kbd.c revision 1.54 1 1.54 christos /* $NetBSD: kbd.c,v 1.54 2005/12/12 02:44:09 christos Exp $ */
2 1.1 gwr
3 1.1 gwr /*
4 1.1 gwr * Copyright (c) 1992, 1993
5 1.1 gwr * The Regents of the University of California. All rights reserved.
6 1.1 gwr *
7 1.1 gwr * This software was developed by the Computer Systems Engineering group
8 1.1 gwr * at Lawrence Berkeley Laboratory under DARPA contract BG 91-66 and
9 1.1 gwr * contributed to Berkeley.
10 1.1 gwr *
11 1.1 gwr * All advertising materials mentioning features or use of this software
12 1.1 gwr * must display the following acknowledgement:
13 1.1 gwr * This product includes software developed by the University of
14 1.1 gwr * California, Lawrence Berkeley Laboratory.
15 1.1 gwr *
16 1.1 gwr * Redistribution and use in source and binary forms, with or without
17 1.1 gwr * modification, are permitted provided that the following conditions
18 1.1 gwr * are met:
19 1.1 gwr * 1. Redistributions of source code must retain the above copyright
20 1.1 gwr * notice, this list of conditions and the following disclaimer.
21 1.1 gwr * 2. Redistributions in binary form must reproduce the above copyright
22 1.1 gwr * notice, this list of conditions and the following disclaimer in the
23 1.1 gwr * documentation and/or other materials provided with the distribution.
24 1.38 agc * 3. Neither the name of the University nor the names of its contributors
25 1.1 gwr * may be used to endorse or promote products derived from this software
26 1.1 gwr * without specific prior written permission.
27 1.1 gwr *
28 1.1 gwr * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
29 1.1 gwr * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
30 1.1 gwr * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
31 1.1 gwr * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
32 1.1 gwr * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
33 1.1 gwr * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
34 1.1 gwr * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
35 1.1 gwr * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
36 1.1 gwr * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
37 1.1 gwr * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
38 1.1 gwr * SUCH DAMAGE.
39 1.1 gwr *
40 1.1 gwr * @(#)kbd.c 8.2 (Berkeley) 10/30/93
41 1.1 gwr */
42 1.1 gwr
43 1.1 gwr /*
44 1.1 gwr * Keyboard driver (/dev/kbd -- note that we do not have minor numbers
45 1.1 gwr * [yet?]). Translates incoming bytes to ASCII or to `firm_events' and
46 1.1 gwr * passes them up to the appropriate reader.
47 1.1 gwr */
48 1.29 lukem
49 1.29 lukem #include <sys/cdefs.h>
50 1.54 christos __KERNEL_RCSID(0, "$NetBSD: kbd.c,v 1.54 2005/12/12 02:44:09 christos Exp $");
51 1.1 gwr
52 1.1 gwr #include <sys/param.h>
53 1.1 gwr #include <sys/systm.h>
54 1.13 gwr #include <sys/conf.h>
55 1.1 gwr #include <sys/device.h>
56 1.1 gwr #include <sys/ioctl.h>
57 1.13 gwr #include <sys/kernel.h>
58 1.13 gwr #include <sys/proc.h>
59 1.33 uwe #include <sys/malloc.h>
60 1.13 gwr #include <sys/signal.h>
61 1.13 gwr #include <sys/signalvar.h>
62 1.1 gwr #include <sys/time.h>
63 1.1 gwr #include <sys/syslog.h>
64 1.9 mrg #include <sys/select.h>
65 1.9 mrg #include <sys/poll.h>
66 1.27 eeh #include <sys/file.h>
67 1.1 gwr
68 1.35 martin #include <dev/wscons/wsksymdef.h>
69 1.35 martin
70 1.33 uwe #include <dev/sun/kbd_reg.h>
71 1.33 uwe #include <dev/sun/kbio.h>
72 1.33 uwe #include <dev/sun/vuid_event.h>
73 1.22 mrg #include <dev/sun/event_var.h>
74 1.22 mrg #include <dev/sun/kbd_xlate.h>
75 1.22 mrg #include <dev/sun/kbdvar.h>
76 1.1 gwr
77 1.14 jtk #include "locators.h"
78 1.1 gwr
79 1.31 gehenna extern struct cfdriver kbd_cd;
80 1.1 gwr
81 1.31 gehenna dev_type_open(kbdopen);
82 1.31 gehenna dev_type_close(kbdclose);
83 1.31 gehenna dev_type_read(kbdread);
84 1.31 gehenna dev_type_ioctl(kbdioctl);
85 1.31 gehenna dev_type_poll(kbdpoll);
86 1.34 jdolecek dev_type_kqfilter(kbdkqfilter);
87 1.31 gehenna
88 1.31 gehenna const struct cdevsw kbd_cdevsw = {
89 1.31 gehenna kbdopen, kbdclose, kbdread, nowrite, kbdioctl,
90 1.34 jdolecek nostop, notty, kbdpoll, nommap, kbdkqfilter
91 1.31 gehenna };
92 1.1 gwr
93 1.35 martin #if NWSKBD > 0
94 1.54 christos static int wssunkbd_enable(void *, int);
95 1.54 christos static void wssunkbd_set_leds(void *, int);
96 1.54 christos static int wssunkbd_ioctl(void *, u_long, caddr_t, int, struct lwp *);
97 1.54 christos static void sunkbd_wskbd_cngetc(void *, u_int *, int *);
98 1.54 christos static void sunkbd_wskbd_cnpollc(void *, int);
99 1.54 christos static void sunkbd_wskbd_cnbell(void *, u_int, u_int, u_int);
100 1.54 christos static void sunkbd_bell_off(void *v);
101 1.54 christos static void kbd_enable(struct device *); /* deferred keyboard init */
102 1.35 martin
103 1.35 martin const struct wskbd_accessops sunkbd_wskbd_accessops = {
104 1.35 martin wssunkbd_enable,
105 1.35 martin wssunkbd_set_leds,
106 1.35 martin wssunkbd_ioctl,
107 1.35 martin };
108 1.35 martin
109 1.35 martin extern const struct wscons_keydesc wssun_keydesctab[];
110 1.35 martin const struct wskbd_mapdata sunkbd_wskbd_keymapdata = {
111 1.35 martin wssun_keydesctab,
112 1.35 martin #ifdef SUNKBD_LAYOUT
113 1.35 martin SUNKBD_LAYOUT,
114 1.35 martin #else
115 1.35 martin KB_US,
116 1.35 martin #endif
117 1.35 martin };
118 1.35 martin
119 1.35 martin const struct wskbd_consops sunkbd_wskbd_consops = {
120 1.35 martin sunkbd_wskbd_cngetc,
121 1.35 martin sunkbd_wskbd_cnpollc,
122 1.35 martin sunkbd_wskbd_cnbell,
123 1.35 martin };
124 1.35 martin
125 1.54 christos void kbd_wskbd_attach(struct kbd_softc *, int);
126 1.35 martin #endif
127 1.32 uwe
128 1.32 uwe /* ioctl helpers */
129 1.54 christos static int kbd_iockeymap(struct kbd_state *, u_long, struct kiockeymap *);
130 1.32 uwe #ifdef KIOCGETKEY
131 1.54 christos static int kbd_oldkeymap(struct kbd_state *, u_long, struct okiockey *);
132 1.32 uwe #endif
133 1.32 uwe
134 1.33 uwe
135 1.33 uwe /* callbacks for console driver */
136 1.33 uwe static int kbd_cc_open(struct cons_channel *);
137 1.33 uwe static int kbd_cc_close(struct cons_channel *);
138 1.33 uwe
139 1.33 uwe /* console input */
140 1.33 uwe static void kbd_input_console(struct kbd_softc *, int);
141 1.33 uwe static void kbd_repeat(void *);
142 1.33 uwe static int kbd_input_keysym(struct kbd_softc *, int);
143 1.33 uwe static void kbd_input_string(struct kbd_softc *, char *);
144 1.33 uwe static void kbd_input_funckey(struct kbd_softc *, int);
145 1.33 uwe static void kbd_update_leds(struct kbd_softc *);
146 1.33 uwe
147 1.35 martin #if NWSKBD > 0
148 1.35 martin static void kbd_input_wskbd(struct kbd_softc *, int);
149 1.35 martin #endif
150 1.35 martin
151 1.33 uwe /* firm events input */
152 1.33 uwe static void kbd_input_event(struct kbd_softc *, int);
153 1.33 uwe
154 1.32 uwe
155 1.32 uwe
156 1.1 gwr /****************************************************************
157 1.1 gwr * Entry points for /dev/kbd
158 1.1 gwr * (open,close,read,write,...)
159 1.1 gwr ****************************************************************/
160 1.1 gwr
161 1.1 gwr /*
162 1.1 gwr * Open:
163 1.1 gwr * Check exclusion, open actual device (_iopen),
164 1.1 gwr * setup event channel, clear ASCII repeat stuff.
165 1.1 gwr */
166 1.1 gwr int
167 1.54 christos kbdopen(dev_t dev, int flags, int mode, struct lwp *l)
168 1.1 gwr {
169 1.1 gwr struct kbd_softc *k;
170 1.13 gwr int error, unit;
171 1.1 gwr
172 1.32 uwe /* locate device */
173 1.1 gwr unit = minor(dev);
174 1.5 thorpej if (unit >= kbd_cd.cd_ndevs)
175 1.1 gwr return (ENXIO);
176 1.5 thorpej k = kbd_cd.cd_devs[unit];
177 1.1 gwr if (k == NULL)
178 1.1 gwr return (ENXIO);
179 1.1 gwr
180 1.45 martin #if NWSKBD > 0
181 1.33 uwe /*
182 1.33 uwe * NB: wscons support: while we can track if wskbd has called
183 1.33 uwe * enable(), we can't tell if that's for console input or for
184 1.33 uwe * events input, so we should probably just let the open to
185 1.33 uwe * always succeed regardless (e.g. Xsun opening /dev/kbd).
186 1.33 uwe */
187 1.44 martin if (!k->k_wsenabled)
188 1.44 martin wssunkbd_enable(k, 1);
189 1.45 martin #endif
190 1.33 uwe
191 1.32 uwe /* exclusive open required for /dev/kbd */
192 1.1 gwr if (k->k_events.ev_io)
193 1.1 gwr return (EBUSY);
194 1.53 christos k->k_events.ev_io = l->l_proc;
195 1.1 gwr
196 1.33 uwe /* stop pending autorepeat of console input */
197 1.33 uwe if (k->k_repeating) {
198 1.33 uwe k->k_repeating = 0;
199 1.33 uwe callout_stop(&k->k_repeat_ch);
200 1.33 uwe }
201 1.33 uwe
202 1.32 uwe /* open actual underlying device */
203 1.32 uwe if (k->k_ops != NULL && k->k_ops->open != NULL)
204 1.32 uwe if ((error = (*k->k_ops->open)(k)) != 0) {
205 1.32 uwe k->k_events.ev_io = NULL;
206 1.32 uwe return (error);
207 1.32 uwe }
208 1.32 uwe
209 1.1 gwr ev_init(&k->k_events);
210 1.27 eeh k->k_evmode = 0; /* XXX: OK? */
211 1.1 gwr
212 1.1 gwr return (0);
213 1.1 gwr }
214 1.1 gwr
215 1.32 uwe
216 1.1 gwr /*
217 1.1 gwr * Close:
218 1.1 gwr * Turn off event mode, dump the queue, and close the keyboard
219 1.1 gwr * unless it is supplying console input.
220 1.1 gwr */
221 1.1 gwr int
222 1.54 christos kbdclose(dev_t dev, int flags, int mode, struct lwp *l)
223 1.1 gwr {
224 1.1 gwr struct kbd_softc *k;
225 1.1 gwr
226 1.5 thorpej k = kbd_cd.cd_devs[minor(dev)];
227 1.1 gwr k->k_evmode = 0;
228 1.1 gwr ev_fini(&k->k_events);
229 1.1 gwr k->k_events.ev_io = NULL;
230 1.32 uwe
231 1.32 uwe if (k->k_ops != NULL && k->k_ops->close != NULL) {
232 1.32 uwe int error;
233 1.32 uwe if ((error = (*k->k_ops->close)(k)) != 0)
234 1.32 uwe return (error);
235 1.32 uwe }
236 1.1 gwr return (0);
237 1.1 gwr }
238 1.1 gwr
239 1.32 uwe
240 1.1 gwr int
241 1.54 christos kbdread(dev_t dev, struct uio *uio, int flags)
242 1.1 gwr {
243 1.1 gwr struct kbd_softc *k;
244 1.1 gwr
245 1.5 thorpej k = kbd_cd.cd_devs[minor(dev)];
246 1.1 gwr return (ev_read(&k->k_events, uio, flags));
247 1.1 gwr }
248 1.1 gwr
249 1.32 uwe
250 1.1 gwr int
251 1.54 christos kbdpoll(dev_t dev, int events, struct lwp *l)
252 1.1 gwr {
253 1.1 gwr struct kbd_softc *k;
254 1.1 gwr
255 1.5 thorpej k = kbd_cd.cd_devs[minor(dev)];
256 1.53 christos return (ev_poll(&k->k_events, events, l));
257 1.1 gwr }
258 1.1 gwr
259 1.34 jdolecek int
260 1.54 christos kbdkqfilter(dev_t dev, struct knote *kn)
261 1.34 jdolecek {
262 1.34 jdolecek struct kbd_softc *k;
263 1.34 jdolecek
264 1.34 jdolecek k = kbd_cd.cd_devs[minor(dev)];
265 1.34 jdolecek return (ev_kqfilter(&k->k_events, kn));
266 1.34 jdolecek }
267 1.1 gwr
268 1.1 gwr int
269 1.54 christos kbdioctl(dev_t dev, u_long cmd, caddr_t data, int flag, struct lwp *l)
270 1.1 gwr {
271 1.1 gwr struct kbd_softc *k;
272 1.1 gwr struct kbd_state *ks;
273 1.1 gwr int error = 0;
274 1.1 gwr
275 1.5 thorpej k = kbd_cd.cd_devs[minor(dev)];
276 1.1 gwr ks = &k->k_state;
277 1.1 gwr
278 1.1 gwr switch (cmd) {
279 1.1 gwr
280 1.1 gwr case KIOCTRANS: /* Set translation mode */
281 1.1 gwr /* We only support "raw" mode on /dev/kbd */
282 1.16 gwr if (*(int *)data != TR_UNTRANS_EVENT)
283 1.1 gwr error = EINVAL;
284 1.1 gwr break;
285 1.1 gwr
286 1.1 gwr case KIOCGTRANS: /* Get translation mode */
287 1.1 gwr /* We only support "raw" mode on /dev/kbd */
288 1.16 gwr *(int *)data = TR_UNTRANS_EVENT;
289 1.1 gwr break;
290 1.1 gwr
291 1.32 uwe #ifdef KIOCGETKEY
292 1.1 gwr case KIOCGETKEY: /* Get keymap entry (old format) */
293 1.1 gwr error = kbd_oldkeymap(ks, cmd, (struct okiockey *)data);
294 1.1 gwr break;
295 1.32 uwe #endif /* KIOCGETKEY */
296 1.1 gwr
297 1.1 gwr case KIOCSKEY: /* Set keymap entry */
298 1.32 uwe /* FALLTHROUGH */
299 1.1 gwr case KIOCGKEY: /* Get keymap entry */
300 1.1 gwr error = kbd_iockeymap(ks, cmd, (struct kiockeymap *)data);
301 1.1 gwr break;
302 1.1 gwr
303 1.32 uwe case KIOCCMD: /* Send a command to the keyboard */
304 1.32 uwe /* pass it to the middle layer */
305 1.32 uwe if (k->k_ops != NULL && k->k_ops->docmd != NULL)
306 1.32 uwe error = (*k->k_ops->docmd)(k, *(int *)data, 1);
307 1.1 gwr break;
308 1.1 gwr
309 1.32 uwe case KIOCTYPE: /* Get keyboard type */
310 1.16 gwr *(int *)data = ks->kbd_id;
311 1.1 gwr break;
312 1.1 gwr
313 1.32 uwe case KIOCSDIRECT: /* Where to send input */
314 1.16 gwr k->k_evmode = *(int *)data;
315 1.1 gwr break;
316 1.1 gwr
317 1.1 gwr case KIOCLAYOUT: /* Get keyboard layout */
318 1.16 gwr *(int *)data = ks->kbd_layout;
319 1.1 gwr break;
320 1.1 gwr
321 1.32 uwe case KIOCSLED: /* Set keyboard LEDs */
322 1.32 uwe /* pass the request to the middle layer */
323 1.32 uwe if (k->k_ops != NULL && k->k_ops->setleds != NULL)
324 1.32 uwe error = (*k->k_ops->setleds)(k, *(char *)data, 1);
325 1.1 gwr break;
326 1.1 gwr
327 1.32 uwe case KIOCGLED: /* Get keyboard LEDs */
328 1.1 gwr *(char *)data = ks->kbd_leds;
329 1.1 gwr break;
330 1.1 gwr
331 1.1 gwr case FIONBIO: /* we will remove this someday (soon???) */
332 1.1 gwr break;
333 1.1 gwr
334 1.1 gwr case FIOASYNC:
335 1.32 uwe k->k_events.ev_async = (*(int *)data != 0);
336 1.39 jdolecek break;
337 1.39 jdolecek
338 1.39 jdolecek case FIOSETOWN:
339 1.39 jdolecek if (-*(int *)data != k->k_events.ev_io->p_pgid
340 1.39 jdolecek && *(int *)data != k->k_events.ev_io->p_pid)
341 1.39 jdolecek error = EPERM;
342 1.1 gwr break;
343 1.1 gwr
344 1.1 gwr case TIOCSPGRP:
345 1.16 gwr if (*(int *)data != k->k_events.ev_io->p_pgid)
346 1.1 gwr error = EPERM;
347 1.1 gwr break;
348 1.1 gwr
349 1.16 gwr default:
350 1.16 gwr error = ENOTTY;
351 1.16 gwr break;
352 1.1 gwr }
353 1.1 gwr
354 1.1 gwr return (error);
355 1.1 gwr }
356 1.1 gwr
357 1.32 uwe
358 1.1 gwr /****************************************************************
359 1.1 gwr * ioctl helpers
360 1.1 gwr ****************************************************************/
361 1.1 gwr
362 1.1 gwr /*
363 1.1 gwr * Get/Set keymap entry
364 1.1 gwr */
365 1.7 gwr static int
366 1.54 christos kbd_iockeymap(struct kbd_state *ks, u_long cmd, struct kiockeymap *kio)
367 1.1 gwr {
368 1.13 gwr u_short *km;
369 1.1 gwr u_int station;
370 1.1 gwr
371 1.1 gwr switch (kio->kio_tablemask) {
372 1.1 gwr case KIOC_NOMASK:
373 1.1 gwr km = ks->kbd_k.k_normal;
374 1.1 gwr break;
375 1.1 gwr case KIOC_SHIFTMASK:
376 1.1 gwr km = ks->kbd_k.k_shifted;
377 1.1 gwr break;
378 1.1 gwr case KIOC_CTRLMASK:
379 1.1 gwr km = ks->kbd_k.k_control;
380 1.1 gwr break;
381 1.1 gwr case KIOC_UPMASK:
382 1.1 gwr km = ks->kbd_k.k_release;
383 1.1 gwr break;
384 1.1 gwr default:
385 1.1 gwr /* Silently ignore unsupported masks */
386 1.1 gwr return (0);
387 1.1 gwr }
388 1.1 gwr
389 1.1 gwr /* Range-check the table position. */
390 1.1 gwr station = kio->kio_station;
391 1.1 gwr if (station >= KEYMAP_SIZE)
392 1.1 gwr return (EINVAL);
393 1.1 gwr
394 1.1 gwr switch (cmd) {
395 1.1 gwr
396 1.1 gwr case KIOCGKEY: /* Get keymap entry */
397 1.13 gwr kio->kio_entry = km[station];
398 1.1 gwr break;
399 1.1 gwr
400 1.1 gwr case KIOCSKEY: /* Set keymap entry */
401 1.13 gwr km[station] = kio->kio_entry;
402 1.1 gwr break;
403 1.1 gwr
404 1.1 gwr default:
405 1.1 gwr return(ENOTTY);
406 1.1 gwr }
407 1.1 gwr return (0);
408 1.1 gwr }
409 1.1 gwr
410 1.32 uwe
411 1.32 uwe #ifdef KIOCGETKEY
412 1.1 gwr /*
413 1.1 gwr * Get/Set keymap entry,
414 1.1 gwr * old format (compatibility)
415 1.1 gwr */
416 1.1 gwr int
417 1.54 christos kbd_oldkeymap(struct kbd_state *ks, u_long cmd, struct okiockey *kio)
418 1.1 gwr {
419 1.1 gwr int error = 0;
420 1.1 gwr
421 1.1 gwr switch (cmd) {
422 1.1 gwr
423 1.1 gwr case KIOCGETKEY:
424 1.1 gwr if (kio->kio_station == 118) {
425 1.1 gwr /*
426 1.1 gwr * This is X11 asking if a type 3 keyboard is
427 1.1 gwr * really a type 3 keyboard. Say yes, it is,
428 1.1 gwr * by reporting key station 118 as a "hole".
429 1.1 gwr * Note old (SunOS 3.5) definition of HOLE!
430 1.1 gwr */
431 1.1 gwr kio->kio_entry = 0xA2;
432 1.1 gwr break;
433 1.1 gwr }
434 1.1 gwr /* fall through */
435 1.1 gwr
436 1.1 gwr default:
437 1.1 gwr error = ENOTTY;
438 1.1 gwr break;
439 1.1 gwr }
440 1.1 gwr
441 1.1 gwr return (error);
442 1.1 gwr }
443 1.32 uwe #endif /* KIOCGETKEY */
444 1.1 gwr
445 1.7 gwr
446 1.33 uwe
447 1.32 uwe /****************************************************************
448 1.33 uwe * Keyboard input - called by middle layer at spltty().
449 1.32 uwe ****************************************************************/
450 1.32 uwe
451 1.33 uwe void
452 1.54 christos kbd_input(struct kbd_softc *k, int code)
453 1.33 uwe {
454 1.35 martin if (k->k_evmode) {
455 1.35 martin /*
456 1.35 martin * XXX: is this still true?
457 1.35 martin * IDLEs confuse the MIT X11R4 server badly, so we must drop them.
458 1.35 martin * This is bad as it means the server will not automatically resync
459 1.35 martin * on all-up IDLEs, but I did not drop them before, and the server
460 1.35 martin * goes crazy when it comes time to blank the screen....
461 1.35 martin */
462 1.35 martin if (code == KBD_IDLE)
463 1.35 martin return;
464 1.33 uwe
465 1.35 martin /*
466 1.35 martin * Keyboard is generating firm events. Turn this keystroke
467 1.35 martin * into an event and put it in the queue.
468 1.35 martin */
469 1.35 martin kbd_input_event(k, code);
470 1.33 uwe return;
471 1.33 uwe }
472 1.33 uwe
473 1.35 martin #if NWSKBD > 0
474 1.35 martin if (k->k_wskbd != NULL && k->k_wsenabled) {
475 1.35 martin /*
476 1.35 martin * We are using wskbd input mode, pass the event up.
477 1.35 martin */
478 1.51 martin if (code == KBD_IDLE)
479 1.51 martin return; /* this key is not in the mapped */
480 1.35 martin kbd_input_wskbd(k, code);
481 1.33 uwe return;
482 1.35 martin }
483 1.35 martin #endif
484 1.33 uwe
485 1.33 uwe /*
486 1.35 martin * If /dev/kbd is not connected in event mode, or wskbd mode,
487 1.35 martin * translate and send upstream (to console).
488 1.33 uwe */
489 1.35 martin kbd_input_console(k, code);
490 1.33 uwe }
491 1.33 uwe
492 1.33 uwe
493 1.33 uwe
494 1.33 uwe /****************************************************************
495 1.33 uwe * Open/close routines called upon opening /dev/console
496 1.33 uwe * if we serve console input.
497 1.33 uwe ****************************************************************/
498 1.33 uwe
499 1.33 uwe struct cons_channel *
500 1.54 christos kbd_cc_alloc(struct kbd_softc *k)
501 1.33 uwe {
502 1.33 uwe struct cons_channel *cc;
503 1.33 uwe
504 1.33 uwe if ((cc = malloc(sizeof *cc, M_DEVBUF, M_NOWAIT)) == NULL)
505 1.33 uwe return (NULL);
506 1.33 uwe
507 1.33 uwe /* our callbacks for the console driver */
508 1.33 uwe cc->cc_dev = k;
509 1.33 uwe cc->cc_iopen = kbd_cc_open;
510 1.33 uwe cc->cc_iclose = kbd_cc_close;
511 1.33 uwe
512 1.33 uwe /* will be provided by the console driver so that we can feed input */
513 1.33 uwe cc->cc_upstream = NULL;
514 1.33 uwe
515 1.33 uwe /*
516 1.33 uwe * TODO: clean up cons_attach_input() vs kd_attach_input() in
517 1.33 uwe * lower layers and move that code here.
518 1.33 uwe */
519 1.33 uwe
520 1.33 uwe k->k_cc = cc;
521 1.33 uwe return (cc);
522 1.33 uwe }
523 1.33 uwe
524 1.33 uwe
525 1.33 uwe static int
526 1.54 christos kbd_cc_open(struct cons_channel *cc)
527 1.15 gwr {
528 1.7 gwr struct kbd_softc *k;
529 1.33 uwe int ret;
530 1.15 gwr
531 1.32 uwe if (cc == NULL)
532 1.33 uwe return (0);
533 1.7 gwr
534 1.32 uwe k = (struct kbd_softc *)cc->cc_dev;
535 1.33 uwe if (k == NULL)
536 1.33 uwe return (0);
537 1.33 uwe
538 1.33 uwe if (k->k_ops != NULL && k->k_ops->open != NULL)
539 1.33 uwe ret = (*k->k_ops->open)(k);
540 1.32 uwe else
541 1.33 uwe ret = 0;
542 1.33 uwe
543 1.33 uwe /* XXX: verify that callout is not active? */
544 1.33 uwe k->k_repeat_start = hz/2;
545 1.33 uwe k->k_repeat_step = hz/20;
546 1.33 uwe callout_init(&k->k_repeat_ch);
547 1.33 uwe
548 1.33 uwe return (ret);
549 1.32 uwe }
550 1.7 gwr
551 1.7 gwr
552 1.33 uwe static int
553 1.54 christos kbd_cc_close(struct cons_channel *cc)
554 1.32 uwe {
555 1.7 gwr struct kbd_softc *k;
556 1.33 uwe int ret;
557 1.7 gwr
558 1.32 uwe if (cc == NULL)
559 1.33 uwe return (0);
560 1.7 gwr
561 1.32 uwe k = (struct kbd_softc *)cc->cc_dev;
562 1.33 uwe if (k == NULL)
563 1.33 uwe return (0);
564 1.33 uwe
565 1.33 uwe if (k->k_ops != NULL && k->k_ops->close != NULL)
566 1.33 uwe ret = (*k->k_ops->close)(k);
567 1.32 uwe else
568 1.33 uwe ret = 0;
569 1.33 uwe
570 1.33 uwe /* stop any pending auto-repeat */
571 1.33 uwe if (k->k_repeating) {
572 1.33 uwe k->k_repeating = 0;
573 1.33 uwe callout_stop(&k->k_repeat_ch);
574 1.33 uwe }
575 1.33 uwe
576 1.33 uwe return (ret);
577 1.7 gwr }
578 1.7 gwr
579 1.7 gwr
580 1.33 uwe
581 1.1 gwr /****************************************************************
582 1.32 uwe * Console input - called by middle layer at spltty().
583 1.1 gwr ****************************************************************/
584 1.1 gwr
585 1.33 uwe static void
586 1.54 christos kbd_input_console(struct kbd_softc *k, int code)
587 1.33 uwe {
588 1.33 uwe struct kbd_state *ks= &k->k_state;
589 1.33 uwe int keysym;
590 1.33 uwe
591 1.33 uwe /* any input stops auto-repeat (i.e. key release) */
592 1.33 uwe if (k->k_repeating) {
593 1.33 uwe k->k_repeating = 0;
594 1.33 uwe callout_stop(&k->k_repeat_ch);
595 1.33 uwe }
596 1.33 uwe
597 1.33 uwe keysym = kbd_code_to_keysym(ks, code);
598 1.33 uwe
599 1.33 uwe /* pass to console */
600 1.33 uwe if (kbd_input_keysym(k, keysym)) {
601 1.33 uwe log(LOG_WARNING, "%s: code=0x%x with mod=0x%x"
602 1.33 uwe " produced unexpected keysym 0x%x\n",
603 1.33 uwe k->k_dev.dv_xname,
604 1.33 uwe code, ks->kbd_modbits, keysym);
605 1.33 uwe return; /* no point in auto-repeat here */
606 1.33 uwe }
607 1.33 uwe
608 1.33 uwe if (KEYSYM_NOREPEAT(keysym))
609 1.33 uwe return;
610 1.33 uwe
611 1.33 uwe /* setup for auto-repeat after initial delay */
612 1.33 uwe k->k_repeating = 1;
613 1.33 uwe k->k_repeatsym = keysym;
614 1.33 uwe callout_reset(&k->k_repeat_ch, k->k_repeat_start,
615 1.33 uwe kbd_repeat, k);
616 1.33 uwe }
617 1.33 uwe
618 1.33 uwe
619 1.33 uwe /*
620 1.33 uwe * This is the autorepeat callout function scheduled by kbd_input() above.
621 1.33 uwe * Called at splsoftclock().
622 1.33 uwe */
623 1.33 uwe static void
624 1.54 christos kbd_repeat(void *arg)
625 1.33 uwe {
626 1.33 uwe struct kbd_softc *k = (struct kbd_softc *)arg;
627 1.33 uwe int s;
628 1.33 uwe
629 1.33 uwe s = spltty();
630 1.33 uwe if (k->k_repeating && k->k_repeatsym >= 0) {
631 1.33 uwe /* feed typematic keysym to the console */
632 1.33 uwe (void)kbd_input_keysym(k, k->k_repeatsym);
633 1.33 uwe
634 1.33 uwe /* reschedule next repeat */
635 1.33 uwe callout_reset(&k->k_repeat_ch, k->k_repeat_step,
636 1.33 uwe kbd_repeat, k);
637 1.33 uwe }
638 1.33 uwe splx(s);
639 1.33 uwe }
640 1.33 uwe
641 1.33 uwe
642 1.33 uwe
643 1.1 gwr /*
644 1.33 uwe * Supply keysym as console input. Convert keysym to character(s) and
645 1.33 uwe * pass them up to cons_channel's upstream hook.
646 1.17 gwr *
647 1.32 uwe * Return zero on success, else the keysym that we could not handle
648 1.32 uwe * (so that the caller may complain).
649 1.1 gwr */
650 1.33 uwe static int
651 1.54 christos kbd_input_keysym(struct kbd_softc *k, int keysym)
652 1.1 gwr {
653 1.1 gwr struct kbd_state *ks = &k->k_state;
654 1.23 pk int data;
655 1.30 pk /* Check if a recipient has been configured */
656 1.32 uwe if (k->k_cc == NULL || k->k_cc->cc_upstream == NULL)
657 1.30 pk return (0);
658 1.1 gwr
659 1.4 gwr switch (KEYSYM_CLASS(keysym)) {
660 1.1 gwr
661 1.1 gwr case KEYSYM_ASCII:
662 1.1 gwr data = KEYSYM_DATA(keysym);
663 1.1 gwr if (ks->kbd_modbits & KBMOD_META_MASK)
664 1.1 gwr data |= 0x80;
665 1.23 pk (*k->k_cc->cc_upstream)(data);
666 1.1 gwr break;
667 1.1 gwr
668 1.1 gwr case KEYSYM_STRING:
669 1.1 gwr data = keysym & 0xF;
670 1.1 gwr kbd_input_string(k, kbd_stringtab[data]);
671 1.1 gwr break;
672 1.1 gwr
673 1.1 gwr case KEYSYM_FUNC:
674 1.1 gwr kbd_input_funckey(k, keysym);
675 1.1 gwr break;
676 1.1 gwr
677 1.1 gwr case KEYSYM_CLRMOD:
678 1.1 gwr data = 1 << (keysym & 0x1F);
679 1.1 gwr ks->kbd_modbits &= ~data;
680 1.1 gwr break;
681 1.1 gwr
682 1.1 gwr case KEYSYM_SETMOD:
683 1.1 gwr data = 1 << (keysym & 0x1F);
684 1.1 gwr ks->kbd_modbits |= data;
685 1.1 gwr break;
686 1.1 gwr
687 1.1 gwr case KEYSYM_INVMOD:
688 1.1 gwr data = 1 << (keysym & 0x1F);
689 1.1 gwr ks->kbd_modbits ^= data;
690 1.4 gwr kbd_update_leds(k);
691 1.1 gwr break;
692 1.1 gwr
693 1.1 gwr case KEYSYM_ALL_UP:
694 1.1 gwr ks->kbd_modbits &= ~0xFFFF;
695 1.1 gwr break;
696 1.1 gwr
697 1.1 gwr case KEYSYM_SPECIAL:
698 1.1 gwr if (keysym == KEYSYM_NOP)
699 1.1 gwr break;
700 1.32 uwe /* FALLTHROUGH */
701 1.1 gwr default:
702 1.17 gwr /* We could not handle it. */
703 1.17 gwr return (keysym);
704 1.1 gwr }
705 1.32 uwe
706 1.17 gwr return (0);
707 1.1 gwr }
708 1.1 gwr
709 1.32 uwe
710 1.1 gwr /*
711 1.32 uwe * Send string upstream.
712 1.1 gwr */
713 1.13 gwr static void
714 1.54 christos kbd_input_string(struct kbd_softc *k, char *str)
715 1.1 gwr {
716 1.1 gwr
717 1.32 uwe while (*str) {
718 1.32 uwe (*k->k_cc->cc_upstream)(*str);
719 1.32 uwe ++str;
720 1.1 gwr }
721 1.1 gwr }
722 1.1 gwr
723 1.32 uwe
724 1.1 gwr /*
725 1.32 uwe * Format the F-key sequence and send as a string.
726 1.32 uwe * XXX: Ugly compatibility mappings.
727 1.1 gwr */
728 1.32 uwe static void
729 1.54 christos kbd_input_funckey(struct kbd_softc *k, int keysym)
730 1.1 gwr {
731 1.32 uwe int n;
732 1.32 uwe char str[12];
733 1.32 uwe
734 1.32 uwe n = 0xC0 + (keysym & 0x3F);
735 1.40 itojun snprintf(str, sizeof(str), "\033[%dz", n);
736 1.32 uwe kbd_input_string(k, str);
737 1.32 uwe }
738 1.1 gwr
739 1.1 gwr
740 1.32 uwe /*
741 1.32 uwe * Update LEDs to reflect console input state.
742 1.32 uwe */
743 1.32 uwe static void
744 1.54 christos kbd_update_leds(struct kbd_softc *k)
745 1.32 uwe {
746 1.32 uwe struct kbd_state *ks = &k->k_state;
747 1.32 uwe char leds;
748 1.1 gwr
749 1.32 uwe leds = ks->kbd_leds;
750 1.32 uwe leds &= ~(LED_CAPS_LOCK|LED_NUM_LOCK);
751 1.1 gwr
752 1.32 uwe if (ks->kbd_modbits & (1 << KBMOD_CAPSLOCK))
753 1.32 uwe leds |= LED_CAPS_LOCK;
754 1.32 uwe if (ks->kbd_modbits & (1 << KBMOD_NUMLOCK))
755 1.32 uwe leds |= LED_NUM_LOCK;
756 1.1 gwr
757 1.32 uwe if (k->k_ops != NULL && k->k_ops->setleds != NULL)
758 1.32 uwe (void)(*k->k_ops->setleds)(k, leds, 0);
759 1.32 uwe }
760 1.1 gwr
761 1.1 gwr
762 1.1 gwr
763 1.32 uwe /****************************************************************
764 1.32 uwe * Events input - called by middle layer at spltty().
765 1.32 uwe ****************************************************************/
766 1.1 gwr
767 1.32 uwe /*
768 1.33 uwe * Supply raw keystrokes when keyboard is open in firm event mode.
769 1.32 uwe *
770 1.32 uwe * Turn the keystroke into an event and put it in the queue.
771 1.32 uwe * If the queue is full, the keystroke is lost (sorry!).
772 1.32 uwe */
773 1.33 uwe static void
774 1.54 christos kbd_input_event(struct kbd_softc *k, int code)
775 1.32 uwe {
776 1.32 uwe struct firm_event *fe;
777 1.32 uwe int put;
778 1.1 gwr
779 1.32 uwe #ifdef DIAGNOSTIC
780 1.32 uwe if (!k->k_evmode) {
781 1.32 uwe printf("%s: kbd_input_event called when not in event mode\n",
782 1.32 uwe k->k_dev.dv_xname);
783 1.1 gwr return;
784 1.1 gwr }
785 1.32 uwe #endif
786 1.1 gwr put = k->k_events.ev_put;
787 1.1 gwr fe = &k->k_events.ev_q[put];
788 1.1 gwr put = (put + 1) % EV_QSIZE;
789 1.1 gwr if (put == k->k_events.ev_get) {
790 1.1 gwr log(LOG_WARNING, "%s: event queue overflow\n",
791 1.32 uwe k->k_dev.dv_xname);
792 1.1 gwr return;
793 1.1 gwr }
794 1.33 uwe
795 1.33 uwe fe->id = KEY_CODE(code);
796 1.33 uwe fe->value = KEY_UP(code) ? VKEY_UP : VKEY_DOWN;
797 1.1 gwr fe->time = time;
798 1.1 gwr k->k_events.ev_put = put;
799 1.1 gwr EV_WAKEUP(&k->k_events);
800 1.1 gwr }
801 1.1 gwr
802 1.32 uwe
803 1.33 uwe
804 1.32 uwe /****************************************************************
805 1.32 uwe * Translation stuff declared in kbd_xlate.h
806 1.32 uwe ****************************************************************/
807 1.24 pk
808 1.24 pk /*
809 1.32 uwe * Initialization - called by either lower layer attach or by kdcninit.
810 1.24 pk */
811 1.32 uwe void
812 1.54 christos kbd_xlate_init(struct kbd_state *ks)
813 1.24 pk {
814 1.32 uwe struct keyboard *ktbls;
815 1.32 uwe int id;
816 1.32 uwe
817 1.32 uwe id = ks->kbd_id;
818 1.32 uwe if (id < KBD_MIN_TYPE)
819 1.32 uwe id = KBD_MIN_TYPE;
820 1.32 uwe if (id > kbd_max_type)
821 1.32 uwe id = kbd_max_type;
822 1.32 uwe ktbls = keyboards[id];
823 1.24 pk
824 1.32 uwe ks->kbd_k = *ktbls; /* struct assignment */
825 1.32 uwe ks->kbd_modbits = 0;
826 1.24 pk }
827 1.1 gwr
828 1.1 gwr /*
829 1.32 uwe * Turn keyboard up/down codes into a KEYSYM.
830 1.32 uwe * Note that the "kd" driver (on sun3 and sparc64) uses this too!
831 1.1 gwr */
832 1.1 gwr int
833 1.54 christos kbd_code_to_keysym(struct kbd_state *ks, int c)
834 1.1 gwr {
835 1.32 uwe u_short *km;
836 1.32 uwe int keysym;
837 1.1 gwr
838 1.32 uwe /*
839 1.32 uwe * Get keymap pointer. One of these:
840 1.32 uwe * release, control, shifted, normal, ...
841 1.32 uwe */
842 1.32 uwe if (KEY_UP(c))
843 1.32 uwe km = ks->kbd_k.k_release;
844 1.32 uwe else if (ks->kbd_modbits & KBMOD_CTRL_MASK)
845 1.32 uwe km = ks->kbd_k.k_control;
846 1.32 uwe else if (ks->kbd_modbits & KBMOD_SHIFT_MASK)
847 1.32 uwe km = ks->kbd_k.k_shifted;
848 1.32 uwe else
849 1.32 uwe km = ks->kbd_k.k_normal;
850 1.23 pk
851 1.32 uwe if (km == NULL) {
852 1.1 gwr /*
853 1.32 uwe * Do not know how to translate yet.
854 1.32 uwe * We will find out when a RESET comes along.
855 1.1 gwr */
856 1.32 uwe return (KEYSYM_NOP);
857 1.1 gwr }
858 1.32 uwe keysym = km[KEY_CODE(c)];
859 1.1 gwr
860 1.1 gwr /*
861 1.32 uwe * Post-processing for Caps-lock
862 1.1 gwr */
863 1.32 uwe if ((ks->kbd_modbits & (1 << KBMOD_CAPSLOCK)) &&
864 1.32 uwe (KEYSYM_CLASS(keysym) == KEYSYM_ASCII) )
865 1.32 uwe {
866 1.32 uwe if (('a' <= keysym) && (keysym <= 'z'))
867 1.32 uwe keysym -= ('a' - 'A');
868 1.1 gwr }
869 1.1 gwr
870 1.1 gwr /*
871 1.32 uwe * Post-processing for Num-lock. All "function"
872 1.32 uwe * keysyms get indirected through another table.
873 1.32 uwe * (XXX: Only if numlock on. Want off also!)
874 1.1 gwr */
875 1.32 uwe if ((ks->kbd_modbits & (1 << KBMOD_NUMLOCK)) &&
876 1.32 uwe (KEYSYM_CLASS(keysym) == KEYSYM_FUNC) )
877 1.32 uwe {
878 1.32 uwe keysym = kbd_numlock_map[keysym & 0x3F];
879 1.1 gwr }
880 1.7 gwr
881 1.32 uwe return (keysym);
882 1.1 gwr }
883 1.1 gwr
884 1.1 gwr
885 1.7 gwr /*
886 1.32 uwe * Back door for rcons (fb.c)
887 1.7 gwr */
888 1.22 mrg void
889 1.54 christos kbd_bell(int on)
890 1.1 gwr {
891 1.33 uwe struct kbd_softc *k = kbd_cd.cd_devs[0]; /* XXX: hardcoded minor */
892 1.33 uwe
893 1.33 uwe if (k == NULL || k->k_ops == NULL || k->k_ops->docmd == NULL)
894 1.33 uwe return;
895 1.33 uwe
896 1.33 uwe (void)(*k->k_ops->docmd)(k, on ? KBD_CMD_BELL : KBD_CMD_NOBELL, 0);
897 1.1 gwr }
898 1.35 martin
899 1.35 martin #if NWSKBD > 0
900 1.35 martin static void
901 1.35 martin kbd_input_wskbd(struct kbd_softc *k, int code)
902 1.35 martin {
903 1.35 martin int type, key;
904 1.35 martin
905 1.47 martin #ifdef WSDISPLAY_COMPAT_RAWKBD
906 1.46 martin if (k->k_wsraw) {
907 1.47 martin u_char buf;
908 1.47 martin
909 1.51 martin buf = code;
910 1.51 martin wskbd_rawinput(k->k_wskbd, &buf, 1);
911 1.47 martin return;
912 1.46 martin }
913 1.47 martin #endif
914 1.47 martin
915 1.47 martin type = KEY_UP(code) ? WSCONS_EVENT_KEY_UP : WSCONS_EVENT_KEY_DOWN;
916 1.47 martin key = KEY_CODE(code);
917 1.47 martin wskbd_input(k->k_wskbd, type, key);
918 1.35 martin }
919 1.35 martin
920 1.35 martin int
921 1.54 christos wssunkbd_enable(void *v, int on)
922 1.35 martin {
923 1.35 martin struct kbd_softc *k = v;
924 1.44 martin if (k->k_wsenabled != on) {
925 1.44 martin k->k_wsenabled = on;
926 1.44 martin if (on) {
927 1.44 martin /* open actual underlying device */
928 1.44 martin if (k->k_ops != NULL && k->k_ops->open != NULL)
929 1.44 martin (*k->k_ops->open)(k);
930 1.44 martin ev_init(&k->k_events);
931 1.44 martin k->k_evmode = 0; /* XXX: OK? */
932 1.44 martin } else {
933 1.44 martin /* close underlying device */
934 1.44 martin if (k->k_ops != NULL && k->k_ops->close != NULL)
935 1.44 martin (*k->k_ops->close)(k);
936 1.44 martin }
937 1.35 martin }
938 1.35 martin return 0;
939 1.35 martin }
940 1.35 martin
941 1.35 martin void
942 1.54 christos wssunkbd_set_leds(void *v, int leds)
943 1.35 martin {
944 1.35 martin struct kbd_softc *k = v;
945 1.35 martin int l = 0;
946 1.35 martin
947 1.35 martin if (leds & WSKBD_LED_CAPS)
948 1.35 martin l |= LED_CAPS_LOCK;
949 1.35 martin if (leds & WSKBD_LED_NUM)
950 1.35 martin l |= LED_NUM_LOCK;
951 1.35 martin if (leds & WSKBD_LED_SCROLL)
952 1.35 martin l |= LED_SCROLL_LOCK;
953 1.35 martin if (leds & WSKBD_LED_COMPOSE)
954 1.35 martin l |= LED_COMPOSE;
955 1.35 martin if (k->k_ops != NULL && k->k_ops->setleds != NULL)
956 1.35 martin (*k->k_ops->setleds)(k, l, 0);
957 1.44 martin k->k_leds=l;
958 1.35 martin }
959 1.35 martin
960 1.54 christos static int
961 1.54 christos wssunkbd_ioctl(void *v, u_long cmd, caddr_t data, int flag, struct lwp *l)
962 1.35 martin {
963 1.44 martin struct kbd_softc *k = v;
964 1.44 martin
965 1.44 martin switch (cmd) {
966 1.44 martin case WSKBDIO_GTYPE:
967 1.46 martin /* we can't tell 4 from 5 or 6 */
968 1.46 martin *(int *)data = k->k_state.kbd_id < KB_SUN4 ?
969 1.46 martin WSKBD_TYPE_SUN : WSKBD_TYPE_SUN5;
970 1.44 martin return (0);
971 1.44 martin case WSKBDIO_SETLEDS:
972 1.44 martin wssunkbd_set_leds(v, *(int *)data);
973 1.44 martin return (0);
974 1.44 martin case WSKBDIO_GETLEDS:
975 1.44 martin *(int *)data = k->k_leds;
976 1.44 martin return (0);
977 1.46 martin #ifdef WSDISPLAY_COMPAT_RAWKBD
978 1.48 martin case WSKBDIO_SETMODE:
979 1.48 martin k->k_wsraw = *(int *)data == WSKBD_RAW;
980 1.48 martin return (0);
981 1.44 martin #endif
982 1.44 martin }
983 1.35 martin return EPASSTHROUGH;
984 1.35 martin }
985 1.35 martin
986 1.44 martin extern int prom_cngetc(dev_t);
987 1.44 martin
988 1.54 christos static void
989 1.54 christos sunkbd_wskbd_cngetc(void *v, u_int *type, int *data)
990 1.35 martin {
991 1.35 martin /* struct kbd_sun_softc *k = v; */
992 1.44 martin *data = prom_cngetc(0);
993 1.44 martin *type = WSCONS_EVENT_ASCII;
994 1.35 martin }
995 1.35 martin
996 1.35 martin void
997 1.54 christos sunkbd_wskbd_cnpollc(void *v, int on)
998 1.35 martin {
999 1.35 martin }
1000 1.35 martin
1001 1.35 martin static void
1002 1.54 christos sunkbd_bell_off(void *v)
1003 1.35 martin {
1004 1.35 martin struct kbd_softc *k = v;
1005 1.35 martin k->k_ops->docmd(k, KBD_CMD_NOBELL, 0);
1006 1.35 martin }
1007 1.35 martin
1008 1.35 martin void
1009 1.54 christos sunkbd_wskbd_cnbell(void *v, u_int pitch, u_int period, u_int volume)
1010 1.35 martin {
1011 1.35 martin struct kbd_softc *k = v;
1012 1.35 martin
1013 1.35 martin callout_reset(&k->k_wsbell, period*1000/hz, sunkbd_bell_off, v);
1014 1.35 martin k->k_ops->docmd(k, KBD_CMD_BELL, 0);
1015 1.35 martin }
1016 1.35 martin
1017 1.35 martin void
1018 1.54 christos kbd_enable(struct device *dev)
1019 1.35 martin {
1020 1.54 christos struct kbd_softc *k = (struct kbd_softc *)(void *)dev;
1021 1.35 martin struct wskbddev_attach_args a;
1022 1.35 martin
1023 1.44 martin if (k->k_isconsole)
1024 1.44 martin wskbd_cnattach(&sunkbd_wskbd_consops, k,
1025 1.44 martin &sunkbd_wskbd_keymapdata);
1026 1.35 martin
1027 1.44 martin a.console = k->k_isconsole;
1028 1.35 martin a.keymap = &sunkbd_wskbd_keymapdata;
1029 1.35 martin a.accessops = &sunkbd_wskbd_accessops;
1030 1.35 martin a.accesscookie = k;
1031 1.35 martin
1032 1.44 martin /* XXX why? */
1033 1.44 martin k->k_wsenabled = 0;
1034 1.44 martin
1035 1.35 martin /* Attach the wskbd */
1036 1.35 martin k->k_wskbd = config_found(&k->k_dev, &a, wskbddevprint);
1037 1.44 martin
1038 1.35 martin callout_init(&k->k_wsbell);
1039 1.44 martin
1040 1.44 martin wssunkbd_enable(k,1);
1041 1.44 martin
1042 1.44 martin wssunkbd_set_leds(k, WSKBD_LED_SCROLL | WSKBD_LED_NUM | WSKBD_LED_CAPS);
1043 1.44 martin delay(100000);
1044 1.44 martin wssunkbd_set_leds(k, 0);
1045 1.44 martin }
1046 1.44 martin
1047 1.44 martin void
1048 1.54 christos kbd_wskbd_attach(struct kbd_softc *k, int isconsole)
1049 1.44 martin {
1050 1.44 martin k->k_isconsole=isconsole;
1051 1.44 martin
1052 1.44 martin config_interrupts(&k->k_dev,kbd_enable);
1053 1.35 martin }
1054 1.35 martin #endif
1055