1# 2# NOTES -- Lines that can be cut/pasted into kernel and hints configs. 3# 4# Lines that begin with 'device', 'options', 'machine', 'ident', 'maxusers', 5# 'makeoptions', 'hints', etc. go into the kernel configuration that you 6# run config(8) with. 7# 8# Lines that begin with 'envvar hint.' should go into your hints file. 9# See /boot/device.hints and/or the 'hints' config(8) directive. 10# 11# Please use ``make LINT'' to create an old-style LINT file if you want to 12# do kernel test-builds. 13# 14# This file contains machine independent kernel configuration notes. For 15# machine dependent notes, look in /sys/<arch>/conf/NOTES. 16# 17 18# 19# NOTES conventions and style guide: 20# 21# Large block comments should begin and end with a line containing only a 22# comment character. 23# 24# To describe a particular object, a block comment (if it exists) should 25# come first. Next should come device, options, and hints lines in that 26# order. All device and option lines must be described by a comment that 27# doesn't just expand the device or option name. Use only a concise 28# comment on the same line if possible. Very detailed descriptions of 29# devices and subsystems belong in man pages. 30# 31# A space followed by a tab separates 'options' from an option name. Two 32# spaces followed by a tab separate 'device' from a device name. Comments 33# after an option or device should use one space after the comment character. 34# To comment out a negative option that disables code and thus should not be 35# enabled for LINT builds, precede 'options' with "#!". 36# 37 38# 39# This is the ``identification'' of the kernel. Usually this should 40# be the same as the name of your kernel. 41# 42ident LINT 43 44# 45# The `maxusers' parameter controls the static sizing of a number of 46# internal system tables by a formula defined in subr_param.c. 47# Omitting this parameter or setting it to 0 will cause the system to 48# auto-size based on physical memory. 49# 50maxusers 10 51 52# To statically compile in device wiring instead of /boot/device.hints 53#hints "LINT.hints" # Default places to look for devices. 54 55# Use the following to compile in values accessible to the kernel 56# through getenv() (or kenv(1) in userland). The format of the file 57# is 'variable=value', see kenv(1) 58# 59#env "LINT.env" 60 61# 62# The `makeoptions' parameter allows variables to be passed to the 63# generated Makefile in the build area. 64# 65# CONF_CFLAGS gives some extra compiler flags that are added to ${CFLAGS} 66# after most other flags. Here we use it to inhibit use of non-optimal 67# gcc built-in functions (e.g., memcmp). 68# 69# DEBUG happens to be magic. 70# The following is equivalent to 'config -g KERNELNAME' and creates 71# 'kernel.debug' compiled with -g debugging as well as a normal 72# 'kernel'. Use 'make install.debug' to install the debug kernel 73# but that isn't normally necessary as the debug symbols are not loaded 74# by the kernel and are not useful there anyway. 75# 76# KERNEL can be overridden so that you can change the default name of your 77# kernel. 78# 79# MODULES_OVERRIDE can be used to limit modules built to a specific list. 80# 81makeoptions CONF_CFLAGS=-fno-builtin #Don't allow use of memcmp, etc. 82#makeoptions DEBUG=-g #Build kernel with gdb(1) debug symbols 83#makeoptions KERNEL=foo #Build kernel "foo" and install "/foo" 84# Only build ext2fs module plus those parts of the sound system I need. 85#makeoptions MODULES_OVERRIDE="ext2fs sound/sound sound/driver/maestro3" 86makeoptions DESTDIR=/tmp 87 88# 89# FreeBSD processes are subject to certain limits to their consumption 90# of system resources. See getrlimit(2) for more details. Each 91# resource limit has two values, a "soft" limit and a "hard" limit. 92# The soft limits can be modified during normal system operation, but 93# the hard limits are set at boot time. Their default values are 94# in sys/<arch>/include/vmparam.h. There are two ways to change them: 95# 96# 1. Set the values at kernel build time. The options below are one 97# way to allow that limit to grow to 1GB. They can be increased 98# further by changing the parameters: 99# 100# 2. In /boot/loader.conf, set the tunables kern.maxswzone, 101# kern.maxbcache, kern.maxtsiz, kern.dfldsiz, kern.maxdsiz, 102# kern.dflssiz, kern.maxssiz and kern.sgrowsiz. 103# 104# The options in /boot/loader.conf override anything in the kernel 105# configuration file. See the function init_param1 in 106# sys/kern/subr_param.c for more details. 107# 108 109options MAXDSIZ=(1024UL*1024*1024) 110options MAXSSIZ=(128UL*1024*1024) 111options DFLDSIZ=(1024UL*1024*1024) 112 113# 114# BLKDEV_IOSIZE sets the default block size used in user block 115# device I/O. Note that this value will be overridden by the label 116# when specifying a block device from a label with a non-0 117# partition blocksize. The default is PAGE_SIZE. 118# 119options BLKDEV_IOSIZE=8192 120 121# 122# MAXPHYS and DFLTPHYS 123# 124# These are the maximal and safe 'raw' I/O block device access sizes. 125# Reads and writes will be split into MAXPHYS chunks for known good 126# devices and DFLTPHYS for the rest. Some applications have better 127# performance with larger raw I/O access sizes. Note that certain VM 128# parameters are derived from these values and making them too large 129# can make an unbootable kernel. 130# 131# The defaults are 64K and 128K respectively. 132options DFLTPHYS=(64*1024) 133options MAXPHYS=(128*1024) 134 135 136# This allows you to actually store this configuration file into 137# the kernel binary itself. See config(8) for more details. 138# 139options INCLUDE_CONFIG_FILE # Include this file in kernel 140 141# 142# Compile-time defaults for various boot parameters 143# 144options BOOTVERBOSE=1 145options BOOTHOWTO=RB_MULTIPLE 146 147# 148# Compile-time defaults for dmesg boot tagging 149# 150# Default boot tag; may use 'kern.boot_tag' loader tunable to override. The 151# current boot's tag is also exposed via the 'kern.boot_tag' sysctl. 152options BOOT_TAG=\"\" 153# Maximum boot tag size the kernel's static buffer should accommodate. Maximum 154# size for both BOOT_TAG and the assocated tunable. 155options BOOT_TAG_SZ=32 156 157options GEOM_BDE # Disk encryption. 158options GEOM_CACHE # Disk cache. 159options GEOM_CONCAT # Disk concatenation. 160options GEOM_ELI # Disk encryption. 161options GEOM_GATE # Userland services. 162options GEOM_JOURNAL # Journaling. 163options GEOM_LABEL # Providers labelization. 164options GEOM_LINUX_LVM # Linux LVM2 volumes 165options GEOM_MAP # Map based partitioning 166options GEOM_MIRROR # Disk mirroring. 167options GEOM_MULTIPATH # Disk multipath 168options GEOM_NOP # Test class. 169options GEOM_PART_APM # Apple partitioning 170options GEOM_PART_BSD # BSD disklabel 171options GEOM_PART_BSD64 # BSD disklabel64 172options GEOM_PART_EBR # Extended Boot Records 173options GEOM_PART_GPT # GPT partitioning 174options GEOM_PART_LDM # Logical Disk Manager 175options GEOM_PART_MBR # MBR partitioning 176options GEOM_RAID # Soft RAID functionality. 177options GEOM_RAID3 # RAID3 functionality. 178options GEOM_SHSEC # Shared secret. 179options GEOM_STRIPE # Disk striping. 180options GEOM_UZIP # Read-only compressed disks 181options GEOM_VINUM # Vinum logical volume manager 182options GEOM_VIRSTOR # Virtual storage. 183options GEOM_ZERO # Performance testing helper. 184 185# 186# The root device and filesystem type can be compiled in; 187# this provides a fallback option if the root device cannot 188# be correctly guessed by the bootstrap code, or an override if 189# the RB_DFLTROOT flag (-r) is specified when booting the kernel. 190# 191options ROOTDEVNAME=\"ufs:da0s2e\" 192 193 194##################################################################### 195# Scheduler options: 196# 197# Specifying one of SCHED_4BSD or SCHED_ULE is mandatory. These options 198# select which scheduler is compiled in. 199# 200# SCHED_4BSD is the historical, proven, BSD scheduler. It has a global run 201# queue and no CPU affinity which makes it suboptimal for SMP. It has very 202# good interactivity and priority selection. 203# 204# SCHED_ULE provides significant performance advantages over 4BSD on many 205# workloads on SMP machines. It supports cpu-affinity, per-cpu runqueues 206# and scheduler locks. It also has a stronger notion of interactivity 207# which leads to better responsiveness even on uniprocessor machines. This 208# is the default scheduler. 209# 210# SCHED_STATS is a debugging option which keeps some stats in the sysctl 211# tree at 'kern.sched.stats' and is useful for debugging scheduling decisions. 212# 213options SCHED_4BSD 214options SCHED_STATS 215#options SCHED_ULE 216 217##################################################################### 218# SMP OPTIONS: 219# 220# SMP enables building of a Symmetric MultiProcessor Kernel. 221 222# Mandatory: 223options SMP # Symmetric MultiProcessor Kernel 224 225# EARLY_AP_STARTUP releases the Application Processors earlier in the 226# kernel startup process (before devices are probed) rather than at the 227# end. This is a temporary option for use during the transition from 228# late to early AP startup. 229options EARLY_AP_STARTUP 230 231# MAXCPU defines the maximum number of CPUs that can boot in the system. 232# A default value should be already present, for every architecture. 233options MAXCPU=32 234 235# NUMA enables use of Non-Uniform Memory Access policies in various kernel 236# subsystems. 237options NUMA 238 239# MAXMEMDOM defines the maximum number of memory domains that can boot in the 240# system. A default value should already be defined by every architecture. 241options MAXMEMDOM=2 242 243# ADAPTIVE_MUTEXES changes the behavior of blocking mutexes to spin 244# if the thread that currently owns the mutex is executing on another 245# CPU. This behavior is enabled by default, so this option can be used 246# to disable it. 247options NO_ADAPTIVE_MUTEXES 248 249# ADAPTIVE_RWLOCKS changes the behavior of reader/writer locks to spin 250# if the thread that currently owns the rwlock is executing on another 251# CPU. This behavior is enabled by default, so this option can be used 252# to disable it. 253options NO_ADAPTIVE_RWLOCKS 254 255# ADAPTIVE_SX changes the behavior of sx locks to spin if the thread that 256# currently owns the sx lock is executing on another CPU. 257# This behavior is enabled by default, so this option can be used to 258# disable it. 259options NO_ADAPTIVE_SX 260 261# MUTEX_NOINLINE forces mutex operations to call functions to perform each 262# operation rather than inlining the simple cases. This can be used to 263# shrink the size of the kernel text segment. Note that this behavior is 264# already implied by the INVARIANT_SUPPORT, INVARIANTS, KTR, LOCK_PROFILING, 265# and WITNESS options. 266options MUTEX_NOINLINE 267 268# RWLOCK_NOINLINE forces rwlock operations to call functions to perform each 269# operation rather than inlining the simple cases. This can be used to 270# shrink the size of the kernel text segment. Note that this behavior is 271# already implied by the INVARIANT_SUPPORT, INVARIANTS, KTR, LOCK_PROFILING, 272# and WITNESS options. 273options RWLOCK_NOINLINE 274 275# SX_NOINLINE forces sx lock operations to call functions to perform each 276# operation rather than inlining the simple cases. This can be used to 277# shrink the size of the kernel text segment. Note that this behavior is 278# already implied by the INVARIANT_SUPPORT, INVARIANTS, KTR, LOCK_PROFILING, 279# and WITNESS options. 280options SX_NOINLINE 281 282# SMP Debugging Options: 283# 284# CALLOUT_PROFILING enables rudimentary profiling of the callwheel data 285# structure used as backend in callout(9). 286# PREEMPTION allows the threads that are in the kernel to be preempted by 287# higher priority [interrupt] threads. It helps with interactivity 288# and allows interrupt threads to run sooner rather than waiting. 289# FULL_PREEMPTION instructs the kernel to preempt non-realtime kernel 290# threads. Its sole use is to expose race conditions and other 291# bugs during development. Enabling this option will reduce 292# performance and increase the frequency of kernel panics by 293# design. If you aren't sure that you need it then you don't. 294# Relies on the PREEMPTION option. DON'T TURN THIS ON. 295# SLEEPQUEUE_PROFILING enables rudimentary profiling of the hash table 296# used to hold active sleep queues as well as sleep wait message 297# frequency. 298# TURNSTILE_PROFILING enables rudimentary profiling of the hash table 299# used to hold active lock queues. 300# UMTX_PROFILING enables rudimentary profiling of the hash table used 301# to hold active lock queues. 302# WITNESS enables the witness code which detects deadlocks and cycles 303# during locking operations. 304# WITNESS_KDB causes the witness code to drop into the kernel debugger if 305# a lock hierarchy violation occurs or if locks are held when going to 306# sleep. 307# WITNESS_SKIPSPIN disables the witness checks on spin mutexes. 308options PREEMPTION 309options FULL_PREEMPTION 310options WITNESS 311options WITNESS_KDB 312options WITNESS_SKIPSPIN 313 314# LOCK_PROFILING - Profiling locks. See LOCK_PROFILING(9) for details. 315options LOCK_PROFILING 316# Set the number of buffers and the hash size. The hash size MUST be larger 317# than the number of buffers. Hash size should be prime. 318options MPROF_BUFFERS="1536" 319options MPROF_HASH_SIZE="1543" 320 321# Profiling for the callout(9) backend. 322options CALLOUT_PROFILING 323 324# Profiling for internal hash tables. 325options SLEEPQUEUE_PROFILING 326options TURNSTILE_PROFILING 327options UMTX_PROFILING 328 329# Debugging traces for epoch(9) misuse 330options EPOCH_TRACE 331 332##################################################################### 333# COMPATIBILITY OPTIONS 334 335# Old tty interface. 336options COMPAT_43TTY 337 338# Note that as a general rule, COMPAT_FREEBSD<n> depends on 339# COMPAT_FREEBSD<n+1>, COMPAT_FREEBSD<n+2>, etc. 340 341# Enable FreeBSD4 compatibility syscalls 342options COMPAT_FREEBSD4 343 344# Enable FreeBSD5 compatibility syscalls 345options COMPAT_FREEBSD5 346 347# Enable FreeBSD6 compatibility syscalls 348options COMPAT_FREEBSD6 349 350# Enable FreeBSD7 compatibility syscalls 351options COMPAT_FREEBSD7 352 353# Enable FreeBSD9 compatibility syscalls 354options COMPAT_FREEBSD9 355 356# Enable FreeBSD10 compatibility syscalls 357options COMPAT_FREEBSD10 358 359# Enable FreeBSD11 compatibility syscalls 360options COMPAT_FREEBSD11 361 362# Enable FreeBSD12 compatibility syscalls 363options COMPAT_FREEBSD12 364 365# Enable FreeBSD13 compatibility syscalls 366options COMPAT_FREEBSD13 367 368# Enable FreeBSD14 compatibility syscalls 369options COMPAT_FREEBSD14 370 371# Enable Linux Kernel Programming Interface 372options COMPAT_LINUXKPI 373 374# 375# These three options provide support for System V Interface 376# Definition-style interprocess communication, in the form of shared 377# memory, semaphores, and message queues, respectively. 378# 379options SYSVSHM 380options SYSVSEM 381options SYSVMSG 382 383 384##################################################################### 385# DEBUGGING OPTIONS 386 387# 388# Compile with kernel debugger related code. 389# 390options KDB 391 392# 393# Print a stack trace of the current thread on the console for a panic. 394# 395options KDB_TRACE 396 397# 398# Don't enter the debugger for a panic. Intended for unattended operation 399# where you may want to enter the debugger from the console, but still want 400# the machine to recover from a panic. 401# 402options KDB_UNATTENDED 403 404# 405# Enable the ddb debugger backend. 406# 407options DDB 408 409# 410# Print the numerical value of symbols in addition to the symbolic 411# representation. 412# 413options DDB_NUMSYM 414 415# 416# Enable the remote gdb debugger backend. 417# 418options GDB 419 420# 421# Trashes list pointers when they become invalid (i.e., the element is 422# removed from a list). Relatively inexpensive to enable. 423# 424options QUEUE_MACRO_DEBUG_TRASH 425 426# 427# Stores information about the last caller to modify the list object 428# in the list object. Requires additional memory overhead. 429# 430#options QUEUE_MACRO_DEBUG_TRACE 431 432# 433# SYSCTL_DEBUG enables a 'sysctl' debug tree that can be used to dump the 434# contents of the registered sysctl nodes on the console. It is disabled by 435# default because it generates excessively verbose console output that can 436# interfere with serial console operation. 437# 438options SYSCTL_DEBUG 439 440# 441# Enable textdump by default, this disables kernel core dumps. 442# 443options TEXTDUMP_PREFERRED 444 445# 446# Enable extra debug messages while performing textdumps. 447# 448options TEXTDUMP_VERBOSE 449 450# 451# NO_SYSCTL_DESCR omits the sysctl node descriptions to save space in the 452# resulting kernel. 453options NO_SYSCTL_DESCR 454 455# 456# MALLOC_DEBUG_MAXZONES enables multiple uma zones for malloc(9) 457# allocations that are smaller than a page. The purpose is to isolate 458# different malloc types into hash classes, so that any buffer 459# overruns or use-after-free will usually only affect memory from 460# malloc types in that hash class. This is purely a debugging tool; 461# by varying the hash function and tracking which hash class was 462# corrupted, the intersection of the hash classes from each instance 463# will point to a single malloc type that is being misused. At this 464# point inspection or memguard(9) can be used to catch the offending 465# code. 466# 467options MALLOC_DEBUG_MAXZONES=8 468 469# 470# DEBUG_MEMGUARD builds and enables memguard(9), a replacement allocator 471# for the kernel used to detect modify-after-free scenarios. See the 472# memguard(9) man page for more information on usage. 473# 474options DEBUG_MEMGUARD 475 476# 477# DEBUG_REDZONE enables buffer underflows and buffer overflows detection for 478# malloc(9). 479# 480options DEBUG_REDZONE 481 482# 483# EARLY_PRINTF enables support for calling a special printf (eprintf) 484# very early in the kernel (before cn_init() has been called). This 485# should only be used for debugging purposes early in boot. Normally, 486# it is not defined. It is commented out here because this feature 487# isn't generally available. And the required eputc() isn't defined. 488# 489#options EARLY_PRINTF 490 491# 492# KTRACE enables the system-call tracing facility ktrace(2). To be more 493# SMP-friendly, KTRACE uses a worker thread to process most trace events 494# asynchronously to the thread generating the event. This requires a 495# pre-allocated store of objects representing trace events. The 496# KTRACE_REQUEST_POOL option specifies the initial size of this store. 497# The size of the pool can be adjusted both at boottime and runtime via 498# the kern.ktrace_request_pool tunable and sysctl. 499# 500options KTRACE #kernel tracing 501options KTRACE_REQUEST_POOL=101 502 503# 504# KTR is a kernel tracing facility imported from BSD/OS. It is 505# enabled with the KTR option. KTR_ENTRIES defines the number of 506# entries in the circular trace buffer; it may be an arbitrary number. 507# KTR_BOOT_ENTRIES defines the number of entries during the early boot, 508# before malloc(9) is functional. 509# KTR_COMPILE defines the mask of events to compile into the kernel as 510# defined by the KTR_* constants in <sys/ktr.h>. KTR_MASK defines the 511# initial value of the ktr_mask variable which determines at runtime 512# what events to trace. KTR_CPUMASK determines which CPU's log 513# events, with bit X corresponding to CPU X. The layout of the string 514# passed as KTR_CPUMASK must match a series of bitmasks each of them 515# separated by the "," character (ie: 516# KTR_CPUMASK=0xAF,0xFFFFFFFFFFFFFFFF). KTR_VERBOSE enables 517# dumping of KTR events to the console by default. This functionality 518# can be toggled via the debug.ktr_verbose sysctl and defaults to off 519# if KTR_VERBOSE is not defined. See ktr(4) and ktrdump(8) for details. 520# 521options KTR 522options KTR_BOOT_ENTRIES=1024 523options KTR_ENTRIES=(128*1024) 524options KTR_COMPILE=(KTR_ALL) 525options KTR_MASK=KTR_INTR 526options KTR_CPUMASK=0x3 527options KTR_VERBOSE 528 529# 530# ALQ(9) is a facility for the asynchronous queuing of records from the kernel 531# to a vnode, and is employed by services such as ktr(4) to produce trace 532# files based on a kernel event stream. Records are written asynchronously 533# in a worker thread. 534# 535options ALQ 536options KTR_ALQ 537 538# 539# The INVARIANTS option is used in a number of source files to enable 540# extra sanity checking of internal structures. This support is not 541# enabled by default because of the extra time it would take to check 542# for these conditions, which can only occur as a result of 543# programming errors. 544# 545options INVARIANTS 546 547# 548# The INVARIANT_SUPPORT option makes us compile in support for 549# verifying some of the internal structures. It is a prerequisite for 550# 'INVARIANTS', as enabling 'INVARIANTS' will make these functions be 551# called. The intent is that you can set 'INVARIANTS' for single 552# source files (by changing the source file or specifying it on the 553# command line) if you have 'INVARIANT_SUPPORT' enabled. Also, if you 554# wish to build a kernel module with 'INVARIANTS', then adding 555# 'INVARIANT_SUPPORT' to your kernel will provide all the necessary 556# infrastructure without the added overhead. 557# 558options INVARIANT_SUPPORT 559 560# 561# The KASSERT_PANIC_OPTIONAL option allows kasserts to fire without 562# necessarily inducing a panic. Panic is the default behavior, but 563# runtime options can configure it either entirely off, or off with a 564# limit. 565# 566options KASSERT_PANIC_OPTIONAL 567 568# 569# The DIAGNOSTIC option is used to enable extra debugging information 570# and invariants checking. The added checks are too expensive or noisy 571# for an INVARIANTS kernel and thus are disabled by default. It is 572# expected that a kernel configured with DIAGNOSTIC will also have the 573# INVARIANTS option enabled. 574# 575options DIAGNOSTIC 576 577# 578# REGRESSION causes optional kernel interfaces necessary only for regression 579# testing to be enabled. These interfaces may constitute security risks 580# when enabled, as they permit processes to easily modify aspects of the 581# run-time environment to reproduce unlikely or unusual (possibly normally 582# impossible) scenarios. 583# 584options REGRESSION 585 586# 587# This option lets some drivers co-exist that can't co-exist in a running 588# system. This is used to be able to compile all kernel code in one go for 589# quality assurance purposes (like this file, which the option takes it name 590# from.) 591# 592options COMPILING_LINT 593 594# 595# STACK enables the stack(9) facility, allowing the capture of kernel stack 596# for the purpose of procinfo(1), etc. stack(9) will also be compiled in 597# automatically if DDB(4) is compiled into the kernel. 598# 599options STACK 600 601# 602# The NUM_CORE_FILES option specifies the limit for the number of core 603# files generated by a particular process, when the core file format 604# specifier includes the %I pattern. Since we only have 1 character for 605# the core count in the format string, meaning the range will be 0-9, the 606# maximum value allowed for this option is 10. 607# This core file limit can be adjusted at runtime via the debug.ncores 608# sysctl. 609# 610options NUM_CORE_FILES=5 611 612# 613# The TSLOG option enables timestamped logging of events, especially 614# function entries/exits, in order to track the time spent by the kernel. 615# In particular, this is useful when investigating the early boot process, 616# before it is possible to use more sophisticated tools like DTrace. 617# The TSLOGSIZE option controls the size of the (preallocated, fixed 618# length) buffer used for storing these events (default: 262144 records). 619# The TSLOG_PAGEZERO option enables TSLOG of pmap_zero_page; this must be 620# enabled separately since it typically generates too many records to be 621# useful. 622# 623# For security reasons the TSLOG option should not be enabled on systems 624# used in production. 625# 626options TSLOG 627options TSLOGSIZE=262144 628 629 630##################################################################### 631# PERFORMANCE MONITORING OPTIONS 632 633# 634# The hwpmc driver that allows the use of in-CPU performance monitoring 635# counters for performance monitoring. The base kernel needs to be configured 636# with the 'options' line, while the hwpmc device can be either compiled 637# in or loaded as a loadable kernel module. 638# 639# Additional configuration options may be required on specific architectures, 640# please see hwpmc(4). 641 642device hwpmc # Driver (also a loadable module) 643options HWPMC_DEBUG 644options HWPMC_HOOKS # Other necessary kernel hooks 645 646 647##################################################################### 648# NETWORKING OPTIONS 649 650# 651# Protocol families 652# 653options INET #Internet communications protocols 654options INET6 #IPv6 communications protocols 655# 656# Note if you include INET/INET6 or both options 657# You *must* define at least one of the congestion control 658# options or the compile will fail. GENERIC defines 659# options CC_CUBIC. You may want to specify a default 660# if multiple congestion controls are compiled in. 661# The string in default is the name of the 662# cc module as it would appear in the sysctl for 663# setting the default. The code defines CUBIC 664# as default, or the sole cc_module compiled in. 665# 666options CC_CDG 667options CC_CHD 668options CC_CUBIC 669options CC_DCTCP 670options CC_HD 671options CC_HTCP 672options CC_NEWRENO 673options CC_VEGAS 674options CC_DEFAULT=\"cubic\" 675options RATELIMIT # TX rate limiting support 676 677options ROUTETABLES=2 # allocated fibs up to 65536. default is 1. 678 # but that would be a bad idea as they are large. 679 680options TCP_OFFLOAD # TCP offload support. 681options TCP_RFC7413 # TCP Fast Open 682 683options TCPHPTS 684 685# In order to enable IPSEC you MUST also add device crypto to 686# your kernel configuration 687options IPSEC #IP security (requires device crypto) 688 689# Option IPSEC_SUPPORT does not enable IPsec, but makes it possible to 690# load it as a kernel module. You still MUST add device crypto to your kernel 691# configuration. 692options IPSEC_SUPPORT 693#options IPSEC_DEBUG #debug for IP security 694 695# Alternative TCP stacks 696options TCP_BBR 697options TCP_RACK 698 699# TLS framing and encryption/decryption of data over TCP sockets. 700options KERN_TLS # TLS transmit and receive offload 701 702# Netlink kernel/user<>kernel/user messaging interface 703options NETLINK 704 705# 706# SMB/CIFS requester 707# NETSMB enables support for SMB protocol, it requires LIBMCHAIN and LIBICONV 708# options. 709options NETSMB #SMB/CIFS requester 710 711# mchain library. It can be either loaded as KLD or compiled into kernel 712options LIBMCHAIN 713 714# libalias library, performing NAT 715options LIBALIAS 716 717# 718# SCTP is a NEW transport protocol defined by 719# RFC2960 updated by RFC3309 and RFC3758.. and 720# soon to have a new base RFC and many many more 721# extensions. This release supports all the extensions 722# including many drafts (most about to become RFC's). 723# It is the reference implementation of SCTP 724# and is quite well tested. 725# 726# Note YOU MUST have both INET and INET6 defined. 727# You don't have to enable V6, but SCTP is 728# dual stacked and so far we have not torn apart 729# the V6 and V4.. since an association can span 730# both a V6 and V4 address at the SAME time :-) 731# 732# The SCTP_SUPPORT option does not enable SCTP, but provides the necessary 733# support for loading SCTP as a loadable kernel module. 734# 735options SCTP 736options SCTP_SUPPORT 737 738# There are bunches of options: 739# this one turns on all sorts of 740# nastily printing that you can 741# do. It's all controlled by a 742# bit mask (settable by socket opt and 743# by sysctl). Including will not cause 744# logging until you set the bits.. but it 745# can be quite verbose.. so without this 746# option we don't do any of the tests for 747# bits and prints.. which makes the code run 748# faster.. if you are not debugging don't use. 749options SCTP_DEBUG 750 751# 752# All that options after that turn on specific types of 753# logging. You can monitor CWND growth, flight size 754# and all sorts of things. Go look at the code and 755# see. I have used this to produce interesting 756# charts and graphs as well :-> 757# 758# I have not yet committed the tools to get and print 759# the logs, I will do that eventually .. before then 760# if you want them send me an email rrs@freebsd.org 761# You basically must have ktr(4) enabled for these 762# and you then set the sysctl to turn on/off various 763# logging bits. Use ktrdump(8) to pull the log and run 764# it through a display program.. and graphs and other 765# things too. 766# 767options SCTP_LOCK_LOGGING 768options SCTP_MBUF_LOGGING 769options SCTP_MBCNT_LOGGING 770options SCTP_PACKET_LOGGING 771options SCTP_LTRACE_CHUNKS 772options SCTP_LTRACE_ERRORS 773 774# OpenFabrics Enterprise Distribution (Infiniband). 775options OFED 776options OFED_DEBUG_INIT 777 778# Sockets Direct Protocol 779options SDP 780options SDP_DEBUG 781 782# IP over Infiniband 783options IPOIB 784options IPOIB_DEBUG 785options IPOIB_CM 786 787# altq(9). Enable the base part of the hooks with the ALTQ option. 788# Individual disciplines must be built into the base system and can not be 789# loaded as modules at this point. ALTQ requires a stable TSC so if yours is 790# broken or changes with CPU throttling then you must also have the ALTQ_NOPCC 791# option. 792options ALTQ 793options ALTQ_CBQ # Class Based Queueing 794options ALTQ_RED # Random Early Detection 795options ALTQ_RIO # RED In/Out 796options ALTQ_CODEL # CoDel Active Queueing 797options ALTQ_HFSC # Hierarchical Packet Scheduler 798options ALTQ_FAIRQ # Fair Packet Scheduler 799options ALTQ_CDNR # Traffic conditioner 800options ALTQ_PRIQ # Priority Queueing 801options ALTQ_NOPCC # Required if the TSC is unusable 802options ALTQ_DEBUG 803 804# netgraph(4). Enable the base netgraph code with the NETGRAPH option. 805# Individual node types can be enabled with the corresponding option 806# listed below; however, this is not strictly necessary as netgraph 807# will automatically load the corresponding KLD module if the node type 808# is not already compiled into the kernel. Each type below has a 809# corresponding man page, e.g., ng_async(8). 810options NETGRAPH # netgraph(4) system 811options NETGRAPH_DEBUG # enable extra debugging, this 812 # affects netgraph(4) and nodes 813# Node types 814options NETGRAPH_ASYNC 815options NETGRAPH_BLUETOOTH # ng_bluetooth(4) 816options NETGRAPH_BLUETOOTH_HCI # ng_hci(4) 817options NETGRAPH_BLUETOOTH_L2CAP # ng_l2cap(4) 818options NETGRAPH_BLUETOOTH_SOCKET # ng_btsocket(4) 819options NETGRAPH_BLUETOOTH_UBT # ng_ubt(4) 820options NETGRAPH_BLUETOOTH_UBTBCMFW # ubtbcmfw(4) 821options NETGRAPH_BPF 822options NETGRAPH_BRIDGE 823options NETGRAPH_CAR 824options NETGRAPH_CHECKSUM 825options NETGRAPH_CISCO 826options NETGRAPH_DEFLATE 827options NETGRAPH_DEVICE 828options NETGRAPH_ECHO 829options NETGRAPH_EIFACE 830options NETGRAPH_ETHER 831options NETGRAPH_FRAME_RELAY 832options NETGRAPH_GIF 833options NETGRAPH_GIF_DEMUX 834options NETGRAPH_HOLE 835options NETGRAPH_IFACE 836options NETGRAPH_IP_INPUT 837options NETGRAPH_IPFW 838options NETGRAPH_KSOCKET 839options NETGRAPH_L2TP 840options NETGRAPH_LMI 841options NETGRAPH_MPPC_COMPRESSION 842options NETGRAPH_MPPC_ENCRYPTION 843options NETGRAPH_NETFLOW 844options NETGRAPH_NAT 845options NETGRAPH_ONE2MANY 846options NETGRAPH_PATCH 847options NETGRAPH_PIPE 848options NETGRAPH_PPP 849options NETGRAPH_PPPOE 850options NETGRAPH_PPTPGRE 851options NETGRAPH_PRED1 852options NETGRAPH_RFC1490 853options NETGRAPH_SOCKET 854options NETGRAPH_SPLIT 855options NETGRAPH_TAG 856options NETGRAPH_TCPMSS 857options NETGRAPH_TEE 858options NETGRAPH_UI 859options NETGRAPH_VJC 860options NETGRAPH_VLAN 861 862# Network stack virtualization. 863options VIMAGE 864options VNET_DEBUG # debug for VIMAGE 865 866# 867# Network interfaces: 868# The `loop' device is MANDATORY when networking is enabled. 869device loop 870 871# The `ether' device provides generic code to handle 872# Ethernets; it is MANDATORY when an Ethernet device driver is 873# configured. 874device ether 875 876# The `vlan' device implements the VLAN tagging of Ethernet frames 877# according to IEEE 802.1Q. 878device vlan 879 880# The `vxlan' device implements the VXLAN encapsulation of Ethernet 881# frames in UDP packets according to RFC7348. 882device vxlan 883 884# The `wlan' device provides generic code to support 802.11 885# drivers, including host AP mode; it is MANDATORY for the wi, 886# and ath drivers and will eventually be required by all 802.11 drivers. 887device wlan 888options IEEE80211_DEBUG #enable debugging msgs 889options IEEE80211_SUPPORT_MESH #enable 802.11s D3.0 support 890options IEEE80211_SUPPORT_TDMA #enable TDMA support 891 892# The `wlan_wep', `wlan_tkip', and `wlan_ccmp' devices provide 893# support for WEP, TKIP, and AES-CCMP crypto protocols optionally 894# used with 802.11 devices that depend on the `wlan' module. 895device wlan_wep 896device wlan_ccmp 897device wlan_tkip 898 899# The `wlan_xauth' device provides support for external (i.e. user-mode) 900# authenticators for use with 802.11 drivers that use the `wlan' 901# module and support 802.1x and/or WPA security protocols. 902device wlan_xauth 903 904# The `wlan_acl' device provides a MAC-based access control mechanism 905# for use with 802.11 drivers operating in ap mode and using the 906# `wlan' module. 907# The 'wlan_amrr' device provides AMRR transmit rate control algorithm 908device wlan_acl 909device wlan_amrr 910 911# The `bpf' device enables the Berkeley Packet Filter. Be 912# aware of the legal and administrative consequences of enabling this 913# option. DHCP requires bpf. 914device bpf 915 916# The `netmap' device implements memory-mapped access to network 917# devices from userspace, enabling wire-speed packet capture and 918# generation even at 10Gbit/s. Requires support in the device 919# driver. Supported drivers are ixgbe, e1000, re. 920device netmap 921 922# The `disc' device implements a minimal network interface, 923# which throws away all packets sent and never receives any. It is 924# included for testing and benchmarking purposes. 925device disc 926 927# The `epair' device implements a virtual back-to-back connected Ethernet 928# like interface pair. 929device epair 930 931# The `edsc' device implements a minimal Ethernet interface, 932# which discards all packets sent and receives none. 933device edsc 934 935# The `tuntap' device implements (user-)ppp, nos-tun(8) and a pty-like virtual 936# Ethernet interface 937device tuntap 938 939# The `gif' device implements IPv6 over IP4 tunneling, 940# IPv4 over IPv6 tunneling, IPv4 over IPv4 tunneling and 941# IPv6 over IPv6 tunneling. 942# The `gre' device implements GRE (Generic Routing Encapsulation) tunneling, 943# as specified in the RFC 2784 and RFC 2890. 944# The `me' device implements Minimal Encapsulation within IPv4 as 945# specified in the RFC 2004. 946# The XBONEHACK option allows the same pair of addresses to be configured on 947# multiple gif interfaces. 948device gif 949device gre 950device me 951options XBONEHACK 952 953# The `stf' device implements 6to4 encapsulation. 954device stf 955 956# The pf packet filter consists of three devices: 957# The `pf' device provides /dev/pf and the firewall code itself. 958# The `pflog' device provides the pflog0 interface which logs packets. 959# The `pfsync' device provides the pfsync0 interface used for 960# synchronization of firewall state tables (over the net). 961device pf 962device pflog 963device pfsync 964 965# Bridge interface. 966device if_bridge 967 968# Common Address Redundancy Protocol. See carp(4) for more details. 969device carp 970 971# IPsec interface. 972device enc 973 974# Link aggregation interface. 975device lagg 976 977# WireGuard interface. 978device wg 979 980# 981# Internet family options: 982# 983# MROUTING enables the kernel multicast packet forwarder, which works 984# with mrouted and XORP. 985# 986# IPFIREWALL enables support for IP firewall construction, in 987# conjunction with the `ipfw' program. IPFIREWALL_VERBOSE sends 988# logged packets to the system logger. IPFIREWALL_VERBOSE_LIMIT 989# limits the number of times a matching entry can be logged. 990# 991# WARNING: IPFIREWALL defaults to a policy of "deny ip from any to any" 992# and if you do not add other rules during startup to allow access, 993# YOU WILL LOCK YOURSELF OUT. It is suggested that you set firewall_type=open 994# in /etc/rc.conf when first enabling this feature, then refining the 995# firewall rules in /etc/rc.firewall after you've tested that the new kernel 996# feature works properly. 997# 998# IPFIREWALL_DEFAULT_TO_ACCEPT causes the default rule (at boot) to 999# allow everything. Use with care, if a cracker can crash your 1000# firewall machine, they can get to your protected machines. However, 1001# if you are using it as an as-needed filter for specific problems as 1002# they arise, then this may be for you. Changing the default to 'allow' 1003# means that you won't get stuck if the kernel and /sbin/ipfw binary get 1004# out of sync. 1005# 1006# IPDIVERT enables the divert IP sockets, used by ``ipfw divert''. It 1007# depends on IPFIREWALL if compiled into the kernel. 1008# 1009# IPFIREWALL_NAT adds support for in kernel nat in ipfw, and it requires 1010# LIBALIAS. 1011# 1012# IPFIREWALL_NAT64 adds support for in kernel NAT64 in ipfw. 1013# 1014# IPFIREWALL_NPTV6 adds support for in kernel NPTv6 in ipfw. 1015# 1016# IPFIREWALL_PMOD adds support for protocols modification module. Currently 1017# it supports only TCP MSS modification. 1018# 1019# IPSTEALTH enables code to support stealth forwarding (i.e., forwarding 1020# packets without touching the TTL). This can be useful to hide firewalls 1021# from traceroute and similar tools. 1022# 1023# PF_DEFAULT_TO_DROP causes the default pf(4) rule to deny everything. 1024# 1025# TCPPCAP enables code which keeps the last n packets sent and received 1026# on a TCP socket. 1027# 1028# TCP_BLACKBOX enables enhanced TCP event logging. 1029# 1030# TCP_HHOOK enables the hhook(9) framework hooks for the TCP stack. 1031# 1032# ROUTE_MPATH provides support for multipath routing. 1033# 1034options MROUTING # Multicast routing 1035options IPFIREWALL #firewall 1036options IPFIREWALL_VERBOSE #enable logging to syslogd(8) 1037options IPFIREWALL_VERBOSE_LIMIT=100 #limit verbosity 1038options IPFIREWALL_DEFAULT_TO_ACCEPT #allow everything by default 1039options IPFIREWALL_NAT #ipfw kernel nat support 1040options IPFIREWALL_NAT64 #ipfw kernel NAT64 support 1041options IPFIREWALL_NPTV6 #ipfw kernel IPv6 NPT support 1042options IPDIVERT #divert sockets 1043options IPFILTER #ipfilter support 1044options IPFILTER_LOG #ipfilter logging 1045options IPFILTER_LOOKUP #ipfilter pools 1046options IPFILTER_DEFAULT_BLOCK #block all packets by default 1047options IPSTEALTH #support for stealth forwarding 1048options PF_DEFAULT_TO_DROP #drop everything by default 1049options TCPPCAP 1050options TCP_BLACKBOX 1051options TCP_HHOOK 1052options ROUTE_MPATH 1053 1054# The MBUF_STRESS_TEST option enables options which create 1055# various random failures / extreme cases related to mbuf 1056# functions. See mbuf(9) for a list of available test cases. 1057# MBUF_PROFILING enables code to profile the mbuf chains 1058# exiting the system (via participating interfaces) and 1059# return a logarithmic histogram of monitored parameters 1060# (e.g. packet size, wasted space, number of mbufs in chain). 1061options MBUF_STRESS_TEST 1062options MBUF_PROFILING 1063 1064# Statically link in accept filters 1065options ACCEPT_FILTER_DATA 1066options ACCEPT_FILTER_DNS 1067options ACCEPT_FILTER_HTTP 1068 1069# TCP_SIGNATURE adds support for RFC 2385 (TCP-MD5) digests. These are 1070# carried in TCP option 19. This option is commonly used to protect 1071# TCP sessions (e.g. BGP) where IPSEC is not available nor desirable. 1072# This is enabled on a per-socket basis using the TCP_MD5SIG socket option. 1073# This requires the use of 'device crypto' and either 'options IPSEC' or 1074# 'options IPSEC_SUPPORT'. 1075options TCP_SIGNATURE #include support for RFC 2385 1076 1077# DUMMYNET enables the "dummynet" bandwidth limiter. You need IPFIREWALL 1078# as well. See dummynet(4) and ipfw(8) for more info. When you run 1079# DUMMYNET, HZ/kern.hz should be at least 1000 for adequate response. 1080options DUMMYNET 1081 1082# The DEBUGNET option enables a basic debug/panic-time networking API. It 1083# is used by NETDUMP and NETGDB. 1084options DEBUGNET 1085 1086# The NETDUMP option enables netdump(4) client support in the kernel. 1087# This allows a panicking kernel to transmit a kernel dump to a remote host. 1088options NETDUMP 1089 1090# The NETGDB option enables netgdb(4) support in the kernel. This allows a 1091# panicking kernel to be debugged as a GDB remote over the network. 1092options NETGDB 1093 1094##################################################################### 1095# FILESYSTEM OPTIONS 1096 1097# 1098# Only the root filesystem needs to be statically compiled or preloaded 1099# as module; everything else will be automatically loaded at mount 1100# time. Some people still prefer to statically compile other 1101# filesystems as well. 1102# 1103# NB: The UNION filesystem was known to be buggy in the past. It is now 1104# being actively maintained, although there are still some issues being 1105# resolved. 1106# 1107 1108# One of these is mandatory: 1109options FFS #Fast filesystem 1110options NFSCL #Network File System client 1111 1112# The rest are optional: 1113options AUTOFS #Automounter filesystem 1114options CD9660 #ISO 9660 filesystem 1115options FDESCFS #File descriptor filesystem 1116options FUSEFS #FUSEFS support module 1117options MSDOSFS #MS DOS File System (FAT, FAT32) 1118options NFSLOCKD #Network Lock Manager 1119options NFSD #Network Filesystem Server 1120options KGSSAPI #Kernel GSSAPI implementation 1121 1122options NULLFS #NULL filesystem 1123options PROCFS #Process filesystem (requires PSEUDOFS) 1124options PSEUDOFS #Pseudo-filesystem framework 1125options PSEUDOFS_TRACE #Debugging support for PSEUDOFS 1126options SMBFS #SMB/CIFS filesystem 1127options TMPFS #Efficient memory filesystem 1128options UDF #Universal Disk Format 1129options UNIONFS #Union filesystem 1130# The xFS_ROOT options REQUIRE the associated ``options xFS'' 1131options NFS_ROOT #NFS usable as root device 1132 1133# Soft updates is a technique for improving filesystem speed and 1134# making abrupt shutdown less risky. 1135# 1136options SOFTUPDATES 1137 1138# Extended attributes allow additional data to be associated with files, 1139# and is used for ACLs, Capabilities, and MAC labels. 1140# See src/sys/ufs/ufs/README.extattr for more information. 1141options UFS_EXTATTR 1142options UFS_EXTATTR_AUTOSTART 1143 1144# Access Control List support for UFS filesystems. The current ACL 1145# implementation requires extended attribute support, UFS_EXTATTR, 1146# for the underlying filesystem. 1147# See src/sys/ufs/ufs/README.acls for more information. 1148options UFS_ACL 1149 1150# Directory hashing improves the speed of operations on very large 1151# directories at the expense of some memory. 1152options UFS_DIRHASH 1153 1154# Gjournal-based UFS journaling support. 1155options UFS_GJOURNAL 1156 1157# Make space in the kernel for a root filesystem on a md device. 1158# Define to the number of kilobytes to reserve for the filesystem. 1159# This is now optional. 1160# If not defined, the root filesystem passed in as the MFS_IMAGE makeoption 1161# will be automatically embedded in the kernel during linking. Its exact size 1162# will be consumed within the kernel. 1163# If defined, the old way of embedding the filesystem in the kernel will be 1164# used. That is to say MD_ROOT_SIZE KB will be allocated in the kernel and 1165# later, the filesystem image passed in as the MFS_IMAGE makeoption will be 1166# dd'd into the reserved space if it fits. 1167options MD_ROOT_SIZE=10 1168 1169# Make the md device a potential root device, either with preloaded 1170# images of type mfs_root or md_root. 1171options MD_ROOT 1172 1173# Write-protect the md root device so that it may not be mounted writeable. 1174options MD_ROOT_READONLY 1175 1176# Allow to read MD image from external memory regions 1177options MD_ROOT_MEM 1178 1179# Disk quotas are supported when this option is enabled. 1180options QUOTA #enable disk quotas 1181 1182# If you are running a machine just as a fileserver for PC and MAC 1183# users, using SAMBA, you may consider setting this option 1184# and keeping all those users' directories on a filesystem that is 1185# mounted with the suiddir option. This gives new files the same 1186# ownership as the directory (similar to group). It's a security hole 1187# if you let these users run programs, so confine it to file-servers 1188# (but it'll save you lots of headaches in those cases). Root owned 1189# directories are exempt and X bits are cleared. The suid bit must be 1190# set on the directory as well; see chmod(1). PC owners can't see/set 1191# ownerships so they keep getting their toes trodden on. This saves 1192# you all the support calls as the filesystem it's used on will act as 1193# they expect: "It's my dir so it must be my file". 1194# 1195options SUIDDIR 1196 1197# NFS options: 1198options NFS_MINATTRTIMO=3 # VREG attrib cache timeout in sec 1199options NFS_MAXATTRTIMO=60 1200options NFS_MINDIRATTRTIMO=30 # VDIR attrib cache timeout in sec 1201options NFS_MAXDIRATTRTIMO=60 1202options NFS_DEBUG # Enable NFS Debugging 1203 1204# 1205# Add support for the EXT2FS filesystem of Linux fame. Be a bit 1206# careful with this - the ext2fs code has a tendency to lag behind 1207# changes and not be exercised very much, so mounting read/write could 1208# be dangerous (and even mounting read only could result in panics.) 1209# 1210options EXT2FS 1211 1212# The system memory devices; /dev/mem, /dev/kmem 1213device mem 1214 1215# The kernel symbol table device; /dev/ksyms 1216device ksyms 1217 1218# Optional character code conversion support with LIBICONV. 1219# Each option requires their base file system and LIBICONV. 1220options CD9660_ICONV 1221options MSDOSFS_ICONV 1222options UDF_ICONV 1223 1224 1225##################################################################### 1226# POSIX P1003.1B 1227 1228# Real time extensions added in the 1993 POSIX 1229# _KPOSIX_PRIORITY_SCHEDULING: Build in _POSIX_PRIORITY_SCHEDULING 1230 1231options _KPOSIX_PRIORITY_SCHEDULING 1232# p1003_1b_semaphores are very experimental, 1233# user should be ready to assist in debugging if problems arise. 1234options P1003_1B_SEMAPHORES 1235 1236# POSIX message queue 1237options P1003_1B_MQUEUE 1238 1239##################################################################### 1240# SECURITY POLICY PARAMETERS 1241 1242# Support for BSM audit 1243options AUDIT 1244 1245# Support for Mandatory Access Control (MAC): 1246options MAC 1247options MAC_BIBA 1248options MAC_BSDEXTENDED 1249options MAC_DDB 1250options MAC_IFOFF 1251options MAC_IPACL 1252options MAC_LOMAC 1253options MAC_MLS 1254options MAC_NONE 1255options MAC_NTPD 1256options MAC_PARTITION 1257options MAC_PORTACL 1258options MAC_PRIORITY 1259options MAC_SEEOTHERUIDS 1260options MAC_STUB 1261options MAC_TEST 1262options MAC_VERIEXEC 1263options MAC_VERIEXEC_SHA1 1264options MAC_VERIEXEC_SHA256 1265options MAC_VERIEXEC_SHA384 1266options MAC_VERIEXEC_SHA512 1267device mac_veriexec_parser 1268 1269# Support for Capsicum 1270options CAPABILITIES # fine-grained rights on file descriptors 1271options CAPABILITY_MODE # sandboxes with no global namespace access 1272 1273 1274##################################################################### 1275# CLOCK OPTIONS 1276 1277# The granularity of operation is controlled by the kernel option HZ (default 1278# frequency of 1000 Hz or a period 1ms between calls). Virtual machine guests 1279# use a value of 100. Lower values may lower overhead at the expense of accuracy 1280# of scheduling, though the adaptive tick code reduces that overhead. 1281 1282options HZ=100 1283 1284# Enable support for the kernel PLL to use an external PPS signal, 1285# under supervision of [x]ntpd(8) 1286# More info in ntpd documentation: http://www.eecis.udel.edu/~ntp 1287 1288options PPS_SYNC 1289 1290# Enable support for generic feed-forward clocks in the kernel. 1291# The feed-forward clock support is an alternative to the feedback oriented 1292# ntpd/system clock approach, and is to be used with a feed-forward 1293# synchronization algorithm such as the RADclock: 1294# More info here: http://www.synclab.org/radclock 1295 1296options FFCLOCK 1297 1298 1299##################################################################### 1300# SCSI DEVICES 1301 1302# SCSI DEVICE CONFIGURATION 1303 1304# The SCSI subsystem consists of the `base' SCSI code, a number of 1305# high-level SCSI device `type' drivers, and the low-level host-adapter 1306# device drivers. The host adapters are listed in the ISA and PCI 1307# device configuration sections below. 1308# 1309# It is possible to wire down your SCSI devices so that a given bus, 1310# target, and LUN always come on line as the same device unit. In 1311# earlier versions the unit numbers were assigned in the order that 1312# the devices were probed on the SCSI bus. This means that if you 1313# removed a disk drive, you may have had to rewrite your /etc/fstab 1314# file, and also that you had to be careful when adding a new disk 1315# as it may have been probed earlier and moved your device configuration 1316# around. 1317 1318# This old behavior is maintained as the default behavior. The unit 1319# assignment begins with the first non-wired down unit for a device 1320# type. For example, if you wire a disk as "da3" then the first 1321# non-wired disk will be assigned da4. 1322 1323# The syntax for wiring down devices is: 1324 1325envvar hint.scbus.0.at="ahc0" 1326envvar hint.scbus.1.at="ahc1" 1327envvar hint.scbus.1.bus="0" 1328envvar hint.scbus.3.at="ahc2" 1329envvar hint.scbus.3.bus="0" 1330envvar hint.scbus.2.at="ahc2" 1331envvar hint.scbus.2.bus="1" 1332envvar hint.da.0.at="scbus0" 1333envvar hint.da.0.target="0" 1334envvar hint.da.0.unit="0" 1335envvar hint.da.1.at="scbus3" 1336envvar hint.da.1.target="1" 1337envvar hint.da.2.at="scbus2" 1338envvar hint.da.2.target="3" 1339envvar hint.sa.1.at="scbus1" 1340envvar hint.sa.1.target="6" 1341 1342# "units" (SCSI logical unit number) that are not specified are 1343# treated as if specified as LUN 0. 1344 1345# All SCSI devices allocate as many units as are required. 1346 1347# The ch driver drives SCSI Media Changer ("jukebox") devices. 1348# 1349# The da driver drives SCSI Direct Access ("disk") and Optical Media 1350# ("WORM") devices. 1351# 1352# The sa driver drives SCSI Sequential Access ("tape") devices. 1353# 1354# The cd driver drives SCSI Read Only Direct Access ("cd") devices. 1355# 1356# The ses driver drives SCSI Environment Services ("ses") and 1357# SAF-TE ("SCSI Accessible Fault-Tolerant Enclosure") devices. 1358# 1359# The pt driver drives SCSI Processor devices. 1360# 1361# The sg driver provides a passthrough API that is compatible with the 1362# Linux SG driver. It will work in conjunction with the Linuxulator 1363# to run linux SG apps. It can also stand on its own and provide 1364# source level API compatibility for porting apps to FreeBSD. 1365# 1366# Target Mode support is provided here but also requires that a SIM 1367# (SCSI Host Adapter Driver) provide support as well. 1368# 1369# The targ driver provides target mode support as a Processor type device. 1370# It exists to give the minimal context necessary to respond to Inquiry 1371# commands. There is a sample user application that shows how the rest 1372# of the command support might be done in /usr/share/examples/scsi_target. 1373# 1374# The targbh driver provides target mode support and exists to respond 1375# to incoming commands that do not otherwise have a logical unit assigned 1376# to them. 1377# 1378# The pass driver provides a passthrough API to access the CAM subsystem. 1379 1380device scbus #base SCSI code 1381device ch #SCSI media changers 1382device da #SCSI direct access devices (aka disks) 1383device sa #SCSI tapes 1384device cd #SCSI CD-ROMs 1385device ses #Enclosure Services (SES and SAF-TE) 1386device pt #SCSI processor 1387device targ #SCSI Target Mode Code 1388device targbh #SCSI Target Mode Blackhole Device 1389device pass #CAM passthrough driver 1390device sg #Linux SCSI passthrough 1391device ctl #CAM Target Layer 1392 1393# CAM OPTIONS: 1394# debugging options: 1395# CAMDEBUG Compile in all possible debugging. 1396# CAM_DEBUG_COMPILE Debug levels to compile in. 1397# CAM_DEBUG_FLAGS Debug levels to enable on boot. 1398# CAM_DEBUG_BUS Limit debugging to the given bus. 1399# CAM_DEBUG_TARGET Limit debugging to the given target. 1400# CAM_DEBUG_LUN Limit debugging to the given lun. 1401# CAM_DEBUG_DELAY Delay in us after printing each debug line. 1402# CAM_IO_STATS Publish additional CAM device statics by sysctl 1403# 1404# CAM_MAX_HIGHPOWER: Maximum number of concurrent high power (start unit) cmds 1405# SCSI_NO_SENSE_STRINGS: When defined disables sense descriptions 1406# SCSI_NO_OP_STRINGS: When defined disables opcode descriptions 1407# SCSI_DELAY: The number of MILLISECONDS to freeze the SIM (scsi adapter) 1408# queue after a bus reset, and the number of milliseconds to 1409# freeze the device queue after a bus device reset. This 1410# can be changed at boot and runtime with the 1411# kern.cam.scsi_delay tunable/sysctl. 1412options CAMDEBUG 1413options CAM_DEBUG_COMPILE=-1 1414options CAM_DEBUG_FLAGS=(CAM_DEBUG_INFO|CAM_DEBUG_PROBE|CAM_DEBUG_PERIPH) 1415options CAM_DEBUG_BUS=-1 1416options CAM_DEBUG_TARGET=-1 1417options CAM_DEBUG_LUN=-1 1418options CAM_DEBUG_DELAY=1 1419options CAM_MAX_HIGHPOWER=4 1420options SCSI_NO_SENSE_STRINGS 1421options SCSI_NO_OP_STRINGS 1422options SCSI_DELAY=5000 # Be pessimistic about Joe SCSI device 1423options CAM_IOSCHED_DYNAMIC 1424options CAM_IO_STATS 1425options CAM_TEST_FAILURE 1426 1427# Options for the CAM CDROM driver: 1428# CHANGER_MIN_BUSY_SECONDS: Guaranteed minimum time quantum for a changer LUN 1429# CHANGER_MAX_BUSY_SECONDS: Maximum time quantum per changer LUN, only 1430# enforced if there is I/O waiting for another LUN 1431# The compiled in defaults for these variables are 2 and 10 seconds, 1432# respectively. 1433# 1434# These can also be changed on the fly with the following sysctl variables: 1435# kern.cam.cd.changer.min_busy_seconds 1436# kern.cam.cd.changer.max_busy_seconds 1437# 1438options CHANGER_MIN_BUSY_SECONDS=2 1439options CHANGER_MAX_BUSY_SECONDS=10 1440 1441# Options for the CAM sequential access driver: 1442# SA_IO_TIMEOUT: Timeout for read/write/wfm operations, in minutes 1443# SA_SPACE_TIMEOUT: Timeout for space operations, in minutes 1444# SA_REWIND_TIMEOUT: Timeout for rewind operations, in minutes 1445# SA_ERASE_TIMEOUT: Timeout for erase operations, in minutes 1446# SA_1FM_AT_EOD: Default to model which only has a default one filemark at EOT. 1447options SA_IO_TIMEOUT=4 1448options SA_SPACE_TIMEOUT=60 1449options SA_REWIND_TIMEOUT=(2*60) 1450options SA_ERASE_TIMEOUT=(4*60) 1451options SA_1FM_AT_EOD 1452 1453# Optional timeout for the CAM processor target (pt) device 1454# This is specified in seconds. The default is 60 seconds. 1455options SCSI_PT_DEFAULT_TIMEOUT=60 1456 1457# Optional enable of doing SES passthrough on other devices (e.g., disks) 1458# 1459# Normally disabled because a lot of newer SCSI disks report themselves 1460# as having SES capabilities, but this can then clot up attempts to build 1461# a topology with the SES device that's on the box these drives are in.... 1462options SES_ENABLE_PASSTHROUGH 1463 1464# iSCSI 1465# 1466# iSCSI permits access to SCSI peripherals over a network connection 1467# (e.g. via a TCP/IP socket) 1468 1469device cfiscsi # CAM Target Layer iSCSI target frontend 1470device iscsi # iSCSI initiator 1471device iser # iSCSI Extensions for RDMA (iSER) initiator 1472 1473# Options used in dev/iscsi (Software iSCSI stack) 1474# 1475options ISCSI_INITIATOR_DEBUG=9 1476 1477 1478##################################################################### 1479# MISCELLANEOUS DEVICES AND OPTIONS 1480 1481device pty #BSD-style compatibility pseudo ttys 1482device nmdm #back-to-back tty devices 1483device md #Memory/malloc disk 1484device snp #Snoop device - to look at pty/vty/etc.. 1485device ccd #Concatenated disk driver 1486device firmware #firmware(9) support 1487 1488# Kernel side iconv library 1489options LIBICONV 1490 1491# Size of the kernel message buffer. Should be N * pagesize. 1492options MSGBUF_SIZE=40960 1493 1494 1495##################################################################### 1496# HARDWARE BUS CONFIGURATION 1497 1498# 1499# PCI bus & PCI options: 1500# 1501device pci 1502options PCI_HP # PCI-Express native HotPlug 1503options PCI_IOV # PCI SR-IOV support 1504 1505 1506##################################################################### 1507# HARDWARE DEVICE CONFIGURATION 1508 1509# For ISA the required hints are listed. 1510# PCI, CardBus, and SD/MMC are self identifying buses, so 1511# no hints are needed. 1512 1513# 1514# Mandatory devices: 1515# 1516 1517# These options are valid for other keyboard drivers as well. 1518options KBD_DISABLE_KEYMAP_LOAD # refuse to load a keymap 1519options KBD_INSTALL_CDEV # install a CDEV entry in /dev 1520 1521# Define keyboard latency (try 200/15 for a snappy interactive console) 1522options KBD_DELAY1=200 # define initial key delay 1523options KBD_DELAY2=15 # define key delay 1524 1525device kbdmux # keyboard multiplexer 1526options KBDMUX_DFLT_KEYMAP # specify the built-in keymap 1527makeoptions KBDMUX_DFLT_KEYMAP=it.iso 1528 1529options FB_DEBUG # Frame buffer debugging 1530 1531# Enable experimental features of the syscons terminal emulator (teken). 1532options TEKEN_CONS25 # cons25-style terminal emulation 1533options TEKEN_UTF8 # UTF-8 output handling 1534 1535# The vt video console driver. 1536device vt 1537options VT_ALT_TO_ESC_HACK=1 # Prepend ESC sequence to ALT keys 1538options VT_MAXWINDOWS=16 # Number of virtual consoles 1539options VT_TWOBUTTON_MOUSE # Use right mouse button to paste 1540 1541# The following options set the maximum framebuffer size. 1542options VT_FB_MAX_HEIGHT=480 1543options VT_FB_MAX_WIDTH=640 1544 1545# The following options will let you change the default vt terminal colors. 1546options TERMINAL_NORM_ATTR=(FG_GREEN|BG_BLACK) 1547options TERMINAL_KERN_ATTR=(FG_LIGHTRED|BG_BLACK) 1548 1549# 1550# Optional devices: 1551# 1552 1553# 1554# SCSI host adapters: 1555# 1556# aacraid: Adaptec by PMC RAID controllers, Series 6/7/8 and upcoming 1557# families. Container interface, CAM required. 1558# ahc: Adaptec 274x/284x/2910/293x/294x/394x/3950x/3960x/398X/4944/ 1559# 19160x/29160x, aic7770/aic78xx 1560# ahd: Adaptec 29320/39320 Controllers. 1561# isp: Qlogic ISP 1020, 1040 and 1040B PCI SCSI host adapters, 1562# ISP 1240 Dual Ultra SCSI, ISP 1080 and 1280 (Dual) Ultra2, 1563# ISP 12160 Ultra3 SCSI, 1564# Qlogic ISP 2100 and ISP 2200 1Gb Fibre Channel host adapters. 1565# Qlogic ISP 2300 and ISP 2312 2Gb Fibre Channel host adapters. 1566# Qlogic ISP 2322 and ISP 6322 2Gb Fibre Channel host adapters. 1567# ispfw: Firmware module for Qlogic host adapters 1568# mpr: LSI-Logic MPT/Fusion Gen 3 1569# mps: LSI-Logic MPT/Fusion Gen 2 1570# mpt: LSI-Logic MPT/Fusion 53c1020 or 53c1030 Ultra4 1571# or FC9x9 Fibre Channel host adapters. 1572# sym: Symbios/Logic 53C8XX family of PCI-SCSI I/O processors: 1573# 53C810, 53C810A, 53C815, 53C825, 53C825A, 53C860, 53C875, 1574# 53C876, 53C885, 53C895, 53C895A, 53C896, 53C897, 53C1510D, 1575# 53C1010-33, 53C1010-66. 1576 1577device aacraid 1578device ahc 1579device ahd 1580device isp 1581envvar hint.isp.0.disable="1" 1582envvar hint.isp.0.role="3" 1583envvar hint.isp.0.prefer_iomap="1" 1584envvar hint.isp.0.prefer_memmap="1" 1585envvar hint.isp.0.fwload_disable="1" 1586envvar hint.isp.0.ignore_nvram="1" 1587envvar hint.isp.0.fullduplex="1" 1588envvar hint.isp.0.topology="lport" 1589envvar hint.isp.0.topology="nport" 1590envvar hint.isp.0.topology="lport-only" 1591envvar hint.isp.0.topology="nport-only" 1592# we can't get u_int64_t types, nor can we get strings if it's got 1593# a leading 0x, hence this silly dodge. 1594envvar hint.isp.0.portwnn="w50000000aaaa0000" 1595envvar hint.isp.0.nodewnn="w50000000aaaa0001" 1596device ispfw 1597device mpr # LSI-Logic MPT-Fusion 3 1598device mps # LSI-Logic MPT-Fusion 2 1599device mpt # LSI-Logic MPT-Fusion 1600device sym 1601 1602# The aic7xxx driver will attempt to use memory mapped I/O for all PCI 1603# controllers that have it configured only if this option is set. Unfortunately, 1604# this doesn't work on some motherboards, which prevents it from being the 1605# default. 1606options AHC_ALLOW_MEMIO 1607 1608# Dump the contents of the ahc controller configuration PROM. 1609options AHC_DUMP_EEPROM 1610 1611# Bitmap of units to enable targetmode operations. 1612options AHC_TMODE_ENABLE 1613 1614# Compile in Aic7xxx Debugging code. 1615options AHC_DEBUG 1616 1617# Aic7xxx driver debugging options. See sys/dev/aic7xxx/aic7xxx.h 1618options AHC_DEBUG_OPTS 1619 1620# Print register bitfields in debug output. Adds ~128k to driver 1621# See ahc(4). 1622options AHC_REG_PRETTY_PRINT 1623 1624# Compile in aic79xx debugging code. 1625options AHD_DEBUG 1626 1627# Aic79xx driver debugging options. Adds ~215k to driver. See ahd(4). 1628options AHD_DEBUG_OPTS=0xFFFFFFFF 1629 1630# Print human-readable register definitions when debugging 1631options AHD_REG_PRETTY_PRINT 1632 1633# Bitmap of units to enable targetmode operations. 1634options AHD_TMODE_ENABLE 1635 1636# Options used in dev/isp/ (Qlogic SCSI/FC driver). 1637# 1638# ISP_TARGET_MODE - enable target mode operation 1639# 1640options ISP_TARGET_MODE=1 1641# 1642# ISP_DEFAULT_ROLES - default role 1643# none=0 1644# target=1 1645# initiator=2 1646# both=3 (not supported currently) 1647# 1648# ISP_INTERNAL_TARGET (trivial internal disk target, for testing) 1649# 1650options ISP_DEFAULT_ROLES=0 1651 1652#options SYM_SETUP_SCSI_DIFF #-HVD support for 825a, 875, 885 1653 # disabled:0 (default), enabled:1 1654#options SYM_SETUP_PCI_PARITY #-PCI parity checking 1655 # disabled:0, enabled:1 (default) 1656#options SYM_SETUP_MAX_LUN #-Number of LUNs supported 1657 # default:8, range:[1..64] 1658 1659# 1660# Compaq "CISS" RAID controllers (SmartRAID 5* series) 1661# These controllers have a SCSI-like interface, and require the 1662# CAM infrastructure. 1663# 1664device ciss 1665 1666# 1667# Compaq Smart RAID, Mylex DAC960 and AMI MegaRAID controllers. Only 1668# one entry is needed; the code will find and configure all supported 1669# controllers. 1670# 1671device ida # Compaq Smart RAID 1672device mlx # Mylex DAC960 1673device mfi # LSI MegaRAID SAS 1674device mfip # LSI MegaRAID SAS passthrough, requires CAM 1675options MFI_DEBUG 1676device mrsas # LSI/Avago MegaRAID SAS/SATA, 6Gb/s and 12Gb/s 1677 1678# 1679# Serial ATA host controllers: 1680# 1681# ahci: Advanced Host Controller Interface (AHCI) compatible 1682# mvs: Marvell 88SX50XX/88SX60XX/88SX70XX/SoC controllers 1683# siis: SiliconImage SiI3124/SiI3132/SiI3531 controllers 1684# 1685# These drivers are part of cam(4) subsystem. They supersede less featured 1686# ata(4) subsystem drivers, supporting same hardware. 1687 1688device ahci 1689device mvs 1690device siis 1691 1692# 1693# The 'ATA' driver supports all legacy ATA/ATAPI controllers, including 1694# PC Card devices. You only need one "device ata" for it to find all 1695# PCI and PC Card ATA/ATAPI devices on modern machines. 1696# Alternatively, individual bus and chipset drivers may be chosen by using 1697# the 'atacore' driver then selecting the drivers on a per vendor basis. 1698# For example to build a system which only supports a VIA chipset, 1699# omit 'ata' and include the 'atacore', 'atapci' and 'atavia' drivers. 1700device ata 1701 1702# Modular ATA 1703#device atacore # Core ATA functionality 1704#device ataisa # ISA bus support 1705#device atapci # PCI bus support; only generic chipset support 1706 1707# PCI ATA chipsets 1708#device ataacard # ACARD 1709#device ataacerlabs # Acer Labs Inc. (ALI) 1710#device ataamd # American Micro Devices (AMD) 1711#device ataati # ATI 1712#device atacenatek # Cenatek 1713#device atacypress # Cypress 1714#device atacyrix # Cyrix 1715#device atahighpoint # HighPoint 1716#device ataintel # Intel 1717#device ataite # Integrated Technology Inc. (ITE) 1718#device atajmicron # JMicron 1719#device atamarvell # Marvell 1720#device atamicron # Micron 1721#device atanational # National 1722#device atanetcell # NetCell 1723#device atanvidia # nVidia 1724#device atapromise # Promise 1725#device ataserverworks # ServerWorks 1726#device atasiliconimage # Silicon Image Inc. (SiI) (formerly CMD) 1727#device atasis # Silicon Integrated Systems Corp.(SiS) 1728#device atavia # VIA Technologies Inc. 1729 1730# 1731# For older non-PCI, non-PnPBIOS systems, these are the hints lines to add: 1732envvar hint.ata.0.at="isa" 1733envvar hint.ata.0.port="0x1f0" 1734envvar hint.ata.0.irq="14" 1735envvar hint.ata.1.at="isa" 1736envvar hint.ata.1.port="0x170" 1737envvar hint.ata.1.irq="15" 1738 1739# 1740# uart: generic driver for serial interfaces. 1741# 1742device uart 1743 1744# Options for uart(4) 1745options UART_PPS_ON_CTS # Do time pulse capturing using CTS 1746 # instead of DCD. 1747options UART_POLL_FREQ # Set polling rate, used when hw has 1748 # no interrupt support (50 Hz default). 1749 1750# The following hint should only be used for pure ISA devices. It is not 1751# needed otherwise. Use of hints is strongly discouraged. 1752envvar hint.uart.0.at="isa" 1753 1754# The following 3 hints are used when the UART is a system device (i.e., a 1755# console or debug port), but only on platforms that don't have any other 1756# means to pass the information to the kernel. The unit number of the hint 1757# is only used to bundle the hints together. There is no relation to the 1758# unit number of the probed UART. 1759envvar hint.uart.0.port="0x3f8" 1760envvar hint.uart.0.flags="0x10" 1761envvar hint.uart.0.baud="115200" 1762 1763# `flags' for serial drivers that support consoles, like uart(4): 1764# 0x10 enable console support for this unit. Other console flags 1765# (if applicable) are ignored unless this is set. Enabling 1766# console support does not make the unit the preferred console. 1767# Boot with -h or set boot_serial=YES in the loader. 1768# Currently, at most one unit can have console support; the 1769# first one (in config file order) with this flag set is 1770# preferred. 1771# 0x80 use this port for serial line gdb support in ddb. Also known 1772# as debug port. 1773# 1774 1775# Options for serial drivers that support consoles: 1776options BREAK_TO_DEBUGGER # A BREAK/DBG on the console goes to 1777 # ddb, if available. 1778 1779# Solaris implements a new BREAK which is initiated by a character 1780# sequence CR ~ ^b which is similar to a familiar pattern used on 1781# Sun servers by the Remote Console. There are FreeBSD extensions: 1782# CR ~ ^p requests force panic and CR ~ ^r requests a clean reboot. 1783options ALT_BREAK_TO_DEBUGGER 1784 1785# Serial Communications Controller 1786# Supports the Freescale/NXP QUad Integrated and Zilog Z8530 multi-channel 1787# communications controllers. 1788device scc 1789 1790# PCI Universal Communications driver 1791# Supports various multi port PCI I/O cards. 1792device puc 1793 1794# 1795# Network interfaces: 1796# 1797# MII bus support is required for many PCI Ethernet NICs, 1798# namely those which use MII-compliant transceivers or implement 1799# transceiver control interfaces that operate like an MII. Adding 1800# "device miibus" to the kernel config pulls in support for the generic 1801# miibus API, the common support for bit-bang'ing the MII and all 1802# of the PHY drivers, including a generic one for PHYs that aren't 1803# specifically handled by an individual driver. Support for specific 1804# PHYs may be built by adding "device mii", "device mii_bitbang" if 1805# needed by the NIC driver and then adding the appropriate PHY driver. 1806device mii # Minimal MII support 1807device mii_bitbang # Common module for bit-bang'ing the MII 1808device miibus # MII support w/ bit-bang'ing and all PHYs 1809 1810device acphy # Altima Communications AC101 1811device amphy # AMD AM79c873 / Davicom DM910{1,2} 1812device atphy # Attansic/Atheros F1 1813device axphy # Asix Semiconductor AX88x9x 1814device bmtphy # Broadcom BCM5201/BCM5202 and 3Com 3c905C 1815device bnxt # Broadcom NetXtreme-C/NetXtreme-E 1816device brgphy # Broadcom BCM54xx/57xx 1000baseTX 1817device cgem # Cadence GEM Gigabit Ethernet 1818device ciphy # Cicada/Vitesse CS/VSC8xxx 1819device e1000phy # Marvell 88E1000 1000/100/10-BT 1820device gentbi # Generic 10-bit 1000BASE-{LX,SX} fiber ifaces 1821device icsphy # ICS ICS1889-1893 1822device ip1000phy # IC Plus IP1000A/IP1001 1823device jmphy # JMicron JMP211/JMP202 1824device lxtphy # Level One LXT-970 1825device nsgphy # NatSemi DP8361/DP83865/DP83891 1826device nsphy # NatSemi DP83840A 1827device nsphyter # NatSemi DP83843/DP83815 1828device pnaphy # HomePNA 1829device qsphy # Quality Semiconductor QS6612 1830device rdcphy # RDC Semiconductor R6040 1831device rgephy # RealTek 8169S/8110S/8211B/8211C 1832device rlphy # RealTek 8139 1833device rlswitch # RealTek 8305 1834device smcphy # SMSC LAN91C111 1835device tdkphy # TDK 89Q2120 1836device truephy # LSI TruePHY 1837device xmphy # XaQti XMAC II 1838 1839# ae: Support for gigabit ethernet adapters based on the Attansic/Atheros 1840# L2 PCI-Express FastEthernet controllers. 1841# age: Support for gigabit ethernet adapters based on the Attansic/Atheros 1842# L1 PCI express gigabit ethernet controllers. 1843# alc: Support for Atheros AR8131/AR8132 PCIe ethernet controllers. 1844# ale: Support for Atheros AR8121/AR8113/AR8114 PCIe ethernet controllers. 1845# ath: Atheros a/b/g WiFi adapters (requires ath_hal and wlan) 1846# bce: Broadcom NetXtreme II (BCM5706/BCM5708) PCI/PCIe Gigabit Ethernet 1847# adapters. 1848# bfe: Broadcom BCM4401 Ethernet adapter. 1849# bge: Support for gigabit ethernet adapters based on the Broadcom 1850# BCM570x family of controllers, including the 3Com 3c996-T, 1851# the Netgear GA302T, the SysKonnect SK-9D21 and SK-9D41, and 1852# the embedded gigE NICs on Dell PowerEdge 2550 servers. 1853# bnxt: Broadcom NetXtreme-C and NetXtreme-E PCIe 10/25/50G Ethernet adapters. 1854# bxe: Broadcom NetXtreme II (BCM5771X/BCM578XX) PCIe 10Gb Ethernet 1855# adapters. 1856# bwi: Broadcom BCM430* and BCM431* family of wireless adapters. 1857# bwn: Broadcom BCM43xx family of wireless adapters. 1858# cas: Sun Cassini/Cassini+ and National Semiconductor DP83065 Saturn 1859# cxgb: Chelsio T3 based 1GbE/10GbE PCIe Ethernet adapters. 1860# cxgbe:Chelsio T4, T5, and T6-based 1/10/25/40/100GbE PCIe Ethernet 1861# adapters. 1862# cxgbev: Chelsio T4, T5, and T6-based PCIe Virtual Functions. 1863# dc: Support for PCI fast ethernet adapters based on the DEC/Intel 21143 1864# and various workalikes including: 1865# the ADMtek AL981 Comet and AN985 Centaur, the ASIX Electronics 1866# AX88140A and AX88141, the Davicom DM9100 and DM9102, the Lite-On 1867# 82c168 and 82c169 PNIC, the Lite-On/Macronix LC82C115 PNIC II 1868# and the Macronix 98713/98713A/98715/98715A/98725 PMAC. This driver 1869# replaces the old al, ax, dm, pn and mx drivers. List of brands: 1870# Digital DE500-BA, Kingston KNE100TX, D-Link DFE-570TX, SOHOware SFA110, 1871# SVEC PN102-TX, CNet Pro110B, 120A, and 120B, Compex RL100-TX, 1872# LinkSys LNE100TX, LNE100TX V2.0, Jaton XpressNet, Alfa Inc GFC2204, 1873# KNE110TX. 1874# em: Intel Pro/1000 Gigabit Ethernet 82542, 82543, 82544 based adapters. 1875# fxp: Intel EtherExpress Pro/100B 1876# (hint of prefer_iomap can be done to prefer I/O instead of Mem mapping) 1877# gem: Apple GMAC/Sun ERI/Sun GEM 1878# jme: JMicron JMC260 Fast Ethernet/JMC250 Gigabit Ethernet based adapters. 1879# le: AMD Am7900 LANCE and Am79C9xx PCnet 1880# lge: Support for PCI gigabit ethernet adapters based on the Level 1 1881# LXT1001 NetCellerator chipset. This includes the D-Link DGE-500SX, 1882# SMC TigerCard 1000 (SMC9462SX), and some Addtron cards. 1883# lio: Support for Cavium 23XX Ethernet adapters 1884# malo: Marvell Libertas wireless NICs. 1885# mwl: Marvell 88W8363 802.11n wireless NICs. 1886# Requires the mwl firmware module 1887# mwlfw: Marvell 88W8363 firmware 1888# msk: Support for gigabit ethernet adapters based on the Marvell/SysKonnect 1889# Yukon II Gigabit controllers, including 88E8021, 88E8022, 88E8061, 1890# 88E8062, 88E8035, 88E8036, 88E8038, 88E8050, 88E8052, 88E8053, 1891# 88E8055, 88E8056 and D-Link 560T/550SX. 1892# mlxfw: Mellanox firmware update module. 1893# mlx5: Mellanox ConnectX-4 and ConnectX-4 LX IB and Eth shared code module. 1894# mlx5en:Mellanox ConnectX-4 and ConnectX-4 LX PCIe Ethernet adapters. 1895# my: Myson Fast Ethernet (MTD80X, MTD89X) 1896# nge: Support for PCI gigabit ethernet adapters based on the National 1897# Semiconductor DP83820 and DP83821 chipset. This includes the 1898# SMC EZ Card 1000 (SMC9462TX), D-Link DGE-500T, Asante FriendlyNet 1899# GigaNIX 1000TA and 1000TPC, the Addtron AEG320T, the Surecom 1900# EP-320G-TX and the Netgear GA622T. 1901# oce: Emulex 10 Gbit adapters (OneConnect Ethernet) 1902# ral: Ralink Technology IEEE 802.11 wireless adapter 1903# re: RealTek 8139C+/8169/816xS/811xS/8101E PCI/PCIe Ethernet adapter 1904# rl: Support for PCI fast ethernet adapters based on the RealTek 8129/8139 1905# chipset. Note that the RealTek driver defaults to using programmed 1906# I/O to do register accesses because memory mapped mode seems to cause 1907# severe lockups on SMP hardware. This driver also supports the 1908# Accton EN1207D `Cheetah' adapter, which uses a chip called 1909# the MPX 5030/5038, which is either a RealTek in disguise or a 1910# RealTek workalike. Note that the D-Link DFE-530TX+ uses the RealTek 1911# chipset and is supported by this driver, not the 'vr' driver. 1912# rtwn: RealTek wireless adapters. 1913# rtwnfw: RealTek wireless firmware. 1914# sge: Silicon Integrated Systems SiS190/191 Fast/Gigabit Ethernet adapter 1915# sis: Support for NICs based on the Silicon Integrated Systems SiS 900, 1916# SiS 7016 and NS DP83815 PCI fast ethernet controller chips. 1917# sk: Support for the SysKonnect SK-984x series PCI gigabit ethernet NICs. 1918# This includes the SK-9841 and SK-9842 single port cards (single mode 1919# and multimode fiber) and the SK-9843 and SK-9844 dual port cards 1920# (also single mode and multimode). 1921# The driver will autodetect the number of ports on the card and 1922# attach each one as a separate network interface. 1923# ste: Sundance Technologies ST201 PCI fast ethernet controller, includes 1924# the D-Link DFE-550TX. 1925# stge: Support for gigabit ethernet adapters based on the Sundance/Tamarack 1926# TC9021 family of controllers, including the Sundance ST2021/ST2023, 1927# the Sundance/Tamarack TC9021, the D-Link DL-4000 and ASUS NX1101. 1928# ti: Support for PCI gigabit ethernet NICs based on the Alteon Networks 1929# Tigon 1 and Tigon 2 chipsets. This includes the Alteon AceNIC, the 1930# 3Com 3c985, the Netgear GA620 and various others. Note that you will 1931# probably want to bump up kern.ipc.nmbclusters a lot to use this driver. 1932# vr: Support for various fast ethernet adapters based on the VIA 1933# Technologies VT3043 `Rhine I' and VT86C100A `Rhine II' chips, 1934# including the D-Link DFE520TX and D-Link DFE530TX (see 'rl' for 1935# DFE530TX+), the Hawking Technologies PN102TX, and the AOpen/Acer ALN-320. 1936# vte: DM&P Vortex86 RDC R6040 Fast Ethernet 1937# xl: Support for the 3Com 3c900, 3c905, 3c905B and 3c905C (Fast) 1938# Etherlink XL cards and integrated controllers. This includes the 1939# integrated 3c905B-TX chips in certain Dell Optiplex and Dell 1940# Precision desktop machines and the integrated 3c905-TX chips 1941# in Dell Latitude laptop docking stations. 1942# Also supported: 3Com 3c980(C)-TX, 3Com 3cSOHO100-TX, 3Com 3c450-TX 1943 1944# PCI Ethernet NICs that use the common MII bus controller code. 1945device ae # Attansic/Atheros L2 FastEthernet 1946device age # Attansic/Atheros L1 Gigabit Ethernet 1947device alc # Atheros AR8131/AR8132 Ethernet 1948device ale # Atheros AR8121/AR8113/AR8114 Ethernet 1949device bce # Broadcom BCM5706/BCM5708 Gigabit Ethernet 1950device bfe # Broadcom BCM440x 10/100 Ethernet 1951device bge # Broadcom BCM570xx Gigabit Ethernet 1952device cas # Sun Cassini/Cassini+ and NS DP83065 Saturn 1953device dc # DEC/Intel 21143 and various workalikes 1954device et # Agere ET1310 10/100/Gigabit Ethernet 1955device fxp # Intel EtherExpress PRO/100B (82557, 82558) 1956envvar hint.fxp.0.prefer_iomap="0" 1957device gem # Apple GMAC/Sun ERI/Sun GEM 1958device jme # JMicron JMC250 Gigabit/JMC260 Fast Ethernet 1959device lge # Level 1 LXT1001 gigabit Ethernet 1960device lio # Support for Cavium 23XX Ethernet adapters 1961device mlxfw # Mellanox firmware update module 1962device mlx5 # Shared code module between IB and Ethernet 1963device mlx5en # Mellanox ConnectX-4 and ConnectX-4 LX 1964device msk # Marvell/SysKonnect Yukon II Gigabit Ethernet 1965device my # Myson Fast Ethernet (MTD80X, MTD89X) 1966device nge # NatSemi DP83820 gigabit Ethernet 1967device re # RealTek 8139C+/8169/8169S/8110S 1968device rl # RealTek 8129/8139 1969device sge # Silicon Integrated Systems SiS190/191 1970device sis # Silicon Integrated Systems SiS 900/SiS 7016 1971device sk # SysKonnect SK-984x & SK-982x gigabit Ethernet 1972device ste # Sundance ST201 (D-Link DFE-550TX) 1973device stge # Sundance/Tamarack TC9021 gigabit Ethernet 1974device vr # VIA Rhine, Rhine II 1975device vte # DM&P Vortex86 RDC R6040 Fast Ethernet 1976device xl # 3Com 3c90x (``Boomerang'', ``Cyclone'') 1977 1978# PCI/PCI-X/PCIe Ethernet NICs that use iflib infrastructure 1979device iflib 1980device em # Intel Pro/1000 Gigabit Ethernet 1981device ix # Intel Pro/10Gbe PCIE Ethernet 1982device ixv # Intel Pro/10Gbe PCIE Ethernet VF 1983 1984# PCI Ethernet NICs. 1985device cxgb # Chelsio T3 10 Gigabit Ethernet 1986device cxgb_t3fw # Chelsio T3 10 Gigabit Ethernet firmware 1987device cxgbe # Chelsio T4-T6 1/10/25/40/100 Gigabit Ethernet 1988device cxgbev # Chelsio T4-T6 Virtual Functions 1989device le # AMD Am7900 LANCE and Am79C9xx PCnet 1990device mxge # Myricom Myri-10G 10GbE NIC 1991device oce # Emulex 10 GbE (OneConnect Ethernet) 1992device ti # Alteon Networks Tigon I/II gigabit Ethernet 1993 1994# PCI IEEE 802.11 Wireless NICs 1995device ath # Atheros pci/cardbus NIC's 1996device ath_hal # pci/cardbus chip support 1997#device ath_ar5210 # AR5210 chips 1998#device ath_ar5211 # AR5211 chips 1999#device ath_ar5212 # AR5212 chips 2000#device ath_rf2413 2001#device ath_rf2417 2002#device ath_rf2425 2003#device ath_rf5111 2004#device ath_rf5112 2005#device ath_rf5413 2006#device ath_ar5416 # AR5416 chips 2007# All of the AR5212 parts have a problem when paired with the AR71xx 2008# CPUS. These parts have a bug that triggers a fatal bus error on the AR71xx 2009# only. Details of the exact nature of the bug are sketchy, but some can be 2010# found at https://forum.openwrt.org/viewtopic.php?pid=70060 on pages 4, 5 and 2011# 6. This option enables this workaround. There is a performance penalty 2012# for this work around, but without it things don't work at all. The DMA 2013# from the card usually bursts 128 bytes, but on the affected CPUs, only 2014# 4 are safe. 2015options AH_RXCFG_SDMAMW_4BYTES 2016#device ath_ar9160 # AR9160 chips 2017#device ath_ar9280 # AR9280 chips 2018#device ath_ar9285 # AR9285 chips 2019device ath_rate_sample # SampleRate tx rate control for ath 2020device bwi # Broadcom BCM430* BCM431* 2021device bwn # Broadcom BCM43xx 2022device malo # Marvell Libertas wireless NICs. 2023device mwl # Marvell 88W8363 802.11n wireless NICs. 2024device mwlfw 2025device ral # Ralink Technology RT2500 wireless NICs. 2026device rtwn # Realtek wireless NICs 2027device rtwnfw 2028 2029# Use sf_buf(9) interface for jumbo buffers on ti(4) controllers. 2030#options TI_SF_BUF_JUMBO 2031# Turn on the header splitting option for the ti(4) driver firmware. This 2032# only works for Tigon II chips, and has no effect for Tigon I chips. 2033# This option requires the TI_SF_BUF_JUMBO option above. 2034#options TI_JUMBO_HDRSPLIT 2035 2036# These two options allow manipulating the mbuf cluster size and mbuf size, 2037# respectively. Be very careful with NIC driver modules when changing 2038# these from their default values, because that can potentially cause a 2039# mismatch between the mbuf size assumed by the kernel and the mbuf size 2040# assumed by a module. The only driver that currently has the ability to 2041# detect a mismatch is ti(4). 2042options MCLSHIFT=11 # mbuf cluster shift in bits, 11 == 2KB 2043options MSIZE=256 # mbuf size in bytes 2044 2045# 2046# Sound drivers 2047# 2048# sound: The generic sound driver. 2049# 2050 2051device sound 2052 2053# 2054# snd_*: Device-specific drivers. 2055# 2056# The flags of the device tell the device a bit more info about the 2057# device that normally is obtained through the PnP interface. 2058# bit 2..0 secondary DMA channel; 2059# bit 4 set if the board uses two dma channels; 2060# bit 15..8 board type, overrides autodetection; leave it 2061# zero if don't know what to put in (and you don't, 2062# since this is unsupported at the moment...). 2063# 2064# snd_als4000: Avance Logic ALS4000 PCI. 2065# snd_atiixp: ATI IXP 200/300/400 PCI. 2066# snd_cmi: CMedia CMI8338/CMI8738 PCI. 2067# snd_cs4281: Crystal Semiconductor CS4281 PCI. 2068# snd_csa: Crystal Semiconductor CS461x/428x PCI. (except 2069# 4281) 2070# snd_emu10k1: Creative EMU10K1 PCI and EMU10K2 (Audigy) PCI. 2071# snd_emu10kx: Creative SoundBlaster Live! and Audigy 2072# snd_envy24: VIA Envy24 and compatible, needs snd_spicds. 2073# snd_envy24ht: VIA Envy24HT and compatible, needs snd_spicds. 2074# snd_es137x: Ensoniq AudioPCI ES137x PCI. 2075# snd_fm801: Forte Media FM801 PCI. 2076# snd_hda: Intel High Definition Audio (Controller) and 2077# compatible. 2078# snd_hdspe: RME HDSPe AIO and RayDAT. 2079# snd_ich: Intel ICH AC'97 and some more audio controllers 2080# embedded in a chipset, for example nVidia 2081# nForce controllers. 2082# snd_maestro3: ESS Technology Maestro-3/Allegro PCI. 2083# snd_neomagic: Neomagic 256 AV/ZX PCI. 2084# snd_solo: ESS Solo-1x PCI. 2085# snd_spicds: SPI codec driver, needed by Envy24/Envy24HT drivers. 2086# snd_t4dwave: Trident 4DWave DX/NX PCI, Sis 7018 PCI and Acer Labs 2087# M5451 PCI. 2088# snd_uaudio: USB audio. 2089# snd_via8233: VIA VT8233x PCI. 2090# snd_via82c686: VIA VT82C686A PCI. 2091# snd_vibes: S3 Sonicvibes PCI. 2092 2093device snd_als4000 2094device snd_atiixp 2095device snd_cmi 2096device snd_cs4281 2097device snd_csa 2098device snd_emu10k1 2099device snd_emu10kx 2100device snd_envy24 2101device snd_envy24ht 2102device snd_es137x 2103device snd_fm801 2104device snd_hda 2105device snd_hdspe 2106device snd_ich 2107device snd_maestro3 2108device snd_neomagic 2109device snd_solo 2110device snd_spicds 2111device snd_t4dwave 2112device snd_uaudio 2113device snd_via8233 2114device snd_via82c686 2115device snd_vibes 2116 2117# For non-PnP sound cards: 2118envvar hint.pcm.0.at="isa" 2119envvar hint.pcm.0.irq="10" 2120envvar hint.pcm.0.drq="1" 2121envvar hint.pcm.0.flags="0x0" 2122envvar hint.sbc.0.at="isa" 2123envvar hint.sbc.0.port="0x220" 2124envvar hint.sbc.0.irq="5" 2125envvar hint.sbc.0.drq="1" 2126envvar hint.sbc.0.flags="0x15" 2127envvar hint.gusc.0.at="isa" 2128envvar hint.gusc.0.port="0x220" 2129envvar hint.gusc.0.irq="5" 2130envvar hint.gusc.0.drq="1" 2131envvar hint.gusc.0.flags="0x13" 2132 2133# 2134# Following options are intended for debugging/testing purposes: 2135# 2136# SND_DEBUG Enable extra debugging code that includes 2137# sanity checking and possible increase of 2138# verbosity. 2139# 2140# SND_DIAGNOSTIC Similar in a spirit of INVARIANTS/DIAGNOSTIC, 2141# zero tolerance against inconsistencies. 2142# 2143# SND_FEEDER_MULTIFORMAT By default, only 16/32 bit feeders are compiled 2144# in. This options enable most feeder converters 2145# except for 8bit. WARNING: May bloat the kernel. 2146# 2147# SND_FEEDER_FULL_MULTIFORMAT Ditto, but includes 8bit feeders as well. 2148# 2149# SND_FEEDER_RATE_HP (feeder_rate) High precision 64bit arithmetic 2150# as much as possible (the default trying to 2151# avoid it). Possible slowdown. 2152# 2153# SND_PCM_64 (Only applicable for i386/32bit arch) 2154# Process 32bit samples through 64bit 2155# integer/arithmetic. Slight increase of dynamic 2156# range at a cost of possible slowdown. 2157# 2158# SND_OLDSTEREO Only 2 channels are allowed, effectively 2159# disabling multichannel processing. 2160# 2161options SND_DEBUG 2162options SND_DIAGNOSTIC 2163options SND_FEEDER_MULTIFORMAT 2164options SND_FEEDER_FULL_MULTIFORMAT 2165options SND_FEEDER_RATE_HP 2166options SND_PCM_64 2167options SND_OLDSTEREO 2168 2169# 2170# Cardbus 2171# 2172# cbb: pci/CardBus bridge implementing YENTA interface 2173# cardbus: CardBus slots 2174device cbb 2175device cardbus 2176 2177# 2178# MMC/SD 2179# 2180# mmc MMC/SD bus 2181# mmcsd MMC/SD memory card 2182# sdhci Generic PCI SD Host Controller 2183# rtsx Realtek SD card reader (RTS5209, RTS5227, ...) 2184device mmc 2185device mmcsd 2186device sdhci 2187device rtsx 2188 2189# 2190# SMB bus 2191# 2192# System Management Bus support is provided by the 'smbus' device. 2193# Access to the SMBus device is via the 'smb' device (/dev/smb*), 2194# which is a child of the 'smbus' device. 2195# 2196# Supported devices: 2197# smb standard I/O through /dev/smb* 2198# 2199# Supported SMB interfaces: 2200# iicsmb I2C to SMB bridge with any iicbus interface 2201# intpm Intel PIIX4 (82371AB, 82443MX) Power Management Unit 2202# alpm Acer Aladdin-IV/V/Pro2 Power Management Unit 2203# ichsmb Intel ICH SMBus controller chips (82801AA, 82801AB, 82801BA) 2204# viapm VIA VT82C586B/596B/686A and VT8233 Power Management Unit 2205# amdpm AMD 756 Power Management Unit 2206# amdsmb AMD 8111 SMBus 2.0 Controller 2207# nfpm NVIDIA nForce Power Management Unit 2208# nfsmb NVIDIA nForce2/3/4 MCP SMBus 2.0 Controller 2209# ismt Intel SMBus 2.0 controller chips (on Atom S1200, C2000) 2210# 2211device smbus # Bus support, required for smb below. 2212 2213device intpm 2214device alpm 2215device ichsmb 2216device viapm 2217device amdpm 2218device amdsmb 2219device nfpm 2220device nfsmb 2221device ismt 2222 2223device smb 2224 2225# SMBus peripheral devices 2226# 2227# jedec_dimm Asset and temperature reporting for DDR3 and DDR4 DIMMs 2228# 2229device jedec_dimm 2230 2231# I2C Bus 2232# 2233# Philips i2c bus support is provided by the `iicbus' device. 2234# 2235# Supported devices: 2236# ic i2c network interface 2237# iic i2c standard io 2238# iicsmb i2c to smb bridge. Allow i2c i/o with smb commands. 2239# iicoc simple polling driver for OpenCores I2C controller 2240# 2241# Other: 2242# iicbb generic I2C bit-banging code (needed by lpbb) 2243# 2244device iicbus # Bus support, required for ic/iic/iicsmb below. 2245device iicbb # bitbang driver; implements i2c on a pair of gpio pins 2246 2247device ic 2248device iic # userland access to i2c slave devices via ioctl(8) 2249device iicsmb # smb over i2c bridge 2250device iicoc # OpenCores I2C controller support 2251 2252# I2C bus multiplexer (mux) devices 2253device iicmux # i2c mux core driver 2254device iic_gpiomux # i2c mux hardware controlled via gpio pins 2255device ltc430x # LTC4305 and LTC4306 i2c mux chips 2256 2257# I2C peripheral devices 2258# 2259device ad7418 # Analog Devices temp and voltage sensor 2260device ads111x # Texas Instruments ADS101x and ADS111x ADCs 2261device ds1307 # Dallas DS1307 RTC and compatible 2262device ds13rtc # All Dallas/Maxim ds13xx chips 2263device ds1672 # Dallas DS1672 RTC 2264device ds3231 # Dallas DS3231 RTC + temperature 2265device fan53555 # Fairchild Semi FAN53555/SYR82x Regulator 2266device icee # AT24Cxxx and compatible EEPROMs 2267device isl12xx # Intersil ISL12xx RTC 2268device lm75 # LM75 compatible temperature sensor 2269device nxprtc # NXP RTCs: PCA/PFC212x PCA/PCF85xx 2270device rtc8583 # Epson RTC-8583 2271device s35390a # Seiko Instruments S-35390A RTC 2272device sy8106a # Silergy Corp. SY8106A buck regulator 2273 2274# Parallel-Port Bus 2275# 2276# Parallel port bus support is provided by the `ppbus' device. 2277# Multiple devices may be attached to the parallel port, devices 2278# are automatically probed and attached when found. 2279# 2280# Supported devices: 2281# lpt Parallel Printer 2282# plip Parallel network interface 2283# ppi General-purpose I/O ("Geek Port") + IEEE1284 I/O 2284# pps Pulse per second Timing Interface 2285# lpbb Philips official parallel port I2C bit-banging interface 2286# pcfclock Parallel port clock driver. 2287# 2288# Supported interfaces: 2289# ppc ISA-bus parallel port interfaces. 2290# 2291 2292options PPC_PROBE_CHIPSET # Enable chipset specific detection 2293 # (see flags in ppc(4)) 2294options DEBUG_1284 # IEEE1284 signaling protocol debug 2295options PERIPH_1284 # Makes your computer act as an IEEE1284 2296 # compliant peripheral 2297options DONTPROBE_1284 # Avoid boot detection of PnP parallel devices 2298options LPT_DEBUG # Printer driver debug 2299options PPC_DEBUG # Parallel chipset level debug 2300options PLIP_DEBUG # Parallel network IP interface debug 2301options PCFCLOCK_VERBOSE # Verbose pcfclock driver 2302options PCFCLOCK_MAX_RETRIES=5 # Maximum read tries (default 10) 2303 2304device ppc 2305envvar hint.ppc.0.at="isa" 2306envvar hint.ppc.0.irq="7" 2307device ppbus 2308device lpt 2309device plip 2310device ppi 2311device pps 2312device lpbb 2313device pcfclock 2314 2315# General Purpose I/O pins 2316device dwgpio # Synopsys DesignWare APB GPIO Controller 2317device gpio # gpio interfaces and bus support 2318device gpiobacklight # sysctl control of gpio-based backlight 2319device gpioiic # i2c via gpio bitbang 2320device gpiokeys # kbd(4) glue for gpio-based key input 2321device gpioled # led(4) gpio glue 2322device gpiopower # event handler for gpio-based powerdown 2323device gpiopps # Pulse per second input from gpio pin 2324device gpioregulator # extres/regulator glue for gpio pin 2325device gpiospi # SPI via gpio bitbang 2326device gpioths # 1-wire temp/humidity sensor on gpio pin 2327 2328# Pulse width modulation 2329device pwmbus # pwm interface and bus support 2330device pwmc # userland control access to pwm outputs 2331 2332# 2333# Etherswitch framework and drivers 2334# 2335# etherswitch The etherswitch(4) framework 2336# miiproxy Proxy device for miibus(4) functionality 2337# 2338# Switch hardware support: 2339# arswitch Atheros switches 2340# ip17x IC+ 17x family switches 2341# rtl8366r Realtek RTL8366 switches 2342# ukswitch Multi-PHY switches 2343# 2344device etherswitch 2345device miiproxy 2346device arswitch 2347device ip17x 2348device rtl8366rb 2349device ukswitch 2350 2351# Kernel BOOTP support 2352 2353options BOOTP # Use BOOTP to obtain IP address/hostname 2354 # Requires NFSCL and NFS_ROOT 2355options BOOTP_NFSROOT # NFS mount root filesystem using BOOTP info 2356options BOOTP_NFSV3 # Use NFS v3 to NFS mount root 2357options BOOTP_COMPAT # Workaround for broken bootp daemons. 2358options BOOTP_WIRED_TO=fxp0 # Use interface fxp0 for BOOTP 2359options BOOTP_BLOCKSIZE=8192 # Override NFS block size 2360 2361# 2362# Enable software watchdog routines, even if hardware watchdog is present. 2363# By default, software watchdog timer is enabled only if no hardware watchdog 2364# is present. 2365# 2366options SW_WATCHDOG 2367 2368# 2369# Add the software deadlock resolver thread. 2370# 2371options DEADLKRES 2372 2373# 2374# Disable swapping of stack pages. This option removes all 2375# code which actually performs swapping, so it's not possible to turn 2376# it back on at run-time. 2377# 2378# This is sometimes usable for systems which don't have any swap space 2379# (see also sysctl "vm.disable_swapspace_pageouts") 2380# 2381#options NO_SWAPPING 2382 2383# Set the number of sf_bufs to allocate. sf_bufs are virtual buffers 2384# for sendfile(2) that are used to map file VM pages, and normally 2385# default to a quantity that is roughly 16*MAXUSERS+512. You would 2386# typically want about 4 of these for each simultaneous file send. 2387# 2388options NSFBUFS=1024 2389 2390# 2391# Enable extra debugging code for locks. This stores the filename and 2392# line of whatever acquired the lock in the lock itself, and changes a 2393# number of function calls to pass around the relevant data. This is 2394# not at all useful unless you are debugging lock code. Note that 2395# modules should be recompiled as this option modifies KBI. 2396# 2397options DEBUG_LOCKS 2398 2399##################################################################### 2400# HID support 2401device hid # Generic HID support 2402options HID_DEBUG # enable debug msgs 2403device hidbus # HID bus 2404device hidmap # HID to evdev mapping 2405device hidraw # Raw access driver 2406options HIDRAW_MAKE_UHID_ALIAS # install /dev/uhid alias 2407device hconf # Multitouch configuration TLC 2408device hcons # Consumer controls 2409device hgame # Generic game controllers 2410device hkbd # HID keyboard 2411device hms # HID mouse 2412device hmt # HID multitouch (MS-compatible) 2413device hpen # Generic pen driver 2414device hsctrl # System controls 2415device ps4dshock # Sony PS4 DualShock 4 gamepad driver 2416device xb360gp # XBox 360 gamepad driver 2417 2418##################################################################### 2419# USB support 2420# UHCI controller 2421device uhci 2422# OHCI controller 2423device ohci 2424# EHCI controller 2425device ehci 2426# XHCI controller 2427device xhci 2428# SL811 Controller 2429#device slhci 2430# General USB code (mandatory for USB) 2431device usb 2432# 2433# USB Double Bulk Pipe devices 2434device udbp 2435# USB temperature meter 2436device ugold 2437# USB LED 2438device uled 2439# Human Interface Device (anything with buttons and dials) 2440device uhid 2441# USB keyboard 2442device ukbd 2443# USB printer 2444device ulpt 2445# USB mass storage driver (Requires scbus and da) 2446device umass 2447# USB mass storage driver for device-side mode 2448device usfs 2449# USB support for Belkin F5U109 and Magic Control Technology serial adapters 2450device umct 2451# USB modem support 2452device umodem 2453# USB mouse 2454device ums 2455# USB touchpad(s) 2456device atp 2457device wsp 2458# eGalax USB touch screen 2459device uep 2460# Diamond Rio 500 MP3 player 2461device urio 2462# HID-over-USB driver 2463device usbhid 2464 2465# 2466# USB serial support 2467device ucom 2468# USB support for 3G modem cards by Option, Novatel, Huawei and Sierra 2469device u3g 2470# USB support for Technologies ARK3116 based serial adapters 2471device uark 2472# USB support for Belkin F5U103 and compatible serial adapters 2473device ubsa 2474# USB support for serial adapters based on the FT8U100AX and FT8U232AM 2475device uftdi 2476# USB support for some Windows CE based serial communication. 2477device uipaq 2478# USB support for Prolific PL-2303 serial adapters 2479device uplcom 2480# USB support for Silicon Laboratories CP2101/CP2102 based USB serial adapters 2481device uslcom 2482# USB Visor and Palm devices 2483device uvisor 2484# USB serial support for DDI pocket's PHS 2485device uvscom 2486# 2487# USB ethernet support 2488device uether 2489# ADMtek USB ethernet. Supports the LinkSys USB100TX, 2490# the Billionton USB100, the Melco LU-ATX, the D-Link DSB-650TX 2491# and the SMC 2202USB. Also works with the ADMtek AN986 Pegasus 2492# eval board. 2493device aue 2494 2495# ASIX Electronics AX88172 USB 2.0 ethernet driver. Used in the 2496# LinkSys USB200M and various other adapters. 2497device axe 2498# ASIX Electronics AX88178A/AX88179 USB 2.0/3.0 gigabit ethernet driver. 2499device axge 2500 2501# 2502# Devices which communicate using Ethernet over USB, particularly 2503# Communication Device Class (CDC) Ethernet specification. Supports 2504# Sharp Zaurus PDAs, some DOCSIS cable modems and so on. 2505device cdce 2506# 2507# CATC USB-EL1201A USB ethernet. Supports the CATC Netmate 2508# and Netmate II, and the Belkin F5U111. 2509device cue 2510# 2511# Kawasaki LSI ethernet. Supports the LinkSys USB10T, 2512# Entrega USB-NET-E45, Peracom Ethernet Adapter, the 2513# 3Com 3c19250, the ADS Technologies USB-10BT, the ATen UC10T, 2514# the Netgear EA101, the D-Link DSB-650, the SMC 2102USB 2515# and 2104USB, and the Corega USB-T. 2516device kue 2517# 2518# RealTek RTL8150 USB to fast ethernet. Supports the Melco LUA-KTX 2519# and the GREEN HOUSE GH-USB100B. 2520device rue 2521# 2522# Davicom DM9601E USB to fast ethernet. Supports the Corega FEther USB-TXC. 2523device udav 2524# 2525# RealTek RTL8152/RTL8153 USB Ethernet driver 2526device ure 2527# 2528# Moschip MCS7730/MCS7840 USB to fast ethernet. Supports the Sitecom LN030. 2529device mos 2530# 2531# HSxPA devices from Option N.V 2532device uhso 2533 2534# Realtek RTL8188SU/RTL8191SU/RTL8192SU wireless driver 2535device rsu 2536# 2537# Ralink Technology RT2501USB/RT2601USB wireless driver 2538device rum 2539# Ralink Technology RT2700U/RT2800U/RT3000U wireless driver 2540device run 2541# 2542# Atheros AR5523 wireless driver 2543device uath 2544# 2545# Conexant/Intersil PrismGT wireless driver 2546device upgt 2547# 2548# Ralink Technology RT2500USB wireless driver 2549device ural 2550# 2551# RNDIS USB ethernet driver 2552device urndis 2553# Realtek RTL8187B/L wireless driver 2554device urtw 2555# 2556# ZyDas ZD1211/ZD1211B wireless driver 2557device zyd 2558# 2559# Sierra USB wireless driver 2560device usie 2561 2562# 2563# debugging options for the USB subsystem 2564# 2565options USB_DEBUG 2566options U3G_DEBUG 2567 2568# options for ukbd: 2569options UKBD_DFLT_KEYMAP # specify the built-in keymap 2570makeoptions UKBD_DFLT_KEYMAP=jp.106 2571 2572# options for uplcom: 2573options UPLCOM_INTR_INTERVAL=100 # interrupt pipe interval 2574 # in milliseconds 2575 2576# options for uvscom: 2577options UVSCOM_DEFAULT_OPKTSIZE=8 # default output packet size 2578options UVSCOM_INTR_INTERVAL=100 # interrupt pipe interval 2579 # in milliseconds 2580 2581##################################################################### 2582# FireWire support 2583 2584device firewire # FireWire bus code 2585device sbp # SCSI over Firewire (Requires scbus and da) 2586device sbp_targ # SBP-2 Target mode (Requires scbus and targ) 2587device fwe # Ethernet over FireWire (non-standard!) 2588device fwip # IP over FireWire (RFC2734 and RFC3146) 2589 2590##################################################################### 2591# dcons support (Dumb Console Device) 2592 2593device dcons # dumb console driver 2594device dcons_crom # FireWire attachment 2595options DCONS_BUF_SIZE=16384 # buffer size 2596options DCONS_POLL_HZ=100 # polling rate 2597options DCONS_FORCE_CONSOLE=0 # force to be the primary console 2598options DCONS_FORCE_GDB=1 # force to be the gdb device 2599 2600##################################################################### 2601# crypto subsystem 2602# 2603# This is a port of the OpenBSD crypto framework. Include this when 2604# configuring IPSEC and when you have a h/w crypto device to accelerate 2605# user applications that link to OpenSSL. 2606# 2607# Drivers are ports from OpenBSD with some simple enhancements that have 2608# been fed back to OpenBSD. 2609 2610device crypto # core crypto support 2611 2612# Only install the cryptodev device if you are running tests, or know 2613# specifically why you need it. In most cases, it is not needed and 2614# will make things slower. 2615device cryptodev # /dev/crypto for access to h/w 2616 2617device rndtest # FIPS 140-2 entropy tester 2618 2619device ccr # Chelsio T6 2620 2621device hifn # Hifn 7951, 7781, etc. 2622options HIFN_DEBUG # enable debugging support: hw.hifn.debug 2623options HIFN_RNDTEST # enable rndtest support 2624 2625##################################################################### 2626 2627 2628# 2629# Embedded system options: 2630# 2631# An embedded system might want to run something other than init. 2632options INIT_PATH=/sbin/init:/rescue/init 2633 2634# Debug options 2635options BUS_DEBUG # enable newbus debugging 2636options DEBUG_VFS_LOCKS # enable VFS lock debugging 2637options SOCKBUF_DEBUG # enable sockbuf last record/mb tail checking 2638options IFMEDIA_DEBUG # enable debugging in net/if_media.c 2639 2640# 2641# Verbose SYSINIT 2642# 2643# Make the SYSINIT process performed by mi_startup() verbose. This is very 2644# useful when porting to a new architecture. If DDB is also enabled, this 2645# will print function names instead of addresses. If defined with a value 2646# of zero, the verbose code is compiled-in but disabled by default, and can 2647# be enabled with the debug.verbose_sysinit=1 tunable. 2648options VERBOSE_SYSINIT 2649 2650##################################################################### 2651# SYSV IPC KERNEL PARAMETERS 2652# 2653# Maximum number of System V semaphores that can be used on the system at 2654# one time. 2655options SEMMNI=11 2656 2657# Total number of semaphores system wide 2658options SEMMNS=61 2659 2660# Total number of undo structures in system 2661options SEMMNU=31 2662 2663# Maximum number of System V semaphores that can be used by a single process 2664# at one time. 2665options SEMMSL=61 2666 2667# Maximum number of operations that can be outstanding on a single System V 2668# semaphore at one time. 2669options SEMOPM=101 2670 2671# Maximum number of undo operations that can be outstanding on a single 2672# System V semaphore at one time. 2673options SEMUME=11 2674 2675# Maximum number of shared memory pages system wide. 2676options SHMALL=1025 2677 2678# Maximum size, in bytes, of a single System V shared memory region. 2679options SHMMAX=(SHMMAXPGS*PAGE_SIZE+1) 2680options SHMMAXPGS=1025 2681 2682# Minimum size, in bytes, of a single System V shared memory region. 2683options SHMMIN=2 2684 2685# Maximum number of shared memory regions that can be used on the system 2686# at one time. 2687options SHMMNI=33 2688 2689# Maximum number of System V shared memory regions that can be attached to 2690# a single process at one time. 2691options SHMSEG=9 2692 2693# Set the amount of time (in seconds) the system will wait before 2694# rebooting automatically when a kernel panic occurs. If set to (-1), 2695# the system will wait indefinitely until a key is pressed on the 2696# console. 2697options PANIC_REBOOT_WAIT_TIME=16 2698 2699# Attempt to bypass the buffer cache and put data directly into the 2700# userland buffer for read operation when O_DIRECT flag is set on the 2701# file. Both offset and length of the read operation must be 2702# multiples of the physical media sector size. 2703# 2704options DIRECTIO 2705 2706# Specify a lower limit for the number of swap I/O buffers. They are 2707# (among other things) used when bypassing the buffer cache due to 2708# DIRECTIO kernel option enabled and O_DIRECT flag set on file. 2709# 2710options NSWBUF_MIN=120 2711 2712##################################################################### 2713 2714# More undocumented options for linting. 2715# Note that documenting these is not considered an affront. 2716 2717options CAM_DEBUG_DELAY 2718 2719options DEBUG 2720 2721# Kernel filelock debugging. 2722options LOCKF_DEBUG 2723 2724# System V compatible message queues 2725# Please note that the values provided here are used to test kernel 2726# building. The defaults in the sources provide almost the same numbers. 2727# MSGSSZ must be a power of 2 between 8 and 1024. 2728options MSGMNB=2049 # Max number of chars in queue 2729options MSGMNI=41 # Max number of message queue identifiers 2730options MSGSEG=2049 # Max number of message segments 2731options MSGSSZ=16 # Size of a message segment 2732options MSGTQL=41 # Max number of messages in system 2733 2734options NBUF=512 # Number of buffer headers 2735 2736options SC_DEBUG_LEVEL=5 # Syscons debug level 2737options SC_RENDER_DEBUG # syscons rendering debugging 2738 2739options VFS_BIO_DEBUG # VFS buffer I/O debugging 2740 2741options KSTACK_MAX_PAGES=32 # Maximum pages to give the kernel stack 2742options KSTACK_USAGE_PROF 2743 2744# Adaptec Array Controller driver options 2745options AAC_DEBUG # Debugging levels: 2746 # 0 - quiet, only emit warnings 2747 # 1 - noisy, emit major function 2748 # points and things done 2749 # 2 - extremely noisy, emit trace 2750 # items in loops, etc. 2751 2752# Resource Accounting 2753options RACCT 2754 2755# Resource Limits 2756options RCTL 2757 2758# Yet more undocumented options for linting. 2759options MAXFILES=999 2760 2761# Random number generator 2762# Alternative algorithm. 2763#options RANDOM_FENESTRASX 2764# Allow the CSPRNG algorithm to be loaded as a module. 2765#options RANDOM_LOADABLE 2766# Select this to allow high-rate but potentially expensive 2767# harvesting of Slab-Allocator entropy. In very high-rate 2768# situations the value of doing this is dubious at best. 2769options RANDOM_ENABLE_UMA # slab allocator 2770 2771# Select this to allow high-rate but potentially expensive 2772# harvesting of of the m_next pointer in the mbuf. Note that 2773# the m_next pointer is NULL except when receiving > 4K 2774# jumbo frames or sustained bursts by way of LRO. Thus in 2775# the common case it is stirring zero in to the entropy 2776# pool. In cases where it is not NULL it is pointing to one 2777# of a small (in the thousands to 10s of thousands) number 2778# of 256 byte aligned mbufs. Hence it is, even in the best 2779# case, a poor source of entropy. And in the absence of actual 2780# runtime analysis of entropy collection may mislead the user in 2781# to believe that substantially more entropy is being collected 2782# than in fact is - leading to a different class of security 2783# risk. In high packet rate situations ethernet entropy 2784# collection is also very expensive, possibly leading to as 2785# much as a 50% drop in packets received. 2786# This option is present to maintain backwards compatibility 2787# if desired, however it cannot be recommended for use in any 2788# environment. 2789options RANDOM_ENABLE_ETHER # ether_input 2790 2791# Module to enable execution of application via emulators like QEMU 2792options IMGACT_BINMISC 2793 2794# zlib I/O stream support 2795# This enables support for compressed core dumps. 2796options GZIO 2797 2798# zstd support 2799# This enables support for Zstd compressed core dumps, GEOM_UZIP images, 2800# and is required by zfs if statically linked. 2801options ZSTDIO 2802 2803# BHND(4) drivers 2804options BHND_LOGLEVEL # Logging threshold level 2805 2806# evdev interface 2807device evdev # input event device support 2808options EVDEV_SUPPORT # evdev support in legacy drivers 2809options EVDEV_DEBUG # enable event debug msgs 2810device uinput # install /dev/uinput cdev 2811options UINPUT_DEBUG # enable uinput debug msgs 2812 2813# Encrypted kernel crash dumps. 2814options EKCD 2815 2816# Serial Peripheral Interface (SPI) support. 2817device spibus # Bus support. 2818device at45d # DataFlash driver 2819device cqspi # 2820device mx25l # SPIFlash driver 2821device n25q # 2822device spigen # Generic access to SPI devices from userland. 2823# Enable legacy /dev/spigenN name aliases for /dev/spigenX.Y devices. 2824options SPIGEN_LEGACY_CDEVNAME # legacy device names for spigen 2825 2826# Compression supports. 2827device zlib # gzip/zlib compression/decompression library 2828device xz # xz_embedded LZMA de-compression library 2829 2830# Kernel support for stats(3). 2831options STATS 2832