xref: /freebsd/sys/dev/atkbdc/atkbd.c (revision 6e8394b8baa7d5d9153ab90de6824bcd19b3b4e1)
1 /*-
2  * Copyright (c) 1999 Kazutaka YOKOTA <yokota@zodiac.mech.utsunomiya-u.ac.jp>
3  * All rights reserved.
4  *
5  * Redistribution and use in source and binary forms, with or without
6  * modification, are permitted provided that the following conditions
7  * are met:
8  * 1. Redistributions of source code must retain the above copyright
9  *    notice, this list of conditions and the following disclaimer as
10  *    the first lines of this file unmodified.
11  * 2. Redistributions in binary form must reproduce the above copyright
12  *    notice, this list of conditions and the following disclaimer in the
13  *    documentation and/or other materials provided with the distribution.
14  *
15  * THIS SOFTWARE IS PROVIDED BY THE AUTHORS ``AS IS'' AND ANY EXPRESS OR
16  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
17  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
18  * IN NO EVENT SHALL THE AUTHORS BE LIABLE FOR ANY DIRECT, INDIRECT,
19  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
20  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
21  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
22  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
23  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
24  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
25  *
26  * $Id: atkbd.c,v 1.10 1999/05/20 09:49:33 yokota Exp $
27  */
28 
29 #include "atkbd.h"
30 #include "opt_kbd.h"
31 #include "opt_atkbd.h"
32 #include "opt_devfs.h"
33 
34 #if NATKBD > 0
35 
36 #include <sys/param.h>
37 #include <sys/systm.h>
38 #include <sys/kernel.h>
39 #include <sys/conf.h>
40 #include <sys/bus.h>
41 #include <sys/proc.h>
42 #include <sys/tty.h>
43 #include <sys/fcntl.h>
44 #include <sys/malloc.h>
45 
46 #include <dev/kbd/kbdreg.h>
47 #include <dev/kbd/atkbdreg.h>
48 #include <dev/kbd/atkbdcreg.h>
49 
50 #include <isa/isareg.h>
51 
52 #define ATKBD_SOFTC(unit)		\
53 	((atkbd_softc_t *)devclass_get_softc(atkbd_devclass, unit))
54 
55 extern devclass_t	atkbd_devclass;
56 
57 static timeout_t	atkbd_timeout;
58 
59 #ifdef KBD_INSTALL_CDEV
60 
61 static d_open_t		atkbdopen;
62 static d_close_t	atkbdclose;
63 static d_read_t		atkbdread;
64 static d_ioctl_t	atkbdioctl;
65 static d_poll_t		atkbdpoll;
66 
67 static struct cdevsw atkbd_cdevsw = {
68 	/* open */	atkbdopen,
69 	/* close */	atkbdclose,
70 	/* read */	atkbdread,
71 	/* write */	nowrite,
72 	/* ioctl */	atkbdioctl,
73 	/* stop */	nostop,
74 	/* reset */	noreset,
75 	/* devtotty */	nodevtotty,
76 	/* poll */	atkbdpoll,
77 	/* mmap */	nommap,
78 	/* strategy */	nostrategy,
79 	/* name */	ATKBD_DRIVER_NAME,
80 	/* parms */	noparms,
81 	/* maj */	-1,
82 	/* dump */	nodump,
83 	/* psize */	nopsize,
84 	/* flags */	0,
85 	/* maxio */	0,
86 	/* bmaj */	-1
87 };
88 
89 #endif /* KBD_INSTALL_CDEV */
90 
91 int
92 atkbd_probe_unit(int unit, int port, int irq, int flags)
93 {
94 	keyboard_switch_t *sw;
95 	int args[2];
96 	int error;
97 
98 	sw = kbd_get_switch(ATKBD_DRIVER_NAME);
99 	if (sw == NULL)
100 		return ENXIO;
101 
102 	args[0] = port;
103 	args[1] = irq;
104 	error = (*sw->probe)(unit, args, flags);
105 	if (error)
106 		return error;
107 	return 0;
108 }
109 
110 int
111 atkbd_attach_unit(int unit, atkbd_softc_t *sc, int port, int irq, int flags)
112 {
113 	keyboard_switch_t *sw;
114 	int args[2];
115 	int error;
116 
117 	if (sc->flags & ATKBD_ATTACHED)
118 		return 0;
119 
120 	sw = kbd_get_switch(ATKBD_DRIVER_NAME);
121 	if (sw == NULL)
122 		return ENXIO;
123 
124 	/* reset, initialize and enable the device */
125 	args[0] = port;
126 	args[1] = irq;
127 	sc->kbd = NULL;
128 	error = (*sw->probe)(unit, args, flags);
129 	if (error)
130 		return error;
131 	error = (*sw->init)(unit, &sc->kbd, args, flags);
132 	if (error)
133 		return error;
134 	(*sw->enable)(sc->kbd);
135 
136 #ifdef KBD_INSTALL_CDEV
137 	/* attach a virtual keyboard cdev */
138 	error = kbd_attach(makedev(0, ATKBD_MKMINOR(unit)), sc->kbd,
139 			   &atkbd_cdevsw);
140 	if (error)
141 		return error;
142 #endif
143 
144 	/*
145 	 * This is a kludge to compensate for lost keyboard interrupts.
146 	 * A similar code used to be in syscons. See below. XXX
147 	 */
148 	atkbd_timeout(sc->kbd);
149 
150 	if (bootverbose)
151 		(*sw->diag)(sc->kbd, bootverbose);
152 
153 	sc->flags |= ATKBD_ATTACHED;
154 	return 0;
155 }
156 
157 static void
158 atkbd_timeout(void *arg)
159 {
160 	keyboard_t *kbd;
161 	int s;
162 
163 	/* The following comments are extracted from syscons.c (1.287) */
164 	/*
165 	 * With release 2.1 of the Xaccel server, the keyboard is left
166 	 * hanging pretty often. Apparently an interrupt from the
167 	 * keyboard is lost, and I don't know why (yet).
168 	 * This ugly hack calls scintr if input is ready for the keyboard
169 	 * and conveniently hides the problem.			XXX
170 	 */
171 	/*
172 	 * Try removing anything stuck in the keyboard controller; whether
173 	 * it's a keyboard scan code or mouse data. `scintr()' doesn't
174 	 * read the mouse data directly, but `kbdio' routines will, as a
175 	 * side effect.
176 	 */
177 	s = spltty();
178 	kbd = (keyboard_t *)arg;
179 	if ((*kbdsw[kbd->kb_index]->lock)(kbd, TRUE)) {
180 		/*
181 		 * We have seen the lock flag is not set. Let's reset
182 		 * the flag early, otherwise the LED update routine fails
183 		 * which may want the lock during the interrupt routine.
184 		 */
185 		(*kbdsw[kbd->kb_index]->lock)(kbd, FALSE);
186 		if ((*kbdsw[kbd->kb_index]->check_char)(kbd))
187 			(*kbdsw[kbd->kb_index]->intr)(kbd, NULL);
188 	}
189 	splx(s);
190 	timeout(atkbd_timeout, arg, hz/10);
191 }
192 
193 /* cdev driver functions */
194 
195 #ifdef KBD_INSTALL_CDEV
196 
197 static int
198 atkbdopen(dev_t dev, int flag, int mode, struct proc *p)
199 {
200 	atkbd_softc_t *sc;
201 
202 	sc = ATKBD_SOFTC(ATKBD_UNIT(dev));
203 	if (sc == NULL)
204 		return ENXIO;
205 	if (mode & (FWRITE | O_CREAT | O_APPEND | O_TRUNC))
206 		return ENODEV;
207 
208 	/* FIXME: set the initial input mode (K_XLATE?) and lock state? */
209 	return genkbdopen(&sc->gensc, sc->kbd, flag, mode, p);
210 }
211 
212 static int
213 atkbdclose(dev_t dev, int flag, int mode, struct proc *p)
214 {
215 	atkbd_softc_t *sc;
216 
217 	sc = ATKBD_SOFTC(ATKBD_UNIT(dev));
218 	return genkbdclose(&sc->gensc, sc->kbd, flag, mode, p);
219 }
220 
221 static int
222 atkbdread(dev_t dev, struct uio *uio, int flag)
223 {
224 	atkbd_softc_t *sc;
225 
226 	sc = ATKBD_SOFTC(ATKBD_UNIT(dev));
227 	return genkbdread(&sc->gensc, sc->kbd, uio, flag);
228 }
229 
230 static int
231 atkbdioctl(dev_t dev, u_long cmd, caddr_t arg, int flag, struct proc *p)
232 {
233 	atkbd_softc_t *sc;
234 
235 	sc = ATKBD_SOFTC(ATKBD_UNIT(dev));
236 	return genkbdioctl(&sc->gensc, sc->kbd, cmd, arg, flag, p);
237 }
238 
239 static int
240 atkbdpoll(dev_t dev, int event, struct proc *p)
241 {
242 	atkbd_softc_t *sc;
243 
244 	sc = ATKBD_SOFTC(ATKBD_UNIT(dev));
245 	return genkbdpoll(&sc->gensc, sc->kbd, event, p);
246 }
247 
248 #endif /* KBD_INSTALL_CDEV */
249 
250 /* LOW-LEVEL */
251 
252 #include <machine/limits.h>
253 #include <machine/console.h>
254 #include <machine/clock.h>
255 
256 #define ATKBD_DEFAULT	0
257 
258 typedef struct atkbd_state {
259 	KBDC		kbdc;		/* keyboard controller */
260 					/* XXX: don't move this field; pcvt
261 					 * expects `kbdc' to be the first
262 					 * field in this structure. */
263 	int		ks_mode;	/* input mode (K_XLATE,K_RAW,K_CODE) */
264 	int		ks_flags;	/* flags */
265 #define COMPOSE		(1 << 0)
266 	int		ks_polling;
267 	int		ks_state;	/* shift/lock key state */
268 	int		ks_accents;	/* accent key index (> 0) */
269 	u_int		ks_composed_char; /* composed char code (> 0) */
270 	u_char		ks_prefix;	/* AT scan code prefix */
271 } atkbd_state_t;
272 
273 /* keyboard driver declaration */
274 static int		atkbd_configure(int flags);
275 static kbd_probe_t	atkbd_probe;
276 static kbd_init_t	atkbd_init;
277 static kbd_term_t	atkbd_term;
278 static kbd_intr_t	atkbd_intr;
279 static kbd_test_if_t	atkbd_test_if;
280 static kbd_enable_t	atkbd_enable;
281 static kbd_disable_t	atkbd_disable;
282 static kbd_read_t	atkbd_read;
283 static kbd_check_t	atkbd_check;
284 static kbd_read_char_t	atkbd_read_char;
285 static kbd_check_char_t	atkbd_check_char;
286 static kbd_ioctl_t	atkbd_ioctl;
287 static kbd_lock_t	atkbd_lock;
288 static kbd_clear_state_t atkbd_clear_state;
289 static kbd_get_state_t	atkbd_get_state;
290 static kbd_set_state_t	atkbd_set_state;
291 static kbd_poll_mode_t	atkbd_poll;
292 
293 keyboard_switch_t atkbdsw = {
294 	atkbd_probe,
295 	atkbd_init,
296 	atkbd_term,
297 	atkbd_intr,
298 	atkbd_test_if,
299 	atkbd_enable,
300 	atkbd_disable,
301 	atkbd_read,
302 	atkbd_check,
303 	atkbd_read_char,
304 	atkbd_check_char,
305 	atkbd_ioctl,
306 	atkbd_lock,
307 	atkbd_clear_state,
308 	atkbd_get_state,
309 	atkbd_set_state,
310 	genkbd_get_fkeystr,
311 	atkbd_poll,
312 	genkbd_diag,
313 };
314 
315 KEYBOARD_DRIVER(atkbd, atkbdsw, atkbd_configure);
316 
317 /* local functions */
318 static int		setup_kbd_port(KBDC kbdc, int port, int intr);
319 static int		get_kbd_echo(KBDC kbdc);
320 static int		probe_keyboard(KBDC kbdc, int flags);
321 static int		init_keyboard(KBDC kbdc, int *type, int flags);
322 static int		write_kbd(KBDC kbdc, int command, int data);
323 static int		get_kbd_id(KBDC kbdc);
324 static int		typematic(int delay, int rate);
325 
326 /* local variables */
327 
328 /* the initial key map, accent map and fkey strings */
329 #ifdef ATKBD_DFLT_KEYMAP
330 #define KBD_DFLT_KEYMAP
331 #include "atkbdmap.h"
332 #endif
333 #include <dev/kbd/kbdtables.h>
334 
335 /* structures for the default keyboard */
336 static keyboard_t	default_kbd;
337 static atkbd_state_t	default_kbd_state;
338 static keymap_t		default_keymap;
339 static accentmap_t	default_accentmap;
340 static fkeytab_t	default_fkeytab[NUM_FKEYS];
341 
342 /*
343  * The back door to the keyboard driver!
344  * This function is called by the console driver, via the kbdio module,
345  * to tickle keyboard drivers when the low-level console is being initialized.
346  * Almost nothing in the kernel has been initialied yet.  Try to probe
347  * keyboards if possible.
348  * NOTE: because of the way the low-level conole is initialized, this routine
349  * may be called more than once!!
350  */
351 static int
352 atkbd_configure(int flags)
353 {
354 	keyboard_t *kbd;
355 	int arg[2];
356 	int i;
357 
358 	/* if the driver is disabled, unregister the keyboard if any */
359 	if ((resource_int_value("atkbd", ATKBD_DEFAULT, "disabled", &i) == 0)
360 	    && i != 0) {
361 		i = kbd_find_keyboard(ATKBD_DRIVER_NAME, ATKBD_DEFAULT);
362 		if (i >= 0) {
363 			kbd = kbd_get_keyboard(i);
364 			kbd_unregister(kbd);
365 			kbd->kb_flags &= ~KB_REGISTERED;
366 			return 0;
367 		}
368 	}
369 
370 	/* XXX: a kludge to obtain the device configuration flags */
371 	if (resource_int_value("atkbd", ATKBD_DEFAULT, "flags", &i) == 0)
372 		flags |= i;
373 
374 	/* probe the keyboard controller */
375 	atkbdc_configure();
376 
377 	/* probe the default keyboard */
378 	arg[0] = -1;
379 	arg[1] = -1;
380 	kbd = NULL;
381 	if (atkbd_probe(ATKBD_DEFAULT, arg, flags))
382 		return 0;
383 	if (atkbd_init(ATKBD_DEFAULT, &kbd, arg, flags))
384 		return 0;
385 
386 	/* return the number of found keyboards */
387 	return 1;
388 }
389 
390 /* low-level functions */
391 
392 /* detect a keyboard */
393 static int
394 atkbd_probe(int unit, void *arg, int flags)
395 {
396 	KBDC kbdc;
397 	int *data = (int *)arg;
398 
399 	/* XXX */
400 	if (unit == ATKBD_DEFAULT) {
401 		if (KBD_IS_PROBED(&default_kbd))
402 			return 0;
403 	}
404 
405 	kbdc = kbdc_open(data[0]);
406 	if (kbdc == NULL)
407 		return ENXIO;
408 	if (probe_keyboard(kbdc, flags)) {
409 		if (flags & KB_CONF_FAIL_IF_NO_KBD)
410 			return ENXIO;
411 	}
412 	return 0;
413 }
414 
415 /* reset and initialize the device */
416 static int
417 atkbd_init(int unit, keyboard_t **kbdp, void *arg, int flags)
418 {
419 	keyboard_t *kbd;
420 	atkbd_state_t *state;
421 	keymap_t *keymap;
422 	accentmap_t *accmap;
423 	fkeytab_t *fkeymap;
424 	int fkeymap_size;
425 	int *data = (int *)arg;
426 
427 	/* XXX */
428 	if (unit == ATKBD_DEFAULT) {
429 		*kbdp = kbd = &default_kbd;
430 		if (KBD_IS_INITIALIZED(kbd) && KBD_IS_CONFIGURED(kbd))
431 			return 0;
432 		state = &default_kbd_state;
433 		keymap = &default_keymap;
434 		accmap = &default_accentmap;
435 		fkeymap = default_fkeytab;
436 		fkeymap_size =
437 			sizeof(default_fkeytab)/sizeof(default_fkeytab[0]);
438 	} else if (*kbdp == NULL) {
439 		*kbdp = kbd = malloc(sizeof(*kbd), M_DEVBUF, M_NOWAIT);
440 		if (kbd == NULL)
441 			return ENOMEM;
442 		bzero(kbd, sizeof(*kbd));
443 		state = malloc(sizeof(*state), M_DEVBUF, M_NOWAIT);
444 		keymap = malloc(sizeof(key_map), M_DEVBUF, M_NOWAIT);
445 		accmap = malloc(sizeof(accent_map), M_DEVBUF, M_NOWAIT);
446 		fkeymap = malloc(sizeof(fkey_tab), M_DEVBUF, M_NOWAIT);
447 		fkeymap_size = sizeof(fkey_tab)/sizeof(fkey_tab[0]);
448 		if ((state == NULL) || (keymap == NULL) || (accmap == NULL)
449 		     || (fkeymap == NULL)) {
450 			if (state != NULL)
451 				free(state, M_DEVBUF);
452 			if (keymap != NULL)
453 				free(keymap, M_DEVBUF);
454 			if (accmap != NULL)
455 				free(accmap, M_DEVBUF);
456 			if (fkeymap != NULL)
457 				free(fkeymap, M_DEVBUF);
458 			free(kbd, M_DEVBUF);
459 			return ENOMEM;
460 		}
461 		bzero(state, sizeof(*state));
462 	} else if (KBD_IS_INITIALIZED(*kbdp) && KBD_IS_CONFIGURED(*kbdp)) {
463 		return 0;
464 	} else {
465 		kbd = *kbdp;
466 		state = (atkbd_state_t *)kbd->kb_data;
467 		bzero(state, sizeof(*state));
468 		keymap = kbd->kb_keymap;
469 		accmap = kbd->kb_accentmap;
470 		fkeymap = kbd->kb_fkeytab;
471 		fkeymap_size = kbd->kb_fkeytab_size;
472 	}
473 
474 	if (!KBD_IS_PROBED(kbd)) {
475 		state->kbdc = kbdc_open(data[0]);
476 		if (state->kbdc == NULL)
477 			return ENXIO;
478 		kbd_init_struct(kbd, ATKBD_DRIVER_NAME, KB_OTHER, unit, flags,
479 				data[0], IO_KBDSIZE);
480 		bcopy(&key_map, keymap, sizeof(key_map));
481 		bcopy(&accent_map, accmap, sizeof(accent_map));
482 		bcopy(fkey_tab, fkeymap,
483 		      imin(fkeymap_size*sizeof(fkeymap[0]), sizeof(fkey_tab)));
484 		kbd_set_maps(kbd, keymap, accmap, fkeymap, fkeymap_size);
485 		kbd->kb_data = (void *)state;
486 
487 		if (probe_keyboard(state->kbdc, flags)) { /* shouldn't happen */
488 			if (flags & KB_CONF_FAIL_IF_NO_KBD)
489 				return ENXIO;
490 		} else {
491 			KBD_FOUND_DEVICE(kbd);
492 		}
493 		atkbd_clear_state(kbd);
494 		state->ks_mode = K_XLATE;
495 		/*
496 		 * FIXME: set the initial value for lock keys in ks_state
497 		 * according to the BIOS data?
498 		 */
499 		KBD_PROBE_DONE(kbd);
500 	}
501 	if (!KBD_IS_INITIALIZED(kbd) && !(flags & KB_CONF_PROBE_ONLY)) {
502 		if (KBD_HAS_DEVICE(kbd)
503 	    	    && init_keyboard(state->kbdc, &kbd->kb_type, kbd->kb_config)
504 	    	    && (kbd->kb_config & KB_CONF_FAIL_IF_NO_KBD))
505 			return ENXIO;
506 		atkbd_ioctl(kbd, KDSETLED, (caddr_t)&state->ks_state);
507 		KBD_INIT_DONE(kbd);
508 	}
509 	if (!KBD_IS_CONFIGURED(kbd)) {
510 		if (kbd_register(kbd) < 0)
511 			return ENXIO;
512 		KBD_CONFIG_DONE(kbd);
513 	}
514 
515 	return 0;
516 }
517 
518 /* finish using this keyboard */
519 static int
520 atkbd_term(keyboard_t *kbd)
521 {
522 	kbd_unregister(kbd);
523 	return 0;
524 }
525 
526 /* keyboard interrupt routine */
527 static int
528 atkbd_intr(keyboard_t *kbd, void *arg)
529 {
530 	atkbd_state_t *state;
531 	int c;
532 
533 	if (KBD_IS_ACTIVE(kbd) && KBD_IS_BUSY(kbd)) {
534 		/* let the callback function to process the input */
535 		(*kbd->kb_callback.kc_func)(kbd, KBDIO_KEYINPUT,
536 					    kbd->kb_callback.kc_arg);
537 	} else {
538 		/* read and discard the input; no one is waiting for input */
539 		do {
540 			c = atkbd_read_char(kbd, FALSE);
541 		} while (c != NOKEY);
542 
543 		if (!KBD_HAS_DEVICE(kbd)) {
544 			/*
545 			 * The keyboard was not detected before;
546 			 * it must have been reconnected!
547 			 */
548 			state = (atkbd_state_t *)kbd->kb_data;
549 			init_keyboard(state->kbdc, &kbd->kb_type,
550 				      kbd->kb_config);
551 			atkbd_ioctl(kbd, KDSETLED, (caddr_t)&state->ks_state);
552 			KBD_FOUND_DEVICE(kbd);
553 		}
554 	}
555 	return 0;
556 }
557 
558 /* test the interface to the device */
559 static int
560 atkbd_test_if(keyboard_t *kbd)
561 {
562 	int error;
563 	int s;
564 
565 	error = 0;
566 	empty_both_buffers(((atkbd_state_t *)kbd->kb_data)->kbdc, 10);
567 	s = spltty();
568 	if (!test_controller(((atkbd_state_t *)kbd->kb_data)->kbdc))
569 		error = EIO;
570 	else if (test_kbd_port(((atkbd_state_t *)kbd->kb_data)->kbdc) != 0)
571 		error = EIO;
572 	splx(s);
573 
574 	return error;
575 }
576 
577 /*
578  * Enable the access to the device; until this function is called,
579  * the client cannot read from the keyboard.
580  */
581 static int
582 atkbd_enable(keyboard_t *kbd)
583 {
584 	int s;
585 
586 	s = spltty();
587 	KBD_ACTIVATE(kbd);
588 	splx(s);
589 	return 0;
590 }
591 
592 /* disallow the access to the device */
593 static int
594 atkbd_disable(keyboard_t *kbd)
595 {
596 	int s;
597 
598 	s = spltty();
599 	KBD_DEACTIVATE(kbd);
600 	splx(s);
601 	return 0;
602 }
603 
604 /* read one byte from the keyboard if it's allowed */
605 static int
606 atkbd_read(keyboard_t *kbd, int wait)
607 {
608 	int c;
609 
610 	if (wait)
611 		c = read_kbd_data(((atkbd_state_t *)kbd->kb_data)->kbdc);
612 	else
613 		c = read_kbd_data_no_wait(((atkbd_state_t *)kbd->kb_data)->kbdc);
614 	return (KBD_IS_ACTIVE(kbd) ? c : -1);
615 }
616 
617 /* check if data is waiting */
618 static int
619 atkbd_check(keyboard_t *kbd)
620 {
621 	if (!KBD_IS_ACTIVE(kbd))
622 		return FALSE;
623 	return kbdc_data_ready(((atkbd_state_t *)kbd->kb_data)->kbdc);
624 }
625 
626 /* read char from the keyboard */
627 static u_int
628 atkbd_read_char(keyboard_t *kbd, int wait)
629 {
630 	atkbd_state_t *state;
631 	u_int action;
632 	int scancode;
633 	int keycode;
634 
635 	state = (atkbd_state_t *)kbd->kb_data;
636 next_code:
637 	/* do we have a composed char to return? */
638 	if (!(state->ks_flags & COMPOSE) && (state->ks_composed_char > 0)) {
639 		action = state->ks_composed_char;
640 		state->ks_composed_char = 0;
641 		if (action > UCHAR_MAX)
642 			return ERRKEY;
643 		return action;
644 	}
645 
646 	/* see if there is something in the keyboard port */
647 	if (wait) {
648 		do {
649 			scancode = read_kbd_data(state->kbdc);
650 		} while (scancode == -1);
651 	} else {
652 		scancode = read_kbd_data_no_wait(state->kbdc);
653 		if (scancode == -1)
654 			return NOKEY;
655 	}
656 
657 	/* return the byte as is for the K_RAW mode */
658 	if (state->ks_mode == K_RAW)
659 		return scancode;
660 
661 	/* translate the scan code into a keycode */
662 	keycode = scancode & 0x7F;
663 	switch (state->ks_prefix) {
664 	case 0x00:	/* normal scancode */
665 		switch(scancode) {
666 		case 0xB8:	/* left alt (compose key) released */
667 			if (state->ks_flags & COMPOSE) {
668 				state->ks_flags &= ~COMPOSE;
669 				if (state->ks_composed_char > UCHAR_MAX)
670 					state->ks_composed_char = 0;
671 			}
672 			break;
673 		case 0x38:	/* left alt (compose key) pressed */
674 			if (!(state->ks_flags & COMPOSE)) {
675 				state->ks_flags |= COMPOSE;
676 				state->ks_composed_char = 0;
677 			}
678 			break;
679 		case 0xE0:
680 		case 0xE1:
681 			state->ks_prefix = scancode;
682 			goto next_code;
683 		}
684 		break;
685 	case 0xE0:      /* 0xE0 prefix */
686 		state->ks_prefix = 0;
687 		switch (keycode) {
688 		case 0x1C:	/* right enter key */
689 			keycode = 0x59;
690 			break;
691 		case 0x1D:	/* right ctrl key */
692 			keycode = 0x5A;
693 			break;
694 		case 0x35:	/* keypad divide key */
695 	    		keycode = 0x5B;
696 	    		break;
697 		case 0x37:	/* print scrn key */
698 	    		keycode = 0x5C;
699 	    		break;
700 		case 0x38:	/* right alt key (alt gr) */
701 	    		keycode = 0x5D;
702 	    		break;
703 		case 0x46:	/* ctrl-pause/break on AT 101 (see below) */
704 			keycode = 0x68;
705 	    		break;
706 		case 0x47:	/* grey home key */
707 	    		keycode = 0x5E;
708 	    		break;
709 		case 0x48:	/* grey up arrow key */
710 	    		keycode = 0x5F;
711 	    		break;
712 		case 0x49:	/* grey page up key */
713 	    		keycode = 0x60;
714 	    		break;
715 		case 0x4B:	/* grey left arrow key */
716 	    		keycode = 0x61;
717 	    		break;
718 		case 0x4D:	/* grey right arrow key */
719 	    		keycode = 0x62;
720 	    		break;
721 		case 0x4F:	/* grey end key */
722 	    		keycode = 0x63;
723 	    		break;
724 		case 0x50:	/* grey down arrow key */
725 	    		keycode = 0x64;
726 	    		break;
727 		case 0x51:	/* grey page down key */
728 	    		keycode = 0x65;
729 	    		break;
730 		case 0x52:	/* grey insert key */
731 	    		keycode = 0x66;
732 	    		break;
733 		case 0x53:	/* grey delete key */
734 	    		keycode = 0x67;
735 	    		break;
736 		/* the following 3 are only used on the MS "Natural" keyboard */
737 		case 0x5b:	/* left Window key */
738 	    		keycode = 0x69;
739 	    		break;
740 		case 0x5c:	/* right Window key */
741 	    		keycode = 0x6a;
742 	    		break;
743 		case 0x5d:	/* menu key */
744 	    		keycode = 0x6b;
745 	    		break;
746 		default:	/* ignore everything else */
747 	    		goto next_code;
748 		}
749 		break;
750     	case 0xE1:	/* 0xE1 prefix */
751 		/*
752 		 * The pause/break key on the 101 keyboard produces:
753 		 * E1-1D-45 E1-9D-C5
754 		 * Ctrl-pause/break produces:
755 		 * E0-46 E0-C6 (See above.)
756 		 */
757 		state->ks_prefix = 0;
758 		if (keycode == 0x1D)
759 	    		state->ks_prefix = 0x1D;
760 		goto next_code;
761 		/* NOT REACHED */
762     	case 0x1D:	/* pause / break */
763 		state->ks_prefix = 0;
764 		if (keycode != 0x45)
765 			goto next_code;
766 		keycode = 0x68;
767 		break;
768 	}
769 
770 	if (kbd->kb_type == KB_84) {
771 		switch (keycode) {
772 		case 0x37:	/* *(numpad)/print screen */
773 			if (state->ks_flags & SHIFTS)
774 	    			keycode = 0x5c;	/* print screen */
775 			break;
776 		case 0x45:	/* num lock/pause */
777 			if (state->ks_flags & CTLS)
778 				keycode = 0x68;	/* pause */
779 			break;
780 		case 0x46:	/* scroll lock/break */
781 			if (state->ks_flags & CTLS)
782 				keycode = 0x6c;	/* break */
783 			break;
784 		}
785 	} else if (kbd->kb_type == KB_101) {
786 		switch (keycode) {
787 		case 0x5c:	/* print screen */
788 			if (state->ks_flags & ALTS)
789 				keycode = 0x54;	/* sysrq */
790 			break;
791 		case 0x68:	/* pause/break */
792 			if (state->ks_flags & CTLS)
793 				keycode = 0x6c;	/* break */
794 			break;
795 		}
796 	}
797 
798 	/* return the key code in the K_CODE mode */
799 	if (state->ks_mode == K_CODE)
800 		return (keycode | (scancode & 0x80));
801 
802 	/* compose a character code */
803 	if (state->ks_flags & COMPOSE) {
804 		switch (keycode | (scancode & 0x80)) {
805 		/* key pressed, process it */
806 		case 0x47: case 0x48: case 0x49:	/* keypad 7,8,9 */
807 			state->ks_composed_char *= 10;
808 			state->ks_composed_char += keycode - 0x40;
809 			if (state->ks_composed_char > UCHAR_MAX)
810 				return ERRKEY;
811 			goto next_code;
812 		case 0x4B: case 0x4C: case 0x4D:	/* keypad 4,5,6 */
813 			state->ks_composed_char *= 10;
814 			state->ks_composed_char += keycode - 0x47;
815 			if (state->ks_composed_char > UCHAR_MAX)
816 				return ERRKEY;
817 			goto next_code;
818 		case 0x4F: case 0x50: case 0x51:	/* keypad 1,2,3 */
819 			state->ks_composed_char *= 10;
820 			state->ks_composed_char += keycode - 0x4E;
821 			if (state->ks_composed_char > UCHAR_MAX)
822 				return ERRKEY;
823 			goto next_code;
824 		case 0x52:				/* keypad 0 */
825 			state->ks_composed_char *= 10;
826 			if (state->ks_composed_char > UCHAR_MAX)
827 				return ERRKEY;
828 			goto next_code;
829 
830 		/* key released, no interest here */
831 		case 0xC7: case 0xC8: case 0xC9:	/* keypad 7,8,9 */
832 		case 0xCB: case 0xCC: case 0xCD:	/* keypad 4,5,6 */
833 		case 0xCF: case 0xD0: case 0xD1:	/* keypad 1,2,3 */
834 		case 0xD2:				/* keypad 0 */
835 			goto next_code;
836 
837 		case 0x38:				/* left alt key */
838 			break;
839 
840 		default:
841 			if (state->ks_composed_char > 0) {
842 				state->ks_flags &= ~COMPOSE;
843 				state->ks_composed_char = 0;
844 				return ERRKEY;
845 			}
846 			break;
847 		}
848 	}
849 
850 	/* keycode to key action */
851 	action = genkbd_keyaction(kbd, keycode, scancode & 0x80,
852 				  &state->ks_state, &state->ks_accents);
853 	if (action == NOKEY)
854 		goto next_code;
855 	else
856 		return action;
857 }
858 
859 /* check if char is waiting */
860 static int
861 atkbd_check_char(keyboard_t *kbd)
862 {
863 	atkbd_state_t *state;
864 
865 	if (!KBD_IS_ACTIVE(kbd))
866 		return FALSE;
867 	state = (atkbd_state_t *)kbd->kb_data;
868 	if (!(state->ks_flags & COMPOSE) && (state->ks_composed_char > 0))
869 		return TRUE;
870 	return kbdc_data_ready(state->kbdc);
871 }
872 
873 /* some useful control functions */
874 static int
875 atkbd_ioctl(keyboard_t *kbd, u_long cmd, caddr_t arg)
876 {
877 	/* trasnlate LED_XXX bits into the device specific bits */
878 	static u_char ledmap[8] = {
879 		0, 4, 2, 6, 1, 5, 3, 7,
880 	};
881 	atkbd_state_t *state = kbd->kb_data;
882 	int error;
883 	int s;
884 	int i;
885 
886 	s = spltty();
887 	switch (cmd) {
888 
889 	case KDGKBMODE:		/* get keyboard mode */
890 		*(int *)arg = state->ks_mode;
891 		break;
892 	case KDSKBMODE:		/* set keyboard mode */
893 		switch (*(int *)arg) {
894 		case K_XLATE:
895 			if (state->ks_mode != K_XLATE) {
896 				/* make lock key state and LED state match */
897 				state->ks_state &= ~LOCK_MASK;
898 				state->ks_state |= KBD_LED_VAL(kbd);
899 			}
900 			/* FALL THROUGH */
901 		case K_RAW:
902 		case K_CODE:
903 			if (state->ks_mode != *(int *)arg) {
904 				atkbd_clear_state(kbd);
905 				state->ks_mode = *(int *)arg;
906 			}
907 			break;
908 		default:
909 			splx(s);
910 			return EINVAL;
911 		}
912 		break;
913 
914 	case KDGETLED:		/* get keyboard LED */
915 		*(int *)arg = KBD_LED_VAL(kbd);
916 		break;
917 	case KDSETLED:		/* set keyboard LED */
918 		/* NOTE: lock key state in ks_state won't be changed */
919 		if (*(int *)arg & ~LOCK_MASK) {
920 			splx(s);
921 			return EINVAL;
922 		}
923 		i = *(int *)arg;
924 		/* replace CAPS LED with ALTGR LED for ALTGR keyboards */
925 		if (kbd->kb_keymap->n_keys > ALTGR_OFFSET) {
926 			if (i & ALKED)
927 				i |= CLKED;
928 			else
929 				i &= ~CLKED;
930 		}
931 		if (KBD_HAS_DEVICE(kbd)) {
932 			error = write_kbd(state->kbdc, KBDC_SET_LEDS,
933 					  ledmap[i & LED_MASK]);
934 			if (error) {
935 				splx(s);
936 				return error;
937 			}
938 		}
939 		KBD_LED_VAL(kbd) = *(int *)arg;
940 		break;
941 
942 	case KDGKBSTATE:	/* get lock key state */
943 		*(int *)arg = state->ks_state & LOCK_MASK;
944 		break;
945 	case KDSKBSTATE:	/* set lock key state */
946 		if (*(int *)arg & ~LOCK_MASK) {
947 			splx(s);
948 			return EINVAL;
949 		}
950 		state->ks_state &= ~LOCK_MASK;
951 		state->ks_state |= *(int *)arg;
952 		splx(s);
953 		/* set LEDs and quit */
954 		return atkbd_ioctl(kbd, KDSETLED, arg);
955 
956 	case KDSETREPEAT:	/* set keyboard repeat rate (new interface) */
957 		splx(s);
958 		if (!KBD_HAS_DEVICE(kbd))
959 			return 0;
960 		i = typematic(((int *)arg)[0], ((int *)arg)[1]);
961 		return write_kbd(state->kbdc, KBDC_SET_TYPEMATIC, i);
962 
963 	case KDSETRAD:		/* set keyboard repeat rate (old interface) */
964 		splx(s);
965 		if (!KBD_HAS_DEVICE(kbd))
966 			return 0;
967 		return write_kbd(state->kbdc, KBDC_SET_TYPEMATIC, *(int *)arg);
968 
969 	case PIO_KEYMAP:	/* set keyboard translation table */
970 	case PIO_KEYMAPENT:	/* set keyboard translation table entry */
971 	case PIO_DEADKEYMAP:	/* set accent key translation table */
972 		state->ks_accents = 0;
973 		/* FALL THROUGH */
974 	default:
975 		splx(s);
976 		return genkbd_commonioctl(kbd, cmd, arg);
977 	}
978 
979 	splx(s);
980 	return 0;
981 }
982 
983 /* lock the access to the keyboard */
984 static int
985 atkbd_lock(keyboard_t *kbd, int lock)
986 {
987 	return kbdc_lock(((atkbd_state_t *)kbd->kb_data)->kbdc, lock);
988 }
989 
990 /* clear the internal state of the keyboard */
991 static void
992 atkbd_clear_state(keyboard_t *kbd)
993 {
994 	atkbd_state_t *state;
995 
996 	state = (atkbd_state_t *)kbd->kb_data;
997 	state->ks_flags = 0;
998 	state->ks_polling = 0;
999 	state->ks_state &= LOCK_MASK;	/* preserve locking key state */
1000 	state->ks_accents = 0;
1001 	state->ks_composed_char = 0;
1002 #if 0
1003 	state->ks_prefix = 0; /* XXX */
1004 #endif
1005 }
1006 
1007 /* save the internal state */
1008 static int
1009 atkbd_get_state(keyboard_t *kbd, void *buf, size_t len)
1010 {
1011 	if (len == 0)
1012 		return sizeof(atkbd_state_t);
1013 	if (len < sizeof(atkbd_state_t))
1014 		return -1;
1015 	bcopy(kbd->kb_data, buf, sizeof(atkbd_state_t));
1016 	return 0;
1017 }
1018 
1019 /* set the internal state */
1020 static int
1021 atkbd_set_state(keyboard_t *kbd, void *buf, size_t len)
1022 {
1023 	if (len < sizeof(atkbd_state_t))
1024 		return ENOMEM;
1025 	if (((atkbd_state_t *)kbd->kb_data)->kbdc
1026 		!= ((atkbd_state_t *)buf)->kbdc)
1027 		return ENOMEM;
1028 	bcopy(buf, kbd->kb_data, sizeof(atkbd_state_t));
1029 	return 0;
1030 }
1031 
1032 static int
1033 atkbd_poll(keyboard_t *kbd, int on)
1034 {
1035 	atkbd_state_t *state;
1036 	int s;
1037 
1038 	state = (atkbd_state_t *)kbd->kb_data;
1039 	s = spltty();
1040 	if (on)
1041 		++state->ks_polling;
1042 	else
1043 		--state->ks_polling;
1044 	splx(s);
1045 	return 0;
1046 }
1047 
1048 /* local functions */
1049 
1050 static int
1051 setup_kbd_port(KBDC kbdc, int port, int intr)
1052 {
1053 	if (!set_controller_command_byte(kbdc,
1054 		KBD_KBD_CONTROL_BITS,
1055 		((port) ? KBD_ENABLE_KBD_PORT : KBD_DISABLE_KBD_PORT)
1056 		    | ((intr) ? KBD_ENABLE_KBD_INT : KBD_DISABLE_KBD_INT)))
1057 		return 1;
1058 	return 0;
1059 }
1060 
1061 static int
1062 get_kbd_echo(KBDC kbdc)
1063 {
1064 	/* enable the keyboard port, but disable the keyboard intr. */
1065 	if (setup_kbd_port(kbdc, TRUE, FALSE))
1066 		/* CONTROLLER ERROR: there is very little we can do... */
1067 		return ENXIO;
1068 
1069 	/* see if something is present */
1070 	write_kbd_command(kbdc, KBDC_ECHO);
1071 	if (read_kbd_data(kbdc) != KBD_ECHO) {
1072 		empty_both_buffers(kbdc, 10);
1073 		test_controller(kbdc);
1074 		test_kbd_port(kbdc);
1075 		return ENXIO;
1076 	}
1077 
1078 	/* enable the keyboard port and intr. */
1079 	if (setup_kbd_port(kbdc, TRUE, TRUE)) {
1080 		/*
1081 		 * CONTROLLER ERROR
1082 		 * This is serious; the keyboard intr is left disabled!
1083 		 */
1084 		return ENXIO;
1085 	}
1086 
1087 	return 0;
1088 }
1089 
1090 static int
1091 probe_keyboard(KBDC kbdc, int flags)
1092 {
1093 	/*
1094 	 * Don't try to print anything in this function.  The low-level
1095 	 * console may not have been initialized yet...
1096 	 */
1097 	int err;
1098 	int c;
1099 	int m;
1100 
1101 	if (!kbdc_lock(kbdc, TRUE)) {
1102 		/* driver error? */
1103 		return ENXIO;
1104 	}
1105 
1106 	/* flush any noise in the buffer */
1107 	empty_both_buffers(kbdc, 10);
1108 
1109 	/* save the current keyboard controller command byte */
1110 	m = kbdc_get_device_mask(kbdc) & ~KBD_KBD_CONTROL_BITS;
1111 	c = get_controller_command_byte(kbdc);
1112 	if (c == -1) {
1113 		/* CONTROLLER ERROR */
1114 		kbdc_set_device_mask(kbdc, m);
1115 		kbdc_lock(kbdc, FALSE);
1116 		return ENXIO;
1117 	}
1118 
1119 	/*
1120 	 * The keyboard may have been screwed up by the boot block.
1121 	 * We may just be able to recover from error by testing the controller
1122 	 * and the keyboard port. The controller command byte needs to be
1123 	 * saved before this recovery operation, as some controllers seem
1124 	 * to set the command byte to particular values.
1125 	 */
1126 	test_controller(kbdc);
1127 	test_kbd_port(kbdc);
1128 
1129 	err = get_kbd_echo(kbdc);
1130 	if (err == 0) {
1131 		kbdc_set_device_mask(kbdc, m | KBD_KBD_CONTROL_BITS);
1132 	} else {
1133 		if (c != -1)
1134 			/* try to restore the command byte as before */
1135 			set_controller_command_byte(kbdc, 0xff, c);
1136 		kbdc_set_device_mask(kbdc, m);
1137 	}
1138 
1139 	kbdc_lock(kbdc, FALSE);
1140 	return err;
1141 }
1142 
1143 static int
1144 init_keyboard(KBDC kbdc, int *type, int flags)
1145 {
1146 	int codeset;
1147 	int id;
1148 	int c;
1149 
1150 	if (!kbdc_lock(kbdc, TRUE)) {
1151 		/* driver error? */
1152 		return EIO;
1153 	}
1154 
1155 	/* save the current controller command byte */
1156 	empty_both_buffers(kbdc, 10);
1157 	c = get_controller_command_byte(kbdc);
1158 	if (c == -1) {
1159 		/* CONTROLLER ERROR */
1160 		kbdc_lock(kbdc, FALSE);
1161 		printf("atkbd: unable to get the current command byte value.\n");
1162 		return EIO;
1163 	}
1164 	if (bootverbose)
1165 		printf("atkbd: the current kbd controller command byte %04x\n",
1166 		       c);
1167 #if 0
1168 	/* override the keyboard lock switch */
1169 	c |= KBD_OVERRIDE_KBD_LOCK;
1170 #endif
1171 
1172 	/* enable the keyboard port, but disable the keyboard intr. */
1173 	if (setup_kbd_port(kbdc, TRUE, FALSE)) {
1174 		/* CONTROLLER ERROR: there is very little we can do... */
1175 		printf("atkbd: unable to set the command byte.\n");
1176 		kbdc_lock(kbdc, FALSE);
1177 		return EIO;
1178 	}
1179 
1180 	/*
1181 	 * Check if we have an XT keyboard before we attempt to reset it.
1182 	 * The procedure assumes that the keyboard and the controller have
1183 	 * been set up properly by BIOS and have not been messed up
1184 	 * during the boot process.
1185 	 */
1186 	codeset = -1;
1187 	if (flags & KB_CONF_ALT_SCANCODESET)
1188 		/* the user says there is a XT keyboard */
1189 		codeset = 1;
1190 #ifdef KBD_DETECT_XT_KEYBOARD
1191 	else if ((c & KBD_TRANSLATION) == 0) {
1192 		/* SET_SCANCODE_SET is not always supported; ignore error */
1193 		if (send_kbd_command_and_data(kbdc, KBDC_SET_SCANCODE_SET, 0)
1194 			== KBD_ACK)
1195 			codeset = read_kbd_data(kbdc);
1196 	}
1197 	if (bootverbose)
1198 		printf("atkbd: scancode set %d\n", codeset);
1199 #endif /* KBD_DETECT_XT_KEYBOARD */
1200 
1201 	*type = KB_OTHER;
1202 	id = get_kbd_id(kbdc);
1203 	switch(id) {
1204 	case 0x41ab:
1205 	case 0x83ab:
1206 		*type = KB_101;
1207 		break;
1208 	case -1:	/* AT 84 keyboard doesn't return ID */
1209 		*type = KB_84;
1210 		break;
1211 	default:
1212 		break;
1213 	}
1214 	if (bootverbose)
1215 		printf("atkbd: keyboard ID 0x%x (%d)\n", id, *type);
1216 
1217 	/* reset keyboard hardware */
1218 	if (!(flags & KB_CONF_NO_RESET) && !reset_kbd(kbdc)) {
1219 		/*
1220 		 * KEYBOARD ERROR
1221 		 * Keyboard reset may fail either because the keyboard
1222 		 * doen't exist, or because the keyboard doesn't pass
1223 		 * the self-test, or the keyboard controller on the
1224 		 * motherboard and the keyboard somehow fail to shake hands.
1225 		 * It is just possible, particularly in the last case,
1226 		 * that the keyoard controller may be left in a hung state.
1227 		 * test_controller() and test_kbd_port() appear to bring
1228 		 * the keyboard controller back (I don't know why and how,
1229 		 * though.)
1230 		 */
1231 		empty_both_buffers(kbdc, 10);
1232 		test_controller(kbdc);
1233 		test_kbd_port(kbdc);
1234 		/*
1235 		 * We could disable the keyboard port and interrupt... but,
1236 		 * the keyboard may still exist (see above).
1237 		 */
1238 		set_controller_command_byte(kbdc, 0xff, c);
1239 		kbdc_lock(kbdc, FALSE);
1240 		if (bootverbose)
1241 			printf("atkbd: failed to reset the keyboard.\n");
1242 		return EIO;
1243 	}
1244 
1245 	/*
1246 	 * Allow us to set the XT_KEYBD flag in UserConfig so that keyboards
1247 	 * such as those on the IBM ThinkPad laptop computers can be used
1248 	 * with the standard console driver.
1249 	 */
1250 	if (codeset == 1) {
1251 		if (send_kbd_command_and_data(kbdc,
1252 			KBDC_SET_SCANCODE_SET, codeset) == KBD_ACK) {
1253 			/* XT kbd doesn't need scan code translation */
1254 			c &= ~KBD_TRANSLATION;
1255 		} else {
1256 			/*
1257 			 * KEYBOARD ERROR
1258 			 * The XT kbd isn't usable unless the proper scan
1259 			 * code set is selected.
1260 			 */
1261 			set_controller_command_byte(kbdc, 0xff, c);
1262 			kbdc_lock(kbdc, FALSE);
1263 			printf("atkbd: unable to set the XT keyboard mode.\n");
1264 			return EIO;
1265 		}
1266 	}
1267 
1268 #ifdef __alpha__
1269 	if (send_kbd_command_and_data(
1270 		kbdc, KBDC_SET_SCANCODE_SET, 2) != KBD_ACK) {
1271 		printf("atkbd: can't set translation.\n");
1272 
1273 	}
1274 	c |= KBD_TRANSLATION;
1275 #endif
1276 
1277 	/* enable the keyboard port and intr. */
1278 	if (!set_controller_command_byte(kbdc,
1279 		KBD_KBD_CONTROL_BITS | KBD_TRANSLATION | KBD_OVERRIDE_KBD_LOCK,
1280 		(c & (KBD_TRANSLATION | KBD_OVERRIDE_KBD_LOCK))
1281 		    | KBD_ENABLE_KBD_PORT | KBD_ENABLE_KBD_INT)) {
1282 		/*
1283 		 * CONTROLLER ERROR
1284 		 * This is serious; we are left with the disabled
1285 		 * keyboard intr.
1286 		 */
1287 		set_controller_command_byte(kbdc, 0xff, c);
1288 		kbdc_lock(kbdc, FALSE);
1289 		printf("atkbd: unable to enable the keyboard port and intr.\n");
1290 		return EIO;
1291 	}
1292 
1293 	kbdc_lock(kbdc, FALSE);
1294 	return 0;
1295 }
1296 
1297 static int
1298 write_kbd(KBDC kbdc, int command, int data)
1299 {
1300     int s;
1301 
1302     /* prevent the timeout routine from polling the keyboard */
1303     if (!kbdc_lock(kbdc, TRUE))
1304 	return EBUSY;
1305 
1306     /* disable the keyboard and mouse interrupt */
1307     s = spltty();
1308 #if 0
1309     c = get_controller_command_byte(kbdc);
1310     if ((c == -1)
1311 	|| !set_controller_command_byte(kbdc,
1312             kbdc_get_device_mask(kbdc),
1313             KBD_DISABLE_KBD_PORT | KBD_DISABLE_KBD_INT
1314                 | KBD_DISABLE_AUX_PORT | KBD_DISABLE_AUX_INT)) {
1315 	/* CONTROLLER ERROR */
1316         kbdc_lock(kbdc, FALSE);
1317 	splx(s);
1318 	return EIO;
1319     }
1320     /*
1321      * Now that the keyboard controller is told not to generate
1322      * the keyboard and mouse interrupts, call `splx()' to allow
1323      * the other tty interrupts. The clock interrupt may also occur,
1324      * but the timeout routine (`scrn_timer()') will be blocked
1325      * by the lock flag set via `kbdc_lock()'
1326      */
1327     splx(s);
1328 #endif
1329 
1330     if (send_kbd_command_and_data(kbdc, command, data) != KBD_ACK)
1331         send_kbd_command(kbdc, KBDC_ENABLE_KBD);
1332 
1333 #if 0
1334     /* restore the interrupts */
1335     if (!set_controller_command_byte(kbdc,
1336             kbdc_get_device_mask(kbdc),
1337 	    c & (KBD_KBD_CONTROL_BITS | KBD_AUX_CONTROL_BITS))) {
1338 	/* CONTROLLER ERROR */
1339     }
1340 #else
1341     splx(s);
1342 #endif
1343     kbdc_lock(kbdc, FALSE);
1344 
1345     return 0;
1346 }
1347 
1348 static int
1349 get_kbd_id(KBDC kbdc)
1350 {
1351 	int id1, id2;
1352 
1353 	empty_both_buffers(kbdc, 10);
1354 	id1 = id2 = -1;
1355 	if (send_kbd_command(kbdc, KBDC_SEND_DEV_ID) != KBD_ACK)
1356 		return -1;
1357 
1358 	DELAY(10000); 	/* 10 msec delay */
1359 	id1 = read_kbd_data(kbdc);
1360 	if (id1 != -1)
1361 		id2 = read_kbd_data(kbdc);
1362 
1363 	if ((id1 == -1) || (id2 == -1)) {
1364 		empty_both_buffers(kbdc, 10);
1365 		test_controller(kbdc);
1366 		test_kbd_port(kbdc);
1367 		return -1;
1368 	}
1369 	return ((id2 << 8) | id1);
1370 }
1371 
1372 static int
1373 typematic(int delay, int rate)
1374 {
1375 	static int delays[] = { 250, 500, 750, 1000 };
1376 	static int rates[] = {  34,  38,  42,  46,  50,  55,  59,  63,
1377 				68,  76,  84,  92, 100, 110, 118, 126,
1378 			       136, 152, 168, 184, 200, 220, 236, 252,
1379 			       272, 304, 336, 368, 400, 440, 472, 504 };
1380 	int value;
1381 	int i;
1382 
1383 	for (i = sizeof(delays)/sizeof(delays[0]) - 1; i > 0; --i) {
1384 		if (delay >= delays[i])
1385 			break;
1386 	}
1387 	value = i << 5;
1388 	for (i = sizeof(rates)/sizeof(rates[0]) - 1; i > 0; --i) {
1389 		if (rate >= rates[i])
1390 			break;
1391 	}
1392 	value |= i;
1393 	return value;
1394 }
1395 
1396 #endif /* NATKBD > 0 */
1397