pckbc.c revision 1.64 1 /* $NetBSD: pckbc.c,v 1.64 2022/10/28 23:44:38 riastradh Exp $ */
2
3 /*
4 * Copyright (c) 2004 Ben Harris.
5 * Copyright (c) 1998
6 * Matthias Drochner. All rights reserved.
7 *
8 * Redistribution and use in source and binary forms, with or without
9 * modification, are permitted provided that the following conditions
10 * are met:
11 * 1. Redistributions of source code must retain the above copyright
12 * notice, this list of conditions and the following disclaimer.
13 * 2. Redistributions in binary form must reproduce the above copyright
14 * notice, this list of conditions and the following disclaimer in the
15 * documentation and/or other materials provided with the distribution.
16 *
17 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
18 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
19 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
20 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
21 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
22 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
26 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27 */
28
29 #include <sys/cdefs.h>
30 __KERNEL_RCSID(0, "$NetBSD: pckbc.c,v 1.64 2022/10/28 23:44:38 riastradh Exp $");
31
32 #include <sys/param.h>
33 #include <sys/systm.h>
34 #include <sys/callout.h>
35 #include <sys/kernel.h>
36 #include <sys/proc.h>
37 #include <sys/device.h>
38 #include <sys/malloc.h>
39 #include <sys/errno.h>
40 #include <sys/queue.h>
41
42 #include <sys/bus.h>
43
44 #include <dev/ic/i8042reg.h>
45 #include <dev/ic/pckbcvar.h>
46
47 #include <dev/pckbport/pckbportvar.h>
48
49 #include "locators.h"
50
51 #include <sys/rndsource.h>
52
53 /* data per slave device */
54 struct pckbc_slotdata {
55 int polling; /* don't process data in interrupt handler */
56 int poll_data; /* data read from inr handler if polling */
57 int poll_stat; /* status read from inr handler if polling */
58 krndsource_t rnd_source;
59 };
60
61 static void pckbc_init_slotdata(struct pckbc_slotdata *);
62 static int pckbc_attach_slot(struct pckbc_softc *, pckbc_slot_t);
63
64 struct pckbc_internal pckbc_consdata;
65 int pckbc_console_attached;
66
67 static int pckbc_console;
68 static struct pckbc_slotdata pckbc_cons_slotdata;
69
70 static int pckbc_xt_translation(void *, pckbport_slot_t, int);
71 static int pckbc_send_devcmd(void *, pckbport_slot_t, u_char);
72 static void pckbc_slot_enable(void *, pckbport_slot_t, int);
73 static void pckbc_intr_establish(void *, pckbport_slot_t);
74 static void pckbc_set_poll(void *, pckbc_slot_t, int on);
75
76 static int pckbc_wait_output(bus_space_tag_t, bus_space_handle_t);
77
78 static int pckbc_get8042cmd(struct pckbc_internal *);
79 static int pckbc_put8042cmd(struct pckbc_internal *);
80
81 void pckbc_cleanqueue(struct pckbc_slotdata *);
82 void pckbc_cleanup(void *);
83 int pckbc_cmdresponse(struct pckbc_internal *, pckbc_slot_t, u_char);
84 void pckbc_start(struct pckbc_internal *, pckbc_slot_t);
85
86 const char * const pckbc_slot_names[] = { "kbd", "aux" };
87
88 static const struct pckbport_accessops pckbc_ops = {
89 .t_xt_translation = pckbc_xt_translation,
90 .t_send_devcmd = pckbc_send_devcmd,
91 .t_poll_data1 = pckbc_poll_data1,
92 .t_slot_enable = pckbc_slot_enable,
93 .t_intr_establish = pckbc_intr_establish,
94 .t_set_poll = pckbc_set_poll,
95 };
96
97 #define KBD_DELAY DELAY(8)
98
99 static inline int
100 pckbc_wait_output(bus_space_tag_t iot, bus_space_handle_t ioh_c)
101 {
102 u_int i;
103
104 for (i = 100000; i; i--)
105 if (!(bus_space_read_1(iot, ioh_c, 0) & KBS_IBF)) {
106 KBD_DELAY;
107 return (1);
108 }
109 return (0);
110 }
111
112 int
113 pckbc_send_cmd(bus_space_tag_t iot, bus_space_handle_t ioh_c, u_char val)
114 {
115 if (!pckbc_wait_output(iot, ioh_c))
116 return (0);
117 bus_space_write_1(iot, ioh_c, 0, val);
118 return (1);
119 }
120
121 /*
122 * Note: the spl games here are to deal with some strange PC kbd controllers
123 * in some system configurations.
124 * This is not canonical way to handle polling input.
125 */
126 int
127 pckbc_poll_data1(void *pt, pckbc_slot_t slot)
128 {
129 struct pckbc_internal *t = pt;
130 struct pckbc_slotdata *q = t->t_slotdata[slot];
131 int s;
132 u_char stat, c;
133 int i = 100; /* polls for ~100ms */
134 int checkaux = t->t_haveaux;
135
136 s = splhigh();
137
138 if (q && q->polling && q->poll_data != -1 && q->poll_stat != -1) {
139 stat = q->poll_stat;
140 c = q->poll_data;
141 q->poll_data = -1;
142 q->poll_stat = -1;
143 goto process;
144 }
145
146 for (; i; i--, delay(1000)) {
147 stat = bus_space_read_1(t->t_iot, t->t_ioh_c, 0);
148 if (stat & KBS_DIB) {
149 KBD_DELAY;
150 c = bus_space_read_1(t->t_iot, t->t_ioh_d, 0);
151
152 process:
153 if (checkaux && (stat & 0x20)) { /* aux data */
154 if (slot != PCKBC_AUX_SLOT) {
155 #ifdef PCKBCDEBUG
156 printf("pckbc: lost aux 0x%x\n", c);
157 #endif
158 continue;
159 }
160 } else {
161 if (slot == PCKBC_AUX_SLOT) {
162 #ifdef PCKBCDEBUG
163 printf("pckbc: lost kbd 0x%x\n", c);
164 #endif
165 continue;
166 }
167 }
168 splx(s);
169 return (c);
170 }
171 }
172
173 splx(s);
174 return (-1);
175 }
176
177 /*
178 * Get the current command byte.
179 */
180 static int
181 pckbc_get8042cmd(struct pckbc_internal *t)
182 {
183 bus_space_tag_t iot = t->t_iot;
184 bus_space_handle_t ioh_c = t->t_ioh_c;
185 int data;
186
187 if (!pckbc_send_cmd(iot, ioh_c, K_RDCMDBYTE))
188 return (0);
189 data = pckbc_poll_data1(t, PCKBC_KBD_SLOT);
190 if (data == -1)
191 return (0);
192 t->t_cmdbyte = data;
193 return (1);
194 }
195
196 /*
197 * Pass command byte to keyboard controller (8042).
198 */
199 static int
200 pckbc_put8042cmd(struct pckbc_internal *t)
201 {
202 bus_space_tag_t iot = t->t_iot;
203 bus_space_handle_t ioh_d = t->t_ioh_d;
204 bus_space_handle_t ioh_c = t->t_ioh_c;
205
206 if (!pckbc_send_cmd(iot, ioh_c, K_LDCMDBYTE))
207 return (0);
208 if (!pckbc_wait_output(iot, ioh_c))
209 return (0);
210 bus_space_write_1(iot, ioh_d, 0, t->t_cmdbyte);
211 return (1);
212 }
213
214 static int
215 pckbc_send_devcmd(void *pt, pckbc_slot_t slot, u_char val)
216 {
217 struct pckbc_internal *t = pt;
218 bus_space_tag_t iot = t->t_iot;
219 bus_space_handle_t ioh_d = t->t_ioh_d;
220 bus_space_handle_t ioh_c = t->t_ioh_c;
221
222 if (slot == PCKBC_AUX_SLOT) {
223 if (!pckbc_send_cmd(iot, ioh_c, KBC_AUXWRITE))
224 return (0);
225 }
226 if (!pckbc_wait_output(iot, ioh_c))
227 return (0);
228 bus_space_write_1(iot, ioh_d, 0, val);
229 return (1);
230 }
231
232 int
233 pckbc_is_console(bus_space_tag_t iot, bus_addr_t addr)
234 {
235 if (pckbc_console && !pckbc_console_attached &&
236 bus_space_is_equal(pckbc_consdata.t_iot, iot) &&
237 pckbc_consdata.t_addr == addr)
238 return (1);
239 return (0);
240 }
241
242 static int
243 pckbc_attach_slot(struct pckbc_softc *sc, pckbc_slot_t slot)
244 {
245 struct pckbc_internal *t = sc->id;
246 void *sdata;
247 device_t child;
248 int alloced = 0;
249
250 if (t->t_slotdata[slot] == NULL) {
251 sdata = malloc(sizeof(struct pckbc_slotdata),
252 M_DEVBUF, M_WAITOK);
253 t->t_slotdata[slot] = sdata;
254 pckbc_init_slotdata(t->t_slotdata[slot]);
255 alloced++;
256 }
257
258 child = pckbport_attach_slot(sc->sc_dv, t->t_pt, slot);
259
260 if (child == NULL && alloced) {
261 free(t->t_slotdata[slot], M_DEVBUF);
262 t->t_slotdata[slot] = NULL;
263 }
264
265 if (child != NULL && t->t_slotdata[slot] != NULL) {
266 memset(&t->t_slotdata[slot]->rnd_source, 0,
267 sizeof(t->t_slotdata[slot]->rnd_source));
268 rnd_attach_source(&t->t_slotdata[slot]->rnd_source,
269 device_xname(child), RND_TYPE_TTY, RND_FLAG_DEFAULT);
270 }
271
272 return child != NULL;
273 }
274
275 void
276 pckbc_attach(struct pckbc_softc *sc)
277 {
278 struct pckbc_internal *t;
279 bus_space_tag_t iot;
280 bus_space_handle_t ioh_d, ioh_c;
281 int res;
282 u_char cmdbits = 0;
283
284 t = sc->id;
285 iot = t->t_iot;
286 ioh_d = t->t_ioh_d;
287 ioh_c = t->t_ioh_c;
288
289 t->t_pt = pckbport_attach(t, &pckbc_ops);
290 if (t->t_pt == NULL) {
291 aprint_error(": attach failed\n");
292 return;
293 }
294
295 /* flush */
296 (void) pckbc_poll_data1(t, PCKBC_KBD_SLOT);
297
298 /* set initial cmd byte */
299 if (!pckbc_put8042cmd(t)) {
300 aprint_error("pckbc: cmd word write error\n");
301 return;
302 }
303
304 /*
305 * XXX Don't check the keyboard port. There are broken keyboard controllers
306 * which don't pass the test but work normally otherwise.
307 */
308 #if 0
309 /*
310 * check kbd port ok
311 */
312 if (!pckbc_send_cmd(iot, ioh_c, KBC_KBDTEST))
313 return;
314 res = pckbc_poll_data1(t, PCKBC_KBD_SLOT);
315
316 /*
317 * Normally, we should get a "0" here.
318 * But there are keyboard controllers behaving differently.
319 */
320 if (!(res == 0 || res == 0xfa || res == 0x01 || res == 0xab)) {
321 printf("pckbc: kbd port test: %x\n", res);
322 return;
323 }
324 #ifdef PCKBCDEBUG
325 if (res != 0)
326 printf("pckbc: returned %x on kbd slot test\n", res);
327 #endif
328 #endif /* 0 */
329 if (pckbc_attach_slot(sc, PCKBC_KBD_SLOT))
330 cmdbits |= KC8_KENABLE;
331
332 /*
333 * Check aux port ok.
334 * Avoid KBC_AUXTEST because it hangs some older controllers
335 * (eg UMC880?).
336 */
337 if (!pckbc_send_cmd(iot, ioh_c, KBC_AUXECHO)) {
338 aprint_error("pckbc: aux echo error 1\n");
339 goto nomouse;
340 }
341 if (!pckbc_wait_output(iot, ioh_c)) {
342 aprint_error("pckbc: aux echo error 2\n");
343 goto nomouse;
344 }
345 t->t_haveaux = 1;
346 bus_space_write_1(iot, ioh_d, 0, 0x5a); /* a random value */
347 res = pckbc_poll_data1(t, PCKBC_AUX_SLOT);
348
349 /*
350 * The following is needed to find the aux port on the Tadpole
351 * SPARCle.
352 */
353 if (res == -1 && ISSET(t->t_flags, PCKBC_NEED_AUXWRITE)) {
354 /* Read of aux echo timed out, try again */
355 if (!pckbc_send_cmd(iot, ioh_c, KBC_AUXWRITE))
356 goto nomouse;
357 if (!pckbc_wait_output(iot, ioh_c))
358 goto nomouse;
359 bus_space_write_1(iot, ioh_d, 0, 0x5a);
360 res = pckbc_poll_data1(t, PCKBC_AUX_SLOT);
361 }
362 if (res != -1) {
363 /*
364 * In most cases, the 0x5a gets echoed.
365 * Some older controllers (Gateway 2000 circa 1993)
366 * return 0xfe here.
367 * We are satisfied if there is anything in the
368 * aux output buffer.
369 */
370 if (pckbc_attach_slot(sc, PCKBC_AUX_SLOT))
371 cmdbits |= KC8_MENABLE;
372 } else {
373
374 #ifdef PCKBCDEBUG
375 printf("pckbc: aux echo test failed\n");
376 #endif
377 t->t_haveaux = 0;
378 }
379
380 nomouse:
381 /* enable needed interrupts */
382 t->t_cmdbyte |= cmdbits;
383 if (!pckbc_put8042cmd(t))
384 aprint_error("pckbc: cmd word write error\n");
385 }
386
387 static void
388 pckbc_init_slotdata(struct pckbc_slotdata *q)
389 {
390
391 q->polling = 0;
392 }
393
394 /*
395 * switch scancode translation on / off
396 * return nonzero on success
397 */
398 static int
399 pckbc_xt_translation(void *self, pckbc_slot_t slot, int on)
400 {
401 struct pckbc_internal *t = self;
402 int ison;
403
404 if (ISSET(t->t_flags, PCKBC_CANT_TRANSLATE))
405 return (-1);
406
407 if (slot != PCKBC_KBD_SLOT) {
408 /* translation only for kbd slot */
409 if (on)
410 return (0);
411 else
412 return (1);
413 }
414
415 ison = t->t_cmdbyte & KC8_TRANS;
416 if ((on && ison) || (!on && !ison))
417 return (1);
418
419 t->t_cmdbyte ^= KC8_TRANS;
420 if (!pckbc_put8042cmd(t))
421 return (0);
422
423 /* read back to be sure */
424 if (!pckbc_get8042cmd(t))
425 return (0);
426
427 ison = t->t_cmdbyte & KC8_TRANS;
428 if ((on && ison) || (!on && !ison))
429 return (1);
430 return (0);
431 }
432
433 static const struct pckbc_portcmd {
434 u_char cmd_en, cmd_dis;
435 } pckbc_portcmd[2] = {
436 {
437 KBC_KBDENABLE, KBC_KBDDISABLE,
438 }, {
439 KBC_AUXENABLE, KBC_AUXDISABLE,
440 }
441 };
442
443 void
444 pckbc_slot_enable(void *self, pckbc_slot_t slot, int on)
445 {
446 struct pckbc_internal *t = (struct pckbc_internal *)self;
447 const struct pckbc_portcmd *cmd;
448
449 cmd = &pckbc_portcmd[slot];
450
451 if (!pckbc_send_cmd(t->t_iot, t->t_ioh_c,
452 on ? cmd->cmd_en : cmd->cmd_dis))
453 printf("pckbc: pckbc_slot_enable(%d) failed\n", on);
454 }
455
456 static void
457 pckbc_set_poll(void *self, pckbc_slot_t slot, int on)
458 {
459 struct pckbc_internal *t = (struct pckbc_internal *)self;
460
461 t->t_slotdata[slot]->polling = on;
462
463 if (on) {
464 t->t_slotdata[slot]->poll_data = -1;
465 t->t_slotdata[slot]->poll_stat = -1;
466 } else {
467 int s;
468
469 /*
470 * If disabling polling on a device that's been configured,
471 * make sure there are no bytes left in the FIFO, holding up
472 * the interrupt line. Otherwise we won't get any further
473 * interrupts.
474 */
475 if (t->t_sc) {
476 s = spltty();
477 pckbcintr(t->t_sc);
478 splx(s);
479 }
480 }
481 }
482
483 static void
484 pckbc_intr_establish(void *pt, pckbport_slot_t slot)
485 {
486 struct pckbc_internal *t = pt;
487
488 (*t->t_sc->intr_establish)(t->t_sc, slot);
489 }
490
491 int
492 pckbcintr_hard(void *vsc)
493 {
494 struct pckbc_softc *sc = (struct pckbc_softc *)vsc;
495 struct pckbc_internal *t = sc->id;
496 u_char stat;
497 pckbc_slot_t slot;
498 struct pckbc_slotdata *q;
499 int served = 0, data, next, s;
500
501 for(;;) {
502 stat = bus_space_read_1(t->t_iot, t->t_ioh_c, 0);
503 if (!(stat & KBS_DIB))
504 break;
505
506 served = 1;
507
508 slot = (t->t_haveaux && (stat & 0x20)) ?
509 PCKBC_AUX_SLOT : PCKBC_KBD_SLOT;
510 q = t->t_slotdata[slot];
511
512 if (!q) {
513 /* XXX do something for live insertion? */
514 printf("pckbc: no dev for slot %d\n", slot);
515 KBD_DELAY;
516 (void) bus_space_read_1(t->t_iot, t->t_ioh_d, 0);
517 continue;
518 }
519
520 KBD_DELAY;
521 data = bus_space_read_1(t->t_iot, t->t_ioh_d, 0);
522
523 rnd_add_uint32(&q->rnd_source, (stat<<8)|data);
524
525 if (q->polling) {
526 q->poll_data = data;
527 q->poll_stat = stat;
528 break; /* pckbc_poll_data() will get it */
529 }
530
531 #if 0 /* XXXBJH */
532 if (CMD_IN_QUEUE(q) && pckbc_cmdresponse(t, slot, data))
533 continue;
534 #endif
535
536 s = splhigh();
537 next = (t->rbuf_write+1) % PCKBC_RBUF_SIZE;
538 if (next == t->rbuf_read) {
539 splx(s);
540 break;
541 }
542 t->rbuf[t->rbuf_write].data = data;
543 t->rbuf[t->rbuf_write].slot = slot;
544 t->rbuf_write = next;
545 splx(s);
546 }
547
548 return (served);
549 }
550
551 void
552 pckbcintr_soft(void *vsc)
553 {
554 struct pckbc_softc *sc = vsc;
555 struct pckbc_internal *t = sc->id;
556 int data, slot, s;
557 #ifndef __GENERIC_SOFT_INTERRUPTS_ALL_LEVELS
558 int st;
559
560 st = spltty();
561 #endif
562
563 s = splhigh();
564 while (t->rbuf_read != t->rbuf_write) {
565 slot = t->rbuf[t->rbuf_read].slot;
566 data = t->rbuf[t->rbuf_read].data;
567 t->rbuf_read = (t->rbuf_read+1) % PCKBC_RBUF_SIZE;
568 splx(s);
569 pckbportintr(t->t_pt, slot, data);
570 s = splhigh();
571 }
572 splx(s);
573
574
575 #ifndef __GENERIC_SOFT_INTERRUPTS_ALL_LEVELS
576 splx(st);
577 #endif
578 }
579
580 int
581 pckbcintr(void *vsc)
582 {
583 struct pckbc_softc *sc = (struct pckbc_softc *)vsc;
584 struct pckbc_internal *t = sc->id;
585 u_char stat;
586 pckbc_slot_t slot;
587 struct pckbc_slotdata *q;
588 int served = 0, data;
589
590 for(;;) {
591 stat = bus_space_read_1(t->t_iot, t->t_ioh_c, 0);
592 if (!(stat & KBS_DIB))
593 break;
594
595 slot = (t->t_haveaux && (stat & 0x20)) ?
596 PCKBC_AUX_SLOT : PCKBC_KBD_SLOT;
597 q = t->t_slotdata[slot];
598
599 if (q != NULL && q->polling)
600 return 0;
601
602 served = 1;
603 KBD_DELAY;
604 data = bus_space_read_1(t->t_iot, t->t_ioh_d, 0);
605
606 if (q != NULL)
607 rnd_add_uint32(&q->rnd_source, (stat<<8)|data);
608
609 pckbportintr(t->t_pt, slot, data);
610 }
611
612 return (served);
613 }
614
615 int
616 pckbc_cnattach(bus_space_tag_t iot, bus_addr_t addr,
617 bus_size_t cmd_offset, pckbc_slot_t slot, int flags)
618 {
619 bus_space_handle_t ioh_d, ioh_c;
620 #ifdef PCKBC_CNATTACH_SELFTEST
621 int reply;
622 #endif
623 int res = 0;
624
625 if (bus_space_map(iot, addr + KBDATAP, 1, 0, &ioh_d))
626 return (ENXIO);
627 if (bus_space_map(iot, addr + cmd_offset, 1, 0, &ioh_c)) {
628 bus_space_unmap(iot, ioh_d, 1);
629 return (ENXIO);
630 }
631
632 memset(&pckbc_consdata, 0, sizeof(pckbc_consdata));
633 pckbc_consdata.t_iot = iot;
634 pckbc_consdata.t_ioh_d = ioh_d;
635 pckbc_consdata.t_ioh_c = ioh_c;
636 pckbc_consdata.t_addr = addr;
637 pckbc_consdata.t_flags = flags;
638 callout_init(&pckbc_consdata.t_cleanup, 0);
639
640 /* flush */
641 (void) pckbc_poll_data1(&pckbc_consdata, PCKBC_KBD_SLOT);
642
643 #ifdef PCKBC_CNATTACH_SELFTEST
644 /*
645 * In some machines (e.g. netwinder) pckbc refuses to talk at
646 * all until we request a self-test.
647 */
648 if (!pckbc_send_cmd(iot, ioh_c, KBC_SELFTEST)) {
649 printf("pckbc: unable to request selftest\n");
650 res = EIO;
651 goto out;
652 }
653
654 reply = pckbc_poll_data1(&pckbc_consdata, PCKBC_KBD_SLOT);
655 if (reply != 0x55) {
656 printf("pckbc: selftest returned 0x%02x\n", reply);
657 res = EIO;
658 goto out;
659 }
660 #endif /* PCKBC_CNATTACH_SELFTEST */
661
662 /* init cmd byte, enable ports */
663 pckbc_consdata.t_cmdbyte = KC8_CPU;
664 if (!pckbc_put8042cmd(&pckbc_consdata)) {
665 printf("pckbc: cmd word write error\n");
666 res = EIO;
667 goto out;
668 }
669
670 res = pckbport_cnattach(&pckbc_consdata, &pckbc_ops, slot);
671
672 out:
673 if (res) {
674 bus_space_unmap(iot, pckbc_consdata.t_ioh_d, 1);
675 bus_space_unmap(iot, pckbc_consdata.t_ioh_c, 1);
676 } else {
677 pckbc_consdata.t_slotdata[slot] = &pckbc_cons_slotdata;
678 pckbc_init_slotdata(&pckbc_cons_slotdata);
679 pckbc_console = 1;
680 }
681
682 return (res);
683 }
684
685 bool
686 pckbc_resume(device_t dv, const pmf_qual_t *qual)
687 {
688 struct pckbc_softc *sc = device_private(dv);
689 struct pckbc_internal *t;
690
691 t = sc->id;
692 (void)pckbc_poll_data1(t, PCKBC_KBD_SLOT);
693 if (!pckbc_send_cmd(t->t_iot, t->t_ioh_c, KBC_SELFTEST))
694 return false;
695 (void)pckbc_poll_data1(t, PCKBC_KBD_SLOT);
696 (void)pckbc_put8042cmd(t);
697 pckbcintr(t->t_sc);
698
699 return true;
700 }
701