acpi_ec.c revision 1.59 1 /* $NetBSD: acpi_ec.c,v 1.59 2010/01/18 18:36:49 jruoho Exp $ */
2
3 /*-
4 * Copyright (c) 2007 Joerg Sonnenberger <joerg (at) NetBSD.org>.
5 * All rights reserved.
6 *
7 * Redistribution and use in source and binary forms, with or without
8 * modification, are permitted provided that the following conditions
9 * are met:
10 *
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
15 * the documentation and/or other materials provided with the
16 * distribution.
17 *
18 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
19 * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
20 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
21 * FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE
22 * COPYRIGHT HOLDERS OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT,
23 * INCIDENTAL, SPECIAL, EXEMPLARY OR CONSEQUENTIAL DAMAGES (INCLUDING,
24 * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
25 * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
26 * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
27 * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
28 * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
29 * SUCH DAMAGE.
30 */
31
32 /*
33 * The ACPI Embedded Controller (EC) driver serves two different purposes:
34 * - read and write access from ASL, e.g. to read battery state
35 * - notification of ASL of System Control Interrupts.
36 *
37 * Access to the EC is serialised by sc_access_mtx and optionally the
38 * ACPI global mutex. Both locks are held until the request is fulfilled.
39 * All access to the softc has to hold sc_mtx to serialise against the GPE
40 * handler and the callout. sc_mtx is also used for wakeup conditions.
41 *
42 * SCIs are processed in a kernel thread. Handling gets a bit complicated
43 * by the lock order (sc_mtx must be acquired after sc_access_mtx and the
44 * ACPI global mutex).
45 *
46 * Read and write requests spin around for a short time as many requests
47 * can be handled instantly by the EC. During normal processing interrupt
48 * mode is used exclusively. At boot and resume time interrupts are not
49 * working and the handlers just busy loop.
50 *
51 * A callout is scheduled to compensate for missing interrupts on some
52 * hardware. If the EC doesn't process a request for 5s, it is most likely
53 * in a wedged state. No method to reset the EC is currently known.
54 *
55 * Special care has to be taken to not poll the EC in a busy loop without
56 * delay. This can prevent processing of Power Button events. At least some
57 * Lenovo Thinkpads seem to be implement the Power Button Override in the EC
58 * and the only option to recover on those models is to cut off all power.
59 */
60
61 #include <sys/cdefs.h>
62 __KERNEL_RCSID(0, "$NetBSD: acpi_ec.c,v 1.59 2010/01/18 18:36:49 jruoho Exp $");
63
64 #include <sys/param.h>
65 #include <sys/systm.h>
66 #include <sys/condvar.h>
67 #include <sys/device.h>
68 #include <sys/kernel.h>
69 #include <sys/kthread.h>
70 #include <sys/mutex.h>
71
72 #include <sys/bus.h>
73
74 #include <dev/acpi/acpireg.h>
75 #include <dev/acpi/acpivar.h>
76 #include <dev/acpi/acpi_ecvar.h>
77
78 #define _COMPONENT ACPI_EC_COMPONENT
79 ACPI_MODULE_NAME ("acpi_ec")
80
81 /* Maximum time to wait for global ACPI lock in ms */
82 #define EC_LOCK_TIMEOUT 5
83
84 /* Maximum time to poll for completion of a command in ms */
85 #define EC_POLL_TIMEOUT 5
86
87 /* Maximum time to give a single EC command in s */
88 #define EC_CMD_TIMEOUT 10
89
90 /* From ACPI 3.0b, chapter 12.3 */
91 #define EC_COMMAND_READ 0x80
92 #define EC_COMMAND_WRITE 0x81
93 #define EC_COMMAND_BURST_EN 0x82
94 #define EC_COMMAND_BURST_DIS 0x83
95 #define EC_COMMAND_QUERY 0x84
96
97 /* From ACPI 3.0b, chapter 12.2.1 */
98 #define EC_STATUS_OBF 0x01
99 #define EC_STATUS_IBF 0x02
100 #define EC_STATUS_CMD 0x08
101 #define EC_STATUS_BURST 0x10
102 #define EC_STATUS_SCI 0x20
103 #define EC_STATUS_SMI 0x40
104
105 static const char *ec_hid[] = {
106 "PNP0C09",
107 NULL,
108 };
109
110 enum ec_state_t {
111 EC_STATE_QUERY,
112 EC_STATE_QUERY_VAL,
113 EC_STATE_READ,
114 EC_STATE_READ_ADDR,
115 EC_STATE_READ_VAL,
116 EC_STATE_WRITE,
117 EC_STATE_WRITE_ADDR,
118 EC_STATE_WRITE_VAL,
119 EC_STATE_FREE
120 };
121
122 struct acpiec_softc {
123 ACPI_HANDLE sc_ech;
124
125 ACPI_HANDLE sc_gpeh;
126 UINT8 sc_gpebit;
127
128 bus_space_tag_t sc_data_st;
129 bus_space_handle_t sc_data_sh;
130
131 bus_space_tag_t sc_csr_st;
132 bus_space_handle_t sc_csr_sh;
133
134 bool sc_need_global_lock;
135 UINT32 sc_global_lock;
136
137 kmutex_t sc_mtx, sc_access_mtx;
138 kcondvar_t sc_cv, sc_cv_sci;
139 enum ec_state_t sc_state;
140 bool sc_got_sci;
141 callout_t sc_pseudo_intr;
142
143 uint8_t sc_cur_addr, sc_cur_val;
144 };
145
146 static int acpiecdt_match(device_t, cfdata_t, void *);
147 static void acpiecdt_attach(device_t, device_t, void *);
148
149 static int acpiec_match(device_t, cfdata_t, void *);
150 static void acpiec_attach(device_t, device_t, void *);
151
152 static void acpiec_common_attach(device_t, device_t, ACPI_HANDLE,
153 bus_addr_t, bus_addr_t, ACPI_HANDLE, uint8_t);
154
155 static bool acpiec_suspend(device_t, pmf_qual_t);
156 static bool acpiec_resume(device_t, pmf_qual_t);
157 static bool acpiec_shutdown(device_t, int);
158
159 static bool acpiec_parse_gpe_package(device_t, ACPI_HANDLE,
160 ACPI_HANDLE *, uint8_t *);
161
162 static void acpiec_callout(void *);
163 static void acpiec_gpe_query(void *);
164 static UINT32 acpiec_gpe_handler(void *);
165 static ACPI_STATUS acpiec_space_setup(ACPI_HANDLE, UINT32, void *, void **);
166 static ACPI_STATUS acpiec_space_handler(UINT32, ACPI_PHYSICAL_ADDRESS,
167 UINT32, ACPI_INTEGER *, void *, void *);
168
169 static void acpiec_gpe_state_machine(device_t);
170
171 CFATTACH_DECL_NEW(acpiec, sizeof(struct acpiec_softc),
172 acpiec_match, acpiec_attach, NULL, NULL);
173
174 CFATTACH_DECL_NEW(acpiecdt, sizeof(struct acpiec_softc),
175 acpiecdt_match, acpiecdt_attach, NULL, NULL);
176
177 static device_t ec_singleton = NULL;
178 static bool acpiec_cold = false;
179
180 static bool
181 acpiecdt_find(device_t parent, ACPI_HANDLE *ec_handle,
182 bus_addr_t *cmd_reg, bus_addr_t *data_reg, uint8_t *gpebit)
183 {
184 ACPI_TABLE_ECDT *ecdt;
185 ACPI_STATUS rv;
186
187 rv = AcpiGetTable(ACPI_SIG_ECDT, 1, (ACPI_TABLE_HEADER **)&ecdt);
188 if (ACPI_FAILURE(rv))
189 return false;
190
191 if (ecdt->Control.BitWidth != 8 || ecdt->Data.BitWidth != 8) {
192 aprint_error_dev(parent,
193 "ECDT register width invalid (%d/%d)\n",
194 ecdt->Control.BitWidth, ecdt->Data.BitWidth);
195 return false;
196 }
197
198 rv = AcpiGetHandle(ACPI_ROOT_OBJECT, ecdt->Id, ec_handle);
199 if (ACPI_FAILURE(rv)) {
200 aprint_error_dev(parent,
201 "failed to look up EC object %s: %s\n",
202 ecdt->Id, AcpiFormatException(rv));
203 return false;
204 }
205
206 *cmd_reg = ecdt->Control.Address;
207 *data_reg = ecdt->Data.Address;
208 *gpebit = ecdt->Gpe;
209
210 return true;
211 }
212
213 static int
214 acpiecdt_match(device_t parent, cfdata_t match, void *aux)
215 {
216 ACPI_HANDLE ec_handle;
217 bus_addr_t cmd_reg, data_reg;
218 uint8_t gpebit;
219
220 if (acpiecdt_find(parent, &ec_handle, &cmd_reg, &data_reg, &gpebit))
221 return 1;
222 else
223 return 0;
224 }
225
226 static void
227 acpiecdt_attach(device_t parent, device_t self, void *aux)
228 {
229 ACPI_HANDLE ec_handle;
230 bus_addr_t cmd_reg, data_reg;
231 uint8_t gpebit;
232
233 if (!acpiecdt_find(parent, &ec_handle, &cmd_reg, &data_reg, &gpebit))
234 panic("ECDT disappeared");
235
236 aprint_naive("\n");
237 aprint_normal(": ACPI Embedded Controller via ECDT\n");
238
239 acpiec_common_attach(parent, self, ec_handle, cmd_reg, data_reg,
240 NULL, gpebit);
241 }
242
243 static int
244 acpiec_match(device_t parent, cfdata_t match, void *aux)
245 {
246 struct acpi_attach_args *aa = aux;
247
248 if (aa->aa_node->ad_type != ACPI_TYPE_DEVICE)
249 return 0;
250
251 return acpi_match_hid(aa->aa_node->ad_devinfo, ec_hid);
252 }
253
254 static void
255 acpiec_attach(device_t parent, device_t self, void *aux)
256 {
257 struct acpi_attach_args *aa = aux;
258 struct acpi_resources ec_res;
259 struct acpi_io *io0, *io1;
260 ACPI_HANDLE gpe_handle;
261 uint8_t gpebit;
262 ACPI_STATUS rv;
263
264 if (ec_singleton != NULL) {
265 aprint_naive(": using %s\n", device_xname(ec_singleton));
266 aprint_normal(": using %s\n", device_xname(ec_singleton));
267 if (!pmf_device_register(self, NULL, NULL))
268 aprint_error_dev(self, "couldn't establish power handler\n");
269 return;
270 }
271
272 if (!acpiec_parse_gpe_package(self, aa->aa_node->ad_handle,
273 &gpe_handle, &gpebit))
274 return;
275
276 rv = acpi_resource_parse(self, aa->aa_node->ad_handle, "_CRS",
277 &ec_res, &acpi_resource_parse_ops_default);
278 if (rv != AE_OK) {
279 aprint_error_dev(self, "resource parsing failed: %s\n",
280 AcpiFormatException(rv));
281 return;
282 }
283
284 if ((io0 = acpi_res_io(&ec_res, 0)) == NULL) {
285 aprint_error_dev(self, "no data register resource\n");
286 goto free_res;
287 }
288 if ((io1 = acpi_res_io(&ec_res, 1)) == NULL) {
289 aprint_error_dev(self, "no CSR register resource\n");
290 goto free_res;
291 }
292
293 acpiec_common_attach(parent, self, aa->aa_node->ad_handle,
294 io1->ar_base, io0->ar_base, gpe_handle, gpebit);
295
296 free_res:
297 acpi_resource_cleanup(&ec_res);
298 }
299
300 static void
301 acpiec_common_attach(device_t parent, device_t self,
302 ACPI_HANDLE ec_handle, bus_addr_t cmd_reg, bus_addr_t data_reg,
303 ACPI_HANDLE gpe_handle, uint8_t gpebit)
304 {
305 struct acpiec_softc *sc = device_private(self);
306 ACPI_STATUS rv;
307 ACPI_INTEGER val;
308
309 sc->sc_ech = ec_handle;
310 sc->sc_gpeh = gpe_handle;
311 sc->sc_gpebit = gpebit;
312
313 sc->sc_state = EC_STATE_FREE;
314 mutex_init(&sc->sc_mtx, MUTEX_DRIVER, IPL_TTY);
315 mutex_init(&sc->sc_access_mtx, MUTEX_DEFAULT, IPL_NONE);
316 cv_init(&sc->sc_cv, "eccv");
317 cv_init(&sc->sc_cv_sci, "ecsci");
318
319 if (bus_space_map(sc->sc_data_st, data_reg, 1, 0,
320 &sc->sc_data_sh) != 0) {
321 aprint_error_dev(self, "unable to map data register\n");
322 return;
323 }
324
325 if (bus_space_map(sc->sc_csr_st, cmd_reg, 1, 0, &sc->sc_csr_sh) != 0) {
326 aprint_error_dev(self, "unable to map CSR register\n");
327 goto post_data_map;
328 }
329
330 rv = acpi_eval_integer(sc->sc_ech, "_GLK", &val);
331 if (rv == AE_OK) {
332 sc->sc_need_global_lock = val != 0;
333 } else if (rv != AE_NOT_FOUND) {
334 aprint_error_dev(self, "unable to evaluate _GLK: %s\n",
335 AcpiFormatException(rv));
336 goto post_csr_map;
337 } else {
338 sc->sc_need_global_lock = false;
339 }
340 if (sc->sc_need_global_lock)
341 aprint_normal_dev(self, "using global ACPI lock\n");
342
343 callout_init(&sc->sc_pseudo_intr, CALLOUT_MPSAFE);
344 callout_setfunc(&sc->sc_pseudo_intr, acpiec_callout, self);
345
346 rv = AcpiInstallAddressSpaceHandler(sc->sc_ech, ACPI_ADR_SPACE_EC,
347 acpiec_space_handler, acpiec_space_setup, self);
348 if (rv != AE_OK) {
349 aprint_error_dev(self,
350 "unable to install address space handler: %s\n",
351 AcpiFormatException(rv));
352 goto post_csr_map;
353 }
354
355 rv = AcpiInstallGpeHandler(sc->sc_gpeh, sc->sc_gpebit,
356 ACPI_GPE_EDGE_TRIGGERED, acpiec_gpe_handler, self);
357 if (rv != AE_OK) {
358 aprint_error_dev(self, "unable to install GPE handler: %s\n",
359 AcpiFormatException(rv));
360 goto post_csr_map;
361 }
362
363 rv = AcpiSetGpeType(sc->sc_gpeh, sc->sc_gpebit, ACPI_GPE_TYPE_RUNTIME);
364 if (rv != AE_OK) {
365 aprint_error_dev(self, "unable to set GPE type: %s\n",
366 AcpiFormatException(rv));
367 goto post_csr_map;
368 }
369
370 rv = AcpiEnableGpe(sc->sc_gpeh, sc->sc_gpebit, ACPI_ISR);
371 if (rv != AE_OK) {
372 aprint_error_dev(self, "unable to enable GPE: %s\n",
373 AcpiFormatException(rv));
374 goto post_csr_map;
375 }
376
377 if (kthread_create(PRI_NONE, KTHREAD_MPSAFE, NULL, acpiec_gpe_query,
378 self, NULL, "acpiec sci thread")) {
379 aprint_error_dev(self, "unable to create query kthread\n");
380 goto post_csr_map;
381 }
382
383 ec_singleton = self;
384
385 if (!pmf_device_register1(self, acpiec_suspend, acpiec_resume,
386 acpiec_shutdown))
387 aprint_error_dev(self, "couldn't establish power handler\n");
388
389 return;
390
391 post_csr_map:
392 (void)AcpiRemoveGpeHandler(sc->sc_gpeh, sc->sc_gpebit,
393 acpiec_gpe_handler);
394 (void)AcpiRemoveAddressSpaceHandler(sc->sc_ech,
395 ACPI_ADR_SPACE_EC, acpiec_space_handler);
396 bus_space_unmap(sc->sc_csr_st, sc->sc_csr_sh, 1);
397 post_data_map:
398 bus_space_unmap(sc->sc_data_st, sc->sc_data_sh, 1);
399 }
400
401 static bool
402 acpiec_suspend(device_t dv, pmf_qual_t qual)
403 {
404 acpiec_cold = true;
405
406 return true;
407 }
408
409 static bool
410 acpiec_resume(device_t dv, pmf_qual_t qual)
411 {
412 acpiec_cold = false;
413
414 return true;
415 }
416
417 static bool
418 acpiec_shutdown(device_t dv, int how)
419 {
420
421 acpiec_cold = true;
422 return true;
423 }
424
425 static bool
426 acpiec_parse_gpe_package(device_t self, ACPI_HANDLE ec_handle,
427 ACPI_HANDLE *gpe_handle, uint8_t *gpebit)
428 {
429 ACPI_BUFFER buf;
430 ACPI_OBJECT *p, *c;
431 ACPI_STATUS rv;
432
433 rv = acpi_eval_struct(ec_handle, "_GPE", &buf);
434 if (rv != AE_OK) {
435 aprint_error_dev(self, "unable to evaluate _GPE: %s\n",
436 AcpiFormatException(rv));
437 return false;
438 }
439
440 p = buf.Pointer;
441
442 if (p->Type == ACPI_TYPE_INTEGER) {
443 *gpe_handle = NULL;
444 *gpebit = p->Integer.Value;
445 ACPI_FREE(p);
446 return true;
447 }
448
449 if (p->Type != ACPI_TYPE_PACKAGE) {
450 aprint_error_dev(self, "_GPE is neither integer nor package\n");
451 ACPI_FREE(p);
452 return false;
453 }
454
455 if (p->Package.Count != 2) {
456 aprint_error_dev(self, "_GPE package does not contain 2 elements\n");
457 ACPI_FREE(p);
458 return false;
459 }
460
461 c = &p->Package.Elements[0];
462 rv = acpi_eval_reference_handle(c, gpe_handle);
463
464 if (ACPI_FAILURE(rv)) {
465 aprint_error_dev(self, "failed to evaluate _GPE handle\n");
466 ACPI_FREE(p);
467 return false;
468 }
469
470 c = &p->Package.Elements[1];
471
472 if (c->Type != ACPI_TYPE_INTEGER) {
473 aprint_error_dev(self,
474 "_GPE package needs integer as 2nd field\n");
475 ACPI_FREE(p);
476 return false;
477 }
478 *gpebit = c->Integer.Value;
479 ACPI_FREE(p);
480 return true;
481 }
482
483 static uint8_t
484 acpiec_read_data(struct acpiec_softc *sc)
485 {
486 return bus_space_read_1(sc->sc_data_st, sc->sc_data_sh, 0);
487 }
488
489 static void
490 acpiec_write_data(struct acpiec_softc *sc, uint8_t val)
491 {
492 bus_space_write_1(sc->sc_data_st, sc->sc_data_sh, 0, val);
493 }
494
495 static uint8_t
496 acpiec_read_status(struct acpiec_softc *sc)
497 {
498 return bus_space_read_1(sc->sc_csr_st, sc->sc_csr_sh, 0);
499 }
500
501 static void
502 acpiec_write_command(struct acpiec_softc *sc, uint8_t cmd)
503 {
504 bus_space_write_1(sc->sc_csr_st, sc->sc_csr_sh, 0, cmd);
505 }
506
507 static ACPI_STATUS
508 acpiec_space_setup(ACPI_HANDLE region, UINT32 func, void *arg,
509 void **region_arg)
510 {
511 if (func == ACPI_REGION_DEACTIVATE)
512 *region_arg = NULL;
513 else
514 *region_arg = arg;
515
516 return AE_OK;
517 }
518
519 static void
520 acpiec_lock(device_t dv)
521 {
522 struct acpiec_softc *sc = device_private(dv);
523 ACPI_STATUS rv;
524
525 mutex_enter(&sc->sc_access_mtx);
526
527 if (sc->sc_need_global_lock) {
528 rv = AcpiAcquireGlobalLock(EC_LOCK_TIMEOUT, &sc->sc_global_lock);
529 if (rv != AE_OK) {
530 aprint_error_dev(dv, "failed to acquire global lock: %s\n",
531 AcpiFormatException(rv));
532 return;
533 }
534 }
535 }
536
537 static void
538 acpiec_unlock(device_t dv)
539 {
540 struct acpiec_softc *sc = device_private(dv);
541 ACPI_STATUS rv;
542
543 if (sc->sc_need_global_lock) {
544 rv = AcpiReleaseGlobalLock(sc->sc_global_lock);
545 if (rv != AE_OK) {
546 aprint_error_dev(dv, "failed to release global lock: %s\n",
547 AcpiFormatException(rv));
548 }
549 }
550 mutex_exit(&sc->sc_access_mtx);
551 }
552
553 static ACPI_STATUS
554 acpiec_read(device_t dv, uint8_t addr, uint8_t *val)
555 {
556 struct acpiec_softc *sc = device_private(dv);
557 int i, timeo = 1000 * EC_CMD_TIMEOUT;
558
559 acpiec_lock(dv);
560 mutex_enter(&sc->sc_mtx);
561
562 sc->sc_cur_addr = addr;
563 sc->sc_state = EC_STATE_READ;
564
565 for (i = 0; i < EC_POLL_TIMEOUT; ++i) {
566 acpiec_gpe_state_machine(dv);
567 if (sc->sc_state == EC_STATE_FREE)
568 goto done;
569 delay(1);
570 }
571
572 if (cold || acpiec_cold) {
573 while (sc->sc_state != EC_STATE_FREE && timeo-- > 0) {
574 delay(1000);
575 acpiec_gpe_state_machine(dv);
576 }
577 if (sc->sc_state != EC_STATE_FREE) {
578 mutex_exit(&sc->sc_mtx);
579 AcpiClearGpe(sc->sc_gpeh, sc->sc_gpebit, ACPI_NOT_ISR);
580 acpiec_unlock(dv);
581 aprint_error_dev(dv, "command timed out, state %d\n",
582 sc->sc_state);
583 return AE_ERROR;
584 }
585 } else if (cv_timedwait(&sc->sc_cv, &sc->sc_mtx, EC_CMD_TIMEOUT * hz)) {
586 mutex_exit(&sc->sc_mtx);
587 AcpiClearGpe(sc->sc_gpeh, sc->sc_gpebit, ACPI_NOT_ISR);
588 acpiec_unlock(dv);
589 aprint_error_dev(dv, "command takes over %d sec...\n", EC_CMD_TIMEOUT);
590 return AE_ERROR;
591 }
592
593 done:
594 *val = sc->sc_cur_val;
595
596 mutex_exit(&sc->sc_mtx);
597 acpiec_unlock(dv);
598 return AE_OK;
599 }
600
601 static ACPI_STATUS
602 acpiec_write(device_t dv, uint8_t addr, uint8_t val)
603 {
604 struct acpiec_softc *sc = device_private(dv);
605 int i, timeo = 1000 * EC_CMD_TIMEOUT;
606
607 acpiec_lock(dv);
608 mutex_enter(&sc->sc_mtx);
609
610 sc->sc_cur_addr = addr;
611 sc->sc_cur_val = val;
612 sc->sc_state = EC_STATE_WRITE;
613
614 for (i = 0; i < EC_POLL_TIMEOUT; ++i) {
615 acpiec_gpe_state_machine(dv);
616 if (sc->sc_state == EC_STATE_FREE)
617 goto done;
618 delay(1);
619 }
620
621 if (cold || acpiec_cold) {
622 while (sc->sc_state != EC_STATE_FREE && timeo-- > 0) {
623 delay(1000);
624 acpiec_gpe_state_machine(dv);
625 }
626 if (sc->sc_state != EC_STATE_FREE) {
627 mutex_exit(&sc->sc_mtx);
628 AcpiClearGpe(sc->sc_gpeh, sc->sc_gpebit, ACPI_NOT_ISR);
629 acpiec_unlock(dv);
630 aprint_error_dev(dv, "command timed out, state %d\n",
631 sc->sc_state);
632 return AE_ERROR;
633 }
634 } else if (cv_timedwait(&sc->sc_cv, &sc->sc_mtx, EC_CMD_TIMEOUT * hz)) {
635 mutex_exit(&sc->sc_mtx);
636 AcpiClearGpe(sc->sc_gpeh, sc->sc_gpebit, ACPI_NOT_ISR);
637 acpiec_unlock(dv);
638 aprint_error_dev(dv, "command takes over %d sec...\n", EC_CMD_TIMEOUT);
639 return AE_ERROR;
640 }
641
642 done:
643 mutex_exit(&sc->sc_mtx);
644 acpiec_unlock(dv);
645 return AE_OK;
646 }
647
648 static ACPI_STATUS
649 acpiec_space_handler(UINT32 func, ACPI_PHYSICAL_ADDRESS paddr,
650 UINT32 width, ACPI_INTEGER *value, void *arg, void *region_arg)
651 {
652 device_t dv;
653 struct acpiec_softc *sc;
654 ACPI_STATUS rv;
655 uint8_t addr, reg;
656 unsigned int i;
657
658 if (paddr > 0xff || width % 8 != 0 || value == NULL || arg == NULL ||
659 paddr + width / 8 > 0xff)
660 return AE_BAD_PARAMETER;
661
662 addr = paddr;
663 dv = arg;
664 sc = device_private(dv);
665
666 rv = AE_OK;
667
668 switch (func) {
669 case ACPI_READ:
670 *value = 0;
671 for (i = 0; i < width; i += 8, ++addr) {
672 rv = acpiec_read(dv, addr, ®);
673 if (rv != AE_OK)
674 break;
675 *value |= (ACPI_INTEGER)reg << i;
676 }
677 break;
678 case ACPI_WRITE:
679 for (i = 0; i < width; i += 8, ++addr) {
680 reg = (*value >>i) & 0xff;
681 rv = acpiec_write(dv, addr, reg);
682 if (rv != AE_OK)
683 break;
684 }
685 break;
686 default:
687 aprint_error("%s: invalid Address Space function called: %x\n",
688 device_xname(dv), (unsigned int)func);
689 return AE_BAD_PARAMETER;
690 }
691
692 return rv;
693 }
694
695 static void
696 acpiec_gpe_query(void *arg)
697 {
698 device_t dv = arg;
699 struct acpiec_softc *sc = device_private(dv);
700 uint8_t reg;
701 char qxx[5];
702 ACPI_STATUS rv;
703 int i;
704
705 loop:
706 mutex_enter(&sc->sc_mtx);
707
708 if (sc->sc_got_sci == false)
709 cv_wait(&sc->sc_cv_sci, &sc->sc_mtx);
710 mutex_exit(&sc->sc_mtx);
711
712 acpiec_lock(dv);
713 mutex_enter(&sc->sc_mtx);
714
715 /* The Query command can always be issued, so be defensive here. */
716 sc->sc_got_sci = false;
717 sc->sc_state = EC_STATE_QUERY;
718
719 for (i = 0; i < EC_POLL_TIMEOUT; ++i) {
720 acpiec_gpe_state_machine(dv);
721 if (sc->sc_state == EC_STATE_FREE)
722 goto done;
723 delay(1);
724 }
725
726 cv_wait(&sc->sc_cv, &sc->sc_mtx);
727
728 done:
729 reg = sc->sc_cur_val;
730
731 mutex_exit(&sc->sc_mtx);
732 acpiec_unlock(dv);
733
734 if (reg == 0)
735 goto loop; /* Spurious query result */
736
737 /*
738 * Evaluate _Qxx to respond to the controller.
739 */
740 snprintf(qxx, sizeof(qxx), "_Q%02X", (unsigned int)reg);
741 rv = AcpiEvaluateObject(sc->sc_ech, qxx, NULL, NULL);
742 if (rv != AE_OK && rv != AE_NOT_FOUND) {
743 aprint_error("%s: GPE query method %s failed: %s",
744 device_xname(dv), qxx, AcpiFormatException(rv));
745 }
746
747 goto loop;
748 }
749
750 static void
751 acpiec_gpe_state_machine(device_t dv)
752 {
753 struct acpiec_softc *sc = device_private(dv);
754 uint8_t reg;
755
756 reg = acpiec_read_status(sc);
757
758 if (reg & EC_STATUS_SCI)
759 sc->sc_got_sci = true;
760
761 switch (sc->sc_state) {
762 case EC_STATE_QUERY:
763 if ((reg & EC_STATUS_IBF) != 0)
764 break; /* Nothing of interest here. */
765 acpiec_write_command(sc, EC_COMMAND_QUERY);
766 sc->sc_state = EC_STATE_QUERY_VAL;
767 break;
768
769 case EC_STATE_QUERY_VAL:
770 if ((reg & EC_STATUS_OBF) == 0)
771 break; /* Nothing of interest here. */
772
773 sc->sc_cur_val = acpiec_read_data(sc);
774 sc->sc_state = EC_STATE_FREE;
775
776 cv_signal(&sc->sc_cv);
777 break;
778
779 case EC_STATE_READ:
780 if ((reg & EC_STATUS_IBF) != 0)
781 break; /* Nothing of interest here. */
782
783 acpiec_write_command(sc, EC_COMMAND_READ);
784 sc->sc_state = EC_STATE_READ_ADDR;
785 break;
786
787 case EC_STATE_READ_ADDR:
788 if ((reg & EC_STATUS_IBF) != 0)
789 break; /* Nothing of interest here. */
790
791 acpiec_write_data(sc, sc->sc_cur_addr);
792 sc->sc_state = EC_STATE_READ_VAL;
793 break;
794
795 case EC_STATE_READ_VAL:
796 if ((reg & EC_STATUS_OBF) == 0)
797 break; /* Nothing of interest here. */
798 sc->sc_cur_val = acpiec_read_data(sc);
799 sc->sc_state = EC_STATE_FREE;
800
801 cv_signal(&sc->sc_cv);
802 break;
803
804 case EC_STATE_WRITE:
805 if ((reg & EC_STATUS_IBF) != 0)
806 break; /* Nothing of interest here. */
807
808 acpiec_write_command(sc, EC_COMMAND_WRITE);
809 sc->sc_state = EC_STATE_WRITE_ADDR;
810 break;
811
812 case EC_STATE_WRITE_ADDR:
813 if ((reg & EC_STATUS_IBF) != 0)
814 break; /* Nothing of interest here. */
815 acpiec_write_data(sc, sc->sc_cur_addr);
816 sc->sc_state = EC_STATE_WRITE_VAL;
817 break;
818
819 case EC_STATE_WRITE_VAL:
820 if ((reg & EC_STATUS_IBF) != 0)
821 break; /* Nothing of interest here. */
822 sc->sc_state = EC_STATE_FREE;
823 cv_signal(&sc->sc_cv);
824
825 acpiec_write_data(sc, sc->sc_cur_val);
826 break;
827
828 case EC_STATE_FREE:
829 if (sc->sc_got_sci)
830 cv_signal(&sc->sc_cv_sci);
831 break;
832 default:
833 panic("invalid state");
834 }
835
836 if (sc->sc_state != EC_STATE_FREE)
837 callout_schedule(&sc->sc_pseudo_intr, 1);
838 }
839
840 static void
841 acpiec_callout(void *arg)
842 {
843 device_t dv = arg;
844 struct acpiec_softc *sc = device_private(dv);
845
846 AcpiClearGpe(sc->sc_gpeh, sc->sc_gpebit, ACPI_NOT_ISR);
847
848 mutex_enter(&sc->sc_mtx);
849 acpiec_gpe_state_machine(dv);
850 mutex_exit(&sc->sc_mtx);
851 }
852
853 static UINT32
854 acpiec_gpe_handler(void *arg)
855 {
856 device_t dv = arg;
857 struct acpiec_softc *sc = device_private(dv);
858
859 AcpiClearGpe(sc->sc_gpeh, sc->sc_gpebit, ACPI_ISR);
860
861 mutex_enter(&sc->sc_mtx);
862 acpiec_gpe_state_machine(dv);
863 mutex_exit(&sc->sc_mtx);
864
865 return 0;
866 }
867
868 ACPI_STATUS
869 acpiec_bus_read(device_t dv, u_int addr, ACPI_INTEGER *val, int width)
870 {
871 return acpiec_space_handler(ACPI_READ, addr, width * 8, val, dv, NULL);
872 }
873
874 ACPI_STATUS
875 acpiec_bus_write(device_t dv, u_int addr, ACPI_INTEGER val, int width)
876 {
877 return acpiec_space_handler(ACPI_WRITE, addr, width * 8, &val, dv, NULL);
878 }
879
880 ACPI_HANDLE
881 acpiec_get_handle(device_t dv)
882 {
883 struct acpiec_softc *sc = device_private(dv);
884
885 return sc->sc_ech;
886 }
887