ser.c revision 1.14.4.1 1 /* $NetBSD: ser.c,v 1.14.4.1 2001/10/10 11:56:00 fvdl Exp $ */
2
3 /*-
4 * Copyright (c) 1997 The NetBSD Foundation, Inc.
5 * All rights reserved.
6 *
7 * This code is derived from software contributed to The NetBSD Foundation
8 * by Leo Weppelman.
9 *
10 * Redistribution and use in source and binary forms, with or without
11 * modification, are permitted provided that the following conditions
12 * are met:
13 * 1. Redistributions of source code must retain the above copyright
14 * notice, this list of conditions and the following disclaimer.
15 * 2. Redistributions in binary form must reproduce the above copyright
16 * notice, this list of conditions and the following disclaimer in the
17 * documentation and/or other materials provided with the distribution.
18 * 3. All advertising materials mentioning features or use of this software
19 * must display the following acknowledgement:
20 * This product includes software developed by the NetBSD
21 * Foundation, Inc. and its contributors.
22 * 4. Neither the name of The NetBSD Foundation nor the names of its
23 * contributors may be used to endorse or promote products derived
24 * from this software without specific prior written permission.
25 *
26 * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
27 * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
28 * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
29 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
30 * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
31 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
32 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
33 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
34 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
35 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
36 * POSSIBILITY OF SUCH DAMAGE.
37 */
38 /*-
39 * Copyright (c) 1993, 1994, 1995, 1996, 1997
40 * Charles M. Hannum. All rights reserved.
41 *
42 * Interrupt processing and hardware flow control partly based on code from
43 * Onno van der Linden and Gordon Ross.
44 *
45 * Redistribution and use in source and binary forms, with or without
46 * modification, are permitted provided that the following conditions
47 * are met:
48 * 1. Redistributions of source code must retain the above copyright
49 * notice, this list of conditions and the following disclaimer.
50 * 2. Redistributions in binary form must reproduce the above copyright
51 * notice, this list of conditions and the following disclaimer in the
52 * documentation and/or other materials provided with the distribution.
53 * 3. All advertising materials mentioning features or use of this software
54 * must display the following acknowledgement:
55 * This product includes software developed by Charles M. Hannum.
56 * 4. The name of the author may not be used to endorse or promote products
57 * derived from this software without specific prior written permission.
58 *
59 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
60 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
61 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
62 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
63 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
64 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
65 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
66 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
67 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
68 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
69 */
70
71 /*
72 * Copyright (c) 1991 The Regents of the University of California.
73 * All rights reserved.
74 *
75 * Redistribution and use in source and binary forms, with or without
76 * modification, are permitted provided that the following conditions
77 * are met:
78 * 1. Redistributions of source code must retain the above copyright
79 * notice, this list of conditions and the following disclaimer.
80 * 2. Redistributions in binary form must reproduce the above copyright
81 * notice, this list of conditions and the following disclaimer in the
82 * documentation and/or other materials provided with the distribution.
83 * 3. All advertising materials mentioning features or use of this software
84 * must display the following acknowledgement:
85 * This product includes software developed by the University of
86 * California, Berkeley and its contributors.
87 * 4. Neither the name of the University nor the names of its contributors
88 * may be used to endorse or promote products derived from this software
89 * without specific prior written permission.
90 *
91 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
92 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
93 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
94 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
95 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
96 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
97 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
98 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
99 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
100 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
101 * SUCH DAMAGE.
102 *
103 * @(#)com.c 7.5 (Berkeley) 5/16/91
104 */
105
106 #include "opt_ddb.h"
107 #include "opt_mbtype.h"
108
109 #include <sys/param.h>
110 #include <sys/systm.h>
111 #include <sys/ioctl.h>
112 #include <sys/select.h>
113 #include <sys/tty.h>
114 #include <sys/proc.h>
115 #include <sys/user.h>
116 #include <sys/conf.h>
117 #include <sys/file.h>
118 #include <sys/uio.h>
119 #include <sys/kernel.h>
120 #include <sys/syslog.h>
121 #include <sys/types.h>
122 #include <sys/device.h>
123 #include <sys/vnode.h>
124
125 #include <m68k/asm_single.h>
126
127 #include <machine/iomap.h>
128 #include <machine/mfp.h>
129 #include <atari/atari/intr.h>
130 #include <atari/dev/serreg.h>
131
132 #if !defined(_MILANHW_)
133 #include <atari/dev/ym2149reg.h>
134 #else
135 /* MILAN has no ym2149 */
136 #define ym2149_dtr(set) { \
137 if (set) \
138 single_inst_bset_b(MFP->mf_gpip, 0x08); \
139 else single_inst_bclr_b(MFP->mf_gpip, 0x08); \
140 }
141
142 #define ym2149_rts(set) { \
143 if (set) \
144 single_inst_bset_b(MFP->mf_gpip, 0x01); \
145 else single_inst_bclr_b(MFP->mf_gpip, 0x01); \
146 }
147 #endif /* _MILANHW_ */
148
149 /* #define SER_DEBUG */
150
151 #define SERUNIT(x) (minor(x) & 0x7ffff)
152 #define SERDIALOUT(x) (minor(x) & 0x80000)
153
154 /* XXX */
155 #define CONSBAUD 9600
156 #define CONSCFLAG TTYDEF_CFLAG
157 /* end XXX */
158
159 /* Macros to clear/set/test flags. */
160 #define SET(t, f) (t) |= (f)
161 #define CLR(t, f) (t) &= ~(f)
162 #define ISSET(t, f) ((t) & (f))
163
164 #define splserial() spl6()
165
166 /* Buffer size for character buffer */
167 #define RXBUFSIZE 2048 /* More than enough.. */
168 #define RXBUFMASK (RXBUFSIZE-1) /* Only iff previous is a power of 2 */
169 #define RXHIWAT (RXBUFSIZE >> 2)
170
171 struct ser_softc {
172 struct device sc_dev;
173 struct tty *sc_tty;
174
175 struct callout sc_diag_ch;
176
177 int sc_overflows;
178 int sc_floods;
179 int sc_errors;
180
181 u_char sc_hwflags;
182 u_char sc_swflags;
183
184 int sc_ospeed; /* delay + timer-d data */
185 u_char sc_imra;
186 u_char sc_imrb;
187 u_char sc_ucr; /* Uart control */
188 u_char sc_msr; /* Modem status */
189 u_char sc_tsr; /* Tranceiver status */
190 u_char sc_rsr; /* Receiver status */
191 u_char sc_mcr; /* (Pseudo) Modem ctrl. */
192
193 u_char sc_msr_delta;
194 u_char sc_msr_mask;
195 u_char sc_mcr_active;
196 u_char sc_mcr_dtr, sc_mcr_rts, sc_msr_cts, sc_msr_dcd;
197
198 int sc_r_hiwat;
199 volatile u_int sc_rbget;
200 volatile u_int sc_rbput;
201 volatile u_int sc_rbavail;
202 u_char sc_rbuf[RXBUFSIZE];
203 u_char sc_lbuf[RXBUFSIZE];
204
205 volatile u_char sc_rx_blocked;
206 volatile u_char sc_rx_ready;
207 volatile u_char sc_tx_busy;
208 volatile u_char sc_tx_done;
209 volatile u_char sc_tx_stopped;
210 volatile u_char sc_st_check;
211
212 u_char *sc_tba;
213 int sc_tbc;
214 int sc_heldtbc;
215
216 volatile u_char sc_heldchange;
217 };
218
219 /*
220 * For sc_hwflags:
221 */
222 #define SER_HW_CONSOLE 0x01
223
224 cdev_decl(ser);
225
226 void ser_break __P((struct ser_softc *, int));
227 void ser_hwiflow __P((struct ser_softc *, int));
228 void ser_iflush __P((struct ser_softc *));
229 void ser_loadchannelregs __P((struct ser_softc *));
230 void ser_modem __P((struct ser_softc *, int));
231 void serdiag __P((void *));
232 int serhwiflow __P((struct tty *, int));
233 void serinit __P((int));
234 void serinitcons __P((int));
235 int baud;
236 int sermintr __P((void *));
237 int sertrintr __P((void *));
238 int serparam __P((struct tty *, struct termios *));
239 void serstart __P((struct tty *));
240
241 struct consdev;
242 void sercnprobe __P((struct consdev *));
243 void sercninit __P((struct consdev *));
244 int sercngetc __P((dev_t));
245 void sercnputc __P((dev_t, int));
246 void sercnpollc __P((dev_t, int));
247
248 static void sermsrint __P((struct ser_softc *, struct tty*));
249 static void serrxint __P((struct ser_softc *, struct tty*));
250 static void ser_shutdown __P((struct ser_softc *));
251 static int serspeed __P((long));
252 static void sersoft __P((void *));
253 static void sertxint __P((struct ser_softc *, struct tty*));
254
255 static volatile int ser_softintr_scheduled = 0;
256 static int sermajor;
257
258 /*
259 * Autoconfig stuff
260 */
261 static void serattach __P((struct device *, struct device *, void *));
262 static int sermatch __P((struct device *, struct cfdata *, void *));
263
264 struct cfattach ser_ca = {
265 sizeof(struct ser_softc), sermatch, serattach
266 };
267
268 extern struct cfdriver ser_cd;
269
270 /*ARGSUSED*/
271 static int
272 sermatch(pdp, cfp, auxp)
273 struct device *pdp;
274 struct cfdata *cfp;
275 void *auxp;
276 {
277 static int ser_matched = 0;
278
279 /* Match at most one ser unit */
280 if (strcmp((char *)auxp, "ser") || ser_matched)
281 return 0;
282
283 ser_matched = 1;
284 return 1;
285 }
286
287 /*ARGSUSED*/
288 static void
289 serattach(pdp, dp, auxp)
290 struct device *pdp, *dp;
291 void *auxp;
292 {
293 struct ser_softc *sc = (void *)dp;
294
295 if (intr_establish(1, USER_VEC, 0, (hw_ifun_t)sermintr, sc) == NULL)
296 printf("serattach: Can't establish interrupt (1)\n");
297 if (intr_establish(2, USER_VEC, 0, (hw_ifun_t)sermintr, sc) == NULL)
298 printf("serattach: Can't establish interrupt (2)\n");
299 if (intr_establish(14, USER_VEC, 0, (hw_ifun_t)sermintr, sc) == NULL)
300 printf("serattach: Can't establish interrupt (14)\n");
301 if (intr_establish(9, USER_VEC, 0, (hw_ifun_t)sertrintr, sc) == NULL)
302 printf("serattach: Can't establish interrupt (9)\n");
303 if (intr_establish(10, USER_VEC, 0, (hw_ifun_t)sertrintr, sc) == NULL)
304 printf("serattach: Can't establish interrupt (10)\n");
305 if (intr_establish(11, USER_VEC, 0, (hw_ifun_t)sertrintr, sc) == NULL)
306 printf("serattach: Can't establish interrupt (11)\n");
307 if (intr_establish(12, USER_VEC, 0, (hw_ifun_t)sertrintr, sc) == NULL)
308 printf("serattach: Can't establish interrupt (12)\n");
309
310 ym2149_rts(1);
311 ym2149_dtr(1);
312
313 /*
314 * Enable but mask interrupts...
315 * XXX: Look at edge-sensitivity for DCD/CTS interrupts.
316 */
317 MFP->mf_ierb |= IB_SCTS|IB_SDCD;
318 MFP->mf_iera |= IA_RRDY|IA_RERR|IA_TRDY|IA_TERR;
319 MFP->mf_imrb &= ~(IB_SCTS|IB_SDCD);
320 MFP->mf_imra &= ~(IA_RRDY|IA_RERR|IA_TRDY|IA_TERR);
321
322 callout_init(&sc->sc_diag_ch);
323
324 #ifdef SERCONSOLE
325 /*
326 * Activate serial console when DCD present...
327 */
328 if (!(MFP->mf_gpip & MCR_DCD))
329 SET(sc->sc_hwflags, SER_HW_CONSOLE);
330 #endif /* SERCONSOLE */
331
332 printf("\n");
333 if (ISSET(sc->sc_hwflags, SER_HW_CONSOLE)) {
334 serinit(CONSBAUD);
335 printf("%s: console\n", sc->sc_dev.dv_xname);
336 }
337 }
338
339 #ifdef SER_DEBUG
340 void serstatus __P((struct ser_softc *, char *));
341 void
342 serstatus(sc, str)
343 struct ser_softc *sc;
344 char *str;
345 {
346 struct tty *tp = sc->sc_tty;
347
348 printf("%s: %s %sclocal %sdcd %sts_carr_on %sdtr %stx_stopped\n",
349 sc->sc_dev.dv_xname, str,
350 ISSET(tp->t_cflag, CLOCAL) ? "+" : "-",
351 ISSET(sc->sc_msr, MCR_DCD) ? "+" : "-",
352 ISSET(tp->t_state, TS_CARR_ON) ? "+" : "-",
353 ISSET(sc->sc_mcr, MCR_DTR) ? "+" : "-",
354 sc->sc_tx_stopped ? "+" : "-");
355
356 printf("%s: %s %scrtscts %scts %sts_ttstop %srts %srx_blocked\n",
357 sc->sc_dev.dv_xname, str,
358 ISSET(tp->t_cflag, CRTSCTS) ? "+" : "-",
359 ISSET(sc->sc_msr, MCR_CTS) ? "+" : "-",
360 ISSET(tp->t_state, TS_TTSTOP) ? "+" : "-",
361 ISSET(sc->sc_mcr, MCR_RTS) ? "+" : "-",
362 sc->sc_rx_blocked ? "+" : "-");
363 }
364 #endif /* SER_DEBUG */
365
366 int
367 seropen(devvp, flag, mode, p)
368 struct vnode *devvp;
369 int flag, mode;
370 struct proc *p;
371 {
372 dev_t dev = vdev_rdev(devvp);
373 int unit = SERUNIT(dev);
374 struct ser_softc *sc;
375 struct tty *tp;
376 int s, s2;
377 int error = 0;
378
379 if (unit >= ser_cd.cd_ndevs)
380 return (ENXIO);
381 sc = ser_cd.cd_devs[unit];
382 if (!sc)
383 return (ENXIO);
384
385 if (!sc->sc_tty) {
386 tp = sc->sc_tty = ttymalloc();
387 tty_attach(tp);
388 } else
389 tp = sc->sc_tty;
390
391 if (ISSET(tp->t_state, TS_ISOPEN) &&
392 ISSET(tp->t_state, TS_XCLUDE) &&
393 p->p_ucred->cr_uid != 0)
394 return (EBUSY);
395
396 vdev_setprivdata(devvp, sc);
397
398 s = spltty();
399
400 /*
401 * Do the following if this is a first open.
402 */
403 if (!ISSET(tp->t_state, TS_ISOPEN) && tp->t_wopen == 0) {
404 struct termios t;
405
406 /* Turn on interrupts. */
407 sc->sc_imra = IA_RRDY|IA_RERR|IA_TRDY|IA_TERR;
408 sc->sc_imrb = IB_SCTS|IB_SDCD;
409 single_inst_bset_b(MFP->mf_imra, sc->sc_imra);
410 single_inst_bset_b(MFP->mf_imrb, sc->sc_imrb);
411
412 /* Fetch the current modem control status, needed later. */
413 sc->sc_msr = ~MFP->mf_gpip & (IO_SDCD|IO_SCTS|IO_SRI);
414
415 /* Add some entry points needed by the tty layer. */
416 tp->t_oproc = serstart;
417 tp->t_param = serparam;
418 tp->t_hwiflow = serhwiflow;
419 tp->t_devvp = devvp;
420
421 /*
422 * Initialize the termios status to the defaults. Add in the
423 * sticky bits from TIOCSFLAGS.
424 */
425 t.c_ispeed = 0;
426 if (ISSET(sc->sc_hwflags, SER_HW_CONSOLE)) {
427 t.c_ospeed = CONSBAUD;
428 t.c_cflag = CONSCFLAG;
429 }
430 else {
431 t.c_ospeed = TTYDEF_SPEED;
432 t.c_cflag = TTYDEF_CFLAG;
433 }
434 if (ISSET(sc->sc_swflags, TIOCFLAG_CLOCAL))
435 SET(t.c_cflag, CLOCAL);
436 if (ISSET(sc->sc_swflags, TIOCFLAG_CRTSCTS))
437 SET(t.c_cflag, CRTSCTS);
438 if (ISSET(sc->sc_swflags, TIOCFLAG_MDMBUF))
439 SET(t.c_cflag, MDMBUF);
440 tp->t_iflag = TTYDEF_IFLAG;
441 tp->t_oflag = TTYDEF_OFLAG;
442 tp->t_lflag = TTYDEF_LFLAG;
443 ttychars(tp);
444 (void) serparam(tp, &t);
445 ttsetwater(tp);
446
447 s2 = splserial();
448
449 /*
450 * Turn on DTR. We must always do this, even if carrier is not
451 * present, because otherwise we'd have to use TIOCSDTR
452 * immediately after setting CLOCAL. We will drop DTR only on
453 * the next high-low transition of DCD, or by explicit request.
454 */
455 ser_modem(sc, 1);
456
457 /* Clear the input ring, and unblock. */
458 sc->sc_rbput = sc->sc_rbget = 0;
459 sc->sc_rbavail = RXBUFSIZE;
460 ser_iflush(sc);
461 sc->sc_rx_blocked = 0;
462 ser_hwiflow(sc, 0);
463
464 #ifdef SER_DEBUG
465 serstatus(sc, "seropen ");
466 #endif
467
468 splx(s2);
469 }
470
471 splx(s);
472
473 error = ttyopen(tp, SERDIALOUT(dev), ISSET(flag, O_NONBLOCK));
474 if (error)
475 goto bad;
476
477 error = (*tp->t_linesw->l_open)(devvp, tp);
478 if (error)
479 goto bad;
480
481 return (0);
482
483 bad:
484 if (!ISSET(tp->t_state, TS_ISOPEN) && tp->t_wopen == 0) {
485 /*
486 * We failed to open the device, and nobody else had it opened.
487 * Clean up the state as appropriate.
488 */
489 ser_shutdown(sc);
490 }
491
492 return (error);
493 }
494
495 int
496 serclose(devvp, flag, mode, p)
497 struct vnode *devvp;
498 int flag, mode;
499 struct proc *p;
500 {
501 struct ser_softc *sc;
502 struct tty *tp;
503
504 sc = vdev_privdata(devvp);
505 tp = sc->sc_tty;
506
507 /* XXX This is for cons.c. */
508 if (!ISSET(tp->t_state, TS_ISOPEN))
509 return (0);
510
511 (*tp->t_linesw->l_close)(tp, flag);
512 ttyclose(tp);
513
514 if (!ISSET(tp->t_state, TS_ISOPEN) && tp->t_wopen == 0) {
515 /*
516 * Although we got a last close, the device may still be in
517 * use; e.g. if this was the dialout node, and there are still
518 * processes waiting for carrier on the non-dialout node.
519 */
520 ser_shutdown(sc);
521 }
522
523 return (0);
524 }
525
526 int
527 serread(devvp, uio, flag)
528 struct vnode *devvp;
529 struct uio *uio;
530 int flag;
531 {
532 struct ser_softc *sc;
533 struct tty *tp;
534
535 sc = vdev_privdata(devvp);
536 tp = sc->sc_tty;
537
538 return ((*tp->t_linesw->l_read)(tp, uio, flag));
539 }
540
541 int
542 serwrite(devvp, uio, flag)
543 struct vnode *devvp;
544 struct uio *uio;
545 int flag;
546 {
547 struct ser_softc *sc;
548 struct tty *tp;
549
550 sc = vdev_privdata(devvp);
551 tp = sc->sc_tty;
552
553 return ((*tp->t_linesw->l_write)(tp, uio, flag));
554 }
555
556 int
557 serpoll(devvp, events, p)
558 struct vnode *devvp;
559 int events;
560 struct proc *p;
561 {
562 struct ser_softc *sc;
563 struct tty *tp;
564
565 sc = vdev_privdata(devvp);
566 tp = sc->sc_tty;
567
568 return ((*tp->t_linesw->l_poll)(tp, events, p));
569 }
570
571 struct tty *
572 sertty(devvp)
573 struct vnode *devvp;
574 {
575 struct ser_softc *sc;
576 struct tty *tp;
577
578 sc = vdev_privdata(devvp);
579 tp = sc->sc_tty;
580
581 return (tp);
582 }
583
584 int
585 serioctl(devvp, cmd, data, flag, p)
586 struct vnode *devvp;
587 u_long cmd;
588 caddr_t data;
589 int flag;
590 struct proc *p;
591 {
592 int error;
593 struct ser_softc *sc;
594 struct tty *tp;
595
596 sc = vdev_privdata(devvp);
597 tp = sc->sc_tty;
598
599 error = (*tp->t_linesw->l_ioctl)(tp, cmd, data, flag, p);
600 if (error >= 0)
601 return (error);
602
603 error = ttioctl(tp, cmd, data, flag, p);
604 if (error >= 0)
605 return (error);
606
607 switch (cmd) {
608 case TIOCSBRK:
609 ser_break(sc, 1);
610 break;
611
612 case TIOCCBRK:
613 ser_break(sc, 0);
614 break;
615
616 case TIOCSDTR:
617 ser_modem(sc, 1);
618 break;
619
620 case TIOCCDTR:
621 ser_modem(sc, 0);
622 break;
623
624 case TIOCGFLAGS:
625 *(int *)data = sc->sc_swflags;
626 break;
627
628 case TIOCSFLAGS:
629 error = suser(p->p_ucred, &p->p_acflag);
630 if (error)
631 return (error);
632 sc->sc_swflags = *(int *)data;
633 break;
634
635 case TIOCMSET:
636 case TIOCMBIS:
637 case TIOCMBIC:
638 case TIOCMGET:
639 default:
640 return (ENOTTY);
641 }
642
643 #ifdef SER_DEBUG
644 serstatus(sc, "serioctl ");
645 #endif
646
647 return (0);
648 }
649
650 void
651 ser_break(sc, onoff)
652 struct ser_softc *sc;
653 int onoff;
654 {
655 int s;
656
657 s = splserial();
658 if (onoff)
659 SET(sc->sc_tsr, TSR_SBREAK);
660 else
661 CLR(sc->sc_tsr, TSR_SBREAK);
662
663 if (!sc->sc_heldchange) {
664 if (sc->sc_tx_busy) {
665 sc->sc_heldtbc = sc->sc_tbc;
666 sc->sc_tbc = 0;
667 sc->sc_heldchange = 1;
668 } else
669 ser_loadchannelregs(sc);
670 }
671 splx(s);
672 }
673
674 void
675 ser_modem(sc, onoff)
676 struct ser_softc *sc;
677 int onoff;
678 {
679 int s;
680
681 s = splserial();
682 if (onoff)
683 SET(sc->sc_mcr, sc->sc_mcr_dtr);
684 else
685 CLR(sc->sc_mcr, sc->sc_mcr_dtr);
686
687 if (!sc->sc_heldchange) {
688 if (sc->sc_tx_busy) {
689 sc->sc_heldtbc = sc->sc_tbc;
690 sc->sc_tbc = 0;
691 sc->sc_heldchange = 1;
692 } else
693 ser_loadchannelregs(sc);
694 }
695 splx(s);
696 }
697
698 int
699 serparam(tp, t)
700 struct tty *tp;
701 struct termios *t;
702 {
703 struct ser_softc *sc;
704 int ospeed = serspeed(t->c_ospeed);
705 u_char ucr;
706 int s;
707
708 sc = vdev_privdata(tp->t_devvp);
709
710 /* check requested parameters */
711 if (ospeed < 0)
712 return (EINVAL);
713 if (t->c_ispeed && t->c_ispeed != t->c_ospeed)
714 return (EINVAL);
715
716 sc->sc_rsr = RSR_ENAB;
717 sc->sc_tsr = TSR_ENAB;
718
719 ucr = UCR_CLKDIV;
720
721 switch (ISSET(t->c_cflag, CSIZE)) {
722 case CS5:
723 SET(ucr, UCR_5BITS);
724 break;
725 case CS6:
726 SET(ucr, UCR_6BITS);
727 break;
728 case CS7:
729 SET(ucr, UCR_7BITS);
730 break;
731 case CS8:
732 SET(ucr, UCR_8BITS);
733 break;
734 }
735 if (ISSET(t->c_cflag, PARENB)) {
736 SET(ucr, UCR_PENAB);
737 if (!ISSET(t->c_cflag, PARODD))
738 SET(ucr, UCR_PEVEN);
739 }
740 if (ISSET(t->c_cflag, CSTOPB))
741 SET(ucr, UCR_STOPB2);
742 else
743 SET(ucr, UCR_STOPB1);
744
745 s = splserial();
746
747 sc->sc_ucr = ucr;
748
749 /*
750 * For the console, always force CLOCAL and !HUPCL, so that the port
751 * is always active.
752 */
753 if (ISSET(sc->sc_swflags, TIOCFLAG_SOFTCAR) ||
754 ISSET(sc->sc_hwflags, SER_HW_CONSOLE)) {
755 SET(t->c_cflag, CLOCAL);
756 CLR(t->c_cflag, HUPCL);
757 }
758
759 /*
760 * If we're not in a mode that assumes a connection is present, then
761 * ignore carrier changes.
762 */
763 if (ISSET(t->c_cflag, CLOCAL | MDMBUF))
764 sc->sc_msr_dcd = 0;
765 else
766 sc->sc_msr_dcd = MCR_DCD;
767 /*
768 * Set the flow control pins depending on the current flow control
769 * mode.
770 */
771 if (ISSET(t->c_cflag, CRTSCTS)) {
772 sc->sc_mcr_dtr = MCR_DTR;
773 sc->sc_mcr_rts = MCR_RTS;
774 sc->sc_msr_cts = MCR_CTS;
775 sc->sc_r_hiwat = RXHIWAT;
776 } else if (ISSET(t->c_cflag, MDMBUF)) {
777 /*
778 * For DTR/DCD flow control, make sure we don't toggle DTR for
779 * carrier detection.
780 */
781 sc->sc_mcr_dtr = 0;
782 sc->sc_mcr_rts = MCR_DTR;
783 sc->sc_msr_cts = MCR_DCD;
784 sc->sc_r_hiwat = RXHIWAT;
785 } else {
786 /*
787 * If no flow control, then always set RTS. This will make
788 * the other side happy if it mistakenly thinks we're doing
789 * RTS/CTS flow control.
790 */
791 sc->sc_mcr_dtr = MCR_DTR | MCR_RTS;
792 sc->sc_mcr_rts = 0;
793 sc->sc_msr_cts = 0;
794 sc->sc_r_hiwat = 0;
795 if (ISSET(sc->sc_mcr, MCR_DTR))
796 SET(sc->sc_mcr, MCR_RTS);
797 else
798 CLR(sc->sc_mcr, MCR_RTS);
799 }
800 sc->sc_msr_mask = sc->sc_msr_cts | sc->sc_msr_dcd;
801
802 #if 0
803 if (ospeed == 0)
804 CLR(sc->sc_mcr, sc->sc_mcr_dtr);
805 else
806 SET(sc->sc_mcr, sc->sc_mcr_dtr);
807 #endif
808
809 sc->sc_ospeed = ospeed;
810
811 /* and copy to tty */
812 tp->t_ispeed = 0;
813 tp->t_ospeed = t->c_ospeed;
814 tp->t_cflag = t->c_cflag;
815
816 if (!sc->sc_heldchange) {
817 if (sc->sc_tx_busy) {
818 sc->sc_heldtbc = sc->sc_tbc;
819 sc->sc_tbc = 0;
820 sc->sc_heldchange = 1;
821 } else
822 ser_loadchannelregs(sc);
823 }
824
825 splx(s);
826
827 /*
828 * Update the tty layer's idea of the carrier bit, in case we changed
829 * CLOCAL or MDMBUF. We don't hang up here; we only do that if we
830 * lose carrier while carrier detection is on.
831 */
832 (void) (*tp->t_linesw->l_modem)(tp, ISSET(sc->sc_msr, MCR_DCD));
833
834 #ifdef SER_DEBUG
835 serstatus(sc, "serparam ");
836 #endif
837
838 /* XXXXX FIX ME */
839 /* Block or unblock as needed. */
840 if (!ISSET(t->c_cflag, CHWFLOW)) {
841 if (sc->sc_rx_blocked) {
842 sc->sc_rx_blocked = 0;
843 ser_hwiflow(sc, 0);
844 }
845 if (sc->sc_tx_stopped) {
846 sc->sc_tx_stopped = 0;
847 serstart(tp);
848 }
849 } else {
850 #if 0
851 sermsrint(sc, tp);
852 #endif
853 }
854
855 return (0);
856 }
857
858 void
859 ser_iflush(sc)
860 struct ser_softc *sc;
861 {
862 u_char tmp;
863
864 /* flush any pending I/O */
865 while (ISSET(MFP->mf_rsr, RSR_CIP|RSR_BFULL))
866 tmp = MFP->mf_udr;
867 }
868
869 void
870 ser_loadchannelregs(sc)
871 struct ser_softc *sc;
872 {
873 /* XXXXX necessary? */
874 ser_iflush(sc);
875
876 /*
877 * No interrupts please...
878 */
879 if((MFP->mf_imra & (IA_RRDY|IA_RERR|IA_TRDY|IA_TERR)) != sc->sc_imra) {
880 printf("loadchannelregs: mf_imra: %x sc_imra: %x\n", (u_int)MFP->mf_imra,
881 (u_int)sc->sc_imra);
882 }
883 if((MFP->mf_imrb & (IB_SCTS|IB_SDCD)) != sc->sc_imrb) {
884 printf("loadchannelregs: mf_imrb: %x sc_imrb: %x\n", (u_int)MFP->mf_imrb,
885 (u_int)sc->sc_imrb);
886 }
887 single_inst_bclr_b(MFP->mf_imra, IA_RRDY|IA_RERR|IA_TRDY|IA_TERR);
888 single_inst_bclr_b(MFP->mf_imrb, IB_SCTS|IB_SDCD);
889
890 MFP->mf_ucr = sc->sc_ucr;
891 MFP->mf_rsr = sc->sc_rsr;
892 MFP->mf_tsr = sc->sc_tsr;
893
894 single_inst_bclr_b(MFP->mf_tcdcr, 0x07);
895 MFP->mf_tddr = sc->sc_ospeed;
896 single_inst_bset_b(MFP->mf_tcdcr, (sc->sc_ospeed >> 8) & 0x0f);
897
898 sc->sc_mcr_active = sc->sc_mcr;
899
900 if (machineid & ATARI_HADES) {
901 /* PCB fault, wires exchanged..... */
902 ym2149_rts(!(sc->sc_mcr_active & MCR_DTR));
903 ym2149_dtr(!(sc->sc_mcr_active & MCR_RTS));
904 }
905 else {
906 ym2149_rts(!(sc->sc_mcr_active & MCR_RTS));
907 ym2149_dtr(!(sc->sc_mcr_active & MCR_DTR));
908 }
909
910 single_inst_bset_b(MFP->mf_imra, sc->sc_imra);
911 single_inst_bset_b(MFP->mf_imrb, sc->sc_imrb);
912 }
913
914 int
915 serhwiflow(tp, block)
916 struct tty *tp;
917 int block;
918 {
919 struct ser_softc *sc = vdev_privdata(tp->t_devvp);
920 int s;
921
922 if (sc->sc_mcr_rts == 0)
923 return (0);
924
925 s = splserial();
926 if (block) {
927 /*
928 * The tty layer is asking us to block input.
929 * If we already did it, just return TRUE.
930 */
931 if (sc->sc_rx_blocked)
932 goto out;
933 sc->sc_rx_blocked = 1;
934 } else {
935 /*
936 * The tty layer is asking us to resume input.
937 * The input ring is always empty by now.
938 */
939 sc->sc_rx_blocked = 0;
940 }
941 ser_hwiflow(sc, block);
942 out:
943 splx(s);
944 return (1);
945 }
946
947 /*
948 * (un)block input via hw flowcontrol
949 */
950 void
951 ser_hwiflow(sc, block)
952 struct ser_softc *sc;
953 int block;
954 {
955 if (sc->sc_mcr_rts == 0)
956 return;
957
958 if (block) {
959 CLR(sc->sc_mcr, sc->sc_mcr_rts);
960 CLR(sc->sc_mcr_active, sc->sc_mcr_rts);
961 } else {
962 SET(sc->sc_mcr, sc->sc_mcr_rts);
963 SET(sc->sc_mcr_active, sc->sc_mcr_rts);
964 }
965 if (machineid & ATARI_HADES) {
966 /* PCB fault, wires exchanged..... */
967 ym2149_dtr(sc->sc_mcr_active & MCR_RTS);
968 }
969 else {
970 ym2149_rts(sc->sc_mcr_active & MCR_RTS);
971 }
972 }
973
974 void
975 serstart(tp)
976 struct tty *tp;
977 {
978 struct ser_softc *sc = vdev_privdata(tp->t_devvp);
979 int s;
980
981 s = spltty();
982 if (ISSET(tp->t_state, TS_BUSY))
983 goto out;
984 if (ISSET(tp->t_state, TS_TIMEOUT | TS_TTSTOP))
985 goto stopped;
986
987 if (sc->sc_tx_stopped)
988 goto stopped;
989
990 if (tp->t_outq.c_cc <= tp->t_lowat) {
991 if (ISSET(tp->t_state, TS_ASLEEP)) {
992 CLR(tp->t_state, TS_ASLEEP);
993 wakeup(&tp->t_outq);
994 }
995 selwakeup(&tp->t_wsel);
996 if (tp->t_outq.c_cc == 0)
997 goto stopped;
998 }
999
1000 /* Grab the first contiguous region of buffer space. */
1001 {
1002 u_char *tba;
1003 int tbc;
1004
1005 tba = tp->t_outq.c_cf;
1006 tbc = ndqb(&tp->t_outq, 0);
1007
1008 (void)splserial();
1009
1010 sc->sc_tba = tba;
1011 sc->sc_tbc = tbc;
1012 }
1013
1014 SET(tp->t_state, TS_BUSY);
1015 sc->sc_tx_busy = 1;
1016
1017 /* Enable transmit completion interrupts if necessary. */
1018 if (!ISSET(sc->sc_imra, IA_TRDY)) {
1019 SET(sc->sc_imra, IA_TRDY|IA_TERR);
1020 single_inst_bset_b(MFP->mf_imra, IA_TRDY|IA_TERR);
1021 }
1022
1023 /* Output the first char */
1024 MFP->mf_udr = *sc->sc_tba;
1025 sc->sc_tbc --;
1026 sc->sc_tba ++;
1027
1028 splx(s);
1029 return;
1030
1031 stopped:
1032 /* Disable transmit completion interrupts if necessary. */
1033 if (ISSET(sc->sc_imra, IA_TRDY)) {
1034 CLR(sc->sc_imra, IA_TRDY|IA_TERR);
1035 single_inst_bclr_b(MFP->mf_imra, IA_TRDY|IA_TERR);
1036 }
1037 out:
1038 splx(s);
1039 return;
1040 }
1041
1042 /*
1043 * Stop output on a line.
1044 */
1045 void
1046 serstop(tp, flag)
1047 struct tty *tp;
1048 int flag;
1049 {
1050 struct ser_softc *sc = vdev_privdata(tp->t_devvp);
1051 int s;
1052
1053 s = splserial();
1054 if (ISSET(tp->t_state, TS_BUSY)) {
1055 /* Stop transmitting at the next chunk. */
1056 sc->sc_tbc = 0;
1057 sc->sc_heldtbc = 0;
1058 if (!ISSET(tp->t_state, TS_TTSTOP))
1059 SET(tp->t_state, TS_FLUSH);
1060 }
1061 splx(s);
1062 }
1063
1064 void
1065 serdiag(arg)
1066 void *arg;
1067 {
1068 struct ser_softc *sc = arg;
1069 int overflows, floods;
1070 int s;
1071
1072 s = splserial();
1073 overflows = sc->sc_overflows;
1074 sc->sc_overflows = 0;
1075 floods = sc->sc_floods;
1076 sc->sc_floods = 0;
1077 sc->sc_errors = 0;
1078 splx(s);
1079
1080 log(LOG_WARNING,
1081 "%s: %d silo overflow%s, %d ibuf flood%s\n",
1082 sc->sc_dev.dv_xname,
1083 overflows, overflows == 1 ? "" : "s",
1084 floods, floods == 1 ? "" : "s");
1085 }
1086
1087 static
1088 void ser_shutdown(sc)
1089 struct ser_softc *sc;
1090 {
1091 int s;
1092 struct tty *tp = sc->sc_tty;
1093
1094
1095 s = splserial();
1096
1097 /* If we were asserting flow control, then deassert it. */
1098 sc->sc_rx_blocked = 1;
1099 ser_hwiflow(sc, 1);
1100
1101 /* Clear any break condition set with TIOCSBRK. */
1102 ser_break(sc, 0);
1103
1104 /*
1105 * Hang up if necessary. Wait a bit, so the other side has time to
1106 * notice even if we immediately open the port again.
1107 */
1108 if (ISSET(tp->t_cflag, HUPCL)) {
1109 ser_modem(sc, 0);
1110 (void) tsleep(sc, TTIPRI, ttclos, hz);
1111 }
1112
1113 /* Turn off interrupts. */
1114 CLR(sc->sc_imra, IA_RRDY|IA_RERR|IA_TRDY|IA_TERR);
1115 CLR(sc->sc_imrb, IB_SCTS|IB_SDCD);
1116 single_inst_bclr_b(MFP->mf_imrb, IB_SCTS|IB_SDCD);
1117 single_inst_bclr_b(MFP->mf_imra, IA_RRDY|IA_RERR|IA_TRDY|IA_TERR);
1118 splx(s);
1119 }
1120
1121 static void
1122 serrxint(sc, tp)
1123 struct ser_softc *sc;
1124 struct tty *tp;
1125 {
1126 u_int get, cc, scc;
1127 int code;
1128 u_char rsr;
1129 int s;
1130 static int lsrmap[8] = {
1131 0, TTY_PE,
1132 TTY_FE, TTY_PE|TTY_FE,
1133 TTY_FE, TTY_PE|TTY_FE,
1134 TTY_FE, TTY_PE|TTY_FE
1135 };
1136
1137 get = sc->sc_rbget;
1138 scc = cc = RXBUFSIZE - sc->sc_rbavail;
1139
1140 if (cc == RXBUFSIZE) {
1141 sc->sc_floods++;
1142 if (sc->sc_errors++ == 0)
1143 callout_reset(&sc->sc_diag_ch, 60 * hz, serdiag, sc);
1144 }
1145
1146 while (cc--) {
1147 rsr = sc->sc_lbuf[get];
1148 if (ISSET(rsr, RSR_BREAK)) {
1149 #ifdef DDB
1150 if (ISSET(sc->sc_hwflags, SER_HW_CONSOLE))
1151 Debugger();
1152 #endif
1153 }
1154 else if (ISSET(rsr, RSR_OERR)) {
1155 sc->sc_overflows++;
1156 if (sc->sc_errors++ == 0)
1157 callout_reset(&sc->sc_diag_ch, 60 * hz,
1158 serdiag, sc);
1159 }
1160 code = sc->sc_rbuf[get] |
1161 lsrmap[(rsr & (RSR_BREAK|RSR_FERR|RSR_PERR)) >> 3];
1162 (*tp->t_linesw->l_rint)(code, tp);
1163 get = (get + 1) & RXBUFMASK;
1164 }
1165
1166 sc->sc_rbget = get;
1167 s = splserial();
1168 sc->sc_rbavail += scc;
1169 /*
1170 * Buffers should be ok again, release possible block, but only if the
1171 * tty layer isn't blocking too.
1172 */
1173 if (sc->sc_rx_blocked && !ISSET(tp->t_state, TS_TBLOCK)) {
1174 sc->sc_rx_blocked = 0;
1175 ser_hwiflow(sc, 0);
1176 }
1177 splx(s);
1178 }
1179
1180 static void
1181 sertxint(sc, tp)
1182 struct ser_softc *sc;
1183 struct tty *tp;
1184 {
1185
1186 CLR(tp->t_state, TS_BUSY);
1187 if (ISSET(tp->t_state, TS_FLUSH))
1188 CLR(tp->t_state, TS_FLUSH);
1189 else
1190 ndflush(&tp->t_outq, (int)(sc->sc_tba - tp->t_outq.c_cf));
1191 (*tp->t_linesw->l_start)(tp);
1192 }
1193
1194 static void
1195 sermsrint(sc, tp)
1196 struct ser_softc *sc;
1197 struct tty *tp;
1198 {
1199 u_char msr, delta;
1200 int s;
1201
1202 s = splserial();
1203 msr = sc->sc_msr;
1204 delta = sc->sc_msr_delta;
1205 sc->sc_msr_delta = 0;
1206 splx(s);
1207
1208 if (ISSET(delta, sc->sc_msr_dcd)) {
1209 /*
1210 * Inform the tty layer that carrier detect changed.
1211 */
1212 (void) (*tp->t_linesw->l_modem)(tp, ISSET(msr, MCR_DCD));
1213 }
1214
1215 if (ISSET(delta, sc->sc_msr_cts)) {
1216 /* Block or unblock output according to flow control. */
1217 if (ISSET(msr, sc->sc_msr_cts)) {
1218 sc->sc_tx_stopped = 0;
1219 (*tp->t_linesw->l_start)(tp);
1220 } else {
1221 sc->sc_tx_stopped = 1;
1222 serstop(tp, 0);
1223 }
1224 }
1225
1226 #ifdef SER_DEBUG
1227 serstatus(sc, "sermsrint");
1228 #endif
1229 }
1230
1231 void
1232 sersoft(arg)
1233 void *arg;
1234 {
1235 struct ser_softc *sc = arg;
1236 struct tty *tp;
1237
1238 ser_softintr_scheduled = 0;
1239
1240 tp = sc->sc_tty;
1241 if (tp == NULL)
1242 return;
1243
1244 if (!ISSET(tp->t_state, TS_ISOPEN) && (tp->t_wopen == 0))
1245 return;
1246
1247 if (sc->sc_rx_ready) {
1248 sc->sc_rx_ready = 0;
1249 serrxint(sc, tp);
1250 }
1251
1252 if (sc->sc_st_check) {
1253 sc->sc_st_check = 0;
1254 sermsrint(sc, tp);
1255 }
1256
1257 if (sc->sc_tx_done) {
1258 sc->sc_tx_done = 0;
1259 sertxint(sc, tp);
1260 }
1261 }
1262
1263 int
1264 sermintr(arg)
1265 void *arg;
1266 {
1267 struct ser_softc *sc = arg;
1268 u_char msr, delta;
1269
1270 msr = ~MFP->mf_gpip;
1271 delta = msr ^ sc->sc_msr;
1272 sc->sc_msr = sc->sc_msr & ~(MCR_CTS|MCR_DCD|MCR_RI);
1273 sc->sc_msr |= msr & (MCR_CTS|MCR_DCD|MCR_RI);
1274
1275 if (ISSET(delta, sc->sc_msr_mask)) {
1276 sc->sc_msr_delta |= delta;
1277
1278 /*
1279 * Stop output immediately if we lose the output
1280 * flow control signal or carrier detect.
1281 */
1282 if (ISSET(~msr, sc->sc_msr_mask)) {
1283 sc->sc_tbc = 0;
1284 sc->sc_heldtbc = 0;
1285 #ifdef SER_DEBUG
1286 serstatus(sc, "sermintr ");
1287 #endif
1288 }
1289
1290 sc->sc_st_check = 1;
1291 }
1292 if (!ser_softintr_scheduled)
1293 add_sicallback((si_farg)sersoft, sc, 0);
1294 return 1;
1295 }
1296
1297 int
1298 sertrintr(arg)
1299 void *arg;
1300 {
1301 struct ser_softc *sc = arg;
1302 u_int put, cc;
1303 u_char rsr, tsr;
1304
1305 put = sc->sc_rbput;
1306 cc = sc->sc_rbavail;
1307
1308 rsr = MFP->mf_rsr;
1309 if (ISSET(rsr, RSR_BFULL|RSR_BREAK)) {
1310 for (; ISSET(rsr, RSR_BFULL|RSR_BREAK) && cc > 0; cc--) {
1311 sc->sc_rbuf[put] = MFP->mf_udr;
1312 sc->sc_lbuf[put] = rsr;
1313 put = (put + 1) & RXBUFMASK;
1314 if ((rsr & RSR_BREAK) && (MFP->mf_rsr & RSR_BREAK))
1315 rsr = 0;
1316 else rsr = MFP->mf_rsr;
1317 }
1318 /*
1319 * Current string of incoming characters ended because
1320 * no more data was available. Schedule a receive event
1321 * if any data was received. Drop any characters that
1322 * we couldn't handle.
1323 */
1324 sc->sc_rbput = put;
1325 sc->sc_rbavail = cc;
1326 sc->sc_rx_ready = 1;
1327 /*
1328 * See if we are in danger of overflowing a buffer. If
1329 * so, use hardware flow control to ease the pressure.
1330 */
1331 if (sc->sc_rx_blocked == 0 &&
1332 cc < sc->sc_r_hiwat) {
1333 sc->sc_rx_blocked = 1;
1334 ser_hwiflow(sc, 1);
1335 }
1336 /*
1337 * If we're out of space, throw away any further input.
1338 */
1339 if (!cc) {
1340 while (ISSET(rsr, RSR_BFULL|RSR_BREAK)) {
1341 rsr = MFP->mf_udr;
1342 rsr = MFP->mf_rsr;
1343 }
1344 }
1345 }
1346
1347 /*
1348 * Done handling any receive interrupts. See if data can be
1349 * transmitted as well. Schedule tx done event if no data left
1350 * and tty was marked busy.
1351 */
1352 tsr = MFP->mf_tsr;
1353 if (ISSET(tsr, TSR_BE)) {
1354 /*
1355 * If we've delayed a parameter change, do it now, and restart
1356 * output.
1357 */
1358 if (sc->sc_heldchange) {
1359 ser_loadchannelregs(sc);
1360 sc->sc_heldchange = 0;
1361 sc->sc_tbc = sc->sc_heldtbc;
1362 sc->sc_heldtbc = 0;
1363 }
1364 /* Output the next character, if any. */
1365 if (sc->sc_tbc > 0) {
1366 MFP->mf_udr = *sc->sc_tba;
1367 sc->sc_tbc --;
1368 sc->sc_tba ++;
1369 } else if (sc->sc_tx_busy) {
1370 sc->sc_tx_busy = 0;
1371 sc->sc_tx_done = 1;
1372 }
1373 }
1374
1375 if (!ser_softintr_scheduled)
1376 add_sicallback((si_farg)sersoft, sc, 0);
1377 return 1;
1378 }
1379
1380 static int
1381 serspeed(speed)
1382 long speed;
1383 {
1384 #define divrnd(n, q) (((n)*2/(q)+1)/2) /* divide and round off */
1385
1386 int div, x, err;
1387
1388 if (speed <= 0)
1389 return (-1);
1390
1391 for (div = 4; div <= 64; div *= 4) {
1392 x = divrnd((SER_FREQ / div), speed);
1393
1394 /*
1395 * The value must fit in the timer-d dataregister. If
1396 * not, try another delay-mode.
1397 */
1398 if ((x/2) > 255)
1399 continue;
1400
1401 /*
1402 * Baudrate to high for the interface or cannot be made
1403 * within tolerance.
1404 */
1405 if (x <= 0)
1406 return (-1);
1407
1408 err = divrnd((SER_FREQ / div) * 1000, speed * x) - 1000;
1409 if (err < 0)
1410 err = -err;
1411 if (err > SER_TOLERANCE)
1412 continue;
1413
1414 /*
1415 * Translate 'div' to delay-code
1416 */
1417 if (div == 4)
1418 div = 1;
1419 else if (div == 16)
1420 div = 3;
1421 else if (div == 64)
1422 div = 5;
1423
1424 return ((x/2) | (div << 8));
1425 }
1426 return (-1);
1427
1428 #undef divrnd(n, q)
1429 }
1430
1431 /*
1432 * Following are all routines needed for SER to act as console
1433 */
1434 #include <dev/cons.h>
1435
1436 void
1437 sercnprobe(cp)
1438 struct consdev *cp;
1439 {
1440 /*
1441 * Activate serial console when DCD present...
1442 */
1443 if (MFP->mf_gpip & MCR_DCD) {
1444 cp->cn_pri = CN_DEAD;
1445 return;
1446 }
1447 for (sermajor = 0; sermajor < nchrdev; sermajor++)
1448 if (cdevsw[sermajor].d_open == seropen)
1449 break;
1450
1451 /* initialize required fields */
1452 cp->cn_dev = makedev(sermajor, 0); /* XXX: LWP What unit? */
1453 #ifdef SERCONSOLE
1454 cp->cn_pri = CN_REMOTE; /* Force a serial port console */
1455 #else
1456 cp->cn_pri = CN_NORMAL;
1457 #endif
1458 }
1459
1460 void
1461 sercninit(cp)
1462 struct consdev *cp;
1463 {
1464 serinitcons(CONSBAUD);
1465 }
1466
1467 /*
1468 * Initialize UART to known state.
1469 */
1470 void
1471 serinit(baud)
1472 int baud;
1473 {
1474 int ospeed = serspeed(baud);
1475
1476 MFP->mf_ucr = UCR_CLKDIV|UCR_8BITS|UCR_STOPB1;
1477 MFP->mf_rsr = RSR_ENAB;
1478 MFP->mf_tsr = TSR_ENAB;
1479
1480 single_inst_bclr_b(MFP->mf_tcdcr, 0x07);
1481 MFP->mf_tddr = ospeed;
1482 single_inst_bset_b(MFP->mf_tcdcr, (ospeed >> 8) & 0x0f);
1483 }
1484
1485 /*
1486 * Set UART for console use. Do normal init, then enable interrupts.
1487 */
1488 void
1489 serinitcons(baud)
1490 int baud;
1491 {
1492 serinit(baud);
1493
1494 /* Set rts/dtr */
1495 ym2149_rts(0);
1496 ym2149_dtr(0);
1497
1498 single_inst_bset_b(MFP->mf_imra, (IA_RRDY|IA_RERR|IA_TRDY|IA_TERR));
1499 }
1500
1501 int
1502 sercngetc(dev)
1503 dev_t dev;
1504 {
1505 u_char stat, c;
1506 int s;
1507
1508 s = splserial();
1509 while (!ISSET(stat = MFP->mf_rsr, RSR_BFULL)) {
1510 if (!ISSET(stat, RSR_ENAB)) /* XXX */
1511 MFP->mf_rsr |= RSR_ENAB;
1512 if (stat & (RSR_FERR|RSR_PERR|RSR_OERR))
1513 c = MFP->mf_udr;
1514 }
1515 c = MFP->mf_udr;
1516 splx(s);
1517 return c;
1518 }
1519
1520 u_int s_imra;
1521 u_int s_stat1, s_stat2, s_stat3;
1522 void
1523 sercnputc(dev, c)
1524 dev_t dev;
1525 int c;
1526 {
1527 int timo;
1528 u_char stat, imra;
1529
1530 /* Mask serial interrupts */
1531 imra = MFP->mf_imra & (IA_RRDY|IA_RERR|IA_TRDY|IA_TERR);
1532 single_inst_bclr_b(MFP->mf_imra, imra);
1533 s_imra = imra;
1534
1535 /* wait for any pending transmission to finish */
1536 timo = 50000;
1537 s_stat1 = MFP->mf_tsr;
1538 while (!ISSET(stat = MFP->mf_tsr, TSR_BE) && --timo)
1539 ;
1540 MFP->mf_udr = c;
1541 /* wait for this transmission to complete */
1542 timo = 1500000;
1543 s_stat2 = MFP->mf_tsr;
1544 while (!ISSET(stat = MFP->mf_tsr, TSR_BE) && --timo)
1545 ;
1546
1547 s_stat3 = MFP->mf_tsr;
1548 /* Clear pending serial interrupts and re-enable */
1549 MFP->mf_ipra = (u_int8_t)~imra;
1550 single_inst_bset_b(MFP->mf_imra, imra);
1551 }
1552
1553 void
1554 sercnpollc(dev, on)
1555 dev_t dev;
1556 int on;
1557 {
1558
1559 }
1560