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321 lines
11 KiB
Groff
321 lines
11 KiB
Groff
.\" Copyright (c) 1990, 1991 The Regents of the University of California.
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.\" All rights reserved.
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.\"
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.\" This code is derived from software contributed to Berkeley by
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.\" the Systems Programming Group of the University of Utah Computer
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.\" Science Department.
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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: @(#)dca.4 5.2 (Berkeley) 3/27/91
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.\" from: com.4,v 1.1 1993/08/06 11:19:07 cgd Exp
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.\" $Id: sio.4,v 1.23 1997/02/22 13:25:41 peter Exp $
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.\"
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.Dd October 10, 1995
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.Dt SIO 4 i386
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.Os FreeBSD
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.Sh NAME
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.Nm sio
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.Nd
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fast interrupt driven asynchronous serial communications interface
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.Sh SYNOPSIS
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For standard ports:
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.Cd "device sio0 at isa? port" \&"IO_COM1\&" tty irq 4 vector siointr
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.Cd "device sio1 at isa? port" \&"IO_COM2\&" tty irq 3 vector siointr
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.Cd "device sio2 at isa? port" \&"IO_COM3\&" tty irq 5 vector siointr
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.Cd "device sio3 at isa? port" \&"IO_COM4\&" tty irq 9 vector siointr
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.Pp
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For AST compatible multiport cards with 4 ports:
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.Cd "options" \&"COM_MULTIPORT\&"
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.Cd "device sio4 at isa? port 0x2a0 tty flags 0x701"
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.Cd "device sio5 at isa? port 0x2a8 tty flags 0x701"
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.Cd "device sio6 at isa? port 0x2b0 tty flags 0x701"
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.Cd "device sio7 at isa? port 0x2b8 tty flags 0x701 irq 12 vector siointr"
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.Pp
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For Boca Board compatible multiport cards with 8 ports:
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.Cd "options" \&"COM_MULTIPORT\&"
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.Cd "device sio4 at isa? port 0x100 tty flags 0xb05"
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.Cd "..."
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.Cd "device sio11 at isa? port 0x138 tty flags 0xb05 irq 12 vector siointr"
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.Pp
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For Hayes ESP cards:
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.Cd "options" \&"COM_ESP\&"
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.Cd "..."
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.Pp
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Meaning of \fBflags\fR:
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.br
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\fB0x00001\fR shared IRQs
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.br
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\fB0x00002\fR disable FIFO
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.br
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\fB0x00004\fR no AST/4 compatible IRQ control register
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.br
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\fB0x00008\fR recover sooner from lost output interrupts
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.br
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\fB0x00080\fR enable diagnostics in probe
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.br
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\fB0x0\fI??\fB00\fR minor number of master port
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.br
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\fB0x10000\fR disable test#3 which often fails for internal modems
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.Pp
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Minor numbering:
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.br
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0b\fIOLIMMMMM\fR
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.br
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call\fBO\fRut
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.br
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\fBL\fRock
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.br
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\fBI\fRnitial
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.br
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\fBMMMMMM\fRinor
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.Sh DESCRIPTION
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The
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.Nm sio
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driver provides support for NS8250-, NS16450-, NS16550 and NS16550A-based
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.Tn EIA
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.Tn RS-232C
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.Pf ( Tn CCITT
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.Tn V.24 )
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communications interfaces. The NS8250 and NS16450 have single character
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buffers, the NS16550A has 16 character FIFO input and output buffers.
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.Pp
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Input and output for each line may set to one of following baud rates;
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50, 75, 110, 134.5, 150, 300, 600, 1200, 1800, 2400, 4800, 9600,
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19200, 38400, 57600, or 115200. Your hardware may limit your baud
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rate choices.
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.Pp
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The driver supports `multiport' cards.
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Multiport cards are those that have one or more groups of ports
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that share an Interrupt Request (IRQ) line per group.
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Shared IRQs on different cards are not supported.
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Frequently 4 ports share 1 IRQ; some 8 port cards have 2 groups of 4 ports,
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thus using 2 IRQs.
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Some cards allow the first 2 serial ports to have seperate IRQs per port
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(as per DOS PC standard).
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.Pp
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Some cards have an IRQ control register for each group.
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Some cards require special initialization related to such registers.
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Only AST/4 compatible IRQ control registers are supported.
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Some cards have an IRQ status register for each group.
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The driver does not require or use such registers yet.
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To work, the control and status registers for a group, if any,
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must be mapped to the scratch register (register 7)
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of a port in the group.
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Such a port is called a
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.Em master
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port.
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.Pp
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The
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.Em flags
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keyword may be used on each
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.Em device sio
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line in the kernel configuration file
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to silence the probe
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or to disable the FIFO on 16550A UARTs
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(see the synopsis).
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Disabling the FIFO should rarely be necessary
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since the driver automatically adjusts the receiver
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FIFO trigger level for low latency and high efficiency.
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.Pp
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The
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.Em flags
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keyword
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.Em must
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be used for all ports that are part of an IRQ sharing group.
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One bit specifies IRQ sharing; another bit specifies whether the port does
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.Em not
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require AST/4 compatible initialization.
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The minor number of the device corresponding a master port
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for the group is encoded as a bitfield in the high byte.
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The same master port must be specified for all ports in a group.
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.Pp
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The
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.Em irq
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and
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.Em vector
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specifications must be given for master ports
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and for ports that are not part of an IRQ sharing group,
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and not for other ports.
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.Pp
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In the synopsis,
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.Em flags 0x701
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means that the 8th port (sio7) is the master
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port, and that the port is on a multiport card with shared IRQs
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and an AST/4 compatible IRQ control register.
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.Pp
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.Em flags 0xb05
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means that the 12th port (sio11) is the master
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port, and that the port is on a multiport card with shared IRQs
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and no special IRQ control register.
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.Pp
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Which port is the master port depends on the card type.
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Consult the hardware documentation of your card.
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Since IRQ status registers are never used,
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and IRQ control registers are only used for AST/4 compatible cards,
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and some cards map the control/status registers to all ports in a group,
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any port in a group will sometimes do for the master port.
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Choose a port containing an IRQ status register for forwards compatibility,
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and the highest possible port for consistency.
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.Pp
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Serial ports controlled by the
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.Nm sio
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driver can be used for both `callin' and `callout'.
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For each port there is a callin device and a callout device.
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The minor number of the callout device is 128 higher
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than that of the corresponding callin port.
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The callin device is general purpose.
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Processes opening it normally wait for carrier
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and for the callout device to become inactive.
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The callout device is used to steal the port from
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processes waiting for carrier on the callin device.
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Processes opening it do not wait for carrier
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and put any processes waiting for carrier on the callin device into
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a deeper sleep so that they do not conflict with the callout session.
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The callout device is abused for handling programs that are supposed
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to work on general ports and need to open the port without waiting
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but are too stupid to do so.
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.Pp
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The
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.Nm sio
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driver also supports an initial-state and a lock-state control
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device for each of the callin and the callout "data" devices.
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The minor number of the initial-state device is 32 higher
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than that of the corresponding data device.
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The minor number of the lock-state device is 64 higher
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than that of the corresponding data device.
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The termios settings of a data device are copied
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from those of the corresponding initial-state device
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on first opens and are not inherited from previous opens.
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Use
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.Xr stty 1
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in the normal way on the initial-state devices to program
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initial termios states suitable for your setup.
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.Pp
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The lock termios state acts as flags to disable changing
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the termios state. E.g., to lock a flag variable such as
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CRTSCTS, use
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.Em stty crtscts
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on the lock-state device. Speeds and special characters
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may be locked by setting the corresponding value in the lock-state
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device to any nonzero value.
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.Pp
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Correct programs talking to correctly wired external devices
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work with almost arbitrary initial states and almost no locking,
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but other setups may benefit from changing some of the default
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initial state and locking the state.
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In particular, the initial states for non (POSIX) standard flags
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should be set to suit the devices attached and may need to be
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locked to prevent buggy programs from changing them.
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E.g., CRTSCTS should be locked on for devices that support
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RTS/CTS handshaking at all times and off for devices that don't
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support it at all. CLOCAL should be locked on for devices
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that don't support carrier. HUPCL may be locked off if you don't
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want to hang up for some reason. In general, very bad things happen
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if something is locked to the wrong state, and things should not
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be locked for devices that support more than one setting. The
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CLOCAL flag on callin ports should be locked off for logins
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to avoid certain security holes, but this needs to be done by
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getty if the callin port is used for anything else.
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.Sh FILES
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.Bl -tag -width /dev/ttyid? -compact
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.It Pa /dev/ttyd?
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for callin ports
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.It Pa /dev/ttyid?
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.It Pa /dev/ttyld?
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corresponding callin initial-state and lock-state devices
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.Pp
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.It Pa /dev/cuaa?
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for callout ports
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.It Pa /dev/cuaia?
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.It Pa /dev/cuala?
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corresponding callout initial-state and lock-state devices
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.El
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.Pp
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.Bl -tag -width /etc/rc.serial -compact
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.It Pa /etc/rc.serial
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examples of setting the initial-state and lock-state devices
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.El
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.Pp
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The devices numbers are made from the set [0-9a-v] so that more than
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10 ports can be supported.
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.Sh DIAGNOSTICS
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.Bl -diag
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.It sio%d: silo overflow.
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Problem in the interrupt handler.
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.El
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.Bl -diag
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.It sio%d: interrupt-level buffer overflow.
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Problem in the bottom half of the driver.
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.El
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.Bl -diag
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.It sio%d: tty-level buffer overflow.
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Problem in the application.
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Input has arrived faster than the given module could process it
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and some has been lost.
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.El
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.\" .Bl -diag
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.\" .It sio%d: reduced fifo trigger level to %d.
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.\" Attempting to avoid further silo overflows.
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.\" .El
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.Sh SEE ALSO
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.Xr stty 1 ,
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.Xr termios 4 ,
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.Xr tty 4 ,
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.Xr comcontrol 8
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.Sh HISTORY
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The
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.Nm
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driver is derived from the
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.Tn HP9000/300
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.Xr dca 4
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driver and is
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.Ud
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.Sh BUGS
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Data loss may occur at very high baud rates on slow systems,
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or with too many ports on any system,
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or on heavily loaded systems when crtscts cannot be used.
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The use of NS16550A's reduces system load and helps to avoid data loss.
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.Pp
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Stay away from plain NS16550's. These are early
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implementations of the chip with non-functional FIFO hardware.
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.Pp
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The constants which define the locations
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of the various serial ports are holdovers from
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.Tn DOS .
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As shown, hex addresses can be and for clarity probably should be used instead.
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.Pp
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Note that on the AST/4 the card's dipswitches should
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.Em not
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be set to use interrupt sharing. AST/4-like interrupt sharing is only used when
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.Em multiple
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AST/4 cards are installed in the same system. The sio driver does not
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support more than 1 AST/4 on one IRQ.
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.Pp
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The examples in the synopsis are too vendor-specific.
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