Kconfig 12 KB

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  1. #
  2. # platform-neutral GPIO infrastructure and expanders
  3. #
  4. config ARCH_WANT_OPTIONAL_GPIOLIB
  5. bool
  6. help
  7. Select this config option from the architecture Kconfig, if
  8. it is possible to use gpiolib on the architecture, but let the
  9. user decide whether to actually build it or not.
  10. Select this instead of ARCH_REQUIRE_GPIOLIB, if your architecture does
  11. not depend on GPIOs being available, but rather let the user
  12. decide whether he needs it or not.
  13. config ARCH_REQUIRE_GPIOLIB
  14. bool
  15. select GPIOLIB
  16. help
  17. Platforms select gpiolib if they use this infrastructure
  18. for all their GPIOs, usually starting with ones integrated
  19. into SOC processors.
  20. Selecting this from the architecture code will cause the gpiolib
  21. code to always get built in.
  22. menuconfig GPIOLIB
  23. bool "GPIO Support"
  24. depends on ARCH_WANT_OPTIONAL_GPIOLIB || ARCH_REQUIRE_GPIOLIB
  25. select GENERIC_GPIO
  26. help
  27. This enables GPIO support through the generic GPIO library.
  28. You only need to enable this, if you also want to enable
  29. one or more of the GPIO expansion card drivers below.
  30. If unsure, say N.
  31. if GPIOLIB
  32. config DEBUG_GPIO
  33. bool "Debug GPIO calls"
  34. depends on DEBUG_KERNEL
  35. help
  36. Say Y here to add some extra checks and diagnostics to GPIO calls.
  37. These checks help ensure that GPIOs have been properly initialized
  38. before they are used, and that sleeping calls are not made from
  39. non-sleeping contexts. They can make bitbanged serial protocols
  40. slower. The diagnostics help catch the type of setup errors
  41. that are most common when setting up new platforms or boards.
  42. config GPIO_SYSFS
  43. bool "/sys/class/gpio/... (sysfs interface)"
  44. depends on SYSFS && EXPERIMENTAL
  45. help
  46. Say Y here to add a sysfs interface for GPIOs.
  47. This is mostly useful to work around omissions in a system's
  48. kernel support. Those are common in custom and semicustom
  49. hardware assembled using standard kernels with a minimum of
  50. custom patches. In those cases, userspace code may import
  51. a given GPIO from the kernel, if no kernel driver requested it.
  52. Kernel drivers may also request that a particular GPIO be
  53. exported to userspace; this can be useful when debugging.
  54. # put expanders in the right section, in alphabetical order
  55. config GPIO_MAX730X
  56. tristate
  57. comment "Memory mapped GPIO expanders:"
  58. config GPIO_BASIC_MMIO
  59. tristate "Basic memory-mapped GPIO controllers support"
  60. help
  61. Say yes here to support basic memory-mapped GPIO controllers.
  62. config GPIO_IT8761E
  63. tristate "IT8761E GPIO support"
  64. depends on GPIOLIB
  65. help
  66. Say yes here to support GPIO functionality of IT8761E super I/O chip.
  67. config GPIO_PL061
  68. bool "PrimeCell PL061 GPIO support"
  69. depends on ARM_AMBA
  70. help
  71. Say yes here to support the PrimeCell PL061 GPIO device
  72. config GPIO_XILINX
  73. bool "Xilinx GPIO support"
  74. depends on PPC_OF || MICROBLAZE
  75. help
  76. Say yes here to support the Xilinx FPGA GPIO device
  77. config GPIO_VR41XX
  78. tristate "NEC VR4100 series General-purpose I/O Uint support"
  79. depends on CPU_VR41XX
  80. help
  81. Say yes here to support the NEC VR4100 series General-purpose I/O Uint
  82. config GPIO_SCH
  83. tristate "Intel SCH GPIO"
  84. depends on GPIOLIB && PCI
  85. select MFD_CORE
  86. select LPC_SCH
  87. help
  88. Say yes here to support GPIO interface on Intel Poulsbo SCH.
  89. The Intel SCH contains a total of 14 GPIO pins. Ten GPIOs are
  90. powered by the core power rail and are turned off during sleep
  91. modes (S3 and higher). The remaining four GPIOs are powered by
  92. the Intel SCH suspend power supply. These GPIOs remain
  93. active during S3. The suspend powered GPIOs can be used to wake the
  94. system from the Suspend-to-RAM state.
  95. This driver can also be built as a module. If so, the module
  96. will be called sch-gpio.
  97. config GPIO_VX855
  98. tristate "VIA VX855/VX875 GPIO"
  99. depends on GPIOLIB
  100. select MFD_CORE
  101. select MFD_VX855
  102. help
  103. Support access to the VX855/VX875 GPIO lines through the gpio library.
  104. This driver provides common support for accessing the device,
  105. additional drivers must be enabled in order to use the
  106. functionality of the device.
  107. comment "I2C GPIO expanders:"
  108. config GPIO_MAX7300
  109. tristate "Maxim MAX7300 GPIO expander"
  110. depends on I2C
  111. select GPIO_MAX730X
  112. help
  113. GPIO driver for Maxim MAX7301 I2C-based GPIO expander.
  114. config GPIO_MAX732X
  115. tristate "MAX7319, MAX7320-7327 I2C Port Expanders"
  116. depends on I2C
  117. help
  118. Say yes here to support the MAX7319, MAX7320-7327 series of I2C
  119. Port Expanders. Each IO port on these chips has a fixed role of
  120. Input (designated by 'I'), Push-Pull Output ('O'), or Open-Drain
  121. Input and Output (designed by 'P'). The combinations are listed
  122. below:
  123. 8 bits: max7319 (8I), max7320 (8O), max7321 (8P),
  124. max7322 (4I4O), max7323 (4P4O)
  125. 16 bits: max7324 (8I8O), max7325 (8P8O),
  126. max7326 (4I12O), max7327 (4P12O)
  127. Board setup code must specify the model to use, and the start
  128. number for these GPIOs.
  129. config GPIO_MAX732X_IRQ
  130. bool "Interrupt controller support for MAX732x"
  131. depends on GPIO_MAX732X=y && GENERIC_HARDIRQS
  132. help
  133. Say yes here to enable the max732x to be used as an interrupt
  134. controller. It requires the driver to be built in the kernel.
  135. config GPIO_PCA953X
  136. tristate "PCA953x, PCA955x, TCA64xx, and MAX7310 I/O ports"
  137. depends on I2C
  138. help
  139. Say yes here to provide access to several register-oriented
  140. SMBus I/O expanders, made mostly by NXP or TI. Compatible
  141. models include:
  142. 4 bits: pca9536, pca9537
  143. 8 bits: max7310, pca9534, pca9538, pca9554, pca9557,
  144. tca6408
  145. 16 bits: pca9535, pca9539, pca9555, tca6416
  146. This driver can also be built as a module. If so, the module
  147. will be called pca953x.
  148. config GPIO_PCA953X_IRQ
  149. bool "Interrupt controller support for PCA953x"
  150. depends on GPIO_PCA953X=y
  151. help
  152. Say yes here to enable the pca953x to be used as an interrupt
  153. controller. It requires the driver to be built in the kernel.
  154. config GPIO_PCF857X
  155. tristate "PCF857x, PCA{85,96}7x, and MAX732[89] I2C GPIO expanders"
  156. depends on I2C
  157. help
  158. Say yes here to provide access to most "quasi-bidirectional" I2C
  159. GPIO expanders used for additional digital outputs or inputs.
  160. Most of these parts are from NXP, though TI is a second source for
  161. some of them. Compatible models include:
  162. 8 bits: pcf8574, pcf8574a, pca8574, pca8574a,
  163. pca9670, pca9672, pca9674, pca9674a,
  164. max7328, max7329
  165. 16 bits: pcf8575, pcf8575c, pca8575,
  166. pca9671, pca9673, pca9675
  167. Your board setup code will need to declare the expanders in
  168. use, and assign numbers to the GPIOs they expose. Those GPIOs
  169. can then be used from drivers and other kernel code, just like
  170. other GPIOs, but only accessible from task contexts.
  171. This driver provides an in-kernel interface to those GPIOs using
  172. platform-neutral GPIO calls.
  173. config GPIO_SX150X
  174. bool "Semtech SX150x I2C GPIO expander"
  175. depends on I2C=y
  176. default n
  177. help
  178. Say yes here to provide support for Semtech SX150-series I2C
  179. GPIO expanders. Compatible models include:
  180. 8 bits: sx1508q
  181. 16 bits: sx1509q
  182. config GPIO_STMPE
  183. bool "STMPE GPIOs"
  184. depends on MFD_STMPE
  185. help
  186. This enables support for the GPIOs found on the STMPE I/O
  187. Expanders.
  188. config GPIO_TC3589X
  189. bool "TC3589X GPIOs"
  190. depends on MFD_TC3589X
  191. help
  192. This enables support for the GPIOs found on the TC3589X
  193. I/O Expander.
  194. config GPIO_TWL4030
  195. tristate "TWL4030, TWL5030, and TPS659x0 GPIOs"
  196. depends on TWL4030_CORE
  197. help
  198. Say yes here to access the GPIO signals of various multi-function
  199. power management chips from Texas Instruments.
  200. config GPIO_WM831X
  201. tristate "WM831x GPIOs"
  202. depends on MFD_WM831X
  203. help
  204. Say yes here to access the GPIO signals of WM831x power management
  205. chips from Wolfson Microelectronics.
  206. config GPIO_WM8350
  207. tristate "WM8350 GPIOs"
  208. depends on MFD_WM8350
  209. help
  210. Say yes here to access the GPIO signals of WM8350 power management
  211. chips from Wolfson Microelectronics.
  212. config GPIO_WM8994
  213. tristate "WM8994 GPIOs"
  214. depends on MFD_WM8994
  215. help
  216. Say yes here to access the GPIO signals of WM8994 audio hub
  217. CODECs from Wolfson Microelectronics.
  218. config GPIO_ADP5520
  219. tristate "GPIO Support for ADP5520 PMIC"
  220. depends on PMIC_ADP5520
  221. help
  222. This option enables support for on-chip GPIO found
  223. on Analog Devices ADP5520 PMICs.
  224. To compile this driver as a module, choose M here: the module will
  225. be called adp5520-gpio.
  226. config GPIO_ADP5588
  227. tristate "ADP5588 I2C GPIO expander"
  228. depends on I2C
  229. help
  230. This option enables support for 18 GPIOs found
  231. on Analog Devices ADP5588 GPIO Expanders.
  232. To compile this driver as a module, choose M here: the module will be
  233. called adp5588-gpio.
  234. config GPIO_ADP5588_IRQ
  235. bool "Interrupt controller support for ADP5588"
  236. depends on GPIO_ADP5588=y
  237. help
  238. Say yes here to enable the adp5588 to be used as an interrupt
  239. controller. It requires the driver to be built in the kernel.
  240. comment "PCI GPIO expanders:"
  241. config GPIO_CS5535
  242. tristate "AMD CS5535/CS5536 GPIO support"
  243. depends on PCI && !CS5535_GPIO
  244. help
  245. The AMD CS5535 and CS5536 southbridges support 28 GPIO pins that
  246. can be used for quite a number of things. The CS5535/6 is found on
  247. AMD Geode and Lemote Yeeloong devices.
  248. If unsure, say N.
  249. config GPIO_BT8XX
  250. tristate "BT8XX GPIO abuser"
  251. depends on PCI && VIDEO_BT848=n
  252. help
  253. The BT8xx frame grabber chip has 24 GPIO pins than can be abused
  254. as a cheap PCI GPIO card.
  255. This chip can be found on Miro, Hauppauge and STB TV-cards.
  256. The card needs to be physically altered for using it as a
  257. GPIO card. For more information on how to build a GPIO card
  258. from a BT8xx TV card, see the documentation file at
  259. Documentation/bt8xxgpio.txt
  260. If unsure, say N.
  261. config GPIO_LANGWELL
  262. bool "Intel Langwell/Penwell GPIO support"
  263. depends on PCI
  264. help
  265. Say Y here to support Intel Langwell/Penwell GPIO.
  266. config GPIO_PCH
  267. tristate "PCH GPIO of Intel Topcliff"
  268. depends on PCI
  269. help
  270. This driver is for PCH(Platform controller Hub) GPIO of Intel Topcliff
  271. which is an IOH(Input/Output Hub) for x86 embedded processor.
  272. This driver can access PCH GPIO device.
  273. config GPIO_TIMBERDALE
  274. bool "Support for timberdale GPIO IP"
  275. depends on MFD_TIMBERDALE && GPIOLIB && HAS_IOMEM
  276. ---help---
  277. Add support for the GPIO IP in the timberdale FPGA.
  278. config GPIO_RDC321X
  279. tristate "RDC R-321x GPIO support"
  280. depends on PCI && GPIOLIB
  281. select MFD_CORE
  282. select MFD_RDC321X
  283. help
  284. Support for the RDC R321x SoC GPIOs over southbridge
  285. PCI configuration space.
  286. comment "SPI GPIO expanders:"
  287. config GPIO_MAX7301
  288. tristate "Maxim MAX7301 GPIO expander"
  289. depends on SPI_MASTER
  290. select GPIO_MAX730X
  291. help
  292. GPIO driver for Maxim MAX7301 SPI-based GPIO expander.
  293. config GPIO_MCP23S08
  294. tristate "Microchip MCP23S08 I/O expander"
  295. depends on SPI_MASTER
  296. help
  297. SPI driver for Microchip MCP23S08 I/O expander. This provides
  298. a GPIO interface supporting inputs and outputs.
  299. config GPIO_MC33880
  300. tristate "Freescale MC33880 high-side/low-side switch"
  301. depends on SPI_MASTER
  302. help
  303. SPI driver for Freescale MC33880 high-side/low-side switch.
  304. This provides GPIO interface supporting inputs and outputs.
  305. config GPIO_74X164
  306. tristate "74x164 serial-in/parallel-out 8-bits shift register"
  307. depends on SPI_MASTER
  308. help
  309. Platform driver for 74x164 compatible serial-in/parallel-out
  310. 8-outputs shift registers. This driver can be used to provide access
  311. to more gpio outputs.
  312. comment "AC97 GPIO expanders:"
  313. config GPIO_UCB1400
  314. bool "Philips UCB1400 GPIO"
  315. depends on UCB1400_CORE
  316. help
  317. This enables support for the Philips UCB1400 GPIO pins.
  318. The UCB1400 is an AC97 audio codec.
  319. To compile this driver as a module, choose M here: the
  320. module will be called ucb1400_gpio.
  321. comment "MODULbus GPIO expanders:"
  322. config GPIO_JANZ_TTL
  323. tristate "Janz VMOD-TTL Digital IO Module"
  324. depends on MFD_JANZ_CMODIO
  325. help
  326. This enables support for the Janz VMOD-TTL Digital IO module.
  327. This driver provides support for driving the pins in output
  328. mode only. Input mode is not supported.
  329. endif