kernel-parameters.txt 311 KB

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  1. ACPI ACPI support is enabled.
  2. AGP AGP (Accelerated Graphics Port) is enabled.
  3. ALSA ALSA sound support is enabled.
  4. APIC APIC support is enabled.
  5. APM Advanced Power Management support is enabled.
  6. APPARMOR AppArmor support is enabled.
  7. ARM ARM architecture is enabled.
  8. ARM64 ARM64 architecture is enabled.
  9. AX25 Appropriate AX.25 support is enabled.
  10. CLK Common clock infrastructure is enabled.
  11. CMA Contiguous Memory Area support is enabled.
  12. DRM Direct Rendering Management support is enabled.
  13. DYNAMIC_DEBUG Build in debug messages and enable them at runtime
  14. EARLY Parameter processed too early to be embedded in initrd.
  15. EDD BIOS Enhanced Disk Drive Services (EDD) is enabled
  16. EFI EFI Partitioning (GPT) is enabled
  17. EVM Extended Verification Module
  18. FB The frame buffer device is enabled.
  19. FTRACE Function tracing enabled.
  20. GCOV GCOV profiling is enabled.
  21. HIBERNATION HIBERNATION is enabled.
  22. HW Appropriate hardware is enabled.
  23. HYPER_V HYPERV support is enabled.
  24. IMA Integrity measurement architecture is enabled.
  25. IP_PNP IP DHCP, BOOTP, or RARP is enabled.
  26. IPV6 IPv6 support is enabled.
  27. ISAPNP ISA PnP code is enabled.
  28. ISDN Appropriate ISDN support is enabled.
  29. ISOL CPU Isolation is enabled.
  30. JOY Appropriate joystick support is enabled.
  31. KGDB Kernel debugger support is enabled.
  32. KVM Kernel Virtual Machine support is enabled.
  33. LIBATA Libata driver is enabled
  34. LOONGARCH LoongArch architecture is enabled.
  35. LOOP Loopback device support is enabled.
  36. LP Printer support is enabled.
  37. M68k M68k architecture is enabled.
  38. These options have more detailed description inside of
  39. Documentation/arch/m68k/kernel-options.rst.
  40. MDA MDA console support is enabled.
  41. MIPS MIPS architecture is enabled.
  42. MOUSE Appropriate mouse support is enabled.
  43. MSI Message Signaled Interrupts (PCI).
  44. MTD MTD (Memory Technology Device) support is enabled.
  45. NET Appropriate network support is enabled.
  46. NFS Appropriate NFS support is enabled.
  47. NUMA NUMA support is enabled.
  48. OF Devicetree is enabled.
  49. PARISC The PA-RISC architecture is enabled.
  50. PCI PCI bus support is enabled.
  51. PCIE PCI Express support is enabled.
  52. PCMCIA The PCMCIA subsystem is enabled.
  53. PNP Plug & Play support is enabled.
  54. PPC PowerPC architecture is enabled.
  55. PPT Parallel port support is enabled.
  56. PS2 Appropriate PS/2 support is enabled.
  57. PV_OPS A paravirtualized kernel is enabled.
  58. RAM RAM disk support is enabled.
  59. RDT Intel Resource Director Technology.
  60. RISCV RISCV architecture is enabled.
  61. S390 S390 architecture is enabled.
  62. SCSI Appropriate SCSI support is enabled.
  63. A lot of drivers have their options described inside
  64. the Documentation/scsi/ sub-directory.
  65. SDW SoundWire support is enabled.
  66. SECURITY Different security models are enabled.
  67. SELINUX SELinux support is enabled.
  68. SERIAL Serial support is enabled.
  69. SH SuperH architecture is enabled.
  70. SMP The kernel is an SMP kernel.
  71. SPARC Sparc architecture is enabled.
  72. SUSPEND System suspend states are enabled.
  73. SWSUSP Software suspend (hibernation) is enabled.
  74. TPM TPM drivers are enabled.
  75. UMS USB Mass Storage support is enabled.
  76. USB USB support is enabled.
  77. NVME NVMe support is enabled
  78. USBHID USB Human Interface Device support is enabled.
  79. V4L Video For Linux support is enabled.
  80. VGA The VGA console has been enabled.
  81. VMMIO Driver for memory mapped virtio devices is enabled.
  82. VT Virtual terminal support is enabled.
  83. WDT Watchdog support is enabled.
  84. X86-32 X86-32, aka i386 architecture is enabled.
  85. X86-64 X86-64 architecture is enabled.
  86. X86 Either 32-bit or 64-bit x86 (same as X86-32+X86-64)
  87. X86_UV SGI UV support is enabled.
  88. XEN Xen support is enabled
  89. XTENSA xtensa architecture is enabled.
  90. In addition, the following text indicates that the option
  91. BOOT Is a boot loader parameter.
  92. BUGS= Relates to possible processor bugs on the said processor.
  93. KNL Is a kernel start-up parameter.
  94. Kernel parameters
  95. accept_memory= [MM]
  96. Format: { eager | lazy }
  97. default: lazy
  98. By default, unaccepted memory is accepted lazily to
  99. avoid prolonged boot times. The lazy option will add
  100. some runtime overhead until all memory is eventually
  101. accepted. In most cases the overhead is negligible.
  102. For some workloads or for debugging purposes
  103. accept_memory=eager can be used to accept all memory
  104. at once during boot.
  105. acpi= [HW,ACPI,X86,ARM64,RISCV64,EARLY]
  106. Advanced Configuration and Power Interface
  107. Format: { force | on | off | strict | noirq | rsdt |
  108. copy_dsdt | nospcr }
  109. force -- enable ACPI if default was off
  110. on -- enable ACPI but allow fallback to DT [arm64,riscv64]
  111. off -- disable ACPI if default was on
  112. noirq -- do not use ACPI for IRQ routing
  113. strict -- Be less tolerant of platforms that are not
  114. strictly ACPI specification compliant.
  115. rsdt -- prefer RSDT over (default) XSDT
  116. copy_dsdt -- copy DSDT to memory
  117. nocmcff -- Disable firmware first mode for corrected
  118. errors. This disables parsing the HEST CMC error
  119. source to check if firmware has set the FF flag. This
  120. may result in duplicate corrected error reports.
  121. nospcr -- disable console in ACPI SPCR table as
  122. default _serial_ console on ARM64
  123. spcr -- enable console in ACPI SPCR table as
  124. default _serial_ console on x86
  125. For ARM64, ONLY "acpi=off", "acpi=on", "acpi=force" or
  126. "acpi=nospcr" are available
  127. For RISCV64, ONLY "acpi=off", "acpi=on" or "acpi=force"
  128. are available
  129. See also Documentation/power/runtime_pm.rst, pci=noacpi
  130. acpi_apic_instance= [ACPI,IOAPIC,EARLY]
  131. Format: <int>
  132. 2: use 2nd APIC table, if available
  133. 1,0: use 1st APIC table
  134. default: 0
  135. acpi_backlight= [HW,ACPI]
  136. { vendor | video | native | none }
  137. If set to vendor, prefer vendor-specific driver
  138. (e.g. thinkpad_acpi, sony_acpi, etc.) instead
  139. of the ACPI video.ko driver.
  140. If set to video, use the ACPI video.ko driver.
  141. If set to native, use the device's native backlight mode.
  142. If set to none, disable the ACPI backlight interface.
  143. acpi_force_32bit_fadt_addr [ACPI,EARLY]
  144. force FADT to use 32 bit addresses rather than the
  145. 64 bit X_* addresses. Some firmware have broken 64
  146. bit addresses for force ACPI ignore these and use
  147. the older legacy 32 bit addresses.
  148. acpica_no_return_repair [HW, ACPI]
  149. Disable AML predefined validation mechanism
  150. This mechanism can repair the evaluation result to make
  151. the return objects more ACPI specification compliant.
  152. This option is useful for developers to identify the
  153. root cause of an AML interpreter issue when the issue
  154. has something to do with the repair mechanism.
  155. acpi.debug_layer= [HW,ACPI,ACPI_DEBUG]
  156. acpi.debug_level= [HW,ACPI,ACPI_DEBUG]
  157. Format: <int>
  158. CONFIG_ACPI_DEBUG must be enabled to produce any ACPI
  159. debug output. Bits in debug_layer correspond to a
  160. _COMPONENT in an ACPI source file, e.g.,
  161. #define _COMPONENT ACPI_EVENTS
  162. Bits in debug_level correspond to a level in
  163. ACPI_DEBUG_PRINT statements, e.g.,
  164. ACPI_DEBUG_PRINT((ACPI_DB_INFO, ...
  165. The debug_level mask defaults to "info". See
  166. Documentation/firmware-guide/acpi/debug.rst for more information about
  167. debug layers and levels.
  168. Enable processor driver info messages:
  169. acpi.debug_layer=0x20000000
  170. Enable AML "Debug" output, i.e., stores to the Debug
  171. object while interpreting AML:
  172. acpi.debug_layer=0xffffffff acpi.debug_level=0x2
  173. Enable all messages related to ACPI hardware:
  174. acpi.debug_layer=0x2 acpi.debug_level=0xffffffff
  175. Some values produce so much output that the system is
  176. unusable. The "log_buf_len" parameter may be useful
  177. if you need to capture more output.
  178. acpi_enforce_resources= [ACPI]
  179. { strict | lax | no }
  180. Check for resource conflicts between native drivers
  181. and ACPI OperationRegions (SystemIO and SystemMemory
  182. only). IO ports and memory declared in ACPI might be
  183. used by the ACPI subsystem in arbitrary AML code and
  184. can interfere with legacy drivers.
  185. strict (default): access to resources claimed by ACPI
  186. is denied; legacy drivers trying to access reserved
  187. resources will fail to bind to device using them.
  188. lax: access to resources claimed by ACPI is allowed;
  189. legacy drivers trying to access reserved resources
  190. will bind successfully but a warning message is logged.
  191. no: ACPI OperationRegions are not marked as reserved,
  192. no further checks are performed.
  193. acpi_force_table_verification [HW,ACPI,EARLY]
  194. Enable table checksum verification during early stage.
  195. By default, this is disabled due to x86 early mapping
  196. size limitation.
  197. acpi_irq_balance [HW,ACPI]
  198. ACPI will balance active IRQs
  199. default in APIC mode
  200. acpi_irq_nobalance [HW,ACPI]
  201. ACPI will not move active IRQs (default)
  202. default in PIC mode
  203. acpi_irq_isa= [HW,ACPI] If irq_balance, mark listed IRQs used by ISA
  204. Format: <irq>,<irq>...
  205. acpi_irq_pci= [HW,ACPI] If irq_balance, clear listed IRQs for
  206. use by PCI
  207. Format: <irq>,<irq>...
  208. acpi_mask_gpe= [HW,ACPI]
  209. Due to the existence of _Lxx/_Exx, some GPEs triggered
  210. by unsupported hardware/firmware features can result in
  211. GPE floodings that cannot be automatically disabled by
  212. the GPE dispatcher.
  213. This facility can be used to prevent such uncontrolled
  214. GPE floodings.
  215. Format: <byte> or <bitmap-list>
  216. acpi_no_auto_serialize [HW,ACPI]
  217. Disable auto-serialization of AML methods
  218. AML control methods that contain the opcodes to create
  219. named objects will be marked as "Serialized" by the
  220. auto-serialization feature.
  221. This feature is enabled by default.
  222. This option allows to turn off the feature.
  223. acpi_no_memhotplug [ACPI] Disable memory hotplug. Useful for kdump
  224. kernels.
  225. acpi_no_static_ssdt [HW,ACPI,EARLY]
  226. Disable installation of static SSDTs at early boot time
  227. By default, SSDTs contained in the RSDT/XSDT will be
  228. installed automatically and they will appear under
  229. /sys/firmware/acpi/tables.
  230. This option turns off this feature.
  231. Note that specifying this option does not affect
  232. dynamic table installation which will install SSDT
  233. tables to /sys/firmware/acpi/tables/dynamic.
  234. acpi_no_watchdog [HW,ACPI,WDT]
  235. Ignore the ACPI-based watchdog interface (WDAT) and let
  236. a native driver control the watchdog device instead.
  237. acpi_rsdp= [ACPI,EFI,KEXEC,EARLY]
  238. Pass the RSDP address to the kernel, mostly used
  239. on machines running EFI runtime service to boot the
  240. second kernel for kdump.
  241. acpi_os_name= [HW,ACPI] Tell ACPI BIOS the name of the OS
  242. Format: To spoof as Windows 98: ="Microsoft Windows"
  243. acpi_rev_override [ACPI] Override the _REV object to return 5 (instead
  244. of 2 which is mandated by ACPI 6) as the supported ACPI
  245. specification revision (when using this switch, it may
  246. be necessary to carry out a cold reboot _twice_ in a
  247. row to make it take effect on the platform firmware).
  248. acpi_osi= [HW,ACPI] Modify list of supported OS interface strings
  249. acpi_osi="string1" # add string1
  250. acpi_osi="!string2" # remove string2
  251. acpi_osi=!* # remove all strings
  252. acpi_osi=! # disable all built-in OS vendor
  253. strings
  254. acpi_osi=!! # enable all built-in OS vendor
  255. strings
  256. acpi_osi= # disable all strings
  257. 'acpi_osi=!' can be used in combination with single or
  258. multiple 'acpi_osi="string1"' to support specific OS
  259. vendor string(s). Note that such command can only
  260. affect the default state of the OS vendor strings, thus
  261. it cannot affect the default state of the feature group
  262. strings and the current state of the OS vendor strings,
  263. specifying it multiple times through kernel command line
  264. is meaningless. This command is useful when one do not
  265. care about the state of the feature group strings which
  266. should be controlled by the OSPM.
  267. Examples:
  268. 1. 'acpi_osi=! acpi_osi="Windows 2000"' is equivalent
  269. to 'acpi_osi="Windows 2000" acpi_osi=!', they all
  270. can make '_OSI("Windows 2000")' TRUE.
  271. 'acpi_osi=' cannot be used in combination with other
  272. 'acpi_osi=' command lines, the _OSI method will not
  273. exist in the ACPI namespace. NOTE that such command can
  274. only affect the _OSI support state, thus specifying it
  275. multiple times through kernel command line is also
  276. meaningless.
  277. Examples:
  278. 1. 'acpi_osi=' can make 'CondRefOf(_OSI, Local1)'
  279. FALSE.
  280. 'acpi_osi=!*' can be used in combination with single or
  281. multiple 'acpi_osi="string1"' to support specific
  282. string(s). Note that such command can affect the
  283. current state of both the OS vendor strings and the
  284. feature group strings, thus specifying it multiple times
  285. through kernel command line is meaningful. But it may
  286. still not able to affect the final state of a string if
  287. there are quirks related to this string. This command
  288. is useful when one want to control the state of the
  289. feature group strings to debug BIOS issues related to
  290. the OSPM features.
  291. Examples:
  292. 1. 'acpi_osi="Module Device" acpi_osi=!*' can make
  293. '_OSI("Module Device")' FALSE.
  294. 2. 'acpi_osi=!* acpi_osi="Module Device"' can make
  295. '_OSI("Module Device")' TRUE.
  296. 3. 'acpi_osi=! acpi_osi=!* acpi_osi="Windows 2000"' is
  297. equivalent to
  298. 'acpi_osi=!* acpi_osi=! acpi_osi="Windows 2000"'
  299. and
  300. 'acpi_osi=!* acpi_osi="Windows 2000" acpi_osi=!',
  301. they all will make '_OSI("Windows 2000")' TRUE.
  302. acpi_pm_good [X86]
  303. Override the pmtimer bug detection: force the kernel
  304. to assume that this machine's pmtimer latches its value
  305. and always returns good values.
  306. acpi_sci= [HW,ACPI,EARLY] ACPI System Control Interrupt trigger mode
  307. Format: { level | edge | high | low }
  308. acpi_skip_timer_override [HW,ACPI,EARLY]
  309. Recognize and ignore IRQ0/pin2 Interrupt Override.
  310. For broken nForce2 BIOS resulting in XT-PIC timer.
  311. acpi_sleep= [HW,ACPI] Sleep options
  312. Format: { s3_bios, s3_mode, s3_beep, s4_hwsig,
  313. s4_nohwsig, old_ordering, nonvs,
  314. sci_force_enable, nobl }
  315. See Documentation/power/video.rst for information on
  316. s3_bios and s3_mode.
  317. s3_beep is for debugging; it makes the PC's speaker beep
  318. as soon as the kernel's real-mode entry point is called.
  319. s4_hwsig causes the kernel to check the ACPI hardware
  320. signature during resume from hibernation, and gracefully
  321. refuse to resume if it has changed. This complies with
  322. the ACPI specification but not with reality, since
  323. Windows does not do this and many laptops do change it
  324. on docking. So the default behaviour is to allow resume
  325. and simply warn when the signature changes, unless the
  326. s4_hwsig option is enabled.
  327. s4_nohwsig prevents ACPI hardware signature from being
  328. used (or even warned about) during resume.
  329. old_ordering causes the ACPI 1.0 ordering of the _PTS
  330. control method, with respect to putting devices into
  331. low power states, to be enforced (the ACPI 2.0 ordering
  332. of _PTS is used by default).
  333. nonvs prevents the kernel from saving/restoring the
  334. ACPI NVS memory during suspend/hibernation and resume.
  335. sci_force_enable causes the kernel to set SCI_EN directly
  336. on resume from S1/S3 (which is against the ACPI spec,
  337. but some broken systems don't work without it).
  338. nobl causes the internal blacklist of systems known to
  339. behave incorrectly in some ways with respect to system
  340. suspend and resume to be ignored (use wisely).
  341. acpi_use_timer_override [HW,ACPI,EARLY]
  342. Use timer override. For some broken Nvidia NF5 boards
  343. that require a timer override, but don't have HPET
  344. add_efi_memmap [EFI,X86,EARLY] Include EFI memory map in
  345. kernel's map of available physical RAM.
  346. agp= [AGP]
  347. { off | try_unsupported }
  348. off: disable AGP support
  349. try_unsupported: try to drive unsupported chipsets
  350. (may crash computer or cause data corruption)
  351. ALSA [HW,ALSA]
  352. See Documentation/sound/alsa-configuration.rst
  353. alignment= [KNL,ARM]
  354. Allow the default userspace alignment fault handler
  355. behaviour to be specified. Bit 0 enables warnings,
  356. bit 1 enables fixups, and bit 2 sends a segfault.
  357. align_va_addr= [X86-64]
  358. Align virtual addresses by clearing slice [14:12] when
  359. allocating a VMA at process creation time. This option
  360. gives you up to 3% performance improvement on AMD F15h
  361. machines (where it is enabled by default) for a
  362. CPU-intensive style benchmark, and it can vary highly in
  363. a microbenchmark depending on workload and compiler.
  364. 32: only for 32-bit processes
  365. 64: only for 64-bit processes
  366. on: enable for both 32- and 64-bit processes
  367. off: disable for both 32- and 64-bit processes
  368. alloc_snapshot [FTRACE]
  369. Allocate the ftrace snapshot buffer on boot up when the
  370. main buffer is allocated. This is handy if debugging
  371. and you need to use tracing_snapshot() on boot up, and
  372. do not want to use tracing_snapshot_alloc() as it needs
  373. to be done where GFP_KERNEL allocations are allowed.
  374. allow_mismatched_32bit_el0 [ARM64,EARLY]
  375. Allow execve() of 32-bit applications and setting of the
  376. PER_LINUX32 personality on systems where only a strict
  377. subset of the CPUs support 32-bit EL0. When this
  378. parameter is present, the set of CPUs supporting 32-bit
  379. EL0 is indicated by /sys/devices/system/cpu/aarch32_el0
  380. and hot-unplug operations may be restricted.
  381. See Documentation/arch/arm64/asymmetric-32bit.rst for more
  382. information.
  383. amd_iommu= [HW,X86-64]
  384. Pass parameters to the AMD IOMMU driver in the system.
  385. Possible values are:
  386. fullflush - Deprecated, equivalent to iommu.strict=1
  387. off - do not initialize any AMD IOMMU found in
  388. the system
  389. force_isolation - Force device isolation for all
  390. devices. The IOMMU driver is not
  391. allowed anymore to lift isolation
  392. requirements as needed. This option
  393. does not override iommu=pt
  394. force_enable - Force enable the IOMMU on platforms known
  395. to be buggy with IOMMU enabled. Use this
  396. option with care.
  397. pgtbl_v1 - Use v1 page table for DMA-API (Default).
  398. pgtbl_v2 - Use v2 page table for DMA-API.
  399. irtcachedis - Disable Interrupt Remapping Table (IRT) caching.
  400. nohugepages - Limit page-sizes used for v1 page-tables
  401. to 4 KiB.
  402. v2_pgsizes_only - Limit page-sizes used for v1 page-tables
  403. to 4KiB/2Mib/1GiB.
  404. amd_iommu_dump= [HW,X86-64]
  405. Enable AMD IOMMU driver option to dump the ACPI table
  406. for AMD IOMMU. With this option enabled, AMD IOMMU
  407. driver will print ACPI tables for AMD IOMMU during
  408. IOMMU initialization.
  409. amd_iommu_intr= [HW,X86-64]
  410. Specifies one of the following AMD IOMMU interrupt
  411. remapping modes:
  412. legacy - Use legacy interrupt remapping mode.
  413. vapic - Use virtual APIC mode, which allows IOMMU
  414. to inject interrupts directly into guest.
  415. This mode requires kvm-amd.avic=1.
  416. (Default when IOMMU HW support is present.)
  417. amd_pstate= [X86,EARLY]
  418. disable
  419. Do not enable amd_pstate as the default
  420. scaling driver for the supported processors
  421. passive
  422. Use amd_pstate with passive mode as a scaling driver.
  423. In this mode autonomous selection is disabled.
  424. Driver requests a desired performance level and platform
  425. tries to match the same performance level if it is
  426. satisfied by guaranteed performance level.
  427. active
  428. Use amd_pstate_epp driver instance as the scaling driver,
  429. driver provides a hint to the hardware if software wants
  430. to bias toward performance (0x0) or energy efficiency (0xff)
  431. to the CPPC firmware. then CPPC power algorithm will
  432. calculate the runtime workload and adjust the realtime cores
  433. frequency.
  434. guided
  435. Activate guided autonomous mode. Driver requests minimum and
  436. maximum performance level and the platform autonomously
  437. selects a performance level in this range and appropriate
  438. to the current workload.
  439. amd_prefcore=
  440. [X86]
  441. disable
  442. Disable amd-pstate preferred core.
  443. amijoy.map= [HW,JOY] Amiga joystick support
  444. Map of devices attached to JOY0DAT and JOY1DAT
  445. Format: <a>,<b>
  446. See also Documentation/input/joydev/joystick.rst
  447. analog.map= [HW,JOY] Analog joystick and gamepad support
  448. Specifies type or capabilities of an analog joystick
  449. connected to one of 16 gameports
  450. Format: <type1>,<type2>,..<type16>
  451. apc= [HW,SPARC]
  452. Power management functions (SPARCstation-4/5 + deriv.)
  453. Format: noidle
  454. Disable APC CPU standby support. SPARCstation-Fox does
  455. not play well with APC CPU idle - disable it if you have
  456. APC and your system crashes randomly.
  457. apic [APIC,X86-64] Use IO-APIC. Default.
  458. apic= [APIC,X86,EARLY] Advanced Programmable Interrupt Controller
  459. Change the output verbosity while booting
  460. Format: { quiet (default) | verbose | debug }
  461. Change the amount of debugging information output
  462. when initialising the APIC and IO-APIC components.
  463. apic_extnmi= [APIC,X86,EARLY] External NMI delivery setting
  464. Format: { bsp (default) | all | none }
  465. bsp: External NMI is delivered only to CPU 0
  466. all: External NMIs are broadcast to all CPUs as a
  467. backup of CPU 0
  468. none: External NMI is masked for all CPUs. This is
  469. useful so that a dump capture kernel won't be
  470. shot down by NMI
  471. apicpmtimer Do APIC timer calibration using the pmtimer. Implies
  472. apicmaintimer. Useful when your PIT timer is totally
  473. broken.
  474. autoconf= [IPV6]
  475. See Documentation/networking/ipv6.rst.
  476. apm= [APM] Advanced Power Management
  477. See header of arch/x86/kernel/apm_32.c.
  478. apparmor= [APPARMOR] Disable or enable AppArmor at boot time
  479. Format: { "0" | "1" }
  480. See security/apparmor/Kconfig help text
  481. 0 -- disable.
  482. 1 -- enable.
  483. Default value is set via kernel config option.
  484. arcrimi= [HW,NET] ARCnet - "RIM I" (entirely mem-mapped) cards
  485. Format: <io>,<irq>,<nodeID>
  486. arm64.no32bit_el0 [ARM64] Unconditionally disable the execution of
  487. 32 bit applications.
  488. arm64.nobti [ARM64] Unconditionally disable Branch Target
  489. Identification support
  490. arm64.nogcs [ARM64] Unconditionally disable Guarded Control Stack
  491. support
  492. arm64.nomops [ARM64] Unconditionally disable Memory Copy and Memory
  493. Set instructions support
  494. arm64.nompam [ARM64] Unconditionally disable Memory Partitioning And
  495. Monitoring support
  496. arm64.nomte [ARM64] Unconditionally disable Memory Tagging Extension
  497. support
  498. arm64.nopauth [ARM64] Unconditionally disable Pointer Authentication
  499. support
  500. arm64.nosme [ARM64] Unconditionally disable Scalable Matrix
  501. Extension support
  502. arm64.nosve [ARM64] Unconditionally disable Scalable Vector
  503. Extension support
  504. ataflop= [HW,M68k]
  505. atarimouse= [HW,MOUSE] Atari Mouse
  506. atkbd.extra= [HW] Enable extra LEDs and keys on IBM RapidAccess,
  507. EzKey and similar keyboards
  508. atkbd.reset= [HW] Reset keyboard during initialization
  509. atkbd.set= [HW] Select keyboard code set
  510. Format: <int> (2 = AT (default), 3 = PS/2)
  511. atkbd.scroll= [HW] Enable scroll wheel on MS Office and similar
  512. keyboards
  513. atkbd.softraw= [HW] Choose between synthetic and real raw mode
  514. Format: <bool> (0 = real, 1 = synthetic (default))
  515. atkbd.softrepeat= [HW]
  516. Use software keyboard repeat
  517. audit= [KNL] Enable the audit sub-system
  518. Format: { "0" | "1" | "off" | "on" }
  519. 0 | off - kernel audit is disabled and can not be
  520. enabled until the next reboot
  521. unset - kernel audit is initialized but disabled and
  522. will be fully enabled by the userspace auditd.
  523. 1 | on - kernel audit is initialized and partially
  524. enabled, storing at most audit_backlog_limit
  525. messages in RAM until it is fully enabled by the
  526. userspace auditd.
  527. Default: unset
  528. audit_backlog_limit= [KNL] Set the audit queue size limit.
  529. Format: <int> (must be >=0)
  530. Default: 64
  531. bau= [X86_UV] Enable the BAU on SGI UV. The default
  532. behavior is to disable the BAU (i.e. bau=0).
  533. Format: { "0" | "1" }
  534. 0 - Disable the BAU.
  535. 1 - Enable the BAU.
  536. unset - Disable the BAU.
  537. baycom_epp= [HW,AX25]
  538. Format: <io>,<mode>
  539. baycom_par= [HW,AX25] BayCom Parallel Port AX.25 Modem
  540. Format: <io>,<mode>
  541. See header of drivers/net/hamradio/baycom_par.c.
  542. baycom_ser_fdx= [HW,AX25]
  543. BayCom Serial Port AX.25 Modem (Full Duplex Mode)
  544. Format: <io>,<irq>,<mode>[,<baud>]
  545. See header of drivers/net/hamradio/baycom_ser_fdx.c.
  546. baycom_ser_hdx= [HW,AX25]
  547. BayCom Serial Port AX.25 Modem (Half Duplex Mode)
  548. Format: <io>,<irq>,<mode>
  549. See header of drivers/net/hamradio/baycom_ser_hdx.c.
  550. bdev_allow_write_mounted=
  551. Format: <bool>
  552. Control the ability to open a mounted block device
  553. for writing, i.e., allow / disallow writes that bypass
  554. the FS. This was implemented as a means to prevent
  555. fuzzers from crashing the kernel by overwriting the
  556. metadata underneath a mounted FS without its awareness.
  557. This also prevents destructive formatting of mounted
  558. filesystems by naive storage tooling that don't use
  559. O_EXCL. Default is Y and can be changed through the
  560. Kconfig option CONFIG_BLK_DEV_WRITE_MOUNTED.
  561. bert_disable [ACPI]
  562. Disable BERT OS support on buggy BIOSes.
  563. bgrt_disable [ACPI,X86,EARLY]
  564. Disable BGRT to avoid flickering OEM logo.
  565. blkdevparts= Manual partition parsing of block device(s) for
  566. embedded devices based on command line input.
  567. See Documentation/block/cmdline-partition.rst
  568. boot_delay= [KNL,EARLY]
  569. Milliseconds to delay each printk during boot.
  570. Only works if CONFIG_BOOT_PRINTK_DELAY is enabled,
  571. and you may also have to specify "lpj=". Boot_delay
  572. values larger than 10 seconds (10000) are assumed
  573. erroneous and ignored.
  574. Format: integer
  575. bootconfig [KNL,EARLY]
  576. Extended command line options can be added to an initrd
  577. and this will cause the kernel to look for it.
  578. See Documentation/admin-guide/bootconfig.rst
  579. bttv.card= [HW,V4L] bttv (bt848 + bt878 based grabber cards)
  580. bttv.radio= Most important insmod options are available as
  581. kernel args too.
  582. bttv.pll= See Documentation/admin-guide/media/bttv.rst
  583. bttv.tuner=
  584. bulk_remove=off [PPC] This parameter disables the use of the pSeries
  585. firmware feature for flushing multiple hpte entries
  586. at a time.
  587. c101= [NET] Moxa C101 synchronous serial card
  588. cachesize= [BUGS=X86-32] Override level 2 CPU cache size detection.
  589. Sometimes CPU hardware bugs make them report the cache
  590. size incorrectly. The kernel will attempt work arounds
  591. to fix known problems, but for some CPUs it is not
  592. possible to determine what the correct size should be.
  593. This option provides an override for these situations.
  594. carrier_timeout=
  595. [NET] Specifies amount of time (in seconds) that
  596. the kernel should wait for a network carrier. By default
  597. it waits 120 seconds.
  598. ca_keys= [KEYS] This parameter identifies a specific key(s) on
  599. the system trusted keyring to be used for certificate
  600. trust validation.
  601. format: { id:<keyid> | builtin }
  602. cca= [MIPS,EARLY] Override the kernel pages' cache coherency
  603. algorithm. Accepted values range from 0 to 7
  604. inclusive. See arch/mips/include/asm/pgtable-bits.h
  605. for platform specific values (SB1, Loongson3 and
  606. others).
  607. ccw_timeout_log [S390]
  608. See Documentation/arch/s390/common_io.rst for details.
  609. cfi= [X86-64] Set Control Flow Integrity checking features
  610. when CONFIG_FINEIBT is enabled.
  611. Format: feature[,feature...]
  612. Default: auto
  613. auto: Use FineIBT if IBT available, otherwise kCFI.
  614. Under FineIBT, enable "paranoid" mode when
  615. FRED is not available.
  616. off: Turn off CFI checking.
  617. kcfi: Use kCFI (disable FineIBT).
  618. fineibt: Use FineIBT (even if IBT not available).
  619. norand: Do not re-randomize CFI hashes.
  620. paranoid: Add caller hash checking under FineIBT.
  621. bhi: Enable register poisoning to stop speculation
  622. across FineIBT. (Disabled by default.)
  623. warn: Do not enforce CFI checking: warn only.
  624. debug: Report CFI initialization details.
  625. cgroup_disable= [KNL] Disable a particular controller or optional feature
  626. Format: {name of the controller(s) or feature(s) to disable}
  627. The effects of cgroup_disable=foo are:
  628. - foo isn't auto-mounted if you mount all cgroups in
  629. a single hierarchy
  630. - foo isn't visible as an individually mountable
  631. subsystem
  632. - if foo is an optional feature then the feature is
  633. disabled and corresponding cgroup files are not
  634. created
  635. {Currently only "memory" controller deal with this and
  636. cut the overhead, others just disable the usage. So
  637. only cgroup_disable=memory is actually worthy}
  638. Specifying "pressure" disables per-cgroup pressure
  639. stall information accounting feature
  640. cgroup_no_v1= [KNL] Disable cgroup controllers and named hierarchies in v1
  641. Format: { { controller | "all" | "named" }
  642. [,{ controller | "all" | "named" }...] }
  643. Like cgroup_disable, but only applies to cgroup v1;
  644. the blacklisted controllers remain available in cgroup2.
  645. "all" blacklists all controllers and "named" disables
  646. named mounts. Specifying both "all" and "named" disables
  647. all v1 hierarchies.
  648. cgroup_v1_proc= [KNL] Show also missing controllers in /proc/cgroups
  649. Format: { "true" | "false" }
  650. /proc/cgroups lists only v1 controllers by default.
  651. This compatibility option enables listing also v2
  652. controllers (whose v1 code is not compiled!), so that
  653. semi-legacy software can check this file to decide
  654. about usage of v2 (sic) controllers.
  655. cgroup_favordynmods= [KNL] Enable or Disable favordynmods.
  656. Format: { "true" | "false" }
  657. Defaults to the value of CONFIG_CGROUP_FAVOR_DYNMODS.
  658. cgroup.memory= [KNL] Pass options to the cgroup memory controller.
  659. Format: <string>
  660. nosocket -- Disable socket memory accounting.
  661. nokmem -- Disable kernel memory accounting.
  662. nobpf -- Disable BPF memory accounting.
  663. check_pages= [MM,EARLY] Enable sanity checking of pages after
  664. allocations / before freeing. This adds checks to catch
  665. double-frees, use-after-frees, and other sources of
  666. page corruption by inspecting page internals (flags,
  667. mapcount/refcount, memcg_data, etc.).
  668. Format: { "0" | "1" }
  669. Default: 0 (1 if CONFIG_DEBUG_VM is set)
  670. checkreqprot= [SELINUX] Set initial checkreqprot flag value.
  671. Format: { "0" | "1" }
  672. See security/selinux/Kconfig help text.
  673. 0 -- check protection applied by kernel (includes
  674. any implied execute protection).
  675. 1 -- check protection requested by application.
  676. Default value is set via a kernel config option.
  677. Value can be changed at runtime via
  678. /sys/fs/selinux/checkreqprot.
  679. Setting checkreqprot to 1 is deprecated.
  680. cio_ignore= [S390]
  681. See Documentation/arch/s390/common_io.rst for details.
  682. clearcpuid=X[,X...] [X86]
  683. Disable CPUID feature X for the kernel. See
  684. arch/x86/include/asm/cpufeatures.h for the valid bit
  685. numbers X. Note the Linux-specific bits are not necessarily
  686. stable over kernel options, but the vendor-specific
  687. ones should be.
  688. X can also be a string as appearing in the flags: line
  689. in /proc/cpuinfo which does not have the above
  690. instability issue. However, not all features have names
  691. in /proc/cpuinfo.
  692. Note that using this option will taint your kernel.
  693. Also note that user programs calling CPUID directly
  694. or using the feature without checking anything
  695. will still see it. This just prevents it from
  696. being used by the kernel or shown in /proc/cpuinfo.
  697. Also note the kernel might malfunction if you disable
  698. some critical bits.
  699. clk_ignore_unused
  700. [CLK]
  701. Prevents the clock framework from automatically gating
  702. clocks that have not been explicitly enabled by a Linux
  703. device driver but are enabled in hardware at reset or
  704. by the bootloader/firmware. Note that this does not
  705. force such clocks to be always-on nor does it reserve
  706. those clocks in any way. This parameter is useful for
  707. debug and development, but should not be needed on a
  708. platform with proper driver support. For more
  709. information, see Documentation/driver-api/clk.rst.
  710. clock= [BUGS=X86-32, HW] gettimeofday clocksource override.
  711. [Deprecated]
  712. Forces specified clocksource (if available) to be used
  713. when calculating gettimeofday(). If specified
  714. clocksource is not available, it defaults to PIT.
  715. Format: { pit | tsc | cyclone | pmtmr }
  716. clocksource= Override the default clocksource
  717. Format: <string>
  718. Override the default clocksource and use the clocksource
  719. with the name specified.
  720. Some clocksource names to choose from, depending on
  721. the platform:
  722. [all] jiffies (this is the base, fallback clocksource)
  723. [ACPI] acpi_pm
  724. [ARM] imx_timer1,OSTS,netx_timer,mpu_timer2,
  725. pxa_timer,timer3,32k_counter,timer0_1
  726. [X86-32] pit,hpet,tsc;
  727. scx200_hrt on Geode; cyclone on IBM x440
  728. [MIPS] MIPS
  729. [PARISC] cr16
  730. [S390] tod
  731. [SH] SuperH
  732. [SPARC64] tick
  733. [X86-64] hpet,tsc
  734. clocksource.arm_arch_timer.evtstrm=
  735. [ARM,ARM64,EARLY]
  736. Format: <bool>
  737. Enable/disable the eventstream feature of the ARM
  738. architected timer so that code using WFE-based polling
  739. loops can be debugged more effectively on production
  740. systems.
  741. clocksource.verify_n_cpus= [KNL]
  742. Limit the number of CPUs checked for clocksources
  743. marked with CLOCK_SOURCE_VERIFY_PERCPU that
  744. are marked unstable due to excessive skew.
  745. A negative value says to check all CPUs, while
  746. zero says not to check any. Values larger than
  747. nr_cpu_ids are silently truncated to nr_cpu_ids.
  748. The actual CPUs are chosen randomly, with
  749. no replacement if the same CPU is chosen twice.
  750. clocksource-wdtest.holdoff= [KNL]
  751. Set the time in seconds that the clocksource
  752. watchdog test waits before commencing its tests.
  753. Defaults to zero when built as a module and to
  754. 10 seconds when built into the kernel.
  755. cma=nn[MG]@[start[MG][-end[MG]]]
  756. [KNL,CMA,EARLY]
  757. Sets the size of kernel global memory area for
  758. contiguous memory allocations and optionally the
  759. placement constraint by the physical address range of
  760. memory allocations. A value of 0 disables CMA
  761. altogether. For more information, see
  762. kernel/dma/contiguous.c
  763. cma_pernuma=nn[MG]
  764. [KNL,CMA,EARLY]
  765. Sets the size of kernel per-numa memory area for
  766. contiguous memory allocations. A value of 0 disables
  767. per-numa CMA altogether. And If this option is not
  768. specified, the default value is 0.
  769. With per-numa CMA enabled, DMA users on node nid will
  770. first try to allocate buffer from the pernuma area
  771. which is located in node nid, if the allocation fails,
  772. they will fallback to the global default memory area.
  773. numa_cma=<node>:nn[MG][,<node>:nn[MG]]
  774. [KNL,CMA,EARLY]
  775. Sets the size of kernel numa memory area for
  776. contiguous memory allocations. It will reserve CMA
  777. area for the specified node.
  778. With numa CMA enabled, DMA users on node nid will
  779. first try to allocate buffer from the numa area
  780. which is located in node nid, if the allocation fails,
  781. they will fallback to the global default memory area.
  782. cmo_free_hint= [PPC] Format: { yes | no }
  783. Specify whether pages are marked as being inactive
  784. when they are freed. This is used in CMO environments
  785. to determine OS memory pressure for page stealing by
  786. a hypervisor.
  787. Default: yes
  788. coherent_pool=nn[KMG] [ARM,KNL,EARLY]
  789. Sets the size of memory pool for coherent, atomic dma
  790. allocations, by default set to 256K.
  791. com20020= [HW,NET] ARCnet - COM20020 chipset
  792. Format:
  793. <io>[,<irq>[,<nodeID>[,<backplane>[,<ckp>[,<timeout>]]]]]
  794. com90io= [HW,NET] ARCnet - COM90xx chipset (IO-mapped buffers)
  795. Format: <io>[,<irq>]
  796. com90xx= [HW,NET]
  797. ARCnet - COM90xx chipset (memory-mapped buffers)
  798. Format: <io>[,<irq>[,<memstart>]]
  799. condev= [HW,S390] console device
  800. conmode=
  801. con3215_drop= [S390,EARLY] 3215 console drop mode.
  802. Format: y|n|Y|N|1|0
  803. When set to true, drop data on the 3215 console when
  804. the console buffer is full. In this case the
  805. operator using a 3270 terminal emulator (for example
  806. x3270) does not have to enter the clear key for the
  807. console output to advance and the kernel to continue.
  808. This leads to a much faster boot time when a 3270
  809. terminal emulator is active. If no 3270 terminal
  810. emulator is used, this parameter has no effect.
  811. console= [KNL] Output console device and options.
  812. tty<n> Use the virtual console device <n>.
  813. ttyS<n>[,options]
  814. ttyUSB0[,options]
  815. Use the specified serial port. The options are of
  816. the form "bbbbpnf", where "bbbb" is the baud rate,
  817. "p" is parity ("n", "o", or "e"), "n" is number of
  818. bits, and "f" is flow control ("r" for RTS or
  819. omit it). Default is "9600n8".
  820. See Documentation/admin-guide/serial-console.rst for more
  821. information. See
  822. Documentation/networking/netconsole.rst for an
  823. alternative.
  824. <DEVNAME>:<n>.<n>[,options]
  825. Use the specified serial port on the serial core bus.
  826. The addressing uses DEVNAME of the physical serial port
  827. device, followed by the serial core controller instance,
  828. and the serial port instance. The options are the same
  829. as documented for the ttyS addressing above.
  830. The mapping of the serial ports to the tty instances
  831. can be viewed with:
  832. $ ls -d /sys/bus/serial-base/devices/*:*.*/tty/*
  833. /sys/bus/serial-base/devices/00:04:0.0/tty/ttyS0
  834. In the above example, the console can be addressed with
  835. console=00:04:0.0. Note that a console addressed this
  836. way will only get added when the related device driver
  837. is ready. The use of an earlycon parameter in addition to
  838. the console may be desired for console output early on.
  839. uart[8250],io,<addr>[,options]
  840. uart[8250],mmio,<addr>[,options]
  841. uart[8250],mmio16,<addr>[,options]
  842. uart[8250],mmio32,<addr>[,options]
  843. uart[8250],0x<addr>[,options]
  844. Start an early, polled-mode console on the 8250/16550
  845. UART at the specified I/O port or MMIO address,
  846. switching to the matching ttyS device later.
  847. MMIO inter-register address stride is either 8-bit
  848. (mmio), 16-bit (mmio16), or 32-bit (mmio32).
  849. If none of [io|mmio|mmio16|mmio32], <addr> is assumed
  850. to be equivalent to 'mmio'. 'options' are specified in
  851. the same format described for ttyS above; if unspecified,
  852. the h/w is not re-initialized.
  853. hvc<n> Use the hypervisor console device <n>. This is for
  854. both Xen and PowerPC hypervisors.
  855. { null | "" }
  856. Use to disable console output, i.e., to have kernel
  857. console messages discarded.
  858. This must be the only console= parameter used on the
  859. kernel command line.
  860. If the device connected to the port is not a TTY but a braille
  861. device, prepend "brl," before the device type, for instance
  862. console=brl,ttyS0
  863. For now, only VisioBraille is supported.
  864. console_msg_format=
  865. [KNL] Change console messages format
  866. default
  867. By default we print messages on consoles in
  868. "[time stamp] text\n" format (time stamp may not be
  869. printed, depending on CONFIG_PRINTK_TIME or
  870. `printk_time' param).
  871. syslog
  872. Switch to syslog format: "<%u>[time stamp] text\n"
  873. IOW, each message will have a facility and loglevel
  874. prefix. The format is similar to one used by syslog()
  875. syscall, or to executing "dmesg -S --raw" or to reading
  876. from /proc/kmsg.
  877. consoleblank= [KNL] The console blank (screen saver) timeout in
  878. seconds. A value of 0 disables the blank timer.
  879. Defaults to 0.
  880. coredump_filter=
  881. [KNL] Change the default value for
  882. /proc/<pid>/coredump_filter.
  883. See also Documentation/filesystems/proc.rst.
  884. coresight_cpu_debug.enable
  885. [ARM,ARM64]
  886. Format: <bool>
  887. Enable/disable the CPU sampling based debugging.
  888. 0: default value, disable debugging
  889. 1: enable debugging at boot time
  890. cpcihp_generic= [HW,PCI] Generic port I/O CompactPCI driver
  891. Format:
  892. <first_slot>,<last_slot>,<port>,<enum_bit>[,<debug>]
  893. cpuidle.off=1 [CPU_IDLE]
  894. disable the cpuidle sub-system
  895. cpuidle.governor=
  896. [CPU_IDLE] Name of the cpuidle governor to use.
  897. cpufreq.off=1 [CPU_FREQ]
  898. disable the cpufreq sub-system
  899. cpufreq.default_governor=
  900. [CPU_FREQ] Name of the default cpufreq governor or
  901. policy to use. This governor must be registered in the
  902. kernel before the cpufreq driver probes.
  903. cpu_init_udelay=N
  904. [X86,EARLY] Delay for N microsec between assert and de-assert
  905. of APIC INIT to start processors. This delay occurs
  906. on every CPU online, such as boot, and resume from suspend.
  907. Default: 10000
  908. cpuhp.parallel=
  909. [SMP] Enable/disable parallel bringup of secondary CPUs
  910. Format: <bool>
  911. Default is enabled if CONFIG_HOTPLUG_PARALLEL=y. Otherwise
  912. the parameter has no effect.
  913. crash_kexec_post_notifiers
  914. Only jump to kdump kernel after running the panic
  915. notifiers and dumping kmsg. This option increases
  916. the risks of a kdump failure, since some panic
  917. notifiers can make the crashed kernel more unstable.
  918. In configurations where kdump may not be reliable,
  919. running the panic notifiers could allow collecting
  920. more data on dmesg, like stack traces from other CPUS
  921. or extra data dumped by panic_print. Note that some
  922. configurations enable this option unconditionally,
  923. like Hyper-V, PowerPC (fadump) and AMD SEV-SNP.
  924. crashkernel=size[KMG][@offset[KMG]]
  925. [KNL,EARLY] Using kexec, Linux can switch to a 'crash kernel'
  926. upon panic. This parameter reserves the physical
  927. memory region [offset, offset + size] for that kernel
  928. image. If '@offset' is omitted, then a suitable offset
  929. is selected automatically.
  930. [KNL, X86-64, ARM64, RISCV, LoongArch] Select a region
  931. under 4G first, and fall back to reserve region above
  932. 4G when '@offset' hasn't been specified.
  933. See Documentation/admin-guide/kdump/kdump.rst for further details.
  934. crashkernel=range1:size1[,range2:size2,...][@offset]
  935. [KNL] Same as above, but depends on the memory
  936. in the running system. The syntax of range is
  937. start-[end] where start and end are both
  938. a memory unit (amount[KMG]). See also
  939. Documentation/admin-guide/kdump/kdump.rst for an example.
  940. crashkernel=size[KMG],high
  941. [KNL, X86-64, ARM64, RISCV, LoongArch] range could be
  942. above 4G.
  943. Allow kernel to allocate physical memory region from top,
  944. so could be above 4G if system have more than 4G ram
  945. installed. Otherwise memory region will be allocated
  946. below 4G, if available.
  947. It will be ignored if crashkernel=X is specified.
  948. crashkernel=size[KMG],low
  949. [KNL, X86-64, ARM64, RISCV, LoongArch] range under 4G.
  950. When crashkernel=X,high is passed, kernel could allocate
  951. physical memory region above 4G, that cause second kernel
  952. crash on system that require some amount of low memory,
  953. e.g. swiotlb requires at least 64M+32K low memory, also
  954. enough extra low memory is needed to make sure DMA buffers
  955. for 32-bit devices won't run out. Kernel would try to allocate
  956. default size of memory below 4G automatically. The default
  957. size is platform dependent.
  958. --> x86: max(swiotlb_size_or_default() + 8MiB, 256MiB)
  959. --> arm64: 128MiB
  960. --> riscv: 128MiB
  961. --> loongarch: 128MiB
  962. This one lets the user specify own low range under 4G
  963. for second kernel instead.
  964. 0: to disable low allocation.
  965. It will be ignored when crashkernel=X,high is not used
  966. or memory reserved is below 4G.
  967. crashkernel=size[KMG],cma
  968. [KNL, X86, ppc] Reserve additional crash kernel memory from
  969. CMA. This reservation is usable by the first system's
  970. userspace memory and kernel movable allocations (memory
  971. balloon, zswap). Pages allocated from this memory range
  972. will not be included in the vmcore so this should not
  973. be used if dumping of userspace memory is intended and
  974. it has to be expected that some movable kernel pages
  975. may be missing from the dump.
  976. A standard crashkernel reservation, as described above,
  977. is still needed to hold the crash kernel and initrd.
  978. This option increases the risk of a kdump failure: DMA
  979. transfers configured by the first kernel may end up
  980. corrupting the second kernel's memory.
  981. This reservation method is intended for systems that
  982. can't afford to sacrifice enough memory for standard
  983. crashkernel reservation and where less reliable and
  984. possibly incomplete kdump is preferable to no kdump at
  985. all.
  986. cryptomgr.notests
  987. [KNL] Disable crypto self-tests
  988. cs89x0_dma= [HW,NET]
  989. Format: <dma>
  990. cs89x0_media= [HW,NET]
  991. Format: { rj45 | aui | bnc }
  992. csdlock_debug= [KNL] Enable or disable debug add-ons of cross-CPU
  993. function call handling. When switched on,
  994. additional debug data is printed to the console
  995. in case a hanging CPU is detected, and that
  996. CPU is pinged again in order to try to resolve
  997. the hang situation. The default value of this
  998. option depends on the CSD_LOCK_WAIT_DEBUG_DEFAULT
  999. Kconfig option.
  1000. dasd= [HW,NET]
  1001. See header of drivers/s390/block/dasd_devmap.c.
  1002. db9.dev[2|3]= [HW,JOY] Multisystem joystick support via parallel port
  1003. (one device per port)
  1004. Format: <port#>,<type>
  1005. See also Documentation/input/devices/joystick-parport.rst
  1006. debug [KNL,EARLY] Enable kernel debugging (events log level).
  1007. debug_boot_weak_hash
  1008. [KNL,EARLY] Enable printing [hashed] pointers early in the
  1009. boot sequence. If enabled, we use a weak hash instead
  1010. of siphash to hash pointers. Use this option if you are
  1011. seeing instances of '(___ptrval___)') and need to see a
  1012. value (hashed pointer) instead. Cryptographically
  1013. insecure, please do not use on production kernels.
  1014. debug_locks_verbose=
  1015. [KNL] verbose locking self-tests
  1016. Format: <int>
  1017. Print debugging info while doing the locking API
  1018. self-tests.
  1019. Bitmask for the various LOCKTYPE_ tests. Defaults to 0
  1020. (no extra messages), setting it to -1 (all bits set)
  1021. will print _a_lot_ more information - normally only
  1022. useful to lockdep developers.
  1023. debug_objects [KNL,EARLY] Enable object debugging
  1024. debug_guardpage_minorder=
  1025. [KNL,EARLY] When CONFIG_DEBUG_PAGEALLOC is set, this
  1026. parameter allows control of the order of pages that will
  1027. be intentionally kept free (and hence protected) by the
  1028. buddy allocator. Bigger value increase the probability
  1029. of catching random memory corruption, but reduce the
  1030. amount of memory for normal system use. The maximum
  1031. possible value is MAX_PAGE_ORDER/2. Setting this
  1032. parameter to 1 or 2 should be enough to identify most
  1033. random memory corruption problems caused by bugs in
  1034. kernel or driver code when a CPU writes to (or reads
  1035. from) a random memory location. Note that there exists
  1036. a class of memory corruptions problems caused by buggy
  1037. H/W or F/W or by drivers badly programming DMA
  1038. (basically when memory is written at bus level and the
  1039. CPU MMU is bypassed) which are not detectable by
  1040. CONFIG_DEBUG_PAGEALLOC, hence this option will not
  1041. help tracking down these problems.
  1042. debug_pagealloc=
  1043. [KNL,EARLY] When CONFIG_DEBUG_PAGEALLOC is set, this parameter
  1044. enables the feature at boot time. By default, it is
  1045. disabled and the system will work mostly the same as a
  1046. kernel built without CONFIG_DEBUG_PAGEALLOC.
  1047. Note: to get most of debug_pagealloc error reports, it's
  1048. useful to also enable the page_owner functionality.
  1049. on: enable the feature
  1050. debugfs= [KNL,EARLY] This parameter enables what is exposed to
  1051. userspace and debugfs internal clients.
  1052. Format: { on, off }
  1053. on: All functions are enabled.
  1054. off: Filesystem is not registered and clients
  1055. get a -EPERM as result when trying to register files
  1056. or directories within debugfs.
  1057. This is equivalent of the runtime functionality if
  1058. debugfs was not enabled in the kernel at all.
  1059. Default value is set in build-time with a kernel configuration.
  1060. debugpat [X86] Enable PAT debugging
  1061. default_hugepagesz=
  1062. [HW] The size of the default HugeTLB page. This is
  1063. the size represented by the legacy /proc/ hugepages
  1064. APIs. In addition, this is the default hugetlb size
  1065. used for shmget(), mmap() and mounting hugetlbfs
  1066. filesystems. If not specified, defaults to the
  1067. architecture's default huge page size. Huge page
  1068. sizes are architecture dependent. See also
  1069. Documentation/admin-guide/mm/hugetlbpage.rst.
  1070. Format: size[KMG]
  1071. deferred_probe_timeout=
  1072. [KNL] Debugging option to set a timeout in seconds for
  1073. deferred probe to give up waiting on dependencies to
  1074. probe. Only specific dependencies (subsystems or
  1075. drivers) that have opted in will be ignored. A timeout
  1076. of 0 will timeout at the end of initcalls. If the time
  1077. out hasn't expired, it'll be restarted by each
  1078. successful driver registration. This option will also
  1079. dump out devices still on the deferred probe list after
  1080. retrying.
  1081. delayacct [KNL] Enable per-task delay accounting
  1082. dell_smm_hwmon.ignore_dmi=
  1083. [HW] Continue probing hardware even if DMI data
  1084. indicates that the driver is running on unsupported
  1085. hardware.
  1086. dell_smm_hwmon.force=
  1087. [HW] Activate driver even if SMM BIOS signature does
  1088. not match list of supported models and enable otherwise
  1089. blacklisted features.
  1090. dell_smm_hwmon.power_status=
  1091. [HW] Report power status in /proc/i8k
  1092. (disabled by default).
  1093. dell_smm_hwmon.restricted=
  1094. [HW] Allow controlling fans only if SYS_ADMIN
  1095. capability is set.
  1096. dell_smm_hwmon.fan_mult=
  1097. [HW] Factor to multiply fan speed with.
  1098. dell_smm_hwmon.fan_max=
  1099. [HW] Maximum configurable fan speed.
  1100. dfltcc= [HW,S390]
  1101. Format: { on | off | def_only | inf_only | always }
  1102. on: s390 zlib hardware support for compression on
  1103. level 1 and decompression (default)
  1104. off: No s390 zlib hardware support
  1105. def_only: s390 zlib hardware support for deflate
  1106. only (compression on level 1)
  1107. inf_only: s390 zlib hardware support for inflate
  1108. only (decompression)
  1109. always: Same as 'on' but ignores the selected compression
  1110. level always using hardware support (used for debugging)
  1111. dhash_entries= [KNL]
  1112. Set number of hash buckets for dentry cache.
  1113. disable_1tb_segments [PPC,EARLY]
  1114. Disables the use of 1TB hash page table segments. This
  1115. causes the kernel to fall back to 256MB segments which
  1116. can be useful when debugging issues that require an SLB
  1117. miss to occur.
  1118. disable= [IPV6]
  1119. See Documentation/networking/ipv6.rst.
  1120. disable_radix [PPC,EARLY]
  1121. Disable RADIX MMU mode on POWER9
  1122. disable_tlbie [PPC]
  1123. Disable TLBIE instruction. Currently does not work
  1124. with KVM, with HASH MMU, or with coherent accelerators.
  1125. disable_ddw [PPC/PSERIES,EARLY]
  1126. Disable Dynamic DMA Window support. Use this
  1127. to workaround buggy firmware.
  1128. disable_ipv6= [IPV6]
  1129. See Documentation/networking/ipv6.rst.
  1130. disable_mtrr_cleanup [X86,EARLY]
  1131. The kernel tries to adjust MTRR layout from continuous
  1132. to discrete, to make X server driver able to add WB
  1133. entry later. This parameter disables that.
  1134. disable_mtrr_trim [X86, Intel and AMD only,EARLY]
  1135. By default the kernel will trim any uncacheable
  1136. memory out of your available memory pool based on
  1137. MTRR settings. This parameter disables that behavior,
  1138. possibly causing your machine to run very slowly.
  1139. disable_timer_pin_1 [X86,EARLY]
  1140. Disable PIN 1 of APIC timer
  1141. Can be useful to work around chipset bugs.
  1142. dis_ucode_ldr [X86] Disable the microcode loader.
  1143. dma_debug=off If the kernel is compiled with DMA_API_DEBUG support,
  1144. this option disables the debugging code at boot.
  1145. dma_debug_entries=<number>
  1146. This option allows to tune the number of preallocated
  1147. entries for DMA-API debugging code. One entry is
  1148. required per DMA-API allocation. Use this if the
  1149. DMA-API debugging code disables itself because the
  1150. architectural default is too low.
  1151. dma_debug_driver=<driver_name>
  1152. With this option the DMA-API debugging driver
  1153. filter feature can be enabled at boot time. Just
  1154. pass the driver to filter for as the parameter.
  1155. The filter can be disabled or changed to another
  1156. driver later using sysfs.
  1157. reg_file_data_sampling=
  1158. [X86] Controls mitigation for Register File Data
  1159. Sampling (RFDS) vulnerability. RFDS is a CPU
  1160. vulnerability which may allow userspace to infer
  1161. kernel data values previously stored in floating point
  1162. registers, vector registers, or integer registers.
  1163. RFDS only affects Intel Atom processors.
  1164. on: Turns ON the mitigation.
  1165. off: Turns OFF the mitigation.
  1166. This parameter overrides the compile time default set
  1167. by CONFIG_MITIGATION_RFDS. Mitigation cannot be
  1168. disabled when other VERW based mitigations (like MDS)
  1169. are enabled. In order to disable RFDS mitigation all
  1170. VERW based mitigations need to be disabled.
  1171. For details see:
  1172. Documentation/admin-guide/hw-vuln/reg-file-data-sampling.rst
  1173. dm_verity.keyring_unsealed=
  1174. [KNL] When set to 1, leave the dm-verity keyring
  1175. unsealed after initialization so userspace can
  1176. provision keys. Once the keyring is restricted
  1177. it becomes active and is searched during signature
  1178. verification.
  1179. driver_async_probe= [KNL]
  1180. List of driver names to be probed asynchronously. *
  1181. matches with all driver names. If * is specified, the
  1182. rest of the listed driver names are those that will NOT
  1183. match the *.
  1184. Format: <driver_name1>,<driver_name2>...
  1185. drm.edid_firmware=[<connector>:]<file>[,[<connector>:]<file>]
  1186. Broken monitors, graphic adapters, KVMs and EDIDless
  1187. panels may send no or incorrect EDID data sets.
  1188. This parameter allows to specify an EDID data sets
  1189. in the /lib/firmware directory that are used instead.
  1190. An EDID data set will only be used for a particular
  1191. connector, if its name and a colon are prepended to
  1192. the EDID name. Each connector may use a unique EDID
  1193. data set by separating the files with a comma. An EDID
  1194. data set with no connector name will be used for
  1195. any connectors not explicitly specified.
  1196. dscc4.setup= [NET]
  1197. dt_cpu_ftrs= [PPC,EARLY]
  1198. Format: {"off" | "known"}
  1199. Control how the dt_cpu_ftrs device-tree binding is
  1200. used for CPU feature discovery and setup (if it
  1201. exists).
  1202. off: Do not use it, fall back to legacy cpu table.
  1203. known: Do not pass through unknown features to guests
  1204. or userspace, only those that the kernel is aware of.
  1205. dump_apple_properties [X86]
  1206. Dump name and content of EFI device properties on
  1207. x86 Macs. Useful for driver authors to determine
  1208. what data is available or for reverse-engineering.
  1209. dyndbg[="val"] [KNL,DYNAMIC_DEBUG]
  1210. <module>.dyndbg[="val"]
  1211. Enable debug messages at boot time. See
  1212. Documentation/admin-guide/dynamic-debug-howto.rst
  1213. for details.
  1214. early_ioremap_debug [KNL,EARLY]
  1215. Enable debug messages in early_ioremap support. This
  1216. is useful for tracking down temporary early mappings
  1217. which are not unmapped.
  1218. earlycon= [KNL,EARLY] Output early console device and options.
  1219. When used with no options, the early console is
  1220. determined by stdout-path property in device tree's
  1221. chosen node or the ACPI SPCR table if supported by
  1222. the platform.
  1223. cdns,<addr>[,options]
  1224. Start an early, polled-mode console on a Cadence
  1225. (xuartps) serial port at the specified address. Only
  1226. supported option is baud rate. If baud rate is not
  1227. specified, the serial port must already be setup and
  1228. configured.
  1229. uart[8250],io,<addr>[,options[,uartclk]]
  1230. uart[8250],mmio,<addr>[,options[,uartclk]]
  1231. uart[8250],mmio32,<addr>[,options[,uartclk]]
  1232. uart[8250],mmio32be,<addr>[,options[,uartclk]]
  1233. uart[8250],0x<addr>[,options]
  1234. Start an early, polled-mode console on the 8250/16550
  1235. UART at the specified I/O port or MMIO address.
  1236. MMIO inter-register address stride is either 8-bit
  1237. (mmio) or 32-bit (mmio32 or mmio32be).
  1238. If none of [io|mmio|mmio32|mmio32be], <addr> is assumed
  1239. to be equivalent to 'mmio'. 'options' are specified
  1240. in the same format described for "console=ttyS<n>"; if
  1241. unspecified, the h/w is not initialized. 'uartclk' is
  1242. the uart clock frequency; if unspecified, it is set
  1243. to 'BASE_BAUD' * 16.
  1244. pl011,<addr>
  1245. pl011,mmio32,<addr>
  1246. Start an early, polled-mode console on a pl011 serial
  1247. port at the specified address. The pl011 serial port
  1248. must already be setup and configured. Options are not
  1249. yet supported. If 'mmio32' is specified, then only
  1250. the driver will use only 32-bit accessors to read/write
  1251. the device registers.
  1252. liteuart,<addr>
  1253. Start an early console on a litex serial port at the
  1254. specified address. The serial port must already be
  1255. setup and configured. Options are not yet supported.
  1256. meson,<addr>
  1257. Start an early, polled-mode console on a meson serial
  1258. port at the specified address. The serial port must
  1259. already be setup and configured. Options are not yet
  1260. supported.
  1261. msm_serial,<addr>
  1262. Start an early, polled-mode console on an msm serial
  1263. port at the specified address. The serial port
  1264. must already be setup and configured. Options are not
  1265. yet supported.
  1266. msm_serial_dm,<addr>
  1267. Start an early, polled-mode console on an msm serial
  1268. dm port at the specified address. The serial port
  1269. must already be setup and configured. Options are not
  1270. yet supported.
  1271. owl,<addr>
  1272. Start an early, polled-mode console on a serial port
  1273. of an Actions Semi SoC, such as S500 or S900, at the
  1274. specified address. The serial port must already be
  1275. setup and configured. Options are not yet supported.
  1276. rda,<addr>
  1277. Start an early, polled-mode console on a serial port
  1278. of an RDA Micro SoC, such as RDA8810PL, at the
  1279. specified address. The serial port must already be
  1280. setup and configured. Options are not yet supported.
  1281. sbi
  1282. Use RISC-V SBI (Supervisor Binary Interface) for early
  1283. console.
  1284. smh Use ARM semihosting calls for early console.
  1285. s3c2410,<addr>
  1286. s3c2412,<addr>
  1287. s3c2440,<addr>
  1288. s3c6400,<addr>
  1289. s5pv210,<addr>
  1290. exynos4210,<addr>
  1291. Use early console provided by serial driver available
  1292. on Samsung SoCs, requires selecting proper type and
  1293. a correct base address of the selected UART port. The
  1294. serial port must already be setup and configured.
  1295. Options are not yet supported.
  1296. lantiq,<addr>
  1297. Start an early, polled-mode console on a lantiq serial
  1298. (lqasc) port at the specified address. The serial port
  1299. must already be setup and configured. Options are not
  1300. yet supported.
  1301. lpuart,<addr>
  1302. lpuart32,<addr>
  1303. Use early console provided by Freescale LP UART driver
  1304. found on Freescale Vybrid and QorIQ LS1021A processors.
  1305. A valid base address must be provided, and the serial
  1306. port must already be setup and configured.
  1307. ec_imx21,<addr>
  1308. ec_imx6q,<addr>
  1309. Start an early, polled-mode, output-only console on the
  1310. Freescale i.MX UART at the specified address. The UART
  1311. must already be setup and configured.
  1312. ar3700_uart,<addr>
  1313. Start an early, polled-mode console on the
  1314. Armada 3700 serial port at the specified
  1315. address. The serial port must already be setup
  1316. and configured. Options are not yet supported.
  1317. qcom_geni,<addr>
  1318. Start an early, polled-mode console on a Qualcomm
  1319. Generic Interface (GENI) based serial port at the
  1320. specified address. The serial port must already be
  1321. setup and configured. Options are not yet supported.
  1322. efifb,[options]
  1323. Start an early, unaccelerated console on the EFI
  1324. memory mapped framebuffer (if available). On cache
  1325. coherent non-x86 systems that use system memory for
  1326. the framebuffer, pass the 'ram' option so that it is
  1327. mapped with the correct attributes.
  1328. linflex,<addr>
  1329. Use early console provided by Freescale LINFlexD UART
  1330. serial driver for NXP S32V234 SoCs. A valid base
  1331. address must be provided, and the serial port must
  1332. already be setup and configured.
  1333. earlyprintk= [X86,SH,ARM,M68k,S390,UM,EARLY]
  1334. earlyprintk=vga
  1335. earlyprintk=sclp
  1336. earlyprintk=xen
  1337. earlyprintk=serial[,ttySn[,baudrate]]
  1338. earlyprintk=serial[,0x...[,baudrate]]
  1339. earlyprintk=ttySn[,baudrate]
  1340. earlyprintk=dbgp[debugController#]
  1341. earlyprintk=mmio32,membase[,{nocfg|baudrate}]
  1342. earlyprintk=pciserial[,force],bus:device.function[,{nocfg|baudrate}]
  1343. earlyprintk=xdbc[xhciController#]
  1344. earlyprintk=bios
  1345. earlyprintk is useful when the kernel crashes before
  1346. the normal console is initialized. It is not enabled by
  1347. default because it has some cosmetic problems.
  1348. Use "nocfg" to skip UART configuration, assume
  1349. BIOS/firmware has configured UART correctly.
  1350. Append ",keep" to not disable it when the real console
  1351. takes over.
  1352. Only one of vga, serial, or usb debug port can
  1353. be used at a time.
  1354. Currently only ttyS0 and ttyS1 may be specified by
  1355. name. Other I/O ports may be explicitly specified
  1356. on some architectures (x86 and arm at least) by
  1357. replacing ttySn with an I/O port address, like this:
  1358. earlyprintk=serial,0x1008,115200
  1359. You can find the port for a given device in
  1360. /proc/tty/driver/serial:
  1361. 2: uart:ST16650V2 port:00001008 irq:18 ...
  1362. Interaction with the standard serial driver is not
  1363. very good.
  1364. The VGA output is eventually overwritten by
  1365. the real console.
  1366. The xen option can only be used in Xen domains.
  1367. The sclp output can only be used on s390.
  1368. The bios output can only be used on SuperH.
  1369. The optional "force" to "pciserial" enables use of a
  1370. PCI device even when its classcode is not of the
  1371. UART class.
  1372. edac_report= [HW,EDAC] Control how to report EDAC event
  1373. Format: {"on" | "off" | "force"}
  1374. on: enable EDAC to report H/W event. May be overridden
  1375. by other higher priority error reporting module.
  1376. off: disable H/W event reporting through EDAC.
  1377. force: enforce the use of EDAC to report H/W event.
  1378. default: on.
  1379. edd= [EDD]
  1380. Format: {"off" | "on" | "skip[mbr]"}
  1381. efi= [EFI,EARLY]
  1382. Format: { "debug", "disable_early_pci_dma",
  1383. "nochunk", "noruntime", "nosoftreserve",
  1384. "novamap", "no_disable_early_pci_dma" }
  1385. debug: enable misc debug output.
  1386. disable_early_pci_dma: disable the busmaster bit on all
  1387. PCI bridges while in the EFI boot stub.
  1388. nochunk: disable reading files in "chunks" in the EFI
  1389. boot stub, as chunking can cause problems with some
  1390. firmware implementations.
  1391. noruntime : disable EFI runtime services support
  1392. nosoftreserve: The EFI_MEMORY_SP (Specific Purpose)
  1393. attribute may cause the kernel to reserve the
  1394. memory range for a memory mapping driver to
  1395. claim. Specify efi=nosoftreserve to disable this
  1396. reservation and treat the memory by its base type
  1397. (i.e. EFI_CONVENTIONAL_MEMORY / "System RAM").
  1398. novamap: do not call SetVirtualAddressMap().
  1399. no_disable_early_pci_dma: Leave the busmaster bit set
  1400. on all PCI bridges while in the EFI boot stub
  1401. efi_no_storage_paranoia [EFI,X86,EARLY]
  1402. Using this parameter you can use more than 50% of
  1403. your efi variable storage. Use this parameter only if
  1404. you are really sure that your UEFI does sane gc and
  1405. fulfills the spec otherwise your board may brick.
  1406. efivar_ssdt= [EFI; X86] Name of an EFI variable that contains an SSDT
  1407. that is to be dynamically loaded by Linux. If there are
  1408. multiple variables with the same name but with different
  1409. vendor GUIDs, all of them will be loaded. See
  1410. Documentation/admin-guide/acpi/ssdt-overlays.rst for details.
  1411. eisa_irq_edge= [PARISC,HW]
  1412. See header of drivers/parisc/eisa.c.
  1413. ekgdboc= [X86,KGDB,EARLY] Allow early kernel console debugging
  1414. Format: ekgdboc=kbd
  1415. This is designed to be used in conjunction with
  1416. the boot argument: earlyprintk=vga
  1417. This parameter works in place of the kgdboc parameter
  1418. but can only be used if the backing tty is available
  1419. very early in the boot process. For early debugging
  1420. via a serial port see kgdboc_earlycon instead.
  1421. elanfreq= [X86-32]
  1422. See comment before function elanfreq_setup() in
  1423. arch/x86/kernel/cpu/cpufreq/elanfreq.c.
  1424. elfcorehdr=[size[KMG]@]offset[KMG] [PPC,SH,X86,S390,EARLY]
  1425. Specifies physical address of start of kernel core
  1426. image elf header and optionally the size. Generally
  1427. kexec loader will pass this option to capture kernel.
  1428. See Documentation/admin-guide/kdump/kdump.rst for details.
  1429. enable_mtrr_cleanup [X86,EARLY]
  1430. The kernel tries to adjust MTRR layout from continuous
  1431. to discrete, to make X server driver able to add WB
  1432. entry later. This parameter enables that.
  1433. enable_timer_pin_1 [X86]
  1434. Enable PIN 1 of APIC timer
  1435. Can be useful to work around chipset bugs
  1436. (in particular on some ATI chipsets).
  1437. The kernel tries to set a reasonable default.
  1438. enforcing= [SELINUX] Set initial enforcing status.
  1439. Format: {"0" | "1"}
  1440. See security/selinux/Kconfig help text.
  1441. 0 -- permissive (log only, no denials).
  1442. 1 -- enforcing (deny and log).
  1443. Default value is 0.
  1444. Value can be changed at runtime via
  1445. /sys/fs/selinux/enforce.
  1446. erst_disable [ACPI]
  1447. Disable Error Record Serialization Table (ERST)
  1448. support.
  1449. ether= [HW,NET] Ethernet cards parameters
  1450. This option is obsoleted by the "netdev=" option, which
  1451. has equivalent usage. See its documentation for details.
  1452. evm= [EVM]
  1453. Format: { "fix" }
  1454. Permit 'security.evm' to be updated regardless of
  1455. current integrity status.
  1456. early_page_ext [KNL,EARLY] Enforces page_ext initialization to earlier
  1457. stages so cover more early boot allocations.
  1458. Please note that as side effect some optimizations
  1459. might be disabled to achieve that (e.g. parallelized
  1460. memory initialization is disabled) so the boot process
  1461. might take longer, especially on systems with a lot of
  1462. memory. Available with CONFIG_PAGE_EXTENSION=y.
  1463. failslab=
  1464. fail_usercopy=
  1465. fail_page_alloc=
  1466. fail_skb_realloc=
  1467. fail_make_request=[KNL]
  1468. General fault injection mechanism.
  1469. Format: <interval>,<probability>,<space>,<times>
  1470. See also Documentation/fault-injection/.
  1471. fb_tunnels= [NET]
  1472. Format: { initns | none }
  1473. See Documentation/admin-guide/sysctl/net.rst for
  1474. fb_tunnels_only_for_init_ns
  1475. floppy= [HW]
  1476. See Documentation/admin-guide/blockdev/floppy.rst.
  1477. forcepae [X86-32]
  1478. Forcefully enable Physical Address Extension (PAE).
  1479. Many Pentium M systems disable PAE but may have a
  1480. functionally usable PAE implementation.
  1481. Warning: use of this parameter will taint the kernel
  1482. and may cause unknown problems.
  1483. fred= [X86-64]
  1484. Enable/disable Flexible Return and Event Delivery.
  1485. Format: { on | off }
  1486. on: enable FRED when it's present.
  1487. off: disable FRED, the default setting.
  1488. ftrace=[tracer]
  1489. [FTRACE] will set and start the specified tracer
  1490. as early as possible in order to facilitate early
  1491. boot debugging.
  1492. ftrace_boot_snapshot
  1493. [FTRACE] On boot up, a snapshot will be taken of the
  1494. ftrace ring buffer that can be read at:
  1495. /sys/kernel/tracing/snapshot.
  1496. This is useful if you need tracing information from kernel
  1497. boot up that is likely to be overridden by user space
  1498. start up functionality.
  1499. Optionally, the snapshot can also be defined for a tracing
  1500. instance that was created by the trace_instance= command
  1501. line parameter.
  1502. trace_instance=foo,sched_switch ftrace_boot_snapshot=foo
  1503. The above will cause the "foo" tracing instance to trigger
  1504. a snapshot at the end of boot up.
  1505. ftrace_dump_on_oops[=2(orig_cpu) | =<instance>][,<instance> |
  1506. ,<instance>=2(orig_cpu)]
  1507. [FTRACE] will dump the trace buffers on oops.
  1508. If no parameter is passed, ftrace will dump global
  1509. buffers of all CPUs, if you pass 2 or orig_cpu, it
  1510. will dump only the buffer of the CPU that triggered
  1511. the oops, or the specific instance will be dumped if
  1512. its name is passed. Multiple instance dump is also
  1513. supported, and instances are separated by commas. Each
  1514. instance supports only dump on CPU that triggered the
  1515. oops by passing 2 or orig_cpu to it.
  1516. ftrace_dump_on_oops=foo=orig_cpu
  1517. The above will dump only the buffer of "foo" instance
  1518. on CPU that triggered the oops.
  1519. ftrace_dump_on_oops,foo,bar=orig_cpu
  1520. The above will dump global buffer on all CPUs, the
  1521. buffer of "foo" instance on all CPUs and the buffer
  1522. of "bar" instance on CPU that triggered the oops.
  1523. ftrace_filter=[function-list]
  1524. [FTRACE] Limit the functions traced by the function
  1525. tracer at boot up. function-list is a comma-separated
  1526. list of functions. This list can be changed at run
  1527. time by the set_ftrace_filter file in the debugfs
  1528. tracing directory.
  1529. ftrace_notrace=[function-list]
  1530. [FTRACE] Do not trace the functions specified in
  1531. function-list. This list can be changed at run time
  1532. by the set_ftrace_notrace file in the debugfs
  1533. tracing directory.
  1534. ftrace_graph_filter=[function-list]
  1535. [FTRACE] Limit the top level callers functions traced
  1536. by the function graph tracer at boot up.
  1537. function-list is a comma-separated list of functions
  1538. that can be changed at run time by the
  1539. set_graph_function file in the debugfs tracing directory.
  1540. ftrace_graph_notrace=[function-list]
  1541. [FTRACE] Do not trace from the functions specified in
  1542. function-list. This list is a comma-separated list of
  1543. functions that can be changed at run time by the
  1544. set_graph_notrace file in the debugfs tracing directory.
  1545. ftrace_graph_max_depth=<uint>
  1546. [FTRACE] Used with the function graph tracer. This is
  1547. the max depth it will trace into a function. This value
  1548. can be changed at run time by the max_graph_depth file
  1549. in the tracefs tracing directory. default: 0 (no limit)
  1550. fw_devlink= [KNL,EARLY] Create device links between consumer and supplier
  1551. devices by scanning the firmware to infer the
  1552. consumer/supplier relationships. This feature is
  1553. especially useful when drivers are loaded as modules as
  1554. it ensures proper ordering of tasks like device probing
  1555. (suppliers first, then consumers), supplier boot state
  1556. clean up (only after all consumers have probed),
  1557. suspend/resume & runtime PM (consumers first, then
  1558. suppliers).
  1559. Format: { off | permissive | on | rpm }
  1560. off -- Don't create device links from firmware info.
  1561. permissive -- Create device links from firmware info
  1562. but use it only for ordering boot state clean
  1563. up (sync_state() calls).
  1564. on -- Create device links from firmware info and use it
  1565. to enforce probe and suspend/resume ordering.
  1566. rpm -- Like "on", but also use to order runtime PM.
  1567. fw_devlink.strict=<bool>
  1568. [KNL,EARLY] Treat all inferred dependencies as mandatory
  1569. dependencies. This only applies for fw_devlink=on|rpm.
  1570. Format: <bool>
  1571. fw_devlink.sync_state =
  1572. [KNL,EARLY] When all devices that could probe have finished
  1573. probing, this parameter controls what to do with
  1574. devices that haven't yet received their sync_state()
  1575. calls.
  1576. Format: { strict | timeout }
  1577. strict -- Default. Continue waiting on consumers to
  1578. probe successfully.
  1579. timeout -- Give up waiting on consumers and call
  1580. sync_state() on any devices that haven't yet
  1581. received their sync_state() calls after
  1582. deferred_probe_timeout has expired or by
  1583. late_initcall() if !CONFIG_MODULES.
  1584. gamecon.map[2|3]=
  1585. [HW,JOY] Multisystem joystick and NES/SNES/PSX pad
  1586. support via parallel port (up to 5 devices per port)
  1587. Format: <port#>,<pad1>,<pad2>,<pad3>,<pad4>,<pad5>
  1588. See also Documentation/input/devices/joystick-parport.rst
  1589. gamma= [HW,DRM]
  1590. gart_fix_e820= [X86-64,EARLY] disable the fix e820 for K8 GART
  1591. Format: off | on
  1592. default: on
  1593. gather_data_sampling=
  1594. [X86,INTEL,EARLY] Control the Gather Data Sampling (GDS)
  1595. mitigation.
  1596. Gather Data Sampling is a hardware vulnerability which
  1597. allows unprivileged speculative access to data which was
  1598. previously stored in vector registers.
  1599. This issue is mitigated by default in updated microcode.
  1600. The mitigation may have a performance impact but can be
  1601. disabled. On systems without the microcode mitigation
  1602. disabling AVX serves as a mitigation.
  1603. force: Disable AVX to mitigate systems without
  1604. microcode mitigation. No effect if the microcode
  1605. mitigation is present. Known to cause crashes in
  1606. userspace with buggy AVX enumeration.
  1607. off: Disable GDS mitigation.
  1608. gbpages [X86] Use GB pages for kernel direct mappings.
  1609. gcov_persist= [GCOV] When non-zero (default), profiling data for
  1610. kernel modules is saved and remains accessible via
  1611. debugfs, even when the module is unloaded/reloaded.
  1612. When zero, profiling data is discarded and associated
  1613. debugfs files are removed at module unload time.
  1614. goldfish [X86] Enable the goldfish android emulator platform.
  1615. Don't use this when you are not running on the
  1616. android emulator
  1617. gpio-mockup.gpio_mockup_ranges
  1618. [HW] Sets the ranges of gpiochip of for this device.
  1619. Format: <start1>,<end1>,<start2>,<end2>...
  1620. gpio-mockup.gpio_mockup_named_lines
  1621. [HW] Let the driver know GPIO lines should be named.
  1622. gpt [EFI] Forces disk with valid GPT signature but
  1623. invalid Protective MBR to be treated as GPT. If the
  1624. primary GPT is corrupted, it enables the backup/alternate
  1625. GPT to be used instead.
  1626. grcan.enable0= [HW] Configuration of physical interface 0. Determines
  1627. the "Enable 0" bit of the configuration register.
  1628. Format: 0 | 1
  1629. Default: 0
  1630. grcan.enable1= [HW] Configuration of physical interface 1. Determines
  1631. the "Enable 0" bit of the configuration register.
  1632. Format: 0 | 1
  1633. Default: 0
  1634. grcan.select= [HW] Select which physical interface to use.
  1635. Format: 0 | 1
  1636. Default: 0
  1637. grcan.txsize= [HW] Sets the size of the tx buffer.
  1638. Format: <unsigned int> such that (txsize & ~0x1fffc0) == 0.
  1639. Default: 1024
  1640. grcan.rxsize= [HW] Sets the size of the rx buffer.
  1641. Format: <unsigned int> such that (rxsize & ~0x1fffc0) == 0.
  1642. Default: 1024
  1643. hardened_usercopy=
  1644. [KNL] Under CONFIG_HARDENED_USERCOPY, whether
  1645. hardening is enabled for this boot. Hardened
  1646. usercopy checking is used to protect the kernel
  1647. from reading or writing beyond known memory
  1648. allocation boundaries as a proactive defense
  1649. against bounds-checking flaws in the kernel's
  1650. copy_to_user()/copy_from_user() interface.
  1651. The default is determined by
  1652. CONFIG_HARDENED_USERCOPY_DEFAULT_ON.
  1653. on Perform hardened usercopy checks.
  1654. off Disable hardened usercopy checks.
  1655. hardlockup_all_cpu_backtrace=
  1656. [KNL] Should the hard-lockup detector generate
  1657. backtraces on all cpus.
  1658. Format: 0 | 1
  1659. hash_pointers=
  1660. [KNL,EARLY]
  1661. By default, when pointers are printed to the console
  1662. or buffers via the %p format string, that pointer is
  1663. "hashed", i.e. obscured by hashing the pointer value.
  1664. This is a security feature that hides actual kernel
  1665. addresses from unprivileged users, but it also makes
  1666. debugging the kernel more difficult since unequal
  1667. pointers can no longer be compared. The choices are:
  1668. Format: { auto | always | never }
  1669. Default: auto
  1670. auto - Hash pointers unless slab_debug is enabled.
  1671. always - Always hash pointers (even if slab_debug is
  1672. enabled).
  1673. never - Never hash pointers. This option should only
  1674. be specified when debugging the kernel. Do
  1675. not use on production kernels. The boot
  1676. param "no_hash_pointers" is an alias for
  1677. this mode.
  1678. For controlling hashing dynamically at runtime,
  1679. use the "kernel.kptr_restrict" sysctl instead.
  1680. hashdist= [KNL,NUMA] Large hashes allocated during boot
  1681. are distributed across NUMA nodes. Defaults on
  1682. for 64-bit NUMA, off otherwise.
  1683. Format: 0 | 1 (for off | on)
  1684. hd= [EIDE] (E)IDE hard drive subsystem geometry
  1685. Format: <cyl>,<head>,<sect>
  1686. hest_disable [ACPI]
  1687. Disable Hardware Error Source Table (HEST) support;
  1688. corresponding firmware-first mode error processing
  1689. logic will be disabled.
  1690. hibernate= [HIBERNATION]
  1691. noresume Don't check if there's a hibernation image
  1692. present during boot.
  1693. nocompress Don't compress/decompress hibernation images.
  1694. no Disable hibernation and resume.
  1695. protect_image Turn on image protection during restoration
  1696. (that will set all pages holding image data
  1697. during restoration read-only).
  1698. hibernate.compressor= [HIBERNATION] Compression algorithm to be
  1699. used with hibernation.
  1700. Format: { lzo | lz4 }
  1701. Default: lzo
  1702. lzo: Select LZO compression algorithm to
  1703. compress/decompress hibernation image.
  1704. lz4: Select LZ4 compression algorithm to
  1705. compress/decompress hibernation image.
  1706. hibernate.pm_test_delay=
  1707. [HIBERNATION]
  1708. Sets the number of seconds to remain in a hibernation test
  1709. mode before resuming the system (see
  1710. /sys/power/pm_test). Only available when CONFIG_PM_DEBUG
  1711. is set. Default value is 5.
  1712. hibernate_compression_threads=
  1713. [HIBERNATION]
  1714. Set the number of threads used for compressing or decompressing
  1715. hibernation images.
  1716. Format: <integer>
  1717. Default: 3
  1718. Minimum: 1
  1719. Example: hibernate_compression_threads=4
  1720. highmem=nn[KMG] [KNL,BOOT,EARLY] forces the highmem zone to have an exact
  1721. size of <nn>. This works even on boxes that have no
  1722. highmem otherwise. This also works to reduce highmem
  1723. size on bigger boxes.
  1724. highres= [KNL] Enable/disable high resolution timer mode.
  1725. Valid parameters: "on", "off"
  1726. Default: "on"
  1727. hlt [BUGS=ARM,SH]
  1728. hostname= [KNL,EARLY] Set the hostname (aka UTS nodename).
  1729. Format: <string>
  1730. This allows setting the system's hostname during early
  1731. startup. This sets the name returned by gethostname.
  1732. Using this parameter to set the hostname makes it
  1733. possible to ensure the hostname is correctly set before
  1734. any userspace processes run, avoiding the possibility
  1735. that a process may call gethostname before the hostname
  1736. has been explicitly set, resulting in the calling
  1737. process getting an incorrect result. The string must
  1738. not exceed the maximum allowed hostname length (usually
  1739. 64 characters) and will be truncated otherwise.
  1740. hpet= [X86-32,HPET] option to control HPET usage
  1741. Format: { enable (default) | disable | force |
  1742. verbose }
  1743. disable: disable HPET and use PIT instead
  1744. force: allow force enabled of undocumented chips (ICH4,
  1745. VIA, nVidia)
  1746. verbose: show contents of HPET registers during setup
  1747. hpet_mmap= [X86, HPET_MMAP] Allow userspace to mmap HPET
  1748. registers. Default set by CONFIG_HPET_MMAP_DEFAULT.
  1749. hugepages= [HW,EARLY] Number of HugeTLB pages to allocate at boot.
  1750. If this follows hugepagesz (below), it specifies
  1751. the number of pages of hugepagesz to be allocated.
  1752. If this is the first HugeTLB parameter on the command
  1753. line, it specifies the number of pages to allocate for
  1754. the default huge page size. If using node format, the
  1755. number of pages to allocate per-node can be specified.
  1756. See also Documentation/admin-guide/mm/hugetlbpage.rst.
  1757. Format: <integer> or (node format)
  1758. <node>:<integer>[,<node>:<integer>]
  1759. hugepagesz=
  1760. [HW,EARLY] The size of the HugeTLB pages. This is
  1761. used in conjunction with hugepages (above) to
  1762. allocate huge pages of a specific size at boot. The
  1763. pair hugepagesz=X hugepages=Y can be specified once
  1764. for each supported huge page size. Huge page sizes
  1765. are architecture dependent. See also
  1766. Documentation/admin-guide/mm/hugetlbpage.rst.
  1767. Format: size[KMG]
  1768. hugepage_alloc_threads=
  1769. [HW] The number of threads that should be used to
  1770. allocate hugepages during boot. This option can be
  1771. used to improve system bootup time when allocating
  1772. a large amount of huge pages.
  1773. The default value is 25% of the available hardware threads.
  1774. Note that this parameter only applies to non-gigantic huge pages.
  1775. hugetlb_cma= [HW,CMA,EARLY] The size of a CMA area used for allocation
  1776. of gigantic hugepages. Or using node format, the size
  1777. of a CMA area per node can be specified.
  1778. Format: nn[KMGTPE] or (node format)
  1779. <node>:nn[KMGTPE][,<node>:nn[KMGTPE]]
  1780. Reserve a CMA area of given size and allocate gigantic
  1781. hugepages using the CMA allocator. If enabled, the
  1782. boot-time allocation of gigantic hugepages is skipped.
  1783. hugetlb_cma_only=
  1784. [HW,CMA,EARLY] When allocating new HugeTLB pages, only
  1785. try to allocate from the CMA areas.
  1786. This option does nothing if hugetlb_cma= is not also
  1787. specified.
  1788. hugetlb_free_vmemmap=
  1789. [KNL] Requires CONFIG_HUGETLB_PAGE_OPTIMIZE_VMEMMAP
  1790. enabled.
  1791. Control if HugeTLB Vmemmap Optimization (HVO) is enabled.
  1792. Allows heavy hugetlb users to free up some more
  1793. memory (7 * PAGE_SIZE for each 2MB hugetlb page).
  1794. Format: { on | off (default) }
  1795. on: enable HVO
  1796. off: disable HVO
  1797. Built with CONFIG_HUGETLB_PAGE_OPTIMIZE_VMEMMAP_DEFAULT_ON=y,
  1798. the default is on.
  1799. Note that the vmemmap pages may be allocated from the added
  1800. memory block itself when memory_hotplug.memmap_on_memory is
  1801. enabled, those vmemmap pages cannot be optimized even if this
  1802. feature is enabled. Other vmemmap pages not allocated from
  1803. the added memory block itself do not be affected.
  1804. hung_task_panic=
  1805. [KNL] Number of hung tasks to trigger kernel panic.
  1806. Format: <int>
  1807. When set to a non-zero value, a kernel panic will be triggered if
  1808. the number of detected hung tasks reaches this value.
  1809. 0: don't panic
  1810. 1: panic immediately on first hung task
  1811. N: panic after N hung tasks are detected in a single scan
  1812. The default value is controlled by the
  1813. CONFIG_BOOTPARAM_HUNG_TASK_PANIC build-time option. The value
  1814. selected by this boot parameter can be changed later by the
  1815. kernel.hung_task_panic sysctl.
  1816. hvc_iucv= [S390] Number of z/VM IUCV hypervisor console (HVC)
  1817. terminal devices. Valid values: 0..8
  1818. hvc_iucv_allow= [S390] Comma-separated list of z/VM user IDs.
  1819. If specified, z/VM IUCV HVC accepts connections
  1820. from listed z/VM user IDs only.
  1821. hv_nopvspin [X86,HYPER_V,EARLY]
  1822. Disables the paravirt spinlock optimizations
  1823. which allow the hypervisor to 'idle' the guest
  1824. on lock contention.
  1825. hw_protection= [HW]
  1826. Format: reboot | shutdown
  1827. Hardware protection action taken on critical events like
  1828. overtemperature or imminent voltage loss.
  1829. i2c_bus= [HW] Override the default board specific I2C bus speed
  1830. or register an additional I2C bus that is not
  1831. registered from board initialization code.
  1832. Format:
  1833. <bus_id>,<clkrate>
  1834. i2c_touchscreen_props= [HW,ACPI,X86]
  1835. Set device-properties for ACPI-enumerated I2C-attached
  1836. touchscreen, to e.g. fix coordinates of upside-down
  1837. mounted touchscreens. If you need this option please
  1838. submit a drivers/platform/x86/touchscreen_dmi.c patch
  1839. adding a DMI quirk for this.
  1840. Format:
  1841. <ACPI_HW_ID>:<prop_name>=<val>[:prop_name=val][:...]
  1842. Where <val> is one of:
  1843. Omit "=<val>" entirely Set a boolean device-property
  1844. Unsigned number Set a u32 device-property
  1845. Anything else Set a string device-property
  1846. Examples (split over multiple lines):
  1847. i2c_touchscreen_props=GDIX1001:touchscreen-inverted-x:
  1848. touchscreen-inverted-y
  1849. i2c_touchscreen_props=MSSL1680:touchscreen-size-x=1920:
  1850. touchscreen-size-y=1080:touchscreen-inverted-y:
  1851. firmware-name=gsl1680-vendor-model.fw:silead,home-button
  1852. i8042.debug [HW] Toggle i8042 debug mode
  1853. i8042.unmask_kbd_data
  1854. [HW] Enable printing of interrupt data from the KBD port
  1855. (disabled by default, and as a pre-condition
  1856. requires that i8042.debug=1 be enabled)
  1857. i8042.direct [HW] Put keyboard port into non-translated mode
  1858. i8042.dumbkbd [HW] Pretend that controller can only read data from
  1859. keyboard and cannot control its state
  1860. (Don't attempt to blink the leds)
  1861. i8042.noaux [HW] Don't check for auxiliary (== mouse) port
  1862. i8042.nokbd [HW] Don't check/create keyboard port
  1863. i8042.noloop [HW] Disable the AUX Loopback command while probing
  1864. for the AUX port
  1865. i8042.nomux [HW] Don't check presence of an active multiplexing
  1866. controller
  1867. i8042.nopnp [HW] Don't use ACPIPnP / PnPBIOS to discover KBD/AUX
  1868. controllers
  1869. i8042.notimeout [HW] Ignore timeout condition signalled by controller
  1870. i8042.reset [HW] Reset the controller during init, cleanup and
  1871. suspend-to-ram transitions, only during s2r
  1872. transitions, or never reset
  1873. Format: { 1 | Y | y | 0 | N | n }
  1874. 1, Y, y: always reset controller
  1875. 0, N, n: don't ever reset controller
  1876. Default: only on s2r transitions on x86; most other
  1877. architectures force reset to be always executed
  1878. i8042.unlock [HW] Unlock (ignore) the keylock
  1879. i8042.kbdreset [HW] Reset device connected to KBD port
  1880. i8042.probe_defer
  1881. [HW] Allow deferred probing upon i8042 probe errors
  1882. i810= [HW,DRM]
  1883. i915.invert_brightness=
  1884. [DRM] Invert the sense of the variable that is used to
  1885. set the brightness of the panel backlight. Normally a
  1886. brightness value of 0 indicates backlight switched off,
  1887. and the maximum of the brightness value sets the backlight
  1888. to maximum brightness. If this parameter is set to 0
  1889. (default) and the machine requires it, or this parameter
  1890. is set to 1, a brightness value of 0 sets the backlight
  1891. to maximum brightness, and the maximum of the brightness
  1892. value switches the backlight off.
  1893. -1 -- never invert brightness
  1894. 0 -- machine default
  1895. 1 -- force brightness inversion
  1896. ia32_emulation= [X86-64]
  1897. Format: <bool>
  1898. When true, allows loading 32-bit programs and executing 32-bit
  1899. syscalls, essentially overriding IA32_EMULATION_DEFAULT_DISABLED at
  1900. boot time. When false, unconditionally disables IA32 emulation.
  1901. icn= [HW,ISDN]
  1902. Format: <io>[,<membase>[,<icn_id>[,<icn_id2>]]]
  1903. idle= [X86,EARLY]
  1904. Format: idle=poll, idle=halt, idle=nomwait
  1905. idle=poll: Don't do power saving in the idle loop
  1906. using HLT, but poll for rescheduling event. This will
  1907. make the CPUs eat a lot more power, but may be useful
  1908. to get slightly better performance in multiprocessor
  1909. benchmarks. It also makes some profiling using
  1910. performance counters more accurate. Please note that
  1911. on systems with MONITOR/MWAIT support (like Intel
  1912. EM64T CPUs) this option has no performance advantage
  1913. over the normal idle loop. It may also interact badly
  1914. with hyperthreading.
  1915. idle=halt: Halt is forced to be used for CPU idle.
  1916. In such case C2/C3 won't be used again.
  1917. idle=nomwait: Disable mwait for CPU C-states
  1918. idxd.sva= [HW]
  1919. Format: <bool>
  1920. Allow force disabling of Shared Virtual Memory (SVA)
  1921. support for the idxd driver. By default it is set to
  1922. true (1).
  1923. idxd.tc_override= [HW]
  1924. Format: <bool>
  1925. Allow override of default traffic class configuration
  1926. for the device. By default it is set to false (0).
  1927. ieee754= [MIPS] Select IEEE Std 754 conformance mode
  1928. Format: { strict | legacy | 2008 | relaxed | emulated }
  1929. Default: strict
  1930. Choose which programs will be accepted for execution
  1931. based on the IEEE 754 NaN encoding(s) supported by
  1932. the FPU and the NaN encoding requested with the value
  1933. of an ELF file header flag individually set by each
  1934. binary. Hardware implementations are permitted to
  1935. support either or both of the legacy and the 2008 NaN
  1936. encoding mode.
  1937. Available settings are as follows:
  1938. strict accept binaries that request a NaN encoding
  1939. supported by the FPU
  1940. legacy only accept legacy-NaN binaries, if supported
  1941. by the FPU
  1942. 2008 only accept 2008-NaN binaries, if supported
  1943. by the FPU
  1944. relaxed accept any binaries regardless of whether
  1945. supported by the FPU
  1946. emulated accept any binaries but enable FPU emulator
  1947. if binary mode is unsupported by the FPU.
  1948. The FPU emulator is always able to support both NaN
  1949. encodings, so if no FPU hardware is present or it has
  1950. been disabled with 'nofpu', then the settings of
  1951. 'legacy' and '2008' strap the emulator accordingly,
  1952. 'relaxed' straps the emulator for both legacy-NaN and
  1953. 2008-NaN, whereas 'strict' enables legacy-NaN only on
  1954. legacy processors and both NaN encodings on MIPS32 or
  1955. MIPS64 CPUs.
  1956. The setting for ABS.fmt/NEG.fmt instruction execution
  1957. mode generally follows that for the NaN encoding,
  1958. except where unsupported by hardware.
  1959. ignore_loglevel [KNL,EARLY]
  1960. Ignore loglevel setting - this will print /all/
  1961. kernel messages to the console. Useful for debugging.
  1962. We also add it as printk module parameter, so users
  1963. could change it dynamically, usually by
  1964. /sys/module/printk/parameters/ignore_loglevel.
  1965. ignore_rlimit_data
  1966. Ignore RLIMIT_DATA setting for data mappings,
  1967. print warning at first misuse. Can be changed via
  1968. /sys/module/kernel/parameters/ignore_rlimit_data.
  1969. ihash_entries= [KNL]
  1970. Set number of hash buckets for inode cache.
  1971. ima_appraise= [IMA] appraise integrity measurements
  1972. Format: { "off" | "enforce" | "fix" | "log" }
  1973. default: "enforce"
  1974. ima_appraise_tcb [IMA] Deprecated. Use ima_policy= instead.
  1975. The builtin appraise policy appraises all files
  1976. owned by uid=0.
  1977. ima_canonical_fmt [IMA]
  1978. Use the canonical format for the binary runtime
  1979. measurements, instead of host native format.
  1980. ima_hash= [IMA]
  1981. Format: { md5 | sha1 | rmd160 | sha256 | sha384
  1982. | sha512 | ... }
  1983. default: "sha1"
  1984. The list of supported hash algorithms is defined
  1985. in crypto/hash_info.h.
  1986. ima_policy= [IMA]
  1987. The builtin policies to load during IMA setup.
  1988. Format: "tcb | appraise_tcb | secure_boot |
  1989. fail_securely | critical_data"
  1990. The "tcb" policy measures all programs exec'd, files
  1991. mmap'd for exec, and all files opened with the read
  1992. mode bit set by either the effective uid (euid=0) or
  1993. uid=0.
  1994. The "appraise_tcb" policy appraises the integrity of
  1995. all files owned by root.
  1996. The "secure_boot" policy appraises the integrity
  1997. of files (eg. kexec kernel image, kernel modules,
  1998. firmware, policy, etc) based on file signatures.
  1999. The "fail_securely" policy forces file signature
  2000. verification failure also on privileged mounted
  2001. filesystems with the SB_I_UNVERIFIABLE_SIGNATURE
  2002. flag.
  2003. The "critical_data" policy measures kernel integrity
  2004. critical data.
  2005. ima_tcb [IMA] Deprecated. Use ima_policy= instead.
  2006. Load a policy which meets the needs of the Trusted
  2007. Computing Base. This means IMA will measure all
  2008. programs exec'd, files mmap'd for exec, and all files
  2009. opened for read by uid=0.
  2010. ima_template= [IMA]
  2011. Select one of defined IMA measurements template formats.
  2012. Formats: { "ima" | "ima-ng" | "ima-ngv2" | "ima-sig" |
  2013. "ima-sigv2" }
  2014. Default: "ima-ng"
  2015. ima_template_fmt=
  2016. [IMA] Define a custom template format.
  2017. Format: { "field1|...|fieldN" }
  2018. ima.ahash_minsize= [IMA] Minimum file size for asynchronous hash usage
  2019. Format: <min_file_size>
  2020. Set the minimal file size for using asynchronous hash.
  2021. If left unspecified, ahash usage is disabled.
  2022. ahash performance varies for different data sizes on
  2023. different crypto accelerators. This option can be used
  2024. to achieve the best performance for a particular HW.
  2025. ima.ahash_bufsize= [IMA] Asynchronous hash buffer size
  2026. Format: <bufsize>
  2027. Set hashing buffer size. Default: 4k.
  2028. ahash performance varies for different chunk sizes on
  2029. different crypto accelerators. This option can be used
  2030. to achieve best performance for particular HW.
  2031. ima= [IMA] Enable or disable IMA
  2032. Format: { "off" | "on" }
  2033. Default: "on"
  2034. Note that disabling IMA is limited to kdump kernel.
  2035. indirect_target_selection= [X86,Intel] Mitigation control for Indirect
  2036. Target Selection(ITS) bug in Intel CPUs. Updated
  2037. microcode is also required for a fix in IBPB.
  2038. on: Enable mitigation (default).
  2039. off: Disable mitigation.
  2040. force: Force the ITS bug and deploy default
  2041. mitigation.
  2042. vmexit: Only deploy mitigation if CPU is affected by
  2043. guest/host isolation part of ITS.
  2044. stuff: Deploy RSB-fill mitigation when retpoline is
  2045. also deployed. Otherwise, deploy the default
  2046. mitigation.
  2047. For details see:
  2048. Documentation/admin-guide/hw-vuln/indirect-target-selection.rst
  2049. init= [KNL]
  2050. Format: <full_path>
  2051. Run specified binary instead of /sbin/init as init
  2052. process.
  2053. initcall_debug [KNL] Trace initcalls as they are executed. Useful
  2054. for working out where the kernel is dying during
  2055. startup.
  2056. initcall_blacklist= [KNL] Do not execute a comma-separated list of
  2057. initcall functions. Useful for debugging built-in
  2058. modules and initcalls.
  2059. initramfs_async= [KNL]
  2060. Format: <bool>
  2061. Default: 1
  2062. This parameter controls whether the initramfs
  2063. image is unpacked asynchronously, concurrently
  2064. with devices being probed and
  2065. initialized. This should normally just work,
  2066. but as a debugging aid, one can get the
  2067. historical behaviour of the initramfs
  2068. unpacking being completed before device_ and
  2069. late_ initcalls.
  2070. initrd= [BOOT,EARLY] Specify the location of the initial ramdisk
  2071. initrdmem= [KNL,EARLY] Specify a physical address and size from which to
  2072. load the initrd. If an initrd is compiled in or
  2073. specified in the bootparams, it takes priority over this
  2074. setting.
  2075. Format: ss[KMG],nn[KMG]
  2076. Default is 0, 0
  2077. init_on_alloc= [MM,EARLY] Fill newly allocated pages and heap objects with
  2078. zeroes.
  2079. Format: 0 | 1
  2080. Default set by CONFIG_INIT_ON_ALLOC_DEFAULT_ON.
  2081. init_on_free= [MM,EARLY] Fill freed pages and heap objects with zeroes.
  2082. Format: 0 | 1
  2083. Default set by CONFIG_INIT_ON_FREE_DEFAULT_ON.
  2084. init_pkru= [X86] Specify the default memory protection keys rights
  2085. register contents for all processes. 0x55555554 by
  2086. default (disallow access to all but pkey 0). Can
  2087. override in debugfs after boot.
  2088. inport.irq= [HW] Inport (ATI XL and Microsoft) busmouse driver
  2089. Format: <irq>
  2090. int_pln_enable [X86] Enable power limit notification interrupt
  2091. integrity_audit=[IMA]
  2092. Format: { "0" | "1" }
  2093. 0 -- basic integrity auditing messages. (Default)
  2094. 1 -- additional integrity auditing messages.
  2095. intel_iommu= [DMAR] Intel IOMMU driver (DMAR) option
  2096. on
  2097. Enable intel iommu driver.
  2098. off
  2099. Disable intel iommu driver.
  2100. igfx_off [Default Off]
  2101. By default, gfx is mapped as normal device. If a gfx
  2102. device has a dedicated DMAR unit, the DMAR unit is
  2103. bypassed by not enabling DMAR with this option. In
  2104. this case, gfx device will use physical address for
  2105. DMA.
  2106. strict [Default Off]
  2107. Deprecated, equivalent to iommu.strict=1.
  2108. sp_off [Default Off]
  2109. By default, super page will be supported if Intel IOMMU
  2110. has the capability. With this option, super page will
  2111. not be supported.
  2112. sm_on
  2113. Enable the Intel IOMMU scalable mode if the hardware
  2114. advertises that it has support for the scalable mode
  2115. translation.
  2116. sm_off
  2117. Disallow use of the Intel IOMMU scalable mode.
  2118. tboot_noforce [Default Off]
  2119. Do not force the Intel IOMMU enabled under tboot.
  2120. By default, tboot will force Intel IOMMU on, which
  2121. could harm performance of some high-throughput
  2122. devices like 40GBit network cards, even if identity
  2123. mapping is enabled.
  2124. Note that using this option lowers the security
  2125. provided by tboot because it makes the system
  2126. vulnerable to DMA attacks.
  2127. intel_idle.max_cstate= [KNL,HW,ACPI,X86]
  2128. 0 disables intel_idle and fall back on acpi_idle.
  2129. 1 to 9 specify maximum depth of C-state.
  2130. intel_pstate= [X86,EARLY]
  2131. disable
  2132. Do not enable intel_pstate as the default
  2133. scaling driver for the supported processors
  2134. active
  2135. Use intel_pstate driver to bypass the scaling
  2136. governors layer of cpufreq and provides it own
  2137. algorithms for p-state selection. There are two
  2138. P-state selection algorithms provided by
  2139. intel_pstate in the active mode: powersave and
  2140. performance. The way they both operate depends
  2141. on whether or not the hardware managed P-states
  2142. (HWP) feature has been enabled in the processor
  2143. and possibly on the processor model.
  2144. passive
  2145. Use intel_pstate as a scaling driver, but configure it
  2146. to work with generic cpufreq governors (instead of
  2147. enabling its internal governor). This mode cannot be
  2148. used along with the hardware-managed P-states (HWP)
  2149. feature.
  2150. force
  2151. Enable intel_pstate on systems that prohibit it by default
  2152. in favor of acpi-cpufreq. Forcing the intel_pstate driver
  2153. instead of acpi-cpufreq may disable platform features, such
  2154. as thermal controls and power capping, that rely on ACPI
  2155. P-States information being indicated to OSPM and therefore
  2156. should be used with caution. This option does not work with
  2157. processors that aren't supported by the intel_pstate driver
  2158. or on platforms that use pcc-cpufreq instead of acpi-cpufreq.
  2159. no_hwp
  2160. Do not enable hardware P state control (HWP)
  2161. if available.
  2162. hwp_only
  2163. Only load intel_pstate on systems which support
  2164. hardware P state control (HWP) if available.
  2165. support_acpi_ppc
  2166. Enforce ACPI _PPC performance limits. If the Fixed ACPI
  2167. Description Table, specifies preferred power management
  2168. profile as "Enterprise Server" or "Performance Server",
  2169. then this feature is turned on by default.
  2170. per_cpu_perf_limits
  2171. Allow per-logical-CPU P-State performance control limits using
  2172. cpufreq sysfs interface
  2173. no_cas
  2174. Do not enable capacity-aware scheduling (CAS) on
  2175. hybrid systems
  2176. intremap= [X86-64,Intel-IOMMU,EARLY]
  2177. on enable Interrupt Remapping (default)
  2178. off disable Interrupt Remapping
  2179. nosid disable Source ID checking
  2180. no_x2apic_optout
  2181. BIOS x2APIC opt-out request will be ignored
  2182. nopost disable Interrupt Posting
  2183. posted_msi
  2184. enable MSIs delivered as posted interrupts
  2185. iomem= Disable strict checking of access to MMIO memory
  2186. strict regions from userspace.
  2187. relaxed
  2188. iommu= [X86,EARLY]
  2189. off
  2190. Don't initialize and use any kind of IOMMU.
  2191. force
  2192. Force the use of the hardware IOMMU even when
  2193. it is not actually needed (e.g. because < 3 GB
  2194. memory).
  2195. noforce
  2196. Don't force hardware IOMMU usage when it is not
  2197. needed. (default).
  2198. biomerge
  2199. panic
  2200. nopanic
  2201. merge
  2202. nomerge
  2203. soft
  2204. Use software bounce buffering (SWIOTLB) (default for
  2205. Intel machines). This can be used to prevent the usage
  2206. of an available hardware IOMMU.
  2207. [X86]
  2208. pt
  2209. [X86]
  2210. nopt
  2211. [PPC/POWERNV]
  2212. nobypass
  2213. Disable IOMMU bypass, using IOMMU for PCI devices.
  2214. [X86]
  2215. AMD Gart HW IOMMU-specific options:
  2216. <size>
  2217. Set the size of the remapping area in bytes.
  2218. allowed
  2219. Overwrite iommu off workarounds for specific chipsets
  2220. fullflush
  2221. Flush IOMMU on each allocation (default).
  2222. nofullflush
  2223. Don't use IOMMU fullflush.
  2224. memaper[=<order>]
  2225. Allocate an own aperture over RAM with size
  2226. 32MB<<order. (default: order=1, i.e. 64MB)
  2227. merge
  2228. Do scatter-gather (SG) merging. Implies "force"
  2229. (experimental).
  2230. nomerge
  2231. Don't do scatter-gather (SG) merging.
  2232. noaperture
  2233. Ask the IOMMU not to touch the aperture for AGP.
  2234. noagp
  2235. Don't initialize the AGP driver and use full aperture.
  2236. panic
  2237. Always panic when IOMMU overflows.
  2238. iommu.forcedac= [ARM64,X86,EARLY] Control IOVA allocation for PCI devices.
  2239. Format: { "0" | "1" }
  2240. 0 - Try to allocate a 32-bit DMA address first, before
  2241. falling back to the full range if needed.
  2242. 1 - Allocate directly from the full usable range,
  2243. forcing Dual Address Cycle for PCI cards supporting
  2244. greater than 32-bit addressing.
  2245. iommu.strict= [ARM64,X86,S390,EARLY] Configure TLB invalidation behaviour
  2246. Format: { "0" | "1" }
  2247. 0 - Lazy mode.
  2248. Request that DMA unmap operations use deferred
  2249. invalidation of hardware TLBs, for increased
  2250. throughput at the cost of reduced device isolation.
  2251. Will fall back to strict mode if not supported by
  2252. the relevant IOMMU driver.
  2253. 1 - Strict mode.
  2254. DMA unmap operations invalidate IOMMU hardware TLBs
  2255. synchronously.
  2256. unset - Use value of CONFIG_IOMMU_DEFAULT_DMA_{LAZY,STRICT}.
  2257. Note: on x86, strict mode specified via one of the
  2258. legacy driver-specific options takes precedence.
  2259. iommu.passthrough=
  2260. [ARM64,X86,EARLY] Configure DMA to bypass the IOMMU by default.
  2261. Format: { "0" | "1" }
  2262. 0 - Use IOMMU translation for DMA.
  2263. 1 - Bypass the IOMMU for DMA.
  2264. unset - Use value of CONFIG_IOMMU_DEFAULT_PASSTHROUGH.
  2265. iommu.debug_pagealloc=
  2266. [KNL,EARLY] When CONFIG_IOMMU_DEBUG_PAGEALLOC is set, this
  2267. parameter enables the feature at boot time. By default, it
  2268. is disabled and the system behaves the same way as a kernel
  2269. built without CONFIG_IOMMU_DEBUG_PAGEALLOC.
  2270. Format: { "0" | "1" }
  2271. 0 - Sanitizer disabled.
  2272. 1 - Sanitizer enabled, expect runtime overhead.
  2273. io7= [HW] IO7 for Marvel-based Alpha systems
  2274. See comment before marvel_specify_io7 in
  2275. arch/alpha/kernel/core_marvel.c.
  2276. io_delay= [X86,EARLY] I/O delay method
  2277. 0x80
  2278. Standard port 0x80 based delay
  2279. 0xed
  2280. Alternate port 0xed based delay (needed on some systems)
  2281. udelay
  2282. Simple two microseconds delay
  2283. none
  2284. No delay
  2285. ip= [IP_PNP]
  2286. See Documentation/admin-guide/nfs/nfsroot.rst.
  2287. ipcmni_extend [KNL,EARLY] Extend the maximum number of unique System V
  2288. IPC identifiers from 32,768 to 16,777,216.
  2289. ipe.enforce= [IPE]
  2290. Format: <bool>
  2291. Determine whether IPE starts in permissive (0) or
  2292. enforce (1) mode. The default is enforce.
  2293. ipe.success_audit=
  2294. [IPE]
  2295. Format: <bool>
  2296. Start IPE with success auditing enabled, emitting
  2297. an audit event when a binary is allowed. The default
  2298. is 0.
  2299. irqaffinity= [SMP] Set the default irq affinity mask
  2300. The argument is a cpu list, as described above.
  2301. irqchip.gicv2_force_probe=
  2302. [ARM,ARM64,EARLY]
  2303. Format: <bool>
  2304. Force the kernel to look for the second 4kB page
  2305. of a GICv2 controller even if the memory range
  2306. exposed by the device tree is too small.
  2307. irqchip.gicv3_nolpi=
  2308. [ARM,ARM64,EARLY]
  2309. Force the kernel to ignore the availability of
  2310. LPIs (and by consequence ITSs). Intended for system
  2311. that use the kernel as a bootloader, and thus want
  2312. to let secondary kernels in charge of setting up
  2313. LPIs.
  2314. irqchip.gicv3_pseudo_nmi= [ARM64,EARLY]
  2315. Enables support for pseudo-NMIs in the kernel. This
  2316. requires the kernel to be built with
  2317. CONFIG_ARM64_PSEUDO_NMI.
  2318. irqchip.riscv_imsic_noipi
  2319. [RISC-V,EARLY]
  2320. Force the kernel to not use IMSIC software injected MSIs
  2321. as IPIs. Intended for system where IMSIC is trap-n-emulated,
  2322. and thus want to reduce MMIO traps when triggering IPIs
  2323. to multiple harts.
  2324. irqfixup [HW]
  2325. When an interrupt is not handled search all handlers
  2326. for it. Intended to get systems with badly broken
  2327. firmware running.
  2328. irqhandler.duration_warn_us= [KNL]
  2329. Warn if an IRQ handler exceeds the specified duration
  2330. threshold in microseconds. Useful for identifying
  2331. long-running IRQs in the system.
  2332. irqpoll [HW]
  2333. When an interrupt is not handled search all handlers
  2334. for it. Also check all handlers each timer
  2335. interrupt. Intended to get systems with badly broken
  2336. firmware running.
  2337. isapnp= [ISAPNP]
  2338. Format: <RDP>,<reset>,<pci_scan>,<verbosity>
  2339. isolcpus= [KNL,SMP,ISOL] Isolate a given set of CPUs from disturbance.
  2340. [Deprecated - use cpusets instead]
  2341. Format: [flag-list,]<cpu-list>
  2342. Specify one or more CPUs to isolate from disturbances
  2343. specified in the flag list (default: domain):
  2344. nohz
  2345. Disable the tick when a single task runs as well as
  2346. disabling other kernel noises like having RCU callbacks
  2347. offloaded. This is equivalent to the nohz_full parameter.
  2348. A residual 1Hz tick is offloaded to workqueues, which you
  2349. need to affine to housekeeping through the global
  2350. workqueue's affinity configured via the
  2351. /sys/devices/virtual/workqueue/cpumask sysfs file, or
  2352. by using the 'domain' flag described below.
  2353. NOTE: by default the global workqueue runs on all CPUs,
  2354. so to protect individual CPUs the 'cpumask' file has to
  2355. be configured manually after bootup.
  2356. domain
  2357. Isolate from the general SMP balancing and scheduling
  2358. algorithms. Note that performing domain isolation this way
  2359. is irreversible: it's not possible to bring back a CPU to
  2360. the domains once isolated through isolcpus. It's strongly
  2361. advised to use cpusets instead to disable scheduler load
  2362. balancing through the "cpuset.sched_load_balance" file.
  2363. It offers a much more flexible interface where CPUs can
  2364. move in and out of an isolated set anytime.
  2365. You can move a process onto or off an "isolated" CPU via
  2366. the CPU affinity syscalls or cpuset.
  2367. <cpu number> begins at 0 and the maximum value is
  2368. "number of CPUs in system - 1".
  2369. managed_irq
  2370. Isolate from being targeted by managed interrupts
  2371. which have an interrupt mask containing isolated
  2372. CPUs. The affinity of managed interrupts is
  2373. handled by the kernel and cannot be changed via
  2374. the /proc/irq/* interfaces.
  2375. This isolation is best effort and only effective
  2376. if the automatically assigned interrupt mask of a
  2377. device queue contains isolated and housekeeping
  2378. CPUs. If housekeeping CPUs are online then such
  2379. interrupts are directed to the housekeeping CPU
  2380. so that IO submitted on the housekeeping CPU
  2381. cannot disturb the isolated CPU.
  2382. If a queue's affinity mask contains only isolated
  2383. CPUs then this parameter has no effect on the
  2384. interrupt routing decision, though interrupts are
  2385. only delivered when tasks running on those
  2386. isolated CPUs submit IO. IO submitted on
  2387. housekeeping CPUs has no influence on those
  2388. queues.
  2389. The format of <cpu-list> is described above.
  2390. iucv= [HW,NET]
  2391. ivrs_ioapic [HW,X86-64]
  2392. Provide an override to the IOAPIC-ID<->DEVICE-ID
  2393. mapping provided in the IVRS ACPI table.
  2394. By default, PCI segment is 0, and can be omitted.
  2395. For example, to map IOAPIC-ID decimal 10 to
  2396. PCI segment 0x1 and PCI device 00:14.0,
  2397. write the parameter as:
  2398. ivrs_ioapic=10@0001:00:14.0
  2399. Deprecated formats:
  2400. * To map IOAPIC-ID decimal 10 to PCI device 00:14.0
  2401. write the parameter as:
  2402. ivrs_ioapic[10]=00:14.0
  2403. * To map IOAPIC-ID decimal 10 to PCI segment 0x1 and
  2404. PCI device 00:14.0 write the parameter as:
  2405. ivrs_ioapic[10]=0001:00:14.0
  2406. ivrs_hpet [HW,X86-64]
  2407. Provide an override to the HPET-ID<->DEVICE-ID
  2408. mapping provided in the IVRS ACPI table.
  2409. By default, PCI segment is 0, and can be omitted.
  2410. For example, to map HPET-ID decimal 10 to
  2411. PCI segment 0x1 and PCI device 00:14.0,
  2412. write the parameter as:
  2413. ivrs_hpet=10@0001:00:14.0
  2414. Deprecated formats:
  2415. * To map HPET-ID decimal 0 to PCI device 00:14.0
  2416. write the parameter as:
  2417. ivrs_hpet[0]=00:14.0
  2418. * To map HPET-ID decimal 10 to PCI segment 0x1 and
  2419. PCI device 00:14.0 write the parameter as:
  2420. ivrs_ioapic[10]=0001:00:14.0
  2421. ivrs_acpihid [HW,X86-64]
  2422. Provide an override to the ACPI-HID:UID<->DEVICE-ID
  2423. mapping provided in the IVRS ACPI table.
  2424. By default, PCI segment is 0, and can be omitted.
  2425. For example, to map UART-HID:UID AMD0020:0 to
  2426. PCI segment 0x1 and PCI device ID 00:14.5,
  2427. write the parameter as:
  2428. ivrs_acpihid=AMD0020:0@0001:00:14.5
  2429. Deprecated formats:
  2430. * To map UART-HID:UID AMD0020:0 to PCI segment is 0,
  2431. PCI device ID 00:14.5, write the parameter as:
  2432. ivrs_acpihid[00:14.5]=AMD0020:0
  2433. * To map UART-HID:UID AMD0020:0 to PCI segment 0x1 and
  2434. PCI device ID 00:14.5, write the parameter as:
  2435. ivrs_acpihid[0001:00:14.5]=AMD0020:0
  2436. js= [HW,JOY] Analog joystick
  2437. See Documentation/input/joydev/joystick.rst.
  2438. kasan_multi_shot
  2439. [KNL] Enforce KASAN (Kernel Address Sanitizer) to print
  2440. report on every invalid memory access. Without this
  2441. parameter KASAN will print report only for the first
  2442. invalid access.
  2443. keep_bootcon [KNL,EARLY]
  2444. Do not unregister boot console at start. This is only
  2445. useful for debugging when something happens in the window
  2446. between unregistering the boot console and initializing
  2447. the real console.
  2448. keepinitrd [HW,ARM] See retain_initrd.
  2449. kernelcore= [KNL,X86,PPC,EARLY]
  2450. Format: nn[KMGTPE] | nn% | "mirror"
  2451. This parameter specifies the amount of memory usable by
  2452. the kernel for non-movable allocations. The requested
  2453. amount is spread evenly throughout all nodes in the
  2454. system as ZONE_NORMAL. The remaining memory is used for
  2455. movable memory in its own zone, ZONE_MOVABLE. In the
  2456. event, a node is too small to have both ZONE_NORMAL and
  2457. ZONE_MOVABLE, kernelcore memory will take priority and
  2458. other nodes will have a larger ZONE_MOVABLE.
  2459. ZONE_MOVABLE is used for the allocation of pages that
  2460. may be reclaimed or moved by the page migration
  2461. subsystem. Note that allocations like PTEs-from-HighMem
  2462. still use the HighMem zone if it exists, and the Normal
  2463. zone if it does not.
  2464. It is possible to specify the exact amount of memory in
  2465. the form of "nn[KMGTPE]", a percentage of total system
  2466. memory in the form of "nn%", or "mirror". If "mirror"
  2467. option is specified, mirrored (reliable) memory is used
  2468. for non-movable allocations and remaining memory is used
  2469. for Movable pages. "nn[KMGTPE]", "nn%", and "mirror"
  2470. are exclusive, so you cannot specify multiple forms.
  2471. kfence.burst= [MM,KFENCE] The number of additional successive
  2472. allocations to be attempted through KFENCE for each
  2473. sample interval.
  2474. Format: <unsigned integer>
  2475. Default: 0
  2476. kfence.check_on_panic=
  2477. [MM,KFENCE] Whether to check all KFENCE-managed objects'
  2478. canaries on panic.
  2479. Format: <bool>
  2480. Default: false
  2481. kfence.deferrable=
  2482. [MM,KFENCE] Whether to use a deferrable timer to trigger
  2483. allocations. This avoids forcing CPU wake-ups if the
  2484. system is idle, at the risk of a less predictable
  2485. sample interval.
  2486. Format: <bool>
  2487. Default: CONFIG_KFENCE_DEFERRABLE
  2488. kfence.sample_interval=
  2489. [MM,KFENCE] KFENCE's sample interval in milliseconds.
  2490. Format: <unsigned integer>
  2491. 0 - Disable KFENCE.
  2492. >0 - Enabled KFENCE with given sample interval.
  2493. Default: CONFIG_KFENCE_SAMPLE_INTERVAL
  2494. kfence.skip_covered_thresh=
  2495. [MM,KFENCE] If pool utilization reaches this threshold
  2496. (pool usage%), KFENCE limits currently covered
  2497. allocations of the same source from further filling
  2498. up the pool.
  2499. Format: <unsigned integer>
  2500. Default: 75
  2501. kgdbdbgp= [KGDB,HW,EARLY] kgdb over EHCI usb debug port.
  2502. Format: <Controller#>[,poll interval]
  2503. The controller # is the number of the ehci usb debug
  2504. port as it is probed via PCI. The poll interval is
  2505. optional and is the number seconds in between
  2506. each poll cycle to the debug port in case you need
  2507. the functionality for interrupting the kernel with
  2508. gdb or control-c on the dbgp connection. When
  2509. not using this parameter you use sysrq-g to break into
  2510. the kernel debugger.
  2511. kgdboc= [KGDB,HW] kgdb over consoles.
  2512. Requires a tty driver that supports console polling,
  2513. or a supported polling keyboard driver (non-usb).
  2514. Serial only format: <serial_device>[,baud]
  2515. keyboard only format: kbd
  2516. keyboard and serial format: kbd,<serial_device>[,baud]
  2517. Optional Kernel mode setting:
  2518. kms, kbd format: kms,kbd
  2519. kms, kbd and serial format: kms,kbd,<ser_dev>[,baud]
  2520. kgdboc_earlycon= [KGDB,HW,EARLY]
  2521. If the boot console provides the ability to read
  2522. characters and can work in polling mode, you can use
  2523. this parameter to tell kgdb to use it as a backend
  2524. until the normal console is registered. Intended to
  2525. be used together with the kgdboc parameter which
  2526. specifies the normal console to transition to.
  2527. The name of the early console should be specified
  2528. as the value of this parameter. Note that the name of
  2529. the early console might be different than the tty
  2530. name passed to kgdboc. It's OK to leave the value
  2531. blank and the first boot console that implements
  2532. read() will be picked.
  2533. kgdbwait [KGDB,EARLY] Stop kernel execution and enter the
  2534. kernel debugger at the earliest opportunity.
  2535. kho= [KEXEC,EARLY]
  2536. Format: { "0" | "1" | "off" | "on" | "y" | "n" }
  2537. Enables or disables Kexec HandOver.
  2538. "0" | "off" | "n" - kexec handover is disabled
  2539. "1" | "on" | "y" - kexec handover is enabled
  2540. kho_scratch= [KEXEC,EARLY]
  2541. Format: ll[KMG],mm[KMG],nn[KMG] | nn%
  2542. Defines the size of the KHO scratch region. The KHO
  2543. scratch regions are physically contiguous memory
  2544. ranges that can only be used for non-kernel
  2545. allocations. That way, even when memory is heavily
  2546. fragmented with handed over memory, the kexeced
  2547. kernel will always have enough contiguous ranges to
  2548. bootstrap itself.
  2549. It is possible to specify the exact amount of
  2550. memory in the form of "ll[KMG],mm[KMG],nn[KMG]"
  2551. where the first parameter defines the size of a low
  2552. memory scratch area, the second parameter defines
  2553. the size of a global scratch area and the third
  2554. parameter defines the size of additional per-node
  2555. scratch areas. The form "nn%" defines scale factor
  2556. (in percents) of memory that was used during boot.
  2557. kmac= [MIPS] Korina ethernet MAC address.
  2558. Configure the RouterBoard 532 series on-chip
  2559. Ethernet adapter MAC address.
  2560. kmemleak= [KNL,EARLY] Boot-time kmemleak enable/disable
  2561. Valid arguments: on, off
  2562. Default: on
  2563. Built with CONFIG_DEBUG_KMEMLEAK_DEFAULT_OFF=y,
  2564. the default is off.
  2565. kprobe_event=[probe-list]
  2566. [FTRACE] Add kprobe events and enable at boot time.
  2567. The probe-list is a semicolon delimited list of probe
  2568. definitions. Each definition is same as kprobe_events
  2569. interface, but the parameters are comma delimited.
  2570. For example, to add a kprobe event on vfs_read with
  2571. arg1 and arg2, add to the command line;
  2572. kprobe_event=p,vfs_read,$arg1,$arg2
  2573. See also Documentation/trace/kprobetrace.rst "Kernel
  2574. Boot Parameter" section.
  2575. kpti= [ARM64,EARLY] Control page table isolation of
  2576. user and kernel address spaces.
  2577. Default: enabled on cores which need mitigation.
  2578. 0: force disabled
  2579. 1: force enabled
  2580. kunit.enable= [KUNIT] Enable executing KUnit tests. Requires
  2581. CONFIG_KUNIT to be set to be fully enabled. The
  2582. default value can be overridden via
  2583. KUNIT_DEFAULT_ENABLED.
  2584. Default is 1 (enabled)
  2585. kvm.ignore_msrs=[KVM] Ignore guest accesses to unhandled MSRs.
  2586. Default is 0 (don't ignore, but inject #GP)
  2587. kvm.eager_page_split=
  2588. [KVM,X86] Controls whether or not KVM will try to
  2589. proactively split all huge pages during dirty logging.
  2590. Eager page splitting reduces interruptions to vCPU
  2591. execution by eliminating the write-protection faults
  2592. and MMU lock contention that would otherwise be
  2593. required to split huge pages lazily.
  2594. VM workloads that rarely perform writes or that write
  2595. only to a small region of VM memory may benefit from
  2596. disabling eager page splitting to allow huge pages to
  2597. still be used for reads.
  2598. The behavior of eager page splitting depends on whether
  2599. KVM_DIRTY_LOG_INITIALLY_SET is enabled or disabled. If
  2600. disabled, all huge pages in a memslot will be eagerly
  2601. split when dirty logging is enabled on that memslot. If
  2602. enabled, eager page splitting will be performed during
  2603. the KVM_CLEAR_DIRTY ioctl, and only for the pages being
  2604. cleared.
  2605. Eager page splitting is only supported when kvm.tdp_mmu=Y.
  2606. Default is Y (on).
  2607. kvm.enable_pmu=[KVM,X86]
  2608. If enabled, KVM will virtualize PMU functionality based
  2609. on the virtual CPU model defined by userspace. This
  2610. can be overridden on a per-VM basis via
  2611. KVM_CAP_PMU_CAPABILITY.
  2612. If disabled, KVM will not virtualize PMU functionality,
  2613. e.g. MSRs, PMCs, PMIs, etc., even if userspace defines
  2614. a virtual CPU model that contains PMU assets.
  2615. Note, KVM's vPMU support implicitly requires running
  2616. with an in-kernel local APIC, e.g. to deliver PMIs to
  2617. the guest. Running without an in-kernel local APIC is
  2618. not supported, though KVM will allow such a combination
  2619. (with severely degraded functionality).
  2620. See also enable_mediated_pmu.
  2621. Default is Y (on).
  2622. kvm.enable_virt_at_load=[KVM,ARM64,LOONGARCH,MIPS,RISCV,X86]
  2623. If enabled, KVM will enable virtualization in hardware
  2624. when KVM is loaded, and disable virtualization when KVM
  2625. is unloaded (if KVM is built as a module).
  2626. If disabled, KVM will dynamically enable and disable
  2627. virtualization on-demand when creating and destroying
  2628. VMs, i.e. on the 0=>1 and 1=>0 transitions of the
  2629. number of VMs.
  2630. Enabling virtualization at module load avoids potential
  2631. latency for creation of the 0=>1 VM, as KVM serializes
  2632. virtualization enabling across all online CPUs. The
  2633. "cost" of enabling virtualization when KVM is loaded,
  2634. is that doing so may interfere with using out-of-tree
  2635. hypervisors that want to "own" virtualization hardware.
  2636. kvm.enable_vmware_backdoor=[KVM] Support VMware backdoor PV interface.
  2637. Default is false (don't support).
  2638. kvm.nx_huge_pages=
  2639. [KVM] Controls the software workaround for the
  2640. X86_BUG_ITLB_MULTIHIT bug.
  2641. force : Always deploy workaround.
  2642. off : Never deploy workaround.
  2643. auto : Deploy workaround based on the presence of
  2644. X86_BUG_ITLB_MULTIHIT.
  2645. Default is 'auto'.
  2646. If the software workaround is enabled for the host,
  2647. guests do need not to enable it for nested guests.
  2648. kvm.nx_huge_pages_recovery_ratio=
  2649. [KVM] Controls how many 4KiB pages are periodically zapped
  2650. back to huge pages. 0 disables the recovery, otherwise if
  2651. the value is N KVM will zap 1/Nth of the 4KiB pages every
  2652. period (see below). The default is 60.
  2653. kvm.nx_huge_pages_recovery_period_ms=
  2654. [KVM] Controls the time period at which KVM zaps 4KiB pages
  2655. back to huge pages. If the value is a non-zero N, KVM will
  2656. zap a portion (see ratio above) of the pages every N msecs.
  2657. If the value is 0 (the default), KVM will pick a period based
  2658. on the ratio, such that a page is zapped after 1 hour on average.
  2659. kvm-{amd,intel}.enable_mediated_pmu=[KVM,AMD,INTEL]
  2660. If enabled, KVM will provide a mediated virtual PMU,
  2661. instead of the default perf-based virtual PMU (if
  2662. kvm.enable_pmu is true and PMU is enumerated via the
  2663. virtual CPU model).
  2664. With a perf-based vPMU, KVM operates as a user of perf,
  2665. i.e. emulates guest PMU counters using perf events.
  2666. KVM-created perf events are managed by perf as regular
  2667. (guest-only) events, e.g. are scheduled in/out, contend
  2668. for hardware resources, etc. Using a perf-based vPMU
  2669. allows guest and host usage of the PMU to co-exist, but
  2670. incurs non-trivial overhead and can result in silently
  2671. dropped guest events (due to resource contention).
  2672. With a mediated vPMU, hardware PMU state is context
  2673. switched around the world switch to/from the guest.
  2674. KVM mediates which events the guest can utilize, but
  2675. gives the guest direct access to all other PMU assets
  2676. when possible (KVM may intercept some accesses if the
  2677. virtual CPU model provides a subset of hardware PMU
  2678. functionality). Using a mediated vPMU significantly
  2679. reduces PMU virtualization overhead and eliminates lost
  2680. guest events, but is mutually exclusive with using perf
  2681. to profile KVM guests and adds latency to most VM-Exits
  2682. (to context switch PMU state).
  2683. Default is N (off).
  2684. kvm-amd.nested= [KVM,AMD] Control nested virtualization feature in
  2685. KVM/SVM. Default is 1 (enabled).
  2686. kvm-amd.npt= [KVM,AMD] Control KVM's use of Nested Page Tables,
  2687. a.k.a. Two-Dimensional Page Tables. Default is 1
  2688. (enabled). Disable by KVM if hardware lacks support
  2689. for NPT.
  2690. kvm-amd.ciphertext_hiding_asids=
  2691. [KVM,AMD] Ciphertext hiding prevents disallowed accesses
  2692. to SNP private memory from reading ciphertext. Instead,
  2693. reads will see constant default values (0xff).
  2694. If ciphertext hiding is enabled, the joint SEV-ES and
  2695. SEV-SNP ASID space is partitioned into separate SEV-ES
  2696. and SEV-SNP ASID ranges, with the SEV-SNP range being
  2697. [1..max_snp_asid] and the SEV-ES range being
  2698. (max_snp_asid..min_sev_asid), where min_sev_asid is
  2699. enumerated by CPUID.0x.8000_001F[EDX].
  2700. A non-zero value enables SEV-SNP ciphertext hiding and
  2701. adjusts the ASID ranges for SEV-ES and SEV-SNP guests.
  2702. KVM caps the number of SEV-SNP ASIDs at the maximum
  2703. possible value, e.g. specifying -1u will assign all
  2704. joint SEV-ES and SEV-SNP ASIDs to SEV-SNP. Note,
  2705. assigning all joint ASIDs to SEV-SNP, i.e. configuring
  2706. max_snp_asid == min_sev_asid-1, will effectively make
  2707. SEV-ES unusable.
  2708. kvm-arm.mode=
  2709. [KVM,ARM,EARLY] Select one of KVM/arm64's modes of
  2710. operation.
  2711. none: Forcefully disable KVM.
  2712. nvhe: Standard nVHE-based mode, without support for
  2713. protected guests.
  2714. protected: Mode with support for guests whose state is
  2715. kept private from the host, using VHE or
  2716. nVHE depending on HW support.
  2717. nested: VHE-based mode with support for nested
  2718. virtualization. Requires at least ARMv8.4
  2719. hardware (with FEAT_NV2).
  2720. Defaults to VHE/nVHE based on hardware support. Setting
  2721. mode to "protected" will disable kexec and hibernation
  2722. for the host. To force nVHE on VHE hardware, add
  2723. "arm64_sw.hvhe=0 id_aa64mmfr1.vh=0" to the
  2724. command-line.
  2725. "nested" is experimental and should be used with
  2726. extreme caution.
  2727. kvm-arm.vgic_v3_group0_trap=
  2728. [KVM,ARM,EARLY] Trap guest accesses to GICv3 group-0
  2729. system registers
  2730. kvm-arm.vgic_v3_group1_trap=
  2731. [KVM,ARM,EARLY] Trap guest accesses to GICv3 group-1
  2732. system registers
  2733. kvm-arm.vgic_v3_common_trap=
  2734. [KVM,ARM,EARLY] Trap guest accesses to GICv3 common
  2735. system registers
  2736. kvm-arm.vgic_v4_enable=
  2737. [KVM,ARM,EARLY] Allow use of GICv4 for direct
  2738. injection of LPIs.
  2739. kvm-arm.wfe_trap_policy=
  2740. [KVM,ARM] Control when to set WFE instruction trap for
  2741. KVM VMs. Traps are allowed but not guaranteed by the
  2742. CPU architecture.
  2743. trap: set WFE instruction trap
  2744. notrap: clear WFE instruction trap
  2745. kvm-arm.wfi_trap_policy=
  2746. [KVM,ARM] Control when to set WFI instruction trap for
  2747. KVM VMs. Traps are allowed but not guaranteed by the
  2748. CPU architecture.
  2749. trap: set WFI instruction trap
  2750. notrap: clear WFI instruction trap
  2751. kvm_cma_resv_ratio=n [PPC,EARLY]
  2752. Reserves given percentage from system memory area for
  2753. contiguous memory allocation for KVM hash pagetable
  2754. allocation.
  2755. By default it reserves 5% of total system memory.
  2756. Format: <integer>
  2757. Default: 5
  2758. kvm-intel.ept= [KVM,Intel] Control KVM's use of Extended Page Tables,
  2759. a.k.a. Two-Dimensional Page Tables. Default is 1
  2760. (enabled). Disable by KVM if hardware lacks support
  2761. for EPT.
  2762. kvm-intel.emulate_invalid_guest_state=
  2763. [KVM,Intel] Control whether to emulate invalid guest
  2764. state. Ignored if kvm-intel.enable_unrestricted_guest=1,
  2765. as guest state is never invalid for unrestricted
  2766. guests. This param doesn't apply to nested guests (L2),
  2767. as KVM never emulates invalid L2 guest state.
  2768. Default is 1 (enabled).
  2769. kvm-intel.flexpriority=
  2770. [KVM,Intel] Control KVM's use of FlexPriority feature
  2771. (TPR shadow). Default is 1 (enabled). Disable by KVM if
  2772. hardware lacks support for it.
  2773. kvm-intel.nested=
  2774. [KVM,Intel] Control nested virtualization feature in
  2775. KVM/VMX. Default is 1 (enabled).
  2776. kvm-intel.unrestricted_guest=
  2777. [KVM,Intel] Control KVM's use of unrestricted guest
  2778. feature (virtualized real and unpaged mode). Default
  2779. is 1 (enabled). Disable by KVM if EPT is disabled or
  2780. hardware lacks support for it.
  2781. kvm-intel.vmentry_l1d_flush=[KVM,Intel] Mitigation for L1 Terminal Fault
  2782. CVE-2018-3620.
  2783. Valid arguments: never, cond, always
  2784. always: L1D cache flush on every VMENTER.
  2785. cond: Flush L1D on VMENTER only when the code between
  2786. VMEXIT and VMENTER can leak host memory.
  2787. never: Disables the mitigation
  2788. Default is cond (do L1 cache flush in specific instances)
  2789. kvm-intel.vpid= [KVM,Intel] Control KVM's use of Virtual Processor
  2790. Identification feature (tagged TLBs). Default is 1
  2791. (enabled). Disable by KVM if hardware lacks support
  2792. for it.
  2793. l1d_flush= [X86,INTEL,EARLY]
  2794. Control mitigation for L1D based snooping vulnerability.
  2795. Certain CPUs are vulnerable to an exploit against CPU
  2796. internal buffers which can forward information to a
  2797. disclosure gadget under certain conditions.
  2798. In vulnerable processors, the speculatively
  2799. forwarded data can be used in a cache side channel
  2800. attack, to access data to which the attacker does
  2801. not have direct access.
  2802. This parameter controls the mitigation. The
  2803. options are:
  2804. on - enable the interface for the mitigation
  2805. l1tf= [X86,EARLY] Control mitigation of the L1TF vulnerability on
  2806. affected CPUs
  2807. The kernel PTE inversion protection is unconditionally
  2808. enabled and cannot be disabled.
  2809. full
  2810. Provides all available mitigations for the
  2811. L1TF vulnerability. Disables SMT and
  2812. enables all mitigations in the
  2813. hypervisors, i.e. unconditional L1D flush.
  2814. SMT control and L1D flush control via the
  2815. sysfs interface is still possible after
  2816. boot. Hypervisors will issue a warning
  2817. when the first VM is started in a
  2818. potentially insecure configuration,
  2819. i.e. SMT enabled or L1D flush disabled.
  2820. full,force
  2821. Same as 'full', but disables SMT and L1D
  2822. flush runtime control. Implies the
  2823. 'nosmt=force' command line option.
  2824. (i.e. sysfs control of SMT is disabled.)
  2825. flush
  2826. Leaves SMT enabled and enables the default
  2827. hypervisor mitigation, i.e. conditional
  2828. L1D flush.
  2829. SMT control and L1D flush control via the
  2830. sysfs interface is still possible after
  2831. boot. Hypervisors will issue a warning
  2832. when the first VM is started in a
  2833. potentially insecure configuration,
  2834. i.e. SMT enabled or L1D flush disabled.
  2835. flush,nosmt
  2836. Disables SMT and enables the default
  2837. hypervisor mitigation.
  2838. SMT control and L1D flush control via the
  2839. sysfs interface is still possible after
  2840. boot. Hypervisors will issue a warning
  2841. when the first VM is started in a
  2842. potentially insecure configuration,
  2843. i.e. SMT enabled or L1D flush disabled.
  2844. flush,nowarn
  2845. Same as 'flush', but hypervisors will not
  2846. warn when a VM is started in a potentially
  2847. insecure configuration.
  2848. off
  2849. Disables hypervisor mitigations and doesn't
  2850. emit any warnings.
  2851. It also drops the swap size and available
  2852. RAM limit restriction on both hypervisor and
  2853. bare metal.
  2854. Default is 'flush'.
  2855. For details see: Documentation/admin-guide/hw-vuln/l1tf.rst
  2856. l2cr= [PPC]
  2857. l3cr= [PPC]
  2858. lapic [X86-32,APIC,EARLY] Enable the local APIC even if BIOS
  2859. disabled it.
  2860. lapic= [X86,APIC] Do not use TSC deadline
  2861. value for LAPIC timer one-shot implementation. Default
  2862. back to the programmable timer unit in the LAPIC.
  2863. Format: notscdeadline
  2864. lapic_timer_c2_ok [X86,APIC,EARLY] trust the local apic timer
  2865. in C2 power state.
  2866. libata.dma= [LIBATA] DMA control
  2867. libata.dma=0 Disable all PATA and SATA DMA
  2868. libata.dma=1 PATA and SATA Disk DMA only
  2869. libata.dma=2 ATAPI (CDROM) DMA only
  2870. libata.dma=4 Compact Flash DMA only
  2871. Combinations also work, so libata.dma=3 enables DMA
  2872. for disks and CDROMs, but not CFs.
  2873. libata.ignore_hpa= [LIBATA] Ignore HPA limit
  2874. libata.ignore_hpa=0 keep BIOS limits (default)
  2875. libata.ignore_hpa=1 ignore limits, using full disk
  2876. libata.noacpi [LIBATA] Disables use of ACPI in libata suspend/resume
  2877. when set.
  2878. Format: <int>
  2879. libata.force= [LIBATA] Force configurations. The format is a comma-
  2880. separated list of "[ID:]VAL" where ID is PORT[.DEVICE].
  2881. PORT and DEVICE are decimal numbers matching port, link
  2882. or device. Basically, it matches the ATA ID string
  2883. printed on console by libata. If the whole ID part is
  2884. omitted, the last PORT and DEVICE values are used. If
  2885. ID hasn't been specified yet, the configuration applies
  2886. to all ports, links and devices.
  2887. If only DEVICE is omitted, the parameter applies to
  2888. the port and all links and devices behind it. DEVICE
  2889. number of 0 either selects the first device or the
  2890. first fan-out link behind PMP device. It does not
  2891. select the host link. DEVICE number of 15 selects the
  2892. host link and device attached to it.
  2893. The VAL specifies the configuration to force. As long
  2894. as there is no ambiguity, shortcut notation is allowed.
  2895. For example, both 1.5 and 1.5G would work for 1.5Gbps.
  2896. The following configurations can be forced.
  2897. * Cable type: 40c, 80c, short40c, unk, ign or sata.
  2898. Any ID with matching PORT is used.
  2899. * SATA link speed limit: 1.5Gbps or 3.0Gbps.
  2900. * Transfer mode: pio[0-7], mwdma[0-4] and udma[0-7].
  2901. udma[/][16,25,33,44,66,100,133] notation is also
  2902. allowed.
  2903. * nohrst, nosrst, norst: suppress hard, soft and both
  2904. resets.
  2905. * rstonce: only attempt one reset during hot-unplug
  2906. link recovery.
  2907. * [no]dbdelay: Enable or disable the extra 200ms delay
  2908. before debouncing a link PHY and device presence
  2909. detection.
  2910. * [no]ncq: Turn on or off NCQ.
  2911. * [no]ncqtrim: Enable or disable queued DSM TRIM.
  2912. * [no]ncqati: Enable or disable NCQ trim on ATI chipset.
  2913. * [no]trim: Enable or disable (unqueued) TRIM.
  2914. * trim_zero: Indicate that TRIM command zeroes data.
  2915. * max_trim_128m: Set 128M maximum trim size limit.
  2916. * [no]dma: Turn on or off DMA transfers.
  2917. * atapi_dmadir: Enable ATAPI DMADIR bridge support.
  2918. * atapi_mod16_dma: Enable the use of ATAPI DMA for
  2919. commands that are not a multiple of 16 bytes.
  2920. * [no]dmalog: Enable or disable the use of the
  2921. READ LOG DMA EXT command to access logs.
  2922. * [no]iddevlog: Enable or disable access to the
  2923. identify device data log.
  2924. * [no]logdir: Enable or disable access to the general
  2925. purpose log directory.
  2926. * max_sec=<sectors>: Set the transfer size limit, in
  2927. number of 512-byte sectors, to the value specified in
  2928. <sectors>. The value specified in <sectors> has to be
  2929. a non-zero positive integer.
  2930. * max_sec_128: Set transfer size limit to 128 sectors.
  2931. * max_sec_1024: Set or clear transfer size limit to
  2932. 1024 sectors.
  2933. * max_sec_lba48: Set or clear transfer size limit to
  2934. 65535 sectors.
  2935. * external: Mark port as external (hotplug-capable).
  2936. * [no]lpm: Enable or disable link power management.
  2937. * [no]setxfer: Indicate if transfer speed mode setting
  2938. should be skipped.
  2939. * [no]fua: Disable or enable FUA (Force Unit Access)
  2940. support for devices supporting this feature.
  2941. * dump_id: Dump IDENTIFY data.
  2942. * disable: Disable this device.
  2943. If there are multiple matching configurations changing
  2944. the same attribute, the last one is used.
  2945. liveupdate= [KNL,EARLY]
  2946. Format: <bool>
  2947. Enable Live Update Orchestrator (LUO).
  2948. Default: off.
  2949. lockd.nlm_grace_period=P [NFS] Assign grace period.
  2950. Format: <integer>
  2951. lockd.nlm_tcpport=N [NFS] Assign TCP port.
  2952. Format: <integer>
  2953. lockd.nlm_timeout=T [NFS] Assign timeout value.
  2954. Format: <integer>
  2955. lockd.nlm_udpport=M [NFS] Assign UDP port.
  2956. Format: <integer>
  2957. lockdown= [SECURITY,EARLY]
  2958. { integrity | confidentiality }
  2959. Enable the kernel lockdown feature. If set to
  2960. integrity, kernel features that allow userland to
  2961. modify the running kernel are disabled. If set to
  2962. confidentiality, kernel features that allow userland
  2963. to extract confidential information from the kernel
  2964. are also disabled.
  2965. locktorture.acq_writer_lim= [KNL]
  2966. Set the time limit in jiffies for a lock
  2967. acquisition. Acquisitions exceeding this limit
  2968. will result in a splat once they do complete.
  2969. locktorture.bind_readers= [KNL]
  2970. Specify the list of CPUs to which the readers are
  2971. to be bound.
  2972. locktorture.bind_writers= [KNL]
  2973. Specify the list of CPUs to which the writers are
  2974. to be bound.
  2975. locktorture.call_rcu_chains= [KNL]
  2976. Specify the number of self-propagating call_rcu()
  2977. chains to set up. These are used to ensure that
  2978. there is a high probability of an RCU grace period
  2979. in progress at any given time. Defaults to 0,
  2980. which disables these call_rcu() chains.
  2981. locktorture.long_hold= [KNL]
  2982. Specify the duration in milliseconds for the
  2983. occasional long-duration lock hold time. Defaults
  2984. to 100 milliseconds. Select 0 to disable.
  2985. locktorture.nested_locks= [KNL]
  2986. Specify the maximum lock nesting depth that
  2987. locktorture is to exercise, up to a limit of 8
  2988. (MAX_NESTED_LOCKS). Specify zero to disable.
  2989. Note that this parameter is ineffective on types
  2990. of locks that do not support nested acquisition.
  2991. locktorture.nreaders_stress= [KNL]
  2992. Set the number of locking read-acquisition kthreads.
  2993. Defaults to being automatically set based on the
  2994. number of online CPUs.
  2995. locktorture.nwriters_stress= [KNL]
  2996. Set the number of locking write-acquisition kthreads.
  2997. locktorture.onoff_holdoff= [KNL]
  2998. Set time (s) after boot for CPU-hotplug testing.
  2999. locktorture.onoff_interval= [KNL]
  3000. Set time (s) between CPU-hotplug operations, or
  3001. zero to disable CPU-hotplug testing.
  3002. locktorture.rt_boost= [KNL]
  3003. Do periodic testing of real-time lock priority
  3004. boosting. Select 0 to disable, 1 to boost
  3005. only rt_mutex, and 2 to boost unconditionally.
  3006. Defaults to 2, which might seem to be an
  3007. odd choice, but which should be harmless for
  3008. non-real-time spinlocks, due to their disabling
  3009. of preemption. Note that non-realtime mutexes
  3010. disable boosting.
  3011. locktorture.rt_boost_factor= [KNL]
  3012. Number that determines how often and for how
  3013. long priority boosting is exercised. This is
  3014. scaled down by the number of writers, so that the
  3015. number of boosts per unit time remains roughly
  3016. constant as the number of writers increases.
  3017. On the other hand, the duration of each boost
  3018. increases with the number of writers.
  3019. locktorture.shuffle_interval= [KNL]
  3020. Set task-shuffle interval (jiffies). Shuffling
  3021. tasks allows some CPUs to go into dyntick-idle
  3022. mode during the locktorture test.
  3023. locktorture.shutdown_secs= [KNL]
  3024. Set time (s) after boot system shutdown. This
  3025. is useful for hands-off automated testing.
  3026. locktorture.stat_interval= [KNL]
  3027. Time (s) between statistics printk()s.
  3028. locktorture.stutter= [KNL]
  3029. Time (s) to stutter testing, for example,
  3030. specifying five seconds causes the test to run for
  3031. five seconds, wait for five seconds, and so on.
  3032. This tests the locking primitive's ability to
  3033. transition abruptly to and from idle.
  3034. locktorture.torture_type= [KNL]
  3035. Specify the locking implementation to test.
  3036. locktorture.verbose= [KNL]
  3037. Enable additional printk() statements.
  3038. locktorture.writer_fifo= [KNL]
  3039. Run the write-side locktorture kthreads at
  3040. sched_set_fifo() real-time priority.
  3041. logibm.irq= [HW,MOUSE] Logitech Bus Mouse Driver
  3042. Format: <irq>
  3043. loglevel= [KNL,EARLY]
  3044. All Kernel Messages with a loglevel smaller than the
  3045. console loglevel will be printed to the console. It can
  3046. also be changed with klogd or other programs. The
  3047. loglevels are defined as follows:
  3048. 0 (KERN_EMERG) system is unusable
  3049. 1 (KERN_ALERT) action must be taken immediately
  3050. 2 (KERN_CRIT) critical conditions
  3051. 3 (KERN_ERR) error conditions
  3052. 4 (KERN_WARNING) warning conditions
  3053. 5 (KERN_NOTICE) normal but significant condition
  3054. 6 (KERN_INFO) informational
  3055. 7 (KERN_DEBUG) debug-level messages
  3056. log_buf_len=n[KMG] [KNL,EARLY]
  3057. Sets the size of the printk ring buffer, in bytes.
  3058. n must be a power of two and greater than the
  3059. minimal size. The minimal size is defined by
  3060. LOG_BUF_SHIFT kernel config parameter. There
  3061. is also CONFIG_LOG_CPU_MAX_BUF_SHIFT config
  3062. parameter that allows to increase the default size
  3063. depending on the number of CPUs. See init/Kconfig
  3064. for more details.
  3065. logo.nologo [FB] Disables display of the built-in Linux logo.
  3066. This may be used to provide more screen space for
  3067. kernel log messages and is useful when debugging
  3068. kernel boot problems.
  3069. lp=0 [LP] Specify parallel ports to use, e.g,
  3070. lp=port[,port...] lp=none,parport0 (lp0 not configured, lp1 uses
  3071. lp=reset first parallel port). 'lp=0' disables the
  3072. lp=auto printer driver. 'lp=reset' (which can be
  3073. specified in addition to the ports) causes
  3074. attached printers to be reset. Using
  3075. lp=port1,port2,... specifies the parallel ports
  3076. to associate lp devices with, starting with
  3077. lp0. A port specification may be 'none' to skip
  3078. that lp device, or a parport name such as
  3079. 'parport0'. Specifying 'lp=auto' instead of a
  3080. port specification list means that device IDs
  3081. from each port should be examined, to see if
  3082. an IEEE 1284-compliant printer is attached; if
  3083. so, the driver will manage that printer.
  3084. See also header of drivers/char/lp.c.
  3085. lpj=n [KNL]
  3086. Sets loops_per_jiffy to given constant, thus avoiding
  3087. time-consuming boot-time autodetection (up to 250 ms per
  3088. CPU). 0 enables autodetection (default). To determine
  3089. the correct value for your kernel, boot with normal
  3090. autodetection and see what value is printed. Note that
  3091. on SMP systems the preset will be applied to all CPUs,
  3092. which is likely to cause problems if your CPUs need
  3093. significantly divergent settings. An incorrect value
  3094. will cause delays in the kernel to be wrong, leading to
  3095. unpredictable I/O errors and other breakage. Although
  3096. unlikely, in the extreme case this might damage your
  3097. hardware.
  3098. lsm.debug [SECURITY] Enable LSM initialization debugging output.
  3099. lsm=lsm1,...,lsmN
  3100. [SECURITY] Choose order of LSM initialization. This
  3101. overrides CONFIG_LSM, and the "security=" parameter.
  3102. machtype= [Loongson] Share the same kernel image file between
  3103. different yeeloong laptops.
  3104. Example: machtype=lemote-yeeloong-2f-7inch
  3105. maxcpus= [SMP,EARLY] Maximum number of processors that an SMP kernel
  3106. will bring up during bootup. maxcpus=n : n >= 0 limits
  3107. the kernel to bring up 'n' processors. Surely after
  3108. bootup you can bring up the other plugged cpu by executing
  3109. "echo 1 > /sys/devices/system/cpu/cpuX/online". So maxcpus
  3110. only takes effect during system bootup.
  3111. While n=0 is a special case, it is equivalent to "nosmp",
  3112. which also disables the IO APIC.
  3113. max_loop= [LOOP] The number of loop block devices that get
  3114. (loop.max_loop) unconditionally pre-created at init time. The default
  3115. number is configured by BLK_DEV_LOOP_MIN_COUNT. Instead
  3116. of statically allocating a predefined number, loop
  3117. devices can be requested on-demand with the
  3118. /dev/loop-control interface.
  3119. mce= [X86-{32,64}]
  3120. Please see Documentation/arch/x86/x86_64/machinecheck.rst for sysfs runtime tunables.
  3121. off
  3122. disable machine check
  3123. no_cmci
  3124. disable CMCI(Corrected Machine Check Interrupt) that
  3125. Intel processor supports. Usually this disablement is
  3126. not recommended, but it might be handy if your
  3127. hardware is misbehaving.
  3128. Note that you'll get more problems without CMCI than
  3129. with due to the shared banks, i.e. you might get
  3130. duplicated error logs.
  3131. dont_log_ce
  3132. don't make logs for corrected errors. All events
  3133. reported as corrected are silently cleared by OS. This
  3134. option will be useful if you have no interest in any
  3135. of corrected errors.
  3136. ignore_ce
  3137. disable features for corrected errors, e.g.
  3138. polling timer and CMCI. All events reported as
  3139. corrected are not cleared by OS and remained in its
  3140. error banks.
  3141. Usually this disablement is not recommended, however
  3142. if there is an agent checking/clearing corrected
  3143. errors (e.g. BIOS or hardware monitoring
  3144. applications), conflicting with OS's error handling,
  3145. and you cannot deactivate the agent, then this option
  3146. will be a help.
  3147. no_lmce
  3148. do not opt-in to Local MCE delivery. Use legacy method
  3149. to broadcast MCEs.
  3150. bootlog
  3151. enable logging of machine checks left over from
  3152. booting. Disabled by default on AMD Fam10h and older
  3153. because some BIOS leave bogus ones.
  3154. If your BIOS doesn't do that it's a good idea to
  3155. enable though to make sure you log even machine check
  3156. events that result in a reboot. On Intel systems it is
  3157. enabled by default.
  3158. nobootlog
  3159. disable boot machine check logging.
  3160. monarchtimeout (number)
  3161. sets the time in us to wait for other CPUs on machine
  3162. checks. 0 to disable.
  3163. bios_cmci_threshold
  3164. don't overwrite the bios-set CMCI threshold. This boot
  3165. option prevents Linux from overwriting the CMCI
  3166. threshold set by the bios. Without this option, Linux
  3167. always sets the CMCI threshold to 1. Enabling this may
  3168. make memory predictive failure analysis less effective
  3169. if the bios sets thresholds for memory errors since we
  3170. will not see details for all errors.
  3171. recovery
  3172. force-enable recoverable machine check code paths
  3173. Everything else is in sysfs now.
  3174. md= [HW] RAID subsystems devices and level
  3175. See Documentation/admin-guide/md.rst.
  3176. mdacon= [MDA]
  3177. Format: <first>,<last>
  3178. Specifies range of consoles to be captured by the MDA.
  3179. mds= [X86,INTEL,EARLY]
  3180. Control mitigation for the Micro-architectural Data
  3181. Sampling (MDS) vulnerability.
  3182. Certain CPUs are vulnerable to an exploit against CPU
  3183. internal buffers which can forward information to a
  3184. disclosure gadget under certain conditions.
  3185. In vulnerable processors, the speculatively
  3186. forwarded data can be used in a cache side channel
  3187. attack, to access data to which the attacker does
  3188. not have direct access.
  3189. This parameter controls the MDS mitigation. The
  3190. options are:
  3191. full - Enable MDS mitigation on vulnerable CPUs
  3192. full,nosmt - Enable MDS mitigation and disable
  3193. SMT on vulnerable CPUs
  3194. off - Unconditionally disable MDS mitigation
  3195. On TAA-affected machines, mds=off can be prevented by
  3196. an active TAA mitigation as both vulnerabilities are
  3197. mitigated with the same mechanism so in order to disable
  3198. this mitigation, you need to specify tsx_async_abort=off
  3199. too.
  3200. Not specifying this option is equivalent to
  3201. mds=full.
  3202. For details see: Documentation/admin-guide/hw-vuln/mds.rst
  3203. mem=nn[KMG] [HEXAGON,EARLY] Set the memory size.
  3204. Must be specified, otherwise memory size will be 0.
  3205. mem=nn[KMG] [KNL,BOOT,EARLY] Force usage of a specific amount
  3206. of memory Amount of memory to be used in cases
  3207. as follows:
  3208. 1 for test;
  3209. 2 when the kernel is not able to see the whole system memory;
  3210. 3 memory that lies after 'mem=' boundary is excluded from
  3211. the hypervisor, then assigned to KVM guests.
  3212. 4 to limit the memory available for kdump kernel.
  3213. [ARC,MICROBLAZE] - the limit applies only to low memory,
  3214. high memory is not affected.
  3215. [ARM64] - only limits memory covered by the linear
  3216. mapping. The NOMAP regions are not affected.
  3217. [X86] Work as limiting max address. Use together
  3218. with memmap= to avoid physical address space collisions.
  3219. Without memmap= PCI devices could be placed at addresses
  3220. belonging to unused RAM.
  3221. Note that this only takes effects during boot time since
  3222. in above case 3, memory may need be hot added after boot
  3223. if system memory of hypervisor is not sufficient.
  3224. mem=nn[KMG]@ss[KMG]
  3225. [ARM,MIPS,EARLY] - override the memory layout
  3226. reported by firmware.
  3227. Define a memory region of size nn[KMG] starting at
  3228. ss[KMG].
  3229. Multiple different regions can be specified with
  3230. multiple mem= parameters on the command line.
  3231. mem=nopentium [BUGS=X86-32] Disable usage of 4MB pages for kernel
  3232. memory.
  3233. memblock=debug [KNL,EARLY] Enable memblock debug messages.
  3234. memchunk=nn[KMG]
  3235. [KNL,SH] Allow user to override the default size for
  3236. per-device physically contiguous DMA buffers.
  3237. memhp_default_state=online/offline/online_kernel/online_movable
  3238. [KNL] Set the initial state for the memory hotplug
  3239. onlining policy. If not specified, the default value is
  3240. set according to the
  3241. CONFIG_MHP_DEFAULT_ONLINE_TYPE kernel config
  3242. options.
  3243. See Documentation/admin-guide/mm/memory-hotplug.rst.
  3244. memmap=exactmap [KNL,X86,EARLY] Enable setting of an exact
  3245. E820 memory map, as specified by the user.
  3246. Such memmap=exactmap lines can be constructed based on
  3247. BIOS output or other requirements. See the memmap=nn@ss
  3248. option description.
  3249. memmap=nn[KMG]@ss[KMG]
  3250. [KNL, X86,MIPS,XTENSA,EARLY] Force usage of a specific region of memory.
  3251. Region of memory to be used is from ss to ss+nn.
  3252. If @ss[KMG] is omitted, it is equivalent to mem=nn[KMG],
  3253. which limits max address to nn[KMG].
  3254. Multiple different regions can be specified,
  3255. comma delimited.
  3256. Example:
  3257. memmap=100M@2G,100M#3G,1G!1024G
  3258. memmap=nn[KMG]#ss[KMG]
  3259. [KNL,ACPI,EARLY] Mark specific memory as ACPI data.
  3260. Region of memory to be marked is from ss to ss+nn.
  3261. memmap=nn[KMG]$ss[KMG]
  3262. [KNL,ACPI,EARLY] Mark specific memory as reserved.
  3263. Region of memory to be reserved is from ss to ss+nn.
  3264. Example: Exclude memory from 0x18690000-0x1869ffff
  3265. memmap=64K$0x18690000
  3266. or
  3267. memmap=0x10000$0x18690000
  3268. Some bootloaders may need an escape character before '$',
  3269. like Grub2, otherwise '$' and the following number
  3270. will be eaten.
  3271. memmap=nn[KMG]!ss[KMG,EARLY]
  3272. [KNL,X86] Mark specific memory as protected.
  3273. Region of memory to be used, from ss to ss+nn.
  3274. The memory region may be marked as e820 type 12 (0xc)
  3275. and is NVDIMM or ADR memory.
  3276. memmap=<size>%<offset>-<oldtype>+<newtype>
  3277. [KNL,ACPI,EARLY] Convert memory within the specified region
  3278. from <oldtype> to <newtype>. If "-<oldtype>" is left
  3279. out, the whole region will be marked as <newtype>,
  3280. even if previously unavailable. If "+<newtype>" is left
  3281. out, matching memory will be removed. Types are
  3282. specified as e820 types, e.g., 1 = RAM, 2 = reserved,
  3283. 3 = ACPI, 12 = PRAM.
  3284. memory_corruption_check=0/1 [X86,EARLY]
  3285. Some BIOSes seem to corrupt the first 64k of
  3286. memory when doing things like suspend/resume.
  3287. Setting this option will scan the memory
  3288. looking for corruption. Enabling this will
  3289. both detect corruption and prevent the kernel
  3290. from using the memory being corrupted.
  3291. However, it's intended as a diagnostic tool; if
  3292. repeatable BIOS-originated corruption always
  3293. affects the same memory, you can use memmap=
  3294. to prevent the kernel from using that memory.
  3295. memory_corruption_check_size=size [X86,EARLY]
  3296. By default it checks for corruption in the low
  3297. 64k, making this memory unavailable for normal
  3298. use. Use this parameter to scan for
  3299. corruption in more or less memory.
  3300. memory_corruption_check_period=seconds [X86,EARLY]
  3301. By default it checks for corruption every 60
  3302. seconds. Use this parameter to check at some
  3303. other rate. 0 disables periodic checking.
  3304. memory_hotplug.memmap_on_memory
  3305. [KNL,X86,ARM] Boolean flag to enable this feature.
  3306. Format: {on | off (default)}
  3307. When enabled, runtime hotplugged memory will
  3308. allocate its internal metadata (struct pages,
  3309. those vmemmap pages cannot be optimized even
  3310. if hugetlb_free_vmemmap is enabled) from the
  3311. hotadded memory which will allow to hotadd a
  3312. lot of memory without requiring additional
  3313. memory to do so.
  3314. This feature is disabled by default because it
  3315. has some implication on large (e.g. GB)
  3316. allocations in some configurations (e.g. small
  3317. memory blocks).
  3318. The state of the flag can be read in
  3319. /sys/module/memory_hotplug/parameters/memmap_on_memory.
  3320. Note that even when enabled, there are a few cases where
  3321. the feature is not effective.
  3322. memtest= [KNL,X86,ARM,M68K,PPC,RISCV,EARLY] Enable memtest
  3323. Format: <integer>
  3324. default : 0 <disable>
  3325. Specifies the number of memtest passes to be
  3326. performed. Each pass selects another test
  3327. pattern from a given set of patterns. Memtest
  3328. fills the memory with this pattern, validates
  3329. memory contents and reserves bad memory
  3330. regions that are detected.
  3331. mem_encrypt= [X86-64] AMD Secure Memory Encryption (SME) control
  3332. Valid arguments: on, off
  3333. Default: off
  3334. mem_encrypt=on: Activate SME
  3335. mem_encrypt=off: Do not activate SME
  3336. Refer to Documentation/virt/kvm/x86/amd-memory-encryption.rst
  3337. for details on when memory encryption can be activated.
  3338. mem_sleep_default= [SUSPEND] Default system suspend mode:
  3339. s2idle - Suspend-To-Idle
  3340. shallow - Power-On Suspend or equivalent (if supported)
  3341. deep - Suspend-To-RAM or equivalent (if supported)
  3342. See Documentation/admin-guide/pm/sleep-states.rst.
  3343. mfgptfix [X86-32] Fix MFGPT timers on AMD Geode platforms when
  3344. the BIOS has incorrectly applied a workaround. TinyBIOS
  3345. version 0.98 is known to be affected, 0.99 fixes the
  3346. problem by letting the user disable the workaround.
  3347. mga= [HW,DRM]
  3348. microcode= [X86] Control the behavior of the microcode loader.
  3349. Available options, comma separated:
  3350. base_rev=X - with <X> with format: <u32>
  3351. Set the base microcode revision of each thread when in
  3352. debug mode.
  3353. dis_ucode_ldr: disable the microcode loader
  3354. force_minrev:
  3355. Enable or disable the microcode minimal revision
  3356. enforcement for the runtime microcode loader.
  3357. mini2440= [ARM,HW,KNL]
  3358. Format:[0..2][b][c][t]
  3359. Default: "0tb"
  3360. MINI2440 configuration specification:
  3361. 0 - The attached screen is the 3.5" TFT
  3362. 1 - The attached screen is the 7" TFT
  3363. 2 - The VGA Shield is attached (1024x768)
  3364. Leaving out the screen size parameter will not load
  3365. the TFT driver, and the framebuffer will be left
  3366. unconfigured.
  3367. b - Enable backlight. The TFT backlight pin will be
  3368. linked to the kernel VESA blanking code and a GPIO
  3369. LED. This parameter is not necessary when using the
  3370. VGA shield.
  3371. c - Enable the s3c camera interface.
  3372. t - Reserved for enabling touchscreen support. The
  3373. touchscreen support is not enabled in the mainstream
  3374. kernel as of 2.6.30, a preliminary port can be found
  3375. in the "bleeding edge" mini2440 support kernel at
  3376. https://repo.or.cz/w/linux-2.6/mini2440.git
  3377. mitigations=
  3378. [X86,PPC,S390,ARM64,EARLY] Control optional mitigations for
  3379. CPU vulnerabilities. This is a set of curated,
  3380. arch-independent options, each of which is an
  3381. aggregation of existing arch-specific options.
  3382. Note, "mitigations" is supported if and only if the
  3383. kernel was built with CPU_MITIGATIONS=y.
  3384. off
  3385. Disable all optional CPU mitigations. This
  3386. improves system performance, but it may also
  3387. expose users to several CPU vulnerabilities.
  3388. Equivalent to: if nokaslr then kpti=0 [ARM64]
  3389. gather_data_sampling=off [X86]
  3390. indirect_target_selection=off [X86]
  3391. kvm.nx_huge_pages=off [X86]
  3392. l1tf=off [X86]
  3393. mds=off [X86]
  3394. mmio_stale_data=off [X86]
  3395. no_entry_flush [PPC]
  3396. no_uaccess_flush [PPC]
  3397. nobp=0 [S390]
  3398. nopti [X86,PPC]
  3399. nospectre_bhb [ARM64]
  3400. nospectre_v1 [X86,PPC]
  3401. nospectre_v2 [X86,PPC,S390,ARM64]
  3402. reg_file_data_sampling=off [X86]
  3403. retbleed=off [X86]
  3404. spec_rstack_overflow=off [X86]
  3405. spec_store_bypass_disable=off [X86,PPC]
  3406. spectre_bhi=off [X86]
  3407. spectre_v2_user=off [X86]
  3408. srbds=off [X86,INTEL]
  3409. ssbd=force-off [ARM64]
  3410. tsa=off [X86,AMD]
  3411. tsx_async_abort=off [X86]
  3412. vmscape=off [X86]
  3413. Exceptions:
  3414. This does not have any effect on
  3415. kvm.nx_huge_pages when
  3416. kvm.nx_huge_pages=force.
  3417. auto (default)
  3418. Mitigate all CPU vulnerabilities, but leave SMT
  3419. enabled, even if it's vulnerable. This is for
  3420. users who don't want to be surprised by SMT
  3421. getting disabled across kernel upgrades, or who
  3422. have other ways of avoiding SMT-based attacks.
  3423. Equivalent to: (default behavior)
  3424. auto,nosmt
  3425. Mitigate all CPU vulnerabilities, disabling SMT
  3426. if needed. This is for users who always want to
  3427. be fully mitigated, even if it means losing SMT.
  3428. Equivalent to: l1tf=flush,nosmt [X86]
  3429. mds=full,nosmt [X86]
  3430. tsx_async_abort=full,nosmt [X86]
  3431. mmio_stale_data=full,nosmt [X86]
  3432. retbleed=auto,nosmt [X86]
  3433. [X86] After one of the above options, additionally
  3434. supports attack-vector based controls as documented in
  3435. Documentation/admin-guide/hw-vuln/attack_vector_controls.rst
  3436. mminit_loglevel=
  3437. [KNL,EARLY] When CONFIG_DEBUG_MEMORY_INIT is set, this
  3438. parameter allows control of the logging verbosity for
  3439. the additional memory initialisation checks. A value
  3440. of 0 disables mminit logging and a level of 4 will
  3441. log everything. Information is printed at KERN_DEBUG
  3442. so loglevel=8 may also need to be specified.
  3443. mmio_stale_data=
  3444. [X86,INTEL,EARLY] Control mitigation for the Processor
  3445. MMIO Stale Data vulnerabilities.
  3446. Processor MMIO Stale Data is a class of
  3447. vulnerabilities that may expose data after an MMIO
  3448. operation. Exposed data could originate or end in
  3449. the same CPU buffers as affected by MDS and TAA.
  3450. Therefore, similar to MDS and TAA, the mitigation
  3451. is to clear the affected CPU buffers.
  3452. This parameter controls the mitigation. The
  3453. options are:
  3454. full - Enable mitigation on vulnerable CPUs
  3455. full,nosmt - Enable mitigation and disable SMT on
  3456. vulnerable CPUs.
  3457. off - Unconditionally disable mitigation
  3458. On MDS or TAA affected machines,
  3459. mmio_stale_data=off can be prevented by an active
  3460. MDS or TAA mitigation as these vulnerabilities are
  3461. mitigated with the same mechanism so in order to
  3462. disable this mitigation, you need to specify
  3463. mds=off and tsx_async_abort=off too.
  3464. Not specifying this option is equivalent to
  3465. mmio_stale_data=full.
  3466. For details see:
  3467. Documentation/admin-guide/hw-vuln/processor_mmio_stale_data.rst
  3468. <module>.async_probe[=<bool>] [KNL]
  3469. If no <bool> value is specified or if the value
  3470. specified is not a valid <bool>, enable asynchronous
  3471. probe on this module. Otherwise, enable/disable
  3472. asynchronous probe on this module as indicated by the
  3473. <bool> value. See also: module.async_probe
  3474. module.async_probe=<bool>
  3475. [KNL] When set to true, modules will use async probing
  3476. by default. To enable/disable async probing for a
  3477. specific module, use the module specific control that
  3478. is documented under <module>.async_probe. When both
  3479. module.async_probe and <module>.async_probe are
  3480. specified, <module>.async_probe takes precedence for
  3481. the specific module.
  3482. module.enable_dups_trace
  3483. [KNL] When CONFIG_MODULE_DEBUG_AUTOLOAD_DUPS is set,
  3484. this means that duplicate request_module() calls will
  3485. trigger a WARN_ON() instead of a pr_warn(). Note that
  3486. if MODULE_DEBUG_AUTOLOAD_DUPS_TRACE is set, WARN_ON()s
  3487. will always be issued and this option does nothing.
  3488. module.sig_enforce
  3489. [KNL] When CONFIG_MODULE_SIG is set, this means that
  3490. modules without (valid) signatures will fail to load.
  3491. Note that if CONFIG_MODULE_SIG_FORCE is set, that
  3492. is always true, so this option does nothing.
  3493. module_blacklist= [KNL] Do not load a comma-separated list of
  3494. modules. Useful for debugging problem modules.
  3495. mousedev.tap_time=
  3496. [MOUSE] Maximum time between finger touching and
  3497. leaving touchpad surface for touch to be considered
  3498. a tap and be reported as a left button click (for
  3499. touchpads working in absolute mode only).
  3500. Format: <msecs>
  3501. mousedev.xres= [MOUSE] Horizontal screen resolution, used for devices
  3502. reporting absolute coordinates, such as tablets
  3503. mousedev.yres= [MOUSE] Vertical screen resolution, used for devices
  3504. reporting absolute coordinates, such as tablets
  3505. movablecore= [KNL,X86,PPC,EARLY]
  3506. Format: nn[KMGTPE] | nn%
  3507. This parameter is the complement to kernelcore=, it
  3508. specifies the amount of memory used for migratable
  3509. allocations. If both kernelcore and movablecore is
  3510. specified, then kernelcore will be at *least* the
  3511. specified value but may be more. If movablecore on its
  3512. own is specified, the administrator must be careful
  3513. that the amount of memory usable for all allocations
  3514. is not too small.
  3515. movable_node [KNL,EARLY] Boot-time switch to make hotplugable memory
  3516. NUMA nodes to be movable. This means that the memory
  3517. of such nodes will be usable only for movable
  3518. allocations which rules out almost all kernel
  3519. allocations. Use with caution!
  3520. MTD_Partition= [MTD]
  3521. Format: <name>,<region-number>,<size>,<offset>
  3522. MTD_Region= [MTD] Format:
  3523. <name>,<region-number>[,<base>,<size>,<buswidth>,<altbuswidth>]
  3524. mtdparts= [MTD]
  3525. See drivers/mtd/parsers/cmdlinepart.c
  3526. mtouchusb.raw_coordinates=
  3527. [HW] Make the MicroTouch USB driver use raw coordinates
  3528. ('y', default) or cooked coordinates ('n')
  3529. mtrr=debug [X86,EARLY]
  3530. Enable printing debug information related to MTRR
  3531. registers at boot time.
  3532. mtrr_chunk_size=nn[KMG,X86,EARLY]
  3533. used for mtrr cleanup. It is largest continuous chunk
  3534. that could hold holes aka. UC entries.
  3535. mtrr_gran_size=nn[KMG,X86,EARLY]
  3536. Used for mtrr cleanup. It is granularity of mtrr block.
  3537. Default is 1.
  3538. Large value could prevent small alignment from
  3539. using up MTRRs.
  3540. mtrr_spare_reg_nr=n [X86,EARLY]
  3541. Format: <integer>
  3542. Range: 0,7 : spare reg number
  3543. Default : 1
  3544. Used for mtrr cleanup. It is spare mtrr entries number.
  3545. Set to 2 or more if your graphical card needs more.
  3546. multitce=off [PPC] This parameter disables the use of the pSeries
  3547. firmware feature for updating multiple TCE entries
  3548. at a time.
  3549. n2= [NET] SDL Inc. RISCom/N2 synchronous serial card
  3550. netdev= [NET] Network devices parameters
  3551. Format: <irq>,<io>,<mem_start>,<mem_end>,<name>
  3552. Note that mem_start is often overloaded to mean
  3553. something different and driver-specific.
  3554. This usage is only documented in each driver source
  3555. file if at all.
  3556. netpoll.carrier_timeout=
  3557. [NET] Specifies amount of time (in seconds) that
  3558. netpoll should wait for a carrier. By default netpoll
  3559. waits 4 seconds.
  3560. nf_conntrack.acct=
  3561. [NETFILTER] Enable connection tracking flow accounting
  3562. 0 to disable accounting
  3563. 1 to enable accounting
  3564. Default value is 0.
  3565. nfs.cache_getent=
  3566. [NFS] sets the pathname to the program which is used
  3567. to update the NFS client cache entries.
  3568. nfs.cache_getent_timeout=
  3569. [NFS] sets the timeout after which an attempt to
  3570. update a cache entry is deemed to have failed.
  3571. nfs.callback_nr_threads=
  3572. [NFSv4] set the total number of threads that the
  3573. NFS client will assign to service NFSv4 callback
  3574. requests.
  3575. nfs.callback_tcpport=
  3576. [NFS] set the TCP port on which the NFSv4 callback
  3577. channel should listen.
  3578. nfs.delay_retrans=
  3579. [NFS] specifies the number of times the NFSv4 client
  3580. retries the request before returning an EAGAIN error,
  3581. after a reply of NFS4ERR_DELAY from the server.
  3582. Only applies if the softerr mount option is enabled,
  3583. and the specified value is >= 0.
  3584. nfs.enable_ino64=
  3585. [NFS] enable 64-bit inode numbers.
  3586. If zero, the NFS client will fake up a 32-bit inode
  3587. number for the readdir() and stat() syscalls instead
  3588. of returning the full 64-bit number.
  3589. The default is to return 64-bit inode numbers.
  3590. nfs.idmap_cache_timeout=
  3591. [NFS] set the maximum lifetime for idmapper cache
  3592. entries.
  3593. nfs.max_session_cb_slots=
  3594. [NFSv4.1] Sets the maximum number of session
  3595. slots the client will assign to the callback
  3596. channel. This determines the maximum number of
  3597. callbacks the client will process in parallel for
  3598. a particular server.
  3599. nfs.max_session_slots=
  3600. [NFSv4.1] Sets the maximum number of session slots
  3601. the client will attempt to negotiate with the server.
  3602. This limits the number of simultaneous RPC requests
  3603. that the client can send to the NFSv4.1 server.
  3604. Note that there is little point in setting this
  3605. value higher than the max_tcp_slot_table_limit.
  3606. nfs.nfs4_disable_idmapping=
  3607. [NFSv4] When set to the default of '1', this option
  3608. ensures that both the RPC level authentication
  3609. scheme and the NFS level operations agree to use
  3610. numeric uids/gids if the mount is using the
  3611. 'sec=sys' security flavour. In effect it is
  3612. disabling idmapping, which can make migration from
  3613. legacy NFSv2/v3 systems to NFSv4 easier.
  3614. Servers that do not support this mode of operation
  3615. will be autodetected by the client, and it will fall
  3616. back to using the idmapper.
  3617. To turn off this behaviour, set the value to '0'.
  3618. nfs.nfs4_unique_id=
  3619. [NFS4] Specify an additional fixed unique ident-
  3620. ification string that NFSv4 clients can insert into
  3621. their nfs_client_id4 string. This is typically a
  3622. UUID that is generated at system install time.
  3623. nfs.recover_lost_locks=
  3624. [NFSv4] Attempt to recover locks that were lost due
  3625. to a lease timeout on the server. Please note that
  3626. doing this risks data corruption, since there are
  3627. no guarantees that the file will remain unchanged
  3628. after the locks are lost.
  3629. If you want to enable the kernel legacy behaviour of
  3630. attempting to recover these locks, then set this
  3631. parameter to '1'.
  3632. The default parameter value of '0' causes the kernel
  3633. not to attempt recovery of lost locks.
  3634. nfs.send_implementation_id=
  3635. [NFSv4.1] Send client implementation identification
  3636. information in exchange_id requests.
  3637. If zero, no implementation identification information
  3638. will be sent.
  3639. The default is to send the implementation identification
  3640. information.
  3641. nfs4.layoutstats_timer=
  3642. [NFSv4.2] Change the rate at which the kernel sends
  3643. layoutstats to the pNFS metadata server.
  3644. Setting this to value to 0 causes the kernel to use
  3645. whatever value is the default set by the layout
  3646. driver. A non-zero value sets the minimum interval
  3647. in seconds between layoutstats transmissions.
  3648. nfsd.inter_copy_offload_enable=
  3649. [NFSv4.2] When set to 1, the server will support
  3650. server-to-server copies for which this server is
  3651. the destination of the copy.
  3652. nfsd.nfs4_disable_idmapping=
  3653. [NFSv4] When set to the default of '1', the NFSv4
  3654. server will return only numeric uids and gids to
  3655. clients using auth_sys, and will accept numeric uids
  3656. and gids from such clients. This is intended to ease
  3657. migration from NFSv2/v3.
  3658. nfsd.nfsd4_ssc_umount_timeout=
  3659. [NFSv4.2] When used as the destination of a
  3660. server-to-server copy, knfsd temporarily mounts
  3661. the source server. It caches the mount in case
  3662. it will be needed again, and discards it if not
  3663. used for the number of milliseconds specified by
  3664. this parameter.
  3665. nfsaddrs= [NFS] Deprecated. Use ip= instead.
  3666. See Documentation/admin-guide/nfs/nfsroot.rst.
  3667. nfsroot= [NFS] nfs root filesystem for disk-less boxes.
  3668. See Documentation/admin-guide/nfs/nfsroot.rst.
  3669. nfsrootdebug [NFS] enable nfsroot debugging messages.
  3670. See Documentation/admin-guide/nfs/nfsroot.rst.
  3671. nmi_backtrace.backtrace_idle [KNL]
  3672. Dump stacks even of idle CPUs in response to an
  3673. NMI stack-backtrace request.
  3674. nmi_debug= [KNL,SH] Specify one or more actions to take
  3675. when a NMI is triggered.
  3676. Format: [state][,regs][,debounce][,die]
  3677. nmi_watchdog= [KNL,BUGS=X86] Debugging features for SMP kernels
  3678. Format: [panic,][nopanic,][rNNN,][num]
  3679. Valid num: 0 or 1
  3680. 0 - turn hardlockup detector in nmi_watchdog off
  3681. 1 - turn hardlockup detector in nmi_watchdog on
  3682. rNNN - configure the watchdog with raw perf event 0xNNN
  3683. When panic is specified, panic when an NMI watchdog
  3684. timeout occurs (or 'nopanic' to not panic on an NMI
  3685. watchdog, if CONFIG_BOOTPARAM_HARDLOCKUP_PANIC is set)
  3686. To disable both hard and soft lockup detectors,
  3687. please see 'nowatchdog'.
  3688. This is useful when you use a panic=... timeout and
  3689. need the box quickly up again.
  3690. These settings can be accessed at runtime via
  3691. the nmi_watchdog and hardlockup_panic sysctls.
  3692. no387 [BUGS=X86-32] Tells the kernel to use the 387 maths
  3693. emulation library even if a 387 maths coprocessor
  3694. is present.
  3695. no4lvl [RISCV,EARLY] Disable 4-level and 5-level paging modes.
  3696. Forces kernel to use 3-level paging instead.
  3697. no5lvl [X86-64,RISCV,EARLY] Disable 5-level paging mode. Forces
  3698. kernel to use 4-level paging instead.
  3699. noalign [KNL,ARM]
  3700. noapic [SMP,APIC,EARLY] Tells the kernel to not make use of any
  3701. IOAPICs that may be present in the system.
  3702. noapictimer [APIC,X86] Don't set up the APIC timer
  3703. noautogroup Disable scheduler automatic task group creation.
  3704. nocache [ARM,EARLY]
  3705. no_console_suspend
  3706. [HW] Never suspend the console
  3707. Disable suspending of consoles during suspend and
  3708. hibernate operations. Once disabled, debugging
  3709. messages can reach various consoles while the rest
  3710. of the system is being put to sleep (ie, while
  3711. debugging driver suspend/resume hooks). This may
  3712. not work reliably with all consoles, but is known
  3713. to work with serial and VGA consoles.
  3714. To facilitate more flexible debugging, we also add
  3715. console_suspend, a printk module parameter to control
  3716. it. Users could use console_suspend (usually
  3717. /sys/module/printk/parameters/console_suspend) to
  3718. turn on/off it dynamically.
  3719. no_debug_objects
  3720. [KNL,EARLY] Disable object debugging
  3721. nodsp [SH] Disable hardware DSP at boot time.
  3722. noefi [EFI,EARLY] Disable EFI runtime services support.
  3723. no_entry_flush [PPC,EARLY] Don't flush the L1-D cache when entering the kernel.
  3724. noexec32 [X86-64]
  3725. This affects only 32-bit executables.
  3726. noexec32=on: enable non-executable mappings (default)
  3727. read doesn't imply executable mappings
  3728. noexec32=off: disable non-executable mappings
  3729. read implies executable mappings
  3730. no_file_caps Tells the kernel not to honor file capabilities. The
  3731. only way then for a file to be executed with privilege
  3732. is to be setuid root or executed by root.
  3733. nofpu [MIPS,SH] Disable hardware FPU at boot time.
  3734. nofsgsbase [X86] Disables FSGSBASE instructions.
  3735. nofxsr [BUGS=X86-32] Disables x86 floating point extended
  3736. register save and restore. The kernel will only save
  3737. legacy floating-point registers on task switch.
  3738. nogbpages [X86] Do not use GB pages for kernel direct mappings.
  3739. no_hash_pointers
  3740. [KNL,EARLY]
  3741. Alias for "hash_pointers=never".
  3742. nohibernate [HIBERNATION] Disable hibernation and resume.
  3743. nohlt [ARM,ARM64,MICROBLAZE,MIPS,PPC,RISCV,SH] Forces the kernel to
  3744. busy wait in do_idle() and not use the arch_cpu_idle()
  3745. implementation; requires CONFIG_GENERIC_IDLE_POLL_SETUP
  3746. to be effective. This is useful on platforms where the
  3747. sleep(SH) or wfi(ARM,ARM64) instructions do not work
  3748. correctly or when doing power measurements to evaluate
  3749. the impact of the sleep instructions. This is also
  3750. useful when using JTAG debugger.
  3751. nohpet [X86] Don't use the HPET timer.
  3752. nohugeiomap [KNL,X86,PPC,ARM64,EARLY] Disable kernel huge I/O mappings.
  3753. nohugevmalloc [KNL,X86,PPC,ARM64,EARLY] Disable kernel huge vmalloc mappings.
  3754. nohz= [KNL] Boottime enable/disable dynamic ticks
  3755. Valid arguments: on, off
  3756. Default: on
  3757. nohz_full= [KNL,BOOT,SMP,ISOL]
  3758. The argument is a cpu list, as described above.
  3759. In kernels built with CONFIG_NO_HZ_FULL=y, set
  3760. the specified list of CPUs whose tick will be stopped
  3761. whenever possible. The boot CPU will be forced outside
  3762. the range to maintain the timekeeping. Any CPUs
  3763. in this list will have their RCU callbacks offloaded,
  3764. just as if they had also been called out in the
  3765. rcu_nocbs= boot parameter.
  3766. Note that this argument takes precedence over
  3767. the CONFIG_RCU_NOCB_CPU_DEFAULT_ALL option.
  3768. noinitrd [Deprecated,RAM] Tells the kernel not to load any configured
  3769. initial RAM disk. Currently this parameter applies to
  3770. initrd only, not to initramfs. But it applies to both
  3771. in EFI mode.
  3772. nointremap [X86-64,Intel-IOMMU,EARLY] Do not enable interrupt
  3773. remapping.
  3774. [Deprecated - use intremap=off]
  3775. noinvpcid [X86,EARLY] Disable the INVPCID cpu feature.
  3776. noiotrap [SH] Disables trapped I/O port accesses.
  3777. noirqdebug [X86-32] Disables the code which attempts to detect and
  3778. disable unhandled interrupt sources.
  3779. noisapnp [ISAPNP] Disables ISA PnP code.
  3780. nokaslr [KNL,EARLY]
  3781. When CONFIG_RANDOMIZE_BASE is set, this disables
  3782. kernel and module base offset ASLR (Address Space
  3783. Layout Randomization).
  3784. no-kvmapf [X86,KVM,EARLY] Disable paravirtualized asynchronous page
  3785. fault handling.
  3786. no-kvmclock [X86,KVM,EARLY] Disable paravirtualized KVM clock driver
  3787. nolapic [X86-32,APIC,EARLY] Do not enable or use the local APIC.
  3788. nolapic_timer [X86-32,APIC,EARLY] Do not use the local APIC timer.
  3789. nomce [X86-32] Disable Machine Check Exception
  3790. nomfgpt [X86-32] Disable Multi-Function General Purpose
  3791. Timer usage (for AMD Geode machines).
  3792. nomodeset Disable kernel modesetting. Most systems' firmware
  3793. sets up a display mode and provides framebuffer memory
  3794. for output. With nomodeset, DRM and fbdev drivers will
  3795. not load if they could possibly displace the pre-
  3796. initialized output. Only the system framebuffer will
  3797. be available for use. The respective drivers will not
  3798. perform display-mode changes or accelerated rendering.
  3799. Useful as error fallback, or for testing and debugging.
  3800. nomodule Disable module load
  3801. nonmi_ipi [X86] Disable using NMI IPIs during panic/reboot to
  3802. shutdown the other cpus. Instead use the REBOOT_VECTOR
  3803. irq.
  3804. nopat [X86,EARLY] Disable PAT (page attribute table extension of
  3805. pagetables) support.
  3806. nopcid [X86-64,EARLY] Disable the PCID cpu feature.
  3807. nopku [X86] Disable Memory Protection Keys CPU feature found
  3808. in some Intel CPUs.
  3809. nopti [X86-64,EARLY]
  3810. Equivalent to pti=off
  3811. nopv= [X86,XEN,KVM,HYPER_V,VMWARE,EARLY]
  3812. Disables the PV optimizations forcing the guest to run
  3813. as generic guest with no PV drivers. Currently support
  3814. XEN HVM, KVM, HYPER_V and VMWARE guest.
  3815. nopvspin [X86,XEN,KVM,EARLY]
  3816. Disables the qspinlock slow path using PV optimizations
  3817. which allow the hypervisor to 'idle' the guest on lock
  3818. contention.
  3819. norandmaps Don't use address space randomization. Equivalent to
  3820. echo 0 > /proc/sys/kernel/randomize_va_space
  3821. noreplace-smp [X86-32,SMP] Don't replace SMP instructions
  3822. with UP alternatives
  3823. noresume [SWSUSP] Disables resume and restores original swap
  3824. space.
  3825. no-scroll [VGA] Disables scrollback.
  3826. This is required for the Braillex ib80-piezo Braille
  3827. reader made by F.H. Papenmeier (Germany).
  3828. nosgx [X86-64,SGX,EARLY] Disables Intel SGX kernel support.
  3829. nosmap [PPC,EARLY]
  3830. Disable SMAP (Supervisor Mode Access Prevention)
  3831. even if it is supported by processor.
  3832. nosmep [PPC64s,EARLY]
  3833. Disable SMEP (Supervisor Mode Execution Prevention)
  3834. even if it is supported by processor.
  3835. nosmp [SMP,EARLY] Tells an SMP kernel to act as a UP kernel,
  3836. and disable the IO APIC. legacy for "maxcpus=0".
  3837. nosmt [KNL,MIPS,PPC,EARLY] Disable symmetric multithreading (SMT).
  3838. Equivalent to smt=1.
  3839. [KNL,LOONGARCH,X86,PPC,S390] Disable symmetric multithreading (SMT).
  3840. nosmt=force: Force disable SMT, cannot be undone
  3841. via the sysfs control file.
  3842. nosoftlockup [KNL] Disable the soft-lockup detector.
  3843. nospec_store_bypass_disable
  3844. [HW,EARLY] Disable all mitigations for the Speculative
  3845. Store Bypass vulnerability
  3846. nospectre_bhb [ARM64,EARLY] Disable all mitigations for Spectre-BHB (branch
  3847. history injection) vulnerability. System may allow data leaks
  3848. with this option.
  3849. nospectre_v1 [X86,PPC,EARLY] Disable mitigations for Spectre Variant 1
  3850. (bounds check bypass). With this option data leaks are
  3851. possible in the system.
  3852. nospectre_v2 [X86,PPC_E500,ARM64,EARLY] Disable all mitigations
  3853. for the Spectre variant 2 (indirect branch
  3854. prediction) vulnerability. System may allow data
  3855. leaks with this option.
  3856. no-steal-acc [X86,PV_OPS,ARM64,PPC/PSERIES,RISCV,LOONGARCH,EARLY]
  3857. Disable paravirtualized steal time accounting. steal time
  3858. is computed, but won't influence scheduler behaviour
  3859. nosync [HW,M68K] Disables sync negotiation for all devices.
  3860. no_timer_check [X86,APIC] Disables the code which tests for broken
  3861. timer IRQ sources, i.e., the IO-APIC timer. This can
  3862. work around problems with incorrect timer
  3863. initialization on some boards.
  3864. no_uaccess_flush
  3865. [PPC,EARLY] Don't flush the L1-D cache after accessing user data.
  3866. novmcoredd [KNL,KDUMP]
  3867. Disable device dump. Device dump allows drivers to
  3868. append dump data to vmcore so you can collect driver
  3869. specified debug info. Drivers can append the data
  3870. without any limit and this data is stored in memory,
  3871. so this may cause significant memory stress. Disabling
  3872. device dump can help save memory but the driver debug
  3873. data will be no longer available. This parameter
  3874. is only available when CONFIG_PROC_VMCORE_DEVICE_DUMP
  3875. is set.
  3876. no-vmw-sched-clock
  3877. [X86,PV_OPS,EARLY] Disable paravirtualized VMware
  3878. scheduler clock and use the default one.
  3879. nowatchdog [KNL] Disable both lockup detectors, i.e.
  3880. soft-lockup and NMI watchdog (hard-lockup).
  3881. nowb [ARM,EARLY]
  3882. nox2apic [X86-64,APIC,EARLY] Do not enable x2APIC mode.
  3883. NOTE: this parameter will be ignored on systems with the
  3884. LEGACY_XAPIC_DISABLED bit set in the
  3885. IA32_XAPIC_DISABLE_STATUS MSR.
  3886. noxsave [BUGS=X86] Disables x86 extended register state save
  3887. and restore using xsave. The kernel will fallback to
  3888. enabling legacy floating-point and sse state.
  3889. noxsaveopt [X86] Disables xsaveopt used in saving x86 extended
  3890. register states. The kernel will fall back to use
  3891. xsave to save the states. By using this parameter,
  3892. performance of saving the states is degraded because
  3893. xsave doesn't support modified optimization while
  3894. xsaveopt supports it on xsaveopt enabled systems.
  3895. noxsaves [X86] Disables xsaves and xrstors used in saving and
  3896. restoring x86 extended register state in compacted
  3897. form of xsave area. The kernel will fall back to use
  3898. xsaveopt and xrstor to save and restore the states
  3899. in standard form of xsave area. By using this
  3900. parameter, xsave area per process might occupy more
  3901. memory on xsaves enabled systems.
  3902. nr_cpus= [SMP,EARLY] Maximum number of processors that an SMP kernel
  3903. could support. nr_cpus=n : n >= 1 limits the kernel to
  3904. support 'n' processors. It could be larger than the
  3905. number of already plugged CPU during bootup, later in
  3906. runtime you can physically add extra cpu until it reaches
  3907. n. So during boot up some boot time memory for per-cpu
  3908. variables need be pre-allocated for later physical cpu
  3909. hot plugging.
  3910. nr_uarts= [SERIAL] maximum number of UARTs to be registered.
  3911. numa=off [KNL, ARM64, PPC, RISCV, SPARC, X86, EARLY]
  3912. Disable NUMA, Only set up a single NUMA node
  3913. spanning all memory.
  3914. numa=fake=<size>[MG]
  3915. [KNL, ARM64, RISCV, X86, EARLY]
  3916. If given as a memory unit, fills all system RAM with
  3917. nodes of size interleaved over physical nodes.
  3918. numa=fake=<N>
  3919. [KNL, ARM64, RISCV, X86, EARLY]
  3920. If given as an integer, fills all system RAM with N
  3921. fake nodes interleaved over physical nodes.
  3922. numa=fake=<N>U
  3923. [KNL, ARM64, RISCV, X86, EARLY]
  3924. If given as an integer followed by 'U', it will
  3925. divide each physical node into N emulated nodes.
  3926. numa=noacpi [X86] Don't parse the SRAT table for NUMA setup
  3927. numa=nohmat [X86] Don't parse the HMAT table for NUMA setup, or
  3928. soft-reserved memory partitioning.
  3929. numa_balancing= [KNL,ARM64,PPC,RISCV,S390,X86] Enable or disable automatic
  3930. NUMA balancing.
  3931. Allowed values are enable and disable
  3932. numa_zonelist_order= [KNL, BOOT] Select zonelist order for NUMA.
  3933. 'node', 'default' can be specified
  3934. This can be set from sysctl after boot.
  3935. See Documentation/admin-guide/sysctl/vm.rst for details.
  3936. nvme.quirks= [NVME] A list of quirk entries to augment the built-in
  3937. nvme quirk list. List entries are separated by a
  3938. '-' character.
  3939. Each entry has the form VendorID:ProductID:quirk_names.
  3940. The IDs are 4-digits hex numbers and quirk_names is a
  3941. list of quirk names separated by commas. A quirk name
  3942. can be prefixed by '^', meaning that the specified
  3943. quirk must be disabled.
  3944. Example:
  3945. nvme.quirks=7710:2267:bogus_nid,^identify_cns-9900:7711:broken_msi
  3946. ohci1394_dma=early [HW,EARLY] enable debugging via the ohci1394 driver.
  3947. See Documentation/core-api/debugging-via-ohci1394.rst for more
  3948. info.
  3949. olpc_ec_timeout= [OLPC] ms delay when issuing EC commands
  3950. Rather than timing out after 20 ms if an EC
  3951. command is not properly ACKed, override the length
  3952. of the timeout. We have interrupts disabled while
  3953. waiting for the ACK, so if this is set too high
  3954. interrupts *may* be lost!
  3955. omap_mux= [OMAP] Override bootloader pin multiplexing.
  3956. Format: <mux_mode0.mode_name=value>...
  3957. For example, to override I2C bus2:
  3958. omap_mux=i2c2_scl.i2c2_scl=0x100,i2c2_sda.i2c2_sda=0x100
  3959. onenand.bdry= [HW,MTD] Flex-OneNAND Boundary Configuration
  3960. Format: [die0_boundary][,die0_lock][,die1_boundary][,die1_lock]
  3961. boundary - index of last SLC block on Flex-OneNAND.
  3962. The remaining blocks are configured as MLC blocks.
  3963. lock - Configure if Flex-OneNAND boundary should be locked.
  3964. Once locked, the boundary cannot be changed.
  3965. 1 indicates lock status, 0 indicates unlock status.
  3966. oops=panic [KNL,EARLY]
  3967. Always panic on oopses. Default is to just kill the
  3968. process, but there is a small probability of
  3969. deadlocking the machine.
  3970. This will also cause panics on machine check exceptions.
  3971. Useful together with panic=30 to trigger a reboot.
  3972. page_alloc.shuffle=
  3973. [KNL] Boolean flag to control whether the page allocator
  3974. should randomize its free lists. This parameter can be
  3975. used to enable/disable page randomization. The state of
  3976. the flag can be read from sysfs at:
  3977. /sys/module/page_alloc/parameters/shuffle.
  3978. This parameter is only available if CONFIG_SHUFFLE_PAGE_ALLOCATOR=y.
  3979. page_owner= [KNL,EARLY] Boot-time page_owner enabling option.
  3980. Storage of the information about who allocated
  3981. each page is disabled in default. With this switch,
  3982. we can turn it on.
  3983. on: enable the feature
  3984. page_poison= [KNL,EARLY] Boot-time parameter changing the state of
  3985. poisoning on the buddy allocator, available with
  3986. CONFIG_PAGE_POISONING=y.
  3987. off: turn off poisoning (default)
  3988. on: turn on poisoning
  3989. page_reporting.page_reporting_order=
  3990. [KNL] Minimal page reporting order
  3991. Format: <integer>
  3992. Adjust the minimal page reporting order. The page
  3993. reporting is disabled when it exceeds MAX_PAGE_ORDER.
  3994. panic= [KNL] Kernel behaviour on panic: delay <timeout>
  3995. timeout > 0: seconds before rebooting
  3996. timeout = 0: wait forever
  3997. timeout < 0: reboot immediately
  3998. Format: <timeout>
  3999. panic_on_taint= [KNL,EARLY]
  4000. Bitmask for conditionally calling panic() in add_taint()
  4001. Format: <hex>[,nousertaint]
  4002. Hexadecimal bitmask representing the set of TAINT flags
  4003. that will cause the kernel to panic when add_taint() is
  4004. called with any of the flags in this set.
  4005. The optional switch "nousertaint" can be utilized to
  4006. prevent userspace forced crashes by writing to sysctl
  4007. /proc/sys/kernel/tainted any flagset matching with the
  4008. bitmask set on panic_on_taint.
  4009. See Documentation/admin-guide/tainted-kernels.rst for
  4010. extra details on the taint flags that users can pick
  4011. to compose the bitmask to assign to panic_on_taint.
  4012. panic_on_warn=1 panic() instead of WARN(). Useful to cause kdump
  4013. on a WARN().
  4014. panic_force_cpu=
  4015. [KNL,SMP] Force panic handling to execute on a specific CPU.
  4016. Format: <cpu number>
  4017. Some platforms require panic handling to occur on a
  4018. specific CPU for the crash kernel to function correctly.
  4019. This can be due to firmware limitations, interrupt routing
  4020. constraints, or platform-specific requirements where only
  4021. a particular CPU can safely enter the crash kernel.
  4022. When set, panic() will redirect execution to the specified
  4023. CPU before proceeding with the normal panic and kexec flow.
  4024. If the target CPU is offline or unavailable, panic proceeds
  4025. on the current CPU.
  4026. This option should only be used for systems with the above
  4027. constraints as it might cause the panic operation to be less reliable.
  4028. panic_print= Bitmask for printing system info when panic happens.
  4029. User can chose combination of the following bits:
  4030. bit 0: print all tasks info
  4031. bit 1: print system memory info
  4032. bit 2: print timer info
  4033. bit 3: print locks info if CONFIG_LOCKDEP is on
  4034. bit 4: print ftrace buffer
  4035. bit 5: replay all kernel messages on consoles at the end of panic
  4036. bit 6: print all CPUs backtrace (if available in the arch)
  4037. bit 7: print only tasks in uninterruptible (blocked) state
  4038. *Be aware* that this option may print a _lot_ of lines,
  4039. so there are risks of losing older messages in the log.
  4040. Use this option carefully, maybe worth to setup a
  4041. bigger log buffer with "log_buf_len" along with this.
  4042. panic_sys_info= A comma separated list of extra information to be dumped
  4043. on panic.
  4044. Format: val[,val...]
  4045. Where @val can be any of the following:
  4046. tasks: print all tasks info
  4047. mem: print system memory info
  4048. timers: print timers info
  4049. locks: print locks info if CONFIG_LOCKDEP is on
  4050. ftrace: print ftrace buffer
  4051. all_bt: print all CPUs backtrace (if available in the arch)
  4052. blocked_tasks: print only tasks in uninterruptible (blocked) state
  4053. This is a human readable alternative to the 'panic_print' option.
  4054. panic_console_replay
  4055. When panic happens, replay all kernel messages on
  4056. consoles at the end of panic.
  4057. parkbd.port= [HW] Parallel port number the keyboard adapter is
  4058. connected to, default is 0.
  4059. Format: <parport#>
  4060. parkbd.mode= [HW] Parallel port keyboard adapter mode of operation,
  4061. 0 for XT, 1 for AT (default is AT).
  4062. Format: <mode>
  4063. parport= [HW,PPT] Specify parallel ports. 0 disables.
  4064. Format: { 0 | auto | 0xBBB[,IRQ[,DMA]] }
  4065. Use 'auto' to force the driver to use any
  4066. IRQ/DMA settings detected (the default is to
  4067. ignore detected IRQ/DMA settings because of
  4068. possible conflicts). You can specify the base
  4069. address, IRQ, and DMA settings; IRQ and DMA
  4070. should be numbers, or 'auto' (for using detected
  4071. settings on that particular port), or 'nofifo'
  4072. (to avoid using a FIFO even if it is detected).
  4073. Parallel ports are assigned in the order they
  4074. are specified on the command line, starting
  4075. with parport0.
  4076. parport_init_mode= [HW,PPT]
  4077. Configure VIA parallel port to operate in
  4078. a specific mode. This is necessary on Pegasos
  4079. computer where firmware has no options for setting
  4080. up parallel port mode and sets it to spp.
  4081. Currently this function knows 686a and 8231 chips.
  4082. Format: [spp|ps2|epp|ecp|ecpepp]
  4083. pata_legacy.all= [HW,LIBATA]
  4084. Format: <int>
  4085. Set to non-zero to probe primary and secondary ISA
  4086. port ranges on PCI systems where no PCI PATA device
  4087. has been found at either range. Disabled by default.
  4088. pata_legacy.autospeed= [HW,LIBATA]
  4089. Format: <int>
  4090. Set to non-zero if a chip is present that snoops speed
  4091. changes. Disabled by default.
  4092. pata_legacy.ht6560a= [HW,LIBATA]
  4093. Format: <int>
  4094. Set to 1, 2, or 3 for HT 6560A on the primary channel,
  4095. the secondary channel, or both channels respectively.
  4096. Disabled by default.
  4097. pata_legacy.ht6560b= [HW,LIBATA]
  4098. Format: <int>
  4099. Set to 1, 2, or 3 for HT 6560B on the primary channel,
  4100. the secondary channel, or both channels respectively.
  4101. Disabled by default.
  4102. pata_legacy.iordy_mask= [HW,LIBATA]
  4103. Format: <int>
  4104. IORDY enable mask. Set individual bits to allow IORDY
  4105. for the respective channel. Bit 0 is for the first
  4106. legacy channel handled by this driver, bit 1 is for
  4107. the second channel, and so on. The sequence will often
  4108. correspond to the primary legacy channel, the secondary
  4109. legacy channel, and so on, but the handling of a PCI
  4110. bus and the use of other driver options may interfere
  4111. with the sequence. By default IORDY is allowed across
  4112. all channels.
  4113. pata_legacy.opti82c46x= [HW,LIBATA]
  4114. Format: <int>
  4115. Set to 1, 2, or 3 for Opti 82c611A on the primary
  4116. channel, the secondary channel, or both channels
  4117. respectively. Disabled by default.
  4118. pata_legacy.opti82c611a= [HW,LIBATA]
  4119. Format: <int>
  4120. Set to 1, 2, or 3 for Opti 82c465MV on the primary
  4121. channel, the secondary channel, or both channels
  4122. respectively. Disabled by default.
  4123. pata_legacy.pio_mask= [HW,LIBATA]
  4124. Format: <int>
  4125. PIO mode mask for autospeed devices. Set individual
  4126. bits to allow the use of the respective PIO modes.
  4127. Bit 0 is for mode 0, bit 1 is for mode 1, and so on.
  4128. All modes allowed by default.
  4129. pata_legacy.probe_all= [HW,LIBATA]
  4130. Format: <int>
  4131. Set to non-zero to probe tertiary and further ISA
  4132. port ranges on PCI systems. Disabled by default.
  4133. pata_legacy.probe_mask= [HW,LIBATA]
  4134. Format: <int>
  4135. Probe mask for legacy ISA PATA ports. Depending on
  4136. platform configuration and the use of other driver
  4137. options up to 6 legacy ports are supported: 0x1f0,
  4138. 0x170, 0x1e8, 0x168, 0x1e0, 0x160, however probing
  4139. of individual ports can be disabled by setting the
  4140. corresponding bits in the mask to 1. Bit 0 is for
  4141. the first port in the list above (0x1f0), and so on.
  4142. By default all supported ports are probed.
  4143. pata_legacy.qdi= [HW,LIBATA]
  4144. Format: <int>
  4145. Set to non-zero to probe QDI controllers. By default
  4146. set to 1 if CONFIG_PATA_QDI_MODULE, 0 otherwise.
  4147. pata_legacy.winbond= [HW,LIBATA]
  4148. Format: <int>
  4149. Set to non-zero to probe Winbond controllers. Use
  4150. the standard I/O port (0x130) if 1, otherwise the
  4151. value given is the I/O port to use (typically 0x1b0).
  4152. By default set to 1 if CONFIG_PATA_WINBOND_VLB_MODULE,
  4153. 0 otherwise.
  4154. pata_platform.pio_mask= [HW,LIBATA]
  4155. Format: <int>
  4156. Supported PIO mode mask. Set individual bits to allow
  4157. the use of the respective PIO modes. Bit 0 is for
  4158. mode 0, bit 1 is for mode 1, and so on. Mode 0 only
  4159. allowed by default.
  4160. pause_on_oops=<int>
  4161. Halt all CPUs after the first oops has been printed for
  4162. the specified number of seconds. This is to be used if
  4163. your oopses keep scrolling off the screen.
  4164. pcbit= [HW,ISDN]
  4165. pci=option[,option...] [PCI,EARLY] various PCI subsystem options.
  4166. Some options herein operate on a specific device
  4167. or a set of devices (<pci_dev>). These are
  4168. specified in one of the following formats:
  4169. [<domain>:]<bus>:<dev>.<func>[/<dev>.<func>]*
  4170. pci:<vendor>:<device>[:<subvendor>:<subdevice>]
  4171. Note: the first format specifies a PCI
  4172. bus/device/function address which may change
  4173. if new hardware is inserted, if motherboard
  4174. firmware changes, or due to changes caused
  4175. by other kernel parameters. If the
  4176. domain is left unspecified, it is
  4177. taken to be zero. Optionally, a path
  4178. to a device through multiple device/function
  4179. addresses can be specified after the base
  4180. address (this is more robust against
  4181. renumbering issues). The second format
  4182. selects devices using IDs from the
  4183. configuration space which may match multiple
  4184. devices in the system.
  4185. earlydump dump PCI config space before the kernel
  4186. changes anything
  4187. off [X86] don't probe for the PCI bus
  4188. bios [X86-32] force use of PCI BIOS, don't access
  4189. the hardware directly. Use this if your machine
  4190. has a non-standard PCI host bridge.
  4191. nobios [X86-32] disallow use of PCI BIOS, only direct
  4192. hardware access methods are allowed. Use this
  4193. if you experience crashes upon bootup and you
  4194. suspect they are caused by the BIOS.
  4195. conf1 [X86] Force use of PCI Configuration Access
  4196. Mechanism 1 (config address in IO port 0xCF8,
  4197. data in IO port 0xCFC, both 32-bit).
  4198. conf2 [X86] Force use of PCI Configuration Access
  4199. Mechanism 2 (IO port 0xCF8 is an 8-bit port for
  4200. the function, IO port 0xCFA, also 8-bit, sets
  4201. bus number. The config space is then accessed
  4202. through ports 0xC000-0xCFFF).
  4203. See http://wiki.osdev.org/PCI for more info
  4204. on the configuration access mechanisms.
  4205. noaer [PCIE] If the PCIEAER kernel config parameter is
  4206. enabled, this kernel boot option can be used to
  4207. disable the use of PCIE advanced error reporting.
  4208. nodomains [PCI] Disable support for multiple PCI
  4209. root domains (aka PCI segments, in ACPI-speak).
  4210. nommconf [X86] Disable use of MMCONFIG for PCI
  4211. Configuration
  4212. check_enable_amd_mmconf [X86] check for and enable
  4213. properly configured MMIO access to PCI
  4214. config space on AMD family 10h CPU
  4215. nomsi [MSI] If the PCI_MSI kernel config parameter is
  4216. enabled, this kernel boot option can be used to
  4217. disable the use of MSI interrupts system-wide.
  4218. noioapicquirk [APIC] Disable all boot interrupt quirks.
  4219. Safety option to keep boot IRQs enabled. This
  4220. should never be necessary.
  4221. ioapicreroute [APIC] Enable rerouting of boot IRQs to the
  4222. primary IO-APIC for bridges that cannot disable
  4223. boot IRQs. This fixes a source of spurious IRQs
  4224. when the system masks IRQs.
  4225. noioapicreroute [APIC] Disable workaround that uses the
  4226. boot IRQ equivalent of an IRQ that connects to
  4227. a chipset where boot IRQs cannot be disabled.
  4228. The opposite of ioapicreroute.
  4229. biosirq [X86-32] Use PCI BIOS calls to get the interrupt
  4230. routing table. These calls are known to be buggy
  4231. on several machines and they hang the machine
  4232. when used, but on other computers it's the only
  4233. way to get the interrupt routing table. Try
  4234. this option if the kernel is unable to allocate
  4235. IRQs or discover secondary PCI buses on your
  4236. motherboard.
  4237. rom [X86] Assign address space to expansion ROMs.
  4238. Use with caution as certain devices share
  4239. address decoders between ROMs and other
  4240. resources.
  4241. norom [X86] Do not assign address space to
  4242. expansion ROMs that do not already have
  4243. BIOS assigned address ranges.
  4244. nobar [X86] Do not assign address space to the
  4245. BARs that weren't assigned by the BIOS.
  4246. irqmask=0xMMMM [X86] Set a bit mask of IRQs allowed to be
  4247. assigned automatically to PCI devices. You can
  4248. make the kernel exclude IRQs of your ISA cards
  4249. this way.
  4250. pirqaddr=0xAAAAA [X86] Specify the physical address
  4251. of the PIRQ table (normally generated
  4252. by the BIOS) if it is outside the
  4253. F0000h-100000h range.
  4254. lastbus=N [X86] Scan all buses thru bus #N. Can be
  4255. useful if the kernel is unable to find your
  4256. secondary buses and you want to tell it
  4257. explicitly which ones they are.
  4258. assign-busses [X86] Always assign all PCI bus
  4259. numbers ourselves, overriding
  4260. whatever the firmware may have done.
  4261. usepirqmask [X86] Honor the possible IRQ mask stored
  4262. in the BIOS $PIR table. This is needed on
  4263. some systems with broken BIOSes, notably
  4264. some HP Pavilion N5400 and Omnibook XE3
  4265. notebooks. This will have no effect if ACPI
  4266. IRQ routing is enabled.
  4267. noacpi [X86] Do not use ACPI for IRQ routing
  4268. or for PCI scanning.
  4269. use_crs [X86] Use PCI host bridge window information
  4270. from ACPI. On BIOSes from 2008 or later, this
  4271. is enabled by default. If you need to use this,
  4272. please report a bug.
  4273. nocrs [X86] Ignore PCI host bridge windows from ACPI.
  4274. If you need to use this, please report a bug.
  4275. use_e820 [X86] Use E820 reservations to exclude parts of
  4276. PCI host bridge windows. This is a workaround
  4277. for BIOS defects in host bridge _CRS methods.
  4278. If you need to use this, please report a bug to
  4279. <linux-pci@vger.kernel.org>.
  4280. no_e820 [X86] Ignore E820 reservations for PCI host
  4281. bridge windows. This is the default on modern
  4282. hardware. If you need to use this, please report
  4283. a bug to <linux-pci@vger.kernel.org>.
  4284. routeirq Do IRQ routing for all PCI devices.
  4285. This is normally done in pci_enable_device(),
  4286. so this option is a temporary workaround
  4287. for broken drivers that don't call it.
  4288. skip_isa_align [X86] do not align io start addr, so can
  4289. handle more pci cards
  4290. noearly [X86] Don't do any early type 1 scanning.
  4291. This might help on some broken boards which
  4292. machine check when some devices' config space
  4293. is read. But various workarounds are disabled
  4294. and some IOMMU drivers will not work.
  4295. bfsort Sort PCI devices into breadth-first order.
  4296. This sorting is done to get a device
  4297. order compatible with older (<= 2.4) kernels.
  4298. nobfsort Don't sort PCI devices into breadth-first order.
  4299. pcie_bus_tune_off Disable PCIe MPS (Max Payload Size)
  4300. tuning and use the BIOS-configured MPS defaults.
  4301. pcie_bus_safe Set every device's MPS to the largest value
  4302. supported by all devices below the root complex.
  4303. pcie_bus_perf Set device MPS to the largest allowable MPS
  4304. based on its parent bus. Also set MRRS (Max
  4305. Read Request Size) to the largest supported
  4306. value (no larger than the MPS that the device
  4307. or bus can support) for best performance.
  4308. pcie_bus_peer2peer Set every device's MPS to 128B, which
  4309. every device is guaranteed to support. This
  4310. configuration allows peer-to-peer DMA between
  4311. any pair of devices, possibly at the cost of
  4312. reduced performance. This also guarantees
  4313. that hot-added devices will work.
  4314. cbiosize=nn[KMG] The fixed amount of bus space which is
  4315. reserved for the CardBus bridge's IO window.
  4316. The default value is 256 bytes.
  4317. cbmemsize=nn[KMG] The fixed amount of bus space which is
  4318. reserved for the CardBus bridge's memory
  4319. window. The default value is 64 megabytes.
  4320. resource_alignment=
  4321. Format:
  4322. [<order of align>@]<pci_dev>[; ...]
  4323. Specifies alignment and device to reassign
  4324. aligned memory resources. How to
  4325. specify the device is described above.
  4326. If <order of align> is not specified,
  4327. PAGE_SIZE is used as alignment.
  4328. A PCI-PCI bridge can be specified if resource
  4329. windows need to be expanded.
  4330. To specify the alignment for several
  4331. instances of a device, the PCI vendor,
  4332. device, subvendor, and subdevice may be
  4333. specified, e.g., 12@pci:8086:9c22:103c:198f
  4334. for 4096-byte alignment.
  4335. ecrc= Enable/disable PCIe ECRC (transaction layer
  4336. end-to-end CRC checking). Only effective if
  4337. OS has native AER control (either granted by
  4338. ACPI _OSC or forced via "pcie_ports=native")
  4339. bios: Use BIOS/firmware settings. This is the
  4340. the default.
  4341. off: Turn ECRC off
  4342. on: Turn ECRC on.
  4343. hpiosize=nn[KMG] The fixed amount of bus space which is
  4344. reserved for hotplug bridge's IO window.
  4345. Default size is 256 bytes.
  4346. hpmmiosize=nn[KMG] The fixed amount of bus space which is
  4347. reserved for hotplug bridge's MMIO window.
  4348. Default size is 2 megabytes.
  4349. hpmmioprefsize=nn[KMG] The fixed amount of bus space which is
  4350. reserved for hotplug bridge's MMIO_PREF window.
  4351. Default size is 2 megabytes.
  4352. hpmemsize=nn[KMG] The fixed amount of bus space which is
  4353. reserved for hotplug bridge's MMIO and
  4354. MMIO_PREF window.
  4355. Default size is 2 megabytes.
  4356. hpbussize=nn The minimum amount of additional bus numbers
  4357. reserved for buses below a hotplug bridge.
  4358. Default is 1.
  4359. realloc= Enable/disable reallocating PCI bridge resources
  4360. if allocations done by BIOS are too small to
  4361. accommodate resources required by all child
  4362. devices.
  4363. off: Turn realloc off
  4364. on: Turn realloc on
  4365. realloc same as realloc=on
  4366. noari do not use PCIe ARI.
  4367. noats [PCIE, Intel-IOMMU, AMD-IOMMU]
  4368. do not use PCIe ATS (and IOMMU device IOTLB).
  4369. pcie_scan_all Scan all possible PCIe devices. Otherwise we
  4370. only look for one device below a PCIe downstream
  4371. port.
  4372. big_root_window Try to add a big 64bit memory window to the PCIe
  4373. root complex on AMD CPUs. Some GFX hardware
  4374. can resize a BAR to allow access to all VRAM.
  4375. Adding the window is slightly risky (it may
  4376. conflict with unreported devices), so this
  4377. taints the kernel.
  4378. disable_acs_redir=<pci_dev>[; ...]
  4379. Specify one or more PCI devices (in the format
  4380. specified above) separated by semicolons.
  4381. Each device specified will have the PCI ACS
  4382. redirect capabilities forced off which will
  4383. allow P2P traffic between devices through
  4384. bridges without forcing it upstream. Note:
  4385. this removes isolation between devices and
  4386. may put more devices in an IOMMU group.
  4387. config_acs=
  4388. Format:
  4389. <ACS flags>@<pci_dev>[; ...]
  4390. Specify one or more PCI devices (in the format
  4391. specified above) optionally prepended with flags
  4392. and separated by semicolons. The respective
  4393. capabilities will be enabled, disabled or
  4394. unchanged based on what is specified in
  4395. flags.
  4396. ACS Flags is defined as follows:
  4397. bit-0 : ACS Source Validation
  4398. bit-1 : ACS Translation Blocking
  4399. bit-2 : ACS P2P Request Redirect
  4400. bit-3 : ACS P2P Completion Redirect
  4401. bit-4 : ACS Upstream Forwarding
  4402. bit-5 : ACS P2P Egress Control
  4403. bit-6 : ACS Direct Translated P2P
  4404. Each bit can be marked as:
  4405. '0' – force disabled
  4406. '1' – force enabled
  4407. 'x' – unchanged
  4408. For example,
  4409. pci=config_acs=10x@pci:0:0
  4410. would configure all devices that support
  4411. ACS to enable P2P Request Redirect, disable
  4412. Translation Blocking, and leave Source
  4413. Validation unchanged from whatever power-up
  4414. or firmware set it to.
  4415. Note: this may remove isolation between devices
  4416. and may put more devices in an IOMMU group.
  4417. force_floating [S390] Force usage of floating interrupts.
  4418. nomio [S390] Do not use MIO instructions.
  4419. norid [S390] ignore the RID field and force use of
  4420. one PCI domain per PCI function
  4421. notph [PCIE] If the PCIE_TPH kernel config parameter
  4422. is enabled, this kernel boot option can be used
  4423. to disable PCIe TLP Processing Hints support
  4424. system-wide.
  4425. pcie_aspm= [PCIE] Forcibly enable or ignore PCIe Active State Power
  4426. Management.
  4427. off Don't touch ASPM configuration at all. Leave any
  4428. configuration done by firmware unchanged.
  4429. force Enable ASPM even on devices that claim not to support it.
  4430. WARNING: Forcing ASPM on may cause system lockups.
  4431. pcie_ports= [PCIE] PCIe port services handling:
  4432. native Use native PCIe services (PME, AER, DPC, PCIe hotplug)
  4433. even if the platform doesn't give the OS permission to
  4434. use them. This may cause conflicts if the platform
  4435. also tries to use these services.
  4436. dpc-native Use native PCIe service for DPC only. May
  4437. cause conflicts if firmware uses AER or DPC.
  4438. compat Disable native PCIe services (PME, AER, DPC, PCIe
  4439. hotplug).
  4440. pcie_port_pm= [PCIE] PCIe port power management handling:
  4441. off Disable power management of all PCIe ports
  4442. force Forcibly enable power management of all PCIe ports
  4443. pcie_pme= [PCIE,PM] Native PCIe PME signaling options:
  4444. nomsi Do not use MSI for native PCIe PME signaling (this makes
  4445. all PCIe root ports use INTx for all services).
  4446. pcmv= [HW,PCMCIA] BadgePAD 4
  4447. pd_ignore_unused
  4448. [PM]
  4449. Keep all power-domains already enabled by bootloader on,
  4450. even if no driver has claimed them. This is useful
  4451. for debug and development, but should not be
  4452. needed on a platform with proper driver support.
  4453. pdcchassis= [PARISC,HW] Disable/Enable PDC Chassis Status codes at
  4454. boot time.
  4455. Format: { 0 | 1 }
  4456. See arch/parisc/kernel/pdc_chassis.c
  4457. percpu_alloc= [MM,EARLY]
  4458. Select which percpu first chunk allocator to use.
  4459. Currently supported values are "embed" and "page".
  4460. Archs may support subset or none of the selections.
  4461. See comments in mm/percpu.c for details on each
  4462. allocator. This parameter is primarily for debugging
  4463. and performance comparison.
  4464. pirq= [SMP,APIC] Manual mp-table setup
  4465. See Documentation/arch/x86/i386/IO-APIC.rst.
  4466. plip= [PPT,NET] Parallel port network link
  4467. Format: { parport<nr> | timid | 0 }
  4468. See also Documentation/admin-guide/parport.rst.
  4469. pmtmr= [X86] Manual setup of pmtmr I/O Port.
  4470. Override pmtimer IOPort with a hex value.
  4471. e.g. pmtmr=0x508
  4472. pmu_override= [PPC] Override the PMU.
  4473. This option takes over the PMU facility, so it is no
  4474. longer usable by perf. Setting this option starts the
  4475. PMU counters by setting MMCR0 to 0 (the FC bit is
  4476. cleared). If a number is given, then MMCR1 is set to
  4477. that number, otherwise (e.g., 'pmu_override=on'), MMCR1
  4478. remains 0.
  4479. pm_async= [PM]
  4480. Format: off
  4481. This parameter sets the initial value of the
  4482. /sys/power/pm_async sysfs knob at boot time.
  4483. If set to "off", disables asynchronous suspend and
  4484. resume of devices during system-wide power transitions.
  4485. This can be useful on platforms where device
  4486. dependencies are not well-defined, or for debugging
  4487. power management issues. Asynchronous operations are
  4488. enabled by default.
  4489. pm_debug_messages [SUSPEND,KNL]
  4490. Enable suspend/resume debug messages during boot up.
  4491. pnp.debug=1 [PNP]
  4492. Enable PNP debug messages (depends on the
  4493. CONFIG_PNP_DEBUG_MESSAGES option). Change at run-time
  4494. via /sys/module/pnp/parameters/debug. We always show
  4495. current resource usage; turning this on also shows
  4496. possible settings and some assignment information.
  4497. pnpacpi= [ACPI]
  4498. { off }
  4499. pnpbios= [ISAPNP]
  4500. { on | off | curr | res | no-curr | no-res }
  4501. pnp_reserve_irq=
  4502. [ISAPNP] Exclude IRQs for the autoconfiguration
  4503. pnp_reserve_dma=
  4504. [ISAPNP] Exclude DMAs for the autoconfiguration
  4505. pnp_reserve_io= [ISAPNP] Exclude I/O ports for the autoconfiguration
  4506. Ranges are in pairs (I/O port base and size).
  4507. pnp_reserve_mem=
  4508. [ISAPNP] Exclude memory regions for the
  4509. autoconfiguration.
  4510. Ranges are in pairs (memory base and size).
  4511. ports= [IP_VS_FTP] IPVS ftp helper module
  4512. Default is 21.
  4513. Up to 8 (IP_VS_APP_MAX_PORTS) ports
  4514. may be specified.
  4515. Format: <port>,<port>....
  4516. possible_cpus= [SMP,S390,X86]
  4517. Format: <unsigned int>
  4518. Set the number of possible CPUs, overriding the
  4519. regular discovery mechanisms (such as ACPI/FW, etc).
  4520. powersave=off [PPC] This option disables power saving features.
  4521. It specifically disables cpuidle and sets the
  4522. platform machine description specific power_save
  4523. function to NULL. On Idle the CPU just reduces
  4524. execution priority.
  4525. ppc_strict_facility_enable
  4526. [PPC,ENABLE] This option catches any kernel floating point,
  4527. Altivec, VSX and SPE outside of regions specifically
  4528. allowed (eg kernel_enable_fpu()/kernel_disable_fpu()).
  4529. There is some performance impact when enabling this.
  4530. ppc_tm= [PPC,EARLY]
  4531. Format: {"off"}
  4532. Disable Hardware Transactional Memory
  4533. preempt= [KNL]
  4534. Select preemption mode if you have CONFIG_PREEMPT_DYNAMIC
  4535. none - Limited to cond_resched() calls
  4536. voluntary - Limited to cond_resched() and might_sleep() calls
  4537. full - Any section that isn't explicitly preempt disabled
  4538. can be preempted anytime. Tasks will also yield
  4539. contended spinlocks (if the critical section isn't
  4540. explicitly preempt disabled beyond the lock itself).
  4541. lazy - Scheduler controlled. Similar to full but instead
  4542. of preempting the task immediately, the task gets
  4543. one HZ tick time to yield itself before the
  4544. preemption will be forced. One preemption is when the
  4545. task returns to user space.
  4546. print-fatal-signals=
  4547. [KNL] debug: print fatal signals
  4548. If enabled, warn about various signal handling
  4549. related application anomalies: too many signals,
  4550. too many POSIX.1 timers, fatal signals causing a
  4551. coredump - etc.
  4552. If you hit the warning due to signal overflow,
  4553. you might want to try "ulimit -i unlimited".
  4554. default: off.
  4555. printk.always_kmsg_dump=
  4556. Trigger kmsg_dump for cases other than kernel oops or
  4557. panics
  4558. Format: <bool> (1/Y/y=enable, 0/N/n=disable)
  4559. default: disabled
  4560. printk.console_no_auto_verbose=
  4561. Disable console loglevel raise on oops, panic
  4562. or lockdep-detected issues (only if lock debug is on).
  4563. With an exception to setups with low baudrate on
  4564. serial console, keeping this 0 is a good choice
  4565. in order to provide more debug information.
  4566. Format: <bool>
  4567. default: 0 (auto_verbose is enabled)
  4568. printk.debug_non_panic_cpus=
  4569. Allows storing messages from non-panic CPUs into
  4570. the printk log buffer during panic(). They are
  4571. flushed to consoles by the panic-CPU on
  4572. a best-effort basis.
  4573. Format: <bool> (1/Y/y=enable, 0/N/n=disable)
  4574. Default: disabled
  4575. printk.devkmsg={on,off,ratelimit}
  4576. Control writing to /dev/kmsg.
  4577. on - unlimited logging to /dev/kmsg from userspace
  4578. off - logging to /dev/kmsg disabled
  4579. ratelimit - ratelimit the logging
  4580. Default: ratelimit
  4581. printk.time= Show timing data prefixed to each printk message line
  4582. Format: <bool> (1/Y/y=enable, 0/N/n=disable)
  4583. proc_mem.force_override= [KNL]
  4584. Format: {always | ptrace | never}
  4585. Traditionally /proc/pid/mem allows memory permissions to be
  4586. overridden without restrictions. This option may be set to
  4587. restrict that. Can be one of:
  4588. - 'always': traditional behavior always allows mem overrides.
  4589. - 'ptrace': only allow mem overrides for active ptracers.
  4590. - 'never': never allow mem overrides.
  4591. If not specified, default is the CONFIG_PROC_MEM_* choice.
  4592. processor.max_cstate= [HW,ACPI]
  4593. Limit processor to maximum C-state
  4594. max_cstate=9 overrides any DMI blacklist limit.
  4595. processor.nocst [HW,ACPI]
  4596. Ignore the _CST method to determine C-states,
  4597. instead using the legacy FADT method
  4598. profile= [KNL] Enable kernel profiling via /proc/profile
  4599. Format: [<profiletype>,]<number>
  4600. Param: <profiletype>: "schedule" or "kvm"
  4601. [defaults to kernel profiling]
  4602. Param: "schedule" - profile schedule points.
  4603. Param: "kvm" - profile VM exits.
  4604. Param: <number> - step/bucket size as a power of 2 for
  4605. statistical time based profiling.
  4606. prot_virt= [S390] enable hosting protected virtual machines
  4607. isolated from the hypervisor (if hardware supports
  4608. that). If enabled, the default kernel base address
  4609. might be overridden even when Kernel Address Space
  4610. Layout Randomization is disabled.
  4611. Format: <bool>
  4612. psi= [KNL] Enable or disable pressure stall information
  4613. tracking.
  4614. Format: <bool>
  4615. psmouse.proto= [HW,MOUSE] Highest PS2 mouse protocol extension to
  4616. probe for; one of (bare|imps|exps|lifebook|any).
  4617. psmouse.rate= [HW,MOUSE] Set desired mouse report rate, in reports
  4618. per second.
  4619. psmouse.resetafter= [HW,MOUSE]
  4620. Try to reset the device after so many bad packets
  4621. (0 = never).
  4622. psmouse.resolution=
  4623. [HW,MOUSE] Set desired mouse resolution, in dpi.
  4624. psmouse.smartscroll=
  4625. [HW,MOUSE] Controls Logitech smartscroll autorepeat.
  4626. 0 = disabled, 1 = enabled (default).
  4627. pstore.backend= Specify the name of the pstore backend to use
  4628. pti= [X86-64] Control Page Table Isolation of user and
  4629. kernel address spaces. Disabling this feature
  4630. removes hardening, but improves performance of
  4631. system calls and interrupts.
  4632. on - unconditionally enable
  4633. off - unconditionally disable
  4634. auto - kernel detects whether your CPU model is
  4635. vulnerable to issues that PTI mitigates
  4636. Not specifying this option is equivalent to pti=auto.
  4637. pty.legacy_count=
  4638. [KNL] Number of legacy pty's. Overwrites compiled-in
  4639. default number.
  4640. quiet [KNL,EARLY] Disable most log messages
  4641. r128= [HW,DRM]
  4642. radix_hcall_invalidate=on [PPC/PSERIES]
  4643. Disable RADIX GTSE feature and use hcall for TLB
  4644. invalidate.
  4645. raid= [HW,RAID]
  4646. See Documentation/admin-guide/md.rst.
  4647. ramdisk_size= [RAM] Sizes of RAM disks in kilobytes
  4648. See Documentation/admin-guide/blockdev/ramdisk.rst.
  4649. ramdisk_start= [Deprecated,RAM] RAM disk image start address
  4650. random.trust_cpu=off
  4651. [KNL,EARLY] Disable trusting the use of the CPU's
  4652. random number generator (if available) to
  4653. initialize the kernel's RNG.
  4654. random.trust_bootloader=off
  4655. [KNL,EARLY] Disable trusting the use of the a seed
  4656. passed by the bootloader (if available) to
  4657. initialize the kernel's RNG.
  4658. randomize_kstack_offset=
  4659. [KNL,EARLY] Enable or disable kernel stack offset
  4660. randomization, which provides roughly 5 bits of
  4661. entropy, frustrating memory corruption attacks
  4662. that depend on stack address determinism or
  4663. cross-syscall address exposures. This is only
  4664. available on architectures that have defined
  4665. CONFIG_HAVE_ARCH_RANDOMIZE_KSTACK_OFFSET.
  4666. Format: <bool> (1/Y/y=enable, 0/N/n=disable)
  4667. Default is CONFIG_RANDOMIZE_KSTACK_OFFSET_DEFAULT.
  4668. ras=option[,option,...] [KNL] RAS-specific options
  4669. cec_disable [X86]
  4670. Disable the Correctable Errors Collector,
  4671. see CONFIG_RAS_CEC help text.
  4672. rcu_nocbs[=cpu-list]
  4673. [KNL] The optional argument is a cpu list,
  4674. as described above.
  4675. In kernels built with CONFIG_RCU_NOCB_CPU=y,
  4676. enable the no-callback CPU mode, which prevents
  4677. such CPUs' callbacks from being invoked in
  4678. softirq context. Invocation of such CPUs' RCU
  4679. callbacks will instead be offloaded to "rcuox/N"
  4680. kthreads created for that purpose, where "x" is
  4681. "p" for RCU-preempt, "s" for RCU-sched, and "g"
  4682. for the kthreads that mediate grace periods; and
  4683. "N" is the CPU number. This reduces OS jitter on
  4684. the offloaded CPUs, which can be useful for HPC
  4685. and real-time workloads. It can also improve
  4686. energy efficiency for asymmetric multiprocessors.
  4687. If a cpulist is passed as an argument, the specified
  4688. list of CPUs is set to no-callback mode from boot.
  4689. Otherwise, if the '=' sign and the cpulist
  4690. arguments are omitted, no CPU will be set to
  4691. no-callback mode from boot but the mode may be
  4692. toggled at runtime via cpusets.
  4693. Note that this argument takes precedence over
  4694. the CONFIG_RCU_NOCB_CPU_DEFAULT_ALL option.
  4695. rcu_nocb_poll [KNL]
  4696. Rather than requiring that offloaded CPUs
  4697. (specified by rcu_nocbs= above) explicitly
  4698. awaken the corresponding "rcuoN" kthreads,
  4699. make these kthreads poll for callbacks.
  4700. This improves the real-time response for the
  4701. offloaded CPUs by relieving them of the need to
  4702. wake up the corresponding kthread, but degrades
  4703. energy efficiency by requiring that the kthreads
  4704. periodically wake up to do the polling.
  4705. rcutree.blimit= [KNL]
  4706. Set maximum number of finished RCU callbacks to
  4707. process in one batch.
  4708. rcutree.csd_lock_suppress_rcu_stall= [KNL]
  4709. Do only a one-line RCU CPU stall warning when
  4710. there is an ongoing too-long CSD-lock wait.
  4711. rcutree.do_rcu_barrier= [KNL]
  4712. Request a call to rcu_barrier(). This is
  4713. throttled so that userspace tests can safely
  4714. hammer on the sysfs variable if they so choose.
  4715. If triggered before the RCU grace-period machinery
  4716. is fully active, this will error out with EAGAIN.
  4717. rcutree.dump_tree= [KNL]
  4718. Dump the structure of the rcu_node combining tree
  4719. out at early boot. This is used for diagnostic
  4720. purposes, to verify correct tree setup.
  4721. rcutree.gp_cleanup_delay= [KNL]
  4722. Set the number of jiffies to delay each step of
  4723. RCU grace-period cleanup.
  4724. rcutree.gp_init_delay= [KNL]
  4725. Set the number of jiffies to delay each step of
  4726. RCU grace-period initialization.
  4727. rcutree.gp_preinit_delay= [KNL]
  4728. Set the number of jiffies to delay each step of
  4729. RCU grace-period pre-initialization, that is,
  4730. the propagation of recent CPU-hotplug changes up
  4731. the rcu_node combining tree.
  4732. rcutree.jiffies_till_first_fqs= [KNL]
  4733. Set delay from grace-period initialization to
  4734. first attempt to force quiescent states.
  4735. Units are jiffies, minimum value is zero,
  4736. and maximum value is HZ.
  4737. rcutree.jiffies_till_next_fqs= [KNL]
  4738. Set delay between subsequent attempts to force
  4739. quiescent states. Units are jiffies, minimum
  4740. value is one, and maximum value is HZ.
  4741. rcutree.jiffies_till_sched_qs= [KNL]
  4742. Set required age in jiffies for a
  4743. given grace period before RCU starts
  4744. soliciting quiescent-state help from
  4745. rcu_note_context_switch() and cond_resched().
  4746. If not specified, the kernel will calculate
  4747. a value based on the most recent settings
  4748. of rcutree.jiffies_till_first_fqs
  4749. and rcutree.jiffies_till_next_fqs.
  4750. This calculated value may be viewed in
  4751. rcutree.jiffies_to_sched_qs. Any attempt to set
  4752. rcutree.jiffies_to_sched_qs will be cheerfully
  4753. overwritten.
  4754. rcutree.kthread_prio= [KNL,BOOT]
  4755. Set the SCHED_FIFO priority of the RCU per-CPU
  4756. kthreads (rcuc/N). This value is also used for
  4757. the priority of the RCU boost threads (rcub/N)
  4758. and for the RCU grace-period kthreads (rcu_bh,
  4759. rcu_preempt, and rcu_sched). If RCU_BOOST is
  4760. set, valid values are 1-99 and the default is 1
  4761. (the least-favored priority). Otherwise, when
  4762. RCU_BOOST is not set, valid values are 0-99 and
  4763. the default is zero (non-realtime operation).
  4764. When RCU_NOCB_CPU is set, also adjust the
  4765. priority of NOCB callback kthreads.
  4766. rcutree.nocb_nobypass_lim_per_jiffy= [KNL]
  4767. On callback-offloaded (rcu_nocbs) CPUs,
  4768. RCU reduces the lock contention that would
  4769. otherwise be caused by callback floods through
  4770. use of the ->nocb_bypass list. However, in the
  4771. common non-flooded case, RCU queues directly to
  4772. the main ->cblist in order to avoid the extra
  4773. overhead of the ->nocb_bypass list and its lock.
  4774. But if there are too many callbacks queued during
  4775. a single jiffy, RCU pre-queues the callbacks into
  4776. the ->nocb_bypass queue. The definition of "too
  4777. many" is supplied by this kernel boot parameter.
  4778. rcutree.nohz_full_patience_delay= [KNL]
  4779. On callback-offloaded (rcu_nocbs) CPUs, avoid
  4780. disturbing RCU unless the grace period has
  4781. reached the specified age in milliseconds.
  4782. Defaults to zero. Large values will be capped
  4783. at five seconds. All values will be rounded down
  4784. to the nearest value representable by jiffies.
  4785. rcutree.qhimark= [KNL]
  4786. Set threshold of queued RCU callbacks beyond which
  4787. batch limiting is disabled.
  4788. rcutree.qlowmark= [KNL]
  4789. Set threshold of queued RCU callbacks below which
  4790. batch limiting is re-enabled.
  4791. rcutree.qovld= [KNL]
  4792. Set threshold of queued RCU callbacks beyond which
  4793. RCU's force-quiescent-state scan will aggressively
  4794. enlist help from cond_resched() and sched IPIs to
  4795. help CPUs more quickly reach quiescent states.
  4796. Set to less than zero to make this be set based
  4797. on rcutree.qhimark at boot time and to zero to
  4798. disable more aggressive help enlistment.
  4799. rcutree.rcu_delay_page_cache_fill_msec= [KNL]
  4800. Set the page-cache refill delay (in milliseconds)
  4801. in response to low-memory conditions. The range
  4802. of permitted values is in the range 0:100000.
  4803. rcutree.rcu_divisor= [KNL]
  4804. Set the shift-right count to use to compute
  4805. the callback-invocation batch limit bl from
  4806. the number of callbacks queued on this CPU.
  4807. The result will be bounded below by the value of
  4808. the rcutree.blimit kernel parameter. Every bl
  4809. callbacks, the softirq handler will exit in
  4810. order to allow the CPU to do other work.
  4811. Please note that this callback-invocation batch
  4812. limit applies only to non-offloaded callback
  4813. invocation. Offloaded callbacks are instead
  4814. invoked in the context of an rcuoc kthread, which
  4815. scheduler will preempt as it does any other task.
  4816. rcutree.rcu_fanout_exact= [KNL]
  4817. Disable autobalancing of the rcu_node combining
  4818. tree. This is used by rcutorture, and might
  4819. possibly be useful for architectures having high
  4820. cache-to-cache transfer latencies.
  4821. rcutree.rcu_fanout_leaf= [KNL]
  4822. Change the number of CPUs assigned to each
  4823. leaf rcu_node structure. Useful for very
  4824. large systems, which will choose the value 64,
  4825. and for NUMA systems with large remote-access
  4826. latencies, which will choose a value aligned
  4827. with the appropriate hardware boundaries.
  4828. rcutree.rcu_min_cached_objs= [KNL]
  4829. Minimum number of objects which are cached and
  4830. maintained per one CPU. Object size is equal
  4831. to PAGE_SIZE. The cache allows to reduce the
  4832. pressure to page allocator, also it makes the
  4833. whole algorithm to behave better in low memory
  4834. condition.
  4835. rcutree.rcu_nocb_gp_stride= [KNL]
  4836. Set the number of NOCB callback kthreads in
  4837. each group, which defaults to the square root
  4838. of the number of CPUs. Larger numbers reduce
  4839. the wakeup overhead on the global grace-period
  4840. kthread, but increases that same overhead on
  4841. each group's NOCB grace-period kthread.
  4842. rcutree.rcu_kick_kthreads= [KNL]
  4843. Cause the grace-period kthread to get an extra
  4844. wake_up() if it sleeps three times longer than
  4845. it should at force-quiescent-state time.
  4846. This wake_up() will be accompanied by a
  4847. WARN_ONCE() splat and an ftrace_dump().
  4848. rcutree.rcu_resched_ns= [KNL]
  4849. Limit the time spend invoking a batch of RCU
  4850. callbacks to the specified number of nanoseconds.
  4851. By default, this limit is checked only once
  4852. every 32 callbacks in order to limit the pain
  4853. inflicted by local_clock() overhead.
  4854. rcutree.rcu_unlock_delay= [KNL]
  4855. In CONFIG_RCU_STRICT_GRACE_PERIOD=y kernels,
  4856. this specifies an rcu_read_unlock()-time delay
  4857. in microseconds. This defaults to zero.
  4858. Larger delays increase the probability of
  4859. catching RCU pointer leaks, that is, buggy use
  4860. of RCU-protected pointers after the relevant
  4861. rcu_read_unlock() has completed.
  4862. rcutree.sysrq_rcu= [KNL]
  4863. Commandeer a sysrq key to dump out Tree RCU's
  4864. rcu_node tree with an eye towards determining
  4865. why a new grace period has not yet started.
  4866. rcutree.use_softirq= [KNL]
  4867. If set to zero, move all RCU_SOFTIRQ processing to
  4868. per-CPU rcuc kthreads. Defaults to a non-zero
  4869. value, meaning that RCU_SOFTIRQ is used by default.
  4870. Specify rcutree.use_softirq=0 to use rcuc kthreads.
  4871. But note that CONFIG_PREEMPT_RT=y kernels disable
  4872. this kernel boot parameter, forcibly setting it
  4873. to zero.
  4874. rcutree.enable_rcu_lazy= [KNL]
  4875. To save power, batch RCU callbacks and flush after
  4876. delay, memory pressure or callback list growing too
  4877. big.
  4878. rcutree.rcu_normal_wake_from_gp= [KNL]
  4879. Reduces a latency of synchronize_rcu() call. This approach
  4880. maintains its own track of synchronize_rcu() callers, so it
  4881. does not interact with regular callbacks because it does not
  4882. use a call_rcu[_hurry]() path. Please note, this is for a
  4883. normal grace period.
  4884. How to enable it:
  4885. echo 1 > /sys/module/rcutree/parameters/rcu_normal_wake_from_gp
  4886. or pass a boot parameter "rcutree.rcu_normal_wake_from_gp=1"
  4887. Default is 1 if num_possible_cpus() <= 16 and it is not explicitly
  4888. disabled by the boot parameter passing 0.
  4889. rcuscale.gp_async= [KNL]
  4890. Measure performance of asynchronous
  4891. grace-period primitives such as call_rcu().
  4892. rcuscale.gp_async_max= [KNL]
  4893. Specify the maximum number of outstanding
  4894. callbacks per writer thread. When a writer
  4895. thread exceeds this limit, it invokes the
  4896. corresponding flavor of rcu_barrier() to allow
  4897. previously posted callbacks to drain.
  4898. rcuscale.gp_exp= [KNL]
  4899. Measure performance of expedited synchronous
  4900. grace-period primitives.
  4901. rcuscale.holdoff= [KNL]
  4902. Set test-start holdoff period. The purpose of
  4903. this parameter is to delay the start of the
  4904. test until boot completes in order to avoid
  4905. interference.
  4906. rcuscale.kfree_by_call_rcu= [KNL]
  4907. In kernels built with CONFIG_RCU_LAZY=y, test
  4908. call_rcu() instead of kfree_rcu().
  4909. rcuscale.kfree_mult= [KNL]
  4910. Instead of allocating an object of size kfree_obj,
  4911. allocate one of kfree_mult * sizeof(kfree_obj).
  4912. Defaults to 1.
  4913. rcuscale.kfree_rcu_test= [KNL]
  4914. Set to measure performance of kfree_rcu() flooding.
  4915. rcuscale.kfree_rcu_test_double= [KNL]
  4916. Test the double-argument variant of kfree_rcu().
  4917. If this parameter has the same value as
  4918. rcuscale.kfree_rcu_test_single, both the single-
  4919. and double-argument variants are tested.
  4920. rcuscale.kfree_rcu_test_single= [KNL]
  4921. Test the single-argument variant of kfree_rcu().
  4922. If this parameter has the same value as
  4923. rcuscale.kfree_rcu_test_double, both the single-
  4924. and double-argument variants are tested.
  4925. rcuscale.kfree_nthreads= [KNL]
  4926. The number of threads running loops of kfree_rcu().
  4927. rcuscale.kfree_alloc_num= [KNL]
  4928. Number of allocations and frees done in an iteration.
  4929. rcuscale.kfree_loops= [KNL]
  4930. Number of loops doing rcuscale.kfree_alloc_num number
  4931. of allocations and frees.
  4932. rcuscale.minruntime= [KNL]
  4933. Set the minimum test run time in seconds. This
  4934. does not affect the data-collection interval,
  4935. but instead allows better measurement of things
  4936. like CPU consumption.
  4937. rcuscale.nreaders= [KNL]
  4938. Set number of RCU readers. The value -1 selects
  4939. N, where N is the number of CPUs. A value
  4940. "n" less than -1 selects N-n+1, where N is again
  4941. the number of CPUs. For example, -2 selects N
  4942. (the number of CPUs), -3 selects N+1, and so on.
  4943. A value of "n" less than or equal to -N selects
  4944. a single reader.
  4945. rcuscale.nwriters= [KNL]
  4946. Set number of RCU writers. The values operate
  4947. the same as for rcuscale.nreaders.
  4948. N, where N is the number of CPUs
  4949. rcuscale.scale_type= [KNL]
  4950. Specify the RCU implementation to test.
  4951. rcuscale.shutdown= [KNL]
  4952. Shut the system down after performance tests
  4953. complete. This is useful for hands-off automated
  4954. testing.
  4955. rcuscale.verbose= [KNL]
  4956. Enable additional printk() statements.
  4957. rcuscale.writer_holdoff= [KNL]
  4958. Write-side holdoff between grace periods,
  4959. in microseconds. The default of zero says
  4960. no holdoff.
  4961. rcuscale.writer_holdoff_jiffies= [KNL]
  4962. Additional write-side holdoff between grace
  4963. periods, but in jiffies. The default of zero
  4964. says no holdoff.
  4965. rcutorture.fqs_duration= [KNL]
  4966. Set duration of force_quiescent_state bursts
  4967. in microseconds.
  4968. rcutorture.fqs_holdoff= [KNL]
  4969. Set holdoff time within force_quiescent_state bursts
  4970. in microseconds.
  4971. rcutorture.fqs_stutter= [KNL]
  4972. Set wait time between force_quiescent_state bursts
  4973. in seconds.
  4974. rcutorture.fwd_progress= [KNL]
  4975. Specifies the number of kthreads to be used
  4976. for RCU grace-period forward-progress testing
  4977. for the types of RCU supporting this notion.
  4978. Defaults to 1 kthread, values less than zero or
  4979. greater than the number of CPUs cause the number
  4980. of CPUs to be used.
  4981. rcutorture.fwd_progress_div= [KNL]
  4982. Specify the fraction of a CPU-stall-warning
  4983. period to do tight-loop forward-progress testing.
  4984. rcutorture.fwd_progress_holdoff= [KNL]
  4985. Number of seconds to wait between successive
  4986. forward-progress tests.
  4987. rcutorture.fwd_progress_need_resched= [KNL]
  4988. Enclose cond_resched() calls within checks for
  4989. need_resched() during tight-loop forward-progress
  4990. testing.
  4991. rcutorture.gp_cond= [KNL]
  4992. Use conditional/asynchronous update-side
  4993. normal-grace-period primitives, if available.
  4994. rcutorture.gp_cond_exp= [KNL]
  4995. Use conditional/asynchronous update-side
  4996. expedited-grace-period primitives, if available.
  4997. rcutorture.gp_cond_full= [KNL]
  4998. Use conditional/asynchronous update-side
  4999. normal-grace-period primitives that also take
  5000. concurrent expedited grace periods into account,
  5001. if available.
  5002. rcutorture.gp_cond_exp_full= [KNL]
  5003. Use conditional/asynchronous update-side
  5004. expedited-grace-period primitives that also take
  5005. concurrent normal grace periods into account,
  5006. if available.
  5007. rcutorture.gp_cond_wi= [KNL]
  5008. Nominal wait interval for normal conditional
  5009. grace periods (specified by rcutorture's
  5010. gp_cond and gp_cond_full module parameters),
  5011. in microseconds. The actual wait interval will
  5012. be randomly selected to nanosecond granularity up
  5013. to this wait interval. Defaults to 16 jiffies,
  5014. for example, 16,000 microseconds on a system
  5015. with HZ=1000.
  5016. rcutorture.gp_cond_wi_exp= [KNL]
  5017. Nominal wait interval for expedited conditional
  5018. grace periods (specified by rcutorture's
  5019. gp_cond_exp and gp_cond_exp_full module
  5020. parameters), in microseconds. The actual wait
  5021. interval will be randomly selected to nanosecond
  5022. granularity up to this wait interval. Defaults to
  5023. 128 microseconds.
  5024. rcutorture.gp_exp= [KNL]
  5025. Use expedited update-side primitives, if available.
  5026. rcutorture.gp_normal= [KNL]
  5027. Use normal (non-expedited) asynchronous
  5028. update-side primitives, if available.
  5029. rcutorture.gp_poll= [KNL]
  5030. Use polled update-side normal-grace-period
  5031. primitives, if available.
  5032. rcutorture.gp_poll_exp= [KNL]
  5033. Use polled update-side expedited-grace-period
  5034. primitives, if available.
  5035. rcutorture.gp_poll_full= [KNL]
  5036. Use polled update-side normal-grace-period
  5037. primitives that also take concurrent expedited
  5038. grace periods into account, if available.
  5039. rcutorture.gp_poll_exp_full= [KNL]
  5040. Use polled update-side expedited-grace-period
  5041. primitives that also take concurrent normal
  5042. grace periods into account, if available.
  5043. rcutorture.gp_poll_wi= [KNL]
  5044. Nominal wait interval for normal conditional
  5045. grace periods (specified by rcutorture's
  5046. gp_poll and gp_poll_full module parameters),
  5047. in microseconds. The actual wait interval will
  5048. be randomly selected to nanosecond granularity up
  5049. to this wait interval. Defaults to 16 jiffies,
  5050. for example, 16,000 microseconds on a system
  5051. with HZ=1000.
  5052. rcutorture.gp_poll_wi_exp= [KNL]
  5053. Nominal wait interval for expedited conditional
  5054. grace periods (specified by rcutorture's
  5055. gp_poll_exp and gp_poll_exp_full module
  5056. parameters), in microseconds. The actual wait
  5057. interval will be randomly selected to nanosecond
  5058. granularity up to this wait interval. Defaults to
  5059. 128 microseconds.
  5060. rcutorture.gp_sync= [KNL]
  5061. Use normal (non-expedited) synchronous
  5062. update-side primitives, if available. If all
  5063. of rcutorture.gp_cond=, rcutorture.gp_exp=,
  5064. rcutorture.gp_normal=, and rcutorture.gp_sync=
  5065. are zero, rcutorture acts as if is interpreted
  5066. they are all non-zero.
  5067. rcutorture.gpwrap_lag= [KNL]
  5068. Enable grace-period wrap lag testing. Setting
  5069. to false prevents the gpwrap lag test from
  5070. running. Default is true.
  5071. rcutorture.gpwrap_lag_gps= [KNL]
  5072. Set the value for grace-period wrap lag during
  5073. active lag testing periods. This controls how many
  5074. grace periods differences we tolerate between
  5075. rdp and rnp's gp_seq before setting overflow flag.
  5076. The default is always set to 8.
  5077. rcutorture.gpwrap_lag_cycle_mins= [KNL]
  5078. Set the total cycle duration for gpwrap lag
  5079. testing in minutes. This is the total time for
  5080. one complete cycle of active and inactive
  5081. testing periods. Default is 30 minutes.
  5082. rcutorture.gpwrap_lag_active_mins= [KNL]
  5083. Set the duration for which gpwrap lag is active
  5084. within each cycle, in minutes. During this time,
  5085. the grace-period wrap lag will be set to the
  5086. value specified by gpwrap_lag_gps. Default is
  5087. 5 minutes.
  5088. rcutorture.irqreader= [KNL]
  5089. Run RCU readers from irq handlers, or, more
  5090. accurately, from a timer handler. Not all RCU
  5091. flavors take kindly to this sort of thing.
  5092. rcutorture.leakpointer= [KNL]
  5093. Leak an RCU-protected pointer out of the reader.
  5094. This can of course result in splats, and is
  5095. intended to test the ability of things like
  5096. CONFIG_RCU_STRICT_GRACE_PERIOD=y to detect
  5097. such leaks.
  5098. rcutorture.n_barrier_cbs= [KNL]
  5099. Set callbacks/threads for rcu_barrier() testing.
  5100. rcutorture.nfakewriters= [KNL]
  5101. Set number of concurrent RCU writers. These just
  5102. stress RCU, they don't participate in the actual
  5103. test, hence the "fake".
  5104. rcutorture.nocbs_nthreads= [KNL]
  5105. Set number of RCU callback-offload togglers.
  5106. Zero (the default) disables toggling.
  5107. rcutorture.nocbs_toggle= [KNL]
  5108. Set the delay in milliseconds between successive
  5109. callback-offload toggling attempts.
  5110. rcutorture.nreaders= [KNL]
  5111. Set number of RCU readers. The value -1 selects
  5112. N-1, where N is the number of CPUs. A value
  5113. "n" less than -1 selects N-n-2, where N is again
  5114. the number of CPUs. For example, -2 selects N
  5115. (the number of CPUs), -3 selects N+1, and so on.
  5116. rcutorture.object_debug= [KNL]
  5117. Enable debug-object double-call_rcu() testing.
  5118. rcutorture.onoff_holdoff= [KNL]
  5119. Set time (s) after boot for CPU-hotplug testing.
  5120. rcutorture.onoff_interval= [KNL]
  5121. Set time (jiffies) between CPU-hotplug operations,
  5122. or zero to disable CPU-hotplug testing.
  5123. rcutorture.preempt_duration= [KNL]
  5124. Set duration (in milliseconds) of preemptions
  5125. by a high-priority FIFO real-time task. Set to
  5126. zero (the default) to disable. The CPUs to
  5127. preempt are selected randomly from the set that
  5128. are online at a given point in time. Races with
  5129. CPUs going offline are ignored, with that attempt
  5130. at preemption skipped.
  5131. rcutorture.preempt_interval= [KNL]
  5132. Set interval (in milliseconds, defaulting to one
  5133. second) between preemptions by a high-priority
  5134. FIFO real-time task. This delay is mediated
  5135. by an hrtimer and is further fuzzed to avoid
  5136. inadvertent synchronizations.
  5137. rcutorture.read_exit_burst= [KNL]
  5138. The number of times in a given read-then-exit
  5139. episode that a set of read-then-exit kthreads
  5140. is spawned.
  5141. rcutorture.read_exit_delay= [KNL]
  5142. The delay, in seconds, between successive
  5143. read-then-exit testing episodes.
  5144. rcutorture.reader_flavor= [KNL]
  5145. A bit mask indicating which readers to use.
  5146. If there is more than one bit set, the readers
  5147. are entered from low-order bit up, and are
  5148. exited in the opposite order. For SRCU, the
  5149. 0x1 bit is normal readers, 0x2 NMI-safe readers,
  5150. and 0x4 light-weight readers.
  5151. rcutorture.shuffle_interval= [KNL]
  5152. Set task-shuffle interval (s). Shuffling tasks
  5153. allows some CPUs to go into dyntick-idle mode
  5154. during the rcutorture test.
  5155. rcutorture.shutdown_secs= [KNL]
  5156. Set time (s) after boot system shutdown. This
  5157. is useful for hands-off automated testing.
  5158. rcutorture.stall_cpu= [KNL]
  5159. Duration of CPU stall (s) to test RCU CPU stall
  5160. warnings, zero to disable.
  5161. rcutorture.stall_cpu_block= [KNL]
  5162. Sleep while stalling if set. This will result
  5163. in warnings from preemptible RCU in addition to
  5164. any other stall-related activity. Note that
  5165. in kernels built with CONFIG_PREEMPTION=n and
  5166. CONFIG_PREEMPT_COUNT=y, this parameter will
  5167. cause the CPU to pass through a quiescent state.
  5168. Given CONFIG_PREEMPTION=n, this will suppress
  5169. RCU CPU stall warnings, but will instead result
  5170. in scheduling-while-atomic splats.
  5171. Use of this module parameter results in splats.
  5172. rcutorture.stall_cpu_holdoff= [KNL]
  5173. Time to wait (s) after boot before inducing stall.
  5174. rcutorture.stall_cpu_irqsoff= [KNL]
  5175. Disable interrupts while stalling if set, but only
  5176. on the first stall in the set.
  5177. rcutorture.stall_cpu_repeat= [KNL]
  5178. Number of times to repeat the stall sequence,
  5179. so that rcutorture.stall_cpu_repeat=3 will result
  5180. in four stall sequences.
  5181. rcutorture.stall_gp_kthread= [KNL]
  5182. Duration (s) of forced sleep within RCU
  5183. grace-period kthread to test RCU CPU stall
  5184. warnings, zero to disable. If both stall_cpu
  5185. and stall_gp_kthread are specified, the
  5186. kthread is starved first, then the CPU.
  5187. rcutorture.stat_interval= [KNL]
  5188. Time (s) between statistics printk()s.
  5189. rcutorture.stutter= [KNL]
  5190. Time (s) to stutter testing, for example, specifying
  5191. five seconds causes the test to run for five seconds,
  5192. wait for five seconds, and so on. This tests RCU's
  5193. ability to transition abruptly to and from idle.
  5194. rcutorture.test_boost= [KNL]
  5195. Test RCU priority boosting? 0=no, 1=maybe, 2=yes.
  5196. "Maybe" means test if the RCU implementation
  5197. under test support RCU priority boosting.
  5198. rcutorture.test_boost_duration= [KNL]
  5199. Duration (s) of each individual boost test.
  5200. rcutorture.test_boost_holdoff= [KNL]
  5201. Holdoff time (s) from start of test to the start
  5202. of RCU priority-boost testing. Defaults to zero,
  5203. that is, no holdoff.
  5204. rcutorture.test_boost_interval= [KNL]
  5205. Interval (s) between each boost test.
  5206. rcutorture.test_no_idle_hz= [KNL]
  5207. Test RCU's dyntick-idle handling. See also the
  5208. rcutorture.shuffle_interval parameter.
  5209. rcutorture.torture_type= [KNL]
  5210. Specify the RCU implementation to test.
  5211. rcutorture.verbose= [KNL]
  5212. Enable additional printk() statements.
  5213. rcupdate.rcu_cpu_stall_ftrace_dump= [KNL]
  5214. Dump ftrace buffer after reporting RCU CPU
  5215. stall warning.
  5216. rcupdate.rcu_cpu_stall_notifiers= [KNL]
  5217. Provide RCU CPU stall notifiers, but see the
  5218. warnings in the RCU_CPU_STALL_NOTIFIER Kconfig
  5219. option's help text. TL;DR: You almost certainly
  5220. do not want rcupdate.rcu_cpu_stall_notifiers.
  5221. rcupdate.rcu_cpu_stall_suppress= [KNL]
  5222. Suppress RCU CPU stall warning messages.
  5223. rcupdate.rcu_cpu_stall_suppress_at_boot= [KNL]
  5224. Suppress RCU CPU stall warning messages and
  5225. rcutorture writer stall warnings that occur
  5226. during early boot, that is, during the time
  5227. before the init task is spawned.
  5228. rcupdate.rcu_cpu_stall_timeout= [KNL]
  5229. Set timeout for RCU CPU stall warning messages.
  5230. The value is in seconds and the maximum allowed
  5231. value is 300 seconds.
  5232. rcupdate.rcu_exp_cpu_stall_timeout= [KNL]
  5233. Set timeout for expedited RCU CPU stall warning
  5234. messages. The value is in milliseconds
  5235. and the maximum allowed value is 21000
  5236. milliseconds. Please note that this value is
  5237. adjusted to an arch timer tick resolution.
  5238. Setting this to zero causes the value from
  5239. rcupdate.rcu_cpu_stall_timeout to be used (after
  5240. conversion from seconds to milliseconds).
  5241. rcupdate.rcu_cpu_stall_cputime= [KNL]
  5242. Provide statistics on the cputime and count of
  5243. interrupts and tasks during the sampling period. For
  5244. multiple continuous RCU stalls, all sampling periods
  5245. begin at half of the first RCU stall timeout.
  5246. rcupdate.rcu_exp_stall_task_details= [KNL]
  5247. Print stack dumps of any tasks blocking the
  5248. current expedited RCU grace period during an
  5249. expedited RCU CPU stall warning.
  5250. rcupdate.rcu_expedited= [KNL]
  5251. Use expedited grace-period primitives, for
  5252. example, synchronize_rcu_expedited() instead
  5253. of synchronize_rcu(). This reduces latency,
  5254. but can increase CPU utilization, degrade
  5255. real-time latency, and degrade energy efficiency.
  5256. No effect on CONFIG_TINY_RCU kernels.
  5257. rcupdate.rcu_normal= [KNL]
  5258. Use only normal grace-period primitives,
  5259. for example, synchronize_rcu() instead of
  5260. synchronize_rcu_expedited(). This improves
  5261. real-time latency, CPU utilization, and
  5262. energy efficiency, but can expose users to
  5263. increased grace-period latency. This parameter
  5264. overrides rcupdate.rcu_expedited. No effect on
  5265. CONFIG_TINY_RCU kernels.
  5266. rcupdate.rcu_normal_after_boot= [KNL]
  5267. Once boot has completed (that is, after
  5268. rcu_end_inkernel_boot() has been invoked), use
  5269. only normal grace-period primitives. No effect
  5270. on CONFIG_TINY_RCU kernels.
  5271. But note that CONFIG_PREEMPT_RT=y kernels enables
  5272. this kernel boot parameter, forcibly setting
  5273. it to the value one, that is, converting any
  5274. post-boot attempt at an expedited RCU grace
  5275. period to instead use normal non-expedited
  5276. grace-period processing.
  5277. rcupdate.rcu_task_collapse_lim= [KNL]
  5278. Set the maximum number of callbacks present
  5279. at the beginning of a grace period that allows
  5280. the RCU Tasks flavors to collapse back to using
  5281. a single callback queue. This switching only
  5282. occurs when rcupdate.rcu_task_enqueue_lim is
  5283. set to the default value of -1.
  5284. rcupdate.rcu_task_contend_lim= [KNL]
  5285. Set the minimum number of callback-queuing-time
  5286. lock-contention events per jiffy required to
  5287. cause the RCU Tasks flavors to switch to per-CPU
  5288. callback queuing. This switching only occurs
  5289. when rcupdate.rcu_task_enqueue_lim is set to
  5290. the default value of -1.
  5291. rcupdate.rcu_task_enqueue_lim= [KNL]
  5292. Set the number of callback queues to use for the
  5293. RCU Tasks family of RCU flavors. The default
  5294. of -1 allows this to be automatically (and
  5295. dynamically) adjusted. This parameter is intended
  5296. for use in testing.
  5297. rcupdate.rcu_task_lazy_lim= [KNL]
  5298. Number of callbacks on a given CPU that will
  5299. cancel laziness on that CPU. Use -1 to disable
  5300. cancellation of laziness, but be advised that
  5301. doing so increases the danger of OOM due to
  5302. callback flooding.
  5303. rcupdate.rcu_task_stall_info= [KNL]
  5304. Set initial timeout in jiffies for RCU task stall
  5305. informational messages, which give some indication
  5306. of the problem for those not patient enough to
  5307. wait for ten minutes. Informational messages are
  5308. only printed prior to the stall-warning message
  5309. for a given grace period. Disable with a value
  5310. less than or equal to zero. Defaults to ten
  5311. seconds. A change in value does not take effect
  5312. until the beginning of the next grace period.
  5313. rcupdate.rcu_task_stall_info_mult= [KNL]
  5314. Multiplier for time interval between successive
  5315. RCU task stall informational messages for a given
  5316. RCU tasks grace period. This value is clamped
  5317. to one through ten, inclusive. It defaults to
  5318. the value three, so that the first informational
  5319. message is printed 10 seconds into the grace
  5320. period, the second at 40 seconds, the third at
  5321. 160 seconds, and then the stall warning at 600
  5322. seconds would prevent a fourth at 640 seconds.
  5323. rcupdate.rcu_task_stall_timeout= [KNL]
  5324. Set timeout in jiffies for RCU task stall
  5325. warning messages. Disable with a value less
  5326. than or equal to zero. Defaults to ten minutes.
  5327. A change in value does not take effect until
  5328. the beginning of the next grace period.
  5329. rcupdate.rcu_tasks_lazy_ms= [KNL]
  5330. Set timeout in milliseconds RCU Tasks asynchronous
  5331. callback batching for call_rcu_tasks().
  5332. A negative value will take the default. A value
  5333. of zero will disable batching. Batching is
  5334. always disabled for synchronize_rcu_tasks().
  5335. rcupdate.rcu_self_test= [KNL]
  5336. Run the RCU early boot self tests
  5337. rdinit= [KNL]
  5338. Format: <full_path>
  5339. Run specified binary instead of /init from the ramdisk,
  5340. used for early userspace startup. See initrd.
  5341. rdrand= [X86,EARLY]
  5342. force - Override the decision by the kernel to hide the
  5343. advertisement of RDRAND support (this affects
  5344. certain AMD processors because of buggy BIOS
  5345. support, specifically around the suspend/resume
  5346. path).
  5347. rdt= [HW,X86,RDT]
  5348. Turn on/off individual RDT features. List is:
  5349. cmt, mbmtotal, mbmlocal, l3cat, l3cdp, l2cat, l2cdp,
  5350. mba, smba, bmec, abmc, sdciae, energy[:guid],
  5351. perf[:guid].
  5352. E.g. to turn on cmt and turn off mba use:
  5353. rdt=cmt,!mba
  5354. To turn off all energy telemetry monitoring and ensure that
  5355. perf telemetry monitoring associated with guid 0x12345
  5356. is enabled use:
  5357. rdt=!energy,perf:0x12345
  5358. reboot= [KNL]
  5359. Format (x86 or x86_64):
  5360. [w[arm] | c[old] | h[ard] | s[oft] | g[pio]] | d[efault] \
  5361. [[,]s[mp]#### \
  5362. [[,]b[ios] | a[cpi] | k[bd] | t[riple] | e[fi] | p[ci]] \
  5363. [[,]f[orce]
  5364. Where reboot_mode is one of warm (soft) or cold (hard) or gpio
  5365. (prefix with 'panic_' to set mode for panic
  5366. reboot only),
  5367. reboot_type is one of bios, acpi, kbd, triple, efi, or pci,
  5368. reboot_force is either force or not specified,
  5369. reboot_cpu is s[mp]#### with #### being the processor
  5370. to be used for rebooting.
  5371. acpi
  5372. Use the ACPI RESET_REG in the FADT. If ACPI is not
  5373. configured or the ACPI reset does not work, the reboot
  5374. path attempts the reset using the keyboard controller.
  5375. bios
  5376. Use the CPU reboot vector for warm reset
  5377. cold
  5378. Set the cold reboot flag
  5379. default
  5380. There are some built-in platform specific "quirks"
  5381. - you may see: "reboot: <name> series board detected.
  5382. Selecting <type> for reboots." In the case where you
  5383. think the quirk is in error (e.g. you have newer BIOS,
  5384. or newer board) using this option will ignore the
  5385. built-in quirk table, and use the generic default
  5386. reboot actions.
  5387. efi
  5388. Use efi reset_system runtime service. If EFI is not
  5389. configured or the EFI reset does not work, the reboot
  5390. path attempts the reset using the keyboard controller.
  5391. force
  5392. Don't stop other CPUs on reboot. This can make reboot
  5393. more reliable in some cases.
  5394. kbd
  5395. Use the keyboard controller. cold reset (default)
  5396. pci
  5397. Use a write to the PCI config space register 0xcf9 to
  5398. trigger reboot.
  5399. triple
  5400. Force a triple fault (init)
  5401. warm
  5402. Don't set the cold reboot flag
  5403. Using warm reset will be much faster especially on big
  5404. memory systems because the BIOS will not go through
  5405. the memory check. Disadvantage is that not all
  5406. hardware will be completely reinitialized on reboot so
  5407. there may be boot problems on some systems.
  5408. refscale.holdoff= [KNL]
  5409. Set test-start holdoff period. The purpose of
  5410. this parameter is to delay the start of the
  5411. test until boot completes in order to avoid
  5412. interference.
  5413. refscale.lookup_instances= [KNL]
  5414. Number of data elements to use for the forms of
  5415. SLAB_TYPESAFE_BY_RCU testing. A negative number
  5416. is negated and multiplied by nr_cpu_ids, while
  5417. zero specifies nr_cpu_ids.
  5418. refscale.loops= [KNL]
  5419. Set the number of loops over the synchronization
  5420. primitive under test. Increasing this number
  5421. reduces noise due to loop start/end overhead,
  5422. but the default has already reduced the per-pass
  5423. noise to a handful of picoseconds on ca. 2020
  5424. x86 laptops.
  5425. refscale.nreaders= [KNL]
  5426. Set number of readers. The default value of -1
  5427. selects N, where N is roughly 75% of the number
  5428. of CPUs. A value of zero is an interesting choice.
  5429. refscale.nruns= [KNL]
  5430. Set number of runs, each of which is dumped onto
  5431. the console log.
  5432. refscale.readdelay= [KNL]
  5433. Set the read-side critical-section duration,
  5434. measured in microseconds.
  5435. refscale.scale_type= [KNL]
  5436. Specify the read-protection implementation to test.
  5437. refscale.shutdown= [KNL]
  5438. Shut down the system at the end of the performance
  5439. test. This defaults to 1 (shut it down) when
  5440. refscale is built into the kernel and to 0 (leave
  5441. it running) when refscale is built as a module.
  5442. refscale.verbose= [KNL]
  5443. Enable additional printk() statements.
  5444. refscale.verbose_batched= [KNL]
  5445. Batch the additional printk() statements. If zero
  5446. (the default) or negative, print everything. Otherwise,
  5447. print every Nth verbose statement, where N is the value
  5448. specified.
  5449. regulator_ignore_unused
  5450. [REGULATOR]
  5451. Prevents regulator framework from disabling regulators
  5452. that are unused, due no driver claiming them. This may
  5453. be useful for debug and development, but should not be
  5454. needed on a platform with proper driver support.
  5455. relax_domain_level=
  5456. [KNL, SMP] Set scheduler's default relax_domain_level.
  5457. See Documentation/admin-guide/cgroup-v1/cpusets.rst.
  5458. reserve= [KNL,BUGS] Force kernel to ignore I/O ports or memory
  5459. Format: <base1>,<size1>[,<base2>,<size2>,...]
  5460. Reserve I/O ports or memory so the kernel won't use
  5461. them. If <base> is less than 0x10000, the region
  5462. is assumed to be I/O ports; otherwise it is memory.
  5463. reserve_mem= [RAM]
  5464. Format: nn[KMG]:<align>:<label>
  5465. Reserve physical memory and label it with a name that
  5466. other subsystems can use to access it. This is typically
  5467. used for systems that do not wipe the RAM, and this command
  5468. line will try to reserve the same physical memory on
  5469. soft reboots. Note, it is not guaranteed to be the same
  5470. location. For example, if anything about the system changes
  5471. or if booting a different kernel. It can also fail if KASLR
  5472. places the kernel at the location of where the RAM reservation
  5473. was from a previous boot, the new reservation will be at a
  5474. different location.
  5475. Any subsystem using this feature must add a way to verify
  5476. that the contents of the physical memory is from a previous
  5477. boot, as there may be cases where the memory will not be
  5478. located at the same location.
  5479. The format is size:align:label for example, to request
  5480. 12 megabytes of 4096 alignment for ramoops:
  5481. reserve_mem=12M:4096:oops ramoops.mem_name=oops
  5482. reservetop= [X86-32,EARLY]
  5483. Format: nn[KMG]
  5484. Reserves a hole at the top of the kernel virtual
  5485. address space.
  5486. reset_devices [KNL] Force drivers to reset the underlying device
  5487. during initialization.
  5488. resume= [SWSUSP]
  5489. Specify the partition device for software suspend
  5490. Format:
  5491. {/dev/<dev> | PARTUUID=<uuid> | <int>:<int> | <hex>}
  5492. resume_offset= [SWSUSP]
  5493. Specify the offset from the beginning of the partition
  5494. given by "resume=" at which the swap header is located,
  5495. in <PAGE_SIZE> units (needed only for swap files).
  5496. See Documentation/power/swsusp-and-swap-files.rst
  5497. resumedelay= [HIBERNATION] Delay (in seconds) to pause before attempting to
  5498. read the resume files
  5499. resumewait [HIBERNATION] Wait (indefinitely) for resume device to show up.
  5500. Useful for devices that are detected asynchronously
  5501. (e.g. USB and MMC devices).
  5502. retain_initrd [RAM] Keep initrd memory after extraction. After boot, it will
  5503. be accessible via /sys/firmware/initrd.
  5504. retbleed= [X86] Control mitigation of RETBleed (Arbitrary
  5505. Speculative Code Execution with Return Instructions)
  5506. vulnerability.
  5507. AMD-based UNRET and IBPB mitigations alone do not stop
  5508. sibling threads from influencing the predictions of other
  5509. sibling threads. For that reason, STIBP is used on pro-
  5510. cessors that support it, and mitigate SMT on processors
  5511. that don't.
  5512. off - no mitigation
  5513. auto - automatically select a mitigation
  5514. auto,nosmt - automatically select a mitigation,
  5515. disabling SMT if necessary for
  5516. the full mitigation (only on Zen1
  5517. and older without STIBP).
  5518. ibpb - On AMD, mitigate short speculation
  5519. windows on basic block boundaries too.
  5520. Safe, highest perf impact. It also
  5521. enables STIBP if present. Not suitable
  5522. on Intel.
  5523. ibpb,nosmt - Like "ibpb" above but will disable SMT
  5524. when STIBP is not available. This is
  5525. the alternative for systems which do not
  5526. have STIBP.
  5527. unret - Force enable untrained return thunks,
  5528. only effective on AMD f15h-f17h based
  5529. systems.
  5530. unret,nosmt - Like unret, but will disable SMT when STIBP
  5531. is not available. This is the alternative for
  5532. systems which do not have STIBP.
  5533. Selecting 'auto' will choose a mitigation method at run
  5534. time according to the CPU.
  5535. Not specifying this option is equivalent to retbleed=auto.
  5536. rfkill.default_state=
  5537. 0 "airplane mode". All wifi, bluetooth, wimax, gps, fm,
  5538. etc. communication is blocked by default.
  5539. 1 Unblocked.
  5540. rfkill.master_switch_mode=
  5541. 0 The "airplane mode" button does nothing.
  5542. 1 The "airplane mode" button toggles between everything
  5543. blocked and the previous configuration.
  5544. 2 The "airplane mode" button toggles between everything
  5545. blocked and everything unblocked.
  5546. ring3mwait=disable
  5547. [KNL] Disable ring 3 MONITOR/MWAIT feature on supported
  5548. CPUs.
  5549. riscv_isa_fallback [RISCV,EARLY]
  5550. When CONFIG_RISCV_ISA_FALLBACK is not enabled, permit
  5551. falling back to detecting extension support by parsing
  5552. "riscv,isa" property on devicetree systems when the
  5553. replacement properties are not found. See the Kconfig
  5554. entry for RISCV_ISA_FALLBACK.
  5555. riscv_nousercfi=
  5556. all Disable user CFI ABI to userspace even if cpu extension
  5557. are available.
  5558. bcfi Disable user backward CFI ABI to userspace even if
  5559. the shadow stack extension is available.
  5560. fcfi Disable user forward CFI ABI to userspace even if the
  5561. landing pad extension is available.
  5562. ro [KNL] Mount root device read-only on boot
  5563. rodata= [KNL,EARLY]
  5564. on Mark read-only kernel memory as read-only (default).
  5565. off Leave read-only kernel memory writable for debugging.
  5566. noalias Mark read-only kernel memory as read-only but retain
  5567. writable aliases in the direct map for regions outside
  5568. of the kernel image. [arm64]
  5569. rockchip.usb_uart
  5570. [EARLY]
  5571. Enable the uart passthrough on the designated usb port
  5572. on Rockchip SoCs. When active, the signals of the
  5573. debug-uart get routed to the D+ and D- pins of the usb
  5574. port and the regular usb controller gets disabled.
  5575. root= [KNL] Root filesystem
  5576. Usually this is a block device specifier of some kind,
  5577. see the early_lookup_bdev comment in
  5578. block/early-lookup.c for details.
  5579. Alternatively this can be "ram" for the legacy initial
  5580. ramdisk, "nfs" and "cifs" for root on a network file
  5581. system, or "mtd" and "ubi" for mounting from raw flash.
  5582. rootdelay= [KNL] Delay (in seconds) to pause before attempting to
  5583. mount the root filesystem
  5584. rootflags= [KNL] Set root filesystem mount option string
  5585. rseq_slice_ext= [KNL] RSEQ based time slice extension
  5586. Format: boolean
  5587. Control enablement of RSEQ based time slice extension.
  5588. Default is 'on'.
  5589. initramfs_options= [KNL]
  5590. Specify mount options for for the initramfs mount.
  5591. rootfstype= [KNL] Set root filesystem type
  5592. rootwait [KNL] Wait (indefinitely) for root device to show up.
  5593. Useful for devices that are detected asynchronously
  5594. (e.g. USB and MMC devices).
  5595. rootwait= [KNL] Maximum time (in seconds) to wait for root device
  5596. to show up before attempting to mount the root
  5597. filesystem.
  5598. rproc_mem=nn[KMG][@address]
  5599. [KNL,ARM,CMA] Remoteproc physical memory block.
  5600. Memory area to be used by remote processor image,
  5601. managed by CMA.
  5602. rseq_debug= [KNL] Enable or disable restartable sequence
  5603. debug mode. Defaults to CONFIG_RSEQ_DEBUG_DEFAULT_ENABLE.
  5604. Format: <bool>
  5605. rt_group_sched= [KNL] Enable or disable SCHED_RR/FIFO group scheduling
  5606. when CONFIG_RT_GROUP_SCHED=y. Defaults to
  5607. !CONFIG_RT_GROUP_SCHED_DEFAULT_DISABLED.
  5608. Format: <bool>
  5609. rw [KNL] Mount root device read-write on boot
  5610. S [KNL] Run init in single mode
  5611. s390_iommu= [HW,S390]
  5612. Set s390 IOTLB flushing mode
  5613. strict
  5614. With strict flushing every unmap operation will result
  5615. in an IOTLB flush. Default is lazy flushing before
  5616. reuse, which is faster. Deprecated, equivalent to
  5617. iommu.strict=1.
  5618. s390_iommu_aperture= [KNL,S390]
  5619. Specifies the size of the per device DMA address space
  5620. accessible through the DMA and IOMMU APIs as a decimal
  5621. factor of the size of main memory.
  5622. The default is 1 meaning that one can concurrently use
  5623. as many DMA addresses as physical memory is installed,
  5624. if supported by hardware, and thus map all of memory
  5625. once. With a value of 2 one can map all of memory twice
  5626. and so on. As a special case a factor of 0 imposes no
  5627. restrictions other than those given by hardware at the
  5628. cost of significant additional memory use for tables.
  5629. sa1100ir [NET]
  5630. See drivers/net/irda/sa1100_ir.c.
  5631. sched_proxy_exec= [KNL]
  5632. Enables or disables "proxy execution" style
  5633. solution to mutex-based priority inversion.
  5634. Format: <bool>
  5635. sched_verbose [KNL,EARLY] Enables verbose scheduler debug messages.
  5636. schedstats= [KNL,X86] Enable or disable scheduled statistics.
  5637. Allowed values are enable and disable. This feature
  5638. incurs a small amount of overhead in the scheduler
  5639. but is useful for debugging and performance tuning.
  5640. sched_thermal_decay_shift=
  5641. [Deprecated]
  5642. [KNL, SMP] Set a decay shift for scheduler thermal
  5643. pressure signal. Thermal pressure signal follows the
  5644. default decay period of other scheduler pelt
  5645. signals(usually 32 ms but configurable). Setting
  5646. sched_thermal_decay_shift will left shift the decay
  5647. period for the thermal pressure signal by the shift
  5648. value.
  5649. i.e. with the default pelt decay period of 32 ms
  5650. sched_thermal_decay_shift thermal pressure decay pr
  5651. 1 64 ms
  5652. 2 128 ms
  5653. and so on.
  5654. Format: integer between 0 and 10
  5655. Default is 0.
  5656. scftorture.holdoff= [KNL]
  5657. Number of seconds to hold off before starting
  5658. test. Defaults to zero for module insertion and
  5659. to 10 seconds for built-in smp_call_function()
  5660. tests.
  5661. scftorture.longwait= [KNL]
  5662. Request ridiculously long waits randomly selected
  5663. up to the chosen limit in seconds. Zero (the
  5664. default) disables this feature. Please note
  5665. that requesting even small non-zero numbers of
  5666. seconds can result in RCU CPU stall warnings,
  5667. softlockup complaints, and so on.
  5668. scftorture.nthreads= [KNL]
  5669. Number of kthreads to spawn to invoke the
  5670. smp_call_function() family of functions.
  5671. The default of -1 specifies a number of kthreads
  5672. equal to the number of CPUs.
  5673. scftorture.onoff_holdoff= [KNL]
  5674. Number seconds to wait after the start of the
  5675. test before initiating CPU-hotplug operations.
  5676. scftorture.onoff_interval= [KNL]
  5677. Number seconds to wait between successive
  5678. CPU-hotplug operations. Specifying zero (which
  5679. is the default) disables CPU-hotplug operations.
  5680. scftorture.shutdown_secs= [KNL]
  5681. The number of seconds following the start of the
  5682. test after which to shut down the system. The
  5683. default of zero avoids shutting down the system.
  5684. Non-zero values are useful for automated tests.
  5685. scftorture.stat_interval= [KNL]
  5686. The number of seconds between outputting the
  5687. current test statistics to the console. A value
  5688. of zero disables statistics output.
  5689. scftorture.stutter_cpus= [KNL]
  5690. The number of jiffies to wait between each change
  5691. to the set of CPUs under test.
  5692. scftorture.use_cpus_read_lock= [KNL]
  5693. Use use_cpus_read_lock() instead of the default
  5694. preempt_disable() to disable CPU hotplug
  5695. while invoking one of the smp_call_function*()
  5696. functions.
  5697. scftorture.verbose= [KNL]
  5698. Enable additional printk() statements.
  5699. scftorture.weight_single= [KNL]
  5700. The probability weighting to use for the
  5701. smp_call_function_single() function with a zero
  5702. "wait" parameter. A value of -1 selects the
  5703. default if all other weights are -1. However,
  5704. if at least one weight has some other value, a
  5705. value of -1 will instead select a weight of zero.
  5706. scftorture.weight_single_wait= [KNL]
  5707. The probability weighting to use for the
  5708. smp_call_function_single() function with a
  5709. non-zero "wait" parameter. See weight_single.
  5710. scftorture.weight_many= [KNL]
  5711. The probability weighting to use for the
  5712. smp_call_function_many() function with a zero
  5713. "wait" parameter. See weight_single.
  5714. Note well that setting a high probability for
  5715. this weighting can place serious IPI load
  5716. on the system.
  5717. scftorture.weight_many_wait= [KNL]
  5718. The probability weighting to use for the
  5719. smp_call_function_many() function with a
  5720. non-zero "wait" parameter. See weight_single
  5721. and weight_many.
  5722. scftorture.weight_all= [KNL]
  5723. The probability weighting to use for the
  5724. smp_call_function_all() function with a zero
  5725. "wait" parameter. See weight_single and
  5726. weight_many.
  5727. scftorture.weight_all_wait= [KNL]
  5728. The probability weighting to use for the
  5729. smp_call_function_all() function with a
  5730. non-zero "wait" parameter. See weight_single
  5731. and weight_many.
  5732. sdw_mclk_divider=[SDW]
  5733. Specify the MCLK divider for Intel SoundWire buses in
  5734. case the BIOS does not provide the clock rate properly.
  5735. skew_tick= [KNL,EARLY] Offset the periodic timer tick per cpu to mitigate
  5736. xtime_lock contention on larger systems, and/or RCU lock
  5737. contention on all systems with CONFIG_MAXSMP set.
  5738. Format: { "0" | "1" }
  5739. 0 -- disable. (may be 1 via CONFIG_CMDLINE="skew_tick=1"
  5740. 1 -- enable.
  5741. Note: increases power consumption, thus should only be
  5742. enabled if running jitter sensitive (HPC/RT) workloads.
  5743. security= [SECURITY] Choose a legacy "major" security module to
  5744. enable at boot. This has been deprecated by the
  5745. "lsm=" parameter.
  5746. selinux= [SELINUX] Disable or enable SELinux at boot time.
  5747. Format: { "0" | "1" }
  5748. See security/selinux/Kconfig help text.
  5749. 0 -- disable.
  5750. 1 -- enable.
  5751. Default value is 1.
  5752. serialnumber [BUGS=X86-32]
  5753. sev=option[,option...] [X86-64]
  5754. debug
  5755. Enable debug messages.
  5756. nosnp
  5757. Do not enable SEV-SNP (applies to host/hypervisor
  5758. only). Setting 'nosnp' avoids the RMP check overhead
  5759. in memory accesses when users do not want to run
  5760. SEV-SNP guests.
  5761. shapers= [NET]
  5762. Maximal number of shapers.
  5763. show_lapic= [APIC,X86] Advanced Programmable Interrupt Controller
  5764. Limit apic dumping. The parameter defines the maximal
  5765. number of local apics being dumped. Also it is possible
  5766. to set it to "all" by meaning -- no limit here.
  5767. Format: { 1 (default) | 2 | ... | all }.
  5768. The parameter valid if only apic=debug or
  5769. apic=verbose is specified.
  5770. Example: apic=debug show_lapic=all
  5771. slab_debug[=options[,slabs][;[options[,slabs]]...] [MM]
  5772. Enabling slab_debug allows one to determine the
  5773. culprit if slab objects become corrupted. Enabling
  5774. slab_debug can create guard zones around objects and
  5775. may poison objects when not in use. Also tracks the
  5776. last alloc / free. For more information see
  5777. Documentation/admin-guide/mm/slab.rst.
  5778. (slub_debug legacy name also accepted for now)
  5779. Using this option implies the "no_hash_pointers"
  5780. option which can be undone by adding the
  5781. "hash_pointers=always" option.
  5782. slab_max_order= [MM]
  5783. Determines the maximum allowed order for slabs.
  5784. A high setting may cause OOMs due to memory
  5785. fragmentation. For more information see
  5786. Documentation/admin-guide/mm/slab.rst.
  5787. (slub_max_order legacy name also accepted for now)
  5788. slab_merge [MM]
  5789. Enable merging of slabs with similar size when the
  5790. kernel is built without CONFIG_SLAB_MERGE_DEFAULT.
  5791. (slub_merge legacy name also accepted for now)
  5792. slab_min_objects= [MM]
  5793. The minimum number of objects per slab. SLUB will
  5794. increase the slab order up to slab_max_order to
  5795. generate a sufficiently large slab able to contain
  5796. the number of objects indicated. The higher the number
  5797. of objects the smaller the overhead of tracking slabs
  5798. and the less frequently locks need to be acquired.
  5799. For more information see
  5800. Documentation/admin-guide/mm/slab.rst.
  5801. (slub_min_objects legacy name also accepted for now)
  5802. slab_min_order= [MM]
  5803. Determines the minimum page order for slabs. Must be
  5804. lower or equal to slab_max_order. For more information see
  5805. Documentation/admin-guide/mm/slab.rst.
  5806. (slub_min_order legacy name also accepted for now)
  5807. slab_nomerge [MM]
  5808. Disable merging of slabs with similar size. May be
  5809. necessary if there is some reason to distinguish
  5810. allocs to different slabs, especially in hardened
  5811. environments where the risk of heap overflows and
  5812. layout control by attackers can usually be
  5813. frustrated by disabling merging. This will reduce
  5814. most of the exposure of a heap attack to a single
  5815. cache (risks via metadata attacks are mostly
  5816. unchanged). Debug options disable merging on their
  5817. own.
  5818. For more information see
  5819. Documentation/admin-guide/mm/slab.rst.
  5820. (slub_nomerge legacy name also accepted for now)
  5821. slab_strict_numa [MM]
  5822. Support memory policies on a per object level
  5823. in the slab allocator. The default is for memory
  5824. policies to be applied at the folio level when
  5825. a new folio is needed or a partial folio is
  5826. retrieved from the lists. Increases overhead
  5827. in the slab fastpaths but gains more accurate
  5828. NUMA kernel object placement which helps with slow
  5829. interconnects in NUMA systems.
  5830. slram= [HW,MTD]
  5831. smart2= [HW]
  5832. Format: <io1>[,<io2>[,...,<io8>]]
  5833. smp.csd_lock_timeout= [KNL]
  5834. Specify the period of time in milliseconds
  5835. that smp_call_function() and friends will wait
  5836. for a CPU to release the CSD lock. This is
  5837. useful when diagnosing bugs involving CPUs
  5838. disabling interrupts for extended periods
  5839. of time. Defaults to 5,000 milliseconds, and
  5840. setting a value of zero disables this feature.
  5841. This feature may be more efficiently disabled
  5842. using the csdlock_debug- kernel parameter.
  5843. smp.panic_on_ipistall= [KNL]
  5844. If a csd_lock_timeout extends for more than
  5845. the specified number of milliseconds, panic the
  5846. system. By default, let CSD-lock acquisition
  5847. take as long as they take. Specifying 300,000
  5848. for this value provides a 5-minute timeout.
  5849. smsc-ircc2.nopnp [HW] Don't use PNP to discover SMC devices
  5850. smsc-ircc2.ircc_cfg= [HW] Device configuration I/O port
  5851. smsc-ircc2.ircc_sir= [HW] SIR base I/O port
  5852. smsc-ircc2.ircc_fir= [HW] FIR base I/O port
  5853. smsc-ircc2.ircc_irq= [HW] IRQ line
  5854. smsc-ircc2.ircc_dma= [HW] DMA channel
  5855. smsc-ircc2.ircc_transceiver= [HW] Transceiver type:
  5856. 0: Toshiba Satellite 1800 (GP data pin select)
  5857. 1: Fast pin select (default)
  5858. 2: ATC IRMode
  5859. smt= [KNL,MIPS,S390,EARLY] Set the maximum number of threads
  5860. (logical CPUs) to use per physical CPU on systems
  5861. capable of symmetric multithreading (SMT). Will
  5862. be capped to the actual hardware limit.
  5863. Format: <integer>
  5864. Default: -1 (no limit)
  5865. softlockup_panic=
  5866. [KNL] Should the soft-lockup detector generate panics.
  5867. Format: <int>
  5868. A value of non-zero instructs the soft-lockup detector
  5869. to panic the machine when a soft-lockup duration exceeds
  5870. N thresholds. It is also controlled by the kernel.softlockup_panic
  5871. sysctl and CONFIG_BOOTPARAM_SOFTLOCKUP_PANIC, which is the
  5872. respective build-time switch to that functionality.
  5873. softlockup_all_cpu_backtrace=
  5874. [KNL] Should the soft-lockup detector generate
  5875. backtraces on all cpus.
  5876. Format: 0 | 1
  5877. sonypi.*= [HW] Sony Programmable I/O Control Device driver
  5878. See Documentation/admin-guide/laptops/sonypi.rst
  5879. spectre_bhi= [X86] Control mitigation of Branch History Injection
  5880. (BHI) vulnerability. This setting affects the
  5881. deployment of the HW BHI control and the SW BHB
  5882. clearing sequence.
  5883. on - (default) Enable the HW or SW mitigation as
  5884. needed. This protects the kernel from
  5885. both syscalls and VMs.
  5886. vmexit - On systems which don't have the HW mitigation
  5887. available, enable the SW mitigation on vmexit
  5888. ONLY. On such systems, the host kernel is
  5889. protected from VM-originated BHI attacks, but
  5890. may still be vulnerable to syscall attacks.
  5891. off - Disable the mitigation.
  5892. spectre_v2= [X86,EARLY] Control mitigation of Spectre variant 2
  5893. (indirect branch speculation) vulnerability.
  5894. The default operation protects the kernel from
  5895. user space attacks.
  5896. on - unconditionally enable, implies
  5897. spectre_v2_user=on
  5898. off - unconditionally disable, implies
  5899. spectre_v2_user=off
  5900. auto - kernel detects whether your CPU model is
  5901. vulnerable
  5902. Selecting 'on' will, and 'auto' may, choose a
  5903. mitigation method at run time according to the
  5904. CPU, the available microcode, the setting of the
  5905. CONFIG_MITIGATION_RETPOLINE configuration option,
  5906. and the compiler with which the kernel was built.
  5907. Selecting 'on' will also enable the mitigation
  5908. against user space to user space task attacks.
  5909. Selecting specific mitigation does not force enable
  5910. user mitigations.
  5911. Selecting 'off' will disable both the kernel and
  5912. the user space protections.
  5913. Specific mitigations can also be selected manually:
  5914. retpoline - replace indirect branches
  5915. retpoline,generic - Retpolines
  5916. retpoline,lfence - LFENCE; indirect branch
  5917. retpoline,amd - alias for retpoline,lfence
  5918. eibrs - Enhanced/Auto IBRS
  5919. eibrs,retpoline - Enhanced/Auto IBRS + Retpolines
  5920. eibrs,lfence - Enhanced/Auto IBRS + LFENCE
  5921. ibrs - use IBRS to protect kernel
  5922. Not specifying this option is equivalent to
  5923. spectre_v2=auto.
  5924. spectre_v2_user=
  5925. [X86] Control mitigation of Spectre variant 2
  5926. (indirect branch speculation) vulnerability between
  5927. user space tasks
  5928. on - Unconditionally enable mitigations. Is
  5929. enforced by spectre_v2=on
  5930. off - Unconditionally disable mitigations. Is
  5931. enforced by spectre_v2=off
  5932. prctl - Indirect branch speculation is enabled,
  5933. but mitigation can be enabled via prctl
  5934. per thread. The mitigation control state
  5935. is inherited on fork.
  5936. prctl,ibpb
  5937. - Like "prctl" above, but only STIBP is
  5938. controlled per thread. IBPB is issued
  5939. always when switching between different user
  5940. space processes.
  5941. seccomp
  5942. - Same as "prctl" above, but all seccomp
  5943. threads will enable the mitigation unless
  5944. they explicitly opt out.
  5945. seccomp,ibpb
  5946. - Like "seccomp" above, but only STIBP is
  5947. controlled per thread. IBPB is issued
  5948. always when switching between different
  5949. user space processes.
  5950. auto - Kernel selects the mitigation depending on
  5951. the available CPU features and vulnerability.
  5952. Default mitigation: "prctl"
  5953. Not specifying this option is equivalent to
  5954. spectre_v2_user=auto.
  5955. spec_rstack_overflow=
  5956. [X86,EARLY] Control RAS overflow mitigation on AMD Zen CPUs
  5957. off - Disable mitigation
  5958. microcode - Enable microcode mitigation only
  5959. safe-ret - Enable sw-only safe RET mitigation (default)
  5960. ibpb - Enable mitigation by issuing IBPB on
  5961. kernel entry
  5962. ibpb-vmexit - Issue IBPB only on VMEXIT
  5963. (cloud-specific mitigation)
  5964. spec_store_bypass_disable=
  5965. [HW,EARLY] Control Speculative Store Bypass (SSB) Disable mitigation
  5966. (Speculative Store Bypass vulnerability)
  5967. Certain CPUs are vulnerable to an exploit against a
  5968. a common industry wide performance optimization known
  5969. as "Speculative Store Bypass" in which recent stores
  5970. to the same memory location may not be observed by
  5971. later loads during speculative execution. The idea
  5972. is that such stores are unlikely and that they can
  5973. be detected prior to instruction retirement at the
  5974. end of a particular speculation execution window.
  5975. In vulnerable processors, the speculatively forwarded
  5976. store can be used in a cache side channel attack, for
  5977. example to read memory to which the attacker does not
  5978. directly have access (e.g. inside sandboxed code).
  5979. This parameter controls whether the Speculative Store
  5980. Bypass optimization is used.
  5981. On x86 the options are:
  5982. on - Unconditionally disable Speculative Store Bypass
  5983. off - Unconditionally enable Speculative Store Bypass
  5984. auto - Kernel detects whether the CPU model contains an
  5985. implementation of Speculative Store Bypass and
  5986. picks the most appropriate mitigation. If the
  5987. CPU is not vulnerable, "off" is selected. If the
  5988. CPU is vulnerable the default mitigation is
  5989. architecture and Kconfig dependent. See below.
  5990. prctl - Control Speculative Store Bypass per thread
  5991. via prctl. Speculative Store Bypass is enabled
  5992. for a process by default. The state of the control
  5993. is inherited on fork.
  5994. seccomp - Same as "prctl" above, but all seccomp threads
  5995. will disable SSB unless they explicitly opt out.
  5996. Default mitigations:
  5997. X86: "prctl"
  5998. On powerpc the options are:
  5999. on,auto - On Power8 and Power9 insert a store-forwarding
  6000. barrier on kernel entry and exit. On Power7
  6001. perform a software flush on kernel entry and
  6002. exit.
  6003. off - No action.
  6004. Not specifying this option is equivalent to
  6005. spec_store_bypass_disable=auto.
  6006. split_lock_detect=
  6007. [X86] Enable split lock detection or bus lock detection
  6008. When enabled (and if hardware support is present), atomic
  6009. instructions that access data across cache line
  6010. boundaries will result in an alignment check exception
  6011. for split lock detection or a debug exception for
  6012. bus lock detection.
  6013. off - not enabled
  6014. warn - the kernel will emit rate-limited warnings
  6015. about applications triggering the #AC
  6016. exception or the #DB exception. This mode is
  6017. the default on CPUs that support split lock
  6018. detection or bus lock detection. Default
  6019. behavior is by #AC if both features are
  6020. enabled in hardware.
  6021. fatal - the kernel will send SIGBUS to applications
  6022. that trigger the #AC exception or the #DB
  6023. exception. Default behavior is by #AC if
  6024. both features are enabled in hardware.
  6025. ratelimit:N -
  6026. Set system wide rate limit to N bus locks
  6027. per second for bus lock detection.
  6028. 0 < N <= 1000.
  6029. N/A for split lock detection.
  6030. If an #AC exception is hit in the kernel or in
  6031. firmware (i.e. not while executing in user mode)
  6032. the kernel will oops in either "warn" or "fatal"
  6033. mode.
  6034. #DB exception for bus lock is triggered only when
  6035. CPL > 0.
  6036. srbds= [X86,INTEL,EARLY]
  6037. Control the Special Register Buffer Data Sampling
  6038. (SRBDS) mitigation.
  6039. Certain CPUs are vulnerable to an MDS-like
  6040. exploit which can leak bits from the random
  6041. number generator.
  6042. By default, this issue is mitigated by
  6043. microcode. However, the microcode fix can cause
  6044. the RDRAND and RDSEED instructions to become
  6045. much slower. Among other effects, this will
  6046. result in reduced throughput from /dev/urandom.
  6047. The microcode mitigation can be disabled with
  6048. the following option:
  6049. off: Disable mitigation and remove
  6050. performance impact to RDRAND and RDSEED
  6051. srcutree.big_cpu_lim [KNL]
  6052. Specifies the number of CPUs constituting a
  6053. large system, such that srcu_struct structures
  6054. should immediately allocate an srcu_node array.
  6055. This kernel-boot parameter defaults to 128,
  6056. but takes effect only when the low-order four
  6057. bits of srcutree.convert_to_big is equal to 3
  6058. (decide at boot).
  6059. srcutree.convert_to_big [KNL]
  6060. Specifies under what conditions an SRCU tree
  6061. srcu_struct structure will be converted to big
  6062. form, that is, with an rcu_node tree:
  6063. 0: Never.
  6064. 1: At init_srcu_struct() time.
  6065. 2: When rcutorture decides to.
  6066. 3: Decide at boot time (default).
  6067. 0x1X: Above plus if high contention.
  6068. Either way, the srcu_node tree will be sized based
  6069. on the actual runtime number of CPUs (nr_cpu_ids)
  6070. instead of the compile-time CONFIG_NR_CPUS.
  6071. srcutree.counter_wrap_check [KNL]
  6072. Specifies how frequently to check for
  6073. grace-period sequence counter wrap for the
  6074. srcu_data structure's ->srcu_gp_seq_needed field.
  6075. The greater the number of bits set in this kernel
  6076. parameter, the less frequently counter wrap will
  6077. be checked for. Note that the bottom two bits
  6078. are ignored.
  6079. srcutree.exp_holdoff [KNL]
  6080. Specifies how many nanoseconds must elapse
  6081. since the end of the last SRCU grace period for
  6082. a given srcu_struct until the next normal SRCU
  6083. grace period will be considered for automatic
  6084. expediting. Set to zero to disable automatic
  6085. expediting.
  6086. srcutree.srcu_max_nodelay [KNL]
  6087. Specifies the number of no-delay instances
  6088. per jiffy for which the SRCU grace period
  6089. worker thread will be rescheduled with zero
  6090. delay. Beyond this limit, worker thread will
  6091. be rescheduled with a sleep delay of one jiffy.
  6092. srcutree.srcu_max_nodelay_phase [KNL]
  6093. Specifies the per-grace-period phase, number of
  6094. non-sleeping polls of readers. Beyond this limit,
  6095. grace period worker thread will be rescheduled
  6096. with a sleep delay of one jiffy, between each
  6097. rescan of the readers, for a grace period phase.
  6098. srcutree.srcu_retry_check_delay [KNL]
  6099. Specifies number of microseconds of non-sleeping
  6100. delay between each non-sleeping poll of readers.
  6101. srcutree.small_contention_lim [KNL]
  6102. Specifies the number of update-side contention
  6103. events per jiffy will be tolerated before
  6104. initiating a conversion of an srcu_struct
  6105. structure to big form. Note that the value of
  6106. srcutree.convert_to_big must have the 0x10 bit
  6107. set for contention-based conversions to occur.
  6108. ssbd= [ARM64,HW,EARLY]
  6109. Speculative Store Bypass Disable control
  6110. On CPUs that are vulnerable to the Speculative
  6111. Store Bypass vulnerability and offer a
  6112. firmware based mitigation, this parameter
  6113. indicates how the mitigation should be used:
  6114. force-on: Unconditionally enable mitigation for
  6115. for both kernel and userspace
  6116. force-off: Unconditionally disable mitigation for
  6117. for both kernel and userspace
  6118. kernel: Always enable mitigation in the
  6119. kernel, and offer a prctl interface
  6120. to allow userspace to register its
  6121. interest in being mitigated too.
  6122. stack_guard_gap= [MM]
  6123. override the default stack gap protection. The value
  6124. is in page units and it defines how many pages prior
  6125. to (for stacks growing down) resp. after (for stacks
  6126. growing up) the main stack are reserved for no other
  6127. mapping. Default value is 256 pages.
  6128. stack_depot_disable= [KNL,EARLY]
  6129. Setting this to true through kernel command line will
  6130. disable the stack depot thereby saving the static memory
  6131. consumed by the stack hash table. By default this is set
  6132. to false.
  6133. stack_depot_max_pools= [KNL,EARLY]
  6134. Specify the maximum number of pools to use for storing
  6135. stack traces. Pools are allocated on-demand up to this
  6136. limit. Default value is 8191 pools.
  6137. stacktrace [FTRACE]
  6138. Enable the stack tracer on boot up.
  6139. stacktrace_filter=[function-list]
  6140. [FTRACE] Limit the functions that the stack tracer
  6141. will trace at boot up. function-list is a comma-separated
  6142. list of functions. This list can be changed at run
  6143. time by the stack_trace_filter file in the debugfs
  6144. tracing directory. Note, this enables stack tracing
  6145. and the stacktrace above is not needed.
  6146. sti= [PARISC,HW]
  6147. Format: <num>
  6148. Set the STI (builtin display/keyboard on the HP-PARISC
  6149. machines) console (graphic card) which should be used
  6150. as the initial boot-console.
  6151. See also comment in drivers/video/console/sticore.c.
  6152. sti_font= [HW]
  6153. See comment in drivers/video/console/sticore.c.
  6154. stifb= [HW]
  6155. Format: bpp:<bpp1>[:<bpp2>[:<bpp3>...]]
  6156. strict_sas_size=
  6157. [X86]
  6158. Format: <bool>
  6159. Enable or disable strict sigaltstack size checks
  6160. against the required signal frame size which
  6161. depends on the supported FPU features. This can
  6162. be used to filter out binaries which have
  6163. not yet been made aware of AT_MINSIGSTKSZ.
  6164. stress_hpt [PPC,EARLY]
  6165. Limits the number of kernel HPT entries in the hash
  6166. page table to increase the rate of hash page table
  6167. faults on kernel addresses.
  6168. stress_slb [PPC,EARLY]
  6169. Limits the number of kernel SLB entries, and flushes
  6170. them frequently to increase the rate of SLB faults
  6171. on kernel addresses.
  6172. no_slb_preload [PPC,EARLY]
  6173. Disables slb preloading for userspace.
  6174. sunrpc.min_resvport=
  6175. sunrpc.max_resvport=
  6176. [NFS,SUNRPC]
  6177. SunRPC servers often require that client requests
  6178. originate from a privileged port (i.e. a port in the
  6179. range 0 < portnr < 1024).
  6180. An administrator who wishes to reserve some of these
  6181. ports for other uses may adjust the range that the
  6182. kernel's sunrpc client considers to be privileged
  6183. using these two parameters to set the minimum and
  6184. maximum port values.
  6185. sunrpc.svc_rpc_per_connection_limit=
  6186. [NFS,SUNRPC]
  6187. Limit the number of requests that the server will
  6188. process in parallel from a single connection.
  6189. The default value is 0 (no limit).
  6190. sunrpc.pool_mode=
  6191. [NFS]
  6192. Control how the NFS server code allocates CPUs to
  6193. service thread pools. Depending on how many NICs
  6194. you have and where their interrupts are bound, this
  6195. option will affect which CPUs will do NFS serving.
  6196. Note: this parameter cannot be changed while the
  6197. NFS server is running.
  6198. auto the server chooses an appropriate mode
  6199. automatically using heuristics
  6200. global a single global pool contains all CPUs
  6201. percpu one pool for each CPU
  6202. pernode one pool for each NUMA node (equivalent
  6203. to global on non-NUMA machines)
  6204. sunrpc.tcp_slot_table_entries=
  6205. sunrpc.udp_slot_table_entries=
  6206. [NFS,SUNRPC]
  6207. Sets the upper limit on the number of simultaneous
  6208. RPC calls that can be sent from the client to a
  6209. server. Increasing these values may allow you to
  6210. improve throughput, but will also increase the
  6211. amount of memory reserved for use by the client.
  6212. suspend.pm_test_delay=
  6213. [SUSPEND]
  6214. Sets the number of seconds to remain in a suspend test
  6215. mode before resuming the system (see
  6216. /sys/power/pm_test). Only available when CONFIG_PM_DEBUG
  6217. is set. Default value is 5.
  6218. svm= [PPC]
  6219. Format: { on | off | y | n | 1 | 0 }
  6220. This parameter controls use of the Protected
  6221. Execution Facility on pSeries.
  6222. swiotlb= [ARM,PPC,MIPS,X86,S390,EARLY]
  6223. Format: { <int> [,<int>] | force | noforce }
  6224. <int> -- Number of I/O TLB slabs
  6225. <int> -- Second integer after comma. Number of swiotlb
  6226. areas with their own lock. Will be rounded up
  6227. to a power of 2.
  6228. force -- force using of bounce buffers even if they
  6229. wouldn't be automatically used by the kernel
  6230. noforce -- Never use bounce buffers (for debugging)
  6231. switches= [HW,M68k,EARLY]
  6232. sysctl.*= [KNL]
  6233. Set a sysctl parameter, right before loading the init
  6234. process, as if the value was written to the respective
  6235. /proc/sys/... file. Both '.' and '/' are recognized as
  6236. separators. Unrecognized parameters and invalid values
  6237. are reported in the kernel log. Sysctls registered
  6238. later by a loaded module cannot be set this way.
  6239. Example: sysctl.vm.swappiness=40
  6240. sysrq_always_enabled
  6241. [KNL]
  6242. Ignore sysrq setting - this boot parameter will
  6243. neutralize any effect of /proc/sys/kernel/sysrq.
  6244. Useful for debugging.
  6245. tcpmhash_entries= [KNL,NET]
  6246. Set the number of tcp_metrics_hash slots.
  6247. Default value is 8192 or 16384 depending on total
  6248. ram pages. This is used to specify the TCP metrics
  6249. cache size. See Documentation/networking/ip-sysctl.rst
  6250. "tcp_no_metrics_save" section for more details.
  6251. tdfx= [HW,DRM]
  6252. test_suspend= [SUSPEND]
  6253. Format: { "mem" | "standby" | "freeze" }[,N]
  6254. Specify "mem" (for Suspend-to-RAM) or "standby" (for
  6255. standby suspend) or "freeze" (for suspend type freeze)
  6256. as the system sleep state during system startup with
  6257. the optional capability to repeat N number of times.
  6258. The system is woken from this state using a
  6259. wakeup-capable RTC alarm.
  6260. thash_entries= [KNL,NET]
  6261. Set number of hash buckets for TCP connection
  6262. thermal.act= [HW,ACPI]
  6263. -1: disable all active trip points in all thermal zones
  6264. <degrees C>: override all lowest active trip points
  6265. thermal.crt= [HW,ACPI]
  6266. -1: disable all critical trip points in all thermal zones
  6267. <degrees C>: override all critical trip points
  6268. thermal.off= [HW,ACPI]
  6269. 1: disable ACPI thermal control
  6270. thermal.psv= [HW,ACPI]
  6271. -1: disable all passive trip points
  6272. <degrees C>: override all passive trip points to this
  6273. value
  6274. thermal.tzp= [HW,ACPI]
  6275. Specify global default ACPI thermal zone polling rate
  6276. <deci-seconds>: poll all this frequency
  6277. 0: no polling (default)
  6278. thp_anon= [KNL]
  6279. Format: <size>[KMG],<size>[KMG]:<state>;<size>[KMG]-<size>[KMG]:<state>
  6280. state is one of "always", "madvise", "never" or "inherit".
  6281. Control the default behavior of the system with respect
  6282. to anonymous transparent hugepages.
  6283. Can be used multiple times for multiple anon THP sizes.
  6284. See Documentation/admin-guide/mm/transhuge.rst for more
  6285. details.
  6286. threadirqs [KNL,EARLY]
  6287. Force threading of all interrupt handlers except those
  6288. marked explicitly IRQF_NO_THREAD.
  6289. thp_shmem= [KNL]
  6290. Format: <size>[KMG],<size>[KMG]:<policy>;<size>[KMG]-<size>[KMG]:<policy>
  6291. Control the default policy of each hugepage size for the
  6292. internal shmem mount. <policy> is one of policies available
  6293. for the shmem mount ("always", "inherit", "never", "within_size",
  6294. and "advise").
  6295. It can be used multiple times for multiple shmem THP sizes.
  6296. See Documentation/admin-guide/mm/transhuge.rst for more
  6297. details.
  6298. topology= [S390,EARLY]
  6299. Format: {off | on}
  6300. Specify if the kernel should make use of the cpu
  6301. topology information if the hardware supports this.
  6302. The scheduler will make use of this information and
  6303. e.g. base its process migration decisions on it.
  6304. Default is on.
  6305. torture.disable_onoff_at_boot= [KNL]
  6306. Prevent the CPU-hotplug component of torturing
  6307. until after init has spawned.
  6308. torture.ftrace_dump_at_shutdown= [KNL]
  6309. Dump the ftrace buffer at torture-test shutdown,
  6310. even if there were no errors. This can be a
  6311. very costly operation when many torture tests
  6312. are running concurrently, especially on systems
  6313. with rotating-rust storage.
  6314. torture.verbose_sleep_frequency= [KNL]
  6315. Specifies how many verbose printk()s should be
  6316. emitted between each sleep. The default of zero
  6317. disables verbose-printk() sleeping.
  6318. torture.verbose_sleep_duration= [KNL]
  6319. Duration of each verbose-printk() sleep in jiffies.
  6320. tpm.disable_pcr_integrity= [HW,TPM]
  6321. Do not protect PCR registers from unintended physical
  6322. access, or interposers in the bus by the means of
  6323. having an integrity protected session wrapped around
  6324. TPM2_PCR_Extend command. Consider this in a situation
  6325. where TPM is heavily utilized by IMA, thus protection
  6326. causing a major performance hit, and the space where
  6327. machines are deployed is by other means guarded.
  6328. tpm_crb_ffa.busy_timeout_ms= [ARM64,TPM]
  6329. Maximum time in milliseconds to retry sending a message
  6330. to the TPM service before giving up. This parameter controls
  6331. how long the system will continue retrying when the TPM
  6332. service is busy.
  6333. Format: <unsigned int>
  6334. Default: 2000 (2 seconds)
  6335. tpm_suspend_pcr=[HW,TPM]
  6336. Format: integer pcr id
  6337. Specify that at suspend time, the tpm driver
  6338. should extend the specified pcr with zeros,
  6339. as a workaround for some chips which fail to
  6340. flush the last written pcr on TPM_SaveState.
  6341. This will guarantee that all the other pcrs
  6342. are saved.
  6343. tpm_tis.interrupts= [HW,TPM]
  6344. Enable interrupts for the MMIO based physical layer
  6345. for the FIFO interface. By default it is set to false
  6346. (0). For more information about TPM hardware interfaces
  6347. defined by Trusted Computing Group (TCG) see
  6348. https://trustedcomputinggroup.org/resource/pc-client-platform-tpm-profile-ptp-specification/
  6349. tp_printk [FTRACE]
  6350. Have the tracepoints sent to printk as well as the
  6351. tracing ring buffer. This is useful for early boot up
  6352. where the system hangs or reboots and does not give the
  6353. option for reading the tracing buffer or performing a
  6354. ftrace_dump_on_oops.
  6355. To turn off having tracepoints sent to printk,
  6356. echo 0 > /proc/sys/kernel/tracepoint_printk
  6357. Note, echoing 1 into this file without the
  6358. tp_printk kernel cmdline option has no effect.
  6359. The tp_printk_stop_on_boot (see below) can also be used
  6360. to stop the printing of events to console at
  6361. late_initcall_sync.
  6362. ** CAUTION **
  6363. Having tracepoints sent to printk() and activating high
  6364. frequency tracepoints such as irq or sched, can cause
  6365. the system to live lock.
  6366. tp_printk_stop_on_boot [FTRACE]
  6367. When tp_printk (above) is set, it can cause a lot of noise
  6368. on the console. It may be useful to only include the
  6369. printing of events during boot up, as user space may
  6370. make the system inoperable.
  6371. This command line option will stop the printing of events
  6372. to console at the late_initcall_sync() time frame.
  6373. trace_buf_size=nn[KMG]
  6374. [FTRACE] will set tracing buffer size on each cpu.
  6375. trace_clock= [FTRACE] Set the clock used for tracing events
  6376. at boot up.
  6377. local - Use the per CPU time stamp counter
  6378. (converted into nanoseconds). Fast, but
  6379. depending on the architecture, may not be
  6380. in sync between CPUs.
  6381. global - Event time stamps are synchronized across
  6382. CPUs. May be slower than the local clock,
  6383. but better for some race conditions.
  6384. counter - Simple counting of events (1, 2, ..)
  6385. note, some counts may be skipped due to the
  6386. infrastructure grabbing the clock more than
  6387. once per event.
  6388. uptime - Use jiffies as the time stamp.
  6389. perf - Use the same clock that perf uses.
  6390. mono - Use ktime_get_mono_fast_ns() for time stamps.
  6391. mono_raw - Use ktime_get_raw_fast_ns() for time
  6392. stamps.
  6393. boot - Use ktime_get_boot_fast_ns() for time stamps.
  6394. Architectures may add more clocks. See
  6395. Documentation/trace/ftrace.rst for more details.
  6396. trace_event=[event-list]
  6397. [FTRACE] Set and start specified trace events in order
  6398. to facilitate early boot debugging. The event-list is a
  6399. comma-separated list of trace events to enable. See
  6400. also Documentation/trace/events.rst
  6401. To enable modules, use :mod: keyword:
  6402. trace_event=:mod:<module>
  6403. The value before :mod: will only enable specific events
  6404. that are part of the module. See the above mentioned
  6405. document for more information.
  6406. trace_instance=[instance-info]
  6407. [FTRACE] Create a ring buffer instance early in boot up.
  6408. This will be listed in:
  6409. /sys/kernel/tracing/instances
  6410. Events can be enabled at the time the instance is created
  6411. via:
  6412. trace_instance=<name>,<system1>:<event1>,<system2>:<event2>
  6413. Note, the "<system*>:" portion is optional if the event is
  6414. unique.
  6415. trace_instance=foo,sched:sched_switch,irq_handler_entry,initcall
  6416. will enable the "sched_switch" event (note, the "sched:" is optional, and
  6417. the same thing would happen if it was left off). The irq_handler_entry
  6418. event, and all events under the "initcall" system.
  6419. Flags can be added to the instance to modify its behavior when it is
  6420. created. The flags are separated by '^'.
  6421. The available flags are:
  6422. traceoff - Have the tracing instance tracing disabled after it is created.
  6423. traceprintk - Have trace_printk() write into this trace instance
  6424. (note, "printk" and "trace_printk" can also be used)
  6425. trace_instance=foo^traceoff^traceprintk,sched,irq
  6426. The flags must come before the defined events.
  6427. If memory has been reserved (see memmap for x86), the instance
  6428. can use that memory:
  6429. memmap=12M$0x284500000 trace_instance=boot_map@0x284500000:12M
  6430. The above will create a "boot_map" instance that uses the physical
  6431. memory at 0x284500000 that is 12Megs. The per CPU buffers of that
  6432. instance will be split up accordingly.
  6433. Alternatively, the memory can be reserved by the reserve_mem option:
  6434. reserve_mem=12M:4096:trace trace_instance=boot_map@trace
  6435. This will reserve 12 megabytes at boot up with a 4096 byte alignment
  6436. and place the ring buffer in this memory. Note that due to KASLR, the
  6437. memory may not be the same location each time, which will not preserve
  6438. the buffer content.
  6439. Also note that the layout of the ring buffer data may change between
  6440. kernel versions where the validator will fail and reset the ring buffer
  6441. if the layout is not the same as the previous kernel.
  6442. If the ring buffer is used for persistent bootups and has events enabled,
  6443. it is recommend to disable tracing so that events from a previous boot do not
  6444. mix with events of the current boot (unless you are debugging a random crash
  6445. at boot up).
  6446. reserve_mem=12M:4096:trace trace_instance=boot_map^traceoff^traceprintk@trace,sched,irq
  6447. Note, saving the trace buffer across reboots does require that the system
  6448. is set up to not wipe memory. For instance, CONFIG_RESET_ATTACK_MITIGATION
  6449. can force a memory reset on boot which will clear any trace that was stored.
  6450. This is just one of many ways that can clear memory. Make sure your system
  6451. keeps the content of memory across reboots before relying on this option.
  6452. NB: Both the mapped address and size must be page aligned for the architecture.
  6453. See also Documentation/trace/debugging.rst
  6454. trace_options=[option-list]
  6455. [FTRACE] Enable or disable tracer options at boot.
  6456. The option-list is a comma delimited list of options
  6457. that can be enabled or disabled just as if you were
  6458. to echo the option name into
  6459. /sys/kernel/tracing/trace_options
  6460. For example, to enable stacktrace option (to dump the
  6461. stack trace of each event), add to the command line:
  6462. trace_options=stacktrace
  6463. See also Documentation/trace/ftrace.rst "trace options"
  6464. section.
  6465. trace_trigger=[trigger-list]
  6466. [FTRACE] Add an event trigger on specific events.
  6467. Set a trigger on top of a specific event, with an optional
  6468. filter.
  6469. The format is "trace_trigger=<event>.<trigger>[ if <filter>],..."
  6470. Where more than one trigger may be specified that are comma delimited.
  6471. For example:
  6472. trace_trigger="sched_switch.stacktrace if prev_state == 2"
  6473. The above will enable the "stacktrace" trigger on the "sched_switch"
  6474. event but only trigger it if the "prev_state" of the "sched_switch"
  6475. event is "2" (TASK_UNINTERRUPTIBLE).
  6476. See also "Event triggers" in Documentation/trace/events.rst
  6477. traceoff_after_boot
  6478. [FTRACE] Sometimes tracing is used to debug issues
  6479. during the boot process. Since the trace buffer has a
  6480. limited amount of storage, it may be prudent to
  6481. disable tracing after the boot is finished, otherwise
  6482. the critical information may be overwritten. With this
  6483. option, the main tracing buffer will be turned off at
  6484. the end of the boot process.
  6485. traceoff_on_warning
  6486. [FTRACE] enable this option to disable tracing when a
  6487. warning is hit. This turns off "tracing_on". Tracing can
  6488. be enabled again by echoing '1' into the "tracing_on"
  6489. file located in /sys/kernel/tracing/
  6490. This option is useful, as it disables the trace before
  6491. the WARNING dump is called, which prevents the trace to
  6492. be filled with content caused by the warning output.
  6493. This option can also be set at run time via the sysctl
  6494. option: kernel/traceoff_on_warning
  6495. transparent_hugepage=
  6496. [KNL]
  6497. Format: [always|madvise|never]
  6498. Can be used to control the default behavior of the system
  6499. with respect to transparent hugepages.
  6500. See Documentation/admin-guide/mm/transhuge.rst
  6501. for more details.
  6502. transparent_hugepage_shmem= [KNL]
  6503. Format: [always|within_size|advise|never|deny|force]
  6504. Can be used to control the hugepage allocation policy for
  6505. the internal shmem mount.
  6506. See Documentation/admin-guide/mm/transhuge.rst
  6507. for more details.
  6508. transparent_hugepage_tmpfs= [KNL]
  6509. Format: [always|within_size|advise|never]
  6510. Can be used to control the default hugepage allocation policy
  6511. for the tmpfs mount.
  6512. See Documentation/admin-guide/mm/transhuge.rst
  6513. for more details.
  6514. trusted.source= [KEYS]
  6515. Format: <string>
  6516. This parameter identifies the trust source as a backend
  6517. for trusted keys implementation. Supported trust
  6518. sources:
  6519. - "tpm"
  6520. - "tee"
  6521. - "caam"
  6522. - "dcp"
  6523. - "pkwm"
  6524. If not specified then it defaults to iterating through
  6525. the trust source list starting with TPM and assigns the
  6526. first trust source as a backend which is initialized
  6527. successfully during iteration.
  6528. trusted.rng= [KEYS]
  6529. Format: <string>
  6530. The RNG used to generate key material for trusted keys.
  6531. Can be one of:
  6532. - "kernel"
  6533. - the same value as trusted.source: "tpm" or "tee"
  6534. - "default"
  6535. If not specified, "default" is used. In this case,
  6536. the RNG's choice is left to each individual trust source.
  6537. trusted.dcp_use_otp_key
  6538. This is intended to be used in combination with
  6539. trusted.source=dcp and will select the DCP OTP key
  6540. instead of the DCP UNIQUE key blob encryption.
  6541. trusted.dcp_skip_zk_test
  6542. This is intended to be used in combination with
  6543. trusted.source=dcp and will disable the check if the
  6544. blob key is all zeros. This is helpful for situations where
  6545. having this key zero'ed is acceptable. E.g. in testing
  6546. scenarios.
  6547. tsa= [X86] Control mitigation for Transient Scheduler
  6548. Attacks on AMD CPUs. Search the following in your
  6549. favourite search engine for more details:
  6550. "Technical guidance for mitigating transient scheduler
  6551. attacks".
  6552. off - disable the mitigation
  6553. on - enable the mitigation (default)
  6554. user - mitigate only user/kernel transitions
  6555. vm - mitigate only guest/host transitions
  6556. tsc= Disable clocksource stability checks for TSC.
  6557. Format: <string>
  6558. [x86] reliable: mark tsc clocksource as reliable, this
  6559. disables clocksource verification at runtime, as well
  6560. as the stability checks done at bootup. Used to enable
  6561. high-resolution timer mode on older hardware, and in
  6562. virtualized environment.
  6563. [x86] noirqtime: Do not use TSC to do irq accounting.
  6564. Used to run time disable IRQ_TIME_ACCOUNTING on any
  6565. platforms where RDTSC is slow and this accounting
  6566. can add overhead.
  6567. [x86] unstable: mark the TSC clocksource as unstable, this
  6568. marks the TSC unconditionally unstable at bootup and
  6569. avoids any further wobbles once the TSC watchdog notices.
  6570. [x86] nowatchdog: disable clocksource watchdog. Used
  6571. in situations with strict latency requirements (where
  6572. interruptions from clocksource watchdog are not
  6573. acceptable).
  6574. [x86] recalibrate: force recalibration against a HW timer
  6575. (HPET or PM timer) on systems whose TSC frequency was
  6576. obtained from HW or FW using either an MSR or CPUID(0x15).
  6577. Warn if the difference is more than 500 ppm.
  6578. [x86] watchdog: Use TSC as the watchdog clocksource with
  6579. which to check other HW timers (HPET or PM timer), but
  6580. only on systems where TSC has been deemed trustworthy.
  6581. This will be suppressed by an earlier tsc=nowatchdog and
  6582. can be overridden by a later tsc=nowatchdog. A console
  6583. message will flag any such suppression or overriding.
  6584. tsc_early_khz= [X86,EARLY] Skip early TSC calibration and use the given
  6585. value instead. Useful when the early TSC frequency discovery
  6586. procedure is not reliable, such as on overclocked systems
  6587. with CPUID.16h support and partial CPUID.15h support.
  6588. Format: <unsigned int>
  6589. tsx= [X86] Control Transactional Synchronization
  6590. Extensions (TSX) feature in Intel processors that
  6591. support TSX control.
  6592. This parameter controls the TSX feature. The options are:
  6593. on - Enable TSX on the system. Although there are
  6594. mitigations for all known security vulnerabilities,
  6595. TSX has been known to be an accelerator for
  6596. several previous speculation-related CVEs, and
  6597. so there may be unknown security risks associated
  6598. with leaving it enabled.
  6599. off - Disable TSX on the system. (Note that this
  6600. option takes effect only on newer CPUs which are
  6601. not vulnerable to MDS, i.e., have
  6602. MSR_IA32_ARCH_CAPABILITIES.MDS_NO=1 and which get
  6603. the new IA32_TSX_CTRL MSR through a microcode
  6604. update. This new MSR allows for the reliable
  6605. deactivation of the TSX functionality.)
  6606. auto - Disable TSX if X86_BUG_TAA is present,
  6607. otherwise enable TSX on the system.
  6608. Not specifying this option is equivalent to tsx=off.
  6609. See Documentation/admin-guide/hw-vuln/tsx_async_abort.rst
  6610. for more details.
  6611. tsx_async_abort= [X86,INTEL,EARLY] Control mitigation for the TSX Async
  6612. Abort (TAA) vulnerability.
  6613. Similar to Micro-architectural Data Sampling (MDS)
  6614. certain CPUs that support Transactional
  6615. Synchronization Extensions (TSX) are vulnerable to an
  6616. exploit against CPU internal buffers which can forward
  6617. information to a disclosure gadget under certain
  6618. conditions.
  6619. In vulnerable processors, the speculatively forwarded
  6620. data can be used in a cache side channel attack, to
  6621. access data to which the attacker does not have direct
  6622. access.
  6623. This parameter controls the TAA mitigation. The
  6624. options are:
  6625. full - Enable TAA mitigation on vulnerable CPUs
  6626. if TSX is enabled.
  6627. full,nosmt - Enable TAA mitigation and disable SMT on
  6628. vulnerable CPUs. If TSX is disabled, SMT
  6629. is not disabled because CPU is not
  6630. vulnerable to cross-thread TAA attacks.
  6631. off - Unconditionally disable TAA mitigation
  6632. On MDS-affected machines, tsx_async_abort=off can be
  6633. prevented by an active MDS mitigation as both vulnerabilities
  6634. are mitigated with the same mechanism so in order to disable
  6635. this mitigation, you need to specify mds=off too.
  6636. Not specifying this option is equivalent to
  6637. tsx_async_abort=full. On CPUs which are MDS affected
  6638. and deploy MDS mitigation, TAA mitigation is not
  6639. required and doesn't provide any additional
  6640. mitigation.
  6641. For details see:
  6642. Documentation/admin-guide/hw-vuln/tsx_async_abort.rst
  6643. turbografx.map[2|3]= [HW,JOY]
  6644. TurboGraFX parallel port interface
  6645. Format:
  6646. <port#>,<js1>,<js2>,<js3>,<js4>,<js5>,<js6>,<js7>
  6647. See also Documentation/input/devices/joystick-parport.rst
  6648. udbg-immortal [PPC] When debugging early kernel crashes that
  6649. happen after console_init() and before a proper
  6650. console driver takes over, this boot options might
  6651. help "seeing" what's going on.
  6652. uhash_entries= [KNL,NET]
  6653. Set number of hash buckets for UDP/UDP-Lite connections
  6654. uhci-hcd.ignore_oc=
  6655. [USB] Ignore overcurrent events (default N).
  6656. Some badly-designed motherboards generate lots of
  6657. bogus events, for ports that aren't wired to
  6658. anything. Set this parameter to avoid log spamming.
  6659. Note that genuine overcurrent events won't be
  6660. reported either.
  6661. unaligned_scalar_speed=
  6662. [RISCV]
  6663. Format: {slow | fast | unsupported}
  6664. Allow skipping scalar unaligned access speed tests. This
  6665. is useful for testing alternative code paths and to skip
  6666. the tests in environments where they run too slowly. All
  6667. CPUs must have the same scalar unaligned access speed.
  6668. unaligned_vector_speed=
  6669. [RISCV]
  6670. Format: {slow | fast | unsupported}
  6671. Allow skipping vector unaligned access speed tests. This
  6672. is useful for testing alternative code paths and to skip
  6673. the tests in environments where they run too slowly. All
  6674. CPUs must have the same vector unaligned access speed.
  6675. unknown_nmi_panic
  6676. [X86] Cause panic on unknown NMI.
  6677. unwind_debug [X86-64,EARLY]
  6678. Enable unwinder debug output. This can be
  6679. useful for debugging certain unwinder error
  6680. conditions, including corrupt stacks and
  6681. bad/missing unwinder metadata.
  6682. usbcore.authorized_default=
  6683. [USB] Default USB device authorization:
  6684. (default -1 = authorized (same as 1),
  6685. 0 = not authorized, 1 = authorized, 2 = authorized
  6686. if device connected to internal port)
  6687. usbcore.autosuspend=
  6688. [USB] The autosuspend time delay (in seconds) used
  6689. for newly-detected USB devices (default 2). This
  6690. is the time required before an idle device will be
  6691. autosuspended. Devices for which the delay is set
  6692. to a negative value won't be autosuspended at all.
  6693. usbcore.usbfs_snoop=
  6694. [USB] Set to log all usbfs traffic (default 0 = off).
  6695. usbcore.usbfs_snoop_max=
  6696. [USB] Maximum number of bytes to snoop in each URB
  6697. (default = 65536).
  6698. usbcore.blinkenlights=
  6699. [USB] Set to cycle leds on hubs (default 0 = off).
  6700. usbcore.old_scheme_first=
  6701. [USB] Start with the old device initialization
  6702. scheme (default 0 = off).
  6703. usbcore.usbfs_memory_mb=
  6704. [USB] Memory limit (in MB) for buffers allocated by
  6705. usbfs (default = 16, 0 = max = 2047).
  6706. usbcore.use_both_schemes=
  6707. [USB] Try the other device initialization scheme
  6708. if the first one fails (default 1 = enabled).
  6709. usbcore.initial_descriptor_timeout=
  6710. [USB] Specifies timeout for the initial 64-byte
  6711. USB_REQ_GET_DESCRIPTOR request in milliseconds
  6712. (default 5000 = 5.0 seconds).
  6713. usbcore.nousb [USB] Disable the USB subsystem
  6714. usbcore.quirks=
  6715. [USB] A list of quirk entries to augment the built-in
  6716. usb core quirk list. List entries are separated by
  6717. commas. Each entry has the form
  6718. VendorID:ProductID:Flags. The IDs are 4-digit hex
  6719. numbers and Flags is a set of letters. Each letter
  6720. will change the built-in quirk; setting it if it is
  6721. clear and clearing it if it is set. The letters have
  6722. the following meanings:
  6723. a = USB_QUIRK_STRING_FETCH_255 (string
  6724. descriptors must not be fetched using
  6725. a 255-byte read);
  6726. b = USB_QUIRK_RESET_RESUME (device can't resume
  6727. correctly so reset it instead);
  6728. c = USB_QUIRK_NO_SET_INTF (device can't handle
  6729. Set-Interface requests);
  6730. d = USB_QUIRK_CONFIG_INTF_STRINGS (device can't
  6731. handle its Configuration or Interface
  6732. strings);
  6733. e = USB_QUIRK_RESET (device can't be reset
  6734. (e.g morph devices), don't use reset);
  6735. f = USB_QUIRK_HONOR_BNUMINTERFACES (device has
  6736. more interface descriptions than the
  6737. bNumInterfaces count, and can't handle
  6738. talking to these interfaces);
  6739. g = USB_QUIRK_DELAY_INIT (device needs a pause
  6740. during initialization, after we read
  6741. the device descriptor);
  6742. h = USB_QUIRK_LINEAR_UFRAME_INTR_BINTERVAL (For
  6743. high speed and super speed interrupt
  6744. endpoints, the USB 2.0 and USB 3.0 spec
  6745. require the interval in microframes (1
  6746. microframe = 125 microseconds) to be
  6747. calculated as interval = 2 ^
  6748. (bInterval-1).
  6749. Devices with this quirk report their
  6750. bInterval as the result of this
  6751. calculation instead of the exponent
  6752. variable used in the calculation);
  6753. i = USB_QUIRK_DEVICE_QUALIFIER (device can't
  6754. handle device_qualifier descriptor
  6755. requests);
  6756. j = USB_QUIRK_IGNORE_REMOTE_WAKEUP (device
  6757. generates spurious wakeup, ignore
  6758. remote wakeup capability);
  6759. k = USB_QUIRK_NO_LPM (device can't handle Link
  6760. Power Management);
  6761. l = USB_QUIRK_LINEAR_FRAME_INTR_BINTERVAL
  6762. (Device reports its bInterval as linear
  6763. frames instead of the USB 2.0
  6764. calculation);
  6765. m = USB_QUIRK_DISCONNECT_SUSPEND (Device needs
  6766. to be disconnected before suspend to
  6767. prevent spurious wakeup);
  6768. n = USB_QUIRK_DELAY_CTRL_MSG (Device needs a
  6769. pause after every control message);
  6770. o = USB_QUIRK_HUB_SLOW_RESET (Hub needs extra
  6771. delay after resetting its port);
  6772. p = USB_QUIRK_SHORT_SET_ADDRESS_REQ_TIMEOUT
  6773. (Reduce timeout of the SET_ADDRESS
  6774. request from 5000 ms to 500 ms);
  6775. q = USB_QUIRK_FORCE_ONE_CONFIG (Device
  6776. claims zero configurations,
  6777. forcing to 1);
  6778. Example: quirks=0781:5580:bk,0a5c:5834:gij
  6779. usbhid.mousepoll=
  6780. [USBHID] The interval which mice are to be polled at.
  6781. usbhid.jspoll=
  6782. [USBHID] The interval which joysticks are to be polled at.
  6783. usbhid.kbpoll=
  6784. [USBHID] The interval which keyboards are to be polled at.
  6785. usb-storage.delay_use=
  6786. [UMS] The delay in seconds before a new device is
  6787. scanned for Logical Units (default 1).
  6788. Optionally the delay in milliseconds if the value has
  6789. suffix with "ms".
  6790. Example: delay_use=2567ms
  6791. usb-storage.quirks=
  6792. [UMS] A list of quirks entries to supplement or
  6793. override the built-in unusual_devs list. List
  6794. entries are separated by commas. Each entry has
  6795. the form VID:PID:Flags where VID and PID are Vendor
  6796. and Product ID values (4-digit hex numbers) and
  6797. Flags is a set of characters, each corresponding
  6798. to a common usb-storage quirk flag as follows:
  6799. a = SANE_SENSE (collect more than 18 bytes
  6800. of sense data, not on uas);
  6801. b = BAD_SENSE (don't collect more than 18
  6802. bytes of sense data, not on uas);
  6803. c = FIX_CAPACITY (decrease the reported
  6804. device capacity by one sector);
  6805. d = NO_READ_DISC_INFO (don't use
  6806. READ_DISC_INFO command, not on uas);
  6807. e = NO_READ_CAPACITY_16 (don't use
  6808. READ_CAPACITY_16 command);
  6809. f = NO_REPORT_OPCODES (don't use report opcodes
  6810. command, uas only);
  6811. g = MAX_SECTORS_240 (don't transfer more than
  6812. 240 sectors at a time, uas only);
  6813. h = CAPACITY_HEURISTICS (decrease the
  6814. reported device capacity by one
  6815. sector if the number is odd);
  6816. i = IGNORE_DEVICE (don't bind to this
  6817. device);
  6818. j = NO_REPORT_LUNS (don't use report luns
  6819. command, uas only);
  6820. k = NO_SAME (do not use WRITE_SAME, uas only)
  6821. l = NOT_LOCKABLE (don't try to lock and
  6822. unlock ejectable media, not on uas);
  6823. m = MAX_SECTORS_64 (don't transfer more
  6824. than 64 sectors = 32 KB at a time,
  6825. not on uas);
  6826. n = INITIAL_READ10 (force a retry of the
  6827. initial READ(10) command, not on uas);
  6828. o = CAPACITY_OK (accept the capacity
  6829. reported by the device, not on uas);
  6830. p = WRITE_CACHE (the device cache is ON
  6831. by default, not on uas);
  6832. r = IGNORE_RESIDUE (the device reports
  6833. bogus residue values, not on uas);
  6834. s = SINGLE_LUN (the device has only one
  6835. Logical Unit);
  6836. t = NO_ATA_1X (don't allow ATA(12) and ATA(16)
  6837. commands, uas only);
  6838. u = IGNORE_UAS (don't bind to the uas driver);
  6839. w = NO_WP_DETECT (don't test whether the
  6840. medium is write-protected).
  6841. y = ALWAYS_SYNC (issue a SYNCHRONIZE_CACHE
  6842. even if the device claims no cache,
  6843. not on uas)
  6844. Example: quirks=0419:aaf5:rl,0421:0433:rc
  6845. user_debug= [KNL,ARM]
  6846. Format: <int>
  6847. See arch/arm/Kconfig.debug help text.
  6848. 1 - undefined instruction events
  6849. 2 - system calls
  6850. 4 - invalid data aborts
  6851. 8 - SIGSEGV faults
  6852. 16 - SIGBUS faults
  6853. Example: user_debug=31
  6854. vdso= [X86,SH,SPARC]
  6855. On X86_32, this is an alias for vdso32=. Otherwise:
  6856. vdso=1: enable VDSO (the default)
  6857. vdso=0: disable VDSO mapping
  6858. vdso32= [X86] Control the 32-bit vDSO
  6859. vdso32=1: enable 32-bit VDSO
  6860. vdso32=0 or vdso32=2: disable 32-bit VDSO
  6861. See the help text for CONFIG_COMPAT_VDSO for more
  6862. details. If CONFIG_COMPAT_VDSO is set, the default is
  6863. vdso32=0; otherwise, the default is vdso32=1.
  6864. For compatibility with older kernels, vdso32=2 is an
  6865. alias for vdso32=0.
  6866. Try vdso32=0 if you encounter an error that says:
  6867. dl_main: Assertion `(void *) ph->p_vaddr == _rtld_local._dl_sysinfo_dso' failed!
  6868. video= [FB,EARLY] Frame buffer configuration
  6869. See Documentation/fb/modedb.rst.
  6870. video.brightness_switch_enabled= [ACPI]
  6871. Format: [0|1]
  6872. If set to 1, on receiving an ACPI notify event
  6873. generated by hotkey, video driver will adjust brightness
  6874. level and then send out the event to user space through
  6875. the allocated input device. If set to 0, video driver
  6876. will only send out the event without touching backlight
  6877. brightness level.
  6878. default: 1
  6879. virtio_mmio.device=
  6880. [VMMIO] Memory mapped virtio (platform) device.
  6881. <size>@<baseaddr>:<irq>[:<id>]
  6882. where:
  6883. <size> := size (can use standard suffixes
  6884. like K, M and G)
  6885. <baseaddr> := physical base address
  6886. <irq> := interrupt number (as passed to
  6887. request_irq())
  6888. <id> := (optional) platform device id
  6889. example:
  6890. virtio_mmio.device=1K@0x100b0000:48:7
  6891. Can be used multiple times for multiple devices.
  6892. vga= [BOOT,X86-32] Select a particular video mode
  6893. See Documentation/arch/x86/boot.rst and
  6894. Documentation/admin-guide/svga.rst.
  6895. Use vga=ask for menu.
  6896. This is actually a boot loader parameter; the value is
  6897. passed to the kernel using a special protocol.
  6898. vm_debug[=options] [KNL] Available with CONFIG_DEBUG_VM=y.
  6899. May slow down system boot speed, especially when
  6900. enabled on systems with a large amount of memory.
  6901. All options are enabled by default, and this
  6902. interface is meant to allow for selectively
  6903. enabling or disabling specific virtual memory
  6904. debugging features.
  6905. Available options are:
  6906. P Enable page structure init time poisoning
  6907. - Disable all of the above options
  6908. vmalloc=nn[KMG] [KNL,BOOT,EARLY] Forces the vmalloc area to have an
  6909. exact size of <nn>. This can be used to increase
  6910. the minimum size (128MB on x86, arm32 platforms).
  6911. It can also be used to decrease the size and leave more room
  6912. for directly mapped kernel RAM. Note that this parameter does
  6913. not exist on many other platforms (including arm64, alpha,
  6914. loongarch, arc, csky, hexagon, microblaze, mips, nios2, openrisc,
  6915. parisc, m64k, powerpc, riscv, sh, um, xtensa, s390, sparc).
  6916. vmcp_cma=nn[MG] [KNL,S390,EARLY]
  6917. Sets the memory size reserved for contiguous memory
  6918. allocations for the vmcp device driver.
  6919. vmhalt= [KNL,S390] Perform z/VM CP command after system halt.
  6920. Format: <command>
  6921. vmpanic= [KNL,S390] Perform z/VM CP command after kernel panic.
  6922. Format: <command>
  6923. vmpoff= [KNL,S390] Perform z/VM CP command after power off.
  6924. Format: <command>
  6925. vmscape= [X86] Controls mitigation for VMscape attacks.
  6926. VMscape attacks can leak information from a userspace
  6927. hypervisor to a guest via speculative side-channels.
  6928. off - disable the mitigation
  6929. ibpb - use Indirect Branch Prediction Barrier
  6930. (IBPB) mitigation (default)
  6931. force - force vulnerability detection even on
  6932. unaffected processors
  6933. vsyscall= [X86-64,EARLY]
  6934. Controls the behavior of vsyscalls (i.e. calls to
  6935. fixed addresses of 0xffffffffff600x00 from legacy
  6936. code). Most statically-linked binaries and older
  6937. versions of glibc use these calls. Because these
  6938. functions are at fixed addresses, they make nice
  6939. targets for exploits that can control RIP.
  6940. emulate Vsyscalls turn into traps and are emulated
  6941. reasonably safely. The vsyscall page is
  6942. readable.
  6943. xonly [default] Vsyscalls turn into traps and are
  6944. emulated reasonably safely. The vsyscall
  6945. page is not readable.
  6946. none Vsyscalls don't work at all. This makes
  6947. them quite hard to use for exploits but
  6948. might break your system.
  6949. vt.color= [VT] Default text color.
  6950. Format: 0xYX, X = foreground, Y = background.
  6951. Default: 0x07 = light gray on black.
  6952. vt.cur_default= [VT] Default cursor shape.
  6953. Format: 0xCCBBAA, where AA, BB, and CC are the same as
  6954. the parameters of the <Esc>[?A;B;Cc escape sequence;
  6955. see vga-softcursor.rst. Default: 2 = underline.
  6956. vt.default_blu= [VT]
  6957. Format: <blue0>,<blue1>,<blue2>,...,<blue15>
  6958. Change the default blue palette of the console.
  6959. This is a 16-member array composed of values
  6960. ranging from 0-255.
  6961. vt.default_grn= [VT]
  6962. Format: <green0>,<green1>,<green2>,...,<green15>
  6963. Change the default green palette of the console.
  6964. This is a 16-member array composed of values
  6965. ranging from 0-255.
  6966. vt.default_red= [VT]
  6967. Format: <red0>,<red1>,<red2>,...,<red15>
  6968. Change the default red palette of the console.
  6969. This is a 16-member array composed of values
  6970. ranging from 0-255.
  6971. vt.default_utf8=
  6972. [VT]
  6973. Format=<0|1>
  6974. Set system-wide default UTF-8 mode for all tty's.
  6975. Default is 1, i.e. UTF-8 mode is enabled for all
  6976. newly opened terminals.
  6977. vt.global_cursor_default=
  6978. [VT]
  6979. Format=<-1|0|1>
  6980. Set system-wide default for whether a cursor
  6981. is shown on new VTs. Default is -1,
  6982. i.e. cursors will be created by default unless
  6983. overridden by individual drivers. 0 will hide
  6984. cursors, 1 will display them.
  6985. vt.italic= [VT] Default color for italic text; 0-15.
  6986. Default: 2 = green.
  6987. vt.underline= [VT] Default color for underlined text; 0-15.
  6988. Default: 3 = cyan.
  6989. watchdog timers [HW,WDT] For information on watchdog timers,
  6990. see Documentation/watchdog/watchdog-parameters.rst
  6991. or other driver-specific files in the
  6992. Documentation/watchdog/ directory.
  6993. watchdog_thresh=
  6994. [KNL]
  6995. Set the hard lockup detector stall duration
  6996. threshold in seconds. The soft lockup detector
  6997. threshold is set to twice the value. A value of 0
  6998. disables both lockup detectors. Default is 10
  6999. seconds.
  7000. workqueue.unbound_cpus=
  7001. [KNL,SMP] Specify to constrain one or some CPUs
  7002. to use in unbound workqueues.
  7003. Format: <cpu-list>
  7004. By default, all online CPUs are available for
  7005. unbound workqueues.
  7006. workqueue.watchdog_thresh=
  7007. If CONFIG_WQ_WATCHDOG is configured, workqueue can
  7008. warn stall conditions and dump internal state to
  7009. help debugging. 0 disables workqueue stall
  7010. detection; otherwise, it's the stall threshold
  7011. duration in seconds. The default value is 30 and
  7012. it can be updated at runtime by writing to the
  7013. corresponding sysfs file.
  7014. workqueue.panic_on_stall=<uint>
  7015. Panic when workqueue stall is detected by
  7016. CONFIG_WQ_WATCHDOG. It sets the number times of the
  7017. stall to trigger panic.
  7018. The default is set by CONFIG_BOOTPARAM_WQ_STALL_PANIC,
  7019. which is 0 (disabled) if not configured.
  7020. workqueue.panic_on_stall_time=<uint>
  7021. Panic when a workqueue stall has been continuous for
  7022. the specified number of seconds. Unlike panic_on_stall
  7023. which counts accumulated stall events, this triggers
  7024. based on the duration of a single continuous stall.
  7025. The default is 0, which disables the time-based panic.
  7026. workqueue.cpu_intensive_thresh_us=
  7027. Per-cpu work items which run for longer than this
  7028. threshold are automatically considered CPU intensive
  7029. and excluded from concurrency management to prevent
  7030. them from noticeably delaying other per-cpu work
  7031. items. Default is 10000 (10ms).
  7032. If CONFIG_WQ_CPU_INTENSIVE_REPORT is set, the kernel
  7033. will report the work functions which violate this
  7034. threshold repeatedly. They are likely good
  7035. candidates for using WQ_UNBOUND workqueues instead.
  7036. workqueue.cpu_intensive_warning_thresh=<uint>
  7037. If CONFIG_WQ_CPU_INTENSIVE_REPORT is set, the kernel
  7038. will report the work functions which violate the
  7039. intensive_threshold_us repeatedly. In order to prevent
  7040. spurious warnings, start printing only after a work
  7041. function has violated this threshold number of times.
  7042. The default is 4 times. 0 disables the warning.
  7043. workqueue.power_efficient
  7044. Per-cpu workqueues are generally preferred because
  7045. they show better performance thanks to cache
  7046. locality; unfortunately, per-cpu workqueues tend to
  7047. be more power hungry than unbound workqueues.
  7048. Enabling this makes the per-cpu workqueues which
  7049. were observed to contribute significantly to power
  7050. consumption unbound, leading to measurably lower
  7051. power usage at the cost of small performance
  7052. overhead.
  7053. The default value of this parameter is determined by
  7054. the config option CONFIG_WQ_POWER_EFFICIENT_DEFAULT.
  7055. workqueue.default_affinity_scope=
  7056. Select the default affinity scope to use for unbound
  7057. workqueues. Can be one of "cpu", "smt", "cache",
  7058. "numa" and "system". Default is "cache". For more
  7059. information, see the Affinity Scopes section in
  7060. Documentation/core-api/workqueue.rst.
  7061. This can be changed after boot by writing to the
  7062. matching /sys/module/workqueue/parameters file. All
  7063. workqueues with the "default" affinity scope will be
  7064. updated accordingly.
  7065. workqueue.debug_force_rr_cpu
  7066. Workqueue used to implicitly guarantee that work
  7067. items queued without explicit CPU specified are put
  7068. on the local CPU. This guarantee is no longer true
  7069. and while local CPU is still preferred work items
  7070. may be put on foreign CPUs. This debug option
  7071. forces round-robin CPU selection to flush out
  7072. usages which depend on the now broken guarantee.
  7073. When enabled, memory and cache locality will be
  7074. impacted.
  7075. writecombine= [LOONGARCH,EARLY] Control the MAT (Memory Access
  7076. Type) of ioremap_wc().
  7077. on - Enable writecombine, use WUC for ioremap_wc()
  7078. off - Disable writecombine, use SUC for ioremap_wc()
  7079. x2apic_phys [X86-64,APIC,EARLY] Use x2apic physical mode instead of
  7080. default x2apic cluster mode on platforms
  7081. supporting x2apic.
  7082. xen_512gb_limit [KNL,X86-64,XEN]
  7083. Restricts the kernel running paravirtualized under Xen
  7084. to use only up to 512 GB of RAM. The reason to do so is
  7085. crash analysis tools and Xen tools for doing domain
  7086. save/restore/migration must be enabled to handle larger
  7087. domains.
  7088. xen_console_io [XEN,EARLY]
  7089. Boolean option to enable/disable the usage of the Xen
  7090. console_io hypercalls to read and write to the console.
  7091. Mostly useful for debugging and development.
  7092. xen_emul_unplug= [HW,X86,XEN,EARLY]
  7093. Unplug Xen emulated devices
  7094. Format: [unplug0,][unplug1]
  7095. ide-disks -- unplug primary master IDE devices
  7096. aux-ide-disks -- unplug non-primary-master IDE devices
  7097. nics -- unplug network devices
  7098. all -- unplug all emulated devices (NICs and IDE disks)
  7099. unnecessary -- unplugging emulated devices is
  7100. unnecessary even if the host did not respond to
  7101. the unplug protocol
  7102. never -- do not unplug even if version check succeeds
  7103. xen_legacy_crash [X86,XEN,EARLY]
  7104. Crash from Xen panic notifier, without executing late
  7105. panic() code such as dumping handler.
  7106. xen_mc_debug [X86,XEN,EARLY]
  7107. Enable multicall debugging when running as a Xen PV guest.
  7108. Enabling this feature will reduce performance a little
  7109. bit, so it should only be enabled for obtaining extended
  7110. debug data in case of multicall errors.
  7111. xen_msr_safe= [X86,XEN,EARLY]
  7112. Format: <bool>
  7113. Select whether to always use non-faulting (safe) MSR
  7114. access functions when running as Xen PV guest. The
  7115. default value is controlled by CONFIG_XEN_PV_MSR_SAFE.
  7116. xen_nopv [X86]
  7117. Disables the PV optimizations forcing the HVM guest to
  7118. run as generic HVM guest with no PV drivers.
  7119. This option is obsoleted by the "nopv" option, which
  7120. has equivalent effect for XEN platform.
  7121. xen_no_vector_callback
  7122. [KNL,X86,XEN,EARLY] Disable the vector callback for Xen
  7123. event channel interrupts.
  7124. xen_scrub_pages= [XEN]
  7125. Boolean option to control scrubbing pages before giving them back
  7126. to Xen, for use by other domains. Can be also changed at runtime
  7127. with /sys/devices/system/xen_memory/xen_memory0/scrub_pages.
  7128. Default value controlled with CONFIG_XEN_SCRUB_PAGES_DEFAULT.
  7129. xen_timer_slop= [X86-64,XEN,EARLY]
  7130. Set the timer slop (in nanoseconds) for the virtual Xen
  7131. timers (default is 100000). This adjusts the minimum
  7132. delta of virtualized Xen timers, where lower values
  7133. improve timer resolution at the expense of processing
  7134. more timer interrupts.
  7135. xen.balloon_boot_timeout= [XEN]
  7136. The time (in seconds) to wait before giving up to boot
  7137. in case initial ballooning fails to free enough memory.
  7138. Applies only when running as HVM or PVH guest and
  7139. started with less memory configured than allowed at
  7140. max. Default is 180.
  7141. xen.event_eoi_delay= [XEN]
  7142. How long to delay EOI handling in case of event
  7143. storms (jiffies). Default is 10.
  7144. xen.event_loop_timeout= [XEN]
  7145. After which time (jiffies) the event handling loop
  7146. should start to delay EOI handling. Default is 2.
  7147. xen.fifo_events= [XEN]
  7148. Boolean parameter to disable using fifo event handling
  7149. even if available. Normally fifo event handling is
  7150. preferred over the 2-level event handling, as it is
  7151. fairer and the number of possible event channels is
  7152. much higher. Default is on (use fifo events).
  7153. xirc2ps_cs= [NET,PCMCIA]
  7154. Format:
  7155. <irq>,<irq_mask>,<io>,<full_duplex>,<do_sound>,<lockup_hack>[,<irq2>[,<irq3>[,<irq4>]]]
  7156. xive= [PPC]
  7157. By default on POWER9 and above, the kernel will
  7158. natively use the XIVE interrupt controller. This option
  7159. allows the fallback firmware mode to be used:
  7160. off Fallback to firmware control of XIVE interrupt
  7161. controller on both pseries and powernv
  7162. platforms. Only useful on POWER9 and above.
  7163. xive.store-eoi=off [PPC]
  7164. By default on POWER10 and above, the kernel will use
  7165. stores for EOI handling when the XIVE interrupt mode
  7166. is active. This option allows the XIVE driver to use
  7167. loads instead, as on POWER9.
  7168. xhci-hcd.quirks [USB,KNL]
  7169. A hex value specifying bitmask with supplemental xhci
  7170. host controller quirks. Meaning of each bit can be
  7171. consulted in header drivers/usb/host/xhci.h.
  7172. xmon [PPC,EARLY]
  7173. Format: { early | on | rw | ro | off }
  7174. Controls if xmon debugger is enabled. Default is off.
  7175. Passing only "xmon" is equivalent to "xmon=early".
  7176. early Call xmon as early as possible on boot; xmon
  7177. debugger is called from setup_arch().
  7178. on xmon debugger hooks will be installed so xmon
  7179. is only called on a kernel crash. Default mode,
  7180. i.e. either "ro" or "rw" mode, is controlled
  7181. with CONFIG_XMON_DEFAULT_RO_MODE.
  7182. rw xmon debugger hooks will be installed so xmon
  7183. is called only on a kernel crash, mode is write,
  7184. meaning SPR registers, memory and, other data
  7185. can be written using xmon commands.
  7186. ro same as "rw" option above but SPR registers,
  7187. memory, and other data can't be written using
  7188. xmon commands.
  7189. off xmon is disabled.