Kconfig 26 KB

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  1. #
  2. # Multifunction miscellaneous devices
  3. #
  4. if HAS_IOMEM
  5. menu "Multifunction device drivers"
  6. config MFD_CORE
  7. tristate
  8. default n
  9. config MFD_88PM860X
  10. bool "Support Marvell 88PM8606/88PM8607"
  11. depends on I2C=y && GENERIC_HARDIRQS
  12. select REGMAP_I2C
  13. select MFD_CORE
  14. help
  15. This supports for Marvell 88PM8606/88PM8607 Power Management IC.
  16. This includes the I2C driver and the core APIs _only_, you have to
  17. select individual components like voltage regulators, RTC and
  18. battery-charger under the corresponding menus.
  19. config MFD_SM501
  20. tristate "Support for Silicon Motion SM501"
  21. ---help---
  22. This is the core driver for the Silicon Motion SM501 multimedia
  23. companion chip. This device is a multifunction device which may
  24. provide numerous interfaces including USB host controller, USB gadget,
  25. asynchronous serial ports, audio functions, and a dual display video
  26. interface. The device may be connected by PCI or local bus with
  27. varying functions enabled.
  28. config MFD_SM501_GPIO
  29. bool "Export GPIO via GPIO layer"
  30. depends on MFD_SM501 && GPIOLIB
  31. ---help---
  32. This option uses the gpio library layer to export the 64 GPIO
  33. lines on the SM501. The platform data is used to supply the
  34. base number for the first GPIO line to register.
  35. config MFD_ASIC3
  36. bool "Support for Compaq ASIC3"
  37. depends on GENERIC_HARDIRQS && GPIOLIB && ARM
  38. select MFD_CORE
  39. ---help---
  40. This driver supports the ASIC3 multifunction chip found on many
  41. PDAs (mainly iPAQ and HTC based ones)
  42. config MFD_DAVINCI_VOICECODEC
  43. tristate
  44. select MFD_CORE
  45. config MFD_DM355EVM_MSP
  46. bool "DaVinci DM355 EVM microcontroller"
  47. depends on I2C=y && MACH_DAVINCI_DM355_EVM
  48. help
  49. This driver supports the MSP430 microcontroller used on these
  50. boards. MSP430 firmware manages resets and power sequencing,
  51. inputs from buttons and the IR remote, LEDs, an RTC, and more.
  52. config MFD_TI_SSP
  53. tristate "TI Sequencer Serial Port support"
  54. depends on ARCH_DAVINCI_TNETV107X
  55. select MFD_CORE
  56. ---help---
  57. Say Y here if you want support for the Sequencer Serial Port
  58. in a Texas Instruments TNETV107X SoC.
  59. To compile this driver as a module, choose M here: the
  60. module will be called ti-ssp.
  61. config HTC_EGPIO
  62. bool "HTC EGPIO support"
  63. depends on GENERIC_HARDIRQS && GPIOLIB && ARM
  64. help
  65. This driver supports the CPLD egpio chip present on
  66. several HTC phones. It provides basic support for input
  67. pins, output pins, and irqs.
  68. config HTC_PASIC3
  69. tristate "HTC PASIC3 LED/DS1WM chip support"
  70. select MFD_CORE
  71. help
  72. This core driver provides register access for the LED/DS1WM
  73. chips labeled "AIC2" and "AIC3", found on HTC Blueangel and
  74. HTC Magician devices, respectively. Actual functionality is
  75. handled by the leds-pasic3 and ds1wm drivers.
  76. config HTC_I2CPLD
  77. bool "HTC I2C PLD chip support"
  78. depends on I2C=y && GPIOLIB
  79. help
  80. If you say yes here you get support for the supposed CPLD
  81. found on omap850 HTC devices like the HTC Wizard and HTC Herald.
  82. This device provides input and output GPIOs through an I2C
  83. interface to one or more sub-chips.
  84. config UCB1400_CORE
  85. tristate "Philips UCB1400 Core driver"
  86. depends on AC97_BUS
  87. depends on GPIOLIB
  88. help
  89. This enables support for the Philips UCB1400 core functions.
  90. The UCB1400 is an AC97 audio codec.
  91. To compile this driver as a module, choose M here: the
  92. module will be called ucb1400_core.
  93. config TPS6105X
  94. tristate "TPS61050/61052 Boost Converters"
  95. depends on I2C
  96. select REGULATOR
  97. select MFD_CORE
  98. select REGULATOR_FIXED_VOLTAGE
  99. help
  100. This option enables a driver for the TP61050/TPS61052
  101. high-power "white LED driver". This boost converter is
  102. sometimes used for other things than white LEDs, and
  103. also contains a GPIO pin.
  104. config TPS65010
  105. tristate "TPS6501x Power Management chips"
  106. depends on I2C && GPIOLIB
  107. default y if MACH_OMAP_H2 || MACH_OMAP_H3 || MACH_OMAP_OSK
  108. help
  109. If you say yes here you get support for the TPS6501x series of
  110. Power Management chips. These include voltage regulators,
  111. lithium ion/polymer battery charging, and other features that
  112. are often used in portable devices like cell phones and cameras.
  113. This driver can also be built as a module. If so, the module
  114. will be called tps65010.
  115. config TPS6507X
  116. tristate "TPS6507x Power Management / Touch Screen chips"
  117. select MFD_CORE
  118. depends on I2C
  119. help
  120. If you say yes here you get support for the TPS6507x series of
  121. Power Management / Touch Screen chips. These include voltage
  122. regulators, lithium ion/polymer battery charging, touch screen
  123. and other features that are often used in portable devices.
  124. This driver can also be built as a module. If so, the module
  125. will be called tps6507x.
  126. config MFD_TPS65217
  127. tristate "TPS65217 Power Management / White LED chips"
  128. depends on I2C
  129. select MFD_CORE
  130. select REGMAP_I2C
  131. help
  132. If you say yes here you get support for the TPS65217 series of
  133. Power Management / White LED chips.
  134. These include voltage regulators, lithium ion/polymer battery
  135. charger, wled and other features that are often used in portable
  136. devices.
  137. This driver can also be built as a module. If so, the module
  138. will be called tps65217.
  139. config MFD_TPS6586X
  140. bool "TPS6586x Power Management chips"
  141. depends on I2C=y && GPIOLIB && GENERIC_HARDIRQS
  142. select MFD_CORE
  143. help
  144. If you say yes here you get support for the TPS6586X series of
  145. Power Management chips.
  146. This driver provides common support for accessing the device,
  147. additional drivers must be enabled in order to use the
  148. functionality of the device.
  149. This driver can also be built as a module. If so, the module
  150. will be called tps6586x.
  151. config MFD_TPS65910
  152. bool "TPS65910 Power Management chip"
  153. depends on I2C=y && GPIOLIB
  154. select MFD_CORE
  155. select GPIO_TPS65910
  156. help
  157. if you say yes here you get support for the TPS65910 series of
  158. Power Management chips.
  159. config MFD_TPS65912
  160. bool
  161. depends on GPIOLIB
  162. config MFD_TPS65912_I2C
  163. bool "TPS95612 Power Management chip with I2C"
  164. select MFD_CORE
  165. select MFD_TPS65912
  166. depends on I2C=y && GPIOLIB
  167. help
  168. If you say yes here you get support for the TPS65912 series of
  169. PM chips with I2C interface.
  170. config MFD_TPS65912_SPI
  171. bool "TPS65912 Power Management chip with SPI"
  172. select MFD_CORE
  173. select MFD_TPS65912
  174. depends on SPI_MASTER && GPIOLIB
  175. help
  176. If you say yes here you get support for the TPS65912 series of
  177. PM chips with SPI interface.
  178. config MENELAUS
  179. bool "Texas Instruments TWL92330/Menelaus PM chip"
  180. depends on I2C=y && ARCH_OMAP2
  181. help
  182. If you say yes here you get support for the Texas Instruments
  183. TWL92330/Menelaus Power Management chip. This include voltage
  184. regulators, Dual slot memory card transceivers, real-time clock
  185. and other features that are often used in portable devices like
  186. cell phones and PDAs.
  187. config TWL4030_CORE
  188. bool "Texas Instruments TWL4030/TWL5030/TWL6030/TPS659x0 Support"
  189. depends on I2C=y && GENERIC_HARDIRQS
  190. help
  191. Say yes here if you have TWL4030 / TWL6030 family chip on your board.
  192. This core driver provides register access and IRQ handling
  193. facilities, and registers devices for the various functions
  194. so that function-specific drivers can bind to them.
  195. These multi-function chips are found on many OMAP2 and OMAP3
  196. boards, providing power management, RTC, GPIO, keypad, a
  197. high speed USB OTG transceiver, an audio codec (on most
  198. versions) and many other features.
  199. config TWL4030_MADC
  200. tristate "Texas Instruments TWL4030 MADC"
  201. depends on TWL4030_CORE
  202. help
  203. This driver provides support for triton TWL4030-MADC. The
  204. driver supports both RT and SW conversion methods.
  205. This driver can be built as a module. If so it will be
  206. named twl4030-madc
  207. config TWL4030_POWER
  208. bool "Support power resources on TWL4030 family chips"
  209. depends on TWL4030_CORE && ARM
  210. help
  211. Say yes here if you want to use the power resources on the
  212. TWL4030 family chips. Most of these resources are regulators,
  213. which have a separate driver; some are control signals, such
  214. as clock request handshaking.
  215. This driver uses board-specific data to initialize the resources
  216. and load scripts controlling which resources are switched off/on
  217. or reset when a sleep, wakeup or warm reset event occurs.
  218. config MFD_TWL4030_AUDIO
  219. bool
  220. depends on TWL4030_CORE
  221. select MFD_CORE
  222. default n
  223. config TWL6030_PWM
  224. tristate "TWL6030 PWM (Pulse Width Modulator) Support"
  225. depends on TWL4030_CORE
  226. select HAVE_PWM
  227. default n
  228. help
  229. Say yes here if you want support for TWL6030 PWM.
  230. This is used to control charging LED brightness.
  231. config TWL6040_CORE
  232. bool
  233. depends on TWL4030_CORE && GENERIC_HARDIRQS
  234. select MFD_CORE
  235. default n
  236. config MFD_STMPE
  237. bool "Support STMicroelectronics STMPE"
  238. depends on (I2C=y || SPI_MASTER=y) && GENERIC_HARDIRQS
  239. select MFD_CORE
  240. help
  241. Support for the STMPE family of I/O Expanders from
  242. STMicroelectronics.
  243. Currently supported devices are:
  244. STMPE811: GPIO, Touchscreen
  245. STMPE1601: GPIO, Keypad
  246. STMPE2401: GPIO, Keypad
  247. STMPE2403: GPIO, Keypad
  248. This driver provides common support for accessing the device,
  249. additional drivers must be enabled in order to use the functionality
  250. of the device. Currently available sub drivers are:
  251. GPIO: stmpe-gpio
  252. Keypad: stmpe-keypad
  253. Touchscreen: stmpe-ts
  254. menu "STMPE Interface Drivers"
  255. depends on MFD_STMPE
  256. config STMPE_I2C
  257. bool "STMPE I2C Inteface"
  258. depends on I2C=y
  259. default y
  260. help
  261. This is used to enable I2C interface of STMPE
  262. config STMPE_SPI
  263. bool "STMPE SPI Inteface"
  264. depends on SPI_MASTER
  265. help
  266. This is used to enable SPI interface of STMPE
  267. endmenu
  268. config MFD_TC3589X
  269. bool "Support Toshiba TC35892 and variants"
  270. depends on I2C=y && GENERIC_HARDIRQS
  271. select MFD_CORE
  272. help
  273. Support for the Toshiba TC35892 and variants I/O Expander.
  274. This driver provides common support for accessing the device,
  275. additional drivers must be enabled in order to use the
  276. functionality of the device.
  277. config MFD_TMIO
  278. bool
  279. default n
  280. config MFD_T7L66XB
  281. bool "Support Toshiba T7L66XB"
  282. depends on ARM && HAVE_CLK
  283. select MFD_CORE
  284. select MFD_TMIO
  285. help
  286. Support for Toshiba Mobile IO Controller T7L66XB
  287. config MFD_TC6387XB
  288. bool "Support Toshiba TC6387XB"
  289. depends on ARM && HAVE_CLK
  290. select MFD_CORE
  291. select MFD_TMIO
  292. help
  293. Support for Toshiba Mobile IO Controller TC6387XB
  294. config MFD_TC6393XB
  295. bool "Support Toshiba TC6393XB"
  296. depends on GPIOLIB && ARM && HAVE_CLK
  297. select MFD_CORE
  298. select MFD_TMIO
  299. help
  300. Support for Toshiba Mobile IO Controller TC6393XB
  301. config PMIC_DA903X
  302. bool "Dialog Semiconductor DA9030/DA9034 PMIC Support"
  303. depends on I2C=y
  304. help
  305. Say yes here to support for Dialog Semiconductor DA9030 (a.k.a
  306. ARAVA) and DA9034 (a.k.a MICCO), these are Power Management IC
  307. usually found on PXA processors-based platforms. This includes
  308. the I2C driver and the core APIs _only_, you have to select
  309. individual components like LCD backlight, voltage regulators,
  310. LEDs and battery-charger under the corresponding menus.
  311. config PMIC_DA9052
  312. bool
  313. select MFD_CORE
  314. config MFD_DA9052_SPI
  315. bool "Support Dialog Semiconductor DA9052/53 PMIC variants with SPI"
  316. select REGMAP_SPI
  317. select REGMAP_IRQ
  318. select PMIC_DA9052
  319. depends on SPI_MASTER=y
  320. help
  321. Support for the Dialog Semiconductor DA9052 PMIC
  322. when controlled using SPI. This driver provides common support
  323. for accessing the device, additional drivers must be enabled in
  324. order to use the functionality of the device.
  325. config MFD_DA9052_I2C
  326. bool "Support Dialog Semiconductor DA9052/53 PMIC variants with I2C"
  327. select REGMAP_I2C
  328. select REGMAP_IRQ
  329. select PMIC_DA9052
  330. depends on I2C=y
  331. help
  332. Support for the Dialog Semiconductor DA9052 PMIC
  333. when controlled using I2C. This driver provides common support
  334. for accessing the device, additional drivers must be enabled in
  335. order to use the functionality of the device.
  336. config PMIC_ADP5520
  337. bool "Analog Devices ADP5520/01 MFD PMIC Core Support"
  338. depends on I2C=y
  339. help
  340. Say yes here to add support for Analog Devices AD5520 and ADP5501,
  341. Multifunction Power Management IC. This includes
  342. the I2C driver and the core APIs _only_, you have to select
  343. individual components like LCD backlight, LEDs, GPIOs and Kepad
  344. under the corresponding menus.
  345. config MFD_MAX8925
  346. bool "Maxim Semiconductor MAX8925 PMIC Support"
  347. depends on I2C=y && GENERIC_HARDIRQS
  348. select MFD_CORE
  349. help
  350. Say yes here to support for Maxim Semiconductor MAX8925. This is
  351. a Power Management IC. This driver provies common support for
  352. accessing the device, additional drivers must be enabled in order
  353. to use the functionality of the device.
  354. config MFD_MAX8997
  355. bool "Maxim Semiconductor MAX8997/8966 PMIC Support"
  356. depends on I2C=y && GENERIC_HARDIRQS
  357. select MFD_CORE
  358. help
  359. Say yes here to support for Maxim Semiconductor MAX8998/8966.
  360. This is a Power Management IC with RTC, Flash, Fuel Gauge, Haptic,
  361. MUIC controls on chip.
  362. This driver provides common support for accessing the device;
  363. additional drivers must be enabled in order to use the functionality
  364. of the device.
  365. config MFD_MAX8998
  366. bool "Maxim Semiconductor MAX8998/National LP3974 PMIC Support"
  367. depends on I2C=y && GENERIC_HARDIRQS
  368. select MFD_CORE
  369. help
  370. Say yes here to support for Maxim Semiconductor MAX8998 and
  371. National Semiconductor LP3974. This is a Power Management IC.
  372. This driver provies common support for accessing the device,
  373. additional drivers must be enabled in order to use the functionality
  374. of the device.
  375. config MFD_S5M_CORE
  376. bool "SAMSUNG S5M Series Support"
  377. depends on I2C=y && GENERIC_HARDIRQS
  378. select MFD_CORE
  379. select REGMAP_I2C
  380. help
  381. Support for the Samsung Electronics S5M MFD series.
  382. This driver provies common support for accessing the device,
  383. additional drivers must be enabled in order to use the functionality
  384. of the device
  385. config MFD_WM8400
  386. tristate "Support Wolfson Microelectronics WM8400"
  387. select MFD_CORE
  388. depends on I2C
  389. select REGMAP_I2C
  390. help
  391. Support for the Wolfson Microelecronics WM8400 PMIC and audio
  392. CODEC. This driver provides common support for accessing
  393. the device, additional drivers must be enabled in order to use
  394. the functionality of the device.
  395. config MFD_WM831X
  396. bool
  397. depends on GENERIC_HARDIRQS
  398. config MFD_WM831X_I2C
  399. bool "Support Wolfson Microelectronics WM831x/2x PMICs with I2C"
  400. select MFD_CORE
  401. select MFD_WM831X
  402. select REGMAP_I2C
  403. depends on I2C=y && GENERIC_HARDIRQS
  404. help
  405. Support for the Wolfson Microelecronics WM831x and WM832x PMICs
  406. when controlled using I2C. This driver provides common support
  407. for accessing the device, additional drivers must be enabled in
  408. order to use the functionality of the device.
  409. config MFD_WM831X_SPI
  410. bool "Support Wolfson Microelectronics WM831x/2x PMICs with SPI"
  411. select MFD_CORE
  412. select MFD_WM831X
  413. select REGMAP_SPI
  414. depends on SPI_MASTER && GENERIC_HARDIRQS
  415. help
  416. Support for the Wolfson Microelecronics WM831x and WM832x PMICs
  417. when controlled using SPI. This driver provides common support
  418. for accessing the device, additional drivers must be enabled in
  419. order to use the functionality of the device.
  420. config MFD_WM8350
  421. bool
  422. depends on GENERIC_HARDIRQS
  423. config MFD_WM8350_CONFIG_MODE_0
  424. bool
  425. depends on MFD_WM8350
  426. config MFD_WM8350_CONFIG_MODE_1
  427. bool
  428. depends on MFD_WM8350
  429. config MFD_WM8350_CONFIG_MODE_2
  430. bool
  431. depends on MFD_WM8350
  432. config MFD_WM8350_CONFIG_MODE_3
  433. bool
  434. depends on MFD_WM8350
  435. config MFD_WM8351_CONFIG_MODE_0
  436. bool
  437. depends on MFD_WM8350
  438. config MFD_WM8351_CONFIG_MODE_1
  439. bool
  440. depends on MFD_WM8350
  441. config MFD_WM8351_CONFIG_MODE_2
  442. bool
  443. depends on MFD_WM8350
  444. config MFD_WM8351_CONFIG_MODE_3
  445. bool
  446. depends on MFD_WM8350
  447. config MFD_WM8352_CONFIG_MODE_0
  448. bool
  449. depends on MFD_WM8350
  450. config MFD_WM8352_CONFIG_MODE_1
  451. bool
  452. depends on MFD_WM8350
  453. config MFD_WM8352_CONFIG_MODE_2
  454. bool
  455. depends on MFD_WM8350
  456. config MFD_WM8352_CONFIG_MODE_3
  457. bool
  458. depends on MFD_WM8350
  459. config MFD_WM8350_I2C
  460. bool "Support Wolfson Microelectronics WM8350 with I2C"
  461. select MFD_WM8350
  462. depends on I2C=y && GENERIC_HARDIRQS
  463. help
  464. The WM8350 is an integrated audio and power management
  465. subsystem with watchdog and RTC functionality for embedded
  466. systems. This option enables core support for the WM8350 with
  467. I2C as the control interface. Additional options must be
  468. selected to enable support for the functionality of the chip.
  469. config MFD_WM8994
  470. bool "Support Wolfson Microelectronics WM8994"
  471. select MFD_CORE
  472. select REGMAP_I2C
  473. select REGMAP_IRQ
  474. depends on I2C=y && GENERIC_HARDIRQS
  475. help
  476. The WM8994 is a highly integrated hi-fi CODEC designed for
  477. smartphone applicatiosn. As well as audio functionality it
  478. has on board GPIO and regulator functionality which is
  479. supported via the relevant subsystems. This driver provides
  480. core support for the WM8994, in order to use the actual
  481. functionaltiy of the device other drivers must be enabled.
  482. config MFD_PCF50633
  483. tristate "Support for NXP PCF50633"
  484. depends on I2C
  485. select REGMAP_I2C
  486. help
  487. Say yes here if you have NXP PCF50633 chip on your board.
  488. This core driver provides register access and IRQ handling
  489. facilities, and registers devices for the various functions
  490. so that function-specific drivers can bind to them.
  491. config PCF50633_ADC
  492. tristate "Support for NXP PCF50633 ADC"
  493. depends on MFD_PCF50633
  494. help
  495. Say yes here if you want to include support for ADC in the
  496. NXP PCF50633 chip.
  497. config PCF50633_GPIO
  498. tristate "Support for NXP PCF50633 GPIO"
  499. depends on MFD_PCF50633
  500. help
  501. Say yes here if you want to include support GPIO for pins on
  502. the PCF50633 chip.
  503. config MFD_MC13783
  504. tristate
  505. config MFD_MC13XXX
  506. tristate "Support Freescale MC13783 and MC13892"
  507. depends on SPI_MASTER
  508. select MFD_CORE
  509. select MFD_MC13783
  510. help
  511. Support for the Freescale (Atlas) PMIC and audio CODECs
  512. MC13783 and MC13892.
  513. This driver provides common support for accessing the device,
  514. additional drivers must be enabled in order to use the
  515. functionality of the device.
  516. config ABX500_CORE
  517. bool "ST-Ericsson ABX500 Mixed Signal Circuit register functions"
  518. default y if ARCH_U300 || ARCH_U8500
  519. help
  520. Say yes here if you have the ABX500 Mixed Signal IC family
  521. chips. This core driver expose register access functions.
  522. Functionality specific drivers using these functions can
  523. remain unchanged when IC changes. Binding of the functions to
  524. actual register access is done by the IC core driver.
  525. config AB3100_CORE
  526. bool "ST-Ericsson AB3100 Mixed Signal Circuit core functions"
  527. depends on I2C=y && ABX500_CORE
  528. select MFD_CORE
  529. default y if ARCH_U300
  530. help
  531. Select this to enable the AB3100 Mixed Signal IC core
  532. functionality. This connects to a AB3100 on the I2C bus
  533. and expose a number of symbols needed for dependent devices
  534. to read and write registers and subscribe to events from
  535. this multi-functional IC. This is needed to use other features
  536. of the AB3100 such as battery-backed RTC, charging control,
  537. LEDs, vibrator, system power and temperature, power management
  538. and ALSA sound.
  539. config AB3100_OTP
  540. tristate "ST-Ericsson AB3100 OTP functions"
  541. depends on AB3100_CORE
  542. default y if AB3100_CORE
  543. help
  544. Select this to enable the AB3100 Mixed Signal IC OTP (one-time
  545. programmable memory) support. This exposes a sysfs file to read
  546. out OTP values.
  547. config EZX_PCAP
  548. bool "PCAP Support"
  549. depends on GENERIC_HARDIRQS && SPI_MASTER
  550. help
  551. This enables the PCAP ASIC present on EZX Phones. This is
  552. needed for MMC, TouchScreen, Sound, USB, etc..
  553. config AB5500_CORE
  554. bool "ST-Ericsson AB5500 Mixed Signal Power Management chip"
  555. depends on ABX500_CORE && MFD_DB5500_PRCMU
  556. select MFD_CORE
  557. help
  558. Select this option to enable access to AB5500 power management
  559. chip. This connects to the db5500 chip via the I2C bus via PRCMU.
  560. This chip embeds various other multimedia funtionalities as well.
  561. config AB5500_DEBUG
  562. bool "Enable debug info via debugfs"
  563. depends on AB5500_CORE && DEBUG_FS
  564. default y if DEBUG_FS
  565. help
  566. Select this option if you want debug information from the AB5500
  567. using the debug filesystem, debugfs.
  568. config AB8500_CORE
  569. bool "ST-Ericsson AB8500 Mixed Signal Power Management chip"
  570. depends on GENERIC_HARDIRQS && ABX500_CORE
  571. select MFD_CORE
  572. help
  573. Select this option to enable access to AB8500 power management
  574. chip. This connects to U8500 either on the SSP/SPI bus (deprecated
  575. since hardware version v1.0) or the I2C bus via PRCMU. It also adds
  576. the irq_chip parts for handling the Mixed Signal chip events.
  577. This chip embeds various other multimedia funtionalities as well.
  578. config AB8500_I2C_CORE
  579. bool "AB8500 register access via PRCMU I2C"
  580. depends on AB8500_CORE && MFD_DB8500_PRCMU
  581. default y
  582. help
  583. This enables register access to the AB8500 chip via PRCMU I2C.
  584. The AB8500 chip can be accessed via SPI or I2C. On DB8500 hardware
  585. the I2C bus is connected to the Power Reset
  586. and Mangagement Unit, PRCMU.
  587. config AB8500_DEBUG
  588. bool "Enable debug info via debugfs"
  589. depends on AB8500_CORE && DEBUG_FS
  590. default y if DEBUG_FS
  591. help
  592. Select this option if you want debug information using the debug
  593. filesystem, debugfs.
  594. config AB8500_GPADC
  595. bool "AB8500 GPADC driver"
  596. depends on AB8500_CORE && REGULATOR_AB8500
  597. default y
  598. help
  599. AB8500 GPADC driver used to convert Acc and battery/ac/usb voltage
  600. config MFD_DB8500_PRCMU
  601. bool "ST-Ericsson DB8500 Power Reset Control Management Unit"
  602. depends on UX500_SOC_DB8500
  603. select MFD_CORE
  604. help
  605. Select this option to enable support for the DB8500 Power Reset
  606. and Control Management Unit. This is basically an autonomous
  607. system controller running an XP70 microprocessor, which is accessed
  608. through a register map.
  609. config MFD_DB5500_PRCMU
  610. bool "ST-Ericsson DB5500 Power Reset Control Management Unit"
  611. depends on UX500_SOC_DB5500
  612. select MFD_CORE
  613. help
  614. Select this option to enable support for the DB5500 Power Reset
  615. and Control Management Unit. This is basically an autonomous
  616. system controller running an XP70 microprocessor, which is accessed
  617. through a register map.
  618. config MFD_CS5535
  619. tristate "Support for CS5535 and CS5536 southbridge core functions"
  620. select MFD_CORE
  621. depends on PCI && X86
  622. ---help---
  623. This is the core driver for CS5535/CS5536 MFD functions. This is
  624. necessary for using the board's GPIO and MFGPT functionality.
  625. config MFD_TIMBERDALE
  626. tristate "Support for the Timberdale FPGA"
  627. select MFD_CORE
  628. depends on PCI && GPIOLIB
  629. ---help---
  630. This is the core driver for the timberdale FPGA. This device is a
  631. multifunction device which exposes numerous platform devices.
  632. The timberdale FPGA can be found on the Intel Atom development board
  633. for in-vehicle infontainment, called Russellville.
  634. config LPC_SCH
  635. tristate "Intel SCH LPC"
  636. depends on PCI
  637. select MFD_CORE
  638. help
  639. LPC bridge function of the Intel SCH provides support for
  640. System Management Bus and General Purpose I/O.
  641. config MFD_RDC321X
  642. tristate "Support for RDC-R321x southbridge"
  643. select MFD_CORE
  644. depends on PCI
  645. help
  646. Say yes here if you want to have support for the RDC R-321x SoC
  647. southbridge which provides access to GPIOs and Watchdog using the
  648. southbridge PCI device configuration space.
  649. config MFD_JANZ_CMODIO
  650. tristate "Support for Janz CMOD-IO PCI MODULbus Carrier Board"
  651. select MFD_CORE
  652. depends on PCI
  653. help
  654. This is the core driver for the Janz CMOD-IO PCI MODULbus
  655. carrier board. This device is a PCI to MODULbus bridge which may
  656. host many different types of MODULbus daughterboards, including
  657. CAN and GPIO controllers.
  658. config MFD_JZ4740_ADC
  659. bool "Support for the JZ4740 SoC ADC core"
  660. select MFD_CORE
  661. select GENERIC_IRQ_CHIP
  662. depends on MACH_JZ4740
  663. help
  664. Say yes here if you want support for the ADC unit in the JZ4740 SoC.
  665. This driver is necessary for jz4740-battery and jz4740-hwmon driver.
  666. config MFD_VX855
  667. tristate "Support for VIA VX855/VX875 integrated south bridge"
  668. depends on PCI
  669. select MFD_CORE
  670. help
  671. Say yes here to enable support for various functions of the
  672. VIA VX855/VX875 south bridge. You will need to enable the vx855_spi
  673. and/or vx855_gpio drivers for this to do anything useful.
  674. config MFD_WL1273_CORE
  675. tristate "Support for TI WL1273 FM radio."
  676. depends on I2C
  677. select MFD_CORE
  678. default n
  679. help
  680. This is the core driver for the TI WL1273 FM radio. This MFD
  681. driver connects the radio-wl1273 V4L2 module and the wl1273
  682. audio codec.
  683. config MFD_OMAP_USB_HOST
  684. bool "Support OMAP USBHS core driver"
  685. depends on USB_EHCI_HCD_OMAP || USB_OHCI_HCD_OMAP3
  686. default y
  687. help
  688. This is the core driver for the OAMP EHCI and OHCI drivers.
  689. This MFD driver does the required setup functionalities for
  690. OMAP USB Host drivers.
  691. config MFD_PM8XXX
  692. tristate
  693. config MFD_PM8921_CORE
  694. tristate "Qualcomm PM8921 PMIC chip"
  695. depends on MSM_SSBI
  696. select MFD_CORE
  697. select MFD_PM8XXX
  698. help
  699. If you say yes to this option, support will be included for the
  700. built-in PM8921 PMIC chip.
  701. This is required if your board has a PM8921 and uses its features,
  702. such as: MPPs, GPIOs, regulators, interrupts, and PWM.
  703. Say M here if you want to include support for PM8921 chip as a module.
  704. This will build a module called "pm8921-core".
  705. config MFD_PM8XXX_IRQ
  706. bool "Support for Qualcomm PM8xxx IRQ features"
  707. depends on MFD_PM8XXX
  708. default y if MFD_PM8XXX
  709. help
  710. This is the IRQ driver for Qualcomm PM 8xxx PMIC chips.
  711. This is required to use certain other PM 8xxx features, such as GPIO
  712. and MPP.
  713. config TPS65911_COMPARATOR
  714. tristate
  715. config MFD_AAT2870_CORE
  716. bool "Support for the AnalogicTech AAT2870"
  717. select MFD_CORE
  718. depends on I2C=y && GPIOLIB
  719. help
  720. If you say yes here you get support for the AAT2870.
  721. This driver provides common support for accessing the device,
  722. additional drivers must be enabled in order to use the
  723. functionality of the device.
  724. config MFD_INTEL_MSIC
  725. bool "Support for Intel MSIC"
  726. depends on INTEL_SCU_IPC
  727. select MFD_CORE
  728. help
  729. Select this option to enable access to Intel MSIC (Avatele
  730. Passage) chip. This chip embeds audio, battery, GPIO, etc.
  731. devices used in Intel Medfield platforms.
  732. endmenu
  733. endif
  734. menu "Multimedia Capabilities Port drivers"
  735. depends on ARCH_SA1100
  736. config MCP
  737. tristate
  738. # Interface drivers
  739. config MCP_SA11X0
  740. tristate "Support SA11x0 MCP interface"
  741. depends on ARCH_SA1100
  742. select MCP
  743. # Chip drivers
  744. config MCP_UCB1200
  745. tristate "Support for UCB1200 / UCB1300"
  746. depends on MCP
  747. config MCP_UCB1200_TS
  748. tristate "Touchscreen interface support"
  749. depends on MCP_UCB1200 && INPUT
  750. endmenu