dz.c revision 1.9 1 1.9 jdolecek /* $NetBSD: dz.c,v 1.9 2002/10/23 09:13:09 jdolecek Exp $ */
2 1.1 ad /*
3 1.1 ad * Copyright (c) 1996 Ken C. Wellsch. All rights reserved.
4 1.1 ad * Copyright (c) 1992, 1993
5 1.1 ad * The Regents of the University of California. All rights reserved.
6 1.1 ad *
7 1.1 ad * This code is derived from software contributed to Berkeley by
8 1.1 ad * Ralph Campbell and Rick Macklem.
9 1.1 ad *
10 1.1 ad * Redistribution and use in source and binary forms, with or without
11 1.1 ad * modification, are permitted provided that the following conditions
12 1.1 ad * are met:
13 1.1 ad * 1. Redistributions of source code must retain the above copyright
14 1.1 ad * notice, this list of conditions and the following disclaimer.
15 1.1 ad * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 ad * notice, this list of conditions and the following disclaimer in the
17 1.1 ad * documentation and/or other materials provided with the distribution.
18 1.1 ad * 3. All advertising materials mentioning features or use of this software
19 1.1 ad * must display the following acknowledgement:
20 1.1 ad * This product includes software developed by the University of
21 1.1 ad * California, Berkeley and its contributors.
22 1.1 ad * 4. Neither the name of the University nor the names of its contributors
23 1.1 ad * may be used to endorse or promote products derived from this software
24 1.1 ad * without specific prior written permission.
25 1.1 ad *
26 1.1 ad * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
27 1.1 ad * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
28 1.1 ad * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
29 1.1 ad * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
30 1.1 ad * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
31 1.1 ad * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
32 1.1 ad * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
33 1.1 ad * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
34 1.1 ad * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
35 1.1 ad * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
36 1.1 ad * SUCH DAMAGE.
37 1.1 ad */
38 1.1 ad
39 1.1 ad #include <sys/cdefs.h>
40 1.9 jdolecek __KERNEL_RCSID(0, "$NetBSD: dz.c,v 1.9 2002/10/23 09:13:09 jdolecek Exp $");
41 1.1 ad
42 1.1 ad #include "opt_ddb.h"
43 1.1 ad
44 1.1 ad #include <sys/param.h>
45 1.1 ad #include <sys/systm.h>
46 1.1 ad #include <sys/callout.h>
47 1.1 ad #include <sys/ioctl.h>
48 1.1 ad #include <sys/tty.h>
49 1.1 ad #include <sys/proc.h>
50 1.1 ad #include <sys/buf.h>
51 1.1 ad #include <sys/conf.h>
52 1.1 ad #include <sys/file.h>
53 1.1 ad #include <sys/uio.h>
54 1.1 ad #include <sys/kernel.h>
55 1.1 ad #include <sys/syslog.h>
56 1.1 ad #include <sys/device.h>
57 1.1 ad
58 1.1 ad #include <machine/bus.h>
59 1.1 ad
60 1.1 ad #include <dev/dec/dzreg.h>
61 1.1 ad #include <dev/dec/dzvar.h>
62 1.1 ad
63 1.1 ad #define DZ_READ_BYTE(adr) \
64 1.1 ad bus_space_read_1(sc->sc_iot, sc->sc_ioh, sc->sc_dr.adr)
65 1.1 ad #define DZ_READ_WORD(adr) \
66 1.1 ad bus_space_read_2(sc->sc_iot, sc->sc_ioh, sc->sc_dr.adr)
67 1.1 ad #define DZ_WRITE_BYTE(adr, val) \
68 1.1 ad bus_space_write_1(sc->sc_iot, sc->sc_ioh, sc->sc_dr.adr, val)
69 1.1 ad #define DZ_WRITE_WORD(adr, val) \
70 1.1 ad bus_space_write_2(sc->sc_iot, sc->sc_ioh, sc->sc_dr.adr, val)
71 1.1 ad
72 1.1 ad #include "ioconf.h"
73 1.1 ad
74 1.1 ad /* Flags used to monitor modem bits, make them understood outside driver */
75 1.1 ad
76 1.1 ad #define DML_DTR TIOCM_DTR
77 1.1 ad #define DML_DCD TIOCM_CD
78 1.1 ad #define DML_RI TIOCM_RI
79 1.1 ad #define DML_BRK 0100000 /* no equivalent, we will mask */
80 1.1 ad
81 1.1 ad static struct speedtab dzspeedtab[] =
82 1.1 ad {
83 1.1 ad { 0, 0 },
84 1.1 ad { 50, DZ_LPR_B50 },
85 1.1 ad { 75, DZ_LPR_B75 },
86 1.1 ad { 110, DZ_LPR_B110 },
87 1.1 ad { 134, DZ_LPR_B134 },
88 1.1 ad { 150, DZ_LPR_B150 },
89 1.1 ad { 300, DZ_LPR_B300 },
90 1.1 ad { 600, DZ_LPR_B600 },
91 1.1 ad { 1200, DZ_LPR_B1200 },
92 1.1 ad { 1800, DZ_LPR_B1800 },
93 1.1 ad { 2000, DZ_LPR_B2000 },
94 1.1 ad { 2400, DZ_LPR_B2400 },
95 1.1 ad { 3600, DZ_LPR_B3600 },
96 1.1 ad { 4800, DZ_LPR_B4800 },
97 1.1 ad { 7200, DZ_LPR_B7200 },
98 1.1 ad { 9600, DZ_LPR_B9600 },
99 1.1 ad { 19200, DZ_LPR_B19200 },
100 1.1 ad { -1, -1 }
101 1.1 ad };
102 1.1 ad
103 1.1 ad static void dzstart(struct tty *);
104 1.1 ad static int dzparam(struct tty *, struct termios *);
105 1.1 ad static unsigned dzmctl(struct dz_softc *, int, int, int);
106 1.1 ad static void dzscan(void *);
107 1.3 gehenna
108 1.3 gehenna dev_type_open(dzopen);
109 1.3 gehenna dev_type_close(dzclose);
110 1.3 gehenna dev_type_read(dzread);
111 1.3 gehenna dev_type_write(dzwrite);
112 1.3 gehenna dev_type_ioctl(dzioctl);
113 1.3 gehenna dev_type_stop(dzstop);
114 1.3 gehenna dev_type_tty(dztty);
115 1.3 gehenna dev_type_poll(dzpoll);
116 1.3 gehenna
117 1.3 gehenna const struct cdevsw dz_cdevsw = {
118 1.3 gehenna dzopen, dzclose, dzread, dzwrite, dzioctl,
119 1.9 jdolecek dzstop, dztty, dzpoll, nommap, ttykqfilter, D_TTY
120 1.3 gehenna };
121 1.1 ad
122 1.1 ad /*
123 1.1 ad * The DZ series doesn't interrupt on carrier transitions,
124 1.1 ad * so we have to use a timer to watch it.
125 1.1 ad */
126 1.1 ad int dz_timer; /* true if timer started */
127 1.1 ad struct callout dzscan_ch;
128 1.1 ad
129 1.1 ad void
130 1.7 ad dzattach(struct dz_softc *sc, struct evcnt *parent_evcnt, int consline)
131 1.1 ad {
132 1.1 ad int n;
133 1.1 ad
134 1.1 ad sc->sc_rxint = sc->sc_brk = 0;
135 1.7 ad sc->sc_consline = consline;
136 1.1 ad
137 1.1 ad sc->sc_dr.dr_tcrw = sc->sc_dr.dr_tcr;
138 1.1 ad DZ_WRITE_WORD(dr_csr, DZ_CSR_MSE | DZ_CSR_RXIE | DZ_CSR_TXIE);
139 1.1 ad DZ_WRITE_BYTE(dr_dtr, 0);
140 1.1 ad DZ_WRITE_BYTE(dr_break, 0);
141 1.1 ad
142 1.1 ad /* Initialize our softc structure. Should be done in open? */
143 1.1 ad
144 1.4 ad for (n = 0; n < sc->sc_type; n++) {
145 1.6 ad sc->sc_dz[n].dz_sc = sc;
146 1.4 ad sc->sc_dz[n].dz_line = n;
147 1.1 ad sc->sc_dz[n].dz_tty = ttymalloc();
148 1.4 ad }
149 1.1 ad
150 1.1 ad evcnt_attach_dynamic(&sc->sc_rintrcnt, EVCNT_TYPE_INTR, parent_evcnt,
151 1.1 ad sc->sc_dev.dv_xname, "rintr");
152 1.1 ad evcnt_attach_dynamic(&sc->sc_tintrcnt, EVCNT_TYPE_INTR, parent_evcnt,
153 1.1 ad sc->sc_dev.dv_xname, "tintr");
154 1.1 ad
155 1.1 ad /* Alas no interrupt on modem bit changes, so we manually scan */
156 1.1 ad
157 1.1 ad if (dz_timer == 0) {
158 1.1 ad dz_timer = 1;
159 1.1 ad callout_init(&dzscan_ch);
160 1.1 ad callout_reset(&dzscan_ch, hz, dzscan, NULL);
161 1.1 ad }
162 1.1 ad printf("\n");
163 1.1 ad }
164 1.1 ad
165 1.1 ad /* Receiver Interrupt */
166 1.1 ad
167 1.1 ad void
168 1.1 ad dzrint(void *arg)
169 1.1 ad {
170 1.1 ad struct dz_softc *sc = arg;
171 1.1 ad struct tty *tp;
172 1.1 ad int cc, line;
173 1.1 ad unsigned c;
174 1.1 ad int overrun = 0;
175 1.1 ad
176 1.1 ad sc->sc_rxint++;
177 1.1 ad
178 1.1 ad while ((c = DZ_READ_WORD(dr_rbuf)) & DZ_RBUF_DATA_VALID) {
179 1.1 ad cc = c & 0xFF;
180 1.1 ad line = DZ_PORT(c>>8);
181 1.1 ad tp = sc->sc_dz[line].dz_tty;
182 1.1 ad
183 1.1 ad /* Must be caught early */
184 1.1 ad if (sc->sc_dz[line].dz_catch &&
185 1.1 ad (*sc->sc_dz[line].dz_catch)(sc->sc_dz[line].dz_private, cc))
186 1.1 ad continue;
187 1.1 ad
188 1.1 ad if (!(tp->t_state & TS_ISOPEN)) {
189 1.1 ad wakeup((caddr_t)&tp->t_rawq);
190 1.1 ad continue;
191 1.1 ad }
192 1.1 ad
193 1.1 ad if ((c & DZ_RBUF_OVERRUN_ERR) && overrun == 0) {
194 1.1 ad log(LOG_WARNING, "%s: silo overflow, line %d\n",
195 1.1 ad sc->sc_dev.dv_xname, line);
196 1.1 ad overrun = 1;
197 1.1 ad }
198 1.7 ad #if defined(pmax) && defined(DDB)
199 1.7 ad else if (line == sc->sc_consline) {
200 1.7 ad /*
201 1.7 ad * A BREAK key will appear as a NUL with a framing
202 1.7 ad * error.
203 1.7 ad */
204 1.7 ad if (cc == 0 && (c & DZ_RBUF_FRAMING_ERR) != 0)
205 1.7 ad Debugger();
206 1.7 ad }
207 1.7 ad #endif
208 1.1 ad if (c & DZ_RBUF_FRAMING_ERR)
209 1.1 ad cc |= TTY_FE;
210 1.1 ad if (c & DZ_RBUF_PARITY_ERR)
211 1.1 ad cc |= TTY_PE;
212 1.1 ad
213 1.1 ad (*tp->t_linesw->l_rint)(cc, tp);
214 1.1 ad }
215 1.1 ad }
216 1.1 ad
217 1.1 ad /* Transmitter Interrupt */
218 1.1 ad
219 1.1 ad void
220 1.1 ad dzxint(void *arg)
221 1.1 ad {
222 1.1 ad struct dz_softc *sc = arg;
223 1.1 ad struct tty *tp;
224 1.1 ad struct clist *cl;
225 1.1 ad int line, ch, csr;
226 1.1 ad u_char tcr;
227 1.1 ad
228 1.1 ad /*
229 1.1 ad * Switch to POLLED mode.
230 1.1 ad * Some simple measurements indicated that even on
231 1.1 ad * one port, by freeing the scanner in the controller
232 1.1 ad * by either providing a character or turning off
233 1.1 ad * the port when output is complete, the transmitter
234 1.1 ad * was ready to accept more output when polled again.
235 1.1 ad * With just two ports running the game "worms,"
236 1.1 ad * almost every interrupt serviced both transmitters!
237 1.1 ad * Each UART is double buffered, so if the scanner
238 1.1 ad * is quick enough and timing works out, we can even
239 1.1 ad * feed the same port twice.
240 1.1 ad *
241 1.1 ad * Ragge 980517:
242 1.1 ad * Do not need to turn off interrupts, already at interrupt level.
243 1.1 ad * Remove the pdma stuff; no great need of it right now.
244 1.1 ad */
245 1.1 ad
246 1.1 ad while (((csr = DZ_READ_WORD(dr_csr)) & DZ_CSR_TX_READY) != 0) {
247 1.1 ad
248 1.1 ad line = DZ_PORT(csr>>8);
249 1.1 ad
250 1.1 ad tp = sc->sc_dz[line].dz_tty;
251 1.1 ad cl = &tp->t_outq;
252 1.1 ad tp->t_state &= ~TS_BUSY;
253 1.1 ad
254 1.1 ad /* Just send out a char if we have one */
255 1.1 ad /* As long as we can fill the chip buffer, we just loop here */
256 1.1 ad if (cl->c_cc) {
257 1.1 ad tp->t_state |= TS_BUSY;
258 1.1 ad ch = getc(cl);
259 1.1 ad DZ_WRITE_BYTE(dr_tbuf, ch);
260 1.1 ad continue;
261 1.1 ad }
262 1.1 ad /* Nothing to send; clear the scan bit */
263 1.1 ad /* Clear xmit scanner bit; dzstart may set it again */
264 1.1 ad tcr = DZ_READ_WORD(dr_tcrw);
265 1.1 ad tcr &= 255;
266 1.1 ad tcr &= ~(1 << line);
267 1.1 ad DZ_WRITE_BYTE(dr_tcr, tcr);
268 1.1 ad if (sc->sc_dz[line].dz_catch)
269 1.1 ad continue;
270 1.1 ad
271 1.1 ad if (tp->t_state & TS_FLUSH)
272 1.1 ad tp->t_state &= ~TS_FLUSH;
273 1.1 ad else
274 1.1 ad ndflush (&tp->t_outq, cl->c_cc);
275 1.1 ad
276 1.1 ad (*tp->t_linesw->l_start)(tp);
277 1.1 ad }
278 1.1 ad }
279 1.1 ad
280 1.1 ad int
281 1.1 ad dzopen(dev_t dev, int flag, int mode, struct proc *p)
282 1.1 ad {
283 1.1 ad struct tty *tp;
284 1.1 ad int unit, line;
285 1.1 ad struct dz_softc *sc;
286 1.1 ad int s, error = 0;
287 1.1 ad
288 1.1 ad unit = DZ_I2C(minor(dev));
289 1.1 ad line = DZ_PORT(minor(dev));
290 1.1 ad if (unit >= dz_cd.cd_ndevs || dz_cd.cd_devs[unit] == NULL)
291 1.1 ad return (ENXIO);
292 1.1 ad
293 1.1 ad sc = dz_cd.cd_devs[unit];
294 1.1 ad
295 1.1 ad if (line >= sc->sc_type)
296 1.1 ad return ENXIO;
297 1.1 ad
298 1.1 ad /* if some other device is using the line, it's busy */
299 1.1 ad if (sc->sc_dz[line].dz_catch)
300 1.1 ad return EBUSY;
301 1.1 ad
302 1.1 ad tp = sc->sc_dz[line].dz_tty;
303 1.1 ad if (tp == NULL)
304 1.1 ad return (ENODEV);
305 1.1 ad tp->t_oproc = dzstart;
306 1.1 ad tp->t_param = dzparam;
307 1.1 ad tp->t_dev = dev;
308 1.1 ad if ((tp->t_state & TS_ISOPEN) == 0) {
309 1.1 ad ttychars(tp);
310 1.1 ad if (tp->t_ispeed == 0) {
311 1.1 ad tp->t_iflag = TTYDEF_IFLAG;
312 1.1 ad tp->t_oflag = TTYDEF_OFLAG;
313 1.1 ad tp->t_cflag = TTYDEF_CFLAG;
314 1.1 ad tp->t_lflag = TTYDEF_LFLAG;
315 1.1 ad tp->t_ispeed = tp->t_ospeed = TTYDEF_SPEED;
316 1.1 ad }
317 1.1 ad (void) dzparam(tp, &tp->t_termios);
318 1.1 ad ttsetwater(tp);
319 1.1 ad } else if ((tp->t_state & TS_XCLUDE) && p->p_ucred->cr_uid != 0)
320 1.1 ad return (EBUSY);
321 1.1 ad /* Use DMBIS and *not* DMSET or else we clobber incoming bits */
322 1.1 ad if (dzmctl(sc, line, DML_DTR, DMBIS) & DML_DCD)
323 1.1 ad tp->t_state |= TS_CARR_ON;
324 1.1 ad s = spltty();
325 1.1 ad while (!(flag & O_NONBLOCK) && !(tp->t_cflag & CLOCAL) &&
326 1.1 ad !(tp->t_state & TS_CARR_ON)) {
327 1.1 ad tp->t_wopen++;
328 1.1 ad error = ttysleep(tp, (caddr_t)&tp->t_rawq,
329 1.1 ad TTIPRI | PCATCH, ttopen, 0);
330 1.1 ad tp->t_wopen--;
331 1.1 ad if (error)
332 1.1 ad break;
333 1.1 ad }
334 1.1 ad (void) splx(s);
335 1.1 ad if (error)
336 1.1 ad return (error);
337 1.1 ad return ((*tp->t_linesw->l_open)(dev, tp));
338 1.1 ad }
339 1.1 ad
340 1.1 ad /*ARGSUSED*/
341 1.1 ad int
342 1.1 ad dzclose(dev_t dev, int flag, int mode, struct proc *p)
343 1.1 ad {
344 1.1 ad struct dz_softc *sc;
345 1.1 ad struct tty *tp;
346 1.1 ad int unit, line;
347 1.1 ad
348 1.1 ad
349 1.1 ad unit = DZ_I2C(minor(dev));
350 1.1 ad line = DZ_PORT(minor(dev));
351 1.1 ad sc = dz_cd.cd_devs[unit];
352 1.1 ad
353 1.1 ad tp = sc->sc_dz[line].dz_tty;
354 1.1 ad
355 1.1 ad (*tp->t_linesw->l_close)(tp, flag);
356 1.1 ad
357 1.1 ad /* Make sure a BREAK state is not left enabled. */
358 1.1 ad (void) dzmctl(sc, line, DML_BRK, DMBIC);
359 1.1 ad
360 1.1 ad /* Do a hangup if so required. */
361 1.1 ad if ((tp->t_cflag & HUPCL) || tp->t_wopen || !(tp->t_state & TS_ISOPEN))
362 1.1 ad (void) dzmctl(sc, line, 0, DMSET);
363 1.1 ad
364 1.1 ad return (ttyclose(tp));
365 1.1 ad }
366 1.1 ad
367 1.1 ad int
368 1.1 ad dzread(dev_t dev, struct uio *uio, int flag)
369 1.1 ad {
370 1.1 ad struct tty *tp;
371 1.1 ad struct dz_softc *sc;
372 1.1 ad
373 1.1 ad sc = dz_cd.cd_devs[DZ_I2C(minor(dev))];
374 1.1 ad
375 1.1 ad tp = sc->sc_dz[DZ_PORT(minor(dev))].dz_tty;
376 1.1 ad return ((*tp->t_linesw->l_read)(tp, uio, flag));
377 1.1 ad }
378 1.1 ad
379 1.1 ad int
380 1.1 ad dzwrite(dev_t dev, struct uio *uio, int flag)
381 1.1 ad {
382 1.1 ad struct tty *tp;
383 1.1 ad struct dz_softc *sc;
384 1.1 ad
385 1.1 ad sc = dz_cd.cd_devs[DZ_I2C(minor(dev))];
386 1.1 ad
387 1.1 ad tp = sc->sc_dz[DZ_PORT(minor(dev))].dz_tty;
388 1.1 ad return ((*tp->t_linesw->l_write)(tp, uio, flag));
389 1.1 ad }
390 1.1 ad
391 1.1 ad int
392 1.1 ad dzpoll(dev, events, p)
393 1.1 ad dev_t dev;
394 1.1 ad int events;
395 1.1 ad struct proc *p;
396 1.1 ad {
397 1.1 ad struct tty *tp;
398 1.1 ad struct dz_softc *sc;
399 1.1 ad
400 1.1 ad sc = dz_cd.cd_devs[DZ_I2C(minor(dev))];
401 1.1 ad
402 1.1 ad tp = sc->sc_dz[DZ_PORT(minor(dev))].dz_tty;
403 1.1 ad return ((*tp->t_linesw->l_poll)(tp, events, p));
404 1.1 ad }
405 1.1 ad
406 1.1 ad /*ARGSUSED*/
407 1.1 ad int
408 1.1 ad dzioctl(dev_t dev, u_long cmd, caddr_t data, int flag, struct proc *p)
409 1.1 ad {
410 1.1 ad struct dz_softc *sc;
411 1.1 ad struct tty *tp;
412 1.1 ad int unit, line;
413 1.1 ad int error;
414 1.1 ad
415 1.1 ad unit = DZ_I2C(minor(dev));
416 1.1 ad line = DZ_PORT(minor(dev));
417 1.1 ad sc = dz_cd.cd_devs[unit];
418 1.1 ad tp = sc->sc_dz[line].dz_tty;
419 1.1 ad
420 1.1 ad error = (*tp->t_linesw->l_ioctl)(tp, cmd, data, flag, p);
421 1.1 ad if (error >= 0)
422 1.1 ad return (error);
423 1.2 atatat
424 1.1 ad error = ttioctl(tp, cmd, data, flag, p);
425 1.1 ad if (error >= 0)
426 1.1 ad return (error);
427 1.1 ad
428 1.1 ad switch (cmd) {
429 1.1 ad
430 1.1 ad case TIOCSBRK:
431 1.1 ad (void) dzmctl(sc, line, DML_BRK, DMBIS);
432 1.1 ad break;
433 1.1 ad
434 1.1 ad case TIOCCBRK:
435 1.1 ad (void) dzmctl(sc, line, DML_BRK, DMBIC);
436 1.1 ad break;
437 1.1 ad
438 1.1 ad case TIOCSDTR:
439 1.1 ad (void) dzmctl(sc, line, DML_DTR, DMBIS);
440 1.1 ad break;
441 1.1 ad
442 1.1 ad case TIOCCDTR:
443 1.1 ad (void) dzmctl(sc, line, DML_DTR, DMBIC);
444 1.1 ad break;
445 1.1 ad
446 1.1 ad case TIOCMSET:
447 1.1 ad (void) dzmctl(sc, line, *(int *)data, DMSET);
448 1.1 ad break;
449 1.1 ad
450 1.1 ad case TIOCMBIS:
451 1.1 ad (void) dzmctl(sc, line, *(int *)data, DMBIS);
452 1.1 ad break;
453 1.1 ad
454 1.1 ad case TIOCMBIC:
455 1.1 ad (void) dzmctl(sc, line, *(int *)data, DMBIC);
456 1.1 ad break;
457 1.1 ad
458 1.1 ad case TIOCMGET:
459 1.1 ad *(int *)data = (dzmctl(sc, line, 0, DMGET) & ~DML_BRK);
460 1.1 ad break;
461 1.1 ad
462 1.1 ad default:
463 1.2 atatat return (EPASSTHROUGH);
464 1.1 ad }
465 1.1 ad return (0);
466 1.1 ad }
467 1.1 ad
468 1.1 ad struct tty *
469 1.1 ad dztty(dev_t dev)
470 1.1 ad {
471 1.1 ad struct dz_softc *sc = dz_cd.cd_devs[DZ_I2C(minor(dev))];
472 1.1 ad struct tty *tp = sc->sc_dz[DZ_PORT(minor(dev))].dz_tty;
473 1.1 ad
474 1.1 ad return (tp);
475 1.1 ad }
476 1.1 ad
477 1.1 ad /*ARGSUSED*/
478 1.1 ad void
479 1.1 ad dzstop(struct tty *tp, int flag)
480 1.1 ad {
481 1.1 ad if (tp->t_state & TS_BUSY)
482 1.1 ad if (!(tp->t_state & TS_TTSTOP))
483 1.1 ad tp->t_state |= TS_FLUSH;
484 1.1 ad }
485 1.1 ad
486 1.1 ad void
487 1.1 ad dzstart(struct tty *tp)
488 1.1 ad {
489 1.1 ad struct dz_softc *sc;
490 1.1 ad struct clist *cl;
491 1.1 ad int unit, line, s;
492 1.1 ad char state;
493 1.1 ad
494 1.1 ad unit = DZ_I2C(minor(tp->t_dev));
495 1.1 ad line = DZ_PORT(minor(tp->t_dev));
496 1.1 ad sc = dz_cd.cd_devs[unit];
497 1.1 ad
498 1.1 ad s = spltty();
499 1.1 ad if (tp->t_state & (TS_TIMEOUT|TS_BUSY|TS_TTSTOP))
500 1.1 ad return;
501 1.1 ad cl = &tp->t_outq;
502 1.1 ad if (cl->c_cc <= tp->t_lowat) {
503 1.1 ad if (tp->t_state & TS_ASLEEP) {
504 1.1 ad tp->t_state &= ~TS_ASLEEP;
505 1.1 ad wakeup((caddr_t)cl);
506 1.1 ad }
507 1.1 ad selwakeup(&tp->t_wsel);
508 1.1 ad }
509 1.1 ad if (cl->c_cc == 0)
510 1.1 ad return;
511 1.1 ad
512 1.1 ad tp->t_state |= TS_BUSY;
513 1.1 ad
514 1.1 ad state = DZ_READ_WORD(dr_tcrw) & 255;
515 1.1 ad if ((state & (1 << line)) == 0) {
516 1.1 ad DZ_WRITE_BYTE(dr_tcr, state | (1 << line));
517 1.1 ad }
518 1.1 ad dzxint(sc);
519 1.1 ad splx(s);
520 1.1 ad }
521 1.1 ad
522 1.1 ad static int
523 1.1 ad dzparam(struct tty *tp, struct termios *t)
524 1.1 ad {
525 1.1 ad struct dz_softc *sc;
526 1.1 ad int cflag = t->c_cflag;
527 1.1 ad int unit, line;
528 1.1 ad int ispeed = ttspeedtab(t->c_ispeed, dzspeedtab);
529 1.1 ad int ospeed = ttspeedtab(t->c_ospeed, dzspeedtab);
530 1.1 ad unsigned lpr;
531 1.1 ad int s;
532 1.1 ad
533 1.1 ad unit = DZ_I2C(minor(tp->t_dev));
534 1.1 ad line = DZ_PORT(minor(tp->t_dev));
535 1.1 ad sc = dz_cd.cd_devs[unit];
536 1.1 ad
537 1.1 ad /* check requested parameters */
538 1.1 ad if (ospeed < 0 || ispeed < 0 || ispeed != ospeed)
539 1.1 ad return (EINVAL);
540 1.1 ad
541 1.1 ad tp->t_ispeed = t->c_ispeed;
542 1.1 ad tp->t_ospeed = t->c_ospeed;
543 1.1 ad tp->t_cflag = cflag;
544 1.1 ad
545 1.1 ad if (ospeed == 0) {
546 1.1 ad (void) dzmctl(sc, line, 0, DMSET); /* hang up line */
547 1.1 ad return (0);
548 1.1 ad }
549 1.1 ad
550 1.1 ad s = spltty();
551 1.1 ad
552 1.1 ad lpr = DZ_LPR_RX_ENABLE | ((ispeed&0xF)<<8) | line;
553 1.1 ad
554 1.1 ad switch (cflag & CSIZE)
555 1.1 ad {
556 1.1 ad case CS5:
557 1.1 ad lpr |= DZ_LPR_5_BIT_CHAR;
558 1.1 ad break;
559 1.1 ad case CS6:
560 1.1 ad lpr |= DZ_LPR_6_BIT_CHAR;
561 1.1 ad break;
562 1.1 ad case CS7:
563 1.1 ad lpr |= DZ_LPR_7_BIT_CHAR;
564 1.1 ad break;
565 1.1 ad default:
566 1.1 ad lpr |= DZ_LPR_8_BIT_CHAR;
567 1.1 ad break;
568 1.1 ad }
569 1.1 ad if (cflag & PARENB)
570 1.1 ad lpr |= DZ_LPR_PARENB;
571 1.1 ad if (cflag & PARODD)
572 1.1 ad lpr |= DZ_LPR_OPAR;
573 1.1 ad if (cflag & CSTOPB)
574 1.1 ad lpr |= DZ_LPR_2_STOP;
575 1.1 ad
576 1.1 ad DZ_WRITE_WORD(dr_lpr, lpr);
577 1.1 ad
578 1.1 ad (void) splx(s);
579 1.1 ad return (0);
580 1.1 ad }
581 1.1 ad
582 1.1 ad static unsigned
583 1.1 ad dzmctl(struct dz_softc *sc, int line, int bits, int how)
584 1.1 ad {
585 1.1 ad unsigned status;
586 1.1 ad unsigned mbits;
587 1.1 ad unsigned bit;
588 1.1 ad int s;
589 1.1 ad
590 1.1 ad s = spltty();
591 1.1 ad
592 1.1 ad mbits = 0;
593 1.1 ad
594 1.1 ad bit = (1 << line);
595 1.1 ad
596 1.1 ad /* external signals as seen from the port */
597 1.1 ad
598 1.1 ad status = DZ_READ_BYTE(dr_dcd) | sc->sc_dsr;
599 1.1 ad
600 1.1 ad if (status & bit)
601 1.1 ad mbits |= DML_DCD;
602 1.1 ad
603 1.1 ad status = DZ_READ_BYTE(dr_ring);
604 1.1 ad
605 1.1 ad if (status & bit)
606 1.1 ad mbits |= DML_RI;
607 1.1 ad
608 1.1 ad /* internal signals/state delivered to port */
609 1.1 ad
610 1.1 ad status = DZ_READ_BYTE(dr_dtr);
611 1.1 ad
612 1.1 ad if (status & bit)
613 1.1 ad mbits |= DML_DTR;
614 1.1 ad
615 1.1 ad if (sc->sc_brk & bit)
616 1.1 ad mbits |= DML_BRK;
617 1.1 ad
618 1.1 ad switch (how)
619 1.1 ad {
620 1.1 ad case DMSET:
621 1.1 ad mbits = bits;
622 1.1 ad break;
623 1.1 ad
624 1.1 ad case DMBIS:
625 1.1 ad mbits |= bits;
626 1.1 ad break;
627 1.1 ad
628 1.1 ad case DMBIC:
629 1.1 ad mbits &= ~bits;
630 1.1 ad break;
631 1.1 ad
632 1.1 ad case DMGET:
633 1.1 ad (void) splx(s);
634 1.1 ad return (mbits);
635 1.1 ad }
636 1.1 ad
637 1.1 ad if (mbits & DML_DTR) {
638 1.1 ad DZ_WRITE_BYTE(dr_dtr, DZ_READ_BYTE(dr_dtr) | bit);
639 1.1 ad } else {
640 1.1 ad DZ_WRITE_BYTE(dr_dtr, DZ_READ_BYTE(dr_dtr) & ~bit);
641 1.1 ad }
642 1.1 ad
643 1.1 ad if (mbits & DML_BRK) {
644 1.1 ad sc->sc_brk |= bit;
645 1.1 ad DZ_WRITE_BYTE(dr_break, sc->sc_brk);
646 1.1 ad } else {
647 1.1 ad sc->sc_brk &= ~bit;
648 1.1 ad DZ_WRITE_BYTE(dr_break, sc->sc_brk);
649 1.1 ad }
650 1.1 ad
651 1.1 ad (void) splx(s);
652 1.1 ad return (mbits);
653 1.1 ad }
654 1.1 ad
655 1.1 ad /*
656 1.1 ad * This is called by timeout() periodically.
657 1.1 ad * Check to see if modem status bits have changed.
658 1.1 ad */
659 1.1 ad static void
660 1.1 ad dzscan(void *arg)
661 1.1 ad {
662 1.1 ad struct dz_softc *sc;
663 1.1 ad struct tty *tp;
664 1.1 ad int n, bit, port;
665 1.1 ad unsigned csr;
666 1.1 ad int s;
667 1.1 ad
668 1.1 ad s = spltty();
669 1.1 ad
670 1.1 ad for (n = 0; n < dz_cd.cd_ndevs; n++) {
671 1.1 ad
672 1.1 ad if (dz_cd.cd_devs[n] == NULL)
673 1.1 ad continue;
674 1.1 ad
675 1.1 ad sc = dz_cd.cd_devs[n];
676 1.1 ad
677 1.1 ad for (port = 0; port < sc->sc_type; port++) {
678 1.1 ad
679 1.1 ad tp = sc->sc_dz[port].dz_tty;
680 1.1 ad bit = (1 << port);
681 1.1 ad
682 1.1 ad if ((DZ_READ_BYTE(dr_dcd) | sc->sc_dsr) & bit) {
683 1.1 ad if (!(tp->t_state & TS_CARR_ON))
684 1.1 ad (*tp->t_linesw->l_modem) (tp, 1);
685 1.1 ad } else if ((tp->t_state & TS_CARR_ON) &&
686 1.1 ad (*tp->t_linesw->l_modem)(tp, 0) == 0) {
687 1.1 ad DZ_WRITE_BYTE(dr_tcr,
688 1.1 ad (DZ_READ_WORD(dr_tcrw) & 255) & ~bit);
689 1.1 ad }
690 1.1 ad }
691 1.1 ad
692 1.1 ad /*
693 1.1 ad * If the RX interrupt rate is this high, switch
694 1.1 ad * the controller to Silo Alarm - which means don't
695 1.1 ad * interrupt until the RX silo has 16 characters in
696 1.1 ad * it (the silo is 64 characters in all).
697 1.1 ad * Avoid oscillating SA on and off by not turning
698 1.1 ad * if off unless the rate is appropriately low.
699 1.1 ad */
700 1.1 ad
701 1.1 ad csr = DZ_READ_WORD(dr_csr);
702 1.1 ad
703 1.1 ad if (sc->sc_rxint > (16*10)) {
704 1.1 ad if ((csr & DZ_CSR_SAE) == 0)
705 1.1 ad DZ_WRITE_WORD(dr_csr, csr | DZ_CSR_SAE);
706 1.1 ad } else if ((csr & DZ_CSR_SAE) != 0)
707 1.1 ad if (sc->sc_rxint < 10)
708 1.1 ad DZ_WRITE_WORD(dr_csr, csr & ~(DZ_CSR_SAE));
709 1.1 ad
710 1.1 ad sc->sc_rxint = 0;
711 1.1 ad }
712 1.1 ad (void) splx(s);
713 1.1 ad callout_reset(&dzscan_ch, hz, dzscan, NULL);
714 1.1 ad }
715 1.1 ad
716 1.1 ad /*
717 1.1 ad * Called after an ubareset. The DZ card is reset, but the only thing
718 1.1 ad * that must be done is to start the receiver and transmitter again.
719 1.1 ad * No DMA setup to care about.
720 1.1 ad */
721 1.1 ad void
722 1.1 ad dzreset(struct device *dev)
723 1.1 ad {
724 1.1 ad struct dz_softc *sc = (void *)dev;
725 1.1 ad struct tty *tp;
726 1.1 ad int i;
727 1.1 ad
728 1.1 ad for (i = 0; i < sc->sc_type; i++) {
729 1.1 ad tp = sc->sc_dz[i].dz_tty;
730 1.1 ad
731 1.1 ad if (((tp->t_state & TS_ISOPEN) == 0) || (tp->t_wopen == 0))
732 1.1 ad continue;
733 1.1 ad
734 1.1 ad dzparam(tp, &tp->t_termios);
735 1.1 ad dzmctl(sc, i, DML_DTR, DMSET);
736 1.1 ad tp->t_state &= ~TS_BUSY;
737 1.1 ad dzstart(tp); /* Kick off transmitter again */
738 1.1 ad }
739 1.1 ad }
740