Kconfig 11 KB

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  1. # For a description of the syntax of this configuration file,
  2. # see Documentation/kbuild/kconfig-language.txt.
  3. config TILE
  4. def_bool y
  5. select HAVE_DMA_ATTRS
  6. select HAVE_DMA_API_DEBUG
  7. select HAVE_KVM if !TILEGX
  8. select GENERIC_FIND_FIRST_BIT
  9. select SYSCTL_EXCEPTION_TRACE
  10. select USE_GENERIC_SMP_HELPERS
  11. select CC_OPTIMIZE_FOR_SIZE
  12. select HAVE_DEBUG_KMEMLEAK
  13. select HAVE_GENERIC_HARDIRQS
  14. select GENERIC_IRQ_PROBE
  15. select GENERIC_PENDING_IRQ if SMP
  16. select GENERIC_IRQ_SHOW
  17. select HAVE_DEBUG_BUGVERBOSE
  18. select HAVE_SYSCALL_WRAPPERS if TILEGX
  19. select SYS_HYPERVISOR
  20. select ARCH_HAVE_NMI_SAFE_CMPXCHG
  21. select GENERIC_CLOCKEVENTS
  22. # FIXME: investigate whether we need/want these options.
  23. # select HAVE_IOREMAP_PROT
  24. # select HAVE_OPTPROBES
  25. # select HAVE_REGS_AND_STACK_ACCESS_API
  26. # select HAVE_HW_BREAKPOINT
  27. # select PERF_EVENTS
  28. # select HAVE_USER_RETURN_NOTIFIER
  29. # config NO_BOOTMEM
  30. # config ARCH_SUPPORTS_DEBUG_PAGEALLOC
  31. # config HUGETLB_PAGE_SIZE_VARIABLE
  32. config MMU
  33. def_bool y
  34. config GENERIC_CSUM
  35. def_bool y
  36. config SEMAPHORE_SLEEPERS
  37. def_bool y
  38. config HAVE_ARCH_ALLOC_REMAP
  39. def_bool y
  40. config HAVE_SETUP_PER_CPU_AREA
  41. def_bool y
  42. config NEED_PER_CPU_PAGE_FIRST_CHUNK
  43. def_bool y
  44. config SYS_SUPPORTS_HUGETLBFS
  45. def_bool y
  46. # Support for additional huge page sizes besides HPAGE_SIZE.
  47. # The software support is currently only present in the TILE-Gx
  48. # hypervisor. TILEPro in any case does not support page sizes
  49. # larger than the default HPAGE_SIZE.
  50. config HUGETLB_SUPER_PAGES
  51. depends on HUGETLB_PAGE && TILEGX
  52. def_bool y
  53. # FIXME: tilegx can implement a more efficient rwsem.
  54. config RWSEM_GENERIC_SPINLOCK
  55. def_bool y
  56. # We have a very flat architecture from a migration point of view,
  57. # so save boot time by presetting this (particularly useful on tile-sim).
  58. config DEFAULT_MIGRATION_COST
  59. int
  60. default "10000000"
  61. # We only support gcc 4.4 and above, so this should work.
  62. config ARCH_SUPPORTS_OPTIMIZED_INLINING
  63. def_bool y
  64. config ARCH_PHYS_ADDR_T_64BIT
  65. def_bool y
  66. config ARCH_DMA_ADDR_T_64BIT
  67. def_bool y
  68. config NEED_DMA_MAP_STATE
  69. def_bool y
  70. config ARCH_HAS_DMA_SET_COHERENT_MASK
  71. bool
  72. config LOCKDEP_SUPPORT
  73. def_bool y
  74. config STACKTRACE_SUPPORT
  75. def_bool y
  76. select STACKTRACE
  77. # We use discontigmem for now; at some point we may want to switch
  78. # to sparsemem (Tilera bug 7996).
  79. config ARCH_DISCONTIGMEM_ENABLE
  80. def_bool y
  81. config ARCH_DISCONTIGMEM_DEFAULT
  82. def_bool y
  83. config TRACE_IRQFLAGS_SUPPORT
  84. def_bool y
  85. config STRICT_DEVMEM
  86. def_bool y
  87. # SMP is required for Tilera Linux.
  88. config SMP
  89. def_bool y
  90. # Allow checking for compile-time determined overflow errors in
  91. # copy_from_user(). There are still unprovable places in the
  92. # generic code as of 2.6.34, so this option is not really compatible
  93. # with -Werror, which is more useful in general.
  94. config DEBUG_COPY_FROM_USER
  95. def_bool n
  96. config HVC_TILE
  97. select HVC_DRIVER
  98. def_bool y
  99. config TILEGX
  100. bool "Building with TILE-Gx (64-bit) compiler and toolchain"
  101. config TILEPRO
  102. def_bool !TILEGX
  103. config 64BIT
  104. def_bool TILEGX
  105. config ARCH_DEFCONFIG
  106. string
  107. default "arch/tile/configs/tilepro_defconfig" if !TILEGX
  108. default "arch/tile/configs/tilegx_defconfig" if TILEGX
  109. source "init/Kconfig"
  110. menu "Tilera-specific configuration"
  111. config NR_CPUS
  112. int "Maximum number of tiles (2-255)"
  113. range 2 255
  114. depends on SMP
  115. default "64"
  116. ---help---
  117. Building with 64 is the recommended value, but a slightly
  118. smaller kernel memory footprint results from using a smaller
  119. value on chips with fewer tiles.
  120. if TILEGX
  121. choice
  122. prompt "Kernel page size"
  123. default PAGE_SIZE_64KB
  124. help
  125. This lets you select the page size of the kernel. For best
  126. performance on memory-intensive applications, a page size of 64KB
  127. is recommended. For workloads involving many small files, many
  128. connections, etc., it may be better to select 16KB, which uses
  129. memory more efficiently at some cost in TLB performance.
  130. Note that this option is TILE-Gx specific; currently
  131. TILEPro page size is set by rebuilding the hypervisor.
  132. config PAGE_SIZE_16KB
  133. bool "16KB"
  134. config PAGE_SIZE_64KB
  135. bool "64KB"
  136. endchoice
  137. endif
  138. source "kernel/Kconfig.hz"
  139. config KEXEC
  140. bool "kexec system call"
  141. ---help---
  142. kexec is a system call that implements the ability to shutdown your
  143. current kernel, and to start another kernel. It is like a reboot
  144. but it is independent of the system firmware. It is used
  145. to implement the "mboot" Tilera booter.
  146. The name comes from the similarity to the exec system call.
  147. config COMPAT
  148. bool "Support 32-bit TILE-Gx binaries in addition to 64-bit"
  149. depends on TILEGX
  150. select COMPAT_BINFMT_ELF
  151. default y
  152. ---help---
  153. If enabled, the kernel will support running TILE-Gx binaries
  154. that were built with the -m32 option.
  155. config SYSVIPC_COMPAT
  156. def_bool y
  157. depends on COMPAT && SYSVIPC
  158. # We do not currently support disabling HIGHMEM on tile64 and tilepro.
  159. config HIGHMEM
  160. bool # "Support for more than 512 MB of RAM"
  161. default !TILEGX
  162. ---help---
  163. Linux can use the full amount of RAM in the system by
  164. default. However, the address space of TILE processors is
  165. only 4 Gigabytes large. That means that, if you have a large
  166. amount of physical memory, not all of it can be "permanently
  167. mapped" by the kernel. The physical memory that's not
  168. permanently mapped is called "high memory".
  169. If you are compiling a kernel which will never run on a
  170. machine with more than 512 MB total physical RAM, answer
  171. "false" here. This will result in the kernel mapping all of
  172. physical memory into the top 1 GB of virtual memory space.
  173. If unsure, say "true".
  174. config ZONE_DMA
  175. def_bool y
  176. config IOMMU_HELPER
  177. bool
  178. config NEED_SG_DMA_LENGTH
  179. bool
  180. config SWIOTLB
  181. bool
  182. default TILEGX
  183. select IOMMU_HELPER
  184. select NEED_SG_DMA_LENGTH
  185. select ARCH_HAS_DMA_SET_COHERENT_MASK
  186. # We do not currently support disabling NUMA.
  187. config NUMA
  188. bool # "NUMA Memory Allocation and Scheduler Support"
  189. depends on SMP && DISCONTIGMEM
  190. default y
  191. ---help---
  192. NUMA memory allocation is required for TILE processors
  193. unless booting with memory striping enabled in the
  194. hypervisor, or with only a single memory controller.
  195. It is recommended that this option always be enabled.
  196. config NODES_SHIFT
  197. int "Log base 2 of the max number of memory controllers"
  198. default 2
  199. depends on NEED_MULTIPLE_NODES
  200. ---help---
  201. By default, 2, i.e. 2^2 == 4 DDR2 controllers.
  202. In a system with more controllers, this value should be raised.
  203. choice
  204. depends on !TILEGX
  205. prompt "Memory split" if EXPERT
  206. default VMSPLIT_3G
  207. ---help---
  208. Select the desired split between kernel and user memory.
  209. If the address range available to the kernel is less than the
  210. physical memory installed, the remaining memory will be available
  211. as "high memory". Accessing high memory is a little more costly
  212. than low memory, as it needs to be mapped into the kernel first.
  213. Note that increasing the kernel address space limits the range
  214. available to user programs, making the address space there
  215. tighter. Selecting anything other than the default 3G/1G split
  216. will also likely make your kernel incompatible with binary-only
  217. kernel modules.
  218. If you are not absolutely sure what you are doing, leave this
  219. option alone!
  220. config VMSPLIT_3_75G
  221. bool "3.75G/0.25G user/kernel split (no kernel networking)"
  222. config VMSPLIT_3_5G
  223. bool "3.5G/0.5G user/kernel split"
  224. config VMSPLIT_3G
  225. bool "3G/1G user/kernel split"
  226. config VMSPLIT_2_75G
  227. bool "2.75G/1.25G user/kernel split (for full 1G low memory)"
  228. config VMSPLIT_2_5G
  229. bool "2.5G/1.5G user/kernel split"
  230. config VMSPLIT_2_25G
  231. bool "2.25G/1.75G user/kernel split"
  232. config VMSPLIT_2G
  233. bool "2G/2G user/kernel split"
  234. config VMSPLIT_1G
  235. bool "1G/3G user/kernel split"
  236. endchoice
  237. config PAGE_OFFSET
  238. hex
  239. depends on !64BIT
  240. default 0xF0000000 if VMSPLIT_3_75G
  241. default 0xE0000000 if VMSPLIT_3_5G
  242. default 0xB0000000 if VMSPLIT_2_75G
  243. default 0xA0000000 if VMSPLIT_2_5G
  244. default 0x90000000 if VMSPLIT_2_25G
  245. default 0x80000000 if VMSPLIT_2G
  246. default 0x40000000 if VMSPLIT_1G
  247. default 0xC0000000
  248. source "mm/Kconfig"
  249. config CMDLINE_BOOL
  250. bool "Built-in kernel command line"
  251. default n
  252. ---help---
  253. Allow for specifying boot arguments to the kernel at
  254. build time. On some systems (e.g. embedded ones), it is
  255. necessary or convenient to provide some or all of the
  256. kernel boot arguments with the kernel itself (that is,
  257. to not rely on the boot loader to provide them.)
  258. To compile command line arguments into the kernel,
  259. set this option to 'Y', then fill in the
  260. the boot arguments in CONFIG_CMDLINE.
  261. Systems with fully functional boot loaders (e.g. mboot, or
  262. if booting over PCI) should leave this option set to 'N'.
  263. config CMDLINE
  264. string "Built-in kernel command string"
  265. depends on CMDLINE_BOOL
  266. default ""
  267. ---help---
  268. Enter arguments here that should be compiled into the kernel
  269. image and used at boot time. If the boot loader provides a
  270. command line at boot time, it is appended to this string to
  271. form the full kernel command line, when the system boots.
  272. However, you can use the CONFIG_CMDLINE_OVERRIDE option to
  273. change this behavior.
  274. In most cases, the command line (whether built-in or provided
  275. by the boot loader) should specify the device for the root
  276. file system.
  277. config CMDLINE_OVERRIDE
  278. bool "Built-in command line overrides boot loader arguments"
  279. default n
  280. depends on CMDLINE_BOOL
  281. ---help---
  282. Set this option to 'Y' to have the kernel ignore the boot loader
  283. command line, and use ONLY the built-in command line.
  284. This is used to work around broken boot loaders. This should
  285. be set to 'N' under normal conditions.
  286. config VMALLOC_RESERVE
  287. hex
  288. default 0x1000000
  289. config HARDWALL
  290. bool "Hardwall support to allow access to user dynamic network"
  291. default y
  292. config KERNEL_PL
  293. int "Processor protection level for kernel"
  294. range 1 2
  295. default "1"
  296. ---help---
  297. This setting determines the processor protection level the
  298. kernel will be built to run at. Generally you should use
  299. the default value here.
  300. source "arch/tile/gxio/Kconfig"
  301. endmenu # Tilera-specific configuration
  302. menu "Bus options"
  303. config PCI
  304. bool "PCI support"
  305. default y
  306. select PCI_DOMAINS
  307. select GENERIC_PCI_IOMAP
  308. select TILE_GXIO_TRIO if TILEGX
  309. select ARCH_SUPPORTS_MSI if TILEGX
  310. select PCI_MSI if TILEGX
  311. ---help---
  312. Enable PCI root complex support, so PCIe endpoint devices can
  313. be attached to the Tile chip. Many, but not all, PCI devices
  314. are supported under Tilera's root complex driver.
  315. config PCI_DOMAINS
  316. bool
  317. config NO_IOMEM
  318. def_bool !PCI
  319. config NO_IOPORT
  320. def_bool !PCI
  321. source "drivers/pci/Kconfig"
  322. config TILE_USB
  323. tristate "Tilera USB host adapter support"
  324. default y
  325. depends on USB
  326. depends on TILEGX
  327. select TILE_GXIO_USB_HOST
  328. ---help---
  329. Provides USB host adapter support for the built-in EHCI and OHCI
  330. interfaces on TILE-Gx chips.
  331. # USB OHCI needs the bounce pool since tilegx will often have more
  332. # than 4GB of memory, but we don't currently use the IOTLB to present
  333. # a 32-bit address to OHCI. So we need to use a bounce pool instead.
  334. config NEED_BOUNCE_POOL
  335. def_bool USB_OHCI_HCD
  336. source "drivers/pci/hotplug/Kconfig"
  337. endmenu
  338. menu "Executable file formats"
  339. # only elf supported
  340. config KCORE_ELF
  341. def_bool y
  342. depends on PROC_FS
  343. source "fs/Kconfig.binfmt"
  344. endmenu
  345. source "net/Kconfig"
  346. source "drivers/Kconfig"
  347. source "fs/Kconfig"
  348. source "arch/tile/Kconfig.debug"
  349. source "security/Kconfig"
  350. source "crypto/Kconfig"
  351. source "lib/Kconfig"
  352. source "arch/tile/kvm/Kconfig"