atkbd.c revision 67164
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 * $FreeBSD: head/sys/dev/atkbdc/atkbd.c 67164 2000-10-15 14:19:01Z phk $
27 */
28
29#include "opt_kbd.h"
30#include "opt_atkbd.h"
31
32#include <sys/param.h>
33#include <sys/systm.h>
34#include <sys/kernel.h>
35#include <sys/bus.h>
36#include <sys/proc.h>
37#include <sys/malloc.h>
38
39#include <machine/bus.h>
40#include <machine/resource.h>
41
42#ifdef __i386__
43#include <machine/md_var.h>
44#include <machine/psl.h>
45#include <machine/vm86.h>
46#include <machine/pc/bios.h>
47
48#include <vm/vm.h>
49#include <vm/pmap.h>
50#endif /* __i386__ */
51
52#include <dev/kbd/kbdreg.h>
53#include <dev/kbd/atkbdreg.h>
54#include <dev/kbd/atkbdcreg.h>
55
56#include <isa/isareg.h>
57
58static timeout_t	atkbd_timeout;
59
60int
61atkbd_probe_unit(int unit, int ctlr, int irq, int flags)
62{
63	keyboard_switch_t *sw;
64	int args[2];
65	int error;
66
67	sw = kbd_get_switch(ATKBD_DRIVER_NAME);
68	if (sw == NULL)
69		return ENXIO;
70
71	args[0] = ctlr;
72	args[1] = irq;
73	error = (*sw->probe)(unit, args, flags);
74	if (error)
75		return error;
76	return 0;
77}
78
79int
80atkbd_attach_unit(int unit, keyboard_t **kbd, int ctlr, int irq, int flags)
81{
82	keyboard_switch_t *sw;
83	int args[2];
84	int error;
85
86	sw = kbd_get_switch(ATKBD_DRIVER_NAME);
87	if (sw == NULL)
88		return ENXIO;
89
90	/* reset, initialize and enable the device */
91	args[0] = ctlr;
92	args[1] = irq;
93	*kbd = NULL;
94	error = (*sw->probe)(unit, args, flags);
95	if (error)
96		return error;
97	error = (*sw->init)(unit, kbd, args, flags);
98	if (error)
99		return error;
100	(*sw->enable)(*kbd);
101
102#ifdef KBD_INSTALL_CDEV
103	/* attach a virtual keyboard cdev */
104	error = kbd_attach(*kbd);
105	if (error)
106		return error;
107#endif
108
109	/*
110	 * This is a kludge to compensate for lost keyboard interrupts.
111	 * A similar code used to be in syscons. See below. XXX
112	 */
113	atkbd_timeout(*kbd);
114
115	if (bootverbose)
116		(*sw->diag)(*kbd, bootverbose);
117	return 0;
118}
119
120static void
121atkbd_timeout(void *arg)
122{
123	keyboard_t *kbd;
124	int s;
125
126	/*
127	 * The original text of the following comments are extracted
128	 * from syscons.c (1.287)
129	 *
130	 * With release 2.1 of the Xaccel server, the keyboard is left
131	 * hanging pretty often. Apparently an interrupt from the
132	 * keyboard is lost, and I don't know why (yet).
133	 * This ugly hack calls the low-level interrupt routine if input
134	 * is ready for the keyboard and conveniently hides the problem. XXX
135	 *
136	 * Try removing anything stuck in the keyboard controller; whether
137	 * it's a keyboard scan code or mouse data. The low-level
138	 * interrupt routine doesn't read the mouse data directly,
139	 * but the keyboard controller driver will, as a side effect.
140	 */
141	/*
142	 * And here is bde's original comment about this:
143	 *
144	 * This is necessary to handle edge triggered interrupts - if we
145	 * returned when our IRQ is high due to unserviced input, then there
146	 * would be no more keyboard IRQs until the keyboard is reset by
147	 * external powers.
148	 *
149	 * The keyboard apparently unwedges the irq in most cases.
150	 */
151	s = spltty();
152	kbd = (keyboard_t *)arg;
153	if ((*kbdsw[kbd->kb_index]->lock)(kbd, TRUE)) {
154		/*
155		 * We have seen the lock flag is not set. Let's reset
156		 * the flag early, otherwise the LED update routine fails
157		 * which may want the lock during the interrupt routine.
158		 */
159		(*kbdsw[kbd->kb_index]->lock)(kbd, FALSE);
160		if ((*kbdsw[kbd->kb_index]->check_char)(kbd))
161			(*kbdsw[kbd->kb_index]->intr)(kbd, NULL);
162	}
163	splx(s);
164	timeout(atkbd_timeout, arg, hz/10);
165}
166
167/* LOW-LEVEL */
168
169#include <machine/limits.h>
170#include <sys/kbio.h>
171
172#define ATKBD_DEFAULT	0
173
174typedef struct atkbd_state {
175	KBDC		kbdc;		/* keyboard controller */
176					/* XXX: don't move this field; pcvt
177					 * expects `kbdc' to be the first
178					 * field in this structure. */
179	int		ks_mode;	/* input mode (K_XLATE,K_RAW,K_CODE) */
180	int		ks_flags;	/* flags */
181#define COMPOSE		(1 << 0)
182	int		ks_polling;
183	int		ks_state;	/* shift/lock key state */
184	int		ks_accents;	/* accent key index (> 0) */
185	u_int		ks_composed_char; /* composed char code (> 0) */
186	u_char		ks_prefix;	/* AT scan code prefix */
187} atkbd_state_t;
188
189/* keyboard driver declaration */
190static int		atkbd_configure(int flags);
191static kbd_probe_t	atkbd_probe;
192static kbd_init_t	atkbd_init;
193static kbd_term_t	atkbd_term;
194static kbd_intr_t	atkbd_intr;
195static kbd_test_if_t	atkbd_test_if;
196static kbd_enable_t	atkbd_enable;
197static kbd_disable_t	atkbd_disable;
198static kbd_read_t	atkbd_read;
199static kbd_check_t	atkbd_check;
200static kbd_read_char_t	atkbd_read_char;
201static kbd_check_char_t	atkbd_check_char;
202static kbd_ioctl_t	atkbd_ioctl;
203static kbd_lock_t	atkbd_lock;
204static kbd_clear_state_t atkbd_clear_state;
205static kbd_get_state_t	atkbd_get_state;
206static kbd_set_state_t	atkbd_set_state;
207static kbd_poll_mode_t	atkbd_poll;
208
209keyboard_switch_t atkbdsw = {
210	atkbd_probe,
211	atkbd_init,
212	atkbd_term,
213	atkbd_intr,
214	atkbd_test_if,
215	atkbd_enable,
216	atkbd_disable,
217	atkbd_read,
218	atkbd_check,
219	atkbd_read_char,
220	atkbd_check_char,
221	atkbd_ioctl,
222	atkbd_lock,
223	atkbd_clear_state,
224	atkbd_get_state,
225	atkbd_set_state,
226	genkbd_get_fkeystr,
227	atkbd_poll,
228	genkbd_diag,
229};
230
231KEYBOARD_DRIVER(atkbd, atkbdsw, atkbd_configure);
232
233/* local functions */
234static int		get_typematic(keyboard_t *kbd);
235static int		setup_kbd_port(KBDC kbdc, int port, int intr);
236static int		get_kbd_echo(KBDC kbdc);
237static int		probe_keyboard(KBDC kbdc, int flags);
238static int		init_keyboard(KBDC kbdc, int *type, int flags);
239static int		write_kbd(KBDC kbdc, int command, int data);
240static int		get_kbd_id(KBDC kbdc);
241static int		typematic(int delay, int rate);
242static int		typematic_delay(int delay);
243static int		typematic_rate(int rate);
244
245/* local variables */
246
247/* the initial key map, accent map and fkey strings */
248#ifdef ATKBD_DFLT_KEYMAP
249#define KBD_DFLT_KEYMAP
250#include "atkbdmap.h"
251#endif
252#include <dev/kbd/kbdtables.h>
253
254/* structures for the default keyboard */
255static keyboard_t	default_kbd;
256static atkbd_state_t	default_kbd_state;
257static keymap_t		default_keymap;
258static accentmap_t	default_accentmap;
259static fkeytab_t	default_fkeytab[NUM_FKEYS];
260
261/*
262 * The back door to the keyboard driver!
263 * This function is called by the console driver, via the kbdio module,
264 * to tickle keyboard drivers when the low-level console is being initialized.
265 * Almost nothing in the kernel has been initialied yet.  Try to probe
266 * keyboards if possible.
267 * NOTE: because of the way the low-level conole is initialized, this routine
268 * may be called more than once!!
269 */
270static int
271atkbd_configure(int flags)
272{
273	keyboard_t *kbd;
274	int arg[2];
275	int i;
276
277	/* probe the keyboard controller */
278	atkbdc_configure();
279
280	/* if the driver is disabled, unregister the keyboard if any */
281	if ((resource_int_value("atkbd", ATKBD_DEFAULT, "disabled", &i) == 0)
282	    && i != 0) {
283		i = kbd_find_keyboard(ATKBD_DRIVER_NAME, ATKBD_DEFAULT);
284		if (i >= 0) {
285			kbd = kbd_get_keyboard(i);
286			kbd_unregister(kbd);
287			kbd->kb_flags &= ~KB_REGISTERED;
288		}
289		return 0;
290	}
291
292	/* XXX: a kludge to obtain the device configuration flags */
293	if (resource_int_value("atkbd", ATKBD_DEFAULT, "flags", &i) == 0)
294		flags |= i;
295
296	/* probe the default keyboard */
297	arg[0] = -1;
298	arg[1] = -1;
299	kbd = NULL;
300	if (atkbd_probe(ATKBD_DEFAULT, arg, flags))
301		return 0;
302	if (atkbd_init(ATKBD_DEFAULT, &kbd, arg, flags))
303		return 0;
304
305	/* return the number of found keyboards */
306	return 1;
307}
308
309/* low-level functions */
310
311/* detect a keyboard */
312static int
313atkbd_probe(int unit, void *arg, int flags)
314{
315	KBDC kbdc;
316	int *data = (int *)arg;	/* data[0]: controller, data[1]: irq */
317
318	/* XXX */
319	if (unit == ATKBD_DEFAULT) {
320		if (KBD_IS_PROBED(&default_kbd))
321			return 0;
322	}
323
324	kbdc = atkbdc_open(data[0]);
325	if (kbdc == NULL)
326		return ENXIO;
327	if (probe_keyboard(kbdc, flags)) {
328		if (flags & KB_CONF_FAIL_IF_NO_KBD)
329			return ENXIO;
330	}
331	return 0;
332}
333
334/* reset and initialize the device */
335static int
336atkbd_init(int unit, keyboard_t **kbdp, void *arg, int flags)
337{
338	keyboard_t *kbd;
339	atkbd_state_t *state;
340	keymap_t *keymap;
341	accentmap_t *accmap;
342	fkeytab_t *fkeymap;
343	int fkeymap_size;
344	int delay[2];
345	int *data = (int *)arg;	/* data[0]: controller, data[1]: irq */
346
347	/* XXX */
348	if (unit == ATKBD_DEFAULT) {
349		*kbdp = kbd = &default_kbd;
350		if (KBD_IS_INITIALIZED(kbd) && KBD_IS_CONFIGURED(kbd))
351			return 0;
352		state = &default_kbd_state;
353		keymap = &default_keymap;
354		accmap = &default_accentmap;
355		fkeymap = default_fkeytab;
356		fkeymap_size =
357			sizeof(default_fkeytab)/sizeof(default_fkeytab[0]);
358	} else if (*kbdp == NULL) {
359		*kbdp = kbd = malloc(sizeof(*kbd), M_DEVBUF, M_NOWAIT);
360		if (kbd == NULL)
361			return ENOMEM;
362		bzero(kbd, sizeof(*kbd));
363		state = malloc(sizeof(*state), M_DEVBUF, M_NOWAIT);
364		keymap = malloc(sizeof(key_map), M_DEVBUF, M_NOWAIT);
365		accmap = malloc(sizeof(accent_map), M_DEVBUF, M_NOWAIT);
366		fkeymap = malloc(sizeof(fkey_tab), M_DEVBUF, M_NOWAIT);
367		fkeymap_size = sizeof(fkey_tab)/sizeof(fkey_tab[0]);
368		if ((state == NULL) || (keymap == NULL) || (accmap == NULL)
369		     || (fkeymap == NULL)) {
370			if (state != NULL)
371				free(state, M_DEVBUF);
372			if (keymap != NULL)
373				free(keymap, M_DEVBUF);
374			if (accmap != NULL)
375				free(accmap, M_DEVBUF);
376			if (fkeymap != NULL)
377				free(fkeymap, M_DEVBUF);
378			free(kbd, M_DEVBUF);
379			return ENOMEM;
380		}
381		bzero(state, sizeof(*state));
382	} else if (KBD_IS_INITIALIZED(*kbdp) && KBD_IS_CONFIGURED(*kbdp)) {
383		return 0;
384	} else {
385		kbd = *kbdp;
386		state = (atkbd_state_t *)kbd->kb_data;
387		bzero(state, sizeof(*state));
388		keymap = kbd->kb_keymap;
389		accmap = kbd->kb_accentmap;
390		fkeymap = kbd->kb_fkeytab;
391		fkeymap_size = kbd->kb_fkeytab_size;
392	}
393
394	if (!KBD_IS_PROBED(kbd)) {
395		state->kbdc = atkbdc_open(data[0]);
396		if (state->kbdc == NULL)
397			return ENXIO;
398		kbd_init_struct(kbd, ATKBD_DRIVER_NAME, KB_OTHER, unit, flags,
399				0, 0);
400		bcopy(&key_map, keymap, sizeof(key_map));
401		bcopy(&accent_map, accmap, sizeof(accent_map));
402		bcopy(fkey_tab, fkeymap,
403		      imin(fkeymap_size*sizeof(fkeymap[0]), sizeof(fkey_tab)));
404		kbd_set_maps(kbd, keymap, accmap, fkeymap, fkeymap_size);
405		kbd->kb_data = (void *)state;
406
407		if (probe_keyboard(state->kbdc, flags)) { /* shouldn't happen */
408			if (flags & KB_CONF_FAIL_IF_NO_KBD)
409				return ENXIO;
410		} else {
411			KBD_FOUND_DEVICE(kbd);
412		}
413		atkbd_clear_state(kbd);
414		state->ks_mode = K_XLATE;
415		/*
416		 * FIXME: set the initial value for lock keys in ks_state
417		 * according to the BIOS data?
418		 */
419		KBD_PROBE_DONE(kbd);
420	}
421	if (!KBD_IS_INITIALIZED(kbd) && !(flags & KB_CONF_PROBE_ONLY)) {
422		kbd->kb_config = flags & ~KB_CONF_PROBE_ONLY;
423		if (KBD_HAS_DEVICE(kbd)
424	    	    && init_keyboard(state->kbdc, &kbd->kb_type, kbd->kb_config)
425	    	    && (kbd->kb_config & KB_CONF_FAIL_IF_NO_KBD))
426			return ENXIO;
427		atkbd_ioctl(kbd, KDSETLED, (caddr_t)&state->ks_state);
428		get_typematic(kbd);
429		delay[0] = kbd->kb_delay1;
430		delay[1] = kbd->kb_delay2;
431		atkbd_ioctl(kbd, KDSETREPEAT, (caddr_t)delay);
432		KBD_INIT_DONE(kbd);
433	}
434	if (!KBD_IS_CONFIGURED(kbd)) {
435		if (kbd_register(kbd) < 0)
436			return ENXIO;
437		KBD_CONFIG_DONE(kbd);
438	}
439
440	return 0;
441}
442
443/* finish using this keyboard */
444static int
445atkbd_term(keyboard_t *kbd)
446{
447	kbd_unregister(kbd);
448	return 0;
449}
450
451/* keyboard interrupt routine */
452static int
453atkbd_intr(keyboard_t *kbd, void *arg)
454{
455	atkbd_state_t *state;
456	int delay[2];
457	int c;
458
459	if (KBD_IS_ACTIVE(kbd) && KBD_IS_BUSY(kbd)) {
460		/* let the callback function to process the input */
461		(*kbd->kb_callback.kc_func)(kbd, KBDIO_KEYINPUT,
462					    kbd->kb_callback.kc_arg);
463	} else {
464		/* read and discard the input; no one is waiting for input */
465		do {
466			c = atkbd_read_char(kbd, FALSE);
467		} while (c != NOKEY);
468
469		if (!KBD_HAS_DEVICE(kbd)) {
470			/*
471			 * The keyboard was not detected before;
472			 * it must have been reconnected!
473			 */
474			state = (atkbd_state_t *)kbd->kb_data;
475			init_keyboard(state->kbdc, &kbd->kb_type,
476				      kbd->kb_config);
477			atkbd_ioctl(kbd, KDSETLED, (caddr_t)&state->ks_state);
478			get_typematic(kbd);
479			delay[0] = kbd->kb_delay1;
480			delay[1] = kbd->kb_delay2;
481			atkbd_ioctl(kbd, KDSETREPEAT, (caddr_t)delay);
482			KBD_FOUND_DEVICE(kbd);
483		}
484	}
485	return 0;
486}
487
488/* test the interface to the device */
489static int
490atkbd_test_if(keyboard_t *kbd)
491{
492	int error;
493	int s;
494
495	error = 0;
496	empty_both_buffers(((atkbd_state_t *)kbd->kb_data)->kbdc, 10);
497	s = spltty();
498	if (!test_controller(((atkbd_state_t *)kbd->kb_data)->kbdc))
499		error = EIO;
500	else if (test_kbd_port(((atkbd_state_t *)kbd->kb_data)->kbdc) != 0)
501		error = EIO;
502	splx(s);
503
504	return error;
505}
506
507/*
508 * Enable the access to the device; until this function is called,
509 * the client cannot read from the keyboard.
510 */
511static int
512atkbd_enable(keyboard_t *kbd)
513{
514	int s;
515
516	s = spltty();
517	KBD_ACTIVATE(kbd);
518	splx(s);
519	return 0;
520}
521
522/* disallow the access to the device */
523static int
524atkbd_disable(keyboard_t *kbd)
525{
526	int s;
527
528	s = spltty();
529	KBD_DEACTIVATE(kbd);
530	splx(s);
531	return 0;
532}
533
534/* read one byte from the keyboard if it's allowed */
535static int
536atkbd_read(keyboard_t *kbd, int wait)
537{
538	int c;
539
540	if (wait)
541		c = read_kbd_data(((atkbd_state_t *)kbd->kb_data)->kbdc);
542	else
543		c = read_kbd_data_no_wait(((atkbd_state_t *)kbd->kb_data)->kbdc);
544	if (c != -1)
545		++kbd->kb_count;
546	return (KBD_IS_ACTIVE(kbd) ? c : -1);
547}
548
549/* check if data is waiting */
550static int
551atkbd_check(keyboard_t *kbd)
552{
553	if (!KBD_IS_ACTIVE(kbd))
554		return FALSE;
555	return kbdc_data_ready(((atkbd_state_t *)kbd->kb_data)->kbdc);
556}
557
558/* read char from the keyboard */
559static u_int
560atkbd_read_char(keyboard_t *kbd, int wait)
561{
562	atkbd_state_t *state;
563	u_int action;
564	int scancode;
565	int keycode;
566
567	state = (atkbd_state_t *)kbd->kb_data;
568next_code:
569	/* do we have a composed char to return? */
570	if (!(state->ks_flags & COMPOSE) && (state->ks_composed_char > 0)) {
571		action = state->ks_composed_char;
572		state->ks_composed_char = 0;
573		if (action > UCHAR_MAX)
574			return ERRKEY;
575		return action;
576	}
577
578	/* see if there is something in the keyboard port */
579	if (wait) {
580		do {
581			scancode = read_kbd_data(state->kbdc);
582		} while (scancode == -1);
583	} else {
584		scancode = read_kbd_data_no_wait(state->kbdc);
585		if (scancode == -1)
586			return NOKEY;
587	}
588	++kbd->kb_count;
589
590#if KBDIO_DEBUG >= 10
591	printf("atkbd_read_char(): scancode:0x%x\n", scancode);
592#endif
593
594	/* return the byte as is for the K_RAW mode */
595	if (state->ks_mode == K_RAW)
596		return scancode;
597
598	/* translate the scan code into a keycode */
599	keycode = scancode & 0x7F;
600	switch (state->ks_prefix) {
601	case 0x00:	/* normal scancode */
602		switch(scancode) {
603		case 0xB8:	/* left alt (compose key) released */
604			if (state->ks_flags & COMPOSE) {
605				state->ks_flags &= ~COMPOSE;
606				if (state->ks_composed_char > UCHAR_MAX)
607					state->ks_composed_char = 0;
608			}
609			break;
610		case 0x38:	/* left alt (compose key) pressed */
611			if (!(state->ks_flags & COMPOSE)) {
612				state->ks_flags |= COMPOSE;
613				state->ks_composed_char = 0;
614			}
615			break;
616		case 0xE0:
617		case 0xE1:
618			state->ks_prefix = scancode;
619			goto next_code;
620		}
621		break;
622	case 0xE0:      /* 0xE0 prefix */
623		state->ks_prefix = 0;
624		switch (keycode) {
625		case 0x1C:	/* right enter key */
626			keycode = 0x59;
627			break;
628		case 0x1D:	/* right ctrl key */
629			keycode = 0x5A;
630			break;
631		case 0x35:	/* keypad divide key */
632	    		keycode = 0x5B;
633	    		break;
634		case 0x37:	/* print scrn key */
635	    		keycode = 0x5C;
636	    		break;
637		case 0x38:	/* right alt key (alt gr) */
638	    		keycode = 0x5D;
639	    		break;
640		case 0x46:	/* ctrl-pause/break on AT 101 (see below) */
641			keycode = 0x68;
642	    		break;
643		case 0x47:	/* grey home key */
644	    		keycode = 0x5E;
645	    		break;
646		case 0x48:	/* grey up arrow key */
647	    		keycode = 0x5F;
648	    		break;
649		case 0x49:	/* grey page up key */
650	    		keycode = 0x60;
651	    		break;
652		case 0x4B:	/* grey left arrow key */
653	    		keycode = 0x61;
654	    		break;
655		case 0x4D:	/* grey right arrow key */
656	    		keycode = 0x62;
657	    		break;
658		case 0x4F:	/* grey end key */
659	    		keycode = 0x63;
660	    		break;
661		case 0x50:	/* grey down arrow key */
662	    		keycode = 0x64;
663	    		break;
664		case 0x51:	/* grey page down key */
665	    		keycode = 0x65;
666	    		break;
667		case 0x52:	/* grey insert key */
668	    		keycode = 0x66;
669	    		break;
670		case 0x53:	/* grey delete key */
671	    		keycode = 0x67;
672	    		break;
673		/* the following 3 are only used on the MS "Natural" keyboard */
674		case 0x5b:	/* left Window key */
675	    		keycode = 0x69;
676	    		break;
677		case 0x5c:	/* right Window key */
678	    		keycode = 0x6a;
679	    		break;
680		case 0x5d:	/* menu key */
681	    		keycode = 0x6b;
682	    		break;
683		default:	/* ignore everything else */
684	    		goto next_code;
685		}
686		break;
687    	case 0xE1:	/* 0xE1 prefix */
688		/*
689		 * The pause/break key on the 101 keyboard produces:
690		 * E1-1D-45 E1-9D-C5
691		 * Ctrl-pause/break produces:
692		 * E0-46 E0-C6 (See above.)
693		 */
694		state->ks_prefix = 0;
695		if (keycode == 0x1D)
696	    		state->ks_prefix = 0x1D;
697		goto next_code;
698		/* NOT REACHED */
699    	case 0x1D:	/* pause / break */
700		state->ks_prefix = 0;
701		if (keycode != 0x45)
702			goto next_code;
703		keycode = 0x68;
704		break;
705	}
706
707	if (kbd->kb_type == KB_84) {
708		switch (keycode) {
709		case 0x37:	/* *(numpad)/print screen */
710			if (state->ks_flags & SHIFTS)
711	    			keycode = 0x5c;	/* print screen */
712			break;
713		case 0x45:	/* num lock/pause */
714			if (state->ks_flags & CTLS)
715				keycode = 0x68;	/* pause */
716			break;
717		case 0x46:	/* scroll lock/break */
718			if (state->ks_flags & CTLS)
719				keycode = 0x6c;	/* break */
720			break;
721		}
722	} else if (kbd->kb_type == KB_101) {
723		switch (keycode) {
724		case 0x5c:	/* print screen */
725			if (state->ks_flags & ALTS)
726				keycode = 0x54;	/* sysrq */
727			break;
728		case 0x68:	/* pause/break */
729			if (state->ks_flags & CTLS)
730				keycode = 0x6c;	/* break */
731			break;
732		}
733	}
734
735	/* return the key code in the K_CODE mode */
736	if (state->ks_mode == K_CODE)
737		return (keycode | (scancode & 0x80));
738
739	/* compose a character code */
740	if (state->ks_flags & COMPOSE) {
741		switch (keycode | (scancode & 0x80)) {
742		/* key pressed, process it */
743		case 0x47: case 0x48: case 0x49:	/* keypad 7,8,9 */
744			state->ks_composed_char *= 10;
745			state->ks_composed_char += keycode - 0x40;
746			if (state->ks_composed_char > UCHAR_MAX)
747				return ERRKEY;
748			goto next_code;
749		case 0x4B: case 0x4C: case 0x4D:	/* keypad 4,5,6 */
750			state->ks_composed_char *= 10;
751			state->ks_composed_char += keycode - 0x47;
752			if (state->ks_composed_char > UCHAR_MAX)
753				return ERRKEY;
754			goto next_code;
755		case 0x4F: case 0x50: case 0x51:	/* keypad 1,2,3 */
756			state->ks_composed_char *= 10;
757			state->ks_composed_char += keycode - 0x4E;
758			if (state->ks_composed_char > UCHAR_MAX)
759				return ERRKEY;
760			goto next_code;
761		case 0x52:				/* keypad 0 */
762			state->ks_composed_char *= 10;
763			if (state->ks_composed_char > UCHAR_MAX)
764				return ERRKEY;
765			goto next_code;
766
767		/* key released, no interest here */
768		case 0xC7: case 0xC8: case 0xC9:	/* keypad 7,8,9 */
769		case 0xCB: case 0xCC: case 0xCD:	/* keypad 4,5,6 */
770		case 0xCF: case 0xD0: case 0xD1:	/* keypad 1,2,3 */
771		case 0xD2:				/* keypad 0 */
772			goto next_code;
773
774		case 0x38:				/* left alt key */
775			break;
776
777		default:
778			if (state->ks_composed_char > 0) {
779				state->ks_flags &= ~COMPOSE;
780				state->ks_composed_char = 0;
781				return ERRKEY;
782			}
783			break;
784		}
785	}
786
787	/* keycode to key action */
788	action = genkbd_keyaction(kbd, keycode, scancode & 0x80,
789				  &state->ks_state, &state->ks_accents);
790	if (action == NOKEY)
791		goto next_code;
792	else
793		return action;
794}
795
796/* check if char is waiting */
797static int
798atkbd_check_char(keyboard_t *kbd)
799{
800	atkbd_state_t *state;
801
802	if (!KBD_IS_ACTIVE(kbd))
803		return FALSE;
804	state = (atkbd_state_t *)kbd->kb_data;
805	if (!(state->ks_flags & COMPOSE) && (state->ks_composed_char > 0))
806		return TRUE;
807	return kbdc_data_ready(state->kbdc);
808}
809
810/* some useful control functions */
811static int
812atkbd_ioctl(keyboard_t *kbd, u_long cmd, caddr_t arg)
813{
814	/* trasnlate LED_XXX bits into the device specific bits */
815	static u_char ledmap[8] = {
816		0, 4, 2, 6, 1, 5, 3, 7,
817	};
818	atkbd_state_t *state = kbd->kb_data;
819	int error;
820	int s;
821	int i;
822
823	s = spltty();
824	switch (cmd) {
825
826	case KDGKBMODE:		/* get keyboard mode */
827		*(int *)arg = state->ks_mode;
828		break;
829	case KDSKBMODE:		/* set keyboard mode */
830		switch (*(int *)arg) {
831		case K_XLATE:
832			if (state->ks_mode != K_XLATE) {
833				/* make lock key state and LED state match */
834				state->ks_state &= ~LOCK_MASK;
835				state->ks_state |= KBD_LED_VAL(kbd);
836			}
837			/* FALL THROUGH */
838		case K_RAW:
839		case K_CODE:
840			if (state->ks_mode != *(int *)arg) {
841				atkbd_clear_state(kbd);
842				state->ks_mode = *(int *)arg;
843			}
844			break;
845		default:
846			splx(s);
847			return EINVAL;
848		}
849		break;
850
851	case KDGETLED:		/* get keyboard LED */
852		*(int *)arg = KBD_LED_VAL(kbd);
853		break;
854	case KDSETLED:		/* set keyboard LED */
855		/* NOTE: lock key state in ks_state won't be changed */
856		if (*(int *)arg & ~LOCK_MASK) {
857			splx(s);
858			return EINVAL;
859		}
860		i = *(int *)arg;
861		/* replace CAPS LED with ALTGR LED for ALTGR keyboards */
862		if (state->ks_mode == K_XLATE &&
863		    kbd->kb_keymap->n_keys > ALTGR_OFFSET) {
864			if (i & ALKED)
865				i |= CLKED;
866			else
867				i &= ~CLKED;
868		}
869		if (KBD_HAS_DEVICE(kbd)) {
870			error = write_kbd(state->kbdc, KBDC_SET_LEDS,
871					  ledmap[i & LED_MASK]);
872			if (error) {
873				splx(s);
874				return error;
875			}
876		}
877		KBD_LED_VAL(kbd) = *(int *)arg;
878		break;
879
880	case KDGKBSTATE:	/* get lock key state */
881		*(int *)arg = state->ks_state & LOCK_MASK;
882		break;
883	case KDSKBSTATE:	/* set lock key state */
884		if (*(int *)arg & ~LOCK_MASK) {
885			splx(s);
886			return EINVAL;
887		}
888		state->ks_state &= ~LOCK_MASK;
889		state->ks_state |= *(int *)arg;
890		splx(s);
891		/* set LEDs and quit */
892		return atkbd_ioctl(kbd, KDSETLED, arg);
893
894	case KDSETREPEAT:	/* set keyboard repeat rate (new interface) */
895		splx(s);
896		if (!KBD_HAS_DEVICE(kbd))
897			return 0;
898		i = typematic(((int *)arg)[0], ((int *)arg)[1]);
899		error = write_kbd(state->kbdc, KBDC_SET_TYPEMATIC, i);
900		if (error == 0) {
901			kbd->kb_delay1 = typematic_delay(i);
902			kbd->kb_delay2 = typematic_rate(i);
903		}
904		return error;
905
906	case KDSETRAD:		/* set keyboard repeat rate (old interface) */
907		splx(s);
908		if (!KBD_HAS_DEVICE(kbd))
909			return 0;
910		error = write_kbd(state->kbdc, KBDC_SET_TYPEMATIC, *(int *)arg);
911		if (error == 0) {
912			kbd->kb_delay1 = typematic_delay(*(int *)arg);
913			kbd->kb_delay2 = typematic_rate(*(int *)arg);
914		}
915		return error;
916
917	case PIO_KEYMAP:	/* set keyboard translation table */
918	case PIO_KEYMAPENT:	/* set keyboard translation table entry */
919	case PIO_DEADKEYMAP:	/* set accent key translation table */
920		state->ks_accents = 0;
921		/* FALL THROUGH */
922	default:
923		splx(s);
924		return genkbd_commonioctl(kbd, cmd, arg);
925	}
926
927	splx(s);
928	return 0;
929}
930
931/* lock the access to the keyboard */
932static int
933atkbd_lock(keyboard_t *kbd, int lock)
934{
935	return kbdc_lock(((atkbd_state_t *)kbd->kb_data)->kbdc, lock);
936}
937
938/* clear the internal state of the keyboard */
939static void
940atkbd_clear_state(keyboard_t *kbd)
941{
942	atkbd_state_t *state;
943
944	state = (atkbd_state_t *)kbd->kb_data;
945	state->ks_flags = 0;
946	state->ks_polling = 0;
947	state->ks_state &= LOCK_MASK;	/* preserve locking key state */
948	state->ks_accents = 0;
949	state->ks_composed_char = 0;
950#if 0
951	state->ks_prefix = 0; /* XXX */
952#endif
953}
954
955/* save the internal state */
956static int
957atkbd_get_state(keyboard_t *kbd, void *buf, size_t len)
958{
959	if (len == 0)
960		return sizeof(atkbd_state_t);
961	if (len < sizeof(atkbd_state_t))
962		return -1;
963	bcopy(kbd->kb_data, buf, sizeof(atkbd_state_t));
964	return 0;
965}
966
967/* set the internal state */
968static int
969atkbd_set_state(keyboard_t *kbd, void *buf, size_t len)
970{
971	if (len < sizeof(atkbd_state_t))
972		return ENOMEM;
973	if (((atkbd_state_t *)kbd->kb_data)->kbdc
974		!= ((atkbd_state_t *)buf)->kbdc)
975		return ENOMEM;
976	bcopy(buf, kbd->kb_data, sizeof(atkbd_state_t));
977	return 0;
978}
979
980static int
981atkbd_poll(keyboard_t *kbd, int on)
982{
983	atkbd_state_t *state;
984	int s;
985
986	state = (atkbd_state_t *)kbd->kb_data;
987	s = spltty();
988	if (on)
989		++state->ks_polling;
990	else
991		--state->ks_polling;
992	splx(s);
993	return 0;
994}
995
996/* local functions */
997
998static int
999get_typematic(keyboard_t *kbd)
1000{
1001#ifdef __i386__
1002	/*
1003	 * Only some systems allow us to retrieve the keyboard repeat
1004	 * rate previously set via the BIOS...
1005	 */
1006	struct vm86frame vmf;
1007	u_int32_t p;
1008
1009	bzero(&vmf, sizeof(vmf));
1010	vmf.vmf_ax = 0xc000;
1011	vm86_intcall(0x15, &vmf);
1012	if ((vmf.vmf_eflags & PSL_C) || vmf.vmf_ah)
1013		return ENODEV;
1014        p = BIOS_PADDRTOVADDR(((u_int32_t)vmf.vmf_es << 4) + vmf.vmf_bx);
1015	if ((readb(p + 6) & 0x40) == 0)	/* int 16, function 0x09 supported? */
1016		return ENODEV;
1017	vmf.vmf_ax = 0x0900;
1018	vm86_intcall(0x16, &vmf);
1019	if ((vmf.vmf_al & 0x08) == 0)	/* int 16, function 0x0306 supported? */
1020		return ENODEV;
1021	vmf.vmf_ax = 0x0306;
1022	vm86_intcall(0x16, &vmf);
1023	kbd->kb_delay1 = typematic_delay(vmf.vmf_bh << 5);
1024	kbd->kb_delay2 = typematic_rate(vmf.vmf_bl);
1025	return 0;
1026#else
1027	return ENODEV;
1028#endif /* __i386__ */
1029}
1030
1031static int
1032setup_kbd_port(KBDC kbdc, int port, int intr)
1033{
1034	if (!set_controller_command_byte(kbdc,
1035		KBD_KBD_CONTROL_BITS,
1036		((port) ? KBD_ENABLE_KBD_PORT : KBD_DISABLE_KBD_PORT)
1037		    | ((intr) ? KBD_ENABLE_KBD_INT : KBD_DISABLE_KBD_INT)))
1038		return 1;
1039	return 0;
1040}
1041
1042static int
1043get_kbd_echo(KBDC kbdc)
1044{
1045	/* enable the keyboard port, but disable the keyboard intr. */
1046	if (setup_kbd_port(kbdc, TRUE, FALSE))
1047		/* CONTROLLER ERROR: there is very little we can do... */
1048		return ENXIO;
1049
1050	/* see if something is present */
1051	write_kbd_command(kbdc, KBDC_ECHO);
1052	if (read_kbd_data(kbdc) != KBD_ECHO) {
1053		empty_both_buffers(kbdc, 10);
1054		test_controller(kbdc);
1055		test_kbd_port(kbdc);
1056		return ENXIO;
1057	}
1058
1059	/* enable the keyboard port and intr. */
1060	if (setup_kbd_port(kbdc, TRUE, TRUE)) {
1061		/*
1062		 * CONTROLLER ERROR
1063		 * This is serious; the keyboard intr is left disabled!
1064		 */
1065		return ENXIO;
1066	}
1067
1068	return 0;
1069}
1070
1071static int
1072probe_keyboard(KBDC kbdc, int flags)
1073{
1074	/*
1075	 * Don't try to print anything in this function.  The low-level
1076	 * console may not have been initialized yet...
1077	 */
1078	int err;
1079	int c;
1080	int m;
1081
1082	if (!kbdc_lock(kbdc, TRUE)) {
1083		/* driver error? */
1084		return ENXIO;
1085	}
1086
1087	/* temporarily block data transmission from the keyboard */
1088	write_controller_command(kbdc, KBDC_DISABLE_KBD_PORT);
1089
1090	/* flush any noise in the buffer */
1091	empty_both_buffers(kbdc, 100);
1092
1093	/* save the current keyboard controller command byte */
1094	m = kbdc_get_device_mask(kbdc) & ~KBD_KBD_CONTROL_BITS;
1095	c = get_controller_command_byte(kbdc);
1096	if (c == -1) {
1097		/* CONTROLLER ERROR */
1098		kbdc_set_device_mask(kbdc, m);
1099		kbdc_lock(kbdc, FALSE);
1100		return ENXIO;
1101	}
1102
1103	/*
1104	 * The keyboard may have been screwed up by the boot block.
1105	 * We may just be able to recover from error by testing the controller
1106	 * and the keyboard port. The controller command byte needs to be
1107	 * saved before this recovery operation, as some controllers seem
1108	 * to set the command byte to particular values.
1109	 */
1110	test_controller(kbdc);
1111	test_kbd_port(kbdc);
1112
1113	err = get_kbd_echo(kbdc);
1114
1115	/*
1116	 * Even if the keyboard doesn't seem to be present (err != 0),
1117	 * we shall enable the keyboard port and interrupt so that
1118	 * the driver will be operable when the keyboard is attached
1119	 * to the system later.  It is NOT recommended to hot-plug
1120	 * the AT keyboard, but many people do so...
1121	 */
1122	kbdc_set_device_mask(kbdc, m | KBD_KBD_CONTROL_BITS);
1123	setup_kbd_port(kbdc, TRUE, TRUE);
1124#if 0
1125	if (err == 0) {
1126		kbdc_set_device_mask(kbdc, m | KBD_KBD_CONTROL_BITS);
1127	} else {
1128		/* try to restore the command byte as before */
1129		set_controller_command_byte(kbdc, 0xff, c);
1130		kbdc_set_device_mask(kbdc, m);
1131	}
1132#endif
1133
1134	kbdc_lock(kbdc, FALSE);
1135	return err;
1136}
1137
1138static int
1139init_keyboard(KBDC kbdc, int *type, int flags)
1140{
1141	int codeset;
1142	int id;
1143	int c;
1144
1145	if (!kbdc_lock(kbdc, TRUE)) {
1146		/* driver error? */
1147		return EIO;
1148	}
1149
1150	/* temporarily block data transmission from the keyboard */
1151	write_controller_command(kbdc, KBDC_DISABLE_KBD_PORT);
1152
1153	/* save the current controller command byte */
1154	empty_both_buffers(kbdc, 200);
1155	c = get_controller_command_byte(kbdc);
1156	if (c == -1) {
1157		/* CONTROLLER ERROR */
1158		kbdc_lock(kbdc, FALSE);
1159		printf("atkbd: unable to get the current command byte value.\n");
1160		return EIO;
1161	}
1162	if (bootverbose)
1163		printf("atkbd: the current kbd controller command byte %04x\n",
1164		       c);
1165#if 0
1166	/* override the keyboard lock switch */
1167	c |= KBD_OVERRIDE_KBD_LOCK;
1168#endif
1169
1170	/* enable the keyboard port, but disable the keyboard intr. */
1171	if (setup_kbd_port(kbdc, TRUE, FALSE)) {
1172		/* CONTROLLER ERROR: there is very little we can do... */
1173		printf("atkbd: unable to set the command byte.\n");
1174		kbdc_lock(kbdc, FALSE);
1175		return EIO;
1176	}
1177
1178	/*
1179	 * Check if we have an XT keyboard before we attempt to reset it.
1180	 * The procedure assumes that the keyboard and the controller have
1181	 * been set up properly by BIOS and have not been messed up
1182	 * during the boot process.
1183	 */
1184	codeset = -1;
1185	if (flags & KB_CONF_ALT_SCANCODESET)
1186		/* the user says there is a XT keyboard */
1187		codeset = 1;
1188#ifdef KBD_DETECT_XT_KEYBOARD
1189	else if ((c & KBD_TRANSLATION) == 0) {
1190		/* SET_SCANCODE_SET is not always supported; ignore error */
1191		if (send_kbd_command_and_data(kbdc, KBDC_SET_SCANCODE_SET, 0)
1192			== KBD_ACK)
1193			codeset = read_kbd_data(kbdc);
1194	}
1195	if (bootverbose)
1196		printf("atkbd: scancode set %d\n", codeset);
1197#endif /* KBD_DETECT_XT_KEYBOARD */
1198
1199	*type = KB_OTHER;
1200	id = get_kbd_id(kbdc);
1201	switch(id) {
1202	case 0x41ab:	/* 101/102/... Enhanced */
1203	case 0x83ab:	/* ditto */
1204	case 0x54ab:	/* SpaceSaver */
1205	case 0x84ab:	/* ditto */
1206#if 0
1207	case 0x90ab:	/* 'G' */
1208	case 0x91ab:	/* 'P' */
1209	case 0x92ab:	/* 'A' */
1210#endif
1211		*type = KB_101;
1212		break;
1213	case -1:	/* AT 84 keyboard doesn't return ID */
1214		*type = KB_84;
1215		break;
1216	default:
1217		break;
1218	}
1219	if (bootverbose)
1220		printf("atkbd: keyboard ID 0x%x (%d)\n", id, *type);
1221
1222	/* reset keyboard hardware */
1223	if (!(flags & KB_CONF_NO_RESET) && !reset_kbd(kbdc)) {
1224		/*
1225		 * KEYBOARD ERROR
1226		 * Keyboard reset may fail either because the keyboard
1227		 * doen't exist, or because the keyboard doesn't pass
1228		 * the self-test, or the keyboard controller on the
1229		 * motherboard and the keyboard somehow fail to shake hands.
1230		 * It is just possible, particularly in the last case,
1231		 * that the keyoard controller may be left in a hung state.
1232		 * test_controller() and test_kbd_port() appear to bring
1233		 * the keyboard controller back (I don't know why and how,
1234		 * though.)
1235		 */
1236		empty_both_buffers(kbdc, 10);
1237		test_controller(kbdc);
1238		test_kbd_port(kbdc);
1239		/*
1240		 * We could disable the keyboard port and interrupt... but,
1241		 * the keyboard may still exist (see above).
1242		 */
1243		set_controller_command_byte(kbdc, 0xff, c);
1244		kbdc_lock(kbdc, FALSE);
1245		if (bootverbose)
1246			printf("atkbd: failed to reset the keyboard.\n");
1247		return EIO;
1248	}
1249
1250	/*
1251	 * Allow us to set the XT_KEYBD flag in UserConfig so that keyboards
1252	 * such as those on the IBM ThinkPad laptop computers can be used
1253	 * with the standard console driver.
1254	 */
1255	if (codeset == 1) {
1256		if (send_kbd_command_and_data(kbdc,
1257			KBDC_SET_SCANCODE_SET, codeset) == KBD_ACK) {
1258			/* XT kbd doesn't need scan code translation */
1259			c &= ~KBD_TRANSLATION;
1260		} else {
1261			/*
1262			 * KEYBOARD ERROR
1263			 * The XT kbd isn't usable unless the proper scan
1264			 * code set is selected.
1265			 */
1266			set_controller_command_byte(kbdc, 0xff, c);
1267			kbdc_lock(kbdc, FALSE);
1268			printf("atkbd: unable to set the XT keyboard mode.\n");
1269			return EIO;
1270		}
1271	}
1272
1273#ifdef __alpha__
1274	if (send_kbd_command_and_data(
1275		kbdc, KBDC_SET_SCANCODE_SET, 2) != KBD_ACK) {
1276		printf("atkbd: can't set translation.\n");
1277
1278	}
1279	c |= KBD_TRANSLATION;
1280#endif
1281
1282	/* enable the keyboard port and intr. */
1283	if (!set_controller_command_byte(kbdc,
1284		KBD_KBD_CONTROL_BITS | KBD_TRANSLATION | KBD_OVERRIDE_KBD_LOCK,
1285		(c & (KBD_TRANSLATION | KBD_OVERRIDE_KBD_LOCK))
1286		    | KBD_ENABLE_KBD_PORT | KBD_ENABLE_KBD_INT)) {
1287		/*
1288		 * CONTROLLER ERROR
1289		 * This is serious; we are left with the disabled
1290		 * keyboard intr.
1291		 */
1292		set_controller_command_byte(kbdc, 0xff, c);
1293		kbdc_lock(kbdc, FALSE);
1294		printf("atkbd: unable to enable the keyboard port and intr.\n");
1295		return EIO;
1296	}
1297
1298	kbdc_lock(kbdc, FALSE);
1299	return 0;
1300}
1301
1302static int
1303write_kbd(KBDC kbdc, int command, int data)
1304{
1305    int s;
1306
1307    /* prevent the timeout routine from polling the keyboard */
1308    if (!kbdc_lock(kbdc, TRUE))
1309	return EBUSY;
1310
1311    /* disable the keyboard and mouse interrupt */
1312    s = spltty();
1313#if 0
1314    c = get_controller_command_byte(kbdc);
1315    if ((c == -1)
1316	|| !set_controller_command_byte(kbdc,
1317            kbdc_get_device_mask(kbdc),
1318            KBD_DISABLE_KBD_PORT | KBD_DISABLE_KBD_INT
1319                | KBD_DISABLE_AUX_PORT | KBD_DISABLE_AUX_INT)) {
1320	/* CONTROLLER ERROR */
1321        kbdc_lock(kbdc, FALSE);
1322	splx(s);
1323	return EIO;
1324    }
1325    /*
1326     * Now that the keyboard controller is told not to generate
1327     * the keyboard and mouse interrupts, call `splx()' to allow
1328     * the other tty interrupts. The clock interrupt may also occur,
1329     * but the timeout routine (`scrn_timer()') will be blocked
1330     * by the lock flag set via `kbdc_lock()'
1331     */
1332    splx(s);
1333#endif
1334
1335    if (send_kbd_command_and_data(kbdc, command, data) != KBD_ACK)
1336        send_kbd_command(kbdc, KBDC_ENABLE_KBD);
1337
1338#if 0
1339    /* restore the interrupts */
1340    if (!set_controller_command_byte(kbdc,
1341            kbdc_get_device_mask(kbdc),
1342	    c & (KBD_KBD_CONTROL_BITS | KBD_AUX_CONTROL_BITS))) {
1343	/* CONTROLLER ERROR */
1344    }
1345#else
1346    splx(s);
1347#endif
1348    kbdc_lock(kbdc, FALSE);
1349
1350    return 0;
1351}
1352
1353static int
1354get_kbd_id(KBDC kbdc)
1355{
1356	int id1, id2;
1357
1358	empty_both_buffers(kbdc, 10);
1359	id1 = id2 = -1;
1360	if (send_kbd_command(kbdc, KBDC_SEND_DEV_ID) != KBD_ACK)
1361		return -1;
1362
1363	DELAY(10000); 	/* 10 msec delay */
1364	id1 = read_kbd_data(kbdc);
1365	if (id1 != -1)
1366		id2 = read_kbd_data(kbdc);
1367
1368	if ((id1 == -1) || (id2 == -1)) {
1369		empty_both_buffers(kbdc, 10);
1370		test_controller(kbdc);
1371		test_kbd_port(kbdc);
1372		return -1;
1373	}
1374	return ((id2 << 8) | id1);
1375}
1376
1377static int delays[] = { 250, 500, 750, 1000 };
1378static int rates[] = {  34,  38,  42,  46,  50,  55,  59,  63,
1379			68,  76,  84,  92, 100, 110, 118, 126,
1380		       136, 152, 168, 184, 200, 220, 236, 252,
1381		       272, 304, 336, 368, 400, 440, 472, 504 };
1382
1383static int
1384typematic_delay(int i)
1385{
1386	return delays[(i >> 5) & 3];
1387}
1388
1389static int
1390typematic_rate(int i)
1391{
1392	return rates[i & 0x1f];
1393}
1394
1395static int
1396typematic(int delay, int rate)
1397{
1398	int value;
1399	int i;
1400
1401	for (i = sizeof(delays)/sizeof(delays[0]) - 1; i > 0; --i) {
1402		if (delay >= delays[i])
1403			break;
1404	}
1405	value = i << 5;
1406	for (i = sizeof(rates)/sizeof(rates[0]) - 1; i > 0; --i) {
1407		if (rate >= rates[i])
1408			break;
1409	}
1410	value |= i;
1411	return value;
1412}
1413