ms.c revision 1.12 1 1.12 gehenna /* $NetBSD: ms.c,v 1.12 2002/09/06 13:18:43 gehenna Exp $ */
2 1.1 oki
3 1.1 oki /*
4 1.1 oki * Copyright (c) 1992, 1993
5 1.1 oki * The Regents of the University of California. All rights reserved.
6 1.1 oki *
7 1.1 oki * This software was developed by the Computer Systems Engineering group
8 1.1 oki * at Lawrence Berkeley Laboratory under DARPA contract BG 91-66 and
9 1.1 oki * contributed to Berkeley.
10 1.1 oki *
11 1.1 oki * All advertising materials mentioning features or use of this software
12 1.1 oki * must display the following acknowledgement:
13 1.1 oki * This product includes software developed by the University of
14 1.1 oki * California, Lawrence Berkeley Laboratory.
15 1.1 oki *
16 1.1 oki * Redistribution and use in source and binary forms, with or without
17 1.1 oki * modification, are permitted provided that the following conditions
18 1.1 oki * are met:
19 1.1 oki * 1. Redistributions of source code must retain the above copyright
20 1.1 oki * notice, this list of conditions and the following disclaimer.
21 1.1 oki * 2. Redistributions in binary form must reproduce the above copyright
22 1.1 oki * notice, this list of conditions and the following disclaimer in the
23 1.1 oki * documentation and/or other materials provided with the distribution.
24 1.1 oki * 3. All advertising materials mentioning features or use of this software
25 1.1 oki * must display the following acknowledgement:
26 1.1 oki * This product includes software developed by the University of
27 1.1 oki * California, Berkeley and its contributors.
28 1.1 oki * 4. Neither the name of the University nor the names of its contributors
29 1.1 oki * may be used to endorse or promote products derived from this software
30 1.1 oki * without specific prior written permission.
31 1.1 oki *
32 1.1 oki * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
33 1.1 oki * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
34 1.1 oki * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
35 1.1 oki * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
36 1.1 oki * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
37 1.1 oki * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
38 1.1 oki * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
39 1.1 oki * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
40 1.1 oki * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
41 1.1 oki * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
42 1.1 oki * SUCH DAMAGE.
43 1.1 oki *
44 1.1 oki * @(#)ms.c 8.1 (Berkeley) 6/11/93
45 1.1 oki */
46 1.1 oki
47 1.1 oki /*
48 1.5 minoura * X68k mouse driver.
49 1.1 oki */
50 1.1 oki
51 1.1 oki #include <sys/param.h>
52 1.1 oki #include <sys/conf.h>
53 1.1 oki #include <sys/ioctl.h>
54 1.1 oki #include <sys/kernel.h>
55 1.1 oki #include <sys/proc.h>
56 1.1 oki #include <sys/syslog.h>
57 1.1 oki #include <sys/systm.h>
58 1.1 oki #include <sys/tty.h>
59 1.5 minoura #include <sys/device.h>
60 1.8 minoura #include <sys/signalvar.h>
61 1.1 oki
62 1.5 minoura #include <dev/ic/z8530reg.h>
63 1.5 minoura #include <machine/z8530var.h>
64 1.5 minoura
65 1.5 minoura #include <arch/x68k/dev/event_var.h>
66 1.1 oki #include <machine/vuid_event.h>
67 1.7 minoura #include <arch/x68k/dev/mfp.h>
68 1.1 oki
69 1.5 minoura #include "locators.h"
70 1.5 minoura
71 1.5 minoura /*
72 1.5 minoura * How many input characters we can buffer.
73 1.5 minoura * The port-specific var.h may override this.
74 1.5 minoura * Note: must be a power of two!
75 1.5 minoura */
76 1.5 minoura #define MS_RX_RING_SIZE 256
77 1.5 minoura #define MS_RX_RING_MASK (MS_RX_RING_SIZE-1)
78 1.5 minoura /*
79 1.5 minoura * Output buffer. Only need a few chars.
80 1.5 minoura */
81 1.5 minoura #define MS_TX_RING_SIZE 16
82 1.5 minoura #define MS_TX_RING_MASK (MS_TX_RING_SIZE-1)
83 1.5 minoura /*
84 1.5 minoura * Mouse serial line is fixed at 4800 bps.
85 1.5 minoura */
86 1.5 minoura #define MS_BPS 4800
87 1.1 oki
88 1.1 oki /*
89 1.1 oki * Mouse state. A SHARP X1/X680x0 mouse is a fairly simple device,
90 1.1 oki * producing three-byte blobs of the form:
91 1.1 oki *
92 1.1 oki * b dx dy
93 1.1 oki *
94 1.1 oki * where b is the button state, encoded as 0x80|(buttons)---there are
95 1.1 oki * two buttons (2=left, 1=right)---and dx,dy are X and Y delta values.
96 1.5 minoura *
97 1.7 minoura * It needs a trigger for the transmission. When zs RTS negated, the
98 1.7 minoura * mouse begins the sequence. RTS assertion has no effect.
99 1.1 oki */
100 1.1 oki struct ms_softc {
101 1.5 minoura struct device ms_dev; /* required first: base device */
102 1.5 minoura struct zs_chanstate *ms_cs;
103 1.5 minoura
104 1.10 thorpej struct callout ms_modem_ch;
105 1.10 thorpej
106 1.5 minoura /* Flags to communicate with ms_softintr() */
107 1.5 minoura volatile int ms_intr_flags;
108 1.5 minoura #define INTR_RX_OVERRUN 1
109 1.5 minoura #define INTR_TX_EMPTY 2
110 1.5 minoura #define INTR_ST_CHECK 4
111 1.5 minoura
112 1.5 minoura /*
113 1.5 minoura * The receive ring buffer.
114 1.5 minoura */
115 1.5 minoura u_int ms_rbget; /* ring buffer `get' index */
116 1.5 minoura volatile u_int ms_rbput; /* ring buffer `put' index */
117 1.5 minoura u_short ms_rbuf[MS_RX_RING_SIZE]; /* rr1, data pairs */
118 1.5 minoura
119 1.5 minoura /*
120 1.5 minoura * State of input translator
121 1.5 minoura */
122 1.1 oki short ms_byteno; /* input byte number, for decode */
123 1.1 oki char ms_mb; /* mouse button state */
124 1.1 oki char ms_ub; /* user button state */
125 1.1 oki int ms_dx; /* delta-x */
126 1.1 oki int ms_dy; /* delta-y */
127 1.5 minoura int ms_rts; /* MSCTRL */
128 1.5 minoura int ms_nodata;
129 1.5 minoura
130 1.5 minoura /*
131 1.5 minoura * State of upper interface.
132 1.5 minoura */
133 1.1 oki volatile int ms_ready; /* event queue is ready */
134 1.1 oki struct evvar ms_events; /* event queue state */
135 1.1 oki } ms_softc;
136 1.1 oki
137 1.5 minoura static int ms_match __P((struct device*, struct cfdata*, void*));
138 1.5 minoura static void ms_attach __P((struct device*, struct device*, void*));
139 1.5 minoura static void ms_trigger __P((struct zs_chanstate*, int));
140 1.9 itohy void ms_modem __P((void *));
141 1.5 minoura
142 1.5 minoura struct cfattach ms_ca = {
143 1.5 minoura sizeof(struct ms_softc), ms_match, ms_attach
144 1.5 minoura };
145 1.5 minoura
146 1.5 minoura extern struct zsops zsops_ms;
147 1.5 minoura extern struct cfdriver ms_cd;
148 1.4 oki
149 1.12 gehenna dev_type_open(msopen);
150 1.12 gehenna dev_type_close(msclose);
151 1.12 gehenna dev_type_read(msread);
152 1.12 gehenna dev_type_ioctl(msioctl);
153 1.12 gehenna dev_type_poll(mspoll);
154 1.12 gehenna
155 1.12 gehenna const struct cdevsw ms_cdevsw ={
156 1.12 gehenna msopen, msclose, msread, nowrite, msioctl,
157 1.12 gehenna nostop, notty, mspoll, nommap,
158 1.12 gehenna };
159 1.12 gehenna
160 1.1 oki /*
161 1.5 minoura * ms_match: how is this zs channel configured?
162 1.1 oki */
163 1.5 minoura int
164 1.5 minoura ms_match(parent, cf, aux)
165 1.5 minoura struct device *parent;
166 1.5 minoura struct cfdata *cf;
167 1.5 minoura void *aux;
168 1.5 minoura {
169 1.5 minoura struct zsc_attach_args *args = aux;
170 1.5 minoura struct zsc_softc *zsc = (void*) parent;
171 1.5 minoura
172 1.5 minoura /* Exact match required for the mouse. */
173 1.5 minoura if (cf->cf_loc[ZSCCF_CHANNEL] != args->channel)
174 1.5 minoura return 0;
175 1.5 minoura if (args->channel != 1)
176 1.5 minoura return 0;
177 1.7 minoura if (&zsc->zsc_addr->zs_chan_b != (struct zschan *) ZSMS_PHYSADDR)
178 1.7 minoura return 0;
179 1.5 minoura
180 1.7 minoura return 2;
181 1.5 minoura }
182 1.5 minoura
183 1.5 minoura void
184 1.5 minoura ms_attach(parent, self, aux)
185 1.5 minoura struct device *parent, *self;
186 1.5 minoura void *aux;
187 1.5 minoura
188 1.5 minoura {
189 1.5 minoura struct zsc_softc *zsc = (void *) parent;
190 1.5 minoura struct ms_softc *ms = (void *) self;
191 1.5 minoura struct zs_chanstate *cs;
192 1.5 minoura struct cfdata *cf;
193 1.5 minoura int reset, s;
194 1.5 minoura
195 1.10 thorpej callout_init(&ms->ms_modem_ch);
196 1.10 thorpej
197 1.5 minoura cf = ms->ms_dev.dv_cfdata;
198 1.5 minoura cs = zsc->zsc_cs[1];
199 1.5 minoura cs->cs_private = ms;
200 1.5 minoura cs->cs_ops = &zsops_ms;
201 1.5 minoura ms->ms_cs = cs;
202 1.5 minoura
203 1.5 minoura /* Initialize the speed, etc. */
204 1.5 minoura s = splzs();
205 1.5 minoura /* May need reset... */
206 1.5 minoura reset = ZSWR9_B_RESET;
207 1.5 minoura zs_write_reg(cs, 9, reset);
208 1.5 minoura /* We don't care about status or tx interrupts. */
209 1.5 minoura cs->cs_preg[1] = ZSWR1_RIE;
210 1.5 minoura cs->cs_preg[4] = ZSWR4_CLK_X16 | ZSWR4_TWOSB;
211 1.5 minoura (void) zs_set_speed(cs, MS_BPS);
212 1.5 minoura zs_loadchannelregs(cs);
213 1.5 minoura splx(s);
214 1.5 minoura
215 1.5 minoura /* Initialize translator. */
216 1.5 minoura ms->ms_ready = 0;
217 1.5 minoura
218 1.5 minoura printf ("\n");
219 1.5 minoura }
220 1.5 minoura
221 1.5 minoura /****************************************************************
222 1.5 minoura * Entry points for /dev/mouse
223 1.5 minoura * (open,close,read,write,...)
224 1.5 minoura ****************************************************************/
225 1.5 minoura
226 1.5 minoura int
227 1.5 minoura msopen(dev, flags, mode, p)
228 1.5 minoura dev_t dev;
229 1.5 minoura int flags, mode;
230 1.5 minoura struct proc *p;
231 1.5 minoura {
232 1.5 minoura struct ms_softc *ms;
233 1.5 minoura int unit;
234 1.5 minoura
235 1.5 minoura unit = minor(dev);
236 1.5 minoura if (unit >= ms_cd.cd_ndevs)
237 1.5 minoura return (ENXIO);
238 1.5 minoura ms = ms_cd.cd_devs[unit];
239 1.5 minoura if (ms == NULL)
240 1.5 minoura return (ENXIO);
241 1.5 minoura
242 1.5 minoura /* This is an exclusive open device. */
243 1.5 minoura if (ms->ms_events.ev_io)
244 1.5 minoura return (EBUSY);
245 1.5 minoura ms->ms_events.ev_io = p;
246 1.5 minoura ev_init(&ms->ms_events); /* may cause sleep */
247 1.5 minoura
248 1.5 minoura ms->ms_ready = 1; /* start accepting events */
249 1.5 minoura ms->ms_rts = 1;
250 1.5 minoura ms->ms_byteno = -1;
251 1.5 minoura ms->ms_nodata = 0;
252 1.9 itohy
253 1.9 itohy /* start sequencer */
254 1.9 itohy ms_modem(ms);
255 1.9 itohy
256 1.5 minoura return (0);
257 1.5 minoura }
258 1.5 minoura
259 1.5 minoura int
260 1.5 minoura msclose(dev, flags, mode, p)
261 1.5 minoura dev_t dev;
262 1.5 minoura int flags, mode;
263 1.5 minoura struct proc *p;
264 1.5 minoura {
265 1.5 minoura struct ms_softc *ms;
266 1.5 minoura
267 1.5 minoura ms = ms_cd.cd_devs[minor(dev)];
268 1.5 minoura ms->ms_ready = 0; /* stop accepting events */
269 1.10 thorpej callout_stop(&ms->ms_modem_ch);
270 1.5 minoura ev_fini(&ms->ms_events);
271 1.5 minoura
272 1.5 minoura ms->ms_events.ev_io = NULL;
273 1.5 minoura return (0);
274 1.5 minoura }
275 1.5 minoura
276 1.5 minoura int
277 1.5 minoura msread(dev, uio, flags)
278 1.5 minoura dev_t dev;
279 1.5 minoura struct uio *uio;
280 1.5 minoura int flags;
281 1.5 minoura {
282 1.5 minoura struct ms_softc *ms;
283 1.5 minoura
284 1.5 minoura ms = ms_cd.cd_devs[minor(dev)];
285 1.5 minoura return (ev_read(&ms->ms_events, uio, flags));
286 1.1 oki }
287 1.1 oki
288 1.5 minoura int
289 1.5 minoura msioctl(dev, cmd, data, flag, p)
290 1.5 minoura dev_t dev;
291 1.5 minoura u_long cmd;
292 1.5 minoura register caddr_t data;
293 1.5 minoura int flag;
294 1.5 minoura struct proc *p;
295 1.1 oki {
296 1.5 minoura struct ms_softc *ms;
297 1.5 minoura
298 1.5 minoura ms = ms_cd.cd_devs[minor(dev)];
299 1.5 minoura
300 1.5 minoura switch (cmd) {
301 1.5 minoura
302 1.5 minoura case FIONBIO: /* we will remove this someday (soon???) */
303 1.5 minoura return (0);
304 1.5 minoura
305 1.5 minoura case FIOASYNC:
306 1.5 minoura ms->ms_events.ev_async = *(int *)data != 0;
307 1.5 minoura return (0);
308 1.5 minoura
309 1.5 minoura case TIOCSPGRP:
310 1.5 minoura if (*(int *)data != ms->ms_events.ev_io->p_pgid)
311 1.5 minoura return (EPERM);
312 1.5 minoura return (0);
313 1.5 minoura
314 1.5 minoura case VUIDGFORMAT:
315 1.5 minoura /* we only do firm_events */
316 1.5 minoura *(int *)data = VUID_FIRM_EVENT;
317 1.5 minoura return (0);
318 1.1 oki
319 1.5 minoura case VUIDSFORMAT:
320 1.5 minoura if (*(int *)data != VUID_FIRM_EVENT)
321 1.5 minoura return (EINVAL);
322 1.5 minoura return (0);
323 1.1 oki }
324 1.5 minoura return (ENOTTY);
325 1.1 oki }
326 1.1 oki
327 1.5 minoura int
328 1.5 minoura mspoll(dev, events, p)
329 1.5 minoura dev_t dev;
330 1.5 minoura int events;
331 1.5 minoura struct proc *p;
332 1.5 minoura {
333 1.5 minoura struct ms_softc *ms;
334 1.5 minoura
335 1.5 minoura ms = ms_cd.cd_devs[minor(dev)];
336 1.5 minoura return (ev_poll(&ms->ms_events, events, p));
337 1.5 minoura }
338 1.5 minoura
339 1.5 minoura
340 1.5 minoura /****************************************************************
341 1.5 minoura * Middle layer (translator)
342 1.5 minoura ****************************************************************/
343 1.5 minoura
344 1.5 minoura static void ms_input __P((struct ms_softc *, int c));
345 1.5 minoura
346 1.5 minoura
347 1.5 minoura /*
348 1.5 minoura * Called by our ms_softint() routine on input.
349 1.5 minoura */
350 1.5 minoura static void
351 1.5 minoura ms_input(ms, c)
352 1.5 minoura register struct ms_softc *ms;
353 1.1 oki register int c;
354 1.1 oki {
355 1.1 oki register struct firm_event *fe;
356 1.1 oki register int mb, ub, d, get, put, any;
357 1.1 oki static const char to_one[] = { 1, 2, 3 };
358 1.1 oki static const int to_id[] = { MS_LEFT, MS_RIGHT, MS_MIDDLE };
359 1.1 oki
360 1.1 oki /*
361 1.1 oki * Discard input if not ready. Drop sync on parity or framing
362 1.1 oki * error; gain sync on button byte.
363 1.1 oki */
364 1.1 oki if (ms->ms_ready == 0)
365 1.1 oki return;
366 1.1 oki
367 1.5 minoura ms->ms_nodata = 0;
368 1.1 oki /*
369 1.1 oki * Run the decode loop, adding to the current information.
370 1.1 oki * We add, rather than replace, deltas, so that if the event queue
371 1.1 oki * fills, we accumulate data for when it opens up again.
372 1.1 oki */
373 1.1 oki switch (ms->ms_byteno) {
374 1.1 oki
375 1.1 oki case -1:
376 1.1 oki return;
377 1.1 oki
378 1.1 oki case 0:
379 1.1 oki /* buttons */
380 1.1 oki ms->ms_byteno = 1;
381 1.5 minoura ms->ms_mb = c & 0x3;
382 1.1 oki return;
383 1.1 oki
384 1.1 oki case 1:
385 1.1 oki /* delta-x */
386 1.1 oki ms->ms_byteno = 2;
387 1.1 oki ms->ms_dx += (char)c;
388 1.1 oki return;
389 1.1 oki
390 1.1 oki case 2:
391 1.1 oki /* delta-y */
392 1.5 minoura ms->ms_byteno = -1;
393 1.1 oki ms->ms_dy += (char)c;
394 1.1 oki break;
395 1.1 oki
396 1.1 oki default:
397 1.5 minoura panic("ms_input");
398 1.1 oki /* NOTREACHED */
399 1.1 oki }
400 1.1 oki
401 1.1 oki /*
402 1.1 oki * We have at least one event (mouse button, delta-X, or
403 1.1 oki * delta-Y; possibly all three, and possibly three separate
404 1.1 oki * button events). Deliver these events until we are out
405 1.1 oki * of changes or out of room. As events get delivered,
406 1.1 oki * mark them `unchanged'.
407 1.1 oki */
408 1.1 oki any = 0;
409 1.1 oki get = ms->ms_events.ev_get;
410 1.1 oki put = ms->ms_events.ev_put;
411 1.1 oki fe = &ms->ms_events.ev_q[put];
412 1.1 oki
413 1.1 oki /* NEXT prepares to put the next event, backing off if necessary */
414 1.1 oki #define NEXT \
415 1.1 oki if ((++put) % EV_QSIZE == get) { \
416 1.1 oki put--; \
417 1.1 oki goto out; \
418 1.1 oki }
419 1.1 oki /* ADVANCE completes the `put' of the event */
420 1.1 oki #define ADVANCE \
421 1.1 oki fe++; \
422 1.1 oki if (put >= EV_QSIZE) { \
423 1.1 oki put = 0; \
424 1.1 oki fe = &ms->ms_events.ev_q[0]; \
425 1.1 oki } \
426 1.1 oki
427 1.1 oki mb = ms->ms_mb;
428 1.1 oki ub = ms->ms_ub;
429 1.1 oki while ((d = mb ^ ub) != 0) {
430 1.1 oki /*
431 1.1 oki * Mouse button change. Convert up to three changes
432 1.1 oki * to the `first' change, and drop it into the event queue.
433 1.1 oki */
434 1.1 oki NEXT;
435 1.1 oki d = to_one[d - 1]; /* from 1..7 to {1,2,4} */
436 1.1 oki fe->id = to_id[d - 1]; /* from {1,2,4} to ID */
437 1.1 oki fe->value = mb & d ? VKEY_DOWN : VKEY_UP;
438 1.1 oki fe->time = time;
439 1.1 oki ADVANCE;
440 1.1 oki ub ^= d;
441 1.5 minoura any++;
442 1.1 oki }
443 1.1 oki if (ms->ms_dx) {
444 1.1 oki NEXT;
445 1.1 oki fe->id = LOC_X_DELTA;
446 1.1 oki fe->value = ms->ms_dx;
447 1.1 oki fe->time = time;
448 1.1 oki ADVANCE;
449 1.1 oki ms->ms_dx = 0;
450 1.5 minoura any++;
451 1.1 oki }
452 1.1 oki if (ms->ms_dy) {
453 1.1 oki NEXT;
454 1.1 oki fe->id = LOC_Y_DELTA;
455 1.5 minoura fe->value = -ms->ms_dy; /* XXX? */
456 1.1 oki fe->time = time;
457 1.1 oki ADVANCE;
458 1.1 oki ms->ms_dy = 0;
459 1.5 minoura any++;
460 1.1 oki }
461 1.1 oki out:
462 1.1 oki if (any) {
463 1.1 oki ms->ms_ub = ub;
464 1.1 oki ms->ms_events.ev_put = put;
465 1.1 oki EV_WAKEUP(&ms->ms_events);
466 1.1 oki }
467 1.1 oki }
468 1.1 oki
469 1.5 minoura /****************************************************************
470 1.5 minoura * Interface to the lower layer (zscc)
471 1.5 minoura ****************************************************************/
472 1.5 minoura
473 1.5 minoura static void ms_rxint __P((struct zs_chanstate *));
474 1.6 mycroft static void ms_stint __P((struct zs_chanstate *, int));
475 1.5 minoura static void ms_txint __P((struct zs_chanstate *));
476 1.5 minoura static void ms_softint __P((struct zs_chanstate *));
477 1.5 minoura
478 1.5 minoura static void
479 1.5 minoura ms_rxint(cs)
480 1.5 minoura register struct zs_chanstate *cs;
481 1.1 oki {
482 1.5 minoura register struct ms_softc *ms;
483 1.5 minoura register int put, put_next;
484 1.5 minoura register u_char c, rr1;
485 1.5 minoura
486 1.5 minoura ms = cs->cs_private;
487 1.5 minoura put = ms->ms_rbput;
488 1.5 minoura
489 1.5 minoura /*
490 1.5 minoura * First read the status, because reading the received char
491 1.5 minoura * destroys the status of this char.
492 1.5 minoura */
493 1.5 minoura rr1 = zs_read_reg(cs, 1);
494 1.5 minoura c = zs_read_data(cs);
495 1.5 minoura
496 1.5 minoura if (rr1 & (ZSRR1_FE | ZSRR1_DO | ZSRR1_PE)) {
497 1.5 minoura /* Clear the receive error. */
498 1.5 minoura zs_write_csr(cs, ZSWR0_RESET_ERRORS);
499 1.5 minoura }
500 1.5 minoura
501 1.5 minoura ms->ms_rbuf[put] = (c << 8) | rr1;
502 1.5 minoura put_next = (put + 1) & MS_RX_RING_MASK;
503 1.5 minoura
504 1.5 minoura /* Would overrun if increment makes (put==get). */
505 1.5 minoura if (put_next == ms->ms_rbget) {
506 1.5 minoura ms->ms_intr_flags |= INTR_RX_OVERRUN;
507 1.5 minoura } else {
508 1.5 minoura /* OK, really increment. */
509 1.5 minoura put = put_next;
510 1.5 minoura }
511 1.5 minoura
512 1.5 minoura /* Done reading. */
513 1.5 minoura ms->ms_rbput = put;
514 1.5 minoura
515 1.5 minoura /* Ask for softint() call. */
516 1.5 minoura cs->cs_softreq = 1;
517 1.1 oki }
518 1.5 minoura
519 1.5 minoura
520 1.5 minoura static void
521 1.5 minoura ms_txint(cs)
522 1.5 minoura register struct zs_chanstate *cs;
523 1.1 oki {
524 1.5 minoura register struct ms_softc *ms;
525 1.1 oki
526 1.5 minoura ms = cs->cs_private;
527 1.5 minoura zs_write_csr(cs, ZSWR0_RESET_TXINT);
528 1.5 minoura ms->ms_intr_flags |= INTR_TX_EMPTY;
529 1.5 minoura /* Ask for softint() call. */
530 1.5 minoura cs->cs_softreq = 1;
531 1.1 oki }
532 1.1 oki
533 1.5 minoura
534 1.5 minoura static void
535 1.6 mycroft ms_stint(cs, force)
536 1.5 minoura register struct zs_chanstate *cs;
537 1.6 mycroft int force;
538 1.1 oki {
539 1.5 minoura register struct ms_softc *ms;
540 1.5 minoura register int rr0;
541 1.1 oki
542 1.5 minoura ms = cs->cs_private;
543 1.5 minoura
544 1.5 minoura rr0 = zs_read_csr(cs);
545 1.5 minoura zs_write_csr(cs, ZSWR0_RESET_STATUS);
546 1.1 oki
547 1.5 minoura /*
548 1.5 minoura * We have to accumulate status line changes here.
549 1.5 minoura * Otherwise, if we get multiple status interrupts
550 1.5 minoura * before the softint runs, we could fail to notice
551 1.5 minoura * some status line changes in the softint routine.
552 1.5 minoura * Fix from Bill Studenmund, October 1996.
553 1.5 minoura */
554 1.5 minoura cs->cs_rr0_delta |= (cs->cs_rr0 ^ rr0);
555 1.5 minoura cs->cs_rr0 = rr0;
556 1.5 minoura ms->ms_intr_flags |= INTR_ST_CHECK;
557 1.1 oki
558 1.5 minoura /* Ask for softint() call. */
559 1.5 minoura cs->cs_softreq = 1;
560 1.1 oki }
561 1.1 oki
562 1.5 minoura
563 1.5 minoura static void
564 1.5 minoura ms_softint(cs)
565 1.5 minoura struct zs_chanstate *cs;
566 1.1 oki {
567 1.5 minoura register struct ms_softc *ms;
568 1.5 minoura register int get, c, s;
569 1.5 minoura int intr_flags;
570 1.5 minoura register u_short ring_data;
571 1.5 minoura
572 1.5 minoura ms = cs->cs_private;
573 1.5 minoura
574 1.5 minoura /* Atomically get and clear flags. */
575 1.5 minoura s = splzs();
576 1.5 minoura intr_flags = ms->ms_intr_flags;
577 1.5 minoura ms->ms_intr_flags = 0;
578 1.1 oki
579 1.5 minoura /* Now lower to spltty for the rest. */
580 1.5 minoura (void) spltty();
581 1.1 oki
582 1.5 minoura /*
583 1.5 minoura * Copy data from the receive ring to the event layer.
584 1.5 minoura */
585 1.5 minoura get = ms->ms_rbget;
586 1.5 minoura while (get != ms->ms_rbput) {
587 1.5 minoura ring_data = ms->ms_rbuf[get];
588 1.5 minoura get = (get + 1) & MS_RX_RING_MASK;
589 1.5 minoura
590 1.5 minoura /* low byte of ring_data is rr1 */
591 1.5 minoura c = (ring_data >> 8) & 0xff;
592 1.5 minoura
593 1.5 minoura if (ring_data & ZSRR1_DO)
594 1.5 minoura intr_flags |= INTR_RX_OVERRUN;
595 1.5 minoura if (ring_data & (ZSRR1_FE | ZSRR1_PE)) {
596 1.5 minoura log(LOG_ERR, "%s: input error (0x%x)\n",
597 1.5 minoura ms->ms_dev.dv_xname, ring_data);
598 1.5 minoura c = -1; /* signal input error */
599 1.5 minoura }
600 1.1 oki
601 1.5 minoura /* Pass this up to the "middle" layer. */
602 1.5 minoura ms_input(ms, c);
603 1.5 minoura }
604 1.5 minoura if (intr_flags & INTR_RX_OVERRUN) {
605 1.5 minoura log(LOG_ERR, "%s: input overrun\n",
606 1.5 minoura ms->ms_dev.dv_xname);
607 1.5 minoura }
608 1.5 minoura ms->ms_rbget = get;
609 1.1 oki
610 1.5 minoura if (intr_flags & INTR_TX_EMPTY) {
611 1.5 minoura /*
612 1.5 minoura * Transmit done. (Not expected.)
613 1.5 minoura */
614 1.5 minoura log(LOG_ERR, "%s: transmit interrupt?\n",
615 1.5 minoura ms->ms_dev.dv_xname);
616 1.5 minoura }
617 1.1 oki
618 1.5 minoura if (intr_flags & INTR_ST_CHECK) {
619 1.5 minoura /*
620 1.5 minoura * Status line change. (Not expected.)
621 1.5 minoura */
622 1.5 minoura log(LOG_ERR, "%s: status interrupt?\n",
623 1.5 minoura ms->ms_dev.dv_xname);
624 1.5 minoura cs->cs_rr0_delta = 0;
625 1.1 oki }
626 1.5 minoura
627 1.5 minoura splx(s);
628 1.1 oki }
629 1.1 oki
630 1.5 minoura struct zsops zsops_ms = {
631 1.5 minoura ms_rxint, /* receive char available */
632 1.5 minoura ms_stint, /* external/status */
633 1.5 minoura ms_txint, /* xmit buffer empty */
634 1.5 minoura ms_softint, /* process software interrupt */
635 1.5 minoura };
636 1.5 minoura
637 1.5 minoura
638 1.5 minoura static void
639 1.5 minoura ms_trigger (cs, onoff)
640 1.5 minoura struct zs_chanstate *cs;
641 1.5 minoura int onoff;
642 1.1 oki {
643 1.5 minoura /* for front connected one */
644 1.5 minoura if (onoff)
645 1.5 minoura cs->cs_preg[5] |= ZSWR5_RTS;
646 1.5 minoura else
647 1.5 minoura cs->cs_preg[5] &= ~ZSWR5_RTS;
648 1.5 minoura cs->cs_creg[5] = cs->cs_preg[5];
649 1.5 minoura zs_write_reg(cs, 5, cs->cs_preg[5]);
650 1.5 minoura
651 1.5 minoura /* for keyborad connected one */
652 1.7 minoura mfp_send_usart (onoff | 0x40);
653 1.1 oki }
654 1.1 oki
655 1.5 minoura /*
656 1.5 minoura * mouse timer interrupt.
657 1.5 minoura * called after system tick interrupt is done.
658 1.5 minoura */
659 1.2 oki void
660 1.9 itohy ms_modem(arg)
661 1.9 itohy void *arg;
662 1.5 minoura {
663 1.9 itohy struct ms_softc *ms = arg;
664 1.9 itohy int s;
665 1.5 minoura
666 1.5 minoura if (!ms->ms_ready)
667 1.5 minoura return;
668 1.9 itohy
669 1.9 itohy s = splzs();
670 1.9 itohy
671 1.9 itohy if (ms->ms_nodata++ > 250) { /* XXX */
672 1.9 itohy log(LOG_ERR, "%s: no data for 5 secs. resetting.\n",
673 1.5 minoura ms->ms_dev.dv_xname);
674 1.9 itohy ms->ms_byteno = -1;
675 1.5 minoura ms->ms_nodata = 0;
676 1.9 itohy ms->ms_rts = 0;
677 1.5 minoura }
678 1.5 minoura
679 1.5 minoura if (ms->ms_rts) {
680 1.5 minoura if (ms->ms_byteno == -1) {
681 1.5 minoura /* start next sequence */
682 1.5 minoura ms->ms_rts = 0;
683 1.5 minoura ms_trigger(ms->ms_cs, ms->ms_rts);
684 1.5 minoura ms->ms_byteno = 0;
685 1.5 minoura }
686 1.5 minoura } else {
687 1.5 minoura ms->ms_rts = 1;
688 1.5 minoura ms_trigger(ms->ms_cs, ms->ms_rts);
689 1.5 minoura }
690 1.9 itohy
691 1.9 itohy (void) splx(s);
692 1.10 thorpej callout_reset(&ms->ms_modem_ch, 2, ms_modem, ms);
693 1.5 minoura }
694