kbd.c revision 1.5 1 1.5 leo /* $NetBSD: kbd.c,v 1.5 1995/06/26 14:31:27 leo Exp $ */
2 1.1 leo
3 1.1 leo /*
4 1.1 leo * Copyright (c) 1995 Leo Weppelman
5 1.1 leo * Copyright (c) 1982, 1986, 1990 The Regents of the University of California.
6 1.1 leo * All rights reserved.
7 1.1 leo *
8 1.1 leo * Redistribution and use in source and binary forms, with or without
9 1.1 leo * modification, are permitted provided that the following conditions
10 1.1 leo * are met:
11 1.1 leo * 1. Redistributions of source code must retain the above copyright
12 1.1 leo * notice, this list of conditions and the following disclaimer.
13 1.1 leo * 2. Redistributions in binary form must reproduce the above copyright
14 1.1 leo * notice, this list of conditions and the following disclaimer in the
15 1.1 leo * documentation and/or other materials provided with the distribution.
16 1.1 leo * 3. All advertising materials mentioning features or use of this software
17 1.1 leo * must display the following acknowledgement:
18 1.1 leo * This product includes software developed by the University of
19 1.1 leo * California, Berkeley and its contributors.
20 1.1 leo * 4. Neither the name of the University nor the names of its contributors
21 1.1 leo * may be used to endorse or promote products derived from this software
22 1.1 leo * without specific prior written permission.
23 1.1 leo *
24 1.1 leo * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
25 1.1 leo * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
26 1.1 leo * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
27 1.1 leo * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
28 1.1 leo * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
29 1.1 leo * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
30 1.1 leo * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
31 1.1 leo * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
32 1.1 leo * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
33 1.1 leo * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
34 1.1 leo * SUCH DAMAGE.
35 1.1 leo */
36 1.1 leo
37 1.1 leo #include <sys/param.h>
38 1.1 leo #include <sys/systm.h>
39 1.1 leo #include <sys/device.h>
40 1.1 leo #include <sys/ioctl.h>
41 1.1 leo #include <sys/tty.h>
42 1.1 leo #include <sys/proc.h>
43 1.1 leo #include <sys/conf.h>
44 1.1 leo #include <sys/file.h>
45 1.1 leo #include <sys/kernel.h>
46 1.1 leo #include <sys/syslog.h>
47 1.1 leo #include <dev/cons.h>
48 1.1 leo #include <machine/cpu.h>
49 1.1 leo #include <machine/iomap.h>
50 1.1 leo #include <machine/mfp.h>
51 1.1 leo #include <machine/acia.h>
52 1.1 leo #include <machine/video.h>
53 1.1 leo #include <atari/dev/itevar.h>
54 1.1 leo #include <atari/dev/kbdreg.h>
55 1.1 leo #include <atari/dev/event_var.h>
56 1.1 leo #include <atari/dev/vuid_event.h>
57 1.1 leo
58 1.5 leo #include "mouse.h"
59 1.5 leo
60 1.1 leo /*
61 1.1 leo * The ringbuffer is the interface between the hard and soft interrupt handler.
62 1.1 leo * The hard interrupt runs straight from the MFP interrupt.
63 1.1 leo */
64 1.3 leo #define KBD_RING_SIZE 256 /* Sz of input ring buffer, must be power of 2 */
65 1.3 leo #define KBD_RING_MASK 255 /* Modulo mask for above */
66 1.1 leo
67 1.1 leo static u_char kbd_ring[KBD_RING_SIZE];
68 1.1 leo static volatile u_int kbd_rbput = 0; /* 'put' index */
69 1.1 leo static u_int kbd_rbget = 0; /* 'get' index */
70 1.1 leo static u_char kbd_soft = 0; /* 1: Softint has been scheduled*/
71 1.1 leo
72 1.1 leo struct kbd_softc {
73 1.1 leo int k_event_mode; /* if 1, collect events, */
74 1.1 leo /* else pass to ite */
75 1.1 leo struct evvar k_events; /* event queue state */
76 1.3 leo u_char k_soft_cs; /* control-reg. copy */
77 1.3 leo u_char k_package[20]; /* XXX package being build */
78 1.3 leo u_char k_pkg_size; /* Size of the package */
79 1.3 leo u_char k_pkg_idx;
80 1.3 leo u_char *k_sendp; /* Output pointer */
81 1.3 leo int k_send_cnt; /* Chars left for output */
82 1.1 leo };
83 1.1 leo
84 1.1 leo static struct kbd_softc kbd_softc;
85 1.1 leo
86 1.4 leo void kbd_write __P((u_char *, int));
87 1.4 leo
88 1.1 leo static void kbdsoft __P((void));
89 1.1 leo static void kbdattach __P((struct device *, struct device *, void *));
90 1.1 leo static int kbdmatch __P((struct device *, struct cfdata *, void *));
91 1.4 leo static int kbd_write_poll __P((u_char *, int));
92 1.3 leo static void kbd_pkg_start __P((struct kbd_softc *, u_char));
93 1.1 leo
94 1.1 leo struct cfdriver kbdcd = {
95 1.1 leo NULL, "kbd", (cfmatch_t)kbdmatch, kbdattach,
96 1.1 leo DV_DULL, sizeof(struct device), NULL, 0 };
97 1.1 leo
98 1.1 leo
99 1.1 leo /*ARGSUSED*/
100 1.1 leo static int
101 1.1 leo kbdmatch(pdp, cfp, auxp)
102 1.1 leo struct device *pdp;
103 1.1 leo struct cfdata *cfp;
104 1.1 leo void *auxp;
105 1.1 leo {
106 1.3 leo if (!strcmp((char *)auxp, "kbd"))
107 1.3 leo return (1);
108 1.3 leo return (0);
109 1.1 leo }
110 1.1 leo
111 1.1 leo /*ARGSUSED*/
112 1.1 leo static void
113 1.1 leo kbdattach(pdp, dp, auxp)
114 1.1 leo struct device *pdp, *dp;
115 1.1 leo void *auxp;
116 1.1 leo {
117 1.3 leo int timeout;
118 1.4 leo u_char kbd_rst[] = { 0x80, 0x01 };
119 1.4 leo u_char kbd_icmd[] = { 0x12, 0x15 };
120 1.3 leo
121 1.3 leo /*
122 1.3 leo * Disable keyboard interrupts from MFP
123 1.3 leo */
124 1.3 leo MFP->mf_ierb &= ~IB_AINT;
125 1.3 leo
126 1.3 leo /*
127 1.3 leo * Reset ACIA and intialize to:
128 1.3 leo * divide by 16, 8 data, 1 stop, no parity, enable RX interrupts
129 1.3 leo */
130 1.3 leo KBD->ac_cs = A_RESET;
131 1.3 leo delay(100); /* XXX: enough? */
132 1.3 leo KBD->ac_cs = kbd_softc.k_soft_cs = KBD_INIT | A_RXINT;
133 1.3 leo
134 1.3 leo /*
135 1.3 leo * Clear error conditions
136 1.3 leo */
137 1.3 leo while (KBD->ac_cs & (A_IRQ|A_RXRDY))
138 1.3 leo timeout = KBD->ac_da;
139 1.3 leo
140 1.3 leo /*
141 1.3 leo * Now send the reset string, and read+ignore it's response
142 1.3 leo */
143 1.4 leo if (!kbd_write_poll(kbd_rst, 2))
144 1.3 leo printf("kbd: error cannot reset keyboard\n");
145 1.3 leo for (timeout = 1000; timeout > 0; timeout--) {
146 1.3 leo if (KBD->ac_cs & (A_IRQ|A_RXRDY)) {
147 1.3 leo timeout = KBD->ac_da;
148 1.3 leo timeout = 100;
149 1.3 leo }
150 1.3 leo delay(100);
151 1.3 leo }
152 1.4 leo /*
153 1.4 leo * Send init command: disable mice & joysticks
154 1.4 leo */
155 1.4 leo kbd_write_poll(kbd_icmd, sizeof(kbd_icmd));
156 1.3 leo
157 1.1 leo printf("\n");
158 1.1 leo }
159 1.1 leo
160 1.1 leo /* definitions for atari keyboard encoding. */
161 1.3 leo #define KEY_CODE(c) ((u_char)(c) & 0x7f)
162 1.3 leo #define KEY_UP(c) ((u_char)(c) & 0x80)
163 1.3 leo #define IS_KEY(c) ((u_char)(c) < 0xf6)
164 1.1 leo
165 1.1 leo void
166 1.1 leo kbdenable()
167 1.1 leo {
168 1.3 leo int s, code;
169 1.1 leo
170 1.1 leo s = spltty();
171 1.3 leo
172 1.1 leo /*
173 1.3 leo * Clear error conditions...
174 1.1 leo */
175 1.3 leo while (KBD->ac_cs & (A_IRQ|A_RXRDY))
176 1.3 leo code = KBD->ac_da;
177 1.1 leo /*
178 1.1 leo * Enable interrupts from MFP
179 1.1 leo */
180 1.1 leo MFP->mf_iprb &= ~IB_AINT;
181 1.1 leo MFP->mf_ierb |= IB_AINT;
182 1.1 leo MFP->mf_imrb |= IB_AINT;
183 1.1 leo
184 1.1 leo kbd_softc.k_event_mode = 0;
185 1.1 leo kbd_softc.k_events.ev_io = 0;
186 1.3 leo kbd_softc.k_pkg_size = 0;
187 1.1 leo splx(s);
188 1.1 leo }
189 1.1 leo
190 1.1 leo int kbdopen(dev_t dev, int flags, int mode, struct proc *p)
191 1.1 leo {
192 1.1 leo int s, error;
193 1.1 leo
194 1.3 leo if (kbd_softc.k_events.ev_io)
195 1.1 leo return EBUSY;
196 1.1 leo
197 1.1 leo kbd_softc.k_events.ev_io = p;
198 1.1 leo ev_init(&kbd_softc.k_events);
199 1.1 leo return (0);
200 1.1 leo }
201 1.1 leo
202 1.1 leo int
203 1.1 leo kbdclose(dev_t dev, int flags, int mode, struct proc *p)
204 1.1 leo {
205 1.1 leo /* Turn off event mode, dump the queue */
206 1.1 leo kbd_softc.k_event_mode = 0;
207 1.1 leo ev_fini(&kbd_softc.k_events);
208 1.1 leo kbd_softc.k_events.ev_io = NULL;
209 1.1 leo return (0);
210 1.1 leo }
211 1.1 leo
212 1.1 leo int
213 1.1 leo kbdread(dev_t dev, struct uio *uio, int flags)
214 1.1 leo {
215 1.1 leo return ev_read(&kbd_softc.k_events, uio, flags);
216 1.1 leo }
217 1.1 leo
218 1.1 leo int
219 1.1 leo kbdioctl(dev_t dev,u_long cmd,register caddr_t data,int flag,struct proc *p)
220 1.1 leo {
221 1.1 leo register struct kbd_softc *k = &kbd_softc;
222 1.1 leo
223 1.1 leo switch (cmd) {
224 1.1 leo case KIOCTRANS:
225 1.3 leo if (*(int *)data == TR_UNTRANS_EVENT)
226 1.1 leo return 0;
227 1.1 leo break;
228 1.1 leo
229 1.1 leo case KIOCGTRANS:
230 1.1 leo /*
231 1.1 leo * Get translation mode
232 1.1 leo */
233 1.1 leo *(int *)data = TR_UNTRANS_EVENT;
234 1.1 leo return 0;
235 1.1 leo
236 1.1 leo case KIOCSDIRECT:
237 1.1 leo k->k_event_mode = *(int *)data;
238 1.1 leo return 0;
239 1.1 leo
240 1.1 leo case FIONBIO: /* we will remove this someday (soon???) */
241 1.1 leo return 0;
242 1.1 leo
243 1.1 leo case FIOASYNC:
244 1.1 leo k->k_events.ev_async = *(int *)data != 0;
245 1.1 leo return 0;
246 1.1 leo
247 1.1 leo case TIOCSPGRP:
248 1.3 leo if (*(int *)data != k->k_events.ev_io->p_pgid)
249 1.1 leo return EPERM;
250 1.1 leo return 0;
251 1.1 leo
252 1.1 leo default:
253 1.1 leo return ENOTTY;
254 1.1 leo }
255 1.1 leo
256 1.1 leo /*
257 1.1 leo * We identified the ioctl, but we do not handle it.
258 1.1 leo */
259 1.1 leo return EOPNOTSUPP; /* misuse, but what the heck */
260 1.1 leo }
261 1.1 leo
262 1.1 leo int
263 1.1 leo kbdselect (dev_t dev, int rw, struct proc *p)
264 1.1 leo {
265 1.1 leo return ev_select (&kbd_softc.k_events, rw, p);
266 1.1 leo }
267 1.1 leo
268 1.1 leo /*
269 1.3 leo * Keyboard interrupt handler called straight from MFP at spl6.
270 1.1 leo */
271 1.1 leo int
272 1.1 leo kbdintr(sr)
273 1.1 leo int sr; /* sr at time of interrupt */
274 1.1 leo {
275 1.1 leo int code;
276 1.3 leo int got_char = 0;
277 1.1 leo
278 1.1 leo /*
279 1.1 leo * There may be multiple keys available. Read them all.
280 1.1 leo */
281 1.3 leo while (KBD->ac_cs & (A_RXRDY|A_OE|A_PE)) {
282 1.3 leo got_char = 1;
283 1.3 leo if (KBD->ac_cs & (A_OE|A_PE)) {
284 1.3 leo code = KBD->ac_da; /* Silently ignore errors */
285 1.1 leo continue;
286 1.1 leo }
287 1.1 leo kbd_ring[kbd_rbput++ & KBD_RING_MASK] = KBD->ac_da;
288 1.1 leo }
289 1.3 leo
290 1.3 leo /*
291 1.3 leo * If characters are waiting for transmit, send them.
292 1.3 leo */
293 1.3 leo if ((kbd_softc.k_soft_cs & A_TXINT) && (KBD->ac_cs & A_TXRDY)) {
294 1.3 leo if (kbd_softc.k_sendp != NULL)
295 1.3 leo KBD->ac_da = *kbd_softc.k_sendp++;
296 1.3 leo if (--kbd_softc.k_send_cnt <= 0) {
297 1.3 leo /*
298 1.3 leo * The total package has been transmitted,
299 1.3 leo * wakeup anyone waiting for it.
300 1.3 leo */
301 1.3 leo KBD->ac_cs = (kbd_softc.k_soft_cs &= ~A_TXINT);
302 1.3 leo kbd_softc.k_sendp = NULL;
303 1.3 leo kbd_softc.k_send_cnt = 0;
304 1.3 leo wakeup((caddr_t)&kbd_softc.k_send_cnt);
305 1.3 leo }
306 1.3 leo }
307 1.3 leo
308 1.3 leo /*
309 1.3 leo * Activate software-level to handle possible input.
310 1.3 leo */
311 1.3 leo if (got_char) {
312 1.3 leo if (!BASEPRI(sr)) {
313 1.3 leo if (!kbd_soft++)
314 1.3 leo add_sicallback(kbdsoft, 0, 0);
315 1.3 leo } else {
316 1.3 leo spl1();
317 1.3 leo kbdsoft();
318 1.3 leo }
319 1.1 leo }
320 1.1 leo }
321 1.1 leo
322 1.1 leo /*
323 1.1 leo * Keyboard soft interrupt handler
324 1.1 leo */
325 1.1 leo void
326 1.1 leo kbdsoft()
327 1.1 leo {
328 1.1 leo int s;
329 1.1 leo u_char code;
330 1.1 leo struct kbd_softc *k = &kbd_softc;
331 1.1 leo struct firm_event *fe;
332 1.1 leo int put;
333 1.1 leo int n, get;
334 1.1 leo
335 1.1 leo kbd_soft = 0;
336 1.1 leo get = kbd_rbget;
337 1.1 leo
338 1.3 leo for (;;) {
339 1.1 leo n = kbd_rbput;
340 1.3 leo if (get == n) /* We're done */
341 1.1 leo break;
342 1.1 leo n -= get;
343 1.3 leo if (n > KBD_RING_SIZE) { /* Ring buffer overflow */
344 1.1 leo get += n - KBD_RING_SIZE;
345 1.1 leo n = KBD_RING_SIZE;
346 1.1 leo }
347 1.3 leo while (--n >= 0) {
348 1.1 leo code = kbd_ring[get++ & KBD_RING_MASK];
349 1.1 leo
350 1.1 leo /*
351 1.3 leo * If collecting a package, stuff it in and
352 1.3 leo * continue.
353 1.3 leo */
354 1.3 leo if (k->k_pkg_size && (k->k_pkg_idx < k->k_pkg_size)) {
355 1.3 leo k->k_package[k->k_pkg_idx++] = code;
356 1.3 leo if (k->k_pkg_idx == k->k_pkg_size) {
357 1.3 leo k->k_pkg_size = 0;
358 1.5 leo #if NMOUSE > 0
359 1.3 leo /*
360 1.3 leo * Package is complete, we can now
361 1.4 leo * send it to the mouse driver...
362 1.3 leo */
363 1.4 leo mouse_soft(k->k_package, k->k_pkg_size);
364 1.5 leo #endif /* NMOUSE */
365 1.3 leo }
366 1.3 leo continue;
367 1.3 leo }
368 1.3 leo /*
369 1.3 leo * If this is a package header, init pkg. handling.
370 1.3 leo */
371 1.3 leo if (!IS_KEY(code)) {
372 1.3 leo kbd_pkg_start(k, code);
373 1.3 leo continue;
374 1.3 leo }
375 1.3 leo /*
376 1.1 leo * if not in event mode, deliver straight to ite to
377 1.1 leo * process key stroke
378 1.1 leo */
379 1.3 leo if (!k->k_event_mode) {
380 1.1 leo /* Gets to spltty() by itself */
381 1.1 leo ite_filter(code, ITEFILT_TTY);
382 1.1 leo continue;
383 1.1 leo }
384 1.1 leo
385 1.1 leo /*
386 1.1 leo * Keyboard is generating events. Turn this keystroke
387 1.1 leo * into an event and put it in the queue. If the queue
388 1.1 leo * is full, the keystroke is lost (sorry!).
389 1.1 leo */
390 1.1 leo s = spltty();
391 1.1 leo put = k->k_events.ev_put;
392 1.1 leo fe = &k->k_events.ev_q[put];
393 1.1 leo put = (put + 1) % EV_QSIZE;
394 1.3 leo if (put == k->k_events.ev_get) {
395 1.1 leo log(LOG_WARNING,
396 1.1 leo "keyboard event queue overflow\n");
397 1.1 leo splx(s);
398 1.1 leo continue;
399 1.1 leo }
400 1.1 leo fe->id = KEY_CODE(code);
401 1.1 leo fe->value = KEY_UP(code) ? VKEY_UP : VKEY_DOWN;
402 1.1 leo fe->time = time;
403 1.1 leo k->k_events.ev_put = put;
404 1.1 leo EV_WAKEUP(&k->k_events);
405 1.1 leo splx(s);
406 1.1 leo }
407 1.1 leo kbd_rbget = get;
408 1.1 leo }
409 1.1 leo }
410 1.1 leo
411 1.1 leo static char sound[] = {
412 1.1 leo 0xA8,0x01,0xA9,0x01,0xAA,0x01,0x00,
413 1.1 leo 0xF8,0x10,0x10,0x10,0x00,0x20,0x03
414 1.1 leo };
415 1.1 leo
416 1.1 leo int
417 1.1 leo kbdbell()
418 1.1 leo {
419 1.3 leo register int i, sps;
420 1.1 leo
421 1.3 leo sps = spltty();
422 1.3 leo for (i = 0; i < sizeof(sound); i++) {
423 1.3 leo SOUND->sd_selr = i;
424 1.3 leo SOUND->sd_wdat = sound[i];
425 1.3 leo }
426 1.3 leo splx(sps);
427 1.1 leo }
428 1.1 leo
429 1.1 leo int
430 1.1 leo kbdgetcn()
431 1.1 leo {
432 1.1 leo u_char code;
433 1.4 leo int s = spltty();
434 1.4 leo int ints_active;
435 1.1 leo
436 1.4 leo ints_active = 0;
437 1.4 leo if (MFP->mf_imrb & IB_AINT) {
438 1.4 leo ints_active = 1;
439 1.4 leo MFP->mf_imrb &= ~IB_AINT;
440 1.4 leo }
441 1.3 leo for (;;) {
442 1.4 leo while (!((KBD->ac_cs & (A_IRQ|A_RXRDY)) == (A_IRQ|A_RXRDY)))
443 1.3 leo ; /* Wait for key */
444 1.3 leo if (KBD->ac_cs & (A_OE|A_PE)) {
445 1.3 leo code = KBD->ac_da; /* Silently ignore errors */
446 1.3 leo continue;
447 1.3 leo }
448 1.3 leo break;
449 1.3 leo }
450 1.1 leo
451 1.4 leo code = KBD->ac_da;
452 1.4 leo if (ints_active) {
453 1.4 leo MFP->mf_iprb &= ~IB_AINT;
454 1.4 leo MFP->mf_imrb |= IB_AINT;
455 1.4 leo }
456 1.1 leo
457 1.1 leo splx (s);
458 1.1 leo return code;
459 1.3 leo }
460 1.3 leo
461 1.3 leo /*
462 1.3 leo * Write a command to the keyboard in 'polled' mode.
463 1.3 leo */
464 1.3 leo static int
465 1.4 leo kbd_write_poll(cmd, len)
466 1.3 leo u_char *cmd;
467 1.3 leo int len;
468 1.3 leo {
469 1.3 leo int timeout;
470 1.3 leo
471 1.3 leo while (len-- > 0) {
472 1.3 leo KBD->ac_da = *cmd++;
473 1.3 leo for (timeout = 100; !(KBD->ac_cs & A_TXRDY); timeout--)
474 1.3 leo delay(10);
475 1.3 leo if (!(KBD->ac_cs & A_TXRDY))
476 1.3 leo return (0);
477 1.3 leo }
478 1.3 leo return (1);
479 1.3 leo }
480 1.3 leo
481 1.3 leo /*
482 1.3 leo * Write a command to the keyboard. Return when command is send.
483 1.3 leo */
484 1.4 leo void
485 1.3 leo kbd_write(cmd, len)
486 1.3 leo u_char *cmd;
487 1.3 leo int len;
488 1.3 leo {
489 1.3 leo struct kbd_softc *k = &kbd_softc;
490 1.3 leo int sps;
491 1.3 leo
492 1.3 leo /*
493 1.3 leo * Get to splhigh, 'real' interrupts arrive at spl6!
494 1.3 leo */
495 1.3 leo sps = splhigh();
496 1.3 leo
497 1.3 leo /*
498 1.3 leo * Make sure any privious write has ended...
499 1.3 leo */
500 1.3 leo while (k->k_sendp != NULL)
501 1.3 leo tsleep((caddr_t)&k->k_sendp, TTOPRI, "kbd_write1", 0);
502 1.3 leo
503 1.3 leo /*
504 1.3 leo * If the KBD-acia is not currently busy, send the first
505 1.3 leo * character now.
506 1.3 leo */
507 1.3 leo KBD->ac_cs = (k->k_soft_cs |= A_TXINT);
508 1.3 leo if (KBD->ac_cs & A_TXRDY) {
509 1.3 leo KBD->ac_da = *cmd++;
510 1.3 leo len--;
511 1.3 leo }
512 1.3 leo
513 1.3 leo /*
514 1.3 leo * If we're not yet done, wait until all characters are send.
515 1.3 leo */
516 1.3 leo if (len > 0) {
517 1.3 leo k->k_sendp = cmd;
518 1.3 leo k->k_send_cnt = len;
519 1.3 leo tsleep((caddr_t)&k->k_send_cnt, TTOPRI, "kbd_write2", 0);
520 1.3 leo }
521 1.3 leo splx(sps);
522 1.3 leo
523 1.3 leo /*
524 1.3 leo * Wakeup all procs waiting for us.
525 1.3 leo */
526 1.3 leo wakeup((caddr_t)&k->k_sendp);
527 1.3 leo }
528 1.3 leo
529 1.3 leo /*
530 1.3 leo * Setup softc-fields to assemble a keyboard package.
531 1.3 leo */
532 1.3 leo static void
533 1.3 leo kbd_pkg_start(kp, msg_start)
534 1.3 leo struct kbd_softc *kp;
535 1.3 leo u_char msg_start;
536 1.3 leo {
537 1.3 leo kp->k_pkg_idx = 1;
538 1.3 leo kp->k_package[0] = msg_start;
539 1.3 leo switch (msg_start) {
540 1.3 leo case 0xf6:
541 1.3 leo kp->k_pkg_size = 8;
542 1.3 leo break;
543 1.3 leo case 0xf7:
544 1.3 leo kp->k_pkg_size = 6;
545 1.3 leo break;
546 1.3 leo case 0xf8:
547 1.3 leo case 0xf9:
548 1.3 leo case 0xfa:
549 1.3 leo case 0xfb:
550 1.3 leo kp->k_pkg_size = 3;
551 1.3 leo break;
552 1.3 leo case 0xfc:
553 1.3 leo kp->k_pkg_size = 7;
554 1.3 leo break;
555 1.3 leo case 0xfe:
556 1.3 leo case 0xff:
557 1.3 leo kp->k_pkg_size = 2;
558 1.3 leo break;
559 1.3 leo default:
560 1.3 leo printf("kbd: Unknown packet 0x%x\n", msg_start);
561 1.3 leo break;
562 1.3 leo }
563 1.1 leo }
564