQ_DOMAIN
1819	select MFD_CORE
1820	select REGMAP_I2C
1821	help
1822	  Say yes here if you have TWL4030 / TWL6030 family chip on your board.
1823	  This core driver provides register access and IRQ handling
1824	  facilities, and registers devices for the various functions
1825	  so that function-specific drivers can bind to them.
1826
1827	  These multi-function chips are found on many OMAP2 and OMAP3
1828	  boards, providing power management, RTC, GPIO, keypad, a
1829	  high speed USB OTG transceiver, an audio codec (on most
1830	  versions) and many other features.
1831
1832config TWL4030_POWER
1833	bool "TI TWL4030 power resources"
1834	depends on TWL4030_CORE && ARM
1835	help
1836	  Say yes here if you want to use the power resources on the
1837	  TWL4030 family chips.  Most of these resources are regulators,
1838	  which have a separate driver; some are control signals, such
1839	  as clock request handshaking.
1840
1841	  This driver uses board-specific data to initialize the resources
1842	  and load scripts controlling which resources are switched off/on
1843	  or reset when a sleep, wakeup or warm reset event occurs.
1844
1845config MFD_TWL4030_AUDIO
1846	bool "TI TWL4030 Audio"
1847	depends on TWL4030_CORE
1848	select MFD_CORE
1849	default n
1850
1851config TWL6040_CORE
1852	bool "TI TWL6040 audio codec"
1853	depends on I2C=y
1854	select MFD_CORE
1855	select REGMAP_I2C
1856	select REGMAP_IRQ
1857	default n
1858	help
1859	  Say yes here if you want support for Texas Instruments TWL6040 audio
1860	  codec.
1861	  This driver provides common support for accessing the device,
1862	  additional drivers must be enabled in order to use the
1863	  functionality of the device (audio, vibra).
1864
1865config MENELAUS
1866	bool "TI TWL92330/Menelaus PM chip"
1867	depends on I2C=y && ARCH_OMAP2
1868	help
1869	  If you say yes here you get support for the Texas Instruments
1870	  TWL92330/Menelaus Power Management chip. This include voltage
1871	  regulators, Dual slot memory card transceivers, real-time clock
1872	  and other features that are often used in portable devices like
1873	  cell phones and PDAs.
1874
1875config MFD_WL1273_CORE
1876	tristate "TI WL1273 FM radio"
1877	depends on I2C
1878	select MFD_CORE
1879	default n
1880	help
1881	  This is the core driver for the TI WL1273 FM radio. This MFD
1882	  driver connects the radio-wl1273 V4L2 module and the wl1273
1883	  audio codec.
1884
1885config MFD_LM3533
1886	tristate "TI/National Semiconductor LM3533 Lighting Power chip"
1887	depends on I2C
1888	select MFD_CORE
1889	select REGMAP_I2C
1890	help
1891	  Say yes here to enable support for National Semiconductor / TI
1892	  LM3533 Lighting Power chips.
1893
1894	  This driver provides common support for accessing the device;
1895	  additional drivers must be enabled in order to use the LED,
1896	  backlight or ambient-light-sensor functionality of the device.
1897
1898config MFD_TIMBERDALE
1899	tristate "Timberdale FPGA"
1900	select MFD_CORE
1901	depends on PCI && GPIOLIB && (X86_32 || COMPILE_TEST)
1902	help
1903	This is the core driver for the timberdale FPGA. This device is a
1904	multifunction device which exposes numerous platform devices.
1905
1906	The timberdale FPGA can be found on the Intel Atom development board
1907	for in-vehicle infontainment, called Russellville.
1908
1909config MFD_TC3589X
1910	bool "Toshiba TC35892 and variants"
1911	depends on I2C=y
1912	depends on OF
1913	select MFD_CORE
1914	help
1915	  Support for the Toshiba TC35892 and variants I/O Expander.
1916
1917	  This driver provides common support for accessing the device,
1918	  additional drivers must be enabled in order to use the
1919	  functionality of the device.
1920
1921config MFD_TQMX86
1922	tristate "TQ-Systems IO controller TQMX86"
1923	select MFD_CORE
1924	help
1925	  Say yes here to enable support for various functions of the
1926	  TQ-Systems IO controller and watchdog device, found on their
1927	  ComExpress CPU modules.
1928
1929config MFD_VX855
1930	tristate "VIA VX855/VX875 integrated south bridge"
1931	depends on PCI
1932	select MFD_CORE
1933	help
1934	  Say yes here to enable support for various functions of the
1935	  VIA VX855/VX875 south bridge. You will need to enable the vx855_spi
1936	  and/or vx855_gpio drivers for this to do anything useful.
1937
1938config MFD_LOCHNAGAR
1939	bool "Cirrus Logic Lochnagar Audio Development Board"
1940	select MFD_CORE
1941	select REGMAP_I2C
1942	depends on I2C=y && OF
1943	help
1944	  Support for Cirrus Logic Lochnagar audio development board.
1945
1946config MFD_ARIZONA
1947	select REGMAP
1948	select REGMAP_IRQ
1949	select MFD_CORE
1950	tristate
1951
1952config MFD_ARIZONA_I2C
1953	tristate "Cirrus Logic/Wolfson Microelectronics Arizona platform with I2C"
1954	select MFD_ARIZONA
1955	select REGMAP_I2C
1956	depends on I2C
1957	help
1958	  Support for the Cirrus Logic/Wolfson Microelectronics Arizona platform
1959	  audio SoC core functionality controlled via I2C.
1960
1961config MFD_ARIZONA_SPI
1962	tristate "Cirrus Logic/Wolfson Microelectronics Arizona platform with SPI"
1963	select MFD_ARIZONA
1964	select REGMAP_SPI
1965	depends on SPI_MASTER
1966	help
1967	  Support for the Cirrus Logic/Wolfson Microelectronics Arizona platform
1968	  audio SoC core functionality controlled via SPI.
1969
1970config MFD_CS47L24
1971	bool "Cirrus Logic CS47L24 and WM1831"
1972	depends on MFD_ARIZONA
1973	help
1974	  Support for Cirrus Logic CS47L24 and WM1831 low power audio SoC
1975
1976config MFD_WM5102
1977	bool "Wolfson Microelectronics WM5102"
1978	depends on MFD_ARIZONA
1979	help
1980	  Support for Wolfson Microelectronics WM5102 low power audio SoC
1981
1982config MFD_WM5110
1983	bool "Wolfson Microelectronics WM5110 and WM8280/WM8281"
1984	depends on MFD_ARIZONA
1985	help
1986	  Support for Wolfson Microelectronics WM5110 and WM8280/WM8281
1987	  low power audio SoC
1988
1989config MFD_WM8997
1990	bool "Wolfson Microelectronics WM8997"
1991	depends on MFD_ARIZONA
1992	help
1993	  Support for Wolfson Microelectronics WM8997 low power audio SoC
1994
1995config MFD_WM8998
1996	bool "Wolfson Microelectronics WM8998"
1997	depends on MFD_ARIZONA
1998	help
1999	  Support for Wolfson Microelectronics WM8998 low power audio SoC
2000
2001config MFD_WM8400
2002	bool "Wolfson Microelectronics WM8400"
2003	select MFD_CORE
2004	depends on I2C=y
2005	select REGMAP_I2C
2006	help
2007	  Support for the Wolfson Microelecronics WM8400 PMIC and audio
2008	  CODEC.  This driver provides common support for accessing
2009	  the device, additional drivers must be enabled in order to use
2010	  the functionality of the device.
2011
2012config MFD_WM831X
2013	bool
2014
2015config MFD_WM831X_I2C
2016	bool "Wolfson Microelectronics WM831x/2x PMICs with I2C"
2017	select MFD_CORE
2018	select MFD_WM831X
2019	select REGMAP_I2C
2020	select IRQ_DOMAIN
2021	depends on I2C=y
2022	help
2023	  Support for the Wolfson Microelecronics WM831x and WM832x PMICs
2024	  when controlled using I2C.  This driver provides common support
2025	  for accessing the device, additional drivers must be enabled in
2026	  order to use the functionality of the device.
2027
2028config MFD_WM831X_SPI
2029	bool "Wolfson Microelectronics WM831x/2x PMICs with SPI"
2030	select MFD_CORE
2031	select MFD_WM831X
2032	select REGMAP_SPI
2033	select IRQ_DOMAIN
2034	depends on SPI_MASTER
2035	help
2036	  Support for the Wolfson Microelecronics WM831x and WM832x PMICs
2037	  when controlled using SPI.  This driver provides common support
2038	  for accessing the device, additional drivers must be enabled in
2039	  order to use the functionality of the device.
2040
2041config MFD_WM8350
2042	bool
2043
2044config MFD_WM8350_I2C
2045	bool "Wolfson Microelectronics WM8350 with I2C"
2046	select MFD_WM8350
2047	select REGMAP_I2C
2048	depends on I2C=y
2049	help
2050	  The WM8350 is an integrated audio and power management
2051	  subsystem with watchdog and RTC functionality for embedded
2052	  systems.  This option enables core support for the WM8350 with
2053	  I2C as the control interface.  Additional options must be
2054	  selected to enable support for the functionality of the chip.
2055
2056config MFD_WM8994
2057	tristate "Wolfson Microelectronics WM8994"
2058	select MFD_CORE
2059	select REGMAP_I2C
2060	select REGMAP_IRQ
2061	depends on I2C
2062	help
2063	  The WM8994 is a highly integrated hi-fi CODEC designed for
2064	  smartphone applications.  As well as audio functionality it
2065	  has on board GPIO and regulator functionality which is
2066	  supported via the relevant subsystems.  This driver provides
2067	  core support for the WM8994, in order to use the actual
2068	  functionality of the device other drivers must be enabled.
2069
2070config MFD_WM97xx
2071	tristate "Wolfson Microelectronics WM97xx"
2072	select MFD_CORE
2073	select REGMAP_AC97
2074	select AC97_BUS_COMPAT
2075	depends on AC97_BUS_NEW
2076	help
2077	  The WM9705, WM9712 and WM9713 is a highly integrated hi-fi CODEC
2078	  designed for smartphone applications.  As well as audio functionality
2079	  it has on board GPIO and a touchscreen functionality which is
2080	  supported via the relevant subsystems.  This driver provides core
2081	  support for the WM97xx, in order to use the actual functionality of
2082	  the device other drivers must be enabled.
2083
2084config MFD_STW481X
2085	tristate "Support for ST Microelectronics STw481x"
2086	depends on I2C && (ARCH_NOMADIK || COMPILE_TEST)
2087	select REGMAP_I2C
2088	select MFD_CORE
2089	help
2090	  Select this option to enable the STw481x chip driver used
2091	  in various ST Microelectronics and ST-Ericsson embedded
2092	  Nomadik series.
2093
2094config MFD_ROHM_BD718XX
2095	tristate "ROHM BD71837 Power Management IC"
2096	depends on I2C=y
2097	depends on OF
2098	select REGMAP_I2C
2099	select REGMAP_IRQ
2100	select MFD_CORE
2101	help
2102	  Select this option to get support for the ROHM BD71837
2103	  Power Management ICs. BD71837 is designed to power processors like
2104	  NXP i.MX8. It contains 8 BUCK outputs and 7 LDOs, voltage monitoring
2105	  and emergency shut down as well as 32,768KHz clock output.
2106
2107config MFD_ROHM_BD71828
2108	tristate "ROHM BD71828 and BD71815 Power Management IC"
2109	depends on I2C=y
2110	depends on OF
2111	select REGMAP_I2C
2112	select REGMAP_IRQ
2113	select MFD_CORE
2114	help
2115	  Select this option to get support for the ROHM BD71828 and BD71815
2116	  Power Management ICs. BD71828GW and BD71815AGW are single-chip power
2117	  management ICs mainly for battery-powered portable devices.
2118	  The BD71828 integrates 7 buck converters and 7 LDOs. The BD71815
2119	  has 5 bucks, 7 LDOs, and a boost for driving LEDs. Both ICs provide
2120	  also a single-cell linear charger, a Coulomb counter, a real-time
2121	  clock (RTC), GPIOs and a 32.768 kHz clock gate.
2122
2123config MFD_ROHM_BD957XMUF
2124	tristate "ROHM BD9576MUF and BD9573MUF Power Management ICs"
2125	depends on I2C=y
2126	depends on OF
2127	select REGMAP_I2C
2128	select REGMAP_IRQ
2129	select MFD_CORE
2130	help
2131	  Select this option to get support for the ROHM BD9576MUF and
2132	  BD9573MUF Power Management ICs. BD9576 and BD9573 are primarily
2133	  designed to be used to power R-Car series processors.
2134
2135config MFD_ROHM_BD96801
2136	tristate "ROHM BD96801 Power Management IC"
2137	depends on I2C=y
2138	depends on OF
2139	select REGMAP_I2C
2140	select REGMAP_IRQ
2141	select MFD_CORE
2142	help
2143	  Select this option to get support for the ROHM BD96801 Power
2144	  Management IC. The ROHM BD96801 is a highly scalable Power Management
2145	  IC for industrial and automotive use. The BD96801 can be used as a
2146	  master PMIC in a chained PMIC solution with suitable companion PMICs.
2147
2148config MFD_STM32_LPTIMER
2149	tristate "Support for STM32 Low-Power Timer"
2150	depends on (ARCH_STM32 && OF) || COMPILE_TEST
2151	select MFD_CORE
2152	select REGMAP
2153	select REGMAP_MMIO
2154	help
2155	  Select this option to enable STM32 Low-Power Timer driver
2156	  used for PWM, IIO Trigger, IIO Encoder and Counter. Shared
2157	  resources are also dealt with here.
2158
2159	  To compile this driver as a module, choose M here: the
2160	  module will be called stm32-lptimer.
2161
2162config MFD_STM32_TIMERS
2163	tristate "Support for STM32 Timers"
2164	depends on (ARCH_STM32 && OF) || COMPILE_TEST
2165	select MFD_CORE
2166	select REGMAP
2167	select REGMAP_MMIO
2168	help
2169	  Select this option to enable STM32 timers driver used
2170	  for PWM and IIO Timer. This driver allow to share the
2171	  registers between the others drivers.
2172
2173config MFD_STPMIC1
2174	tristate "Support for STPMIC1 PMIC"
2175	depends on I2C=y && OF
2176	select REGMAP_I2C
2177	select REGMAP_IRQ
2178	select MFD_CORE
2179	help
2180	  Support for ST Microelectronics STPMIC1 PMIC. STPMIC1 has power on
2181	  key, watchdog and regulator functionalities which are supported via
2182	  the relevant subsystems. This driver provides core support for the
2183	  STPMIC1. In order to use the actual functionality of the device other
2184	  drivers must be enabled.
2185
2186	  To compile this driver as a module, choose M here: the
2187	  module will be called stpmic1.
2188
2189config MFD_STMFX
2190	tristate "Support for STMicroelectronics Multi-Function eXpander (STMFX)"
2191	depends on I2C
2192	depends on OF
2193	select MFD_CORE
2194	select REGMAP_I2C
2195	help
2196	  Support for the STMicroelectronics Multi-Function eXpander.
2197
2198	  This driver provides common support for accessing the device,
2199	  additional drivers must be enabled in order to use the functionality
2200	  of the device.
2201
2202config MFD_WCD934X
2203	tristate "Support for WCD9340/WCD9341 Codec"
2204	depends on SLIMBUS
2205	select REGMAP
2206	select REGMAP_SLIMBUS
2207	select REGMAP_IRQ
2208	select MFD_CORE
2209	help
2210	  Support for the Qualcomm WCD9340/WCD9341 Codec.
2211	  This driver provides common support WCD934x audio codec and its
2212	  associated Pin Controller, Soundwire Controller and Audio codec.
2213
2214config MFD_ATC260X
2215	tristate
2216	select MFD_CORE
2217	select REGMAP
2218	select REGMAP_IRQ
2219
2220config MFD_ATC260X_I2C
2221	tristate "Actions Semi ATC260x PMICs with I2C"
2222	select MFD_ATC260X
2223	select REGMAP_I2C
2224	depends on I2C
2225	help
2226	  Support for the Actions Semi ATC260x PMICs controlled via I2C.
2227
2228	  This driver provides common support for accessing the ATC2603C
2229	  and ATC2609A chip variants, additional drivers must be enabled
2230	  in order to use the functionality of the device.
2231
2232config MFD_KHADAS_MCU
2233	tristate "Support for Khadas System control Microcontroller"
2234	depends on I2C
2235	depends on ARCH_MESON || ARCH_ROCKCHIP || COMPILE_TEST
2236	select MFD_CORE
2237	select REGMAP_I2C
2238	help
2239	  Support for the Khadas System control Microcontroller interface
2240	  present on their VIM and Edge boards.
2241
2242	  This Microcontroller is present on the Khadas VIM1, VIM2, VIM3 and
2243	  Edge boards.
2244
2245	  It provides multiple boot control features like password check,
2246	  power-on options, power-off control and system FAN control on recent
2247	  boards.
2248
2249	  This driver provides common support for accessing the device,
2250	  additional drivers must be enabled in order to use the functionality
2251	  of the device.
2252
2253config MFD_ACER_A500_EC
2254	tristate "Support for Acer Iconia Tab A500 Embedded Controller"
2255	depends on I2C
2256	depends on (ARCH_TEGRA_2x_SOC && OF) || COMPILE_TEST
2257	select MFD_CORE
2258	select REGMAP
2259	help
2260	  Support for Embedded Controller found on Acer Iconia Tab A500.
2261	  The controller itself is ENE KB930, it is running firmware
2262	  customized for the specific needs of the Acer A500 hardware.
2263
2264config MFD_QCOM_PM8008
2265	tristate "QCOM PM8008 Power Management IC"
2266	depends on I2C && OF
2267	select MFD_CORE
2268	select REGMAP_I2C
2269	select REGMAP_IRQ
2270	help
2271	  Select this option to get support for the Qualcomm Technologies, Inc.
2272	  PM8008 PMIC chip. PM8008 is a dedicated camera PMIC that integrates
2273	  all the necessary power management, housekeeping, and interface
2274	  support functions into a single IC. This driver provides common
2275	  support for accessing the device by instantiating all the child nodes
2276	  under it in the device tree. Additional drivers must be enabled in
2277	  order to use the functionality of the device.
2278
2279menu "Multimedia Capabilities Port drivers"
2280	depends on ARCH_SA1100
2281
2282config MCP
2283	tristate
2284
2285# Interface drivers
2286config MCP_SA11X0
2287	tristate "Support SA11x0 MCP interface"
2288	depends on ARCH_SA1100
2289	select MCP
2290
2291# Chip drivers
2292config MCP_UCB1200
2293	tristate "Support for UCB1200 / UCB1300"
2294	depends on MCP_SA11X0
2295	select MCP
2296
2297config MCP_UCB1200_TS
2298	tristate "Touchscreen interface support"
2299	depends on MCP_UCB1200 && INPUT
2300
2301endmenu
2302
2303config MFD_CS40L50_CORE
2304	tristate
2305	select MFD_CORE
2306	select FW_CS_DSP
2307	select REGMAP_IRQ
2308
2309config MFD_CS40L50_I2C
2310	tristate "Cirrus Logic CS40L50 (I2C)"
2311	select REGMAP_I2C
2312	select MFD_CS40L50_CORE
2313	depends on I2C
2314	help
2315	  Select this to support the Cirrus Logic CS40L50 Haptic
2316	  Driver over I2C.
2317
2318	  This driver can be built as a module. If built as a module it will be
2319	  called "cs40l50-i2c".
2320
2321config MFD_CS40L50_SPI
2322	tristate "Cirrus Logic CS40L50 (SPI)"
2323	select REGMAP_SPI
2324	select MFD_CS40L50_CORE
2325	depends on SPI
2326	help
2327	  Select this to support the Cirrus Logic CS40L50 Haptic
2328	  Driver over SPI.
2329
2330	  This driver can be built as a module. If built as a module it will be
2331	  called "cs40l50-spi".
2332
2333config MFD_VEXPRESS_SYSREG
2334	tristate "Versatile Express System Registers"
2335	depends on VEXPRESS_CONFIG && GPIOLIB
2336	default y
2337	select GPIO_GENERIC_PLATFORM
2338	select MFD_CORE
2339	select MFD_SYSCON
2340	help
2341	  System Registers are the platform configuration block
2342	  on the ARM Ltd. Versatile Express board.
2343
2344config RAVE_SP_CORE
2345	tristate "RAVE SP MCU core driver"
2346	depends on SERIAL_DEV_BUS
2347	select CRC_ITU_T
2348	help
2349	  Select this to get support for the Supervisory Processor
2350	  device found on several devices in RAVE line of hardware.
2351
2352config SGI_MFD_IOC3
2353	bool "SGI IOC3 core driver"
2354	depends on PCI && MIPS && 64BIT
2355	select MFD_CORE
2356	help
2357	  This option enables basic support for the SGI IOC3-based
2358	  controller cards.  This option does not enable any specific
2359	  functions on such a card, but provides necessary infrastructure
2360	  for other drivers to utilize.
2361
2362	  If you have an SGI Origin, Octane, or a PCI IOC3 card,
2363	  then say Y. Otherwise say N.
2364
2365config MFD_INTEL_M10_BMC_CORE
2366        tristate
2367        select MFD_CORE
2368        select REGMAP
2369        default n
2370
2371config MFD_INTEL_M10_BMC_SPI
2372        tristate "Intel MAX 10 Board Management Controller with SPI"
2373        depends on SPI_MASTER
2374        select MFD_INTEL_M10_BMC_CORE
2375        select REGMAP_SPI_AVMM
2376        help
2377          Support for the Intel MAX 10 board management controller using the
2378          SPI interface.
2379
2380          This driver provides common support for accessing the device,
2381          additional drivers must be enabled in order to use the functionality
2382          of the device.
2383
2384config MFD_INTEL_M10_BMC_PMCI
2385	tristate "Intel MAX 10 Board Management Controller with PMCI"
2386	depends on FPGA_DFL
2387	select MFD_INTEL_M10_BMC_CORE
2388	select REGMAP
2389	help
2390	  Support for the Intel MAX 10 board management controller via PMCI.
2391
2392	  This driver provides common support for accessing the device,
2393	  additional drivers must be enabled in order to use the functionality
2394	  of the device.
2395
2396config MFD_QNAP_MCU
2397	tristate "QNAP microcontroller unit core driver"
2398	depends on SERIAL_DEV_BUS
2399	select MFD_CORE
2400	help
2401	  Select this to get support for the QNAP MCU device found in
2402	  several devices of QNAP network attached storage products that
2403	  implements additional functionality for the device, like fan
2404	  and LED control.
2405
2406	  This driver implements the base serial protocol to talk to the
2407	  device and provides functions for the other parts to hook into.
2408
2409config MFD_RSMU_I2C
2410	tristate "Renesas Synchronization Management Unit with I2C"
2411	depends on I2C && OF
2412	select MFD_CORE
2413	select REGMAP_I2C
2414	help
2415	  Support for the Renesas Synchronization Management Unit, such as
2416	  Clockmatrix and 82P33XXX series. This option supports I2C as
2417	  the control interface.
2418
2419	  This driver provides common support for accessing the device.
2420	  Additional drivers must be enabled in order to use the functionality
2421	  of the device.
2422
2423config MFD_RSMU_SPI
2424	tristate "Renesas Synchronization Management Unit with SPI"
2425	depends on SPI && OF
2426	select MFD_CORE
2427	select REGMAP_SPI
2428	help
2429	  Support for the Renesas Synchronization Management Unit, such as
2430	  Clockmatrix and 82P33XXX series. This option supports SPI as
2431	  the control interface.
2432
2433	  This driver provides common support for accessing the device.
2434	  Additional drivers must be enabled in order to use the functionality
2435	  of the device.
2436
2437config MFD_UPBOARD_FPGA
2438	tristate "Support for the AAeon UP board FPGA"
2439	depends on (X86 && ACPI)
2440	select MFD_CORE
2441	help
2442	  Select this option to enable the AAEON UP and UP^2 onboard FPGA.
2443	  This is the core driver of this FPGA, which has a pin controller and a
2444	  LED controller.
2445
2446	  To compile this driver as a module, choose M here: the module will be
2447	  called upboard-fpga.
2448
2449endmenu
2450endif
2451