524 lines
16 KiB
Groff
524 lines
16 KiB
Groff
.TH BOOT 8
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.SH NAME
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boot \- from power on to the login prompt
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.SH DESCRIPTION
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.de SP
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.if t .sp 0.4
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.if n .sp
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..
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At power on the machine reads the first sector of the boot device into memory
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and executes it. This bootstrap code loads
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.BR /boot ,
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the Minix Boot Monitor. The monitor loads the kernel binaries from
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.BR /minix ,
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or the newest file in
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.B /minix
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if it is a directory.
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.PP
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The Minix system is now running, the different tasks initialize themselves
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and control is transferred to the last one,
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.BR init .
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.PP
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.B Init
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is the grandparent of all Minix processes, it is responsible for starting
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login processes on each terminal, but first it runs
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.BR /etc/rc .
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.PP
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.B /etc/rc
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checks the state of the system and starts daemons. First it sets the
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keyboard translation to the mapping in
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.B /etc/keymap
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if present, followed by a call to
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.BR readclock (8)
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to set Minix time from the hardware clock. Next the file systems are checked
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if necessary and the
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.B /usr
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file system is mounted.
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.PP
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The system is now ready for multiuser startup,
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.B /etc/rc
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calls
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.B /usr/etc/rc
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that cleans out /tmp, /usr/tmp, and resets or cycles log files by running
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.BR /usr/etc/daily ,
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starts the
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.BR update (8)
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and
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.BR cron (8)
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daemons, and initializes the network services.
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.B /etc/rc
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finally runs
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.BR /usr/local/etc
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to initialize the system in a site or host dependent way.
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.PP
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.B Init
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reads
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.B /etc/ttytab
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and starts a
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.BR getty (8)
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for each enabled terminal line to allow a user to log in.
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.SH OPTIONS
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.TP
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.B bootopts=\-s
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The value of the boot variable
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.B bootopts
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is passed to
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.BR /etc/rc .
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If it contains
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.B \-s
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then the system will run a single user shell before continuing with multiuser
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startup. (Note that one normally uses
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.B boot \-s
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instead of setting
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.BR bootopts .)
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.TP
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.B bootopts=\-a
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This flag tells that
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.B /etc/fstab
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must be ignored. The system asks for a device to use as /usr instead. This
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will also be done if the root device is not as mentioned in
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.BR /etc/fstab .
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.TP
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.B bootopts=\-f
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Force a file system check, even if the system was shut down properly. (Do
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this once in a while to be sure about the state of the file systems.)
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.TP
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.BI servers= program\fR[,\fIprogram\fR...]
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Names the special servers that must be started in /usr/etc/rc. The setting
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.BR "servers=inet"
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will start the TCP/IP server.
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.SH "BOOT ENVIRONMENT"
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Many features of the drivers inside the kernel are controlled by settings in
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the boot environmenti, like
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.B bootopts
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above does for
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.BR /etc/rc .
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The values of these variables are usually colon or comma separated
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numbers configuring the driver.
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.B "DPETH0 = 300:10"
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tells the DP ethernet driver to use I/O address 0x300, interrupt request
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10, and the default memory address (0xD0000, values may be omitted) for the
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first ethernet board. (Note that IRQ 2 is redirected to IRQ 9 on AT's and
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PS/2's, so use 9 if a device is jumpered for 2.)
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.PP
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Variables that are special to both the monitor and the kernel are described
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in
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.BR monitor (8).
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This section lists extra variables or variable settings:
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.TP
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\fBc\fIn\fR = \fBat\fR | \fBbios\fR | \fBesdi\fR | \fBxt\fR | \fBaha1540\fR | \fBdosfile\fR | \fBfatfile\fR
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Choose the driver that is to be used as controller
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.IR n ,
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in order: IBM/AT (classic AT or newer IDE), BIOS (any disk), ESDI
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(some PS/2s), IBM/XT, Adaptec 154x, Minix under DOS "file as disk",
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FAT file system "file as disk".
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By default
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.B at
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is used on AT bus systems,
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.B bios
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on PS/2s and XTs, and
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.B dosfile
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when running under DOS.
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Most drivers are present in the kernel as distributed, but may be taken out
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by modifying
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.BR /usr/include/minix/config.h .
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See
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.BR controller (4).
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(An XT should always use the BIOS driver, not the XT driver, because BIOS
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calls are cheap on an XT. The XT driver can be used on AT machines with an
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old XT controller.)
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.TP
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\fBDPETH\fIn\fR = \fBon\fR | \fBoff\fR
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Turn an ethernet board on or off. The driver is by default in "sink" mode
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for all boards. The sink mode allows one to use the driver without an
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ethernet board installed. The driver will play /dev/null for that device,
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i.e. nothing comes in, and anything send out is dropped on the floor. If
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the board is turned on then the driver will use it to send out packets, if
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it is turned off then the driver will fail for that board.
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.PP
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.if n .ta \w'DPETHn = I/O-addr:irq:mem_addr:mem_size'u+2m
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.if t .ta \w'\fBDPETH\fIn\fR = \fII/O-addr\fR:\fIirq\fR:\fImem_addr\fR:\fImem_size\fR'u+2m
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\fBDPETH\fIn\fR = \fII/O-addr\fR:\fIirq\fR:\fImem_addr\fR:\fImem_size\fR (WD80x3)
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.br
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\fBDPETH\fIn\fR = \fII/O-addr\fR:\fIirq\fR:\fB0\fR (NE2000)
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.br
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\fBDPETH\fIn\fR = \fII/O-addr\fR:\fIirq\fR:\fIflags\fR (3c503)
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.RS
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Set the I/O address (hex), IRQ (decimal), memory address (hex), memory
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size (hex), or flags (hex) of the
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.IR n -th
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ethernet board and turn it on. By default they are configured as
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280:3:D0000 and 300:5:C8000 with the memory size set to 2000, 4000, or 8000
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depending on the type of board found.
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For the Western Digital cards the IRQ must be what the board expects,
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but the memory address is programmed into the board by the driver.
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The SMC EtherEZ board, a WD8013 successor, has only 8K
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memory. This confuses the driver, so you need to explicitly specify the
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board size as being 2000.
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The memory address and size have no meaning for the Novell ethernet boards,
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but the address may be explicitly set to zero to indicate that the board
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.B is
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a Novell ethernet board.
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For the 3Com 3c503 the third parameter are flags, with the low bit indicates
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that the on-board tranceiver must be used if 0 (thin ethernet), or that an
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external tranceiver is used on the AUI port if set to 1.
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The IRQ is software settable, and must be specified as 2 (XT), 3, 4, 5,
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or 9 (AT). The memory address is set on the board by jumpers. The driver
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does not support I/O mode for the 3c503.
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(Note the little differences between board types. For the 8003/8013 and
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NE1000/NE2000 the IRQ is fixed and the memory address variable, for the
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3c503 the IRQ is variable and the memory address is fixed, but need not be
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specified. Messy.)
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.RE
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.TP
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\fBDPETH\fIn\fB_EA\fR = \fIe0\fR:\fIe1\fR:\fIe2\fR:\fIe3\fR:\fIe4\fR:\fIe5\fR
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Set the ethernet address of the
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.IR n -th
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ethernet board. The address is normally obtained from the ethernet board,
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so only in exceptional circumstances is this setting ever needed. (Use the
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address of the main server if you want a career change.)
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.TP
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\fBAHA0\fR = \fII/O-addr\fR:\fIbus-on\fR:\fIbus-off\fR:\fItr-speed\fR
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Configure the Adaptec 154xA SCSI host adapter to use the given I/O address
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(hex), Bus-on time (decimal), Bus-off time (decimal) and transfer speed
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(hex). The default is 330:15:1:00. The default transfer speed is always
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5.0 Mb/s (code 00) ignoring the jumper settings.
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.TP
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\fBaha1540-d\fIn\fR = \fIsleep-time\fR:\fItarget\fR,\fIlun\fR
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Program SCSI disk
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.I n
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to have the given target and logical unit number. The target and lun
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of a tape or other SCSI device may be changed by setting the
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.BI aha1540-d n
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variable that would be used had it been a disk. So tape device c0t7 can be
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set to target 4, lun 1 with aha1540-d7=:4,1.
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(The
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.I sleep-time
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parameter is present but ignored to be compatible with Minix-vmd.)
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.TP
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\fBdosfile-d\fIn\fR = \fIfile\fR
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Tells the DOS virtual disk driver for disk
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.I n
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to use a given file as a disk. The file is a DOS file name that the
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boot monitor must be able to open.
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.TP
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\fBfatfile-d\fIn\fR = \fIdriver:minor:file\fR
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Tells the FAT virtual disk driver for disk
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.I n
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to use a given file as a disk. The
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.I driver
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parameter is the name of driver that handles the disk, and
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.I minor
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is the device number of the partition where the file is found. See
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.BR controller (4)
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for names and numbers.
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The
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.I file
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argument is the path to the file from the root directory down. The driver
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named must also be tied to a controller with a
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.BI c n
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variable, so that the FAT file driver can find it.
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A handy way to find the proper minor number is to run
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.B "ls\ \-l"
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on the device where the file is found. As a example, we assume the most
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common situation of a disk file on the first partition of the first drive
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on an ATA (IDE) controller:
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.SP
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.in +5
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.ft B
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.nf
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c0 = fatfile
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c1 = at
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fatfile-d0 = at:1:/minix/minix.mnx
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.fi
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.ft P
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.in -5
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.TP
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.BR TZ " = " GMT0
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This sets the time zone the hardware clock is running in.
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.B Readclock
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uses this to correctly obtain the time of the clock. The timezone of the
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system is set in
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.BR /etc/profile .
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This boot variable is normally not set, only a few UNIX die-hards who
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don't care about the time Windows sees and don't want to change the clock
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twice a year for daylight savings use this option. (Set Windows time to the
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time zone of Casablanca to match.)
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.SH "TCP/IP CONFIGURATION"
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To use TCP/IP you need to run the
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.B inet
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server, and unless you are running standalone you have to enable the
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ethernet driver. See the
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.B servers
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and
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.BI DPETH n
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boot variables above. The driver supports these ethernet cards: Western
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Digital 8003, Western Digital 8013, SMC Elite Ultra 16,
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Novell NE1000 and NE2000, 3Com Etherlink II (3c503). Many newer
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variants of the WD8013, now under the SMC brand, may also work.
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A common PCI reimplementation of the NE2000 using the Realtek 80 chipset is
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also supported. Make sure it's just a 10 mbit device and that it has a
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chip marked "RTL 8029".
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.PP
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You are likely to use TCP/IP in one of three situations:
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.PP
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.RS
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Standalone with no connection to a network.
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.SP
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In a small network with no support from a "big" host.
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.SP
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Connected to a large network with address and name servers.
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.RE
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.PP
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In each situation you need a different set of configuration files.
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.SS Standalone
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All you need is a name and an IP address. Suppose the name is "flotsam"
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and the IP address is 192.168.0.1 from the private IP space, then this is
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put in
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.BR /etc/hosts :
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.PP
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.RS
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.ta +\w'192.168.0.1'u+3n
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192.168.0.1 flotsam
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.RE
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.PP
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And this in
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.BR /etc/dhcp.conf :
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.PP
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.RS
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.nf
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host 192.168.0.0/24 {};
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interface ip0 flotsam;
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.fi
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.RE
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.SS "Small Network"
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A network requires an ethernet driver. You need to enable one in
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<minix/config.h> and you need to tell
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.B inet
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that it should use that driver by making
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.B /etc/inet.conf
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look like this:
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.PP
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.RS
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.nf
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eth0 DP8390 0 { default; };
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.fi
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.RE
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.PP
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The second word (DP8390) must the name of the ethernet driver you've enabled.
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It can also be seen among the drivers in the output of
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.BR "ps ax" .
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See also
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.BR inet (8).
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.PP
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In a small network there may not be a DHCP server for Minix to obtain its IP
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address and name from, so you need specify the ethernet address of your machine
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and host names of all machines in the hosts and DHCP configuration files.
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Suppose your machine is to be named "flotsam", and another machine in the
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network is named "jetsam", and let's use network 192.168.0.0/24 again. The
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file
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.B /etc/hosts
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now looks like this:
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.PP
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.RS
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.ta +\w'192.168.0.1'u+3n
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.nf
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192.168.0.1 flotsam
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192.168.0.2 jetsam
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.fi
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.RE
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.PP
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And
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.B /etc/dhcp.conf
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like this:
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.PP
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.RS
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.nf
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host 192.168.0.0/24 {};
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client 0:1:1b:a:68:ce flotsam;
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.fi
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.RE
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.PP
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Use
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.B hostaddr \-e
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to find out what the ethernet address of your network card is. (The address
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above is an example.)
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.PP
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A host needs to have all hostnames used on your little network in its
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host file. In the DHCP configuration you only need the client entry of the
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system itself, but it may be useful to add all client entries to make them all
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the same.
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.PP
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If one of the machines is always on when any of the others is, then you can let
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it be a DHCP server. The other machines don't need a hosts or DHCP file
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anymore. If flotsam is the server then its
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.BR /etc/dhcp.conf
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looks like this:
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.PP
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.RS
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.nf
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.ta +4m
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host 192.168.0.0/24 {
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DNSserver flotsam;
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};
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client 0:1:1b:a:68:ce flotsam { option server; };
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client 0:0:c0:3a:12:10 jetsam;
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.fi
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.RE
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.SS "Large Network"
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In a network with a central network administration your machine's IP address
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and name are given by the DHCP server. You don't need any configuration
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files. If you want your machine to do more, like being a router or
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something, then see
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.BR inet (8)
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on setting up more than one network interface.
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.PP
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.SS "Simpler configuration tools"
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The
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.BR dhcpd
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and
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.BR nonamed
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daemons are complex little programs that try to obtain information about
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their surroundings automatically to tell the machine what its place in the
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network is. It should come as no surprise that there are simpler utilities
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to configure a machine. On a memory starved machine it may even be wise to
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configure a machine statically to get rid of the daemons. The first daemon,
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.BR dhcpd ,
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can be replaced by:
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.PP
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.RS
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.B ifconfig \-h
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.I host-IP-address
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.B \-n
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.I netmask
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.br
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.B add_route \-g
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.I gateway-IP-address
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.RE
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.PP
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to set the IP address and netmask of the machine. Note that you can only
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do this if the machine has a static IP address, or chaos will follow. Remove
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.BR /usr/adm/dhcp.cache
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if the DHCP daemon has run before.
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.PP
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The name daemon,
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.BR nonamed ,
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can be replaced by an entry in
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.B /etc/resolv.conf
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that specifies an external name daemon:
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.PP
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.RS
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.B nameserver
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.I nameserver-IP-address
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.RE
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.PP
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The
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.B ifconfig
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and
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.B add_route
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calls can be placed in the file
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.BR /etc/rc.net .
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Check
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.B /usr/etc/rc
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to see how
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.BR /etc/rc.net
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can be used to override running the normal series of network deamons.
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Note that
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.BR /etc/rc.net
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is sourced, so you can use the same variables and functions that
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.BR /usr/etc/rc
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uses.
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These changes undo all the efforts to make Minix TCP/IP
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autoconfigurable. Make very sure that all the IP addresses are correct, and
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that the IP address of your machine is unique. (Mistakenly using the
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address of a main server will make all other machines look at your machine,
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and will make all the users of all other machines look at you.)
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.SH FILES
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.TP 20n
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/boot
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Minix Boot Monitor.
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.TP
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/minix
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Kernel image, or directory containing them.
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.TP
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/etc/rc
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Basic system initialization.
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.TP
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/usr/etc/rc
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Complete system initialization.
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.TP
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/etc/rc.net
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Specialized network initialization.
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.TP
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/usr/local/etc/rc
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Per site initialization.
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.TP
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/etc/hosts
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Name to IP address mapping.
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.TP
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/etc/dhcp.conf
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Network initialization.
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.TP
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/etc/resolv.conf
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Name resolver configuration.
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.SH "SEE ALSO"
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.BR monitor (8),
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.BR init (8),
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.BR inet (8),
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.BR loadkeys (8),
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.BR readclock (8),
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.BR fsck (1),
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.BR fstab (5),
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.BR update (8),
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.BR cron (8),
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.BR ttytab (5),
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.BR getty (8),
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.BR hostaddr (1),
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.BR ifconfig (8),
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.BR dhcpd (8),
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.BR nonamed (8),
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.BR tcpd (8),
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.BR hosts (5),
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.BR ethers (5),
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.BR resolv.conf (5),
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.BR inet (8).
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.SH DIAGNOSTICS
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.TP 5n
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Checking File Systems.
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If the system has crashed then
|
|
.B fsck
|
|
is called for the root and /usr file systems. It is wise to reboot if the
|
|
root file system must be fixed.
|
|
.TP
|
|
Finish the name of device to mount as /usr: /dev/
|
|
The prompt for the
|
|
.B \-a
|
|
option, or if the name of the /usr file system has not been set in /etc/fstab.
|
|
You can type a device name, say
|
|
.BR fd0 .
|
|
.TP
|
|
Unable to obtain an IP address after 10 seconds.
|
|
TCP/IP misconfiguration. The DHCP daemon may have failed because the ethernet
|
|
address of the machine is not known to the DHCP server, the DHCP
|
|
configuration is not filled in properly, or the DHCP server can not be reached.
|
|
Either talk to your Network Administrator, or make a dhcp.conf
|
|
and a hosts file.
|
|
.TP
|
|
1.2.3.4 login:
|
|
If you see an IP address instead of a host name then the system failed to
|
|
translate the IP address. Either talk to your Network Administrator to
|
|
have the reverse address translation tables fixed, or make a hosts file.
|
|
.SH NOTES
|
|
The 10.0.0.0/8, 172.16.0.0/12, and 192.168.0.0/16 networks can be used for
|
|
private networks. (This so-called CIDR notation names an IP address and
|
|
the number of bits in the network number. So 172.16.0.0/12 includes all
|
|
addresses from 172.16.0.0 to 172.31.255.255.)
|
|
RFC-1597 will tell you why private networks are good, and RFC-1627 why
|
|
they are bad.
|
|
.SH BUGS
|
|
Indefinite hangs are possible if I/O addresses or IRQ's are wrong. A driver
|
|
may babble about addresses and IRQ's, but that does not mean that what it
|
|
says is true, it may just be configured that way. It is very difficult to
|
|
find peripherals on a PC automatically, and Minix doesn't even try.
|
|
.SH AUTHOR
|
|
Kees J. Bot <kjb@cs.vu.nl>
|