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kern_pmf.c revision 1.40
      1 /* $NetBSD: kern_pmf.c,v 1.40 2018/04/08 11:46:13 mlelstv Exp $ */
      2 
      3 /*-
      4  * Copyright (c) 2007 Jared D. McNeill <jmcneill (at) invisible.ca>
      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  * 1. Redistributions of source code must retain the above copyright
     11  *    notice, this list of conditions and the following disclaimer.
     12  * 2. Redistributions in binary form must reproduce the above copyright
     13  *    notice, this list of conditions and the following disclaimer in the
     14  *    documentation and/or other materials provided with the distribution.
     15  *
     16  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     17  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     18  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     19  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     20  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     21  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     22  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     23  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     24  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     25  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     26  * POSSIBILITY OF SUCH DAMAGE.
     27  */
     28 
     29 #include <sys/cdefs.h>
     30 __KERNEL_RCSID(0, "$NetBSD: kern_pmf.c,v 1.40 2018/04/08 11:46:13 mlelstv Exp $");
     31 
     32 #include <sys/types.h>
     33 #include <sys/param.h>
     34 #include <sys/kmem.h>
     35 #include <sys/buf.h>
     36 #include <sys/callout.h>
     37 #include <sys/kernel.h>
     38 #include <sys/device.h>
     39 #include <sys/pmf.h>
     40 #include <sys/queue.h>
     41 #include <sys/sched.h>
     42 #include <sys/workqueue.h>
     43 #include <prop/proplib.h>
     44 #include <sys/condvar.h>
     45 #include <sys/mutex.h>
     46 #include <sys/proc.h>
     47 #include <sys/reboot.h>	/* for RB_NOSYNC */
     48 #include <sys/sched.h>
     49 #include <sys/sysctl.h>
     50 #include <sys/vfs_syscalls.h>
     51 
     52 /* XXX ugly special case, but for now the only client */
     53 #include "wsdisplay.h"
     54 #if NWSDISPLAY > 0
     55 #include <dev/wscons/wsdisplayvar.h>
     56 #endif
     57 
     58 #define PMF_DEBUG
     59 
     60 #ifdef PMF_DEBUG
     61 int  pmf_debug_event;
     62 int  pmf_debug_suspend;
     63 int  pmf_debug_suspensor;
     64 int  pmf_debug_idle;
     65 int  pmf_debug_transition;
     66 
     67 #define	PMF_SUSPENSOR_PRINTF(x)		if (pmf_debug_suspensor) printf x
     68 #define	PMF_SUSPEND_PRINTF(x)		if (pmf_debug_suspend) printf x
     69 #define	PMF_EVENT_PRINTF(x)		if (pmf_debug_event) printf x
     70 #define	PMF_IDLE_PRINTF(x)		if (pmf_debug_idle) printf x
     71 #define	PMF_TRANSITION_PRINTF(x)	if (pmf_debug_transition) printf x
     72 #define	PMF_TRANSITION_PRINTF2(y,x)	if (pmf_debug_transition>y) printf x
     73 #else
     74 #define	PMF_SUSPENSOR_PRINTF(x)		do { } while (0)
     75 #define	PMF_SUSPEND_PRINTF(x)		do { } while (0)
     76 #define	PMF_EVENT_PRINTF(x)		do { } while (0)
     77 #define	PMF_IDLE_PRINTF(x)		do { } while (0)
     78 #define	PMF_TRANSITION_PRINTF(x)	do { } while (0)
     79 #define	PMF_TRANSITION_PRINTF2(y,x)	do { } while (0)
     80 #endif
     81 
     82 static prop_dictionary_t pmf_platform = NULL;
     83 static struct workqueue *pmf_event_workqueue;
     84 static struct workqueue *pmf_suspend_workqueue;
     85 
     86 typedef struct pmf_event_handler {
     87 	TAILQ_ENTRY(pmf_event_handler) pmf_link;
     88 	pmf_generic_event_t pmf_event;
     89 	void (*pmf_handler)(device_t);
     90 	device_t pmf_device;
     91 	bool pmf_global;
     92 } pmf_event_handler_t;
     93 
     94 static TAILQ_HEAD(, pmf_event_handler) pmf_all_events =
     95     TAILQ_HEAD_INITIALIZER(pmf_all_events);
     96 
     97 typedef struct pmf_event_workitem {
     98 	struct work				pew_work;
     99 	pmf_generic_event_t			pew_event;
    100 	device_t				pew_device;
    101 } pmf_event_workitem_t;
    102 
    103 typedef struct pmf_suspend_workitem {
    104 	struct work	psw_work;
    105 	device_t	psw_dev;
    106 	pmf_qual_t	psw_qual;
    107 } pmf_suspend_workitem_t;
    108 
    109 static struct pool pew_pl;
    110 
    111 static pmf_event_workitem_t *pmf_event_workitem_get(void);
    112 static void pmf_event_workitem_put(pmf_event_workitem_t *);
    113 
    114 bool pmf_device_resume_locked(device_t, const pmf_qual_t *);
    115 bool pmf_device_suspend_locked(device_t, const pmf_qual_t *);
    116 static bool device_pmf_any_suspensor(device_t, devact_level_t);
    117 
    118 static bool
    119 complete_suspension(device_t dev, const device_suspensor_t **susp,
    120     const pmf_qual_t *pqp)
    121 {
    122 	int i;
    123 	pmf_qual_t pq;
    124 	const device_suspensor_t *ds;
    125 
    126 	ds = pmf_qual_suspension(pqp);
    127 	KASSERT(ds->ds_delegator != NULL);
    128 
    129 	pq = *pqp;
    130 	pq.pq_suspensor = ds->ds_delegator;
    131 
    132 	for (i = 0; i < DEVICE_SUSPENSORS_MAX; i++) {
    133 		if (susp[i] != ds)
    134 			continue;
    135 		if (!pmf_device_suspend(dev, &pq))
    136 			return false;
    137 	}
    138 	return true;
    139 }
    140 
    141 static void
    142 pmf_suspend_worker(struct work *wk, void *dummy)
    143 {
    144 	pmf_suspend_workitem_t *psw;
    145 	deviter_t di;
    146 	device_t dev;
    147 
    148 	psw = (void *)wk;
    149 	KASSERT(wk == &psw->psw_work);
    150 	KASSERT(psw != NULL);
    151 
    152 	for (dev = deviter_first(&di, 0); dev != NULL;
    153 	     dev = deviter_next(&di)) {
    154 		if (dev == psw->psw_dev && device_pmf_lock(dev))
    155 			break;
    156 	}
    157 	deviter_release(&di);
    158 
    159 	if (dev == NULL)
    160 		return;
    161 
    162 	switch (pmf_qual_depth(&psw->psw_qual)) {
    163 	case DEVACT_LEVEL_FULL:
    164 		if (!complete_suspension(dev, dev->dv_class_suspensors,
    165 		    &psw->psw_qual))
    166 			break;
    167 		/*FALLTHROUGH*/
    168 	case DEVACT_LEVEL_DRIVER:
    169 		if (!complete_suspension(dev, dev->dv_driver_suspensors,
    170 		    &psw->psw_qual))
    171 			break;
    172 		/*FALLTHROUGH*/
    173 	case DEVACT_LEVEL_BUS:
    174 		if (!complete_suspension(dev, dev->dv_bus_suspensors,
    175 		    &psw->psw_qual))
    176 			break;
    177 	}
    178 	device_pmf_unlock(dev);
    179 	kmem_free(psw, sizeof(*psw));
    180 }
    181 
    182 static void
    183 pmf_event_worker(struct work *wk, void *dummy)
    184 {
    185 	pmf_event_workitem_t *pew;
    186 	pmf_event_handler_t *event;
    187 
    188 	pew = (void *)wk;
    189 	KASSERT(wk == &pew->pew_work);
    190 	KASSERT(pew != NULL);
    191 
    192 	TAILQ_FOREACH(event, &pmf_all_events, pmf_link) {
    193 		if (event->pmf_event != pew->pew_event)
    194 			continue;
    195 		if (event->pmf_device == pew->pew_device || event->pmf_global)
    196 			(*event->pmf_handler)(event->pmf_device);
    197 	}
    198 
    199 	pmf_event_workitem_put(pew);
    200 }
    201 
    202 static bool
    203 pmf_check_system_drivers(void)
    204 {
    205 	device_t curdev;
    206 	bool unsupported_devs;
    207 	deviter_t di;
    208 
    209 	unsupported_devs = false;
    210 	for (curdev = deviter_first(&di, 0); curdev != NULL;
    211 	     curdev = deviter_next(&di)) {
    212 		if (device_pmf_is_registered(curdev))
    213 			continue;
    214 		if (!unsupported_devs)
    215 			printf("Devices without power management support:");
    216 		printf(" %s", device_xname(curdev));
    217 		unsupported_devs = true;
    218 	}
    219 	deviter_release(&di);
    220 	if (unsupported_devs) {
    221 		printf("\n");
    222 		return false;
    223 	}
    224 	return true;
    225 }
    226 
    227 bool
    228 pmf_system_bus_resume(const pmf_qual_t *qual)
    229 {
    230 	bool rv;
    231 	device_t curdev;
    232 	deviter_t di;
    233 
    234 	aprint_debug("Powering devices:");
    235 	/* D0 handlers are run in order */
    236 	rv = true;
    237 	for (curdev = deviter_first(&di, DEVITER_F_ROOT_FIRST); curdev != NULL;
    238 	     curdev = deviter_next(&di)) {
    239 		if (!device_pmf_is_registered(curdev))
    240 			continue;
    241 		if (device_is_active(curdev) ||
    242 		    !device_is_enabled(curdev))
    243 			continue;
    244 
    245 		aprint_debug(" %s", device_xname(curdev));
    246 
    247 		if (!device_pmf_bus_resume(curdev, qual)) {
    248 			rv = false;
    249 			aprint_debug("(failed)");
    250 		}
    251 	}
    252 	deviter_release(&di);
    253 	aprint_debug("\n");
    254 
    255 	return rv;
    256 }
    257 
    258 bool
    259 pmf_system_resume(const pmf_qual_t *qual)
    260 {
    261 	bool rv;
    262 	device_t curdev, parent;
    263 	deviter_t di;
    264 
    265 	if (!pmf_check_system_drivers())
    266 		return false;
    267 
    268 	aprint_debug("Resuming devices:");
    269 	/* D0 handlers are run in order */
    270 	rv = true;
    271 	for (curdev = deviter_first(&di, DEVITER_F_ROOT_FIRST); curdev != NULL;
    272 	     curdev = deviter_next(&di)) {
    273 		if (device_is_active(curdev) ||
    274 		    !device_is_enabled(curdev))
    275 			continue;
    276 		parent = device_parent(curdev);
    277 		if (parent != NULL &&
    278 		    !device_is_active(parent))
    279 			continue;
    280 
    281 		aprint_debug(" %s", device_xname(curdev));
    282 
    283 		if (!pmf_device_resume(curdev, qual)) {
    284 			rv = false;
    285 			aprint_debug("(failed)");
    286 		}
    287 	}
    288 	deviter_release(&di);
    289 	aprint_debug(".\n");
    290 
    291 	KERNEL_UNLOCK_ONE(0);
    292 #if NWSDISPLAY > 0
    293 	if (rv)
    294 		wsdisplay_handlex(1);
    295 #endif
    296 	return rv;
    297 }
    298 
    299 bool
    300 pmf_system_suspend(const pmf_qual_t *qual)
    301 {
    302 	device_t curdev;
    303 	deviter_t di;
    304 
    305 	if (!pmf_check_system_drivers())
    306 		return false;
    307 #if NWSDISPLAY > 0
    308 	if (wsdisplay_handlex(0))
    309 		return false;
    310 #endif
    311 	KERNEL_LOCK(1, NULL);
    312 
    313 	/*
    314 	 * Flush buffers only if the shutdown didn't do so
    315 	 * already and if there was no panic.
    316 	 */
    317 	if (doing_shutdown == 0 && panicstr == NULL) {
    318 		printf("Flushing disk caches: ");
    319 		do_sys_sync(&lwp0);
    320 		if (buf_syncwait() != 0)
    321 			printf("giving up\n");
    322 		else
    323 			printf("done\n");
    324 	}
    325 
    326 	aprint_debug("Suspending devices:");
    327 
    328 	for (curdev = deviter_first(&di, DEVITER_F_LEAVES_FIRST);
    329 	     curdev != NULL;
    330 	     curdev = deviter_next(&di)) {
    331 		if (!device_is_active(curdev))
    332 			continue;
    333 
    334 		aprint_debug(" %s", device_xname(curdev));
    335 
    336 		/* XXX joerg check return value and abort suspend */
    337 		if (!pmf_device_suspend(curdev, qual))
    338 			aprint_debug("(failed)");
    339 	}
    340 	deviter_release(&di);
    341 
    342 	aprint_debug(".\n");
    343 
    344 	return true;
    345 }
    346 
    347 static bool
    348 shutdown_all(int how)
    349 {
    350 	static struct shutdown_state s;
    351 	device_t curdev;
    352 	bool progress = false;
    353 
    354 	for (curdev = shutdown_first(&s); curdev != NULL;
    355 	     curdev = shutdown_next(&s)) {
    356 		aprint_debug(" shutting down %s, ", device_xname(curdev));
    357 		if (!device_pmf_is_registered(curdev))
    358 			aprint_debug("skipped.");
    359 #if 0 /* needed? */
    360 		else if (!device_pmf_class_shutdown(curdev, how))
    361 			aprint_debug("failed.");
    362 #endif
    363 		else if (!device_pmf_driver_shutdown(curdev, how))
    364 			aprint_debug("failed.");
    365 		else if (!device_pmf_bus_shutdown(curdev, how))
    366 			aprint_debug("failed.");
    367 		else {
    368 			progress = true;
    369 			aprint_debug("success.");
    370 		}
    371 	}
    372 	return progress;
    373 }
    374 
    375 void
    376 pmf_system_shutdown(int how)
    377 {
    378 
    379 	if (panicstr != NULL)
    380 		return;
    381 
    382 	aprint_debug("Shutting down devices:");
    383 	shutdown_all(how);
    384 }
    385 
    386 bool
    387 pmf_set_platform(const char *key, const char *value)
    388 {
    389 	if (pmf_platform == NULL)
    390 		pmf_platform = prop_dictionary_create();
    391 	if (pmf_platform == NULL)
    392 		return false;
    393 
    394 	return prop_dictionary_set_cstring(pmf_platform, key, value);
    395 }
    396 
    397 const char *
    398 pmf_get_platform(const char *key)
    399 {
    400 	const char *value;
    401 
    402 	if (pmf_platform == NULL)
    403 		return NULL;
    404 
    405 	if (!prop_dictionary_get_cstring_nocopy(pmf_platform, key, &value))
    406 		return NULL;
    407 
    408 	return value;
    409 }
    410 
    411 bool
    412 pmf_device_register1(device_t dev,
    413     bool (*suspend)(device_t, const pmf_qual_t *),
    414     bool (*resume)(device_t, const pmf_qual_t *),
    415     bool (*shutdown)(device_t, int))
    416 {
    417 	if (!device_pmf_driver_register(dev, suspend, resume, shutdown))
    418 		return false;
    419 
    420 	if (!device_pmf_driver_child_register(dev)) {
    421 		device_pmf_driver_deregister(dev);
    422 		return false;
    423 	}
    424 
    425 	return true;
    426 }
    427 
    428 void
    429 pmf_device_deregister(device_t dev)
    430 {
    431 	device_pmf_class_deregister(dev);
    432 	device_pmf_bus_deregister(dev);
    433 	device_pmf_driver_deregister(dev);
    434 }
    435 
    436 static const device_suspensor_t _device_suspensor_drvctl = {
    437 	  .ds_delegator = NULL
    438 	, .ds_name = "drvctl"
    439 };
    440 
    441 static const device_suspensor_t _device_suspensor_self = {
    442 	  .ds_delegator = NULL
    443 	, .ds_name = "self"
    444 };
    445 
    446 #if 0
    447 static const device_suspensor_t _device_suspensor_self_delegate = {
    448 	  .ds_delegator = &_device_suspensor_self
    449 	, .ds_name = "self delegate"
    450 };
    451 #endif
    452 
    453 static const device_suspensor_t _device_suspensor_system = {
    454 	  .ds_delegator = NULL
    455 	, .ds_name = "system"
    456 };
    457 
    458 const device_suspensor_t
    459     * const device_suspensor_self = &_device_suspensor_self,
    460 #if 0
    461     * const device_suspensor_self_delegate = &_device_suspensor_self_delegate,
    462 #endif
    463     * const device_suspensor_system = &_device_suspensor_system,
    464     * const device_suspensor_drvctl = &_device_suspensor_drvctl;
    465 
    466 static const pmf_qual_t _pmf_qual_system = {
    467 	  .pq_actlvl = DEVACT_LEVEL_FULL
    468 	, .pq_suspensor = &_device_suspensor_system
    469 };
    470 
    471 static const pmf_qual_t _pmf_qual_drvctl = {
    472 	  .pq_actlvl = DEVACT_LEVEL_FULL
    473 	, .pq_suspensor = &_device_suspensor_drvctl
    474 };
    475 
    476 static const pmf_qual_t _pmf_qual_self = {
    477 	  .pq_actlvl = DEVACT_LEVEL_DRIVER
    478 	, .pq_suspensor = &_device_suspensor_self
    479 };
    480 
    481 const pmf_qual_t
    482     * const PMF_Q_DRVCTL = &_pmf_qual_drvctl,
    483     * const PMF_Q_NONE = &_pmf_qual_system,
    484     * const PMF_Q_SELF = &_pmf_qual_self;
    485 
    486 static bool
    487 device_suspensor_delegates_to(const device_suspensor_t *ds,
    488     const device_suspensor_t *delegate)
    489 {
    490 	const device_suspensor_t *iter;
    491 
    492 	for (iter = delegate->ds_delegator; iter != NULL;
    493 	     iter = iter->ds_delegator) {
    494 		if (ds == iter)
    495 			return true;
    496 	}
    497 	return false;
    498 }
    499 
    500 static bool
    501 add_suspensor(device_t dev, const char *kind, const device_suspensor_t **susp,
    502     const device_suspensor_t *ds)
    503 {
    504 	int i;
    505 
    506 	for (i = 0; i < DEVICE_SUSPENSORS_MAX; i++) {
    507 		if (susp[i] == NULL)
    508 			continue;
    509 		if (ds == susp[i]) {
    510 			PMF_SUSPENSOR_PRINTF((
    511 			    "%s: %s-suspended by %s (delegator %s) already\n",
    512 			    device_xname(dev), kind,
    513 			    susp[i]->ds_name,
    514 			    (susp[i]->ds_delegator != NULL) ?
    515 			    susp[i]->ds_delegator->ds_name : "<none>"));
    516 			return true;
    517 		}
    518 		if (device_suspensor_delegates_to(ds, susp[i])) {
    519 			PMF_SUSPENSOR_PRINTF((
    520 			    "%s: %s assumes %s-suspension by %s "
    521 			    "(delegator %s)\n",
    522 			    device_xname(dev), ds->ds_name, kind,
    523 			    susp[i]->ds_name,
    524 			    (susp[i]->ds_delegator != NULL) ?
    525 			    susp[i]->ds_delegator->ds_name : "<none>"));
    526 			susp[i] = ds;
    527 			return true;
    528 		}
    529 	}
    530 	for (i = 0; i < DEVICE_SUSPENSORS_MAX; i++) {
    531 		if (susp[i] == NULL) {
    532 			susp[i] = ds;
    533 			PMF_SUSPENSOR_PRINTF((
    534 			    "%s: newly %s-suspended by %s (delegator %s)\n",
    535 			    device_xname(dev), kind,
    536 			    susp[i]->ds_name,
    537 			    (susp[i]->ds_delegator != NULL) ?
    538 			    susp[i]->ds_delegator->ds_name : "<none>"));
    539 			return true;
    540 		}
    541 	}
    542 	return false;
    543 }
    544 
    545 static bool
    546 device_pmf_add_suspensor(device_t dev, const pmf_qual_t *pq)
    547 {
    548 	const device_suspensor_t *ds;
    549 
    550 	KASSERT(pq != NULL);
    551 
    552 	ds = pmf_qual_suspension(pq);
    553 
    554 	KASSERT(ds != NULL);
    555 
    556 	if (!add_suspensor(dev, "class", dev->dv_class_suspensors, ds))
    557 		return false;
    558 	if (!add_suspensor(dev, "driver", dev->dv_driver_suspensors, ds))
    559 		return false;
    560 	if (!add_suspensor(dev, "bus", dev->dv_bus_suspensors, ds))
    561 		return false;
    562 	return true;
    563 }
    564 
    565 #if 0
    566 static bool
    567 device_pmf_has_suspension(device_t dev, const device_suspensor_t *ds)
    568 {
    569 	int i;
    570 
    571 	for (i = 0; i < DEVICE_SUSPENSORS_MAX; i++) {
    572 		if (dev->dv_suspensions[i] == ds)
    573 			return true;
    574 		if (device_suspensor_delegates_to(dev->dv_suspensions[i], ds))
    575 			return true;
    576 	}
    577 	return false;
    578 }
    579 #endif
    580 
    581 static bool
    582 any_suspensor(device_t dev, const char *kind, const device_suspensor_t **susp)
    583 {
    584 	int i;
    585 	bool suspended = false;
    586 
    587 	for (i = 0; i < DEVICE_SUSPENSORS_MAX; i++) {
    588 		if (susp[i] != NULL) {
    589 			PMF_SUSPENSOR_PRINTF(("%s: %s is suspended by %s "
    590 			    "(delegator %s)\n",
    591 			    device_xname(dev), kind,
    592 			    susp[i]->ds_name,
    593 			    (susp[i]->ds_delegator != NULL) ?
    594 			    susp[i]->ds_delegator->ds_name : "<none>"));
    595 			suspended = true;
    596 		}
    597 	}
    598 	return suspended;
    599 }
    600 
    601 static bool
    602 device_pmf_any_suspensor(device_t dev, devact_level_t depth)
    603 {
    604 	switch (depth) {
    605 	case DEVACT_LEVEL_FULL:
    606 		if (any_suspensor(dev, "class", dev->dv_class_suspensors))
    607 			return true;
    608 		/*FALLTHROUGH*/
    609 	case DEVACT_LEVEL_DRIVER:
    610 		if (any_suspensor(dev, "driver", dev->dv_driver_suspensors))
    611 			return true;
    612 		/*FALLTHROUGH*/
    613 	case DEVACT_LEVEL_BUS:
    614 		if (any_suspensor(dev, "bus", dev->dv_bus_suspensors))
    615 			return true;
    616 	}
    617 	return false;
    618 }
    619 
    620 static bool
    621 remove_suspensor(device_t dev, const char *kind,
    622     const device_suspensor_t **susp, const device_suspensor_t *ds)
    623 {
    624 	int i;
    625 
    626 	for (i = 0; i < DEVICE_SUSPENSORS_MAX; i++) {
    627 		if (susp[i] == NULL)
    628 			continue;
    629 		if (ds == susp[i] ||
    630 		    device_suspensor_delegates_to(ds, susp[i])) {
    631 			PMF_SUSPENSOR_PRINTF(("%s: %s suspension %s "
    632 			    "(delegator %s) removed by %s\n",
    633 			    device_xname(dev), kind,
    634 			    susp[i]->ds_name,
    635 			    (susp[i]->ds_delegator != NULL)
    636 			        ?  susp[i]->ds_delegator->ds_name
    637 			        : "<none>",
    638 			    ds->ds_name));
    639 			susp[i] = NULL;
    640 			return true;
    641 		}
    642 	}
    643 	return false;
    644 }
    645 
    646 static bool
    647 device_pmf_remove_suspensor(device_t dev, const pmf_qual_t *pq)
    648 {
    649 	const device_suspensor_t *ds;
    650 
    651 	KASSERT(pq != NULL);
    652 
    653 	ds = pmf_qual_suspension(pq);
    654 
    655 	KASSERT(ds != NULL);
    656 
    657 	if (!remove_suspensor(dev, "class", dev->dv_class_suspensors, ds))
    658 		return false;
    659 	if (!remove_suspensor(dev, "driver", dev->dv_driver_suspensors, ds))
    660 		return false;
    661 	if (!remove_suspensor(dev, "bus", dev->dv_bus_suspensors, ds))
    662 		return false;
    663 
    664 	return true;
    665 }
    666 
    667 void
    668 pmf_self_suspensor_init(device_t dev, device_suspensor_t *ds,
    669     pmf_qual_t *pq)
    670 {
    671 	ds->ds_delegator = device_suspensor_self;
    672 	snprintf(ds->ds_name, sizeof(ds->ds_name), "%s-self",
    673 	    device_xname(dev));
    674 	pq->pq_actlvl = DEVACT_LEVEL_DRIVER;
    675 	pq->pq_suspensor = ds;
    676 }
    677 
    678 bool
    679 pmf_device_suspend(device_t dev, const pmf_qual_t *qual)
    680 {
    681 	bool rc;
    682 
    683 	PMF_TRANSITION_PRINTF(("%s: suspend enter\n", device_xname(dev)));
    684 	if (!device_pmf_is_registered(dev))
    685 		return false;
    686 
    687 	if (!device_pmf_lock(dev))
    688 		return false;
    689 
    690 	rc = pmf_device_suspend_locked(dev, qual);
    691 
    692 	device_pmf_unlock(dev);
    693 
    694 	PMF_TRANSITION_PRINTF(("%s: suspend exit\n", device_xname(dev)));
    695 	return rc;
    696 }
    697 
    698 bool
    699 pmf_device_suspend_locked(device_t dev, const pmf_qual_t *qual)
    700 {
    701 	if (!device_pmf_add_suspensor(dev, qual))
    702 		return false;
    703 
    704 	PMF_TRANSITION_PRINTF2(1, ("%s: class suspend\n", device_xname(dev)));
    705 	if (!device_pmf_class_suspend(dev, qual))
    706 		return false;
    707 
    708 	PMF_TRANSITION_PRINTF2(1, ("%s: driver suspend\n", device_xname(dev)));
    709 	if (!device_pmf_driver_suspend(dev, qual))
    710 		return false;
    711 
    712 	PMF_TRANSITION_PRINTF2(1, ("%s: bus suspend\n", device_xname(dev)));
    713 	if (!device_pmf_bus_suspend(dev, qual))
    714 		return false;
    715 
    716 	return true;
    717 }
    718 
    719 bool
    720 pmf_device_resume(device_t dev, const pmf_qual_t *qual)
    721 {
    722 	bool rc;
    723 
    724 	PMF_TRANSITION_PRINTF(("%s: resume enter\n", device_xname(dev)));
    725 	if (!device_pmf_is_registered(dev))
    726 		return false;
    727 
    728 	if (!device_pmf_lock(dev))
    729 		return false;
    730 
    731 	rc = pmf_device_resume_locked(dev, qual);
    732 
    733 	device_pmf_unlock(dev);
    734 
    735 	PMF_TRANSITION_PRINTF(("%s: resume exit\n", device_xname(dev)));
    736 	return rc;
    737 }
    738 
    739 bool
    740 pmf_device_resume_locked(device_t dev, const pmf_qual_t *qual)
    741 {
    742 	device_pmf_remove_suspensor(dev, qual);
    743 
    744 	if (device_pmf_any_suspensor(dev, DEVACT_LEVEL_FULL))
    745 		return true;
    746 
    747 	PMF_TRANSITION_PRINTF2(1, ("%s: bus resume\n", device_xname(dev)));
    748 	if (!device_pmf_bus_resume(dev, qual))
    749 		return false;
    750 
    751 	PMF_TRANSITION_PRINTF2(1, ("%s: driver resume\n", device_xname(dev)));
    752 	if (!device_pmf_driver_resume(dev, qual))
    753 		return false;
    754 
    755 	PMF_TRANSITION_PRINTF2(1, ("%s: class resume\n", device_xname(dev)));
    756 	if (!device_pmf_class_resume(dev, qual))
    757 		return false;
    758 
    759 	return true;
    760 }
    761 
    762 bool
    763 pmf_device_recursive_suspend(device_t dv, const pmf_qual_t *qual)
    764 {
    765 	bool rv = true;
    766 	device_t curdev;
    767 	deviter_t di;
    768 	pmf_qual_t pq;
    769 
    770 	pmf_qual_recursive_copy(&pq, qual);
    771 
    772 	for (curdev = deviter_first(&di, 0); curdev != NULL;
    773 	     curdev = deviter_next(&di)) {
    774 		if (device_parent(curdev) != dv)
    775 			continue;
    776 		if (!pmf_device_recursive_suspend(curdev, &pq)) {
    777 			rv = false;
    778 			break;
    779 		}
    780 	}
    781 	deviter_release(&di);
    782 
    783 	return rv && pmf_device_suspend(dv, qual);
    784 }
    785 
    786 void
    787 pmf_qual_recursive_copy(pmf_qual_t *dst, const pmf_qual_t *src)
    788 {
    789 	*dst = *src;
    790 	dst->pq_actlvl = DEVACT_LEVEL_FULL;
    791 }
    792 
    793 bool
    794 pmf_device_recursive_resume(device_t dv, const pmf_qual_t *qual)
    795 {
    796 	device_t parent;
    797 	pmf_qual_t pq;
    798 
    799 	if (device_is_active(dv))
    800 		return true;
    801 
    802 	pmf_qual_recursive_copy(&pq, qual);
    803 
    804 	parent = device_parent(dv);
    805 	if (parent != NULL) {
    806 		if (!pmf_device_recursive_resume(parent, &pq))
    807 			return false;
    808 	}
    809 
    810 	return pmf_device_resume(dv, qual);
    811 }
    812 
    813 bool
    814 pmf_device_descendants_release(device_t dv, const pmf_qual_t *qual)
    815 {
    816 	bool rv = true;
    817 	device_t curdev;
    818 	deviter_t di;
    819 
    820 	for (curdev = deviter_first(&di, 0); curdev != NULL;
    821 	     curdev = deviter_next(&di)) {
    822 		if (device_parent(curdev) != dv)
    823 			continue;
    824 		device_pmf_remove_suspensor(curdev, qual);
    825 		if (!pmf_device_descendants_release(curdev, qual)) {
    826 			rv = false;
    827 			break;
    828 		}
    829 	}
    830 	deviter_release(&di);
    831 	return rv;
    832 }
    833 
    834 bool
    835 pmf_device_descendants_resume(device_t dv, const pmf_qual_t *qual)
    836 {
    837 	bool rv = true;
    838 	device_t curdev;
    839 	deviter_t di;
    840 
    841 	KASSERT(pmf_qual_descend_ok(qual));
    842 
    843 	for (curdev = deviter_first(&di, 0); curdev != NULL;
    844 	     curdev = deviter_next(&di)) {
    845 		if (device_parent(curdev) != dv)
    846 			continue;
    847 		if (!pmf_device_resume(curdev, qual) ||
    848 		    !pmf_device_descendants_resume(curdev, qual)) {
    849 			rv = false;
    850 			break;
    851 		}
    852 	}
    853 	deviter_release(&di);
    854 	return rv;
    855 }
    856 
    857 bool
    858 pmf_device_subtree_release(device_t dv, const pmf_qual_t *qual)
    859 {
    860 	pmf_qual_t pq;
    861 
    862 	device_pmf_remove_suspensor(dv, qual);
    863 
    864 	pmf_qual_recursive_copy(&pq, qual);
    865 
    866 	return pmf_device_descendants_release(dv, &pq);
    867 }
    868 
    869 bool
    870 pmf_device_subtree_resume(device_t dv, const pmf_qual_t *qual)
    871 {
    872 	pmf_qual_t pq;
    873 
    874 	if (!pmf_device_subtree_release(dv, qual))
    875 		return false;
    876 
    877 	if (!pmf_device_recursive_resume(dv, qual))
    878 		return false;
    879 
    880 	pmf_qual_recursive_copy(&pq, qual);
    881 
    882 	return pmf_device_descendants_resume(dv, &pq);
    883 }
    884 
    885 #include <net/if.h>
    886 
    887 static bool
    888 pmf_class_network_suspend(device_t dev, const pmf_qual_t *qual)
    889 {
    890 	struct ifnet *ifp = device_pmf_class_private(dev);
    891 	int s;
    892 
    893 	s = splnet();
    894 	(*ifp->if_stop)(ifp, 0);
    895 	splx(s);
    896 
    897 	return true;
    898 }
    899 
    900 static bool
    901 pmf_class_network_resume(device_t dev, const pmf_qual_t *qual)
    902 {
    903 	struct ifnet *ifp = device_pmf_class_private(dev);
    904 	int s;
    905 
    906 	s = splnet();
    907 	if (ifp->if_flags & IFF_UP) {
    908 		ifp->if_flags &= ~IFF_RUNNING;
    909 		if ((*ifp->if_init)(ifp) != 0)
    910 			aprint_normal_ifnet(ifp, "resume failed\n");
    911 		if_start_lock(ifp);
    912 	}
    913 	splx(s);
    914 
    915 	return true;
    916 }
    917 
    918 void
    919 pmf_class_network_register(device_t dev, struct ifnet *ifp)
    920 {
    921 	device_pmf_class_register(dev, ifp, pmf_class_network_suspend,
    922 	    pmf_class_network_resume, NULL);
    923 }
    924 
    925 bool
    926 pmf_event_inject(device_t dv, pmf_generic_event_t ev)
    927 {
    928 	pmf_event_workitem_t *pew;
    929 
    930 	pew = pmf_event_workitem_get();
    931 	if (pew == NULL) {
    932 		PMF_EVENT_PRINTF(("%s: PMF event %d dropped (no memory)\n",
    933 		    dv ? device_xname(dv) : "<anonymous>", ev));
    934 		return false;
    935 	}
    936 
    937 	pew->pew_event = ev;
    938 	pew->pew_device = dv;
    939 
    940 	workqueue_enqueue(pmf_event_workqueue, &pew->pew_work, NULL);
    941 	PMF_EVENT_PRINTF(("%s: PMF event %d injected\n",
    942 	    dv ? device_xname(dv) : "<anonymous>", ev));
    943 
    944 	return true;
    945 }
    946 
    947 bool
    948 pmf_event_register(device_t dv, pmf_generic_event_t ev,
    949     void (*handler)(device_t), bool global)
    950 {
    951 	pmf_event_handler_t *event;
    952 
    953 	event = kmem_alloc(sizeof(*event), KM_SLEEP);
    954 	event->pmf_event = ev;
    955 	event->pmf_handler = handler;
    956 	event->pmf_device = dv;
    957 	event->pmf_global = global;
    958 	TAILQ_INSERT_TAIL(&pmf_all_events, event, pmf_link);
    959 
    960 	return true;
    961 }
    962 
    963 void
    964 pmf_event_deregister(device_t dv, pmf_generic_event_t ev,
    965     void (*handler)(device_t), bool global)
    966 {
    967 	pmf_event_handler_t *event;
    968 
    969 	TAILQ_FOREACH(event, &pmf_all_events, pmf_link) {
    970 		if (event->pmf_event != ev)
    971 			continue;
    972 		if (event->pmf_device != dv)
    973 			continue;
    974 		if (event->pmf_global != global)
    975 			continue;
    976 		if (event->pmf_handler != handler)
    977 			continue;
    978 		TAILQ_REMOVE(&pmf_all_events, event, pmf_link);
    979 		kmem_free(event, sizeof(*event));
    980 		return;
    981 	}
    982 }
    983 
    984 struct display_class_softc {
    985 	TAILQ_ENTRY(display_class_softc) dc_link;
    986 	device_t dc_dev;
    987 };
    988 
    989 static TAILQ_HEAD(, display_class_softc) all_displays;
    990 static callout_t global_idle_counter;
    991 static int idle_timeout = 30;
    992 
    993 static void
    994 input_idle(void *dummy)
    995 {
    996 	PMF_IDLE_PRINTF(("Input idle handler called\n"));
    997 	pmf_event_inject(NULL, PMFE_DISPLAY_OFF);
    998 }
    999 
   1000 static void
   1001 input_activity_handler(device_t dv, devactive_t type)
   1002 {
   1003 	if (!TAILQ_EMPTY(&all_displays))
   1004 		callout_schedule(&global_idle_counter, idle_timeout * hz);
   1005 }
   1006 
   1007 static void
   1008 pmf_class_input_deregister(device_t dv)
   1009 {
   1010 	device_active_deregister(dv, input_activity_handler);
   1011 }
   1012 
   1013 bool
   1014 pmf_class_input_register(device_t dv)
   1015 {
   1016 	if (!device_active_register(dv, input_activity_handler))
   1017 		return false;
   1018 
   1019 	device_pmf_class_register(dv, NULL, NULL, NULL,
   1020 	    pmf_class_input_deregister);
   1021 
   1022 	return true;
   1023 }
   1024 
   1025 static void
   1026 pmf_class_display_deregister(device_t dv)
   1027 {
   1028 	struct display_class_softc *sc = device_pmf_class_private(dv);
   1029 	int s;
   1030 
   1031 	s = splsoftclock();
   1032 	TAILQ_REMOVE(&all_displays, sc, dc_link);
   1033 	if (TAILQ_EMPTY(&all_displays))
   1034 		callout_stop(&global_idle_counter);
   1035 	splx(s);
   1036 
   1037 	kmem_free(sc, sizeof(*sc));
   1038 }
   1039 
   1040 bool
   1041 pmf_class_display_register(device_t dv)
   1042 {
   1043 	struct display_class_softc *sc;
   1044 	int s;
   1045 
   1046 	sc = kmem_alloc(sizeof(*sc), KM_SLEEP);
   1047 
   1048 	s = splsoftclock();
   1049 	if (TAILQ_EMPTY(&all_displays))
   1050 		callout_schedule(&global_idle_counter, idle_timeout * hz);
   1051 
   1052 	TAILQ_INSERT_HEAD(&all_displays, sc, dc_link);
   1053 	splx(s);
   1054 
   1055 	device_pmf_class_register(dv, sc, NULL, NULL,
   1056 	    pmf_class_display_deregister);
   1057 
   1058 	return true;
   1059 }
   1060 
   1061 static void
   1062 pmf_event_workitem_put(pmf_event_workitem_t *pew)
   1063 {
   1064 
   1065 	KASSERT(pew != NULL);
   1066 	pool_put(&pew_pl, pew);
   1067 }
   1068 
   1069 static pmf_event_workitem_t *
   1070 pmf_event_workitem_get(void)
   1071 {
   1072 
   1073 	return pool_get(&pew_pl, PR_NOWAIT);
   1074 }
   1075 
   1076 SYSCTL_SETUP(sysctl_pmf_setup, "PMF subtree setup")
   1077 {
   1078 	const struct sysctlnode *node = NULL;
   1079 
   1080 	sysctl_createv(clog, 0, NULL, &node,
   1081 		CTLFLAG_PERMANENT,
   1082 		CTLTYPE_NODE, "pmf",
   1083 		SYSCTL_DESCR("pmf controls"),
   1084 		NULL, 0, NULL, 0,
   1085 		CTL_KERN, CTL_CREATE, CTL_EOL);
   1086 
   1087 #ifdef PMF_DEBUG
   1088 	sysctl_createv(clog, 0, &node, &node,
   1089 		CTLFLAG_PERMANENT,
   1090 		CTLTYPE_NODE, "debug",
   1091 		SYSCTL_DESCR("debug levels"),
   1092 		NULL, 0, NULL, 0,
   1093 		CTL_CREATE, CTL_EOL);
   1094 
   1095 	sysctl_createv(clog, 0, &node, NULL,
   1096 		CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
   1097 		CTLTYPE_INT, "event",
   1098 		SYSCTL_DESCR("event"),
   1099 		NULL, 0,  &pmf_debug_event, sizeof(pmf_debug_event),
   1100 		CTL_CREATE, CTL_EOL);
   1101 	sysctl_createv(clog, 0, &node, NULL,
   1102 		CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
   1103 		CTLTYPE_INT, "suspend",
   1104 		SYSCTL_DESCR("suspend"),
   1105 		NULL, 0,  &pmf_debug_suspend, sizeof(pmf_debug_suspend),
   1106 		CTL_CREATE, CTL_EOL);
   1107 	sysctl_createv(clog, 0, &node, NULL,
   1108 		CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
   1109 		CTLTYPE_INT, "suspensor",
   1110 		SYSCTL_DESCR("suspensor"),
   1111 		NULL, 0,  &pmf_debug_suspensor, sizeof(pmf_debug_suspensor),
   1112 		CTL_CREATE, CTL_EOL);
   1113 	sysctl_createv(clog, 0, &node, NULL,
   1114 		CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
   1115 		CTLTYPE_INT, "idle",
   1116 		SYSCTL_DESCR("idle"),
   1117 		NULL, 0,  &pmf_debug_idle, sizeof(pmf_debug_idle),
   1118 		CTL_CREATE, CTL_EOL);
   1119 	sysctl_createv(clog, 0, &node, NULL,
   1120 		CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
   1121 		CTLTYPE_INT, "transition",
   1122 		SYSCTL_DESCR("event"),
   1123 		NULL, 0,  &pmf_debug_transition, sizeof(pmf_debug_transition),
   1124 		CTL_CREATE, CTL_EOL);
   1125 #endif
   1126 }
   1127 
   1128 
   1129 void
   1130 pmf_init(void)
   1131 {
   1132 	int err;
   1133 
   1134 	pool_init(&pew_pl, sizeof(pmf_event_workitem_t), 0, 0, 0,
   1135 	    "pewpl", NULL, IPL_HIGH);
   1136 	pool_setlowat(&pew_pl, 1);
   1137 	pool_sethiwat(&pew_pl, 8);
   1138 
   1139 	KASSERT(pmf_event_workqueue == NULL);
   1140 	err = workqueue_create(&pmf_event_workqueue, "pmfevent",
   1141 	    pmf_event_worker, NULL, PRI_NONE, IPL_VM, 0);
   1142 	if (err)
   1143 		panic("couldn't create pmfevent workqueue");
   1144 
   1145 	KASSERT(pmf_suspend_workqueue == NULL);
   1146 	err = workqueue_create(&pmf_suspend_workqueue, "pmfsuspend",
   1147 	    pmf_suspend_worker, NULL, PRI_NONE, IPL_VM, 0);
   1148 	if (err)
   1149 		panic("couldn't create pmfsuspend workqueue");
   1150 
   1151 
   1152 	callout_init(&global_idle_counter, 0);
   1153 	callout_setfunc(&global_idle_counter, input_idle, NULL);
   1154 }
   1155