sysmon_envsys_events.c revision 1.122 1 1.122 riastrad /* $NetBSD: sysmon_envsys_events.c,v 1.122 2021/12/31 11:05:41 riastradh Exp $ */
2 1.1 xtraeme
3 1.1 xtraeme /*-
4 1.51 xtraeme * Copyright (c) 2007, 2008 Juan Romero Pardines.
5 1.1 xtraeme * All rights reserved.
6 1.1 xtraeme *
7 1.1 xtraeme * Redistribution and use in source and binary forms, with or without
8 1.1 xtraeme * modification, are permitted provided that the following conditions
9 1.1 xtraeme * are met:
10 1.1 xtraeme * 1. Redistributions of source code must retain the above copyright
11 1.1 xtraeme * notice, this list of conditions and the following disclaimer.
12 1.1 xtraeme * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 xtraeme * notice, this list of conditions and the following disclaimer in the
14 1.1 xtraeme * documentation and/or other materials provided with the distribution.
15 1.1 xtraeme *
16 1.36 xtraeme * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
17 1.36 xtraeme * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
18 1.36 xtraeme * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
19 1.36 xtraeme * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
20 1.36 xtraeme * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
21 1.36 xtraeme * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
22 1.36 xtraeme * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
23 1.36 xtraeme * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
24 1.36 xtraeme * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
25 1.36 xtraeme * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
26 1.1 xtraeme */
27 1.1 xtraeme
28 1.1 xtraeme /*
29 1.1 xtraeme * sysmon_envsys(9) events framework.
30 1.1 xtraeme */
31 1.1 xtraeme
32 1.1 xtraeme #include <sys/cdefs.h>
33 1.122 riastrad __KERNEL_RCSID(0, "$NetBSD: sysmon_envsys_events.c,v 1.122 2021/12/31 11:05:41 riastradh Exp $");
34 1.1 xtraeme
35 1.1 xtraeme #include <sys/param.h>
36 1.1 xtraeme #include <sys/types.h>
37 1.1 xtraeme #include <sys/conf.h>
38 1.1 xtraeme #include <sys/errno.h>
39 1.1 xtraeme #include <sys/kernel.h>
40 1.1 xtraeme #include <sys/systm.h>
41 1.1 xtraeme #include <sys/proc.h>
42 1.1 xtraeme #include <sys/mutex.h>
43 1.1 xtraeme #include <sys/kmem.h>
44 1.1 xtraeme #include <sys/callout.h>
45 1.114 hannken #include <sys/syslog.h>
46 1.1 xtraeme
47 1.1 xtraeme #include <dev/sysmon/sysmonvar.h>
48 1.1 xtraeme #include <dev/sysmon/sysmon_envsysvar.h>
49 1.1 xtraeme
50 1.10 xtraeme struct sme_sensor_event {
51 1.10 xtraeme int state;
52 1.10 xtraeme int event;
53 1.10 xtraeme };
54 1.10 xtraeme
55 1.10 xtraeme static const struct sme_sensor_event sme_sensor_event[] = {
56 1.65 pgoyette { ENVSYS_SVALID, PENVSYS_EVENT_NORMAL },
57 1.65 pgoyette { ENVSYS_SCRITOVER, PENVSYS_EVENT_CRITOVER },
58 1.65 pgoyette { ENVSYS_SCRITUNDER, PENVSYS_EVENT_CRITUNDER },
59 1.65 pgoyette { ENVSYS_SWARNOVER, PENVSYS_EVENT_WARNOVER },
60 1.65 pgoyette { ENVSYS_SWARNUNDER, PENVSYS_EVENT_WARNUNDER },
61 1.65 pgoyette { ENVSYS_BATTERY_CAPACITY_NORMAL, PENVSYS_EVENT_NORMAL },
62 1.65 pgoyette { ENVSYS_BATTERY_CAPACITY_WARNING, PENVSYS_EVENT_BATT_WARN },
63 1.65 pgoyette { ENVSYS_BATTERY_CAPACITY_CRITICAL, PENVSYS_EVENT_BATT_CRIT },
64 1.84 pgoyette { ENVSYS_BATTERY_CAPACITY_HIGH, PENVSYS_EVENT_BATT_HIGH },
65 1.84 pgoyette { ENVSYS_BATTERY_CAPACITY_MAX, PENVSYS_EVENT_BATT_MAX },
66 1.65 pgoyette { -1, -1 }
67 1.10 xtraeme };
68 1.10 xtraeme
69 1.108 pgoyette static const struct op_t {
70 1.107 pgoyette const char *name;
71 1.107 pgoyette enum envsys_lims idx;
72 1.107 pgoyette uint32_t prop;
73 1.107 pgoyette } limit_ops[] = {
74 1.107 pgoyette /* Value-based limits */
75 1.107 pgoyette { "critical-max", ENVSYS_LIM_CRITMAX, PROP_CRITMAX },
76 1.107 pgoyette { "warning-max", ENVSYS_LIM_WARNMAX, PROP_WARNMAX },
77 1.107 pgoyette { "warning-min", ENVSYS_LIM_WARNMIN, PROP_WARNMIN },
78 1.107 pgoyette { "critical-min", ENVSYS_LIM_CRITMIN, PROP_CRITMIN },
79 1.107 pgoyette
80 1.107 pgoyette /* %Capacity-based limits */
81 1.107 pgoyette { "maximum-capacity", ENVSYS_LIM_CRITMAX, PROP_BATTMAX },
82 1.107 pgoyette { "high-capacity", ENVSYS_LIM_WARNMAX, PROP_BATTHIGH },
83 1.107 pgoyette { "warning-capacity", ENVSYS_LIM_WARNMIN, PROP_BATTWARN },
84 1.107 pgoyette { "critical-capacity", ENVSYS_LIM_CRITMIN, PROP_BATTCAP },
85 1.107 pgoyette { NULL, 0, 0 }
86 1.107 pgoyette };
87 1.107 pgoyette
88 1.108 pgoyette static const struct ev_reg_t {
89 1.107 pgoyette uint32_t crittype;
90 1.107 pgoyette uint32_t powertype;
91 1.107 pgoyette const char *name;
92 1.107 pgoyette } reg_events[] = {
93 1.107 pgoyette { ENVSYS_FMONCRITICAL, PENVSYS_EVENT_CRITICAL, "critical" },
94 1.107 pgoyette { ENVSYS_FMONSTCHANGED, PENVSYS_EVENT_STATE_CHANGED, "state-changed" },
95 1.107 pgoyette { ENVSYS_FMONLIMITS, PENVSYS_EVENT_LIMITS, "hw-range-limits" },
96 1.107 pgoyette { ENVSYS_FHAS_ENTROPY, PENVSYS_EVENT_NULL, "refresh-event" },
97 1.107 pgoyette { 0, 0, NULL }
98 1.107 pgoyette };
99 1.107 pgoyette
100 1.51 xtraeme static bool sysmon_low_power;
101 1.1 xtraeme
102 1.45 xtraeme #define SME_EVTIMO (SME_EVENTS_DEFTIMEOUT * hz)
103 1.3 xtraeme
104 1.44 xtraeme static bool sme_event_check_low_power(void);
105 1.47 xtraeme static bool sme_battery_check(void);
106 1.44 xtraeme static bool sme_battery_critical(envsys_data_t *);
107 1.47 xtraeme static bool sme_acadapter_check(void);
108 1.38 xtraeme
109 1.99 pgoyette static void sme_remove_event(sme_event_t *, struct sysmon_envsys *);
110 1.99 pgoyette
111 1.3 xtraeme /*
112 1.1 xtraeme * sme_event_register:
113 1.1 xtraeme *
114 1.24 xtraeme * + Registers a new sysmon envsys event or updates any event
115 1.24 xtraeme * already in the queue.
116 1.1 xtraeme */
117 1.1 xtraeme int
118 1.24 xtraeme sme_event_register(prop_dictionary_t sdict, envsys_data_t *edata,
119 1.67 pgoyette struct sysmon_envsys *sme, sysmon_envsys_lim_t *lims,
120 1.82 pgoyette uint32_t props, int crittype, int powertype)
121 1.1 xtraeme {
122 1.51 xtraeme sme_event_t *see = NULL, *osee = NULL;
123 1.24 xtraeme prop_object_t obj;
124 1.1 xtraeme int error = 0;
125 1.65 pgoyette const char *objkey;
126 1.108 pgoyette const struct op_t *op;
127 1.1 xtraeme
128 1.76 pgoyette KASSERT(sdict != NULL);
129 1.76 pgoyette KASSERT(edata != NULL);
130 1.76 pgoyette KASSERT(sme != NULL);
131 1.77 pgoyette KASSERT(lims != NULL);
132 1.77 pgoyette
133 1.77 pgoyette /*
134 1.77 pgoyette * Some validation first for limit-checking events
135 1.77 pgoyette *
136 1.98 pgoyette * 1. Limits are not permitted if the units is ENVSYS_INDICATOR
137 1.98 pgoyette * or ENVSYS_BATTERY_CHARGE.
138 1.85 pgoyette *
139 1.85 pgoyette * 2. Capacity limits are permitted only if the sensor has the
140 1.85 pgoyette * ENVSYS_FPERCENT flag set and value_max is set.
141 1.85 pgoyette *
142 1.85 pgoyette * 3. It is not permissible for both capacity and value limits
143 1.85 pgoyette * to coexist.
144 1.85 pgoyette *
145 1.85 pgoyette * Note that it permissible for a sensor to have value limits
146 1.85 pgoyette * even if its ENVSYS_FPERCENT flag and value_max are set.
147 1.77 pgoyette */
148 1.77 pgoyette
149 1.90 njoly DPRINTF(("%s: units %d props 0x%04x upropset 0x%04x max_val %d"
150 1.88 pgoyette " edata-flags 0x%04x\n", __func__, edata->units, props,
151 1.88 pgoyette edata->upropset, edata->value_max, edata->flags));
152 1.77 pgoyette
153 1.98 pgoyette if (props)
154 1.98 pgoyette if (edata->units == ENVSYS_INDICATOR ||
155 1.98 pgoyette edata->units == ENVSYS_BATTERY_CHARGE)
156 1.98 pgoyette return ENOTSUP;
157 1.85 pgoyette
158 1.82 pgoyette if ((props & PROP_CAP_LIMITS) &&
159 1.85 pgoyette ((edata->value_max == 0) ||
160 1.85 pgoyette !(edata->flags & ENVSYS_FPERCENT) ||
161 1.85 pgoyette (props & PROP_VAL_LIMITS) ||
162 1.85 pgoyette (edata->upropset & PROP_VAL_LIMITS)))
163 1.91 pgoyette props = 0;
164 1.85 pgoyette
165 1.85 pgoyette if ((props & PROP_VAL_LIMITS) && (edata->upropset & PROP_CAP_LIMITS))
166 1.91 pgoyette props = 0;
167 1.56 pgoyette
168 1.122 riastrad /*
169 1.24 xtraeme * check if the event is already on the list and return
170 1.24 xtraeme * EEXIST if value provided hasn't been changed.
171 1.1 xtraeme */
172 1.51 xtraeme mutex_enter(&sme->sme_mtx);
173 1.51 xtraeme LIST_FOREACH(osee, &sme->sme_events_list, see_list) {
174 1.65 pgoyette if (strcmp(edata->desc, osee->see_pes.pes_sensname) != 0)
175 1.65 pgoyette continue;
176 1.103 pgoyette if (crittype != osee->see_type &&
177 1.103 pgoyette osee->see_type != PENVSYS_EVENT_NULL)
178 1.65 pgoyette continue;
179 1.65 pgoyette
180 1.76 pgoyette /*
181 1.122 riastrad * We found an existing event for this sensor. Make
182 1.76 pgoyette * sure it references the correct edata
183 1.76 pgoyette */
184 1.76 pgoyette KASSERT(edata == osee->see_edata);
185 1.76 pgoyette
186 1.77 pgoyette DPRINTF(("%s: dev %s sensor %s: event type %d exists\n",
187 1.77 pgoyette __func__, sme->sme_name, edata->desc, crittype));
188 1.65 pgoyette
189 1.65 pgoyette see = osee;
190 1.95 pgoyette if (props & edata->upropset & (PROP_CRITMAX | PROP_BATTMAX)) {
191 1.76 pgoyette if (lims->sel_critmax == edata->limits.sel_critmax) {
192 1.95 pgoyette DPRINTF(("%s: critmax exists\n", __func__));
193 1.65 pgoyette error = EEXIST;
194 1.84 pgoyette props &= ~(PROP_CRITMAX | PROP_BATTMAX);
195 1.65 pgoyette }
196 1.65 pgoyette }
197 1.95 pgoyette if (props & edata->upropset & (PROP_WARNMAX | PROP_BATTHIGH)) {
198 1.76 pgoyette if (lims->sel_warnmax == edata->limits.sel_warnmax) {
199 1.77 pgoyette DPRINTF(("%s: warnmax exists\n", __func__));
200 1.65 pgoyette error = EEXIST;
201 1.84 pgoyette props &= ~(PROP_WARNMAX | PROP_BATTHIGH);
202 1.65 pgoyette }
203 1.65 pgoyette }
204 1.95 pgoyette if (props & edata->upropset & (PROP_WARNMIN | PROP_BATTWARN)) {
205 1.76 pgoyette if (lims->sel_warnmin == edata->limits.sel_warnmin) {
206 1.77 pgoyette DPRINTF(("%s: warnmin exists\n", __func__));
207 1.65 pgoyette error = EEXIST;
208 1.82 pgoyette props &= ~(PROP_WARNMIN | PROP_BATTWARN);
209 1.1 xtraeme }
210 1.65 pgoyette }
211 1.95 pgoyette if (props & edata->upropset & (PROP_CRITMIN | PROP_BATTCAP)) {
212 1.76 pgoyette if (lims->sel_critmin == edata->limits.sel_critmin) {
213 1.77 pgoyette DPRINTF(("%s: critmin exists\n", __func__));
214 1.65 pgoyette error = EEXIST;
215 1.82 pgoyette props &= ~(PROP_CRITMIN | PROP_BATTCAP);
216 1.56 pgoyette }
217 1.1 xtraeme }
218 1.103 pgoyette if (props && see->see_type == PENVSYS_EVENT_NULL)
219 1.103 pgoyette see->see_type = crittype;
220 1.103 pgoyette
221 1.65 pgoyette break;
222 1.1 xtraeme }
223 1.102 pgoyette if (crittype == PENVSYS_EVENT_NULL && see != NULL) {
224 1.102 pgoyette mutex_exit(&sme->sme_mtx);
225 1.100 pgoyette return EEXIST;
226 1.102 pgoyette }
227 1.100 pgoyette
228 1.65 pgoyette if (see == NULL) {
229 1.65 pgoyette /*
230 1.65 pgoyette * New event requested - allocate a sysmon_envsys event.
231 1.65 pgoyette */
232 1.65 pgoyette see = kmem_zalloc(sizeof(*see), KM_SLEEP);
233 1.77 pgoyette DPRINTF(("%s: dev %s sensor %s: new event\n",
234 1.79 jruoho __func__, sme->sme_name, edata->desc));
235 1.65 pgoyette
236 1.65 pgoyette see->see_type = crittype;
237 1.65 pgoyette see->see_sme = sme;
238 1.65 pgoyette see->see_edata = edata;
239 1.65 pgoyette
240 1.65 pgoyette /* Initialize sensor type and previously-sent state */
241 1.65 pgoyette
242 1.65 pgoyette see->see_pes.pes_type = powertype;
243 1.1 xtraeme
244 1.56 pgoyette switch (crittype) {
245 1.65 pgoyette case PENVSYS_EVENT_CAPACITY:
246 1.104 pgoyette see->see_evstate = ENVSYS_BATTERY_CAPACITY_NORMAL;
247 1.56 pgoyette break;
248 1.65 pgoyette case PENVSYS_EVENT_STATE_CHANGED:
249 1.65 pgoyette if (edata->units == ENVSYS_BATTERY_CAPACITY)
250 1.122 riastrad see->see_evstate =
251 1.104 pgoyette ENVSYS_BATTERY_CAPACITY_NORMAL;
252 1.65 pgoyette else if (edata->units == ENVSYS_DRIVE)
253 1.104 pgoyette see->see_evstate = ENVSYS_DRIVE_EMPTY;
254 1.104 pgoyette else if (edata->units == ENVSYS_INDICATOR)
255 1.104 pgoyette see->see_evstate = ENVSYS_SVALID;
256 1.65 pgoyette else
257 1.65 pgoyette panic("%s: bad units for "
258 1.65 pgoyette "PENVSYS_EVENT_STATE_CHANGED", __func__);
259 1.56 pgoyette break;
260 1.65 pgoyette case PENVSYS_EVENT_CRITICAL:
261 1.104 pgoyette case PENVSYS_EVENT_LIMITS:
262 1.56 pgoyette default:
263 1.104 pgoyette see->see_evstate = ENVSYS_SVALID;
264 1.56 pgoyette break;
265 1.56 pgoyette }
266 1.104 pgoyette see->see_evvalue = 0;
267 1.65 pgoyette
268 1.65 pgoyette (void)strlcpy(see->see_pes.pes_dvname, sme->sme_name,
269 1.65 pgoyette sizeof(see->see_pes.pes_dvname));
270 1.65 pgoyette (void)strlcpy(see->see_pes.pes_sensname, edata->desc,
271 1.65 pgoyette sizeof(see->see_pes.pes_sensname));
272 1.56 pgoyette }
273 1.65 pgoyette
274 1.56 pgoyette /*
275 1.65 pgoyette * Limit operation requested.
276 1.24 xtraeme */
277 1.107 pgoyette for (op = limit_ops; op->name != NULL; op++) {
278 1.107 pgoyette if (props & op->prop) {
279 1.107 pgoyette objkey = op->name;
280 1.107 pgoyette obj = prop_dictionary_get(sdict, objkey);
281 1.107 pgoyette if (obj != NULL &&
282 1.107 pgoyette prop_object_type(obj) != PROP_TYPE_NUMBER) {
283 1.107 pgoyette DPRINTF(("%s: (%s) %s object not TYPE_NUMBER\n",
284 1.107 pgoyette __func__, sme->sme_name, objkey));
285 1.107 pgoyette error = ENOTSUP;
286 1.107 pgoyette } else {
287 1.107 pgoyette edata->limits.sel_limit_list[op->idx] =
288 1.107 pgoyette lims->sel_limit_list[op->idx];
289 1.107 pgoyette error = sme_sensor_upint32(sdict, objkey,
290 1.107 pgoyette lims->sel_limit_list[op->idx]);
291 1.107 pgoyette DPRINTF(("%s: (%s) event [sensor=%s type=%d] "
292 1.107 pgoyette "(%s updated)\n", __func__, sme->sme_name,
293 1.107 pgoyette edata->desc, crittype, objkey));
294 1.107 pgoyette }
295 1.107 pgoyette if (error && error != EEXIST)
296 1.107 pgoyette goto out;
297 1.107 pgoyette edata->upropset |= op->prop;
298 1.107 pgoyette }
299 1.27 xtraeme }
300 1.65 pgoyette
301 1.82 pgoyette if (props & PROP_DRIVER_LIMITS)
302 1.76 pgoyette edata->upropset |= PROP_DRIVER_LIMITS;
303 1.76 pgoyette else
304 1.76 pgoyette edata->upropset &= ~PROP_DRIVER_LIMITS;
305 1.74 pgoyette
306 1.51 xtraeme DPRINTF(("%s: (%s) event registered (sensor=%s snum=%d type=%d "
307 1.56 pgoyette "critmin=%" PRIu32 " warnmin=%" PRIu32 " warnmax=%" PRIu32
308 1.65 pgoyette " critmax=%" PRIu32 " props 0x%04x)\n", __func__,
309 1.45 xtraeme see->see_sme->sme_name, see->see_pes.pes_sensname,
310 1.76 pgoyette edata->sensor, see->see_type, edata->limits.sel_critmin,
311 1.76 pgoyette edata->limits.sel_warnmin, edata->limits.sel_warnmax,
312 1.76 pgoyette edata->limits.sel_critmax, edata->upropset));
313 1.1 xtraeme /*
314 1.45 xtraeme * Initialize the events framework if it wasn't initialized before.
315 1.1 xtraeme */
316 1.121 pgoyette if (sme->sme_callout_state == SME_CALLOUT_INVALID)
317 1.45 xtraeme error = sme_events_init(sme);
318 1.67 pgoyette
319 1.67 pgoyette /*
320 1.67 pgoyette * If driver requested notification, advise it of new
321 1.67 pgoyette * limit values
322 1.67 pgoyette */
323 1.82 pgoyette if (sme->sme_set_limits)
324 1.82 pgoyette (*sme->sme_set_limits)(sme, edata, &(edata->limits),
325 1.82 pgoyette &(edata->upropset));
326 1.67 pgoyette
327 1.27 xtraeme out:
328 1.65 pgoyette if ((error == 0 || error == EEXIST) && osee == NULL)
329 1.65 pgoyette LIST_INSERT_HEAD(&sme->sme_events_list, see, see_list);
330 1.65 pgoyette
331 1.51 xtraeme mutex_exit(&sme->sme_mtx);
332 1.65 pgoyette
333 1.1 xtraeme return error;
334 1.1 xtraeme }
335 1.1 xtraeme
336 1.1 xtraeme /*
337 1.18 xtraeme * sme_event_unregister_all:
338 1.18 xtraeme *
339 1.51 xtraeme * + Unregisters all events associated with a sysmon envsys device.
340 1.18 xtraeme */
341 1.18 xtraeme void
342 1.45 xtraeme sme_event_unregister_all(struct sysmon_envsys *sme)
343 1.18 xtraeme {
344 1.18 xtraeme sme_event_t *see;
345 1.18 xtraeme int evcounter = 0;
346 1.113 ozaki bool destroy = false;
347 1.18 xtraeme
348 1.45 xtraeme KASSERT(sme != NULL);
349 1.18 xtraeme
350 1.51 xtraeme mutex_enter(&sme->sme_mtx);
351 1.45 xtraeme LIST_FOREACH(see, &sme->sme_events_list, see_list) {
352 1.56 pgoyette while (see->see_flags & SEE_EVENT_WORKING)
353 1.51 xtraeme cv_wait(&sme->sme_condvar, &sme->sme_mtx);
354 1.51 xtraeme
355 1.45 xtraeme if (strcmp(see->see_pes.pes_dvname, sme->sme_name) == 0)
356 1.18 xtraeme evcounter++;
357 1.18 xtraeme }
358 1.18 xtraeme
359 1.18 xtraeme DPRINTF(("%s: total events %d (%s)\n", __func__,
360 1.45 xtraeme evcounter, sme->sme_name));
361 1.18 xtraeme
362 1.45 xtraeme while ((see = LIST_FIRST(&sme->sme_events_list))) {
363 1.18 xtraeme if (evcounter == 0)
364 1.18 xtraeme break;
365 1.18 xtraeme
366 1.45 xtraeme if (strcmp(see->see_pes.pes_dvname, sme->sme_name) == 0) {
367 1.18 xtraeme DPRINTF(("%s: event %s %d removed (%s)\n", __func__,
368 1.45 xtraeme see->see_pes.pes_sensname, see->see_type,
369 1.45 xtraeme sme->sme_name));
370 1.99 pgoyette sme_remove_event(see, sme);
371 1.99 pgoyette
372 1.18 xtraeme evcounter--;
373 1.18 xtraeme }
374 1.18 xtraeme }
375 1.18 xtraeme
376 1.113 ozaki if (LIST_EMPTY(&sme->sme_events_list) &&
377 1.121 pgoyette sme->sme_callout_state == SME_CALLOUT_READY) {
378 1.113 ozaki sme_events_halt_callout(sme);
379 1.113 ozaki destroy = true;
380 1.113 ozaki }
381 1.51 xtraeme mutex_exit(&sme->sme_mtx);
382 1.113 ozaki
383 1.113 ozaki if (destroy)
384 1.113 ozaki sme_events_destroy(sme);
385 1.18 xtraeme }
386 1.18 xtraeme
387 1.18 xtraeme /*
388 1.1 xtraeme * sme_event_unregister:
389 1.1 xtraeme *
390 1.45 xtraeme * + Unregisters an event from the specified sysmon envsys device.
391 1.1 xtraeme */
392 1.1 xtraeme int
393 1.45 xtraeme sme_event_unregister(struct sysmon_envsys *sme, const char *sensor, int type)
394 1.1 xtraeme {
395 1.1 xtraeme sme_event_t *see;
396 1.1 xtraeme bool found = false;
397 1.113 ozaki bool destroy = false;
398 1.1 xtraeme
399 1.1 xtraeme KASSERT(sensor != NULL);
400 1.1 xtraeme
401 1.51 xtraeme mutex_enter(&sme->sme_mtx);
402 1.45 xtraeme LIST_FOREACH(see, &sme->sme_events_list, see_list) {
403 1.45 xtraeme if (strcmp(see->see_pes.pes_sensname, sensor) == 0) {
404 1.45 xtraeme if (see->see_type == type) {
405 1.1 xtraeme found = true;
406 1.1 xtraeme break;
407 1.1 xtraeme }
408 1.1 xtraeme }
409 1.1 xtraeme }
410 1.1 xtraeme
411 1.51 xtraeme if (!found) {
412 1.51 xtraeme mutex_exit(&sme->sme_mtx);
413 1.1 xtraeme return EINVAL;
414 1.51 xtraeme }
415 1.1 xtraeme
416 1.51 xtraeme /*
417 1.109 mbalmer * Wait for the event to finish its work, remove it from the list
418 1.109 mbalmer * and release resources.
419 1.51 xtraeme */
420 1.56 pgoyette while (see->see_flags & SEE_EVENT_WORKING)
421 1.51 xtraeme cv_wait(&sme->sme_condvar, &sme->sme_mtx);
422 1.15 xtraeme
423 1.51 xtraeme DPRINTF(("%s: removed dev=%s sensor=%s type=%d\n",
424 1.45 xtraeme __func__, see->see_pes.pes_dvname, sensor, type));
425 1.99 pgoyette
426 1.99 pgoyette sme_remove_event(see, sme);
427 1.99 pgoyette
428 1.113 ozaki if (LIST_EMPTY(&sme->sme_events_list)) {
429 1.113 ozaki sme_events_halt_callout(sme);
430 1.113 ozaki destroy = true;
431 1.113 ozaki }
432 1.99 pgoyette mutex_exit(&sme->sme_mtx);
433 1.113 ozaki
434 1.113 ozaki if (destroy)
435 1.113 ozaki sme_events_destroy(sme);
436 1.113 ozaki
437 1.99 pgoyette return 0;
438 1.99 pgoyette }
439 1.99 pgoyette
440 1.99 pgoyette /*
441 1.99 pgoyette * sme_event_unregister_sensor:
442 1.99 pgoyette *
443 1.99 pgoyette * + Unregisters any event associated with a specific sensor
444 1.99 pgoyette * The caller must already own the sme_mtx.
445 1.99 pgoyette */
446 1.99 pgoyette int
447 1.99 pgoyette sme_event_unregister_sensor(struct sysmon_envsys *sme, envsys_data_t *edata)
448 1.99 pgoyette {
449 1.99 pgoyette sme_event_t *see;
450 1.99 pgoyette bool found = false;
451 1.99 pgoyette
452 1.99 pgoyette KASSERT(mutex_owned(&sme->sme_mtx));
453 1.99 pgoyette LIST_FOREACH(see, &sme->sme_events_list, see_list) {
454 1.99 pgoyette if (see->see_edata == edata) {
455 1.99 pgoyette found = true;
456 1.99 pgoyette break;
457 1.99 pgoyette }
458 1.99 pgoyette }
459 1.99 pgoyette if (!found)
460 1.99 pgoyette return EINVAL;
461 1.99 pgoyette
462 1.99 pgoyette /*
463 1.109 mbalmer * Wait for the event to finish its work, remove it from the list
464 1.109 mbalmer * and release resources.
465 1.99 pgoyette */
466 1.99 pgoyette while (see->see_flags & SEE_EVENT_WORKING)
467 1.99 pgoyette cv_wait(&sme->sme_condvar, &sme->sme_mtx);
468 1.99 pgoyette
469 1.99 pgoyette DPRINTF(("%s: removed dev=%s sensor=%s\n",
470 1.99 pgoyette __func__, see->see_pes.pes_dvname, edata->desc));
471 1.99 pgoyette
472 1.99 pgoyette sme_remove_event(see, sme);
473 1.99 pgoyette
474 1.99 pgoyette return 0;
475 1.99 pgoyette }
476 1.99 pgoyette
477 1.99 pgoyette static void
478 1.99 pgoyette sme_remove_event(sme_event_t *see, struct sysmon_envsys *sme)
479 1.99 pgoyette {
480 1.99 pgoyette
481 1.99 pgoyette KASSERT(mutex_owned(&sme->sme_mtx));
482 1.99 pgoyette
483 1.1 xtraeme LIST_REMOVE(see, see_list);
484 1.20 xtraeme kmem_free(see, sizeof(*see));
485 1.1 xtraeme }
486 1.1 xtraeme
487 1.1 xtraeme /*
488 1.1 xtraeme * sme_event_drvadd:
489 1.1 xtraeme *
490 1.45 xtraeme * + Registers a new event for a device that had enabled any of
491 1.45 xtraeme * the monitoring flags in the driver.
492 1.1 xtraeme */
493 1.1 xtraeme void
494 1.1 xtraeme sme_event_drvadd(void *arg)
495 1.1 xtraeme {
496 1.1 xtraeme sme_event_drv_t *sed_t = arg;
497 1.67 pgoyette sysmon_envsys_lim_t lims;
498 1.82 pgoyette uint32_t props;
499 1.2 xtraeme int error = 0;
500 1.108 pgoyette const struct ev_reg_t *reg;
501 1.1 xtraeme
502 1.1 xtraeme KASSERT(sed_t != NULL);
503 1.1 xtraeme
504 1.71 pgoyette /*
505 1.73 pgoyette * If driver provides a method to retrieve its internal limit
506 1.74 pgoyette * values, call it and use those returned values as initial
507 1.73 pgoyette * limits for event monitoring.
508 1.71 pgoyette */
509 1.82 pgoyette props = 0;
510 1.71 pgoyette if (sed_t->sed_edata->flags & ENVSYS_FMONLIMITS)
511 1.67 pgoyette if (sed_t->sed_sme->sme_get_limits)
512 1.67 pgoyette (*sed_t->sed_sme->sme_get_limits)(sed_t->sed_sme,
513 1.68 pgoyette sed_t->sed_edata,
514 1.82 pgoyette &lims, &props);
515 1.73 pgoyette /*
516 1.73 pgoyette * If driver doesn't provide a way to "absorb" user-specified
517 1.73 pgoyette * limit values, we must monitor all limits ourselves
518 1.73 pgoyette */
519 1.91 pgoyette if (sed_t->sed_sme->sme_set_limits == NULL)
520 1.82 pgoyette props &= ~PROP_DRIVER_LIMITS;
521 1.71 pgoyette
522 1.71 pgoyette /* Register the events that were specified */
523 1.67 pgoyette
524 1.107 pgoyette for (reg = reg_events; reg->name != NULL; reg++) {
525 1.107 pgoyette if (sed_t->sed_edata->flags & reg->crittype) {
526 1.107 pgoyette
527 1.107 pgoyette error = sme_event_register(sed_t->sed_sdict,
528 1.107 pgoyette sed_t->sed_edata,
529 1.107 pgoyette sed_t->sed_sme,
530 1.107 pgoyette &lims, props,
531 1.107 pgoyette reg->powertype,
532 1.107 pgoyette sed_t->sed_powertype);
533 1.107 pgoyette if (error && error != EEXIST)
534 1.107 pgoyette printf("%s: failed to add event! "
535 1.107 pgoyette "error=%d sensor=%s event=%s\n",
536 1.107 pgoyette __func__, error,
537 1.107 pgoyette sed_t->sed_edata->desc, reg->name);
538 1.107 pgoyette else {
539 1.107 pgoyette char str[ENVSYS_DESCLEN] = "monitoring-state-";
540 1.107 pgoyette (void)strlcat(str, reg->name, sizeof(str));
541 1.107 pgoyette prop_dictionary_set_bool(sed_t->sed_sdict,
542 1.107 pgoyette str, true);
543 1.107 pgoyette }
544 1.107 pgoyette }
545 1.107 pgoyette }
546 1.100 pgoyette
547 1.122 riastrad /*
548 1.45 xtraeme * we are done, free memory now.
549 1.45 xtraeme */
550 1.1 xtraeme kmem_free(sed_t, sizeof(*sed_t));
551 1.1 xtraeme }
552 1.1 xtraeme
553 1.1 xtraeme /*
554 1.1 xtraeme * sme_events_init:
555 1.1 xtraeme *
556 1.45 xtraeme * + Initialize the events framework for this device.
557 1.1 xtraeme */
558 1.1 xtraeme int
559 1.45 xtraeme sme_events_init(struct sysmon_envsys *sme)
560 1.1 xtraeme {
561 1.51 xtraeme int error = 0;
562 1.1 xtraeme
563 1.45 xtraeme KASSERT(sme != NULL);
564 1.51 xtraeme KASSERT(mutex_owned(&sme->sme_mtx));
565 1.22 xtraeme
566 1.45 xtraeme error = workqueue_create(&sme->sme_wq, sme->sme_name,
567 1.45 xtraeme sme_events_worker, sme, PRI_NONE, IPL_SOFTCLOCK, WQ_MPSAFE);
568 1.1 xtraeme if (error)
569 1.51 xtraeme return error;
570 1.1 xtraeme
571 1.54 xtraeme callout_init(&sme->sme_callout, CALLOUT_MPSAFE);
572 1.45 xtraeme callout_setfunc(&sme->sme_callout, sme_events_check, sme);
573 1.121 pgoyette sme->sme_callout_state = SME_CALLOUT_READY;
574 1.97 pgoyette sme_schedule_callout(sme);
575 1.45 xtraeme DPRINTF(("%s: events framework initialized for '%s'\n",
576 1.45 xtraeme __func__, sme->sme_name));
577 1.1 xtraeme
578 1.1 xtraeme return error;
579 1.1 xtraeme }
580 1.1 xtraeme
581 1.1 xtraeme /*
582 1.97 pgoyette * sme_schedule_callout
583 1.97 pgoyette *
584 1.97 pgoyette * (Re)-schedule the device's callout timer
585 1.97 pgoyette */
586 1.97 pgoyette void
587 1.97 pgoyette sme_schedule_callout(struct sysmon_envsys *sme)
588 1.97 pgoyette {
589 1.97 pgoyette uint64_t timo;
590 1.97 pgoyette
591 1.97 pgoyette KASSERT(sme != NULL);
592 1.121 pgoyette KASSERT(mutex_owned(&sme->sme_mtx));
593 1.97 pgoyette
594 1.121 pgoyette if (sme->sme_callout_state != SME_CALLOUT_READY)
595 1.97 pgoyette return;
596 1.97 pgoyette
597 1.97 pgoyette if (sme->sme_events_timeout)
598 1.97 pgoyette timo = sme->sme_events_timeout * hz;
599 1.97 pgoyette else
600 1.97 pgoyette timo = SME_EVTIMO;
601 1.97 pgoyette
602 1.97 pgoyette callout_stop(&sme->sme_callout);
603 1.97 pgoyette callout_schedule(&sme->sme_callout, timo);
604 1.97 pgoyette }
605 1.97 pgoyette
606 1.97 pgoyette /*
607 1.113 ozaki * sme_events_halt_callout:
608 1.18 xtraeme *
609 1.113 ozaki * + Halt the callout of the event framework for this device.
610 1.18 xtraeme */
611 1.18 xtraeme void
612 1.113 ozaki sme_events_halt_callout(struct sysmon_envsys *sme)
613 1.18 xtraeme {
614 1.121 pgoyette
615 1.51 xtraeme KASSERT(mutex_owned(&sme->sme_mtx));
616 1.121 pgoyette KASSERT(sme->sme_callout_state == SME_CALLOUT_READY);
617 1.22 xtraeme
618 1.112 ozaki /*
619 1.121 pgoyette * Set HALTED before callout_halt to ensure callout is not
620 1.121 pgoyette * scheduled again during callout_halt. (callout_halt()
621 1.121 pgoyette * can potentially release the mutex, so an active callout
622 1.121 pgoyette * could reschedule itself if it grabs the mutex.)
623 1.112 ozaki */
624 1.112 ozaki
625 1.121 pgoyette sme->sme_callout_state = SME_CALLOUT_HALTED;
626 1.112 ozaki callout_halt(&sme->sme_callout, &sme->sme_mtx);
627 1.113 ozaki }
628 1.113 ozaki
629 1.113 ozaki /*
630 1.113 ozaki * sme_events_destroy:
631 1.113 ozaki *
632 1.113 ozaki * + Destroy the callout and the workqueue of the event framework
633 1.113 ozaki * for this device.
634 1.113 ozaki */
635 1.113 ozaki void
636 1.113 ozaki sme_events_destroy(struct sysmon_envsys *sme)
637 1.113 ozaki {
638 1.121 pgoyette
639 1.113 ozaki KASSERT(!mutex_owned(&sme->sme_mtx));
640 1.113 ozaki
641 1.121 pgoyette if (sme->sme_callout_state == SME_CALLOUT_HALTED) {
642 1.121 pgoyette callout_destroy(&sme->sme_callout);
643 1.121 pgoyette sme->sme_callout_state = SME_CALLOUT_INVALID;
644 1.121 pgoyette workqueue_destroy(sme->sme_wq);
645 1.121 pgoyette }
646 1.121 pgoyette KASSERT(sme->sme_callout_state == SME_CALLOUT_INVALID);
647 1.112 ozaki
648 1.45 xtraeme DPRINTF(("%s: events framework destroyed for '%s'\n",
649 1.45 xtraeme __func__, sme->sme_name));
650 1.18 xtraeme }
651 1.18 xtraeme
652 1.18 xtraeme /*
653 1.91 pgoyette * sysmon_envsys_update_limits
654 1.91 pgoyette *
655 1.91 pgoyette * + If a driver needs to update the limits that it is providing,
656 1.91 pgoyette * we need to update the dictionary data as well as the limits.
657 1.91 pgoyette * This only makes sense if the driver is capable of providing
658 1.91 pgoyette * its limits, and if there is a limits event-monitor.
659 1.91 pgoyette */
660 1.91 pgoyette int
661 1.91 pgoyette sysmon_envsys_update_limits(struct sysmon_envsys *sme, envsys_data_t *edata)
662 1.91 pgoyette {
663 1.92 pgoyette int err;
664 1.92 pgoyette
665 1.93 pgoyette sysmon_envsys_acquire(sme, false);
666 1.92 pgoyette if (sme->sme_get_limits == NULL ||
667 1.92 pgoyette (edata->flags & ENVSYS_FMONLIMITS) == 0)
668 1.93 pgoyette err = EINVAL;
669 1.93 pgoyette else
670 1.93 pgoyette err = sme_update_limits(sme, edata);
671 1.92 pgoyette sysmon_envsys_release(sme, false);
672 1.92 pgoyette
673 1.92 pgoyette return err;
674 1.92 pgoyette }
675 1.92 pgoyette
676 1.92 pgoyette /*
677 1.92 pgoyette * sme_update_limits
678 1.92 pgoyette *
679 1.92 pgoyette * + Internal version of sysmon_envsys_update_limits() to be used
680 1.92 pgoyette * when the device has already been sysmon_envsys_acquire()d.
681 1.92 pgoyette */
682 1.92 pgoyette
683 1.92 pgoyette int
684 1.92 pgoyette sme_update_limits(struct sysmon_envsys *sme, envsys_data_t *edata)
685 1.92 pgoyette {
686 1.91 pgoyette prop_dictionary_t sdict = NULL;
687 1.91 pgoyette prop_array_t array = NULL;
688 1.91 pgoyette sysmon_envsys_lim_t lims;
689 1.91 pgoyette sme_event_t *see;
690 1.91 pgoyette uint32_t props = 0;
691 1.91 pgoyette
692 1.91 pgoyette /* Find the dictionary for this sensor */
693 1.91 pgoyette array = prop_dictionary_get(sme_propd, sme->sme_name);
694 1.91 pgoyette if (array == NULL ||
695 1.91 pgoyette prop_object_type(array) != PROP_TYPE_ARRAY) {
696 1.91 pgoyette DPRINTF(("%s: array device failed\n", __func__));
697 1.91 pgoyette return EINVAL;
698 1.91 pgoyette }
699 1.122 riastrad
700 1.91 pgoyette sdict = prop_array_get(array, edata->sensor);
701 1.91 pgoyette if (sdict == NULL) {
702 1.91 pgoyette return EINVAL;
703 1.91 pgoyette }
704 1.91 pgoyette
705 1.91 pgoyette /* Find the event definition to get its powertype */
706 1.91 pgoyette LIST_FOREACH(see, &sme->sme_events_list, see_list) {
707 1.91 pgoyette if (edata == see->see_edata &&
708 1.91 pgoyette see->see_type == PENVSYS_EVENT_LIMITS)
709 1.91 pgoyette break;
710 1.91 pgoyette }
711 1.92 pgoyette if (see == NULL)
712 1.91 pgoyette return EINVAL;
713 1.92 pgoyette
714 1.93 pgoyette /* Update limit values from driver if possible */
715 1.93 pgoyette if (sme->sme_get_limits != NULL)
716 1.93 pgoyette (*sme->sme_get_limits)(sme, edata, &lims, &props);
717 1.91 pgoyette
718 1.91 pgoyette /* Update event and dictionary */
719 1.91 pgoyette sme_event_register(sdict, edata, sme, &lims, props,
720 1.91 pgoyette PENVSYS_EVENT_LIMITS, see->see_pes.pes_type);
721 1.91 pgoyette
722 1.91 pgoyette return 0;
723 1.91 pgoyette }
724 1.91 pgoyette
725 1.91 pgoyette /*
726 1.1 xtraeme * sme_events_check:
727 1.1 xtraeme *
728 1.51 xtraeme * + Passes the events to the workqueue thread and stops
729 1.51 xtraeme * the callout if the 'low-power' condition is triggered.
730 1.1 xtraeme */
731 1.1 xtraeme void
732 1.1 xtraeme sme_events_check(void *arg)
733 1.1 xtraeme {
734 1.45 xtraeme struct sysmon_envsys *sme = arg;
735 1.1 xtraeme sme_event_t *see;
736 1.45 xtraeme
737 1.45 xtraeme KASSERT(sme != NULL);
738 1.45 xtraeme
739 1.114 hannken mutex_enter(&sme->sme_work_mtx);
740 1.114 hannken if (sme->sme_busy > 0) {
741 1.114 hannken log(LOG_WARNING, "%s: workqueue busy: updates stopped\n",
742 1.114 hannken sme->sme_name);
743 1.114 hannken mutex_exit(&sme->sme_work_mtx);
744 1.114 hannken return;
745 1.114 hannken }
746 1.121 pgoyette mutex_enter(&sme->sme_mtx);
747 1.51 xtraeme LIST_FOREACH(see, &sme->sme_events_list, see_list) {
748 1.45 xtraeme workqueue_enqueue(sme->sme_wq, &see->see_wk, NULL);
749 1.56 pgoyette see->see_edata->flags |= ENVSYS_FNEED_REFRESH;
750 1.114 hannken sme->sme_busy++;
751 1.51 xtraeme }
752 1.38 xtraeme if (!sysmon_low_power)
753 1.97 pgoyette sme_schedule_callout(sme);
754 1.121 pgoyette mutex_exit(&sme->sme_mtx);
755 1.118 bouyer mutex_exit(&sme->sme_work_mtx);
756 1.1 xtraeme }
757 1.1 xtraeme
758 1.1 xtraeme /*
759 1.1 xtraeme * sme_events_worker:
760 1.1 xtraeme *
761 1.1 xtraeme * + workqueue thread that checks if there's a critical condition
762 1.51 xtraeme * and sends an event if it was triggered.
763 1.1 xtraeme */
764 1.1 xtraeme void
765 1.1 xtraeme sme_events_worker(struct work *wk, void *arg)
766 1.1 xtraeme {
767 1.1 xtraeme sme_event_t *see = (void *)wk;
768 1.51 xtraeme struct sysmon_envsys *sme = see->see_sme;
769 1.51 xtraeme envsys_data_t *edata = see->see_edata;
770 1.1 xtraeme
771 1.1 xtraeme KASSERT(wk == &see->see_wk);
772 1.117 pgoyette KASSERT(sme != NULL);
773 1.117 pgoyette KASSERT(edata != NULL);
774 1.1 xtraeme
775 1.51 xtraeme mutex_enter(&sme->sme_mtx);
776 1.86 pgoyette see->see_flags |= SEE_EVENT_WORKING;
777 1.122 riastrad /*
778 1.65 pgoyette * sme_events_check marks the sensors to make us refresh them here.
779 1.101 pgoyette * sme_envsys_refresh_sensor will not call the driver if the driver
780 1.101 pgoyette * does its own setting of the sensor value.
781 1.1 xtraeme */
782 1.101 pgoyette if ((edata->flags & ENVSYS_FNEED_REFRESH) != 0) {
783 1.101 pgoyette /* refresh sensor in device */
784 1.101 pgoyette sysmon_envsys_refresh_sensor(sme, edata);
785 1.101 pgoyette edata->flags &= ~ENVSYS_FNEED_REFRESH;
786 1.1 xtraeme }
787 1.1 xtraeme
788 1.56 pgoyette DPRINTFOBJ(("%s: (%s) desc=%s sensor=%d type=%d state=%d units=%d "
789 1.115 mlelstv "value_cur=%d upropset=0x%04x\n", __func__, sme->sme_name, edata->desc,
790 1.56 pgoyette edata->sensor, see->see_type, edata->state, edata->units,
791 1.82 pgoyette edata->value_cur, edata->upropset));
792 1.1 xtraeme
793 1.50 xtraeme /* skip the event if current sensor is in invalid state */
794 1.51 xtraeme if (edata->state == ENVSYS_SINVALID)
795 1.50 xtraeme goto out;
796 1.50 xtraeme
797 1.10 xtraeme /*
798 1.67 pgoyette * For range limits, if the driver claims responsibility for
799 1.67 pgoyette * limit/range checking, just user driver-supplied status.
800 1.67 pgoyette * Else calculate our own status. Note that driver must
801 1.67 pgoyette * relinquish responsibility for ALL limits if there is even
802 1.67 pgoyette * one limit that it cannot handle!
803 1.91 pgoyette *
804 1.91 pgoyette * If this is a CAPACITY monitor, but the sensor's max_value
805 1.91 pgoyette * is not set, treat it as though the monitor does not exist.
806 1.56 pgoyette */
807 1.86 pgoyette if ((see->see_type == PENVSYS_EVENT_LIMITS ||
808 1.86 pgoyette see->see_type == PENVSYS_EVENT_CAPACITY) &&
809 1.86 pgoyette (edata->upropset & PROP_DRIVER_LIMITS) == 0) {
810 1.91 pgoyette if ((see->see_type == PENVSYS_EVENT_CAPACITY) &&
811 1.91 pgoyette (edata->value_max == 0))
812 1.91 pgoyette edata->state = ENVSYS_SVALID;
813 1.91 pgoyette else if ((edata->upropset & (PROP_CRITMIN | PROP_BATTCAP)) &&
814 1.86 pgoyette (edata->value_cur < edata->limits.sel_critmin))
815 1.86 pgoyette edata->state = ENVSYS_SCRITUNDER;
816 1.86 pgoyette else if ((edata->upropset & (PROP_WARNMIN | PROP_BATTWARN)) &&
817 1.86 pgoyette (edata->value_cur < edata->limits.sel_warnmin))
818 1.86 pgoyette edata->state = ENVSYS_SWARNUNDER;
819 1.86 pgoyette else if ((edata->upropset & (PROP_CRITMAX | PROP_BATTMAX)) &&
820 1.86 pgoyette (edata->value_cur > edata->limits.sel_critmax))
821 1.86 pgoyette edata->state = ENVSYS_SCRITOVER;
822 1.86 pgoyette else if ((edata->upropset & (PROP_WARNMAX | PROP_BATTHIGH)) &&
823 1.86 pgoyette (edata->value_cur > edata->limits.sel_warnmax))
824 1.86 pgoyette edata->state = ENVSYS_SWARNOVER;
825 1.86 pgoyette else
826 1.86 pgoyette edata->state = ENVSYS_SVALID;
827 1.86 pgoyette }
828 1.86 pgoyette sme_deliver_event(see);
829 1.86 pgoyette
830 1.86 pgoyette out:
831 1.86 pgoyette see->see_flags &= ~SEE_EVENT_WORKING;
832 1.86 pgoyette cv_broadcast(&sme->sme_condvar);
833 1.114 hannken mutex_enter(&sme->sme_work_mtx);
834 1.114 hannken KASSERT(sme->sme_busy > 0);
835 1.114 hannken sme->sme_busy--;
836 1.114 hannken mutex_exit(&sme->sme_work_mtx);
837 1.86 pgoyette mutex_exit(&sme->sme_mtx);
838 1.86 pgoyette }
839 1.86 pgoyette
840 1.86 pgoyette /*
841 1.87 pgoyette * sysmon_envsys_sensor_event
842 1.86 pgoyette *
843 1.86 pgoyette * + Find the monitor event of a particular type for a given sensor
844 1.89 pgoyette * on a device and deliver the event if one is required. If
845 1.89 pgoyette * no event type is specified, deliver all events for the sensor.
846 1.86 pgoyette */
847 1.86 pgoyette void
848 1.122 riastrad sysmon_envsys_sensor_event(struct sysmon_envsys *sme, envsys_data_t *edata,
849 1.87 pgoyette int ev_type)
850 1.86 pgoyette {
851 1.86 pgoyette sme_event_t *see;
852 1.86 pgoyette
853 1.86 pgoyette mutex_enter(&sme->sme_mtx);
854 1.86 pgoyette LIST_FOREACH(see, &sme->sme_events_list, see_list) {
855 1.89 pgoyette if (edata != see->see_edata)
856 1.89 pgoyette continue;
857 1.89 pgoyette if (ev_type == 0 ||
858 1.89 pgoyette ev_type == see->see_type) {
859 1.89 pgoyette sme_deliver_event(see);
860 1.89 pgoyette if (ev_type != 0)
861 1.89 pgoyette break;
862 1.89 pgoyette }
863 1.86 pgoyette }
864 1.86 pgoyette mutex_exit(&sme->sme_mtx);
865 1.86 pgoyette }
866 1.86 pgoyette
867 1.86 pgoyette /*
868 1.86 pgoyette * sme_deliver_event:
869 1.86 pgoyette *
870 1.86 pgoyette * + If new sensor state requires it, send an event to powerd
871 1.86 pgoyette *
872 1.86 pgoyette * Must be called with the device's sysmon mutex held
873 1.86 pgoyette * see->see_sme->sme_mtx
874 1.86 pgoyette */
875 1.86 pgoyette void
876 1.86 pgoyette sme_deliver_event(sme_event_t *see)
877 1.86 pgoyette {
878 1.86 pgoyette envsys_data_t *edata = see->see_edata;
879 1.96 pgoyette const struct sme_descr_entry *sdt = NULL;
880 1.86 pgoyette const struct sme_sensor_event *sse = sme_sensor_event;
881 1.86 pgoyette int i, state = 0;
882 1.86 pgoyette
883 1.86 pgoyette switch (see->see_type) {
884 1.65 pgoyette case PENVSYS_EVENT_LIMITS:
885 1.65 pgoyette case PENVSYS_EVENT_CAPACITY:
886 1.67 pgoyette /*
887 1.67 pgoyette * Send event if state has changed
888 1.67 pgoyette */
889 1.104 pgoyette if (edata->state == see->see_evstate)
890 1.58 pgoyette break;
891 1.56 pgoyette
892 1.58 pgoyette for (i = 0; sse[i].state != -1; i++)
893 1.58 pgoyette if (sse[i].state == edata->state)
894 1.10 xtraeme break;
895 1.1 xtraeme
896 1.58 pgoyette if (sse[i].state == -1)
897 1.58 pgoyette break;
898 1.58 pgoyette
899 1.58 pgoyette if (edata->state == ENVSYS_SVALID)
900 1.58 pgoyette sysmon_penvsys_event(&see->see_pes,
901 1.58 pgoyette PENVSYS_EVENT_NORMAL);
902 1.58 pgoyette else
903 1.58 pgoyette sysmon_penvsys_event(&see->see_pes, sse[i].event);
904 1.58 pgoyette
905 1.104 pgoyette see->see_evstate = edata->state;
906 1.83 pgoyette DPRINTFOBJ(("%s: (%s) desc=%s sensor=%d state=%d send_ev=%d\n",
907 1.94 pgoyette __func__, see->see_sme->sme_name, edata->desc,
908 1.94 pgoyette edata->sensor, edata->state,
909 1.83 pgoyette (edata->state == ENVSYS_SVALID) ? PENVSYS_EVENT_NORMAL :
910 1.83 pgoyette sse[i].event));
911 1.58 pgoyette
912 1.58 pgoyette break;
913 1.1 xtraeme
914 1.58 pgoyette /*
915 1.59 pgoyette * Send PENVSYS_EVENT_CRITICAL event if:
916 1.59 pgoyette * State has gone from non-CRITICAL to CRITICAL,
917 1.59 pgoyette * State remains CRITICAL and value has changed, or
918 1.59 pgoyette * State has returned from CRITICAL to non-CRITICAL
919 1.58 pgoyette */
920 1.58 pgoyette case PENVSYS_EVENT_CRITICAL:
921 1.104 pgoyette DPRINTF(("%s: CRITICAL: old/new state %d/%d, old/new value "
922 1.104 pgoyette "%d/%d\n", __func__, see->see_evstate, edata->state,
923 1.104 pgoyette see->see_evvalue, edata->value_cur));
924 1.59 pgoyette if (edata->state == ENVSYS_SVALID &&
925 1.104 pgoyette see->see_evstate != ENVSYS_SVALID) {
926 1.58 pgoyette sysmon_penvsys_event(&see->see_pes,
927 1.58 pgoyette PENVSYS_EVENT_NORMAL);
928 1.104 pgoyette see->see_evstate = ENVSYS_SVALID;
929 1.104 pgoyette break;
930 1.104 pgoyette } else if (edata->state != ENVSYS_SCRITICAL)
931 1.104 pgoyette break;
932 1.104 pgoyette if (see->see_evstate != ENVSYS_SCRITICAL ||
933 1.104 pgoyette see->see_evvalue != edata->value_cur) {
934 1.58 pgoyette sysmon_penvsys_event(&see->see_pes,
935 1.58 pgoyette PENVSYS_EVENT_CRITICAL);
936 1.104 pgoyette see->see_evstate = ENVSYS_SCRITICAL;
937 1.56 pgoyette }
938 1.104 pgoyette see->see_evvalue = edata->value_cur;
939 1.1 xtraeme break;
940 1.1 xtraeme
941 1.10 xtraeme /*
942 1.28 xtraeme * if value_cur is not normal (battery) or online (drive),
943 1.28 xtraeme * send the event...
944 1.10 xtraeme */
945 1.28 xtraeme case PENVSYS_EVENT_STATE_CHANGED:
946 1.122 riastrad /*
947 1.45 xtraeme * the state has not been changed, just ignore the event.
948 1.45 xtraeme */
949 1.104 pgoyette if (edata->value_cur == see->see_evvalue)
950 1.1 xtraeme break;
951 1.1 xtraeme
952 1.51 xtraeme switch (edata->units) {
953 1.28 xtraeme case ENVSYS_DRIVE:
954 1.96 pgoyette sdt = sme_find_table_entry(SME_DESC_DRIVE_STATES,
955 1.96 pgoyette edata->value_cur);
956 1.28 xtraeme state = ENVSYS_DRIVE_ONLINE;
957 1.28 xtraeme break;
958 1.44 xtraeme case ENVSYS_BATTERY_CAPACITY:
959 1.96 pgoyette sdt = sme_find_table_entry(SME_DESC_BATTERY_CAPACITY,
960 1.96 pgoyette edata->value_cur);
961 1.44 xtraeme state = ENVSYS_BATTERY_CAPACITY_NORMAL;
962 1.28 xtraeme break;
963 1.104 pgoyette case ENVSYS_INDICATOR:
964 1.104 pgoyette sdt = sme_find_table_entry(SME_DESC_INDICATOR,
965 1.104 pgoyette edata->value_cur);
966 1.104 pgoyette state = see->see_evvalue; /* force state change */
967 1.104 pgoyette break;
968 1.34 xtraeme default:
969 1.65 pgoyette panic("%s: bad units for PENVSYS_EVENT_STATE_CHANGED",
970 1.35 xtraeme __func__);
971 1.28 xtraeme }
972 1.28 xtraeme
973 1.96 pgoyette if (sdt->type == -1)
974 1.51 xtraeme break;
975 1.51 xtraeme
976 1.122 riastrad /*
977 1.45 xtraeme * copy current state description.
978 1.45 xtraeme */
979 1.96 pgoyette (void)strlcpy(see->see_pes.pes_statedesc, sdt->desc,
980 1.45 xtraeme sizeof(see->see_pes.pes_statedesc));
981 1.1 xtraeme
982 1.65 pgoyette if (edata->value_cur == state)
983 1.65 pgoyette /*
984 1.65 pgoyette * state returned to normal condition
985 1.65 pgoyette */
986 1.56 pgoyette sysmon_penvsys_event(&see->see_pes,
987 1.56 pgoyette PENVSYS_EVENT_NORMAL);
988 1.65 pgoyette else
989 1.65 pgoyette /*
990 1.65 pgoyette * state changed to abnormal condition
991 1.45 xtraeme */
992 1.45 xtraeme sysmon_penvsys_event(&see->see_pes, see->see_type);
993 1.65 pgoyette
994 1.104 pgoyette see->see_evvalue = edata->value_cur;
995 1.1 xtraeme
996 1.122 riastrad /*
997 1.49 xtraeme * There's no need to continue if it's a drive sensor.
998 1.49 xtraeme */
999 1.51 xtraeme if (edata->units == ENVSYS_DRIVE)
1000 1.49 xtraeme break;
1001 1.49 xtraeme
1002 1.39 xtraeme /*
1003 1.39 xtraeme * Check if the system is running in low power and send the
1004 1.39 xtraeme * event to powerd (if running) or shutdown the system
1005 1.39 xtraeme * otherwise.
1006 1.39 xtraeme */
1007 1.39 xtraeme if (!sysmon_low_power && sme_event_check_low_power()) {
1008 1.39 xtraeme struct penvsys_state pes;
1009 1.121 pgoyette struct sysmon_envsys *sme = see->see_sme;
1010 1.39 xtraeme
1011 1.45 xtraeme /*
1012 1.45 xtraeme * Stop the callout and send the 'low-power' event.
1013 1.45 xtraeme */
1014 1.45 xtraeme sysmon_low_power = true;
1015 1.121 pgoyette KASSERT(mutex_owned(&sme->sme_mtx));
1016 1.121 pgoyette KASSERT(sme->sme_callout_state == SME_CALLOUT_READY);
1017 1.121 pgoyette callout_stop(&sme->sme_callout);
1018 1.121 pgoyette sme->sme_callout_state = SME_CALLOUT_HALTED;
1019 1.39 xtraeme pes.pes_type = PENVSYS_TYPE_BATTERY;
1020 1.39 xtraeme sysmon_penvsys_event(&pes, PENVSYS_EVENT_LOW_POWER);
1021 1.39 xtraeme }
1022 1.1 xtraeme break;
1023 1.100 pgoyette case PENVSYS_EVENT_NULL:
1024 1.100 pgoyette break;
1025 1.56 pgoyette default:
1026 1.56 pgoyette panic("%s: invalid event type %d", __func__, see->see_type);
1027 1.1 xtraeme }
1028 1.1 xtraeme }
1029 1.38 xtraeme
1030 1.47 xtraeme /*
1031 1.51 xtraeme * Returns true if the system is in low power state: an AC adapter
1032 1.51 xtraeme * is OFF and all batteries are in LOW/CRITICAL state.
1033 1.47 xtraeme */
1034 1.44 xtraeme static bool
1035 1.38 xtraeme sme_event_check_low_power(void)
1036 1.38 xtraeme {
1037 1.47 xtraeme if (!sme_acadapter_check())
1038 1.47 xtraeme return false;
1039 1.47 xtraeme
1040 1.47 xtraeme return sme_battery_check();
1041 1.47 xtraeme }
1042 1.47 xtraeme
1043 1.51 xtraeme /*
1044 1.51 xtraeme * Called with the sysmon_envsys device mtx held through the
1045 1.51 xtraeme * workqueue thread.
1046 1.51 xtraeme */
1047 1.47 xtraeme static bool
1048 1.47 xtraeme sme_acadapter_check(void)
1049 1.47 xtraeme {
1050 1.38 xtraeme struct sysmon_envsys *sme;
1051 1.38 xtraeme envsys_data_t *edata;
1052 1.50 xtraeme bool dev = false, sensor = false;
1053 1.38 xtraeme
1054 1.50 xtraeme LIST_FOREACH(sme, &sysmon_envsys_list, sme_list) {
1055 1.50 xtraeme if (sme->sme_class == SME_CLASS_ACADAPTER) {
1056 1.50 xtraeme dev = true;
1057 1.38 xtraeme break;
1058 1.50 xtraeme }
1059 1.50 xtraeme }
1060 1.51 xtraeme
1061 1.38 xtraeme /*
1062 1.47 xtraeme * No AC Adapter devices were found.
1063 1.38 xtraeme */
1064 1.50 xtraeme if (!dev)
1065 1.44 xtraeme return false;
1066 1.51 xtraeme
1067 1.44 xtraeme /*
1068 1.47 xtraeme * Check if there's an AC adapter device connected.
1069 1.44 xtraeme */
1070 1.45 xtraeme TAILQ_FOREACH(edata, &sme->sme_sensors_list, sensors_head) {
1071 1.38 xtraeme if (edata->units == ENVSYS_INDICATOR) {
1072 1.47 xtraeme sensor = true;
1073 1.50 xtraeme /* refresh current sensor */
1074 1.101 pgoyette sysmon_envsys_refresh_sensor(sme, edata);
1075 1.106 macallan
1076 1.44 xtraeme if (edata->value_cur)
1077 1.44 xtraeme return false;
1078 1.38 xtraeme }
1079 1.38 xtraeme }
1080 1.51 xtraeme
1081 1.47 xtraeme if (!sensor)
1082 1.47 xtraeme return false;
1083 1.47 xtraeme
1084 1.122 riastrad /*
1085 1.51 xtraeme * AC adapter found and not connected.
1086 1.51 xtraeme */
1087 1.47 xtraeme return true;
1088 1.47 xtraeme }
1089 1.47 xtraeme
1090 1.51 xtraeme /*
1091 1.51 xtraeme * Called with the sysmon_envsys device mtx held through the
1092 1.51 xtraeme * workqueue thread.
1093 1.51 xtraeme */
1094 1.47 xtraeme static bool
1095 1.47 xtraeme sme_battery_check(void)
1096 1.47 xtraeme {
1097 1.47 xtraeme struct sysmon_envsys *sme;
1098 1.47 xtraeme envsys_data_t *edata;
1099 1.55 drochner int batteriesfound = 0;
1100 1.55 drochner bool present, batterycap, batterycharge;
1101 1.44 xtraeme
1102 1.38 xtraeme /*
1103 1.44 xtraeme * Check for battery devices and its state.
1104 1.38 xtraeme */
1105 1.44 xtraeme LIST_FOREACH(sme, &sysmon_envsys_list, sme_list) {
1106 1.44 xtraeme if (sme->sme_class != SME_CLASS_BATTERY)
1107 1.44 xtraeme continue;
1108 1.38 xtraeme
1109 1.55 drochner present = true;
1110 1.106 macallan
1111 1.106 macallan /*
1112 1.106 macallan * XXX
1113 1.106 macallan * this assumes that the first valid ENVSYS_INDICATOR is the
1114 1.106 macallan * presence indicator
1115 1.106 macallan */
1116 1.55 drochner TAILQ_FOREACH(edata, &sme->sme_sensors_list, sensors_head) {
1117 1.106 macallan if ((edata->units == ENVSYS_INDICATOR) &&
1118 1.106 macallan (edata->state == ENVSYS_SVALID)) {
1119 1.106 macallan present = edata->value_cur;
1120 1.55 drochner break;
1121 1.55 drochner }
1122 1.55 drochner }
1123 1.55 drochner if (!present)
1124 1.55 drochner continue;
1125 1.44 xtraeme /*
1126 1.44 xtraeme * We've found a battery device...
1127 1.44 xtraeme */
1128 1.55 drochner batteriesfound++;
1129 1.55 drochner batterycap = batterycharge = false;
1130 1.45 xtraeme TAILQ_FOREACH(edata, &sme->sme_sensors_list, sensors_head) {
1131 1.106 macallan /* no need to even look at sensors that aren't valid */
1132 1.106 macallan if (edata->state != ENVSYS_SVALID)
1133 1.106 macallan continue;
1134 1.44 xtraeme if (edata->units == ENVSYS_BATTERY_CAPACITY) {
1135 1.44 xtraeme batterycap = true;
1136 1.44 xtraeme if (!sme_battery_critical(edata))
1137 1.44 xtraeme return false;
1138 1.44 xtraeme } else if (edata->units == ENVSYS_BATTERY_CHARGE) {
1139 1.44 xtraeme batterycharge = true;
1140 1.44 xtraeme if (edata->value_cur)
1141 1.44 xtraeme return false;
1142 1.38 xtraeme }
1143 1.38 xtraeme }
1144 1.55 drochner if (!batterycap || !batterycharge)
1145 1.55 drochner return false;
1146 1.38 xtraeme }
1147 1.51 xtraeme
1148 1.55 drochner if (!batteriesfound)
1149 1.44 xtraeme return false;
1150 1.38 xtraeme
1151 1.38 xtraeme /*
1152 1.44 xtraeme * All batteries in low/critical capacity and discharging.
1153 1.38 xtraeme */
1154 1.44 xtraeme return true;
1155 1.44 xtraeme }
1156 1.38 xtraeme
1157 1.44 xtraeme static bool
1158 1.44 xtraeme sme_battery_critical(envsys_data_t *edata)
1159 1.44 xtraeme {
1160 1.44 xtraeme if (edata->value_cur == ENVSYS_BATTERY_CAPACITY_CRITICAL ||
1161 1.44 xtraeme edata->value_cur == ENVSYS_BATTERY_CAPACITY_LOW)
1162 1.44 xtraeme return true;
1163 1.44 xtraeme
1164 1.44 xtraeme return false;
1165 1.38 xtraeme }
1166