Kconfig 51 KB

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  1. config ARM
  2. bool
  3. default y
  4. select HAVE_AOUT
  5. select HAVE_IDE
  6. select HAVE_MEMBLOCK
  7. select RTC_LIB
  8. select SYS_SUPPORTS_APM_EMULATION
  9. select GENERIC_ATOMIC64 if (!CPU_32v6K || !AEABI)
  10. select HAVE_OPROFILE if (HAVE_PERF_EVENTS)
  11. select HAVE_ARCH_KGDB
  12. select HAVE_KPROBES if (!XIP_KERNEL)
  13. select HAVE_KRETPROBES if (HAVE_KPROBES)
  14. select HAVE_FUNCTION_TRACER if (!XIP_KERNEL)
  15. select HAVE_FTRACE_MCOUNT_RECORD if (!XIP_KERNEL)
  16. select HAVE_DYNAMIC_FTRACE if (!XIP_KERNEL)
  17. select HAVE_FUNCTION_GRAPH_TRACER if (!THUMB2_KERNEL)
  18. select HAVE_GENERIC_DMA_COHERENT
  19. select HAVE_KERNEL_GZIP
  20. select HAVE_KERNEL_LZO
  21. select HAVE_KERNEL_LZMA
  22. select HAVE_IRQ_WORK
  23. select HAVE_PERF_EVENTS
  24. select PERF_USE_VMALLOC
  25. select HAVE_REGS_AND_STACK_ACCESS_API
  26. select HAVE_HW_BREAKPOINT if (PERF_EVENTS && (CPU_V6 || CPU_V7))
  27. help
  28. The ARM series is a line of low-power-consumption RISC chip designs
  29. licensed by ARM Ltd and targeted at embedded applications and
  30. handhelds such as the Compaq IPAQ. ARM-based PCs are no longer
  31. manufactured, but legacy ARM-based PC hardware remains popular in
  32. Europe. There is an ARM Linux project with a web page at
  33. <http://www.arm.linux.org.uk/>.
  34. config HAVE_PWM
  35. bool
  36. config SYS_SUPPORTS_APM_EMULATION
  37. bool
  38. config HAVE_SCHED_CLOCK
  39. bool
  40. config GENERIC_GPIO
  41. bool
  42. config ARCH_USES_GETTIMEOFFSET
  43. bool
  44. default n
  45. config GENERIC_CLOCKEVENTS
  46. bool
  47. config GENERIC_CLOCKEVENTS_BROADCAST
  48. bool
  49. depends on GENERIC_CLOCKEVENTS
  50. default y if SMP
  51. config HAVE_TCM
  52. bool
  53. select GENERIC_ALLOCATOR
  54. config HAVE_PROC_CPU
  55. bool
  56. config NO_IOPORT
  57. bool
  58. config EISA
  59. bool
  60. ---help---
  61. The Extended Industry Standard Architecture (EISA) bus was
  62. developed as an open alternative to the IBM MicroChannel bus.
  63. The EISA bus provided some of the features of the IBM MicroChannel
  64. bus while maintaining backward compatibility with cards made for
  65. the older ISA bus. The EISA bus saw limited use between 1988 and
  66. 1995 when it was made obsolete by the PCI bus.
  67. Say Y here if you are building a kernel for an EISA-based machine.
  68. Otherwise, say N.
  69. config SBUS
  70. bool
  71. config MCA
  72. bool
  73. help
  74. MicroChannel Architecture is found in some IBM PS/2 machines and
  75. laptops. It is a bus system similar to PCI or ISA. See
  76. <file:Documentation/mca.txt> (and especially the web page given
  77. there) before attempting to build an MCA bus kernel.
  78. config GENERIC_HARDIRQS
  79. bool
  80. default y
  81. config STACKTRACE_SUPPORT
  82. bool
  83. default y
  84. config HAVE_LATENCYTOP_SUPPORT
  85. bool
  86. depends on !SMP
  87. default y
  88. config LOCKDEP_SUPPORT
  89. bool
  90. default y
  91. config TRACE_IRQFLAGS_SUPPORT
  92. bool
  93. default y
  94. config HARDIRQS_SW_RESEND
  95. bool
  96. default y
  97. config GENERIC_IRQ_PROBE
  98. bool
  99. default y
  100. config GENERIC_LOCKBREAK
  101. bool
  102. default y
  103. depends on SMP && PREEMPT
  104. config RWSEM_GENERIC_SPINLOCK
  105. bool
  106. default y
  107. config RWSEM_XCHGADD_ALGORITHM
  108. bool
  109. config ARCH_HAS_ILOG2_U32
  110. bool
  111. config ARCH_HAS_ILOG2_U64
  112. bool
  113. config ARCH_HAS_CPUFREQ
  114. bool
  115. help
  116. Internal node to signify that the ARCH has CPUFREQ support
  117. and that the relevant menu configurations are displayed for
  118. it.
  119. config ARCH_HAS_CPU_IDLE_WAIT
  120. def_bool y
  121. config GENERIC_HWEIGHT
  122. bool
  123. default y
  124. config GENERIC_CALIBRATE_DELAY
  125. bool
  126. default y
  127. config ARCH_MAY_HAVE_PC_FDC
  128. bool
  129. config ZONE_DMA
  130. bool
  131. config NEED_DMA_MAP_STATE
  132. def_bool y
  133. config GENERIC_ISA_DMA
  134. bool
  135. config FIQ
  136. bool
  137. config ARCH_MTD_XIP
  138. bool
  139. config GENERIC_HARDIRQS_NO__DO_IRQ
  140. def_bool y
  141. config ARM_L1_CACHE_SHIFT_6
  142. bool
  143. help
  144. Setting ARM L1 cache line size to 64 Bytes.
  145. config VECTORS_BASE
  146. hex
  147. default 0xffff0000 if MMU || CPU_HIGH_VECTOR
  148. default DRAM_BASE if REMAP_VECTORS_TO_RAM
  149. default 0x00000000
  150. help
  151. The base address of exception vectors.
  152. source "init/Kconfig"
  153. source "kernel/Kconfig.freezer"
  154. menu "System Type"
  155. config MMU
  156. bool "MMU-based Paged Memory Management Support"
  157. default y
  158. help
  159. Select if you want MMU-based virtualised addressing space
  160. support by paged memory management. If unsure, say 'Y'.
  161. #
  162. # The "ARM system type" choice list is ordered alphabetically by option
  163. # text. Please add new entries in the option alphabetic order.
  164. #
  165. choice
  166. prompt "ARM system type"
  167. default ARCH_VERSATILE
  168. config ARCH_AAEC2000
  169. bool "Agilent AAEC-2000 based"
  170. select CPU_ARM920T
  171. select ARM_AMBA
  172. select HAVE_CLK
  173. select ARCH_USES_GETTIMEOFFSET
  174. help
  175. This enables support for systems based on the Agilent AAEC-2000
  176. config ARCH_INTEGRATOR
  177. bool "ARM Ltd. Integrator family"
  178. select ARM_AMBA
  179. select ARCH_HAS_CPUFREQ
  180. select COMMON_CLKDEV
  181. select ICST
  182. select GENERIC_CLOCKEVENTS
  183. select PLAT_VERSATILE
  184. help
  185. Support for ARM's Integrator platform.
  186. config ARCH_REALVIEW
  187. bool "ARM Ltd. RealView family"
  188. select ARM_AMBA
  189. select COMMON_CLKDEV
  190. select ICST
  191. select GENERIC_CLOCKEVENTS
  192. select ARCH_WANT_OPTIONAL_GPIOLIB
  193. select PLAT_VERSATILE
  194. select ARM_TIMER_SP804
  195. select GPIO_PL061 if GPIOLIB
  196. help
  197. This enables support for ARM Ltd RealView boards.
  198. config ARCH_VERSATILE
  199. bool "ARM Ltd. Versatile family"
  200. select ARM_AMBA
  201. select ARM_VIC
  202. select COMMON_CLKDEV
  203. select ICST
  204. select GENERIC_CLOCKEVENTS
  205. select ARCH_WANT_OPTIONAL_GPIOLIB
  206. select PLAT_VERSATILE
  207. select ARM_TIMER_SP804
  208. help
  209. This enables support for ARM Ltd Versatile board.
  210. config ARCH_VEXPRESS
  211. bool "ARM Ltd. Versatile Express family"
  212. select ARCH_WANT_OPTIONAL_GPIOLIB
  213. select ARM_AMBA
  214. select ARM_TIMER_SP804
  215. select COMMON_CLKDEV
  216. select GENERIC_CLOCKEVENTS
  217. select HAVE_CLK
  218. select ICST
  219. select PLAT_VERSATILE
  220. help
  221. This enables support for the ARM Ltd Versatile Express boards.
  222. config ARCH_AT91
  223. bool "Atmel AT91"
  224. select ARCH_REQUIRE_GPIOLIB
  225. select HAVE_CLK
  226. help
  227. This enables support for systems based on the Atmel AT91RM9200,
  228. AT91SAM9 and AT91CAP9 processors.
  229. config ARCH_BCMRING
  230. bool "Broadcom BCMRING"
  231. depends on MMU
  232. select CPU_V6
  233. select ARM_AMBA
  234. select COMMON_CLKDEV
  235. select GENERIC_CLOCKEVENTS
  236. select ARCH_WANT_OPTIONAL_GPIOLIB
  237. help
  238. Support for Broadcom's BCMRing platform.
  239. config ARCH_CLPS711X
  240. bool "Cirrus Logic CLPS711x/EP721x-based"
  241. select CPU_ARM720T
  242. select ARCH_USES_GETTIMEOFFSET
  243. help
  244. Support for Cirrus Logic 711x/721x based boards.
  245. config ARCH_CNS3XXX
  246. bool "Cavium Networks CNS3XXX family"
  247. select CPU_V6
  248. select GENERIC_CLOCKEVENTS
  249. select ARM_GIC
  250. select PCI_DOMAINS if PCI
  251. help
  252. Support for Cavium Networks CNS3XXX platform.
  253. config ARCH_GEMINI
  254. bool "Cortina Systems Gemini"
  255. select CPU_FA526
  256. select ARCH_REQUIRE_GPIOLIB
  257. select ARCH_USES_GETTIMEOFFSET
  258. help
  259. Support for the Cortina Systems Gemini family SoCs
  260. config ARCH_EBSA110
  261. bool "EBSA-110"
  262. select CPU_SA110
  263. select ISA
  264. select NO_IOPORT
  265. select ARCH_USES_GETTIMEOFFSET
  266. help
  267. This is an evaluation board for the StrongARM processor available
  268. from Digital. It has limited hardware on-board, including an
  269. Ethernet interface, two PCMCIA sockets, two serial ports and a
  270. parallel port.
  271. config ARCH_EP93XX
  272. bool "EP93xx-based"
  273. select CPU_ARM920T
  274. select ARM_AMBA
  275. select ARM_VIC
  276. select COMMON_CLKDEV
  277. select ARCH_REQUIRE_GPIOLIB
  278. select ARCH_HAS_HOLES_MEMORYMODEL
  279. select ARCH_USES_GETTIMEOFFSET
  280. help
  281. This enables support for the Cirrus EP93xx series of CPUs.
  282. config ARCH_FOOTBRIDGE
  283. bool "FootBridge"
  284. select CPU_SA110
  285. select FOOTBRIDGE
  286. select ARCH_USES_GETTIMEOFFSET
  287. help
  288. Support for systems based on the DC21285 companion chip
  289. ("FootBridge"), such as the Simtec CATS and the Rebel NetWinder.
  290. config ARCH_MXC
  291. bool "Freescale MXC/iMX-based"
  292. select GENERIC_CLOCKEVENTS
  293. select ARCH_REQUIRE_GPIOLIB
  294. select COMMON_CLKDEV
  295. help
  296. Support for Freescale MXC/iMX-based family of processors
  297. config ARCH_STMP3XXX
  298. bool "Freescale STMP3xxx"
  299. select CPU_ARM926T
  300. select COMMON_CLKDEV
  301. select ARCH_REQUIRE_GPIOLIB
  302. select GENERIC_CLOCKEVENTS
  303. select USB_ARCH_HAS_EHCI
  304. help
  305. Support for systems based on the Freescale 3xxx CPUs.
  306. config ARCH_NETX
  307. bool "Hilscher NetX based"
  308. select CPU_ARM926T
  309. select ARM_VIC
  310. select GENERIC_CLOCKEVENTS
  311. help
  312. This enables support for systems based on the Hilscher NetX Soc
  313. config ARCH_H720X
  314. bool "Hynix HMS720x-based"
  315. select CPU_ARM720T
  316. select ISA_DMA_API
  317. select ARCH_USES_GETTIMEOFFSET
  318. help
  319. This enables support for systems based on the Hynix HMS720x
  320. config ARCH_IOP13XX
  321. bool "IOP13xx-based"
  322. depends on MMU
  323. select CPU_XSC3
  324. select PLAT_IOP
  325. select PCI
  326. select ARCH_SUPPORTS_MSI
  327. select VMSPLIT_1G
  328. help
  329. Support for Intel's IOP13XX (XScale) family of processors.
  330. config ARCH_IOP32X
  331. bool "IOP32x-based"
  332. depends on MMU
  333. select CPU_XSCALE
  334. select PLAT_IOP
  335. select PCI
  336. select ARCH_REQUIRE_GPIOLIB
  337. help
  338. Support for Intel's 80219 and IOP32X (XScale) family of
  339. processors.
  340. config ARCH_IOP33X
  341. bool "IOP33x-based"
  342. depends on MMU
  343. select CPU_XSCALE
  344. select PLAT_IOP
  345. select PCI
  346. select ARCH_REQUIRE_GPIOLIB
  347. help
  348. Support for Intel's IOP33X (XScale) family of processors.
  349. config ARCH_IXP23XX
  350. bool "IXP23XX-based"
  351. depends on MMU
  352. select CPU_XSC3
  353. select PCI
  354. select ARCH_USES_GETTIMEOFFSET
  355. help
  356. Support for Intel's IXP23xx (XScale) family of processors.
  357. config ARCH_IXP2000
  358. bool "IXP2400/2800-based"
  359. depends on MMU
  360. select CPU_XSCALE
  361. select PCI
  362. select ARCH_USES_GETTIMEOFFSET
  363. help
  364. Support for Intel's IXP2400/2800 (XScale) family of processors.
  365. config ARCH_IXP4XX
  366. bool "IXP4xx-based"
  367. depends on MMU
  368. select CPU_XSCALE
  369. select GENERIC_GPIO
  370. select GENERIC_CLOCKEVENTS
  371. select HAVE_SCHED_CLOCK
  372. select DMABOUNCE if PCI
  373. help
  374. Support for Intel's IXP4XX (XScale) family of processors.
  375. config ARCH_DOVE
  376. bool "Marvell Dove"
  377. select PCI
  378. select ARCH_REQUIRE_GPIOLIB
  379. select GENERIC_CLOCKEVENTS
  380. select PLAT_ORION
  381. help
  382. Support for the Marvell Dove SoC 88AP510
  383. config ARCH_KIRKWOOD
  384. bool "Marvell Kirkwood"
  385. select CPU_FEROCEON
  386. select PCI
  387. select ARCH_REQUIRE_GPIOLIB
  388. select GENERIC_CLOCKEVENTS
  389. select PLAT_ORION
  390. help
  391. Support for the following Marvell Kirkwood series SoCs:
  392. 88F6180, 88F6192 and 88F6281.
  393. config ARCH_LOKI
  394. bool "Marvell Loki (88RC8480)"
  395. select CPU_FEROCEON
  396. select GENERIC_CLOCKEVENTS
  397. select PLAT_ORION
  398. help
  399. Support for the Marvell Loki (88RC8480) SoC.
  400. config ARCH_LPC32XX
  401. bool "NXP LPC32XX"
  402. select CPU_ARM926T
  403. select ARCH_REQUIRE_GPIOLIB
  404. select HAVE_IDE
  405. select ARM_AMBA
  406. select USB_ARCH_HAS_OHCI
  407. select COMMON_CLKDEV
  408. select GENERIC_TIME
  409. select GENERIC_CLOCKEVENTS
  410. help
  411. Support for the NXP LPC32XX family of processors
  412. config ARCH_MV78XX0
  413. bool "Marvell MV78xx0"
  414. select CPU_FEROCEON
  415. select PCI
  416. select ARCH_REQUIRE_GPIOLIB
  417. select GENERIC_CLOCKEVENTS
  418. select PLAT_ORION
  419. help
  420. Support for the following Marvell MV78xx0 series SoCs:
  421. MV781x0, MV782x0.
  422. config ARCH_ORION5X
  423. bool "Marvell Orion"
  424. depends on MMU
  425. select CPU_FEROCEON
  426. select PCI
  427. select ARCH_REQUIRE_GPIOLIB
  428. select GENERIC_CLOCKEVENTS
  429. select PLAT_ORION
  430. help
  431. Support for the following Marvell Orion 5x series SoCs:
  432. Orion-1 (5181), Orion-VoIP (5181L), Orion-NAS (5182),
  433. Orion-2 (5281), Orion-1-90 (6183).
  434. config ARCH_MMP
  435. bool "Marvell PXA168/910/MMP2"
  436. depends on MMU
  437. select ARCH_REQUIRE_GPIOLIB
  438. select COMMON_CLKDEV
  439. select GENERIC_CLOCKEVENTS
  440. select HAVE_SCHED_CLOCK
  441. select TICK_ONESHOT
  442. select PLAT_PXA
  443. select SPARSE_IRQ
  444. help
  445. Support for Marvell's PXA168/PXA910(MMP) and MMP2 processor line.
  446. config ARCH_KS8695
  447. bool "Micrel/Kendin KS8695"
  448. select CPU_ARM922T
  449. select ARCH_REQUIRE_GPIOLIB
  450. select ARCH_USES_GETTIMEOFFSET
  451. help
  452. Support for Micrel/Kendin KS8695 "Centaur" (ARM922T) based
  453. System-on-Chip devices.
  454. config ARCH_NS9XXX
  455. bool "NetSilicon NS9xxx"
  456. select CPU_ARM926T
  457. select GENERIC_GPIO
  458. select GENERIC_CLOCKEVENTS
  459. select HAVE_CLK
  460. help
  461. Say Y here if you intend to run this kernel on a NetSilicon NS9xxx
  462. System.
  463. <http://www.digi.com/products/microprocessors/index.jsp>
  464. config ARCH_W90X900
  465. bool "Nuvoton W90X900 CPU"
  466. select CPU_ARM926T
  467. select ARCH_REQUIRE_GPIOLIB
  468. select COMMON_CLKDEV
  469. select GENERIC_CLOCKEVENTS
  470. help
  471. Support for Nuvoton (Winbond logic dept.) ARM9 processor,
  472. At present, the w90x900 has been renamed nuc900, regarding
  473. the ARM series product line, you can login the following
  474. link address to know more.
  475. <http://www.nuvoton.com/hq/enu/ProductAndSales/ProductLines/
  476. ConsumerElectronicsIC/ARMMicrocontroller/ARMMicrocontroller>
  477. config ARCH_NUC93X
  478. bool "Nuvoton NUC93X CPU"
  479. select CPU_ARM926T
  480. select COMMON_CLKDEV
  481. help
  482. Support for Nuvoton (Winbond logic dept.) NUC93X MCU,The NUC93X is a
  483. low-power and high performance MPEG-4/JPEG multimedia controller chip.
  484. config ARCH_TEGRA
  485. bool "NVIDIA Tegra"
  486. select GENERIC_TIME
  487. select GENERIC_CLOCKEVENTS
  488. select GENERIC_GPIO
  489. select HAVE_CLK
  490. select COMMON_CLKDEV
  491. select ARCH_HAS_BARRIERS if CACHE_L2X0
  492. select ARCH_HAS_CPUFREQ
  493. help
  494. This enables support for NVIDIA Tegra based systems (Tegra APX,
  495. Tegra 6xx and Tegra 2 series).
  496. config ARCH_PNX4008
  497. bool "Philips Nexperia PNX4008 Mobile"
  498. select CPU_ARM926T
  499. select COMMON_CLKDEV
  500. select ARCH_USES_GETTIMEOFFSET
  501. help
  502. This enables support for Philips PNX4008 mobile platform.
  503. config ARCH_PXA
  504. bool "PXA2xx/PXA3xx-based"
  505. depends on MMU
  506. select ARCH_MTD_XIP
  507. select ARCH_HAS_CPUFREQ
  508. select COMMON_CLKDEV
  509. select ARCH_REQUIRE_GPIOLIB
  510. select GENERIC_CLOCKEVENTS
  511. select TICK_ONESHOT
  512. select PLAT_PXA
  513. select SPARSE_IRQ
  514. help
  515. Support for Intel/Marvell's PXA2xx/PXA3xx processor line.
  516. config ARCH_MSM
  517. bool "Qualcomm MSM"
  518. select HAVE_CLK
  519. select GENERIC_CLOCKEVENTS
  520. select ARCH_REQUIRE_GPIOLIB
  521. help
  522. Support for Qualcomm MSM/QSD based systems. This runs on the
  523. apps processor of the MSM/QSD and depends on a shared memory
  524. interface to the modem processor which runs the baseband
  525. stack and controls some vital subsystems
  526. (clock and power control, etc).
  527. config ARCH_SHMOBILE
  528. bool "Renesas SH-Mobile"
  529. help
  530. Support for Renesas's SH-Mobile ARM platforms
  531. config ARCH_RPC
  532. bool "RiscPC"
  533. select ARCH_ACORN
  534. select FIQ
  535. select TIMER_ACORN
  536. select ARCH_MAY_HAVE_PC_FDC
  537. select HAVE_PATA_PLATFORM
  538. select ISA_DMA_API
  539. select NO_IOPORT
  540. select ARCH_SPARSEMEM_ENABLE
  541. select ARCH_USES_GETTIMEOFFSET
  542. help
  543. On the Acorn Risc-PC, Linux can support the internal IDE disk and
  544. CD-ROM interface, serial and parallel port, and the floppy drive.
  545. config ARCH_SA1100
  546. bool "SA1100-based"
  547. select CPU_SA1100
  548. select ISA
  549. select ARCH_SPARSEMEM_ENABLE
  550. select ARCH_MTD_XIP
  551. select ARCH_HAS_CPUFREQ
  552. select CPU_FREQ
  553. select GENERIC_CLOCKEVENTS
  554. select HAVE_CLK
  555. select TICK_ONESHOT
  556. select ARCH_REQUIRE_GPIOLIB
  557. help
  558. Support for StrongARM 11x0 based boards.
  559. config ARCH_S3C2410
  560. bool "Samsung S3C2410, S3C2412, S3C2413, S3C2416, S3C2440, S3C2442, S3C2443, S3C2450"
  561. select GENERIC_GPIO
  562. select ARCH_HAS_CPUFREQ
  563. select HAVE_CLK
  564. select ARCH_USES_GETTIMEOFFSET
  565. select HAVE_S3C2410_I2C if I2C
  566. help
  567. Samsung S3C2410X CPU based systems, such as the Simtec Electronics
  568. BAST (<http://www.simtec.co.uk/products/EB110ITX/>), the IPAQ 1940 or
  569. the Samsung SMDK2410 development board (and derivatives).
  570. Note, the S3C2416 and the S3C2450 are so close that they even share
  571. the same SoC ID code. This means that there is no seperate machine
  572. directory (no arch/arm/mach-s3c2450) as the S3C2416 was first.
  573. config ARCH_S3C64XX
  574. bool "Samsung S3C64XX"
  575. select PLAT_SAMSUNG
  576. select CPU_V6
  577. select ARM_VIC
  578. select HAVE_CLK
  579. select NO_IOPORT
  580. select ARCH_USES_GETTIMEOFFSET
  581. select ARCH_HAS_CPUFREQ
  582. select ARCH_REQUIRE_GPIOLIB
  583. select SAMSUNG_CLKSRC
  584. select SAMSUNG_IRQ_VIC_TIMER
  585. select SAMSUNG_IRQ_UART
  586. select S3C_GPIO_TRACK
  587. select S3C_GPIO_PULL_UPDOWN
  588. select S3C_GPIO_CFG_S3C24XX
  589. select S3C_GPIO_CFG_S3C64XX
  590. select S3C_DEV_NAND
  591. select USB_ARCH_HAS_OHCI
  592. select SAMSUNG_GPIOLIB_4BIT
  593. select HAVE_S3C2410_I2C if I2C
  594. select HAVE_S3C2410_WATCHDOG if WATCHDOG
  595. help
  596. Samsung S3C64XX series based systems
  597. config ARCH_S5P64X0
  598. bool "Samsung S5P6440 S5P6450"
  599. select CPU_V6
  600. select GENERIC_GPIO
  601. select HAVE_CLK
  602. select HAVE_S3C2410_WATCHDOG if WATCHDOG
  603. select ARCH_USES_GETTIMEOFFSET
  604. select HAVE_S3C2410_I2C if I2C
  605. select HAVE_S3C_RTC if RTC_CLASS
  606. help
  607. Samsung S5P64X0 CPU based systems, such as the Samsung SMDK6440,
  608. SMDK6450.
  609. config ARCH_S5P6442
  610. bool "Samsung S5P6442"
  611. select CPU_V6
  612. select GENERIC_GPIO
  613. select HAVE_CLK
  614. select ARCH_USES_GETTIMEOFFSET
  615. select HAVE_S3C2410_WATCHDOG if WATCHDOG
  616. help
  617. Samsung S5P6442 CPU based systems
  618. config ARCH_S5PC100
  619. bool "Samsung S5PC100"
  620. select GENERIC_GPIO
  621. select HAVE_CLK
  622. select CPU_V7
  623. select ARM_L1_CACHE_SHIFT_6
  624. select ARCH_USES_GETTIMEOFFSET
  625. select HAVE_S3C2410_I2C if I2C
  626. select HAVE_S3C_RTC if RTC_CLASS
  627. select HAVE_S3C2410_WATCHDOG if WATCHDOG
  628. help
  629. Samsung S5PC100 series based systems
  630. config ARCH_S5PV210
  631. bool "Samsung S5PV210/S5PC110"
  632. select CPU_V7
  633. select ARCH_SPARSEMEM_ENABLE
  634. select GENERIC_GPIO
  635. select HAVE_CLK
  636. select ARM_L1_CACHE_SHIFT_6
  637. select ARCH_HAS_CPUFREQ
  638. select ARCH_USES_GETTIMEOFFSET
  639. select HAVE_S3C2410_I2C if I2C
  640. select HAVE_S3C_RTC if RTC_CLASS
  641. select HAVE_S3C2410_WATCHDOG if WATCHDOG
  642. help
  643. Samsung S5PV210/S5PC110 series based systems
  644. config ARCH_S5PV310
  645. bool "Samsung S5PV310/S5PC210"
  646. select CPU_V7
  647. select ARCH_SPARSEMEM_ENABLE
  648. select GENERIC_GPIO
  649. select HAVE_CLK
  650. select GENERIC_CLOCKEVENTS
  651. select HAVE_S3C_RTC if RTC_CLASS
  652. select HAVE_S3C2410_I2C if I2C
  653. select HAVE_S3C2410_WATCHDOG if WATCHDOG
  654. help
  655. Samsung S5PV310 series based systems
  656. config ARCH_SHARK
  657. bool "Shark"
  658. select CPU_SA110
  659. select ISA
  660. select ISA_DMA
  661. select ZONE_DMA
  662. select PCI
  663. select ARCH_USES_GETTIMEOFFSET
  664. help
  665. Support for the StrongARM based Digital DNARD machine, also known
  666. as "Shark" (<http://www.shark-linux.de/shark.html>).
  667. config ARCH_TCC_926
  668. bool "Telechips TCC ARM926-based systems"
  669. select CPU_ARM926T
  670. select HAVE_CLK
  671. select COMMON_CLKDEV
  672. select GENERIC_CLOCKEVENTS
  673. help
  674. Support for Telechips TCC ARM926-based systems.
  675. config ARCH_LH7A40X
  676. bool "Sharp LH7A40X"
  677. select CPU_ARM922T
  678. select ARCH_SPARSEMEM_ENABLE if !LH7A40X_CONTIGMEM
  679. select ARCH_USES_GETTIMEOFFSET
  680. help
  681. Say Y here for systems based on one of the Sharp LH7A40X
  682. System on a Chip processors. These CPUs include an ARM922T
  683. core with a wide array of integrated devices for
  684. hand-held and low-power applications.
  685. config ARCH_U300
  686. bool "ST-Ericsson U300 Series"
  687. depends on MMU
  688. select CPU_ARM926T
  689. select HAVE_TCM
  690. select ARM_AMBA
  691. select ARM_VIC
  692. select GENERIC_CLOCKEVENTS
  693. select COMMON_CLKDEV
  694. select GENERIC_GPIO
  695. help
  696. Support for ST-Ericsson U300 series mobile platforms.
  697. config ARCH_U8500
  698. bool "ST-Ericsson U8500 Series"
  699. select CPU_V7
  700. select ARM_AMBA
  701. select GENERIC_CLOCKEVENTS
  702. select COMMON_CLKDEV
  703. select ARCH_REQUIRE_GPIOLIB
  704. help
  705. Support for ST-Ericsson's Ux500 architecture
  706. config ARCH_NOMADIK
  707. bool "STMicroelectronics Nomadik"
  708. select ARM_AMBA
  709. select ARM_VIC
  710. select CPU_ARM926T
  711. select COMMON_CLKDEV
  712. select GENERIC_CLOCKEVENTS
  713. select ARCH_REQUIRE_GPIOLIB
  714. help
  715. Support for the Nomadik platform by ST-Ericsson
  716. config ARCH_DAVINCI
  717. bool "TI DaVinci"
  718. select GENERIC_CLOCKEVENTS
  719. select ARCH_REQUIRE_GPIOLIB
  720. select ZONE_DMA
  721. select HAVE_IDE
  722. select COMMON_CLKDEV
  723. select GENERIC_ALLOCATOR
  724. select ARCH_HAS_HOLES_MEMORYMODEL
  725. help
  726. Support for TI's DaVinci platform.
  727. config ARCH_OMAP
  728. bool "TI OMAP"
  729. select HAVE_CLK
  730. select ARCH_REQUIRE_GPIOLIB
  731. select ARCH_HAS_CPUFREQ
  732. select GENERIC_CLOCKEVENTS
  733. select ARCH_HAS_HOLES_MEMORYMODEL
  734. help
  735. Support for TI's OMAP platform (OMAP1/2/3/4).
  736. config PLAT_SPEAR
  737. bool "ST SPEAr"
  738. select ARM_AMBA
  739. select ARCH_REQUIRE_GPIOLIB
  740. select COMMON_CLKDEV
  741. select GENERIC_CLOCKEVENTS
  742. select HAVE_CLK
  743. help
  744. Support for ST's SPEAr platform (SPEAr3xx, SPEAr6xx and SPEAr13xx).
  745. endchoice
  746. #
  747. # This is sorted alphabetically by mach-* pathname. However, plat-*
  748. # Kconfigs may be included either alphabetically (according to the
  749. # plat- suffix) or along side the corresponding mach-* source.
  750. #
  751. source "arch/arm/mach-aaec2000/Kconfig"
  752. source "arch/arm/mach-at91/Kconfig"
  753. source "arch/arm/mach-bcmring/Kconfig"
  754. source "arch/arm/mach-clps711x/Kconfig"
  755. source "arch/arm/mach-cns3xxx/Kconfig"
  756. source "arch/arm/mach-davinci/Kconfig"
  757. source "arch/arm/mach-dove/Kconfig"
  758. source "arch/arm/mach-ep93xx/Kconfig"
  759. source "arch/arm/mach-footbridge/Kconfig"
  760. source "arch/arm/mach-gemini/Kconfig"
  761. source "arch/arm/mach-h720x/Kconfig"
  762. source "arch/arm/mach-integrator/Kconfig"
  763. source "arch/arm/mach-iop32x/Kconfig"
  764. source "arch/arm/mach-iop33x/Kconfig"
  765. source "arch/arm/mach-iop13xx/Kconfig"
  766. source "arch/arm/mach-ixp4xx/Kconfig"
  767. source "arch/arm/mach-ixp2000/Kconfig"
  768. source "arch/arm/mach-ixp23xx/Kconfig"
  769. source "arch/arm/mach-kirkwood/Kconfig"
  770. source "arch/arm/mach-ks8695/Kconfig"
  771. source "arch/arm/mach-lh7a40x/Kconfig"
  772. source "arch/arm/mach-loki/Kconfig"
  773. source "arch/arm/mach-lpc32xx/Kconfig"
  774. source "arch/arm/mach-msm/Kconfig"
  775. source "arch/arm/mach-mv78xx0/Kconfig"
  776. source "arch/arm/plat-mxc/Kconfig"
  777. source "arch/arm/mach-netx/Kconfig"
  778. source "arch/arm/mach-nomadik/Kconfig"
  779. source "arch/arm/plat-nomadik/Kconfig"
  780. source "arch/arm/mach-ns9xxx/Kconfig"
  781. source "arch/arm/mach-nuc93x/Kconfig"
  782. source "arch/arm/plat-omap/Kconfig"
  783. source "arch/arm/mach-omap1/Kconfig"
  784. source "arch/arm/mach-omap2/Kconfig"
  785. source "arch/arm/mach-orion5x/Kconfig"
  786. source "arch/arm/mach-pxa/Kconfig"
  787. source "arch/arm/plat-pxa/Kconfig"
  788. source "arch/arm/mach-mmp/Kconfig"
  789. source "arch/arm/mach-realview/Kconfig"
  790. source "arch/arm/mach-sa1100/Kconfig"
  791. source "arch/arm/plat-samsung/Kconfig"
  792. source "arch/arm/plat-s3c24xx/Kconfig"
  793. source "arch/arm/plat-s5p/Kconfig"
  794. source "arch/arm/plat-spear/Kconfig"
  795. source "arch/arm/plat-tcc/Kconfig"
  796. if ARCH_S3C2410
  797. source "arch/arm/mach-s3c2400/Kconfig"
  798. source "arch/arm/mach-s3c2410/Kconfig"
  799. source "arch/arm/mach-s3c2412/Kconfig"
  800. source "arch/arm/mach-s3c2416/Kconfig"
  801. source "arch/arm/mach-s3c2440/Kconfig"
  802. source "arch/arm/mach-s3c2443/Kconfig"
  803. endif
  804. if ARCH_S3C64XX
  805. source "arch/arm/mach-s3c64xx/Kconfig"
  806. endif
  807. source "arch/arm/mach-s5p64x0/Kconfig"
  808. source "arch/arm/mach-s5p6442/Kconfig"
  809. source "arch/arm/mach-s5pc100/Kconfig"
  810. source "arch/arm/mach-s5pv210/Kconfig"
  811. source "arch/arm/mach-s5pv310/Kconfig"
  812. source "arch/arm/mach-shmobile/Kconfig"
  813. source "arch/arm/plat-stmp3xxx/Kconfig"
  814. source "arch/arm/mach-tegra/Kconfig"
  815. source "arch/arm/mach-u300/Kconfig"
  816. source "arch/arm/mach-ux500/Kconfig"
  817. source "arch/arm/mach-versatile/Kconfig"
  818. source "arch/arm/mach-vexpress/Kconfig"
  819. source "arch/arm/mach-w90x900/Kconfig"
  820. # Definitions to make life easier
  821. config ARCH_ACORN
  822. bool
  823. config PLAT_IOP
  824. bool
  825. select GENERIC_CLOCKEVENTS
  826. config PLAT_ORION
  827. bool
  828. config PLAT_PXA
  829. bool
  830. config PLAT_VERSATILE
  831. bool
  832. config ARM_TIMER_SP804
  833. bool
  834. source arch/arm/mm/Kconfig
  835. config IWMMXT
  836. bool "Enable iWMMXt support"
  837. depends on CPU_XSCALE || CPU_XSC3 || CPU_MOHAWK
  838. default y if PXA27x || PXA3xx || ARCH_MMP
  839. help
  840. Enable support for iWMMXt context switching at run time if
  841. running on a CPU that supports it.
  842. # bool 'Use XScale PMU as timer source' CONFIG_XSCALE_PMU_TIMER
  843. config XSCALE_PMU
  844. bool
  845. depends on CPU_XSCALE && !XSCALE_PMU_TIMER
  846. default y
  847. config CPU_HAS_PMU
  848. depends on (CPU_V6 || CPU_V7 || XSCALE_PMU) && \
  849. (!ARCH_OMAP3 || OMAP3_EMU)
  850. default y
  851. bool
  852. if !MMU
  853. source "arch/arm/Kconfig-nommu"
  854. endif
  855. config ARM_ERRATA_411920
  856. bool "ARM errata: Invalidation of the Instruction Cache operation can fail"
  857. depends on CPU_V6
  858. help
  859. Invalidation of the Instruction Cache operation can
  860. fail. This erratum is present in 1136 (before r1p4), 1156 and 1176.
  861. It does not affect the MPCore. This option enables the ARM Ltd.
  862. recommended workaround.
  863. config ARM_ERRATA_430973
  864. bool "ARM errata: Stale prediction on replaced interworking branch"
  865. depends on CPU_V7
  866. help
  867. This option enables the workaround for the 430973 Cortex-A8
  868. (r1p0..r1p2) erratum. If a code sequence containing an ARM/Thumb
  869. interworking branch is replaced with another code sequence at the
  870. same virtual address, whether due to self-modifying code or virtual
  871. to physical address re-mapping, Cortex-A8 does not recover from the
  872. stale interworking branch prediction. This results in Cortex-A8
  873. executing the new code sequence in the incorrect ARM or Thumb state.
  874. The workaround enables the BTB/BTAC operations by setting ACTLR.IBE
  875. and also flushes the branch target cache at every context switch.
  876. Note that setting specific bits in the ACTLR register may not be
  877. available in non-secure mode.
  878. config ARM_ERRATA_458693
  879. bool "ARM errata: Processor deadlock when a false hazard is created"
  880. depends on CPU_V7
  881. help
  882. This option enables the workaround for the 458693 Cortex-A8 (r2p0)
  883. erratum. For very specific sequences of memory operations, it is
  884. possible for a hazard condition intended for a cache line to instead
  885. be incorrectly associated with a different cache line. This false
  886. hazard might then cause a processor deadlock. The workaround enables
  887. the L1 caching of the NEON accesses and disables the PLD instruction
  888. in the ACTLR register. Note that setting specific bits in the ACTLR
  889. register may not be available in non-secure mode.
  890. config ARM_ERRATA_460075
  891. bool "ARM errata: Data written to the L2 cache can be overwritten with stale data"
  892. depends on CPU_V7
  893. help
  894. This option enables the workaround for the 460075 Cortex-A8 (r2p0)
  895. erratum. Any asynchronous access to the L2 cache may encounter a
  896. situation in which recent store transactions to the L2 cache are lost
  897. and overwritten with stale memory contents from external memory. The
  898. workaround disables the write-allocate mode for the L2 cache via the
  899. ACTLR register. Note that setting specific bits in the ACTLR register
  900. may not be available in non-secure mode.
  901. config ARM_ERRATA_742230
  902. bool "ARM errata: DMB operation may be faulty"
  903. depends on CPU_V7 && SMP
  904. help
  905. This option enables the workaround for the 742230 Cortex-A9
  906. (r1p0..r2p2) erratum. Under rare circumstances, a DMB instruction
  907. between two write operations may not ensure the correct visibility
  908. ordering of the two writes. This workaround sets a specific bit in
  909. the diagnostic register of the Cortex-A9 which causes the DMB
  910. instruction to behave as a DSB, ensuring the correct behaviour of
  911. the two writes.
  912. config ARM_ERRATA_742231
  913. bool "ARM errata: Incorrect hazard handling in the SCU may lead to data corruption"
  914. depends on CPU_V7 && SMP
  915. help
  916. This option enables the workaround for the 742231 Cortex-A9
  917. (r2p0..r2p2) erratum. Under certain conditions, specific to the
  918. Cortex-A9 MPCore micro-architecture, two CPUs working in SMP mode,
  919. accessing some data located in the same cache line, may get corrupted
  920. data due to bad handling of the address hazard when the line gets
  921. replaced from one of the CPUs at the same time as another CPU is
  922. accessing it. This workaround sets specific bits in the diagnostic
  923. register of the Cortex-A9 which reduces the linefill issuing
  924. capabilities of the processor.
  925. config PL310_ERRATA_588369
  926. bool "Clean & Invalidate maintenance operations do not invalidate clean lines"
  927. depends on CACHE_L2X0 && ARCH_OMAP4
  928. help
  929. The PL310 L2 cache controller implements three types of Clean &
  930. Invalidate maintenance operations: by Physical Address
  931. (offset 0x7F0), by Index/Way (0x7F8) and by Way (0x7FC).
  932. They are architecturally defined to behave as the execution of a
  933. clean operation followed immediately by an invalidate operation,
  934. both performing to the same memory location. This functionality
  935. is not correctly implemented in PL310 as clean lines are not
  936. invalidated as a result of these operations. Note that this errata
  937. uses Texas Instrument's secure monitor api.
  938. config ARM_ERRATA_720789
  939. bool "ARM errata: TLBIASIDIS and TLBIMVAIS operations can broadcast a faulty ASID"
  940. depends on CPU_V7 && SMP
  941. help
  942. This option enables the workaround for the 720789 Cortex-A9 (prior to
  943. r2p0) erratum. A faulty ASID can be sent to the other CPUs for the
  944. broadcasted CP15 TLB maintenance operations TLBIASIDIS and TLBIMVAIS.
  945. As a consequence of this erratum, some TLB entries which should be
  946. invalidated are not, resulting in an incoherency in the system page
  947. tables. The workaround changes the TLB flushing routines to invalidate
  948. entries regardless of the ASID.
  949. config ARM_ERRATA_743622
  950. bool "ARM errata: Faulty hazard checking in the Store Buffer may lead to data corruption"
  951. depends on CPU_V7
  952. help
  953. This option enables the workaround for the 743622 Cortex-A9
  954. (r2p0..r2p2) erratum. Under very rare conditions, a faulty
  955. optimisation in the Cortex-A9 Store Buffer may lead to data
  956. corruption. This workaround sets a specific bit in the diagnostic
  957. register of the Cortex-A9 which disables the Store Buffer
  958. optimisation, preventing the defect from occurring. This has no
  959. visible impact on the overall performance or power consumption of the
  960. processor.
  961. endmenu
  962. source "arch/arm/common/Kconfig"
  963. menu "Bus support"
  964. config ARM_AMBA
  965. bool
  966. config ISA
  967. bool
  968. help
  969. Find out whether you have ISA slots on your motherboard. ISA is the
  970. name of a bus system, i.e. the way the CPU talks to the other stuff
  971. inside your box. Other bus systems are PCI, EISA, MicroChannel
  972. (MCA) or VESA. ISA is an older system, now being displaced by PCI;
  973. newer boards don't support it. If you have ISA, say Y, otherwise N.
  974. # Select ISA DMA controller support
  975. config ISA_DMA
  976. bool
  977. select ISA_DMA_API
  978. # Select ISA DMA interface
  979. config ISA_DMA_API
  980. bool
  981. config PCI
  982. bool "PCI support" if ARCH_INTEGRATOR_AP || ARCH_VERSATILE_PB || ARCH_IXP4XX || ARCH_KS8695 || MACH_ARMCORE || ARCH_CNS3XXX
  983. help
  984. Find out whether you have a PCI motherboard. PCI is the name of a
  985. bus system, i.e. the way the CPU talks to the other stuff inside
  986. your box. Other bus systems are ISA, EISA, MicroChannel (MCA) or
  987. VESA. If you have PCI, say Y, otherwise N.
  988. config PCI_DOMAINS
  989. bool
  990. depends on PCI
  991. config PCI_SYSCALL
  992. def_bool PCI
  993. # Select the host bridge type
  994. config PCI_HOST_VIA82C505
  995. bool
  996. depends on PCI && ARCH_SHARK
  997. default y
  998. config PCI_HOST_ITE8152
  999. bool
  1000. depends on PCI && MACH_ARMCORE
  1001. default y
  1002. select DMABOUNCE
  1003. source "drivers/pci/Kconfig"
  1004. source "drivers/pcmcia/Kconfig"
  1005. endmenu
  1006. menu "Kernel Features"
  1007. source "kernel/time/Kconfig"
  1008. config SMP
  1009. bool "Symmetric Multi-Processing (EXPERIMENTAL)"
  1010. depends on EXPERIMENTAL
  1011. depends on GENERIC_CLOCKEVENTS
  1012. depends on REALVIEW_EB_ARM11MP || REALVIEW_EB_A9MP || \
  1013. MACH_REALVIEW_PB11MP || MACH_REALVIEW_PBX || ARCH_OMAP4 || \
  1014. ARCH_S5PV310 || ARCH_TEGRA || ARCH_U8500 || ARCH_VEXPRESS_CA9X4 || \
  1015. ARCH_MSM_SCORPIONMP
  1016. select USE_GENERIC_SMP_HELPERS
  1017. select HAVE_ARM_SCU if !ARCH_MSM_SCORPIONMP
  1018. help
  1019. This enables support for systems with more than one CPU. If you have
  1020. a system with only one CPU, like most personal computers, say N. If
  1021. you have a system with more than one CPU, say Y.
  1022. If you say N here, the kernel will run on single and multiprocessor
  1023. machines, but will use only one CPU of a multiprocessor machine. If
  1024. you say Y here, the kernel will run on many, but not all, single
  1025. processor machines. On a single processor machine, the kernel will
  1026. run faster if you say N here.
  1027. See also <file:Documentation/i386/IO-APIC.txt>,
  1028. <file:Documentation/nmi_watchdog.txt> and the SMP-HOWTO available at
  1029. <http://tldp.org/HOWTO/SMP-HOWTO.html>.
  1030. If you don't know what to do here, say N.
  1031. config SMP_ON_UP
  1032. bool "Allow booting SMP kernel on uniprocessor systems (EXPERIMENTAL)"
  1033. depends on EXPERIMENTAL
  1034. depends on SMP && !XIP && !THUMB2_KERNEL
  1035. default y
  1036. help
  1037. SMP kernels contain instructions which fail on non-SMP processors.
  1038. Enabling this option allows the kernel to modify itself to make
  1039. these instructions safe. Disabling it allows about 1K of space
  1040. savings.
  1041. If you don't know what to do here, say Y.
  1042. config HAVE_ARM_SCU
  1043. bool
  1044. depends on SMP
  1045. help
  1046. This option enables support for the ARM system coherency unit
  1047. config HAVE_ARM_TWD
  1048. bool
  1049. depends on SMP
  1050. help
  1051. This options enables support for the ARM timer and watchdog unit
  1052. choice
  1053. prompt "Memory split"
  1054. default VMSPLIT_3G
  1055. help
  1056. Select the desired split between kernel and user memory.
  1057. If you are not absolutely sure what you are doing, leave this
  1058. option alone!
  1059. config VMSPLIT_3G
  1060. bool "3G/1G user/kernel split"
  1061. config VMSPLIT_2G
  1062. bool "2G/2G user/kernel split"
  1063. config VMSPLIT_1G
  1064. bool "1G/3G user/kernel split"
  1065. endchoice
  1066. config PAGE_OFFSET
  1067. hex
  1068. default 0x40000000 if VMSPLIT_1G
  1069. default 0x80000000 if VMSPLIT_2G
  1070. default 0xC0000000
  1071. config NR_CPUS
  1072. int "Maximum number of CPUs (2-32)"
  1073. range 2 32
  1074. depends on SMP
  1075. default "4"
  1076. config HOTPLUG_CPU
  1077. bool "Support for hot-pluggable CPUs (EXPERIMENTAL)"
  1078. depends on SMP && HOTPLUG && EXPERIMENTAL
  1079. depends on !ARCH_MSM
  1080. help
  1081. Say Y here to experiment with turning CPUs off and on. CPUs
  1082. can be controlled through /sys/devices/system/cpu.
  1083. config LOCAL_TIMERS
  1084. bool "Use local timer interrupts"
  1085. depends on SMP
  1086. default y
  1087. select HAVE_ARM_TWD if !ARCH_MSM_SCORPIONMP
  1088. help
  1089. Enable support for local timers on SMP platforms, rather then the
  1090. legacy IPI broadcast method. Local timers allows the system
  1091. accounting to be spread across the timer interval, preventing a
  1092. "thundering herd" at every timer tick.
  1093. source kernel/Kconfig.preempt
  1094. config HZ
  1095. int
  1096. default 200 if ARCH_EBSA110 || ARCH_S3C2410 || ARCH_S5P64X0 || \
  1097. ARCH_S5P6442 || ARCH_S5PV210 || ARCH_S5PV310
  1098. default OMAP_32K_TIMER_HZ if ARCH_OMAP && OMAP_32K_TIMER
  1099. default AT91_TIMER_HZ if ARCH_AT91
  1100. default SHMOBILE_TIMER_HZ if ARCH_SHMOBILE
  1101. default 100
  1102. config THUMB2_KERNEL
  1103. bool "Compile the kernel in Thumb-2 mode"
  1104. depends on CPU_V7 && EXPERIMENTAL
  1105. select AEABI
  1106. select ARM_ASM_UNIFIED
  1107. help
  1108. By enabling this option, the kernel will be compiled in
  1109. Thumb-2 mode. A compiler/assembler that understand the unified
  1110. ARM-Thumb syntax is needed.
  1111. If unsure, say N.
  1112. config ARM_ASM_UNIFIED
  1113. bool
  1114. config AEABI
  1115. bool "Use the ARM EABI to compile the kernel"
  1116. help
  1117. This option allows for the kernel to be compiled using the latest
  1118. ARM ABI (aka EABI). This is only useful if you are using a user
  1119. space environment that is also compiled with EABI.
  1120. Since there are major incompatibilities between the legacy ABI and
  1121. EABI, especially with regard to structure member alignment, this
  1122. option also changes the kernel syscall calling convention to
  1123. disambiguate both ABIs and allow for backward compatibility support
  1124. (selected with CONFIG_OABI_COMPAT).
  1125. To use this you need GCC version 4.0.0 or later.
  1126. config OABI_COMPAT
  1127. bool "Allow old ABI binaries to run with this kernel (EXPERIMENTAL)"
  1128. depends on AEABI && EXPERIMENTAL
  1129. default y
  1130. help
  1131. This option preserves the old syscall interface along with the
  1132. new (ARM EABI) one. It also provides a compatibility layer to
  1133. intercept syscalls that have structure arguments which layout
  1134. in memory differs between the legacy ABI and the new ARM EABI
  1135. (only for non "thumb" binaries). This option adds a tiny
  1136. overhead to all syscalls and produces a slightly larger kernel.
  1137. If you know you'll be using only pure EABI user space then you
  1138. can say N here. If this option is not selected and you attempt
  1139. to execute a legacy ABI binary then the result will be
  1140. UNPREDICTABLE (in fact it can be predicted that it won't work
  1141. at all). If in doubt say Y.
  1142. config ARCH_HAS_HOLES_MEMORYMODEL
  1143. bool
  1144. config ARCH_SPARSEMEM_ENABLE
  1145. bool
  1146. config ARCH_SPARSEMEM_DEFAULT
  1147. def_bool ARCH_SPARSEMEM_ENABLE
  1148. config ARCH_SELECT_MEMORY_MODEL
  1149. def_bool ARCH_SPARSEMEM_ENABLE
  1150. config HIGHMEM
  1151. bool "High Memory Support (EXPERIMENTAL)"
  1152. depends on MMU && EXPERIMENTAL
  1153. help
  1154. The address space of ARM processors is only 4 Gigabytes large
  1155. and it has to accommodate user address space, kernel address
  1156. space as well as some memory mapped IO. That means that, if you
  1157. have a large amount of physical memory and/or IO, not all of the
  1158. memory can be "permanently mapped" by the kernel. The physical
  1159. memory that is not permanently mapped is called "high memory".
  1160. Depending on the selected kernel/user memory split, minimum
  1161. vmalloc space and actual amount of RAM, you may not need this
  1162. option which should result in a slightly faster kernel.
  1163. If unsure, say n.
  1164. config HIGHPTE
  1165. bool "Allocate 2nd-level pagetables from highmem"
  1166. depends on HIGHMEM
  1167. depends on !OUTER_CACHE
  1168. config HW_PERF_EVENTS
  1169. bool "Enable hardware performance counter support for perf events"
  1170. depends on PERF_EVENTS && CPU_HAS_PMU
  1171. default y
  1172. help
  1173. Enable hardware performance counter support for perf events. If
  1174. disabled, perf events will use software events only.
  1175. config SPARSE_IRQ
  1176. def_bool n
  1177. help
  1178. This enables support for sparse irqs. This is useful in general
  1179. as most CPUs have a fairly sparse array of IRQ vectors, which
  1180. the irq_desc then maps directly on to. Systems with a high
  1181. number of off-chip IRQs will want to treat this as
  1182. experimental until they have been independently verified.
  1183. source "mm/Kconfig"
  1184. config FORCE_MAX_ZONEORDER
  1185. int "Maximum zone order" if ARCH_SHMOBILE
  1186. range 11 64 if ARCH_SHMOBILE
  1187. default "9" if SA1111
  1188. default "11"
  1189. help
  1190. The kernel memory allocator divides physically contiguous memory
  1191. blocks into "zones", where each zone is a power of two number of
  1192. pages. This option selects the largest power of two that the kernel
  1193. keeps in the memory allocator. If you need to allocate very large
  1194. blocks of physically contiguous memory, then you may need to
  1195. increase this value.
  1196. This config option is actually maximum order plus one. For example,
  1197. a value of 11 means that the largest free memory block is 2^10 pages.
  1198. config LEDS
  1199. bool "Timer and CPU usage LEDs"
  1200. depends on ARCH_CDB89712 || ARCH_EBSA110 || \
  1201. ARCH_EBSA285 || ARCH_INTEGRATOR || \
  1202. ARCH_LUBBOCK || MACH_MAINSTONE || ARCH_NETWINDER || \
  1203. ARCH_OMAP || ARCH_P720T || ARCH_PXA_IDP || \
  1204. ARCH_SA1100 || ARCH_SHARK || ARCH_VERSATILE || \
  1205. ARCH_AT91 || ARCH_DAVINCI || \
  1206. ARCH_KS8695 || MACH_RD88F5182 || ARCH_REALVIEW
  1207. help
  1208. If you say Y here, the LEDs on your machine will be used
  1209. to provide useful information about your current system status.
  1210. If you are compiling a kernel for a NetWinder or EBSA-285, you will
  1211. be able to select which LEDs are active using the options below. If
  1212. you are compiling a kernel for the EBSA-110 or the LART however, the
  1213. red LED will simply flash regularly to indicate that the system is
  1214. still functional. It is safe to say Y here if you have a CATS
  1215. system, but the driver will do nothing.
  1216. config LEDS_TIMER
  1217. bool "Timer LED" if (!ARCH_CDB89712 && !ARCH_OMAP) || \
  1218. OMAP_OSK_MISTRAL || MACH_OMAP_H2 \
  1219. || MACH_OMAP_PERSEUS2
  1220. depends on LEDS
  1221. depends on !GENERIC_CLOCKEVENTS
  1222. default y if ARCH_EBSA110
  1223. help
  1224. If you say Y here, one of the system LEDs (the green one on the
  1225. NetWinder, the amber one on the EBSA285, or the red one on the LART)
  1226. will flash regularly to indicate that the system is still
  1227. operational. This is mainly useful to kernel hackers who are
  1228. debugging unstable kernels.
  1229. The LART uses the same LED for both Timer LED and CPU usage LED
  1230. functions. You may choose to use both, but the Timer LED function
  1231. will overrule the CPU usage LED.
  1232. config LEDS_CPU
  1233. bool "CPU usage LED" if (!ARCH_CDB89712 && !ARCH_EBSA110 && \
  1234. !ARCH_OMAP) \
  1235. || OMAP_OSK_MISTRAL || MACH_OMAP_H2 \
  1236. || MACH_OMAP_PERSEUS2
  1237. depends on LEDS
  1238. help
  1239. If you say Y here, the red LED will be used to give a good real
  1240. time indication of CPU usage, by lighting whenever the idle task
  1241. is not currently executing.
  1242. The LART uses the same LED for both Timer LED and CPU usage LED
  1243. functions. You may choose to use both, but the Timer LED function
  1244. will overrule the CPU usage LED.
  1245. config ALIGNMENT_TRAP
  1246. bool
  1247. depends on CPU_CP15_MMU
  1248. default y if !ARCH_EBSA110
  1249. select HAVE_PROC_CPU if PROC_FS
  1250. help
  1251. ARM processors cannot fetch/store information which is not
  1252. naturally aligned on the bus, i.e., a 4 byte fetch must start at an
  1253. address divisible by 4. On 32-bit ARM processors, these non-aligned
  1254. fetch/store instructions will be emulated in software if you say
  1255. here, which has a severe performance impact. This is necessary for
  1256. correct operation of some network protocols. With an IP-only
  1257. configuration it is safe to say N, otherwise say Y.
  1258. config UACCESS_WITH_MEMCPY
  1259. bool "Use kernel mem{cpy,set}() for {copy_to,clear}_user() (EXPERIMENTAL)"
  1260. depends on MMU && EXPERIMENTAL
  1261. default y if CPU_FEROCEON
  1262. help
  1263. Implement faster copy_to_user and clear_user methods for CPU
  1264. cores where a 8-word STM instruction give significantly higher
  1265. memory write throughput than a sequence of individual 32bit stores.
  1266. A possible side effect is a slight increase in scheduling latency
  1267. between threads sharing the same address space if they invoke
  1268. such copy operations with large buffers.
  1269. However, if the CPU data cache is using a write-allocate mode,
  1270. this option is unlikely to provide any performance gain.
  1271. config SECCOMP
  1272. bool
  1273. prompt "Enable seccomp to safely compute untrusted bytecode"
  1274. ---help---
  1275. This kernel feature is useful for number crunching applications
  1276. that may need to compute untrusted bytecode during their
  1277. execution. By using pipes or other transports made available to
  1278. the process as file descriptors supporting the read/write
  1279. syscalls, it's possible to isolate those applications in
  1280. their own address space using seccomp. Once seccomp is
  1281. enabled via prctl(PR_SET_SECCOMP), it cannot be disabled
  1282. and the task is only allowed to execute a few safe syscalls
  1283. defined by each seccomp mode.
  1284. config CC_STACKPROTECTOR
  1285. bool "Enable -fstack-protector buffer overflow detection (EXPERIMENTAL)"
  1286. help
  1287. This option turns on the -fstack-protector GCC feature. This
  1288. feature puts, at the beginning of functions, a canary value on
  1289. the stack just before the return address, and validates
  1290. the value just before actually returning. Stack based buffer
  1291. overflows (that need to overwrite this return address) now also
  1292. overwrite the canary, which gets detected and the attack is then
  1293. neutralized via a kernel panic.
  1294. This feature requires gcc version 4.2 or above.
  1295. config DEPRECATED_PARAM_STRUCT
  1296. bool "Provide old way to pass kernel parameters"
  1297. help
  1298. This was deprecated in 2001 and announced to live on for 5 years.
  1299. Some old boot loaders still use this way.
  1300. endmenu
  1301. menu "Boot options"
  1302. # Compressed boot loader in ROM. Yes, we really want to ask about
  1303. # TEXT and BSS so we preserve their values in the config files.
  1304. config ZBOOT_ROM_TEXT
  1305. hex "Compressed ROM boot loader base address"
  1306. default "0"
  1307. help
  1308. The physical address at which the ROM-able zImage is to be
  1309. placed in the target. Platforms which normally make use of
  1310. ROM-able zImage formats normally set this to a suitable
  1311. value in their defconfig file.
  1312. If ZBOOT_ROM is not enabled, this has no effect.
  1313. config ZBOOT_ROM_BSS
  1314. hex "Compressed ROM boot loader BSS address"
  1315. default "0"
  1316. help
  1317. The base address of an area of read/write memory in the target
  1318. for the ROM-able zImage which must be available while the
  1319. decompressor is running. It must be large enough to hold the
  1320. entire decompressed kernel plus an additional 128 KiB.
  1321. Platforms which normally make use of ROM-able zImage formats
  1322. normally set this to a suitable value in their defconfig file.
  1323. If ZBOOT_ROM is not enabled, this has no effect.
  1324. config ZBOOT_ROM
  1325. bool "Compressed boot loader in ROM/flash"
  1326. depends on ZBOOT_ROM_TEXT != ZBOOT_ROM_BSS
  1327. help
  1328. Say Y here if you intend to execute your compressed kernel image
  1329. (zImage) directly from ROM or flash. If unsure, say N.
  1330. config CMDLINE
  1331. string "Default kernel command string"
  1332. default ""
  1333. help
  1334. On some architectures (EBSA110 and CATS), there is currently no way
  1335. for the boot loader to pass arguments to the kernel. For these
  1336. architectures, you should supply some command-line options at build
  1337. time by entering them here. As a minimum, you should specify the
  1338. memory size and the root device (e.g., mem=64M root=/dev/nfs).
  1339. config CMDLINE_FORCE
  1340. bool "Always use the default kernel command string"
  1341. depends on CMDLINE != ""
  1342. help
  1343. Always use the default kernel command string, even if the boot
  1344. loader passes other arguments to the kernel.
  1345. This is useful if you cannot or don't want to change the
  1346. command-line options your boot loader passes to the kernel.
  1347. If unsure, say N.
  1348. config XIP_KERNEL
  1349. bool "Kernel Execute-In-Place from ROM"
  1350. depends on !ZBOOT_ROM
  1351. help
  1352. Execute-In-Place allows the kernel to run from non-volatile storage
  1353. directly addressable by the CPU, such as NOR flash. This saves RAM
  1354. space since the text section of the kernel is not loaded from flash
  1355. to RAM. Read-write sections, such as the data section and stack,
  1356. are still copied to RAM. The XIP kernel is not compressed since
  1357. it has to run directly from flash, so it will take more space to
  1358. store it. The flash address used to link the kernel object files,
  1359. and for storing it, is configuration dependent. Therefore, if you
  1360. say Y here, you must know the proper physical address where to
  1361. store the kernel image depending on your own flash memory usage.
  1362. Also note that the make target becomes "make xipImage" rather than
  1363. "make zImage" or "make Image". The final kernel binary to put in
  1364. ROM memory will be arch/arm/boot/xipImage.
  1365. If unsure, say N.
  1366. config XIP_PHYS_ADDR
  1367. hex "XIP Kernel Physical Location"
  1368. depends on XIP_KERNEL
  1369. default "0x00080000"
  1370. help
  1371. This is the physical address in your flash memory the kernel will
  1372. be linked for and stored to. This address is dependent on your
  1373. own flash usage.
  1374. config KEXEC
  1375. bool "Kexec system call (EXPERIMENTAL)"
  1376. depends on EXPERIMENTAL
  1377. help
  1378. kexec is a system call that implements the ability to shutdown your
  1379. current kernel, and to start another kernel. It is like a reboot
  1380. but it is independent of the system firmware. And like a reboot
  1381. you can start any kernel with it, not just Linux.
  1382. It is an ongoing process to be certain the hardware in a machine
  1383. is properly shutdown, so do not be surprised if this code does not
  1384. initially work for you. It may help to enable device hotplugging
  1385. support.
  1386. config ATAGS_PROC
  1387. bool "Export atags in procfs"
  1388. depends on KEXEC
  1389. default y
  1390. help
  1391. Should the atags used to boot the kernel be exported in an "atags"
  1392. file in procfs. Useful with kexec.
  1393. config AUTO_ZRELADDR
  1394. bool "Auto calculation of the decompressed kernel image address"
  1395. depends on !ZBOOT_ROM && !ARCH_U300
  1396. help
  1397. ZRELADDR is the physical address where the decompressed kernel
  1398. image will be placed. If AUTO_ZRELADDR is selected, the address
  1399. will be determined at run-time by masking the current IP with
  1400. 0xf8000000. This assumes the zImage being placed in the first 128MB
  1401. from start of memory.
  1402. endmenu
  1403. menu "CPU Power Management"
  1404. if ARCH_HAS_CPUFREQ
  1405. source "drivers/cpufreq/Kconfig"
  1406. config CPU_FREQ_IMX
  1407. tristate "CPUfreq driver for i.MX CPUs"
  1408. depends on ARCH_MXC && CPU_FREQ
  1409. help
  1410. This enables the CPUfreq driver for i.MX CPUs.
  1411. config CPU_FREQ_SA1100
  1412. bool
  1413. config CPU_FREQ_SA1110
  1414. bool
  1415. config CPU_FREQ_INTEGRATOR
  1416. tristate "CPUfreq driver for ARM Integrator CPUs"
  1417. depends on ARCH_INTEGRATOR && CPU_FREQ
  1418. default y
  1419. help
  1420. This enables the CPUfreq driver for ARM Integrator CPUs.
  1421. For details, take a look at <file:Documentation/cpu-freq>.
  1422. If in doubt, say Y.
  1423. config CPU_FREQ_PXA
  1424. bool
  1425. depends on CPU_FREQ && ARCH_PXA && PXA25x
  1426. default y
  1427. select CPU_FREQ_DEFAULT_GOV_USERSPACE
  1428. config CPU_FREQ_S3C64XX
  1429. bool "CPUfreq support for Samsung S3C64XX CPUs"
  1430. depends on CPU_FREQ && CPU_S3C6410
  1431. config CPU_FREQ_S3C
  1432. bool
  1433. help
  1434. Internal configuration node for common cpufreq on Samsung SoC
  1435. config CPU_FREQ_S3C24XX
  1436. bool "CPUfreq driver for Samsung S3C24XX series CPUs"
  1437. depends on ARCH_S3C2410 && CPU_FREQ && EXPERIMENTAL
  1438. select CPU_FREQ_S3C
  1439. help
  1440. This enables the CPUfreq driver for the Samsung S3C24XX family
  1441. of CPUs.
  1442. For details, take a look at <file:Documentation/cpu-freq>.
  1443. If in doubt, say N.
  1444. config CPU_FREQ_S3C24XX_PLL
  1445. bool "Support CPUfreq changing of PLL frequency"
  1446. depends on CPU_FREQ_S3C24XX && EXPERIMENTAL
  1447. help
  1448. Compile in support for changing the PLL frequency from the
  1449. S3C24XX series CPUfreq driver. The PLL takes time to settle
  1450. after a frequency change, so by default it is not enabled.
  1451. This also means that the PLL tables for the selected CPU(s) will
  1452. be built which may increase the size of the kernel image.
  1453. config CPU_FREQ_S3C24XX_DEBUG
  1454. bool "Debug CPUfreq Samsung driver core"
  1455. depends on CPU_FREQ_S3C24XX
  1456. help
  1457. Enable s3c_freq_dbg for the Samsung S3C CPUfreq core
  1458. config CPU_FREQ_S3C24XX_IODEBUG
  1459. bool "Debug CPUfreq Samsung driver IO timing"
  1460. depends on CPU_FREQ_S3C24XX
  1461. help
  1462. Enable s3c_freq_iodbg for the Samsung S3C CPUfreq core
  1463. config CPU_FREQ_S3C24XX_DEBUGFS
  1464. bool "Export debugfs for CPUFreq"
  1465. depends on CPU_FREQ_S3C24XX && DEBUG_FS
  1466. help
  1467. Export status information via debugfs.
  1468. endif
  1469. source "drivers/cpuidle/Kconfig"
  1470. endmenu
  1471. menu "Floating point emulation"
  1472. comment "At least one emulation must be selected"
  1473. config FPE_NWFPE
  1474. bool "NWFPE math emulation"
  1475. depends on !AEABI || OABI_COMPAT
  1476. ---help---
  1477. Say Y to include the NWFPE floating point emulator in the kernel.
  1478. This is necessary to run most binaries. Linux does not currently
  1479. support floating point hardware so you need to say Y here even if
  1480. your machine has an FPA or floating point co-processor podule.
  1481. You may say N here if you are going to load the Acorn FPEmulator
  1482. early in the bootup.
  1483. config FPE_NWFPE_XP
  1484. bool "Support extended precision"
  1485. depends on FPE_NWFPE
  1486. help
  1487. Say Y to include 80-bit support in the kernel floating-point
  1488. emulator. Otherwise, only 32 and 64-bit support is compiled in.
  1489. Note that gcc does not generate 80-bit operations by default,
  1490. so in most cases this option only enlarges the size of the
  1491. floating point emulator without any good reason.
  1492. You almost surely want to say N here.
  1493. config FPE_FASTFPE
  1494. bool "FastFPE math emulation (EXPERIMENTAL)"
  1495. depends on (!AEABI || OABI_COMPAT) && !CPU_32v3 && EXPERIMENTAL
  1496. ---help---
  1497. Say Y here to include the FAST floating point emulator in the kernel.
  1498. This is an experimental much faster emulator which now also has full
  1499. precision for the mantissa. It does not support any exceptions.
  1500. It is very simple, and approximately 3-6 times faster than NWFPE.
  1501. It should be sufficient for most programs. It may be not suitable
  1502. for scientific calculations, but you have to check this for yourself.
  1503. If you do not feel you need a faster FP emulation you should better
  1504. choose NWFPE.
  1505. config VFP
  1506. bool "VFP-format floating point maths"
  1507. depends on CPU_V6 || CPU_ARM926T || CPU_V7 || CPU_FEROCEON
  1508. help
  1509. Say Y to include VFP support code in the kernel. This is needed
  1510. if your hardware includes a VFP unit.
  1511. Please see <file:Documentation/arm/VFP/release-notes.txt> for
  1512. release notes and additional status information.
  1513. Say N if your target does not have VFP hardware.
  1514. config VFPv3
  1515. bool
  1516. depends on VFP
  1517. default y if CPU_V7
  1518. config NEON
  1519. bool "Advanced SIMD (NEON) Extension support"
  1520. depends on VFPv3 && CPU_V7
  1521. help
  1522. Say Y to include support code for NEON, the ARMv7 Advanced SIMD
  1523. Extension.
  1524. endmenu
  1525. menu "Userspace binary formats"
  1526. source "fs/Kconfig.binfmt"
  1527. config ARTHUR
  1528. tristate "RISC OS personality"
  1529. depends on !AEABI
  1530. help
  1531. Say Y here to include the kernel code necessary if you want to run
  1532. Acorn RISC OS/Arthur binaries under Linux. This code is still very
  1533. experimental; if this sounds frightening, say N and sleep in peace.
  1534. You can also say M here to compile this support as a module (which
  1535. will be called arthur).
  1536. endmenu
  1537. menu "Power management options"
  1538. source "kernel/power/Kconfig"
  1539. config ARCH_SUSPEND_POSSIBLE
  1540. def_bool y
  1541. endmenu
  1542. source "net/Kconfig"
  1543. source "drivers/Kconfig"
  1544. source "fs/Kconfig"
  1545. source "arch/arm/Kconfig.debug"
  1546. source "security/Kconfig"
  1547. source "crypto/Kconfig"
  1548. source "lib/Kconfig"