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sysmon_envsys_events.c revision 1.115
      1 /* $NetBSD: sysmon_envsys_events.c,v 1.115 2015/04/18 14:44:44 mlelstv Exp $ */
      2 
      3 /*-
      4  * Copyright (c) 2007, 2008 Juan Romero Pardines.
      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 AUTHOR ``AS IS'' AND ANY EXPRESS OR
     17  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     18  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     19  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     20  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     21  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     22  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     23  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     24  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     25  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     26  */
     27 
     28 /*
     29  * sysmon_envsys(9) events framework.
     30  */
     31 
     32 #include <sys/cdefs.h>
     33 __KERNEL_RCSID(0, "$NetBSD: sysmon_envsys_events.c,v 1.115 2015/04/18 14:44:44 mlelstv Exp $");
     34 
     35 #include <sys/param.h>
     36 #include <sys/types.h>
     37 #include <sys/conf.h>
     38 #include <sys/errno.h>
     39 #include <sys/kernel.h>
     40 #include <sys/systm.h>
     41 #include <sys/proc.h>
     42 #include <sys/mutex.h>
     43 #include <sys/kmem.h>
     44 #include <sys/callout.h>
     45 #include <sys/syslog.h>
     46 
     47 #include <dev/sysmon/sysmonvar.h>
     48 #include <dev/sysmon/sysmon_envsysvar.h>
     49 
     50 struct sme_sensor_event {
     51 	int		state;
     52 	int		event;
     53 };
     54 
     55 static const struct sme_sensor_event sme_sensor_event[] = {
     56 	{ ENVSYS_SVALID,			PENVSYS_EVENT_NORMAL },
     57 	{ ENVSYS_SCRITOVER, 			PENVSYS_EVENT_CRITOVER },
     58 	{ ENVSYS_SCRITUNDER, 			PENVSYS_EVENT_CRITUNDER },
     59 	{ ENVSYS_SWARNOVER, 			PENVSYS_EVENT_WARNOVER },
     60 	{ ENVSYS_SWARNUNDER,			PENVSYS_EVENT_WARNUNDER },
     61 	{ ENVSYS_BATTERY_CAPACITY_NORMAL,	PENVSYS_EVENT_NORMAL },
     62 	{ ENVSYS_BATTERY_CAPACITY_WARNING,	PENVSYS_EVENT_BATT_WARN },
     63 	{ ENVSYS_BATTERY_CAPACITY_CRITICAL,	PENVSYS_EVENT_BATT_CRIT },
     64 	{ ENVSYS_BATTERY_CAPACITY_HIGH,		PENVSYS_EVENT_BATT_HIGH },
     65 	{ ENVSYS_BATTERY_CAPACITY_MAX,		PENVSYS_EVENT_BATT_MAX },
     66 	{ -1, 					-1 }
     67 };
     68 
     69 static const struct op_t {
     70 	const char *name;
     71 	enum envsys_lims idx;
     72 	uint32_t prop;
     73 } limit_ops[] = {
     74 	/* Value-based limits */
     75 	{ "critical-max", ENVSYS_LIM_CRITMAX, PROP_CRITMAX },
     76 	{ "warning-max",  ENVSYS_LIM_WARNMAX, PROP_WARNMAX },
     77 	{ "warning-min",  ENVSYS_LIM_WARNMIN, PROP_WARNMIN },
     78 	{ "critical-min", ENVSYS_LIM_CRITMIN, PROP_CRITMIN },
     79 
     80 	/* %Capacity-based limits */
     81 	{ "maximum-capacity",  ENVSYS_LIM_CRITMAX,  PROP_BATTMAX },
     82 	{ "high-capacity",     ENVSYS_LIM_WARNMAX,  PROP_BATTHIGH },
     83 	{ "warning-capacity",  ENVSYS_LIM_WARNMIN,  PROP_BATTWARN },
     84 	{ "critical-capacity", ENVSYS_LIM_CRITMIN,  PROP_BATTCAP },
     85 	{ NULL, 0, 0 }
     86 };
     87 
     88 static const struct ev_reg_t {
     89 	uint32_t crittype;
     90 	uint32_t powertype;
     91 	const char *name;
     92 } reg_events[] = {
     93 	{ ENVSYS_FMONCRITICAL,  PENVSYS_EVENT_CRITICAL,      "critical" },
     94 	{ ENVSYS_FMONSTCHANGED,	PENVSYS_EVENT_STATE_CHANGED, "state-changed" },
     95 	{ ENVSYS_FMONLIMITS,    PENVSYS_EVENT_LIMITS,        "hw-range-limits" },
     96 	{ ENVSYS_FHAS_ENTROPY,  PENVSYS_EVENT_NULL,          "refresh-event" },
     97 	{ 0, 0, NULL }
     98 };
     99 
    100 static bool sysmon_low_power;
    101 
    102 #define SME_EVTIMO	(SME_EVENTS_DEFTIMEOUT * hz)
    103 
    104 static bool sme_event_check_low_power(void);
    105 static bool sme_battery_check(void);
    106 static bool sme_battery_critical(envsys_data_t *);
    107 static bool sme_acadapter_check(void);
    108 
    109 static void sme_remove_event(sme_event_t *, struct sysmon_envsys *);
    110 
    111 /*
    112  * sme_event_register:
    113  *
    114  * 	+ Registers a new sysmon envsys event or updates any event
    115  * 	  already in the queue.
    116  */
    117 int
    118 sme_event_register(prop_dictionary_t sdict, envsys_data_t *edata,
    119 		   struct sysmon_envsys *sme, sysmon_envsys_lim_t *lims,
    120 		   uint32_t props, int crittype, int powertype)
    121 {
    122 	sme_event_t *see = NULL, *osee = NULL;
    123 	prop_object_t obj;
    124 	int error = 0;
    125 	const char *objkey;
    126 	const struct op_t *op;
    127 
    128 	KASSERT(sdict != NULL);
    129 	KASSERT(edata != NULL);
    130 	KASSERT(sme != NULL);
    131 	KASSERT(lims != NULL);
    132 
    133 	/*
    134 	 * Some validation first for limit-checking events
    135 	 *
    136 	 * 1. Limits are not permitted if the units is ENVSYS_INDICATOR
    137 	 *    or ENVSYS_BATTERY_CHARGE.
    138 	 *
    139 	 * 2. Capacity limits are permitted only if the sensor has the
    140 	 *    ENVSYS_FPERCENT flag set and value_max is set.
    141 	 *
    142 	 * 3. It is not permissible for both capacity and value limits
    143 	 *    to coexist.
    144 	 *
    145 	 * Note that it permissible for a sensor to have value limits
    146 	 * even if its ENVSYS_FPERCENT flag and value_max are set.
    147 	 */
    148 
    149 	DPRINTF(("%s: units %d props 0x%04x upropset 0x%04x max_val %d"
    150 		" edata-flags 0x%04x\n", __func__, edata->units, props,
    151 		edata->upropset, edata->value_max, edata->flags));
    152 
    153 	if (props)
    154 		if (edata->units == ENVSYS_INDICATOR ||
    155 		    edata->units == ENVSYS_BATTERY_CHARGE)
    156 			return ENOTSUP;
    157 
    158 	if ((props & PROP_CAP_LIMITS) &&
    159 	    ((edata->value_max == 0) ||
    160 	     !(edata->flags & ENVSYS_FPERCENT) ||
    161 	     (props & PROP_VAL_LIMITS) ||
    162 	     (edata->upropset & PROP_VAL_LIMITS)))
    163 		props = 0;
    164 
    165 	if ((props & PROP_VAL_LIMITS) && (edata->upropset & PROP_CAP_LIMITS))
    166 		props = 0;
    167 
    168 	/*
    169 	 * check if the event is already on the list and return
    170 	 * EEXIST if value provided hasn't been changed.
    171 	 */
    172 	mutex_enter(&sme->sme_mtx);
    173 	LIST_FOREACH(osee, &sme->sme_events_list, see_list) {
    174 		if (strcmp(edata->desc, osee->see_pes.pes_sensname) != 0)
    175 			continue;
    176 		if (crittype != osee->see_type &&
    177 		    osee->see_type != PENVSYS_EVENT_NULL)
    178 			continue;
    179 
    180 		/*
    181 		 * We found an existing event for this sensor.  Make
    182 		 * sure it references the correct edata
    183 		 */
    184 		KASSERT(edata == osee->see_edata);
    185 
    186 		DPRINTF(("%s: dev %s sensor %s: event type %d exists\n",
    187 		    __func__, sme->sme_name, edata->desc, crittype));
    188 
    189 		see = osee;
    190 		if (props & edata->upropset & (PROP_CRITMAX | PROP_BATTMAX)) {
    191 			if (lims->sel_critmax == edata->limits.sel_critmax) {
    192 				DPRINTF(("%s: critmax exists\n", __func__));
    193 				error = EEXIST;
    194 				props &= ~(PROP_CRITMAX | PROP_BATTMAX);
    195 			}
    196 		}
    197 		if (props & edata->upropset & (PROP_WARNMAX | PROP_BATTHIGH)) {
    198 			if (lims->sel_warnmax == edata->limits.sel_warnmax) {
    199 				DPRINTF(("%s: warnmax exists\n", __func__));
    200 				error = EEXIST;
    201 				props &= ~(PROP_WARNMAX | PROP_BATTHIGH);
    202 			}
    203 		}
    204 		if (props & edata->upropset & (PROP_WARNMIN | PROP_BATTWARN)) {
    205 			if (lims->sel_warnmin == edata->limits.sel_warnmin) {
    206 				DPRINTF(("%s: warnmin exists\n", __func__));
    207 				error = EEXIST;
    208 				props &= ~(PROP_WARNMIN | PROP_BATTWARN);
    209 			}
    210 		}
    211 		if (props & edata->upropset & (PROP_CRITMIN | PROP_BATTCAP)) {
    212 			if (lims->sel_critmin == edata->limits.sel_critmin) {
    213 				DPRINTF(("%s: critmin exists\n", __func__));
    214 				error = EEXIST;
    215 				props &= ~(PROP_CRITMIN | PROP_BATTCAP);
    216 			}
    217 		}
    218 		if (props && see->see_type == PENVSYS_EVENT_NULL)
    219 			see->see_type = crittype;
    220 
    221 		break;
    222 	}
    223 	if (crittype == PENVSYS_EVENT_NULL && see != NULL) {
    224 		mutex_exit(&sme->sme_mtx);
    225 		return EEXIST;
    226 	}
    227 
    228 	if (see == NULL) {
    229 		/*
    230 		 * New event requested - allocate a sysmon_envsys event.
    231 		 */
    232 		see = kmem_zalloc(sizeof(*see), KM_SLEEP);
    233 		if (see == NULL)
    234 			return ENOMEM;
    235 
    236 		DPRINTF(("%s: dev %s sensor %s: new event\n",
    237 		    __func__, sme->sme_name, edata->desc));
    238 
    239 		see->see_type = crittype;
    240 		see->see_sme = sme;
    241 		see->see_edata = edata;
    242 
    243 		/* Initialize sensor type and previously-sent state */
    244 
    245 		see->see_pes.pes_type = powertype;
    246 
    247 		switch (crittype) {
    248 		case PENVSYS_EVENT_CAPACITY:
    249 			see->see_evstate = ENVSYS_BATTERY_CAPACITY_NORMAL;
    250 			break;
    251 		case PENVSYS_EVENT_STATE_CHANGED:
    252 			if (edata->units == ENVSYS_BATTERY_CAPACITY)
    253 				see->see_evstate =
    254 				    ENVSYS_BATTERY_CAPACITY_NORMAL;
    255 			else if (edata->units == ENVSYS_DRIVE)
    256 				see->see_evstate = ENVSYS_DRIVE_EMPTY;
    257 			else if (edata->units == ENVSYS_INDICATOR)
    258 				see->see_evstate = ENVSYS_SVALID;
    259 			else
    260 				panic("%s: bad units for "
    261 				      "PENVSYS_EVENT_STATE_CHANGED", __func__);
    262 			break;
    263 		case PENVSYS_EVENT_CRITICAL:
    264 		case PENVSYS_EVENT_LIMITS:
    265 		default:
    266 			see->see_evstate = ENVSYS_SVALID;
    267 			break;
    268 		}
    269 		see->see_evvalue = 0;
    270 
    271 		(void)strlcpy(see->see_pes.pes_dvname, sme->sme_name,
    272 		    sizeof(see->see_pes.pes_dvname));
    273 		(void)strlcpy(see->see_pes.pes_sensname, edata->desc,
    274 		    sizeof(see->see_pes.pes_sensname));
    275 	}
    276 
    277 	/*
    278 	 * Limit operation requested.
    279 	 */
    280 	for (op = limit_ops; op->name != NULL; op++) {
    281 		if (props & op->prop) {
    282 			objkey = op->name;
    283 			obj = prop_dictionary_get(sdict, objkey);
    284 			if (obj != NULL &&
    285 			    prop_object_type(obj) != PROP_TYPE_NUMBER) {
    286 				DPRINTF(("%s: (%s) %s object not TYPE_NUMBER\n",
    287 				    __func__, sme->sme_name, objkey));
    288 				error = ENOTSUP;
    289 			} else {
    290 				edata->limits.sel_limit_list[op->idx] =
    291 				    lims->sel_limit_list[op->idx];
    292 				error = sme_sensor_upint32(sdict, objkey,
    293 					   lims->sel_limit_list[op->idx]);
    294 				DPRINTF(("%s: (%s) event [sensor=%s type=%d] "
    295 				    "(%s updated)\n", __func__, sme->sme_name,
    296 				    edata->desc, crittype, objkey));
    297 			}
    298 			if (error && error != EEXIST)
    299 				goto out;
    300 			edata->upropset |= op->prop;
    301 		}
    302 	}
    303 
    304 	if (props & PROP_DRIVER_LIMITS)
    305 		edata->upropset |= PROP_DRIVER_LIMITS;
    306 	else
    307 		edata->upropset &= ~PROP_DRIVER_LIMITS;
    308 
    309 	DPRINTF(("%s: (%s) event registered (sensor=%s snum=%d type=%d "
    310 	    "critmin=%" PRIu32 " warnmin=%" PRIu32 " warnmax=%" PRIu32
    311 	    " critmax=%" PRIu32 " props 0x%04x)\n", __func__,
    312 	    see->see_sme->sme_name, see->see_pes.pes_sensname,
    313 	    edata->sensor, see->see_type, edata->limits.sel_critmin,
    314 	    edata->limits.sel_warnmin, edata->limits.sel_warnmax,
    315 	    edata->limits.sel_critmax, edata->upropset));
    316 	/*
    317 	 * Initialize the events framework if it wasn't initialized before.
    318 	 */
    319 	if ((sme->sme_flags & SME_CALLOUT_INITIALIZED) == 0)
    320 		error = sme_events_init(sme);
    321 
    322 	/*
    323 	 * If driver requested notification, advise it of new
    324 	 * limit values
    325 	 */
    326 	if (sme->sme_set_limits)
    327 		(*sme->sme_set_limits)(sme, edata, &(edata->limits),
    328 					&(edata->upropset));
    329 
    330 out:
    331 	if ((error == 0 || error == EEXIST) && osee == NULL)
    332 		LIST_INSERT_HEAD(&sme->sme_events_list, see, see_list);
    333 
    334 	mutex_exit(&sme->sme_mtx);
    335 
    336 	return error;
    337 }
    338 
    339 /*
    340  * sme_event_unregister_all:
    341  *
    342  * 	+ Unregisters all events associated with a sysmon envsys device.
    343  */
    344 void
    345 sme_event_unregister_all(struct sysmon_envsys *sme)
    346 {
    347 	sme_event_t *see;
    348 	int evcounter = 0;
    349 	bool destroy = false;
    350 
    351 	KASSERT(sme != NULL);
    352 
    353 	mutex_enter(&sme->sme_mtx);
    354 	LIST_FOREACH(see, &sme->sme_events_list, see_list) {
    355 		while (see->see_flags & SEE_EVENT_WORKING)
    356 			cv_wait(&sme->sme_condvar, &sme->sme_mtx);
    357 
    358 		if (strcmp(see->see_pes.pes_dvname, sme->sme_name) == 0)
    359 			evcounter++;
    360 	}
    361 
    362 	DPRINTF(("%s: total events %d (%s)\n", __func__,
    363 	    evcounter, sme->sme_name));
    364 
    365 	while ((see = LIST_FIRST(&sme->sme_events_list))) {
    366 		if (evcounter == 0)
    367 			break;
    368 
    369 		if (strcmp(see->see_pes.pes_dvname, sme->sme_name) == 0) {
    370 			DPRINTF(("%s: event %s %d removed (%s)\n", __func__,
    371 			    see->see_pes.pes_sensname, see->see_type,
    372 			    sme->sme_name));
    373 			sme_remove_event(see, sme);
    374 
    375 			evcounter--;
    376 		}
    377 	}
    378 
    379 	if (LIST_EMPTY(&sme->sme_events_list) &&
    380 	    sme->sme_flags & SME_CALLOUT_INITIALIZED) {
    381 		sme_events_halt_callout(sme);
    382 		destroy = true;
    383 	}
    384 	mutex_exit(&sme->sme_mtx);
    385 
    386 	if (destroy)
    387 		sme_events_destroy(sme);
    388 }
    389 
    390 /*
    391  * sme_event_unregister:
    392  *
    393  * 	+ Unregisters an event from the specified sysmon envsys device.
    394  */
    395 int
    396 sme_event_unregister(struct sysmon_envsys *sme, const char *sensor, int type)
    397 {
    398 	sme_event_t *see;
    399 	bool found = false;
    400 	bool destroy = false;
    401 
    402 	KASSERT(sensor != NULL);
    403 
    404 	mutex_enter(&sme->sme_mtx);
    405 	LIST_FOREACH(see, &sme->sme_events_list, see_list) {
    406 		if (strcmp(see->see_pes.pes_sensname, sensor) == 0) {
    407 			if (see->see_type == type) {
    408 				found = true;
    409 				break;
    410 			}
    411 		}
    412 	}
    413 
    414 	if (!found) {
    415 		mutex_exit(&sme->sme_mtx);
    416 		return EINVAL;
    417 	}
    418 
    419 	/*
    420 	 * Wait for the event to finish its work, remove it from the list
    421 	 * and release resources.
    422 	 */
    423 	while (see->see_flags & SEE_EVENT_WORKING)
    424 		cv_wait(&sme->sme_condvar, &sme->sme_mtx);
    425 
    426 	DPRINTF(("%s: removed dev=%s sensor=%s type=%d\n",
    427 	    __func__, see->see_pes.pes_dvname, sensor, type));
    428 
    429 	sme_remove_event(see, sme);
    430 
    431 	if (LIST_EMPTY(&sme->sme_events_list)) {
    432 		sme_events_halt_callout(sme);
    433 		destroy = true;
    434 	}
    435 	mutex_exit(&sme->sme_mtx);
    436 
    437 	if (destroy)
    438 		sme_events_destroy(sme);
    439 
    440 	return 0;
    441 }
    442 
    443 /*
    444  * sme_event_unregister_sensor:
    445  *
    446  *	+ Unregisters any event associated with a specific sensor
    447  *	  The caller must already own the sme_mtx.
    448  */
    449 int
    450 sme_event_unregister_sensor(struct sysmon_envsys *sme, envsys_data_t *edata)
    451 {
    452 	sme_event_t *see;
    453 	bool found = false;
    454 
    455 	KASSERT(mutex_owned(&sme->sme_mtx));
    456 	LIST_FOREACH(see, &sme->sme_events_list, see_list) {
    457 		if (see->see_edata == edata) {
    458 			found = true;
    459 			break;
    460 		}
    461 	}
    462 	if (!found)
    463 		return EINVAL;
    464 
    465 	/*
    466 	 * Wait for the event to finish its work, remove it from the list
    467 	 * and release resources.
    468 	 */
    469 	while (see->see_flags & SEE_EVENT_WORKING)
    470 		cv_wait(&sme->sme_condvar, &sme->sme_mtx);
    471 
    472 	DPRINTF(("%s: removed dev=%s sensor=%s\n",
    473 	    __func__, see->see_pes.pes_dvname, edata->desc));
    474 
    475 	sme_remove_event(see, sme);
    476 
    477 	return 0;
    478 }
    479 
    480 static void
    481 sme_remove_event(sme_event_t *see, struct sysmon_envsys *sme)
    482 {
    483 
    484 	KASSERT(mutex_owned(&sme->sme_mtx));
    485 
    486 	if (see->see_edata->flags & ENVSYS_FHAS_ENTROPY)
    487 		rnd_detach_source(&see->see_edata->rnd_src);
    488 	LIST_REMOVE(see, see_list);
    489 	kmem_free(see, sizeof(*see));
    490 }
    491 
    492 /*
    493  * sme_event_drvadd:
    494  *
    495  * 	+ Registers a new event for a device that had enabled any of
    496  * 	  the monitoring flags in the driver.
    497  */
    498 void
    499 sme_event_drvadd(void *arg)
    500 {
    501 	sme_event_drv_t *sed_t = arg;
    502 	sysmon_envsys_lim_t lims;
    503 	uint32_t props;
    504 	int error = 0;
    505 	const struct ev_reg_t *reg;
    506 
    507 	KASSERT(sed_t != NULL);
    508 
    509 	/*
    510 	 * If driver provides a method to retrieve its internal limit
    511 	 * values, call it and use those returned values as initial
    512 	 * limits for event monitoring.
    513 	 */
    514 	props = 0;
    515 	if (sed_t->sed_edata->flags & ENVSYS_FMONLIMITS)
    516 		if (sed_t->sed_sme->sme_get_limits)
    517 			(*sed_t->sed_sme->sme_get_limits)(sed_t->sed_sme,
    518 							  sed_t->sed_edata,
    519 							  &lims, &props);
    520 	/*
    521 	 * If driver doesn't provide a way to "absorb" user-specified
    522 	 * limit values, we must monitor all limits ourselves
    523 	 */
    524 	if (sed_t->sed_sme->sme_set_limits == NULL)
    525 		props &= ~PROP_DRIVER_LIMITS;
    526 
    527 	/* Register the events that were specified */
    528 
    529 	for (reg = reg_events; reg->name != NULL; reg++) {
    530 		if (sed_t->sed_edata->flags & reg->crittype) {
    531 
    532 			error = sme_event_register(sed_t->sed_sdict,
    533 					      sed_t->sed_edata,
    534 					      sed_t->sed_sme,
    535 					      &lims, props,
    536 					      reg->powertype,
    537 					      sed_t->sed_powertype);
    538 			if (error && error != EEXIST)
    539 				printf("%s: failed to add event! "
    540 				    "error=%d sensor=%s event=%s\n",
    541 				    __func__, error,
    542 				    sed_t->sed_edata->desc, reg->name);
    543 			else {
    544 				char str[ENVSYS_DESCLEN] = "monitoring-state-";
    545 				(void)strlcat(str, reg->name, sizeof(str));
    546 				prop_dictionary_set_bool(sed_t->sed_sdict,
    547 							 str, true);
    548 			}
    549 		}
    550 	}
    551 
    552 	/*
    553 	 * we are done, free memory now.
    554 	 */
    555 	kmem_free(sed_t, sizeof(*sed_t));
    556 }
    557 
    558 /*
    559  * sme_events_init:
    560  *
    561  * 	+ Initialize the events framework for this device.
    562  */
    563 int
    564 sme_events_init(struct sysmon_envsys *sme)
    565 {
    566 	int error = 0;
    567 
    568 	KASSERT(sme != NULL);
    569 	KASSERT(mutex_owned(&sme->sme_mtx));
    570 
    571 	error = workqueue_create(&sme->sme_wq, sme->sme_name,
    572 	    sme_events_worker, sme, PRI_NONE, IPL_SOFTCLOCK, WQ_MPSAFE);
    573 	if (error)
    574 		return error;
    575 
    576 	callout_init(&sme->sme_callout, CALLOUT_MPSAFE);
    577 	callout_setfunc(&sme->sme_callout, sme_events_check, sme);
    578 	sme->sme_flags |= SME_CALLOUT_INITIALIZED;
    579 	sme_schedule_callout(sme);
    580 	DPRINTF(("%s: events framework initialized for '%s'\n",
    581 	    __func__, sme->sme_name));
    582 
    583 	return error;
    584 }
    585 
    586 /*
    587  * sme_schedule_callout
    588  *
    589  *	(Re)-schedule the device's callout timer
    590  */
    591 void
    592 sme_schedule_callout(struct sysmon_envsys *sme)
    593 {
    594 	uint64_t timo;
    595 
    596 	KASSERT(sme != NULL);
    597 
    598 	if ((sme->sme_flags & SME_CALLOUT_INITIALIZED) == 0)
    599 		return;
    600 
    601 	if (sme->sme_events_timeout)
    602 		timo = sme->sme_events_timeout * hz;
    603 	else
    604 		timo = SME_EVTIMO;
    605 
    606 	callout_stop(&sme->sme_callout);
    607 	callout_schedule(&sme->sme_callout, timo);
    608 }
    609 
    610 /*
    611  * sme_events_halt_callout:
    612  *
    613  * 	+ Halt the callout of the event framework for this device.
    614  */
    615 void
    616 sme_events_halt_callout(struct sysmon_envsys *sme)
    617 {
    618 	KASSERT(mutex_owned(&sme->sme_mtx));
    619 
    620 	/*
    621 	 * Unset before callout_halt to ensure callout is not scheduled again
    622 	 * during callout_halt.
    623 	 */
    624 	sme->sme_flags &= ~SME_CALLOUT_INITIALIZED;
    625 
    626 	callout_halt(&sme->sme_callout, &sme->sme_mtx);
    627 }
    628 
    629 /*
    630  * sme_events_destroy:
    631  *
    632  * 	+ Destroy the callout and the workqueue of the event framework
    633  *	  for this device.
    634  */
    635 void
    636 sme_events_destroy(struct sysmon_envsys *sme)
    637 {
    638 	KASSERT(!mutex_owned(&sme->sme_mtx));
    639 	KASSERT((sme->sme_flags & SME_CALLOUT_INITIALIZED) == 0);
    640 
    641 	callout_destroy(&sme->sme_callout);
    642 	workqueue_destroy(sme->sme_wq);
    643 
    644 	DPRINTF(("%s: events framework destroyed for '%s'\n",
    645 	    __func__, sme->sme_name));
    646 }
    647 
    648 /*
    649  * sysmon_envsys_update_limits
    650  *
    651  *	+ If a driver needs to update the limits that it is providing,
    652  *	  we need to update the dictionary data as well as the limits.
    653  *	  This only makes sense if the driver is capable of providing
    654  *	  its limits, and if there is a limits event-monitor.
    655  */
    656 int
    657 sysmon_envsys_update_limits(struct sysmon_envsys *sme, envsys_data_t *edata)
    658 {
    659 	int err;
    660 
    661 	sysmon_envsys_acquire(sme, false);
    662 	if (sme->sme_get_limits == NULL ||
    663 	    (edata->flags & ENVSYS_FMONLIMITS) == 0)
    664 		err = EINVAL;
    665 	else
    666 		err = sme_update_limits(sme, edata);
    667 	sysmon_envsys_release(sme, false);
    668 
    669 	return err;
    670 }
    671 
    672 /*
    673  * sme_update_limits
    674  *
    675  *	+ Internal version of sysmon_envsys_update_limits() to be used
    676  *	  when the device has already been sysmon_envsys_acquire()d.
    677  */
    678 
    679 int
    680 sme_update_limits(struct sysmon_envsys *sme, envsys_data_t *edata)
    681 {
    682 	prop_dictionary_t sdict = NULL;
    683 	prop_array_t array = NULL;
    684 	sysmon_envsys_lim_t lims;
    685 	sme_event_t *see;
    686 	uint32_t props = 0;
    687 
    688 	/* Find the dictionary for this sensor */
    689 	array = prop_dictionary_get(sme_propd, sme->sme_name);
    690 	if (array == NULL ||
    691 	    prop_object_type(array) != PROP_TYPE_ARRAY) {
    692 		DPRINTF(("%s: array device failed\n", __func__));
    693 		return EINVAL;
    694 	}
    695 
    696 	sdict = prop_array_get(array, edata->sensor);
    697 	if (sdict == NULL) {
    698 		return EINVAL;
    699 	}
    700 
    701 	/* Find the event definition to get its powertype */
    702 	LIST_FOREACH(see, &sme->sme_events_list, see_list) {
    703 		if (edata == see->see_edata &&
    704 		    see->see_type == PENVSYS_EVENT_LIMITS)
    705 			break;
    706 	}
    707 	if (see == NULL)
    708 		return EINVAL;
    709 
    710 	/* Update limit values from driver if possible */
    711 	if (sme->sme_get_limits != NULL)
    712 		(*sme->sme_get_limits)(sme, edata, &lims, &props);
    713 
    714 	/* Update event and dictionary */
    715 	sme_event_register(sdict, edata, sme, &lims, props,
    716 			   PENVSYS_EVENT_LIMITS, see->see_pes.pes_type);
    717 
    718 	return 0;
    719 }
    720 
    721 /*
    722  * sme_events_check:
    723  *
    724  * 	+ Passes the events to the workqueue thread and stops
    725  * 	  the callout if the 'low-power' condition is triggered.
    726  */
    727 void
    728 sme_events_check(void *arg)
    729 {
    730 	struct sysmon_envsys *sme = arg;
    731 	sme_event_t *see;
    732 
    733 	KASSERT(sme != NULL);
    734 
    735 	mutex_enter(&sme->sme_work_mtx);
    736 	if (sme->sme_busy > 0) {
    737 		log(LOG_WARNING, "%s: workqueue busy: updates stopped\n",
    738 		    sme->sme_name);
    739 		mutex_exit(&sme->sme_work_mtx);
    740 		return;
    741 	}
    742 	mutex_exit(&sme->sme_work_mtx);
    743 
    744 	mutex_enter(&sme->sme_mtx);
    745 	mutex_enter(&sme->sme_work_mtx);
    746 	LIST_FOREACH(see, &sme->sme_events_list, see_list) {
    747 		workqueue_enqueue(sme->sme_wq, &see->see_wk, NULL);
    748 		see->see_edata->flags |= ENVSYS_FNEED_REFRESH;
    749 		sme->sme_busy++;
    750 	}
    751 	mutex_exit(&sme->sme_work_mtx);
    752 	if (!sysmon_low_power)
    753 		sme_schedule_callout(sme);
    754 	mutex_exit(&sme->sme_mtx);
    755 }
    756 
    757 /*
    758  * sme_events_worker:
    759  *
    760  * 	+ workqueue thread that checks if there's a critical condition
    761  * 	  and sends an event if it was triggered.
    762  */
    763 void
    764 sme_events_worker(struct work *wk, void *arg)
    765 {
    766 	sme_event_t *see = (void *)wk;
    767 	struct sysmon_envsys *sme = see->see_sme;
    768 	envsys_data_t *edata = see->see_edata;
    769 
    770 	KASSERT(wk == &see->see_wk);
    771 	KASSERT(sme != NULL || edata != NULL);
    772 
    773 	mutex_enter(&sme->sme_mtx);
    774 	see->see_flags |= SEE_EVENT_WORKING;
    775 	/*
    776 	 * sme_events_check marks the sensors to make us refresh them here.
    777 	 * sme_envsys_refresh_sensor will not call the driver if the driver
    778 	 * does its own setting of the sensor value.
    779 	 */
    780 	if ((edata->flags & ENVSYS_FNEED_REFRESH) != 0) {
    781 		/* refresh sensor in device */
    782 		sysmon_envsys_refresh_sensor(sme, edata);
    783 		edata->flags &= ~ENVSYS_FNEED_REFRESH;
    784 	}
    785 
    786 	DPRINTFOBJ(("%s: (%s) desc=%s sensor=%d type=%d state=%d units=%d "
    787 	    "value_cur=%d upropset=0x%04x\n", __func__, sme->sme_name, edata->desc,
    788 	    edata->sensor, see->see_type, edata->state, edata->units,
    789 	    edata->value_cur, edata->upropset));
    790 
    791 	/* skip the event if current sensor is in invalid state */
    792 	if (edata->state == ENVSYS_SINVALID)
    793 		goto out;
    794 
    795 	/*
    796 	 * For range limits, if the driver claims responsibility for
    797 	 * limit/range checking, just user driver-supplied status.
    798 	 * Else calculate our own status.  Note that driver must
    799 	 * relinquish responsibility for ALL limits if there is even
    800 	 * one limit that it cannot handle!
    801 	 *
    802 	 * If this is a CAPACITY monitor, but the sensor's max_value
    803 	 * is not set, treat it as though the monitor does not exist.
    804 	 */
    805 	if ((see->see_type == PENVSYS_EVENT_LIMITS ||
    806 	     see->see_type == PENVSYS_EVENT_CAPACITY) &&
    807 	    (edata->upropset & PROP_DRIVER_LIMITS) == 0) {
    808 		if ((see->see_type == PENVSYS_EVENT_CAPACITY) &&
    809 		    (edata->value_max == 0))
    810 			edata->state = ENVSYS_SVALID;
    811 		else if ((edata->upropset & (PROP_CRITMIN | PROP_BATTCAP)) &&
    812 		    (edata->value_cur < edata->limits.sel_critmin))
    813 			edata->state = ENVSYS_SCRITUNDER;
    814 		else if ((edata->upropset & (PROP_WARNMIN | PROP_BATTWARN)) &&
    815 			 (edata->value_cur < edata->limits.sel_warnmin))
    816 			edata->state = ENVSYS_SWARNUNDER;
    817 		else if ((edata->upropset & (PROP_CRITMAX | PROP_BATTMAX)) &&
    818 			 (edata->value_cur > edata->limits.sel_critmax))
    819 			edata->state = ENVSYS_SCRITOVER;
    820 		else if ((edata->upropset & (PROP_WARNMAX | PROP_BATTHIGH)) &&
    821 			 (edata->value_cur > edata->limits.sel_warnmax))
    822 			edata->state = ENVSYS_SWARNOVER;
    823 		else
    824 			edata->state = ENVSYS_SVALID;
    825 	}
    826 	sme_deliver_event(see);
    827 
    828 out:
    829 	see->see_flags &= ~SEE_EVENT_WORKING;
    830 	cv_broadcast(&sme->sme_condvar);
    831 	mutex_enter(&sme->sme_work_mtx);
    832 	KASSERT(sme->sme_busy > 0);
    833 	sme->sme_busy--;
    834 	mutex_exit(&sme->sme_work_mtx);
    835 	mutex_exit(&sme->sme_mtx);
    836 }
    837 
    838 /*
    839  * sysmon_envsys_sensor_event
    840  *
    841  *	+ Find the monitor event of a particular type for a given sensor
    842  *	  on a device and deliver the event if one is required.  If
    843  *	  no event type is specified, deliver all events for the sensor.
    844  */
    845 void
    846 sysmon_envsys_sensor_event(struct sysmon_envsys *sme, envsys_data_t *edata,
    847 			   int ev_type)
    848 {
    849 	sme_event_t *see;
    850 
    851 	mutex_enter(&sme->sme_mtx);
    852 	LIST_FOREACH(see, &sme->sme_events_list, see_list) {
    853 		if (edata != see->see_edata)
    854 			continue;
    855 		if (ev_type == 0 ||
    856 		    ev_type == see->see_type) {
    857 			sme_deliver_event(see);
    858 			if (ev_type != 0)
    859 				break;
    860 		}
    861 	}
    862 	mutex_exit(&sme->sme_mtx);
    863 }
    864 
    865 /*
    866  * sme_deliver_event:
    867  *
    868  * 	+ If new sensor state requires it, send an event to powerd
    869  *
    870  *	  Must be called with the device's sysmon mutex held
    871  *		see->see_sme->sme_mtx
    872  */
    873 void
    874 sme_deliver_event(sme_event_t *see)
    875 {
    876 	envsys_data_t *edata = see->see_edata;
    877 	const struct sme_descr_entry *sdt = NULL;
    878 	const struct sme_sensor_event *sse = sme_sensor_event;
    879 	int i, state = 0;
    880 
    881 	switch (see->see_type) {
    882 	case PENVSYS_EVENT_LIMITS:
    883 	case PENVSYS_EVENT_CAPACITY:
    884 		/*
    885 		 * Send event if state has changed
    886 		 */
    887 		if (edata->state == see->see_evstate)
    888 			break;
    889 
    890 		for (i = 0; sse[i].state != -1; i++)
    891 			if (sse[i].state == edata->state)
    892 				break;
    893 
    894 		if (sse[i].state == -1)
    895 			break;
    896 
    897 		if (edata->state == ENVSYS_SVALID)
    898 			sysmon_penvsys_event(&see->see_pes,
    899 					     PENVSYS_EVENT_NORMAL);
    900 		else
    901 			sysmon_penvsys_event(&see->see_pes, sse[i].event);
    902 
    903 		see->see_evstate = edata->state;
    904 		DPRINTFOBJ(("%s: (%s) desc=%s sensor=%d state=%d send_ev=%d\n",
    905 		    __func__, see->see_sme->sme_name, edata->desc,
    906 		    edata->sensor, edata->state,
    907 		    (edata->state == ENVSYS_SVALID) ? PENVSYS_EVENT_NORMAL :
    908 			sse[i].event));
    909 
    910 		break;
    911 
    912 	/*
    913 	 * Send PENVSYS_EVENT_CRITICAL event if:
    914 	 *	State has gone from non-CRITICAL to CRITICAL,
    915 	 *	State remains CRITICAL and value has changed, or
    916 	 *	State has returned from CRITICAL to non-CRITICAL
    917 	 */
    918 	case PENVSYS_EVENT_CRITICAL:
    919 		DPRINTF(("%s: CRITICAL: old/new state %d/%d, old/new value "
    920 		    "%d/%d\n", __func__, see->see_evstate, edata->state,
    921 		    see->see_evvalue, edata->value_cur));
    922 		if (edata->state == ENVSYS_SVALID &&
    923 		    see->see_evstate != ENVSYS_SVALID) {
    924 			sysmon_penvsys_event(&see->see_pes,
    925 					     PENVSYS_EVENT_NORMAL);
    926 			see->see_evstate = ENVSYS_SVALID;
    927 			break;
    928 		} else if (edata->state != ENVSYS_SCRITICAL)
    929 			break;
    930 		if (see->see_evstate != ENVSYS_SCRITICAL ||
    931 		    see->see_evvalue != edata->value_cur) {
    932 			sysmon_penvsys_event(&see->see_pes,
    933 					     PENVSYS_EVENT_CRITICAL);
    934 			see->see_evstate = ENVSYS_SCRITICAL;
    935 		}
    936 		see->see_evvalue = edata->value_cur;
    937 		break;
    938 
    939 	/*
    940 	 * if value_cur is not normal (battery) or online (drive),
    941 	 * send the event...
    942 	 */
    943 	case PENVSYS_EVENT_STATE_CHANGED:
    944 		/*
    945 		 * the state has not been changed, just ignore the event.
    946 		 */
    947 		if (edata->value_cur == see->see_evvalue)
    948 			break;
    949 
    950 		switch (edata->units) {
    951 		case ENVSYS_DRIVE:
    952 			sdt = sme_find_table_entry(SME_DESC_DRIVE_STATES,
    953 			    edata->value_cur);
    954 			state = ENVSYS_DRIVE_ONLINE;
    955 			break;
    956 		case ENVSYS_BATTERY_CAPACITY:
    957 			sdt = sme_find_table_entry(SME_DESC_BATTERY_CAPACITY,
    958 			    edata->value_cur);
    959 			state = ENVSYS_BATTERY_CAPACITY_NORMAL;
    960 			break;
    961 		case ENVSYS_INDICATOR:
    962 			sdt = sme_find_table_entry(SME_DESC_INDICATOR,
    963 			    edata->value_cur);
    964 			state = see->see_evvalue;	/* force state change */
    965 			break;
    966 		default:
    967 			panic("%s: bad units for PENVSYS_EVENT_STATE_CHANGED",
    968 			    __func__);
    969 		}
    970 
    971 		if (sdt->type == -1)
    972 			break;
    973 
    974 		/*
    975 		 * copy current state description.
    976 		 */
    977 		(void)strlcpy(see->see_pes.pes_statedesc, sdt->desc,
    978 		    sizeof(see->see_pes.pes_statedesc));
    979 
    980 		if (edata->value_cur == state)
    981 			/*
    982 			 * state returned to normal condition
    983 			 */
    984 			sysmon_penvsys_event(&see->see_pes,
    985 					     PENVSYS_EVENT_NORMAL);
    986 		else
    987 			/*
    988 			 * state changed to abnormal condition
    989 			 */
    990 			sysmon_penvsys_event(&see->see_pes, see->see_type);
    991 
    992 		see->see_evvalue = edata->value_cur;
    993 
    994 		/*
    995 		 * There's no need to continue if it's a drive sensor.
    996 		 */
    997 		if (edata->units == ENVSYS_DRIVE)
    998 			break;
    999 
   1000 		/*
   1001 		 * Check if the system is running in low power and send the
   1002 		 * event to powerd (if running) or shutdown the system
   1003 		 * otherwise.
   1004 		 */
   1005 		if (!sysmon_low_power && sme_event_check_low_power()) {
   1006 			struct penvsys_state pes;
   1007 
   1008 			/*
   1009 			 * Stop the callout and send the 'low-power' event.
   1010 			 */
   1011 			sysmon_low_power = true;
   1012 			callout_stop(&see->see_sme->sme_callout);
   1013 			pes.pes_type = PENVSYS_TYPE_BATTERY;
   1014 			sysmon_penvsys_event(&pes, PENVSYS_EVENT_LOW_POWER);
   1015 		}
   1016 		break;
   1017 	case PENVSYS_EVENT_NULL:
   1018 		break;
   1019 	default:
   1020 		panic("%s: invalid event type %d", __func__, see->see_type);
   1021 	}
   1022 }
   1023 
   1024 /*
   1025  * Returns true if the system is in low power state: an AC adapter
   1026  * is OFF and all batteries are in LOW/CRITICAL state.
   1027  */
   1028 static bool
   1029 sme_event_check_low_power(void)
   1030 {
   1031 	if (!sme_acadapter_check())
   1032 		return false;
   1033 
   1034 	return sme_battery_check();
   1035 }
   1036 
   1037 /*
   1038  * Called with the sysmon_envsys device mtx held through the
   1039  * workqueue thread.
   1040  */
   1041 static bool
   1042 sme_acadapter_check(void)
   1043 {
   1044 	struct sysmon_envsys *sme;
   1045 	envsys_data_t *edata;
   1046 	bool dev = false, sensor = false;
   1047 
   1048 	LIST_FOREACH(sme, &sysmon_envsys_list, sme_list) {
   1049 		if (sme->sme_class == SME_CLASS_ACADAPTER) {
   1050 			dev = true;
   1051 			break;
   1052 		}
   1053 	}
   1054 
   1055 	/*
   1056 	 * No AC Adapter devices were found.
   1057 	 */
   1058 	if (!dev)
   1059 		return false;
   1060 
   1061 	/*
   1062 	 * Check if there's an AC adapter device connected.
   1063 	 */
   1064 	TAILQ_FOREACH(edata, &sme->sme_sensors_list, sensors_head) {
   1065 		if (edata->units == ENVSYS_INDICATOR) {
   1066 			sensor = true;
   1067 			/* refresh current sensor */
   1068 			sysmon_envsys_refresh_sensor(sme, edata);
   1069 
   1070 			if (edata->value_cur)
   1071 				return false;
   1072 		}
   1073 	}
   1074 
   1075 	if (!sensor)
   1076 		return false;
   1077 
   1078 	/*
   1079 	 * AC adapter found and not connected.
   1080 	 */
   1081 	return true;
   1082 }
   1083 
   1084 /*
   1085  * Called with the sysmon_envsys device mtx held through the
   1086  * workqueue thread.
   1087  */
   1088 static bool
   1089 sme_battery_check(void)
   1090 {
   1091 	struct sysmon_envsys *sme;
   1092 	envsys_data_t *edata;
   1093 	int batteriesfound = 0;
   1094 	bool present, batterycap, batterycharge;
   1095 
   1096 	/*
   1097 	 * Check for battery devices and its state.
   1098 	 */
   1099 	LIST_FOREACH(sme, &sysmon_envsys_list, sme_list) {
   1100 		if (sme->sme_class != SME_CLASS_BATTERY)
   1101 			continue;
   1102 
   1103 		present = true;
   1104 
   1105 		/*
   1106 		 * XXX
   1107 		 * this assumes that the first valid ENVSYS_INDICATOR is the
   1108 		 * presence indicator
   1109 		 */
   1110 		TAILQ_FOREACH(edata, &sme->sme_sensors_list, sensors_head) {
   1111 			if ((edata->units == ENVSYS_INDICATOR) &&
   1112 			    (edata->state == ENVSYS_SVALID)) {
   1113 				present = edata->value_cur;
   1114 				break;
   1115 			}
   1116 		}
   1117 		if (!present)
   1118 			continue;
   1119 		/*
   1120 		 * We've found a battery device...
   1121 		 */
   1122 		batteriesfound++;
   1123 		batterycap = batterycharge = false;
   1124 		TAILQ_FOREACH(edata, &sme->sme_sensors_list, sensors_head) {
   1125 			/* no need to even look at sensors that aren't valid */
   1126 			if (edata->state != ENVSYS_SVALID)
   1127 				continue;
   1128 			if (edata->units == ENVSYS_BATTERY_CAPACITY) {
   1129 				batterycap = true;
   1130 				if (!sme_battery_critical(edata))
   1131 					return false;
   1132 			} else if (edata->units == ENVSYS_BATTERY_CHARGE) {
   1133 				batterycharge = true;
   1134 				if (edata->value_cur)
   1135 					return false;
   1136 			}
   1137 		}
   1138 		if (!batterycap || !batterycharge)
   1139 			return false;
   1140 	}
   1141 
   1142 	if (!batteriesfound)
   1143 		return false;
   1144 
   1145 	/*
   1146 	 * All batteries in low/critical capacity and discharging.
   1147 	 */
   1148 	return true;
   1149 }
   1150 
   1151 static bool
   1152 sme_battery_critical(envsys_data_t *edata)
   1153 {
   1154 	if (edata->value_cur == ENVSYS_BATTERY_CAPACITY_CRITICAL ||
   1155 	    edata->value_cur == ENVSYS_BATTERY_CAPACITY_LOW)
   1156 		return true;
   1157 
   1158 	return false;
   1159 }
   1160