Kconfig 17 KB

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  1. #
  2. # For a description of the syntax of this configuration file,
  3. # see Documentation/kbuild/kconfig-language.txt.
  4. #
  5. config SCHED_MC
  6. def_bool y
  7. depends on SMP
  8. config MMU
  9. def_bool y
  10. config ZONE_DMA
  11. def_bool y
  12. depends on 64BIT
  13. config LOCKDEP_SUPPORT
  14. def_bool y
  15. config STACKTRACE_SUPPORT
  16. def_bool y
  17. config HAVE_LATENCYTOP_SUPPORT
  18. def_bool y
  19. config RWSEM_GENERIC_SPINLOCK
  20. bool
  21. config RWSEM_XCHGADD_ALGORITHM
  22. def_bool y
  23. config ARCH_HAS_ILOG2_U32
  24. bool
  25. default n
  26. config ARCH_HAS_ILOG2_U64
  27. bool
  28. default n
  29. config GENERIC_HWEIGHT
  30. def_bool y
  31. config GENERIC_TIME
  32. def_bool y
  33. config GENERIC_TIME_VSYSCALL
  34. def_bool y
  35. config GENERIC_CLOCKEVENTS
  36. def_bool y
  37. config GENERIC_BUG
  38. bool
  39. depends on BUG
  40. default y
  41. config NO_IOMEM
  42. def_bool y
  43. config NO_DMA
  44. def_bool y
  45. config GENERIC_LOCKBREAK
  46. bool
  47. default y
  48. depends on SMP && PREEMPT
  49. config PGSTE
  50. bool
  51. default y if KVM
  52. config VIRT_CPU_ACCOUNTING
  53. def_bool y
  54. config ARCH_SUPPORTS_DEBUG_PAGEALLOC
  55. def_bool y
  56. mainmenu "Linux Kernel Configuration"
  57. config S390
  58. def_bool y
  59. select USE_GENERIC_SMP_HELPERS if SMP
  60. select HAVE_SYSCALL_WRAPPERS
  61. select HAVE_FUNCTION_TRACER
  62. select HAVE_FUNCTION_TRACE_MCOUNT_TEST
  63. select HAVE_FTRACE_MCOUNT_RECORD
  64. select HAVE_SYSCALL_TRACEPOINTS
  65. select HAVE_DYNAMIC_FTRACE
  66. select HAVE_FUNCTION_GRAPH_TRACER
  67. select HAVE_REGS_AND_STACK_ACCESS_API
  68. select HAVE_DEFAULT_NO_SPIN_MUTEXES
  69. select HAVE_OPROFILE
  70. select HAVE_KPROBES
  71. select HAVE_KRETPROBES
  72. select HAVE_KVM if 64BIT
  73. select HAVE_ARCH_TRACEHOOK
  74. select INIT_ALL_POSSIBLE
  75. select HAVE_PERF_EVENTS
  76. select ARCH_INLINE_SPIN_TRYLOCK
  77. select ARCH_INLINE_SPIN_TRYLOCK_BH
  78. select ARCH_INLINE_SPIN_LOCK
  79. select ARCH_INLINE_SPIN_LOCK_BH
  80. select ARCH_INLINE_SPIN_LOCK_IRQ
  81. select ARCH_INLINE_SPIN_LOCK_IRQSAVE
  82. select ARCH_INLINE_SPIN_UNLOCK
  83. select ARCH_INLINE_SPIN_UNLOCK_BH
  84. select ARCH_INLINE_SPIN_UNLOCK_IRQ
  85. select ARCH_INLINE_SPIN_UNLOCK_IRQRESTORE
  86. select ARCH_INLINE_READ_TRYLOCK
  87. select ARCH_INLINE_READ_LOCK
  88. select ARCH_INLINE_READ_LOCK_BH
  89. select ARCH_INLINE_READ_LOCK_IRQ
  90. select ARCH_INLINE_READ_LOCK_IRQSAVE
  91. select ARCH_INLINE_READ_UNLOCK
  92. select ARCH_INLINE_READ_UNLOCK_BH
  93. select ARCH_INLINE_READ_UNLOCK_IRQ
  94. select ARCH_INLINE_READ_UNLOCK_IRQRESTORE
  95. select ARCH_INLINE_WRITE_TRYLOCK
  96. select ARCH_INLINE_WRITE_LOCK
  97. select ARCH_INLINE_WRITE_LOCK_BH
  98. select ARCH_INLINE_WRITE_LOCK_IRQ
  99. select ARCH_INLINE_WRITE_LOCK_IRQSAVE
  100. select ARCH_INLINE_WRITE_UNLOCK
  101. select ARCH_INLINE_WRITE_UNLOCK_BH
  102. select ARCH_INLINE_WRITE_UNLOCK_IRQ
  103. select ARCH_INLINE_WRITE_UNLOCK_IRQRESTORE
  104. config SCHED_OMIT_FRAME_POINTER
  105. bool
  106. default y
  107. source "init/Kconfig"
  108. source "kernel/Kconfig.freezer"
  109. menu "Base setup"
  110. comment "Processor type and features"
  111. source "kernel/time/Kconfig"
  112. config 64BIT
  113. bool "64 bit kernel"
  114. help
  115. Select this option if you have a 64 bit IBM zSeries machine
  116. and want to use the 64 bit addressing mode.
  117. config 32BIT
  118. bool
  119. default y if !64BIT
  120. config KTIME_SCALAR
  121. def_bool 32BIT
  122. config SMP
  123. bool "Symmetric multi-processing support"
  124. ---help---
  125. This enables support for systems with more than one CPU. If you have
  126. a system with only one CPU, like most personal computers, say N. If
  127. you have a system with more than one CPU, say Y.
  128. If you say N here, the kernel will run on single and multiprocessor
  129. machines, but will use only one CPU of a multiprocessor machine. If
  130. you say Y here, the kernel will run on many, but not all,
  131. singleprocessor machines. On a singleprocessor machine, the kernel
  132. will run faster if you say N here.
  133. See also the SMP-HOWTO available at
  134. <http://www.tldp.org/docs.html#howto>.
  135. Even if you don't know what to do here, say Y.
  136. config NR_CPUS
  137. int "Maximum number of CPUs (2-64)"
  138. range 2 64
  139. depends on SMP
  140. default "32" if !64BIT
  141. default "64" if 64BIT
  142. help
  143. This allows you to specify the maximum number of CPUs which this
  144. kernel will support. The maximum supported value is 64 and the
  145. minimum value which makes sense is 2.
  146. This is purely to save memory - each supported CPU adds
  147. approximately sixteen kilobytes to the kernel image.
  148. config HOTPLUG_CPU
  149. bool "Support for hot-pluggable CPUs"
  150. depends on SMP
  151. select HOTPLUG
  152. default n
  153. help
  154. Say Y here to be able to turn CPUs off and on. CPUs
  155. can be controlled through /sys/devices/system/cpu/cpu#.
  156. Say N if you want to disable CPU hotplug.
  157. config MATHEMU
  158. bool "IEEE FPU emulation"
  159. depends on MARCH_G5
  160. help
  161. This option is required for IEEE compliant floating point arithmetic
  162. on older S/390 machines. Say Y unless you know your machine doesn't
  163. need this.
  164. config COMPAT
  165. bool "Kernel support for 31 bit emulation"
  166. depends on 64BIT
  167. select COMPAT_BINFMT_ELF
  168. help
  169. Select this option if you want to enable your system kernel to
  170. handle system-calls from ELF binaries for 31 bit ESA. This option
  171. (and some other stuff like libraries and such) is needed for
  172. executing 31 bit applications. It is safe to say "Y".
  173. config SYSVIPC_COMPAT
  174. bool
  175. depends on COMPAT && SYSVIPC
  176. default y
  177. config AUDIT_ARCH
  178. bool
  179. default y
  180. config S390_EXEC_PROTECT
  181. bool "Data execute protection"
  182. help
  183. This option allows to enable a buffer overflow protection for user
  184. space programs and it also selects the addressing mode option above.
  185. The kernel parameter noexec=on will enable this feature and also
  186. switch the addressing modes, default is disabled. Enabling this (via
  187. kernel parameter) on machines earlier than IBM System z9-109 EC/BC
  188. will reduce system performance.
  189. comment "Code generation options"
  190. choice
  191. prompt "Processor type"
  192. default MARCH_G5
  193. config MARCH_G5
  194. bool "S/390 model G5 and G6"
  195. depends on !64BIT
  196. help
  197. Select this to build a 31 bit kernel that works
  198. on all S/390 and zSeries machines.
  199. config MARCH_Z900
  200. bool "IBM eServer zSeries model z800 and z900"
  201. help
  202. Select this to optimize for zSeries machines. This
  203. will enable some optimizations that are not available
  204. on older 31 bit only CPUs.
  205. config MARCH_Z990
  206. bool "IBM eServer zSeries model z890 and z990"
  207. help
  208. Select this enable optimizations for model z890/z990.
  209. This will be slightly faster but does not work on
  210. older machines such as the z900.
  211. config MARCH_Z9_109
  212. bool "IBM System z9"
  213. help
  214. Select this to enable optimizations for IBM System z9-109, IBM
  215. System z9 Enterprise Class (z9 EC), and IBM System z9 Business
  216. Class (z9 BC). The kernel will be slightly faster but will not
  217. work on older machines such as the z990, z890, z900, and z800.
  218. config MARCH_Z10
  219. bool "IBM System z10"
  220. help
  221. Select this to enable optimizations for IBM System z10. The
  222. kernel will be slightly faster but will not work on older
  223. machines such as the z990, z890, z900, z800, z9-109, z9-ec
  224. and z9-bc.
  225. endchoice
  226. config PACK_STACK
  227. bool "Pack kernel stack"
  228. help
  229. This option enables the compiler option -mkernel-backchain if it
  230. is available. If the option is available the compiler supports
  231. the new stack layout which dramatically reduces the minimum stack
  232. frame size. With an old compiler a non-leaf function needs a
  233. minimum of 96 bytes on 31 bit and 160 bytes on 64 bit. With
  234. -mkernel-backchain the minimum size drops to 16 byte on 31 bit
  235. and 24 byte on 64 bit.
  236. Say Y if you are unsure.
  237. config SMALL_STACK
  238. bool "Use 8kb for kernel stack instead of 16kb"
  239. depends on PACK_STACK && 64BIT && !LOCKDEP
  240. help
  241. If you say Y here and the compiler supports the -mkernel-backchain
  242. option the kernel will use a smaller kernel stack size. The reduced
  243. size is 8kb instead of 16kb. This allows to run more threads on a
  244. system and reduces the pressure on the memory management for higher
  245. order page allocations.
  246. Say N if you are unsure.
  247. config CHECK_STACK
  248. bool "Detect kernel stack overflow"
  249. help
  250. This option enables the compiler option -mstack-guard and
  251. -mstack-size if they are available. If the compiler supports them
  252. it will emit additional code to each function prolog to trigger
  253. an illegal operation if the kernel stack is about to overflow.
  254. Say N if you are unsure.
  255. config STACK_GUARD
  256. int "Size of the guard area (128-1024)"
  257. range 128 1024
  258. depends on CHECK_STACK
  259. default "256"
  260. help
  261. This allows you to specify the size of the guard area at the lower
  262. end of the kernel stack. If the kernel stack points into the guard
  263. area on function entry an illegal operation is triggered. The size
  264. needs to be a power of 2. Please keep in mind that the size of an
  265. interrupt frame is 184 bytes for 31 bit and 328 bytes on 64 bit.
  266. The minimum size for the stack guard should be 256 for 31 bit and
  267. 512 for 64 bit.
  268. config WARN_STACK
  269. bool "Emit compiler warnings for function with broken stack usage"
  270. help
  271. This option enables the compiler options -mwarn-framesize and
  272. -mwarn-dynamicstack. If the compiler supports these options it
  273. will generate warnings for function which either use alloca or
  274. create a stack frame bigger than CONFIG_WARN_STACK_SIZE.
  275. Say N if you are unsure.
  276. config WARN_STACK_SIZE
  277. int "Maximum frame size considered safe (128-2048)"
  278. range 128 2048
  279. depends on WARN_STACK
  280. default "2048"
  281. help
  282. This allows you to specify the maximum frame size a function may
  283. have without the compiler complaining about it.
  284. config ARCH_POPULATES_NODE_MAP
  285. def_bool y
  286. comment "Kernel preemption"
  287. source "kernel/Kconfig.preempt"
  288. config ARCH_SPARSEMEM_ENABLE
  289. def_bool y
  290. select SPARSEMEM_VMEMMAP_ENABLE
  291. select SPARSEMEM_VMEMMAP
  292. select SPARSEMEM_STATIC if !64BIT
  293. config ARCH_SPARSEMEM_DEFAULT
  294. def_bool y
  295. config ARCH_SELECT_MEMORY_MODEL
  296. def_bool y
  297. config ARCH_ENABLE_MEMORY_HOTPLUG
  298. def_bool y
  299. depends on SPARSEMEM
  300. config ARCH_ENABLE_MEMORY_HOTREMOVE
  301. def_bool y
  302. config ARCH_HIBERNATION_POSSIBLE
  303. def_bool y if 64BIT
  304. source "mm/Kconfig"
  305. comment "I/O subsystem configuration"
  306. config QDIO
  307. tristate "QDIO support"
  308. ---help---
  309. This driver provides the Queued Direct I/O base support for
  310. IBM System z.
  311. To compile this driver as a module, choose M here: the
  312. module will be called qdio.
  313. If unsure, say Y.
  314. config CHSC_SCH
  315. tristate "Support for CHSC subchannels"
  316. help
  317. This driver allows usage of CHSC subchannels. A CHSC subchannel
  318. is usually present on LPAR only.
  319. The driver creates a device /dev/chsc, which may be used to
  320. obtain I/O configuration information about the machine and
  321. to issue asynchronous chsc commands (DANGEROUS).
  322. You will usually only want to use this interface on a special
  323. LPAR designated for system management.
  324. To compile this driver as a module, choose M here: the
  325. module will be called chsc_sch.
  326. If unsure, say N.
  327. comment "Misc"
  328. config IPL
  329. bool "Builtin IPL record support"
  330. help
  331. If you want to use the produced kernel to IPL directly from a
  332. device, you have to merge a bootsector specific to the device
  333. into the first bytes of the kernel. You will have to select the
  334. IPL device.
  335. choice
  336. prompt "IPL method generated into head.S"
  337. depends on IPL
  338. default IPL_VM
  339. help
  340. Select "tape" if you want to IPL the image from a Tape.
  341. Select "vm_reader" if you are running under VM/ESA and want
  342. to IPL the image from the emulated card reader.
  343. config IPL_TAPE
  344. bool "tape"
  345. config IPL_VM
  346. bool "vm_reader"
  347. endchoice
  348. source "fs/Kconfig.binfmt"
  349. config FORCE_MAX_ZONEORDER
  350. int
  351. default "9"
  352. config PROCESS_DEBUG
  353. bool "Show crashed user process info"
  354. help
  355. Say Y to print all process fault locations to the console. This is
  356. a debugging option; you probably do not want to set it unless you
  357. are an S390 port maintainer.
  358. config PFAULT
  359. bool "Pseudo page fault support"
  360. help
  361. Select this option, if you want to use PFAULT pseudo page fault
  362. handling under VM. If running native or in LPAR, this option
  363. has no effect. If your VM does not support PFAULT, PAGEEX
  364. pseudo page fault handling will be used.
  365. Note that VM 4.2 supports PFAULT but has a bug in its
  366. implementation that causes some problems.
  367. Everybody who wants to run Linux under VM != VM4.2 should select
  368. this option.
  369. config SHARED_KERNEL
  370. bool "VM shared kernel support"
  371. help
  372. Select this option, if you want to share the text segment of the
  373. Linux kernel between different VM guests. This reduces memory
  374. usage with lots of guests but greatly increases kernel size.
  375. Also if a kernel was IPL'ed from a shared segment the kexec system
  376. call will not work.
  377. You should only select this option if you know what you are
  378. doing and want to exploit this feature.
  379. config CMM
  380. tristate "Cooperative memory management"
  381. help
  382. Select this option, if you want to enable the kernel interface
  383. to reduce the memory size of the system. This is accomplished
  384. by allocating pages of memory and put them "on hold". This only
  385. makes sense for a system running under VM where the unused pages
  386. will be reused by VM for other guest systems. The interface
  387. allows an external monitor to balance memory of many systems.
  388. Everybody who wants to run Linux under VM should select this
  389. option.
  390. config CMM_PROC
  391. bool "/proc interface to cooperative memory management"
  392. depends on CMM
  393. help
  394. Select this option to enable the /proc interface to the
  395. cooperative memory management.
  396. config CMM_IUCV
  397. bool "IUCV special message interface to cooperative memory management"
  398. depends on CMM && (SMSGIUCV=y || CMM=SMSGIUCV)
  399. help
  400. Select this option to enable the special message interface to
  401. the cooperative memory management.
  402. config APPLDATA_BASE
  403. bool "Linux - VM Monitor Stream, base infrastructure"
  404. depends on PROC_FS
  405. help
  406. This provides a kernel interface for creating and updating z/VM APPLDATA
  407. monitor records. The monitor records are updated at certain time
  408. intervals, once the timer is started.
  409. Writing 1 or 0 to /proc/appldata/timer starts(1) or stops(0) the timer,
  410. i.e. enables or disables monitoring on the Linux side.
  411. A custom interval value (in seconds) can be written to
  412. /proc/appldata/interval.
  413. Defaults are 60 seconds interval and timer off.
  414. The /proc entries can also be read from, showing the current settings.
  415. config APPLDATA_MEM
  416. tristate "Monitor memory management statistics"
  417. depends on APPLDATA_BASE && VM_EVENT_COUNTERS
  418. help
  419. This provides memory management related data to the Linux - VM Monitor
  420. Stream, like paging/swapping rate, memory utilisation, etc.
  421. Writing 1 or 0 to /proc/appldata/memory creates(1) or removes(0) a z/VM
  422. APPLDATA monitor record, i.e. enables or disables monitoring this record
  423. on the z/VM side.
  424. Default is disabled.
  425. The /proc entry can also be read from, showing the current settings.
  426. This can also be compiled as a module, which will be called
  427. appldata_mem.o.
  428. config APPLDATA_OS
  429. tristate "Monitor OS statistics"
  430. depends on APPLDATA_BASE
  431. help
  432. This provides OS related data to the Linux - VM Monitor Stream, like
  433. CPU utilisation, etc.
  434. Writing 1 or 0 to /proc/appldata/os creates(1) or removes(0) a z/VM
  435. APPLDATA monitor record, i.e. enables or disables monitoring this record
  436. on the z/VM side.
  437. Default is disabled.
  438. This can also be compiled as a module, which will be called
  439. appldata_os.o.
  440. config APPLDATA_NET_SUM
  441. tristate "Monitor overall network statistics"
  442. depends on APPLDATA_BASE && NET
  443. help
  444. This provides network related data to the Linux - VM Monitor Stream,
  445. currently there is only a total sum of network I/O statistics, no
  446. per-interface data.
  447. Writing 1 or 0 to /proc/appldata/net_sum creates(1) or removes(0) a z/VM
  448. APPLDATA monitor record, i.e. enables or disables monitoring this record
  449. on the z/VM side.
  450. Default is disabled.
  451. This can also be compiled as a module, which will be called
  452. appldata_net_sum.o.
  453. source kernel/Kconfig.hz
  454. config S390_HYPFS_FS
  455. bool "s390 hypervisor file system support"
  456. select SYS_HYPERVISOR
  457. default y
  458. help
  459. This is a virtual file system intended to provide accounting
  460. information in an s390 hypervisor environment.
  461. config KEXEC
  462. bool "kexec system call"
  463. help
  464. kexec is a system call that implements the ability to shutdown your
  465. current kernel, and to start another kernel. It is like a reboot
  466. but is independent of hardware/microcode support.
  467. config ZFCPDUMP
  468. bool "zfcpdump support"
  469. select SMP
  470. default n
  471. help
  472. Select this option if you want to build an zfcpdump enabled kernel.
  473. Refer to <file:Documentation/s390/zfcpdump.txt> for more details on this.
  474. config S390_GUEST
  475. bool "s390 guest support for KVM (EXPERIMENTAL)"
  476. depends on 64BIT && EXPERIMENTAL
  477. select VIRTIO
  478. select VIRTIO_RING
  479. select VIRTIO_CONSOLE
  480. help
  481. Select this option if you want to run the kernel as a guest under
  482. the KVM hypervisor. This will add detection for KVM as well as a
  483. virtio transport. If KVM is detected, the virtio console will be
  484. the default console.
  485. config SECCOMP
  486. bool "Enable seccomp to safely compute untrusted bytecode"
  487. depends on PROC_FS
  488. default y
  489. help
  490. This kernel feature is useful for number crunching applications
  491. that may need to compute untrusted bytecode during their
  492. execution. By using pipes or other transports made available to
  493. the process as file descriptors supporting the read/write
  494. syscalls, it's possible to isolate those applications in
  495. their own address space using seccomp. Once seccomp is
  496. enabled via /proc/<pid>/seccomp, it cannot be disabled
  497. and the task is only allowed to execute a few safe syscalls
  498. defined by each seccomp mode.
  499. If unsure, say Y.
  500. endmenu
  501. menu "Power Management"
  502. source "kernel/power/Kconfig"
  503. endmenu
  504. source "net/Kconfig"
  505. config PCMCIA
  506. def_bool n
  507. config CCW
  508. def_bool y
  509. source "drivers/Kconfig"
  510. source "fs/Kconfig"
  511. source "arch/s390/Kconfig.debug"
  512. source "security/Kconfig"
  513. source "crypto/Kconfig"
  514. source "lib/Kconfig"
  515. source "arch/s390/kvm/Kconfig"