Kconfig 11 KB

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  1. #
  2. # SPI driver configuration
  3. #
  4. # NOTE: the reason this doesn't show SPI slave support is mostly that
  5. # nobody's needed a slave side API yet. The master-role API is not
  6. # fully appropriate there, so it'd need some thought to do well.
  7. #
  8. menuconfig SPI
  9. bool "SPI support"
  10. depends on HAS_IOMEM
  11. help
  12. The "Serial Peripheral Interface" is a low level synchronous
  13. protocol. Chips that support SPI can have data transfer rates
  14. up to several tens of Mbit/sec. Chips are addressed with a
  15. controller and a chipselect. Most SPI slaves don't support
  16. dynamic device discovery; some are even write-only or read-only.
  17. SPI is widely used by microcontrollers to talk with sensors,
  18. eeprom and flash memory, codecs and various other controller
  19. chips, analog to digital (and d-to-a) converters, and more.
  20. MMC and SD cards can be accessed using SPI protocol; and for
  21. DataFlash cards used in MMC sockets, SPI must always be used.
  22. SPI is one of a family of similar protocols using a four wire
  23. interface (select, clock, data in, data out) including Microwire
  24. (half duplex), SSP, SSI, and PSP. This driver framework should
  25. work with most such devices and controllers.
  26. if SPI
  27. config SPI_DEBUG
  28. boolean "Debug support for SPI drivers"
  29. depends on DEBUG_KERNEL
  30. help
  31. Say "yes" to enable debug messaging (like dev_dbg and pr_debug),
  32. sysfs, and debugfs support in SPI controller and protocol drivers.
  33. #
  34. # MASTER side ... talking to discrete SPI slave chips including microcontrollers
  35. #
  36. config SPI_MASTER
  37. # boolean "SPI Master Support"
  38. boolean
  39. default SPI
  40. help
  41. If your system has an master-capable SPI controller (which
  42. provides the clock and chipselect), you can enable that
  43. controller and the protocol drivers for the SPI slave chips
  44. that are connected.
  45. if SPI_MASTER
  46. comment "SPI Master Controller Drivers"
  47. config SPI_ATMEL
  48. tristate "Atmel SPI Controller"
  49. depends on (ARCH_AT91 || AVR32)
  50. help
  51. This selects a driver for the Atmel SPI Controller, present on
  52. many AT32 (AVR32) and AT91 (ARM) chips.
  53. config SPI_BFIN
  54. tristate "SPI controller driver for ADI Blackfin5xx"
  55. depends on BLACKFIN
  56. help
  57. This is the SPI controller master driver for Blackfin 5xx processor.
  58. config SPI_AU1550
  59. tristate "Au1550/Au12x0 SPI Controller"
  60. depends on (SOC_AU1550 || SOC_AU1200) && EXPERIMENTAL
  61. select SPI_BITBANG
  62. help
  63. If you say yes to this option, support will be included for the
  64. Au1550 SPI controller (may also work with Au1200,Au1210,Au1250).
  65. This driver can also be built as a module. If so, the module
  66. will be called au1550_spi.
  67. config SPI_BITBANG
  68. tristate "Utilities for Bitbanging SPI masters"
  69. help
  70. With a few GPIO pins, your system can bitbang the SPI protocol.
  71. Select this to get SPI support through I/O pins (GPIO, parallel
  72. port, etc). Or, some systems' SPI master controller drivers use
  73. this code to manage the per-word or per-transfer accesses to the
  74. hardware shift registers.
  75. This is library code, and is automatically selected by drivers that
  76. need it. You only need to select this explicitly to support driver
  77. modules that aren't part of this kernel tree.
  78. config SPI_BUTTERFLY
  79. tristate "Parallel port adapter for AVR Butterfly (DEVELOPMENT)"
  80. depends on PARPORT
  81. select SPI_BITBANG
  82. help
  83. This uses a custom parallel port cable to connect to an AVR
  84. Butterfly <http://www.atmel.com/products/avr/butterfly>, an
  85. inexpensive battery powered microcontroller evaluation board.
  86. This same cable can be used to flash new firmware.
  87. config SPI_COLDFIRE_QSPI
  88. tristate "Freescale Coldfire QSPI controller"
  89. depends on (M520x || M523x || M5249 || M527x || M528x || M532x)
  90. help
  91. This enables support for the Coldfire QSPI controller in master
  92. mode.
  93. This driver can also be built as a module. If so, the module
  94. will be called coldfire_qspi.
  95. config SPI_DAVINCI
  96. tristate "SPI controller driver for DaVinci/DA8xx SoC's"
  97. depends on SPI_MASTER && ARCH_DAVINCI
  98. select SPI_BITBANG
  99. help
  100. SPI master controller for DaVinci and DA8xx SPI modules.
  101. config SPI_GPIO
  102. tristate "GPIO-based bitbanging SPI Master"
  103. depends on GENERIC_GPIO
  104. select SPI_BITBANG
  105. help
  106. This simple GPIO bitbanging SPI master uses the arch-neutral GPIO
  107. interface to manage MOSI, MISO, SCK, and chipselect signals. SPI
  108. slaves connected to a bus using this driver are configured as usual,
  109. except that the spi_board_info.controller_data holds the GPIO number
  110. for the chipselect used by this controller driver.
  111. Note that this driver often won't achieve even 1 Mbit/sec speeds,
  112. making it unusually slow for SPI. If your platform can inline
  113. GPIO operations, you should be able to leverage that for better
  114. speed with a custom version of this driver; see the source code.
  115. config SPI_IMX
  116. tristate "Freescale i.MX SPI controllers"
  117. depends on ARCH_MXC
  118. select SPI_BITBANG
  119. help
  120. This enables using the Freescale i.MX SPI controllers in master
  121. mode.
  122. config SPI_LM70_LLP
  123. tristate "Parallel port adapter for LM70 eval board (DEVELOPMENT)"
  124. depends on PARPORT && EXPERIMENTAL
  125. select SPI_BITBANG
  126. help
  127. This driver supports the NS LM70 LLP Evaluation Board,
  128. which interfaces to an LM70 temperature sensor using
  129. a parallel port.
  130. config SPI_MPC52xx
  131. tristate "Freescale MPC52xx SPI (non-PSC) controller support"
  132. depends on PPC_MPC52xx && SPI
  133. select SPI_MASTER_OF
  134. help
  135. This drivers supports the MPC52xx SPI controller in master SPI
  136. mode.
  137. config SPI_MPC52xx_PSC
  138. tristate "Freescale MPC52xx PSC SPI controller"
  139. depends on PPC_MPC52xx && EXPERIMENTAL
  140. help
  141. This enables using the Freescale MPC52xx Programmable Serial
  142. Controller in master SPI mode.
  143. config SPI_MPC8xxx
  144. tristate "Freescale MPC8xxx SPI controller"
  145. depends on FSL_SOC
  146. help
  147. This enables using the Freescale MPC8xxx SPI controllers in master
  148. mode.
  149. config SPI_OMAP_UWIRE
  150. tristate "OMAP1 MicroWire"
  151. depends on ARCH_OMAP1
  152. select SPI_BITBANG
  153. help
  154. This hooks up to the MicroWire controller on OMAP1 chips.
  155. config SPI_OMAP24XX
  156. tristate "McSPI driver for OMAP24xx/OMAP34xx"
  157. depends on ARCH_OMAP2 || ARCH_OMAP3
  158. help
  159. SPI master controller for OMAP24xx/OMAP34xx Multichannel SPI
  160. (McSPI) modules.
  161. config SPI_OMAP_100K
  162. tristate "OMAP SPI 100K"
  163. depends on SPI_MASTER && (ARCH_OMAP850 || ARCH_OMAP730)
  164. help
  165. OMAP SPI 100K master controller for omap7xx boards.
  166. config SPI_ORION
  167. tristate "Orion SPI master (EXPERIMENTAL)"
  168. depends on PLAT_ORION && EXPERIMENTAL
  169. help
  170. This enables using the SPI master controller on the Orion chips.
  171. config SPI_PL022
  172. tristate "ARM AMBA PL022 SSP controller (EXPERIMENTAL)"
  173. depends on ARM_AMBA && EXPERIMENTAL
  174. default y if MACH_U300
  175. default y if ARCH_REALVIEW
  176. default y if INTEGRATOR_IMPD1
  177. default y if ARCH_VERSATILE
  178. help
  179. This selects the ARM(R) AMBA(R) PrimeCell PL022 SSP
  180. controller. If you have an embedded system with an AMBA(R)
  181. bus and a PL022 controller, say Y or M here.
  182. config SPI_PPC4xx
  183. tristate "PPC4xx SPI Controller"
  184. depends on PPC32 && 4xx && SPI_MASTER
  185. select SPI_BITBANG
  186. help
  187. This selects a driver for the PPC4xx SPI Controller.
  188. config SPI_PXA2XX
  189. tristate "PXA2xx SSP SPI master"
  190. depends on ARCH_PXA && EXPERIMENTAL
  191. select PXA_SSP
  192. help
  193. This enables using a PXA2xx SSP port as a SPI master controller.
  194. The driver can be configured to use any SSP port and additional
  195. documentation can be found a Documentation/spi/pxa2xx.
  196. config SPI_S3C24XX
  197. tristate "Samsung S3C24XX series SPI"
  198. depends on ARCH_S3C2410 && EXPERIMENTAL
  199. select SPI_BITBANG
  200. help
  201. SPI driver for Samsung S3C24XX series ARM SoCs
  202. config SPI_S3C24XX_FIQ
  203. bool "S3C24XX driver with FIQ pseudo-DMA"
  204. depends on SPI_S3C24XX
  205. select FIQ
  206. help
  207. Enable FIQ support for the S3C24XX SPI driver to provide pseudo
  208. DMA by using the fast-interrupt request framework, This allows
  209. the driver to get DMA-like performance when there are either
  210. no free DMA channels, or when doing transfers that required both
  211. TX and RX data paths.
  212. config SPI_S3C24XX_GPIO
  213. tristate "Samsung S3C24XX series SPI by GPIO"
  214. depends on ARCH_S3C2410 && EXPERIMENTAL
  215. select SPI_BITBANG
  216. help
  217. SPI driver for Samsung S3C24XX series ARM SoCs using
  218. GPIO lines to provide the SPI bus. This can be used where
  219. the inbuilt hardware cannot provide the transfer mode, or
  220. where the board is using non hardware connected pins.
  221. config SPI_S3C64XX
  222. tristate "Samsung S3C64XX series type SPI"
  223. depends on ARCH_S3C64XX && EXPERIMENTAL
  224. select S3C64XX_DMA
  225. help
  226. SPI driver for Samsung S3C64XX and newer SoCs.
  227. config SPI_SH_MSIOF
  228. tristate "SuperH MSIOF SPI controller"
  229. depends on SUPERH && HAVE_CLK
  230. select SPI_BITBANG
  231. help
  232. SPI driver for SuperH MSIOF blocks.
  233. config SPI_SH_SCI
  234. tristate "SuperH SCI SPI controller"
  235. depends on SUPERH
  236. select SPI_BITBANG
  237. help
  238. SPI driver for SuperH SCI blocks.
  239. config SPI_STMP3XXX
  240. tristate "Freescale STMP37xx/378x SPI/SSP controller"
  241. depends on ARCH_STMP3XXX && SPI_MASTER
  242. help
  243. SPI driver for Freescale STMP37xx/378x SoC SSP interface
  244. config SPI_TXX9
  245. tristate "Toshiba TXx9 SPI controller"
  246. depends on GENERIC_GPIO && CPU_TX49XX
  247. help
  248. SPI driver for Toshiba TXx9 MIPS SoCs
  249. config SPI_XILINX
  250. tristate "Xilinx SPI controller common module"
  251. depends on HAS_IOMEM && EXPERIMENTAL
  252. select SPI_BITBANG
  253. select SPI_XILINX_OF if (XILINX_VIRTEX || MICROBLAZE)
  254. help
  255. This exposes the SPI controller IP from the Xilinx EDK.
  256. See the "OPB Serial Peripheral Interface (SPI) (v1.00e)"
  257. Product Specification document (DS464) for hardware details.
  258. Or for the DS570, see "XPS Serial Peripheral Interface (SPI) (v2.00b)"
  259. config SPI_XILINX_OF
  260. tristate "Xilinx SPI controller OF device"
  261. depends on SPI_XILINX && (XILINX_VIRTEX || MICROBLAZE)
  262. help
  263. This is the OF driver for the SPI controller IP from the Xilinx EDK.
  264. config SPI_XILINX_PLTFM
  265. tristate "Xilinx SPI controller platform device"
  266. depends on SPI_XILINX
  267. help
  268. This is the platform driver for the SPI controller IP
  269. from the Xilinx EDK.
  270. config SPI_NUC900
  271. tristate "Nuvoton NUC900 series SPI"
  272. depends on ARCH_W90X900 && EXPERIMENTAL
  273. select SPI_BITBANG
  274. help
  275. SPI driver for Nuvoton NUC900 series ARM SoCs
  276. #
  277. # Add new SPI master controllers in alphabetical order above this line
  278. #
  279. config SPI_DESIGNWARE
  280. tristate "DesignWare SPI controller core support"
  281. depends on SPI_MASTER
  282. help
  283. general driver for SPI controller core from DesignWare
  284. config SPI_DW_PCI
  285. tristate "PCI interface driver for DW SPI core"
  286. depends on SPI_DESIGNWARE && PCI
  287. config SPI_DW_MMIO
  288. tristate "Memory-mapped io interface driver for DW SPI core"
  289. depends on SPI_DESIGNWARE && HAVE_CLK
  290. #
  291. # There are lots of SPI device types, with sensors and memory
  292. # being probably the most widely used ones.
  293. #
  294. comment "SPI Protocol Masters"
  295. config SPI_SPIDEV
  296. tristate "User mode SPI device driver support"
  297. depends on EXPERIMENTAL
  298. help
  299. This supports user mode SPI protocol drivers.
  300. Note that this application programming interface is EXPERIMENTAL
  301. and hence SUBJECT TO CHANGE WITHOUT NOTICE while it stabilizes.
  302. config SPI_TLE62X0
  303. tristate "Infineon TLE62X0 (for power switching)"
  304. depends on SYSFS
  305. help
  306. SPI driver for Infineon TLE62X0 series line driver chips,
  307. such as the TLE6220, TLE6230 and TLE6240. This provides a
  308. sysfs interface, with each line presented as a kind of GPIO
  309. exposing both switch control and diagnostic feedback.
  310. #
  311. # Add new SPI protocol masters in alphabetical order above this line
  312. #
  313. endif # SPI_MASTER
  314. # (slave support would go here)
  315. endif # SPI