560 lines
16 KiB
Bash
560 lines
16 KiB
Bash
#!/bin/sh -
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#
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# $NetBSD: MAKEDEV,v 1.53 1999/12/18 03:09:45 tsutsui Exp $
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#
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# Copyright (c) 1990 The Regents of the University of California.
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# All rights reserved.
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#
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# Redistribution and use in source and binary forms, with or without
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# modification, are permitted provided that the following conditions
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# are met:
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# 1. Redistributions of source code must retain the above copyright
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# notice, this list of conditions and the following disclaimer.
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# 2. Redistributions in binary form must reproduce the above copyright
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# notice, this list of conditions and the following disclaimer in the
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# documentation and/or other materials provided with the distribution.
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# 3. All advertising materials mentioning features or use of this software
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# must display the following acknowledgement:
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# This product includes software developed by the University of
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# California, Berkeley and its contributors.
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# 4. Neither the name of the University nor the names of its contributors
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# may be used to endorse or promote products derived from this software
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# without specific prior written permission.
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#
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# THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
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# ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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# IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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# ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
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# FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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# DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
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# OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
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# HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
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# LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
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# OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
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# SUCH DAMAGE.
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#
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# from:
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# hp300/MAKEDEV (1/15/94), from:
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# @(#)MAKEDEV 5.5 (Berkeley) 5/28/91
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#
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###########################################################################
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#
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# PLEASE RUN "cd ../share/man/man8 ; perl5 MAKEDEV2manpage.pl"
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# AFTER CHANGING THIS FILE, AND COMMIT THE UPDATED MANPAGE!
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#
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###########################################################################
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#
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# Device "make" file. Valid arguments:
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# all makes all known devices, including local devices.
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# Tries to make the ``standard'' number of each.
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# fd makes fd/* for the fdescfs.
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# floppy devices needed for install floppies
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# std standard devices
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# local configuration specific devices
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#
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# Tapes:
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# st* SCSI tapes
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#
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# Disks:
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# fd* Floppy disks
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# sd* SCSI disks, includes flopticals
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# cd* SCSI cdrom discs
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# vnd* "file" pseudo-disks
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# ccd* concatenated disk driver
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# raid* RAIDframe disk driver
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# md* memory pseudo-disk devices
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#
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# Console ports:
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# ttye* ite bitmapped consoles
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#
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# Pointing devices:
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# mouse* Amiga mice
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#
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# Terminal ports:
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# tty00 standard serial port
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# ttyA* mfc serial ports
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# ttyB* msc serial ports
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# ttyC* com style serial ports (DraCo, HyperCom)
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# On the DraCo, units 0 and 1 are the builtin "modem" and
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# "mouse" ports, if configured.
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#
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# Pseudo terminals:
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# pty* set of 16 master and slave pseudo terminals
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#
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# Printers:
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# par0 Amiga motherboard parallel port
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# lpt* lpt parallel port (DraCo mainboard, HyperCom etc.)
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#
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# Special purpose devices:
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# grf* custom chip (grf0), Retina Z2/Z3 (grf1/grf2),
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# Cirrus boards (grf3), A2410 (grf4) video,
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# CyberVision 64 (grf5), ET4000 boards (grf6)
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# or CyberVision 64/3D (grf7).
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# kbd Amiga keyboard
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# view* generic interface to graphic displays
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# lkm loadable kernel modules interface
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# ipl IP filter
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# random Random number generator
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# bpf* Berkeley Packet Filter
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# tun* network tunnel driver
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# scsibus* SCSI busses, see scsictl(8), scsi(4)
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# ss* SCSI scanner
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# uk* SCSI unknown
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# ch* SCSI changer
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# audio* one unit of the audio device. On Amiga machines,
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# Unit 0 is custom chip audio, if configured
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#
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# for new-style serial interfaces:
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dialin=0
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dialout=524288 # high bit of the minor number
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PATH=/sbin:/bin:/usr/sbin:/usr/bin
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umask 77
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for i
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do
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case $i in
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all)
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sh $0 std fd fd0 fd1 fd2 fd3 kbd mouse0 mouse1 par0
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sh $0 lpt0 lpt1 lpt2 lpt3
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sh $0 ttye0 ttye1 ttye2 ttye3 ttye4 ttye5 ttye6 ttye7
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sh $0 grf0 grf1 grf2 grf3 grf4 grf5 grf6 grf7
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sh $0 tty00 ttyA0 ttyA1
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sh $0 ttyB0 ttyB1 ttyB2 ttyB3 ttyB4 ttyB5 ttyB6 ttyB7
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sh $0 ttyC0 ttyC1 ttyC2 ttyC3 ttyC4 ttyC5 ttyC6 ttyC7
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sh $0 view00 view01 view02 view03 view04 view05 pty0 pty1
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sh $0 sd0 sd1 sd2 sd3 sd4 sd5 sd6 sd7 sd8 sd9 cd0 st0
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sh $0 ss0 ch0 uk0 uk1 ccd0 ccd1 ccd2 ccd3
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sh $0 raid0 raid1 raid2 raid3
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sh $0 vnd0 vnd1 vnd2 vnd3 vnd4 vnd5 vnd6
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sh $0 bpf0 bpf1 bpf2 bpf3 bpf4 bpf5 bpf6 bpf7
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sh $0 tun0 tun1 lkm ipl random local
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sh $0 audio0 audio1 audio2 audio3
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sh $0 scsibus0 scsibus1 scsibus2 scsibus3
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;;
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floppy)
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sh $0 std fd0 fd1 fd2 fd3 kbd pty0 tun0 tun1
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sh $0 ttye0 ttye1 ttye2 ttye3 ttye4 ttye5 ttye6 ttye7
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sh $0 grf0 grf1 grf2 grf3 grf4 grf5 grf6 grf7
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sh $0 tty00 ttyA0 ttyB0 ttyC0
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sh $0 sd0 sd1 sd2 sd3 sd4 sd5 sd6 sd7 sd8 sd9 cd0 st0
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;;
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std)
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rm -f console drum kmem mem reload null zero tty
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rm -f klog stdin stdout stderr
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mknod console c 0 0
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mknod drum c 3 0 ; chmod 640 drum ; chgrp kmem drum
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mknod kmem c 2 1 ; chmod 640 kmem ; chgrp kmem kmem
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mknod mem c 2 0 ; chmod 640 mem ; chgrp kmem mem
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mknod reload c 2 20 ; chmod 600 reload
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mknod zero c 2 12 ; chmod 666 zero
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mknod null c 2 2 ; chmod 666 null
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mknod tty c 1 0 ; chmod 666 tty
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mknod klog c 6 0 ; chmod 600 klog
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mknod stdin c 21 0 ; chmod 666 stdin
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mknod stdout c 21 1 ; chmod 666 stdout
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mknod stderr c 21 2 ; chmod 666 stderr
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;;
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fd)
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rm -f fd/*
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mkdir fd > /dev/null 2>&1
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n=0
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while [ $n -lt 64 ]; do
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mknod fd/$n c 21 $n
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n=$(($n + 1))
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done
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chown -R root.wheel fd
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chmod 755 fd
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chmod 666 fd/*
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;;
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fd*)
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unit=${i#fd}; blk=2; chr=18
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rm -f fd$unit? rfd$unit?
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case $unit in
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0|1|2|3)
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mknod fd${unit}a b $blk $(($unit * 16 + 0))
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mknod fd${unit}b b $blk $(($unit * 16 + 1))
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mknod rfd${unit}a c $chr $(($unit * 16 + 0))
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mknod rfd${unit}b c $chr $(($unit * 16 + 1))
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chgrp operator fd$unit? rfd$unit?
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chmod 640 fd$unit? rfd$unit?
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;;
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*)
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echo bad unit for floppy disk in: $i
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;;
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esac
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;;
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md*)
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unit={$i#md}; blk=15; chr=43;
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rm -rf md${unit} md${unit}c rmd${unit}
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mknod md${unit} b $blk $((($unit + 0) * 16))
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mknod md${unit}c b $blk $((($unit + 16) * 16))
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# mknod rmd${unit} c $chr $((($unit + 16) * 16))
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chgrp operator md${unit} md${unit}c #rmd${unit}
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chmod 640 md${unit} md${unit}c #rmd${unit}
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;;
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sd*|vnd*|ccd*|raid*)
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case $i in
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sd*) name=sd; unit=${i#sd}; blk=4; chr=8;;
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vnd*) name=vnd; unit=${i#vnd}; blk=6; chr=19;;
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ccd*) name=ccd; unit=${i#ccd}; blk=8; chr=7;;
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raid*) name=raid; unit=${i#raid}; blk=16; chr=50;;
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esac
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rm -f $name$unit? r$name$unit?
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mknod ${name}${unit}a b $blk $(($unit * 16 + 0))
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mknod ${name}${unit}b b $blk $(($unit * 16 + 1))
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mknod ${name}${unit}c b $blk $(($unit * 16 + 2))
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mknod ${name}${unit}d b $blk $(($unit * 16 + 3))
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mknod ${name}${unit}e b $blk $(($unit * 16 + 4))
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mknod ${name}${unit}f b $blk $(($unit * 16 + 5))
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mknod ${name}${unit}g b $blk $(($unit * 16 + 6))
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mknod ${name}${unit}h b $blk $(($unit * 16 + 7))
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mknod ${name}${unit}i b $blk $(($unit * 16 + 8))
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mknod ${name}${unit}j b $blk $(($unit * 16 + 9))
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mknod ${name}${unit}k b $blk $(($unit * 16 + 10))
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mknod ${name}${unit}l b $blk $(($unit * 16 + 11))
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mknod ${name}${unit}m b $blk $(($unit * 16 + 12))
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mknod ${name}${unit}n b $blk $(($unit * 16 + 13))
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mknod ${name}${unit}o b $blk $(($unit * 16 + 14))
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mknod ${name}${unit}p b $blk $(($unit * 16 + 15))
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mknod r${name}${unit}a c $chr $(($unit * 16 + 0))
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mknod r${name}${unit}b c $chr $(($unit * 16 + 1))
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mknod r${name}${unit}c c $chr $(($unit * 16 + 2))
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mknod r${name}${unit}d c $chr $(($unit * 16 + 3))
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mknod r${name}${unit}e c $chr $(($unit * 16 + 4))
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mknod r${name}${unit}f c $chr $(($unit * 16 + 5))
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mknod r${name}${unit}g c $chr $(($unit * 16 + 6))
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mknod r${name}${unit}h c $chr $(($unit * 16 + 7))
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mknod r${name}${unit}i c $chr $(($unit * 16 + 8))
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mknod r${name}${unit}j c $chr $(($unit * 16 + 9))
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mknod r${name}${unit}k c $chr $(($unit * 16 + 10))
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mknod r${name}${unit}l c $chr $(($unit * 16 + 11))
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mknod r${name}${unit}m c $chr $(($unit * 16 + 12))
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mknod r${name}${unit}n c $chr $(($unit * 16 + 13))
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mknod r${name}${unit}o c $chr $(($unit * 16 + 14))
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mknod r${name}${unit}p c $chr $(($unit * 16 + 15))
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chgrp operator $name$unit? r$name$unit?
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chmod 640 $name$unit? r$name$unit?
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;;
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st*)
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case $i in
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st*) name=st; unit=${i#st}; chr=20; blk=5;;
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esac
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rm -f $name$unit n$name$unit e$name$unit en$name$unit \
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r$name$unit nr$name$unit er$name$unit enr$name$unit \
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$name$unit[hml] [ne]$name$unit[hml] en$name$unit[hml] \
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r$name$unit[hml] [ne]r$name$unit[hml] enr$name$unit[hml]
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mknod $name${unit} b $blk $(($unit * 16 + 0))
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mknod n$name${unit} b $blk $(($unit * 16 + 1))
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mknod e$name${unit} b $blk $(($unit * 16 + 2))
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mknod en$name${unit} b $blk $(($unit * 16 + 3))
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mknod $name${unit}h b $blk $(($unit * 16 + 4))
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mknod n$name${unit}h b $blk $(($unit * 16 + 5))
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mknod e$name${unit}h b $blk $(($unit * 16 + 6))
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mknod en$name${unit}h b $blk $(($unit * 16 + 7))
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mknod $name${unit}m b $blk $(($unit * 16 + 8))
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mknod n$name${unit}m b $blk $(($unit * 16 + 9))
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mknod e$name${unit}m b $blk $(($unit * 16 + 10))
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mknod en$name${unit}m b $blk $(($unit * 16 + 11))
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mknod $name${unit}l b $blk $(($unit * 16 + 12))
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mknod n$name${unit}l b $blk $(($unit * 16 + 13))
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mknod e$name${unit}l b $blk $(($unit * 16 + 14))
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mknod en$name${unit}l b $blk $(($unit * 16 + 15))
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mknod r$name${unit} c $chr $(($unit * 16 + 0))
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mknod nr$name${unit} c $chr $(($unit * 16 + 1))
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mknod er$name${unit} c $chr $(($unit * 16 + 2))
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mknod enr$name${unit} c $chr $(($unit * 16 + 3))
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mknod r$name${unit}h c $chr $(($unit * 16 + 4))
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mknod nr$name${unit}h c $chr $(($unit * 16 + 5))
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mknod er$name${unit}h c $chr $(($unit * 16 + 6))
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mknod enr$name${unit}h c $chr $(($unit * 16 + 7))
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mknod r$name${unit}m c $chr $(($unit * 16 + 8))
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mknod nr$name${unit}m c $chr $(($unit * 16 + 9))
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mknod er$name${unit}m c $chr $(($unit * 16 + 10))
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mknod enr$name${unit}m c $chr $(($unit * 16 + 11))
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mknod r$name${unit}l c $chr $(($unit * 16 + 12))
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mknod nr$name${unit}l c $chr $(($unit * 16 + 13))
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mknod er$name${unit}l c $chr $(($unit * 16 + 14))
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mknod enr$name${unit}l c $chr $(($unit * 16 + 15))
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chgrp operator $name$unit n$name$unit e$name$unit en$name$unit \
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r$name$unit nr$name$unit er$name$unit enr$name$unit \
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$name$unit[hml] [ne]$name$unit[hml] en$name$unit[hml] \
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r$name$unit[hml] [ne]r$name$unit[hml] enr$name$unit[hml]
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chmod 660 $name$unit n$name$unit e$name$unit en$name$unit \
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r$name$unit nr$name$unit er$name$unit enr$name$unit \
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$name$unit[hml] [ne]$name$unit[hml] en$name$unit[hml] \
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r$name$unit[hml] [ne]r$name$unit[hml] enr$name$unit[hml]
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;;
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cd*)
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case $i in
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cd*) name=cd; unit=${i#cd}; blk=7; chr=9;;
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esac
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rm -f $name$unit? r$name$unit?
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mknod ${name}${unit}a b $blk $(($unit * 16 + 0))
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mknod ${name}${unit}c b $blk $(($unit * 16 + 2))
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mknod r${name}${unit}a c $chr $(($unit * 16 + 0))
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mknod r${name}${unit}c c $chr $(($unit * 16 + 2))
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chgrp operator $name$unit? r$name$unit?
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chmod 640 $name$unit? r$name$unit?
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;;
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ss*)
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case $i in
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ss*) name=ss; unit=${i#ss}; chr=37;;
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esac
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rm -f $name$unit n$name$unit en$name$unit
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mknod $name$unit c $chr $(($unit * 16 + 0))
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mknod n$name$unit c $chr $(($unit * 16 + 1))
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mknod en$name$unit c $chr $(($unit * 16 + 3))
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chgrp operator $name$unit n$name$unit en$name$unit
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chmod 640 $name$unit n$name$unit en$name$unit
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;;
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ch*|uk*)
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case $i in
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ch*) name=ch; unit=${i#ch}; chr=38;;
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uk*) name=uk; unit=${i#uk}; chr=39;;
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esac
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rm -f $name$unit
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mknod $name$unit c $chr $unit
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chgrp operator $name$unit
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chmod 640 $name$unit
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;;
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tty0*|ttyA*|ttyB*)
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case $i in
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tty0*) name=tty0; mname=ttym; unit=${i#tty0}; chr=12; mult=1; add=128;;
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ttyA*) name=ttyA; mname=ttyAm; unit=${i#ttyA}; chr=17; mult=1; add=128;;
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ttyB*) name=ttyB; mname=ttyBm; unit=${i#ttyB}; chr=31; mult=2; add=1;;
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esac
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rm -f $name$unit $mname$unit
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rm -f ser$unit
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rm -f ttyM$unit
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mknod $name$unit c $chr $(($unit * $mult))
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mknod $mname$unit c $chr $(($unit * $mult + $add))
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chown uucp:wheel $name$unit $mname$unit
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;;
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# newstyle tty devices:
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ttyC*)
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case $i in
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ttyC*) name=ttyC; mname=dtyC; unit=${i#ttyC}; chr=32;;
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esac
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rm -f $name$unit $mname$unit
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mknod $name$unit c $chr $(($unit + $dialin))
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mknod $mname$unit c $chr $(($unit + $dialout))
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chown uucp:wheel $name$unit $mname$unit
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;;
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par*)
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unit=${i#par}; chr=11
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rm -f par$unit
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case $unit in
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0)
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mknod par$unit c $chr $unit
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;;
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*)
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echo bad unit for par in: $i
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;;
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esac
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;;
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lpt*)
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unit=${i#lpt}; chr=33
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rm -f lpt${unit} lpt${unit}a
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mknod lpt${unit} c $chr $unit
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mknod lpt${unit}a c $chr $(($unit + 128))
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;;
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ttye*)
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unit=${i#ttye}; chr=13
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rm -f ttye$unit
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rm -f ite*
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case $unit in
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0|1|2|3|4|5|6|7)
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mknod ttye$unit c $chr $unit
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;;
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*)
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echo bad unit for ttye in: $i
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;;
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esac
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;;
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grf*)
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unit=${i#grf}; chr=10
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rm -f grf$unit
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case $unit in
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0|1|2|3|4|5|6|7)
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mknod grf$unit c $chr $unit
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chmod 666 grf$unit
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;;
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*)
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echo bad unit for grf in: $i
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;;
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esac
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# for those that need it, also make overlay and image devices:
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rm -f grfov$unit grfim$unit
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case $unit in
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4)
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mknod grfov$unit c $chr $(($unit + 16))
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chmod 666 grfov$unit
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mknod grfim$unit c $chr $(($unit + 32))
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|
chmod 666 grfim$unit
|
|
;;
|
|
esac
|
|
;;
|
|
|
|
mouse*)
|
|
unit=${i#mouse}; chr=15
|
|
rm -f mouse$unit
|
|
case $unit in
|
|
0|1)
|
|
mknod mouse$unit c $chr $unit
|
|
chmod 666 mouse$unit
|
|
if [ $unit = 0 ]
|
|
then
|
|
rm -f mouse; ln -s mouse$unit mouse
|
|
fi
|
|
;;
|
|
*)
|
|
echo bad unit for mouse in: $i
|
|
;;
|
|
esac
|
|
;;
|
|
|
|
kbd)
|
|
rm -f kbd
|
|
mknod kbd c 14 0
|
|
;;
|
|
|
|
|
|
view*)
|
|
unit=${i#view}; chr=16
|
|
rm -f view$unit
|
|
mknod view$unit c $chr $unit
|
|
chmod 666 view$unit
|
|
;;
|
|
|
|
pty*)
|
|
class=${i#pty}
|
|
case $class in
|
|
0) name=p;;
|
|
1) name=q;;
|
|
2) name=r;;
|
|
3) name=s;;
|
|
4) name=t;;
|
|
5) name=u;;
|
|
6) name=v;;
|
|
7) name=w;;
|
|
8) name=x;;
|
|
9) name=y;;
|
|
10) name=z;;
|
|
11) name=P;;
|
|
12) name=Q;;
|
|
13) name=R;;
|
|
14) name=S;;
|
|
15) name=T;;
|
|
*) echo "$0: $i: pty unit must be between 0 and 15"
|
|
continue ;;
|
|
esac
|
|
rm -f tty$name[0-9a-f] pty$name[0-9a-f]
|
|
for j in 0 1 2 3 4 5 6 7 8 9 a b c d e f
|
|
do
|
|
case $j in
|
|
[0-9]) jn=$j ;;
|
|
a) jn=10 ;;
|
|
b) jn=11 ;;
|
|
c) jn=12 ;;
|
|
d) jn=13 ;;
|
|
e) jn=14 ;;
|
|
f) jn=15 ;;
|
|
esac
|
|
unit=$(($class * 16 + $jn))
|
|
mknod tty$name$j c 4 $unit
|
|
mknod pty$name$j c 5 $unit
|
|
done
|
|
chgrp wheel tty$name? pty$name?
|
|
chmod 666 tty$name? pty$name?
|
|
;;
|
|
|
|
bpf*|tun*)
|
|
case $i in
|
|
bpf*) name=bpf; unit=${i#bpf}; chr=22;;
|
|
tun*) name=tun; unit=${i#tun}; chr=23;;
|
|
esac
|
|
rm -f $name$unit
|
|
mknod $name$unit c $chr $unit
|
|
chown root.wheel $name$unit
|
|
;;
|
|
|
|
lkm)
|
|
rm -f lkm
|
|
mknod lkm c 24 0
|
|
chown root:kmem lkm
|
|
chmod 640 lkm
|
|
;;
|
|
|
|
ipl)
|
|
rm -f ipl ipnat ipstate ipauth
|
|
mknod ipl c 40 0
|
|
mknod ipnat c 40 1
|
|
mknod ipstate c 40 2
|
|
mknod ipauth c 40 3
|
|
chown root.wheel ipl ipnat ipstate ipauth
|
|
chmod 600 ipl ipnat ipstate ipauth
|
|
;;
|
|
|
|
audio*)
|
|
unit=${i#audio}
|
|
audio=audio$unit
|
|
sound=sound$unit
|
|
mixer=mixer$unit
|
|
major=41
|
|
audioctl=audioctl$unit
|
|
if [ "$unit" = "" ]; then unit=0; fi
|
|
rm -f $audio $sound $mixer $audioctl
|
|
mknod $sound c $major $(($unit + 0))
|
|
mknod $audio c $major $(($unit + 128))
|
|
mknod $mixer c $major $(($unit + 16))
|
|
mknod $audioctl c $major $(($unit + 192))
|
|
chown root.wheel $audio $sound $mixer $audioctl
|
|
chmod 666 $audio $sound $mixer $audioctl
|
|
;;
|
|
|
|
|
|
random)
|
|
rm -f random urandom
|
|
mknod random c 42 0
|
|
mknod urandom c 42 1
|
|
chown root.wheel random urandom
|
|
chmod 444 random
|
|
chmod 644 urandom
|
|
;;
|
|
|
|
scsibus*)
|
|
unit=${i#scsibus};
|
|
rm -f scsibus$unit
|
|
mknod scsibus$unit c 44 $unit
|
|
chown root:wheel scsibus$unit
|
|
chmod 644 scsibus$unit
|
|
;;
|
|
|
|
local)
|
|
umask 0
|
|
sh $0.local all
|
|
umask 77
|
|
;;
|
|
|
|
*)
|
|
echo $i: unknown device
|
|
;;
|
|
esac
|
|
done
|