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ser.c revision 1.32
      1  1.32       is /*	$NetBSD: ser.c,v 1.32 1996/04/23 16:38:32 is Exp $	*/
      2  1.23      cgd 
      3   1.1       mw /*
      4   1.1       mw  * Copyright (c) 1982, 1986, 1990 The Regents of the University of California.
      5   1.1       mw  * All rights reserved.
      6   1.1       mw  *
      7   1.1       mw  * Redistribution and use in source and binary forms, with or without
      8   1.1       mw  * modification, are permitted provided that the following conditions
      9   1.1       mw  * are met:
     10   1.1       mw  * 1. Redistributions of source code must retain the above copyright
     11   1.1       mw  *    notice, this list of conditions and the following disclaimer.
     12   1.1       mw  * 2. Redistributions in binary form must reproduce the above copyright
     13   1.1       mw  *    notice, this list of conditions and the following disclaimer in the
     14   1.1       mw  *    documentation and/or other materials provided with the distribution.
     15   1.1       mw  * 3. All advertising materials mentioning features or use of this software
     16   1.1       mw  *    must display the following acknowledgement:
     17   1.1       mw  *	This product includes software developed by the University of
     18   1.1       mw  *	California, Berkeley and its contributors.
     19   1.1       mw  * 4. Neither the name of the University nor the names of its contributors
     20   1.1       mw  *    may be used to endorse or promote products derived from this software
     21   1.1       mw  *    without specific prior written permission.
     22   1.1       mw  *
     23   1.1       mw  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     24   1.1       mw  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     25   1.1       mw  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     26   1.1       mw  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     27   1.1       mw  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     28   1.1       mw  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     29   1.1       mw  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     30   1.1       mw  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     31   1.1       mw  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     32   1.1       mw  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     33   1.1       mw  * SUCH DAMAGE.
     34   1.1       mw  *
     35   1.4       mw  *	@(#)ser.c	7.12 (Berkeley) 6/27/91
     36  1.15   chopps  */
     37  1.15   chopps /*
     38  1.32       is  * XXX This file needs major cleanup it will never service more than one
     39  1.15   chopps  * XXX unit.
     40   1.1       mw  */
     41   1.1       mw 
     42  1.10   chopps #include <sys/param.h>
     43  1.10   chopps #include <sys/systm.h>
     44  1.10   chopps #include <sys/ioctl.h>
     45  1.15   chopps #include <sys/device.h>
     46  1.10   chopps #include <sys/tty.h>
     47  1.10   chopps #include <sys/proc.h>
     48  1.10   chopps #include <sys/file.h>
     49  1.10   chopps #include <sys/malloc.h>
     50  1.10   chopps #include <sys/uio.h>
     51  1.10   chopps #include <sys/kernel.h>
     52  1.10   chopps #include <sys/syslog.h>
     53  1.13   chopps #include <sys/queue.h>
     54  1.15   chopps #include <machine/cpu.h>
     55  1.15   chopps #include <amiga/amiga/device.h>
     56  1.10   chopps #include <amiga/dev/serreg.h>
     57  1.10   chopps #include <amiga/amiga/custom.h>
     58  1.10   chopps #include <amiga/amiga/cia.h>
     59  1.10   chopps #include <amiga/amiga/cc.h>
     60   1.1       mw 
     61  1.14   chopps #include <dev/cons.h>
     62  1.14   chopps 
     63  1.31    veego #include <sys/conf.h>
     64  1.31    veego #include <machine/conf.h>
     65  1.31    veego 
     66  1.15   chopps #include "ser.h"
     67  1.15   chopps #if NSER > 0
     68  1.14   chopps 
     69  1.15   chopps void serattach __P((struct device *, struct device *, void *));
     70  1.29  thorpej int sermatch __P((struct device *, void *, void *));
     71  1.15   chopps 
     72  1.28      jtc struct ser_softc {
     73  1.28      jtc 	struct device dev;
     74  1.28      jtc 	struct tty *ser_tty;
     75  1.28      jtc };
     76  1.28      jtc 
     77  1.29  thorpej struct cfattach ser_ca = {
     78  1.30   mhitch 	sizeof(struct ser_softc), sermatch, serattach
     79  1.29  thorpej };
     80  1.29  thorpej 
     81  1.29  thorpej struct cfdriver ser_cd = {
     82  1.29  thorpej 	NULL, "ser", DV_TTY, NULL, 0
     83  1.29  thorpej };
     84  1.15   chopps 
     85  1.26   chopps #ifndef SEROBUF_SIZE
     86  1.15   chopps #define SEROBUF_SIZE 32
     87  1.26   chopps #endif
     88  1.26   chopps #ifndef SERIBUF_SIZE
     89  1.15   chopps #define SERIBUF_SIZE 512
     90  1.26   chopps #endif
     91  1.26   chopps 
     92  1.26   chopps #define splser() spl5()
     93   1.1       mw 
     94  1.31    veego void	serstart __P((struct tty *));
     95  1.31    veego int	serparam __P((struct tty *, struct termios *));
     96  1.31    veego void	serintr __P((int));
     97  1.31    veego int	serhwiflow __P((struct tty *, int));
     98  1.31    veego int	sermctl __P((dev_t dev, int, int));
     99  1.31    veego void	ser_fastint __P((void));
    100  1.31    veego void	sereint __P((int, int));
    101  1.31    veego static	void ser_putchar __P((struct tty *, u_short));
    102  1.31    veego void	ser_outintr __P((void));
    103  1.31    veego void	sercnprobe __P((struct consdev *));
    104  1.31    veego void	sercninit __P((struct consdev *));
    105  1.31    veego void	serinit __P((int, int));
    106  1.31    veego int	sercngetc __P((dev_t dev));
    107  1.31    veego void	sercnputc __P((dev_t, int));
    108  1.31    veego void	sercnpollc __P((dev_t, int));
    109  1.31    veego 
    110   1.1       mw int	ser_active;
    111   1.1       mw int	ser_hasfifo;
    112   1.1       mw int	nser = NSER;
    113   1.1       mw #ifdef SERCONSOLE
    114   1.1       mw int	serconsole = SERCONSOLE;
    115   1.1       mw #else
    116   1.1       mw int	serconsole = -1;
    117   1.1       mw #endif
    118   1.1       mw int	serconsinit;
    119   1.1       mw int	serdefaultrate = TTYDEF_SPEED;
    120   1.1       mw int	sermajor;
    121  1.14   chopps int	serswflags;
    122  1.14   chopps #define SWFLAGS(dev) (serswflags | (DIALOUT(dev) ? TIOCFLAG_SOFTCAR : 0))
    123  1.14   chopps 
    124   1.5       mw struct	vbl_node ser_vbl_node[NSER];
    125   1.1       mw struct	tty ser_cons;
    126  1.27   chopps struct	tty *ser_tty[NSER];
    127   1.1       mw 
    128  1.14   chopps /*
    129  1.14   chopps  * Since this UART is not particularly bright (to put it nicely), we'll
    130  1.14   chopps  * have to do parity stuff on our own.	This table contains the 8th bit
    131  1.14   chopps  * in 7bit character mode, for even parity.  If you want odd parity,
    132  1.14   chopps  * flip the bit.  (for generation of the table, see genpar.c)
    133  1.14   chopps  */
    134  1.14   chopps 
    135  1.14   chopps u_char	even_parity[] = {
    136  1.14   chopps 	0, 1, 1, 0, 1, 0, 0, 1, 1, 0, 0, 1, 0, 1, 1, 0,
    137  1.14   chopps 	1, 0, 0, 1, 0, 1, 1, 0, 0, 1, 1, 0, 1, 0, 0, 1,
    138  1.14   chopps 	1, 0, 0, 1, 0, 1, 1, 0, 0, 1, 1, 0, 1, 0, 0, 1,
    139  1.14   chopps 	0, 1, 1, 0, 1, 0, 0, 1, 1, 0, 0, 1, 0, 1, 1, 0,
    140  1.14   chopps 	1, 0, 0, 1, 0, 1, 1, 0, 0, 1, 1, 0, 1, 0, 0, 1,
    141  1.14   chopps 	0, 1, 1, 0, 1, 0, 0, 1, 1, 0, 0, 1, 0, 1, 1, 0,
    142  1.14   chopps 	0, 1, 1, 0, 1, 0, 0, 1, 1, 0, 0, 1, 0, 1, 1, 0,
    143  1.14   chopps 	1, 0, 0, 1, 0, 1, 1, 0, 0, 1, 1, 0, 1, 0, 0, 1,
    144   1.1       mw };
    145   1.1       mw 
    146  1.14   chopps /*
    147  1.14   chopps  * Since we don't get interrupts for changes on the modem control line,
    148  1.14   chopps  * we'll have to fake them by comparing current settings to the settings
    149  1.14   chopps  * we remembered on last invocation.
    150  1.14   chopps  */
    151  1.14   chopps 
    152  1.14   chopps u_char	last_ciab_pra;
    153  1.14   chopps 
    154  1.14   chopps extern struct tty *constty;
    155   1.1       mw 
    156   1.1       mw #ifdef KGDB
    157  1.10   chopps #include <machine/remote-sl.h>
    158   1.1       mw 
    159   1.1       mw extern dev_t kgdb_dev;
    160   1.1       mw extern int kgdb_rate;
    161   1.1       mw extern int kgdb_debug_init;
    162   1.1       mw #endif
    163   1.1       mw 
    164   1.1       mw #ifdef DEBUG
    165   1.1       mw long	fifoin[17];
    166   1.1       mw long	fifoout[17];
    167   1.1       mw long	serintrcount[16];
    168   1.1       mw long	sermintcount[16];
    169   1.1       mw #endif
    170   1.1       mw 
    171  1.14   chopps void	sermint __P((register int unit));
    172   1.5       mw 
    173   1.5       mw int
    174  1.29  thorpej sermatch(pdp, match, auxp)
    175  1.15   chopps 	struct device *pdp;
    176  1.29  thorpej 	void *match, *auxp;
    177  1.15   chopps {
    178  1.29  thorpej 	struct cfdata *cfp = match;
    179  1.29  thorpej 
    180  1.15   chopps 	if (matchname("ser", (char *)auxp) == 0 || cfp->cf_unit != 0)
    181  1.15   chopps 		return(0);
    182  1.15   chopps 	if (serconsole != 0 && amiga_realconfig == 0)
    183  1.15   chopps 		return(0);
    184  1.15   chopps 	return(1);
    185  1.15   chopps }
    186  1.15   chopps 
    187  1.15   chopps 
    188  1.15   chopps void
    189  1.15   chopps serattach(pdp, dp, auxp)
    190  1.15   chopps 	struct device *pdp, *dp;
    191  1.15   chopps 	void *auxp;
    192   1.1       mw {
    193  1.15   chopps 	u_short ir;
    194  1.14   chopps 
    195  1.14   chopps 	ir = custom.intenar;
    196  1.15   chopps 	if (serconsole == 0)
    197  1.14   chopps 		DELAY(100000);
    198  1.14   chopps 
    199  1.15   chopps 	ser_active |= 1;
    200  1.15   chopps 	ser_vbl_node[0].function = (void (*) (void *)) sermint;
    201  1.15   chopps 	add_vbl_function(&ser_vbl_node[0], SER_VBL_PRIORITY, (void *) 0);
    202   1.1       mw #ifdef KGDB
    203  1.15   chopps 	if (kgdb_dev == makedev(sermajor, 0)) {
    204  1.15   chopps 		if (serconsole == 0)
    205  1.14   chopps 			kgdb_dev = NODEV; /* can't debug over console port */
    206  1.14   chopps 		else {
    207  1.15   chopps 			(void) serinit(0, kgdb_rate);
    208  1.14   chopps 			serconsinit = 1;       /* don't re-init in serputc */
    209  1.14   chopps 			if (kgdb_debug_init == 0)
    210  1.15   chopps 				printf(" kgdb enabled\n");
    211  1.14   chopps 			else {
    212  1.14   chopps 				/*
    213  1.14   chopps 				 * Print prefix of device name,
    214  1.14   chopps 				 * let kgdb_connect print the rest.
    215  1.14   chopps 				 */
    216  1.15   chopps 				printf("ser0: ");
    217  1.14   chopps 				kgdb_connect(1);
    218  1.14   chopps 			}
    219  1.14   chopps 		}
    220  1.14   chopps 	}
    221   1.5       mw #endif
    222  1.14   chopps 	/*
    223  1.14   chopps 	 * Need to reset baud rate, etc. of next print so reset serconsinit.
    224  1.14   chopps 	 */
    225  1.15   chopps 	if (0 == serconsole)
    226  1.14   chopps 		serconsinit = 0;
    227  1.15   chopps 	if (dp)
    228  1.20   chopps 		printf(": input fifo %d output fifo %d\n", SERIBUF_SIZE,
    229  1.15   chopps 		    SEROBUF_SIZE);
    230   1.1       mw }
    231   1.1       mw 
    232  1.14   chopps 
    233   1.1       mw /* ARGSUSED */
    234   1.5       mw int
    235   1.1       mw seropen(dev, flag, mode, p)
    236  1.14   chopps 	dev_t dev;
    237  1.14   chopps 	int flag, mode;
    238  1.14   chopps 	struct proc *p;
    239   1.1       mw {
    240  1.14   chopps 	struct tty *tp;
    241  1.14   chopps 	int unit, error, s;
    242  1.14   chopps 
    243  1.14   chopps 	error = 0;
    244  1.14   chopps 	unit = SERUNIT(dev);
    245  1.14   chopps 
    246  1.14   chopps 	if (unit >= NSER || (ser_active & (1 << unit)) == 0)
    247  1.14   chopps 		return (ENXIO);
    248  1.14   chopps 
    249  1.14   chopps 	s = spltty();
    250  1.14   chopps 
    251  1.14   chopps 	if (ser_tty[unit])
    252  1.14   chopps 		tp = ser_tty[unit];
    253  1.14   chopps 	else
    254  1.29  thorpej 		tp = ((struct ser_softc *)ser_cd.cd_devs[unit])->ser_tty =
    255  1.28      jtc 		    ser_tty[unit] =  ttymalloc();
    256  1.14   chopps 
    257  1.14   chopps 	tp->t_oproc = (void (*) (struct tty *)) serstart;
    258  1.14   chopps 	tp->t_param = serparam;
    259  1.14   chopps 	tp->t_dev = dev;
    260  1.22   chopps 	tp->t_hwiflow = serhwiflow;
    261  1.14   chopps 
    262  1.14   chopps 	if ((tp->t_state & TS_ISOPEN) == 0) {
    263  1.14   chopps 		tp->t_state |= TS_WOPEN;
    264  1.14   chopps 		ttychars(tp);
    265  1.14   chopps 		if (tp->t_ispeed == 0) {
    266  1.14   chopps 			/*
    267  1.14   chopps 			 * only when cleared do we reset to defaults.
    268  1.14   chopps 			 */
    269  1.14   chopps 			tp->t_iflag = TTYDEF_IFLAG;
    270  1.14   chopps 			tp->t_oflag = TTYDEF_OFLAG;
    271  1.14   chopps 			tp->t_cflag = TTYDEF_CFLAG;
    272  1.14   chopps 			tp->t_lflag = TTYDEF_LFLAG;
    273  1.14   chopps 			tp->t_ispeed = tp->t_ospeed = serdefaultrate;
    274  1.14   chopps 		}
    275  1.14   chopps 		/*
    276  1.14   chopps 		 * do these all the time
    277  1.14   chopps 		 */
    278  1.14   chopps 		if (serswflags & TIOCFLAG_CLOCAL)
    279  1.14   chopps 			tp->t_cflag |= CLOCAL;
    280  1.14   chopps 		if (serswflags & TIOCFLAG_CRTSCTS)
    281  1.14   chopps 			tp->t_cflag |= CRTSCTS;
    282  1.14   chopps 		if (serswflags & TIOCFLAG_MDMBUF)
    283  1.14   chopps 			tp->t_cflag |= MDMBUF;
    284  1.14   chopps 		serparam(tp, &tp->t_termios);
    285  1.14   chopps 		ttsetwater(tp);
    286  1.14   chopps 
    287  1.14   chopps 		(void)sermctl(dev, TIOCM_DTR | TIOCM_RTS, DMSET);
    288  1.14   chopps 		if ((SWFLAGS(dev) & TIOCFLAG_SOFTCAR) ||
    289  1.14   chopps 		    (sermctl(dev, 0, DMGET) & TIOCM_CD))
    290  1.14   chopps 			tp->t_state |= TS_CARR_ON;
    291  1.14   chopps 		else
    292  1.14   chopps 			tp->t_state &= ~TS_CARR_ON;
    293  1.14   chopps 	} else if (tp->t_state & TS_XCLUDE && p->p_ucred->cr_uid != 0) {
    294  1.14   chopps 		splx(s);
    295  1.14   chopps 		return(EBUSY);
    296  1.14   chopps 	}
    297  1.14   chopps 
    298  1.14   chopps 	/*
    299  1.14   chopps 	 * if NONBLOCK requested, ignore carrier
    300  1.14   chopps 	 */
    301  1.14   chopps 	if (flag & O_NONBLOCK)
    302  1.14   chopps 		goto done;
    303  1.14   chopps 
    304  1.14   chopps 	/*
    305  1.14   chopps 	 * block waiting for carrier
    306  1.14   chopps 	 */
    307  1.14   chopps 	while ((tp->t_state & TS_CARR_ON) == 0 && (tp->t_cflag & CLOCAL) == 0) {
    308  1.14   chopps 		tp->t_state |= TS_WOPEN;
    309  1.14   chopps 		error = ttysleep(tp, (caddr_t)&tp->t_rawq,
    310  1.14   chopps 		    TTIPRI | PCATCH, ttopen, 0);
    311  1.14   chopps 		if (error) {
    312  1.14   chopps 			splx(s);
    313  1.14   chopps 			return(error);
    314  1.14   chopps 		}
    315   1.1       mw 	}
    316  1.14   chopps done:
    317  1.22   chopps 	/* This is a way to handle lost XON characters */
    318  1.22   chopps 	if ((flag & O_TRUNC) && (tp->t_state & TS_TTSTOP)) {
    319  1.22   chopps 		tp->t_state &= ~TS_TTSTOP;
    320  1.22   chopps 	        ttstart (tp);
    321  1.22   chopps 	}
    322  1.22   chopps 
    323  1.14   chopps 	splx(s);
    324  1.14   chopps 	/*
    325  1.14   chopps 	 * Reset the tty pointer, as there could have been a dialout
    326  1.14   chopps 	 * use of the tty with a dialin open waiting.
    327  1.14   chopps 	 */
    328  1.14   chopps 	tp->t_dev = dev;
    329  1.14   chopps 	return((*linesw[tp->t_line].l_open)(dev, tp));
    330   1.1       mw }
    331  1.14   chopps 
    332   1.1       mw /*ARGSUSED*/
    333   1.5       mw int
    334   1.1       mw serclose(dev, flag, mode, p)
    335  1.14   chopps 	dev_t dev;
    336  1.14   chopps 	int flag, mode;
    337  1.14   chopps 	struct proc *p;
    338  1.14   chopps {
    339  1.14   chopps 	struct tty *tp;
    340  1.14   chopps 	int unit;
    341  1.14   chopps 
    342  1.14   chopps 	unit = SERUNIT(dev);
    343  1.14   chopps 
    344  1.14   chopps 	tp = ser_tty[unit];
    345  1.14   chopps 	(*linesw[tp->t_line].l_close)(tp, flag);
    346  1.14   chopps 	custom.adkcon = ADKCONF_UARTBRK;	/* clear break */
    347   1.1       mw #ifdef KGDB
    348  1.14   chopps 	/*
    349  1.14   chopps 	 * do not disable interrupts if debugging
    350  1.14   chopps 	 */
    351  1.14   chopps 	if (dev != kgdb_dev)
    352   1.1       mw #endif
    353  1.14   chopps 		custom.intena = INTF_RBF | INTF_TBE;	/* disable interrups */
    354  1.14   chopps 	custom.intreq = INTF_RBF | INTF_TBE;		/* clear intr request */
    355  1.14   chopps 
    356  1.14   chopps 	/*
    357  1.14   chopps 	 * If the device is closed, it's close, no matter whether we deal with
    358  1.14   chopps 	 * modem control signals nor not.
    359  1.14   chopps 	 */
    360   1.1       mw #if 0
    361  1.14   chopps 	if (tp->t_cflag & HUPCL || tp->t_state & TS_WOPEN ||
    362  1.14   chopps 	    (tp->t_state & TS_ISOPEN) == 0)
    363   1.1       mw #endif
    364  1.14   chopps 		(void) sermctl(dev, 0, DMSET);
    365  1.14   chopps 	ttyclose(tp);
    366  1.14   chopps #if not_yet
    367  1.14   chopps 	if (tp != &ser_cons) {
    368  1.14   chopps 		remove_vbl_function(&ser_vbl_node[unit]);
    369  1.14   chopps 		ttyfree(tp);
    370  1.14   chopps 		ser_tty[unit] = (struct tty *) NULL;
    371  1.14   chopps 	}
    372   1.3       mw #endif
    373  1.14   chopps 	return (0);
    374   1.1       mw }
    375  1.14   chopps 
    376   1.5       mw int
    377   1.1       mw serread(dev, uio, flag)
    378  1.14   chopps 	dev_t dev;
    379  1.14   chopps 	struct uio *uio;
    380  1.14   chopps 	int flag;
    381   1.1       mw {
    382  1.14   chopps 	struct tty *tp;
    383  1.14   chopps 	if ((tp = ser_tty[SERUNIT(dev)]) == NULL)
    384  1.14   chopps 		return(ENXIO);
    385  1.14   chopps 	return((*linesw[tp->t_line].l_read)(tp, uio, flag));
    386  1.14   chopps }
    387   1.1       mw 
    388   1.5       mw int
    389   1.1       mw serwrite(dev, uio, flag)
    390  1.14   chopps 	dev_t dev;
    391  1.14   chopps 	struct uio *uio;
    392  1.14   chopps 	int flag;
    393   1.1       mw {
    394  1.14   chopps 	struct tty *tp;
    395  1.14   chopps 
    396  1.14   chopps 	if((tp = ser_tty[SERUNIT(dev)]) == NULL)
    397  1.14   chopps 		return(ENXIO);
    398  1.14   chopps 	return((*linesw[tp->t_line].l_write)(tp, uio, flag));
    399   1.1       mw }
    400   1.3       mw 
    401  1.27   chopps struct tty *
    402  1.27   chopps sertty(dev)
    403  1.27   chopps 	dev_t dev;
    404  1.27   chopps {
    405  1.27   chopps 	return (ser_tty[SERUNIT(dev)]);
    406  1.27   chopps }
    407   1.3       mw 
    408  1.14   chopps /*
    409  1.14   chopps  * We don't do any processing of data here, so we store the raw code
    410  1.14   chopps  * obtained from the uart register.  In theory, 110kBaud gives you
    411  1.14   chopps  * 11kcps, so 16k buffer should be more than enough, interrupt
    412  1.14   chopps  * latency of 1s should never happen, or something is seriously
    413  1.14   chopps  * wrong..
    414  1.14   chopps  */
    415  1.14   chopps 
    416   1.3       mw static u_short serbuf[SERIBUF_SIZE];
    417   1.3       mw static u_short *sbrpt = serbuf;
    418   1.3       mw static u_short *sbwpt = serbuf;
    419  1.22   chopps static u_short sbcnt;
    420  1.18   chopps static u_short sbovfl;
    421   1.3       mw 
    422  1.14   chopps /*
    423  1.14   chopps  * This is a replacement for the lack of a hardware fifo.  32k should be
    424  1.14   chopps  * enough (there's only one unit anyway, so this is not going to
    425  1.14   chopps  * accumulate).
    426  1.14   chopps  */
    427   1.3       mw void
    428  1.14   chopps ser_fastint()
    429   1.3       mw {
    430  1.14   chopps 	/*
    431  1.14   chopps 	 * We're at RBE-level, which is higher than VBL-level which is used
    432  1.14   chopps 	 * to periodically transmit contents of this buffer up one layer,
    433  1.14   chopps 	 * so no spl-raising is necessary.
    434  1.14   chopps 	 */
    435  1.14   chopps 	register u_short ints, code;
    436  1.14   chopps 
    437  1.14   chopps 	ints = custom.intreqr & INTF_RBF;
    438  1.14   chopps 	if (ints == 0)
    439  1.14   chopps 		return;
    440  1.14   chopps 
    441  1.14   chopps 	/*
    442  1.14   chopps 	 * clear interrupt
    443  1.14   chopps 	 */
    444  1.14   chopps 	custom.intreq = ints;
    445  1.14   chopps 
    446  1.14   chopps 	/*
    447  1.14   chopps 	 * this register contains both data and status bits!
    448  1.14   chopps 	 */
    449  1.14   chopps 	code = custom.serdatr;
    450  1.14   chopps 
    451  1.14   chopps 	/*
    452  1.14   chopps 	 * check for buffer overflow.
    453  1.14   chopps 	 */
    454  1.22   chopps 	if (sbcnt == SERIBUF_SIZE) {
    455  1.18   chopps 		++sbovfl;
    456  1.14   chopps 		return;
    457  1.14   chopps 	}
    458  1.14   chopps 	/*
    459  1.14   chopps 	 * store in buffer
    460  1.14   chopps 	 */
    461  1.14   chopps 	*sbwpt++ = code;
    462  1.14   chopps 	if (sbwpt == serbuf + SERIBUF_SIZE)
    463  1.14   chopps 		sbwpt = serbuf;
    464  1.22   chopps 	++sbcnt;
    465  1.26   chopps 	if (sbcnt > SERIBUF_SIZE - 20)
    466  1.22   chopps 		CLRRTS(ciab.pra);	/* drop RTS if buffer almost full */
    467   1.3       mw }
    468   1.3       mw 
    469   1.3       mw 
    470  1.31    veego void
    471  1.14   chopps serintr(unit)
    472  1.14   chopps 	int unit;
    473   1.1       mw {
    474  1.18   chopps 	int s1, s2, ovfl;
    475  1.22   chopps 	struct tty *tp = ser_tty[unit];
    476   1.1       mw 
    477  1.14   chopps 	/*
    478  1.14   chopps 	 * Make sure we're not interrupted by another
    479  1.14   chopps 	 * vbl, but allow level5 ints
    480  1.14   chopps 	 */
    481  1.14   chopps 	s1 = spltty();
    482   1.1       mw 
    483  1.14   chopps 	/*
    484  1.14   chopps 	 * pass along any acumulated information
    485  1.14   chopps 	 */
    486  1.22   chopps 	while (sbcnt > 0 && (tp->t_state & TS_TBLOCK) == 0) {
    487  1.14   chopps 		/*
    488  1.14   chopps 		 * no collision with ser_fastint()
    489  1.14   chopps 		 */
    490  1.22   chopps 		sereint(unit, *sbrpt++);
    491  1.14   chopps 
    492  1.18   chopps 		ovfl = 0;
    493  1.14   chopps 		/* lock against ser_fastint() */
    494  1.26   chopps 		s2 = splser();
    495  1.22   chopps 		sbcnt--;
    496  1.14   chopps 		if (sbrpt == serbuf + SERIBUF_SIZE)
    497  1.14   chopps 			sbrpt = serbuf;
    498  1.18   chopps 		if (sbovfl != 0) {
    499  1.18   chopps 			ovfl = sbovfl;
    500  1.18   chopps 			sbovfl = 0;
    501  1.18   chopps 		}
    502  1.14   chopps 		splx(s2);
    503  1.18   chopps 		if (ovfl != 0)
    504  1.21   chopps 			log(LOG_WARNING, "ser0: %d ring buffer overflows.\n",
    505  1.21   chopps 			    ovfl);
    506  1.14   chopps 	}
    507  1.22   chopps 	if (sbcnt == 0 && (tp->t_state & TS_TBLOCK) == 0)
    508  1.22   chopps 		SETRTS(ciab.pra);	/* start accepting data again */
    509  1.14   chopps 	splx(s1);
    510   1.1       mw }
    511   1.1       mw 
    512  1.31    veego void
    513  1.15   chopps sereint(unit, stat)
    514  1.14   chopps 	int unit, stat;
    515   1.1       mw {
    516  1.14   chopps 	struct tty *tp;
    517  1.14   chopps 	u_char ch;
    518  1.14   chopps 	int c;
    519  1.14   chopps 
    520  1.14   chopps 	tp = ser_tty[unit];
    521  1.14   chopps 	ch = stat & 0xff;
    522  1.14   chopps 	c = ch;
    523  1.14   chopps 
    524  1.14   chopps 	if ((tp->t_state & TS_ISOPEN) == 0) {
    525   1.1       mw #ifdef KGDB
    526  1.14   chopps 		/* we don't care about parity errors */
    527  1.14   chopps 		if (kgdb_dev == makedev(sermajor, unit) && c == FRAME_END)
    528  1.14   chopps 			kgdb_connect(0);	/* trap into kgdb */
    529   1.1       mw #endif
    530  1.14   chopps 		return;
    531  1.14   chopps 	}
    532  1.14   chopps 
    533  1.14   chopps 	/*
    534  1.14   chopps 	 * Check for break and (if enabled) parity error.
    535  1.14   chopps 	 */
    536  1.14   chopps 	if ((stat & 0x1ff) == 0)
    537  1.14   chopps 		c |= TTY_FE;
    538  1.14   chopps 	else if ((tp->t_cflag & PARENB) &&
    539  1.14   chopps 		    (((ch >> 7) + even_parity[ch & 0x7f]
    540  1.14   chopps 		    + !!(tp->t_cflag & PARODD)) & 1))
    541  1.14   chopps 			c |= TTY_PE;
    542  1.14   chopps 
    543  1.14   chopps 	if (stat & SERDATRF_OVRUN)
    544  1.15   chopps 		log(LOG_WARNING, "ser0: silo overflow\n");
    545   1.1       mw 
    546  1.14   chopps 	(*linesw[tp->t_line].l_rint)(c, tp);
    547  1.14   chopps }
    548  1.14   chopps 
    549  1.14   chopps /*
    550  1.14   chopps  * This interrupt is periodically invoked in the vertical blank
    551  1.14   chopps  * interrupt.  It's used to keep track of the modem control lines
    552  1.14   chopps  * and (new with the fast_int code) to move accumulated data
    553  1.14   chopps  * up into the tty layer.
    554  1.14   chopps  */
    555   1.3       mw void
    556  1.14   chopps sermint(unit)
    557  1.14   chopps 	int unit;
    558   1.1       mw {
    559  1.14   chopps 	struct tty *tp;
    560  1.14   chopps 	u_char stat, last, istat;
    561  1.14   chopps 
    562  1.14   chopps 	tp = ser_tty[unit];
    563  1.14   chopps 	if (!tp)
    564  1.14   chopps 		return;
    565  1.14   chopps 
    566  1.14   chopps 	if ((tp->t_state & (TS_ISOPEN | TS_WOPEN)) == 0) {
    567  1.14   chopps 		sbrpt = sbwpt = serbuf;
    568  1.14   chopps 		return;
    569  1.14   chopps 	}
    570  1.14   chopps 	/*
    571  1.14   chopps 	 * empty buffer
    572  1.14   chopps 	 */
    573  1.14   chopps 	serintr(unit);
    574  1.14   chopps 
    575  1.14   chopps 	stat = ciab.pra;
    576  1.14   chopps 	last = last_ciab_pra;
    577  1.14   chopps 	last_ciab_pra = stat;
    578  1.14   chopps 
    579  1.14   chopps 	/*
    580  1.14   chopps 	 * check whether any interesting signal changed state
    581  1.14   chopps 	 */
    582  1.14   chopps 	istat = stat ^ last;
    583   1.1       mw 
    584  1.14   chopps 	if ((istat & CIAB_PRA_CD) &&
    585  1.14   chopps 	    (SWFLAGS(tp->t_dev) & TIOCFLAG_SOFTCAR) == 0) {
    586  1.14   chopps 		if (ISDCD(stat))
    587  1.14   chopps 			(*linesw[tp->t_line].l_modem)(tp, 1);
    588  1.14   chopps 		else if ((*linesw[tp->t_line].l_modem)(tp, 0) == 0) {
    589  1.14   chopps 			CLRDTR(stat);
    590  1.14   chopps 			CLRRTS(stat);
    591  1.14   chopps 			ciab.pra = stat;
    592  1.14   chopps 			last_ciab_pra = stat;
    593  1.14   chopps 		}
    594  1.14   chopps 	}
    595  1.14   chopps 	if ((istat & CIAB_PRA_CTS) && (tp->t_state & TS_ISOPEN) &&
    596  1.14   chopps 	    (tp->t_cflag & CRTSCTS)) {
    597   1.5       mw #if 0
    598  1.14   chopps 		/* the line is up and we want to do rts/cts flow control */
    599  1.14   chopps 		if (ISCTS(stat)) {
    600  1.14   chopps 			tp->t_state &= ~TS_TTSTOP;
    601  1.14   chopps 			ttstart(tp);
    602  1.14   chopps 			/* cause tbe-int if we were stuck there */
    603  1.14   chopps 			custom.intreq = INTF_SETCLR | INTF_TBE;
    604  1.14   chopps 		} else
    605  1.14   chopps 			tp->t_state |= TS_TTSTOP;
    606   1.5       mw #else
    607  1.14   chopps 		/* do this on hardware level, not with tty driver */
    608  1.14   chopps 		if (ISCTS(stat)) {
    609  1.14   chopps 			tp->t_state &= ~TS_TTSTOP;
    610  1.14   chopps 			/* cause TBE interrupt */
    611  1.14   chopps 			custom.intreq = INTF_SETCLR | INTF_TBE;
    612  1.14   chopps 		}
    613  1.14   chopps #endif
    614   1.5       mw 	}
    615   1.1       mw }
    616   1.1       mw 
    617   1.5       mw int
    618   1.8   chopps serioctl(dev, cmd, data, flag, p)
    619  1.24   chopps 	dev_t dev;
    620  1.24   chopps 	u_long cmd;
    621   1.8   chopps 	caddr_t data;
    622  1.24   chopps 	int flag;
    623   1.8   chopps 	struct proc *p;
    624   1.1       mw {
    625  1.14   chopps 	register struct tty *tp;
    626  1.14   chopps 	register int unit = SERUNIT(dev);
    627  1.14   chopps 	register int error;
    628  1.14   chopps 
    629  1.14   chopps 	tp = ser_tty[unit];
    630  1.14   chopps 	if (!tp)
    631  1.14   chopps 		return ENXIO;
    632  1.14   chopps 
    633  1.14   chopps 	error = (*linesw[tp->t_line].l_ioctl)(tp, cmd, data, flag, p);
    634  1.14   chopps 	if (error >= 0)
    635  1.14   chopps 		return(error);
    636  1.14   chopps 
    637  1.14   chopps 	error = ttioctl(tp, cmd, data, flag, p);
    638  1.14   chopps 	if (error >= 0)
    639  1.14   chopps 		return(error);
    640  1.14   chopps 
    641  1.14   chopps 	switch (cmd) {
    642  1.14   chopps 	case TIOCSBRK:
    643  1.14   chopps 		custom.adkcon = ADKCONF_SETCLR | ADKCONF_UARTBRK;
    644  1.14   chopps 		break;
    645  1.14   chopps 
    646  1.14   chopps 	case TIOCCBRK:
    647  1.14   chopps 		custom.adkcon = ADKCONF_UARTBRK;
    648  1.14   chopps 		break;
    649  1.14   chopps 
    650  1.14   chopps 	case TIOCSDTR:
    651  1.14   chopps 		(void) sermctl(dev, TIOCM_DTR | TIOCM_RTS, DMBIS);
    652  1.14   chopps 		break;
    653  1.14   chopps 
    654  1.14   chopps 	case TIOCCDTR:
    655  1.14   chopps 		(void) sermctl(dev, TIOCM_DTR | TIOCM_RTS, DMBIC);
    656  1.14   chopps 		break;
    657  1.14   chopps 
    658  1.14   chopps 	case TIOCMSET:
    659  1.14   chopps 		(void) sermctl(dev, *(int *) data, DMSET);
    660  1.14   chopps 		break;
    661  1.14   chopps 
    662  1.14   chopps 	case TIOCMBIS:
    663  1.14   chopps 		(void) sermctl(dev, *(int *) data, DMBIS);
    664  1.14   chopps 		break;
    665  1.14   chopps 
    666  1.14   chopps 	case TIOCMBIC:
    667  1.14   chopps 		(void) sermctl(dev, *(int *) data, DMBIC);
    668  1.14   chopps 		break;
    669  1.14   chopps 
    670  1.14   chopps 	case TIOCMGET:
    671  1.14   chopps 		*(int *)data = sermctl(dev, 0, DMGET);
    672  1.14   chopps 		break;
    673  1.14   chopps 	case TIOCGFLAGS:
    674  1.14   chopps 		*(int *)data = SWFLAGS(dev);
    675  1.14   chopps 		break;
    676  1.14   chopps 	case TIOCSFLAGS:
    677  1.14   chopps 		error = suser(p->p_ucred, &p->p_acflag);
    678  1.14   chopps 		if (error != 0)
    679  1.14   chopps 			return(EPERM);
    680  1.14   chopps 
    681  1.14   chopps 		serswflags = *(int *)data;
    682  1.14   chopps                 serswflags &= /* only allow valid flags */
    683  1.14   chopps                   (TIOCFLAG_SOFTCAR | TIOCFLAG_CLOCAL | TIOCFLAG_CRTSCTS);
    684  1.14   chopps 		break;
    685  1.14   chopps 	default:
    686  1.14   chopps 		return(ENOTTY);
    687  1.14   chopps 	}
    688   1.1       mw 
    689  1.14   chopps 	return(0);
    690   1.1       mw }
    691   1.1       mw 
    692   1.5       mw int
    693   1.1       mw serparam(tp, t)
    694  1.14   chopps 	struct tty *tp;
    695  1.14   chopps 	struct termios *t;
    696   1.1       mw {
    697  1.31    veego 	int cflag, unit, ospeed;
    698  1.14   chopps 
    699  1.14   chopps 	cflag = t->c_cflag;
    700  1.14   chopps 	unit = SERUNIT(tp->t_dev);
    701  1.14   chopps 
    702  1.32       is 	if (t->c_ospeed > 0) {
    703  1.32       is 		if (t->c_ospeed < 110)
    704  1.32       is 			return(EINVAL);
    705  1.32       is 		ospeed = SERBRD(t->c_ospeed);
    706  1.32       is 	}
    707  1.32       is 
    708  1.32       is 	if (t->c_ispeed && t->c_ispeed != t->c_ospeed)
    709  1.14   chopps 		return(EINVAL);
    710  1.14   chopps 
    711  1.14   chopps 	/*
    712  1.14   chopps 	 * copy to tty
    713  1.14   chopps 	 */
    714  1.14   chopps 	tp->t_ispeed = t->c_ispeed;
    715  1.14   chopps 	tp->t_ospeed = t->c_ospeed;
    716  1.14   chopps 	tp->t_cflag = cflag;
    717  1.14   chopps 
    718  1.14   chopps 	/*
    719  1.14   chopps 	 * enable interrupts
    720  1.14   chopps 	 */
    721  1.14   chopps 	custom.intena = INTF_SETCLR | INTF_RBF | INTF_TBE;
    722  1.14   chopps 	last_ciab_pra = ciab.pra;
    723  1.14   chopps 
    724  1.32       is 	if (t->c_ospeed == 0)
    725  1.14   chopps 		(void)sermctl(tp->t_dev, 0, DMSET);	/* hang up line */
    726  1.14   chopps 	else {
    727  1.14   chopps 		/*
    728  1.14   chopps 		 * (re)enable DTR
    729  1.14   chopps 		 * and set baud rate. (8 bit mode)
    730  1.14   chopps 		 */
    731  1.14   chopps 		(void)sermctl(tp->t_dev, TIOCM_DTR | TIOCM_RTS, DMSET);
    732  1.14   chopps 		custom.serper = (0 << 15) | ospeed;
    733  1.14   chopps 	}
    734  1.14   chopps 	return(0);
    735   1.1       mw }
    736   1.3       mw 
    737  1.22   chopps int serhwiflow(tp, flag)
    738  1.22   chopps         struct tty *tp;
    739  1.22   chopps         int flag;
    740  1.22   chopps {
    741  1.22   chopps #if 0
    742  1.22   chopps 	printf ("serhwiflow %d\n", flag);
    743  1.22   chopps #endif
    744  1.22   chopps         if (flag)
    745  1.22   chopps 		CLRRTS(ciab.pra);
    746  1.22   chopps 	else
    747  1.22   chopps 	        SETRTS(ciab.pra);
    748  1.22   chopps         return 1;
    749  1.22   chopps }
    750   1.3       mw 
    751   1.3       mw static void
    752  1.14   chopps ser_putchar(tp, c)
    753  1.14   chopps 	struct tty *tp;
    754  1.14   chopps 	u_short c;
    755  1.14   chopps {
    756  1.14   chopps 	if ((tp->t_cflag & CSIZE) == CS7 || (tp->t_cflag & PARENB))
    757  1.14   chopps 		c &= 0x7f;
    758  1.14   chopps 
    759  1.14   chopps 	/*
    760  1.14   chopps 	 * handle parity if necessary
    761  1.14   chopps 	 */
    762  1.14   chopps 	if (tp->t_cflag & PARENB) {
    763  1.14   chopps 		if (even_parity[c])
    764  1.14   chopps 			c |= 0x80;
    765  1.14   chopps 		if (tp->t_cflag & PARODD)
    766  1.14   chopps 			c ^= 0x80;
    767  1.14   chopps 	}
    768  1.14   chopps 	/*
    769  1.14   chopps 	 * add stop bit(s)
    770  1.14   chopps 	 */
    771  1.14   chopps 	if (tp->t_cflag & CSTOPB)
    772  1.14   chopps 		c |= 0x300;
    773  1.14   chopps 	else
    774  1.14   chopps 		c |= 0x100;
    775  1.14   chopps 
    776  1.14   chopps 	custom.serdat = c;
    777   1.3       mw }
    778   1.3       mw 
    779   1.3       mw 
    780   1.3       mw static u_char ser_outbuf[SEROBUF_SIZE];
    781  1.14   chopps static u_char *sob_ptr = ser_outbuf, *sob_end = ser_outbuf;
    782  1.14   chopps 
    783   1.3       mw void
    784  1.14   chopps ser_outintr()
    785   1.3       mw {
    786  1.14   chopps 	struct tty *tp = ser_tty[0];
    787  1.14   chopps 	int s;
    788  1.14   chopps 
    789  1.14   chopps 	tp = ser_tty[0];
    790  1.14   chopps 	s = spltty();
    791  1.14   chopps 
    792  1.14   chopps 	if (tp == 0)
    793  1.14   chopps 		goto out;
    794  1.14   chopps 
    795  1.14   chopps 	if ((custom.intreqr & INTF_TBE) == 0)
    796  1.14   chopps 		goto out;
    797  1.14   chopps 
    798  1.14   chopps 	/*
    799  1.14   chopps 	 * clear interrupt
    800  1.14   chopps 	 */
    801  1.14   chopps 	custom.intreq = INTF_TBE;
    802  1.14   chopps 
    803  1.14   chopps 	if (sob_ptr == sob_end) {
    804  1.14   chopps 		tp->t_state &= ~(TS_BUSY | TS_FLUSH);
    805  1.14   chopps 		if (tp->t_line)
    806  1.14   chopps 			(*linesw[tp->t_line].l_start)(tp);
    807  1.14   chopps 		else
    808  1.14   chopps 			serstart(tp);
    809  1.14   chopps 		goto out;
    810  1.14   chopps 	}
    811  1.14   chopps 
    812  1.14   chopps 	/*
    813  1.14   chopps 	 * Do hardware flow control here.  if the CTS line goes down, don't
    814  1.14   chopps 	 * transmit anything.  That way, we'll be restarted by the periodic
    815  1.14   chopps 	 * interrupt when CTS comes back up.
    816  1.14   chopps 	 */
    817  1.14   chopps 	if (ISCTS(ciab.pra))
    818  1.14   chopps 		ser_putchar(tp, *sob_ptr++);
    819  1.22   chopps 	else
    820  1.22   chopps 		CLRCTS(last_ciab_pra);	/* Remember that CTS is off */
    821   1.5       mw out:
    822  1.14   chopps 	splx(s);
    823   1.3       mw }
    824  1.14   chopps 
    825  1.31    veego void
    826   1.1       mw serstart(tp)
    827  1.14   chopps 	struct tty *tp;
    828   1.1       mw {
    829  1.14   chopps 	int cc, s, unit, hiwat;
    830  1.14   chopps 
    831  1.14   chopps 	hiwat = 0;
    832  1.14   chopps 
    833  1.14   chopps 	if ((tp->t_state & TS_ISOPEN) == 0)
    834  1.14   chopps 		return;
    835  1.14   chopps 
    836  1.14   chopps 	unit = SERUNIT(tp->t_dev);
    837   1.1       mw 
    838  1.14   chopps 	s = spltty();
    839  1.14   chopps 	if (tp->t_state & (TS_TIMEOUT | TS_TTSTOP))
    840  1.14   chopps 		goto out;
    841  1.14   chopps 
    842  1.14   chopps 	cc = tp->t_outq.c_cc;
    843  1.14   chopps 	if (cc <= tp->t_lowat) {
    844  1.14   chopps 		if (tp->t_state & TS_ASLEEP) {
    845  1.14   chopps 			tp->t_state &= ~TS_ASLEEP;
    846  1.14   chopps 			wakeup((caddr_t) & tp->t_outq);
    847  1.14   chopps 		}
    848  1.14   chopps 		selwakeup(&tp->t_wsel);
    849  1.14   chopps 	}
    850  1.14   chopps 	if (cc == 0 || (tp->t_state & TS_BUSY))
    851  1.14   chopps 		goto out;
    852  1.14   chopps 
    853  1.14   chopps 	/*
    854  1.14   chopps 	 * We only do bulk transfers if using CTSRTS flow control, not for
    855  1.14   chopps 	 * (probably sloooow) ixon/ixoff devices.
    856  1.14   chopps 	 */
    857  1.14   chopps 	if ((tp->t_cflag & CRTSCTS) == 0)
    858  1.14   chopps 		cc = 1;
    859  1.14   chopps 
    860  1.14   chopps 	/*
    861  1.14   chopps 	 * Limit the amount of output we do in one burst
    862  1.14   chopps 	 * to prevent hogging the CPU.
    863  1.14   chopps 	 */
    864  1.14   chopps 	if (cc > SEROBUF_SIZE) {
    865  1.14   chopps 		hiwat++;
    866  1.14   chopps 		cc = SEROBUF_SIZE;
    867  1.14   chopps 	}
    868  1.14   chopps 	cc = q_to_b(&tp->t_outq, ser_outbuf, cc);
    869  1.14   chopps 	if (cc > 0) {
    870  1.14   chopps 		tp->t_state |= TS_BUSY;
    871  1.14   chopps 
    872  1.14   chopps 		sob_ptr = ser_outbuf;
    873  1.14   chopps 		sob_end = ser_outbuf + cc;
    874  1.14   chopps 
    875  1.14   chopps 		/*
    876  1.14   chopps 		 * Get first character out, then have TBE-interrupts blow out
    877  1.14   chopps 		 * further characters, until buffer is empty, and TS_BUSY gets
    878  1.14   chopps 		 * cleared.
    879  1.14   chopps 		 */
    880  1.14   chopps 		ser_putchar(tp, *sob_ptr++);
    881  1.14   chopps 	}
    882  1.14   chopps out:
    883  1.14   chopps 	splx(s);
    884   1.1       mw }
    885  1.14   chopps 
    886   1.1       mw /*
    887   1.1       mw  * Stop output on a line.
    888   1.1       mw  */
    889   1.1       mw /*ARGSUSED*/
    890   1.5       mw int
    891   1.1       mw serstop(tp, flag)
    892  1.14   chopps 	struct tty *tp;
    893  1.31    veego 	int flag;
    894   1.1       mw {
    895  1.14   chopps 	int s;
    896   1.1       mw 
    897  1.14   chopps 	s = spltty();
    898  1.14   chopps 	if (tp->t_state & TS_BUSY) {
    899  1.14   chopps 		if ((tp->t_state & TS_TTSTOP) == 0)
    900  1.14   chopps 			tp->t_state |= TS_FLUSH;
    901  1.14   chopps 	}
    902  1.14   chopps 	splx(s);
    903  1.31    veego 	return 0;
    904   1.1       mw }
    905  1.14   chopps 
    906   1.5       mw int
    907   1.1       mw sermctl(dev, bits, how)
    908  1.14   chopps 	dev_t dev;
    909  1.14   chopps 	int bits, how;
    910   1.1       mw {
    911  1.14   chopps 	int unit, s;
    912  1.31    veego 	u_char ub = 0;
    913  1.14   chopps 
    914  1.14   chopps 	unit = SERUNIT(dev);
    915  1.14   chopps 
    916  1.14   chopps 	/*
    917  1.14   chopps 	 * convert TIOCM* mask into CIA mask
    918  1.14   chopps 	 * which is active low
    919  1.14   chopps 	 */
    920  1.14   chopps 	if (how != DMGET) {
    921  1.14   chopps 		ub = 0;
    922  1.14   chopps 		if (bits & TIOCM_DTR)
    923  1.14   chopps 			ub |= CIAB_PRA_DTR;
    924  1.14   chopps 		if (bits & TIOCM_RTS)
    925  1.14   chopps 			ub |= CIAB_PRA_RTS;
    926  1.14   chopps 		if (bits & TIOCM_CTS)
    927  1.14   chopps 			ub |= CIAB_PRA_CTS;
    928  1.14   chopps 		if (bits & TIOCM_CD)
    929  1.14   chopps 			ub |= CIAB_PRA_CD;
    930  1.14   chopps 		if (bits & TIOCM_RI)
    931  1.14   chopps 			ub |= CIAB_PRA_SEL;	/* collision with /dev/par ! */
    932  1.14   chopps 		if (bits & TIOCM_DSR)
    933  1.14   chopps 			ub |= CIAB_PRA_DSR;
    934  1.14   chopps 	}
    935  1.14   chopps 	s = spltty();
    936  1.14   chopps 	switch (how) {
    937  1.14   chopps 	case DMSET:
    938  1.14   chopps 		/* invert and set */
    939  1.14   chopps 		ciab.pra = ~ub;
    940  1.14   chopps 		break;
    941  1.14   chopps 
    942  1.14   chopps 	case DMBIC:
    943  1.14   chopps 		ciab.pra |= ub;
    944  1.14   chopps 		ub = ~ciab.pra;
    945  1.14   chopps 		break;
    946  1.14   chopps 
    947  1.14   chopps 	case DMBIS:
    948  1.14   chopps 		ciab.pra &= ~ub;
    949  1.14   chopps 		ub = ~ciab.pra;
    950  1.14   chopps 		break;
    951  1.14   chopps 
    952  1.14   chopps 	case DMGET:
    953  1.14   chopps 		ub = ~ciab.pra;
    954  1.14   chopps 		break;
    955  1.14   chopps 	}
    956  1.14   chopps 	(void)splx(s);
    957  1.14   chopps 
    958  1.14   chopps 	bits = 0;
    959  1.14   chopps 	if (ub & CIAB_PRA_DTR)
    960  1.14   chopps 		bits |= TIOCM_DTR;
    961  1.14   chopps 	if (ub & CIAB_PRA_RTS)
    962  1.14   chopps 		bits |= TIOCM_RTS;
    963  1.14   chopps 	if (ub & CIAB_PRA_CTS)
    964  1.14   chopps 		bits |= TIOCM_CTS;
    965  1.14   chopps 	if (ub & CIAB_PRA_CD)
    966  1.14   chopps 		bits |= TIOCM_CD;
    967  1.14   chopps 	if (ub & CIAB_PRA_SEL)
    968  1.14   chopps 		bits |= TIOCM_RI;
    969  1.14   chopps 	if (ub & CIAB_PRA_DSR)
    970  1.14   chopps 		bits |= TIOCM_DSR;
    971  1.14   chopps 
    972  1.14   chopps 	return(bits);
    973   1.1       mw }
    974   1.1       mw 
    975   1.1       mw /*
    976   1.1       mw  * Following are all routines needed for SER to act as console
    977   1.1       mw  */
    978  1.31    veego void
    979   1.1       mw sercnprobe(cp)
    980   1.1       mw 	struct consdev *cp;
    981   1.1       mw {
    982  1.14   chopps 	int unit = CONUNIT;
    983  1.14   chopps 
    984  1.14   chopps 	/* locate the major number */
    985  1.14   chopps 	for (sermajor = 0; sermajor < nchrdev; sermajor++)
    986  1.14   chopps 		if (cdevsw[sermajor].d_open == (void *)seropen)
    987  1.14   chopps 			break;
    988  1.14   chopps 
    989  1.14   chopps 
    990  1.14   chopps 	unit = CONUNIT;			/* XXX: ick */
    991  1.14   chopps 
    992  1.14   chopps 	/*
    993  1.14   chopps 	 * initialize required fields
    994  1.14   chopps 	 */
    995  1.14   chopps 	cp->cn_dev = makedev(sermajor, unit);
    996  1.14   chopps 	if (serconsole == unit)
    997  1.14   chopps 		cp->cn_pri = CN_REMOTE;
    998  1.14   chopps 	else
    999  1.14   chopps 		cp->cn_pri = CN_NORMAL;
   1000   1.1       mw #ifdef KGDB
   1001  1.14   chopps 	if (major(kgdb_dev) == 1)	/* XXX */
   1002  1.14   chopps 		kgdb_dev = makedev(sermajor, minor(kgdb_dev));
   1003   1.1       mw #endif
   1004   1.1       mw }
   1005   1.1       mw 
   1006  1.31    veego void
   1007   1.1       mw sercninit(cp)
   1008   1.1       mw 	struct consdev *cp;
   1009   1.1       mw {
   1010  1.14   chopps 	int unit;
   1011   1.1       mw 
   1012  1.14   chopps 	unit = SERUNIT(cp->cn_dev);
   1013  1.14   chopps 
   1014  1.14   chopps 	serinit(unit, serdefaultrate);
   1015  1.14   chopps 	serconsole = unit;
   1016  1.14   chopps 	serconsinit = 1;
   1017   1.1       mw }
   1018   1.1       mw 
   1019  1.31    veego void
   1020   1.1       mw serinit(unit, rate)
   1021   1.1       mw 	int unit, rate;
   1022   1.1       mw {
   1023  1.14   chopps 	int s;
   1024   1.1       mw 
   1025  1.26   chopps 	s = splser();
   1026  1.14   chopps 	/*
   1027  1.14   chopps 	 * might want to fiddle with the CIA later ???
   1028  1.14   chopps 	 */
   1029  1.32       is 	custom.serper = (rate>=110 ? SERBRD(rate) : 0);
   1030  1.14   chopps 	splx(s);
   1031   1.1       mw }
   1032   1.1       mw 
   1033  1.31    veego int
   1034   1.1       mw sercngetc(dev)
   1035  1.31    veego 	dev_t dev;
   1036   1.1       mw {
   1037  1.14   chopps 	u_short stat;
   1038  1.14   chopps 	int c, s;
   1039   1.1       mw 
   1040  1.26   chopps 	s = splser();
   1041  1.14   chopps 	/*
   1042  1.14   chopps 	 * poll
   1043  1.14   chopps 	 */
   1044  1.14   chopps 	while (((stat = custom.serdatr & 0xffff) & SERDATRF_RBF) == 0)
   1045  1.14   chopps 		;
   1046  1.14   chopps 	c = stat & 0xff;
   1047  1.14   chopps 	/*
   1048  1.14   chopps 	 * clear interrupt
   1049  1.14   chopps 	 */
   1050  1.14   chopps 	custom.intreq = INTF_RBF;
   1051  1.14   chopps 	splx(s);
   1052  1.14   chopps 	return(c);
   1053   1.1       mw }
   1054   1.1       mw 
   1055   1.1       mw /*
   1056   1.1       mw  * Console kernel output character routine.
   1057   1.1       mw  */
   1058  1.31    veego void
   1059   1.1       mw sercnputc(dev, c)
   1060  1.14   chopps 	dev_t dev;
   1061  1.14   chopps 	int c;
   1062   1.1       mw {
   1063  1.14   chopps 	register int timo;
   1064  1.14   chopps 	int s;
   1065  1.14   chopps 
   1066  1.14   chopps 	s = splhigh();
   1067   1.1       mw 
   1068  1.14   chopps 	if (serconsinit == 0) {
   1069  1.14   chopps 		(void)serinit(SERUNIT(dev), serdefaultrate);
   1070  1.14   chopps 		serconsinit = 1;
   1071  1.14   chopps 	}
   1072  1.14   chopps 
   1073  1.14   chopps 	/*
   1074  1.14   chopps 	 * wait for any pending transmission to finish
   1075  1.14   chopps 	 */
   1076  1.14   chopps 	timo = 50000;
   1077  1.14   chopps 	while (!(custom.serdatr & SERDATRF_TBE) && --timo);
   1078  1.14   chopps 
   1079  1.14   chopps 	/*
   1080  1.14   chopps 	 * transmit char.
   1081  1.14   chopps 	 */
   1082  1.14   chopps 	custom.serdat = (c & 0xff) | 0x100;
   1083  1.14   chopps 
   1084  1.14   chopps 	/*
   1085  1.14   chopps 	 * wait for this transmission to complete
   1086  1.14   chopps 	 */
   1087  1.14   chopps 	timo = 1500000;
   1088  1.14   chopps 	while (!(custom.serdatr & SERDATRF_TBE) && --timo)
   1089  1.14   chopps 		;
   1090  1.14   chopps 
   1091  1.14   chopps 	/*
   1092  1.14   chopps 	 * Wait for the device (my vt100..) to process the data, since we
   1093  1.14   chopps 	 * don't do flow-control with cnputc
   1094  1.14   chopps 	 */
   1095  1.14   chopps 	for (timo = 0; timo < 30000; timo++)
   1096  1.14   chopps 		;
   1097  1.14   chopps 
   1098  1.14   chopps 	/*
   1099  1.14   chopps 	 * clear any interrupts generated by this transmission
   1100  1.14   chopps 	 */
   1101  1.14   chopps 	custom.intreq = INTF_TBE;
   1102  1.14   chopps 	splx(s);
   1103  1.25   chopps }
   1104  1.25   chopps 
   1105  1.25   chopps void
   1106  1.25   chopps sercnpollc(dev, on)
   1107  1.25   chopps 	dev_t dev;
   1108  1.25   chopps 	int on;
   1109  1.25   chopps {
   1110   1.1       mw }
   1111   1.1       mw #endif
   1112