1# 2# NOTES -- Lines that can be cut/pasted into kernel and hints configs. 3# 4# This file contains machine dependent kernel configuration notes. For 5# machine independent notes, look in /sys/conf/NOTES. 6# 7# $FreeBSD$ 8# 9 10# 11# This directive is mandatory; it defines the architecture to be 12# configured for; in this case, the 386 family based IBM-PC and 13# compatibles. 14# 15machine i386 16 17# 18# We want LINT to cover profiling as well. 19profile 2 20 21 22##################################################################### 23# SMP OPTIONS: 24# 25# The apic device enables the use of the I/O APIC for interrupt delivery. 26# The apic device can be used in both UP and SMP kernels, but is required 27# for SMP kernels. Thus, the apic device is not strictly an SMP option, 28# but it is a prerequisite for SMP. 29# 30# Notes: 31# 32# By default, mixed mode is used to route IRQ0 from the AT timer via 33# the 8259A master PIC through the ExtINT pin on the first I/O APIC. 34# This can be disabled via the NO_MIXED_MODE option. In that case, 35# IRQ0 will be routed via an intpin on the first I/O APIC. Not all 36# motherboards hook IRQ0 up to the first I/O APIC even though their 37# MP table or MADT may claim to do so. That is why mixed mode is 38# enabled by default. 39# 40# HTT CPUs should only be used if they are enabled in the BIOS. For 41# the ACPI case, ACPI only correctly tells us about any HTT CPUs if 42# they are enabled. However, most HTT systems do not list HTT CPUs 43# in the MP Table if they are enabled, thus we guess at the HTT CPUs 44# for the MP Table case. However, we shouldn't try to guess and use 45# these CPUs if HTT is disabled. Thus, HTT guessing is only enabled 46# for the MP Table if the user explicitly asks for it via the 47# MPTABLE_FORCE_HTT option. Do NOT use this option if you have HTT 48# disabled in your BIOS. 49# 50 51# Mandatory: 52device apic # I/O apic 53 54# Optional: 55options MPTABLE_FORCE_HTT # Enable HTT CPUs with the MP Table 56options NO_MIXED_MODE # Disable use of mixed mode 57 58 59##################################################################### 60# CPU OPTIONS 61 62# 63# You must specify at least one CPU (the one you intend to run on); 64# deleting the specification for CPUs you don't need to use may make 65# parts of the system run faster. 66# 67cpu I486_CPU 68cpu I586_CPU # aka Pentium(tm) 69cpu I686_CPU # aka Pentium Pro(tm) 70 71# 72# Options for CPU features. 73# 74# CPU_ATHLON_SSE_HACK tries to enable SSE instructions when the BIOS has 75# forgotten to enable them. 76# 77# CPU_BLUELIGHTNING_3X enables triple-clock mode on IBM Blue Lightning 78# CPU if CPU supports it. The default is double-clock mode on 79# BlueLightning CPU box. 80# 81# CPU_BLUELIGHTNING_FPU_OP_CACHE enables FPU operand cache on IBM 82# BlueLightning CPU. It works only with Cyrix FPU, and this option 83# should not be used with Intel FPU. 84# 85# CPU_BTB_EN enables branch target buffer on Cyrix 5x86 (NOTE 1). 86# 87# CPU_CYRIX_NO_LOCK enables weak locking for the entire address space 88# of Cyrix 6x86 and 6x86MX CPUs by setting the NO_LOCK bit of CCR1. 89# Otherwise, the NO_LOCK bit of CCR1 is cleared. (NOTE 3) 90# 91# CPU_DIRECT_MAPPED_CACHE sets L1 cache of Cyrix 486DLC CPU in direct 92# mapped mode. Default is 2-way set associative mode. 93# 94# CPU_DISABLE_5X86_LSSER disables load store serialize (i.e., enables 95# reorder). This option should not be used if you use memory mapped 96# I/O device(s). 97# 98# CPU_DISABLE_CMPXCHG disables the CMPXCHG instruction on > i386 IA32 99# machines. VmWare 3.x seems to emulate this instruction poorly, causing 100# the guest OS to run very slowly. This problem appears to be fixed in 101# VmWare 4.x, at least in version 4.5.2, so that enabling this option with 102# VmWare 4.x will result in locking operations to be 20-30 times slower. 103# Enabling this with an SMP kernel will cause the kernel to be unusable. 104# 105# CPU_DISABLE_SSE explicitly prevents I686_CPU from turning on SSE. 106# 107# CPU_ELAN enables support for AMDs ElanSC520 CPU. 108# CPU_ELAN_PPS enables precision timestamp code. 109# CPU_ELAN_XTAL sets the clock crystal frequency in Hz. 110# 111# CPU_ENABLE_LONGRUN enables support for Transmeta Crusoe LongRun 112# technology which allows to restrict power consumption of the CPU by 113# using group of hw.crusoe.* sysctls. 114# 115# CPU_ENABLE_SSE enables SSE/MMX2 instructions support. This is default 116# on I686_CPU and above. 117# 118# CPU_ENABLE_TCC enables Thermal Control Circuitry (TCC) found in some 119# Pentium(tm) 4 and (possibly) later CPUs. When enabled and detected, 120# TCC supports restricting power consumption using the hw.p4tcc.* 121# sysctls. This operates independently of SpeedStep and is useful on 122# systems where other mechanisms such as apm(4) or acpi(4) don't work. 123# 124# CPU_FASTER_5X86_FPU enables faster FPU exception handler. 125# 126# CPU_GEODE is for the SC1100 Geode embedded processor. This option 127# is necessary because the i8254 timecounter is toast. 128# 129# CPU_I486_ON_386 enables CPU cache on i486 based CPU upgrade products 130# for i386 machines. 131# 132# CPU_IORT defines I/O clock delay time (NOTE 1). Default values of 133# I/O clock delay time on Cyrix 5x86 and 6x86 are 0 and 7,respectively 134# (no clock delay). 135# 136# CPU_L2_LATENCY specifies the L2 cache latency value. This option is used 137# only when CPU_PPRO2CELERON is defined and Mendocino Celeron is detected. 138# The default value is 5. 139# 140# CPU_LOOP_EN prevents flushing the prefetch buffer if the destination 141# of a jump is already present in the prefetch buffer on Cyrix 5x86(NOTE 142# 1). 143# 144# CPU_PPRO2CELERON enables L2 cache of Mendocino Celeron CPUs. This option 145# is useful when you use Socket 8 to Socket 370 converter, because most Pentium 146# Pro BIOSs do not enable L2 cache of Mendocino Celeron CPUs. 147# 148# CPU_RSTK_EN enables return stack on Cyrix 5x86 (NOTE 1). 149# 150# CPU_SOEKRIS enables support www.soekris.com hardware. 151# 152# CPU_SUSP_HLT enables suspend on HALT. If this option is set, CPU 153# enters suspend mode following execution of HALT instruction. 154# 155# CPU_UPGRADE_HW_CACHE eliminates unneeded cache flush instruction(s). 156# 157# CPU_WT_ALLOC enables write allocation on Cyrix 6x86/6x86MX and AMD 158# K5/K6/K6-2 CPUs. 159# 160# CYRIX_CACHE_WORKS enables CPU cache on Cyrix 486 CPUs with cache 161# flush at hold state. 162# 163# CYRIX_CACHE_REALLY_WORKS enables (1) CPU cache on Cyrix 486 CPUs 164# without cache flush at hold state, and (2) write-back CPU cache on 165# Cyrix 6x86 whose revision < 2.7 (NOTE 2). 166# 167# NO_F00F_HACK disables the hack that prevents Pentiums (and ONLY 168# Pentiums) from locking up when a LOCK CMPXCHG8B instruction is 169# executed. This option is only needed if I586_CPU is also defined, 170# and should be included for any non-Pentium CPU that defines it. 171# 172# NO_MEMORY_HOLE is an optimisation for systems with AMD K6 processors 173# which indicates that the 15-16MB range is *definitely* not being 174# occupied by an ISA memory hole. 175# 176# NOTE 1: The options, CPU_BTB_EN, CPU_LOOP_EN, CPU_IORT, 177# CPU_LOOP_EN and CPU_RSTK_EN should not be used because of CPU bugs. 178# These options may crash your system. 179# 180# NOTE 2: If CYRIX_CACHE_REALLY_WORKS is not set, CPU cache is enabled 181# in write-through mode when revision < 2.7. If revision of Cyrix 182# 6x86 >= 2.7, CPU cache is always enabled in write-back mode. 183# 184# NOTE 3: This option may cause failures for software that requires 185# locked cycles in order to operate correctly. 186# 187options CPU_ATHLON_SSE_HACK 188options CPU_BLUELIGHTNING_3X 189options CPU_BLUELIGHTNING_FPU_OP_CACHE 190options CPU_BTB_EN 191options CPU_DIRECT_MAPPED_CACHE 192options CPU_DISABLE_5X86_LSSER 193options CPU_DISABLE_CMPXCHG 194#options CPU_DISABLE_SSE 195options CPU_ELAN 196options CPU_ELAN_PPS 197options CPU_ELAN_XTAL=32768000 198options CPU_ENABLE_LONGRUN 199options CPU_ENABLE_SSE 200options CPU_ENABLE_TCC 201options CPU_FASTER_5X86_FPU 202options CPU_GEODE 203options CPU_I486_ON_386 204options CPU_IORT 205options CPU_L2_LATENCY=5 206options CPU_LOOP_EN 207options CPU_PPRO2CELERON 208options CPU_RSTK_EN 209options CPU_SOEKRIS 210options CPU_SUSP_HLT 211options CPU_UPGRADE_HW_CACHE 212options CPU_WT_ALLOC 213options CYRIX_CACHE_WORKS 214options CYRIX_CACHE_REALLY_WORKS 215#options NO_F00F_HACK 216 217# Debug options 218options NPX_DEBUG # enable npx debugging 219 220# 221# PERFMON causes the driver for Pentium/Pentium Pro performance counters 222# to be compiled. See perfmon(4) for more information. 223# 224options PERFMON 225 226 227##################################################################### 228# NETWORKING OPTIONS 229 230# 231# DEVICE_POLLING adds support for mixed interrupt-polling handling 232# of network device drivers, which has significant benefits in terms 233# of robustness to overloads and responsivity, as well as permitting 234# accurate scheduling of the CPU time between kernel network processing 235# and other activities. The drawback is a moderate (up to 1/HZ seconds) 236# potential increase in response times. 237# It is strongly recommended to use HZ=1000 or 2000 with DEVICE_POLLING 238# to achieve smoother behaviour. 239# Additionally, you can enable/disable polling at runtime with the 240# sysctl variable kern.polling.enable (defaults off), and select 241# the CPU fraction reserved to userland with the sysctl variable 242# kern.polling.user_frac (default 50, range 0..100). 243# 244# Not all device drivers support this mode of operation at the time of 245# this writing. See polling(4) for more details. 246 247options DEVICE_POLLING 248 249 250##################################################################### 251# CLOCK OPTIONS 252 253# The following options are used for debugging clock behavior only, and 254# should not be used for production systems. 255 256# CLK_CALIBRATION_LOOP causes clock calibration to be run in a loop at 257# startup until the user presses a key. (The i8254 clock is always 258# calibrated relative to the RTC (mc146818a) and this option causes the 259# calibration to be repeated.) 260options CLK_CALIBRATION_LOOP 261 262# CLK_USE_I8254_CALIBRATION causes the calibrated frequency of the i8254 263# clock to actually be used. 264options CLK_USE_I8254_CALIBRATION 265 266 267##################################################################### 268# MISCELLANEOUS DEVICES AND OPTIONS 269 270device speaker #Play IBM BASIC-style noises out your speaker 271hint.speaker.0.at="isa" 272hint.speaker.0.port="0x61" 273device gzip #Exec gzipped a.out's. REQUIRES COMPAT_AOUT! 274device apm_saver # Requires APM 275 276 277##################################################################### 278# HARDWARE BUS CONFIGURATION 279 280# 281# ISA bus 282# 283device isa # Required by npx(4) 284 285# 286# Options for `isa': 287# 288# AUTO_EOI_1 enables the `automatic EOI' feature for the master 8259A 289# interrupt controller. This saves about 0.7-1.25 usec for each interrupt. 290# This option breaks suspend/resume on some portables. 291# 292# AUTO_EOI_2 enables the `automatic EOI' feature for the slave 8259A 293# interrupt controller. This saves about 0.7-1.25 usec for each interrupt. 294# Automatic EOI is documented not to work for for the slave with the 295# original i8259A, but it works for some clones and some integrated 296# versions. 297# 298# MAXMEM specifies the amount of RAM on the machine; if this is not 299# specified, FreeBSD will first read the amount of memory from the CMOS 300# RAM, so the amount of memory will initially be limited to 64MB or 16MB 301# depending on the BIOS. If the BIOS reports 64MB, a memory probe will 302# then attempt to detect the installed amount of RAM. If this probe 303# fails to detect >64MB RAM you will have to use the MAXMEM option. 304# The amount is in kilobytes, so for a machine with 128MB of RAM, it would 305# be 131072 (128 * 1024). 306# 307# BROKEN_KEYBOARD_RESET disables the use of the keyboard controller to 308# reset the CPU for reboot. This is needed on some systems with broken 309# keyboard controllers. 310 311options AUTO_EOI_1 312#options AUTO_EOI_2 313 314options MAXMEM=(128*1024) 315#options BROKEN_KEYBOARD_RESET 316 317# 318# EISA bus 319# 320# The EISA bus device is `eisa'. It provides auto-detection and 321# configuration support for all devices on the EISA bus. 322 323device eisa 324 325# By default, only 10 EISA slots are probed, since the slot numbers 326# above clash with the configuration address space of the PCI subsystem, 327# and the EISA probe is not very smart about this. This is sufficient 328# for most machines, but in particular the HP NetServer LC series comes 329# with an onboard AIC7770 dual-channel SCSI controller on EISA slot #11, 330# thus you need to bump this figure to 12 for them. 331options EISA_SLOTS=12 332 333# 334# MCA bus: 335# 336# The MCA bus device is `mca'. It provides auto-detection and 337# configuration support for all devices on the MCA bus. 338# No hints are required for MCA. 339 340device mca 341 342# 343# PCI bus & PCI options: 344# 345device pci 346 347# 348# AGP GART support 349device agp 350 351 352##################################################################### 353# HARDWARE DEVICE CONFIGURATION 354 355# To include support for VGA VESA video modes 356options VESA 357 358# Turn on extra debugging checks and output for VESA support. 359options VESA_DEBUG 360 361# The pcvt console driver (vt220 compatible). 362device vt 363hint.vt.0.at="isa" 364options XSERVER # support for running an X server on vt 365options FAT_CURSOR # start with block cursor 366# This PCVT option is for keyboards such as those used on really old ThinkPads 367options PCVT_SCANSET=2 368# Other PCVT options are documented in pcvt(4). 369options PCVT_24LINESDEF 370options PCVT_CTRL_ALT_DEL 371options PCVT_META_ESC 372options PCVT_NSCREENS=9 373options PCVT_PRETTYSCRNS 374options PCVT_SCREENSAVER 375options PCVT_USEKBDSEC 376options PCVT_VT220KEYB 377options PCVT_GREENSAVER 378 379# 380# The Numeric Processing eXtension driver. This is non-optional. 381device npx 382hint.npx.0.flags="0x0" 383hint.npx.0.irq="13" 384 385# 386# `flags' for npx0: 387# 0x01 don't use the npx registers to optimize bcopy. 388# 0x02 don't use the npx registers to optimize bzero. 389# 0x04 don't use the npx registers to optimize copyin or copyout. 390# The npx registers are normally used to optimize copying and zeroing when 391# all of the following conditions are satisfied: 392# I586_CPU is an option 393# the cpu is an i586 (perhaps not a Pentium) 394# the probe for npx0 succeeds 395# INT 16 exception handling works. 396# Then copying and zeroing using the npx registers is normally 30-100% faster. 397# The flags can be used to control cases where it doesn't work or is slower. 398# Setting them at boot time using userconfig works right (the optimizations 399# are not used until later in the bootstrap when npx0 is attached). 400# Flag 0x08 automatically disables the i586 optimized routines. 401# 402 403# 404# Optional devices: 405# 406 407# 3Dfx Voodoo Graphics, Voodoo II /dev/3dfx CDEV support. This will create 408# the /dev/3dfx0 device to work with glide implementations. This should get 409# linked to /dev/3dfx and /dev/voodoo. Note that this is not the same as 410# the tdfx DRI module from XFree86 and is completely unrelated. 411# 412# To enable Linuxulator support, one must also include COMPAT_LINUX in the 413# config as well, or you will not have the dependencies. The other option 414# is to load both as modules. 415 416device tdfx # Enable 3Dfx Voodoo support 417options TDFX_LINUX # Enable Linuxulator support 418 419# 420# ACPI support using the Intel ACPI Component Architecture reference 421# implementation. 422# 423# ACPI_DEBUG enables the use of the debug.acpi.level and debug.acpi.layer 424# kernel environment variables to select initial debugging levels for the 425# Intel ACPICA code. (Note that the Intel code must also have USE_DEBUGGER 426# defined when it is built). 427# 428# ACPI_MAX_THREADS sets the number of task threads started. 429# 430# ACPI_NO_SEMAPHORES makes the AcpiOs*Semaphore routines a no-op. 431# 432# ACPICA_PEDANTIC enables strict checking of AML. Our default is to 433# relax these checks to allow code generated by the Microsoft compiler 434# to still execute. 435# 436# Note that building ACPI into the kernel is deprecated; the module is 437# normally loaded automatically by the loader. 438 439device acpi 440options ACPI_DEBUG 441options ACPI_MAX_THREADS=1 442#!options ACPI_NO_SEMAPHORES 443#!options ACPICA_PEDANTIC 444 445# ACPI Asus Extras (LCD backlight/brightness, video output, etc.) 446device acpi_asus 447 448# ACPI Panasonic Extras (LCD backlight/brightness, video output, etc.) 449device acpi_panasonic 450 451# ACPI Sony extra (LCD brightness) 452device acpi_sony 453 454# ACPI Toshiba Extras (LCD backlight/brightness, video output, etc.) 455device acpi_toshiba 456 457# ACPI Video Extensions (LCD backlight/brightness, video output, etc.) 458device acpi_video 459 460# DRM options: 461# mgadrm: AGP Matrox G200, G400, G450, G550 462# r128drm: ATI Rage 128 463# radeondrm: ATI Radeon up to 9000/9100 464# sisdrm: SiS 300/305,540,630 465# tdfxdrm: 3dfx Voodoo 3/4/5 and Banshee 466# DRM_DEBUG: include debug printfs, very slow 467# 468# mga requires AGP in the kernel, and it is recommended 469# for AGP r128 and radeon cards. 470 471device mgadrm 472device r128drm 473device radeondrm 474device sisdrm 475device tdfxdrm 476 477options DRM_DEBUG 478 479# 480# mse: Logitech and ATI InPort bus mouse ports 481 482device mse 483hint.mse.0.at="isa" 484hint.mse.0.port="0x23c" 485hint.mse.0.irq="5" 486 487# 488# Network interfaces: 489# 490 491# ar: Arnet SYNC/570i hdlc sync 2/4 port V.35/X.21 serial driver 492# (requires sppp) 493# arl: Aironet Arlan 655 wireless adapters. 494# ath: Atheros a/b/g WiFi adapters (requires ath_hal and wlan) 495# cp: Cronyx Tau-PCI sync single/dual/four port 496# V.35/RS-232/RS-530/RS-449/X.21/G.703/E1/E3/T3/STS-1 497# serial adaptor (requires sppp (default), or NETGRAPH if 498# NETGRAPH_CRONYX is configured) 499# ctau: Cronyx Tau sync dual port V.35/RS-232/RS-530/RS-449/X.21/G.703/E1 500# serial adaptor (requires sppp (default), or NETGRAPH if 501# NETGRAPH_CRONYX is configured) 502# cx: Cronyx Sigma multiport sync/async adapter (requires sppp (default), 503# or NETGRAPH if NETGRAPH_CRONYX is configured) 504# ed: Western Digital and SMC 80xx; Novell NE1000 and NE2000; 3Com 3C503 505# HP PC Lan+, various PC Card devices (refer to etc/defaults/pccard.conf) 506# (requires miibus) 507# el: 3Com 3C501 (slow!) 508# ie: AT&T StarLAN 10 and EN100; 3Com 3C507; unknown NI5210; 509# Intel EtherExpress 510# lnc: Lance/PCnet cards (Isolan, Novell NE2100, NE32-VL, AMD Am7990 and 511# Am79C960) 512# oltr: Olicom ISA token-ring adapters OC-3115, OC-3117, OC-3118 and OC-3133. 513# Olicom PCI token-ring adapters OC-3136, OC-3137, OC-3139, OC-3140, 514# OC-3141, OC-3540 and OC-3250. 515# sbni: Granch SBNI12-xx ISA and PCI adapters 516# sr: RISCom/N2 hdlc sync 1/2 port V.35/X.21 serial driver (requires sppp) 517# wl: Lucent Wavelan (ISA card only). 518 519# Order for ISA/EISA devices is important here 520 521device ar 522hint.ar.0.at="isa" 523hint.ar.0.port="0x300" 524hint.ar.0.irq="10" 525hint.ar.0.maddr="0xd0000" 526device arl 527hint.arl.0.at="isa" 528hint.arl.0.irq="9" 529hint.arl.0.maddr="0xd0000" 530device cp 531device ctau 532hint.ctau.0.at="isa" 533hint.ctau.0.port="0x240" 534hint.ctau.0.irq="15" 535hint.ctau.0.drq="7" 536device cx 537hint.cx.0.at="isa" 538hint.cx.0.port="0x240" 539hint.cx.0.irq="15" 540hint.cx.0.drq="7" 541#options NETGRAPH_CRONYX # Enable NETGRAPH support for Cronyx adapter(s) 542device ed 543#options ED_NO_MIIBUS # Disable ed miibus support 544hint.ed.0.at="isa" 545hint.ed.0.port="0x280" 546hint.ed.0.irq="5" 547hint.ed.0.maddr="0xd8000" 548device el 549hint.el.0.at="isa" 550hint.el.0.port="0x300" 551hint.el.0.irq="9" 552device ie # Hints only required for Starlan 553hint.ie.2.at="isa" 554hint.ie.2.port="0x300" 555hint.ie.2.irq="5" 556hint.ie.2.maddr="0xd0000" 557device lnc 558hint.lnc.0.at="isa" 559hint.lnc.0.port="0x280" 560hint.lnc.0.irq="10" 561hint.lnc.0.drq="0" 562device sbni 563hint.sbni.0.at="isa" 564hint.sbni.0.port="0x210" 565hint.sbni.0.irq="0xefdead" 566hint.sbni.0.flags="0" 567device sr 568hint.sr.0.at="isa" 569hint.sr.0.port="0x300" 570hint.sr.0.irq="5" 571hint.sr.0.maddr="0xd0000" 572device oltr 573hint.oltr.0.at="isa" 574device wl 575hint.wl.0.at="isa" 576hint.wl.0.port="0x300" 577options WLCACHE # enables the signal-strength cache 578options WLDEBUG # enables verbose debugging output 579 580device ath 581device ath_hal # Atheros HAL (includes binary component) 582#device wlan # 802.11 layer 583 584# 585# ATA raid adapters 586# 587device pst 588 589# 590# 3ware 9000 series PATA/SATA RAID controller driver and options. 591# The driver is implemented as a SIM, and so, needs the CAM infrastructure. 592# 593options TWA_DEBUG # 0-10; 10 prints the most messages. 594options TWA_FLASH_FIRMWARE # firmware image bundled when defined. 595device twa # 3ware 9000 series PATA/SATA RAID 596 597# 598# SCSI host adapters: 599# 600# ncv: NCR 53C500 based SCSI host adapters. 601# nsp: Workbit Ninja SCSI-3 based PC Card SCSI host adapters. 602# stg: TMC 18C30, 18C50 based SCSI host adapters. 603 604device ncv 605device nsp 606device stg 607hint.stg.0.at="isa" 608hint.stg.0.port="0x140" 609hint.stg.0.port="11" 610 611# 612# Adaptec FSA RAID controllers, including integrated DELL controllers, 613# the Dell PERC 2/QC and the HP NetRAID-4M 614device aac 615device aacp # SCSI Passthrough interface (optional, CAM required) 616 617# 618# Highpoint RocketRAID 182x. This is really just software RAID on a 619# Marvell SATA chip. 620device hptmv 621 622# 623# IBM (now Adaptec) ServeRAID controllers 624device ips 625 626# 627# SafeNet crypto driver: can be moved to the MI NOTES as soon as 628# it's tested on a big-endian machine 629# 630device safe # SafeNet 1141 631options SAFE_DEBUG # enable debugging support: hw.safe.debug 632options SAFE_RNDTEST # enable rndtest support 633 634##################################################################### 635 636# 637# Miscellaneous hardware: 638# 639# apm: Laptop Advanced Power Management (experimental) 640# pmtimer: Timer device driver for power management events (APM or ACPI) 641# cy: Cyclades serial driver 642# digi: Digiboard driver 643# spic: Sony Programmable I/O controller (VAIO notebooks) 644 645# Notes on APM 646# The flags takes the following meaning for apm0: 647# 0x0020 Statclock is broken. 648 649# Notes on the Specialix SI/XIO driver: 650# The host card is memory, not IO mapped. 651# The Rev 1 host cards use a 64K chunk, on a 32K boundary. 652# The Rev 2 host cards use a 32K chunk, on a 32K boundary. 653# The cards can use an IRQ of 11, 12 or 15. 654 655# Notes on the Sony Programmable I/O controller 656# This is a temporary driver that should someday be replaced by something 657# that hooks into the ACPI layer. The device is hooked to the PIIX4's 658# General Device 10 decoder, which means you have to fiddle with PCI 659# registers to map it in, even though it is otherwise treated here as 660# an ISA device. At the moment, the driver polls, although the device 661# is capable of generating interrupts. It largely undocumented. 662# The port location in the hint is where you WANT the device to be 663# mapped. 0x10a0 seems to be traditional. At the moment the jogdial 664# is the only thing truly supported, but apparently a fair percentage 665# of the Vaio extra features are controlled by this device. 666 667device apm 668hint.apm.0.flags="0x20" 669device pmtimer # Adjust system timer at wakeup time 670device cy 671options CY_PCI_FASTINTR # Use with cy_pci unless irq is shared 672hint.cy.0.at="isa" 673hint.cy.0.irq="10" 674hint.cy.0.maddr="0xd4000" 675hint.cy.0.msize="0x2000" 676device digi 677hint.digi.0.at="isa" 678hint.digi.0.port="0x104" 679hint.digi.0.maddr="0xd0000" 680# BIOS & FEP/OS components of device digi. 681device digi_CX 682device digi_CX_PCI 683device digi_EPCX 684device digi_EPCX_PCI 685device digi_Xe 686device digi_Xem 687device digi_Xr 688# Parallel (8255 PPI) basic I/O (mode 0) port (e.g. Advantech PCL-724) 689device pbio 690hint.pbio.0.at="isa" 691hint.pbio.0.port="0x360" 692device spic 693hint.spic.0.at="isa" 694hint.spic.0.port="0x10a0" 695# sx device is i386 and pc98 only at the moment. 696device sx 697options SX_DEBUG 698# HOT1 Xilinx 6200 card (http://www.vcc.com/) 699device xrpu 700 701# 702# Laptop/Notebook options: 703# 704# See also: 705# apm under `Miscellaneous hardware' 706# above. 707 708# For older notebooks that signal a powerfail condition (external 709# power supply dropped, or battery state low) by issuing an NMI: 710 711options POWERFAIL_NMI # make it beep instead of panicing 712 713# 714# I2C Bus 715# 716# Philips i2c bus support is provided by the `iicbus' device. 717# 718# Supported interfaces: 719# pcf Philips PCF8584 ISA-bus controller 720# 721device pcf 722hint.pcf.0.at="isa" 723hint.pcf.0.port="0x320" 724hint.pcf.0.irq="5" 725 726# 727# Hardware watchdog timers: 728# 729# ichwd: Intel ICH watchdog timer 730# 731device ichwd 732 733#--------------------------------------------------------------------------- 734# ISDN4BSD 735# 736# See /usr/share/examples/isdn/ROADMAP for an introduction to isdn4bsd. 737# 738# i4b passive ISDN cards support contains the following hardware drivers: 739# 740# isic - Siemens/Infineon ISDN ISAC/HSCX/IPAC chipset driver 741# iwic - Winbond W6692 PCI bus ISDN S/T interface controller 742# ifpi - AVM Fritz!Card PCI driver 743# ifpi2 - AVM Fritz!Card PCI version 2 driver 744# ihfc - Cologne Chip HFC ISA/ISA-PnP chipset driver 745# ifpnp - AVM Fritz!Card PnP driver 746# itjc - Siemens ISAC / TJNet Tiger300/320 chipset 747# 748# i4b active ISDN cards support contains the following hardware drivers: 749# 750# iavc - AVM B1 PCI, AVM B1 ISA, AVM T1 751# 752# Note that the ``options'' (if given) and ``device'' lines must BOTH 753# be uncommented to enable support for a given card ! 754# 755# In addition to a hardware driver (and probably an option) the mandatory 756# ISDN protocol stack devices and the mandatory support device must be 757# enabled as well as one or more devices from the optional devices section. 758# 759#--------------------------------------------------------------------------- 760# isic driver (Siemens/Infineon chipsets) 761# 762device isic 763# 764# ISA bus non-PnP Cards: 765# ---------------------- 766# 767# Teles S0/8 or Niccy 1008 768options TEL_S0_8 769hint.isic.0.at="isa" 770hint.isic.0.maddr="0xd0000" 771hint.isic.0.irq="5" 772hint.isic.0.flags="1" 773# 774# Teles S0/16 or Creatix ISDN-S0 or Niccy 1016 775options TEL_S0_16 776hint.isic.0.at="isa" 777hint.isic.0.port="0xd80" 778hint.isic.0.maddr="0xd0000" 779hint.isic.0.irq="5" 780hint.isic.0.flags="2" 781# 782# Teles S0/16.3 783options TEL_S0_16_3 784hint.isic.0.at="isa" 785hint.isic.0.port="0xd80" 786hint.isic.0.irq="5" 787hint.isic.0.flags="3" 788# 789# AVM A1 or AVM Fritz!Card 790options AVM_A1 791hint.isic.0.at="isa" 792hint.isic.0.port="0x340" 793hint.isic.0.irq="5" 794hint.isic.0.flags="4" 795# 796# USRobotics Sportster ISDN TA intern 797options USR_STI 798hint.isic.0.at="isa" 799hint.isic.0.port="0x268" 800hint.isic.0.irq="5" 801hint.isic.0.flags="7" 802# 803# ITK ix1 Micro ( < V.3, non-PnP version ) 804options ITKIX1 805hint.isic.0.at="isa" 806hint.isic.0.port="0x398" 807hint.isic.0.irq="10" 808hint.isic.0.flags="18" 809# 810# ELSA PCC-16 811options ELSA_PCC16 812hint.isic.0.at="isa" 813hint.isic.0.port="0x360" 814hint.isic.0.irq="10" 815hint.isic.0.flags="20" 816# 817# ISA bus PnP Cards: 818# ------------------ 819# 820# Teles S0/16.3 PnP 821options TEL_S0_16_3_P 822# 823# Creatix ISDN-S0 P&P 824options CRTX_S0_P 825# 826# Dr. Neuhaus Niccy Go@ 827options DRN_NGO 828# 829# Sedlbauer Win Speed 830options SEDLBAUER 831# 832# Dynalink IS64PH 833options DYNALINK 834# 835# ELSA QuickStep 1000pro ISA 836options ELSA_QS1ISA 837# 838# Siemens I-Surf 2.0 839options SIEMENS_ISURF2 840# 841# Asuscom ISDNlink 128K ISA 842options ASUSCOM_IPAC 843# 844# Eicon Diehl DIVA 2.0 and 2.02 845options EICON_DIVA 846# 847# Compaq Microcom 610 ISDN card (Compaq series PSB2222I) 848options COMPAQ_M610 849# 850# PCI bus Cards: 851# -------------- 852# 853# ELSA MicroLink ISDN/PCI (same as ELSA QuickStep 1000pro PCI) 854options ELSA_QS1PCI 855# 856#--------------------------------------------------------------------------- 857# ifpnp driver for AVM Fritz!Card PnP 858# 859# AVM Fritz!Card PnP 860device ifpnp 861# 862#--------------------------------------------------------------------------- 863# ihfc driver for Cologne Chip ISA chipsets (experimental!) 864# 865# Teles 16.3c ISA PnP 866# AcerISDN P10 ISA PnP 867# TELEINT ISDN SPEED No.1 868device ihfc 869# 870#--------------------------------------------------------------------------- 871# ifpi driver for AVM Fritz!Card PCI 872# 873# AVM Fritz!Card PCI 874device ifpi 875# 876#--------------------------------------------------------------------------- 877# ifpi2 driver for AVM Fritz!Card PCI version 2 878# 879# AVM Fritz!Card PCI version 2 880device ifpi2 881# 882#--------------------------------------------------------------------------- 883# iwic driver for Winbond W6692 chipset 884# 885# ASUSCOM P-IN100-ST-D (and other Winbond W6692 based cards) 886device iwic 887# 888#--------------------------------------------------------------------------- 889# itjc driver for Siemens ISAC / TJNet Tiger300/320 chipset 890# 891# Traverse Technologies NETjet-S 892# Teles PCI-TJ 893device itjc 894# 895#--------------------------------------------------------------------------- 896# iavc driver (AVM active cards, needs i4bcapi driver!) 897# 898device iavc 899# 900# AVM B1 ISA bus (PnP mode not supported!) 901# ---------------------------------------- 902hint.iavc.0.at="isa" 903hint.iavc.0.port="0x150" 904hint.iavc.0.irq="5" 905# 906#--------------------------------------------------------------------------- 907# ISDN Protocol Stack - mandatory for all hardware drivers 908# 909# Q.921 / layer 2 - i4b passive cards D channel handling 910device i4bq921 911# 912# Q.931 / layer 3 - i4b passive cards D channel handling 913device i4bq931 914# 915# layer 4 - i4b common passive and active card handling 916device i4b 917# 918#--------------------------------------------------------------------------- 919# ISDN devices - mandatory for all hardware drivers 920# 921# userland driver to do ISDN tracing (for passive cards only) 922device i4btrc 923options NI4BTRC=4 924# 925# userland driver to control the whole thing 926device i4bctl 927# 928#--------------------------------------------------------------------------- 929# ISDN devices - optional 930# 931# userland driver for access to raw B channel 932device i4brbch 933options NI4BRBCH=4 934# 935# userland driver for telephony 936device i4btel 937options NI4BTEL=2 938# 939# network driver for IP over raw HDLC ISDN 940device i4bipr 941options NI4BIPR=4 942# enable VJ header compression detection for ipr i/f 943options IPR_VJ 944# enable logging of the first n IP packets to isdnd (n=32 here) 945options IPR_LOG=32 946# 947# network driver for sync PPP over ISDN; requires an equivalent 948# number of sppp device to be configured 949device i4bisppp 950options NI4BISPPP=4 951# 952# B-channel interface to the netgraph subsystem 953device i4bing 954options NI4BING=2 955# 956# CAPI driver needed for active ISDN cards (see iavc driver above) 957device i4bcapi 958# 959#--------------------------------------------------------------------------- 960 961# 962# System Management Bus (SMB) 963# 964options ENABLE_ALART # Control alarm on Intel intpm driver 965 966# 967# Set the number of PV entries per process. Increasing this can 968# stop panics related to heavy use of shared memory. However, that can 969# (combined with large amounts of physical memory) cause panics at 970# boot time due the kernel running out of VM space. 971# 972# If you're tweaking this, you might also want to increase the sysctls 973# "vm.v_free_min", "vm.v_free_reserved", and "vm.v_free_target". 974# 975# The value below is the one more than the default. 976# 977options PMAP_SHPGPERPROC=201 978 979# 980# Change the size of the kernel virtual address space. Due to 981# constraints in loader(8) on i386, this must be a multiple of 4. 982# 256 = 1 GB of kernel address space. Increasing this also causes 983# a reduction of the address space in user processes. 512 splits 984# the 4GB cpu address space in half (2GB user, 2GB kernel). 985# 986options KVA_PAGES=260 987 988 989##################################################################### 990# ABI Emulation 991 992# Enable iBCS2 runtime support for SCO and ISC binaries 993options IBCS2 994 995# Emulate spx device for client side of SVR3 local X interface 996options SPX_HACK 997 998# Enable Linux ABI emulation 999options COMPAT_LINUX 1000 1001# Enable i386 a.out binary support 1002options COMPAT_AOUT 1003 1004# Enable the linux-like proc filesystem support (requires COMPAT_LINUX 1005# and PSEUDOFS) 1006options LINPROCFS 1007 1008# 1009# SysVR4 ABI emulation 1010# 1011# The svr4 ABI emulator can be statically compiled into the kernel or loaded as 1012# a KLD module. 1013# The STREAMS network emulation code can also be compiled statically or as a 1014# module. If loaded as a module, it must be loaded before the svr4 module 1015# (the /usr/sbin/svr4 script does this for you). If compiling statically, 1016# the `streams' device must be configured into any kernel which also 1017# specifies COMPAT_SVR4. It is possible to have a statically-configured 1018# STREAMS device and a dynamically loadable svr4 emulator; the /usr/sbin/svr4 1019# script understands that it doesn't need to load the `streams' module under 1020# those circumstances. 1021# Caveat: At this time, `options KTRACE' is required for the svr4 emulator 1022# (whether static or dynamic). 1023# 1024options COMPAT_SVR4 # build emulator statically 1025options DEBUG_SVR4 # enable verbose debugging 1026device streams # STREAMS network driver (required for svr4). 1027 1028 1029##################################################################### 1030# VM OPTIONS 1031 1032# Disable the 4 MByte page PSE CPU feature. The PSE feature allows the 1033# kernel to use 4 MByte pages to map the kernel instead of 4k pages. 1034# This saves on the amount of memory needed for page tables needed to 1035# map the kernel. You should only disable this feature as a temporary 1036# workaround if you are having problems with it enabled. 1037# 1038#options DISABLE_PSE 1039 1040# Disable the global pages PGE CPU feature. The PGE feature allows pages 1041# to be marked with the PG_G bit. TLB entries for these pages are not 1042# flushed from the cache when %cr3 is reloaded. This can make context 1043# switches less expensive. You should only disable this feature as a 1044# temporary workaround if you are having problems with it enabled. 1045# 1046#options DISABLE_PG_G 1047 1048# KSTACK_PAGES is the number of memory pages to assign to the kernel 1049# stack of each thread. 1050 1051options KSTACK_PAGES=3 1052 1053##################################################################### 1054 1055# More undocumented options for linting. 1056# Note that documenting these are not considered an affront. 1057 1058options FB_INSTALL_CDEV # install a CDEV entry in /dev 1059 1060# PECOFF module (Win32 Execution Format) 1061options PECOFF_SUPPORT 1062options PECOFF_DEBUG 1063 1064options I4B_SMP_WORKAROUND 1065options I586_PMC_GUPROF=0x70000 1066options KBDIO_DEBUG=2 1067options KBD_MAXRETRY=4 1068options KBD_MAXWAIT=6 1069options KBD_RESETDELAY=201 1070 1071options PSM_DEBUG=1 1072 1073options TIMER_FREQ=((14318182+6)/12) 1074 1075options VM_KMEM_SIZE 1076options VM_KMEM_SIZE_MAX 1077options VM_KMEM_SIZE_SCALE 1078 1079 1080# The I/O device 1081device io 1082