zs.c revision 1.1 1 1.1 chuck /* $NetBSD: zs.c,v 1.1 1995/07/25 23:12:07 chuck Exp $ */
2 1.1 chuck
3 1.1 chuck /*
4 1.1 chuck * Copyright (c) 1993 Paul Mackerras.
5 1.1 chuck * All rights reserved.
6 1.1 chuck *
7 1.1 chuck * Redistribution and use in source and binary forms, with or without
8 1.1 chuck * modification, are permitted provided that the following conditions
9 1.1 chuck * are met:
10 1.1 chuck * 1. Redistributions of source code must retain the above copyright
11 1.1 chuck * notice, this list of conditions and the following disclaimer.
12 1.1 chuck * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 chuck * notice, this list of conditions and the following disclaimer in the
14 1.1 chuck * documentation and/or other materials provided with the distribution.
15 1.1 chuck * 3. The name of the author may not be used to endorse or promote products
16 1.1 chuck * derived from this software withough specific prior written permission
17 1.1 chuck *
18 1.1 chuck * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
19 1.1 chuck * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
20 1.1 chuck * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
21 1.1 chuck * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
22 1.1 chuck * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
23 1.1 chuck * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
24 1.1 chuck * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
25 1.1 chuck * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
26 1.1 chuck * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
27 1.1 chuck * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
28 1.1 chuck */
29 1.1 chuck /*
30 1.1 chuck * Serial I/O via an SCC,
31 1.1 chuck */
32 1.1 chuck #include <sys/param.h>
33 1.1 chuck #include <sys/conf.h>
34 1.1 chuck #include <sys/ioctl.h>
35 1.1 chuck #include <sys/proc.h>
36 1.1 chuck #include <sys/user.h>
37 1.1 chuck #include <sys/tty.h>
38 1.1 chuck #include <sys/uio.h>
39 1.1 chuck #include <sys/callout.h>
40 1.1 chuck #include <sys/systm.h>
41 1.1 chuck #include <sys/kernel.h>
42 1.1 chuck #include <sys/syslog.h>
43 1.1 chuck #include <sys/fcntl.h>
44 1.1 chuck #include <sys/device.h>
45 1.1 chuck #include <machine/cpu.h>
46 1.1 chuck #include <dev/cons.h>
47 1.1 chuck #include <mvme68k/dev/iio.h>
48 1.1 chuck #include <mvme68k/dev/scc.h>
49 1.1 chuck #include <mvme68k/dev/pccreg.h>
50 1.1 chuck
51 1.1 chuck #include "zs.h"
52 1.1 chuck #if NZS > 0
53 1.1 chuck
54 1.1 chuck /*#define PCLK_FREQ 8333333*/
55 1.1 chuck #undef PCLK_FREQ /* XXXCDC */
56 1.1 chuck #define PCLK_FREQ 5000000
57 1.1 chuck #define NZSLINE (NZS*2)
58 1.1 chuck
59 1.1 chuck #define RECV_BUF 512
60 1.1 chuck #define ERROR_DET 0xed
61 1.1 chuck
62 1.1 chuck #define TS_DRAIN TS_FLUSH/* waiting for output to drain */
63 1.1 chuck
64 1.1 chuck #define splzs() spl4()
65 1.1 chuck
66 1.1 chuck struct zs {
67 1.1 chuck short flags; /* see below */
68 1.1 chuck char rr0; /* holds previous CTS, DCD state */
69 1.1 chuck unsigned char imask; /* mask for input chars */
70 1.1 chuck int nzs_open; /* # opens as /dev/zsn */
71 1.1 chuck int nkbd_open; /* # opens as a keyboard */
72 1.1 chuck int gsp_unit; /* unit to send kbd chars to */
73 1.1 chuck struct tty *tty; /* link to tty structure */
74 1.1 chuck struct sccregs scc; /* SCC shadow registers */
75 1.1 chuck u_char *rcv_get;
76 1.1 chuck u_char *rcv_put;
77 1.1 chuck u_char *rcv_end;
78 1.1 chuck volatile int rcv_count;
79 1.1 chuck int rcv_len;
80 1.1 chuck char *send_ptr;
81 1.1 chuck int send_count;
82 1.1 chuck int sent_count;
83 1.1 chuck volatile char modem_state;
84 1.1 chuck volatile char modem_change;
85 1.1 chuck volatile short hflags;
86 1.1 chuck char rcv_buf[RECV_BUF];
87 1.1 chuck };
88 1.1 chuck
89 1.1 chuck /* Bits in flags */
90 1.1 chuck #define ZS_SIDEA 1
91 1.1 chuck #define ZS_INITED 2
92 1.1 chuck #define ZS_INTEN 4
93 1.1 chuck #define ZS_RESET 8
94 1.1 chuck #define ZS_CONSOLE 0x20
95 1.1 chuck
96 1.1 chuck /* Bits in hflags */
97 1.1 chuck #define ZH_OBLOCK 1 /* output blocked by CTS */
98 1.1 chuck #define ZH_SIRQ 2 /* soft interrupt request */
99 1.1 chuck #define ZH_TXING 4 /* transmitter active */
100 1.1 chuck #define ZH_RXOVF 8 /* receiver buffer overflow */
101 1.1 chuck
102 1.1 chuck struct zssoftc {
103 1.1 chuck struct device dev;
104 1.1 chuck struct zs zs[2];
105 1.1 chuck };
106 1.1 chuck
107 1.1 chuck struct tty *zs_tty[NZSLINE];
108 1.1 chuck
109 1.1 chuck struct termios zs_cons_termios;
110 1.1 chuck int zs_cons_unit = 0;
111 1.1 chuck int zs_is_console = 0;
112 1.1 chuck struct sccregs *zs_cons_scc;
113 1.1 chuck
114 1.1 chuck int zsopen __P((dev_t, int, int, struct proc *));
115 1.1 chuck void zsstart __P((struct tty *));
116 1.1 chuck int zsparam __P((struct tty *, struct termios *));
117 1.1 chuck int zsirq __P((int unit));
118 1.1 chuck void zs_softint __P((void));
119 1.1 chuck
120 1.1 chuck unsigned long sir_zs;
121 1.1 chuck void zs_softint();
122 1.1 chuck
123 1.1 chuck #define zsunit(dev) (minor(dev) >> 1)
124 1.1 chuck #define zsside(dev) (minor(dev) & 1)
125 1.1 chuck
126 1.1 chuck /*
127 1.1 chuck * Autoconfiguration stuff.
128 1.1 chuck */
129 1.1 chuck void zsattach __P((struct device *, struct device *, void *));
130 1.1 chuck int zsmatch __P((struct device *, void *, void *));
131 1.1 chuck
132 1.1 chuck struct cfdriver zscd = {
133 1.1 chuck NULL, "zs", zsmatch, zsattach, DV_TTY, sizeof(struct zssoftc), 0
134 1.1 chuck };
135 1.1 chuck
136 1.1 chuck int
137 1.1 chuck zsmatch(parent, vcf, args)
138 1.1 chuck struct device *parent;
139 1.1 chuck void *vcf, *args;
140 1.1 chuck {
141 1.1 chuck struct cfdata *cf = vcf;
142 1.1 chuck
143 1.1 chuck return !badbaddr((caddr_t) IIO_CFLOC_ADDR(cf));
144 1.1 chuck }
145 1.1 chuck
146 1.1 chuck void
147 1.1 chuck zsattach(parent, self, args)
148 1.1 chuck struct device *parent, *self;
149 1.1 chuck void *args;
150 1.1 chuck {
151 1.1 chuck struct zssoftc *dv;
152 1.1 chuck struct zs *zp, *zc;
153 1.1 chuck u_char ir;
154 1.1 chuck volatile struct scc *scc;
155 1.1 chuck int zs_level = IIO_CFLOC_LEVEL(self->dv_cfdata);
156 1.1 chuck
157 1.1 chuck iio_print(self->dv_cfdata);
158 1.1 chuck
159 1.1 chuck /* connect the interrupt */
160 1.1 chuck dv = (struct zssoftc *) self;
161 1.1 chuck pccintr_establish(PCCV_ZS, zsirq, zs_level, self->dv_unit);
162 1.1 chuck /* XXXCDC: needs some work to handle zs1 */
163 1.1 chuck
164 1.1 chuck zp = &dv->zs[0];
165 1.1 chuck scc = (volatile struct scc *) IIO_CFLOC_ADDR(self->dv_cfdata);
166 1.1 chuck
167 1.1 chuck if (zs_is_console && self->dv_unit == zsunit(zs_cons_unit)) {
168 1.1 chuck /* SCC is the console - it's already reset */
169 1.1 chuck zc = zp + zsside(zs_cons_unit);
170 1.1 chuck zc->scc = *zs_cons_scc;
171 1.1 chuck zs_cons_scc = &zc->scc;
172 1.1 chuck zc->flags |= ZS_CONSOLE;
173 1.1 chuck } else {
174 1.1 chuck /* reset the SCC */
175 1.1 chuck scc->cr = 0;
176 1.1 chuck scc->cr = 9;
177 1.1 chuck scc->cr = 0xC0; /* hardware reset of SCC, both sides */
178 1.1 chuck }
179 1.1 chuck
180 1.1 chuck /* side A */
181 1.1 chuck zp->scc.s_adr = scc + 1;
182 1.1 chuck zp->flags |= ZS_SIDEA | ZS_RESET;
183 1.1 chuck
184 1.1 chuck /* side B */
185 1.1 chuck ++zp;
186 1.1 chuck zp->scc.s_adr = scc;
187 1.1 chuck zp->flags |= ZS_RESET;
188 1.1 chuck
189 1.1 chuck if (sir_zs == 0)
190 1.1 chuck sir_zs = allocate_sir(zs_softint, 0);
191 1.1 chuck printf("\n");
192 1.1 chuck
193 1.1 chuck ir = sys_pcc->zs_int;
194 1.1 chuck if ((ir & PCC_IMASK) != 0 && (ir & PCC_IMASK) != zs_level)
195 1.1 chuck panic("zs configured at different IPLs");
196 1.1 chuck sys_pcc->zs_int = zs_level | PCC_IENABLE | PCC_ZSEXTERN;
197 1.1 chuck }
198 1.1 chuck
199 1.1 chuck zs_ttydef(struct zs *zp)
200 1.1 chuck {
201 1.1 chuck struct tty *tp = zp->tty;
202 1.1 chuck
203 1.1 chuck if ((zp->flags & ZS_CONSOLE) == 0) {
204 1.1 chuck tp->t_iflag = TTYDEF_IFLAG;
205 1.1 chuck tp->t_oflag = TTYDEF_OFLAG;
206 1.1 chuck tp->t_cflag = TTYDEF_CFLAG;
207 1.1 chuck tp->t_lflag = TTYDEF_LFLAG;
208 1.1 chuck tp->t_ispeed = tp->t_ospeed = TTYDEF_SPEED;
209 1.1 chuck } else
210 1.1 chuck tp->t_termios = zs_cons_termios;
211 1.1 chuck ttychars(tp);
212 1.1 chuck ttsetwater(tp);
213 1.1 chuck tp->t_oproc = zsstart;
214 1.1 chuck tp->t_param = zsparam;
215 1.1 chuck
216 1.1 chuck zp->rcv_get = zp->rcv_buf;
217 1.1 chuck zp->rcv_put = zp->rcv_buf;
218 1.1 chuck zp->rcv_end = zp->rcv_buf + sizeof(zp->rcv_buf);
219 1.1 chuck zp->rcv_len = sizeof(zp->rcv_buf) / 2;
220 1.1 chuck }
221 1.1 chuck
222 1.1 chuck struct tty *
223 1.1 chuck zstty(dev)
224 1.1 chuck dev_t dev;
225 1.1 chuck {
226 1.1 chuck
227 1.1 chuck if (minor(dev) < NZSLINE)
228 1.1 chuck return (zs_tty[minor(dev)]);
229 1.1 chuck
230 1.1 chuck return (NULL);
231 1.1 chuck }
232 1.1 chuck
233 1.1 chuck /* ARGSUSED */
234 1.1 chuck zsopen(dev_t dev, int flag, int mode, struct proc * p)
235 1.1 chuck {
236 1.1 chuck register struct tty *tp;
237 1.1 chuck int error;
238 1.1 chuck struct zs *zp;
239 1.1 chuck struct zssoftc *dv;
240 1.1 chuck
241 1.1 chuck if (zsunit(dev) > zscd.cd_ndevs
242 1.1 chuck || (dv = (struct zssoftc *) zscd.cd_devs[zsunit(dev)]) == NULL)
243 1.1 chuck return ENODEV;
244 1.1 chuck
245 1.1 chuck zp = &dv->zs[zsside(dev)];
246 1.1 chuck if (zp->tty == NULL) {
247 1.1 chuck zp->tty = ttymalloc();
248 1.1 chuck zs_ttydef(zp);
249 1.1 chuck if (minor(dev) < NZSLINE)
250 1.1 chuck zs_tty[minor(dev)] = zp->tty;
251 1.1 chuck }
252 1.1 chuck tp = zp->tty;
253 1.1 chuck tp->t_dev = dev;
254 1.1 chuck
255 1.1 chuck if ((tp->t_state & TS_ISOPEN) == 0) {
256 1.1 chuck tp->t_state |= TS_WOPEN;
257 1.1 chuck zs_init(zp);
258 1.1 chuck if ((zp->modem_state & SCC_DCD) != 0)
259 1.1 chuck tp->t_state |= TS_CARR_ON;
260 1.1 chuck } else
261 1.1 chuck if (tp->t_state & TS_XCLUDE && p->p_ucred->cr_uid != 0)
262 1.1 chuck return (EBUSY);
263 1.1 chuck
264 1.1 chuck error = ((*linesw[tp->t_line].l_open) (dev, tp));
265 1.1 chuck
266 1.1 chuck if (error == 0)
267 1.1 chuck ++zp->nzs_open;
268 1.1 chuck return error;
269 1.1 chuck }
270 1.1 chuck
271 1.1 chuck int
272 1.1 chuck zsclose(dev, flag, mode, p)
273 1.1 chuck dev_t dev;
274 1.1 chuck int flag, mode;
275 1.1 chuck struct proc *p;
276 1.1 chuck {
277 1.1 chuck struct zs *zp;
278 1.1 chuck struct tty *tp;
279 1.1 chuck struct zssoftc *dv;
280 1.1 chuck int s;
281 1.1 chuck
282 1.1 chuck if (zsunit(dev) > zscd.cd_ndevs
283 1.1 chuck || (dv = (struct zssoftc *) zscd.cd_devs[zsunit(dev)]) == NULL)
284 1.1 chuck return ENODEV;
285 1.1 chuck zp = &dv->zs[zsside(dev)];
286 1.1 chuck tp = zp->tty;
287 1.1 chuck
288 1.1 chuck if (zp->nkbd_open == 0) {
289 1.1 chuck (*linesw[tp->t_line].l_close) (tp, flag);
290 1.1 chuck s = splzs();
291 1.1 chuck if ((zp->flags & ZS_CONSOLE) == 0 && (tp->t_cflag & HUPCL) != 0)
292 1.1 chuck ZBIC(&zp->scc, 5, 0x82); /* drop DTR, RTS */
293 1.1 chuck ZBIC(&zp->scc, 3, 1); /* disable receiver */
294 1.1 chuck splx(s);
295 1.1 chuck ttyclose(tp);
296 1.1 chuck }
297 1.1 chuck zp->nzs_open = 0;
298 1.1 chuck return (0);
299 1.1 chuck }
300 1.1 chuck
301 1.1 chuck /*ARGSUSED*/
302 1.1 chuck zsread(dev, uio, flag)
303 1.1 chuck dev_t dev;
304 1.1 chuck struct uio *uio;
305 1.1 chuck int flag;
306 1.1 chuck {
307 1.1 chuck struct zssoftc *dv = (struct zssoftc *) zscd.cd_devs[zsunit(dev)];
308 1.1 chuck struct zs *zp = &dv->zs[zsside(dev)];
309 1.1 chuck struct tty *tp = zp->tty;
310 1.1 chuck
311 1.1 chuck return ((*linesw[tp->t_line].l_read) (tp, uio, flag));
312 1.1 chuck }
313 1.1 chuck
314 1.1 chuck /*ARGSUSED*/
315 1.1 chuck zswrite(dev, uio, flag)
316 1.1 chuck dev_t dev;
317 1.1 chuck struct uio *uio;
318 1.1 chuck int flag;
319 1.1 chuck {
320 1.1 chuck struct zssoftc *dv = (struct zssoftc *) zscd.cd_devs[zsunit(dev)];
321 1.1 chuck struct zs *zp = &dv->zs[zsside(dev)];
322 1.1 chuck struct tty *tp = zp->tty;
323 1.1 chuck
324 1.1 chuck return ((*linesw[tp->t_line].l_write) (tp, uio, flag));
325 1.1 chuck }
326 1.1 chuck
327 1.1 chuck zsioctl(dev, cmd, data, flag, p)
328 1.1 chuck dev_t dev;
329 1.1 chuck caddr_t data;
330 1.1 chuck int cmd, flag;
331 1.1 chuck struct proc *p;
332 1.1 chuck {
333 1.1 chuck struct zssoftc *dv = (struct zssoftc *) zscd.cd_devs[zsunit(dev)];
334 1.1 chuck struct zs *zp = &dv->zs[zsside(dev)];
335 1.1 chuck struct tty *tp = zp->tty;
336 1.1 chuck register struct sccregs *scc = &zp->scc;
337 1.1 chuck register int error, s;
338 1.1 chuck
339 1.1 chuck error = (*linesw[tp->t_line].l_ioctl) (tp, cmd, data, flag, p);
340 1.1 chuck if (error >= 0)
341 1.1 chuck return (error);
342 1.1 chuck error = ttioctl(tp, cmd, data, flag, p);
343 1.1 chuck if (error >= 0)
344 1.1 chuck return (error);
345 1.1 chuck error = 0;
346 1.1 chuck s = splzs();
347 1.1 chuck switch (cmd) {
348 1.1 chuck case TIOCSDTR:
349 1.1 chuck ZBIS(scc, 5, 0x80);
350 1.1 chuck break;
351 1.1 chuck case TIOCCDTR:
352 1.1 chuck ZBIC(scc, 5, 0x80);
353 1.1 chuck break;
354 1.1 chuck case TIOCSBRK:
355 1.1 chuck splx(s);
356 1.1 chuck zs_drain(zp);
357 1.1 chuck s = splzs();
358 1.1 chuck ZBIS(scc, 5, 0x10);
359 1.1 chuck spltty();
360 1.1 chuck zs_unblock(tp);
361 1.1 chuck break;
362 1.1 chuck case TIOCCBRK:
363 1.1 chuck ZBIC(scc, 5, 0x10);
364 1.1 chuck break;
365 1.1 chuck case TIOCMGET:
366 1.1 chuck *(int *) data = zscc_mget(scc);
367 1.1 chuck break;
368 1.1 chuck case TIOCMSET:
369 1.1 chuck zscc_mset(scc, *(int *) data);
370 1.1 chuck zscc_mclr(scc, ~*(int *) data);
371 1.1 chuck break;
372 1.1 chuck case TIOCMBIS:
373 1.1 chuck zscc_mset(scc, *(int *) data);
374 1.1 chuck break;
375 1.1 chuck case TIOCMBIC:
376 1.1 chuck zscc_mclr(scc, *(int *) data);
377 1.1 chuck break;
378 1.1 chuck default:
379 1.1 chuck error = ENOTTY;
380 1.1 chuck }
381 1.1 chuck splx(s);
382 1.1 chuck return error;
383 1.1 chuck }
384 1.1 chuck
385 1.1 chuck zsparam(tp, t)
386 1.1 chuck struct tty *tp;
387 1.1 chuck struct termios *t;
388 1.1 chuck {
389 1.1 chuck struct zssoftc *dv = (struct zssoftc *) zscd.cd_devs[zsunit(tp->t_dev)];
390 1.1 chuck struct zs *zp = &dv->zs[zsside(tp->t_dev)];
391 1.1 chuck register int s;
392 1.1 chuck
393 1.1 chuck zs_drain(zp);
394 1.1 chuck s = splzs();
395 1.1 chuck zp->imask = zscc_params(&zp->scc, t);
396 1.1 chuck tp->t_ispeed = t->c_ispeed;
397 1.1 chuck tp->t_ospeed = t->c_ospeed;
398 1.1 chuck tp->t_cflag = t->c_cflag;
399 1.1 chuck if ((tp->t_cflag & CCTS_OFLOW) == 0)
400 1.1 chuck zp->hflags &= ~ZH_OBLOCK;
401 1.1 chuck else
402 1.1 chuck if ((zp->modem_state & 0x20) == 0)
403 1.1 chuck zp->hflags |= ZH_OBLOCK;
404 1.1 chuck spltty();
405 1.1 chuck zs_unblock(tp);
406 1.1 chuck splx(s);
407 1.1 chuck return 0;
408 1.1 chuck }
409 1.1 chuck
410 1.1 chuck void
411 1.1 chuck zsstart(tp)
412 1.1 chuck struct tty *tp;
413 1.1 chuck {
414 1.1 chuck struct zssoftc *dv = (struct zssoftc *) zscd.cd_devs[zsunit(tp->t_dev)];
415 1.1 chuck struct zs *zp = &dv->zs[zsside(tp->t_dev)];
416 1.1 chuck register int s, n;
417 1.1 chuck
418 1.1 chuck s = spltty();
419 1.1 chuck if ((tp->t_state & (TS_TIMEOUT | TS_BUSY | TS_TTSTOP | TS_DRAIN)) == 0) {
420 1.1 chuck n = ndqb(&tp->t_outq, 0);
421 1.1 chuck if (n > 0) {
422 1.1 chuck tp->t_state |= TS_BUSY;
423 1.1 chuck splzs();
424 1.1 chuck zp->hflags |= ZH_TXING;
425 1.1 chuck zp->send_ptr = tp->t_outq.c_cf;
426 1.1 chuck zp->send_count = n;
427 1.1 chuck zp->sent_count = 0;
428 1.1 chuck zs_txint(zp);
429 1.1 chuck spltty();
430 1.1 chuck }
431 1.1 chuck }
432 1.1 chuck splx(s);
433 1.1 chuck }
434 1.1 chuck
435 1.1 chuck zsstop(struct tty * tp, int flag)
436 1.1 chuck {
437 1.1 chuck struct zssoftc *dv = (struct zssoftc *) zscd.cd_devs[zsunit(tp->t_dev)];
438 1.1 chuck struct zs *zp = &dv->zs[zsside(tp->t_dev)];
439 1.1 chuck int s, n;
440 1.1 chuck
441 1.1 chuck s = splzs();
442 1.1 chuck zp->send_count = 0;
443 1.1 chuck n = zp->sent_count;
444 1.1 chuck zp->sent_count = 0;
445 1.1 chuck if ((tp->t_state & TS_BUSY) != 0 && (flag & FWRITE) == 0) {
446 1.1 chuck tp->t_state &= ~TS_BUSY;
447 1.1 chuck spltty();
448 1.1 chuck ndflush(&tp->t_outq, n);
449 1.1 chuck if (tp->t_outq.c_cc <= tp->t_lowat) {
450 1.1 chuck if (tp->t_state & TS_ASLEEP) {
451 1.1 chuck tp->t_state &= ~TS_ASLEEP;
452 1.1 chuck wakeup((caddr_t) & tp->t_outq);
453 1.1 chuck }
454 1.1 chuck selwakeup(&tp->t_wsel);
455 1.1 chuck }
456 1.1 chuck }
457 1.1 chuck splx(s);
458 1.1 chuck }
459 1.1 chuck
460 1.1 chuck zs_init(zp)
461 1.1 chuck struct zs *zp;
462 1.1 chuck {
463 1.1 chuck register int s;
464 1.1 chuck
465 1.1 chuck s = splzs();
466 1.1 chuck zscc_init(zp, &zp->tty->t_termios);
467 1.1 chuck zp->rr0 = zp->modem_state = ZREAD0(&zp->scc);
468 1.1 chuck ZBIS(&zp->scc, 1, 0x13);/* ints on tx, rx and ext/status */
469 1.1 chuck ZBIS(&zp->scc, 9, 8); /* enable ints */
470 1.1 chuck zp->flags |= ZS_INTEN;
471 1.1 chuck splx(s);
472 1.1 chuck }
473 1.1 chuck
474 1.1 chuck zscc_init(zp, par)
475 1.1 chuck struct zs *zp;
476 1.1 chuck struct termios *par;
477 1.1 chuck {
478 1.1 chuck struct sccregs *scc;
479 1.1 chuck
480 1.1 chuck scc = &zp->scc;
481 1.1 chuck ZWRITE(scc, 2, 0);
482 1.1 chuck ZWRITE(scc, 10, 0);
483 1.1 chuck ZWRITE(scc, 11, 0x50); /* rx & tx clock = brgen */
484 1.1 chuck ZWRITE(scc, 14, 3); /* brgen enabled, from pclk */
485 1.1 chuck zp->imask = zscc_params(scc, par);
486 1.1 chuck ZBIS(scc, 5, 0x82); /* set DTR and RTS */
487 1.1 chuck zp->flags |= ZS_INITED;
488 1.1 chuck }
489 1.1 chuck
490 1.1 chuck int
491 1.1 chuck zscc_params(scc, par)
492 1.1 chuck struct sccregs *scc;
493 1.1 chuck struct termios *par;
494 1.1 chuck {
495 1.1 chuck unsigned divisor, speed;
496 1.1 chuck int spd, imask, ints;
497 1.1 chuck
498 1.1 chuck speed = par->c_ospeed;
499 1.1 chuck if (speed == 0) {
500 1.1 chuck /* disconnect - drop DTR & RTS, disable receiver */
501 1.1 chuck ZBIC(scc, 5, 0x82);
502 1.1 chuck ZBIC(scc, 3, 1);
503 1.1 chuck return 0xFF;
504 1.1 chuck }
505 1.1 chuck if ((par->c_cflag & CREAD) == 0)
506 1.1 chuck ZBIC(scc, 3, 1);/* disable receiver */
507 1.1 chuck divisor = (PCLK_FREQ / 32 + (speed >> 1)) / speed - 2;
508 1.1 chuck ZWRITE(scc, 12, divisor);
509 1.1 chuck ZWRITE(scc, 13, divisor >> 8);
510 1.1 chuck switch (par->c_cflag & CSIZE) {
511 1.1 chuck case CS5:
512 1.1 chuck spd = 0;
513 1.1 chuck imask = 0x1F;
514 1.1 chuck break;
515 1.1 chuck case CS6:
516 1.1 chuck spd = 0x40;
517 1.1 chuck imask = 0x3F;
518 1.1 chuck break;
519 1.1 chuck case CS7:
520 1.1 chuck spd = 0x20;
521 1.1 chuck imask = 0x7F;
522 1.1 chuck break;
523 1.1 chuck default:
524 1.1 chuck spd = 0x60;
525 1.1 chuck imask = 0xFF;
526 1.1 chuck }
527 1.1 chuck ZWRITE(scc, 5, (scc->s_val[5] & ~0x60) | spd);
528 1.1 chuck ZWRITE(scc, 3, (scc->s_val[3] & ~0xC0) | (spd << 1));
529 1.1 chuck spd = par->c_cflag & CSTOPB ? 8 : 0;
530 1.1 chuck spd |= par->c_cflag & PARENB ? par->c_cflag & PARODD ? 1 : 3 : 0;
531 1.1 chuck ZWRITE(scc, 4, 0x44 | spd);
532 1.1 chuck ZBIS(scc, 5, 8); /* enable transmitter */
533 1.1 chuck if ((par->c_cflag & CREAD) != 0)
534 1.1 chuck ZBIS(scc, 3, 1);/* enable receiver */
535 1.1 chuck ints = 0;
536 1.1 chuck if ((par->c_cflag & CLOCAL) == 0)
537 1.1 chuck ints |= SCC_DCD;
538 1.1 chuck if ((par->c_cflag & CCTS_OFLOW) != 0)
539 1.1 chuck ints |= SCC_CTS;
540 1.1 chuck ZWRITE(scc, 15, ints);
541 1.1 chuck return imask;
542 1.1 chuck }
543 1.1 chuck
544 1.1 chuck zscc_mget(register struct sccregs * scc)
545 1.1 chuck {
546 1.1 chuck int bits = 0, rr0;
547 1.1 chuck
548 1.1 chuck if ((scc->s_val[3] & SCC_RCVEN) != 0)
549 1.1 chuck bits |= TIOCM_LE;
550 1.1 chuck if ((scc->s_val[5] & SCC_DTR) != 0)
551 1.1 chuck bits |= TIOCM_DTR;
552 1.1 chuck if ((scc->s_val[5] & SCC_RTS) != 0)
553 1.1 chuck bits |= TIOCM_RTS;
554 1.1 chuck rr0 = ZREAD0(scc);
555 1.1 chuck if ((rr0 & SCC_CTS) != 0)
556 1.1 chuck bits |= TIOCM_CTS;
557 1.1 chuck if ((rr0 & SCC_DCD) != 0)
558 1.1 chuck bits |= TIOCM_CAR;
559 1.1 chuck return bits;
560 1.1 chuck }
561 1.1 chuck
562 1.1 chuck zscc_mset(register struct sccregs * scc, int bits)
563 1.1 chuck {
564 1.1 chuck if ((bits & TIOCM_LE) != 0)
565 1.1 chuck ZBIS(scc, 3, SCC_RCVEN);
566 1.1 chuck if ((bits & TIOCM_DTR) != 0)
567 1.1 chuck ZBIS(scc, 5, SCC_DTR);
568 1.1 chuck if ((bits & TIOCM_RTS) != 0)
569 1.1 chuck ZBIS(scc, 5, SCC_RTS);
570 1.1 chuck }
571 1.1 chuck
572 1.1 chuck zscc_mclr(register struct sccregs * scc, int bits)
573 1.1 chuck {
574 1.1 chuck if ((bits & TIOCM_LE) != 0)
575 1.1 chuck ZBIC(scc, 3, SCC_RCVEN);
576 1.1 chuck if ((bits & TIOCM_DTR) != 0)
577 1.1 chuck ZBIC(scc, 5, TIOCM_DTR);
578 1.1 chuck if ((bits & TIOCM_RTS) != 0)
579 1.1 chuck ZBIC(scc, 5, SCC_RTS);
580 1.1 chuck }
581 1.1 chuck
582 1.1 chuck zs_drain(register struct zs * zp)
583 1.1 chuck {
584 1.1 chuck register int s;
585 1.1 chuck
586 1.1 chuck zp->tty->t_state |= TS_DRAIN;
587 1.1 chuck /* wait for Tx buffer empty and All sent bits to be set */
588 1.1 chuck s = splzs();
589 1.1 chuck while ((ZREAD0(&zp->scc) & SCC_TXRDY) == 0
590 1.1 chuck || (ZREAD(&zp->scc, 1) & 1) == 0) {
591 1.1 chuck splx(s);
592 1.1 chuck DELAY(100);
593 1.1 chuck s = splzs();
594 1.1 chuck }
595 1.1 chuck splx(s);
596 1.1 chuck }
597 1.1 chuck
598 1.1 chuck zs_unblock(register struct tty * tp)
599 1.1 chuck {
600 1.1 chuck tp->t_state &= ~TS_DRAIN;
601 1.1 chuck if (tp->t_outq.c_cc != 0)
602 1.1 chuck zsstart(tp);
603 1.1 chuck }
604 1.1 chuck
605 1.1 chuck /*
606 1.1 chuck * Hardware interrupt from an SCC.
607 1.1 chuck */
608 1.1 chuck int
609 1.1 chuck zsirq(int unit)
610 1.1 chuck {
611 1.1 chuck struct zssoftc *dv = (struct zssoftc *) zscd.cd_devs[unit];
612 1.1 chuck register struct zs *zp = &dv->zs[0];
613 1.1 chuck register int ipend, x;
614 1.1 chuck register volatile struct scc *scc;
615 1.1 chuck
616 1.1 chuck x = splzs();
617 1.1 chuck scc = zp->scc.s_adr;
618 1.1 chuck scc->cr = 3; /* read int pending from A side */
619 1.1 chuck DELAY(5);
620 1.1 chuck ipend = scc->cr;
621 1.1 chuck if ((ipend & 0x20) != 0)
622 1.1 chuck zs_rxint(zp);
623 1.1 chuck if ((ipend & 0x10) != 0)
624 1.1 chuck zs_txint(zp);
625 1.1 chuck if ((ipend & 0x8) != 0)
626 1.1 chuck zs_extint(zp);
627 1.1 chuck ++zp; /* now look for B side ints */
628 1.1 chuck if ((ipend & 0x4) != 0)
629 1.1 chuck zs_rxint(zp);
630 1.1 chuck if ((ipend & 0x2) != 0)
631 1.1 chuck zs_txint(zp);
632 1.1 chuck if ((ipend & 0x1) != 0)
633 1.1 chuck zs_extint(zp);
634 1.1 chuck splx(x);
635 1.1 chuck return ipend != 0;
636 1.1 chuck }
637 1.1 chuck
638 1.1 chuck zs_txint(register struct zs * zp)
639 1.1 chuck {
640 1.1 chuck struct tty *tp = zp->tty;
641 1.1 chuck struct sccregs *scc;
642 1.1 chuck int c;
643 1.1 chuck u_char *get;
644 1.1 chuck
645 1.1 chuck scc = &zp->scc;
646 1.1 chuck ZWRITE0(scc, 0x28); /* reset Tx interrupt */
647 1.1 chuck if ((zp->hflags & ZH_OBLOCK) == 0) {
648 1.1 chuck get = zp->send_ptr;
649 1.1 chuck while ((ZREAD0(scc) & SCC_TXRDY) != 0 && zp->send_count > 0) {
650 1.1 chuck c = *get++;
651 1.1 chuck ZWRITED(scc, c);
652 1.1 chuck --zp->send_count;
653 1.1 chuck ++zp->sent_count;
654 1.1 chuck }
655 1.1 chuck zp->send_ptr = get;
656 1.1 chuck if (zp->send_count == 0 && (zp->hflags & ZH_TXING) != 0) {
657 1.1 chuck zp->hflags &= ~ZH_TXING;
658 1.1 chuck zp->hflags |= ZH_SIRQ;
659 1.1 chuck setsoftint(sir_zs);
660 1.1 chuck }
661 1.1 chuck }
662 1.1 chuck }
663 1.1 chuck
664 1.1 chuck zs_rxint(register struct zs * zp)
665 1.1 chuck {
666 1.1 chuck register int stat, c, n, extra;
667 1.1 chuck u_char *put;
668 1.1 chuck
669 1.1 chuck put = zp->rcv_put;
670 1.1 chuck n = zp->rcv_count;
671 1.1 chuck for (;;) {
672 1.1 chuck if ((ZREAD0(&zp->scc) & SCC_RXFULL) == 0) /* check Rx full */
673 1.1 chuck break;
674 1.1 chuck stat = ZREAD(&zp->scc, 1) & 0x70;
675 1.1 chuck c = ZREADD(&zp->scc) & zp->imask;
676 1.1 chuck /* stat encodes parity, overrun, framing errors */
677 1.1 chuck if (stat != 0)
678 1.1 chuck ZWRITE0(&zp->scc, 0x30); /* reset error */
679 1.1 chuck if ((zp->hflags & ZH_RXOVF) != 0) {
680 1.1 chuck zp->hflags &= ~ZH_RXOVF;
681 1.1 chuck stat |= 0x20;
682 1.1 chuck }
683 1.1 chuck extra = (stat != 0 || c == ERROR_DET) ? 2 : 0;
684 1.1 chuck if (n + extra + 1 < zp->rcv_len) {
685 1.1 chuck if (extra != 0) {
686 1.1 chuck *put++ = ERROR_DET;
687 1.1 chuck if (put >= zp->rcv_end)
688 1.1 chuck put = zp->rcv_buf;
689 1.1 chuck *put++ = stat;
690 1.1 chuck if (put >= zp->rcv_end)
691 1.1 chuck put = zp->rcv_buf;
692 1.1 chuck n += 2;
693 1.1 chuck }
694 1.1 chuck *put++ = c;
695 1.1 chuck if (put >= zp->rcv_end)
696 1.1 chuck put = zp->rcv_buf;
697 1.1 chuck ++n;
698 1.1 chuck } else
699 1.1 chuck zp->hflags |= ZH_RXOVF;
700 1.1 chuck }
701 1.1 chuck if (n > zp->rcv_count) {
702 1.1 chuck zp->rcv_put = put;
703 1.1 chuck zp->rcv_count = n;
704 1.1 chuck zp->hflags |= ZH_SIRQ;
705 1.1 chuck setsoftint(sir_zs);
706 1.1 chuck }
707 1.1 chuck }
708 1.1 chuck
709 1.1 chuck /* Ext/status interrupt */
710 1.1 chuck zs_extint(register struct zs * zp)
711 1.1 chuck {
712 1.1 chuck int rr0;
713 1.1 chuck struct tty *tp = zp->tty;
714 1.1 chuck
715 1.1 chuck rr0 = ZREAD0(&zp->scc);
716 1.1 chuck ZWRITE0(&zp->scc, 0x10);/* reset ext/status int */
717 1.1 chuck if ((tp->t_cflag & CCTS_OFLOW) != 0) {
718 1.1 chuck if ((rr0 & 0x20) == 0)
719 1.1 chuck zp->hflags |= ZH_OBLOCK;
720 1.1 chuck else {
721 1.1 chuck zp->hflags &= ~ZH_OBLOCK;
722 1.1 chuck if ((rr0 & SCC_TXRDY) != 0)
723 1.1 chuck zs_txint(zp);
724 1.1 chuck }
725 1.1 chuck }
726 1.1 chuck zp->modem_change |= rr0 ^ zp->modem_state;
727 1.1 chuck zp->modem_state = rr0;
728 1.1 chuck zp->hflags |= ZH_SIRQ;
729 1.1 chuck setsoftint(sir_zs);
730 1.1 chuck }
731 1.1 chuck
732 1.1 chuck void
733 1.1 chuck zs_softint()
734 1.1 chuck {
735 1.1 chuck int s, n, n0, c, stat, rr0;
736 1.1 chuck struct zs *zp;
737 1.1 chuck struct tty *tp;
738 1.1 chuck u_char *get;
739 1.1 chuck int unit, side;
740 1.1 chuck
741 1.1 chuck s = splzs();
742 1.1 chuck for (unit = 0; unit < zscd.cd_ndevs; ++unit) {
743 1.1 chuck if (zscd.cd_devs[unit] == NULL)
744 1.1 chuck continue;
745 1.1 chuck zp = &((struct zssoftc *) zscd.cd_devs[unit])->zs[0];
746 1.1 chuck for (side = 0; side < 2; ++side, ++zp) {
747 1.1 chuck if ((zp->hflags & ZH_SIRQ) == 0)
748 1.1 chuck continue;
749 1.1 chuck zp->hflags &= ~ZH_SIRQ;
750 1.1 chuck tp = zp->tty;
751 1.1 chuck
752 1.1 chuck /* check for tx done */
753 1.1 chuck spltty();
754 1.1 chuck if (tp != NULL && zp->send_count == 0
755 1.1 chuck && (tp->t_state & TS_BUSY) != 0) {
756 1.1 chuck tp->t_state &= ~(TS_BUSY | TS_FLUSH);
757 1.1 chuck ndflush(&tp->t_outq, zp->sent_count);
758 1.1 chuck if (tp->t_outq.c_cc <= tp->t_lowat) {
759 1.1 chuck if (tp->t_state & TS_ASLEEP) {
760 1.1 chuck tp->t_state &= ~TS_ASLEEP;
761 1.1 chuck wakeup((caddr_t) & tp->t_outq);
762 1.1 chuck }
763 1.1 chuck selwakeup(&tp->t_wsel);
764 1.1 chuck }
765 1.1 chuck if (tp->t_line != 0)
766 1.1 chuck (*linesw[tp->t_line].l_start) (tp);
767 1.1 chuck else
768 1.1 chuck zsstart(tp);
769 1.1 chuck }
770 1.1 chuck splzs();
771 1.1 chuck
772 1.1 chuck /* check for received characters */
773 1.1 chuck get = zp->rcv_get;
774 1.1 chuck while (zp->rcv_count > 0) {
775 1.1 chuck c = *get++;
776 1.1 chuck if (get >= zp->rcv_end)
777 1.1 chuck get = zp->rcv_buf;
778 1.1 chuck if (c == ERROR_DET) {
779 1.1 chuck stat = *get++;
780 1.1 chuck if (get >= zp->rcv_end)
781 1.1 chuck get = zp->rcv_buf;
782 1.1 chuck c = *get++;
783 1.1 chuck if (get >= zp->rcv_end)
784 1.1 chuck get = zp->rcv_buf;
785 1.1 chuck zp->rcv_count -= 3;
786 1.1 chuck } else {
787 1.1 chuck stat = 0;
788 1.1 chuck --zp->rcv_count;
789 1.1 chuck }
790 1.1 chuck spltty();
791 1.1 chuck if (tp == NULL || (tp->t_state & TS_ISOPEN) == 0)
792 1.1 chuck continue;
793 1.1 chuck if (zp->nzs_open == 0) {
794 1.1 chuck #ifdef notdef
795 1.1 chuck if (stat == 0)
796 1.1 chuck kbd_newchar(zp->gsp_unit, c);
797 1.1 chuck #endif
798 1.1 chuck } else {
799 1.1 chuck if ((stat & 0x10) != 0)
800 1.1 chuck c |= TTY_PE;
801 1.1 chuck if ((stat & 0x20) != 0) {
802 1.1 chuck log(LOG_WARNING, "zs: fifo overflow\n");
803 1.1 chuck c |= TTY_FE; /* need some error for
804 1.1 chuck * slip stuff */
805 1.1 chuck }
806 1.1 chuck if ((stat & 0x40) != 0)
807 1.1 chuck c |= TTY_FE;
808 1.1 chuck (*linesw[tp->t_line].l_rint) (c, tp);
809 1.1 chuck }
810 1.1 chuck splzs();
811 1.1 chuck }
812 1.1 chuck zp->rcv_get = get;
813 1.1 chuck
814 1.1 chuck /* check for modem lines changing */
815 1.1 chuck while (zp->modem_change != 0 || zp->modem_state != zp->rr0) {
816 1.1 chuck rr0 = zp->rr0 ^ zp->modem_change;
817 1.1 chuck zp->modem_change = rr0 ^ zp->modem_state;
818 1.1 chuck
819 1.1 chuck /* Check if DCD (carrier detect) has changed */
820 1.1 chuck if (tp != NULL && (rr0 & 8) != (zp->rr0 & 8)) {
821 1.1 chuck spltty();
822 1.1 chuck ttymodem(tp, rr0 & 8);
823 1.1 chuck /* XXX possibly should disable line if
824 1.1 chuck * return value is 0 */
825 1.1 chuck splzs();
826 1.1 chuck }
827 1.1 chuck zp->rr0 = rr0;
828 1.1 chuck }
829 1.1 chuck }
830 1.1 chuck }
831 1.1 chuck splx(s);
832 1.1 chuck }
833 1.1 chuck
834 1.1 chuck /*
835 1.1 chuck * Routines to divert an SCC channel to the input side of /dev/gsp
836 1.1 chuck * for the keyboard.
837 1.1 chuck */
838 1.1 chuck int
839 1.1 chuck zs_kbdopen(int unit, int gsp_unit, struct termios * tiop, struct proc * p)
840 1.1 chuck {
841 1.1 chuck struct zssoftc *dv = (struct zssoftc *) zscd.cd_devs[zsunit(unit)];
842 1.1 chuck struct zs *zp = &dv->zs[zsside(unit)];
843 1.1 chuck int error;
844 1.1 chuck
845 1.1 chuck error = zsopen(unit, 0, 0, p);
846 1.1 chuck if (error != 0)
847 1.1 chuck return error;
848 1.1 chuck ++zp->nkbd_open;
849 1.1 chuck --zp->nzs_open;
850 1.1 chuck zsparam(zp->tty, tiop);
851 1.1 chuck zp->gsp_unit = gsp_unit;
852 1.1 chuck return 0;
853 1.1 chuck }
854 1.1 chuck
855 1.1 chuck void
856 1.1 chuck zs_kbdclose(int unit)
857 1.1 chuck {
858 1.1 chuck struct zssoftc *dv = (struct zssoftc *) zscd.cd_devs[zsunit(unit)];
859 1.1 chuck struct zs *zp = &dv->zs[zsside(unit)];
860 1.1 chuck
861 1.1 chuck zp->nkbd_open = 0;
862 1.1 chuck if (zp->nzs_open == 0)
863 1.1 chuck zsclose(unit, 0, 0, 0);
864 1.1 chuck }
865 1.1 chuck
866 1.1 chuck void
867 1.1 chuck zs_kbdput(int unit, int c)
868 1.1 chuck {
869 1.1 chuck struct zssoftc *dv = (struct zssoftc *) zscd.cd_devs[zsunit(unit)];
870 1.1 chuck struct zs *zp = &dv->zs[zsside(unit)];
871 1.1 chuck struct tty *tp = zp->tty;
872 1.1 chuck
873 1.1 chuck putc(c, &tp->t_outq);
874 1.1 chuck zsstart(tp);
875 1.1 chuck }
876 1.1 chuck
877 1.1 chuck /*
878 1.1 chuck * Routines for using side A of the first SCC as a console.
879 1.1 chuck */
880 1.1 chuck
881 1.1 chuck /* probe for the SCC; should check hardware */
882 1.1 chuck zscnprobe(cp)
883 1.1 chuck struct consdev *cp;
884 1.1 chuck {
885 1.1 chuck int maj;
886 1.1 chuck char *prom_cons;
887 1.1 chuck extern char *prom_getvar();
888 1.1 chuck
889 1.1 chuck /* locate the major number */
890 1.1 chuck for (maj = 0; maj < nchrdev; maj++)
891 1.1 chuck if (cdevsw[maj].d_open == zsopen)
892 1.1 chuck break;
893 1.1 chuck
894 1.1 chuck /* initialize required fields */
895 1.1 chuck cp->cn_dev = makedev(maj, 0);
896 1.1 chuck cp->cn_pri = CN_NORMAL;
897 1.1 chuck
898 1.1 chuck return 1;
899 1.1 chuck }
900 1.1 chuck
901 1.1 chuck /* initialize the keyboard for use as the console */
902 1.1 chuck struct termios zscn_termios = {
903 1.1 chuck TTYDEF_IFLAG,
904 1.1 chuck TTYDEF_OFLAG,
905 1.1 chuck TTYDEF_CFLAG,
906 1.1 chuck TTYDEF_LFLAG,
907 1.1 chuck {0},
908 1.1 chuck TTYDEF_SPEED,
909 1.1 chuck TTYDEF_SPEED
910 1.1 chuck };
911 1.1 chuck
912 1.1 chuck struct sccregs zs_cons_sccregs;
913 1.1 chuck int zs_cons_imask;
914 1.1 chuck
915 1.1 chuck unsigned zs_cons_addrs[] = {ZS0_PHYS, ZS1_PHYS};
916 1.1 chuck
917 1.1 chuck
918 1.1 chuck zscninit()
919 1.1 chuck {
920 1.1 chuck zs_cnsetup(0, &zscn_termios);
921 1.1 chuck }
922 1.1 chuck
923 1.1 chuck /* Polling routine for console input from a serial port. */
924 1.1 chuck int
925 1.1 chuck zscngetc(dev_t dev)
926 1.1 chuck {
927 1.1 chuck register struct sccregs *scc = zs_cons_scc;
928 1.1 chuck int c, s, stat;
929 1.1 chuck
930 1.1 chuck s = splzs();
931 1.1 chuck for (;;) {
932 1.1 chuck while ((ZREAD0(scc) & SCC_RXFULL) == 0) /* wait for Rx full */
933 1.1 chuck ;
934 1.1 chuck stat = ZREAD(scc, 1) & 0x70;
935 1.1 chuck c = ZREADD(scc) & zs_cons_imask;
936 1.1 chuck /* stat encodes parity, overrun, framing errors */
937 1.1 chuck if (stat == 0)
938 1.1 chuck break;
939 1.1 chuck ZWRITE0(scc, 0x30); /* reset error */
940 1.1 chuck }
941 1.1 chuck splx(s);
942 1.1 chuck return c;
943 1.1 chuck }
944 1.1 chuck
945 1.1 chuck zscnputc(dev_t dev, int c)
946 1.1 chuck {
947 1.1 chuck register struct sccregs *scc = zs_cons_scc;
948 1.1 chuck int s;
949 1.1 chuck
950 1.1 chuck s = splzs();
951 1.1 chuck while ((ZREAD0(scc) & SCC_TXRDY) == 0);
952 1.1 chuck ZWRITED(scc, c);
953 1.1 chuck splx(s);
954 1.1 chuck }
955 1.1 chuck
956 1.1 chuck zs_cnsetup(int unit, struct termios * tiop)
957 1.1 chuck {
958 1.1 chuck register volatile struct scc *scc_adr;
959 1.1 chuck register struct sccregs *scc;
960 1.1 chuck
961 1.1 chuck zs_cons_unit = unit;
962 1.1 chuck zs_is_console = 1;
963 1.1 chuck zs_cons_scc = scc = &zs_cons_sccregs;
964 1.1 chuck
965 1.1 chuck scc_adr = (volatile struct scc *) IIOV(zs_cons_addrs[zsunit(unit)]);
966 1.1 chuck
967 1.1 chuck scc_adr[1].cr = 0;
968 1.1 chuck scc_adr[1].cr = 9;
969 1.1 chuck scc_adr[1].cr = 0xC0; /* hardware reset of SCC, both sides */
970 1.1 chuck if (!zsside(unit))
971 1.1 chuck ++scc_adr;
972 1.1 chuck
973 1.1 chuck scc->s_adr = scc_adr;
974 1.1 chuck ZWRITE(scc, 2, 0);
975 1.1 chuck ZWRITE(scc, 10, 0);
976 1.1 chuck ZWRITE(scc, 11, 0x50); /* rx & tx clock = brgen */
977 1.1 chuck ZWRITE(scc, 14, 3); /* brgen enabled, from pclk */
978 1.1 chuck zs_cons_imask = zscc_params(scc, tiop);
979 1.1 chuck ZBIS(scc, 5, 0x82); /* set DTR and RTS */
980 1.1 chuck
981 1.1 chuck zs_cons_termios = *tiop;/* save for later */
982 1.1 chuck }
983 1.1 chuck
984 1.1 chuck /*
985 1.1 chuck * Routines for using the keyboard SCC as the input side of
986 1.1 chuck * the 'gsp' console device.
987 1.1 chuck */
988 1.1 chuck
989 1.1 chuck /* probe for the keyboard; should check hardware */
990 1.1 chuck zs_kbdcnprobe(cp, unit)
991 1.1 chuck struct consdev *cp;
992 1.1 chuck int unit;
993 1.1 chuck {
994 1.1 chuck return (unsigned) unit < NZSLINE;
995 1.1 chuck }
996 1.1 chuck #endif /* NZS */
997