Kconfig 16 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. # Note: ISA is disabled and will hopefully never be enabled.
  6. # If you managed to buy an ISA x86-64 box you'll have to fix all the
  7. # ISA drivers you need yourself.
  8. #
  9. mainmenu "Linux Kernel Configuration"
  10. config X86_64
  11. bool
  12. default y
  13. help
  14. Port to the x86-64 architecture. x86-64 is a 64-bit extension to the
  15. classical 32-bit x86 architecture. For details see
  16. <http://www.x86-64.org/>.
  17. config 64BIT
  18. def_bool y
  19. config X86
  20. bool
  21. default y
  22. config SEMAPHORE_SLEEPERS
  23. bool
  24. default y
  25. config MMU
  26. bool
  27. default y
  28. config ISA
  29. bool
  30. config SBUS
  31. bool
  32. config RWSEM_GENERIC_SPINLOCK
  33. bool
  34. default y
  35. config RWSEM_XCHGADD_ALGORITHM
  36. bool
  37. config GENERIC_HWEIGHT
  38. bool
  39. default y
  40. config GENERIC_CALIBRATE_DELAY
  41. bool
  42. default y
  43. config X86_CMPXCHG
  44. bool
  45. default y
  46. config EARLY_PRINTK
  47. bool
  48. default y
  49. config GENERIC_ISA_DMA
  50. bool
  51. default y
  52. config GENERIC_IOMAP
  53. bool
  54. default y
  55. config ARCH_MAY_HAVE_PC_FDC
  56. bool
  57. default y
  58. config DMI
  59. bool
  60. default y
  61. source "init/Kconfig"
  62. menu "Processor type and features"
  63. choice
  64. prompt "Subarchitecture Type"
  65. default X86_PC
  66. config X86_PC
  67. bool "PC-compatible"
  68. help
  69. Choose this option if your computer is a standard PC or compatible.
  70. config X86_VSMP
  71. bool "Support for ScaleMP vSMP"
  72. help
  73. Support for ScaleMP vSMP systems. Say 'Y' here if this kernel is
  74. supposed to run on these EM64T-based machines. Only choose this option
  75. if you have one of these machines.
  76. endchoice
  77. choice
  78. prompt "Processor family"
  79. default MK8
  80. config MK8
  81. bool "AMD-Opteron/Athlon64"
  82. help
  83. Optimize for AMD Opteron/Athlon64/Hammer/K8 CPUs.
  84. config MPSC
  85. bool "Intel EM64T"
  86. help
  87. Optimize for Intel Pentium 4 and Xeon CPUs with Intel
  88. Extended Memory 64 Technology(EM64T). For details see
  89. <http://www.intel.com/technology/64bitextensions/>.
  90. config GENERIC_CPU
  91. bool "Generic-x86-64"
  92. help
  93. Generic x86-64 CPU.
  94. endchoice
  95. #
  96. # Define implied options from the CPU selection here
  97. #
  98. config X86_L1_CACHE_BYTES
  99. int
  100. default "128" if GENERIC_CPU || MPSC
  101. default "64" if MK8
  102. config X86_L1_CACHE_SHIFT
  103. int
  104. default "7" if GENERIC_CPU || MPSC
  105. default "6" if MK8
  106. config X86_INTERNODE_CACHE_BYTES
  107. int
  108. default "4096" if X86_VSMP
  109. default X86_L1_CACHE_BYTES if !X86_VSMP
  110. config X86_TSC
  111. bool
  112. default y
  113. config X86_GOOD_APIC
  114. bool
  115. default y
  116. config MICROCODE
  117. tristate "/dev/cpu/microcode - Intel CPU microcode support"
  118. ---help---
  119. If you say Y here the 'File systems' section, you will be
  120. able to update the microcode on Intel processors. You will
  121. obviously need the actual microcode binary data itself which is
  122. not shipped with the Linux kernel.
  123. For latest news and information on obtaining all the required
  124. ingredients for this driver, check:
  125. <http://www.urbanmyth.org/microcode/>.
  126. To compile this driver as a module, choose M here: the
  127. module will be called microcode.
  128. If you use modprobe or kmod you may also want to add the line
  129. 'alias char-major-10-184 microcode' to your /etc/modules.conf file.
  130. config X86_MSR
  131. tristate "/dev/cpu/*/msr - Model-specific register support"
  132. help
  133. This device gives privileged processes access to the x86
  134. Model-Specific Registers (MSRs). It is a character device with
  135. major 202 and minors 0 to 31 for /dev/cpu/0/msr to /dev/cpu/31/msr.
  136. MSR accesses are directed to a specific CPU on multi-processor
  137. systems.
  138. config X86_CPUID
  139. tristate "/dev/cpu/*/cpuid - CPU information support"
  140. help
  141. This device gives processes access to the x86 CPUID instruction to
  142. be executed on a specific processor. It is a character device
  143. with major 203 and minors 0 to 31 for /dev/cpu/0/cpuid to
  144. /dev/cpu/31/cpuid.
  145. config X86_HT
  146. bool
  147. depends on SMP && !MK8
  148. default y
  149. config MATH_EMULATION
  150. bool
  151. config MCA
  152. bool
  153. config EISA
  154. bool
  155. config X86_IO_APIC
  156. bool
  157. default y
  158. config X86_LOCAL_APIC
  159. bool
  160. default y
  161. config MTRR
  162. bool "MTRR (Memory Type Range Register) support"
  163. ---help---
  164. On Intel P6 family processors (Pentium Pro, Pentium II and later)
  165. the Memory Type Range Registers (MTRRs) may be used to control
  166. processor access to memory ranges. This is most useful if you have
  167. a video (VGA) card on a PCI or AGP bus. Enabling write-combining
  168. allows bus write transfers to be combined into a larger transfer
  169. before bursting over the PCI/AGP bus. This can increase performance
  170. of image write operations 2.5 times or more. Saying Y here creates a
  171. /proc/mtrr file which may be used to manipulate your processor's
  172. MTRRs. Typically the X server should use this.
  173. This code has a reasonably generic interface so that similar
  174. control registers on other processors can be easily supported
  175. as well.
  176. Saying Y here also fixes a problem with buggy SMP BIOSes which only
  177. set the MTRRs for the boot CPU and not for the secondary CPUs. This
  178. can lead to all sorts of problems, so it's good to say Y here.
  179. Just say Y here, all x86-64 machines support MTRRs.
  180. See <file:Documentation/mtrr.txt> for more information.
  181. config SMP
  182. bool "Symmetric multi-processing support"
  183. ---help---
  184. This enables support for systems with more than one CPU. If you have
  185. a system with only one CPU, like most personal computers, say N. If
  186. you have a system with more than one CPU, say Y.
  187. If you say N here, the kernel will run on single and multiprocessor
  188. machines, but will use only one CPU of a multiprocessor machine. If
  189. you say Y here, the kernel will run on many, but not all,
  190. singleprocessor machines. On a singleprocessor machine, the kernel
  191. will run faster if you say N here.
  192. If you don't know what to do here, say N.
  193. config SCHED_SMT
  194. bool "SMT (Hyperthreading) scheduler support"
  195. depends on SMP
  196. default n
  197. help
  198. SMT scheduler support improves the CPU scheduler's decision making
  199. when dealing with Intel Pentium 4 chips with HyperThreading at a
  200. cost of slightly increased overhead in some places. If unsure say
  201. N here.
  202. config SCHED_MC
  203. bool "Multi-core scheduler support"
  204. depends on SMP
  205. default y
  206. help
  207. Multi-core scheduler support improves the CPU scheduler's decision
  208. making when dealing with multi-core CPU chips at a cost of slightly
  209. increased overhead in some places. If unsure say N here.
  210. source "kernel/Kconfig.preempt"
  211. config NUMA
  212. bool "Non Uniform Memory Access (NUMA) Support"
  213. depends on SMP
  214. help
  215. Enable NUMA (Non Uniform Memory Access) support. The kernel
  216. will try to allocate memory used by a CPU on the local memory
  217. controller of the CPU and add some more NUMA awareness to the kernel.
  218. This code is recommended on all multiprocessor Opteron systems.
  219. If the system is EM64T, you should say N unless your system is EM64T
  220. NUMA.
  221. config K8_NUMA
  222. bool "Old style AMD Opteron NUMA detection"
  223. depends on NUMA
  224. default y
  225. help
  226. Enable K8 NUMA node topology detection. You should say Y here if
  227. you have a multi processor AMD K8 system. This uses an old
  228. method to read the NUMA configurtion directly from the builtin
  229. Northbridge of Opteron. It is recommended to use X86_64_ACPI_NUMA
  230. instead, which also takes priority if both are compiled in.
  231. config NODES_SHIFT
  232. int
  233. default "6"
  234. depends on NEED_MULTIPLE_NODES
  235. # Dummy CONFIG option to select ACPI_NUMA from drivers/acpi/Kconfig.
  236. config X86_64_ACPI_NUMA
  237. bool "ACPI NUMA detection"
  238. depends on NUMA
  239. select ACPI
  240. select PCI
  241. select ACPI_NUMA
  242. default y
  243. help
  244. Enable ACPI SRAT based node topology detection.
  245. config NUMA_EMU
  246. bool "NUMA emulation"
  247. depends on NUMA
  248. help
  249. Enable NUMA emulation. A flat machine will be split
  250. into virtual nodes when booted with "numa=fake=N", where N is the
  251. number of nodes. This is only useful for debugging.
  252. config ARCH_DISCONTIGMEM_ENABLE
  253. bool
  254. depends on NUMA
  255. default y
  256. config ARCH_DISCONTIGMEM_ENABLE
  257. def_bool y
  258. depends on NUMA
  259. config ARCH_DISCONTIGMEM_DEFAULT
  260. def_bool y
  261. depends on NUMA
  262. config ARCH_SPARSEMEM_ENABLE
  263. def_bool y
  264. depends on (NUMA || EXPERIMENTAL)
  265. config ARCH_MEMORY_PROBE
  266. def_bool y
  267. depends on MEMORY_HOTPLUG
  268. config ARCH_FLATMEM_ENABLE
  269. def_bool y
  270. depends on !NUMA
  271. source "mm/Kconfig"
  272. config HAVE_ARCH_EARLY_PFN_TO_NID
  273. def_bool y
  274. depends on NUMA
  275. config OUT_OF_LINE_PFN_TO_PAGE
  276. def_bool y
  277. depends on DISCONTIGMEM
  278. config NR_CPUS
  279. int "Maximum number of CPUs (2-256)"
  280. range 2 255
  281. depends on SMP
  282. default "8"
  283. help
  284. This allows you to specify the maximum number of CPUs which this
  285. kernel will support. Current maximum is 256 CPUs due to
  286. APIC addressing limits. Less depending on the hardware.
  287. This is purely to save memory - each supported CPU requires
  288. memory in the static kernel configuration.
  289. config HOTPLUG_CPU
  290. bool "Support for hot-pluggable CPUs (EXPERIMENTAL)"
  291. depends on SMP && HOTPLUG && EXPERIMENTAL
  292. help
  293. Say Y here to experiment with turning CPUs off and on. CPUs
  294. can be controlled through /sys/devices/system/cpu/cpu#.
  295. Say N if you want to disable CPU hotplug.
  296. config HPET_TIMER
  297. bool
  298. default y
  299. help
  300. Use the IA-PC HPET (High Precision Event Timer) to manage
  301. time in preference to the PIT and RTC, if a HPET is
  302. present. The HPET provides a stable time base on SMP
  303. systems, unlike the TSC, but it is more expensive to access,
  304. as it is off-chip. You can find the HPET spec at
  305. <http://www.intel.com/hardwaredesign/hpetspec.htm>.
  306. config HPET_EMULATE_RTC
  307. bool "Provide RTC interrupt"
  308. depends on HPET_TIMER && RTC=y
  309. config GART_IOMMU
  310. bool "K8 GART IOMMU support"
  311. default y
  312. select SWIOTLB
  313. depends on PCI
  314. help
  315. Support for hardware IOMMU in AMD's Opteron/Athlon64 Processors
  316. and for the bounce buffering software IOMMU.
  317. Needed to run systems with more than 3GB of memory properly with
  318. 32-bit PCI devices that do not support DAC (Double Address Cycle).
  319. The IOMMU can be turned off at runtime with the iommu=off parameter.
  320. Normally the kernel will take the right choice by itself.
  321. This option includes a driver for the AMD Opteron/Athlon64 IOMMU
  322. northbridge and a software emulation used on other systems without
  323. hardware IOMMU. If unsure, say Y.
  324. # need this always enabled with GART_IOMMU for the VIA workaround
  325. config SWIOTLB
  326. bool
  327. default y
  328. depends on GART_IOMMU
  329. config X86_MCE
  330. bool "Machine check support" if EMBEDDED
  331. default y
  332. help
  333. Include a machine check error handler to report hardware errors.
  334. This version will require the mcelog utility to decode some
  335. machine check error logs. See
  336. ftp://ftp.x86-64.org/pub/linux/tools/mcelog
  337. config X86_MCE_INTEL
  338. bool "Intel MCE features"
  339. depends on X86_MCE && X86_LOCAL_APIC
  340. default y
  341. help
  342. Additional support for intel specific MCE features such as
  343. the thermal monitor.
  344. config X86_MCE_AMD
  345. bool "AMD MCE features"
  346. depends on X86_MCE && X86_LOCAL_APIC
  347. default y
  348. help
  349. Additional support for AMD specific MCE features such as
  350. the DRAM Error Threshold.
  351. config KEXEC
  352. bool "kexec system call (EXPERIMENTAL)"
  353. depends on EXPERIMENTAL
  354. help
  355. kexec is a system call that implements the ability to shutdown your
  356. current kernel, and to start another kernel. It is like a reboot
  357. but it is indepedent of the system firmware. And like a reboot
  358. you can start any kernel with it, not just Linux.
  359. The name comes from the similiarity to the exec system call.
  360. It is an ongoing process to be certain the hardware in a machine
  361. is properly shutdown, so do not be surprised if this code does not
  362. initially work for you. It may help to enable device hotplugging
  363. support. As of this writing the exact hardware interface is
  364. strongly in flux, so no good recommendation can be made.
  365. config CRASH_DUMP
  366. bool "kernel crash dumps (EXPERIMENTAL)"
  367. depends on EXPERIMENTAL
  368. help
  369. Generate crash dump after being started by kexec.
  370. config PHYSICAL_START
  371. hex "Physical address where the kernel is loaded" if (EMBEDDED || CRASH_DUMP)
  372. default "0x1000000" if CRASH_DUMP
  373. default "0x200000"
  374. help
  375. This gives the physical address where the kernel is loaded. Normally
  376. for regular kernels this value is 0x200000 (2MB). But in the case
  377. of kexec on panic the fail safe kernel needs to run at a different
  378. address than the panic-ed kernel. This option is used to set the load
  379. address for kernels used to capture crash dump on being kexec'ed
  380. after panic. The default value for crash dump kernels is
  381. 0x1000000 (16MB). This can also be set based on the "X" value as
  382. specified in the "crashkernel=YM@XM" command line boot parameter
  383. passed to the panic-ed kernel. Typically this parameter is set as
  384. crashkernel=64M@16M. Please take a look at
  385. Documentation/kdump/kdump.txt for more details about crash dumps.
  386. Don't change this unless you know what you are doing.
  387. config SECCOMP
  388. bool "Enable seccomp to safely compute untrusted bytecode"
  389. depends on PROC_FS
  390. default y
  391. help
  392. This kernel feature is useful for number crunching applications
  393. that may need to compute untrusted bytecode during their
  394. execution. By using pipes or other transports made available to
  395. the process as file descriptors supporting the read/write
  396. syscalls, it's possible to isolate those applications in
  397. their own address space using seccomp. Once seccomp is
  398. enabled via /proc/<pid>/seccomp, it cannot be disabled
  399. and the task is only allowed to execute a few safe syscalls
  400. defined by each seccomp mode.
  401. If unsure, say Y. Only embedded should say N here.
  402. source kernel/Kconfig.hz
  403. config REORDER
  404. bool "Function reordering"
  405. default n
  406. help
  407. This option enables the toolchain to reorder functions for a more
  408. optimal TLB usage. If you have pretty much any version of binutils,
  409. this can increase your kernel build time by roughly one minute.
  410. endmenu
  411. #
  412. # Use the generic interrupt handling code in kernel/irq/:
  413. #
  414. config GENERIC_HARDIRQS
  415. bool
  416. default y
  417. config GENERIC_IRQ_PROBE
  418. bool
  419. default y
  420. # we have no ISA slots, but we do have ISA-style DMA.
  421. config ISA_DMA_API
  422. bool
  423. default y
  424. config GENERIC_PENDING_IRQ
  425. bool
  426. depends on GENERIC_HARDIRQS && SMP
  427. default y
  428. menu "Power management options"
  429. source kernel/power/Kconfig
  430. source "drivers/acpi/Kconfig"
  431. source "arch/x86_64/kernel/cpufreq/Kconfig"
  432. endmenu
  433. menu "Bus options (PCI etc.)"
  434. config PCI
  435. bool "PCI support"
  436. # x86-64 doesn't support PCI BIOS access from long mode so always go direct.
  437. config PCI_DIRECT
  438. bool
  439. depends on PCI
  440. default y
  441. config PCI_MMCONFIG
  442. bool "Support mmconfig PCI config space access"
  443. depends on PCI && ACPI
  444. source "drivers/pci/pcie/Kconfig"
  445. source "drivers/pci/Kconfig"
  446. source "drivers/pcmcia/Kconfig"
  447. source "drivers/pci/hotplug/Kconfig"
  448. endmenu
  449. menu "Executable file formats / Emulations"
  450. source "fs/Kconfig.binfmt"
  451. config IA32_EMULATION
  452. bool "IA32 Emulation"
  453. help
  454. Include code to run 32-bit programs under a 64-bit kernel. You should likely
  455. turn this on, unless you're 100% sure that you don't have any 32-bit programs
  456. left.
  457. config IA32_AOUT
  458. tristate "IA32 a.out support"
  459. depends on IA32_EMULATION
  460. help
  461. Support old a.out binaries in the 32bit emulation.
  462. config COMPAT
  463. bool
  464. depends on IA32_EMULATION
  465. default y
  466. config SYSVIPC_COMPAT
  467. bool
  468. depends on COMPAT && SYSVIPC
  469. default y
  470. endmenu
  471. source "net/Kconfig"
  472. source drivers/Kconfig
  473. source "drivers/firmware/Kconfig"
  474. source fs/Kconfig
  475. menu "Instrumentation Support"
  476. depends on EXPERIMENTAL
  477. source "arch/x86_64/oprofile/Kconfig"
  478. config KPROBES
  479. bool "Kprobes (EXPERIMENTAL)"
  480. depends on EXPERIMENTAL && MODULES
  481. help
  482. Kprobes allows you to trap at almost any kernel address and
  483. execute a callback function. register_kprobe() establishes
  484. a probepoint and specifies the callback. Kprobes is useful
  485. for kernel debugging, non-intrusive instrumentation and testing.
  486. If in doubt, say "N".
  487. endmenu
  488. source "arch/x86_64/Kconfig.debug"
  489. source "security/Kconfig"
  490. source "crypto/Kconfig"
  491. source "lib/Kconfig"