1	accept_memory=  [MM]
2			Format: { eager | lazy }
3			default: lazy
4			By default, unaccepted memory is accepted lazily to
5			avoid prolonged boot times. The lazy option will add
6			some runtime overhead until all memory is eventually
7			accepted. In most cases the overhead is negligible.
8			For some workloads or for debugging purposes
9			accept_memory=eager can be used to accept all memory
10			at once during boot.
11
12	acpi=		[HW,ACPI,X86,ARM64,RISCV64,EARLY]
13			Advanced Configuration and Power Interface
14			Format: { force | on | off | strict | noirq | rsdt |
15				  copy_dsdt | nospcr }
16			force -- enable ACPI if default was off
17			on -- enable ACPI but allow fallback to DT [arm64,riscv64]
18			off -- disable ACPI if default was on
19			noirq -- do not use ACPI for IRQ routing
20			strict -- Be less tolerant of platforms that are not
21				strictly ACPI specification compliant.
22			rsdt -- prefer RSDT over (default) XSDT
23			copy_dsdt -- copy DSDT to memory
24			nospcr -- disable console in ACPI SPCR table as
25				default _serial_ console on ARM64
26			For ARM64, ONLY "acpi=off", "acpi=on", "acpi=force" or
27			"acpi=nospcr" are available
28			For RISCV64, ONLY "acpi=off", "acpi=on" or "acpi=force"
29			are available
30
31			See also Documentation/power/runtime_pm.rst, pci=noacpi
32
33	acpi_apic_instance=	[ACPI,IOAPIC,EARLY]
34			Format: <int>
35			2: use 2nd APIC table, if available
36			1,0: use 1st APIC table
37			default: 0
38
39	acpi_backlight=	[HW,ACPI]
40			{ vendor | video | native | none }
41			If set to vendor, prefer vendor-specific driver
42			(e.g. thinkpad_acpi, sony_acpi, etc.) instead
43			of the ACPI video.ko driver.
44			If set to video, use the ACPI video.ko driver.
45			If set to native, use the device's native backlight mode.
46			If set to none, disable the ACPI backlight interface.
47
48	acpi_force_32bit_fadt_addr [ACPI,EARLY]
49			force FADT to use 32 bit addresses rather than the
50			64 bit X_* addresses. Some firmware have broken 64
51			bit addresses for force ACPI ignore these and use
52			the older legacy 32 bit addresses.
53
54	acpica_no_return_repair [HW, ACPI]
55			Disable AML predefined validation mechanism
56			This mechanism can repair the evaluation result to make
57			the return objects more ACPI specification compliant.
58			This option is useful for developers to identify the
59			root cause of an AML interpreter issue when the issue
60			has something to do with the repair mechanism.
61
62	acpi.debug_layer=	[HW,ACPI,ACPI_DEBUG]
63	acpi.debug_level=	[HW,ACPI,ACPI_DEBUG]
64			Format: <int>
65			CONFIG_ACPI_DEBUG must be enabled to produce any ACPI
66			debug output.  Bits in debug_layer correspond to a
67			_COMPONENT in an ACPI source file, e.g.,
68			    #define _COMPONENT ACPI_EVENTS
69			Bits in debug_level correspond to a level in
70			ACPI_DEBUG_PRINT statements, e.g.,
71			    ACPI_DEBUG_PRINT((ACPI_DB_INFO, ...
72			The debug_level mask defaults to "info".  See
73			Documentation/firmware-guide/acpi/debug.rst for more information about
74			debug layers and levels.
75
76			Enable processor driver info messages:
77			    acpi.debug_layer=0x20000000
78			Enable AML "Debug" output, i.e., stores to the Debug
79			object while interpreting AML:
80			    acpi.debug_layer=0xffffffff acpi.debug_level=0x2
81			Enable all messages related to ACPI hardware:
82			    acpi.debug_layer=0x2 acpi.debug_level=0xffffffff
83
84			Some values produce so much output that the system is
85			unusable.  The "log_buf_len" parameter may be useful
86			if you need to capture more output.
87
88	acpi_enforce_resources=	[ACPI]
89			{ strict | lax | no }
90			Check for resource conflicts between native drivers
91			and ACPI OperationRegions (SystemIO and SystemMemory
92			only). IO ports and memory declared in ACPI might be
93			used by the ACPI subsystem in arbitrary AML code and
94			can interfere with legacy drivers.
95			strict (default): access to resources claimed by ACPI
96			is denied; legacy drivers trying to access reserved
97			resources will fail to bind to device using them.
98			lax: access to resources claimed by ACPI is allowed;
99			legacy drivers trying to access reserved resources
100			will bind successfully but a warning message is logged.
101			no: ACPI OperationRegions are not marked as reserved,
102			no further checks are performed.
103
104	acpi_force_table_verification	[HW,ACPI,EARLY]
105			Enable table checksum verification during early stage.
106			By default, this is disabled due to x86 early mapping
107			size limitation.
108
109	acpi_irq_balance [HW,ACPI]
110			ACPI will balance active IRQs
111			default in APIC mode
112
113	acpi_irq_nobalance [HW,ACPI]
114			ACPI will not move active IRQs (default)
115			default in PIC mode
116
117	acpi_irq_isa=	[HW,ACPI] If irq_balance, mark listed IRQs used by ISA
118			Format: <irq>,<irq>...
119
120	acpi_irq_pci=	[HW,ACPI] If irq_balance, clear listed IRQs for
121			use by PCI
122			Format: <irq>,<irq>...
123
124	acpi_mask_gpe=	[HW,ACPI]
125			Due to the existence of _Lxx/_Exx, some GPEs triggered
126			by unsupported hardware/firmware features can result in
127			GPE floodings that cannot be automatically disabled by
128			the GPE dispatcher.
129			This facility can be used to prevent such uncontrolled
130			GPE floodings.
131			Format: <byte> or <bitmap-list>
132
133	acpi_no_auto_serialize	[HW,ACPI]
134			Disable auto-serialization of AML methods
135			AML control methods that contain the opcodes to create
136			named objects will be marked as "Serialized" by the
137			auto-serialization feature.
138			This feature is enabled by default.
139			This option allows to turn off the feature.
140
141	acpi_no_memhotplug [ACPI] Disable memory hotplug.  Useful for kdump
142			   kernels.
143
144	acpi_no_static_ssdt	[HW,ACPI,EARLY]
145			Disable installation of static SSDTs at early boot time
146			By default, SSDTs contained in the RSDT/XSDT will be
147			installed automatically and they will appear under
148			/sys/firmware/acpi/tables.
149			This option turns off this feature.
150			Note that specifying this option does not affect
151			dynamic table installation which will install SSDT
152			tables to /sys/firmware/acpi/tables/dynamic.
153
154	acpi_no_watchdog	[HW,ACPI,WDT]
155			Ignore the ACPI-based watchdog interface (WDAT) and let
156			a native driver control the watchdog device instead.
157
158	acpi_rsdp=	[ACPI,EFI,KEXEC,EARLY]
159			Pass the RSDP address to the kernel, mostly used
160			on machines running EFI runtime service to boot the
161			second kernel for kdump.
162
163	acpi_os_name=	[HW,ACPI] Tell ACPI BIOS the name of the OS
164			Format: To spoof as Windows 98: ="Microsoft Windows"
165
166	acpi_rev_override [ACPI] Override the _REV object to return 5 (instead
167			of 2 which is mandated by ACPI 6) as the supported ACPI
168			specification revision (when using this switch, it may
169			be necessary to carry out a cold reboot _twice_ in a
170			row to make it take effect on the platform firmware).
171
172	acpi_osi=	[HW,ACPI] Modify list of supported OS interface strings
173			acpi_osi="string1"	# add string1
174			acpi_osi="!string2"	# remove string2
175			acpi_osi=!*		# remove all strings
176			acpi_osi=!		# disable all built-in OS vendor
177						  strings
178			acpi_osi=!!		# enable all built-in OS vendor
179						  strings
180			acpi_osi=		# disable all strings
181
182			'acpi_osi=!' can be used in combination with single or
183			multiple 'acpi_osi="string1"' to support specific OS
184			vendor string(s).  Note that such command can only
185			affect the default state of the OS vendor strings, thus
186			it cannot affect the default state of the feature group
187			strings and the current state of the OS vendor strings,
188			specifying it multiple times through kernel command line
189			is meaningless.  This command is useful when one do not
190			care about the state of the feature group strings which
191			should be controlled by the OSPM.
192			Examples:
193			  1. 'acpi_osi=! acpi_osi="Windows 2000"' is equivalent
194			     to 'acpi_osi="Windows 2000" acpi_osi=!', they all
195			     can make '_OSI("Windows 2000")' TRUE.
196
197			'acpi_osi=' cannot be used in combination with other
198			'acpi_osi=' command lines, the _OSI method will not
199			exist in the ACPI namespace.  NOTE that such command can
200			only affect the _OSI support state, thus specifying it
201			multiple times through kernel command line is also
202			meaningless.
203			Examples:
204			  1. 'acpi_osi=' can make 'CondRefOf(_OSI, Local1)'
205			     FALSE.
206
207			'acpi_osi=!*' can be used in combination with single or
208			multiple 'acpi_osi="string1"' to support specific
209			string(s).  Note that such command can affect the
210			current state of both the OS vendor strings and the
211			feature group strings, thus specifying it multiple times
212			through kernel command line is meaningful.  But it may
213			still not able to affect the final state of a string if
214			there are quirks related to this string.  This command
215			is useful when one want to control the state of the
216			feature group strings to debug BIOS issues related to
217			the OSPM features.
218			Examples:
219			  1. 'acpi_osi="Module Device" acpi_osi=!*' can make
220			     '_OSI("Module Device")' FALSE.
221			  2. 'acpi_osi=!* acpi_osi="Module Device"' can make
222			     '_OSI("Module Device")' TRUE.
223			  3. 'acpi_osi=! acpi_osi=!* acpi_osi="Windows 2000"' is
224			     equivalent to
225			     'acpi_osi=!* acpi_osi=! acpi_osi="Windows 2000"'
226			     and
227			     'acpi_osi=!* acpi_osi="Windows 2000" acpi_osi=!',
228			     they all will make '_OSI("Windows 2000")' TRUE.
229
230	acpi_pm_good	[X86]
231			Override the pmtimer bug detection: force the kernel
232			to assume that this machine's pmtimer latches its value
233			and always returns good values.
234
235	acpi_sci=	[HW,ACPI,EARLY] ACPI System Control Interrupt trigger mode
236			Format: { level | edge | high | low }
237
238	acpi_skip_timer_override [HW,ACPI,EARLY]
239			Recognize and ignore IRQ0/pin2 Interrupt Override.
240			For broken nForce2 BIOS resulting in XT-PIC timer.
241
242	acpi_sleep=	[HW,ACPI] Sleep options
243			Format: { s3_bios, s3_mode, s3_beep, s4_hwsig,
244				  s4_nohwsig, old_ordering, nonvs,
245				  sci_force_enable, nobl }
246			See Documentation/power/video.rst for information on
247			s3_bios and s3_mode.
248			s3_beep is for debugging; it makes the PC's speaker beep
249			as soon as the kernel's real-mode entry point is called.
250			s4_hwsig causes the kernel to check the ACPI hardware
251			signature during resume from hibernation, and gracefully
252			refuse to resume if it has changed. This complies with
253			the ACPI specification but not with reality, since
254			Windows does not do this and many laptops do change it
255			on docking. So the default behaviour is to allow resume
256			and simply warn when the signature changes, unless the
257			s4_hwsig option is enabled.
258			s4_nohwsig prevents ACPI hardware signature from being
259			used (or even warned about) during resume.
260			old_ordering causes the ACPI 1.0 ordering of the _PTS
261			control method, with respect to putting devices into
262			low power states, to be enforced (the ACPI 2.0 ordering
263			of _PTS is used by default).
264			nonvs prevents the kernel from saving/restoring the
265			ACPI NVS memory during suspend/hibernation and resume.
266			sci_force_enable causes the kernel to set SCI_EN directly
267			on resume from S1/S3 (which is against the ACPI spec,
268			but some broken systems don't work without it).
269			nobl causes the internal blacklist of systems known to
270			behave incorrectly in some ways with respect to system
271			suspend and resume to be ignored (use wisely).
272
273	acpi_use_timer_override [HW,ACPI,EARLY]
274			Use timer override. For some broken Nvidia NF5 boards
275			that require a timer override, but don't have HPET
276
277	add_efi_memmap	[EFI,X86,EARLY] Include EFI memory map in
278			kernel's map of available physical RAM.
279
280	agp=		[AGP]
281			{ off | try_unsupported }
282			off: disable AGP support
283			try_unsupported: try to drive unsupported chipsets
284				(may crash computer or cause data corruption)
285
286	ALSA		[HW,ALSA]
287			See Documentation/sound/alsa-configuration.rst
288
289	alignment=	[KNL,ARM]
290			Allow the default userspace alignment fault handler
291			behaviour to be specified.  Bit 0 enables warnings,
292			bit 1 enables fixups, and bit 2 sends a segfault.
293
294	align_va_addr=	[X86-64]
295			Align virtual addresses by clearing slice [14:12] when
296			allocating a VMA at process creation time. This option
297			gives you up to 3% performance improvement on AMD F15h
298			machines (where it is enabled by default) for a
299			CPU-intensive style benchmark, and it can vary highly in
300			a microbenchmark depending on workload and compiler.
301
302			32: only for 32-bit processes
303			64: only for 64-bit processes
304			on: enable for both 32- and 64-bit processes
305			off: disable for both 32- and 64-bit processes
306
307	alloc_snapshot	[FTRACE]
308			Allocate the ftrace snapshot buffer on boot up when the
309			main buffer is allocated. This is handy if debugging
310			and you need to use tracing_snapshot() on boot up, and
311			do not want to use tracing_snapshot_alloc() as it needs
312			to be done where GFP_KERNEL allocations are allowed.
313
314	allow_mismatched_32bit_el0 [ARM64,EARLY]
315			Allow execve() of 32-bit applications and setting of the
316			PER_LINUX32 personality on systems where only a strict
317			subset of the CPUs support 32-bit EL0. When this
318			parameter is present, the set of CPUs supporting 32-bit
319			EL0 is indicated by /sys/devices/system/cpu/aarch32_el0
320			and hot-unplug operations may be restricted.
321
322			See Documentation/arch/arm64/asymmetric-32bit.rst for more
323			information.
324
325	amd_iommu=	[HW,X86-64]
326			Pass parameters to the AMD IOMMU driver in the system.
327			Possible values are:
328			fullflush - Deprecated, equivalent to iommu.strict=1
329			off	  - do not initialize any AMD IOMMU found in
330				    the system
331			force_isolation - Force device isolation for all
332					  devices. The IOMMU driver is not
333					  allowed anymore to lift isolation
334					  requirements as needed. This option
335					  does not override iommu=pt
336			force_enable - Force enable the IOMMU on platforms known
337				       to be buggy with IOMMU enabled. Use this
338				       option with care.
339			pgtbl_v1     - Use v1 page table for DMA-API (Default).
340			pgtbl_v2     - Use v2 page table for DMA-API.
341			irtcachedis  - Disable Interrupt Remapping Table (IRT) caching.
342
343	amd_iommu_dump=	[HW,X86-64]
344			Enable AMD IOMMU driver option to dump the ACPI table
345			for AMD IOMMU. With this option enabled, AMD IOMMU
346			driver will print ACPI tables for AMD IOMMU during
347			IOMMU initialization.
348
349	amd_iommu_intr=	[HW,X86-64]
350			Specifies one of the following AMD IOMMU interrupt
351			remapping modes:
352			legacy     - Use legacy interrupt remapping mode.
353			vapic      - Use virtual APIC mode, which allows IOMMU
354			             to inject interrupts directly into guest.
355			             This mode requires kvm-amd.avic=1.
356			             (Default when IOMMU HW support is present.)
357
358	amd_pstate=	[X86,EARLY]
359			disable
360			  Do not enable amd_pstate as the default
361			  scaling driver for the supported processors
362			passive
363			  Use amd_pstate with passive mode as a scaling driver.
364			  In this mode autonomous selection is disabled.
365			  Driver requests a desired performance level and platform
366			  tries to match the same performance level if it is
367			  satisfied by guaranteed performance level.
368			active
369			  Use amd_pstate_epp driver instance as the scaling driver,
370			  driver provides a hint to the hardware if software wants
371			  to bias toward performance (0x0) or energy efficiency (0xff)
372			  to the CPPC firmware. then CPPC power algorithm will
373			  calculate the runtime workload and adjust the realtime cores
374			  frequency.
375			guided
376			  Activate guided autonomous mode. Driver requests minimum and
377			  maximum performance level and the platform autonomously
378			  selects a performance level in this range and appropriate
379			  to the current workload.
380
381	amd_prefcore=
382			[X86]
383			disable
384			  Disable amd-pstate preferred core.
385
386	amijoy.map=	[HW,JOY] Amiga joystick support
387			Map of devices attached to JOY0DAT and JOY1DAT
388			Format: <a>,<b>
389			See also Documentation/input/joydev/joystick.rst
390
391	analog.map=	[HW,JOY] Analog joystick and gamepad support
392			Specifies type or capabilities of an analog joystick
393			connected to one of 16 gameports
394			Format: <type1>,<type2>,..<type16>
395
396	apc=		[HW,SPARC]
397			Power management functions (SPARCstation-4/5 + deriv.)
398			Format: noidle
399			Disable APC CPU standby support. SPARCstation-Fox does
400			not play well with APC CPU idle - disable it if you have
401			APC and your system crashes randomly.
402
403	apic=		[APIC,X86,EARLY] Advanced Programmable Interrupt Controller
404			Change the output verbosity while booting
405			Format: { quiet (default) | verbose | debug }
406			Change the amount of debugging information output
407			when initialising the APIC and IO-APIC components.
408			For X86-32, this can also be used to specify an APIC
409			driver name.
410			Format: apic=driver_name
411			Examples: apic=bigsmp
412
413	apic_extnmi=	[APIC,X86,EARLY] External NMI delivery setting
414			Format: { bsp (default) | all | none }
415			bsp:  External NMI is delivered only to CPU 0
416			all:  External NMIs are broadcast to all CPUs as a
417			      backup of CPU 0
418			none: External NMI is masked for all CPUs. This is
419			      useful so that a dump capture kernel won't be
420			      shot down by NMI
421
422	autoconf=	[IPV6]
423			See Documentation/networking/ipv6.rst.
424
425	apm=		[APM] Advanced Power Management
426			See header of arch/x86/kernel/apm_32.c.
427
428	apparmor=	[APPARMOR] Disable or enable AppArmor at boot time
429			Format: { "0" | "1" }
430			See security/apparmor/Kconfig help text
431			0 -- disable.
432			1 -- enable.
433			Default value is set via kernel config option.
434
435	arcrimi=	[HW,NET] ARCnet - "RIM I" (entirely mem-mapped) cards
436			Format: <io>,<irq>,<nodeID>
437
438	arm64.no32bit_el0 [ARM64] Unconditionally disable the execution of
439			32 bit applications.
440
441	arm64.nobti	[ARM64] Unconditionally disable Branch Target
442			Identification support
443
444	arm64.nomops	[ARM64] Unconditionally disable Memory Copy and Memory
445			Set instructions support
446
447	arm64.nomte	[ARM64] Unconditionally disable Memory Tagging Extension
448			support
449
450	arm64.nopauth	[ARM64] Unconditionally disable Pointer Authentication
451			support
452
453	arm64.nosme	[ARM64] Unconditionally disable Scalable Matrix
454			Extension support
455
456	arm64.nosve	[ARM64] Unconditionally disable Scalable Vector
457			Extension support
458
459	ataflop=	[HW,M68k]
460
461	atarimouse=	[HW,MOUSE] Atari Mouse
462
463	atkbd.extra=	[HW] Enable extra LEDs and keys on IBM RapidAccess,
464			EzKey and similar keyboards
465
466	atkbd.reset=	[HW] Reset keyboard during initialization
467
468	atkbd.set=	[HW] Select keyboard code set
469			Format: <int> (2 = AT (default), 3 = PS/2)
470
471	atkbd.scroll=	[HW] Enable scroll wheel on MS Office and similar
472			keyboards
473
474	atkbd.softraw=	[HW] Choose between synthetic and real raw mode
475			Format: <bool> (0 = real, 1 = synthetic (default))
476
477	atkbd.softrepeat= [HW]
478			Use software keyboard repeat
479
480	audit=		[KNL] Enable the audit sub-system
481			Format: { "0" | "1" | "off" | "on" }
482			0 | off - kernel audit is disabled and can not be
483			    enabled until the next reboot
484			unset - kernel audit is initialized but disabled and
485			    will be fully enabled by the userspace auditd.
486			1 | on - kernel audit is initialized and partially
487			    enabled, storing at most audit_backlog_limit
488			    messages in RAM until it is fully enabled by the
489			    userspace auditd.
490			Default: unset
491
492	audit_backlog_limit= [KNL] Set the audit queue size limit.
493			Format: <int> (must be >=0)
494			Default: 64
495
496	bau=		[X86_UV] Enable the BAU on SGI UV.  The default
497			behavior is to disable the BAU (i.e. bau=0).
498			Format: { "0" | "1" }
499			0 - Disable the BAU.
500			1 - Enable the BAU.
501			unset - Disable the BAU.
502
503	baycom_epp=	[HW,AX25]
504			Format: <io>,<mode>
505
506	baycom_par=	[HW,AX25] BayCom Parallel Port AX.25 Modem
507			Format: <io>,<mode>
508			See header of drivers/net/hamradio/baycom_par.c.
509
510	baycom_ser_fdx=	[HW,AX25]
511			BayCom Serial Port AX.25 Modem (Full Duplex Mode)
512			Format: <io>,<irq>,<mode>[,<baud>]
513			See header of drivers/net/hamradio/baycom_ser_fdx.c.
514
515	baycom_ser_hdx=	[HW,AX25]
516			BayCom Serial Port AX.25 Modem (Half Duplex Mode)
517			Format: <io>,<irq>,<mode>
518			See header of drivers/net/hamradio/baycom_ser_hdx.c.
519
520	bdev_allow_write_mounted=
521			Format: <bool>
522			Control the ability to open a mounted block device
523			for writing, i.e., allow / disallow writes that bypass
524			the FS. This was implemented as a means to prevent
525			fuzzers from crashing the kernel by overwriting the
526			metadata underneath a mounted FS without its awareness.
527			This also prevents destructive formatting of mounted
528			filesystems by naive storage tooling that don't use
529			O_EXCL. Default is Y and can be changed through the
530			Kconfig option CONFIG_BLK_DEV_WRITE_MOUNTED.
531
532	bert_disable	[ACPI]
533			Disable BERT OS support on buggy BIOSes.
534
535	bgrt_disable	[ACPI,X86,EARLY]
536			Disable BGRT to avoid flickering OEM logo.
537
538	blkdevparts=	Manual partition parsing of block device(s) for
539			embedded devices based on command line input.
540			See Documentation/block/cmdline-partition.rst
541
542	boot_delay=	[KNL,EARLY]
543			Milliseconds to delay each printk during boot.
544			Only works if CONFIG_BOOT_PRINTK_DELAY is enabled,
545			and you may also have to specify "lpj=".  Boot_delay
546			values larger than 10 seconds (10000) are assumed
547			erroneous and ignored.
548			Format: integer
549
550	bootconfig	[KNL,EARLY]
551			Extended command line options can be added to an initrd
552			and this will cause the kernel to look for it.
553
554			See Documentation/admin-guide/bootconfig.rst
555
556	bttv.card=	[HW,V4L] bttv (bt848 + bt878 based grabber cards)
557	bttv.radio=	Most important insmod options are available as
558			kernel args too.
559	bttv.pll=	See Documentation/admin-guide/media/bttv.rst
560	bttv.tuner=
561
562	bulk_remove=off	[PPC]  This parameter disables the use of the pSeries
563			firmware feature for flushing multiple hpte entries
564			at a time.
565
566	c101=		[NET] Moxa C101 synchronous serial card
567
568	cachesize=	[BUGS=X86-32] Override level 2 CPU cache size detection.
569			Sometimes CPU hardware bugs make them report the cache
570			size incorrectly. The kernel will attempt work arounds
571			to fix known problems, but for some CPUs it is not
572			possible to determine what the correct size should be.
573			This option provides an override for these situations.
574
575	carrier_timeout=
576			[NET] Specifies amount of time (in seconds) that
577			the kernel should wait for a network carrier. By default
578			it waits 120 seconds.
579
580	ca_keys=	[KEYS] This parameter identifies a specific key(s) on
581			the system trusted keyring to be used for certificate
582			trust validation.
583			format: { id:<keyid> | builtin }
584
585	cca=		[MIPS,EARLY] Override the kernel pages' cache coherency
586			algorithm.  Accepted values range from 0 to 7
587			inclusive. See arch/mips/include/asm/pgtable-bits.h
588			for platform specific values (SB1, Loongson3 and
589			others).
590
591	ccw_timeout_log	[S390]
592			See Documentation/arch/s390/common_io.rst for details.
593
594	cgroup_disable=	[KNL] Disable a particular controller or optional feature
595			Format: {name of the controller(s) or feature(s) to disable}
596			The effects of cgroup_disable=foo are:
597			- foo isn't auto-mounted if you mount all cgroups in
598			  a single hierarchy
599			- foo isn't visible as an individually mountable
600			  subsystem
601			- if foo is an optional feature then the feature is
602			  disabled and corresponding cgroup files are not
603			  created
604			{Currently only "memory" controller deal with this and
605			cut the overhead, others just disable the usage. So
606			only cgroup_disable=memory is actually worthy}
607			Specifying "pressure" disables per-cgroup pressure
608			stall information accounting feature
609
610	cgroup_no_v1=	[KNL] Disable cgroup controllers and named hierarchies in v1
611			Format: { { controller | "all" | "named" }
612			          [,{ controller | "all" | "named" }...] }
613			Like cgroup_disable, but only applies to cgroup v1;
614			the blacklisted controllers remain available in cgroup2.
615			"all" blacklists all controllers and "named" disables
616			named mounts. Specifying both "all" and "named" disables
617			all v1 hierarchies.
618
619	cgroup_favordynmods= [KNL] Enable or Disable favordynmods.
620			Format: { "true" | "false" }
621			Defaults to the value of CONFIG_CGROUP_FAVOR_DYNMODS.
622
623	cgroup.memory=	[KNL] Pass options to the cgroup memory controller.
624			Format: <string>
625			nosocket -- Disable socket memory accounting.
626			nokmem -- Disable kernel memory accounting.
627			nobpf -- Disable BPF memory accounting.
628
629	checkreqprot=	[SELINUX] Set initial checkreqprot flag value.
630			Format: { "0" | "1" }
631			See security/selinux/Kconfig help text.
632			0 -- check protection applied by kernel (includes
633				any implied execute protection).
634			1 -- check protection requested by application.
635			Default value is set via a kernel config option.
636			Value can be changed at runtime via
637				/sys/fs/selinux/checkreqprot.
638			Setting checkreqprot to 1 is deprecated.
639
640	cio_ignore=	[S390]
641			See Documentation/arch/s390/common_io.rst for details.
642
643	clearcpuid=X[,X...] [X86]
644			Disable CPUID feature X for the kernel. See
645			arch/x86/include/asm/cpufeatures.h for the valid bit
646			numbers X. Note the Linux-specific bits are not necessarily
647			stable over kernel options, but the vendor-specific
648			ones should be.
649			X can also be a string as appearing in the flags: line
650			in /proc/cpuinfo which does not have the above
651			instability issue. However, not all features have names
652			in /proc/cpuinfo.
653			Note that using this option will taint your kernel.
654			Also note that user programs calling CPUID directly
655			or using the feature without checking anything
656			will still see it. This just prevents it from
657			being used by the kernel or shown in /proc/cpuinfo.
658			Also note the kernel might malfunction if you disable
659			some critical bits.
660
661	clk_ignore_unused
662			[CLK]
663			Prevents the clock framework from automatically gating
664			clocks that have not been explicitly enabled by a Linux
665			device driver but are enabled in hardware at reset or
666			by the bootloader/firmware. Note that this does not
667			force such clocks to be always-on nor does it reserve
668			those clocks in any way. This parameter is useful for
669			debug and development, but should not be needed on a
670			platform with proper driver support.  For more
671			information, see Documentation/driver-api/clk.rst.
672
673	clock=		[BUGS=X86-32, HW] gettimeofday clocksource override.
674			[Deprecated]
675			Forces specified clocksource (if available) to be used
676			when calculating gettimeofday(). If specified
677			clocksource is not available, it defaults to PIT.
678			Format: { pit | tsc | cyclone | pmtmr }
679
680	clocksource=	Override the default clocksource
681			Format: <string>
682			Override the default clocksource and use the clocksource
683			with the name specified.
684			Some clocksource names to choose from, depending on
685			the platform:
686			[all] jiffies (this is the base, fallback clocksource)
687			[ACPI] acpi_pm
688			[ARM] imx_timer1,OSTS,netx_timer,mpu_timer2,
689				pxa_timer,timer3,32k_counter,timer0_1
690			[X86-32] pit,hpet,tsc;
691				scx200_hrt on Geode; cyclone on IBM x440
692			[MIPS] MIPS
693			[PARISC] cr16
694			[S390] tod
695			[SH] SuperH
696			[SPARC64] tick
697			[X86-64] hpet,tsc
698
699	clocksource.arm_arch_timer.evtstrm=
700			[ARM,ARM64,EARLY]
701			Format: <bool>
702			Enable/disable the eventstream feature of the ARM
703			architected timer so that code using WFE-based polling
704			loops can be debugged more effectively on production
705			systems.
706
707	clocksource.verify_n_cpus= [KNL]
708			Limit the number of CPUs checked for clocksources
709			marked with CLOCK_SOURCE_VERIFY_PERCPU that
710			are marked unstable due to excessive skew.
711			A negative value says to check all CPUs, while
712			zero says not to check any.  Values larger than
713			nr_cpu_ids are silently truncated to nr_cpu_ids.
714			The actual CPUs are chosen randomly, with
715			no replacement if the same CPU is chosen twice.
716
717	clocksource-wdtest.holdoff= [KNL]
718			Set the time in seconds that the clocksource
719			watchdog test waits before commencing its tests.
720			Defaults to zero when built as a module and to
721			10 seconds when built into the kernel.
722
723	cma=nn[MG]@[start[MG][-end[MG]]]
724			[KNL,CMA,EARLY]
725			Sets the size of kernel global memory area for
726			contiguous memory allocations and optionally the
727			placement constraint by the physical address range of
728			memory allocations. A value of 0 disables CMA
729			altogether. For more information, see
730			kernel/dma/contiguous.c
731
732	cma_pernuma=nn[MG]
733			[KNL,CMA,EARLY]
734			Sets the size of kernel per-numa memory area for
735			contiguous memory allocations. A value of 0 disables
736			per-numa CMA altogether. And If this option is not
737			specified, the default value is 0.
738			With per-numa CMA enabled, DMA users on node nid will
739			first try to allocate buffer from the pernuma area
740			which is located in node nid, if the allocation fails,
741			they will fallback to the global default memory area.
742
743	numa_cma=<node>:nn[MG][,<node>:nn[MG]]
744			[KNL,CMA,EARLY]
745			Sets the size of kernel numa memory area for
746			contiguous memory allocations. It will reserve CMA
747			area for the specified node.
748
749			With numa CMA enabled, DMA users on node nid will
750			first try to allocate buffer from the numa area
751			which is located in node nid, if the allocation fails,
752			they will fallback to the global default memory area.
753
754	cmo_free_hint=	[PPC] Format: { yes | no }
755			Specify whether pages are marked as being inactive
756			when they are freed.  This is used in CMO environments
757			to determine OS memory pressure for page stealing by
758			a hypervisor.
759			Default: yes
760
761	coherent_pool=nn[KMG]	[ARM,KNL,EARLY]
762			Sets the size of memory pool for coherent, atomic dma
763			allocations, by default set to 256K.
764
765	com20020=	[HW,NET] ARCnet - COM20020 chipset
766			Format:
767			<io>[,<irq>[,<nodeID>[,<backplane>[,<ckp>[,<timeout>]]]]]
768
769	com90io=	[HW,NET] ARCnet - COM90xx chipset (IO-mapped buffers)
770			Format: <io>[,<irq>]
771
772	com90xx=	[HW,NET]
773			ARCnet - COM90xx chipset (memory-mapped buffers)
774			Format: <io>[,<irq>[,<memstart>]]
775
776	condev=		[HW,S390] console device
777	conmode=
778
779	con3215_drop=	[S390,EARLY] 3215 console drop mode.
780			Format: y|n|Y|N|1|0
781			When set to true, drop data on the 3215 console when
782			the console buffer is full. In this case the
783			operator using a 3270 terminal emulator (for example
784			x3270) does not have to enter the clear key for the
785			console output to advance and the kernel to continue.
786			This leads to a much faster boot time when a 3270
787			terminal emulator is active. If no 3270 terminal
788			emulator is used, this parameter has no effect.
789
790	console=	[KNL] Output console device and options.
791
792		tty<n>	Use the virtual console device <n>.
793
794		ttyS<n>[,options]
795		ttyUSB0[,options]
796			Use the specified serial port.  The options are of
797			the form "bbbbpnf", where "bbbb" is the baud rate,
798			"p" is parity ("n", "o", or "e"), "n" is number of
799			bits, and "f" is flow control ("r" for RTS or
800			omit it).  Default is "9600n8".
801
802			See Documentation/admin-guide/serial-console.rst for more
803			information.  See
804			Documentation/networking/netconsole.rst for an
805			alternative.
806
807		<DEVNAME>:<n>.<n>[,options]
808			Use the specified serial port on the serial core bus.
809			The addressing uses DEVNAME of the physical serial port
810			device, followed by the serial core controller instance,
811			and the serial port instance. The options are the same
812			as documented for the ttyS addressing above.
813
814			The mapping of the serial ports to the tty instances
815			can be viewed with:
816
817			$ ls -d /sys/bus/serial-base/devices/*:*.*/tty/*
818			/sys/bus/serial-base/devices/00:04:0.0/tty/ttyS0
819
820			In the above example, the console can be addressed with
821			console=00:04:0.0. Note that a console addressed this
822			way will only get added when the related device driver
823			is ready. The use of an earlycon parameter in addition to
824			the console may be desired for console output early on.
825
826		uart[8250],io,<addr>[,options]
827		uart[8250],mmio,<addr>[,options]
828		uart[8250],mmio16,<addr>[,options]
829		uart[8250],mmio32,<addr>[,options]
830		uart[8250],0x<addr>[,options]
831			Start an early, polled-mode console on the 8250/16550
832			UART at the specified I/O port or MMIO address,
833			switching to the matching ttyS device later.
834			MMIO inter-register address stride is either 8-bit
835			(mmio), 16-bit (mmio16), or 32-bit (mmio32).
836			If none of [io|mmio|mmio16|mmio32], <addr> is assumed
837			to be equivalent to 'mmio'. 'options' are specified in
838			the same format described for ttyS above; if unspecified,
839			the h/w is not re-initialized.
840
841		hvc<n>	Use the hypervisor console device <n>. This is for
842			both Xen and PowerPC hypervisors.
843
844		{ null | "" }
845			Use to disable console output, i.e., to have kernel
846			console messages discarded.
847			This must be the only console= parameter used on the
848			kernel command line.
849
850		If the device connected to the port is not a TTY but a braille
851		device, prepend "brl," before the device type, for instance
852			console=brl,ttyS0
853		For now, only VisioBraille is supported.
854
855	console_msg_format=
856			[KNL] Change console messages format
857		default
858			By default we print messages on consoles in
859			"[time stamp] text\n" format (time stamp may not be
860			printed, depending on CONFIG_PRINTK_TIME or
861			`printk_time' param).
862		syslog
863			Switch to syslog format: "<%u>[time stamp] text\n"
864			IOW, each message will have a facility and loglevel
865			prefix. The format is similar to one used by syslog()
866			syscall, or to executing "dmesg -S --raw" or to reading
867			from /proc/kmsg.
868
869	consoleblank=	[KNL] The console blank (screen saver) timeout in
870			seconds. A value of 0 disables the blank timer.
871			Defaults to 0.
872
873	coredump_filter=
874			[KNL] Change the default value for
875			/proc/<pid>/coredump_filter.
876			See also Documentation/filesystems/proc.rst.
877
878	coresight_cpu_debug.enable
879			[ARM,ARM64]
880			Format: <bool>
881			Enable/disable the CPU sampling based debugging.
882			0: default value, disable debugging
883			1: enable debugging at boot time
884
885	cpcihp_generic=	[HW,PCI] Generic port I/O CompactPCI driver
886			Format:
887			<first_slot>,<last_slot>,<port>,<enum_bit>[,<debug>]
888
889	cpuidle.off=1	[CPU_IDLE]
890			disable the cpuidle sub-system
891
892	cpuidle.governor=
893			[CPU_IDLE] Name of the cpuidle governor to use.
894
895	cpufreq.off=1	[CPU_FREQ]
896			disable the cpufreq sub-system
897
898	cpufreq.default_governor=
899			[CPU_FREQ] Name of the default cpufreq governor or
900			policy to use. This governor must be registered in the
901			kernel before the cpufreq driver probes.
902
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
909	cpuhp.parallel=
910			[SMP] Enable/disable parallel bringup of secondary CPUs
911			Format: <bool>
912			Default is enabled if CONFIG_HOTPLUG_PARALLEL=y. Otherwise
913			the parameter has no effect.
914
915	crash_kexec_post_notifiers
916			Run kdump after running panic-notifiers and dumping
917			kmsg. This only for the users who doubt kdump always
918			succeeds in any situation.
919			Note that this also increases risks of kdump failure,
920			because some panic notifiers can make the crashed
921			kernel more unstable.
922
923	crashkernel=size[KMG][@offset[KMG]]
924			[KNL,EARLY] Using kexec, Linux can switch to a 'crash kernel'
925			upon panic. This parameter reserves the physical
926			memory region [offset, offset + size] for that kernel
927			image. If '@offset' is omitted, then a suitable offset
928			is selected automatically.
929			[KNL, X86-64, ARM64, RISCV, LoongArch] Select a region
930			under 4G first, and fall back to reserve region above
931			4G when '@offset' hasn't been specified.
932			See Documentation/admin-guide/kdump/kdump.rst for further details.
933
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
941	crashkernel=size[KMG],high
942			[KNL, X86-64, ARM64, RISCV, LoongArch] range could be
943			above 4G.
944			Allow kernel to allocate physical memory region from top,
945			so could be above 4G if system have more than 4G ram
946			installed. Otherwise memory region will be allocated
947			below 4G, if available.
948			It will be ignored if crashkernel=X is specified.
949	crashkernel=size[KMG],low
950			[KNL, X86-64, ARM64, RISCV, LoongArch] range under 4G.
951			When crashkernel=X,high is passed, kernel could allocate
952			physical memory region above 4G, that cause second kernel
953			crash on system that require some amount of low memory,
954			e.g. swiotlb requires at least 64M+32K low memory, also
955			enough extra low memory is needed to make sure DMA buffers
956			for 32-bit devices won't run out. Kernel would try to allocate
957			default	size of memory below 4G automatically. The default
958			size is	platform dependent.
959			  --> x86: max(swiotlb_size_or_default() + 8MiB, 256MiB)
960			  --> arm64: 128MiB
961			  --> riscv: 128MiB
962			  --> loongarch: 128MiB
963			This one lets the user specify own low range under 4G
964			for second kernel instead.
965			0: to disable low allocation.
966			It will be ignored when crashkernel=X,high is not used
967			or memory reserved is below 4G.
968
969	cryptomgr.notests
970			[KNL] Disable crypto self-tests
971
972	cs89x0_dma=	[HW,NET]
973			Format: <dma>
974
975	cs89x0_media=	[HW,NET]
976			Format: { rj45 | aui | bnc }
977
978	csdlock_debug=	[KNL] Enable or disable debug add-ons of cross-CPU
979			function call handling. When switched on,
980			additional debug data is printed to the console
981			in case a hanging CPU is detected, and that
982			CPU is pinged again in order to try to resolve
983			the hang situation.  The default value of this
984			option depends on the CSD_LOCK_WAIT_DEBUG_DEFAULT
985			Kconfig option.
986
987	dasd=		[HW,NET]
988			See header of drivers/s390/block/dasd_devmap.c.
989
990	db9.dev[2|3]=	[HW,JOY] Multisystem joystick support via parallel port
991			(one device per port)
992			Format: <port#>,<type>
993			See also Documentation/input/devices/joystick-parport.rst
994
995	debug		[KNL,EARLY] Enable kernel debugging (events log level).
996
997	debug_boot_weak_hash
998			[KNL,EARLY] Enable printing [hashed] pointers early in the
999			boot sequence.  If enabled, we use a weak hash instead
1000			of siphash to hash pointers.  Use this option if you are
1001			seeing instances of '(___ptrval___)') and need to see a
1002			value (hashed pointer) instead. Cryptographically
1003			insecure, please do not use on production kernels.
1004
1005	debug_locks_verbose=
1006			[KNL] verbose locking self-tests
1007			Format: <int>
1008			Print debugging info while doing the locking API
1009			self-tests.
1010			Bitmask for the various LOCKTYPE_ tests. Defaults to 0
1011			(no extra messages), setting it to -1 (all bits set)
1012			will print _a_lot_ more information - normally only
1013			useful to lockdep developers.
1014
1015	debug_objects	[KNL,EARLY] Enable object debugging
1016
1017	debug_guardpage_minorder=
1018			[KNL,EARLY] When CONFIG_DEBUG_PAGEALLOC is set, this
1019			parameter allows control of the order of pages that will
1020			be intentionally kept free (and hence protected) by the
1021			buddy allocator. Bigger value increase the probability
1022			of catching random memory corruption, but reduce the
1023			amount of memory for normal system use. The maximum
1024			possible value is MAX_PAGE_ORDER/2.  Setting this
1025			parameter to 1 or 2 should be enough to identify most
1026			random memory corruption problems caused by bugs in
1027			kernel or driver code when a CPU writes to (or reads
1028			from) a random memory location. Note that there exists
1029			a class of memory corruptions problems caused by buggy
1030			H/W or F/W or by drivers badly programming DMA
1031			(basically when memory is written at bus level and the
1032			CPU MMU is bypassed) which are not detectable by
1033			CONFIG_DEBUG_PAGEALLOC, hence this option will not
1034			help tracking down these problems.
1035
1036	debug_pagealloc=
1037			[KNL,EARLY] When CONFIG_DEBUG_PAGEALLOC is set, this parameter
1038			enables the feature at boot time. By default, it is
1039			disabled and the system will work mostly the same as a
1040			kernel built without CONFIG_DEBUG_PAGEALLOC.
1041			Note: to get most of debug_pagealloc error reports, it's
1042			useful to also enable the page_owner functionality.
1043			on: enable the feature
1044
1045	debugfs=    	[KNL,EARLY] This parameter enables what is exposed to
1046			userspace and debugfs internal clients.
1047			Format: { on, no-mount, off }
1048			on: 	All functions are enabled.
1049			no-mount:
1050				Filesystem is not registered but kernel clients can
1051			        access APIs and a crashkernel can be used to read
1052				its content. There is nothing to mount.
1053			off: 	Filesystem is not registered and clients
1054			        get a -EPERM as result when trying to register files
1055				or directories within debugfs.
1056				This is equivalent of the runtime functionality if
1057				debugfs was not enabled in the kernel at all.
1058			Default value is set in build-time with a kernel configuration.
1059
1060	debugpat	[X86] Enable PAT debugging
1061
1062	default_hugepagesz=
1063			[HW] The size of the default HugeTLB page. This is
1064			the size represented by the legacy /proc/ hugepages
1065			APIs.  In addition, this is the default hugetlb size
1066			used for shmget(), mmap() and mounting hugetlbfs
1067			filesystems.  If not specified, defaults to the
1068			architecture's default huge page size.  Huge page
1069			sizes are architecture dependent.  See also
1070			Documentation/admin-guide/mm/hugetlbpage.rst.
1071			Format: size[KMG]
1072
1073	deferred_probe_timeout=
1074			[KNL] Debugging option to set a timeout in seconds for
1075			deferred probe to give up waiting on dependencies to
1076			probe. Only specific dependencies (subsystems or
1077			drivers) that have opted in will be ignored. A timeout
1078			of 0 will timeout at the end of initcalls. If the time
1079			out hasn't expired, it'll be restarted by each
1080			successful driver registration. This option will also
1081			dump out devices still on the deferred probe list after
1082			retrying.
1083
1084	delayacct	[KNL] Enable per-task delay accounting
1085
1086	dell_smm_hwmon.ignore_dmi=
1087			[HW] Continue probing hardware even if DMI data
1088			indicates that the driver is running on unsupported
1089			hardware.
1090
1091	dell_smm_hwmon.force=
1092			[HW] Activate driver even if SMM BIOS signature does
1093			not match list of supported models and enable otherwise
1094			blacklisted features.
1095
1096	dell_smm_hwmon.power_status=
1097			[HW] Report power status in /proc/i8k
1098			(disabled by default).
1099
1100	dell_smm_hwmon.restricted=
1101			[HW] Allow controlling fans only if SYS_ADMIN
1102			capability is set.
1103
1104	dell_smm_hwmon.fan_mult=
1105			[HW] Factor to multiply fan speed with.
1106
1107	dell_smm_hwmon.fan_max=
1108			[HW] Maximum configurable fan speed.
1109
1110	dfltcc=		[HW,S390]
1111			Format: { on | off | def_only | inf_only | always }
1112			on:       s390 zlib hardware support for compression on
1113			          level 1 and decompression (default)
1114			off:      No s390 zlib hardware support
1115			def_only: s390 zlib hardware support for deflate
1116			          only (compression on level 1)
1117			inf_only: s390 zlib hardware support for inflate
1118			          only (decompression)
1119			always:   Same as 'on' but ignores the selected compression
1120			          level always using hardware support (used for debugging)
1121
1122	dhash_entries=	[KNL]
1123			Set number of hash buckets for dentry cache.
1124
1125	disable_1tb_segments [PPC,EARLY]
1126			Disables the use of 1TB hash page table segments. This
1127			causes the kernel to fall back to 256MB segments which
1128			can be useful when debugging issues that require an SLB
1129			miss to occur.
1130
1131	disable=	[IPV6]
1132			See Documentation/networking/ipv6.rst.
1133
1134	disable_radix	[PPC,EARLY]
1135			Disable RADIX MMU mode on POWER9
1136
1137	disable_tlbie	[PPC]
1138			Disable TLBIE instruction. Currently does not work
1139			with KVM, with HASH MMU, or with coherent accelerators.
1140
1141	disable_ddw	[PPC/PSERIES,EARLY]
1142			Disable Dynamic DMA Window support. Use this
1143			to workaround buggy firmware.
1144
1145	disable_ipv6=	[IPV6]
1146			See Documentation/networking/ipv6.rst.
1147
1148	disable_mtrr_cleanup [X86,EARLY]
1149			The kernel tries to adjust MTRR layout from continuous
1150			to discrete, to make X server driver able to add WB
1151			entry later. This parameter disables that.
1152
1153	disable_mtrr_trim [X86, Intel and AMD only,EARLY]
1154			By default the kernel will trim any uncacheable
1155			memory out of your available memory pool based on
1156			MTRR settings.  This parameter disables that behavior,
1157			possibly causing your machine to run very slowly.
1158
1159	disable_timer_pin_1 [X86,EARLY]
1160			Disable PIN 1 of APIC timer
1161			Can be useful to work around chipset bugs.
1162
1163	dis_ucode_ldr	[X86] Disable the microcode loader.
1164
1165	dma_debug=off	If the kernel is compiled with DMA_API_DEBUG support,
1166			this option disables the debugging code at boot.
1167
1168	dma_debug_entries=<number>
1169			This option allows to tune the number of preallocated
1170			entries for DMA-API debugging code. One entry is
1171			required per DMA-API allocation. Use this if the
1172			DMA-API debugging code disables itself because the
1173			architectural default is too low.
1174
1175	dma_debug_driver=<driver_name>
1176			With this option the DMA-API debugging driver
1177			filter feature can be enabled at boot time. Just
1178			pass the driver to filter for as the parameter.
1179			The filter can be disabled or changed to another
1180			driver later using sysfs.
1181
1182	reg_file_data_sampling=
1183			[X86] Controls mitigation for Register File Data
1184			Sampling (RFDS) vulnerability. RFDS is a CPU
1185			vulnerability which may allow userspace to infer
1186			kernel data values previously stored in floating point
1187			registers, vector registers, or integer registers.
1188			RFDS only affects Intel Atom processors.
1189
1190			on:	Turns ON the mitigation.
1191			off:	Turns OFF the mitigation.
1192
1193			This parameter overrides the compile time default set
1194			by CONFIG_MITIGATION_RFDS. Mitigation cannot be
1195			disabled when other VERW based mitigations (like MDS)
1196			are enabled. In order to disable RFDS mitigation all
1197			VERW based mitigations need to be disabled.
1198
1199			For details see:
1200			Documentation/admin-guide/hw-vuln/reg-file-data-sampling.rst
1201
1202	driver_async_probe=  [KNL]
1203			List of driver names to be probed asynchronously. *
1204			matches with all driver names. If * is specified, the
1205			rest of the listed driver names are those that will NOT
1206			match the *.
1207			Format: <driver_name1>,<driver_name2>...
1208
1209	drm.edid_firmware=[<connector>:]<file>[,[<connector>:]<file>]
1210			Broken monitors, graphic adapters, KVMs and EDIDless
1211			panels may send no or incorrect EDID data sets.
1212			This parameter allows to specify an EDID data sets
1213			in the /lib/firmware directory that are used instead.
1214			An EDID data set will only be used for a particular
1215			connector, if its name and a colon are prepended to
1216			the EDID name. Each connector may use a unique EDID
1217			data set by separating the files with a comma. An EDID
1218			data set with no connector name will be used for
1219			any connectors not explicitly specified.
1220
1221	dscc4.setup=	[NET]
1222
1223	dt_cpu_ftrs=	[PPC,EARLY]
1224			Format: {"off" | "known"}
1225			Control how the dt_cpu_ftrs device-tree binding is
1226			used for CPU feature discovery and setup (if it
1227			exists).
1228			off: Do not use it, fall back to legacy cpu table.
1229			known: Do not pass through unknown features to guests
1230			or userspace, only those that the kernel is aware of.
1231
1232	dump_apple_properties	[X86]
1233			Dump name and content of EFI device properties on
1234			x86 Macs.  Useful for driver authors to determine
1235			what data is available or for reverse-engineering.
1236
1237	dyndbg[="val"]		[KNL,DYNAMIC_DEBUG]
1238	<module>.dyndbg[="val"]
1239			Enable debug messages at boot time.  See
1240			Documentation/admin-guide/dynamic-debug-howto.rst
1241			for details.
1242
1243	early_ioremap_debug [KNL,EARLY]
1244			Enable debug messages in early_ioremap support. This
1245			is useful for tracking down temporary early mappings
1246			which are not unmapped.
1247
1248	earlycon=	[KNL,EARLY] Output early console device and options.
1249
1250			When used with no options, the early console is
1251			determined by stdout-path property in device tree's
1252			chosen node or the ACPI SPCR table if supported by
1253			the platform.
1254
1255		cdns,<addr>[,options]
1256			Start an early, polled-mode console on a Cadence
1257			(xuartps) serial port at the specified address. Only
1258			supported option is baud rate. If baud rate is not
1259			specified, the serial port must already be setup and
1260			configured.
1261
1262		uart[8250],io,<addr>[,options[,uartclk]]
1263		uart[8250],mmio,<addr>[,options[,uartclk]]
1264		uart[8250],mmio32,<addr>[,options[,uartclk]]
1265		uart[8250],mmio32be,<addr>[,options[,uartclk]]
1266		uart[8250],0x<addr>[,options]
1267			Start an early, polled-mode console on the 8250/16550
1268			UART at the specified I/O port or MMIO address.
1269			MMIO inter-register address stride is either 8-bit
1270			(mmio) or 32-bit (mmio32 or mmio32be).
1271			If none of [io|mmio|mmio32|mmio32be], <addr> is assumed
1272			to be equivalent to 'mmio'. 'options' are specified
1273			in the same format described for "console=ttyS<n>"; if
1274			unspecified, the h/w is not initialized. 'uartclk' is
1275			the uart clock frequency; if unspecified, it is set
1276			to 'BASE_BAUD' * 16.
1277
1278		pl011,<addr>
1279		pl011,mmio32,<addr>
1280			Start an early, polled-mode console on a pl011 serial
1281			port at the specified address. The pl011 serial port
1282			must already be setup and configured. Options are not
1283			yet supported.  If 'mmio32' is specified, then only
1284			the driver will use only 32-bit accessors to read/write
1285			the device registers.
1286
1287		liteuart,<addr>
1288			Start an early console on a litex serial port at the
1289			specified address. The serial port must already be
1290			setup and configured. Options are not yet supported.
1291
1292		meson,<addr>
1293			Start an early, polled-mode console on a meson serial
1294			port at the specified address. The serial port must
1295			already be setup and configured. Options are not yet
1296			supported.
1297
1298		msm_serial,<addr>
1299			Start an early, polled-mode console on an msm serial
1300			port at the specified address. The serial port
1301			must already be setup and configured. Options are not
1302			yet supported.
1303
1304		msm_serial_dm,<addr>
1305			Start an early, polled-mode console on an msm serial
1306			dm port at the specified address. The serial port
1307			must already be setup and configured. Options are not
1308			yet supported.
1309
1310		owl,<addr>
1311			Start an early, polled-mode console on a serial port
1312			of an Actions Semi SoC, such as S500 or S900, at the
1313			specified address. The serial port must already be
1314			setup and configured. Options are not yet supported.
1315
1316		rda,<addr>
1317			Start an early, polled-mode console on a serial port
1318			of an RDA Micro SoC, such as RDA8810PL, at the
1319			specified address. The serial port must already be
1320			setup and configured. Options are not yet supported.
1321
1322		sbi
1323			Use RISC-V SBI (Supervisor Binary Interface) for early
1324			console.
1325
1326		smh	Use ARM semihosting calls for early console.
1327
1328		s3c2410,<addr>
1329		s3c2412,<addr>
1330		s3c2440,<addr>
1331		s3c6400,<addr>
1332		s5pv210,<addr>
1333		exynos4210,<addr>
1334			Use early console provided by serial driver available
1335			on Samsung SoCs, requires selecting proper type and
1336			a correct base address of the selected UART port. The
1337			serial port must already be setup and configured.
1338			Options are not yet supported.
1339
1340		lantiq,<addr>
1341			Start an early, polled-mode console on a lantiq serial
1342			(lqasc) port at the specified address. The serial port
1343			must already be setup and configured. Options are not
1344			yet supported.
1345
1346		lpuart,<addr>
1347		lpuart32,<addr>
1348			Use early console provided by Freescale LP UART driver
1349			found on Freescale Vybrid and QorIQ LS1021A processors.
1350			A valid base address must be provided, and the serial
1351			port must already be setup and configured.
1352
1353		ec_imx21,<addr>
1354		ec_imx6q,<addr>
1355			Start an early, polled-mode, output-only console on the
1356			Freescale i.MX UART at the specified address. The UART
1357			must already be setup and configured.
1358
1359		ar3700_uart,<addr>
1360			Start an early, polled-mode console on the
1361			Armada 3700 serial port at the specified
1362			address. The serial port must already be setup
1363			and configured. Options are not yet supported.
1364
1365		qcom_geni,<addr>
1366			Start an early, polled-mode console on a Qualcomm
1367			Generic Interface (GENI) based serial port at the
1368			specified address. The serial port must already be
1369			setup and configured. Options are not yet supported.
1370
1371		efifb,[options]
1372			Start an early, unaccelerated console on the EFI
1373			memory mapped framebuffer (if available). On cache
1374			coherent non-x86 systems that use system memory for
1375			the framebuffer, pass the 'ram' option so that it is
1376			mapped with the correct attributes.
1377
1378		linflex,<addr>
1379			Use early console provided by Freescale LINFlexD UART
1380			serial driver for NXP S32V234 SoCs. A valid base
1381			address must be provided, and the serial port must
1382			already be setup and configured.
1383
1384	earlyprintk=	[X86,SH,ARM,M68k,S390,UM,EARLY]
1385			earlyprintk=vga
1386			earlyprintk=sclp
1387			earlyprintk=xen
1388			earlyprintk=serial[,ttySn[,baudrate]]
1389			earlyprintk=serial[,0x...[,baudrate]]
1390			earlyprintk=ttySn[,baudrate]
1391			earlyprintk=dbgp[debugController#]
1392			earlyprintk=pciserial[,force],bus:device.function[,baudrate]
1393			earlyprintk=xdbc[xhciController#]
1394			earlyprintk=bios
1395
1396			earlyprintk is useful when the kernel crashes before
1397			the normal console is initialized. It is not enabled by
1398			default because it has some cosmetic problems.
1399
1400			Append ",keep" to not disable it when the real console
1401			takes over.
1402
1403			Only one of vga, serial, or usb debug port can
1404			be used at a time.
1405
1406			Currently only ttyS0 and ttyS1 may be specified by
1407			name.  Other I/O ports may be explicitly specified
1408			on some architectures (x86 and arm at least) by
1409			replacing ttySn with an I/O port address, like this:
1410				earlyprintk=serial,0x1008,115200
1411			You can find the port for a given device in
1412			/proc/tty/driver/serial:
1413				2: uart:ST16650V2 port:00001008 irq:18 ...
1414
1415			Interaction with the standard serial driver is not
1416			very good.
1417
1418			The VGA output is eventually overwritten by
1419			the real console.
1420
1421			The xen option can only be used in Xen domains.
1422
1423			The sclp output can only be used on s390.
1424
1425			The bios output can only be used on SuperH.
1426
1427			The optional "force" to "pciserial" enables use of a
1428			PCI device even when its classcode is not of the
1429			UART class.
1430
1431	edac_report=	[HW,EDAC] Control how to report EDAC event
1432			Format: {"on" | "off" | "force"}
1433			on: enable EDAC to report H/W event. May be overridden
1434			by other higher priority error reporting module.
1435			off: disable H/W event reporting through EDAC.
1436			force: enforce the use of EDAC to report H/W event.
1437			default: on.
1438
1439	edd=		[EDD]
1440			Format: {"off" | "on" | "skip[mbr]"}
1441
1442	efi=		[EFI,EARLY]
1443			Format: { "debug", "disable_early_pci_dma",
1444				  "nochunk", "noruntime", "nosoftreserve",
1445				  "novamap", "no_disable_early_pci_dma" }
1446			debug: enable misc debug output.
1447			disable_early_pci_dma: disable the busmaster bit on all
1448			PCI bridges while in the EFI boot stub.
1449			nochunk: disable reading files in "chunks" in the EFI
1450			boot stub, as chunking can cause problems with some
1451			firmware implementations.
1452			noruntime : disable EFI runtime services support
1453			nosoftreserve: The EFI_MEMORY_SP (Specific Purpose)
1454			attribute may cause the kernel to reserve the
1455			memory range for a memory mapping driver to
1456			claim. Specify efi=nosoftreserve to disable this
1457			reservation and treat the memory by its base type
1458			(i.e. EFI_CONVENTIONAL_MEMORY / "System RAM").
1459			novamap: do not call SetVirtualAddressMap().
1460			no_disable_early_pci_dma: Leave the busmaster bit set
1461			on all PCI bridges while in the EFI boot stub
1462
1463	efi_no_storage_paranoia [EFI,X86,EARLY]
1464			Using this parameter you can use more than 50% of
1465			your efi variable storage. Use this parameter only if
1466			you are really sure that your UEFI does sane gc and
1467			fulfills the spec otherwise your board may brick.
1468
1469	efivar_ssdt=	[EFI; X86] Name of an EFI variable that contains an SSDT
1470			that is to be dynamically loaded by Linux. If there are
1471			multiple variables with the same name but with different
1472			vendor GUIDs, all of them will be loaded. See
1473			Documentation/admin-guide/acpi/ssdt-overlays.rst for details.
1474
1475
1476	eisa_irq_edge=	[PARISC,HW]
1477			See header of drivers/parisc/eisa.c.
1478
1479	ekgdboc=	[X86,KGDB,EARLY] Allow early kernel console debugging
1480			Format: ekgdboc=kbd
1481
1482			This is designed to be used in conjunction with
1483			the boot argument: earlyprintk=vga
1484
1485			This parameter works in place of the kgdboc parameter
1486			but can only be used if the backing tty is available
1487			very early in the boot process. For early debugging
1488			via a serial port see kgdboc_earlycon instead.
1489
1490	elanfreq=	[X86-32]
1491			See comment before function elanfreq_setup() in
1492			arch/x86/kernel/cpu/cpufreq/elanfreq.c.
1493
1494	elfcorehdr=[size[KMG]@]offset[KMG] [PPC,SH,X86,S390,EARLY]
1495			Specifies physical address of start of kernel core
1496			image elf header and optionally the size. Generally
1497			kexec loader will pass this option to capture kernel.
1498			See Documentation/admin-guide/kdump/kdump.rst for details.
1499
1500	enable_mtrr_cleanup [X86,EARLY]
1501			The kernel tries to adjust MTRR layout from continuous
1502			to discrete, to make X server driver able to add WB
1503			entry later. This parameter enables that.
1504
1505	enable_timer_pin_1 [X86]
1506			Enable PIN 1 of APIC timer
1507			Can be useful to work around chipset bugs
1508			(in particular on some ATI chipsets).
1509			The kernel tries to set a reasonable default.
1510
1511	enforcing=	[SELINUX] Set initial enforcing status.
1512			Format: {"0" | "1"}
1513			See security/selinux/Kconfig help text.
1514			0 -- permissive (log only, no denials).
1515			1 -- enforcing (deny and log).
1516			Default value is 0.
1517			Value can be changed at runtime via
1518			/sys/fs/selinux/enforce.
1519
1520	erst_disable	[ACPI]
1521			Disable Error Record Serialization Table (ERST)
1522			support.
1523
1524	ether=		[HW,NET] Ethernet cards parameters
1525			This option is obsoleted by the "netdev=" option, which
1526			has equivalent usage. See its documentation for details.
1527
1528	evm=		[EVM]
1529			Format: { "fix" }
1530			Permit 'security.evm' to be updated regardless of
1531			current integrity status.
1532
1533	early_page_ext [KNL,EARLY] Enforces page_ext initialization to earlier
1534			stages so cover more early boot allocations.
1535			Please note that as side effect some optimizations
1536			might be disabled to achieve that (e.g. parallelized
1537			memory initialization is disabled) so the boot process
1538			might take longer, especially on systems with a lot of
1539			memory. Available with CONFIG_PAGE_EXTENSION=y.
1540
1541	failslab=
1542	fail_usercopy=
1543	fail_page_alloc=
1544	fail_make_request=[KNL]
1545			General fault injection mechanism.
1546			Format: <interval>,<probability>,<space>,<times>
1547			See also Documentation/fault-injection/.
1548
1549	fb_tunnels=	[NET]
1550			Format: { initns | none }
1551			See Documentation/admin-guide/sysctl/net.rst for
1552			fb_tunnels_only_for_init_ns
1553
1554	floppy=		[HW]
1555			See Documentation/admin-guide/blockdev/floppy.rst.
1556
1557	forcepae	[X86-32]
1558			Forcefully enable Physical Address Extension (PAE).
1559			Many Pentium M systems disable PAE but may have a
1560			functionally usable PAE implementation.
1561			Warning: use of this parameter will taint the kernel
1562			and may cause unknown problems.
1563
1564	fred=		[X86-64]
1565			Enable/disable Flexible Return and Event Delivery.
1566			Format: { on | off }
1567			on: enable FRED when it's present.
1568			off: disable FRED, the default setting.
1569
1570	ftrace=[tracer]
1571			[FTRACE] will set and start the specified tracer
1572			as early as possible in order to facilitate early
1573			boot debugging.
1574
1575	ftrace_boot_snapshot
1576			[FTRACE] On boot up, a snapshot will be taken of the
1577			ftrace ring buffer that can be read at:
1578			/sys/kernel/tracing/snapshot.
1579			This is useful if you need tracing information from kernel
1580			boot up that is likely to be overridden by user space
1581			start up functionality.
1582
1583			Optionally, the snapshot can also be defined for a tracing
1584			instance that was created by the trace_instance= command
1585			line parameter.
1586
1587			trace_instance=foo,sched_switch ftrace_boot_snapshot=foo
1588
1589			The above will cause the "foo" tracing instance to trigger
1590			a snapshot at the end of boot up.
1591
1592	ftrace_dump_on_oops[=2(orig_cpu) | =<instance>][,<instance> |
1593			  ,<instance>=2(orig_cpu)]
1594			[FTRACE] will dump the trace buffers on oops.
1595			If no parameter is passed, ftrace will dump global
1596			buffers of all CPUs, if you pass 2 or orig_cpu, it
1597			will dump only the buffer of the CPU that triggered
1598			the oops, or the specific instance will be dumped if
1599			its name is passed. Multiple instance dump is also
1600			supported, and instances are separated by commas. Each
1601			instance supports only dump on CPU that triggered the
1602			oops by passing 2 or orig_cpu to it.
1603
1604			ftrace_dump_on_oops=foo=orig_cpu
1605
1606			The above will dump only the buffer of "foo" instance
1607			on CPU that triggered the oops.
1608
1609			ftrace_dump_on_oops,foo,bar=orig_cpu
1610
1611			The above will dump global buffer on all CPUs, the
1612			buffer of "foo" instance on all CPUs and the buffer
1613			of "bar" instance on CPU that triggered the oops.
1614
1615	ftrace_filter=[function-list]
1616			[FTRACE] Limit the functions traced by the function
1617			tracer at boot up. function-list is a comma-separated
1618			list of functions. This list can be changed at run
1619			time by the set_ftrace_filter file in the debugfs
1620			tracing directory.
1621
1622	ftrace_notrace=[function-list]
1623			[FTRACE] Do not trace the functions specified in
1624			function-list. This list can be changed at run time
1625			by the set_ftrace_notrace file in the debugfs
1626			tracing directory.
1627
1628	ftrace_graph_filter=[function-list]
1629			[FTRACE] Limit the top level callers functions traced
1630			by the function graph tracer at boot up.
1631			function-list is a comma-separated list of functions
1632			that can be changed at run time by the
1633			set_graph_function file in the debugfs tracing directory.
1634
1635	ftrace_graph_notrace=[function-list]
1636			[FTRACE] Do not trace from the functions specified in
1637			function-list.  This list is a comma-separated list of
1638			functions that can be changed at run time by the
1639			set_graph_notrace file in the debugfs tracing directory.
1640
1641	ftrace_graph_max_depth=<uint>
1642			[FTRACE] Used with the function graph tracer. This is
1643			the max depth it will trace into a function. This value
1644			can be changed at run time by the max_graph_depth file
1645			in the tracefs tracing directory. default: 0 (no limit)
1646
1647	fw_devlink=	[KNL,EARLY] Create device links between consumer and supplier
1648			devices by scanning the firmware to infer the
1649			consumer/supplier relationships. This feature is
1650			especially useful when drivers are loaded as modules as
1651			it ensures proper ordering of tasks like device probing
1652			(suppliers first, then consumers), supplier boot state
1653			clean up (only after all consumers have probed),
1654			suspend/resume & runtime PM (consumers first, then
1655			suppliers).
1656			Format: { off | permissive | on | rpm }
1657			off --	Don't create device links from firmware info.
1658			permissive -- Create device links from firmware info
1659				but use it only for ordering boot state clean
1660				up (sync_state() calls).
1661			on -- 	Create device links from firmware info and use it
1662				to enforce probe and suspend/resume ordering.
1663			rpm --	Like "on", but also use to order runtime PM.
1664
1665	fw_devlink.strict=<bool>
1666			[KNL,EARLY] Treat all inferred dependencies as mandatory
1667			dependencies. This only applies for fw_devlink=on|rpm.
1668			Format: <bool>
1669
1670	fw_devlink.sync_state =
1671			[KNL,EARLY] When all devices that could probe have finished
1672			probing, this parameter controls what to do with
1673			devices that haven't yet received their sync_state()
1674			calls.
1675			Format: { strict | timeout }
1676			strict -- Default. Continue waiting on consumers to
1677				probe successfully.
1678			timeout -- Give up waiting on consumers and call
1679				sync_state() on any devices that haven't yet
1680				received their sync_state() calls after
1681				deferred_probe_timeout has expired or by
1682				late_initcall() if !CONFIG_MODULES.
1683
1684	gamecon.map[2|3]=
1685			[HW,JOY] Multisystem joystick and NES/SNES/PSX pad
1686			support via parallel port (up to 5 devices per port)
1687			Format: <port#>,<pad1>,<pad2>,<pad3>,<pad4>,<pad5>
1688			See also Documentation/input/devices/joystick-parport.rst
1689
1690	gamma=		[HW,DRM]
1691
1692	gart_fix_e820=	[X86-64,EARLY] disable the fix e820 for K8 GART
1693			Format: off | on
1694			default: on
1695
1696	gather_data_sampling=
1697			[X86,INTEL,EARLY] Control the Gather Data Sampling (GDS)
1698			mitigation.
1699
1700			Gather Data Sampling is a hardware vulnerability which
1701			allows unprivileged speculative access to data which was
1702			previously stored in vector registers.
1703
1704			This issue is mitigated by default in updated microcode.
1705			The mitigation may have a performance impact but can be
1706			disabled. On systems without the microcode mitigation
1707			disabling AVX serves as a mitigation.
1708
1709			force:	Disable AVX to mitigate systems without
1710				microcode mitigation. No effect if the microcode
1711				mitigation is present. Known to cause crashes in
1712				userspace with buggy AVX enumeration.
1713
1714			off:	Disable GDS mitigation.
1715
1716	gcov_persist=	[GCOV] When non-zero (default), profiling data for
1717			kernel modules is saved and remains accessible via
1718			debugfs, even when the module is unloaded/reloaded.
1719			When zero, profiling data is discarded and associated
1720			debugfs files are removed at module unload time.
1721
1722	goldfish	[X86] Enable the goldfish android emulator platform.
1723			Don't use this when you are not running on the
1724			android emulator
1725
1726	gpio-mockup.gpio_mockup_ranges
1727			[HW] Sets the ranges of gpiochip of for this device.
1728			Format: <start1>,<end1>,<start2>,<end2>...
1729	gpio-mockup.gpio_mockup_named_lines
1730			[HW] Let the driver know GPIO lines should be named.
1731
1732	gpt		[EFI] Forces disk with valid GPT signature but
1733			invalid Protective MBR to be treated as GPT. If the
1734			primary GPT is corrupted, it enables the backup/alternate
1735			GPT to be used instead.
1736
1737	grcan.enable0=	[HW] Configuration of physical interface 0. Determines
1738			the "Enable 0" bit of the configuration register.
1739			Format: 0 | 1
1740			Default: 0
1741	grcan.enable1=	[HW] Configuration of physical interface 1. Determines
1742			the "Enable 0" bit of the configuration register.
1743			Format: 0 | 1
1744			Default: 0
1745	grcan.select=	[HW] Select which physical interface to use.
1746			Format: 0 | 1
1747			Default: 0
1748	grcan.txsize=	[HW] Sets the size of the tx buffer.
1749			Format: <unsigned int> such that (txsize & ~0x1fffc0) == 0.
1750			Default: 1024
1751	grcan.rxsize=	[HW] Sets the size of the rx buffer.
1752			Format: <unsigned int> such that (rxsize & ~0x1fffc0) == 0.
1753			Default: 1024
1754
1755	hardened_usercopy=
1756			[KNL] Under CONFIG_HARDENED_USERCOPY, whether
1757			hardening is enabled for this boot. Hardened
1758			usercopy checking is used to protect the kernel
1759			from reading or writing beyond known memory
1760			allocation boundaries as a proactive defense
1761			against bounds-checking flaws in the kernel's
1762			copy_to_user()/copy_from_user() interface.
1763		on	Perform hardened usercopy checks (default).
1764		off	Disable hardened usercopy checks.
1765
1766	hardlockup_all_cpu_backtrace=
1767			[KNL] Should the hard-lockup detector generate
1768			backtraces on all cpus.
1769			Format: 0 | 1
1770
1771	hashdist=	[KNL,NUMA] Large hashes allocated during boot
1772			are distributed across NUMA nodes.  Defaults on
1773			for 64-bit NUMA, off otherwise.
1774			Format: 0 | 1 (for off | on)
1775
1776	hd=		[EIDE] (E)IDE hard drive subsystem geometry
1777			Format: <cyl>,<head>,<sect>
1778
1779	hest_disable	[ACPI]
1780			Disable Hardware Error Source Table (HEST) support;
1781			corresponding firmware-first mode error processing
1782			logic will be disabled.
1783
1784	hibernate=	[HIBERNATION]
1785		noresume	Don't check if there's a hibernation image
1786				present during boot.
1787		nocompress	Don't compress/decompress hibernation images.
1788		no		Disable hibernation and resume.
1789		protect_image	Turn on image protection during restoration
1790				(that will set all pages holding image data
1791				during restoration read-only).
1792
1793	hibernate.compressor= 	[HIBERNATION] Compression algorithm to be
1794				used with hibernation.
1795				Format: { lzo | lz4 }
1796				Default: lzo
1797
1798				lzo: Select LZO compression algorithm to
1799				compress/decompress hibernation image.
1800
1801				lz4: Select LZ4 compression algorithm to
1802				compress/decompress hibernation image.
1803
1804	highmem=nn[KMG]	[KNL,BOOT,EARLY] forces the highmem zone to have an exact
1805			size of <nn>. This works even on boxes that have no
1806			highmem otherwise. This also works to reduce highmem
1807			size on bigger boxes.
1808
1809	highres=	[KNL] Enable/disable high resolution timer mode.
1810			Valid parameters: "on", "off"
1811			Default: "on"
1812
1813	hlt		[BUGS=ARM,SH]
1814
1815	hostname=	[KNL,EARLY] Set the hostname (aka UTS nodename).
1816			Format: <string>
1817			This allows setting the system's hostname during early
1818			startup. This sets the name returned by gethostname.
1819			Using this parameter to set the hostname makes it
1820			possible to ensure the hostname is correctly set before
1821			any userspace processes run, avoiding the possibility
1822			that a process may call gethostname before the hostname
1823			has been explicitly set, resulting in the calling
1824			process getting an incorrect result. The string must
1825			not exceed the maximum allowed hostname length (usually
1826			64 characters) and will be truncated otherwise.
1827
1828	hpet=		[X86-32,HPET] option to control HPET usage
1829			Format: { enable (default) | disable | force |
1830				verbose }
1831			disable: disable HPET and use PIT instead
1832			force: allow force enabled of undocumented chips (ICH4,
1833				VIA, nVidia)
1834			verbose: show contents of HPET registers during setup
1835
1836	hpet_mmap=	[X86, HPET_MMAP] Allow userspace to mmap HPET
1837			registers.  Default set by CONFIG_HPET_MMAP_DEFAULT.
1838
1839	hugepages=	[HW] Number of HugeTLB pages to allocate at boot.
1840			If this follows hugepagesz (below), it specifies
1841			the number of pages of hugepagesz to be allocated.
1842			If this is the first HugeTLB parameter on the command
1843			line, it specifies the number of pages to allocate for
1844			the default huge page size. If using node format, the
1845			number of pages to allocate per-node can be specified.
1846			See also Documentation/admin-guide/mm/hugetlbpage.rst.
1847			Format: <integer> or (node format)
1848				<node>:<integer>[,<node>:<integer>]
1849
1850	hugepagesz=
1851			[HW] The size of the HugeTLB pages.  This is used in
1852			conjunction with hugepages (above) to allocate huge
1853			pages of a specific size at boot.  The pair
1854			hugepagesz=X hugepages=Y can be specified once for
1855			each supported huge page size. Huge page sizes are
1856			architecture dependent.  See also
1857			Documentation/admin-guide/mm/hugetlbpage.rst.
1858			Format: size[KMG]
1859
1860	hugetlb_cma=	[HW,CMA,EARLY] The size of a CMA area used for allocation
1861			of gigantic hugepages. Or using node format, the size
1862			of a CMA area per node can be specified.
1863			Format: nn[KMGTPE] or (node format)
1864				<node>:nn[KMGTPE][,<node>:nn[KMGTPE]]
1865
1866			Reserve a CMA area of given size and allocate gigantic
1867			hugepages using the CMA allocator. If enabled, the
1868			boot-time allocation of gigantic hugepages is skipped.
1869
1870	hugetlb_free_vmemmap=
1871			[KNL] Requires CONFIG_HUGETLB_PAGE_OPTIMIZE_VMEMMAP
1872			enabled.
1873			Control if HugeTLB Vmemmap Optimization (HVO) is enabled.
1874			Allows heavy hugetlb users to free up some more
1875			memory (7 * PAGE_SIZE for each 2MB hugetlb page).
1876			Format: { on | off (default) }
1877
1878			on: enable HVO
1879			off: disable HVO
1880
1881			Built with CONFIG_HUGETLB_PAGE_OPTIMIZE_VMEMMAP_DEFAULT_ON=y,
1882			the default is on.
1883
1884			Note that the vmemmap pages may be allocated from the added
1885			memory block itself when memory_hotplug.memmap_on_memory is
1886			enabled, those vmemmap pages cannot be optimized even if this
1887			feature is enabled.  Other vmemmap pages not allocated from
1888			the added memory block itself do not be affected.
1889
1890	hung_task_panic=
1891			[KNL] Should the hung task detector generate panics.
1892			Format: 0 | 1
1893
1894			A value of 1 instructs the kernel to panic when a
1895			hung task is detected. The default value is controlled
1896			by the CONFIG_BOOTPARAM_HUNG_TASK_PANIC build-time
1897			option. The value selected by this boot parameter can
1898			be changed later by the kernel.hung_task_panic sysctl.
1899
1900	hvc_iucv=	[S390]	Number of z/VM IUCV hypervisor console (HVC)
1901				terminal devices. Valid values: 0..8
1902	hvc_iucv_allow=	[S390]	Comma-separated list of z/VM user IDs.
1903				If specified, z/VM IUCV HVC accepts connections
1904				from listed z/VM user IDs only.
1905
1906	hv_nopvspin	[X86,HYPER_V,EARLY]
1907			Disables the paravirt spinlock optimizations
1908			which allow the hypervisor to 'idle' the guest
1909			on lock contention.
1910
1911	i2c_bus=	[HW]	Override the default board specific I2C bus speed
1912				or register an additional I2C bus that is not
1913				registered from board initialization code.
1914				Format:
1915				<bus_id>,<clkrate>
1916
1917	i2c_touchscreen_props= [HW,ACPI,X86]
1918			Set device-properties for ACPI-enumerated I2C-attached
1919			touchscreen, to e.g. fix coordinates of upside-down
1920			mounted touchscreens. If you need this option please
1921			submit a drivers/platform/x86/touchscreen_dmi.c patch
1922			adding a DMI quirk for this.
1923
1924			Format:
1925			<ACPI_HW_ID>:<prop_name>=<val>[:prop_name=val][:...]
1926			Where <val> is one of:
1927			Omit "=<val>" entirely	Set a boolean device-property
1928			Unsigned number		Set a u32 device-property
1929			Anything else		Set a string device-property
1930
1931			Examples (split over multiple lines):
1932			i2c_touchscreen_props=GDIX1001:touchscreen-inverted-x:
1933			touchscreen-inverted-y
1934
1935			i2c_touchscreen_props=MSSL1680:touchscreen-size-x=1920:
1936			touchscreen-size-y=1080:touchscreen-inverted-y:
1937			firmware-name=gsl1680-vendor-model.fw:silead,home-button
1938
1939	i8042.debug	[HW] Toggle i8042 debug mode
1940	i8042.unmask_kbd_data
1941			[HW] Enable printing of interrupt data from the KBD port
1942			     (disabled by default, and as a pre-condition
1943			     requires that i8042.debug=1 be enabled)
1944	i8042.direct	[HW] Put keyboard port into non-translated mode
1945	i8042.dumbkbd	[HW] Pretend that controller can only read data from
1946			     keyboard and cannot control its state
1947			     (Don't attempt to blink the leds)
1948	i8042.noaux	[HW] Don't check for auxiliary (== mouse) port
1949	i8042.nokbd	[HW] Don't check/create keyboard port
1950	i8042.noloop	[HW] Disable the AUX Loopback command while probing
1951			     for the AUX port
1952	i8042.nomux	[HW] Don't check presence of an active multiplexing
1953			     controller
1954	i8042.nopnp	[HW] Don't use ACPIPnP / PnPBIOS to discover KBD/AUX
1955			     controllers
1956	i8042.notimeout	[HW] Ignore timeout condition signalled by controller
1957	i8042.reset	[HW] Reset the controller during init, cleanup and
1958			     suspend-to-ram transitions, only during s2r
1959			     transitions, or never reset
1960			Format: { 1 | Y | y | 0 | N | n }
1961			1, Y, y: always reset controller
1962			0, N, n: don't ever reset controller
1963			Default: only on s2r transitions on x86; most other
1964			architectures force reset to be always executed
1965	i8042.unlock	[HW] Unlock (ignore) the keylock
1966	i8042.kbdreset	[HW] Reset device connected to KBD port
1967	i8042.probe_defer
1968			[HW] Allow deferred probing upon i8042 probe errors
1969
1970	i810=		[HW,DRM]
1971
1972	i915.invert_brightness=
1973			[DRM] Invert the sense of the variable that is used to
1974			set the brightness of the panel backlight. Normally a
1975			brightness value of 0 indicates backlight switched off,
1976			and the maximum of the brightness value sets the backlight
1977			to maximum brightness. If this parameter is set to 0
1978			(default) and the machine requires it, or this parameter
1979			is set to 1, a brightness value of 0 sets the backlight
1980			to maximum brightness, and the maximum of the brightness
1981			value switches the backlight off.
1982			-1 -- never invert brightness
1983			 0 -- machine default
1984			 1 -- force brightness inversion
1985
1986	ia32_emulation=	[X86-64]
1987			Format: <bool>
1988			When true, allows loading 32-bit programs and executing 32-bit
1989			syscalls, essentially overriding IA32_EMULATION_DEFAULT_DISABLED at
1990			boot time. When false, unconditionally disables IA32 emulation.
1991
1992	icn=		[HW,ISDN]
1993			Format: <io>[,<membase>[,<icn_id>[,<icn_id2>]]]
1994
1995
1996	idle=		[X86,EARLY]
1997			Format: idle=poll, idle=halt, idle=nomwait
1998			Poll forces a polling idle loop that can slightly
1999			improve the performance of waking up a idle CPU, but
2000			will use a lot of power and make the system run hot.
2001			Not recommended.
2002			idle=halt: Halt is forced to be used for CPU idle.
2003			In such case C2/C3 won't be used again.
2004			idle=nomwait: Disable mwait for CPU C-states
2005
2006	idxd.sva=	[HW]
2007			Format: <bool>
2008			Allow force disabling of Shared Virtual Memory (SVA)
2009			support for the idxd driver. By default it is set to
2010			true (1).
2011
2012	idxd.tc_override= [HW]
2013			Format: <bool>
2014			Allow override of default traffic class configuration
2015			for the device. By default it is set to false (0).
2016
2017	ieee754=	[MIPS] Select IEEE Std 754 conformance mode
2018			Format: { strict | legacy | 2008 | relaxed | emulated }
2019			Default: strict
2020
2021			Choose which programs will be accepted for execution
2022			based on the IEEE 754 NaN encoding(s) supported by
2023			the FPU and the NaN encoding requested with the value
2024			of an ELF file header flag individually set by each
2025			binary.  Hardware implementations are permitted to
2026			support either or both of the legacy and the 2008 NaN
2027			encoding mode.
2028
2029			Available settings are as follows:
2030			strict	accept binaries that request a NaN encoding
2031				supported by the FPU
2032			legacy	only accept legacy-NaN binaries, if supported
2033				by the FPU
2034			2008	only accept 2008-NaN binaries, if supported
2035				by the FPU
2036			relaxed	accept any binaries regardless of whether
2037				supported by the FPU
2038			emulated accept any binaries but enable FPU emulator
2039				if binary mode is unsupported by the FPU.
2040
2041			The FPU emulator is always able to support both NaN
2042			encodings, so if no FPU hardware is present or it has
2043			been disabled with 'nofpu', then the settings of
2044			'legacy' and '2008' strap the emulator accordingly,
2045			'relaxed' straps the emulator for both legacy-NaN and
2046			2008-NaN, whereas 'strict' enables legacy-NaN only on
2047			legacy processors and both NaN encodings on MIPS32 or
2048			MIPS64 CPUs.
2049
2050			The setting for ABS.fmt/NEG.fmt instruction execution
2051			mode generally follows that for the NaN encoding,
2052			except where unsupported by hardware.
2053
2054	ignore_loglevel	[KNL,EARLY]
2055			Ignore loglevel setting - this will print /all/
2056			kernel messages to the console. Useful for debugging.
2057			We also add it as printk module parameter, so users
2058			could change it dynamically, usually by
2059			/sys/module/printk/parameters/ignore_loglevel.
2060
2061	ignore_rlimit_data
2062			Ignore RLIMIT_DATA setting for data mappings,
2063			print warning at first misuse.  Can be changed via
2064			/sys/module/kernel/parameters/ignore_rlimit_data.
2065
2066	ihash_entries=	[KNL]
2067			Set number of hash buckets for inode cache.
2068
2069	ima_appraise=	[IMA] appraise integrity measurements
2070			Format: { "off" | "enforce" | "fix" | "log" }
2071			default: "enforce"
2072
2073	ima_appraise_tcb [IMA] Deprecated.  Use ima_policy= instead.
2074			The builtin appraise policy appraises all files
2075			owned by uid=0.
2076
2077	ima_canonical_fmt [IMA]
2078			Use the canonical format for the binary runtime
2079			measurements, instead of host native format.
2080
2081	ima_hash=	[IMA]
2082			Format: { md5 | sha1 | rmd160 | sha256 | sha384
2083				   | sha512 | ... }
2084			default: "sha1"
2085
2086			The list of supported hash algorithms is defined
2087			in crypto/hash_info.h.
2088
2089	ima_policy=	[IMA]
2090			The builtin policies to load during IMA setup.
2091			Format: "tcb | appraise_tcb | secure_boot |
2092				 fail_securely | critical_data"
2093
2094			The "tcb" policy measures all programs exec'd, files
2095			mmap'd for exec, and all files opened with the read
2096			mode bit set by either the effective uid (euid=0) or
2097			uid=0.
2098
2099			The "appraise_tcb" policy appraises the integrity of
2100			all files owned by root.
2101
2102			The "secure_boot" policy appraises the integrity
2103			of files (eg. kexec kernel image, kernel modules,
2104			firmware, policy, etc) based on file signatures.
2105
2106			The "fail_securely" policy forces file signature
2107			verification failure also on privileged mounted
2108			filesystems with the SB_I_UNVERIFIABLE_SIGNATURE
2109			flag.
2110
2111			The "critical_data" policy measures kernel integrity
2112			critical data.
2113
2114	ima_tcb		[IMA] Deprecated.  Use ima_policy= instead.
2115			Load a policy which meets the needs of the Trusted
2116			Computing Base.  This means IMA will measure all
2117			programs exec'd, files mmap'd for exec, and all files
2118			opened for read by uid=0.
2119
2120	ima_template=	[IMA]
2121			Select one of defined IMA measurements template formats.
2122			Formats: { "ima" | "ima-ng" | "ima-ngv2" | "ima-sig" |
2123				   "ima-sigv2" }
2124			Default: "ima-ng"
2125
2126	ima_template_fmt=
2127			[IMA] Define a custom template format.
2128			Format: { "field1|...|fieldN" }
2129
2130	ima.ahash_minsize= [IMA] Minimum file size for asynchronous hash usage
2131			Format: <min_file_size>
2132			Set the minimal file size for using asynchronous hash.
2133			If left unspecified, ahash usage is disabled.
2134
2135			ahash performance varies for different data sizes on
2136			different crypto accelerators. This option can be used
2137			to achieve the best performance for a particular HW.
2138
2139	ima.ahash_bufsize= [IMA] Asynchronous hash buffer size
2140			Format: <bufsize>
2141			Set hashing buffer size. Default: 4k.
2142
2143			ahash performance varies for different chunk sizes on
2144			different crypto accelerators. This option can be used
2145			to achieve best performance for particular HW.
2146
2147	init=		[KNL]
2148			Format: <full_path>
2149			Run specified binary instead of /sbin/init as init
2150			process.
2151
2152	initcall_debug	[KNL] Trace initcalls as they are executed.  Useful
2153			for working out where the kernel is dying during
2154			startup.
2155
2156	initcall_blacklist=  [KNL] Do not execute a comma-separated list of
2157			initcall functions.  Useful for debugging built-in
2158			modules and initcalls.
2159
2160	initramfs_async= [KNL]
2161			Format: <bool>
2162			Default: 1
2163			This parameter controls whether the initramfs
2164			image is unpacked asynchronously, concurrently
2165			with devices being probed and
2166			initialized. This should normally just work,
2167			but as a debugging aid, one can get the
2168			historical behaviour of the initramfs
2169			unpacking being completed before device_ and
2170			late_ initcalls.
2171
2172	initrd=		[BOOT,EARLY] Specify the location of the initial ramdisk
2173
2174	initrdmem=	[KNL,EARLY] Specify a physical address and size from which to
2175			load the initrd. If an initrd is compiled in or
2176			specified in the bootparams, it takes priority over this
2177			setting.
2178			Format: ss[KMG],nn[KMG]
2179			Default is 0, 0
2180
2181	init_on_alloc=	[MM,EARLY] Fill newly allocated pages and heap objects with
2182			zeroes.
2183			Format: 0 | 1
2184			Default set by CONFIG_INIT_ON_ALLOC_DEFAULT_ON.
2185
2186	init_on_free=	[MM,EARLY] Fill freed pages and heap objects with zeroes.
2187			Format: 0 | 1
2188			Default set by CONFIG_INIT_ON_FREE_DEFAULT_ON.
2189
2190	init_pkru=	[X86] Specify the default memory protection keys rights
2191			register contents for all processes.  0x55555554 by
2192			default (disallow access to all but pkey 0).  Can
2193			override in debugfs after boot.
2194
2195	inport.irq=	[HW] Inport (ATI XL and Microsoft) busmouse driver
2196			Format: <irq>
2197
2198	int_pln_enable	[X86] Enable power limit notification interrupt
2199
2200	integrity_audit=[IMA]
2201			Format: { "0" | "1" }
2202			0 -- basic integrity auditing messages. (Default)
2203			1 -- additional integrity auditing messages.
2204
2205	intel_iommu=	[DMAR] Intel IOMMU driver (DMAR) option
2206		on
2207			Enable intel iommu driver.
2208		off
2209			Disable intel iommu driver.
2210		igfx_off [Default Off]
2211			By default, gfx is mapped as normal device. If a gfx
2212			device has a dedicated DMAR unit, the DMAR unit is
2213			bypassed by not enabling DMAR with this option. In
2214			this case, gfx device will use physical address for
2215			DMA.
2216		strict [Default Off]
2217			Deprecated, equivalent to iommu.strict=1.
2218		sp_off [Default Off]
2219			By default, super page will be supported if Intel IOMMU
2220			has the capability. With this option, super page will
2221			not be supported.
2222		sm_on
2223			Enable the Intel IOMMU scalable mode if the hardware
2224			advertises that it has support for the scalable mode
2225			translation.
2226		sm_off
2227			Disallow use of the Intel IOMMU scalable mode.
2228		tboot_noforce [Default Off]
2229			Do not force the Intel IOMMU enabled under tboot.
2230			By default, tboot will force Intel IOMMU on, which
2231			could harm performance of some high-throughput
2232			devices like 40GBit network cards, even if identity
2233			mapping is enabled.
2234			Note that using this option lowers the security
2235			provided by tboot because it makes the system
2236			vulnerable to DMA attacks.
2237
2238	intel_idle.max_cstate=	[KNL,HW,ACPI,X86]
2239			0	disables intel_idle and fall back on acpi_idle.
2240			1 to 9	specify maximum depth of C-state.
2241
2242	intel_pstate=	[X86,EARLY]
2243			disable
2244			  Do not enable intel_pstate as the default
2245			  scaling driver for the supported processors
2246                        active
2247                          Use intel_pstate driver to bypass the scaling
2248                          governors layer of cpufreq and provides it own
2249                          algorithms for p-state selection. There are two
2250                          P-state selection algorithms provided by
2251                          intel_pstate in the active mode: powersave and
2252                          performance.  The way they both operate depends
2253                          on whether or not the hardware managed P-states
2254                          (HWP) feature has been enabled in the processor
2255                          and possibly on the processor model.
2256			passive
2257			  Use intel_pstate as a scaling driver, but configure it
2258			  to work with generic cpufreq governors (instead of
2259			  enabling its internal governor).  This mode cannot be
2260			  used along with the hardware-managed P-states (HWP)
2261			  feature.
2262			force
2263			  Enable intel_pstate on systems that prohibit it by default
2264			  in favor of acpi-cpufreq. Forcing the intel_pstate driver
2265			  instead of acpi-cpufreq may disable platform features, such
2266			  as thermal controls and power capping, that rely on ACPI
2267			  P-States information being indicated to OSPM and therefore
2268			  should be used with caution. This option does not work with
2269			  processors that aren't supported by the intel_pstate driver
2270			  or on platforms that use pcc-cpufreq instead of acpi-cpufreq.
2271			no_hwp
2272			  Do not enable hardware P state control (HWP)
2273			  if available.
2274			hwp_only
2275			  Only load intel_pstate on systems which support
2276			  hardware P state control (HWP) if available.
2277			support_acpi_ppc
2278			  Enforce ACPI _PPC performance limits. If the Fixed ACPI
2279			  Description Table, specifies preferred power management
2280			  profile as "Enterprise Server" or "Performance Server",
2281			  then this feature is turned on by default.
2282			per_cpu_perf_limits
2283			  Allow per-logical-CPU P-State performance control limits using
2284			  cpufreq sysfs interface
2285
2286	intremap=	[X86-64,Intel-IOMMU,EARLY]
2287			on	enable Interrupt Remapping (default)
2288			off	disable Interrupt Remapping
2289			nosid	disable Source ID checking
2290			no_x2apic_optout
2291				BIOS x2APIC opt-out request will be ignored
2292			nopost	disable Interrupt Posting
2293			posted_msi
2294				enable MSIs delivered as posted interrupts
2295
2296	iomem=		Disable strict checking of access to MMIO memory
2297		strict	regions from userspace.
2298		relaxed
2299
2300	iommu=		[X86,EARLY]
2301		off
2302		force
2303		noforce
2304		biomerge
2305		panic
2306		nopanic
2307		merge
2308		nomerge
2309		soft
2310		pt		[X86]
2311		nopt		[X86]
2312		nobypass	[PPC/POWERNV]
2313			Disable IOMMU bypass, using IOMMU for PCI devices.
2314
2315	iommu.forcedac=	[ARM64,X86,EARLY] Control IOVA allocation for PCI devices.
2316			Format: { "0" | "1" }
2317			0 - Try to allocate a 32-bit DMA address first, before
2318			  falling back to the full range if needed.
2319			1 - Allocate directly from the full usable range,
2320			  forcing Dual Address Cycle for PCI cards supporting
2321			  greater than 32-bit addressing.
2322
2323	iommu.strict=	[ARM64,X86,S390,EARLY] Configure TLB invalidation behaviour
2324			Format: { "0" | "1" }
2325			0 - Lazy mode.
2326			  Request that DMA unmap operations use deferred
2327			  invalidation of hardware TLBs, for increased
2328			  throughput at the cost of reduced device isolation.
2329			  Will fall back to strict mode if not supported by
2330			  the relevant IOMMU driver.
2331			1 - Strict mode.
2332			  DMA unmap operations invalidate IOMMU hardware TLBs
2333			  synchronously.
2334			unset - Use value of CONFIG_IOMMU_DEFAULT_DMA_{LAZY,STRICT}.
2335			Note: on x86, strict mode specified via one of the
2336			legacy driver-specific options takes precedence.
2337
2338	iommu.passthrough=
2339			[ARM64,X86,EARLY] Configure DMA to bypass the IOMMU by default.
2340			Format: { "0" | "1" }
2341			0 - Use IOMMU translation for DMA.
2342			1 - Bypass the IOMMU for DMA.
2343			unset - Use value of CONFIG_IOMMU_DEFAULT_PASSTHROUGH.
2344
2345	io7=		[HW] IO7 for Marvel-based Alpha systems
2346			See comment before marvel_specify_io7 in
2347			arch/alpha/kernel/core_marvel.c.
2348
2349	io_delay=	[X86,EARLY] I/O delay method
2350		0x80
2351			Standard port 0x80 based delay
2352		0xed
2353			Alternate port 0xed based delay (needed on some systems)
2354		udelay
2355			Simple two microseconds delay
2356		none
2357			No delay
2358
2359	ip=		[IP_PNP]
2360			See Documentation/admin-guide/nfs/nfsroot.rst.
2361
2362	ipcmni_extend	[KNL,EARLY] Extend the maximum number of unique System V
2363			IPC identifiers from 32,768 to 16,777,216.
2364
2365	irqaffinity=	[SMP] Set the default irq affinity mask
2366			The argument is a cpu list, as described above.
2367
2368	irqchip.gicv2_force_probe=
2369			[ARM,ARM64,EARLY]
2370			Format: <bool>
2371			Force the kernel to look for the second 4kB page
2372			of a GICv2 controller even if the memory range
2373			exposed by the device tree is too small.
2374
2375	irqchip.gicv3_nolpi=
2376			[ARM,ARM64,EARLY]
2377			Force the kernel to ignore the availability of
2378			LPIs (and by consequence ITSs). Intended for system
2379			that use the kernel as a bootloader, and thus want
2380			to let secondary kernels in charge of setting up
2381			LPIs.
2382
2383	irqchip.gicv3_pseudo_nmi= [ARM64,EARLY]
2384			Enables support for pseudo-NMIs in the kernel. This
2385			requires the kernel to be built with
2386			CONFIG_ARM64_PSEUDO_NMI.
2387
2388	irqfixup	[HW]
2389			When an interrupt is not handled search all handlers
2390			for it. Intended to get systems with badly broken
2391			firmware running.
2392
2393	irqpoll		[HW]
2394			When an interrupt is not handled search all handlers
2395			for it. Also check all handlers each timer
2396			interrupt. Intended to get systems with badly broken
2397			firmware running.
2398
2399	isapnp=		[ISAPNP]
2400			Format: <RDP>,<reset>,<pci_scan>,<verbosity>
2401
2402	isolcpus=	[KNL,SMP,ISOL] Isolate a given set of CPUs from disturbance.
2403			[Deprecated - use cpusets instead]
2404			Format: [flag-list,]<cpu-list>
2405
2406			Specify one or more CPUs to isolate from disturbances
2407			specified in the flag list (default: domain):
2408
2409			nohz
2410			  Disable the tick when a single task runs.
2411
2412			  A residual 1Hz tick is offloaded to workqueues, which you
2413			  need to affine to housekeeping through the global
2414			  workqueue's affinity configured via the
2415			  /sys/devices/virtual/workqueue/cpumask sysfs file, or
2416			  by using the 'domain' flag described below.
2417
2418			  NOTE: by default the global workqueue runs on all CPUs,
2419			  so to protect individual CPUs the 'cpumask' file has to
2420			  be configured manually after bootup.
2421
2422			domain
2423			  Isolate from the general SMP balancing and scheduling
2424			  algorithms. Note that performing domain isolation this way
2425			  is irreversible: it's not possible to bring back a CPU to
2426			  the domains once isolated through isolcpus. It's strongly
2427			  advised to use cpusets instead to disable scheduler load
2428			  balancing through the "cpuset.sched_load_balance" file.
2429			  It offers a much more flexible interface where CPUs can
2430			  move in and out of an isolated set anytime.
2431
2432			  You can move a process onto or off an "isolated" CPU via
2433			  the CPU affinity syscalls or cpuset.
2434			  <cpu number> begins at 0 and the maximum value is
2435			  "number of CPUs in system - 1".
2436
2437			managed_irq
2438
2439			  Isolate from being targeted by managed interrupts
2440			  which have an interrupt mask containing isolated
2441			  CPUs. The affinity of managed interrupts is
2442			  handled by the kernel and cannot be changed via
2443			  the /proc/irq/* interfaces.
2444
2445			  This isolation is best effort and only effective
2446			  if the automatically assigned interrupt mask of a
2447			  device queue contains isolated and housekeeping
2448			  CPUs. If housekeeping CPUs are online then such
2449			  interrupts are directed to the housekeeping CPU
2450			  so that IO submitted on the housekeeping CPU
2451			  cannot disturb the isolated CPU.
2452
2453			  If a queue's affinity mask contains only isolated
2454			  CPUs then this parameter has no effect on the
2455			  interrupt routing decision, though interrupts are
2456			  only delivered when tasks running on those
2457			  isolated CPUs submit IO. IO submitted on
2458			  housekeeping CPUs has no influence on those
2459			  queues.
2460
2461			The format of <cpu-list> is described above.
2462
2463	iucv=		[HW,NET]
2464
2465	ivrs_ioapic	[HW,X86-64]
2466			Provide an override to the IOAPIC-ID<->DEVICE-ID
2467			mapping provided in the IVRS ACPI table.
2468			By default, PCI segment is 0, and can be omitted.
2469
2470			For example, to map IOAPIC-ID decimal 10 to
2471			PCI segment 0x1 and PCI device 00:14.0,
2472			write the parameter as:
2473				ivrs_ioapic=10@0001:00:14.0
2474
2475			Deprecated formats:
2476			* To map IOAPIC-ID decimal 10 to PCI device 00:14.0
2477			  write the parameter as:
2478				ivrs_ioapic[10]=00:14.0
2479			* To map IOAPIC-ID decimal 10 to PCI segment 0x1 and
2480			  PCI device 00:14.0 write the parameter as:
2481				ivrs_ioapic[10]=0001:00:14.0
2482
2483	ivrs_hpet	[HW,X86-64]
2484			Provide an override to the HPET-ID<->DEVICE-ID
2485			mapping provided in the IVRS ACPI table.
2486			By default, PCI segment is 0, and can be omitted.
2487
2488			For example, to map HPET-ID decimal 10 to
2489			PCI segment 0x1 and PCI device 00:14.0,
2490			write the parameter as:
2491				ivrs_hpet=10@0001:00:14.0
2492
2493			Deprecated formats:
2494			* To map HPET-ID decimal 0 to PCI device 00:14.0
2495			  write the parameter as:
2496				ivrs_hpet[0]=00:14.0
2497			* To map HPET-ID decimal 10 to PCI segment 0x1 and
2498			  PCI device 00:14.0 write the parameter as:
2499				ivrs_ioapic[10]=0001:00:14.0
2500
2501	ivrs_acpihid	[HW,X86-64]
2502			Provide an override to the ACPI-HID:UID<->DEVICE-ID
2503			mapping provided in the IVRS ACPI table.
2504			By default, PCI segment is 0, and can be omitted.
2505
2506			For example, to map UART-HID:UID AMD0020:0 to
2507			PCI segment 0x1 and PCI device ID 00:14.5,
2508			write the parameter as:
2509				ivrs_acpihid=AMD0020:0@0001:00:14.5
2510
2511			Deprecated formats:
2512			* To map UART-HID:UID AMD0020:0 to PCI segment is 0,
2513			  PCI device ID 00:14.5, write the parameter as:
2514				ivrs_acpihid[00:14.5]=AMD0020:0
2515			* To map UART-HID:UID AMD0020:0 to PCI segment 0x1 and
2516			  PCI device ID 00:14.5, write the parameter as:
2517				ivrs_acpihid[0001:00:14.5]=AMD0020:0
2518
2519	js=		[HW,JOY] Analog joystick
2520			See Documentation/input/joydev/joystick.rst.
2521
2522	kasan_multi_shot
2523			[KNL] Enforce KASAN (Kernel Address Sanitizer) to print
2524			report on every invalid memory access. Without this
2525			parameter KASAN will print report only for the first
2526			invalid access.
2527
2528	keep_bootcon	[KNL,EARLY]
2529			Do not unregister boot console at start. This is only
2530			useful for debugging when something happens in the window
2531			between unregistering the boot console and initializing
2532			the real console.
2533
2534	keepinitrd	[HW,ARM] See retain_initrd.
2535
2536	kernelcore=	[KNL,X86,PPC,EARLY]
2537			Format: nn[KMGTPE] | nn% | "mirror"
2538			This parameter specifies the amount of memory usable by
2539			the kernel for non-movable allocations.  The requested
2540			amount is spread evenly throughout all nodes in the
2541			system as ZONE_NORMAL.  The remaining memory is used for
2542			movable memory in its own zone, ZONE_MOVABLE.  In the
2543			event, a node is too small to have both ZONE_NORMAL and
2544			ZONE_MOVABLE, kernelcore memory will take priority and
2545			other nodes will have a larger ZONE_MOVABLE.
2546
2547			ZONE_MOVABLE is used for the allocation of pages that
2548			may be reclaimed or moved by the page migration
2549			subsystem.  Note that allocations like PTEs-from-HighMem
2550			still use the HighMem zone if it exists, and the Normal
2551			zone if it does not.
2552
2553			It is possible to specify the exact amount of memory in
2554			the form of "nn[KMGTPE]", a percentage of total system
2555			memory in the form of "nn%", or "mirror".  If "mirror"
2556			option is specified, mirrored (reliable) memory is used
2557			for non-movable allocations and remaining memory is used
2558			for Movable pages.  "nn[KMGTPE]", "nn%", and "mirror"
2559			are exclusive, so you cannot specify multiple forms.
2560
2561	kgdbdbgp=	[KGDB,HW,EARLY] kgdb over EHCI usb debug port.
2562			Format: <Controller#>[,poll interval]
2563			The controller # is the number of the ehci usb debug
2564			port as it is probed via PCI.  The poll interval is
2565			optional and is the number seconds in between
2566			each poll cycle to the debug port in case you need
2567			the functionality for interrupting the kernel with
2568			gdb or control-c on the dbgp connection.  When
2569			not using this parameter you use sysrq-g to break into
2570			the kernel debugger.
2571
2572	kgdboc=		[KGDB,HW] kgdb over consoles.
2573			Requires a tty driver that supports console polling,
2574			or a supported polling keyboard driver (non-usb).
2575			 Serial only format: <serial_device>[,baud]
2576			 keyboard only format: kbd
2577			 keyboard and serial format: kbd,<serial_device>[,baud]
2578			Optional Kernel mode setting:
2579			 kms, kbd format: kms,kbd
2580			 kms, kbd and serial format: kms,kbd,<ser_dev>[,baud]
2581
2582	kgdboc_earlycon=	[KGDB,HW,EARLY]
2583			If the boot console provides the ability to read
2584			characters and can work in polling mode, you can use
2585			this parameter to tell kgdb to use it as a backend
2586			until the normal console is registered. Intended to
2587			be used together with the kgdboc parameter which
2588			specifies the normal console to transition to.
2589
2590			The name of the early console should be specified
2591			as the value of this parameter. Note that the name of
2592			the early console might be different than the tty
2593			name passed to kgdboc. It's OK to leave the value
2594			blank and the first boot console that implements
2595			read() will be picked.
2596
2597	kgdbwait	[KGDB,EARLY] Stop kernel execution and enter the
2598			kernel debugger at the earliest opportunity.
2599
2600	kmac=		[MIPS] Korina ethernet MAC address.
2601			Configure the RouterBoard 532 series on-chip
2602			Ethernet adapter MAC address.
2603
2604	kmemleak=	[KNL,EARLY] Boot-time kmemleak enable/disable
2605			Valid arguments: on, off
2606			Default: on
2607			Built with CONFIG_DEBUG_KMEMLEAK_DEFAULT_OFF=y,
2608			the default is off.
2609
2610	kprobe_event=[probe-list]
2611			[FTRACE] Add kprobe events and enable at boot time.
2612			The probe-list is a semicolon delimited list of probe
2613			definitions. Each definition is same as kprobe_events
2614			interface, but the parameters are comma delimited.
2615			For example, to add a kprobe event on vfs_read with
2616			arg1 and arg2, add to the command line;
2617
2618			      kprobe_event=p,vfs_read,$arg1,$arg2
2619
2620			See also Documentation/trace/kprobetrace.rst "Kernel
2621			Boot Parameter" section.
2622
2623	kpti=		[ARM64,EARLY] Control page table isolation of
2624			user and kernel address spaces.
2625			Default: enabled on cores which need mitigation.
2626			0: force disabled
2627			1: force enabled
2628
2629	kunit.enable=	[KUNIT] Enable executing KUnit tests. Requires
2630			CONFIG_KUNIT to be set to be fully enabled. The
2631			default value can be overridden via
2632			KUNIT_DEFAULT_ENABLED.
2633			Default is 1 (enabled)
2634
2635	kvm.ignore_msrs=[KVM] Ignore guest accesses to unhandled MSRs.
2636			Default is 0 (don't ignore, but inject #GP)
2637
2638	kvm.eager_page_split=
2639			[KVM,X86] Controls whether or not KVM will try to
2640			proactively split all huge pages during dirty logging.
2641			Eager page splitting reduces interruptions to vCPU
2642			execution by eliminating the write-protection faults
2643			and MMU lock contention that would otherwise be
2644			required to split huge pages lazily.
2645
2646			VM workloads that rarely perform writes or that write
2647			only to a small region of VM memory may benefit from
2648			disabling eager page splitting to allow huge pages to
2649			still be used for reads.
2650
2651			The behavior of eager page splitting depends on whether
2652			KVM_DIRTY_LOG_INITIALLY_SET is enabled or disabled. If
2653			disabled, all huge pages in a memslot will be eagerly
2654			split when dirty logging is enabled on that memslot. If
2655			enabled, eager page splitting will be performed during
2656			the KVM_CLEAR_DIRTY ioctl, and only for the pages being
2657			cleared.
2658
2659			Eager page splitting is only supported when kvm.tdp_mmu=Y.
2660
2661			Default is Y (on).
2662
2663	kvm.enable_vmware_backdoor=[KVM] Support VMware backdoor PV interface.
2664				   Default is false (don't support).
2665
2666	kvm.nx_huge_pages=
2667			[KVM] Controls the software workaround for the
2668			X86_BUG_ITLB_MULTIHIT bug.
2669			force	: Always deploy workaround.
2670			off	: Never deploy workaround.
2671			auto    : Deploy workaround based on the presence of
2672				  X86_BUG_ITLB_MULTIHIT.
2673
2674			Default is 'auto'.
2675
2676			If the software workaround is enabled for the host,
2677			guests do need not to enable it for nested guests.
2678
2679	kvm.nx_huge_pages_recovery_ratio=
2680			[KVM] Controls how many 4KiB pages are periodically zapped
2681			back to huge pages.  0 disables the recovery, otherwise if
2682			the value is N KVM will zap 1/Nth of the 4KiB pages every
2683			period (see below).  The default is 60.
2684
2685	kvm.nx_huge_pages_recovery_period_ms=
2686			[KVM] Controls the time period at which KVM zaps 4KiB pages
2687			back to huge pages. If the value is a non-zero N, KVM will
2688			zap a portion (see ratio above) of the pages every N msecs.
2689			If the value is 0 (the default), KVM will pick a period based
2690			on the ratio, such that a page is zapped after 1 hour on average.
2691
2692	kvm-amd.nested=	[KVM,AMD] Control nested virtualization feature in
2693			KVM/SVM. Default is 1 (enabled).
2694
2695	kvm-amd.npt=	[KVM,AMD] Control KVM's use of Nested Page Tables,
2696			a.k.a. Two-Dimensional Page Tables. Default is 1
2697			(enabled). Disable by KVM if hardware lacks support
2698			for NPT.
2699
2700	kvm-arm.mode=
2701			[KVM,ARM,EARLY] Select one of KVM/arm64's modes of
2702			operation.
2703
2704			none: Forcefully disable KVM.
2705
2706			nvhe: Standard nVHE-based mode, without support for
2707			      protected guests.
2708
2709			protected: nVHE-based mode with support for guests whose
2710				   state is kept private from the host.
2711
2712			nested: VHE-based mode with support for nested
2713				virtualization. Requires at least ARMv8.3
2714				hardware.
2715
2716			Defaults to VHE/nVHE based on hardware support. Setting
2717			mode to "protected" will disable kexec and hibernation
2718			for the host. "nested" is experimental and should be
2719			used with extreme caution.
2720
2721	kvm-arm.vgic_v3_group0_trap=
2722			[KVM,ARM,EARLY] Trap guest accesses to GICv3 group-0
2723			system registers
2724
2725	kvm-arm.vgic_v3_group1_trap=
2726			[KVM,ARM,EARLY] Trap guest accesses to GICv3 group-1
2727			system registers
2728
2729	kvm-arm.vgic_v3_common_trap=
2730			[KVM,ARM,EARLY] Trap guest accesses to GICv3 common
2731			system registers
2732
2733	kvm-arm.vgic_v4_enable=
2734			[KVM,ARM,EARLY] Allow use of GICv4 for direct
2735			injection of LPIs.
2736
2737	kvm-arm.wfe_trap_policy=
2738			[KVM,ARM] Control when to set WFE instruction trap for
2739			KVM VMs. Traps are allowed but not guaranteed by the
2740			CPU architecture.
2741
2742			trap: set WFE instruction trap
2743
2744			notrap: clear WFE instruction trap
2745
2746	kvm-arm.wfi_trap_policy=
2747			[KVM,ARM] Control when to set WFI instruction trap for
2748			KVM VMs. Traps are allowed but not guaranteed by the
2749			CPU architecture.
2750
2751			trap: set WFI instruction trap
2752
2753			notrap: clear WFI instruction trap
2754
2755	kvm_cma_resv_ratio=n [PPC,EARLY]
2756			Reserves given percentage from system memory area for
2757			contiguous memory allocation for KVM hash pagetable
2758			allocation.
2759			By default it reserves 5% of total system memory.
2760			Format: <integer>
2761			Default: 5
2762
2763	kvm-intel.ept=	[KVM,Intel] Control KVM's use of Extended Page Tables,
2764			a.k.a. Two-Dimensional Page Tables.  Default is 1
2765			(enabled). Disable by KVM if hardware lacks support
2766			for EPT.
2767
2768	kvm-intel.emulate_invalid_guest_state=
2769			[KVM,Intel] Control whether to emulate invalid guest
2770			state. Ignored if kvm-intel.enable_unrestricted_guest=1,
2771			as guest state is never invalid for unrestricted
2772			guests. This param doesn't apply to nested guests (L2),
2773			as KVM never emulates invalid L2 guest state.
2774			Default is 1 (enabled).
2775
2776	kvm-intel.flexpriority=
2777			[KVM,Intel] Control KVM's use of FlexPriority feature
2778			(TPR shadow). Default is 1 (enabled). Disable by KVM if
2779			hardware lacks support for it.
2780
2781	kvm-intel.nested=
2782			[KVM,Intel] Control nested virtualization feature in
2783			KVM/VMX. Default is 1 (enabled).
2784
2785	kvm-intel.unrestricted_guest=
2786			[KVM,Intel] Control KVM's use of unrestricted guest
2787			feature (virtualized real and unpaged mode). Default
2788			is 1 (enabled). Disable by KVM if EPT is disabled or
2789			hardware lacks support for it.
2790
2791	kvm-intel.vmentry_l1d_flush=[KVM,Intel] Mitigation for L1 Terminal Fault
2792			CVE-2018-3620.
2793
2794			Valid arguments: never, cond, always
2795
2796			always: L1D cache flush on every VMENTER.
2797			cond:	Flush L1D on VMENTER only when the code between
2798				VMEXIT and VMENTER can leak host memory.
2799			never:	Disables the mitigation
2800
2801			Default is cond (do L1 cache flush in specific instances)
2802
2803	kvm-intel.vpid=	[KVM,Intel] Control KVM's use of Virtual Processor
2804			Identification feature (tagged TLBs). Default is 1
2805			(enabled). Disable by KVM if hardware lacks support
2806			for it.
2807
2808	l1d_flush=	[X86,INTEL,EARLY]
2809			Control mitigation for L1D based snooping vulnerability.
2810
2811			Certain CPUs are vulnerable to an exploit against CPU
2812			internal buffers which can forward information to a
2813			disclosure gadget under certain conditions.
2814
2815			In vulnerable processors, the speculatively
2816			forwarded data can be used in a cache side channel
2817			attack, to access data to which the attacker does
2818			not have direct access.
2819
2820			This parameter controls the mitigation. The
2821			options are:
2822
2823			on         - enable the interface for the mitigation
2824
2825	l1tf=           [X86,EARLY] Control mitigation of the L1TF vulnerability on
2826			      affected CPUs
2827
2828			The kernel PTE inversion protection is unconditionally
2829			enabled and cannot be disabled.
2830
2831			full
2832				Provides all available mitigations for the
2833				L1TF vulnerability. Disables SMT and
2834				enables all mitigations in the
2835				hypervisors, i.e. unconditional L1D flush.
2836
2837				SMT control and L1D flush control via the
2838				sysfs interface is still possible after
2839				boot.  Hypervisors will issue a warning
2840				when the first VM is started in a
2841				potentially insecure configuration,
2842				i.e. SMT enabled or L1D flush disabled.
2843
2844			full,force
2845				Same as 'full', but disables SMT and L1D
2846				flush runtime control. Implies the
2847				'nosmt=force' command line option.
2848				(i.e. sysfs control of SMT is disabled.)
2849
2850			flush
2851				Leaves SMT enabled and enables the default
2852				hypervisor mitigation, i.e. conditional
2853				L1D flush.
2854
2855				SMT control and L1D flush control via the
2856				sysfs interface is still possible after
2857				boot.  Hypervisors will issue a warning
2858				when the first VM is started in a
2859				potentially insecure configuration,
2860				i.e. SMT enabled or L1D flush disabled.
2861
2862			flush,nosmt
2863
2864				Disables SMT and enables the default
2865				hypervisor mitigation.
2866
2867				SMT control and L1D flush control via the
2868				sysfs interface is still possible after
2869				boot.  Hypervisors will issue a warning
2870				when the first VM is started in a
2871				potentially insecure configuration,
2872				i.e. SMT enabled or L1D flush disabled.
2873
2874			flush,nowarn
2875				Same as 'flush', but hypervisors will not
2876				warn when a VM is started in a potentially
2877				insecure configuration.
2878
2879			off
2880				Disables hypervisor mitigations and doesn't
2881				emit any warnings.
2882				It also drops the swap size and available
2883				RAM limit restriction on both hypervisor and
2884				bare metal.
2885
2886			Default is 'flush'.
2887
2888			For details see: Documentation/admin-guide/hw-vuln/l1tf.rst
2889
2890	l2cr=		[PPC]
2891
2892	l3cr=		[PPC]
2893
2894	lapic		[X86-32,APIC,EARLY] Enable the local APIC even if BIOS
2895			disabled it.
2896
2897	lapic=		[X86,APIC] Do not use TSC deadline
2898			value for LAPIC timer one-shot implementation. Default
2899			back to the programmable timer unit in the LAPIC.
2900			Format: notscdeadline
2901
2902	lapic_timer_c2_ok	[X86,APIC,EARLY] trust the local apic timer
2903			in C2 power state.
2904
2905	libata.dma=	[LIBATA] DMA control
2906			libata.dma=0	  Disable all PATA and SATA DMA
2907			libata.dma=1	  PATA and SATA Disk DMA only
2908			libata.dma=2	  ATAPI (CDROM) DMA only
2909			libata.dma=4	  Compact Flash DMA only
2910			Combinations also work, so libata.dma=3 enables DMA
2911			for disks and CDROMs, but not CFs.
2912
2913	libata.ignore_hpa=	[LIBATA] Ignore HPA limit
2914			libata.ignore_hpa=0	  keep BIOS limits (default)
2915			libata.ignore_hpa=1	  ignore limits, using full disk
2916
2917	libata.noacpi	[LIBATA] Disables use of ACPI in libata suspend/resume
2918			when set.
2919			Format: <int>
2920
2921	libata.force=	[LIBATA] Force configurations.  The format is a comma-
2922			separated list of "[ID:]VAL" where ID is PORT[.DEVICE].
2923			PORT and DEVICE are decimal numbers matching port, link
2924			or device.  Basically, it matches the ATA ID string
2925			printed on console by libata.  If the whole ID part is
2926			omitted, the last PORT and DEVICE values are used.  If
2927			ID hasn't been specified yet, the configuration applies
2928			to all ports, links and devices.
2929
2930			If only DEVICE is omitted, the parameter applies to
2931			the port and all links and devices behind it.  DEVICE
2932			number of 0 either selects the first device or the
2933			first fan-out link behind PMP device.  It does not
2934			select the host link.  DEVICE number of 15 selects the
2935			host link and device attached to it.
2936
2937			The VAL specifies the configuration to force.  As long
2938			as there is no ambiguity, shortcut notation is allowed.
2939			For example, both 1.5 and 1.5G would work for 1.5Gbps.
2940			The following configurations can be forced.
2941
2942			* Cable type: 40c, 80c, short40c, unk, ign or sata.
2943			  Any ID with matching PORT is used.
2944
2945			* SATA link speed limit: 1.5Gbps or 3.0Gbps.
2946
2947			* Transfer mode: pio[0-7], mwdma[0-4] and udma[0-7].
2948			  udma[/][16,25,33,44,66,100,133] notation is also
2949			  allowed.
2950
2951			* nohrst, nosrst, norst: suppress hard, soft and both
2952			  resets.
2953
2954			* rstonce: only attempt one reset during hot-unplug
2955			  link recovery.
2956
2957			* [no]dbdelay: Enable or disable the extra 200ms delay
2958			  before debouncing a link PHY and device presence
2959			  detection.
2960
2961			* [no]ncq: Turn on or off NCQ.
2962
2963			* [no]ncqtrim: Enable or disable queued DSM TRIM.
2964
2965			* [no]ncqati: Enable or disable NCQ trim on ATI chipset.
2966
2967			* [no]trim: Enable or disable (unqueued) TRIM.
2968
2969			* trim_zero: Indicate that TRIM command zeroes data.
2970
2971			* max_trim_128m: Set 128M maximum trim size limit.
2972
2973			* [no]dma: Turn on or off DMA transfers.
2974
2975			* atapi_dmadir: Enable ATAPI DMADIR bridge support.
2976
2977			* atapi_mod16_dma: Enable the use of ATAPI DMA for
2978			  commands that are not a multiple of 16 bytes.
2979
2980			* [no]dmalog: Enable or disable the use of the
2981			  READ LOG DMA EXT command to access logs.
2982
2983			* [no]iddevlog: Enable or disable access to the
2984			  identify device data log.
2985
2986			* [no]logdir: Enable or disable access to the general
2987			  purpose log directory.
2988
2989			* max_sec_128: Set transfer size limit to 128 sectors.
2990
2991			* max_sec_1024: Set or clear transfer size limit to
2992			  1024 sectors.
2993
2994			* max_sec_lba48: Set or clear transfer size limit to
2995			  65535 sectors.
2996
2997			* [no]lpm: Enable or disable link power management.
2998
2999			* [no]setxfer: Indicate if transfer speed mode setting
3000			  should be skipped.
3001
3002			* [no]fua: Disable or enable FUA (Force Unit Access)
3003			  support for devices supporting this feature.
3004
3005			* dump_id: Dump IDENTIFY data.
3006
3007			* disable: Disable this device.
3008
3009			If there are multiple matching configurations changing
3010			the same attribute, the last one is used.
3011
3012	load_ramdisk=	[RAM] [Deprecated]
3013
3014	lockd.nlm_grace_period=P  [NFS] Assign grace period.
3015			Format: <integer>
3016
3017	lockd.nlm_tcpport=N	[NFS] Assign TCP port.
3018			Format: <integer>
3019
3020	lockd.nlm_timeout=T	[NFS] Assign timeout value.
3021			Format: <integer>
3022
3023	lockd.nlm_udpport=M	[NFS] Assign UDP port.
3024			Format: <integer>
3025
3026	lockdown=	[SECURITY,EARLY]
3027			{ integrity | confidentiality }
3028			Enable the kernel lockdown feature. If set to
3029			integrity, kernel features that allow userland to
3030			modify the running kernel are disabled. If set to
3031			confidentiality, kernel features that allow userland
3032			to extract confidential information from the kernel
3033			are also disabled.
3034
3035	locktorture.acq_writer_lim= [KNL]
3036			Set the time limit in jiffies for a lock
3037			acquisition.  Acquisitions exceeding this limit
3038			will result in a splat once they do complete.
3039
3040	locktorture.bind_readers= [KNL]
3041			Specify the list of CPUs to which the readers are
3042			to be bound.
3043
3044	locktorture.bind_writers= [KNL]
3045			Specify the list of CPUs to which the writers are
3046			to be bound.
3047
3048	locktorture.call_rcu_chains= [KNL]
3049			Specify the number of self-propagating call_rcu()
3050			chains to set up.  These are used to ensure that
3051			there is a high probability of an RCU grace period
3052			in progress at any given time.	Defaults to 0,
3053			which disables these call_rcu() chains.
3054
3055	locktorture.long_hold= [KNL]
3056			Specify the duration in milliseconds for the
3057			occasional long-duration lock hold time.  Defaults
3058			to 100 milliseconds.  Select 0 to disable.
3059
3060	locktorture.nested_locks= [KNL]
3061			Specify the maximum lock nesting depth that
3062			locktorture is to exercise, up to a limit of 8
3063			(MAX_NESTED_LOCKS).  Specify zero to disable.
3064			Note that this parameter is ineffective on types
3065			of locks that do not support nested acquisition.
3066
3067	locktorture.nreaders_stress= [KNL]
3068			Set the number of locking read-acquisition kthreads.
3069			Defaults to being automatically set based on the
3070			number of online CPUs.
3071
3072	locktorture.nwriters_stress= [KNL]
3073			Set the number of locking write-acquisition kthreads.
3074
3075	locktorture.onoff_holdoff= [KNL]
3076			Set time (s) after boot for CPU-hotplug testing.
3077
3078	locktorture.onoff_interval= [KNL]
3079			Set time (s) between CPU-hotplug operations, or
3080			zero to disable CPU-hotplug testing.
3081
3082	locktorture.rt_boost= [KNL]
3083			Do periodic testing of real-time lock priority
3084			boosting.  Select 0 to disable, 1 to boost
3085			only rt_mutex, and 2 to boost unconditionally.
3086			Defaults to 2, which might seem to be an
3087			odd choice, but which should be harmless for
3088			non-real-time spinlocks, due to their disabling
3089			of preemption.	Note that non-realtime mutexes
3090			disable boosting.
3091
3092	locktorture.rt_boost_factor= [KNL]
3093			Number that determines how often and for how
3094			long priority boosting is exercised.  This is
3095			scaled down by the number of writers, so that the
3096			number of boosts per unit time remains roughly
3097			constant as the number of writers increases.
3098			On the other hand, the duration of each boost
3099			increases with the number of writers.
3100
3101	locktorture.shuffle_interval= [KNL]
3102			Set task-shuffle interval (jiffies).  Shuffling
3103			tasks allows some CPUs to go into dyntick-idle
3104			mode during the locktorture test.
3105
3106	locktorture.shutdown_secs= [KNL]
3107			Set time (s) after boot system shutdown.  This
3108			is useful for hands-off automated testing.
3109
3110	locktorture.stat_interval= [KNL]
3111			Time (s) between statistics printk()s.
3112
3113	locktorture.stutter= [KNL]
3114			Time (s) to stutter testing, for example,
3115			specifying five seconds causes the test to run for
3116			five seconds, wait for five seconds, and so on.
3117			This tests the locking primitive's ability to
3118			transition abruptly to and from idle.
3119
3120	locktorture.torture_type= [KNL]
3121			Specify the locking implementation to test.
3122
3123	locktorture.verbose= [KNL]
3124			Enable additional printk() statements.
3125
3126	locktorture.writer_fifo= [KNL]
3127			Run the write-side locktorture kthreads at
3128			sched_set_fifo() real-time priority.
3129
3130	logibm.irq=	[HW,MOUSE] Logitech Bus Mouse Driver
3131			Format: <irq>
3132
3133	loglevel=	[KNL,EARLY]
3134			All Kernel Messages with a loglevel smaller than the
3135			console loglevel will be printed to the console. It can
3136			also be changed with klogd or other programs. The
3137			loglevels are defined as follows:
3138
3139			0 (KERN_EMERG)		system is unusable
3140			1 (KERN_ALERT)		action must be taken immediately
3141			2 (KERN_CRIT)		critical conditions
3142			3 (KERN_ERR)		error conditions
3143			4 (KERN_WARNING)	warning conditions
3144			5 (KERN_NOTICE)		normal but significant condition
3145			6 (KERN_INFO)		informational
3146			7 (KERN_DEBUG)		debug-level messages
3147
3148	log_buf_len=n[KMG] [KNL,EARLY]
3149			Sets the size of the printk ring buffer, in bytes.
3150			n must be a power of two and greater than the
3151			minimal size. The minimal size is defined by
3152			LOG_BUF_SHIFT kernel config parameter. There
3153			is also CONFIG_LOG_CPU_MAX_BUF_SHIFT config
3154			parameter that allows to increase the default size
3155			depending on the number of CPUs. See init/Kconfig
3156			for more details.
3157
3158	logo.nologo	[FB] Disables display of the built-in Linux logo.
3159			This may be used to provide more screen space for
3160			kernel log messages and is useful when debugging
3161			kernel boot problems.
3162
3163	lp=0		[LP]	Specify parallel ports to use, e.g,
3164	lp=port[,port...]	lp=none,parport0 (lp0 not configured, lp1 uses
3165	lp=reset		first parallel port). 'lp=0' disables the
3166	lp=auto			printer driver. 'lp=reset' (which can be
3167				specified in addition to the ports) causes
3168				attached printers to be reset. Using
3169				lp=port1,port2,... specifies the parallel ports
3170				to associate lp devices with, starting with
3171				lp0. A port specification may be 'none' to skip
3172				that lp device, or a parport name such as
3173				'parport0'. Specifying 'lp=auto' instead of a
3174				port specification list means that device IDs
3175				from each port should be examined, to see if
3176				an IEEE 1284-compliant printer is attached; if
3177				so, the driver will manage that printer.
3178				See also header of drivers/char/lp.c.
3179
3180	lpj=n		[KNL]
3181			Sets loops_per_jiffy to given constant, thus avoiding
3182			time-consuming boot-time autodetection (up to 250 ms per
3183			CPU). 0 enables autodetection (default). To determine
3184			the correct value for your kernel, boot with normal
3185			autodetection and see what value is printed. Note that
3186			on SMP systems the preset will be applied to all CPUs,
3187			which is likely to cause problems if your CPUs need
3188			significantly divergent settings. An incorrect value
3189			will cause delays in the kernel to be wrong, leading to
3190			unpredictable I/O errors and other breakage. Although
3191			unlikely, in the extreme case this might damage your
3192			hardware.
3193
3194	lsm.debug	[SECURITY] Enable LSM initialization debugging output.
3195
3196	lsm=lsm1,...,lsmN
3197			[SECURITY] Choose order of LSM initialization. This
3198			overrides CONFIG_LSM, and the "security=" parameter.
3199
3200	machtype=	[Loongson] Share the same kernel image file between
3201			different yeeloong laptops.
3202			Example: machtype=lemote-yeeloong-2f-7inch
3203
3204	maxcpus=	[SMP,EARLY] Maximum number of processors that an SMP kernel
3205			will bring up during bootup.  maxcpus=n : n >= 0 limits
3206			the kernel to bring up 'n' processors. Surely after
3207			bootup you can bring up the other plugged cpu by executing
3208			"echo 1 > /sys/devices/system/cpu/cpuX/online". So maxcpus
3209			only takes effect during system bootup.
3210			While n=0 is a special case, it is equivalent to "nosmp",
3211			which also disables the IO APIC.
3212
3213	max_loop=	[LOOP] The number of loop block devices that get
3214	(loop.max_loop)	unconditionally pre-created at init time. The default
3215			number is configured by BLK_DEV_LOOP_MIN_COUNT. Instead
3216			of statically allocating a predefined number, loop
3217			devices can be requested on-demand with the
3218			/dev/loop-control interface.
3219
3220	mce		[X86-32] Machine Check Exception
3221
3222	mce=option	[X86-64] See Documentation/arch/x86/x86_64/boot-options.rst
3223
3224	md=		[HW] RAID subsystems devices and level
3225			See Documentation/admin-guide/md.rst.
3226
3227	mdacon=		[MDA]
3228			Format: <first>,<last>
3229			Specifies range of consoles to be captured by the MDA.
3230
3231	mds=		[X86,INTEL,EARLY]
3232			Control mitigation for the Micro-architectural Data
3233			Sampling (MDS) vulnerability.
3234
3235			Certain CPUs are vulnerable to an exploit against CPU
3236			internal buffers which can forward information to a
3237			disclosure gadget under certain conditions.
3238
3239			In vulnerable processors, the speculatively
3240			forwarded data can be used in a cache side channel
3241			attack, to access data to which the attacker does
3242			not have direct access.
3243
3244			This parameter controls the MDS mitigation. The
3245			options are:
3246
3247			full       - Enable MDS mitigation on vulnerable CPUs
3248			full,nosmt - Enable MDS mitigation and disable
3249				     SMT on vulnerable CPUs
3250			off        - Unconditionally disable MDS mitigation
3251
3252			On TAA-affected machines, mds=off can be prevented by
3253			an active TAA mitigation as both vulnerabilities are
3254			mitigated with the same mechanism so in order to disable
3255			this mitigation, you need to specify tsx_async_abort=off
3256			too.
3257
3258			Not specifying this option is equivalent to
3259			mds=full.
3260
3261			For details see: Documentation/admin-guide/hw-vuln/mds.rst
3262
3263	mem=nn[KMG]	[HEXAGON,EARLY] Set the memory size.
3264			Must be specified, otherwise memory size will be 0.
3265
3266	mem=nn[KMG]	[KNL,BOOT,EARLY] Force usage of a specific amount
3267			of memory Amount of memory to be used in cases
3268			as follows:
3269
3270			1 for test;
3271			2 when the kernel is not able to see the whole system memory;
3272			3 memory that lies after 'mem=' boundary is excluded from
3273			 the hypervisor, then assigned to KVM guests.
3274			4 to limit the memory available for kdump kernel.
3275
3276			[ARC,MICROBLAZE] - the limit applies only to low memory,
3277			high memory is not affected.
3278
3279			[ARM64] - only limits memory covered by the linear
3280			mapping. The NOMAP regions are not affected.
3281
3282			[X86] Work as limiting max address. Use together
3283			with memmap= to avoid physical address space collisions.
3284			Without memmap= PCI devices could be placed at addresses
3285			belonging to unused RAM.
3286
3287			Note that this only takes effects during boot time since
3288			in above case 3, memory may need be hot added after boot
3289			if system memory of hypervisor is not sufficient.
3290
3291	mem=nn[KMG]@ss[KMG]
3292			[ARM,MIPS,EARLY] - override the memory layout
3293			reported by firmware.
3294			Define a memory region of size nn[KMG] starting at
3295			ss[KMG].
3296			Multiple different regions can be specified with
3297			multiple mem= parameters on the command line.
3298
3299	mem=nopentium	[BUGS=X86-32] Disable usage of 4MB pages for kernel
3300			memory.
3301
3302	memblock=debug	[KNL,EARLY] Enable memblock debug messages.
3303
3304	memchunk=nn[KMG]
3305			[KNL,SH] Allow user to override the default size for
3306			per-device physically contiguous DMA buffers.
3307
3308	memhp_default_state=online/offline/online_kernel/online_movable
3309			[KNL] Set the initial state for the memory hotplug
3310			onlining policy. If not specified, the default value is
3311			set according to the
3312			CONFIG_MEMORY_HOTPLUG_DEFAULT_ONLINE kernel config
3313			option.
3314			See Documentation/admin-guide/mm/memory-hotplug.rst.
3315
3316	memmap=exactmap	[KNL,X86,EARLY] Enable setting of an exact
3317			E820 memory map, as specified by the user.
3318			Such memmap=exactmap lines can be constructed based on
3319			BIOS output or other requirements. See the memmap=nn@ss
3320			option description.
3321
3322	memmap=nn[KMG]@ss[KMG]
3323			[KNL, X86,MIPS,XTENSA,EARLY] Force usage of a specific region of memory.
3324			Region of memory to be used is from ss to ss+nn.
3325			If @ss[KMG] is omitted, it is equivalent to mem=nn[KMG],
3326			which limits max address to nn[KMG].
3327			Multiple different regions can be specified,
3328			comma delimited.
3329			Example:
3330				memmap=100M@2G,100M#3G,1G!1024G
3331
3332	memmap=nn[KMG]#ss[KMG]
3333			[KNL,ACPI,EARLY] Mark specific memory as ACPI data.
3334			Region of memory to be marked is from ss to ss+nn.
3335
3336	memmap=nn[KMG]$ss[KMG]
3337			[KNL,ACPI,EARLY] Mark specific memory as reserved.
3338			Region of memory to be reserved is from ss to ss+nn.
3339			Example: Exclude memory from 0x18690000-0x1869ffff
3340			         memmap=64K$0x18690000
3341			         or
3342			         memmap=0x10000$0x18690000
3343			Some bootloaders may need an escape character before '$',
3344			like Grub2, otherwise '$' and the following number
3345			will be eaten.
3346
3347	memmap=nn[KMG]!ss[KMG,EARLY]
3348			[KNL,X86] Mark specific memory as protected.
3349			Region of memory to be used, from ss to ss+nn.
3350			The memory region may be marked as e820 type 12 (0xc)
3351			and is NVDIMM or ADR memory.
3352
3353	memmap=<size>%<offset>-<oldtype>+<newtype>
3354			[KNL,ACPI,EARLY] Convert memory within the specified region
3355			from <oldtype> to <newtype>. If "-<oldtype>" is left
3356			out, the whole region will be marked as <newtype>,
3357			even if previously unavailable. If "+<newtype>" is left
3358			out, matching memory will be removed. Types are
3359			specified as e820 types, e.g., 1 = RAM, 2 = reserved,
3360			3 = ACPI, 12 = PRAM.
3361
3362	memory_corruption_check=0/1 [X86,EARLY]
3363			Some BIOSes seem to corrupt the first 64k of
3364			memory when doing things like suspend/resume.
3365			Setting this option will scan the memory
3366			looking for corruption.  Enabling this will
3367			both detect corruption and prevent the kernel
3368			from using the memory being corrupted.
3369			However, its intended as a diagnostic tool; if
3370			repeatable BIOS-originated corruption always
3371			affects the same memory, you can use memmap=
3372			to prevent the kernel from using that memory.
3373
3374	memory_corruption_check_size=size [X86,EARLY]
3375			By default it checks for corruption in the low
3376			64k, making this memory unavailable for normal
3377			use.  Use this parameter to scan for
3378			corruption in more or less memory.
3379
3380	memory_corruption_check_period=seconds [X86,EARLY]
3381			By default it checks for corruption every 60
3382			seconds.  Use this parameter to check at some
3383			other rate.  0 disables periodic checking.
3384
3385	memory_hotplug.memmap_on_memory
3386			[KNL,X86,ARM] Boolean flag to enable this feature.
3387			Format: {on | off (default)}
3388			When enabled, runtime hotplugged memory will
3389			allocate its internal metadata (struct pages,
3390			those vmemmap pages cannot be optimized even
3391			if hugetlb_free_vmemmap is enabled) from the
3392			hotadded memory which will allow to hotadd a
3393			lot of memory without requiring additional
3394			memory to do so.
3395			This feature is disabled by default because it
3396			has some implication on large (e.g. GB)
3397			allocations in some configurations (e.g. small
3398			memory blocks).
3399			The state of the flag can be read in
3400			/sys/module/memory_hotplug/parameters/memmap_on_memory.
3401			Note that even when enabled, there are a few cases where
3402			the feature is not effective.
3403
3404	memtest=	[KNL,X86,ARM,M68K,PPC,RISCV,EARLY] Enable memtest
3405			Format: <integer>
3406			default : 0 <disable>
3407			Specifies the number of memtest passes to be
3408			performed. Each pass selects another test
3409			pattern from a given set of patterns. Memtest
3410			fills the memory with this pattern, validates
3411			memory contents and reserves bad memory
3412			regions that are detected.
3413
3414	mem_encrypt=	[X86-64] AMD Secure Memory Encryption (SME) control
3415			Valid arguments: on, off
3416			Default: off
3417			mem_encrypt=on:		Activate SME
3418			mem_encrypt=off:	Do not activate SME
3419
3420			Refer to Documentation/virt/kvm/x86/amd-memory-encryption.rst
3421			for details on when memory encryption can be activated.
3422
3423	mem_sleep_default=	[SUSPEND] Default system suspend mode:
3424			s2idle  - Suspend-To-Idle
3425			shallow - Power-On Suspend or equivalent (if supported)
3426			deep    - Suspend-To-RAM or equivalent (if supported)
3427			See Documentation/admin-guide/pm/sleep-states.rst.
3428
3429	mfgptfix	[X86-32] Fix MFGPT timers on AMD Geode platforms when
3430			the BIOS has incorrectly applied a workaround. TinyBIOS
3431			version 0.98 is known to be affected, 0.99 fixes the
3432			problem by letting the user disable the workaround.
3433
3434	mga=		[HW,DRM]
3435
3436	microcode.force_minrev=	[X86]
3437			Format: <bool>
3438			Enable or disable the microcode minimal revision
3439			enforcement for the runtime microcode loader.
3440
3441	mini2440=	[ARM,HW,KNL]
3442			Format:[0..2][b][c][t]
3443			Default: "0tb"
3444			MINI2440 configuration specification:
3445			0 - The attached screen is the 3.5" TFT
3446			1 - The attached screen is the 7" TFT
3447			2 - The VGA Shield is attached (1024x768)
3448			Leaving out the screen size parameter will not load
3449			the TFT driver, and the framebuffer will be left
3450			unconfigured.
3451			b - Enable backlight. The TFT backlight pin will be
3452			linked to the kernel VESA blanking code and a GPIO
3453			LED. This parameter is not necessary when using the
3454			VGA shield.
3455			c - Enable the s3c camera interface.
3456			t - Reserved for enabling touchscreen support. The
3457			touchscreen support is not enabled in the mainstream
3458			kernel as of 2.6.30, a preliminary port can be found
3459			in the "bleeding edge" mini2440 support kernel at
3460			https://repo.or.cz/w/linux-2.6/mini2440.git
3461
3462	mitigations=
3463			[X86,PPC,S390,ARM64,EARLY] Control optional mitigations for
3464			CPU vulnerabilities.  This is a set of curated,
3465			arch-independent options, each of which is an
3466			aggregation of existing arch-specific options.
3467
3468			Note, "mitigations" is supported if and only if the
3469			kernel was built with CPU_MITIGATIONS=y.
3470
3471			off
3472				Disable all optional CPU mitigations.  This
3473				improves system performance, but it may also
3474				expose users to several CPU vulnerabilities.
3475				Equivalent to: if nokaslr then kpti=0 [ARM64]
3476					       gather_data_sampling=off [X86]
3477					       kvm.nx_huge_pages=off [X86]
3478					       l1tf=off [X86]
3479					       mds=off [X86]
3480					       mmio_stale_data=off [X86]
3481					       no_entry_flush [PPC]
3482					       no_uaccess_flush [PPC]
3483					       nobp=0 [S390]
3484					       nopti [X86,PPC]
3485					       nospectre_bhb [ARM64]
3486					       nospectre_v1 [X86,PPC]
3487					       nospectre_v2 [X86,PPC,S390,ARM64]
3488					       reg_file_data_sampling=off [X86]
3489					       retbleed=off [X86]
3490					       spec_rstack_overflow=off [X86]
3491					       spec_store_bypass_disable=off [X86,PPC]
3492					       spectre_bhi=off [X86]
3493					       spectre_v2_user=off [X86]
3494					       srbds=off [X86,INTEL]
3495					       ssbd=force-off [ARM64]
3496					       tsx_async_abort=off [X86]
3497
3498				Exceptions:
3499					       This does not have any effect on
3500					       kvm.nx_huge_pages when
3501					       kvm.nx_huge_pages=force.
3502
3503			auto (default)
3504				Mitigate all CPU vulnerabilities, but leave SMT
3505				enabled, even if it's vulnerable.  This is for
3506				users who don't want to be surprised by SMT
3507				getting disabled across kernel upgrades, or who
3508				have other ways of avoiding SMT-based attacks.
3509				Equivalent to: (default behavior)
3510
3511			auto,nosmt
3512				Mitigate all CPU vulnerabilities, disabling SMT
3513				if needed.  This is for users who always want to
3514				be fully mitigated, even if it means losing SMT.
3515				Equivalent to: l1tf=flush,nosmt [X86]
3516					       mds=full,nosmt [X86]
3517					       tsx_async_abort=full,nosmt [X86]
3518					       mmio_stale_data=full,nosmt [X86]
3519					       retbleed=auto,nosmt [X86]
3520
3521	mminit_loglevel=
3522			[KNL,EARLY] When CONFIG_DEBUG_MEMORY_INIT is set, this
3523			parameter allows control of the logging verbosity for
3524			the additional memory initialisation checks. A value
3525			of 0 disables mminit logging and a level of 4 will
3526			log everything. Information is printed at KERN_DEBUG
3527			so loglevel=8 may also need to be specified.
3528
3529	mmio_stale_data=
3530			[X86,INTEL,EARLY] Control mitigation for the Processor
3531			MMIO Stale Data vulnerabilities.
3532
3533			Processor MMIO Stale Data is a class of
3534			vulnerabilities that may expose data after an MMIO
3535			operation. Exposed data could originate or end in
3536			the same CPU buffers as affected by MDS and TAA.
3537			Therefore, similar to MDS and TAA, the mitigation
3538			is to clear the affected CPU buffers.
3539
3540			This parameter controls the mitigation. The
3541			options are:
3542
3543			full       - Enable mitigation on vulnerable CPUs
3544
3545			full,nosmt - Enable mitigation and disable SMT on
3546				     vulnerable CPUs.
3547
3548			off        - Unconditionally disable mitigation
3549
3550			On MDS or TAA affected machines,
3551			mmio_stale_data=off can be prevented by an active
3552			MDS or TAA mitigation as these vulnerabilities are
3553			mitigated with the same mechanism so in order to
3554			disable this mitigation, you need to specify
3555			mds=off and tsx_async_abort=off too.
3556
3557			Not specifying this option is equivalent to
3558			mmio_stale_data=full.
3559
3560			For details see:
3561			Documentation/admin-guide/hw-vuln/processor_mmio_stale_data.rst
3562
3563	<module>.async_probe[=<bool>] [KNL]
3564			If no <bool> value is specified or if the value
3565			specified is not a valid <bool>, enable asynchronous
3566			probe on this module.  Otherwise, enable/disable
3567			asynchronous probe on this module as indicated by the
3568			<bool> value. See also: module.async_probe
3569
3570	module.async_probe=<bool>
3571			[KNL] When set to true, modules will use async probing
3572			by default. To enable/disable async probing for a
3573			specific module, use the module specific control that
3574			is documented under <module>.async_probe. When both
3575			module.async_probe and <module>.async_probe are
3576			specified, <module>.async_probe takes precedence for
3577			the specific module.
3578
3579	module.enable_dups_trace
3580			[KNL] When CONFIG_MODULE_DEBUG_AUTOLOAD_DUPS is set,
3581			this means that duplicate request_module() calls will
3582			trigger a WARN_ON() instead of a pr_warn(). Note that
3583			if MODULE_DEBUG_AUTOLOAD_DUPS_TRACE is set, WARN_ON()s
3584			will always be issued and this option does nothing.
3585	module.sig_enforce
3586			[KNL] When CONFIG_MODULE_SIG is set, this means that
3587			modules without (valid) signatures will fail to load.
3588			Note that if CONFIG_MODULE_SIG_FORCE is set, that
3589			is always true, so this option does nothing.
3590
3591	module_blacklist=  [KNL] Do not load a comma-separated list of
3592			modules.  Useful for debugging problem modules.
3593
3594	mousedev.tap_time=
3595			[MOUSE] Maximum time between finger touching and
3596			leaving touchpad surface for touch to be considered
3597			a tap and be reported as a left button click (for
3598			touchpads working in absolute mode only).
3599			Format: <msecs>
3600	mousedev.xres=	[MOUSE] Horizontal screen resolution, used for devices
3601			reporting absolute coordinates, such as tablets
3602	mousedev.yres=	[MOUSE] Vertical screen resolution, used for devices
3603			reporting absolute coordinates, such as tablets
3604
3605	movablecore=	[KNL,X86,PPC,EARLY]
3606			Format: nn[KMGTPE] | nn%
3607			This parameter is the complement to kernelcore=, it
3608			specifies the amount of memory used for migratable
3609			allocations.  If both kernelcore and movablecore is
3610			specified, then kernelcore will be at *least* the
3611			specified value but may be more.  If movablecore on its
3612			own is specified, the administrator must be careful
3613			that the amount of memory usable for all allocations
3614			is not too small.
3615
3616	movable_node	[KNL,EARLY] Boot-time switch to make hotplugable memory
3617			NUMA nodes to be movable. This means that the memory
3618			of such nodes will be usable only for movable
3619			allocations which rules out almost all kernel
3620			allocations. Use with caution!
3621
3622	MTD_Partition=	[MTD]
3623			Format: <name>,<region-number>,<size>,<offset>
3624
3625	MTD_Region=	[MTD] Format:
3626			<name>,<region-number>[,<base>,<size>,<buswidth>,<altbuswidth>]
3627
3628	mtdparts=	[MTD]
3629			See drivers/mtd/parsers/cmdlinepart.c
3630
3631	mtouchusb.raw_coordinates=
3632			[HW] Make the MicroTouch USB driver use raw coordinates
3633			('y', default) or cooked coordinates ('n')
3634
3635	mtrr=debug	[X86,EARLY]
3636			Enable printing debug information related to MTRR
3637			registers at boot time.
3638
3639	mtrr_chunk_size=nn[KMG,X86,EARLY]
3640			used for mtrr cleanup. It is largest continuous chunk
3641			that could hold holes aka. UC entries.
3642
3643	mtrr_gran_size=nn[KMG,X86,EARLY]
3644			Used for mtrr cleanup. It is granularity of mtrr block.
3645			Default is 1.
3646			Large value could prevent small alignment from
3647			using up MTRRs.
3648
3649	mtrr_spare_reg_nr=n [X86,EARLY]
3650			Format: <integer>
3651			Range: 0,7 : spare reg number
3652			Default : 1
3653			Used for mtrr cleanup. It is spare mtrr entries number.
3654			Set to 2 or more if your graphical card needs more.
3655
3656	multitce=off	[PPC]  This parameter disables the use of the pSeries
3657			firmware feature for updating multiple TCE entries
3658			at a time.
3659
3660	n2=		[NET] SDL Inc. RISCom/N2 synchronous serial card
3661
3662	netdev=		[NET] Network devices parameters
3663			Format: <irq>,<io>,<mem_start>,<mem_end>,<name>
3664			Note that mem_start is often overloaded to mean
3665			something different and driver-specific.
3666			This usage is only documented in each driver source
3667			file if at all.
3668
3669	netpoll.carrier_timeout=
3670			[NET] Specifies amount of time (in seconds) that
3671			netpoll should wait for a carrier. By default netpoll
3672			waits 4 seconds.
3673
3674	nf_conntrack.acct=
3675			[NETFILTER] Enable connection tracking flow accounting
3676			0 to disable accounting
3677			1 to enable accounting
3678			Default value is 0.
3679
3680	nfs.cache_getent=
3681			[NFS] sets the pathname to the program which is used
3682			to update the NFS client cache entries.
3683
3684	nfs.cache_getent_timeout=
3685			[NFS] sets the timeout after which an attempt to
3686			update a cache entry is deemed to have failed.
3687
3688	nfs.callback_nr_threads=
3689			[NFSv4] set the total number of threads that the
3690			NFS client will assign to service NFSv4 callback
3691			requests.
3692
3693	nfs.callback_tcpport=
3694			[NFS] set the TCP port on which the NFSv4 callback
3695			channel should listen.
3696
3697	nfs.delay_retrans=
3698			[NFS] specifies the number of times the NFSv4 client
3699			retries the request before returning an EAGAIN error,
3700			after a reply of NFS4ERR_DELAY from the server.
3701			Only applies if the softerr mount option is enabled,
3702			and the specified value is >= 0.
3703
3704	nfs.enable_ino64=
3705			[NFS] enable 64-bit inode numbers.
3706			If zero, the NFS client will fake up a 32-bit inode
3707			number for the readdir() and stat() syscalls instead
3708			of returning the full 64-bit number.
3709			The default is to return 64-bit inode numbers.
3710
3711	nfs.idmap_cache_timeout=
3712			[NFS] set the maximum lifetime for idmapper cache
3713			entries.
3714
3715	nfs.max_session_cb_slots=
3716			[NFSv4.1] Sets the maximum number of session
3717			slots the client will assign to the callback
3718			channel. This determines the maximum number of
3719			callbacks the client will process in parallel for
3720			a particular server.
3721
3722	nfs.max_session_slots=
3723			[NFSv4.1] Sets the maximum number of session slots
3724			the client will attempt to negotiate with the server.
3725			This limits the number of simultaneous RPC requests
3726			that the client can send to the NFSv4.1 server.
3727			Note that there is little point in setting this
3728			value higher than the max_tcp_slot_table_limit.
3729
3730	nfs.nfs4_disable_idmapping=
3731			[NFSv4] When set to the default of '1', this option
3732			ensures that both the RPC level authentication
3733			scheme and the NFS level operations agree to use
3734			numeric uids/gids if the mount is using the
3735			'sec=sys' security flavour. In effect it is
3736			disabling idmapping, which can make migration from
3737			legacy NFSv2/v3 systems to NFSv4 easier.
3738			Servers that do not support this mode of operation
3739			will be autodetected by the client, and it will fall
3740			back to using the idmapper.
3741			To turn off this behaviour, set the value to '0'.
3742
3743	nfs.nfs4_unique_id=
3744			[NFS4] Specify an additional fixed unique ident-
3745			ification string that NFSv4 clients can insert into
3746			their nfs_client_id4 string.  This is typically a
3747			UUID that is generated at system install time.
3748
3749	nfs.recover_lost_locks=
3750			[NFSv4] Attempt to recover locks that were lost due
3751			to a lease timeout on the server. Please note that
3752			doing this risks data corruption, since there are
3753			no guarantees that the file will remain unchanged
3754			after the locks are lost.
3755			If you want to enable the kernel legacy behaviour of
3756			attempting to recover these locks, then set this
3757			parameter to '1'.
3758			The default parameter value of '0' causes the kernel
3759			not to attempt recovery of lost locks.
3760
3761	nfs.send_implementation_id=
3762			[NFSv4.1] Send client implementation identification
3763			information in exchange_id requests.
3764			If zero, no implementation identification information
3765			will be sent.
3766			The default is to send the implementation identification
3767			information.
3768
3769	nfs4.layoutstats_timer=
3770			[NFSv4.2] Change the rate at which the kernel sends
3771			layoutstats to the pNFS metadata server.
3772
3773			Setting this to value to 0 causes the kernel to use
3774			whatever value is the default set by the layout
3775			driver. A non-zero value sets the minimum interval
3776			in seconds between layoutstats transmissions.
3777
3778	nfsd.inter_copy_offload_enable=
3779			[NFSv4.2] When set to 1, the server will support
3780			server-to-server copies for which this server is
3781			the destination of the copy.
3782
3783	nfsd.nfs4_disable_idmapping=
3784			[NFSv4] When set to the default of '1', the NFSv4
3785			server will return only numeric uids and gids to
3786			clients using auth_sys, and will accept numeric uids
3787			and gids from such clients.  This is intended to ease
3788			migration from NFSv2/v3.
3789
3790	nfsd.nfsd4_ssc_umount_timeout=
3791			[NFSv4.2] When used as the destination of a
3792			server-to-server copy, knfsd temporarily mounts
3793			the source server.  It caches the mount in case
3794			it will be needed again, and discards it if not
3795			used for the number of milliseconds specified by
3796			this parameter.
3797
3798	nfsaddrs=	[NFS] Deprecated.  Use ip= instead.
3799			See Documentation/admin-guide/nfs/nfsroot.rst.
3800
3801	nfsroot=	[NFS] nfs root filesystem for disk-less boxes.
3802			See Documentation/admin-guide/nfs/nfsroot.rst.
3803
3804	nfsrootdebug	[NFS] enable nfsroot debugging messages.
3805			See Documentation/admin-guide/nfs/nfsroot.rst.
3806
3807	nmi_backtrace.backtrace_idle [KNL]
3808			Dump stacks even of idle CPUs in response to an
3809			NMI stack-backtrace request.
3810
3811	nmi_debug=	[KNL,SH] Specify one or more actions to take
3812			when a NMI is triggered.
3813			Format: [state][,regs][,debounce][,die]
3814
3815	nmi_watchdog=	[KNL,BUGS=X86] Debugging features for SMP kernels
3816			Format: [panic,][nopanic,][rNNN,][num]
3817			Valid num: 0 or 1
3818			0 - turn hardlockup detector in nmi_watchdog off
3819			1 - turn hardlockup detector in nmi_watchdog on
3820			rNNN - configure the watchdog with raw perf event 0xNNN
3821
3822			When panic is specified, panic when an NMI watchdog
3823			timeout occurs (or 'nopanic' to not panic on an NMI
3824			watchdog, if CONFIG_BOOTPARAM_HARDLOCKUP_PANIC is set)
3825			To disable both hard and soft lockup detectors,
3826			please see 'nowatchdog'.
3827			This is useful when you use a panic=... timeout and
3828			need the box quickly up again.
3829
3830			These settings can be accessed at runtime via
3831			the nmi_watchdog and hardlockup_panic sysctls.
3832
3833	no387		[BUGS=X86-32] Tells the kernel to use the 387 maths
3834			emulation library even if a 387 maths coprocessor
3835			is present.
3836
3837	no4lvl		[RISCV,EARLY] Disable 4-level and 5-level paging modes.
3838			Forces kernel to use 3-level paging instead.
3839
3840	no5lvl		[X86-64,RISCV,EARLY] Disable 5-level paging mode. Forces
3841			kernel to use 4-level paging instead.
3842
3843	noalign		[KNL,ARM]
3844
3845	noapic		[SMP,APIC,EARLY] Tells the kernel to not make use of any
3846			IOAPICs that may be present in the system.
3847
3848	noautogroup	Disable scheduler automatic task group creation.
3849
3850	nocache		[ARM,EARLY]
3851
3852	no_console_suspend
3853			[HW] Never suspend the console
3854			Disable suspending of consoles during suspend and
3855			hibernate operations.  Once disabled, debugging
3856			messages can reach various consoles while the rest
3857			of the system is being put to sleep (ie, while
3858			debugging driver suspend/resume hooks).  This may
3859			not work reliably with all consoles, but is known
3860			to work with serial and VGA consoles.
3861			To facilitate more flexible debugging, we also add
3862			console_suspend, a printk module parameter to control
3863			it. Users could use console_suspend (usually
3864			/sys/module/printk/parameters/console_suspend) to
3865			turn on/off it dynamically.
3866
3867	no_debug_objects
3868			[KNL,EARLY] Disable object debugging
3869
3870	nodsp		[SH] Disable hardware DSP at boot time.
3871
3872	noefi		[EFI,EARLY] Disable EFI runtime services support.
3873
3874	no_entry_flush  [PPC,EARLY] Don't flush the L1-D cache when entering the kernel.
3875
3876	noexec32	[X86-64]
3877			This affects only 32-bit executables.
3878			noexec32=on: enable non-executable mappings (default)
3879				read doesn't imply executable mappings
3880			noexec32=off: disable non-executable mappings
3881				read implies executable mappings
3882
3883	no_file_caps	Tells the kernel not to honor file capabilities.  The
3884			only way then for a file to be executed with privilege
3885			is to be setuid root or executed by root.
3886
3887	nofpu		[MIPS,SH] Disable hardware FPU at boot time.
3888
3889	nofsgsbase	[X86] Disables FSGSBASE instructions.
3890
3891	nofxsr		[BUGS=X86-32] Disables x86 floating point extended
3892			register save and restore. The kernel will only save
3893			legacy floating-point registers on task switch.
3894
3895	no_hash_pointers
3896			[KNL,EARLY]
3897			Force pointers printed to the console or buffers to be
3898			unhashed.  By default, when a pointer is printed via %p
3899			format string, that pointer is "hashed", i.e. obscured
3900			by hashing the pointer value.  This is a security feature
3901			that hides actual kernel addresses from unprivileged
3902			users, but it also makes debugging the kernel more
3903			difficult since unequal pointers can no longer be
3904			compared.  However, if this command-line option is
3905			specified, then all normal pointers will have their true
3906			value printed. This option should only be specified when
3907			debugging the kernel.  Please do not use on production
3908			kernels.
3909
3910	nohibernate	[HIBERNATION] Disable hibernation and resume.
3911
3912	nohlt		[ARM,ARM64,MICROBLAZE,MIPS,PPC,RISCV,SH] Forces the kernel to
3913			busy wait in do_idle() and not use the arch_cpu_idle()
3914			implementation; requires CONFIG_GENERIC_IDLE_POLL_SETUP
3915			to be effective. This is useful on platforms where the
3916			sleep(SH) or wfi(ARM,ARM64) instructions do not work
3917			correctly or when doing power measurements to evaluate
3918			the impact of the sleep instructions. This is also
3919			useful when using JTAG debugger.
3920
3921	nohugeiomap	[KNL,X86,PPC,ARM64,EARLY] Disable kernel huge I/O mappings.
3922
3923	nohugevmalloc	[KNL,X86,PPC,ARM64,EARLY] Disable kernel huge vmalloc mappings.
3924
3925	nohz=		[KNL] Boottime enable/disable dynamic ticks
3926			Valid arguments: on, off
3927			Default: on
3928
3929	nohz_full=	[KNL,BOOT,SMP,ISOL]
3930			The argument is a cpu list, as described above.
3931			In kernels built with CONFIG_NO_HZ_FULL=y, set
3932			the specified list of CPUs whose tick will be stopped
3933			whenever possible. The boot CPU will be forced outside
3934			the range to maintain the timekeeping.  Any CPUs
3935			in this list will have their RCU callbacks offloaded,
3936			just as if they had also been called out in the
3937			rcu_nocbs= boot parameter.
3938
3939			Note that this argument takes precedence over
3940			the CONFIG_RCU_NOCB_CPU_DEFAULT_ALL option.
3941
3942	noinitrd	[RAM] Tells the kernel not to load any configured
3943			initial RAM disk.
3944
3945	nointremap	[X86-64,Intel-IOMMU,EARLY] Do not enable interrupt
3946			remapping.
3947			[Deprecated - use intremap=off]
3948
3949	noinvpcid	[X86,EARLY] Disable the INVPCID cpu feature.
3950
3951	noiotrap	[SH] Disables trapped I/O port accesses.
3952
3953	noirqdebug	[X86-32] Disables the code which attempts to detect and
3954			disable unhandled interrupt sources.
3955
3956	noisapnp	[ISAPNP] Disables ISA PnP code.
3957
3958	nokaslr		[KNL,EARLY]
3959			When CONFIG_RANDOMIZE_BASE is set, this disables
3960			kernel and module base offset ASLR (Address Space
3961			Layout Randomization).
3962
3963	no-kvmapf	[X86,KVM,EARLY] Disable paravirtualized asynchronous page
3964			fault handling.
3965
3966	no-kvmclock	[X86,KVM,EARLY] Disable paravirtualized KVM clock driver
3967
3968	nolapic		[X86-32,APIC,EARLY] Do not enable or use the local APIC.
3969
3970	nolapic_timer	[X86-32,APIC,EARLY] Do not use the local APIC timer.
3971
3972	nomce		[X86-32] Disable Machine Check Exception
3973
3974	nomfgpt		[X86-32] Disable Multi-Function General Purpose
3975			Timer usage (for AMD Geode machines).
3976
3977	nomodeset	Disable kernel modesetting. Most systems' firmware
3978			sets up a display mode and provides framebuffer memory
3979			for output. With nomodeset, DRM and fbdev drivers will
3980			not load if they could possibly displace the pre-
3981			initialized output. Only the system framebuffer will
3982			be available for use. The respective drivers will not
3983			perform display-mode changes or accelerated rendering.
3984
3985			Useful as error fallback, or for testing and debugging.
3986
3987	nomodule	Disable module load
3988
3989	nonmi_ipi	[X86] Disable using NMI IPIs during panic/reboot to
3990			shutdown the other cpus.  Instead use the REBOOT_VECTOR
3991			irq.
3992
3993	nopat		[X86,EARLY] Disable PAT (page attribute table extension of
3994			pagetables) support.
3995
3996	nopcid		[X86-64,EARLY] Disable the PCID cpu feature.
3997
3998	nopku		[X86] Disable Memory Protection Keys CPU feature found
3999			in some Intel CPUs.
4000
4001	nopti		[X86-64,EARLY]
4002			Equivalent to pti=off
4003
4004	nopv=		[X86,XEN,KVM,HYPER_V,VMWARE,EARLY]
4005			Disables the PV optimizations forcing the guest to run
4006			as generic guest with no PV drivers. Currently support
4007			XEN HVM, KVM, HYPER_V and VMWARE guest.
4008
4009	nopvspin	[X86,XEN,KVM,EARLY]
4010			Disables the qspinlock slow path using PV optimizations
4011			which allow the hypervisor to 'idle' the guest on lock
4012			contention.
4013
4014	norandmaps	Don't use address space randomization.  Equivalent to
4015			echo 0 > /proc/sys/kernel/randomize_va_space
4016
4017	noreplace-smp	[X86-32,SMP] Don't replace SMP instructions
4018			with UP alternatives
4019
4020	noresume	[SWSUSP] Disables resume and restores original swap
4021			space.
4022
4023	no-scroll	[VGA] Disables scrollback.
4024			This is required for the Braillex ib80-piezo Braille
4025			reader made by F.H. Papenmeier (Germany).
4026
4027	nosgx		[X86-64,SGX,EARLY] Disables Intel SGX kernel support.
4028
4029	nosmap		[PPC,EARLY]
4030			Disable SMAP (Supervisor Mode Access Prevention)
4031			even if it is supported by processor.
4032
4033	nosmep		[PPC64s,EARLY]
4034			Disable SMEP (Supervisor Mode Execution Prevention)
4035			even if it is supported by processor.
4036
4037	nosmp		[SMP,EARLY] Tells an SMP kernel to act as a UP kernel,
4038			and disable the IO APIC.  legacy for "maxcpus=0".
4039
4040	nosmt		[KNL,MIPS,PPC,S390,EARLY] Disable symmetric multithreading (SMT).
4041			Equivalent to smt=1.
4042
4043			[KNL,X86,PPC] Disable symmetric multithreading (SMT).
4044			nosmt=force: Force disable SMT, cannot be undone
4045				     via the sysfs control file.
4046
4047	nosoftlockup	[KNL] Disable the soft-lockup detector.
4048
4049	nospec_store_bypass_disable
4050			[HW,EARLY] Disable all mitigations for the Speculative
4051			Store Bypass vulnerability
4052
4053	nospectre_bhb	[ARM64,EARLY] Disable all mitigations for Spectre-BHB (branch
4054			history injection) vulnerability. System may allow data leaks
4055			with this option.
4056
4057	nospectre_v1	[X86,PPC,EARLY] Disable mitigations for Spectre Variant 1
4058			(bounds check bypass). With this option data leaks are
4059			possible in the system.
4060
4061	nospectre_v2	[X86,PPC_E500,ARM64,EARLY] Disable all mitigations
4062			for the Spectre variant 2 (indirect branch
4063			prediction) vulnerability. System may allow data
4064			leaks with this option.
4065
4066	no-steal-acc	[X86,PV_OPS,ARM64,PPC/PSERIES,RISCV,LOONGARCH,EARLY]
4067			Disable paravirtualized steal time accounting. steal time
4068			is computed, but won't influence scheduler behaviour
4069
4070	nosync		[HW,M68K] Disables sync negotiation for all devices.
4071
4072	no_timer_check	[X86,APIC] Disables the code which tests for
4073			broken timer IRQ sources.
4074
4075	no_uaccess_flush
4076	                [PPC,EARLY] Don't flush the L1-D cache after accessing user data.
4077
4078	novmcoredd	[KNL,KDUMP]
4079			Disable device dump. Device dump allows drivers to
4080			append dump data to vmcore so you can collect driver
4081			specified debug info.  Drivers can append the data
4082			without any limit and this data is stored in memory,
4083			so this may cause significant memory stress.  Disabling
4084			device dump can help save memory but the driver debug
4085			data will be no longer available.  This parameter
4086			is only available when CONFIG_PROC_VMCORE_DEVICE_DUMP
4087			is set.
4088
4089	no-vmw-sched-clock
4090			[X86,PV_OPS,EARLY] Disable paravirtualized VMware
4091			scheduler clock and use the default one.
4092
4093	nowatchdog	[KNL] Disable both lockup detectors, i.e.
4094			soft-lockup and NMI watchdog (hard-lockup).
4095
4096	nowb		[ARM,EARLY]
4097
4098	nox2apic	[X86-64,APIC,EARLY] Do not enable x2APIC mode.
4099
4100			NOTE: this parameter will be ignored on systems with the
4101			LEGACY_XAPIC_DISABLED bit set in the
4102			IA32_XAPIC_DISABLE_STATUS MSR.
4103
4104	noxsave		[BUGS=X86] Disables x86 extended register state save
4105			and restore using xsave. The kernel will fallback to
4106			enabling legacy floating-point and sse state.
4107
4108	noxsaveopt	[X86] Disables xsaveopt used in saving x86 extended
4109			register states. The kernel will fall back to use
4110			xsave to save the states. By using this parameter,
4111			performance of saving the states is degraded because
4112			xsave doesn't support modified optimization while
4113			xsaveopt supports it on xsaveopt enabled systems.
4114
4115	noxsaves	[X86] Disables xsaves and xrstors used in saving and
4116			restoring x86 extended register state in compacted
4117			form of xsave area. The kernel will fall back to use
4118			xsaveopt and xrstor to save and restore the states
4119			in standard form of xsave area. By using this
4120			parameter, xsave area per process might occupy more
4121			memory on xsaves enabled systems.
4122
4123	nr_cpus=	[SMP,EARLY] Maximum number of processors that an SMP kernel
4124			could support.  nr_cpus=n : n >= 1 limits the kernel to
4125			support 'n' processors. It could be larger than the
4126			number of already plugged CPU during bootup, later in
4127			runtime you can physically add extra cpu until it reaches
4128			n. So during boot up some boot time memory for per-cpu
4129			variables need be pre-allocated for later physical cpu
4130			hot plugging.
4131
4132	nr_uarts=	[SERIAL] maximum number of UARTs to be registered.
4133
4134	numa=off 	[KNL, ARM64, PPC, RISCV, SPARC, X86, EARLY]
4135			Disable NUMA, Only set up a single NUMA node
4136			spanning all memory.
4137
4138	numa_balancing=	[KNL,ARM64,PPC,RISCV,S390,X86] Enable or disable automatic
4139			NUMA balancing.
4140			Allowed values are enable and disable
4141
4142	numa_zonelist_order= [KNL, BOOT] Select zonelist order for NUMA.
4143			'node', 'default' can be specified
4144			This can be set from sysctl after boot.
4145			See Documentation/admin-guide/sysctl/vm.rst for details.
4146
4147	ohci1394_dma=early	[HW,EARLY] enable debugging via the ohci1394 driver.
4148			See Documentation/core-api/debugging-via-ohci1394.rst for more
4149			info.
4150
4151	olpc_ec_timeout= [OLPC] ms delay when issuing EC commands
4152			Rather than timing out after 20 ms if an EC
4153			command is not properly ACKed, override the length
4154			of the timeout.  We have interrupts disabled while
4155			waiting for the ACK, so if this is set too high
4156			interrupts *may* be lost!
4157
4158	omap_mux=	[OMAP] Override bootloader pin multiplexing.
4159			Format: <mux_mode0.mode_name=value>...
4160			For example, to override I2C bus2:
4161			omap_mux=i2c2_scl.i2c2_scl=0x100,i2c2_sda.i2c2_sda=0x100
4162
4163	onenand.bdry=	[HW,MTD] Flex-OneNAND Boundary Configuration
4164
4165			Format: [die0_boundary][,die0_lock][,die1_boundary][,die1_lock]
4166
4167			boundary - index of last SLC block on Flex-OneNAND.
4168				   The remaining blocks are configured as MLC blocks.
4169			lock	 - Configure if Flex-OneNAND boundary should be locked.
4170				   Once locked, the boundary cannot be changed.
4171				   1 indicates lock status, 0 indicates unlock status.
4172
4173	oops=panic	[KNL,EARLY]
4174			Always panic on oopses. Default is to just kill the
4175			process, but there is a small probability of
4176			deadlocking the machine.
4177			This will also cause panics on machine check exceptions.
4178			Useful together with panic=30 to trigger a reboot.
4179
4180	page_alloc.shuffle=
4181			[KNL] Boolean flag to control whether the page allocator
4182			should randomize its free lists. This parameter can be
4183			used to enable/disable page randomization. The state of
4184			the flag can be read from sysfs at:
4185			/sys/module/page_alloc/parameters/shuffle.
4186			This parameter is only available if CONFIG_SHUFFLE_PAGE_ALLOCATOR=y.
4187
4188	page_owner=	[KNL,EARLY] Boot-time page_owner enabling option.
4189			Storage of the information about who allocated
4190			each page is disabled in default. With this switch,
4191			we can turn it on.
4192			on: enable the feature
4193
4194	page_poison=	[KNL,EARLY] Boot-time parameter changing the state of
4195			poisoning on the buddy allocator, available with
4196			CONFIG_PAGE_POISONING=y.
4197			off: turn off poisoning (default)
4198			on: turn on poisoning
4199
4200	page_reporting.page_reporting_order=
4201			[KNL] Minimal page reporting order
4202			Format: <integer>
4203			Adjust the minimal page reporting order. The page
4204			reporting is disabled when it exceeds MAX_PAGE_ORDER.
4205
4206	panic=		[KNL] Kernel behaviour on panic: delay <timeout>
4207			timeout > 0: seconds before rebooting
4208			timeout = 0: wait forever
4209			timeout < 0: reboot immediately
4210			Format: <timeout>
4211
4212	panic_on_taint=	[KNL,EARLY]
4213			Bitmask for conditionally calling panic() in add_taint()
4214			Format: <hex>[,nousertaint]
4215			Hexadecimal bitmask representing the set of TAINT flags
4216			that will cause the kernel to panic when add_taint() is
4217			called with any of the flags in this set.
4218			The optional switch "nousertaint" can be utilized to
4219			prevent userspace forced crashes by writing to sysctl
4220			/proc/sys/kernel/tainted any flagset matching with the
4221			bitmask set on panic_on_taint.
4222			See Documentation/admin-guide/tainted-kernels.rst for
4223			extra details on the taint flags that users can pick
4224			to compose the bitmask to assign to panic_on_taint.
4225
4226	panic_on_warn=1	panic() instead of WARN().  Useful to cause kdump
4227			on a WARN().
4228
4229	panic_print=	Bitmask for printing system info when panic happens.
4230			User can chose combination of the following bits:
4231			bit 0: print all tasks info
4232			bit 1: print system memory info
4233			bit 2: print timer info
4234			bit 3: print locks info if CONFIG_LOCKDEP is on
4235			bit 4: print ftrace buffer
4236			bit 5: print all printk messages in buffer
4237			bit 6: print all CPUs backtrace (if available in the arch)
4238			bit 7: print only tasks in uninterruptible (blocked) state
4239			*Be aware* that this option may print a _lot_ of lines,
4240			so there are risks of losing older messages in the log.
4241			Use this option carefully, maybe worth to setup a
4242			bigger log buffer with "log_buf_len" along with this.
4243
4244	parkbd.port=	[HW] Parallel port number the keyboard adapter is
4245			connected to, default is 0.
4246			Format: <parport#>
4247	parkbd.mode=	[HW] Parallel port keyboard adapter mode of operation,
4248			0 for XT, 1 for AT (default is AT).
4249			Format: <mode>
4250
4251	parport=	[HW,PPT] Specify parallel ports. 0 disables.
4252			Format: { 0 | auto | 0xBBB[,IRQ[,DMA]] }
4253			Use 'auto' to force the driver to use any
4254			IRQ/DMA settings detected (the default is to
4255			ignore detected IRQ/DMA settings because of
4256			possible conflicts). You can specify the base
4257			address, IRQ, and DMA settings; IRQ and DMA
4258			should be numbers, or 'auto' (for using detected
4259			settings on that particular port), or 'nofifo'
4260			(to avoid using a FIFO even if it is detected).
4261			Parallel ports are assigned in the order they
4262			are specified on the command line, starting
4263			with parport0.
4264
4265	parport_init_mode=	[HW,PPT]
4266			Configure VIA parallel port to operate in
4267			a specific mode. This is necessary on Pegasos
4268			computer where firmware has no options for setting
4269			up parallel port mode and sets it to spp.
4270			Currently this function knows 686a and 8231 chips.
4271			Format: [spp|ps2|epp|ecp|ecpepp]
4272
4273	pata_legacy.all=	[HW,LIBATA]
4274			Format: <int>
4275			Set to non-zero to probe primary and secondary ISA
4276			port ranges on PCI systems where no PCI PATA device
4277			has been found at either range.  Disabled by default.
4278
4279	pata_legacy.autospeed=	[HW,LIBATA]
4280			Format: <int>
4281			Set to non-zero if a chip is present that snoops speed
4282			changes.  Disabled by default.
4283
4284	pata_legacy.ht6560a=	[HW,LIBATA]
4285			Format: <int>
4286			Set to 1, 2, or 3 for HT 6560A on the primary channel,
4287			the secondary channel, or both channels respectively.
4288			Disabled by default.
4289
4290	pata_legacy.ht6560b=	[HW,LIBATA]
4291			Format: <int>
4292			Set to 1, 2, or 3 for HT 6560B on the primary channel,
4293			the secondary channel, or both channels respectively.
4294			Disabled by default.
4295
4296	pata_legacy.iordy_mask=	[HW,LIBATA]
4297			Format: <int>
4298			IORDY enable mask.  Set individual bits to allow IORDY
4299			for the respective channel.  Bit 0 is for the first
4300			legacy channel handled by this driver, bit 1 is for
4301			the second channel, and so on.  The sequence will often
4302			correspond to the primary legacy channel, the secondary
4303			legacy channel, and so on, but the handling of a PCI
4304			bus and the use of other driver options may interfere
4305			with the sequence.  By default IORDY is allowed across
4306			all channels.
4307
4308	pata_legacy.opti82c46x=	[HW,LIBATA]
4309			Format: <int>
4310			Set to 1, 2, or 3 for Opti 82c611A on the primary
4311			channel, the secondary channel, or both channels
4312			respectively.  Disabled by default.
4313
4314	pata_legacy.opti82c611a=	[HW,LIBATA]
4315			Format: <int>
4316			Set to 1, 2, or 3 for Opti 82c465MV on the primary
4317			channel, the secondary channel, or both channels
4318			respectively.  Disabled by default.
4319
4320	pata_legacy.pio_mask=	[HW,LIBATA]
4321			Format: <int>
4322			PIO mode mask for autospeed devices.  Set individual
4323			bits to allow the use of the respective PIO modes.
4324			Bit 0 is for mode 0, bit 1 is for mode 1, and so on.
4325			All modes allowed by default.
4326
4327	pata_legacy.probe_all=	[HW,LIBATA]
4328			Format: <int>
4329			Set to non-zero to probe tertiary and further ISA
4330			port ranges on PCI systems.  Disabled by default.
4331
4332	pata_legacy.probe_mask=	[HW,LIBATA]
4333			Format: <int>
4334			Probe mask for legacy ISA PATA ports.  Depending on
4335			platform configuration and the use of other driver
4336			options up to 6 legacy ports are supported: 0x1f0,
4337			0x170, 0x1e8, 0x168, 0x1e0, 0x160, however probing
4338			of individual ports can be disabled by setting the
4339			corresponding bits in the mask to 1.  Bit 0 is for
4340			the first port in the list above (0x1f0), and so on.
4341			By default all supported ports are probed.
4342
4343	pata_legacy.qdi=	[HW,LIBATA]
4344			Format: <int>
4345			Set to non-zero to probe QDI controllers.  By default
4346			set to 1 if CONFIG_PATA_QDI_MODULE, 0 otherwise.
4347
4348	pata_legacy.winbond=	[HW,LIBATA]
4349			Format: <int>
4350			Set to non-zero to probe Winbond controllers.  Use
4351			the standard I/O port (0x130) if 1, otherwise the
4352			value given is the I/O port to use (typically 0x1b0).
4353			By default set to 1 if CONFIG_PATA_WINBOND_VLB_MODULE,
4354			0 otherwise.
4355
4356	pata_platform.pio_mask=	[HW,LIBATA]
4357			Format: <int>
4358			Supported PIO mode mask.  Set individual bits to allow
4359			the use of the respective PIO modes.  Bit 0 is for
4360			mode 0, bit 1 is for mode 1, and so on.  Mode 0 only
4361			allowed by default.
4362
4363	pause_on_oops=<int>
4364			Halt all CPUs after the first oops has been printed for
4365			the specified number of seconds.  This is to be used if
4366			your oopses keep scrolling off the screen.
4367
4368	pcbit=		[HW,ISDN]
4369
4370	pci=option[,option...]	[PCI,EARLY] various PCI subsystem options.
4371
4372				Some options herein operate on a specific device
4373				or a set of devices (<pci_dev>). These are
4374				specified in one of the following formats:
4375
4376				[<domain>:]<bus>:<dev>.<func>[/<dev>.<func>]*
4377				pci:<vendor>:<device>[:<subvendor>:<subdevice>]
4378
4379				Note: the first format specifies a PCI
4380				bus/device/function address which may change
4381				if new hardware is inserted, if motherboard
4382				firmware changes, or due to changes caused
4383				by other kernel parameters. If the
4384				domain is left unspecified, it is
4385				taken to be zero. Optionally, a path
4386				to a device through multiple device/function
4387				addresses can be specified after the base
4388				address (this is more robust against
4389				renumbering issues).  The second format
4390				selects devices using IDs from the
4391				configuration space which may match multiple
4392				devices in the system.
4393
4394		earlydump	dump PCI config space before the kernel
4395				changes anything
4396		off		[X86] don't probe for the PCI bus
4397		bios		[X86-32] force use of PCI BIOS, don't access
4398				the hardware directly. Use this if your machine
4399				has a non-standard PCI host bridge.
4400		nobios		[X86-32] disallow use of PCI BIOS, only direct
4401				hardware access methods are allowed. Use this
4402				if you experience crashes upon bootup and you
4403				suspect they are caused by the BIOS.
4404		conf1		[X86] Force use of PCI Configuration Access
4405				Mechanism 1 (config address in IO port 0xCF8,
4406				data in IO port 0xCFC, both 32-bit).
4407		conf2		[X86] Force use of PCI Configuration Access
4408				Mechanism 2 (IO port 0xCF8 is an 8-bit port for
4409				the function, IO port 0xCFA, also 8-bit, sets
4410				bus number. The config space is then accessed
4411				through ports 0xC000-0xCFFF).
4412				See http://wiki.osdev.org/PCI for more info
4413				on the configuration access mechanisms.
4414		noaer		[PCIE] If the PCIEAER kernel config parameter is
4415				enabled, this kernel boot option can be used to
4416				disable the use of PCIE advanced error reporting.
4417		nodomains	[PCI] Disable support for multiple PCI
4418				root domains (aka PCI segments, in ACPI-speak).
4419		nommconf	[X86] Disable use of MMCONFIG for PCI
4420				Configuration
4421		check_enable_amd_mmconf [X86] check for and enable
4422				properly configured MMIO access to PCI
4423				config space on AMD family 10h CPU
4424		nomsi		[MSI] If the PCI_MSI kernel config parameter is
4425				enabled, this kernel boot option can be used to
4426				disable the use of MSI interrupts system-wide.
4427		noioapicquirk	[APIC] Disable all boot interrupt quirks.
4428				Safety option to keep boot IRQs enabled. This
4429				should never be necessary.
4430		ioapicreroute	[APIC] Enable rerouting of boot IRQs to the
4431				primary IO-APIC for bridges that cannot disable
4432				boot IRQs. This fixes a source of spurious IRQs
4433				when the system masks IRQs.
4434		noioapicreroute	[APIC] Disable workaround that uses the
4435				boot IRQ equivalent of an IRQ that connects to
4436				a chipset where boot IRQs cannot be disabled.
4437				The opposite of ioapicreroute.
4438		biosirq		[X86-32] Use PCI BIOS calls to get the interrupt
4439				routing table. These calls are known to be buggy
4440				on several machines and they hang the machine
4441				when used, but on other computers it's the only
4442				way to get the interrupt routing table. Try
4443				this option if the kernel is unable to allocate
4444				IRQs or discover secondary PCI buses on your
4445				motherboard.
4446		rom		[X86] Assign address space to expansion ROMs.
4447				Use with caution as certain devices share
4448				address decoders between ROMs and other
4449				resources.
4450		norom		[X86] Do not assign address space to
4451				expansion ROMs that do not already have
4452				BIOS assigned address ranges.
4453		nobar		[X86] Do not assign address space to the
4454				BARs that weren't assigned by the BIOS.
4455		irqmask=0xMMMM	[X86] Set a bit mask of IRQs allowed to be
4456				assigned automatically to PCI devices. You can
4457				make the kernel exclude IRQs of your ISA cards
4458				this way.
4459		pirqaddr=0xAAAAA	[X86] Specify the physical address
4460				of the PIRQ table (normally generated
4461				by the BIOS) if it is outside the
4462				F0000h-100000h range.
4463		lastbus=N	[X86] Scan all buses thru bus #N. Can be
4464				useful if the kernel is unable to find your
4465				secondary buses and you want to tell it
4466				explicitly which ones they are.
4467		assign-busses	[X86] Always assign all PCI bus
4468				numbers ourselves, overriding
4469				whatever the firmware may have done.
4470		usepirqmask	[X86] Honor the possible IRQ mask stored
4471				in the BIOS $PIR table. This is needed on
4472				some systems with broken BIOSes, notably
4473				some HP Pavilion N5400 and Omnibook XE3
4474				notebooks. This will have no effect if ACPI
4475				IRQ routing is enabled.
4476		noacpi		[X86] Do not use ACPI for IRQ routing
4477				or for PCI scanning.
4478		use_crs		[X86] Use PCI host bridge window information
4479				from ACPI.  On BIOSes from 2008 or later, this
4480				is enabled by default.  If you need to use this,
4481				please report a bug.
4482		nocrs		[X86] Ignore PCI host bridge windows from ACPI.
4483				If you need to use this, please report a bug.
4484		use_e820	[X86] Use E820 reservations to exclude parts of
4485				PCI host bridge windows. This is a workaround
4486				for BIOS defects in host bridge _CRS methods.
4487				If you need to use this, please report a bug to
4488				<[email protected]>.
4489		no_e820		[X86] Ignore E820 reservations for PCI host
4490				bridge windows. This is the default on modern
4491				hardware. If you need to use this, please report
4492				a bug to <[email protected]>.
4493		routeirq	Do IRQ routing for all PCI devices.
4494				This is normally done in pci_enable_device(),
4495				so this option is a temporary workaround
4496				for broken drivers that don't call it.
4497		skip_isa_align	[X86] do not align io start addr, so can
4498				handle more pci cards
4499		noearly		[X86] Don't do any early type 1 scanning.
4500				This might help on some broken boards which
4501				machine check when some devices' config space
4502				is read. But various workarounds are disabled
4503				and some IOMMU drivers will not work.
4504		bfsort		Sort PCI devices into breadth-first order.
4505				This sorting is done to get a device
4506				order compatible with older (<= 2.4) kernels.
4507		nobfsort	Don't sort PCI devices into breadth-first order.
4508		pcie_bus_tune_off	Disable PCIe MPS (Max Payload Size)
4509				tuning and use the BIOS-configured MPS defaults.
4510		pcie_bus_safe	Set every device's MPS to the largest value
4511				supported by all devices below the root complex.
4512		pcie_bus_perf	Set device MPS to the largest allowable MPS
4513				based on its parent bus. Also set MRRS (Max
4514				Read Request Size) to the largest supported
4515				value (no larger than the MPS that the device
4516				or bus can support) for best performance.
4517		pcie_bus_peer2peer	Set every device's MPS to 128B, which
4518				every device is guaranteed to support. This
4519				configuration allows peer-to-peer DMA between
4520				any pair of devices, possibly at the cost of
4521				reduced performance.  This also guarantees
4522				that hot-added devices will work.
4523		cbiosize=nn[KMG]	The fixed amount of bus space which is
4524				reserved for the CardBus bridge's IO window.
4525				The default value is 256 bytes.
4526		cbmemsize=nn[KMG]	The fixed amount of bus space which is
4527				reserved for the CardBus bridge's memory
4528				window. The default value is 64 megabytes.
4529		resource_alignment=
4530				Format:
4531				[<order of align>@]<pci_dev>[; ...]
4532				Specifies alignment and device to reassign
4533				aligned memory resources. How to
4534				specify the device is described above.
4535				If <order of align> is not specified,
4536				PAGE_SIZE is used as alignment.
4537				A PCI-PCI bridge can be specified if resource
4538				windows need to be expanded.
4539				To specify the alignment for several
4540				instances of a device, the PCI vendor,
4541				device, subvendor, and subdevice may be
4542				specified, e.g., 12@pci:8086:9c22:103c:198f
4543				for 4096-byte alignment.
4544		ecrc=		Enable/disable PCIe ECRC (transaction layer
4545				end-to-end CRC checking). Only effective if
4546				OS has native AER control (either granted by
4547				ACPI _OSC or forced via "pcie_ports=native")
4548				bios: Use BIOS/firmware settings. This is the
4549				the default.
4550				off: Turn ECRC off
4551				on: Turn ECRC on.
4552		hpiosize=nn[KMG]	The fixed amount of bus space which is
4553				reserved for hotplug bridge's IO window.
4554				Default size is 256 bytes.
4555		hpmmiosize=nn[KMG]	The fixed amount of bus space which is
4556				reserved for hotplug bridge's MMIO window.
4557				Default size is 2 megabytes.
4558		hpmmioprefsize=nn[KMG]	The fixed amount of bus space which is
4559				reserved for hotplug bridge's MMIO_PREF window.
4560				Default size is 2 megabytes.
4561		hpmemsize=nn[KMG]	The fixed amount of bus space which is
4562				reserved for hotplug bridge's MMIO and
4563				MMIO_PREF window.
4564				Default size is 2 megabytes.
4565		hpbussize=nn	The minimum amount of additional bus numbers
4566				reserved for buses below a hotplug bridge.
4567				Default is 1.
4568		realloc=	Enable/disable reallocating PCI bridge resources
4569				if allocations done by BIOS are too small to
4570				accommodate resources required by all child
4571				devices.
4572				off: Turn realloc off
4573				on: Turn realloc on
4574		realloc		same as realloc=on
4575		noari		do not use PCIe ARI.
4576		noats		[PCIE, Intel-IOMMU, AMD-IOMMU]
4577				do not use PCIe ATS (and IOMMU device IOTLB).
4578		pcie_scan_all	Scan all possible PCIe devices.  Otherwise we
4579				only look for one device below a PCIe downstream
4580				port.
4581		big_root_window	Try to add a big 64bit memory window to the PCIe
4582				root complex on AMD CPUs. Some GFX hardware
4583				can resize a BAR to allow access to all VRAM.
4584				Adding the window is slightly risky (it may
4585				conflict with unreported devices), so this
4586				taints the kernel.
4587		disable_acs_redir=<pci_dev>[; ...]
4588				Specify one or more PCI devices (in the format
4589				specified above) separated by semicolons.
4590				Each device specified will have the PCI ACS
4591				redirect capabilities forced off which will
4592				allow P2P traffic between devices through
4593				bridges without forcing it upstream. Note:
4594				this removes isolation between devices and
4595				may put more devices in an IOMMU group.
4596		config_acs=
4597				Format:
4598				<ACS flags>@<pci_dev>[; ...]
4599				Specify one or more PCI devices (in the format
4600				specified above) optionally prepended with flags
4601				and separated by semicolons. The respective
4602				capabilities will be enabled, disabled or
4603				unchanged based on what is specified in
4604				flags.
4605
4606				ACS Flags is defined as follows:
4607				  bit-0 : ACS Source Validation
4608				  bit-1 : ACS Translation Blocking
4609				  bit-2 : ACS P2P Request Redirect
4610				  bit-3 : ACS P2P Completion Redirect
4611				  bit-4 : ACS Upstream Forwarding
4612				  bit-5 : ACS P2P Egress Control
4613				  bit-6 : ACS Direct Translated P2P
4614				Each bit can be marked as:
4615				  '0' – force disabled
4616				  '1' – force enabled
4617				  'x' – unchanged
4618				For example,
4619				  pci=config_acs=10x
4620				would configure all devices that support
4621				ACS to enable P2P Request Redirect, disable
4622				Translation Blocking, and leave Source
4623				Validation unchanged from whatever power-up
4624				or firmware set it to.
4625
4626				Note: this may remove isolation between devices
4627				and may put more devices in an IOMMU group.
4628		force_floating	[S390] Force usage of floating interrupts.
4629		nomio		[S390] Do not use MIO instructions.
4630		norid		[S390] ignore the RID field and force use of
4631				one PCI domain per PCI function
4632
4633	pcie_aspm=	[PCIE] Forcibly enable or ignore PCIe Active State Power
4634			Management.
4635		off	Don't touch ASPM configuration at all.  Leave any
4636			configuration done by firmware unchanged.
4637		force	Enable ASPM even on devices that claim not to support it.
4638			WARNING: Forcing ASPM on may cause system lockups.
4639
4640	pcie_ports=	[PCIE] PCIe port services handling:
4641		native	Use native PCIe services (PME, AER, DPC, PCIe hotplug)
4642			even if the platform doesn't give the OS permission to
4643			use them.  This may cause conflicts if the platform
4644			also tries to use these services.
4645		dpc-native	Use native PCIe service for DPC only.  May
4646				cause conflicts if firmware uses AER or DPC.
4647		compat	Disable native PCIe services (PME, AER, DPC, PCIe
4648			hotplug).
4649
4650	pcie_port_pm=	[PCIE] PCIe port power management handling:
4651		off	Disable power management of all PCIe ports
4652		force	Forcibly enable power management of all PCIe ports
4653
4654	pcie_pme=	[PCIE,PM] Native PCIe PME signaling options:
4655		nomsi	Do not use MSI for native PCIe PME signaling (this makes
4656			all PCIe root ports use INTx for all services).
4657
4658	pcmv=		[HW,PCMCIA] BadgePAD 4
4659
4660	pd_ignore_unused
4661			[PM]
4662			Keep all power-domains already enabled by bootloader on,
4663			even if no driver has claimed them. This is useful
4664			for debug and development, but should not be
4665			needed on a platform with proper driver support.
4666
4667	pdcchassis=	[PARISC,HW] Disable/Enable PDC Chassis Status codes at
4668			boot time.
4669			Format: { 0 | 1 }
4670			See arch/parisc/kernel/pdc_chassis.c
4671
4672	percpu_alloc=	[MM,EARLY]
4673			Select which percpu first chunk allocator to use.
4674			Currently supported values are "embed" and "page".
4675			Archs may support subset or none of the	selections.
4676			See comments in mm/percpu.c for details on each
4677			allocator.  This parameter is primarily	for debugging
4678			and performance comparison.
4679
4680	pirq=		[SMP,APIC] Manual mp-table setup
4681			See Documentation/arch/x86/i386/IO-APIC.rst.
4682
4683	plip=		[PPT,NET] Parallel port network link
4684			Format: { parport<nr> | timid | 0 }
4685			See also Documentation/admin-guide/parport.rst.
4686
4687	pmtmr=		[X86] Manual setup of pmtmr I/O Port.
4688			Override pmtimer IOPort with a hex value.
4689			e.g. pmtmr=0x508
4690
4691	pmu_override=	[PPC] Override the PMU.
4692			This option takes over the PMU facility, so it is no
4693			longer usable by perf. Setting this option starts the
4694			PMU counters by setting MMCR0 to 0 (the FC bit is
4695			cleared). If a number is given, then MMCR1 is set to
4696			that number, otherwise (e.g., 'pmu_override=on'), MMCR1
4697			remains 0.
4698
4699	pm_debug_messages	[SUSPEND,KNL]
4700			Enable suspend/resume debug messages during boot up.
4701
4702	pnp.debug=1	[PNP]
4703			Enable PNP debug messages (depends on the
4704			CONFIG_PNP_DEBUG_MESSAGES option).  Change at run-time
4705			via /sys/module/pnp/parameters/debug.  We always show
4706			current resource usage; turning this on also shows
4707			possible settings and some assignment information.
4708
4709	pnpacpi=	[ACPI]
4710			{ off }
4711
4712	pnpbios=	[ISAPNP]
4713			{ on | off | curr | res | no-curr | no-res }
4714
4715	pnp_reserve_irq=
4716			[ISAPNP] Exclude IRQs for the autoconfiguration
4717
4718	pnp_reserve_dma=
4719			[ISAPNP] Exclude DMAs for the autoconfiguration
4720
4721	pnp_reserve_io=	[ISAPNP] Exclude I/O ports for the autoconfiguration
4722			Ranges are in pairs (I/O port base and size).
4723
4724	pnp_reserve_mem=
4725			[ISAPNP] Exclude memory regions for the
4726			autoconfiguration.
4727			Ranges are in pairs (memory base and size).
4728
4729	ports=		[IP_VS_FTP] IPVS ftp helper module
4730			Default is 21.
4731			Up to 8 (IP_VS_APP_MAX_PORTS) ports
4732			may be specified.
4733			Format: <port>,<port>....
4734
4735	possible_cpus=  [SMP,S390,X86]
4736			Format: <unsigned int>
4737			Set the number of possible CPUs, overriding the
4738			regular discovery mechanisms (such as ACPI/FW, etc).
4739
4740	powersave=off	[PPC] This option disables power saving features.
4741			It specifically disables cpuidle and sets the
4742			platform machine description specific power_save
4743			function to NULL. On Idle the CPU just reduces
4744			execution priority.
4745
4746	ppc_strict_facility_enable
4747			[PPC,ENABLE] This option catches any kernel floating point,
4748			Altivec, VSX and SPE outside of regions specifically
4749			allowed (eg kernel_enable_fpu()/kernel_disable_fpu()).
4750			There is some performance impact when enabling this.
4751
4752	ppc_tm=		[PPC,EARLY]
4753			Format: {"off"}
4754			Disable Hardware Transactional Memory
4755
4756	preempt=	[KNL]
4757			Select preemption mode if you have CONFIG_PREEMPT_DYNAMIC
4758			none - Limited to cond_resched() calls
4759			voluntary - Limited to cond_resched() and might_sleep() calls
4760			full - Any section that isn't explicitly preempt disabled
4761			       can be preempted anytime.  Tasks will also yield
4762			       contended spinlocks (if the critical section isn't
4763			       explicitly preempt disabled beyond the lock itself).
4764
4765	print-fatal-signals=
4766			[KNL] debug: print fatal signals
4767
4768			If enabled, warn about various signal handling
4769			related application anomalies: too many signals,
4770			too many POSIX.1 timers, fatal signals causing a
4771			coredump - etc.
4772
4773			If you hit the warning due to signal overflow,
4774			you might want to try "ulimit -i unlimited".
4775
4776			default: off.
4777
4778	printk.always_kmsg_dump=
4779			Trigger kmsg_dump for cases other than kernel oops or
4780			panics
4781			Format: <bool>  (1/Y/y=enable, 0/N/n=disable)
4782			default: disabled
4783
4784	printk.console_no_auto_verbose=
4785			Disable console loglevel raise on oops, panic
4786			or lockdep-detected issues (only if lock debug is on).
4787			With an exception to setups with low baudrate on
4788			serial console, keeping this 0 is a good choice
4789			in order to provide more debug information.
4790			Format: <bool>
4791			default: 0 (auto_verbose is enabled)
4792
4793	printk.devkmsg={on,off,ratelimit}
4794			Control writing to /dev/kmsg.
4795			on - unlimited logging to /dev/kmsg from userspace
4796			off - logging to /dev/kmsg disabled
4797			ratelimit - ratelimit the logging
4798			Default: ratelimit
4799
4800	printk.time=	Show timing data prefixed to each printk message line
4801			Format: <bool>  (1/Y/y=enable, 0/N/n=disable)
4802
4803	processor.max_cstate=	[HW,ACPI]
4804			Limit processor to maximum C-state
4805			max_cstate=9 overrides any DMI blacklist limit.
4806
4807	processor.nocst	[HW,ACPI]
4808			Ignore the _CST method to determine C-states,
4809			instead using the legacy FADT method
4810
4811	profile=	[KNL] Enable kernel profiling via /proc/profile
4812			Format: [<profiletype>,]<number>
4813			Param: <profiletype>: "schedule" or "kvm"
4814				[defaults to kernel profiling]
4815			Param: "schedule" - profile schedule points.
4816			Param: "kvm" - profile VM exits.
4817			Param: <number> - step/bucket size as a power of 2 for
4818				statistical time based profiling.
4819
4820	prompt_ramdisk=	[RAM] [Deprecated]
4821
4822	prot_virt=	[S390] enable hosting protected virtual machines
4823			isolated from the hypervisor (if hardware supports
4824			that). If enabled, the default kernel base address
4825			might be overridden even when Kernel Address Space
4826			Layout Randomization is disabled.
4827			Format: <bool>
4828
4829	psi=		[KNL] Enable or disable pressure stall information
4830			tracking.
4831			Format: <bool>
4832
4833	psmouse.proto=	[HW,MOUSE] Highest PS2 mouse protocol extension to
4834			probe for; one of (bare|imps|exps|lifebook|any).
4835	psmouse.rate=	[HW,MOUSE] Set desired mouse report rate, in reports
4836			per second.
4837	psmouse.resetafter=	[HW,MOUSE]
4838			Try to reset the device after so many bad packets
4839			(0 = never).
4840	psmouse.resolution=
4841			[HW,MOUSE] Set desired mouse resolution, in dpi.
4842	psmouse.smartscroll=
4843			[HW,MOUSE] Controls Logitech smartscroll autorepeat.
4844			0 = disabled, 1 = enabled (default).
4845
4846	pstore.backend=	Specify the name of the pstore backend to use
4847
4848	pti=		[X86-64] Control Page Table Isolation of user and
4849			kernel address spaces.  Disabling this feature
4850			removes hardening, but improves performance of
4851			system calls and interrupts.
4852
4853			on   - unconditionally enable
4854			off  - unconditionally disable
4855			auto - kernel detects whether your CPU model is
4856			       vulnerable to issues that PTI mitigates
4857
4858			Not specifying this option is equivalent to pti=auto.
4859
4860	pty.legacy_count=
4861			[KNL] Number of legacy pty's. Overwrites compiled-in
4862			default number.
4863
4864	quiet		[KNL,EARLY] Disable most log messages
4865
4866	r128=		[HW,DRM]
4867
4868	radix_hcall_invalidate=on  [PPC/PSERIES]
4869			Disable RADIX GTSE feature and use hcall for TLB
4870			invalidate.
4871
4872	raid=		[HW,RAID]
4873			See Documentation/admin-guide/md.rst.
4874
4875	ramdisk_size=	[RAM] Sizes of RAM disks in kilobytes
4876			See Documentation/admin-guide/blockdev/ramdisk.rst.
4877
4878	ramdisk_start=	[RAM] RAM disk image start address
4879
4880	random.trust_cpu=off
4881			[KNL,EARLY] Disable trusting the use of the CPU's
4882			random number generator (if available) to
4883			initialize the kernel's RNG.
4884
4885	random.trust_bootloader=off
4886			[KNL,EARLY] Disable trusting the use of the a seed
4887			passed by the bootloader (if available) to
4888			initialize the kernel's RNG.
4889
4890	randomize_kstack_offset=
4891			[KNL,EARLY] Enable or disable kernel stack offset
4892			randomization, which provides roughly 5 bits of
4893			entropy, frustrating memory corruption attacks
4894			that depend on stack address determinism or
4895			cross-syscall address exposures. This is only
4896			available on architectures that have defined
4897			CONFIG_HAVE_ARCH_RANDOMIZE_KSTACK_OFFSET.
4898			Format: <bool>  (1/Y/y=enable, 0/N/n=disable)
4899			Default is CONFIG_RANDOMIZE_KSTACK_OFFSET_DEFAULT.
4900
4901	ras=option[,option,...]	[KNL] RAS-specific options
4902
4903		cec_disable	[X86]
4904				Disable the Correctable Errors Collector,
4905				see CONFIG_RAS_CEC help text.
4906
4907	rcu_nocbs[=cpu-list]
4908			[KNL] The optional argument is a cpu list,
4909			as described above.
4910
4911			In kernels built with CONFIG_RCU_NOCB_CPU=y,
4912			enable the no-callback CPU mode, which prevents
4913			such CPUs' callbacks from being invoked in
4914			softirq context.  Invocation of such CPUs' RCU
4915			callbacks will instead be offloaded to "rcuox/N"
4916			kthreads created for that purpose, where "x" is
4917			"p" for RCU-preempt, "s" for RCU-sched, and "g"
4918			for the kthreads that mediate grace periods; and
4919			"N" is the CPU number. This reduces OS jitter on
4920			the offloaded CPUs, which can be useful for HPC
4921			and real-time workloads.  It can also improve
4922			energy efficiency for asymmetric multiprocessors.
4923
4924			If a cpulist is passed as an argument, the specified
4925			list of	CPUs is set to no-callback mode from boot.
4926
4927			Otherwise, if the '=' sign and the cpulist
4928			arguments are omitted, no CPU will be set to
4929			no-callback mode from boot but the mode may be
4930			toggled at runtime via cpusets.
4931
4932			Note that this argument takes precedence over
4933			the CONFIG_RCU_NOCB_CPU_DEFAULT_ALL option.
4934
4935	rcu_nocb_poll	[KNL]
4936			Rather than requiring that offloaded CPUs
4937			(specified by rcu_nocbs= above) explicitly
4938			awaken the corresponding "rcuoN" kthreads,
4939			make these kthreads poll for callbacks.
4940			This improves the real-time response for the
4941			offloaded CPUs by relieving them of the need to
4942			wake up the corresponding kthread, but degrades
4943			energy efficiency by requiring that the kthreads
4944			periodically wake up to do the polling.
4945
4946	rcutree.blimit=	[KNL]
4947			Set maximum number of finished RCU callbacks to
4948			process in one batch.
4949
4950	rcutree.do_rcu_barrier=	[KNL]
4951			Request a call to rcu_barrier().  This is
4952			throttled so that userspace tests can safely
4953			hammer on the sysfs variable if they so choose.
4954			If triggered before the RCU grace-period machinery
4955			is fully active, this will error out with EAGAIN.
4956
4957	rcutree.dump_tree=	[KNL]
4958			Dump the structure of the rcu_node combining tree
4959			out at early boot.  This is used for diagnostic
4960			purposes, to verify correct tree setup.
4961
4962	rcutree.gp_cleanup_delay=	[KNL]
4963			Set the number of jiffies to delay each step of
4964			RCU grace-period cleanup.
4965
4966	rcutree.gp_init_delay=	[KNL]
4967			Set the number of jiffies to delay each step of
4968			RCU grace-period initialization.
4969
4970	rcutree.gp_preinit_delay=	[KNL]
4971			Set the number of jiffies to delay each step of
4972			RCU grace-period pre-initialization, that is,
4973			the propagation of recent CPU-hotplug changes up
4974			the rcu_node combining tree.
4975
4976	rcutree.jiffies_till_first_fqs= [KNL]
4977			Set delay from grace-period initialization to
4978			first attempt to force quiescent states.
4979			Units are jiffies, minimum value is zero,
4980			and maximum value is HZ.
4981
4982	rcutree.jiffies_till_next_fqs= [KNL]
4983			Set delay between subsequent attempts to force
4984			quiescent states.  Units are jiffies, minimum
4985			value is one, and maximum value is HZ.
4986
4987	rcutree.jiffies_till_sched_qs= [KNL]
4988			Set required age in jiffies for a
4989			given grace period before RCU starts
4990			soliciting quiescent-state help from
4991			rcu_note_context_switch() and cond_resched().
4992			If not specified, the kernel will calculate
4993			a value based on the most recent settings
4994			of rcutree.jiffies_till_first_fqs
4995			and rcutree.jiffies_till_next_fqs.
4996			This calculated value may be viewed in
4997			rcutree.jiffies_to_sched_qs.  Any attempt to set
4998			rcutree.jiffies_to_sched_qs will be cheerfully
4999			overwritten.
5000
5001	rcutree.kthread_prio= 	 [KNL,BOOT]
5002			Set the SCHED_FIFO priority of the RCU per-CPU
5003			kthreads (rcuc/N). This value is also used for
5004			the priority of the RCU boost threads (rcub/N)
5005			and for the RCU grace-period kthreads (rcu_bh,
5006			rcu_preempt, and rcu_sched). If RCU_BOOST is
5007			set, valid values are 1-99 and the default is 1
5008			(the least-favored priority).  Otherwise, when
5009			RCU_BOOST is not set, valid values are 0-99 and
5010			the default is zero (non-realtime operation).
5011			When RCU_NOCB_CPU is set, also adjust the
5012			priority of NOCB callback kthreads.
5013
5014	rcutree.nocb_nobypass_lim_per_jiffy= [KNL]
5015			On callback-offloaded (rcu_nocbs) CPUs,
5016			RCU reduces the lock contention that would
5017			otherwise be caused by callback floods through
5018			use of the ->nocb_bypass list.	However, in the
5019			common non-flooded case, RCU queues directly to
5020			the main ->cblist in order to avoid the extra
5021			overhead of the ->nocb_bypass list and its lock.
5022			But if there are too many callbacks queued during
5023			a single jiffy, RCU pre-queues the callbacks into
5024			the ->nocb_bypass queue.  The definition of "too
5025			many" is supplied by this kernel boot parameter.
5026
5027	rcutree.nohz_full_patience_delay= [KNL]
5028			On callback-offloaded (rcu_nocbs) CPUs, avoid
5029			disturbing RCU unless the grace period has
5030			reached the specified age in milliseconds.
5031			Defaults to zero.  Large values will be capped
5032			at five seconds.  All values will be rounded down
5033			to the nearest value representable by jiffies.
5034
5035	rcutree.qhimark= [KNL]
5036			Set threshold of queued RCU callbacks beyond which
5037			batch limiting is disabled.
5038
5039	rcutree.qlowmark= [KNL]
5040			Set threshold of queued RCU callbacks below which
5041			batch limiting is re-enabled.
5042
5043	rcutree.qovld= [KNL]
5044			Set threshold of queued RCU callbacks beyond which
5045			RCU's force-quiescent-state scan will aggressively
5046			enlist help from cond_resched() and sched IPIs to
5047			help CPUs more quickly reach quiescent states.
5048			Set to less than zero to make this be set based
5049			on rcutree.qhimark at boot time and to zero to
5050			disable more aggressive help enlistment.
5051
5052	rcutree.rcu_delay_page_cache_fill_msec= [KNL]
5053			Set the page-cache refill delay (in milliseconds)
5054			in response to low-memory conditions.  The range
5055			of permitted values is in the range 0:100000.
5056
5057	rcutree.rcu_divisor= [KNL]
5058			Set the shift-right count to use to compute
5059			the callback-invocation batch limit bl from
5060			the number of callbacks queued on this CPU.
5061			The result will be bounded below by the value of
5062			the rcutree.blimit kernel parameter.  Every bl
5063			callbacks, the softirq handler will exit in
5064			order to allow the CPU to do other work.
5065
5066			Please note that this callback-invocation batch
5067			limit applies only to non-offloaded callback
5068			invocation.  Offloaded callbacks are instead
5069			invoked in the context of an rcuoc kthread, which
5070			scheduler will preempt as it does any other task.
5071
5072	rcutree.rcu_fanout_exact= [KNL]
5073			Disable autobalancing of the rcu_node combining
5074			tree.  This is used by rcutorture, and might
5075			possibly be useful for architectures having high
5076			cache-to-cache transfer latencies.
5077
5078	rcutree.rcu_fanout_leaf= [KNL]
5079			Change the number of CPUs assigned to each
5080			leaf rcu_node structure.  Useful for very
5081			large systems, which will choose the value 64,
5082			and for NUMA systems with large remote-access
5083			latencies, which will choose a value aligned
5084			with the appropriate hardware boundaries.
5085
5086	rcutree.rcu_min_cached_objs= [KNL]
5087			Minimum number of objects which are cached and
5088			maintained per one CPU. Object size is equal
5089			to PAGE_SIZE. The cache allows to reduce the
5090			pressure to page allocator, also it makes the
5091			whole algorithm to behave better in low memory
5092			condition.
5093
5094	rcutree.rcu_nocb_gp_stride= [KNL]
5095			Set the number of NOCB callback kthreads in
5096			each group, which defaults to the square root
5097			of the number of CPUs.	Larger numbers reduce
5098			the wakeup overhead on the global grace-period
5099			kthread, but increases that same overhead on
5100			each group's NOCB grace-period kthread.
5101
5102	rcutree.rcu_kick_kthreads= [KNL]
5103			Cause the grace-period kthread to get an extra
5104			wake_up() if it sleeps three times longer than
5105			it should at force-quiescent-state time.
5106			This wake_up() will be accompanied by a
5107			WARN_ONCE() splat and an ftrace_dump().
5108
5109	rcutree.rcu_resched_ns= [KNL]
5110			Limit the time spend invoking a batch of RCU
5111			callbacks to the specified number of nanoseconds.
5112			By default, this limit is checked only once
5113			every 32 callbacks in order to limit the pain
5114			inflicted by local_clock() overhead.
5115
5116	rcutree.rcu_unlock_delay= [KNL]
5117			In CONFIG_RCU_STRICT_GRACE_PERIOD=y kernels,
5118			this specifies an rcu_read_unlock()-time delay
5119			in microseconds.  This defaults to zero.
5120			Larger delays increase the probability of
5121			catching RCU pointer leaks, that is, buggy use
5122			of RCU-protected pointers after the relevant
5123			rcu_read_unlock() has completed.
5124
5125	rcutree.sysrq_rcu= [KNL]
5126			Commandeer a sysrq key to dump out Tree RCU's
5127			rcu_node tree with an eye towards determining
5128			why a new grace period has not yet started.
5129
5130	rcutree.use_softirq=	[KNL]
5131			If set to zero, move all RCU_SOFTIRQ processing to
5132			per-CPU rcuc kthreads.  Defaults to a non-zero
5133			value, meaning that RCU_SOFTIRQ is used by default.
5134			Specify rcutree.use_softirq=0 to use rcuc kthreads.
5135
5136			But note that CONFIG_PREEMPT_RT=y kernels disable
5137			this kernel boot parameter, forcibly setting it
5138			to zero.
5139
5140	rcutree.enable_rcu_lazy= [KNL]
5141			To save power, batch RCU callbacks and flush after
5142			delay, memory pressure or callback list growing too
5143			big.
5144
5145	rcutree.rcu_normal_wake_from_gp= [KNL]
5146			Reduces a latency of synchronize_rcu() call. This approach
5147			maintains its own track of synchronize_rcu() callers, so it
5148			does not interact with regular callbacks because it does not
5149			use a call_rcu[_hurry]() path. Please note, this is for a
5150			normal grace period.
5151
5152			How to enable it:
5153
5154			echo 1 > /sys/module/rcutree/parameters/rcu_normal_wake_from_gp
5155			or pass a boot parameter "rcutree.rcu_normal_wake_from_gp=1"
5156
5157			Default is 0.
5158
5159	rcuscale.gp_async= [KNL]
5160			Measure performance of asynchronous
5161			grace-period primitives such as call_rcu().
5162
5163	rcuscale.gp_async_max= [KNL]
5164			Specify the maximum number of outstanding
5165			callbacks per writer thread.  When a writer
5166			thread exceeds this limit, it invokes the
5167			corresponding flavor of rcu_barrier() to allow
5168			previously posted callbacks to drain.
5169
5170	rcuscale.gp_exp= [KNL]
5171			Measure performance of expedited synchronous
5172			grace-period primitives.
5173
5174	rcuscale.holdoff= [KNL]
5175			Set test-start holdoff period.  The purpose of
5176			this parameter is to delay the start of the
5177			test until boot completes in order to avoid
5178			interference.
5179
5180	rcuscale.kfree_by_call_rcu= [KNL]
5181			In kernels built with CONFIG_RCU_LAZY=y, test
5182			call_rcu() instead of kfree_rcu().
5183
5184	rcuscale.kfree_mult= [KNL]
5185			Instead of allocating an object of size kfree_obj,
5186			allocate one of kfree_mult * sizeof(kfree_obj).
5187			Defaults to 1.
5188
5189	rcuscale.kfree_rcu_test= [KNL]
5190			Set to measure performance of kfree_rcu() flooding.
5191
5192	rcuscale.kfree_rcu_test_double= [KNL]
5193			Test the double-argument variant of kfree_rcu().
5194			If this parameter has the same value as
5195			rcuscale.kfree_rcu_test_single, both the single-
5196			and double-argument variants are tested.
5197
5198	rcuscale.kfree_rcu_test_single= [KNL]
5199			Test the single-argument variant of kfree_rcu().
5200			If this parameter has the same value as
5201			rcuscale.kfree_rcu_test_double, both the single-
5202			and double-argument variants are tested.
5203
5204	rcuscale.kfree_nthreads= [KNL]
5205			The number of threads running loops of kfree_rcu().
5206
5207	rcuscale.kfree_alloc_num= [KNL]
5208			Number of allocations and frees done in an iteration.
5209
5210	rcuscale.kfree_loops= [KNL]
5211			Number of loops doing rcuscale.kfree_alloc_num number
5212			of allocations and frees.
5213
5214	rcuscale.minruntime= [KNL]
5215			Set the minimum test run time in seconds.  This
5216			does not affect the data-collection interval,
5217			but instead allows better measurement of things
5218			like CPU consumption.
5219
5220	rcuscale.nreaders= [KNL]
5221			Set number of RCU readers.  The value -1 selects
5222			N, where N is the number of CPUs.  A value
5223			"n" less than -1 selects N-n+1, where N is again
5224			the number of CPUs.  For example, -2 selects N
5225			(the number of CPUs), -3 selects N+1, and so on.
5226			A value of "n" less than or equal to -N selects
5227			a single reader.
5228
5229	rcuscale.nwriters= [KNL]
5230			Set number of RCU writers.  The values operate
5231			the same as for rcuscale.nreaders.
5232			N, where N is the number of CPUs
5233
5234	rcuscale.scale_type= [KNL]
5235			Specify the RCU implementation to test.
5236
5237	rcuscale.shutdown= [KNL]
5238			Shut the system down after performance tests
5239			complete.  This is useful for hands-off automated
5240			testing.
5241
5242	rcuscale.verbose= [KNL]
5243			Enable additional printk() statements.
5244
5245	rcuscale.writer_holdoff= [KNL]
5246			Write-side holdoff between grace periods,
5247			in microseconds.  The default of zero says
5248			no holdoff.
5249
5250	rcuscale.writer_holdoff_jiffies= [KNL]
5251			Additional write-side holdoff between grace
5252			periods, but in jiffies.  The default of zero
5253			says no holdoff.
5254
5255	rcutorture.fqs_duration= [KNL]
5256			Set duration of force_quiescent_state bursts
5257			in microseconds.
5258
5259	rcutorture.fqs_holdoff= [KNL]
5260			Set holdoff time within force_quiescent_state bursts
5261			in microseconds.
5262
5263	rcutorture.fqs_stutter= [KNL]
5264			Set wait time between force_quiescent_state bursts
5265			in seconds.
5266
5267	rcutorture.fwd_progress= [KNL]
5268			Specifies the number of kthreads to be used
5269			for  RCU grace-period forward-progress testing
5270			for the types of RCU supporting this notion.
5271			Defaults to 1 kthread, values less than zero or
5272			greater than the number of CPUs cause the number
5273			of CPUs to be used.
5274
5275	rcutorture.fwd_progress_div= [KNL]
5276			Specify the fraction of a CPU-stall-warning
5277			period to do tight-loop forward-progress testing.
5278
5279	rcutorture.fwd_progress_holdoff= [KNL]
5280			Number of seconds to wait between successive
5281			forward-progress tests.
5282
5283	rcutorture.fwd_progress_need_resched= [KNL]
5284			Enclose cond_resched() calls within checks for
5285			need_resched() during tight-loop forward-progress
5286			testing.
5287
5288	rcutorture.gp_cond= [KNL]
5289			Use conditional/asynchronous update-side
5290			primitives, if available.
5291
5292	rcutorture.gp_exp= [KNL]
5293			Use expedited update-side primitives, if available.
5294
5295	rcutorture.gp_normal= [KNL]
5296			Use normal (non-expedited) asynchronous
5297			update-side primitives, if available.
5298
5299	rcutorture.gp_sync= [KNL]
5300			Use normal (non-expedited) synchronous
5301			update-side primitives, if available.  If all
5302			of rcutorture.gp_cond=, rcutorture.gp_exp=,
5303			rcutorture.gp_normal=, and rcutorture.gp_sync=
5304			are zero, rcutorture acts as if is interpreted
5305			they are all non-zero.
5306
5307	rcutorture.irqreader= [KNL]
5308			Run RCU readers from irq handlers, or, more
5309			accurately, from a timer handler.  Not all RCU
5310			flavors take kindly to this sort of thing.
5311
5312	rcutorture.leakpointer= [KNL]
5313			Leak an RCU-protected pointer out of the reader.
5314			This can of course result in splats, and is
5315			intended to test the ability of things like
5316			CONFIG_RCU_STRICT_GRACE_PERIOD=y to detect
5317			such leaks.
5318
5319	rcutorture.n_barrier_cbs= [KNL]
5320			Set callbacks/threads for rcu_barrier() testing.
5321
5322	rcutorture.nfakewriters= [KNL]
5323			Set number of concurrent RCU writers.  These just
5324			stress RCU, they don't participate in the actual
5325			test, hence the "fake".
5326
5327	rcutorture.nocbs_nthreads= [KNL]
5328			Set number of RCU callback-offload togglers.
5329			Zero (the default) disables toggling.
5330
5331	rcutorture.nocbs_toggle= [KNL]
5332			Set the delay in milliseconds between successive
5333			callback-offload toggling attempts.
5334
5335	rcutorture.nreaders= [KNL]
5336			Set number of RCU readers.  The value -1 selects
5337			N-1, where N is the number of CPUs.  A value
5338			"n" less than -1 selects N-n-2, where N is again
5339			the number of CPUs.  For example, -2 selects N
5340			(the number of CPUs), -3 selects N+1, and so on.
5341
5342	rcutorture.object_debug= [KNL]
5343			Enable debug-object double-call_rcu() testing.
5344
5345	rcutorture.onoff_holdoff= [KNL]
5346			Set time (s) after boot for CPU-hotplug testing.
5347
5348	rcutorture.onoff_interval= [KNL]
5349			Set time (jiffies) between CPU-hotplug operations,
5350			or zero to disable CPU-hotplug testing.
5351
5352	rcutorture.read_exit= [KNL]
5353			Set the number of read-then-exit kthreads used
5354			to test the interaction of RCU updaters and
5355			task-exit processing.
5356
5357	rcutorture.read_exit_burst= [KNL]
5358			The number of times in a given read-then-exit
5359			episode that a set of read-then-exit kthreads
5360			is spawned.
5361
5362	rcutorture.read_exit_delay= [KNL]
5363			The delay, in seconds, between successive
5364			read-then-exit testing episodes.
5365
5366	rcutorture.shuffle_interval= [KNL]
5367			Set task-shuffle interval (s).  Shuffling tasks
5368			allows some CPUs to go into dyntick-idle mode
5369			during the rcutorture test.
5370
5371	rcutorture.shutdown_secs= [KNL]
5372			Set time (s) after boot system shutdown.  This
5373			is useful for hands-off automated testing.
5374
5375	rcutorture.stall_cpu= [KNL]
5376			Duration of CPU stall (s) to test RCU CPU stall
5377			warnings, zero to disable.
5378
5379	rcutorture.stall_cpu_block= [KNL]
5380			Sleep while stalling if set.  This will result
5381			in warnings from preemptible RCU in addition to
5382			any other stall-related activity.  Note that
5383			in kernels built with CONFIG_PREEMPTION=n and
5384			CONFIG_PREEMPT_COUNT=y, this parameter will
5385			cause the CPU to pass through a quiescent state.
5386			Given CONFIG_PREEMPTION=n, this will suppress
5387			RCU CPU stall warnings, but will instead result
5388			in scheduling-while-atomic splats.
5389
5390			Use of this module parameter results in splats.
5391
5392
5393	rcutorture.stall_cpu_holdoff= [KNL]
5394			Time to wait (s) after boot before inducing stall.
5395
5396	rcutorture.stall_cpu_irqsoff= [KNL]
5397			Disable interrupts while stalling if set.
5398
5399	rcutorture.stall_gp_kthread= [KNL]
5400			Duration (s) of forced sleep within RCU
5401			grace-period kthread to test RCU CPU stall
5402			warnings, zero to disable.  If both stall_cpu
5403			and stall_gp_kthread are specified, the
5404			kthread is starved first, then the CPU.
5405
5406	rcutorture.stat_interval= [KNL]
5407			Time (s) between statistics printk()s.
5408
5409	rcutorture.stutter= [KNL]
5410			Time (s) to stutter testing, for example, specifying
5411			five seconds causes the test to run for five seconds,
5412			wait for five seconds, and so on.  This tests RCU's
5413			ability to transition abruptly to and from idle.
5414
5415	rcutorture.test_boost= [KNL]
5416			Test RCU priority boosting?  0=no, 1=maybe, 2=yes.
5417			"Maybe" means test if the RCU implementation
5418			under test support RCU priority boosting.
5419
5420	rcutorture.test_boost_duration= [KNL]
5421			Duration (s) of each individual boost test.
5422
5423	rcutorture.test_boost_interval= [KNL]
5424			Interval (s) between each boost test.
5425
5426	rcutorture.test_no_idle_hz= [KNL]
5427			Test RCU's dyntick-idle handling.  See also the
5428			rcutorture.shuffle_interval parameter.
5429
5430	rcutorture.torture_type= [KNL]
5431			Specify the RCU implementation to test.
5432
5433	rcutorture.verbose= [KNL]
5434			Enable additional printk() statements.
5435
5436	rcupdate.rcu_cpu_stall_ftrace_dump= [KNL]
5437			Dump ftrace buffer after reporting RCU CPU
5438			stall warning.
5439
5440	rcupdate.rcu_cpu_stall_notifiers= [KNL]
5441			Provide RCU CPU stall notifiers, but see the
5442			warnings in the RCU_CPU_STALL_NOTIFIER Kconfig
5443			option's help text.  TL;DR:  You almost certainly
5444			do not want rcupdate.rcu_cpu_stall_notifiers.
5445
5446	rcupdate.rcu_cpu_stall_suppress= [KNL]
5447			Suppress RCU CPU stall warning messages.
5448
5449	rcupdate.rcu_cpu_stall_suppress_at_boot= [KNL]
5450			Suppress RCU CPU stall warning messages and
5451			rcutorture writer stall warnings that occur
5452			during early boot, that is, during the time
5453			before the init task is spawned.
5454
5455	rcupdate.rcu_cpu_stall_timeout= [KNL]
5456			Set timeout for RCU CPU stall warning messages.
5457			The value is in seconds and the maximum allowed
5458			value is 300 seconds.
5459
5460	rcupdate.rcu_exp_cpu_stall_timeout= [KNL]
5461			Set timeout for expedited RCU CPU stall warning
5462			messages.  The value is in milliseconds
5463			and the maximum allowed value is 21000
5464			milliseconds. Please note that this value is
5465			adjusted to an arch timer tick resolution.
5466			Setting this to zero causes the value from
5467			rcupdate.rcu_cpu_stall_timeout to be used (after
5468			conversion from seconds to milliseconds).
5469
5470	rcupdate.rcu_cpu_stall_cputime= [KNL]
5471			Provide statistics on the cputime and count of
5472			interrupts and tasks during the sampling period. For
5473			multiple continuous RCU stalls, all sampling periods
5474			begin at half of the first RCU stall timeout.
5475
5476	rcupdate.rcu_exp_stall_task_details= [KNL]
5477			Print stack dumps of any tasks blocking the
5478			current expedited RCU grace period during an
5479			expedited RCU CPU stall warning.
5480
5481	rcupdate.rcu_expedited= [KNL]
5482			Use expedited grace-period primitives, for
5483			example, synchronize_rcu_expedited() instead
5484			of synchronize_rcu().  This reduces latency,
5485			but can increase CPU utilization, degrade
5486			real-time latency, and degrade energy efficiency.
5487			No effect on CONFIG_TINY_RCU kernels.
5488
5489	rcupdate.rcu_normal= [KNL]
5490			Use only normal grace-period primitives,
5491			for example, synchronize_rcu() instead of
5492			synchronize_rcu_expedited().  This improves
5493			real-time latency, CPU utilization, and
5494			energy efficiency, but can expose users to
5495			increased grace-period latency.  This parameter
5496			overrides rcupdate.rcu_expedited.  No effect on
5497			CONFIG_TINY_RCU kernels.
5498
5499	rcupdate.rcu_normal_after_boot= [KNL]
5500			Once boot has completed (that is, after
5501			rcu_end_inkernel_boot() has been invoked), use
5502			only normal grace-period primitives.  No effect
5503			on CONFIG_TINY_RCU kernels.
5504
5505			But note that CONFIG_PREEMPT_RT=y kernels enables
5506			this kernel boot parameter, forcibly setting
5507			it to the value one, that is, converting any
5508			post-boot attempt at an expedited RCU grace
5509			period to instead use normal non-expedited
5510			grace-period processing.
5511
5512	rcupdate.rcu_task_collapse_lim= [KNL]
5513			Set the maximum number of callbacks present
5514			at the beginning of a grace period that allows
5515			the RCU Tasks flavors to collapse back to using
5516			a single callback queue.  This switching only
5517			occurs when rcupdate.rcu_task_enqueue_lim is
5518			set to the default value of -1.
5519
5520	rcupdate.rcu_task_contend_lim= [KNL]
5521			Set the minimum number of callback-queuing-time
5522			lock-contention events per jiffy required to
5523			cause the RCU Tasks flavors to switch to per-CPU
5524			callback queuing.  This switching only occurs
5525			when rcupdate.rcu_task_enqueue_lim is set to
5526			the default value of -1.
5527
5528	rcupdate.rcu_task_enqueue_lim= [KNL]
5529			Set the number of callback queues to use for the
5530			RCU Tasks family of RCU flavors.  The default
5531			of -1 allows this to be automatically (and
5532			dynamically) adjusted.	This parameter is intended
5533			for use in testing.
5534
5535	rcupdate.rcu_task_ipi_delay= [KNL]
5536			Set time in jiffies during which RCU tasks will
5537			avoid sending IPIs, starting with the beginning
5538			of a given grace period.  Setting a large
5539			number avoids disturbing real-time workloads,
5540			but lengthens grace periods.
5541
5542	rcupdate.rcu_task_lazy_lim= [KNL]
5543			Number of callbacks on a given CPU that will
5544			cancel laziness on that CPU.  Use -1 to disable
5545			cancellation of laziness, but be advised that
5546			doing so increases the danger of OOM due to
5547			callback flooding.
5548
5549	rcupdate.rcu_task_stall_info= [KNL]
5550			Set initial timeout in jiffies for RCU task stall
5551			informational messages, which give some indication
5552			of the problem for those not patient enough to
5553			wait for ten minutes.  Informational messages are
5554			only printed prior to the stall-warning message
5555			for a given grace period. Disable with a value
5556			less than or equal to zero.  Defaults to ten
5557			seconds.  A change in value does not take effect
5558			until the beginning of the next grace period.
5559
5560	rcupdate.rcu_task_stall_info_mult= [KNL]
5561			Multiplier for time interval between successive
5562			RCU task stall informational messages for a given
5563			RCU tasks grace period.  This value is clamped
5564			to one through ten, inclusive.	It defaults to
5565			the value three, so that the first informational
5566			message is printed 10 seconds into the grace
5567			period, the second at 40 seconds, the third at
5568			160 seconds, and then the stall warning at 600
5569			seconds would prevent a fourth at 640 seconds.
5570
5571	rcupdate.rcu_task_stall_timeout= [KNL]
5572			Set timeout in jiffies for RCU task stall
5573			warning messages.  Disable with a value less
5574			than or equal to zero.	Defaults to ten minutes.
5575			A change in value does not take effect until
5576			the beginning of the next grace period.
5577
5578	rcupdate.rcu_tasks_lazy_ms= [KNL]
5579			Set timeout in milliseconds RCU Tasks asynchronous
5580			callback batching for call_rcu_tasks().
5581			A negative value will take the default.  A value
5582			of zero will disable batching.	Batching is
5583			always disabled for synchronize_rcu_tasks().
5584
5585	rcupdate.rcu_tasks_rude_lazy_ms= [KNL]
5586			Set timeout in milliseconds RCU Tasks
5587			Rude asynchronous callback batching for
5588			call_rcu_tasks_rude().	A negative value
5589			will take the default.	A value of zero will
5590			disable batching.  Batching is always disabled
5591			for synchronize_rcu_tasks_rude().
5592
5593	rcupdate.rcu_tasks_trace_lazy_ms= [KNL]
5594			Set timeout in milliseconds RCU Tasks
5595			Trace asynchronous callback batching for
5596			call_rcu_tasks_trace().  A negative value
5597			will take the default.	A value of zero will
5598			disable batching.  Batching is always disabled
5599			for synchronize_rcu_tasks_trace().
5600
5601	rcupdate.rcu_self_test= [KNL]
5602			Run the RCU early boot self tests
5603
5604	rdinit=		[KNL]
5605			Format: <full_path>
5606			Run specified binary instead of /init from the ramdisk,
5607			used for early userspace startup. See initrd.
5608
5609	rdrand=		[X86,EARLY]
5610			force - Override the decision by the kernel to hide the
5611				advertisement of RDRAND support (this affects
5612				certain AMD processors because of buggy BIOS
5613				support, specifically around the suspend/resume
5614				path).
5615
5616	rdt=		[HW,X86,RDT]
5617			Turn on/off individual RDT features. List is:
5618			cmt, mbmtotal, mbmlocal, l3cat, l3cdp, l2cat, l2cdp,
5619			mba, smba, bmec.
5620			E.g. to turn on cmt and turn off mba use:
5621				rdt=cmt,!mba
5622
5623	reboot=		[KNL]
5624			Format (x86 or x86_64):
5625				[w[arm] | c[old] | h[ard] | s[oft] | g[pio]] | d[efault] \
5626				[[,]s[mp]#### \
5627				[[,]b[ios] | a[cpi] | k[bd] | t[riple] | e[fi] | p[ci]] \
5628				[[,]f[orce]
5629			Where reboot_mode is one of warm (soft) or cold (hard) or gpio
5630					(prefix with 'panic_' to set mode for panic
5631					reboot only),
5632			      reboot_type is one of bios, acpi, kbd, triple, efi, or pci,
5633			      reboot_force is either force or not specified,
5634			      reboot_cpu is s[mp]#### with #### being the processor
5635					to be used for rebooting.
5636
5637	refscale.holdoff= [KNL]
5638			Set test-start holdoff period.  The purpose of
5639			this parameter is to delay the start of the
5640			test until boot completes in order to avoid
5641			interference.
5642
5643	refscale.lookup_instances= [KNL]
5644			Number of data elements to use for the forms of
5645			SLAB_TYPESAFE_BY_RCU testing.  A negative number
5646			is negated and multiplied by nr_cpu_ids, while
5647			zero specifies nr_cpu_ids.
5648
5649	refscale.loops= [KNL]
5650			Set the number of loops over the synchronization
5651			primitive under test.  Increasing this number
5652			reduces noise due to loop start/end overhead,
5653			but the default has already reduced the per-pass
5654			noise to a handful of picoseconds on ca. 2020
5655			x86 laptops.
5656
5657	refscale.nreaders= [KNL]
5658			Set number of readers.  The default value of -1
5659			selects N, where N is roughly 75% of the number
5660			of CPUs.  A value of zero is an interesting choice.
5661
5662	refscale.nruns= [KNL]
5663			Set number of runs, each of which is dumped onto
5664			the console log.
5665
5666	refscale.readdelay= [KNL]
5667			Set the read-side critical-section duration,
5668			measured in microseconds.
5669
5670	refscale.scale_type= [KNL]
5671			Specify the read-protection implementation to test.
5672
5673	refscale.shutdown= [KNL]
5674			Shut down the system at the end of the performance
5675			test.  This defaults to 1 (shut it down) when
5676			refscale is built into the kernel and to 0 (leave
5677			it running) when refscale is built as a module.
5678
5679	refscale.verbose= [KNL]
5680			Enable additional printk() statements.
5681
5682	refscale.verbose_batched= [KNL]
5683			Batch the additional printk() statements.  If zero
5684			(the default) or negative, print everything.  Otherwise,
5685			print every Nth verbose statement, where N is the value
5686			specified.
5687
5688	regulator_ignore_unused
5689			[REGULATOR]
5690			Prevents regulator framework from disabling regulators
5691			that are unused, due no driver claiming them. This may
5692			be useful for debug and development, but should not be
5693			needed on a platform with proper driver support.
5694
5695	relax_domain_level=
5696			[KNL, SMP] Set scheduler's default relax_domain_level.
5697			See Documentation/admin-guide/cgroup-v1/cpusets.rst.
5698
5699	reserve=	[KNL,BUGS] Force kernel to ignore I/O ports or memory
5700			Format: <base1>,<size1>[,<base2>,<size2>,...]
5701			Reserve I/O ports or memory so the kernel won't use
5702			them.  If <base> is less than 0x10000, the region
5703			is assumed to be I/O ports; otherwise it is memory.
5704
5705	reserve_mem=	[RAM]
5706			Format: nn[KNG]:<align>:<label>
5707			Reserve physical memory and label it with a name that
5708			other subsystems can use to access it. This is typically
5709			used for systems that do not wipe the RAM, and this command
5710			line will try to reserve the same physical memory on
5711			soft reboots. Note, it is not guaranteed to be the same
5712			location. For example, if anything about the system changes
5713			or if booting a different kernel. It can also fail if KASLR
5714			places the kernel at the location of where the RAM reservation
5715			was from a previous boot, the new reservation will be at a
5716			different location.
5717			Any subsystem using this feature must add a way to verify
5718			that the contents of the physical memory is from a previous
5719			boot, as there may be cases where the memory will not be
5720			located at the same location.
5721
5722			The format is size:align:label for example, to request
5723			12 megabytes of 4096 alignment for ramoops:
5724
5725			reserve_mem=12M:4096:oops ramoops.mem_name=oops
5726
5727	reservetop=	[X86-32,EARLY]
5728			Format: nn[KMG]
5729			Reserves a hole at the top of the kernel virtual
5730			address space.
5731
5732	reset_devices	[KNL] Force drivers to reset the underlying device
5733			during initialization.
5734
5735	resume=		[SWSUSP]
5736			Specify the partition device for software suspend
5737			Format:
5738			{/dev/<dev> | PARTUUID=<uuid> | <int>:<int> | <hex>}
5739
5740	resume_offset=	[SWSUSP]
5741			Specify the offset from the beginning of the partition
5742			given by "resume=" at which the swap header is located,
5743			in <PAGE_SIZE> units (needed only for swap files).
5744			See  Documentation/power/swsusp-and-swap-files.rst
5745
5746	resumedelay=	[HIBERNATION] Delay (in seconds) to pause before attempting to
5747			read the resume files
5748
5749	resumewait	[HIBERNATION] Wait (indefinitely) for resume device to show up.
5750			Useful for devices that are detected asynchronously
5751			(e.g. USB and MMC devices).
5752
5753	retain_initrd	[RAM] Keep initrd memory after extraction. After boot, it will
5754			be accessible via /sys/firmware/initrd.
5755
5756	retbleed=	[X86] Control mitigation of RETBleed (Arbitrary
5757			Speculative Code Execution with Return Instructions)
5758			vulnerability.
5759
5760			AMD-based UNRET and IBPB mitigations alone do not stop
5761			sibling threads from influencing the predictions of other
5762			sibling threads. For that reason, STIBP is used on pro-
5763			cessors that support it, and mitigate SMT on processors
5764			that don't.
5765
5766			off          - no mitigation
5767			auto         - automatically select a migitation
5768			auto,nosmt   - automatically select a mitigation,
5769				       disabling SMT if necessary for
5770				       the full mitigation (only on Zen1
5771				       and older without STIBP).
5772			ibpb         - On AMD, mitigate short speculation
5773				       windows on basic block boundaries too.
5774				       Safe, highest perf impact. It also
5775				       enables STIBP if present. Not suitable
5776				       on Intel.
5777			ibpb,nosmt   - Like "ibpb" above but will disable SMT
5778				       when STIBP is not available. This is
5779				       the alternative for systems which do not
5780				       have STIBP.
5781			unret        - Force enable untrained return thunks,
5782				       only effective on AMD f15h-f17h based
5783				       systems.
5784			unret,nosmt  - Like unret, but will disable SMT when STIBP
5785				       is not available. This is the alternative for
5786				       systems which do not have STIBP.
5787
5788			Selecting 'auto' will choose a mitigation method at run
5789			time according to the CPU.
5790
5791			Not specifying this option is equivalent to retbleed=auto.
5792
5793	rfkill.default_state=
5794		0	"airplane mode".  All wifi, bluetooth, wimax, gps, fm,
5795			etc. communication is blocked by default.
5796		1	Unblocked.
5797
5798	rfkill.master_switch_mode=
5799		0	The "airplane mode" button does nothing.
5800		1	The "airplane mode" button toggles between everything
5801			blocked and the previous configuration.
5802		2	The "airplane mode" button toggles between everything
5803			blocked and everything unblocked.
5804
5805	ring3mwait=disable
5806			[KNL] Disable ring 3 MONITOR/MWAIT feature on supported
5807			CPUs.
5808
5809	riscv_isa_fallback [RISCV,EARLY]
5810			When CONFIG_RISCV_ISA_FALLBACK is not enabled, permit
5811			falling back to detecting extension support by parsing
5812			"riscv,isa" property on devicetree systems when the
5813			replacement properties are not found. See the Kconfig
5814			entry for RISCV_ISA_FALLBACK.
5815
5816	ro		[KNL] Mount root device read-only on boot
5817
5818	rodata=		[KNL,EARLY]
5819		on	Mark read-only kernel memory as read-only (default).
5820		off	Leave read-only kernel memory writable for debugging.
5821		full	Mark read-only kernel memory and aliases as read-only
5822		        [arm64]
5823
5824	rockchip.usb_uart
5825			[EARLY]
5826			Enable the uart passthrough on the designated usb port
5827			on Rockchip SoCs. When active, the signals of the
5828			debug-uart get routed to the D+ and D- pins of the usb
5829			port and the regular usb controller gets disabled.
5830
5831	root=		[KNL] Root filesystem
5832			Usually this a a block device specifier of some kind,
5833			see the early_lookup_bdev comment in
5834			block/early-lookup.c for details.
5835			Alternatively this can be "ram" for the legacy initial
5836			ramdisk, "nfs" and "cifs" for root on a network file
5837			system, or "mtd" and "ubi" for mounting from raw flash.
5838
5839	rootdelay=	[KNL] Delay (in seconds) to pause before attempting to
5840			mount the root filesystem
5841
5842	rootflags=	[KNL] Set root filesystem mount option string
5843
5844	rootfstype=	[KNL] Set root filesystem type
5845
5846	rootwait	[KNL] Wait (indefinitely) for root device to show up.
5847			Useful for devices that are detected asynchronously
5848			(e.g. USB and MMC devices).
5849
5850	rootwait=	[KNL] Maximum time (in seconds) to wait for root device
5851			to show up before attempting to mount the root
5852			filesystem.
5853
5854	rproc_mem=nn[KMG][@address]
5855			[KNL,ARM,CMA] Remoteproc physical memory block.
5856			Memory area to be used by remote processor image,
5857			managed by CMA.
5858
5859	rw		[KNL] Mount root device read-write on boot
5860
5861	S		[KNL] Run init in single mode
5862
5863	s390_iommu=	[HW,S390]
5864			Set s390 IOTLB flushing mode
5865		strict
5866			With strict flushing every unmap operation will result
5867			in an IOTLB flush. Default is lazy flushing before
5868			reuse, which is faster. Deprecated, equivalent to
5869			iommu.strict=1.
5870
5871	s390_iommu_aperture=	[KNL,S390]
5872			Specifies the size of the per device DMA address space
5873			accessible through the DMA and IOMMU APIs as a decimal
5874			factor of the size of main memory.
5875			The default is 1 meaning that one can concurrently use
5876			as many DMA addresses as physical memory is installed,
5877			if supported by hardware, and thus map all of memory
5878			once. With a value of 2 one can map all of memory twice
5879			and so on. As a special case a factor of 0 imposes no
5880			restrictions other than those given by hardware at the
5881			cost of significant additional memory use for tables.
5882
5883	sa1100ir	[NET]
5884			See drivers/net/irda/sa1100_ir.c.
5885
5886	sched_verbose	[KNL,EARLY] Enables verbose scheduler debug messages.
5887
5888	schedstats=	[KNL,X86] Enable or disable scheduled statistics.
5889			Allowed values are enable and disable. This feature
5890			incurs a small amount of overhead in the scheduler
5891			but is useful for debugging and performance tuning.
5892
5893	sched_thermal_decay_shift=
5894			[Deprecated]
5895			[KNL, SMP] Set a decay shift for scheduler thermal
5896			pressure signal. Thermal pressure signal follows the
5897			default decay period of other scheduler pelt
5898			signals(usually 32 ms but configurable). Setting
5899			sched_thermal_decay_shift will left shift the decay
5900			period for the thermal pressure signal by the shift
5901			value.
5902			i.e. with the default pelt decay period of 32 ms
5903			sched_thermal_decay_shift   thermal pressure decay pr
5904				1			64 ms
5905				2			128 ms
5906			and so on.
5907			Format: integer between 0 and 10
5908			Default is 0.
5909
5910	scftorture.holdoff= [KNL]
5911			Number of seconds to hold off before starting
5912			test.  Defaults to zero for module insertion and
5913			to 10 seconds for built-in smp_call_function()
5914			tests.
5915
5916	scftorture.longwait= [KNL]
5917			Request ridiculously long waits randomly selected
5918			up to the chosen limit in seconds.  Zero (the
5919			default) disables this feature.  Please note
5920			that requesting even small non-zero numbers of
5921			seconds can result in RCU CPU stall warnings,
5922			softlockup complaints, and so on.
5923
5924	scftorture.nthreads= [KNL]
5925			Number of kthreads to spawn to invoke the
5926			smp_call_function() family of functions.
5927			The default of -1 specifies a number of kthreads
5928			equal to the number of CPUs.
5929
5930	scftorture.onoff_holdoff= [KNL]
5931			Number seconds to wait after the start of the
5932			test before initiating CPU-hotplug operations.
5933
5934	scftorture.onoff_interval= [KNL]
5935			Number seconds to wait between successive
5936			CPU-hotplug operations.  Specifying zero (which
5937			is the default) disables CPU-hotplug operations.
5938
5939	scftorture.shutdown_secs= [KNL]
5940			The number of seconds following the start of the
5941			test after which to shut down the system.  The
5942			default of zero avoids shutting down the system.
5943			Non-zero values are useful for automated tests.
5944
5945	scftorture.stat_interval= [KNL]
5946			The number of seconds between outputting the
5947			current test statistics to the console.  A value
5948			of zero disables statistics output.
5949
5950	scftorture.stutter_cpus= [KNL]
5951			The number of jiffies to wait between each change
5952			to the set of CPUs under test.
5953
5954	scftorture.use_cpus_read_lock= [KNL]
5955			Use use_cpus_read_lock() instead of the default
5956			preempt_disable() to disable CPU hotplug
5957			while invoking one of the smp_call_function*()
5958			functions.
5959
5960	scftorture.verbose= [KNL]
5961			Enable additional printk() statements.
5962
5963	scftorture.weight_single= [KNL]
5964			The probability weighting to use for the
5965			smp_call_function_single() function with a zero
5966			"wait" parameter.  A value of -1 selects the
5967			default if all other weights are -1.  However,
5968			if at least one weight has some other value, a
5969			value of -1 will instead select a weight of zero.
5970
5971	scftorture.weight_single_wait= [KNL]
5972			The probability weighting to use for the
5973			smp_call_function_single() function with a
5974			non-zero "wait" parameter.  See weight_single.
5975
5976	scftorture.weight_many= [KNL]
5977			The probability weighting to use for the
5978			smp_call_function_many() function with a zero
5979			"wait" parameter.  See weight_single.
5980			Note well that setting a high probability for
5981			this weighting can place serious IPI load
5982			on the system.
5983
5984	scftorture.weight_many_wait= [KNL]
5985			The probability weighting to use for the
5986			smp_call_function_many() function with a
5987			non-zero "wait" parameter.  See weight_single
5988			and weight_many.
5989
5990	scftorture.weight_all= [KNL]
5991			The probability weighting to use for the
5992			smp_call_function_all() function with a zero
5993			"wait" parameter.  See weight_single and
5994			weight_many.
5995
5996	scftorture.weight_all_wait= [KNL]
5997			The probability weighting to use for the
5998			smp_call_function_all() function with a
5999			non-zero "wait" parameter.  See weight_single
6000			and weight_many.
6001
6002	skew_tick=	[KNL,EARLY] Offset the periodic timer tick per cpu to mitigate
6003			xtime_lock contention on larger systems, and/or RCU lock
6004			contention on all systems with CONFIG_MAXSMP set.
6005			Format: { "0" | "1" }
6006			0 -- disable. (may be 1 via CONFIG_CMDLINE="skew_tick=1"
6007			1 -- enable.
6008			Note: increases power consumption, thus should only be
6009			enabled if running jitter sensitive (HPC/RT) workloads.
6010
6011	security=	[SECURITY] Choose a legacy "major" security module to
6012			enable at boot. This has been deprecated by the
6013			"lsm=" parameter.
6014
6015	selinux=	[SELINUX] Disable or enable SELinux at boot time.
6016			Format: { "0" | "1" }
6017			See security/selinux/Kconfig help text.
6018			0 -- disable.
6019			1 -- enable.
6020			Default value is 1.
6021
6022	serialnumber	[BUGS=X86-32]
6023
6024	sev=option[,option...] [X86-64] See Documentation/arch/x86/x86_64/boot-options.rst
6025
6026	shapers=	[NET]
6027			Maximal number of shapers.
6028
6029	show_lapic=	[APIC,X86] Advanced Programmable Interrupt Controller
6030			Limit apic dumping. The parameter defines the maximal
6031			number of local apics being dumped. Also it is possible
6032			to set it to "all" by meaning -- no limit here.
6033			Format: { 1 (default) | 2 | ... | all }.
6034			The parameter valid if only apic=debug or
6035			apic=verbose is specified.
6036			Example: apic=debug show_lapic=all
6037
6038	slab_debug[=options[,slabs][;[options[,slabs]]...]	[MM]
6039			Enabling slab_debug allows one to determine the
6040			culprit if slab objects become corrupted. Enabling
6041			slab_debug can create guard zones around objects and
6042			may poison objects when not in use. Also tracks the
6043			last alloc / free. For more information see
6044			Documentation/mm/slub.rst.
6045			(slub_debug legacy name also accepted for now)
6046
6047	slab_max_order= [MM]
6048			Determines the maximum allowed order for slabs.
6049			A high setting may cause OOMs due to memory
6050			fragmentation. For more information see
6051			Documentation/mm/slub.rst.
6052			(slub_max_order legacy name also accepted for now)
6053
6054	slab_merge	[MM]
6055			Enable merging of slabs with similar size when the
6056			kernel is built without CONFIG_SLAB_MERGE_DEFAULT.
6057			(slub_merge legacy name also accepted for now)
6058
6059	slab_min_objects=	[MM]
6060			The minimum number of objects per slab. SLUB will
6061			increase the slab order up to slab_max_order to
6062			generate a sufficiently large slab able to contain
6063			the number of objects indicated. The higher the number
6064			of objects the smaller the overhead of tracking slabs
6065			and the less frequently locks need to be acquired.
6066			For more information see Documentation/mm/slub.rst.
6067			(slub_min_objects legacy name also accepted for now)
6068
6069	slab_min_order=	[MM]
6070			Determines the minimum page order for slabs. Must be
6071			lower or equal to slab_max_order. For more information see
6072			Documentation/mm/slub.rst.
6073			(slub_min_order legacy name also accepted for now)
6074
6075	slab_nomerge	[MM]
6076			Disable merging of slabs with similar size. May be
6077			necessary if there is some reason to distinguish
6078			allocs to different slabs, especially in hardened
6079			environments where the risk of heap overflows and
6080			layout control by attackers can usually be
6081			frustrated by disabling merging. This will reduce
6082			most of the exposure of a heap attack to a single
6083			cache (risks via metadata attacks are mostly
6084			unchanged). Debug options disable merging on their
6085			own.
6086			For more information see Documentation/mm/slub.rst.
6087			(slub_nomerge legacy name also accepted for now)
6088
6089	slram=		[HW,MTD]
6090
6091	smart2=		[HW]
6092			Format: <io1>[,<io2>[,...,<io8>]]
6093
6094	smp.csd_lock_timeout= [KNL]
6095			Specify the period of time in milliseconds
6096			that smp_call_function() and friends will wait
6097			for a CPU to release the CSD lock.  This is
6098			useful when diagnosing bugs involving CPUs
6099			disabling interrupts for extended periods
6100			of time.  Defaults to 5,000 milliseconds, and
6101			setting a value of zero disables this feature.
6102			This feature may be more efficiently disabled
6103			using the csdlock_debug- kernel parameter.
6104
6105	smp.panic_on_ipistall= [KNL]
6106			If a csd_lock_timeout extends for more than
6107			the specified number of milliseconds, panic the
6108			system.  By default, let CSD-lock acquisition
6109			take as long as they take.  Specifying 300,000
6110			for this value provides a 5-minute timeout.
6111
6112	smsc-ircc2.nopnp	[HW] Don't use PNP to discover SMC devices
6113	smsc-ircc2.ircc_cfg=	[HW] Device configuration I/O port
6114	smsc-ircc2.ircc_sir=	[HW] SIR base I/O port
6115	smsc-ircc2.ircc_fir=	[HW] FIR base I/O port
6116	smsc-ircc2.ircc_irq=	[HW] IRQ line
6117	smsc-ircc2.ircc_dma=	[HW] DMA channel
6118	smsc-ircc2.ircc_transceiver= [HW] Transceiver type:
6119				0: Toshiba Satellite 1800 (GP data pin select)
6120				1: Fast pin select (default)
6121				2: ATC IRMode
6122
6123	smt=		[KNL,MIPS,S390,EARLY] Set the maximum number of threads
6124			(logical CPUs) to use per physical CPU on systems
6125			capable of symmetric multithreading (SMT). Will
6126			be capped to the actual hardware limit.
6127			Format: <integer>
6128			Default: -1 (no limit)
6129
6130	softlockup_panic=
6131			[KNL] Should the soft-lockup detector generate panics.
6132			Format: 0 | 1
6133
6134			A value of 1 instructs the soft-lockup detector
6135			to panic the machine when a soft-lockup occurs. It is
6136			also controlled by the kernel.softlockup_panic sysctl
6137			and CONFIG_BOOTPARAM_SOFTLOCKUP_PANIC, which is the
6138			respective build-time switch to that functionality.
6139
6140	softlockup_all_cpu_backtrace=
6141			[KNL] Should the soft-lockup detector generate
6142			backtraces on all cpus.
6143			Format: 0 | 1
6144
6145	sonypi.*=	[HW] Sony Programmable I/O Control Device driver
6146			See Documentation/admin-guide/laptops/sonypi.rst
6147
6148	spectre_bhi=	[X86] Control mitigation of Branch History Injection
6149			(BHI) vulnerability.  This setting affects the
6150			deployment of the HW BHI control and the SW BHB
6151			clearing sequence.
6152
6153			on     - (default) Enable the HW or SW mitigation as
6154				 needed.  This protects the kernel from
6155				 both syscalls and VMs.
6156			vmexit - On systems which don't have the HW mitigation
6157				 available, enable the SW mitigation on vmexit
6158				 ONLY.  On such systems, the host kernel is
6159				 protected from VM-originated BHI attacks, but
6160				 may still be vulnerable to syscall attacks.
6161			off    - Disable the mitigation.
6162
6163	spectre_v2=	[X86,EARLY] Control mitigation of Spectre variant 2
6164			(indirect branch speculation) vulnerability.
6165			The default operation protects the kernel from
6166			user space attacks.
6167
6168			on   - unconditionally enable, implies
6169			       spectre_v2_user=on
6170			off  - unconditionally disable, implies
6171			       spectre_v2_user=off
6172			auto - kernel detects whether your CPU model is
6173			       vulnerable
6174
6175			Selecting 'on' will, and 'auto' may, choose a
6176			mitigation method at run time according to the
6177			CPU, the available microcode, the setting of the
6178			CONFIG_MITIGATION_RETPOLINE configuration option,
6179			and the compiler with which the kernel was built.
6180
6181			Selecting 'on' will also enable the mitigation
6182			against user space to user space task attacks.
6183
6184			Selecting 'off' will disable both the kernel and
6185			the user space protections.
6186
6187			Specific mitigations can also be selected manually:
6188
6189			retpoline	  - replace indirect branches
6190			retpoline,generic - Retpolines
6191			retpoline,lfence  - LFENCE; indirect branch
6192			retpoline,amd     - alias for retpoline,lfence
6193			eibrs		  - Enhanced/Auto IBRS
6194			eibrs,retpoline   - Enhanced/Auto IBRS + Retpolines
6195			eibrs,lfence      - Enhanced/Auto IBRS + LFENCE
6196			ibrs		  - use IBRS to protect kernel
6197
6198			Not specifying this option is equivalent to
6199			spectre_v2=auto.
6200
6201	spectre_v2_user=
6202			[X86] Control mitigation of Spectre variant 2
6203		        (indirect branch speculation) vulnerability between
6204		        user space tasks
6205
6206			on	- Unconditionally enable mitigations. Is
6207				  enforced by spectre_v2=on
6208
6209			off     - Unconditionally disable mitigations. Is
6210				  enforced by spectre_v2=off
6211
6212			prctl   - Indirect branch speculation is enabled,
6213				  but mitigation can be enabled via prctl
6214				  per thread.  The mitigation control state
6215				  is inherited on fork.
6216
6217			prctl,ibpb
6218				- Like "prctl" above, but only STIBP is
6219				  controlled per thread. IBPB is issued
6220				  always when switching between different user
6221				  space processes.
6222
6223			seccomp
6224				- Same as "prctl" above, but all seccomp
6225				  threads will enable the mitigation unless
6226				  they explicitly opt out.
6227
6228			seccomp,ibpb
6229				- Like "seccomp" above, but only STIBP is
6230				  controlled per thread. IBPB is issued
6231				  always when switching between different
6232				  user space processes.
6233
6234			auto    - Kernel selects the mitigation depending on
6235				  the available CPU features and vulnerability.
6236
6237			Default mitigation: "prctl"
6238
6239			Not specifying this option is equivalent to
6240			spectre_v2_user=auto.
6241
6242	spec_rstack_overflow=
6243			[X86,EARLY] Control RAS overflow mitigation on AMD Zen CPUs
6244
6245			off		- Disable mitigation
6246			microcode	- Enable microcode mitigation only
6247			safe-ret	- Enable sw-only safe RET mitigation (default)
6248			ibpb		- Enable mitigation by issuing IBPB on
6249					  kernel entry
6250			ibpb-vmexit	- Issue IBPB only on VMEXIT
6251					  (cloud-specific mitigation)
6252
6253	spec_store_bypass_disable=
6254			[HW,EARLY] Control Speculative Store Bypass (SSB) Disable mitigation
6255			(Speculative Store Bypass vulnerability)
6256
6257			Certain CPUs are vulnerable to an exploit against a
6258			a common industry wide performance optimization known
6259			as "Speculative Store Bypass" in which recent stores
6260			to the same memory location may not be observed by
6261			later loads during speculative execution. The idea
6262			is that such stores are unlikely and that they can
6263			be detected prior to instruction retirement at the
6264			end of a particular speculation execution window.
6265
6266			In vulnerable processors, the speculatively forwarded
6267			store can be used in a cache side channel attack, for
6268			example to read memory to which the attacker does not
6269			directly have access (e.g. inside sandboxed code).
6270
6271			This parameter controls whether the Speculative Store
6272			Bypass optimization is used.
6273
6274			On x86 the options are:
6275
6276			on      - Unconditionally disable Speculative Store Bypass
6277			off     - Unconditionally enable Speculative Store Bypass
6278			auto    - Kernel detects whether the CPU model contains an
6279				  implementation of Speculative Store Bypass and
6280				  picks the most appropriate mitigation. If the
6281				  CPU is not vulnerable, "off" is selected. If the
6282				  CPU is vulnerable the default mitigation is
6283				  architecture and Kconfig dependent. See below.
6284			prctl   - Control Speculative Store Bypass per thread
6285				  via prctl. Speculative Store Bypass is enabled
6286				  for a process by default. The state of the control
6287				  is inherited on fork.
6288			seccomp - Same as "prctl" above, but all seccomp threads
6289				  will disable SSB unless they explicitly opt out.
6290
6291			Default mitigations:
6292			X86:	"prctl"
6293
6294			On powerpc the options are:
6295
6296			on,auto - On Power8 and Power9 insert a store-forwarding
6297				  barrier on kernel entry and exit. On Power7
6298				  perform a software flush on kernel entry and
6299				  exit.
6300			off	- No action.
6301
6302			Not specifying this option is equivalent to
6303			spec_store_bypass_disable=auto.
6304
6305	split_lock_detect=
6306			[X86] Enable split lock detection or bus lock detection
6307
6308			When enabled (and if hardware support is present), atomic
6309			instructions that access data across cache line
6310			boundaries will result in an alignment check exception
6311			for split lock detection or a debug exception for
6312			bus lock detection.
6313
6314			off	- not enabled
6315
6316			warn	- the kernel will emit rate-limited warnings
6317				  about applications triggering the #AC
6318				  exception or the #DB exception. This mode is
6319				  the default on CPUs that support split lock
6320				  detection or bus lock detection. Default
6321				  behavior is by #AC if both features are
6322				  enabled in hardware.
6323
6324			fatal	- the kernel will send SIGBUS to applications
6325				  that trigger the #AC exception or the #DB
6326				  exception. Default behavior is by #AC if
6327				  both features are enabled in hardware.
6328
6329			ratelimit:N -
6330				  Set system wide rate limit to N bus locks
6331				  per second for bus lock detection.
6332				  0 < N <= 1000.
6333
6334				  N/A for split lock detection.
6335
6336
6337			If an #AC exception is hit in the kernel or in
6338			firmware (i.e. not while executing in user mode)
6339			the kernel will oops in either "warn" or "fatal"
6340			mode.
6341
6342			#DB exception for bus lock is triggered only when
6343			CPL > 0.
6344
6345	srbds=		[X86,INTEL,EARLY]
6346			Control the Special Register Buffer Data Sampling
6347			(SRBDS) mitigation.
6348
6349			Certain CPUs are vulnerable to an MDS-like
6350			exploit which can leak bits from the random
6351			number generator.
6352
6353			By default, this issue is mitigated by
6354			microcode.  However, the microcode fix can cause
6355			the RDRAND and RDSEED instructions to become
6356			much slower.  Among other effects, this will
6357			result in reduced throughput from /dev/urandom.
6358
6359			The microcode mitigation can be disabled with
6360			the following option:
6361
6362			off:    Disable mitigation and remove
6363				performance impact to RDRAND and RDSEED
6364
6365	srcutree.big_cpu_lim [KNL]
6366			Specifies the number of CPUs constituting a
6367			large system, such that srcu_struct structures
6368			should immediately allocate an srcu_node array.
6369			This kernel-boot parameter defaults to 128,
6370			but takes effect only when the low-order four
6371			bits of srcutree.convert_to_big is equal to 3
6372			(decide at boot).
6373
6374	srcutree.convert_to_big [KNL]
6375			Specifies under what conditions an SRCU tree
6376			srcu_struct structure will be converted to big
6377			form, that is, with an rcu_node tree:
6378
6379				   0:  Never.
6380				   1:  At init_srcu_struct() time.
6381				   2:  When rcutorture decides to.
6382				   3:  Decide at boot time (default).
6383				0x1X:  Above plus if high contention.
6384
6385			Either way, the srcu_node tree will be sized based
6386			on the actual runtime number of CPUs (nr_cpu_ids)
6387			instead of the compile-time CONFIG_NR_CPUS.
6388
6389	srcutree.counter_wrap_check [KNL]
6390			Specifies how frequently to check for
6391			grace-period sequence counter wrap for the
6392			srcu_data structure's ->srcu_gp_seq_needed field.
6393			The greater the number of bits set in this kernel
6394			parameter, the less frequently counter wrap will
6395			be checked for.  Note that the bottom two bits
6396			are ignored.
6397
6398	srcutree.exp_holdoff [KNL]
6399			Specifies how many nanoseconds must elapse
6400			since the end of the last SRCU grace period for
6401			a given srcu_struct until the next normal SRCU
6402			grace period will be considered for automatic
6403			expediting.  Set to zero to disable automatic
6404			expediting.
6405
6406	srcutree.srcu_max_nodelay [KNL]
6407			Specifies the number of no-delay instances
6408			per jiffy for which the SRCU grace period
6409			worker thread will be rescheduled with zero
6410			delay. Beyond this limit, worker thread will
6411			be rescheduled with a sleep delay of one jiffy.
6412
6413	srcutree.srcu_max_nodelay_phase [KNL]
6414			Specifies the per-grace-period phase, number of
6415			non-sleeping polls of readers. Beyond this limit,
6416			grace period worker thread will be rescheduled
6417			with a sleep delay of one jiffy, between each
6418			rescan of the readers, for a grace period phase.
6419
6420	srcutree.srcu_retry_check_delay [KNL]
6421			Specifies number of microseconds of non-sleeping
6422			delay between each non-sleeping poll of readers.
6423
6424	srcutree.small_contention_lim [KNL]
6425			Specifies the number of update-side contention
6426			events per jiffy will be tolerated before
6427			initiating a conversion of an srcu_struct
6428			structure to big form.	Note that the value of
6429			srcutree.convert_to_big must have the 0x10 bit
6430			set for contention-based conversions to occur.
6431
6432	ssbd=		[ARM64,HW,EARLY]
6433			Speculative Store Bypass Disable control
6434
6435			On CPUs that are vulnerable to the Speculative
6436			Store Bypass vulnerability and offer a
6437			firmware based mitigation, this parameter
6438			indicates how the mitigation should be used:
6439
6440			force-on:  Unconditionally enable mitigation for
6441				   for both kernel and userspace
6442			force-off: Unconditionally disable mitigation for
6443				   for both kernel and userspace
6444			kernel:    Always enable mitigation in the
6445				   kernel, and offer a prctl interface
6446				   to allow userspace to register its
6447				   interest in being mitigated too.
6448
6449	stack_guard_gap=	[MM]
6450			override the default stack gap protection. The value
6451			is in page units and it defines how many pages prior
6452			to (for stacks growing down) resp. after (for stacks
6453			growing up) the main stack are reserved for no other
6454			mapping. Default value is 256 pages.
6455
6456	stack_depot_disable= [KNL,EARLY]
6457			Setting this to true through kernel command line will
6458			disable the stack depot thereby saving the static memory
6459			consumed by the stack hash table. By default this is set
6460			to false.
6461
6462	stacktrace	[FTRACE]
6463			Enabled the stack tracer on boot up.
6464
6465	stacktrace_filter=[function-list]
6466			[FTRACE] Limit the functions that the stack tracer
6467			will trace at boot up. function-list is a comma-separated
6468			list of functions. This list can be changed at run
6469			time by the stack_trace_filter file in the debugfs
6470			tracing directory. Note, this enables stack tracing
6471			and the stacktrace above is not needed.
6472
6473	sti=		[PARISC,HW]
6474			Format: <num>
6475			Set the STI (builtin display/keyboard on the HP-PARISC
6476			machines) console (graphic card) which should be used
6477			as the initial boot-console.
6478			See also comment in drivers/video/console/sticore.c.
6479
6480	sti_font=	[HW]
6481			See comment in drivers/video/console/sticore.c.
6482
6483	stifb=		[HW]
6484			Format: bpp:<bpp1>[:<bpp2>[:<bpp3>...]]
6485
6486        strict_sas_size=
6487			[X86]
6488			Format: <bool>
6489			Enable or disable strict sigaltstack size checks
6490			against the required signal frame size which
6491			depends on the supported FPU features. This can
6492			be used to filter out binaries which have
6493			not yet been made aware of AT_MINSIGSTKSZ.
6494
6495	stress_hpt	[PPC,EARLY]
6496			Limits the number of kernel HPT entries in the hash
6497			page table to increase the rate of hash page table
6498			faults on kernel addresses.
6499
6500	stress_slb	[PPC,EARLY]
6501			Limits the number of kernel SLB entries, and flushes
6502			them frequently to increase the rate of SLB faults
6503			on kernel addresses.
6504
6505	sunrpc.min_resvport=
6506	sunrpc.max_resvport=
6507			[NFS,SUNRPC]
6508			SunRPC servers often require that client requests
6509			originate from a privileged port (i.e. a port in the
6510			range 0 < portnr < 1024).
6511			An administrator who wishes to reserve some of these
6512			ports for other uses may adjust the range that the
6513			kernel's sunrpc client considers to be privileged
6514			using these two parameters to set the minimum and
6515			maximum port values.
6516
6517	sunrpc.svc_rpc_per_connection_limit=
6518			[NFS,SUNRPC]
6519			Limit the number of requests that the server will
6520			process in parallel from a single connection.
6521			The default value is 0 (no limit).
6522
6523	sunrpc.pool_mode=
6524			[NFS]
6525			Control how the NFS server code allocates CPUs to
6526			service thread pools.  Depending on how many NICs
6527			you have and where their interrupts are bound, this
6528			option will affect which CPUs will do NFS serving.
6529			Note: this parameter cannot be changed while the
6530			NFS server is running.
6531
6532			auto	    the server chooses an appropriate mode
6533				    automatically using heuristics
6534			global	    a single global pool contains all CPUs
6535			percpu	    one pool for each CPU
6536			pernode	    one pool for each NUMA node (equivalent
6537				    to global on non-NUMA machines)
6538
6539	sunrpc.tcp_slot_table_entries=
6540	sunrpc.udp_slot_table_entries=
6541			[NFS,SUNRPC]
6542			Sets the upper limit on the number of simultaneous
6543			RPC calls that can be sent from the client to a
6544			server. Increasing these values may allow you to
6545			improve throughput, but will also increase the
6546			amount of memory reserved for use by the client.
6547
6548	suspend.pm_test_delay=
6549			[SUSPEND]
6550			Sets the number of seconds to remain in a suspend test
6551			mode before resuming the system (see
6552			/sys/power/pm_test). Only available when CONFIG_PM_DEBUG
6553			is set. Default value is 5.
6554
6555	svm=		[PPC]
6556			Format: { on | off | y | n | 1 | 0 }
6557			This parameter controls use of the Protected
6558			Execution Facility on pSeries.
6559
6560	swiotlb=	[ARM,PPC,MIPS,X86,S390,EARLY]
6561			Format: { <int> [,<int>] | force | noforce }
6562			<int> -- Number of I/O TLB slabs
6563			<int> -- Second integer after comma. Number of swiotlb
6564				 areas with their own lock. Will be rounded up
6565				 to a power of 2.
6566			force -- force using of bounce buffers even if they
6567			         wouldn't be automatically used by the kernel
6568			noforce -- Never use bounce buffers (for debugging)
6569
6570	switches=	[HW,M68k,EARLY]
6571
6572	sysctl.*=	[KNL]
6573			Set a sysctl parameter, right before loading the init
6574			process, as if the value was written to the respective
6575			/proc/sys/... file. Both '.' and '/' are recognized as
6576			separators. Unrecognized parameters and invalid values
6577			are reported in the kernel log. Sysctls registered
6578			later by a loaded module cannot be set this way.
6579			Example: sysctl.vm.swappiness=40
6580
6581	sysrq_always_enabled
6582			[KNL]
6583			Ignore sysrq setting - this boot parameter will
6584			neutralize any effect of /proc/sys/kernel/sysrq.
6585			Useful for debugging.
6586
6587	tcpmhash_entries= [KNL,NET]
6588			Set the number of tcp_metrics_hash slots.
6589			Default value is 8192 or 16384 depending on total
6590			ram pages. This is used to specify the TCP metrics
6591			cache size. See Documentation/networking/ip-sysctl.rst
6592			"tcp_no_metrics_save" section for more details.
6593
6594	tdfx=		[HW,DRM]
6595
6596	test_suspend=	[SUSPEND]
6597			Format: { "mem" | "standby" | "freeze" }[,N]
6598			Specify "mem" (for Suspend-to-RAM) or "standby" (for
6599			standby suspend) or "freeze" (for suspend type freeze)
6600			as the system sleep state during system startup with
6601			the optional capability to repeat N number of times.
6602			The system is woken from this state using a
6603			wakeup-capable RTC alarm.
6604
6605	thash_entries=	[KNL,NET]
6606			Set number of hash buckets for TCP connection
6607
6608	thermal.act=	[HW,ACPI]
6609			-1: disable all active trip points in all thermal zones
6610			<degrees C>: override all lowest active trip points
6611
6612	thermal.crt=	[HW,ACPI]
6613			-1: disable all critical trip points in all thermal zones
6614			<degrees C>: override all critical trip points
6615
6616	thermal.off=	[HW,ACPI]
6617			1: disable ACPI thermal control
6618
6619	thermal.psv=	[HW,ACPI]
6620			-1: disable all passive trip points
6621			<degrees C>: override all passive trip points to this
6622			value
6623
6624	thermal.tzp=	[HW,ACPI]
6625			Specify global default ACPI thermal zone polling rate
6626			<deci-seconds>: poll all this frequency
6627			0: no polling (default)
6628
6629	threadirqs	[KNL,EARLY]
6630			Force threading of all interrupt handlers except those
6631			marked explicitly IRQF_NO_THREAD.
6632
6633	topology=	[S390,EARLY]
6634			Format: {off | on}
6635			Specify if the kernel should make use of the cpu
6636			topology information if the hardware supports this.
6637			The scheduler will make use of this information and
6638			e.g. base its process migration decisions on it.
6639			Default is on.
6640
6641	torture.disable_onoff_at_boot= [KNL]
6642			Prevent the CPU-hotplug component of torturing
6643			until after init has spawned.
6644
6645	torture.ftrace_dump_at_shutdown= [KNL]
6646			Dump the ftrace buffer at torture-test shutdown,
6647			even if there were no errors.  This can be a
6648			very costly operation when many torture tests
6649			are running concurrently, especially on systems
6650			with rotating-rust storage.
6651
6652	torture.verbose_sleep_frequency= [KNL]
6653			Specifies how many verbose printk()s should be
6654			emitted between each sleep.  The default of zero
6655			disables verbose-printk() sleeping.
6656
6657	torture.verbose_sleep_duration= [KNL]
6658			Duration of each verbose-printk() sleep in jiffies.
6659
6660	tpm_suspend_pcr=[HW,TPM]
6661			Format: integer pcr id
6662			Specify that at suspend time, the tpm driver
6663			should extend the specified pcr with zeros,
6664			as a workaround for some chips which fail to
6665			flush the last written pcr on TPM_SaveState.
6666			This will guarantee that all the other pcrs
6667			are saved.
6668
6669	tpm_tis.interrupts= [HW,TPM]
6670			Enable interrupts for the MMIO based physical layer
6671			for the FIFO interface. By default it is set to false
6672			(0). For more information about TPM hardware interfaces
6673			defined by Trusted Computing Group (TCG) see
6674			https://trustedcomputinggroup.org/resource/pc-client-platform-tpm-profile-ptp-specification/
6675
6676	tp_printk	[FTRACE]
6677			Have the tracepoints sent to printk as well as the
6678			tracing ring buffer. This is useful for early boot up
6679			where the system hangs or reboots and does not give the
6680			option for reading the tracing buffer or performing a
6681			ftrace_dump_on_oops.
6682
6683			To turn off having tracepoints sent to printk,
6684			 echo 0 > /proc/sys/kernel/tracepoint_printk
6685			Note, echoing 1 into this file without the
6686			tp_printk kernel cmdline option has no effect.
6687
6688			The tp_printk_stop_on_boot (see below) can also be used
6689			to stop the printing of events to console at
6690			late_initcall_sync.
6691
6692			** CAUTION **
6693
6694			Having tracepoints sent to printk() and activating high
6695			frequency tracepoints such as irq or sched, can cause
6696			the system to live lock.
6697
6698	tp_printk_stop_on_boot [FTRACE]
6699			When tp_printk (above) is set, it can cause a lot of noise
6700			on the console. It may be useful to only include the
6701			printing of events during boot up, as user space may
6702			make the system inoperable.
6703
6704			This command line option will stop the printing of events
6705			to console at the late_initcall_sync() time frame.
6706
6707	trace_buf_size=nn[KMG]
6708			[FTRACE] will set tracing buffer size on each cpu.
6709
6710	trace_clock=	[FTRACE] Set the clock used for tracing events
6711			at boot up.
6712			local - Use the per CPU time stamp counter
6713				(converted into nanoseconds). Fast, but
6714				depending on the architecture, may not be
6715				in sync between CPUs.
6716			global - Event time stamps are synchronize across
6717				CPUs. May be slower than the local clock,
6718				but better for some race conditions.
6719			counter - Simple counting of events (1, 2, ..)
6720				note, some counts may be skipped due to the
6721				infrastructure grabbing the clock more than
6722				once per event.
6723			uptime - Use jiffies as the time stamp.
6724			perf - Use the same clock that perf uses.
6725			mono - Use ktime_get_mono_fast_ns() for time stamps.
6726			mono_raw - Use ktime_get_raw_fast_ns() for time
6727				stamps.
6728			boot - Use ktime_get_boot_fast_ns() for time stamps.
6729			Architectures may add more clocks. See
6730			Documentation/trace/ftrace.rst for more details.
6731
6732	trace_event=[event-list]
6733			[FTRACE] Set and start specified trace events in order
6734			to facilitate early boot debugging. The event-list is a
6735			comma-separated list of trace events to enable. See
6736			also Documentation/trace/events.rst
6737
6738	trace_instance=[instance-info]
6739			[FTRACE] Create a ring buffer instance early in boot up.
6740			This will be listed in:
6741
6742				/sys/kernel/tracing/instances
6743
6744			Events can be enabled at the time the instance is created
6745			via:
6746
6747				trace_instance=<name>,<system1>:<event1>,<system2>:<event2>
6748
6749			Note, the "<system*>:" portion is optional if the event is
6750			unique.
6751
6752				trace_instance=foo,sched:sched_switch,irq_handler_entry,initcall
6753
6754			will enable the "sched_switch" event (note, the "sched:" is optional, and
6755			the same thing would happen if it was left off). The irq_handler_entry
6756			event, and all events under the "initcall" system.
6757
6758	trace_options=[option-list]
6759			[FTRACE] Enable or disable tracer options at boot.
6760			The option-list is a comma delimited list of options
6761			that can be enabled or disabled just as if you were
6762			to echo the option name into
6763
6764			    /sys/kernel/tracing/trace_options
6765
6766			For example, to enable stacktrace option (to dump the
6767			stack trace of each event), add to the command line:
6768
6769			      trace_options=stacktrace
6770
6771			See also Documentation/trace/ftrace.rst "trace options"
6772			section.
6773
6774	trace_trigger=[trigger-list]
6775			[FTRACE] Add a event trigger on specific events.
6776			Set a trigger on top of a specific event, with an optional
6777			filter.
6778
6779			The format is is "trace_trigger=<event>.<trigger>[ if <filter>],..."
6780			Where more than one trigger may be specified that are comma deliminated.
6781
6782			For example:
6783
6784			  trace_trigger="sched_switch.stacktrace if prev_state == 2"
6785
6786			The above will enable the "stacktrace" trigger on the "sched_switch"
6787			event but only trigger it if the "prev_state" of the "sched_switch"
6788			event is "2" (TASK_UNINTERUPTIBLE).
6789
6790			See also "Event triggers" in Documentation/trace/events.rst
6791
6792
6793	traceoff_on_warning
6794			[FTRACE] enable this option to disable tracing when a
6795			warning is hit. This turns off "tracing_on". Tracing can
6796			be enabled again by echoing '1' into the "tracing_on"
6797			file located in /sys/kernel/tracing/
6798
6799			This option is useful, as it disables the trace before
6800			the WARNING dump is called, which prevents the trace to
6801			be filled with content caused by the warning output.
6802
6803			This option can also be set at run time via the sysctl
6804			option:  kernel/traceoff_on_warning
6805
6806	transparent_hugepage=
6807			[KNL]
6808			Format: [always|madvise|never]
6809			Can be used to control the default behavior of the system
6810			with respect to transparent hugepages.
6811			See Documentation/admin-guide/mm/transhuge.rst
6812			for more details.
6813
6814	trusted.source=	[KEYS]
6815			Format: <string>
6816			This parameter identifies the trust source as a backend
6817			for trusted keys implementation. Supported trust
6818			sources:
6819			- "tpm"
6820			- "tee"
6821			- "caam"
6822			- "dcp"
6823			If not specified then it defaults to iterating through
6824			the trust source list starting with TPM and assigns the
6825			first trust source as a backend which is initialized
6826			successfully during iteration.
6827
6828	trusted.rng=	[KEYS]
6829			Format: <string>
6830			The RNG used to generate key material for trusted keys.
6831			Can be one of:
6832			- "kernel"
6833			- the same value as trusted.source: "tpm" or "tee"
6834			- "default"
6835			If not specified, "default" is used. In this case,
6836			the RNG's choice is left to each individual trust source.
6837
6838	trusted.dcp_use_otp_key
6839			This is intended to be used in combination with
6840			trusted.source=dcp and will select the DCP OTP key
6841			instead of the DCP UNIQUE key blob encryption.
6842
6843	trusted.dcp_skip_zk_test
6844			This is intended to be used in combination with
6845			trusted.source=dcp and will disable the check if the
6846			blob key is all zeros. This is helpful for situations where
6847			having this key zero'ed is acceptable. E.g. in testing
6848			scenarios.
6849
6850	tsc=		Disable clocksource stability checks for TSC.
6851			Format: <string>
6852			[x86] reliable: mark tsc clocksource as reliable, this
6853			disables clocksource verification at runtime, as well
6854			as the stability checks done at bootup.	Used to enable
6855			high-resolution timer mode on older hardware, and in
6856			virtualized environment.
6857			[x86] noirqtime: Do not use TSC to do irq accounting.
6858			Used to run time disable IRQ_TIME_ACCOUNTING on any
6859			platforms where RDTSC is slow and this accounting
6860			can add overhead.
6861			[x86] unstable: mark the TSC clocksource as unstable, this
6862			marks the TSC unconditionally unstable at bootup and
6863			avoids any further wobbles once the TSC watchdog notices.
6864			[x86] nowatchdog: disable clocksource watchdog. Used
6865			in situations with strict latency requirements (where
6866			interruptions from clocksource watchdog are not
6867			acceptable).
6868			[x86] recalibrate: force recalibration against a HW timer
6869			(HPET or PM timer) on systems whose TSC frequency was
6870			obtained from HW or FW using either an MSR or CPUID(0x15).
6871			Warn if the difference is more than 500 ppm.
6872			[x86] watchdog: Use TSC as the watchdog clocksource with
6873			which to check other HW timers (HPET or PM timer), but
6874			only on systems where TSC has been deemed trustworthy.
6875			This will be suppressed by an earlier tsc=nowatchdog and
6876			can be overridden by a later tsc=nowatchdog.  A console
6877			message will flag any such suppression or overriding.
6878
6879	tsc_early_khz=  [X86,EARLY] Skip early TSC calibration and use the given
6880			value instead. Useful when the early TSC frequency discovery
6881			procedure is not reliable, such as on overclocked systems
6882			with CPUID.16h support and partial CPUID.15h support.
6883			Format: <unsigned int>
6884
6885	tsx=		[X86] Control Transactional Synchronization
6886			Extensions (TSX) feature in Intel processors that
6887			support TSX control.
6888
6889			This parameter controls the TSX feature. The options are:
6890
6891			on	- Enable TSX on the system. Although there are
6892				mitigations for all known security vulnerabilities,
6893				TSX has been known to be an accelerator for
6894				several previous speculation-related CVEs, and
6895				so there may be unknown	security risks associated
6896				with leaving it enabled.
6897
6898			off	- Disable TSX on the system. (Note that this
6899				option takes effect only on newer CPUs which are
6900				not vulnerable to MDS, i.e., have
6901				MSR_IA32_ARCH_CAPABILITIES.MDS_NO=1 and which get
6902				the new IA32_TSX_CTRL MSR through a microcode
6903				update. This new MSR allows for the reliable
6904				deactivation of the TSX functionality.)
6905
6906			auto	- Disable TSX if X86_BUG_TAA is present,
6907				  otherwise enable TSX on the system.
6908
6909			Not specifying this option is equivalent to tsx=off.
6910
6911			See Documentation/admin-guide/hw-vuln/tsx_async_abort.rst
6912			for more details.
6913
6914	tsx_async_abort= [X86,INTEL,EARLY] Control mitigation for the TSX Async
6915			Abort (TAA) vulnerability.
6916
6917			Similar to Micro-architectural Data Sampling (MDS)
6918			certain CPUs that support Transactional
6919			Synchronization Extensions (TSX) are vulnerable to an
6920			exploit against CPU internal buffers which can forward
6921			information to a disclosure gadget under certain
6922			conditions.
6923
6924			In vulnerable processors, the speculatively forwarded
6925			data can be used in a cache side channel attack, to
6926			access data to which the attacker does not have direct
6927			access.
6928
6929			This parameter controls the TAA mitigation.  The
6930			options are:
6931
6932			full       - Enable TAA mitigation on vulnerable CPUs
6933				     if TSX is enabled.
6934
6935			full,nosmt - Enable TAA mitigation and disable SMT on
6936				     vulnerable CPUs. If TSX is disabled, SMT
6937				     is not disabled because CPU is not
6938				     vulnerable to cross-thread TAA attacks.
6939			off        - Unconditionally disable TAA mitigation
6940
6941			On MDS-affected machines, tsx_async_abort=off can be
6942			prevented by an active MDS mitigation as both vulnerabilities
6943			are mitigated with the same mechanism so in order to disable
6944			this mitigation, you need to specify mds=off too.
6945
6946			Not specifying this option is equivalent to
6947			tsx_async_abort=full.  On CPUs which are MDS affected
6948			and deploy MDS mitigation, TAA mitigation is not
6949			required and doesn't provide any additional
6950			mitigation.
6951
6952			For details see:
6953			Documentation/admin-guide/hw-vuln/tsx_async_abort.rst
6954
6955	turbografx.map[2|3]=	[HW,JOY]
6956			TurboGraFX parallel port interface
6957			Format:
6958			<port#>,<js1>,<js2>,<js3>,<js4>,<js5>,<js6>,<js7>
6959			See also Documentation/input/devices/joystick-parport.rst
6960
6961	udbg-immortal	[PPC] When debugging early kernel crashes that
6962			happen after console_init() and before a proper
6963			console driver takes over, this boot options might
6964			help "seeing" what's going on.
6965
6966	uhash_entries=	[KNL,NET]
6967			Set number of hash buckets for UDP/UDP-Lite connections
6968
6969	uhci-hcd.ignore_oc=
6970			[USB] Ignore overcurrent events (default N).
6971			Some badly-designed motherboards generate lots of
6972			bogus events, for ports that aren't wired to
6973			anything.  Set this parameter to avoid log spamming.
6974			Note that genuine overcurrent events won't be
6975			reported either.
6976
6977	unknown_nmi_panic
6978			[X86] Cause panic on unknown NMI.
6979
6980	unwind_debug	[X86-64,EARLY]
6981			Enable unwinder debug output.  This can be
6982			useful for debugging certain unwinder error
6983			conditions, including corrupt stacks and
6984			bad/missing unwinder metadata.
6985
6986	usbcore.authorized_default=
6987			[USB] Default USB device authorization:
6988			(default -1 = authorized (same as 1),
6989			0 = not authorized, 1 = authorized, 2 = authorized
6990			if device connected to internal port)
6991
6992	usbcore.autosuspend=
6993			[USB] The autosuspend time delay (in seconds) used
6994			for newly-detected USB devices (default 2).  This
6995			is the time required before an idle device will be
6996			autosuspended.  Devices for which the delay is set
6997			to a negative value won't be autosuspended at all.
6998
6999	usbcore.usbfs_snoop=
7000			[USB] Set to log all usbfs traffic (default 0 = off).
7001
7002	usbcore.usbfs_snoop_max=
7003			[USB] Maximum number of bytes to snoop in each URB
7004			(default = 65536).
7005
7006	usbcore.blinkenlights=
7007			[USB] Set to cycle leds on hubs (default 0 = off).
7008
7009	usbcore.old_scheme_first=
7010			[USB] Start with the old device initialization
7011			scheme (default 0 = off).
7012
7013	usbcore.usbfs_memory_mb=
7014			[USB] Memory limit (in MB) for buffers allocated by
7015			usbfs (default = 16, 0 = max = 2047).
7016
7017	usbcore.use_both_schemes=
7018			[USB] Try the other device initialization scheme
7019			if the first one fails (default 1 = enabled).
7020
7021	usbcore.initial_descriptor_timeout=
7022			[USB] Specifies timeout for the initial 64-byte
7023			USB_REQ_GET_DESCRIPTOR request in milliseconds
7024			(default 5000 = 5.0 seconds).
7025
7026	usbcore.nousb	[USB] Disable the USB subsystem
7027
7028	usbcore.quirks=
7029			[USB] A list of quirk entries to augment the built-in
7030			usb core quirk list. List entries are separated by
7031			commas. Each entry has the form
7032			VendorID:ProductID:Flags. The IDs are 4-digit hex
7033			numbers and Flags is a set of letters. Each letter
7034			will change the built-in quirk; setting it if it is
7035			clear and clearing it if it is set. The letters have
7036			the following meanings:
7037				a = USB_QUIRK_STRING_FETCH_255 (string
7038					descriptors must not be fetched using
7039					a 255-byte read);
7040				b = USB_QUIRK_RESET_RESUME (device can't resume
7041					correctly so reset it instead);
7042				c = USB_QUIRK_NO_SET_INTF (device can't handle
7043					Set-Interface requests);
7044				d = USB_QUIRK_CONFIG_INTF_STRINGS (device can't
7045					handle its Configuration or Interface
7046					strings);
7047				e = USB_QUIRK_RESET (device can't be reset
7048					(e.g morph devices), don't use reset);
7049				f = USB_QUIRK_HONOR_BNUMINTERFACES (device has
7050					more interface descriptions than the
7051					bNumInterfaces count, and can't handle
7052					talking to these interfaces);
7053				g = USB_QUIRK_DELAY_INIT (device needs a pause
7054					during initialization, after we read
7055					the device descriptor);
7056				h = USB_QUIRK_LINEAR_UFRAME_INTR_BINTERVAL (For
7057					high speed and super speed interrupt
7058					endpoints, the USB 2.0 and USB 3.0 spec
7059					require the interval in microframes (1
7060					microframe = 125 microseconds) to be
7061					calculated as interval = 2 ^
7062					(bInterval-1).
7063					Devices with this quirk report their
7064					bInterval as the result of this
7065					calculation instead of the exponent
7066					variable used in the calculation);
7067				i = USB_QUIRK_DEVICE_QUALIFIER (device can't
7068					handle device_qualifier descriptor
7069					requests);
7070				j = USB_QUIRK_IGNORE_REMOTE_WAKEUP (device
7071					generates spurious wakeup, ignore
7072					remote wakeup capability);
7073				k = USB_QUIRK_NO_LPM (device can't handle Link
7074					Power Management);
7075				l = USB_QUIRK_LINEAR_FRAME_INTR_BINTERVAL
7076					(Device reports its bInterval as linear
7077					frames instead of the USB 2.0
7078					calculation);
7079				m = USB_QUIRK_DISCONNECT_SUSPEND (Device needs
7080					to be disconnected before suspend to
7081					prevent spurious wakeup);
7082				n = USB_QUIRK_DELAY_CTRL_MSG (Device needs a
7083					pause after every control message);
7084				o = USB_QUIRK_HUB_SLOW_RESET (Hub needs extra
7085					delay after resetting its port);
7086				p = USB_QUIRK_SHORT_SET_ADDRESS_REQ_TIMEOUT
7087					(Reduce timeout of the SET_ADDRESS
7088					request from 5000 ms to 500 ms);
7089			Example: quirks=0781:5580:bk,0a5c:5834:gij
7090
7091	usbhid.mousepoll=
7092			[USBHID] The interval which mice are to be polled at.
7093
7094	usbhid.jspoll=
7095			[USBHID] The interval which joysticks are to be polled at.
7096
7097	usbhid.kbpoll=
7098			[USBHID] The interval which keyboards are to be polled at.
7099
7100	usb-storage.delay_use=
7101			[UMS] The delay in seconds before a new device is
7102			scanned for Logical Units (default 1).
7103			Optionally the delay in milliseconds if the value has
7104			suffix with "ms".
7105			Example: delay_use=2567ms
7106
7107	usb-storage.quirks=
7108			[UMS] A list of quirks entries to supplement or
7109			override the built-in unusual_devs list.  List
7110			entries are separated by commas.  Each entry has
7111			the form VID:PID:Flags where VID and PID are Vendor
7112			and Product ID values (4-digit hex numbers) and
7113			Flags is a set of characters, each corresponding
7114			to a common usb-storage quirk flag as follows:
7115				a = SANE_SENSE (collect more than 18 bytes
7116					of sense data, not on uas);
7117				b = BAD_SENSE (don't collect more than 18
7118					bytes of sense data, not on uas);
7119				c = FIX_CAPACITY (decrease the reported
7120					device capacity by one sector);
7121				d = NO_READ_DISC_INFO (don't use
7122					READ_DISC_INFO command, not on uas);
7123				e = NO_READ_CAPACITY_16 (don't use
7124					READ_CAPACITY_16 command);
7125				f = NO_REPORT_OPCODES (don't use report opcodes
7126					command, uas only);
7127				g = MAX_SECTORS_240 (don't transfer more than
7128					240 sectors at a time, uas only);
7129				h = CAPACITY_HEURISTICS (decrease the
7130					reported device capacity by one
7131					sector if the number is odd);
7132				i = IGNORE_DEVICE (don't bind to this
7133					device);
7134				j = NO_REPORT_LUNS (don't use report luns
7135					command, uas only);
7136				k = NO_SAME (do not use WRITE_SAME, uas only)
7137				l = NOT_LOCKABLE (don't try to lock and
7138					unlock ejectable media, not on uas);
7139				m = MAX_SECTORS_64 (don't transfer more
7140					than 64 sectors = 32 KB at a time,
7141					not on uas);
7142				n = INITIAL_READ10 (force a retry of the
7143					initial READ(10) command, not on uas);
7144				o = CAPACITY_OK (accept the capacity
7145					reported by the device, not on uas);
7146				p = WRITE_CACHE (the device cache is ON
7147					by default, not on uas);
7148				r = IGNORE_RESIDUE (the device reports
7149					bogus residue values, not on uas);
7150				s = SINGLE_LUN (the device has only one
7151					Logical Unit);
7152				t = NO_ATA_1X (don't allow ATA(12) and ATA(16)
7153					commands, uas only);
7154				u = IGNORE_UAS (don't bind to the uas driver);
7155				w = NO_WP_DETECT (don't test whether the
7156					medium is write-protected).
7157				y = ALWAYS_SYNC (issue a SYNCHRONIZE_CACHE
7158					even if the device claims no cache,
7159					not on uas)
7160			Example: quirks=0419:aaf5:rl,0421:0433:rc
7161
7162	user_debug=	[KNL,ARM]
7163			Format: <int>
7164			See arch/arm/Kconfig.debug help text.
7165				 1 - undefined instruction events
7166				 2 - system calls
7167				 4 - invalid data aborts
7168				 8 - SIGSEGV faults
7169				16 - SIGBUS faults
7170			Example: user_debug=31
7171
7172	userpte=
7173			[X86,EARLY] Flags controlling user PTE allocations.
7174
7175				nohigh = do not allocate PTE pages in
7176					HIGHMEM regardless of setting
7177					of CONFIG_HIGHPTE.
7178
7179	vdso=		[X86,SH,SPARC]
7180			On X86_32, this is an alias for vdso32=.  Otherwise:
7181
7182			vdso=1: enable VDSO (the default)
7183			vdso=0: disable VDSO mapping
7184
7185	vdso32=		[X86] Control the 32-bit vDSO
7186			vdso32=1: enable 32-bit VDSO
7187			vdso32=0 or vdso32=2: disable 32-bit VDSO
7188
7189			See the help text for CONFIG_COMPAT_VDSO for more
7190			details.  If CONFIG_COMPAT_VDSO is set, the default is
7191			vdso32=0; otherwise, the default is vdso32=1.
7192
7193			For compatibility with older kernels, vdso32=2 is an
7194			alias for vdso32=0.
7195
7196			Try vdso32=0 if you encounter an error that says:
7197			dl_main: Assertion `(void *) ph->p_vaddr == _rtld_local._dl_sysinfo_dso' failed!
7198
7199	video=		[FB,EARLY] Frame buffer configuration
7200			See Documentation/fb/modedb.rst.
7201
7202	video.brightness_switch_enabled= [ACPI]
7203			Format: [0|1]
7204			If set to 1, on receiving an ACPI notify event
7205			generated by hotkey, video driver will adjust brightness
7206			level and then send out the event to user space through
7207			the allocated input device. If set to 0, video driver
7208			will only send out the event without touching backlight
7209			brightness level.
7210			default: 1
7211
7212	virtio_mmio.device=
7213			[VMMIO] Memory mapped virtio (platform) device.
7214
7215				<size>@<baseaddr>:<irq>[:<id>]
7216			where:
7217				<size>     := size (can use standard suffixes
7218						like K, M and G)
7219				<baseaddr> := physical base address
7220				<irq>      := interrupt number (as passed to
7221						request_irq())
7222				<id>       := (optional) platform device id
7223			example:
7224				virtio_mmio.device=1K@0x100b0000:48:7
7225
7226			Can be used multiple times for multiple devices.
7227
7228	vga=		[BOOT,X86-32] Select a particular video mode
7229			See Documentation/arch/x86/boot.rst and
7230			Documentation/admin-guide/svga.rst.
7231			Use vga=ask for menu.
7232			This is actually a boot loader parameter; the value is
7233			passed to the kernel using a special protocol.
7234
7235	vm_debug[=options]	[KNL] Available with CONFIG_DEBUG_VM=y.
7236			May slow down system boot speed, especially when
7237			enabled on systems with a large amount of memory.
7238			All options are enabled by default, and this
7239			interface is meant to allow for selectively
7240			enabling or disabling specific virtual memory
7241			debugging features.
7242
7243			Available options are:
7244			  P	Enable page structure init time poisoning
7245			  -	Disable all of the above options
7246
7247	vmalloc=nn[KMG]	[KNL,BOOT,EARLY] Forces the vmalloc area to have an
7248			exact size of <nn>. This can be used to increase
7249			the minimum size (128MB on x86, arm32 platforms).
7250			It can also be used to decrease the size and leave more room
7251			for directly mapped kernel RAM. Note that this parameter does
7252			not exist on many other platforms (including arm64, alpha,
7253			loongarch, arc, csky, hexagon, microblaze, mips, nios2, openrisc,
7254			parisc, m64k, powerpc, riscv, sh, um, xtensa, s390, sparc).
7255
7256	vmcp_cma=nn[MG]	[KNL,S390,EARLY]
7257			Sets the memory size reserved for contiguous memory
7258			allocations for the vmcp device driver.
7259
7260	vmhalt=		[KNL,S390] Perform z/VM CP command after system halt.
7261			Format: <command>
7262
7263	vmpanic=	[KNL,S390] Perform z/VM CP command after kernel panic.
7264			Format: <command>
7265
7266	vmpoff=		[KNL,S390] Perform z/VM CP command after power off.
7267			Format: <command>
7268
7269	vsyscall=	[X86-64,EARLY]
7270			Controls the behavior of vsyscalls (i.e. calls to
7271			fixed addresses of 0xffffffffff600x00 from legacy
7272			code).  Most statically-linked binaries and older
7273			versions of glibc use these calls.  Because these
7274			functions are at fixed addresses, they make nice
7275			targets for exploits that can control RIP.
7276
7277			emulate     Vsyscalls turn into traps and are emulated
7278			            reasonably safely.  The vsyscall page is
7279				    readable.
7280
7281			xonly       [default] Vsyscalls turn into traps and are
7282			            emulated reasonably safely.  The vsyscall
7283				    page is not readable.
7284
7285			none        Vsyscalls don't work at all.  This makes
7286			            them quite hard to use for exploits but
7287			            might break your system.
7288
7289	vt.color=	[VT] Default text color.
7290			Format: 0xYX, X = foreground, Y = background.
7291			Default: 0x07 = light gray on black.
7292
7293	vt.cur_default=	[VT] Default cursor shape.
7294			Format: 0xCCBBAA, where AA, BB, and CC are the same as
7295			the parameters of the <Esc>[?A;B;Cc escape sequence;
7296			see VGA-softcursor.txt. Default: 2 = underline.
7297
7298	vt.default_blu=	[VT]
7299			Format: <blue0>,<blue1>,<blue2>,...,<blue15>
7300			Change the default blue palette of the console.
7301			This is a 16-member array composed of values
7302			ranging from 0-255.
7303
7304	vt.default_grn=	[VT]
7305			Format: <green0>,<green1>,<green2>,...,<green15>
7306			Change the default green palette of the console.
7307			This is a 16-member array composed of values
7308			ranging from 0-255.
7309
7310	vt.default_red=	[VT]
7311			Format: <red0>,<red1>,<red2>,...,<red15>
7312			Change the default red palette of the console.
7313			This is a 16-member array composed of values
7314			ranging from 0-255.
7315
7316	vt.default_utf8=
7317			[VT]
7318			Format=<0|1>
7319			Set system-wide default UTF-8 mode for all tty's.
7320			Default is 1, i.e. UTF-8 mode is enabled for all
7321			newly opened terminals.
7322
7323	vt.global_cursor_default=
7324			[VT]
7325			Format=<-1|0|1>
7326			Set system-wide default for whether a cursor
7327			is shown on new VTs. Default is -1,
7328			i.e. cursors will be created by default unless
7329			overridden by individual drivers. 0 will hide
7330			cursors, 1 will display them.
7331
7332	vt.italic=	[VT] Default color for italic text; 0-15.
7333			Default: 2 = green.
7334
7335	vt.underline=	[VT] Default color for underlined text; 0-15.
7336			Default: 3 = cyan.
7337
7338	watchdog timers	[HW,WDT] For information on watchdog timers,
7339			see Documentation/watchdog/watchdog-parameters.rst
7340			or other driver-specific files in the
7341			Documentation/watchdog/ directory.
7342
7343	watchdog_thresh=
7344			[KNL]
7345			Set the hard lockup detector stall duration
7346			threshold in seconds. The soft lockup detector
7347			threshold is set to twice the value. A value of 0
7348			disables both lockup detectors. Default is 10
7349			seconds.
7350
7351	workqueue.unbound_cpus=
7352			[KNL,SMP] Specify to constrain one or some CPUs
7353			to use in unbound workqueues.
7354			Format: <cpu-list>
7355			By default, all online CPUs are available for
7356			unbound workqueues.
7357
7358	workqueue.watchdog_thresh=
7359			If CONFIG_WQ_WATCHDOG is configured, workqueue can
7360			warn stall conditions and dump internal state to
7361			help debugging.  0 disables workqueue stall
7362			detection; otherwise, it's the stall threshold
7363			duration in seconds.  The default value is 30 and
7364			it can be updated at runtime by writing to the
7365			corresponding sysfs file.
7366
7367	workqueue.cpu_intensive_thresh_us=
7368			Per-cpu work items which run for longer than this
7369			threshold are automatically considered CPU intensive
7370			and excluded from concurrency management to prevent
7371			them from noticeably delaying other per-cpu work
7372			items. Default is 10000 (10ms).
7373
7374			If CONFIG_WQ_CPU_INTENSIVE_REPORT is set, the kernel
7375			will report the work functions which violate this
7376			threshold repeatedly. They are likely good
7377			candidates for using WQ_UNBOUND workqueues instead.
7378
7379	workqueue.cpu_intensive_warning_thresh=<uint>
7380			If CONFIG_WQ_CPU_INTENSIVE_REPORT is set, the kernel
7381			will report the work functions which violate the
7382			intensive_threshold_us repeatedly. In order to prevent
7383			spurious warnings, start printing only after a work
7384			function has violated this threshold number of times.
7385
7386			The default is 4 times. 0 disables the warning.
7387
7388	workqueue.power_efficient
7389			Per-cpu workqueues are generally preferred because
7390			they show better performance thanks to cache
7391			locality; unfortunately, per-cpu workqueues tend to
7392			be more power hungry than unbound workqueues.
7393
7394			Enabling this makes the per-cpu workqueues which
7395			were observed to contribute significantly to power
7396			consumption unbound, leading to measurably lower
7397			power usage at the cost of small performance
7398			overhead.
7399
7400			The default value of this parameter is determined by
7401			the config option CONFIG_WQ_POWER_EFFICIENT_DEFAULT.
7402
7403        workqueue.default_affinity_scope=
7404			Select the default affinity scope to use for unbound
7405			workqueues. Can be one of "cpu", "smt", "cache",
7406			"numa" and "system". Default is "cache". For more
7407			information, see the Affinity Scopes section in
7408			Documentation/core-api/workqueue.rst.
7409
7410			This can be changed after boot by writing to the
7411			matching /sys/module/workqueue/parameters file. All
7412			workqueues with the "default" affinity scope will be
7413			updated accordingly.
7414
7415	workqueue.debug_force_rr_cpu
7416			Workqueue used to implicitly guarantee that work
7417			items queued without explicit CPU specified are put
7418			on the local CPU.  This guarantee is no longer true
7419			and while local CPU is still preferred work items
7420			may be put on foreign CPUs.  This debug option
7421			forces round-robin CPU selection to flush out
7422			usages which depend on the now broken guarantee.
7423			When enabled, memory and cache locality will be
7424			impacted.
7425
7426	writecombine=	[LOONGARCH,EARLY] Control the MAT (Memory Access
7427			Type) of ioremap_wc().
7428
7429			on   - Enable writecombine, use WUC for ioremap_wc()
7430			off  - Disable writecombine, use SUC for ioremap_wc()
7431
7432	x2apic_phys	[X86-64,APIC,EARLY] Use x2apic physical mode instead of
7433			default x2apic cluster mode on platforms
7434			supporting x2apic.
7435
7436	xen_512gb_limit		[KNL,X86-64,XEN]
7437			Restricts the kernel running paravirtualized under Xen
7438			to use only up to 512 GB of RAM. The reason to do so is
7439			crash analysis tools and Xen tools for doing domain
7440			save/restore/migration must be enabled to handle larger
7441			domains.
7442
7443	xen_emul_unplug=		[HW,X86,XEN,EARLY]
7444			Unplug Xen emulated devices
7445			Format: [unplug0,][unplug1]
7446			ide-disks -- unplug primary master IDE devices
7447			aux-ide-disks -- unplug non-primary-master IDE devices
7448			nics -- unplug network devices
7449			all -- unplug all emulated devices (NICs and IDE disks)
7450			unnecessary -- unplugging emulated devices is
7451				unnecessary even if the host did not respond to
7452				the unplug protocol
7453			never -- do not unplug even if version check succeeds
7454
7455	xen_legacy_crash	[X86,XEN,EARLY]
7456			Crash from Xen panic notifier, without executing late
7457			panic() code such as dumping handler.
7458
7459	xen_mc_debug	[X86,XEN,EARLY]
7460			Enable multicall debugging when running as a Xen PV guest.
7461			Enabling this feature will reduce performance a little
7462			bit, so it should only be enabled for obtaining extended
7463			debug data in case of multicall errors.
7464
7465	xen_msr_safe=	[X86,XEN,EARLY]
7466			Format: <bool>
7467			Select whether to always use non-faulting (safe) MSR
7468			access functions when running as Xen PV guest. The
7469			default value is controlled by CONFIG_XEN_PV_MSR_SAFE.
7470
7471	xen_nopv	[X86]
7472			Disables the PV optimizations forcing the HVM guest to
7473			run as generic HVM guest with no PV drivers.
7474			This option is obsoleted by the "nopv" option, which
7475			has equivalent effect for XEN platform.
7476
7477	xen_no_vector_callback
7478			[KNL,X86,XEN,EARLY] Disable the vector callback for Xen
7479			event channel interrupts.
7480
7481	xen_scrub_pages=	[XEN]
7482			Boolean option to control scrubbing pages before giving them back
7483			to Xen, for use by other domains. Can be also changed at runtime
7484			with /sys/devices/system/xen_memory/xen_memory0/scrub_pages.
7485			Default value controlled with CONFIG_XEN_SCRUB_PAGES_DEFAULT.
7486
7487	xen_timer_slop=	[X86-64,XEN,EARLY]
7488			Set the timer slop (in nanoseconds) for the virtual Xen
7489			timers (default is 100000). This adjusts the minimum
7490			delta of virtualized Xen timers, where lower values
7491			improve timer resolution at the expense of processing
7492			more timer interrupts.
7493
7494	xen.balloon_boot_timeout= [XEN]
7495			The time (in seconds) to wait before giving up to boot
7496			in case initial ballooning fails to free enough memory.
7497			Applies only when running as HVM or PVH guest and
7498			started with less memory configured than allowed at
7499			max. Default is 180.
7500
7501	xen.event_eoi_delay=	[XEN]
7502			How long to delay EOI handling in case of event
7503			storms (jiffies). Default is 10.
7504
7505	xen.event_loop_timeout=	[XEN]
7506			After which time (jiffies) the event handling loop
7507			should start to delay EOI handling. Default is 2.
7508
7509	xen.fifo_events=	[XEN]
7510			Boolean parameter to disable using fifo event handling
7511			even if available. Normally fifo event handling is
7512			preferred over the 2-level event handling, as it is
7513			fairer and the number of possible event channels is
7514			much higher. Default is on (use fifo events).
7515
7516	xirc2ps_cs=	[NET,PCMCIA]
7517			Format:
7518			<irq>,<irq_mask>,<io>,<full_duplex>,<do_sound>,<lockup_hack>[,<irq2>[,<irq3>[,<irq4>]]]
7519
7520	xive=		[PPC]
7521			By default on POWER9 and above, the kernel will
7522			natively use the XIVE interrupt controller. This option
7523			allows the fallback firmware mode to be used:
7524
7525			off       Fallback to firmware control of XIVE interrupt
7526				  controller on both pseries and powernv
7527				  platforms. Only useful on POWER9 and above.
7528
7529	xive.store-eoi=off	[PPC]
7530			By default on POWER10 and above, the kernel will use
7531			stores for EOI handling when the XIVE interrupt mode
7532			is active. This option allows the XIVE driver to use
7533			loads instead, as on POWER9.
7534
7535	xhci-hcd.quirks		[USB,KNL]
7536			A hex value specifying bitmask with supplemental xhci
7537			host controller quirks. Meaning of each bit can be
7538			consulted in header drivers/usb/host/xhci.h.
7539
7540	xmon		[PPC,EARLY]
7541			Format: { early | on | rw | ro | off }
7542			Controls if xmon debugger is enabled. Default is off.
7543			Passing only "xmon" is equivalent to "xmon=early".
7544			early	Call xmon as early as possible on boot; xmon
7545				debugger is called from setup_arch().
7546			on	xmon debugger hooks will be installed so xmon
7547				is only called on a kernel crash. Default mode,
7548				i.e. either "ro" or "rw" mode, is controlled
7549				with CONFIG_XMON_DEFAULT_RO_MODE.
7550			rw	xmon debugger hooks will be installed so xmon
7551				is called only on a kernel crash, mode is write,
7552				meaning SPR registers, memory and, other data
7553				can be written using xmon commands.
7554			ro 	same as "rw" option above but SPR registers,
7555				memory, and other data can't be written using
7556				xmon commands.
7557			off	xmon is disabled.
7558