adb.c revision 1.9 1 1.9 briggs /* $NetBSD: adb.c,v 1.9 1996/05/05 16:21:20 briggs Exp $ */
2 1.1 briggs
3 1.1 briggs /*-
4 1.1 briggs * Copyright (C) 1994 Bradley A. Grantham
5 1.1 briggs * All rights reserved.
6 1.1 briggs *
7 1.1 briggs * Redistribution and use in source and binary forms, with or without
8 1.1 briggs * modification, are permitted provided that the following conditions
9 1.1 briggs * are met:
10 1.1 briggs * 1. Redistributions of source code must retain the above copyright
11 1.1 briggs * notice, this list of conditions and the following disclaimer.
12 1.1 briggs * 2. Redistributions in binary form must reproduce the above copyright
13 1.2 briggs e* notice, this list of conditions and the following disclaimer in the
14 1.1 briggs * documentation and/or other materials provided with the distribution.
15 1.1 briggs * 3. All advertising materials mentioning features or use of this software
16 1.1 briggs * must display the following acknowledgement:
17 1.1 briggs * This product includes software developed by Bradley A. Grantham.
18 1.1 briggs * 4. The name of the author may not be used to endorse or promote products
19 1.1 briggs * derived from this software without specific prior written permission.
20 1.1 briggs *
21 1.1 briggs * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
22 1.1 briggs * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
23 1.1 briggs * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
24 1.1 briggs * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
25 1.1 briggs * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
26 1.1 briggs * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
27 1.1 briggs * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
28 1.1 briggs * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
29 1.1 briggs * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
30 1.1 briggs * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
31 1.1 briggs */
32 1.1 briggs
33 1.1 briggs #include <sys/param.h>
34 1.1 briggs #include <sys/device.h>
35 1.1 briggs #include <sys/fcntl.h>
36 1.1 briggs #include <sys/select.h>
37 1.1 briggs #include <sys/proc.h>
38 1.7 briggs #include <sys/signalvar.h>
39 1.1 briggs #include <sys/systm.h>
40 1.2 briggs
41 1.1 briggs #include <machine/adbsys.h>
42 1.7 briggs #include <machine/autoconf.h>
43 1.2 briggs #include <machine/keyboard.h>
44 1.2 briggs
45 1.1 briggs #include "adbvar.h"
46 1.7 briggs #include "itevar.h"
47 1.1 briggs #include "../mac68k/macrom.h"
48 1.1 briggs
49 1.1 briggs /*
50 1.2 briggs * Function declarations.
51 1.1 briggs */
52 1.7 briggs static int adbmatch __P((struct device *, void *, void *));
53 1.7 briggs static void adbattach __P((struct device *, struct device *, void *));
54 1.1 briggs
55 1.2 briggs /*
56 1.2 briggs * Global variables.
57 1.2 briggs */
58 1.2 briggs int adb_polling = 0; /* Are we polling? (Debugger mode) */
59 1.1 briggs
60 1.1 briggs /*
61 1.2 briggs * Local variables.
62 1.1 briggs */
63 1.2 briggs
64 1.2 briggs /* External keyboard translation matrix */
65 1.2 briggs extern unsigned char keyboard[128][3];
66 1.2 briggs
67 1.2 briggs /* Event queue definitions */
68 1.1 briggs #if !defined(ADB_MAX_EVENTS)
69 1.1 briggs #define ADB_MAX_EVENTS 200 /* Maximum events to be kept in queue */
70 1.2 briggs /* maybe should be higher for slower macs? */
71 1.2 briggs #endif /* !defined(ADB_MAX_EVENTS) */
72 1.1 briggs static adb_event_t adb_evq[ADB_MAX_EVENTS]; /* ADB event queue */
73 1.2 briggs static int adb_evq_tail = 0; /* event queue tail */
74 1.2 briggs static int adb_evq_len = 0; /* event queue length */
75 1.1 briggs
76 1.2 briggs /* ADB device state information */
77 1.1 briggs static int adb_isopen = 0; /* Are we queuing events for adb_read? */
78 1.1 briggs static struct selinfo adb_selinfo; /* select() info */
79 1.1 briggs static struct proc *adb_ioproc = NULL; /* process to wakeup */
80 1.1 briggs
81 1.2 briggs /* Key repeat parameters */
82 1.2 briggs static int adb_rptdelay = 20; /* ticks before auto-repeat */
83 1.2 briggs static int adb_rptinterval = 6; /* ticks between auto-repeat */
84 1.2 briggs static int adb_repeating = -1; /* key that is auto-repeating */
85 1.2 briggs static adb_event_t adb_rptevent;/* event to auto-repeat */
86 1.1 briggs
87 1.7 briggs /* Driver definition. -- This should probably be a bus... */
88 1.6 thorpej struct cfattach adb_ca = {
89 1.7 briggs sizeof(struct device), adbmatch, adbattach
90 1.6 thorpej };
91 1.6 thorpej
92 1.6 thorpej struct cfdriver adb_cd = {
93 1.6 thorpej NULL, "adb", DV_DULL
94 1.2 briggs };
95 1.7 briggs
96 1.7 briggs static int
97 1.7 briggs adbmatch(pdp, match, auxp)
98 1.7 briggs struct device *pdp;
99 1.7 briggs void *match, *auxp;
100 1.7 briggs {
101 1.7 briggs return 1;
102 1.7 briggs }
103 1.1 briggs
104 1.1 briggs static void
105 1.1 briggs adbattach(parent, dev, aux)
106 1.2 briggs struct device *parent, *dev;
107 1.2 briggs void *aux;
108 1.1 briggs {
109 1.1 briggs printf(" (ADB event device)\n");
110 1.1 briggs }
111 1.1 briggs
112 1.2 briggs void
113 1.2 briggs adb_enqevent(event)
114 1.2 briggs adb_event_t *event;
115 1.1 briggs {
116 1.2 briggs int s;
117 1.1 briggs
118 1.2 briggs if (adb_evq_tail < 0 || adb_evq_tail >= ADB_MAX_EVENTS)
119 1.1 briggs panic("adb: event queue tail is out of bounds");
120 1.1 briggs
121 1.2 briggs if (adb_evq_len < 0 || adb_evq_len > ADB_MAX_EVENTS)
122 1.1 briggs panic("adb: event queue len is out of bounds");
123 1.1 briggs
124 1.1 briggs s = splhigh();
125 1.1 briggs
126 1.2 briggs if (adb_evq_len == ADB_MAX_EVENTS) {
127 1.1 briggs splx(s);
128 1.2 briggs return; /* Oh, well... */
129 1.1 briggs }
130 1.1 briggs adb_evq[(adb_evq_len + adb_evq_tail) % ADB_MAX_EVENTS] =
131 1.2 briggs *event;
132 1.1 briggs adb_evq_len++;
133 1.1 briggs
134 1.1 briggs selwakeup(&adb_selinfo);
135 1.2 briggs if (adb_ioproc)
136 1.1 briggs psignal(adb_ioproc, SIGIO);
137 1.1 briggs
138 1.1 briggs splx(s);
139 1.1 briggs }
140 1.1 briggs
141 1.2 briggs void
142 1.2 briggs adb_handoff(event)
143 1.2 briggs adb_event_t *event;
144 1.1 briggs {
145 1.2 briggs if (adb_isopen && !adb_polling) {
146 1.1 briggs adb_enqevent(event);
147 1.2 briggs } else {
148 1.2 briggs if (event->def_addr == 2)
149 1.1 briggs ite_intr(event);
150 1.1 briggs }
151 1.1 briggs }
152 1.1 briggs
153 1.1 briggs
154 1.2 briggs void
155 1.2 briggs adb_autorepeat(keyp)
156 1.2 briggs void *keyp;
157 1.1 briggs {
158 1.2 briggs int key = (int) keyp;
159 1.1 briggs
160 1.1 briggs adb_rptevent.bytes[0] |= 0x80;
161 1.1 briggs microtime(&adb_rptevent.timestamp);
162 1.1 briggs adb_handoff(&adb_rptevent); /* do key up */
163 1.1 briggs
164 1.1 briggs adb_rptevent.bytes[0] &= 0x7f;
165 1.1 briggs microtime(&adb_rptevent.timestamp);
166 1.1 briggs adb_handoff(&adb_rptevent); /* do key down */
167 1.2 briggs
168 1.2 briggs if (adb_repeating == key) {
169 1.1 briggs timeout(adb_autorepeat, keyp, adb_rptinterval);
170 1.1 briggs }
171 1.1 briggs }
172 1.1 briggs
173 1.1 briggs
174 1.2 briggs void
175 1.2 briggs adb_dokeyupdown(event)
176 1.2 briggs adb_event_t *event;
177 1.1 briggs {
178 1.2 briggs int adb_key;
179 1.1 briggs
180 1.2 briggs if (event->def_addr == 2) {
181 1.1 briggs adb_key = event->u.k.key & 0x7f;
182 1.2 briggs if (!(event->u.k.key & 0x80) &&
183 1.2 briggs keyboard[event->u.k.key & 0x7f][0] != 0) {
184 1.1 briggs /* ignore shift & control */
185 1.2 briggs if (adb_repeating != -1) {
186 1.1 briggs untimeout(adb_autorepeat,
187 1.2 briggs (void *) adb_rptevent.u.k.key);
188 1.1 briggs }
189 1.1 briggs adb_rptevent = *event;
190 1.1 briggs adb_repeating = adb_key;
191 1.1 briggs timeout(adb_autorepeat,
192 1.2 briggs (void *) adb_key, adb_rptdelay);
193 1.2 briggs } else {
194 1.2 briggs if (adb_repeating != -1) {
195 1.1 briggs adb_repeating = -1;
196 1.1 briggs untimeout(adb_autorepeat,
197 1.2 briggs (void *) adb_rptevent.u.k.key);
198 1.1 briggs }
199 1.1 briggs adb_rptevent = *event;
200 1.1 briggs }
201 1.1 briggs }
202 1.1 briggs adb_handoff(event);
203 1.1 briggs }
204 1.1 briggs
205 1.2 briggs static adb_ms_buttons = 0;
206 1.1 briggs
207 1.2 briggs void
208 1.2 briggs adb_keymaybemouse(event)
209 1.2 briggs adb_event_t *event;
210 1.1 briggs {
211 1.2 briggs static int optionkey_down = 0;
212 1.1 briggs adb_event_t new_event;
213 1.2 briggs
214 1.2 briggs if (event->u.k.key == ADBK_KEYDOWN(ADBK_OPTION)) {
215 1.1 briggs optionkey_down = 1;
216 1.2 briggs } else if (event->u.k.key == ADBK_KEYUP(ADBK_OPTION)) {
217 1.2 briggs /* key up */
218 1.1 briggs optionkey_down = 0;
219 1.2 briggs if (adb_ms_buttons & 0xfe) {
220 1.1 briggs adb_ms_buttons &= 1;
221 1.1 briggs new_event.def_addr = ADBADDR_MS;
222 1.1 briggs new_event.u.m.buttons = adb_ms_buttons;
223 1.1 briggs new_event.u.m.dx = new_event.u.m.dy = 0;
224 1.1 briggs microtime(&new_event.timestamp);
225 1.1 briggs adb_dokeyupdown(&new_event);
226 1.1 briggs }
227 1.2 briggs } else if (optionkey_down) {
228 1.2 briggs if (event->u.k.key == ADBK_KEYDOWN(ADBK_LEFT)) {
229 1.1 briggs adb_ms_buttons |= 2; /* middle down */
230 1.1 briggs new_event.def_addr = ADBADDR_MS;
231 1.1 briggs new_event.u.m.buttons = adb_ms_buttons;
232 1.1 briggs new_event.u.m.dx = new_event.u.m.dy = 0;
233 1.1 briggs microtime(&new_event.timestamp);
234 1.1 briggs adb_dokeyupdown(&new_event);
235 1.2 briggs } else if (event->u.k.key == ADBK_KEYUP(ADBK_LEFT)) {
236 1.1 briggs adb_ms_buttons &= ~2; /* middle up */
237 1.1 briggs new_event.def_addr = ADBADDR_MS;
238 1.1 briggs new_event.u.m.buttons = adb_ms_buttons;
239 1.1 briggs new_event.u.m.dx = new_event.u.m.dy = 0;
240 1.1 briggs microtime(&new_event.timestamp);
241 1.1 briggs adb_dokeyupdown(&new_event);
242 1.2 briggs } else if (event->u.k.key == ADBK_KEYDOWN(ADBK_RIGHT)) {
243 1.1 briggs adb_ms_buttons |= 4; /* right down */
244 1.1 briggs new_event.def_addr = ADBADDR_MS;
245 1.1 briggs new_event.u.m.buttons = adb_ms_buttons;
246 1.1 briggs new_event.u.m.dx = new_event.u.m.dy = 0;
247 1.1 briggs microtime(&new_event.timestamp);
248 1.1 briggs adb_dokeyupdown(&new_event);
249 1.2 briggs } else if (event->u.k.key == ADBK_KEYUP(ADBK_RIGHT)) {
250 1.1 briggs adb_ms_buttons &= ~4; /* right up */
251 1.1 briggs new_event.def_addr = ADBADDR_MS;
252 1.1 briggs new_event.u.m.buttons = adb_ms_buttons;
253 1.1 briggs new_event.u.m.dx = new_event.u.m.dy = 0;
254 1.1 briggs microtime(&new_event.timestamp);
255 1.1 briggs adb_dokeyupdown(&new_event);
256 1.2 briggs } else if (ADBK_MODIFIER(event->u.k.key)) {
257 1.2 briggs /* ctrl, shift, cmd */
258 1.1 briggs adb_dokeyupdown(event);
259 1.3 briggs } else if (!(event->u.k.key & 0x80)) {
260 1.2 briggs /* key down */
261 1.1 briggs new_event = *event;
262 1.1 briggs
263 1.2 briggs /* send option-down */
264 1.2 briggs new_event.u.k.key = ADBK_KEYDOWN(ADBK_OPTION);
265 1.1 briggs new_event.bytes[0] = new_event.u.k.key;
266 1.1 briggs microtime(&new_event.timestamp);
267 1.1 briggs adb_dokeyupdown(&new_event);
268 1.1 briggs
269 1.2 briggs /* send key-down */
270 1.2 briggs new_event.u.k.key = event->bytes[0];
271 1.1 briggs new_event.bytes[0] = new_event.u.k.key;
272 1.1 briggs microtime(&new_event.timestamp);
273 1.1 briggs adb_dokeyupdown(&new_event);
274 1.1 briggs
275 1.2 briggs /* send key-up */
276 1.3 briggs new_event.u.k.key =
277 1.3 briggs ADBK_KEYUP(ADBK_KEYVAL(event->bytes[0]));
278 1.1 briggs microtime(&new_event.timestamp);
279 1.1 briggs new_event.bytes[0] = new_event.u.k.key;
280 1.3 briggs adb_dokeyupdown(&new_event);
281 1.1 briggs
282 1.2 briggs /* send option-up */
283 1.3 briggs new_event.u.k.key = ADBK_KEYUP(ADBK_OPTION);
284 1.1 briggs new_event.bytes[0] = new_event.u.k.key;
285 1.1 briggs microtime(&new_event.timestamp);
286 1.1 briggs adb_dokeyupdown(&new_event);
287 1.2 briggs } else {
288 1.2 briggs /* option-keyup -- do nothing. */
289 1.1 briggs }
290 1.2 briggs } else {
291 1.1 briggs adb_dokeyupdown(event);
292 1.1 briggs }
293 1.1 briggs }
294 1.1 briggs
295 1.1 briggs
296 1.2 briggs void
297 1.2 briggs adb_processevent(event)
298 1.2 briggs adb_event_t *event;
299 1.1 briggs {
300 1.1 briggs adb_event_t new_event;
301 1.5 briggs int i, button_bit, max_byte, mask, buttons;
302 1.1 briggs
303 1.1 briggs new_event = *event;
304 1.5 briggs buttons = 0;
305 1.1 briggs
306 1.2 briggs switch (event->def_addr) {
307 1.2 briggs case ADBADDR_KBD:
308 1.2 briggs new_event.u.k.key = event->bytes[0];
309 1.2 briggs new_event.bytes[1] = 0xff;
310 1.2 briggs adb_keymaybemouse(&new_event);
311 1.2 briggs if (event->bytes[1] != 0xff) {
312 1.2 briggs new_event.u.k.key = event->bytes[1];
313 1.2 briggs new_event.bytes[0] = event->bytes[1];
314 1.1 briggs new_event.bytes[1] = 0xff;
315 1.1 briggs adb_keymaybemouse(&new_event);
316 1.2 briggs }
317 1.2 briggs break;
318 1.2 briggs case ADBADDR_MS:
319 1.4 briggs /*
320 1.4 briggs * This should handle both plain ol' Apple mice and mice
321 1.4 briggs * that claim to support the Extended Apple Mouse Protocol.
322 1.4 briggs */
323 1.4 briggs max_byte = event->byte_count;
324 1.4 briggs button_bit = 1;
325 1.8 briggs switch (event->hand_id) {
326 1.8 briggs case ADBMS_USPEED:
327 1.8 briggs /* MicroSpeed mouse */
328 1.8 briggs if (max_byte == 4)
329 1.9 briggs buttons = (~event->bytes[2]) & 0xff;
330 1.4 briggs else
331 1.8 briggs buttons = (event->bytes[0] & 0x80) ? 0 : 1;
332 1.8 briggs break;
333 1.8 briggs default:
334 1.8 briggs /* Classic Mouse Protocol (up to 2 buttons) */
335 1.8 briggs for (i = 0; i < 2; i++, button_bit <<= 1)
336 1.8 briggs /* 0 when button down */
337 1.8 briggs if (!(event->bytes[i] & 0x80))
338 1.8 briggs buttons |= button_bit;
339 1.8 briggs else
340 1.8 briggs buttons &= ~button_bit;
341 1.8 briggs /* Extended Protocol (up to 6 more buttons) */
342 1.8 briggs for (mask = 0x80; i < max_byte;
343 1.8 briggs i += (mask == 0x80), button_bit <<= 1) {
344 1.8 briggs /* 0 when button down */
345 1.8 briggs if (!(event->bytes[i] & mask))
346 1.8 briggs buttons |= button_bit;
347 1.8 briggs else
348 1.8 briggs buttons &= ~button_bit;
349 1.8 briggs mask = ((mask >> 4) & 0xf)
350 1.8 briggs | ((mask & 0xf) << 4);
351 1.8 briggs }
352 1.8 briggs break;
353 1.4 briggs }
354 1.5 briggs new_event.u.m.buttons = adb_ms_buttons | buttons;
355 1.2 briggs new_event.u.m.dx = ((signed int) (event->bytes[1] & 0x3f)) -
356 1.2 briggs ((event->bytes[1] & 0x40) ? 64 : 0);
357 1.2 briggs new_event.u.m.dy = ((signed int) (event->bytes[0] & 0x3f)) -
358 1.2 briggs ((event->bytes[0] & 0x40) ? 64 : 0);
359 1.2 briggs adb_dokeyupdown(&new_event);
360 1.2 briggs break;
361 1.2 briggs default: /* God only knows. */
362 1.2 briggs adb_dokeyupdown(event);
363 1.1 briggs }
364 1.1 briggs }
365 1.1 briggs
366 1.1 briggs
367 1.2 briggs int
368 1.2 briggs adbopen(dev, flag, mode, p)
369 1.2 briggs dev_t dev;
370 1.2 briggs int flag, mode;
371 1.2 briggs struct proc *p;
372 1.1 briggs {
373 1.1 briggs register int unit;
374 1.1 briggs int error = 0;
375 1.1 briggs int s;
376 1.2 briggs
377 1.1 briggs unit = minor(dev);
378 1.2 briggs if (unit != 0)
379 1.2 briggs return (ENXIO);
380 1.2 briggs
381 1.1 briggs s = splhigh();
382 1.2 briggs if (adb_isopen) {
383 1.1 briggs splx(s);
384 1.2 briggs return (EBUSY);
385 1.1 briggs }
386 1.1 briggs splx(s);
387 1.1 briggs adb_evq_tail = 0;
388 1.1 briggs adb_evq_len = 0;
389 1.1 briggs adb_isopen = 1;
390 1.1 briggs adb_ioproc = p;
391 1.1 briggs
392 1.1 briggs return (error);
393 1.1 briggs }
394 1.1 briggs
395 1.1 briggs
396 1.2 briggs int
397 1.2 briggs adbclose(dev, flag, mode, p)
398 1.2 briggs dev_t dev;
399 1.2 briggs int flag, mode;
400 1.2 briggs struct proc *p;
401 1.1 briggs {
402 1.1 briggs adb_isopen = 0;
403 1.1 briggs adb_ioproc = NULL;
404 1.1 briggs return (0);
405 1.1 briggs }
406 1.1 briggs
407 1.1 briggs
408 1.2 briggs int
409 1.2 briggs adbread(dev, uio, flag)
410 1.2 briggs dev_t dev;
411 1.2 briggs struct uio *uio;
412 1.2 briggs int flag;
413 1.1 briggs {
414 1.1 briggs int s, error;
415 1.1 briggs int willfit;
416 1.1 briggs int total;
417 1.1 briggs int firstmove;
418 1.1 briggs int moremove;
419 1.1 briggs
420 1.1 briggs if (uio->uio_resid < sizeof(adb_event_t))
421 1.1 briggs return (EMSGSIZE); /* close enough. */
422 1.1 briggs
423 1.1 briggs s = splhigh();
424 1.2 briggs if (adb_evq_len == 0) {
425 1.2 briggs splx(s);
426 1.2 briggs return (0);
427 1.1 briggs }
428 1.1 briggs willfit = howmany(uio->uio_resid, sizeof(adb_event_t));
429 1.1 briggs total = (adb_evq_len < willfit) ? adb_evq_len : willfit;
430 1.1 briggs
431 1.1 briggs firstmove = (adb_evq_tail + total > ADB_MAX_EVENTS)
432 1.2 briggs ? (ADB_MAX_EVENTS - adb_evq_tail) : total;
433 1.2 briggs
434 1.2 briggs error = uiomove((caddr_t) & adb_evq[adb_evq_tail],
435 1.2 briggs firstmove * sizeof(adb_event_t), uio);
436 1.2 briggs if (error) {
437 1.1 briggs splx(s);
438 1.2 briggs return (error);
439 1.1 briggs }
440 1.1 briggs moremove = total - firstmove;
441 1.1 briggs
442 1.2 briggs if (moremove > 0) {
443 1.2 briggs error = uiomove((caddr_t) & adb_evq[0],
444 1.2 briggs moremove * sizeof(adb_event_t), uio);
445 1.2 briggs if (error) {
446 1.1 briggs splx(s);
447 1.2 briggs return (error);
448 1.1 briggs }
449 1.1 briggs }
450 1.1 briggs adb_evq_tail = (adb_evq_tail + total) % ADB_MAX_EVENTS;
451 1.1 briggs adb_evq_len -= total;
452 1.1 briggs splx(s);
453 1.1 briggs return (0);
454 1.1 briggs }
455 1.1 briggs
456 1.2 briggs
457 1.2 briggs int
458 1.2 briggs adbwrite(dev, uio, flag)
459 1.2 briggs dev_t dev;
460 1.2 briggs struct uio *uio;
461 1.2 briggs int flag;
462 1.1 briggs {
463 1.1 briggs return 0;
464 1.1 briggs }
465 1.1 briggs
466 1.1 briggs
467 1.2 briggs int
468 1.2 briggs adbioctl(dev, cmd, data, flag, p)
469 1.2 briggs dev_t dev;
470 1.2 briggs int cmd;
471 1.2 briggs caddr_t data;
472 1.2 briggs int flag;
473 1.2 briggs struct proc *p;
474 1.2 briggs {
475 1.2 briggs switch (cmd) {
476 1.2 briggs case ADBIOC_DEVSINFO: {
477 1.2 briggs adb_devinfo_t *di;
478 1.2 briggs ADBDataBlock adbdata;
479 1.2 briggs int totaldevs;
480 1.2 briggs int adbaddr;
481 1.2 briggs int i;
482 1.2 briggs
483 1.2 briggs di = (void *) data;
484 1.2 briggs
485 1.2 briggs /* Initialize to no devices */
486 1.2 briggs for (i = 0; i < 16; i++)
487 1.2 briggs di->dev[i].addr = -1;
488 1.2 briggs
489 1.2 briggs totaldevs = CountADBs();
490 1.2 briggs for (i = 1; i <= totaldevs; i++) {
491 1.2 briggs adbaddr = GetIndADB(&adbdata, i);
492 1.2 briggs di->dev[adbaddr].addr = adbaddr;
493 1.2 briggs di->dev[adbaddr].default_addr = adbdata.origADBAddr;
494 1.2 briggs di->dev[adbaddr].handler_id = adbdata.devType;
495 1.1 briggs }
496 1.1 briggs
497 1.2 briggs /* Must call ADB Manager to get devices now */
498 1.2 briggs break;
499 1.2 briggs }
500 1.2 briggs
501 1.2 briggs case ADBIOC_GETREPEAT:{
502 1.2 briggs adb_rptinfo_t *ri;
503 1.1 briggs
504 1.2 briggs ri = (void *) data;
505 1.2 briggs ri->delay_ticks = adb_rptdelay;
506 1.2 briggs ri->interval_ticks = adb_rptinterval;
507 1.2 briggs break;
508 1.2 briggs }
509 1.1 briggs
510 1.2 briggs case ADBIOC_SETREPEAT:{
511 1.2 briggs adb_rptinfo_t *ri;
512 1.1 briggs
513 1.2 briggs ri = (void *) data;
514 1.2 briggs adb_rptdelay = ri->delay_ticks;
515 1.2 briggs adb_rptinterval = ri->interval_ticks;
516 1.2 briggs break;
517 1.2 briggs }
518 1.1 briggs
519 1.2 briggs case ADBIOC_RESET:
520 1.2 briggs adb_init();
521 1.2 briggs break;
522 1.1 briggs
523 1.2 briggs case ADBIOC_LISTENCMD:{
524 1.2 briggs adb_listencmd_t *lc;
525 1.1 briggs
526 1.2 briggs lc = (void *) data;
527 1.2 briggs }
528 1.1 briggs
529 1.2 briggs default:
530 1.2 briggs return (EINVAL);
531 1.1 briggs }
532 1.2 briggs return (0);
533 1.1 briggs }
534 1.1 briggs
535 1.1 briggs
536 1.2 briggs int
537 1.2 briggs adbselect(dev, rw, p)
538 1.2 briggs dev_t dev;
539 1.2 briggs int rw;
540 1.2 briggs struct proc *p;
541 1.1 briggs {
542 1.1 briggs switch (rw) {
543 1.2 briggs case FREAD:
544 1.2 briggs /* succeed if there is something to read */
545 1.2 briggs if (adb_evq_len > 0)
546 1.2 briggs return (1);
547 1.2 briggs selrecord(p, &adb_selinfo);
548 1.2 briggs break;
549 1.2 briggs
550 1.2 briggs case FWRITE:
551 1.2 briggs return (1); /* always fails => never blocks */
552 1.2 briggs break;
553 1.1 briggs }
554 1.1 briggs
555 1.1 briggs return (0);
556 1.1 briggs }
557